diff --git a/.tests/unit/arts_allhits_combine/data/config/config.yaml b/.tests/unit/arts_allhits_combine/data/config/config.yaml new file mode 100644 index 00000000..4e4e5f54 --- /dev/null +++ b/.tests/unit/arts_allhits_combine/data/config/config.yaml @@ -0,0 +1,64 @@ +# This file should contain everything to configure the workflow on a global scale. + +#### PROJECT INFORMATION #### +# This section control your project configuration. +# Each project are separated by "-". +# A project can be defined as (1) a yaml object or (2) a Portable Encapsulated Project (PEP) file. +# (1) To define project as a yaml object, it must contain the variable "name" and "samples". +# - name : name of your project +# - samples : a csv file containing a list of genome ids for analysis with multiple sources mentioned. Genome ids must be unique. +# - rules: a yaml file containing project rule configurations. This will override global rule configuration. +# - prokka-db (optional): list of the custom accessions to use as prokka reference database. +# - gtdb-tax (optional): output summary file of GTDB-tk with "user_genome" and "classification" as the two minimum columns +# (2) To define project using PEP file, only variable "name" should be given that points to the location of the PEP yaml file. +# - pep: path to PEP .yaml file. See project example_pep for details. +# PS: the variable pep and name is an alias + +projects: +# Project 1 (yaml object) + - name: config/lactobacillus_delbruecki/project_config.yaml + +bgc_projects: + - pep: config/lanthipeptide/project_config.yaml + +#### GLOBAL RULE CONFIGURATION #### +# This section configures the rules to run globally. +# Use project specific rule configurations if you want to run different rules for each projects. +# pipelines or rules: set value to TRUE if you want to run the analysis or FALSE if you don't +pipelines: + seqfu: FALSE + mash: FALSE + fastani: FALSE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: FALSE + antismash: TRUE + query-bigslice: FALSE + bigscape: FALSE + bigslice: FALSE + automlst-wrapper: FALSE + arts: FALSE + roary: FALSE + eggnog: FALSE + eggnog-roary: FALSE + deeptfactor: FALSE + deeptfactor-roary: FALSE + cblaster-genome: FALSE + cblaster-bgc: FALSE + +#### RESOURCES CONFIGURATION #### +# resources : the location of the resources to run the rule. +# The default location is at "resources/{resource_name}". +resources_path: + antismash_db: resources/antismash_db + eggnog_db: resources/eggnog_db + BiG-SCAPE: resources/BiG-SCAPE + bigslice: resources/bigslice + checkm: resources/checkm + gtdbtk: resources/gtdbtk + #RNAmmer: resources/RNAmmer # If specified, will override Barnapp in Prokka + +rule_parameters: + install_gtdbtk: + release: 214 + release_version: 214 diff --git a/.tests/unit/arts_allhits_combine/data/config/lactobacillus_delbruecki/project_config.yaml b/.tests/unit/arts_allhits_combine/data/config/lactobacillus_delbruecki/project_config.yaml new file mode 100644 index 00000000..4f2fb49f --- /dev/null +++ b/.tests/unit/arts_allhits_combine/data/config/lactobacillus_delbruecki/project_config.yaml @@ -0,0 +1,30 @@ +name: Lactobacillus_delbrueckii + +pep_version: 2.1.0 + +description: "Lactobacillus delbrueckii 27 01 2023" + +sample_table: samples.csv + +#### RULE CONFIGURATION #### +# rules: set value to TRUE if you want to run the analysis or FALSE if you don't +rules: + seqfu: TRUE + mash: TRUE + fastani: TRUE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: TRUE + antismash: TRUE + query-bigslice: TRUE + bigscape: TRUE + bigslice: TRUE + automlst-wrapper: TRUE + arts: TRUE + roary: TRUE + eggnog: TRUE + eggnog-roary: TRUE + deeptfactor: TRUE + deeptfactor-roary: TRUE + cblaster-genome: TRUE + cblaster-bgc: TRUE diff --git a/.tests/unit/arts_allhits_combine/data/config/lactobacillus_delbruecki/samples.csv b/.tests/unit/arts_allhits_combine/data/config/lactobacillus_delbruecki/samples.csv new file mode 100644 index 00000000..4e848e1b --- /dev/null +++ b/.tests/unit/arts_allhits_combine/data/config/lactobacillus_delbruecki/samples.csv @@ -0,0 +1,5 @@ +genome_id,source,organism,genus,species,strain,closest_placement_reference,input_file +GCA_000056065.1,ncbi,,,,,, +GCA_000182835.1,ncbi,,,,,, +GCA_000191165.1,ncbi,,,,,, +GCA_000014405.1,ncbi,,,,,, diff --git 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"symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_allhits_combine/data/workflow b/.tests/unit/arts_allhits_combine/data/workflow new file mode 120000 index 00000000..cf154e99 --- /dev/null +++ b/.tests/unit/arts_allhits_combine/data/workflow @@ -0,0 +1 @@ +../../../../workflow \ No newline at end of file diff --git a/.tests/unit/arts_allhits_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv b/.tests/unit/arts_allhits_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv new file mode 100644 index 00000000..102a198c --- /dev/null +++ b/.tests/unit/arts_allhits_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv @@ -0,0 +1,1077 @@ +pkey,core_gene_or_model,genome_id,name,product,start,stop,strand,scaffold,sequence_id,type,transl_table,core_table_fkey,duplication,phylogeny,known_target,duptable_fkey,description,evalue,bitscore,gid,seqtitle,bgc_id,bgc_proximity,bgctable_fkey,function,gene +GCA_000056065.1__Cpn10__1__1432,Cpn10,GCA_000056065.1,groS,10 kDa chaperonin,1393993,1394278,-1,scaffold_1,1432,CDS,11,GCA_000056065.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000056065.1__GrpE__1__1155,GrpE,GCA_000056065.1,grpE,Protein GrpE,1119606,1120194,-1,scaffold_1,1155,CDS,11,GCA_000056065.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000056065.1__Methyltransf_5__1__665,Methyltransf_5,GCA_000056065.1,rsmH,Ribosomal RNA small subunit methyltransferase H,625949,626894,1,scaffold_1,665,CDS,11,GCA_000056065.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,,,, +GCA_000056065.1__PF00044.19__1__567,PF00044.19,GCA_000056065.1,,,540614,541631,1,1,567,,,,False,False,True,,Gp_dh_N,5.3e-54,179.4,lcl,567,,,,, +GCA_000056065.1__PF00185.19__1__1845,PF00185.19,GCA_000056065.1,,,1773015,1773972,-1,1,1845,,,,False,False,True,,OTCace,2.4e-35,118.8,lcl,1845,,,,, +GCA_000056065.1__PF00185.19__1__933,PF00185.19,GCA_000056065.1,,,898519,899089,1,1,933,,,,False,False,True,,OTCace,1.7e-35,119.3,lcl,933,,,,, +GCA_000056065.1__PF00204.20__1__5,PF00204.20,GCA_000056065.1,,,4578,6540,1,1,5,,,,False,False,True,,DNA_gyraseB,7.1e-61,201.5,cog,cog0187,,,,, +GCA_000056065.1__PF00204.20__1__889,PF00204.20,GCA_000056065.1,,,843765,845697,1,1,889,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,,,, +GCA_000056065.1__PF00227.21__1__1113,PF00227.21,GCA_000056065.1,,,1074598,1075132,-1,1,1113,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,,,, +GCA_000056065.1__PF00364.17__1__824,PF00364.17,GCA_000056065.1,,,793916,794399,1,1,824,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,lcl,824,,,,, +GCA_000056065.1__PF00521.15__1__6,PF00521.15,GCA_000056065.1,,,6552,9024,1,1,6,,,,False,False,True,,DNA_topoisoIV,6.5e-157,519.8,cog,cog0188,,,,, +GCA_000056065.1__PF00521.15__1__890,PF00521.15,GCA_000056065.1,,,845711,848195,1,1,890,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,,,, +GCA_000056065.1__PF01039.17__1__827,PF01039.17,GCA_000056065.1,,,796205,797054,1,1,827,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,,,, +GCA_000056065.1__PF01039.17__1__828,PF01039.17,GCA_000056065.1,,,797046,797814,1,1,828,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,,,, +GCA_000056065.1__PGK__1__568,PGK,GCA_000056065.1,pgk,Phosphoglycerate kinase,541727,542939,1,scaffold_1,568,CDS,11,GCA_000056065.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000056065.1__RF0007__1__1016,RF0007,GCA_000056065.1,,,976019,977777,1,1,1016,,,,False,False,True,,ABC_efflux,1.5e-77,258.2,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1129,RF0007,GCA_000056065.1,,,1088237,1090010,-1,1,1129,,,,False,False,True,,ABC_efflux,1.2e-84,281.7,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1189,RF0007,GCA_000056065.1,,,1156691,1158488,-1,1,1189,,,,False,False,True,,ABC_efflux,1.4e-77,258.3,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1788,RF0007,GCA_000056065.1,,,1714213,1716058,-1,1,1788,,,,False,False,True,,ABC_efflux,7.5e-75,249.3,cog,cog1132,,,,, +GCA_000056065.1__RF0155__1__1786,RF0155,GCA_000056065.1,,,1712200,1713409,-1,1,1786,,,,False,False,True,,vanS,3e-74,247.0,lcl,1786,,,,, +GCA_000056065.1__Ribosomal_L10__1__1466,Ribosomal_L10,GCA_000056065.1,rplJ,50S ribosomal protein L10,1421770,1422280,-1,scaffold_1,1466,CDS,11,GCA_000056065.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_L23__1__349,Ribosomal_L23,GCA_000056065.1,rplW,50S ribosomal protein L23,348201,348498,1,scaffold_1,349,CDS,11,GCA_000056065.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_S8__1__360,Ribosomal_S8,GCA_000056065.1,rpsH,30S ribosomal protein S8,353067,353466,1,scaffold_1,360,CDS,11,GCA_000056065.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_S9__1__378,Ribosomal_S9,GCA_000056065.1,rpsI,30S ribosomal protein S9,364180,364576,1,scaffold_1,378,CDS,11,GCA_000056065.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00001__1__1329,TIGR00001,GCA_000056065.1,rpmI,50S ribosomal protein L35,1294459,1294660,-1,scaffold_1,1329,CDS,11,GCA_000056065.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00008__1__368,TIGR00008,GCA_000056065.1,infA,Translation initiation factor IF-1,357628,357850,1,scaffold_1,368,CDS,11,GCA_000056065.1__arts_core__TIGR00008,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00009__1__1229,TIGR00009,GCA_000056065.1,rpmB,50S ribosomal protein L28,1199706,1199892,1,scaffold_1,1229,CDS,11,GCA_000056065.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00012__1__355,TIGR00012,GCA_000056065.1,rpmC,50S ribosomal protein L29,351145,351343,1,scaffold_1,355,CDS,11,GCA_000056065.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00016__1__616,TIGR00016,GCA_000056065.1,ackA,Acetate kinase,579934,581122,1,scaffold_1,616,CDS,11,GCA_000056065.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00017__1__775,TIGR00017,GCA_000056065.1,cmk,Cytidylate kinase,737485,738118,1,scaffold_1,775,CDS,11,GCA_000056065.1__arts_core__TIGR00017,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00019__1__629,TIGR00019,GCA_000056065.1,prfA,Peptide chain release factor 1,594425,595511,1,scaffold_1,629,CDS,11,GCA_000056065.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00020__1__543,TIGR00020,GCA_000056065.1,prfB,Peptide chain release factor 2,518026,519025,1,scaffold_1,543,CDS,11,GCA_000056065.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00021__1__468,TIGR00021,GCA_000056065.1,rpiA,Ribose-5-phosphate isomerase A,446570,447263,1,scaffold_1,468,CDS,11,GCA_000056065.1__arts_core__TIGR00021,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00029__1__701,TIGR00029,GCA_000056065.1,rpsT,30S ribosomal protein S20,663694,663946,-1,scaffold_1,701,CDS,11,GCA_000056065.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00038__1__1261,TIGR00038,11842,efp_1,Elongation factor P,1227239,1227809,-1,scaffold_1,1261,CDS,11,GCA_000056065.1__arts_core__TIGR00038,True,False,False,GCA_000056065.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000056065.1__TIGR00038__1__1668,TIGR00038,GCA_000056065.1,efp_2,Elongation factor P,1607624,1608182,-1,scaffold_1,1668,CDS,11,GCA_000056065.1__arts_core__TIGR00038,True,False,False,GCA_000056065.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000056065.1__TIGR00042__1__1414,TIGR00042,GCA_000056065.1,-,dITP/XTP pyrophosphatase,1372244,1372865,-1,scaffold_1,1414,CDS,11,GCA_000056065.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00043__1__1099,TIGR00043,GCA_000056065.1,ybeY,Endoribonuclease YbeY,1061520,1062045,-1,scaffold_1,1099,CDS,11,GCA_000056065.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00055__1__1178,TIGR00055,GCA_000056065.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1146640,1147372,-1,scaffold_1,1178,CDS,11,GCA_000056065.1__arts_core__TIGR00055,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00057__1__631,TIGR00057,GCA_000056065.1,ywlC,Threonylcarbamoyl-AMP synthase,596345,597341,1,scaffold_1,631,CDS,11,GCA_000056065.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00059__1__372,TIGR00059,GCA_000056065.1,rplQ,50S ribosomal protein L17,359780,360164,1,scaffold_1,372,CDS,11,GCA_000056065.1__arts_core__TIGR00059,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00060__1__362,TIGR00060,GCA_000056065.1,rplR,50S ribosomal protein L18,354047,354407,1,scaffold_1,362,CDS,11,GCA_000056065.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00061__1__1264,TIGR00061,GCA_000056065.1,rplU,50S ribosomal protein L21,1229445,1229757,-1,scaffold_1,1264,CDS,11,GCA_000056065.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00062__1__1263,TIGR00062,GCA_000056065.1,rpmA,50S ribosomal protein L27,1229130,1229430,-1,scaffold_1,1263,CDS,11,GCA_000056065.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00065__1__673,TIGR00065,GCA_000056065.1,ftsZ,Cell division protein FtsZ,635219,636578,1,scaffold_1,673,CDS,11,GCA_000056065.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00071__1__376,TIGR00071,GCA_000056065.1,truA,tRNA pseudouridine synthase A,362830,363619,1,scaffold_1,376,CDS,11,GCA_000056065.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00077__1__916,TIGR00077,GCA_000056065.1,lspA,Lipoprotein signal peptidase,881194,881647,1,scaffold_1,916,CDS,11,GCA_000056065.1__arts_core__TIGR00077,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00079__1__691,TIGR00079,GCA_000056065.1,def2,Peptide deformylase 2,653135,653690,-1,scaffold_1,691,CDS,11,GCA_000056065.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00081__1__1276,TIGR00081,GCA_000056065.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1240613,1241336,-1,scaffold_1,1276,CDS,11,GCA_000056065.1__arts_core__TIGR00081,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00082__1__1168,TIGR00082,GCA_000056065.1,rbfA,Ribosome-binding factor A,1133190,1133553,-1,scaffold_1,1168,CDS,11,GCA_000056065.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00084__1__1428,TIGR00084,GCA_000056065.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1386901,1387495,-1,scaffold_1,1428,CDS,11,GCA_000056065.1__arts_core__TIGR00084,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00086__1__1617,TIGR00086,GCA_000056065.1,smpB,SsrA-binding protein,1557165,1557627,-1,scaffold_1,1617,CDS,11,GCA_000056065.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00088__1__1206,TIGR00088,GCA_000056065.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1175461,1176199,-1,scaffold_1,1206,CDS,11,GCA_000056065.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00090__1__1324,TIGR00090,GCA_000056065.1,rsfS,Ribosomal silencing factor RsfS,1291216,1291564,-1,scaffold_1,1324,CDS,11,GCA_000056065.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00092__1__1791,TIGR00092,GCA_000056065.1,ychF,Ribosome-binding ATPase YchF,1718716,1719817,-1,scaffold_1,1791,CDS,11,GCA_000056065.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00103__1__1448,TIGR00103,GCA_000056065.1,-,Nucleoid-associated protein,1405662,1405992,-1,scaffold_1,1448,CDS,11,GCA_000056065.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00105__1__310,TIGR00105,GCA_000056065.1,rpmE2,50S ribosomal protein L31 type B,304788,305040,1,scaffold_1,310,CDS,11,GCA_000056065.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00115__1__706,TIGR00115,GCA_000056065.1,tig,Trigger factor,668841,670161,1,scaffold_1,706,CDS,11,GCA_000056065.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00116__1__1181,TIGR00116,GCA_000056065.1,tsf,Elongation factor Ts,1148806,1149835,-1,scaffold_1,1181,CDS,11,GCA_000056065.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00121__1__830,TIGR00121,GCA_000056065.1,birA,Bifunctional ligase/repressor BirA,798597,799263,1,scaffold_1,830,CDS,11,GCA_000056065.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00133__1__412,TIGR00133,GCA_000056065.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,397164,398595,1,scaffold_1,412,CDS,11,GCA_000056065.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00135__1__410,TIGR00135,GCA_000056065.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,395411,395717,1,scaffold_1,410,CDS,11,GCA_000056065.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00150__1__576,TIGR00150,GCA_000056065.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,548016,548502,1,scaffold_1,576,CDS,11,GCA_000056065.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00152__1__1338,TIGR00152,GCA_000056065.1,coaE,Dephospho-CoA kinase,1303283,1303868,-1,scaffold_1,1338,CDS,11,GCA_000056065.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00157__1__1241,TIGR00157,GCA_000056065.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1209672,1210566,-1,scaffold_1,1241,CDS,11,GCA_000056065.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00158__1__11,TIGR00158,GCA_000056065.1,rplI,50S ribosomal protein L9,12596,13052,1,scaffold_1,11,CDS,11,GCA_000056065.1__arts_core__TIGR00158,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00165__1__9,TIGR00165,GCA_000056065.1,rpsR,30S ribosomal protein S18,10175,10412,1,scaffold_1,9,CDS,11,GCA_000056065.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00166__1__7,TIGR00166,GCA_000056065.1,rpsF,30S ribosomal protein S6,9239,9533,1,scaffold_1,7,CDS,11,GCA_000056065.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00168__1__1330,TIGR00168,GCA_000056065.1,infC,Translation initiation factor IF-3,1294680,1295202,-1,scaffold_1,1330,CDS,11,GCA_000056065.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00174__1__1304,TIGR00174,GCA_000056065.1,miaA,tRNA dimethylallyltransferase,1272002,1272929,-1,scaffold_1,1304,CDS,11,GCA_000056065.1__arts_core__TIGR00174,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00179__1__578,TIGR00179,GCA_000056065.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,549234,550128,1,scaffold_1,578,CDS,11,GCA_000056065.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00180__1__1793,TIGR00180,11842,spo0J,Stage 0 sporulation protein J,1720149,1721040,-1,scaffold_1,1793,CDS,11,GCA_000056065.1__arts_core__TIGR00180,True,False,False,GCA_000056065.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000056065.1__TIGR00180__1__1795,TIGR00180,GCA_000056065.1,noc,Nucleoid occlusion protein,1721798,1722623,-1,scaffold_1,1795,CDS,11,GCA_000056065.1__arts_core__TIGR00180,True,False,False,GCA_000056065.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000056065.1__TIGR00186__1__1485,TIGR00186,GCA_000056065.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1433794,1434544,-1,scaffold_1,1485,CDS,11,GCA_000056065.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00188__1__1941,TIGR00188,GCA_000056065.1,rnpA,Ribonuclease P protein component,1864290,1864656,-1,scaffold_1,1941,CDS,11,GCA_000056065.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00191__1__1553,TIGR00191,GCA_000056065.1,thrB_2,Homoserine kinase,1496783,1497647,-1,scaffold_1,1553,CDS,11,GCA_000056065.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00194__1__744,TIGR00194,GCA_000056065.1,uvrC,UvrABC system protein C,707983,709786,1,scaffold_1,744,CDS,11,GCA_000056065.1__arts_core__TIGR00194,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00196__1__1377,TIGR00196,GCA_000056065.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1338272,1339139,-1,scaffold_1,1377,CDS,11,GCA_000056065.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00218__1__52,TIGR00218,GCA_000056065.1,manA,Mannose-6-phosphate isomerase ManA,51009,51978,1,scaffold_1,52,CDS,11,GCA_000056065.1__arts_core__TIGR00218,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00219__1__660,TIGR00219,GCA_000056065.1,mreC,Cell shape-determining protein MreC,623366,624218,1,scaffold_1,660,CDS,11,GCA_000056065.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00220__1__275,TIGR00220,GCA_000056065.1,mscL,Large-conductance mechanosensitive channel,270701,271178,1,scaffold_1,275,CDS,11,GCA_000056065.1__arts_core__TIGR00220,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00233__1__292,TIGR00233,GCA_000056065.1,trpS2,Tryptophan--tRNA ligase 2,284780,285806,1,scaffold_1,292,CDS,11,GCA_000056065.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00234__1__224,TIGR00234,GCA_000056065.1,tyrS,Tyrosine--tRNA ligase,219424,220690,1,scaffold_1,224,CDS,11,GCA_000056065.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00237__1__1257,TIGR00237,GCA_000056065.1,xseA,Exodeoxyribonuclease 7 large subunit,1224123,1225494,-1,scaffold_1,1257,CDS,11,GCA_000056065.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00250__1__1419,TIGR00250,GCA_000056065.1,yrrK,Putative pre-16S rRNA nuclease,1376738,1377167,-1,scaffold_1,1419,CDS,11,GCA_000056065.1__arts_core__TIGR00250,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00256__1__808,TIGR00256,GCA_000056065.1,dtd,D-aminoacyl-tRNA deacylase,778556,778994,1,scaffold_1,808,CDS,11,GCA_000056065.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00257__1__538,TIGR00257,GCA_000056065.1,yigZ,IMPACT family member YigZ,511956,512616,-1,scaffold_1,538,CDS,11,GCA_000056065.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00281__1__771,TIGR00281,GCA_000056065.1,scpB,Segregation and condensation protein B,734631,735234,1,scaffold_1,771,CDS,11,GCA_000056065.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00302__1__1275,TIGR00302,GCA_000056065.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1240360,1240609,-1,scaffold_1,1275,CDS,11,GCA_000056065.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00337__1__308,TIGR00337,GCA_000056065.1,pyrG,CTP synthase,301678,303298,1,scaffold_1,308,CDS,11,GCA_000056065.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00344__1__1421,TIGR00344,GCA_000056065.1,alaS,Alanine--tRNA ligase,1377489,1380123,-1,scaffold_1,1421,CDS,11,GCA_000056065.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00355__1__1269,TIGR00355,GCA_000056065.1,purH,Bifunctional purine biosynthesis protein PurH,1232841,1234383,-1,scaffold_1,1269,CDS,11,GCA_000056065.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00357__1__1723,TIGR00357,GCA_000056065.1,msrB,Peptide methionine sulfoxide reductase MsrB,1649159,1649585,-1,scaffold_1,1723,CDS,11,GCA_000056065.1__arts_core__TIGR00357,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00362__1__1,TIGR00362,GCA_000056065.1,dnaA,Chromosomal replication initiator protein DnaA,322,1687,1,scaffold_1,1,CDS,11,GCA_000056065.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00382__1__707,TIGR00382,GCA_000056065.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,670312,671566,1,scaffold_1,707,CDS,11,GCA_000056065.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00392__1__677,TIGR00392,GCA_000056065.1,ileS,Isoleucine--tRNA ligase,638487,641283,1,scaffold_1,677,CDS,11,GCA_000056065.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00396__1__1389,TIGR00396,GCA_000056065.1,leuS,Leucine--tRNA ligase,1348307,1350722,-1,scaffold_1,1389,CDS,11,GCA_000056065.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00398__1__296,TIGR00398,GCA_000056065.1,metG,Methionine--tRNA ligase,290069,292052,1,scaffold_1,296,CDS,11,GCA_000056065.1__arts_core__TIGR00398,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00401__1__603,TIGR00401,GCA_000056065.1,msrA,Peptide methionine sulfoxide reductase MsrA,571234,571762,1,scaffold_1,603,CDS,11,GCA_000056065.1__arts_core__TIGR00401,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00409__1__1175,TIGR00409,GCA_000056065.1,proS,Proline--tRNA ligase,1142843,1144541,-1,scaffold_1,1175,CDS,11,GCA_000056065.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00414__1__1639,TIGR00414,GCA_000056065.1,serS,Serine--tRNA ligase,1580697,1582005,-1,scaffold_1,1639,CDS,11,GCA_000056065.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00416__1__1529,TIGR00416,GCA_000056065.1,radA,DNA repair protein RadA,1475149,1476526,-1,scaffold_1,1529,CDS,11,GCA_000056065.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00418__1__1334,TIGR00418,GCA_000056065.1,thrS,Threonine--tRNA ligase,1298298,1300230,-1,scaffold_1,1334,CDS,11,GCA_000056065.1__arts_core__TIGR00418,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00419__1__569,TIGR00419,GCA_000056065.1,tpiA,Triosephosphate isomerase,542957,543716,1,scaffold_1,569,CDS,11,GCA_000056065.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00422__1__655,TIGR00422,GCA_000056065.1,valS,Valine--tRNA ligase,616950,619590,1,scaffold_1,655,CDS,11,GCA_000056065.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00431__1__1167,TIGR00431,GCA_000056065.1,truB,tRNA pseudouridine synthase B,1132243,1133140,-1,scaffold_1,1167,CDS,11,GCA_000056065.1__arts_core__TIGR00431,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00435__1__1487,TIGR00435,GCA_000056065.1,cysS,Cysteine--tRNA ligase,1434966,1436391,-1,scaffold_1,1487,CDS,11,GCA_000056065.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00442__1__809,TIGR00442,GCA_000056065.1,hisS,Histidine--tRNA ligase,779277,780564,1,scaffold_1,809,CDS,11,GCA_000056065.1__arts_core__TIGR00442,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00447__1__316,TIGR00447,GCA_000056065.1,pth,Peptidyl-tRNA hydrolase,310576,311134,1,scaffold_1,316,CDS,11,GCA_000056065.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00456__1__737,TIGR00456,GCA_000056065.1,argS,Arginine--tRNA ligase,699214,700912,1,scaffold_1,737,CDS,11,GCA_000056065.1__arts_core__TIGR00456,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00459__1__810,TIGR00459,GCA_000056065.1,aspS,Aspartate--tRNA ligase,780579,782424,1,scaffold_1,810,CDS,11,GCA_000056065.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00464__1__1491,TIGR00464,GCA_000056065.1,gltX,Glutamate--tRNA ligase,1439736,1441239,-1,scaffold_1,1491,CDS,11,GCA_000056065.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00468__1__1315,TIGR00468,GCA_000056065.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1283031,1284081,-1,scaffold_1,1315,CDS,11,GCA_000056065.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00472__1__1314,TIGR00472,GCA_000056065.1,pheT,Phenylalanine--tRNA ligase beta subunit,1280620,1283032,-1,scaffold_1,1314,CDS,11,GCA_000056065.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00479__1__415,TIGR00479,GCA_000056065.1,-,putative RNA methyltransferase,400342,401698,1,scaffold_1,415,CDS,11,GCA_000056065.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00479__1__497,TIGR00479,GCA_000056065.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,475828,477211,-1,scaffold_1,497,CDS,11,GCA_000056065.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00481__1__386,TIGR00481,GCA_000056065.1,-,hypothetical protein,369355,369847,1,scaffold_1,386,CDS,11,GCA_000056065.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00484__1__345,TIGR00484,GCA_000056065.1,fusA,Elongation factor G,344135,346220,1,scaffold_1,345,CDS,11,GCA_000056065.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00485__1__705,TIGR00485,GCA_000056065.1,tuf,Elongation factor Tu,667467,668658,1,scaffold_1,705,CDS,11,GCA_000056065.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00486__1__1072,TIGR00486,GCA_000056065.1,-,GTP cyclohydrolase 1 type 2,1030993,1031791,-1,scaffold_1,1072,CDS,11,GCA_000056065.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00487__1__1169,TIGR00487,GCA_000056065.1,infB,Translation initiation factor IF-2,1133565,1136043,-1,scaffold_1,1169,CDS,11,GCA_000056065.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00496__1__1179,TIGR00496,GCA_000056065.1,frr,Ribosome-recycling factor,1147374,1147932,-1,scaffold_1,1179,CDS,11,GCA_000056065.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00499__1__327,TIGR00499,GCA_000056065.1,lysS,Lysine--tRNA ligase,324828,326334,1,scaffold_1,327,CDS,11,GCA_000056065.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00500__1__492,TIGR00500,GCA_000056065.1,map,Methionine aminopeptidase 1,471238,472066,1,scaffold_1,492,CDS,11,GCA_000056065.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00504__1__1038,TIGR00504,GCA_000056065.1,pcp,Pyrrolidone-carboxylate peptidase,993222,993834,-1,scaffold_1,1038,CDS,11,GCA_000056065.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00521__1__739,TIGR00521,GCA_000056065.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,701616,702816,1,scaffold_1,739,CDS,11,GCA_000056065.1__arts_core__TIGR00521,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00525__1__214,TIGR00525,GCA_000056065.1,folB,Dihydroneopterin aldolase,210197,210548,1,scaffold_1,214,CDS,11,GCA_000056065.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00544__1__546,TIGR00544,GCA_000056065.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,520272,521106,1,scaffold_1,546,CDS,11,GCA_000056065.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00560__1__534,TIGR00560,GCA_000056065.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,506930,507494,1,scaffold_1,534,CDS,11,GCA_000056065.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00563__1__1244,TIGR00563,GCA_000056065.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1213323,1214640,-1,scaffold_1,1244,CDS,11,GCA_000056065.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00575__1__408,TIGR00575,GCA_000056065.1,ligA,DNA ligase,392242,394258,1,scaffold_1,408,CDS,11,GCA_000056065.1__arts_core__TIGR00575,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00577__1__1339,TIGR00577,GCA_000056065.1,mutM,Formamidopyrimidine-DNA glycosylase,1303876,1304698,-1,scaffold_1,1339,CDS,11,GCA_000056065.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00580__1__317,TIGR00580,GCA_000056065.1,mfd,Transcription-repair-coupling factor,311150,314627,1,scaffold_1,317,CDS,11,GCA_000056065.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00593__1__1340,TIGR00593,GCA_000056065.1,polA,DNA polymerase I,1304708,1307369,-1,scaffold_1,1340,CDS,11,GCA_000056065.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00595__1__1246,TIGR00595,GCA_000056065.1,priA,Primosomal protein N,1215594,1217976,-1,scaffold_1,1246,CDS,11,GCA_000056065.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00613__1__1096,TIGR00613,GCA_000056065.1,recO,DNA repair protein RecO,1059461,1060211,-1,scaffold_1,1096,CDS,11,GCA_000056065.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00615__1__1447,TIGR00615,GCA_000056065.1,recR,Recombination protein RecR,1405061,1405661,-1,scaffold_1,1447,CDS,11,GCA_000056065.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00630__1__550,TIGR00630,GCA_000056065.1,uvrA,UvrABC system protein A,525284,528140,1,scaffold_1,550,CDS,11,GCA_000056065.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00631__1__549,TIGR00631,GCA_000056065.1,uvrB_2,UvrABC system protein B,523252,525295,1,scaffold_1,549,CDS,11,GCA_000056065.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00635__1__1427,TIGR00635,GCA_000056065.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1385877,1386888,-1,scaffold_1,1427,CDS,11,GCA_000056065.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00643__1__1226,TIGR00643,GCA_000056065.1,recG,ATP-dependent DNA helicase RecG,1195445,1197485,-1,scaffold_1,1226,CDS,11,GCA_000056065.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00647__1__557,TIGR00647,GCA_000056065.1,whiA,putative cell division protein WhiA,532796,533729,1,scaffold_1,557,CDS,11,GCA_000056065.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00651__1__575,TIGR00651,GCA_000056065.1,pta,Phosphate acetyltransferase,547016,548006,1,scaffold_1,575,CDS,11,GCA_000056065.1__arts_core__TIGR00651,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00653__1__1301,TIGR00653,GCA_000056065.1,glnA,Glutamine synthetase,1269273,1270611,-1,scaffold_1,1301,CDS,11,GCA_000056065.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00663__1__2,TIGR00663,GCA_000056065.1,dnaN,Beta sliding clamp,1867,2995,1,1,2,CDS,11,GCA_000056065.1__arts_core__TIGR00663,False,False,True,,TIGR00663,7.4e-93,308.1,cog,cog0592,,,,, +GCA_000056065.1__TIGR00665__1__12,TIGR00665,GCA_000056065.1,dnaC,Replicative DNA helicase,13075,14446,1,scaffold_1,12,CDS,11,GCA_000056065.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00690__1__1247,TIGR00690,GCA_000056065.1,rpoZ,DNA-directed RNA polymerase subunit omega,1218038,1218260,-1,scaffold_1,1247,CDS,11,GCA_000056065.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00732__1__1117,TIGR00732,GCA_000056065.1,dprA,DNA processing protein DprA,1079889,1080729,-1,scaffold_1,1117,CDS,11,GCA_000056065.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00753__1__523,TIGR00753,GCA_000056065.1,uppP,Undecaprenyl-diphosphatase,495535,496363,-1,scaffold_1,523,CDS,11,GCA_000056065.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00755__1__299,TIGR00755,GCA_000056065.1,rsmA,Ribosomal RNA small subunit methyltransferase A,293361,294252,1,scaffold_1,299,CDS,11,GCA_000056065.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__1121,TIGR00762,GCA_000056065.1,-,DegV domain-containing protein,1082752,1083598,-1,scaffold_1,1121,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__1134,TIGR00762,11842,-,DegV domain-containing protein,1094868,1095705,-1,scaffold_1,1134,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__64,TIGR00762,11842,-,DegV domain-containing protein,62450,63248,1,scaffold_1,64,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__923,TIGR00762,11842,-,DegV domain-containing protein,890483,890978,1,scaffold_1,923,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__924,TIGR00762,11842,degV,Protein DegV,890974,891364,1,scaffold_1,924,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00810__1__1619,TIGR00810,GCA_000056065.1,secG,putative protein-export membrane protein SecG,1560085,1560319,-1,scaffold_1,1619,CDS,11,GCA_000056065.1__arts_core__TIGR00810,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00855__1__1465,TIGR00855,GCA_000056065.1,rplL,50S ribosomal protein L7/L12,1421352,1421718,-1,scaffold_1,1465,CDS,11,GCA_000056065.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00871__1__1425,TIGR00871,GCA_000056065.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1383852,1385301,-1,scaffold_1,1425,CDS,11,GCA_000056065.1__arts_core__TIGR00871,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00877__1__1268,TIGR00877,GCA_000056065.1,purD,Phosphoribosylamine--glycine ligase,1231560,1232826,-1,scaffold_1,1268,CDS,11,GCA_000056065.1__arts_core__TIGR00877,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00878__1__1271,TIGR00878,GCA_000056065.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1234964,1236014,-1,scaffold_1,1271,CDS,11,GCA_000056065.1__arts_core__TIGR00878,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00922__1__1474,TIGR00922,GCA_000056065.1,nusG,Transcription termination/antitermination protein NusG,1428920,1429475,-1,scaffold_1,1474,CDS,11,GCA_000056065.1__arts_core__TIGR00922,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00952__1__702,TIGR00952,GCA_000056065.1,rpsO,30S ribosomal protein S15,664149,664419,1,scaffold_1,702,CDS,11,GCA_000056065.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00959__1__1209,TIGR00959,GCA_000056065.1,ffh,Signal recognition particle protein,1177130,1178561,-1,scaffold_1,1209,CDS,11,GCA_000056065.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00962__1__637,TIGR00962,GCA_000056065.1,atpA,ATP synthase subunit alpha,600266,601778,1,scaffold_1,637,CDS,11,GCA_000056065.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00963__1__542,TIGR00963,GCA_000056065.1,secA,Protein translocase subunit SecA,515417,517820,1,scaffold_1,542,CDS,11,GCA_000056065.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00964__1__1475,TIGR00964,GCA_000056065.1,secE,Protein translocase subunit SecE,1429566,1429737,-1,scaffold_1,1475,CDS,11,GCA_000056065.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00967__1__366,TIGR00967,GCA_000056065.1,secY,Protein translocase subunit SecY,355593,356889,1,scaffold_1,366,CDS,11,GCA_000056065.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00981__1__343,TIGR00981,GCA_000056065.1,rpsL,30S ribosomal protein S12,343208,343616,1,scaffold_1,343,CDS,11,GCA_000056065.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01009__1__353,TIGR01009,GCA_000056065.1,rpsC,30S ribosomal protein S3,350041,350713,1,scaffold_1,353,CDS,11,GCA_000056065.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01011__1__1182,TIGR01011,GCA_000056065.1,rpsB,30S ribosomal protein S2,1149897,1150659,-1,scaffold_1,1182,CDS,11,GCA_000056065.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01017__1__650,TIGR01017,GCA_000056065.1,rpsD,30S ribosomal protein S4,610876,611488,-1,scaffold_1,650,CDS,11,GCA_000056065.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01021__1__363,TIGR01021,GCA_000056065.1,rpsE,30S ribosomal protein S5,354423,354936,1,scaffold_1,363,CDS,11,GCA_000056065.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01023__1__1310,TIGR01023,11842,rpmGA,50S ribosomal protein L33 1,1274992,1275142,-1,scaffold_1,1310,CDS,11,GCA_000056065.1__arts_core__TIGR01023,True,True,False,GCA_000056065.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000056065.1__TIGR01023__1__1476,TIGR01023,11842,rpmG3,50S ribosomal protein L33 3,1429743,1429893,-1,scaffold_1,1476,CDS,11,GCA_000056065.1__arts_core__TIGR01023,True,True,False,GCA_000056065.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000056065.1__TIGR01024__1__1201,TIGR01024,GCA_000056065.1,rplS,50S ribosomal protein L19,1172222,1172570,-1,scaffold_1,1201,CDS,11,GCA_000056065.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01029__1__344,TIGR01029,GCA_000056065.1,rpsG,30S ribosomal protein S7,343631,344102,1,scaffold_1,344,CDS,11,GCA_000056065.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01030__1__1942,TIGR01030,GCA_000056065.1,rpmH,50S ribosomal protein L34,1864704,1864845,-1,scaffold_1,1942,CDS,11,GCA_000056065.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01031__1__750,TIGR01031,GCA_000056065.1,rpmF,50S ribosomal protein L32,715058,715250,1,scaffold_1,750,CDS,11,GCA_000056065.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01032__1__1328,TIGR01032,GCA_000056065.1,rplT,50S ribosomal protein L20,1294058,1294415,-1,scaffold_1,1328,CDS,11,GCA_000056065.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01034__1__1394,TIGR01034,GCA_000056065.1,metK,S-adenosylmethionine synthase,1354481,1355678,-1,scaffold_1,1394,CDS,11,GCA_000056065.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01039__1__639,TIGR01039,GCA_000056065.1,atpD,ATP synthase subunit beta,602770,604210,1,scaffold_1,639,CDS,11,GCA_000056065.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01044__1__352,TIGR01044,GCA_000056065.1,rplV,50S ribosomal protein L22,349674,350028,1,scaffold_1,352,CDS,11,GCA_000056065.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01049__1__346,TIGR01049,GCA_000056065.1,rpsJ,30S ribosomal protein S10,346606,346915,1,scaffold_1,346,CDS,11,GCA_000056065.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01050__1__351,TIGR01050,GCA_000056065.1,rpsS,30S ribosomal protein S19,349377,349653,1,scaffold_1,351,CDS,11,GCA_000056065.1__arts_core__TIGR01050,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01051__1__1116,TIGR01051,GCA_000056065.1,topA,DNA topoisomerase 1,1077579,1079763,-1,scaffold_1,1116,CDS,11,GCA_000056065.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01059__1__5,TIGR01059,GCA_000056065.1,gyrB,DNA gyrase subunit B,4578,6540,1,scaffold_1,5,CDS,11,GCA_000056065.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000056065.1__TIGR01060__1__1135,TIGR01060,GCA_000056065.1,eno,Enolase,1096011,1097289,1,scaffold_1,1135,CDS,11,GCA_000056065.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01063__1__6,TIGR01063,GCA_000056065.1,gyrA,DNA gyrase subunit A,6552,9024,1,scaffold_1,6,CDS,11,GCA_000056065.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000056065.1__TIGR01064__1__763,TIGR01064,GCA_000056065.1,pyk,Pyruvate kinase,728461,730231,1,scaffold_1,763,CDS,11,GCA_000056065.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01066__1__377,TIGR01066,GCA_000056065.1,rplM,50S ribosomal protein L13,363724,364168,1,scaffold_1,377,CDS,11,GCA_000056065.1__arts_core__TIGR01066,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01067__1__357,TIGR01067,GCA_000056065.1,rplN,50S ribosomal protein L14,351658,352027,1,scaffold_1,357,CDS,11,GCA_000056065.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01071__1__365,TIGR01071,GCA_000056065.1,rplO,50S ribosomal protein L15,355153,355594,1,scaffold_1,365,CDS,11,GCA_000056065.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01072__1__309,TIGR01072,GCA_000056065.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,303417,304689,1,scaffold_1,309,CDS,11,GCA_000056065.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01073__1__407,TIGR01073,GCA_000056065.1,pcrA,ATP-dependent DNA helicase PcrA,389970,392232,1,scaffold_1,407,CDS,11,GCA_000056065.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01079__1__358,TIGR01079,GCA_000056065.1,rplX,50S ribosomal protein L24,352043,352283,1,scaffold_1,358,CDS,11,GCA_000056065.1__arts_core__TIGR01079,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01082__1__1348,TIGR01082,GCA_000056065.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1311707,1313027,-1,scaffold_1,1348,CDS,11,GCA_000056065.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01083__1__902,TIGR01083,GCA_000056065.1,pdg,Ultraviolet N-glycosylase/AP lyase,866383,867013,1,scaffold_1,902,CDS,11,GCA_000056065.1__arts_core__TIGR01083,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01087__1__669,TIGR01087,GCA_000056065.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,630397,631780,1,scaffold_1,669,CDS,11,GCA_000056065.1__arts_core__TIGR01087,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01091__1__632,TIGR01091,GCA_000056065.1,upp,Uracil phosphoribosyltransferase,597440,598070,1,scaffold_1,632,CDS,11,GCA_000056065.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01128__1__700,TIGR01128,GCA_000056065.1,yqeN,putative protein YqeN,662612,663602,1,scaffold_1,700,CDS,11,GCA_000056065.1__arts_core__TIGR01128,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01131__1__633,TIGR01131,GCA_000056065.1,atpB,ATP synthase subunit a,598179,598899,1,scaffold_1,633,CDS,11,GCA_000056065.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01134__1__1272,TIGR01134,GCA_000056065.1,purF,Amidophosphoribosyltransferase,1236010,1237489,-1,scaffold_1,1272,CDS,11,GCA_000056065.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01135__1__433,TIGR01135,GCA_000056065.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],413882,415694,1,scaffold_1,433,CDS,11,GCA_000056065.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01144__1__635,TIGR01144,GCA_000056065.1,atpF,ATP synthase subunit b,599195,599702,1,scaffold_1,635,CDS,11,GCA_000056065.1__arts_core__TIGR01144,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01145__1__636,TIGR01145,GCA_000056065.1,atpH_2,ATP synthase subunit delta,599701,600244,1,scaffold_1,636,CDS,11,GCA_000056065.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01146__1__638,TIGR01146,GCA_000056065.1,atpG,ATP synthase gamma chain,601788,602751,1,scaffold_1,638,CDS,11,GCA_000056065.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01161__1__1278,TIGR01161,GCA_000056065.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1242998,1244123,-1,scaffold_1,1278,CDS,11,GCA_000056065.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01162__1__1279,TIGR01162,GCA_000056065.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1244112,1244604,-1,scaffold_1,1279,CDS,11,GCA_000056065.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01163__1__467,TIGR01163,GCA_000056065.1,rpe,Ribulose-phosphate 3-epimerase,445907,446558,1,scaffold_1,467,CDS,11,GCA_000056065.1__arts_core__TIGR01163,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01164__1__354,TIGR01164,GCA_000056065.1,rplP,50S ribosomal protein L16,350712,351156,1,scaffold_1,354,CDS,11,GCA_000056065.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01169__1__1472,TIGR01169,GCA_000056065.1,rplA,50S ribosomal protein L1,1427590,1428286,-1,scaffold_1,1472,CDS,11,GCA_000056065.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01171__1__350,TIGR01171,GCA_000056065.1,rplB,50S ribosomal protein L2,348523,349360,1,scaffold_1,350,CDS,11,GCA_000056065.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01216__1__640,TIGR01216,GCA_000056065.1,atpC,ATP synthase epsilon chain,604221,604662,1,scaffold_1,640,CDS,11,GCA_000056065.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01260__1__634,TIGR01260,GCA_000056065.1,atpH_1,ATP synthase subunit c,598917,599142,1,scaffold_1,634,CDS,11,GCA_000056065.1__arts_core__TIGR01260,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01280__1__1256,TIGR01280,GCA_000056065.1,xseB,Exodeoxyribonuclease 7 small subunit,1223891,1224131,-1,scaffold_1,1256,CDS,11,GCA_000056065.1__arts_core__TIGR01280,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01308__1__364,TIGR01308,GCA_000056065.1,rpmD,50S ribosomal protein L30,354947,355133,1,scaffold_1,364,CDS,11,GCA_000056065.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01369__1__1842,TIGR01369,GCA_000056065.1,carB_9,Carbamoyl-phosphate synthase large chain,1768786,1770661,-1,scaffold_1,1842,CDS,11,GCA_000056065.1__arts_core__TIGR01369,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01378__1__1240,TIGR01378,GCA_000056065.1,thiN,Thiamine pyrophosphokinase,1208959,1209643,-1,scaffold_1,1240,CDS,11,GCA_000056065.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01389__1__742,TIGR01389,GCA_000056065.1,recQ,ATP-dependent DNA helicase RecQ,704945,706715,1,scaffold_1,742,CDS,11,GCA_000056065.1__arts_core__TIGR01389,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01391__1__1093,TIGR01391,GCA_000056065.1,dnaG,DNA primase,1054356,1056195,-1,scaffold_1,1093,CDS,11,GCA_000056065.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01393__1__1152,TIGR01393,GCA_000056065.1,lepA,Elongation factor 4,1114523,1116362,-1,scaffold_1,1152,CDS,11,GCA_000056065.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01417__1__512,TIGR01417,GCA_000056065.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,487286,489014,1,scaffold_1,512,CDS,11,GCA_000056065.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01430__1__1295,TIGR01430,GCA_000056065.1,add,Adenosine deaminase,1262376,1263369,-1,scaffold_1,1295,CDS,11,GCA_000056065.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01448__1__687,TIGR01448,GCA_000056065.1,recD2,ATP-dependent RecD-like DNA helicase,647109,649500,1,scaffold_1,687,CDS,11,GCA_000056065.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01455__1__586,TIGR01455,GCA_000056065.1,glmM,Phosphoglucosamine mutase,555798,557151,1,scaffold_1,586,CDS,11,GCA_000056065.1__arts_core__TIGR01455,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01496__1__217,TIGR01496,GCA_000056065.1,-,hypothetical protein,212928,214020,1,scaffold_1,217,CDS,11,GCA_000056065.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01498__1__215,TIGR01498,GCA_000056065.1,folE,GTP cyclohydrolase 1,210544,211618,1,scaffold_1,215,CDS,11,GCA_000056065.1__arts_core__TIGR01498,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01513__1__276,TIGR01513,GCA_000056065.1,pncB,Nicotinate phosphoribosyltransferase,271257,272781,-1,scaffold_1,276,CDS,11,GCA_000056065.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01534__1__567,TIGR01534,GCA_000056065.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,540614,541631,1,scaffold_1,567,CDS,11,GCA_000056065.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000056065.1__TIGR01632__1__1473,TIGR01632,GCA_000056065.1,rplK,50S ribosomal protein L11,1428369,1428795,-1,scaffold_1,1473,CDS,11,GCA_000056065.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01736__1__1273,TIGR01736,GCA_000056065.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1237464,1239687,-1,scaffold_1,1273,CDS,11,GCA_000056065.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01771__1__104,TIGR01771,GCA_000056065.1,ldh,L-lactate dehydrogenase,99904,100828,-1,scaffold_1,104,CDS,11,GCA_000056065.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01951__1__1259,TIGR01951,GCA_000056065.1,nusB,Transcription antitermination protein NusB,1226390,1226789,-1,scaffold_1,1259,CDS,11,GCA_000056065.1__arts_core__TIGR01951,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01953__1__1172,TIGR01953,GCA_000056065.1,nusA,Transcription termination/antitermination protein NusA,1136667,1137888,-1,scaffold_1,1172,CDS,11,GCA_000056065.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01980__1__1602,TIGR01980,GCA_000056065.1,-,hypothetical protein,1546588,1548016,-1,scaffold_1,1602,CDS,11,GCA_000056065.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01981__1__1605,TIGR01981,GCA_000056065.1,-,hypothetical protein,1549638,1550802,-1,scaffold_1,1605,CDS,11,GCA_000056065.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01994__1__1603,TIGR01994,GCA_000056065.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1548016,1548457,-1,scaffold_1,1603,CDS,11,GCA_000056065.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02012__1__535,TIGR02012,GCA_000056065.1,recA,Protein RecA,507699,508695,1,scaffold_1,535,CDS,11,GCA_000056065.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02013__1__338,TIGR02013,GCA_000056065.1,rpoB,DNA-directed RNA polymerase subunit beta,334509,338184,1,scaffold_1,338,CDS,11,GCA_000056065.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.7,cog,cog0085,,,,, +GCA_000056065.1__TIGR02027__1__371,TIGR02027,GCA_000056065.1,rpoA,DNA-directed RNA polymerase subunit alpha,358818,359757,1,scaffold_1,371,CDS,11,GCA_000056065.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02191__1__1217,TIGR02191,GCA_000056065.1,rnc,Ribonuclease 3,1185313,1186009,-1,scaffold_1,1217,CDS,11,GCA_000056065.1__arts_core__TIGR02191,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02225__1__768,TIGR02225,GCA_000056065.1,xerD_1,Tyrosine recombinase XerD,732657,733554,1,scaffold_1,768,CDS,11,GCA_000056065.1__arts_core__TIGR02225,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02227__1__1069,TIGR02227,GCA_000056065.1,spsB,Signal peptidase IB,1028498,1029065,1,scaffold_1,1069,CDS,11,GCA_000056065.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02273__1__1207,TIGR02273,GCA_000056065.1,rimM,Ribosome maturation factor RimM,1176198,1176702,-1,scaffold_1,1207,CDS,11,GCA_000056065.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02348__1__1431,TIGR02348,GCA_000056065.1,groL,60 kDa chaperonin,1392353,1393967,-1,scaffold_1,1431,CDS,11,GCA_000056065.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02349__1__1153,TIGR02349,GCA_000056065.1,dnaJ,Chaperone protein DnaJ,1116483,1117620,-1,scaffold_1,1153,CDS,11,GCA_000056065.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02350__1__1154,TIGR02350,GCA_000056065.1,dnaK,Chaperone protein DnaK,1117702,1119547,-1,scaffold_1,1154,CDS,11,GCA_000056065.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02386__1__339,TIGR02386,GCA_000056065.1,rpoC,DNA-directed RNA polymerase subunit beta,338199,341865,1,scaffold_1,339,CDS,11,GCA_000056065.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02393__1__1092,TIGR02393,GCA_000056065.1,sigA_2,RNA polymerase sigma factor SigA,1053266,1054385,-1,scaffold_1,1092,CDS,11,GCA_000056065.1__arts_core__TIGR02393,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02487__1__187,TIGR02487,GCA_000056065.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,180997,183208,1,scaffold_1,187,CDS,11,GCA_000056065.1__arts_core__TIGR02487,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02729__1__745,TIGR02729,GCA_000056065.1,obg,GTPase Obg,709923,711177,1,scaffold_1,745,CDS,11,GCA_000056065.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03156__1__1755,TIGR03156,GCA_000056065.1,hflX,GTPase HflX,1681367,1682648,1,scaffold_1,1755,CDS,11,GCA_000056065.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03263__1__1248,TIGR03263,GCA_000056065.1,gmk_1,Guanylate kinase,1218261,1218876,-1,scaffold_1,1248,CDS,11,GCA_000056065.1__arts_core__TIGR03263,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03284__1__717,TIGR03284,GCA_000056065.1,thyA,Thymidylate synthase,678300,679257,1,scaffold_1,717,CDS,11,GCA_000056065.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03534__1__630,TIGR03534,GCA_000056065.1,prmC_1,Release factor glutamine methyltransferase,595503,596346,1,scaffold_1,630,CDS,11,GCA_000056065.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03594__1__777,TIGR03594,GCA_000056065.1,der,GTPase Der,739487,740795,1,scaffold_1,777,CDS,11,GCA_000056065.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03625__1__347,TIGR03625,GCA_000056065.1,rplC,50S ribosomal protein L3,346940,347570,1,scaffold_1,347,CDS,11,GCA_000056065.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03631__1__369,TIGR03631,GCA_000056065.1,rpsM,30S ribosomal protein S13,358006,358357,1,scaffold_1,369,CDS,11,GCA_000056065.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03632__1__370,TIGR03632,GCA_000056065.1,rpsK,30S ribosomal protein S11,358385,358775,1,scaffold_1,370,CDS,11,GCA_000056065.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03635__1__356,TIGR03635,GCA_000056065.1,rpsQ,30S ribosomal protein S17,351361,351628,1,scaffold_1,356,CDS,11,GCA_000056065.1__arts_core__TIGR03635,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03654__1__361,TIGR03654,GCA_000056065.1,rplF,50S ribosomal protein L6,353490,354021,1,scaffold_1,361,CDS,11,GCA_000056065.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03705__1__460,TIGR03705,GCA_000056065.1,ppk,Polyphosphate kinase,439501,441667,1,scaffold_1,460,CDS,11,GCA_000056065.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03725__1__1437,TIGR03725,GCA_000056065.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1398961,1399684,-1,scaffold_1,1437,CDS,11,GCA_000056065.1__arts_core__TIGR03725,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03953__1__348,TIGR03953,GCA_000056065.1,rplD,50S ribosomal protein L4,347584,348202,1,scaffold_1,348,CDS,11,GCA_000056065.1__arts_core__TIGR03953,False,False,False,,,,,,,,,,, +GCA_000182835.1__Cpn10__1__1529,Cpn10,GCA_000182835.1,groS,10 kDa chaperonin,1583082,1583367,-1,scaffold_1,1529,CDS,11,GCA_000182835.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000182835.1__GrpE__1__1255,GrpE,GCA_000182835.1,grpE,Protein GrpE,1297298,1297916,-1,scaffold_1,1255,CDS,11,GCA_000182835.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000182835.1__Methyltransf_5__1__662,Methyltransf_5,GCA_000182835.1,rsmH,Ribosomal RNA small subunit methyltransferase H,671404,672349,1,scaffold_1,662,CDS,11,GCA_000182835.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,,,, +GCA_000182835.1__PF00044.19__1__564,PF00044.19,GCA_000182835.1,,,584371,585388,1,1,564,,,,False,False,True,,Gp_dh_N,5.3e-54,179.5,lcl,564,,,,, +GCA_000182835.1__PF00185.19__1__1720,PF00185.19,GCA_000182835.1,,,1774927,1775929,-1,1,1720,,,,False,False,True,,OTCace,3.6e-53,176.9,lcl,1720,,,,, +GCA_000182835.1__PF00185.19__1__931,PF00185.19,GCA_000182835.1,,,966778,967789,1,1,931,,,,False,False,True,,OTCace,1.6e-34,116.3,lcl,931,,,,, +GCA_000182835.1__PF00204.20__1__5,PF00204.20,GCA_000182835.1,,,4361,6323,1,1,5,,,,False,False,True,,DNA_gyraseB,4.4e-61,202.2,cog,cog0187,,,,, +GCA_000182835.1__PF00204.20__1__886,PF00204.20,GCA_000182835.1,,,908124,910056,1,1,886,,,,False,False,True,,DNA_gyraseB,5.3e-53,176.0,cog,cog0187,,,,, +GCA_000182835.1__PF00227.21__1__1148,PF00227.21,GCA_000182835.1,,,1191616,1192150,-1,1,1148,,,,False,False,True,,Proteasome,1.9e-22,76.6,cog,cog5405,,,,, +GCA_000182835.1__PF00364.17__1__818,PF00364.17,GCA_000182835.1,,,847208,847691,1,1,818,,,,False,False,True,,Biotin_lipoyl,1.1e-24,83.1,cog,cog0511,,,,, +GCA_000182835.1__PF00521.15__1__6,PF00521.15,GCA_000182835.1,,,6335,8807,1,1,6,,,,False,False,True,,DNA_topoisoIV,2.3e-156,518.1,cog,cog0188,,,,, +GCA_000182835.1__PF00521.15__1__887,PF00521.15,GCA_000182835.1,,,910070,912554,1,1,887,,,,False,False,True,,DNA_topoisoIV,9e-149,493.1,cog,cog0188,,,,, +GCA_000182835.1__PF01039.17__1__821,PF01039.17,GCA_000182835.1,,,849497,850346,1,1,821,,,,False,False,True,,Carboxyl_trans,3.1e-19,65.9,cog,cog0777,,,,, +GCA_000182835.1__PF01039.17__1__822,PF01039.17,GCA_000182835.1,,,850338,851106,1,1,822,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,,,, +GCA_000182835.1__PGK__1__565,PGK,GCA_000182835.1,pgk,Phosphoglycerate kinase,585483,586695,1,scaffold_1,565,CDS,11,GCA_000182835.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000182835.1__RF0007__1__1165,RF0007,GCA_000182835.1,,,1210613,1212386,-1,1,1165,,,,False,False,True,,ABC_efflux,1.1e-87,291.7,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__1291,RF0007,GCA_000182835.1,,,1333698,1335495,-1,1,1291,,,,False,False,True,,ABC_efflux,1.1e-77,258.7,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__1904,RF0007,GCA_000182835.1,,,1947730,1949575,-1,1,1904,,,,False,False,True,,ABC_efflux,6.3e-77,256.2,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__989,RF0007,GCA_000182835.1,,,1024132,1025890,-1,1,989,,,,False,False,True,,ABC_efflux,7.3e-76,252.7,cog,cog1132,,,,, +GCA_000182835.1__RF0155__1__1902,RF0155,GCA_000182835.1,,,1945717,1946926,-1,1,1902,,,,False,False,True,,vanS,1.4e-74,248.2,lcl,1902,,,,, +GCA_000182835.1__Ribosomal_L10__1__1560,Ribosomal_L10,GCA_000182835.1,rplJ,50S ribosomal protein L10,1609088,1609598,-1,scaffold_1,1560,CDS,11,GCA_000182835.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_L23__1__340,Ribosomal_L23,GCA_000182835.1,rplW,50S ribosomal protein L23,358080,358377,1,scaffold_1,340,CDS,11,GCA_000182835.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_S8__1__351,Ribosomal_S8,GCA_000182835.1,rpsH,30S ribosomal protein S8,362946,363345,1,scaffold_1,351,CDS,11,GCA_000182835.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_S9__1__369,Ribosomal_S9,GCA_000182835.1,rpsI,30S ribosomal protein S9,374059,374455,1,scaffold_1,369,CDS,11,GCA_000182835.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00001__1__1430,TIGR00001,GCA_000182835.1,rpmI,50S ribosomal protein L35,1475367,1475568,-1,scaffold_1,1430,CDS,11,GCA_000182835.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00008__1__359,TIGR00008,GCA_000182835.1,infA,Translation initiation factor IF-1,367507,367729,1,scaffold_1,359,CDS,11,GCA_000182835.1__arts_core__TIGR00008,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00009__1__1325,TIGR00009,GCA_000182835.1,rpmB,50S ribosomal protein L28,1376175,1376361,1,scaffold_1,1325,CDS,11,GCA_000182835.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00012__1__346,TIGR00012,GCA_000182835.1,rpmC,50S ribosomal protein L29,361024,361222,1,scaffold_1,346,CDS,11,GCA_000182835.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00016__1__609,TIGR00016,GCA_000182835.1,ackA,Acetate kinase,622546,623734,1,scaffold_1,609,CDS,11,GCA_000182835.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00017__1__767,TIGR00017,GCA_000182835.1,cmk,Cytidylate kinase,783223,783856,1,scaffold_1,767,CDS,11,GCA_000182835.1__arts_core__TIGR00017,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00019__1__624,TIGR00019,GCA_000182835.1,prfA,Peptide chain release factor 1,638605,639691,1,scaffold_1,624,CDS,11,GCA_000182835.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00020__1__542,TIGR00020,GCA_000182835.1,prfB,Peptide chain release factor 2,563273,564272,1,scaffold_1,542,CDS,11,GCA_000182835.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00021__1__467,TIGR00021,GCA_000182835.1,rpiA,Ribose-5-phosphate isomerase A,483237,483930,1,scaffold_1,467,CDS,11,GCA_000182835.1__arts_core__TIGR00021,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00029__1__699,TIGR00029,GCA_000182835.1,rpsT,30S ribosomal protein S20,710644,710896,-1,scaffold_1,699,CDS,11,GCA_000182835.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00036__1__1029,TIGR00036,GCA_000182835.1,dapB,4-hydroxy-tetrahydrodipicolinate reductase,1060134,1060914,-1,scaffold_1,1029,CDS,11,GCA_000182835.1__arts_core__TIGR00036,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00038__1__1349,TIGR00038,ND02,efp_1,Elongation factor P,1397797,1398364,-1,scaffold_1,1349,CDS,11,GCA_000182835.1__arts_core__TIGR00038,True,False,False,GCA_000182835.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000182835.1__TIGR00038__1__1759,TIGR00038,ND02,efp_2,Elongation factor P,1812662,1813220,-1,scaffold_1,1759,CDS,11,GCA_000182835.1__arts_core__TIGR00038,True,False,False,GCA_000182835.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000182835.1__TIGR00042__1__1511,TIGR00042,GCA_000182835.1,-,dITP/XTP pyrophosphatase,1561512,1562133,-1,scaffold_1,1511,CDS,11,GCA_000182835.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00043__1__1133,TIGR00043,GCA_000182835.1,ybeY,Endoribonuclease YbeY,1178640,1179165,-1,scaffold_1,1133,CDS,11,GCA_000182835.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00055__1__1279,TIGR00055,GCA_000182835.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1324144,1324876,-1,scaffold_1,1279,CDS,11,GCA_000182835.1__arts_core__TIGR00055,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00057__1__626,TIGR00057,GCA_000182835.1,ywlC,Threonylcarbamoyl-AMP synthase,640525,641521,1,scaffold_1,626,CDS,11,GCA_000182835.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00059__1__363,TIGR00059,GCA_000182835.1,rplQ,50S ribosomal protein L17,369659,370043,1,scaffold_1,363,CDS,11,GCA_000182835.1__arts_core__TIGR00059,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00060__1__353,TIGR00060,GCA_000182835.1,rplR,50S ribosomal protein L18,363926,364286,1,scaffold_1,353,CDS,11,GCA_000182835.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00061__1__1352,TIGR00061,GCA_000182835.1,rplU,50S ribosomal protein L21,1399999,1400311,-1,scaffold_1,1352,CDS,11,GCA_000182835.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00062__1__1351,TIGR00062,GCA_000182835.1,rpmA,50S ribosomal protein L27,1399684,1399984,-1,scaffold_1,1351,CDS,11,GCA_000182835.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00065__1__670,TIGR00065,GCA_000182835.1,ftsZ,Cell division protein FtsZ,680677,682036,1,scaffold_1,670,CDS,11,GCA_000182835.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00071__1__367,TIGR00071,GCA_000182835.1,truA,tRNA pseudouridine synthase A,372709,373498,1,scaffold_1,367,CDS,11,GCA_000182835.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00077__1__912,TIGR00077,GCA_000182835.1,lspA,Lipoprotein signal peptidase,945698,946151,1,scaffold_1,912,CDS,11,GCA_000182835.1__arts_core__TIGR00077,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00079__1__689,TIGR00079,GCA_000182835.1,def2,Peptide deformylase 2,700081,700636,-1,scaffold_1,689,CDS,11,GCA_000182835.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00081__1__1364,TIGR00081,GCA_000182835.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1411300,1412023,-1,scaffold_1,1364,CDS,11,GCA_000182835.1__arts_core__TIGR00081,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00082__1__1269,TIGR00082,GCA_000182835.1,rbfA,Ribosome-binding factor A,1310764,1311127,-1,scaffold_1,1269,CDS,11,GCA_000182835.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00084__1__1525,TIGR00084,GCA_000182835.1,ruvA_2,Holliday junction ATP-dependent DNA helicase RuvA,1576179,1576773,-1,scaffold_1,1525,CDS,11,GCA_000182835.1__arts_core__TIGR00084,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00086__1__1708,TIGR00086,GCA_000182835.1,smpB,SsrA-binding protein,1759730,1760192,-1,scaffold_1,1708,CDS,11,GCA_000182835.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00088__1__1305,TIGR00088,GCA_000182835.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1353264,1354002,-1,scaffold_1,1305,CDS,11,GCA_000182835.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00090__1__1425,TIGR00090,GCA_000182835.1,rsfS,Ribosomal silencing factor RsfS,1472124,1472472,-1,scaffold_1,1425,CDS,11,GCA_000182835.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00092__1__1907,TIGR00092,GCA_000182835.1,ychF,Ribosome-binding ATPase YchF,1952236,1953337,-1,scaffold_1,1907,CDS,11,GCA_000182835.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00103__1__1544,TIGR00103,GCA_000182835.1,-,Nucleoid-associated protein,1594145,1594475,-1,scaffold_1,1544,CDS,11,GCA_000182835.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00105__1__301,TIGR00105,GCA_000182835.1,rpmE2,50S ribosomal protein L31 type B,313764,314016,1,scaffold_1,301,CDS,11,GCA_000182835.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00114__1__1977,TIGR00114,GCA_000182835.1,ribH,"6,7-dimethyl-8-ribityllumazine synthase",2022792,2023257,-1,scaffold_1,1977,CDS,11,GCA_000182835.1__arts_core__TIGR00114,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00115__1__704,TIGR00115,GCA_000182835.1,tig,Trigger factor,715786,717112,1,scaffold_1,704,CDS,11,GCA_000182835.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00116__1__1282,TIGR00116,GCA_000182835.1,tsf,Elongation factor Ts,1326310,1327339,-1,scaffold_1,1282,CDS,11,GCA_000182835.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00121__1__824,TIGR00121,GCA_000182835.1,birA,Bifunctional ligase/repressor BirA,851889,852555,1,scaffold_1,824,CDS,11,GCA_000182835.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00131__1__1650,TIGR00131,GCA_000182835.1,galK_2,Galactokinase,1694429,1695596,1,scaffold_1,1650,CDS,11,GCA_000182835.1__arts_core__TIGR00131,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00133__1__408,TIGR00133,GCA_000182835.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,417628,419059,1,scaffold_1,408,CDS,11,GCA_000182835.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00135__1__406,TIGR00135,GCA_000182835.1,gatC_1,Glutamyl-tRNA(Gln) amidotransferase subunit C,415875,416181,1,scaffold_1,406,CDS,11,GCA_000182835.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00150__1__572,TIGR00150,GCA_000182835.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,591784,592270,1,scaffold_1,572,CDS,11,GCA_000182835.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00152__1__1439,TIGR00152,GCA_000182835.1,coaE,Dephospho-CoA kinase,1484230,1484815,-1,scaffold_1,1439,CDS,11,GCA_000182835.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00157__1__1331,TIGR00157,GCA_000182835.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1380329,1381223,-1,scaffold_1,1331,CDS,11,GCA_000182835.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00158__1__11,TIGR00158,GCA_000182835.1,rplI,50S ribosomal protein L9,12382,12838,1,scaffold_1,11,CDS,11,GCA_000182835.1__arts_core__TIGR00158,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00165__1__9,TIGR00165,GCA_000182835.1,rpsR,30S ribosomal protein S18,9961,10198,1,scaffold_1,9,CDS,11,GCA_000182835.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00166__1__7,TIGR00166,GCA_000182835.1,rpsF,30S ribosomal protein S6,9022,9316,1,scaffold_1,7,CDS,11,GCA_000182835.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00168__1__1431,TIGR00168,GCA_000182835.1,infC,Translation initiation factor IF-3,1475588,1476110,-1,scaffold_1,1431,CDS,11,GCA_000182835.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00174__1__1405,TIGR00174,GCA_000182835.1,miaA,tRNA dimethylallyltransferase,1451212,1452130,-1,scaffold_1,1405,CDS,11,GCA_000182835.1__arts_core__TIGR00174,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00179__1__574,TIGR00179,GCA_000182835.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,593004,593898,1,scaffold_1,574,CDS,11,GCA_000182835.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00180__1__1909,TIGR00180,GCA_000182835.1,spo0J,Stage 0 sporulation protein J,1953669,1954560,-1,scaffold_1,1909,CDS,11,GCA_000182835.1__arts_core__TIGR00180,True,False,False,GCA_000182835.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000182835.1__TIGR00180__1__1911,TIGR00180,ND02,noc,Nucleoid occlusion protein,1955318,1956143,-1,scaffold_1,1911,CDS,11,GCA_000182835.1__arts_core__TIGR00180,True,False,False,GCA_000182835.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000182835.1__TIGR00186__1__1574,TIGR00186,GCA_000182835.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1619218,1619968,-1,scaffold_1,1574,CDS,11,GCA_000182835.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00187__1__1979,TIGR00187,GCA_000182835.1,ribE,Riboflavin synthase,2024469,2025084,-1,scaffold_1,1979,CDS,11,GCA_000182835.1__arts_core__TIGR00187,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00188__1__2070,TIGR00188,GCA_000182835.1,rnpA,Ribonuclease P protein component,2124826,2125192,-1,scaffold_1,2070,CDS,11,GCA_000182835.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00191__1__1656,TIGR00191,GCA_000182835.1,thrB_2,Homoserine kinase,1702419,1703283,-1,scaffold_1,1656,CDS,11,GCA_000182835.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00194__1__739,TIGR00194,GCA_000182835.1,uvrC,UvrABC system protein C,753561,755364,1,scaffold_1,739,CDS,11,GCA_000182835.1__arts_core__TIGR00194,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00196__1__1484,TIGR00196,GCA_000182835.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1528528,1529395,-1,scaffold_1,1484,CDS,11,GCA_000182835.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00219__1__657,TIGR00219,GCA_000182835.1,mreC,Cell shape-determining protein MreC,668821,669673,1,scaffold_1,657,CDS,11,GCA_000182835.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00220__1__275,TIGR00220,GCA_000182835.1,mscL,Large-conductance mechanosensitive channel,287188,287665,1,scaffold_1,275,CDS,11,GCA_000182835.1__arts_core__TIGR00220,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00233__1__283,TIGR00233,GCA_000182835.1,trpS2,Tryptophan--tRNA ligase 2,293720,294746,1,scaffold_1,283,CDS,11,GCA_000182835.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00234__1__225,TIGR00234,GCA_000182835.1,tyrS,Tyrosine--tRNA ligase,233286,234552,1,scaffold_1,225,CDS,11,GCA_000182835.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00237__1__1345,TIGR00237,GCA_000182835.1,xseA,Exodeoxyribonuclease 7 large subunit,1394688,1396059,-1,scaffold_1,1345,CDS,11,GCA_000182835.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00250__1__1516,TIGR00250,GCA_000182835.1,yrrK,Putative pre-16S rRNA nuclease,1566006,1566435,-1,scaffold_1,1516,CDS,11,GCA_000182835.1__arts_core__TIGR00250,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00256__1__807,TIGR00256,GCA_000182835.1,dtd,D-aminoacyl-tRNA deacylase,835155,835593,1,scaffold_1,807,CDS,11,GCA_000182835.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00257__1__537,TIGR00257,GCA_000182835.1,yigZ,IMPACT family member YigZ,557205,557865,-1,scaffold_1,537,CDS,11,GCA_000182835.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00281__1__763,TIGR00281,GCA_000182835.1,scpB,Segregation and condensation protein B,780370,780973,1,scaffold_1,763,CDS,11,GCA_000182835.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00302__1__1363,TIGR00302,GCA_000182835.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1411047,1411296,-1,scaffold_1,1363,CDS,11,GCA_000182835.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00337__1__299,TIGR00337,GCA_000182835.1,pyrG,CTP synthase,310653,312273,1,scaffold_1,299,CDS,11,GCA_000182835.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00344__1__1518,TIGR00344,GCA_000182835.1,alaS,Alanine--tRNA ligase,1566757,1569391,-1,scaffold_1,1518,CDS,11,GCA_000182835.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00355__1__1357,TIGR00355,GCA_000182835.1,purH,Bifunctional purine biosynthesis protein PurH,1403528,1405070,-1,scaffold_1,1357,CDS,11,GCA_000182835.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00357__1__1823,TIGR00357,GCA_000182835.1,msrB,Peptide methionine sulfoxide reductase MsrB,1867545,1867971,-1,scaffold_1,1823,CDS,11,GCA_000182835.1__arts_core__TIGR00357,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00362__1__1,TIGR00362,GCA_000182835.1,dnaA,Chromosomal replication initiator protein DnaA,103,1468,1,scaffold_1,1,CDS,11,GCA_000182835.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00382__1__705,TIGR00382,GCA_000182835.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,717263,718517,1,scaffold_1,705,CDS,11,GCA_000182835.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00392__1__674,TIGR00392,GCA_000182835.1,ileS,Isoleucine--tRNA ligase,683912,686708,1,scaffold_1,674,CDS,11,GCA_000182835.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00396__1__1490,TIGR00396,GCA_000182835.1,leuS,Leucine--tRNA ligase,1538896,1541311,-1,scaffold_1,1490,CDS,11,GCA_000182835.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00398__1__287,TIGR00398,GCA_000182835.1,metG,Methionine--tRNA ligase,298987,300970,1,scaffold_1,287,CDS,11,GCA_000182835.1__arts_core__TIGR00398,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00401__1__597,TIGR00401,GCA_000182835.1,msrA,Peptide methionine sulfoxide reductase MsrA,613861,614389,1,scaffold_1,597,CDS,11,GCA_000182835.1__arts_core__TIGR00401,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00409__1__1276,TIGR00409,GCA_000182835.1,proS,Proline--tRNA ligase,1320347,1322045,-1,scaffold_1,1276,CDS,11,GCA_000182835.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00414__1__1732,TIGR00414,GCA_000182835.1,serS,Serine--tRNA ligase,1786004,1787312,-1,scaffold_1,1732,CDS,11,GCA_000182835.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00416__1__1615,TIGR00416,GCA_000182835.1,radA,DNA repair protein RadA,1662882,1664259,-1,scaffold_1,1615,CDS,11,GCA_000182835.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00418__1__1435,TIGR00418,GCA_000182835.1,thrS,Threonine--tRNA ligase,1479245,1481177,-1,scaffold_1,1435,CDS,11,GCA_000182835.1__arts_core__TIGR00418,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00419__1__566,TIGR00419,GCA_000182835.1,tpiA,Triosephosphate isomerase,586713,587472,1,scaffold_1,566,CDS,11,GCA_000182835.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00422__1__652,TIGR00422,GCA_000182835.1,valS,Valine--tRNA ligase,662405,665045,1,scaffold_1,652,CDS,11,GCA_000182835.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00431__1__1268,TIGR00431,GCA_000182835.1,truB,tRNA pseudouridine synthase B,1309817,1310714,-1,scaffold_1,1268,CDS,11,GCA_000182835.1__arts_core__TIGR00431,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00435__1__1576,TIGR00435,GCA_000182835.1,cysS,Cysteine--tRNA ligase,1620390,1621815,-1,scaffold_1,1576,CDS,11,GCA_000182835.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00442__1__808,TIGR00442,GCA_000182835.1,hisS,Histidine--tRNA ligase,835877,837164,1,scaffold_1,808,CDS,11,GCA_000182835.1__arts_core__TIGR00442,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00447__1__307,TIGR00447,GCA_000182835.1,pth,Peptidyl-tRNA hydrolase,319487,320045,1,scaffold_1,307,CDS,11,GCA_000182835.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00456__1__732,TIGR00456,GCA_000182835.1,argS,Arginine--tRNA ligase,744793,746491,1,scaffold_1,732,CDS,11,GCA_000182835.1__arts_core__TIGR00456,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00459__1__809,TIGR00459,GCA_000182835.1,aspS,Aspartate--tRNA ligase,837179,839024,1,scaffold_1,809,CDS,11,GCA_000182835.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00464__1__1581,TIGR00464,GCA_000182835.1,gltX,Glutamate--tRNA ligase,1625941,1627444,-1,scaffold_1,1581,CDS,11,GCA_000182835.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00468__1__1416,TIGR00468,GCA_000182835.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1463878,1464928,-1,scaffold_1,1416,CDS,11,GCA_000182835.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00472__1__1415,TIGR00472,GCA_000182835.1,pheT,Phenylalanine--tRNA ligase beta subunit,1461467,1463879,-1,scaffold_1,1415,CDS,11,GCA_000182835.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00479__1__411,TIGR00479,GCA_000182835.1,-,putative RNA methyltransferase,420797,422153,1,scaffold_1,411,CDS,11,GCA_000182835.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00479__1__493,TIGR00479,GCA_000182835.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,512152,513535,-1,scaffold_1,493,CDS,11,GCA_000182835.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00481__1__382,TIGR00481,GCA_000182835.1,-,hypothetical protein,387291,387783,1,scaffold_1,382,CDS,11,GCA_000182835.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00484__1__335,TIGR00484,GCA_000182835.1,fusA,Elongation factor G,352744,354829,1,scaffold_1,335,CDS,11,GCA_000182835.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00485__1__703,TIGR00485,GCA_000182835.1,tuf,Elongation factor Tu,714413,715604,1,scaffold_1,703,CDS,11,GCA_000182835.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00486__1__1097,TIGR00486,GCA_000182835.1,-,GTP cyclohydrolase 1 type 2,1134520,1135318,-1,scaffold_1,1097,CDS,11,GCA_000182835.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00487__1__1270,TIGR00487,GCA_000182835.1,infB,Translation initiation factor IF-2,1311139,1313617,-1,scaffold_1,1270,CDS,11,GCA_000182835.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00496__1__1280,TIGR00496,GCA_000182835.1,frr,Ribosome-recycling factor,1324878,1325436,-1,scaffold_1,1280,CDS,11,GCA_000182835.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00499__1__318,TIGR00499,GCA_000182835.1,lysS,Lysine--tRNA ligase,333671,335195,1,scaffold_1,318,CDS,11,GCA_000182835.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00500__1__488,TIGR00500,GCA_000182835.1,map,Methionine aminopeptidase 1,507564,508392,1,scaffold_1,488,CDS,11,GCA_000182835.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00504__1__1058,TIGR00504,GCA_000182835.1,pcp,Pyrrolidone-carboxylate peptidase,1088522,1089134,-1,scaffold_1,1058,CDS,11,GCA_000182835.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00521__1__734,TIGR00521,GCA_000182835.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,747195,748395,1,scaffold_1,734,CDS,11,GCA_000182835.1__arts_core__TIGR00521,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00525__1__872,TIGR00525,GCA_000182835.1,folB,Dihydroneopterin aldolase,896216,896567,1,scaffold_1,872,CDS,11,GCA_000182835.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00544__1__545,TIGR00544,GCA_000182835.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,565518,566352,1,scaffold_1,545,CDS,11,GCA_000182835.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00560__1__533,TIGR00560,GCA_000182835.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,552178,552742,1,scaffold_1,533,CDS,11,GCA_000182835.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00563__1__1334,TIGR00563,GCA_000182835.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1383980,1385297,-1,scaffold_1,1334,CDS,11,GCA_000182835.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00575__1__404,TIGR00575,GCA_000182835.1,ligA,DNA ligase,412706,414722,1,scaffold_1,404,CDS,11,GCA_000182835.1__arts_core__TIGR00575,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00577__1__1440,TIGR00577,GCA_000182835.1,mutM,Formamidopyrimidine-DNA glycosylase,1484823,1485645,-1,scaffold_1,1440,CDS,11,GCA_000182835.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00580__1__308,TIGR00580,GCA_000182835.1,mfd,Transcription-repair-coupling factor,320061,323538,1,scaffold_1,308,CDS,11,GCA_000182835.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00593__1__1441,TIGR00593,GCA_000182835.1,polA,DNA polymerase I,1485655,1488319,-1,scaffold_1,1441,CDS,11,GCA_000182835.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00595__1__1336,TIGR00595,GCA_000182835.1,priA,primosomal protein N,1386246,1388628,-1,scaffold_1,1336,CDS,11,GCA_000182835.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00613__1__1130,TIGR00613,GCA_000182835.1,recO,DNA repair protein RecO,1176581,1177331,-1,scaffold_1,1130,CDS,11,GCA_000182835.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00615__1__1543,TIGR00615,GCA_000182835.1,recR,Recombination protein RecR,1593544,1594144,-1,scaffold_1,1543,CDS,11,GCA_000182835.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00630__1__549,TIGR00630,GCA_000182835.1,uvrA,UvrABC system protein A,570530,573389,1,scaffold_1,549,CDS,11,GCA_000182835.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00631__1__548,TIGR00631,GCA_000182835.1,uvrB_2,UvrABC system protein B,568498,570541,1,scaffold_1,548,CDS,11,GCA_000182835.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00635__1__1524,TIGR00635,GCA_000182835.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1575154,1576165,-1,scaffold_1,1524,CDS,11,GCA_000182835.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00643__1__1322,TIGR00643,GCA_000182835.1,recG,ATP-dependent DNA helicase RecG,1371914,1373954,-1,scaffold_1,1322,CDS,11,GCA_000182835.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00647__1__557,TIGR00647,GCA_000182835.1,whiA,putative cell division protein WhiA,577817,578750,1,scaffold_1,557,CDS,11,GCA_000182835.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00651__1__571,TIGR00651,GCA_000182835.1,pta,Phosphate acetyltransferase,590784,591774,1,scaffold_1,571,CDS,11,GCA_000182835.1__arts_core__TIGR00651,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00653__1__1403,TIGR00653,GCA_000182835.1,glnA,Glutamine synthetase,1448475,1449813,-1,scaffold_1,1403,CDS,11,GCA_000182835.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00663__1__2,TIGR00663,GCA_000182835.1,dnaN,Beta sliding clamp,1651,2779,1,1,2,CDS,11,GCA_000182835.1__arts_core__TIGR00663,False,False,True,,TIGR00663,1.1e-92,307.7,cog,cog0592,,,,, +GCA_000182835.1__TIGR00665__1__12,TIGR00665,GCA_000182835.1,dnaC,Replicative DNA helicase,12861,14232,1,scaffold_1,12,CDS,11,GCA_000182835.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00674__1__1030,TIGR00674,GCA_000182835.1,dapA,4-hydroxy-tetrahydrodipicolinate synthase,1060916,1061846,-1,scaffold_1,1030,CDS,11,GCA_000182835.1__arts_core__TIGR00674,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00690__1__1337,TIGR00690,GCA_000182835.1,rpoZ,DNA-directed RNA polymerase subunit omega,1388690,1388912,-1,scaffold_1,1337,CDS,11,GCA_000182835.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00732__1__1154,TIGR00732,GCA_000182835.1,dprA,DNA processing protein DprA,1199701,1200541,-1,scaffold_1,1154,CDS,11,GCA_000182835.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00753__1__522,TIGR00753,GCA_000182835.1,uppP,Undecaprenyl-diphosphatase,540752,541580,-1,scaffold_1,522,CDS,11,GCA_000182835.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00755__1__290,TIGR00755,GCA_000182835.1,rsmA,Ribosomal RNA small subunit methyltransferase A,302279,303170,1,scaffold_1,290,CDS,11,GCA_000182835.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1158,TIGR00762,ND02,-,DegV domain-containing protein,1202557,1203403,-1,scaffold_1,1158,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1238,TIGR00762,GCA_000182835.1,-,DegV domain-containing protein,1275213,1276050,-1,scaffold_1,1238,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1394,TIGR00762,GCA_000182835.1,degV_2,Protein DegV,1439475,1440405,1,scaffold_1,1394,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__57,TIGR00762,GCA_000182835.1,-,DegV domain-containing protein,55670,56504,1,scaffold_1,57,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__922,TIGR00762,GCA_000182835.1,degV_1,Protein DegV,957226,958108,1,scaffold_1,922,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00810__1__1710,TIGR00810,GCA_000182835.1,secG,putative protein-export membrane protein SecG,1762599,1762833,-1,scaffold_1,1710,CDS,11,GCA_000182835.1__arts_core__TIGR00810,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00855__1__1559,TIGR00855,GCA_000182835.1,rplL,50S ribosomal protein L7/L12,1608670,1609036,-1,scaffold_1,1559,CDS,11,GCA_000182835.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00871__1__1522,TIGR00871,GCA_000182835.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1573120,1574569,-1,scaffold_1,1522,CDS,11,GCA_000182835.1__arts_core__TIGR00871,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00877__1__1356,TIGR00877,GCA_000182835.1,purD,Phosphoribosylamine--glycine ligase,1402247,1403513,-1,scaffold_1,1356,CDS,11,GCA_000182835.1__arts_core__TIGR00877,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00878__1__1359,TIGR00878,GCA_000182835.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1405660,1406701,-1,scaffold_1,1359,CDS,11,GCA_000182835.1__arts_core__TIGR00878,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00922__1__1567,TIGR00922,GCA_000182835.1,nusG,Transcription termination/antitermination protein NusG,1614334,1614889,-1,scaffold_1,1567,CDS,11,GCA_000182835.1__arts_core__TIGR00922,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00952__1__700,TIGR00952,GCA_000182835.1,rpsO,30S ribosomal protein S15,711099,711369,1,scaffold_1,700,CDS,11,GCA_000182835.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00959__1__1308,TIGR00959,GCA_000182835.1,ffh,Signal recognition particle protein,1354932,1356363,-1,scaffold_1,1308,CDS,11,GCA_000182835.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00962__1__632,TIGR00962,GCA_000182835.1,atpA,ATP synthase subunit alpha,644446,645958,1,scaffold_1,632,CDS,11,GCA_000182835.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00963__1__541,TIGR00963,GCA_000182835.1,secA,Protein translocase subunit SecA,560665,563068,1,scaffold_1,541,CDS,11,GCA_000182835.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00964__1__1568,TIGR00964,GCA_000182835.1,secE,Protein translocase subunit SecE,1614980,1615151,-1,scaffold_1,1568,CDS,11,GCA_000182835.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00967__1__357,TIGR00967,GCA_000182835.1,secY,Protein translocase subunit SecY,365472,366768,1,scaffold_1,357,CDS,11,GCA_000182835.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00981__1__333,TIGR00981,GCA_000182835.1,rpsL,30S ribosomal protein S12,351817,352225,1,scaffold_1,333,CDS,11,GCA_000182835.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01009__1__344,TIGR01009,GCA_000182835.1,rpsC,30S ribosomal protein S3,359920,360592,1,scaffold_1,344,CDS,11,GCA_000182835.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01011__1__1283,TIGR01011,GCA_000182835.1,rpsB,30S ribosomal protein S2,1327401,1328163,-1,scaffold_1,1283,CDS,11,GCA_000182835.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01017__1__647,TIGR01017,GCA_000182835.1,rpsD,30S ribosomal protein S4,656328,656940,-1,scaffold_1,647,CDS,11,GCA_000182835.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01021__1__354,TIGR01021,GCA_000182835.1,rpsE,30S ribosomal protein S5,364302,364815,1,scaffold_1,354,CDS,11,GCA_000182835.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01023__1__1410,TIGR01023,GCA_000182835.1,rpmGA,50S ribosomal protein L33 1,1454191,1454341,-1,scaffold_1,1410,CDS,11,GCA_000182835.1__arts_core__TIGR01023,True,True,False,GCA_000182835.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000182835.1__TIGR01023__1__1569,TIGR01023,GCA_000182835.1,rpmG3,50S ribosomal protein L33 3,1615157,1615307,-1,scaffold_1,1569,CDS,11,GCA_000182835.1__arts_core__TIGR01023,True,True,False,GCA_000182835.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000182835.1__TIGR01024__1__1303,TIGR01024,GCA_000182835.1,rplS,50S ribosomal protein L19,1349223,1349571,-1,scaffold_1,1303,CDS,11,GCA_000182835.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01029__1__334,TIGR01029,GCA_000182835.1,rpsG,30S ribosomal protein S7,352240,352711,1,scaffold_1,334,CDS,11,GCA_000182835.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01030__1__2071,TIGR01030,GCA_000182835.1,rpmH,50S ribosomal protein L34,2125240,2125381,-1,scaffold_1,2071,CDS,11,GCA_000182835.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01031__1__744,TIGR01031,GCA_000182835.1,rpmF,50S ribosomal protein L32,760636,760828,1,scaffold_1,744,CDS,11,GCA_000182835.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01032__1__1429,TIGR01032,GCA_000182835.1,rplT,50S ribosomal protein L20,1474966,1475323,-1,scaffold_1,1429,CDS,11,GCA_000182835.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01034__1__1493,TIGR01034,GCA_000182835.1,metK,S-adenosylmethionine synthase,1544010,1545207,-1,scaffold_1,1493,CDS,11,GCA_000182835.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01039__1__634,TIGR01039,GCA_000182835.1,atpD,ATP synthase subunit beta,646950,648390,1,scaffold_1,634,CDS,11,GCA_000182835.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01044__1__343,TIGR01044,GCA_000182835.1,rplV,50S ribosomal protein L22,359553,359907,1,scaffold_1,343,CDS,11,GCA_000182835.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01049__1__337,TIGR01049,GCA_000182835.1,rpsJ,30S ribosomal protein S10,356485,356794,1,scaffold_1,337,CDS,11,GCA_000182835.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01050__1__342,TIGR01050,GCA_000182835.1,rpsS,30S ribosomal protein S19,359256,359532,1,scaffold_1,342,CDS,11,GCA_000182835.1__arts_core__TIGR01050,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01051__1__1151,TIGR01051,GCA_000182835.1,topA,DNA topoisomerase 1,1194596,1196771,-1,scaffold_1,1151,CDS,11,GCA_000182835.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01059__1__5,TIGR01059,GCA_000182835.1,gyrB,DNA gyrase subunit B,4361,6323,1,scaffold_1,5,CDS,11,GCA_000182835.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000182835.1__TIGR01060__1__1239,TIGR01060,GCA_000182835.1,eno,Enolase,1276357,1277635,1,scaffold_1,1239,CDS,11,GCA_000182835.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01063__1__6,TIGR01063,GCA_000182835.1,gyrA,DNA gyrase subunit A,6335,8807,1,scaffold_1,6,CDS,11,GCA_000182835.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000182835.1__TIGR01064__1__757,TIGR01064,GCA_000182835.1,pyk,Pyruvate kinase,774470,776240,1,scaffold_1,757,CDS,11,GCA_000182835.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01066__1__368,TIGR01066,GCA_000182835.1,rplM,50S ribosomal protein L13,373603,374047,1,scaffold_1,368,CDS,11,GCA_000182835.1__arts_core__TIGR01066,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01067__1__348,TIGR01067,GCA_000182835.1,rplN,50S ribosomal protein L14,361537,361906,1,scaffold_1,348,CDS,11,GCA_000182835.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01071__1__356,TIGR01071,GCA_000182835.1,rplO,50S ribosomal protein L15,365032,365473,1,scaffold_1,356,CDS,11,GCA_000182835.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01072__1__300,TIGR01072,GCA_000182835.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,312393,313665,1,scaffold_1,300,CDS,11,GCA_000182835.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01073__1__403,TIGR01073,GCA_000182835.1,pcrA,ATP-dependent DNA helicase PcrA,410434,412696,1,scaffold_1,403,CDS,11,GCA_000182835.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01079__1__349,TIGR01079,GCA_000182835.1,rplX,50S ribosomal protein L24,361922,362162,1,scaffold_1,349,CDS,11,GCA_000182835.1__arts_core__TIGR01079,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01082__1__1457,TIGR01082,GCA_000182835.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1500409,1501729,-1,scaffold_1,1457,CDS,11,GCA_000182835.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01083__1__899,TIGR01083,GCA_000182835.1,pdg,Ultraviolet N-glycosylase/AP lyase,930731,931361,1,scaffold_1,899,CDS,11,GCA_000182835.1__arts_core__TIGR01083,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01087__1__666,TIGR01087,GCA_000182835.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,675855,677238,1,scaffold_1,666,CDS,11,GCA_000182835.1__arts_core__TIGR01087,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01091__1__627,TIGR01091,GCA_000182835.1,upp,Uracil phosphoribosyltransferase,641620,642250,1,scaffold_1,627,CDS,11,GCA_000182835.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01128__1__698,TIGR01128,GCA_000182835.1,yqeN,putative protein YqeN,709563,710553,1,scaffold_1,698,CDS,11,GCA_000182835.1__arts_core__TIGR01128,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01131__1__628,TIGR01131,GCA_000182835.1,atpB,ATP synthase subunit a,642359,643079,1,scaffold_1,628,CDS,11,GCA_000182835.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01134__1__1360,TIGR01134,GCA_000182835.1,purF,Amidophosphoribosyltransferase,1406697,1408176,-1,scaffold_1,1360,CDS,11,GCA_000182835.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01135__1__433,TIGR01135,GCA_000182835.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],445120,446932,1,scaffold_1,433,CDS,11,GCA_000182835.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01144__1__630,TIGR01144,GCA_000182835.1,atpF,ATP synthase subunit b,643375,643882,1,scaffold_1,630,CDS,11,GCA_000182835.1__arts_core__TIGR01144,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01145__1__631,TIGR01145,GCA_000182835.1,atpH_2,ATP synthase subunit delta,643881,644424,1,scaffold_1,631,CDS,11,GCA_000182835.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01146__1__633,TIGR01146,GCA_000182835.1,atpG,ATP synthase gamma chain,645968,646931,1,scaffold_1,633,CDS,11,GCA_000182835.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01161__1__1366,TIGR01161,GCA_000182835.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1413672,1414797,-1,scaffold_1,1366,CDS,11,GCA_000182835.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01162__1__1367,TIGR01162,GCA_000182835.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1414786,1415278,-1,scaffold_1,1367,CDS,11,GCA_000182835.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01163__1__466,TIGR01163,GCA_000182835.1,rpe,Ribulose-phosphate 3-epimerase,482574,483225,1,scaffold_1,466,CDS,11,GCA_000182835.1__arts_core__TIGR01163,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01164__1__345,TIGR01164,GCA_000182835.1,rplP,50S ribosomal protein L16,360591,361035,1,scaffold_1,345,CDS,11,GCA_000182835.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01169__1__1565,TIGR01169,GCA_000182835.1,rplA,50S ribosomal protein L1,1613004,1613700,-1,scaffold_1,1565,CDS,11,GCA_000182835.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01171__1__341,TIGR01171,GCA_000182835.1,rplB,50S ribosomal protein L2,358402,359239,1,scaffold_1,341,CDS,11,GCA_000182835.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01216__1__635,TIGR01216,GCA_000182835.1,atpC,ATP synthase epsilon chain,648401,648842,1,scaffold_1,635,CDS,11,GCA_000182835.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01260__1__629,TIGR01260,GCA_000182835.1,atpH_1,ATP synthase subunit c,643097,643322,1,scaffold_1,629,CDS,11,GCA_000182835.1__arts_core__TIGR01260,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01280__1__1344,TIGR01280,GCA_000182835.1,xseB,Exodeoxyribonuclease 7 small subunit,1394456,1394696,-1,scaffold_1,1344,CDS,11,GCA_000182835.1__arts_core__TIGR01280,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01308__1__355,TIGR01308,GCA_000182835.1,rpmD,50S ribosomal protein L30,364826,365012,1,scaffold_1,355,CDS,11,GCA_000182835.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01311__1__1960,TIGR01311,GCA_000182835.1,glpK,Glycerol kinase,2003016,2004525,-1,scaffold_1,1960,CDS,11,GCA_000182835.1__arts_core__TIGR01311,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01369__1__1005,TIGR01369,GCA_000182835.1,carB_3,Carbamoyl-phosphate synthase large chain,1038958,1042159,-1,scaffold_1,1005,CDS,11,GCA_000182835.1__arts_core__TIGR01369,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01378__1__1330,TIGR01378,GCA_000182835.1,thiN,Thiamine pyrophosphokinase,1379616,1380300,-1,scaffold_1,1330,CDS,11,GCA_000182835.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01389__1__737,TIGR01389,GCA_000182835.1,recQ,ATP-dependent DNA helicase RecQ,750524,752294,1,scaffold_1,737,CDS,11,GCA_000182835.1__arts_core__TIGR01389,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01391__1__1127,TIGR01391,GCA_000182835.1,dnaG_1,DNA primase,1171475,1173314,-1,scaffold_1,1127,CDS,11,GCA_000182835.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01393__1__1252,TIGR01393,GCA_000182835.1,lepA,Elongation factor 4,1292212,1294051,-1,scaffold_1,1252,CDS,11,GCA_000182835.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01417__1__505,TIGR01417,GCA_000182835.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,523578,525306,1,scaffold_1,505,CDS,11,GCA_000182835.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01430__1__1392,TIGR01430,GCA_000182835.1,add,Adenosine deaminase,1437726,1438719,-1,scaffold_1,1392,CDS,11,GCA_000182835.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01448__1__684,TIGR01448,GCA_000182835.1,recD2,ATP-dependent RecD-like DNA helicase,692546,694937,1,scaffold_1,684,CDS,11,GCA_000182835.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01455__1__581,TIGR01455,GCA_000182835.1,glmM,Phosphoglucosamine mutase,599565,600918,1,scaffold_1,581,CDS,11,GCA_000182835.1__arts_core__TIGR01455,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01496__1__875,TIGR01496,GCA_000182835.1,-,hypothetical protein,898947,900039,1,scaffold_1,875,CDS,11,GCA_000182835.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01498__1__873,TIGR01498,GCA_000182835.1,folE,GTP cyclohydrolase 1,896563,897637,1,scaffold_1,873,CDS,11,GCA_000182835.1__arts_core__TIGR01498,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01513__1__276,TIGR01513,GCA_000182835.1,pncB2,Nicotinate phosphoribosyltransferase pncB2,287744,289178,-1,scaffold_1,276,CDS,11,GCA_000182835.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01534__1__564,TIGR01534,GCA_000182835.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,584371,585388,1,scaffold_1,564,CDS,11,GCA_000182835.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000182835.1__TIGR01632__1__1566,TIGR01632,GCA_000182835.1,rplK,50S ribosomal protein L11,1613783,1614209,-1,scaffold_1,1566,CDS,11,GCA_000182835.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01736__1__1361,TIGR01736,GCA_000182835.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1408151,1410374,-1,scaffold_1,1361,CDS,11,GCA_000182835.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01771__1__91,TIGR01771,GCA_000182835.1,ldh,L-lactate dehydrogenase,90754,91678,-1,scaffold_1,91,CDS,11,GCA_000182835.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01951__1__1347,TIGR01951,GCA_000182835.1,nusB,Transcription antitermination protein NusB,1396945,1397344,-1,scaffold_1,1347,CDS,11,GCA_000182835.1__arts_core__TIGR01951,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01953__1__1273,TIGR01953,GCA_000182835.1,nusA,Transcription termination/antitermination protein NusA,1314241,1315393,-1,scaffold_1,1273,CDS,11,GCA_000182835.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01980__1__1696,TIGR01980,GCA_000182835.1,-,hypothetical protein,1748148,1749576,-1,scaffold_1,1696,CDS,11,GCA_000182835.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01981__1__1699,TIGR01981,GCA_000182835.1,-,hypothetical protein,1751198,1752362,-1,scaffold_1,1699,CDS,11,GCA_000182835.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01994__1__1697,TIGR01994,GCA_000182835.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1749576,1750017,-1,scaffold_1,1697,CDS,11,GCA_000182835.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02012__1__534,TIGR02012,GCA_000182835.1,recA,Protein RecA,552948,554058,1,scaffold_1,534,CDS,11,GCA_000182835.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02013__1__328,TIGR02013,GCA_000182835.1,rpoB,DNA-directed RNA polymerase subunit beta,343094,346757,1,scaffold_1,328,CDS,11,GCA_000182835.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1684.7,cog,cog0085,,,,, +GCA_000182835.1__TIGR02027__1__362,TIGR02027,GCA_000182835.1,rpoA,DNA-directed RNA polymerase subunit alpha,368697,369636,1,scaffold_1,362,CDS,11,GCA_000182835.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02191__1__1313,TIGR02191,GCA_000182835.1,rnc,Ribonuclease 3,1361783,1362479,-1,scaffold_1,1313,CDS,11,GCA_000182835.1__arts_core__TIGR02191,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02225__1__760,TIGR02225,GCA_000182835.1,xerD_1,Tyrosine recombinase XerD,778396,779293,1,scaffold_1,760,CDS,11,GCA_000182835.1__arts_core__TIGR02225,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02227__1__1093,TIGR02227,GCA_000182835.1,spsB_1,Signal peptidase IB,1131399,1131966,1,scaffold_1,1093,CDS,11,GCA_000182835.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02227__1__1094,TIGR02227,GCA_000182835.1,spsB_2,Signal peptidase IB,1132020,1132590,1,scaffold_1,1094,CDS,11,GCA_000182835.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02273__1__1306,TIGR02273,GCA_000182835.1,rimM,Ribosome maturation factor RimM,1354001,1354505,-1,scaffold_1,1306,CDS,11,GCA_000182835.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02348__1__1528,TIGR02348,GCA_000182835.1,groL,60 kDa chaperonin,1581446,1583060,-1,scaffold_1,1528,CDS,11,GCA_000182835.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02349__1__1253,TIGR02349,GCA_000182835.1,dnaJ,Chaperone protein DnaJ,1294172,1295312,-1,scaffold_1,1253,CDS,11,GCA_000182835.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02350__1__1254,TIGR02350,GCA_000182835.1,dnaK,Chaperone protein DnaK,1295394,1297239,-1,scaffold_1,1254,CDS,11,GCA_000182835.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02386__1__329,TIGR02386,GCA_000182835.1,rpoC,DNA-directed RNA polymerase subunit beta,346772,350438,1,scaffold_1,329,CDS,11,GCA_000182835.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02393__1__1125,TIGR02393,GCA_000182835.1,sigA_2,RNA polymerase sigma factor SigA,1169222,1170344,-1,scaffold_1,1125,CDS,11,GCA_000182835.1__arts_core__TIGR02393,True,False,False,GCA_000182835.1__arts_dup__TIGR02393,,,,,,,,,, +GCA_000182835.1__TIGR02393__1__1126,TIGR02393,GCA_000182835.1,sigA_3,RNA polymerase sigma factor SigA,1170385,1171504,-1,scaffold_1,1126,CDS,11,GCA_000182835.1__arts_core__TIGR02393,True,False,False,GCA_000182835.1__arts_dup__TIGR02393,,,,,,,,,, +GCA_000182835.1__TIGR02487__1__203,TIGR02487,GCA_000182835.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,205592,207803,1,scaffold_1,203,CDS,11,GCA_000182835.1__arts_core__TIGR02487,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02727__1__1409,TIGR02727,GCA_000182835.1,-,hypothetical protein,1453565,1454126,-1,scaffold_1,1409,CDS,11,GCA_000182835.1__arts_core__TIGR02727,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02729__1__740,TIGR02729,GCA_000182835.1,obg,GTPase Obg,755432,756755,1,scaffold_1,740,CDS,11,GCA_000182835.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03156__1__1865,TIGR03156,GCA_000182835.1,hflX,GTPase HflX,1905751,1907032,1,scaffold_1,1865,CDS,11,GCA_000182835.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03263__1__1338,TIGR03263,GCA_000182835.1,gmk_1,Guanylate kinase,1388913,1389528,-1,scaffold_1,1338,CDS,11,GCA_000182835.1__arts_core__TIGR03263,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03284__1__715,TIGR03284,GCA_000182835.1,thyA,Thymidylate synthase,726492,727449,1,scaffold_1,715,CDS,11,GCA_000182835.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03534__1__625,TIGR03534,GCA_000182835.1,prmC_1,Release factor glutamine methyltransferase,639683,640526,1,scaffold_1,625,CDS,11,GCA_000182835.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03594__1__769,TIGR03594,GCA_000182835.1,der,GTPase Der,785226,786534,1,scaffold_1,769,CDS,11,GCA_000182835.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03625__1__338,TIGR03625,GCA_000182835.1,rplC,50S ribosomal protein L3,356819,357449,1,scaffold_1,338,CDS,11,GCA_000182835.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03631__1__360,TIGR03631,GCA_000182835.1,rpsM,30S ribosomal protein S13,367885,368236,1,scaffold_1,360,CDS,11,GCA_000182835.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03632__1__361,TIGR03632,GCA_000182835.1,rpsK,30S ribosomal protein S11,368264,368654,1,scaffold_1,361,CDS,11,GCA_000182835.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03635__1__347,TIGR03635,GCA_000182835.1,rpsQ,30S ribosomal protein S17,361240,361507,1,scaffold_1,347,CDS,11,GCA_000182835.1__arts_core__TIGR03635,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03654__1__352,TIGR03654,GCA_000182835.1,rplF,50S ribosomal protein L6,363369,363900,1,scaffold_1,352,CDS,11,GCA_000182835.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03705__1__459,TIGR03705,GCA_000182835.1,ppk,Polyphosphate kinase,475404,477570,1,scaffold_1,459,CDS,11,GCA_000182835.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03725__1__1534,TIGR03725,GCA_000182835.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1588060,1588783,-1,scaffold_1,1534,CDS,11,GCA_000182835.1__arts_core__TIGR03725,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03953__1__339,TIGR03953,GCA_000182835.1,rplD,50S ribosomal protein L4,357463,358081,1,scaffold_1,339,CDS,11,GCA_000182835.1__arts_core__TIGR03953,False,False,False,,,,,,,,,,, +GCA_000191165.1__Cpn10__1__1503,Cpn10,GCA_000191165.1,groS,10 kDa chaperonin,1449650,1449935,-1,scaffold_1,1503,CDS,11,GCA_000191165.1__arts_core__Cpn10,False,True,False,,,,,,,,False,,, +GCA_000191165.1__GrpE__1__1230,GrpE,GCA_000191165.1,grpE,Protein GrpE,1174949,1175567,-1,scaffold_1,1230,CDS,11,GCA_000191165.1__arts_core__GrpE,False,False,False,,,,,,,,False,,, +GCA_000191165.1__Methyltransf_5__1__664,Methyltransf_5,GCA_000191165.1,rsmH,Ribosomal RNA small subunit methyltransferase H,617876,618821,1,scaffold_1,664,CDS,11,GCA_000191165.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,False,,, +GCA_000191165.1__PF00044.19__1__565,PF00044.19,GCA_000191165.1,,,532544,533561,1,1,565,,,,False,False,True,,Gp_dh_N,6.3e-54,179.1,lcl,565,,False,,, +GCA_000191165.1__PF00185.19__1__1886,PF00185.19,GCA_000191165.1,,,1794458,1795415,-1,1,1886,,,,False,False,True,,OTCace,1.9e-35,119.2,lcl,1886,,False,,, +GCA_000191165.1__PF00185.19__1__959,PF00185.19,GCA_000191165.1,,,913147,913501,1,1,959,,,,False,False,True,,OTCace,0.0,48.3,cog,cog0540,,False,,, +GCA_000191165.1__PF00185.19__1__960,PF00185.19,GCA_000191165.1,,,913574,913733,1,1,960,,,,False,False,True,,OTCace,0.0,42.1,lcl,960,,False,,, +GCA_000191165.1__PF00204.20__1__5,PF00204.20,GCA_000191165.1,,,4533,6495,1,1,5,,,,False,False,True,,DNA_gyraseB,7.3e-61,201.5,cog,cog0187,,False,,, +GCA_000191165.1__PF00204.20__1__916,PF00204.20,GCA_000191165.1,,,858470,860402,1,1,916,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,False,,, +GCA_000191165.1__PF00227.21__1__1187,PF00227.21,GCA_000191165.1,,,1128592,1129126,-1,1,1187,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,False,,, +GCA_000191165.1__PF00364.17__1__818,PF00364.17,GCA_000191165.1,,,778349,778832,1,1,818,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,cog,cog0511,,False,,, +GCA_000191165.1__PF00521.15__1__6,PF00521.15,GCA_000191165.1,,,6507,8979,1,1,6,,,,False,False,True,,DNA_topoisoIV,1.2e-156,518.9,cog,cog0188,,False,,, +GCA_000191165.1__PF00521.15__1__917,PF00521.15,GCA_000191165.1,,,860416,862900,1,1,917,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,False,,, +GCA_000191165.1__PF01039.17__1__821,PF01039.17,GCA_000191165.1,,,780638,781487,1,1,821,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,False,,, +GCA_000191165.1__PF01039.17__1__822,PF01039.17,GCA_000191165.1,,,781479,782247,1,1,822,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,False,,, +GCA_000191165.1__PGK__1__566,PGK,GCA_000191165.1,pgk,Phosphoglycerate kinase,533657,534869,1,scaffold_1,566,CDS,11,GCA_000191165.1__arts_core__PGK,False,True,False,,,,,,,,False,,, +GCA_000191165.1__RF0007__1__1070,RF0007,GCA_000191165.1,,,1007685,1009443,1,1,1070,,,,False,False,True,,ABC_efflux,8.3e-78,259.1,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1204,RF0007,GCA_000191165.1,,,1143604,1145377,-1,1,1204,,,,False,False,True,,ABC_efflux,1.9e-85,284.3,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1267,RF0007,GCA_000191165.1,,,1217265,1219062,-1,1,1267,,,,False,False,True,,ABC_efflux,1.5e-77,258.3,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1819,RF0007,GCA_000191165.1,,,1726068,1727913,-1,1,1819,,,,False,False,True,,ABC_efflux,1.5e-76,255.0,cog,cog1132,,False,,, +GCA_000191165.1__RF0155__1__1817,RF0155,GCA_000191165.1,,,1724055,1725264,-1,1,1817,,,,False,False,True,,vanS,3e-74,247.0,lcl,1817,,False,,, +GCA_000191165.1__Ribosomal_L10__1__1539,Ribosomal_L10,GCA_000191165.1,rplJ,50S ribosomal protein L10,1477436,1477946,-1,scaffold_1,1539,CDS,11,GCA_000191165.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_L23__1__349,Ribosomal_L23,GCA_000191165.1,rplW,50S ribosomal protein L23,339250,339547,1,scaffold_1,349,CDS,11,GCA_000191165.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_S8__1__360,Ribosomal_S8,GCA_000191165.1,rpsH,30S ribosomal protein S8,344116,344515,1,scaffold_1,360,CDS,11,GCA_000191165.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_S9__1__378,Ribosomal_S9,GCA_000191165.1,rpsI,30S ribosomal protein S9,355230,355626,1,scaffold_1,378,CDS,11,GCA_000191165.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00001__1__1401,TIGR00001,GCA_000191165.1,rpmI,50S ribosomal protein L35,1348638,1348839,-1,scaffold_1,1401,CDS,11,GCA_000191165.1__arts_core__TIGR00001,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00008__1__368,TIGR00008,GCA_000191165.1,infA,Translation initiation factor IF-1,348677,348899,1,scaffold_1,368,CDS,11,GCA_000191165.1__arts_core__TIGR00008,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00009__1__1305,TIGR00009,GCA_000191165.1,rpmB,50S ribosomal protein L28,1260292,1260478,1,scaffold_1,1305,CDS,11,GCA_000191165.1__arts_core__TIGR00009,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00012__1__355,TIGR00012,GCA_000191165.1,rpmC,50S ribosomal protein L29,342194,342392,1,scaffold_1,355,CDS,11,GCA_000191165.1__arts_core__TIGR00012,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00016__1__614,TIGR00016,GCA_000191165.1,ackA,Acetate kinase,571861,573049,1,scaffold_1,614,CDS,11,GCA_000191165.1__arts_core__TIGR00016,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00017__1__772,TIGR00017,GCA_000191165.1,cmk,Cytidylate kinase,729216,729849,1,scaffold_1,772,CDS,11,GCA_000191165.1__arts_core__TIGR00017,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00019__1__627,TIGR00019,GCA_000191165.1,prfA,Peptide chain release factor 1,586353,587439,1,scaffold_1,627,CDS,11,GCA_000191165.1__arts_core__TIGR00019,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00020__1__544,TIGR00020,GCA_000191165.1,prfB,Peptide chain release factor 2,511138,512137,1,scaffold_1,544,CDS,11,GCA_000191165.1__arts_core__TIGR00020,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00021__1__471,TIGR00021,GCA_000191165.1,rpiA,Ribose-5-phosphate isomerase A,439964,440657,1,scaffold_1,471,CDS,11,GCA_000191165.1__arts_core__TIGR00021,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00029__1__700,TIGR00029,GCA_000191165.1,rpsT,30S ribosomal protein S20,655604,655856,-1,scaffold_1,700,CDS,11,GCA_000191165.1__arts_core__TIGR00029,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00036__1__1014,TIGR00036,GCA_000191165.1,dapB,4-hydroxy-tetrahydrodipicolinate reductase,958537,959317,-1,scaffold_1,1014,CDS,11,GCA_000191165.1__arts_core__TIGR00036,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00038__1__1332,TIGR00038,GCA_000191165.1,efp_1,Elongation factor P,1282897,1283467,-1,scaffold_1,1332,CDS,11,GCA_000191165.1__arts_core__TIGR00038,True,False,False,GCA_000191165.1__arts_dup__TIGR00038,,,,,,,False,,, +GCA_000191165.1__TIGR00038__1__1704,TIGR00038,GCA_000191165.1,efp_2,Elongation factor P,1626467,1627025,-1,scaffold_1,1704,CDS,11,GCA_000191165.1__arts_core__TIGR00038,True,False,False,GCA_000191165.1__arts_dup__TIGR00038,,,,,,,False,,, +GCA_000191165.1__TIGR00042__1__1485,TIGR00042,GCA_000191165.1,-,dITP/XTP pyrophosphatase,1428080,1428701,-1,scaffold_1,1485,CDS,11,GCA_000191165.1__arts_core__TIGR00042,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00043__1__1173,TIGR00043,GCA_000191165.1,ybeY,Endoribonuclease YbeY,1116635,1117160,-1,scaffold_1,1173,CDS,11,GCA_000191165.1__arts_core__TIGR00043,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00055__1__1256,TIGR00055,GCA_000191165.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1207214,1207946,-1,scaffold_1,1256,CDS,11,GCA_000191165.1__arts_core__TIGR00055,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00057__1__629,TIGR00057,GCA_000191165.1,ywlC,Threonylcarbamoyl-AMP synthase,588273,589269,1,scaffold_1,629,CDS,11,GCA_000191165.1__arts_core__TIGR00057,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00059__1__372,TIGR00059,GCA_000191165.1,rplQ,50S ribosomal protein L17,350829,351213,1,scaffold_1,372,CDS,11,GCA_000191165.1__arts_core__TIGR00059,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00060__1__362,TIGR00060,GCA_000191165.1,rplR,50S ribosomal protein L18,345096,345456,1,scaffold_1,362,CDS,11,GCA_000191165.1__arts_core__TIGR00060,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00061__1__1336,TIGR00061,GCA_000191165.1,rplU,50S ribosomal protein L21,1285104,1285416,-1,scaffold_1,1336,CDS,11,GCA_000191165.1__arts_core__TIGR00061,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00062__1__1335,TIGR00062,GCA_000191165.1,rpmA,50S ribosomal protein L27,1284789,1285089,-1,scaffold_1,1335,CDS,11,GCA_000191165.1__arts_core__TIGR00062,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00065__1__672,TIGR00065,GCA_000191165.1,ftsZ,Cell division protein FtsZ,627146,628505,1,scaffold_1,672,CDS,11,GCA_000191165.1__arts_core__TIGR00065,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00071__1__376,TIGR00071,GCA_000191165.1,truA,tRNA pseudouridine synthase A,353880,354669,1,scaffold_1,376,CDS,11,GCA_000191165.1__arts_core__TIGR00071,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00077__1__943,TIGR00077,GCA_000191165.1,lspA,Lipoprotein signal peptidase,895901,896354,1,scaffold_1,943,CDS,11,GCA_000191165.1__arts_core__TIGR00077,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00079__1__690,TIGR00079,GCA_000191165.1,def2,Peptide deformylase 2,645061,645616,-1,scaffold_1,690,CDS,11,GCA_000191165.1__arts_core__TIGR00079,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00081__1__1348,TIGR00081,GCA_000191165.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1296407,1297130,-1,scaffold_1,1348,CDS,11,GCA_000191165.1__arts_core__TIGR00081,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00082__1__1246,TIGR00082,GCA_000191165.1,rbfA,Ribosome-binding factor A,1193764,1194127,-1,scaffold_1,1246,CDS,11,GCA_000191165.1__arts_core__TIGR00082,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00084__1__1499,TIGR00084,GCA_000191165.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1442737,1443331,-1,scaffold_1,1499,CDS,11,GCA_000191165.1__arts_core__TIGR00084,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00086__1__850,TIGR00086,GCA_000191165.1,smpB,SsrA-binding protein,808414,808876,1,scaffold_1,850,CDS,11,GCA_000191165.1__arts_core__TIGR00086,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00088__1__1284,TIGR00088,GCA_000191165.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1236045,1236783,-1,scaffold_1,1284,CDS,11,GCA_000191165.1__arts_core__TIGR00088,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00090__1__1396,TIGR00090,GCA_000191165.1,rsfS,Ribosomal silencing factor RsfS,1345395,1345743,-1,scaffold_1,1396,CDS,11,GCA_000191165.1__arts_core__TIGR00090,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00092__1__1822,TIGR00092,GCA_000191165.1,ychF,Ribosome-binding ATPase YchF,1730573,1731674,-1,scaffold_1,1822,CDS,11,GCA_000191165.1__arts_core__TIGR00092,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00103__1__1519,TIGR00103,GCA_000191165.1,-,Nucleoid-associated protein,1461332,1461662,-1,scaffold_1,1519,CDS,11,GCA_000191165.1__arts_core__TIGR00103,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00105__1__312,TIGR00105,GCA_000191165.1,rpmE2,50S ribosomal protein L31 type B,295778,296030,1,scaffold_1,312,CDS,11,GCA_000191165.1__arts_core__TIGR00105,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00114__1__1902,TIGR00114,GCA_000191165.1,ribH,"6,7-dimethyl-8-ribityllumazine synthase",1812281,1812746,-1,scaffold_1,1902,CDS,11,GCA_000191165.1__arts_core__TIGR00114,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00115__1__706,TIGR00115,GCA_000191165.1,tig,Trigger factor,660752,662072,1,scaffold_1,706,CDS,11,GCA_000191165.1__arts_core__TIGR00115,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00116__1__1259,TIGR00116,GCA_000191165.1,tsf,Elongation factor Ts,1209380,1210409,-1,scaffold_1,1259,CDS,11,GCA_000191165.1__arts_core__TIGR00116,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00121__1__824,TIGR00121,GCA_000191165.1,birA,Bifunctional ligase/repressor BirA,783030,783696,1,scaffold_1,824,CDS,11,GCA_000191165.1__arts_core__TIGR00121,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00133__1__415,TIGR00133,GCA_000191165.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,389657,391088,1,scaffold_1,415,CDS,11,GCA_000191165.1__arts_core__TIGR00133,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00135__1__413,TIGR00135,GCA_000191165.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,387904,388210,1,scaffold_1,413,CDS,11,GCA_000191165.1__arts_core__TIGR00135,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00150__1__574,TIGR00150,GCA_000191165.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,539946,540432,1,scaffold_1,574,CDS,11,GCA_000191165.1__arts_core__TIGR00150,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00152__1__1412,TIGR00152,GCA_000191165.1,coaE,Dephospho-CoA kinase,1360164,1360749,-1,scaffold_1,1412,CDS,11,GCA_000191165.1__arts_core__TIGR00152,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00157__1__1312,TIGR00157,GCA_000191165.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1265329,1266223,-1,scaffold_1,1312,CDS,11,GCA_000191165.1__arts_core__TIGR00157,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00158__1__11,TIGR00158,GCA_000191165.1,rplI,50S ribosomal protein L9,12551,13007,1,scaffold_1,11,CDS,11,GCA_000191165.1__arts_core__TIGR00158,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00165__1__9,TIGR00165,GCA_000191165.1,rpsR,30S ribosomal protein S18,10130,10367,1,scaffold_1,9,CDS,11,GCA_000191165.1__arts_core__TIGR00165,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00166__1__7,TIGR00166,GCA_000191165.1,rpsF,30S ribosomal protein S6,9194,9488,1,scaffold_1,7,CDS,11,GCA_000191165.1__arts_core__TIGR00166,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00168__1__1402,TIGR00168,GCA_000191165.1,infC,Translation initiation factor IF-3,1348859,1349381,-1,scaffold_1,1402,CDS,11,GCA_000191165.1__arts_core__TIGR00168,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00174__1__1377,TIGR00174,GCA_000191165.1,miaA,tRNA dimethylallyltransferase,1326197,1327088,-1,scaffold_1,1377,CDS,11,GCA_000191165.1__arts_core__TIGR00174,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00179__1__576,TIGR00179,GCA_000191165.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,541164,542058,1,scaffold_1,576,CDS,11,GCA_000191165.1__arts_core__TIGR00179,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00180__1__1824,TIGR00180,2038,spo0J,Stage 0 sporulation protein J,1732006,1732897,-1,scaffold_1,1824,CDS,11,GCA_000191165.1__arts_core__TIGR00180,True,False,False,GCA_000191165.1__arts_dup__TIGR00180,,,,,,,False,,, +GCA_000191165.1__TIGR00180__1__1826,TIGR00180,2038,noc,Nucleoid occlusion protein,1733655,1734480,-1,scaffold_1,1826,CDS,11,GCA_000191165.1__arts_core__TIGR00180,True,False,False,GCA_000191165.1__arts_dup__TIGR00180,,,,,,,False,,, +GCA_000191165.1__TIGR00186__1__1558,TIGR00186,GCA_000191165.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1489480,1490230,-1,scaffold_1,1558,CDS,11,GCA_000191165.1__arts_core__TIGR00186,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00188__1__1961,TIGR00188,GCA_000191165.1,rnpA,Ribonuclease P protein component,1872165,1872531,-1,scaffold_1,1961,CDS,11,GCA_000191165.1__arts_core__TIGR00188,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00191__1__1627,TIGR00191,GCA_000191165.1,thrB_2,Homoserine kinase,1551790,1552654,-1,scaffold_1,1627,CDS,11,GCA_000191165.1__arts_core__TIGR00191,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00194__1__741,TIGR00194,GCA_000191165.1,uvrC,UvrABC system protein C,699645,701448,1,scaffold_1,741,CDS,11,GCA_000191165.1__arts_core__TIGR00194,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00196__1__1451,TIGR00196,GCA_000191165.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1394911,1395778,-1,scaffold_1,1451,CDS,11,GCA_000191165.1__arts_core__TIGR00196,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00218__1__45,TIGR00218,GCA_000191165.1,manA,Mannose-6-phosphate isomerase ManA,41678,42647,1,scaffold_1,45,CDS,11,GCA_000191165.1__arts_core__TIGR00218,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00219__1__658,TIGR00219,GCA_000191165.1,mreC,Cell shape-determining protein MreC,615294,616020,1,scaffold_1,658,CDS,11,GCA_000191165.1__arts_core__TIGR00219,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00220__1__275,TIGR00220,GCA_000191165.1,mscL,Large-conductance mechanosensitive channel,261718,262195,1,scaffold_1,275,CDS,11,GCA_000191165.1__arts_core__TIGR00220,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00233__1__294,TIGR00233,GCA_000191165.1,trpS2,Tryptophan--tRNA ligase 2,275711,276737,1,scaffold_1,294,CDS,11,GCA_000191165.1__arts_core__TIGR00233,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00234__1__224,TIGR00234,GCA_000191165.1,tyrS,Tyrosine--tRNA ligase,210600,211866,1,scaffold_1,224,CDS,11,GCA_000191165.1__arts_core__TIGR00234,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00237__1__1328,TIGR00237,GCA_000191165.1,xseA,Exodeoxyribonuclease 7 large subunit,1279780,1281151,-1,scaffold_1,1328,CDS,11,GCA_000191165.1__arts_core__TIGR00237,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00250__1__1490,TIGR00250,GCA_000191165.1,yrrK,Putative pre-16S rRNA nuclease,1432574,1433003,-1,scaffold_1,1490,CDS,11,GCA_000191165.1__arts_core__TIGR00250,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00256__1__807,TIGR00256,GCA_000191165.1,dtd,D-aminoacyl-tRNA deacylase,766186,766624,1,scaffold_1,807,CDS,11,GCA_000191165.1__arts_core__TIGR00256,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00257__1__539,TIGR00257,GCA_000191165.1,yigZ,IMPACT family member YigZ,505069,505729,-1,scaffold_1,539,CDS,11,GCA_000191165.1__arts_core__TIGR00257,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00281__1__768,TIGR00281,GCA_000191165.1,scpB,Segregation and condensation protein B,726362,726965,1,scaffold_1,768,CDS,11,GCA_000191165.1__arts_core__TIGR00281,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00302__1__1347,TIGR00302,GCA_000191165.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1296154,1296403,-1,scaffold_1,1347,CDS,11,GCA_000191165.1__arts_core__TIGR00302,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00337__1__310,TIGR00337,GCA_000191165.1,pyrG,CTP synthase,292668,294288,1,scaffold_1,310,CDS,11,GCA_000191165.1__arts_core__TIGR00337,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00344__1__1492,TIGR00344,GCA_000191165.1,alaS,Alanine--tRNA ligase,1433325,1435959,-1,scaffold_1,1492,CDS,11,GCA_000191165.1__arts_core__TIGR00344,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00355__1__1341,TIGR00355,GCA_000191165.1,purH,Bifunctional purine biosynthesis protein PurH,1288635,1290177,-1,scaffold_1,1341,CDS,11,GCA_000191165.1__arts_core__TIGR00355,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00357__1__1764,TIGR00357,GCA_000191165.1,msrB,Peptide methionine sulfoxide reductase MsrB,1673290,1673716,-1,scaffold_1,1764,CDS,11,GCA_000191165.1__arts_core__TIGR00357,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00362__1__1,TIGR00362,GCA_000191165.1,dnaA,Chromosomal replication initiator protein DnaA,276,1641,1,scaffold_1,1,CDS,11,GCA_000191165.1__arts_core__TIGR00362,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00382__1__707,TIGR00382,GCA_000191165.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,662223,663477,1,scaffold_1,707,CDS,11,GCA_000191165.1__arts_core__TIGR00382,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00392__1__676,TIGR00392,GCA_000191165.1,ileS,Isoleucine--tRNA ligase,630413,633209,1,scaffold_1,676,CDS,11,GCA_000191165.1__arts_core__TIGR00392,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00396__1__1463,TIGR00396,GCA_000191165.1,leuS,Leucine--tRNA ligase,1404966,1407381,-1,scaffold_1,1463,CDS,11,GCA_000191165.1__arts_core__TIGR00396,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00398__1__298,TIGR00398,GCA_000191165.1,metG,Methionine--tRNA ligase,281001,282984,1,scaffold_1,298,CDS,11,GCA_000191165.1__arts_core__TIGR00398,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00401__1__601,TIGR00401,GCA_000191165.1,msrA,Peptide methionine sulfoxide reductase MsrA,563158,563686,1,scaffold_1,601,CDS,11,GCA_000191165.1__arts_core__TIGR00401,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00409__1__1253,TIGR00409,GCA_000191165.1,proS,Proline--tRNA ligase,1203417,1205115,-1,scaffold_1,1253,CDS,11,GCA_000191165.1__arts_core__TIGR00409,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00414__1__1673,TIGR00414,GCA_000191165.1,serS,Serine--tRNA ligase,1599776,1601084,-1,scaffold_1,1673,CDS,11,GCA_000191165.1__arts_core__TIGR00414,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00416__1__1601,TIGR00416,GCA_000191165.1,radA,DNA repair protein RadA,1531500,1532877,-1,scaffold_1,1601,CDS,11,GCA_000191165.1__arts_core__TIGR00416,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00418__1__1408,TIGR00418,GCA_000191165.1,thrS,Threonine--tRNA ligase,1355178,1357110,-1,scaffold_1,1408,CDS,11,GCA_000191165.1__arts_core__TIGR00418,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00419__1__567,TIGR00419,GCA_000191165.1,tpiA,Triosephosphate isomerase,534887,535646,1,scaffold_1,567,CDS,11,GCA_000191165.1__arts_core__TIGR00419,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00422__1__653,TIGR00422,GCA_000191165.1,valS,Valine--tRNA ligase,608878,611518,1,scaffold_1,653,CDS,11,GCA_000191165.1__arts_core__TIGR00422,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00431__1__1245,TIGR00431,GCA_000191165.1,truB,tRNA pseudouridine synthase B,1192817,1193714,-1,scaffold_1,1245,CDS,11,GCA_000191165.1__arts_core__TIGR00431,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00435__1__1560,TIGR00435,GCA_000191165.1,cysS,Cysteine--tRNA ligase,1490652,1492077,-1,scaffold_1,1560,CDS,11,GCA_000191165.1__arts_core__TIGR00435,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00442__1__808,TIGR00442,GCA_000191165.1,hisS,Histidine--tRNA ligase,766907,768194,1,scaffold_1,808,CDS,11,GCA_000191165.1__arts_core__TIGR00442,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00447__1__318,TIGR00447,GCA_000191165.1,pth,Peptidyl-tRNA hydrolase,301566,302124,1,scaffold_1,318,CDS,11,GCA_000191165.1__arts_core__TIGR00447,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00456__1__734,TIGR00456,GCA_000191165.1,argS,Arginine--tRNA ligase,690877,692575,1,scaffold_1,734,CDS,11,GCA_000191165.1__arts_core__TIGR00456,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00459__1__809,TIGR00459,GCA_000191165.1,aspS,Aspartate--tRNA ligase,768209,770054,1,scaffold_1,809,CDS,11,GCA_000191165.1__arts_core__TIGR00459,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00464__1__1564,TIGR00464,GCA_000191165.1,gltX,Glutamate--tRNA ligase,1495421,1496924,-1,scaffold_1,1564,CDS,11,GCA_000191165.1__arts_core__TIGR00464,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00468__1__1387,TIGR00468,GCA_000191165.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1337227,1338277,-1,scaffold_1,1387,CDS,11,GCA_000191165.1__arts_core__TIGR00468,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00472__1__1386,TIGR00472,GCA_000191165.1,pheT,Phenylalanine--tRNA ligase beta subunit,1334816,1337228,-1,scaffold_1,1386,CDS,11,GCA_000191165.1__arts_core__TIGR00472,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00479__1__418,TIGR00479,GCA_000191165.1,-,putative RNA methyltransferase,392835,394191,1,scaffold_1,418,CDS,11,GCA_000191165.1__arts_core__TIGR00479,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00479__1__501,TIGR00479,GCA_000191165.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,468963,470346,-1,scaffold_1,501,CDS,11,GCA_000191165.1__arts_core__TIGR00479,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00481__1__388,TIGR00481,GCA_000191165.1,-,hypothetical protein,361846,362338,1,scaffold_1,388,CDS,11,GCA_000191165.1__arts_core__TIGR00481,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00484__1__345,TIGR00484,GCA_000191165.1,fusA,Elongation factor G,335184,337269,1,scaffold_1,345,CDS,11,GCA_000191165.1__arts_core__TIGR00484,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00485__1__705,TIGR00485,GCA_000191165.1,tuf,Elongation factor Tu,659378,660569,1,scaffold_1,705,CDS,11,GCA_000191165.1__arts_core__TIGR00485,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00486__1__1131,TIGR00486,GCA_000191165.1,-,GTP cyclohydrolase 1 type 2,1071102,1071900,-1,scaffold_1,1131,CDS,11,GCA_000191165.1__arts_core__TIGR00486,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00487__1__1247,TIGR00487,GCA_000191165.1,infB,Translation initiation factor IF-2,1194139,1196617,-1,scaffold_1,1247,CDS,11,GCA_000191165.1__arts_core__TIGR00487,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00496__1__1257,TIGR00496,GCA_000191165.1,frr,Ribosome-recycling factor,1207948,1208506,-1,scaffold_1,1257,CDS,11,GCA_000191165.1__arts_core__TIGR00496,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00499__1__329,TIGR00499,GCA_000191165.1,lysS,Lysine--tRNA ligase,315865,317371,1,scaffold_1,329,CDS,11,GCA_000191165.1__arts_core__TIGR00499,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00500__1__496,TIGR00500,GCA_000191165.1,map,Methionine aminopeptidase 1,464369,465197,1,scaffold_1,496,CDS,11,GCA_000191165.1__arts_core__TIGR00500,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00504__1__1094,TIGR00504,GCA_000191165.1,pcp,Pyrrolidone-carboxylate peptidase,1029182,1029794,-1,scaffold_1,1094,CDS,11,GCA_000191165.1__arts_core__TIGR00504,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00521__1__736,TIGR00521,GCA_000191165.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,693279,694479,1,scaffold_1,736,CDS,11,GCA_000191165.1__arts_core__TIGR00521,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00525__1__214,TIGR00525,GCA_000191165.1,folB,Dihydroneopterin aldolase,201185,201536,1,scaffold_1,214,CDS,11,GCA_000191165.1__arts_core__TIGR00525,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00544__1__547,TIGR00544,GCA_000191165.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,513384,514218,1,scaffold_1,547,CDS,11,GCA_000191165.1__arts_core__TIGR00544,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00560__1__535,TIGR00560,GCA_000191165.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,500044,500608,1,scaffold_1,535,CDS,11,GCA_000191165.1__arts_core__TIGR00560,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00563__1__1315,TIGR00563,GCA_000191165.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1268980,1270297,-1,scaffold_1,1315,CDS,11,GCA_000191165.1__arts_core__TIGR00563,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00575__1__411,TIGR00575,GCA_000191165.1,ligA,DNA ligase,384735,386751,1,scaffold_1,411,CDS,11,GCA_000191165.1__arts_core__TIGR00575,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00577__1__1413,TIGR00577,GCA_000191165.1,mutM,Formamidopyrimidine-DNA glycosylase,1360757,1361579,-1,scaffold_1,1413,CDS,11,GCA_000191165.1__arts_core__TIGR00577,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00580__1__319,TIGR00580,GCA_000191165.1,mfd,Transcription-repair-coupling factor,302140,305632,1,scaffold_1,319,CDS,11,GCA_000191165.1__arts_core__TIGR00580,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00593__1__1414,TIGR00593,GCA_000191165.1,polA,DNA polymerase I,1361589,1364250,-1,scaffold_1,1414,CDS,11,GCA_000191165.1__arts_core__TIGR00593,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00595__1__1317,TIGR00595,GCA_000191165.1,priA,Primosomal protein N,1271251,1273633,-1,scaffold_1,1317,CDS,11,GCA_000191165.1__arts_core__TIGR00595,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00613__1__1170,TIGR00613,GCA_000191165.1,recO,DNA repair protein RecO,1114576,1115326,-1,scaffold_1,1170,CDS,11,GCA_000191165.1__arts_core__TIGR00613,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00615__1__1518,TIGR00615,GCA_000191165.1,recR,Recombination protein RecR,1460731,1461331,-1,scaffold_1,1518,CDS,11,GCA_000191165.1__arts_core__TIGR00615,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00630__1__551,TIGR00630,GCA_000191165.1,uvrA,UvrABC system protein A,518396,521252,1,scaffold_1,551,CDS,11,GCA_000191165.1__arts_core__TIGR00630,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00631__1__550,TIGR00631,GCA_000191165.1,uvrB_2,UvrABC system protein B,516364,518407,1,scaffold_1,550,CDS,11,GCA_000191165.1__arts_core__TIGR00631,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00635__1__1498,TIGR00635,GCA_000191165.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1441713,1442724,-1,scaffold_1,1498,CDS,11,GCA_000191165.1__arts_core__TIGR00635,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00643__1__1302,TIGR00643,GCA_000191165.1,recG,ATP-dependent DNA helicase RecG,1256031,1258071,-1,scaffold_1,1302,CDS,11,GCA_000191165.1__arts_core__TIGR00643,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00647__1__558,TIGR00647,GCA_000191165.1,whiA,putative cell division protein WhiA,525907,526840,1,scaffold_1,558,CDS,11,GCA_000191165.1__arts_core__TIGR00647,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00651__1__573,TIGR00651,GCA_000191165.1,pta,Phosphate acetyltransferase,538946,539936,1,scaffold_1,573,CDS,11,GCA_000191165.1__arts_core__TIGR00651,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00653__1__1374,TIGR00653,GCA_000191165.1,glnA,Glutamine synthetase,1323462,1324800,-1,scaffold_1,1374,CDS,11,GCA_000191165.1__arts_core__TIGR00653,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00663__1__2,TIGR00663,GCA_000191165.1,dnaN,Beta sliding clamp,1822,2950,1,scaffold_1,2,CDS,11,GCA_000191165.1__arts_core__TIGR00663,False,False,True,,TIGR00663,3.8e-91,302.5,cog,cog0592,,False,,, +GCA_000191165.1__TIGR00665__1__12,TIGR00665,GCA_000191165.1,dnaC,Replicative DNA helicase,13030,14401,1,scaffold_1,12,CDS,11,GCA_000191165.1__arts_core__TIGR00665,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00674__1__1015,TIGR00674,GCA_000191165.1,dapA,4-hydroxy-tetrahydrodipicolinate synthase,959318,960248,-1,scaffold_1,1015,CDS,11,GCA_000191165.1__arts_core__TIGR00674,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00690__1__1318,TIGR00690,GCA_000191165.1,rpoZ,DNA-directed RNA polymerase subunit omega,1273695,1273917,-1,scaffold_1,1318,CDS,11,GCA_000191165.1__arts_core__TIGR00690,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00732__1__1192,TIGR00732,GCA_000191165.1,dprA,DNA processing protein DprA,1135398,1136238,-1,scaffold_1,1192,CDS,11,GCA_000191165.1__arts_core__TIGR00732,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00753__1__523,TIGR00753,GCA_000191165.1,uppP,Undecaprenyl-diphosphatase,488653,489481,-1,scaffold_1,523,CDS,11,GCA_000191165.1__arts_core__TIGR00753,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00755__1__301,TIGR00755,GCA_000191165.1,rsmA,Ribosomal RNA small subunit methyltransferase A,284293,285184,1,scaffold_1,301,CDS,11,GCA_000191165.1__arts_core__TIGR00755,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__1196,TIGR00762,2038,-,DegV domain-containing protein,1138261,1139107,-1,scaffold_1,1196,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__1209,TIGR00762,GCA_000191165.1,-,DegV domain-containing protein,1150236,1151073,-1,scaffold_1,1209,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__56,TIGR00762,2038,-,DegV domain-containing protein,53050,53884,1,scaffold_1,56,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__950,TIGR00762,GCA_000191165.1,degV,Protein DegV,905193,906075,1,scaffold_1,950,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00810__1__848,TIGR00810,GCA_000191165.1,secG,putative protein-export membrane protein SecG,805722,805956,1,scaffold_1,848,CDS,11,GCA_000191165.1__arts_core__TIGR00810,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00855__1__1538,TIGR00855,GCA_000191165.1,rplL,50S ribosomal protein L7/L12,1477018,1477384,-1,scaffold_1,1538,CDS,11,GCA_000191165.1__arts_core__TIGR00855,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00871__1__1496,TIGR00871,GCA_000191165.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1439688,1441137,-1,scaffold_1,1496,CDS,11,GCA_000191165.1__arts_core__TIGR00871,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00877__1__1340,TIGR00877,GCA_000191165.1,purD,Phosphoribosylamine--glycine ligase,1287354,1288620,-1,scaffold_1,1340,CDS,11,GCA_000191165.1__arts_core__TIGR00877,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00878__1__1343,TIGR00878,GCA_000191165.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1290758,1291808,-1,scaffold_1,1343,CDS,11,GCA_000191165.1__arts_core__TIGR00878,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00922__1__1547,TIGR00922,GCA_000191165.1,nusG,Transcription termination/antitermination protein NusG,1484586,1485141,-1,scaffold_1,1547,CDS,11,GCA_000191165.1__arts_core__TIGR00922,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00952__1__701,TIGR00952,GCA_000191165.1,rpsO,30S ribosomal protein S15,656059,656329,1,scaffold_1,701,CDS,11,GCA_000191165.1__arts_core__TIGR00952,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00959__1__1287,TIGR00959,GCA_000191165.1,ffh,Signal recognition particle protein,1237741,1239145,-1,scaffold_1,1287,CDS,11,GCA_000191165.1__arts_core__TIGR00959,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00962__1__635,TIGR00962,GCA_000191165.1,atpA,ATP synthase subunit alpha,592194,593706,1,scaffold_1,635,CDS,11,GCA_000191165.1__arts_core__TIGR00962,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00963__1__543,TIGR00963,GCA_000191165.1,secA,Protein translocase subunit SecA,508529,510932,1,scaffold_1,543,CDS,11,GCA_000191165.1__arts_core__TIGR00963,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00964__1__1548,TIGR00964,GCA_000191165.1,secE,Protein translocase subunit SecE,1485232,1485403,-1,scaffold_1,1548,CDS,11,GCA_000191165.1__arts_core__TIGR00964,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00967__1__366,TIGR00967,GCA_000191165.1,secY,Protein translocase subunit SecY,346642,347938,1,scaffold_1,366,CDS,11,GCA_000191165.1__arts_core__TIGR00967,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00981__1__343,TIGR00981,GCA_000191165.1,rpsL,30S ribosomal protein S12,334257,334665,1,scaffold_1,343,CDS,11,GCA_000191165.1__arts_core__TIGR00981,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01009__1__353,TIGR01009,GCA_000191165.1,rpsC,30S ribosomal protein S3,341090,341762,1,scaffold_1,353,CDS,11,GCA_000191165.1__arts_core__TIGR01009,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01011__1__1260,TIGR01011,GCA_000191165.1,rpsB,30S ribosomal protein S2,1210471,1211233,-1,scaffold_1,1260,CDS,11,GCA_000191165.1__arts_core__TIGR01011,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01017__1__648,TIGR01017,GCA_000191165.1,rpsD,30S ribosomal protein S4,602804,603416,-1,scaffold_1,648,CDS,11,GCA_000191165.1__arts_core__TIGR01017,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01021__1__363,TIGR01021,GCA_000191165.1,rpsE,30S ribosomal protein S5,345472,345985,1,scaffold_1,363,CDS,11,GCA_000191165.1__arts_core__TIGR01021,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01023__1__1382,TIGR01023,GCA_000191165.1,rpmGA,50S ribosomal protein L33 1,1329187,1329337,-1,scaffold_1,1382,CDS,11,GCA_000191165.1__arts_core__TIGR01023,True,True,False,GCA_000191165.1__arts_dup__TIGR01023,,,,,,,False,,, +GCA_000191165.1__TIGR01023__1__1549,TIGR01023,GCA_000191165.1,rpmG3,50S ribosomal protein L33 3,1485409,1485559,-1,scaffold_1,1549,CDS,11,GCA_000191165.1__arts_core__TIGR01023,True,True,False,GCA_000191165.1__arts_dup__TIGR01023,,,,,,,False,,, +GCA_000191165.1__TIGR01024__1__1280,TIGR01024,GCA_000191165.1,rplS,50S ribosomal protein L19,1232805,1233153,-1,scaffold_1,1280,CDS,11,GCA_000191165.1__arts_core__TIGR01024,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01029__1__344,TIGR01029,GCA_000191165.1,rpsG,30S ribosomal protein S7,334680,335151,1,scaffold_1,344,CDS,11,GCA_000191165.1__arts_core__TIGR01029,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01030__1__1962,TIGR01030,GCA_000191165.1,rpmH,50S ribosomal protein L34,1872579,1872720,-1,scaffold_1,1962,CDS,11,GCA_000191165.1__arts_core__TIGR01030,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01031__1__747,TIGR01031,GCA_000191165.1,rpmF,50S ribosomal protein L32,706720,706912,1,scaffold_1,747,CDS,11,GCA_000191165.1__arts_core__TIGR01031,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01032__1__1400,TIGR01032,GCA_000191165.1,rplT,50S ribosomal protein L20,1348237,1348594,-1,scaffold_1,1400,CDS,11,GCA_000191165.1__arts_core__TIGR01032,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01034__1__1467,TIGR01034,GCA_000191165.1,metK,S-adenosylmethionine synthase,1411151,1412348,-1,scaffold_1,1467,CDS,11,GCA_000191165.1__arts_core__TIGR01034,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01039__1__637,TIGR01039,GCA_000191165.1,atpD,ATP synthase subunit beta,594698,596138,1,scaffold_1,637,CDS,11,GCA_000191165.1__arts_core__TIGR01039,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01044__1__352,TIGR01044,GCA_000191165.1,rplV,50S ribosomal protein L22,340723,341077,1,scaffold_1,352,CDS,11,GCA_000191165.1__arts_core__TIGR01044,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01049__1__346,TIGR01049,GCA_000191165.1,rpsJ,30S ribosomal protein S10,337655,337964,1,scaffold_1,346,CDS,11,GCA_000191165.1__arts_core__TIGR01049,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01050__1__351,TIGR01050,GCA_000191165.1,rpsS,30S ribosomal protein S19,340426,340702,1,scaffold_1,351,CDS,11,GCA_000191165.1__arts_core__TIGR01050,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01051__1__1190,TIGR01051,GCA_000191165.1,topA,DNA topoisomerase 1,1131572,1133756,-1,scaffold_1,1190,CDS,11,GCA_000191165.1__arts_core__TIGR01051,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01059__1__5,TIGR01059,GCA_000191165.1,gyrB,DNA gyrase subunit B,4533,6495,1,scaffold_1,5,CDS,11,GCA_000191165.1__arts_core__TIGR01059,False,False,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01060__1__1210,TIGR01060,GCA_000191165.1,eno,Enolase,1151380,1152658,1,scaffold_1,1210,CDS,11,GCA_000191165.1__arts_core__TIGR01060,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01063__1__6,TIGR01063,GCA_000191165.1,gyrA,DNA gyrase subunit A,6507,8979,1,scaffold_1,6,CDS,11,GCA_000191165.1__arts_core__TIGR01063,False,False,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01064__1__760,TIGR01064,GCA_000191165.1,pyk,Pyruvate kinase,720192,721962,1,scaffold_1,760,CDS,11,GCA_000191165.1__arts_core__TIGR01064,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01066__1__377,TIGR01066,GCA_000191165.1,rplM,50S ribosomal protein L13,354774,355218,1,scaffold_1,377,CDS,11,GCA_000191165.1__arts_core__TIGR01066,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01067__1__357,TIGR01067,GCA_000191165.1,rplN,50S ribosomal protein L14,342707,343076,1,scaffold_1,357,CDS,11,GCA_000191165.1__arts_core__TIGR01067,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01071__1__365,TIGR01071,GCA_000191165.1,rplO,50S ribosomal protein L15,346202,346643,1,scaffold_1,365,CDS,11,GCA_000191165.1__arts_core__TIGR01071,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01072__1__311,TIGR01072,GCA_000191165.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,294407,295679,1,scaffold_1,311,CDS,11,GCA_000191165.1__arts_core__TIGR01072,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01073__1__410,TIGR01073,GCA_000191165.1,pcrA,ATP-dependent DNA helicase PcrA,382463,384725,1,scaffold_1,410,CDS,11,GCA_000191165.1__arts_core__TIGR01073,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01079__1__358,TIGR01079,GCA_000191165.1,rplX,50S ribosomal protein L24,343092,343332,1,scaffold_1,358,CDS,11,GCA_000191165.1__arts_core__TIGR01079,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01082__1__1422,TIGR01082,GCA_000191165.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1368565,1369885,-1,scaffold_1,1422,CDS,11,GCA_000191165.1__arts_core__TIGR01082,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01083__1__929,TIGR01083,GCA_000191165.1,pdg,Ultraviolet N-glycosylase/AP lyase,881088,881718,1,scaffold_1,929,CDS,11,GCA_000191165.1__arts_core__TIGR01083,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01087__1__668,TIGR01087,GCA_000191165.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,622324,623707,1,scaffold_1,668,CDS,11,GCA_000191165.1__arts_core__TIGR01087,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01091__1__630,TIGR01091,GCA_000191165.1,upp,Uracil phosphoribosyltransferase,589368,589998,1,scaffold_1,630,CDS,11,GCA_000191165.1__arts_core__TIGR01091,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01128__1__699,TIGR01128,GCA_000191165.1,yqeN,putative protein YqeN,654522,655512,1,scaffold_1,699,CDS,11,GCA_000191165.1__arts_core__TIGR01128,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01131__1__631,TIGR01131,GCA_000191165.1,atpB,ATP synthase subunit a,590107,590827,1,scaffold_1,631,CDS,11,GCA_000191165.1__arts_core__TIGR01131,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01134__1__1344,TIGR01134,GCA_000191165.1,purF,Amidophosphoribosyltransferase,1291804,1293283,-1,scaffold_1,1344,CDS,11,GCA_000191165.1__arts_core__TIGR01134,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01135__1__436,TIGR01135,GCA_000191165.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],407091,408903,1,scaffold_1,436,CDS,11,GCA_000191165.1__arts_core__TIGR01135,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01144__1__633,TIGR01144,GCA_000191165.1,atpF,ATP synthase subunit b,591123,591630,1,scaffold_1,633,CDS,11,GCA_000191165.1__arts_core__TIGR01144,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01145__1__634,TIGR01145,GCA_000191165.1,atpH_2,ATP synthase subunit delta,591629,592172,1,scaffold_1,634,CDS,11,GCA_000191165.1__arts_core__TIGR01145,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01146__1__636,TIGR01146,GCA_000191165.1,atpG,ATP synthase gamma chain,593716,594679,1,scaffold_1,636,CDS,11,GCA_000191165.1__arts_core__TIGR01146,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01161__1__1350,TIGR01161,GCA_000191165.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1298792,1299917,-1,scaffold_1,1350,CDS,11,GCA_000191165.1__arts_core__TIGR01161,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01162__1__1351,TIGR01162,GCA_000191165.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1299906,1300398,-1,scaffold_1,1351,CDS,11,GCA_000191165.1__arts_core__TIGR01162,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01163__1__470,TIGR01163,GCA_000191165.1,rpe,Ribulose-phosphate 3-epimerase,439301,439952,1,scaffold_1,470,CDS,11,GCA_000191165.1__arts_core__TIGR01163,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01164__1__354,TIGR01164,GCA_000191165.1,rplP,50S ribosomal protein L16,341761,342205,1,scaffold_1,354,CDS,11,GCA_000191165.1__arts_core__TIGR01164,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01169__1__1545,TIGR01169,GCA_000191165.1,rplA,50S ribosomal protein L1,1483256,1483952,-1,scaffold_1,1545,CDS,11,GCA_000191165.1__arts_core__TIGR01169,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01171__1__350,TIGR01171,GCA_000191165.1,rplB,50S ribosomal protein L2,339572,340409,1,scaffold_1,350,CDS,11,GCA_000191165.1__arts_core__TIGR01171,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01216__1__638,TIGR01216,GCA_000191165.1,atpC,ATP synthase epsilon chain,596149,596590,1,scaffold_1,638,CDS,11,GCA_000191165.1__arts_core__TIGR01216,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01260__1__632,TIGR01260,GCA_000191165.1,atpH_1,ATP synthase subunit c,590845,591070,1,scaffold_1,632,CDS,11,GCA_000191165.1__arts_core__TIGR01260,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01280__1__1327,TIGR01280,GCA_000191165.1,xseB,Exodeoxyribonuclease 7 small subunit,1279548,1279788,-1,scaffold_1,1327,CDS,11,GCA_000191165.1__arts_core__TIGR01280,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01308__1__364,TIGR01308,GCA_000191165.1,rpmD,50S ribosomal protein L30,345996,346182,1,scaffold_1,364,CDS,11,GCA_000191165.1__arts_core__TIGR01308,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01369__1__1883,TIGR01369,GCA_000191165.1,carB_8,Carbamoyl-phosphate synthase large chain,1788915,1792104,-1,scaffold_1,1883,CDS,11,GCA_000191165.1__arts_core__TIGR01369,False,True,False,,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit",,,,,CP000156.1.region002,True,CP000156.1.region002__arts_bgc,"Purines, pyrimidines, nucleosides, and nucleotides",TIGR01369 +GCA_000191165.1__TIGR01378__1__1311,TIGR01378,GCA_000191165.1,thiN,Thiamine pyrophosphokinase,1264616,1265300,-1,scaffold_1,1311,CDS,11,GCA_000191165.1__arts_core__TIGR01378,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01389__1__739,TIGR01389,GCA_000191165.1,recQ,ATP-dependent DNA helicase RecQ,696608,698378,1,scaffold_1,739,CDS,11,GCA_000191165.1__arts_core__TIGR01389,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01391__1__1167,TIGR01391,GCA_000191165.1,dnaG,DNA primase,1109471,1111310,-1,scaffold_1,1167,CDS,11,GCA_000191165.1__arts_core__TIGR01391,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01393__1__1227,TIGR01393,GCA_000191165.1,lepA,Elongation factor 4,1169866,1171705,-1,scaffold_1,1227,CDS,11,GCA_000191165.1__arts_core__TIGR01393,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01417__1__513,TIGR01417,GCA_000191165.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,480411,482139,1,scaffold_1,513,CDS,11,GCA_000191165.1__arts_core__TIGR01417,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01430__1__1368,TIGR01430,GCA_000191165.1,add,Adenosine deaminase,1318195,1319188,-1,scaffold_1,1368,CDS,11,GCA_000191165.1__arts_core__TIGR01430,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01430__1__973,TIGR01430,GCA_000191165.1,-,Adenine deaminase,925115,926138,-1,scaffold_1,973,CDS,11,GCA_000191165.1__arts_core__TIGR01430,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01448__1__686,TIGR01448,GCA_000191165.1,recD2,ATP-dependent RecD-like DNA helicase,639035,641426,1,scaffold_1,686,CDS,11,GCA_000191165.1__arts_core__TIGR01448,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01455__1__583,TIGR01455,GCA_000191165.1,glmM,Phosphoglucosamine mutase,547727,549080,1,scaffold_1,583,CDS,11,GCA_000191165.1__arts_core__TIGR01455,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01496__1__217,TIGR01496,GCA_000191165.1,-,hypothetical protein,203916,205008,1,scaffold_1,217,CDS,11,GCA_000191165.1__arts_core__TIGR01496,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01498__1__215,TIGR01498,GCA_000191165.1,folE,GTP cyclohydrolase 1,201532,202606,1,scaffold_1,215,CDS,11,GCA_000191165.1__arts_core__TIGR01498,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01513__1__276,TIGR01513,GCA_000191165.1,pncB,Nicotinate phosphoribosyltransferase,262274,263798,-1,scaffold_1,276,CDS,11,GCA_000191165.1__arts_core__TIGR01513,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01534__1__565,TIGR01534,GCA_000191165.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,532544,533561,1,scaffold_1,565,CDS,11,GCA_000191165.1__arts_core__TIGR01534,False,True,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01632__1__1546,TIGR01632,GCA_000191165.1,rplK,50S ribosomal protein L11,1484035,1484461,-1,scaffold_1,1546,CDS,11,GCA_000191165.1__arts_core__TIGR01632,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01736__1__1345,TIGR01736,GCA_000191165.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1293258,1295481,-1,scaffold_1,1345,CDS,11,GCA_000191165.1__arts_core__TIGR01736,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01771__1__100,TIGR01771,GCA_000191165.1,ldh,L-lactate dehydrogenase,90513,91437,-1,scaffold_1,100,CDS,11,GCA_000191165.1__arts_core__TIGR01771,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01951__1__1330,TIGR01951,GCA_000191165.1,nusB,Transcription antitermination protein NusB,1282048,1282447,-1,scaffold_1,1330,CDS,11,GCA_000191165.1__arts_core__TIGR01951,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01953__1__1250,TIGR01953,GCA_000191165.1,nusA,Transcription termination/antitermination protein NusA,1197241,1198462,-1,scaffold_1,1250,CDS,11,GCA_000191165.1__arts_core__TIGR01953,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01980__1__865,TIGR01980,GCA_000191165.1,-,hypothetical protein,818024,819452,1,scaffold_1,865,CDS,11,GCA_000191165.1__arts_core__TIGR01980,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01981__1__862,TIGR01981,GCA_000191165.1,-,hypothetical protein,815238,816402,1,scaffold_1,862,CDS,11,GCA_000191165.1__arts_core__TIGR01981,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01994__1__864,TIGR01994,GCA_000191165.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,817583,818024,1,scaffold_1,864,CDS,11,GCA_000191165.1__arts_core__TIGR01994,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02012__1__536,TIGR02012,GCA_000191165.1,recA,Protein RecA,500813,501923,1,scaffold_1,536,CDS,11,GCA_000191165.1__arts_core__TIGR02012,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02013__1__340,TIGR02013,GCA_000191165.1,rpoB,DNA-directed RNA polymerase subunit beta,325558,329233,1,scaffold_1,340,CDS,11,GCA_000191165.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.5,cog,cog0085,,False,,, +GCA_000191165.1__TIGR02027__1__371,TIGR02027,GCA_000191165.1,rpoA,DNA-directed RNA polymerase subunit alpha,349867,350806,1,scaffold_1,371,CDS,11,GCA_000191165.1__arts_core__TIGR02027,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02191__1__1293,TIGR02191,GCA_000191165.1,rnc,Ribonuclease 3,1245896,1246592,-1,scaffold_1,1293,CDS,11,GCA_000191165.1__arts_core__TIGR02191,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02225__1__765,TIGR02225,GCA_000191165.1,xerD_1,Tyrosine recombinase XerD,724388,725285,1,scaffold_1,765,CDS,11,GCA_000191165.1__arts_core__TIGR02225,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02227__1__1127,TIGR02227,GCA_000191165.1,spsB,Signal peptidase IB,1066949,1067516,1,scaffold_1,1127,CDS,11,GCA_000191165.1__arts_core__TIGR02227,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02273__1__1285,TIGR02273,GCA_000191165.1,rimM,Ribosome maturation factor RimM,1236782,1237286,-1,scaffold_1,1285,CDS,11,GCA_000191165.1__arts_core__TIGR02273,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02348__1__1502,TIGR02348,GCA_000191165.1,groL,60 kDa chaperonin,1448010,1449624,-1,scaffold_1,1502,CDS,11,GCA_000191165.1__arts_core__TIGR02348,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02349__1__1228,TIGR02349,GCA_000191165.1,dnaJ,Chaperone protein DnaJ,1171826,1172963,-1,scaffold_1,1228,CDS,11,GCA_000191165.1__arts_core__TIGR02349,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02350__1__1229,TIGR02350,GCA_000191165.1,dnaK,Chaperone protein DnaK,1173045,1174890,-1,scaffold_1,1229,CDS,11,GCA_000191165.1__arts_core__TIGR02350,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02386__1__341,TIGR02386,GCA_000191165.1,rpoC,DNA-directed RNA polymerase subunit beta,329248,332914,1,scaffold_1,341,CDS,11,GCA_000191165.1__arts_core__TIGR02386,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02393__1__1165,TIGR02393,GCA_000191165.1,sigA_2,RNA polymerase sigma factor SigA,1107218,1108340,-1,scaffold_1,1165,CDS,11,GCA_000191165.1__arts_core__TIGR02393,True,False,False,GCA_000191165.1__arts_dup__TIGR02393,,,,,,,False,,, +GCA_000191165.1__TIGR02393__1__1166,TIGR02393,GCA_000191165.1,sigA_3,RNA polymerase sigma factor SigA,1108381,1109500,-1,scaffold_1,1166,CDS,11,GCA_000191165.1__arts_core__TIGR02393,True,False,False,GCA_000191165.1__arts_dup__TIGR02393,,,,,,,False,,, +GCA_000191165.1__TIGR02487__1__184,TIGR02487,GCA_000191165.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,173110,175321,1,scaffold_1,184,CDS,11,GCA_000191165.1__arts_core__TIGR02487,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02727__1__1381,TIGR02727,GCA_000191165.1,-,hypothetical protein,1328560,1329133,-1,scaffold_1,1381,CDS,11,GCA_000191165.1__arts_core__TIGR02727,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02729__1__742,TIGR02729,GCA_000191165.1,obg_1,GTPase Obg,701585,702671,1,scaffold_1,742,CDS,11,GCA_000191165.1__arts_core__TIGR02729,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03156__1__1786,TIGR03156,GCA_000191165.1,hflX,GTPase HflX,1694460,1695741,1,scaffold_1,1786,CDS,11,GCA_000191165.1__arts_core__TIGR03156,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03263__1__1319,TIGR03263,GCA_000191165.1,gmk_1,Guanylate kinase,1273918,1274533,-1,scaffold_1,1319,CDS,11,GCA_000191165.1__arts_core__TIGR03263,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03284__1__717,TIGR03284,GCA_000191165.1,thyA,Thymidylate synthase,670227,671184,1,scaffold_1,717,CDS,11,GCA_000191165.1__arts_core__TIGR03284,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03534__1__628,TIGR03534,GCA_000191165.1,prmC,Release factor glutamine methyltransferase,587431,588274,1,scaffold_1,628,CDS,11,GCA_000191165.1__arts_core__TIGR03534,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03594__1__774,TIGR03594,GCA_000191165.1,der,GTPase Der,731218,732526,1,scaffold_1,774,CDS,11,GCA_000191165.1__arts_core__TIGR03594,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03625__1__347,TIGR03625,GCA_000191165.1,rplC,50S ribosomal protein L3,337989,338619,1,scaffold_1,347,CDS,11,GCA_000191165.1__arts_core__TIGR03625,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03631__1__369,TIGR03631,GCA_000191165.1,rpsM,30S ribosomal protein S13,349055,349406,1,scaffold_1,369,CDS,11,GCA_000191165.1__arts_core__TIGR03631,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03632__1__370,TIGR03632,GCA_000191165.1,rpsK,30S ribosomal protein S11,349434,349824,1,scaffold_1,370,CDS,11,GCA_000191165.1__arts_core__TIGR03632,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03635__1__356,TIGR03635,GCA_000191165.1,rpsQ,30S ribosomal protein S17,342410,342677,1,scaffold_1,356,CDS,11,GCA_000191165.1__arts_core__TIGR03635,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03654__1__361,TIGR03654,GCA_000191165.1,rplF,50S ribosomal protein L6,344539,345070,1,scaffold_1,361,CDS,11,GCA_000191165.1__arts_core__TIGR03654,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03705__1__463,TIGR03705,GCA_000191165.1,ppk,Polyphosphate kinase,432702,434868,1,scaffold_1,463,CDS,11,GCA_000191165.1__arts_core__TIGR03705,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03725__1__1508,TIGR03725,GCA_000191165.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1454631,1455354,-1,scaffold_1,1508,CDS,11,GCA_000191165.1__arts_core__TIGR03725,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03953__1__348,TIGR03953,GCA_000191165.1,rplD,50S ribosomal protein L4,338633,339251,1,scaffold_1,348,CDS,11,GCA_000191165.1__arts_core__TIGR03953,False,False,False,,,,,,,,False,,, +GCA_000014405.1__Cpn10__1__1465,Cpn10,GCA_000014405.1,groS,10 kDa chaperonin,1406812,1407097,-1,scaffold_1,1465,CDS,11,GCA_000014405.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000014405.1__GrpE__1__1199,GrpE,GCA_000014405.1,grpE,Protein GrpE,1136787,1137405,-1,scaffold_1,1199,CDS,11,GCA_000014405.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000014405.1__Methyltransf_5__1__661,Methyltransf_5,GCA_000014405.1,rsmH,Ribosomal RNA small subunit methyltransferase H,620091,621036,1,scaffold_1,661,CDS,11,GCA_000014405.1__arts_core__Methyltransf_5,False,False,False,,,,,,,,,,, +GCA_000014405.1__PF00044.19__1__561,PF00044.19,GCA_000014405.1,,,534819,535836,1,1,561,,,,False,False,True,,Gp_dh_N,5.2e-54,179.4,lcl,561,,,,, +GCA_000014405.1__PF00185.19__1__1865,PF00185.19,GCA_000014405.1,,,1777865,1778822,-1,1,1865,,,,False,False,True,,OTCace,2.3e-35,118.9,lcl,1865,,,,, +GCA_000014405.1__PF00185.19__1__923,PF00185.19,GCA_000014405.1,,,885054,885408,1,1,923,,,,False,False,True,,OTCace,0.0,48.3,cog,cog0540,,,,, +GCA_000014405.1__PF00185.19__1__924,PF00185.19,GCA_000014405.1,,,885457,885640,1,1,924,,,,False,False,True,,OTCace,0.0,53.6,lcl,924,,,,, +GCA_000014405.1__PF00204.20__1__5,PF00204.20,GCA_000014405.1,,,4360,6322,1,1,5,,,,False,False,True,,DNA_gyraseB,7.2e-61,201.5,cog,cog0187,,,,, +GCA_000014405.1__PF00204.20__1__878,PF00204.20,GCA_000014405.1,,,830171,832103,1,1,878,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,,,, +GCA_000014405.1__PF00227.21__1__1157,PF00227.21,GCA_000014405.1,,,1091791,1092325,-1,1,1157,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,,,, +GCA_000014405.1__PF00364.17__1__812,PF00364.17,GCA_000014405.1,,,781657,782140,1,1,812,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,lcl,812,,,,, +GCA_000014405.1__PF00521.15__1__6,PF00521.15,GCA_000014405.1,,,6334,8806,1,1,6,,,,False,False,True,,DNA_topoisoIV,7.3e-157,519.6,cog,cog0188,,,,, +GCA_000014405.1__PF00521.15__1__879,PF00521.15,GCA_000014405.1,,,832117,834601,1,1,879,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,,,, +GCA_000014405.1__PF01039.17__1__815,PF01039.17,GCA_000014405.1,,,783946,784795,1,1,815,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,,,, +GCA_000014405.1__PF01039.17__1__816,PF01039.17,GCA_000014405.1,,,784787,785555,1,1,816,,,,False,False,True,,Carboxyl_trans,2.4e-19,66.1,cog,cog0825,,,,, +GCA_000014405.1__PGK__1__562,PGK,GCA_000014405.1,pgk,Phosphoglycerate kinase,535932,537144,1,scaffold_1,562,CDS,11,GCA_000014405.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000014405.1__RF0007__1__1043,RF0007,GCA_000014405.1,,,986851,988609,1,1,1043,,,,False,False,True,,ABC_efflux,9.5e-78,258.9,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1173,RF0007,GCA_000014405.1,,,1105421,1107194,-1,1,1173,,,,False,False,True,,ABC_efflux,1.2e-86,288.3,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1231,RF0007,GCA_000014405.1,,,1176015,1177812,-1,1,1231,,,,False,False,True,,ABC_efflux,1.4e-77,258.3,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1808,RF0007,GCA_000014405.1,,,1721280,1723131,-1,1,1808,,,,False,False,True,,ABC_efflux,2e-76,254.5,cog,cog1132,,,,, +GCA_000014405.1__RF0155__1__1806,RF0155,GCA_000014405.1,,,1719267,1720476,-1,1,1806,,,,False,False,True,,vanS,3e-74,247.0,lcl,1806,,,,, +GCA_000014405.1__Ribosomal_L10__1__1500,Ribosomal_L10,GCA_000014405.1,rplJ,50S ribosomal protein L10,1434540,1435050,-1,scaffold_1,1500,CDS,11,GCA_000014405.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_L23__1__350,Ribosomal_L23,GCA_000014405.1,rplW,50S ribosomal protein L23,342760,343057,1,scaffold_1,350,CDS,11,GCA_000014405.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_S8__1__361,Ribosomal_S8,GCA_000014405.1,rpsH,30S ribosomal protein S8,347626,348025,1,scaffold_1,361,CDS,11,GCA_000014405.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_S9__1__379,Ribosomal_S9,GCA_000014405.1,rpsI,30S ribosomal protein S9,358739,359135,1,scaffold_1,379,CDS,11,GCA_000014405.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00001__1__1367,TIGR00001,GCA_000014405.1,rpmI,50S ribosomal protein L35,1309102,1309303,-1,scaffold_1,1367,CDS,11,GCA_000014405.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00008__1__369,TIGR00008,GCA_000014405.1,infA,Translation initiation factor IF-1,352187,352409,1,scaffold_1,369,CDS,11,GCA_000014405.1__arts_core__TIGR00008,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00009__1__1272,TIGR00009,GCA_000014405.1,rpmB,50S ribosomal protein L28,1219050,1219236,1,scaffold_1,1272,CDS,11,GCA_000014405.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00012__1__356,TIGR00012,GCA_000014405.1,rpmC,50S ribosomal protein L29,345704,345902,1,scaffold_1,356,CDS,11,GCA_000014405.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00016__1__610,TIGR00016,GCA_000014405.1,ackA,Acetate kinase,574077,575265,1,scaffold_1,610,CDS,11,GCA_000014405.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00017__1__766,TIGR00017,GCA_000014405.1,cmk,Cytidylate kinase,729952,730585,1,scaffold_1,766,CDS,11,GCA_000014405.1__arts_core__TIGR00017,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00019__1__625,TIGR00019,GCA_000014405.1,prfA,Peptide chain release factor 1,588567,589653,1,scaffold_1,625,CDS,11,GCA_000014405.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00020__1__539,TIGR00020,GCA_000014405.1,prfB,Peptide chain release factor 2,513516,514515,1,scaffold_1,539,CDS,11,GCA_000014405.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00021__1__467,TIGR00021,GCA_000014405.1,rpiA,Ribose-5-phosphate isomerase A,442393,443086,1,scaffold_1,467,CDS,11,GCA_000014405.1__arts_core__TIGR00021,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00029__1__697,TIGR00029,GCA_000014405.1,rpsT,30S ribosomal protein S20,657820,658072,-1,scaffold_1,697,CDS,11,GCA_000014405.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00038__1__1298,TIGR00038,GCA_000014405.1,efp_1,Elongation factor P,1240647,1241214,-1,scaffold_1,1298,CDS,11,GCA_000014405.1__arts_core__TIGR00038,True,False,False,GCA_000014405.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000014405.1__TIGR00038__1__1697,TIGR00038,GCA_000014405.1,efp_2,Elongation factor P,1624901,1625459,-1,scaffold_1,1697,CDS,11,GCA_000014405.1__arts_core__TIGR00038,True,False,False,GCA_000014405.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000014405.1__TIGR00042__1__1447,TIGR00042,GCA_000014405.1,-,dITP/XTP pyrophosphatase,1385243,1385864,-1,scaffold_1,1447,CDS,11,GCA_000014405.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00043__1__1144,TIGR00043,GCA_000014405.1,ybeY,Endoribonuclease YbeY,1079837,1080362,-1,scaffold_1,1144,CDS,11,GCA_000014405.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00055__1__1220,TIGR00055,GCA_000014405.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1165964,1166696,-1,scaffold_1,1220,CDS,11,GCA_000014405.1__arts_core__TIGR00055,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00057__1__627,TIGR00057,GCA_000014405.1,ywlC,Threonylcarbamoyl-AMP synthase,590487,591483,1,scaffold_1,627,CDS,11,GCA_000014405.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00059__1__373,TIGR00059,GCA_000014405.1,rplQ,50S ribosomal protein L17,354339,354723,1,scaffold_1,373,CDS,11,GCA_000014405.1__arts_core__TIGR00059,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00060__1__363,TIGR00060,GCA_000014405.1,rplR,50S ribosomal protein L18,348606,348966,1,scaffold_1,363,CDS,11,GCA_000014405.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00061__1__1301,TIGR00061,GCA_000014405.1,rplU,50S ribosomal protein L21,1242850,1243162,-1,scaffold_1,1301,CDS,11,GCA_000014405.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00062__1__1300,TIGR00062,GCA_000014405.1,rpmA,50S ribosomal protein L27,1242535,1242835,-1,scaffold_1,1300,CDS,11,GCA_000014405.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00065__1__669,TIGR00065,GCA_000014405.1,ftsZ,Cell division protein FtsZ,629361,630720,1,scaffold_1,669,CDS,11,GCA_000014405.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00071__1__377,TIGR00071,GCA_000014405.1,truA,tRNA pseudouridine synthase A,357389,358178,1,scaffold_1,377,CDS,11,GCA_000014405.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00077__1__906,TIGR00077,GCA_000014405.1,lspA,Lipoprotein signal peptidase,867762,868215,1,scaffold_1,906,CDS,11,GCA_000014405.1__arts_core__TIGR00077,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00079__1__687,TIGR00079,GCA_000014405.1,def2,Peptide deformylase 2,647262,647817,-1,scaffold_1,687,CDS,11,GCA_000014405.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00081__1__1313,TIGR00081,GCA_000014405.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1254153,1254876,-1,scaffold_1,1313,CDS,11,GCA_000014405.1__arts_core__TIGR00081,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00082__1__1210,TIGR00082,GCA_000014405.1,rbfA,Ribosome-binding factor A,1152514,1152877,-1,scaffold_1,1210,CDS,11,GCA_000014405.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00084__1__1461,TIGR00084,GCA_000014405.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1399899,1400493,-1,scaffold_1,1461,CDS,11,GCA_000014405.1__arts_core__TIGR00084,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00086__1__1650,TIGR00086,GCA_000014405.1,smpB,SsrA-binding protein,1575875,1576337,-1,scaffold_1,1650,CDS,11,GCA_000014405.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00088__1__1249,TIGR00088,GCA_000014405.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1194807,1195545,-1,scaffold_1,1249,CDS,11,GCA_000014405.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00090__1__1362,TIGR00090,GCA_000014405.1,rsfS,Ribosomal silencing factor RsfS,1305859,1306207,-1,scaffold_1,1362,CDS,11,GCA_000014405.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00092__1__1811,TIGR00092,GCA_000014405.1,ychF,Ribosome-binding ATPase YchF,1725791,1726892,-1,scaffold_1,1811,CDS,11,GCA_000014405.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00103__1__1481,TIGR00103,GCA_000014405.1,-,Nucleoid-associated protein,1418481,1418811,-1,scaffold_1,1481,CDS,11,GCA_000014405.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00105__1__312,TIGR00105,GCA_000014405.1,rpmE2,50S ribosomal protein L31 type B,299315,299567,1,scaffold_1,312,CDS,11,GCA_000014405.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00115__1__702,TIGR00115,GCA_000014405.1,tig,Trigger factor,662967,664287,1,scaffold_1,702,CDS,11,GCA_000014405.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00116__1__1223,TIGR00116,GCA_000014405.1,tsf,Elongation factor Ts,1168130,1169159,-1,scaffold_1,1223,CDS,11,GCA_000014405.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00121__1__818,TIGR00121,GCA_000014405.1,birA,Bifunctional ligase/repressor BirA,786338,787004,1,scaffold_1,818,CDS,11,GCA_000014405.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00133__1__414,TIGR00133,GCA_000014405.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,391718,393149,1,scaffold_1,414,CDS,11,GCA_000014405.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00135__1__412,TIGR00135,GCA_000014405.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,389965,390271,1,scaffold_1,412,CDS,11,GCA_000014405.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00150__1__569,TIGR00150,GCA_000014405.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,542222,542708,1,scaffold_1,569,CDS,11,GCA_000014405.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00152__1__1374,TIGR00152,GCA_000014405.1,coaE,Dephospho-CoA kinase,1316881,1317466,-1,scaffold_1,1374,CDS,11,GCA_000014405.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00157__1__1278,TIGR00157,GCA_000014405.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1223076,1223970,-1,scaffold_1,1278,CDS,11,GCA_000014405.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00158__1__11,TIGR00158,GCA_000014405.1,rplI,50S ribosomal protein L9,12378,12834,1,scaffold_1,11,CDS,11,GCA_000014405.1__arts_core__TIGR00158,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00165__1__9,TIGR00165,GCA_000014405.1,rpsR,30S ribosomal protein S18,9957,10194,1,scaffold_1,9,CDS,11,GCA_000014405.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00166__1__7,TIGR00166,GCA_000014405.1,rpsF,30S ribosomal protein S6,9021,9315,1,scaffold_1,7,CDS,11,GCA_000014405.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00168__1__1368,TIGR00168,GCA_000014405.1,infC,Translation initiation factor IF-3,1309323,1309845,-1,scaffold_1,1368,CDS,11,GCA_000014405.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00174__1__1340,TIGR00174,GCA_000014405.1,miaA,tRNA dimethylallyltransferase,1285003,1285930,-1,scaffold_1,1340,CDS,11,GCA_000014405.1__arts_core__TIGR00174,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00179__1__571,TIGR00179,GCA_000014405.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,543440,544334,1,scaffold_1,571,CDS,11,GCA_000014405.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00180__1__1813,TIGR00180,BAA-365,spo0J,Stage 0 sporulation protein J,1727224,1728115,-1,scaffold_1,1813,CDS,11,GCA_000014405.1__arts_core__TIGR00180,True,False,False,GCA_000014405.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000014405.1__TIGR00180__1__1815,TIGR00180,GCA_000014405.1,noc,Nucleoid occlusion protein,1728873,1729698,-1,scaffold_1,1815,CDS,11,GCA_000014405.1__arts_core__TIGR00180,True,False,False,GCA_000014405.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000014405.1__TIGR00186__1__1517,TIGR00186,GCA_000014405.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1446493,1447243,-1,scaffold_1,1517,CDS,11,GCA_000014405.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00188__1__1946,TIGR00188,GCA_000014405.1,rnpA,Ribonuclease P protein component,1856024,1856390,-1,scaffold_1,1946,CDS,11,GCA_000014405.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00191__1__1585,TIGR00191,GCA_000014405.1,thrB_2,Homoserine kinase,1508362,1509226,-1,scaffold_1,1585,CDS,11,GCA_000014405.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00194__1__737,TIGR00194,GCA_000014405.1,uvrC,UvrABC system protein C,702109,703912,1,scaffold_1,737,CDS,11,GCA_000014405.1__arts_core__TIGR00194,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00196__1__1412,TIGR00196,GCA_000014405.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1351882,1352749,-1,scaffold_1,1412,CDS,11,GCA_000014405.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00218__1__51,TIGR00218,GCA_000014405.1,manA,Mannose-6-phosphate isomerase ManA,49490,50459,1,scaffold_1,51,CDS,11,GCA_000014405.1__arts_core__TIGR00218,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00219__1__656,TIGR00219,GCA_000014405.1,mreC,Cell shape-determining protein MreC,617508,618360,1,scaffold_1,656,CDS,11,GCA_000014405.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00220__1__277,TIGR00220,GCA_000014405.1,mscL,Large-conductance mechanosensitive channel,266697,267174,1,scaffold_1,277,CDS,11,GCA_000014405.1__arts_core__TIGR00220,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00233__1__294,TIGR00233,GCA_000014405.1,trpS2,Tryptophan--tRNA ligase 2,279249,280275,1,scaffold_1,294,CDS,11,GCA_000014405.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00234__1__216,TIGR00234,GCA_000014405.1,tyrS,Tyrosine--tRNA ligase,211287,212553,1,scaffold_1,216,CDS,11,GCA_000014405.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00237__1__1294,TIGR00237,GCA_000014405.1,xseA,Exodeoxyribonuclease 7 large subunit,1237528,1238899,-1,scaffold_1,1294,CDS,11,GCA_000014405.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00250__1__1452,TIGR00250,GCA_000014405.1,yrrK,Putative pre-16S rRNA nuclease,1389736,1390165,-1,scaffold_1,1452,CDS,11,GCA_000014405.1__arts_core__TIGR00250,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00256__1__801,TIGR00256,GCA_000014405.1,dtd,D-aminoacyl-tRNA deacylase,769460,769898,1,scaffold_1,801,CDS,11,GCA_000014405.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00257__1__533,TIGR00257,GCA_000014405.1,yigZ,IMPACT family member YigZ,507448,508108,-1,scaffold_1,533,CDS,11,GCA_000014405.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00281__1__762,TIGR00281,GCA_000014405.1,scpB,Segregation and condensation protein B,727099,727702,1,scaffold_1,762,CDS,11,GCA_000014405.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00302__1__1312,TIGR00302,GCA_000014405.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1253900,1254149,-1,scaffold_1,1312,CDS,11,GCA_000014405.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00337__1__310,TIGR00337,GCA_000014405.1,pyrG,CTP synthase,296205,297825,1,scaffold_1,310,CDS,11,GCA_000014405.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00344__1__1454,TIGR00344,GCA_000014405.1,alaS,Alanine--tRNA ligase,1390487,1393121,-1,scaffold_1,1454,CDS,11,GCA_000014405.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00355__1__1306,TIGR00355,GCA_000014405.1,purH,Bifunctional purine biosynthesis protein PurH,1246381,1247923,-1,scaffold_1,1306,CDS,11,GCA_000014405.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00357__1__1747,TIGR00357,GCA_000014405.1,msrB,Peptide methionine sulfoxide reductase MsrB,1664838,1665264,-1,scaffold_1,1747,CDS,11,GCA_000014405.1__arts_core__TIGR00357,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00362__1__1,TIGR00362,GCA_000014405.1,dnaA,Chromosomal replication initiator protein DnaA,103,1468,1,scaffold_1,1,CDS,11,GCA_000014405.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00382__1__703,TIGR00382,GCA_000014405.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,664438,665692,1,scaffold_1,703,CDS,11,GCA_000014405.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00392__1__673,TIGR00392,GCA_000014405.1,ileS,Isoleucine--tRNA ligase,632612,635408,1,scaffold_1,673,CDS,11,GCA_000014405.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00396__1__1423,TIGR00396,GCA_000014405.1,leuS,Leucine--tRNA ligase,1361925,1364340,-1,scaffold_1,1423,CDS,11,GCA_000014405.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00398__1__298,TIGR00398,GCA_000014405.1,metG,Methionine--tRNA ligase,284539,286522,1,scaffold_1,298,CDS,11,GCA_000014405.1__arts_core__TIGR00398,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__1017,TIGR00401,GCA_000014405.1,msrA_3,Peptide methionine sulfoxide reductase MsrA,957846,958416,1,scaffold_1,1017,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__598,TIGR00401,BAA-365,msrA_1,Peptide methionine sulfoxide reductase MsrA,565376,565904,1,scaffold_1,598,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__942,TIGR00401,BAA-365,msrA_2,Peptide methionine sulfoxide reductase MsrA,901001,901571,-1,scaffold_1,942,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00409__1__1217,TIGR00409,GCA_000014405.1,proS,Proline--tRNA ligase,1162167,1163865,-1,scaffold_1,1217,CDS,11,GCA_000014405.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00414__1__1668,TIGR00414,GCA_000014405.1,serS,Serine--tRNA ligase,1598010,1599318,-1,scaffold_1,1668,CDS,11,GCA_000014405.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00416__1__1560,TIGR00416,GCA_000014405.1,radA,DNA repair protein RadA,1488373,1489750,-1,scaffold_1,1560,CDS,11,GCA_000014405.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00418__1__1370,TIGR00418,GCA_000014405.1,thrS,Threonine--tRNA ligase,1311897,1313829,-1,scaffold_1,1370,CDS,11,GCA_000014405.1__arts_core__TIGR00418,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00419__1__563,TIGR00419,GCA_000014405.1,tpiA,Triosephosphate isomerase,537162,537921,1,scaffold_1,563,CDS,11,GCA_000014405.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00422__1__651,TIGR00422,GCA_000014405.1,valS,Valine--tRNA ligase,611092,613732,1,scaffold_1,651,CDS,11,GCA_000014405.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00431__1__1209,TIGR00431,GCA_000014405.1,truB,tRNA pseudouridine synthase B,1151567,1152464,-1,scaffold_1,1209,CDS,11,GCA_000014405.1__arts_core__TIGR00431,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00435__1__1519,TIGR00435,GCA_000014405.1,cysS,Cysteine--tRNA ligase,1447665,1449090,-1,scaffold_1,1519,CDS,11,GCA_000014405.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00442__1__802,TIGR00442,GCA_000014405.1,hisS,Histidine--tRNA ligase,770181,771468,1,scaffold_1,802,CDS,11,GCA_000014405.1__arts_core__TIGR00442,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00447__1__318,TIGR00447,GCA_000014405.1,pth,Peptidyl-tRNA hydrolase,305103,305661,1,scaffold_1,318,CDS,11,GCA_000014405.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00456__1__729,TIGR00456,GCA_000014405.1,argS,Arginine--tRNA ligase,693342,695040,1,scaffold_1,729,CDS,11,GCA_000014405.1__arts_core__TIGR00456,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00459__1__803,TIGR00459,GCA_000014405.1,aspS,Aspartate--tRNA ligase,771483,773328,1,scaffold_1,803,CDS,11,GCA_000014405.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00464__1__1523,TIGR00464,GCA_000014405.1,gltX,Glutamate--tRNA ligase,1452453,1453956,-1,scaffold_1,1523,CDS,11,GCA_000014405.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00468__1__1353,TIGR00468,GCA_000014405.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1297693,1298743,-1,scaffold_1,1353,CDS,11,GCA_000014405.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00472__1__1352,TIGR00472,GCA_000014405.1,pheT,Phenylalanine--tRNA ligase beta subunit,1295282,1297694,-1,scaffold_1,1352,CDS,11,GCA_000014405.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00479__1__417,TIGR00479,GCA_000014405.1,-,putative RNA methyltransferase,394896,396252,1,scaffold_1,417,CDS,11,GCA_000014405.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00479__1__495,TIGR00479,GCA_000014405.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,471345,472728,-1,scaffold_1,495,CDS,11,GCA_000014405.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00481__1__387,TIGR00481,GCA_000014405.1,-,hypothetical protein,363902,364394,1,scaffold_1,387,CDS,11,GCA_000014405.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00484__1__346,TIGR00484,GCA_000014405.1,fusA,Elongation factor G,338694,340779,1,scaffold_1,346,CDS,11,GCA_000014405.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00485__1__701,TIGR00485,GCA_000014405.1,tuf,Elongation factor Tu,661593,662784,1,scaffold_1,701,CDS,11,GCA_000014405.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00486__1__1102,TIGR00486,GCA_000014405.1,-,GTP cyclohydrolase 1 type 2,1040156,1040954,-1,scaffold_1,1102,CDS,11,GCA_000014405.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00487__1__1211,TIGR00487,GCA_000014405.1,infB,Translation initiation factor IF-2,1152889,1155367,-1,scaffold_1,1211,CDS,11,GCA_000014405.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00496__1__1221,TIGR00496,GCA_000014405.1,frr,Ribosome-recycling factor,1166698,1167256,-1,scaffold_1,1221,CDS,11,GCA_000014405.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00499__1__329,TIGR00499,GCA_000014405.1,lysS,Lysine--tRNA ligase,319385,320891,1,scaffold_1,329,CDS,11,GCA_000014405.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00500__1__490,TIGR00500,GCA_000014405.1,map,Methionine aminopeptidase 1,466755,467583,1,scaffold_1,490,CDS,11,GCA_000014405.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00504__1__1066,TIGR00504,GCA_000014405.1,pcp,Pyrrolidone-carboxylate peptidase,1003615,1004227,-1,scaffold_1,1066,CDS,11,GCA_000014405.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00521__1__731,TIGR00521,GCA_000014405.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,695744,696944,1,scaffold_1,731,CDS,11,GCA_000014405.1__arts_core__TIGR00521,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00525__1__205,TIGR00525,GCA_000014405.1,folB,Dihydroneopterin aldolase,201885,202233,1,scaffold_1,205,CDS,11,GCA_000014405.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00544__1__542,TIGR00544,GCA_000014405.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,515761,516595,1,scaffold_1,542,CDS,11,GCA_000014405.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00560__1__529,TIGR00560,GCA_000014405.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,502423,502987,1,scaffold_1,529,CDS,11,GCA_000014405.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00563__1__1281,TIGR00563,GCA_000014405.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1226727,1228044,-1,scaffold_1,1281,CDS,11,GCA_000014405.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00575__1__410,TIGR00575,GCA_000014405.1,ligA,DNA ligase,386796,388812,1,scaffold_1,410,CDS,11,GCA_000014405.1__arts_core__TIGR00575,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00577__1__1375,TIGR00577,GCA_000014405.1,mutM,Formamidopyrimidine-DNA glycosylase,1317474,1318296,-1,scaffold_1,1375,CDS,11,GCA_000014405.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00580__1__319,TIGR00580,GCA_000014405.1,mfd,Transcription-repair-coupling factor,305677,309154,1,scaffold_1,319,CDS,11,GCA_000014405.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00593__1__1376,TIGR00593,GCA_000014405.1,polA,DNA polymerase I,1318306,1320967,-1,scaffold_1,1376,CDS,11,GCA_000014405.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00595__1__1283,TIGR00595,GCA_000014405.1,priA,Primosomal protein N,1228998,1231380,-1,scaffold_1,1283,CDS,11,GCA_000014405.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00613__1__1141,TIGR00613,GCA_000014405.1,recO,DNA repair protein RecO,1077778,1078528,-1,scaffold_1,1141,CDS,11,GCA_000014405.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00615__1__1480,TIGR00615,GCA_000014405.1,recR,Recombination protein RecR,1417880,1418480,-1,scaffold_1,1480,CDS,11,GCA_000014405.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00630__1__546,TIGR00630,GCA_000014405.1,uvrA,UvrABC system protein A,520773,523629,1,scaffold_1,546,CDS,11,GCA_000014405.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00631__1__545,TIGR00631,GCA_000014405.1,uvrB_2,UvrABC system protein B,518741,520784,1,scaffold_1,545,CDS,11,GCA_000014405.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00635__1__1460,TIGR00635,GCA_000014405.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1398875,1399886,-1,scaffold_1,1460,CDS,11,GCA_000014405.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00643__1__1269,TIGR00643,GCA_000014405.1,recG,ATP-dependent DNA helicase RecG,1214789,1216829,-1,scaffold_1,1269,CDS,11,GCA_000014405.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00647__1__554,TIGR00647,GCA_000014405.1,whiA,putative cell division protein WhiA,528282,529215,1,scaffold_1,554,CDS,11,GCA_000014405.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00651__1__568,TIGR00651,GCA_000014405.1,pta,Phosphate acetyltransferase,541222,542212,1,scaffold_1,568,CDS,11,GCA_000014405.1__arts_core__TIGR00651,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00653__1__1338,TIGR00653,GCA_000014405.1,glnA,Glutamine synthetase,1282275,1283613,-1,scaffold_1,1338,CDS,11,GCA_000014405.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00663__1__2,TIGR00663,GCA_000014405.1,dnaN,Beta sliding clamp,1649,2777,1,scaffold_1,2,CDS,11,GCA_000014405.1__arts_core__TIGR00663,False,False,True,,TIGR00663,5.4e-93,308.6,cog,cog0592,,,,, +GCA_000014405.1__TIGR00665__1__12,TIGR00665,GCA_000014405.1,dnaC,Replicative DNA helicase,12857,14228,1,scaffold_1,12,CDS,11,GCA_000014405.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00690__1__1284,TIGR00690,GCA_000014405.1,rpoZ,DNA-directed RNA polymerase subunit omega,1231442,1231664,-1,scaffold_1,1284,CDS,11,GCA_000014405.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00732__1__1161,TIGR00732,GCA_000014405.1,dprA,DNA processing protein DprA,1097075,1097915,-1,scaffold_1,1161,CDS,11,GCA_000014405.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00753__1__518,TIGR00753,GCA_000014405.1,uppP,Undecaprenyl-diphosphatase,491017,491845,-1,scaffold_1,518,CDS,11,GCA_000014405.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00755__1__301,TIGR00755,GCA_000014405.1,rsmA,Ribosomal RNA small subunit methyltransferase A,287831,288722,1,scaffold_1,301,CDS,11,GCA_000014405.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__1165,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,1099937,1100783,-1,scaffold_1,1165,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__1178,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,1112053,1112890,-1,scaffold_1,1178,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__62,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,60901,61699,1,scaffold_1,62,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__913,TIGR00762,BAA-365,degV,Protein DegV,877054,877936,1,scaffold_1,913,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00810__1__1652,TIGR00810,GCA_000014405.1,secG,putative protein-export membrane protein SecG,1578795,1579029,-1,scaffold_1,1652,CDS,11,GCA_000014405.1__arts_core__TIGR00810,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00855__1__1499,TIGR00855,GCA_000014405.1,rplL,50S ribosomal protein L7/L12,1434122,1434488,-1,scaffold_1,1499,CDS,11,GCA_000014405.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00871__1__1458,TIGR00871,GCA_000014405.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1396850,1398299,-1,scaffold_1,1458,CDS,11,GCA_000014405.1__arts_core__TIGR00871,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00877__1__1305,TIGR00877,GCA_000014405.1,purD,Phosphoribosylamine--glycine ligase,1245100,1246366,-1,scaffold_1,1305,CDS,11,GCA_000014405.1__arts_core__TIGR00877,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00878__1__1308,TIGR00878,GCA_000014405.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1248504,1249554,-1,scaffold_1,1308,CDS,11,GCA_000014405.1__arts_core__TIGR00878,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00922__1__1508,TIGR00922,GCA_000014405.1,nusG,Transcription termination/antitermination protein NusG,1441710,1442265,-1,scaffold_1,1508,CDS,11,GCA_000014405.1__arts_core__TIGR00922,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00952__1__698,TIGR00952,GCA_000014405.1,rpsO,30S ribosomal protein S15,658275,658545,1,scaffold_1,698,CDS,11,GCA_000014405.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00959__1__1252,TIGR00959,GCA_000014405.1,ffh,Signal recognition particle protein,1196476,1197907,-1,scaffold_1,1252,CDS,11,GCA_000014405.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00962__1__633,TIGR00962,GCA_000014405.1,atpA,ATP synthase subunit alpha,594408,595920,1,scaffold_1,633,CDS,11,GCA_000014405.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00963__1__538,TIGR00963,GCA_000014405.1,secA,Protein translocase subunit SecA,510907,513310,1,scaffold_1,538,CDS,11,GCA_000014405.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00964__1__1509,TIGR00964,GCA_000014405.1,secE,Protein translocase subunit SecE,1442356,1442527,-1,scaffold_1,1509,CDS,11,GCA_000014405.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00967__1__367,TIGR00967,GCA_000014405.1,secY,Protein translocase subunit SecY,350152,351448,1,scaffold_1,367,CDS,11,GCA_000014405.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00981__1__344,TIGR00981,GCA_000014405.1,rpsL,30S ribosomal protein S12,337767,338175,1,scaffold_1,344,CDS,11,GCA_000014405.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01009__1__354,TIGR01009,GCA_000014405.1,rpsC,30S ribosomal protein S3,344600,345272,1,scaffold_1,354,CDS,11,GCA_000014405.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01011__1__1224,TIGR01011,GCA_000014405.1,rpsB,30S ribosomal protein S2,1169221,1169983,-1,scaffold_1,1224,CDS,11,GCA_000014405.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01017__1__646,TIGR01017,GCA_000014405.1,rpsD,30S ribosomal protein S4,605018,605630,-1,scaffold_1,646,CDS,11,GCA_000014405.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01021__1__364,TIGR01021,GCA_000014405.1,rpsE,30S ribosomal protein S5,348982,349495,1,scaffold_1,364,CDS,11,GCA_000014405.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01023__1__1345,TIGR01023,GCA_000014405.1,rpmGA,50S ribosomal protein L33 1,1287992,1288142,-1,scaffold_1,1345,CDS,11,GCA_000014405.1__arts_core__TIGR01023,True,True,False,GCA_000014405.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000014405.1__TIGR01023__1__1510,TIGR01023,BAA-365,rpmG3,50S ribosomal protein L33 3,1442533,1442683,-1,scaffold_1,1510,CDS,11,GCA_000014405.1__arts_core__TIGR01023,True,True,False,GCA_000014405.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000014405.1__TIGR01024__1__1243,TIGR01024,GCA_000014405.1,rplS,50S ribosomal protein L19,1191568,1191916,-1,scaffold_1,1243,CDS,11,GCA_000014405.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01029__1__345,TIGR01029,GCA_000014405.1,rpsG,30S ribosomal protein S7,338190,338661,1,scaffold_1,345,CDS,11,GCA_000014405.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01030__1__1947,TIGR01030,GCA_000014405.1,rpmH,50S ribosomal protein L34,1856438,1856579,-1,scaffold_1,1947,CDS,11,GCA_000014405.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01031__1__742,TIGR01031,GCA_000014405.1,rpmF,50S ribosomal protein L32,709183,709375,1,scaffold_1,742,CDS,11,GCA_000014405.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01032__1__1366,TIGR01032,GCA_000014405.1,rplT,50S ribosomal protein L20,1308701,1309058,-1,scaffold_1,1366,CDS,11,GCA_000014405.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01034__1__1428,TIGR01034,GCA_000014405.1,metK,S-adenosylmethionine synthase,1368110,1369307,-1,scaffold_1,1428,CDS,11,GCA_000014405.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01039__1__635,TIGR01039,GCA_000014405.1,atpD,ATP synthase subunit beta,596912,598352,1,scaffold_1,635,CDS,11,GCA_000014405.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01044__1__353,TIGR01044,GCA_000014405.1,rplV,50S ribosomal protein L22,344233,344587,1,scaffold_1,353,CDS,11,GCA_000014405.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01049__1__347,TIGR01049,GCA_000014405.1,rpsJ,30S ribosomal protein S10,341165,341474,1,scaffold_1,347,CDS,11,GCA_000014405.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01050__1__352,TIGR01050,GCA_000014405.1,rpsS,30S ribosomal protein S19,343936,344212,1,scaffold_1,352,CDS,11,GCA_000014405.1__arts_core__TIGR01050,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01051__1__1160,TIGR01051,GCA_000014405.1,topA,DNA topoisomerase 1,1094771,1096949,-1,scaffold_1,1160,CDS,11,GCA_000014405.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01059__1__5,TIGR01059,GCA_000014405.1,gyrB,DNA gyrase subunit B,4360,6322,1,scaffold_1,5,CDS,11,GCA_000014405.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000014405.1__TIGR01060__1__1179,TIGR01060,GCA_000014405.1,eno,Enolase,1113196,1114474,1,scaffold_1,1179,CDS,11,GCA_000014405.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01063__1__6,TIGR01063,GCA_000014405.1,gyrA,DNA gyrase subunit A,6334,8806,1,scaffold_1,6,CDS,11,GCA_000014405.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000014405.1__TIGR01064__1__754,TIGR01064,GCA_000014405.1,pyk,Pyruvate kinase,720930,722700,1,scaffold_1,754,CDS,11,GCA_000014405.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01066__1__378,TIGR01066,GCA_000014405.1,rplM,50S ribosomal protein L13,358283,358727,1,scaffold_1,378,CDS,11,GCA_000014405.1__arts_core__TIGR01066,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01067__1__358,TIGR01067,GCA_000014405.1,rplN,50S ribosomal protein L14,346217,346586,1,scaffold_1,358,CDS,11,GCA_000014405.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01071__1__366,TIGR01071,GCA_000014405.1,rplO,50S ribosomal protein L15,349712,350153,1,scaffold_1,366,CDS,11,GCA_000014405.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01072__1__311,TIGR01072,GCA_000014405.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,297944,299216,1,scaffold_1,311,CDS,11,GCA_000014405.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01073__1__409,TIGR01073,GCA_000014405.1,pcrA,ATP-dependent DNA helicase PcrA,384524,386786,1,scaffold_1,409,CDS,11,GCA_000014405.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01079__1__359,TIGR01079,GCA_000014405.1,rplX,50S ribosomal protein L24,346602,346842,1,scaffold_1,359,CDS,11,GCA_000014405.1__arts_core__TIGR01079,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01082__1__1384,TIGR01082,GCA_000014405.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1325319,1326639,-1,scaffold_1,1384,CDS,11,GCA_000014405.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01083__1__891,TIGR01083,GCA_000014405.1,pdg,Ultraviolet N-glycosylase/AP lyase,852783,853413,1,scaffold_1,891,CDS,11,GCA_000014405.1__arts_core__TIGR01083,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01087__1__665,TIGR01087,GCA_000014405.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,624539,625922,1,scaffold_1,665,CDS,11,GCA_000014405.1__arts_core__TIGR01087,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01091__1__628,TIGR01091,GCA_000014405.1,upp,Uracil phosphoribosyltransferase,591582,592212,1,scaffold_1,628,CDS,11,GCA_000014405.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01128__1__696,TIGR01128,GCA_000014405.1,yqeN,putative protein YqeN,656738,657728,1,scaffold_1,696,CDS,11,GCA_000014405.1__arts_core__TIGR01128,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01131__1__629,TIGR01131,GCA_000014405.1,atpB,ATP synthase subunit a,592321,593041,1,scaffold_1,629,CDS,11,GCA_000014405.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01134__1__1309,TIGR01134,GCA_000014405.1,purF,Amidophosphoribosyltransferase,1249550,1251029,-1,scaffold_1,1309,CDS,11,GCA_000014405.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01135__1__434,TIGR01135,GCA_000014405.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],408973,410785,1,scaffold_1,434,CDS,11,GCA_000014405.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01144__1__631,TIGR01144,GCA_000014405.1,atpF,ATP synthase subunit b,593337,593844,1,scaffold_1,631,CDS,11,GCA_000014405.1__arts_core__TIGR01144,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01145__1__632,TIGR01145,GCA_000014405.1,atpH_2,ATP synthase subunit delta,593843,594386,1,scaffold_1,632,CDS,11,GCA_000014405.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01146__1__634,TIGR01146,GCA_000014405.1,atpG,ATP synthase gamma chain,595930,596893,1,scaffold_1,634,CDS,11,GCA_000014405.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01161__1__1315,TIGR01161,GCA_000014405.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1256538,1257663,-1,scaffold_1,1315,CDS,11,GCA_000014405.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01162__1__1316,TIGR01162,GCA_000014405.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1257652,1258144,-1,scaffold_1,1316,CDS,11,GCA_000014405.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01163__1__466,TIGR01163,GCA_000014405.1,rpe,Ribulose-phosphate 3-epimerase,441730,442381,1,scaffold_1,466,CDS,11,GCA_000014405.1__arts_core__TIGR01163,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01164__1__355,TIGR01164,GCA_000014405.1,rplP,50S ribosomal protein L16,345271,345715,1,scaffold_1,355,CDS,11,GCA_000014405.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01169__1__1506,TIGR01169,GCA_000014405.1,rplA,50S ribosomal protein L1,1440380,1441076,-1,scaffold_1,1506,CDS,11,GCA_000014405.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01171__1__351,TIGR01171,GCA_000014405.1,rplB,50S ribosomal protein L2,343082,343919,1,scaffold_1,351,CDS,11,GCA_000014405.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01216__1__636,TIGR01216,GCA_000014405.1,atpC,ATP synthase epsilon chain,598363,598804,1,scaffold_1,636,CDS,11,GCA_000014405.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01260__1__630,TIGR01260,GCA_000014405.1,atpH_1,ATP synthase subunit c,593059,593284,1,scaffold_1,630,CDS,11,GCA_000014405.1__arts_core__TIGR01260,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01280__1__1293,TIGR01280,GCA_000014405.1,xseB,Exodeoxyribonuclease 7 small subunit,1237296,1237536,-1,scaffold_1,1293,CDS,11,GCA_000014405.1__arts_core__TIGR01280,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01308__1__365,TIGR01308,GCA_000014405.1,rpmD,50S ribosomal protein L30,349506,349692,1,scaffold_1,365,CDS,11,GCA_000014405.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01311__1__1855,TIGR01311,GCA_000014405.1,glpK,Glycerol kinase,1763684,1765193,-1,scaffold_1,1855,CDS,11,GCA_000014405.1__arts_core__TIGR01311,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__1007,TIGR01369,BAA-365,carB_6,Carbamoyl-phosphate synthase large chain,949153,951835,1,scaffold_1,1007,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__1862,TIGR01369,BAA-365,carB_7,Carbamoyl-phosphate synthase large chain,1772322,1775511,-1,scaffold_1,1862,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__952,TIGR01369,BAA-365,carB_3,Carbamoyl-phosphate synthase large chain,907582,910264,-1,scaffold_1,952,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01378__1__1277,TIGR01378,GCA_000014405.1,thiN,Thiamine pyrophosphokinase,1222363,1223047,-1,scaffold_1,1277,CDS,11,GCA_000014405.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01389__1__735,TIGR01389,GCA_000014405.1,recQ,ATP-dependent DNA helicase RecQ,699072,700842,1,scaffold_1,735,CDS,11,GCA_000014405.1__arts_core__TIGR01389,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01391__1__1138,TIGR01391,GCA_000014405.1,dnaG,DNA primase,1072673,1074512,-1,scaffold_1,1138,CDS,11,GCA_000014405.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01393__1__1196,TIGR01393,GCA_000014405.1,lepA,Elongation factor 4,1131704,1133543,-1,scaffold_1,1196,CDS,11,GCA_000014405.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01417__1__508,TIGR01417,GCA_000014405.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,482775,484503,1,scaffold_1,508,CDS,11,GCA_000014405.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01430__1__1330,TIGR01430,GCA_000014405.1,add,Adenosine deaminase,1275359,1276352,-1,scaffold_1,1330,CDS,11,GCA_000014405.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01448__1__683,TIGR01448,GCA_000014405.1,recD2,ATP-dependent RecD-like DNA helicase,641234,643625,1,scaffold_1,683,CDS,11,GCA_000014405.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01455__1__578,TIGR01455,GCA_000014405.1,glmM,Phosphoglucosamine mutase,550001,551354,1,scaffold_1,578,CDS,11,GCA_000014405.1__arts_core__TIGR01455,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01496__1__208,TIGR01496,GCA_000014405.1,-,hypothetical protein,204616,205708,1,scaffold_1,208,CDS,11,GCA_000014405.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01498__1__206,TIGR01498,GCA_000014405.1,folE,GTP cyclohydrolase 1,202232,203306,1,scaffold_1,206,CDS,11,GCA_000014405.1__arts_core__TIGR01498,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01513__1__278,TIGR01513,GCA_000014405.1,pncB,Nicotinate phosphoribosyltransferase,267253,268777,-1,scaffold_1,278,CDS,11,GCA_000014405.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01534__1__561,TIGR01534,GCA_000014405.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,534819,535836,1,scaffold_1,561,CDS,11,GCA_000014405.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000014405.1__TIGR01632__1__1507,TIGR01632,GCA_000014405.1,rplK,50S ribosomal protein L11,1441159,1441585,-1,scaffold_1,1507,CDS,11,GCA_000014405.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01736__1__1310,TIGR01736,GCA_000014405.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1251004,1253227,-1,scaffold_1,1310,CDS,11,GCA_000014405.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01771__1__99,TIGR01771,GCA_000014405.1,ldh,L-lactate dehydrogenase,95006,95930,-1,scaffold_1,99,CDS,11,GCA_000014405.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01951__1__1296,TIGR01951,GCA_000014405.1,nusB,Transcription antitermination protein NusB,1239795,1240164,-1,scaffold_1,1296,CDS,11,GCA_000014405.1__arts_core__TIGR01951,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01953__1__1214,TIGR01953,GCA_000014405.1,nusA,Transcription termination/antitermination protein NusA,1155991,1157212,-1,scaffold_1,1214,CDS,11,GCA_000014405.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01980__1__1635,TIGR01980,GCA_000014405.1,-,hypothetical protein,1565302,1566730,-1,scaffold_1,1635,CDS,11,GCA_000014405.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01981__1__1638,TIGR01981,GCA_000014405.1,-,hypothetical protein,1568352,1569516,-1,scaffold_1,1638,CDS,11,GCA_000014405.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01994__1__1636,TIGR01994,GCA_000014405.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1566730,1567171,-1,scaffold_1,1636,CDS,11,GCA_000014405.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02012__1__530,TIGR02012,GCA_000014405.1,recA,Protein RecA,503192,504302,1,scaffold_1,530,CDS,11,GCA_000014405.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02013__1__339,TIGR02013,GCA_000014405.1,rpoB,DNA-directed RNA polymerase subunit beta,329068,332743,1,scaffold_1,339,CDS,11,GCA_000014405.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.5,cog,cog0085,,,,, +GCA_000014405.1__TIGR02027__1__372,TIGR02027,GCA_000014405.1,rpoA,DNA-directed RNA polymerase subunit alpha,353377,354316,1,scaffold_1,372,CDS,11,GCA_000014405.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02191__1__1259,TIGR02191,GCA_000014405.1,rnc,Ribonuclease 3,1204657,1205353,-1,scaffold_1,1259,CDS,11,GCA_000014405.1__arts_core__TIGR02191,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02225__1__759,TIGR02225,GCA_000014405.1,xerD_1,Tyrosine recombinase XerD,725125,726022,1,scaffold_1,759,CDS,11,GCA_000014405.1__arts_core__TIGR02225,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02227__1__1099,TIGR02227,GCA_000014405.1,spsB,Signal peptidase IB,1037661,1038228,1,scaffold_1,1099,CDS,11,GCA_000014405.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02273__1__1250,TIGR02273,GCA_000014405.1,rimM,Ribosome maturation factor RimM,1195544,1196048,-1,scaffold_1,1250,CDS,11,GCA_000014405.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02348__1__1464,TIGR02348,GCA_000014405.1,groL,60 kDa chaperonin,1405172,1406786,-1,scaffold_1,1464,CDS,11,GCA_000014405.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02349__1__1197,TIGR02349,GCA_000014405.1,dnaJ,Chaperone protein DnaJ,1133664,1134801,-1,scaffold_1,1197,CDS,11,GCA_000014405.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02350__1__1198,TIGR02350,GCA_000014405.1,dnaK,Chaperone protein DnaK,1134883,1136728,-1,scaffold_1,1198,CDS,11,GCA_000014405.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02386__1__340,TIGR02386,GCA_000014405.1,rpoC,DNA-directed RNA polymerase subunit beta,332759,336425,1,scaffold_1,340,CDS,11,GCA_000014405.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02393__1__1137,TIGR02393,GCA_000014405.1,sigA_2,RNA polymerase sigma factor SigA,1071583,1072702,-1,scaffold_1,1137,CDS,11,GCA_000014405.1__arts_core__TIGR02393,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02487__1__181,TIGR02487,GCA_000014405.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,176021,178232,1,scaffold_1,181,CDS,11,GCA_000014405.1__arts_core__TIGR02487,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02727__1__1344,TIGR02727,GCA_000014405.1,-,hypothetical protein,1287365,1287938,-1,scaffold_1,1344,CDS,11,GCA_000014405.1__arts_core__TIGR02727,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02729__1__738,TIGR02729,GCA_000014405.1,obg,GTPase Obg,704049,705303,1,scaffold_1,738,CDS,11,GCA_000014405.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03156__1__1776,TIGR03156,GCA_000014405.1,hflX,GTPase HflX,1690374,1691655,1,scaffold_1,1776,CDS,11,GCA_000014405.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03263__1__1285,TIGR03263,GCA_000014405.1,gmk_1,Guanylate kinase,1231665,1232280,-1,scaffold_1,1285,CDS,11,GCA_000014405.1__arts_core__TIGR03263,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03284__1__712,TIGR03284,GCA_000014405.1,thyA,Thymidylate synthase,672440,673397,1,scaffold_1,712,CDS,11,GCA_000014405.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03534__1__626,TIGR03534,GCA_000014405.1,prmC,Release factor glutamine methyltransferase,589645,590488,1,scaffold_1,626,CDS,11,GCA_000014405.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03594__1__768,TIGR03594,GCA_000014405.1,der,GTPase Der,731954,733262,1,scaffold_1,768,CDS,11,GCA_000014405.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03625__1__348,TIGR03625,GCA_000014405.1,rplC,50S ribosomal protein L3,341499,342129,1,scaffold_1,348,CDS,11,GCA_000014405.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03631__1__370,TIGR03631,GCA_000014405.1,rpsM,30S ribosomal protein S13,352565,352916,1,scaffold_1,370,CDS,11,GCA_000014405.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03632__1__371,TIGR03632,GCA_000014405.1,rpsK,30S ribosomal protein S11,352944,353334,1,scaffold_1,371,CDS,11,GCA_000014405.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03635__1__357,TIGR03635,GCA_000014405.1,rpsQ,30S ribosomal protein S17,345920,346187,1,scaffold_1,357,CDS,11,GCA_000014405.1__arts_core__TIGR03635,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03654__1__362,TIGR03654,GCA_000014405.1,rplF,50S ribosomal protein L6,348049,348580,1,scaffold_1,362,CDS,11,GCA_000014405.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03705__1__459,TIGR03705,GCA_000014405.1,ppk,Polyphosphate kinase,435131,437297,1,scaffold_1,459,CDS,11,GCA_000014405.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03725__1__1470,TIGR03725,GCA_000014405.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1411780,1412503,-1,scaffold_1,1470,CDS,11,GCA_000014405.1__arts_core__TIGR03725,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03953__1__349,TIGR03953,GCA_000014405.1,rplD,50S ribosomal protein L4,342143,342761,1,scaffold_1,349,CDS,11,GCA_000014405.1__arts_core__TIGR03953,False,True,False,,,,,,,,,,, diff --git a/.tests/unit/arts_bgctable_combine/data/config/config.yaml b/.tests/unit/arts_bgctable_combine/data/config/config.yaml new file mode 100644 index 00000000..4e4e5f54 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/config/config.yaml @@ -0,0 +1,64 @@ +# This file should contain everything to configure the workflow on a global scale. + +#### PROJECT INFORMATION #### +# This section control your project configuration. +# Each project are separated by "-". +# A project can be defined as (1) a yaml object or (2) a Portable Encapsulated Project (PEP) file. +# (1) To define project as a yaml object, it must contain the variable "name" and "samples". +# - name : name of your project +# - samples : a csv file containing a list of genome ids for analysis with multiple sources mentioned. Genome ids must be unique. +# - rules: a yaml file containing project rule configurations. This will override global rule configuration. +# - prokka-db (optional): list of the custom accessions to use as prokka reference database. +# - gtdb-tax (optional): output summary file of GTDB-tk with "user_genome" and "classification" as the two minimum columns +# (2) To define project using PEP file, only variable "name" should be given that points to the location of the PEP yaml file. +# - pep: path to PEP .yaml file. See project example_pep for details. +# PS: the variable pep and name is an alias + +projects: +# Project 1 (yaml object) + - name: config/lactobacillus_delbruecki/project_config.yaml + +bgc_projects: + - pep: config/lanthipeptide/project_config.yaml + +#### GLOBAL RULE CONFIGURATION #### +# This section configures the rules to run globally. +# Use project specific rule configurations if you want to run different rules for each projects. +# pipelines or rules: set value to TRUE if you want to run the analysis or FALSE if you don't +pipelines: + seqfu: FALSE + mash: FALSE + fastani: FALSE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: FALSE + antismash: TRUE + query-bigslice: FALSE + bigscape: FALSE + bigslice: FALSE + automlst-wrapper: FALSE + arts: FALSE + roary: FALSE + eggnog: FALSE + eggnog-roary: FALSE + deeptfactor: FALSE + deeptfactor-roary: FALSE + cblaster-genome: FALSE + cblaster-bgc: FALSE + +#### RESOURCES CONFIGURATION #### +# resources : the location of the resources to run the rule. +# The default location is at "resources/{resource_name}". +resources_path: + antismash_db: resources/antismash_db + eggnog_db: resources/eggnog_db + BiG-SCAPE: resources/BiG-SCAPE + bigslice: resources/bigslice + checkm: resources/checkm + gtdbtk: resources/gtdbtk + #RNAmmer: resources/RNAmmer # If specified, will override Barnapp in Prokka + +rule_parameters: + install_gtdbtk: + release: 214 + release_version: 214 diff --git a/.tests/unit/arts_bgctable_combine/data/config/lactobacillus_delbruecki/project_config.yaml b/.tests/unit/arts_bgctable_combine/data/config/lactobacillus_delbruecki/project_config.yaml new file mode 100644 index 00000000..4f2fb49f --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/config/lactobacillus_delbruecki/project_config.yaml @@ -0,0 +1,30 @@ +name: Lactobacillus_delbrueckii + +pep_version: 2.1.0 + +description: "Lactobacillus delbrueckii 27 01 2023" + +sample_table: samples.csv + +#### RULE CONFIGURATION #### +# rules: set value to TRUE if you want to run the analysis or FALSE if you don't +rules: + seqfu: TRUE + mash: TRUE + fastani: TRUE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: TRUE + antismash: TRUE + query-bigslice: TRUE + bigscape: TRUE + bigslice: TRUE + automlst-wrapper: TRUE + arts: TRUE + roary: TRUE + eggnog: TRUE + eggnog-roary: TRUE + deeptfactor: TRUE + deeptfactor-roary: TRUE + cblaster-genome: TRUE + cblaster-bgc: TRUE diff --git a/.tests/unit/arts_bgctable_combine/data/config/lactobacillus_delbruecki/samples.csv b/.tests/unit/arts_bgctable_combine/data/config/lactobacillus_delbruecki/samples.csv new file mode 100644 index 00000000..4e848e1b --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/config/lactobacillus_delbruecki/samples.csv @@ -0,0 +1,5 @@ +genome_id,source,organism,genus,species,strain,closest_placement_reference,input_file +GCA_000056065.1,ncbi,,,,,, +GCA_000182835.1,ncbi,,,,,, +GCA_000191165.1,ncbi,,,,,, +GCA_000014405.1,ncbi,,,,,, diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_bgctable_summary.json b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_bgctable_summary.json new file mode 100644 index 00000000..754f3a54 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_bgctable_summary.json @@ -0,0 +1,24 @@ +{ + "CP000412.1.region001__arts_bgc": { + "#Cluster": "cluster-1_1", + "Type": "lanthipeptide-class-iii", + "Source": "scaffold_1", + "Location": "17283 - 39785", + "Core hits": 0, + "Other hits": 0, + "Genelist": "[]", + "bgc_id": "CP000412.1.region001", + "genome_id": "GCA_000014405.1" + }, + "CP000412.1.region002__arts_bgc": { + "#Cluster": "cluster-1_2", + "Type": "RiPP-like", + "Source": "scaffold_1", + "Location": "120275 - 131241", + "Core hits": 0, + "Other hits": 0, + "Genelist": "[]", + "bgc_id": "CP000412.1.region002", + "genome_id": "GCA_000014405.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_bgctable_summary.json b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_bgctable_summary.json new file mode 100644 index 00000000..afbccb06 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_bgctable_summary.json @@ -0,0 +1,35 @@ +{ + "CR954253.1.region001__arts_bgc": { + "#Cluster": "cluster-1_1", + "Type": "lanthipeptide-class-iii", + "Source": "scaffold_1", + "Location": "17407 - 39909", + "Core hits": 0, + "Other hits": 0, + "Genelist": "[]", + "bgc_id": "CR954253.1.region001", + "genome_id": "GCA_000056065.1" + }, + "CR954253.1.region002__arts_bgc": { + "#Cluster": "cluster-1_2", + "Type": "RiPP-like", + "Source": "scaffold_1", + "Location": "125153 - 136119", + "Core hits": 0, + "Other hits": 0, + "Genelist": "[]", + "bgc_id": "CR954253.1.region002", + "genome_id": "GCA_000056065.1" + }, + "CR954253.1.region003__arts_bgc": { + "#Cluster": "cluster-1_3", + "Type": "lanthipeptide-class-iv", + "Source": "scaffold_1", + "Location": "1745672 - 1767868", + "Core hits": 0, + "Other hits": 0, + "Genelist": "[]", + "bgc_id": "CR954253.1.region003", + "genome_id": "GCA_000056065.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1.json b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000182835.1_arts_bgctable_summary.json similarity index 100% rename from .tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1.json rename to .tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000182835.1_arts_bgctable_summary.json diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000191165.1_arts_bgctable_summary.json b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000191165.1_arts_bgctable_summary.json new file mode 100644 index 00000000..25f70545 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000191165.1_arts_bgctable_summary.json @@ -0,0 +1,24 @@ +{ + "CP000156.1.region001__arts_bgc": { + "#Cluster": "cluster-1_1", + "Type": "RiPP-like", + "Source": "scaffold_1", + "Location": "117260 - 128451", + "Core hits": 0, + "Other hits": 0, + "Genelist": "[]", + "bgc_id": "CP000156.1.region001", + "genome_id": "GCA_000191165.1" + }, + "CP000156.1.region002__arts_bgc": { + "#Cluster": "cluster-1_2", + "Type": "lanthipeptide-class-iv", + "Source": "scaffold_1", + "Location": "1767251 - 1789447", + "Core hits": 1, + "Other hits": 0, + "Genelist": "[['1883', 'TIGR01369', 1788915, 1792104, 'Core', 'CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit', 'Purines, pyrimidines, nucleosides, and nucleotides']]", + "bgc_id": "CP000156.1.region002", + "genome_id": "GCA_000191165.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1-change_log.json b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1-change_log.json new file mode 100644 index 00000000..b8b687d8 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1-change_log.json @@ -0,0 +1,22 @@ +{ + "GCA_000014405.1": { + "CP000412.1.region001.gbk": { + "record_id": "CP000412.1", + "original_id": "CP000412.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000014405.1/CP000412.1.region001.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/CP000412.1.region001.gbk" + }, + "CP000412.1.region002.gbk": { + "record_id": "CP000412.1", + "original_id": "CP000412.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000014405.1/CP000412.1.region002.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/CP000412.1.region002.gbk" + }, + "GCA_000014405.1.gbk": { + "record_id": "CP000412.1", + "original_id": "CP000412.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000014405.1/GCA_000014405.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1-change_log.json b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1-change_log.json new file mode 100644 index 00000000..12d1c4f3 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1-change_log.json @@ -0,0 +1,28 @@ +{ + "GCA_000056065.1": { + "CR954253.1.region001.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/CR954253.1.region001.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/CR954253.1.region001.gbk" + }, + "CR954253.1.region002.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/CR954253.1.region002.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/CR954253.1.region002.gbk" + }, + "CR954253.1.region003.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/CR954253.1.region003.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/CR954253.1.region003.gbk" + }, + "GCA_000056065.1.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/GCA_000056065.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1-change_log.json b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1-change_log.json new file mode 100644 index 00000000..c43523a3 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1-change_log.json @@ -0,0 +1,10 @@ +{ + "GCA_000182835.1": { + "GCA_000182835.1.gbk": { + "record_id": "CP002342.1", + "original_id": "CP002342.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000182835.1/GCA_000182835.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1-change_log.json b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1-change_log.json new file mode 100644 index 00000000..f086874c --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1-change_log.json @@ -0,0 +1,22 @@ +{ + "GCA_000191165.1": { + "CP000156.1.region001.gbk": { + "record_id": "CP000156.1", + "original_id": "CP000156.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000191165.1/CP000156.1.region001.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/CP000156.1.region001.gbk" + }, + "CP000156.1.region002.gbk": { + "record_id": "CP000156.1", + "original_id": "CP000156.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000191165.1/CP000156.1.region002.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/CP000156.1.region002.gbk" + }, + "GCA_000191165.1.gbk": { + "record_id": "CP000156.1", + "original_id": "CP000156.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000191165.1/GCA_000191165.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/data/workflow b/.tests/unit/arts_bgctable_combine/data/workflow new file mode 120000 index 00000000..cf154e99 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/data/workflow @@ -0,0 +1 @@ +../../../../workflow \ No newline at end of file diff --git a/.tests/unit/arts_bgctable_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv b/.tests/unit/arts_bgctable_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv new file mode 100644 index 00000000..644b1e93 --- /dev/null +++ b/.tests/unit/arts_bgctable_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv @@ -0,0 +1,8 @@ +pkey,#Cluster,Type,Source,Location,Core hits,Other hits,Genelist,bgc_id,genome_id +CR954253.1.region001__arts_bgc,cluster-1_1,lanthipeptide-class-iii,scaffold_1,17407 - 39909,0,0,[],CR954253.1.region001,GCA_000056065.1 +CR954253.1.region002__arts_bgc,cluster-1_2,RiPP-like,scaffold_1,125153 - 136119,0,0,[],CR954253.1.region002,GCA_000056065.1 +CR954253.1.region003__arts_bgc,cluster-1_3,lanthipeptide-class-iv,scaffold_1,1745672 - 1767868,0,0,[],CR954253.1.region003,GCA_000056065.1 +CP000156.1.region001__arts_bgc,cluster-1_1,RiPP-like,scaffold_1,117260 - 128451,0,0,[],CP000156.1.region001,GCA_000191165.1 +CP000156.1.region002__arts_bgc,cluster-1_2,lanthipeptide-class-iv,scaffold_1,1767251 - 1789447,1,0,"[['1883', 'TIGR01369', 1788915, 1792104, 'Core', 'CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit', 'Purines, pyrimidines, nucleosides, and nucleotides']]",CP000156.1.region002,GCA_000191165.1 +CP000412.1.region001__arts_bgc,cluster-1_1,lanthipeptide-class-iii,scaffold_1,17283 - 39785,0,0,[],CP000412.1.region001,GCA_000014405.1 +CP000412.1.region002__arts_bgc,cluster-1_2,RiPP-like,scaffold_1,120275 - 131241,0,0,[],CP000412.1.region002,GCA_000014405.1 diff --git a/.tests/unit/arts_coretable_combine/data/config/config.yaml b/.tests/unit/arts_coretable_combine/data/config/config.yaml new file mode 100644 index 00000000..4e4e5f54 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/config/config.yaml @@ -0,0 +1,64 @@ +# This file should contain everything to configure the workflow on a global scale. + +#### PROJECT INFORMATION #### +# This section control your project configuration. +# Each project are separated by "-". +# A project can be defined as (1) a yaml object or (2) a Portable Encapsulated Project (PEP) file. +# (1) To define project as a yaml object, it must contain the variable "name" and "samples". +# - name : name of your project +# - samples : a csv file containing a list of genome ids for analysis with multiple sources mentioned. Genome ids must be unique. +# - rules: a yaml file containing project rule configurations. This will override global rule configuration. +# - prokka-db (optional): list of the custom accessions to use as prokka reference database. +# - gtdb-tax (optional): output summary file of GTDB-tk with "user_genome" and "classification" as the two minimum columns +# (2) To define project using PEP file, only variable "name" should be given that points to the location of the PEP yaml file. +# - pep: path to PEP .yaml file. See project example_pep for details. +# PS: the variable pep and name is an alias + +projects: +# Project 1 (yaml object) + - name: config/lactobacillus_delbruecki/project_config.yaml + +bgc_projects: + - pep: config/lanthipeptide/project_config.yaml + +#### GLOBAL RULE CONFIGURATION #### +# This section configures the rules to run globally. +# Use project specific rule configurations if you want to run different rules for each projects. +# pipelines or rules: set value to TRUE if you want to run the analysis or FALSE if you don't +pipelines: + seqfu: FALSE + mash: FALSE + fastani: FALSE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: FALSE + antismash: TRUE + query-bigslice: FALSE + bigscape: FALSE + bigslice: FALSE + automlst-wrapper: FALSE + arts: FALSE + roary: FALSE + eggnog: FALSE + eggnog-roary: FALSE + deeptfactor: FALSE + deeptfactor-roary: FALSE + cblaster-genome: FALSE + cblaster-bgc: FALSE + +#### RESOURCES CONFIGURATION #### +# resources : the location of the resources to run the rule. +# The default location is at "resources/{resource_name}". +resources_path: + antismash_db: resources/antismash_db + eggnog_db: resources/eggnog_db + BiG-SCAPE: resources/BiG-SCAPE + bigslice: resources/bigslice + checkm: resources/checkm + gtdbtk: resources/gtdbtk + #RNAmmer: resources/RNAmmer # If specified, will override Barnapp in Prokka + +rule_parameters: + install_gtdbtk: + release: 214 + release_version: 214 diff --git a/.tests/unit/arts_coretable_combine/data/config/lactobacillus_delbruecki/project_config.yaml b/.tests/unit/arts_coretable_combine/data/config/lactobacillus_delbruecki/project_config.yaml new file mode 100644 index 00000000..4f2fb49f --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/config/lactobacillus_delbruecki/project_config.yaml @@ -0,0 +1,30 @@ +name: Lactobacillus_delbrueckii + +pep_version: 2.1.0 + +description: "Lactobacillus delbrueckii 27 01 2023" + +sample_table: samples.csv + +#### RULE CONFIGURATION #### +# rules: set value to TRUE if you want to run the analysis or FALSE if you don't +rules: + seqfu: TRUE + mash: TRUE + fastani: TRUE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: TRUE + antismash: TRUE + query-bigslice: TRUE + bigscape: TRUE + bigslice: TRUE + automlst-wrapper: TRUE + arts: TRUE + roary: TRUE + eggnog: TRUE + eggnog-roary: TRUE + deeptfactor: TRUE + deeptfactor-roary: TRUE + cblaster-genome: TRUE + cblaster-bgc: TRUE diff --git a/.tests/unit/arts_coretable_combine/data/config/lactobacillus_delbruecki/samples.csv b/.tests/unit/arts_coretable_combine/data/config/lactobacillus_delbruecki/samples.csv new file mode 100644 index 00000000..4e848e1b --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/config/lactobacillus_delbruecki/samples.csv @@ -0,0 +1,5 @@ +genome_id,source,organism,genus,species,strain,closest_placement_reference,input_file +GCA_000056065.1,ncbi,,,,,, +GCA_000182835.1,ncbi,,,,,, +GCA_000191165.1,ncbi,,,,,, +GCA_000014405.1,ncbi,,,,,, diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_coretable_summary.json b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_coretable_summary.json new file mode 100644 index 00000000..d9a6260e --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_coretable_summary.json @@ -0,0 +1,2664 @@ +{ + "GCA_000014405.1__arts_core__Cpn10": { + "#Core_gene": "Cpn10", + "Description": "PF00166.17: Chaperonin 10 Kd subunit", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|groS|10 kDa chaperonin|loc|1406812 1407097 -1 # ID=1_1465|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__GrpE": { + "#Core_gene": "GrpE", + "Description": "PF01025.15: GrpE", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|grpE|Protein GrpE|loc|1136787 1137405 -1 # ID=1_1199|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__Methyltransf_5": { + "#Core_gene": "Methyltransf_5", + "Description": "PF01795.15: MraW methylase family", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|620091 621036 1 # ID=1_661|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__PGK": { + "#Core_gene": "PGK", + "Description": "PF00162.15: Phosphoglycerate kinase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pgk|Phosphoglycerate kinase|loc|535932 537144 1 # ID=1_562|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__Ribosomal_L10": { + "#Core_gene": "Ribosomal_L10", + "Description": "PF00466.16: Ribosomal protein L10", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplJ|50S ribosomal protein L10|loc|1434540 1435050 -1 # ID=1_1500|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__Ribosomal_L23": { + "#Core_gene": "Ribosomal_L23", + "Description": "PF00276.16: Ribosomal protein L23", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplW|50S ribosomal protein L23|loc|342760 343057 1 # ID=1_350|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__Ribosomal_S8": { + "#Core_gene": "Ribosomal_S8", + "Description": "PF00410.15: Ribosomal protein S8", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsH|30S ribosomal protein S8|loc|347626 348025 1 # ID=1_361|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__Ribosomal_S9": { + "#Core_gene": "Ribosomal_S9", + "Description": "PF00380.15: Ribosomal protein S9/S16", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsI|30S ribosomal protein S9|loc|358739 359135 1 # ID=1_379|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00653": { + "#Core_gene": "TIGR00653", + "Description": "GlnA: glutamine synthetase, type I", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|glnA|Glutamine synthetase|loc|1282275 1283613 -1 # ID=1_1338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01513": { + "#Core_gene": "TIGR01513", + "Description": "NAPRTase_put: nicotinate phosphoribosyltransferase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pncB|Nicotinate phosphoribosyltransferase|loc|267253 268777 -1 # ID=1_278|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00152": { + "#Core_gene": "TIGR00152", + "Description": "TIGR00152: dephospho-CoA kinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|coaE|Dephospho-CoA kinase|loc|1316881 1317466 -1 # ID=1_1374|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00525": { + "#Core_gene": "TIGR00525", + "Description": "folB: dihydroneopterin aldolase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|folB|Dihydroneopterin aldolase|loc|201885 202233 1 # ID=1_205|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01378": { + "#Core_gene": "TIGR01378", + "Description": "thi_PPkinase: thiamine pyrophosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|thiN|Thiamine pyrophosphokinase|loc|1222363 1223047 -1 # ID=1_1277|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01496": { + "#Core_gene": "TIGR01496", + "Description": "DHPS: dihydropteroate synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|204616 205708 1 # ID=1_208|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01498": { + "#Core_gene": "TIGR01498", + "Description": "folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|folE|GTP cyclohydrolase 1|loc|202232 203306 1 # ID=1_206|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01980": { + "#Core_gene": "TIGR01980", + "Description": "sufB: FeS assembly protein SufB", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1565302 1566730 -1 # ID=1_1635|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01981": { + "#Core_gene": "TIGR01981", + "Description": "sufD: FeS assembly protein SufD", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1568352 1569516 -1 # ID=1_1638|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01994": { + "#Core_gene": "TIGR01994", + "Description": "SUF_scaf_2: SUF system FeS assembly protein, NifU family", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1566730 1567171 -1 # ID=1_1636|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00055": { + "#Core_gene": "TIGR00055", + "Description": "uppS: di-trans,poly-cis-decaprenylcistransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1165964 1166696 -1 # ID=1_1220|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00219": { + "#Core_gene": "TIGR00219", + "Description": "mreC: rod shape-determining protein MreC", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|mreC|Cell shape-determining protein MreC|loc|617508 618360 1 # ID=1_656|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00753": { + "#Core_gene": "TIGR00753", + "Description": "undec_PP_bacA: undecaprenyl-diphosphatase UppP", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|uppP|Undecaprenyl-diphosphatase|loc|491017 491845 -1 # ID=1_518|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01082": { + "#Core_gene": "TIGR01082", + "Description": "murC: UDP-N-acetylmuramate--L-alanine ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1325319 1326639 -1 # ID=1_1384|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01087": { + "#Core_gene": "TIGR01087", + "Description": "murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|624539 625922 1 # ID=1_665|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00065": { + "#Core_gene": "TIGR00065", + "Description": "ftsZ: cell division protein FtsZ", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ftsZ|Cell division protein FtsZ|loc|629361 630720 1 # ID=1_669|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00220": { + "#Core_gene": "TIGR00220", + "Description": "mscL: large conductance mechanosensitive channel protein", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|mscL|Large-conductance mechanosensitive channel|loc|266697 267174 1 # ID=1_277|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00647": { + "#Core_gene": "TIGR00647", + "Description": "DNA_bind_WhiA: DNA-binding protein WhiA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|whiA|putative cell division protein WhiA|loc|528282 529215 1 # ID=1_554|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00732": { + "#Core_gene": "TIGR00732", + "Description": "dprA: DNA protecting protein DprA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dprA|DNA processing protein DprA|loc|1097075 1097915 -1 # ID=1_1161|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01034": { + "#Core_gene": "TIGR01034", + "Description": "metK: methionine adenosyltransferase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|metK|S-adenosylmethionine synthase|loc|1368110 1369307 -1 # ID=1_1428|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02727": { + "#Core_gene": "TIGR02727", + "Description": "MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1287365 1287938 -1 # ID=1_1344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03705": { + "#Core_gene": "TIGR03705", + "Description": "poly_P_kin: polyphosphate kinase 1", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ppk|Polyphosphate kinase|loc|435131 437297 1 # ID=1_459|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01391": { + "#Core_gene": "TIGR01391", + "Description": "dnaG: DNA primase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dnaG|DNA primase|loc|1072673 1074512 -1 # ID=1_1138|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00042": { + "#Core_gene": "TIGR00042", + "Description": "TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|dITP/XTP pyrophosphatase|loc|1385243 1385864 -1 # ID=1_1447|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00084": { + "#Core_gene": "TIGR00084", + "Description": "ruvA: Holliday junction DNA helicase RuvA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1399899 1400493 -1 # ID=1_1461|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00194": { + "#Core_gene": "TIGR00194", + "Description": "uvrC: excinuclease ABC subunit C", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|uvrC|UvrABC system protein C|loc|702109 703912 1 # ID=1_737|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00237": { + "#Core_gene": "TIGR00237", + "Description": "xseA: exodeoxyribonuclease VII, large subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|xseA|Exodeoxyribonuclease 7 large subunit|loc|1237528 1238899 -1 # ID=1_1294|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00281": { + "#Core_gene": "TIGR00281", + "Description": "TIGR00281: segregation and condensation protein B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|scpB|Segregation and condensation protein B|loc|727099 727702 1 # ID=1_762|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00362": { + "#Core_gene": "TIGR00362", + "Description": "DnaA: chromosomal replication initiator protein DnaA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dnaA|Chromosomal replication initiator protein DnaA|loc|103 1468 1 # ID=1_1|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00416": { + "#Core_gene": "TIGR00416", + "Description": "sms: DNA repair protein RadA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|radA|DNA repair protein RadA|loc|1488373 1489750 -1 # ID=1_1560|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00575": { + "#Core_gene": "TIGR00575", + "Description": "dnlj: DNA ligase, NAD-dependent", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ligA|DNA ligase|loc|386796 388812 1 # ID=1_410|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00577": { + "#Core_gene": "TIGR00577", + "Description": "fpg: DNA-formamidopyrimidine glycosylase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|mutM|Formamidopyrimidine-DNA glycosylase|loc|1317474 1318296 -1 # ID=1_1375|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00580": { + "#Core_gene": "TIGR00580", + "Description": "mfd: transcription-repair coupling factor", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|mfd|Transcription-repair-coupling factor|loc|305677 309154 1 # ID=1_319|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00593": { + "#Core_gene": "TIGR00593", + "Description": "pola: DNA polymerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|polA|DNA polymerase I|loc|1318306 1320967 -1 # ID=1_1376|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00595": { + "#Core_gene": "TIGR00595", + "Description": "priA: primosomal protein N'", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|priA|Primosomal protein N|loc|1228998 1231380 -1 # ID=1_1283|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00613": { + "#Core_gene": "TIGR00613", + "Description": "reco: DNA repair protein RecO", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|recO|DNA repair protein RecO|loc|1077778 1078528 -1 # ID=1_1141|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00615": { + "#Core_gene": "TIGR00615", + "Description": "recR: recombination protein RecR", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|recR|Recombination protein RecR|loc|1417880 1418480 -1 # ID=1_1480|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00630": { + "#Core_gene": "TIGR00630", + "Description": "uvra: excinuclease ABC subunit A", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|uvrA|UvrABC system protein A|loc|520773 523629 1 # ID=1_546|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00631": { + "#Core_gene": "TIGR00631", + "Description": "uvrb: excinuclease ABC subunit B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|uvrB_2|UvrABC system protein B|loc|518741 520784 1 # ID=1_545|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00635": { + "#Core_gene": "TIGR00635", + "Description": "ruvB: Holliday junction DNA helicase RuvB", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1398875 1399886 -1 # ID=1_1460|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00643": { + "#Core_gene": "TIGR00643", + "Description": "recG: ATP-dependent DNA helicase RecG", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|recG|ATP-dependent DNA helicase RecG|loc|1214789 1216829 -1 # ID=1_1269|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00663": { + "#Core_gene": "TIGR00663", + "Description": "TIGR00663: dnan: DNA polymerase III, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dnaN|Beta sliding clamp|loc|1649 2777 1 # ID=1_2|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00665": { + "#Core_gene": "TIGR00665", + "Description": "DnaB: replicative DNA helicase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dnaC|Replicative DNA helicase|loc|12857 14228 1 # ID=1_12|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01051": { + "#Core_gene": "TIGR01051", + "Description": "topA_bact: DNA topoisomerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|topA|DNA topoisomerase 1|loc|1094771 1096949 -1 # ID=1_1160|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01059": { + "#Core_gene": "TIGR01059", + "Description": "gyrB: DNA gyrase, B subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gyrB|DNA gyrase subunit B|loc|4360 6322 1 # ID=1_5|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01063": { + "#Core_gene": "TIGR01063", + "Description": "gyrA: DNA gyrase, A subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gyrA|DNA gyrase subunit A|loc|6334 8806 1 # ID=1_6|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01073": { + "#Core_gene": "TIGR01073", + "Description": "pcrA: ATP-dependent DNA helicase PcrA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pcrA|ATP-dependent DNA helicase PcrA|loc|384524 386786 1 # ID=1_409|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01083": { + "#Core_gene": "TIGR01083", + "Description": "nth: endonuclease III", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pdg|Ultraviolet N-glycosylase/AP lyase|loc|852783 853413 1 # ID=1_891|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01128": { + "#Core_gene": "TIGR01128", + "Description": "holA: DNA polymerase III, delta subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|yqeN|putative protein YqeN|loc|656738 657728 1 # ID=1_696|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01280": { + "#Core_gene": "TIGR01280", + "Description": "xseB: exodeoxyribonuclease VII, small subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|xseB|Exodeoxyribonuclease 7 small subunit|loc|1237296 1237536 -1 # ID=1_1293|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01389": { + "#Core_gene": "TIGR01389", + "Description": "recQ: ATP-dependent DNA helicase RecQ", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|recQ|ATP-dependent DNA helicase RecQ|loc|699072 700842 1 # ID=1_735|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02012": { + "#Core_gene": "TIGR02012", + "Description": "tigrfam_recA: protein RecA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|recA|Protein RecA|loc|503192 504302 1 # ID=1_530|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02225": { + "#Core_gene": "TIGR02225", + "Description": "recomb_XerD: tyrosine recombinase XerD", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|xerD_1|Tyrosine recombinase XerD|loc|725125 726022 1 # ID=1_759|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00016": { + "#Core_gene": "TIGR00016", + "Description": "ackA: acetate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ackA|Acetate kinase|loc|574077 575265 1 # ID=1_610|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00021": { + "#Core_gene": "TIGR00021", + "Description": "rpiA: ribose 5-phosphate isomerase A", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpiA|Ribose-5-phosphate isomerase A|loc|442393 443086 1 # ID=1_467|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00419": { + "#Core_gene": "TIGR00419", + "Description": "tim: triose-phosphate isomerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tpiA|Triosephosphate isomerase|loc|537162 537921 1 # ID=1_563|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00651": { + "#Core_gene": "TIGR00651", + "Description": "pta: phosphate acetyltransferase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pta|Phosphate acetyltransferase|loc|541222 542212 1 # ID=1_568|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00871": { + "#Core_gene": "TIGR00871", + "Description": "zwf: glucose-6-phosphate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1396850 1398299 -1 # ID=1_1458|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00962": { + "#Core_gene": "TIGR00962", + "Description": "atpA: ATP synthase F1, alpha subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpA|ATP synthase subunit alpha|loc|594408 595920 1 # ID=1_633|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01039": { + "#Core_gene": "TIGR01039", + "Description": "atpD: ATP synthase F1, beta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpD|ATP synthase subunit beta|loc|596912 598352 1 # ID=1_635|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01060": { + "#Core_gene": "TIGR01060", + "Description": "eno: phosphopyruvate hydratase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|eno|Enolase|loc|1113196 1114474 1 # ID=1_1179|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01064": { + "#Core_gene": "TIGR01064", + "Description": "pyruv_kin: pyruvate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pyk|Pyruvate kinase|loc|720930 722700 1 # ID=1_754|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01131": { + "#Core_gene": "TIGR01131", + "Description": "ATP_synt_6_or_A: ATP synthase F0, A subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpB|ATP synthase subunit a|loc|592321 593041 1 # ID=1_629|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01144": { + "#Core_gene": "TIGR01144", + "Description": "ATP_synt_b: ATP synthase F0, B subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpF|ATP synthase subunit b|loc|593337 593844 1 # ID=1_631|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01145": { + "#Core_gene": "TIGR01145", + "Description": "ATP_synt_delta: ATP synthase F1, delta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpH_2|ATP synthase subunit delta|loc|593843 594386 1 # ID=1_632|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01146": { + "#Core_gene": "TIGR01146", + "Description": "ATPsyn_F1gamma: ATP synthase F1, gamma subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpG|ATP synthase gamma chain|loc|595930 596893 1 # ID=1_634|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01216": { + "#Core_gene": "TIGR01216", + "Description": "ATP_synt_epsi: ATP synthase F1, epsilon subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpC|ATP synthase epsilon chain|loc|598363 598804 1 # ID=1_636|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01260": { + "#Core_gene": "TIGR01260", + "Description": "ATP_synt_c: ATP synthase F0, C subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|atpH_1|ATP synthase subunit c|loc|593059 593284 1 # ID=1_630|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01311": { + "#Core_gene": "TIGR01311", + "Description": "glycerol_kin: glycerol kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|glpK|Glycerol kinase|loc|1763684 1765193 -1 # ID=1_1855|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01534": { + "#Core_gene": "TIGR01534", + "Description": "GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|534819 535836 1 # ID=1_561|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01771": { + "#Core_gene": "TIGR01771", + "Description": "L-LDH-NAD: L-lactate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ldh|L-lactate dehydrogenase|loc|95006 95930 -1 # ID=1_99|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00121": { + "#Core_gene": "TIGR00121", + "Description": "birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|birA|Bifunctional ligase/repressor BirA|loc|786338 787004 1 # ID=1_818|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00357": { + "#Core_gene": "TIGR00357", + "Description": "TIGR00357: methionine-R-sulfoxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1664838 1665264 -1 # ID=1_1747|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00401": { + "#Core_gene": "TIGR00401", + "Description": "msrA: peptide-methionine (S)-S-oxide reductase", + "Function": "Protein fate", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|msrA_1|Peptide methionine sulfoxide reductase MsrA|loc|565376 565904 1 # ID=1_598|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|msrA_2|Peptide methionine sulfoxide reductase MsrA|loc|901001 901571 -1 # ID=1_942|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|msrA_3|Peptide methionine sulfoxide reductase MsrA|loc|957846 958416 1 # ID=1_1017|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00077": { + "#Core_gene": "TIGR00077", + "Description": "lspA: signal peptidase II", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|lspA|Lipoprotein signal peptidase|loc|867762 868215 1 # ID=1_906|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00079": { + "#Core_gene": "TIGR00079", + "Description": "pept_deformyl: peptide deformylase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|def2|Peptide deformylase 2|loc|647262 647817 -1 # ID=1_687|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00115": { + "#Core_gene": "TIGR00115", + "Description": "tig: trigger factor", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tig|Trigger factor|loc|662967 664287 1 # ID=1_702|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00500": { + "#Core_gene": "TIGR00500", + "Description": "met_pdase_I: methionine aminopeptidase, type I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|map|Methionine aminopeptidase 1|loc|466755 467583 1 # ID=1_490|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00504": { + "#Core_gene": "TIGR00504", + "Description": "pyro_pdase: pyroglutamyl-peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pcp|Pyrrolidone-carboxylate peptidase|loc|1003615 1004227 -1 # ID=1_1066|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00544": { + "#Core_gene": "TIGR00544", + "Description": "lgt: prolipoprotein diacylglyceryl transferase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|515761 516595 1 # ID=1_542|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00810": { + "#Core_gene": "TIGR00810", + "Description": "secG: preprotein translocase, SecG subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|secG|putative protein-export membrane protein SecG|loc|1578795 1579029 -1 # ID=1_1652|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00963": { + "#Core_gene": "TIGR00963", + "Description": "secA: preprotein translocase, SecA subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|secA|Protein translocase subunit SecA|loc|510907 513310 1 # ID=1_538|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00964": { + "#Core_gene": "TIGR00964", + "Description": "secE_bact: preprotein translocase, SecE subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|secE|Protein translocase subunit SecE|loc|1442356 1442527 -1 # ID=1_1509|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00967": { + "#Core_gene": "TIGR00967", + "Description": "3a0501s007: preprotein translocase, SecY subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|secY|Protein translocase subunit SecY|loc|350152 351448 1 # ID=1_367|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02227": { + "#Core_gene": "TIGR02227", + "Description": "sigpep_I_bact: signal peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|spsB|Signal peptidase IB|loc|1037661 1038228 1 # ID=1_1099|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02348": { + "#Core_gene": "TIGR02348", + "Description": "GroEL: chaperonin GroL", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|groL|60 kDa chaperonin|loc|1405172 1406786 -1 # ID=1_1464|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02350": { + "#Core_gene": "TIGR02350", + "Description": "prok_dnaK: chaperone protein DnaK", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dnaK|Chaperone protein DnaK|loc|1134883 1136728 -1 # ID=1_1198|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03534": { + "#Core_gene": "TIGR03534", + "Description": "RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|prmC|Release factor glutamine methyltransferase|loc|589645 590488 1 # ID=1_626|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00186": { + "#Core_gene": "TIGR00186", + "Description": "rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1446493 1447243 -1 # ID=1_1517|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00398": { + "#Core_gene": "TIGR00398", + "Description": "metG: methionine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|metG|Methionine--tRNA ligase|loc|284539 286522 1 # ID=1_298|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00001": { + "#Core_gene": "TIGR00001", + "Description": "rpmI_bact: ribosomal protein bL35", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmI|50S ribosomal protein L35|loc|1309102 1309303 -1 # ID=1_1367|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00008": { + "#Core_gene": "TIGR00008", + "Description": "infA: translation initiation factor IF-1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|infA|Translation initiation factor IF-1|loc|352187 352409 1 # ID=1_369|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00009": { + "#Core_gene": "TIGR00009", + "Description": "L28: ribosomal protein bL28", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmB|50S ribosomal protein L28|loc|1219050 1219236 1 # ID=1_1272|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00012": { + "#Core_gene": "TIGR00012", + "Description": "L29: ribosomal protein uL29", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmC|50S ribosomal protein L29|loc|345704 345902 1 # ID=1_356|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00019": { + "#Core_gene": "TIGR00019", + "Description": "prfA: peptide chain release factor 1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|prfA|Peptide chain release factor 1|loc|588567 589653 1 # ID=1_625|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00020": { + "#Core_gene": "TIGR00020", + "Description": "prfB: peptide chain release factor 2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|prfB|Peptide chain release factor 2|loc|513516 514515 1 # ID=1_539|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00029": { + "#Core_gene": "TIGR00029", + "Description": "S20: ribosomal protein bS20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsT|30S ribosomal protein S20|loc|657820 658072 -1 # ID=1_697|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00038": { + "#Core_gene": "TIGR00038", + "Description": "efp: translation elongation factor P", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|efp_1|Elongation factor P|loc|1240647 1241214 -1 # ID=1_1298|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|efp_2|Elongation factor P|loc|1624901 1625459 -1 # ID=1_1697|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00057": { + "#Core_gene": "TIGR00057", + "Description": "TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ywlC|Threonylcarbamoyl-AMP synthase|loc|590487 591483 1 # ID=1_627|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00059": { + "#Core_gene": "TIGR00059", + "Description": "L17: ribosomal protein bL17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplQ|50S ribosomal protein L17|loc|354339 354723 1 # ID=1_373|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00060": { + "#Core_gene": "TIGR00060", + "Description": "L18_bact: ribosomal protein uL18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplR|50S ribosomal protein L18|loc|348606 348966 1 # ID=1_363|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00061": { + "#Core_gene": "TIGR00061", + "Description": "L21: ribosomal protein bL21", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplU|50S ribosomal protein L21|loc|1242850 1243162 -1 # ID=1_1301|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00062": { + "#Core_gene": "TIGR00062", + "Description": "L27: ribosomal protein bL27", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmA|50S ribosomal protein L27|loc|1242535 1242835 -1 # ID=1_1300|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00071": { + "#Core_gene": "TIGR00071", + "Description": "hisT_truA: tRNA pseudouridine(38-40) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|truA|tRNA pseudouridine synthase A|loc|357389 358178 1 # ID=1_377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00086": { + "#Core_gene": "TIGR00086", + "Description": "smpB: SsrA-binding protein", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|smpB|SsrA-binding protein|loc|1575875 1576337 -1 # ID=1_1650|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00088": { + "#Core_gene": "TIGR00088", + "Description": "trmD: tRNA (guanine(37)-N(1))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1194807 1195545 -1 # ID=1_1249|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00090": { + "#Core_gene": "TIGR00090", + "Description": "rsfS_iojap_ybeB: ribosome silencing factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rsfS|Ribosomal silencing factor RsfS|loc|1305859 1306207 -1 # ID=1_1362|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00105": { + "#Core_gene": "TIGR00105", + "Description": "L31: ribosomal protein bL31", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmE2|50S ribosomal protein L31 type B|loc|299315 299567 1 # ID=1_312|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00116": { + "#Core_gene": "TIGR00116", + "Description": "tsf: translation elongation factor Ts", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tsf|Elongation factor Ts|loc|1168130 1169159 -1 # ID=1_1223|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00133": { + "#Core_gene": "TIGR00133", + "Description": "gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|391718 393149 1 # ID=1_414|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00135": { + "#Core_gene": "TIGR00135", + "Description": "gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|389965 390271 1 # ID=1_412|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00150": { + "#Core_gene": "TIGR00150", + "Description": "T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|542222 542708 1 # ID=1_569|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00157": { + "#Core_gene": "TIGR00157", + "Description": "TIGR00157: ribosome small subunit-dependent GTPase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1223076 1223970 -1 # ID=1_1278|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00158": { + "#Core_gene": "TIGR00158", + "Description": "L9: ribosomal protein bL9", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplI|50S ribosomal protein L9|loc|12378 12834 1 # ID=1_11|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00165": { + "#Core_gene": "TIGR00165", + "Description": "S18: ribosomal protein bS18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsR|30S ribosomal protein S18|loc|9957 10194 1 # ID=1_9|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00166": { + "#Core_gene": "TIGR00166", + "Description": "S6: ribosomal protein bS6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsF|30S ribosomal protein S6|loc|9021 9315 1 # ID=1_7|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00168": { + "#Core_gene": "TIGR00168", + "Description": "infC: translation initiation factor IF-3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|infC|Translation initiation factor IF-3|loc|1309323 1309845 -1 # ID=1_1368|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00174": { + "#Core_gene": "TIGR00174", + "Description": "miaA: tRNA dimethylallyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|miaA|tRNA dimethylallyltransferase|loc|1285003 1285930 -1 # ID=1_1340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00233": { + "#Core_gene": "TIGR00233", + "Description": "trpS: tryptophan--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|trpS2|Tryptophan--tRNA ligase 2|loc|279249 280275 1 # ID=1_294|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00234": { + "#Core_gene": "TIGR00234", + "Description": "tyrS: tyrosine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tyrS|Tyrosine--tRNA ligase|loc|211287 212553 1 # ID=1_216|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00256": { + "#Core_gene": "TIGR00256", + "Description": "TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dtd|D-aminoacyl-tRNA deacylase|loc|769460 769898 1 # ID=1_801|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00344": { + "#Core_gene": "TIGR00344", + "Description": "alaS: alanine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|alaS|Alanine--tRNA ligase|loc|1390487 1393121 -1 # ID=1_1454|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00392": { + "#Core_gene": "TIGR00392", + "Description": "ileS: isoleucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ileS|Isoleucine--tRNA ligase|loc|632612 635408 1 # ID=1_673|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00396": { + "#Core_gene": "TIGR00396", + "Description": "leuS_bact: leucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|leuS|Leucine--tRNA ligase|loc|1361925 1364340 -1 # ID=1_1423|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00409": { + "#Core_gene": "TIGR00409", + "Description": "proS_fam_II: proline--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|proS|Proline--tRNA ligase|loc|1162167 1163865 -1 # ID=1_1217|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00414": { + "#Core_gene": "TIGR00414", + "Description": "serS: serine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|serS|Serine--tRNA ligase|loc|1598010 1599318 -1 # ID=1_1668|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00418": { + "#Core_gene": "TIGR00418", + "Description": "thrS: threonine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|thrS|Threonine--tRNA ligase|loc|1311897 1313829 -1 # ID=1_1370|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00422": { + "#Core_gene": "TIGR00422", + "Description": "valS: valine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|valS|Valine--tRNA ligase|loc|611092 613732 1 # ID=1_651|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00431": { + "#Core_gene": "TIGR00431", + "Description": "TruB: tRNA pseudouridine(55) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|truB|tRNA pseudouridine synthase B|loc|1151567 1152464 -1 # ID=1_1209|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00435": { + "#Core_gene": "TIGR00435", + "Description": "cysS: cysteine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|cysS|Cysteine--tRNA ligase|loc|1447665 1449090 -1 # ID=1_1519|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00442": { + "#Core_gene": "TIGR00442", + "Description": "hisS: histidine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|hisS|Histidine--tRNA ligase|loc|770181 771468 1 # ID=1_802|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00447": { + "#Core_gene": "TIGR00447", + "Description": "pth: aminoacyl-tRNA hydrolase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pth|Peptidyl-tRNA hydrolase|loc|305103 305661 1 # ID=1_318|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00456": { + "#Core_gene": "TIGR00456", + "Description": "argS: arginine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|argS|Arginine--tRNA ligase|loc|693342 695040 1 # ID=1_729|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00459": { + "#Core_gene": "TIGR00459", + "Description": "aspS_bact: aspartate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|aspS|Aspartate--tRNA ligase|loc|771483 773328 1 # ID=1_803|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00464": { + "#Core_gene": "TIGR00464", + "Description": "gltX_bact: glutamate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gltX|Glutamate--tRNA ligase|loc|1452453 1453956 -1 # ID=1_1523|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00468": { + "#Core_gene": "TIGR00468", + "Description": "pheS: phenylalanine--tRNA ligase, alpha subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1297693 1298743 -1 # ID=1_1353|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00472": { + "#Core_gene": "TIGR00472", + "Description": "pheT_bact: phenylalanine--tRNA ligase, beta subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1295282 1297694 -1 # ID=1_1352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00496": { + "#Core_gene": "TIGR00496", + "Description": "frr: ribosome recycling factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|frr|Ribosome-recycling factor|loc|1166698 1167256 -1 # ID=1_1221|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00499": { + "#Core_gene": "TIGR00499", + "Description": "lysS_bact: lysine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|lysS|Lysine--tRNA ligase|loc|319385 320891 1 # ID=1_329|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00755": { + "#Core_gene": "TIGR00755", + "Description": "ksgA: ribosomal RNA small subunit methyltransferase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|287831 288722 1 # ID=1_301|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00855": { + "#Core_gene": "TIGR00855", + "Description": "L12: ribosomal protein bL12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplL|50S ribosomal protein L7/L12|loc|1434122 1434488 -1 # ID=1_1499|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00952": { + "#Core_gene": "TIGR00952", + "Description": "S15_bact: ribosomal protein uS15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsO|30S ribosomal protein S15|loc|658275 658545 1 # ID=1_698|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00981": { + "#Core_gene": "TIGR00981", + "Description": "rpsL_bact: ribosomal protein uS12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsL|30S ribosomal protein S12|loc|337767 338175 1 # ID=1_344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01009": { + "#Core_gene": "TIGR01009", + "Description": "rpsC_bact: ribosomal protein uS3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsC|30S ribosomal protein S3|loc|344600 345272 1 # ID=1_354|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01011": { + "#Core_gene": "TIGR01011", + "Description": "rpsB_bact: ribosomal protein uS2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsB|30S ribosomal protein S2|loc|1169221 1169983 -1 # ID=1_1224|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01017": { + "#Core_gene": "TIGR01017", + "Description": "rpsD_bact: ribosomal protein uS4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsD|30S ribosomal protein S4|loc|605018 605630 -1 # ID=1_646|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01021": { + "#Core_gene": "TIGR01021", + "Description": "rpsE_bact: ribosomal protein uS5", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsE|30S ribosomal protein S5|loc|348982 349495 1 # ID=1_364|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01023": { + "#Core_gene": "TIGR01023", + "Description": "rpmG_bact: ribosomal protein bL33", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmGA|50S ribosomal protein L33 1|loc|1287992 1288142 -1 # ID=1_1345|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|rpmG3|50S ribosomal protein L33 3|loc|1442533 1442683 -1 # ID=1_1510|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01024": { + "#Core_gene": "TIGR01024", + "Description": "rplS_bact: ribosomal protein bL19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplS|50S ribosomal protein L19|loc|1191568 1191916 -1 # ID=1_1243|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01029": { + "#Core_gene": "TIGR01029", + "Description": "rpsG_bact: ribosomal protein uS7", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsG|30S ribosomal protein S7|loc|338190 338661 1 # ID=1_345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01030": { + "#Core_gene": "TIGR01030", + "Description": "rpmH_bact: ribosomal protein bL34", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmH|50S ribosomal protein L34|loc|1856438 1856579 -1 # ID=1_1947|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01031": { + "#Core_gene": "TIGR01031", + "Description": "rpmF_bact: ribosomal protein bL32", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmF|50S ribosomal protein L32|loc|709183 709375 1 # ID=1_742|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01032": { + "#Core_gene": "TIGR01032", + "Description": "rplT_bact: ribosomal protein bL20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplT|50S ribosomal protein L20|loc|1308701 1309058 -1 # ID=1_1366|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01044": { + "#Core_gene": "TIGR01044", + "Description": "rplV_bact: ribosomal protein uL22", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplV|50S ribosomal protein L22|loc|344233 344587 1 # ID=1_353|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01049": { + "#Core_gene": "TIGR01049", + "Description": "rpsJ_bact: ribosomal protein uS10", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsJ|30S ribosomal protein S10|loc|341165 341474 1 # ID=1_347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01050": { + "#Core_gene": "TIGR01050", + "Description": "rpsS_bact: ribosomal protein uS19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsS|30S ribosomal protein S19|loc|343936 344212 1 # ID=1_352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01066": { + "#Core_gene": "TIGR01066", + "Description": "rplM_bact: ribosomal protein uL13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplM|50S ribosomal protein L13|loc|358283 358727 1 # ID=1_378|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01067": { + "#Core_gene": "TIGR01067", + "Description": "rplN_bact: ribosomal protein uL14", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplN|50S ribosomal protein L14|loc|346217 346586 1 # ID=1_358|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01071": { + "#Core_gene": "TIGR01071", + "Description": "rplO_bact: ribosomal protein uL15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplO|50S ribosomal protein L15|loc|349712 350153 1 # ID=1_366|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01079": { + "#Core_gene": "TIGR01079", + "Description": "rplX_bact: ribosomal protein uL24", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplX|50S ribosomal protein L24|loc|346602 346842 1 # ID=1_359|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01164": { + "#Core_gene": "TIGR01164", + "Description": "rplP_bact: ribosomal protein uL16", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplP|50S ribosomal protein L16|loc|345271 345715 1 # ID=1_355|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01169": { + "#Core_gene": "TIGR01169", + "Description": "rplA_bact: ribosomal protein uL1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplA|50S ribosomal protein L1|loc|1440380 1441076 -1 # ID=1_1506|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01171": { + "#Core_gene": "TIGR01171", + "Description": "rplB_bact: ribosomal protein uL2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplB|50S ribosomal protein L2|loc|343082 343919 1 # ID=1_351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01308": { + "#Core_gene": "TIGR01308", + "Description": "rpmD_bact: ribosomal protein uL30", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpmD|50S ribosomal protein L30|loc|349506 349692 1 # ID=1_365|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01632": { + "#Core_gene": "TIGR01632", + "Description": "L11_bact: ribosomal protein uL11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplK|50S ribosomal protein L11|loc|1441159 1441585 -1 # ID=1_1507|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02729": { + "#Core_gene": "TIGR02729", + "Description": "Obg_CgtA: Obg family GTPase CgtA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|obg|GTPase Obg|loc|704049 705303 1 # ID=1_738|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03631": { + "#Core_gene": "TIGR03631", + "Description": "uS13_bact: ribosomal protein uS13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsM|30S ribosomal protein S13|loc|352565 352916 1 # ID=1_370|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03632": { + "#Core_gene": "TIGR03632", + "Description": "uS11_bact: ribosomal protein uS11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsK|30S ribosomal protein S11|loc|352944 353334 1 # ID=1_371|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03635": { + "#Core_gene": "TIGR03635", + "Description": "uS17_bact: ribosomal protein uS17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpsQ|30S ribosomal protein S17|loc|345920 346187 1 # ID=1_357|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03654": { + "#Core_gene": "TIGR03654", + "Description": "L6_bact: ribosomal protein uL6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplF|50S ribosomal protein L6|loc|348049 348580 1 # ID=1_362|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03953": { + "#Core_gene": "TIGR03953", + "Description": "rplD_bact: 50S ribosomal protein uL4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplD|50S ribosomal protein L4|loc|342143 342761 1 # ID=1_349|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00878": { + "#Core_gene": "TIGR00878", + "Description": "purM: phosphoribosylformylglycinamidine cyclo-ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1248504 1249554 -1 # ID=1_1308|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01161": { + "#Core_gene": "TIGR01161", + "Description": "purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1256538 1257663 -1 # ID=1_1315|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01162": { + "#Core_gene": "TIGR01162", + "Description": "purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1257652 1258144 -1 # ID=1_1316|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00017": { + "#Core_gene": "TIGR00017", + "Description": "cmk: cytidylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|cmk|Cytidylate kinase|loc|729952 730585 1 # ID=1_766|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00081": { + "#Core_gene": "TIGR00081", + "Description": "purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1254153 1254876 -1 # ID=1_1313|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00302": { + "#Core_gene": "TIGR00302", + "Description": "TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1253900 1254149 -1 # ID=1_1312|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00355": { + "#Core_gene": "TIGR00355", + "Description": "purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purH|Bifunctional purine biosynthesis protein PurH|loc|1246381 1247923 -1 # ID=1_1306|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01134": { + "#Core_gene": "TIGR01134", + "Description": "purF: amidophosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purF|Amidophosphoribosyltransferase|loc|1249550 1251029 -1 # ID=1_1309|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01736": { + "#Core_gene": "TIGR01736", + "Description": "FGAM_synth_II: phosphoribosylformylglycinamidine synthase II", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1251004 1253227 -1 # ID=1_1310|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02487": { + "#Core_gene": "TIGR02487", + "Description": "NrdD: anaerobic ribonucleoside-triphosphate reductase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|176021 178232 1 # ID=1_181|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03263": { + "#Core_gene": "TIGR03263", + "Description": "guanyl_kin: guanylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|gmk_1|Guanylate kinase|loc|1231665 1232280 -1 # ID=1_1285|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03284": { + "#Core_gene": "TIGR03284", + "Description": "thym_sym: thymidylate synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|thyA|Thymidylate synthase|loc|672440 673397 1 # ID=1_712|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01953": { + "#Core_gene": "TIGR01953", + "Description": "NusA: transcription termination factor NusA", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|nusA|Transcription termination/antitermination protein NusA|loc|1155991 1157212 -1 # ID=1_1214|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02393": { + "#Core_gene": "TIGR02393", + "Description": "RpoD_Cterm: RNA polymerase sigma factor RpoD", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|sigA_2|RNA polymerase sigma factor SigA|loc|1071583 1072702 -1 # ID=1_1137|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00082": { + "#Core_gene": "TIGR00082", + "Description": "rbfA: ribosome-binding factor A", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rbfA|Ribosome-binding factor A|loc|1152514 1152877 -1 # ID=1_1210|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00188": { + "#Core_gene": "TIGR00188", + "Description": "rnpA: ribonuclease P protein component", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rnpA|Ribonuclease P protein component|loc|1856024 1856390 -1 # ID=1_1946|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00690": { + "#Core_gene": "TIGR00690", + "Description": "rpoZ: DNA-directed RNA polymerase, omega subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1231442 1231664 -1 # ID=1_1284|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00922": { + "#Core_gene": "TIGR00922", + "Description": "nusG: transcription termination/antitermination factor NusG", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|nusG|Transcription termination/antitermination protein NusG|loc|1441710 1442265 -1 # ID=1_1508|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01951": { + "#Core_gene": "TIGR01951", + "Description": "nusB: transcription antitermination factor NusB", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|nusB|Transcription antitermination protein NusB|loc|1239795 1240164 -1 # ID=1_1296|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02013": { + "#Core_gene": "TIGR02013", + "Description": "TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpoB|DNA-directed RNA polymerase subunit beta|loc|329068 332743 1 # ID=1_339|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02027": { + "#Core_gene": "TIGR02027", + "Description": "rpoA: DNA-directed RNA polymerase, alpha subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpoA|DNA-directed RNA polymerase subunit alpha|loc|353377 354316 1 # ID=1_372|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02191": { + "#Core_gene": "TIGR02191", + "Description": "RNaseIII: ribonuclease III", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rnc|Ribonuclease 3|loc|1204657 1205353 -1 # ID=1_1259|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02273": { + "#Core_gene": "TIGR02273", + "Description": "16S_RimM: 16S rRNA processing protein RimM", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rimM|Ribosome maturation factor RimM|loc|1195544 1196048 -1 # ID=1_1250|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02386": { + "#Core_gene": "TIGR02386", + "Description": "rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpoC|DNA-directed RNA polymerase subunit beta|loc|332759 336425 1 # ID=1_340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR02349": { + "#Core_gene": "TIGR02349", + "Description": "DnaJ_bact: chaperone protein DnaJ", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|dnaJ|Chaperone protein DnaJ|loc|1133664 1134801 -1 # ID=1_1197|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03625": { + "#Core_gene": "TIGR03625", + "Description": "L3_bact: 50S ribosomal protein uL3", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rplC|50S ribosomal protein L3|loc|341499 342129 1 # ID=1_348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00180": { + "#Core_gene": "TIGR00180", + "Description": "parB_part: ParB/RepB/Spo0J family partition protein", + "Function": "Unclassified", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|spo0J|Stage 0 sporulation protein J|loc|1727224 1728115 -1 # ID=1_1813|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|noc|Nucleoid occlusion protein|loc|1728873 1729698 -1 # ID=1_1815|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00196": { + "#Core_gene": "TIGR00196", + "Description": "yjeF_cterm: YjeF family C-terminal domain", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1351882 1352749 -1 # ID=1_1412|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00092": { + "#Core_gene": "TIGR00092", + "Description": "TIGR00092: GTP-binding protein YchF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ychF|Ribosome-binding ATPase YchF|loc|1725791 1726892 -1 # ID=1_1811|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00250": { + "#Core_gene": "TIGR00250", + "Description": "RNAse_H_YqgF: putative transcription antitermination factor YqgF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|yrrK|Putative pre-16S rRNA nuclease|loc|1389736 1390165 -1 # ID=1_1452|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00257": { + "#Core_gene": "TIGR00257", + "Description": "IMPACT_YIGZ: uncharacterized protein, YigZ family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|yigZ|IMPACT family member YigZ|loc|507448 508108 -1 # ID=1_533|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00481": { + "#Core_gene": "TIGR00481", + "Description": "TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|363902 364394 1 # ID=1_387|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00486": { + "#Core_gene": "TIGR00486", + "Description": "YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|GTP cyclohydrolase 1 type 2|loc|1040156 1040954 -1 # ID=1_1102|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01448": { + "#Core_gene": "TIGR01448", + "Description": "recD_rel: helicase, RecD/TraA family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|recD2|ATP-dependent RecD-like DNA helicase|loc|641234 643625 1 # ID=1_683|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00103": { + "#Core_gene": "TIGR00103", + "Description": "DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|Nucleoid-associated protein|loc|1418481 1418811 -1 # ID=1_1481|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03156": { + "#Core_gene": "TIGR03156", + "Description": "GTP_HflX: GTP-binding protein HflX", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|hflX|GTPase HflX|loc|1690374 1691655 1 # ID=1_1776|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00762": { + "#Core_gene": "TIGR00762", + "Description": "DegV: EDD domain protein, DegV family", + "Function": "Unknown function", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|60901 61699 1 # ID=1_62|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|degV|Protein DegV|loc|877054 877936 1 # ID=1_913|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|1099937 1100783 -1 # ID=1_1165|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|1112053 1112890 -1 # ID=1_1178|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01393": { + "#Core_gene": "TIGR01393", + "Description": "lepA: elongation factor 4", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|lepA|Elongation factor 4|loc|1131704 1133543 -1 # ID=1_1196|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01417": { + "#Core_gene": "TIGR01417", + "Description": "PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|482775 484503 1 # ID=1_508|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00337": { + "#Core_gene": "TIGR00337", + "Description": "PyrG: CTP synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pyrG|CTP synthase|loc|296205 297825 1 # ID=1_310|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00877": { + "#Core_gene": "TIGR00877", + "Description": "purD: phosphoribosylamine--glycine ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|purD|Phosphoribosylamine--glycine ligase|loc|1245100 1246366 -1 # ID=1_1305|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01091": { + "#Core_gene": "TIGR01091", + "Description": "upp: uracil phosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|upp|Uracil phosphoribosyltransferase|loc|591582 592212 1 # ID=1_628|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01369": { + "#Core_gene": "TIGR01369", + "Description": "CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|carB_3|Carbamoyl-phosphate synthase large chain|loc|907582 910264 -1 # ID=1_952|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|carB_6|Carbamoyl-phosphate synthase large chain|loc|949153 951835 1 # ID=1_1007|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|carB_7|Carbamoyl-phosphate synthase large chain|loc|1772322 1775511 -1 # ID=1_1862|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00479": { + "#Core_gene": "TIGR00479", + "Description": "rumA: 23S rRNA (uracil-5-)-methyltransferase RumA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|-|putative RNA methyltransferase|loc|394896 396252 1 # ID=1_417|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|471345 472728 -1 # ID=1_495|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00484": { + "#Core_gene": "TIGR00484", + "Description": "EF-G: translation elongation factor G", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|fusA|Elongation factor G|loc|338694 340779 1 # ID=1_346|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00485": { + "#Core_gene": "TIGR00485", + "Description": "EF-Tu: translation elongation factor Tu", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tuf|Elongation factor Tu|loc|661593 662784 1 # ID=1_701|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00487": { + "#Core_gene": "TIGR00487", + "Description": "IF-2: translation initiation factor IF-2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|infB|Translation initiation factor IF-2|loc|1152889 1155367 -1 # ID=1_1211|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00563": { + "#Core_gene": "TIGR00563", + "Description": "rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1226727 1228044 -1 # ID=1_1281|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03594": { + "#Core_gene": "TIGR03594", + "Description": "GTPase_EngA: ribosome-associated GTPase EngA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|der|GTPase Der|loc|731954 733262 1 # ID=1_768|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR03725": { + "#Core_gene": "TIGR03725", + "Description": "T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1411780 1412503 -1 # ID=1_1470|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00382": { + "#Core_gene": "TIGR00382", + "Description": "clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|664438 665692 1 # ID=1_703|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00959": { + "#Core_gene": "TIGR00959", + "Description": "ffh: signal recognition particle protein", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ffh|Signal recognition particle protein|loc|1196476 1197907 -1 # ID=1_1252|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00560": { + "#Core_gene": "TIGR00560", + "Description": "pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase", + "Function": "Fatty acid and phospholipid metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|502423 502987 1 # ID=1_529|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00218": { + "#Core_gene": "TIGR00218", + "Description": "manA: mannose-6-phosphate isomerase, class I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|manA|Mannose-6-phosphate isomerase ManA|loc|49490 50459 1 # ID=1_51|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01135": { + "#Core_gene": "TIGR01135", + "Description": "glmS: glutamine-fructose-6-phosphate transaminase (isomerizing)", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|408973 410785 1 # ID=1_434|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01455": { + "#Core_gene": "TIGR01455", + "Description": "glmM: phosphoglucosamine mutase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|glmM|Phosphoglucosamine mutase|loc|550001 551354 1 # ID=1_578|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00179": { + "#Core_gene": "TIGR00179", + "Description": "murB: UDP-N-acetylenolpyruvoylglucosamine reductase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|543440 544334 1 # ID=1_571|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00521": { + "#Core_gene": "TIGR00521", + "Description": "coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|695744 696944 1 # ID=1_731|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01430": { + "#Core_gene": "TIGR01430", + "Description": "aden_deam: adenosine deaminase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|add|Adenosine deaminase|loc|1275359 1276352 -1 # ID=1_1330|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00191": { + "#Core_gene": "TIGR00191", + "Description": "thrB: homoserine kinase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|thrB_2|Homoserine kinase|loc|1508362 1509226 -1 # ID=1_1585|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01163": { + "#Core_gene": "TIGR01163", + "Description": "rpe: ribulose-phosphate 3-epimerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|rpe|Ribulose-phosphate 3-epimerase|loc|441730 442381 1 # ID=1_466|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR01072": { + "#Core_gene": "TIGR01072", + "Description": "murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|297944 299216 1 # ID=1_311|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + }, + "GCA_000014405.1__arts_core__TIGR00043": { + "#Core_gene": "TIGR00043", + "Description": "TIGR00043: rRNA maturation RNase YbeY", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC BAA-365|ybeY|Endoribonuclease YbeY|loc|1079837 1080362 -1 # ID=1_1144|Type=CDS|transl_table=11]", + "genome_id": "GCA_000014405.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_coretable_summary.json b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_coretable_summary.json new file mode 100644 index 00000000..3ee33055 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_coretable_summary.json @@ -0,0 +1,2642 @@ +{ + "GCA_000056065.1__arts_core__Cpn10": { + "#Core_gene": "Cpn10", + "Description": "PF00166.17: Chaperonin 10 Kd subunit", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|groS|10 kDa chaperonin|loc|1393993 1394278 -1 # ID=1_1432|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__GrpE": { + "#Core_gene": "GrpE", + "Description": "PF01025.15: GrpE", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|grpE|Protein GrpE|loc|1119606 1120194 -1 # ID=1_1155|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Methyltransf_5": { + "#Core_gene": "Methyltransf_5", + "Description": "PF01795.15: MraW methylase family", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|625949 626894 1 # ID=1_665|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__PGK": { + "#Core_gene": "PGK", + "Description": "PF00162.15: Phosphoglycerate kinase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pgk|Phosphoglycerate kinase|loc|541727 542939 1 # ID=1_568|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Ribosomal_L10": { + "#Core_gene": "Ribosomal_L10", + "Description": "PF00466.16: Ribosomal protein L10", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplJ|50S ribosomal protein L10|loc|1421770 1422280 -1 # ID=1_1466|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Ribosomal_L23": { + "#Core_gene": "Ribosomal_L23", + "Description": "PF00276.16: Ribosomal protein L23", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplW|50S ribosomal protein L23|loc|348201 348498 1 # ID=1_349|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Ribosomal_S8": { + "#Core_gene": "Ribosomal_S8", + "Description": "PF00410.15: Ribosomal protein S8", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsH|30S ribosomal protein S8|loc|353067 353466 1 # ID=1_360|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Ribosomal_S9": { + "#Core_gene": "Ribosomal_S9", + "Description": "PF00380.15: Ribosomal protein S9/S16", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsI|30S ribosomal protein S9|loc|364180 364576 1 # ID=1_378|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00653": { + "#Core_gene": "TIGR00653", + "Description": "GlnA: glutamine synthetase, type I", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|glnA|Glutamine synthetase|loc|1269273 1270611 -1 # ID=1_1301|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01513": { + "#Core_gene": "TIGR01513", + "Description": "NAPRTase_put: nicotinate phosphoribosyltransferase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pncB|Nicotinate phosphoribosyltransferase|loc|271257 272781 -1 # ID=1_276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00152": { + "#Core_gene": "TIGR00152", + "Description": "TIGR00152: dephospho-CoA kinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|coaE|Dephospho-CoA kinase|loc|1303283 1303868 -1 # ID=1_1338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00525": { + "#Core_gene": "TIGR00525", + "Description": "folB: dihydroneopterin aldolase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|folB|Dihydroneopterin aldolase|loc|210197 210548 1 # ID=1_214|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01378": { + "#Core_gene": "TIGR01378", + "Description": "thi_PPkinase: thiamine pyrophosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thiN|Thiamine pyrophosphokinase|loc|1208959 1209643 -1 # ID=1_1240|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01496": { + "#Core_gene": "TIGR01496", + "Description": "DHPS: dihydropteroate synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|212928 214020 1 # ID=1_217|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01498": { + "#Core_gene": "TIGR01498", + "Description": "folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|folE|GTP cyclohydrolase 1|loc|210544 211618 1 # ID=1_215|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01980": { + "#Core_gene": "TIGR01980", + "Description": "sufB: FeS assembly protein SufB", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1546588 1548016 -1 # ID=1_1602|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01981": { + "#Core_gene": "TIGR01981", + "Description": "sufD: FeS assembly protein SufD", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1549638 1550802 -1 # ID=1_1605|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01994": { + "#Core_gene": "TIGR01994", + "Description": "SUF_scaf_2: SUF system FeS assembly protein, NifU family", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1548016 1548457 -1 # ID=1_1603|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00055": { + "#Core_gene": "TIGR00055", + "Description": "uppS: di-trans,poly-cis-decaprenylcistransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1146640 1147372 -1 # ID=1_1178|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00219": { + "#Core_gene": "TIGR00219", + "Description": "mreC: rod shape-determining protein MreC", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mreC|Cell shape-determining protein MreC|loc|623366 624218 1 # ID=1_660|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00753": { + "#Core_gene": "TIGR00753", + "Description": "undec_PP_bacA: undecaprenyl-diphosphatase UppP", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uppP|Undecaprenyl-diphosphatase|loc|495535 496363 -1 # ID=1_523|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01082": { + "#Core_gene": "TIGR01082", + "Description": "murC: UDP-N-acetylmuramate--L-alanine ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1311707 1313027 -1 # ID=1_1348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01087": { + "#Core_gene": "TIGR01087", + "Description": "murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|630397 631780 1 # ID=1_669|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00065": { + "#Core_gene": "TIGR00065", + "Description": "ftsZ: cell division protein FtsZ", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ftsZ|Cell division protein FtsZ|loc|635219 636578 1 # ID=1_673|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00220": { + "#Core_gene": "TIGR00220", + "Description": "mscL: large conductance mechanosensitive channel protein", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mscL|Large-conductance mechanosensitive channel|loc|270701 271178 1 # ID=1_275|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00647": { + "#Core_gene": "TIGR00647", + "Description": "DNA_bind_WhiA: DNA-binding protein WhiA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|whiA|putative cell division protein WhiA|loc|532796 533729 1 # ID=1_557|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00732": { + "#Core_gene": "TIGR00732", + "Description": "dprA: DNA protecting protein DprA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dprA|DNA processing protein DprA|loc|1079889 1080729 -1 # ID=1_1117|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01034": { + "#Core_gene": "TIGR01034", + "Description": "metK: methionine adenosyltransferase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|metK|S-adenosylmethionine synthase|loc|1354481 1355678 -1 # ID=1_1394|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03705": { + "#Core_gene": "TIGR03705", + "Description": "poly_P_kin: polyphosphate kinase 1", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ppk|Polyphosphate kinase|loc|439501 441667 1 # ID=1_460|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01391": { + "#Core_gene": "TIGR01391", + "Description": "dnaG: DNA primase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaG|DNA primase|loc|1054356 1056195 -1 # ID=1_1093|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00042": { + "#Core_gene": "TIGR00042", + "Description": "TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|dITP/XTP pyrophosphatase|loc|1372244 1372865 -1 # ID=1_1414|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00084": { + "#Core_gene": "TIGR00084", + "Description": "ruvA: Holliday junction DNA helicase RuvA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1386901 1387495 -1 # ID=1_1428|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00194": { + "#Core_gene": "TIGR00194", + "Description": "uvrC: excinuclease ABC subunit C", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uvrC|UvrABC system protein C|loc|707983 709786 1 # ID=1_744|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00237": { + "#Core_gene": "TIGR00237", + "Description": "xseA: exodeoxyribonuclease VII, large subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|xseA|Exodeoxyribonuclease 7 large subunit|loc|1224123 1225494 -1 # ID=1_1257|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00281": { + "#Core_gene": "TIGR00281", + "Description": "TIGR00281: segregation and condensation protein B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|scpB|Segregation and condensation protein B|loc|734631 735234 1 # ID=1_771|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00362": { + "#Core_gene": "TIGR00362", + "Description": "DnaA: chromosomal replication initiator protein DnaA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaA|Chromosomal replication initiator protein DnaA|loc|322 1687 1 # ID=1_1|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00416": { + "#Core_gene": "TIGR00416", + "Description": "sms: DNA repair protein RadA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|radA|DNA repair protein RadA|loc|1475149 1476526 -1 # ID=1_1529|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00575": { + "#Core_gene": "TIGR00575", + "Description": "dnlj: DNA ligase, NAD-dependent", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ligA|DNA ligase|loc|392242 394258 1 # ID=1_408|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00577": { + "#Core_gene": "TIGR00577", + "Description": "fpg: DNA-formamidopyrimidine glycosylase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mutM|Formamidopyrimidine-DNA glycosylase|loc|1303876 1304698 -1 # ID=1_1339|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00580": { + "#Core_gene": "TIGR00580", + "Description": "mfd: transcription-repair coupling factor", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mfd|Transcription-repair-coupling factor|loc|311150 314627 1 # ID=1_317|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00593": { + "#Core_gene": "TIGR00593", + "Description": "pola: DNA polymerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|polA|DNA polymerase I|loc|1304708 1307369 -1 # ID=1_1340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00595": { + "#Core_gene": "TIGR00595", + "Description": "priA: primosomal protein N'", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|priA|Primosomal protein N|loc|1215594 1217976 -1 # ID=1_1246|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00613": { + "#Core_gene": "TIGR00613", + "Description": "reco: DNA repair protein RecO", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recO|DNA repair protein RecO|loc|1059461 1060211 -1 # ID=1_1096|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00615": { + "#Core_gene": "TIGR00615", + "Description": "recR: recombination protein RecR", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recR|Recombination protein RecR|loc|1405061 1405661 -1 # ID=1_1447|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00630": { + "#Core_gene": "TIGR00630", + "Description": "uvra: excinuclease ABC subunit A", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uvrA|UvrABC system protein A|loc|525284 528140 1 # ID=1_550|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00631": { + "#Core_gene": "TIGR00631", + "Description": "uvrb: excinuclease ABC subunit B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uvrB_2|UvrABC system protein B|loc|523252 525295 1 # ID=1_549|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00635": { + "#Core_gene": "TIGR00635", + "Description": "ruvB: Holliday junction DNA helicase RuvB", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1385877 1386888 -1 # ID=1_1427|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00643": { + "#Core_gene": "TIGR00643", + "Description": "recG: ATP-dependent DNA helicase RecG", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recG|ATP-dependent DNA helicase RecG|loc|1195445 1197485 -1 # ID=1_1226|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00663": { + "#Core_gene": "TIGR00663", + "Description": "TIGR00663: dnan: DNA polymerase III, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaN|Beta sliding clamp|loc|1867 2995 1 # ID=1_2|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00665": { + "#Core_gene": "TIGR00665", + "Description": "DnaB: replicative DNA helicase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaC|Replicative DNA helicase|loc|13075 14446 1 # ID=1_12|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01051": { + "#Core_gene": "TIGR01051", + "Description": "topA_bact: DNA topoisomerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|topA|DNA topoisomerase 1|loc|1077579 1079763 -1 # ID=1_1116|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01059": { + "#Core_gene": "TIGR01059", + "Description": "gyrB: DNA gyrase, B subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gyrB|DNA gyrase subunit B|loc|4578 6540 1 # ID=1_5|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01063": { + "#Core_gene": "TIGR01063", + "Description": "gyrA: DNA gyrase, A subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gyrA|DNA gyrase subunit A|loc|6552 9024 1 # ID=1_6|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01073": { + "#Core_gene": "TIGR01073", + "Description": "pcrA: ATP-dependent DNA helicase PcrA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pcrA|ATP-dependent DNA helicase PcrA|loc|389970 392232 1 # ID=1_407|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01083": { + "#Core_gene": "TIGR01083", + "Description": "nth: endonuclease III", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pdg|Ultraviolet N-glycosylase/AP lyase|loc|866383 867013 1 # ID=1_902|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01128": { + "#Core_gene": "TIGR01128", + "Description": "holA: DNA polymerase III, delta subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|yqeN|putative protein YqeN|loc|662612 663602 1 # ID=1_700|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01280": { + "#Core_gene": "TIGR01280", + "Description": "xseB: exodeoxyribonuclease VII, small subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|xseB|Exodeoxyribonuclease 7 small subunit|loc|1223891 1224131 -1 # ID=1_1256|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01389": { + "#Core_gene": "TIGR01389", + "Description": "recQ: ATP-dependent DNA helicase RecQ", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recQ|ATP-dependent DNA helicase RecQ|loc|704945 706715 1 # ID=1_742|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02012": { + "#Core_gene": "TIGR02012", + "Description": "tigrfam_recA: protein RecA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recA|Protein RecA|loc|507699 508695 1 # ID=1_535|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02225": { + "#Core_gene": "TIGR02225", + "Description": "recomb_XerD: tyrosine recombinase XerD", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|xerD_1|Tyrosine recombinase XerD|loc|732657 733554 1 # ID=1_768|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00016": { + "#Core_gene": "TIGR00016", + "Description": "ackA: acetate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ackA|Acetate kinase|loc|579934 581122 1 # ID=1_616|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00021": { + "#Core_gene": "TIGR00021", + "Description": "rpiA: ribose 5-phosphate isomerase A", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpiA|Ribose-5-phosphate isomerase A|loc|446570 447263 1 # ID=1_468|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00419": { + "#Core_gene": "TIGR00419", + "Description": "tim: triose-phosphate isomerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tpiA|Triosephosphate isomerase|loc|542957 543716 1 # ID=1_569|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00651": { + "#Core_gene": "TIGR00651", + "Description": "pta: phosphate acetyltransferase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pta|Phosphate acetyltransferase|loc|547016 548006 1 # ID=1_575|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00871": { + "#Core_gene": "TIGR00871", + "Description": "zwf: glucose-6-phosphate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1383852 1385301 -1 # ID=1_1425|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00962": { + "#Core_gene": "TIGR00962", + "Description": "atpA: ATP synthase F1, alpha subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpA|ATP synthase subunit alpha|loc|600266 601778 1 # ID=1_637|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01039": { + "#Core_gene": "TIGR01039", + "Description": "atpD: ATP synthase F1, beta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpD|ATP synthase subunit beta|loc|602770 604210 1 # ID=1_639|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01060": { + "#Core_gene": "TIGR01060", + "Description": "eno: phosphopyruvate hydratase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|eno|Enolase|loc|1096011 1097289 1 # ID=1_1135|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01064": { + "#Core_gene": "TIGR01064", + "Description": "pyruv_kin: pyruvate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pyk|Pyruvate kinase|loc|728461 730231 1 # ID=1_763|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01131": { + "#Core_gene": "TIGR01131", + "Description": "ATP_synt_6_or_A: ATP synthase F0, A subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpB|ATP synthase subunit a|loc|598179 598899 1 # ID=1_633|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01144": { + "#Core_gene": "TIGR01144", + "Description": "ATP_synt_b: ATP synthase F0, B subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpF|ATP synthase subunit b|loc|599195 599702 1 # ID=1_635|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01145": { + "#Core_gene": "TIGR01145", + "Description": "ATP_synt_delta: ATP synthase F1, delta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpH_2|ATP synthase subunit delta|loc|599701 600244 1 # ID=1_636|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01146": { + "#Core_gene": "TIGR01146", + "Description": "ATPsyn_F1gamma: ATP synthase F1, gamma subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpG|ATP synthase gamma chain|loc|601788 602751 1 # ID=1_638|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01216": { + "#Core_gene": "TIGR01216", + "Description": "ATP_synt_epsi: ATP synthase F1, epsilon subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpC|ATP synthase epsilon chain|loc|604221 604662 1 # ID=1_640|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01260": { + "#Core_gene": "TIGR01260", + "Description": "ATP_synt_c: ATP synthase F0, C subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpH_1|ATP synthase subunit c|loc|598917 599142 1 # ID=1_634|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01534": { + "#Core_gene": "TIGR01534", + "Description": "GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|540614 541631 1 # ID=1_567|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01771": { + "#Core_gene": "TIGR01771", + "Description": "L-LDH-NAD: L-lactate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ldh|L-lactate dehydrogenase|loc|99904 100828 -1 # ID=1_104|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00121": { + "#Core_gene": "TIGR00121", + "Description": "birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|birA|Bifunctional ligase/repressor BirA|loc|798597 799263 1 # ID=1_830|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00357": { + "#Core_gene": "TIGR00357", + "Description": "TIGR00357: methionine-R-sulfoxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1649159 1649585 -1 # ID=1_1723|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00401": { + "#Core_gene": "TIGR00401", + "Description": "msrA: peptide-methionine (S)-S-oxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|msrA|Peptide methionine sulfoxide reductase MsrA|loc|571234 571762 1 # ID=1_603|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00077": { + "#Core_gene": "TIGR00077", + "Description": "lspA: signal peptidase II", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lspA|Lipoprotein signal peptidase|loc|881194 881647 1 # ID=1_916|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00079": { + "#Core_gene": "TIGR00079", + "Description": "pept_deformyl: peptide deformylase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|def2|Peptide deformylase 2|loc|653135 653690 -1 # ID=1_691|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00115": { + "#Core_gene": "TIGR00115", + "Description": "tig: trigger factor", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tig|Trigger factor|loc|668841 670161 1 # ID=1_706|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00500": { + "#Core_gene": "TIGR00500", + "Description": "met_pdase_I: methionine aminopeptidase, type I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|map|Methionine aminopeptidase 1|loc|471238 472066 1 # ID=1_492|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00504": { + "#Core_gene": "TIGR00504", + "Description": "pyro_pdase: pyroglutamyl-peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pcp|Pyrrolidone-carboxylate peptidase|loc|993222 993834 -1 # ID=1_1038|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00544": { + "#Core_gene": "TIGR00544", + "Description": "lgt: prolipoprotein diacylglyceryl transferase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|520272 521106 1 # ID=1_546|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00810": { + "#Core_gene": "TIGR00810", + "Description": "secG: preprotein translocase, SecG subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secG|putative protein-export membrane protein SecG|loc|1560085 1560319 -1 # ID=1_1619|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00963": { + "#Core_gene": "TIGR00963", + "Description": "secA: preprotein translocase, SecA subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secA|Protein translocase subunit SecA|loc|515417 517820 1 # ID=1_542|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00964": { + "#Core_gene": "TIGR00964", + "Description": "secE_bact: preprotein translocase, SecE subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secE|Protein translocase subunit SecE|loc|1429566 1429737 -1 # ID=1_1475|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00967": { + "#Core_gene": "TIGR00967", + "Description": "3a0501s007: preprotein translocase, SecY subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secY|Protein translocase subunit SecY|loc|355593 356889 1 # ID=1_366|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02227": { + "#Core_gene": "TIGR02227", + "Description": "sigpep_I_bact: signal peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|spsB|Signal peptidase IB|loc|1028498 1029065 1 # ID=1_1069|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02348": { + "#Core_gene": "TIGR02348", + "Description": "GroEL: chaperonin GroL", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|groL|60 kDa chaperonin|loc|1392353 1393967 -1 # ID=1_1431|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02350": { + "#Core_gene": "TIGR02350", + "Description": "prok_dnaK: chaperone protein DnaK", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaK|Chaperone protein DnaK|loc|1117702 1119547 -1 # ID=1_1154|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03534": { + "#Core_gene": "TIGR03534", + "Description": "RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|prmC_1|Release factor glutamine methyltransferase|loc|595503 596346 1 # ID=1_630|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00186": { + "#Core_gene": "TIGR00186", + "Description": "rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1433794 1434544 -1 # ID=1_1485|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00398": { + "#Core_gene": "TIGR00398", + "Description": "metG: methionine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|metG|Methionine--tRNA ligase|loc|290069 292052 1 # ID=1_296|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00001": { + "#Core_gene": "TIGR00001", + "Description": "rpmI_bact: ribosomal protein bL35", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmI|50S ribosomal protein L35|loc|1294459 1294660 -1 # ID=1_1329|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00008": { + "#Core_gene": "TIGR00008", + "Description": "infA: translation initiation factor IF-1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|infA|Translation initiation factor IF-1|loc|357628 357850 1 # ID=1_368|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00009": { + "#Core_gene": "TIGR00009", + "Description": "L28: ribosomal protein bL28", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmB|50S ribosomal protein L28|loc|1199706 1199892 1 # ID=1_1229|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00012": { + "#Core_gene": "TIGR00012", + "Description": "L29: ribosomal protein uL29", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmC|50S ribosomal protein L29|loc|351145 351343 1 # ID=1_355|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00019": { + "#Core_gene": "TIGR00019", + "Description": "prfA: peptide chain release factor 1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|prfA|Peptide chain release factor 1|loc|594425 595511 1 # ID=1_629|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00020": { + "#Core_gene": "TIGR00020", + "Description": "prfB: peptide chain release factor 2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|prfB|Peptide chain release factor 2|loc|518026 519025 1 # ID=1_543|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00029": { + "#Core_gene": "TIGR00029", + "Description": "S20: ribosomal protein bS20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsT|30S ribosomal protein S20|loc|663694 663946 -1 # ID=1_701|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00038": { + "#Core_gene": "TIGR00038", + "Description": "efp: translation elongation factor P", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00057": { + "#Core_gene": "TIGR00057", + "Description": "TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ywlC|Threonylcarbamoyl-AMP synthase|loc|596345 597341 1 # ID=1_631|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00059": { + "#Core_gene": "TIGR00059", + "Description": "L17: ribosomal protein bL17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplQ|50S ribosomal protein L17|loc|359780 360164 1 # ID=1_372|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00060": { + "#Core_gene": "TIGR00060", + "Description": "L18_bact: ribosomal protein uL18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplR|50S ribosomal protein L18|loc|354047 354407 1 # ID=1_362|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00061": { + "#Core_gene": "TIGR00061", + "Description": "L21: ribosomal protein bL21", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplU|50S ribosomal protein L21|loc|1229445 1229757 -1 # ID=1_1264|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00062": { + "#Core_gene": "TIGR00062", + "Description": "L27: ribosomal protein bL27", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmA|50S ribosomal protein L27|loc|1229130 1229430 -1 # ID=1_1263|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00071": { + "#Core_gene": "TIGR00071", + "Description": "hisT_truA: tRNA pseudouridine(38-40) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|truA|tRNA pseudouridine synthase A|loc|362830 363619 1 # ID=1_376|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00086": { + "#Core_gene": "TIGR00086", + "Description": "smpB: SsrA-binding protein", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|smpB|SsrA-binding protein|loc|1557165 1557627 -1 # ID=1_1617|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00088": { + "#Core_gene": "TIGR00088", + "Description": "trmD: tRNA (guanine(37)-N(1))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1175461 1176199 -1 # ID=1_1206|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00090": { + "#Core_gene": "TIGR00090", + "Description": "rsfS_iojap_ybeB: ribosome silencing factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsfS|Ribosomal silencing factor RsfS|loc|1291216 1291564 -1 # ID=1_1324|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00105": { + "#Core_gene": "TIGR00105", + "Description": "L31: ribosomal protein bL31", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmE2|50S ribosomal protein L31 type B|loc|304788 305040 1 # ID=1_310|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00116": { + "#Core_gene": "TIGR00116", + "Description": "tsf: translation elongation factor Ts", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tsf|Elongation factor Ts|loc|1148806 1149835 -1 # ID=1_1181|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00133": { + "#Core_gene": "TIGR00133", + "Description": "gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|397164 398595 1 # ID=1_412|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00135": { + "#Core_gene": "TIGR00135", + "Description": "gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|395411 395717 1 # ID=1_410|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00150": { + "#Core_gene": "TIGR00150", + "Description": "T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|548016 548502 1 # ID=1_576|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00157": { + "#Core_gene": "TIGR00157", + "Description": "TIGR00157: ribosome small subunit-dependent GTPase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1209672 1210566 -1 # ID=1_1241|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00158": { + "#Core_gene": "TIGR00158", + "Description": "L9: ribosomal protein bL9", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplI|50S ribosomal protein L9|loc|12596 13052 1 # ID=1_11|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00165": { + "#Core_gene": "TIGR00165", + "Description": "S18: ribosomal protein bS18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsR|30S ribosomal protein S18|loc|10175 10412 1 # ID=1_9|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00166": { + "#Core_gene": "TIGR00166", + "Description": "S6: ribosomal protein bS6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsF|30S ribosomal protein S6|loc|9239 9533 1 # ID=1_7|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00168": { + "#Core_gene": "TIGR00168", + "Description": "infC: translation initiation factor IF-3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|infC|Translation initiation factor IF-3|loc|1294680 1295202 -1 # ID=1_1330|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00174": { + "#Core_gene": "TIGR00174", + "Description": "miaA: tRNA dimethylallyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|miaA|tRNA dimethylallyltransferase|loc|1272002 1272929 -1 # ID=1_1304|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00233": { + "#Core_gene": "TIGR00233", + "Description": "trpS: tryptophan--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|trpS2|Tryptophan--tRNA ligase 2|loc|284780 285806 1 # ID=1_292|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00234": { + "#Core_gene": "TIGR00234", + "Description": "tyrS: tyrosine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tyrS|Tyrosine--tRNA ligase|loc|219424 220690 1 # ID=1_224|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00256": { + "#Core_gene": "TIGR00256", + "Description": "TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dtd|D-aminoacyl-tRNA deacylase|loc|778556 778994 1 # ID=1_808|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00344": { + "#Core_gene": "TIGR00344", + "Description": "alaS: alanine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|alaS|Alanine--tRNA ligase|loc|1377489 1380123 -1 # ID=1_1421|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00392": { + "#Core_gene": "TIGR00392", + "Description": "ileS: isoleucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ileS|Isoleucine--tRNA ligase|loc|638487 641283 1 # ID=1_677|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00396": { + "#Core_gene": "TIGR00396", + "Description": "leuS_bact: leucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|leuS|Leucine--tRNA ligase|loc|1348307 1350722 -1 # ID=1_1389|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00409": { + "#Core_gene": "TIGR00409", + "Description": "proS_fam_II: proline--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|proS|Proline--tRNA ligase|loc|1142843 1144541 -1 # ID=1_1175|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00414": { + "#Core_gene": "TIGR00414", + "Description": "serS: serine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|serS|Serine--tRNA ligase|loc|1580697 1582005 -1 # ID=1_1639|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00418": { + "#Core_gene": "TIGR00418", + "Description": "thrS: threonine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thrS|Threonine--tRNA ligase|loc|1298298 1300230 -1 # ID=1_1334|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00422": { + "#Core_gene": "TIGR00422", + "Description": "valS: valine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|valS|Valine--tRNA ligase|loc|616950 619590 1 # ID=1_655|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00431": { + "#Core_gene": "TIGR00431", + "Description": "TruB: tRNA pseudouridine(55) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|truB|tRNA pseudouridine synthase B|loc|1132243 1133140 -1 # ID=1_1167|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00435": { + "#Core_gene": "TIGR00435", + "Description": "cysS: cysteine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|cysS|Cysteine--tRNA ligase|loc|1434966 1436391 -1 # ID=1_1487|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00442": { + "#Core_gene": "TIGR00442", + "Description": "hisS: histidine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|hisS|Histidine--tRNA ligase|loc|779277 780564 1 # ID=1_809|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00447": { + "#Core_gene": "TIGR00447", + "Description": "pth: aminoacyl-tRNA hydrolase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pth|Peptidyl-tRNA hydrolase|loc|310576 311134 1 # ID=1_316|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00456": { + "#Core_gene": "TIGR00456", + "Description": "argS: arginine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|argS|Arginine--tRNA ligase|loc|699214 700912 1 # ID=1_737|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00459": { + "#Core_gene": "TIGR00459", + "Description": "aspS_bact: aspartate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|aspS|Aspartate--tRNA ligase|loc|780579 782424 1 # ID=1_810|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00464": { + "#Core_gene": "TIGR00464", + "Description": "gltX_bact: glutamate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gltX|Glutamate--tRNA ligase|loc|1439736 1441239 -1 # ID=1_1491|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00468": { + "#Core_gene": "TIGR00468", + "Description": "pheS: phenylalanine--tRNA ligase, alpha subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1283031 1284081 -1 # ID=1_1315|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00472": { + "#Core_gene": "TIGR00472", + "Description": "pheT_bact: phenylalanine--tRNA ligase, beta subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1280620 1283032 -1 # ID=1_1314|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00496": { + "#Core_gene": "TIGR00496", + "Description": "frr: ribosome recycling factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|frr|Ribosome-recycling factor|loc|1147374 1147932 -1 # ID=1_1179|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00499": { + "#Core_gene": "TIGR00499", + "Description": "lysS_bact: lysine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lysS|Lysine--tRNA ligase|loc|324828 326334 1 # ID=1_327|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00755": { + "#Core_gene": "TIGR00755", + "Description": "ksgA: ribosomal RNA small subunit methyltransferase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|293361 294252 1 # ID=1_299|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00855": { + "#Core_gene": "TIGR00855", + "Description": "L12: ribosomal protein bL12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplL|50S ribosomal protein L7/L12|loc|1421352 1421718 -1 # ID=1_1465|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00952": { + "#Core_gene": "TIGR00952", + "Description": "S15_bact: ribosomal protein uS15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsO|30S ribosomal protein S15|loc|664149 664419 1 # ID=1_702|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00981": { + "#Core_gene": "TIGR00981", + "Description": "rpsL_bact: ribosomal protein uS12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsL|30S ribosomal protein S12|loc|343208 343616 1 # ID=1_343|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01009": { + "#Core_gene": "TIGR01009", + "Description": "rpsC_bact: ribosomal protein uS3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsC|30S ribosomal protein S3|loc|350041 350713 1 # ID=1_353|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01011": { + "#Core_gene": "TIGR01011", + "Description": "rpsB_bact: ribosomal protein uS2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsB|30S ribosomal protein S2|loc|1149897 1150659 -1 # ID=1_1182|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01017": { + "#Core_gene": "TIGR01017", + "Description": "rpsD_bact: ribosomal protein uS4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsD|30S ribosomal protein S4|loc|610876 611488 -1 # ID=1_650|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01021": { + "#Core_gene": "TIGR01021", + "Description": "rpsE_bact: ribosomal protein uS5", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsE|30S ribosomal protein S5|loc|354423 354936 1 # ID=1_363|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01023": { + "#Core_gene": "TIGR01023", + "Description": "rpmG_bact: ribosomal protein bL33", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01024": { + "#Core_gene": "TIGR01024", + "Description": "rplS_bact: ribosomal protein bL19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplS|50S ribosomal protein L19|loc|1172222 1172570 -1 # ID=1_1201|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01029": { + "#Core_gene": "TIGR01029", + "Description": "rpsG_bact: ribosomal protein uS7", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsG|30S ribosomal protein S7|loc|343631 344102 1 # ID=1_344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01030": { + "#Core_gene": "TIGR01030", + "Description": "rpmH_bact: ribosomal protein bL34", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmH|50S ribosomal protein L34|loc|1864704 1864845 -1 # ID=1_1942|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01031": { + "#Core_gene": "TIGR01031", + "Description": "rpmF_bact: ribosomal protein bL32", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmF|50S ribosomal protein L32|loc|715058 715250 1 # ID=1_750|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01032": { + "#Core_gene": "TIGR01032", + "Description": "rplT_bact: ribosomal protein bL20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplT|50S ribosomal protein L20|loc|1294058 1294415 -1 # ID=1_1328|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01044": { + "#Core_gene": "TIGR01044", + "Description": "rplV_bact: ribosomal protein uL22", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplV|50S ribosomal protein L22|loc|349674 350028 1 # ID=1_352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01049": { + "#Core_gene": "TIGR01049", + "Description": "rpsJ_bact: ribosomal protein uS10", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsJ|30S ribosomal protein S10|loc|346606 346915 1 # ID=1_346|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01050": { + "#Core_gene": "TIGR01050", + "Description": "rpsS_bact: ribosomal protein uS19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsS|30S ribosomal protein S19|loc|349377 349653 1 # ID=1_351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01066": { + "#Core_gene": "TIGR01066", + "Description": "rplM_bact: ribosomal protein uL13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplM|50S ribosomal protein L13|loc|363724 364168 1 # ID=1_377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01067": { + "#Core_gene": "TIGR01067", + "Description": "rplN_bact: ribosomal protein uL14", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplN|50S ribosomal protein L14|loc|351658 352027 1 # ID=1_357|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01071": { + "#Core_gene": "TIGR01071", + "Description": "rplO_bact: ribosomal protein uL15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplO|50S ribosomal protein L15|loc|355153 355594 1 # ID=1_365|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01079": { + "#Core_gene": "TIGR01079", + "Description": "rplX_bact: ribosomal protein uL24", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplX|50S ribosomal protein L24|loc|352043 352283 1 # ID=1_358|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01164": { + "#Core_gene": "TIGR01164", + "Description": "rplP_bact: ribosomal protein uL16", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplP|50S ribosomal protein L16|loc|350712 351156 1 # ID=1_354|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01169": { + "#Core_gene": "TIGR01169", + "Description": "rplA_bact: ribosomal protein uL1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplA|50S ribosomal protein L1|loc|1427590 1428286 -1 # ID=1_1472|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01171": { + "#Core_gene": "TIGR01171", + "Description": "rplB_bact: ribosomal protein uL2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplB|50S ribosomal protein L2|loc|348523 349360 1 # ID=1_350|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01308": { + "#Core_gene": "TIGR01308", + "Description": "rpmD_bact: ribosomal protein uL30", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmD|50S ribosomal protein L30|loc|354947 355133 1 # ID=1_364|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01632": { + "#Core_gene": "TIGR01632", + "Description": "L11_bact: ribosomal protein uL11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplK|50S ribosomal protein L11|loc|1428369 1428795 -1 # ID=1_1473|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02729": { + "#Core_gene": "TIGR02729", + "Description": "Obg_CgtA: Obg family GTPase CgtA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|obg|GTPase Obg|loc|709923 711177 1 # ID=1_745|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03631": { + "#Core_gene": "TIGR03631", + "Description": "uS13_bact: ribosomal protein uS13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsM|30S ribosomal protein S13|loc|358006 358357 1 # ID=1_369|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03632": { + "#Core_gene": "TIGR03632", + "Description": "uS11_bact: ribosomal protein uS11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsK|30S ribosomal protein S11|loc|358385 358775 1 # ID=1_370|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03635": { + "#Core_gene": "TIGR03635", + "Description": "uS17_bact: ribosomal protein uS17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsQ|30S ribosomal protein S17|loc|351361 351628 1 # ID=1_356|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03654": { + "#Core_gene": "TIGR03654", + "Description": "L6_bact: ribosomal protein uL6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplF|50S ribosomal protein L6|loc|353490 354021 1 # ID=1_361|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03953": { + "#Core_gene": "TIGR03953", + "Description": "rplD_bact: 50S ribosomal protein uL4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplD|50S ribosomal protein L4|loc|347584 348202 1 # ID=1_348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00878": { + "#Core_gene": "TIGR00878", + "Description": "purM: phosphoribosylformylglycinamidine cyclo-ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1234964 1236014 -1 # ID=1_1271|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01161": { + "#Core_gene": "TIGR01161", + "Description": "purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1242998 1244123 -1 # ID=1_1278|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01162": { + "#Core_gene": "TIGR01162", + "Description": "purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1244112 1244604 -1 # ID=1_1279|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00017": { + "#Core_gene": "TIGR00017", + "Description": "cmk: cytidylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|cmk|Cytidylate kinase|loc|737485 738118 1 # ID=1_775|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00081": { + "#Core_gene": "TIGR00081", + "Description": "purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1240613 1241336 -1 # ID=1_1276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00302": { + "#Core_gene": "TIGR00302", + "Description": "TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1240360 1240609 -1 # ID=1_1275|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00355": { + "#Core_gene": "TIGR00355", + "Description": "purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purH|Bifunctional purine biosynthesis protein PurH|loc|1232841 1234383 -1 # ID=1_1269|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01134": { + "#Core_gene": "TIGR01134", + "Description": "purF: amidophosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purF|Amidophosphoribosyltransferase|loc|1236010 1237489 -1 # ID=1_1272|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01736": { + "#Core_gene": "TIGR01736", + "Description": "FGAM_synth_II: phosphoribosylformylglycinamidine synthase II", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1237464 1239687 -1 # ID=1_1273|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02487": { + "#Core_gene": "TIGR02487", + "Description": "NrdD: anaerobic ribonucleoside-triphosphate reductase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|180997 183208 1 # ID=1_187|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03263": { + "#Core_gene": "TIGR03263", + "Description": "guanyl_kin: guanylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gmk_1|Guanylate kinase|loc|1218261 1218876 -1 # ID=1_1248|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03284": { + "#Core_gene": "TIGR03284", + "Description": "thym_sym: thymidylate synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thyA|Thymidylate synthase|loc|678300 679257 1 # ID=1_717|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01953": { + "#Core_gene": "TIGR01953", + "Description": "NusA: transcription termination factor NusA", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nusA|Transcription termination/antitermination protein NusA|loc|1136667 1137888 -1 # ID=1_1172|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02393": { + "#Core_gene": "TIGR02393", + "Description": "RpoD_Cterm: RNA polymerase sigma factor RpoD", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|sigA_2|RNA polymerase sigma factor SigA|loc|1053266 1054385 -1 # ID=1_1092|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00082": { + "#Core_gene": "TIGR00082", + "Description": "rbfA: ribosome-binding factor A", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rbfA|Ribosome-binding factor A|loc|1133190 1133553 -1 # ID=1_1168|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00188": { + "#Core_gene": "TIGR00188", + "Description": "rnpA: ribonuclease P protein component", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rnpA|Ribonuclease P protein component|loc|1864290 1864656 -1 # ID=1_1941|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00690": { + "#Core_gene": "TIGR00690", + "Description": "rpoZ: DNA-directed RNA polymerase, omega subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1218038 1218260 -1 # ID=1_1247|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00922": { + "#Core_gene": "TIGR00922", + "Description": "nusG: transcription termination/antitermination factor NusG", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nusG|Transcription termination/antitermination protein NusG|loc|1428920 1429475 -1 # ID=1_1474|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01951": { + "#Core_gene": "TIGR01951", + "Description": "nusB: transcription antitermination factor NusB", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nusB|Transcription antitermination protein NusB|loc|1226390 1226789 -1 # ID=1_1259|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02013": { + "#Core_gene": "TIGR02013", + "Description": "TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoB|DNA-directed RNA polymerase subunit beta|loc|334509 338184 1 # ID=1_338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02027": { + "#Core_gene": "TIGR02027", + "Description": "rpoA: DNA-directed RNA polymerase, alpha subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoA|DNA-directed RNA polymerase subunit alpha|loc|358818 359757 1 # ID=1_371|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02191": { + "#Core_gene": "TIGR02191", + "Description": "RNaseIII: ribonuclease III", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rnc|Ribonuclease 3|loc|1185313 1186009 -1 # ID=1_1217|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02273": { + "#Core_gene": "TIGR02273", + "Description": "16S_RimM: 16S rRNA processing protein RimM", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rimM|Ribosome maturation factor RimM|loc|1176198 1176702 -1 # ID=1_1207|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02386": { + "#Core_gene": "TIGR02386", + "Description": "rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoC|DNA-directed RNA polymerase subunit beta|loc|338199 341865 1 # ID=1_339|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02349": { + "#Core_gene": "TIGR02349", + "Description": "DnaJ_bact: chaperone protein DnaJ", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaJ|Chaperone protein DnaJ|loc|1116483 1117620 -1 # ID=1_1153|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03625": { + "#Core_gene": "TIGR03625", + "Description": "L3_bact: 50S ribosomal protein uL3", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplC|50S ribosomal protein L3|loc|346940 347570 1 # ID=1_347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00180": { + "#Core_gene": "TIGR00180", + "Description": "parB_part: ParB/RepB/Spo0J family partition protein", + "Function": "Unclassified", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00196": { + "#Core_gene": "TIGR00196", + "Description": "yjeF_cterm: YjeF family C-terminal domain", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1338272 1339139 -1 # ID=1_1377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00092": { + "#Core_gene": "TIGR00092", + "Description": "TIGR00092: GTP-binding protein YchF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ychF|Ribosome-binding ATPase YchF|loc|1718716 1719817 -1 # ID=1_1791|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00250": { + "#Core_gene": "TIGR00250", + "Description": "RNAse_H_YqgF: putative transcription antitermination factor YqgF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|yrrK|Putative pre-16S rRNA nuclease|loc|1376738 1377167 -1 # ID=1_1419|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00257": { + "#Core_gene": "TIGR00257", + "Description": "IMPACT_YIGZ: uncharacterized protein, YigZ family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|yigZ|IMPACT family member YigZ|loc|511956 512616 -1 # ID=1_538|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00481": { + "#Core_gene": "TIGR00481", + "Description": "TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|369355 369847 1 # ID=1_386|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00486": { + "#Core_gene": "TIGR00486", + "Description": "YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|GTP cyclohydrolase 1 type 2|loc|1030993 1031791 -1 # ID=1_1072|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01448": { + "#Core_gene": "TIGR01448", + "Description": "recD_rel: helicase, RecD/TraA family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recD2|ATP-dependent RecD-like DNA helicase|loc|647109 649500 1 # ID=1_687|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00103": { + "#Core_gene": "TIGR00103", + "Description": "DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|Nucleoid-associated protein|loc|1405662 1405992 -1 # ID=1_1448|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03156": { + "#Core_gene": "TIGR03156", + "Description": "GTP_HflX: GTP-binding protein HflX", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|hflX|GTPase HflX|loc|1681367 1682648 1 # ID=1_1755|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00762": { + "#Core_gene": "TIGR00762", + "Description": "DegV: EDD domain protein, DegV family", + "Function": "Unknown function", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01393": { + "#Core_gene": "TIGR01393", + "Description": "lepA: elongation factor 4", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lepA|Elongation factor 4|loc|1114523 1116362 -1 # ID=1_1152|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01417": { + "#Core_gene": "TIGR01417", + "Description": "PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|487286 489014 1 # ID=1_512|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00337": { + "#Core_gene": "TIGR00337", + "Description": "PyrG: CTP synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pyrG|CTP synthase|loc|301678 303298 1 # ID=1_308|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00877": { + "#Core_gene": "TIGR00877", + "Description": "purD: phosphoribosylamine--glycine ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purD|Phosphoribosylamine--glycine ligase|loc|1231560 1232826 -1 # ID=1_1268|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01091": { + "#Core_gene": "TIGR01091", + "Description": "upp: uracil phosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|upp|Uracil phosphoribosyltransferase|loc|597440 598070 1 # ID=1_632|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01369": { + "#Core_gene": "TIGR01369", + "Description": "CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|carB_9|Carbamoyl-phosphate synthase large chain|loc|1768786 1770661 -1 # ID=1_1842|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00479": { + "#Core_gene": "TIGR00479", + "Description": "rumA: 23S rRNA (uracil-5-)-methyltransferase RumA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|putative RNA methyltransferase|loc|400342 401698 1 # ID=1_415|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|475828 477211 -1 # ID=1_497|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00484": { + "#Core_gene": "TIGR00484", + "Description": "EF-G: translation elongation factor G", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|fusA|Elongation factor G|loc|344135 346220 1 # ID=1_345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00485": { + "#Core_gene": "TIGR00485", + "Description": "EF-Tu: translation elongation factor Tu", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tuf|Elongation factor Tu|loc|667467 668658 1 # ID=1_705|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00487": { + "#Core_gene": "TIGR00487", + "Description": "IF-2: translation initiation factor IF-2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|infB|Translation initiation factor IF-2|loc|1133565 1136043 -1 # ID=1_1169|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00563": { + "#Core_gene": "TIGR00563", + "Description": "rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1213323 1214640 -1 # ID=1_1244|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03594": { + "#Core_gene": "TIGR03594", + "Description": "GTPase_EngA: ribosome-associated GTPase EngA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|der|GTPase Der|loc|739487 740795 1 # ID=1_777|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03725": { + "#Core_gene": "TIGR03725", + "Description": "T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1398961 1399684 -1 # ID=1_1437|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00382": { + "#Core_gene": "TIGR00382", + "Description": "clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|670312 671566 1 # ID=1_707|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00959": { + "#Core_gene": "TIGR00959", + "Description": "ffh: signal recognition particle protein", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ffh|Signal recognition particle protein|loc|1177130 1178561 -1 # ID=1_1209|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00560": { + "#Core_gene": "TIGR00560", + "Description": "pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase", + "Function": "Fatty acid and phospholipid metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|506930 507494 1 # ID=1_534|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00218": { + "#Core_gene": "TIGR00218", + "Description": "manA: mannose-6-phosphate isomerase, class I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|manA|Mannose-6-phosphate isomerase ManA|loc|51009 51978 1 # ID=1_52|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01135": { + "#Core_gene": "TIGR01135", + "Description": "glmS: glutamine-fructose-6-phosphate transaminase (isomerizing)", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|413882 415694 1 # ID=1_433|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01455": { + "#Core_gene": "TIGR01455", + "Description": "glmM: phosphoglucosamine mutase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|glmM|Phosphoglucosamine mutase|loc|555798 557151 1 # ID=1_586|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00179": { + "#Core_gene": "TIGR00179", + "Description": "murB: UDP-N-acetylenolpyruvoylglucosamine reductase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|549234 550128 1 # ID=1_578|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00521": { + "#Core_gene": "TIGR00521", + "Description": "coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|701616 702816 1 # ID=1_739|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01430": { + "#Core_gene": "TIGR01430", + "Description": "aden_deam: adenosine deaminase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|add|Adenosine deaminase|loc|1262376 1263369 -1 # ID=1_1295|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00191": { + "#Core_gene": "TIGR00191", + "Description": "thrB: homoserine kinase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thrB_2|Homoserine kinase|loc|1496783 1497647 -1 # ID=1_1553|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01163": { + "#Core_gene": "TIGR01163", + "Description": "rpe: ribulose-phosphate 3-epimerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpe|Ribulose-phosphate 3-epimerase|loc|445907 446558 1 # ID=1_467|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01072": { + "#Core_gene": "TIGR01072", + "Description": "murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|303417 304689 1 # ID=1_309|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00043": { + "#Core_gene": "TIGR00043", + "Description": "TIGR00043: rRNA maturation RNase YbeY", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ybeY|Endoribonuclease YbeY|loc|1061520 1062045 -1 # ID=1_1099|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000182835.1_arts_coretable_summary.json b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000182835.1_arts_coretable_summary.json new file mode 100644 index 00000000..630d0be6 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000182835.1_arts_coretable_summary.json @@ -0,0 +1,2708 @@ +{ + "GCA_000182835.1__arts_core__Cpn10": { + "#Core_gene": "Cpn10", + "Description": "PF00166.17: Chaperonin 10 Kd subunit", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|groS|10 kDa chaperonin|loc|1583082 1583367 -1 # ID=1_1529|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__GrpE": { + "#Core_gene": "GrpE", + "Description": "PF01025.15: GrpE", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|grpE|Protein GrpE|loc|1297298 1297916 -1 # ID=1_1255|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__Methyltransf_5": { + "#Core_gene": "Methyltransf_5", + "Description": "PF01795.15: MraW methylase family", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|671404 672349 1 # ID=1_662|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__PGK": { + "#Core_gene": "PGK", + "Description": "PF00162.15: Phosphoglycerate kinase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pgk|Phosphoglycerate kinase|loc|585483 586695 1 # ID=1_565|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__Ribosomal_L10": { + "#Core_gene": "Ribosomal_L10", + "Description": "PF00466.16: Ribosomal protein L10", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplJ|50S ribosomal protein L10|loc|1609088 1609598 -1 # ID=1_1560|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__Ribosomal_L23": { + "#Core_gene": "Ribosomal_L23", + "Description": "PF00276.16: Ribosomal protein L23", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplW|50S ribosomal protein L23|loc|358080 358377 1 # ID=1_340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__Ribosomal_S8": { + "#Core_gene": "Ribosomal_S8", + "Description": "PF00410.15: Ribosomal protein S8", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsH|30S ribosomal protein S8|loc|362946 363345 1 # ID=1_351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__Ribosomal_S9": { + "#Core_gene": "Ribosomal_S9", + "Description": "PF00380.15: Ribosomal protein S9/S16", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsI|30S ribosomal protein S9|loc|374059 374455 1 # ID=1_369|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00653": { + "#Core_gene": "TIGR00653", + "Description": "GlnA: glutamine synthetase, type I", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|glnA|Glutamine synthetase|loc|1448475 1449813 -1 # ID=1_1403|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00674": { + "#Core_gene": "TIGR00674", + "Description": "dapA: 4-hydroxy-tetrahydrodipicolinate synthase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dapA|4-hydroxy-tetrahydrodipicolinate synthase|loc|1060916 1061846 -1 # ID=1_1030|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01513": { + "#Core_gene": "TIGR01513", + "Description": "NAPRTase_put: nicotinate phosphoribosyltransferase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pncB2|Nicotinate phosphoribosyltransferase pncB2|loc|287744 289178 -1 # ID=1_276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00114": { + "#Core_gene": "TIGR00114", + "Description": "lumazine-synth: 6,7-dimethyl-8-ribityllumazine synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ribH|6,7-dimethyl-8-ribityllumazine synthase|loc|2022792 2023257 -1 # ID=1_1977|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00152": { + "#Core_gene": "TIGR00152", + "Description": "TIGR00152: dephospho-CoA kinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|coaE|Dephospho-CoA kinase|loc|1484230 1484815 -1 # ID=1_1439|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00187": { + "#Core_gene": "TIGR00187", + "Description": "ribE: riboflavin synthase, alpha subunit", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ribE|Riboflavin synthase|loc|2024469 2025084 -1 # ID=1_1979|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00525": { + "#Core_gene": "TIGR00525", + "Description": "folB: dihydroneopterin aldolase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|folB|Dihydroneopterin aldolase|loc|896216 896567 1 # ID=1_872|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01378": { + "#Core_gene": "TIGR01378", + "Description": "thi_PPkinase: thiamine pyrophosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|thiN|Thiamine pyrophosphokinase|loc|1379616 1380300 -1 # ID=1_1330|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01496": { + "#Core_gene": "TIGR01496", + "Description": "DHPS: dihydropteroate synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|898947 900039 1 # ID=1_875|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01498": { + "#Core_gene": "TIGR01498", + "Description": "folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|folE|GTP cyclohydrolase 1|loc|896563 897637 1 # ID=1_873|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01980": { + "#Core_gene": "TIGR01980", + "Description": "sufB: FeS assembly protein SufB", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1748148 1749576 -1 # ID=1_1696|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01981": { + "#Core_gene": "TIGR01981", + "Description": "sufD: FeS assembly protein SufD", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1751198 1752362 -1 # ID=1_1699|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01994": { + "#Core_gene": "TIGR01994", + "Description": "SUF_scaf_2: SUF system FeS assembly protein, NifU family", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1749576 1750017 -1 # ID=1_1697|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00055": { + "#Core_gene": "TIGR00055", + "Description": "uppS: di-trans,poly-cis-decaprenylcistransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1324144 1324876 -1 # ID=1_1279|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00219": { + "#Core_gene": "TIGR00219", + "Description": "mreC: rod shape-determining protein MreC", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|mreC|Cell shape-determining protein MreC|loc|668821 669673 1 # ID=1_657|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00753": { + "#Core_gene": "TIGR00753", + "Description": "undec_PP_bacA: undecaprenyl-diphosphatase UppP", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|uppP|Undecaprenyl-diphosphatase|loc|540752 541580 -1 # ID=1_522|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01082": { + "#Core_gene": "TIGR01082", + "Description": "murC: UDP-N-acetylmuramate--L-alanine ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1500409 1501729 -1 # ID=1_1457|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01087": { + "#Core_gene": "TIGR01087", + "Description": "murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|675855 677238 1 # ID=1_666|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00065": { + "#Core_gene": "TIGR00065", + "Description": "ftsZ: cell division protein FtsZ", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ftsZ|Cell division protein FtsZ|loc|680677 682036 1 # ID=1_670|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00220": { + "#Core_gene": "TIGR00220", + "Description": "mscL: large conductance mechanosensitive channel protein", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|mscL|Large-conductance mechanosensitive channel|loc|287188 287665 1 # ID=1_275|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00647": { + "#Core_gene": "TIGR00647", + "Description": "DNA_bind_WhiA: DNA-binding protein WhiA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|whiA|putative cell division protein WhiA|loc|577817 578750 1 # ID=1_557|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00732": { + "#Core_gene": "TIGR00732", + "Description": "dprA: DNA protecting protein DprA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dprA|DNA processing protein DprA|loc|1199701 1200541 -1 # ID=1_1154|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01034": { + "#Core_gene": "TIGR01034", + "Description": "metK: methionine adenosyltransferase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|metK|S-adenosylmethionine synthase|loc|1544010 1545207 -1 # ID=1_1493|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02727": { + "#Core_gene": "TIGR02727", + "Description": "MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1453565 1454126 -1 # ID=1_1409|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03705": { + "#Core_gene": "TIGR03705", + "Description": "poly_P_kin: polyphosphate kinase 1", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ppk|Polyphosphate kinase|loc|475404 477570 1 # ID=1_459|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01391": { + "#Core_gene": "TIGR01391", + "Description": "dnaG: DNA primase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dnaG_1|DNA primase|loc|1171475 1173314 -1 # ID=1_1127|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00042": { + "#Core_gene": "TIGR00042", + "Description": "TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|dITP/XTP pyrophosphatase|loc|1561512 1562133 -1 # ID=1_1511|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00084": { + "#Core_gene": "TIGR00084", + "Description": "ruvA: Holliday junction DNA helicase RuvA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ruvA_2|Holliday junction ATP-dependent DNA helicase RuvA|loc|1576179 1576773 -1 # ID=1_1525|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00194": { + "#Core_gene": "TIGR00194", + "Description": "uvrC: excinuclease ABC subunit C", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|uvrC|UvrABC system protein C|loc|753561 755364 1 # ID=1_739|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00237": { + "#Core_gene": "TIGR00237", + "Description": "xseA: exodeoxyribonuclease VII, large subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|xseA|Exodeoxyribonuclease 7 large subunit|loc|1394688 1396059 -1 # ID=1_1345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00281": { + "#Core_gene": "TIGR00281", + "Description": "TIGR00281: segregation and condensation protein B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|scpB|Segregation and condensation protein B|loc|780370 780973 1 # ID=1_763|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00362": { + "#Core_gene": "TIGR00362", + "Description": "DnaA: chromosomal replication initiator protein DnaA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dnaA|Chromosomal replication initiator protein DnaA|loc|103 1468 1 # ID=1_1|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00416": { + "#Core_gene": "TIGR00416", + "Description": "sms: DNA repair protein RadA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|radA|DNA repair protein RadA|loc|1662882 1664259 -1 # ID=1_1615|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00575": { + "#Core_gene": "TIGR00575", + "Description": "dnlj: DNA ligase, NAD-dependent", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ligA|DNA ligase|loc|412706 414722 1 # ID=1_404|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00577": { + "#Core_gene": "TIGR00577", + "Description": "fpg: DNA-formamidopyrimidine glycosylase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|mutM|Formamidopyrimidine-DNA glycosylase|loc|1484823 1485645 -1 # ID=1_1440|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00580": { + "#Core_gene": "TIGR00580", + "Description": "mfd: transcription-repair coupling factor", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|mfd|Transcription-repair-coupling factor|loc|320061 323538 1 # ID=1_308|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00593": { + "#Core_gene": "TIGR00593", + "Description": "pola: DNA polymerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|polA|DNA polymerase I|loc|1485655 1488319 -1 # ID=1_1441|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00595": { + "#Core_gene": "TIGR00595", + "Description": "priA: primosomal protein N'", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|priA|primosomal protein N|loc|1386246 1388628 -1 # ID=1_1336|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00613": { + "#Core_gene": "TIGR00613", + "Description": "reco: DNA repair protein RecO", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|recO|DNA repair protein RecO|loc|1176581 1177331 -1 # ID=1_1130|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00615": { + "#Core_gene": "TIGR00615", + "Description": "recR: recombination protein RecR", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|recR|Recombination protein RecR|loc|1593544 1594144 -1 # ID=1_1543|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00630": { + "#Core_gene": "TIGR00630", + "Description": "uvra: excinuclease ABC subunit A", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|uvrA|UvrABC system protein A|loc|570530 573389 1 # ID=1_549|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00631": { + "#Core_gene": "TIGR00631", + "Description": "uvrb: excinuclease ABC subunit B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|uvrB_2|UvrABC system protein B|loc|568498 570541 1 # ID=1_548|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00635": { + "#Core_gene": "TIGR00635", + "Description": "ruvB: Holliday junction DNA helicase RuvB", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1575154 1576165 -1 # ID=1_1524|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00643": { + "#Core_gene": "TIGR00643", + "Description": "recG: ATP-dependent DNA helicase RecG", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|recG|ATP-dependent DNA helicase RecG|loc|1371914 1373954 -1 # ID=1_1322|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00663": { + "#Core_gene": "TIGR00663", + "Description": "TIGR00663: dnan: DNA polymerase III, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dnaN|Beta sliding clamp|loc|1651 2779 1 # ID=1_2|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00665": { + "#Core_gene": "TIGR00665", + "Description": "DnaB: replicative DNA helicase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dnaC|Replicative DNA helicase|loc|12861 14232 1 # ID=1_12|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01051": { + "#Core_gene": "TIGR01051", + "Description": "topA_bact: DNA topoisomerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|topA|DNA topoisomerase 1|loc|1194596 1196771 -1 # ID=1_1151|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01059": { + "#Core_gene": "TIGR01059", + "Description": "gyrB: DNA gyrase, B subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gyrB|DNA gyrase subunit B|loc|4361 6323 1 # ID=1_5|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01063": { + "#Core_gene": "TIGR01063", + "Description": "gyrA: DNA gyrase, A subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gyrA|DNA gyrase subunit A|loc|6335 8807 1 # ID=1_6|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01073": { + "#Core_gene": "TIGR01073", + "Description": "pcrA: ATP-dependent DNA helicase PcrA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pcrA|ATP-dependent DNA helicase PcrA|loc|410434 412696 1 # ID=1_403|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01083": { + "#Core_gene": "TIGR01083", + "Description": "nth: endonuclease III", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pdg|Ultraviolet N-glycosylase/AP lyase|loc|930731 931361 1 # ID=1_899|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01128": { + "#Core_gene": "TIGR01128", + "Description": "holA: DNA polymerase III, delta subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|yqeN|putative protein YqeN|loc|709563 710553 1 # ID=1_698|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01280": { + "#Core_gene": "TIGR01280", + "Description": "xseB: exodeoxyribonuclease VII, small subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|xseB|Exodeoxyribonuclease 7 small subunit|loc|1394456 1394696 -1 # ID=1_1344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01389": { + "#Core_gene": "TIGR01389", + "Description": "recQ: ATP-dependent DNA helicase RecQ", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|recQ|ATP-dependent DNA helicase RecQ|loc|750524 752294 1 # ID=1_737|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02012": { + "#Core_gene": "TIGR02012", + "Description": "tigrfam_recA: protein RecA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|recA|Protein RecA|loc|552948 554058 1 # ID=1_534|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02225": { + "#Core_gene": "TIGR02225", + "Description": "recomb_XerD: tyrosine recombinase XerD", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|xerD_1|Tyrosine recombinase XerD|loc|778396 779293 1 # ID=1_760|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00016": { + "#Core_gene": "TIGR00016", + "Description": "ackA: acetate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ackA|Acetate kinase|loc|622546 623734 1 # ID=1_609|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00021": { + "#Core_gene": "TIGR00021", + "Description": "rpiA: ribose 5-phosphate isomerase A", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpiA|Ribose-5-phosphate isomerase A|loc|483237 483930 1 # ID=1_467|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00419": { + "#Core_gene": "TIGR00419", + "Description": "tim: triose-phosphate isomerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tpiA|Triosephosphate isomerase|loc|586713 587472 1 # ID=1_566|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00651": { + "#Core_gene": "TIGR00651", + "Description": "pta: phosphate acetyltransferase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pta|Phosphate acetyltransferase|loc|590784 591774 1 # ID=1_571|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00871": { + "#Core_gene": "TIGR00871", + "Description": "zwf: glucose-6-phosphate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1573120 1574569 -1 # ID=1_1522|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00962": { + "#Core_gene": "TIGR00962", + "Description": "atpA: ATP synthase F1, alpha subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpA|ATP synthase subunit alpha|loc|644446 645958 1 # ID=1_632|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01039": { + "#Core_gene": "TIGR01039", + "Description": "atpD: ATP synthase F1, beta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpD|ATP synthase subunit beta|loc|646950 648390 1 # ID=1_634|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01060": { + "#Core_gene": "TIGR01060", + "Description": "eno: phosphopyruvate hydratase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|eno|Enolase|loc|1276357 1277635 1 # ID=1_1239|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01064": { + "#Core_gene": "TIGR01064", + "Description": "pyruv_kin: pyruvate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pyk|Pyruvate kinase|loc|774470 776240 1 # ID=1_757|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01131": { + "#Core_gene": "TIGR01131", + "Description": "ATP_synt_6_or_A: ATP synthase F0, A subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpB|ATP synthase subunit a|loc|642359 643079 1 # ID=1_628|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01144": { + "#Core_gene": "TIGR01144", + "Description": "ATP_synt_b: ATP synthase F0, B subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpF|ATP synthase subunit b|loc|643375 643882 1 # ID=1_630|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01145": { + "#Core_gene": "TIGR01145", + "Description": "ATP_synt_delta: ATP synthase F1, delta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpH_2|ATP synthase subunit delta|loc|643881 644424 1 # ID=1_631|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01146": { + "#Core_gene": "TIGR01146", + "Description": "ATPsyn_F1gamma: ATP synthase F1, gamma subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpG|ATP synthase gamma chain|loc|645968 646931 1 # ID=1_633|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01216": { + "#Core_gene": "TIGR01216", + "Description": "ATP_synt_epsi: ATP synthase F1, epsilon subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpC|ATP synthase epsilon chain|loc|648401 648842 1 # ID=1_635|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01260": { + "#Core_gene": "TIGR01260", + "Description": "ATP_synt_c: ATP synthase F0, C subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|atpH_1|ATP synthase subunit c|loc|643097 643322 1 # ID=1_629|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01311": { + "#Core_gene": "TIGR01311", + "Description": "glycerol_kin: glycerol kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|glpK|Glycerol kinase|loc|2003016 2004525 -1 # ID=1_1960|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01534": { + "#Core_gene": "TIGR01534", + "Description": "GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|584371 585388 1 # ID=1_564|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01771": { + "#Core_gene": "TIGR01771", + "Description": "L-LDH-NAD: L-lactate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ldh|L-lactate dehydrogenase|loc|90754 91678 -1 # ID=1_91|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00121": { + "#Core_gene": "TIGR00121", + "Description": "birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|birA|Bifunctional ligase/repressor BirA|loc|851889 852555 1 # ID=1_824|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00357": { + "#Core_gene": "TIGR00357", + "Description": "TIGR00357: methionine-R-sulfoxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1867545 1867971 -1 # ID=1_1823|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00401": { + "#Core_gene": "TIGR00401", + "Description": "msrA: peptide-methionine (S)-S-oxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|msrA|Peptide methionine sulfoxide reductase MsrA|loc|613861 614389 1 # ID=1_597|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00077": { + "#Core_gene": "TIGR00077", + "Description": "lspA: signal peptidase II", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|lspA|Lipoprotein signal peptidase|loc|945698 946151 1 # ID=1_912|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00079": { + "#Core_gene": "TIGR00079", + "Description": "pept_deformyl: peptide deformylase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|def2|Peptide deformylase 2|loc|700081 700636 -1 # ID=1_689|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00115": { + "#Core_gene": "TIGR00115", + "Description": "tig: trigger factor", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tig|Trigger factor|loc|715786 717112 1 # ID=1_704|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00500": { + "#Core_gene": "TIGR00500", + "Description": "met_pdase_I: methionine aminopeptidase, type I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|map|Methionine aminopeptidase 1|loc|507564 508392 1 # ID=1_488|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00504": { + "#Core_gene": "TIGR00504", + "Description": "pyro_pdase: pyroglutamyl-peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pcp|Pyrrolidone-carboxylate peptidase|loc|1088522 1089134 -1 # ID=1_1058|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00544": { + "#Core_gene": "TIGR00544", + "Description": "lgt: prolipoprotein diacylglyceryl transferase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|565518 566352 1 # ID=1_545|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00810": { + "#Core_gene": "TIGR00810", + "Description": "secG: preprotein translocase, SecG subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|secG|putative protein-export membrane protein SecG|loc|1762599 1762833 -1 # ID=1_1710|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00963": { + "#Core_gene": "TIGR00963", + "Description": "secA: preprotein translocase, SecA subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|secA|Protein translocase subunit SecA|loc|560665 563068 1 # ID=1_541|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00964": { + "#Core_gene": "TIGR00964", + "Description": "secE_bact: preprotein translocase, SecE subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|secE|Protein translocase subunit SecE|loc|1614980 1615151 -1 # ID=1_1568|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00967": { + "#Core_gene": "TIGR00967", + "Description": "3a0501s007: preprotein translocase, SecY subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|secY|Protein translocase subunit SecY|loc|365472 366768 1 # ID=1_357|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02227": { + "#Core_gene": "TIGR02227", + "Description": "sigpep_I_bact: signal peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|spsB_1|Signal peptidase IB|loc|1131399 1131966 1 # ID=1_1093|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|spsB_2|Signal peptidase IB|loc|1132020 1132590 1 # ID=1_1094|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02348": { + "#Core_gene": "TIGR02348", + "Description": "GroEL: chaperonin GroL", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|groL|60 kDa chaperonin|loc|1581446 1583060 -1 # ID=1_1528|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02350": { + "#Core_gene": "TIGR02350", + "Description": "prok_dnaK: chaperone protein DnaK", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dnaK|Chaperone protein DnaK|loc|1295394 1297239 -1 # ID=1_1254|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03534": { + "#Core_gene": "TIGR03534", + "Description": "RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|prmC_1|Release factor glutamine methyltransferase|loc|639683 640526 1 # ID=1_625|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00186": { + "#Core_gene": "TIGR00186", + "Description": "rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1619218 1619968 -1 # ID=1_1574|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00398": { + "#Core_gene": "TIGR00398", + "Description": "metG: methionine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|metG|Methionine--tRNA ligase|loc|298987 300970 1 # ID=1_287|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00001": { + "#Core_gene": "TIGR00001", + "Description": "rpmI_bact: ribosomal protein bL35", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmI|50S ribosomal protein L35|loc|1475367 1475568 -1 # ID=1_1430|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00008": { + "#Core_gene": "TIGR00008", + "Description": "infA: translation initiation factor IF-1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|infA|Translation initiation factor IF-1|loc|367507 367729 1 # ID=1_359|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00009": { + "#Core_gene": "TIGR00009", + "Description": "L28: ribosomal protein bL28", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmB|50S ribosomal protein L28|loc|1376175 1376361 1 # ID=1_1325|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00012": { + "#Core_gene": "TIGR00012", + "Description": "L29: ribosomal protein uL29", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmC|50S ribosomal protein L29|loc|361024 361222 1 # ID=1_346|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00019": { + "#Core_gene": "TIGR00019", + "Description": "prfA: peptide chain release factor 1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|prfA|Peptide chain release factor 1|loc|638605 639691 1 # ID=1_624|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00020": { + "#Core_gene": "TIGR00020", + "Description": "prfB: peptide chain release factor 2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|prfB|Peptide chain release factor 2|loc|563273 564272 1 # ID=1_542|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00029": { + "#Core_gene": "TIGR00029", + "Description": "S20: ribosomal protein bS20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsT|30S ribosomal protein S20|loc|710644 710896 -1 # ID=1_699|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00038": { + "#Core_gene": "TIGR00038", + "Description": "efp: translation elongation factor P", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|efp_1|Elongation factor P|loc|1397797 1398364 -1 # ID=1_1349|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|efp_2|Elongation factor P|loc|1812662 1813220 -1 # ID=1_1759|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00057": { + "#Core_gene": "TIGR00057", + "Description": "TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ywlC|Threonylcarbamoyl-AMP synthase|loc|640525 641521 1 # ID=1_626|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00059": { + "#Core_gene": "TIGR00059", + "Description": "L17: ribosomal protein bL17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplQ|50S ribosomal protein L17|loc|369659 370043 1 # ID=1_363|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00060": { + "#Core_gene": "TIGR00060", + "Description": "L18_bact: ribosomal protein uL18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplR|50S ribosomal protein L18|loc|363926 364286 1 # ID=1_353|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00061": { + "#Core_gene": "TIGR00061", + "Description": "L21: ribosomal protein bL21", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplU|50S ribosomal protein L21|loc|1399999 1400311 -1 # ID=1_1352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00062": { + "#Core_gene": "TIGR00062", + "Description": "L27: ribosomal protein bL27", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmA|50S ribosomal protein L27|loc|1399684 1399984 -1 # ID=1_1351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00071": { + "#Core_gene": "TIGR00071", + "Description": "hisT_truA: tRNA pseudouridine(38-40) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|truA|tRNA pseudouridine synthase A|loc|372709 373498 1 # ID=1_367|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00086": { + "#Core_gene": "TIGR00086", + "Description": "smpB: SsrA-binding protein", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|smpB|SsrA-binding protein|loc|1759730 1760192 -1 # ID=1_1708|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00088": { + "#Core_gene": "TIGR00088", + "Description": "trmD: tRNA (guanine(37)-N(1))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1353264 1354002 -1 # ID=1_1305|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00090": { + "#Core_gene": "TIGR00090", + "Description": "rsfS_iojap_ybeB: ribosome silencing factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rsfS|Ribosomal silencing factor RsfS|loc|1472124 1472472 -1 # ID=1_1425|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00105": { + "#Core_gene": "TIGR00105", + "Description": "L31: ribosomal protein bL31", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmE2|50S ribosomal protein L31 type B|loc|313764 314016 1 # ID=1_301|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00116": { + "#Core_gene": "TIGR00116", + "Description": "tsf: translation elongation factor Ts", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tsf|Elongation factor Ts|loc|1326310 1327339 -1 # ID=1_1282|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00133": { + "#Core_gene": "TIGR00133", + "Description": "gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|417628 419059 1 # ID=1_408|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00135": { + "#Core_gene": "TIGR00135", + "Description": "gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gatC_1|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|415875 416181 1 # ID=1_406|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00150": { + "#Core_gene": "TIGR00150", + "Description": "T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|591784 592270 1 # ID=1_572|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00157": { + "#Core_gene": "TIGR00157", + "Description": "TIGR00157: ribosome small subunit-dependent GTPase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1380329 1381223 -1 # ID=1_1331|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00158": { + "#Core_gene": "TIGR00158", + "Description": "L9: ribosomal protein bL9", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplI|50S ribosomal protein L9|loc|12382 12838 1 # ID=1_11|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00165": { + "#Core_gene": "TIGR00165", + "Description": "S18: ribosomal protein bS18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsR|30S ribosomal protein S18|loc|9961 10198 1 # ID=1_9|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00166": { + "#Core_gene": "TIGR00166", + "Description": "S6: ribosomal protein bS6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsF|30S ribosomal protein S6|loc|9022 9316 1 # ID=1_7|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00168": { + "#Core_gene": "TIGR00168", + "Description": "infC: translation initiation factor IF-3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|infC|Translation initiation factor IF-3|loc|1475588 1476110 -1 # ID=1_1431|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00174": { + "#Core_gene": "TIGR00174", + "Description": "miaA: tRNA dimethylallyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|miaA|tRNA dimethylallyltransferase|loc|1451212 1452130 -1 # ID=1_1405|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00233": { + "#Core_gene": "TIGR00233", + "Description": "trpS: tryptophan--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|trpS2|Tryptophan--tRNA ligase 2|loc|293720 294746 1 # ID=1_283|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00234": { + "#Core_gene": "TIGR00234", + "Description": "tyrS: tyrosine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tyrS|Tyrosine--tRNA ligase|loc|233286 234552 1 # ID=1_225|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00256": { + "#Core_gene": "TIGR00256", + "Description": "TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dtd|D-aminoacyl-tRNA deacylase|loc|835155 835593 1 # ID=1_807|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00344": { + "#Core_gene": "TIGR00344", + "Description": "alaS: alanine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|alaS|Alanine--tRNA ligase|loc|1566757 1569391 -1 # ID=1_1518|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00392": { + "#Core_gene": "TIGR00392", + "Description": "ileS: isoleucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ileS|Isoleucine--tRNA ligase|loc|683912 686708 1 # ID=1_674|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00396": { + "#Core_gene": "TIGR00396", + "Description": "leuS_bact: leucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|leuS|Leucine--tRNA ligase|loc|1538896 1541311 -1 # ID=1_1490|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00409": { + "#Core_gene": "TIGR00409", + "Description": "proS_fam_II: proline--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|proS|Proline--tRNA ligase|loc|1320347 1322045 -1 # ID=1_1276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00414": { + "#Core_gene": "TIGR00414", + "Description": "serS: serine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|serS|Serine--tRNA ligase|loc|1786004 1787312 -1 # ID=1_1732|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00418": { + "#Core_gene": "TIGR00418", + "Description": "thrS: threonine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|thrS|Threonine--tRNA ligase|loc|1479245 1481177 -1 # ID=1_1435|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00422": { + "#Core_gene": "TIGR00422", + "Description": "valS: valine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|valS|Valine--tRNA ligase|loc|662405 665045 1 # ID=1_652|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00431": { + "#Core_gene": "TIGR00431", + "Description": "TruB: tRNA pseudouridine(55) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|truB|tRNA pseudouridine synthase B|loc|1309817 1310714 -1 # ID=1_1268|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00435": { + "#Core_gene": "TIGR00435", + "Description": "cysS: cysteine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|cysS|Cysteine--tRNA ligase|loc|1620390 1621815 -1 # ID=1_1576|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00442": { + "#Core_gene": "TIGR00442", + "Description": "hisS: histidine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|hisS|Histidine--tRNA ligase|loc|835877 837164 1 # ID=1_808|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00447": { + "#Core_gene": "TIGR00447", + "Description": "pth: aminoacyl-tRNA hydrolase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pth|Peptidyl-tRNA hydrolase|loc|319487 320045 1 # ID=1_307|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00456": { + "#Core_gene": "TIGR00456", + "Description": "argS: arginine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|argS|Arginine--tRNA ligase|loc|744793 746491 1 # ID=1_732|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00459": { + "#Core_gene": "TIGR00459", + "Description": "aspS_bact: aspartate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|aspS|Aspartate--tRNA ligase|loc|837179 839024 1 # ID=1_809|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00464": { + "#Core_gene": "TIGR00464", + "Description": "gltX_bact: glutamate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gltX|Glutamate--tRNA ligase|loc|1625941 1627444 -1 # ID=1_1581|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00468": { + "#Core_gene": "TIGR00468", + "Description": "pheS: phenylalanine--tRNA ligase, alpha subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1463878 1464928 -1 # ID=1_1416|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00472": { + "#Core_gene": "TIGR00472", + "Description": "pheT_bact: phenylalanine--tRNA ligase, beta subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1461467 1463879 -1 # ID=1_1415|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00496": { + "#Core_gene": "TIGR00496", + "Description": "frr: ribosome recycling factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|frr|Ribosome-recycling factor|loc|1324878 1325436 -1 # ID=1_1280|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00499": { + "#Core_gene": "TIGR00499", + "Description": "lysS_bact: lysine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|lysS|Lysine--tRNA ligase|loc|333671 335195 1 # ID=1_318|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00755": { + "#Core_gene": "TIGR00755", + "Description": "ksgA: ribosomal RNA small subunit methyltransferase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|302279 303170 1 # ID=1_290|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00855": { + "#Core_gene": "TIGR00855", + "Description": "L12: ribosomal protein bL12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplL|50S ribosomal protein L7/L12|loc|1608670 1609036 -1 # ID=1_1559|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00952": { + "#Core_gene": "TIGR00952", + "Description": "S15_bact: ribosomal protein uS15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsO|30S ribosomal protein S15|loc|711099 711369 1 # ID=1_700|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00981": { + "#Core_gene": "TIGR00981", + "Description": "rpsL_bact: ribosomal protein uS12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsL|30S ribosomal protein S12|loc|351817 352225 1 # ID=1_333|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01009": { + "#Core_gene": "TIGR01009", + "Description": "rpsC_bact: ribosomal protein uS3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsC|30S ribosomal protein S3|loc|359920 360592 1 # ID=1_344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01011": { + "#Core_gene": "TIGR01011", + "Description": "rpsB_bact: ribosomal protein uS2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsB|30S ribosomal protein S2|loc|1327401 1328163 -1 # ID=1_1283|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01017": { + "#Core_gene": "TIGR01017", + "Description": "rpsD_bact: ribosomal protein uS4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsD|30S ribosomal protein S4|loc|656328 656940 -1 # ID=1_647|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01021": { + "#Core_gene": "TIGR01021", + "Description": "rpsE_bact: ribosomal protein uS5", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsE|30S ribosomal protein S5|loc|364302 364815 1 # ID=1_354|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01023": { + "#Core_gene": "TIGR01023", + "Description": "rpmG_bact: ribosomal protein bL33", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmGA|50S ribosomal protein L33 1|loc|1454191 1454341 -1 # ID=1_1410|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|rpmG3|50S ribosomal protein L33 3|loc|1615157 1615307 -1 # ID=1_1569|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01024": { + "#Core_gene": "TIGR01024", + "Description": "rplS_bact: ribosomal protein bL19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplS|50S ribosomal protein L19|loc|1349223 1349571 -1 # ID=1_1303|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01029": { + "#Core_gene": "TIGR01029", + "Description": "rpsG_bact: ribosomal protein uS7", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsG|30S ribosomal protein S7|loc|352240 352711 1 # ID=1_334|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01030": { + "#Core_gene": "TIGR01030", + "Description": "rpmH_bact: ribosomal protein bL34", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmH|50S ribosomal protein L34|loc|2125240 2125381 -1 # ID=1_2071|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01031": { + "#Core_gene": "TIGR01031", + "Description": "rpmF_bact: ribosomal protein bL32", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmF|50S ribosomal protein L32|loc|760636 760828 1 # ID=1_744|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01032": { + "#Core_gene": "TIGR01032", + "Description": "rplT_bact: ribosomal protein bL20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplT|50S ribosomal protein L20|loc|1474966 1475323 -1 # ID=1_1429|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01044": { + "#Core_gene": "TIGR01044", + "Description": "rplV_bact: ribosomal protein uL22", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplV|50S ribosomal protein L22|loc|359553 359907 1 # ID=1_343|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01049": { + "#Core_gene": "TIGR01049", + "Description": "rpsJ_bact: ribosomal protein uS10", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsJ|30S ribosomal protein S10|loc|356485 356794 1 # ID=1_337|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01050": { + "#Core_gene": "TIGR01050", + "Description": "rpsS_bact: ribosomal protein uS19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsS|30S ribosomal protein S19|loc|359256 359532 1 # ID=1_342|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01066": { + "#Core_gene": "TIGR01066", + "Description": "rplM_bact: ribosomal protein uL13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplM|50S ribosomal protein L13|loc|373603 374047 1 # ID=1_368|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01067": { + "#Core_gene": "TIGR01067", + "Description": "rplN_bact: ribosomal protein uL14", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplN|50S ribosomal protein L14|loc|361537 361906 1 # ID=1_348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01071": { + "#Core_gene": "TIGR01071", + "Description": "rplO_bact: ribosomal protein uL15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplO|50S ribosomal protein L15|loc|365032 365473 1 # ID=1_356|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01079": { + "#Core_gene": "TIGR01079", + "Description": "rplX_bact: ribosomal protein uL24", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplX|50S ribosomal protein L24|loc|361922 362162 1 # ID=1_349|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01164": { + "#Core_gene": "TIGR01164", + "Description": "rplP_bact: ribosomal protein uL16", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplP|50S ribosomal protein L16|loc|360591 361035 1 # ID=1_345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01169": { + "#Core_gene": "TIGR01169", + "Description": "rplA_bact: ribosomal protein uL1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplA|50S ribosomal protein L1|loc|1613004 1613700 -1 # ID=1_1565|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01171": { + "#Core_gene": "TIGR01171", + "Description": "rplB_bact: ribosomal protein uL2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplB|50S ribosomal protein L2|loc|358402 359239 1 # ID=1_341|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01308": { + "#Core_gene": "TIGR01308", + "Description": "rpmD_bact: ribosomal protein uL30", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpmD|50S ribosomal protein L30|loc|364826 365012 1 # ID=1_355|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01632": { + "#Core_gene": "TIGR01632", + "Description": "L11_bact: ribosomal protein uL11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplK|50S ribosomal protein L11|loc|1613783 1614209 -1 # ID=1_1566|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02729": { + "#Core_gene": "TIGR02729", + "Description": "Obg_CgtA: Obg family GTPase CgtA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|obg|GTPase Obg|loc|755432 756755 1 # ID=1_740|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03631": { + "#Core_gene": "TIGR03631", + "Description": "uS13_bact: ribosomal protein uS13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsM|30S ribosomal protein S13|loc|367885 368236 1 # ID=1_360|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03632": { + "#Core_gene": "TIGR03632", + "Description": "uS11_bact: ribosomal protein uS11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsK|30S ribosomal protein S11|loc|368264 368654 1 # ID=1_361|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03635": { + "#Core_gene": "TIGR03635", + "Description": "uS17_bact: ribosomal protein uS17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpsQ|30S ribosomal protein S17|loc|361240 361507 1 # ID=1_347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03654": { + "#Core_gene": "TIGR03654", + "Description": "L6_bact: ribosomal protein uL6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplF|50S ribosomal protein L6|loc|363369 363900 1 # ID=1_352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03953": { + "#Core_gene": "TIGR03953", + "Description": "rplD_bact: 50S ribosomal protein uL4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplD|50S ribosomal protein L4|loc|357463 358081 1 # ID=1_339|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00878": { + "#Core_gene": "TIGR00878", + "Description": "purM: phosphoribosylformylglycinamidine cyclo-ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1405660 1406701 -1 # ID=1_1359|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01161": { + "#Core_gene": "TIGR01161", + "Description": "purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1413672 1414797 -1 # ID=1_1366|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01162": { + "#Core_gene": "TIGR01162", + "Description": "purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1414786 1415278 -1 # ID=1_1367|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00017": { + "#Core_gene": "TIGR00017", + "Description": "cmk: cytidylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|cmk|Cytidylate kinase|loc|783223 783856 1 # ID=1_767|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00081": { + "#Core_gene": "TIGR00081", + "Description": "purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1411300 1412023 -1 # ID=1_1364|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00302": { + "#Core_gene": "TIGR00302", + "Description": "TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1411047 1411296 -1 # ID=1_1363|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00355": { + "#Core_gene": "TIGR00355", + "Description": "purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purH|Bifunctional purine biosynthesis protein PurH|loc|1403528 1405070 -1 # ID=1_1357|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01134": { + "#Core_gene": "TIGR01134", + "Description": "purF: amidophosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purF|Amidophosphoribosyltransferase|loc|1406697 1408176 -1 # ID=1_1360|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01736": { + "#Core_gene": "TIGR01736", + "Description": "FGAM_synth_II: phosphoribosylformylglycinamidine synthase II", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1408151 1410374 -1 # ID=1_1361|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02487": { + "#Core_gene": "TIGR02487", + "Description": "NrdD: anaerobic ribonucleoside-triphosphate reductase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|205592 207803 1 # ID=1_203|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03263": { + "#Core_gene": "TIGR03263", + "Description": "guanyl_kin: guanylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|gmk_1|Guanylate kinase|loc|1388913 1389528 -1 # ID=1_1338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03284": { + "#Core_gene": "TIGR03284", + "Description": "thym_sym: thymidylate synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|thyA|Thymidylate synthase|loc|726492 727449 1 # ID=1_715|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01953": { + "#Core_gene": "TIGR01953", + "Description": "NusA: transcription termination factor NusA", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|nusA|Transcription termination/antitermination protein NusA|loc|1314241 1315393 -1 # ID=1_1273|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02393": { + "#Core_gene": "TIGR02393", + "Description": "RpoD_Cterm: RNA polymerase sigma factor RpoD", + "Function": "Transcription", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|sigA_2|RNA polymerase sigma factor SigA|loc|1169222 1170344 -1 # ID=1_1125|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|sigA_3|RNA polymerase sigma factor SigA|loc|1170385 1171504 -1 # ID=1_1126|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00082": { + "#Core_gene": "TIGR00082", + "Description": "rbfA: ribosome-binding factor A", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rbfA|Ribosome-binding factor A|loc|1310764 1311127 -1 # ID=1_1269|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00188": { + "#Core_gene": "TIGR00188", + "Description": "rnpA: ribonuclease P protein component", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rnpA|Ribonuclease P protein component|loc|2124826 2125192 -1 # ID=1_2070|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00690": { + "#Core_gene": "TIGR00690", + "Description": "rpoZ: DNA-directed RNA polymerase, omega subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1388690 1388912 -1 # ID=1_1337|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00922": { + "#Core_gene": "TIGR00922", + "Description": "nusG: transcription termination/antitermination factor NusG", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|nusG|Transcription termination/antitermination protein NusG|loc|1614334 1614889 -1 # ID=1_1567|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01951": { + "#Core_gene": "TIGR01951", + "Description": "nusB: transcription antitermination factor NusB", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|nusB|Transcription antitermination protein NusB|loc|1396945 1397344 -1 # ID=1_1347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02013": { + "#Core_gene": "TIGR02013", + "Description": "TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpoB|DNA-directed RNA polymerase subunit beta|loc|343094 346757 1 # ID=1_328|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02027": { + "#Core_gene": "TIGR02027", + "Description": "rpoA: DNA-directed RNA polymerase, alpha subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpoA|DNA-directed RNA polymerase subunit alpha|loc|368697 369636 1 # ID=1_362|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02191": { + "#Core_gene": "TIGR02191", + "Description": "RNaseIII: ribonuclease III", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rnc|Ribonuclease 3|loc|1361783 1362479 -1 # ID=1_1313|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02273": { + "#Core_gene": "TIGR02273", + "Description": "16S_RimM: 16S rRNA processing protein RimM", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rimM|Ribosome maturation factor RimM|loc|1354001 1354505 -1 # ID=1_1306|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02386": { + "#Core_gene": "TIGR02386", + "Description": "rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpoC|DNA-directed RNA polymerase subunit beta|loc|346772 350438 1 # ID=1_329|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR02349": { + "#Core_gene": "TIGR02349", + "Description": "DnaJ_bact: chaperone protein DnaJ", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dnaJ|Chaperone protein DnaJ|loc|1294172 1295312 -1 # ID=1_1253|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03625": { + "#Core_gene": "TIGR03625", + "Description": "L3_bact: 50S ribosomal protein uL3", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rplC|50S ribosomal protein L3|loc|356819 357449 1 # ID=1_338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00180": { + "#Core_gene": "TIGR00180", + "Description": "parB_part: ParB/RepB/Spo0J family partition protein", + "Function": "Unclassified", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|spo0J|Stage 0 sporulation protein J|loc|1953669 1954560 -1 # ID=1_1909|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|noc|Nucleoid occlusion protein|loc|1955318 1956143 -1 # ID=1_1911|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00196": { + "#Core_gene": "TIGR00196", + "Description": "yjeF_cterm: YjeF family C-terminal domain", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1528528 1529395 -1 # ID=1_1484|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00092": { + "#Core_gene": "TIGR00092", + "Description": "TIGR00092: GTP-binding protein YchF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ychF|Ribosome-binding ATPase YchF|loc|1952236 1953337 -1 # ID=1_1907|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00250": { + "#Core_gene": "TIGR00250", + "Description": "RNAse_H_YqgF: putative transcription antitermination factor YqgF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|yrrK|Putative pre-16S rRNA nuclease|loc|1566006 1566435 -1 # ID=1_1516|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00257": { + "#Core_gene": "TIGR00257", + "Description": "IMPACT_YIGZ: uncharacterized protein, YigZ family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|yigZ|IMPACT family member YigZ|loc|557205 557865 -1 # ID=1_537|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00481": { + "#Core_gene": "TIGR00481", + "Description": "TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|387291 387783 1 # ID=1_382|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00486": { + "#Core_gene": "TIGR00486", + "Description": "YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|GTP cyclohydrolase 1 type 2|loc|1134520 1135318 -1 # ID=1_1097|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01448": { + "#Core_gene": "TIGR01448", + "Description": "recD_rel: helicase, RecD/TraA family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|recD2|ATP-dependent RecD-like DNA helicase|loc|692546 694937 1 # ID=1_684|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00103": { + "#Core_gene": "TIGR00103", + "Description": "DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|Nucleoid-associated protein|loc|1594145 1594475 -1 # ID=1_1544|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03156": { + "#Core_gene": "TIGR03156", + "Description": "GTP_HflX: GTP-binding protein HflX", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|hflX|GTPase HflX|loc|1905751 1907032 1 # ID=1_1865|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00762": { + "#Core_gene": "TIGR00762", + "Description": "DegV: EDD domain protein, DegV family", + "Function": "Unknown function", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|55670 56504 1 # ID=1_57|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|degV_1|Protein DegV|loc|957226 958108 1 # ID=1_922|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|1202557 1203403 -1 # ID=1_1158|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|1275213 1276050 -1 # ID=1_1238|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|degV_2|Protein DegV|loc|1439475 1440405 1 # ID=1_1394|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01393": { + "#Core_gene": "TIGR01393", + "Description": "lepA: elongation factor 4", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|lepA|Elongation factor 4|loc|1292212 1294051 -1 # ID=1_1252|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01417": { + "#Core_gene": "TIGR01417", + "Description": "PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|523578 525306 1 # ID=1_505|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00337": { + "#Core_gene": "TIGR00337", + "Description": "PyrG: CTP synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pyrG|CTP synthase|loc|310653 312273 1 # ID=1_299|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00877": { + "#Core_gene": "TIGR00877", + "Description": "purD: phosphoribosylamine--glycine ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|purD|Phosphoribosylamine--glycine ligase|loc|1402247 1403513 -1 # ID=1_1356|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01091": { + "#Core_gene": "TIGR01091", + "Description": "upp: uracil phosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|upp|Uracil phosphoribosyltransferase|loc|641620 642250 1 # ID=1_627|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01369": { + "#Core_gene": "TIGR01369", + "Description": "CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|carB_3|Carbamoyl-phosphate synthase large chain|loc|1038958 1042159 -1 # ID=1_1005|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00479": { + "#Core_gene": "TIGR00479", + "Description": "rumA: 23S rRNA (uracil-5-)-methyltransferase RumA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|-|putative RNA methyltransferase|loc|420797 422153 1 # ID=1_411|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|512152 513535 -1 # ID=1_493|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00484": { + "#Core_gene": "TIGR00484", + "Description": "EF-G: translation elongation factor G", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|fusA|Elongation factor G|loc|352744 354829 1 # ID=1_335|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00485": { + "#Core_gene": "TIGR00485", + "Description": "EF-Tu: translation elongation factor Tu", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tuf|Elongation factor Tu|loc|714413 715604 1 # ID=1_703|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00487": { + "#Core_gene": "TIGR00487", + "Description": "IF-2: translation initiation factor IF-2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|infB|Translation initiation factor IF-2|loc|1311139 1313617 -1 # ID=1_1270|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00563": { + "#Core_gene": "TIGR00563", + "Description": "rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1383980 1385297 -1 # ID=1_1334|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03594": { + "#Core_gene": "TIGR03594", + "Description": "GTPase_EngA: ribosome-associated GTPase EngA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|der|GTPase Der|loc|785226 786534 1 # ID=1_769|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR03725": { + "#Core_gene": "TIGR03725", + "Description": "T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1588060 1588783 -1 # ID=1_1534|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00382": { + "#Core_gene": "TIGR00382", + "Description": "clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|717263 718517 1 # ID=1_705|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00959": { + "#Core_gene": "TIGR00959", + "Description": "ffh: signal recognition particle protein", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ffh|Signal recognition particle protein|loc|1354932 1356363 -1 # ID=1_1308|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00560": { + "#Core_gene": "TIGR00560", + "Description": "pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase", + "Function": "Fatty acid and phospholipid metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|552178 552742 1 # ID=1_533|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00131": { + "#Core_gene": "TIGR00131", + "Description": "gal_kin: galactokinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|galK_2|Galactokinase|loc|1694429 1695596 1 # ID=1_1650|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01135": { + "#Core_gene": "TIGR01135", + "Description": "glmS: glutamine-fructose-6-phosphate transaminase (isomerizing)", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|445120 446932 1 # ID=1_433|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01455": { + "#Core_gene": "TIGR01455", + "Description": "glmM: phosphoglucosamine mutase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|glmM|Phosphoglucosamine mutase|loc|599565 600918 1 # ID=1_581|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00179": { + "#Core_gene": "TIGR00179", + "Description": "murB: UDP-N-acetylenolpyruvoylglucosamine reductase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|593004 593898 1 # ID=1_574|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00521": { + "#Core_gene": "TIGR00521", + "Description": "coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|747195 748395 1 # ID=1_734|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00036": { + "#Core_gene": "TIGR00036", + "Description": "dapB: 4-hydroxy-tetrahydrodipicolinate reductase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|dapB|4-hydroxy-tetrahydrodipicolinate reductase|loc|1060134 1060914 -1 # ID=1_1029|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01430": { + "#Core_gene": "TIGR01430", + "Description": "aden_deam: adenosine deaminase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|add|Adenosine deaminase|loc|1437726 1438719 -1 # ID=1_1392|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00191": { + "#Core_gene": "TIGR00191", + "Description": "thrB: homoserine kinase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|thrB_2|Homoserine kinase|loc|1702419 1703283 -1 # ID=1_1656|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01163": { + "#Core_gene": "TIGR01163", + "Description": "rpe: ribulose-phosphate 3-epimerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|rpe|Ribulose-phosphate 3-epimerase|loc|482574 483225 1 # ID=1_466|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR01072": { + "#Core_gene": "TIGR01072", + "Description": "murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|312393 313665 1 # ID=1_300|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + }, + "GCA_000182835.1__arts_core__TIGR00043": { + "#Core_gene": "TIGR00043", + "Description": "TIGR00043: rRNA maturation RNase YbeY", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ND02|ybeY|Endoribonuclease YbeY|loc|1178640 1179165 -1 # ID=1_1133|Type=CDS|transl_table=11]", + "genome_id": "GCA_000182835.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000191165.1_arts_coretable_summary.json b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000191165.1_arts_coretable_summary.json new file mode 100644 index 00000000..16dead36 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/arts/antismash-7.0.0/GCA_000191165.1_arts_coretable_summary.json @@ -0,0 +1,2686 @@ +{ + "GCA_000191165.1__arts_core__Cpn10": { + "#Core_gene": "Cpn10", + "Description": "PF00166.17: Chaperonin 10 Kd subunit", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|groS|10 kDa chaperonin|loc|1449650 1449935 -1 # ID=1_1503|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__GrpE": { + "#Core_gene": "GrpE", + "Description": "PF01025.15: GrpE", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|grpE|Protein GrpE|loc|1174949 1175567 -1 # ID=1_1230|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__Methyltransf_5": { + "#Core_gene": "Methyltransf_5", + "Description": "PF01795.15: MraW methylase family", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|617876 618821 1 # ID=1_664|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__PGK": { + "#Core_gene": "PGK", + "Description": "PF00162.15: Phosphoglycerate kinase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pgk|Phosphoglycerate kinase|loc|533657 534869 1 # ID=1_566|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__Ribosomal_L10": { + "#Core_gene": "Ribosomal_L10", + "Description": "PF00466.16: Ribosomal protein L10", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplJ|50S ribosomal protein L10|loc|1477436 1477946 -1 # ID=1_1539|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__Ribosomal_L23": { + "#Core_gene": "Ribosomal_L23", + "Description": "PF00276.16: Ribosomal protein L23", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplW|50S ribosomal protein L23|loc|339250 339547 1 # ID=1_349|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__Ribosomal_S8": { + "#Core_gene": "Ribosomal_S8", + "Description": "PF00410.15: Ribosomal protein S8", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsH|30S ribosomal protein S8|loc|344116 344515 1 # ID=1_360|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__Ribosomal_S9": { + "#Core_gene": "Ribosomal_S9", + "Description": "PF00380.15: Ribosomal protein S9/S16", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsI|30S ribosomal protein S9|loc|355230 355626 1 # ID=1_378|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00653": { + "#Core_gene": "TIGR00653", + "Description": "GlnA: glutamine synthetase, type I", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|glnA|Glutamine synthetase|loc|1323462 1324800 -1 # ID=1_1374|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00674": { + "#Core_gene": "TIGR00674", + "Description": "dapA: 4-hydroxy-tetrahydrodipicolinate synthase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dapA|4-hydroxy-tetrahydrodipicolinate synthase|loc|959318 960248 -1 # ID=1_1015|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01513": { + "#Core_gene": "TIGR01513", + "Description": "NAPRTase_put: nicotinate phosphoribosyltransferase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pncB|Nicotinate phosphoribosyltransferase|loc|262274 263798 -1 # ID=1_276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00114": { + "#Core_gene": "TIGR00114", + "Description": "lumazine-synth: 6,7-dimethyl-8-ribityllumazine synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ribH|6,7-dimethyl-8-ribityllumazine synthase|loc|1812281 1812746 -1 # ID=1_1902|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00152": { + "#Core_gene": "TIGR00152", + "Description": "TIGR00152: dephospho-CoA kinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|coaE|Dephospho-CoA kinase|loc|1360164 1360749 -1 # ID=1_1412|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00525": { + "#Core_gene": "TIGR00525", + "Description": "folB: dihydroneopterin aldolase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|folB|Dihydroneopterin aldolase|loc|201185 201536 1 # ID=1_214|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01378": { + "#Core_gene": "TIGR01378", + "Description": "thi_PPkinase: thiamine pyrophosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|thiN|Thiamine pyrophosphokinase|loc|1264616 1265300 -1 # ID=1_1311|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01496": { + "#Core_gene": "TIGR01496", + "Description": "DHPS: dihydropteroate synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|203916 205008 1 # ID=1_217|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01498": { + "#Core_gene": "TIGR01498", + "Description": "folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|folE|GTP cyclohydrolase 1|loc|201532 202606 1 # ID=1_215|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01980": { + "#Core_gene": "TIGR01980", + "Description": "sufB: FeS assembly protein SufB", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|818024 819452 1 # ID=1_865|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01981": { + "#Core_gene": "TIGR01981", + "Description": "sufD: FeS assembly protein SufD", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|815238 816402 1 # ID=1_862|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01994": { + "#Core_gene": "TIGR01994", + "Description": "SUF_scaf_2: SUF system FeS assembly protein, NifU family", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|817583 818024 1 # ID=1_864|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00055": { + "#Core_gene": "TIGR00055", + "Description": "uppS: di-trans,poly-cis-decaprenylcistransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1207214 1207946 -1 # ID=1_1256|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00219": { + "#Core_gene": "TIGR00219", + "Description": "mreC: rod shape-determining protein MreC", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|mreC|Cell shape-determining protein MreC|loc|615294 616020 1 # ID=1_658|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00753": { + "#Core_gene": "TIGR00753", + "Description": "undec_PP_bacA: undecaprenyl-diphosphatase UppP", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|uppP|Undecaprenyl-diphosphatase|loc|488653 489481 -1 # ID=1_523|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01082": { + "#Core_gene": "TIGR01082", + "Description": "murC: UDP-N-acetylmuramate--L-alanine ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1368565 1369885 -1 # ID=1_1422|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01087": { + "#Core_gene": "TIGR01087", + "Description": "murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|622324 623707 1 # ID=1_668|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00065": { + "#Core_gene": "TIGR00065", + "Description": "ftsZ: cell division protein FtsZ", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ftsZ|Cell division protein FtsZ|loc|627146 628505 1 # ID=1_672|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00220": { + "#Core_gene": "TIGR00220", + "Description": "mscL: large conductance mechanosensitive channel protein", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|mscL|Large-conductance mechanosensitive channel|loc|261718 262195 1 # ID=1_275|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00647": { + "#Core_gene": "TIGR00647", + "Description": "DNA_bind_WhiA: DNA-binding protein WhiA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|whiA|putative cell division protein WhiA|loc|525907 526840 1 # ID=1_558|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00732": { + "#Core_gene": "TIGR00732", + "Description": "dprA: DNA protecting protein DprA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dprA|DNA processing protein DprA|loc|1135398 1136238 -1 # ID=1_1192|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01034": { + "#Core_gene": "TIGR01034", + "Description": "metK: methionine adenosyltransferase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|metK|S-adenosylmethionine synthase|loc|1411151 1412348 -1 # ID=1_1467|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02727": { + "#Core_gene": "TIGR02727", + "Description": "MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|1328560 1329133 -1 # ID=1_1381|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03705": { + "#Core_gene": "TIGR03705", + "Description": "poly_P_kin: polyphosphate kinase 1", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ppk|Polyphosphate kinase|loc|432702 434868 1 # ID=1_463|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01391": { + "#Core_gene": "TIGR01391", + "Description": "dnaG: DNA primase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dnaG|DNA primase|loc|1109471 1111310 -1 # ID=1_1167|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00042": { + "#Core_gene": "TIGR00042", + "Description": "TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|dITP/XTP pyrophosphatase|loc|1428080 1428701 -1 # ID=1_1485|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00084": { + "#Core_gene": "TIGR00084", + "Description": "ruvA: Holliday junction DNA helicase RuvA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1442737 1443331 -1 # ID=1_1499|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00194": { + "#Core_gene": "TIGR00194", + "Description": "uvrC: excinuclease ABC subunit C", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|uvrC|UvrABC system protein C|loc|699645 701448 1 # ID=1_741|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00237": { + "#Core_gene": "TIGR00237", + "Description": "xseA: exodeoxyribonuclease VII, large subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|xseA|Exodeoxyribonuclease 7 large subunit|loc|1279780 1281151 -1 # ID=1_1328|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00281": { + "#Core_gene": "TIGR00281", + "Description": "TIGR00281: segregation and condensation protein B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|scpB|Segregation and condensation protein B|loc|726362 726965 1 # ID=1_768|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00362": { + "#Core_gene": "TIGR00362", + "Description": "DnaA: chromosomal replication initiator protein DnaA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dnaA|Chromosomal replication initiator protein DnaA|loc|276 1641 1 # ID=1_1|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00416": { + "#Core_gene": "TIGR00416", + "Description": "sms: DNA repair protein RadA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|radA|DNA repair protein RadA|loc|1531500 1532877 -1 # ID=1_1601|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00575": { + "#Core_gene": "TIGR00575", + "Description": "dnlj: DNA ligase, NAD-dependent", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ligA|DNA ligase|loc|384735 386751 1 # ID=1_411|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00577": { + "#Core_gene": "TIGR00577", + "Description": "fpg: DNA-formamidopyrimidine glycosylase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|mutM|Formamidopyrimidine-DNA glycosylase|loc|1360757 1361579 -1 # ID=1_1413|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00580": { + "#Core_gene": "TIGR00580", + "Description": "mfd: transcription-repair coupling factor", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|mfd|Transcription-repair-coupling factor|loc|302140 305632 1 # ID=1_319|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00593": { + "#Core_gene": "TIGR00593", + "Description": "pola: DNA polymerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|polA|DNA polymerase I|loc|1361589 1364250 -1 # ID=1_1414|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00595": { + "#Core_gene": "TIGR00595", + "Description": "priA: primosomal protein N'", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|priA|Primosomal protein N|loc|1271251 1273633 -1 # ID=1_1317|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00613": { + "#Core_gene": "TIGR00613", + "Description": "reco: DNA repair protein RecO", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|recO|DNA repair protein RecO|loc|1114576 1115326 -1 # ID=1_1170|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00615": { + "#Core_gene": "TIGR00615", + "Description": "recR: recombination protein RecR", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|recR|Recombination protein RecR|loc|1460731 1461331 -1 # ID=1_1518|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00630": { + "#Core_gene": "TIGR00630", + "Description": "uvra: excinuclease ABC subunit A", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|uvrA|UvrABC system protein A|loc|518396 521252 1 # ID=1_551|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00631": { + "#Core_gene": "TIGR00631", + "Description": "uvrb: excinuclease ABC subunit B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|uvrB_2|UvrABC system protein B|loc|516364 518407 1 # ID=1_550|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00635": { + "#Core_gene": "TIGR00635", + "Description": "ruvB: Holliday junction DNA helicase RuvB", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1441713 1442724 -1 # ID=1_1498|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00643": { + "#Core_gene": "TIGR00643", + "Description": "recG: ATP-dependent DNA helicase RecG", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|recG|ATP-dependent DNA helicase RecG|loc|1256031 1258071 -1 # ID=1_1302|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00663": { + "#Core_gene": "TIGR00663", + "Description": "TIGR00663: dnan: DNA polymerase III, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dnaN|Beta sliding clamp|loc|1822 2950 1 # ID=1_2|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00665": { + "#Core_gene": "TIGR00665", + "Description": "DnaB: replicative DNA helicase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dnaC|Replicative DNA helicase|loc|13030 14401 1 # ID=1_12|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01051": { + "#Core_gene": "TIGR01051", + "Description": "topA_bact: DNA topoisomerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|topA|DNA topoisomerase 1|loc|1131572 1133756 -1 # ID=1_1190|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01059": { + "#Core_gene": "TIGR01059", + "Description": "gyrB: DNA gyrase, B subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gyrB|DNA gyrase subunit B|loc|4533 6495 1 # ID=1_5|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01063": { + "#Core_gene": "TIGR01063", + "Description": "gyrA: DNA gyrase, A subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gyrA|DNA gyrase subunit A|loc|6507 8979 1 # ID=1_6|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01073": { + "#Core_gene": "TIGR01073", + "Description": "pcrA: ATP-dependent DNA helicase PcrA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pcrA|ATP-dependent DNA helicase PcrA|loc|382463 384725 1 # ID=1_410|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01083": { + "#Core_gene": "TIGR01083", + "Description": "nth: endonuclease III", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pdg|Ultraviolet N-glycosylase/AP lyase|loc|881088 881718 1 # ID=1_929|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01128": { + "#Core_gene": "TIGR01128", + "Description": "holA: DNA polymerase III, delta subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|yqeN|putative protein YqeN|loc|654522 655512 1 # ID=1_699|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01280": { + "#Core_gene": "TIGR01280", + "Description": "xseB: exodeoxyribonuclease VII, small subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|xseB|Exodeoxyribonuclease 7 small subunit|loc|1279548 1279788 -1 # ID=1_1327|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01389": { + "#Core_gene": "TIGR01389", + "Description": "recQ: ATP-dependent DNA helicase RecQ", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|recQ|ATP-dependent DNA helicase RecQ|loc|696608 698378 1 # ID=1_739|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02012": { + "#Core_gene": "TIGR02012", + "Description": "tigrfam_recA: protein RecA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|recA|Protein RecA|loc|500813 501923 1 # ID=1_536|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02225": { + "#Core_gene": "TIGR02225", + "Description": "recomb_XerD: tyrosine recombinase XerD", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|xerD_1|Tyrosine recombinase XerD|loc|724388 725285 1 # ID=1_765|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00016": { + "#Core_gene": "TIGR00016", + "Description": "ackA: acetate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ackA|Acetate kinase|loc|571861 573049 1 # ID=1_614|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00021": { + "#Core_gene": "TIGR00021", + "Description": "rpiA: ribose 5-phosphate isomerase A", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpiA|Ribose-5-phosphate isomerase A|loc|439964 440657 1 # ID=1_471|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00419": { + "#Core_gene": "TIGR00419", + "Description": "tim: triose-phosphate isomerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tpiA|Triosephosphate isomerase|loc|534887 535646 1 # ID=1_567|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00651": { + "#Core_gene": "TIGR00651", + "Description": "pta: phosphate acetyltransferase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pta|Phosphate acetyltransferase|loc|538946 539936 1 # ID=1_573|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00871": { + "#Core_gene": "TIGR00871", + "Description": "zwf: glucose-6-phosphate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1439688 1441137 -1 # ID=1_1496|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00962": { + "#Core_gene": "TIGR00962", + "Description": "atpA: ATP synthase F1, alpha subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpA|ATP synthase subunit alpha|loc|592194 593706 1 # ID=1_635|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01039": { + "#Core_gene": "TIGR01039", + "Description": "atpD: ATP synthase F1, beta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpD|ATP synthase subunit beta|loc|594698 596138 1 # ID=1_637|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01060": { + "#Core_gene": "TIGR01060", + "Description": "eno: phosphopyruvate hydratase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|eno|Enolase|loc|1151380 1152658 1 # ID=1_1210|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01064": { + "#Core_gene": "TIGR01064", + "Description": "pyruv_kin: pyruvate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pyk|Pyruvate kinase|loc|720192 721962 1 # ID=1_760|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01131": { + "#Core_gene": "TIGR01131", + "Description": "ATP_synt_6_or_A: ATP synthase F0, A subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpB|ATP synthase subunit a|loc|590107 590827 1 # ID=1_631|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01144": { + "#Core_gene": "TIGR01144", + "Description": "ATP_synt_b: ATP synthase F0, B subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpF|ATP synthase subunit b|loc|591123 591630 1 # ID=1_633|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01145": { + "#Core_gene": "TIGR01145", + "Description": "ATP_synt_delta: ATP synthase F1, delta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpH_2|ATP synthase subunit delta|loc|591629 592172 1 # ID=1_634|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01146": { + "#Core_gene": "TIGR01146", + "Description": "ATPsyn_F1gamma: ATP synthase F1, gamma subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpG|ATP synthase gamma chain|loc|593716 594679 1 # ID=1_636|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01216": { + "#Core_gene": "TIGR01216", + "Description": "ATP_synt_epsi: ATP synthase F1, epsilon subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpC|ATP synthase epsilon chain|loc|596149 596590 1 # ID=1_638|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01260": { + "#Core_gene": "TIGR01260", + "Description": "ATP_synt_c: ATP synthase F0, C subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|atpH_1|ATP synthase subunit c|loc|590845 591070 1 # ID=1_632|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01534": { + "#Core_gene": "TIGR01534", + "Description": "GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|532544 533561 1 # ID=1_565|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01771": { + "#Core_gene": "TIGR01771", + "Description": "L-LDH-NAD: L-lactate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ldh|L-lactate dehydrogenase|loc|90513 91437 -1 # ID=1_100|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00121": { + "#Core_gene": "TIGR00121", + "Description": "birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|birA|Bifunctional ligase/repressor BirA|loc|783030 783696 1 # ID=1_824|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00357": { + "#Core_gene": "TIGR00357", + "Description": "TIGR00357: methionine-R-sulfoxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1673290 1673716 -1 # ID=1_1764|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00401": { + "#Core_gene": "TIGR00401", + "Description": "msrA: peptide-methionine (S)-S-oxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|msrA|Peptide methionine sulfoxide reductase MsrA|loc|563158 563686 1 # ID=1_601|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00077": { + "#Core_gene": "TIGR00077", + "Description": "lspA: signal peptidase II", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|lspA|Lipoprotein signal peptidase|loc|895901 896354 1 # ID=1_943|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00079": { + "#Core_gene": "TIGR00079", + "Description": "pept_deformyl: peptide deformylase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|def2|Peptide deformylase 2|loc|645061 645616 -1 # ID=1_690|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00115": { + "#Core_gene": "TIGR00115", + "Description": "tig: trigger factor", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tig|Trigger factor|loc|660752 662072 1 # ID=1_706|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00500": { + "#Core_gene": "TIGR00500", + "Description": "met_pdase_I: methionine aminopeptidase, type I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|map|Methionine aminopeptidase 1|loc|464369 465197 1 # ID=1_496|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00504": { + "#Core_gene": "TIGR00504", + "Description": "pyro_pdase: pyroglutamyl-peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pcp|Pyrrolidone-carboxylate peptidase|loc|1029182 1029794 -1 # ID=1_1094|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00544": { + "#Core_gene": "TIGR00544", + "Description": "lgt: prolipoprotein diacylglyceryl transferase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|513384 514218 1 # ID=1_547|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00810": { + "#Core_gene": "TIGR00810", + "Description": "secG: preprotein translocase, SecG subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|secG|putative protein-export membrane protein SecG|loc|805722 805956 1 # ID=1_848|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00963": { + "#Core_gene": "TIGR00963", + "Description": "secA: preprotein translocase, SecA subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|secA|Protein translocase subunit SecA|loc|508529 510932 1 # ID=1_543|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00964": { + "#Core_gene": "TIGR00964", + "Description": "secE_bact: preprotein translocase, SecE subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|secE|Protein translocase subunit SecE|loc|1485232 1485403 -1 # ID=1_1548|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00967": { + "#Core_gene": "TIGR00967", + "Description": "3a0501s007: preprotein translocase, SecY subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|secY|Protein translocase subunit SecY|loc|346642 347938 1 # ID=1_366|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02227": { + "#Core_gene": "TIGR02227", + "Description": "sigpep_I_bact: signal peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|spsB|Signal peptidase IB|loc|1066949 1067516 1 # ID=1_1127|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02348": { + "#Core_gene": "TIGR02348", + "Description": "GroEL: chaperonin GroL", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|groL|60 kDa chaperonin|loc|1448010 1449624 -1 # ID=1_1502|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02350": { + "#Core_gene": "TIGR02350", + "Description": "prok_dnaK: chaperone protein DnaK", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dnaK|Chaperone protein DnaK|loc|1173045 1174890 -1 # ID=1_1229|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03534": { + "#Core_gene": "TIGR03534", + "Description": "RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|prmC|Release factor glutamine methyltransferase|loc|587431 588274 1 # ID=1_628|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00186": { + "#Core_gene": "TIGR00186", + "Description": "rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1489480 1490230 -1 # ID=1_1558|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00398": { + "#Core_gene": "TIGR00398", + "Description": "metG: methionine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|metG|Methionine--tRNA ligase|loc|281001 282984 1 # ID=1_298|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00001": { + "#Core_gene": "TIGR00001", + "Description": "rpmI_bact: ribosomal protein bL35", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmI|50S ribosomal protein L35|loc|1348638 1348839 -1 # ID=1_1401|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00008": { + "#Core_gene": "TIGR00008", + "Description": "infA: translation initiation factor IF-1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|infA|Translation initiation factor IF-1|loc|348677 348899 1 # ID=1_368|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00009": { + "#Core_gene": "TIGR00009", + "Description": "L28: ribosomal protein bL28", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmB|50S ribosomal protein L28|loc|1260292 1260478 1 # ID=1_1305|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00012": { + "#Core_gene": "TIGR00012", + "Description": "L29: ribosomal protein uL29", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmC|50S ribosomal protein L29|loc|342194 342392 1 # ID=1_355|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00019": { + "#Core_gene": "TIGR00019", + "Description": "prfA: peptide chain release factor 1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|prfA|Peptide chain release factor 1|loc|586353 587439 1 # ID=1_627|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00020": { + "#Core_gene": "TIGR00020", + "Description": "prfB: peptide chain release factor 2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|prfB|Peptide chain release factor 2|loc|511138 512137 1 # ID=1_544|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00029": { + "#Core_gene": "TIGR00029", + "Description": "S20: ribosomal protein bS20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsT|30S ribosomal protein S20|loc|655604 655856 -1 # ID=1_700|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00038": { + "#Core_gene": "TIGR00038", + "Description": "efp: translation elongation factor P", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|efp_1|Elongation factor P|loc|1282897 1283467 -1 # ID=1_1332|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|efp_2|Elongation factor P|loc|1626467 1627025 -1 # ID=1_1704|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00057": { + "#Core_gene": "TIGR00057", + "Description": "TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ywlC|Threonylcarbamoyl-AMP synthase|loc|588273 589269 1 # ID=1_629|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00059": { + "#Core_gene": "TIGR00059", + "Description": "L17: ribosomal protein bL17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplQ|50S ribosomal protein L17|loc|350829 351213 1 # ID=1_372|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00060": { + "#Core_gene": "TIGR00060", + "Description": "L18_bact: ribosomal protein uL18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplR|50S ribosomal protein L18|loc|345096 345456 1 # ID=1_362|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00061": { + "#Core_gene": "TIGR00061", + "Description": "L21: ribosomal protein bL21", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplU|50S ribosomal protein L21|loc|1285104 1285416 -1 # ID=1_1336|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00062": { + "#Core_gene": "TIGR00062", + "Description": "L27: ribosomal protein bL27", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmA|50S ribosomal protein L27|loc|1284789 1285089 -1 # ID=1_1335|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00071": { + "#Core_gene": "TIGR00071", + "Description": "hisT_truA: tRNA pseudouridine(38-40) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|truA|tRNA pseudouridine synthase A|loc|353880 354669 1 # ID=1_376|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00086": { + "#Core_gene": "TIGR00086", + "Description": "smpB: SsrA-binding protein", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|smpB|SsrA-binding protein|loc|808414 808876 1 # ID=1_850|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00088": { + "#Core_gene": "TIGR00088", + "Description": "trmD: tRNA (guanine(37)-N(1))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1236045 1236783 -1 # ID=1_1284|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00090": { + "#Core_gene": "TIGR00090", + "Description": "rsfS_iojap_ybeB: ribosome silencing factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rsfS|Ribosomal silencing factor RsfS|loc|1345395 1345743 -1 # ID=1_1396|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00105": { + "#Core_gene": "TIGR00105", + "Description": "L31: ribosomal protein bL31", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmE2|50S ribosomal protein L31 type B|loc|295778 296030 1 # ID=1_312|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00116": { + "#Core_gene": "TIGR00116", + "Description": "tsf: translation elongation factor Ts", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tsf|Elongation factor Ts|loc|1209380 1210409 -1 # ID=1_1259|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00133": { + "#Core_gene": "TIGR00133", + "Description": "gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|389657 391088 1 # ID=1_415|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00135": { + "#Core_gene": "TIGR00135", + "Description": "gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|387904 388210 1 # ID=1_413|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00150": { + "#Core_gene": "TIGR00150", + "Description": "T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|539946 540432 1 # ID=1_574|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00157": { + "#Core_gene": "TIGR00157", + "Description": "TIGR00157: ribosome small subunit-dependent GTPase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1265329 1266223 -1 # ID=1_1312|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00158": { + "#Core_gene": "TIGR00158", + "Description": "L9: ribosomal protein bL9", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplI|50S ribosomal protein L9|loc|12551 13007 1 # ID=1_11|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00165": { + "#Core_gene": "TIGR00165", + "Description": "S18: ribosomal protein bS18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsR|30S ribosomal protein S18|loc|10130 10367 1 # ID=1_9|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00166": { + "#Core_gene": "TIGR00166", + "Description": "S6: ribosomal protein bS6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsF|30S ribosomal protein S6|loc|9194 9488 1 # ID=1_7|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00168": { + "#Core_gene": "TIGR00168", + "Description": "infC: translation initiation factor IF-3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|infC|Translation initiation factor IF-3|loc|1348859 1349381 -1 # ID=1_1402|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00174": { + "#Core_gene": "TIGR00174", + "Description": "miaA: tRNA dimethylallyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|miaA|tRNA dimethylallyltransferase|loc|1326197 1327088 -1 # ID=1_1377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00233": { + "#Core_gene": "TIGR00233", + "Description": "trpS: tryptophan--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|trpS2|Tryptophan--tRNA ligase 2|loc|275711 276737 1 # ID=1_294|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00234": { + "#Core_gene": "TIGR00234", + "Description": "tyrS: tyrosine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tyrS|Tyrosine--tRNA ligase|loc|210600 211866 1 # ID=1_224|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00256": { + "#Core_gene": "TIGR00256", + "Description": "TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dtd|D-aminoacyl-tRNA deacylase|loc|766186 766624 1 # ID=1_807|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00344": { + "#Core_gene": "TIGR00344", + "Description": "alaS: alanine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|alaS|Alanine--tRNA ligase|loc|1433325 1435959 -1 # ID=1_1492|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00392": { + "#Core_gene": "TIGR00392", + "Description": "ileS: isoleucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ileS|Isoleucine--tRNA ligase|loc|630413 633209 1 # ID=1_676|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00396": { + "#Core_gene": "TIGR00396", + "Description": "leuS_bact: leucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|leuS|Leucine--tRNA ligase|loc|1404966 1407381 -1 # ID=1_1463|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00409": { + "#Core_gene": "TIGR00409", + "Description": "proS_fam_II: proline--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|proS|Proline--tRNA ligase|loc|1203417 1205115 -1 # ID=1_1253|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00414": { + "#Core_gene": "TIGR00414", + "Description": "serS: serine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|serS|Serine--tRNA ligase|loc|1599776 1601084 -1 # ID=1_1673|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00418": { + "#Core_gene": "TIGR00418", + "Description": "thrS: threonine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|thrS|Threonine--tRNA ligase|loc|1355178 1357110 -1 # ID=1_1408|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00422": { + "#Core_gene": "TIGR00422", + "Description": "valS: valine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|valS|Valine--tRNA ligase|loc|608878 611518 1 # ID=1_653|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00431": { + "#Core_gene": "TIGR00431", + "Description": "TruB: tRNA pseudouridine(55) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|truB|tRNA pseudouridine synthase B|loc|1192817 1193714 -1 # ID=1_1245|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00435": { + "#Core_gene": "TIGR00435", + "Description": "cysS: cysteine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|cysS|Cysteine--tRNA ligase|loc|1490652 1492077 -1 # ID=1_1560|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00442": { + "#Core_gene": "TIGR00442", + "Description": "hisS: histidine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|hisS|Histidine--tRNA ligase|loc|766907 768194 1 # ID=1_808|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00447": { + "#Core_gene": "TIGR00447", + "Description": "pth: aminoacyl-tRNA hydrolase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pth|Peptidyl-tRNA hydrolase|loc|301566 302124 1 # ID=1_318|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00456": { + "#Core_gene": "TIGR00456", + "Description": "argS: arginine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|argS|Arginine--tRNA ligase|loc|690877 692575 1 # ID=1_734|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00459": { + "#Core_gene": "TIGR00459", + "Description": "aspS_bact: aspartate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|aspS|Aspartate--tRNA ligase|loc|768209 770054 1 # ID=1_809|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00464": { + "#Core_gene": "TIGR00464", + "Description": "gltX_bact: glutamate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gltX|Glutamate--tRNA ligase|loc|1495421 1496924 -1 # ID=1_1564|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00468": { + "#Core_gene": "TIGR00468", + "Description": "pheS: phenylalanine--tRNA ligase, alpha subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1337227 1338277 -1 # ID=1_1387|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00472": { + "#Core_gene": "TIGR00472", + "Description": "pheT_bact: phenylalanine--tRNA ligase, beta subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1334816 1337228 -1 # ID=1_1386|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00496": { + "#Core_gene": "TIGR00496", + "Description": "frr: ribosome recycling factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|frr|Ribosome-recycling factor|loc|1207948 1208506 -1 # ID=1_1257|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00499": { + "#Core_gene": "TIGR00499", + "Description": "lysS_bact: lysine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|lysS|Lysine--tRNA ligase|loc|315865 317371 1 # ID=1_329|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00755": { + "#Core_gene": "TIGR00755", + "Description": "ksgA: ribosomal RNA small subunit methyltransferase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|284293 285184 1 # ID=1_301|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00855": { + "#Core_gene": "TIGR00855", + "Description": "L12: ribosomal protein bL12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplL|50S ribosomal protein L7/L12|loc|1477018 1477384 -1 # ID=1_1538|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00952": { + "#Core_gene": "TIGR00952", + "Description": "S15_bact: ribosomal protein uS15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsO|30S ribosomal protein S15|loc|656059 656329 1 # ID=1_701|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00981": { + "#Core_gene": "TIGR00981", + "Description": "rpsL_bact: ribosomal protein uS12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsL|30S ribosomal protein S12|loc|334257 334665 1 # ID=1_343|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01009": { + "#Core_gene": "TIGR01009", + "Description": "rpsC_bact: ribosomal protein uS3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsC|30S ribosomal protein S3|loc|341090 341762 1 # ID=1_353|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01011": { + "#Core_gene": "TIGR01011", + "Description": "rpsB_bact: ribosomal protein uS2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsB|30S ribosomal protein S2|loc|1210471 1211233 -1 # ID=1_1260|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01017": { + "#Core_gene": "TIGR01017", + "Description": "rpsD_bact: ribosomal protein uS4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsD|30S ribosomal protein S4|loc|602804 603416 -1 # ID=1_648|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01021": { + "#Core_gene": "TIGR01021", + "Description": "rpsE_bact: ribosomal protein uS5", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsE|30S ribosomal protein S5|loc|345472 345985 1 # ID=1_363|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01023": { + "#Core_gene": "TIGR01023", + "Description": "rpmG_bact: ribosomal protein bL33", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmGA|50S ribosomal protein L33 1|loc|1329187 1329337 -1 # ID=1_1382|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|rpmG3|50S ribosomal protein L33 3|loc|1485409 1485559 -1 # ID=1_1549|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01024": { + "#Core_gene": "TIGR01024", + "Description": "rplS_bact: ribosomal protein bL19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplS|50S ribosomal protein L19|loc|1232805 1233153 -1 # ID=1_1280|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01029": { + "#Core_gene": "TIGR01029", + "Description": "rpsG_bact: ribosomal protein uS7", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsG|30S ribosomal protein S7|loc|334680 335151 1 # ID=1_344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01030": { + "#Core_gene": "TIGR01030", + "Description": "rpmH_bact: ribosomal protein bL34", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmH|50S ribosomal protein L34|loc|1872579 1872720 -1 # ID=1_1962|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01031": { + "#Core_gene": "TIGR01031", + "Description": "rpmF_bact: ribosomal protein bL32", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmF|50S ribosomal protein L32|loc|706720 706912 1 # ID=1_747|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01032": { + "#Core_gene": "TIGR01032", + "Description": "rplT_bact: ribosomal protein bL20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplT|50S ribosomal protein L20|loc|1348237 1348594 -1 # ID=1_1400|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01044": { + "#Core_gene": "TIGR01044", + "Description": "rplV_bact: ribosomal protein uL22", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplV|50S ribosomal protein L22|loc|340723 341077 1 # ID=1_352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01049": { + "#Core_gene": "TIGR01049", + "Description": "rpsJ_bact: ribosomal protein uS10", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsJ|30S ribosomal protein S10|loc|337655 337964 1 # ID=1_346|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01050": { + "#Core_gene": "TIGR01050", + "Description": "rpsS_bact: ribosomal protein uS19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsS|30S ribosomal protein S19|loc|340426 340702 1 # ID=1_351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01066": { + "#Core_gene": "TIGR01066", + "Description": "rplM_bact: ribosomal protein uL13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplM|50S ribosomal protein L13|loc|354774 355218 1 # ID=1_377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01067": { + "#Core_gene": "TIGR01067", + "Description": "rplN_bact: ribosomal protein uL14", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplN|50S ribosomal protein L14|loc|342707 343076 1 # ID=1_357|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01071": { + "#Core_gene": "TIGR01071", + "Description": "rplO_bact: ribosomal protein uL15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplO|50S ribosomal protein L15|loc|346202 346643 1 # ID=1_365|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01079": { + "#Core_gene": "TIGR01079", + "Description": "rplX_bact: ribosomal protein uL24", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplX|50S ribosomal protein L24|loc|343092 343332 1 # ID=1_358|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01164": { + "#Core_gene": "TIGR01164", + "Description": "rplP_bact: ribosomal protein uL16", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplP|50S ribosomal protein L16|loc|341761 342205 1 # ID=1_354|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01169": { + "#Core_gene": "TIGR01169", + "Description": "rplA_bact: ribosomal protein uL1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplA|50S ribosomal protein L1|loc|1483256 1483952 -1 # ID=1_1545|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01171": { + "#Core_gene": "TIGR01171", + "Description": "rplB_bact: ribosomal protein uL2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplB|50S ribosomal protein L2|loc|339572 340409 1 # ID=1_350|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01308": { + "#Core_gene": "TIGR01308", + "Description": "rpmD_bact: ribosomal protein uL30", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpmD|50S ribosomal protein L30|loc|345996 346182 1 # ID=1_364|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01632": { + "#Core_gene": "TIGR01632", + "Description": "L11_bact: ribosomal protein uL11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplK|50S ribosomal protein L11|loc|1484035 1484461 -1 # ID=1_1546|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02729": { + "#Core_gene": "TIGR02729", + "Description": "Obg_CgtA: Obg family GTPase CgtA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|obg_1|GTPase Obg|loc|701585 702671 1 # ID=1_742|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03631": { + "#Core_gene": "TIGR03631", + "Description": "uS13_bact: ribosomal protein uS13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsM|30S ribosomal protein S13|loc|349055 349406 1 # ID=1_369|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03632": { + "#Core_gene": "TIGR03632", + "Description": "uS11_bact: ribosomal protein uS11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsK|30S ribosomal protein S11|loc|349434 349824 1 # ID=1_370|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03635": { + "#Core_gene": "TIGR03635", + "Description": "uS17_bact: ribosomal protein uS17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpsQ|30S ribosomal protein S17|loc|342410 342677 1 # ID=1_356|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03654": { + "#Core_gene": "TIGR03654", + "Description": "L6_bact: ribosomal protein uL6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplF|50S ribosomal protein L6|loc|344539 345070 1 # ID=1_361|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03953": { + "#Core_gene": "TIGR03953", + "Description": "rplD_bact: 50S ribosomal protein uL4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplD|50S ribosomal protein L4|loc|338633 339251 1 # ID=1_348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00878": { + "#Core_gene": "TIGR00878", + "Description": "purM: phosphoribosylformylglycinamidine cyclo-ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1290758 1291808 -1 # ID=1_1343|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01161": { + "#Core_gene": "TIGR01161", + "Description": "purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1298792 1299917 -1 # ID=1_1350|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01162": { + "#Core_gene": "TIGR01162", + "Description": "purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1299906 1300398 -1 # ID=1_1351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00017": { + "#Core_gene": "TIGR00017", + "Description": "cmk: cytidylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|cmk|Cytidylate kinase|loc|729216 729849 1 # ID=1_772|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00081": { + "#Core_gene": "TIGR00081", + "Description": "purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1296407 1297130 -1 # ID=1_1348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00302": { + "#Core_gene": "TIGR00302", + "Description": "TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1296154 1296403 -1 # ID=1_1347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00355": { + "#Core_gene": "TIGR00355", + "Description": "purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purH|Bifunctional purine biosynthesis protein PurH|loc|1288635 1290177 -1 # ID=1_1341|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01134": { + "#Core_gene": "TIGR01134", + "Description": "purF: amidophosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purF|Amidophosphoribosyltransferase|loc|1291804 1293283 -1 # ID=1_1344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01736": { + "#Core_gene": "TIGR01736", + "Description": "FGAM_synth_II: phosphoribosylformylglycinamidine synthase II", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1293258 1295481 -1 # ID=1_1345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02487": { + "#Core_gene": "TIGR02487", + "Description": "NrdD: anaerobic ribonucleoside-triphosphate reductase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|173110 175321 1 # ID=1_184|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03263": { + "#Core_gene": "TIGR03263", + "Description": "guanyl_kin: guanylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|gmk_1|Guanylate kinase|loc|1273918 1274533 -1 # ID=1_1319|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03284": { + "#Core_gene": "TIGR03284", + "Description": "thym_sym: thymidylate synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|thyA|Thymidylate synthase|loc|670227 671184 1 # ID=1_717|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01953": { + "#Core_gene": "TIGR01953", + "Description": "NusA: transcription termination factor NusA", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|nusA|Transcription termination/antitermination protein NusA|loc|1197241 1198462 -1 # ID=1_1250|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02393": { + "#Core_gene": "TIGR02393", + "Description": "RpoD_Cterm: RNA polymerase sigma factor RpoD", + "Function": "Transcription", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|sigA_2|RNA polymerase sigma factor SigA|loc|1107218 1108340 -1 # ID=1_1165|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|sigA_3|RNA polymerase sigma factor SigA|loc|1108381 1109500 -1 # ID=1_1166|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00082": { + "#Core_gene": "TIGR00082", + "Description": "rbfA: ribosome-binding factor A", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rbfA|Ribosome-binding factor A|loc|1193764 1194127 -1 # ID=1_1246|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00188": { + "#Core_gene": "TIGR00188", + "Description": "rnpA: ribonuclease P protein component", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rnpA|Ribonuclease P protein component|loc|1872165 1872531 -1 # ID=1_1961|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00690": { + "#Core_gene": "TIGR00690", + "Description": "rpoZ: DNA-directed RNA polymerase, omega subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1273695 1273917 -1 # ID=1_1318|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00922": { + "#Core_gene": "TIGR00922", + "Description": "nusG: transcription termination/antitermination factor NusG", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|nusG|Transcription termination/antitermination protein NusG|loc|1484586 1485141 -1 # ID=1_1547|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01951": { + "#Core_gene": "TIGR01951", + "Description": "nusB: transcription antitermination factor NusB", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|nusB|Transcription antitermination protein NusB|loc|1282048 1282447 -1 # ID=1_1330|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02013": { + "#Core_gene": "TIGR02013", + "Description": "TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpoB|DNA-directed RNA polymerase subunit beta|loc|325558 329233 1 # ID=1_340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02027": { + "#Core_gene": "TIGR02027", + "Description": "rpoA: DNA-directed RNA polymerase, alpha subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpoA|DNA-directed RNA polymerase subunit alpha|loc|349867 350806 1 # ID=1_371|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02191": { + "#Core_gene": "TIGR02191", + "Description": "RNaseIII: ribonuclease III", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rnc|Ribonuclease 3|loc|1245896 1246592 -1 # ID=1_1293|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02273": { + "#Core_gene": "TIGR02273", + "Description": "16S_RimM: 16S rRNA processing protein RimM", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rimM|Ribosome maturation factor RimM|loc|1236782 1237286 -1 # ID=1_1285|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02386": { + "#Core_gene": "TIGR02386", + "Description": "rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpoC|DNA-directed RNA polymerase subunit beta|loc|329248 332914 1 # ID=1_341|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR02349": { + "#Core_gene": "TIGR02349", + "Description": "DnaJ_bact: chaperone protein DnaJ", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dnaJ|Chaperone protein DnaJ|loc|1171826 1172963 -1 # ID=1_1228|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03625": { + "#Core_gene": "TIGR03625", + "Description": "L3_bact: 50S ribosomal protein uL3", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rplC|50S ribosomal protein L3|loc|337989 338619 1 # ID=1_347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00180": { + "#Core_gene": "TIGR00180", + "Description": "parB_part: ParB/RepB/Spo0J family partition protein", + "Function": "Unclassified", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|spo0J|Stage 0 sporulation protein J|loc|1732006 1732897 -1 # ID=1_1824|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|noc|Nucleoid occlusion protein|loc|1733655 1734480 -1 # ID=1_1826|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00196": { + "#Core_gene": "TIGR00196", + "Description": "yjeF_cterm: YjeF family C-terminal domain", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1394911 1395778 -1 # ID=1_1451|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00092": { + "#Core_gene": "TIGR00092", + "Description": "TIGR00092: GTP-binding protein YchF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ychF|Ribosome-binding ATPase YchF|loc|1730573 1731674 -1 # ID=1_1822|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00250": { + "#Core_gene": "TIGR00250", + "Description": "RNAse_H_YqgF: putative transcription antitermination factor YqgF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|yrrK|Putative pre-16S rRNA nuclease|loc|1432574 1433003 -1 # ID=1_1490|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00257": { + "#Core_gene": "TIGR00257", + "Description": "IMPACT_YIGZ: uncharacterized protein, YigZ family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|yigZ|IMPACT family member YigZ|loc|505069 505729 -1 # ID=1_539|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00481": { + "#Core_gene": "TIGR00481", + "Description": "TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|361846 362338 1 # ID=1_388|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00486": { + "#Core_gene": "TIGR00486", + "Description": "YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|GTP cyclohydrolase 1 type 2|loc|1071102 1071900 -1 # ID=1_1131|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01448": { + "#Core_gene": "TIGR01448", + "Description": "recD_rel: helicase, RecD/TraA family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|recD2|ATP-dependent RecD-like DNA helicase|loc|639035 641426 1 # ID=1_686|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00103": { + "#Core_gene": "TIGR00103", + "Description": "DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|Nucleoid-associated protein|loc|1461332 1461662 -1 # ID=1_1519|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03156": { + "#Core_gene": "TIGR03156", + "Description": "GTP_HflX: GTP-binding protein HflX", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|hflX|GTPase HflX|loc|1694460 1695741 1 # ID=1_1786|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00762": { + "#Core_gene": "TIGR00762", + "Description": "DegV: EDD domain protein, DegV family", + "Function": "Unknown function", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|53050 53884 1 # ID=1_56|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|degV|Protein DegV|loc|905193 906075 1 # ID=1_950|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|1138261 1139107 -1 # ID=1_1196|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|1150236 1151073 -1 # ID=1_1209|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01393": { + "#Core_gene": "TIGR01393", + "Description": "lepA: elongation factor 4", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|lepA|Elongation factor 4|loc|1169866 1171705 -1 # ID=1_1227|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01417": { + "#Core_gene": "TIGR01417", + "Description": "PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|480411 482139 1 # ID=1_513|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00337": { + "#Core_gene": "TIGR00337", + "Description": "PyrG: CTP synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pyrG|CTP synthase|loc|292668 294288 1 # ID=1_310|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00877": { + "#Core_gene": "TIGR00877", + "Description": "purD: phosphoribosylamine--glycine ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|purD|Phosphoribosylamine--glycine ligase|loc|1287354 1288620 -1 # ID=1_1340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01091": { + "#Core_gene": "TIGR01091", + "Description": "upp: uracil phosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|upp|Uracil phosphoribosyltransferase|loc|589368 589998 1 # ID=1_630|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01369": { + "#Core_gene": "TIGR01369", + "Description": "CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "Yes", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|carB_8|Carbamoyl-phosphate synthase large chain|loc|1788915 1792104 -1 # ID=1_1883|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00479": { + "#Core_gene": "TIGR00479", + "Description": "rumA: 23S rRNA (uracil-5-)-methyltransferase RumA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|putative RNA methyltransferase|loc|392835 394191 1 # ID=1_418|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|468963 470346 -1 # ID=1_501|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00484": { + "#Core_gene": "TIGR00484", + "Description": "EF-G: translation elongation factor G", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|fusA|Elongation factor G|loc|335184 337269 1 # ID=1_345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00485": { + "#Core_gene": "TIGR00485", + "Description": "EF-Tu: translation elongation factor Tu", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tuf|Elongation factor Tu|loc|659378 660569 1 # ID=1_705|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00487": { + "#Core_gene": "TIGR00487", + "Description": "IF-2: translation initiation factor IF-2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|infB|Translation initiation factor IF-2|loc|1194139 1196617 -1 # ID=1_1247|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00563": { + "#Core_gene": "TIGR00563", + "Description": "rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1268980 1270297 -1 # ID=1_1315|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03594": { + "#Core_gene": "TIGR03594", + "Description": "GTPase_EngA: ribosome-associated GTPase EngA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|der|GTPase Der|loc|731218 732526 1 # ID=1_774|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR03725": { + "#Core_gene": "TIGR03725", + "Description": "T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1454631 1455354 -1 # ID=1_1508|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00382": { + "#Core_gene": "TIGR00382", + "Description": "clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|662223 663477 1 # ID=1_707|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00959": { + "#Core_gene": "TIGR00959", + "Description": "ffh: signal recognition particle protein", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ffh|Signal recognition particle protein|loc|1237741 1239145 -1 # ID=1_1287|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00560": { + "#Core_gene": "TIGR00560", + "Description": "pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase", + "Function": "Fatty acid and phospholipid metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|500044 500608 1 # ID=1_535|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00218": { + "#Core_gene": "TIGR00218", + "Description": "manA: mannose-6-phosphate isomerase, class I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|manA|Mannose-6-phosphate isomerase ManA|loc|41678 42647 1 # ID=1_45|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01135": { + "#Core_gene": "TIGR01135", + "Description": "glmS: glutamine-fructose-6-phosphate transaminase (isomerizing)", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|407091 408903 1 # ID=1_436|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01455": { + "#Core_gene": "TIGR01455", + "Description": "glmM: phosphoglucosamine mutase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|glmM|Phosphoglucosamine mutase|loc|547727 549080 1 # ID=1_583|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00179": { + "#Core_gene": "TIGR00179", + "Description": "murB: UDP-N-acetylenolpyruvoylglucosamine reductase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|541164 542058 1 # ID=1_576|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00521": { + "#Core_gene": "TIGR00521", + "Description": "coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|693279 694479 1 # ID=1_736|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00036": { + "#Core_gene": "TIGR00036", + "Description": "dapB: 4-hydroxy-tetrahydrodipicolinate reductase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|dapB|4-hydroxy-tetrahydrodipicolinate reductase|loc|958537 959317 -1 # ID=1_1014|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01430": { + "#Core_gene": "TIGR01430", + "Description": "aden_deam: adenosine deaminase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|-|Adenine deaminase|loc|925115 926138 -1 # ID=1_973|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|add|Adenosine deaminase|loc|1318195 1319188 -1 # ID=1_1368|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00191": { + "#Core_gene": "TIGR00191", + "Description": "thrB: homoserine kinase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|thrB_2|Homoserine kinase|loc|1551790 1552654 -1 # ID=1_1627|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01163": { + "#Core_gene": "TIGR01163", + "Description": "rpe: ribulose-phosphate 3-epimerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|rpe|Ribulose-phosphate 3-epimerase|loc|439301 439952 1 # ID=1_470|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR01072": { + "#Core_gene": "TIGR01072", + "Description": "murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|294407 295679 1 # ID=1_311|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + }, + "GCA_000191165.1__arts_core__TIGR00043": { + "#Core_gene": "TIGR00043", + "Description": "TIGR00043: rRNA maturation RNase YbeY", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain 2038|ybeY|Endoribonuclease YbeY|loc|1116635 1117160 -1 # ID=1_1173|Type=CDS|transl_table=11]", + "genome_id": "GCA_000191165.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1-change_log.json b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1-change_log.json new file mode 100644 index 00000000..b8b687d8 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1-change_log.json @@ -0,0 +1,22 @@ +{ + "GCA_000014405.1": { + "CP000412.1.region001.gbk": { + "record_id": "CP000412.1", + "original_id": "CP000412.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000014405.1/CP000412.1.region001.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/CP000412.1.region001.gbk" + }, + "CP000412.1.region002.gbk": { + "record_id": "CP000412.1", + "original_id": "CP000412.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000014405.1/CP000412.1.region002.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/CP000412.1.region002.gbk" + }, + "GCA_000014405.1.gbk": { + "record_id": "CP000412.1", + "original_id": "CP000412.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000014405.1/GCA_000014405.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000014405.1/GCA_000014405.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1-change_log.json b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1-change_log.json new file mode 100644 index 00000000..12d1c4f3 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1-change_log.json @@ -0,0 +1,28 @@ +{ + "GCA_000056065.1": { + "CR954253.1.region001.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/CR954253.1.region001.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/CR954253.1.region001.gbk" + }, + "CR954253.1.region002.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/CR954253.1.region002.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/CR954253.1.region002.gbk" + }, + "CR954253.1.region003.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/CR954253.1.region003.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/CR954253.1.region003.gbk" + }, + "GCA_000056065.1.gbk": { + "record_id": "CR954253.1", + "original_id": "CR954253.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000056065.1/GCA_000056065.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000056065.1/GCA_000056065.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1-change_log.json b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1-change_log.json new file mode 100644 index 00000000..c43523a3 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1-change_log.json @@ -0,0 +1,10 @@ +{ + "GCA_000182835.1": { + "GCA_000182835.1.gbk": { + "record_id": "CP002342.1", + "original_id": "CP002342.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000182835.1/GCA_000182835.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000182835.1/GCA_000182835.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1-change_log.json b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1-change_log.json new file mode 100644 index 00000000..f086874c --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1-change_log.json @@ -0,0 +1,22 @@ +{ + "GCA_000191165.1": { + "CP000156.1.region001.gbk": { + "record_id": "CP000156.1", + "original_id": "CP000156.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000191165.1/CP000156.1.region001.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/CP000156.1.region001.gbk" + }, + "CP000156.1.region002.gbk": { + "record_id": "CP000156.1", + "original_id": "CP000156.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000191165.1/CP000156.1.region002.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/CP000156.1.region002.gbk" + }, + "GCA_000191165.1.gbk": { + "record_id": "CP000156.1", + "original_id": "CP000156.1", + "target_path": "data/interim/antismash/7.0.0/GCA_000191165.1/GCA_000191165.1.gbk", + "symlink_path": "data/interim/bgcs/Lactobacillus_delbrueckii/7.0.0/GCA_000191165.1/GCA_000191165.1.gbk" + } + } +} \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/data/workflow b/.tests/unit/arts_coretable_combine/data/workflow new file mode 120000 index 00000000..cf154e99 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/data/workflow @@ -0,0 +1 @@ +../../../../workflow \ No newline at end of file diff --git a/.tests/unit/arts_coretable_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv b/.tests/unit/arts_coretable_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv new file mode 100644 index 00000000..5e8f4c20 --- /dev/null +++ b/.tests/unit/arts_coretable_combine/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv @@ -0,0 +1,973 @@ +pkey,#Core_gene,Description,Function,Duplication,BGC_Proximity,Phylogeny,Known_target,[Hits_listed],genome_id +GCA_000056065.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|groS|10 kDa chaperonin|loc|1393993 1394278 -1 # ID=1_1432|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|grpE|Protein GrpE|loc|1119606 1120194 -1 # ID=1_1155|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|625949 626894 1 # ID=1_665|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pgk|Phosphoglycerate kinase|loc|541727 542939 1 # ID=1_568|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplJ|50S ribosomal protein L10|loc|1421770 1422280 -1 # ID=1_1466|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplW|50S ribosomal protein L23|loc|348201 348498 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsH|30S ribosomal protein S8|loc|353067 353466 1 # ID=1_360|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsI|30S ribosomal protein S9|loc|364180 364576 1 # ID=1_378|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|glnA|Glutamine synthetase|loc|1269273 1270611 -1 # ID=1_1301|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pncB|Nicotinate phosphoribosyltransferase|loc|271257 272781 -1 # ID=1_276|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|coaE|Dephospho-CoA kinase|loc|1303283 1303868 -1 # ID=1_1338|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|folB|Dihydroneopterin aldolase|loc|210197 210548 1 # ID=1_214|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|thiN|Thiamine pyrophosphokinase|loc|1208959 1209643 -1 # ID=1_1240|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|212928 214020 1 # ID=1_217|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|folE|GTP cyclohydrolase 1|loc|210544 211618 1 # ID=1_215|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1546588 1548016 -1 # ID=1_1602|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1549638 1550802 -1 # ID=1_1605|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1548016 1548457 -1 # ID=1_1603|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,Yes,No,"[Lactobacillus delbrueckii strain ATCC 11842|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1146640 1147372 -1 # ID=1_1178|Type=CDS|transl_table=11]",GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|mreC|Cell shape-determining protein MreC|loc|623366 624218 1 # ID=1_660|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|uppP|Undecaprenyl-diphosphatase|loc|495535 496363 -1 # ID=1_523|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1311707 1313027 -1 # ID=1_1348|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|630397 631780 1 # ID=1_669|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ftsZ|Cell division protein FtsZ|loc|635219 636578 1 # ID=1_673|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|mscL|Large-conductance mechanosensitive channel|loc|270701 271178 1 # ID=1_275|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|whiA|putative cell division protein WhiA|loc|532796 533729 1 # ID=1_557|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|dprA|DNA processing protein DprA|loc|1079889 1080729 -1 # ID=1_1117|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|metK|S-adenosylmethionine synthase|loc|1354481 1355678 -1 # ID=1_1394|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|ppk|Polyphosphate kinase|loc|439501 441667 1 # ID=1_460|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaG|DNA primase|loc|1054356 1056195 -1 # ID=1_1093|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|dITP/XTP pyrophosphatase|loc|1372244 1372865 -1 # ID=1_1414|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1386901 1387495 -1 # ID=1_1428|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|uvrC|UvrABC system protein C|loc|707983 709786 1 # ID=1_744|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|xseA|Exodeoxyribonuclease 7 large subunit|loc|1224123 1225494 -1 # ID=1_1257|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|scpB|Segregation and condensation protein B|loc|734631 735234 1 # ID=1_771|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaA|Chromosomal replication initiator protein DnaA|loc|322 1687 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|radA|DNA repair protein RadA|loc|1475149 1476526 -1 # ID=1_1529|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ligA|DNA ligase|loc|392242 394258 1 # ID=1_408|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|mutM|Formamidopyrimidine-DNA glycosylase|loc|1303876 1304698 -1 # ID=1_1339|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|mfd|Transcription-repair-coupling factor|loc|311150 314627 1 # ID=1_317|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|polA|DNA polymerase I|loc|1304708 1307369 -1 # ID=1_1340|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|priA|Primosomal protein N|loc|1215594 1217976 -1 # ID=1_1246|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|recO|DNA repair protein RecO|loc|1059461 1060211 -1 # ID=1_1096|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|recR|Recombination protein RecR|loc|1405061 1405661 -1 # ID=1_1447|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|uvrA|UvrABC system protein A|loc|525284 528140 1 # ID=1_550|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|uvrB_2|UvrABC system protein B|loc|523252 525295 1 # ID=1_549|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1385877 1386888 -1 # ID=1_1427|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|recG|ATP-dependent DNA helicase RecG|loc|1195445 1197485 -1 # ID=1_1226|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|dnaN|Beta sliding clamp|loc|1867 2995 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaC|Replicative DNA helicase|loc|13075 14446 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|topA|DNA topoisomerase 1|loc|1077579 1079763 -1 # ID=1_1116|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|gyrB|DNA gyrase subunit B|loc|4578 6540 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|gyrA|DNA gyrase subunit A|loc|6552 9024 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pcrA|ATP-dependent DNA helicase PcrA|loc|389970 392232 1 # ID=1_407|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pdg|Ultraviolet N-glycosylase/AP lyase|loc|866383 867013 1 # ID=1_902|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|yqeN|putative protein YqeN|loc|662612 663602 1 # ID=1_700|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|xseB|Exodeoxyribonuclease 7 small subunit|loc|1223891 1224131 -1 # ID=1_1256|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|recQ|ATP-dependent DNA helicase RecQ|loc|704945 706715 1 # ID=1_742|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|recA|Protein RecA|loc|507699 508695 1 # ID=1_535|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|xerD_1|Tyrosine recombinase XerD|loc|732657 733554 1 # ID=1_768|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ackA|Acetate kinase|loc|579934 581122 1 # ID=1_616|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpiA|Ribose-5-phosphate isomerase A|loc|446570 447263 1 # ID=1_468|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tpiA|Triosephosphate isomerase|loc|542957 543716 1 # ID=1_569|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pta|Phosphate acetyltransferase|loc|547016 548006 1 # ID=1_575|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1383852 1385301 -1 # ID=1_1425|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpA|ATP synthase subunit alpha|loc|600266 601778 1 # ID=1_637|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpD|ATP synthase subunit beta|loc|602770 604210 1 # ID=1_639|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|eno|Enolase|loc|1096011 1097289 1 # ID=1_1135|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pyk|Pyruvate kinase|loc|728461 730231 1 # ID=1_763|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpB|ATP synthase subunit a|loc|598179 598899 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpF|ATP synthase subunit b|loc|599195 599702 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpH_2|ATP synthase subunit delta|loc|599701 600244 1 # ID=1_636|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpG|ATP synthase gamma chain|loc|601788 602751 1 # ID=1_638|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpC|ATP synthase epsilon chain|loc|604221 604662 1 # ID=1_640|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpH_1|ATP synthase subunit c|loc|598917 599142 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain ATCC 11842|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|540614 541631 1 # ID=1_567|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ldh|L-lactate dehydrogenase|loc|99904 100828 -1 # ID=1_104|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|birA|Bifunctional ligase/repressor BirA|loc|798597 799263 1 # ID=1_830|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1649159 1649585 -1 # ID=1_1723|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|msrA|Peptide methionine sulfoxide reductase MsrA|loc|571234 571762 1 # ID=1_603|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|lspA|Lipoprotein signal peptidase|loc|881194 881647 1 # ID=1_916|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|def2|Peptide deformylase 2|loc|653135 653690 -1 # ID=1_691|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tig|Trigger factor|loc|668841 670161 1 # ID=1_706|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|map|Methionine aminopeptidase 1|loc|471238 472066 1 # ID=1_492|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pcp|Pyrrolidone-carboxylate peptidase|loc|993222 993834 -1 # ID=1_1038|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|520272 521106 1 # ID=1_546|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|secG|putative protein-export membrane protein SecG|loc|1560085 1560319 -1 # ID=1_1619|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|secA|Protein translocase subunit SecA|loc|515417 517820 1 # ID=1_542|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|secE|Protein translocase subunit SecE|loc|1429566 1429737 -1 # ID=1_1475|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|secY|Protein translocase subunit SecY|loc|355593 356889 1 # ID=1_366|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|spsB|Signal peptidase IB|loc|1028498 1029065 1 # ID=1_1069|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|groL|60 kDa chaperonin|loc|1392353 1393967 -1 # ID=1_1431|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaK|Chaperone protein DnaK|loc|1117702 1119547 -1 # ID=1_1154|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|prmC_1|Release factor glutamine methyltransferase|loc|595503 596346 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1433794 1434544 -1 # ID=1_1485|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|metG|Methionine--tRNA ligase|loc|290069 292052 1 # ID=1_296|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmI|50S ribosomal protein L35|loc|1294459 1294660 -1 # ID=1_1329|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|infA|Translation initiation factor IF-1|loc|357628 357850 1 # ID=1_368|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmB|50S ribosomal protein L28|loc|1199706 1199892 1 # ID=1_1229|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmC|50S ribosomal protein L29|loc|351145 351343 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|prfA|Peptide chain release factor 1|loc|594425 595511 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|prfB|Peptide chain release factor 2|loc|518026 519025 1 # ID=1_543|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsT|30S ribosomal protein S20|loc|663694 663946 -1 # ID=1_701|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|ywlC|Threonylcarbamoyl-AMP synthase|loc|596345 597341 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplQ|50S ribosomal protein L17|loc|359780 360164 1 # ID=1_372|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplR|50S ribosomal protein L18|loc|354047 354407 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplU|50S ribosomal protein L21|loc|1229445 1229757 -1 # ID=1_1264|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmA|50S ribosomal protein L27|loc|1229130 1229430 -1 # ID=1_1263|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|truA|tRNA pseudouridine synthase A|loc|362830 363619 1 # ID=1_376|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|smpB|SsrA-binding protein|loc|1557165 1557627 -1 # ID=1_1617|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1175461 1176199 -1 # ID=1_1206|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsfS|Ribosomal silencing factor RsfS|loc|1291216 1291564 -1 # ID=1_1324|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmE2|50S ribosomal protein L31 type B|loc|304788 305040 1 # ID=1_310|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tsf|Elongation factor Ts|loc|1148806 1149835 -1 # ID=1_1181|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|397164 398595 1 # ID=1_412|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|395411 395717 1 # ID=1_410|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|548016 548502 1 # ID=1_576|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1209672 1210566 -1 # ID=1_1241|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplI|50S ribosomal protein L9|loc|12596 13052 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsR|30S ribosomal protein S18|loc|10175 10412 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsF|30S ribosomal protein S6|loc|9239 9533 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|infC|Translation initiation factor IF-3|loc|1294680 1295202 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|miaA|tRNA dimethylallyltransferase|loc|1272002 1272929 -1 # ID=1_1304|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|trpS2|Tryptophan--tRNA ligase 2|loc|284780 285806 1 # ID=1_292|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tyrS|Tyrosine--tRNA ligase|loc|219424 220690 1 # ID=1_224|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|dtd|D-aminoacyl-tRNA deacylase|loc|778556 778994 1 # ID=1_808|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|alaS|Alanine--tRNA ligase|loc|1377489 1380123 -1 # ID=1_1421|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ileS|Isoleucine--tRNA ligase|loc|638487 641283 1 # ID=1_677|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|leuS|Leucine--tRNA ligase|loc|1348307 1350722 -1 # ID=1_1389|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|proS|Proline--tRNA ligase|loc|1142843 1144541 -1 # ID=1_1175|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|serS|Serine--tRNA ligase|loc|1580697 1582005 -1 # ID=1_1639|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|thrS|Threonine--tRNA ligase|loc|1298298 1300230 -1 # ID=1_1334|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|valS|Valine--tRNA ligase|loc|616950 619590 1 # ID=1_655|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|truB|tRNA pseudouridine synthase B|loc|1132243 1133140 -1 # ID=1_1167|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|cysS|Cysteine--tRNA ligase|loc|1434966 1436391 -1 # ID=1_1487|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|hisS|Histidine--tRNA ligase|loc|779277 780564 1 # ID=1_809|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pth|Peptidyl-tRNA hydrolase|loc|310576 311134 1 # ID=1_316|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|argS|Arginine--tRNA ligase|loc|699214 700912 1 # ID=1_737|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|aspS|Aspartate--tRNA ligase|loc|780579 782424 1 # ID=1_810|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|gltX|Glutamate--tRNA ligase|loc|1439736 1441239 -1 # ID=1_1491|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1283031 1284081 -1 # ID=1_1315|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1280620 1283032 -1 # ID=1_1314|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|frr|Ribosome-recycling factor|loc|1147374 1147932 -1 # ID=1_1179|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|lysS|Lysine--tRNA ligase|loc|324828 326334 1 # ID=1_327|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|293361 294252 1 # ID=1_299|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplL|50S ribosomal protein L7/L12|loc|1421352 1421718 -1 # ID=1_1465|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsO|30S ribosomal protein S15|loc|664149 664419 1 # ID=1_702|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsL|30S ribosomal protein S12|loc|343208 343616 1 # ID=1_343|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsC|30S ribosomal protein S3|loc|350041 350713 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsB|30S ribosomal protein S2|loc|1149897 1150659 -1 # ID=1_1182|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsD|30S ribosomal protein S4|loc|610876 611488 -1 # ID=1_650|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsE|30S ribosomal protein S5|loc|354423 354936 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplS|50S ribosomal protein L19|loc|1172222 1172570 -1 # ID=1_1201|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsG|30S ribosomal protein S7|loc|343631 344102 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmH|50S ribosomal protein L34|loc|1864704 1864845 -1 # ID=1_1942|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmF|50S ribosomal protein L32|loc|715058 715250 1 # ID=1_750|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplT|50S ribosomal protein L20|loc|1294058 1294415 -1 # ID=1_1328|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplV|50S ribosomal protein L22|loc|349674 350028 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsJ|30S ribosomal protein S10|loc|346606 346915 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsS|30S ribosomal protein S19|loc|349377 349653 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplM|50S ribosomal protein L13|loc|363724 364168 1 # ID=1_377|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplN|50S ribosomal protein L14|loc|351658 352027 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplO|50S ribosomal protein L15|loc|355153 355594 1 # ID=1_365|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplX|50S ribosomal protein L24|loc|352043 352283 1 # ID=1_358|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplP|50S ribosomal protein L16|loc|350712 351156 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplA|50S ribosomal protein L1|loc|1427590 1428286 -1 # ID=1_1472|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplB|50S ribosomal protein L2|loc|348523 349360 1 # ID=1_350|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmD|50S ribosomal protein L30|loc|354947 355133 1 # ID=1_364|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplK|50S ribosomal protein L11|loc|1428369 1428795 -1 # ID=1_1473|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|obg|GTPase Obg|loc|709923 711177 1 # ID=1_745|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsM|30S ribosomal protein S13|loc|358006 358357 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsK|30S ribosomal protein S11|loc|358385 358775 1 # ID=1_370|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsQ|30S ribosomal protein S17|loc|351361 351628 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplF|50S ribosomal protein L6|loc|353490 354021 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplD|50S ribosomal protein L4|loc|347584 348202 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1234964 1236014 -1 # ID=1_1271|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1242998 1244123 -1 # ID=1_1278|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1244112 1244604 -1 # ID=1_1279|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|cmk|Cytidylate kinase|loc|737485 738118 1 # ID=1_775|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1240613 1241336 -1 # ID=1_1276|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1240360 1240609 -1 # ID=1_1275|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|purH|Bifunctional purine biosynthesis protein PurH|loc|1232841 1234383 -1 # ID=1_1269|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purF|Amidophosphoribosyltransferase|loc|1236010 1237489 -1 # ID=1_1272|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1237464 1239687 -1 # ID=1_1273|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|180997 183208 1 # ID=1_187|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|gmk_1|Guanylate kinase|loc|1218261 1218876 -1 # ID=1_1248|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|thyA|Thymidylate synthase|loc|678300 679257 1 # ID=1_717|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|nusA|Transcription termination/antitermination protein NusA|loc|1136667 1137888 -1 # ID=1_1172|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|sigA_2|RNA polymerase sigma factor SigA|loc|1053266 1054385 -1 # ID=1_1092|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rbfA|Ribosome-binding factor A|loc|1133190 1133553 -1 # ID=1_1168|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rnpA|Ribonuclease P protein component|loc|1864290 1864656 -1 # ID=1_1941|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1218038 1218260 -1 # ID=1_1247|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|nusG|Transcription termination/antitermination protein NusG|loc|1428920 1429475 -1 # ID=1_1474|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|nusB|Transcription antitermination protein NusB|loc|1226390 1226789 -1 # ID=1_1259|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|rpoB|DNA-directed RNA polymerase subunit beta|loc|334509 338184 1 # ID=1_338|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpoA|DNA-directed RNA polymerase subunit alpha|loc|358818 359757 1 # ID=1_371|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rnc|Ribonuclease 3|loc|1185313 1186009 -1 # ID=1_1217|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rimM|Ribosome maturation factor RimM|loc|1176198 1176702 -1 # ID=1_1207|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpoC|DNA-directed RNA polymerase subunit beta|loc|338199 341865 1 # ID=1_339|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaJ|Chaperone protein DnaJ|loc|1116483 1117620 -1 # ID=1_1153|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplC|50S ribosomal protein L3|loc|346940 347570 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1338272 1339139 -1 # ID=1_1377|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ychF|Ribosome-binding ATPase YchF|loc|1718716 1719817 -1 # ID=1_1791|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|yrrK|Putative pre-16S rRNA nuclease|loc|1376738 1377167 -1 # ID=1_1419|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|yigZ|IMPACT family member YigZ|loc|511956 512616 -1 # ID=1_538|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|369355 369847 1 # ID=1_386|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|GTP cyclohydrolase 1 type 2|loc|1030993 1031791 -1 # ID=1_1072|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|recD2|ATP-dependent RecD-like DNA helicase|loc|647109 649500 1 # ID=1_687|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|Nucleoid-associated protein|loc|1405662 1405992 -1 # ID=1_1448|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|hflX|GTPase HflX|loc|1681367 1682648 1 # ID=1_1755|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|lepA|Elongation factor 4|loc|1114523 1116362 -1 # ID=1_1152|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|487286 489014 1 # ID=1_512|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pyrG|CTP synthase|loc|301678 303298 1 # ID=1_308|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purD|Phosphoribosylamine--glycine ligase|loc|1231560 1232826 -1 # ID=1_1268|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|upp|Uracil phosphoribosyltransferase|loc|597440 598070 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|carB_9|Carbamoyl-phosphate synthase large chain|loc|1768786 1770661 -1 # ID=1_1842|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|putative RNA methyltransferase|loc|400342 401698 1 # ID=1_415|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|475828 477211 -1 # ID=1_497|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|fusA|Elongation factor G|loc|344135 346220 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tuf|Elongation factor Tu|loc|667467 668658 1 # ID=1_705|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|infB|Translation initiation factor IF-2|loc|1133565 1136043 -1 # ID=1_1169|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1213323 1214640 -1 # ID=1_1244|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|der|GTPase Der|loc|739487 740795 1 # ID=1_777|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1398961 1399684 -1 # ID=1_1437|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|670312 671566 1 # ID=1_707|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ffh|Signal recognition particle protein|loc|1177130 1178561 -1 # ID=1_1209|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|506930 507494 1 # ID=1_534|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00218,TIGR00218,"manA: mannose-6-phosphate isomerase, class I",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|manA|Mannose-6-phosphate isomerase ManA|loc|51009 51978 1 # ID=1_52|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|413882 415694 1 # ID=1_433|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|glmM|Phosphoglucosamine mutase|loc|555798 557151 1 # ID=1_586|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|549234 550128 1 # ID=1_578|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|701616 702816 1 # ID=1_739|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|add|Adenosine deaminase|loc|1262376 1263369 -1 # ID=1_1295|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|thrB_2|Homoserine kinase|loc|1496783 1497647 -1 # ID=1_1553|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpe|Ribulose-phosphate 3-epimerase|loc|445907 446558 1 # ID=1_467|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|303417 304689 1 # ID=1_309|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ybeY|Endoribonuclease YbeY|loc|1061520 1062045 -1 # ID=1_1099|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000182835.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|groS|10 kDa chaperonin|loc|1583082 1583367 -1 # ID=1_1529|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|grpE|Protein GrpE|loc|1297298 1297916 -1 # ID=1_1255|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|671404 672349 1 # ID=1_662|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pgk|Phosphoglycerate kinase|loc|585483 586695 1 # ID=1_565|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplJ|50S ribosomal protein L10|loc|1609088 1609598 -1 # ID=1_1560|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplW|50S ribosomal protein L23|loc|358080 358377 1 # ID=1_340|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsH|30S ribosomal protein S8|loc|362946 363345 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsI|30S ribosomal protein S9|loc|374059 374455 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|glnA|Glutamine synthetase|loc|1448475 1449813 -1 # ID=1_1403|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00674,TIGR00674,dapA: 4-hydroxy-tetrahydrodipicolinate synthase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dapA|4-hydroxy-tetrahydrodipicolinate synthase|loc|1060916 1061846 -1 # ID=1_1030|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|pncB2|Nicotinate phosphoribosyltransferase pncB2|loc|287744 289178 -1 # ID=1_276|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00114,TIGR00114,"lumazine-synth: 6,7-dimethyl-8-ribityllumazine synthase","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,"[Lactobacillus delbrueckii strain ND02|ribH|6,7-dimethyl-8-ribityllumazine synthase|loc|2022792 2023257 -1 # ID=1_1977|Type=CDS|transl_table=11]",GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|coaE|Dephospho-CoA kinase|loc|1484230 1484815 -1 # ID=1_1439|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00187,TIGR00187,"ribE: riboflavin synthase, alpha subunit","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|ribE|Riboflavin synthase|loc|2024469 2025084 -1 # ID=1_1979|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|folB|Dihydroneopterin aldolase|loc|896216 896567 1 # ID=1_872|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|thiN|Thiamine pyrophosphokinase|loc|1379616 1380300 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|898947 900039 1 # ID=1_875|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|folE|GTP cyclohydrolase 1|loc|896563 897637 1 # ID=1_873|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1748148 1749576 -1 # ID=1_1696|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1751198 1752362 -1 # ID=1_1699|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1749576 1750017 -1 # ID=1_1697|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,Yes,No,"[Lactobacillus delbrueckii strain ND02|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1324144 1324876 -1 # ID=1_1279|Type=CDS|transl_table=11]",GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|mreC|Cell shape-determining protein MreC|loc|668821 669673 1 # ID=1_657|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ND02|uppP|Undecaprenyl-diphosphatase|loc|540752 541580 -1 # ID=1_522|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ND02|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1500409 1501729 -1 # ID=1_1457|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|675855 677238 1 # ID=1_666|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ftsZ|Cell division protein FtsZ|loc|680677 682036 1 # ID=1_670|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|mscL|Large-conductance mechanosensitive channel|loc|287188 287665 1 # ID=1_275|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ND02|whiA|putative cell division protein WhiA|loc|577817 578750 1 # ID=1_557|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dprA|DNA processing protein DprA|loc|1199701 1200541 -1 # ID=1_1154|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|metK|S-adenosylmethionine synthase|loc|1544010 1545207 -1 # ID=1_1493|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02727,TIGR02727,MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1453565 1454126 -1 # ID=1_1409|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|ppk|Polyphosphate kinase|loc|475404 477570 1 # ID=1_459|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaG_1|DNA primase|loc|1171475 1173314 -1 # ID=1_1127|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|dITP/XTP pyrophosphatase|loc|1561512 1562133 -1 # ID=1_1511|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ruvA_2|Holliday junction ATP-dependent DNA helicase RuvA|loc|1576179 1576773 -1 # ID=1_1525|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|uvrC|UvrABC system protein C|loc|753561 755364 1 # ID=1_739|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|xseA|Exodeoxyribonuclease 7 large subunit|loc|1394688 1396059 -1 # ID=1_1345|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|scpB|Segregation and condensation protein B|loc|780370 780973 1 # ID=1_763|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaA|Chromosomal replication initiator protein DnaA|loc|103 1468 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|radA|DNA repair protein RadA|loc|1662882 1664259 -1 # ID=1_1615|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ligA|DNA ligase|loc|412706 414722 1 # ID=1_404|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|mutM|Formamidopyrimidine-DNA glycosylase|loc|1484823 1485645 -1 # ID=1_1440|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|mfd|Transcription-repair-coupling factor|loc|320061 323538 1 # ID=1_308|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|polA|DNA polymerase I|loc|1485655 1488319 -1 # ID=1_1441|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|priA|primosomal protein N|loc|1386246 1388628 -1 # ID=1_1336|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|recO|DNA repair protein RecO|loc|1176581 1177331 -1 # ID=1_1130|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|recR|Recombination protein RecR|loc|1593544 1594144 -1 # ID=1_1543|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|uvrA|UvrABC system protein A|loc|570530 573389 1 # ID=1_549|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|uvrB_2|UvrABC system protein B|loc|568498 570541 1 # ID=1_548|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1575154 1576165 -1 # ID=1_1524|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|recG|ATP-dependent DNA helicase RecG|loc|1371914 1373954 -1 # ID=1_1322|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|dnaN|Beta sliding clamp|loc|1651 2779 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dnaC|Replicative DNA helicase|loc|12861 14232 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|topA|DNA topoisomerase 1|loc|1194596 1196771 -1 # ID=1_1151|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|gyrB|DNA gyrase subunit B|loc|4361 6323 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|gyrA|DNA gyrase subunit A|loc|6335 8807 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pcrA|ATP-dependent DNA helicase PcrA|loc|410434 412696 1 # ID=1_403|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pdg|Ultraviolet N-glycosylase/AP lyase|loc|930731 931361 1 # ID=1_899|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|yqeN|putative protein YqeN|loc|709563 710553 1 # ID=1_698|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|xseB|Exodeoxyribonuclease 7 small subunit|loc|1394456 1394696 -1 # ID=1_1344|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|recQ|ATP-dependent DNA helicase RecQ|loc|750524 752294 1 # ID=1_737|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|recA|Protein RecA|loc|552948 554058 1 # ID=1_534|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|xerD_1|Tyrosine recombinase XerD|loc|778396 779293 1 # ID=1_760|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ackA|Acetate kinase|loc|622546 623734 1 # ID=1_609|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpiA|Ribose-5-phosphate isomerase A|loc|483237 483930 1 # ID=1_467|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tpiA|Triosephosphate isomerase|loc|586713 587472 1 # ID=1_566|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pta|Phosphate acetyltransferase|loc|590784 591774 1 # ID=1_571|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1573120 1574569 -1 # ID=1_1522|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpA|ATP synthase subunit alpha|loc|644446 645958 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpD|ATP synthase subunit beta|loc|646950 648390 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|eno|Enolase|loc|1276357 1277635 1 # ID=1_1239|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pyk|Pyruvate kinase|loc|774470 776240 1 # ID=1_757|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpB|ATP synthase subunit a|loc|642359 643079 1 # ID=1_628|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpF|ATP synthase subunit b|loc|643375 643882 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|atpH_2|ATP synthase subunit delta|loc|643881 644424 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|atpG|ATP synthase gamma chain|loc|645968 646931 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpC|ATP synthase epsilon chain|loc|648401 648842 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|atpH_1|ATP synthase subunit c|loc|643097 643322 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01311,TIGR01311,glycerol_kin: glycerol kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|glpK|Glycerol kinase|loc|2003016 2004525 -1 # ID=1_1960|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain ND02|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|584371 585388 1 # ID=1_564|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ldh|L-lactate dehydrogenase|loc|90754 91678 -1 # ID=1_91|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|birA|Bifunctional ligase/repressor BirA|loc|851889 852555 1 # ID=1_824|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1867545 1867971 -1 # ID=1_1823|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|msrA|Peptide methionine sulfoxide reductase MsrA|loc|613861 614389 1 # ID=1_597|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|lspA|Lipoprotein signal peptidase|loc|945698 946151 1 # ID=1_912|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|def2|Peptide deformylase 2|loc|700081 700636 -1 # ID=1_689|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tig|Trigger factor|loc|715786 717112 1 # ID=1_704|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|map|Methionine aminopeptidase 1|loc|507564 508392 1 # ID=1_488|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pcp|Pyrrolidone-carboxylate peptidase|loc|1088522 1089134 -1 # ID=1_1058|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|565518 566352 1 # ID=1_545|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|secG|putative protein-export membrane protein SecG|loc|1762599 1762833 -1 # ID=1_1710|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|secA|Protein translocase subunit SecA|loc|560665 563068 1 # ID=1_541|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|secE|Protein translocase subunit SecE|loc|1614980 1615151 -1 # ID=1_1568|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|secY|Protein translocase subunit SecY|loc|365472 366768 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|spsB_1|Signal peptidase IB|loc|1131399 1131966 1 # ID=1_1093|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|spsB_2|Signal peptidase IB|loc|1132020 1132590 1 # ID=1_1094|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|groL|60 kDa chaperonin|loc|1581446 1583060 -1 # ID=1_1528|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaK|Chaperone protein DnaK|loc|1295394 1297239 -1 # ID=1_1254|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|prmC_1|Release factor glutamine methyltransferase|loc|639683 640526 1 # ID=1_625|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1619218 1619968 -1 # ID=1_1574|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|metG|Methionine--tRNA ligase|loc|298987 300970 1 # ID=1_287|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpmI|50S ribosomal protein L35|loc|1475367 1475568 -1 # ID=1_1430|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|infA|Translation initiation factor IF-1|loc|367507 367729 1 # ID=1_359|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmB|50S ribosomal protein L28|loc|1376175 1376361 1 # ID=1_1325|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmC|50S ribosomal protein L29|loc|361024 361222 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|prfA|Peptide chain release factor 1|loc|638605 639691 1 # ID=1_624|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|prfB|Peptide chain release factor 2|loc|563273 564272 1 # ID=1_542|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsT|30S ribosomal protein S20|loc|710644 710896 -1 # ID=1_699|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|efp_1|Elongation factor P|loc|1397797 1398364 -1 # ID=1_1349|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|efp_2|Elongation factor P|loc|1812662 1813220 -1 # ID=1_1759|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|ywlC|Threonylcarbamoyl-AMP synthase|loc|640525 641521 1 # ID=1_626|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplQ|50S ribosomal protein L17|loc|369659 370043 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplR|50S ribosomal protein L18|loc|363926 364286 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplU|50S ribosomal protein L21|loc|1399999 1400311 -1 # ID=1_1352|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmA|50S ribosomal protein L27|loc|1399684 1399984 -1 # ID=1_1351|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|truA|tRNA pseudouridine synthase A|loc|372709 373498 1 # ID=1_367|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|smpB|SsrA-binding protein|loc|1759730 1760192 -1 # ID=1_1708|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1353264 1354002 -1 # ID=1_1305|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsfS|Ribosomal silencing factor RsfS|loc|1472124 1472472 -1 # ID=1_1425|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmE2|50S ribosomal protein L31 type B|loc|313764 314016 1 # ID=1_301|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tsf|Elongation factor Ts|loc|1326310 1327339 -1 # ID=1_1282|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|417628 419059 1 # ID=1_408|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|gatC_1|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|415875 416181 1 # ID=1_406|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|591784 592270 1 # ID=1_572|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1380329 1381223 -1 # ID=1_1331|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplI|50S ribosomal protein L9|loc|12382 12838 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsR|30S ribosomal protein S18|loc|9961 10198 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsF|30S ribosomal protein S6|loc|9022 9316 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|infC|Translation initiation factor IF-3|loc|1475588 1476110 -1 # ID=1_1431|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|miaA|tRNA dimethylallyltransferase|loc|1451212 1452130 -1 # ID=1_1405|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|trpS2|Tryptophan--tRNA ligase 2|loc|293720 294746 1 # ID=1_283|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tyrS|Tyrosine--tRNA ligase|loc|233286 234552 1 # ID=1_225|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dtd|D-aminoacyl-tRNA deacylase|loc|835155 835593 1 # ID=1_807|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|alaS|Alanine--tRNA ligase|loc|1566757 1569391 -1 # ID=1_1518|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ileS|Isoleucine--tRNA ligase|loc|683912 686708 1 # ID=1_674|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|leuS|Leucine--tRNA ligase|loc|1538896 1541311 -1 # ID=1_1490|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|proS|Proline--tRNA ligase|loc|1320347 1322045 -1 # ID=1_1276|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|serS|Serine--tRNA ligase|loc|1786004 1787312 -1 # ID=1_1732|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|thrS|Threonine--tRNA ligase|loc|1479245 1481177 -1 # ID=1_1435|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|valS|Valine--tRNA ligase|loc|662405 665045 1 # ID=1_652|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|truB|tRNA pseudouridine synthase B|loc|1309817 1310714 -1 # ID=1_1268|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|cysS|Cysteine--tRNA ligase|loc|1620390 1621815 -1 # ID=1_1576|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|hisS|Histidine--tRNA ligase|loc|835877 837164 1 # ID=1_808|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pth|Peptidyl-tRNA hydrolase|loc|319487 320045 1 # ID=1_307|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|argS|Arginine--tRNA ligase|loc|744793 746491 1 # ID=1_732|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|aspS|Aspartate--tRNA ligase|loc|837179 839024 1 # ID=1_809|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|gltX|Glutamate--tRNA ligase|loc|1625941 1627444 -1 # ID=1_1581|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1463878 1464928 -1 # ID=1_1416|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1461467 1463879 -1 # ID=1_1415|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|frr|Ribosome-recycling factor|loc|1324878 1325436 -1 # ID=1_1280|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|lysS|Lysine--tRNA ligase|loc|333671 335195 1 # ID=1_318|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|302279 303170 1 # ID=1_290|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplL|50S ribosomal protein L7/L12|loc|1608670 1609036 -1 # ID=1_1559|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsO|30S ribosomal protein S15|loc|711099 711369 1 # ID=1_700|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsL|30S ribosomal protein S12|loc|351817 352225 1 # ID=1_333|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsC|30S ribosomal protein S3|loc|359920 360592 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsB|30S ribosomal protein S2|loc|1327401 1328163 -1 # ID=1_1283|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsD|30S ribosomal protein S4|loc|656328 656940 -1 # ID=1_647|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsE|30S ribosomal protein S5|loc|364302 364815 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmGA|50S ribosomal protein L33 1|loc|1454191 1454341 -1 # ID=1_1410|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|rpmG3|50S ribosomal protein L33 3|loc|1615157 1615307 -1 # ID=1_1569|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplS|50S ribosomal protein L19|loc|1349223 1349571 -1 # ID=1_1303|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsG|30S ribosomal protein S7|loc|352240 352711 1 # ID=1_334|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmH|50S ribosomal protein L34|loc|2125240 2125381 -1 # ID=1_2071|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmF|50S ribosomal protein L32|loc|760636 760828 1 # ID=1_744|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplT|50S ribosomal protein L20|loc|1474966 1475323 -1 # ID=1_1429|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplV|50S ribosomal protein L22|loc|359553 359907 1 # ID=1_343|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsJ|30S ribosomal protein S10|loc|356485 356794 1 # ID=1_337|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsS|30S ribosomal protein S19|loc|359256 359532 1 # ID=1_342|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplM|50S ribosomal protein L13|loc|373603 374047 1 # ID=1_368|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplN|50S ribosomal protein L14|loc|361537 361906 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplO|50S ribosomal protein L15|loc|365032 365473 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplX|50S ribosomal protein L24|loc|361922 362162 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplP|50S ribosomal protein L16|loc|360591 361035 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplA|50S ribosomal protein L1|loc|1613004 1613700 -1 # ID=1_1565|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplB|50S ribosomal protein L2|loc|358402 359239 1 # ID=1_341|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmD|50S ribosomal protein L30|loc|364826 365012 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplK|50S ribosomal protein L11|loc|1613783 1614209 -1 # ID=1_1566|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|obg|GTPase Obg|loc|755432 756755 1 # ID=1_740|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsM|30S ribosomal protein S13|loc|367885 368236 1 # ID=1_360|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsK|30S ribosomal protein S11|loc|368264 368654 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsQ|30S ribosomal protein S17|loc|361240 361507 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplF|50S ribosomal protein L6|loc|363369 363900 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplD|50S ribosomal protein L4|loc|357463 358081 1 # ID=1_339|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1405660 1406701 -1 # ID=1_1359|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1413672 1414797 -1 # ID=1_1366|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1414786 1415278 -1 # ID=1_1367|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|cmk|Cytidylate kinase|loc|783223 783856 1 # ID=1_767|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1411300 1412023 -1 # ID=1_1364|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1411047 1411296 -1 # ID=1_1363|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|purH|Bifunctional purine biosynthesis protein PurH|loc|1403528 1405070 -1 # ID=1_1357|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purF|Amidophosphoribosyltransferase|loc|1406697 1408176 -1 # ID=1_1360|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1408151 1410374 -1 # ID=1_1361|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|205592 207803 1 # ID=1_203|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|gmk_1|Guanylate kinase|loc|1388913 1389528 -1 # ID=1_1338|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|thyA|Thymidylate synthase|loc|726492 727449 1 # ID=1_715|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|nusA|Transcription termination/antitermination protein NusA|loc|1314241 1315393 -1 # ID=1_1273|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|sigA_2|RNA polymerase sigma factor SigA|loc|1169222 1170344 -1 # ID=1_1125|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|sigA_3|RNA polymerase sigma factor SigA|loc|1170385 1171504 -1 # ID=1_1126|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rbfA|Ribosome-binding factor A|loc|1310764 1311127 -1 # ID=1_1269|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rnpA|Ribonuclease P protein component|loc|2124826 2125192 -1 # ID=1_2070|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1388690 1388912 -1 # ID=1_1337|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|nusG|Transcription termination/antitermination protein NusG|loc|1614334 1614889 -1 # ID=1_1567|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|nusB|Transcription antitermination protein NusB|loc|1396945 1397344 -1 # ID=1_1347|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|rpoB|DNA-directed RNA polymerase subunit beta|loc|343094 346757 1 # ID=1_328|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpoA|DNA-directed RNA polymerase subunit alpha|loc|368697 369636 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rnc|Ribonuclease 3|loc|1361783 1362479 -1 # ID=1_1313|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rimM|Ribosome maturation factor RimM|loc|1354001 1354505 -1 # ID=1_1306|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpoC|DNA-directed RNA polymerase subunit beta|loc|346772 350438 1 # ID=1_329|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaJ|Chaperone protein DnaJ|loc|1294172 1295312 -1 # ID=1_1253|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplC|50S ribosomal protein L3|loc|356819 357449 1 # ID=1_338|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|spo0J|Stage 0 sporulation protein J|loc|1953669 1954560 -1 # ID=1_1909|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|noc|Nucleoid occlusion protein|loc|1955318 1956143 -1 # ID=1_1911|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1528528 1529395 -1 # ID=1_1484|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ychF|Ribosome-binding ATPase YchF|loc|1952236 1953337 -1 # ID=1_1907|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|yrrK|Putative pre-16S rRNA nuclease|loc|1566006 1566435 -1 # ID=1_1516|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|yigZ|IMPACT family member YigZ|loc|557205 557865 -1 # ID=1_537|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|387291 387783 1 # ID=1_382|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|GTP cyclohydrolase 1 type 2|loc|1134520 1135318 -1 # ID=1_1097|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|recD2|ATP-dependent RecD-like DNA helicase|loc|692546 694937 1 # ID=1_684|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|Nucleoid-associated protein|loc|1594145 1594475 -1 # ID=1_1544|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|hflX|GTPase HflX|loc|1905751 1907032 1 # ID=1_1865|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|55670 56504 1 # ID=1_57|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|degV_1|Protein DegV|loc|957226 958108 1 # ID=1_922|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|1202557 1203403 -1 # ID=1_1158|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|1275213 1276050 -1 # ID=1_1238|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|degV_2|Protein DegV|loc|1439475 1440405 1 # ID=1_1394|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|lepA|Elongation factor 4|loc|1292212 1294051 -1 # ID=1_1252|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|523578 525306 1 # ID=1_505|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pyrG|CTP synthase|loc|310653 312273 1 # ID=1_299|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purD|Phosphoribosylamine--glycine ligase|loc|1402247 1403513 -1 # ID=1_1356|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|upp|Uracil phosphoribosyltransferase|loc|641620 642250 1 # ID=1_627|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|carB_3|Carbamoyl-phosphate synthase large chain|loc|1038958 1042159 -1 # ID=1_1005|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|putative RNA methyltransferase|loc|420797 422153 1 # ID=1_411|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|512152 513535 -1 # ID=1_493|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|fusA|Elongation factor G|loc|352744 354829 1 # ID=1_335|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tuf|Elongation factor Tu|loc|714413 715604 1 # ID=1_703|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|infB|Translation initiation factor IF-2|loc|1311139 1313617 -1 # ID=1_1270|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1383980 1385297 -1 # ID=1_1334|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|der|GTPase Der|loc|785226 786534 1 # ID=1_769|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1588060 1588783 -1 # ID=1_1534|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|717263 718517 1 # ID=1_705|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ffh|Signal recognition particle protein|loc|1354932 1356363 -1 # ID=1_1308|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|552178 552742 1 # ID=1_533|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00131,TIGR00131,gal_kin: galactokinase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|galK_2|Galactokinase|loc|1694429 1695596 1 # ID=1_1650|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|445120 446932 1 # ID=1_433|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|glmM|Phosphoglucosamine mutase|loc|599565 600918 1 # ID=1_581|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|593004 593898 1 # ID=1_574|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|747195 748395 1 # ID=1_734|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00036,TIGR00036,dapB: 4-hydroxy-tetrahydrodipicolinate reductase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dapB|4-hydroxy-tetrahydrodipicolinate reductase|loc|1060134 1060914 -1 # ID=1_1029|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|add|Adenosine deaminase|loc|1437726 1438719 -1 # ID=1_1392|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|thrB_2|Homoserine kinase|loc|1702419 1703283 -1 # ID=1_1656|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpe|Ribulose-phosphate 3-epimerase|loc|482574 483225 1 # ID=1_466|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ND02|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|312393 313665 1 # ID=1_300|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ybeY|Endoribonuclease YbeY|loc|1178640 1179165 -1 # ID=1_1133|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000191165.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|groS|10 kDa chaperonin|loc|1449650 1449935 -1 # ID=1_1503|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|grpE|Protein GrpE|loc|1174949 1175567 -1 # ID=1_1230|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|617876 618821 1 # ID=1_664|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pgk|Phosphoglycerate kinase|loc|533657 534869 1 # ID=1_566|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplJ|50S ribosomal protein L10|loc|1477436 1477946 -1 # ID=1_1539|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplW|50S ribosomal protein L23|loc|339250 339547 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsH|30S ribosomal protein S8|loc|344116 344515 1 # ID=1_360|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsI|30S ribosomal protein S9|loc|355230 355626 1 # ID=1_378|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|glnA|Glutamine synthetase|loc|1323462 1324800 -1 # ID=1_1374|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00674,TIGR00674,dapA: 4-hydroxy-tetrahydrodipicolinate synthase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dapA|4-hydroxy-tetrahydrodipicolinate synthase|loc|959318 960248 -1 # ID=1_1015|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|pncB|Nicotinate phosphoribosyltransferase|loc|262274 263798 -1 # ID=1_276|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00114,TIGR00114,"lumazine-synth: 6,7-dimethyl-8-ribityllumazine synthase","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,"[Lactobacillus delbrueckii strain 2038|ribH|6,7-dimethyl-8-ribityllumazine synthase|loc|1812281 1812746 -1 # ID=1_1902|Type=CDS|transl_table=11]",GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|coaE|Dephospho-CoA kinase|loc|1360164 1360749 -1 # ID=1_1412|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|folB|Dihydroneopterin aldolase|loc|201185 201536 1 # ID=1_214|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|thiN|Thiamine pyrophosphokinase|loc|1264616 1265300 -1 # ID=1_1311|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|203916 205008 1 # ID=1_217|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|folE|GTP cyclohydrolase 1|loc|201532 202606 1 # ID=1_215|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|818024 819452 1 # ID=1_865|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|815238 816402 1 # ID=1_862|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|817583 818024 1 # ID=1_864|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,Yes,No,"[Lactobacillus delbrueckii strain 2038|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1207214 1207946 -1 # ID=1_1256|Type=CDS|transl_table=11]",GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|mreC|Cell shape-determining protein MreC|loc|615294 616020 1 # ID=1_658|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain 2038|uppP|Undecaprenyl-diphosphatase|loc|488653 489481 -1 # ID=1_523|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain 2038|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1368565 1369885 -1 # ID=1_1422|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|622324 623707 1 # ID=1_668|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ftsZ|Cell division protein FtsZ|loc|627146 628505 1 # ID=1_672|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|mscL|Large-conductance mechanosensitive channel|loc|261718 262195 1 # ID=1_275|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain 2038|whiA|putative cell division protein WhiA|loc|525907 526840 1 # ID=1_558|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dprA|DNA processing protein DprA|loc|1135398 1136238 -1 # ID=1_1192|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|metK|S-adenosylmethionine synthase|loc|1411151 1412348 -1 # ID=1_1467|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02727,TIGR02727,MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|1328560 1329133 -1 # ID=1_1381|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|ppk|Polyphosphate kinase|loc|432702 434868 1 # ID=1_463|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaG|DNA primase|loc|1109471 1111310 -1 # ID=1_1167|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|dITP/XTP pyrophosphatase|loc|1428080 1428701 -1 # ID=1_1485|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1442737 1443331 -1 # ID=1_1499|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|uvrC|UvrABC system protein C|loc|699645 701448 1 # ID=1_741|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|xseA|Exodeoxyribonuclease 7 large subunit|loc|1279780 1281151 -1 # ID=1_1328|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|scpB|Segregation and condensation protein B|loc|726362 726965 1 # ID=1_768|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaA|Chromosomal replication initiator protein DnaA|loc|276 1641 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|radA|DNA repair protein RadA|loc|1531500 1532877 -1 # ID=1_1601|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ligA|DNA ligase|loc|384735 386751 1 # ID=1_411|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|mutM|Formamidopyrimidine-DNA glycosylase|loc|1360757 1361579 -1 # ID=1_1413|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|mfd|Transcription-repair-coupling factor|loc|302140 305632 1 # ID=1_319|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|polA|DNA polymerase I|loc|1361589 1364250 -1 # ID=1_1414|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|priA|Primosomal protein N|loc|1271251 1273633 -1 # ID=1_1317|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|recO|DNA repair protein RecO|loc|1114576 1115326 -1 # ID=1_1170|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|recR|Recombination protein RecR|loc|1460731 1461331 -1 # ID=1_1518|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|uvrA|UvrABC system protein A|loc|518396 521252 1 # ID=1_551|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|uvrB_2|UvrABC system protein B|loc|516364 518407 1 # ID=1_550|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1441713 1442724 -1 # ID=1_1498|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|recG|ATP-dependent DNA helicase RecG|loc|1256031 1258071 -1 # ID=1_1302|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|dnaN|Beta sliding clamp|loc|1822 2950 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dnaC|Replicative DNA helicase|loc|13030 14401 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|topA|DNA topoisomerase 1|loc|1131572 1133756 -1 # ID=1_1190|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|gyrB|DNA gyrase subunit B|loc|4533 6495 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|gyrA|DNA gyrase subunit A|loc|6507 8979 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pcrA|ATP-dependent DNA helicase PcrA|loc|382463 384725 1 # ID=1_410|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pdg|Ultraviolet N-glycosylase/AP lyase|loc|881088 881718 1 # ID=1_929|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|yqeN|putative protein YqeN|loc|654522 655512 1 # ID=1_699|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|xseB|Exodeoxyribonuclease 7 small subunit|loc|1279548 1279788 -1 # ID=1_1327|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|recQ|ATP-dependent DNA helicase RecQ|loc|696608 698378 1 # ID=1_739|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|recA|Protein RecA|loc|500813 501923 1 # ID=1_536|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|xerD_1|Tyrosine recombinase XerD|loc|724388 725285 1 # ID=1_765|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ackA|Acetate kinase|loc|571861 573049 1 # ID=1_614|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpiA|Ribose-5-phosphate isomerase A|loc|439964 440657 1 # ID=1_471|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tpiA|Triosephosphate isomerase|loc|534887 535646 1 # ID=1_567|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pta|Phosphate acetyltransferase|loc|538946 539936 1 # ID=1_573|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1439688 1441137 -1 # ID=1_1496|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpA|ATP synthase subunit alpha|loc|592194 593706 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpD|ATP synthase subunit beta|loc|594698 596138 1 # ID=1_637|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|eno|Enolase|loc|1151380 1152658 1 # ID=1_1210|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pyk|Pyruvate kinase|loc|720192 721962 1 # ID=1_760|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpB|ATP synthase subunit a|loc|590107 590827 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpF|ATP synthase subunit b|loc|591123 591630 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpH_2|ATP synthase subunit delta|loc|591629 592172 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpG|ATP synthase gamma chain|loc|593716 594679 1 # ID=1_636|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpC|ATP synthase epsilon chain|loc|596149 596590 1 # ID=1_638|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpH_1|ATP synthase subunit c|loc|590845 591070 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain 2038|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|532544 533561 1 # ID=1_565|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ldh|L-lactate dehydrogenase|loc|90513 91437 -1 # ID=1_100|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|birA|Bifunctional ligase/repressor BirA|loc|783030 783696 1 # ID=1_824|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1673290 1673716 -1 # ID=1_1764|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|msrA|Peptide methionine sulfoxide reductase MsrA|loc|563158 563686 1 # ID=1_601|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|lspA|Lipoprotein signal peptidase|loc|895901 896354 1 # ID=1_943|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|def2|Peptide deformylase 2|loc|645061 645616 -1 # ID=1_690|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tig|Trigger factor|loc|660752 662072 1 # ID=1_706|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|map|Methionine aminopeptidase 1|loc|464369 465197 1 # ID=1_496|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pcp|Pyrrolidone-carboxylate peptidase|loc|1029182 1029794 -1 # ID=1_1094|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|513384 514218 1 # ID=1_547|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|secG|putative protein-export membrane protein SecG|loc|805722 805956 1 # ID=1_848|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|secA|Protein translocase subunit SecA|loc|508529 510932 1 # ID=1_543|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|secE|Protein translocase subunit SecE|loc|1485232 1485403 -1 # ID=1_1548|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|secY|Protein translocase subunit SecY|loc|346642 347938 1 # ID=1_366|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|spsB|Signal peptidase IB|loc|1066949 1067516 1 # ID=1_1127|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|groL|60 kDa chaperonin|loc|1448010 1449624 -1 # ID=1_1502|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaK|Chaperone protein DnaK|loc|1173045 1174890 -1 # ID=1_1229|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|prmC|Release factor glutamine methyltransferase|loc|587431 588274 1 # ID=1_628|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1489480 1490230 -1 # ID=1_1558|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|metG|Methionine--tRNA ligase|loc|281001 282984 1 # ID=1_298|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpmI|50S ribosomal protein L35|loc|1348638 1348839 -1 # ID=1_1401|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|infA|Translation initiation factor IF-1|loc|348677 348899 1 # ID=1_368|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmB|50S ribosomal protein L28|loc|1260292 1260478 1 # ID=1_1305|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmC|50S ribosomal protein L29|loc|342194 342392 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|prfA|Peptide chain release factor 1|loc|586353 587439 1 # ID=1_627|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|prfB|Peptide chain release factor 2|loc|511138 512137 1 # ID=1_544|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsT|30S ribosomal protein S20|loc|655604 655856 -1 # ID=1_700|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|efp_1|Elongation factor P|loc|1282897 1283467 -1 # ID=1_1332|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|efp_2|Elongation factor P|loc|1626467 1627025 -1 # ID=1_1704|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|ywlC|Threonylcarbamoyl-AMP synthase|loc|588273 589269 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplQ|50S ribosomal protein L17|loc|350829 351213 1 # ID=1_372|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplR|50S ribosomal protein L18|loc|345096 345456 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplU|50S ribosomal protein L21|loc|1285104 1285416 -1 # ID=1_1336|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmA|50S ribosomal protein L27|loc|1284789 1285089 -1 # ID=1_1335|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|truA|tRNA pseudouridine synthase A|loc|353880 354669 1 # ID=1_376|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|smpB|SsrA-binding protein|loc|808414 808876 1 # ID=1_850|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1236045 1236783 -1 # ID=1_1284|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsfS|Ribosomal silencing factor RsfS|loc|1345395 1345743 -1 # ID=1_1396|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmE2|50S ribosomal protein L31 type B|loc|295778 296030 1 # ID=1_312|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tsf|Elongation factor Ts|loc|1209380 1210409 -1 # ID=1_1259|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|389657 391088 1 # ID=1_415|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|387904 388210 1 # ID=1_413|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|539946 540432 1 # ID=1_574|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1265329 1266223 -1 # ID=1_1312|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplI|50S ribosomal protein L9|loc|12551 13007 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsR|30S ribosomal protein S18|loc|10130 10367 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsF|30S ribosomal protein S6|loc|9194 9488 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|infC|Translation initiation factor IF-3|loc|1348859 1349381 -1 # ID=1_1402|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|miaA|tRNA dimethylallyltransferase|loc|1326197 1327088 -1 # ID=1_1377|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|trpS2|Tryptophan--tRNA ligase 2|loc|275711 276737 1 # ID=1_294|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tyrS|Tyrosine--tRNA ligase|loc|210600 211866 1 # ID=1_224|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dtd|D-aminoacyl-tRNA deacylase|loc|766186 766624 1 # ID=1_807|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|alaS|Alanine--tRNA ligase|loc|1433325 1435959 -1 # ID=1_1492|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ileS|Isoleucine--tRNA ligase|loc|630413 633209 1 # ID=1_676|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|leuS|Leucine--tRNA ligase|loc|1404966 1407381 -1 # ID=1_1463|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|proS|Proline--tRNA ligase|loc|1203417 1205115 -1 # ID=1_1253|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|serS|Serine--tRNA ligase|loc|1599776 1601084 -1 # ID=1_1673|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|thrS|Threonine--tRNA ligase|loc|1355178 1357110 -1 # ID=1_1408|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|valS|Valine--tRNA ligase|loc|608878 611518 1 # ID=1_653|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|truB|tRNA pseudouridine synthase B|loc|1192817 1193714 -1 # ID=1_1245|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|cysS|Cysteine--tRNA ligase|loc|1490652 1492077 -1 # ID=1_1560|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|hisS|Histidine--tRNA ligase|loc|766907 768194 1 # ID=1_808|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pth|Peptidyl-tRNA hydrolase|loc|301566 302124 1 # ID=1_318|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|argS|Arginine--tRNA ligase|loc|690877 692575 1 # ID=1_734|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|aspS|Aspartate--tRNA ligase|loc|768209 770054 1 # ID=1_809|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|gltX|Glutamate--tRNA ligase|loc|1495421 1496924 -1 # ID=1_1564|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1337227 1338277 -1 # ID=1_1387|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1334816 1337228 -1 # ID=1_1386|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|frr|Ribosome-recycling factor|loc|1207948 1208506 -1 # ID=1_1257|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|lysS|Lysine--tRNA ligase|loc|315865 317371 1 # ID=1_329|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|284293 285184 1 # ID=1_301|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplL|50S ribosomal protein L7/L12|loc|1477018 1477384 -1 # ID=1_1538|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsO|30S ribosomal protein S15|loc|656059 656329 1 # ID=1_701|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsL|30S ribosomal protein S12|loc|334257 334665 1 # ID=1_343|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsC|30S ribosomal protein S3|loc|341090 341762 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsB|30S ribosomal protein S2|loc|1210471 1211233 -1 # ID=1_1260|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsD|30S ribosomal protein S4|loc|602804 603416 -1 # ID=1_648|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsE|30S ribosomal protein S5|loc|345472 345985 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmGA|50S ribosomal protein L33 1|loc|1329187 1329337 -1 # ID=1_1382|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|rpmG3|50S ribosomal protein L33 3|loc|1485409 1485559 -1 # ID=1_1549|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplS|50S ribosomal protein L19|loc|1232805 1233153 -1 # ID=1_1280|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsG|30S ribosomal protein S7|loc|334680 335151 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmH|50S ribosomal protein L34|loc|1872579 1872720 -1 # ID=1_1962|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmF|50S ribosomal protein L32|loc|706720 706912 1 # ID=1_747|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplT|50S ribosomal protein L20|loc|1348237 1348594 -1 # ID=1_1400|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplV|50S ribosomal protein L22|loc|340723 341077 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsJ|30S ribosomal protein S10|loc|337655 337964 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsS|30S ribosomal protein S19|loc|340426 340702 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplM|50S ribosomal protein L13|loc|354774 355218 1 # ID=1_377|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplN|50S ribosomal protein L14|loc|342707 343076 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplO|50S ribosomal protein L15|loc|346202 346643 1 # ID=1_365|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplX|50S ribosomal protein L24|loc|343092 343332 1 # ID=1_358|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplP|50S ribosomal protein L16|loc|341761 342205 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplA|50S ribosomal protein L1|loc|1483256 1483952 -1 # ID=1_1545|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplB|50S ribosomal protein L2|loc|339572 340409 1 # ID=1_350|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmD|50S ribosomal protein L30|loc|345996 346182 1 # ID=1_364|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplK|50S ribosomal protein L11|loc|1484035 1484461 -1 # ID=1_1546|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|obg_1|GTPase Obg|loc|701585 702671 1 # ID=1_742|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsM|30S ribosomal protein S13|loc|349055 349406 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsK|30S ribosomal protein S11|loc|349434 349824 1 # ID=1_370|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsQ|30S ribosomal protein S17|loc|342410 342677 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplF|50S ribosomal protein L6|loc|344539 345070 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplD|50S ribosomal protein L4|loc|338633 339251 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1290758 1291808 -1 # ID=1_1343|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1298792 1299917 -1 # ID=1_1350|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1299906 1300398 -1 # ID=1_1351|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|cmk|Cytidylate kinase|loc|729216 729849 1 # ID=1_772|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1296407 1297130 -1 # ID=1_1348|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1296154 1296403 -1 # ID=1_1347|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|purH|Bifunctional purine biosynthesis protein PurH|loc|1288635 1290177 -1 # ID=1_1341|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purF|Amidophosphoribosyltransferase|loc|1291804 1293283 -1 # ID=1_1344|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1293258 1295481 -1 # ID=1_1345|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|173110 175321 1 # ID=1_184|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|gmk_1|Guanylate kinase|loc|1273918 1274533 -1 # ID=1_1319|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|thyA|Thymidylate synthase|loc|670227 671184 1 # ID=1_717|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|nusA|Transcription termination/antitermination protein NusA|loc|1197241 1198462 -1 # ID=1_1250|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|sigA_2|RNA polymerase sigma factor SigA|loc|1107218 1108340 -1 # ID=1_1165|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|sigA_3|RNA polymerase sigma factor SigA|loc|1108381 1109500 -1 # ID=1_1166|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rbfA|Ribosome-binding factor A|loc|1193764 1194127 -1 # ID=1_1246|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rnpA|Ribonuclease P protein component|loc|1872165 1872531 -1 # ID=1_1961|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1273695 1273917 -1 # ID=1_1318|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|nusG|Transcription termination/antitermination protein NusG|loc|1484586 1485141 -1 # ID=1_1547|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|nusB|Transcription antitermination protein NusB|loc|1282048 1282447 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|rpoB|DNA-directed RNA polymerase subunit beta|loc|325558 329233 1 # ID=1_340|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpoA|DNA-directed RNA polymerase subunit alpha|loc|349867 350806 1 # ID=1_371|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rnc|Ribonuclease 3|loc|1245896 1246592 -1 # ID=1_1293|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rimM|Ribosome maturation factor RimM|loc|1236782 1237286 -1 # ID=1_1285|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpoC|DNA-directed RNA polymerase subunit beta|loc|329248 332914 1 # ID=1_341|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaJ|Chaperone protein DnaJ|loc|1171826 1172963 -1 # ID=1_1228|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplC|50S ribosomal protein L3|loc|337989 338619 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|spo0J|Stage 0 sporulation protein J|loc|1732006 1732897 -1 # ID=1_1824|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|noc|Nucleoid occlusion protein|loc|1733655 1734480 -1 # ID=1_1826|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1394911 1395778 -1 # ID=1_1451|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ychF|Ribosome-binding ATPase YchF|loc|1730573 1731674 -1 # ID=1_1822|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|yrrK|Putative pre-16S rRNA nuclease|loc|1432574 1433003 -1 # ID=1_1490|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|yigZ|IMPACT family member YigZ|loc|505069 505729 -1 # ID=1_539|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|361846 362338 1 # ID=1_388|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|GTP cyclohydrolase 1 type 2|loc|1071102 1071900 -1 # ID=1_1131|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|recD2|ATP-dependent RecD-like DNA helicase|loc|639035 641426 1 # ID=1_686|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|Nucleoid-associated protein|loc|1461332 1461662 -1 # ID=1_1519|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|hflX|GTPase HflX|loc|1694460 1695741 1 # ID=1_1786|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|53050 53884 1 # ID=1_56|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|degV|Protein DegV|loc|905193 906075 1 # ID=1_950|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|1138261 1139107 -1 # ID=1_1196|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|1150236 1151073 -1 # ID=1_1209|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|lepA|Elongation factor 4|loc|1169866 1171705 -1 # ID=1_1227|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|480411 482139 1 # ID=1_513|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pyrG|CTP synthase|loc|292668 294288 1 # ID=1_310|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purD|Phosphoribosylamine--glycine ligase|loc|1287354 1288620 -1 # ID=1_1340|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|upp|Uracil phosphoribosyltransferase|loc|589368 589998 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,Yes,Yes,No,[Lactobacillus delbrueckii strain 2038|carB_8|Carbamoyl-phosphate synthase large chain|loc|1788915 1792104 -1 # ID=1_1883|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|putative RNA methyltransferase|loc|392835 394191 1 # ID=1_418|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|468963 470346 -1 # ID=1_501|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|fusA|Elongation factor G|loc|335184 337269 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tuf|Elongation factor Tu|loc|659378 660569 1 # ID=1_705|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|infB|Translation initiation factor IF-2|loc|1194139 1196617 -1 # ID=1_1247|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1268980 1270297 -1 # ID=1_1315|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|der|GTPase Der|loc|731218 732526 1 # ID=1_774|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1454631 1455354 -1 # ID=1_1508|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|662223 663477 1 # ID=1_707|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ffh|Signal recognition particle protein|loc|1237741 1239145 -1 # ID=1_1287|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|500044 500608 1 # ID=1_535|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00218,TIGR00218,"manA: mannose-6-phosphate isomerase, class I",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|manA|Mannose-6-phosphate isomerase ManA|loc|41678 42647 1 # ID=1_45|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|407091 408903 1 # ID=1_436|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|glmM|Phosphoglucosamine mutase|loc|547727 549080 1 # ID=1_583|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|541164 542058 1 # ID=1_576|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|693279 694479 1 # ID=1_736|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00036,TIGR00036,dapB: 4-hydroxy-tetrahydrodipicolinate reductase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dapB|4-hydroxy-tetrahydrodipicolinate reductase|loc|958537 959317 -1 # ID=1_1014|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|Adenine deaminase|loc|925115 926138 -1 # ID=1_973|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|add|Adenosine deaminase|loc|1318195 1319188 -1 # ID=1_1368|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|thrB_2|Homoserine kinase|loc|1551790 1552654 -1 # ID=1_1627|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpe|Ribulose-phosphate 3-epimerase|loc|439301 439952 1 # ID=1_470|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain 2038|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|294407 295679 1 # ID=1_311|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ybeY|Endoribonuclease YbeY|loc|1116635 1117160 -1 # ID=1_1173|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000014405.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|groS|10 kDa chaperonin|loc|1406812 1407097 -1 # ID=1_1465|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|grpE|Protein GrpE|loc|1136787 1137405 -1 # ID=1_1199|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|620091 621036 1 # ID=1_661|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pgk|Phosphoglycerate kinase|loc|535932 537144 1 # ID=1_562|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplJ|50S ribosomal protein L10|loc|1434540 1435050 -1 # ID=1_1500|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplW|50S ribosomal protein L23|loc|342760 343057 1 # ID=1_350|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsH|30S ribosomal protein S8|loc|347626 348025 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsI|30S ribosomal protein S9|loc|358739 359135 1 # ID=1_379|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glnA|Glutamine synthetase|loc|1282275 1283613 -1 # ID=1_1338|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pncB|Nicotinate phosphoribosyltransferase|loc|267253 268777 -1 # ID=1_278|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|coaE|Dephospho-CoA kinase|loc|1316881 1317466 -1 # ID=1_1374|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|folB|Dihydroneopterin aldolase|loc|201885 202233 1 # ID=1_205|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thiN|Thiamine pyrophosphokinase|loc|1222363 1223047 -1 # ID=1_1277|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|204616 205708 1 # ID=1_208|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|folE|GTP cyclohydrolase 1|loc|202232 203306 1 # ID=1_206|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1565302 1566730 -1 # ID=1_1635|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1568352 1569516 -1 # ID=1_1638|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1566730 1567171 -1 # ID=1_1636|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,No,No,"[Lactobacillus delbrueckii strain ATCC BAA-365|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1165964 1166696 -1 # ID=1_1220|Type=CDS|transl_table=11]",GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mreC|Cell shape-determining protein MreC|loc|617508 618360 1 # ID=1_656|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uppP|Undecaprenyl-diphosphatase|loc|491017 491845 -1 # ID=1_518|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1325319 1326639 -1 # ID=1_1384|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|624539 625922 1 # ID=1_665|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ftsZ|Cell division protein FtsZ|loc|629361 630720 1 # ID=1_669|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mscL|Large-conductance mechanosensitive channel|loc|266697 267174 1 # ID=1_277|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|whiA|putative cell division protein WhiA|loc|528282 529215 1 # ID=1_554|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dprA|DNA processing protein DprA|loc|1097075 1097915 -1 # ID=1_1161|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|metK|S-adenosylmethionine synthase|loc|1368110 1369307 -1 # ID=1_1428|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02727,TIGR02727,MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1287365 1287938 -1 # ID=1_1344|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ppk|Polyphosphate kinase|loc|435131 437297 1 # ID=1_459|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaG|DNA primase|loc|1072673 1074512 -1 # ID=1_1138|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|dITP/XTP pyrophosphatase|loc|1385243 1385864 -1 # ID=1_1447|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1399899 1400493 -1 # ID=1_1461|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uvrC|UvrABC system protein C|loc|702109 703912 1 # ID=1_737|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|xseA|Exodeoxyribonuclease 7 large subunit|loc|1237528 1238899 -1 # ID=1_1294|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|scpB|Segregation and condensation protein B|loc|727099 727702 1 # ID=1_762|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaA|Chromosomal replication initiator protein DnaA|loc|103 1468 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|radA|DNA repair protein RadA|loc|1488373 1489750 -1 # ID=1_1560|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ligA|DNA ligase|loc|386796 388812 1 # ID=1_410|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mutM|Formamidopyrimidine-DNA glycosylase|loc|1317474 1318296 -1 # ID=1_1375|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mfd|Transcription-repair-coupling factor|loc|305677 309154 1 # ID=1_319|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|polA|DNA polymerase I|loc|1318306 1320967 -1 # ID=1_1376|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|priA|Primosomal protein N|loc|1228998 1231380 -1 # ID=1_1283|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recO|DNA repair protein RecO|loc|1077778 1078528 -1 # ID=1_1141|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recR|Recombination protein RecR|loc|1417880 1418480 -1 # ID=1_1480|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uvrA|UvrABC system protein A|loc|520773 523629 1 # ID=1_546|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uvrB_2|UvrABC system protein B|loc|518741 520784 1 # ID=1_545|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1398875 1399886 -1 # ID=1_1460|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recG|ATP-dependent DNA helicase RecG|loc|1214789 1216829 -1 # ID=1_1269|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaN|Beta sliding clamp|loc|1649 2777 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaC|Replicative DNA helicase|loc|12857 14228 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|topA|DNA topoisomerase 1|loc|1094771 1096949 -1 # ID=1_1160|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|gyrB|DNA gyrase subunit B|loc|4360 6322 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|gyrA|DNA gyrase subunit A|loc|6334 8806 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pcrA|ATP-dependent DNA helicase PcrA|loc|384524 386786 1 # ID=1_409|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pdg|Ultraviolet N-glycosylase/AP lyase|loc|852783 853413 1 # ID=1_891|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|yqeN|putative protein YqeN|loc|656738 657728 1 # ID=1_696|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|xseB|Exodeoxyribonuclease 7 small subunit|loc|1237296 1237536 -1 # ID=1_1293|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recQ|ATP-dependent DNA helicase RecQ|loc|699072 700842 1 # ID=1_735|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recA|Protein RecA|loc|503192 504302 1 # ID=1_530|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|xerD_1|Tyrosine recombinase XerD|loc|725125 726022 1 # ID=1_759|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ackA|Acetate kinase|loc|574077 575265 1 # ID=1_610|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpiA|Ribose-5-phosphate isomerase A|loc|442393 443086 1 # ID=1_467|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tpiA|Triosephosphate isomerase|loc|537162 537921 1 # ID=1_563|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pta|Phosphate acetyltransferase|loc|541222 542212 1 # ID=1_568|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1396850 1398299 -1 # ID=1_1458|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpA|ATP synthase subunit alpha|loc|594408 595920 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpD|ATP synthase subunit beta|loc|596912 598352 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|eno|Enolase|loc|1113196 1114474 1 # ID=1_1179|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pyk|Pyruvate kinase|loc|720930 722700 1 # ID=1_754|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpB|ATP synthase subunit a|loc|592321 593041 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpF|ATP synthase subunit b|loc|593337 593844 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpH_2|ATP synthase subunit delta|loc|593843 594386 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpG|ATP synthase gamma chain|loc|595930 596893 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpC|ATP synthase epsilon chain|loc|598363 598804 1 # ID=1_636|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpH_1|ATP synthase subunit c|loc|593059 593284 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01311,TIGR01311,glycerol_kin: glycerol kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glpK|Glycerol kinase|loc|1763684 1765193 -1 # ID=1_1855|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|534819 535836 1 # ID=1_561|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ldh|L-lactate dehydrogenase|loc|95006 95930 -1 # ID=1_99|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|birA|Bifunctional ligase/repressor BirA|loc|786338 787004 1 # ID=1_818|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1664838 1665264 -1 # ID=1_1747|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|msrA_1|Peptide methionine sulfoxide reductase MsrA|loc|565376 565904 1 # ID=1_598|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|msrA_2|Peptide methionine sulfoxide reductase MsrA|loc|901001 901571 -1 # ID=1_942|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|msrA_3|Peptide methionine sulfoxide reductase MsrA|loc|957846 958416 1 # ID=1_1017|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lspA|Lipoprotein signal peptidase|loc|867762 868215 1 # ID=1_906|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|def2|Peptide deformylase 2|loc|647262 647817 -1 # ID=1_687|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tig|Trigger factor|loc|662967 664287 1 # ID=1_702|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|map|Methionine aminopeptidase 1|loc|466755 467583 1 # ID=1_490|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pcp|Pyrrolidone-carboxylate peptidase|loc|1003615 1004227 -1 # ID=1_1066|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|515761 516595 1 # ID=1_542|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secG|putative protein-export membrane protein SecG|loc|1578795 1579029 -1 # ID=1_1652|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secA|Protein translocase subunit SecA|loc|510907 513310 1 # ID=1_538|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secE|Protein translocase subunit SecE|loc|1442356 1442527 -1 # ID=1_1509|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secY|Protein translocase subunit SecY|loc|350152 351448 1 # ID=1_367|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|spsB|Signal peptidase IB|loc|1037661 1038228 1 # ID=1_1099|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|groL|60 kDa chaperonin|loc|1405172 1406786 -1 # ID=1_1464|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaK|Chaperone protein DnaK|loc|1134883 1136728 -1 # ID=1_1198|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|prmC|Release factor glutamine methyltransferase|loc|589645 590488 1 # ID=1_626|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1446493 1447243 -1 # ID=1_1517|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|metG|Methionine--tRNA ligase|loc|284539 286522 1 # ID=1_298|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmI|50S ribosomal protein L35|loc|1309102 1309303 -1 # ID=1_1367|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|infA|Translation initiation factor IF-1|loc|352187 352409 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmB|50S ribosomal protein L28|loc|1219050 1219236 1 # ID=1_1272|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmC|50S ribosomal protein L29|loc|345704 345902 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|prfA|Peptide chain release factor 1|loc|588567 589653 1 # ID=1_625|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|prfB|Peptide chain release factor 2|loc|513516 514515 1 # ID=1_539|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsT|30S ribosomal protein S20|loc|657820 658072 -1 # ID=1_697|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|efp_1|Elongation factor P|loc|1240647 1241214 -1 # ID=1_1298|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|efp_2|Elongation factor P|loc|1624901 1625459 -1 # ID=1_1697|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ywlC|Threonylcarbamoyl-AMP synthase|loc|590487 591483 1 # ID=1_627|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplQ|50S ribosomal protein L17|loc|354339 354723 1 # ID=1_373|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplR|50S ribosomal protein L18|loc|348606 348966 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplU|50S ribosomal protein L21|loc|1242850 1243162 -1 # ID=1_1301|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmA|50S ribosomal protein L27|loc|1242535 1242835 -1 # ID=1_1300|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|truA|tRNA pseudouridine synthase A|loc|357389 358178 1 # ID=1_377|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|smpB|SsrA-binding protein|loc|1575875 1576337 -1 # ID=1_1650|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1194807 1195545 -1 # ID=1_1249|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsfS|Ribosomal silencing factor RsfS|loc|1305859 1306207 -1 # ID=1_1362|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmE2|50S ribosomal protein L31 type B|loc|299315 299567 1 # ID=1_312|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tsf|Elongation factor Ts|loc|1168130 1169159 -1 # ID=1_1223|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|391718 393149 1 # ID=1_414|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|389965 390271 1 # ID=1_412|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|542222 542708 1 # ID=1_569|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1223076 1223970 -1 # ID=1_1278|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplI|50S ribosomal protein L9|loc|12378 12834 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsR|30S ribosomal protein S18|loc|9957 10194 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsF|30S ribosomal protein S6|loc|9021 9315 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|infC|Translation initiation factor IF-3|loc|1309323 1309845 -1 # ID=1_1368|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|miaA|tRNA dimethylallyltransferase|loc|1285003 1285930 -1 # ID=1_1340|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|trpS2|Tryptophan--tRNA ligase 2|loc|279249 280275 1 # ID=1_294|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tyrS|Tyrosine--tRNA ligase|loc|211287 212553 1 # ID=1_216|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dtd|D-aminoacyl-tRNA deacylase|loc|769460 769898 1 # ID=1_801|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|alaS|Alanine--tRNA ligase|loc|1390487 1393121 -1 # ID=1_1454|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ileS|Isoleucine--tRNA ligase|loc|632612 635408 1 # ID=1_673|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|leuS|Leucine--tRNA ligase|loc|1361925 1364340 -1 # ID=1_1423|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|proS|Proline--tRNA ligase|loc|1162167 1163865 -1 # ID=1_1217|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|serS|Serine--tRNA ligase|loc|1598010 1599318 -1 # ID=1_1668|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thrS|Threonine--tRNA ligase|loc|1311897 1313829 -1 # ID=1_1370|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|valS|Valine--tRNA ligase|loc|611092 613732 1 # ID=1_651|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|truB|tRNA pseudouridine synthase B|loc|1151567 1152464 -1 # ID=1_1209|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|cysS|Cysteine--tRNA ligase|loc|1447665 1449090 -1 # ID=1_1519|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|hisS|Histidine--tRNA ligase|loc|770181 771468 1 # ID=1_802|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pth|Peptidyl-tRNA hydrolase|loc|305103 305661 1 # ID=1_318|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|argS|Arginine--tRNA ligase|loc|693342 695040 1 # ID=1_729|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|aspS|Aspartate--tRNA ligase|loc|771483 773328 1 # ID=1_803|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gltX|Glutamate--tRNA ligase|loc|1452453 1453956 -1 # ID=1_1523|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1297693 1298743 -1 # ID=1_1353|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1295282 1297694 -1 # ID=1_1352|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|frr|Ribosome-recycling factor|loc|1166698 1167256 -1 # ID=1_1221|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lysS|Lysine--tRNA ligase|loc|319385 320891 1 # ID=1_329|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|287831 288722 1 # ID=1_301|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplL|50S ribosomal protein L7/L12|loc|1434122 1434488 -1 # ID=1_1499|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsO|30S ribosomal protein S15|loc|658275 658545 1 # ID=1_698|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsL|30S ribosomal protein S12|loc|337767 338175 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsC|30S ribosomal protein S3|loc|344600 345272 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsB|30S ribosomal protein S2|loc|1169221 1169983 -1 # ID=1_1224|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsD|30S ribosomal protein S4|loc|605018 605630 -1 # ID=1_646|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsE|30S ribosomal protein S5|loc|348982 349495 1 # ID=1_364|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmGA|50S ribosomal protein L33 1|loc|1287992 1288142 -1 # ID=1_1345|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|rpmG3|50S ribosomal protein L33 3|loc|1442533 1442683 -1 # ID=1_1510|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplS|50S ribosomal protein L19|loc|1191568 1191916 -1 # ID=1_1243|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsG|30S ribosomal protein S7|loc|338190 338661 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmH|50S ribosomal protein L34|loc|1856438 1856579 -1 # ID=1_1947|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmF|50S ribosomal protein L32|loc|709183 709375 1 # ID=1_742|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplT|50S ribosomal protein L20|loc|1308701 1309058 -1 # ID=1_1366|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplV|50S ribosomal protein L22|loc|344233 344587 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsJ|30S ribosomal protein S10|loc|341165 341474 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsS|30S ribosomal protein S19|loc|343936 344212 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplM|50S ribosomal protein L13|loc|358283 358727 1 # ID=1_378|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplN|50S ribosomal protein L14|loc|346217 346586 1 # ID=1_358|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplO|50S ribosomal protein L15|loc|349712 350153 1 # ID=1_366|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplX|50S ribosomal protein L24|loc|346602 346842 1 # ID=1_359|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplP|50S ribosomal protein L16|loc|345271 345715 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplA|50S ribosomal protein L1|loc|1440380 1441076 -1 # ID=1_1506|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplB|50S ribosomal protein L2|loc|343082 343919 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmD|50S ribosomal protein L30|loc|349506 349692 1 # ID=1_365|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplK|50S ribosomal protein L11|loc|1441159 1441585 -1 # ID=1_1507|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|obg|GTPase Obg|loc|704049 705303 1 # ID=1_738|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsM|30S ribosomal protein S13|loc|352565 352916 1 # ID=1_370|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsK|30S ribosomal protein S11|loc|352944 353334 1 # ID=1_371|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsQ|30S ribosomal protein S17|loc|345920 346187 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplF|50S ribosomal protein L6|loc|348049 348580 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplD|50S ribosomal protein L4|loc|342143 342761 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1248504 1249554 -1 # ID=1_1308|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1256538 1257663 -1 # ID=1_1315|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1257652 1258144 -1 # ID=1_1316|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|cmk|Cytidylate kinase|loc|729952 730585 1 # ID=1_766|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1254153 1254876 -1 # ID=1_1313|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1253900 1254149 -1 # ID=1_1312|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purH|Bifunctional purine biosynthesis protein PurH|loc|1246381 1247923 -1 # ID=1_1306|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purF|Amidophosphoribosyltransferase|loc|1249550 1251029 -1 # ID=1_1309|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1251004 1253227 -1 # ID=1_1310|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|176021 178232 1 # ID=1_181|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gmk_1|Guanylate kinase|loc|1231665 1232280 -1 # ID=1_1285|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thyA|Thymidylate synthase|loc|672440 673397 1 # ID=1_712|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nusA|Transcription termination/antitermination protein NusA|loc|1155991 1157212 -1 # ID=1_1214|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|sigA_2|RNA polymerase sigma factor SigA|loc|1071583 1072702 -1 # ID=1_1137|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rbfA|Ribosome-binding factor A|loc|1152514 1152877 -1 # ID=1_1210|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rnpA|Ribonuclease P protein component|loc|1856024 1856390 -1 # ID=1_1946|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1231442 1231664 -1 # ID=1_1284|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nusG|Transcription termination/antitermination protein NusG|loc|1441710 1442265 -1 # ID=1_1508|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nusB|Transcription antitermination protein NusB|loc|1239795 1240164 -1 # ID=1_1296|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoB|DNA-directed RNA polymerase subunit beta|loc|329068 332743 1 # ID=1_339|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoA|DNA-directed RNA polymerase subunit alpha|loc|353377 354316 1 # ID=1_372|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rnc|Ribonuclease 3|loc|1204657 1205353 -1 # ID=1_1259|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rimM|Ribosome maturation factor RimM|loc|1195544 1196048 -1 # ID=1_1250|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoC|DNA-directed RNA polymerase subunit beta|loc|332759 336425 1 # ID=1_340|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaJ|Chaperone protein DnaJ|loc|1133664 1134801 -1 # ID=1_1197|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplC|50S ribosomal protein L3|loc|341499 342129 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|spo0J|Stage 0 sporulation protein J|loc|1727224 1728115 -1 # ID=1_1813|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|noc|Nucleoid occlusion protein|loc|1728873 1729698 -1 # ID=1_1815|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1351882 1352749 -1 # ID=1_1412|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ychF|Ribosome-binding ATPase YchF|loc|1725791 1726892 -1 # ID=1_1811|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|yrrK|Putative pre-16S rRNA nuclease|loc|1389736 1390165 -1 # ID=1_1452|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|yigZ|IMPACT family member YigZ|loc|507448 508108 -1 # ID=1_533|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|363902 364394 1 # ID=1_387|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|GTP cyclohydrolase 1 type 2|loc|1040156 1040954 -1 # ID=1_1102|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recD2|ATP-dependent RecD-like DNA helicase|loc|641234 643625 1 # ID=1_683|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|Nucleoid-associated protein|loc|1418481 1418811 -1 # ID=1_1481|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|hflX|GTPase HflX|loc|1690374 1691655 1 # ID=1_1776|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|60901 61699 1 # ID=1_62|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|degV|Protein DegV|loc|877054 877936 1 # ID=1_913|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|1099937 1100783 -1 # ID=1_1165|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|1112053 1112890 -1 # ID=1_1178|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lepA|Elongation factor 4|loc|1131704 1133543 -1 # ID=1_1196|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|482775 484503 1 # ID=1_508|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pyrG|CTP synthase|loc|296205 297825 1 # ID=1_310|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purD|Phosphoribosylamine--glycine ligase|loc|1245100 1246366 -1 # ID=1_1305|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|upp|Uracil phosphoribosyltransferase|loc|591582 592212 1 # ID=1_628|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|carB_3|Carbamoyl-phosphate synthase large chain|loc|907582 910264 -1 # ID=1_952|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|carB_6|Carbamoyl-phosphate synthase large chain|loc|949153 951835 1 # ID=1_1007|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|carB_7|Carbamoyl-phosphate synthase large chain|loc|1772322 1775511 -1 # ID=1_1862|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|putative RNA methyltransferase|loc|394896 396252 1 # ID=1_417|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|471345 472728 -1 # ID=1_495|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|fusA|Elongation factor G|loc|338694 340779 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tuf|Elongation factor Tu|loc|661593 662784 1 # ID=1_701|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|infB|Translation initiation factor IF-2|loc|1152889 1155367 -1 # ID=1_1211|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1226727 1228044 -1 # ID=1_1281|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|der|GTPase Der|loc|731954 733262 1 # ID=1_768|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1411780 1412503 -1 # ID=1_1470|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|664438 665692 1 # ID=1_703|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ffh|Signal recognition particle protein|loc|1196476 1197907 -1 # ID=1_1252|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|502423 502987 1 # ID=1_529|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00218,TIGR00218,"manA: mannose-6-phosphate isomerase, class I",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|manA|Mannose-6-phosphate isomerase ManA|loc|49490 50459 1 # ID=1_51|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|408973 410785 1 # ID=1_434|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glmM|Phosphoglucosamine mutase|loc|550001 551354 1 # ID=1_578|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|543440 544334 1 # ID=1_571|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|695744 696944 1 # ID=1_731|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|add|Adenosine deaminase|loc|1275359 1276352 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thrB_2|Homoserine kinase|loc|1508362 1509226 -1 # ID=1_1585|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpe|Ribulose-phosphate 3-epimerase|loc|441730 442381 1 # ID=1_466|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|297944 299216 1 # ID=1_311|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ybeY|Endoribonuclease YbeY|loc|1079837 1080362 -1 # ID=1_1144|Type=CDS|transl_table=11],GCA_000014405.1 diff --git a/.tests/unit/arts_extract/data/data/interim/antismash/7.0.0/GCA_000056065.1/GCA_000056065.1.json b/.tests/unit/arts_extract/data/data/interim/antismash/7.0.0/GCA_000056065.1/GCA_000056065.1.json index baa5a0ab..6719b091 100644 --- a/.tests/unit/arts_extract/data/data/interim/antismash/7.0.0/GCA_000056065.1/GCA_000056065.1.json +++ b/.tests/unit/arts_extract/data/data/interim/antismash/7.0.0/GCA_000056065.1/GCA_000056065.1.json @@ -1 +1 @@ -{"version": "7.0.0", "input_file": "GCA_000056065.1.gbk", "records": [{"id": "CR954253.1", "seq": {"data": "CCGCGGAAAAAATTTTTCCCGGCAATCAACAGGCTTTTTTGCAGGATTATCCACAATCCACACCCTGTCAAAAACTTTTTCAACACCATGTGGATATGTCTGGTCAAAACCAGGCTCTCCTTTTGCCACTATAAGAAAAGTTACCCACAAGACTTATCCACTTTTGACCAATTTTGATAAAATTATCAGCAGAGTTAACAGGCTTCTTTTTATTCCTTGTCCACAGCCTGTGGATTCTGGATTTATTTCTTCCACCTGTGGAAAACCTGGTCAGTAAATGCTAAAATAATTTTGCTAAACGATTTTTTGGAGGGAATGTTTTTTGTTCGATTTAGAAAAATTCTGGGATAGCTTCAACGCTGAAATGCGGTCCGAATTTAACGAAGTATCCTATAATGCCTGGTTCAAAAACACCAAGCCCGTCTCCTTCAACAAGGACACCCATGAATTGGTAATCTCCGTCCAAACCCCCGTGGCAAAGGGGTATTGGGAGCAAAACATCTCCGCTAACCTGATCCAGTCGGCTTATGCCTACGCGGGAATCGATATCTACCCGGTTTTCGTCGTTAAAAACGGCCCGACGCCCAGCAGCGAAAGAATGCTGGAGCCCCAGCCGCAGGCCAAGCCCGAGAAAGCCCGGCCGCAAGGCCGCGAATTCACCAAGGACCTGCGCTTAAACGAGAAGTACACCTTCGAGAACTTCATTCAAGGCGAGGGCAACAAACTGGCTGCCGGAGCCGCTTTGGCGGTTGCCGACAACCCGGGGACCTTCTACAACCCCTTGTTCATCTTCGGGGGCGTGGGGCTTGGTAAAACCCACTTGATGCAGGCGATCGGCCACCAGATGCTGGCGGAAAGACCAGATGCCAAGGTTGTCTACATTCAAAGTGAGACTTTTGTCAACGACTTCATCAATTCCATCAAGAACAAGACCCAGGACAAGTTCCGGGAGAAATACCGGACAGCTGACCTGCTCTTGGTCGACGACATCCAGTTCTTCGCCAAGAAGGAAGGGATTCAGGAAGAATTCTTCCATACTTTTGAGACTCTCTATAATGATCAAAAGCAGATCGTCATGACCAGTGACCGGCTGCCAACGGAAATTCCCGACCTGTCCGAACGGCTGGTCTCGCGTTTTGCCTGGGGACTGCAAGTTGAAATCACCCCGCCAGACCTGGAAACCCGGATCGCCATCCTGCGCAAGAAGGCTGAATCCGAAGGACTGGAGATCGATGAAAGCACCCTGGACTATGTGGCCAGCCAGGTCGATACTAATATCCGGGAGCTGGAAGGGGCCCTGGTCAAAGTCCAGGCCCAGGCCACCATTCAAAAGCAGGACATCAACATTGGCTTAGCCCGGTCGGCTTTAGCCGACCTCAAGCTGGTCCAGAAGAGCAGGGGACTGCAGATTTCCAAGATCCAGGAGGTCGTGGCCAACTACTTCCAGACCTCAGTGCCGGACCTTAAAGGAAAGAAGCGGGTAAGGCAGATCGTCATCCCGCGTCAGATTGCCATGTACCTGTCCCGCGAGCTCACCGATGCCAGCCTGCCAAAAATCGGCCAGGAATTCGGGGGCAAGGACCACACGACCGTGATGCATGCCTGCGACAAAATCGCCCGGCAGATCAAAACGGACACTGAAATCAAGTCCGCTGTTTCCGACCTGCGGCAGATGCTGGAAAGATAGGTCCGTTGATAACTTGAGGACAAGTCCGTGATTTATCCACATTTTTTCAACTGGCAAAAGTCCGGATTACCGGGCTTCCGGTTAGTTATCAACAGAATTAACAGGACCTACTACTACAACTATCTATATATAAATAAATAATTAAATAAAGAGAGCAGCAAACTAACCAAGGAGGACCAAATGAAATTTACTGTACAGCGCAATCTTTTTATCAATGACTTGAATTCAGTTTTAAAGGCAGTTTCTTCAAGAGCCCAGATTCCGATTTTGAGCGGGATCAAGCTGGAATTGACGGAAGCTGAACTGATCATGACTGGCAGCAATGCCGATATTTCCATTGAACTGAGCCAACCGGTTTCTGATGACTTACGGGTTGAATCAACTGGCTCCATTGTCGTGACCGCCCACTTGTTCAGCGAAATCGTCCGCAAATTGCCAGGCAGGGAATTCACTTTTGAAGTCAAGGAAGGCAACCAGATCCAGATCACCTCTGACAAGGCGGACTACGTAATCAACGGCTTGGACGCCAGTGCCTACCCGCGCCTGCCGGAAATTGCCGGAACTTCCTTCAGCCTGCCATCTAAGACCCTGCGGGAACTGATCACCCAGACTGTTTTCGCCGTATCCACCGAAGAAAGCCGGCCAACTCTGACCGGGGTCAACTTCAGCTTCAAGAACGGGCAGATCAAGGCCGTGGCTACTGACTCCCACCGCCTGTCCCAAAGAATCGTCGACATCGCGGCCGGTCCAAGCGAAGACCTGTCCCTGATTATCCCGGGCAAGAACCTGCAGGAACTAGCCCAGATCATCGGCGACGCTGACCAGGACATCAAGGTTTACCTTGGCGACAGCCAGATCCGCTTTGAATTTGAAAACCTGTCCTTCTACACCCGTCTTTTGGAAGGGGTCTACCCGGACGTTGACCGCCTTTTGCCAACTGAGTCAACGACCAGCGTGCAGTTCACCGTTTCTGACTTTATGCAGACTTTGAGCCGGGCCAGCCTCTTGACCCACGCCAACCGGACCAACGCCGTCCAAATGACTTTGAACGTGGCTGACCAAACCGTCCTGGTTTCAGGTAATTCCCCGGAAGTCGGAAAGATTGAGGAAGAAGTCGGCTTCAGCAGCTTAACTGGCCGGGACCTGACCATTTCCTTCAACCCGGACTACATGGCCGCTGCCCTGCGGGCCTCAGTAACTGACTCCGTCATCATCAACTTCACGGAAAGCTTGCGGCCATTCACGGTCGTGCCAAATGACCAGTCAGTTGAATTCGTGCAGCTGATCACCCCAATCCGAACTTTCTAAAACAGACTGCCAATAATTCACAAAAGCCACTCTCCGGAGTGGCTTTTTTTCGGCTATTTTTTCATACAAGCGTTTTTTACGGCTTTAAGCCCAAAATACCTGCTTTATGTACCACGATACTAAATTGGTAAATAAGCGCTCTGAGGCCCTAAAAAAGGCCTTCTTGATTGAGTTTCCCTGGAAAAAAGACTATAATTTATAAGTGGAATATTAGTTTTACATTGGTGAAGGTGAAGACTATCGAAACTTTTGCGATTAATGGTGAATTCATCACCCTCGGACAATTTTTGAAAGATGAATGTATCGTTTCCTCGGGCGGGCAGGCCAAATGGTACCTCAAGGACAGTCCAGTTCTGGTCAATGGGGACAAGGAAGACCGCCGGGGCAGGAAGCTCTATCCTGGTGACCGTTTGACCGTTGCCGGCAAGGAATATGAGCTGGTTCAGGGACTTTAATGTACCTGAGCCGGTTTAAGCAGAGCGGTTTCCGCAACCTGGCTCCCCTTAACCTGGAATTTGACCCGCACGTGAACGTTTTTCTGGGTGAAAATGCCCAGGGCAAGACCAACCTGCTGGAAGCGATCTACTTTCTGGCCATTAGCCGGTCCCACCGGACCAGCAATGACCGGGAGATGATTGCCTTCGGCCAGGACTTTGCCAGCCTGGCTGGCCGGGTGCACAAGCGCCAGCTGGACCTTGACCTGCGCATCGTCATCAGCAAGAAGGGCAAGAGCGCCTGGGTCAACCGGGTAGAGCAGGCCCGGCTGTCCAAGTATGTGGGCCACCTTAACGCCATCCTCTTTTCTCCGGAAGATATGGAATTGGTGAAGGGGGCCCCTTCTTTGCGCCGGCGCTTCATGGACCTGGAATTCGGCCAGATCAATCCGGAATATCTCTATTTCGCCAGCCAGTACCGGCAGCTGCTCCAGCAGAGAAACAACTATCTCAAGCAGCTGGCCCGCCGGCAGGCCAGTGATCAGGTCCTGCTCGGGGTCTTAACTGAGCAGGTGGCCACGGCGGCCAGTGAACTGATCTGGCGGCGCTACCGCTATTTGGCTGACCTCAACCGCTACGCGGCCGAGGCCTACCGGGCCATCAGCGGGCAAAGAGAAGAGCTGCGGGTCCTTTACCGGCCTTCAGCCAAGGAGATTACGGCTGCAGACCAGCCGGCCCAGATCAAGCAGAAGCTGCTGGACCGCTTTGCGGAGATCGCTGACGATGAGCTCAGACGGGCCACGACCCAGCTGGGTCCCCACCGCGACGACCTGGAATTCCAGCTGGACGGCAAGAATGCCCACCTGTTTGCCTCCCAAGGGCAGCAGCGGACCATTGCCCTCAGCTTGAAACTGGCGGAAATCCAGCTGATCAAGCAGCTGACGGGAGAAGAGCCGATCCTGCTTTTGGACGACGTGATGAGCGAACTGGACCAGAACCGCCAGGCAGCACTGCTCAATTTCATCCATGGTCAAACCCAGACTTTTATTACGACAACCGATCTGGATAGTATTTCCCAGGAAATAGTCAAACAGCCGCGAATTTTTTACATCCATTCCGGCCAAATTATAGAAAAAGAGGAAGGATTAAATGGCAGACGAAGATAACAAATTGAAGAAGGCCAAGCAGTTTGAACAAGAAGCTGACAAGTACAATGCCAGCCAGATTCAAGTCCTTGGCGGCCTGGAAGCCGTACGCAAGCGTCCGGGGATGTACATTGGCTCAACCAGCTCCCAGGGCTTGCACCACCTGGTCTGGGAAATCATCGACAACGGGATCGACGAAGCCCTGGCAGGTTTCGCGACCAAGATCGAAGTCACCGTCAACGAAGACAACAGCGTGACTGTCCAAGACGACGGGCGGGGGATCCCGGTCGACATCGAAAAGAAGACCGGCCGGCCAGCCGTTGAAACTGTTTATACGGTTCTGCACGCCGGTGGTAAGTTTGGCGGTGGCGGATACAAGGTTTCCGGCGGTCTGCACGGGGTCGGGGCTTCCGTTGTCAACGCCCTGTCCACCAAGCTGAACGTCACTGTCATGCGGGATGGCAAGAAGTACTACATCGCCTTTGACCACGGCCGGGTCGTTGAAGAGCTGAAGGAAGTCGGCACGGTGCCTTTGACTGAACACGGGACCATCGTCCACTTCTGGCCGGACCCGAACATCTTCACGGAAACCACGGTTTTTGACGACAAGATCTTGAAGAACCGGATCCGGGAACTGGCCTTCTTGAACAAGGGGCTGAAGCTGACCTTCACTGACAAGCGTAATGACACGGCGGAAACCTACGTCTACCACTTCGAAGGCGGGATCAAGGAATACGTCTCCTTCCTCAACCGGGGCCAGGAGGTACTTTTTGACGAGCCAATCTACGTGGAAGGCAAGTACGAGGGCATCGACGTTGAAGTATCTTTGCAGTACACGACCGGCTACAAGACAACCTTGATGACTTTTGCCAACAACATCCACACTTATGAAGGCGGGATGCACGAGGCGGGCTTCAAGACAGCCTTGACCCGGGTGATCAACGACTACGCCCACAAGGCCAAGATCTTGAAGGAAAACGACGACAACCTGTCCGGGGAAGACATCAGGGAAGGGATGACGGCCGTGATTTCCGTCAAGCACCCGAGCCCGCAGTTTGAAGGGCAGACCAAGACCAAGCTGGGCAACTCCGACGCCAGAACTGCCGTTGACCGGGCCTTCTCAGAAACCTTCTCCACTTTCTTGATGGAAAACCCGCAGGTGGCCCGCAAGATCGTGGAAAAGGGGCAACTGGCTGAAAGAGCCAGAGTTGCCGCCAAGCGCGCCCGGGAAGTTACCCGGAAGAAGTCCGGCCTGGAAATCGCCAACCTTCCAGGCAAATTGGCCGACAACACTTCAAATGACCCGAACATCTCAGAACTCTTCATCGTCGAAGGGGACTCCGCCGGCGGCAGCGCCAAGCAAGGGCGGAGCCGGCTGACCCAGGCCATCCTGCCCATCCGGGGGAAGATCCTGAACGTGGAAAAGGCCTCAATGGACCGGATCCTGGCCAACCAGGAAATCCGGACTCTGTTTACGGCCCTGGGGGCCGGCTTTGGGGCAGACTTTGACGTCTCCAAGGCCCGCTATCACAAGCTGATCATCATGACTGACGCCGACGTCGACGGGGCCCACATCCGGACCCTGCTCTTGACCCTCTTCTACCGCTACATGCGGCCGATGATCGACAAGGGCTATGTTTACATCGCCCGTCCGCCTCTGTACCAAGTGCGCCAGGGCAAGCTGATCAAGTACCTGGACACTGATGAAGAACTCCACGACTACCTGGGGTCATTGCAACCAAGCCCGAAGCCAATCGTGCAGCGCTACAAGGGACTGGGGGAAATGGACGCTGAGCAATTGTGGGAGACGACCATGGACCCTGAAAACCGCCGCCTGGACCGGGTGGACCCGGAATACGCCAAGGACGCGGATGAAGTCTTTGAAATGCTGATGGGCAACGAAGTTGGCCCGCGGCGCAAGTTCATCGAAGACAATGCCCAATATGTTGAAAACTTGGATGCTTAATGGGAGGTAGGAATGGATAACGAAAATCAAGGACAAGACCGGCGGATCAGAAATGTCGATCTGACGCAAATGATGCGGAGCTCCTTCTTGGACTACGCCATGTCCGTCATCGTGGCCCGGGCTTTGCCGGACGTCCGCGACGGCTTGAAGCCGGTTCAGCGGCGGATCCTGTACGGGATGAACGAGCTGGGCGTGACTCCAGACAAGCCTTACAAGAAGAGTGCCAGAATCGTCGGGGACGTCATGGGTAAGTACCACCCGCACGGCGACTCCTCCATCTACCTGGCCATGGCCCACATGGCCCAGGACTTTGCCTACCGCTACATGCTGGTAGACGGGCACGGTAACTTCGGTTCCGTCGACGGCGACCGACCGGCCGCCATGCGTTATACTGAAGCCAGAATGAGCAAAATTGCCGTGGAAATGCTCCGCGACATCAACAAGAACACGGTTGACTGGCAGAGAAACTACGACGACACGGAAAATGAACCGACCGTCCTGCCAGCAAGAATTCCTAACCTCCTGGTCAACGGTTCCAGCGGTATCGCGGTCGGGATGACTACCAACATTCCGCCGCACAACCTGTCTGAAGTCATTTCCGGCATTCACATGCTGATGAAGAACCCGGACGTGACGACCAAGGAACTGATGAAGGCCATCCCAGGGCCGGACTTCCCAACCGGCGGGATCTTGATGGGCCGGGGCGGGGTTCTGCACGCTTATGAAAGCGGCAAGGGCAATATCGTCGTCCGGGCCAAGACCGAAATCGAAACGGAAAAGAGCGGGCGGGAAAGAATCATCGTCAGCGAGATTCCTTACCTGGTCAACAAGGCCGAACTGGTCCAGAAGATCGCTGAACTGGCCCGCGACAAGGTGATCGACGGCATTACCGGGGTGCGGGATGAATCCGACCAGAGCGGGATGCGGATCACGATTGACGTGCGCCGGGATGCCAGCGCCAGCGTGGTTTTGAATAACCTCTTCAAGGAAACTCAGATGCAGACCAACTTCGCCATGAACATGGTGGCGATCGTGGACGGGGCACCGAAGTTCCTGACCTTGAAGCAGATGCTGCAGTACTACCTGGCCCACCAGGAAGACGTCATCACCCGCCGGACCAAGTTTGACTTGGAAAAGGCTGAAGCCAGAGCCCACATCCTGGAAGGTTTGCGGGTAGCGCTGGATCATATCGACGAAATCGTCAGCTTGATCCGGAACTCTGAATCAAGCGACATCGCCAAGGCGGGCTTGATCAGCCGCTTTGACCTGGACGACCGCCAGGCCCAGGCTATCCTGGACATGCGTCTGGTCCGCCTAACCGGTTTGGAAAGAGACAAGGTCGAAGGCGAATACCAGGAGCTTTTGGTCAAGATTGCCGACTACAAGGACATTCTGGCCAAGCCTGAAAGAATCGACCAGATTATCTACGACGAGCTGCTGGACATCCAGAAGCGCTTCGGTGACAAGCGCCGGACCCAGATTACGGCCAGCGAAGTGGTCACGATCGAAGACGAAGACTTGATCGAAGAACAAGACGCCCTGTTGACTTTGAGCCACCAGGGCTATGTCAAGAGGATGCTGATCGACGACTTCAAGACCCAAAACCGCGGCGGCAGGGGGATCAAGGGGATGGGCGTCCAAAAGGGCGACTTCATCGAGCACCTGCTCTACTCAAGTACCCACGACTACCTCTTCTTCTACACCAACAAGGGCAAGGTCTACATGAAGAAGGCCTACGAAATCCCAGAATACGGCAGAAGTGCCAAGGGCCTGCCGATCGTCAACCTCCTGCAGCTGGACAAGGGCGAGCACATCCAGACCGTGGTCAACCTGCCGCAAGGGCATGACGACGACTACGCCTTCTTCATCACCAAGCTGGGGACGGTCAAGCGGACCAAGATCCGGGAATTTGAAAATATCCGGACCAACGGTTTGATAGCCTTGACCTTGAAGGATGGCGACGAACTATCCAACGTCCTGACCACTGACGGCCAGCAGAACATCTTGATCGCTACCCACCAGGGCTACGCCGTGACCTTCAATGAAGATGACGTCCGGGCCATGGGGAGAAGCGCTGCCGGCGTCCGGGGGATCAACCTCCGCGAAGGCGACTACGTGGTTGGCTCAGGGATTCTGAAGCCGGAAGACGAAGTTCTGACTATCTCGGAAAAGGGCTACGGCAAGCGGACCGCGGCTAGCGAATACCCGGTCAAGGGCCGGGGCGGCAAGGGGATCCAGACCGCCAAGATCGGCGAAAAGAACGGTCCTCTGGCTGGCGTAGCCGTGGTTGACGGGCAAAGCGACATCATGCTGATCACCACTGACGGGATCATGATCCGCTTCAAGACCAGCGATGTCTCCCAGACTGGCCGGTCAACTATGGGCGTCCGCCTGATCAAGGTGGCTGACGGCAATGCCGTGGCAAGCATGGCAGTCGTGCCGGCTGAAGCTGAAGGCGAAAGCGAGCCGGAAACGGAAGTTTAGCGGCAAAGAAGCAGAAAAAAGTAAGATAAAATAAAAAATTACCAGCATTTTTGGCGTAATAGTTAGTGGGAAGAAAATCCCGGATCACGTGTAGAAAATGTTTGGTAATTTTTTTATTTTGTGCTAAAATTAGACATTGCGAGTAATTAGATCAATTACTCCTTGTTCTTGATTTTAGCAAGAACCATTTAGTCCAAAAGGAGGTGCAATAGTCTATGACAACCAAGTACGAAATTACTTACATCATCAAGCCAGACGTTGACGATGAAGCAAAGAAGGCCATTATTGACAAGTACACTAAGGTGATCGCTGACAATGGTGGTGAAATGGTTGAAGCTAAGGACTGGGGCAAGCGTCGTTTCGCATACGAAATCGAAAAGTATCGTGAAGGTAGTTACTACATCATGACCTTCACTGCTGAAGACGCTGCAGCTGTCAACGAATTTGCCCGTTTGAGCAAGATCGACGACTCAGTTCTGCGTTCAATGACTGTCAAGTTAGACAAGTAATTGTAGTTTCCCGTAATACAGGAATAGGAAGGAAATAAGTATGATCAATAACGTTGTACTTGTTGGCCGTTTAACACGTGATCCTGAATTACGTACTACTGGGAGCGGCATCTCGGTTGCTACGTTCACTTTGGCCGTTGACCGGCAGTTTACCAATGCATCAGGCCAGAGAGAAGCGGACTTCATCAGCTGCGTGATTTGGCGCAAGGCTGCGGAGAACTTCTGCAACTTCACCAGCAAGGGCAGTTTGGTGGGCATCCAGGGCCGGATCCAGACCAGAAACTATGATAACAAGGACGGCCAGCGAGTTTACGTGACAGAAGTCCTCGTGGACAACTTCTCACTGCTCGAATCACGCCGCGAGCGTGAAAGCCGTCAGCAAAACAGCGGATTTGGCGGCCAAGGTCAAAGCCAAAACACCGGCTTCAACACCGGATTTGGCGGCGGCAGCGGCTACGCCAACAACGCCTTCGGCAGCCCGGCCCAGTCAAACGGGCCAGCTAATGCCGGATTCAATGAAGATAACAAGAAAGATGCCGGCGGAGACACGAACACCAACCCGTTCGACAGCTCTGACGATGCAATCAACGTCTCAAATGACGATCTTCCATTTTAAAATTACACAAGAAAGGATCTGAAGACATGCCTCAACAAAGAAAAGGTGGTCGTCGTCGCCGCAAGGTTGACTTAATCGCAGCCAACCACATCGACTACGTAGACTACAAGGATGTTGATCTGTTGAAACATTTTATCTCAGAAAGAGGTAAAATCTTGCCACGTAGTGTCACTGGTACTAGCGCTAAGAACCAACGCAAGGTTGCTAACGCTATCAAGAGAGCCCGGATTATGGGCCTCCTGCCATTCGTAGCTGAAGACTAAGCAGCAGGATCAATAAGCAAATAAAGAGACCGAAAGGAGCTGGACTCCTCCCGGTCTCTTTTTCTTTTCTGTTTTGTGGCGGGCGGCAATAGGTTATAATGGGAGTAGTTTAATCTGCTTTAAAGATGTGGAAGAATTTTATGAAAAACTTTTTACGCAAACTTGAATTGCCAGAATTCGTCCGGGATTCCAGATTAATCATTGCCTTCTCCAGCATCGTCTTCTTGACGGTGCTGAGCACGGTTGTGGCTTTCTTCATCAACCGGATCTTCGGGGTGGCGCTTTTGCTGGTCCTGATCGTGGATGTCTTTTGGGTCGTTTTCGGCGTTTACATTCTCGCGAAAAATACCAACAATTACGCGGCCAACCTCTCCTACCGGATTAAACGGGGGGAGCAGGAGGCCATGATCAAGATGCCGCTGGGGATCCTCCTTTACGACGAGTCCCGGCACATTCAATGGGTCAACCCTTACTTGCAGCTCTATCTGGGCGACAAGGACGCCATCGGCAAGACGATTACGGCGGTCGACCGGAAACTGGGCAAGCTGGTTGAAGAAGCCCTTGAGGCCCAGACTTCGGAAAGCAAGGTGGTCAAGTGGGGGGATCACCAATTTGAAATGGTTGTCCAAGACAGCATCGGGGTCATCTACCTGATCGACATTACCCGTTATGCCGACCTGGCCGACAAGTACCGGGCTGAGCGCCTGGCTATCGGGCAGATTTTTGTCGACAACTACGACGAGCTCAGCGAGCGGATGCACGACCAGGAACTGGCCAGAACCAGCACCTACCTGCAGACGACTTTGAACGACTATGCCGAGAAGTTCAAGGCCTACTTGAAGCGGATTGATGAGGATCACTTTTTGCTTCTGGCCCACTTGCAGGACCTGGAAGCCATGGAAGAAGACAAGTTCTCAGTTTTGGACAAGATCCGCCTGGAAACCAGCCGGAACAACACTCCTTTGACCTTGTCGGTCGGGATTGCCTACGGGGGCGAGTCGCTGAGAAAGATCGCCAACCAGGCCCAGGCCAACTTGGACCTGGCCCTTGGCCGGGGCGGGGACCAGGTGGTCCTCAGGGAACTGGGCCAGGTAGCCCGCTTCTACGGGGGCAAGTCCAACCCAATGGAGAAGCGCACCCGGGTCCGGGCCAGAATGGTTTCCCAGGCCTTGGGCGAGCTCTTCAAGGATGTTGACCAGGTCTTCGTCCAGGGGCACCAGCGGCCCGATATGGACTCTGTCGGTAGCGGGATCGGGGTCGTCAAGATCGCCCGCCTGCACGGGGTCAAGGCCCACTTTTTGCTAGACACGGCCCACTGCAACTATGACGTTGACCGTCTGGTCAAGAAGATGCAAGCGGAAGACCCCCAGCTGGACCTTTTTGTTAGTCCGGATGAGGCCAACGCGGTCGCGACGGACAACTCCCTTTTGGTCATGGTAGACCACTCCAAGTACTCCATCACTTATGACCAGCGCCTCTATGACCGCTTGAGGAACCGGATCGTGGTGATCGACCACCACCGGCGGGGGGAAGAATTCCCGGAGAACCCGATGCTGACTTATGTGGAGCCATATGCTTCCTCAGCCAGCGAACTGGTGACGGAAATGGTCGAATACCAGCAGCCGGCTGAGGACAACCGTGTTTTGACCAACCTGGAAGCCACGGCCATGCTGGCCGGGATCACGGTCGACTCCAAGGAATTCTCCTTGCGCACGGGGACGAGAACCTTTGACGCGGCCAGCTACCTGCGGTCGATCGGGGCGGACTCCTCGGTGGTCAGTGAGCTTTTGAAGGAAGACATTTCCAGCTTCCTGGTCAAGAGCCACCTGGTGGCCAGCCTGCAGATGCTGCGGCCGAAGATGGCGGTCATGCAGGGGCCGGAGGACAAGGTGATCGACCCGATCTTGACGGCCCAGGCAGCCGATATGGCGCTTGATTTGGAAGGGGTGTCGGCATCTTTTGCCATCACCAGAAGAAGCGGGGACAAGGTCGGGATTTCAGCCCGGTCGATGGGCCACATTAACGTCCAGGTGATTATGGAGAAGCTGGGCGGGGGCGGCCACTTGTCCAACGCGGCGACCCAGATCAAGGATATTACGGTCAAAGAAGCCAGTCAGCGCTTGCTGGCGGCAATTGACGAATATCTGGAAGAAAACAGTTAAAGAAGAAAAGGAGCAATGAACGATGAAAGTTATTTTTATGCAAGACGTTAAGGGCAGAGGCAAGCTAGGCCAGGTCAAGGACGTGCCTAACGGCTACGCCCAAAACTACCTGATCAAGCAGGGCCTGGCCAAGGAAGCCAACAAGGGCAACCTAAACACCCTGAAGCGGGTGGAAGCCAATGAAAAGGCTGAATACGAAGCTCAAAAGGCAGCTGCCCAAGAGATCAAGAAGCAGCTGGAAGCTGACGAAACTGTGGTTGAACTGAAGGCCAAGGCCGGCAGCGACTCCCGCCTCTTCGGTTCAATCTCCAGCAAGAAGATCATCGAAGGCCTGGACAAGCAGTTCGGCATCAAGCTGGACAAGCACAAGCTGGAACTGCGGGAACCAATCAAGGTTCTGGGCTACACTAATGTCCCAGTCAAGCTCTTCAAGGGCGTTGAATCAAAGGTCCGGGTCCACGTTACCCAAGAAAATTAAGAAGCTGAAAGAAGCCGTGGTTGATGGATAATCTTGTCACGCAGCAGATCCCGCATGATTCTGCTGCTGAAAAAGCCGTTTTAGGGGCGATTTTCATTGATCCCGAAGTCATCAACGAAGTCAGCTCGGTCTTAGAGCCGGCTGACTTTTATGAACATGCCAACCGCCTGGTCTATAGCGCCCTTTTGGCCCTCTATGACGAGAGCAGGTCAATCGACCTGGTTACCTTGCAAGAGGAGCTCAAGCGGCGGGGACAATTGGAAGAACTGGGCGACATGGCCTACGTGTCAGAGCTTTTGCTGGCAACGCCAACTGCCTTTCACGCCAAGGACTATGCTCGCATCGTCCACCAGAAGGCCCAGCTGCGCAATTTGATCAATGCCAGCCAGAAGATTATCTCCAGTGCCATTCAAGGGTCCGACAGCGTGGATGAGATCCTCAGTAACGCTGAAAATGAGATCATGAACGTCTCCAATGAAAAGGGGAGCGGGGGATTTCATAAGATTGAGGACCTGGTTGCCGGAGCCTTTGAGCAGATTTCAAATAATGCCCAGAACCAGGACGTGGTCACGGGTTTACGGACGGGTTTTGCCTATCTGGACGAGATGACGACGGGGCTGCATGATGACGAATTGATCATTTTGGCGGCCCGGCCGGGTGTCGGTAAGACCTCTTTTGCCATGAACATTGCCAAGAATGTGGGCATTACTGAGAAAAAGCCGGTAGCGGTCTTCTCCCTGGAAATGTCTGGTGAGCAGCTGGTCCAGCGGATGCTGGCGTCAACGGGCTTGATCGACTCCCAGCACCTCAGAACGGGGATCCTGGACAGGGATGAGTGGAACCAGCTGGACATGGCAGCGAGTGTCTTGCGGCAGGCTCCGATCTATATCGATGACACGCCGGGGATCAAGATCAGCGAAATCCGGGCCGAGTGCCTGGCCCTGCAAAAGGAGCTGGGCGACCTGGGCTTGGTCGTGATCGACTACCTGCAGCTGATTGAAGGGCCAAAGACTGAGTCCCGCCAGCAGGAAGTTTCCGCGATCTCCCGCCAGCTCAAGAAGATGGCCAAGGAATTGCACGTGCCGGTAATCTCCCTGTCGCAGTTGTCGCGGTCAGTTGAGCAGCGGCAGGACAAGCGGCCAATTTTGTCAGACTTGCGGGAATCAGGGTCAATCGAACAGGACGCCGACATCGTTGGCTTCCTCTACCGGGACGACTACTACCGGGATGAGGATGCTGACGGCGAGGAACCGAAGGAAGATCCGGAAAACGTTGAAGTTGAAGTTATTATTGAAAAGAACCGGTCAGGCCGGCGGGGATCAGCCAAGCTGATGTTCTCCAAGCCTTACAACCGCTTCTCCAACCTGGACACAGGCCATGAGGCCCAGGGGTAGGGGAAAGACAGCAAAAAAGCGCGAATCGTTGCTGATTCGCGCTTTTTGTTATTCTTGCTTGATGTCGTAGGCATCAAAGAAGATTGGCCCTTTCTTTGAGTCATTGAAATTCGGCCGGTTCTTGTAAGGATCATCGCTCATGTTGAAGGGCAGGGTAAGGCTCTGCCGGGCCGTTTCAATGATGTTGTTAAAAATCTGCCTGAAGATAGCCCGCATTTCCGGATCCATGGCAAAGTATGCCCGGCTAAAGCGGTAGGTGCCGGTAAAACCACTGATCTGTTTGATCTTAGTGATGTCCAGGCTGTCAAAAGCCTCAAAAAGGGCGGACCACATCTGCCCTCTTTTTTCCGCGGGAATCTGGTGGTTGAAGGCGATTAGGGAGTGGCGGATCACCCGGGCTGTAGTCGTGAGGCCCTCTTGCGCCAAAACATAGCTATCCCGGCCAACGCTCCAGGTTCTTGGGTCGTGCTGGCTGAGGACTGGTTGGTTGCACTTGACGACCAAGACGCGCTCAGTATGGTCCAGCATGCAGCCGACAATGGAGCTTTCCGGGATGTAGGTCTTCATCTTTTTGATATTGTCTTGGAAGCCGCTGGTTCCGTAAATTTGGTGCCGGTAGCCAGGTCCGTCAAAGCTGTAGGACTTGATGACCCGGGCTTGAATCTGCGGATCAGCAAAGGCCAAAGCGTAGTGGGCGTAGTTGCCCCCCTTGGAGTGGCCGGTGATATAGATCCGGTCATTTGGGTAAGCTTGGCCGATCTGGTTAAGATACTTAGCGGCCAGCCTATGTCCGGTAATTTCCGGTGTATAATCCATGACCATGTCCTCGCTCCAGCCGATCATGGACTGGTCGGTGCCCCGGTAGGCGACCAGGATGGTCCGATCGTCCAGGCGGAAGGCGCCAGCGTTGAACTGGATGGGTTCAGGCTCAATCTCCATCTTGTTGACCCAGTCCAGAACGGTCAAGTCAGCCAGACGGGGAGACTTGGGCAAGAGCAGGAGTTCAGTTTTGTCCAGATTTTGCCAGCGGTCAGGCTCACGTTGGTAGATGGACTGGCAGACCTCGCCTAGGCTGTGGCCAACCGTACTGCCGTCAAAGGGAAGGTAGGCCAGGGATGCCATTAAGGAAGCATCCAGGCTGTTGAAAGGGCAAGCTTGAAAAGGCAGATCGCCTCGCCAGCGCAGATAGTCTAATGTTGATGCCATGGCAAAAACCTCCTTAGCTAACATTGTACATTATTGCGCAAAAAGCGGGGCGGGGAAGGCTTTTTATAAAAATACGGCACTCTAATGAGTTCCGTAAAATAATTGTTTTATAGGTCTGCAGTTCTGCTTTCGGTAATAACATCAATTGGATCAATTTTTGCTATTTTGGCAAAAGTAGGCAAAACCGCTAAGAAAGTAAGTACATAGCAAAGCAGAACAAGTCTCAACAGTGCCTCAAAGAATATAGGTATACCGATGGCCGTATTCTTTGAGATTAACATGAAGTAGCTTACTACTGTGATGATCGTACCGAGAAGGGCATATAGAGTGCCGATCTTTACAGAGTACGCTGTGATGATCTTAAAGACATCTTTGTTTGAGAAGCCGATGCACTTAAGAATCCCGAATTCATAAGTCCGCTGCTTGTAGATAATATTAAAGATAACGTAGAGAACCAGAAAAACAAGCAGAACAATGAAAAATGTAAACTTGTATGTCGCGCGCTTAGTTTGTTCAAGCTGCTGTTTGACATTATCTACGTTTTGCAACGTAGAGTATGTACGGATATCTTTAGAAATAGAGGACAGCTTTTTAGGTGCGCTTTTCAGTTGATTGATATTTTTCATGGCCAGAACATAAGCACTCGGAGCCCAAGCCTTTTGACTGAAAGACTTAAACACTCGCTTATGAATATCAGACTTGGAAATCACCTTATCTTGAATGTCTTTCATCGCTTTGTAGTCCATGAAAAATACATTCCCCTGCTCAGAACGGTGATAAGGGTAGTTGCTCTTATATACTCCGGAAATCTTAGCTTTAATGGTTACGACTTTATAGACATCGCCATCAATAGATATGCTCTTTGTATTATCGTTAGGAAGCTCAGTTTCAGTTATATACAGCAAGTAGGGAACGTAGGCCTTTAACGTTATGACTTTGTTCATCACGCTTTTTACTGAAAGTCCATTTTGTGATAGAAAATCTTGTGATACGACAAAATTCTTGGAATTTTTTAAAGGCTTACCAAACTCGTAGAAATATTTTTTATTGAGATCTTCAGGATAGATAGGCTGAATGGAAAAATCGTTACTGATTGTCCGCTGCTTGTTTCCTAAATAGATCGAATAGCTTTTTGGGACTGCAGTTCGCACATTTGTTGGGGTGATTCCGTAAGAAGTAAAATTGATAAAGGGATATACTTTTGCGCCTAAGAAGGCATTCTTGATTTTACTGGTAGTCTTGCTGCTAAACGCGCGATATGAATCAAGGTCTTGTGGACTGTTAACTTTCGCAACATCGTTAACCACAAAGATGTTTTTATCCATAACAGCTGAGAATGAACTTTCCTGCTTGTTTACAAGAATCGTTGGCAGTGCTGGCAGATACGAAGAAAGTAACATGAGGAGTACGACAACGACAGATAGAATACAGGAAAGAGAAGATATATGGTTCTTGAGCTTTGAATTATAACTAAAAGATTGTTTAAGCGTTAAGTCGTTTGTCTTTTTTATTGGCTCTTCATCTTTGGTAAAGGAATGGGTATCATCTTTTACCATAAGCAAGGATTGGTTTCTTATTTCTAATATACTGTCCGCGTATTTGGAAGGCAGGCTTTCGTGTGAAACGACAATGACAATTTTGCCAAAATCATGTGCTAGCTTGGACAAAAAGCCGTATATATTGTCAGCATTTGTTTCGTCTAGTGAACTTGTTGGTTCGTCAGCTAAGATTATTTTTGATTGAGAGATAAGAGCCCGGGCGATAGCAACTCTTTGTTCCTCTCCCCCTGACAAATCTTTTGGAAATTTGCCTAGCAAGTCTTCAATCTTGAGCAATCGCGTAATTTCAGATAATTTTTTTATAGCATGATCACTATTGTAGTCAGAAGACGTTGCTAATGGAAGCAAGATGTTGTTCTTAACAGACATATTTTCCACTAGATTATTTTTTTGGAAAACAAAACTAATATATGAGTGTCTAAAATCGGCACGGTCGTTATCAGACAATTCCCATAAATTCTTCTCTCCCCAGAAGACAGAACCGCTAGACGGCTTTTTTAATAATCCAAGGCAATTTATTAAGCTAGTTTTACCGATCCCTGAAGGTCCCTTAATTAAATAAAAATTGCCAGGCAAAAATGAAAAACTAATTTTTGATAAAATAGTTTTTTCGCTATATTTAACGGAAAGTCCCTCAATTTTTAATAGATCCATTGTAATATATCCTTTTATACACAAATTTACTTTCAATATTTATCTTAACAATTTATCGGCAGAGTAATATAATGACATTGTACACTAAGCGAAAGCAAAGTGTATAGTAAGTTATCTCTCTTTATTTGATGATTTTAGGAGTGTATTTTATGAGAAGAAAAGCAAAAGGGCTAATTAGTTTAGCCGCGGCTATGTCAGTCTTTGCAGTCTTTGCAAACTTAAATGAACAGAAAGCTGATGCAGCATTTGTTTCTAGACAAGCGACATGTACGTGGAAGTCAAGAGCAAATATTACGACCGGTTGGTTCACTTTGCACGGAAAAGGATATTCATATCCAAACAGTGGGAAGGTTACTTCAGCTTGGATCACATCCGGTAGTGCAATGTTTAACACGATTGTTAATAAGAAGCACTGGACGTATAAGACCCCTCGCGGGATGCACTTGATGGGGCAGGCTACTGACAAGTGTGCAGTTGGGACGCAATGGGCATACGTTCCTATTTCTAGCGATACTAGAACTGTCGGCGTCCAATTCTAAGGAGTGAGCGTAATGAAAATCGAAACGATTAAGCCGATTTGGCTGACTCTGCTTTTGGTTTTAAGCTTCATCTTGCCGTTGTTGGGCTGGTTGCCACTGGTGTACTTGTACAGCCAACGGCAGGATCCGGCCATGCAGGGGATGGAAAAGACGCTTAAGCTCGCGGCTGGCGTGCAAGTAGGGTGCTTGGTGATTTTGGCGGCAATCTTCTACTTCTTTGCCCCGATTCACGATTAAAAACACATGATTTCAATTTTTTTAGTACAAGATCTTGTTAATGCCTCCTTGTCAGCTAAGTCTTTATAGAGAAATATTTTATCACTCTGTCAGTTTTTTTCACGTGAGGGCTACTTGCTGCCGGGCGAGTAAGTGATGCGCTTGATATCCGGGTATTTGCGCAGGTTCATGATGATCTGGTTTTCATCGATCCGGCTGGCGATTTCGCCATCGCAGCTGAAAAGGACATGGTCGTCAGAGACGCTGATGATCTTGATGCTGAGCTGGTGGACCTCGTTTTTTTCCAGTTCGCTTTGAATGGTTTCCAGGATATGGGGCGTGTTGCTGGCTTCGATCAAGAGGCTGATGCTGACCTTGCGGAGCAGGTTGAGGACCGTTTCTTCCCGCAAAAAGCGCTGCACGAGCAGGAGCAGGACGGCGGCCACGATTCCAACCCAGTAAAGGCCGACCCCAATCGCGATTCCGATGGCTGAAGTGGCCCAGAGTCCCGCGGCGGTCGTCAATCCGGAAATCTGCTCTTTATGGACCATGATGGTCCCGGCACCGATAAAGGAGATTCCCGTGACCGTCAAAGAGGCGATTCGCGATGGATCGTAAGAAACGTTGCTGAAAGTGAGCATGTCGTAGAACCCATACTTGGAGACGATAGAAAACAGGGTGGAGGCAATGGCTACCACGACGTGAGTATGCAGGCCCGCGCTCTTTCTCTGTGTTGCCCGCTCAAAGCCAATCAGGCCGCCGCAAAAGGCGGACAGCAGGATCCGCAGAAGCCAGACCAGTTGAAAGCTGACAGGTATGCCGGTAAATTTTTCCATATTTTTCCTCCTTGCTGATTTTAGTTCTTTCGGCGCAAATAAGCCGAAAAAATAAAAAAATTCCAAAAAGACTTGCAAAAGTCTGCAATTAATGATTAAATTAATAACTGTGTTAAGGCACAAGAGTTGCTGACTTAGCTCAGTTGGCAGAGCACTTCACTAGTAATGAAGGGGTCGGAGGTTCGAATCCTCTAGTCAGCATTATACAGATTCTTGTTTACGATTAAACTTTATTTATCAGCGTTTTGCAAAGATAAATAAAGTTTTTTTGTAATATCGATCTATTGACAGTTTATCAGAATGATAAGTCAGCAGCAGAAAATATGGAATCGTTTAATAAAGGGACTGTTAACTAGCTAGCTAACAGTCCTTTTTTTGACGAAAGGGAAGATTTGATGAAAATTGGCGAAGCACTGCGTAAAAAAGATTGGAACTAGGGTTGACCCAGCAAGAAATGTGCGAAGGAATCCTTAGCCGACCTTTTTATGCAAAGGTTGAAAGTGGAAAAAATCGAATTAACGCGGAAAGCTTGTTCAAAATATTATTCGCGCGGCAAATCGACCTTGTCGAATTTGGCAAGCTGGTTCAAGGAACGTACGATTCGGCAGAAAATAAGGCTGAGAAGCGGTATCAAAGCCAGATGAACGTGGCAGTAAGTACCAAAGATCTTAAATTAATGGAAAAATACTGTCAGGACATAATTGAGTCGTCGAATGATGAAATCTTACAATTGCGTGCTTTGGTAGCTTTGGCTTACTTTAAAGGTGAATTGGGAGGCCTTAGCAAGGAAATTCGCGTGAAAATAAAAGAAAAATTCGATGAGGGGCGCAATTGGACCAAACGGACAGAATTGCTGGGATTGCTTGCGAATACCATGCTTTTATGGGACCAAGATGACTTGAACTATTCTCGAAAGATATCTCAGACTGTTTGAAAATTATTTGGTTATTTGCTATGAACGGAAAGCAGATGGAAAAGAGTATCAAAAAAATCGCGTTGATGAAGTGATCAAATACATCATTAGCGTTACGGCGCCCTTTCAGCTGATGATATATAGGAACTGCGGCATTTTTCTTTAAAATAAGGTATTGTGCCGGCAGCTTGGTGAGGAAAGCCAAAAATTGGAGGACGCCCGGATCAAGCGGCAAGCTTGCCTGTCAGTCGCGGAATTCACGCAAGAAATAGTCGACAATATCGGGATTGTGGGAGTCCCTTTTCTGGCGGGAATACTGTACTTCAGGGGCCAGGTGGCTTTCGGGGCAATCATCGCTGCTGGCTATTTAGCCAATGGCGTTTTCAGTTCCCTGCAAGAGTCTTTTTCGGCTTACATTTCGGCAAAATCAACGACTAAGTTGAACGAAACCATGCTCCAGCATTTGCAAGTTCAAGCGGCCGCGAAGACTGAAGATCCCCAAACGATTATCGGCCGGGGGATAGAAGTGAACTTGGGCGGGCAAGTGATTAAATATCCAGATTTTACGATCAAGGCAGGAGAGAAGGTCTTACTTACCGGGCCAAGTGGCTGCGGGAAAAGCAGCTTGTTTAAACTTCTGCTTGGCCAAATTGAGCCGAGCAAAGGCCAGCTGACATATTTGGATTCTGAAGGGAAGGAAATCCAAAATCCGGCCCGGTCCTTTGAATATCTGCCGCAGGCTGGCTGGATTTTCCCCGGAACAGTCGCTGACAATATCACCATGTATGATGCCAAAAAGCAGACCAAATTGGCGGAGGTACTGAAAAAGGTTGGCTTAGACCGGGACTTCTCTAAGGCAGTTGACCTCGACCGTGAGGTCAGTCCCCAGCAGGCAGACCTGTCTGGCGGGCAGAAGCAGAAGATTTTCCTGGCCCGCGGTCTCCTGCGTCATAAAAAGTTCTCCTTGATGGATGAACCGCTGAGCGCGCTTGACCAGGCCAGCCGGCAGAAAATTTTGCCACTTCTGCTGGGGCGGAAACAGACTTTGATTTTTGTTGGGCATAATTTACCGCTCGAAGAGCGGGAGCGATTTGATCAAGTGATCAATTTGAAAGAAGGGGAAAATTTTGCAAATTAAGGATTTGTTTCGGCTAAACCCCGGCCGCTTTCTGGCATTACTGCTGGCCCGGGCATTGACGGCCCTGCTGACGGCGTGGGCAGCTTTTGCCTTGACCTGGGAGTTCAGCGCGATAAAAGACCGACATTTTTCAGCAATTTCTGCTGTTTGCGGTTCTGCAGCTTTTCTTGCTCTTGCTTGGCAGCCTGCTGGATCAAGTGACCGATTATTTTTGGGAACTGCACCTTGAAAAGTATTTTCACCAGATCCGGCAGGAGGTTCTTGCCCACGCTTATGCTGAAGCGGCTGGGACAAAGGAAAATCTTCAAAGTGAATTGACCAATGACCTGGAAATGCTGAAGGACCAGTATGCTGATTCTATTGGTGGCATCGTGCACTCGGCCGTCCTACTGGCCTTGGTTGCCGGTTCTCTGGCGTCTTTCCGCTGGAGTCTGCTCTTACTGGTTATTGCCGTAAGCGTCTTGCAGATGTACTTGCCACGCGTACTTGATGAGCCACTGCAAAAAGCTACTGACAAAATTTCGGCCAGCAACCGGAAATATCTGCAGACTCTGGCCGACTGGCTCAATGGCATTGATACTTTGCGCCGCTACGCGGTCGGGGAAAAATTCCTAAGCATTATTCACGCTGATGCCCGTGAGTTAGAGTCTGCTTATGTAAAGCAGCAGAAAGCTGACCAGGAACTGGACTACCTTAATCAAGCTATTTATTCTTTGGGGAACATGCTGATTTTCCTGCTGACTGCTTATCTGGTAGCGCGTGGGCAGCTCGAATTCGGCTTGATTGCCTCGGTAAATGACTTCAGCTTGTACCTGTTTGGCTCTCTGATGAATATTGCCAATTACCGGGGACAGCTGGTTGTCAGCCGCGGCTTGCAGGAAAAGATTCTGGACTTGCGGCAGCCACTGACTAAAGCAGAAGAAGGGGGGACAGCGCCAGCTGCCTTCTCTGTAAAGGATCTGCGGCTGGCTTTTGCCAATGGACATGAAATCAAGTACCCAGACATCCAAGTCAAGCCGGGTGAAAAAGTACTTTTGACTGGGGCCAACGGGACTGGCAAGTCGACTCTGTTTAAGCTCCTGGTAGGGGAAGCAGCGGCCAGCGGAGGACATTTTTGACCAAGCTGGAAAAAAGGTGAAGCCTGACCGGACCAAAATCGGCTATCTGCCTCAGCAGGCGGTCTTATTGCCAAGCAGCGTCATGAACAATATCACCATGTTTGATCCAGATCTTGAGTCAAAGGCAAAGGCCAGCGTGGTCGATGCCCAGCTGGCTGAGGCAGTCGATAGTTGGCCTCAAGGCCTGGAAACGCCGGTTGACTTGGCAGGGGAGCCCGCGCGGAAGTTCGTGACAGCCAGCTTCTCTTGGTTGATGAAGGGACCAGCGCGATCGACCAAGCAGCTGGCCGGAAAATCCTGGACAAATTGCTCCAGTCTAAACAGACAGTGGTTTTGATCGCGCACAATCTGACTAAAGAAGAGCGGGACCTGTTTGACCGGGAAGTAGCCTTGCGAGCATAGATCAGCATACATAAAGAAAATGACCTTGTTTAAGCAAGGTCATTTTTTGTTGCATTCAGTTTCAACATGACAGACCGCCGGCGACGGACGGCAACGGAATGGGCAATGCCTTGATCAAAATAGGCGATGCCCTTTTTTTCGTCGTAATTTTGTACTGCATCCAGGTTTATCAAGCTTTGCCGGTCAGCTGGGACCAAGCTAGGATACCTTTTTTCATAATCCTTGAGGGTGCCCAGGCAATCGAAGACCTTGTTTTTGGCGTAAACGCGTAAAGTCTTGTACTTCTTCGGCTGAATGCTGATGTAATAGAGGTCAGCAAGTGGAATCTTCTCAACAAAATTGCGGATCTTGCTGTAGGTAAAATAGCTTGTCTGCTTTGCCGAAGTCATGGTCAGCCGGTAGCGCTTATACGCGGTATCAACTGTTTCATAGATTCTGTGCTGGATTTCTAAGGGAGCCGCGTCTTTGGTGATATAGTCCAATGGCTCAACGTGCCGCTCAATGGTTAGCCGTAAGGCCGTCGCGTCGGCGGTGACAAAGACAATTTGGCTCAAAATGCCGATGTTTTTGATCCGGCTGGCGACTTCAATGCCGTCCAGACTGGTCTTCAGGTCAATATCCAAAAAAGCCAGGTAGTTCAAATCTTGATGCTCCGCGATATAAGCCAATACGCTGTGAGGATCGCCGGTACTCAAGACGACACGGGCATCATAAGCAGCAGGCGTCTCGTTGATCTGAATTCTGTTTTCAATCATTTGCTGAATGATTTCACGTTCAGCAGTATTGTCTTCCAAAATGATGATGGCTAGCATTTTTTCTATCCCTTCTGAATAACTAATTCAAATGAAATTTCGCTGACGCTTTGCTCAATTTCCAAGGACAAATATGGGTCGCTGTTAACGATTTCGTTGACGTTATCAAGCCCCAGTCCATCATGATTCTGCTTGCTCGTTACCCTTGGCTTCAGAACTTGGGCAAGATTGACTGGCTGGGAAATCGTATTTTGCACGATCAGGGAATAGTTATTGCCCGAGTATTTGGTCAGCAGAACGCTGATCTGCCCATCTGCCTGTGACTGGCAGGCTTCAATCGCGTTGTCAAAAAAATGCCAACGCAGCGGATGATGCTTACGATATTTACGGGCAGAGTAGCAATTGGCTTGTTGATCTCAACCTTGGTCTTGATGCCTTGGTCTTGGGCCTGCTGCAGCTTGTCGATGATCAAGTACTTCAGTTCTTTGATCTGCAAATTGGCCAGTTCCAAAGTCATTGAGTTGGCCGCTTCTTGCAGGCGGTTGCTGTCAGCGACCAGTTCTTCAAGGTACTTGCTGGCCCCGGCGACATCGGCGGTCAGCAGGTAGCCGTTTAGCGCCAGGAGGCTGTTTTTGTAATCATGCCGCGCCTTGCGCAGGGAGATATTTGCCTCTTCCAAGCGGGAGGAATACTCCTGGATCTGCTGGATTTCCGCTTTTTGAATCCGTGTGGCCATAATTTCCTGGTTTTTTTGAATCGCCTGGTAGAGATTGAAAAAGAGGACCGTGATCAGCAAAAGCACGATAGTCATCAAGCCCAGTTCCACCAAGGGGGCGATGCTGAAGACCTCGATCATGGACCAAATCACGTGGGTGACCAGCAGGAAGGACCAAACGATCCAAACCAGCAAGTTTAAAAACTGGGGGTTGCCCTTGACGTCAGCGGCAATTTTTTCCAGATTTATGGCAAAGTGCTTTTTCAAAAAGCAAAAGAGCAGGCAGATCAAGATTTCCGGAAGGAAACAAACTAAATTAATGGCCACGTGATCAAGCAGGTGGTGAGTAAAAAAGTAGAAGAGCAGCTGGACGATCCAGCCGAAGAGCTCACCCAGGATAGGGTAAAGGATCAAGACTAAATAGTAGAAAAAGAGCCTGCTTAAGCTTTTTGCCTGCCCGCGCGCGAAAAGCTGGGAGATTAATTGCAAAGCGATGATGGCCGCCAGGACATATTGGTAGCCAAAGAGTACCGGGAGCAACAAGAGAGGATAGAGGAGCAGGTCAGACCGTTTTACACCGGCAAGGGTAAAGGCCAGGAGGACCGAGAAAAGGTAAGGGTTGAAAGCTAGATTGTTGAACAGGCTGTTGATCATTTTTTTATTTCCTTGAAAATACACGTGCTACAGAATAGTTGTTATTTATGTTAAAGCAGTGCCCGGCAAAGTGCAACGCCAGCAACGCTCAAGGCCAGAAATTCAACGTTCAAAAATTATTTTTTCGCGGGAGGCTGGAAAGGCATATAACAGGAAGCATAGATCTTAAGGGAGGAAATAACTATGAATACAGATACTCAAAATTTTCAAACAGAAAATAATCCAGCATTGAAGAACTTACAAGGAACTGCTACAAGTATCCGGGCTAAAAAGCATAGAAGAAAAACGAGAGTAAGCAACAGCAATATCAGCATTCTGTGCAATCACATCAACTTTAACATTTTGGGCTAATTCTTTAAGGGAGGCAATCTCATGGGAAATTACATTTTGATGATTGAAAAAGAACTGAGCCAAGCCTTCAAGGAATTGGAGCAGCCAAGAAGCAAGCATTGGAATTGGCGAAATGCCCATAGCCATATCAGCATCATGTGCCCAAACAGCGACAGCCACTTTTCGATCTTTTCGATTAAAATCCGTTAAGCCATGAAGCTGCTAAAGATCACGCCCCGCTTGCTGTGGGGGATCCTGCTGAGCATGATTGCCAGTTTGCTGAACTTGTATTTGCCTCTGCTGGTTCGCCATTTTATCAACCTTAAGCAGTTCGCCTGGTCCGGCCTTTCTAAAAAAGTCTTGCTGCTGGGCGGGCTGATCCTGATCGGCAACCTCCTGGTCAGCAGCCTAAGCGACTACTTGATCAGCAGTGAAGGCGACCGCCAAGTCCGCCAGCTGCGCCTGCGTCTTCAAAAGCAGGTCCTGCGCCTGCCGCAGAAATATTTTGACCAGCAGATCAGCGGCAATTTGACTAGCCGGATCATCAATGATGTCAACGTGCTGAGAAGCTTTTTGACCGAAACGATCCCGGCGGTGGTTACCGGCTGCTTGACTATCTTGGGCACGATGCTTATCACCTTCTCTTTGGACTGGAAGCTGACTCTGCTCATGCTGCTGGTCTTTCCCATTGACGGACTAGTGACCGTTCCTTTAGGAAAAATCAGCGAAGTGATCGCTGACCAAACCCAAAGCAGCTTGGCTGCTCTGACCGGGGTCACCAGTGAGAGCATCAAGCAGATCAAGACTGTTAAATTGAATAAGACGGAAGAGGACGTTTTTGCCAAAAATGCCAGGGAGATCAACAAGCTCTACCGCCTGTCCCTGAAAGGTGACCGGATCGCGGCGATGATTGGGCCCTTGCAGTCAATGCTGTCTTTTTGTCTGATTATGGCCGTCGTTCTTTATGGGACACTGAGGGTAAAAAGCGGCTCTCTATCGACTGGAACCCTGGGGGCCTTTATGATGTACTTCTTTCAAATTATTGGCCCAATCAACAATGTCGCGCTTTTTTATTCTGACAGAAAGCAAATGCTGGGTGCCACGCGCAAGATAAGCGAAATCATTAACGAAACCGCTGAAGAAACGGCTGGCAAGGAGCAGCTGGCCGTCGCGCCAGGCAGCAGTCTGCTGAGGCTTGACCAGGTCAGTTTTGCCTACCAGGATCTGCCAGTCTTGGAAAAGGTCTATTTGGAAGCCAGGAGTGGTGAAAAAATCGCCCTGGTTGGGGCGACGGGGGCTGGGAAGACCACCTTGGCCAACGTCATCACCCGCTTGTATCCAGTTGCCGCGGGCCGGATCAGTTTAAACGGCCAGGCCAGCACGGATTTTTCCCTAGAGCAATGGCGGGGCTTTTTCAGCGTCGTGCTGCAGGAAAACACGATTATCTCGGGGAGCATTCGTGATAATTTGACCCTGGGCTTAAACAGAAAAGTGACAGACCAGGAGCTTTGGGATGCTTTGGCTCTGGTGCGTTTGGAGGAATACGCGAAAAAATTGCCGAAAGGGTTAGACAGTCTGCTGGGAGAGAGCGGAAAGCAGCTGTCAGGCGGGCAAAGGCAGAGGATGCAGATTGCCCGGGCCTGCCTGCGCGACTTTAAATTTTTGCTTTTAGATGAAGCAACGTCAAATTTAGACGCGGATACTGAAAAAATCATCATGACCGCCTTGGACCGGTTGAAGCGGACCAAGAACTGCGGCCAGATCACGATCGCGCACCGGCTGGCCACGATCGCCAACAGCGACCGGATCTATTTCATCAAGAATAAAACAGTTGTTGCCAGCGGCAGTCATGAGGAACTGCTGGAAAAAGTTCCCGACTATCGCCGCTATGTTCATGAACAGCAGCTCAAGGAAAAGAGGTAGGCATGCATGCTGGAGGAGCAGATAAAGTATTTGGAGGCGGCCAGGAACAGCGGCAGCCTCTTTTACACCCGGCAAAAAGGAGAGGAAGAGCACTTTTTTACGCTTAAAGACCGGCCGGATGCGGCCTGGCTGGAGAAAAAGACTGCTAATTGGCATTACATCCTGTATGAGCCAGATGAATTGCCGGTCCAGGGCTGGAAGATTCACTTGAGTGCCACTGTTAAGCAGGCCCAGGGGATGCTGGATGAGGTGGCGCCGTGCCTGATCAAGCAGAAAGTTTCTTTCAAGTTTCAAAGCAGCCTGGAGCAATACGTTGAATCGAATTCCAAGTACGCTGACCGCGGCGAAAGCGGGAAGTTTATCACGGTTTACCCACGCGGCGAGGAGGAATTTGCTTGCCTGCTGGCAGAATTGCAAAAGCTAACGGAAACTTTTGCTCTGGGACCGTATATTTTGAGCGACCAAAATTGGCAGGAAAGCAACGTTTATTTCCGTTACGGCGGTTTTAAGCCGCTTTATCTGGTCAACGCGGCTGGCGAGCGGGTTCCGGCAATATATGACCCGGCTGGAAACAAAGTAGCAGACCAGCGGCTGCCTTATTACCAGCAAGCCGATTTTGTCAAAGACCTGCCAATTTTTGGTAAAAACACTTTTCCAAAGCAGGAGGCTTTCGCTCCTTTAGAGGAGTATCAAGTCAAAGAAGCCCTGCACTTCAGCAATGCTGGCGGGGTGTATTTGGCCTTGCATGAGGGGAAAAAAGTAGTTTTAAAGGAAGGACGCCAGCAGGCAGGACTGGATGCCAATCTGAAGGACGGCTTTGCCAGAGTTGAAAATGAAGCGGAAATCTTGCGGCAGTTGGCGGACCTGACAGGCGTGGTGAATTATCTGGACGATTTTACCTCATGGCGGCACCACTTTTTGGTAGAGGAATATATTGCTGGACAAAGCCTGGAAGAGCTTCTGGCCACGGAATTTCCCTTTGTCGTTGGGGATCTTGAAAAAAAGGCCCGCTATAAGGCCAAGGCGATCAAAATTTTAGAGCAGCTGAAGGAGCTGCTAAAGCAGATTCACGCCCGCGGTCTCGCCGTTGGCGACCTGTCCTTAAGCAATATCCTGGTTACAGAAGACGGGGATGTCCGTTTGATTGACCTTGAAAACGCGGGCAAGGCTACGGAGAAGTATGTCCCGGGTTTGACGACGGTTGGCTTTGTTTCGCGGGCGGCCAAGACTTACGCGGAAGCTGACGATTTTGCCTTGGCGCGGATTGCCTACTATCTTTTCCTGCCGGTCATTCCAGTCGCTGATTTGGCGCCGGATATAATTGCCAAGCAGGAAAAATGGATTGGGGGCTATTTTGGCCAGGACCTGGTCCAGTTTTTACGGAAAATTGCAGGAAACATGCAGGCGTCCGAACCGATTTTTCTGAAAAAGCCCCTGGCTATCCCCGAGAAAGATCTGAGCCGGCAGACCGTGGACTTTTTTACAGATGGCTTAACTAGGGGGATCTTGCGGCATTCGCGCTTTGACCAGGTAGGATTAGTGCCAAATTTGCATGAGAAAAATGCTGATCCTATGGAACTGCTGAACTTAGCTCGCGGTGCCGCGGGCATTTTATGGGCAGTTGGCCAGAATGCGGACTTGCAGGCCTGGGTAGCAAGAAATCAAGGGAAGATAATCAAGATTGCGGAAGAGTCTGAGGCAACCGGCTTGTTCAACGGTCTGGCTGGACTGGCAAGTGTCTTGGAAAAGCGGGATTTTCCGGCCTTGGCCAAGCAACTTCGGCAAATCCTGCGGCAAAAAGTTGATCTGAATATGGCGGACAATTCGCTGGCCACGGGTTTGACTGGGATTGCCCTGGCCTTGCGGGAAGAGAAGCCGGAAGTAAGCGAAAAAATCGCGGAAGAGCTGGCCGGCAGATGGAAACAGGTGGATTTTGCCAATTTCGCGGATGAGGATGTTGGCCTGCTGACAGGATGGGGCGGCGTGAGCTGGCTTTTTTGGCAATTAGGGCAAAAAGAAGTGGCGGAAGAAATCGTTTCGCGGATTTTGCGGGACCATGCTGAAGAAGCAGAGACTTTGACCATTAGCGATCAATCGCGCGGCTTTGAAAGGCTGCTTCCATATTTGGAAAACGGGAACTTCGGCCTGGCCCTGCTGATGCATAAATTCATGAGGGAGGACCCGGCCTTTAAGCAGAGATATCAGCTCCCGTTCGATAAGCTGAAAAAGTCCTGTTTGACTTATTGCACTTACATGGAGACGCTGGTATCGGGCTACAGCGGGGTACTTCCGCTGGCTAAGAGTCTGGCTGGTGATGGTGACTATGCGCTGCTGGATTACGCTTTAGCTGCTTTGAACCAGTATTTGGTCGCTAACAATGACGAAATTTTGGCGCCTGGAAAATACGGCTACAAGCTGAGCTTGGACTTTTCAACCGGGAGCGCGGGATTGTTGACCCTGCTGAAAGACCTGCGGCAGCGCGATGAGTTCAGCTGGCTGCCGCTTTGACAGGCAAGGAGGGAGAAGCATGAACAATGTAATTTTAGATTTTGAAAAAATGGTTGAAAGAAAGGCTGAGCAATTGTCCCGTAAGGAGATTACGCCGGCCAGCAGTCTCAGCATTCTTTGCACGGGGCATGACGTCAGCAGTTTTGGGATCGGCAGTCTGCTTTTCAAACTGTTTAAGTAGTTGTCCGACTAAAAAAATCAACTTTTTTCGCGAAAGCTCTTGTCAAGGACACGTTTTTATGGTTTAATTAATAACTGTGTTAAGGCACAAGAGTCGCTGACTTAGCTCAGTTGGCAGAGCACTTCACTAGTAATGAAGGGGTCGGAGGTTCGAATCCTCTAGTCAGCATATTTTAACCGTCACCTGCAGGGTGGCGGTTTTTTCTTGCCCAAAATTCTTCGATCTTTTATAAAATTTGCTTCATCCGGTTTGGACTATAATGTAACTGCAGTATAAAAATTGCAGAAATCAGGAGGAAGAAAATGGCACTCATTGAACTCAAGCAGGTGTCCTACCGGGCAGGTGACCAGGAAATCCTGCAAGACGTCTCCTTTGCCGTGGAGGAGGGGGACTACCTTACCTTGACCGGACCGTCGGGCAGCGGGAAAAGCACGACTTTGAAGCTAATCGCGGGCTTGATCTCACCTAATAAGGGGGAGATTTTTTACAAGGGGCAAAATCTTGATAGCCTGGATCTGGTCCAGTACCGCCGGCAGGTGTCCTACTGCTTCCAGCAGCCAACCTTGTTCGACGAAACGGTTAAGGACAACCTGGCCCTGCCTTTTGCCATCCGCAAGCAGGACTTTGCTGAAAAGCGGGCCCAGGAAGCTTTGAAGCAGGTAGATTTGCCAGCTGACTATTTGGATAAAAAGATTACCACCCTGTCTGGCGGGGAGAAGCAGCGGGTGGCTTTGATCCGTAATCTGCTTTTCCGGCCGGAGCTCCTCCTGTTGGACGAAGTGACGACCGGGCTGGATGAAGAGAGCAAGCAAATCGTCTATCAGCTGATCGCCCGGGTGCACCAGGAGGGAACCACGATCGTGCAGGTGACCCATGACCAAGAGGAGCTGGCCGCTTCCAAGCAGCTCCTGCACATGGAAAAAGGAGGAGTTTTGAAATGAAAGCAATAGCTGTCAGCGATCTGTCATTAATCTTGTCTTTTGCCCTGGTCCTGGTACCCGTGGCGATTTCCTGGAAGGAAAAGCTGGGCTTGACCAGGGACATTTTTTACAGCGTGGGCCGGGCTATCGTCCAGCTGGTCATTGTCGGCTACGTCTTGAAGTTCATCATGCAGGTCAACAATGCCCTTTTGACCCTCTTGATGACCTTATTTATCATTTTTAACGCGGCTTGGAACGCCAATAAGCGGGATCCCAACCCGAACCGCCAGCTCTGGCAGTCAATCATGGCCCTTTTGATCGGGACTTACATCACCTTGGGCGTATTGCTGCTGACTCAGACGGTGAAGCTGAAGCCGATGCAGATCATTCCGATTACGGGGATGATCGCCGGCAATGAGATGGTGGCTATGGGTCTGTGCTATAAGGTTTTAGCCACGGGTTTCCATGACCAGCGCCAGCAGGTTTTGGAAAAAATCGCCCTCGGGGCTGACGTGAAGACGGCCAGCATGACCATCCTGCGGCGGAGCATCAAGACTGCCATGCAGCCGACGATCGACTCAGCTAAGACGGTGGGGCTGGTCAACCTGCCGGGGATGATGTCCGGGTTGATTTTTGCCGGCGTGGATCCAGTTTATGCAATCAAGTACCAGATCATGGTCACTTTCATGCTTTTGTCAGCGACTGGCCTGGGCGCCGTGATCGCGGGCTACCTGTCCTACCGCAACTACTTCAACAAGCGGAGCCAGCTGCGGGAAGAGCAGTAGCGATGTTAGAAAAATATTTTACCTGGCTGGCAGAAGTACTGTTAATCATAGTAGTAGGCGTAGGCTTGGTCTTCATAACTCTCCATTCGCTCTACTATAGTTATGGCATGATGATTTTTGGTGAGCATTCCGCGGCAGCAACTGAAATGTTTTGGGAAAGCGAAAAGATTTGGAGTAGCATTTACACTGTCGCGGTGATAGTCATTGCTGTAAGCACGCAAATCGTCAGATCTTTTAAAAGTAGTAAGAAGTAACTGGAGGATGCCTAAGTTATGAGTAGCGATGAGTGCATGGCTTGATGCAATCGAAGCGCGATGATTATCAGAAAGTGATGCAATCGAAGCAATGCGATTGTCGAATTATTCCTCCTTTTGCTGACCAAGTATTACCGCTAATTTTTTTATGAAAAAAGCTCTAACTGCCTCTGTAGCAATTAGAGCTTTGTTTGTTTCTAAAATTAATTCGCGATCCGGCTTACTTAACGTTGCCTGCCTTGATGTAACGGCCGACGTTGATCCGGTAGTAAGTCTTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGGTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCACTGTGAACCAGCTTGCGGGCAGTACCATCAACGTTGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGTTGCTGCCGATCTTGACGATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTCTCTTACCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGGTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCACTGTGAACCAGCTTGCGGGCAGTACCATCAACGTTGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGTTGCTGCCGATCTTGACGATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTCTCTTACCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTAGATGGTCTTGATGAAGAACTGGATGATAAGCTGGAGCTGATTGACAGAGGCAGAATTGAGATGTTCCCGTCAACATTCAGCCCCTTCCAGTTTTCAGTGAACTGCCAGATGATGACCCCGTTCATTGACGGGAAGTATGAAAAGTCTGGCGCGTCGATCCGGCCTGAGCTGGTGTAGTAGGCTACCCACAATGAGTTAGGGTAGGTTGACGTAACCGTGCTCATGTTGATCGCGTTGTTCAAAAGGTAGGAACCAGAGTAGAGCAATGGCTGGTAGCCAGCTGCCTTAACCTTCTTCATGAAGGCCATGATGGCGCTGGTATTAGCACTTCTGCTCCCGCTGGTTGAGTTGCCGCTGCTGGTTTCCCAGTCACAAGCCAGGTATGAGCCTGCTGGCAGGCTGACTGCCTTGGCGCTGGCGATAGCGTAGTCTGCTTCGCTCTTCGCTCTGGATGAGCTGGAACCGAAGTTGGCGAAGTGGTAGGCCATTGGCAACAGTTTGTTGGCCTTGGCGCTGGCTACTTGTGCCTTGGCGTTTGGATTCCGGTAGCTGGTGCCTTCGCTGACCTTGACAATGACGAACTGAGCGCCCGCCTTGCTGTACTCGGTCGTGCTGGTTGGCTGGTAGCTTGACACGTCGACCCCATAAGAACGGCTGCTGGCGCTGGTCGTGCTGGCCTGTGTTAGGCCGGCGAAGCTCATGCTTACAGCTGCCGTCAATGTGGAGACTAAGGCAAGCAGTTTAAGGCGTTTAAACTTCATGTATCTGGTACTCCCATTAAAAAAGTGTGTGATTGAAAATGCTCAAAATAAGTGGTTTGTTTTGCGACAATCCTCATTATATAACTGCAATGTTACAAAACCTTGACACAACCTTTTCTAATTCTTAAATAATATTACAGTTTTTAGCACTTTCCCTTTAAGCAGATCGTTTGAGCTTGCCTGCCGACTTATGTAAAATACCCTTTGTCGTTGTCATTGAACCAGTAATATAAATAAGGAAGCGAATAGGAAATGCAGATTAGAAAAGCAGAATTGAAAGATTTTGACCAGGTGATGGCGATCCTGCAGGACGGGCGCAACCAGCTGGCAGAAAGCGGGATTGACCAGTGGCAGGGGGGACTACCCGAATCCTGACCACGTCCGCCAGGACATCGAGAATGGCTATGCCTACCTGGCCAAGGCCGACGACGGGGAAAACGTCGGGACCTTGACCATTATTCCAGCGCCGGACCACGCTTATGATCAATTGGACGGGCACTGGCAGGTAGATACCAATGACTACGTTACCATCCACCGGGTGGCCATCCACTCCGACCACACTGGTCAACGGCTATGCTTCTCAACTCTACCAGGCAGTGATCAACTACTTCACCAGTGGCTTCAATGACATCAAGTCCGTCAGAGTCGACACCCATGAGGATAACCTGCCCATGCAGCACTTGATCGAAAAGAGCGGCTTTAAGCGGGTCGGCACCCTGCACGGGGTCTACCGGGGGAAAACGAGACCAGCTACGTTTACGAACTTCTGACTGCTTAAATTATGCTTACTAAGTAATAAGTAAGATGTATAAGTAAATAATTAAAAAAATAGCTGTTTTGAAATTCGCAAGGAAAAGATCATATTTTCATCACAACTATCTTGTATATTAGGTTCGTAGCTTGAGGTTGTGGAGAGCCGCAAGTTGCAACATCCAAATTTCTTTTATTTTTCTTTCCTCAATGTAACATTGCATTGAATTTTATACATACACAACACATTCCTAACCAAAGTCAGTTGTTCTTCTAAGCAACTGGCTTTTCTTGTGCTCTGAAAATGAAAATGCCCGTGTTATACTAGTTATTACCAGATTAGAAAAAAGTTTCGTAGCAATCACTTTCATATTTTTTTAAGCAAGTATATAATAGAGCTACTGAGCAATAAGGAGGGGCCAAAGTGAAATCAGTCTTGATCAGTCAAGATCTATCCTGTGTTGGTCAAGTCTCGCTGGCGGTCGCCTTGCCCGTGTTAGGGGCCAGCGGCCTGCAGACCGCGGCTTTGCCAACGGCAATTTTGTCAACGCATACGGGCGGGTTCGGGGAGAACACCTTCCTGGACCTGTCGGCCAGTCTGCCAGATATTTGGGCGCACTGGGATAAGGAAAATATCTCTTTTGACGCCATCTATTTGGGCTACCTGGGCCAGGCGGCCAGCCGGGTCTGGGAGAAGGGGCTGGAAGAATACAGCCGGCAGGGGAAACTCATCCTGCTGGACCCGGCTATGGCTGACCACGGCCGTCTCTACCGCGGCTTTGATGACAGCTATGTTGTCCAGATGCAGCTCTTGGCCCGGCAGGCGACGATTTTGACGCCCAACTTGACCGAAGCCCTGCTGCTCTTGAATGAGCCGGTGGACTTTACTGAAGTTGACAGCCACCGGGCCTGCGTGATCACCCAGCGCCTGGCCCAGAAGTTTGCCCTGTCCCAGGTAGTTTTGACCGGGGTGTCCCTAGCCGACAACCGGATCGGGGTTTACGGGCTCAGCCGGGGTGGCCGGGTTTGGGAAAGGACCCAGTCCGGATTCCGCACAGCTATTTTGGCACGGGGGACCTTTTTGCCAGCAGCCTCTTGGCCGGCCTGCTTCACGGGCTGGACTTGGAACAGGCGGCTGGCGTGGCCGGGGACTTCGTGGCCAAGGCAATCCTGGCAACTGATTTGGACCAGGACCAGCGCTTTGGCCCTAATTACGCGGCGGCCCTGCCTTGGCTTTTGCAGCAATTGCACAATTAGTGCATTGATCATCTATCTTAAGGAGGAGAAATAATGCGCGATGAACAGAATTCTTTAAGAGCAGTCGTGATGACCGGCTTGTTCGCGGCCATGATTTATATCGGCATCTGGGTCCTGCGGATCCCGCTGCCGGCAGTCGTTGGCCGGCCTTTCATCCACTTCGGCAACACCTTGACGGCCGTGGCCATTCTTTACCTGGGCTTCCGTAACGGGACCCTGGCGGGGATCATCGGCCTGGGCGGCTTTGACATCCTCAACGGCTACGCGGCTACCAGCTGGCTGACTATGCTGGAAGTCGTAGTCGTGGCTGCCATTTTGTCCGCGGTCTACAAGGGCATGAAGTACAACGACAGCAAGAAGAACATCATTATTTTGGCGGTCATCGCCGGGGTAACCAAGATTTTTACCTCTTACGCGACGATGGTCGTGGCTGCCTTGATGGCCGGGACGGCATTGCAGCCAGCCCTGGTCGCGGCCTTCCTGAGCCTGCTGGCCACGGTGATCAACTCCTGTTCAACCGCGGTCTGCACGCCGATCCTCTACTTTGCCTTGAAAGATATTACCGTACGCGTCATGAAGCGGGCACACTAAAAGGCTTCCCGGCTGGGAAGCCTTTTTTAATTGCTGAAAAGTTGGTCGGCGATTTTGGCTGGCAGGGGATCAGGCAGAACCAAATCCAGGCCGACCGCGCTCTTGCCCTTGAGATTTACCTCGCGGACCGTGGCAGGGTCGATTTTCGCTGAGCCCAGGTAGTAAAACTTTGGGCCGTAGGCATCCGCCCGCTTGACGAAGACCGGAATCCGGGTGACTTGCTGGCCAGATTCCGTCCCCCGCAAAAGCTGCTGGACTTCCGGGGAAGACAGGTGGCGGGGAGTTCTGGTATACCAGGCCAGGCGCTGGCCGCGTGCCTGGTTGTCATAGCGGGCATTTCTTTGCTCCTGGTCAGTTTTTTGATAAGTGATAAAAACCGGGCAGACATTGCCACTCAGCCGGTAGCCATACATGGGCCGGCTGACGTCTAGTGGCCAGTTGAGCAGGCGGCAGACCTCCTTGCGGTCGTAAGCCGCGTAGAGGGTGAAGTCTTGCGCTGGGTCTTTTTCTTTGGCGAGGAAGAGGCCGGTTTCGACCGCGTCTTTAAACAGACGGAGGAAGTCGGGACTAGCTTGGACGATCTGAGGATTTAAGGACCAGCAGCCGTCCTTTAAGCAGGCGACAGGCTCGCCGCCGTACTTGGCCTTTTGGCTAGTTGATCCGCTTTTGACATCATAGAAGTCCAAGGAGAGGATGGCTTCCAGAGATTTTTCCAAGGCGGGTGAGTCGTAGGCCCCGTAATTTTTTAACAGAGCTTGGAAGTCTGTCTGACTGATTTGGCCTTTTGGCAAAAGGGCCTGCAAAAGCAAAAGTTCATGTGGCCGCTGGCCTGGGGCCAGTTCCTTAGTAACGAAGGAGAGGACCTGGCTTTCGTAAGAGGACAGCTGGTAGGGCTGGCCCATTTGTTCCAGGAAGGCTCCGTAGTGGGGCAGGGACTTGTTGTCCAGCCAGAGGCGGGGTGAGACCTGGCCTTTTTTGGCGAAAATCCAGCAAAAGGGGCGCCCGGCCCAGCTGCTGGCCAGGTCCGCGTAGGCTTCCCGCAGCTGCTTGAGCGAGTCCAGCTTGACCTTGTCCAGGGAGGCCAGGATTTCCTGGCTGGCGATCCGGCTGAAGTTGATGGTGGATAGGCCGGCAAAGCTGACGGTTTGCAGCTGGTACTTCAGCTGGTCGCGGGAGAGCTTTTTCCAGGCTAAGGCCAGGGGGATCAGGTAGTTGTTCTGGTAGTTGCCGATGAAGTCCAGGACGGTGACGAAGTCCTGGCCCGGGTAGAGGCGCAGGCCCCGGCCCAGTTGCTGGATAAAGACCGTGGCTGACTGGGTGGCCCGGAGCATGACGATCTGGTTGAGGGCGGGAATGTCCACGCCTTCGTTGAAAAGGTCGACCGTCACCAAGTAGTGAAGGCGGCCGCTTTCCAGATCCTTGACCGCCTGCCGGCGGACAGCTGGGGAATCCTGGTTGGTCAAGGCCTGGGCCGGCTGGCCCTGTTGAGTAAAAGCTTCCGCCAATTGCCGGGCTTCTTCCTGCCGGCTGCAGAAGACCAGGCCGCAGGGGCGGGTACCGCTGTAGCCGTAATAATCCAGTTCTTTAAGGAGGTAGCTGACCCGCTTTTTCGCGCCCAGCCAGCGGAGGTCGCTGAAGTCATCAGAAGTCTGGCCGTCAATTTCATAGTCGCGGATACCGATATAGTGGAAGGGCGTGAGCATTTTGCTTTCCAGGGCATCGGCCAGGCGGATCTCGTAGGCTAAATTGTAGTCAAAGAGGGCAAAAATATCCTGCTGGTCCATCCGCTCTGGCGTGGCTGTCAGACCCAGGCAAAAGGCCGGGCTGAAGTGGTTGAGGACTTTTTGATAGCTGGGCGCGGCGGACCGGTGGGCTTCATCGATCAAGATGTAGTCATAAAAATCAGCTGCCTGGCTGGCCAGGAACTGGTCCTGGGAAACGGTCTGGATGGTCGCGAAGGTGTAGCGGGCCTGCTGGTGGCTGGTCCCGGTCAAAAGGGCGAAGTCGCTGTCCTTGCCACCGATAACCTTTTTGAAGGTCTCAAGGGCCTTGCGGGCGATCTCTTCCCGGTGGACTAGGTAGAGGAAGCGGCGGGGGGCAAAGTCTTTGACCGCCAAAGCCGCCAGGTAGGTTTTCCCCGTCCCGGTAGCAGAAACGACAAGGGCCCGGCGGGCGCCGCTTTTGACTAAGGCTTGGAGATTTTCCAGGGCGGCTGCCTGCATCTGGTTGGGAACGATCTTTTCTTGTTTCACGTGTAACACAGGCTTGGCTGGCGGCTGCCAGCTTTTTTCATAGTCAGCCAGCCAGGTGTAAGTCAGGGGCTGGCTTTTGCCCGTCAAGTCCGCTAAAGCCGCGGCTAGTTGCCGGGGCAAGGTCGAATCGGTTTGGGAATCGACCTTGAGGCACCATTCCTGGTTGGCCAGGAGGGCGGACCGGGTGAAGTTGGCGCTGCCGATAATGGCGGTCTGCCAGTCCCCATGGTCAAAAAGATAGCCCTTGGCATGGAAGGGACCGTCCGCGATCCGGACGGTAAGATTGGAAATTTTTAAGAGCTCGGCGAAAACCCGGGGCTGGTTGAAGGCCAGGTAGGTTCCGGTGATGATGGTCCCGCGGATTCCGCTGGCTTGCAGGTCTTCCATGACCAGCTTGAAAGGGGGCAGCATGTCGGCGGTGATGAAGGCCACGGCCCAGGTAAAGGACTGGCAGGTCAGAAGCTGCCGGCGCAGGGTTTGCCAGATGTTTTCTTGCTGATTGCTGACGAGCCGGGGCGGGCTCAATGGGGAAAGTTCCATGGATTTTACCTCACTGTGGAAAGATTTTTTACCATCATAACACAAGGGAGCAGCGGGGAAGATAGGAAAAGAATTATGTTACATGTGAAACAATCAGTGCTATAATAATGGTAAAAATAATAAAAGCTTTTTACAGAGGAGAGAACAATGAAAGCGAAGGAAATCCGGGCCCTGGCCCAGGAAAACCTGAAGCAGATCCCGAAGAAGATCTACATGCCGATGGGCCTGCTCTTGGTCTTGGCAAATATCATACCGAATGTCGTTGACCAGGCCACTGATTCCAAGTCGGGGGTTGGAGCTAATATCATCTTCTTTCTCTTGGAAATCGCGGCCGCGCTTTTGACGGCTAACGGCTACATCTTCTTTGATCGCTGGCGGAATAAGATCCAAAAGGGCGGGGAAGAGCCAAATGCCTGGTGCGGCCTAACCGGCCAGCACATTGCCCGCTTGCTCATTTATGGGGTGATTGAAGCCTTGATCATCGGGACCGTGGCCGTGGCGATCGCGGCCGCGGTGGTTGGGTTAGCCATTCCGCAAGTATCGGTAGCTGTAAGCATCATTCTTTTGATCTTGCTGGTCGTTTTGCTGGTCTGGATTGAGCTGCGGCTGACCTATGTCGTTTACGTGATCGACGATGATGTGCGGACCGGGCAGAAGCGGTCAGTCTGGGCATAAATCGGGGCTGGCTGGAAGCTGACCAAGGGCCGGGTCTGGAAGCTGCTTTGCCTTAATTTATCCTTCTTAGGCTGGTACATTTTGACCGCCTTTACCCTGGGAATTTTGGGTATCTGGCTGATGCCATACTACAATTTGGCAATCGCCGAAACTTATGAAAAGAGCAAGGAAGACAAGTATTAGTATTATTAGACGCGCGATGGCGCGTCTTTTTTTTACGGGCAGGGAAGAATAGCTTATAATTTTTAATAGAAAGGACGTGAGGCAGATGGCACATGCCTTATATATCAGCGAGATTCACATGGACTTGAACGAGTACACCAGGATGGCCATGAAGGTGACGGAAAAGAGCCGGCGGCGGATCATCATGATCGCGGAAGCAATCTGGATCGCGGCCGGAGCGGTGGCTTTCGCCTTGAAGCAGTATGACTTCACTGTCATGTTTGCCCTGGTGATTGCTTTTTACCCGGCGGCAATCGTCTACCTCTACAAGCGGCGGCTGAAGAAGATTTACGCGGGCATGCCAGCCATCAAGGATGACTACGTGCGCTACGAATTCTACCCGGATCACTTCCTGGTTTTGACCAACCGGGGGGACGGGGAATACCACTATGACCAGATCACCCGCTATGTTGAAACTGACGAGGAAATCATCATGATGCCGGCTCCGGACCAGGGCATGCTGCTTTTGAAGAAAAACTGCAGCCCGGACTTGATCAAGTTTTTACGGGAGAAATGCCAGCGGTAGTTTCACGTGGAACACAGCGGAAGTGGCAAATTGCCGGAAAAGCTGTTAAGATTAAGGAAACAGGCTTTTTTAAAAATGATCTGGTAAAAAATGAAATTTTCCCATAAATTGAGTGACGCGGTCCACCTGCTGGCCTACATCGAGATTTTTCCCGATGATGACCTGTCCAGCCGGGCGATCGCGCGTAGCATCGTGACCAATCCCAGCATGGTGCGGAGTCTGATGATGGACCTGCGCAAGGCAGGGTTTTTGAAGACCAAGCAGGGGAGCGCTGAGCCGGAACTGGCCAAGAAGCCGGAAGAGATCAGCCTCTACGATATCTTCGCGGCAGTCGGTATGGAGCACCACTTGCTGCACGTTGATGAAGACACGGAGCAAAAGTGTCCGGTTGGCGGCAACATTCAAGGGCCGCTGGCCAAGGCCTACGCGGAAGTGGAAGAGGCGGCTTTTGCCAAGATGCGGGAGATCAGCCTGCGGGAAATTGTCGATCAGATAAAAGAAGAAGGGCAGCTTGCCTAATTACGTCAGCGAAAGCTGGCGTTTTTTTATGGAAATAGATGTTGACTTTAAAAATACACGTGCTGGAATTGGTGTAGATTTAAAAATAACAAGCGAATGAAATAGAAAAAAGAGAAAAAGAAACTAACGGAGGCAATTATGAAGTACGCTATTTCAGCGGCTACTGGCAACTTCGGCCAGACCGCGGTCAAGAATTTGGTTGATGCAGTTGGGGCAGAAAATGTAGTGTCGATCGTCCGCAACAAAGAAAAGGGGAAGCAGCTTTTGCCAGCTGGAATTGAAATCCGCCAGGCTGACTACGGCGATGAAGCAGCTGTAGAAAAGGCCCTGGCTGGCGTAGACAAGTTGCGCCAGGCGGGGCAGTAACTAGAGCTGACCAGCACAAGAATGTGGTTGAAGCTGCTAAGAATGCCGGCGTTGGCTACGTGGCTTACACCAGTTTCCCGAAGGCCAGTGAAAGCGACAACTGGCTGGCAGCTGACCACAAGCTGACGGAAAAGCTGCTTAAGGAGAGCGGCCTCAAGCACTCCTTCCTGCGCAACAACTGGTACCTGGAAAACGAAATGACTTTCCTGGCTCCAGGTCCGGCCAACCGGATCTACTGGGCTAACAACTTTGCCGGCTGGGCACCGGAAAGTGAATATGCCGCGGCAGCGGTTAAGGTTTTGACCAGTGATGATCCAAAGGAAGTTTACGAATTTGCCGGCCCGAAGTGGAGCTACCAGGACCTGGCAGCGGCTTTGAACGTGGCAACTGGTGAAGAAGCAGCAGCCAAGTAGGTCAGCCAGGACGAATATGTGAAGGTCTTGTAAGGCCTGGGCTTGGATCATGACACGGCGGCAATGTACGCTGCCTTCCAACAGCCAATTGATGATGGTTCATTGACGGAAGAAAGCAGCGACCTGGAAGAAGTTCTGGGCGGCTTGGCCCCGCTGGACCAGGCAATTAAGGAACTTTTGGCAAAATAGCTTTGGCAGGTACTTTTTTCTAAAAAAGCAGGTATAATGTAGGAAAAGTTACTTGTTTTTAAAAAAAGGAGCAAAACAATGCCATTTGTACACATTGAACTCTTGGCTGGCCGGACGCCAGAACAACTGGAAAAGATGATGAAGGACGTGACCCGGGTGATCTCAGAAGACACTGGCGCACCAAAGGAACACATCTCCGTGATCATTAATGAACTTGGCAAGCAGCAGCTAGCTCAAGGCGGCGAATGGAGAGAACCACAAGCTTAAAGATTTTGACTCACCCAAGGCGGGTGGGTCTTTTTTTCGGGAAAATAACAGGTGGGAAATAATGTTCAAAGTGAATCAAAAGGGAAGGAGGGCTAGAGAAGCAAAGGATGAGGGGGCTTTCTTAAAAGAAAAAATCTTAGCAAAATTAGCATAGGAATTTGCTAAGCTTTGTATAAATTTTATGATAAGATAATGGGTGAAAAGTGAGTAGAACACAGCGACTGAGGCGAAAGCGGAAGATAAAACGCAACAACACAGCACTAGAAAGCCAGCACTGACAAGGAAGGGTCAGGGCTGGCTTTTGTTTTCGGAAAGAAAAGGGGGCTGGCGGCTGCTGCGCTGCCGTTTTTTCATTATGAATAAATCGTAATAAAGTCGAAATCGCGCCAGACCATGCTTTTACCGCTGCCGGCTGCAAAAAAAGTTCCTGGCACAGATAATGTGTCACGAACGGAGGTAGTAAAAATGATTACAAGTATCAAACTTTTGGAAGCTAATCAGATCCTGGCCCAGGTCTTGGACAGCGAGAGGGGCAGTGAGATCAACGTCAAGAAGTTCTGCAAGCTAGCTGCCTGCTCACGGCCAACCTTTTACGCCCACTATGGCAGCATGCGGCAGCTCAGTGCGGAATTACTATTAAAGAAGCTAGACCAGCACTTGCACTTTGCCACCAGTGATTATAGCAATGGCCTTAAGAGGCTATTGACTTATATGGAAAAAGACCGCTGTTTCATTTTGAACCTGCTGGCCTTGATTGATGCGGAGAAGGGGAAAATCAAGGGCAAAGAGTTTGCGGCCCGGTTTCCGCAGAAGGTTGAATGGCTGCTGCGAAAGAAGACAGTTTGCTATGTTGATGCTCATTCCGTAAGCGGGGATTATTCGATTAAGACCTTGAACAATGCTGCCCACATCATCTACGCGATCCTGTACGAGTGGCTGGCTGAAGGCCTGCAGCTAAGTGCGCGGGATGTTTATGACCGCTGCCAATTGGCGATTGAGATTGTCGAGGAGCAAACAAGTAAGAAAGCGCTTTTGTAATTCAAAAAGAAAAAAGCAAAAAACTTTTAGAAAAAATATCAGTTAAAAATCCATCTTTTCCGAACAAAGAAAGCAGAAATAAAGTGAAAATGACTACTAGTCTTGATATTACCGAACGAGACCAGGCCCCGCCCTATCACAACTCTGCCGGCTGTATCTATGATAAAGCGAATGAAAAGGCTGATTTGACCTTTCAAAAATAACGAGTATACTAATATTTGTTGTCGCGGCGAAGAAGGAATTTGCCGGAGACACGGAAAAGAAAATATCAAAAACTTGTTGACAAGAAGTTAACAAGCGAGTAAGATATAAAACGTTGCGTCACTAAGACGCAAGTTGGTACTTTGAAAACTGAACAAAGTTTCGCAGTGTGCGGGTCAAACATTGTTTGATCCAAACAAATAAGCGAAGTCAATTCGCAAGCAAATAATCTGGAGCAGATTAAAAAGACTCAATTTTCAAATTGAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAGCTGAATTCAAAGATTCCTTCGGGATGATTTGTTGGACGCTAGCGGCGGATGGGTGAGTAACACGTGGGCAATCTGCCCTAAAGACTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAACAACATGAATCGCATGATTCAAGTTTGAAAGGCGGCGTAAGCTGTCACTTTAGGATGAGCCCGCGGCGCATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCAATGATGCGTAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGCAGTAACTGGTCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAATGATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAACTGCATCGGAAACTGTCATTCTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGTAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGCGCTAGGTGTTGGGGACTTTCCGGTCCTCAGTGCCGCAGCAAACGCATTAAGCGCTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGTGCTACACCTAGAGATAGGTGGTTCCCTTCGGGGACGCAGAGACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGTACAACGAGAAGCGAACCCGCGAGGGTAAGCGGATCTCTTAAAGCTGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGCTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGTCTGCAATGCCCAAAGTCGGTGGGATAACCTTTATAGGAGTCAGCCGCCTAAGGCAGGGCAGATGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGAGAACCTGCGGCTGGATCACCTCCTTTCTAAGGAAAACAGATGGATGGAGAGCAGAAATGCTAAGAGAAATCCATCAGTTACGGAAGCACACTGCAAAAGAAACTTTGTTCAGTTTTGAGAGTATTAGCTCTCACTTGTACGTTGAAAACTGAATATCTTAATTCCAAGAAAAAACCGAGAATCATTGAGATCAATGAAAACATTGCAAAGCGACCGAGAGAGTTCGAAAGAACAAACTTGCAAGGTCAAGTGAAGAAGGGCGCACGGTGAATGCCTTGGCACTGGAAGCCGATGAAGGACGCGACTAACCGCGAAAGTCTTCGGGGAGCCGTAAGTAGGCTTTGATCCGGAGGTCTCCGAATGGGGGAACCCAGCATGTGCAGACATGCTATCCTTAAGTGAATACATAGCTTAAGGAGGGAACACGCAGTGAACTGAAACATCTAAGTAGCTGCAGGAAGAGAAAGAAATATCGATTTCCCAAGTAGCGGCGAGCGAACAGGAAAGAGCCCAAACCGGCAGATTTATCTGCCGGGGTTGTAGGACTGAGACATGGCACTTCAGAGGATAGCAGAAGCGTTTGGGAAAGCGCGCCAGAGAGGGTGAGAGCCCCGTAAGCGAAATCCAAAGAAGGCCTATCAGTATCCTGAGTAGGGCGGGACACGTGAAATCCCGTTTGAATCCGCGAGGACCATCTCGCAAGGCTAAATACTAACCAGTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAAGAGAACCTGAAACCGTGTGCCTACAAGTAGTCAGAGCCCGTTAACGGTTAATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTGCGTTAGTCAGCAAGGTTAAGTCAGAAAAGACGGAGCCGTAGCGAAAGCGAGTCTGAAGAGGGCGAGCAGTTGGCTGACGCAGACCAGAAACCAAGTGACCTACCCATGACCAGGTTGAAGGCGCGGTAAAACGCGCTGGAGGACCGAACCCACGTAAGTTGAAAATTGCGGGGATGAGTTGTGGGTAGCGGTGAAATTCCAAACGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGCAAAGAGGATGCTGGAGGTAGAGCTCTGTTTGGACTAGGGGCCCGTCAAGGGTTACTGAATTCAGATAAACTGCGAATTCCAGACATTTATGTGCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGATCACCAGTTAAGGTCCCAAAATTCATGCTAAGTGGAAAAGGATGTGGAGTTGCGCAGACAACTAGGACGTTGGCTCAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTAGTCGAGTGACGCCGCGCCGAAAATTTACCGGGGCTAAGCATGATACCGAAACTGTGGATGTGCATTTATGCACGTGGTAGGAGAGCGTTCTAGCGGCGGTGAAGCATGACCGAGAGGACATGTGGAGCTTCTAGAAGTGAGAATGCCGGTATGAGTAACGAAAGACAGGTGAGAATCCTGTCCGCCGCAAGACTAAGGTTTCCTGGGGCAGGCTCGTCCGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAGAGGCGTAGTCGATGGACAACAGGTTGAAATTCCTGTACTGCACCGAATCGTTATGAGCGATGGAGGGACGCAGGAGGCTAGCAGCGCGTGGTGCTGGATACCACGTTCAAGCGTCAAGTCTGAGAGCGAGTCAAATGCTTGCTCTCATAATGACAAGGCGTGATGAGGAGCGAAATTAAAGTAGCGAAGGCTGCGACGTCACACTGCCGAGAAAAGCTTCTAGCCAGAGACGGTGCACCCGTACCGCAAACCGACACAGGTAGTCGAGGAGAGTATCCTCAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGGCCCCGTAACTTCGGGAGAAGGGGCGCTGGTCGCAAGATCAGCCGCAGTGAAAAGGCCCAAGCAACTGTTTATCAAAAACACAGGCATCTGCAAAATCGTAAGATGAAGTATAGGTGCTGACACCTGCCCGGTGCTGGAAGGTTAAGAGGAGAGCTTAGCGCAAGCGAAGGTTTGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGTGTAATGATTTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAATACCCGTGAAGATGCGGGTTACCCGCGACAGGACGGAAAGACCCCATGGAGCTTTACTGCAGTTTAATATTGGGTATCTGTCAAGCATGTACAGGATAGGTAGGAGCCGGAGAAGATAGGACGCCAGTCTTATCTGAGGCGCTGTTGGGATACTACCCTTGCTTGACGGATGCTCTAACTCAGGCCTGTGATCCAGGCCGAGGACAGTGTTTGACGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGTGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGTAAAAGGGAGCTTGACTGCGAGAGAGACAACTCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTACCGCATGGAAGGGCCATCACTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGTGGGCACAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGCACCGCTGGTGTACCAGTTGTCTTGCCAAAGGCATCGCTGGGTAGCTATGTGCGGACGGGATAAGCGCTGAAAGCATCTAAGTGCGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCAAGAAAGTAAGACACCTCAGAGACGATGAGGTAGATAGGCCGGGAGTGGAAGAGCCGTGAGGCTTGGAGCGGACCGGTACTAATCAGTCGAGGACTTGACCAAAAGAGCGAAGCAATGAGGTTTTGACTTGGTAAAAGATATTCAGTTTTGAGCGTGCAAGCTCAAGCAAAGAGTGCGGTGGCAATGGCAATAAGGATACACCTGTTCCCATGCCGAACACAGTAGTTAAGCTTCTTAACGCCGAAAGTAGTTGGTGGGAAACTGCCTGCGAGGATAGGAAGCTGCCGCGCGAGACAAGAGTCAGACGGAAGTCTGGCTCTTTTCTTTTGCTTGGATACTTAAGAAATGCCTTGACATTAGCAAATAAATATTATAAAGTTAAACTAACAATTAAATCACGTGTTATATCAAGAGCTAGTGAGTGGTTACACACTTTGACCTAGCAGCAACCTACCGACCGGTAAGGTGCTCCACTGTAAACGGATATACGTCACTTAACCGTGTTCGTATATCGAGCACGGTTTTTTTGTGGCAAAGTCCCAGTGACGTTAAACAGGAGAAACAGATGTCAAGTATACTAGATGATCAACTACGATTAATGGCTTTAAAGCAATACGGGTTAATTAAATCAATTAAAACACCCGACATTTCTTATGCGGATTTAATATTAATACTGAAAAATACAGAAAATGAAACTATTAAACAATTAGCAGCTGAAAAGCTACTTAAAGAAACCAACATTTATGACATTTATAAAGCGGATTTAAAATTAATACTGAAAAATACAGAAAATGAAACTATTAAACAATTAGCAACTGAAAAGCTACAATATCTTAATTCGCATCCCAGATTAGGTTGGGCAGGTTCCCTAGCGAGAGCAAATAGGTTGGGCAGCTTCCATAGCGAGAGCACAAAGGATTAATGGCCTGAAATACAGATATAAGGTCCTGATGAAAAAGTTAAAATTCGGGATATTTTACATAATGCTAATTAATCTGATGGGACACTCAAAATGGTCCTGGATGAATGCCTACCGGAACCGCTACGGGCTGATCCGCGACGACATTCACACCCAGAAGAAGACCTTGAAGAAGTCAGCCTACTGGTACCGGAAGCTGAGCGACAGCAATGAGCTGGACGCGGATTGATTTTTGTTGTTTTTTGCAAGAACTTTCGCTGTTTTTTCCCAATCCGACCGCAAAATAGCTTATGATGTTAATGGAGTAAATAAGTAAGCGGAAACACAATCGAAGGTGCAAAGGAGACTAAATGCAAATGGCAGAACCATTATTTTTGGCACCAGTTTTTCATGAAAAAATCTGGGGCGGCACTGGCTTAAAAGACGAGTTTGGCTACCAGATTCCCAGCGACCACACCGGTGAAGCTTGGGCAATTTCCGCCCACCCGCATGGCCCGGCAACTATCAAGAACGATCTTTACAAGGGGATGAAGCTGAACGAGCTCTGGGACCAGCACCGGGAACTTTTCGGTAATGCCAAGGGGGACGTCTTCCCGCTTCTGACCAAGATTTTGGATGCCAACCAGGACCTGTCCGTCCAAGTGCACCCGGACAATGAATACGCCAGAATTCACGAAGGAGAACTGGGCAAGACCGAATCCTGGTACGTGATCAAGGCCAAGCCAGGCGCCAAGCTCTACTACGGCCACAATGCCCAGACCCGGGAAGAATTCGCTGAAATGGTGAAAAACGGGGAATGGAAGAAGCTCTTACGGACTGTCCCGGTGCATGAAGGGGACTTCTTCTACGTGCCACATGGCATGGTGCACGCTGTCGGCAGCGGCATCATGGTTTTGGAAACTCAGCAGTCCAGCGACACCACCTACCGGATGTACGACTTTGACCGGGTTGACAAGAAGACCGGCAAGCTGCGCCAGCTCCACTTGCAGCAGTCAATCGACACGGCGCAAGTGCCGTTTGAAATGCCAAAGCTCAACCATGAAGAATGGGATGTTGGCGACGTTCACGTGACCCAGTTCGTGATGGCGGAATACTTCGGCGTCTTCAAGCTGGACGTTCGCGGCAAGGGTGACTTTGAGATCAAGGATGGCAAGTACCGCTTGCTGTCAGTCTTGGATGGATCTTGCGACTTGACGGTCGACGGGCAGACTTATCCGCTGAAAAAAGGTGATCATCTGATTTTGCCATCGACGATTTCCTGTTATACTTTAGATGGTCAAGCTACGATCATCGCTTCCAAACCGGGCGATGAAGCTTAAAAGACAAAATTTAGAGTTAACAGAAGTATAGGTGAGAACATGACATATACTTTTGTAGGCAGTATTGAAGCCGGCGGCACCAAGTTTATCTTGGGCGTGCAAAACGTGGAAACTGGGGAAACCACTGCAACTAAGCGGGTGCCGACCACGACTCCGGCGGAAACCCTGGCAGCCTGCCGGGACTTCTTCAAGGAGAGGAACCCAGTCAAGGCCATCGGGATCGGTTCTTTTGGCCCGATATGAAATGGCCAAGGACCTGCTTAAGTAATAAGCGGAAAAAACAAGATAATAGCACTAAAAAACCAGCTCAAGCGACAGCTTGAGCTGGTTTTGTTATGTTTTTTATTCTTGATAATGTTCCGACGTAACGATATACACGAATGAGCTCTTTTTCTGACTGGCCAGCCAGCGCATTCTGATCTTGAATTCCAGACCGCCGGCTTCATAACTGGCCGAAATTGCCTGGTCCTTCCCCTGGCAGCGGTCCATCTGCTCTAACAGAAATTTATCCACGGCTGGTGTCTGAGCAATCTTCTCAGCCAGCGACTGCTGGTTGCCTCCCGTTGCCTCCAAGACGCGCTTAAGAGCGTGATTGAAGTAAAAATAGTTTATGTTATCTCCATCTTTTTTCAACGATGGCCATCGGCACGTCGATATTTTCCCCCAGGCTGGAATTCTGTTCCGCCTGGCTGTGGGTCGGATAAAACGTTGACCCGGTCGATCTGGCTGTAGTAGTCACTTAAGCTGATATCTTCCAGCTGGTCGCCGACTTTGCCCAGGAACTGCCGCAATTCATCCGGCTGCATGGAAGCCGCGAAGAGGTAGCCCTGCTGGTACTGGCAGCCGATCTCCTTGAGGAAGTCTGACTGGCTCCGGTTCTCGATCCCCTCGCATAAAGTCTCGATGCCCAGCCGCTTGGACATGTCGTTCAATAAAGCCGAAGACCGTCATCAAGACCGGATAGAAGCTCAAGACCAGGTAGTAGTGGCCTAAGCCGTTCTTCCGGTTGATTAAGGCATTGTAGGCCGTAACCCCGAAGACAAAGGTGGAGTAGCCAATTGGCAAAAGCAGGAAGAGGGTGGAAAAGAAGGGAGTAAAGGCATTGATGTCGTTAGCGGAAAAAATCAGATTTGGCGCGAAGAGGGCGCAAACAATGTCAAAAATAGAGATCGCGATCGGCAGGCCCAGAACAATCCGGTTCTGCCGCTTGTCTTCAGCCAGGGGCAGCTCGATCTTGCAGGCAATGAACATCAAGGTAGTATAGCTGAGGATGTTCAGAGTGATCGCCAAACAAAGACTGGCGAAATTGACCAGAGCTTCATTGCTAGGCAGGATGCGGTTCATCATAAGAGTCCGGGTCCCGTCTAAAAAGAGGTAGGTGGCCTGGATGATCAAACTGACGTTGAACCAGTAGTGCTGACGGTTGTGGCGCTTGATCTGCAGTTATGAGCGTAATAACAATAATATCATAATTACTTGGAAATGTTCTGAGACATCGTAGGCAAATGCTCTAGTAAGTTGCATGGCTTTCTCCCTATAAAATACGACATGTTCCTTAATTAAATAATAACTCGTTTGCCTTAACAATAGGGCTGAGCGGATTAAAAGGGATTGATTAAAAAAGGATGTTAGCGCTTTTAATTCACGCGGGAGTATGTTATATTTTTAACTTGGAATGGATGGCCTCAATTCTTCATAATATAAGGGCTATCCACAGTTAAGCAGAATGTATTGAATACAGGGAAAGGCAAAATGGAAGAAGTTGAAGCGGTACTTAAGCGGCTGCTGGCTGGCAGGGTCTGGCCGGCCAGTTTGGGCCGGGAGCTGGAGAGCAAGAGAATCTGTTTGAGCGATTTGCTCTTGGACAAGCAAAGAAAGAACGTGATCAAGCCAGCTGACGTCCCTTTAATCCGCCAGGCCCTGGGTGAATTGCGAAAGAATTTACAGGAAGAAGTCAAAAAGGTCCTGCAGACTGAGCAGGAGATGGCTTCTGATACTGCCCGGCTGGCCTGGCTGCTCCTGCAGCTTTTTGCCAAGAAAAGGAAAAGGGTCCGGGACTTGACGGCTGACCAGCTGGCTCTCCTGCAGACTGAAGAGGCTAAGAAATACGTCCTTTTTCACGGGCCGCGGGTCTATTTCCGCAACAACGCCTGCTTTTTGACCAATACTTTCCCGGCAGAACTGGTCCACATCAACGACCTTGCCGGGCTTAAAGGACAGCCGGCAGCTTTTTCTGTCTTGCTGCAGGGAGAAGAAGTGGATGGGGAAGAACTCAGAAGCTGGCTTGACCTCTTCGGTCCCTTGTATGAAGAGAAATATTTCGGCAAACACTACGGACCAGGCGTGGAACTGGCGGGGTTTCAAATCTCTAGCGGGAAAAGAGATCCCCGGATCTACTATGTCCTGCGCTACCTGCTTAAGGATAAAGAGCCAGAAGCAAGATCGAAAAATTTGGCCGCGCTTCCTTTAAAGACGATCCTAAGGCGGAATTTAGTCTGCCACGAGGCCTTCAAATGATGACGGTCTACAGCCGGGAGTATTACCAGGCAGGATTAGCCGAAGGAAAAATCAAGGCCAAAAAGCTGGACAAGTACCGGCTGGGACCGGACTTTATTCTGGCTTATGACCTGGGGCCAGCTGCTTCTTACCGGACCTTGCTAGTCGACCGGAAGCAGGGGGAGATCGTCTTAAGAGTCACGACCAAGACCCTGCTGGCCCACTTCGTCAACGAGGACCTGCCCGGCGGCTACCCCTTGCAGGACAAGCTCTACAAGCTCCTGGGGATCCGGGAGCAGCACGTGATTTCGGCGGGGCATGTGGCAATTTTTTCCCCGGAATCCTTCCACGCCGGCCTGGTGGACCTGGTGGCCCTGCAGCGGATGCGGGGGATGGAAGCCTGCCAGGGAGGGCTGCTCATGACCGACTTGGCCGGGGTCAACTGCTATTTCTTTCAGGTGAAGCGCGGCTATGCCAATGCCAGCCGGCAAGTGAAAGAAGCGGTTGAGCACAACGCCCTTTACTGCAGCCTTTTTCATGGCCTGGCTGGGCAGGTGGGCTGCCCGGTTTGCAGACAGGGTGACTGGAACCTGCTCTATGGACCCAGCTACCAGCAGGCGGTTGAGGCCGACCTGGCTGGCCGGATCCCCTCTTTAAGGCAGCTTTTGGCTGAGATCAAGGCAGAGGAGAAGGCAGTCTTAAAGCAGATCCTGCTGGATGAACTCGGCCTGCCTCTTTTACCAGATGATTTAGACTATGCCTTAAAGCAGGCTGAGAAAAAGCTCTTATTCAGAATATAACGAAAAGCCCCCGCGGTCGCGGGGGCTTTGCTTTGTTTATTTATAATAATTCAGGCTAACTGCCGGCGGAGTTTCTCCAGGGCCTGCTTCTTAATCCGGCTGGCCGTCCGGTAGGGAATATTCATTAAGTCGGCCGTTTCCTTGATGCTGCGGTCAGCCAGGAGGTTCTGGCCTAAAAGCAGCTTTTCGCTAGTCGACAGCTTCTTCCAGGCTTCCTTAAGAAGCAGATTGTGCTGGTCGGCCTGACCAACAAAGGCGGCAGCCAGCAGTGGTTCGTCGTGGTCTCTTTGCCGCTTTTTCTGCCGGAGCAGGTCAAGGATCCGCCAGTAGACCTTGCGGAAGGCCAGCTTGTCAGCTTCTTCTTGCGGCTTGTCAGCCATTTCTTGCAGGCATTGGGCGTAGACGATCAGGCCTTCTTGAAAAAGGTCCTCGTAATCGGCACACTTCCGGTAGACATGGGCCGTTTTCAAGGCTCCGGCGACTAATTTCCGCCTTTCCCAGGCTTGGTCCATTGCTTGATTGATTTGCATGTTCATTTTTTCGCACTCCTTAATTTTTTCTTGCTCGGCACCTTGCAAGTATTAGCTTAAGGGTTTTGCCAAAGGAGTGCTGACCAGGAGCAAGGAGGCAGCAAGTCCGTTTTTCCGCCCTTTACACTTTGAAGAAAATGTAAGAACGGCTATTTAAGGGCAGATTTAGGGAGTCAATCAAGGTAAAAAATAAAAGTTTTCCTAGGAGAAAAGCAAGAAAGTCGTCATAGATCATTCATACTTCCCCCGTATCATTTAAGCCATAGATCAAGAGATCTTGATCTATTGATTCCATACCTTTTTTATTCTTTCCAAGACAAGCAAATTACGCGGTCTCCGGGCCGCATCTATATTTATTTTTTTACTATAAAAAGCGCTGGACGTCGCGGTCCAGCGCTTTTTTCTTTTATGTTTACGTTCAATATTTCTTGAATTAGAAGGTCAGCTTCAAGAAGTACTTGACGAACATGGCAGCCAGTACGGCACCGGCAAATGGCGCGGTACCTGGTACGATCAGGCCGTATTGCCAGTCGTTGTTGGCCTTGTTCTTGATTGGCAGGATTTGGTAAGCCAGACGAGGGCCCAAGTCCCGGGCTTGGTTCATGGCGAAGCCAGTAGTACCACCCAGGCCCATACCGATAGCCCAAACCAGCAGACCAACCAAAAGTGGAGTAAAGCCGAACTTTTCAAACTTGGCCACGATAGCCAGGATACCACTAAAGAAGATGGTAGTGGCGATCATTTCGACCATCCAGTTCCGTGGCAGGTTACGCAGGTTAGGGTTGGTGGAGAAGATGTTCCGGCTAGCCACGCCGTCGATGGTGTCTTCGGAAGCCTTGAAGTGGTCAGCATACATGAAGTAGGCCAGAAGAGCACCGGCAAAGGCACCGGCGAATTCAGCCAGAGTGTAAGGGATGAAGCTGGACCATGGGATGATCCCCAGGATAGCCTGGCAGAGAGCCATGGCTGGGTTCATGCAGACGCCGCCGAAGATGAAGAGGCAGGCGGTAATCCCGAATGACCAGGTCGTAATGGCGAAAATGTGGCCTGAGCCGTGGTATTTGGTCTTGTTCAAAACGTCATCGCAGTGCACGCCAACACCGAAAAGAATCATGAGTCCGGTAGACAGGAACTCATTTAACAAGTTGTGTATCAAAATCCTATTCTCCTTGCAATAGATAATTTTTTAGGTACATAACAGCAAATAATTATATACCTATAGCCGGCAAAAAGATATAGGGAATCGTGATTTTTTGAGTATGAATGCGCTTTTATCGCTAGATTTAACAAAATTTCTAGGGAAAAGTAAGTGAATCGCTCACAAATCTAGCAAAGTGACCGGCAATTCCTGTTTATGGCCGCTGGGGAAATGGCCCCGGCGCAGGCGCTGGTTGAGCAACTGGCAGGTCAGGGCCGCCAGGTCCTTAATCGGCTGCTTAACGGTCAGCAGGTCCGGAAAAAATTGCGGACAAAATTGGAGCCGTCAAAACGAGAAAATGTGGAATACTTTTGGCCCCGACCAGATCGACCTGGACGTGCGGACCGAAGTTACCAAGCGTTTTGTCAAGGAAACCCTCCAGCAGCTGGTCAAGCACCAGGCCAGCTTGATCCGGCTGGATGCCTTTGCTTACGCGGTTAAGAAACTGGACACGAGCGACTTCTTCGTTGAACCTGAAATCTGGGACCTGCTGGATGGAGTCCGCCAGGACCTGGCTGGAACAGACGCGCAAATTTTACCGGAAATCCATGAACACTATAGCTTGCCGCGCAAGGTCAGCGAGCATGGCTACTTTATCTATGACTTTGCCCTGCCGATGGTCCTGCTCTATTCCCTGTATACTGGCAAGAGCCAAAGGCTGGCCGCCTGGCTGAAGCAGTGCCCGATGAAGCAGTTTACTATCCTGGACACCCATGACGGCTTGGGGGTGGTTGACTCCAAGGACATTTTGACTGATGAGGAAATTGACTACACGACCCAGGAACTGTACAAGATCGGGGCTAACGTCAAGCGGAAATACTCTTCAGCTGAGTACAACAATTTGGACATTTACCAAAGCAATACGACCTATTACTCAGCCCTGGGCAATGATGACCAAAAGTACTTCCTGGCCCGGCTGCTGCAAGTTTTTGCCCCGGGGATTCCGCAAATCTACTATGTTGGCCTGCTGGCCGGGGAAAACGACCTGGACCTGCTGGAACGGACCAAGGAAGGCCGGAACATCAACCGCCACTACTACAGCCTGGAAGAAATTGACCAGGAAGTTAAGCGGCCAGTCGTTGCCAAGCTTTTGAAATTGCTGGAATCTAGAAATACTGAAGCGGCATTTGACCTGGATGGCCGGCTGGAAGTTGCTGCTCCAAGCGATCATGAGATTGTCTTAAAGCGGGTCAACCAGGCTGGGGACCGGGAAGCGGTTCTCCGGGTGGACCTGACTGCCTTGACTTACCAGATCAGCGTCAACGGTGAGGAAATTTCCCTGTAATGGCAGCTGGAAAATTCACTGAAGAGCAACGTTAGTATCATAGTTTGTTCAAATTTACTGTGTAGTATAAAAAGCATAGACGAGCTGAAAGAACTTGTCTATAATTCATATTTCTTATATTTTTCTTTCCCTGATATACACAACATACATATACACTACCTAAGAAGCAGCTAGTCAGTAACAGCTGCTTTTTTGGTATCCAGAGATATTTTTTCATTGTACAAAATAGCCGTTATGGATTTTTATAATATATATGCGTAAAGCTTTTGAAAAATGACATTAAAAGATGTTGAAAAGGATTGCACGTGAAAATGAAAATATTTATCCTTAGAGTTAGTGGTGATTGTATTAGTTGGATATTGGAATGGGTGAAGTGTAAACATAAAGCCTGTTTTTAACGACGAAAGGGAAAGAAAAAGAAATGCAAGAAGAAAATAAAAAGCGCAAGCTTGGATATATGCTTATTTGGCACGCCCTGCCATCGGATCAGTCGAAGAAAGGGAAAAGACTATAAATATGAAAAAGCTCAAAAAGATCAACTATGCGGCCTGTTGGCCGTATTTGGCGGTCGTTCTTTTTGCCGCCTATTTGGCCTACCGGCAGATGCGAACAGGGAACATCATTATCGGTTCCGATACGATTTTCCACTTCAACCGCTTCTATGAAACCGAGGAGCAAATTAGAAACGGCAACCTTAGCTGGTTCATGACCCTGTACGGGTTTAACCAGTCAGGCCGGGTAATCAACGCGTTTTACGGCCCGGCCTTTGCCTACTTGAACGGGCTGTTGCTGCTGGCGGTCGGGACCTGGTACCGATATCAAATTATCACCAGCTTCCTGGTCTTCGCGGTCGGGGGCGTGGGGGGGATGTACAGGGCCGTGCACCGCTTTAAGGTACGCGGCAGCATTGCCGTTTTGGTGACGATCATCTACATGACTATCGGCTGGCTGCCGCGCTGGCAGTCTGGCTCCAACTTCACCGGCATCGGCGCGGCCTTGATGCCTTACGGGATTTTGGTCGCTTGCGACATGTTCTATGATAAAGAGAAGCCAATCCACTGGATTAAGCTGACCATCCTGATGACGGTCGCTTTGGAATGCCACCTGCTCACGGCGCTGATGTACATGGCCTTCCTGGTGCCAGCCTGGCTTTATGCCATCATCAAGCGCGAAAACAAGCGGGGGATTTTGCTGAACACCTTGAAGGCGGTGCTCTTAACCATCTTCTTGACGGTCAACACCCTCTTGCCTCTGTACTGGATGTCCAAGACCAATAACTTGGCGCCAACGGCAACAATGAGGATGCTGGAAAACGCGGTCCACTTGAAACACACCACGGTGGCCTTTCACCCGTTCAGAATTCTGACCCACAACCTGCGAGCCAGCTTGACTTTCTGGCTGGCCTACGCCTTTATCGTCTAGGTTATCTACGCGATCTGGACGCGCGAGGAAAGCAAGGCCAACGTCGTCGTCTCGCTTTATGGCGGCTTTTGGCTACTTCTGGCCTCCCGCTTGGTTGAATGGGACCGGATCACTAACCACTTGCCGGCCTTGGCCCGCTTCATTCAGTTCCCATCCCGTTTCGTCTGCATCGCTTACCCCTTGCTGATCGTCGGGCTGGGTCTTTCGTTTGAGCACATCCTGCATCACAAGCAAAAGTGGGTCCAAATCGCGGCCTATGCCTCGCTCGGTATGCTGACTTTCGCGGCAGCCGACTGTCTGGTCATCACCTTGACCTCCAATGCCTGGGCTGGCTACCAAAACAACGTTGGCCGCAGCCGGAACACCAAATTCGGCGAAGAGACCCAAAAGACCAGCTCCCGCAAGAAGAAAGGCAAGAAGAAAAAGAAGGCGATGGAAGACTACGGTGTCTATCACCCAGTCAAGCTGGATGACCGGCGCAAGCAGGCGCTGGTGGACACTAACGCGGCCACCCACGCCCATGACCTGCAAGCCTTCCTGGACATGACCAAGAAGGCCATTCCGGACTACCTGCCGGTCTACAAGTGGGATCCAGAGCCTGACGTGCCAAGCCACTTGTACACTTACAAGTGGAAGCAGTATTATACGATAGAGAACTCCAAGATTACCGCCGCTTACCGCAAGTCCGTCATGAACCACAACCGCAATGTCAAGGTAAAGACGGTCAAGCACGGCTTGAAATTGACCTGGAAGGCCAAGAAGGGCAAGCACAAGCAGCAATTGCCAGTCATTATCTACAAGCAGTCCAAGCTTACCGTCAACGGGCGGGTCTTGACCAAGTACAAGCGTAACCGGGTTGGCGCCCCAACGGTTCCCGAAAAGACCAAGGGCACCAACACCGCCTACTTGGAATTCCAGACGTCGTTCTGGATCAAGTTGGCCATCGCAGTCTCTTTGCTGGGGCAATTTGCCGCAGTCGTTTGGGGCCTGCTTTGGCGCGGCGGTTCTTTCAAGAAGAGAGAAGAAAAGAAGGCATAGCAGCAATGAAAAAGATTTCAATTATCGTGCCTTGCTACAATGAAGAAGAGGCCTTGCCCTTTTTTTATCCGGTAGCGCATGAGGTGCTGGAAAAACTGCCCGACGACTACGAGCTGATTTTTGTCAACGACGGGTCCAAGGACAAGACTTTGGAAATCCTGCGCGACTTGGCCGCCAAGGATCCCCATGTCTTTTACATTTCATTTTCAAGAAACTTCGGCAAGGAAGCCGCCATGTACGCGGGCTTCGTCAATGCCAGCGGGGACTATGTGGCCGTGATGGACGCCGACTTGCAGGACCCGCCGGCCCTTCTGCCGGAAATGATCAAGATCCTGGACTCCGGTGAATATGACAGCGTGGCCACCCGGCGGGAGGACCGGAAGGGTGAGCCGCCGGTCAGAAGCTGGTTTGCCCGCAAGTTCTACCAGATCATCAACAAGATCTCTGATGCTGACGTGGTCGACGGGGCCCGGGACTTCCGCTTGATGAAGCGGGACATGGTCGACGCGATCGTGGAGATGAGCGAATACAACCGGTTCTCCAAGGGGATTTTTGGCTGGGTTGGCTTCAAGACCTACTGGCTCCCTTATGAGAACGTGGAAAGAGTAGCCGGGGAAAGCAAGTGGAACTTTTGGAAGCTGCTCAAGTACGCCATTGACGGGATCATCAACTTCTCCTTGGTGCCTTTGAACCTGTCTTCCTGGATGGGTTTCTTCATGACCGGGGTGTCCTTTATCATGCTGATCGTGATCGTTCTACGCAAGTTGATCAAAGGGGACCCGGTAGCCGGCTGGGCTTCCTTGATCTGCGTGGTGATCTTCATCGGGGGCCTGGTCATGCTCAGCCTGGGCGTGATGGGGCAATACCTGGCCAAGATCTACATGGAAAGCAAGCGCCGGCCCCACTACATTTCCAGTGAATCAAATATTAAAGACGTTAAAAAGATCGACTAAGGCCGGTCTTTTTATTTTTCTACTTTTTTACTCTTCTTCTTGGCCGGTAAACTGGGCAAAGTACTTGTCCAGGTAGACCTTGTAGCTGACGGTCATGATGACGTTGCGGAGCATGGTTTTGTATTCGCCATACTCGTATTCGCCATGCTCGTGGCCGACGTCGGTCAGCTCGCCTTTAAAGCCGAAGACGTAGGCCAGAACGTTTTCCAGTTCATCAACCATGTAGTTGTAGGCTGTCTCAGTGTCGTAGTTGGACCGTTGCAGCTTCAGGGCCTCGCACAGGTCAGCCAGGGAGAGGACGTTTTTGGATACGGCGATAAAGACCAGCTCAGCGATCTGCTGGCGGCTGTAGAGCTTCTTTTTAGGTGAGGCGATCAGGTCATGCTTGACATAGTTGCTGACCATGGAACTGGTCAGGTGGACGTTTTCCAAGGGGGCCAGGGCTTCATTGATATAAGTAGCGGTCTGCTCCAGGTACAGGCCCATCTGGGGCAGTTCCTGGTAGCGGGGCAGGTGCAGGCCGGCCAGGGAACGGGCAATTTTTTTCATAAAAACCTCATGTCAGCTGATACAAAAAATAAGGATAAAACAAAATTCGATCATCCACATTATAGCAAAGCAGCTTAGCGGTTTTTGAAAAACTTGACACGAGGACTTTCCTGCTATAGACTTAATCAAAAGTTTTTAAGAAACCGATGACGAGGATTATGAAATATGTCAATTAAGATAGTAACTGATTCCGGAGCTAACATGACAGCGGGCAACTTGGGGAGCTGCCAGTTGGAAGTAGCGGCCTTGAGCCTGATTCAAGGGGACAAGACATGGCTGGACGACGCCAGCTTTGACCAGGCGGAATTCAATCAAAGAGCCAAAGACGGGATCGCGGCGTCTTCAGCCTGCCCCAGTATTTCATCCTGGCTGGACGCTTACGCCGGGGGCAGCGAGATCTATGTCGTGACCATCTCATCGGTCTTGTCCGGCAGCTACAATTCAGCCGTGCAGGCGGCAAAGATTTACCAGGAAGAATACCCGGATGCCTTGATTCACGTTTTTGACAGTAAAGGCGCGGGTCCGGCCCAGTTTTTGGCGGCGGAGAAGATAGCGGAACTGAAGGAAAAGGGGATGCAGTTCCCGGACCTGGTGGAAGCAGTGAGCGACTACCTGGAAAACCATGTCCGCGTCTTTTTTGCCTTAAAGTCGATGACCAATCTGGCCAACAATGGCCGGGTCAGCCCGGCGGTGGCCAAGATCGCCGGACTTTTGAAAATCTGGGTCTATGGCTGGGCAGAGGAAGGCGAAATCAAGCTCCTGGGCAAGGCCAGAGGGGAGAAGAAGACCCTGGCAGCTCTGCTGAGAACTTTGGAAGAGAAGGGCTACAGGGGCGGCCGGGTCAAGATCGACCACGCTGACAACTTCGACAGCGCGGCTGAGCTCCACGACTTGATCAAGAAAAAGCGTCCAGAGGCCAGGGTTGACCTGGGCACCTGCCGCGCCCTATGCAGCTTCTACGCTGAAGCGGGCGGGTTGATGATTGGAGTAGAAATTTAGCATGTAAAAAATCAGCACCGGTCCGGGTGCTGATTTTTTTACTTCTCGTCTTCTCGTCTTGTCTAAGTAATGACCAAAATTGTTGATCGAGCAGACATACATGTCCCGGTCCTGGTAGCTGGCCAGGTGGCGGCGGGTCAATTCGTCCTTGTAGGCAAAATTGGTGAAGTAGTAGACCAGCTGGTCGCCCGTCCGCCGCTCGATCAAGGTCAGAGGCATTTCCAGGTGTTTTATTCCCTGGGAAATATGACTGACCATGGGGTTGACTAAAATGTTGGTTTCACCGATCGTGTCGTAGTAGTCGTTCATCTCTTGCGGCTCGTAGTGGTCCAGGCCGTTCTTTTCGATCAAGGCCAGCATCTCTTCTTGTGGTAGGGGCTTGGAGAAGTAGAAGCCCTGCAGGCGGTCGCAGCCGATGGCTCTGAGGAAGTCGGCCTGCTCCTTGGTTTCGACTCCTTCGCAGAGGGTGTGGATGACCAGGTGCTTGTTCATGTCGACGATTTCCCCAAAAATAATATGGCTGCGGGAATTAGTCTTGAAGTTTTTTCGCCGATTGTAAAATTAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACTTAAACTTCCCACTTACAAAAGTGGGAAGTTTAAGTTAGTCTAAAAAATAACTAATTCTTTTCTGGCATAGAAAGGTACAAATGCGAATTTTATTACTCGGCGACAGCATCTTTGCCCGCAAGGAAGGGCTGGATCAGCCTAGAATCAATTGGACCTTGAAAGAGAAAAAGCTTGACCTGGAAATCGACAATACGGCGGTGTCCGGTATCAATTCCGGCGCCCTTTTAGCCCTGTTAGGAGACCTGGCCTTAAAGCGGCCCCGGGCTGGCCAGCTTTTCTTAATGGTCGGAGTCAATGACGCGGCCAGCCATAAGCAAGTGCCACTAGACCAGTACCGGAAGAACCTCCAGGCTATTGTCTCCGCCCTGGTCTGCTTTTATCCGGGGACCCAAACCGTCCTGGTCTCCGGGCCGGCGGTGGATGAAGATAAGCAGCGGGGGCGGACCAACGCAAAACTGGCAAAGTATGCTAAAGTAATGGAGGAAGTCGCGGCTGAATACCAGGTTGCCTATGCCGACTTTTTCACGGCCATGCTGAAGGAGGGAAACCTGAAAGCCCTGTGCCGGGGAGAACTTGACGACGGCCTGCATTTTGGCCCGCGCGGTTATCAATTGCTGGCAGCGGAAATGATGAAGCAGCTGCCCAAGGAAGAGGTTGAACAATGAAGAAGATCTACGTGGTTCGCCATGGCCGGACCTATTTGAACAAGTACCAGCGCCTGCAGGGCTGGTCTGACGCCCCTTTGACTGAAGAAGGGATCGAGGGTGCCCACCGGATGGGGAAGGCCTTGAAGGACCAGCATTTTGACCTGGTGGCCTCCAGCGACTTGAAGCGGGCGGCTGACACCCGGAAGATCATCGTTTCGGAAAATGACAACTGGGAGTCAACCAAGATGACCCAGACCGCTGACTTGCGGGAGCTCTTTTTTGGCTACTACGAGGCCTTCCATGATACGGAAGGGGTAGCGGCGGCCTTCAAGTCCACCAAGTACCCCCGCCTGGTCGACGCGGTCAAGGACGGCTACACTTGGCAGGAAATCGGGAACTTGTTTCACGCGGCTGACCCGGAGGGGGATGCTGAAAGCGGGAGCGAGTTTGAAAGCCGCTTGAAGCGGGGGATCGATTACCTGGTCAACTATGATGAGTCAGAGCGGATCCTTTTGGTTGGCCATGCCTGCGTCATCCATTGCCTGGCCTGCATCTACGGTGGCAAGCACCTCAGAACCGACTTGCCTAAGCACAACGAGATGACGGTCTTGAATGTCGATGATAACGGCCAGGTCAGCCTGGAAGAATTTGGCCGGCCGATGTACTGACTTTTGCCCAGCTGGTCTATAATAGCTTGTAGGGAGAAGTAGGGAGAGATCTATCGAAAATGGTAGGTGAGACAGATGATTAGTAAAGAAGACAAGTTGCTGATCCGGCGCTGTCTTTACGCCATGATCAACATGTACGGCATTATTCCGCTGAGACACGCGTACCATATTTTTAGCCACCAGAACCCCCTTGCTCAACGATGAGGATGAGGAATTCTACCTTTACGGCGACTGGGTCTTGATGGACCTGCCGCAATATTTCAAGCGGATCAAAAAGCTCCAGCACAACCGCCTCTATTACGTGCCGGAGAGGGATTAATTTTTGCGCCGGGAAAACGAATGGTATTATGAACGGACCACGGCGACGGAAGAGTACCGCCAGTATCTGAAAGACAGCAATCCAGGCCTCGGCGACGACCGGCTGGAGGAAGCCTTCTTTGAGGCGCTGACCCAGCTGCACTCGGTCAGCTACGGCAAGACGGTGGAAGAGACCATCAACGCCGTGCCCCGGTCTCTGCGCCTGATCGGCTTCACTGTAACGGACGAGCAGGAAGATGAACTGCGGGACTTGCTCAGACGGATGCTGGACGGAACCCGGCAGGAGGCTTTGCGGGGAAAGATGTACAAGTACCACAAGCTGTCGACCACTTTGGAAATCATCGAGACGGAAGGCTTGACGCCGGAAAACATCTCCCGGATCCACAGCGGGAAGATCGACGCCATGGAACTGGTGCCCCAGATCGAGCTCAAGCAGCCCAACCTGGCCCAGCAACTGGCCACGATTTACCAGCAGTAAGGCAAAAGTCAATGGTAACACCTTACTGAAGTAAGAGACCTGAAGCGCAAGCTTCAGGTCTCTTATCTTTAGCAGGGAAGCTGGGGAAATCCAGCTTTCATTGTCTAGACTAAGCAATCCAGTCGGCTTCGGCCAACAGGATTGCTACGTTATCCATGTATCACACCCAAGGATGATGCCCAAGTCTTTGGCTCTGTGGCAGCTCTATAAACAGTCATGAGGTTAACGTGACAGTCAACTGCGTTGGCAAGCATGGATAACATTGTCGATGGGCATCAACGCAAATCCAGATTGTGGGTCTCCTGGTTTGGACAAGCGGCAGGAATCACGGTTTCCTGCATTACGGAAAAGGAGAAAAAATGGAGCATGAAAATGCCAATCGGGTGTTTCTGCTCAACAGGGACGGCAAGCCGCTGATGCCGTGCTGTCCAAGAAAGGCCAGGCTGCTTCTGAAAAGCGGCAAGGCTTTTGTGGTCAAGAAATATCCGTGGCTTTGCTGTGGTCAGTTAACGAAAATGATTAGAATGAGATGCCAAAAAAGTACAGGTTAATTAAACTAAAAATTCAAATTATTATTGATTTTTATTTTTTATCACTGTAATATTATGTTCAACAAAAAATAATAACGGCTTTGATAAGGAAAGTAAGTTTTACTGAAGTACTACAGAGAGTTTCTGGTTGGTGCAAAGAAACAACGAAAGTTTAGCTGAAAATCACCTTTGAGCAGAAATTACGAATTGAGTAGTTTCAGGGCACGCCCTTTATAGCGTCGACGTATCGCTCTTTTTTGAGCCGCACGTGTAACGAGGCTGGGTTTATGCTCAGCGAACAAATTGGAGGAAATTATTATGGACAGATTTAGTAAGTTAGCAGTATCAACTAAAAAAGTTTTAAAGTGGGTATTAGGATTATTAATAATTAATTTTATCGGGTTAATGCTAATTACACTTTATTCAGCTTATTATAGTTTTGGTACTATGATTTTCGGTGTCCATACTGAATCTGCAATTAAAGATTTTTGGAGTACAGAATTTATTACTGCAATTCCATTTGTTATTGGTATAAATTTACTTGCAATTATTACTGCAAGTGTTCGAATCTATAAGAACAAGAAAAAAGAAAACAACTCTTAGTCTGACAATGTTAATTTCATCGATAAAGTCAGTAATTAATCAATTTATATGAGTCTTATCTTATTCCTTGGTAAGTCTTAATAATTATTTTCAAATATGGAGGTCATAAAAATGAAAAAACTTTCTAAATTGACAGCTTAAGCAGCTGTAGCCGTATCATTATTATCCGTAGCTGCGCCTACATTGACGTCTACTGTTCAAGCATCAACTACTGAGGGTAGTCAAACACAACCCAAGTTAAGTTTGTCTGCTCAAAAGAAGCTAGATCCATATGTAACAGTTAAAAATAATCATTATGTTTTGGGCGAAAATGCGAAAAGAGTTGTTTCAGAAGAATACAACGTTGCAAAACAAGTAATTGCTCAAACTAATGTTACTGTTGAAAATTCAGGATCTGTAATTAACAAAGATATAAACCTGAGGGGAAGGCATTTAATTGGTTGGGGTTGCTAAATCGTCTGATATCTCCAAGCTCACTAATAATTCTCAAGGCAGTATTTTCGGCGATGCCAGGAATGCTTTTAAGGATCTCCAGATCACGCTTGGGAGCGAGCTTGGCCAGCCGGATAAGCCTCTGTTGCCAGATCATTGGCACGTTTTTTACCAATACCAGATAAGCTCTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAATACGATATTAGGGTGTGGGAATCTGAGAACAATACTCAGCCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCAGTTTTGTTTACGACATCATGTGTCCAAAAGACGCACGGTATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGATTAGTATTTTTTAATAGCCGCGGTTGACCTTGCCGGCGTAAACGGCAAAAATCGCCCGCAAGCGTGGGGCCAAGGCAACGACCAGGGCCAGCTTGGCTAAGGTTGTGGGCAAAAAAGGCCAGATGGCAGCGTTAGCCGCGGCCGCGAATGGCAAGTGGCTGATCCAGGCTAGCCAAGCAGCGCCCAGCAGCAGTTGCAAGAAGAGGGCAATCCCGGCCGCCAGGGTCAAATAAAATCTGTTTCCTTTATCCAGGCCCGTGATCAGGGCCAGGGGCAAGAAAGCCCAGAGAAAGCCTCCGTTAGGCCCGAAAAGGACGGCGATGCCACCACTGGCGCCGCTGAAGACGGGGAGACCGGCGGCCCCTAAGAGCAGGTAGAGGGCGACGGCGCCGGTTCCCAGCTGCCAGCCAAAGGCAGCCGCGATTAGGGGGATTATCAGGGTCTGCAGGGTAAAAGGGACCCCGCCCGGCAAGGGGACCGCCAACTGGCTGCCGACAATGATCAAGGCTATGGAGAGGGCCAAAAGACAGAGCTGAAAAGTATTTTTTCTGGACATTTTTCTCCTCCAATCCAGTAAAACTATTGCTTGCTTGATTAATATAGTTTTACTGGGGATTTTTGTCAATAAGATGCTTTATCAAGTACATGTATAGCAATTGCTGGAGGGAAAAGTAACAAAGATAAAGGTTAGGTAAAAAGATGCAAAAATATGGGGAAAAGCAGGTCTAGTGGCTAAGCCCCGGGGATGCTACTAGATATGCACAACTTCCACAGGAGTTATCCACAATATATCGTAGCTACTTGCCGGAGTAAGGCCCAATATGTGGAAAAGGAGAAAATGGGGGTAAGATAAGCTGAAAGTAATTTTTTGCACTGCTATAGCTTTTTGTCTATAATGGAAACTTAACGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATCCATATTCTAACACTAAACCACACCAAAAGGGCAAGCACCTTAAGCTGAAGGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTACTCTAATCGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAAGCGAATGCGGCCGCAAGAGCTGTTTCTTCGCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCAAGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTTCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGTACGAAGCATCGATGAACGTAGTCCTAGAATCGAAAGCCGTAAGGACTTTGGTCACTGGGAATGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATGTGTTGCTTACTCTGTGCGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATCGAGGATAAGACCTCAGCTAGCGTTATGGAGGCATTTGATAAGCTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGAGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCATCCTTATATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCAAGGGAGACCGTATGGATAAGTACCGTGTGGAAGATATTGCTAAGATCGAGGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGATTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCGGCGTAGATAGTCAAAATCTACCAGATGTGATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGAATGGAAACTTAATACGCCTAATAGAAACAAGCAATGTAACGGAAAATAAGGAGGCCACATGCGCTATCAGCAAATTATCCTGGACGTTGACGACACCTTGCTCGACACTGAAGCAACGATCCACGACTCCCTGGTTCAGCTCTTCAAATCCCATGGCTGGGAGATCAGTGACGAATTTGAAAAAGAATTCCACGCTTACAACCAGGGTCTCTGGCGGCGGCTAGAAAAGGGTGAGCTGACCTTGAACCAGCTCTACGAGATCATGTTCCCGGATATTATCAAGAAGTACTGCGGGGTTGAAGTCGACGGGATGGAGACGGCTGACGAATTCCATAGCTACTTCCACACCGGCCACAAGCTCCTGCCCGGGGTCAAGGAAACCCTCCGCTATGCCAAAAGACTGGGCTACAGCCTGGCGGTTTTGAGCAACGGGGAGCAATTTGGCCAGGAGCACCGGCTGGAATTAGCCGGGATAAGACACTACTTTGACCTGGTCGTGACCAGCCAGGAAGCCGGGGTGCAGAAGCCAAACGCGGAAATTTTTGACTACTTTTTCGCCAGAAGCGGCTACAGCCCCAACCAAACTGTCTTCTTCGGCGACGGCCTGTCCTCTGACATCATGGGAGCGGAAAACTACGGCTTTGCCAGCATCTGGTTCAACCACCGCCACCGGCAGAAGACCCTGTCAGTCCACCCCCTCTTTGAGGTGGACAACTATGCCCAGTTCCAGCGGATCTTGAAAAAAGACTTCGCCCCGACCGCTCTGCGTTAGTTTCCGTTATACTTAAAGCAAACAGACTTTAAGAAGGATTTGGGTAAAAATGGGAAATTACTTTTTTGATTTCGACGACACGATCTGCGAATCGCGCCACATCTACGCGGCCAGCGTGCAGAAGACCTTCGAGGCCCGGGGGGTCAAGGTGCCGAGTACTGAAGATATTTACCAGGCCATGGGGATTCCGATCGACGTCTCAATTGCCCGCTGGGCCCAGTAGGGACACCGAAGCGACCTGGCCCAGACCATGTTTGCGGAAAGCATGGCGGAATATGTCCTGCTGGAGGACGACCAGGTCCGCCTTTTTCCAGGGATCGTGAAGACCTTGACCCAGCTGAAATTGGCTGGCAAGCAGCTCTTCGTCTGCTCCAGCAAGACCGACCCGGAAATTGCCCATAATCTGGAAAATCTGGGTCTGCTGGATCTGTTCGTTGATTTTGTGGGGGCCGATGAAGTGGTTAACTACAAGCCGGCCAGCGATGAAATCGACCTTTTGGTCAAGCGGCATGGTTTGAACTTAAGCGAGTCGGTCATGCTGGGGGATGCCAAGTACGATATCCGGATGGGGAAGAATGCTGGCTGCGCGACCTGCGCCTGAACTTGGGGCGCCTTTGACCCGGCCAGCCTGAAGAAGGAAAAGGCTGACTACACGGTCGACTATCCCCTGGAAATTTTGGCGATCTAGAAAAAAGCAAAGAGTAAAAACGACAGAGAGTAAAGAAAAACAGAAAGTGAAGATAAAATGCGACTGATTTCTTGGAACATTGACTCATTGAACGCGGCCTTGACGGGGACTTCCCCGCGGGCGGAAATGACCCGGGGGGTCTTGAAAAACTTGCATGACCTGGACCCAGATGTCCTGGCCCTGCAGGAAACCAAGCTGCCGGCCAGCGGACCAAGCAAAAAGCATCAAGCGGCTCTGGCTGACCTTTTTCCGGAATACGATTTCGTTTGGCGGTCCAGCATGGAGCCAGCTCGGAAGGGTTACGCGGGCACGATGTTTTTGTATAAGAAGGGCCTGGAACCGGTAGTGACCCGGCCGGAAATCGGGGCCCCGGAGCCGATGGACTTTGAAGGGAGGATTTTGACTCTGGAATTCCCGGACTTTTACGTGACCCAGGTCTACACGCCAAATGCCGGCAACGGTCTGGTCCGCTTGGGTGACCGGCAGGAATGGGACAAGTGCTACCGGGCCTACCTGGAAGAATTGGACAAGAAGAAGCCGGTCCTGGCCAGCGGGGACTTCAACGCCGCCTACCAGGAAATCGACTTGAAGCACCCGGAAAACAACCACCATTCCGCCGGCTTTACGGATGAAGAAAGAGCGGGCTTTGGCCAGCTTTTGGCGGCGGGCTTCACGGATACCTTCCGCCAGATCCACGGCCAGGTGGAGGGCGTCTACTCCTGGTGGGCCCAGCGGGTACGGACGGCCAAGGCCAATAATTCCGGCTGGAGAATCGACTACTGGCTGGTTTCCAACCGCCTGGCTGACCAGGTGGAGAAGTCGGAAATGATCGAGACTGGAGAAAGAGCGGATCATTGTCCAATTTTATTGGAAGTTAAGCTGTGATTCGGTTACAGTTAGAAGTTAGAGGTTGAAGAAACAAAGAAGTTTTAGTTAATTTTTAGTATATTAGGCGTATGTGTATATGAAGAGATTAGAAAAAGGGGTCATCGGCTTGATCCTGGTCATTTTTGCCGGCACGGTGATTATGGCCGTCTCGAGCGGTGGCCAGAAAGCAGAAAGCAGTTCAGATGCCTTCGATACTTCAGAGTACCGGAAGGCAGTCAAGTCAACCGACAACCACCACTTCAAGAACATGAAGGTGGAATTGTCCGGCAAGAAGAGCAAGAGGGTTGACCTGGATTTTACGGCCAGCAAGAAGGACAGCGTGCTGATCAGCAAGCAGACAGTTAAGCTGCTGACCCCTAAGGGGCAGGAATTGACTCATGCCACGGTTGGTGAAATCGGCTATGACCCGGACAGTGACAAGGTCTTGATTTTTGCCAGTGACAAGAACTACAGCCGGGGGTTCTATCCTTTAGGTAATTTGAAGCGGAACGAACCGAGCCCGGCTAGTTTGAGTGCTGACCAGGATCCGCTGGAATTCAGTTTTAAAGATTAAGCAGAAGGACTTTCGCTTTAAGCGGCAGTCCTTTTTTCTTTCTTGTTACTTTTGCCTTGTTTCCTGAATTTTTAACCGGCTTGAAACTTTTTTAATTAAGTAAGGCTTGCACTTTGGACAAAATTGTTTTATTGTTGATTATTAGAAAATAATTGATAACATATTAAAAATAAGGAGGAATCTTTGATGAGAAAAGTAGCAGTGATCGGCATGGGACACGTTGGGGCCACGGCGGCCTTTATTCTTTTTACCCACGGGGTAGCGGACGAATTGGTCTTGCTGGACAAGAATGAGACCAAGTGCCGGGCTGAATGGGGCGACTTGCGCGACACCCTGGGCAGAAACGACTTCTACGTCAACGTCAAGTGGGGCGACTGGAAAGAGCTGGCGGACGCTGACTTGATCATCACCGCTTTTGGTGACGTGGCGGCCTCAATCACGACAGGCGACCGGTTCGCGGAATTCCCGATCAACACCAAGAACGCGGTTGAAGTTGGCCAGAAGATCAAGGACAGCGGCTTCAAGGGCGTCATCATCAACATCTCCAACCCTTGTGACGTGGTAACCTCCATCTTGCAAAAGGTGACAGGCCTGCCAAAGAGCCAGGTCTTCGGGACCGGGACCTTCCTGGACACTTCCAGAATGCAGCGGGTTGTCGGGGAAAAGCTGGGCCAGGACCCGAGAAACGTGTCCGGCTTCAACCTGGGCGAGCACGGGTCCAGCCAGTTCACGGCCTGGTCAACTGTTTGGGTCAACAACCGGCCAGCCAAGGACCTCTTCAATGAAGCAGAGAAAGAAGAAATGGACCGCTTGAGCAAGGACAATGCCTTCATGGTCGGCAAGGGCAAGGGCTACACCTGCTACGCTGTCGCTACCTGCGCGGTCCGTTTGGCCAGAGCCGTCTTCTCTGACGCCAAGTTCTACGGCCCGACCAGCTGCTACGTTGAATCTCTGGGGACCTACATCGGCTACCCGTCAATCGTTGGCAAGCATGGGGTAGAAGAAGTGCCAGTTCTGGACTTGCCAGCTGACGAACAAGCCAAGCTGGAAGCTTCCGCTAAGAAGCTGAAGGACAGCCTGGCCAGCTTGGAATAATTAAAACGATTCTGACAAGTCAAAAGAATTTTAGCGTAAGAAAATCCTCCCGGGTGGGAGGATTTTTGTTATAATGATCCTAATTACAAAAAGTAAGTAAAATGACAGGAGGCAAAAAATGACTTTGCACGGTTTGGAAGATACTTACGAATTAGCCAATGGGGTCAAGATCCCGGTAATCGGTTTCGGGACCTGGCAGACGCCAGACGGCGACGTAGCCCAAGAAGCAGTTGAGACAGCCTTGAATGCCGGCTACCGGCACATCGACACGGCCGCAGCTTATGGCAATGAAGCCAGCGTGGGCCGGGCCATCAAGCGCAGCGGTGTCAAGCGGAGCGACTTGTTCGTGACCAGCAAGCTTTGGAACGGGTCCCACAGCTATGAAGGGGCCAAGGCGGCTATTGACGACAGCCTGCTCAAGCTGGACACGGACTACCTGGACCTGTACTTAATTCACTGGCCAAATCCAGTTGCCATCCGGGACCACTGGGCAGAAGGCAACGCGGAAGCCTGGCGGGCCATGGAAGAAGCCGTTCAAGCTGGCAAGATCCGGGCAATCGGGGTCTCCAACTTCCGCCGCCACCACCTGGAAGCTCTCTTAAAAACGGCAGAAATCAAGCCCGTGGTCAACCAGATCTGCCTCAACCCAAATGACTTGCAAGCGGAAGTAACGGCCGCTAACAAGGAATACGGCCTTTTGAGCGAGGCTTACAGTCCTTTGGGCACGGGCGGTCTTTTGGGCAATGAGACCATCAAGGCAGTTGGGGCCAAGTACGGCAAGTCCAGCGCCCAGGTTTTGATCCGCTGGTCCCTGCAGCATAACTTTTTACCAATACCGAAGTCAGTTCACCCGGACTACATCAAGGCCAACGCTGAGGTCTTTGACTTTGCGCTTACTGCAGATGACATGGCCAAGCTGGATGGCCTGCAAGGGATCGGCCAGCCAGTCCTGGATCCGGACCAAGCCGAATTTTAAAGACAAAAGCAAAAAGAAGTAAAAAAATTATAAGAAAGACTATATAATATGCCGAAAAGCGAATTGGTGGTTATATAGTCTTTTTGTATATATCCGGAAAAACCGAACAAAAATTGCTAAAAATTTTTTCAAAAAATTTGGCAGCGGGTGAAGGCTTACGGGGCTTGAATTGAGCCAACACACAGTTTCTCGTGTTCGCCTAGTTACACAACACTACATCTTGTGTTTCACAGGAAGAGTGCTAATATCATAGAGTACTTAAAAATAATGCGACAAGCAGAAAGGACCTGAGAAGATGAGTGAAGGAATATCTCTCTCGGCGGAATTTATCGACCGGGTGAAAGCGAGTGTAAAACCTCACTGGGGCAAGCTGGGCTGGGTCACCTACAAGCGGACCTATGCCCGCTGGCTGCCGGAAAAGGGACGGAGTGAAAACTGGGATGAAACCGTCAAGCGGGTGGTTGAAGGCAACATTAACCTGGATCCCCGCCTTCAAGACTCCCCAAGTTTGGAACTGAAGCAGAGCTTGACTGAAGAAGCAGAGCGGCTCTACAAGCTGATCTACGGCCTGGGCGCGACGCCATCTGGCCGGAACTTGTGGATTTCCGGGACTGACTACCAGAGACGGACCGGGGATTCCTTGAACAACTGCTGGTTTGTGGCCATCCGTCCGCAAAAGTACGGGGACAGCAAGATCGTGCCCAGCTACCTTGGCAAGCAGGAAAAGGCCGTTTCCATGCCTTTCTCTTTCCTCTTTGACGAACTGATGAAGGGGGGCGGGGTTGGCTTCTCAGTTGCCAGATCCAACATCAGCCAGATTCCCCGGGTCGACTTTGCCATCGACCTGCAGGTGGTGGTCGATGAGAGCAGTGAATCCTACGACGCTTCCGTCAAGGTCGGGGCCGTCGGCAAGAATGAATTAGTTCAAGATGCTGACAGCATCTACTACCGCCTGCCGGACACCCGGGAGGGCTGGGTTTTGGCCAATGCCCTCTTGATTGACCTCCACTTTGCCCAGACCAACCCGGACCGTAAGCAAAAGCTGATCCTGGACTTGTCCGACATCCGTCCTTACGGGGCAGAAATCCATGGCTTCGGCGGCACGGCTTCCGGCCCAATGCCCTTGATCTCCATGCTGCTGGACATTAATGAAGTCTTGAATAATAAGGCTGGCGGCCGCCTTACGTCTGTTGATGCCGCCGACATCTGCAACTTGATCGGCAAGGCAGTCGTGGCCGGCAATGTCCGCCGGTCAGCGGAACTGGCCCTGGGCTCAAATGATGACCAGGACTTCATTTCTATGAAGCAGGACCAAGAGAAGCTGATGCACCACCGCTGGGCATCCAACAACAGCGTGGCAGTTGATTCAGCCTTCAGCGGCTACCAGCCGATCGCTGCCGGGATCCGGGAAAACGGGGAGCCAGGGATCGTGAACCTGGACCTGTCCAAGAACTATGGCCGGATTGTTGATGGCTACCAGGCTGGAATTGACGGGGACGTGGAAGGGACCAACCCTTGCGGGGAGATCTCCCTGGCCAACGGGGAACCTTGCAACCTCTTTGAAGTCTTCCCGCTGATCGCGGAAGAACAGGGCTGGGATTTGCAGGAAGTTTTTGCCTTAGCGGCCCGCTACGCCAAGCGGGTAACCTTCAGTCCTTATGACTGGGAAATTTCCCGGGAAATAATTCAAAAGAACCGCCGGATCGGGATCTCCATGTCCGGGATCCAGGACTGGCTTTTGACCAGACTGGGCAACCGGGTGGTTACCGGCTTCAAGGATGACTTTGACCCGGAAACCCATGAAGCTATCAAGGTGCCAGTCTACGACAAGCGGGCCATTAAGATGGTTGACCAGCTTTACAAGGCCGTGGTCAAGGCTGACCAGGACTACAGCAAGACTTTGGGCTGCAATGAATCAATCAAGCATACCACGGTCAAGCCATCAGGCACGGTGGCCAAGTTGGCCGGTGCCAGTGAAGGCATGCACTTCCACTACGGGGCTTACTTGATCCAGCGGATCCGTTTCCAGAATTCTGACCCGCTTTTGCCAGCCTTGAAGGCCTGCGGCTACCGGACGGAAGCCGACATCTACACGGAAAACACGACCTGCGTGGAATTCCCGGTCAAGGCGGTAGGGGCGGACAACCCTAACTTTGCCTCAGCTGGCACGGTTTCAATCGCGGAACAGTTTGCCACCCAGGCCTTCTTGCAGACTTATTGGTCGGACAACGCGGTTTCCTGCACGATTACTTTCCAGGATTCCGAAGGTGACCAGGTTGAATCCTTGCTCCGCCAGTACCGCTTTATCATCAAGTCAACCTCGCTTCTGCCATACTTTGGCGGTTCCCTGCAGCAAGCGCCAAAGGAACCGATCGATAAGGAGACTTACGAAAAGCGCAGCCAGGAAATTACCGGCAACGTGGAAGAAGTCTTCAGCCAGCTGAACAGCGACGTCAAGGACCTGGAACTGGTCGACCAGACCGACTGTGAAGGCGGCGCCTGCCCAATTAAGTAAGGCAGGCAAAATAGTGTTAAAATACATAAGAAAAAACTAAAATAAAAAACGGGAGGAACAAAAGATGAAAAAGAAGATTTTAGCAGTCGTAGTTGCCTCGGCAGCCTTCATGGGCCTTTTTGCCAGCCAGCCAGTCCAAAAGCAATATGTGCAAGCAGCCAAAAACACTAAAACGGCTAAGAAGACTACTAAGAAGGCCAAGGCTAAGCAAATCAGCGTGACCTACACTTTGAAGGACACGACCAAGGCCAAGAACAATCAAACCCTGGCTAAGAAGACCTTCAAGGTCAAGAAGGGGACGAGCGTCTTCACTGTTTTGAAGAAGGCCTGGAAAGTCAACTACACTAAGTCTTCATATGGTGTCTTCATTACCAAGATCAAAGGACTGGGCAATGAAAAGAAGAAGCTCTACTGGACTTACACCGTTGACGGCAAGATGGCCAAGGTGGCAGCTGACAAGCAAAAGCTGACTAAGAACAAGTCCAAGGTTGTCTTCACTTTGAAGCAATATGTGCAAGCAGCCAAAAACACTAAAACGGCTAAGAAGACTACTAAGAAGGCCAAGGCTAAGCAAATCAGCGTGACCTACACTTTGAAGGACACGACCAAGGCCAAGAACAAGCAAACCCTGGCTAAGAAGACCTTCAAGGTCAAGAAGGGGACGAGCGTCTTCACTGTTTTGAAGAAGGCCTGGAAAGTCAACTACACTAAGTCTTCTAAATATGGTGTCTTCATTACCAAGATCAAAGGCCTGGGCGATGAAAAGAAGAAGCTCTACTGGACTTACACCGTTGACGGCAAGATGGCCGAGGTGGCAGTTGACAAGCAAAAGCTGACTAAGAACAAATCCAAGGTTGTCTTCACTTTGAAGCAATACTAAAATGCAGACCAAGGAACGCTACCAGCTGCAAAGGCTGACCCTGCTGGCCTTGCTGACTGCGATGTGCGTGGTTTTGCGGATCTTTAAAATCATCGATATCCCCAATGTCCAGCCGGTGACCGACATTATCATGCTGACGACGCTGGAACTGGGGGCAGGGACGGGGATTCTCCTGGCCATTTTGGTCATGGTGATCTCCAATATCTTCCTGGGGTTTGGCATTTGGACCTTGCCGCAGATCTTTGCCTACGCGGCCTGTGCTTTGACCGTGGCGTTATTTGCCAGGCTTTTGCCGCTGAAAAGCCGGAAATTCTTCTGGCTGCAGGAGCTCCTGGCCGGCTTTCTGGGCCTGGAATACGGCTTCTTCGTCAGCCTGGGCATGGCTGGCTGGGGCGGCTGGGCAGCCTTCATTGCCTACTGGGTCAGTGGCCTGACCTTTGACTTGTATCATGCTGCCGGTAACCTGGCCTTTTATCCTATCTTTTATCTGCCATTGGTTTTGGGCCTGGACCGGTTTAAAAAGAAAGCAGGGTGGAAGCAAAATGCTTAAAGTCTACACTAAAGTCGGTGACCAGGGGAAAACCAAGCAAGTGACCGGCAAGATGGTCGCCAAATACGACCCGCAGATCCAGACACTGGGAGCTCTCGATGAGCTGCAGTCCTGGCTGGGTGTTACGGTGGCCAACCTTTCTCCGGCCTGCCAGGGCCTGGAAGAAAAGCTGATCAAGCTGGAGCGGGAAATGTATGAATTGCAGGCTGACCTGGTGGTTAAGCGGCACCATACGATTACCTTGGCTGAAGTGACTTACATGGAAGAGCAAATCGATGCCTGGACGGAAGAATTGCCGGAAATGAAGGGATTCATCCTGCCGGGCGGGTCAAAGACCAGCGCCAACCTCCAGTATGCCCGGGCACTGGCCCGGACCAGCGAGCGGGTCTGCGTGCTGTACGCGGACGAAAGCGGGGAGGTCAAGAGCGACAGCCTCAAGTACCTGAACCGCCTGTCAGACTACCTGTTCGTCATGGCCCGCTACGCCAACCTTTTGGAAGGCGTGGCTGATGTCAAGAGCAAGCCCGCCCGGCCGCGGCGGCGTCCGAAAAAATAAGCTAGCAAATAAAAAAGTGTTGGATGATCTCGAGAGCAAGTATCCAACACTTTTTCTTTTACAGTTACTTTCAGTCGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACACTAAACCACACCAAAAGGGCAAGCACCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTGAGGGCTACTCTAATCGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAGCTACATAGAAGCGAATGCGGTCGCAAGAGCTTGTTTCTTCGCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCATGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTTCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGGACGAAGCATCGATGAACGTAGTCCTAGAATCGAAAGCCGTAAGGACTTTGGTCACTGGGAACGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATGTGTTGCTTACTCTGTGCGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATTGAGGATAAGACCTCAGCTAGCGTTATGAAGGCATTTGATAAGTTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGGGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCACCCTTATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCAAAGGAGATCAGTACAGTGTGGAAGATATTGCTAAGATCGAAGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGACTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCGGCGTAGATAGTCATCAAAATCTACGAGATGTTATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGAACACTTTTTCTTTTACAGTTACTTTCAGTATATTCTACTCCAAAAATAAGCAAGCAAAAACCCGCGGGTGAGAAGGCCCCGCGGGTTTTCGTTTTAGATTTTAATGGATAAGTTTAAAAGTATGTATTTGTAAAGTAATGTAAGTAATTTTTAAGTAGATTGTTGTAAGAAAATCTGTAGGTTTTAAAAAAGGGATTTCTAAGCGGCTAGATTAGCCAACCTTAACTGGAGTTTCAGCTTCCTTGCCTTCAACCAATTCAAGGTTGTTGTCGAAGGCCTTAACTACCATGTTGCGAACAGCGTGAGTAGTGTAGAAAGCAGTGTGTGGAGTTACCAGAACGTTTGGACGAGCGATTAAGTCAGCTAAACGTGCGTCTGGGAATTCCTTGCCTTCCCAGTCTTCGTTGAAGATGCCAACTTCACCTTCGTAAACGTCCATTGCGTAACCGAAGATCTTGCCTGAGTCCAAACCACGGATAACCGCGTCAGTGTCAACCAATGGACCACGTGATACGTTAACGATAACTACGTCTTGCTTCATTTTAGCGATTGACTCGTCGTTGATCATGTGAACGTTAGCTGGAACGTCAGGAACGTGCAGGGAAATAACGTCAGCTTGCTTGTACAGGTCGTCAAGTGAGTCTACGTAGTAGCCCTTCTTTTCCAATTCTGGGTTGCGGAAGATGTCGTAAGCGATAACCTTAGCGCCGAAGCCTTCCATGATTTGCATGAAGACTTGACCGATGTGGCCAGTACCTATAACACCAACAACTTGGTCGCGAACTTCACGGCCGATAGTTGGTGCCCAACGCAAGTCGTGACGGGCAACCTTTTCGTCCATAGCCTTGTCTTGACGCAGGATGCGGGCAGCTTGGATAGCAGCGTGTTCTGCGATGGCGTTTGGTGAGTAAACTGGAACGTTGGTGATTTGGAAGCCAAGTTCCTTAGCCTTAGCCATGTCGATGTTGTCAACACCAACGTTACGCAGGCTCATCTTAGTGATGCCGTTGTCTGCCAAAGCTTGCAGAGTTTCAGCGGTGTAGTCAAGTTGTTGGTAAACAACAACACCGTCAGCACCCTTTGCCAAAGCAACAGTTTCTGGGGTCAAAAGCTTGTCAGTGTATTCAACTTCGACGTCCTTGTGAGCGTCTTCCCATTCCTTCAAGAATGGCTTTTCATCTTCACGAATTGCGTAAGCAAAAATTTTAGTCATTAATTGTCCCTCCGTTATTCTTGCTCTTACATTGATAATAGTAACACAAAAAGGTGAAAGATAACACTAAAAAACAGTCACGTGAACAATATAATTTGGATGAAAGCGCTAAATATCAATATGGACAAGATGATTTTTGAAGTGAAAAAAATATCTTTCACAAAGTTGAAAATGTTTTGACTGCAGCTAGTTTATAGTAACGGATTTTTTAAGCAAAAAGCGGCATAATATCCTCTCTTACAAGAATGTTATGCCACTTTTCTTCTATGTTATTTGCTGATTGCTGCCGCTTAATCGATCTTGCGCTTTGGATTGAGCAGGTTCATTGGGTCAAACAAGCTCTTGATCTGGTGTTGGATCCAGTCAACGTCTTCACCCAATTCAACATTGTTCCATTGGTTCTTCAACATCCCTACGGCATGTTCGCCAGAGATGGTTCCACCCAGTTCTAAGGCCTTGGTAAACATTTCGTGCAAGACGATATTGACACTTTCAGGCATTTCCTTGGCATCCTTGGACCAGGTAACGGTTGGGTGCAGGTTGCCGTCGCCAGCATGTCCGGCGGTGAAGATTTCCAGTTCCGGGTACTTGTCGCTAAAAGCTTGGATCGTGTCAACCAACTCAGCCATGCGTGAAGTTGGCACGGCCATGTCTTCCATAACTGCGCTGCGACCAGTGAAGATGGCTGGTAACATGTCCTGGCGGACGCTGATAATCTTGTCTTGCTCAGCTGGGTCAGTAGCCAGCTGGACGTCGGTCACATGATACTTGTCCATAATGTTCTTGACGATCTGTTTGCCTTCATCAGAAATGGAGTCGACGCGGAAAATTAAAGCTGCGCCGCGGCCGGCCATCTCCTTGTTATCACGGAATTCGCTGACTGCCTGCAGGGTGTGGGAATCCATGGCTTCTAACATGGCAGGGTAGATCCCTGACATCCGCAGATCTTTGGTGGCTTCAGCCAAAGTGTGCATATCCTTGAAGTAGGCCAAGCCCATCAAGGATTCGCCCAAAGGCAGCGGCAGCAACTTGACCGTAATTTCCACGATCGTACCCAGCGTCCCTTCTGAGCCGACAAACAATTGAGTTAAGTCGTAGCCAAAGGCTTGCTTGCTGGTTTTGCCGCCCAGGTCAAGGAGGCGACCATCAGCTAGGACGACCTTCAAGCCTAGGACGTTGTCGCGGGTTGATCCGTAGCGAACGCCACTCAAGCCGCCGGCGTTGGTCGCGACGTTGCCGCCGATGCCTGACATTTTCTTTGAAGCTGGATCTGGAGCGTAGAAGAGCCCTTGCTTTCTCGCGGCTTGGTCAAGGTCATTGTTGATGACGCCTGGCTGAACGACGGCATAGGCATCCTCAGCGTTCAATTCCAGAATCTTGTTCATCTTGGCGGTTGAAAGAATGATGGCGTGGTCAACAGCATCAGCGCCAACAACGGTGCTGGTGAAGCGGTTCTGGGAAACAACTGGCAGGTGGAAGCGGCGGGCAGCCCGCATGACTCCCTGGACGTCAGCGATTGAGCCTGCTTCGACCAGGGCTAGAGCCAGACCGTGCTGGCCAGGCAGGTTTTGGCTATAGGATACGGTTTGTAAGCTGTCTTTATCAGTTTTGACGATCCCATCCTTTACTTGTTCCTGCAAAAAATCAATTATTTCGTCTGTGTTGTAGGCTGAAAAATTCAATCCTATGGTAAATTCTCCTTTTAAGCAATAGTGATTTTCACGGCCACGAATGAGTGTCTTATTTTTTACTAACAATTAGTAAGTTAGTTTAGTATACACTAATGCTCAGCAATTGCAAATAAATAGTTTTTTGTTCCAAAATATCTTTAACCTGGTAAACTTTAGGTAAAAAGCAAAATCGAGGAAACGATAATGACAGTGCAAAAAATCATCCACGATCCCCTCAGTTTAAGCCAGCCGGCAGCTAAAGCGGCGGCCAGTGACCGGCAAGCGGCCCAGGACCTGCTAGACACCCTGCTGGCCCACCGGGAAAGCATTGACGGCCTGCCGCCCGCCGCTGGCCTGGCCGCCAACATGATTGGGGTAAACAAGGCGATTATCGCGGTCAACGCCGGCTTTTTACCTATAGTTATGCTCAACCCCACGATCGTTAAAAGATCCGGTCACTACCTGGCAGAAGAAGGCTGCCTGTCTTTGCCTGGAGAGCGGCCGGCTGACCGCTATGAAGAAATCACGGTCAAGTACCAGGACATGGATTTAGAAGAGCATGAGCAGGCCTTTACGGGCTTTGTGGCGGAAACTATCCAGCATGAGGTCGATCACTGCAAGGGCAAATTAATTTAATAAGGTAGGAAAGCAAAAAGCTGGGCCAAACGGCTCAGCTTTTTAATCGGTCAGGTAGGAGACCGGCTTGTTGACTTCGACTTTGGTGCCGGAGTATTTCTTGGCGATCCACTTCTGGATCTGCTTGTTATGGTAGAGCTTGCCCAGCTTCTTGTAAGCGGCATTGTTCTTGTTCTTCTTGGCAGTGGCCAGGACATTGATGTTGTTCTTGGTGCTCTGGTTGATCTTTTCGTGGTAAAGAGAGTCCTTGAGCACGTTCAAGTTGCCGGCCAGGGCGATGGTGTTGCCGATGAGGACGGCGTCGACGGACTTGATGATCCGCGGGCCAGTGGTGTCATCGATCAGCTTGAACTTGAACTTCTTCGTGTTGGAAACAATGTCGTTGGTGTTGCCGCTGGCTGAGTCAAAGTTCTTCTTCAGCTTGATCAGGCCGGCGCTTTGCAAAAGCAGGAGCCCTCTGGCTTCGTTGGCGGCATTGTTGGCCAGGGCGATGGTCGCGCCTTTAGGCAGGTCAGAGAGCTTCTTGTACTTGGATGAGTAGATCCCCATTGGTTCCAGGTAGGTCGTGGCCAGGGCTACTTGCTGGCCGGTGTTGCTCTTGGACTTGTTGTAGGCTTCCAGGTAGGCCCAGGAAGCGAAAGCACTGACGTTGATGCTGCCGTCAGAGGTTGCCCGCAGGATGCTTGGCCCGTCGGTAAAAGCCTTCACCTTGATCTTGAGGCCCAGCTTTTTGGCCTGGCTGCTCTTGGCGATGTGCTGCCAGACTTGGACGTCGGGGCCGATAGAGCCGACAGTGACGGTAGTCGTCTGGCTCTTGGCCGTTTGCCGGGAAGAAGTCAAGCGCAGGGCGAAGAAGGCGGCAATGATGACGATGAGGGCGATGGTGGCGGCGATGAGCCGTTGATGCTTTTTCTTTCTTCTCATGATTTTTGCCCCTAAAAGTTTAAAAAACTAGTCTTCAACCACGTGGCGGTCAAATGGGTCGTCGCTGATGCCCTTCTTCAAGATATCGTTGCACCATTCCTGGGCGCTGAAGAGGGAGTGGTCGCGGTAGTTGCCGCAGCTTTCGATGGTGGTACCAGGCACGTCTTCCCAAGTGATGTCGTCTCTGATTGCCTTGAGGGAGTCGCGCAGGGCCTTGGCTACTTCAGTGGTGCTGTGTTCACCCCAGGTAATCAAGTGGAAACCGGTCCGGCAGCCGAATGGGGAGCAGTCGATGACGCCGTCTAAGCGGTCGCGCAGGAGGCTGGCCAGGAGGTGTTCAATGGTGTGCAGGCCGCCAGTTGGGATGGCGTTTTCGTTAGGCTGCACCAGGCGGAGGTCGAAGTTGGAGATCTTGTCGCCCTTAGGGCCTTCTTCAACGGTGATCAGGCGGACGTAAGGTGCCTTAACTTTAGTGTGGTCCAATTCAAAACTTTCTACTTTAGCCATGATGATAATTCTCCTTATTTCTAAAAATACTGCTTAACTAAATTACTTGCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAGTTGACATAGTTTTTTCCTCCTGAAATTATTCGCTAAAAAATTCTAAATCTTATTTGATAGTTTGCAGCCAGTTTTTAAAAAAGTGCTGCTGGCTGCTTTCCCAGGTAAACTGGGGCAGGGACATGGCGGCTTCATCCGCGAAATACCGCTGCGGTTTCGCTATCTTCCGGTCATCACCTCCTCTAGCGGATAATTCCCGCTGGTATTCCTTGCTAAAAGCCTGGGGGCCGTATTCCAGGTGGCTGAAGAGAAAGACCTGCTGGCCAGGCCCAGTGACCAGAGTAAGGTGGCCATCTGGTGTGGCCGCGTTGATGGTTAAAGCTTTTTCTTGCTCAATCTCGCTCCTGTTCATCTCAGCGTAGCGGGCATGCGGGGCCAGAAAGCCTGTGATCAGGCCACTTAACAGGGGGGTGGGAGCCAGGATCTCCTGGGGGTAGATGCCGAAAATCTTCTCCGGCATGGGATGCTTGCCGATCCCGTAGAAATAGTAGAGAGCCGCCATGGCGCCCCAACAGACATAGAGCTGGGGAATGTTTTTTGCCTTTAAGAGGTCAAAGAGCTTGGTCAATTCCTCCCAGTAGTCGACTTCGCTAAAGGGTAGGAGCTCGATCGGGGCGCCGGTGACGATGAAGCCGTCCAGCTTGGCAACTGTCTTGAGATTTAGCGGCTCAGCCGGCCAGTTTTGGGGTCGGGGCCGGTTTAGATAGTGGCTTTGGGGGTAAAAATAAGTGATTTCAGTTTCCGGGCTGGCTTCTTTGATCACATGGCTGAACCGTTTCTGGGTGTCGATCTTGTCATGCATCAAATTGAGAATGCCGATTTTCTTGCTCATCTTGTTTGTCAGTCCTTTTTTAAAAAAATAGCAGGTAAGTCTGGGAAAACAAAAAGACGCGCGAGACAAGCTCTACGCGGCTTAAACAATCAAAGTTATTTGGATATTGGGAATTCTGGTCTGCTCCTAGCTTTCCAGTCCAAGCCAAATAGTGGATTGCTTAAGACACAATCCACAACAACAAGCAGTCATGTTTACGTTGAACAGGTTCTTGTTGAACATTTGGCTTACCTCCTAAATTAGTTACTTGAAGTATAACCGCTATTTTTTGCTTTGGCAAGAGAAATTAGAAAAAAAGTTACAGAAAACTAATTTTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCTTTGGGAATATAGCGTCTGATAAGCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCCCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGACTCTAGGACTACGTTCATCGATTCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTATTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGCTTCACATTGCCGGTATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGCGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATAAGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTAAAATGGATTTTTTGTGCTCTAATCCAGTAAAAACGATTTTTTCTTACTGGATCGGAACAGTGTTCAGTTTGATTTTACAATCGGCGACTAAATTACTTGAAAAAACGTGACAAAAAAAGTCCCTGAACGAAAATGCTTTCGCTCAGGGACGTATTAGCGTGTTACCACCCATCTTCACGGCCAAAAGAGGCCGCCTTTAAGTACGCTCCGCCTAGGCGTAGTTATACTCGGGCGCGGTATCGGGCGCCTCCCGCGGGAAGCTTGCTGGAGCTCGCCTCCCGTATGACTCAAAGACCATGTTCGCCGGGGCCTCTTCAGCGCTTTTCAGCCACCGCGCCTCTCTGAAAGAAGATTTGACCAGCTACTTATCTTTTCTTTGTCAACGTGTTTTCATTTTTTAATCATAATATAATAACGATAGCCACTTGTCAACCTTTCGCGAAAAAAATTATCCAAGCCGGCTAATTGCCCTGCTTTTGCTTGCCGGAATTAAATTTCCGATCCCGCAGATAGTCGGCAATCGTCGCGCCAATGAGGATCAAGTCAAAGGGGCCTAGAAGGGCCAGGCCGGCGGTTTGAGCGGAAACGTCCAGTCCGCCATATTCCTTAGGAATTTTTGCCCGCAAAAGGCCCAGGTCAACGATCTTTTGGAAAAGTCCGTTTGGCAGCTTGGCCTGGCGGTCGATCTGCAGGTCAAAAGGCGCTACGTCCTTGTCTGCCAATTGCTGAACGGCTTGTAAAAGTTCGGTTTCGTTAGTCATGCCAGTATCCTCATCATTCTTTTATTATATAGAGAAGCAACGCTTTTTATTTTGCACAGCCGAAATAAAGAAAGCGCTTTTATAATTAATATACTATTATGAACTAGTGGTAATGTGCAATAGGGGGAATAAAAAAGGCTCACTTGTGTGAACCTTTATAGTTTAATCAAGTTGAATTTCGCGGTCAAAAAGCTGGCGGCTATCCGCGGTCAGATTATGGGCGACAAACATGATCGTTTTATCCGTCTTGAGCAAGCGGACAATAATCTCCCGCGTGGCGGCCTGGTCAATGGCACTGGTTCCTTCATCGATCAAAAGCAGCTGGCTGTGGTAAAGATAGCTGCGGGCCAGAACGATTTTTTGCCGCTGACCGCCAGAGATATTGCTGTCTTCTACGGCAACCCTTGTATCAAGCCCAGCCGGCCACAGGCGCAGGTCCTCACTTAAGTTCACCTGGTCTGCTGTTTGGCGGAGCAAGTCTTGATCGTTTAAAGCCGGATTGAACATGGTCATGTTTTCAGCAACGCTGCCGGGGAAAAGCTGGGGATCTTGGGGGAGATAGCCGATTTGACTCAAGTTGGGCTGAATGACCTGTCCCTTCTGGTCCAGATAGTGAATTTCTCCACTGGCTGCCTTGACTTCACCCAAGAGCAGCTTGAAAAAAGTACTTTTCCCCCGGCCGCTGGCGCCGGTCAGCAGAACTTTTTCTCTGGGCTGCAGCTTGATGGCCGGGTAAGCCAGGCTGAGGCCGTTAAATTCAACGGTTAAAGGACTGCTGGCAAAAGCCGCTGGCGCTTGGCCAGCCTCTTTTTGCTCCGGGACGGCTTCTCTTTGCTTAAGCAGGTCTTGCCGCAGCTGGCGGCTGCCGGAAATTTCGCCTAAGTAGTCAGCCGCGTTTTGCAGATTGCCAAAAAAGTCACTGTTAAAAGAAGCGATGCTGCTGAGCAGGCCAAAAGCCGTCCAGTGCTGGATGACCAGAAAGGCAGTCAAGAGCAGGATCAGGCTGCTGCCAAGAGAATATGCCAGCTGATTGAGGTAATCCAAGCGAGCAGAGACGGCGCTTTTGTGCACATGGGCATCTTCCAGTTCTTTGGCGGCCAGGCCGGCTTTTTCCTTAAACCAGGCCAAGGACAGGCAGCGGTGCAAGTCGCCAAGGCCGAGCAGCCAGTCGCCAAGAACCTTGAGATAGGCCTGGTTCTGCGTGGCCAGTCTTTGATTGGCGTGGTTGAGCTGGCGGTCCAGCAGGCGGGGAAGGTAGATCTGCACCAAGGCAAAGATGAGGCAGGCGATGAAGAGGCTCCAGTGAAAACTGAGCAGGGCACCTCCAGAAGCCAGGACAGTCATGCCGGCCTTAAAGCTGCTGTAAATATTGCGCAGGTAGCTGACAGTCAGCAAGTCCCCTTCCTTAAGCAGCTGGTTTTGCGCCTGGGCTGGATCGTGTGCTTGGCCATCATTGAATATATGCAGGGCAAGCTCTTGCCGGATCTGCTGCAGGTAGCTTTGGATCAGCTGTTCCAGGGCCAGGTTGCCATAGTAGGTGAGCAGGGCACTGAAGACCAGGCAGGCCAGCTGCAAGGCCAGCATTTGGGCAAAAAGCACGGGCTGCCGGTTTCTTAAAGCATTGAATTCCAAAGTTAAGGCGTAAGAAGACCCGACCAGCAGCAAGGAACTTAAAGCCGCGGCCAGGAAGAGCAGGCTGCTTTTGACTGGCTTGCGGAGGTAAAATTCTTTAAAAGTCATACATGCTCCTTCTTAGCTAAGCTGATTTCCCGGTCAAAGCGGGCTTTTTGTTCAGGGCTTAAATTGTGGGCAACGAAAATGACGGTTGCTGGCAATTGGCAAAGGGTCCGCAAAATCTGGTCCTGGCCGGCCCGGTCAACCGCGCTCAGTGACTCATCCAGCAAGAGCAGGGGGAAGCCATGGCTTAAAGTCCGGGCAAGAGCCAGTTTTTGCTTTTGACCGCCGGACAGAGTCAAATCGTCTGGGGTAATCTGGCGCTGGGGATCAAGCTGGAGGCCGACTGTTTTCAGGTAATCTTTTGGATCAGCACTTAGGCCAGGGGTATGCATGGTCACGTTTTCCGCCAAAGTCGCGGGGAACAGGACCAGGTCCTGGGCCTGGTAGCCGATTGAGTAAGGGTCCGGCTGGAAAGCCTGGCCAGCAGCGTCTTTAAAGATGATCTGGCCTTTTTCAGATTGTAAATTGCCTAAAAGCAGTTTTAAAAGGGTGCTTTTACCGCTGCCGCTGTCGCCAGTGATAAGGATTTTTTCACCAGCATGGATGGTCAAATCGGGGTAGGACAAAAGCTGCTTGCCGTGGGTCAGGGAGACTTGTTTGATCTCGATTTGGGCCATCCGGTTGACCGGCTGCAGATTGTCATTTTTCTTGCTTTCCTGCAGGCGGCTAAGCTGCTGGCGCAGGCTTTTGGTCGAATTTAGATAAGAATAGCTGCCGGCGATGTTTTCCAGGACGGAAAAAATACTGCTGGCGAAATAACCAGACGTGATAACGCCACCTAAGGACATTTGTCCTTTAAAGAAGAGGAAGCCGGCGATGAGGGGGATGCTGACTGTGCCTAAGGCGTTGCTAAGGCTTTGCAGGCACTGGATCTGGCTGTTGATCTTGCGGCGGCTGACTTGCCGGTCGGCCAGCTCTTGGCCGGACTTAAGCAGGGCTTTTTGATAAGGGCCTTTGGCAAAGTAGCGGCGAAGTTCTGCCAGGCCGGCAGTCCATTGGGCGATAGTCGCTAAAAAGTGCTGACTAGCGGCAGACAATTGATCGGTGGCCTGGTTGCTGTATTTTTCCAGTAAGCGGGCAATCGCGAAGGAAGTCACGGTAGTTAAGATGCTGGCCAGGAGCAGGAGCCAGTGAAAAGACAAGAGGCTGGCGGCAACCATAAGCGCGTTGATAACGTCACAGATCAAGTAAAAGAGAACAGTCGCGTAATCGTAAGTCAAAGTGTCAAGGTCTTGGCTAAAATGGTTGGTCATCTCGGAGAGGCCGGCAGGCTGTTGGTAATAGTGGTCAGCCATTCTGTCTCTGACGCCGTGCAGATACTGCTGGGTCTGCTTGCTGAAGAGGTAGTTGGCCCCGTTGAAAGCCAAGTTCAGTACTAAGGCCAGGGCAAACTGGATCAGAAGCAGGCTGCAAAAAATGTTAAAACGGCCGGCGGAAACTTGGTTAACCATTGGCGAGAACAGGTAAGTTGAAGCAACGTCGATGACCTGGGTCATGACCAGCAGGGCAAAGATGATGGCGAAACGGCCCCGGTTGCTGTTGATTAGTTTACGTAAAGTCATGGGCAAAAATCGTGTAGTCTTTTTCTCCTAAAGGATCTTGGGCTTGTAAATAGTATCTTTGTTGTGTAACTTTTATAATCTTAATTTAATATAAAAAACTTAAACAACTGGTATAAGCAGAAAACATTAACTATTTTTACTGCTATTGCTTTTTACTTTTTGCTTCTTGCTCATACTTTACTAATTTCTTATAAGCTTTTTTGCTCCCGCGGTTCAAGTCCTTGTTAAATTTATATTCTTGCCAGTCGCTTATGAAGAGCAGGTCCAGGTTATAGCCCTCTGGATAAAGGTCGGCAGCTTTTCGCCGTAATTTCAGCCGTTTAACGGGAACGACAGAAAATTGTTTGTTGACGAAAATTTTTGCCAAGGTTTGGTTTGCTTCTAAGGCGTAGAAAATACCCTCTTTTTCCAGGTTGCCCGCGTAGACCACGTCTCCTTTGCAAAAATGTGTTTTGACTATTTTGCTAGTAGCTTTTTCTTTCAAAACGACTGTACTGCTGCTGAGTGGCAATTGACCGGCTAAAACTTTTTGCGCCTGGTCGATAATTTCTTTTGGCATCCCTACTTTTTGAGCAATCCAAAAAGCCCGGCTCTGCCCGACTTGGTCTAAGAGCAGACGGTAGGTTGGGGTGAGGGTGTCGGCATTGAAGTCCATTGACGCGGTCCGGTAATTAGGATGCTTAACAGCATAATCTTTAATTCTGCTGTAGTGGGTCGTGGCTAAAACTAAGCAGCCCTTAAGTTGCGGGGCTTGCAAGACGGAAATAGCAATAGCAGCTCCTTCATCGGGGTCAGTGCCACTACCCAGTTCATCGAGCAAAACTAGACTGCGGCTTTGAGCGTGAGTGACAATTTTGGCAATATTGGTCATTTCTGCTGAGAAGGTCGACAGGGAAGTTATCTAGGTCCTGTTGGTCACCAATTTGGCTGAAAATCTGCTGGCTGACAGGGATGTCACAGATTTCCCGGCTGGGCAGAAAAAGCCCAATCTCTGTCATCATGATAGCCAGGCCGCAGGTTTTTAAAGTGGCGGTTTTGCCACCGGCATTTGGTCCAGTAATGATCAAGCCACGAACTGGTGGCTTGATTTCCAGGTCAAGTGGAACGGGATTTCTAAGCAGGGGATGCCGCATCCCCCGTAAAAGCAGCTGATTTGTCTGATTTAATCTGGCCCGCTTGCCATTCAGCTCCCGGCTATATCGCGCCCGGGCCATAATTTGATCAATTGCCGCGACGACATCAATGTTACGTAATAGGCCGGGGCTTTCTTCATAGACGGCAGCGGTCAGCTGTCCGAGGATCATCGCTTCAATAGCTTCAATTTGTCCCTTGACAGCAATCTTTTCGCTGCTCAGCTGGTCCAGTTTGCGTGGAAGAATGAAGGCAGTCTGTCCATTGGCTGAATAAGCGATGATTCGTCCAGCGATTGCCTTTTTAAAGCTGCTTTTGACGGGCAGAGTCAAGTGACCATCTTTTTCTACCAGCCGCTGTTCTTGCAAACTTTGGCTGACTTTCTTGCTTTGCAGCAGCTTACCAGCCGTATCTTTTATTTCCTGGCTTAGTTCCTGTTCTTGCCGCCGCAGCCGCCTTAAGTCGCGGTCAGCGCTGTCGGCAACTTGACCATGTTCTATTGACTGATAGATCTGTTCAACCAGTTTTGGAAAAAGCTGGAGTTCTTCACCATAGGAATTAAGGATTGGAACCAGATCTTTTTCTCTGTACAAAAAGCGTTGCAGCAATTCACAGACCCGGAGATAATCAGCAACTTTTTCCAAATCATCTGCTGATAGAAGGAGCCCCTTCTGAGCGCGATTGATCAATGGCAAAAGGGAATCTGAAGAAACAAACGGCAGCTGCAAGCTCCGCTCTAAGAGCCGCGTACCTTCTTCTGTTTCATCGAGCAAGTGGGTAACAGCTGCCGGTTTGGTCAATGGCTGGGCCTGCAGAAGCAAGTTTCTAGCTTCGGGGGACTTGGCGTAAGACGCTACTTGGGTAAGGACTTGTGCAAATTGCAATTGGTTGTTTTCAAAAATTTCAGTCATCTAATTTTCCTTTAATCTGATATGCGTAAAAAAACGGTCTCCAAATAAGTTGGAGACCGGTTGATAATATTCTGCTTTAATTAAGCGAAGTTTTCCTGCAGGTCCTTCACGCCGGCTTCTGACAGGGTGGTGTAGATTGAATACTTAACGCCCTTGAAGGTTTCCAGGCTAAGTTCGACGCTCTTTTCACCATTGCTGCCATCGCTGACTGCCACGCCCAAAAGCTTGTAGGCAGTTGAAGTCGGGTCTGGTGAGAAGTACAGGCGCTTCTTGCCGTCAGTTACTGACTTTTCAGTGTAGAAGTAAACCTTGGCCGGGAAGGACTTGACTGCCAGGTTGAGGTCGCTGGAGTCAACCTTGTTCAAGGTCAGCAATTCGTAGTGCTGAGCCAGATGACCGCCAACGCTTTGGAAGATAGCCAGGAACTTTTCGGTTGCTTCAGGGTCAACTTCACCAAAGTCGATGTTGTCGTTTTCTTGTACCAATGACAAGATCAACAAGTGCTTAGTATCCTTGTCGTAGTATACGCTGAAGTTTTCAACGCCACCTGGCCAAGGAGCCTTGCCCTTTTCATATTGGGTAAAGTAGACGCTTGAGTCGTTCTTGACGACCAGCTTGCTTGCGCCATCAACGGTCTCCAGAATGATGATCGGCATTGGCGGAACATAGCTGTCCTTTTGACGCTGTGCCCACAGCTGGGATTGCTTCTTCTTTTCATTGCGGAAGTTGATGTAAGTACCGACGCAGATGATGATGACCAATAATAAAAGTATCCAACCCATAGTTGTCTAAACCTCCAGTATAGGCATTTCTTCCGAGCTGAAAAAATGCTTGATTAATGCTAAGTTAAAATTTATCTGGCTCAAAGCTAAGTGCTAAGCCCGTTTATATCTTTTAATTTTACTACAAAATAGCCGTTTGGCAAACCTTGTATAAACCTTGTATAGATTAAGCGGAGACGGGGGTTTTAAGAAAAAAGCAGCTGATCATTATTAGAAATAAATTAAGTTAGCGCTTGGCATTCTTTTCAATACTTTCCCTTAAGTAGCCCAGGTACTTTTGCCCAATGGAAGAAAGCTGGTGCAGGCGGTTGGTCAGGTAGCCGATTTCAATGTATTCGTCGCTGATCAAAGGCCGGGCGATGATGTCGTCCCCGTTTAAGTCAGCGTTGATGATCCCTGAAGAGATGGTATAGCCTTTTAAGCCGATTGCTAGGTTAAACAGGGTAGCCCGGTCACTGACAATAATGGATTTTGGGGAATGCTGGTCAGCCAGGGTTTCTTCGCAGTAATAGAAGGAATTGTGTTGGCCCTGGTCGTAGCTGAGCTTGGGGTAGGGAAAGAGGTCTGCTAAGGAGATAGATTTTTTGCCGGCTAGGGGATGGTTTCTGTATAAAAAGACGTGGGGGTGGGCCTTAAATAGGGGCGTAAAGCTGAGTTCCTTTTCCTGGAAGCTGTTTTCCATGACCTGGCGGTTGTAGCGGCTGAGGTAGACAATGCCGATCTCGCTGTGGAGGTTGGCCACGTCTTCGATGACTTCATAGGTCCGCATCTCTTTGAGGCTGGCTTGGTAGTCGCTCTGGCCGATTTCTTTTAACAGCTGGACGAAGGCGTCAACGGCGAAAGCATAGTGCTGGGCCGCCACGGAAAAAATCTTCGGCGCGCTGGACTGGTCGCCATAGCGGCGCTCAAGCAGCTGGACCTGGTCCAGGATCTGCTGGGCGTATTGCATGAACTCCCGGCCATCTTCGGTCAAGCTAACCCCTTTTTTGCCTCGGATCAGGATGGTGATCCCCATTTCTTTTTCCAGCTGCTTGATGGCACTGGACAGGGTGGGCTGGGCGATGAAAAGTTCTTTGGCTGCCTCGGTCATGTTGCCGAGGGCGACGACTTTTTGCAGATAGAGCAGTTGTTGGATGCGCATGGTTGAACCGCCATAGTTTAAATCTATCGATACACGATAAAAATAGCTATTTTCAATCATAACGAGATCTGGCTAAACAAGCATTAAGAGCAAATTAAAAATGCAATTTAAAAACTTCGGAGGTAATTCAGATGCCATTTCCACGTTATGATATTGTCGGCAGTTTCTTGCGTCCAGCAGCATTAAAGGAAGCCCGGGAAAAATTTGCCCGCGGTGAAATCAGCCAGGCCGAGCTTACGGCCGTAGAAGATCAGGAAATCAAGAACCTGGTGCAAAAAGAAGTCGCTGCCGGCTTAAAGGTAGTTTCTGATGGGGAATTCCGCCGCAGCTATTGGCACTTGGATACTTTCTGGGGCTTTGGCTGGGTAGAACATGTACGGGCTGATCATGGCTACTTCTTCCATGATGAAGAAACCCGCCCAGACGCGGCCAAGTTGGTTGGCAAATTGACTTATGAAGCCGGCCACCCGGACGTGGCAGCTTTCGACTTCCTCAAGCCTTTGGCGGATTCTGCTGGCGTTGAAGCCCGGCAGAGTATCCCTGCCCCGGCTCAGCTCTACTGTGAATTGATTTGCCGCAACGATGAATTGATCGCGGCTACTGATGCCGTTTACCCAGACCGGGCAGAACTGGCCAAGGACGTTTCCAAGGTCTACCGGGAGTTGATTTTGGACTTGTACAAGCACGGTGCCCGCGACATCAAGCTGGACGACTGTACTTGGGGCGTTTTGGTCAACGACAGCTTCTGGCATGCTTTTGACGAAGGCCACCTCAAGCGTGAAGAAATCCTGCAGCTTTACAAGGAAATCAATGAAAATGCTTTGGTTGACCTGCCAGAAGACTTGCGGATCACGACCCACATCTGCCGGGGGAACTACGACTCAACTTGGGCTTCAGAAGGCGGCTACGGCCCAGCTGCTCCTTACGTCTGCAAGGAAAAAGGGGTGGAGGCCTTCTACCTGGAATTTGACGACGACCGGTCAGGCGACTTCGCTCCTTTAGCTGAAGTGCCAGCTGACAAGGTAGTTGTTTTGGGCCTGGTAACCAGCAAGAAGCCGGAATTGGAAGACCCGGAAGCTTTGAAGGCCTGGATCAAGGAAGCTGGCCAGTACCACCCATTGGCTACTACCGCTCTCAGCATTCAGTGCGGCTTTGCCTCAACTGAAGAAGGCAACCACTTGACTGACGAAGAACAATGGGTTAAGATCATGCTGGTCATCGACACGGCTAAGGAAGTTTGGCCAGACGCTGAATAATCAATAGGGATGCCTCCTCGCGCGGGGCTTTTTTTGATATTATAAACAAAGTTATTTGTCCAAATATATGAACGTCTTCTAACAGACATCGTAATACGTTTATGAGCTTGGATATAGATATGATGAAAAGCTTGCTGTGTATATGATATATAAATCTTTTAAAAAAGTAATGACATACATGGACTGTGATGATATTATAACATATGAACAAAAATATATACTTATGGAGGACGTAAAAATGAAAAGATGATAAAAAATGTTGTTTGCTGTTAGTATGTGTTTAATATTCCCTCTTATTGCGGGATCAGTAGAGGCAAGTACTAATAAATCACTATCAGCCAACCGCTTGAATAGTATTAACACAGAATATAAAATTGACTCTACCAAATGGTCTGATGAAAAAATTGATCAGCTTGTAAAAGCATTAAGTGAGCTACATCCAGAGCTATCGAATGAATACTTAAGAGAGTTAGTCGAAAGTCAACTGAATGACGAAGCTATTCCAAACTTGACAAATCGGGATATATCGCCGTCGTTAGCTCTTAGAGCAAATTTAGCTCGCTCAACCAAGTCCTCATGGAAAGGAATCACTGTTGCCCAAATGGGTGCGGTTATTGATACAATAATTGGCACTGTTATAGGTGGTGGACTTAGTTCAATTACTAAGGCAGGACTTAAAGCTGCTGTTAAAAAGATGGGAAGAAAAAAGCTATCTCGATTGGTCAGACAACATTTGCTCAGGAAATTTAGTGCGGCGTATATAATTAGTTCAAAGGTAATAGAAACAGCACTAAACTATACTTCACCAGGCACATGGGTTGCAAAATATTGGGATAAGCATGATGCATACCCGAACAATGGGAGAATTAACTTTTAGTGAAAATGAAAAATAAATCTGTTACGATTCTGTTGAACATGTTGCTAATCGTCGCTGCCTGATTGCTGATTGACAAATTAGCCCACAGACAGAGCACTTTTTGGGGGATTCTTTCTTTCCTGGCCTTCTACGGGGCCTATGAGTTCCAAATGAGCGAATCCGTGCCAAAGAAGGTCCACACAATTGTTAACGTGGTCTTGGGAGTGGCCGCTTTAGCTATCGTCTGCGTGCTCATATATATCAGCTTTCATAACTAAACAAACAAGATTAGATGCCTCCTCGCGCGGGGCAGCTTTTTGATATTTGGAAAGAATGTCACAAGTCTGATAATTTTCTCAAAAAAGTCAGCCGAAGCGCTTTCGCAAAGCTGAATTTTTCTTTATAATAGGACTGGCAAAAAGAGAACATTGAAGAAATGAGGCAACTACTTTGAAGAAATATGCATTTGGTGTTGACATCGGTGGTACCACTGTAAAGATTGGTTTGTTTGAAACCAACGGTGAATTGTCCCAAAAGTGGGAAATCCCAACTAGAAAAGAAGGCAACGGGTCCAAGATCCTGCCTGATATCGCTGCTTCTCTGAACGACAAGCTGAAGGAACTGGACATTCCTAAGGAAGAAGTAGCCGGGGTCGGCATCGACGTGCCAGGTCCAATCCTGGACGACGAAATCGTTAACCGCTGCGTCAACCTGGGTTGGGGCGTCTTCAACGTGGCTGAAAAGGTCCGCAAGCTGACTGGCCTGGACAAAGTCAAGGTAGCCAACGACGCCAACGCTGCTGCTTTGGGTGAAATGTGGCAAGGTGGTGGTGAAAGCCACCAAAACGTTGTCATGGTTACCCTAGGTACCGGTGTCGGCGGCGGGATCATCTCTGAAGGCAAGATCGTCGCTGGTGCCTTTGGGGCTTCCGGGGAAATCGGCCACATGCTGGTCAACAAGGATGAAACCCAGCTCTGCGGCTGCGGCAAGAAGAGCCACCTGGAACAATACGCTTCCGCTACTGGCATTGCCCGCAAGGCCAAGGAACTTCTGGCTGAAAGCAGCGAAGAATCAAGCCTGCGCGGGGTAGATCAGCTTGACGCCAAGGCAGTCTTTGACGCGGCTAAGGAAGGCGACAAGCTGGCTCTGGAAATCGTCGACTTTGTCGGCGAAACTTTGGGCACTGCCCTGGCTTCCATCTCCTGCGTCTTTGACCCAGAAGTCTACGTTATCGGCGGCGGGGTCTCCAAGGCTGGCCAAATCTTGCTCGACACTGTGCAAAAGCACTTCGTTGACGCGGCCTTCCACGCTTCTGGAGGTACTGAATTCGCCCTGGCTCAACTGGGCAACGATGCCGGTATGTACGGTGCCGTTAAGATGGTTCTGTAATTTTGAATGTAAAAAAGCACCAGGCTTTTAAAGTCTGGTGCTTTTTTTGTTTATCCTAAAGAGTCCAGGGTTGCCTTTATCGTCGCGGCTGAGGCCCGCATCTTGGCCAATTCGCTGTCATTTAACGGCAATTCCAGTACGTGGCTGATCCCTTGTCCGTTGATGATGGCCAGGGTGCCCAGGTAGATCTCATCCTTGATCCCGTATTCCCCGTGCAATGGTGCGGAAAGAGGCAGGGCCAGGTCGTTGTTTTCCAAAATGGCCGTCACGATCTTGGCCAGCATCATGGCCACGCCATAGTAGGTTGCGCCCTTTTTGACGATAATCTCGCTGCCCTTTTCCCGGACGTGGGCTTCAATCTCATCTAAGGCTGCTTCTGTCATGCCCGGATAGTCAAGCAAGGGCTTGCCGTTGACCACGGCACTTGAGAAGTTCTCAAAGCTGCTGTCGCCATGTTCACCCAGAACCCAGGCGTTGACTGATTCAATTGGCACTTGCAGCCGCTTGGCCAGTTCTACCCGCAAACTAGCTGAGTCCAGGGAAGTCCCGGTCCCGATGACCCGCTTCTTTGGGAAGCCGGACAGCTTCTGGGTCAAAGTGGTCAAGATGTCAACCGGGTTGGCGGAAACGACGAAGATGCCGCTGAAGCCGGAAGCTACGACTGGATCAACGATGCTCCGCAAGATGGCTTCATTCTTCTTGATCAGGTCAAGCCGGCTTTCACCTGGCTTGCGGGGCACGCCGGCCGTGATAACTACCACGTCGGCGTCAGCCGCGTCGCTGTAGTCACCAGCTCTCAGCTTGGTCTGGCCCGTAAAGTAGGTCATGTCTTCCAGGTCCAGGCAGTCGCCCGCGGCCCGGTCTTTATTCAAGTCGCAGATGACCAGTTCATCCACCCGCGTTGTTTGCAATAAATCGTTGGCAAAGTTGGAACCGACAGCACCGTCGCCAACCAGCAGGACTTTTCTACTCATTATTTAATCCTCCTTCAAGGAAATCAGCTAACCATATTATAACTGAATTAGCTGAAAAATTTCCCGGAAAATAAAAAACGCGGCCCAGAGGACTGCGTTTCTTAGAAATGAGATGTGATGTGATGAAACTTAAGCTTGCTACGACAAAGTAGTTTGCTTGGCGGCGCCTGTTAGTGATAGGAGTAGAGGCGCCGCATGTGATGAGTAAGGGAAAAATAAGTTTGTCTGTAAGAGACAGGAACCGAAAAATGTTGAAATACATATCTGAGTTCAGAGCCGGCCCTTGCCTATAAAAAGCAAGTAACATAATAGAAAAGCAAAAGCATGGCAACTGGGCTGATCATGAACCTGTTAAGAGCTACACCAACCGGTGGCATGCTCGGATCGCCACCTGTCAGTAGTACCGAAAATTATAACGACTGAAGGAGAAAAAATGAGAAAAATAACTAGCCGCATAACTTTCGAAAAATATAGTACTACGGTTTATGCTAATAATCAAAAAAATAGCTCACTTTTTTGATTATTAAAAAAGTGAGCTGTTTGTAAGCGGTTGGAGGAAAATGAAAACTGCAAAAAATTAAGCTTGTGACTTGGTCAACTTTCAGAAAAAATAGCTAGCCAAAGAAAAACGGCTCCAGCAGAGCTGAAGCCGTGACATGGTAAATATTTAAATCTTGTTTTTTAGTTTGCTTGTTTTCTTGCTTTTGTCTTTCCAGCCTTAAGCTGCCCGCTTCTTGGTCTGGATTTCCCTAAGGCCTGGCAGGCTGATCATGACCAGGAAGCTGATGATGTAGAGGGCGGACAAGAAGCCCATAACCACGTACAGGTTGTAGTGGTCCATCAAGGCGCCGATGATGACGGAAGAGAAGCCCCCGATGGCCCGGCCGGTGTTCATGATCAAGTTGTTAGCCGTGGACCGGATTTCAGTCGGGTAGAGCTGGCTGATTACCGCCCCGTAGCCGCCAAACATCCCGTTGGAGAAGAAGCCGGTCAAGGCTCCGGCCAAAAGCATGGTCCAGTAGCTGGTCACGTTGACGATGGCAAAGACCACGACCGCGCTGCCCAAAAGGAAGATGCCGAAGGCCCAGCGGGGACAGATCTTGTCCATGATCGTCCCGAAGACCATTATCCCAATGCTCATCCCGATGATAGTAGCGATCATCCAGTAAGAAGAGCCGGAAACTGACAGGCCCTGCTTCTTCTGCACGATTGACGGCAGCCAGTTCATCAAGCCAAAGTAGCCGGCAATCTGCACGATCGTCATCAGCATCAAGCCCAGGGTTTGCAAAGCCAGGCGGGGCGTCTCAAACAAGCGGCCGAAGGAGATCTTTTCACCCGTTTCTTCCGCCTTCTTGTGAGCGGCCAAAAATTCGTCGCTTTCCTTGACGTGGCGGCGGACAAAGTAGGTCAAGACAACCGGCACTACCCCAAAGAGGAAGAGGGTGTTCCAGCCGTAAGTCGGAATGATCCAGGCGGCCAGAAGAGAGGCCACGATAGAGCCGATTTGGCCACCCACGGCCGCCACCGAGCTGGCCCGGCCGATTTGATTAGCCTGGAAGTTTTCCGCGATCAAGGCAATCCCGACCCCGTATTCACCGCCGGCCCCGATCCCGGCTAAGAAGCGGAGAGCGTAAAGGGCGGTGATGTTGTGGGCAAAGTAGGTTAAGCCAGTCGCGATGGCAAAAAGAAAGATCGTATAGCTGAAAGTCTTGACCCGGCCGATACGATCTCCTAGCAGCCCAAAGAGCGCGCCACCGAAGAACATTCCGAGGTTGGTAAAGGTTCCGATCCAGCCGCCGGCCGTGGAGCTGACGTGCATCTGCGCGATGATTTCCGACAGGGAGAAAGACAGGAACATGACGTCCATGTTTTCCAGCAGGAAGCCGGAAGACATGGAGGCTAAAACCCACTTTTGGTTAGTGGACATTGGGCTGGTATTATCCATTATTAACTTGTACCTCCAAAATTAATGCTCACGGACATTACTTATTTTGTATCGGTAACAATTATTTACGTTTTTCTTAAGATTGTCAAGGGCTATTGCAAAACAATCGTTATTTAATTACTCAGCCCGGTCGCTGATGGCCTTCGGCAGGGCAATATTGTGGTGGAGATTATGCCAAAGATGCTGGTCAGCCAGGGCAATCATCGGCCGTTGACCAGGAGGCAAAGGAGGGTGCCAATATTGACGGCATAGACTTTGCCCGTTGCCAGCCAGCAGATGCCGGTAAGCAAAAGCGGAACGCTGAAGTTGATCAGCTGGGCCCGGACCACCTTGTTCTTGCAGTACATGAAGCGGAGGATGTTGGTCGTGTCGTCATTCGGGTGCATGAGCAAATTTGCCCTTTGGCAAAAGGAAATGGAGCAGCCCAGGGTCATGATGCCCAAAAGCCCGGCTACCAGCCGCCAAGGCAAAGGCAGGTCCGGCAGGCCAAGGGCGGAAAAGAGGCTGGTGAACAAGTTGATGAAGTAGCTGAAGCAGGCGATAAAGACGACTTCGTCCAGGAAACGGGGCAGGTCAAAGCGCCGCATAAGCAGCTGGTTGATGACGGCTACCAAAAAGCCGGTCAAAAACATGGCCAGGGCAATGCTGGTATGGAAAATATGGGCCAGGTTGACCTCCGACGCCCCCCAGGGAGCCGTGCCGATATTGCTGGAAATGGTGATCCCGTTGCCAAAAGCATTCAAGACCAGGCCAGAGAATTACTGATATCCAAGAGATGCCTTGCATAAAAACTTGTCTGCTGTTTAAGTATCACAATTTTACTCTATTGATCACCAACATTCCAATAGATTTTCTCTAATCATAATTTGCCGGCGATAAACTGCTTTTTAATCAGACAAATCTATTAATAAAAACGAGCATTCTATTATAAAATGTAAGCGATTTACTGCATACTGAAATTAAGTGAGAAAAATAACAAAAGGAGTGAAAGCAATGTCGGTCAAGAAGCACCGGTATGCCGCTACGGCCAGCACGGTCTACTTTTCATACTTTATGATGGGGATCGGGATGTCTCTTTTGGCCCAGTTCAAGCCCCAGTTTGCCAGCCTCTGGCATTCCTCAATTTCCGAAGTCTTGAGCGTGGTCAGCGCGGTTGGGATCGGGGGGATCGTCTCCATCTTGATCACTGGCCCTATTTCAGACCACTTTGGCCGCCGGGCCTCAGCCGTCATCGGCCACTTATTGTGGGCTATCTACTATATCGGCCTGCTTTACGCCCCGAATTTTGCGGTTGCCTACATTATCGGGATCCTGGGCGGGATCGCCAATTCCTTCTTGAACGCGTCCAACTTCCCGGCCTTGATGGAAATCTTTTCAGAAAGTGCCTCAGTAGCAGGCCTCATGTCTAAGTTTGCCATCAATATCGGCCAATTCTGCCTGCCTTTAGCTATTTTGCTGGGGACGGCCCTGGATTCAGGCTACCGGACCGTCTTCATGCTGGCCGAAATTTTGTACATCGTCATGGCCTTGATTCTGGCCTTTTCACCTTACCCAGACCAGGTCACTGGCCCGAAAAAGCAGGAAAAAGCCAAGCACGACTTTAAGCCAGTTGCCAACTTCTACGCTGCCGGTGAACTGGTTGGCGGGGCCAACGGCAAGGACTCAATGCCGTCAATGATGAACTCCTGGTCCTACGCTTCCGGTTTCGTGGCTGGTACGGCAGCTGCTGACAATGCCAACAACTACGCCGTTGACGTTATTACCAGCGCCAGTCATGCTCCGGCTCCTAAGCCAGAAGCAACTTCCGGCGCCATCCACTATCATTGCTAACAATTCACAAATTTTCTCCCGGGCACAAAATAAGCTATGTGAAAATATACACTTTTCCTTTTTTGGCCGCGGGAACCTTCTTCCTTACAAAAACTTGCTAAAAAAGCCCAAGCTGATGCTTGGGCTTTTTCTTCTTAAACTAGCTTATGTTCGTTATTGCAATGCTTTCGGCAGTATGATTTGATAAATCGTTCGAATCTGGTTACGGCCGGGGTTAGGAAGTGGTCGGACTTTTTCACGACAAAAATCGGGTGTACGCCGAGATTTTCATCAATGTGCAAGAGCTTGACCGTCCGCGGATCCAGCTGGGGCAGGTGGGGCACGATAGCTACCCCGTAGCCCCAGTGAACGAAGCCAATGATGGTATGGTCCTCCATGGACTCCATGATGATCTTCGGCTTGACGACGGCTTCAGCGAACATCTTGTCCAGGAGGGGGCGCAGGCGGCTGCTTTTGCTATAGTAGATCATCGGGTACTTGGCCAAATCAGCCAGGGAGACAGAGTCCTTTTGGGCTAAAGGATTGGAAAAGGGAACGACTGCCAGCATTTCCTGGTCAACCAGGTGGGAGATGTCGACCTTGTCTTCCAGGCCAGGCAGGTCAGGAGCTGGGGAGACGACTAAATCCAGGTTGTCATTGACCAGCTGGTCCACCAAATCGTCAGTGGTTCCCTGCACGAAGGAGAAAGTGATGTCTTTGGTGTCTTTTTCCTGCTTGAACTTGTAGATCAGCTGGGGAATCAGGTCCTGGCCCATGGTGAAGCCGACCCTGATATGGCCCCGGTTGACGTCCAGCAATTCAGCAATGTACTCGCCGCCCCGGTCCAGGTCGCTCAAGCCGCTCTTGACGTATTCCAGGTAGATCTTGCCATAGTTGGTCAAGCGGATGTTCCGGCCCTCTTTTTCAAACAGGGGCACGCCGAGCTCTTCCTCAATGCTGCTGATGGCGTAGGAGAGGGAAGGCTGGGAGATGCCCAGCTTTTCGGCCGTCTTGGCCATGTGTTCCGTTTTCGCCAGTTCGACGAAGAAACGCAAATGTCGAATGTTCATATTTGCCTCCAAATCATGCACAACAGGTTTCCATACCTACATTGTACCGTTAATCTAGAATTAATAAAATGCTTTTATCGATAATTTTACTTTGCTCTATTCATCACGAAGGTTGAAAACGATAACATAATAGTGAATTGAGAAAAATGTAACTTGTTGTAAAAGCTTAAAGGAGATTCCAGAAATGGCAGACGAAAGAAACAACGAGATCGAAGAAACGAAGATTCAAGGAGTTAACGGGCCAATCACCGGCTGGCTTGACGGGCACACGATTTTGGTCGGTTTGATGGCTTACCCAATCCGCCACACCATGTCACCAACCATGCACAACAACGCTTTTGCCAAGTTGGGCTTGAACGGGGCTTACCTTTGCGTTGAAATCGACAACGAAAAGCTTCCAGGCGCTATCGACGCTATCCGGCCCCTGGACATGCGGGGCTCAAATGTTTCAATGCCTAACAAGAAGAAGGTCATCCCTTACCTTGACAAGCTGGACAAGACTTCACAAATGTGTGACGCGGTAAACACTATCGTCAACGAACACGGCATTTTGTCCGGCTACACCACTGACGGCATGGGCTGGGTGCGGGCCTTGAAGAAAGACGGCCAAGACGTTAAGGGCAAGATCATTACTTTGGCCGGTGCCGGCGGGGCTGGTTTAGCCGCTGCTACCCGGTCTCTGCAGCATGATAAGAAAGTTGTTATTCTGGAAAAGTTCCCGCAACTGGGTGGTAACACTGCCCGGGCCTGCGGTCCAATGAACGCGGCTGAACCAGACTGGCAAAAGGGCTTCAAGGCCCTGCCAGGTGAAAAGGGAACCTTGCAGGAACTGGCTGAAACGCCAACCAGCGAAATCGACCCGGAATACGTGGCAGACTTCGAAAAGCTGCGTGACCAGATCAAGGCCTACCTTGACTTAGGTGAAGACTACCTCTTCGACTCAGTCCTGCTGCACGAAATTCAAACCTACCTCGGCGGCAAGCGGGTGGACCTCAAGGGCAACGAAATCCATGGCAAGTATGAACTGGTAACGACCTTGGTTAACAACGTTTTGGACTCAGTCAACTGGCTGACCGACTTGGGCGTGAAGTTTGACCGCAGCGACGTGACCATGCCAGTTGGTGCCTTATGGCGCAGAGGCCACAAGCCGGTTGAACCAATGGGCTTTGCCTTCATCCACGTTTTGGGTGACTGGGTTAAGGAACATGGGGCAACCGTTTTGACTGAAACCCGGGCCAAGCACTTGATCATTGAAGGCGGCAAGGTGACCGGTGTGATCGCGGAAAAGACTGACGACTCAAAGGTAACTGTCCATGCCAAGAGCGTGATTTTGATGGCCGGCGGTTTCGGGGCCAACACCAAGATGGTGCAAAAGTACAACACTTACTGGAGCGAAATTGCTGACGACATCGCCACGACCAACTCACCAGCCATTACCGGTGACGGGATTGTCTTGGGCCAGGGAGCCGGCGCCGCTTTGACGGGGATGGGCTTCATCCAACTCATGCCAGTTTCTGACCCGGTAACCGGGGAACTTTTCACCGGCTTGCAAACTCCGCCTGAAAACTTCATCATGGTCAACCAAAAGGGTGAACGTTTCGTCAACGAATTTGCTGAACGTGACACTCTGGCAAAGGCAGCGATCGACAACGGCGGCCTCTTCTACCTGATCGCCGACGACAAGATCAAGGAAACTGCCTACAACACCACGCAAGAATCAATTGATGCCCAAGTGGAAGCCGGCACCTTGTTCAGAGCTGACACTTTGGAAGAACTGGCTGAAAAGGTGGGCATGGACCCGGCAGTTTTGACCGACACCATCAAAGAAGTACAACTCTTACGTTGACGCCGGCCACGACCCGGAATTCGGCAAGAGCGCCTTCCACTTGAAGTGTGAAGTAGCACCATTCTACGCAACTCCGCGTAAGCCAGCCATCCACCACACCATGGGTGGTCTGGTTATCGACACTAAGGGCCACGTTTTGGACGAAGCAGGCTACGTGATCGCCGGCCTGTACTCAGCTGGTGAAAAACGCGGGCGGCCTGCACGCCGGCAACCGTTTGGGCGGGAACTCCTTGGCTGACATCTTCACCTTCGGCCGTTTTGAACACGCTCAACACCTTTATCTGTACCGGCGCAAGCATCTTCTACAACGAATCCATCCCTAAGGCAGCGCGGATGACCGCCTACCTTAACGGCTGCAAGGAAGCCTGGATCCCATGCTTAAATACGTCAAGTAATTTTTTATAAAAAAGATCATGAAGGAGAATTTTACCTTCATGATCTTTTTGCTTTGAAAAATTATTCTCCCCGCCAGCCGGCAATGTCCCAGCTGGTGAAGTCGTAGTCCAGTTTCTTCTTGTAGACTCTCTCATAAGCCTGGACCTTCAGCTTGTAGTCTTCTTCCATCAAGCGGCTGGCGTTCTCGCTGGCCGTCTTGGTCGGGTCCGGGTAGAGGACGTCCAGAACATGTACGGTGTAGCGGGTCTGGTAGAAGTGCTCGTTCTGCTTTTCCAGTTTTGGCAGGTCCTGGATTTCCACAAAAGTCGAAATCACCGGGACGTTGCACTTGGCCGCGAAGTAGTAGGCCCCGCGTTGCGGCTTGCGGGGCTTGCGGTAGTTCCACCACATTTCCTGTTCAGGGAAGATCAAGACCCAGTGGTTTTGGTTAAAGGCCTGGTTCAAGTGCTGGATGAATTCCCGGCCCAGGTAGTTGGGACTCTGGGTCAGAGGAATTGACCCCATATTGTTCATGATGTAGGAGAAAAAGCCCGGCAGCATCAAGTTGGTATCTTCAATCACTATGTCCATCCGCCGGTGGGCCTTCTGGGCCAGGCGGTTGACGGCCAGGGCATCAACTTGGTTAAAGTGGTTGGCCGTCACGATTGCCCCGCCCTTTGGCAGGCCTTTTAGCTTGCCCAGGCCATTCACCTTGGTTGACCCGGAGATGGTCTTGGTCAACAGCTGTAAAAGCTCGTGGCCCACGGTCCCGTCAAATTTCGTCTTGGCCTGGTCCTGCTTTTGCCAAAAGCCTTCCACCAGGGCCAGCTTTTCCTCGCTGGACATTACCGGGTCGCCGATTTCCGTTTTGGCGGTAAAGTTTCTTTCATTCGCGGCCTGTTTGATATTGTGGATCACGTCCAGGCGCTTATCTCCGATAATCATATCTTTCTCCTTGCCCTATAGGGTAACTTTTATTTCCCGTTTCCCGTGGAACCAGTTTTGCGGATCATGCAAATTTTTGCAGACCATGTCGACCATGCTCTGCATCTTGGCCAGTTCTTCCTTCCGGTCCTGGTCGCTGAAAGCAGCCAGCTGTTTTTGCAGGTCTTTATAAAAAGGCGTCTCTTTAGCGACCTGCCAGAAGTAGCTGCCATACTTGACTTCCTCGAAGTGCCAAGGCTTGTAGGAGAGGTTGTAGTGGATCAAGTACGGACCGGTCATTTCCGGGTCAAAGTCGTTAGGCATGGCGTCCCAGCGGGGGTCCAGCAATTTGATCCGGCCAGAGCAGATCTCGTTTAAGTAGTCCTGGTCCGGCGCGATTGAGTTGAACTGGTAGGTCGAAAGGAGCTGCAGGAACTTGTCCACGAAGCCTTCATCCCGCATGGCCAGGCAGTTCATGACCAAAACGCCGGAGTTAACGTATTTGTCCGGATCGATCCCCAGGCAGTCTCGGATGTAGGTCTGCAAGGGCTCGATATAGTGGACCGACTGGTCATGGCAGGCAGCGACCAGATTGTTTCCCAGTTCCGTCTGGTAGAGGCCGGCGATGTCGGCGTTCACGACCGTGTCAGCGTCGATATAAACAGCCTTGTCGTATTCCGGGAAGAGTTCCGTGATAAAGAGACGGTAGAAGATCGACAGGGTGAAGAAGTCGGCCCGGAGATAGTTGCCCTTCTTATTTTGGATTTGGGCAAAAGCTGGTCATCCAGCTGGCGGAATTCGATCTTAACCTTGTCTTTTTCATAAGCGGCCAGGGCCTGCTGGTTGGCCGGGCTCAGCCCCTGGTGCAGGATGATGATCGTATAGTCCTTTTCCGGACTGGCATGCTTGACCAGGGAGCTCACGAAAACAGCCAGGTAAGGGGTGAAGTCGTCACTGATGGTGTAAAAATTGGAATCGTCATCTTCCTATCCTCCACAAAGCAGTTTTGTATTTGCCTTACAGCTGGTCTTTCAGTTGCAGGTACTCATTAAGCAAGTCATCGTATTCGTGCAGGTTGAGCACGCTGTGGACCCGTTTCACGTCCCAAGGCTTGACCGTCTGGGTGCGGAAATAAGGGAAGAAGCGGAAGCTGGTGGTGAAGTGCTGGATGACCGTATCGTCCTGGAGGGCGTATTGCTCATTGTACTTACGCGGGGCAATCCGCTTTTCTTTGGCTAATTTATTGATGGCCGTCTGGTCAGGCAGGAACATCTTCTTGACCTGCATCAAGTGGCGGACCCGTTTAAAGAGGCCAGTCCGCTTGATTTCCGGCATGTTCAAAAGGAGAACCCCGGAATTCAAGTAGTCAAAAATCTTCTTTTGATTGTGGAAGAAGAAGCGGCCAAAGTAGTCCAGGACCCCGACCAGTTCCGTCCCGGTCAAGTCCTGTGTGTAAAACTGGTCAACCGGCCGGCGGATGATCACGTCATCGTCCAGGTAGAGGATGCGGTCGGGAATTTGCGGCAGTTCGTCGGCAAAAAGCCGGAGCATGGCGTAGGGGGTGAAGCGGGTGCCCATGTTGGCCGTCGGCGGTTCCTTGATGAAGTTTTCGGTGCAGTCGATCAGCTCCAGGCTGCTGTTGGGGTTGTCAGCCACGATGAGCGAGCGGATGAAGTCGGCCGCGTGCTGGCTGAAGGGTTTGAAGGACCTGGATTTGCTCTTGGCCCTCATGGTCAGGATGTAGACGTGAACCTCTTCGCCGCGTTCGGCTTTGAGCAGGGATAAGACGGCAATCAGCACGCCTCTTTCAGCGTTGTGGTCACCGCAAAAAAGAAAGTTCATGGTTTTGCCTCCCTAGTAGAAAAAGTCCTAGTTCTTACTGTCAATTTTAACATACGAGCAATACTCGCAAGTGCTCAGTTTTGCCCGCTCCTGCATGCTTTTGGCGATTTCACCGTGCAGCTTTTCCTGAGCCGCCTTCTTGCCCAGCTTCTCGTCCGGGTAAAAGGGGCCATCGATGTAGACCGTTATTTTCGGCCGCTTGCGCCAGCGGCAGGGCTGGTAGGTGGTCGTCATGGCAAAAGCCGGGGCTTTCAGGCTGACCGGGAAGTTGAAGCTGGTCGCCGGGAAAGGGCGGATCTTGGTGTAGTAGGGCCAAAGATGGGCTTCCGGGTAGATGACGATGGCCGCCTGCTTTTCTTCATAGGCGTATTTAACTTCCTTGAGTAGGCGGATGGACTGCTTGATGTTTTTCCCAACCGGCAGGCCAGCTGCCGGAATCACGTACTTGCCTAAAAAAGGAATCCCCCAGTTGGCCTGGGCGGCCAGGGCATAGTAGTGGTAGGGGTTGACGATGGTCATGGGGTTGAAGGGGTCACCCAGCATCTGGGTGTGGTTGCCATAGACAAAATAGCCCTGCTTTTTAAAAGGGCGCAGCTTTTCCTTGCCTTTGACTTTAACTAGTAAGAAGAGGCGGGAGTAGAGCCAGGCAAAGGCGCAGGCCAGGCTGCGGACCAGGCCGTTCCAGAATTGCCAAGCCGCCCCTTCCCGGAAGAACTGGTAGTCATCTGGGAGCTGGAAGTCCTGCTGGGCGGAACTGACCAGGTCCTCGCTTTCGCTGTGGTAGTAGTAAGTCTTTTTGCTCATCAAAAGTCCCCGCTTGCTGTAAAATAAAAAAGCACTGCGAGCGCAGTGCTTAGAGATGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCGTGTCAACCAATACTTTTATTATGCCATAAATTTCAGTAAAAGCAATCTCCTTTTTTACATTAATTGTAATTTTTTTAATTTCGTGGGCAAATCAAGTATAATAGTCACAGTGAAGGAGGTTCATAATGCCTAAAAAAATTCTCGTCGTTGACGACGAAAAGCCGATTTCCGATATCATCAAGTTCAACTTGATCAAAGAGGGTTTTGATGTAGAGACCGCTTATGACGGCGAGGAAGCTGTCGAGAAGGTTGAAGAATACAACCCTGACTTATTGATTTTAGACTTAATGCTTCCGAAGAAAGACGGGCTGGAAGTAGCCCGGGAAGTCCGCCAGACCCATGACATGCCGATCATCATGGTTACTGCCAAGGGCGGTGAGATCGACAAGGTCCTCGGCCTGGAAATGGGGGCGGACGACTACGTAACCAAGCCTTTCTCCAACCGTGAGCTGGTGGCCCGGGTCAAGGCCAATTTGCGCCGCCGGGACATCGTCAAGAAGGCAGTGGAAGTCAACCAACAGAAGGAAAAAGAACAGGAAAGCAATGACATCCAGATCGGCAACCTGCTGATCAAGCCGGATGCCTACCTGGTTGAAAAGAACGGGGAAAAGATCGAACTGACCCACCGGGAATTCGAGCTGCTCTACTACATGGCCCAGCACATGGACCAGGTTATGACCAGAGAGCACCTCTTGCAGACGGTCTGGGGCTACGACTACTTTGGCGACGTCCGGACGGTTGACGTTACGGTTCACCGCTTGCGGGAAAAGATCGAGGACAACCCGGTCCGGCCGAAGATTTTGGTTACCCGGCGGGGAGTCGGCTACTTTGTCAAGCAGCAAACAGAAGAATAATTTGGGAGCCACTGTTTGAGGTGGCTTTCTTTATGTGGATGGATTAATGAAGAAAGATAAAAAAGCACGCAAAGAGAAAGTGAAGAAAGAGAAGACCTACCTGCTTAAGCGCGCGGTCAGCTCGATCCAGACCAAGATCGCCCTTATCTTCATGCTCCTTTTGCTGGCCACGATTGAAATCATCGGGGCCTACTTTACCCGGCAGATGGAACAGACCAGCATCAACAACTTTCAAACCACGATTCAGCTGCAGTCGATCGTGACCGACCAGCTGACTACCCAGCTGGTCAAGAACGGCAAGAGTGCTGACCGGAAGATGAACCAGATTATCACTGACTACAGCAATGACGCGATTTCTGAAATCCAGGTCGTGGACAGCAAGAACGTGATCCGGGCCGTGTCCAACTTAAGCGACAAGAACCGGGTGGGGCAATTGTCTAACAACGGCGATATCCGGGAAGTGATCAACTCCGGCCAGCAGAAGACCCAGGTTACCAGTGACCAGAAGGGCAGCTTCATGGTTCAGATCGTGCCTCTGACCAGCGGAACCAACATCGTCGGGGCGGTTTACGTCCGGGCCAGCATGGCTGACGTCTTCAATAACTTGCGAAATATTTCGATGATGTTCTTGACGGCCTCACTTTTGGCCGTAGTCGTGGCGGCTATTGCCTCCATGTTTATTTCCCGGGCAATAACCCGGCCGATTGAAGAGCTCCGCCAGCAGGCCATCCAGGTGGCTGACGGGGACTACTCAACCCAGGTTAAGATCTACTCTAATGACGAACTGGGCCAGCTGGGGGCGGCCTTTAACACCCTCTCAACCAAGATCGAGCGGTCCAATGAGCAGTCAGAATCTGAGCGCCGCCGGCTGGACAGCGTACTGTCCCACATGACTGACGGGGTGATCGCGACCGACCGGCACGGGAATGTGTCGATCATGAACCAGATGGCCCAGGACTTCCTGGACGTCAAGGCCGAAGACGCGATCAAGAAGCCGATTTCTCAAGTTTTAGGCCTGGGGGAGGACTACACTTCCCAGGACTTGATCTCCAACCAAAGCGACATGCAGGTCACGGTCAATGCCGGCACGGATGATGAAATGATCCTGCACGCCAGCTTTACCTTGATCAAGCGGGTCACGGGCTTTGTTTCCGGGGCCGTCTGTGTTTTGCACGACGTGACTGAGCAGATCAAGAACGAAGACGAGCAGCGGCAGTTCGTTTCCAATGTTTCCCATGAATTGCGGACTCCTTTGACCAGTGTCCGGGCTTATATTGAAGCCTTGAATGAAGGGGCCTGGAAGGATCCGGAGATTGCCCCCCAGTTTTTGGATGTGACGCAAAAGGAAACTGAGCGGATGATCCGGATGGTCAACGACCTCCTGGTTCTGTCCAGAATGGACCGGGGAGCCACCAAGCTGGAACCGGAATGGGTTAACTTTACTGACTTTGTCTCCCACCTGCTCAACCGCTTCGACATGATTGTCGAACATGACCAGGGCGAGGCCCAGAGCGATACCAAGGAATACGTGATCAAGCGGGACCTGGGCAACCAGGCCCTTTGGGTGGAAATCGACACTGACCAGATGATGCGGGTGATCGACAACATCATGAACAACGCTATCAAGTACTCCCCTGACGGGGGGACCATCACGGTCCGCCTGACCCAGAACCAGAACCAGATACTGCTCAGCATCAGCGACCAGGGCCTGGGGATTCCAAGGAAGGACCTGGGTAAGATCTTTGACCGCTTCTACCGGGCAGACAAGGCCCGGTCCCGGGCCCAAGGCGGGACCGGTTTGGGCCTGGCCATCGCCAAGGAAATCGTGACGGCCCATGGCGGCCGGATCTGGGCGGACAGCCGGGAAGGGCACGGGTCAACCTTCTATATTGCCCTGCCTTACGAACCAATGGATGAGGAGGATGAATGGGATGAAGTTTAAATTCAAGTTCAAATTCAATGATTTTCTCCTCCACCTGGCGACTTTGGCCGTGATTTTGATTTCGATCGGCCTCTGGGTCACGGTGATGACCAGTGACCAGCGCTTCAGCCGGATCAGCAATGAATCATCCTCCCAGAGCTCGGCTTCTTTGTCGACCCACTACCGGAATGTCCAGTCTTTTTACGCCCCGGGCCAGACCTATGTCTTTCAAAACGGGGTCCGCTACCAGGTCCATGACGCCAAGCGGAACCTGCCTTTGAAGTTTGTCCAGTACCTGGAAAAGGTCAAGCTGGGGACGATCGAGAAAATGTCAACCACGGCCAGTGATTATGAGAAACTGCTGGCTGACCAGAACTATATTATGTTTGCCTACCCGGACCAGATCAATTTCACGGTCCTTTTAGGCAAAAAACAAGCTAATTCCAGCCTGCAGTTCAACCGGGTCTTTGTCCCGGTCAAGAGCAAGACCCGCTACCTCTATTTCGGCAACGACAAGGGCAGCCGGGTCTACCGGGTAAAGATCAAGTCCGGCTCCTTCCGGCAGCTGGCCAAGTACGTCAAGAGCGCCCAAGACCGGCAGGAGGTCAGCTTCCTGCACTTAAAGAAGCTCTACGTGCCTTTTTATGCCAAGGAAATCAAGGCCAAGGAATACAGCTACCTGATCAGCTACCAGTCCAGCAGCTACTATGCTTCCCGGCTCTTGGGCAGCAGCTACCGGAAGTCAGTGGCTAAGAACGGCCGCACTGTCTACACGGCTGGTTATTCCAAGCGCCTGCAGATTCCTAAGGAAGGCAAGAGCAATGACCACCAGTATCTGTACCAGAACTACTTGACCAGCCAGGAGCGGACGGCCACCCAGGAGATGCTGGAAAGTGCCGCCTATGTCAAGCAGCTGGGCCTGGCTGAACAGGACCTGCGCTTTTTTGAAAGAAGCGGCAAGACGGTGTCCTACATCAAATATATTGAAGGCTATCCGATTTTTGCCAACGACGCTTTGGCTCAGACCCAGGTAACCATGGGGACGGAGTCGGTCAGCGTGGCTTTCAGCAGCATGAACCTGCAGATCCCGATCCCGTATGACGGCCGTGTCAAGACCTTGCCGAAAACCGCGACCCTGCTGAAGGAGCTGAATAGCATCGGCATCAAGGAAAGCGAAATTGAAAAAATAACCATCGGCTACCATATCCAGGCCGACAAGAAACGCAGCGACTTGATTACCCTGGTGCCGACCTACTTCATCAAGGTTGGCGGCAGCTGGAACAGCCTGGCCGGCTGGAAGAAGATCAAGGCGGAAAACACGGATCTGTTAATGGAGGGGGCAAGTTCCAGCTCCAGCAGCTACTCGTCTTCCAGCTCTTCCAGCAATGAGTCGAGCAGTGAAGCCAGCTCAAGCGCAAGTTCCAGCGTCAGCCAGGCACCGGCCAGCAGACAGGAAGCATATTCCAGCAGCCGCAGCCAGCCGGCGGCTGAATCAAGCTCCAGCTCAAGTTCCGCCGTATCAGCAAGCTCTGCCAGCTCAAAGGAAGGAGAAAAGTAAATGGATCATCGCAAAATTGAATGGCTTTTTCTGATCCTCTTCTGCTTAGTCGACATCTATCTCTTGATTGAGCTTTGGCGGGCCCCGGTTACCTTGACCTCATCGACCAATTCGGTGACGACCTCAACCAGCTTGAAGGCTGAAATGAAGTCAGACAATATTACGGTTCCTTCCCTATCCATAAAGGGGGACTCGGGCTACTACCTGGCCACTAGAAGTAAGAGCGACTTGAAGGAAGCCGCCAAGAAGCTCAGCAGCGACGTCTTCACCAGCTACGCTGAAGGGGACAAGACCCTGTACGCGACCATGAAGACCGCGATTCCGCTGGAGCGGATGACGGTGGGCGAGTTCAAGAATGACAGCAATTACGTCCCGCATGGCAAGCAGTATGTCTTTGCCAAGAACCTCTCCAGCAACAGCAGCTACGTTTACGTGCAGAAGTCCCAGTACGGCCTGGTTTACAGCAGCCTGGCCCAGCTGGTGGTCAATGTCAGGAACAAGAAGATCACGGGCTACTACCAGACCTACTTGACTGACTTGTCCAGCGTCCGCGAGCTGCAGGCAACTATCAGCCCCTTGCGGGCGGTCACCAACCTCTACACCACCCGGGAACTGGCCGACAACTCCCGGGTAATGCAGGTCAAGCTGGGCTACACCAAATTGACCGAGGTCCGGGGCAGCGTGATTTTCGTCCCGACCTGGCTGGTCTGGATCGAAAACAAAAGCAGCAAGAGCAGCTGCTTGAAGCGGGTCAACGCCTTCAGCGGCCAGCTTTTGCAAAACAGTACATTGGACGATTAAGGGCAGGAAGGAAAAAATTTGCAATTCGCGGTATTATCGAGCGGATCAGCGGGCAACTGCAGCCTGCTGATGACTGACCAGCACAAGATTTTGATGGACGCCGGCCTTTCAGGCAAGAAGACCAAGGAGCTTTTAGCCAAGGTAGGCGTGGCGATCGAGGACCTGGACATGGTCTTTTTAAGCCATGACCACGGCGATCACAGCGGGGGGATGGGGGTCCTTATGCGCCGCTATCCCCAGCTGAATGCCTTCAGCAACACGGTCACCTGGAAGTACTTGGAGGAGACCGGGAAGATCGGCTGCCTGCCGAAAGACCAGATCAATGTGATTGAGCCGGGCCAGACCAAGTGCTATGGGGACTTGGAAGTGACGGCTTTTGCCACTAGCCATGACGCGGCCCAGCCCCAGTACTACGTTTTTTCCAGCGGGGGCAAGCGCCTGGCCTGCTTGACGGACACGGGCTACGTGTCTGAAGAAGTCGAATATGAGATTCAAGATGCGGATGCTTATTTGCTCGAGTTCAACTATGACGACCTGATGCTGAGAAGCGGCCCCTATCCCTGGAGCCTGCAGCAGCGGGTCCGGTCAGACCACGGCCACCTGTCAAACGAGCAGGCGGCTGAGACTCTGGCCAGGGTTATCAGTTCTAAAACCAAGCATGTTTTCATGGCCCACCGCAGCCAGCAGAACAATTTAAACTATTTGGCCCGGGACGTGGCGGAAGAGGTTTTGGCGGCCAGAGACGCCGACGTGGCCAGTGACCTGGAATTGCACGATACCGAGCCGATGACGCCGAGTTCTTTAATTAATTTATAATACATAGGATTTAAAGCTTTTAATTAATACGTTTTGTTCATATATACTTCAAAAAGCTGGGATATGATAATGGCAACGATAAGGAGTGATAACCATGTCTGAAGAACAAGATAAGCAAAGAAACACGCGCAAGAAGGAAAATAACCGTTTGCTAACTAAAGCGGCCATCATTGGGGTCGTTGCCGGTATTTTGGGAGGGGGGATTGCTTACGGCGGCTTGTCAGCAGCCAATTTGAACAGCAATACTTCATCATCCACGGCCAGCTCAAGCAGTAGCAACACTGGTGAAAACGGGTCAGTGACGACTTCATCCAGTGGCACGACCAAGGTCAACAAGTCCAAGACTACCAGCGGGACGATGACTTCCGCCTACAAGAAGGTGCAGAACGCGGTTGTTTCAGTCTTGAACTACAAGTACACTTCCAGTTCATCATCAAGCTCTGACATCTACAGCATGTTTGGCTACGGTGACTCGGACAGTTCAGACTCATCCAGCTCCAAGAAGTCTTTGACTTTGTACTCTGAAGGTTCCGGGGTCATCTACACGACGGCAAACGGCAAGGGCTACATCGTCACTAACAACCACGTTATTTCCGGGGCAGCCAAGGTGAAGGTCATCCTGGCTTCCGGGAAGACGATTGCTGCTAAGGTTGTCGGCAAGGACTCAACCAGTGACCTGGCAGTTCTGTCAATCGACTCCAAGTACGTGACCCAGACCGCTTCATTTGGTGACTCCAGAAGCCTGCTGTCCGGGCAGACGGTAATTGCCATCGGTTCACCGGAAGGGTCTGAATACGCGTCTACGGTAACGCAAGGGATCATTTCCTCACCAAGCCGGACGATCACTTACAACTCCAACCAGATGACGGTCATCCAGACTGACGCGGCTATCAACTCCGGTAACTCCGGTGGGCCCCTGGTCAACTCTGACGGCCAGGTTATCGGGATCAACTCCATGAAGCTGTCCAGCTCCAGCAGCGGCGACTCCGTTGAAGGGATGGGCTTCGCGATCCCGTCAAACGAAGTTGTGACGATCGTCAACCAATTGGTCAAGAAGGGGAAGATCACCCGGCCGCAACTGGGCATCAAGGTAGCAGCGATTGCTGACCTAAACAGCTACTACAAGAAGCAGCTGGGCATTTCAACCAGTCTGAAGAAGGGCCTGTACGTGGCCAGCGTAACTTCAGGCAGCGCGGCAGCCAGTGCTGGGATCAAGAAGGGCGACGTGATTACGGCGGCTGACGGCAAGACGGTCAACGACGTAGCCACCCTGCACAGCATCCTGTACAGCCACAATGTTGGTGACAAGGTCAAGATTACGGTCAACCGGAATGGCAAGACCATGACCTTCACGGTAACCCTGCAGGCAAGCAACTAATTTAAGAACAAATAATCCAGTGGATCAGCAGATCTGCTGGATTTTTTTGCTTCTTTTCAAAACAAAAACAGGGTGAAAGGAAGGAAAAGTTCGGATATATTTCTTGTCAAGGAAAAATTTTAAGGAGACTTTATCCCCAATCCTGTGGAAAAGACTATGAATTGTGCAAAAAACGGGGTAAAAAGCGCTAAAAAAGTTGTGGATAATCTGTGGATTGTGTGTAAGTTCCACGGGTAAAAGTCATGTTAAAACGTCTGTTCAAGGCGACAGGCCGGGCTTTTTTGGTGATTGTTTGTGAAAAGGTCCAGTTCACAGTTGCTTTGTGGAATGGTTACACGGGATTTTAGAAATTTTTTGCAAAAAGCTAGACCTAGATAGAATTCGGCTCTAGTCCACTAGATCTAGAAAAGGACTTTCCACAGCTGTGGAAAAAGGCGGTTGATAAACTGTTAATTGTGGGGATAGAAGTAAAAATGGTAAAATAGGGGCATTATGAATATCAAAATTGTTTGCGTTGGAAAATTAAAAGAGAAGTATTTTAAGGACGGGATCGCGGAGTACCAGAAGCGGCTGAGCCGTTTTGCCAAGGTGGAGATCGTGCAGGTGCCGGATGAAAAGGCGCCGGAAAGCCTCAGCCCGGCCCAGATGGAAGAGGTCAAGAAGCGGGAAGGCGAGCGGATCCTGAGCAAGATCAAGGACAAGGAATATGTTTACGTTCTGGCCATTAAGGGCAAAGAGCGGGCTAGTGAAGAGTTCGCCAAGGAACTGAAGAACCTGGGGACCTACGGGCATTCCGACATTACTTTCGTGATCGGGGGAAGCTTGGGGACCAGTGACGCGGTCAACAAGCGGGCCAACGACCTCTTCAGTTTCGGCAAGCTGACCATGCCCCACCAATTGATGCGGCTGGTTTTGATTGAGCAGATCTACCGGGCCTTTATGATCAACTCCGGCAGTCCTTACCACAAGTAGAATAGAAAGTATAAGCCTCTCCGGGGAAATCAGCAGGAGGGGCTTTTTGTATACGAATCAGTCTAGTGCTAGAATCTAGGGTGAAAGTGTTTGAATAAAGTATTTTAGTCATGAAAGGGATGATTTAAATGACTAAAACAGAGCGTTACATGTGGCTGGCCAATGACCTGCTTTTGACGGCAGCGGCAGTGTCGCTGATCATCAATTTAGTTGGCCAGACGGCTTCGGGTTATGCCTTTAGCGGCAGTCATGGGCAGGCAACTGCTTTATGATGCTTTTATTTTGCTTGTTGCCGCGGCTGCTTTGGGGGTCTGGCTGAGTAAGTGGCTGGCTCCTGCAGCAGCTTGGGTAATTGGCGCCTGTCTTTTGCTGGGCCTTGTAATTGACCGGGTGGTAGGCCTGTATTTTGGCTTGACCTGGTACTGGACTTTGGCTGTTGTCGCTTTGGAGGTCAGTCTGGTTCTGGCCAGCTACCGCTGGCGGGGGAAGGCAGTCTCTAACTATTGGCTGGCCGGCATCCTCTTGGCCGTCAGCCTGGTCAGCTGCGTGATGGCCTGGCTTGGGTGAAAACGAAGGTGATAGAGATGAAATTATTAAAGATTTTAGTCAAAGTGGTTGATGTAATCTTACTATGCTTTTTGACTGTGGTAGTTTGCTCAAATCTAAAGGATTACATCAATGCTTTGAGAACGATCAAAGGGAACGATTTAAAAGTAACTGTTTTTGGCCATGTGGTTTTAATTTTGGTCTTACTGACAGAATTAGCCTTAGCTGTATTTAGCCAAAAAAATCCCCGTAAGCCGTTCTTGATTATTGGCCTAGTTTGCATTGCCTTGACGTTGATAGGACTGATTACGCCAATCGCTTTTGGTCCGGGCAATTTGCCACTTAACTTCTTGGCCTTAGTGTTATTGGCTGTTAGCCGCTTTTTGCAAGAAAACGTAGCTCAGAAGAGAACGTTGTAAAATGCAAAAGTTATTAAGCTTAGCAAGAATCACTGCTCAAAAGTTAAAATTGAGCTTGCAATATAAGTGAATAGCCTTTAAAAAATAGGAGCGTGATTATGATGAAAAACTTTGCAACTAAGCCAGCCGTTAAAACCGTCTTCTTGCTGGCTGGCCTCTGTTTGGCCTTGTTTATGGCAGTTCAGTGGATCTTTGCCTTGGGCAACCCAGGTCCGGTTTCATGGGCGATTGCCGGCATGATCGCGATCACTCTGCTGACCCTATTTCTGGGAATCGCGCCTTTGACTAAGCTCAGTCCGGTAGCTGGCTACGTAACTGCTGCAGTATTAGCGTTTGTCGTCTTGATCTTCGTCTTCAATATCCATGAATACATCTCAATCGGCATTTTATACCTAATTTACGCTGCCCTGGCCTGTGGCCTTTTATGGGCGAAAAAATAGAACAGTAAACAAAAATGGCTTCCAGGATTTTCTCCTAGAAGCCATTTTCATTATGCTATGCTGATTTGATTAAGCGAAGATTTCTTCAACTTCAACTACTACGGCAGGAGCAGTTTCCGGCTTGCCAACCTTAGCAGCGTATTCCTTAGCGAAGTCGTCGCCTTCGTGGATAGTCACGCTGCCGACCACGCGCACGCTAGTGTGGCTTGGCACGTCAGCAACTACAACAGCAACCTGCTGCCGTTCTTGATGTTTTCCCACAAGTGGGAGGAGGTAACTTCACTCCAGACCAGGTGCTTGTCGTCCAAAGCAGTCAATGAACCCTTAGGACCAACTTGTGGGTTGCCGTCCTTGTCAACGGAAGCAACGAAGGCCAAAGCGTCGTTAAAGAACTTTTGTTGGTCAGCAGTCAAAGTAGTAGCGTCTAATTTCTTCATAATGGTAATTTCCCTCTTTTTACTTAAGTAGCAATTCTTTCACTTGATACTTAGTATTATAGGACCTCCCCAGGCAAAAGAAATTGATTTAGGTCAATTTTATAACTTTTTCGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACACTAAACAACACCAAAAGGGCAAGCGCCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTACTCTAATCGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGAGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCACCCTTATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCAAGGGAGACCGTATGGATAAGTACCGTGTGGAAGATATTGCTAAGATCGAGGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGACTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCGGCGTAGATAGTCAAAATCTGCCAGATGTTATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGTTTATAACTTTTTAATAATTTTTTTGCAATTTCTACGGGAGTAAAAAAGCGCCCAGATTCAAAAGAAGAACCGCAATAATAAAGAGCAGCCAATCTTTGTTAGTTAGCGGCACCTCAACGATCACGGACCGCGGAGCGCCTTCGCGGTAGCCGTGGGACTCCATCCCCTGGGCCAGGTTGTCGGCACTGTTTAAAGCCACCAAAATCGCCTTAAAGTAGAGGACCGGGGACCAAAAGGAGAGGTAGACTCCCCGCATCATCCCTGCCACCCGGATCTGCTTGACCGCGGCTTGCATGCGGGGAATGATGTTCAAAGCCGCCAAAGTTCCATAAGCAAACTTGCTCGGCAAGTGCAGGTTCTGCTCTAGCGACCGGGCCATCTCTTCTGCCGTGGTTGAAATGGTCAGGCAGGCCGTGGCGAAGGTATATACGAAGGCCCGGCTGGAGATGTCCAAAGCATACCAGAGGTCGAGGTGGTCACTGAAGATGTAGCCTGAAGAAAAGACGGTAATTGCCGCTAAGCCCGTTGCCAAAAGCATCCCGCCCAGGGTCTTAGGCTTGATCCGCCGGTATAAGAGATAGGCTAATGATAAAACAATAACGATGACATTGCTGAAAAGGCTGACCTTAAAAGATAACTCCAGTGAAATAATCAAGATCAGCAGGAATTTCAAGCTGGGATTCATTTTGCTTTTAGTCATTTTCTCCTCCTAATCCTGGACAAAAGCCAGCTCTCTGCCGGCCAGACGCAGGTGGTAGTCGCACCAAGTGCTGATTCCGTAGAAATGGTGGCTGATCAGCAGGATCGTCTGCCCGCTCTTTTCCTGGCACTTTTGCAAAAGCTGCACGACCTGCTCAATTGACTTCTGGTCTAGGCCACTCAAAGGCTCATCGATTAAGAGCACTTCCTGGCCCGACAAAAGCATCAAGAGGATCTCCAGCTTCTTTTTTTGCCCGCCCGACAAGGAGTAGACCACCTGGTCCATGTGGTCGGCCAAATCCAGGTCAGCCAAGGCCTGGTCTAAGACTTCCGGAGTGAAGTAGGGGGAAGCGTGCTTTTGGCTCAAAGCCAGCTCCTCTTTGACGGTGATGGCCATGAACTGGTCACTTGCATTTTGAAAAATCTGGGCTACATGCTGGAAGTAGGTCCGCTCCTTGAGCTTGGCCACTTCCTTGCCCTTCCAGGTCAAAGACCCCTGGTAGTCCAGCAACTTGGTCATGGCCTTAAACAGGGAGCTCTTCCCGCTACCGTTTGGCCCCGTGATCAAGGTCACCTTCCCCTTGGGGATGGATAATTCTTTTTGCTCAAGCAAAGGCCGGCCTTGCTTGATGGCGAAATTTTTCATGACAAAAGCCGCTGGCTCGTTCTCTGGTAGGGGGAAGTGCAGGCCGATTGGCTCAGTAGCCAGGAGAAGCGCTTGTTCATCCTTAGTCAATAAGTCCACTTGCTCGCCTTTGAAGCGGTAGACCCCGTCCACCTTGCCCTGGTAGTCGTCAAAAAGGTGGTCAGTGATGATGATGGTCTTGCCCTGCTCTTTCAGCTTGGCCAAGAGGCCAATCAAGAAGCGGCGGGCCGCCGGATCCACGCTGGCAAAAGGCTCATCTAGTAAGAAAAGATCCACGTCCATGGCGACCAGGACGGCCAAGGCTACCCGCTGCTTTTCCCCGCCTGACATGGTTACGATCTTCTGGTCTAAAAGAGAGTCGATTTCCGCGAATTCGCTGGCCAGCTTCAGCCGGTCCGCAAATTCTGTCTTGCTTTTGCCCAGGTTTTCCATTGCAAAAATAATCTCTTCTCTAGGCGTGGCCATGGTAAACTGCTCGCCGGCTTCCTGGAACATCATGGCCTGGCTCCGCCAGCCCAAAGAGACCTGCCCGCTGGTCAGCTGGCCCCCGTATTTCGGGTAGAGGCCGGCCATGATCTTCAACAGGGTCGACTTGCCGCAGCCGGTCGGCCCGATCAAGAGGGAAAAAGTCCCCGCCGGCAGGGTTAAGGACAGGTCGCGGATGACCTCCCGGTCCCCGTAGGAAAAAGTTAAGTGGTCAATTGTCAGTTCTGCTTGCAAAATAAAAAGTCACCTCAAAACTGGGGTGACCATAAGCAGCAGCATTTTCCCTTGCCAGCATTACCTGGCCAGGTTCCATGGGTATCATCTCAGCCTTCCGGCACCCCGTTGATTCGTCAAATTGATTCTTATTTTAGTATATTGGATTTGCTAATGCCTGTCTAATTCAAACTTTGTCCAAACTGATTGAAAATGCCGATTTATAGCACTTTTCTTAAAATAATCTGTGAAGTAGCTTTAACGAAAAATTTTTTAGCTGTATCCTAAAATTACAGACTTTTAGACTTTAGTGGGAGAGAAAAATGTCAGATCAACGAAGACGAGTAATTACCGTGGCCTTGATGTTGTCAAACGTCATGTCCGGCCTGGACAACACGATCATCAACACCGCCTTGCCGCGGATCATTGCCGATTTGCACGGGATTGAGTATACCGGCTGGCTGGTGGCCATCTTCTTATTGGGGACGGCTGTTTCCACGCCTCTTTGGAGTAAATTGGGCGAGCGGCGGGGGAACAAGCTGGCCTACCAGCTCGCGGCTGCCTGCTTCTTGCTGGGGGCGCTGCTTCAGGGCTGCGCCCAGCAGATGTCCTTTCTTTTAACCTTCCGCCTGTTGGCCGGGATCGGCAACGGGGGGATGGTGTCGCTCCCTTATATTATCTACTCTGACCTTTATCCAAACGCCCACAAGCGCCTAAAGGTGCTGGGGATGGTCTCTGCCTTCTTCACCACGGCCACCATCTTAGGACCGCTCTTTGGGGGCTGGATCGTTGATGCCCTGTCCTGGCGCTGGGTCTTTTATATCAACATCCCGGTGGCCTTGATTTCCATCGTTTTGATCCAGATCTTTTTCCTGGATGAGAAAAAAGACCGGCCAGTTCGCAGGGTCGACTTAGGCGGGGCCATCTTCCTGTCCTTTGGGGTGGTGGACCTCTTATTGGGGACCCAGCTGGTGGGTTCAGCCAGTCTGGCCACGGCGCTTTTGATCTTCGCGGCGGCCTTGATTTTCATCGGACTTTTGGTCATTATTGAGCGCCGGGCGGAGGACCCGATTATTCCAGGCCGCTTGTTCAAAAATATCCCCCTGGTGGTCGACTTTACTTTGTTCGTTTTGATCTGGGCCGCCATGTCGGCTTACAGCGTCTACGCGCCAATGTGGGCTGAAGGCTTGATGGCCACGACTGCCCTGGTCGGGGGGATGACCCAGATTCCCGGAGCCTTTACCGACATGCTGGGCTCCTTGTCCGTGGAAAAAATGCGCCGGCGCTGGTCAGCCTACCAGGTTATGCTGGCCACCTGCTGGCTTTTGGCGGCAGGCTACCTGGCCATGGCCGTGGCCCCGCGCTATTTCCCTTACTGGGGGATTTTGCTGGCCGGGATGCTGCAGGGCTGGGGCCACGGGGTCATGTTCAACCAGCTTCAGGTTAAGGTGCAAGAAGACGCGGAAAGCCAGGACGTGCCGGTTGCTACTTCCTTCTCCTACCTGATCCGGATGCTGGCCATGGCGATTTCTTCCAGCGTCTTCGGGGTCATCTTGAATGAGCACTTGGCTAAAGGGGTCAAGGCTAGCGGAGGCAAGATCACTTTGTCCATGCTCAACCACTTATCAGACGCCAAGACCCGGGCCAGCCTGCCCAAGCAGGATTTGGTCCAGATGGAGAATATCCTCTACGGGGCTATTCACGCGATTTTCTGGGCGGCCTTTATCCTGGTCTTCCTGTCTCTGCTTTTGGCCATCTGGGCCCGCTGGCGGGAGAAAAAATTGGCCGGCAAGCGGTAAAATCTGGTAAGATCCAGTATAGGATAAAAAGAAGATAAGTTTTTGCTGGAAAGGAGAGAGCTGATGACTGAAATTGCCAAGCTGCAGAAAAAATTGCAGGAAGCGGGGGATGCCACCCTGCCGCTGAGCAAGGGGAAGGGGCAGACCGCGGCCTGTACGTTTGTTTTACTAGGCGATAAGGCTGAAGGCTGGAAGAATGACTCTTTGACTGCCTTGCTGCTTTTAGCGGGGACGGGGCGCTTCCGGGCTGGCCAGCAAAAGTGGCAGGTTAAGCCCGGTGACTGGTTCCTCCTGGCAGCTGGCCAGGACTGCAAGGCCAGTCTGAAAGAGGGGCTCCTAGTCCAGCTTGTCTTGCCAGAAGCTTTTTCAGTGAAAGACTTGAAAAAGGATCTCATGCTGGGAGAAGCTGAAGAAGTAGGGACCCACGGCCGGGTGGCGGTTGACGGGCCAGCTGGGGCGGCTTTCCTGGCGGCCTTGAATGAGTACCAGACTAGCGATTCTGTGTCTTCAGTCTTGCTCAAAAGCCAGCTGCTAACTGCCCTGGCTCTGGCCTTGCGGGCACTAAATGAAGTGGGCAGCTTGAGTGAGCGGGAGATCCGCCGCTATATTAGTGAAAACTATGTCTCGACCAGCGTGAAGGATGCCGCGGCTTACTACCAGCTCAGTCCCAACTATTTTTCCGACCTGGTCAAAAAGAAGACCGGGCAGAGCTTTATTGAGCTGGTTGACGAGCAGAAGATGGAGACAGCCGTCCGCCTTTTGGCCCGGCCAGACCTGTCGATCAAGCAGATCATCGGCCTGGTTGGCTACCGGGGCAAGTCCTTCTTTTATGAAAAATTTGGAAAGTACTACGGGATGTCGCCGGCGGCCAAGCGCAAGGAGCTCTTCCGCCAGCAGGGCATCAATTTATGAAAATAGAAAACCGCTGAACTGTAAGTTCAGCGGTTTTTGCATGAAAAAACAGGAATTTTCAAATATGAAAAGTAAGGATGCAGGAACAGTTTGAACGCTAGAATGTTAAACAATTATTAACGACATATGAGGGGGAGAAAAGTGATTGAAATCGACCAGCTTTCTTTTGATTATCGGACTTTTAGCAAGGAACCGGGATTAAAGGGAGCTTTGCAGGATATCTTCCACCGGAAATACCAGCTGGTGCCTGCTCTGAAAGATCTGAATTTGACTATAAAAGATGGTGAAATTATTGGCCTGATTGGCCCAAATGGAGCAGGAAAGACGACATTGACCAAACTGCTGACAGGGATTATTCAGCCAACCAGTGGCAGCGTGAAAGTAGCGGGACTCATTCCGGGAAGTCGTCAAAAGAAGCTGTTGCGGCAAATTGGGGTCATGTTTGGGCAAAAGTCGCAGCTGTCCTGGAACTTACCTGCTGTTGATACTTTGAATATGCTGGCGGCTATTTATCAATTAAAGCCAGACCATTATCAAGCCAGATTGCGGGAGTTGTGCGATTTACTGGATATTGGCGAGATCGTAAAAACGCCGGTCCGCAAATTGTCTTTGGGCCAGCGGATCCGCTGTGAACTTGCTTGTTCCTTGATCCATGAACCAAGCTACCTGTTTCTGGATGAACCAACCATTGGCCTGGACCTATTAACGCAGGAAAAAATCTACAATTTTTTAAAAACTGAAAACAGACTGCATCAGACGACGATTATTTTAACTTCGCACAATGTCCGTGATATTGAGGCCTTAGCCCAGCGTTTGCTGATTTTGAGCAAAGGAGAGTTGATTTTTAATGACAGCTTGAATAAGTTGCCTCTTCAGATCGATCAATCCGATAGCTATTGCTTGAAGTATTGGATCAATGACCAGACTGACGTGCGGGAAGAAATCATTCATGATCCTCAGCAGCTTTTTGTGAAGATGGAAAAATTCCAGCCGGAACAGATCATTTCTTTAAGCAAAAGTGGAATATCAGCCGAAGAGGTTATCTTGAAAATATATCAAAGAGAGAAACAATGAAAAGATATCTGCCTGTTTATTATCTTGGTTTGAAGAACAGTTTGATCTACCGGGCTAATATGATCATGAAGCTGGTCCTGCAATTGGCGAGTCTGCTGGTTACAGTTTTAATGTGGAAGTTTATCTTGGCAGAGTCCGGCAACTTTCAGCAAATGGCCCGTTATCTGCTGGCAACCAATTTGATCAGTTTAATTTTTACAACCGGGCCGGTTTTCCAATTCGCGGACATGGTCGAATCTGGGAATCTTTCCCTCTATTTAACGAGACCTTTATCCTTGTACTGGTACCTGTTCAATTACAATTTAGGCCTGCAGACGCCACTATTGCTGTTGTATTTGATCTTGCTTCTGTTCTTGGTAAAAAGCGCTGGACCAGTGTTTTTGCTCTTGATTTACCTTCTTTTGAGCAGTCTGATGTTTTTCAGTTTGATGATGGTCCTGGCTATGCTCAGCTTTTGGTTGATCAATATGTGGCCGCTTAGAAGCGGAATTAACGCAGTTTACCTCTTGCTAGGAGGATTATATTTTCCTTTGAATTTATTGGGCCCGGTTTACCAGTATTTGAAATACAACCCTTTTTCCTTGGTGACGGATTTTCCAGCGCGCTTGTTGACGGGAACAACAGACCAGCGAGATTTTTTCACAAATTGCCTGGCCGTTTGCTGCTGGCTGCTTCTTAGCGTGCTGCTGGGAAAAGCGTTGTTCAAAAAAGGTATTAAAACTTTTGAGGGGGCAGGAGCATGAGAAAGATCAAGGCTATTTGGCGGCAAAGCTTAGCTGAGTTTATGATTTACCGTGGTACTAGCATTATTACTTTTCTTTTGGCAACTGTCTTTCTGTTGATTGAGCTGCTTGCGGGGCAAGTTTATTTTAGTCAGCGTGAGAACTTGGCTGGCTGGACAGCGAACCGCTACTACGTCATGATCAGTTTCATGAATAGCGCGACCTATCTTTACAATTTGTTTTTCATTTTAGGCCATGAAGGACTGGGTGAAGACATCCTTGAAGGTAATCTCGACTATCTGTTGGTTAGGCCCAGTTCGAGTTACTGGCTGGCAGTTGGCAGAAGTTTGGATATTCCAAGTTTTTTTAACTTGCTGCTTTCGCTTGGATTACTGGCTTATTACCTTACTCGTGAAGGGGCTAGTTTTGGCCAGATTATGTTGATCAATTGCATGATCGTCTTACCCGCAGCCTTGATTTTCATTTTGAACCAATTGTGCCTAACCTTGCTCTTTTGGTTTGAAGGACTGACGGCTTTGGGAGGGATTGTAGAAGATTTGGTTAGCTTAGCCGGACGGCCGAAACAGATTTTTCCGCGAGTCATTCAACAGCTTTTTACCTGGATCATTCCACTTTTGCTAGTCAGCAATTTGCCAGTGGACTGGCTGCTAGGACGGGGGAAAAGCCTGCTCATATATCTTCTGGCTTTTCTGCCCATCCTTTACTGGATCTCGGCCAAGTTTTGGCAATGGGGGCTGAGGCGTTATTCATCGGCTAATTGAGAAATGGCTATCTAGAAAGGAGGTGTTGCGATATGGGACGTACTAGAACTGAATTAACGAAAGGCGGACCAATTCTTGTGGAAGGCTTAAATGATGAAGAATTAAACTTCTTCGACGCTTTAATGAGCAGTCCGAAAGACTTATCTGACCAAGTAAACAATGTTAAAACAGAAGTAGTTAAGTAGAGTAAAAAGATCACGGTTAATGGCATCTTTTAGGAAAGCCAATATTGCGTGATCTTTTATTTTATGGAGGGAAAGATTTGCAAATTGAGAGAGAAATGCCAGATGCTGATGCACATACTAATTGGCTTGAGTTAATCAATCGACTGCATTTAACTGCTGACTATAGAATGTGGGTTTCTGCTAATCTAGCCTTGCAAACCGTTCAGTGTATTTTAAGTGACTCAAAAAAGCAACAAGTTTCCGTTGGAATGGGCAAAGGGATGAATCATATGCCCGTATTAGGAGCTGAATTCGAGAGTATAGAGCATTTATTTTATAACTCGCAGACACATTCGGCTAAGCAGCGAGTGCTTGTGTCGCAGATTATGGAACAAGATCTCGATTTTTTGGATGATCCAGCTTTAAATCAACTTTCAAAAAACACAAAGCTGACAGTAGATTCTTTTGTCGATATCGAAAGTTCAAAAGAAGTCTATTATCCATCCTTTTTAAGCGACGTTAATTTCATAGACGATGGTGTTTCGATAAACAATCATGCCTACCAGTATGCTTCTGATAGTGGCTATGCAAGTGGATCAACTGTAAATGAAGCTTTGCTTCATTCCATTAACGAATTGATTGAAAGAGACAGTATTTCAAGATTCATTATCAAGTATGGATTAGGTATTAAGGAAAACTCGGTAACTGCATTTAAGATAATTCCTAAATCCTTGCCTAAGGATTTGTACAAAATCTATCTAGGACTAAAAGATACGGTAGATACAGAAGTAATACTGGTAAAAGTAATTAATAACTATCAAATACCGACCTATTTTACCGCTGTTCTGTCTCAAGGTAGCGATATTCTCCCAATTTACGGTTCAGGGAGCTCAGTAGATGAGCGATACGCTGTAATGAGATCGCTCACGGAGGCATACCAATTAGTATCCGTGAAAAAGGGAAGTGAAAGTCAACAATTGCGGAAACGCTTAAACTTGATATGGTCTGAAATCTCTCCTATTGAAGAAGATGATGTCTCTAACTTTTACAAAAAAGTTGGCTAGCATAAGATATCATCAACATGATATATATGTAAAAGAAGTTTACCGGATGATCAGCTATGAGAGGGAGAGGCTTAGACAAGAAGGCAGGAAAATTTATTATCGAGTGGTGAAAGAAGATCCGGGCTTTGTACTCGTTCAGTCGTTAATACCTCATTTTGAACGTTTCAATCTGGTTTTTGAAGGTCAAATTGTAACGCCTAGGCTGAGTAGAAATGGCCATCAGTAAACGCTATCCCAATAATCCAAAAGTTCACTTACCAAATTGCTTAGCCCAATTTCAGTTAGAGATTTTAAATAAGCATTGATTTCCCGGTCATCGCCGCTTTCCCGGTAAGCCAGCAATTTTTTTAAAAAAACGATTCTGATTTTAAAAGCGGCCATTTGCTGTGGCAAATCAATTGTCAGCAACTGATTCAAAATGTGGCTTGCGACAGAGTTTTGTTTTTGTTGGATCAGGCTGAAAACAATATTGGTCAGAGCCGTCCAGGCATTCAAATACAGTTCATAATCTACCTGTTCCAAGTGACTAAGCTGATGGATGACTTTGCTGTTATATGAAATGAGCAGGTCGCAGTCAATCAAATAAACAGAATTTTCAAGAAAACGCAGGCTTTTGAAATCTAAGTACTCGCTATCAAGCAGTAAATCTTTAAAACTCTTTAGGTCAGCGTCTGTTAAACAGTTTATTTTAGTCAAACTGAAATAGCTGTTGGCCGCGGCGACTGCCTTTCCTAAAATATCTGGATCTTTTGTTTGATGAAAGCTGCTGATTTGACGTAAAAAGATCTGATGAAGCCTCTGGCCGTCTTTTTGCTGGACGAGCAATTGCAGTTCATCATAGTAGGAGTTGTCTAGATTCCCTTGGACTTCCGTATATGCGAAAAACTCCCTGGGGGTGATATCAACCCGGTCTAAGAGGGCTAAAAACTTTTTGAGCCGAATATCGTCGACACCATTTTCCCAGCGTGACAAGGCGGGGCTTGAAGTAATATCTTTTGCTGCTTCACCTAGCGTCATCTTCTTATAATTCCGCAGTCTTTTAAAATATTGTCCGTACATTTTTCTTCCCTCTAATACACTTTTTTGAAAAAGCAGCAATTTAATGCGTACATTATAGCAAATAGAAGCCGGGAGATAAATATAATTTAAATTTAGGCAGAGCTAAAAAGCTTCCAGAAAAAATCTGGAAGCTTTTTGCATAATTACATTTTTTCCAAGCGCTTGATCCGGTCAGCCGTAGCTGGGTGGGTGTCAAACAAGTGGCTTAAGCTGTGCCGTCTGATCGGGTCCTCAATATACAAGGACGCGCTGGCGCTGCTGGCCGCCTGCATAGGCTGGCTGTTTTCAATCTTGGTTAAGGCACTGATCAAGCCGTGCGGGTTCCGGGTCAGCTCAACTGAACTGGCGTCGGCCAGGTATTCCCGGTTTCTGGACAGGGCCATCTGGGCCAGGCTGGCCGCCAAAGGACCCAGGATCAGAACGAAAATAACCCCGATCACGCCGATGATCATCCCAATCGTTCCGCCTTCTCGGTCGTCATCATCGTCCCGGTCAAGGCCAAAGCCGAACCAGACACAGCGCTGGGCAAAGTCGGCGATAAAGCTGATGGCGCTGACTAAAACCAGGGCCACCATGGACAGGCGGATGTCATAGTTGCGGATATGGGAAATCTCGTGGCCCAGGACCCCTTCCAGCTCTTCTCTGTTCATCATGTCCAGCAGGCCCTGGGTAACAGCAATGGCTGACTTGTCCGGCGACAGGCCGGTCGCGAAAGCGTTGGGGCTCTTGTCCGGAATCAAGTAGACTTCGGGCATGGGAATATTGGCCACTAAGGCCATGTCTTCCACGATATGAAAAAGCTGGGGATTGTCCTCTTTATTTAAATGCTGGGCATGGTTCATGCTCATGACGACATTGACCGGATCCTGGAAGACCAGGAAAGAGTAAATCAAGGCAATGACGCCGGCGGTCAATACGCCCGGCAGGGGCTTGCCCCACATCAGCTGGCCCAGGCCCGCGCCCACCAGGGCAAAGATCAAAACGAAAACGCCCAGGACTCCGGCCGTCTTCCGCTTGTTTTGGGCAATTTGTTGGTATAGCATGGCGATCCCTTAGCCTTTAAAAGGATACCTTTGGTACTTTGGTTTCTTCTTCAGGGATTTCCAGGTAGTCAACCTTAGTGAAGTGGTGGATGTTAGCCACGATGTTGGATGGGAAGACCAGGAGCATCTTGTTGTAGACAGCCGCGCTGGAGTTGAAGAGCTGCCGTGAGTAGGCAATCTTGTTTTCCGTGTTGGTCAGTTCTTCCTGCAGGTTGGCGAAGTTAGTGTTGGCCTTCAGGTCTGGGTAGCTTTCAGACAGGGCGAAGATGGTCTTCAAGCTGTCAGTGATTTGGTTGGACAGGTGCATGGCCCCTTCGTGGTCGTCAGCTGGCAACTGGGTCAGCTGGTTTCTGAGTTCAACCACCTTGCTCAGGGTTTCCTTTTCGTGCTTGGCATATCCCTTGACGGTTTCCACCAGGTTAGGGATCAAGTCGTTCCGCCGCTTGAGCTGAACGCTGATCTGACTCCAGGCCTCTTCAGTGTTAACCTTGGCCTTTTGCAGGCCGTTGTAGGCTGAAATGTAAAAAATAACGATTAATACGACTAAAATAGCAATAATCCAGACTGCCATTTTTTGCCTCCCTTTCTGGGCCCCAGAGGGGCGAAATCAACTTTGACCAGATGCTTCCGGCCATTTTAGTAAATTATATATTAAAAGGCAACTGAGCGCTAGTTTTTAAGCAAAAAGCGCCTCCAATAAGGAGATGCGCGAGAGATTTAATATCTTACTACAGGTTCAGCTTGACGATGACCCAGCCGATAAGGGACAGGATGATCAAGCCGGCGATCTGGTAGCCCAGCCACTTCGGGAAGAACTTCTTCTTGGCATCCTTGGAAGCGTGGGCGTAGAAGGTCCGCATGACCAGCATGTTGGCCATGGACCCGATTGGTGACCCGAAGCCGCCGATGTTGGAACCAAGGGTCAAGGCTTCAGCGTACTTGGAGAACTTGCCGACCAGGATGGTTGATGGCACGTTGCTCATGACCTGGCTGGACAGGATGGATGTCCAGTAAGTGCTCATTTCAGTGCCGACCAGGCCGTGGATCAGGGCCACGACAAAAGGAATCTGCTGGATGTCGCTGATGAAGAGGAAGAAGAGGGTGAAGGTCAGCAAAAGGGAGTAGTCAATGTGGAGCAGGATCTTCCAGTTGACGATCAAGGCCCAGATGATGGAGGCCAGCATCGGCATCCAGATTGGAACGAACTTGAAGACGCCAACGAAGAAGAAGCAGAAGATGACCGTTGTGATCATCGTCATTGGCCAGCTGACGTTGATTTCAACGACTTCCTGGGTCGGGATGTTCTTCTTCGGGATAAAGAAGAAGAAGCAGAGAAAGACGACCATGGCCACGATTAGGTAAGGCAGGGTCCACTTAAAGAAGATAGCGGGCGCTAAGTGGTAGTTGGAGACCACGAAGATGTTGTGGGGGTTGCCCCATGGGGTGAAGGCCGCCCCGATGTTGGCCCCCATCCCGATCAAAGTGGCCGGCAGGATTTCCGGCAGCTTGTACTTCTTGGCGATGTTCAAGTACAGGGGGATCATGGTCAAGCAGGTAATGTCGTTACCCAGGAACATGCCCGAGAAGACGGACAAGAGAGTAAAGAGGAGGATCAGCTTCCGGGTTGAGTCAGCGATCGCTGCCAGTTTATAGGCAATGATGTCCAGAACGTGCAGGTAGCTGTAGACCTGGATCAAGACCAGCATGGTCGTGACAGACTCGATCGTGTGCCAGTTCATGTCGGCGCTGAGCGGCCGGGCAAAGAAAAGACTGATGATGGTGATCACGATGGTGATCTGCAGAATTCGGTCGCTAAAAATTTTCTTTAAGGTGGTCAAAAAATTATTTGAACTTTTGCTTTTGGCGGCTTCCATATAAAATCCTCTACTCAGCTAGAATGGTGTTTACAAAATTTACGTAAAGTTAACGAAAAGCGAAAATGGAACTTTACTTTCGTGTAGTTCCATTTTCAACCATTTTTCCCTAAATCTCAACAGTTCAAAATTAACGAACAGATGTTATTGAAAAGATATTGGCGAAACGCGGCAGGTCAAAAACCCGACTTTTTTAGCTTGCTGAAAAAATAGAAAAGACTTTAGAAAGCGGTTTATATGGCTAAAATAAGGGATTTATTCCGGAAGACAAAAAACGGACTTTGCTACCTTTTTTAAGCGATTAAAACGTGTTGACTTTTTACACGGCCACAAAAAAGTCAAAAGCCTGCTTTTGATTTCTGAAATAATGCAAGCGCTACCGGAAGTAAAAAACAGAAGTGACAAATTGGCAAAAATCTCCCTTGGACATTTTGCTAAATTCATTTAACATTTCTGACAGAAGATATTTGCCCTTGCTTTTAGCTAAAAAGGGGCTGGAGGGGCAAAGAAATGCCGAAAAGGCTTGCCTAACATGGGGAAAGAGGGGTATAATGACTACTGATTTTCGAAAATCGATGAAAGGATGAAGAGACATGTCAAGAAATATCCACACGGGTATCAACCCACACCGTCGTCCACGTAACGCTTCTAACGCTAAGGAACGCGTTGCTCACGTTGCTGCTACTATCAGCTTCCTGAACCAAGCAGCTAAGGACGAAAACAAGTAATTTGTTTTTAAACAGACAATAAAGACTCTGGCTTTTGGCCAGGGTCTTTTTTTCGCTTGCTTTTTGCCTTATGATAGGAAAAAGCTAAGAGACGAGTAAGAAAGAAAACAAGGAGGCAAAAATGAAGTTTCAGTGCAGCAGCTGCGGTTTAAGACTGGAATCCCTGCATTTCAAGCTGCCCGGCCTGGTCAATGACCGCTTGGCCAGCCTGTGTGACATCTGCCGGCAGCGGGGGCTGGATCCGGCAGCTTCCCCCAATCCCGTGGTCAAGCTGTTCGCGGCCAACCTCCTCTATGCCTTTGTGGGCAAGGACGGGGAAGCAAGCGGGGACTTTTCTCTGCCGGACTTAAAAATCCGCCGGTCCTACGAGGCCCTCATGCAGGACTATGATGGAAATGTCCTGGCCAGGCAGCAGCTGCCAAGAGCAGACTTCAACCAGGCCGTGATCAAGGCTGAGGATGATCCCAGCTTCTTTTTGCCAGGAAAACTCCCTTTCGCGGAAAAACTCCAGGCCTTAGGCCTCAGCGTTGACTTTCAGTTAAACGAGGTTGACTATATCGACCGGGAGCGGATCCGGGCCAAGTACAAGTACCGCTGCCAGTACTGCGGCCGGCGGGGGCGGAGCGTGGACCACAAGGACCCGGTCTCCGTCTCGCACGATAACAGCCTGGACAATCTGATTTTGTCCTGCAGCGAGTGTAACCGGATCAAGTCTAATATGCCTTATGACCTTTTCGTCAAGCTCAACGAGGAATTGCAGCCTTTAAACAAAAAGCTGGTCAAGTACGAGAACGCCCTGGGCCCCTTGGAAAAAGAATTCCAAGACCGGCGGAACATGCTGGCCGCCAAGGTTCATTTAAAGGGCGTGGTGAATGACCCGGAACTGGCCGCCATCCGCAAGGAAAACAAGCGCCTGCGGGATGCCATCGACAGTTTAGAGAGTGACTATGACGCGGTTCGCCGCTTGCGCGAGGACCACTTCAAGTTGGGATGGAAGCTCTACCTGGCCCAGCAGGACAAGGAAATCATCTAGCTTTGATAATTTAAAGCTTATGGAGCGAGTATTAAAAGTTAGACCAGGAAACTTCTTACAGAAAAAATCTCCAGAATGTACAGGCTTACAAAGCTTTAAAAAGCGCTACAGGACAACTTGCAGCGCTTTTTAGTTTTGTAATCAGACCGATATATTCCTGTAACAATTGAAAGATATACTATAGACTGTTATCAAATCAAACCACATGTTAAAGGAGAAAAGACGTTTCATGAAGAAAAAGAACCTGTTGATGACTACTTTGGCAACTCTGAGTGCATCTGGCGCCCTTTTAACTACTGGGGCCAGCGCTTTGGCTGACAGCTACACTGTTGTTAAGAACGATACCCTGTGGGGCCTGTCAAAGAAGTACGGCGTTTCAGTAAGCGACTTGAAGAAGGCTAACGGCGTTTCCGGCCACTTGATCTACGTGGGCCAGAAGCTGCAAATCCCAACTAAGTCAACCAAGGCAACCAAGACTGCTAAGACTAGCACTTCAACCAGTACCGTTGACACTACTTCAACGACCCACACGGTCGTAAAGGGTGACACTTTGTGGAGTTTGGCTAAGAAGTACGGCGTTTCAGTAAGTGCTTTGATGAAGGCCAACAACTTGTCAAGCAGCACCATCTTGATCGGCCAAAGTTTAAACTTGCGGGCTGGCATGACTACTTACGGGGTAAACGGCGTAACTACTGGCTCAAGCTCAACTGCAGCAAGCGCTAACACTGCTTCATCAACCAGCACGACTGCTTCCAGCCAGGCGCCAAAGGACAAGAAGACTGCTACTAAGGCGAAGAGCACTACTATTAACACTAGCAGCAATTCCAACACCAGCACTAGCGCCAACACTCAAAGCCAGTCAACTGCATCTAACAGCAGTGCGTCCACTACGACCAACACTAATACTGTAGCATCAAATGCTAACACTACTTCAAGCACCAACACTGCAGCAAGCAGCAGTCAAGCAGTCAGCCAGGCACCAACTGCTTCAACTGCAACTACAACTGCCTCAGCCAGTGCCAGCGCGATTACTTCATACGCTTTGACCTTCCTGGGCGTGCCTTACGTTTGGGGCGGGACCACGCCAAGCGGCTTTGACTGCTCCGGCTTGGTACAATACGTTTACAGCCACTTCGGCATCAACCTGGGCCGGACTACTTACACCCAGCAATACGCCGGCACTAAGATCAGCGTGGCCAGCGCCCAAGCTGGTGACCTCTACTTCTGGGGTTCATACGGCTCAGCCTACCACGTAGCCATCGCCTTGGGCGGCGGCCAATACGTCATGGCTCCAGCCCCAGGCCAAAACGTGATGACTGGCAGCGTGTCATCATACACGCCAAGCTTTGCCGTTCGCGTTTTAGGCTAAAAATTTCCCATCGATATCAAACAGTTTAAGCAGCGTCAGCCAGCCGGCTGGCGCTGTCTTCTTTTGCCTGGCTATAATTAAAGGTGTACTATTTTATTTATAATCGCTTTATTTAGGAAAAATGTGTAGTCTTTAACAAGTTTTTGTTTTACAGCTGATTGCTAATGGCTACTTTGCTACCTGGCCTTTGTGCTTGATTGTAGACAATTCTCCCAAGTGGCGCTTGTCCGGACCAGCCAATGGCTTTTTGGGCTTCATGGACCGGGTGGCCAAAAGTGTTTCCTGGCCGCTCTTCCTGGCCTACCTGCTTTTGCTAGTGATGATCGTGGTCGCCGCTCTTTGGACTTACTTCTTTGAATTCAAGCAAGACAAGGTAAAACAAGCCTGGTAGAAGGTTGTCTGGTTTTTGCAGCTGATCATTAATGAATTCGCTTGTCTGGGCTTGGCCTCGTCACTGACTATGCAGGTTTATGATAGTCAGCAAACATGGACAATTATTTTTGACCTGTTCATGCTGTTTATCGTAGTTATTTTTGCTTTTGCCTTGACGGAAAAATTTACTAACCGCGGGGGAAACAACTAAATCGCAAACGAAAAAGCAGCCGTGAGGCTGCTTTTTGCGTGTAATTAAATTTGCGGGCCACGGAAGTTGGCTAAGAACTTCTGTGTCTTCTCGCTTTGCGGATGGTTGAAGATTTCATCCGGGCTGCCTTGCTCAGCCACGTAACCGTCGCTCATGAAGAGGACCTGGTCGGAAACTTCCTTGGAGAAGGCCATTTCGTGGGTAACCACGATCATGGTCAAACCAGTCTTGGCCAGCTTCTTCATGGTTTCCAAAACTTCCCCGACCATTTCCGGGTCAAGGGCACTGGTCGGTTCGTCGAAGAGGAGGATTTCCGGGTTCATGGAGATGGCTCTGGCAATCGCTACTCTCTGCTTCTGCCCGCCGGACAATTGGCGGGGCTTAGCATCAATGTATGGGTCCATCCCAACGGTCTTCAGGTTCTCCAGGGCAATCTTCTTGGCTTCTGCCTTTGACCGCTTCAGAACCAGTTCCTGGCCGATCATGCAGTTTTGCAAGACGTTCTTGTTTTCAAAAAGCTCAAACTGCTGGAAAACCATGCCGACTTTGGACCGGTAGCGGGGGATGTTGTAGTTTTCATCCAGGATGTTCTGGTCATGGAAAAGAATTTCCCCGCCAGTTGGATCTTCCAGCAAGTTGATGCAGCGGAGCATGGTTGACTTACCGCCACCGGAAGGACCGATGACCGTCATAACCTTGCCCTTGTGGACTTCAAAGGAAATATCCTTCAAAACTTGGTGTTCACCGTAAGCCTTTTGCAGGTGCTGAACGTTTAAAATAATTTCATTATCCTTGTAATCAGCCATTTTTTACTTGTCTCCTTCCTGCTTGCCGACTTGAACTTGGTTGGCCATCATGTTGTAGTTTTCAGGACCTTCGATGTGCTTTTCAATCAAGTTGAAGATCCGGGTGATCGTAAAGGTCAAGAAGAGGTAGATGACCGAGATGACCAGGTAGGTTTGGAAGAACTGGAAGCTCTGGCTGGCAATCGTTGAACCAACGAAGAACAGTTCTGATACTGAGATGATGCTCAATACGGAAGTGTCCTTGATGTTGACGATAAATTCGTTGGTGATTGACGGCAGGCAGTTCCGGATAGCCTGTGGCAGGATGATGTTCCACATTCTCTGGTTGTGGGTCATCCCCAAAGCACTGGCGGCTTCAAACTGCCCCTTCGGCGTGGAGATGATCCCCCCGCGGATAACTTCGGCCAGGTAGGCCCCGGTGTTGATGGAGACGATGATCAAAGCGGCAACCGTTCTGTTCAGGTTGATGTGCCAGAACTGGGCGATCCCGTAGTAGATAACCGCGGCTTGTACCATCATTGGCGTGCCACGGAAGATTTCAACGTAGACGGACAAGAGCCACTTGCAGAAGGCTAACAGGCCCTTCTTGAACTTGTTCTTTGGTTCTGGAATAGTCCGGACGATGCTGACCAGCAAACCGATGAAGATACCGGCGATGGTGCTGACCAGGGAGATCAAGAGAGTCATCCCGATCCCTTCTAGGATCATCTGCCCGTAGTTCTTCAGCATGGAAACCAGCCAGTTTTCCTTCTTGGTGCTGGTCTGTGGCTGCTGCTGCACGGCTTCCTTCATCAGCTTGTTTCTTTCTGAAGTGGAAATGCCGGCCAAAACCTTGTTAACCTGGCTGAGCAGCTGGGCGTTGCCCTTCTTGACCCCGATGGAAACTTCCGCGTCAGAAGAGGAGACCTTGAATCCCTTCATCTTAGACAGGTTGACCCCGGTAATGTTGGAGTCCACCATCTGGAAGGAAGTCAGTTCCGTGTCTTCAGCCACGTAGCCGTCGATCGTGCCGGCTTCCAGGGATTCCCGCATGGCGGCAAAGTCCTTGGAGGCTGGTTCCCGCTTGGCCCCTGGCAGCTGCTTGATCAGGTCGTAGTGCAGGGTCCCTTGCTGGGCAGTCAGCTTGGCCCCCTTGAAGTTAGTCAGGTACTTGGCCTTGGCGTACTTGCTCTGCTTGTTGACGATGACCACGAAGTTGGTGGTCCGGTATGGGCTGGTAAAGTTGATGGCCTTCCGTCTTTCCGCCGTCGGGCTCATCCCGGCAATGATCAAGTCGATCTTGCCACTGGTCAGGGCTGGCAAAAGCCCGTCCCATTGGGTCTTTTCCACGATAACCTTCTTGCCCAGCTTCTTAGCGATGATCTTGGCGATCTTGACGTCGTAACCATTGGCGTAAGAGCTGGTCCCGTCGATCTTGACCGCGCCGTTGGCGGACGTGGTCTGGGTCCAGTTGTACGGAGCGTAGTTGGCTTCCATACCAATCTTCAAGGTGCCGCTGGCTTGCGCCGGCTGGCTCCAACTGACAGCTAGGACAAGCGTCAGGACCGCCGCCATTAAGGCGCTGATCCAGCTGCTGTGCTTCTTCATCTGAATAAACCTCCGATATGCTTTTAGTAGTTATGAAATACAATAAAAAGCGGGAAAAAAGCCCCATTGCGGTATGCAATGAGGCTTGCTTTGATTCTGTAAAATTCAGTATGAATACCAAAAATTATAGCGCTCCCTAGAAAACTAGGACAGTCTGCAGAATTTTCTCCTGCAGCCCAACCAACAGCGCGCACGACCCCACTGCTGATTTCGGCGATGTCCCTTAATAACAAGGCTCAACACTGTCAGTGAGCTCCCCTTGCTTTTGTGAACGATCGCGACCTCTATTGTATTGGATAATTTTTAACTACATTTAGGCTAAATTACTTTTAAGAAAAAGTCAAGAAAAATTAGTTTCCTGAATTTTTGTGATTGCCCTTTTCTTATTTACAGCCAGCCGTGATCATCCGCCCAGTCCCGTTTCTTCATGCCAGAGACGTAGGGGTTGCCGGCCACATAATAGCGCAGAGGCGCCTGGGCCCAGGCCGGGTCAGCCTGGACGATCCCGATTCTGGGCGAAGCAACGATTTCTTTAGCCGGCTTTTTCTCAGTCAAGTCAATAACGAAAGGGGAGTCCGCCAAAGGGGCCAGGTCCCAGTTTCTTGACTTGATCCCCATGGCCTGCATTAATTTGGCCGGTCCATTGGTCAAAAGGACCCCGTCTTTGCCGCCCCGGTTTTTAAGCATTTGGTCTAGGCCCCAGACCGGCTCAATGGCCCGGATTAAGACCCCTTGGGGGTTGCCTTCTTCCTGGCAGGCGATGTCAAAAAAGACGTACTGCCGCTGGGAGTAGATGTAGATGGTCCCGCCGGCCCGCCACAGGCCCTCGTTAGCATGGCTTCTTCTGCCCCCGTAGGAGTGGGCGGCCCGGTCGTATATGCCCAGGTAGGCTTCGGACTCAACGATATAGCCGCCAATTTTTTCCCCGCCGGCTTGATAATAAAAGGGGCGGCCGATCAAATCCCGGCAGATCTCGCTGGTGGGCCGGCCGGTGAAAAAATTCCTGTAGTCCATTGCTTAATTAATCTTTCTAACTAAAATAGGGAATGTAGTAAAAGCTGTAATAAAAACTGTTTTTAAGAGAAAGCGTGCGCCTATGTCAACGATCAAAACTGTCCGTATCTACGCCAAAGAGCAGCCCGCCGGCTACCGGATCTTAGTCGACCGGCTCTGGCCCCGGGGAATCAAAAAAGAAGCCGCCAATTTAGACGAGTGGGAGAAAGAGCTGGCTCCCAGCCGGGACTTGCGGATCTGGTTTAAGCATGACCCGGCCCGGTACCCGGACTTCCGCCAAGATTACCTAGAAGAATTGGCAGACAATCCGGAATGGCCGCCTTTCGTGGAGCATTTGCAAGAGCTTTTGCAAAAAGGGGACGTCCTCTTTTTGTACGGGGCTAAAGATGAAGAACACAACCAGGCCGTAGTTTTAAAGGAGGCAGCTAAGGAAGCTCTGGCTAAACTTCCTTAAAGACCTCCAAGGCGTCACCGGTCAGCTGCTTGATCCCTTGTGCCGGGATCTCAGTCAAGTTGACGGCCCAGATTTTGGCGTCTTTTGCCGCGTAGCCTAAGAGACCGGCGAAGGGGTAGACAACGAAGCTGGTGCCGACGATCACGACCAGGTCGCTTTGCCGCATTTCCAGGATGGACTGGTTGACATTGGCCGGGTTGATACCTTCCCCGTAAAGGACGATGCCGGGCCGGATGATCCCGCCGCACTCGTGCTTGTAGCCCTTGGCGTAGTCCTCATAGCTGACCTTTTGCTTGCACTTGGAGCAGTAGATATCGTAGAGATTGCCGTGAAATTCGGTCACGTGCTGGTTGCCGGCTTGCCGGTCCAGGGTGTCGATGTTCTGGGTGACGAGGGCCCCTTTTTCATTGCAGATGGCCGCGATCTTTTCGTGGATCAGATTTGGCTTGGCGTCCGGGAAGTACATGTTTTGCATGACGAAGTCATAAAAAAGCTGAGGCCGGTCATAAAGGGTCTCCTCGCTCAAGATGACTTCCGGGGGCTCACTGACCCCGTTGTAGATGCCAGTCTTAGACCGGTAGTCGGGGATGCCGGAGTGGGTTGACACGCCTGCCCCGGTCAAAAAGATAGGGTGCTTGGCCTTTTTTAAGTCTGCTTTAAATTCCGCAAGTTTTGCTTGGTCCATTTTTTGCCTCTTTCTTAAAAAAACAGCTGATGCCTTTTGATTCCATTATAAGCGCTTGGTTTGCTATAATTAAGCTACTAGTTGCAGAAGATATTATATTTGAGGTGAATCCATGGACACGTTATTTTACTTGGTCGCCGACACCCTGCTGGCGGCCTATGCCGGCTACAGCTGGTACAGCCAGGCCACAGTGATCCTGCGGGCCCGCTGGCGGATGACGGCGGTGGTCATGCCGATCCTATTGGTCTGGCTGGGGGCCAGCTGGGGCTACCTGGAACTGGGAACTCCCGGCTTCATCGTCTTCCTGGCCCTCTTCATTTTGACGGGGATCCTGGAAGCCACGTCGGGCTTTGCTGACAAGCGGGTGATTTTGAGCGGCTACTTCCGCCGGACTTTGAAATACAGCGAAATCAGCCAGGTGATCCTGACCGCGGCGCCGCCGGAAGTGGGCGACCTGTCGATCGCGGCCCTGGAAACCAGCCGCCACCAGATCTACTACCTCCGCTTCAACAAACAGGTCAGCGATGTGGTCTCTTTCTTGATGCAGCGCCTGGAACGCGGGGTAAATATTGACGTAAGAAAAATGGGTTAGTCGCGTGACTAACCCATTTTTATCTGCTCTAAATTTCTGCTTTCTTGTTTTATTCTCTCTTGTTCTTTTTTATAAAATCGGGGACAAGAGGCGGGAGAAGTTCTGCAGGGACCGCAGCCAGCGGGACTGCTTCTTGATCATCTCCGGCGTGAGGAGGGTTGACTGCTCCATGTCCTTTTCAAACTGGTCGGACATCTCCTTGTTAAAGGCCCGGTCGTAGACGAAGACATTGTCTTCAAAGTTCAAGTCATAAGACCGGTAGTCCTGGTTGACGCTGCCAACAGTCGCGTACTTGTCGTCGACGATAATGGTCTTGGCGTGCATGAAGCCGTTGTTGTAGGTGTAGACCTTGACCCCGATCTTGACCAGCTGGTTGGCGTACCACTGGGTTGCCCGGTAGATGAAGGGGTGGTCCGGCATGCAGGGGATCATGATCCGCAGGTCAACCCCCGAGCTGGCCAGGATCTGCCAGGCGGCAATCATGGCCTCATCTGGAATCAAGTAAGGAGTCTGGATCCAGACCCGCTTTCTGGCCAGCATCATCAAGCGGACCAGGCCGTTTCGCATGTAAGGCTCGTCGTTGTCGGGGCCGTCAGAAACAACCTGTACGGCCATGTCGCCCTTGGAGATGTCGTTTTCATCCAGGTCAGGGAAGAGCTTCTCGTCAAAGCTGATCAGTTCTTCTTCCTTGACGGCGGAAGCGTTCCAGTCCATCACGAATCTTTCCTGCAAAAGCAGGGAGGCTGACCCGACCAGGCGGAGGTGGGTGTCCCGCCAGTAGCCGAATTTTTTCTTTCTGCCTAAGTACTGGTCGCCGACATTGAAGCCCCCGGTCCAGGAGGTAACCCCGTCGATGACCACGATCTTCCGGTGGAGGTGGTAGTTGATCCGGTTCCGGGAAATCATGTTTCTTGAGGTGATGAAAGGCAAAACGTCCCCGCCGGCTTCAGTCAGCTGGTTGAACCAGCTCTTGGAGGCCCCGAATGACCCCCAGGCATCGTAGAGGACCCGGACCTGGACCCCCTCCCTGGCTTTTTGGATCAAAAGCTTGAGGAATTCGTTGCCGATGGCGTCGTTATAGATGGTGTAGTATTCGACGTTGATGCTGGACTTGGCCTGGCGGATATCGGCGAAAAGGTCCCGGAACTTGTCGTGCCCGTCGGTGTAAAGCTTGAGCTTGTTGTTTTTGGTAATGGGCGACTCCTGGTCCTTGTCCAGGTACTTGATCAAGATGTGGGCGCTGGGGGAGGTGTCGCTTTGGTCAATTTTCGCCGGGGCCTCGGTGATCATTTTTTGCACGTTGGAGAGGCCGTTGTGCTTTTGCCGGTTGATGGCAAAAAGTTTTTCCTGGGAAATCCCCCGGCCGACGAAGCCGTAGATGATGAAGCCGACTACGGGCAGGATTATCAAGACGATCAGCCAGGCCCAGGAGGCGGCCACGGACCGCTTTCTGTGGAAGACGGTCCAGAGGGCCAGGATGGCGTTGGCGAAGAAGATGATGTGCCAAATATCGATCCAAGAGATGGCAGTCACTTTAAAGTCCTTTCTTGATTTTATCTAAGCCTAAAAAGCGGTTTAGGATGCCGATGACGAAGGGCTCGTCATGCATCTGCGAGTGCTCGGCGTTGTCGCCGAGGACCTCGACTTCCTGGTAGTAGACCGCGTCCGGGGCCAGGATATAGCGGATGCTTTTGGCGGAAACCACGGAGATAAAGCGGTCGGAATTGGTCGTGTCCAGGACGTTGCCGTAGATGTTCAAAACCCGGATGCTGGGGCTGAAGTCCCGCCGGTGGCGGAGCATGTAGGAATAGTGCGGGGTCATCATGCTGGGCCGGCCACTTTCCGTCAGGCGGTTGACATTGGGGATGTCGCCCAGGTACATGACTCCGTTGAAGGGGCCGGCGATCAAAGCGCAGCTGGCCAGGTGGGGGAAGTTTTTCCGCTTGGCATAGCGCATTTCTGTAGCGACCACGCAGGGCGAGCCCAGGGAGTGGGCCACGGCGCTGTAGCGCGTAAAGACGTATTTTTTGCTCAGAAAAGGTAGGATGAAGCTGAGATAGTAGTTGATGGCCTGGTAGCCGGCAATCCGGTCCTTGAAGGTCAGCTGGATGATGGGCTGCTTGTCGCCGGTATAGCATCCGGTCAGCTTGATCCGGCCGGTTAAGTCAGCCTCGACTTTCAAAAAGCGGGCGTCCCCTTTTTGCTTGAGGGCGTCTTCAACCATCATCCTGGTGGTGTAGTCCCCGCCGCGGAAGCCATGGACGTAGATGATCGGAACCTGGTCAGAGCCGCTGGCCTGGTTTTCAGCCAGGTCGCTGACCCGCTTGCCCCGCAGCTTCAGAAAGATCCGGAAAGGCGGAAAGGTTGCCAGGATGCCCAAGAAGAACATCATGGCCAGGGAGTGGTCCCGGGGATCGGGATTTTTGCCGCGCTTTTTTTCAGTTTCTTCAGCATACTTTTTAGAATTAAAAAAGAGCACAGTCGCCTCTCCTTTCTCTGATACAATTGCTTTGTAAACATCATACCATTTTAGCAGAAGAGAGGGAGCAGATGAAAGTTTATGTTGTTAAAAAAGGCTACCGGCCAGGAATCTACCACAGCTGGCCTGAAGCTGAAGAGCAGGTCAAGGGCTTTCCCGGGGCAGAATACAAGTCCTTCAGTAATATAATGGAGGCTCTGGACTACCAGCAAATGGACCCGGAAGACGCCCTCAAGGCCTTGCAGGGAGCAGAGGACAAGCTGCAGGCCGCGATCGCCAAGGTCAGACAGGGCGGAAGCAAGAAAAAGCAGGCTGAAAGCCAAAAAGAATTTGCGGCAAGTTCGAAGTATGCCGCCCACATTTTTACCGACGGGGGCTGCCGGAACAACGGGACCCACAAGGGCGGGCACGTGCAGGCAGACGATAAGGCAGCCTGGGCTTATTTGATCGAATATGGCGGCCAGAAGCTGTCCGCCAGCGGCGGCCGCTTTGGGGCCACCAACAACGAAATGGAAATGACCGCTTTTTTGGAAAGCCTGAAGAAGCTGGAAGAACTGGGCTTAAATGACCAGCCCCTCTTGTTCTCTTTAGACTCCCAGTATGTCATCAAGGCCGTCAGCGACAATGACCAGGGTCCGGCCTGGATCAAGGGCTGGCAGAGACGGGGCTGGAAGAAGGCGGACGGGTCACCCGTTGCCAACCGCGAGCTCTGGCAGGAGATTGCCAAGGAAATGGCCAAGTTTGCCCAGCCGGAATTTGAATGGGTCAAGGGGCACGCCAACAGTGCCGGCAACAACTTTGTCGACGGCCTGCTCAACAAGTACATGGACCAGATGTAAGGCAGAGACAGAAAAAGCCCGCGCCAAGCGCGGGCTTTTTGCATGAATATTTAATTTTTCAGATATCGTCCAGCTTCAATTGCTTCATTACTTGCTCAAACTGGAGAAGAGGCTGGTAAAGAAGTTGACGATGGCGTCCCAGAGCTTCTGCAGGGCGTTGCGGTTTTCGCTGGTGTTCAGCTTGGCAAAGATCCCCTTGGCGCTCTTCTGGATGGCGCTCATGGCCTGGCTGGCCTGCTGCTTGAAAGAAGAGGAGTTGAGGGCGCCGGAGTCCCGGATCTCAACCAGGATGTTGACGATCTGCTGCTTCTGTTTGTTGGTGATCACGTTGGTCAGATTGTTGTTTTCGATCTGGTTGTTGACGATCGTGATGATCTGGTTCTTGGTGATGTTTGAGCCTTTTTGGGCCATTTCCTTCTTGGCCCCGGCCACGGCATTGTTGAGCTGGGCGTCAGAGTAGCCGTCCTTGCCCTTGTTTTCCTTGGTGATCCCGCTTAAGGTGTTCAATTCGTTCTGGGCCGCGGTGATCTGCTTCTGGTTCAGCTTCTCCCCGCTCTTGGCGTAGGCCTTGTAGATCCCGGCCAGGGCGCCGGAACCATCGATCGGGATCGCGGAAGTGACGTAGATGTTGGCGTCAGTGATCCCGGCCGTTATCGCCGCGTTTCGGTACTGGTTGGCGGTGATGGTAGTGATGTTGTTTTGCCCGTTGTAGTTGAGGATGCGGACGTTGATCCCGCTGCCGGAGCTGGTTTTTTCAATGGCAGCACTGGACCAGACCCCGGAAGAAGAGGTAAAGGAGCTGCCGGACGGGTTCAGGTAGGTAACCAGGTCGCTGCCCGTTACTGTCAAGGTGTTGTAGCTGCTGGAGTCGCTGAGGGCCCCCTTTAAAACGTCCAGGGTGCCTTGCTTCTGGCTGGCAGTTAATGACGTCCCCAGGGTAATAACCGGGGTGGTGTCTTCGGCGGCAGAGACCCTGCCAGCCGTCAAGCCCAGGCCCAGGAAGAGGGCGCAGGCCGTAATGATTTTCTTGATTTTCGTGTTCATTTTGATAAGTCTCCTTGCTTTCTGTTTTCATGCTCAGCCTATAATTATACTAGAGTTTGTTTTGGGGGTATCTCCCTTAGCAAAAATTTAAGCTGGCCCCGGCTGGCGGCAGATTCCTGGCGAAGATGATATAATGAAAAAGATAGATTTGGAGAGGGGGGATGCGGCTTTGCGAGCGAATGCCGATTTGAAGCTGACGGTCATCATGACTGTTTACAACCAAGAGAAATACCTGGCCAGAGCCTTGGACTGTTTGCTTGAGCAGAAGAACCAGCAGTTCAAGCTGCTGGTCATTGACGACGGCTCAACTGACTCAACCGCGGAAATCGCGGCCAGCTACCAGGACCGCTTCCAAGCCTTCGACCTGGTCAGCAAGGCCAATGAAGGGGTGGCCGCTGCCCGGAACTTAGGCCTGGACATGGTTGACACGCCGTATTGTATTTTTCACGATGGAGACGACTGGGTTGAGCCAGACTACACGGACTACTTTATCAAGGCTTTTGACCGCCACCCGGACGATGACATGGTAACCTGCGGCTATTATGTCGACCAGGCAGGGAAGCCGTCCGTGCCGATTACTAAACCGGTTGAGGGGGAATTGACCCGGCTTGAGGCCGTGTTAAAGGTCTTGGGCAGTGCCCATTCGCCGGTTAAGGGCTATACCTGGAACAAGTGCTACAAGACCCAGCTGGTCCGCTCCCTGCACCTGCGTTTTAACGAGGACCTGGACTTGATGGAAGACCAGGTTTTCAATATTGACTATCTGATGCAGACGGAAGGCTGCTACTACAGCTCCGTGCCGCTCTACCACTACTGGCAAAGAGCCGACAGCGCGGTGCACACGGTCAGCTGGGACCACTTCTGGAGCATCGTGGGGGCCAATATTTCGATTTACAAGAGCATTTTTTCTCATTTGTGGCAGAAAAGTCCTCAGCAAGCGGCCGCAAACCCAGGAATACCAAGGCAGTTATGTAAGGGAAAGGATCAAAGATGATCATCAAAGTTAATGGAGTCGATCTTTACTACCAAAAGCTCGGTCAGGGCCAGCCCCTGATCCTGCTGCACGGCCACCACTTGGACGGTGGAATGTACAGCAAGGTGATCGCGCCTTTGTCACTGTATTACACGGTCTATACCCTGGACATGCGGGGGCACGGCTTAAGCGGCGGCGACGGGGCTGAGCACTACCAGACTGAAGTGGAAGACCTGGCTGTCTTCATCAAGGAGCTGGGCCTGGAGCAGCCTTACGTCTTTGGCTATGACTCCGGCGGTCTGGTGACCCTGATGCTGGCCAGCCAGCAGCCCGATATCCTGGGCAAGGCGGTCGTGGCCGGGGTCTTCATCGACGGCCGGGGGATCCACAAGTACCACTACTTGACTGAAGGGGTCCGGCGCTTTCTCCGCTTTGACCACGACAGCCGGGTGGAACTTACCGAATCCTACATGGAGCCGGAAAGCCTGGAGCAGATCAAGATTCCCGTTCTCTGCGTGGTCGGGGAAAATGACTGGGTCAAAGTCGAACATGTCCGCTGGTACAGCAGTTTGATTCCAAATGGCCGCCTGGCCTTGATGCCGCGGCAGACCCACGATTCCTACGTGGTAGACAGCTTGAAGATTTTGGACTTGATCAAAGATTTTTGCAAGGAATAATGAGAAAAAGGCCGATCAAAGCCGAACCTTTGCTATAATGTTACTGTAGATACAATAGATTCTGTTAATGAGAGTGTTTCTAAGGGGCTCATGATGACATCAATTACAAAAGAAGAAATTCATAAGTTGCTCAACCCGATGAAGGTGATCGGGCTCGGCGGCAATCCGCAATTGAACGAAAAGGTAGCCAGCACGCTGGGCGTTCCTTTGATCGAAACGACGGTTCACCACTTCAGCGACGGTGAAATCCAGGTCAACGTCGCGGAAAGCGTCCGGGGCTGTGACGTCTTCGTCATCCAGTCAATTCAAGATCCGGTCAATGAAAACTTTATGGAACTGGAAATTGTCCTGGATGCCCTCCACCGGGCTTCAGCCCACACGGTCAACTGCGTGATCCCGTACCTGGCCTACTCTCGTTCCGACACCAAGACCCGGTCCCGGGAACCAATCACGGCCAAGCTGATTGCCAACCTGCTCCAGCTGACTGGGATCGACCGGGTATTGACCATTGACTTGCACGCTTCCCAAATCCAGGGCTTCTACAACGTGCCGGTTGACCACCTGCACGCGATTCCGCTTTTGGCCCAATACTTCTTGGACAACGGGATTGCGGCCAAGGATGACGACGACGTGGTCGTTGTTTCACCAGACCACAGCGGGACCAAGTTGGCCCGGGTCTTCGGCCAGTATTTCAACGCGCCGATCGCCATCGTTGACCAGCGCGGGGCCCGCTACGATGACAGCGTCCACGACATGATCGGTGACGTTAAGGGCAAGAAGTGCATCATCGTTGACGACTTGATCGACACTGGCACCCGCCTGGCTTCATCAACCCGGTCAGTCTTCGCTGCCGGCGCGACCAAGGTTTACGTGGCTGCTACTCACGCCTTGCTTTCACAAGACGCGATCAAGATCTTGAATGGCTTGCCGCTGGAACAAATTGTGGTTACGGATACCATCAAGCATGAAAAGTATCCTGACCGGATGGTCCGGATCTCAGTTGACCGCTTGCTGGCCAAGGGGATTGACCATATTTACAACGATCGCTCAATTCACGATATTTTTGATGAACAAAACCGCTTCACCAAAGACTAAAGCGCGATAAACCGGGAGACCGCTAGCGGTCTCCTGTTTTTGTTTATTTTGTTTTTTGGAATGTGACTTAATAAAACAAGAAAAATAACAGATTTGGGTAAAAGCGAGTGTTATTGCTGTAATTAGGCAAGGAAACCTTGCTATAATTTTATTAACTTTTACAGAGAGGATGAGATGATCGATGGCAAGAAGAAAGAACATGCAGAGACGGCGGGAGATCTTGTACAACACCTTCCGTTTGATCAGAGCCAATGGCTTTGACAATGTTTCCTTGCAGATGATCGCGGAGAACTCAGGAATTTCCAAGTCTCTACTGCAGTCTTACTACCCCCACAAGGCAAGACTGATGACTGACATTGTCAGAAACTTTTTCAATACTATGTGGGACCAGGTAGAAATAAACTATCACGCGCCAAAGAAGAACCCCTTCACCCGGGTGGACGCTTTAATCTACACGATCGCGACTTTGGGGATGGCGGACAAGGGCCTGGACCGGGTAATTACGGAGGCTTTTACTGACCAGACTTCTTTGGACAACTGGAGCCGGATGCTGGACGAATGGATGAAGTCCCACAATGCTTTTTCCGAATACAGCAACTACCAGGAAATCCGGACCGGGATTGCCTTTATCATTACGGGGGTTGGCCGTTTGTATCGTGACCGGGGAAAGAACGGTCTTAACGCCGAACAAATGGCGGACTACTCAACCAGTTCCCTGATGTACGGCTTTTTGCACGCGGATCCTGCGGAAATCGACGTCGTATTGGAAGAAGGTCACAGGATTATTGACGACATCAACATCGGTGAGGTCCACCACGCGATCGACACCATGTTTGACGAAGGCAAGGTAATTTACAGTTAGGAGCAAGCGCATGGCAGAAAGTTCCGGAACGCACAGACGAAGGAACAACTATGAAATCGTGGACAACGCGTTAGAATACAAGCGTCCCTTGGCCTTTATAGCTTTCTTATTGCTCAGCTTGCTGCTGGCCACGGGAACTTTCCTGAATCCTGCTTTTATGAAGGAGACCATCAAGACCGACAGCAACACGGTCGTGATCAGCCAGCAGGTCAACAGCCACTTCAACCGCCTGGCCACAATCGTCAACGGGTCCAGCGATGAAAAGAACTTGATCTCTGATGACCAGGCCAGGGAAGTTGCCGACTTGATCATCGACTACAAGTATGGCTGGCACTTTATCCATACCAGCAATCTAGACCTGGCTAAAGACATCAAGGCCGTGATCTTGAAGAAAGAGCAGACCGATACCGACCAGGTGACCGCTATCCGCAAGAAGCTGAAGAAGCAGAGCGATTCTTCAGTCTACATCGTCAGCAATGCCTTTGACCTGGCCACGGTCATGTTAGAGGCCAACTTGATCACGATCATCCGGATCGTCAACCTGCTGGTGATCCCGCTCTGTCTGGTGGCCGTAGTCTCGATTTTGCGGGAGGCTTTTGCCAGTCACACCAAGCGGGCAGTGGTTCACGACATGACAGCCGGGCTGATGTGGACCGCCTTTTGGTTCATCCTGGTTTACGGGCTCTTGGCCATGGTGCCGATCTTTATGGACACTTCGGTGATTACCGTGGCGGACCTGGGCTACTGGCTGGAAATCGCCAGCGGGGTCTTCCTGGACTTCGTGATCGCCGGCGTTATTTTATACGTGGTCAGTGCCATTCCATGGCAGGCGACTTCAAGATAGCAAAAAGGCAAAGCCGTTGGGCTTTGCCTTTTTAGTTTGCTATTTAAGGATGGTGATCTGCTTGCCTTTGGCGGCGATGTAGCCATCCTTTTTTAATTTGGAGAACTCCCGGCTGAGAGTTTCAGGGGTGATGCCCAGCAGGCTGGCCAGGTCCTTCTTCTTCAAGGGAAGGGTGAAGGTGGCGGAGCCGGCTTCGTCAGCGTAGTCTTTCAAGCTGGCGTAGAGGCGGGGGCCAGCTTCCAGGCTGTTGCGGCGCATGGCGTTCTTTTGCGCGCTGACCAGGCGCTTGCCGAATTCATTTAAGAGGTACAGGGAAAGCTCCGGGGACTTGAGCAGAAGGTCCTGGAAGTCGAAATAGTTGATGGAGCAGACCGTGCTGTCTTCCAGGGCTTCGATGAAGAGGTCATCGTTTTCCGTGTCAAAGAGGTTTTCCTCCCCGTTGATGTCGCCTTCCTGCATCAAGCTGAGGACCTGCTCATGGCCGTCGGGGCTGAGGCTGTAGACCTTGGCCCGACCTGAGTCCAGGGACATGACTGACAGGCGGCCGTCGCCCGGGGCGTGGATCAAGCTCCCTTTTTTAAAAAACTGCTGGTGGGTCGAAATGTGAACCAAGTCCTGGCGCAGGTCCAGGGGGAGGTTCTTAAAAAACGGCACGTGGCTGATACAATTTAATTCGTCGTGTTGGTGCATGGTTGTCTGCTTTGCTTTAACGTATACTTTTACTTGTTTACTTCTTCTTGCTAGATTTCTTATTAGACTTTTTGGCAGCTTTCTTACTGGTCTTTTTAGATTTAGCCTTAGCTTTATTACTAGATTTTTTTCTAGACTTCTTACTAGACTTTTTCGCGGACTTTTTACTAGACTTCTTGCTAGATTTCTTACTAGTCTTCTTAGTTTTGCTGGTCGTCTTGACTGCCTTGGCATTGGTGATCTTCTTACTCTTGACGGTGGAGATGTTCTTGCCGACCTTGTAGAGGTACTTGGCCAGGCCCTTGTTTTGCAGGTCCTTCTGGCTGACCTTGTTCTTGCTCTGGGTGCTGGAAGAGGAGACCTTGCTTGAATAAGTCTGGCTGCTGCTCTGCTTGAAGAGCTTGAAGCTGTAAGTGGCCAGGTTACCGGCTCTGACCGTATACTTGTGGCCGGCCGTCAGCTGCAGCTTGCTTGGGTAGTAGGTGATCACGGTCTGGAAGTTGCCAAAGCCGTACTCGCTGTAGTTGGCCACTTGGCTGGCGGTGACCGTCTTGCCGGTGTCATCGTCAGTAACGGTGATCTTCGGGGTTGAGGTCACGACCTTGTTTGAAAAGTATAAAGACCAGGCGATGTTTTGTCCATTTAAAAGCTCCAAGGGGAAGACCCCGGCATTTGGATAGGCTACCATTTCCCGGCTGGCAGTTCTTGCGCTGTCGCCCACATTCAAGACCTGGTTGACTGAGTAGCGGTAGCCGTTGGTCCCGTAAGCTGCCCCGACTGAAATCTTGCTTAAGCGGGTGGAAAGCGGCCAGGCCCGGTGGCCGGTGTCAGAACCCGACAGATTATAGCGGTCGGTCAAGAGGTCGGTCACGACGTCTCCAGCCGTCTGCGGGCTGGCATTGAAGTTGAGGTTGGCCGAGTTGGAAACGTCCTGGGCCAAAAGCCAGTTCTTCTTGGAAATGTAGCTTGGCTTCTTCTCATTTGGCAGCCCGTGCTGGTTGACGAACGGGTTGGCATTGATGGCGGCCATGACGGCAGCCGTCGTCTGGGCATTCTTGTTGCCCTGGCTGCTTGTTTTGACGGCAGTTAAGCCGAAGAGGTCACGGTAGTAGTTGATGTAGGCTACTTGCTCGTTGATGTAGCTGGACTTTAAGCTGCCCGCCTTGAACTTATTCTTCAAGGAAGGCTTGCTGGCATAGATATTCTGCTGGGGGTAGACGGTCTTGCTCAAGGCCTGGTATTCTCTTTGAAAACGGAGAACCTCTGCCTGTTCCTGCGGCGTGAATTCCGCCGCCTGGACAGCCGTGGGCCCTACTGCCAGAAGGATTGCCGGCAGTAAAAGCAGTACTGGTTTATGACGCATCTTCATCAACCCCTTTCTAGTTTATATTATAGCTGATTTTTTGCTTTTTTCGCCATTAAGCGCTTGCACTAAAAAAACTTAAAATTTGCCCGGAAAGTGCGCCAAAAGCCCGAGTTTTCGGTATAATACAGATTGATAAAAGGAGACGAAACAATGACGAAAAAAACACAAGTTGGTTTGATTTTTGGTGGGAACTCCTCCGAATACGAAGTCTCAATCACTTCAGCCGGCAACATCTACAAGGCAATCGACAAGGACAAGTTTGACGTGCACCCGATCTGGATCACGAACTCCGGCTACGTGGCCAGTGAAGCTGATTCATACAAGGTTCTGGAAGAGCCGGGCTACATGGTGGAAAAAAATGACAAGACGGCCAACCTTTCTAACTTGATCGAGCTGGCTTCCCGGCCGGAACTGGACGTGCTCTTCCCAATCGTCCACGGCAACCTGGGTGAAGACGGGGTCCTGCAGGGCCTCTTCCGCTTGATCGACAAGCCTTTCGTCGGGGTTGACGTTTTAGCGGCAGCCGTAACCATGGACAAGGAATTCACCAAGATCCTGGCCCAAAGAGCCGGCGTGCCGGTAGCCAAGTGGGTATCTATCAAGCGCTACGAATATGAGGACGCCAAGAACCAAAAGCTCAGCTACGACTGGGTCAGCGGCCAGCTGGGCACCAGCAACCTCTTCGTCAAGCCGTCCAACCAGGGTTCTTCCGTCGGCATCACTCACGTAACTGACGACAGCAACTACGCTGAAGCTTTGGCCGAAGCCTTTAAGTACGATGACAAGGTTTTGGTTGAAGAAGGAATCGTAGGCACTGAAGTTGAAACCGCCGTTTTGGGTAACGACCACCCGGTAGTTTCCGGGGTCGGCCAGATCATCAACGCCGACAATACTTGGTACAGCTACGAAAACAAGTACAGCACAGAATCAACCACGACCCTGCAGATTCCAGCCCAGATTCCGGCAGAAACCGCGGAAAAGGTCCAGGAAAACGCCTTGAAGATCTACCAGATCACTGAGTGCAGCGGCATGGCCCGGGTTGACTCCATGCTTAGAGAAAGCGACGGGGAAGTCATCTTCAACGAATTGAACGCCCTGCCAGGCTTTACCAACATCAGCATGTACCCGAAGCTGTTTGAAGAAGCCGGGATTTCTTACCCAGACTTGATCACCCGCTTGATCAGGCTGGCTGAAGAGCGCTACGCCCACAAGAAGACCCTCCTGCGCAAGCACGACTAAGAAAAAAGTACTTTGAAAATTTAGTTTTTTTGCGAAAGAAAGTCAGAACATGAGTGAGAAAAGTGAGCAGATGAAGACCAGTGAAGCCGCCCAGGCCCTTGGGGTCAGCGAGAACACCCTGCGCAAGTATTCGCAGGCGGTGGAGAAGGCTGCTTCACCAGCTTACTTTCCCCGGGTCAAGAATACCCGCCGCTACCGGCCGGAAGACTTGACAGTTTTGAAGCAAATGCAGGACTTGGTCAAGGCAGGGCAGAAGATCGACCAGGCGGCCCAGGAACTTTTTGCTGGTGAAAAGGAAGAAGCACCGGTCAAGACAGCCAGGTAAGACCAGCTGGAAGCTGCCCTGGCCGCCAAGGACCAGGAAATTGCTGAACTGAAAGAGCAGCTGGCCCAGCTGACAGCGGCTAAGGCAGCGGAAAAGCCGGAAGCTTCCCTTGATCCAGCGGCTGATGTCCTGGACCTGCCGGATTTTGATGACGGCTTTTTAGAAGATGAGCCAGTCACTCCGGAGCAGAAAAGGGCCCAGGTCGTGGCTGACATGGCCAAGAGTGACCAGGAAGTTCACAAGGAATTGCTCAGCCGGACCCAGGAGAACGCGGCCAAGGGGGCGCCAACCTACCGGACCCTGGCTGACATGCAGCTGGCGCCCAAGAAGACTCCCTGGTGGAATAAGATTTTCAAATAATGGCGTGATTTGCTAAATTATACTTAAAAATCAAAAAGGACCGCGAAAGCGGTCCTTTTTTTGCTTAAAATAATAAGGGACTGACTGTCACTTAAAAATAAGCAAAAAATGGAAAGGCAAATACAAAGAGGATGGAAACGAAAAAGCAGAGCATCCTGGCCGCCCTGGTCCTGCTGGCCCTGGGTCTGGGCCTGGCCGCGCTGACCTATTTTAAGACGACCGGCTACAAGAACCCGGTGGCGGTGATCACGGACACGAAGATCAAGGACCGCCTGCTGAAAAAAGAAACTGATATTTACGGCAACAAGGATGAAGAACGCCGGCAGTACCTGCACGTTCAAGTCTTGATCGGCAAGTACAAAGGGCAGACCTTTGAAACGGTCAACACCTACTACCCTTCCCAGCTGGTCACCCAGAAGTACCGGGCAGGCGAGCGGGTCTTCGTGACAGTGACTGACGGCAGCCTGGCCCTAGTTTCACCAAAAAGAGACTGGATCCTGGTCATGACCTTGGCTATTACCCTGGCCTTGATGGTGGCGGTAGTCGGCCGGCGGAGCTGGCACTTGATCGTTTCCATGGCTATCATCTGGATCCTGTTTTACTGCCTGATCTTGTGGGACGTGGCGGTCAACGGGGCCGGGATCATCTGGATGTTCTCCCTGGCTGACATCGTCTTCTCCTTCTTCAGCCTGGCTATCGTGCAGGGGGTGAACAAAAAGATGCTGGTCACCTGGCTGGCAACCCTGCTCGGGGTCTTTGTCTCTTTTGCCCTCTGCTATGCCGTTATCAAACTGACCGGGGAGACCTACCTCAACTATGAAATGGGCGACTATGCCACCCAGGACACGCGGGGGATCTTCATGGCCCAGGCCCTGCTGGGGGTACTTGGGGCAGTTATGGACGAGGCGACGGACATCGTTTCCAGCCTGTATGAACTGATCCAGCACAAGCCCGAGATCACCGTTAAGGAGCTTTTGGCCAGCGGACGGACGATGGGGCAGGAGATCATGGGGCCTTTGATCAATGTTTTGGTCTTGATCTTCATTTCTGAAGCCCTGCCGGAAACAATCCTGTACTTCCGGGACAATAACACTATCGCGACGACTTTTAACTTCACCATGTCCTTAGGGGCGACGCAGAGCGCGGTTTCAGCAATCGGGATCGTTTTGACCATCGTTTTTGCCAGCCTCTGCAGCCTCCTCTTTTTAAAAAAGCCGCAGAAAGGGGGTAAGCAAGAATGAGCAGCCTTGGCGCTTTAATCATCGTTTTGGCCATCTTGATGAACCATCATCGGCGGGGAAACCGGGATCCGCAGCTTCTTCAGCGTCTTGATCAACAGCCTCTTGCTGGTCCTGGTGGCCATGCTTATCTCCTGGGGCTTGAGCATTCCCATCATCACCGCGATTTTCGTGCCTCTTAAGCTGATCACGATTATCTTCCTGGGCACCCATGACTATACCGTGGCTAAAAATTCCTTCTATGCCTCTTTGATCGTCTTATCCCTCGTCAGCGTCTTGATCTTAGGCATCCAATACCTGGCCCAAGCCGCCGGTTTGGGGCCGGAAGCCGGGGAAATCCTCCTGGGTCACTCCCAGATGCCGGGGATCAGCTACGGGCAGATCGCCGTTACCGTGGCCATTTTCTCCGCCCTTGGGGCGGTGGCGGAAGCCGCCGTGTCGATGAGTTCGGGGATTTTGGAACTGAAGAAGGCCAAGCCGGATATTACGGAAGAGCAGCTGATGAAGAGCGGGGCAGCCATCGGCTACGACGTTTTGGGCACGGCCATGAACACCATCATTTACGGGATGTTTGGCAGCTTTTTGTCCCTCTTTTTATGGTATTACCGGCTCCACTATTCCTTTAGTGAGGTAATTAATGATAAACTTTTTGTAAACGAAGCACTGATCATCATGTATTCTCTGCTCGGTGTGCTGCTGACGGTTCCTTTGGCGACCTTTTTGCTGGCCAAGGGGATGAGCCGGCAAAGTGAGGCAAAAAATGGAAACGAAAAAACTAGAGATCAAGAACTTTAACGGCCGGACCTACCAGCTGCAGACCTACACGGTTAAAAGCAGCCACGCTCCCTTAAACAAGCTCCGCCCCCTGGCCATCGTCGTGCCGGGCGGCTCCTTCACCCACCTCTCCGTCAAGGAAGGTGAGCCGGTGGCCCTGGCCTATGTCAGCCGGGGCTTCAACGCCTGCGTGGTCAGCTACAATCTTTTGCAAGATGAAGGGATGATCTATCCTGATGCCGGTCTGGACGTTCTCAGCACGGTCAACTACTACCACGAACGCGCTGCTGAATACCAGATTGACCCAAACAAGATCATGACCATTGGCTTTTCCGCCGGCGGCCATATTGTCAGCGCGGCCAACTACCTGGCTGATGAAGCTGAATACCAGGAAAGGTATGGCTATGAAGGGGACCAGGTCCGGCCAAATGCCACGATTCTGGGTTATCCTTTGACTGACGTCCACAAGGTGGCCTTTGAAATCGGCGGCCGGGCTGACGGGGCCCTGCCGCCTGACCCCAAGCTGGTCGACACGGCCCTGGGGGTAAGTCCGAAGACGCCGCCAACCTTCATCTTCCAGTCCTGGAACGACCCGATCTGCCTGCCGACCAATGCCATGGCCTATGAAGAAGCCTTGTTCAAAAACAAGGTCAAGTGCGAGGCCCACATGTTTGACATCGGCTACCACGGCTACTCTTTGGCCACTCCGGAACTGTCCACGGAAGACATCTTCTGGCAGGGCAACCCTCACACGGCCCGCTGGTTCAATTTGAGCCTGTAGTGGCTGGACCACCTTTTCTCCGGGATCAACTACGATGAAAACAAGTACAAGCTGACCCAGCTTTACCAATAGACGAAAAATGGATTTATTATTTACGAGAGCTGCCCGGGCAGCTCTTTTTTGATTTGGTTAGCGATAACTGCTTGCATCCGCGCTTGTTTTTCCTATACTAAACTTGTAGAAAAAAATGGTAGCGCTTCAGCTGAATTTAGATGAGAGTGGAAGCAGGCCGTGATCTACCAGATCTATCCCAAGTCCTTCCAGGACACAAACGGCGACGGGGTCGGCGCGACCTGCGGGGGATCATCAAGCGGCTGGACTACCTGCAAGACCTGGGCATCGACGCCATCTGGCTCTACCCGGTCTACAAGTCACCAGGCGTGGACAACGGCTATGACATCGCCGACTACGAAGCCATCGACACCCCCCCAGTACGGGACCATGGCGGACATGGAAGAATTAATCAGTGAGGCCAAGAAGCGGGGGATCCGGATCGTGATGGACCTGGTGGTCAACCACACCTCTGACCAGCACCATTGGTTTATCGAAGCCCGGAAAAATCCTTCCTCTCCGGAACACGACTACTATGTCTGGGCAGACAAGGCCAATGAGCTCAAGTCGGCTTTTTCCGGCAGCGCCTGGGAATATGACGGCCAGGTTGTCCAGTACTACCTCCACCTTTTTGCCAAAGAGCAGCCGGACCTCAACTGGAAGAACCCGGCCCTAAGGCAGAAGGTCTACGATCTGATGAACTTCTAGATTGACAAGGGGATCAAGCACCGGAAAGTATGGCGGACGATCTTCATCGTGGCTTACGCTGTACCGCAATTCGTTTCCTTGCTGCTGATCGCGCAATTCCTGGACGCGCAGGGGCCTTTGAACACTCTGTTGCAAAACTGGGGCTGGATCTTAGGGCCGCTTCACTTCATCGACAATGAAGATGCCCCTTGGGTAGCCCGGCTGACGGTTATCATCGTCAATATGTGGATTGGTATTCCGGTTTCCATGCTGGTTTCCATGGCGATTATCCAAAACCTGCCACAAGACCAGATTGAAGCCGCGAGAATCGACGGGGCTAACGTCTTCCAGATTTTCCACAACATTACCTTCCCGCAGATCCTCTTTGTCATGGGTCCGTCCTTGATCCAGCAATTCATCGGCAATATCAACAACTTCAACGTTATCTTCCTGTTGACTGGTGGTAAGCCAATGAACAACGACTACAACGGTGCCGGCTCAACCGACCTTCTGGTCAACTGGCTCTACAACCTGACCTTCGGTCAGCAGCAGCGCTACAACGCCTCAGCCGTTCTGGGCATCTTGATCTTCATCTTGAGTGCGACGATTTCCTTGATCGCTTACCGTCACACCACTGCGTTTAAGGAGGGATAAAATTGAAGTCTTACTCTAACCAGAGAAAAGTATCCCTTTTCTTCAGATATTTATTGCTGACGATTTTAGCAATTTTGTGGCTGATCCCCATCTTCTGGATCGTTTTGGCCAGCTTCTCATACAACGACACTGGCTTTATCTCAACTTTCTTCCCTGAAAAATGGACCTTCCAGAACTATATCGGGATCTTTACCAACTCCCAGTTCCCATATCTGCACTGGATTATCAACACTTTGCTTGTGGCCATCATTTCCGCCACTCTGTCAACCTTCTTCCAAATCTCGGTTGCTTACGTCCTGTCCCGCTTACGCTTCAGACTCCGCAAGCCATTCCTGCAGATTGCCCTGGTTTTGGGCATGTTCCCTGGTTTTATGTCTATGATCGCCCTTTACTACATCTTGAAGGGGCTGAATATGCTGAACCTGGGCGGCTTGATCCTGGTCTACGTCGGTGGTGCCGGCCTTGGCTTCTACGTTGCCAAGGGTTTCTTCGACACTATCCCGCGGTCACTGGATGAAGCAGCTGAACTGGATGGTGCAACCAAATGGCAGGTCTTCACTAAGATCGGCCTGCCGCTCTCCAAGCCAATGATCGTCTACACAGCTTTAACGACTTTCATGGCACCATGGGTAGACTTCATCTTCTCCGGGATCATCCTCTCAACTTCAGGTGACCCAAAGACCTACACGATCGCGTATGGTCTGTACAACATGCTTTCTTCTTCAAAGGGGAGCGCGACGACCTATTTCGCCCAATTCGTGGCCGGCTGTGTCATCACCGCTATCCCAATCACGATCCTCTTCGTCATCATGCAGAAGTTCTACGTCAGTGGGATTACTGCAGGTGCTGACAACGGTTAACACACAAACCCGAACAACATTTCATTCAATTCTTGCCTTCTCAGCGAAAAGAATCTGAGAATATCTCGGATTCGATTAAAGAAAAACAGTGGAAGCTTCCTTACGAAGCTTTCCACTGTTTTTTTGTCTAAAAATATCAAAAAATTACGGCTTATTTAAGGGGCCGGTAGAAGTCGATGCCACTGGCGGTAGCGTAATCGCCGGTCGTTTCCAGAATGCTGAGGCGGACAGCCTTGGCGCTGCCCCCTCTGAGGCCGATAACCTTGTTCTTGCAGTCGCTCTTAAACTGGTAGTCAGTCCCGTAGCTGGTGAAGTTTTCCCCATCGGTGGAGATTTCCACCCGCATCCGCAAAGGCCGACCATCCCGGCTGCTGGCTCTTGGCACGTAGATCAGCTTGTTTAATTCTGTTTGGTCCGGGAAGCTGAAGGTCAAAGTCAGCGGCTGGTCTTCGCTTGGTTTGCCCGTGCTTTGCCAGTCGGTTGCCATTCTCCGGTCCAGGAGGTTTTTCAGCTGGTGGCCGCTTGCGCTTTCCTGGTTGGAAGTGACTTTGACATTGGAGATGATAAAGTCCCGCGGGTCCCGCTTGGTCTTGACCTGCAAGAGGTCGGACCATTCGGATACCTTGTAGCCAGCTTCATAGCGCAGGCGCAACCGGTAGCCAGTGTTGGCGGCCAGGTCGGTAAAGGTGAAGATGTTCCCGCTGATCCCGGTGTAGAGCAGTCCGTTCAATTCAATCTGGACACTAGGCGTCCGCTGGGCCCACTTGACCGTCAAAGAGTGGGCACTGATCTTGTCCAGGTCGACTTCAACCTTGCCCGGCAGGGGCAGGGCGGCGTCGGTTATCTGGTGAATCAGCTGCTCATTGGCGAAGCGGAAGTTGTTTACCAGGATTTCCAGCTTTTCCTGCTTGATGTCCCGCTCCTGCAATTTGATGATCAAAGCCGGGCGAGGCGTTGCGCCCAAGTCCTTGAAGCCTTCCGGCCAGCAGAACTTGTTGTCGTAGTAGAAGCCTTCCTTGGCTCTTTGCAGGGTTTCCGGCGTGCCGTATTCAGTCAAGGTAACGACTTCCTCGTCGCCGGCCCGGAGCTGGATTTCATCTGGGTGCTGGTCACAGTATATATATAAGAAGGTTTGCTCTTTAATGGCCATGTTCGGGTAGTAGCCGGTGGTCGGTTCGATGATCACGCGCAGCTTGCTGTCGGCCACATGGGTGCGGATGACGGTTTGGGCGCTGTTGTGCTTGTAGTCGCTTTGGTCGTTGTCGCTGTAGGTGCTGATGGTGGCGTCGCCTTGCGGGTAGAGAACGAAGCGCCGGCTGCCCAGGTCGAAGATGCTGCCGCCTCTGACGAAGACGGGCAATTGCCAAAGGGGGTACTTGCGCCGGTTGTAGACCCGGCCGCCCATCAAGCGGTCGCCGGTAAAGAGGTCGATCCAGACAGTCTGCTTGTCGGGCAGGTAGATCCGGTCGCGGACGCTTAGGCCTCGATTGTCAGACTTGCCGTTGACGATTGGCGCGACAAGCAATTGGTCGCCCAGCATGAATTCATCGGCAAAGTCCCGGCCGTAGCCAACCTGTTCATGCGGAAAGGACATAAGCAGGGGCCGGACCAGGGGCAGGCCGTCCTGGGCCTGGCGGCTGAGAGCGTAAAGGTAAGGCTTCAGCTGCTCACGCAGGCCGAGGTAGGCCTTCATGATCCGGGAGACCTTGTTGTTGAAGGCGAAAGGCGTCTTGCTGAGGGGGCTTTGGTCGTCAATAGCGAAGAAAAGCGGGGTAAAGGTCTTCCATTCCAGGTCGCGGACGGCAACTTGGGCATTTTCCTGGCCGTGCTTGCCGCCGGCAGCGGCCCCGATGAAGGGCAGGCCAGACAGACCAGCACCTAATAAGGTAGAGATTTGCGTTTTGATGCTGGACCAGTCACCGCTGACATCGCCGAAGGCCAGGGCAGCCTGGCTTTGGTAAGGAAGGAGGCTGTCGCGGACCAGGGTAAGGGGCTTGGCTTTCGGATTTTCCTTAGCCAGGTCGGAATTGACGGCGGTCAAGTCGCTGCTTGGGTCGTCGACCGCGGCAAATTCGCTGTGGTGGGCTAAAGGCTGGCCCTTTTCACTCCAGAAGCCTGGATGGCAGTTGCGGCTTTGAGCATAGCTGGCAAAGGCGGCAAAGTCATCGGGCTTAGCGGCAGTTTGGCTTTCGTAGTTAGGGATGATCCAGGATAATGGGAAGCCCCAGCGCTGGTAGCGGTCCAGCATGGCCCGGGCGGAGAACTGGTAGTCCTGTTCCCCGTTTAGGCTTGGCAAGCGGCCACTGTTTTCCGTCTTTCTTGAGTAGTAGCGGTTGTCTTCAAAGCGGACTGCTTCATGACCCTTGCCGTCAGCTTCTTGCCAGGAGCCGTCAAGGAAGTTGCCGATGTGGCCGAAGGAGAGGGCGTAGCTGGGCAGCATGAAGGGCTTGCCGGTCAAATAATAGAAGCTGGACAGCAATTCTTGCGGAGAGTTTCCTATTATATAGTAGCTGTCAAAGACCGGGGTCCGGTGACTGAGGATGGTGAGCTGGGAATTTTGCCGGCCGAAGTCATAGTGGCCAGTCGCGGTCGTGTTGCGCAGTTCGGCAAAGCCAGCGTTGGTCCAGAAGAAAGGCACGGCAGCTAGAACGCCGTCAGCCCCGGTGATACCGTCGGTCTTGATGGTGATTTTTTCACCCTTGTGGCTGAAGTGGCCGTTTTGGACCCCGCCACCGTAGTAGTATTCGTTTTTCCCTTGCTTCAAGATTTCGATGCTGTGCTTGCCGCTCAGTTCGAGGGCGGAAGCTTGGACCATCCGCGGCCGGTGGACAGACTCGTCAAAGATGCTGAAGCTGCCGGTTTTCTGCTGGAAAATCAACTTGCAGCTGCCAGTGGTGATGATGAACATGTCGCTGGTCGCGTGGGCCGTGGCCCGGGCGAAACATTGCGGGTCGGGCTCAATGCCTTTGACCAGCATGTCGTTAGTTTCGGCAAATTCTTGACTTGGATCCAGCCAGTAGCGGAAGATGCCATTAGCGATCAAGTAGACGCGGGCGATCTCGCCGGTCGCGTAATGAAGCTCATAGTAATTTTCACGCTTATTGACGCCAACCAGTCTTCCTAATTGATGTCTTGAATTTTGCAGGTCTGCAGTCATAATCTTTTTCCTTTATGTCATGAAATATCTAATCTAATTATAGCCAAAAAGCCGGTAAATTGGAAAAAATAGCCTATACCAGTTTGGGTAACCAGGAGACAGACAATTACCTTGTAGAAAAGAAGGAGTTTATTGCTCCTTAAATTATCTGGCTAACAAATATTATGAAGTCTTAAATTGTGACGACTTTCAAAAATTATATTATAGTAATGCTAAAAAACGTGCTGGATTACTACTGGTGTAAACAAAAATGTGATACAAATGGTGTAATGGCACGATATAAATGGTGTAACTAACTACGGAAGAGCTGGCTGATCATCCTGCTTTTGATTTTGATTCGACTGGGCTTTTGCCTATGCTTATCTTTGGGTTAGATGAAGACCTGGTCCGGTCGCAGGGCTTTTTCTTCAAAGAATCCAATAGCTGATCTTTAACTGCCTGAAACGGGCAGTTTTATTTTTGCTCATTTTTTAGCAAAGCATTGACTAAACGGCCTACAGAGTTAAGAATACTCATTTTTTAGCAAAGCATTGACTAAACGGCCTACAGAGTTAAGAATAATAGAAGGAAAAAGATTGTTTTACTAAGGAGAAAAAATGCGCTATTACATTCATGCTGATCAGTTTTACCTGCCAAATGGCCGGGAAAAAGGCGGCTATTTAGAGATTGTTGATGGTAAATTCGGGGCCTACCTGCCAGAAGGCAGCCAAGTGCCGGATGCGGTGGACTACACTGGCTTTAGCGTGGCACCGGGCTATGTCGACACCCACATCCACGGTTCTGTTAAGGAAGACGTGATGAAGAGCGACTGGGAGGGAATCAACCGCCTGTCTGAAGCCTTGCTGAGTGCCGGGGTAACCAGCTGGCTGCCAACGACAGTGACCGCGTCCAGTGAGCAATTGGGTGAAGTCTGTCGGATGCTGGCTGCTCACCAAGGAGAAGAGAGTGGGGCTAAGATTCAAGGGATCCATTTTGAAGGCCCATTTTTCACGGAAGAACACGCGGGGGCGGAAAATCCAAAATACATGATGGATCCAAGCCCGGCAGAACTGGACAAGTGGCTGGAAGCGTCAAAGGGGATGCTGAAGAAGATCTCTCTTGCCCCAGAACGTCCAGGAACGCCAGCCTTCGTAAGCTATGCTGTCAGCCGGGGAGTCAAGGTAGCCCTGGGCCACTCTAGTGCCAGCTACGACCAGACTAAGGCGGCTGCACAGGCTGGGGCAACGATTTTTACCCACACCTTTAACGGGATGCCGGACTTCTCCCACAACCGGCCAAACATCGCCAACGCGGCCATGACACTGGAGAACATGGACAACGAACTGATTGCTGATGGTCACCACGTCACGCCTAGCGCCATCAAGGCCCTGCTGGCGGCTAAAGGCAAGGAGCATATCGTTTTGATCACTGACTGCATGGAAGCTGGGATGATGCCGGATGGCGACTACATGCTGGGGGAACTGCCGGTATACGTCAAGGACGGAATGGCGCGACTGAAGGAGGGCGACAACCTGGCCGGCAGCGTCTTGCAGCTGAAGGACGGGGTGAAGAACCTGGTTGACTGGGGATTGGCTGGTAAGGAAGAGGCTGTTTTGATGGCCAGCTATAACCCGGCCCGCAGCCAAGGCCTGCTGGACAAGTGCGGGGCGATTCGTCCGGGCCTGCCAGCTGACTTTTTGATTTTGAAGGATGATATGTCTTTGGCAAAGACATACTTGAATGGGGAAATTCGCTGGGAAGAATAATAAGTATAAAGAGAAAAAGTCTGTCTTCCAAAATTGCGGAAGGCAGGCTTTTTGTTAGATATAGTTGTTTTTAGTATACGGCACCTTCGTAGAAGTCAAAGCGCAGCTTGTTGAAGTTGAAGTCCTTCAGCTGGCTCATCTTGATTACGTTGTCGCTGACGCCCCAGCTCATGAGGTTGATCGGCTTGCCGTAGTCTTCGTCCGGGATGACCAAAAGGACGTACTTGCCTTGGCTCAAGGCGTAACCCAGTTCCATGCCCAGGCCGACGTCTTCTTCGTCAGGGATGTAGACGCCCAGCATGACGTCGTTGGTCTTGATCCCGTTCAAGTCGTTGTTGTAGGTGGCCGTAGCCCAAACCTTGTCGTGCAGGTATTCCGGGTGTTCGTCAACCCGGATGCCCTTGTACTGGTTGTCCAGGGGAACGTAGCTGTTTTCCAGGTCAACCGTTGGGTTTTCTTTGAGGGCTTCCATGGCTTCCTTATAGGCTTTGTTTTGGCGGTCAGTGAACCAGCCGGCACCGAAGTAGATCGTCTTTTTTGGCATATCTTGTATTCCTTTCATGCCCGTTGCGAGATATTGTGTTTCTTTTTCTAGAATAACTTTACCATTTTCCGCCCCGGCTGACTAGTCAAAAATTAAGCATCAGCCAAGTTGCCCAGCGGCAGAAAGCTTATAATAAAAGTAGTTGTATTTTTGAAAAAAGGGGTGGACTAAAAATGACTGAAGAACTCTTAAAAGCGGAAAGCTGTTTTGTTTTGCGGGCCGAAGACCGGGCTGACATGTTTGCCCAAGTCTACAAAAAGCTGCTGGAGCAGGGGCTGGTAGCGGCCGGCTTTTTAGACCAGGTGGTGGACAGAGAAGAGGACTTTCCGACCGGCCTGGCCAGCTGCAATCTGGCCCCGGATCTCCCCAACCTGGCTTTTCCGCACACGGAAGGCTGCTTCGTCAAAGAGCAGCGGGTCGTTCCCATTAAGCTGCTGGCCCCGGTCAGCTTCAAGAGCATGGTCGATCCCAGCCGCGAATTGCCAGTTGGCTTTTGCTTCATGCTGCTGGACCAAAAGGCGGATGGCCAGGCTGAACTTTTAGCCAGAACCATGACCTTCCTCAGCCAGGCTGAACCAGCAGCCCTCAGCCGGATTTTTGCCCAGACTGATCCTGCCGGCTTGTACTCTGCCCTGCGGGAAGAGGGATTTTAATTCTGGCGCTTATTTCTCCAAGTATATCGTCCGCAAATCCAACAGGTCAGCATTAGAGAGGCCGATCTGCTGGTGAAGGTAGGCGTTGATGCTGCCGTAGTCCCGGTTGATGACATCCAGCAGGTACTTGAAGTAGGCCGGCTGTACAGTCTGCAAATCGCGGAAGGTCGCCAGGAGGCTGTCATCAGCTCCGGCGGCCTTTTCCTTGGCCAAAAGCTGGCTGACGAAGTCCTTGATTACTTCATTAGTGAAGAGGTAGTCTTTTTCAATGGTTTTCATCGGTACGCCCAAGGCCGTCAGAATCAAGATTGCCCCGAAACCGGTCCGGTCTTTCCCGGCCGTGCAGTGGAAAAGCACGCTCTCGCTGTCTTTCTCATTAGCCAGGAGAACTTCAAACAGGTGCTGGTAGGCCTTGTTGGCGTTCTTCCCGGTTGCCATATTCTTGTAGGCCCACAGCATCCGCTGGTAGCCCCAGCCTGGATCCTGGCTTTCTCTCGCCATGTCGGAAATGCTCATGGTGGAGTTGGTCAAGTCCTCATCGAAAACCGGGTCGGCGAAGTACTCAACGCCCGAGATCTTCCGGTCTGGCTGTTTGTTTCTTTCGAAACTGGTCCGGAGGTCGATATCATACTTGAGCCCGTAGCGGCGCAGGTATTCCTGGTCTTCCTTGAGCAGGTCGGCCAAGTGCCCGCTCCGGATCAGCTTGTGCATTTTGATCTTTTTGCCGGAAACGGTCTGGTAGCCGCCCAGTTCACGGAAGTTCCGGCCGCCTTTAACGTCCAGCAATTGCTGTTTTAATGAAGTCATTTGTCGAATCCTTTCTTATTTATATGTCTGTATTTTCTTTTTATTGTTGTCTAGCGGTTGATTTTTTCATCCTGCTTAAAAAATGCTTCCCTGCAAGTTTAAGATGTAACAATTTTGCGAAAGCGCATTACTAAACCGTGACTTATGTTAAAATATAGATAAGCGAAATACGTAGATAGTACGGGAGATGAGCACTATGACTGAAGAAAAAATCAAAATTTTGGTACCTGTCGATGGATCTGAATCCGCTGAACGTGCTTTTGACAAGGCCGTGAAGATTGCCGCCAACAACGGCTACCACGCTGATTTTTTGAACGTGATCGACACCCGGCAGTTCATGGGCGAAATGCAGGACACCTTGATCTCAGGCGACACGATCTACCAAATGACCCAAGACTCAGAGGAATACCTCAAGAGCCTCAAGCAATGGGCCCACGACAACCTGGCCTTTGACGACATTGACTACCACATCCGTTATGGCAGCCCGAAGAGAATCATCTCTTACGACTTCGTCAAGGACCACGGCAACAACCTGATCGTGATGGGCGCCACCGGTTTGAACGCCGTTGAGCGGATGCTGATGGGGTCAGTTACCGAATACGTCAACCAGCACGCCATGGCCGATGTCTTGATCGTCAGAACTGACGTCAACAACATGCCTGCCAAGTAAGCTGGCTGATAAAAGTATATCTTAAAAAGAGGACGCTTGGAACAATTTCCAAACGTTCTCTTATTTCCCGTTTATTTAACTAGAATTTTACTTTTGTTCGGATTTTGCCAATTAAGTTAGTGGTTTGTGTAATTTTTCGTTATCTCATTAACCTTTTGCTGGCAAAATTTGACCGGATCAATTAGTTTGGGTAAAAAACCGAAAAACGCTTGCTAAAACCCGAATATTTCTGGTAGAATTGTTCCAGAACACAGAAGCGAGATTCGCCTTGCTGTCGTTCCGATGAGATGTATGAGCGTGAGCGCCGGCCCATTGTGGAGGCTTTTGTGTGGACTTTTCTCTGGCTGCTTTCAAGCTCATCCCTTATGCTGCTGTTGTACTATTTTAACTTTCATTAACCATTTTTCAGGGGGAAATAATGAAAAAGTTCAAGAAAGCATTGTTTGGTGCTTTAACTGTTGCTGCTGCCGTGCTGGCAACTGCTTGCTCTTCAAGCAAGTCATCTTCTTCATCAAAGGGCTACACTCCATCAAAGTCACACCCTTTGACAATCCAGTTTGTTCCTAGTCAAGCTGCTCCCACTTTGGAAGCCAAGGCTAAGCCGCTTGAAAAGATCCTTTCCAAGAAGCTTGGCGTTCCGGTTAAGATCTCAATGTCAACTGACTACAACACGGTTGTCGAAGCCATGAAGTCAAAGAAGGTTGACGTCGGCTTCCTGCCACCGGATGGTTACGTTATGGCCCACAAGGAAAAGGCTGCTGACGTTCTGCTTCAAGCTCTCCGTTACGGGATAAAGCAACCAGGCGGTAAGGAAACCAACAAGCTGGTTAAGGCCTACCGGTCAGAAATCCTGGTTAAGAAGGGGTCAAAGATCAAGAGCTGGAAGGACTTGAAGGGCAAGAAGATTGCCGTTCAAAACGCTACTTCTTCAGCCGGCTACATTTTCCCAATCGCTGAATTGAAGGAAAAAGGACTGGACTTGACTAAGAAGGGCAACGCCAACCTGGTAACTGTAACTGGCCACGACCAAGCTGTGCTTGACGTGCTTAACGGGGACGTTGATGCTGCCTTCACTTTCGAAGACGCACGTAACACTGTTTTGGCCGACCAACCAAACATCATGAAGAAGGTTGTTCCAATCTACTTCACTAAGAGCATCCCTAACGACACTATCTCAGTTCGTTCAGACATGAGCAGCTCCTTCCGCAAGAAGCTGTCCAAGGCCTTCGAATCTCTGCGCAAGGACAAGAAGAGTTTGAAGATCATTGAAAGCATCTACAGACACGAAGGCTACACCCCTTCAAAGGACTCAGACTTCAACATCGTCCGCAAGTACGACAAGATGGCTGCTACCAAGTAGTCATTGATATCACAAAGATTATCAACTGAATACTAATAGTGAAATCGTGCCCCGCTTTAATGTAGGACACGATTTTCAATGAAAAAGCAAATTTAGTTATTTAAGGAGTTATTATTTATGGCAGATCAGCCGATGATCGAAATGAAGAACGTTACCAAGGTCTACGACAATGGTACCGTTGGTTTGAAGAACATCAACCTGAAAATCAACAAGGGTGAGTTCGTGGTAATCGTTGGTCTTTCCGGTGCCGGCAAGTCCACTCTGCTCCGGGCAATCAACCGCCTGCACGACATTTCTGAAGGCGACATCTTGATTGCCGGTGAGTCAATCACCAAGACCAAGGGCAAGAACCTGCGCCTCATGCGGCGCAAGATCGGGATGATCTTCCAAAGCTTCAACCTGGTCAAGCGCTCCAGCGTTTTGCGGAACGTTTCGGCTGGCCGCCTGGCTTACTACCCAACCTGGAAGACTACTTTCAACCTCTTCACTGACGAAGACAAGCAAAGAGCTTATGAAGCCCTGCAAAGCGTCGGCATGGCTGAAAAGGTCTACTCCCGGGCTGACGAATTGTCTGGTGGTCAGCAGCAGCGGGTGGCTATCGCCCGGGTGCTGACTCAAAGACCGGAAATTATTCTGGCCGACGAACCAACTGCTTCTTTGGACCCGAAGACTTCCCGCCAGGTTATGGAAGACTTGAAGATGCTGAACGAAAAGTTCGACATGACGGTCGTGGCCAACCTGCACTCAATTGAACTGGCCAAGGAATTCGGCCACCGGGTCATCGGTGTCCGGGCCGGGGAAATCGTTTATGACGGCAAGATGGAAGACACGCCGCAAAGCGTCTTCGACAACATCTACAACGGCGGCAAAGGTAAGGAGGAAGACTAACAATGTCAGCAACTGACCGCGACATGTTAAAACTTCCAAAAAAGAAGTTTAAGATGTGGAACTGGGTCTGGGTCATCTTGATGGTCCTGGGTCTGGTTTTATCTGTTAACAACACGCAGACCAGTCTGCCAGAATTTTTCGCCAACTTTGACCAGTTCGCGGAAATCTTCGTGCAGATGGCTCAGCCTGACTGGTCATATGCCGGCACTGCTATTCCTTACCTGGTGGAAACGATCAAGATGGCCATCATCAGTACGGTTATCGGGTCCCTCTTGGCCTTCGTTTACTCACTTTTGATTGCCAGAAACATTGTCCATAACCGGGCAATTACCGGCGTTCTGCGCTTCATCATGAACATCATCAGAACGATTCCTGACCTACTCTTGGCTTCAATCTTCGTTGCTGTCGTTGGTATCGGCCCGGTTGCCGGTATCCTGGCCTTGACTGTCTTCACCTTCGGTGTTGTGGTCAAGCTCTTATACGAAGCCATCGAAACTATTGATCCAGGTCCAAGTGAAGCCATCAAGGCAGTCGGGGGCAACGGGATGAACAATATCATGTTTGCCGTTATGCCGCAGATTCTGCCTTACTTCATCAGCTACGCCCTGTACGCTTTTGAAATCAACGTCCGGGCATCCACGATCCTCGGTTACATCGGTGCCGGTGGTATCGGTCTGCAGCTGAAGAACACTTTGGACATGTTCAACTACAACCAAACGGGGATGATCATCCTGGTTGTCTTCCTGGTTGTTTTGGTCATCGACTTTGTTTCAACTAAAGCAAGGGAGGCTTTGATGCGCTAATGGATACGACAATGAAGAAATTACCACCAAAACCAGTGACGACCAAGTCCAGAGCTATTAAGTGGGGCGGCTGGATTATTTCCATTGCCATCATTATTTGGTCCTGCACGGGTATCAACTTCGGCGGGATCAAGCCAACTGCCGTCCAGATTACCGGGGCGATCTTCAATGGTCTTTTCCACCCGGACTGGTCATACGTTTATAACGGCAGCGGGGAAGACCTGGTTTCCCAATTGTGGCAGACCTTGTGTATTGCCTTCCTGGGGACTTTTATCTCCGCCATCATTTCAGTTCCTTTTGCCTTCTGGGCAGCCAACACCCGGCACAAGAAGTTCTGGGTATCTGAAAGCGGGAAGATCGTTTTGACTTTCATTAGATCCTTCCCGGAAATCGTTCTGGCCTTGATGTTCATTAAGGCCGTTGGTCCGGGCGCTCCAGCTGGTGCCCTGGCCTTGGGTCTGCACTCAGTCGGGATGCTGGCCATGCTGTTCTCAGAAGCGATTGAAAGTTTGGATGATGGTCCAGCTGAAGCGATTACGGCGGCCGGCGGGTCTAAGTTCAACGTTGCTGTTTTCGCGACCATGCCTGACTTGATGCCAGCCATCGTTTCCAACACCCTTTACCGTTTTGACGTGTCCGTCCGGTCCGCTTCTGTTTTGGGTCTGGTTGGGGCCGGTGGTATCGGCTATCCTTTGATCATCGCCTTGAACTACCGGCAATGGAGCCGGGTTGGGATCATCCTTTTGGGGATCATCGTTATGGTTGTGGTCATCGACTGGATCTCTGGTGCCATCCGGAAGAAGTTGGTCTAAAAATATATTTGAATAATAACTCTTTGAAAAGCTGTGGCGGTTGCCACGGCTTTTTTCTTTTTTAAGAGAGGTCAACAATCAAGCCATCGACTTTAATCATGGCGCTATTACTTTGACAGTGACAATCATCATTACTTGCTTCTTACTATTGTTGCCTTCCTTAGGCAAAAGAAAGAGGCTCGCGTACCGCGAGCCTCTTTTCTTTATTCTAGTCTGTTGTCTATTGTTTGTTGTCTGTCGCTATTGCTGCTTGTTACTTCAAGTAAGCGTACTTGAAGCTGTAGTTTGCCCCGGCGCCGTTGTAGATCACGCCCTTAACGCTTGGCTTGACCATCCAGGCTTCAACTGGGTGGTAGAGTGGGGTAACCCCTTGTTCTTCCAGCAGGATCTGTTCAGCCTTGGCCAGTTCCTTGAAGCGGGTGCTGGTTGAGCCAGTCGTCTTGGAAGCAGCCACGTACTTGTCGTAAGTCTTGTTTGACCATTTGCCGTAGTTGTATGAAGCGCCAGTAGTCTGCAGGTCAAGGAAGGAAATTGGGTCAGCGAAGTCAGCGTTCCAGCGAGTTGAAACAACATCAAAGTTGCCGCTCATCATTTTGTTCATCCGGGTCTTCTTCGGGATGCTTTGCACTTGCACATCGATGCCCAAGTTGTCTTCCAGCTGGCTTTGAACGAATTCAGATGCCTTCTTGGCCGTGTCGTCGTCATCGCCAAGGAGAGTGAAGGAGATCTTCTTCTTGCCGGTTTCCTTCAGAGCTTGCTTGTAAAGCTTCTTGGCTTCCTTGACATTGTAAGTTGCGGCCTTTTCAGTAGCGGCGTTCTTGACCGTGTCGGTGTAGTCCTTGCCGTTAACCGTCGTCATGCCTTCCGGGTCAAAAGTCGTGGCTGGAGTAGCCGCCCCGCCCAGAGTTGAAGCCAGTTCCTTCCGGTTGATAGCCATGGAGATGGCCAGCCGGAGATTCTTGTTCTTGAATTCCGGGTGCTTCTTGAGGTTGTAGGCCAGGTATTGGGTCGTGGACATCTTCCGCTGGGTGTAGCCGGTCTTGCCCTTCAAAGACTTGGTGGCTTGGGCGTCCAGGAAGGCAGCGTCAAGCTTGCCGCTTTGGTAAAGGTTGTAGTCAGTTGCCGGAGTCTTTTGCACGCTGAACTTGACCGTGTCGAGCTTGACGTTCTTCTTGTCCCAATACTTGCCGTTCTTAACCAGTTTCCAGCTCAAGTTGGACCCGGTCCAGCCGACTTGCTTGTATGGGCCGTTGTAGATCATATACTTGGACGCGGTCGCGTACTTAGAGCCCATCTTTTCAATGAACTTCTGGTTCTGCGGGAAGAAGAGCGGGAAGGCCATCAGCAACTTGAAGTAAGGGATCCGCTTTTCCAGAGTAACCGTCAGCTTGTACTTGCCGTCTGCCTTGATCCCCAGGGTAGCTGGCTTCTTCTTGCCGGCAACGATGGCATCAGCGTTCTTGATGCCGGAGAACAAATAGGCATATTCAGACGCGGTCTTCGGGTCGATGGTTCTGCGCCAGGAATAGACGAAGTCCTGGGCCGTAACTGGGTCCCCGTTGGACCACTTGGCGTTCTTCCTCAAAGTAAAGGTCCAGGTCTTGCTGTCAGCGCTGTTCTTGGTGGAAGTGGCCAAGGCGTTTTGCACTTTGGCGTTCTTGCCCAAAAGGTAAAGCCCTTCTTCCACGTTGTTGATTTGTTCAACGGAGGCTTGGTCGGTTGCCTTGGAAGCGTCCAAAGTGGCAATTTCCGCGGTGTTCATCCAGGTAAGGGGCTGCTTCTTGGCACTGCTTTGTGAGCTGTTTGACCCGCAGGCGGCTAAAGTGGCCGCGCTAGCTAAGATTACGGTTGAGCTGGCTAAAAGTTTCTTGCTTCTCATATTTTTTGCCTTCTTTTTCTTGTAAAACTCATATATTACGACACAGCTTGATAGATAGCTAAACTGCTGATCTGAGAGATATTAATAATTATAGCAAATAAATTAAAAATGCCAGGTGTGCTTTAATCTTTTCGCCATTAACTGTGAACTTTCCCCATTATATGGAAAAAGCGCTTTGCCCAAGTAAAAAAAGCTATTCCAGACCGACTTTTTGCTATAATTAGGGTAAGATTGCAAGGAGGACAACATGGAAAAATTAACTACCATGGAGCTGGCTGACGAGTTAGCTGAAGCTCAAGACAAGATTCTTAACGGTGAAGCAAAGCTGGATACCGGCCGGGTTTACCAGGCCATCGATGATTTGGGCGTCTTGAACGATCCCATCAGCAATTACTTCGACCGGACCGAAGATGAATACTATGAAACTGAAAGTGACCACTACCTGGCCTTGACTAATCTGACTGGCAAGCTGGGCGACCTGCACGACCGCGTCTTGATCAACCACGTGGACGGTTTCGTTGACAAGGACGAAATCAACTTGACCTACAACCACGAAAATGCCTACGTGGAAGACAATTACGTGCCAAGAACCGACCTGCACGTTTTGGTCTACGGGCTTAAGGTGATCGGGGCGGTTGAAGCCATCGCCGCTGCCGACCTGCGCAACGTCTTGTCCAAGGATGCCGTGCTTTCCTTGGGCCTGGCAGCACACGCATTAGCAGAAAATCTATAATTGAGAGCCGGGGGAGGCCCGGCTTTTTGTGATTTTAGGCTTTTTGGAAGGGTAGAAATGGACCTGTTTAAATACACAAAGGGAATTATTGACAAGGCAGTTGGGGCTTTCAAGCTGCACGCCGTGCAAAAGAATGCCGGCGAGCTCCTGGATCCCATGCAGAAGTATCTGACGGTAGGGGAGTACCATGTCGATGCTCGCGACGCCACGCCTGACGGCCGGCCGTTTACCTTGACGGTCTACCAAGATGACCAGGGCATCCTGCACCAGGCGCTCAGTCCGGAAAGCACCGACAGCCTGGCCGCTGAATACGACCGGAAATTCGTGCCGGAACTGAACCGCTTCAAGGCTTTCCGCAACCGGGAAACGGGCCGGCGCTATGTCGTGGAAGACTACCTGGCCCGCTTTGTCAGCGACGTGAAAAAGGAAATCCGGGAAGGAGACGACTCTGTCAATATCGGGGTCATTACCGACACCCACTTCAAGAACGTTGACAGCCTGGACTTCTATGGCTGGAACGGCTTGATGCATGTCAAAGAGTTTTCCTACCTGGACCAGCTGGATATTTTGGACCTCAAATGCCACTTGGGCGACTGGATCGACGGCTCTGACGCCGGCCTCATCAGCGAAAGCGAACTGATGAAGCTGCGGGACTCCTTTAAGTCCAGCAAGGTGCCTTACCTCATGATCAAGGGCAACCATGACGAAAATGACAAGTTTGACGAGCACCATGACTTGAAGGCCAGCTTCCCGGAGCGGGAGTTTGAGAAGATCATGTGGCCGGAGATGTACCGGCAACGGGAATTGGGCTATGTTTCCCGCCAGCACGGGGTGGCCTGGTTTGACCAGGGACATGTCCGGGTGATCAGTCTGAATACGTCAGACATTCCCTACATTTTGGATGAAAAAGGGCAGAAAAAGTACGATGTTAAATTGACCCTGGGGGTACGGGAAGACCAGGTGCAGGAACTGATCGAAATCCTGCAGCAGTCAAGCGGCAAGCAGGTTATCCTGCTCAGCCACGCCAACCCGATCAACCGGAAGGGCGGCAATGCCTTGAAGTACAACGGGCGGTCCCTGCATGAACTCTTGGTGGCCTTCAACCAGAAGGAAAAGGGCCGGATGCACTCCAGCAAGGACGTGCCGGCGGAATTCCGCTTGAGCAACGACTTTGACTTCACCAAGGTCAAGGACGCCCGGATCATCGCCTACTTCTGCGGCCACCGGCATGTGGAAGACCAGTACCGGATCAACGGCATCCAGTACGTTCTGTTCAACTGCTCAGCCTTGATGGGACCCAACCACCAGCTGACGACCAAGTATAACAAGAACTTAAACCGGAAGATGGACCACCAGAATGAATTTGCCGGCTATGTCGTCAACGTGGACCTTTTCCGGCGGCGGATCAAGGTCTTTGGCTATGGGGCCGCGACCAGACGGAGAATTTTTTTCATTTAAGTAAAGATTGACAAGGACTCTGTAAACATTAGAGCCCTTGTTTTATAATAAGAAGTTGACTTTATAGAAACTAACTAGAATTAAGGAAGAGAAAACATGTGCGGAATTGTCGCCTTTTACGATCCAGAAATCAATGACAAGCAGGCGGCCATCGGCAAGATGATGGCTACCATCCAACACCGGGGACCAAACAGTGACGGGATGTACACCAACGACAAGGTGGCCCTTGGTTTCAGAAGACTGTCGATTATCGACCTGCGGGGCGGTAGTCAGCCAATCTACAACGAAGACCGCAGCCGGGCGATCATTTTCAACGGGGAAATCTACAACTTCAAGCCCTTAAGAGAGGAACTGATCAAGGCGGGCCACACCTTCTCCACCAAGGCCGACACTGAAGTCATCCTGCACGGCTATGAAGAATGGGGGATGGACGGGATCCTTAAGCGGGTCCGGGGGATGTTCGCCTTCATCATCTGGGACGACAATACCCAGACCATGTACGGGGCCCGGGACTTCTTCGGTATCAAGCCGATGTACTACCAGGACGTGGACGGTCACCTTTTGGTCGGCTCAGAATTGAAGAGCTTTTTGGCCTTTCCTCATTTTAAAAAGGAACTGAATACCGAAGCCGTCAAGCCATACCTAATGAACCAGTACAACGACCTTAAGGAAACCTTCTTCAAGGGCGTCTACCGCTTCCAGCCAGGTCACTGGTTTGAATACAAGGACGGCAAGATGAAGACGCACCAGTACTGGGATGCCGAATACAAGGACAACAACCTTTCCTTTGAAGAAACAGTCAAGAAGATCAACGAAGACTTGAAGGAAACGGTTGACCTTTACCGCAACGCCGACGTTAAGGTCGGGGCCTTCCTTAGTGAAGGGGTTGACTCCAGCTTCCTGACGGCCCTTTTGGACCCGGATGAAGTCTTCTCCATCGGCTTTGACGACAACACCTACGATGAAGCTTCCAAGGCCAAGGCCCTGGCCGACATCAACGGCTGGCACTTCTACGCTGACAAGGTCTACTCAGAAGAAGCTATGCGGGACTTCCCGGAAATGCAGTACCACATGGACGAACCAGACGCCAACCCGTCAATCATTCCTTTGTGGTACCTGTGCAAATTGGCCAGAAAGCACGTGACTGTTGCCCTGTCCGGGGAAGGGGCCGATGAGCTTTTTGCCGGCTATGTCAACTACGGGATGCACACCCACAACAATGTCATCAAGGTCTTTACCGACAAGCTGAAGAAGCTGCCAAAGGGCAAGCGGGTTAAGCTGGCTCATAAGATCAAGAAGATGCCAAACTTCCCGGGCAAGGTGCACCTTTACACCAACCTGGCTGAACCAAGCGAATTCTACGTGGGCCAGTCAGTCATCTACGACATGGATTACCCGACCATTTTCACTTCCAAGGACGCTAACGCTGTCTTGCAGCCGAGCTACCGGAACAAGCTGACGGTTAACGGCAACTACCAGGAAGACTTCAAGAAGGTCAAGGACCTGGACAATGTCAAGCAGATGCAGTACATCGACCTGCACCACTTTATGCTCAACGACATCGAGCAGAAGGCTGACAAGATTTCCATGGCCCACTCCCTGGAACTCCGGGTGCCTTACCTGGACGTGAAGATCGCCAAACTGGCCAACTCTATTCCAAGCAAGTACCTGGTCAACAAATACGACACCAAGTACGCCCTGCGCAAGGCTTCAGAACAGGTCCTGCCGGATGAATGGGCCAAGCGGCCGAAGCTGGGCTTCCCGACGCCAATTAAGCAATGGCTGCAGGAAGAGCGTTTCTACAAGCAGGTCAGAGACCTCTTCAGCGAAGACTTCGTCAATGATATTTTTGAACAAAAGAAGATCCTGGACCTGCTGGATGAGAACTACAATGGGGACGGTTCTCACCGCCGACAGATCTGGGTAATCTATACCTTCCTGGTTTGGTACAAGCTCTTCTTCGTTGACTACGAGGAAACCGTGCGCAAGTACCAGCGCGTGCAGCCGGAAGTGGCCAGCTTGATCGCCCAGGGCAAGCTGCTCTAATCCAAAAAGAAGAGAAAGAGAATTTAATTACTAATGGCTAAATTTACACCAATTTTGCTTGGCAGCGACATCAATGTCTACGGGATGGCGCGGTCTTTTAACGAAGCATACGGCATCAAGGTCCAGGCTTGGGCGGCAACGCAATTGGCGGCCACCCGCTATTCTAAGATCGTGGACGTTGAAGTGCACCCTGGTTTTTCCGAAGACCCGGGCTTCATGGAAGTCATGCAGAAAAAAATCAAGGAATACCAGAATCATGAAGAGCCAGTCATTCTGATCGCTTGTGGGGACGGCTATGCAGAACTTTTGGCTAAGCACAAGCAAGAACTGGAAGGGACCTTCGTCGTTCCTTACATCGACTACCAGCTTTTGGAAAAGCTGATCTCTAAGGAAGGCTTCTACGAAGTCTGTGAAGAATACGGCCTGCCTTACCCGAAGACCAAGATCATCAAGCTGGCTGACTACCATGATGGGTCATACGCCGACGTGCCTTTTGCCTTCCCGGTTGCCTTGAAGCCGGAAGACCCGGTTTCCTGGCTGGATGTCCAGTTTGAAGGGCGGAAGAAGGCTTTTGTCATCAAGGACCTGGCTGAATTCAAGGACATTGTGGGCAAGATCTACACCAATGGCTACAAGGAAGACTTGATTCTGCAGGACTTCATCCCGGGAGACGACTCCAACATGCGGGTCTTGAACGCTTATGTGGACAAGAACCACCAGGTCAAGATGATGTGCCTGGGCCACCCGCTTTTGGAAGACCCGACTCCGCAGTCAATCGGGAACTACATGGCTATTTTGCCGGCCTATGATGAAAAGCTTTACGAGACCGTCCAGACCTTCCTGGAGAAGATCAACTATGTCGGCATGGCCAACTTCGACATCAAGTACGATGCCCGCGACGGCCAGTACAAGTTCTTTGAAATCAACCTCCGCCAAGGCCGGTCCAGCTTCTACGTGACCTTGAACGGCTACAACCTGGCCAAGTGGTACGTTGACGACTACGCTGAAGACTCCTTGGCCGGCCAGGAGACCGTCTATGCCAACAAGCTGGAGAGCAGCCACATGCTCTGGCTGGGCGTGCCGGAGAAGATCTTCAAGGAATACGCGGTCGACAACGAGGCCAAGCAGGCGGCCTTGAAACTGATCGATGCCGGCCAGGTGGGGACGACCGTCTTCTACGACCAAGACAGCTCCTTTAAGCGCTGGCTCTTGATGAAGTACATGTTCCACAACTACTACAAGCGCTTCAAGACCTACTTCCAGGTCAACAAGGGCCAGTACTTCGATAAATAGCCAATACTTTTATAAGCTCTTGACGAAAATCAAGGGCTTTTTTCATCTTTTTTAAATTTTTGAAGGACTTTGGCAAAAGGCTAAAAATATTTGCTCAAGCAAAATATTCTTTTTTTAAAAATATACGGGCTCCAAGTCCCGTGACAACTGAATTCTCTCCTGTCATTTAATAGAAATGGGTCTTTGTATAGACCACAATATCTGGTATTTTGTGCTATGCTTATCTCATGAACTAAACAAGATGTAGTGGTTATCCACACTTAATCCACAAGATAGTCTAGTTCTTGTGGGTAACTCGCTTAAACAGCCCCAGAGGCTGGATGTAAAAAGGCAAGGTATTTTTGAGAGATAAGAGGTTGATTGTCATGTTAAAGCCAGCAGCAGAAACTGTGAGCCTGAATTTCGCTAACGCGCCAAAGAAGTTCATCAAGCGCGACGGCGCCCCATTTAAATTTGAACAATTCAAGCTGGAAATGGTTCTGGATGAACTTGGCCTGGAAGACAGCGAAATCAAGGCTGCCGTTTTGAGCAAGGTTTACGCCAAGCTGGCCACCTACACGGTTGACGCCGTTCAAGTCCACGCTGCCTTCAGAGCCAGCTTGAACGAATTGGGCTATCTGAATGAAGCCAAGGAATACGAAGCCAAGCGGCGGGAAGACGAAGCCGACTGGCGGGCAGAAACTGACACCAAGCAGCGTCTGGCCAAGCTGGTCGACAAGGACCCAAGCATCGTCCACGAAAATGCCAACAAGGACTCTGACGTCTTTGCCACCCAGAGGGACTTGACTGCCGGGACTGTGGGCAAGACGGTTGGTCTGACCTTGATGCCTCAGCACATCGCCAAGGCCCACCTGCGGGGGGACATCCACTGGCACGACCTGGACTACACTCCTCTTTCACCAATGTCCAACTGCTGCCTGATTGACTTTGACTACATGCTCAACCACGGCTTCAAGATCGGCAACGCCTTCGTGGAAGTACCGAACTCCATCCGGGTGGCCACCAGCCAGGTAGCCCAGATCATCACCAGCGTGGCTTCCAGCCAATACGGCGGCTGCTCTTTTGACCGTTGCGACGAAGTCTTGGCGCCTTTTGCCGAAAAGGACTACAAAAAGCACCTGGAAGAAGGGCGTGAGTTCATCGACGACGAAGACAAGGTAAAGGCTTTTGCCAAGAAGCGGACCCAAAAGGACATCTACGACGCTATGCAGAGCCTGGAATACGAGATCAACACCATGTTCTCCAGCCAGGGGCAGACTCCTTTCACCACCTTGGGCTTCGGCTTAGGGACCAACTGGATTGAAAGAGAAATCCAAAAGGACATCCTGCAGGTCCGGATCGAAGGCCTGGGCCGGGAACACCGGACGGCCATCTTCCCGAAGCTGGTCTTCAGCTTGAAGAAGGGGTTTAACCTCCACCCAGGCGACCCGAACTACGACATCAAGAAGCTGGCCCTGGAATGTGCTACCAAGCGGATGTACCCAGACGTTTTGAGCTACGACAAGATCATTGACATCACTGGCTCCTTCAAGGCCCCGATGGGCTGCCGGTCCTTCCTGCAAGGCTGGAAGGATGAACAGGGCCGGGAAGTCAACTCCGGGCGAATGAACCTGGGCGTGGTTACCTTAAACTTGCCAAGAATCGCCATGGAAAGCCAGGGCGACATGGACCGCTTCTGGGAAATCTTCAATGACCGCCTGGAACTGGGCCGGCAAGCCTGCGAATACAAGGCCAAGAGGGTCACTGAAGCTAAGCCGGTCAACGCTCCAACCCTGTATGAATACGGCGCCTTTGGCCAAGGGGTTGGCGATGACGGCGACGTCAACGACTTCTTCAAGAACGGCCGGGCCACGGTTTCCCTGGGCTACATCGGCCTTTACGAAGTCGGCACGGTCTTCTACGGGCCAGACTGGGAAAAGGACCCGGAAGCCAAGGCCTTCACTTTGGAAGTGGTCAAGAAGATGCATGATGCCTGCGCCAAGTGGGAAAAGGAAGACCCGAACCACTACCACTACAGCGTCTACTCCACCCCAAGTGAAAGTCTGACCGACCGCTTCTGCCGCCTGGACACGGAGAAGTTCGGCAAGGTCAAGGACATCACGGACAAGGAATACTACACCAACTCCTTCCACTACGATGTCCGCAAGCACCCGACCCCATTTGAAAAGCTGGACTTTGAAAAGGACTACCCATACTACGCTGCCGGTGGTTTCATCCACTACTGCGAATACCCGAACCTGAAGCAAAACCCGGCCGCCCTGGAAGCTGTCTGGGACTGGGCTTACGACAGAGTCGGCTACCTGGGTACCAACACCCCGATCGACAAGTGCTACGAATGCGGATTTGCCGGCGAGTTCAAGTCAACCGCCAAGGGCTTTGAATGTCCGCAATGCGGCAACCACAACCCGGAAACCTGCGACTGCGTCAAGCGGACTTGCGGCTACCTGGGCAACCCGCTGAAGCGGCCAATGGTCCACGGCCGGCATGAAGAAATCGTCCACCGGGCCAAGCACATGAGCTTGGGCATGGTCAGCGAGGAAGCCAGCCTGGAAAAGCAGAAGAACAGCCAATACTAAACGAAAAGAATTATACTAATAGGCAGGAATCATTCCTGCCTATTTTTTATCGAAAGCAAAGGAGAAGCGAGATGCCAGAGAAAGACAAGAATCAGCAAGAAGGCCCTGACGTCCGGGACAACCTGATCCGGATCAGCGTCGGCGGGGAAACGGTCTTTGTGGACGCCAACCAGTACAAGGCTAAAAATGCCGGCCAGACGGCCAAGCCCCGGAAGATGAAGCGCCAGCCCAAGAATCCCAAGCCAGGCGAATGGATCTCAGAAGACTACAGCAAGCATAAGATTGCCGACTACAAGCCCTTCAACTTCGTTGACGGGGAAGGGGTCCGCTGCTCCTTATACGTGTCCGGCTGCCTCTTTGACTGCCCGGGCTGCTACAACCTGGCCGCCCAGAACTTCAACTACGGCCGTCCCTACACCCAGGAATTGGAAGACCAGATTATCGCGGATATCGGCCAGTCCTATGTTCAAGGGCTGACCTTGCTTGGCGGGGAACCCTTTTTGAACACCTGGGTCTGCAACCGGATCATCGACCGGGTCCGGGCCGAATACGGCCACAGCAAGGACATCTGGTCCTGGTCCGGCTATACCTGGGAGGAACTCTTAAGGGAGACCCCGGACAAGGTGGAAATGCTCAAGAAGCTAGACATCCTGGTTGACGGCCGCTTTATGGACAACTTGAAGGACCTGACCCTGCAGTTCAGAGGGTCCAGCAACCAGCGGATCATTGACGTGCAGAAGTCCCTCAAGACCCCGGACCTGCACCCGGTCATCTGGGACAAGCTGCAGAGATAGTTTTTTAGCGAGGAAAAAATTAACGAAGAAAAACGCGCCTTGGTTAACCAGGTCATCGGTCAGCTGCAGACCGTCATCGACCCAGAGCTCCTGGTCAATGTGGTCGACCTTGGGCCTCATCTACGGAGTCTACATCGATGATGAGGGCAACTGCCTGGTGACCATGACCTTGACCACAGCCGGCTGCCCCTTAAACGACTACCTCAACCGGGAAATACGCCAGGCGGTGAGCCAGCTGGCGGCCATCCGCGGACGAACTGTCTGAGAAAAAGGCAGCCGACCCGTCGGCGATTGCCAAGTGGAATGACCAGATCGGGGATTTTGCCGGCCAGCTGGGCGGCAATGAAGCCGAAAACTACCAAAAGCTGGTGGAAGTCGAGCAGGCGGAGGAAAAAGCCCGGCCGGCCCTGACGGACTCCTTTATTGAGTTCGCGGAAGGCAGCCTCAGCTATGAGCAGCTCTCGGCCGTCCTGGACCTTTTGCCCCTGGACCTGATCTTTGTGGACAAGGACGACGTCATCCGCTACTTTGGCGGCAGCTGCGGCTTTTATCCCCATTCGAAAAACGACCTGAGCATGAACCTGTTTAGCATTCACATGCCAAAAAGCGTGTCCAAGGTCAAGGCCATCGTGGATGACCTGAGAAGCGGGAGAAAGGACAAGCATGCCTTCTGGTTTGAAGTCCGGGGCCGCTTCGTCTATATCCAATACCTAGCGGTCAGAAACAAGGCCGGGGAATATCTGGGCGTTTTGGAAGTCTTGCAGGATATTACCGACCTGCGCGCCTTGCAAGGAAAGAAGAAAGAGTTGTAGAATTATAATAAAGTGAGGAGCCATGACTTGCTGAGTCGTGGTTTTCTTATTGCGTGGAGTATTTTTAGCAATTAAATTTAGAAAAGGAGGAATGGAGAAATGAAAACTAAACACGGACAGAGCCAGTTGCCGGAAATCGCGCTGCCCTGGCTGGTCGTGGCCCAACTGGCTACTTGGATCGGGGCCAGCTTCATTTGGCCACTGACTTCCGTTTACCTAAACAAGCGGTTGGGGATCAGCCTGTCGGTAATCGGGATCGTCCTCTTCTGCAACTGCGCGGCCAACATGCTGGGGTCAACCATCAGCGGCCGGCTTTTTGACCGGCTCAATCCTTATCCTTTGATTACGGGCGGGATGCTGCTGAATGCTTTGGTCCTGTTGGCCATGGCCTTCTTCCACGGCTGGCCGGTTTACTGGGTCTGGCTGGTCTGTATGGGCTTTTTAGGGGGCTGGAACGGGGCCCTGGTCAATTCCATTGCCACCAGCCTGCGCAAGTATCCGGGCCGGTATGTCTTCAATATTCTCTACTTCTCCCAGAACCTGGGGGTGGTAATCGGGACCTTGATTGTCGGCTACCTTTACGACTACTCAATTGAGCTGCTCTTTATCATTGCCAGCTGCCTTTTCTTGATCGGGACTTTAGTTGCCTTCTGCAAGTTTAAGCCGATCGTGGCCTACCATGCCCGCCGGCAGGAGCAGAAGAAGACTGGCCAAACCCCGCTGAAGGCGGAAAAGATGCCAAAGGCCAACTTCTGGATGACCATGGGCTTTTTCATCACCCTGGGGGTGACCTGGCTGATGTACATGAACTGGGAGTCCAACCTGTCCGTTTACATGGTCAGCCTGGGGATTCCTTTCCACCTTTACTCAACTTTATGGACGATCAACGCCGGCATCATCGTGGTCGTGCAGCTGATTTTGGCCCGCTTCCCGCGGATCTTCAAGAGCATCTACCTGCAGATCTACTTCGGGATCTTCATGTTTGCCGTGTCCTGGCTGACCTTGATTTTCGCCAAGACCTACCCGGGCTTCGTCTTGTCCATGTCGATCCTAACCTTGGGTGAATCGACGGCCTTTTCCGCCATTCCGGCCTATGTCAACGACATGTCGCCGTACTCCAGCAAGGGCAAGTACCAGGGGATGACCCTGGTGGCCAGCGGGGTCGGCCGGGCCTTCGGGCCGCTTTTCGGCGGGACCTTGATCGACCTCTTCGGCTACGAGATCATGTTTGTGGTCGCCAGCTGCGGCATCCTCCTTTGCCTTTTGGCCCTCTTGCCGCTGAGAGCCAAGCTGAAGGACCAGGTGCAGTTCTTCAAGTAGGAATTTTTTATCATTTTTTCGCACTTTGATTGAACAGGGAAGCAGTTAAAGGGTAAAATAAGAGGATAGTGAGAAAAGGAGGAAAACATGCTTAAGGTTTACGGGACAAAAATCTGTCCGGACTGCATCGCCTGTGAGGCCAGTTTTAAAAAGTACGGTATCGGCTACGAATTCGTTAATATTTTCGCCACCATGCCGGATTTCAAGGAATTTTTGCGCTTGCGGGATGCCAGTCCCGCCTTTGCTCACGCTAAGGAGCAGGGCAGCGCGGGGATTCCGGCCTGCGTCAAGGAAGACGGGGAAATTTTTACCGACTGGGAAGGCTTCTTAAAGGACCAGGGCTTAGAGCCAATCTGGCCCGAAGCAGCTGACCAGGCCAAGGCTGAAATCGCGGCCCAGTGCGACCTGCGCCAGCACAACTGCTAGTTGAAAAACAAGGAGGAAGAAATATTGAACAATAAATTTGCCGTCCGCGGCGGCAGCGGCGACACGACTGTCGTTGACAAGACTGCCCGCCCGCAGGACAACCTGTATTTGGCCGTTAACTCTGACTACCTGGATCAGCTGGAAATCCCGGCTGACCGGTCCCGGATGGGGAGCTTTGACCAAATCGCTGAAAACGTTGAAAAGACCCTGATGGCTGACTTTGCGGCTTTTGCCAGCGGGGAAAAGGAAGTTCCGGCCCTGCCGAACCTGGCCAAGGCCGTTGAACTATACAAGCTGGCCAAGGACTTTGACAAGCGGAACGCTGACGGGGCAGAACCAATCCAGGCTGACTTGAAGAAACTGGAAGGCTTGAACAGCTGGAATGACCTGCAAGGCGCGGCAGCTGCTTTGGCCAAGGAAGGCTTTGACCTCCCATTCTCCTTCTCCGTTGACGCGGACATGAAGAACACCAAGGTCAACACGGTTTACTTCGGCGGTCCCCACATCTTTTTGCCAGATACGACCACTTACGAAAGCCCGGACTCGGAAAAACTCTTGGGCGTGTTAAAAGAACAGACCCTCAAGCTCTTCCAAATGGCCGGGGTAAGTGAAGAAAAAGCCGCTGAATATGTAGACGGGGCCCTGGCTTACGACCAGCGCCTGGCCAAGGTAGTCAAGTCCAGCGAAGAATGGGCTGACTACCCGGCCATGTACAACCCGATTTCATTGGCGGACTTCAAGAGCAAGTTCACTAGCTTTGACATGGGCCAGTTCCTAGCAGGCTTCCTTGGTGAAGAACCAGAAGTTTTGATCAACACGGAACCCCGCTACCTGGACCAGGCAGAAGGTCTTTTAAATGAAGCCAGCTTCAGTGAAATCAAGGGCTGGATGCTGGTTAAGTTTATCAATGACGTGGCCTCATCTCTGTCGCAAGAATTCAGAGAAGCCGCCTTCCCGTTCAGCCAGGCTTTGACCGGCCAGCCGCAACTGGCCAGCGGGATCAAGCAGGCCTACCGGATTGCCAACAGCACTTTCAGCGAAGTTGTCGGCATCTACTACGGGCAGACCTATTTCGGGGCTGCTGCCAAGGAAGACGTTTTGGGCATGATCAAGCGGATGCTGAAGGTCTACGAGGACCGGCTGGCCAAGAACGACTGGCTCTCCCAGGCAACTAAGGAGAAGGCTATCACCAAGCTGCAGGCCTTGATCTTGAAGGTCGGCTACCCGGACAAGATTGAAGACATCTACAACCGCCTCCAGGTTACCCCGGCAGAAGAGGGCGGCAGCCTTTACAGCAACCTGCAGGCCGCCAGCCAGGAAAGCATCAAGTACAGCCTGGAGAAGCTCCACCAGCCGGTTGACCGGACTGTTTGGATGATGCCAGGCAACCTGGTTAACGCCTGCTACGACCCGCAGAGAAACGACATCACCTTCCCAGCGGCCATCTTGCAGGCACCGTTCTACAGTGCTGACCAGAGCCGGGCAGCCAACTACGGCGGGATCGGGGCCGTGATCGCCCACGAAGTTTCCCATGCCTTCGACAACAACGGGGCCCAGTTCGATGAATTCGGCAACATGAAGAACTGGTGGACCGAAGCTGACTACAAGGAATTTGCTGACCGGACCAAGGCGGAAATCGCCCTCTTTGATGGGCTCAAGTTCGGCCCGACTACTTTGAACGGCAAGCAGATTGTGTCCGAAAACATCGCTGACCAGGGCGGCTTGGCCGCGGCCATGACCGCCTGCAAGGAAGAAGGTCAAGGCCTGGAAGACTTCTACGCCAACTGGGCTAGAGTCTGGGCACAAAAGTCCCTGGAAGCAGCCATCAAGATGATCGTTTCCGTTGACGTGCACGCGCCAGGCCCTCTGCGGGCGAATGTCCAGGCCCAGTGCCAGGACGAATTCTACGAGACCTTTGACGTCAAGCCGGGCGACGGGATGTACCTGGCTCCGGAAGACCGGGTCAAGATCTGGTAGTTTTTCATAAAATTTCATAAGCAACAAAAAAGCAGTCATTCCATCGATGACTGCTTTTCTGCTGCTGTGTGTTTGTCTAATATATGTGTGTAAAAGAGGAAAAGAAAAATTAATTCCTATAGGAGAAGCAATTTCTTGCTTCTGACTATGGTTATATAATAACGGCCCTTTGTAAAAAAGCTGTGATCAATCTGCTTTGCTTCAATGAAAAAAAGTTTGTAATTTTCTAGAGTATTTAAGACTTTCTAAAAGCAAAAACGGCAAGCATTCAATCGCTTGCCGTTTCTTTATTTGCTAATTACATCTTTTTGTCCTTTTACTTCTTGTTCAGCGAGGTCTTACTGTAGTCAACCGGAGCAACCCGCTTGATTCTTTCATGCTCTTGCTTACCAAGGATCAAAGGCACGCGTTCGATGACCATGTCCGCGAATTCCAGGCCGAACCATTGAGCCGGGTTAAGCGACAGGTTCTGCAGCTGGACGCGGGCCTTGACCAGCCACTTCTTGTAAGAAGACAGGGTGGTCGAAGGTGAGATGACGTCGTTGACGATGACGAACTTGAAGTCGCCGACGTCCCGGCCAGGAGTAGTCGTGTATTCCTGTGGCTGGGCCTCGATCGTGTTGTCCTTGATCAAGTCGTGGACGATCTGGCGCAGGTAAACGTTAACGCTGGTTTGCTTCTTGAAACCAAGGTAGAGCTGGATGTTGATCACATTCTTGGTGCCAAAAGTGTTGACCGCGTATTCAGCGGTAAACGGCTCGTTGGTCACGTTGACCGTGACGAACCAGTAAGCCCGGGCCCGCTTTGGCCGCTTGTCCAGAATTGAGTAGAGGATTTCGCGCTTGATGAACTTGTTGTACTTGACGTTGGCCATGTAAACCAGGTTGTCAGAGTAGGTCGGGTAGTTGTCGTCGTGGCTGAGGTTAGTTAGCATGTCCGTGTATTCATCCAAGCGGACATAGGCATTGCCGGCTCCGTTTTGATCCCGGACCTTGTTGCCGAAGTACCAAACGACCATGACTGAAGCGATCAAGAGGGTGATCAACAGTGACACGTAACCGCCGTGAGTGAACTTGCTCAGACTTGAACCCATGAAGAGGATGTTGATAGTACTGAAGAAGATCACGAAGAGCAGGTTGGCCAGGTTGTGGCCCTGCTTGAGCACCAGCCATTCGTAGAGCAGGATGGTGGTTGTCAGCATGGAAATCGTGATTGACAGACCGTAGGCTGCTTCCATGTGGGCTGAGGTTCTGAAGAAAAGAACCAGGGCAATAGTAGTAATGCCTAGCATCTTGTTAACGGCCGGGATGTAGATCTGCCCTCTTTCATCAGATGGGTAGAGGATGTTCATCCGCGGCAGGAACTTCAGGTTGATGGATTCAGCCACCAGGGTGAAGGAACCCGTGATCAAGGCCTGGGAAGCGATGATCGCTGCCAGGGTGGCCAGAACGATTGATGCCAGCCGGATATTTTCCGGAATCATGGCATAGAAGGGGTTGATTTCAGTGGCTGAGTGCATGTTGGTGTTGTTTAAGATCCAAACCCCTTGCCCGAAGTAGTTCAGGGAGAGGCAGACAAAAACAAATGGCCAGGAGCCAATGATGTTACCCTTGCCGACGTGGCCGACGTCGGAGTAAAGGGCTTCAGCCCCCGTGGTGGCCAGGAAGATGGACCCTAAGATCGCGAAGCCCGCCTTGTTGTAAGGGCTAAAGAGCAATTTGATCGCGTAGTAAGGGTTCAAGGCCTGCAGGATCCACCAGTTGCCGCCGATGTTGATCAAGCCCATGACGCCCAGGAAGGCGAACCAGACAAGCATGATTGGACCGAAAGCCTTTCCGATGATTCTGGTCCCCATCCGCTGGATGGAGAAAAGCACCAGCAAAATAACAATAGTAATGACTAAGACCGTGGTCTGGTTGCTGACCGGGACATTGCCCTTGCCAAATTCCAGACCCTTCAGTCCTTCAATGGCGGTGGTAACCGTCACGGCCGGGGTCAGGGTCCCGTCGGCCAGGATGGCAGCCCCGCCGATCAAGGCCGGCCAGACCAGCCAGGCTGCTTTCTTTCTGATCAAGGCGTAGAGGGCGAAGATACCGCCTTCGCCGTGGTTGGTTGCCCTCAAGGCGATAATCACGGTCTGCACCGTCGTGAGCAGGGTCACGGTCCACAGGATCAAGGAAATGGTCCCGATGATCAAGTCACGGCCGACCGTATTGATGCCGCCGTTGCCGGCGATTACGGATTTCATGACATACAGGGGACTGGTCCCGATGTCGCCGTAGACAATCCCAATCGCGATCAAGAGGCCGGCGGCCGTCATGCGATTGAGTTTATTTTCTACTTCCATAGCACTTATATACTCCTCAGCACTTATATACTCCTCAAACTAAAAAGTTTGTGATACACAAAAACAACTGTAAAGCTTTTGTTTAGATTTAACAAGTAAAAAAAGAATGCCAGGAGACATTCTCTTTACTGTAATTTTCTTATATTTGGAGTAAAGTTTCAAGCCCTTTAGGACAAACTGCTTTTAATCTTCGCGCGAACGCCTTCGTACCAGTTGCTCCAGTCTTCGTAAGTAGTCATCGCTTCCGGGTCAACGCCGGTTTCTGCGGTCATCTTGTCGAGGATGGCTTGGAAATTGTGGGCGTGGTCGATCAGCACATGCTTGACCAGGTTCTTGCGGGAGAATGGCTGGTTGAGCAGGAGGTAGTGGTTGATGTTGACCATGTTGTGGTCTTCGTCAAATTCACTGATGATTTCCAGGTCGTCGCGTTCGAAAGAAGAAACGTAGAAGTTGGCGAAGTTGACCAGGTAAGCCGGCTGGTCGGCAACTTCGCGTGCTGGCATGGTTACGCGTTCTGGTTCAGGCATCACGATCTTGAACATGTCTTCATTGCTGCGGATTTTCTTTTCTTCTTCTTCTGCCAAAGTTGTAGCTCCTTTTTAAATAAAAGTCTATAGAGTCAATAGTAATTTTAACGGCTTTAAGGCCAGAAAGCAAGCGCCAGCCCCCCATAAATCAAGGCCTGGCGCTGAATTATTTCTTATTTGCCCGACTTTAGGTAGCCCTCGACGTCATCCTTGGTGATGGAGTCGATGGTGGTGTGGCCCTGCTGGTAGGCGTAGTTGAACAGGTTGATCAGGTCCTGCGGGCTCCAGCCGGCAGTGCTTTCGCCCAGGTTGTCAAGCTGGGTGCGGATCTGCTGGACGTCCCGGCTGGTCACGGTGCTGCCGCCGACCTTGTCATTGTAGCTGGTCCCGGACCCTTCAGCCTGGTTGCTGGAAGAGCTGGCTGAGCTGGAAGCGTCAGAAGATGAGCTGGAACTGGATTCCTTGCTGCTGGACTTGCTGGAAGAGTCTGAAGAGGATGAGCTGGAGCTTTCAGAACTGGAGCTGGAGTCTTCCTGCTTGCTCTTGGCTTCCTTGAGCAGGTCCTTGACGTTAGACCGGACCTTGGCGTAGTAAGCCCCGTTGATGTAAGGCAGGTCTAAGATGCTGCTGTAGGTGGAAGCGGCGCTGTCGTAGTAGCCGTCTTCCATGGCCTTGGCTGCCTTGTTTAAGAGCGGCTTGATTTCACTGTCGTAGTTGTCCTTGACGGCCTTGAGCTGTTTAACCAGCTTTTTGGCCTGGCTGGTCATGACACTGTAGCCGCCATTTTGCTCCTGGGCCTTTTGGGCCAGGTTCAAGGCGCTGGCGTACTTGACGGTCGTCTTGGCCAGTTTCACGGAGTCGGCCAGGTTTTCGGCCTGGGCCTGGTAGTTTTTGGCTTGGGCAGTTGCCTTAGCCTGGTAGGCCTGGTCAAATTCGTCAGCGGCCTGGCTGTACTTCTTGGCTTTTACGGCCTCTTTGCCGGCCTGCATGTGGCTGGAGTAGCTGGAACTTACCGTCTGCTCCTGGCTCTGCTTTTGCTGGCTGGAGTAGAAGTAGGCGCCAGCCCCGCCCAAGGCGAGTACGGCCACCACAACGATGGACCAGATAGTCGATTTTTTCATAAATAACCTCCTCGTTAATTTTCCCAAGTATACCAGATCAGCCACCTGCTTTAGGCAGCCAGTCCAACTTGTAATTGTTCCTTAACAAAAAGTGGCCGACATTTGCTTCTTGAAACGTTAGTATCAGTGCAGGCCCAAGGCGCCGGGGCCGGCCGGAGCGAAGCCCGTTGCTTCGCGGCAAGATTGATTTTTTACAGAAACAGGAGAGAAAAAATGAACTTCACTTTAGCTGACCAAAGCATTCAATACACCTTCAAGGCCGAAAAGTATGACAAGGGGCAGATGCAGCGCAGCCTGCAAAACGTCAAGCTGGATGCCAGCCCGGAAAGCCTGGTCAAGGTGGGCCAGGCCATCAGCAAGCTGCAAGGCGATGAACTGGCTGCCTTGACCCTGGTCCAAAAGCACAATTTGACCTTGGCCTAACTCTTTGACGCGGAAACTTCAGATAAAGAATTTTTGAGTAAGAAACAGGAGAAAAAATCATGACTACGACTACCGAATTGCAATTAACCTTTAAGTCCAGTGCCGGCAAAAAGAAGAGCCTGAACCTGCCATACGCGGTCAAGGGCTTGAGCGCGGACGTGGTCCGGGAGGCCGCGGCCGCCATCGCCGGCGAGGGCGTGTTCGTCAAGGAAGGGGAGGTCCTCTATGCTGAGCCGCTGGCTGCAAACTATATTGAACGTACTGTTACGGGTGTGTTTGACGATAGTAATCATTAGACAGATCTGGCCGCTTTAGCCGGATGCGAAATTTATACCCAAGAGGCGGCCTGGCCGCCTCTTTTTTTATGTTTTATGCAGCTTTGCCCCCGCCTTTTGGTATTTTCTTTCTTAGCTTGGAAAGGGGGAAAAAGCAGTTTTTTCCTATAAAAATTGTAATTGCTTAAGAAAATTGTTACTTTTACTTTACAGAATGCGCGTTCGATTGTAACTAGAGCGCTGAGCACATACAATAGAGGCTACGATTGAATTATTAGGAGGAAATTAATGAAGAGAAGATTTTTGACTGGACTTGCTACCGCAGCGATGCTGACTTCCGTCGCCGTTCCAGTGACCAACAACATGTTTCTCTCAAATCAGGCAGTTGAGGCATCAGCTACCAGCGATGCCTTTTTAAGCAAGGTCAGCCTGCAGGCGCAGAAGACGTCCAAGAAGTACGGCGTCTACGCCTCTTTGATGCTGGCCCAGGCCGCCTTGGAATCTGGCTGGGGGACTTCAACTCTGTCTACCCAGGCCAACAACTTCTTTGGGATGAAGGCTACTGGCTGGACCGGGGCAACCTATAGCGTCAAGACGGCCGAACAGACTTCCAGCGGCAAGACTTACTACATCACGGCTGCCTTCAGAAAGTACAGCAGCTACCAGGCATCTTTTGACGACTACGGCTTGAAGATGCGGACGACCCTGGGCAATTACGGCAGCTTGTGCTACAGCAAGACCTGGTTGGAAAATGCCTCAAGCGCCTCAGCTGCCGCTAAAGCCATCAAGGCTGCCGGCTACGCGACTGACACCAACTACGCGACCAAGCTGATCAGCCACATCGGGACCTACAACTTGACCAAGTATGACCCGGTTTACTCCGGCACTAATTACACGGCCAAGGTAGCCAAGTCCGGGGCAACCTACCTCTACCCGACTGACCACTCTGTTTCACCAAAGAAGTCTTACGTGACTGCTGGCCAAACCGTAACGGTTACCAAGACCTACACTTACTACAATGGCAAGAAGCGGATGTACCTCAAGGGCCTGGGCTGGATCAACGGCGAAAGCCTGAACACTGGTAGCTCCCAAGCGCCAAGTGCTGCTGACAATGCCGCCAGCGTTTCCGGGCAAATGAAGGTGCTGATGCACTCAGCAGCTATCTACACCAGTACTGGTGCCAAGAGCACGGCTAAGTCGGTCAAGGCTGGCAAGAGCGTGACGACTTACGGGTCAGTCACGATCAACGGGGCCAAGTACTACCGGGTCAACTCCGCCAGCGCTGACCAGTTCATCAAGGCAAGCAACTTTGATGGGACCAGCCGCAAGCTCAAGCGCAATGCCTACATCTACAACAATGCGGGCAAGCGGGTTGGCAAGACCAAGTGGCTCAAGGGCAGCACCCACACTGTCTACGGCGGCAGCGTGAAGATCAAGGGCAAGCAGTACTGCATCGTTGGTCTTAACCAATATGTTAAGAAGGCCAACTTTTAAGCAGACAGGGAAGAAACTGAATGAGATTTAACAAAATTTTGACGGCAGCAGCCGTGGCCAGCCTTGGCTTGACGTTTGTTTTCAGTCAAGGGAAGGCCGCGGAGGCCTCAATCAACAGTGAAGCCAAGACCAAGACTTACAGCGGTACCAAGTCCCTGGAGACCCTGCTTAAAGCCGTGGGGCTGACTTACAACCAATTCAACAGCGTGGCTAATGGCAACAAGTACGGCAGCCGTTTTGGCTACCGCAATGGGGTTGGGAAGCCTGAAGGGGTGGTCGTGCACGAAACGGCGACCCCAGGTGCAACGGCCTGGGATGAAGGCCGCTATTTCAACAACAACTGGATGGCGGCCTACACCTATGTTCACGCCGTGGTCGACAATAACCAGACCATCCAGCTGATGTCACCGGACTATGGGGTCTGGGGCGCTGGCCCAATTGCCAACGTCCGCTACATTCAAGTTGAGCTTTGCGAAGTTTCGACCCGGTCCCAGTTCGTGCAAAGCGTGGCTAACGATGCCTACTATATCGCCAGCCTTTTGCACAGCTACAATTTGACTCCTTCCCGGGCCAGCCAAGATGGGTCAGGGACGATCTGGTCCCACAATGAAGTCTCCCATTACCTGGGCGGGACTGACCACGGGGACCCAGACGGCTACTTTGCTAAATGGGGCTACTCCATGAGTGACTTCTACAGCTTGATCAGCTACTTCTACAACAAGCAGGGAGCAAGTACCGGCACCAACACTGGCAGCACTAATACTGGCTCTGGTTCAAATACTGGGAATACCAATACTGGCAGCAATACCAGTTCAAGCACTGCTAGTTCCGGCCAAGCTCCAGCTACCCAGCCGGTAACGACCAAGAAGCTGCGCTTGATGTGGAATGCCTACAGCTATGATGCCTCCGGCAAGAAGCTGGCAGTCAAGGCTTTGAAGGCCGGGCAATACCTCAAGGTCTACGGGTCAGCTGTAACGATTGGAAGCAGCAAGTACTACAAGTACGCTGATGGCAAGTATGTCAAGGCTGGAAACATTGATGGGACCAGCCGGACTTTGACTGGCAATGCCTGGACCTACACTATTTCCGGCAGCCGGGAATGGTCCACGACTAAGCTCTTAAAGGGGAGCAAGGTCACGACCTACGGCAGCCAGGTTAATATCAAGGGCAAGGCCTACTACATGACTGGCTTTACTAGCAATAACGTTGCTAAGTACGTTAAGGCAAGCAACTTCCAAGTCAAGACAGTAGAAACCACCACGACCAAGCGCTTGATGCGGAATTCTTACAGTTACAGCGCTGCTGGCAAAAAGTTGCCAGACAGCATGCTGAAGGCTGGGCAATACCTCAAGGTCTACGGGTCAGCTGTAACGATTCGCAAGGCCAAGTACTACAAGTACGCTAACGGCAAGTATGTCAATGCTGGCAATATCGACGGGACCAGCCGGCCTTTGAAGCACAATGCTTACGTCTACACGGTCAAGGGGACCCGGAACTGGAGTGAAGCCAAGCGTCTGAAGGGCAGCACGGTTACTACTTACGGCAGCCGGGTCAAGCTGGCTGGCAAGTACTACTACATGGTCGGCTTCTCCGGCCAAACCGCCCTGTACATCAAGGCCGGCAACTTTTAATCGAAGATAAGGAACGGATCCAGGCTTAGCTCGGGTCCGTTTTTCTGTCTTAATTTGGCGATTATTATATAATTAGAAAAACTGTAATTAGTGAGGAGATACTTTTTAGCATGGAAGGACTATCACTGTTTTTAACGGTCTTCTTGGCCCTGGTGATTCCGATCGTCATGGCCCGCTTGCGGGTGACCACGGTGCCGACCGCCGTGGCCGAGATCATCGTCGGGATCTTGATGGGCAAGAGCTGTTTGAACCTGATTACTCAGACTTCCCAGCTGACTTTTTTGTCCGACCTGGGGGTCATCGTCTTGATGTTTTTGTCAGGGATGGAAATCGATTTTGACTTGCTGAGCCCGAAAAAGCACACCCGAGCCCGGAAGTCAGAGAGCGGCAAGCAGGTCAAGCCCATGGTCGTGGCTGCCTTCGCCTTTGGCGGGGTAGCGGTGGCCTCAGTTTTGCTGGCTTTGGGGATGAAGGCCCTGGGTCTCTTTAGCGACGTGGCCCTGGCTTCGATCATCTTTATGACTGTGGCCTTAGGCGTGGTCATCGCGACTTTAAAGGAAAAAGAAATCCTGGGCCGGCCGATCGGACAGACGATCTTGCTGACGGCGGTCATGGGGGAAGTTATTCCCTTGTTGCTTTTGACCATCTATTCCACCGTTAACGGCGGGGATGCCCGCAAGCTCTGGCTGATCATCCTCTTGTTTGTAGCCGCGATTATTCTTCTGCGCCGCTTTAAGCGGCCTTACCTGTGGTTTGCCAAGGTGACCAAGGCCACAACCCAGTTGGACGTCCGCCTGGCCTTCTTCCTGACTTTTGCCCTGGTGACGGTGGCAGAGCAGGTTGGGGCGGAAAACATCCTGGGTGCCTTTTTGGCCGGGATGGTCATGAAGCTGCTGGAGCCAACCCAGGCGACCAAGGACAAGCTGACTTCCATCGGCTACGGCTTCTTTATCCCGATCTTCTTCATCCGGACCGGGGTCAACCTCAACTTGAAGCTGCTCTTCGCCAACCCGCAAGCCTTGATGCTACTGCCGGTTTTGGTCATCTGCTTCTTCTTAGCCAAGCTGCCGGTTACTTTGACCTACATGCGGGCCTTTAACAAGCGGAATGCTTTTGCTGGGGGCTTCTTAACGGCAACGACGATCACGATCGTTCTGCCGACCTTGCAGGTAGCCCGGAAGCTGAACGCCATCACGGCGACTCAGTCCAGTGCCTTCATTTTGGCGGCGGTCATCGTCTGCATCGCCTGCCCGATCGTCTTCAACTCAACTTTTGCCTTGACGCCGGAAGACAAGATCAAGGAAAAGGTCGTGATCTTCGGCCTCAATGCCGTGACCATGACCGTCTACCAGGACCTGCACGACTCCTGGTATTCAGTTCAGGTTCTGACCTGCCGGAAGGAAAAATACGACACCTACAAGAGCAAGGTCAAGAATTTGAAGCTTTTGCCTGACCGGAAGCTGGATACTTTAGAATCAGCCGGGGCCTTTGACACCGATATCTTCGTGGCCACCTTCATTGACGACCAGGCCAATTTGGAAGTGGGCCGGGCAGCCAAGCAGGCCGGAGTCAAGCGGGTCATCGTCAGCCAGGGCAAGATCGTGGCTGATACGGTCGACCAGCTCAGAGAGGAAGGCATCGAGCTTTTTGCCTTCAACAACCTGCATGGGGCCATGCTCCGGGCCTTGATTGAATCACCAGCCGTCTACCGGATCATCACGGACACCAACAATGCCCTGTATGACGTGGTGGTCAGAAACTCGGCCTACACCGGCCGCCAGCTGATGGACTGGGACTTCGTCGACCAGATCACCGTTTCCCGGATCCGGCGGGGGGACAAGTGGATTTCCCCGCACGGGTCAACCGTGATCGAGCCGGGCGACGAACTGATCTACAGCGGCCCTTGGCGGGAAGCCGACCGGATTCACCAGCTTTTGAGCCGGGAATAGAAAACGACTATATCAAAAAATCGCTCTGCCAGCCGGCAAAGCGATTTTTCTTGTTTATTTCCCTAGTTCTTTAATTCTTTATTTTTCTGTTTTGCTTTTTCTGCTTTTTCCTTAAGGCATGCAGTCCCTGGCTGCTTCCAGGACGGCGATGACACGCAGGCTGTGGGCAAAGGCCTGGGAGTCCTATGGCCGCGGTCAAGCTGGCCTGTTTGTCGTCATAAGCCAGGACTAAAACGCCGGAAGTGTCGACGCCCTTTTGCAGGTTAGGGAAGTAGTGGACGTCCAAAGGCGCCCCAAATAGGCTGACGGCTAAGTGGATGTTGTAGACGTTCAAGTCCAAGAGGGCTCCGCCGCCCAGACGTGGGTTGAAGGCCGGGGAGATGTCACCGGCCAGGAAGCGGTCGTAGCGGGAAGAGTACTGGGTGTAGTTGAGGCTGACCACGTGAACCGGGCCTAAAAGCTGCAAGTCACTGGCCAAGGACTTAAAGGCTGGCAGGTAGCGGTTGGTGATGGCCTCGGTAATGAGGCAGCCCTTCTGGTCGGCCAGCTGCTTGAGCTCTAAGGCTTCTTCAGTCGTGAAGACGAAGGGCTTTTCACAGATCACGTTCTTGCCGGCTGCCAAAGAGTCCAGGCACATTTGGTAGTGCATGGAGGAAGGGGTAGCCACGTAAACCGTGTCAACTTGGTCGTCTTTGAGCATTTCCAGGTAGTCGTCGTAGACCCGGCTGATGCCGTATTGGTCAGCCAGTTCTTGGCAGGTGGCTGCTGACCGCTTGGTCGTGGCGATAGCACTAATTTTAAGCCGGGCAGGGGAAGGGCAGTGAGGAAGTCTCTAACGATCTTGCCGCTGCCGATAATACCGAGTTGCATTTTTTTGCTTCCTTACTTGCACCTCATATTTTGTATTTTATGTTTTCTATTTATTCAGCCGGCTGACGTCGACGGAATTTTTGCTGACCGTCTTGGGGATGGCCAGCTTTTTCTGCTGGTTGACCTTGAGCATGGACAGCTTGGTTGAGCTGGTTTGCCCCTTGACCTTGTACTTGGCATAGATGGCCAGGCCGGTCAGCTGCTTTTTCTGGCTGAAGTCTATGGTCATCTTGATCTGCTGGAGCTTAGCTTTGGCTATTTGGCTGTCGCTAGACAGGCTGGCCAGGCCGTTGGTTTCCGTGATCTCTTGCCAGAGGCGCTGGCTCTTGCCCGTGTAGTTGAGCCGCCAGCCATTTTTTGTCCGGCTGACGGAAAAAAGCTTGGCGCTCTTTTGGCTGAGGGTCAGGGTGTCCATGTCCTTGACCAGCTGCTGGAAGTGGGAGATGGTCGTGAACTGGTTGAGCTTGGCCTTGTACCAGGCTTCCTGCTGGTCTTTATAGTATTTGACGTAGGCATAGCGCTGGCCCACCCACATCTTGACGTTCTGGTCCCCGCTCTGGGTTAAGTCCGCCTGCATGACGAAGGGAGACCGCTGGTAGTTGATCTGGCCGTAAAAACGGACTGGTTTATTTCCCGTGTAATAATGTTCGTCGGTCTTCAGCTGGAAGTTAGCAATCTTGCTCTGCTGGGCCTTTTTGACCAGGCTCTGGGGGCTGGGCTTGGCGCAGGCTGTTAAAAAGAGGCTGGCCAGGGCTAGAAGGGTGAGCAGGTGAATTTTCTTTTTCTTTGACGGCATAGTATGAATCACATCCTTATTCTTCAATTCTAACAAATCACTGACTAATTGTTAGCGATTCCAGTCAGAAAAAGTGTTTTTTTTTCCTTTAGGACTTTGAAAAGGCCGCGAGAGGCCGTATAATAATTAGTGAAACGTTTAATTTGCTAAAGGAGATTTTTTAATGTCTAAATTAGTTTTAATCCGTCACGGTCAAAGTGAATGGAACCTTTCAAACCAATTCACTGGTTGGGTTGACGTTAACTTGTCAGACAAGGGTGTTGAAGAAGCTAAGAAGGCTGGTCGTTTGATCAAGGAAGCCGGCTTGGAATTTGACCAAGCTTACACTTCAGTTTTGACCCGTGCGATCAAGACTTTGCACTTTGCTTTGGAAGAAAGCGGCCAACTCTGGGTTCCAGAAACTAAGTCCTGGAGACTGAACGAACGTCACTACGGCGCTTTGCAAGGCTTGAACAAGGCTGAAACTGCTGAAAAGTACGGCGACGAACAAGTTCACATTTGGCGTCGTTCATACGACGTTTTGCCACCAGTTTTGGCTGACGACTCAGAATTCAGCCAAGCTAACGACCGTCGTTACGCAAACTTGGACCCACACATCGTTCCTAAGGCAGAAAACTTGAAGGTTACTCTGGACAGAGTTATGCCATTCTGGGAAGACCACATTGCTCCAGACCTTTTGGCTGGCAAGAACGTGATCATCGCTGCTCATGGTAACTCACTGCGTGCCTTGACTAAGTACATCGAAAACATCTCTGACGAAGACATCATGGATGTTGAAATGAAGACTGGTGAACCAGTCGTTTACACTTTCGACGACAAGTTGAACGTTGTAAGCAAGGAAAAGCTGGACTAAGTCCTCTTTCCCTAATTAAAGCGAAGCTCCGGCTTCGCTTTTTTTGTTGGACTGATTAAGGATTGACAGATGGCTTGCTAAGATGATAGCTTAGATAGGAAAGTTGTGCACAGGGATACTTACGGGAAAATATCGCGCGCCCGCTTTGACTGTTTTTTACAATTTCAATAAGAAAAGGCCGCAGGCAAAAGTTGGCGGTGCTTTTTTGCTATAATACGGACTAATGTCATTTTTTAAGTAGGTATCAATTTATGAAGAAAGAAGACAAGCTGGGCATTCCGGAGACCAGGCAGCATGCCAGGAAGCGCAAGCAGAAGCAGATCCGCAACTGGATCATCGGCATTTTGGCGGTTGTCTGCGCCATTGCGGCCGGAGTGGGCCTGTATGCCGCTCATTTGTACAAGACGGCTGAGCAGGCGGCCAACAAGGCTTATGACTCAGAAAACGCGGTTAAGACGACCTATGGCGAATTCAACGGCAAGAAGCCTTTTGCCGTCATGCTCTTAGGGACCGACACCGGGGCCTTGGACAGAACGGAAAAACGCGGCAATACTGACACGATCATCGTCGTCGTGGTCAATCCGAAGAAGAAGAACTACACGATGATCTCGATTCCGCGGGATACCATGGCTGACATGGTTGGCGATGATTCAAACGACGTGCAGAAGATCAACGCGGCCTATTCGATCGGCGGAGCCAAGATGGCCATGAAGACTGTCTCTAACCTCTTGAACATTCCGGTCAAGTACTACGCCTTAGTCAACATGGGCGGGCTGATGAAGCTGGTCGATTATGTCGGCGGGATTTACGTGACGCCGCCTCTGACCTTTACCTACAGCGGCTTTCCTTTCAAGAAGCGGGTCCGCCAGCACTTAAACGGGCAGGCGGCTCTGGCTTACAGCCGGATGCGCTATGATGACCCGCAGGGTGACTACGGCCGGCAAAAGCGGCAAAGAGAAGTCATCACCAAGCTGGTCCAGAAGCTGGCCACGGCAGACTCACTGACGAACTTCAGCAAGATCGCCAATAACCTGTCATCAAACGTGAAGACCAACTTAAGCTTCCAGGCTTTGAAGTCGATCTTGGCCAACTACTCAGACTGCACTTCTTCCAGCGACAGCGACTACCTGCACGGCTACAGTACTTATGTTAACGACGCGGCCTACCAAATCGCGCCAACCAGTGAACTGCAGCGGATTTCCAACAAGATCAGAAAACTGCTGGGCTTGAAGACGGCGACCGTCTCCAACCGGGAAACCGAGCTGAATACCTTAAACGAGACCGCCGGCTTTAAGTTTGGCAGCGGTGAGACCCAGAACTACACGATCTATGATCCGGGCACGACGGCTGACAGCGTCAAGAGCGGCAAGAAAAGTTCAAAGTCCAGCTCTAAATCCAGCAGCCAGGCTTCCAGCAGTAGTTCCAGCAGTACAGATTACTCTGGCAATACTGCTTATTCTGGTAGCACAAATTACGATACGACTTATAGCTACAGTTATAATTACAACTACAATATCAATCCGTTTTCAGGGGGCTATTAAAGGTGCTTAGCAAATTTTTGGCAGTAATTATCGGCTATTTGTTTGGCAACTTCATCAGCGCCATGTTCGTGGGCAAGTACTACCTGCACAAGGATCCGACCAAGTACGGGTCATGCAACCCGGGAACGGCCAACATGGGGGCGGTTTTCGGCAAGAAGGCGGGGATTCTGACCTGCATCGGCGACTTGCTTAAGACCCTGCTGGCCATTTGTCTGGTCTATGCCATCTACCACCAGCACTTGCTCACGGCTTATACGGTCCTGGGCGTGGTCTTAGGCCACTGCTTCCCGGTCTTTAACCACTTTAAAGGGGGCAAGGCGGTGGCCGTGACGGCCATGGTTACGGTTCTCTACGACTGGCGGGCGGGGCTTATTACTCTTTTAATAGCCTTGGTCTTGACCGCAATCATGCAGAACCTGACTATCCCGCCTTTGGTTTTCATGCTGTCTTTCAGTATTTACCAGCTGACCAAGTCTCTTGAACCTGGCCTGGCCTTCTTGATCATGACGGCGGTCATGGCCTTCAAGTTCCGCTACGATATACGGGACTTTTTCACGGGCCATGGCAAGCGGGTCGATATTTTATATACGATCAAGAAGAAGTTAGGAATATTGAAATAATTTCTTGGTTTTTTAAAGAAAAACTGAGTATAATGGATAATGAATTTGCAAAAGAAAAGAATAATTCCGATATTGATGAGTGAACAAACACAATCCAGAAAAATTCATAACCTGCTGAAGTACGGCTTCCTGCTGTTGGCAGCTCTGGTGCTTTTGCTGCAAATGTTTAATTTCAAGAGCAGCATGCTGAAAAGCTCAATTACCTACCTGCGCCACCTGCCACTAATCGTGGAAAGCGCGACCTATTGGTTTATTCCAATGGTCTTCGGGGCCGTTTACAGCAAGCGCAAGCTGCGCTTTAACGAAGGCTTTAGGGCCTGGGCTATCATGGAAGTAACCCTCTTGGCCTACTATCTTGCCTTCTTTATCTCCAAGCCATGGCACTTAAATGCCTGGCGCTTCTGGGGTATCCTCTTCCCGATTCTGACCTCGATTTCCGTCTTGATGACGGGCCTGGTCTTCGGCCTGCTGGTGCAGCCGGTCATTTATGACTGGCAGGAGAAGTTCAGCAAGAAGCAGAGCTTGATCATTTTGATCGCCTTGACCTTGCTGGGCTTTACCCTGTCGGCCGGGACTTTCGAGATGAATTACTCCATCTATGGTCTCTACCTGGCTCTGCCATTTGCCTGGGGAATGTTCTTAGGGAAGGCTGACTTTTCCGTCAAGCAAACGGTCATCTTTATTGTTGCCGGTATCCTTTCCCTTGGCCTGGTAATCGTCGGGGTAGCCGGCTTTAACGCCGTTTACTGGTCACAGATCATGTCCTGGCGGGCCAACCCGTCATCATGGAACTACCAGTTCCTGCTCAACGTGACCTCACCCTTCATCTTTATTATTGCCTTGGCTGCTTTTACTTTTGCCCGGCCGGCCATCAAGGCTTTGGAAGCAAAGGACCTGGACTTCCTGGTTCTGCTGATCATCTTCATGCAGGCACCAGATGCCAACTCCTTTATGTCTTCCTTTAAGTACGGTACCGGCAGCCGGCAATTGAACCGGATGATCACGATTTTGATCATGCTGGTCATTGCTATTGCCTGGCACTGGCTGATTGAACGCTACTTGTGGCGCTTCAAGCCAGTTAAGCGGATCAACCGCTTCTTGTATGAAAGCAAGAGCTTCGGGGCAGCGGCTGAAGAGGCCTTTAACCGCCTTTGGGGCTGGATGAAGTACCACCGGATCAACCTTTTGACTTGGACCTTCTTCTTTATCCTGTCCTTTGCTTCCTTCCTGGTTGAATCCGACAATATTCGGATCCAGATCACGACTGCTTCCAACGTCAACGCCGTAGTCTGGCTGGTTGGGACCAAGCTGGGGGCCTTGATTTTGACGACAATCTTTATTGACGCCTTCTTCACCATCCTTTACTTCGTCACGACCAGATACTGGGTTTCCCTCATCACGACTTCCACGGTCGTGATCGCTTGGGCGGTTGCCAACAAGATCAAGCTTGACCTCCGGGGCGAGCCAATTTACCCAAGTGAACTGTCTGAAGTAACCAACGCTGACAGTTTGCTGAGCATGATCGGGGGGCAGAAGACATTGAGCATGATCCTGCTGGCTTTGGCTGCCGTTATTGCCTTGATGGTCTTCTGCGAAGTCAAGTTCAAGGTCAAGAAGCGCGGCAACTGGAAGCAGCGGGGGATGTGGGCCCTGGCCAGCCTGGCCCTCTTCATGACGCCGAAGTGGTTTAACCACCAAGGCTCAGCTATTTACCGCTTGAATCGGGCCTTTGACAACAAGCAGTCCTTCCGGAACCCGGAAAGAGATATCCAGGTTAACGGGCCAATTTTGAACTTCCTCAACTACATCGACTTGCAGATCATGGACAAGCCAAGCAACTATTCCAAGAGCCAGATTCAGAAGCTCTATGAGAAGTACCAAAAGGTGGCTGACCAGATCAACAAGACCCGGACTAACGATTTGTCCAAGCAGACCGTGATCTTTAACTTGAGTGAAAGTTTCATCGATCCATATACCTTCCCGACGATCAAGTTCGCCAAGGGGACCAAGGATCCGATTTCTTACATCCACTCACTGAAGAAGACGACCACTTACGGCAGCATGCTTAGTGCCGGCTACGGTGGTGGTACGGCCAACATGGAATGGGAATCACTGACTGGCTTTAACATGGGCTCCTTCAGCACAACTTTGACTCCTTACGTCCAAGTCGTGCCGCAGTACCAGTACTACCCAACCATTGGGGCCAACTCCAACTACTCTTCAGCAGTTCACCCATTCATCGGGACTTACTACTCAAGAATTGAAGACTACAAGCGCTTCAAGTTCAACAAGTTTGTTTACCTTGGTTCCAAGTACAAGATCGTGGAACAAAAGAAGCTGGGGACCAGTTCCTACAACTCCGACTTCACGACTTATGCCAACGGCTTGCGGCAGATCAATTCCCGCAAGGGCGGCCAGTTCATCAACCTGATTTCTATTCAGAACCACATGCCGTACAACAACTGGTACCCGAAGAACTACTATGCCGGCAAGATTTCCGGTGATCTTTTTGACGACGGCAGCATCAGAACGCAAGTGGCGACCTACATCATGGGGACCCACTACACTGACCAGGCGGTCAAGAAGTTCATCAAGCAGATTGACAAGATCAAGAAGCCAATTACCCTGGTCTTCTACGGTGACCACTACCCGTCAATCGTTTCCCAGTCATACACGTCTAAGTACCCTGTCCAAATGCACTCGACCCGCTACTTCATCTACTCCAACAAGTACGCCCGTCAGCACGGGGCTAAGGCTAAACTGACTTCCAAGACCAACTACGTCAACACCAGTGACTTCATCGCCATGATGCTGGAACAAACCAACAGCAAGGTTACGGCTTACCAGGCACTTTTAACTGAAGTGCACAAGAAGCTGCCTGCCTTGACGATCAGCTACAGCGATGACACCGGCTTTACCCTGGTTGACCAGAAGGGCAAGGAAGTTGACCCGAAGACCTTGACCAACTCACAACAAGCCCTGCTCAAGGACTACGAAATGATCCAATACGACATGACGGCTGGTTCAGCCTATGCCTTGAAGATCAAGGGTTTCTACACTATGAAGAAATAATTTGATTTATTGCAATAAAAGGGACTAAGGAGGATTAGTCCCTTTTTTTGTCTTTTGAAATAAAAAAAGGGGGCAATTATGGCTCATAAGCAGCGCGTCGCCTATCTCGTCGCCTATCTCGATTACCTCCGCCTTGTGGCAATCTTGGGGGTAATCACTATCCATGTGGCCACGTCTCTCAACTTCTACCGGCAGGATTACGCGAGCTTAAACTGGCAGATCCTCAACTTCTGGGACGGCTTGAGCCGCTTTTGCGTGCCGTTTTTTATCATGATTTCCGGGGCTATTTTTCTGAATCCGGATTTTGACTTGAGCTGGGAAAAGCTTTTTAACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGCGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATGGCCCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCCAGACAGAAGCATGTACATGCAACAGAAGCCTGGCAAGTGTACTGCTGGCTTCTCAAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCAACTGGCTTCGCTTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACCTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTAGATACAAGAAGACTGAGCTGACTGCCAAAGTATTCGACCACGTTTCGATGACCACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCGTCCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCGCGGCCAAGAGGCGGATTATGGCCCAATCAAAGGGGACCGATGTAGTATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCCGTCAACGTGGTTTGAACGTAATTGCCATGGTGAAGAAAAGCTCCAAGATCACATACGAGTTCGAAGGAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGCGGTCGTTCAAGATATCTCCTGTCCGTCCCTGTAAAGGTTGGCGGCCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCCAACCGCAAAGACTGGATCGCTCTTATTTGCACGGACATGACGATCGATGAAAATGAGATCATCAGAATTTACGGCAAAAGATGGGACATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTGAAGCTTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCTCATACAGCTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCATTTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCACTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAGGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCACAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACCGCTGGGCATGCGACTTTAGCCAAACGAATAAGGTTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTCCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTGCCTTCACCCAATTCAATTAGATCTAATTTTCTTAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTGCATGGTAGACGAGCTTGCGGACATCGCTTTCAATTACTCCCTACAAACCCTGGTGGAAGCCATGTTCGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGGAAGGTTCACCAACGCTTTCATTTCACGCCTCCCGAAGTACATGCAAGAGGCTATATCGCCATCATTGGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTTTGAATTAAAACTGTCGACCAAATCACCTCCCAATCAGAGCGGCCAGGCCACCAGCCATTTGGATCAAGATGGTAATACATGATGTCATAAAGCTGATTTAAAGTGATTTCTTTCATGGTAAACCTCATCTTATTAGATAATTTTTATTAGATAATTTGACTACTTCTATTGTATTGCAAATTTAAGAAAAGTGGTTAAAATATGAAGTAAGCTATATGAAGTATATACGGTCTCTTTTTCTATCAGCAGAAGATTACGTGGACCCGAGTGATCGTTTCGTAACTAATTATTGCAGTGTTTGTTAACACGGTTTTAAACACGCTTTGGTTGAGTTTAATGTATAAGATGACATTTATTGGCTATTTACCTGCTCGGTTGTCAAAAGAAGCGATTGCAACACCACTTCAAATCTTAATTATTTATTTTTGGCTCAACTCAACGCAATTTGAACGCATTAAAAATAAATTACTGGGTTAATTTTTAGCGGTGCGTCTGGCAATAATCGTTTGCTGCGAACCGCTTTTTGTTGTATTTAGAAATACGAGGAGTTTTTGTTATGTATACGATCAGAGTTCAAAATATGCAGTTTCATGGGCACATTGGCGTCCTGCCGGAAGAAAAGAAGGTTGGCCAAACCCTTCAAGTTGATTTGGAAGTGGTCATTAATGCAGTGCCGGTTGCCGATCAATTAGCAAGCACGGTTAGTTATGGAGACTTCTATCCGATTGTTGAAAAAATTATTGATGAAAATCACGTCAATCTGGTTGAAACACTGGCTCAGAAAATTTTAACTGCTATTAAGCAATTGGATAGTCGGATTCAGACGGTCACTGTTCGAATCCGTAAATTAAACTTACCGGTTGACGGCGTCTTTAATAATGTGGAAATCGAGATGAAACAATCATGATGGAAAATGTCATTTTAAGTTTAGGTAGTAATATCGGTAATCGTGAAGCCTATATTAACAAAGCCGTTGCGCTGTTGGGAAACGACCCGGCTATTTTGATTGATAAAGCTTCAAGTTTTTATGAAACTTCACCGGTTGGTAATGTGAACCAGCGGGCCTTTATAAATATTGCGCTTAAAATCGCAACAACTGATTCACCGGAAGACTTGTTAACCAAAATCCACCAAATCGAATTGCATTTGCACCGGACCCGTGATGTACATTGGGGACCGCGGACATTGGATGTTGATATTATTTTTTGGGGTGATCAAAAGATTAAGACTGAGTCGCTGATTATTCCGCATCCGGAAGCATTCAACCGTTTATTTGTGCTGGTACCAACACTGGGAATCGTGACACCTGAATTTCCATTTTATAATCAAATTAAGGCTCAAATTCAAAAACTTCAAAAAGCAGATCAAACAATTCAACTTGTACAAAAGCAGACGCAATCTAAACAAGTCGTTGAAAGCGCAATTCGTCAAATCCTGAATGCGATCGGAGATGATCCGGATCGACCAGGACTGGTGGAGACACCGGATCGCGTCGCCCGGATGTATAATGAAATTTTTTCGTCTGAGGGGTTGGATAATTTTGAAGACTATAAATTGTTTAATACCAAAGAGACTGATAATTCAAAAATGGTGATGGTGAAAAACATTACGTTTTATTCAATGTGTGAGCACCACATGATGCCGTTTTGGGGGAAAGCCCACATTGCTTACGTACCTGATCACGGGAAAATTATTGGCTTAAGTAAAATCCCGAGACTGGTTGATTTTGTATCACACAAGTTGGGCCTTCAAGAGAAGCTGACTGATGATATTGTTGCCCAAATGAACCGAATTCTGGCACCCAAGGGAGTGGCGGTTATTGTTGACTCCCGGCACATGTGTGTTGAAATGCGGGGAGTTAAAAAGGCTGATTCATTAACTCGGACGATTCGTTTTTCTGGTGTTTTTGAGACCGACCAGGCGTTAAGAATGGCATTTTTAAACTCGATAGGTGATGTTAATGGGAAAACAATCTGAACTTAATGCTGCCGAGTTTCCAACGTTTCTGTATGATCAGGGCGATCGGATTGGTTTGCTCAAACGGATTTTAAAAGCACTTGGCAGTCCCGATCAGAAATTTAAAATTATTCATATTTGCGGTACTAACGGAAAAGGTTCTACGGCAATGATGATTACCGCAATTCTTAAACAAATGGGTCACCGGGTTGGGCTATTTACTAGTCCCTATATTGGCGAAATTTACAATGGCATTCAAATTGACTTTAAAAATATTCCCAGTCGAATCTTCGAAGAAAAGATCTCGGTGATTAAAAAATTACTGAGAACAGCAGCTTTTGCAAACGTTAAAGTTTCCGAATTCGAAGCGCAATTTTTAATTTCAATGTTGTATTTTGCCGAACAGCGGGTTGATTACGTTGTTTTGGAATGTGGCCTTGGTGGTGAACTTGATGCAACAAATGCCGTGGCCACAACAATGTACTCAATTTTTACCAAGATTAGCTTGGATCATGTTGGCATTTTGGGAAATAATATTACAGAAATTGCAACTACTAAATCTAAAATTATCAGGCACCATAACGTTACGATTACGGCTCAGAATCAGTCGCTTGAAGCGTTGAAGGTATTAGAAAATGAAGCTGTGTCAAAACAGGCTGTTTTTTTGAACGCTGATCGGGTCACAATAACTACCTCGCAACAATCAAAGCGTAGCAAACAGGTTCATTATCGCGCTTTGCTCGAGCACAGTGAGCAAAGCGGCACTTTTCGCTTTGGCTTGGCCGGGACCTATCAGCTTGAAAACTTGGCAACGGTATTGACTTGGTTTTTCGATTTTGTGAAACGAACGTCATTTCAACAGCGACTGGATGATATCTTGGCTCATTCTTTGGCTGAATTGGTTGTACCGGGACGTTTTGAAACGGTTCAGCAAAAGCCAAAAATCGTTTTGGACGGTGGCCATAATCCTGACGGCATCAGCGCATTTGTTGAGACGGTTCAGAAGCTGTATCCAAATGCCCCCAAGCTGATTGTTAATGGTTTTTTAAAGGATAAATCTTATGAAATAGCGGTTCAAAAACTGCTTACTCTCAAAAACAGCTCGTTTATTATCACGCAGCCGGAAAATCAGCAGCGCGAACTTTCACCGGTTAAATTGGCGGATGTTTATCAAAAATATACCAACCGGCAATTTCCAGAATTTACTTCTCCGGTTAAAGCAATTAAGCAAGCTATTATGACGGCTTCACCAACTACTGTTATCTTAGTTGTTGGTTCATTTTATCTATTAAATCCGATTCGAACATATCTACTATCTAGGAGTGAGCATAATGGAAATTAAAAAAATAAACAATCGTCAACAAACATTTAGCGGCAACGTCACCATTTCTTTTAATGCGAATACAGAAGAATTACCCAAATTAATTAATCTGTTAGCTGACCAGACTGCCAATCTTTCGATTTCGTCATCGCTAGTCATCGCGACATTTACGCAAACGGAATTGGCAGCTGTAATTAAAAGTTGGCCAGAAGTGTTTGGCGCTGAAAACGGTACGCTGCAGCAAATCCAGGCAGCTTCTCAAATCCATTTTAAGGGTCGGGGATTTGACTTTGATATTACGACCAAACCAATTATTTATTCGATTTTAAACTTGACGCCGGATTCATTTTACGATGGTGGGAGAAACGCTTCAGTCGATGGGGTTCTGAAACGAATTGAAGCAGACCTGGCAGCCGGAACTGCCATCTTTGAAGTCGGTGGCAAATCTTCCAAGCCACACTTTGATGATATTAGTGCTGAAGAGGAGTGGGGGCGAATTAAACCGTTTTTGGACGCTATTCACAAGCGTTTTCCAAATATTGTTTTGGCAATTGATTCCAATACAAACGCGGTTATTGAAGAAGCACTAAAAAATGGTATTCAAATTATTAACGACATCGATGGCTTTAATTCTCAAGCAAAACTGAATTTAGTTGCTAAATACAAACCTGCTGTTGTAACGATGTTTAATGGTCGGAACTTCAATGAGCAAACGGAAACCTTATCAAAAACAATGATGGATTTCTTTACACATACAATTAGCGATTTAACAGGCGTTGGGCTTGAAAAAGAAAACATTGTGATTGACCCGGGCGTTGGCTTTTCTGATCATAATACGTTAGCTTTTGATCTGATTAAGATGAAATTAACGAAATTAATGGCAGAATTTCAAACACCGATTATGATTGCAATTTCGCGAAAAAGTTTTGCTAAACGGCTGTTTAATTTGGAATCAGCGGATGATCGATTGATTCCAACGCTGCTATTTGAAGCATTTATGACGGTTCTTGGCGGTCGGGTTATTCGGGTACATGATGCAAAAGAAACTCGTCAGCTAATCGATGCTTTTGAGTTGCTAAAAGATCAGCTATTGCTAAAGTAAAGGTGATAAGAATGCCTCAAGATCCTTATTTGTCAGTGCTTATTAAGGCGATCGACCAACTTGCTGAGTTGCCGGTTTCATGGTTACCAGATAAAAAGTTGGTTCAAATTAAAGGAATTTTGACCGATCAGCAACCGGCTGAACTTCGAAATCGAAAATCCAAGGTCCACTTGTCTGCCAGTGCGATGGTCTTTTCAAAAAATGCCGGCTTTTTTATTCGTCATCCGTATCTACGAACAACACTGCTGCCGGCCGGCCACGTTGAACCGGGTGAGCTGCCGATTAACTGTGCAGTTAGGGAATTTCATGAAGAAACCGGCTATCAGGTGAAGCCTGAAAGTGGTCAGCTGATTGATGTTAACCTGATTGCAATTCCAGCTAATCCGGTTAAGGGTGAGAGTGCGCATCAACACGTCGACTTTCGCTTTCACTTTTTAATTGAACCTGGTACTCGAAGCAATCCCGAATTACCGGTTTCTTTATTAACGCAAGCCCAAGCACCGACAGAGTTTGCAAAGTATTTTGCACTTATCAAATCAGGTGATTAAGTTATGTCAAATTACTAAGTTTATAATGCCGAATTGAATCGTTTCCCAGTTGTATTTGATTTGCCGCACAGTGGGACAACGATTATTGCCGAAATGGCTGATGCACTATTACCAACGGCTGTTTTAGCTAATACCGACTGGTTTTTAAGGGAGTTGTATGATTTTTTTGCCAGGGCTTGGGTTTACAGTTTTAGAAAATAACTTGAACCGGTATTTAATTGATCCCAATCGTGATCCGAATGAGGGACTAACTGGTGATTACTATCATCTTGTATATGCCAAGAATACATTTGGCCATGCTTTGTATCAAACGCCACCGTCAAGTTGGAAAATTAATCGACGACGTGACCAATTGTTTAAAACATCTAATTCTTCTTTAGTCCAATCTTTCATTTTTTTTGCTCCTAATCATCTAAAATCTTATATTCTTCAAAATAACTTTTACCTTGCTTGATTTCTCCGCTTTCATAAAGAAAAAATTTATGCTCTAAACGTTTAATTGAACGATTCAAATTTTTCTTTTTAGTTTCAAGTAAAGCTTTATAAAAATCAATTGACAATAAGTAAGCATGGGTTTACACTAATAGTCAACAAGAGTTACTAAAAGTCAGAAATGAGTACTAACATGTTGAATTTACAAGCTGTATGTCAAAACTGTGCATGTTGTCCAAAAGACAATACTTTTTTGCATACGCTAATTCAGCATGACGTACTTCGATATAATCTATAGTTAACTTGATTTTTTAATTTAGCTATTTAAGGATCTACGAACTGAATTGGTTCGTGGATCCTTTTTTGTTTGGTCTTTGGGAGGTAAGATCTTATGAATTGGTCAATCATACAACAAGCGTTGCCATTATTTGCCCATGCATTTGGAATCACGATCTGGTTATCGCTAATAGGGATAATAGGTTCGATTATTGTTGGAATAATCGCTAGCTTAACACAATATTTTAAAATACCGGTAATTAGTCAGATCATGACAGCATATGTTGAACTAGCACGAAATACGCCACTTTTAATTCAATTATTTTTCTTGTACTACGCTTTTCCTGTTATCGGAATAAAAATGTCCGCTGAAGTTTGCGGTATTATCGGTTTAATTTTCCTAGGTGGAGCATACATGGCTGAGGGATTTACTGGTGGTTTCAATGGTATCTCTACTAGCCAAATTAACAGCGGAAAAGCATTAGGAATGAGCCGTTTTCAATTAGCGCGCTATGTTGTTTTCCCACAAGGCTTTGCATTAAGCTTGCCTGCTTTAACAGCTAATATTATCTTTTTAATTAAAGAAACATCCATTTTTTCAGTAATTGCAATCCCTGAATTAACCAATACAGCTTTAGATTTAATCGGCATGTACTACCGTTCCAATGAATACTTACTGATGTTGGTTATTGCTTATGCAATTATCTTGATCCCAGTAATTCTTTTATTAACTTGGCTTGAAAGGAGAGTTCGTTATGGTGCATTCGGGAATTAACGTTTTATTTGAAGGGAGCAATTTTGCTCGTTTAATGGCAGGTCTTTGGACTTCCATTTGGATTGCAGCTATTTCCTTAATAATTGGTTTAGCTATTGGAACTATTTTTGGTATTCTTAGAACTTTGACTAATAAAATCATTCGATTTGTTTTACGAATTTATCTAGAATTCTTCAGAATAGTACCTACAATCGTTTTACTTTACTTGGTCTATTATATTTTGCCACGAACTTTTCATGTTAACTGGCCAGCAACTTGGATGGCAGTTCTGGCATTTTCACTATGGGTAGCAGCAGAATTCAGCGATATTGTTCGCGGAGCAATCGAATCAGTACCTAAGAGCCAGCGTGAATCGGGACTGGCATTAGGCTTAAGCAAAATCCAATTATTTAGATATGTATTATTGCCACAAGCAGTTAAGTTAGAGCTTCCTGCAACAATCAACTTAGCAACCAGAGTAATTAAAACCACTTCACTTTTACTTGTCATCAGCATTATGGAAGTAATTAACGTTGGCCAGCAAATTATCGAAGCAAATAATCAGCAATATCCAACTGGTGTTTTCTGGGTTTATGGACTGATATTTATCTTATATTTTGTCCTCGACTATCCATTATCAGCTTGGGCTAAGAAATTAACTAAGGAAAGCAAATAGGTGAGCACAATGACAGAAGAAATTTTAAAAGTTGAGCATTTAGATAAGTTTTATGACGACCGTCAAGTTTTACATGACATCAATTTTTCGTTGAAAAAAGGTGAGGTATTAACATTACTTGGACCATCAGGTTCTGGTAAAAGTACTTTGCTTAGAACTTTGAATGGGTTAGAGGATTATAAAAATGGAGCTATCTATTTCCATGGAAAGAAAATTAATCCTAGTCCAAAAGAATGGCAAATGCTGCGACAAAAAATCGGTATGGTTTTTCAAAGCTATGATCTTTTTCCAAATCTTACTGTGATAGAAAATGTTTTGCTTGCCCCAGTGAAAGTACAAAAACGAAATGAAAACGAGGTTAAAGAAGAAGCAATTAAACTGCTAAAACAAGTGGGATTAGATCAATATCTAAATGCTTATCCTAGAGAATTATCAGGCGGTCAAAAGCAGCGAGTAGCCATCGTTCGTGCATTAGCAATGAGGCCGGAAGTAATGCTTTTGGATGAAATCACTGCATCCCTTGACCCAGAAATGGTACGCGGTATTGAAGAAATCGTTGAACGCCTTTCTAAACGTGACCATATGACGATGATTATTGTTACCCACCAAATGAACTTTGCTTCTAGAATTGCGGACGAAGTACTTTTCTTAGAAAATGGACATATTTTAGAAGATACTCCAGGAAAAGACTTCTTTGATCATCCTCAGACGCAAAGAGCTAAAGAATTCTTAGACAGCATGGATTATTAAGGATAAAGCCAATGAAAAAGAAAAATATTTTTAACATTATTATGGGTATTGTTGCTCTAATAGTCGTGGTAAGTGCCGCTTATTTTGGTTTTACACAACCTAACTTAAACAGCGGTACTGCTGGCAGCCGTTGGAGCAATGAGAATGGCGTCTCAGAAATCAAACGTCGTGGTTATATCAGAGTTGCAGTTTTTGGTGATTTACCACCATATGGCTGGGTAAATGAGCAAGGCAAGAGAGTAGGTTATGATGTTTACTTGGCTCGCAGAATTGCCAAAGATTTAAACGTTAAAATTCGTTTTATACAAGTCAATGCCAACAATCGTGTAGATACTTTAAATTCAAATAAAGCGGATATCGTTTTAGCTAACTTTACAGTAACTCCTGAACGTAAAGATGTAGTTGATTTTGCAAAACCATATATGAAAGTATCAGTTGGAGTAATTTCACCTAAAAATGCTCCAATTAACAGTGCGCAAAAATTGAAGGGCAAGAAGTTAATCGTTACCAAGGGAACAACTGCCGAAAACTATTTTGCAAAGCAATCTGGAGTTAATTTATTAAAGTTTGATTCTAAGACGCAGCAATTCAATGCATTGAAGAATGGTCGTGGTGCAGCTTTAGCTGATGACAATTCTTACCTTTATGCTTGGGTTAAGAAAAATCCTAAGTATGTAGTTGGCATTAAGAGTATTGGACCTCGTCAGTATGTGGCCCCAGCCGTAAAGAAGGGCAATCGTTCACTGCTTAAATGGACAAATCATGAGATTACTAAACTAACGAAGGAAGGCTTCTTTGTACAGGATTATCAAAAAGAATTAGCGCCTTACTTTGGTAAGGATATTAAGCCAACTGATATTGTGTTGAGATAAACATTTGAAAAAATCTATTTTTAACAGGTTCTAGACTTCTACTCAAAAACAAAATCCTATTAGATTAAGGTTTGGCAACACCGAGATTTAGTAGGATTTTTTAATTTCTAATTTTTCCTAGTCACTTATTTATTTTTATATATTTTACGATAATTTTCAGGACTTAACTCTAAACTATTTTTAAAAGAACGTGTGAAATTAAATTGATTTAAAAATTCTACTTCTTTAGCAATTTGTCCAATAGAAGCCTCTTGCTGGCCCTGCTCTTTGCTTGGCTTTTGCCGACCGGCCTGGACTTAATCCGCCTTTGGCCAAACCCGCCCAAGCATATGGCTGACGCGCTTGCCGCTTTTAAGCGCCTGCTGGGCAAGCTGGACCTGCAAACGGTAATGGGCTTTGGGGGGCTACTACATGGCTGGCTACTACTTTAGCCAGGCCCACATGAGCAAGCGCAACCTGTATTTTGTCCAGGCCCTGGGCCTGCTGGGGGCTGGAGCGACAATCGGCTTGTCTGGATGACGGCGAAGGCCGGCCATTTGCGCCTGACCTTGTACAGCTATAATTCTTTTTTGTCCTGCTGGAGAGCAGCGCGGTTTTTCTCAGCATTCAGACGCTCAAGCCCCGGATTTGGTCAGAAGAAGTTTTAGGGGAATTGGCCGGGTCTGTCATGGGCATTTACCTGCTGCCCCCGTTATTGATTTACTACTGGGGTAAGACGCCGGTCTGGCAGCTGGCGGCAAGTAATTCTGCCTGGCTTGGTAATTTTGATTTTTGCCAGCAGTCTGGCTATCGTCTGGCTCTTGCGCAGGAGCAGATTTTTGGCCCGCTGGCTTTTATAGGCTTGACCCTAAGGCGAATTCATGTTATTTTTATAAAAACGCGACAATGAAGTAGCTGCTTGGTTCAGCGTTCAGAGAACTAGCGGTTGGTGCGAGCTAGACAGGCTAGGCAGACGAAATACAGCGCGGGGAAGGAGAACCCCGTTAAGAAGCTCCCAAGAGGCACTTTGTGCGAACGTGGGTGGTACCACGGCTAAGACAGAATTTAGTCGTCCCTGGATCTTTTGATCCGGGGACTTTTTTATTTGGAGGCAGAAATGGCTAATTTTGACATTTTGGAAGATTTGAAATGGCGCGGCGCCATCAACCAGGAAACTGACGAGGAAGGCTTGCGGGATTACCTGGCCAAGCATGACGACCTGGCCCTTTACTGCGGGACTGACCCGACGGGTGACTCCCTGCACATCGGTCACTTGATTCCCTTCATGATCTTGAAGAGATTCCAGCTGGCCGGCTACAAGCCAGTCATCGTTATCGGCGGGGGCACGGGGTCAATCGGTGACCCATCCGGCCGGTCAACTGAACGGGTCCTGCAGTCTGAAGAAACGATCAAGCACAATGAAGAAGCTTTGACGGCGCAGATGGTGAAGCTTTTTGGCACGGAAAACTTCCGCATCGTCAACAACCGTGACTGGCTGGGCAAGATGAACCTGCTGGAATTCCTCCGCGACTACGGCAAGCTCTTCCAGGTCAACAACATGCTGAACAAGGAAGTCGTGGCCAGCCGGCTGAAAAACGGGATCTCCTTCACTGAATTCTCCTACCAAATCCTGCAAGCCATCGACTTCTATATCCTGAACCGGGACCACTGCGTCCAGATGCAGATCGGCGGGGCTGACCAATGGGGCAACATCACGGCCGGGATCGACTTGATCCACCGCCTGGAAGGGGCAGACCGGCCAGCCTTTGGTTTGACCATCCCATTGATGCTGAAGGCCGACGGGACCAAGTTCGGCAAGTCCGCCGGCGGTGCTGTCTGGCTGGACCCGGAAAAGACCAGTCCTTACGAATTCTACCAATTCTGGATCAACCAGGACGACCGGGACGTGATCAAGTACCTCAAGTACTTCACCTTCCTCAAGCACGAAGAAATCGACGCCTTGGAAGAAAAGGTCAAGACTGAACCTTGGAAGCGGGAAGCCCAAAAGCGCCTGGCTGAAGAAGTAACCAAGTTCGTTCACGGCGAAGAAGGCTTGAAGGAAGCCCAAACGGTCACTGAGGCCCTCTTCTCCGGCAACGTGAAGGACTTGACCACCAAGCAGGTAGAAATCGCCCTGGCCAAGGCGCCAAGCGCTGAGAGCGGGGCAGAAAAGAAGAACCTGGTTGACTTCCTGGTTGACACCAAGATTGAATCATCCAAGCGGCAGGCACGAGAAGATGTTAACAACGGCGCCATCTATGTCAACGGCGACCGGATCCAGGACACCGACTTTGAAGTTGACCCGGCGGCTGCTTTTGACGGCAAGTTCGTCATCATCCGTAAGGGCAAGAAGAAGTACACCCTGGTGCACATCAAGGGCTAAAAAAGATTTTTAGAAAGTTTCCAGTTGGAAGCTTTCTTTTTTGTTTACTTTTTATCCTTTTGCCGAAAAGAAGCCGGCATGTTACAATTAAGGCGCTGCTGTAGCTCAGGAGGTAGAGCACCGCCGTGGTAAGGAGGAGGTCGCCAGTTCAAATCTGGCTAGCAGCTTAAAAAAGCAACTAATTGATCAGTAAAAGTGATGAAGCGATTGGGACAAAGGAGGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTGGTCATCGAAACGTGGTCGAATACTTTGGCAGTCAGCTCAGTCTTCTTGTATCCAGTTCTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGATCAGAAGTCAGATCTTTCAGGTGCCCATTGACGATCCTCTCAGCTAGCAGAATAGTGAAGCGAAGCCAGTTGAAGCCAGTTGATATGTGGGTTCTGCATGAATCGATAGTAGGTGTTTTTTGAGAAGCCAGCAGTACACTTGCCAGGCTTCTGTTGCATGTACATGCTTCTGTCTGGAAACACATTACTGAAGATGTATGAAAGGATCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGGGCCATTTTAGGTTCGTTTTCAGTATCGAATGATGGTAAACTAGACATAGCGCAAGCCTTTCGTTTGATATTGATGATGTTTTGATCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTTATTAAAGTTTCAAGATCAGCTTGAGCAGGTTGAAAGCCATCGGCATCTCTTTTGGCGAAATCTTTAGCTAATTTATAAACTTCGATTGCCTTGTCAAAGTTAGGAATATCAGGCAAAGCTTTTTTATCAGAAGCAAAATCAGCTAAGTCGTTCATCAATTCTTTTTCGATTTTTAAATCAATTTCACTGAAACTACTGATTAATGGACGATCGGCAGGGATCTTGGCTTTAGAAATTCAGTCAGAGTTAACGGCTAAGTATAAGTTATCTTGAATGCGGGCATTGAGATCGGGCTTGGTGATATCACCAGCACCGCCGCGGATTTTTGCTAAATTCATATGTTTTCTCCTTTGTTTTTTAGTTGGTTAAATCATAGCATTTTTTAAAATAAAATGAAAATTTAATTTTGCTTATTTATAGTAATAAAAGTATTTTGTTAAATAAAAATAAGGATGTAAGCACATCCCTAACATCTGCTATTAAATTGATGTATACTTATAGTGTATCGACAAAACAGAAAGGATGTATTGTCTATGAAGAAATTAAATACTAACAAGCTTACTGAAGAACAAGTAAATCTTTTCAAGAATAACTTAGTTTACTTAGCAACTGTTGATGCTGAAGGCAACCCACAAGTTGGTCCTAAGGGCTCAATGACTGTCTTAGATCCAAGTCACTTACAATACCTTGAAAAGACCAAGGGTGAAGCTTACGAAAACATTAAGCGCGGTTCAAAGGTTGCTCTTGTTGCAGCTGATGTTCCATCACATACTGCAGTTAGGGTACTTGCTACTGCAGAAGTTCACGAAGATGATGACTACGCAAAGAAAGTTTTAGCTAAGACTGAATTTCCAAATGCATTCGTAGTTAACTTAAACATCGAAGAAGTATTTGCATAAAAACTTAATTAAAATAGCAATCAAGCTGGGACATTTTCCCCAGCTTTTTTGTTTAAAAATATCTTGCCATATTAAAAAGCTCATGATATTCTAATAAAAAATGAATTGAAAGAGGAAAAAATCATGTTTTATCTTAACGCCAATGTAGCTTCAACTTCATCTAGCTCAAGTTCTTCCCGTTGAACTTGAGTAGTTTTGGCATACAGATAATTCATAGCCTGAACCTACTCATGATAATTAAGTAGGCTCAGGTGATAATTAAGTAGGCTCAGGCTTTTTTCATGGAGGAAATAATTATGGCAGATAAACACCCCAACAATAACCTAAAACGTTCAATCGGTTTTGGTTCAGCCATTTCAATCGTAATCGGTACAATCATTGGTTCAGGCATATTTTTTAAGCAAGTTTCCGTAGTGATCTATACACTAGTAACAATCGGGATTTTTCGCTTTTTGCCAGTAGGTTTAATCCATCGTTTGGGTGAAAATACGACCGCATATTTAGCAACTAAGGTCTTCGGCACAATCGGAGGGAAATTGCTTTCTGCTGGAATTATCATCTCAATGATGGGAACCTTGAATGGCAAGATGCTGACATTTCCTTGAATTGTCTACGCAATGGCTAGACGTGGCGACCTTCCATTTTCAAAATATTTGTCATATGTCACTCCTAAAGGTAAATCACCAGTGGTTGCAACCTTATTCATCATAGTATTGGCTGCTATCATGATGATGTTCTTTGAACCAGATCATTTGTCAGACTTGTGCGTATTTACTGTCTATTGTTTTTACTTATTAGCATTCTTCGGCATCTTTATCTTGCGTAAGAAAAACAAAACGCGTCCATTCAGCACACCGCTTTATCCACTTGTTCCAATCGTAGCTATCCTAGGTGGCTTATTTGTACTTATTAGTGAATTGATCAACGATCCTGCTGGAGTTTTATTATTCATTGGCATCGTAATTGTAGGTTTGCCAATATTTTATGTAGTAACGAATGGACAGAAAAAGATTGAAATAATATAGTTGATAAACATAATGGTGGATTTGTTATGAATGCAAATTTTGAAACAAAATTAATGCAGCTTTTAGATCAAAACAAAGATGAGATTATTAAAATTCGTCGTTATCTACACGAGCATCCAGAGTTATCTTTTCATGAGAAAAAGACGTCTGAATTCATCGAAAATTACTATCGTGATTTGGATTGCCAGGTGCGCCATTGTGGAGATGACTATGGCATTGTAGTAGATATTAATCCAGATAAGCCGGGTAAAAAATTAGCTTGGCGTGCTGACTTTGATGCATTGCCAATTCAAGAAAACAACGAATTGCCTTTTAAATCTCAAAATCCCGGTGTCATGCATGCGTGCGGTCATGATGGTCATACTGCCTATCTTTTGGTATTAGGCAAATGCTTAATTCAATTAAAAGATCAAATTAATGGAAGCATTCGCTTAATTCATCAGCCAGCTGAGGAAGTTACCCCAGGCGGAGCTTTATCGATGATTAAAGACGGAGCGCTAGATGGTGTTGACGATGTGATCGGTATTCACGTAATGAGCACGATGCCAACGGGAACGGTTCAGCTTCATGCAGGAGCAACGCAGACCGGACGTGCAAATTTTGATCTGACTTTTACTGGTAAAGGTGGTCATGCTTCAATGCCACAACTTAGCAATGATGCAATTGTGGCTGGATCTTATTTTGTCACTCAGTTGCAAACCGTTGTTTCTAGAAGGTTAAATCCATTTGATGTTGGCAGCGTAACTATTGGCTCATTTGATGGGGCAGGTAGCTATAATGCCATCCAAGAACAGGTAAAACTTAAGGGCGATGTCCGGGTGATGAATGAAGCTACTCGTAAATTAATGAAGAAAAATATTAAACAAATCATCAAGGGAATCGATGTAACTTTCGGCGTTAAATCTGAACTTAATTATGACGATAATTATCCAGTTTTAGTTAACAATCAAGATTTGACTAAAAAAGTGGAAAATTGGATTAAAGAGAGTAAAATTCCTGAAGTTACTGCTGTAAAGGATAGCGGAGTAGTAAATGCTTCGGAGGATTTTGCCTACTATGCTCAGAAGAAGCCAGCTTGTTTCTTTTATGTTGGGTGTCAGCCTGAAGATGGCGGAATATATCCGCATCACAGTCCTAAATTCATGATGAATGAAGATTGTTTAATCATTTGTGCTAGAAGTGCGGCTAGTGTAATCAGTCATTATTTTGCTTAAATAAAAAAGCATTTGACAATTTTTTGGGGATCGTTTTATTATTAATAATAAATTAAAAGAATTTGAAAAGCAGAGTAATTATTGCTTAATTGTTACAGAGAATTATCGGTTGGTGAGAGATAAGCAATTGAAGGTAATGAAGATGGGCTTGGATATCAGTGTTAGCGATAAGTAGCTAACAACGGCGTTGTGAACCGTTAGCTGTCACAAACTATGTTGGTAGTTAATAAGATTCATTGCGCGAGTAATGGATAAATTAAAGGTGGTAACGCGAAGCACTCGTCCTTTTTGGGATGGGTGCTTTTTGTTTTTATTAAAAAATGAGAAAGAAGTGTTGATGATTAATTTAATTAGTAGAGCTAGAAATCGTATTAGATGGTGCAATGTCTGATGAGTTAGAACGACAGGGAGTTAAAACTAACAATAAATTATGGACAGCAACGGCCTTGATCAATGAATTGGATAAAGTTTATCAGGCACATTGGGATTACTTTACTGCTGGAGCTGAACTGGTTATTACCGATACCTATCAGGCTAATGTACAAGTGTTTACTCAAGCAGGTTATAGTGAGCAGATCTAATTGCATTAGAAACGCAACCTAAATTAGATGAACCATTAGCTGTTTTGAACTGGCTTAAAGAAAATGCATCAGATTACCCAGTTTATGTAAGTTTCACTTTGAAAGATGCAACTCATATTAGTGATGGCACTACATTGGAGCAGGCAGTTAGTGCAGTAGATAAATTTGAACAAGTTTTTGCAATTGGAATTAATTGCATATCACCCGATTTGGTTGCACCAGCATTTAAAGAAATTGGTAAATACACGTTTAAACCATTAGTAGTTTATCCAAATTTGGGTGCAAGCTATGATCCTAAGATCAAACAATGGCGTGAATTCAAAGAAAAATTTGATTTTAATAAATTAACCAAGAAATGGTATCAAGAAGGTGCACGTCTAATTGGTTGCTGTTGTACTACAGGACCAACTGAAATTAAGCAGATGATAGTCTAAATCAATTGCGTTAGGGGGATTATGAATGGCTCATCAAACACATTTACAAAGAAAAATGACGACACGACATATTAGGATGATTTCGCTAGGCGGAGTGATTGGAACAGGGCTTTTTCTTAGTTCTGGCTATACGATTCATGAAGCAGGACCTTTAGGAACAGTAATTGCTTATTTGGTAGGTGGATTAATTGTTTTTGCAGTCATGCTGTGTTTAGGTGAGCTATCTGTTGCCATGCCATACAAAGGGGCATTTCACGTTTATGTTAAAAAATATATCGGTCCTTAGACTGGTTTTGTAGTAGCTATTCTATATTGGCTAACATGGACGATTGCTTTAGGATCAGAATTTACCGCAGCAGGATTGATTATGCAAAAGTGGTTCCCTCAAGTTTCAGTTTGGATTTGGAGTTTGACCTGTATGATATTAATCTTTTTAAGCAATTTCTTTTCAGTTAAAGCTTTTGCGGAAAGTGAATTTTGGTTTGCGGCAATTAAAGTTTTTGCCATAGTTGCATTCATTGTCCTGGGCGGATTAGCTATTGCCGGCTTTTTACCTGTTGAGGGTTATCATGCTGCACCGGGATTGGCTAATTTTTATCGTAATGGTTGGTTTCCTAATGGATTCAGCGGTGTATTTACAACAATGTTGACAGTAAACTTCTCAGGTACTGAATTAATTGGGGTTACTGCAGGTGAAGCAGAAAATCCTCAAAAGGCTATTCCTAGTGCAATCAAGACAACGCTTTGGCGGTTGCTTATTTTCTTCATTGGTAGTATTGCTGTAATGTCTGCGTTGATTCCATATAAGGTTGCCGGCGTTACGCAAAGTCCATTTGTTTACGTCTTAGATTCAATTCATGTGCCTTTTGCGGCTAATATCATGAATTTTGTTGTGCTGACTGCAATTATTTCAGCTGCCAATTCTGGCTTGTATGCATCTACTAGAATGTTATGGTCTCTGAGCAATGAGGGAACTATTCCAGCTATTTTTAAGAAAACCAATAAAAACGGCATTCCTGTTTTAGCATTAATCTTCAGCATGCTTGGCGGTGTATTTGCATTAGTATCAAAAGTAAGATCACAGCTGACACAGTTTGCTTAGTCATAGTTTCAATTTCAGGACTAGCAGTAGTTTTAGTTTGGATGGCAATCGCTTGGGCAGAATTGAATTTTAGAAAGCAATTTTTAAAAGATGGGCATCAATTATCTGAATTAACATATAAAACTCCTTGGTATCCTGTTGTGCCATACTTTGCTTTTATTGCTAGTTTATTATCATGCGTTTTGATCTGGTTTGATCCTACGCAAAGAGTGGCACTGTATTACACGATTCCGTTTGTGCTTGTTTGTTACTTAGGACACCGTTTTTGGTTGAGGCGTAAAGACAATGAAGTAGTCAAAGGGGCAGAATAGTAGTGGTAAAATATTTCTAGCTAATGTTAGGGGAGTTAGAAATGCAAAATACAATTATCAATAGTGCAACAGAAAAACTGTCGCCGTTTAAAACTTTAACTGCAGAACAAGAGAATCTAGTTAATGATATTTTGTCTTTTACTACAAAACACATTAAGCAAGATTATCCTGCTATTTTTACGGTTTATGGGGATGCAGGAACAGGAAAAAGTGTTGTATTAGCACACTTATTCAATGAAATCCAAGTTGCAGCAAGAACTAAGGAAGATTCACCACTTTATCAAACGACCAATTATTTTGTGGTCAATCACCCAGAAATTTTAAAAGTATATAAAGAAATTGCAGGTGATTTGCCCCATCTTTACAAAAAAGACTTTACTCGTCCCACTTCTTTAATCAATCAACTCGATAAAAAAGATGAAACAGTAGATGTCGTTGTAATTGATGAGGCTCACTTATTATTGTCAAGATCAGATCCATATAATAACTTTACTTACAATAATCAATTAGTAGAGCTCATCAAGCGAGCTAAAGTTGTAATTCTTGTATTTGATCAATATCAAGTTTTACGCACTAAGACTTTTTGGACCAACAAGCAATTAGAAAAAATTACTCATCAATGTCCTCATGAAGATTATCATTTAACTCACCAATTTAGAGTCAATGCCAGTGATGATCTACTTAATTGGTTTAATTATTTTACTGATGAAGAGGAAATCCTGCCATTCCCTGAGGATGCGCGACACAATTATGATTTTCGCATTTTTGATGATGCAGAAAAGATGCGGCAGGAGATAGTTAAACGAAACAATGAGGTAGGATTATCTAGAATTTTATCTACTACCGGATATCCTTCGACTCTTGATGGTGGTAAACACTATATCACAGAAGGCAAGTTCAAAATGCCGTGGGATCAGTATAATTACACATCTAAACCTTGGGCTGAAATACCAGAAACTATTAATGAAGTTGGTTCTATTTATACTTGTCAGGGTTTTGATTTAAACTACACCGGAATCATTTTAAGTCCGCCAATTACGCAAATTCCGGGTACCAATAAACTGAAGGTAGATCCAAGCAAGTTTACAGATATTGAAGCCTTCAAAAAACGTAAAGATCTATTCAATGATCAAGAACTAAATGAAGCTAAGAAGCGGTTATTCATGAACATGATCAACGTTTTATTAAAGCGCGGTGTTTATGGTACCTATATCTATGCCCATGATCCATTATTGCGACAGACTTTATACCAAAATTATCAAAAATTAATTTCTAAGCATAATAGGTGACACGAATAGTTTTTATCAGTATTATTTTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTAATTACAGCATACATGGAGGTAAAAATGGAACGGAAACTGATCGCGGATTTTGTCAAAGAAAACCTGGCTGAAGAAAGAACGGGGCATGACTATTACCACGGCAAGCGGGTGGCAGTCTTGGCTGAAAGAATGCTGCTGGCGGATCACCCGGAGGCTGGGCAAAAGAGCCGGGATATTGCTTATACGGCGGGCTTTGTCCACGACACGATCGATGAGAAGGTTTGCCCAAACCCAAGTAAAGTTTTAGCCAAATTGCGGGAAGTCTTTACGGCTGCCGGCTTAAGCGCAAGCGACCAGGACAATGTCTTTTTCGCGATCGAGCACATGTCTTTTTCCAAAAATATTGACCGCCACTACCGGCTTTCTTTAGAAGGAGAGTACGTCCAGGATGCCGATCGGCTGGAGTCTTTGGGGGCCATGGGGATTGCCCGGGCCTTCGTTTACAGTGGCAAGCACGATGACAAGATCTACGATCCGGAAATCCCGCCGATGGAACTGGTCAGCCATGATCAATACCGGAATCATGAAGAAACTACGATCAATCATTTTTATGAAAAGCTTTTTAAGCTGGAAGGGCTGATGAACAGCCGGGCGGCCCAAAAAGAAGCCCGCCGGCGGACAGAATACATGCGGGATTTTGTCCGTGAATTTAGACATGAATGGTATTTAGATTAAATTTAAAGAAGTTTACCTCTTCTTAATAAAATACAGAAATATTTAAATAATGCCGAGAATCCTTGCTATACCAATTGATCCGGGAAATAACAGATGGATTTCAAATGAAACTATCCTCGCTTTTCTCTAACACGAACATTAAACTTTTGGTTAGACATGTGAGTCAATCATCAGTATAGACAAGTAAGGAGAAAGCACAATGAAAGTTTCCAAATTTTTAGGAGCTGGAGCAGCGGTAACATTATCTGCTTTAATGCTGGCGGCCTGCGGCTCAAGTTCCTCATCTTCCAAGTCGACCACCAGAAAGACCTTGAACTGGACGGTCGCGTCAGAAATCCCGACCATGGACTTGTCCAAGGCCACGGACGCTACTTCCTTCAACCAGATCTCCAACACCATGGAAGGGCTCTACCGGCTGGGCAAGAACTCTAAATTGGAAAAGGGGCTGGCAACCAGCGAGAAGGTCTCTAAAGACGGCTTGACTTACACTTATACCCTGCGCAAGTCCAAGTGGAGCGACGGTACGGAGTTACGGCCAAGGACTTCGTCTACTCCTGGCGAAGAACGGTTAACCCGAAGACGGCTTCCCGGTATTCTTACCCTTTCTCCGGGATTAAAAATGCCGATGCCATCGTAGCTGGCAAGAAGTCAGTCAACAGCTTGGGGATCAAGGCTGTCGGCAAGTACAAGCTGGTTATCACTTTGGAACGGCGGATTCCTTACTTTGACAAGCTGATGGGCTTTGCGGTCTTCTTCCCGCAGTCTGAAAAGGTGGTCAAGAAGTACGGCTCTAAATACGGTACGGCTTCCAAGTACATGATCTACAACGGTCCATTCGTGCAAAAGGGCTGGACCGTGTCCAATCTTTCCTAGAAGATGGTTAAGAACAAGTACTACTGGGACAAGAAGAGCGTCAAGCTGAACACGATCACTTGGAGTGTGCAAAAGACGCCATCAACTTCTTACAACCTTTACCAAAGCGGCAAGCTTGACTACACTAGCCTGGACTCTTCACAAACCAAGCAGCTGAAGTCAACCAAGGGCTACACCACCTTGAACAAGGGGGCAACCTTCTACATGCAGTTCAACATTGCCAAGAACAAGTACCTGGCCAACACCAACATCCGGAAAGCCATCTCTTTGGCCGTCAATCGGAAGGGGCTGGTTTCATCACTTGGTGGCAACAACGTGGCGGCCAATACTCTGACCACGCCAGGCTTAACCGATGTCAACGGCAAGGACTACACCAAGCTGCTTTCATCATCAGCTGAAAGCCTCTACCCGTCCTCAACCAAGAAGAGCGAGGCGGTTAAGTACATGAACAAGGGCTTGAAGCAATTGGGCGTAAGCAAGTTCAGCTTCAAGATCCTGGCTGACGACACTGACTCCGGCAAGAAGACAGCGGAACTGCTGCAGTCCAACATCGAAGCCACCTTCGGCAGCAAGGTCAGCGTCAGCGTCCAGAACCTGCCGTTCAAGACCCGTCTGTCCCGGTCAACTGCCGGCAACTTCGACATCGTTGTCTCCGGCTGGAGCGCCGACTTTGCCGACCCGATCTCCTTCCTGGACCTGTTCACTTCCACCAATTCTGAAAACAACGGGAAGTGGAAGAACGCAACTTATGACAAGCTGATCGCTGACTCCAAGACCACGTCTTCAACCAGCAAGCGCTGGAGCGACCTGACTAAGGAAGAAAACATCCTGCTTAAGGATGCCGGTGTAGCTCCGCTTTACTACAGCACGACTGCGTCTTTAATCCGGCCGAGCGTCAAGGGCGTCATCCAGAACCGGGGGACTTGGAACTTCAAGAACGCCTACATCACCAGCAGCAAGTAGCGGTATAACAGCAAAATTAAAAGAATTTGACAAGAAGCGACCGTACGGCCGCTCTTTTTTTACCTTTTTCTTGTCATTTTTCGCTTATTTTTCGGCAAAAATTTATTTCTCTTTAAGTTAGCCCTTGAAAAGAGTCTAACTTAGAATTATAATCAATCTATCATGTTGGCTGAGGGGACGGCTTTAAGCTGTGTTGGCCATCTTTTCAGCCCAAACAAATATGTGTTATAAGGAGAAAAAGATGAAGTTATCTAAGACTTTTAGCGTTGGTGCAACTGTGCTGGCATCAGCTGCTCTCTTGGCTGCCTGTGGCAGCAACAGCAGTAAGGAATCCTCTTCTTCAAAGAAGACTTTGAACTGGACGGTTGCTTCTGAAATCCCAACCATGGACATGTCCAAGGCCACTGACACAACTTCCTTCAACCAGTTGTCAAACACTATGGAAGGTTTGTACCGTTTGGGCAAGAACTCCAAGCTGGAAAAGGCTTTGGCAACCAGCGAAAAGGTTTCTAAGGACGGTAAGACTTACACTTACACCCTGCGCAAGTCCAAGTGGAGCGACGGCAGCGAACTGACTGCCAAGGACTTCGTCTACTCATGGCGCAGAACTGTTGACCCAAAGACTGCTTCTCAATATTCCTACCTCTTCTCCGGGATCAAGAACGCTGACGCGATCGTAGCCGGCAAGAAGAAGCCTGAAACTCTGGGGATCAAGGCCGTTGGCAAGTACAAGCTGGTTATCACCCTGGAACGCCGGATCGCTTACTTCGACAAGCTGATGGGCTTTGCTGTCTTCTTACCGCAATCAGAAAAGGCCGTAACCAAGTACGGCTCTAAATACGGTACTGCGTCCAAGTACATGCTCTACAACGGTCCGTTCAAGCAAACCGGCTGGACTGGCTCAAACCTGTCTTGGAAGATGGTTAAGAACCCATATTACTGGGACAAGAAGAACGTCAAGCTTGACACGATCACTTGGAGCGTACAAAAGACTCCATCAACTTCTTACAACTTGTACCAGTCAAACAAGCTGGACTACACTGGCCTAGACGCTTCACAAACCAAGCAATTGAAGAACCAGAAGGGCTACGTAACCTTGAACCAAGGTGCTACCTTCTACCTGCAATTCAACATTGCCAAGAACAAGTACCTGGCTAACACCAACATCCGCAAGGCCTTGTCACTTGCTGTTGACCGGAAGGGCTTGACTTCATCCCTGGGCGGCAACAGTGTTCCAGCCAACACTTTGACTCCAACTCAATTGACTGACGTTAACGGTGAAGACTACACTAAGCGGATCTCCAAGTCTGCTGAAAGCTTCTACCCAGCTTCAACCAACAAGAAGGAAGCCGTTAAGTACTTGAACAGGGGCTTGAAGGAACTGGGCGTAAGCAAGTTCAGCTTCAAGATCTTGTCCGACGACACTGACTCAGGCAAGAAGACTACTGAGTTCCTGCAATCAACCTTCGAATCAACCTTCGGCAACAAGGTTAGCGTTTCAGTTCAAAACCTGCCATTCAAGACCCGTCTTTCCCGGTCAACTTCCGGCAACTTCGATGTCGTAGTCTCCGGCTGGAGTGCCGACTTCGCTGACCCGATCTCCTTCCTGGACCTGTTCACTTCAACTAACCCAGAAAACAACGGTAAGTGGAAGAACACTTCCTACGACAAGCTGATCGCTGACTCCAAGACTACTGCTTCAACCAGCAAGCGTTGGGACGACCTGACTAAGGCAGAAGACATCCTGCTGAACAATGTCGGTGTTGCTCCGCTTTACTACAGCACTAGCGCTGCTTTGATCCGTCCAACTGTTAAGGACGTATACCAAAACCGTGGTACTTGGAACTTCAAGGACACTTACATCAAGTAATCAAGCAAAAAGAAGAGGCTCAGCCTCTTCTTTTTTGTGCTATAAGTATTTTTAGATTGACTTGTATCTGTTTTTGGATATTTAGATTGTTGAAATAAGATAGCGCTTTTTCTTAAAAATACTTGAAGAAGCATAAGCAGAGAACTATAATGAAAATATCATTAAGGGTGGCTGTAGAGCTTTAATTTGTGTAGGCGCTGGAACAGTCAGTAAAAGCAAGGAGAAAAAGATGAAATTATCTAAGACTTTAAGCCTGGGAGCCACAGTTCTGGCTTCAGCAATAGCAGTTCTTCTTCATCCAGCAGCAAGAAGACCTTGACCTGGATGGACTCAGCCGAAATTCCAACGATGGACCTCTCAAAGGCCACCGATGCGGCTTCCTTCAACCAGATTTCCAACACCATGGAAGGTCTCTACCGCTTAGGCAAGAATTCCAAGCTGGAAAAGGGACTGGCTACCAGCGAAAAGGTTTCTAAGGACGGGAAGACCTATACTTACACCTTGCGTAAGTCCAAGTGGAGCGACGGCAGTGATTGACCGCCAAGGACTTTGTCTACTCTTGGCGCCGGACCGTCAACCCGAAGACTGCTTCTCAATATTCTTAGCTCTTCTCCGGGATCAAGAACGCTGACGCTATCGTTGCCGGTAAGAAGCCAGTCAGCTCTCTGGGGATCAAGGTTGTTGGCAAGTACAAGCTGGTTATCACCCTGGAACGGCGGATCTCATACTTTTACAAGCTGATGGGCTTTGCTGTCTTCTTCCCGCAGTCAGAAAAGGCTGTTACCAAGTACGGTTCTAAGTACGGCACGGCTTCTAAGTACATGCTCTACAACGGGCCATTCAAGCACGTTGGCTGGACCGGGTCCAACCTGTCCTGGAAGATGGTCAAGAACCCATACTACTGGGACAAGAAGAGCGTCAAGCTCGACACCATCAAGTGGACTGTTCAAAAGACTCCATCAACTGCCTACAACCTCTACCAGTCAAACAAGCTGGACGCGACTGCTTTGGACTCTTCACAAACCAAGCAATTGAAGAACCAAAAGGGCTACACCGAACTTAACCAAGGTGCTACCTTCTACCTGCAATTCAACATTGCCAAGAACAAGTACCTGGCTAATGCTAACGTCCGCAAGGCTCTGTCACTGGCTGTCAACCGGAAGGGCCTACCACCATTCTGGGCGGCAACAACCAGCCAGCCGACACTTTGACTCCAACCCAATTGACCAACGTCAACGGGGAAGACTACACCAAGTTGATCCCAAGCTCAGCTGAAAGCCTGTACCTGGCTAACCCGAACAAGAAGGAAGCCGTTAAGTACATGAACAAGGGCTTGAAGGAACTGGGCGTAAGCAAGTTCAGCTTCAAGATCCTGTCTGACGACACTGACGCCGGCAACAAGACCACTGAAGCCCTGCAGTCTAACTTCGAATCAACCTTTGGCGACAAGGTCAGCGTCAGCGTGCAAAACCTGCTGTTCAAGACCCGTCTGTCCCGGTCAACTGCCGGCAACTTCGACATCGTTGTCTCCGGCTGGAGCGCCGACTTCGCCGACCCAATCTCCTTCCTGGACCTTTTGACCAAGAGCAACGCCTACAACTACGGCAAGTGGGAATCAACTGCCTACAACAAGAACGTTTCCCTGTCCAAGACCACTGGGTCAACCGCAACATGCTGGAAGGCAATGGTGGCCGCTGAACGGGCCCTGCTGGAAGACCAAGGGGTTATTACGGTTACCCCGCTGTACTACACCAACGAAGCTCCCCCAGCGTCAAGGGCGTTGAATTCTGGCTATTTCTCTTTGCTGGTGAATTTATAATTGTCAAAAGCCTGGAAATCTTCTATAATGAAAAAAAAAGATTAGATGCTGATGAACTGCTAAAAATGTGTTTTACAAAAAAGTTTTTTTGACCAAGAGAGGACAAAACAGCGAGTAATTTTAAAAAGCTTCTGACGGCAACTGTCGCCGTATCCGGCGCCTTCTTGCTGGCAGCCTGCAGCAAGACCGCGACCAAGTCAGCCAAGCCTGTGTCCAGCAGCGGCTATGAGAAGTCAATCAACTGGATGACCACTTCTGAACTGGAAAGCCTGGACCCGGCCAAGGCCGACGATACAGCCAGTGAGGAACAGATCGCCAATACCTATGAAGGCCTCTACCGGCTGGGCGAAAACTCCGAAACCGTTCCGGGCGTGGCTATCAAGAGCACGACCTCTAAAGACAGCTTGACCTGGACCTTTTACTTGAGAAAGGACGCCAAGTGGTCAAACGGGGACCCGGTAACGGCGGAAGATTTCGTTTATGCCTGGCGCCGGCAGGTTGACCCCAAGACTGCTTCCAGCCAGGTCAACAACTACGAAGGCATCAAGAATGCTATCAAGATCTCTGAAGGCAAGAAGAAGCCGTCCAGCCTGGGTGTCAAGGCCGAAGGCAAATACAAGCTGGTTGTGACTTTTGAAAAGAAGATTCCTTATTTTAAGGTCGTTACGGCCATCAGCTTGAAGCCGCTGGACTCCAAAGCTGTCAAGAAGTACGGCAAGCGCTACGGTACCAAATCCGCCTATGCCGTCTACAACGGGCCTTTCAAGTCCGTGGGCTGGACTGGGTCCAACCTGACCTGGAAGCTGGCTAAGAACCCGTATTATTGGGATAAGAAGGCAGTTAAGCTGGAGACGATCAACTACAGTGTCCAGAAGACCCCGTCAACTGACTACAACCTCTACCAGACCGGGAAGCTGGACGCGGCTATCCTGGACACCCAGGCAGCCAAGAGCATGAAGGGCAAGAAGGGCTACCGGGTTCTGACCTTGGGCAACACCACCTACCTCTGCTACAACTACAAGAAGAAAAAGATCTTCCGTAATGCCAACTTGCGCCGGGCCATCTCCATGGCTATCAACCGCAAGCAGCTCTTGTCCACGATCGGTACCTACAACACCCAGGCCAAGACCTTCTCAGCCACCAACGTGGTTTTAGACGGGAAGAATTTTGCCCAGGAAGCGGAAAGTGCCAACTCCAGCGTGAACAAGTACGTGGAATACGACCTCAAGTCCGCCCGCAGTTACTTCAAGAAGGCCTTGAAGGAACTGGGCGTCAAGAAGGTTTCCTTTACTCTGATGGCTGACGACGACGACAGCTACAAGAAGCAGACGGAATTCATCCAGAGTGCCTTGACTGAGGCTTTTGGCGGCAAGATGACCGTTTCCGTCAACAACCTGCCAAAGACAACCCGGGTTTCCCGCCAAATTGCCAATAACTTTGATGTCGTTCTGGGCGGCTTGACCAGCGACTTCCCGGACCCATATCACTTCCTGGCTTACATGCAGTCAGGACAGACTTACAACTTCGGCAAGTGGTCTAATAAGGAATACGATAAGGCTGTCAAGGCTTCCTTGACCATGGACAAGACCAAGCGCCGCAAGGCCTTGCTCAAGGCGGAAAAGATCCTAATCGACCAGGAAGCTATCAGCCCGCTTTACCACATGGGTCAGGCCTGGATGATCAGACCAAATATCAAGAACCTGGTCTTCAACGGCGAATACCCAGACTTTAAGACAACTTACGCGGTTAAAAATTAAAATTTAACCGTGGTATAATTGAAAGTTGAGACGTTAGCAATAACGCTCAACTTTTTCTTTATTCCGGGGTTTATGTCCGGGAATAGGATATTTTTTGGGCTAAAGGAGGGAGGCCACTAAAGATGTCTGCTGGCTGAAAGTTAAGAAAATTAGTTTTTACAGGAAAAAAGACTAATATTTTTATCTTAGCCGAACACTTATTTAAAAAGGGTCAGTCTAAGTTCCAGATAGACTAAAAAAGAAAAAATCAAAGTTTAAGTTAGTTGCCAAATGATGGGAAAAACGGACAAAAAGCCCGTAGTGCTTGACTTTTAGGGGCACAGTTTTATATTATCGTATGGTAATTTCTTTATTTTTTGGTATAATAAGAAAATATTAAAAATGTAATGCTGATTAAAGCGAAAAAGTGTAAGGAGCAATACTATGGCTAAATACTTACTAAAACGTATTTTCTACATGATCCTCACTTTGTTCCTCGTTGCGACGATTACCTTCTTCTTAATGAAGATGATGCCAGGTTCTCCGTACGCCAACGAAGCAAAGATGACGGCTACCCAAAAGGCAATTATGAACAAGCAATACGGCTTGGACAAACCTGTTATTGAACAATACATCACTTACCTGGCTGGAGCTGCGCATGGTGACTTTGGGATTTCCTTCCAATACAGCAACCAGCCTGTTTCTAGCTTGATCGGGGCGCGTTTGGGCGCTTCTGCTCAATTGGGTCTGCAAGCTCTGGTTGTCGGGATTATCCTGGGGATCATCATCGGCTCAATCGCGGCTGTGAACCAAGGTACCTGGATCGACTCCACCGCGACGATCGTTTCTATCATCGGTAAGTCAGTTCCTAACTTCGTTCTGGCGGTATTGCTTCAATACTACATCGGCCTGAAGCTGGGCTGGTTCCCAATCGCTGGCTGGGGTGAAGCAGCACAGACGATAATGCCGACTATCGCCCTCTCGGTAGGGCCGCTGGCCGAAACAGCCAGATTTATCAGAACGGAAATGGTCGACACCTTGAGTTCCGACTACGTTGAACTGGGCAAGGCCAAGGGTCTTAGCCGGATCGAAGTCATCAGAAAGCACACCCTGCGTAACTCAATGATTCCATTGGTTACCTTGATCGGGCCATACGCCGTTGCTTTGATGACTGGTTCAATGGTTATCGAAAACATCTTCAACATTCCTGGGATCGGGGAACAGTTCACCAAGTCAATCCTGACTAACGACTACCCGACCATCATGGGTGTAAGTATGGTTTACTGCTTCGGTTTGGTGGTAATCCTGCTGCTCACTGACATCGTGTACAGTCTGATCGACCCACGGATCAGACTGACTGACTAACGGAAAGCGAGGTTAAAATCAATGGATCAAGACGCAAGTAACGTAAAGATCACACCTGAATCCTTTGAACACGTGGAAAAGGGTGACATGCAAAGCGCGGAACACATTTCTGGTCCCTCACTTTCTTTCATGCAGAACGTGTGGATCAGATTCAAGAGCAACAAGGCAGCCATGATTTCCGCTGTGATCATCATCGTGATGGTGGTTATCGCTTTTGGTTCCAGCTTCTGGATCAACAACTCCAGCTTGGTTAAGTCAGCTCCGCAATACGCCAACCTCCCGGCCAAGTGGAAGGGCTTTGACTGGCTCAACGGCTTGAACGGGAAGATCAAGCAAAACGGCGTTTGGACTGATGCTTACTCTTCAGTGCCAGCTGGCAAGTACTTCGTTGCCGGGACCGACTACCTGGGCCGGTCATTGGCCCAAAGAATCATCTACGGTACCAAGATCTCCTTGATCGTTGCCGTGGTTGCGGCCTTCTTCGACCTGGCCATCGGGGTTACCTACGGGATCATCTCCGGTTGGAAGGGCGGCATGACTGACAACATCATGCAACGGATTATCGAAATCATTTCTTCAGTTCCTACCCTGGTTATCGTGGTGCTGATGCTGGTTGTCTTGAAGCCCGGCATCACTTCCATCATCTTGGCCCTGGCCATTTCCTCATGGACGACCATGGCTCGGCAGATTCGGGCCGAGACCTTGTCGCTGAAGAATGAAGAATACGTTCTGGCAGCCCGGTCCTTGGGTGAATCAACCTTTAAGATCGCTACCAAGCATCTGATTCCAAACCTGTCCAGTATCATCATCATTCAAACCATGTACACCATCCCGGGCGCCATCTTCTTCGAAGCCTTCCTGAGTTTCATCGGTATCGGTATTTCCGCGCCTGAAACTTCCCTGGGTGTGCTTTTGAACGAAGGGCAGAAGAACTTCCAGTTCCTGCCATACCAAATGTGGTACCCAGCAGCAGCCCTCTGTGTTTTGATGATTGCCTTTAACCTGCTCGGCGACGGTCTGCGTGATGCCTTCGACCCTAAGGGCCAAAGATAAGGGAGACGAACATATGGCAAATAGAATTTTAGACGTTAAAAACTTAAAGATTGACTTCCACACTTACGCTGGTGAAGTTAAGGCCATTCGTGACGTTTCATTCCACCTTGATGAAGGTGAAACTTTAGCGATCGTTGGTGAATCCGGTTCAGGCAAGTCCGTTACCACCCGGAGCATCATCGGCCTTTTGGCCAAGAACTCCCAGATCATGGGTGGGCAAATCCTTTTCCACGGCAAGGACCTGCTGAAGATTTCCGAAAAGGAATGGCAGCAGATCCGTGGTAACCAGATCGCCATGATCTTCCAGGACCCAATGACTTCTTTGGACCCGACCATGAAGATCGGCCAGCAGATTGCTGAACCATTGATCAAGCACAAGGGCGCTTCGAAGAAGGAAGCCTGGGCTAAGGCCTTGGAAATGATGAAGGCCGTTGGTATTTCGAACGCTGAAGAAAGAATCAACCAATACCCGCACCAATTCTCTGGTGGTATGCGGCAAAGAATCGTTATCGCCATTGCCTTGATCTGTGAACCGGAAATTCTTTTGGCTGACGAACCAACTACTGCCTTGGACGTTACTGTGCAAGCTGAAATCCTGGACTTGATGAAGGACTTGCAAAAGAGGGTCAAGACTTCCATCATCTTCATCACCCACGACTTGGGTGTCGTTGCCGGGATGGCTGACCGCGTTAATGTTATGTACGCCGGGGAATTTTTGGAAAAGGGGACGGTTGACGAAATCTTCTACAACCCGCAACACCCTTACACTTGGGGCTTGATCAACTCCATGCCGACCCTGACCAGTGAAAAGCTGGAATCAATTCCAGGGACCCCGCCAGACTTGCTTGATCCGCCAAAGGGCGACCCATTTGCCCCGAGAAACAAGTACGCGATGAAGATCGACGCGCAAATGAAGCCGCCGTTCTTCAAGGTTTCAGAAACCCACCAAGCTGCTACCTGGCTCCTGCACCCAGACGCGCCAAAGGTTACTCCGCCTGATGAAATCGTGCGTCGCTGGGAACACTACAAGGAACTGCAAGCAGCTGACGAGGATTAAAGGAGAAGCAGAATATGCCAGAAGAAAGAAAAAAGATTTTAGAGGTCAAGCACTTGAAGCAATACTTCAAGAACGGACGCACCGTCACCAAGGGTGTCGACGACGTCAGCTTCGACATCTATGAAGGTGAAGTCTTCGGCCTGGTTGGTGAATCAGGTTCTGGTAAGACCACCACTGGCCGGTCAATTTTGCAGCTGTACAAGCCAACGGCCGGTGAAGTCCTCTTTGAAGGCAAGGATGTGGCCAAGCTACATGGCCGCGACGAACAATTGGCTTTCCGCCGCGACGCGAAGATGATCTTCCAGGACCCATACGCTTCCCTTAACCCAAGAATGACGGTTGAAGACATTATCGCGGAAGGGCTGGACATCCACCACTTGGTTAAGGACAAGGCAGAACGGCGCAAGCGGGTCGAAGACCTGCTGGAAACGGTTGGTTTGAACCGTAACCACGCTTCCCGTTTCCCACACGAATTCTCCGGTGGTCAGCGGCAAAGAATCGGGATCGCCCGGGCCTTGGCCGTTGAACCGAAATTCATCGTGGCCGACGAACCTATTTCAGCCTTGGACGTGTCCATTCAAGCCCAGGTTGTCAACTTGATGATCGACTTGAAGAAGCAGCATGACTTGACTTACCTCTTCATCGCCCACGACTTGTCCATGGTTAAGTTCATCTCTGACCGGATCGGGGTTATGCACTACGGTAAGCTGCTGGAAGTCGGCAGTGCTGACGAAGTTTACGACCACCCGCTGCACGACTACACCAAGAGTTTGATCTCTGCCGTGCCGCAACCAGACCCGGAAATCGAACGGTCCCGGAAGCGGATCGATTACGAATACGGCAAGTTCGAAGGCGACGGTAAGGACGATCAACGGTCCATGCACGAAATCCGTCCAGGCCACTTTGTTAAGTGTACTGACGATGAAGTTGCCTACTACGAAAAGGTTGCCCAAAGCTACGAGAAGTAGTTTGATAAAGCAAATCAAATAAAGAAAGAGAGCTCCAGAGAGCTCTCTTTTTTGTGTTTCGTCTATTTTTGGTTCTTCTAATTGAGATTTATCGGCTGGAACATTCTGGCCGGCCTGTCCTTGGGGATCGGCTTCCTCTGGCTGGTGCCTTACTACAACGAGGCTCACGCTGAGTTCTACCGGACTTTAGCCGGCGACCAGTTTAAGAGCAAGGATTAAGTCCAAAGTAAAAACCGCTCAGTTCTCTAACAGAACTTGAGCGGTTTTTTCGTGCTTAATCCCGGTGAAGGGCGGCGATGACCAGGCCCAGTATGACGAGCGAGATCAAGCCGACGATAATCAGCGTACCCATTAGGCTAATGAGTCCCAAGGAGCAAGTTCAACAGGAGTTGAAGAGAGCAACTCTTGCTGGTCCTTGGTCAAGTATTTCTTGTGGACAACGACTTCGTAGACGTATTCCTTGAACCAGTTGTGGCTCATGACGAAGAAGCCCTTTTCCCCGGACTTGTCGCCCCAGGAGTTTTCCACCTTCCATTGGCGGATGTCGCCCTTATCTTCATCAACCCCGACCAGGGTCATGGCGTGGGAAACTTCACCAACGCCGGTTGCCAGGCGGTCAGCCTTGGACAAGCTGAGGTCAACGGCAAAGAGGTCTTCCAGCTTGTAGAGGTCAGTGTCCAGGTAGCCGGTCTTGTGGTCCATCTGCCGGCCAACATCATTGCCGAACCAGACAGCTTCCCCGTCCTTTAATTGGGCAACAGCGGCTTGCTCCAGGTATTCCATCGGCACGTTCAAGAAGAGGATCGGGCTGCCGCCTTCAACGTTGTCTTCAGCGCCCAGGTGGTAGAGCTTGCCGTATTCGTGGTCTGGGGCGTTGGTCAAGACCACGTAGTCGTCCAGGTCGACGTCAAAGTACTTGTTGAAGAAGGAGACTGGGGTCAAGTTCTTTTCCAGGTGGTAGTTCTTGTCGTCGTCTCTGTATTCCAGGTCAAAAGTCTTTGGCGGTTCACCAACGGCGATGGCAACCATCCGGTAGATTTCGTTTAAGAAGGTCTTGCGGGCCTTTTCCAGCCCTTCCTGGTCACCTGCTTGAGCCAGGCGGCGCAAGGCCAGGGCGTCTTTTCTTTCCTTGTCAGCCAGGGCGCTGGCCAAACCGTTAGTAGCGGAAGTGTTGAAGCTTTCAGGCATAACGTAGCTTGGCACGACACCATACTTCTTGACCAAAGAGACGGCCATGTGCCATTGGCCGCCGTCGTGGCCGGCGAAGTCGAAGTAGCTGCGGACTTCCCGGTCGTCTAATGGTTTATCAGCGGTTTCGATCACTTTTTCATAGAAAAGGTTGGCTCTTTCCAGCTTGTCCCAGAAGAAGTTGTAGCTTTGGGACAGGGTAAAGTTCTTGGCCTTATGCTTGGCGCCGAAGTCGTGGCGCAAGACGTTCAAGGTTGAGAAAAGCCAGCAGCGGCCGGACTGCTTTTGGTTGGTGACGTTGTCCGTTGGCAATTCAGTTGAAAAGACCCGGGTCAGGCGGCCAGCCACGCGTTCATTGTAGGAAGCTTCCAGAACACCGCTTCTGGCGGCAGCGCGGGCGATGACTTGGTTCTTCGGGTCAGCATTGAAATTAGCGCTGAATTCCGCCAATTCCTGCAGAGTTAATTCATGACTCATATTTTTTCTCCTTTTGTTTTAATATTAATAAGTCAATGTTAACATACCTGCTTAAATTAAGGAATCCCAAGGATCAAGTTCGATCGGCTGATTCTTGAGCAGGTCCAGGATTTCAGCCGGCACGTGCTTCTTTTGCACGGCGACCTCGTAGGTGTATTCTCTGAACCAGTCAGCGCTCATGGTGAAGTAGCCCTTTTCCCCGGACTTGTCGCCCCATGAGTTTTCCACCTTCCATTGCCGGACTTGCCCGCCGTCCACGTCAACGCCGACCAGGGCCATGTCGTGGGAAGATTCCCCGATCCCGGTCGCTAGGCGGTCAGCCTTGGATAAGTGGCTGTCGATGTCCAAAAGCTGGTCCAGCTGGTAGAGATCCAGGTCCATGAAGCCGGTCTTGCGGTCCATCTGCCGGCCAACATCATTGCCGAACCAAACAGCTTCTCCGTCCTTCAGCTGGGCAATCGCCGCGTCTTCCAGATATTCCATCGGCACGTTGATGAAGAGGTTAGGGTAGCCGCCCTTAATGTTGTCTTCAAAGCCTAGGTGCAAGACCCGGTTCATTTCATGGTCTGGGGCATTCGCCAAAACCACATAGTCGTCCAGGTCGGTCGCGCAGTACTTTTTGTAGAACTGGACCGGAGTCAAGCCCTTATCCAAGTGGTAGTTCTTGTCGTCGTCTCTGAATTCCAGGTCAAAAGTCTTTGGCGGTTCACCCAAGGCCGTAGCCATGATCCGGTAGATCTGGCTTAAAAAGTCGGTCCGGGCCGCCTCCAACTTTTCCTGGTCGCCTGCTTGCGCCAGCCGGCGCAGGGTCAAGGCGTCTTTTCTTTCCTTGTCGGCCAAAACCATGTCCAAAGCCTGGCTGTGGTTGCTGTTGAAGCTTTCCGGCATGGAATAAGCCGGCACCACCCCGTATTTGGCGATGAGGGAAGCCGCCATGTGCCACTGGCCGCCATCGGTCTGGCACCAGTCAAAGTAGCCGCGGACCGTCCGGTCAGTCAAAGGCCGGTCAGCCGTCGCAATGATCCGGTCGTAGAAGTAGTTGGCCCGTTCAATCTTGTCCCAGAAAAAGTTGTAGCTCTGGGAGAAGGTGAAGTTCTTAGCCTTGTTGGCCTTGCCAAAATTGTGCCGGACCACGTTCAAGGTTGAAAAGAGCCAGCAGCGGCCGGATTGCTGCTGGTTGGTGACATTGTCAGTGTCCAGCTCGATAGAAAAAGTCCGGTTCAGCCGATGGCTGACGGCCGGGTTGTAGGCGGCTTCCAAGAGGCCGCTTCTTCTGGCGGCCCGGGAAATTACTTGATTTTTAGGATCAGCGTTGAAGTCCCGGCTGAAGGATTCCAGCAGCTGGGGGCTTAATTCGTGTGACATGAAAAATCTCCTTTAGCAATAGATGATTATAGAATAATCTTACGCTAAAGAGGACAAAAAAAGAAGCCCTCGCGGGCTTCTCTAAGCACTCTGGGCTTATTCGATAGTAATCGTGTCTTCGTTTTCTTCTGGAGCTGCCTTTGGCAGGGTAACCGTCAAAACGCCCCCGTCAAGCTTGGCGCTAATGCCTTTCTTGTCAACGTTCGGCAGGCTGAAGCTTCTGGAAACTGACCCTTCGCTGCGTTCCTGGCGCAAGATGTTCTTCTTCTTGTCGCTGTCATCCTTGAAAGTGCTACGGTGGGCGGAAATCGTCAAAATCCCGTCAGTGTAGGAGAGGTGGATGTCATCCTTGCTCATCCCCGGCACGTCGATCTTGACGGTGTATTCGTGCTCATCTTCAGCAACGTCTGACTGCAAAATGTTTCTGAAAGCGTGGCTGTCCAATAAGTCCTTGGAGTTGTCAAGCCAGCCGCCTATCTGATCGAACAAGTCGTTGTAACGGTTCATTAAATCATTAGTCATAATCTAAAACTCCCCTTCAACAAATTATTAAAATTGCCTTTTATAAACAGAGGCGGGGAGGGAAGCGGTGGAGCTACTTTCTTTCCCGACAACTATATTATAGTCCCTTTTGGGAAAAATGGCGTAATTAGCACTCAACTTTTTTGACTGCTAAATAAAATTTTTGGCAAAAAGACCTGGGCGGGCTATAATGATTTAAAAATGGAAGTGAAAGGCGACTGGCAAGCATGGTATATTATCAGAAAATGACCCCCGAGGGCTACAAGCAGATTGAAGACGAGATCGCGGCCTTGAAGGCTGACCGGCCCCGCCGGGTGCAGAACCTGAAGGAGGCCCGGGCCCTGGGCGACTTGTCCGAAAACACTGAATATTCAACCGCTAAAAGAGAACTCCGCCACCTGGACAGCCGGGTCCGCTATTTGAACAAGCAGCTGAAATACGCGGAAGTCATCGAAACGGTCAACGACGGCAAGGTCAACCTGGGCAAGCAGGTGGAAATCCGCTATGAAGACGACCAGGAGGTTGAAGAATACCGGATCGTCGGCCGGATGGAAGAGGCCGTAGGGGATGGAAAACTGCCCTTTGACTCGCCTTTGGGCCACGCCCTGATGAAGCACAAGGCCGGAGACCGGGTGAAGGTTAAAGCCCCAATGGGGGACTATGAAGTGACCATTTTGTCGGTCAAGTAGCAAACAGCAGAAGAAAATATAAAGACAAGAAAAACCGTTTCGCCTGGCGAAACGGTTTTTGTGTTGATAGCTTTTTTACCGTCTTACAGAGTCCATGGGTCTTGCAAAACGATGGTTTGTTCCCGGTCTGGGCCGACAGAAACAGTCACGACAGGGATGCCAGTGATTTCACTGATCCGCTTGACGAAGGCCTGGGCCTTTTCTGGCAGGTCTTCCCAGCTCTTGGCGCCGGTGATGTCTTCTTCCCAGGCTGGCAGTTCTTCGTAAATTGGCTGGCAGGCTTCAACTTCCTTCAAGCTGGCTGGGTAGTAGTCAATTTGCTTGCCGTTTAAGTCGTAGGCCACGCAGATCTTGATCTTGTCAAAGCCGCTGAAGACGTCCAGCAGGTTCAAGCTCAAGGCGTTGATGCCGGCTACGCGTTTGGCGTGACGGAGGGCAACTGAGTCAAACCAGCCAACCCGGCGCGGACGGCCAGTAACAGTACCGTATTCGTGGGCGATGTCCCGGATCTTGTCGCCGGTTTCATCGTGCAGTTCAGTTGGGAACGGGCCGGCACCAACTCTGGTAGTGTAGGCCTTGCAGATGCCCAGGACAGTCTTGATCCGGTTAGCCCCGATCCCGCTGCCGGAAGCGATCCCGCCGGAAACTGAGTTAGAAGAACTTACGAATGGGTAGGTACCCTGGTCGATGTCCAGCATGATCCCTTGGGCACCTTCAAAGAGGACCTTTTCGTTCCTGTCCAGGGCGTCGTTGACGTAGAGGGAAGTGTCGCAAACGTATTTGGCGATCCGTTTGCCATATTCAACGTACTCGTTGTAGATTTCGTCAAAGTCCATGGCTGGCTTGCCGTAAACCTTGGTGAAGAGGGCGTTCTTTCTTTCCAGGTTGAAGCGGAGCTTTTCCGCAAAAGTTTCCGGATCGATCAGGTCGCAGACCCGGATGCCGATTCTGGAAGCCTTGTCCATGTAAGTTGGCCCGATCCCGTTCTTGGTGGTGCCGACCTTCAGGTTGCCCTTGGCTTCTTCTTCATAAGTGTCTTGCATTATGTGGTAAGGCATGATGATGTGAGCGCGGTTGGAGATCTTCAAATTGCTTGTGTCGATCCCGCTCTTTTCCAAGTTGTTCAGTTCGCCCAGGAGGACTTTAGGGTTGATAACCACCCCGTTGCTGATCACGGCGCCCAATTTAGCCGCGAAGATACCAGATGGAATCAAGCGCATCTTGAATTCCTTGCCGTCAAAGTCGATCGTGTGGCCAGCGTTGTTACCGCCGTTAGCGCGAACTGACAGGTCTGCCGTCGTCCCTAAAAAGTCTGTAATCTTACCCTTGCCTTCGTCGCCCCATTGGCTGCCGACAACTGCGATTGATGTCATTTTTTCACCTCAAAAAATATTTCGTAGAACTTACGTTAGAAAGGTTAGCATTTACCGGGCAATTAGTCAACATGAAATCCGAATAATATTTTCAGAACGTTCGTGAATAGTTCGAATAAATCTTGACTTTTATGGGAAATGTCAGTAAAGTATCAAAGGTACTTTAAAAAAGGAGCTGGCAAAAAATGAACAATTATTTCAGCATGGAAGCTTTTGACTATGATGATATCCAACTGGTACCCAACAAGGCCATCGTGAAGAGCCGGAAGGAATGTGTCACGAGCGTCAAGTTTGGAAACCGAACTTTCAAGATCCCAGTCGTTCCCGCCAATATGGAAAGCGTCATTGACGAAAAGCTGGCGGTCTGGCTGGCCCAAAATGGCTATTACTATGTTATGCACCGCTTCCAGCCCGAAAAGCGGGCTGACTTCATCAAGATGATGCATGAGAAGGGACTTTTTGCATCGATTTCCGTCGGCATCAAAGATGATGAATATGACTTCATCGACGAACTGGTGGAAAAGGACTTGATCCCGGAATACACCACGATCGACGTGGCCCACGGGCACTCAGTCTACGTGATCGACATGATCAAGTATATTAAGGAAAAAATGCCGGACACCTTCTTGACGGCCGGCAACGTGGCAACGCCGGAAGCCGTCCGGGAACTGGAAAATGCCGGCGCGGACGCTACCAAGGTGGGGGTTGGCCCGGGCAAGGCCTGCATCACCAAGCTCAAGACCGGTTTCGGGACTGGCGGCTGGCAGCTGGCTGCCCTCAGAATGTGCAGCAAGGTGGCCAGAAAGCCTTTGATCGCTGACGGGGGGATTCGCCACAACGGTGACATCGCCAAGTCTGTCCGCTTCGGGGCCAGCATGGTCATGATCGGGTCAATGCTGGCCGGGCATGAAGAGTCCCCGGGCAACGTGATTAAGATCGACGGCAAGACCTACAAGCAATACTGGGGTTCAGCCAGTGAAGTGCAAAAGGGCGCCTACCGCAACGTTGAAGGCAAGCAGATGCTGGTCCCTTACCGGGGCAGCATCGCTAACACTTTGGAAGAAATGAAGGAAGACCTGCAGTCTTCCATCTCTTACGCCGGTGGCCGGGACCTGGAATCAATCAAGCGGGTCGACTACGTGATCGTTAAGAACACGATCATGAACGGCGACTATTAAACTGAATTTTGTAAAAAGAGGCTGAGGCCTCTTTTTATTTTTGCCTTTATTTTCTGTTCGCTTGCTTTTTAGAACAAAAGTTCGATATAATTTATTAGAACAAACGTTCAAGAAAGAAGTGGATTTTGATGTACGATTACCGCTATGAGCCCCACCGGGTTATTTTCATGATCGACAACAAATCTTTCTATGCCTCCTGCGAGGCCCTGCGCCTGGGCCTGAACCCAATGGAAGTCGCTTTAGCCGTCGTGTCCCAGCAGCCGGGGACTGACTGGGGGTCGGGCTTGATTATGGCTGCCTCGCCTTTGGCCAAGAAAAAGTACGGCCTGAGCAATGTCATGCGGGCCAGAGACTTGCCGCCTAAAGACCAGGCCCCGGACCTGATGCTGGTTGAGCCGCATATGAATCTTTACATCAAGCGCAGCATGGAGGTTTTGCAGATTTTCCGCAAGTACGCGGCGGATGAGGATATCCATGTCTATTCGATTGATGAAAGCATGATCGATATGACTGAGTCCTGGCACCTGTTTGGGGATGATCCTTATCTGGTGGCCCGGAAGATTCAAAAAGATATTCACGACAGCCTGGGCCTGTACACGACTTGCGGGATTGGGGAGAACCCCCTTTTGGCCAAGCTGGCCATGGACATTTCCGCCAAGCACCGGACTTCGATGATTGCTTGCTGGCACTATATTGACGTGCCCGATACTATCTGGAAGATTCCCAAGCTGGAAGACGTCTGGGGGATCAATGTCAAGACGGCCGACCACCTGCGCCGGCTGGGGATCAACAATATGTATGACCTGGCCCACAGCGATCCGGCTATTTTGAAGAAGGAGTTCGGAGTGATCGGCGACCAGCTTTTTGCCATGAGCTGGGGAGTGGACCGGAGCATCATCAAGCAGAAGTACCGGCCCAAAAGCAAAAGCTACGGAAACTCCCAAATCTTAAGCCGGGACTATGAAGACCAGCGGGAAATTGAGATCGTTATTCAGGAAATCGGCGACCAGGTCGCGTCCAGAATCCGGGCCCAGCATTTGCTGGCTGGCCGGGTCAGTCTTTATATCGGTTACGCTGACTACGAGGCAGATCCAGCTGGCTTCAGCATTCAAGAGAAGATCACGCCGACTGATATTTCCAGCGATTTGGTGGCCAAGCTCAGGGCCCTTTTCAGAAGAAAGTGGCGGGGGCAGGCGGTCAGACGGCTGGGAGTGACCTACAGCAATTTAGCGTCGGCCGGCTGCCAGCAGCTGACCTTCTTCCTGCCTCCAGCCGAGCAGATCAAGCAGCAGAAGCGGGATCAGGTGGTCGACAAATTACGGAAGAAGTATGGTTTTGCCAGTGTCGTCAGAGCCTCCAGCCTTTTGTCAGGGGCCACGGCAATTGCCAGAAGCCGCTTGGTCGGCGGCCACAATGGGGGCAACGCCTATGAGTAAGGAGTTTGACCAGCGGGTGACGGATTTTTTCGCCCATTATCAAGACCGGGGGATGAAGAAGTGGGCGGGCTTTTTCCTAAGCGACCACACGGCCATGATCAATAAAGAGACAAGGCAGAAAAGCGTGCCCGACCGGGCGGAAATGAGCCGGGAAGAGTGCGGGAAAGTGCTGGGAGAAGCTTTTGGCAACCAGCGGTCGGTGGCCGTCCAGCTGAAGGAAGTGGATGAAAACGGAGACCGGCCGGAGGAAATAGTTGACTTTGTCCAGGGCTACGCGGAAGACAAGGTGGTGATTGGCGAACACGTCATTGCGCTAGACGACTTGCGCTGCGTCCTGCTTTTAAGTGATTAAGGACAAAAAAGAAGCCCCGCTTCATGGTAAAGGAGGCTTCTGAGATTTATCTGTGTTTAATTGCAAAAGTTATTTTTCGTCCAGTCCTTTTTTGCCCTTGAAGATCAAGTTCAAAAGGACGGAAGAGATAGAGGCGATGACGATCCCGTTTTCTAGGAAAAGCTGCAGTTCACTTGGCAGAGCCTGAAAGATGGTTGGGTAGACGGAAACGCCTAAGCCCAGGCCCAGGGAGATGGCCACGATCAAGAGGTTATGGTTGTCGCTGAAGTCGACCTTGAGCAGCATCTTGATCCCTTGTACGGAGATGGAGGAGAACATGACCACCATGGCCCCGCCTAAAACGGCCGTTGGTATGATGGTGACCAGGGCACCGACTTTTGGCAGAAGGCCCATGGCCATCAAGAGGCCGGCTGTCCAGTAGATCGGCCTCTTGGACCGGATGCCGGACAATTGCAGGAGGCCGACGTTCTGGGAGAATGTGGTGTAAGGGAAGGTGTTGAAGAGACCACCGAAAATCTGGGCCAGCCCTTCAGCCCGGTAGCCCCGCTTGAGGTCATCTTCCGTGATGTCCTTGCCCAAGAGGTCGCCTAAGGCGAAGAAGACGCCGGTTGATTCAACCATGGAGACCAGGGCGATGATCATCATAGTCAAGCTGGATGACCATTCAAACTTTGGCAAGCCGAAGTAGAAGAATTGCGGGAAGTGCAGCCAGGCAGCTTCAGAAACTGGGGTCAAAGAAACCATGCCCAGGCAGGCGGCCAGGAGAGTGCCGACGATGAGGCCGATCAAGATGGAGATTGAGGCGATAAAGCCCTTGGCGAAGGCTTGCAGAGCCACGATCACCAAGATAGTGACGCAGCCGACCAGGAGGTTCTTCGGGTCACCGAAGTCCTTGGCAGTGGCTGACCCGCCGCCCAGGTTCTGGATGCCGACCGGGATCAAGGTCAAGCCGATAGTGGTGATCAAGGTCCCGGTGACAACTGGCGGGAAGAGCCTTTTGATTTTGGAAAAGACTCCGGCGATGAGGAAGACGAAGCCCCCGGCCACGATGATTGATCCGTACATGGTGCCGATGGAGTACTTCTGCCCGATCATTTCCAAAGGAGCAACAGCCTGGATGGCGCAGCCTAAAACGACTGGCAAGCCGATCCCGAAGTAGCGGTTGCGCAATAGCTGCAAGAGGGTGGCCAGGCCGCACATGAAGATGTCGATGGAGATCAGGTAGGTCAATTGCTCTGAGTTAAAGTGCAGGGCATTGCCGATCAAGATCGGGACCGCCACGGCCCCGGAGTACATGGCCAAAAGGTGCTGCAGGCCCAGGACAAAAGAGCGGCCTTGTGAAGGTTCTTGTGTTTGATCCATTTTTAGTAAATAACTCTCACTGTCAAAGATTAATTGAAGATAACTTGCCCGTCGGCGAATTCCTTGATGCTGGCCAAAGCTTCCAGGTGGTAGCCATGGTTAACCAGCCAGTCGTGGCCGCCCTGGAAGGCCTTCTCCACGACAACGCCCACGCCGACTACTTCAGCGCCGGCTTGTTCAGCCAGGGAGATCAGGCCCTTGGCTGCTTCGCCGTTGGCCAGGAAGTCATCGATGACTAAGATGCGGTCATTGGCATCAAGGAACTTGGCTTCAACAGAAATGGTGTTGGTCACTTGCTTGGTGTAGGAGAAGACTTCCGCGGTGTAGACGGCGTCAGTGACGGTTGAAGGCTTCTTCTTTCTGGCAAAGACCATCGGCACGCCCAGGCAGTAGGCGGCCATGATGCCGGGAGCGATCCCGCTGGCTTCAGCGGTAAGGACCCGGGTGACGCCTGCATCCTTGAAGAGGCGGGCGAATTCCTGGCCCAGGGTCATCATCAATTGGGGATCGATCTGGTGGTTCAAGAATGAGTTGACCTTCAAGACGTTGCCTGGTAAAACGACGCCATCCTTCTTAATGCGTTCTTCTAAAAGTTCCATGTGACTCCTTCCGAGAAAAGAAAAGGGCTCCTTTTACCAAACTAGGCAAAAGAAGCCGCGCAGGCAATACCGGCCCTTCTTTACCTATAGTCCGGAGTTTACGGCTCCGGGTAGAGACTGCTACCCGTATCGCAGCGATATATAAGCAGAAACATTTGTTAAGTTATTGGTAAATCTTACAGCAAAAACCGAATTAATTCAATAAGATTCGCTGAAAAATTTCTAATCTGGCGCAAAAAGTTCTAAAAGATTAAAAAAACCAGTGAATAATTCGCTTTTTGTTGACCTGGCGGCGAAAAACGTGTAAAGTTGATTAATTAAAAAGTATCAACGATTGTTTGAAAGGATAAAATCATGTCTTTGTGGGAAACCAAATTTGCTAAAGAAGGTATTACTTTTGACGACGTGCTCTTGATTCCAGCTGAAAGTCACGTTCTGCCGAACGAAGTCGACTTGTCAACCCAGCTGGCACCAAACTTGAAGCTGAACATTCCTTTGATCTCCGCTGGGATGGACACGGTGACCGAAGGCAGAATGGCAGCAGCCATGGCCAAGATGGGCGGCCTTGGGGTAGTCCACAAGAACCTTTCAATTCAAGCGCAAGCTGACGAAGTCCGTCTGGCTAAGAACACTCCGGTAACTGCCGAAGACACCTACGCTGCCGTTGACAAGGATGGCAAGCTCTTGGTAGCTGCTGCTGTCGGCGTGACCAGCGACACTTTTGAAAGAGCTAAAGCCCTGTTTGAAGCCGGTGCTGACGCGATCGTTATCGACACGGCTCACGGTCACTCAGCCGGCGTTTTGCGCAAGATCAAGGAAATCCGCGACCACTTCCCGCACAACACTTTGATTGGCGGCAACGTGGCTACTGCTGAAGGTACCCGGGCCTTGTTTGAAGCCGGCGTTGACGTAGTCAAGGTTGGTATCGGGCCTGGCTCAATCTGCACCACCAGAGTGGTTGCCGGTGTCGGCGTGCCGCAATTGACTGCTATTTACGACGCGGCTGACGTAGCTCGGGAATTTGGCAAGCCGATCATCGCTGACGGCGGGATCAAGTACTCAGGTGACGTGGTTAAGGCTTTGGCTGCTGGCGGCAACGCTGTTATGCTGGGCTCCATGCTGTCAGGTACTGAAGAAGCTCCAGGGGACGTGCAGCAAGGTTCTGACGGCCGTCTGGTTAAGTCCTACCGGGGGATGGGGTCAGTTGGCGCCATGTCCCAGCAGCACGGCTCAAGCGACCGATACTTCCAAGGCGGCGTGAACGAAGCCAACAAGCTGGTGCCAGAAGGCATCGAAGCTGTTGTTTCCTACAAGGGTACGGTAAGCAACGTTGTTTACCAGATCCTTGGGGGCCTGCGGTCCGGTATGGGCTACTGCGGGGCTGAAAACATCGACAAGCTGATTGAAACCGCCCAATTCGTCCGCATTTCAAACGCCGGCCTGCGTGAATCCCACCCGCACGACGTGATGATGAGCAAGGCCGCACCTAACTACGGAGGCATCGACTTCTAATGGCAAAAATCGACTTAAGCAATTTTGACAAGATTATCGTCCTGGACTTCGGCAGCCAGTACAACCAATTGATTACCCGCCGGATCCGTGACTTTGGCATCTACTCAGAACTTTTGCCGCACACGATTACGGCAGAAGAAGTGAAGAAGATCGCTCCTAAGGGGATCATCTTCTCCGGCGGCCCGAACTCAGTTTACGATGAAAACGCCCTGGACGTTGACCCGGAAATTTTTGAACTGGGGATTCCAATCTTGGGTATCTGCTACGGGATGCAACTGATGACCCAGAAGCTGGGCGGGACGGTTGAAAAGGCCGGGGAAGCTGAATACGGCTCAGCCCACATTGAAGTCAAGGAAGCTGACAGCCCGCTTTACAAGGGCCTGCCAGAAAAGCAGGTTGTCTGGATGAGCCACGGGGACCTGGTAACCAAGGTGCCAGAAGGCTTTGAAGTTCTGGCTTCAAGCAAGAACTGCCCGATCGCTTCCATGGCTGACCCAGACCGGAAGTTCTACGCAGTCCAGTTCCACGCTGAAGTCCGCAACTCAGAATATGGCCTGGACATCTTGCGCCGTTTTGCCTTTGACGTCTGCGGAGCCAAGGACAACTGGACCATGGATGACTTTATTAAGCTGTCTGTTGACTCAATCAGAGAAGAAGTCGGCAACGCCAATGTGATCCTGGGGATCTCCGGCGGGGTTGACTCCAGCGTTACGGCTACCCTTTTGCACAAGGCAATCGGTAGCCAGCTGACGGCGATTTTTGTCGACCACGGCCTGCTTAGAAAGAACGAAAGCGATGAAGTTATGGCCGCACTTAAGGAAGGGCTGGGCGTGAACATCGTCAGAGTTGATGCTAAGGACCGCTTCATGTCCAAGCTGGCTGGGGTAACCGACCCAGAAAAGAAGCGGAAGATCATCGGCAACGAATTCGTGCAGGTCTTCAACGATGAAGCCAAGAAGATCAAGGACGCCAAGTTCCTGGCCCAAGGGACCTTGTACACTGACGTAATTGAATCAGGGACCGACACGGCCCACACGATCAAGAGCCACCACAATGTCGGGGGCTTGCCGGAAGACATGCAGTTCAAGCTGATTGAACCGCTGCGGCAATTGTTCAAGGACGAAGTTCGGGTCTTGGGTGAAAAGCTGGGTCTGCCACACGACTTGGTATGGCGGCAGCCGTTCCCAGGTCCTGGCCTGGCTATCCGGGTAATCGGGGAGATCACTGAAGAGAAGCTGCGGATCGTCCGGGACGCGGACGCGATCTTGCGGGAAGAAGTCAAGAATGCAGGCTTGCAGGAAAGCATTTGGCAATACTTTGTTGCTTTGCCAGGGATGCGGAGCGTCGGGGTTATGGGAGACGGCCGGACTTACGACTATGCTGTCTGCATCCGGGCCGTTACGTCAATTGACGGGATGACGGCTGACTTTGCCCAGATTCCATGGGATGTTCTGCAGAAGATCTCCGTGCGGATCGTCAACGAAGTCAAGCAGGTTAACCGCGTACTGTACGACGTGACGAGCAAGCCGCCGGCAACGATTGAATATGAATAAAATAAGCGGAATTTTTCTCCGCTGGGGAAACTACCTGGTTATTGCCGGGTAGTTTTTTTGTGGAAAAATGCAGGAAGTTGGAGCCTTAAAAGCAAAGTAATTACTGCTAGCAAAAGTATAGTCCAGAAATAATTTGACTCAATTATAAAGGGCTATCTCGACGTACGCATCAGTTTGGATAATCTGCGAGGTAAAAGCAAAATAGCTATAGTAAGTAATTTGCACAAGAATATGTTAAATCGCAGATAGTCAATATTTTGGTTTAAAGGCTGTATCTTTTGACACCGAATATGACACCATATATAATGATACTAGGAGTTTATAATGTCGAAATGGGATAAACTGTTACAGCGCATCCTTTCATTATCAAAAGGCATGCGTTTTGTTGAATTGAAGAAGGTTCTAGAAAGTTATGGTTATGTAATGACGGCACCAAGAAGTGGAAGTAGTCATTATACGTTTCGCAAACCGGGTAAAACTCCCATTACGATCCCTAAACATGAACCGATTAAGAAAATATACGTTGAAATGGTACGCAAAGTTGTTGAGGAGGAAACGAAGCATGAAGACAATTGATGATTATCTGGCTCTTCCATACAGACTTGAACTTGTACCTGATCCAGATGAAGGCGGTTATGTTGCCAGCTATCCAGAATTGCCTGGATGCATTACTATCGGGGAAAGTCTAGAAGCTGCCGCGAAAAACGCGGAGGATGCTAAAAAAGCGTGGCTGGAAGCCGCGCTGGAGGATGGTATTGAGATAGCAGAGCCGGCATCTCTGGATGACTATTCCGGGCAATTTAAGCTGCGGATTCCCAAGAGCCTGCACCGCTCACTTGCTGAACACTCTAAACGCGAAGGTGTCAGCATGAACCAGTATTGTGTCTATTTGCTGTCTAAGAATGATGCGCTGGAAGAAAGAAATAGAGCTTGATGTTGGAAACTACCTGGTTATTGCCGGGTAGTTTTTTATTGCAAAAATAGGGTAGAAATGCCTATCGAATGCTGAGTAATGTCTTGATTATAAAGAAGAGCAAAGCGATTTAATAAAATGCTTTGCTCTTCCTGTATATATAAGTGAATCTTTTTAACAGCGACGTATTACTTAACGCAGCTGATTGTATTTGTCTTGCAATAAAAAGTTAATCGTCTAACATCAGAATGAACTTTCTTTTGCGCTAACATTTGTAACTTATGTAATTCTTTCATTTTGTTACCTCCTAAAAATTGTTTACCACAGTATACCTCCAACAAAATTAAAATACAAGGGTTTACTTTATATTTTTTTAATGTAAAATTTACCGTATAATATGGTGGATAAATTTGGAAGTGTAGGAAGAAAACACAAAAATATGAGGAGAAAAAACATGATAAATTTGAACTACCAGTCAAGTGACACATCACTTCTTCCGAGTGATTTTCAATTAGAAGATTATAAAAAAATTGCAAGAGATAGCAAAAAACGCTTTCTTCAATTTTGCTTTTCCAATGCTGAAATTCCCGATCAAGGATTCAAAATTCATATATCTGCAACACAAATCAATTATCAAGTGATTCTTGATGAAGTGTTTGATCTCTGTAAGTCAAATTTGATAGATTTCAAATATATATCTAATAGAGAACAACTTCTTGACAATTTGGCAGGAAAAGATGATTTATGGGCTAGTGGGAAATTTATTACTATCTATCCTTCAAGCTTGGATGACTTCAAAAAAGTTATAGTTAAACTCTACGAAAATAATGTATTGAAAGTTCAAGATGGTATAGCAATATTTTCAGACAGGCGATATAGAGATTCAAACGTAATTTTTTATAGGTATGGTAGGCTTAAGGGACCGGATAAATGGATTTATAATCCTATTACGAAATTAAAGGAATATAGGGACTATGAGAGTATGGAGTACCGCTTACCAGCTTGGGTTGATGAGCCATTTCCAGATAACTCAGATGATAGTAAAACATGTAAATACTTTTTTAAGAAAATTATTCCAACGGAAGGGCTAAATTCTAAGCCTTCAGGAGCTACGTTTTTAGCCCATGTTGCCGGTAGTGAAGAGGAATTTGTCCTAAAAAATGCGCATCCAGGATATATGAACTTGGGGGTAGCATGTACAGATTCGCTGAAGAATGAAGCGGTAAATATAAAGAGAATGATGAAATTCGATTTTATTCCTAATTATATTGCTGATTTTTCAGAAGACGAAGATTATTTTTTATGTGAAGAAAAAAAGTGCGGCCTAAGTGTTGATGACTATCGTGCGGATTCGCACCATAATTTTATTGATAAAAAGTTACGTAAGAAAACAATCAATGACTACAGAAAATCGATTACAGATCTATTGAAAAATGTACAGATACTTCATGATGAAAGGATTTTTTTAGGAGATATATCATCGGAAAATGTTTTAGTAGATCCAGAAACTAACCTTGTAAGTTTTGTAGATTTAGAGCAAAGCGTATTTTTAGAAGATCATTCGAAAATAGCTTTTTTTGCACGTACTGAAGGCTTCTTTGATGAAAATACACCATTTTTAGCCCCAATTGCTCAAGATAATCAACAATTAGCATATTTATTGATATCATTTTTCTGTCGAGGAAATATGTTCTTGTTGATCGATCATAGTGGCGCTATGACAATTAATTTTTTTAAGCAGTATGCGTCAACTCATAATCTTCCAAAAGTTTTTGTCGATGTCATCATGGACTTATTAGAAGATCCAAATCAGCGGTTAGATAATTTGGTTGAAGTGTTAGATAAGATGGATTGTGAGAACCTCTATAATTCCGAAGATTTGGTTTCTTTAGATGACTTTCAATACGAACTTGTTAAATCTGTATATCTGGCCATGATTGATGGAATACAAATTGATGATAAGAAAACTCTTTTCTTTGAGGAAGATACGGATTTAATATTCAATGAGAATATGGTGTCTATCTACAAGGAGTATCTCCAAAAGCCAACGATCTTTAATGATATATTTTTTGAAAAAAAGATGCATAACCATGTTATTTCAGAAGGCAAGAGATTGGTGGAGATGCTTAAGGATGGGGATGAGCGATTAGCGGAAACCTCATTAGTTCAAGTATATGCATTACTCTTGTGTACTATAAAAATTGCGAGTCCTAGTGAAAAAATTATTATAGATAGTTTGATAAACTATACACAAGAAAAATATATGGAATCTACAATAAATGGAAGATTCTTTAGGATAACGGAATATTCAACATATTTATCACCATATTTTGCTGACGGCACGGCAGGTATGATCAACATTTTGCTGGAATACAGGGAAAAATTTCATGATACCAAATATGATGCGTCGATTCTAGATTTAGTTAATTCTATTTCTCAAGAACATATGCCTAAAAATAGTTCTCTGTATAGAGGATTAGGAAGTTTCATATACGTCCTTCAGAAATTCAAAAAAATATTTAAATCAAGCAAACGAGATAATGATATAAGGGAAATGTTTAGGAATCTTCCGTTGTACTCAATTGTTTCTAATGGTAATAGATACATGGTTGATGAGTCGTTTAGGCGCATAAGCTTAGACTTTGCGGATGGAAATGCTGGAATTATATTTTTGATAGAACAAGCTAAGCAAATGGGAATTTTATAGATTTAAAAAGGTTGTGAGTGTTTTGTATTATTCAGATTTTATCAAGGGCAACCGAGTTAGGTTTATCGCGATCATTCTTTTAGTTATTGGCGGCAGCGCGCTTCTGGCCGGCAACAACGCCTTGCTGACACTGCTGGGGGACAGCTTGCGCAAAGGAAACCTGCTGCTTTTCGTGACAATTATCGGGATTAATTTTGTGGTTAATTCCATCGGCAGCAGCTTGTCTTATAGAGCCAATTACTTGTATGACAAACAGACTCAAGAGTATTTCCACAAGCTTCGGTCTGCTGAAGTGGAAAAAATCTACAACAGTGGTAACAAGGCACCAAAAGTTTCCAGCGTTCAGAACAGTTTGACCCAAGATTTAAACATGCTGGGTGAAAATTTCCTGGCTCCATGGCTGAAAATTGCCGCTTGTGGATTGGATGTAGTCCTTTCCTCAATCATCGTCTTTACCTACAGCTGGCTTTTATTGCTGGTAATTCTGCTTCTTGCAGTGTTGATGTTTTTCATGCCTCGATTTTTATCTCCAGCTTTGCAAAAGGCTACGGATGATATTTCTAATGAAAACAAGCACTATCTCGATATGCTGGAAAAATGGTTTAGCGGTTTGAGCGTTTTGCAGAGATACCACGTCAAGCAGAAGCTTTTGGCGGTGACGACTGCTCAAGGAAAGCGACTTGAAGATGCCAATGTCAGACGGTCCGGCCGGATGCAAGTTGCCAGCGGCGTCAACAATGCCGCAAACGTGTTGTCCCAGGCCTTGATTTTGCTCGTTTCAGGTGTCTTGATTATTACTGGCCGGATGAATTTCGGTGTTTTCTTTAGCATTGGCAACTTTGCCAGCACGATTTTTACTGAACTGGGGGTTGTGGTCAACCAATATACTATTTTGCAGTCAAGCAAGACTTTAAACGCCAAGCTCAGAAAGCAGCTTGCAGTTCAGACCGACCACTTAGAAAAGACTGAAAGTTTGGACCATTTTCAGTCATTGTCAGTTCAAGCCTTGTCTGTAGCTTTTAGTAATGAGGAAAAAATCACTTATCCGGATTTTCAAATCAAGCGGGGAGAAAAAATCTTATTGTCAGGTGACAGCGGGACTGGAAAATCTACGCTTTTTAAGCTGATCCTGCAGGAGTTGCCATTGGCGACTGGAAAGATTTGTTTTAAAAACGAAGCCGGGCAAGAAATTGAGCGGCCAGACCTGTCTCAAATTGGTTATGTTCCGCAAGATCCGGTTCTCTTTCCAGGTACAATCAAGGAAAACATTACAATGTTTAACTCCAAGCTGAATGACCGGGTAATGCATTTTGTTAAGCAGGTGAATTTGGAAAAAGATCTGGCTAAATTCCCGGCAGGAGTAGATACGGAACTCGATCAAGGCAAGCATGTCCTGTCTGGCGGCCAGCGGCAAAAAGTGGTTTTGGCAAGAGCACAGATCCATGACAGTCAGCTGATTTTCATTGATGAAGGCACTTCAGCCATCGATGCACACAATGGCTTGGAAATTCTGCAGAATCTGTTGCAAACCGATGCAACGATTGTTTTTATCGCGCACAACTTGACTGAAGAGATGCGGCAGTTATTTGACCGGGAGATTCATTTGAGCAATACTGCAGGTTAAACGAAAAAAGCGGGCAAGTTTGGCTTGTCCGTTTTTTTTATTCATTGAAATATTTGCTAAAAGCTTTGCGATATTGGCTGGGGGTCATTTTTTCCAGGCTTTAAAATTACGTTCTAAAACTTTGGCTGAAGAAAAGCCGCAGTAATTGGCAATGTAGGCGACGGAATAGTTTGTACTCAGCAAGAGGTATCTGGCATGCATGAGCCGGACTTGTTTTAAGTATTTGCCTAAAGGAAGTTTAGTCACTTGGCTCAATTCTTTATTTAAAGTCACTTGTGAAATTCTAAAATGTTCAGCAATGCTTTGTGCCGTGATATTGGTGGAAGAGTTGTTGGCGATGTAGGTGATAACCGTGTCAGCCAAAGATTGGTTTGGCGGCGTTGTGACGGCAGTTTTTTCAGTATATTCGCTGTCGATCAGGGCAATCATTTGAAAAAATTCGCTCAAAATTAAAAAGCGGATACTGTCACTGATCGGCTGGTCGACGAGTTCAGCGATAGTAATCAGATTTTTTCTTAACTGCCGGTAGCTGGCTGTATCGCGGCTGATATGGTCCATCTTGATCCGCCAATTTTTACTGGAAGTATATTCTTTTTCTAAAAAATTATTGTCAATAATCAGCCCCATCACATAATAAGACCGGTCTTTGTGCCCCGTCGCGGCATGAATTTGTGTGCGGTCAATAGCCCAGATATCGCCGGAATTGTAATGGTGGGTCTGGCCAGCAATGACAACCTTGAAGTCTTCCCCAGATACCAAATAATCAATTTCGATTCCGGTATGCCAGTGGGTGGGGGCTTTAGGAACGTAATTTGATCTTTTGAAAAATTTGAAGGGGAGGCGGGCGAGATTGTTGACCTCTTCGTAAGCAATGGGCATGTTCTTTTCTCCTTTATGAATTGTCCCTGAGTGCTTTAAGAAATGGAGAGTAATCGCTTTCCCATATAATACCATACTGTTTGTAAGAGCAAATAGCTTGCTGCTACAACTGATTTAGACTAATAAACCTGAACTTACAATTTAGGAGGAAAAATAATGGCTCATTTTAGAAAAGACTTTTTGTGGGGCGGCGCCATAGCTGCTAACTAAGTTGAAGGTGGATACAACGAAGGCGGCAAGGGCTTGTCAGTGACTGACATTACCACGGCCGGCTCTTTGGAAAGTCCGCGTTACCTGACTTACACTTTGGATGGCAAGGATGGCAAAGTAGCTGGGATGTTCGCCAGCTCCTTGCCAAAGGGCGCTAAGGGGAAGATTTTTGACAATGAATACTACCCGAACCATGTAGCGATCGATTTTTACCATTACTACAAGGAAGACATCAAGATGTTCGCGGACATGGGCTTTAAGGTATTCAGAACTTCCATTGCCTGGACGCGGATTTTCCCAACCGGTGAAGAAGACAAGCCAAACCAGGAAGGGCTGGACTTTTACCGCAGAGTCTTTGAAGAACTGAAGAAGAACGGGATTGAACCATTAGTTACGATTTCCCACTATGAAGACCCATTGGCTTTAGGCGAAAAGTACAACTACTGGCAAGACCGCAAGATGATTGACCTCTACGTTAAGTACGCGACGACCTTGTTCAAGGAATACAAGGACCTGGTTAAATACTGGCTGACCTTCAACGAAATCAACTCATTCTTGATGTTCTTGAAGCTGGTGGGTGATGGCAAGGTATCTGATGCAGATTACCAAAAGGCTTACCAAAAGCTGCACCACCAATTCGTTGCTTCTGCTAAGGCAGTTGTTGCAGGCCACAAGATCAACCCAGACTTCATGATCGGGAACATGATTGCCGGTTCTGTTTACTACCCAGGCACCCCTGATCCAAAGGATGCTTTGGCTGCCCGCTATGAAGAAGAATTGAGCCAGCTTTACTGTGCTGACGCGCAAGCTAAGGGTGAGTATCCAAGTTTTGCCAAGCGCTTATGGGATGAACACAATGTTCATTTGAAGATTGAAGATGGCGACCTTGAAGTCATGAAGGAAGGTAAGGCTGCCGGAAAAATGCCTTTTTGCCTTCTTAGGGGACGAAGTCGATAAGTATGCCGAGCAGGTTAAGGCAACTGTGGCAGACCACTTTATTACGATTGACCGCCTGCGTCCGATCTATATTATTGAGAACCAAGGTGAGCAGCTGTGCTTATGCCGGGCACCATTAGGTGGTCCCGCTGCCGCCCAGTTTATGGATGCCTTGATCGCCCTTGGCTGCCGGAAGTTTCTGGCTGTTGGCTCCTGCGGGACCTTGGTGGACATCAAGGAAAACGACTTCTTGATCCCGGCTCGGGCTTTAAGAGATGAAGGCACTTCCTACAAGTACCTGCCGGCCAGCCGCTATGTGGACCTTGACCCAGCAGCTGTTGAAAAAATTGGCCAAGGCTTAAAAGAGCAGGGACTGCCGTTTGAGCCCTGCACGACCTGGACGACTGACGGCTTTTTCCGGGAAACCCAGGACATGGTTGAATACCGGCGCGGGGAAGGCTGCCAGGTGGTAGAGATGGAATGCGCCTCAATGGCTGCTGTTGCCGCTAAACGGGGCGCTGAATTCGGCCAGCTCCTCTACACGGCTGATTCCCTGGCTAACGTGGAGGCGCATGATGACCGCGACTGGGGTCAGGCCTCCCAGGCCAAAGCCCTGCACATCTGCCTGCGGATTATCCACAATTTTTAAACAGGACAGAAAAATAGTACGCAAAAAAGAGGAATCTTCCACAAGATTCCTCTTTTTGCTGTGCATAAGTGTATGTTTCTTACTTTTTCTCGAAGTACTGCTCCTTATTGACCTTGAAGTACTTCTGGTAATCCTTGTAGTAGTTGTGGTACATGTGCTTCATCAAGAGCCAGCGCTTGACGTTCATGTCCGGCTTATAGAAGACCGTGGTGCCCACCTTGCCGGCCCGCAGAAGTGCCAAGGCTTCCTTTTTGGCCAGGGAGTCGACCGCGTATTGTTCAAAAATCTTGTCCGGTACACCCAACCAGAGCTTGTGCTTGGCCGGATCCTGGTTGCCGTAAACAACCGGCTGGTCCTTAAGCGAGTCTTCCACATAGTCGTCCACATACCACTTGGCCAGGTTGTAGCCGTTCAAAGTGACGTAGAAGCTGGACCGGCCTTGGCGGAGGTTGATCTCAAAGAACTTGTACTGGCCGTCGCGGACGTCGTACTTGATGTCAAAGTTGGCCATGCCCGTGTAGTTGATCTTTTCCAAAAAGGCCTGGACAGTCTGGTAGAGCTTCTCGTCATAGTCCGGCGCGATTACCATGTATTTGCCGATGGCAATCGGGTCCGGGTCTTCCAAGAGGGGGTGGCCCAGGCACATCATCTTGACCTGGTGATTCTTGTCCACATAAGCGTTCAAGACCCGCATGTTGGAGTCATCGCCCGGGATGAAGTCCTGCAAAATCAAGTCTTCCTTGTAGCCATTGGTGTAGATCTTGCCCACAATATCCTTGAATTCGTCCAGGTCCTTGATGACAAAAGCCTTCTTCCGTCCTTCAAACTGCACGTCCAGCCAGGAAACCGGGTCTTCCGGCTTTAAAGCGACCGGGAAGGGGAAGGGTACATCGGCGTAAGAACCATCCTTGTAAGCGGACATAGTGATGATCTTGGTCTTCGGGTAAGGCAGGCCGTATTCTTCACAGACCTCGTAGAAGCCCTCCTTAGAGATCAGTTTTTCCAAGAGGGCGTAGTCGATATAAGGAACGATGAAGGCCTCTTCCAGCTCCTGCTTGTGCTTGGCCAAAAGCTCTGAGTAACCGTCCCCGCAGGAGATCAAGATCACCGGTTCCGGGTGCTTCTTGTATTCCTTGATCTTCTCGCGCATAACCTTGATGAATTCCGGGTCTTCAGTAAAGCCCGGGTGAACCTCGATGTCAACGATCTTTGAATACCGGGTCGGGGCTAAAGTGGACGCGCCCCAGGCCTGGACCTTGATCCCGTAAGCCTCGTGGAAGGACCGGGCCATCCCGTAAACATTGATGTCGCTGCCTAAAAGAATCGGAGTAAATTGTTGCATGATTGTTGCCAGATTTCTATTGGATTGTAATTTTTTGGATGAAAAAAGTCCCTACCTATGTTAGCACGTTTAGGCAGGAACTGAACTGTTTGCTTATGAATTTTCGCTGATCCGGTAGCGGATGGCCTTGGCCTTGCCCCGCTTGAGAACCAAGCCGCTGTTTTCCATCTGCCGCAAGAGCCGGGTCGCCGTAGCTGGGCTGACCCCTAAGAGCTCTTCAATATCGCTTCTGATAAATTCCCCATGCTCTTTGCCAAAAGCCAAAACGGTTTCTTCATTGCCAGTTGCCCGGGCCTTTGGCTTGGGGGCTGGGCTAGGGGAAGGAGCAGGTGTTACCGCCTTTTTGACTGGTTTAGAAGTCGCTTTAACAGCTGCCTGGTAATGGGGCAGGACCACCTTAAAAGAGCTGGGAGCGGCTAAAATCTGGGGCGCAAGGCGGCTGCCCTTGTAGGCACTCTTGATTCTGGCTAACCCCGTTCCGTAGGATTCCACCAGCTTCAGCTGGTAAAAGAGGTCAGCCAAGCGCTTGTTTCGGCAAACTGACAGGCCCAGCTGGATGTCTTCCAGGGTAATCCCGGGCATGAGGCCGCCAAAAGAAATGAATTCCACCCGGTCTGTGTATAAGTTGATCAAGCTGCTGGCCGGGTTGCTGTAGTCCCTGTGGATAATCGCGTTCATCAAGGCTTCCCTTAAGGCCTGCTTGGGGTAGGCTGGCCGGTCTTCCCGGTAAAGGCCCTTAATCTGGCTCTCTACTGGGTTGTGCTTTTCCAAAAAAGCGTAGACCTGCTGGAATTGAGCGGCCAGGGACCCGGTAAACTCCTGCCGGTCCAGGAATTCATCCTGGTCTGTCCCCTTAAAAACAGCGCACTTGATCGTGTAAGGGCACTGGTCAGAGACCAGGAGGTCGAAATTACTGAACTGGAGGATGCCGAACTGGCTGGACGGCGGGCTAAAGGGGAGACCCTGCTGGTCAAAAAGGGCCTGCAGGGAGTTGAAGGTCAAGTCCTGGCGGGGAGAAAGCTGGTTTTCAAAGCTGCTGGAATCATTTGGCGTAAGCATGGCGCGCCTCCTTTTTACTGCTTGCAATCTAATCATATTTTAGCGAATCGCGTCAATGTCGTCAATGATTTGATTTGATTAGATTTGATTGGATTTACTTGATTTGATTCGATTCCCAGGCAAAAAGAAAAGCGCCCGAAGGCGCTCTTGTTAAAGGCTGGTCTGCTTTTTCTCCTGGTGTTTGGCATAGAAATGGTGGGCGACGTAGCAGAAGATCACGAATGGAATCGTCGCGTACAAGGCTACCCTCTGGGAAGGGTCAAACCAGATCAAAAGGCAGGAGGCCAGGCTGGCGATAAAGGCAAACCAAGGCGTGAAAGGATAGAGGGGGGTCTTGAACTTGAGCTCGTCCTCCGTATTCCCTTCTTTCAGCCACTTCTGCCGGAACTTGAGCTGGCACAGGGCGATCGCCATCCAGACGAAGACCACCGCCAAGCCGGAGATGGAAACCAGGACCAGGTAGATCGTGTCAGCCGCGTAGACACTGGTCAAGAGGGAGAAGACCCCACCCAGCATGCTTATCAGCAAGGAGATGGCCGGAATCCCTCTTTTGTTGGTTTTGGCAAAAACAACTGGAATAGTCCCCTCATTGCCCAGGGACCAGAGCATCTGGTTGAGGCATAGAGGCCGGAATTGCCGGCAGAGATTATGGCCGTCAAAACGACGAAGTTCATCAAGTCGCTGGCAAAAGGAATCCCCATCATGTTAAAGATGTGGACGAAGGGGCTTTCGGTAACGCCGGCTTGCTTGTAGGGGATGAGGCAGGCCATGAAGAAGATGGAGCCGATGAAGAAGATGATCAGCCGCCATAAGGTGGTGTGGATGGCCTTAGGCAGGGTCTTTTCCGGTTCCTTGGCTTCCCCGGCCGTGATCCCGATCAGCTCCGTCCCCGAGAAGGCAAAGTTGATCGTGAGCATAGTGGTAAAAACCCCGCCAAAACCAGTCGGGAACCAGCCGTCCTTGGTCAGGTTGGTCAAACCTGGTGCCCCCTGGCTGCCTTTTAAAGGAATAACTCCGACCACCGCCAGTCCCCCTAAGATGATGAAGGCGACGATTGCCGCTACCTTGACGGCCGCGAACCAAAACTCGCTTTCCGCGAAAATCTTGACCGAGAAGAAATTGGAGAGGAAAATCAAAATCATGAAGACCAGGCTCCAGATCCAGACGGGGACAGAGGGAAACCAGTGCCGCATGATAATCCCCGCCGCGGTAAACTCGCTGCCCAGGGCAATAGTCCAGGTCAGCCAGTAGAGAATGGCGACCGTAAAGCCGGTGGCCGGATTAAGCAGGTTCTTAGCGTAAACGTGGAAGGAACCCGTGTAGGGCATGGCCACCGACAATTCGCCCAGGCAGAGCATGACGGCGTAAACCAGGATCGCCCCGAAGAAATAGGCGATAATCGTGCCGATGGGTCCGGCCTGGCTGATGGTATAGCCTGTTTTTTTATTAAAATAAGCAGTAACATGATAACACATGATGGAGGAAAAACGATGGCAGATTTACCAACCCTTCTGGCCCAAGGCCCGGTGACTTTGGACGGGTCCATGTCCACGCCGCTTGAAGCCTGGGGCGAAGACACCAATTCCGACCTCTGGACGGCCAAGGCCCTCGCGGATAACCCAGACCTGGTCTATCGGGTCCACCAGGAGTACTTCAAGGCCGGCGCCCGGGTCACGATCACCGACAGCTACCAGGCCAGCCTGCCGGCCTTCATGAAGCACGGATTAAGTGAGGACGCGGCTCGAGCCTTAATCAGAGAGTCAGCTGCCGTGGCCATTAAGGCCAGAGACGACTTTGAAAAAGAGACCGGCATCCACAACTTCGTGGCTGGTTCAGTTGGCCCTTACGGGGCCTACCTGGCTGACGGCAGTGAATACCGGGGCGACTATGCTTTAAGTCATGAAGAATACGTGGACTTTCACGCCCCGCGGATTGAAGAATTAGTTGCCGGCGGGGTGGACTGCCTGGCGGTTGAGACTCAGCCTAAGCTGAGCGAAGTCAGAGCTATTCTGGACTACCTCAAGGCCAAGTACCCGGACCTGCCGGTTTACGTCAGCTTTTCCTTAAAGGATCCGGCTACTATCAGCGAGGGCCTGCCTTTAACTGAAGCGGTCGAGGAAGTCAGCGCCTATGCCCAGGTCTTCGCGGCCGGGGCCAACTGCTTCAAGCTGGCCTGGACTGTCGATGTGGTGAAAAATCTCCGCGCTTCTAAATTGCCAATCGTCGTTTACCCTAATTCCGGGGCCGAATACGATCCTTCAGTTAAAAAGTGGGTCTACCCCCCAGAAGCCGCGGACTTTGGCCAGGCGGGGGCTGCCTGGCTGGCGGCCGGGGCAAAACTGGTCGGGGGCTGCTGCACAACGATGCCGGAAGATATCGCCGGACTTGCCGCCGCAGTCAAAAAGGTTTATACTGCTTTTTAAAATATTTCTAATCTTAGATTAATAAGCTTCTTGAGCAGAGAAAGCAGGTTAAACAATGGCAGTTGAACGAGTAAAAGATTCTTTCAAAGATACTGACGTTAACGTAATTGAACTTCCTGAGTCTTCAGCCACCGTGGCCTTGGCCGCCCAGGCTCTGAACACCGAGCCGGACCAGATCGCCAAGACCCTGTCCTTTTTGGTCGACGATGCCCCGATCCTAGACGTTATGGCGGGGGAAGCCAGTACTGACAACCACAAGTACAAGGCCACCTTCCACAAGAAGGCCAAGATGATTCCTGTTGACCAGGTGGAAGACTATATCGGCGGGGTTTGCCCCTTTGCCGTCAAGCCGGGCGTCAAGGTCTATTTAGACGAGTCCCTCAAGCGCCACACTGAGGTCTACCCGGCAGCTGGCTCAAGCAACAGCGCTGTCCGCTTGACCATCCCGGCTCTGGAAAAATACTCTGACTATACGGCCTGGGTGGACGTGACCAAGACAGCTTAAGCAAAATAAAGAGAAACAAAAAACGCGAACCGGCTGGTTCGCGTTCTCTGTGATGTGAAAAATTACACTGATAACAATAACAATTTGCCACAGATAAAGTTCAGCGTTTGGTGTTACGCTCAACCTAATCGTAATTTCCTCATCTTAATGATAATACTTTCATTTTATCTCGTAAAGTACTAAGGGTGCTTTTTTTAAAAATACTTGGAAAATAGGGGACTTTTGAGGAAAAACAATGGCAGATTTAAGCAAGTTGCGGGAGCAAATCGACCAGGCCGACCAGGACCTGGTCAAGGCCCTGGTTAAAAGATACGACCTGGTCATGGAAGTTGGCCGGGTTAAGCGGGAAAAGGGACAGGCGGTCTTTGACCCGAAAAGGGAAGAGCGGGTGTTAGACAAGGTAACGAATTTAGCTCAGCGGCCGGAAGAGGACTTTTAACCGGCAAAAATGGTAAAATAGGCTCTTAGGTATTGTTGGTAGATTAGGAGCCGAGGAAATGATGGATTTAGGGTTAAGAGTCAAGAAGATCAATGATTTGATGGCCAAAAGGGGCAACTATGAGCTCAAGAAATTGGACCTGACCTTTTCACAGTTTCACTGCCTGGTTTATCTGGAGAAATGCGCGGGCCAGCAGGCGCCTTTAAAGCAGCTGGAAAAACACTTTGAAGTGGCCCAGACCACCATGGCCGGGATTGTCGGCCGCCTGGAAGGCAAGGGCTATGTCAGAAGCCACCTGGCGGAAAGCGACAAGCGGGTGAAGATCGTCTGCCTGACGGATGAGGGCCGGCAGATTTGCGCCAGCGCTAAAAAGGGGATGCACAAGCTGCAGGAAAAGGTGGAGCTGCTCTACAGCCGGCAAGAACTAAGCCAGCTGGAAAAGTACCTGGACCGTTTGTATGAGCTTTTGGCTGAGGAAAATCGGGAAGCATGCGAGGAAAAAAGATGACCAATAAGAAAATATTGCTGCTGTCGACTGGGGGGACGATCGCGTCCGTGGCTTCAGAAGAGGGCTTGATCCCGGGCCAGTCCGGGGCGGAATTGCTCCATACCCTGGGCGGCCTGCCTTATGAAGTCGAGGTCAAGGACATTTTGTCTTTGGACTCTTCCAACATCCAGCCGGAAGAGTGGGCTTTTATCGCCGAACAGATTTATAAATTGCGCCGGGGCTTTGACGGTATCGTCGTCTCCCACGGGACTGACACCATGGCTTACACGGCGTCTATGCTCACCTTTATGCTACAGGGGATTGACCTGCCCGTTGTTTTAACCGGGAGCCAGGTGCCCATGCAGGCCATCTTAAGCGATGCTCCAGATAACCTCCGGGTTGCTTTTGCCGCGGCCGCAACCTGCAAGCCGGGGATCTATATCGCTTTTAACCGGCAGATCATGCGGGGCTGCCGCTGCGTTAAGATCCGGACGACCGGTTTTGACGCCTTCAAGAGCATCAACGTTGACCCGGTGGCCATGGTGACTTCAGACGGCATTGACATCAAGCACAAAGACTTTGAATACGTGCCAAGCGAGCACGCCATCTGCACTTTGAACACCAAGGTGGAGCCCCAGGTGGCCATGATCAAGCTTTTCCCAGGCTTTGACCCGGCGGTTTTGTCCGCCATGGTCGACAGCGGGGTCAAGGGGATCGTCATCGAAGCCTATGGCCTTGGCGGCATGAACTACATGCGGCGGAACATGGTTAAGGCGATCGGGGAGATCATCAAGCGGGGAGTACCCGTGGTGGCCTGCAGCCAGTGTTTGTATGAACGAACTGACTTGACCAAGTATGAGGTTGGCCGGGCGGCTATGCTGGAAGGGGCGATCAGCGGCCGGGACATGACCAGTGAAAGTGCTGTAACCAAGCTGATGTGGGCCCTAGGCCAGGGGATGGACTTGGAGGACGTCCGGGCCTTTTTCAACAAGGATATTGCCGGTGAGGTAACCATCACCGATTAAGCTGCGGTAAGGCAGCTTTTTTATTTTTTCTTTCCATTTTCTTTTTCATTTTCATTTTTGTTTTCTTTTTGCTCCTAAAAGCGCTATCATGGTGGTAGAAAAATGATGAGCAAGGAGGAAAAATGATGATCAAACTGATTGCCAGCGACTTAGATGAGACCTTGCTGGGGCCGGGCAGCCGGGTAGTAGAGGAAAATCTGCGGGCTATTAAAAAATGTCAGGAACTGGGCATCAAATTCGTGCCCGCTACAGGGCGCGACTTTTACTCTTTAAGGCAGACGCTAGAAGAACTGGGCCAGGCGGACCAGGCCGGCCAGTACACGATTTGTTACAACGGCGGGGCGGTTTTTGAAAACAAGGGGCCGCGCCTGATCTCCTTTACCGGGATGGACGGGGAACCTGGTTGAGGAAATCTTCAAACGGGGGCAGGAATTAGGTCTGGGGATGCATATCTACACTGAGGACCAGGTTTACGGCTACCAACTTACGCAAGAAGAGATCGATTTTTGCCAAGGCCGGGCCGACTTCGCGGCTTTGCCAGGCGGGGACTTAACGGCCTTGCGGGCCAGCGGAGCTCGCTTTGCCAAGATTATTTACGTCGATACTGATTTCCCCCGCTTGAAAAAATTGCGGAAGGACCTGGCAGATTTTGAAAAAGTCAGTGAGATGAGCTTTTCATCCAACCGCTACCTGGAATTCAACCCGCCCAAGGTGAACAAGGGGACAGGCCTAAAGAAACTGTGCCAGGAGCTGGGCTATCAGCTGGATGAGACCATGGCGATCGGGGACAGCTTCAATGACCTGGCCATGATCAAGGCAGCCGGCACCGGCGTCGGGGTGGCCAATGTCAGCCCGGAAATGCGGGCTGACTGCGATAAGATTACGGAGAAGACCTTTGACCAGGGGGCGGTGGCGGAAGCGATCGGCCGCTGGGTTTTGCCAGATTATGAGTAAGAAAAAAATGTTAATTTTTCCCTTAGAATGATATAATTGATTCGCTAATTTATATAAGTGCTAAATTATGTTTGGGAGTATCCTATGCCAAAGCGAATTAATCTGCCAGACGGCCAGCAGGCTGTCGAATCTACTAAGGGCTTCTTCGGGGAGTTCAAGGCCTTCATCTCTAAGGGCAACGTGATGGATATGGCCGTCGGTATCATCATCGGCGGTGCCTTCACCACCATCGTCAAGTCCCTGGTCAGCGACATTATCAGTCCGCTTTTAGGTCTGGTCGGTGGGATGAATTTTGACCAGTTCTCACTGAAATTTGCCGGGGTGACCCTGGCATATGGGAAGTTCTTGACCGCGGTCATCAACTTCTTGATGATGGCCTTTGTCCTGTTTTTCATCGTCAAGGCCTTCAACCGGGCCGGGTCCTTGATCAAGAAGGAAGAAGAGGTTGAAGAAGAAGCAACGACCAAGGTCTGCCCTTACTGCAAGAGCGAGATCGACATCGAAGCCAGCCGCTGCCCGATGTGTACGTCACAATTGGAAGAAAAAATGGCTGAACAATAAAATAGCAGGCAAAAGAAAACGAAGCTGCTCTACTTGAGCAACTTCGTTTTTTGTTTATGCAATTAAAGCGATGACTTACTTAAAGCTTGTGGTCCTTGATCATCTTGGCTTGCAGGTCAGCCAGGGCAGGAGTCAGGTAGACCGGGTAGCGGTCCGGGTTAAGCAGTCTTTGGGTTTCTTCTGGCAGTTCAGCCAGCTTTTCGTACATGTGCTTTTGGATCTTGAAGGTGTCGGTTTCGATGGACTTGGCCTTTGGGCCGACAACGACCTGGGTCAAGAGGACGGCATCGAAGTCCTTCAAGTTGGCTTCAGTTTCAGTCATCATCGGGTCCATGTTAATGCCGACGAATTCTTCTGGCAAGCTTTCATCAGCCAGGGCGATGACGTCCGCGAAGGCATTCTTGGTCCCCTTGTGGTAGAGGCGGTAAGCCTTCTTTTCACCAGGCAGGGTGACCTTTTCCTTGGAGTTGGACAGCTTGATCTTTGGCTGCCATTCCCCGTCGCCAATCTTCAAAGCAGCCAGCTTGAAGACCCCGCTCAGAACCGGTGAGCTGGAGCTGGTGATCAATTGTTCACCAACGCCGAAGCTGTCAAGCGGCGCGCCTTCTTGGAGAAGGGAGTCGATGACGTTTTCGTTCAAGGCATTGGAAGCAGTGATGGTTGCTTCCGGGAAGCCGGCGTCGTCCATCATCTTGCGGGCCTTGCGGGACAATTTGGCGATGTCGCCGGAGTCGATCCGGATGCCGAACTTCTTGTGGCCCTTGGCGCGGAGCTCCTTGAAGACTTTGATAGCGTTAGGCACGCCGCTAGTTAAGACATCGTAAGTGTCGACCAAAAGCAGGGCGTTGTCCGGGTAGATTTCCGCCCACTTTTCAAAGGCTTCGAGTTCGGTTGGGTAGCTTTGAACCCAGGCGTGGGCCATGGTGCCGGCAACCGGGATATTGTACTTGGCTGCTGACAAGACGTTGCTGGTTGACCCGCAGCCGCCGATAACGGCAGCTCTGGCGCCCAGAACGGAAGCGTCCGGACCTTGGGCCCGGCGGGCACCAAATTCCATGACTGGCCGGCCAGCCGCGGCCAGGTTGATCCGGCGGGACTTGGTGGCGATCAAGGACTGGTGGTTGATTAGGTTAAGGACGAAGGTTTCCAGCAATTGACATTGAATCAAAGGCCCCTTGACCGTCAGGATTGGCACCCGCGGGAAGACCGGGGTGCCTTCTGGAATCGCGTATACGACGCAGTCGAAGGTCATGGTTTCCAGGTAGGAAATGAATTCAGCGCTGAAGAGCTTGAGGGACTTCAGGTAGTCGATGTCTTCCTTGGTGTAGTGGAAGCCCCGCAGCTGTTCAACGACTTGTTCCAGGCCGGCGGAGACGACGAAGCTGCCGTTGTCTGGAACAGTCCGGTAAAAGACGTCGAAGACGGCTTCGGTATCTCTTGGCAGGGTTTCAAAGTAGCCGTTAGCCATTGAGAATTCGTACAGGTCAGTAATTAACGCGTGTGATAAAGACATAGTGTAAAAATCTGCTTTCTCAAAAATATAACTGTTAAAAGTAAAAATAAAAACTTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGACGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACGGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATTGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATTCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGAAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACTAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCCTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAACCCAGTGAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGAAAATAAAAACTTAAACGGTAAAGGTTAGTCGACGACTTCAGCGCCCAGGCAGGACTTGAAGTGGTTCAGTGCCCATTCCTGTCCCGCGTCGTTTAAAGCGGCAACTGCCTTTTCGTGCACCGTGATGTCGTAGCCATGGTTGTAGGCGTCCATGGCGGTGTGCAGGACGCAGATGTCCGTGCAGACCCCGGCCAGGTGAACCCGGCTGACCTTGCGTTCACGCAAGAAGAGGTCCAGGCCGGTAGCGCAGAAGGCAGAGTAGCGTGACTTGTCCAAGACAAGGACGTGCTCGTCGTCTTGATGTTTATTATACCAAGTTTGCAGGGGTCCGTAGAACTCCCGGCCCCAAGTATTTGGCAGGTTGTGGGGCGGGAAGAGCTTGGTTTCCGGGTGGTAGGGGTTGCCCTTAAAGTGCTTGTCGGTTGGCAGGATAACCCACTTGCCGGCGGCCAAAAACTGGTCGGCCAAGCTGACGATCTGGCCAGCCAATGCCTGGGCAGGTGCCCCGCAGGTCAGAGCGCCTTTGTCATCTACGAAGTCATTGGTATAGTCAATGATCAAGAGTGCTTCATTTTTCATCTTTTTCTTCCTCTTTTTGTTAAAAGTATAACTTACCTAAAATAGGATAAAAACAAAAAGTAAAATAAACTTTTACTCGCTTGACGTAAACTTTACTCCAGAAAAGATTATTTTGCAAGTTTTTTCAGACAAAGAAGGTAAATTAAGCGATTTTTTATCAACAAAAACGGAACTTTCTTTATAAAAGATCCGGCAAGATCTATAATTAGGGGTGGAAAGTAGGAATAATTATTGACAAAGAAAGAGTGTAAAAAATGAAGAAGAACAGGAAAAATTTGGCCCTGCTTCTGCTGGCGGCCAGCTTGCTTGCCGGTTGCGCGGGTCAAAGCAATAGTCAGTCCAGTCAATCCAACCAGGCTAAGAGCGAGAAGAAGGAGGAAAGTAAGGCCAGCTCTAAGTCGGCGGCTAAATCCGCGGCCAGTTCTGCCGTTAGTTCGACAAAATCCTCCTCAAGCCGGGCCAGCTCTAAGTCCGCGGCTTCCAGCAGCCAAAGGGCAGATGCAAACCGGATGGGGACTTTAACTAGTCAATTAAGGGTCAAGCTGCCGGGGATGCTTTTGCCGGCGGCTGACGGCTTAGGCCAGGGCAGCAGCAACTTGAATATCCGCTACACCAGCTCAAGCAGCCAGAATGTTGTTTACTACAGCGTCGGAAATAGCCCGCTGGCCTTAAATGACAGCCGGATTGCCAGTGAGAAGCCATATGCCGTTTTAACGGAAAACAAGAATGTGGCTGACGCCAGCAGCTTGATTAATTACCAAGAGCCCAAGACTGGTCTGCCAGCGGTTAAGATTGCCGGCAATGTGACTGGGACAGAAGAAGGGGCGGCTGGGTCGACTTATCTGCAGTTCAATCAAGGCCAGTGGTCCTTTGTCGTCCGGGCAAGCAATGTCCAGGGGCAAAAGCCGCTGCCAACGGCGCAAAAGCTGCTGGCGCTCTACCAGCAATATGGTCTGCCGGATACGGCGGCAAAGTCCAGCGTGCAGGTTGATGTTGGCGAAAGCCTGGGTTCTTTGAACACGGTGATCACCTGGGCCAAAGGGTCCAGCGTTTATCAGCTTAAGGCCCACAGTACGGAGACCGCCTTTAAGATGCTCAAGAGCCTTAACTAAAGCTGAGAATAAGGTAATCAATCGCGGACCAGAGGATAAAGCCGGCGAAGATTGCTAAATAGAAGTAGGCCTTGCGGACCTTGTGGTGAAAGGCCAGCATGCCTAGGCCGGACCCGACAGGGGCCAGCAGGCCGCAGGTAAGCAGCAGCCGTTCGGGGATGCGCCAGGCGTGCATCCGGGCTTTAGCCTTGTCGATGCCATAGAGGGCAAAGGCGATTAAGTTGATAAGCAGCAGGCTGCTTTGCCAAAAGTTGTTCATGTCGTCTCCTGGTTATTTCCTAGTTAGTTTTAATAGAATTACAGGCCACCCTGCTCAGGCAGGGTGGTTTTTTGCAAAAGAAAAGCAAGGCAGTTTTAGCCTTGCTTGTTGTTAGCCTTTCTCCAGAGGATATTGCTCTGCGTTTCCTTAAGGCAATAGAGCTTTGGCGGCCGTCCGCTCTTGTGGTAATTCTTCTGCACGCCCAGCTCGGTAAAGAGGGAACCGTGGGTCTTGCGGAAGTTGGAGTTGTCGATCTCATCGACTGTGGTCTGGAAGAAGGGGGCGTAGACCTCGCGGGCTTCGCGGAGGGTGAATTCGGGGCCAAGGATCTGCAGGATGCTGGGCTGGTAGTCCAGTTTGTTACGGATGCGCTGGATGGCCACGGCGATGATTTCGTCATGGTCAAAGGCCAGGGCGTGGGAATTTTCCGCTAATTCAAAGGTCAGGTCCTTGTCAGCGGAAAAAAGCTCATACTTGTGGCCGAAGTTTTCAAAGGCGAACCAGGCAACATCGCTGGCTCCGTAGCCGGGCCGCAGATTTGGCATGGCGGGCAGGTAGGTCATGTAGGTTAGGGCCAGGGCCCGCTCACCGGGCGTCCGGTGGGGGGAGGTAAAGGTGGCCAGCTGTTCGGTGGAAGTTTCCGGCAGGTCAAGGCCGATTTTTTCTTTGATCAAGCGCACGGCAGCCTGGTCGGCACTTTCGTTTTCCCGAAGGAGAAGGAGAGTTTCCGGCAGGGCCCAGCGGTCCGCGAAAGGTTCGTCCTTGCGCTTGACTAAAAGCAGCTGAACCCGGTGGGTTTCCTTGTTAAAGCTCCAGATCAGGTTGGTGATGGTGATCAAGGGGCGTTCGACTATCTTTTCTAATTCAGGCATCAAAACGTCTCCTTTCAAATTTTCTGCTACTAGTATATCATTATTGCGAAGGTGGATTGCTCGTGGAAGAGGGATGAAAAAACGTGAGAGTTTTTGAAAGAATAATCAATTTTCCTTCCTCGAAAAAAGATTGAGACGATATGGTTCTGAAAGGCGGTGAAATTAAATGGCGGAACAGATAGAAGAAGTACCGGCGGAATTAATTCAGACAAGAGTCTATGAATTACATCCCAACAAGACTATGAGAAGAGTTTTGGATGAAGCTTGTGACTATCGCCGCTATTGCTGGAATCAAGGCCTTGCCTTGTGGAATAAAATGTACAAGGCAAGACAAGCACTTAAATCTTCTTTGGCCTCCGACTCCAAAAAGCTGACTGAAGAGCAGAAAGTGTTGCTTAAAGAAAAGCCTTCGCCGAGTGAGCGAAGAGTTCGTAATATGTTAGTTACCGATAAAAAAGACTGGCAGTATACACAGTCAGCCCGGATTCTGCAACTGGCAATTTCTGACTTGGGCAAGGCTTGGAACAATTTCTTTGACAAGGCCCAACCAGGCTGGGGCAAACCAAAATTTCGGTCAAAGCGGGAAGCCAGACAAGGCTTTAAAAGCGACCGAAGCAAGATCAAAGATGGAATTCTTTATTTGGAACGGGCAAAAGAAAGCAGCGTTCCAAAAGACCAATGGCGGGGCTTTAAGCTGAGCGAAGAGCCTTTGTCAGATGAATTTGGCGTTGTCAGCTACTTCAAAGAAAAAGGCCGTTATTACGTTGCCATTCCGTATAAGATCAAGGCTGAAGATGTTAAGTTGCCAGACAAAACAGGTAAGGCTACCGCGGTTGACGTCAATGTTGGTCACTTTGATTACACGGGTGGCCGGGTGAACGTACTGCCTAAGAAGCTTGATAGAATTTATAAAAAAATCAAGCACTATCAAAGGCAGCTTGCCAAAAAGCAAGTTAAAAATGGAGAAGCTGCTTGCGAAAGCGAGAACTACTTGAAGACGAAAGCCAAGCTTCAAGCATGCTATCGCAAGGCAAGCAATATCCAAAATGACTTTATGCACAAGTTTACGACCGAACTGGTTAATGACTACGACAAGATCGTGATCGAAAATCTGTCAGTCAAGGGTATGCTGATGAGCCACGTAGCTTCAAAGGGTGTTCATCGGTCGATGTTTGGCAAGTTTAAGCAGATCTTGACCTACAAGTGCGATTGGTATGGTAAGGAACTTATTCTGGCAAATAAGCTGTATCCGTCTACTCAGCGTTGTGCGGCTTGTGGCAATGTCAAAAAAGGTGATGACAAGATCACCCTTTACGGAAACAAGAAGCATGGTACTAAACACAACGAGTACGTCTGCTATAACGAAAAATGTCCGAACTACAATAAAGTCGTAGATCGGGACAAGAATGCGATGCTTAGTCTTTTAGCGCTGACTGAGCATCCAGAATTAAATCATGCTCTATAAATATTAAAGAAAGGAAAGTTAATGGCTAAGGCCCTGGCCTTAGCCATGCGGGTTGGCTGTACCCGAGGATTGGCGAGAGCCTTTCCATGAAGTTGCAAGAGTGGTGCTTCGGTACCTGCGCTGGTCAATGCGGTTACCCCCTTGTTGGGATGTCGGAATACCGGTGATGACGGCAATAAGAAAAATGTCTGTATTTATGTCTTCGGACATACGTAGTCAAAGATTACTATTTGGCTACATTGCACACGTTTTTTGCAGCAGGCTGTACGATGTTTTTTAACAAGAAAGAAAACGAAGCAGAAGAAGCGTTCAAGAAGCAATTGGAAACTGTCGCAAATGACCCGGCAGTCAAGGCAAACGCTGCTTTGAGCAATCTGATTGAAGCAGCTGTTAAGAAGGTAGAAAAGTCAGAATCAATCCGCTCAATCGCGTCTAACCTGGATACTCAATTGCGGTCCAACTTCGCTGAAAACGAACTGCCAAAGGCCGTTATCAGCTTGCAACTGGACTTGGCCCGCTACTCTGCAGTTGGTGCTAATGGCGTAGTTCTGAAGTAATCTACTGAAAACTTAATCATATTAAAATAAGTGCTGCTGAAGCTTGGTATTCCTTCTTCAACAGCACTTATTAATTTATTTTGAACAAAAAGTGAAAAAAGCGCTACGCTTCGCTCATGATTGGTGCTATAATTATCGCAACTAAAGCAGAATAGGTATGATATTTGATCTCTAAGGAGGAGTCGTTATGTACCAAGCTTCGCGTCTTCCACTTTGGGAACGTGTTTTCCACATTGTCGGTGACAGCATGATTATCTGGCTGTGGCACCACCTCTTAATCGTGGCTCTAGGCCTTTTAACCTTGCTTGGCTTGGTGATCTATCTGGTTGTCAGCGGCATCCGGCAAAAAAACGTCGCTAAAGCTGTCTGGCCAGTCGTCATTTTCTGTTCCTGCCTGGGCCTGGTCTACTTTGCCATGAGCTGCGCGATTATGGACTAAAATAGAAAAAGCAAAGTGCTACTTAAGCCAGATATTCCGGCTTTGGCGGCACTTTTTCTGCTATCTATAGTTTGTTTAGGCATAAATATACCCCCAAAATTGAAATATGATTTTGGGGGTATATCTATTTAGTTTACAATTCTTGTTTGATTAACGAGACAACATATTCAAGCCTCGTCCTGCTTTCTCTGTGAGTAAATCCAGGTAGTATATTAACTTTGAATTTCTTCATGAATGGTAGCACTAAAAATTGTTGATAGGGAACTCTTGAATCTCTAGAGCCGTTTATAAAAATAGTTCGAGTATTTACCTTATTGTCCCGACATAGAGTGTAAAAATCAAGCGCATTTTCTGAAAGATAGTCCTTAAGCCAAGATCGCTCAGATGAAAACAACTCTTGATAAGCAATACTGGTGAACGCGCTTATTGCTATAATTTTTCTGAATATATATTCGGCTGCAAACAGACTGGCTAGGTATCCGCCGTAGCTTTCTCCTAGTAAAACCATTTCTGTATTTGGATTTTGTCTTTTATACTCCCAAAAATATTCTTTTAAAAATTGGTAGTCACTAATTCCACCGTTGCCATAAACAATGGGGTAGTTCAGCAAAATAAAATTCCGCTGCTCATTGTAGAGCATTGTTGCGAAAGGGTATTCTTGCCAATTTCTAAGGGTAAATAAGGGACCTCCATGCAAGTAAAAATAGACTTTCTTACAGTCGCGACAGAAAATATATTCAACTATTTTATGCATACTATCTTTCAGCCAGACTTAATGGCATTCTACGTAAAATTATCTGGGCAAAAATAATCATTATAATTGTAAGTACTAGAGCAATTAACAAATCGTTAATGTTAAATATGCCAAAGGCTACAGTTCTGAGCGCCTTTAATTGGTAGGATAGCGGATTGATATAGGCCAACACTTTAATGATCAGTGGAGAATTATTGCTGAAGACATAAAGCGTTGGCGCAGCATATGCAACTGGTGAGAAAATCAAGGTCATGATAATGTCTCGTTGCTGGTAAGAAGAAATCCGTGTGCTAAGAACGATTCCCAACGTGGACCAGAATTCAAGTGAGATGATTAATACAAGCAGAGATAGTAACAATAACCCTAAATTGTACACACCACCTGTAGCAAGTCCAAGAACAATCAATACCGCGCTTTGAAATAAGAGACCGGCAATTGGGAAGAAGCTCATTCCAGTTAGGTAGTGCCATGGTTGAACACCATTCGTAAATTTAATAGCCAGTAAACCATATTCTTTATCAACTGTCGCCCGGTACATTGCTTGCGACATCTGGGTGGTCATGAAAAAACTCAAAACACCGGTCAATGCGTACTGCTTGTAGGGCAAAATTAGTGATTCGTAGTGAACGGAAGCTAAATTTTGATTCAAAGCCATTACCAACAAGCCGTAAGTAATAAGCGGCTGCATGAACATTGATAAGAGCAAGCCTTTATTATGCACGAAAGCCCGCCACTCATTGTTGGCAACAATTCTGATCGACCGTAATCCCAAAGATATATTTCTAAAATGTTGCGGATTCATTTTTCTATCGCCTTCCGTTCGTTAAGGTATTTTTCTCGCAAGCTCGTACCACTGTCCAAAAAATCAGTAAGCGGACCAAAGTATTTTTGTTCATGATCGTCTAAGAAAAGAACGTGACTCGCGTAGCTTTCCAGCAGAGTTAAGTCATGTGAAGAAGTTAATACAATACTTCCAGCATCAACTTTTTGCTTTAAGTAGGTAAATAGTTTTTCCGAAGTTTCCACATCGAGCCCGGTTGTGGGCTCATCTAGTATGTAGACTTGTGGCTCACGGGCAATTTCTCTGGCGATTTGTACTCGTTGCTGCTGGCCACCAGAAATATGATCAACCGGCTTAGCACTTAAATCACTGATATCCAATAGTTTTAAAGCCTGTTTGGTTGTTTTTTGGGCTTCTTTAGTCTTGAAGCCAGCGAGAAGCGGTCCTTGATACACATTGTCATAGACACTGGTATACCAATCAATCAGCTGGCTTTGGGGACTGAAGCCAACATCATTGAAAGGATTAACCCGGTCAGTTTTCAATTTCCATGAAATCTGACCCGACACTGGTGGAATGACGCCAATCAAGCTGTTAATCAAGGTGGATTTCCCAGCACCATTAGCTCCGATTAAAGCGATAAACATTCCTTTATCCAGGGAGAAAGATAAATCGTGAACAACGACTTTATCTTTATAGCCAATATTCAAATTATTAGTGCTAATCATCGTTATTTTTTCCTTAAAATTAGACCAACTTTATGCAAAGTTAGATTGATTACATTTTTAATAAATGATGAAGTTATTTCATGAGAATTTAATGCAAAACATATTTTATAGAGGAGACATACTTATGTCAATAGAATTCCAAAAATTAATTCAAAAACTTCAAAGTGATCCAATTACCATTGGTAATTTTTTAGCAGATCCAGAGGAATTTTTAAAGTCCACAAAGTTAACAAATCAAGAAAAGAAGACCCTCCTTGCTAGAGATGTAGAGGCACTAAATGACTTAGGTCTTACAATAGATCAAGCAGTAGGTGCCTTGTCTGGAGCCCACAGCCAACGATGCTCAACTAATCATCCTACAAGAGGTTAAGAAATAGATTGTATCAAGAGATTGCCTGCCGCAAGAATAGAAAAATGTTTTACCGATTTCATTGAAAGCTACACTAATGAAAATAACATCTATATCGGATCAGCTACTTATTTTTTGTACTCAAAATTTATAATAGAGTCATATGGCTTACCAGTTGAAAATAGATATAGTGTTTCTGAAATCGCTAGTAAGTTAAAACAGGCAGGTTTGGATAAAGTAATAGTTAACTATCTGATTGTTCGCTATTTAGATGGAATGTACTTGTTGGCTCAGCTTCAATCTAAGGAAGAAACATTTTGGCCATGAATAAAGAAGATATTGCAATTCAATTTGAATTGTTGCTCAAAGAATACTCAGTTGCTAGGTATGAAGATAGTATATGGGCCTTTCCTGATTATCCGCACCACATAAAGAGTAACTACGGATGGAAAATTCATATTAGTGCTATCCTAACGAATGCTATCCAAATTGCCCGAAAGTTTTTAACTCTTAACCAAAAGTATCACTTTGATTTTAAAATTATTTCTTCCATACCGTATTTAGAGCAAATGAATATGGGATATTTTGGAAATAGTCAAGTTGGTAAGTTTATAACAATATACCCAGATCAAAGTGCAGTAACAGAGACTCTAGAACTTCTATATTATTATTTTCATGATGATGTGGGAATTCGAGTGGGATCAGATATTTCATATAAACAAGGGCTTAATGTCTATTATAGATATGGAACTTTGCTTGATGATGTTGAGAATATTGACAAAAGAGATAAAAAATTAAAACCTAGCTCGAACGTGGAAAAAATTTATGATTATCGTCTCGAGCGTTACAATAGTCTTCCCACCAGATATCTTATCTTAGAGGCAATAAAGCAAAAAGGTCCTTCAGGAGTACTTTTAGCACTTGATTTACAAACTAAGGTGAAGGTAATTATTAGGTATGCAGAGAAATACTATAATATTGAGAGCGCCGGAATTGATGAACGAGATCGGTTGATAAGTGCCAGTAGTTTGCTAGAAAAGGATTTTGTGTGAAACAGTAACTTTTTTGAAACAGTAGTAGATGCTTTTTACGTGAGCGATGCTTTCTTTGTTGTTACGGAGTACGCTTCGGGCTATAATCTTGATGAGCTAGCGAAAAATGGGCAACTTGGCTTATATTCATTGTCAGAACGTCTTGAGATTTTTAGAAATGTTTTAAGAGGGATCTATGTATTAAATGATAATCTGATAATCTTCAGAGACTTATCATTTAGTAATGTGATTTTATGCCCAAATCATACTATAAAAATTATCGACTTTGGGTATGCAATCTCTCTTTCTGGACTTTCCAGTTTTGCCGGTCTAACTCTTAATTCTGCAGGTACTTATGGATTTTTTGACCCAGAAATGACAATTGGTAAAAAAAACAGTTAGATCTGTATAGCTTAGGAAAAATCTTATATTACATTGTTTTTCCGCAGTCATATTTAAACTATACGAGCAAAATAAATAGCGATTCAACGTACTGGCAAATAAAAGAATATGTATCTGATTCTGAACAGTATCAACTGCCTGAAAGGATTGCTGAACTTTATCGCTTGTTAATTAAAGGTGAAAAGATACAGGAGTCGGACCTTAATTATTTAATACAGTACTTTCAATAATTTTTTGCTGGATATAAAAGGTTACTACAGGAAAAATATATCGTAGCATCAGACTAAATTCAGATGCAACCAAAAGCAGAGTGCTGCTTGAGCCAGATATTCCGGCTTTGGCGGCACTTTTTTCATTCCTCCACGTAAAAAGCATGAAACATTGTAAGGCAAAAGTAACCAAAAATATTCATACAAAGGCCAAAAAGGGACCGATTCCTTTGGTATAATAAGATAATTACAAATGTTTCACGGAGGAGTGAGTGGAATAAGATGAATACGCCACGATCACGCAAAGGTAACCTTGTCCGTTACCTCGTCTATTTTGTAGTTTTTGTTTTCACGGCCCTGGCCGACAACCTGGCGATCAAGAGCCCGTCCATCAGCATCTGGAACGTGATCCTGTTCCTGGTTCTGGCGGCCATGTGCCTGCTTTTTTACATTTACCGCTACAACCGTGAACAGCGCTTCTTCGATTCACGCTTCAACATCCCCTGGCTGAGCAGCTTCAACTTCACCTTGCTCTTAAGCTTCGTGGTTGCCGCCGGCCGGATCGGGATTTCCTACCTGCAGCTCTACAAAGGCATGCCTGCCTCGGGTCTGCAGCTGGCCTATGCCTCTCATTCCACCAGCTCCTTATACTGGTTCATGATGCTGGCCAATGGGGTAGTCCTGCCGATCCTGGAAGAGTATCTCTGCACCGGCTTCTTGTTCAACTACTGGTTCAGAACTGAGAAAAAGGGCGTGGCCTACGTCGGCATAATCTGCTCGGGTCTCTTTTACGCTATCTTGACCTTCCAGTTCACTCCGGCAATCTTTGCCTTCAACTTTGCCTTTGGCATGCTTTTCGCTTGGAGCTACCTCAGCACCCAGACCATCTGGCTGCCTCTTTACCTGGTAGCCTTAAACGGGGTCTTGACGGTTGTGACCATCGCCGTTTAACTGAAGAGAGTAAAAAATAAGCGGGGCCGTTTGGCCTCGCTTATTTTTTGTTAATTTATGGTATAAAAAAGCGGATAGAGTGAATCGAACCCTCATCTCTAGCTTGGGAAGCTAGCGTTCTACCATTGAACTATACCCGCAAGATGTTTTAAGTATAGCATGAAAAAAAACTTTCGCCAAGTCTTTTTGGCAACTTTTTTCAAAAAGATTCTTCCGGCCCGGCGGGAGTGGTTTAATCTATTTGTTATTTTTGCTAAAATGATAATAATAACGCCCGATAGAAACAATTTAACAAAGAATTTAGCAAAGGAAAGCGAAGAATGACGAAAGAAATTATTTTGACTGGCGACCGGCCAACCGGCAAGCTGCACATCGGCCACTACATCGGTTCCTTGAAGAACCGGGTCATGCTCCAAAACACCGGCAAGTATGACTCTTACATTATGATTGCTGACACCCAGGCCTTGACTGACAACGCCCGCAACCCGGAAAAGATCCGCAACTCCCTGATCGAAGTTGCCCTGGACTACCTGGCTGTTGGCTTGGATCCGGAAAAGTCAACCATCTTTGTCCAGTCCCAAATCCCGGCCTTGTTTGAACTGACCACTGACTACATGGACCTGGTAACCCTGTCCCGGCTGGAAAGAAACCCTACTGTTAAGACGGAAATCAAGCAAAAGGGCTTCGGTGACTCCCTGCCAGTCGGCTTCTTGACCTACCCGGTTGCCCAAGCCGCTGACATCACTGCCTTCAAGGCGACCTTAGTCCCAGTCGGTGATGACCAGGAACCAATGCTGGAACAAACCCGGGAAATCGTCCGCAGCTTTAACCGGACCTACAATGTCGACGTCCTGGTTGAACCAAAGGGCTACTTCCCGCCTAAGGGCCAGGGCCGCCTGCCAGGCCTGGACGGCAATGCCAAGATGTCCAAGTCCCTGGGCAACGCCATCTACCTGTCTGATGATGCGGAAACGGTTAAGAAGAAGGTTATGTCCATGTACACCGACCCTAACCACATCCACGTGGAAGACCCCGGTCAGGTTGAAGGCAACACCGTCTTCACTTACCTGGACGTCTTTGACCCGGACAAGGACACTGTTGCCCAACTTAAGGAAGACTACCAAAAGGGCGGGTTAGGTGACGTCAAGATCAAGCGCTACTTAAACAAGGTCCTGGAAGCTGAACTGGCCCCAATCAGAGAACGCCGGCAAAAGTACGCTGAAAACCTGGATGCCGTTTACGACATGCTCTACCAAGGGTCACAAAAGGCCAACCAGGTGGCTGACCAAACCTTGCAGGAAGTCCGTGACGCGATCGGCTTCAACTACTTCAAGAACCGAGGCTAATATGACGCGCAAACGAATTCCCTGGAAACAGTACTTTATGATGCAGGCCCTAGTGATCGCCCAGCGGTCAACCTGTGACCGGGCTCTGGTCGGCAGCGTCCTGGTCAAGGACAAGCGGATCCTCAGCACTGGCTACAACGGGTCAGTTTCCGGCCAGGACCACTGCGATGACGTGGGCCACCAGCTGGTCGATGGCCACTGCGTGCGGACGATTCACTCTGAAATGAACAGTCTGATTTCCTGCGCGAAAAACGGGGTCTCAACCGACGACACGGAAATCTACGTGACTCACTTCCCATGCTACAACTGCACCAAGCACCTGCTGCAGGCCGGGGTGATCAAGATCAACTATTATTATGATTATCACGACAGTCCTTTGGCCATTCAACTGCTGCGTGATAGTGGAGTACCTTATGAACAAATTAAGCTTGACCGCCAATTCGTCGAAGAACTGGCACACAAACTTGAAGACGGCAGCGACTAGGCTGGCCTGGCTCCTGGCCTTAGTCTGCCTTTTTCCCCTGGTGACCGGGGCCAGCAGCTTTTTCGTCCAGGACAATGCCGGCATCATCAATTCCGATACCTGGAAAATGGTTGACCAAAATAATGCCAAGTACCAGAAGTCTGACCAGCACCCGATCGTGATCGTCGAGACCCTGCAAAATGCCAAAAAGACCCAGCCGGCCGGCTTGAGCAAGGCAAGCAGAACCTTCTATATTGTGATCAACGTGCAAAAGGACGGGACTAAGAAGGCCTATCTTTACAGCAGCAGCGACCTGCACAGCCAGTTTACCGCCCAGGTCCGGGCCAACATCCTCAGCCACACGGCTTCCAAAATCACGGATGATGACCCGATCGCCTTCAATGAAGGGGTGCAGGAGCTGTTCAAGATTTCCGTGACCTTGATCGACCAAAGCCTCGGCTTTAAAAAGGACTCCCTTGACCTGTCCAGCGAGGAAGTGAACCGGGTGATCAAGCCAGCTGATCTCAGAATTCCGATCATGCTGGCCCTGTTGGTCTTGATCGCGGCCGTGATCATCTTCCTGCGCTTTACGATAAGACGTCAGGATAGAAAATAAAGCTTTTTCACAGAAAAACTAAATAAAAATGCTAACTTTACATATAAGTGGTTTACAAGCCTGCTTTAAGCGTGTATAGTCTTCTATGTAAAGTTAAAAAGAGAGCAAATGAACTGTTAGGTGAGACTCCTACGTGAACACACGCTATCGCCCAGAAACATCCAGAGATGCCAACGGGTTAAATAGAAATTGTCGAAATAAGGCACTTTCCAGGTAGCTAGCATGTGCTTACGTCACGTAGTGTTAAAGCTGAGCGATTGGTCAATAGCGCGGCCCTATTTGGCAAGGTCCCCCTTACGGTTTGTAAGGGGGATTTTTTAGTTCGTTTGCGAAGTTGTCATAGAGGGGGAGAACTATTATGCTCAACAAGACAATGAACAAAGCTGCCAGCGATGACGCAAAGCGGGTTGCAAGAATTGCCCTGGAAAAGCGGAGCGTGACTTTGGCCCAATTGCATACCAACAGCAACGGCCTCAGCACTGAAGAAGCAGCCAATATCCGGGAAAAGACCGGAACCAACGAGATCGCGAGCAGCAACCAAGCAAGCAAGCTACACTTCCTGGCCGAAGCTTTCCTGACTCCGTTTACCCTGGTCCTGCTCATTTTGGCGACGATGTCCTTGTTCACCAACTACATCTTCGTCCCGCAAAGGGAAAAGAACCTCAGCACCGTTATCATCATGGTGGTCATGGTCCTGGTTTCCGGGATTACGTCCTTCATCCAGAACGTCCGCACTTCCAACGCCGTCCAGTCCCTTTTGAAGATGGTTTCTGTCACGACCAACGTGCGCCGAGACGGCAAGGACCAGGAAATCCCGACCAAGGACGTGGTGGTCGGCGACATCATCAACGTTTCAGCCGGGGACATGGTTCCAGCTGACATGAAGCTTTTGTCCAGCACTGACCTGTTCTGCTCAGCCAGTTCCTTGAACGGGGAATCAACGCCGACGGAAAAGAATGCCAACTTTGTCCCAACCCCGGACAAGATGGAAAACTACCTGGACTACCCAAACATCCTTTTTAAAGGCACGACTATTGTCTCCGGCTCCGGCCGCGGGGTGGTCTTCGCCACTGGCGAGCACACCGTGTTCGGCAAGATTGCAGCCCAGATCGCCGACACCGAAATGAAGGAGACGACTTTTGACACCGGGATCAAGAACATCTCCAAGCTGCTCTTGACCATGACGGCCATCATCGCGCCTCTGGTTCTCGTGGTCAACGGCTTGACCAAGGGCAACTGGACTGATGCCTTGATCTTCGCCATCGCTACGGCGGTGGGCCTGACGCCGGAAATGTTGCCAGTCATCGTGACCACCAACCTGGTCCGGGGCAGCCTGGAAATGAGCAAGCACCAGACCATCGTCAAGAAGATGAACTCCATCCAGAACTTCGGTTCAGCCGACATCCTCTGCACCGACAAGACCGGGACCTTGACCCAGGGCCAGGTCATCCTGGAAAAGCACTACAACCTGGAAATGCGGGAAACCGACCGGGTTTTGAAGATGGCCTACCTGAACTCTTACTACCAGACCGGGATGAAGGACCTGATCGACCAGGCAGTCATTGACGTGGCTGATGACGAACTGGACACCAGCGAAATCCAGCGGGACTACCACAAGATCGACGAAATTCCTTTTGACTTCCAGCGCCGGCGGATGAGCGTGGTGGTTGCCAACTCTGACCAAAAGCACGGCGAGCACCTCCTGATTACCAAGGGGGCAGCTGAAGAAATGCTGGCCGTCTCCAGCCAGGTGGAAATCGGCGGCCAGATCCTGCCTTTGACTGAAGAAAGAAAAAAGCAGATTTTTAAAGATATCGACGACTTGAACAGTGACGGGATGCGGGTTATCGTCTTGGCCTACAAGGTTGACCCGTCTCCAGTCGGTGAATTCACGGTTGATGATGAAAGCGACTTGATCGTGATCGGCTTCCTGACCTTCCTGGATCCGCCGAAGGAAAGCGCCAAAAATGCCCTGGCCAGCCTCAACCGGGACGGCATTACCGTTAAGATTTTAACCGGGGACAATGAAGCTGTTACCCGGGCCGTGGCCTTGAAGGTCGGCCTTAACATCGATACGGTTTACGGGCAAAAGGACCTGATCGGCAAGAGCGATGAGGAACTGGCCAAGATCGTTGAAGAATGCGACATCTTCGTCAAGCTGTCACCGGAATGGAAGACCAAGATCATCAATGCCCTGCAGAAAAACGGCCACACGGTCGGTTACATGGGTGACGGGATCAACGATGCCCCGGCCATGAAGCAGGCGGACGTCTCTATCTCAGTTGACTCAGCTGTCGACGTGGCCAAGGAATCAGCGGACATCATCCTTTTGCAAAAGGACTTGAGCGTCCTGGAACACGCGGTCCGGATCGGTCGCAAGACCTTGACCAACACCATGAAGTACATCAAGATCACCCTGTCTTCCAACTTCGGGAACATCTTGTCCATCATGGTTGCCTCAGTCTTCCTGCCATTCTTGCCAATGCTGCCGCTGCAGCTCTTGATTTTGGACCTGCTCTACGGAACCAGCTGCCTTGCTTTGCCCTTTGACAGCGTGTCTGAAGACTACCTGCACGTGCCGCGGGAATGGTCAACCAAGAACATGCCGAAGTTCATGTCCTACTTTGGGCCGACGTCATCAATTTTTGACGTCATCACCTTTGCCGTCCTCTTCTTTGTAATCTGCCCGGCCCTTACTGGCGGCAGCTACGCTTCCTTAGGACCAGCAGGGCAGCTGGCCTTCATGACCATCTTCCACACCGGCTGGTTCGTGGAATCCCTCTGGACCCAGGAAATGGTCATCCACGCCTTGCGCGACGAACGTCTGCCACTTATCCAGCAGCGGGCATCAAGCCCAGTCATGCTTGCTACTTTCGGGGCTGCTATCTTCGGGACCTTCCTGCCATTTTCAAAATTGGCCGGAGCCATGAAGTTCGTCCACTTGAACGAAGAATTCCTGTGGATCGTGGCTGGCCTCCTGGTCTGCTACCTGCTTTTGACGACAGTCGTCAAGCACTTCTACATGAAGAAGGAAAAATTCTTGATTTAACTGAAAAAGAACGGTCTTTAGTAAAAAGGCCGTTCTTTTTTGCCCGAAAGCCCGTTAAATCGCCGATTGACTTTATAAGGTAAGGCTTTTTGTTGTATGATAGAGAGTATAGAATTTTTGAGGAGATCAAGCACTATGGCAGATAACAAGAAAACTTTTTACATTACCACGCCAATCTACTATCCGTCTGGCCGTTTGACCATCGGCAACGCCTACACGACGATAGCAGCGGACACCATGACCCGCTACAAGAAGGCTCGCGGCTATGACACCTTCTTCTTGACCGGGACCGACGAACACGGCTTGAAGATCGAACAAAAGGCCGAAAAGCTGGGCATGAAGCCAAAGGCTTACCTGGACGGCATGGTCAAGGACATCAAGGAACTGTGGAAGAAGCTGGACATCAACTACGACAAGTTCATCCGGACCACTGATGAAGAACATGTCAAGGCTGTCCAGAAGATTTTTGAAAAGCTGAAGGCCTCAGGTGACATCTACCTGGGTGAATACACCGGCTGGTACTCAGTTGAAGACGAAGAATACTTCACTGAATCCCAGCTGAAGGAAGTCTTCAAAGACGACCAGGGCAACGTTGTCGGCGGGATCGCCCCATCTGGCCACGAAGTTCAATTGGTCAAGGAACCATCCTACTTCTTCAAGATGAGCAAGTACGCTGACCGGCTTCTCCAGTACTACAAGGACCACCCGGAATTCATCCAACCAAACTCCCGGGAAAAGGAAATGGTGAACAACTTCATCAAGCCGGGCCTGGAAGACTTGTCAGTTACCCGGACCACGGTTGACTGGGGGATCCCGGTGCCAAGCGACCCGAAGCACGTTGTTTACGTTTGGATCGACGCCTTGGCCAACTATATCACTGCCTTGGGCTATGGGTCAGAAGATGACTCCCTCTTCAAGAAGTACTGGCCAGCTGACGTCCACCTGGTCGGCAAGGAAATCGTCCGTTTCCACACCATTTACTGGCCAATCATGCTGATGGCCCTGGACTTGCCGCTGCCTAAGCAGGTCTTCGGCCACGGCTGGGTCTTGATCTACAAGGACAAGATGTCCAAGTCCAAGGGTAACGCCGTTTACCCGGAATCCTTGATTTCCCGCTACGGCCTGGACCCGGTCCGCTACTACCTGATGCGGGCCATCCCATTTGGGGCTGACGGTTCCTTTACCCCGGAAGACTTCGTTGAACGGACCAATTTTGACCTGGCCAACGACCTGGGCAACCTCTTGAACCGGACTGTTTCCATGATCAACCAGTACCAAAAGGGCCTGGTTGCCCCGGTTGACCAGGAACAGGACAAGTACGGCCAAGACCTGGCTGCCGTTGCTGCCAAGGCCATCAGCGACTACTACGGCAACATGGACAAGATGCACTTCTCCAACGCTTTGGAAAATGTCTGGCAGCTGATTTCCCGGGCCAACAAGTACATCGATGAAACTACCCCATGGGTTTTGAACAAGGAAGGCAAGACTGAAGAACTTTCCAGAGTCATGAGCAACCTGGCGGAAAGCCTGCGCCTGGTAGCCATCATGATCGCTCCGGTTATGACCGAAACTCCAGGCAAGATGTTTGCCCAGCTGGGCCTGGACTGGGAAGACGAAAGCCAGAAGGACTTGCAGTTCGGCGGCTTTGCCTGGGACGTAAACGTCGTTGCCAAGCCAACTCCAATCTTCCCACGCTTGAAGAATGACGAAGAAGTGGCCTACATCAAGGAAGAAATGAAGAAGGCCAAGCCAAAGAAACAGTCAAGAAGAGAACAAAAGCAGGAAGAAAAGCAGATCACGATCGACGACTTTGCCAAGGTCAAGATCCAGGTCGGCAAGATCCTGTCCGTTGAACCAGTCAAGGGATCAAGCAAGCTCTTGATGTTCAAGCTAGACTTCGGCAAGACCGGCGAGCGGCAGATCTTGAGCGGGATCCGCAAGTTCTACCCAGATGAAAGCATCCTTTTGGGCAAGAAGGTTCTGGCTGTAACCAACTTGAAGCCGCGCAAGATGCTGGGCCACGAAAGCCAGGGCATGCTTTTGTCCAGCGAAGCTGACGGCGATGTCAAGCTGGCCCTGGTCGGCGACGAACACCCGGTAGGGGCTGAACTGGGCTAATGAAGATCTACGACAACCATACCCACTTAAACGACAAGCCTTTTGCCGGCAAAGAAGCCGATTATATCCAAAAAGCCAGGGACTTGGACGTGGTTGGGATGAACTGCGTGGGCCAGGACCCGGAAATGAACCTGGGCGCCCTGGAATTAGCTAAGCGCTTTGCCAATGTCAAGGCCATCATCGGCTACTGCCCGGACGTGGCTAAAGACTATGACCAGGCAGCTGAAGACCTGCTGGTTGAGCAAGTTAAAGGCGGCCAGGTAGTCGCTATCGGGGAAATCGGCCTGGACTACTACTGGGATGAGTCTCCCCGGGATGTGCAAAGGAAAGTTTTTGCCCGGCAGATTGAAGTTGCCCGCGATTTGCAATTGCCGGTAAATATCCATACCAGGGACGCCTTCGCGGACTGCTGGCAGATCTTGAAAGAAGCAGACCTGGAATACGGGGCAGTTTTGCACAGCTACAACGGGGGGGCGGAATGGACGGAAAAGTTCCTGGACTTGAACGTGAACTTTTCTTTCTCCGGGGTCGTTTCCTTCAAGAAGGCCGCGGAAGTGCATGAGTCAGCCAAGCTGGTTCCTTTGGACCGGCTTTTGGTTGAAACTGACGCGCCGTTTTTGACTCCGGTGCCTTACCGGGGCCGGCAAAACGAGCCTGGCTATGTCCGCTACGTTGCCCAAGCGGTCGCGGACTTGAAGGGGCTGGATCTGGCCGAAGTTGCGGAAGCAACTTATGCTAATACAATGAGGATTTACGGATTAAATGCAGAAGAATTTTAACGCCGTCGTTGTCGTGGAAGGCAAGGACGATACGATTCGCTTAAAGCAGTTTTTTCCAGGAATTGAGACGGTCGAGACAAATGGCTCGGCCGTTTCTGATGCGGTCCTGGCCAAGCTGAAGAAGCTGGCCCAAAGCCGCGAGATTATTGTTCTTACCGATCCTGACGTTAATGGCGAGCGGATCCGCCGGATAGTGACCGAAGCCGTGCCAACGGCCAAGCAGGCCTTTATTACCCGCAAAGAAGGTGAACCGCAAAAAAAGGGGAGCCTGGGGGTAGAGCACGCTTCAAAGGAAGCTTTAGAGCGGGCCTTGAGCGACTTACGCGAGGTCCAAGCCCAAAAGGCTGACTTTGACTACGGGGACTATGTTGACTTGAGCCTGGCCATGGGCCGCCAGTCCCGGCAATTACGGGAGGCAGTCGGGATCAAGCTGGGGATCGGCTATGCCAATTCCAAGCGTTTTTACCAGCGCCTGCAGACTTTTGGCATCAGTTTGGCTGAACTCAAGCAGGCAGTAGAGGAGGCGGAAAATGACCAACAGAATTCCAATCGCTAGTCCGGTAAGGACGGCGGCTATCGTCAATCGTTACTTTGTGCACGCCAAGAAGAACCTGGGCCAGAACTTCCTGGTTGACCTGGATGCCGTCCAGGGGATCGTCCGGGCAGCCGGGATTGAGCCCGGCGACCAGGTAGTGGAAGTCGGCCCGGGGATCGGCTCTTTGACTGAACAGCTGCTTTTAGCCGGAGGCAAGGTGGCGGCTTATGAAGTCGACCAGAGCCTGCCGGAAATCCTGGCCAACGAACTGCCGGAAAAGGTGGACGGCCAAGACCTGGACCAGCGCTTCAAGCTGATCATGAAGGACGTTTTGAAGGCGGACTTTGCAACTGACCTGGCGGGCTTTTTTGACTTAAGCAAGCCCGTCAAGGTTGTGGCCAACTTGCCTTACTACATCACCACGCCGATAATTTTCAACCTGCTGGAATCCAGCCTGGACTTTACCAGCCTGACCTTGATGATGCAAAAGGAAGTGGCTGAGCGTCTGGCTGCCCAGCCGGGCTCTAAGGCCTATGGCCCCCTGTCCATTGCCGTGCAGACTCAAATGAGCGTGGACCTGGCCTTGGAAGTTGGGCACGCTTCCTTCATGCCCCAGCCAAAGGTTGACTCAGCCGTAGTGGTTTTAACGCCTTTGGAAAAGCCAGCTGACGTTGGCGACCGCAAGCAGTTCAACCGGGTGGTTAAGCTCTGCTTTGCCCAGCGGCGCAAGACCCTGGCCAACAACTTGAAGACCTTGCTTCCAGACAAGGAAGACCGGGAAAAGCTGCTGGCCGACCTGGACCTGGACCCGCGCCAGCGGCCGGAACAACTGGCCATCAGCGATTTCATCAGAATCAGCCAGGCTATAGCGGAAATGAATAAATAATTCAGTCTTGATTTGAATAGCAAATTATGTTATAATATTCCGATAAAGGAGTGTCATAATTGCTAATCAATATTCAAGACATTAAGCAGAAGTTAGATGCCCACCTAGGCGAAGAGCTGACAATCGTTGCCCAAGCGGGCCGCAAGAAGGTAACCAGACGCCGCGGCATTTTGAAGAACACGTTTCCTGCCGTGTTTGTAGTGGCTCTGGACCAGGACAGTAATAATTTTGAACACGCATCATACAGCTACACTGATGTTTTGACCAAGAACATCCTGCTGGAATTTGATGATGAAAGCGATGCAGAGTGAAAGCACGAATTTTTGCACTAACATTTCTTGAAAATGTTAGTGATTTTTTTACCCTTTAGAGTATATTAGTATAAGTACAAAAACAGACATTGGGAAGGAAAGAGAATGAAACGTTCTGAAAGATTAGTAGATATGACCAAGTTTTTGATGGAGCGCCCGCATACTTTGATTGCTCTGCCCTTTTTTGCCAAGCGCTACGGGGCAGCGAAGTCATCAATCTCTGAAGACTTGGCCATTTTGAAGCACACCCTGGCCAGCAACGAGGATGGGATCCTGGAGACCGTTGCCGGGGCAGCCGGCGGGGTCCGCTATATCCCGTTCTTAGGCCAGAAGCCGGCTGAGAAGTACCTCAAGGACCTGGCAGGCCGCATCCAGGACTCCAGCCGGATTCTGCCGGGCGGCTTTCTCTACCTGTCAGATATTTTGGGCGGGCCATATGACCTGGAGATGATCGGCAAGCTGATCGCCACCCGCTATGCTTACGCCAATATCGAAGCCGTCATGACGGTGGAAACCAGGGGGATTTCTTTGGCTAATGCCGTGGCCAGCTACTTGAACGTCCCAGCGGTAACCGCCCGCAAGCGGTCCAAGGTGACTGAAGGGGCTACTGTGTCCGTTAACTACATGTCTTCTTCAACTTCCCGGGTAGCCAAGATGGAGTTGCCGACACGGGCCCTGGACAAGGATACGAGCGTTCTGATTGTGGACGACTTCATGAAGGGCGGCGGTACTCTGGACGGGATGCGGCAACTGGTCAAGGAATTTGACTGCCAGGTGGCCGGCGTCTGTGTTCTTTGCGAAACTGAATATGAAGAGGAACGTAAGATCAAGGACTACGTTTCCTTGGTCAACATTGACCAGATCGACAGCGAAAAGGAAATCGTCCTGGCTCAACCGGGCAACTTTTTGACTAGAACTAACTTCGACCGTTTCTAAATGTTACAATATAAGCTAGTCATGAAGGCTAGCTTATTTTGATTTAGAAGGTTACAAACAGATGGAAAAATATGTCGTAGTTTTGGCTGCCGGCAAGGGCACCAGAATGAAATCCAAGCTTTACAAGGTTTTGCACCAGGTTTGCGGCAAGGCCATGGTTGAACATGTCGTTGATGCCGCCAGAGCGGTCAAGCCAAGCAAGATCGTGACCATTGTCGGCCACGGGGCAGAAGACGTGGAGAAAGTCTTGGCGGGCAAGTCTGAATTTGTCATGCAGGAAGAGCAGCTGGGCACCGGCCACGCGGTTATGCAGGCGGAAGGCCAGCTGGCTGCTTTGGAAGGGGCAACGCTGGTCGTAACCGGGGATACCCCGCTTTTTACCAGTGAAACTTTCGAAAAGCTCTTCGCCTACCATGAAGAAGAAGGCAACGCGGCCACGGTTTTGACGGCTGAAGCTCCGGATCCTTTTGGCTACGGGCGGATCATCAGAGATGACCAGGGCAATGTTTTGCGGATCGTGGAACAAAAGGACGGCAAGCCGGAAGAACTGAAGGTCAAGGAAATCAACACCGGGGTCTTCTGCTTTGACAACCAGGACTTGTGGGCTGCTTTGAAGCAAGTCGGCAACGACAACTCTCAAGGCGAGTACTACTTGACTGACGTTTTGGAAATTTTACGCAAGGCCGGCAAGAAGGTCGGGGCTTACAAGATGCCGGACTTCAGCGAAAGCCTGGGCGTAAACGACCGGATCGCCCTGGCTGAAGCCACCCGGATCATGCAAAGAAGAATCAATGAAGGGCACATGCGGGACGGGGTTACCTTTATCGACCCCGCCACGGCTTACATTGACGCTGACGTGGAAATCGGTAATGACACGGTGATTGAAGGCGGCGTGACAATTAAAGTCCACACCGTGATCGGGTCAGACTGCTTGATCACTTCCGGGTCAAGAATCGTTGACAGCCAGATCGGCAACGGCGTGACGGTAACTTCTTCTACGATTGAAGAATCAATCATGGAAGACAACACGGACATCGGGCCAAACTCCCACTTGCGGCCAAAGTCTTTGATTAAGCGGGGAGCCCACCTGGGCAACTTCGTGGAAGTCAAGAAGGCGGAAATTGGCGAAAACACCAAGGTCGGGCACCTGACTTACGTTGGGGATGCTACTTTGGGCAAGGACATCAATGTCGGCTGCGGGGTCATCTTCTCCAACTTTGACGGGGTCAAGAAGTTCCACACGACGGTTGGTGATAAGTCCTTCATCGGGGCCGGGTCAACCCTGGTTTCTCCGATTAATGTGGCCGACCATGCCTTTATCGCGGCTGACTCAACCATTACCAAGGACGTTGGCAAGTATGAAATGGCAATCGCCCGGGGCCGGCAGGTCAACAAGAAAGACTACTGGCACAAGCTGCCTTTGTCTGAAGACGAAGAATGGAAATAATCTCGAAAAGGAGCTCCGGCTCCTTTTTTTAATAAGTAAAATGCATCCGTTTACAGTAGCTTTTAAGAAAAAATTTCCTTTCTTTTGAGAACTTTAATAAGCAATTTTTAAACAGAGGGTGTATAATCTAGGCAATGTACAAAAAGAAGCAAGAAAGGTTTGCATATCGATGAAGTTTACTAAGAAAATTGCTTTTGCATCAGCATCATTGGCTTTGACCCTGGCTACTCCAGCCGCCCTGCTTACTCAAAACGTGGCTTTTGCCAAGACCACCACGGTTAAGCAAGCAACCAAGGTTAAGGTAACTAAGAAGACCACTCCTTTTTACCACAAGGACGGTTCTAAGTTCACCAAGAAGAAGCCTTACGTTTACGGCGGCTGGAAGAGCACTGTAGCTTACAAGAACACCAGCTACAACGTGGTTAAGACTGTAACCATCAAGGGTGCTAAGTACTACTACATCGGCAACGACGCTTACCTGAAGGCCAGCGACGTCAAGGTAACTGCAACTAAGACGGTTAAGTCCAGCTCAACTTCAAGCGCAAAGAAGGCAAGCACTAGTTCAAGCAAGTCCAGCTCCAAGAAGACTAGTTCAACTTCCAGCTCAACTTCAAGCAGCTCTTCTTCCAAGAAGACTGTAACTCAAATTCAAGTAACTAAGAAGACCACTCCTTTCTACCACAAGGACGGTTCAAAGTTCACTAAGAAGAGCCCATACGTTTACCAAGGTTGGAAGAGTACTGTAGCTTACAAGGGGACCAAGTACAAGGTTTCCAAGACTATCACCATCAAGGGAAGCAAGTACTACTACATCGGCAACAGCGCCTACCTGAAGGCCAGCGCCGTTAAGGTAATCGCATCTAAGTAATCCAGAAGAAGCTTTGACAATTGTCAGAGCTTTTTTCTTTGCCCGAAAACAGACGATTTTTTCTATCCGCTTGAAAAACAAAAGGCTTTCTTTCCCTTTTTTCAGGTCAAAACAGGAGTAAGAGGGATTTTTTGCTTAAAAACTGAACACAAATCCCTTTTTTCCAACAAAAGAATGCTGGATTTTGTTAGAATAGATCTGGTAAATGCTGTTTTTTTCGGAGGAAATTATGTCTTACAAGGACAACATCAAGCTTTTTGCGCTTAACTCAAACAAACCGTTGGCAGAAAAGATTGCTAAGCGGATGGGGTTAAAGCTTTCAACCTCAAGCGTCGTTCGCTTCAGCGACGGTGAAATTCAAGTCGACATCGACGATTCTGTCCGTGGCAAGGACGTCTTCTTGATCCAATCCACCAGCGCGCCGGTCAACGACAACCTTATGGAACTTTTGATCATGATCGACGCTGTCCGCCGGGCCAGTGCCGCTTCCGTAAACATCGTCCTGCCTTACTACGGCTACGCTCGTCAAGACCGGAAGACCCGGTCCAGAGAACCAATCACTGCTAAACTGGTCGCAGACATGATTCAAGCTGCCGGGGCTGACCGCGTCCTCTCACTGGACCTGCACGCTCCGCAAATCCAAGGTTTCTTCGACATCCCTGTCGACAACTTGATGGGCGCTCCTTTATTGGCTGACTACTTCCTGAGCAACCACCTGGAAGAAGACGCTGTTGTCGTTTCTCCAGACCACGGTGGCGTTACCCGGGCAAGAAAATTAGCTGAATTCCTGGGCACTTCAATCGCCATCGTCGACAAGCGCCGGCCAAAGGCCAACGTTGCCGAAGTCATGAACATCATCGGTGACGTCAAGGGCAAGCGGGCCATCTTGATTGACGACATGATCGACACTGCCGGCACTATCACCCTGGCTGCCCAGGCCTTGAAGGACGCCGGTGCTACCGAAGTTTACGCCTGCGCGACCCACGCCGTTTTGTCCGGCCCAGCCGCAGACCGCTTGAACAATTCCGTAATCAAGAGCCTGGTCTTGACCGACTCAATCCAACAGCCAGCCGAAAAGAACCTCGACAAGATGATTCTCGTTTCCGTTGGGCCTTTGATGGGTGACGCTATCAAGCTGATCATGGAACACAAGCCAATGAGTCCGCTCTTTGACACTCGTTACGACGCTAACAAGTACAAGGACAAGTAAGGACCTGTATGCAAAAACAACCGCTGCAAATTCTGCAACGGTTGTTTTCTTTTGGAAATTATTCTTTTGCCTTATTTTTTCGTAAGCGATTCCCCGTTTTTCAGGTACTGCTGAAAATCTGCCTGCTTGAGCATGGCAACCGGGAAGAAGAAGCGCTCATCGCCCTGCAGGGTTCCGTTTAAGGCCTTGACCAGGGGGCTGAGCTGGGACAACTCAATCAAGCTGCCGTCTTCCTGCATGATCTCGATCTGGCTGTTGGCGTTCTTGCCACTTGGCTTATAAGCGTCATATGGCTCGTCAAAGGCTGACCCTACTCCGGTATAGTAGTCCGGGTCAAAGCCGGCCTTCTTGATCAAGTCCTTTAATTGCGGCAAAAGCTGCTTGCTTTCTTCGTTGATCTTCGCGCTGGCTAAAGGCCGCCGGAAGAGGTAGCGCTTGGTCAGGTCCACTAAAACCGGGTCGCTGGACTCAGTCCACATGCTGAAGTTGGTCTCCATGACCCCGTCATCCATCTTCAAGTAGTCTTGCAAGTCCCAGGTACCGGCCAAAAATCTGGCTAAACTTGGCGTAACCGGCAGTTCTTTTTCCTGGTAGAGGTACTGGGCCCGCTTCAAAAGGTGGTGAAGGATGACCTCCATGGACCGGTTGACCCGGTGGTAGTAGATCTGCTGGTACATCTGGTAGCGGGAGACGATATAGTCTTCAACGGCGTGCATCCCGTTAGCCGTAAAGCAAACCCCTTTTTCATAAGGGCGGATGACCCGCAAGATCCGGGACAGGTCGAATTCCCCATAAGAAGCCCCCGTGAAGTAGGCATCCCGCAAAAGGTAGTCCATCCGGTCGGCGTCCGCCTGGCTGGAGATGAGCTTGACCACCTGGGGATTAGGGTAGGTCTTGGCGATCACGCTGGCCACCGCCTTTGGGAAGTCCGGGTCGACCTTGCTCAAAGCTTGGTTGACCTCAGTGGAAGGATCCAGAATGATCTGCTGGCCGATCTGCTCATGGTTGGTGCCGAAAAGGTGCTCAAAGGTGTGCGAGTATGGGCCATGGCCGATGTCATGCAAAAGGCCGGCCATCTGCACCAGCAGGTTTTCGCTGGGGTCCCAGAGTCCGTCGCCGGTACTTTGACTAGGGTATTTGTCAGTAAAAAGGTTGCTGATCCGTCGGGCCAGTTCGTAGACGCCCAGGTTGTGCTCAAAGCGGGTGTGGGTGGCGCCGGGGAAGACGAAGGCCGTCGGGCCCAGCTGCTTGATCCGCCGCATCCGCTGGAATTCTTGGGAGCGGACGACTTCCAGGGCCACTTGGGTGTCCAGGTGGATATAGCCGTGGACCGGGTCACGGACGACGACTTCGCGGGCCAGTTTAGGACTGTCAAATTTTGTCAAAAGTAAATTCTCCATTCTTAATTGTTTTATATTTTTGCCAAAACATAGTAAGATATACTTGACTAGCTATAGAAATTATAGCAAAAGTTGCCAGAGGCCGCTGCTTGCGGCTGTTAAAGGAGAAGAATTTTTTATAAAGATGAGCAAGATTAAGATCGATTTGACGAGCAAGATTACCCAGGGCGAGCAAACGGAAACCATCCGCCAGCAGGCAGAAGGCGAATTGCGGGAAGACGGCGCGGTGAAAAGAATTTTTTACGAGGCGGAAAAGGTGCCGGTCAAGATGCTCGTAAAAGAGCAGGAGCTCTTAATCCGGCGGGGGACTGACCACAGCAACTTCTCCCAAATGCATTTTATTTTAGGCGAGAAGGGGCAGTGCAAGTACGTGGTTGAGGGCCGGCAGCTGGATCTCTTGTCGGAAACCAAGCGCCTGGAATTGAAAGAAAATGCCGCTGGTCAGCAACTTGAAGTTGAATATGACCTCTTTAGTGGTGTAGACTTAATTGGTAGTTATGCCGTCTCGTTGATTTTTGCTTAAATGACGTGTAAAATAGACAAGATTGAATAGAGAGGACGTTCAACTGTGGGATTAGCTGATTTTAAAGACGTGGATCGCAACGAATTGTCAATGATTGAAGTTGCACACGCAATTTTGGAAGACCGTGGCGAAAGAATGGCTTTTGCCGATATCGTTAACGAAGTGCAAAAGTACCTGAACAAGAGCGACGAAGAAATTCGCCAGCGCTTGCCGCAATTTTACACGGACATGAACACCGATGGCCGCTTCATTTCCATGGGTGAAAATGTCTGGGCCCTGCGGACCTGGTTCAAGTTCGAAGCTGTCGATGAAGAAGTCGACCACCCAGAAGACGACGGCGACGAAGAATCAACTCGCAAGCACCACAAGAAGGTCAACGCCTTCCTGGCCACGACTGAAGGCGACGACGTGATCGACTACGAAAACGATGACCCAGAAGACGAAGACTTGTCCGACGACAGTGACGCTGACGAAGATGACGCTGACGACAACTCCGGCGACGATTACGACGACAATGAAGACGACGACGATGACGACTCATTGCTAGACGGGATCGAAGATCAGCTGTCACAAATGGATGACGACGACCTTGATGACGATGAAGACGAAGAATAGGATTTTGTCCTTGACTTGCGGCTGAAAAGTCGTTATTATTTTGTTTGGGCACCCTATGTGCGTTTAGCTCCCTAATTGCTAGGGAGCTTTTTTATTATTTTTCAAAGGAGAGCTCAATGACCAAATATATCTTTGTGACTGGCGGCGTTGTTTCATCATTGGGGAAAGGGATTACTGCATCAAGCATTGGTCGCTTGCTGAAGAACCGCGGCTTAAAAGTTACCATGCAGAAGTTCGATCCATACATCAACATCGACCCCGGTACGATGAACCCTTACCAACACGGTGAAGTTTTCGTGACTGACGACGGTACGGAAGCTGACCTTGACTTGGGCCACTATGAAAGATTGGTCGACGTTAGAACCAGCAAGTACTCTAACGTGACGACTGGCAAGATCTACCAGGAAGTCCTGCAGCGCGAACGGCGCGGCGACTACCACGGCGGCACTGTACAGGTGATCCCGCACGTAACTAACATGATCAAGGAAAAGGTCATGCGGGCAGCGCAAATGACCGACACTGACGTGGTTATTTCCGAAATCGGCGGTACGGTCGGTGACATGGAATCAACTCCGTTCATGGAAGCCATCCGGCAAATGCGGCGGGAAGTCGGCTCAGAAAACGTCATGTACGTGCACGTTACCTTCGTTCCTTACCTGCGGGCAGCCAAGGAACTGAAGAGCAAGCCGACCCAGCAGTCAGTTTCCATGCTGCGGTCAATCGGGATCCAGCCAAACATGCTGGTTCTTCGCTCAGAAATGCCAGTTCCGCAGGAAATGAAGGACAAGATCTCCACTTTCACCGACGTTCCAGTCGACTACATCGTGGAATCTTTGGACGCGCCATCTCTGTTTGACGTGCCGTTGTCCTACCAGGAACAAGGCGTTGACCAGAAGGTCGTTGACTTCCTCCACATCGACAGCCCGAAGCCGGTTGCCGACATGGACGAATGGCGCCGGATGGACGAACGGGCCAAGAACTTGAAGTACAAGACCAAGATCACCCTGGTCGGCAAGTACGTCGAACTGGAAGATGCCTACATTTCCGTAACTGACGCTTTGCATCACGCCGGCTACCTGTACAACAGCAAGATCGAAGTTGAAAAGATCCAGGCTGAAGACATTACTGAAGACAATGTAGCCGAACTTTTGAAGGACACTCAGGGCTTGATCGTGCCAGGCGGTTTCGGCACCCGGGGTCTGGACGGGATGATCACTTCTATCAAGTACGCCCGCGAACACGACATTCCATTCCTGGGGATCTGCCTGGGGATGCAGATGGCCAGCGTGGAATTCGCCCGCAATGTTTTGCACCTGGAAGACGCCAACTCAGCTGAAGCAGAACCAAACTGCAAGAACAACATCATTGACTTGATGGCTGACCAGCGCGACCAGGAAAAGATCGGCGGCACCTTGCGTCTGGGCTTGTACCCAGCCATGCTGAAGGCCGGCACTAAGACCCGGGAATGCTACGACGGCCAGGAAGTCATCCAGGAACGTCACCGTCACCGCTACGAATTCAACAACAAGTACCGGGAAGACTTTGAAAAGGCCGGTATGACCTTCTCAGGCATTTCTCCAGACAACCACCTGGTGGAAATCGTTGAAATCACGGACAAGAAGTTCTTTGTTGCCGCTCAATACCACCCGGAATTCCTGAGCCGGCCAAACCGGCCAGAAGGGCTCTTCAAGGGCTTTATTGGGGCAGCCAGCGGTTTGCAGGTCGACAAGTTCTAAATTTTGTACGATAATAATAGATAGTGACAAGAGAAGAGAAACCTCTTCTCTTGTTTTTTTGACGAAGATCTATTAACATTATTATGATAATTTGACAAAAGAAAAGGAATACTCTCCCAATGAAGAAAATGATAATTCACGGAGGGAAACCCCTGCAAGGCGACATCTGGATTGGCGGCGCGAAGAACTCAACGGTAGCGCTGATTCCGGCCTCAATCCTGTCGAGAACGCCGGTGACCCTGGAATCAGTTCCGCGAATTGCCGACGTTGACAATTTGATGGACTTGTTGAGCGAAATGGACGTGCACTGCGACTTCCGCGAAACGACCCTGCAAATTGACCCGACTGAAATCAAGATGAGTCCCCTGCCAGCTGGGAAGATTAAGAGCTTGCGCGCGTCTTACTACTTTATGGGCGCTTTGCTCGGTCGTTTTGGCAAGGCGGTTGTAGGTTTTCCTGGTGGCGATGACATTGGCCCGCGGCCGATTGACCAGCACATTATGGGCTTCCAATCCCTCGGCGCCGACGTTAGATGTGAAAATGAGCAGATTGTAATTACCGCGCCTGATGAAGGGTTGAAAGGGGCCAAGATTCACCTGAAGATGGCTTCTGTTGGGGCAACGATGAACATCATCATGGCCTCAGTCACGGCCAGCGGCCGGACGGTGATCGAAAACGCGGCCAAGGAGCCGGAAATCATCGACCTGGCAACTTTCTTGAACAACATGGGGGCCAAGATCCGCGGGGCGGGGACTGACACCATCAGAATCGACGGGGTTGACCGCCTGGAGGCCAAGGTGCCGCACACGATCATCCCTGACCGGATTGAAGCCGGGACTTACATTTCCATGGCAGCCTGCATCGGTAACGGGATCCGGATCCACAACATCATCGCTGAACACCTTGACGCCTTTTTGGCCAAGGTGGAAGAAATGGGCGTGGTGATCGACACTGATGAAGACTCCCTCTTCGTTTACCCGGCCGGGGACCTGCGCATGGTCCAGGTCAAGACCGGGACCTACCCGGGATTCGCGACTGACTTGCAGCAGCCAATTACGCCGCTCTTGCTGACGGCTAAGACCGGGGAAGGGGTCATCATCGACCCGATCTACCCGAAGCGGACCCGGCACGTGCCGGAACTGCAGAAGATGGGGGCTCCCATCACGGTCGTTAACAACATCATTCTGGTTCAACCGGGCAGCCGCCTGCACGGAGCGGTGGTTCACGCTGACGAAATCCGGGCCGGGGCCTGCTTGATGCTTACGGGCTTGATGGTTGACGGCGAAACGGTGATCAACAATGCTGGCAACATCTTGCGCGGCTATGACCGGGTGGAAGAAAAGCTGCGCCAGCTGGGCGCTGACGTGGTCATCCGGGACGTGGAAGATTAACTTGAGCCCTTGTCAAACGGGCTGGATAGTGGTACTATATTAGAGTTAATCGATTAATCTATGGCCTGCAGAAGGCTATGGCAAAGGAGTTTTAGAATTATGAAAAAAGGTATTCACCCAGATTATCAAGAAGTTTGCTTCATGGACGCAGCAACTGGTTTTAAGTTTGTTGCCGGCTCAACTTTGAAGTCATCAGAAACTGTTGAATTCGAAGGCAACACTTACCCATTGATCCGTGTTGAAATTTCATCAGATTCCCACCCATTCTACACTGGCAAGCAAAAGTTTGCCGCAGCCGATGGGCGAATCGAACGTTTCAACAAGAAGTACGGCTTCAACAAGAAGAACTAATCGTTCTCTTTACTTTAAAAGCAGCCCTCTTGGGTTGCTTTTTTATTGCGAAGAGCGCTAAACAACGTATAATATACTAAGTGTTATTCTCAAGGAGCAGTATTGGAATGAAAATGCAGTTGGCAGAAATCGCCCAAGCCTTAAATACCAGTTGTGAAGGGGACGCAGAAACGGTCATTACCTCAGTGGCCTTTGACTCAAGAAAGATCAGCCAGGGCGCCCTCTTTATCCCGATCAAGGGGGAAAGAGACGGCCACGATTTTGTGGGTTCAGCCATTGAAGCCGGCGCCAGCGCCACTTTGTGGGAAGCTGGCAACCCAAACAAGCCGGAAGGCATCGCGGTTTTAGAAGTTGCCGACACCTTGAAGGCCATGCAGGATCTGGCCCGCTACTACCTGCAGAAGGTCAACCCAACCGTGGTCAGCATCACCGGCTCAAACGGCAAGACCACGACCAAGGACATGGTGGCGGCGGTTTTGGCCAAGCGCTTCAACGTTTACAAGACCCAGGCCAACTTCAACAATGAAATCGGCGTGCCGATGACCATTTTGGAAATGAAGCCGATCACTGAAATCCTGGTTTTGGAAATGGGGATGGACCGAGCTGGCCAACTGCATGAACTGAGCCAGCTGGCCCGGCCGGATGTGGCGGTCATCACCATGATCGGGGAAGCCCATATCGAATTCTTCGGCAGCCGGGACAAGATCGCCGACGCCAAGATGGAAATCACGGACTTTTTGCAAGAAGACGGCGAATTTATCTACAACGGTGATGAACCCCTCCTGGCGGAAAGAGCCGCAAAGCTTCCCCAGGACAAGTCCACCTTCGGTTTCGCGGACTCTGACAGCATTCATGCCAGTGACCTCCGCAGCACCATGCACCATTCCTTCTTCAAGATTAACGGGACTGACCGGGAATTCTCAATTCCAATGATCGGCCGCCACAATGTGGCTAACGCCATGGCCGCTATTCTGGTTGGCCGCCACTTCGGGGAAAGCGACGAGGAAATCGCCGCTGGCCTGGCCAACTTCGTGCCAACGGCCAACCGGATGGAATGGGAAAAGGGTGACTGCGGTGAAGACATCATGAGCGATATCTACAACTCCAACCCAACGGCAGTTAAGGCCGTGACTGCCTCCTTTGGCCAGGTTCCAGTCAGTGAAGACGGCCGCCGGATCGCGGTTTTGGCCGACATGCTGGAACTGGGCAGCCGGTCAGCCGACCTGCACAAGGGTCTGGCTGCCTGCCTGGACCCGGACAAGATCAACGTCCTTTACCTTTACGGGCCGGAGATGAACCACCTTTACCAGGCCCTGCTGGACAAGTACGGCCAGCAGAATCTGCACTACTACCCAGAAGACGAGATGAGCCATTTAATCGATGATTTAAAGAGCGACATCCACAGCCAGGACATCGTTTTGCTGAAGGGGTCCCACGGGATGCACCTGGAACGAGTCCTCGACAGACTGAAATAGGAGAACAATTTGAAATTTACTGAACTAGGATTGAACGACAATATCTTAAAGGCAATTAAGCGGTCAGGCTTTGAAGAAGCCACCCCGATCCAGGCCCAGACCATTCCTTTGGCTCTGGCAGGCCAGGACGTGATCGGCCAGGCCCAAACCGGGACGGGGAAGACAGCTGCCTTTGGTCTGCCAATCCTGCAAAAGCTGGACCTGGACAAGCAGGAGCAAGCCATCCAGGCCATCGTAATTGAACCAACCAGAGAACTGGCCATCCAGACCCAGGAAGAACTTTTCCGCCTGGGCAGAGACGAAAAGGCCAAGGTCCAGGTCGTTTACGGCGGGGCGGACATTGGCCGGCAGATCCGGGACTTGAAGAAGGTGCCGGAAATCCTGGTCGGGACTCCTGGCCGGCTTTTGGACCACTTGAAGCGCAAGACCATCAAGCTGGACGGCGTCAAGACAGTTGTTTTGGACGAAGCCGACGAAATGCTGGACATGGGCTTCATCCAGGATATCGAAAGCATCTTAACCTATGCTGAAAACCGGGACCAGACCCTCTTGTTCAGCGCGACCATGCCAAAGCCAATCCAGGCTTTGGGCGAAAAGTTCATGCATGACCCGCAAGTCGTGAAGATCCAGGCCAAGCAACTGACGGCTGATTTGATCGACCAGTACTTCGTCCGCGTCCGGGAAAACGAAAAGTTCGACACCATGTGCCGGCTGATCGACGTGGAAAATCCGGACCTGGCCGTGGTCTTTGGCCGGACCAAGCGCCGGGTTGACGAACTGACCCGGGGCCTGGTTGCCCGGGGCTACAACGCGGCCGGCATCCACGGCGACCTGACCCAGGCCCGGCGGATGCAGGTGCTCAAGCGCTTCAAGGAAGGAGAGCTTGACATTCTGGTGGCTACTGACGTGGCTGCCCGGGGCCTGGACATTTCCGGGGTTACCCATGTTTACAACTACGACATTCCGCAAGACCCGGACTCCTACGTCCACAGAATCGGTCGGACCGGCCGGGCCGGCAAGAGCGGGATGAGCGTGACCTTCGTGACGCCAAACGAGATCGGCTACATGCGGACTATCGAGGACTTGACCAAGAAGAAGATGTCTCCTCTGCGTCCGCCGACAGACGCCCAGGCCTTTGCCGGGCAGATGAAGCAGGCGGTCTTGAAGGTGGACGACCTGTTGAGCGGGGATTTGAGCAAGTATGACGACGCGGCGGAAAAGCTGCTGGAAAATTACTCAGCTGAAGACATCGCCGCTGCTTTGCTGAAGGAACTCTCTAACGACAGCGAGGTCAAGGTTACCATCACCCCTGAAAACCCTCACCCTTACCGGGGCAAGCACTCAGGCGGCCGCGGCCGGGGTAGCCGCAGCCGGAGCGGTAACAAGAACTTCAAGGGCAAGCGCAATTTTGACAGAAAGAAGCGCAAGCCAGGCTTTAAGATCCACGGCCGGAAGGGCTAAATTTTTAAAAAAGTAAAAAGGACCGGGCTTTTGTCCCGGCCTTTTTCTCTTTGTGCTATTATTTAAACAGCGTGAGGTGGAAAGATGATCAAAAATATCGGTGTGGACCAGATTGAGGTGGACCGGATCGCCAAGGTCGTTGACCGGGGAGACGGCTTTGCCCGAAAGGTTCTGACCGACCGGGAATTTGCTCAGTACCAGGACTTGACTCATAAGCGGAAGATTGAGTACCTGGGCGGCCGCTTCGCCATCAAGGAGGCCTTCTCCAAGGCCTGGGGAACCGGGATTGGCCAGGCAGTTTCCTTTGAAGACGTGGAAACCTTGAGGACCGAGTCCGGAGCGCCCGTAACGACGTCGCGGATTTTTACGGGGCGGATTTTTTCCAGCATCGCGCATGATGATCACGAGATCGTCGCCGTGGTCGTGCTTGAAGAGCCGGCCGGCTGGCGCCGCGCGATCGGCAAACTATTGCACCTGTTATCTGGGAGGAAAAAATGATCACAGCAGTTAATCGACCAGCAGCCCTGCATATCAACCTGGCTGCTATCAAGGAAAACACCCGGCAGGCCAAGGCCCACTTGAAGCCGGGCCAGAAGCTCTTTTGCGTGGTTAAGGCCAATGCCTACGGGCATGGGGCAGCGCGCCTGGCGCCGGTGATGGAAGAAGCCGGAGCAGACGGCTTCTGCGTGGCCATGCTGGATGAAGGGCTGGAACTGCGCCGGGCTCAGATCGTCAAGCCAATCCTGGTCTTGGGCCTGCAACCGGCTGAAGAAGCCGCCCTGGCTGCCGCCAACGACATTTCTTTGCCGGTGTCCAGCCTGGACTGGCTCAAGAAAGCTGAAAAGGTCCTCCGCAAGGAAGGCCTGCAGTTGAAGATCCACCTGGCCATCGACTCCGGCATGGGCCGGATCGGCTTTAGCGAAGACGAAGACTTCAAGGCAGTCAACGAATATCTGCAAGGCAATGATGCCTTCTTTGTGGAAGGGATGTTCACCCACTTTGCTTCCGCTGACTCTGCTGATGCCAGCTACTTTGACTACCAGGTCAAGCGCTTCAAGCACATGGAAAGCCTGCTGACGGTCAAGCCAAAGTGGATCCACGTGGACAATACCGCGGCCATCCTCTTTGACAAGGACGTAGCCAGCGACATTGTCCGCTTCGGGATTGGCCTCTACGGGCTCAACCCTTCATCAGCCCCAGGCAGCCGGGACTTAGAGCCTGCTTTTGCCCTTAAGCCGGCCATGTCTTTTGTCAGTGAACTGACCTATGTCAAGCAGATCCACAAGGGCTACGGGGTCGGCTACGGGTCAACCCACATAGCAGAAGAAGACGAATGGATCGGGACCGTGCCGGTTGGCTACGCTGACGGCTGGATCCGGAAGTTCCAGGGCTTCAAGGTCAAGGTCGGGGATACTTACTGCCCGATCGTCGGCCGGGTCTGCATGGACCAGTTCATGGTTCTTTTGCCCAAGGAAGTGCCGGCTGGCACGCCAGTTGAACTGATCTCAGCTGATCCGGCAGCGCCAAACAGCCTGCGCCGGGCAGCTGACTGGCTGGATACCATCCACTATGAAGTGGCCTGCCAGTTTAACGACCGTCTGGACCGGATTTACGATAACGAATAAGATCAGGAAAAAACCTCCGAATTTTGCTTCGGAGGTTTTTAATATGCTTTTGCTTATTCTTCGTTCAAGAAGACGCCTGGCTTTTCTTCGCTCATGATGTTCATGCCGGCAGCCAGGTCTTCAACGGCAACGACTGGGAAGCCCTTGGCCTTGAGCTTCTTGCAGATGGCCTTCAGTTCAGTTTCCGTGGTCCCTTGCGGCAGGGTGAAGAGGGTCCGGCGGACGTACTTTCCGTCAAATTCGCTGGCTGGCGCGTCCAGAGTCATGGCCCCGGCCAGGTTGACAAACTTGGCGATGATCTTGGTCATCTTGGTCAAGTTGCCGCTGTCGTTGGTTGACAAGACAGTCAAGACGTAAGCCCCGGTCTTGATGTTCCAGGCTGAGGACAGCATGTCCAGCAGGCGGGCGTGGGTCAAGATGCCGTAGAAGGTGTTGTCAGTGTCCAAAACAGCAATGTAAGGCAAGTCCTTGATGGTAAAGAAGACTTGGAAGAATGGCGCGTTGATCTTGATGGTCTTGGTGGCGTTCTTCAAGAGGTAGGTTACCGGCAGGCTCATGTCCCCGCCTTGGGACTTGTGGCGGTAAATGTGCATCTTGTAGATGTTGCCGCGGAAGATCTTACCGCTGTCATCCAGGATCGGCACGCAACGGTAGCCGGAGCTTTCCAGTACCTTCAAGGCTTCTTCCAGGGTAGCATGTTCGTTGACAGTCGTCAGGTAGTCTTTCTTGATTACCAGTGATTTGATTAACATAGGATAACCTCCGTTATGTGGATTTACATGTAAATGTTTTCTTATCTCATACTTTGGATAACCTCCGTTATGTGGATTTACATGTAAATGTTTTCTTATCTCATACTTTCACATTATAGCATGCAGAAAACAGAAATTAAAGACAGGTTAAAAGACAGGAAAGCGTAAGATTTTTGCCAGTTGTGCTAAAATTATTAAGATACAGCAAGTGAGGAGACTTTTGATGAAATTAATCGTTGCTTTGGGCAATCCTGGCCTTAAATATGAAAAAACCAAGCATAATACCGGCTTCATGGCCCTGGACCACTATTTAGATGAAAAAGGCCTGCGCCTGGACCGCGACAAGTTCACGGCCCTCTACGCCAAGGAGAAAGTGGCGGGCGAGGACGTGATCTTCATGGAGCCACAGACCTACATGAACGAATCCGGCAGAGCCGTGGGCGCGGCGGCCAAGTTCTTCAAGATCGACCCCAGCGACATCCTGGTTATCCACGACGACATGGACATGCCAATCGCCAAGCTGCGGATCCGGGCCGGCGGCAAGTCGGGCGGCCACAACGGGATCAAGAGCATCATTGCCTGCCTGGGGACTGAGAAATTCAACCGCCTGAAGATTGGCATCCGGCACCCGGACAAGCAGAGCGTGGTTTCCTGGGTCCTGACTCCTTTTAATCCCGACCAGCAAAAGGAGCTGGAAGCCAGCTTTGCCAAGGTTGACCAGATCATTGACGACTTTATCGCTGGCAAAGACGCCCAGTACTTAATGAACCGTTACAATTAAAGACAAGCACACGAACATGCAAGTAATTGATTTTTTGAAAAAAGATCAAGGAGTGACTGCTTTTATCGCGAAAACGTCCCGGATCAAGAACTCCCTGCTTACAGGAGTCGAACGGGGCGCTTTTGCTGTCCTCATCCAGGCTTATTTAGCCCAGGTGGGCCAGCCCCTACTTTTGATCGAAGAGAATGAATACAAGGCCCAGGAACGCCACAACGACTTGAGCCGGCTTTTGGCCGATGATGACCTGGAGCTTTTTGTCCTGGACGGGAACCTGGCCACGCAAACGGCGGTCAGTTCACCGGATGAACTCAGCAGCCGGATTCAGTGCTTGAACTTGCTCTTAAGCGGCCGGCCTGGTGTCGTGATCGCGACACCGCAGGGCCTGCAGTATCCGTTAAGTGCCCCGGCCCTGTTTAAAAAGGGACAGAAGCATTTTGCAGTTGGGGATGAAATTGCCCTACCCGACCTGGCCCAGTGGCTGAACCAGGCTGGCTACCACCGGGAAAACCTGGTAGTTAAGCCGGGCGAGTTCGCTATGCGGGGGGACATCGTCGACCTTTATCCTTTGGACCGGGAAAGCCCCCTGCGCCTGGAATTTTTCGGCGACGAAATCGACACGATCAAGACTTTTGACCTGACCAGCCAGCGCAGCCTGGAGGAATTGCCGGAAGCGACCGTACCAGCGGCCAGTGACCACGTCTTTACGGCAGAAGACTTGGACCGAGCGGGCCGGGAACTGGCCGGCGACCTGCCAAAGGAAGCAGCCGCCAGCCTGGAAATCGCCCAGGAAGCCTTAGCTAACGGGCAATTGCCGGATGACTGCAACCGCTATCTGGACTACCTTTTGTCTAAGTCTTTCAGTCTGCTGGACTACCTGCCGGCTAAAGGATTGCTTTTGTTTAACGACTGGCAGCTGATCGCCGAAAGCGTCAAGAATATGGGCGCTATCAATGATGACTACCTGGCCAGCCAGATCGCCAGCAAGATGATGACCAGCCGGCAGAAGCTGCGCCTGGATTTTGACGCGGTGCTAAAGGCAGATTGCCACCACCGCCTCTATGTCAGTCTGATGGCCCACTCCATGGGCCGGCTCCGTTTTGGCCAGCATTTGGCCTGGGACAGCCGGGAGCCGCAGCAGTTTTTCAGCCAGATGGAGCTTTTGAAAACTGAGCTGGACTCTTATGCCAAAAAGGGGCAGACGGTGGTCTTGCAGGTGTCCAGCCGCCGGCAGGCGGAGGAATTCAACCGGAGCTGCCATGACTATGACATCTACCTGCCTTTGGCAGAAGCAGACGGCTTAAAAGAAGGCCGGGCCCAGCTGGTTATCGGCGGCTATGCTAGCGGCTTTGTCCTGCCGGACAGCGACCTGGTCTATCTGACGGAAAAGGAGCTTTTTAACCAAAACAAGCGGTCGAAGAAGCGGATCAAGACCCTGGAAAATGCCCAGCGCCTGCGCAGCTATACAGAGCTCAAGCCTGGCGACTATGTGGTCCACGTCAACCATGGTATCGGCCGCTTTGAAGGCATCCAGACCTTGGAAACCGACGGGAAAAAGCGGGACTACATCACCATCACCTACCAAAAGGGTGACCAGCTGTTTGTCCCGGATGACCAATTGAGCCTGGTGCAAAAGTACGTGGCTTCAGAAGGCAAGCAGCCCCACATCAACAAGCTAGGCGGCAGCGAGTGGGCCAAGACCAAGAAGCGGGTTGCGGCCAGAGTTGAGGACATCGCTGACGACTTGATCGAACTGTATGCAAAAAGAGAGGCGGAGAAGGGCTTTGCCTTTTCCCCGGATGGATCAGACCAGGCGGCCTTTGAAGCTGCCTTTCCTTATGAGCCAACCCCTGACCAATTGCGGGCTACTGCGGAAATCAAGGCTGACATGGAAAAGGCCAAGCCGATGGACCGGCTTTTGGTCGGGGATGTCGGCTTCGGGAAAACCGAAGTAGCCATGCGGGCAGCCTTTAAGGCCATCTGTGACGGCAAGCAGGTCGCCTTCTTGGTGCCCACGACCATCCTGGCCCAGCAGCACTACCAGACCATCAAGGACCGCTTTAAGGGCTTCCCGGTGGAAATTGCCAGCTTCTCCCGTTTCCAGGGCCAGGCCGAAAGCAAGAAGATCGTGGCCGGCCTGAAAGACGGCAGTATTGACTTGGTAGTCGGCACCCACCGGATTTTGTCCAAGGACGTCCAGTTAAAGGACCTGGGCCTGCTCATTATCGATGAAGAGCAGCGCTTTGGGGTGGCCCACAAGGAAAAGCTCAAGCAGCTGAAGACAAATATTGATGTTTTGACCCTAACGGCCACTCCGATCCCGCGGACTCTGCACATGTCCATGATCGGGATCAGAGACCTGTCAGTCATGGAAACGCCGCCGCAAAACCGGTATCCAATCCAGACTTATGTCCTGGAACAGTTGCCAGGCACGGTCAAGGAGGCCTGCCAAAGGGAAATGCAGCGGGGCGGCCAGGTCTTTTACCTGCACAACCGGGTCGGGGACATCGAAGAAACGGTTGCCCGCTTGGAGCAGCTTTTGCCAGAGGCTCGGATCGCCTATGCCCATGGGCAGATGAGTGAAAACCAATTGGAAGACATCTTGAGCCGCTTTTTGGACCGGGAATTCGACATTTTGGTCACCACGACCATCATTGAAACCGGGATCGACATGCCTAATGTCAACACCATGATCATTGAAGATGCCGACCACTACGGCCTCAGCCAGCTCTACCAATTGCGGGGCCGGATCGGCCGGTCAGCCCGCCTGGCCTATGCCTACTTCCTCTACCAGCCAAACAAGGTTCTGACGGAAGTGGGGGAAAAGCGGCTGGACGCCATCCGGGACTTTACCGAGCTGGGGGCAGGCTTCAAGATCGCCATGCGGGACTTGTCCATCCGCGGGGCCGGCAACATGCTGGGGGCCCAGCAGCACGGCTTTATCGACAGCGTCGGCTACGACCTCTACTCACAGATGCTGGCTGACGCCATCAAGGAGCGGCAGGGGAAGAAGCCAGTCAAAAAGAGCAATGCCGAGGTCGACCTGGGCCTGGAAGCTTATATTCCAGAAGACTACATCGCCGACCAGGAGCAGAAAATCGAATTTTACAAGAAGATCAAGGGGATCGGCAGCCTGCAGAACCGGGAAGACATCGAAGATGAGCTCCTGGACCGCTTTGGTGACTATCCGGCAGCTGTTGAGAACCTGCTCAACGTGGCCAGCCTGAAGGCCAGCTGCGACTTGGCCCAGATCTTGACTCTGGTCAAGGAAAAGGCCCAGATCCGGGTCATTTTCAGTGATTCCGGCAGCCGGGAAATGGAAGGGCCAAACATCTTCAAGGCACTGGAACATGTTTCCTGGAAGGCCCGGATCGCACTTGGCGCCCAAAATCGCCTGGTGGTTACCCTGCTTTTGCCAGACAAGCTGACCCGGCGGGCCATGTTCACGGAACTGGGCACTTTTGCCAAGGACGCGGCGGAGATCATCCAGCGGTAATTTTTTAAGAGCAAAAAGTTAAAGTAGGAAAAGCTAAAAAAGCAAAAATTAACAGACAGGAGACAAGCATGAGAATCGACAAATTTTTGAAAATTTCCCGCCTGGTCAAGCGCAGAACGGTGGCCAAGGAAATGGCTGACCAGGGCCGGGTAAGCGTGAACGGCAAGACCGTCAAGTCCAGCTACAACGTGGTTGTCGGCGATGTAATCGCCGTCGCTTACGGAACCAGGGTAATTAAGGCCAGGGTCCTGGACTTGCGGGAAACGACCAAAAAGGCGGAAGCCGGGGACTTATACGAATTAGTCGACTAATGACTTTTTTTACCAAAGCTGATATACTGAATCTGTTATATGATTTTAGGATAGGGTAGACAGTGATGGGGAACAACAGAGGAAATCAGCAAAATGTAACGCCGCTGCGGCCGGACCAGGATGTCCGCCGCCTGAAGAAGCGGCAGATCAAATTCAGGGAAGTCCACCGGGTCCGGCGCAACCGGCTGCTGGCCTTGATCTTGCTGGTCTTTGCTGTCTTGGGCTTCCAGCTGGCCATGACCAAGGCCCGGACGGCCAAGATCCAGAAGCAGGTCAGCCAGAACCAGGCAACCTTGACCAAGATCAAGAAGAATAAGGAAAAGCTGACCAACGAGCGCGACGATATGAAGGACAGCGACTACGTGGCTAAGGTGATCCGCTACAAGTACAAGTACACTAAAGACGGTGAGCGGGTCTACAACATCAAGGAAAAGGGCGATAACTGATGAATTACAAAGTTGGCCAGCGCCTTGACGGAGTAATCAACAACGTGACAGACCTGGGCATCTTCGTGACCCTGCCCAAGCATAAGAGCGGCCTTGTTCACCGCAATGACTTTGGCAGCGACTGGCCAAGAAAGCGGCAGCACTGGCAGGCAGGCGACCAGGTCAGAGTAGTGGTCCAGAACCTGCGCAAGGGCCGGCTGGACTTGTCCATCCGCCGGGTCAACGATCCGGATCTGATCGACCCGACCAACCAGTTCAGCCAGTTGCGGGCCGGCGACTTTGCCCGGGTCCTCAACCAGGTTGACCAGGAGGCGCGAGCAGAAATAGAGCAGCTGGAAGCTGCCTTGAAATAAAAACGGCCCGAGGGGCTGTTTTTTTGTATGGACGAGGGAGTAAAGCATGGACATTAAAAAAAGACTATCGGCCTTTTTCGCCGAAGAAGGCCTGCCTTTGGAAGGAAATTTCCTGGTCGCGGCCAGCGGCGGTCCGGATTCCATGGCGCTTTTGGATTTAATGCGGCGCTTGCCAGGCGGCTTTCAGCTCTACGCGGCCCACTTAGACCACCAGCTGCGGGCTGACAGCCAAAAAGAGAGCCAGGTGCTGCGGGCCTACTGCCATAAGTACCAGCTTCCCCTGTATGAAAGCGTCTGGCCCAAGTCCCTTCATCCGGAAAGCGGCCTGGAAGCAGCGGCCAGGGACTACCGCTATAACTTCTTGTTTGAAGTGGCCCGGCAGGTCAAGGCAGACTACCTGCTGACAGCCCACCACGGGGACGACTTGCTGGAAAATATCCTGCTCAAGCTGGTCCGGTCAGGTATTCCCCGGGAAATGAACAGCCTCAAACCTGTCAGCCAGCGGGGGCAGGTCAAGCTGGTCCGGCCGCTTCTGGCGGTTGGCAAGGCGGACCTTTTGGCTTACGCGAAAAAGCAGGGGCTGGAATATGTCGAAGACGAGACCAACTTTACAGGCATCACGGCCCGCAACCGCCTGCGCCAGGAGGTCGTCCCGCTTTTGAAAAAGGAGAGTCCGGACCTCTTGGAAAATGCCTGGCGCTTCAGCCAGGAAATGACGGCGGAAGAAGACTACTTTGCCCAGGCAGCTGGCAAGTTGCCGGAGCCGGAGCCCTTCTTTGGCGGCTGGCGGATTCCTAAAGCGGCCGGGCAGGCGGAAAGCGAGCTGGTCAAGGCCTACCTGGAAAATTTTATCCAAAAAAAGTACAATAAAAGAGTCCAGCTGGACCGGATTCTGTTAGCCAACCGGCAAAGCCAGGAAAAAGGGGGGCTCCATCTCAGCTTTTACCAGGGCCACTACTGGCTTTATCCGGTCAAGCAGCCGGCTCCCAGCCCCCTGGAAGAAGTTGTGGCCGGCCAGCCCTTCTTTTTCAGAGGAAATTGTTATCTGTTAAGTGAGGAAAAGCGAGAGGAAAGTCCCCTGGCGGAAATATCATTTCCCGGAAAATTATCTGCCGGGAGCTTGCCAAACGGCCAGCGTCTGCTTTTAAAAGACGGCCGCCGGACTAAGAGCAAGAAGCTTTTCGCTGCGGCTGGAATTCCGCTTGCCTTGCGGGGCAACTGCCTCAGCCTTTTTGCTGGCCAAGAAGCAGTTTATGTTGCAGGCTGCTACCAGCAGGCAGTTAAAGAAGGAAAAAGGCCGCTGTATTTGTACCAAGTGAAAACATGCAAGAAAGGCAGGTAAAAACTTCGATAGTTGTCGGCTTTTATGTTAAAATTCGAGGAGTAATTCTTCGATCTGACGGAGGTCATTTATGAAAAATAATCGGAATCGACTATTTAGCAATGGTCTATTCTACATAGTCGTATTTTTGCTTCTCCTCTGGGGAATAAATTGGGTCCTTGGCGGCAGCAGCAATTCCGGTGCAACTGAAACCATCAGTTACTCGGAATTCGTGAAGAAGCTGCGCAATGGCGAAATCAAGGACTTTAACGTGCAGCCGTCCAACGGGGTCTACTCCGTAACCGGTAGCTACAAGTCAAGTCAAACCAAGTCATCCTCAAGCTCAGATATCTTTGGCGGAAACACTTCCTCCAAGGTGACTGGCTTCTCAACCACGATGCTGGAAAACGACCCCAGCGTCAAGAAGGTCCAGGACCTGGCCCAGTCTGAGAACGTCAAGATGAGCACCCAGGGTGAATCACAATCCAGCAACTGGATCTCAACGATTATCATGCTGGTGCCAACTGTCCTCTTCATCGTCTTGATGGTCATGATGATGAACCAAGGTGGCAGCCGCGGCCAGGGCGGCGGCATCATGAACTTCGGCCGCTCCAACGTCAAGCCGCAGGACCCGAAGAAGAACAAGGTCCGCTTTGACGACGTGGCCGGTGAAGAAGAAGAAAAGCAGGAACTGGTGGAAGTTGTCGAATTCTTGAAGAACCCGGCAAGATATACCAAGCTGGGGGCAAGAATCCCGTCCGGTGTCCTGCTTGAGGGGCCTCCGGGTACTGGTAAGACCTTGCTGGCCAAGGCCGTAGCCGGTGAAGCGGGCGTACCTTTCTTCTACATCTCTGGTTCAGACTTCGTTGAAATGTTCGTCGGGGTCGGGGCCAGCCGTGTCCGTGACCTGTTCACCAACGCCAAGAAGAACGCGCCAAGCATCATCTTCATCGACGAAATCGACGCCATCGGCCGCAAGCGTGGCAATGGCCAGGGCGGCAGCAACGATGAACGTGAACAAACCTTGAACCAGATGCTGGTTGAAATGGACGGCTTTGAAGGCGACGAAGGCGTTATCGTCATGGCCGCGACCAACCGGTCTGACGTGCTTGACCCGGCCTTGACCCGGCCAGGCCGGTTTGACCGGAAGGTCCTGGTTGGTCCTCCGGACGTCAAGGGCCGGGAAGCCATCCTGCGCGTTCACGCCAAGAACAAGCCGCTGGCTGACGACGTCGACTTGAAGGAAGTTGCCCGTCAGACTCCTGGCTTTGTCGGGGCTGACCTGGAAAACGTCCTTAACGAAGCTGCCTTAGTCGCAGCCCGCCGGAACGGGACCAAGATCACCGCGGCCGACATCGATGAAGCTGAAGACCGGGTAATCGCTGGTCCAGCCAAGAAGGACCGGATGATTTCCAAGAAGGAACGCGAACGCGTGGCCTTCCACGAAGCCGGTCACTCAATCTGTGGTCTGGTCTTGAGCGACTCAAGAACTGTCCGCAAGGTGACCATCGTGCCTCGTGGCCGGGCAGGCGGCTACAACATCATGCTGCCGAAGGACGACCAGTTCATCTTGACCAAGAAGCAGCTCTTTGAGCAAATCGTTGGTTTGATGGGTGGCCGGGCCGGTGAAGAAGTCGTGGTCGGCGACCAGTCAACTGGGGCTTCAAACGACTTTGAACAAGCCACGACAATCGCCCGCAGCATGGTGGTCAACTACGGGATGACCGATGAACTGGGCATGGTTGAACTGGAAAAGGAAGGCGAAGGCACTCCTTACGGCTTCAAGCCTTACAGTGAAGCAACCGCGGCCAAGATCGATGAAGCAGTCAAGAAGATCCTGGACGAAGCCCACGCCAAGGCGGTTGAAATTGTTGAAAACAACCGGGAAAAGCACCGGATCATTGCTGAAGCCCTGCTGAAGTACGAAACTCTGGATGAAAAGCAAATCTACTCACTCTACAAGACTGGGAAGATGCCTGAAAAGTCCAGCGAAGAGTTCCCATCTGAAGCCAAGGCTTTGAGCTATGAAGAAGCCAAGGAAGCTGCGCAGAAGCGGGCAGAAGAGAAGGCGGAAGAAGATACTGCTGAAAAGCAAGCTCTGGCAACGCCAAGCGAAGACGCGGTCAAGCCGGAAACCGACGCCGCCAAGCTCGCTGAGCCAGATGCTTCAGCAAGTCAAGAAGACCCTGTTGATTCTCTGCCGACGCCAAGCGAAAGCGACCTGTCAAAGGATCCTGAAAAGGACGACAATGACGCTCCTAGTCAGAAGACTGAACAAACAGACGATTCAGACAAGGATGAATAGAAGAAATAGAGCCGGCAACGGCTCTATTTTTATGGAGGAAAATCATGAACGACTACTTAATCAAAGCAATCAATGCCAGCAAGGACCTGCGCCTTTTGACCATTAACGGCAAGGACCTGGTCGCTGAAGCGCAAAAGCGGCACGACACCTGGTCAGCTTCTTCAGCTGTATTGGGCCGGAGCCTTTTGGGCACGCTTCTCTTAGCTGGGGCAGAATTAAAGGGTGACCAGGAACTGACTTTGCGCCTCTTGGGCGATGGACCGGTTGGGGCAGCCGTGGTTACGGCCAAGTCAGATTTGACTGTTAAGGGCTATGTCCAAAATAACCACGTGGCCTTGCCGGCCAGAGAAGACGGTCACATCGACGTTAAGAAGGCTGTCGGCAAGGGCTGGTTGCAGGTAACCAAGGACCTGGGCTTAAAGCAGCCTTACACCGGTGAAGTGCCGATCGTGTCCGGGGAAATCGCTGAAGACTTGACCTACTACCTGGCCAAGTCAGAACAGATCCCGTCAGCTGTTGGTCTGTCAGTTTTCGTCAACCCGAACGACACCATCGGGGCCGCGGGTGGCTTTTTGCTCCAGGCACTGCCAGGGGCCAGCGAAGAACTCCTGCAGGAAACTGAAGACCGGATCAAGGCCCTGCCGCAGCTCTCATCCGCCTTTTTGGACGGGATGACGCCGGAAGACTTGGCCAAGAAGATCCTGGGCGATGACTGCAAGATCCTGGAAAAGGACGAGGTCTCCTACCACTGCGACTGCTCCAAGGAAAAGTACGCCGGCATGCTGGAGACTTTGAAGGGCAGCCAGCTCAAGGAAATGATCGACGAAGACCACGGAGCTGAACTGGTCTGCAACTTCTGCGGGAACAAGTACAATTTTACGGAAGCAGAACTGCAAGCCATTTTGGACAAAAAGCTGGGAAAATAACTTTATGCTCTAATTATAGTTAAATTAAGCAAAGCTTAAGAAGATGAGTAGTCAGGGGAAGCCTCTACAGAGAACTGTTGGTGCTGAGAAACAGGAGGCGGAAGCTGGCGAAGATGGTCTTGTGTTGGCATGGTCCCGGCGAGTCGCTGATAAGCCGGACCCGCTTAACGCCCGTTAGCGCGTTCAGATCTTCTGACTGGAAGACTTTAAGGGCCCTGGCCGTGAGGCGGGGCTGAATAAAGGGTGGTAACGCGCGAAGACGACCCTTGGCCTCTGGGCCAAGAGGCGTCTCTTTTTCTGGCAGAGCATCTGTTGAGGAAGCTTTTTTGCTTTGAATGATGGGTGGTAACACGCTACTAGCGTCCCTGAGAGTTGATCTCAGGGGCGTTTTTCTTTTTAAGCTGCGATGTGTTTGTTAATAGTTGTTGTTTCTAGTAAAAAACGGAGGAAATCATGACCTTGAAGAAAATTACCGCTGCCGGTCTTTTGACCGCCTCAGCCCTCGTTTTAGCCGCCTGCGGCCAGCAAAAGAGTTCCCAGTCCCAAACCAAGCAAGTCCTTAATTGGATCGAAAGTGCCCAGATCTCAACCCAGGACCCGTCACTGACGACTGACTCCACTTCCTTCCAAGCTCTTTTGAACACCCAGGAAGGGCTCTACCGCCTGGACAAAAAGCAAAAGCCCCAGCTGGCCCTGGCCAAGAGCGCCAAGGTTACTGACGGGGGCAAGACATATACTTTTGTCTTGCGAGACGCCAAGTGGTCCAACGGCCAGGCGATCACGGCCAATGACTTTGTCTACTCCTACCGAAGAAGCTTGAACCCGAAGACCAAGTCTTCCATGGCCTTCTACCTCTACCAGATCGTAAACGCCGAAGCCATCAATGCCGGCAAGAAGCCTGTCAGCAGCCTGGGCGTCAAGGCCTTGAGCAAAAACAAGCTGCAGATCAAGCTGGTCCGGCCGGTTTCTTACTTTAAGCTCCTGCTGGCCTTCCCGCTTTTCTTCCCGGAAAACCAGCAGTTTATTGAAAAAGTCGGCAGCAAGTACGGGACGGCGGCCAAGTACACCATTTCCTCCGGTCCTTTCAAGCTGACCAAGTGGACCGGGTCCAACAAGCAATTTACCCTGGTTAAAAACCAAAACTACTGGGACAAGAAGAACGTGAAGCTGGATAAGGTCAACGAAACCATCAGCGAAACTTCTTCAACTGCCTACAACCTTTACCAGGCTGGCAAGCTGGATGAAACTTACCTGACCGGGGAACAAGTCAAGGCCAACAAGGGCAAGTCCACCTTCTACGACCAGCCGGCTTCCGCTATCCAGCGCCTGGAATTAAACCGCAAGAAGGTCAAAGCCTTTAACAACTTCAACATCCGCCGGGCCCTGTCCTTGGCTATCGACAGAGAGAGCCTGGCCAAGGTCTTGAGTGACGGGTCAGTGGCGGCCAAGGGTTTCGTTCCATCCGGCATGGGGAACAACCCGACGACCGGGGAAGCTTTTTACAAGGAAGCCTATGTCAAGGAAGCAGTCAGCTACAACCTGAAGGAAGCCAAGAAGTACCTGGCCAAGGGCTACAAGGAACTGGGCATCAAGTCCCTTAACCTCAACCTGACGGTCAGCGATACTGACTCCGCCAAGCAGGTGGGCGAATTCCTGCAAAGCAAGCTGGGCGAACTGCCAGGGGTGAAGATCACCGTGACGATCCTGCCATACACGACCTTGATCTCCCGGCAAAGCGCTGGCAACTACCAGCTGACCATCAAGAACTGGCAGGCTATCTTAGGTGACCCGATCAACTTCCTAGATGTTTTTGAAAAGGACTCCAGCTACAACACCAGCGGCTTTGCCAGCAGCAAGTACGACCAGCTGCTCAATGAAGCCGAAAACGTCTACGGCAACAAGCCGGTTCAGCGTTGGAAGCGGCTGGTGGCAGCTGAAAAGCTGTTGATGAATGAACAGGGGACTATCCCGCTGATCCAGACGGCCAAGCCGCAGCTGGTGCAAAGCTACGTCAAGAACGTGTCCTACAACCCGCTGGGCATCCCTTACGACTTCAAGCTTGTTTACATCAAGAAATAGGAGGCAGGCATGGCTTTTTCCGACTTTGATTTTTTAGAAAAAAACTTCATCCACTACGCCAAGGAAGACACCCAGTCCAAATACGCCAATAAAGACCAGGTTCCGACCACGCCTAATCAGGTCAAGATGATGAAGGAACTGGCTGACCAGGTCAAAGACTATGACCTTGAGTCTTATTACAATGAAAAAACTGCCTTCGCGATCGGCCACCTGGCCGCTAATACGGCAGGTGTTGCCCCAATCGGTTTTTTCGCCCATGTGGACACGGTTGAATTTGACGACCGCTTCCCCATCCGCCCCCAAGTCCACCGGGACTACCAGGGGCAAAAGCTGGCCCTGGATGAAGCGAACGGCATTTTCCTGGACCCGGAAGAATTTCCTGACCTGCTGACCTTAAAGGGGCAGACACTGATCACCAGCGACGGGAAAACGGTTCTGGGGACTGACGACAAGGCCGGGGTGGCAGGCCTGCTGGCAGCTCTCAAGTATCTCCATGAGCACCCGGAAGTTGAACATGGCGACATCTATGTGGCTTTTGGCCCGGATGAAGAAATTGGCCTGGGCGGGCAGCGCTTTGACCCGGCTGATTTTCCGGGAGTAGAATTTGCCTATACCTTGGACAATGGCCGGCCAGGCGACTTTGAATACGAGACCTTCAATGCTTCAGCCGCTGATTTGACGATCAAGGGAACCGTGGTCCACCCGGGTGAAGCTTACGGGCTGCTGGTCAACGCCACGACGATCATGACGGAATTTTTGGCGGCCTTGCCCCAAGACCAAGTGCCGGAAAAGTCCCGGGGCCACGAGGGCTTTATTATGGTTACGGACGCCCAGAGCAGTGTCGATTCAGCCCATGTCGGCTTGATCATCCGCGACTTTGACTGGGATGAATTTTTGGCTAAAGAAGATTTGGTCAAAAAGCTCGTCGCTTCCTTAGGGGAAAAATACGGGCCAGACCGCTTCCAGCTGGACCTGCGCCGGCAGTACGAGAATATCTACAACGGGGTCAAGGACCGGCCTTATGTGGTCAACCTGGCCTTAGACAGCTATGAAAAAGCAGGCCTGGCGCCAAATGTACAGACCTTTAGAGGGGGAACCGACGGTAACTTCATCACCAAAAAGGGAATCCCGACCCCCAACCTCTTCAATGGCGGGGGCAACTACCACGGCCGCTACGAATACGTGACGGTCGAGCAGATGGACAAGCTGGCCGAGGTCTTGGTGACGATCGCGGATGAGCATGCCCGCCAGAGCAAGGAGGGGCAAGACAAGCGGCCTCTGGAAAAATACTGGTAAAGATAAGAAGAGCATCCTCTTTTAACGGGGGATGCTCTTTTAGCGGACTTTTGATTTGTCCTTCAGGCCTATTCTTGTTATGATATAAAGTTGTAGTTATTGAAAGGAAAAAGATGGCAATGGACACTACTTGGAAGATACGTGAAATCGAAATCCCCAACCGGGTGATGGTGGCGCCGATGGCTGGCGTTTCCAACATGGCTTTTAGAAAAGTCTGCAAGGAATTCGGCGCCGGCATGGTTGTCTGCGAAATGATTTCCGACCACGGGATCATCTACGGCAACAAGAAAACCTTGAGCATGCTGGACGTCGACCCGGGCGAGCACCCGATGAGCATCCAGATCTTCGGGGGGGCGGAAGACAGCCTTTTGCAGGCGGCCCAGTACATCGACCAGCACACCGATGCCGACATCATCGACATCAACATGGGCTGCCCGGTGCCGAAGGTAACGAAGACTGACGCGGGTTCCAAGTGGCTTTTGGACTCAAACAAGATATACCAAATGATCCACAAGGTTGTCCATAACGTGGAAAAGCCGGTGTCCGTCAAGATGCGGATCGGCTGGGACCGCAAGCACATTTTTGCCGTGGAAAACGCCCTGGCCGCCCAGGAAGCCGGTGCTTCCATGCTGGCCATGCACGGCCGGACCAGAAAGCAGATGTACCAAGGCGAAGCTGACTGGGAAACCCTGCATGAAGTAGCCCAGGTCATGGACATTCCTTTCGTGGCCAACGGGGACATCACGACCCCACAGCTGGCCAAGAAGGCCCTGGATGAGATCGGCTGCACGGCTGTCATGGTTGGCCGGGCTGCCTTGGGCAATCCTTGGATATTAAAGGAAATGACCCACTACCTGGCAACGGGCGAAGAACTGCCGAAGCAGTCCGTCCGGGAAAAGGTGGAAACCGCCAAGCACCAGCTCGACGGCCTGGTCCAACTGCATGGGGAAAAGCGGGCCGTGCCGGAATTTCGCCAGCAGGCAGCATATTATTTGAAGGGAATTCCCCGTTCAGCCCGGACTCGTGCTAAAATAAATGAAGTCTGGACGCGTCAGGAGGTTTTTGACCTGCTTGACGAATTCGTCGAAATTTGCGAAAAAAGGGCGCGGCAGAAGCAAGACCGCGTCGCTGATACCCAATCTATGTAAATGGAGGAAAAACACGTTGGCAAAGAACGAAATTAACGACCAATTGCTTGTTCGTCGGCAAAAGCTTGAAGAACTTAAGGAGATGGGGATTGAACCCTTCGGCCGCAAATATGATCGGGAAGCCCTGGCCCGCGACCTGGACGAAAAGTACTTGGGTCTTGACAAGGACGAACTGAACGCAAATATGCCGAAGACCAAGATCGCTGGCCGGATGCTGGCCAAGCGGGGCAAGGGCAAGGTTGGCTTTGCGGACCTCTATGACCGTAGCGGCAAGATCCAGATCTACGTCCGCAAGGACATGGTCGGTGAAGAAAACTACCAGATTTTCAAGAAGGCCGACCTTGGTGACTTCCTGGGCGTTGAAGGCGAAGTCTTTAAGACTGACTCAGGCGAATTGTCTGTCCGGGCCCAGCACGTGACCTTCCTGTCCAAGGCTTTGCGGCCACTGCCTGACAAGTACCACGGTCTTAAGGACGTTGAATCCATTTATCGCCAACGCTACCTGGACTTGATCACCAACCACGAAAGCTACCAGCGCTTCGTTAACCGGACCAAGATCATCCAGGCCATCCGTGACTACTTGAACGGGCAGGACTTCCTGGAAGTTGAAACGCCAGTTTTGCACAACATCCCAGGCGGGGCTGAAGCACGTCCGTTCATCACCCACCACAACGCTTTGGACATCAACCTCTACATGCGGATTGCCCTGGAATTGCCGCTGAAGCGTCTGATCGTCGGTGACATGGAACGGGTTTACGAAATCGGCCGGGTCTTCAGAAATGAAGGGATGGACCTCAAGCACAACCCTGAATTTACTGAACTGGAAACCTACGCTGCTTACTACGACTTCCACGATGTCATGGATGAAGCTGAAGGCATCATCCGGGCAGCGGCCAAGGTTGTTTCAGAAGACGGCAAGATCAACTACCAGGGCACTGACCTGGACTTGGGCAAGCCATTCCGCCGGGTGCACATGGTTGACCTGATCAAGGAACTGACTGGCGTTGATTTCTGGCAGCCAATGACTCTGGAAGAAGCCCGGAAGGTTGCCGCTGAACACCATGTTGAAGTTGAACCTTACTGGCAAGTTGGCCACATCATCAACGCCTTCTTTGAAAAATTTGGTGAAAAGACAATCGTTGACCCAACCTTCGTTTACGGCCACCCAGTTGAAGTTTCACCGCTGGCCAAGAAGAACGCGGATGACCCGCGCTTCACTGACCGTTTCGAAATCTTCATCATGGGCAATGAATACGGCAACGCCTTCTCAGAACTGAACGACCCGCTTGACCAGCGGGAACGGTTCGAAGCCCAAATGGCTGAACGTGACGCCGGTAACGACGAAGCCGACATCATCGACGAAGACTACCTGCGGGCCATGGAATACGGTATGCCACCTACGGGTGGTCTGGGCATCGGGATCGACCGTCTGGTCATGCTTTTGACCAACGCGGCTTCAATCCGCGACGTCCTCCTCTTCCCAACCATGCGGCCGGAAAAGAACATTAACCTGGACAAGTAGTTCAGATCGCTAAATTTAACTCTCCAGCTTTGCCTGGAGAGTTTTTTGTTTAAAAAAATAAAACGAATCGTTTTCAAGATATGAATATTAGAGCTTTTTTGCTAGAATATAGGCAATCAAATTGCGAGCTGCTATTAGAAAAGGTGAATTTTTGCCAATCTACAAATACTTATTGTCGATCTTAACCACCATCTCCGCCTTGGCTGGGGCCTTTTTGGCTGCCAGCAGCGGCTTACCGGCTTATTTGGCCGGCCATCCCTTAAAGGCGGGGATTTTTGCCGTCCTCTGCCTCTTAGAGGGGCTTAGCGCCTACCTTCTCTGGCGGCCGGGGAAGCGGGCATTAGGTGTTTTGAATGGCGGCCTGCTGGCGGCAGCTTTGCTTTTGTTTTGGCAGGGAGAAGGCCTGGCAGCTGGAAGTGCCCTGGCTTTATTGGCAATCAACTATTTGCTGAAAAGGGAAGAGACCTGGGCCTGGACTCTGGCTTTAGTTTTGAACCTGGTCTTTGCCGCTTTGACCATGCTGCCCCACCAGTTTATGTCTTTCCCGGCTGCCTAGTTTTTTCACGAAAGAAAATGAATTTGGATAAAATCAATTATTACGGGGTCAGCCGGGCTGACTACCAGGCCTGCCAGGAGCAGATTGACCGCCACGCCACAACCTATCTGGTCTTCGTCGTTTTAGTTGCGGTCTTATTGACGGACAAGTTTTGGACAACCGGGGCCTTTTACCTGGCCATGCTGCTGGTCTTCAGCTTTTGCTCCTACTACTTCAAGGGGCCAATCATGTGGGAGCTGGACAGCTTTAACGGCTTGACCTTCACCTTGGTGGCTCTGGCCTTGAACTATATCGTGCAAAGAGAGCGGATCGCCTCTTTCCTGCTTTTTAACAAGTACAAGGAGAACCAGCGCGAGCTCCGGGTCCAGGCTAATTTTGACTACTTGAGCGGGGTGATACTCCGGTCGACCTTCATGGACCTTTCGCAAAAAGCAATCGAGCAGCCGGAGTGCACTGACTTCTTCATCGGCTTGGTTGACATCGACTACTTCAAGCAAATCAACGACAATTACGGCCGCCGGATGGGGGACCTGGCCATTCAAAGGCTGAGCCAGTGCCTGGAAAAAGGGCTGGAAGTCGATTACCGGGACCTGGCTGACTTTGTGGAAAAGTTTGACCCGGCCAAGGACAATGTTTTGGCGCGGCTGGGGAGCGACGAGTTCGTTTTTGCCTGCCACTGCCCGTCGGAAGCGGCTTGCCTTGAGAAAATGCAGGGCCTGCAGGCGGCTTTTGCCAAGGAGGAGATCGCATTAGACGGCCAGCGGCTCAGCTAGCTGCTTTTTTCCTGCGGGGTCATCCACTACCTAAACAACTTGTCTAATGTCGATCAGCTCTACCAAAAGGCCGACCAATTGATGTACGAGGTGAAAAAGCAGGGCGGGGGCAATGTTTTGCTGGCCCGGTCCTAATTTTTTCCGGAAAAGAGATTGACTTTGGATAAAAAGCTCGTATACTTTAAATACAGATTAAGTTTAGCTGGGAAAGTGCTTTCAGCGGCTTAATTTGGTGAATAGGACGATCAACCAGGAAATCACTGCCATGATTTCCTGGTTTTTGTTTGCCCTTTTTTCTAAAAAACGGATTGACATTTTCCCTAAGGCTAGTATACTTAAAACTAAATTAAAAACTGATGAAGAAAGGAGAACTGAGATGGAATTCGCAGCTAAGAATTGCCAAATGCAAGTCATGCCAATGAACATGCTGATGTCCAGCATGCCTTTTAGCGTAGAAGCGAATACCTGTGGTTCACCATCCTAAGCTCGTTACTGTATTGAAGATAGTAACGGCCGCCTGAACTACTGGTTAGTTGGGCGGCTTTTTTACGAGGTAAGGTTCATGTGCAGGAAACGGTATCAACAGACGAAACGCTGGCTGATCCTCTGGCGGGGAGCAGCGATTGGGGCCAGCTGCATGTGTCGCTTGTGTTTGTAACAGCAATATTTCAGCAATCTAATCATTTCCAACAACTAACAACTAAAAAATAAATATTACACAGCAACAACACAAGCGAGGTAAAAAACATGAGTAAAGAAGCTATCAGCAACGAAGGTTTGTCATTTGAAACTTTGCAGGTCCACGCCGGCCAGCCAATCGACGAAACTGGCGCCCGGGCAGTGCCGATCTACCAGACCACGTCCTATGTCTTTGACGACGCTGACCAGGCAGCTGGCCCTTTGCCTTGACCGACGCCTGCAACATCTACAGCCGTTTGACAACCCAACCACGGCTGTTTTTGAAAGCCGGGTGGCTGCCCTGGAAGGCGGCACTGGCGGTGTATCTTTGGCAACTGGGGCGGCAGCGATCACCGCGGCTATCTTGAACGTAGCCGGGGCGGGCGACGAAATCGTAGCTGCTTCCACCATTTGCGGCGGGACCTACGACCTGTTTGCCCAGACCTTGCCGCCATTGGGCATCAAGACCCACTTCGTTGACCCAAGCGACCCGGCCAATTTTGAAAAAGAAATCAACGACCATACCAAGGTGGGTTACGCTGAAACCATCGGCAACCCGAATGCCAACTTGATCGACATTGACGCGGTAGCAGCAGTGGCCCATAAGCACGGGGTTTTGGTCATTATCGACAACACCTTTGCTACCCCTTACCTCTACCGGCCATTTGAACATGGGGCTGACGTGGTTGTCCACTCAGCGACCAAGTTCTTCGGCGGCCACGGGACGACTATGGGCGGGGTAGTCGTGGAAAGCGGCAAGTTTGACTATGAAAAGTCCGGCCGCTACCCGACTTTCACTAACCCTGACCCGTCCTACAAGGACGTGACTTGGGCCAAGCTGGGGGCTGGGGCCTTCACGACCAAGATCCGGGCAACAGTTCTGCGCGACACCGGGGCCAGCCTTAGTCCTTTCAACGCCTTCCTTCTTTTGCAGGGCTTGGAAAGCTTGTCCTTGCGGGTTGAACGCCACGTCTACAACGCGCAAAGAGTATCTGAATACCTTAGCAAGCACCCAAAGGTTGCCTGGGTCCGCTACCCGGGCCTGGCCGACAGCCCGGACCATGCCATGGCTGAACGGGACTTCCCGAAGGGGGTCGGCTCAATCTTCCCCTTTGGCCTGAAGGGCGGGGAAGAAGCCGGCAAACAGCTGATTGACAACTTGAAGCTCTTCTCCCTTTTGGCCAATGTAGCTGACGCTAAGTCCTTGATCATCCAGCCAGCTTCAACCACCCACGCCCAGCTGAACGGCGAAGAACTGGCCAGCGTCGGGATTACTCCGGACTTGATCAGAATTTCCGTTGGGGTGGAAAATATCGACGACCTTTTGGCCGACCTGGACCAGGCCCTGGCCAAGCTGTAATTTTTGAAAAATACTCCTTAATACTAAAAAACGTTTCCTGCTTGAGGAAACGTTTTTTGCGTCTACATCTTCTTGATAGTCTCCATGTCATAGATGGAGTAGTCGCAGCGGTAGATAAAGAGCCGGTGGCCGTCGACATTGATCTGGGTGGTTGATGGCATGTCAGTGGCACTGACCCGGACCTTGTTACCGGCATAAACGGCGATCGGCTTGCCGGCTTGGGACCGGATCATGATGACCTTGCCCTTGGAGAGCCAGTCGTTTCTGAAATTGTTGTACATTATTGACAGAACCGGAATGGACCGCTGCTTGTCGGTAATGGTGACCTTTTTGGAAAAAGTATCTTCGTAATTGCGCAGGCCTTCGTTGGCGATCAAGCTGGAGCCGACATGGATCATCTGCTGGCCGCCGAATTCCACGTCGATGACTTTGGACTGCTCGTCGCCGCTGGAATTTTCCTTGCTCATCGGCTTGTAGGTCTCAATGTAGACTGACTTACCCTTGATCTGGTCGATCTTCTGCCCGTCGTAGTCATAGGTGGAGACGGTAAAGGGGATGCCGACCAGCTTGGACTTGAGGTCCAGGGTGTAGTCGCTGATCATGGAGCAGGAGGACAGGAGAGGCAGGAGGGCCAAGGCCAGGCAGGCCGCCAGGAGTCTTTTCTTTTTCATTTTTTCTCTTCCTTTCATTTAGACAAACGTTTTCTTACTCTTAGTTTAATCGAACTTGCCCCCGAGAAAAATACTATTTTTTATAAAAAAGCCCTTGCCAAGACACGGTTTTTAGATTATCCTAATAGATATGTTGCGGAAGTAGTTCAGTGGTAGAACATCACCTTGCCATGGTGGGGGTCGCGGGTTCGAATCCCGTCTTCCGCTTCTTCGGGAATTAGCTCAGTTTGGTAGAGCGCTACGTTCGGGACGTAGAGGTCACAGGTTCAAATCCTGCATTCCCGATTAGCCAATGTGTGATCAAAGCGTTACTTTATAGCTGCGCTTTTTTCTCATTTATGGGCAAAAAAGACTTGCAAAAGAGAAATTTTTTGGTAAACTAATAAATGTATCGCGGAAGTAGTTCAGTGGTAGAACATCACCTTGCCATGGTGGGGGTCGCGGGTTCGAATCCCGTCTTCCGCTTCATCAAAGACTCGCTAATTTAGCGGGCCTTTTCTTTTTGCCTTATAGTAGATCTGCAGGGCGCCTGGCTTGTCGAAAAGATCGGGAAATGTTATGCTTGCAAGCATAGCAATTTTTGCCTTTTTACCTATTTACTGGCAGACGTGAAGGAGGAAATCATGGCAGCAGCAAGTCAGGCAGAGTACGAGTTATTGCTTGAGCAGGCCAAGGCCTTGACGGCCGGGGAGAGCGACTGGATCGCCAATGCCGGCAATGTTTCGGCCCTTTTGAAGGCGGGGATGAGAAACGTTAATTTTGCCGGGGTATACCGCTTTGAAAAGGGGGAATTGATCCTGGGACCCTTCCAGGGGATGCCGGCCTGCGTGCACATCCAGCTGGGTAAGGGGGTCTGCGGGAAAGCCGCCCTGGAAAAGAAGACGCAGATCGTGGCCAATGTCCATGACTTCCCAGGCCACATAGCCTGCGACAGTGCCTCCAATTCAGAAATCGTCGTGCCGGTTTTTAACCGGGATGGCAGCCTTTGGGGCGTGTACGACTTTGACTCGACTAATTTAGACAATTTTGATGATTTGGACCAGAAGTACTTAGAGCAGATCGCGGCAGTAGCTTTAGGCAACTAGGTCCAGTGTGAGGCGATTTTTATATGCAAAATTCATACAGTAAGAGCAGCAGACAGGTCTTGGAAATTGCCCAGGAACAAGCCAAGGAGTTTCACCACCGCCTGGTCGGGACAGAGCACGTCCTTTTGGCCCTGGTAATCGAAGCTGACGGCAAAGCCGGCAAGATCCTGCGGACCATGAACGTGACGCCGACCGGAGTCAGGGAAGAAATCGAGCGCTACACGGACTACGGCTCAGCGGCCCCGACCAGCTACATGGAATTTTCTCCCCGCCTGACTTTGGCGCTGGATTATGCCAAGCGGAATTCTGAACTCCGGTCCAGCAAGGAAATCGAAACGACTGACATTCTCCAGGCTTTGGTCTCCAGTGAGCAGATCCTGTCAGCCATGATCCTGCGCAACCTGGACGTGGACCTGGAAAACTTGAAAGACGAACTGGACGACGCCAACCAGGTGACCGGGGAAAGCAGCCAGACCAGCCGGCCAGACGCGGCAGGCAGCAGCCAGTCGCAGACGCCGATTTTGGACCGCTTCGGGATCGACTTGAACCGGCGGGCTAAAGAAGGCGACATTGACCCGGTGATCGGCCGCCAGCGGGAACTGGACCGGGTGATTCATATCCTGTCCCGGCGGACCAAGAACAACCCCCTTTTGGTCGGTGAGCCTGGGGTCGGCAAGACCGCGGTCGCTGAAGCTTTGGCCAGCGCGATCGTTGCTAAAAAGGTTCCCCGGGACCTGGCTGACAAGCGGGTGGTTTCACTGGATGTCAACAGCATGGTGGCCGGTACCCGCTACCGGGGTGAATTTGAAGAGCGGATGGACCGCTTAATTAAGGAAGTTACTGCCAGCAAGAATGTCATTCTTTTTGTCGACGAAATCCACTCTTTGGTCAAGGCCGGGGACGCGGAAGGGGCGATGAGCGCCTCCAACACCTTGAAGCCGGCATTGGCCCGCGGGGACATTCAATTGATCGGGGCCACGACTTTTGAAGAATACCGCAAGCACATGGAAAAAGACTCTGCCTTTGTCCGCCGCTTCCAGCTGGTCCGCCTGGCTGAGCCAAATGAAGAGGAAACCCTGCAAATTTTGCATGGGATCAAGGACAAGTATGAAGACTACCACCGGGTAGCTTTGTCAGAAGAAGCCTTGCAGGCAGCAGTTGATTTGTCCAGCCACTACATTGCCGACCGCTACCAGCCGGACAAGGCCATCGACTTGATCGATGAAGCCAGCGCGGCGGTTAAACTGGCTAATGACACTGGCGAAGACAAGGACCTGGCTGAAATCGATTTGGAAATCAGCCGGACTCTCAAGCAGAAGAACGATGAAGCAGCCAAGCAGAACTTTGCCCAAGCGGCCAAGCTGCGCGACCAGGAAATCGCCTTGCGGCAAAAGCGGAATGAGATTGCCAAGAAGCTGGCCGGCAAGGATGAGAAGCGGTCAGTCGTTGGGGCTGAAGACGTGGCCAAGGTGGTCTCCATCTGGACCGGGGTTCCGGTAACCCAGCTTAAGACCAGCGAAAATAAGCGCCTGGCCCACCTGGAAGGGATCCTGCATGAAAGAGTCATCGGCCAAGACGATGCCGTCAAGGCCGTGGCCAATGCCATCCGCCGGTCCAGAAGCGGCTTGAAGGACGAGAACCGGCCGATCGGTTCCTTCCTCTTCCTAGGCCCAACCGGGGTCGGCAAGACTGAACTGGCTAAGGCTGTGGCTGAGGCAGTTTTTGGCTCAGAAGACAATATCATCAGAGTCGACATGTCAGAGTACATGGACCGGGAATCTTCCTCCAAGCTGATCGGGTCAGCGCCTGGCTACGTTGGCTACGAAGAAGGGGGCCAGCTCTCCAACAAAGTCCGGGAACATCCTTACTCAGTGGTTCTTTTTGACGAAGTGGAAAAGGCAAACCCGGAAATTTTCAACGTCTTGCTACGGGTCCTGGATGAAGGCTTCATGACTGATTCTCTGGGCCGGAAGGTCGACTTCAGAAACACGATTATCATCATGACTTCCAACCTTGGTTCCAGAAGCTTGGAAGCTGACAGCCATGTGGGCTTCTCAGCCAGCCAGGAAGACCAGGGCAAGCTGATCGCGGAAAAGGTAACCAGGGCCACCAAGGACTTCTTCCGGCCGGAATTTTTGAACCGGATCGACGAAAAGATCGTCTTCAAGCCCCTGGAAGCCAAGCAGCTGCGGAAAATCGTGACGCTTCTGACCCGGAAACTGGTCAAGCGGCTGGCGGAAAAAGATATTACTTTGCGCCTGTCGCCAGCTGCCTTGGACCAACTGGCCAAGGACGGCTACAATCCGGAAATGGGGGCCCGGCCATTGCGGCGGACCATCCAGGATGAAGTTGAAGACGAATTGGCCCAGGACCTGGTCAGCGAAAAGCTGCAGGCCGGCGATACGGTCAAGATCGGTGCCCGGGGCGGCAAGCTGCGCTTTGAAATCGTCAAGGCCAAGACTGGTGAAAAGATCAAGGGATAATCAATAGATTTTTGGAGGCAGATTATGTTTGGCAAGAAGAATAAAGCTGAAGCTGCTAAGGCAGAAAAAGAAGCAAGCAAGAAGACTGACGGGCGGATCCTGCTTTACAGCGACATCATCGACGCGCTTTACGACGAAATGCCAAGAGAAAGCGGGAGGCCCTGCTGGAAGCTAAGCAGCAGCTGGAACAGAAGGTCTACCTGGGCAAGGTGATGCGGGACTTGCGGATCGCTTTAGAGCCGGTCGCGATCAAATCCCAGCTCAGCCCGCAAGGCAAGCAGATTTTTTGGAATATCACGGCTGGCGGCTACCAGCTCACCGGTGTTGGTCTGGCCAGCCAGGCAGCCATGCTTTTTAGCGGCCGCTAGGGCTTGCTTTCCTTTAAAATTAGTGGTATAATATTGGACGATTTAAAAGGCTGAAGTTCAGGATTTTACTGATATATTGTCCAGTAAAATGATACAGACAAAAACGACTTGTTCGTTTTTGTCTTTTTTATGCCCAAAATCCCGGCCTTTTTAAAATGTAACACAAATGTAATATTTGCTTTCTTCAACAGGATAGAAAGGGTGTTTTCCTTGCTAAACGGACACGTAGTAAATTACGGACAACACCGGACAAGACGCAGCTTCTCACGGATTAAGGAAATCCTGCCGCTGCCAAACTTGACCGACGTACAGACTGAATCATACAAGTGGTTCCTTGACGAAGGCGTTAAGGAAGTTTTCGACGACATTCTGCCAATCAGCGACACTTCTGGCCGCCTGACTCTGGAATACGTCGACTACAAGCTGCAAGAACCTAAGTATACTGTCGATGAATCACGCAAGCACGACGCGACTTACTCCGCTCCAATGCACGTGACTCTGAAGCTGACCAACCACGAAACTGGCGAAATCAAGACCCAAGACGTCTTCTTCGGCGACTTGCCGCTGATGACCAAGTCCGGCTCCTTCATCGTTAACGGGGCGGAAAGAGTTATCGTTTCCCAGTTGGTTAGATCACCTGGTGTCTACTACAGTGGCGAATTCGACAAGAACGGCCGGCAAATCTTCGGCACGACTGTCATCCCTAACCGCGGGGCTTGGCTGGAATTCGAAACTGACGCCAAGAACATTTCCTACGTCCGGGTTGACCGGACCCGGAAGCTTCCTTTATCTGTCCTGGTCCGGGCCCTGGGCTTTGGCTCTGACAGCGAAATCAAGGAAATCTTCGGCGACAGCGACACTTTGGACCTGACTTTGGACAAGGATGTTCACAAGAACCCAGCAGACAGCCGGGTAGCAGAAGCCTTGAAGGACATCTACGACCGCCTGCGTCCAGGTGAACCAAAGACTACCGACTCATCCCGGAGCCTCCTGGTTTCCCGCTTCTTTGACCCACGCCGTTACGACCTGGCTGCTGTTGGCCGCTACAAGGTCAACAAGAAGCTGAGCTTGAAGAACCGGCTTTTGGGCTACACTTTGGCTGAAACCCTGGCTGACCCTGGCACTGGAGAAGTTCTGGCTGCCAAGGGGACGGTTGTCAACAACGAAGTCATGGACGTTCTGAAGGACTACCTGGACCGCGACGACTTCAAGACTGTTACCTACACCCCATCTGATGAAGGTGTAATCCCAGAACCTGTAACTGTTCAGGAAATCAAGGTCTTCTCCCGTGAAATTCCTGACCGGGAAATCAAGCTGATCTCCAACGGACACATTGCTGAAGATGTTAAGTGCATCACTCCAGCCGACATCATCGCTTCTGTCAACTACTTCCTAGAACTCCAAGAAGGCGTCGGCAACATCGACGACATCGACCACTTGGGTAACCGTCGCATTCGCCGGGTTGGTGAATTGCTGCAAAACCAGATGCGGATCGGTTTGGCCCGGATGGAACGGGTTGTCCGCGAACGTATGTCAATTCAAGACGCGGCTACGGTTACTCCGCAGCAATTGATCAACATCCGGCCAATCGTTGGTTCAATCAAGGAATTCTTCGGTTCATCCCAGCTTTCCCAATTCATGGACCAAAACAACCCGCTGGGTGAATTGACCCACAAGCGGCGTATGTCCGCCTTGGGGCCTGGCGGTCTGTCCCGTGACCGGGCCGGCTACGAAGTCCGGGACGTTCACTACACCCACTACGGCCGTCTGTGCCCAATCGAAACGCCAGAAGGCCCTAACATCGGTTTGATCAACTCCATGGCCACTTACGCCATCATCAACAAGTACGGCTTCCTGGAAACCCCATACCGGCGCGTTTCCTGGGCAACCCACAAGGTTACCGACAAGATCGACTACTTGACTGCCGATGAAGAAGACAACTACATCATCGCCGGGGCCAATACTCCTTTGAACGAAGACGGCTCCTTCGTTGATGACGTGATCCTTTGCCGGCACCGGGAAGACAACGTCGAAGTAAGTCCAGACCGGATCGACTACATAGACGTTATTCCAAAGCAGGTTGTTTCCGTAACTTCCGCATGTATTCCATTCCTGGAAAACGACGACTCCAACCGGGCCTTGATGGGGGCCAACCACCAACGTCAGGCTGTTCCTTTGATCAACCCGCACGGTCCGCTTGTGGCTACTGGTATGGAATACCGGGCAGGTCACGACTCCGGTGACGCCTTGCTGGCTGAAGCAGACGGTGAAGTTGAATACGTGGACGCAAACGAAATCCGCGTCCGCCGCGAAGACCAGACACTGGACACTTACACCCTTGAAAAGTACCGCCGGTCAAACGCGACTAAGAACTACAACCAGACGCCAAACGTCAAGCGCGGCGACAAGGTTGTTGACGGCCAGGTAATTGCCAACGGTCCGTCAATGGCTGATGGCGAACTTGCCCTGGGTCAAAACCCGGTTATCGCCTTCACCACTTGGAACATGTACAACTTCGAAGACGCCATCATGCTGAGCGAACGCCTGGTTAAGGAAGACGTCTACACTTCAATCCACATTGAAGACTACGACTCAGAAGCCCGTGACACCAAGCTGGGGCCGGAAGAAATTACCCGGGAAATCCCTAACGTTGGTGAAGACGCCTTGAAGGACCTGGACGAAAACGGGATCATCCGGATCGGTGCCGAAGTTCACGACGGCGACATCCTGGTCGGCAAGGTTACCCCTAAGGGGATAACTGAACTGAGCGCTGAAGAAAGACTGCTGCACGCCATCTTTGGTGAAAAGGCCCGTGAAGTCCGTGATACTTCATTGAGGGTACCTCACGGCGGTGGCGGTGTGGTTCAAGACGTTCAAGTCTTCACCCGTGAAGCCGGCGACGAACTGGCACCAGGCGTTAACACCCTGGTCCGGGTTTACATCGTACAGAAGAGAAAGATCCAAGTCGGGGACAAGATGTCCGGTCGTCACGGTAACAAGGGTACGGTTGCCCTGATTGCTCCAGTTGAAGACATGCCTTACCTGCCAGACGGTACTCCAGTCGACATCTGCTTGAACCCAATGGGTGTGCCATCACGTATGAACATCGGGCAGCTGCTTGAAATCCACTTGGGCCGGGCAGCCCGGGCCTTGGGTATCCACGTGGCTACTCCGGTATTCGACGGGGCCAGCGAAGACGACGTTTGGGACTTTGTCCGCGAAGCCGGCGTTGACTCAGACGGTAAGACTGTCCTTTACGACGGCCGGACCGGTGAACCATTCCACAACCGGGTTTCAGTCGGGGTTATGTACTACCTAAAGCTGACTCACATGGTTGACGACAAGATCCACGCGCGGTCAATCGGGCCTTACTCACTTGTTACCCAACAGCCTTTGGGTGGTAAGGCGCAATTCGGTGGCCAGCGTTTCGGTGAAATGGAAGTCTGGGCTTTGGAAGCCTACGGTGCAGCCTACACCCTGCAAGAAATCCTGACCTACAAGTCTGACGACGTTGTCGGCCGTGTCAAGGCCTACGAAGCAATCGTCAAGGGCGAAAGAATTACTAAGCCAGGCGTGCCTGAATCATTCCGCGTTTTGGTCAAGGAACTGCAATCATTGGGTCTGGACCTGCGCGTTTTGGATAGCGACGAAAACGAAGTTGAACTGCGCGACATGGACGAAGACTCAAATGAACATGTAAACATCGATGCTTTATCTCGCCTTGCGGAAGCGCAAGAAAAGAAGAAGTTGGCCGAAGAAGAGGCCGAAATCGCCGCGGAAGCTGAAGCAGAAGGCAGCGCGGAAGGAGACGCAGCTGAAGCAGATGCTGATGCAAATGAAGCTGAAACTGCTGACGACGACAAGGCTTCAAAGTAATTGGGAGGTTAAACTTTGATCGACGTAAATAAGTTTGAAAGCATGCAGATTGGTTTGGCTTCACCAAACAAGATCAGAAGCTGGTCTTACGGGGAAGTTAAGAAGCCGGAAACCATCAACTACCGGACTTTGAAGCCAGAAAAAGACGGTCTGTTCGATGAACGGATCTTCGGGCCGACCAAGGACTACGCTTGTGCCTGTGGCAAGTACAAGGGCGTTCGCTACAAGGGGATCGTCTGTGACCGGTGCGGGGTTGAAGTAACGACCTCTCACGTGCGCCGGGAACGGATGGGCCACATCGAACTGGCCGCTCCTGTAACCCACATCTGGTACTTCAAGGGTATCCCATCAAGAATGGGTCTGGTTTTGGACGTGTCTCCAAAGCAATTGGAAGAAGTTATCTACTTCGCTGCCTACATTGTCATCGATCCAGGTGACACTGGCCTGGAAGCCAAGCAGCTATTGACTGAAGCTGAATACCGGGAAGAAAAGGCCAAGTACGGCAACCGCTTCGTGGCTAAGATGGGTGCCGAAGCTATCCGCGACCTGCTTAAGCAGGTTGACCTGGACAAGGAAGTTACTGCCCTTAAGGCAGAACTGCAAACCTTGAAGGGGCAAAAGCGTACCCGGGCCATCCGCCGGCTGGACATCCTTGATGCCTTCAGAAACAGCGGCAACAAGCCTGAATGGATGGTTATGGAAACTGTTCCGGTTATTCCGCCGGACTTGCGGCCAATGGTTCAGCTGGAAGGTGGCCGTTTCGCCACTTCCGACTTGAACGACCTTTACCGCCGGGTTATCAACCGTAACAACCGGTTGAAGAAGCTGCTGGACATGCACGCTCCTGGCTTGATCGTGCAAAACGAAGAGCGGATGCTGCAAGAAGCAGTTGACGCCTTGATCGACAACGGCCGCCGGGGCCGCCCAGTTGTTGGGCCAGGCAACCGGCCACTGAAGTCTATCTCACACATGCTGAAGGGTAAGCAAGGGCGTTTCCGTCAAAACTTGCTTGGTAAGCGTGTTGACTACTCCGGCCGTTCAGTTATCGACGTTTCTCCAGAGCTGAAGTTTTACCAATGTGGTGTTCCGCGTCCAATGGCTCTGGAATTGTTCAGGCCATTCGTTATGCGGGAACTTGTCCGCCGGGGCATTGCTTCCAACATCAAGAACGCCAAGCGCAAGATCGACCGGGAAGACGACGACATCTGGGACGTATTGGAATACGTCATTAAGGAACGTCCAGTTCTTTTGAACCGGGCACCTACCCTGCACCGGCTGTCAATCCAGGCCTTTGAACCAGTTTTGGTCCCTGGCAAGGCCCTGCGTTTGCACCCGCTGGCTTGTGAAGCCTACAACGCCGACTTCGACGGTGACCAGATGGCCATCCACGTGCCGTTGTCAGACGAAGCTGTAGCTGAATCCCGCCTCTTGATGCTGGCTGCCCACCACATCTTGACTCCTAAGGACGGTACGCCAATCGTTACTCCGTCCCAGGACATCGTTTTGGGTAACTACTGGCTGACCCAGGCTGAAATCGGCCGGGAAGGCGAAGGCATGATCTTTGCTACTCCAGAAGAAGCAACCATCGCCTACAACAACGGTGATATTCACTACCACACCATCATCGGTGTGTCAGCCGCTTCAATGCCGAAGAAGGACTGGGGCGCGGGCCACGAAGACAGCGTTTTCGTAACTACTTACGGCCGCTTGGTCTTCAACTCCCTCTTCCCAGACGACTACTTCTACATCAACGAACCAACCCAGGACAACTTAAAGCAGCCAATGGCTGACAAGTACTTCCTGGAAGATGGCCAGGACATCCAGGACAAGATCGCTGAAATTGGCCAGGACCTGGTGGCTACGCCATTCAAGAAGGGCTTCCTGGGTGATACTATTTCTGAAATCTACAAGCGCTACCGGGTACAAAGAACTTCTGAATACCTGGACGACTTGAAGGAAATGGGCTACTCAGCTTCAACTATTTCCGGCTTGACCATCGGTATGGCTGACATTCCGGAAACCAAGACCAAGGATGCCTTGGTTGCTGAAGCCCGCAAGCAGGTTAAGCAAGTATCCAAGATGTTCCGCCGGGGCAAGCTGTCCGACAAGGAACGTCACGACAACATCATCAAGATCTGGACTGACTGTAAGGATGCCGTTCAACAGGAAATTGCTGAATTCAAGGACCAAAAGAACCCAATCTCCGTCATGCAGCAGTCCGGTGCCCGTGGTAACATCTCCAACTTTACTCAGCTGGCTGGTATGCGTGGTTTGATGGCCACTCCAAGTGGTGAGTTGTTCGAAATCCCGGTTATCTCCAACTTCAAGGAAGGTCTGACCGTTCTGGAACTGTTCATGTCCACTCACGGCGCCCGGAAGGGGATGACTGACACGGCCTTGAAGACTGCCCAGTCTGGTTACCTGACCCGTCGTTTGGTCGACGTTGCCCAGGACGTTATCATTCGTGAAGACGACTGTGGCACTGACCGCGGCATTACTGCCAAGGCCATCGTTGATAAGGATGCCGGCTTGATTGAATCACTTTACGACCGTCTGGTCGGCCGCTTTACCAACCGGACTATCCGTGACCCGCAAACTGGTGAAGTCATCTGCTCTAAGGGTGTCCTGATGGACGAACAAATGGCGCAGAAGATTGTTGACGCTGGCGTGCAGGAAGTTCAAATCCGGTCAATCCTGACTTGCAACACTTCCCACGGTATCTGCCGGAAGTGCTACGGCCGGAACCTGGCCACTGCCGAAGAAGTTGAAATCGGTGAAGCAGTTGGTACGGTTGCCGCTCAGTCAATCGGTGAACCAGGTACCCAGCTGACCCTGCGTACTTTCCACACCGGTGGTGTTGCCGGCGCAGAAGACATCACTCAAGGTCTGCCTCGTGTGCAAGAACTGTTCGAAGCCCGCAACCCTAAGGGTCGCGCGGTTATCTCTGAAGTTGACGGTGTTGTTGACAAGATCGAAAGCAACGCGGCTGAACACTTGCAGGAAATCACCGTTAAGGGCAAGATCGACACCAGAGTCTACACCATTCCTTACACTGCTAAGCCAGCAGTTCAGGAAGGCGATGAAATCCACCGTGGTGACAAGCTGATCCCTGGTTCTATCGACCCTAAGGAATTGATCAAGGTAACTGACACCTTGACGACTGAAGAATACATCCTGGCTGAAGTCCAGAAGTCATACCGGACTCAGGGGGTTGACCTGGCCGACAAGCACGCCGAAGTCTTGACCAGACAGATGCTGCAGAAGGTCCGGGTTCTTGACCCAGGTGAAACCGACATCTTGCCAGGTGAAGTCATGGACATCGCTGAATTCCGCGACAGAAACCGTGACGTCATCATCAGCGGCGGGATACCGGCTACTGCCCAGGCTTACATTCTGGGTATCACCAAGGCTGCCTTGGAAACCAACAGTTTCCTGTCAGCTGCTTCCTTCCAGGAAACTACCCGGGTTCTTACCGACGCGTCAATCCGCGGCAAGAACGACCCGCTTCTTGGTTTGAAGGAAAACGTCATCATCGGGAAGATCATCCCAGCTGGTACTGGTATGCCAATTTACCGCGACCAAGTGCCAAAGGCAGATGTTCAACAACCAGACTCAGTTTACTCAATCGCTGACTTGGAAAAGAAGATGGAAGACGAAAACAAGGAAACTGAAAGCAAGTAATCCAGTTTAATTAACAAGAAAAAACGCTCGAATGGCTCAAAGTCATCCGAACGTTTTTTCTTTTACTCTAAAGGAAAAATTGGAGGTTGAGGCCCCAGAATAAGTAGGGCAGGAAGGCAAAGGGGTCTTTACCCGGCCGCTTATGCCAAAGCGCGTGGGCGATGGCCAGCAGGGAGGCCAGCAGGAAACTCTTCACAGCAACGGGACATGAAAAATTTAAAGACAGGAGTAAAAAATGCCAAACGTCCCCGCTGCCCATTTTCCCTGTAAAAGCGAGCCAGACCAGGACTGCCAGAAAAATTGCAGCCTGCCCCAGGCCTTCCGTGTTTGATGCCTGGAAAAAATGCATCAGCCCGGTGGCCAGCGGTACGACGAGCAGGCAAGTATCAAAAGACTGTTCATGCAGGTCGCTGACAACCATTAAAAAGAAGTTGATTATAAAGAGCAAAGAAATAGCACTGCTCCTAGAATTGGAGATTAAATAAACTAACAAATTTCCGGTCAGGATGATGTAAGGGATATCATCCGCCAGCCGGCTTTTACACTCAAGAAAGGTATTATAACGATAACGGTCGGCGATGAGAGCTGCCAAAAGACCGCAGAGTAAAGAAATCATTTCGCTGAGCATTTTTTCCCTCCACTTACTATTACACCTTTTTTGCCAATATTTTTTAAAAAGGCAAAAAATGTCAGTTTAGGGATAAACCATCGGGTCGATGTCATGGTTCGGCGTAATGATCCGGAATTCAAAGTCCACGATGTTGAAGGGGAGCTTTAAAGAGAGGGCGTAGGCGGTCAGCTGCCGGTAAACTTAATTAGCGATCAAGTCGCTGGTCATGATTTCCCCGCTGGCCTTGCGGCTGATTGCCCCGTTTAAGGTTACGGCATACTGGTCCTCGCCCTTTATGCCAAGTTCATTCATGTAAGGGGCCAGGGCCCGCGATTGGCCGGCCGGAACAGAGGACGAACTTTAACGCCGCGGTCAAGTGCCTTAGAGATGGCTTCCTTTGTGCTGTCCTGGATTTCTCCTTGGGAGTTGAGCAGGGTGCCGTCAGTGTCGATAGCAACTAATTTGATCATTTTTTCACCTCATTTTTTCTTTTCTACTAACAACAAATTAATATTTTTCGCCTAAAATCAATCTTAGCATAGATAGAAAGCGCTGTCATCGAGTGAAAAAGCGCAGCTTTTTCCAGGCTGGAAATTCTTGAAAAAAAGCTTTGCATTAGCTGGCAAATGGAGTATACTAACAGATGTATGTTTTGAAGATTACTCCGCGAGGCAAAAAAGAAACTCCCGGATATGTGAACAAAATGATATATAAATTTAGGAGGAACTAGTTAATGCCAACCATTAATCAATTGGTTAGAAAAGGCCGTCACTCAAAGACTACTAAGTCAAAGTCACCAGCCTTGAACTACAGCTACAACAGCATGAAGAAGGAACAAGTCTTCAACCCAGCACCACAAATGCGTGGGGTTGCGACTCGTGTCGGTACTATGACACCAAAGAAGCCTAACTCAGCTTTGCGTAAGTACGCCCGTGTACGTCTTTCAAACTTGACTGAAGTTACTGCCTACATCCCAGGTGAAGGCCACAACTTGCAAGAACACTCAGTTGTCCTGATCCGTGGGGGCCGTGTAAAGGACCTTCCTGGTGTACGTTACCACATCGTTCGTGGTGCCCTTGACACTGCTGGTGTTGACGGCAGAAAGCAAGCTCGTTCCAAGTACGGCGCTAAGAAGGGTTAAAGGAGGACTTAAATAATGCCAAGAAAAGGTCATGTTTCAAAGAGAGACGTTTTAGCAGACCCAGTTTACAACTCAAAGCTGGTTACTAAGCTGATCAACCACTTGATGAAGGATGGTAAGAGAGCTCAAGCTTCATCAATCTTGTACGATGCTTTTGACATCATCAAGGACAAGACTGGCAGGGAACCAATGGACGTCTTTGAAGAAGCCATGAACAACGTTAAGCCAGTTTTGGAAGTTAAGGCTCGCCGTATCGGTGGTTCTAACTACCAAGTTCCTGTAGAAGTTCGTCCAGAAAGACAAACTACTTTGGCATTGCGTTGGCTGGTTTCATACTCCCGCTTGCGTAACGAACACACTATGGATGAACGTCTGGCAAACGAATTGATCGATGCCTCAAACAACACTGGTTCAGCTGTTAAGAAGCGTGAAGACGTGCACCGTATGGCAGAAGCTAACCGTGCCTTCGCTCACTACCGTTTCTAATCCAGTGCTCGTTATCTAAGGAGATAGAAAATTATGGCTAACAAACGTGAATTCTCATTAGAGAAGACTCGCAACATCGGTATCATGGCCCACATCGACGCCGGTAAGACTACTACTACTGAACGTATCCTTTACTACACTGGTAAGATCCACAAGATTGGTGAAACTCACGAAGGTGACTCCCAAATGGACTGGATGGAAGAAGAAAAGGAACGTGGGATCACGATCACTTCCGCAGCCACTACTGCGCAATGGAAGGACCACCGGATCAACATCATCGACACCCCAGGACACGTCGACTTCACTATCGAAGTTGAACGTTCCCTGCGTGTCCTTGACGGTGCCGTAACTGTTCTGGACGCACAATCAGGTGTTGAACCACAAACTGAAAACGTTTGGCGTCAAGCTGAAAACTACGGTGTTCCGCGGATCGTCTTCGTTAACAAGATGGACAAGATCGGTGCCAACTTCGACTTCTCAGTTAAGAGTCTGCACGAACGTTTGAACGCTAACGCTATCGCCGTTCAAATGCCTATCGGTGCTGAAGACCAATTCGAAGGCGTTATCGACTTGTTCGACATGGTTGCCGACGTCTACGACGAAGACAAGCTGGGCGCAAAATGGGAAACTATTCCAGTTCCAGACGAATACAAGGAAGAAGCCGAAAGCCGTCGTGAAGAAATGATCGAAGAGATCGCTGAAGTTGACGACGACATTATGGAAAAGTTCCTTGGCGGTGAAGAAATCTCCAACGAAGAACTTAAGGCGGCCTTGCGCCGGGCAACTTTGGACTTGAAGGCCTTCCCAGTATTTGCTGGTTCAGCCTTCAAGAACAAGGGTGTGCAAATGATGCTTGACGGTGTTGTTGACTACCTGCCATCACCACTTGACGTTAAGCCTTACATCGCCCACGACAAGGAAGGCAACGAAGTTGAATTGCTGGCTGACGACAACAAGCCATTTGCAGCTTTGGCCTTCAAGATCGCCACTGACCCATTCGTTGGTCGTTTGACTTTCATCCGTGTCTACACTGGTTCATTGAAATCAGGTTCTTACGTTTTGAACGCTTCAAAGAACCAACGTGAACGTGTTGGTCGTTTGCTGCAAATGCACGCCAACTCACGTACTGAAATCCCAGAAGTCTTCTCAGGTGACATCGCTGGTGCCATCGGTTTGAAGGACACCACTACTGGTGACTCTTTGACTGACCCAGCTCATCCATTGATTCTGGAAAGCCTGGACATCCCAGCTCCAGTTATCCAAGTTTCAGTTGAACCTAAGTCAAAGGCTGACCGGGACAAGATGGATGTCGCTTTGCAAAAGCTGACTGAAGAAGACCCAACTTTCCGGGCTGAAACTAACCCAGAAACTGGTGAAACTTTGATCTCCGGGATGGGTGAGCTTCACCTGGACATCATGGTTGAACGTATGAAGCGTGAATTCAACGTTGAAGCAACCATCGGTGAACCACAAGTTGCCTACCGTGAAACCTTCACTGTACCGACTCAAGCTCAAGGTAAGTTTGTTCGTCAGTCCGGTGGTAAGGGTCAATACGGTGACGTTTGGATCGAATTTACTCCAAACGAAGGCAAGGGCTACGAATTCGAAGACGCCATTGTCGGTGGTGTAGTTCCTCGTGAATACATCCCATCAGTTGACGCTGGTTTGCAAGAAGCCATGAAGAACGGTGTTCTGGCTGGCTACCCATTGATCGACGTTAAGGCTAAGCTGTACGACGGTTCATACCACGAAGTCGACTCAAGTGAAGCTGCCTTCAAGGTTGCCGCATCATTGGCTTTGAAGAACGCTGCTTCAAAGGCCGGCGCTGTTATCCTTGAACCAATCATGAAGGTTCAAGTCATCGCTCCAGAAGAATACCTTGGTGACGTTATGGGCTCAATCACTGCTCGTCGTGGCCAAATGGAAGGTATGGAAGACCGAGCAGGTGCCAAGGTCATCAACGCGATGGTTCCGTTGTCAGAAATGTTTGGTTACGCAACTACCTTGCGTTCATCCACTCAAGGCCGTGGTACCTTCACGATGGTTATGGACCACTACTCACCATGTCCTAAGTCAATCCAAGCTGAAATCATCAAGAAGCGCGGCGGCAACGCTTAATGCTTCCTAGTATGATCTAAGCCTTGATTTAGACCAAAACATAAATCCTAGTAAAGACATTACTTGTCCTTGCTAGGATTTTTTGTATTTTTAAGAAAAAACTGGCTTCTGGAAATATGTTAAAAAGGAAAGGAAAATTTCCCCACCAAGGGAAAGCAATTCCAGGAAACTTTTTCGAAAAAATAGGGCTAAACCCTTGCTATTTAAGGCTTAAGGCCTTATACTAGATGGAGTGCTTTTGAGAGAAAAATGCCCTCTGAGTACAAATTGTAGTTAGCTTAGACGCGGAAGGTTGCGGCACACTAGGCTGCATTGCCACAGTGGTTGTGCAGGGAATTTTCGCCGAGCTAGTCATCTTTTAAAGAAGACGTATAGGAGGTAATTAGATGGCAAATGAAAAGATTCGTATTAGACTAAAGTCTTACGAACACAGCATTCTCGATGAATCAGGTGCTAAGATTGTGGACACTGCGAAGAGAACTGGTGCTGAAATCTCAGGTCCAGTTCCGCTTCCAACTGAAAGAACTTTGTTCACTGTTCTGCGTTCACCACACAAGAACAAGGACTCACGCGAACAATTCGAAATGCGGACCCACAAGCGCCTGATCGACATCTTGAACCCAACCCCTAAGACGGTTGACTCATTGATGAAGCTCGATCTGCCAAGCGGCGTAGACATCGAAATCAAGCTTTAATTTTTAGATAGAAAGAGGTGTAATCATGACCAAAGGAATCTTAGGAAGAAAAGTTGGCATGACTCAAATCTTCACTAAAGATGGTGTTCTTGTGCCAGTAACTGTTATTGAAGCAACTCCAAACGTTGTTATGCAAGTTAAGACTGTAGAAAACGACGGTTACGAAGCTGTACAATTGGGCTACCAAGACAAGCGTGAAGTTTTGAGCAACAAGCCAGAAAAAGGTCATGCTGATAAGGCAAAGACTTCACCTAAGCGCTTCATTCGTGAACTCCGCGGAGTAGAGCTTAGTGACTACGAAGTCGGCTCAGAAGTTACCGTGGAGACGTTCAAGGAAGGTGACGTTGTCAACGTTACTGGTACTTCAAGAGGTCATGGCTACCAAGGTAACATCAAGCGCCACCACCAATCACGTGGTCCTGAAACTCACGGTTCCCGTTACCACAGAATTCCGGGTTCAATGGGTTCAATCATCAACCGCGTGCCAAAGGGCAAGAAGTTGCCAGGTCACATGGGTGTGAAGACTGTTACTATTGAAAACTTAGTAGTAGAAAAAGTTGTTGCAGACAAGAACGTTTTGATGATCAAGGGTAACGTGCCAGGTGCCAAGAACTCATTGATCGTTGTTAAGTCATCTGCAAAGGCTAGCAAGTAGGAAGGAGGACTCAAATGGCTAATTTCAAACTTATGGATCAAAACGGCAACAACGCTGGTGAAGTAACTTTAAACGACAACGTGTTTAGCGTTGAACCAAACGAAGCTGTTGTCTTTGATGCAATCATCAGACAAAGAGCTGGCAAGCGTCAGGGTACCTCTAAGGTGAAGAACAGATCTGCCGTTCGCGGTGGTGGTAAGAAGCCTTGGAGACAAAAGGGTACTGGTCGTGCTCGCCAAGGTTCAATCCGTGCTCCGCAATGGCGCGGCGGTGGTGTTGTCTTTGGGCCTACTCCACGTTCCTACGCTTACAGCATGCCAAGAAAGCAACGCCGGCTGGCTATCAAGTCTGTCTTGTCACAAAAGCTCCTTGACCAAAACTTGGTAGTTCTGGACAAGCTGACTATGGACGCTCCTAAGACTAGGGACTTCGTTGCAATCTTGAACGGCTTGAAGCTTGAAGGCAAGGTTCTGGTTGTTTCAGACGACAAGAACGTACAACTTTCAGCCAAGAACCTGCCAAAGGTTAAGGTTGTTCCAGTTAACGGCTTGAACGTTGAAGACGCCGTTAACTACGACAAGCTCGTTTTGACTCAAGACGACGTTAAGAAGATTGAGGAGGTATTGGCTTAATGGACGCACGCGACATTATCTTAAGACCTGTTATCACTGAAAAGTCAGCCGACTTGATGGACAGCAAGAAGTACACTTTCGACGTGGCCTTAACTGCTACCAAGCTTCAAGTTCGCGACGCTATTGAAGAAATCTTCGATGTTAAGGTTAAGAGCGTGAACATCATGAATGTTCGCGGCAAGGAAAAGCGCGTAGGCCGCTACACTGGCAAGATTGCCCGTCGCAGAAAGGCTATCGTTGCTTTAACTGAAGATTCAAACGACATCAAGATTTTCAAAGACGAAAACAACGAATAAATCAAGTAATTAGGAGGTCAGTCAATTGGCTATTAAAGTTTACAAGCCAACATCAAACGGTCGTCGTAATATGACTTCTTCTGACTTTGCAGAAATCACTAAGTCAAAGCCTGAAAAGACTTTGCTTGCTTCTAAGTCAAAGACTGCAGGTCGTAACTCATACGGTCACATTACTGTAAGACACCGTGGCGGCGGTCACAAGCAACAATACCGTATCATCGATTTCAAGCGTACTAAGGACAACGTTAAGGCTAAGATTGTCGCAATCGAATACGATCCAAACCGTTCAGCAAACATCGCCTTGTTGCACTACACTGATGGTACTAAGGCTTACATCTTGGCTCCTAAGGGCTTGACTGTAGGTTCATGGGTAGAATCAGGCGTAGATGCCGACATCAAGGTTGGTAACGCATTGCCACTGAAGAATATCCCAACTGGTACTGAAGTTCACAACATCGAACTTAAGCCAGGCAAGGGTGGCCAAATCGCACGTAGTGCTGGTACTTCAGCTCAAGTTTTGGGTGTTGACGGCAAGTACACTCAAGTTCGTCTGCAATCCGGCGAAGTTCGTGAAATCCTTTCAGAATGCCGCGCTACTATCGGTGCTGTCGGTAACGAACAACACTCACTGATCAACATCGGTAAGGCTGGTCGTTCACGTTGGATGGGCAAGCGCCCACAATCCCGTGGTTCTGTAATGAACCCTAACGATCACCCACACGGTGGTGGTGAAGGTAAGGCACCTGTCGGCCGTCCACAGCCAATGACTCCATGGGGCAAGAAGTCACGTGGTATTAAGACTAGAGACAGCAAGAAGGCTAGTGAAAAGTTAATCATCCGTCACCGTAAGGGTCGTAAGTAAGAGAAGGGGGTAATTAAATGAGCCGTAGTATTAAAAAGGGTCCTTTTGCAGATGCCCATCTTTTGAAGAAGGTTGACGAGCAACAAGCCGCGGAAAAGAAGCAAGTTATCAAGACTTGGTCACGTCGTTCAACTATTTTCCCTTCTTTCGTAGGGTTGACTATCGCTGTTTACGACGGTAGAAAGCACGTTCCAGTTTTCGTAACTGAAGACATGGTTGGTCACAAGCTGGGTGAATTCGTGCCTACTAGAACCTTCCGCGGCCACAAGGCTGACGACAAGGCATCCAAGTAATAAGGAAGGAGAAACAATTAAATGGCAGAACAAATTAGTTCAGCTAGAGCTGAAGCAAGAACTGTTCGTATCGCCCCAAGAAAAGCTCGTCTCGTTGTAGACTTGATCCGGGGTAAGAGCGTTGCTGAAGCATTGGCAATTTTGAAGTTTACGCCAAAAGCTGCTTCCCCAATCGTTGAAAAGGTTTTGCGTTCAGCAGTTGCTAACGCAGAACACAACTATGATCTTGAAAGTGCAAACCTTTACGTATCAGAAGCATATGTTAACGAAGGTGCTACTTTGAAGAGATTCCGTCCACGTGCCAAGGGTTCAGCTTCTCCAATCATGAAGAGAACCAGCCACGTAGTTGTTGTTGTTTCAGAATTGAACGATTAAGGGAGGTATTTGAATGGGTTCAAAGATTAACCCAATTGGTTTCCGTCTTGGTGTTAACCGCGACTGGGAAGCTAAATGGTACGCTGCTAGAGGCTACAAGGAAACTTTAAACGAAGACCTTCGGATCAGAAAGTTCCTCGATGAAAAGTTGAAGGATGCCTCCGTATCTACCGTTGAAATTGAACGTGCTGCTAACCGTGTAAACATTGCTATCCACACTGCTCGTCCAGGTATGGTTATCGGTAAGGGCGGCGCTGAAGTTGAAGCCTTGAACAAGGAAATCAACGCTTTGACTAACAAGCAAGTTCACATTAACATTGTTGAAATCAAGAAGCCGGATCTCGAAGCCAAGCTTGTTGCTGACGGCATTGCTCGTCAACTTGAAGCTCGTATCGCTTTCCGTCGTGCCAGCCGTCAAGCTGCACAACGTTCAATGCGTGCCGGCGCCAAGGGTATCAAGGTACAAATTGCAGGCCGTTTGAACGGTGCTGACATAGCTCGCCGTGAATGGCACACTGAAGGCAGTGTTCCACTTCATACTTTAAGAGCTGACATCGACTACGCATGGGTAAACGCATTTACTACCTACGGCGAAATCGGTGTTAAGGTTTGGATCAACCGTGGCGAAATTTTGCCAGGTCGCAAGAATCAACCTGCAAAGCGTTCAAAGGGAGGTAAGAAGTAATGCCTTTAGTACCAAAGCGTGTAAAACACCGTCGTGAATTCCGTGGTAAGATGCGTGGTGCTGCCAAGGGTGGCAAGACTGTAGCATTTGGTGAATACGGTCTTGAAGCACTTGAATCCCACTGGATTACTAACCGCCAAATCGAAGCTGCCCGTGTTGCGATGACTCGTTACATGAAGCGTGGTGGTAAGGTTTGGATCAGAATCTTCCCTCAAAAGTCCTACACTGCTAAGGGTGTTGGTGTACGTATGGGTTCCGGTAAGGGTGCACCAGCAGGTTGGGTAGCTGTAGTTAAGAGAGAAAAGATCATGTTCGAAATTGGGGGCGTTTCAGAAGAAACTGCTCGTGAAGCAATGCGACTCGCAGCAAGCAAGCTTCCAATTAAGTGCAAGTTCGTGAAGAGAGAAGACCAGGAAGCAGGTGGCGCAACTAATGAAGACTAAGGAAATCAGATCATTATCAACTGATGAATTGTTGGCAAAGGAAAAGCAATACAAGGAAGAATTGTTCAACTTGCGTTTCCAACAAGCTACCGGTCAATTAGAAAACACCGCTCGCTTGAGCCAAGTCCGTAAGAACATCGCTCGGATCAAGACTATCTTGAGCGAAAAAGAATTAGAACAAAACTAGTGGAAGGGAGATACTAACTTGAGCGAATCAATCGAAAGAAACCGCCGCCATGTTTACCAAGGCCGTGTCGTTTCCGACAAGATGGATAAGACTATCGTTGTTGTAGTTGATACTTACAAGAACCACCCAGTTTACAGCAAGCGTACTCGTTACTCAAAGAAGTACTACGCTATGGATGAAAATAACGAAGCCAAGGTAGGCGACATCGTTCGTATCATGGAAACCCGTCCATTATCACGTACTAAGCGTTTCCGTTTAGTTGACATTGTTAAGAAATCTGTTTAATTTACGGATTAGCTAAGGGAGGATTTAATAGTGATTCAAACTGAAACTCGTTTGAAGGTAGCTGACAACTCCGGTGCACGTGAATTGCTTGTTATCCGCGTTATGGGCGGGTCAAAGCGTAAGACCGGTAACATCGGTGACATCGTTGTCGCGGCTGTTAAACAAGCAACGCCAGGTGGTGTTGTAAAGAAGGGTGACGTCGTTAAGGCTGTTATCGTAAGAACCAAGTCAGGCGCTCGTCGTGAAGACGGTTCATACATCAAGTTTGACGAAAACGCAGCAGTTATTATCAACGCTGACAAGAGCCCTCGTGGTACTCGTATTTTCGGGCCAGTTGCACGTGAACTTCGTGAAGGGGACTTCATGAAGATCGTTTCACTTGCCCATGAAGTATTGTAAAAGGAGAGTTGCGCGAATGTTCGTTAAAACTGGTGACAAGGTAAAAGTTATTGCCGGCTCAGAAAAAGGCAAGGAAGGCACTGTCCTTTCCGTAAACGTTAAGGAGAACCGCGTGGTTGTTAAGGGCGTTAACATGATCAAGAAGGCTACCAAGGCTTCAGCTTCTAACGCTAACGGCGGTGTGGTTGAAACTGAAGGTTCAATCCACGCTTCTAACGTTAAGGTTATTGCCAAAGCTGAAAGCAACAAAGATTAATTAGGGAAGGAGGACACTAATGGCTAATAGTTTTGCAACTAAGTACAACGAAGAAATCGTTCCTGCATTGACCAAGAAGTTTAACTACACTTCAAGCATGCAAGTACCAAAGATCGACAAGATCGTTTTGAACATGGGTGTTGGTGACGCCGTTGCCAACGCAAAGAACCTGGACGAAGCTGTTGAAGAATTGACTCTGATCTCTGGCCAAAAGCCAATGATTACCAAGGCCAAGAAGTCAATCGCCAACTTCCGTTTGCGTGAAGGTATGTCTATCGGTGCTAAGGTTACCCTTAGAGGCGACAGAATGTACGACTTCCTGAGCAAGCTGATCAACGTATCTCTTCCACGTGTTCGTGACTTCCGTGGTGTTTCAACTCGTTCATTTGACGGCCGGGGCAACTACACTCTGGGTGTTAAGGAACAATTGATCTTCCCAGAAATTGACTTCGATAAGGTTAACCGCACTAGAGGTTTAGATATCGTTATCGTAACTACTGCGCAAACTGATGAAGAAGCTCGTGAACTTTTGACTCAATTTGGCATGCCATTTGCTAAGTAATTTGGAGGACATACATGGCTAAGACATCACAAAAGGTAAGAAATCACCGTCCTGCAAAGTTTTCTTCACGTGAATACACTCGCTGCGAACGTTGTGGGCGTCCACACTCTGTTTACCGCAAGTTTGGTTTGTGCCGCATTTGCCTGAAGGAATTGGGACACAAAGGTCAAATTCCTGGTCTTAAGAAGGCCAGCTGGTAAATCGGTAAGGAGGATAGCATAGATGGTATTGACTGACCCAATCGCAGACTTTTTGACTAGAATCAGAAACGCCAACATGGCTAAGCACGATTCAGTAGAAATTCCTGCATCAAACATTAAGAAGTCACTTACAGAAATCTTGAAGCAAGAAGGTTTCATCCGTGACTACGAAGTAACTGAAGATGGTAAGCAAGGCGTAATCAAGATTACCTTGAAGTACGGTCCAAACGGTGAACGTGTTATCTCCGGTTTGAAGCGTATCTCCAAGCCAGGCTTGAGAAACTACGTTTCGGCTGACAACCTGCCAAAGGTTTTGAACGGTTTAGGTATCGCCATTGTTTCTACTTCAGCTGGTATCCTTACCGACAAGGAAGCTAGAGAAAAGAACGTCGGCGGCGAAGTTATCGCTTACGTTTGGTAATTCTGACAGGAAGGAGAACAATTAATGAGCCGTATTGGTTTAAAGGTAATTAACGTCCCTGAAAGTGTCACTGTTACCAAGAATGGTAATGAAATTACTGTTAAGGGCCCAAAGGGTGAATTGACTAGGGAATTCGACCCACGCATCAAGTTCGAACAAGAAGACGGAGTAATCCGCTTCAGCCGTTCAAACGAAAATGACAAGGCTATCCACGGCACTATGAGAGCCAACTTGGCTAACATGATCGAAGGTGTCGTAAATGGCTACAAAAAGGAATTGAAGCTGATCGGTGTTGGTTACCGTGCAGTTGCCAAGAACAATGTCTTGACTCTGAACGTTGGCTACTCACACCCAGTTGAAATGAAGGCCCCAGAAGGCGTTACTGTGACTACCTCATCAGCAACTGACGTTACTATTGAAGGTATCTCAAAGCAAGTAGTCGGCCAATTTGCTGCGGAAATTCGCGCCGTACGTTCACCTGAACCTTACAAGGGCAAGGGTATCCGTTACGCTGATGAAGTCGTTCGCCGCAAGGAAGGTAAGACTGGTAAGTAATAGAAAATAAATTTTGAGGTGAAATTGTGATTTCAAAACCAGATAAAAACAAGTTGCGCTTAAAGCGCCACAGACGTGTTCGCGGTAAGATTTCTGGTACTGCTGAGCGCCCACGCTTGAGTGTTTTCCGTTCAAACACTAACATCTACGCTCAATTGATTGATGACGTAGCGGGTGTCACGCTTGCAAGTGCCTCAACTTTAGATAAGTCCGTTTCAAAGGATGCTACCAAGGTGGAACAAGCTCAAGCAGTTGGCAAGGCCATTGCTGAAGCTGGTAAAGCCAAGGGCATCACTGAAGTTGTCTTCGACAGAGGTGGTTACATCTACCACGGTCGTGTAAAAGCTTTGGCTGACGCAGCTCGTGAAAACGGCTTAGAATTCTAGGAAAGGAGATTAACATATGGCAAACCGAAACGATTCAAAAAATCGTAGAAACAAGGACGACATCGAAGATCAATTGGTCGCTATCAACCGGATTACCAAGGTTGTTAAGGGTGGTCGCCGTCAAAGATTTGCTGCCTTAGTTGTCGTTGGTGACAAGAAGGGTCACGTTGGCTTTGGTACTGGTAAGGCAACTGAAGTTCCAGAAGCTATCCGTAAAGCAGTCGAAGCCGGCAAGAAGAACATGATCTCAGTTCCAACTGTTGGTACTACTATTCCTCACGAAGTACTTGGCCACTACGGCTCAGGTAACGTTCTGCTTAAGCCAGCTGAAGCCGGTTCAGGTATTGCAGCTGGTGGTGCCGTACGTATCGTTATGGACATGGCTGGTATCGGCGACGTTACTTCCAAGTCTTTGGGTTCAAACACTCCAATCAACGTTATCCGGGCCACTATCGATGGCCTGCAAAAGTTGAAGACTCGCGAAGACGTTCTGAAGCTTCGTGAATCAGCTAAGAGCTTGCAAGATTAGGGAGATTATAGATGACAGATTTAAAGATTACTTTAATTAGAAGTGTTGCCCACCGTCTGCCTGAACAAAGAAAAGTTGTTAAAGCTCTCGGCTTAGGCAAGATCAACAGTACTGTTGTCCAACCAGACAACGCTGCAACTCGTGGCGCGCTGATGAAAATCGCTCACTTAATTTCTGTTGAAGAAGTTAATAAATAAATCAAGGAGGGTCCAATTTAATGAAACTTAATGAATTACACCCATCCGAAGGTTCACGCCACGCTAGAAAGCGTGTCGGCCGTGGTACTTCAAGTGGCTTCGGTAAGACTTCAGGTCGTGGTCAAAAGGGTCAACACGCACGTTCCGGCGGTAACACCCGTTTAGGTTTTGAAGGTGGTCAAATGCCATTGTTCAGAACTATGCCTAAGCGTGGTTTCAAGAACATCAACCGCAAGGAATACGCAATTGTTAACCTTGCAGATTTGAACAAGTTCGAAGAAGGCAGCGTAGTTGACTTCGAAGCTTTGAAGGCTAAGGGCTTGGTTAAGAAGCAATTGTCAGGTGTCAAGGTACTTGGCAACGGCGACTTGAACGTTAAGTTGACTGTAAAGGTTAACAAGGTTTCTGAAGCTGCTAAGAGCGCGATCGAAGCAGCTGGCGGCACTGTAGAGGTGATCTAATGTTTTCAACCTTGAAGAACGCCTTCAAGGATAAGGAAATTAGAAATAAGCTTTTCTATACTTTGTTTATCCTTGTAATTTACCGACTTGGTGCAAATATTACAGTTCCGGGGATAAATGCGAAGGCTCTGACAACAGTTGCTAATACGGGACTTGTTTCCGTGTTAGATACGGTTTCCGGTGGTGGCTTGGACAACTACTCCATCTTCTCATTGGGGGTATCACCATATATCACTGCGCAAATTGTTATCCAACTGTTGCAGATGGACATCGTACCAACGCTTGTCGAATGGGGCAAGCAAGGGGAAGTTGGCCGGCGCAAAACCAACCAGGTTACCCGGTATTTAACGCTGTTTGTTGCTTTTGTCCAGAGTGTGGGGATTACATTAGGTTTTAACGCCTTGTCTTCCTTCGGTCTGGTTAAGACTCAAACTTGGCAAACCTACTTCGAAATCGGTATGATCATGACAGCTGGTACCTTCCTGTTAACTTGGCTGGGTGATGAAATTACCGATAAGGGTTTAGGCAATGGGGTTTCAGTAATTATCTTTGCTGGGATCATTGCCCGTCTGCCAGGCGGACTTTACCAAGTCTTCCAAGATCAGGTGATCAACAACAGTGCAAGTGATCGCTGGCAAGGAGTTGCGTTCTTCGTTGCGCTTATTGTCGCAATTTTATTGGTAACGAAATTCGTTACCTGGGTTGAACAAGCTGATCGTCGTATTCCGATTCAATATACGAGAAGAGCGACGACCAGTGGATCAGAAAGTTTTCTACCATTAAAGGTTAACGTCTCCGGCGTTATTCCAGTTATCTTCGCCAGTTCGTTCATCGTTACGCCAGCCACGATTTTGATGGCTTTCCAAGGCAAGTACGGCGACACGACTTGGTATCAGGTCTTATCGAATATCTTTAGCTTGCAGACGACCCCTGGTGCAATTATCTACACCCTTTTGATCATTCTATTTACTTTCTTCTATGCCTTCGTTCAGGTAAATCCTGAGAAGCTGGCGGAAAACTTACAAAAGCAGGGTGCATATATTCCTAGCGTGTGGCCAGGTAAGGACACTGAGAAATATATGAGTTCAATGTTGCTGAAGCTTTCAACGGTCGGGTCCGTATATCTGGGTTTGGTTGCTTTGCTTCCACAGCTTGCAACCAACATCTGGGACCTGCCAAGTTCAATTGGCTTGGGTGGGACCAGCTTGTTGATTGTTATCGGGGTTGTTCTGGAATTGTCACGGCAAATCAACGGTTTGTTGATGAAGCGTGAATATGCCGGATTTATTAGATAGGTGAAAAAATATGATTAATTTGATTCTTCTTGGTCTGCCAGGCGCAGGCAAGGGTACTGCATCTGAACAAATCGTTGACAAGTATCACTTGGCTCACATTTCAACCGGTGATATGTTTAGAGAAGCTATGGCTAACAAGACTCCAGTAGGCTTGGAAGCCAAGTCTTACATCGACAAGGGCGATTTGGTTCCAGACGAAGTAACTGCTAAGTTGGTTGAAGAACGTCTCGGTCAAGACGACGTTAAGAATGGTTTCATTCTTGACGGTTTCCCGAGAACGACTAACCAGGCAGAATTGCTCGACGAAATCACTACCCGCTTGAACAAGCAGCTGACCAACGTCATCGCAATCGATGTCAAGGAAGAGACTTTAATCGATCGTTTATCTGCACGGTTCATGTGCAAGAATTGCGGCGCAACTTACAACAAGTTTTCAAAGAAACCTAAGGTCGAAGGGACTTGCGACCGCTGCGGCGGCCACGAGTTCTATCAACGTGAAGACGACAAGCCTGAAGTTGTCAAGAACCGGCTGGAAGTTAACGAAAAGATGAACGCTCCATTGAAGGAGTACTATGACAAGAAGGGCTTGCTCGCTACTGTAAACGGCGAACAAGTACCTGAAAAAGTTTTTGCAGATATCGACGCTATCCTGAGCAAGGATTAGCCAAAAGAATTTGCAAATTTTTTCGAACATGTTATAATTTCGAAGTATGACTGTTTTGATTGCGGAGGGGCAACTTTGGCAAAAGATGATGTCATTGAAGTAGAAGGTAAGGTAGTTGATACCTTACCTAATGCTATGTTTAAAGTCGAATTGGAAAACGGTGCCACTATTTTGGCTCACGTTTCCGGCAAGATCAGAATGCACTACATTCGGATCCTGCCTGGCGACCGGGTCACTGTGGAGCTGTCTCCATATGACTTGACTAAAGGTAGAATTACGTATCGGTTTATTAAATAAAAACGGAGGCAAACATGAAGGTTAGACCATCTGTTAAGCCAATGTGCGAACATTGCAAGGTCATTAAGAGACATGGTCGTGTTATGGTTATTTGCCCTGCAAATCCAAAGCACAAGCAACGTCAAGGTTAATTTTAGAAAGTAGGAGGTGCATTCTATGGCACGTATTGCTGGTGTTGACTTACCAAGAGATAAAAGAATTGTTATCGCTTTAACTTACATTTACGGTATCGGTGAACACACTGCACAAGAGATCTGTGCAGCAGCCGGTGTATCTGAAGACGTTCGTTCAAAGGACTTGACCCCAGAACAACAAGAAAAGCTTCGTGCAGAAGTCGACAAGTACCGTGTTGAAGGTGACTTGCGTCGTGAAGTAAGCATGAACATTAAGCGTCTTGTTGATATCGGTTCATACCGTGGTATCCGTCATCGTCGCGGTCTTCCAGTTCGTGGTCAAAACACCAAGAACAACGCACGTACTCGTAAGGGTGCTAAGAGAAGCCGTTAATCCAAAAATAATATAAGGAGGTTTATTGATGCCTGCAAAGAAAACTGCTCATAAGCGTCGTGTGAAGAAGCACGTTGAAAGTGGCGTGGCTCACATTCACTCAACGTTTAACAACACTTTAGTTATGATTACTGACGTTCAAGGTAACGCCGTGGCCTGGTCTTCAGCTGGTGCTTTGGGTTTCAAGGGTAGCCGTAAGTCTACTCCATTTGCTGCGCAAATGGCTGCTGAAGCTGCTGCTAAGAGCGCAATTGACCAAGGTATGAAGCACATCGAAGTATCAGTTAAGGGCCCAGGTTCTGGTCGTGAATCAGCAATCCGTGCTCTGCAAGCTGCTGGTCTGGAAATTACTTCAATCCGTGACGTTACTCCAGTACCTCACAACGGTTCTAGACCACCAAAGCGTCGTCGTGTTTAATAAAATCTTACTTTGAGACGTGCGTTTTGAAAGGGGCCCAGTAATGATTGAATTTAAAAAACCAAATATTACCGTCGTGGATCAAGAAGACAGTTACGGTAAGTTTGTCGTTGAACCGCTGGAGCGTGGGTTTGGTACTACCTTAGGTAATTCACTGCGTCGGGTTTTGCTGACTTCTGTCCCAGGGACCGGTTTGGTGAAGGTGAAGATCGATGGTATCTTGCACGAATTCACTACTGTTCCCGGTGTTAAAGAAGACGTAACCAAGATCATCTTGAACCTGAAGAAGCTTGAACTCCGGGCCTACACTGAAGAAGTAAAGACGATCGAACTCGATGTTGAAGGTCCAGCTACGGTAACTGCTGAAGATTTGAAGGCTGATGCTGATGTTGAAGTCTTGAATCCTGACCAATACATTTGTACCATCGCTCAAGGTGGCCACCTGCACATGTGGATTGATGTCTGCAACGGCCGGGGCTACGTACCAGCCAGCGAAAACAAGACTGCTGAAATGTCCATCGGCGACATTCCAGTTGACTCACTTTTCTCACCAATCGAAAAGGTCAACTACCAAGTTGAATCAACCCGGGTTGGTAAGAGAGAAGACTTTGACAAGCTTACCCTGGAAATTTGGACAAATGGTTCAATCGCTCCGAATGACGCCCTCAACTTTGCCGCCCGTGTTCTGGTCGAACACTTCAAGGCCTTCGAATCAGCTGACGCTGCTGCCGAAATCGGCGAAGTTATGGTAGAACAGGAGAACGACCAAAAGGAAAAGAAACTCGAAATGACTATCGAGGACCTGGACCTTTCAGTTCGTTCATACAACTGCTTGAAGCGGGCTGGCATCAACACCCTGCAAGACTTGACTGTTAAGTCAGAAGCAGAAATGATGCGGGTACGCAACCTGGGACGTAAATCATTGGAAGAAGTTAAGAATAAATTGGCAGACCTGGGTCTTTCACTTCGTCAAGAAGACTAGTCTGCAATAAAGGAGGCACATTAATGTCATACCGTAAATTAGGTTGGGACAGTAGTCAAAGAAAAGCTATGCTCCGTGAAATGACTACCCAATTGATCATTAACGAACGCATCGTCACTACTGAAGCTCGCGCTAAGGAAGTACGTCGCACTGCTGAAAAGATGATCACTTTGGGCAAGCGCGGTGACTTGGCTGCAAGAAGAAAGGCTGCTGCTTTTGTACGTAACGAAATCGCTGATATCCACGAAGAAGGCGACGAAGTAGTTGTTAAGTCAGCACTTCAAAAGCTCTTCAGCGACGTAGCTCCTCGTTACAAGGACCGTAACGGTGGTTACACCCGGATCATGAAGCTGGCAGTTCCTCGTAAGGGTGACGCAGCTCCTATGGTAGTTTTGGAATTGGTTTAATTCTCAAGCTGCAAATTTAATACTTTTTGAAATTATTCATGAAAGCGAGAATAAGCGCGATGATGATGGGGAAACCTTAGTCTAGCTTAGATGGTTCGATATCATCCCTCTTCATGGATGATTTTTTTTTGCGCTTTTTTACCCTGGCTTGATACAATAGAAGGAAATGAGCAAATAGGTGGTGACGCGATGAGCGACAATATTATTTCTTTTGACCATGTGACTTTTACTTACCCGGACAGCCCGCGGCCAGCTTTGTCTGACCTCTCTTTTGCGATTGAGCGGGGAAGCTGGACGGCGCTGATCGGGCATAACGGCAGCGGCAAGTCAACGGTCTCTAAATTGATCAATGGTCTGCTGGCCCCAGATGATTTGGATAAGTCCTCTATTACAGTTGACGGGGTCAAGCTGGGGGCTGACACGGTTTGGGAAGTCAGAGAGAAGGTCGGCATTGTCTTCCAGAATCCTGACAACCAGTTTGTCGGGGCCACGGTCAGTGACGATGTTGCTTTTGGCTTGGAGAACCGGGCAGTGCCCCGGCCGGAAATGCTTAAAATCGTCGCTCAGGCGGTCGCTGACGTTGGTATGGCTGATTATGCTGACAGCGAGCCCAGCAACCTCTCAGGGGGGCAGAAACAGCGCGTAGCGATCGCCGGCATCCTAGCAGTCAAGCCCCAGGTCATCATCCTGGATGAATCGACCTCCATGCTGGACCCGGAAGGCAAGGAGCAGATCTTGGACCTGGTTCGGAAGATCAAGGAAGACAATAACTTGACAGTTATTTCCATCACCCACGACCTGGAAGAAGCCGCGGGGGCTGACCAGGTTTTGGTCTTAGACGACGGCCAGCTGCTAGACCAAGGTAAGCCGGAGGAAATTTTTCCCAAGGTGGAGATGCTGAAGCGGATCGGCCTGGATATTCCCTTTGTCTACCGGCTCAAGCAGCTCTTGAAGGAACGGGGGATTGTGCTCCCGGATGAAATTGATGATGATGAAAAGTTGGTTCAGAGCTTATGGCAATTAAATTCGAAAATGTAAGTTATGTCTACAGCCCTGGCTCACCACTGGAGGCGATCGGCCTGGACCAGCTGAATTTCAGCCTGGAAGAGGGGAAGTTCATCGCTCTGGTTGGCCATACGGGCAGCGGCAAGTCGACCCTAATGCAGCACTTTAACGCGCTGTTAAAGCCCACCAGTGGCAAGATCGAAATCGCGGGCTACACCATCACCCCGGAGACTGGCAACAAGGGCTTGAAGGACCTGCGCCGCAAGGTGAGCCTGGCCTTTCAGTTTTCAGAGGCCCAGCTCTTCGAAAACACGGTTCTAAAGGACGTTGAGTATGGGCCAAGGAACTTTGGCTTCAGTGAAGATGAGGCCCGTGAGGCGGCCTTAAAATGGCTTAAAAAGGTGGGTCTGAAAGATGACTTGATTGAGCATTCGCCATTCGACCTGTCCGGCGGGCAGATGCGGCGGGTGGCCCTGGCTGGGGTTTTGGCCTATGAGCCGGAGATCATCTGTTTAGATGAGCCGGCAGCTGGCCTGGACCCAATGGGGCGGCTGGAAATGATGCAGCTGTTTAAGGACTATCAGGCAGCCGGGCATACGGTGATTTTGGTAACCCACAACATGGATGACGTGGCAGATTACGCCGACGACGTCCTGGCTTTGGAGCATGGCCGCTTGATCAAGCATGCCAGCCCTAAGGAAGTCTTCAAAGACAGTGAATGGCTGCAAAAACACCACCTGGCTGAACCCCGCAGCGCCCGTTTTGCCGCAAAACTTGAGGCGGCTGGCTTAAAGCTGCCGGGCCAGCCTTTAACCATGCCGGAGCTGGCGGATGCGATCAAGCAAAGCTTGAAGGGGGGAGAGCATGAGTAAGATTATTATCGGCCGCTACCTGCCGGGGACGACCTTTGTCTACCGGGTAGACCCGCGGGCCAAGCTGCTGACGACTTTTTACTTTATCATCATGATCTTCCTGGCCAACAACTGGGTCAGCTATCTGGTGATCAGCATCTTCGGCCTGGCCTACGTTTTCGCGACGGGACTGAAGGCCAGAGTTTTTTGGGACGGGGTCAAGCCAATGATTTGGATGATTGTTTTCACCTCCCTTCTGCAGACCTTCTTCATGGCCGGTGGAAAAGTCTACTGGCACTGGTGGATATTTACCCTGTCCAGCGAGGGCTTGATCAATGGTTTGTACGTTTTCATCCGTTTTGCCATGATCATTCTGGTGTCAACAGTGATGACGGTGACGACCAAGCCCCTGGAAATCGCGGATGCCATGGAATGGATGCTGACGCCGCTCAAGCTCTTCAAGGTCAACGTGGGCATGATTAGTTTGGTGATTTCGATCGCCCTGCGCTTCGTGCCGACCTTGTTTGATCAGACGGTCAAGATCATGAATGCCCAGCGGTCCCGGGGTGCCGACTTTAACGACGGCGGCCTGGTCAAGCGGGCCAAGTCAGTTGTCCCGATGCTGGTGCCGCTTTTTATCGATTCTCTGGAAGTGGCCCTGGACTTGTCCACAGCCATGGAATCCCGGGGCTACAAGGGCAGTGAGGGCCGGACCCGCTACCGGATCCTGGAATGGAGTAAGGTGGACTTGATTCCAGTAGCCTACTGCCTGCTGTTGACAATTTTGATGATCACGACAAGGAAGCATTGATGACGAGCAGATACAAATTGACATTGTCCTATGACGGCCATGACTTTCATGGCTTCCAGTCCCAGCCGGGGCAAAGAACGATTCAAGGGACGGTAGAGGAGATTCTCAAGCAGATGACTAAGGGCCAGGAGGTCCGGGTCTTCGGGTCAGGCCGGACTGATGCCGGAGTCCACTCAGTCGGGCAGGTAATCCACTTTGACTATCCAGGCAGGGAAATTCCGGCAGCCAACATGATCAAGGCCCTAAATTCCCAGCTGCCGATGGATATGGTTTTTACTGACTGTGAAATTGTGGATAAAGATTTCCACTCCCGTTTTTCCGTCAAGGGGAAGTGGTACCGCTACCGGGTCAGCCTGGACGGCTTCGTAAACCCCTTTAAGCGTTTTTACACAGGACACTACCCATATCCGGTAGATGTGGAAAAGATGCAAGAAGCCGCCAAGGACCTCCTGGGCCGGCATGATTTTACCAGTTTCGCGGCCAGCGGCGGGCAGATTGAGGATAAAGTCCGGGACATGTACTATGTCAACGTGGCCCTGGATGAAGAAAACAACGAAGTGATCATGGACTTTATCGCGACCGGCTTTTTGTACAACATGGTCCGGATCCTGGTGGCCACTTTGCTGGAGATCGGCAATGGCCGCCGGCCGGTGCACGACTTAAAGCGGGTGATCGCGGCCAAGAACCGACTGGAGGTCCAGCAGACCGCCCAGGCCTGCGGCTTGTACCTCTACCATGTCTTTTACGAGGAAGTGCCAAGAAAATATCGGCTCGACCTTGATTTATAATTGACATTTTGGTATTTAGGACATATGATATAAAAGTATGTTTGTCCACGGTAGGCCCCGGAAACTTATTGTATTCAAACTACGAATTAAACGGAGGAATTTACATTGCGTACTACACCATTAGCAAAGACTAGTGAAATTGAACGTAAGTGGTACTTGATTGACGCTACTGATGTTTCATTGGGTCGTCTTTCAACTGCTGTTGCTACTATCCTTAGAGGTAAGAACAAGCCTCAATTTACCCCAAACGTTGACACTGGTGACAACGTCATCATCGTTAACGCTTCTAAGTTAAAGCTGACTGGTAAGAAGGCAACTGACAAGATCTACTACCACCACTCAGAATACCGTGGCGGCTTGAAGTCTGTATCAGCTGGCGAATTGCTTGCCAAGAACCCTGTTAAATTGGTTGAATTGTCAGTTAAGGGTATGCTTCCAAAGAACACTCTTGGCCACCAAGAATTCTTGAAGATGCACGTTTATGCTGGTGAAGAACACAAGCACGAAGCGCAAAAGCCTGAAAAGTTAGACATTAACAATTTGATCTAGGAGGTAGTTTAGATGGCACAACAAGTTGCATATGCAGGTACTGGTCGTCGTAAGGACGCCGTAGCTCGCGTTCGTTTAGTACCAGGCGATGGTAAGATCACTGTTAACAACAAGGATGTTGCTGACTACATTCCATTGCCAATCTTGGTTAAGGACCTTAAGCAACCTTTGACTTTGACTGAAACTGAAGGCCAATACGACGTTATCGTTAACGTTAACGGTGGTGGTTTCTCAGGTCAAGCCGGTGCGATCCGTCATGGTATCGCCCGTGCCCTTCTTGAAGTAGACCCAGACTTCCGTGGTCCACTGAAGAAGGCCGGCTTCTTGACTCGTGACCCAAGAATGAAGGAAAGAAAGAAGCCAGGTCTGAAGAAGGCCCGCAAGGCTTCACAATTCTCAAAGCGTTAATCTGGATCGTCAAGAACGGCATCAGATCAGCGGTTTCGAGACTTCAAATGGTCACATATGGTCACAACAGATCATATCGAATCCAAGAGATTTAAAGCATCAGCATCTTGCTGGTGCTTTTTTTCTGCATAAAAAATCTTGACTAGTAAAGTTGCCAGAAGCATATTAGCGTTTATATTTATATTTTTTACGGGGTGGTCTGCCGCAAGATTAACGGTACGGACAGAAAGCTCTAATTCGACATATGACTACTTGATTTTAGGAGGGTTTAGTCTGCTTTTAGGTGTTTTGGAACTCTGTAGATTAATGAATAGTAAGTAATCTATAGATCAAAATATAATGTAATGAACAGTGGAGTTTTGCCCATGAATTATGACAATGCCGTTGATCTTATTGACCACTTGATTGACTAGCAATCAGACAAGTATTTTGCTGATTTTGTTCCGTTTACTTTTCAAAATGAAGATTATGCAGAACTAGAGATGTATTTAAACGTACACTTTAAGCCGCGATTTGCAGAAAAAATAAAATTTATTGCCTTCGCGCTGATGTACCAGCACGAGTCATATGTCTACTTAGATGAAGCAGTGTCTAATGCCCTTTACCCCGATCTGAAAAACAAGAACCTACGAAACATTGGCTTAGAGCGGCTGGGAGAAATTCATCGATACTATGGTGATTGACAATTACGGCAGCTTAAATATCTTGCTTAAGCAGGAGAATGATTTTTCGCTTATGCGGATTGAAGATGGTTTTAGTACAATTTTCTTTAACCTTAAGGGGCAGTTGCGGGAAGAAGTAGAGAGTCTGGTTGAGCACCAAGGATTGTATTTCAAGGAATTGACTGAGCAGACCAATTTTTCTCCCCAGCTTATCCACATAAGAAAATTAAGCATAAGTCTAGACCAACTGAATAAAGTAAATCCGTGTCGGACAGAAAACTTCCAAAATTAAGAGTTTCCCGGAAAAAAGGACAAGTCCTTGCATATGCTGCAAAATGAAAATGAAATTAGTACAAGCTTAAAAACAACTAGTGATTACAAAGATGTGAAAGCAGGGGACAAGACAATGAGAATTCCGAAAAACTTAGGTCAAGCACAGTCTGCGTCTGCCTGGCGGCACTCGCGTTAACGGCATGTGGCTCTTCAAAGGCAAGTTCATCTGCCAAAAAACTCTGAACTGGTCAGCTGGTGCTGAAATTCCGACCATGGACCTGTCAAAAGCGACCGACTCAGTTTCCTTTACCCAGATCTCCAACACCTTTGAAGGCCTGTACCGACTGGGCAAGGACTCAAAGATCACTCCCGGCCTGGCAACCTCTGAAAAAGTTTCCAAAGACGGTAAAACTTACACCTTTACCTTGAGAAAGAACGACAAGTTGTCCAACGGGGATCCGGTGACGGCCCAGGACTTTGTCTACTCCTGGCGGCGGACAGTCAACCCGAAGACTGAATCAGAATACTCATACCTCTTCTCTGGCATCAAGAGTGCTGACAAGATCGTAGCTGGCAAGAAGCCGGCAACGAGCCTGGGGATCAAAGTGGTTGGCAAGTACAAGCTGGTCGTGACCCTGGAACGGCGGATCCCTTACTTCAACAATCTGATGTGCTTCGCGGTCTCCTTCCCGCAAAATGAAAAAGCTGTTAAGAACTATGGCTCCAAGTACGGGACAGCTTCCAAGTACCTGGTCTACAACGGCCCTTACATCCAAAAGGGCTGGACCGGGTCCAACCTGTCTTGGAAGATGATCAAGAACAAGTACTACTGGGACAAGAGCAAGGTCAAGCTGAACCAGATCAACTGGAGCGTACAAAAATCAACCACGACCTCCTACAACCTCTACCAGGCTAAGAAGCTGGACGCTACTTCCCTTGATTCTTCACAAATCAAGCAGCTGAAGAGCGATAAGGCCTTCAGCTTGCTGCCGCAAGGCGGGACCTACTACATGACATTCGGCCAGGGCAAGAGCGGCAACGAATACGTCAAGAACGCCAACATCCGCAAGGCCCTGTCACTGGCAATTGACCGCGGGGGCCTGCGGGGGCCTGGTTTCTACCATCTACGGCGGGGCCAGACAGCCAACACCTTGACCTCCAAGGACTTGACCAAGGTCAACGGTAAAGATTACACTAGCTTGATCTCCAGCAGCGCAAAGAGCCTCTACCCGAAGGACGGTAATAAGAAGCTGACCAAGCAGTACCTGGCCAAGGGCCTGGCTGAACTGGGCAAGAGCAAGATTAAGCTGACCTTGATCTCCAGTGACACGGACAGTGCCGAGAAGACGGCAGAATCAATCCAGTCCAACATTGAAGCGACCCTGCCGCAGGTTAAGGTGGAAGTTAACAGCGTGCCATTCAAGACCCTGCTGAACCGCCTGGCCAGCCACAATTTCCAGCTGGGCCTGATCGACTGTATCGCCGACTTCGCTGACCCAATTTCCTGGACCTTTTTACGACTGGCAACAGCCAAAACGACGGGCAATGGTCAAACAGCGAATACGACAAGCTGATTGCTGACTCCAAGACCACCACGTCTGCCAGCCAGCGCTGGAGCGACATGAGCAAGGCTGAAGACATCCTCTTAAACGATGCCGGCATTTGCCCGCTCTACTACTCAACCAGCGTCATGTTGGTCCGGACCAGTGTCAAGAACGCGGTCTACAACCGGGGCAACTGGGACTTCAAGGAAGCCTACGTCAAATAATTGAGATTAAAGATAGTCAAGAAAGCAGATCTCCGGATCTGCTTTCTTGCGCAAAAAAATTTTCCCTTTGACTATAATTAAGGCAGGAACAATTACAGCAGAAGGAAGAGAGGGCATGATGAAAAAAGGCGACAAATTGATTGACTGGGCCATGGAAATCCAAGCGATCGGGCAGACCGGCCTGGCCTACAGCAAGGACGTTTTTGACACGGAGCGCTACAGCCGCCTGCGGGAAATAGCCGCGGAAATGCTGGCGGAAAAAAGCGCGGTCAGTTATGACAAGGTCAAAGAGCTCTTTTGCAATGAAATTGGCTACCAGACTCCGAAAATCGCGACCAGGGCAGCCATCTTTAAAGATGACCAGATTCTCCTGGTCCAGGAAAAAGAAGGGCGCTGGTCCCTGCCCGGCGGCTGGTGTGACGTCGACCAGTCTCCGACTGACAACTGCGTCAAGGAGTGCCGGGAAGAGTCAGGCTTAACTGTCAAACCGGTCAAAATTATCGCAGTTCAAGACCACTTTAAGCACCATGGGTCGATCCACCCTTATGGGATTACCGATATCTATTATCTCTGCCAGTCCTTAGGCGGGGAATTCCAGGCCAACTCCGAAACCAGCCAGGCGGCCTGGTTTAAGGAAGATGATCTGCCACCTTTGGCAGAAAACAAGAACTCAACTGAACAGGTGAAGATGTGCTTTGCCGCGCACCGGGATGCCAACTGGCAAACTTTATTCGACTAAAAAAACTCGCCGTGCGGCGAATTTTTACTATCTATTCATTTTTTCAGCTTTTGCCTATTTTTACTTCTTAGCAGCTAATTGCCGGCAGACCAGGACCATCAGAAGGCAGCTGAGCAAGCTGTAGACCCCGCCAAAGTAGGGGATGCTGGCGATCCCGGTCAAGCCTGCCGCTTGCGCTGCCGTAAAGGAGCCCAGGGAGATGCCGACATTGGCAAAAATCGAGTTGAAGCTGGAGGCAAAGTCGATTGACTCGGGATATTCAGCCGCGGCCAGGTCCAGGAAATAAACCTGGGTGGAAGACCACCCGTACATGCTGTTGACGCAGCAGATGCCGACGATGCACAGGAAGGCCAGCCAGGACAGAGGCAAAAGGGGAGCCAAGAGGAAGAGCAGAACAGTCTGGATGCCAAAGACCAAAGGCAGGCGCTTGATCCCGCCATGGTCGGCCAGAAAGCCCCCAGTCTTGTTGCCGGCAATAAAGGCCAAGCCTAGCAGCAAGAGCAGGACATTCAGCCAGCTCTTCGGGAAATGCATGTAGTCGGTGATCAAGGTCCGGATGTAGGTATAGTAGGTATACTGAGCCGCGCAGACCAGGATGATGGCCAGGAGGGTCAGCTGGATGTGCCAGTTGCCCAGGATGGCAAACTGCTTATTGCCCTTGCTGGACTGGCTCTGCGGAGTGTCCCGGGGCACGAAGGCCAGTAAAAGGATAAAGGTTACGAGTGTCAGAAGCGAGATCATCCAGAAACTAGCATGCTAGGAAAAAAGTCGTTGAGATCAAGGTCCCGATTGGCAGGCCGATGATGGAAGCAATCGAGAAGCCGGCAAAAATCCAGGAGAGAAGCGAGGCTCTTTTTTTCCAAGGGAGCCACGAAGTTGGCGATAACCAGGATCAGGGAAATAATCGCTCCAGCTGTCGTGGCTGACAGGATTCTGGACAAAAGCAGGCTGACATAGCTGTAAGACAGGGCCGTCCAGGTATTGCTGATAAAGAAGATCCCCATCAAAAAGAAGAGGAGCTGGTGGCGCTTGAAATACTTGGTCAGGGAAGTGACCAGGGGAGTGGCGACAGCATAAACCAGGGCAAATACGGTAACCAGGTAGCCCAAGCTGCTGAGGGAGGCATTTATTTCCCGGGAAATATCCGGCAAAACGCTGACGATCATATATTCATTGCAGCCCAACATGAAGGCTACGAAAACGAAGAGAAAGGCTTGAATTTTGTAACGTGATATGAGAAAACTCCTATAAAATACACCGTTAATTAGTTTAACAGAAAAAATGTTAAAATGAAGATGATGTATAGTAAGTCTTGAGTAAAGAAAGCAGGTTTAACCATGCAGATTCAAGTTAAATTGGATAAGGGCTATTTGTCCGATGAATATGCCAAGTATGCCAGCGTTAAAGAAGCCGGCAACCCGGTAGTGTCTTTTCCTTTTACCCTGACGGACCTGCCGGAAGGGACCAAGTACCTGGCCTGGTCCTTGGTCGACTATGATTCCATTCCGGTCTGCGGCTTTGCCTGGATCCACTGGCTGGCTAGCGACGTGCCAGCAGTCAGCGAAATTCCAGCTGACTTCAGCCGGACGACGGATACGCCCCAGGGTTACAATAGTACTGTTTCCCGCTTTTTAACCGATCCAGAAGAAGTGCATACGGGCTATATCGGGCCGACTCCGCCGGACAAGGATCACGACTACCGCTTCCGGGTTTACGCTTTAAGCGAGAAACTGGACCTGGAGCAGCCTTATTACTACAATGAATTCTTGCGTGCCTTAAAGGGCAAGGTTTTGGCTGAAAGCCAGGTCGACCTGCCGGCCCGGGTTTAAGGGAAAAGATTTTTAGAAAAAGTTGCCGAAAACTGTTGACCAAAGCTGGGAAATTAGGTACTATATTATTTGTTGAGCGATCAGCTCACAAGTAAGATTGCGTTATAGCCAAGTGGTAAGGCAACGGTTTTTGGTACCGTCATGCGCTGGTTCGAATCCAGCTAACGCAATAAGCAAGGCCAGGCTGGAAGGCTTGGCCTTTTTTGCGCGCCAAAAAAGCAGGCCAAAAATCTGGTAAAATGGAAAAGAACTTTTGTCGTCAGATTGATTTTAAGAAAAGAGGCAGCAGATGGCTGGAAAAGAACAAGAAGCGGAGAAAATTCAAAAGCTGCTGGGTCAGCTGGAAGAAGAAATTTCCTTGAGCTACTTCCTTAAGCCTGGAACAATCACAGTCGGCCGTGACCTCCTGCAGGCCATGCAGGACCTGTTGGCTAATCCTGAAAATTGGGAAGAAAATTAACAAATTGCGCTTGACTTTAATTTGTTCTTAAGGTATAGTTGAAGCATCAAATGTTGAGAGAGGACAAGAATCATGAACGCTTTAATCAGCAAGAACGCGAAATTCTTTAGCTTTTATTACTGGAACTAGCTTGCATCTGCGGATGCAAGTTTTCAAGCAAGAACATGCATCTGCAGTTTCAATAATAAGAGTTTTCTCAGCATTTTTTGAAACGGCAGGAATTAGGATCCGGTGGTTTCAAGAACACGCGCATTAGCAGACTTTGGTAATCGTGGATCATCTGATCCGCGATTTTTTGTTTTTACGGTAGCCAAGGAGGACACCATGGTTGATTTAACTAAGCACTTTAAGCAGGGCGTAGCGGAAGTAAAGTCTTCAGCTATTCTGAATTTTGCCAAGTATACGAGCCAGTACCCGGACATCGTCAAGTTCACGGTTGGCGAGCCGGACTTCAATACCCCGGACCATATCAAGACGGCTGCCATCAAGGGGATCGTGGACAACCACTCCCACTACGCTCTTTCAAACGGGACGCCAGGCCTCAGAAAAGCCGCGGCAGACTTCCTGGCCCGGCATTACGACATGCACTATGAGCCAAGCGAAATCATCGCTACCAACGGGGCAACGGAAGCCATCTACACGGTCATGTCTGCCATCATCAACCCAGGCGACGTGATGGTCCTGCCAACCCCGATCTTCCCTTTATATATTGCTGACGCGGCCCTGGAAAAAGCTGAAGTTGTCCAGATCGACACTTCCCAGACCGGCTTAAAATTAACGCCAGACCAGCTGCAAGCAGCCGTTGACGAATACGGCGACCGCATCCGGATTCTGGTCATGAACTACCCGACCAACCCGACTGGAGTCATGTACAGCCAGGAAGAGCTGGATGCTTTGGCGGCAGTAATCAAGGACCGGCCAACTTTTGTCCTCTGCGACGAAATCTACAGTGAACTGAACTACGAGCAAGAGCACGCCTCAATGGCCAAGTCCCTCAGAAGCCAGGCCATCGTTTTAAACGGGGTCTCCAAGTCCTGGGCCATGACCGGCTACCGGATCGGGATCATGGCGGCTCCCCAGGAAATCACTGACCAGCTGGCCAAGGTCCACCAGTTCATCACCACGACTGAACCGACCCCAATGCAGGACGCGGCCGAGGAAGCTTTTAAAAACGGGGACAGGGATGCCCGGGAAATGAAGGCCGCCTTCAAAGAGCGCCGGGACTACCTCTACCAGGCTTTGACGGAAACCGGCTTTGAAGTGATCAAACCGCAGGGGGCCTTCTATATCTGGGCCAAGATTCCAGCCGGTCTTAACCAAAAAGACACGGAATTCGTTTATGAGCTGGCTGACCAGGCCTATGTCGGGGTTTGTGCCGGTTCCTGGTTCGCCAAGGGCGGGCAGGGCTGGCTCCGCTTCTCCTACGCGACGGCACTGGACGAAATTAAAGAAGGCGTAAGCAGAATCAAGAAATTTGTCGAGGAAAATAAGAATGACGGAAAGTAAAGAAACAAACGGCCTTAAGCAAGGCACGCTGAACATTTTAAACGGGATCGGACTCGGGGTCATTGCTGCCCTGGTGCCGGCCGCGATTTTAGGCCAGCTGATGAAGGCCCTCTTGGGTGTAGCTCCGGCTTTTGCCCAGACGGTCATCAACATCACTACTTTTACCCAGAGCCTGCTGGCGGCCATGGCCGGCTTCTGCGCGGCCTACCTCTTCCAGATGAACATGATCCAGATGTGTTCGGTCGCAGCCGCGGCCATGATCGGGTCTGGCGCGGTTACTTTTAAAAACGGCTTGATCATGGTCGCCGGGACTGGTGACGTTATCAACATCGGCTTGACGATCACCCTAGCCATCCTCTTGATCAAATTGATTGGCAACAAGCTTGGTTCCTACACGACCATTCTCTTGCCAATCATCGTCTTGGTCGTTGGCGGCGGGATCGGCCTCTTGATATTGCCATACGTTAAAACCGTGACCACTTTTATCGGCATGATCGTCATGGCCTTTACCAAGCTGCAGCCGCTCTTGATGGGTGTCTTGATCGGGATGTCCTTCGCGGCTATGATCGTGTCCCCGATTTCTTCAGTTGGGATCGCGGTGGCGATCGGCTTGACCGGGGTTGCCTCCGGGGCCGCCAACCTGGGCATCACTGGGGCGGCCTACACTTTGGGGATTATGAGCTACAGCGTCAACGGGATGGGGACCACCTTGGCCCACTTCATCGGGACGCCAAAGATCCAGATGACCAATATGCTGGAGAAGCCGAAGCTTTTTGTCCCGGTCCTGCTTTCGTCTGCTTTGTCCGGTCTTCTGGCCGCCATCTTCAACCTGCAGGGGACGCCTAATTCCGCTGGCTTTGGCTTCAGCGGCCTGATCGGCCCCCTGGCGGCTTACGCCAAGATGACGCCAGGCTGGGGGAGCATCATCCTGTTGACGGTTCTCTACGTCGTTTACCCAGTTGCCTTGGGCTTCTTCATGCGCTGGCTCTTCATCGACCGCTTGAGCTTTGCCCAGGCAGAGGACTTGCGCCTGGAAGTTTAAGCCAAAAAGTAAAAAAATTGCCAAAAAACCTTGCACTTGCCCTGTTTTTTTGTTAATATAATGGAGTACTTCAACGGAGGAATAGCGAAGTGGCTAAACGCGGCGGTCTGTAAAACCGCTCTCTCTGAGTTCGGTGGTTCGAATCCACTTTCCTCCATTGATTGCGTTATAGCCAAGTGGTAAGGCAACGGTTTTTGGTACCGTCATGCGCTGGTTCGAATCCAGCTAACGCAATTGTTCTAAAGAACACCCAACCCGAAAGAAGAGCTTCTGACTGAGTCAGGAGCTCTTTTTTTGCCCAAGGTTTAGTAGCCAGCGACTTCATCTACGATGAAAACGGCAAGGACTACCGGACCAGTGCCGGCAAGCTGATGACCTACAATCTGAAGCAGGCCCAAAAGGAATGGGCTTTGGCTAAAAAGCGGCTGGGCAAGTCCAAGATCACCATCGAACTGTTAACCAGTGACATGGACGCTCCCAAGCGGGTAGGCGAATACCTGCAGAGCAACTTGATGAAGAACCTGCCGGGCTTGACCGTTAAGTTGCGGTCAATTCCGCTGAAGTCCCGTTTGGCGGACACGAGCAAGCACAACTTTGACATGGTTTACGGGACTTGGCAGCCAAGCTTCCAGGATCCGATCGACTACTTGACCATCGGTGGCCTCTTCAACCTGGAAAGTGACTACAAGAATAGCACTTTCTGAAAGGAAATCAACCAGGCAAAGAGCACTTACGCCACCCAGCCAAGCGGCAGGCCAGCTTGATCGCCGCCGAAAAGCAATTGATCCAAAAGGATGCTTTCGCAGCACCGCTCTACCAAGCCGGGTTTTCCTACCTGCTTAAGTCCAAGGTGACCAGCTTCCGCCTGTCTCCTTACGGGACTGTTGCCTACTACTGGGACATCAAGATTAAGTAAAACAAGTTTTAAACCGGTAAAAGCTGCCAGTTTCTTTCAATAAGGAAGAAATTGACGGCTTTTTTGCGAAAAAAGAAGCATTCTTCAACTATTTTGCCCGTATAGCGGGTACAATAGTATTTAGTTTTTTGACCAGGAGGCGTACATGAGCAAATACATCAAAGTTGGCAGCGGCGGCGGTGAAGTGACCTGGCACCGGGCCATGCTCGACATGAAGCCGGGGGACTATCTGCTGCTGGAGCCCGGCTATTACGTTTGGCCCCGGGGCCGGCTATTAGAAGACGTGACCATCAAGGGCCTGGGGGCCAGTCCGGAAGACACCCGGATCCGCAGCTTTTTCTCCATCGGTGAAAACAGCTCCCGGGTGGTTTTTGAAAACTTGACCCTGGAACCTTACGGGGACGTAAACACCCTGGATTTGCCGGAAGAGACCAACAGCTACCTGATCCTGCGCGGCTGTGTCTTGACCGGGACCGGCAGCAAGACGACCACGATTTCCGTCAACGGCCAGGACACGGTGGAGATGTACTCCTGCCGCCTGCTCAACGGGACCTTGTCCTTTTTTGAAAAAGCCAATTTCCGCCTGGAAATGGCGGACTGCCTGCTGGACTATGAATCAGAAAAATTCGGCACCATCTCTTTGGAAGGGACCGGGACGGCCATCATTAATAACTCTGAGATCCGGGGGACGGTCAACAGCTTTGACTCCAGCAACATCGAATTAAACATCAATAACTCCGCCATCGGCAACCTTAACTTAGGCGGCAAGAGCTGGGTTAATGTCTACGCTTGCCGTTTTCTTAACCGGGACTACAGCCTTTATGCCCGGGGCGAATGCTGGCTGAACATCCTGGAGAGTCAAATGCCCAGTCAATTGGCCATCGAAGACCACTGCCACTTGCTAATGCAGAACAGCCAGCTCTACAATTTCCAGGCCCGGGGGGAGAGCCAGAGCTTTTTGTCCAATGTGCAGATCGCGGCCGCGGCCAGCCTGGAAGGCAAAAGCTTTATGGACGGCAGCCTAGTGACTTTCTCCGGCAATGGCGACTACCCTTACTTCATCTTCCTGGTCGACCAGGCGGTATTGAAGGGGCGGAACCTGCAATTTGACCCGCAAAACTGGCCGGTTCTGGTCGACAATGATGCCCGCTTAGTGGCCAACGCCCTTTACTACCAGGGGGCGCCACTGGAAATCAAGTGCGAGCATCCAGAAAACATCTCTTTGATGGGAATCAAGTGGACTGAACGGAAGGAATAGAAAGGAGCCAGACCATGCGCTTAATCAAAGTAAGCCAAGACCCCCGGGACTTGTCCTGGGAGCAGGCTTTAGACCAGTTGGAAGACGATGACGTGCTCATGCTGGCTCCCGGCTTTTATGAAATTCCTTTTGGGCAAAAGCTGAAGAATATCGTGATCAAGGGGACGGGGACATCAGCGGATATGACGGTCCTGGTTGGCACGGTCATCCTGGATGGCCGCTATTTGACCTTGGAAAATCTGGCCGTCAAGACTACCGCAATTGCTGGAGCCCTGGTCAGAGTCTATGAAGGAGAAAATGCTCCTTACTTGACCCTGCGCGGCTGCCGGCTGGAAGCAGCAGAAGGGGAGAGGGGCACGGCCCTCTTGACTTTGGGGCCGGTCTGGCTGGAACTTTACTCTTGCCAGCTTAAAGGGGGAATCCGCCTGGTTGGCGATGAGGAGCAGCATGTCCAGATCTCTTCCAGTGAAATCGCGGCAACTCCAGTTGCTTTTACCGGCAATGGCTTTGGCCCATTAGCCATCAGCCAGTCCCAGATCAAGGGGAATTTTGTCCTGGAGGAAAGTTCGGCTTATGAAGGGCACTTTGACCAGACGGCTTTTGACCAGGTGACCAGCTTGAGCGAAGGAAATGACCTTTACTTCACTGAGTCTGCCCTGTCTTTAACTCTGAAAAATGGCCAGGCTGACCTTTTGAACTGCGACTTGCCGGGGACAACCCTTTTGGAAAAAGCTAATTCAGCCGCTTTCCAAAACTGCACTTTTAAGCAATTCAAGCAGGTCAGCGGAAGCAGCAATTTAACTAACTGCCACTTGGAGGCAGGGGAAATCATGGGCCAGGGCAAGGCTGTTTTTTGCCGGCCGCACTTTTCCTGCAGCGAAGGCACTTGGCTTAGTTTAAGGGATGCAAGCCAGGTCCGCCTGCAGAATACCCTCTTAAACGTGGCTGGCAGCCACTTGCGCCTGGCTGACAAAGCCGGGATCTTAGGCAATGTTTTGGAGAGCGACCAGGACCAGCTGCTGGTCAAGCAGACTGGCCAGGGCAAGGTAAAATTGACGGGAATAAAATGTAAACTTGTCTAAAGGCCGCCTTTTGCTATAGAATTTAATTAAGATCCAAGCTTGATGATTCTGTGGGGGGAAAGACCGATGCAAGAACCAATGTATATCAAAATTCACAATCAGCTGCGCCGGGACATTGAAAACCATGTCTACCAGGTGGGGGACCGGATTCCAGCTGAACGGCAGCTGGCTGAACAGTTCAAGGTGTCGCGGATGACCCTGCGCCAGGCCATTAAGACCCTGGAGGAAGAAGGGATTCTGGAAAGGCGGCTGGGTAGCGGGACCTACGTGGCCAGCCAGAAGGTCCAGGAGAAGATGTCCGGGATCATGTCCTTTACCGAAATCACCCGGGCCAACGGGCAGACCCCGTCCAGCAAGCTGGTTTCTTACAAGATCACCCAACCGTCCCTGTCGGAAAAAGAACGCCTGGGCCTGGAGGGCAGCGACAAGGTCCTGCGCATGGAGCGGATCCGTTATGCCGACCAGGTGCCGATCTGCCACGAAATCGTGACGGTGCCGGAAGATTTGATCGCGCCTTTTGCCAAAGATGACGTGTCAAGCCACCTCTACCAGACCTTGGAGAAGCAGGGGGGCTACCAGATCGGGGATGCAACTGAGTACATCTCAGCCGCTGTCGCCAATGAACAGGAGGCCCGCCTGCTCAACTGCCGCCGCGGGGAAGCCTTGATTACCCGCCGGCAGGTTACCAAGCTGGCCGATGGCCGGCCTTTTGAATACACGCGGGCTTCATACGTGGGCGAGCGCTTCGAATTTACTTTCAGCAAATAGCCAGCTGACTAGCTAAAGATGAAAATGACAAAGAGACAGGTTCAGTCCTGCCTCTTTTTGCTTCCTTTAAAAAAGTACAAAAGATGGAACTTGCTTTTGGCGGCAGGGGGCGAATTTGCTAAAATGGACTTGATACTATTAGCTAATGATTAACGAGGCACTATGAAAAGCATACTATTCCGCTTATATCTGGCAGTCATGAAATTTTTGGCCCGCTGGCAAAAAGAAGACCCCAACACATACGTGATCTTGAATGGGTCCGGCCGGTCGGGGTCCAATGGCTACCTCTTTTATAAATACCTGTGCCGCGAGCACCCGGAAGTCACGGCCTACTTGATCGAGCCCTGGCCTTCTTCCCACCTGCCCTGGTCAGACTGGCAAAAAATCGGCCGGGCCAAGTACGTCTTGACCACCCACCAGCCCTTCAAGGTCCGGAAAAGCCAGGTCAACCTGGCCCTCTGGCACGGGATTCCCCTAAAGCGGATGGGGACCATGGCCAACAATACCCAGCGCCGAGATAACCAGAGAAACGAAAAGCTCTGGCACAAGACGGCCGACCTGGTCACCTCCAGTTCGGAACTCTATGAAAGCTTGATGAGCGCCTGCATGGGAATTGAAGGTCCCCGCTATGTCCAGCTGGGTTTCCCCAGAATTGATTCCTTGCTCAAGTCTCCTTATAAAAAGGCCCAGCTCCTGGCTGACTTTTTCTCCTGCCAGGACCCGGAAGCCCAAGTAGGGATCTATGTGCCAACCTTCCGCTATGAATTGGAAGAGCCGGAAGTGATGGAGCGGATTAAAGAAGGGAACTTTTTTGCCTTCAGCGACTTTGACCTGGCCGCTTTAGACCAGGCTCTGGCTGCTAGAAAGCAGTACCTCCTGGTCAAGCTTCACCCATGGGAAATGAAGCTCTTCAGCGACTTCCACTTGGAGGCCAAGCATGTGGCCTTTTTGAACAATTCCGACCTTTTGGCGAAAAAGCTGGACCTCTACGAAATCCTGGGAGCCACCGACTTCCTCATGACCGACTTCTCCTCGATCTACTTTGACTACCTCCACTTGGACAAGCCACTGATTTTCATTACCAACTACCTGGCCCAGTATGAAAAGACCCGGGGCTTTTTGCTGGGGCCTTATGAAAAAATCGTCCCTGGTCCCTGTGTGGCCAGCCAGGCTGACCTGGTCAAGCAGCTGGGTGAAAAAGACGGGTATGGCCTTGAGCGGAAAAAGTGGCTGGAACTGAGCGACCAGGCCGACCACGGCCAGGCCTGCCAGACAATTTTTGATTACTTAAGCGGGGTCTGATCCTTGAAAAGAACTTTTCTGAACATCTTCTATAACGCGGTCTACCAGGTCTTTCTGGTCCTGGTGCCCTTGATCACGGTTCCTTACCTGTCCAGAGTCCTGGGCCCGACGACCTACGGGATCTATTCCAGCGTCAACAACACGGTCCAGTTTCTGATGATCTTCTGCGTCCTGTCTTTATCCAATATCGGGGTCAGAAGCATCTCTAAAGCCCGGGCCAAAAGCAAGAGCGGGGAACTGACCGAGGCCTTCTGGGGCCTGTGGTACTTCCAGTTTATCGGCGGCTTGGTAACCATCGCTTTGACTGTCTTGACCTGCCTGGTCCTCAAGGTCCGTTACTGGAACTACTTCCTGCTGATGCTGCCATACTTGATTGCCGCCCAGTTTGATATCTCCTGGTTCTTCCAGGGTCTGGCTGATTTTGGCCGGGTGGTCTTAAGAAACACTATCGTCAAGATCGTCAGCGTGGTCTTTATCTTGCTTTTGATCAAAAGTCCGGCTGACCTGTGGAAGTATTTCCTGATCATGTCCGTGTCTACCATGCTGGGTTCCTTTGTCTTCTGGTCCAGCATCGGCAAATATGTCGGCCGGCCAGTCAAGCATTTCTACCATTTCGCGGAAACCCGCCGGGCCATCATGACCTTGATGATTCCCCAGATCGCGACCCAGATTTACACTTCCTTGGACAAGCCCCTTTTGGGCCTCTTCCAAAATACGGCCCAGGTCTCTTACTATGACAACTCCCAGCGGATTTCCAACATGATCCTGGGGGTTATCACCAGTATTTCCCTGGTAATCATGCCGCAGATGGCGGTCCAGGGGAAGGAAACCCAGAAGAAGGTCTTGAAGAAGTCCCTGGAAGTCACGACTATGCTGGGAACTATGTTTGCCATGGTGGTCATGGCCAATACCAAGGAATTCGTGCCCTTTTTCTTCGGGAAAAAATATATCCCGATGACCCCCTTGATGTTCTTCTTTACCTTGACCATCATCTTGATTCCCATGGGCGGGGTCTTTGCCAACCAGTTTGCCCTAGCCAACAAGCGGGACAAGGACTATGCCATTCCAGTTACGATTGGGGCGGTCCTGGAGCTGGTCTTCAGCTACTTTTTAGACCGGCCTTTCGGGGCAGCAGGGGCCATGGTGGCGATTCTCTTGACCGAAGTCGTCGTTTTCTTTCTGCGCTGCTGGATCGTGCGGGACGGTTACGACTTCAAGGAAACTTTCAGCGACGTGCCCAAGTGCTTTTTGGCTATGGGGATCAGCCTGGCGGCAGGGATGCTGTGGCCTTGGCAGATTCCAAGTGCTTTTATCAACATGATGGTCAAGTCCCTGGTTATTATGGCCTTGTACCTGGCCATCCTCTGGCTCTTGAAGTTTGACTTGAACGAAGACTTGGTCACGATCGTCAAAAAGCGCTTAAAAAAATAGCTGTTAATAAGGAAGAAATCAGCAAAAATTAAACAAAGAAAGCGTGTAAGCATGGTAAAAATCAACATTTTGGGCGTTGGCTTCGACAAGTACAGCCTGGCGGAATTTGAAGCCCGCTTTTTGGACCGCTTGCGGAAAAAAGAATCCACCCTGGTGGTCACGGCCAACCCGGAAATTGTCATGGCCGCTAAGGAAGACCCGGAATACCGGGAAATCATCAACAATGTGGCTGACTACGTGACGGCTGACGGGATCGGCATCATCAAGGGGGCCAAGATGCTGGGGCTGAAGCTGCCGGAGAGAGTAACCGGCTACGACCTCTTCTGCTGGTACCTGCAAATCGCCAATGAAGACCACTTGCGGGTCTACCTGATTGGGGCCAAGCCAGCCGTGATCGCTGCCGTTAAGGAAAAAATCGCCAAGGACTACCCGGGCATCGACTTAGTCGGCGCTGAGGACGGCTACTCCAAAGAAGCCCTGCCGGAAATTGCCAGCCGGATCGCCCAAAGCAGGCCCGACCTGGTCTTCGCGGCCCTGGGCTTTCCCAAGCAGGAGAAGCTCCTGGCCATCTTGCGCAAGCAAAACTTGCCAGCCAGCATGATGGGGGTGGGCGGCAGCTTTGACGTCTTCGCTGGCGCGGTCAAGCGGGCACCGAAGCTCTTCCAGGATGCCCACCTGGAATGGTTCTACCGGCTTTTGAAGGAACCAAGCCGGATTGGCCGGATGATGGTTTTGCCCAAATTCGTCGTGGAAGTTAAAAAGAGCAAGAAGCAGGACCAGCAATAATGAAAGTACTGCACATCAACGCCGGCCTGGAAAGCGGGGGCGGGCTGACTCATATCGTGAACCTGCTCTCCCAGGCCAAAAAGGCGGGGCAGGACTTTGACCTCTTGACCTTCGCGGAAGGACCGGTTGCCCAGGCTGCCCGGGAAAAGGGAATCAAGACTATCGTTTTGGGCGGCTCCAGCCGTTACGACCTGGCCCTGCTCAAGCGGCTGAAAAAGACAATCAAGGATGGACGTTACGATCTGGTCCACAGCCATGGAGCTCGGGCCAACCTTTTTGTCAGCTTGATCAAGTCATCCTTGCCTTGTCCCTGGTTGATCACGGTCCACTCGGATCCTGCGATCGACTTTGAAGGGCGGGGAATCGCGGGGAAGATTTTTACCAAGCTGAACCTGCGGGCGATCAAGCAGGCCGATGGTGTCTTCGCCATCACTCCCCGTTTTGAAAAAATCCTGCTGAATTATGGAGTAAAGCCCAGCCGGATTCACGTTATCTACAACGGGATCGACTTTAGGGACAATAGAAATATAGCAGGCAAGGAAGACCATGCCGGCTTCAACATCATCAATGTTGGCCGCTTGGAAAAGGTCAAGGGGCAAGATCTTTTGCTCAAGGCATTTAAAGCAGCCAATTTGCCGCAAGCTCACCTCTATATCGCCGGCAGCGGCAGCCAGGAAGCAGATTTGAAAAAATTACGGCAGGACTTGGCCTTAACAGACCAAGTAACTTTCACCGGCTTTTTGACCCAAGAAGAATTAAGGCAGCTCTACCGGAAGATGGACCTGGCCGTCTTGTCTTCTTACTCAGAAAGCTTCCCCCTAGTCTTGCTGGAAGCAGCTGACAACCTGCTCCCGCTTTTGGCAACTGACGTGGGCGGGGCCAGGGAACTGATTCCAGAAGGAAAAGGTTGGGGCGTGCCGGTCAACGAGGAAAAAGCCATGGCTGACCAGTTAAGAGCAATCGCCGCTTTGCCAAAAGAAGAATTAGCAGCAATTGCCCAAACGGAAAAAGCCTATGCCCGCCAGCACTTTTCCCTGGACCGGCAACTGGCTGACGTTCTGGCCGGCTACCAGGCCTGTCTGCAAGGAGAAAAAGCATGATTCCCAAAATTATCCACTATGTCTGGGTGGGCGGCAATCCCAAGTCCAAGACCATCCAGACCTGTCTGGCCTCTTGGCAAAAGCGCCTGCCGGACTACGAAATCATCGAATGGAATGAAGACAAGCTGGACCTGAATGCCAACAAATATGTCAAGCAGGCCTACCAGGCCAAGAAGTGGGCCTTCGTTTCCGACTATGTCCGGGCCAAGGCCCTCTATGAAATGGGCGGGATCTACCTGGACACCGATGTCATGGTCTTAAAAGATTTTGCCGGCTTGCTAAATGACCGGGCCTTTATCGGCTTTGAAAACAATGACTACTTGTCAGCGGCCATCATCGCGGCAGAGAAGGGGCATCCTTTTATGGCTGACATCCTGCACTACTATGACGACCTGGATTTTGCCTTTGACCAAAAGGACCAGCTGGCCGGGGTCAACTCCCTATCCGTCACGGAAATTCTCAAAGAAAAGTATGGCCTTAAGACTGGCAACCAAGAGCAAGTGTTAAAGGAGGGAATCCATGTTTATCCAGACGGGATCCTCTGCAACCCTTCCCCTCAGTCCCGGTCCATTCACCTTTTTACTGGGACCTGGCTGGAAGGAAAAAATTCCTGGAAGCACGACCTGGTCACCTTTCTGAAATTACATATCCGCAGTCAAAAAAATGCGAAAATTTACTACCAGCTCTTCAGACGCTAATTTTTTTAAGAATCTCGTGAAAATACATTTCTGAAAACAGGGACTGCATTTTTTGAGTATAATTAAAGGTAGAAAACACAAAGTAGAAGATTGCGAGGCAGCAAATGAGAGAGTTGCAAAAGAAAATTGTCGAATATGAGCACGTTTTGCCGGAAATCGATCCCCAGGAAGAAATCCGCAAGACGGTTGACTTCTTGAAGGACTACCTAAAGGCTAACCCCTTCTTGAAGTCATATGTTTTGGGGATTTCCGGGGGCCAGGACTCAACCTTGACCGGGAAGCTGACTCAGATGGCAATTTCCGAAATGCGGGAAGAAACTGGCGATGACAGCTATAAGTTCATCGCCGTCCGTATGCCATACGGCGTCCAGGCCGATGCCGCTGATGCCGCTGACGCGGTAGCCTTCATCCAGCCGGACGTGGACTTGATTGAAAACATCAAGCCAGCCACTGACGCCATGGTGGCGACCTTGAAGGAAACGGGCGTGGAAATGACCGACTTTAACAAGGGCAACATCAAGGCCCGGCAAAGAATGGTCATGCAGTATGCCATTGCCGGGGCCAATCAGGGCGCGGTTGTGGGGACTGACCACGCGGCCGAAAACTTCTCTGGCTTCTACACCAAGTACGGCGATGGCGCGGCTGACTTAACCCCGCTCTTCCGTTTGGACAAGCGGCAGGGCAAGCAGCTCCTGGCTGCTTTGGGCTGCCCGAAACACCTTTATTTGAAGGCCCCGACGGCCGACCTGGAAGAAGAAAAGCCATCCTTGCCAGATGAAGTTGCCTTGGGCGTGACCTACGAGGAAATCGATGACTACCTGGAAGGCCGGGAAGTCAGCGAGAAGGCAGCGGAAAGAATCGAAGAATTGTGGACCAAGAGCGAGCACAAACGCCACCTGCCGGTTACAATTTTTGATGATTATTACAAAAAATAGGGGCAGATTTGGTAAAAAACTTGTTTCAAGCGCCAATTTTTGCTATATTAATCATGTCATAAGGGAGTAACGGCAAGCATAGCTTGCGACAAGCCCAACAGCCGGGAGCCGTGTTGGTTTCCTGGGCTTGTCTTAATTAGTGAGACTTATGTGCTTTTGTTAAGGGGCACGTAAGTCTCTTTTCTTTTTAAAGGAGGAAAATACTGTGGCTAAGAAGTATTACAGCCAGGACATCCCGGGCACTTTAGCCGAGTTTGGCTCGGATGCCAACCACGGGATCAGTTCGGCTGAAGCCAAGAAGCGCCTGGACCAATACGGCCCGAACGCTTTGGCCGGCAAGAAGAAACGTTCAATGTTTGCCCGCTTCATGGACCAGTTCAAGGACTTGATGATCATCGTCCTGCTGGTTGCCGCTGTTTTGTCCGGGGTAGTTGCCCAGGAATGGACAGACGCGGGGATTATTTTAGTAGTTGTGCTTTTGAACGCGGTCCTGGGCGTGATCCAGGAAGCCCGGTCAGAAGCAGCAATTGAAGCCTTGAAGGACATGTCCACGCCAAGCGCCAGGGTGCGCCGGGATGGAGCGGTAATTGAAGTTCCGTCAACGGATATCGTGCCAGGTGACGTGGTCTTGCTGGAAGCCGGTGACGTAGTCCCGGCCGACCTGCGTCTTTTGGTAGCAGAAAGCTTGAAGATTGAAGAAGCTGCCTTGACCGGGGAATCAGTTCCGGTGGAAAAGAGTAATGAAACCCTGCAAGGGGAGGACATTGCCCTGGGTGACCGGATCAACATGGCTTACTCCAGCACCAACGTGACCTACGGGCGCGGGGAAGGTGTGGTTGTCGCTACGGGGATGAACACGGAAGTCGGCAACATCGCCAAGATGCTGAACGAAGCTGATGAAACTGATACTCCTCTTAAGCAGAACTTGAACCAGCTGGGCAAGACCCTGACTTACATGATCCTGGCCATCTGTGTGGTCGTCTTCATTATCGGGGTTATCCGGAACCCGCAGCATGAACCGATGAATGCCCTGCTGATCGACATGTTCTTGACGGCGGTTTCCCTGGCGGTTGCCGCTATTCCGGAAGGGCTGCCAGCGATCGTGACGATCATTTTGGCCCTGGGTACCCAGACTATGGCTGACCACAAGGCCATTGTCAGAAAGCTGCCAGCCGTTGAAACCTTGGGGGCAACGGATATCATTGCTTCTGACAAGACTGGTACTTTGACCCAGAACCGGATGACGGTGGAAAAGGTCTACTACGACGGGATCCTGCATAATGCCAGCGATGACATCGACTTGAACAACAAGGCCTTGATTACCATGCTTTTGGCCAACGACACCAAGATTCAAGGCGGCGGGGAGCTCTTGGGTGACCCGACTGAAACTGCCCTTGTGCAATTCGGTTTCCACAAGGATCTGCCAGTTAACGACTTTTTGGCAGAACACCCACGGGTACAGGAAGTACCATTTGACTCTGACCGGAAGTTGATGAGTACGGTCAACAGGTATGACGGCCAGTTTATGGTTGCCGTCAAGGGCGCGCCGGACATGCTTTTGGAAAGAGTCAAGTATGTCAACATCAACGGCGAGCTGAGCGAAATCAGCGCTGAACAAAAGAAAGCCATTTTGGCAAGCAACAATGAAATGGCCAAGCAAGCCCTCAGGGTCTTGGCGATGGCTTACAAGGTTGTTGCTGAGCCATACGCTGACCCGACGACTGACAATGTTGAACAAGATCTGATCTTTGCCGGTTTGGTCGGCATGATCGACCCAGAGCGGCCGGAAGCCAAGGACGCGATCGCGGAAGCTCACCGGGCCGGGATCAGAACGATCATGATTACTGGTGACCACCAAGTTACGGCGCAGGCGATTGCCGAACGGCTGGGCCTGGTTGAAAAGGGCCGCGGCGATGCCGTGATTACCGGGGCGCAATTGGATAAGCTGAGCGACGACTACTTCACCAAGCATGTCGGTGACTACAGCGTTTATGCCCGGGTTTCACCAGAACACAAGGTTAGAATCGTGAAGGCCTGGCAGGCAAATGGCAAGATCGTGGCCATGACCGGTGACGGGGTCAACGACGCGCCGAGTCTGAAGCAGGCCGACATCGGGGTCGGCATGGGGATTACCGGTACGGAAGTCTCCAAGGGCGCGGCCGACATGGTTCTGGCTGACGACAACTTCGCGACGATCGTGGAAGCGGTCAAGCAAGGGCGAAAGGTCTTTGCCAACATTCAGAAGGCGATTCTGTACTTGATGAGCTGCAACGTCGGCGAAGTATTGACGGTCTTCTTGATGACTTTGCTGGGCTGGGATGTTTTGAAGCCAGTGCAGCTTTTGTGGATCAACCTGGTAACTGACACCCTGCCGGCGATTGCCTTGGGTGTTGAACCGATTGAAAAGTGGATCATGAACAAGAAGCCGCGGGGGAAGAATTCCAACTTCTTCTCAGGTGGCGTGGCCAGCTCAATTGTTTACCAGGGGATCCTGGAAGGTGCTTTGGTCTTGACCGCTTATGGTTTGGGTCTGCACGTTTTACCGCGGGGGACTAACCCGCATGAAGACGCGTTGACCATGGCCTTCTTGACTTTGGGTCTGATCCAGCTTTTCCACGCGGTCAACTCTAAGTACGTGAAGCAGTCTATCTTCCAAAAGAGAACTTTTGCCAACAAGTGGTTCAATGGCGCGATTGTTCTGTCAGCCTTGATTATGGCGGCAGTTGAATTGCCATTCTTGACCAGAGTCTTCTCAGTTTCAGAATTGCACCTGGACCAATGGCTGATTGTTCTGGGGATGGGCGTTTTGATTATCGTGATCGTCGAAATCGTCAAGTTCTTTGAGAGAAAAGCTGATCAACGGAATAATTAAAGATAATAATTCACAAAAATGCCTGGACGTAAGTCCGGGCATTTTTTGCTGCGTGAAAAGAGGTACGGTGAAATCGTAAGGACTTGAGTCGGCTGTAATTCCCCTCATATTATGTTAATAATAACGAGAGAGTTGGAGTAAATAATAATATAAAACGCTTTTCTTGGAAAAAGTATGTTGACTAGGACGAGAAAAATATATGTGGGAGCAGTAGTGATCTACTTGCTAGTTATCATAGGGCAAATGGCGTATGCAATCTATGACAACGCTTTAATTTCTAAAAACAATGCATTTGCTTTTGAGTATTTATTTAATACAGTGCAACCTTTCGGCGTAGACGAAACTATGATTGGTGCTATTGCAATATTTTTATTTGTTCCAATCGTGGGTGCTGCATTGGCAATCTATATCAAAAATAATCACGAACTATACAATGTTGTTAGTAGAACAGGATGGAATAACTTTCTAACTAAAAGCACAGCTTATGCGTTTTTGGGGGCAGTGGGGCTATACTGGCCTAGGATACTACCAATATCATAAACCCCATAGAGAATGCCATGGTGCAAGATCCCTCCCCGGCAATCTACTAGCTAAATTATGCAACGACCGCGATTTTCTATATTACGCTGACTGCGGTTCTGTTAAGAATTTGGTACATGAAGAATATAGAGAAAGGCTAAATTATGCTAAAAACGCGTTATCAGCGCCTAATTGCCATAACCCTCTTTTTGGATTTTGCGGTCAGCCTGAGATGCGGCCTGCAGTTTGCGATGATTGGCGGAGAAGGCGAGATGCCAATGTATTATCTGAATGCCAACTTGATCAGCTTATATATCCAGCCGGGTCTAACCGTCATGGCAGCCGTCCAAATCCTCTCTTTCCGCTCAGTCCGGCCGCTTCTGGCTCCCCGCGGCAAAATGGATTACTTTGACCAGCGCCTGGCCTAGCTTCTTTTCTCCACCGTGCCCTATCTCTTTGGCAAGAATCCTGCTTCCGCTATGGCCCGGCCTGGAAGGGCACCCTCTTGCTCTTGATGCATTACCTGCTGTTCATTGCCTGTTTCATGCTGATCTTGCTCTGCATCAAGATCAAATATCCTTTCTTTATCATTGTTTTTGCCAGCACAGTACCTATTCTTTACCATTACTGGCTGGAGAAGACCTGGCTTTTACCGAAATACGCTAATATTTATGACCCTCTCTGGCGGGCCATCCACCACATGTATATACTCTAAGTCGAGGAGGAGTTTGTATGTTGAAAGTGTCACATGTTAAGAAGTGCTTTAAAAAACTGGCCGTATTAAAGGACATCTCTTTAGAAAACCAAGCGGGTGAACTGGTCCACATCTCCGGTGTCAACGGCTGCGGCAAGTACACCCTGTTCAAAATCATCGTCGGCCTCTTAAAAGCTGACAGCGGGGAGATCCACACTGACAAGGATGACTACCTTGGCGCCCTGATCGAAAACCCTGGCTTTATCGAATATGAAACTGCCTGGGACAACTTGATCTTTTTAGGTCACTTCAACTACCGCTTCCAGCCCGAAAAGACCCGGGACCTGCTCAAGGCCTTTGACCTGGATCCGGATAACCCGCAATCCGTCGGCAACTACTCAGTCGGGATGCGGCAGAAGCTCGGGATCACCCAGGCCGTGATGGAAGAGCAGAATATTATCCTGCTGGATGAGCCAACCCGGGGGATCGATAAGGAAGGGGTTGACCAGTTCGTTAACCTTATGAAAGACTTGCGCAGTGAAAACAAGACCGTCATTGTGGCCAGCCACGACGAAATTCCCGGCCTGGTCTACGACCGCCGTTTAAGAATGAAAGACGGGATCTTGCTGGCCGAAGAGTAAAAGTTGGCATTTCCCGCCCTGACTAGCTACAATAATACCATGATTAGTGAACAAGAACTGCAGCAGCTGGTCGAAAGCATCTCCCTTGAATCCTTCAGCCGTCCCTTTCTCCACCAAGCGAAAATCAACCGCCGCCTGAAGACTACTGGCGGCCGCTACCAATTATCCGACCATCACCTGGAATTTAACCCGCTCTTTCTTAAGGAAGAAAATCTCCATTATCTGCCGGGCATCATCAAACATGAACTGGTCCACTACCACCTCCACCTGGCCGGCTTGGGCTACCAGCATAAAGACCGGGACTTCAAGCTTTTACTGCAAAAGGTAGGCGGCAGCCGCTATGCGCCAAGACTAGAAGGGAACAAAAGAAGCCGCTGGCACTACCGCTGCCGGCAATGCGGGCAGGACTACTGGCGCCAGCGGCAGGTCAACGTCAAGAAGTATTTCTGCGGCCGCTGCCGGGGAAAATTGAAAAAAATTGCCGGCCCTCTTGCCAAATGAGGGCAGCTTTGCTAAAATATTAATGTATTTGCGGGCGTGGCGGAATTGGCAGACGCGCAAGACTAAGGATCTTGTGACCGCTTTTGGTCGTGGAAGTTCAAGTCTTCTCGTCCGCACTAAGATAAGGAGTCGTTGTAAAACGGCTCCTTTTTTGTTGATTCTTTAAACTTGCTTTTCCTCCAATCTGTTATAATTGATAGAACACAATGCAAGATGAATAGAAGGTGTGCTAAATGTACGATTCTGAAGCCAGACAGAAGACCTTGAACCTGACGGTCAGCGCGGTCTTTGTGGCCATTCTGCTGCTGGAAGCTTTTATTCCTAATGTGGGTTACATCACGATTTTGCCGGGCCTGCCGGCCATCACCACGATTCCGCTGACAGTCGCGGTCTTTGCCTCTTTAAGAGGGCCGAAAGCCGGCGCGGCCTTTGGCTTGGTCTGGGGCCTGACTAGTTTGCTTAGGGCCTATGTTGCTCCAAATGGCCTGGTTACCATTCTCCTTTTCCAGAACCCCTTGATTGCCTTATTGCCCCGGCTTGCTGCTGGCTGGGCAGCGGGCCTGGCTGGGCAATTGGCTGATAAATGGGAGAAGGAGAGCAGAAAGCCTCTGGCTTACGCCTTAAGCGGCCTTTTAGCTTCAGCGGTCAACACGCTCATTGTGATCCTCTTGTCTGACCTGGTCTACTTCATTCATCCCCAGAAGCTGGCTTTAGCCCTGGGGGCCAAGAGCGGGCAGTCTTTGCTGGTCATCCTCTTTACGGCCCTGGCCGTCAACGGCATTTTGGAAGCAGTCTTCAGCGGCTTGATCACGCCGCTCATTACCGCGCCCCTCAAGAAGCGCCTTAAGCGGCGCTAGAAAGCAGATAAGTATGGCTGGACACAGAAAAACACGCAAGGGAAAGCAGACGACCACCATCCTCGTGGTCCGCGTTTTTGCCATCATCCTCTTGTGCCTGGGCTTCTTCGTGGCCTTCCGCTACTACCGCCGCCAGGCCTTGCAGCAAGAACAGATCCGCCAGGCTGAACTGGCCAAGCAGGAAGCAGCCGCTAAGCTTTTGCGGCAAAAGAAGGCCTTTATCCAAAAGGTGGGGCCGATCTCGCAAAATGTTGACAAGGGGACCGGTCTTTTGCCAAGCATCACTATCGCCCAGGCCTGCCTGGAAAGCAACTACGGGCAAAGCGCCTTGTCCCAGAAGTACAACAATCTCTTCGGGGTTAAGGGGACCAACCCTAACACTTCAGCCGTGATGACGACCAAGGAGTACAGCAACGGCAAGTGGGTGACCGTCAAGGCCCGCTTCCAAATTTATGATTCTTATGAAGCCTCGATCCGGGCCCATGTCCGCCTCTTCCAGCAGGGAACCAGCTGGAACAAGGACCAGTACAAGGACGTTTTGGCGGCCAAGGACTATAAGAGCCAGGCCAAGGCCCTGGTCACTGACGGCTATGCCACCGACCCGGACTACTCAACCAAACTCATCAATTTAATTGAACAATACAACCTGAATAAGTACGATAATTAAGCAGGTTTGACAGGGCTGCCAGAGCTTTTTGGCAGTTTTTTTGCTATAATGGATAAGCTAAGTTTTTTGATTTTTGAAGGGGTAAAGCATGTCTGAAGCAACGATTTTACAAGGTTTGAATCCGCAACAGGTCCAGGCAGTCAAGACGACTGAAGGGCCCCTTTTGGTAATCGCCGGGGCCGGCAGTGGGAAGACCTCAGTTTTGACCAGGCGGATTGCCTACTTGGTGGAAGAAAAGCGGGTTGCTCCCTGGAACATCCTGGCCATCACCTTCACCAACAAGGCCGCTAAAGAAATGAAGGAAAGAGAAGTCAAGCTCCTGGGCGACCAGGCTGAAAGCATCTGGATGTCCACCTTCCACGCCCTCTGCGTCCGCATCCTCCGCCGGGACGGCCACTTGATCGGCTATGACCGGGACTTCTCCATCGCTGACCCTTCAGAGCAGGTGACCCTGGTCAAGCGCATCCTCCGCCAGCTGGACCTGGATCCCAAGCAATACCTGCCCCGCAACATCTTGAGCCAGATCTCCAATGCCAAGAACTGCCTGCAGACCCCGAAGCAGTATGAGGCCAGCGCGGTCGGTCCTTTTGAAAAAGTTGTCGCCGACGTCTACAAGAAATACCAGGCCAGCCTGGAAAGAGACCAGATCCTGGACTTTGACGACTTGATCATGCAGACGCTGACCCTTTTTAAGGCCAGTCCTGATACCCTGGCTTACTACCAGCAGAAGTTCCGCTATCTGCTGGTTGACGAATACCAGGACACCAACGAGGCCCAGTACGAGCTCTGCCGCTTGCTGGCTGACGGCTACCACAATATCTGCGTTGTCGGGGATGCTGACCAGTCAATCTACGGCTGGCGGGGAGCCAACATGGAAAACATCCTCAACTTTGAGCATGACTACAAGAATGCCCAAACTGTCAAACTGGAGCAGAACTACCGGTCAACCGGCCACATCTTGAAGGCGGCCAACTCGGTCATTGACCACAATGAAAACCGGAAGGCCAAGAAGCTGTGGACTGACAAGGGCGACGGGGAAAAGGTCCACTACTACCAGGCCCAGAGCGACCGGGACGAAACCCGCTTCGTCCTTGCCAAGATCAAGGAAGAAGTTGACAAAAAGAAGCGCCGCTACCAGGACTTTGCCGTCCTTTACCGGACCAATGCCCAGTCCCGGGGGATGGAAGAAACTTTGGTTGAAGCCAATGTCCCTTACCAGATCGTCGGCGGGCACAAGTTCTACGACCGTAAGGAAATCAAGGACATCATGGCCTACCTCAAGCTGGTGGCCAACCCCAGCGATTCCATGAGCTTCAACCGGATCATCAACGTTCCAAAGCGAGGGATCGGCCAGGCTACGACTACTAAATTGGCTGCCTTCGCCGACGAAATGGGGGGCGGGATCTACGAAGCCATGCGCAATGTCGAATTGGCTCCGATTTCTTCCGCCGCTGCCAAAAAGCTCCTGGCCTTCAGCGACCAGCTGACTGCCGCCATTGCTTACGCCCAAGACCACACGGTCAGTGAACTGACCGACAAGATCCTGGAAGACTTCGGCTACATCAAAGCCTTGAAGGAGGAAGAAGCCCAAGGATCCCTGGAAGCTGCTGCCCGCCTGGAAAACCTGCAGGAATTCGCCACGGTTACCAAGCGCTTTGACGACAATTACAATGAAGAAGAAAACCCGGACAGCAGCCGCTTGAGTGACTTTTTAGCGGAAGTATCCCTCTTAAGCGACCAGGATGACCTGGAAGAAAGCGATGACCGGGTAACTTTGATGACCCTGCACGCGGCTAAGGGTTTGGAATTCCCAGTCGTCTTCTTGATCGGGATGGAAGAAAACATCTTCCCGCTTTCCCGGGCCATCAAGGACGAAGACCCGAACCAGCTGGAAGAAGAACGTCGCCTGGCTTACGTGGGCATTACCCGGGCCAGAGAAGAGCTTTACCTGACTTCGGCTTACACCCGGATGATGTACGGCAGCAAGCAGTATAATTCCCAGTCCCGCTTTATCGGTGAGATCAAGGATGAGGACCTGGACATCGTGGCTTCAACTGCCCCGAAGTCCAGCACTTCCTTCATAGACCTGGACCGGCTGCCTTTTGCTAAAAAGTCCCAAGCCAAAGCTGCTCAGCCGGCTAAGATCCACCGGGCCAGCAAGGCAGCCGGGGCCGTCGGCGCTGAAAAGAAGGGCTGGCACCCTGGCGACCAGGTAGAGCACAAGAGCTGGGGCAAGGGCGTGGTCATCAAGGTCACCGGCTCTGGCGAAGACATGGAACTGGACATTGCTTTTGCAAGCAAGGGCAACAAGCGCCTGCTGGCGGCTTTTGCCCCGATCAAGAAAATTTAGGTGAAGAAGCATGGCTGAAAGTTTAGAAGAAGCAAAACAGGAAGTCCGCCAATTGCGGGCCCAGCTGGACCAGTGGGCCAAGGCCTACTATGAGCAGGACGCTCCGGTGGTTGAAGACCACGTTTATGATGAAAAATACGCCCGCCTGCTGGAACTGGAAGCTGCCTATCCGGAATTAAAGTCAGCTGACTCCATCACCCAGAGGGTCGGCGGCGAGGTCAACAGCGACCTGCCCAAGGTTGAGCACCCAGTGCCTATGCTGTCGATGGGGGACGTTTTTTCCAAAGAAGAGCTGGCGGAATTTGACCAGCGGGTGCAAAAAGCCATCGGCCACCCTGTGGCCTACAATGTCGAATTGAAAATCGACGGCCTGTCCCTGTCTTTGGAATATGAAGAAGGGTGCTTAAAGCGAGCCTCAACCCGGGGCAATGGCCAGGTTGGCGAAGATGTGACCAAGAATGTCAAGTATATCAAGGACGTGCCTCAGAAATTGCCGAAAGCCATTACCACCGAAGTGCGGGGGGAATGCTACATGAGCAAGGAGGCTTTCGCCAAATTGAACCAGGAGCGGGACGAGGCCGGGGAGAGCATCTTTGCCAATCCGAGAAACGCCGCGGCTGGTTCTCTGCGCCAGCTGGATCCGAAGGTGACAAAAAAGCGGCAGCTGAGCACCTTTATCTATACCTGGATCAACCCACCAGCCGGTATCGACTCCCAGCACCAGGCGATCTGTGAGATGGCCAAGCTAGGCTTTCACACCAATGAAAACGGCCGCCGGCTGGAAAATCTGGCAGACGTCTACGACTATATCGACGAATTTACCAAAAAGCGCGACAGCCTGCCTTACGTGATCGACGGCATTGTCTTGAAAGTCGATGACCTGGCCCTGCAGGCGGACTTGGGCAACACCGTCAAGGTGCCCCGCTGGGAAATTGCCTACAAGTTCCCGCCGGAAGAAGAAGAAACAGTAGTCCGGGAGATTGAATGGACCGTGGGAAGAACCGGGGTCGTGACCCCGACTGCCGTGATGGATCCGGTGCGGTTAGCCGGGTCCACGGTAGCCCGGGCCTCTTTGCACAATCCGGACCTTTTGGCCAAACTGGACGTTCGCTTGGGCGACACGGTCAAGCTGCACAAGGCCGGCGACATCATTCCGGAAATTTCCGAAGTTGTCTTAAGCAAGCGGCCAGAAGACTCTGTTCCTTATGAAGTGCCAACTAAGTGTCCATCCTGCGGGGAAGACCTGGTTCACCTGGATGAAGAAGTAGCCCTGCGCTGCATTAACCCGTCCTGTCCGGCCCAAGTTGAAGAAGGGATTACCCACTTCGCTTCCCGGCAGGCCATGAACATCGCCGGCCTTGGCCCAAAGATCGTCAAGCAGCTGATCGCCAAGGACCTGGTGCACAATGTAGCTGACCTTTACTATCTGACAGCCGACGACTTGAGCCAACTGGACCACTTTAAGGAGAAGTCGATCAACAATCTCCTGGTGGCCATTGACCAAAGCCGGAAGAATTCCGTTGAGCTGGTCCTCTTTGGCCTGGGGATCGACAATGTCGGCGGGAAAGCCGCCCAATTGATTGCTCGGAAATTTAAAAATATGTCTAAAATCGCTTCAGCAAGCGTGCAAGAACTGACGGCAATCGATACAATAGGAATGACGATTGCTGAGTCTTTGACGGCTTACTTCCAGCAGGAAGAAGCCAAGAAGCTGCTGGCCCGGCTGGAAGAGGCCGGGGTCAACATGGACTACTTAGGCGAAGACGGGGAAGCCGCAGACAACTTCTTCAAGGGCAAGACGGTGGTCTTGACCGGGAAACTGGCCCACTATAGCCGGGCGGAGTTTACCAAGAAGCTGCAGGCCTTGGGAGCCAAGGTGACCGGGTCAGTCTCCAAGAAGACCAACTGCCTGGTTTACGGGGAAGATGCCGGCAGCAAACTGGCCAAGGCAGAAGCCCTGGATATTCCGCGCTTAACGGAGGCAGAAGCAATCTCTAAGATCGAAGAGAAGGACACGGAAAAGTGAAGAGATTTTTACAGGCAATAACTTTGGCAAGCTGCAGCCTCCTGCTGGCGGCTTGCGGCAACTTGAAGAATTCCGACCTGGCCAGCAACTCAACGACTACGACCAGCGAGGCGAAGAAGTACGAGACGACTTCCAGCACTGACGGCGGCTACTCCGTCCTTTTGAAAAAGGGGGTCTACAAGACCAGCCCGATCTCCGGCCTGGAAGCCACCAACTATGACAACAGCGTGGACGAGTCGGCCATGGAACGGGGCTTGATCCGGGTCTCCAAGAAGGTCTTCTCAACCAAGGACTATGTCATCCAGGAAGGCCAGCAGCTCGACGAAGCGACGGTCACCAACTGGCTGGGCCGGTATTCAAAGAGCAACAAAGAGGGGCTGAACCTCAAGAACAACGGCAAGACCGGGTCAACGACCAGAAACCCGATCATCTTGCAGCAGATCATGGAAGAAGACTTCTATGTCAAGAGCGGGTCCAGCTACAAGCTGGCCGGCATCAGCATCAGCCTGGGCCTCAACTCAGTCGACTACTACACCAAGACGACTGACGGGGCCGAATACAGCACTAAGATTTCTCCGGCCAAGCGGCGGGCCTTCGGGCAGAAGACGGCCAACACGATCGTCTCCCGCTTGCACGCAAAGACGAAGCTTAAGAATATCCCGATCATGGTTGGCCTTTTCTCTAAGACCGACACCGACTCATTAGTTGGGGGAACTTACTTCTCATATGGGACAGCTAGCGCAAATAGTAGTAAAATATCTAAATGGAGTTCCGTGAACGAAAAGACCCAGGTGTTGCCGACAGTCGATGGAGCCAGCGCGGTCAGTGCCAGTGACAAATCCAAATTCACCAGCTTTAAGGATGAAATTGAGGATTACTTCCCGAACGTTTCCGGGGTCACGGCCACTCTGCGCTACTACGATGGCAAGCTGGCTTACGAAAGCATCGCCATCACCACGCAGTTCTACGGCTATCTGCAGGTACAAAGCTTTGCCCAGACGGTTATGAGCCGGGCAAAGAAGTATCTGGGAACCAGCTCACCGGTTGAAATCACCATTTCCTCGGTCAACGACACCCAAGCGGTCGTCGCCAAGGAAACGGCCACCGGGTCTTATCGGATGCACATCTATGGCGGTAATTAGGAGGTACATAAGTGGAAAAGGTAACAAATGATACCATCAAGCACGTTGCGGCATTAGCCCAGCTTGAATTCAGCGAAGAAGAACTGGCCAAGTTCACCCCGCAAATGGGGAAGATTCTGGAAATGGCAGAAGAACTTCAAGCTGTTGACACGACTGGCGTTGAAGAAACGGTGCAAGTAGTTGATCGCGACACTGTCTTCAGAGAAGACGTTCCTGAAAAGTGGCAGACCCGCGAAGAAATGATGAAGAACGTTCCTGACAAGAGCAATGGTTTTGTCAAGGTACCTGTAATTATCGATAAGGATGATAACCAATAATGAACTACTTAAACGAAACGATCGATTCTTTAAACGACAAGTTGAAGAGCGGCGCTGTTTCTGCTGACCAATTGGTCAAGGACACCATCGCCAACATCAAGAAGACTGACGAAAAGATCAACGCCTTCATCACTGTAGATGAAGACGCCAAGCCAGCAGAAGACCTTGACTTTAACAATAAATTGGCCGGCGTGCCGATTGCCATCAAGGACAACATCATCACCAATGGCTTGAAGACGACGGCAGCCAGCCACATTTTGTACAACTTTGAACCAGTTTACGAATCAACTGTTGTTGCAAAGCTGAAGGCAGCCCAAGCTACCATCATCGGCAAGACTAACATGGACGAATTCGCCATGGGGTCATCCACTGAAACTTCTTACTTCGGTGACACCAAGAACCCATGGAACTTAAACAAGGTGCCAGGCGGTTCATCCGGTGGTTCTGCAGCGGCTGTTGCCAGCGGTGAAGTGGTTGCTGCCCTGGGTAGTGACACCGGTGGTTCAATCCGCCAGCCAGCATCTTTCAACGGTATCTTCGGGATCAAGCCGACTTACGGCCGGGTATCCCGCTGGGGCTTGATCGCTTTTGCCTCATCACTGGACCAAATCGGGGTGATGAGCAAGCGGGTCAAGGACTCAGCTGAAGTTCTGAACGTGATCGCCGGGGCTGATGACCGCGACGCTACTGTTTCAGAAAAGGAAGTCCCAGACTACACCAGCTTCCTGGGCAAGGACGTCAAGGGCCTGCGGGTTGCCGTTCCTAAGGAATACATGAGCGACGCCGTTGAAGAAGGCGTCCGCAAGGAAGTTGAAGCCCAAATCGAACTTCTGCGGGCAAACGGGGCTATCATCAACGAAGTTTCCCTGCCGCACACCAAGTATGTGGTGCCAACTTACTACATCATCGCTTCCAGTGAAGCTTCAGCCAACCTGGAACGTTACGACGGGATCCGTTACGGTTACCGGGCAGAAGCCAAGAACCTGGACGAAGTCTTCCTCAAGTCCCGGTCAGAAGGCTTTGGCGACGAAGTAAAGCGGAGAATCATGCTGGGTTCCTTCGCCCTGTCCGCCGGCGCTTACGACAAGTTCTTCCTGCAGGCGGCCAAGGTAAGAACTTTGATTTGTCAAGACTTCGACAAGATCTTCGAAGACAACGATGTTATTGTCGGGCCGGTTTCTACCGAAACTGCTTTTGACTTGAACTCAGAAATTTCTGACCAGATCAAGATGTACAACAACGACATCTTGACGATTTCCGCCAACATGGCCGGGATTCCGGCAGCCAGCGTGCCAGCCGGCTTGAGCGAAACGACGGGGATGCCGGTCGGCTTCCAAATCATGGCCAAGCGCTTTGACGAAGGCCATGTCTTCCAAGTAGCTGACTTCATCGAACGCAGCAACAAGTTCTACGAACAAACACCAGCTGGATTGGAGGATTAATTTAAATGAATTTTACGTCAACTATCGGTCTGGAAGTCCACTTTGAGTTGAAGACCAAGAGCAAGATCTTTTCACCTTCACCAGTAACTTACGGGGCCAAGCCAAACACCGAAACCAACGTTATTGACTGGGGTTACCCAGGTACCTTGCCAATGGTTAACAAGGAAGTCTACCGCCTGGGCTTGATGGTCGCTTTGGCCACCCACTCTCACGTTAACCCGGTAACCCACTTTGACCGGAAGAACTACTTCTACCCGGACAACCCAAAGGCTTACCAAATCACTCAATTCTTCAAGCCACTGGCTGAAAACGGCTATGTTGAAGTCGAAGTTCACGGCAAGAAGAAGAAGATCCATATCCACGAAATGCACATCGAAGAAGACGCCGGTAAGAACACTCACGGGACCAACGGCTTCTCCTACGTTGACTACAACCGGCAAGGGGTACCGCTTTTGGAAGTTGTTTCTGAACCAGAAATGACTGACCCGGACGAAGCTGTTGCCTACCTGGAAAAGTTGCGGGAAATCGTGCAATTTACCGGGGCTTCTGACGTTAAGATGGAAGAAGGGTCAATGAGAATTGACACCAACATCTCCATCCGCCCAGCTGGCCAGAAGGAATTAGGGACCAAGGTTGAAATGAAGAACCTGAACTCCTTTGAACACGTCCGTATGTCCCTGGCTTACGAACAAAAGCGCCAGCAGGAAATCCTCCTGTCCGGTGGCCGGGTTCGCCTGTCCACCCGCCGTTTTGACACCAACACGGGCAAGACTGTCCTGGAACGTGTCAAGGAAGGGGACGCGGACTACCGTTACTTCCCAGAACCAGACCTGCCTCCATACCACATCAAGCAGGAATGGGTTGATGAAATCGCGGCCAACTTGCCAAAGACGGCTGACGAACGGCGGAAGATCTACGTTGATGAATACGGCCTTAAGCCATACGACGCGAATGTTTTGCTGCAAAACAAGGAAAGCTCAGACTTCTTTGACGCTACTGTAGCAGCTGGTGCTGACCCGCAACAAGCAGCCAACTGGATGAACACCCAGGTTAACGGCTACTTGAACGAAAAGCATGCTGAACTCAAGGACATTGCCTTGACTCCAGAAAACCTGGCAGCCATGATCAAGCTGATTTCTGACGGGACGATCTCATCCAAGATCGCCAAGAAGGTCTTCGCGGAAACTGTTGCCAACGGCACTGACCCAAAGAAGTACGTTGAAGAAAACGGCATGGCGCAATTGTCAGACGAAAGCGTCCTGGCACCAATGGTCAAGGAAGTTGTTGACGCCAACCCGCAGTCTGTTGAAGACTACAAGAACGGTAAGGATCGGGCTATCGGCTTCCTGGTTGGGCAAATCATGAAGCAGACCCGGGGCAAGGCCAACCCTAAGGTGATCAACAAGCTCCTATTGGCCGACCTGGCCAGCCGTTAAGGCAGGAGAAAATTTTTTAGAAAAAGGTGAAGCAGATGACTAAGCGAGCGCGCTTGATTTACAATCCGGTCTCAGGGCATGAACAGATGCCGAAGAACGTTTCTGATATTTTGGATATTTTGGAACAAGCGGGTTATGAAGCCAGTGCATTCAGAACCACGCAAGCTCCGCTTAGTGCTCAAAATGAAGCAACCCGGGTAGCCAAGGACGGTTTTTCACTGGTCGTGGCCGCCGGTGGGGACGGCACGATCAACGAAGTTGTGAGCGGGATCGCCTTTTTGCCTAAGGAAGAGCGCCCGCGCATGGCCATCATCCCGGCGGGGACGACCAACGACTACGCCAGAGCCTTGAAGATTCCGCGCGACGACGTGGTTGCGGCGGCTAAAGTGATTCTTAAGGACAAGGTGCAGAAGATGGACGTGGGCCGGGCCGACTTCGGCGACGGCAGCCAGAAGTACTTCGTCAACATCGCTGCTGCTGGCTCTTTGGCGGAACTGACCTACGGGGTTTCTTCAGACGTCAAGTCCGCCCTGGGCTACGCTGCCTACCTGATCAAGGGGGCGGAAATGCTGCCAAACCTCAGCGAATGCGAAATGCGGCTGACTTTTGACAAGGGCGTTTACGAAGGCAAGCTGTCTCTGCTTTTATTGGGGATGACTAACTCCATTGGCGGTTTTGAAAAGATCATGCCAAACGCGGAACTTTCAGACGGTCTCTTCCAGCTGATCGTGGTCAAGCCAAGCGACCCGGGCAACCTGCTCCGGCTGATGGCTTTGGCTTTGAACGGCAAGCACGTGGACGACCCGAACATCATCTACACCAAGACGACCAGTCTGAAGGCGGAATTGATCGGCCACAACCGCGATGACAAGCTTTCCGTCAACCTGGACGGGGAAGAAGGCGGCATGTTCCCGGTAACTTTTGAAAACTTGCGGGAACGGATCGAATTCTACGTCGGTTAAAACTGTTATAATAGAGTTTGACCTTCTGTCAGACTCTATTTTTGTGTTTAGAGGAAAAGCATGATAACCAATAAAAAGAAAGAATTAGCAAGAAAGCGGGCCGAGCGGTCTCTGCAGCCTCTGTCGCCAGAAGAGCAGAGCGAGTGGGATCAGCTGAGCCAGTACCGGGAAAAGGCCATTAAGGAGTCCGGAACCAAATTGGCCGAACACGTGATGACGTTTAACGACGGGGTAATTGCCATTATCATCACCATTGTGTTGGTGGAGATCGCGGATCCCTTGTCCAAGAGTGCCTACCAGGACTTTTTCAGCCAGATTTTTATATACTTGATTTCATTTTTCGTAGTAGCCAATTTCTGGTATGAAATCCACTATACCTTCAGTTTCCATATCATGCGGGCCGGCAAGATGACCATGGTCTGTGACTTTGCCTTTTTGGCCAATCTATCTCTGATTCCCGTCATGACAAAGTGGATCATGGGGGATTTATCGGTCTTGAGCGTGGTTTGTTATGGGATCGTCTATTTTTTGGTCCAGATTTTTGAACTGGCAACGGAAATTGTGGGGATGCGGAGCTCACTGCCGCATATCAAGACCTTCCGGAAGTTCTGGGGGCGGTTTTCCTGGCTGCGCTTCATCTGGCTCTTCCTGCTCAATTTGGTCTTTATTTTGATATCTTTCGTCCAGCCAAGGTTGGGGATGATTTTGTATCTGGCCTTCCCAATCATCAACTTTGTCATGCCAGATAACCGGAGCCAGCGGACCCGCAAAGGAGATAAATAATCATGAAGAAAAATGAAATTGTCGAAGTCGAAATCACCGACTTGTCATATGAAGCCATGGGGGTCGGCCATGTTAATGGCGAAACGGTCTTTGTCAACAACGCCCTGCCGGGTGAAGTGGTCAAGGCGCAGATTTTGAAGGACAAGAAGAGCTATGCTTTTGCCAGAATTTCTGAGATCGTCAAGGAAAGCCCGGACCGGGTCAAGGTGCCTCTCCGCCAGTACGTGCAAACCGGCCTGGCCAGCCTGGCTCATTTGAAGTACGACAAGCAGCTGGAATTCAAGCAAAAGCAGGTTAAGGAGCTTTTGAGCAAGGCCCACTTGGACCAGATCAAGGTAGCGGAAATTTTGCCAAGTCCCTTGGAAACTGGTTACAGAAACAAGGCCCAGGTACCGGTCAGAATGGTTAAGGGGCAGCTGGAGATTGGCTTTTTCCGCCGGCACTCACATGACCTAGTGCCGCTGGAGGACTTTTTCACCAATGATCCGGAAATTGACCGGGTATTGCTGGCAGTCAGAGATATCTTGCGGGAAAAGCGGATCCCGGCCTATGACGAAGAAAAGCATCAAGGACAGGTAAGATATCTGGAAGTCCGCCGGGGGACGGCTACGGGCGACATGATGGTCGTCCTGGTTTGTCTGGACCGGGACTTCCCAGGCCTGCACGCGGTAGTAGATGAAATTAAGGAAATCGCCGGGGTGAAGTCGATCTTCCTCAACCATAACCCGAAGAGAACCAACGTCATCTTGGGTGAACACGACTACCATTTGTGGGGGAAGAGATACATTGATGACAAGATTGGCGATTTGACTTTTGAAATCTCGCCGCAGTCCTTCTTCCAGATTAATTCTTTGCAGACGCCGCGTTTGTACAAGCTGGCTATTGACCAGGCAGGTCTGACTAAGGACGATTTGATTGTTGATGCCTACTCCGGGATCGGGACGATCGGTCTGTCCGCAGCCAAGTACGTTAAGGAAGTCCGCGGGGTTGAAGTGGTTAAGGCAGCGGTTAAGGACGCCAAGAACAACGCCCGGCTCAACCAGATCCACAATGCCAAGTACTATGTCGGCAAGGCGGAAGAACTGATGCCAAAGTGGGCAGCTGAAGGCTTGAAGACGGATGTGATTTTTGTCGACCCGCCGAGAAAAGGCTTGACCAAGGAATTTATCGATGCCGCAGTTAAGACTGGTCCAAAGAAGGTTGTCTACATCTCCTGCAACCCGGCAACGCTGGTACGGGACATGCAGCTCTTGATGGAGGCTGGTTACACGACTGACCTGGTTTCCCCGGTCGACATGTTCCCGCAGACGCCACATGTTGAGTCCGTAACCGTCCTAGAACGTACACAAATCGATTAAAATTTGCTGAAGGGTTGGCTAGCCCGCTGTAACGTAGGTCCCATTAACGCCGACGTTAAGGCATAATGACGCTTGGATGAAATTGTCTATTGTGAAAAAATTTTAATGAATTGAGAAGATTGGGGTAAAGTTTTGTACACTTAAAAAGTAAGAGTGCAACTTTTTAGGAAGGGGGGACTGGGAATGGCCATAAATAGAATGGAAGAATTTGAAAACCTGATTATGATTGAAGTGCTAAAAGCGATGCAAGCACTTGGCGGTCGGGTAACACGCAAGGAAGTTAAACGTGAGATTTGCGACCACTCTGAAGCAATTTCAGAGGATAAGGTCGATGAAGTTAAGCATTCAAAGAAAACAGGCACTCCATACCGTCCGTTTGATTATCGTTTTAACTTTGCGGTTAAACATTTGATTACGACTGGTTTCATCATCACTGAAGATAATCGAAATCTTGAACTACCAGAAAAGGGACGGACAACTAAGTTAGAAGATTTTGATCCAATTCGTGATGTGCGGGCCGTGCTATCCGAAAATTCAGCCGATGATACTGATGTAGAGGAAGAGACTGAGATTGAAGAAGAACCCTGGAAAGCTGAACTGTTAGCAGCCTTAGCTAAGATGCCGCCACAGAAATTTGAAATATTTAGTCGAGGTTTGCTGATCCATATGGGGGTTGACCTTGACGACAATATCGGTGTCCGCTATGTCGGCGACGGTGGCTTAGATGGTTTTGGCTATATCACTTCAGATGATTTTCGAACAACCCGGGTCGCCTTACAAACTAAGCGGTGGGACGGTAAAGTTTCTGCCCCAGAAATTGATAAGTTCCGTGGGGCAATGGATAAGTATAATGCCGAGTACGGAATCTTCATCACGACCTCTAACTTTACCCGCGAAGCAATGAAAACCGCAAAAGCAGGCACGCGGATAATTACCCTTATCAATGGGGACAAGCTTTGCGATCTAGTGGCTAAGTACCACTATTATGTAGAACCTGTGACAACCTACAAGCTGAAGAGCTTTTTTACGGATAACGAATAAAGCCCCGATAATAGCTGAGCTACTACCAGGGCAGTATGGTAAAATTTATTTACAGGTTAATTTTTACAGAATCGCCATTTTTGAATTCTACGATGACGACCATCGAGAAGCCCTGATCAAAAAGTGGGTGTCGTAAGGGGCCGGTGCTTAGCTAACACTGGACAAGTTAATTTTCTTCCGGCCTCCCCCAATTCCCTAGAAAGCGATTGTATAACCCGCTATAATAAGGTTAATTATTTGGAGGTATCTTTTTATGGAATACATCAATTACCAGACCCAGGACCAGTGGCAAGGTCCCGCTAGCCAACAGTCACCCATCGACATCGTTTTAGAGCAAACTACCCCACGCCCCCTCGCCGATCAGCCCTTAACCGTCTCCTTTGTCGGCGACCAGGCGCTGACCCGCGACCCCCGTTCGTCTGGGGACCAGTTTATCGGCGCTGGCACTTTAACGCTAGGGAACCACCACTACCACTTCTTGCGCCTCCACTTCCACGACCACAGCGAGCACCTGTTTGATGGCCAGCGGCAAGACGCCGAGGTACACTTTGTCTACCAAGACGACCAGGGGCAAACCCTGGTCTTAGCCATGCTGGGGATAAGGGCCGCCGATGGTGAAGCCGGCTTTGACTTCGCTCCCGTCATTAACGGTCAGGCCGGTTCCGCCTACTTAAACCAGTTCTTCGCTAACAACCAGGGCTACTTTAATTACACCGGTTCTTTGACGACCCCACCACTGTCGCCGGACGTGACTTGGGTGGTGCTTGACGCCGTGCACCCCTTTTCTTCCGGTTCACTGGCACTAATTCACGACTTGTTTGCTGACAACTACCGGGCACCACAACCCATCACGGTCCCGGTTTACCATTACTACGAGAGTGGGAAATAACCTTCTCGGCAGGTCGTATGACTAAGCTAGGACGCACCGTTCTTCGGCCTGCTTAGACACTAGACCTGCGGTTATTTACCACGTTTTCTGTCTAACCCTCGTGAATACAACAAGGGGTCGGGAAAACAGAGTTTTTCCCGACCCCTTTTGGTTTGGTAATGTGTGCGAGAGGGTTATTGTTCACTCCCTTTGTTGGCGCGTTCAATCTGCGCTCCGATCACGGTGGCCGGCACCGACTTTTGGTTGGTTAAGTGGTAATCGGCGTAGGGGAAGTGGGCTCGGTATATGGCGTCGTGGTAGGTGGTTCCCTCGTGACTAGCCTTGACCAAGGCCTGGCCGGAGAAGCGCCCAATCATTAAGCGGACCCAAATGGCAGTCAGGTTCATTCCCAAGACCTTGGTCATAAAGGCGATGTCTGGGGCCGTCAGGGGTGAGACGTCTTCGTGGCCCCCCTCGGCGTCCCCATCGACTTGGTAGAGGACCTGATACAAACCGGGCGTGTCCTGTTGGCTTCGCGCAGGTCCGCCACCTTTTGCGGGCTGATCGCCCAGGACTGGGCAATTTGGTCGTCGGACAGCCCCCAGGACCTGGCCCTGGACAAGCGGGTGGTCTACATCCACGGCGTGCCAGCTGACCTGGAATTGCCAGAAAGCGTTGGCGGCAAGATCAACGACCATTACGACCAACACGTCACTCTTCCAATCGCGGCTGGTAAAATCAACCGCGTCGACTAAAACTAAGCCATTCAGAGGATCAAATTCCCCTGGATGGCTTTTTTCGTAAAAAAATTTTGCAAAAATCCCGATCTTGATAGAAATCAATTGGGGAATCCTGCTTTCCCGGTATATTAAAAGCATCAAAGCAAGGAGGTCAAAAGATCAATGCAAAAATGGTTAATGAAAAATCGCAACCGGCTGACGGAAATTACGGGCATCTTAATCGTCCTGGCCTTTGCCGCAAAATGGTTATTTAGAAGTGAAACAGCAGAGTCCGGCCTGCTCCTGGCCGCCTCCCTCATCGGTGGCTTCCCGATCGCCGAATCCGCTTGGCAGGCCTTGAAAGTCAAAGTCATCAGTATCGACTTGCTGGTGACCCTGGCCATCTTAGGTGCCTTCGTCATCCAGGAATTCGAAGAATCCGCCATCGTGGCCTTCCTCTTCTTGTTTGGGGCCTACCTTGAACAAAAGACCCTGGCCAAGACCCGGTCAGCCATCAAGGAACTGGTGGAAATGGTGCCAGAAACCGCCCTCCGGCAGACGGCAGACGGCGACTTTGAAGAAGTTGACTTAGACGACCTGGACGAAGGGGACATCCTTTTGGTCAAGACCGGCGGCAAGATCCCGGTTGACGGGGAAGTCGTCTCCGGTTCCGGGACGGCCAACGAAGCCAGCATTACCGGTGAATCCATGCCTTTAGGCAAAAAGCCCGGCGACCCGGTCTATGCCGGTACTATTTTGGAAAACGGGACCATCCGGATCAAGGCGGGAAAAGTCGGGGATGAAACGACTTTTGGCAAAATCATCGAACTGGTCGAAGAAGCCCAGGACTCCAAGTCCCAGGCTGAGCGTCTAATTGACCGCTTCTCCAAGTACTACACCCCAGTCGTCCTGCTCCTGGCCATTATTGTTGGCCTCATCAGCCAAGACCTGGAACTGGCTGTAACCATCCTGGTTCTCGGCTGCCCGGGTGCCTTGGTTATCGGGGTTCCGGTCTCCAACGTGGCCGGAATCGGCAATGGGGCCAAGCAGGGGATCCTTTTTAAAGGCAGTGAAGTCATCACCAAGTTCAGCAAGGTCGACACGATCATGTTCGACAAGACCGGGACCTTGACTTACGGCGACCCCCGGGTCAGCCAGGTGAAAAAGTACGGCCAGGGCCAGCTGGCTGAACAGCTTTTGGTCAGCGTGGAAAAAGAATCTGCCCACCCTTTGGCGAAAGCCATCACTGGCTACTATGAAGACCTGGAAGCTAAAGAAGTTGAAGCTTCCCGGGTCCTCCAGGGCGGCGGGATCGTTGCTCAAGTAGCTGGCCAGCAGGTCTTGGTCGGCAACCGCTACTTGCTTGACCAGTACCATGTCCTAGTTAGTTACAAAAGAAATGGAAAGGGACATGGAAGAGCTGGCAAGTGCTGGTAATTCCCTGGTTCTGGTGGCTGTTAACGGGCAGCTGGAACTTGCTTTAGGCTTAAAGGATGAGATCCGGGCCGGGGTCAAGGAAGACCTGGCTGCTTTAAAGAAGCAGGGCGTCAAGAACCTGCTCCTCTTGTCCGGTGACAACCAGAAGACGGTTGACCTGGTAGCGGAAGAACTGGGCCTCACTGAGGCATATGGTCAGCTTTTGCCAGAAGACAAGGCCGAATTTGTCAAAAAGCGGCAGGCAGCCGGTGAAATCGTGGCCTTTGTCGGCGACGGGATCAACGACAGTCCGTCACTGGCCCGGGCAGACATCGGGATTGCCATGGGCAGCGGGACTGATGTGGCAATTGAGACTTCAAACGTGGTCCTCATGAACGGAAGCTTTGACCGGATTCCGCGGGCCCTGGCCCTGGCTAAGGCAACCCGGCGGAACATGATTGAGAACATCACCATCGCCCTGGTTGTCGTAGCCGTCCTGCTGATCAGCGTGTTAGCCAGCTCATGGATGAACATGGCCATCGGGATGTTTGCCCATGAAGGCAGTATCCTGGTTGTAATCTTAAACGCCATGCGCCTTCTGGCCTACCGGTCAAAATTACAAAAATCGCGAAAGTTGATAGAAAACAATTTTTCTTAAGCAGCAGGCCCTTATACTAAGGGCATCGAAAGTATCCAATAGAAAAAAGAAAGGACAAGAAATCATGAAAAAAGCAATTTTACAACTTGAAACATTAGCCTGCCCGACCTGCATGCAGAAGATCGCGGGGGCCATCGCCAATGTTGACGGGGTTGAAAAGACCAGCGTCAAGGTCCTCTTCAACGCAAGCAAGGCCAAGGCCAACTTCGACCCGGAAAAAACCAATTTGGACACGATCACTCAAGCCGTGAAGAATATCGGCTATGACGTCTTGAAGGCCAGCGCTAAATAAGAGAAAAAAGCAAAAACAAGAAAAAAGGAGAAAAATGATGATCAAGGAATTTTTTGACAAGAACGATGAAATGTTAGACTTATGTACGCAAGCAATTACCAAGGCCCACGGCGCTCACCACCCGGAAGTCTTTGAAGTCCGCAAGGTTTACGAAGACATCCAAAAGAAGGTGAAAGCCGGCCAGGAAGACTTAACTGCCGACTTCAGCAAGCTGCGGTCCTTGACCGCGGATTACAACATTCCGGCCGATGCCTGCGGGGCGATGACTAAGACCTACCAGACCCTGGAAGAATTCGACCACTTGGTCCAGGGCTAATTTTTACCAGCAGAGGAGAGCAAAATGCAGCATATATGTGTCAGCCTGGTTCCCTTATTCGTGGACCTGCCAGAAAAAGACCAGCTTAAGATCAATTCCCTGGCCAGCCACCGGCGCTATCAAGAAGGTGAGACGATTTTTCAGCCAGGAGATGAAAAGCTGCAGATCGTGGCCCGGGGAAACATTAAGGTTTACCAGCTGTCCGCCAGCGGCCGCGAGCAGCTGCTCCGGGTTGCCCAGCCGGGTGACTATGAAGGGGAAAAGCAGCTTTTTGGCCTGGAAAACGACAGCTTCTTCGGCCAGGCCATGGAGAATACGGAAATCTGCAGCTTGAGCAAGGCCGACTTCAACCGGGTCCTCATGGAAAATCCCCAGCTCTCTCTCAAACTGCTGGAACTCATCACTCAGAAGCTGCTGGCCACCGAAAGACAGACCCAGTTCCTGGCCATGGAGCGGGTTGAAGAAAGGCTGGCCAGCTACCTGCTCGACTTGGCTAAGGCGGCTGGAAGCGACCAGGTCCAGCTGTCCATGAAGATGAAAGATATCGCCCTCTACCTGGGAACTACTCCCGAAACCCTCTCCCGCAAATTCAAACTCCTCGAAAAAATGGGCTATCTGAAAAGGACAGGCAAGCAGGTGAAAATCCTTGATGAAGACGGCTTGCTGGACTTGTAATAGGCAAGCAAAAAACAGAGTTTCCTCTATAGCTTAGGAAACTCTGTTTTCGCGTTAGGCGCGTTTTTTGCTGATAGCAGCCTTAATGGCTAAAATAACGAAGGTAACAGCGACTGGAACCAGCCAGCCCAGGCCATCCTGGTAAAGGGGCAGGACGCGGCCGTAAAGGCCGGTAACCGCCTTGACCTGCATCCCTGCCGGCAGGGCCTTGAAGAAGTCGCCCAGGGCGCAAAGGAAGGTAACAGCCGTCATAATCTGGTAGTCGACCTGCTTAAAGTCAAAGAGATTGCTGGTTAAGGCCAGCAGGATCAAAGAGATGGCCAGCGGGTAGAGTAGCATCAAGACTGGCAGGGAGAAGGAAATGATGGTGGTCAAGCCCACGTTGGCAATCCCAAAGGCCAGGAGGCTGAAGATAATGGCCCACTTGTTGTAAGACAGGGTCTTCGGGAACATTTCCACGAAGGTCTCGCTGCAGGCCGTGATAAGGCCGATGGCCGTCTTAAGGCAGGCCACGAAGATCATCAAGGCAAAAATTACTGCCCCCAGACCTGGGAAGTAGTGGCGGGCAATCTGAGACAGGGCTTCCCCGCCGTTAGCAGCTAAGCCCAAGGCAGTCCGGCTCTGGGCTCCGACCAGAGCAGTAATGGCGTAGATCACCGCCATCAAAAGGCAAGTGAGGACCCCGGTCTTTAAAGTCGCGGAAGCAACTTTTTCCGGCTTGGTCACTCCAAAGGTCCGGATGCTGGAGATGACGATGATGCCAAAAGCCAGGCCTGCCAAAGCATCCATGGTGTTGTAGCCGGCCAAGACCCCGCTGATTAGTGGGGCGCTGGCGTATTCGCCGACCGGCTTAACTGCATGATAGTTGCCCAAGGGATGCAGCAGCGCCGTGATCATGATAAAGAAGAAAAAGAGCAAGAAGGCCGGAGTCAGAAACTTGCCGATCCAGTCCATGATCCGTCCTGGTCTTAAAGAGAAGAAAAGCATGATCGTGAAGAAGATCAGTGAGAAAATAAAGAGGCCGGTGCTTTTTGCCATCCCGCTGGGCAAAAGAGCTGAGATCCCGGTCTCAAAAGGAACCGTGAAGCAGCGGGGAATGGCGAAGAAGGGCCCGATGGTCAAGTACAAAAGGCAGGTAAAGAAGTAGCTGTACTTGTGGCTGACCCGGCCACTGAGGTCTAAAAGACCTTCTGACCTGGTCATCCCTAATGAGGCGATGGCCAAAAGGGGCAGGCCCACCCCGGTGATCAGGAAGCCCAAGAGGGAGATCCAGAGGTTGGCTCCGCTGGCTTCCCCCAGGTAGGCAGGAAAAATCAGGTTTCCAGCCCCGAAGAAGAGGCCAAAGAGCATGCTGGAAATCGTCAGCGACTCAGCATGCGTCAGCTTTTCTTTCATGTTGATCCTCCATAAACCAAGTTAAAATAACAATACATAGAAATTAAAAACTAGAAAATATAAATTTGAAAACTATTGTGCTAAAGCACACAATAGCTTATATTTTACCATACAACTGACAGAAAGATGAAAACATGGTGGAATGATGCCCCCTTTTGAAAAGTACCAGGCGGTTAAAAAGGCTTATGCGGCCGGGGCTAACAAAGAAAATGCCCAAGCCATGGACAAGTACATGCGAAATCTTTTTCCCTTCTATGGGCTCAAGACGCCAACGCGGCGGGAATTATCCAAGCCCTTTTTAAAGGGCGTGACTAAGGAAGAAATCGCCTGGGACCTGGTTGACCTCTGCTTTAAAGATGACTACCGGGAAATGCAGTACTTTGCCCTGGACTACTTGAAGAAAGTCCAAAAGCAGCTGACTTTTAAGGACTTACCAAAAATCAAGCAGCTGGCGGAGACCAAGTCCTGGTGGGACAGCGTCGACAGCCTGGTCAAACTGGCCGGGCAGATTTTTATCAAAGATGAGGAAAACAAGGAAAAGACGGCAGCCCTCATGCTGGCCTGGGCTCAAGATCCCGACTTCTGGGTTAGGTGGACGGCGATTGAATTCCAGCTGGAAGCGACTGATCCGGACCTGTTAGGCAAGATCATCGACCGCAACCTGGGCAGCCAGGAATTTTCCATTAACAAGGCCATCTGCTGGGCCCTAAGGTACTACTCCAAGACAAACCCGGCCTGGGTCAGGGATTATATGGCTTCCCGCGATCTCTCTGCCTTAAGCCGGCGGGAGGGCAGCAAGTATATCTAGTTGCTGCAGGTAATGATAAGTAAGCAGATAAGAGTGACAAAAAATGTTTGAACTGAACTACTGCCCTCAATGCGGGCAAAAATTGACTAAAAAGGAATTGCCTCTGGACGGCTTGATCCCTTATTGCGAGCAATGCGGGGACTTCCGCTTTCCAGTTTTTTCCGTCGCCGTCAGCATGATCGTCATGAATGAAGGAGGCGACCAGGTTCTCTTGATCAAGCAGTACGGGAAGGACTCCTATATCCTGGTAGCTGGCTACGTTAACAAAGGGGAGAACACCGAAGACAGCTGCCGCAGAGAACTAATGGAGGAACTCCATCTAACGGCCAAAAGCCTCCACTTTAACCGCAGCCAGTATTTTGCTCCCTCAAATACCTTGATGCTCAACTATACGGTGACCGTTGACCAGGCTGAAAAGGTTAGTCCAAATGAGGAAATCGACGCCTGGAATTGGCTAAGCATAGACGAAGCCCGCCGGCAGATCCGGCCAAATTCCTTAGCCCGGACTTTTTTGTTGGAATACCTCAATAAATGCAAGTTGCATAGATAACCGAAAACTTATCGCATTAGCGATATATCCTTGATTTATTAAGGCTTACCTAATAAGAGTGATAAGCGCTTTATTATTTTGCGCTAATAACTTGATTTTATTAATCGAATGCTTTATAGTATTTTTTGCTTTAAAAGGTAGACACTCTCGGCCTAGCCGCGGGTGTTTTATTATGTTAACGGTATTTTGGCTAGGAAATTTGTATTTTGCTTGGTGAGGTAAAGCTTGGAAAAATACGGCGCTTTTAATAAGGAATTTTGATTTCAGCGGTCTTTCTCCCCTGGAAGCTCAGAAAATGCTGGGCTATGTAGAATTGATGAACCAGTGCATGGACTGGGCCATGCAGGATGGAGACCCTAGTGACGCGATTATGATTCTCCTCAGTGAAATTGATGAAGAGCTGGGGGCTGCCCGGGCCTTTAGGGAAAATTCTGGTTACTATATCAGCGATATGGCAGCTTTCAAAGAGACTGATCCTATGTTATATGAGGTATTTTCCCGCCAGGAGCTCAGCAGTCTGGTCTTGTGCCCGTTTTACTTTGAAACCGACCTGGTTGGCTTTGTCGGGGTGGATGAACCAAAAGACATGAGTCTGGCCCTCCCGGTCATGCAGATTGCTTCCAGCCACATGTCAGGGCTTTTGCAAAAGTCCTTTTACGTGGAAAAGGGAGCTTCGGATGACAGCGTGACCAATTTGTGCAGCGTGACCGCCTTCCGTCACCATGTTGCTTATGAATTGGAGGAAATCCAGGCTAATCCTGGCTTGAAGCTGGACCTGGTCCACTTCGACATCAGAAATTTTTAATAAAGAACACGGCTTAAAGGCCGGCGATGAGCTGTTAAAGCGCCTGGCCCAGGTGATTGTCCAAGAGGTAGGCAGCCCCTGGCTGGTCCGGCCGGTTGCTGACCACTTTTATGCCTTGATTCCTGATAGCAAGGTGGGCCAGGCCATTCGAAACGTTCATGATGCCATTATTGGGGATGAGGCCTTCGGGGTCTCAATTAGGGCCGGGATCTACCCCTTGTCCGCCAGCGACCAGCAGGTCTCCTTTGCCATGGACCGGGCCAGAATCGCGGCCAACAATGCCGTGAGCAACTACCAGAACTACTACTGCCGCTATGAGCAAAAGATGGAGGCTGACTTGACTTTGGCCAACTACCTGCTGGGCCATATCGACGAGGCAGTGGCTAAGGGCTGGATCAATGTCTTGAATGCCCTCTATCCTTTCAGCGGGAGCAATCACCAGGAGCTGGTGGAAAATCGTTTCGGTCATGGTCTTTTTAGACAAGGGCGGGGACGTTGACATTATCTATGCCAACAAGGCCTCTAAAAGCTGGACTGAGTCCCTCCGTCTCAAGGGTGAAGATTACGCGGTAGCCATCAAGGAAGAGTTTTGTGCCCTTTTAAGGCAGCTGGTCAGCCAGACCGATGGTGAAATCATTGAAAAGAGTTTCCGGATCAAAGACTATGCCGGCCGCCTGCGCCTGCAGCTGGTGGCAGAGATGTCGGGCCAGCGGGCATATGTAATCAGCACGAATATGGTTTGATTTTTTCAAAGTCTTTTTCTTTCAAACGCTTTTCGCTTATAATTTAACTAGTTTGAAAAAATCGAGGAAAAAGACGATGAATGAACTAGACAAAATGCGCTCCGGTGATTTCTACCAGCTGACGGCACCGGAGGTGGAGCCTTACCAGGAAGCGGGAATCATCTGGAACGACGAGTTCAGGCAGGGCAATAACCTGGACCGGCCAGCCCAGCTCCTGCGCTTGAAGATGCACCTGGGTGCTTTAGGGGACCAGGCCAGCTTTGGGACCAGCTTCAGCTGCCTAAACGGGCCGAATATCTATATTGGCCATCACTTTCTGGCCGCTGGGGTTTGACCATCGAAGACGCCGGTGAGGTCCATATCGGCGACTACGTGACCATGGGGCCAATTGCCTGCTGACGACAATCGCCCACCCCCGGTCAACCAGGCAGCGCCGCCAGCGCCTGGCCCAGGCCAAGGGGGGTGAAATCGGCAATGACGTTTGCCTGGGGGCGGGGGTCACGGTTTTAGCCGGGGTCAAAATCGGCGACAACGTGGTCGTGGAAGCCGGGGCCGTGGTAGCCCAGGATCTGCCCGCCAACGGGGTCTTTGCCGGCATCCCGGCCAGGAAAATCGCTGATCTGGCCAATGATTGCGGATAAGTGTCAACTTATGGTTTGACTTTATCATTATGTCTTAAGTAAAATATCACTATCAGCTTGCACTGAAGTGAAAAGTTGAGGAGTTAACAATGAAAATAGCTTTGCAAGTTTTAGCCTGCCTGGTGGCAGTTGAGTTCTTCTATATCATGTATTTGGAAACTTTTGCAACAACTTCCAAGAAGACGGCAGAAGTTTTCCAAATGGACCAGGAAGAATTAAGCCGGCCGTCAGTCAATACGCTGTTTAAGAACCAGGGTATCTACAACGGACTGCTGGCCGTTTTGACCTTGATCGCGGCCTTTGCCCTAGGCAAGATCGTCCTGCAGCTGGTCTTGGCCTACATGATCCTGGTAGCGGCCTACGGGGCCGTGACCAGCCAGCCGAAGATCCTCTTGATGCAGGGGGGCTTGCCTATCTTGACCTTGATCGTCAGCTTCTTTGCTTGATGCAAGATATAACTCTTTTTTCAGAAAAGCCTTGCGCTGAATTCTTGTAGGAATATAATATTTTTAATAAAAGGATCAAAATAGCCAGCGCAGCTGTTGAATAGGTGGGAGAAAGAAATGGTTGAATACAAAATCGACAAAACCGACCGACGCATTTTACAAATGTTGGAAGAGAACGCCCGCATTTCCGTCAAGGATATCGCGGAAGCCAACTTCATGTCTTCTCCGGCCGTAGCCAACCGCATCAGACGGATGGAAGACAACAACCTCATCAAGCACTACTATGCTGACATTGACTACTCGTCCATGGGCTACGTGGTTAAGGCCTTCATTAATCTGGAAGTCAAGCCGGAAGACAAGAGCGAGTTTTACCCCTTCATCGAGAAGGTTCCTAATGTTATCCAGTGCGACTGCGTGACAGGGGACTACTCCATGCTGATTCAGGCTGCCTACCGGCGGCCTGAAGAACTGGACCACTTAGTCAACGAGCTGCAGAAATTCGGCCGGACCAGGACCGAAATTGCCTTTTCCACCCCGATCGAGCACCGGCCAATCCCGGTCAAGACCGAGAGTGATGACGAAGAAGACAAGAAAGAAGACTGACTTTAAGCCTCCGTCTGCCAAGACGGGGGCTTTTTTTGACCTTTTTGCAAAGAAATAGTTAAGCTTGCCACTTTACCGCTTACAATTATACCAATTTGCGAGCAAAGACTTGACCCGGGCTAAAAAAACGGCTATGATTCCTATTACAAACGCAAAAATACAAATTAGTCCAATAGCTTAAATTGAACTAGACCAAAGGAGAAGACATATGTGCGGAATTGTCGGTGTAGTTGGCAAGCCAGCTAGAGAAGTTGTTTTAAACGGTTTGAAGAACTTGGAATACCGCGGCTACGACTCAGCTGGTATCTACCTCAATGACTTACAAGGGCATGAATACTTGACCAAGGCGGTTGGCCGGATTGCCAACCTGGAAGAAAAGCTGGCGCCAGAAGAAGAAGGGACGACCGGGATCGGCCACACCCGCTGGGCAACCCACGGCCACCCAACGGTGGAAAACGCCCACCCACAATACTCAGAAGACGGCCGCTTCTACCTGGTCCACAACGGGGTGATCGAAAACTACCTGGAACTGAAGGAAAAGTACCTGGCAGGCGCTCACTTCAAGTCTGAAACTGATACTGAAGTTGTAGTGCAATTGGTAGCCAAGCTGGCCAAGGAAGAAAACCTGGATGCTTTTTCAGCCTTCAAGCAGGCTTTGAAGCTGGTTAAGGGTTCATACGCCTTCTTGCTGGTGGACAACACCAAGCCAGACCACATTTACATTGCTAAGAACAAGAGCCCGATGATGCTGGGCTTGGGTGACGGCTTTAACATTATCGCTTCAGACGCGATTTCTGTTTTGGACCAAACCAAGACCTTCATCGCCTTGAACGACGGCGACTGTGCTGACGTAACCAAGGACTCAATCGAAATCCAGGACTGCGACGGCAACAAGGCGGAAAGAGAAGCTAAAGTTTTGGACATCGACCCGAACGCTGCTTCCAAGGGCACTTACGAATTCTACATGCTCAAGGAAATCGACGAACAGCCAGCAGTTATGCGCCGCCTGTCAACTGACTACTTAGACGAAGCAGGCAAGCCAGTTGTTGACGAAAAGATCATTGACGCTGTCAGCCAGGCTGACCGGATCTACATCTTCGCGGCTGGTACTTCCTACCACGCTGGTCTGGTCGGCAAGGAAATTTTTGAGAAGTTCACCGGGATTCCAACTGAAGTTGGCTATGCTTCCGAAGCTGGCTACCATTTCCCAATGATGTCCAAGCACCCATTCTTCATCTTCCTGACCCAGTCCGGTGAAACTGCCGACTCCCGCGTGGTCTTGACTGAAGCCAACAAGCGGGGGATCCCAAGCTTGACCATGACCAACGTTGAAGGGTCAACCTTGTCAAGAGAAGCAACTTACACCATGCTTTTGAACGCTGGTCCGGAAATCGCCGTTGCTTCAACCAAGGCTTACACTGCCCAAGTTGCCCTGCAGGCAATTTTGGCCAAGGCCGTTGGTGAAAAGCTGGGCGACCAGGCTGCCAAGGACTGGAACTTGAAGCAAGGCTTGAGCCTGGCCGCTGAAGGCATCCAGGAAATCGTTGATGGTAAGGAAAAGATCGAAGAACTGGCTAAGAAGTACCTGATACCATCTAGAAACGCCTTCTACATCGGCCGGGGGATCGACCACGCCGTTTCCTTGGAAAGTGCCTTGAAGCTGAAGGAAGTTTCCTACATCCAAACTGAAGGTTTCGCCGCTGCTGAACTGAAGCACGGGACCATTTCCCTGATCGAAGACGGCACGCCTGTAATTGCCTTGATCAACGACCCGGTAACGGCTGACCTGACCCGGGGCAACATCCAGGAAGTGGCTTCCCGCGGGGCCAACGTGATCACTATCGTTGGCAAGCAATTTGCTAAGGAAGGCGACAACATCGTCTTACCGGAAATCGACTACTACCTGTCAGCTTTGCTGTCAGTAGTGCCGACGCAATTGCTGGCTTACTTCGCGTCCAAGAACAAGGGCTTGGACGTTGACAAGCCACGTAACCTGGCTAAAAGCGTTACGGTTGAATAATTTTTGCAGAATATTTAAAACAGGCAGGTGCGGCGGCATCTGCCTGTTTCTGTATCTGAAACTTGCTTTGACTTTTGGCCAAAAATTTATTCTTCTGGTACAATGATAGCGTTTTCTTGATGAAGGAGACTGAGCAATGATTGTGACCGACCGGCAGCAGAGAATTCTGCAGATCCTGCTGGAAAATGAAGACGGAATCAGTTTAGCGGAAGTGGAAAAAAGGCTGGAAACCAGCCGGAGGACCCTTTACCGGGAATTTGGCTTGTTGCGCCCGGAACTGGCCAAATCAGACTTGACCTTGACCAATAAGAAGGGCTATCTGCAGCTAACTGGACCGGATGAGTCGATTGCCGACCTGCGCGGCGAACTCGAAGAGAGCCAGGGGCAAGGTGAGATGAAGGCCGAAGACCGGGGAAATGCCCTGGCCGCTCTGCTTCTGTTAAATTGGATGTCATTGCCTGTGAAAACATGATCGGCGGTTCCCAGTTCTTGAAGGAAGAAGGCTACAAGCACTTGAATGACGAAGACAAGGCCGAAGTTGACAAGTACGTTGGCTTTCCCGAACGCCGCTGTTGACCGATCGTGCCAATTCAGCACAATGAAGACCCGCTCTTTGTTTCAGTTGAAGACTTCAAGGAATGGGTTATCGACGAAAGCCAGATGAAGAACCCCGAAGATCCGCTTGGAAGGCGTTCACTACGCTCCAGACCTTGAACCATACATCGAAAGAAAGCTGTTCTCAGTCAATACTGGTCACGCCACTGTTGCTTACACCGGCAAGGCTCTGGGCTATGAAACGATTGGGGAAGCCGTTAAGGATGACCGTGTCGTTGACCAGGTAACCCGCGTTTTGGCTGAAACGTTCCCTCCTTTTGGCCAAGTGGGACTTTAGCAAGGAAGAACTTGAAGAATACCATGCTCAAGTCATCAACCGCTTCAAGAACCCATACATCTCTGACGATATCTGGCCGGACACCAATTCGTAAGCTGGGCTATGATGAACGTTTCATCCGGCCAATCAGAGAACTGAAGGCCCGGGGTCTTGACTACACGGCCTTGCTTGAAACGGTCGGCAAGATCTACCACTTTGACGAGCCAGTAGACGCTGAAAGCCAAAAAGCTGCAACAGATGCTCAAGGATGAACCGCTGAAGGAAGTCGTTTTGGAAACGACCGGTCTCAAGGATGACCCTGACCTGGTTGAAGAAATCATCGCTTCAATTAAGGCAGCTGATTAAGTAAAACAATTTTGCAATAAATTCCAAATCAAAAACTAAAACAATACGAAGCAAAAGCAAGAAGAAAAAGCATGTTTGAAAAAACATGCTTTTTTGCTTCTTATTGAAATATAAATCCGTGGCATTAGCCCGAATTACGCAGGCCGGAAGCGACCCCGTTGATGGTGATGTGGATGATCGATTCGTAGATGCCGCTGAGCTTTTCTTGCCGGCCCCGCTTGATCATTTCCAGCTGGACGTAGTTCAAGACGTTGAAGTAAGGCAGGCGGTAGTCCAAGCTTCTTTCCAAAGACGGGTTGTCTTCCAAAAGCTTGCTGTGGCCTTCGATCTGCAGGATGACTTCCTTGGTCAGTTCCCATTCCTTCTTGATGATGTCAAAGACTGACCGGGTAGCTTCGTCTTCACAAAGATCAGCGTACTTTTCCGCGATTTCCATGTTGGACTTGGACAAAACCATGTCGACGTTGGACAGCAGGGAGTGGAAGAATGGCCAGCCCTGGTACATTTCCTGCAGTTCCTTCAAGTTATTCGGATCAGCATCAATGAAGTGCTTGAAGGCTGAACCAACCCCGTACCAGCCTGGGAACATGACCCGGCTTTGTGACCAGGAGAAGACCCAAGGAATGGCCCGCAAGCCGGACAGTTCAGTAATCTTCTTTCTGGCTGCCGGCCGGGAGCCGATGTTCAAGCTAGAAACTTCCTTAATCGGCGTAGCCTGGAAGAAGTAGTCATGGAAGTGCGGGTTGTCAAAAACAAGTTCCCGGTAAACCCGGTTGCTGTCTTCCACAATGCCGTCCATTGAAGCCGTAAAGTCCTGGATGTGGTCCTGGCTGACTTTTTGCTTGGAGACCATCCGGTCAACCGCGGCGGAAACCAGCATTTCCAAGTTGTAGTAGGCAGCGTCCTTGTTACCGTACTTGTTCTGGATGATTTCCCCTTGTTCAGTGGTCCGGATCCGGTCCTTGATGGAGCCGAATGGCTGGGAAGTGATGGCTTCATATGATGGGCCGCCGCCCCGGCCAACCGTGCCGCCCCGGCCGTGCATGAAGGTAATCTTGATGCCCTGTTCCTCGCCGATGGCTGTCAGTTCCGTTTGGGCCTTGTACAGGTTCCAGCAGGAGGCCAGGTAGCCGCCGTCCTTGTTGGAGTCGGAGTAGCCCAGCATGATTTCCTGGTAGTTGCCCTTAGAAGCAACCCAGCGCTTGACGATGTCGAAGCTGAGGTAGCGCTTCATGATTTCCCGGGAGTTCTGCAGGTCTTCCACCGTTTCAAACAAAGGCACCACTTGCACCCGGGCCTTTTCGGAATCGAGCAGGCCGTATTCCTTCAGCATGATGGCTTGTTCCAGCATGTCAGAGATGCTTTCGGTGTGGGAAATGATGTGCTGCTTGATCACATTCTCGCCCAAGGTGTCCTTAAGCAGGCGGGCAGTGTGGTAGATCTTCAGTTCCCTTTGCAAAAGCTCTGACTTCGGTGAGTTGGATGAGTGCAGGCTGCGGGGATCATTGTTTAATTCACTGAGCAGGATCTGGATCTTTTCTTCTTCGTCCAAATCGCTGTAGTTGTCACAAATCCGGGCACTCTTTAAGAGCTCTGCCACGCAGGCTTCGTTGACGCTGGAGTCTTGCCGCATGTCGATCGTAGCCAGGTGGAAGCCAAAGACATCAATAGCTTCCAGGAGGGCGTCAAAGTGGCCGCCGGTAACTGCCCGGTCATGGTTTTGGATTAATGACCGCTTGATGGCTTCCAGGTCTTTCTTGAACTCGTAAGCATCCTTGTAGACCGGAGCCTTGAGGGCAGCTTCTTTCTTAACGACGGCTTCCTTGGAGAAGACGTCCAAAAGCTCCATTTCCGTGTGGGCCAGGCGGCTTTCCAGGTAGTAGAAGGCCCGGCGGTAAGGTTCGTTTTCTCGGAATGGGGAGTTGTCGGCTGACAATTTGGCCAGTTCGGCAACTTCCGGCGTTGGCTGCACGTAAGAAGTTGAAACAGACACTGTCCGGTAAAGGTCGTTGAGAGCCTTGACGTAGTATTCAAAAATGACTTCACTTTGAATCGTCGCGCTCAAGCGGAGGGTTTCAGCCGTAACGTAAGGGTTGCCGTCCCGGTCCCCGCCGATCCACATGCCCATGGTGATCGGCGTTGCCCCGTCAACGTTGAGGCCCTTTTCCCGGGCAAGTTCCTTGTAGCGGGCAGTCAGCTTAGTGATGGCCGGAATCAGGGAGCCAGGGTAGTAGACCATGACGTTCTTAATTTCATTGGAGACCTTCAGTTTCTTTTCCCGGATGATGTCCGTTTGCATGATGATTTCAATGTAGCGGCGGAGCTGGTTGGTCCACTCTTTCCGGTTGATGGTGCTGGCCTTGACGTCCCGGTGGCGGCGGAGCTGGTCGTGGATCTTGTTAGTCAATTCCAGAATGGTCTTGCGCTGCACCTGGGTTGGGTGGGCGGTCAGAACTGGCACGACATTGACATGACTCAGAATTTCAGCGGCATTGTCCTTTTCCGCTACCAGGTCAACCGTTGATTCCAGCTTGCCCAGGTAATCCTTGTCCGTGTTGTTGAGCAGGTTGACTTCGGTGGCCAGGTCAACGTCTTCAGTAATGTTGATCAAAAGCGGCAGGGTCGCGAAGTAGCGGGCGACAATGATCATCTCTTGATTGCTTAAGCAGGCAATCTGACTTTCCAGCTGGCTGTGGTCGCTGCTGGCAGCAATTTTAACCAGGCCCTTGATCTTGGCGAATTCTTCGTCGCCAACCAAATGGCGGGTGCTTTCGTCAAGCAAGTCGGTCAAAATCTTGACCTCTTCAGCAGTAACCGCGTGGTTACTGTTGTTCTCTAATTTCTTAGCAGTCACGCTTAACTTCCTCTTTCTTTTAAAATAAACTTTGTTTGCTAATGCTTTTTCTCTATCATACGCCTTTTTTGTCCAAAATTGAATTAGTTTGGGCTTGCTTTCAGCAACTTTTTCTAAAAAACGAACAATCGTCTTGACAAAAAATGCCTTTTTGCTTAATGGGGAACTATACAAGCTGCTTGAGCCAGCTGGCCAGCATAATAATCAAAGGCACGCTGACCACAGACATTAAAGTCGACAGGCACAGACAGCGCATTGGGAAGGCAACCGGGCGGTTGGCCAGGAGGCTGAGCATGACGATAAAGCCGGCAACCGGGGCAGCCGCCATGATGACTACGGCCAGGTAAGCGGTCGTTGACAGGGGAAACAGTAGCAGGATTACGCTCATGCAGGCCGGCATAAGGAAGTTCCGCAAGAAGCAGATCAGCCAGGCCTTGCTGTCTTTATAGAAGTCACCCGAAATAGTCCCCAGGTTAGAGCCGATGACGATCATGCTTAAGGGGGTGTTAAGCGAGGCCACGTAGCTGACCGACCGGTCTATCACGGCTGGGAATTTGAGGCTGGAGCCAGTGATAAAAAGGGCAAAGCCGATGGCGGTGGCAATAATATTGGGATTGAAGAGGACGGTTCTGAGGGTGTCGGCCAAAGGCTGCCGCTTTTTAAAAGTACCGATGCCGTGGGACCAGACGAAGATGTTGTTTAAGACTAAGATGGGTACGGCGAAAAAGGTCCCCTTGCTGCCTAAGAGGGCTTGGATTAAAGGGATGCCGATAAAGCCACAGTTGTTGTAGACGGCCCCGAAGGCGATCAGCTGCTTGTCGGGGTCATTTTTTAAGCGGGGCAGGCGGAGGAAAAGGCTGCTGAAGGCGATGGGGAAGAGGTAGTTGAGAGAGCCAGCCAGGAAGGTCAAGTCGAAGTCCTTGATTAAGCTGGCGCTGGCCGGGCGCTCAAAGGCGTTGATGATCAGGCAGGGGCCGACGATGTAGACCAGGATGGCGGTCAGGTCCTTGCCGGTTTCTTCATGGATCATGCCCTTTTTCCGGCAGAGAAAGCCGATGGCCATGAGTATGAACATGATGCAGATCTGCTCCAGTGAGATGAAAAATGCCATAAGAATGCTCCTAGCAATCAGTTCTTATTAAAAGATTATAAGCCAATTTTTCCTTAAAAAGAAGGAAGTTGAAAAAAGGGAGGAGAAAATGGTTGAAAAGCTTGGAGGCAAAAGGCCAAACCTGTTATACTGATTTAGTCATAATTGCAGTAGAAAATTTAAGAAACAGAGGAAAATCTATTGATCACAGTAACAGATTTAAGTTTGCAAATCGGCAGTCGCACCCTTTACAGCGACGTCAACCTTAAGTTCACGCCGGGCAACTGCTATGGCATCATTGGGGCCAACGGGGCCGGCAAGTCGACTTTCTTAAAGCTGCTGGAAGGAAAAATGGAACCAACCACTGGCTCAATCAGCATGGGCCCTAACGAAAGAATGTCCAGCTTGAACCAGGACCACTTTGCCTTTGAAGATTTTTCCGTTATGGAAACTGTGATTCAAGGCCACCAAAAGCTCTACCAGGTCATGAAGGAGCGTGACGCCCTTTACGCCAAGGCCGACTTCAGTGAAGAAGACGGGGTCAAGGCGGCTGAACTGGAAACGGAATTTGCGGAACTGGACGGCTGGAACGCGGAAGCTGATGCTGCCCAGCTTCTCCAGTCCATGAGCATTCCAGAAGACATGCACCAAAAGCAGATGAGCGAGCTGGCGGAAAGCGACAAGGTTAAGGTCCTTTTGGCCCAGGCCCTTTTTGGCAACCCGGACACCCTTCTTTTGGACGAACCGACCAACGGTCTGGACGTGCACACCACGGCCTGGCTGGAAAACTTCCTGGCTGACTACGAAAACATCGTCCTGGTCGTTTCCCACGACCGTCACTTCTTGAACCAGGTCTGCACCCAGATGTGTGACGTTGACCGCGGGCAGATCAAGCTCTACGTCGGCAACTACGACTTCTGGTACGAATCAAGTAAGCTGGCTACGGAACTGGCCCGCCAGCAAAATGCCAAGAAGGAAGAACAGATCAAGCAACTGCAGGAATTCATCGCCCGTTTCTCAGCCAACGCTTCCAAGTCCAAGCAGGCTACTTCTAGAAAGAAGCAGCTGGACAAGATCAGCTTGGACGACATCAAGCCATCCAGCCGCAAGTACCCGTACATCAAGTTTGAGATGAACCGGGACCTGGGCAACGACTTGCTGAGAGTGGACAATGTGTCCTACAAGTCCGGCGACGAGCAGCTTTTGGACAATGTTTCCTTTATCATCCGGCCAGGTGACAAGGTTGCCTTCTTGTCCAGAAACACCCGGGCAACCACGGCCTTGATGGAAATCATCGCCGGCCGCCTGGAACCAGACTCCGGGACTGTTACCTGGGGGCAGACGACTTCCTTTAACTACATGTCCAGAGACCTTAACGCCAACTTCGACAATGACGAATTGACGATTTTGGACTGGCTGCGCCAATACGCTGACAAGGAACACGACGACAACACCTTCCTGCGGGGCTTCTTGGGCAGAATGCTCTTCAGCGGCGACGAGATCAACAAGCAGATCAAGGTCCTGTCCGGGGGTGAAAAGGTCCGCTGCCAGCTGTCCAGAATGATGCTGGAAGCAGCCAACGTGCTGGTCATGGACGATCCAACCAACCACTTGGACCTGGAATCCATCACCGCCTTGAACGAAGCCATGGAAAACTACCCTGGCTCAATTCTCTTTACTTCCCACGACCACGAGTTCATCCAGACCATTGCCAACCACATTATTGAAGTTGGTCCAAAGGGTGTGGTGGCCCGGGCCGACATCAGCTACGACGACTTCCTGGCTCACCCGACTGTTCAGGAACAAGTTGCAAAGATTTACTAAAAGCAGAAAATGCCAAAGAAAAAGCTTATCCGTCCTGGATAAGCTTTTTTGCATCTGCCTTATGCGTCATCGTCAAGTGCTGACCGGTGACCTTTTAAGGTAAAGATGTAGAGCATAAGAGAAATGAAGACCGCGAAGGAGACGTAGTAAAAGAAGAGACTTTCGTGGCCGATTGACCGCATGCACAAGGCGACGTATTGGGAAGTGCCGCCAAAAAGAGCGACAGTCAAACCGTATGGCAGGCCAACGCCTAAGGCCCGGATTTCACTTGGAAAGAGCTCTGCTTTGACTATGGCATTGATTGAGGTGTAGCCAGAGACAATGACTACCCCCGTCAGCATTAAAAGAAATGCTTGCAAGGCGGTAGAGACATGAGCGAGCAGGGTGAAGAGCGGGACGGTCAAAAGGGTTCCGCCGATGCCAAAGAAGATCAAGAGAGGCCGGCGGCCGATTTTATCAGACAAGTGGCTAAAGAGGGGCTGCAGGGCAACCATGACTAAGAGAACCAAGAAGTTGATCATGGCGACCGTTTCCTTGTCCATGCCGGCTGAGTTGATCATGAACTGTTGCATGTAGGTGGTGTAGGAGTAGAAGCTGATTGTGCCGCCCAGGCTCATGCCGACGACGATGGCCACCTGCTTAGGGTATTTCATCAAAAGGGCGAAGCTGCCGGCCTGCTTGTTTTGCTTGTTTTTAGCAGTGAACTGGGCGGATTCATCCATGGACAAGCGCAGCCAGAGGCCGGCTACGGCGCCGAGAGCACCAATGATGAAGGGAAGGGGATGCGCCGACCAAAAGCGTAAAGCTGGGCGTCAGTCAAGACCTGCTGCAGGATGATTTGGACCAGCAAGGAAAAGAGCTGGCCAGCGATCAGGGTCACGTATTGGAAAGATGAGTAGAAGCCCCACCGGCCCCGGCTGGCCATTTCTGACATGTAGGTGGCGCTGGTGCCATATTCCCCGCCCAGGGAGAGGCCTTGCACCATCCGGGTGATGACCAGGATGAGGGGGCTGATGATCCCGACTTGGGCGTAGGTTGGGGCAAAGGCGATGATCAAGGAGCCAGCGGCCATGATTTATTGTGACTGACGGGGTCAAGGCAGCCTTGCGGCCTTTTTTGTCGGCAAACGGGCCCATGATCAGGGAACCCAGGGGCCGCATCAAGAAGCCGATCGCGAAGACGGCAGCCGTTGAAAGCAGTTCAGCGGTCTGGTTGCTGGCCGGGAAAAAGCGGCTGAGAAGTAGATTGAGAATGAGGCGTAAACGTACCGGTCGAACCACTCAATCATGTTCCCCAGTGAGCCTTTGAAGATATTTGAGGCGATCTGCCATTCACCAGATAAGATGCCGATTTTTTTGCTTTGTAAAGGGTTGACAAGGGGTAGATTATAACAAGATTGAAAATAAGAGATAAAGGGGAGGGGGCTGTCGAAAAACAGAAAAAAGGCTTTGGCTCCTAATATTATTAAGCTGTGCATCTATCTTTTGGCTGATTATAGGAGTATCTGCTAACTAAATTAAGTTTTTGGTGGATACTGCAGACTGTGCTGCACTTTTTTAGTAAAAAATCCTTTTCTTATAGGCTATAAGAAGTAAGCGTGTTAAACTAAAATGTATGAGTGTGGTTATATAGGGATTGTCTTTTATTCCCAGGAGATTTCCAGCAGGAAGGACAAGGCTTACCAGATTGCTGAAGCTTATGCCGTTGAATTGAAAAGGGATTTCCAATAATAACTTTGTTTATCCGGCAGACTTTGTGGAGGCGCAGAAGGCCATCAAGCTGCAGCTGAAGAGCAGGGATACGGATCCGGACAAGAGCTTGTTCTTGAACTACCGGGTCAAGGCTAAGAGTGGGAAGATTCTGCATTTGAGCACTTTGGGCCGGTATGTGGAAGACAGTTACTACGGGGATGTCTTTGTGATCTTTGTCTTGCCGGATGACTTGTCCATGAAACGAAAAAAATAAAATGGTGAAGCTCGAGAATGAGTTTCACCATTTTTGGTATGTGTAATTTTGGGCCACTATTCATGAAAATCGATGGAAAAGCGGGCCAGAAGGACCAGCAAGAGTTGCAAGAGGTTCAGCCAGAGAAAGCCAGAGCCTAAAGCAACAGGGGCGACCATTTCGCCGGCTGTTAAAAGCAGGAGGGCGGCCAGGAAGAAGAAGATTCCCCGGTCGTCCAGCTTGTTTATCCGCAGGCCGAGCCAGGCTTCGCAGATGAGCATGACAATGAAGACCAGGCCGGCGACAATTGAAGGGATGAAAGAGGACCAGCCCATTAGTCTGGCAGAGTTGCAGACGTCAAGCAAGCTGGCCAGGCCGGCCCAAAGAAGAAAGAGGCTGAGCAGAAAGCTGACAGCTTGCAAAATTTTGGTAATGACTTTCAAAAGAACACCTCGATTCTCAAAGAATATTTTTCCTTCAGTATAATGCGAAGAATTTTTTGAGCAAACGCATAGATTTTGTTAAAATTTGCTATTTTCGCTTAAGGACATCCTTATTTTTTGTGAAAAATAGGTAAAATCGGCCCAAACACAGATAAAACAGTGCTTGCTCTTTAGGATAGTCAAGAATAATCTCCAAGCAAAAAGCCCCAAGAATGAATCTTGGAGCTTTTTTTGCGCCTAAGCTAGGCAATGTTTTTCAAAATATTAGTCCGGTAAAGAAGCAGGTTGATCACGACAATCCCGCTGGTTACCAGGAAGACGGCGCTGTAGCTGAAGTGGGCGGAAACCGTTGAACCTAGCAGAGGGCCAAAAATATTGCCGACGTACATGGCACTTTGGTTCCAGCTGAAGACCCGGCTGGTCAGTTCCTTTGGACTGTGCTTGGTCAGCAAGGTCTGGACCTGCGGGAAGAGGCAGGCGTCAGTAAAACCAACCAGGAAGCGGCAGACGCCAAGCTCAACCGTGTTGCGGACGAAAGCCGTCAAGAAGAAGAGGATGATCGACCCAATCAAGCCGCCTAAGATGATCTTGTGGGTCCCGATCCGGTCACCTAAGCCACCAAAGTAAGAAGCCGCGGCCACCGTGGCAATCCCTGGCAAAGCTGCGATCACCCCGCTGACGAGGACAACCTGCCTGGAATTGTGCATCAAGCTTCTGACATACAAGGAAACGATCGGGTTGATGGAGTTGTTGGCCGCTTGAATGATCAAGGTCGTCAGCAGCAGCCCCAGAATCAATTGCCCGCTCTTAAACTGCTTCATCGTGTCCTTAAAGCTGCCCCGCTGTTTGCTCTCAACTGGCACGAAGTCATCTTCATGGATAAAGAAGACAGACAAGATAAAGCAGGTGAAAAGCAGAGCCCCGGTAATAAAGGAGGTTACCCGATAGCTAAAAGCCTGCGATAAGGCCCCGCCGGCAAAGGGCCCCAGCAATTGCCCCCCGGTCTGGGCAGAAATCATGATCCCCAGCGCCTTGCCCGACTTGTTCTTCGGCGTTTCTGACGCGATAAGGGCGTTAGAGTTAGAGATGAAGCCGGCAAAAACCCCCTGCATCCCTCTAAGGAACAGCAGCTGCCAGACATTCTGGGCCAGGCCCATGCAGGTAAAGACGACCGCCATCCCTAAAGAGGCCCGCAGAATCATCGGCTTGCGCCCCTTCTTGTCAGCCAGCTTGCCCCAAATCGGGGAAACCAGGGCCGCCACCACGTAGACCGCTGAAAAGACGATCCCTGACCAAAAGCTCAGCTGCTGGTGGCTGAACTTGCCCAGGGTGTCAATGTACAAGGACAAAAAAGGGGTAATTTCCGAAAAGGCAATCCCCGCCAAAAAGACGCTGACCGTCGAGACTTGCAGATTTCTTTTCCATACCGGCTGCTTTTGCAAAGTGTGACCTTCCTTTTATTTCAGCTTCGCTAATAAATACTTTACATATCTTTTACCTTACTCTTGGAGGAAAAATAGTCAAGGAAAAAAGGCCCTCTAAATAGGAAGAGAGCCTTTTCAAAAAAGAAAATCTTAAATTTTAGTTGTCATTGTCAGCGATCCCGAAGATCCGCAAAAATTGCAGGAAGAGGTTGATGAAGTCCAGGTACAGCATCAAAGCCCCGTTAACGGCCAGGCCAAGTTCTGGCAGCTGGTCGCCGTAACTGGCGTAGATGGACTTCATCTTCTGGGCATCCCAGGCAGTCAAGATCGTGAAAATGATGACCCCGATGATGGAGAAAATGAAGCTGGCTGGCGTGCTCTTCAAGAACATGTTGACCAGGCTGGCCACGATCAAGCCCCAGATGGCGGCTGAAGCGTAAGCCCCGATGGTGTCCAGATTCTTCTTAGTCACGCTGCCGTAAGCCGCCATCCCGATGAAGACGGCTGAAGCGGAGATGAAGGCCCCGCCGATTTGGGCACCCGTGTAGGCAAAAGCCAAAAGGGAGAATTCCAGCCCGTAGACAACCGCGATAGCCATCAACATGAAGAAGGCCGTTGTCGGCTTGCGGGTAGCCTTAAAGCTGATGCCCACGCTCAAAATCAGCGGCAATAGCAGCAGGACCCAGAGGAAGACCCGGTTGGTGAGTAGCGGCAGCAGGCTGCCAGAGAAGACCGTCAAGGTCAAGTAGGCAGTCAAGGATGAGACCAGAACCGCCAGGCCCATGATGGAATACATTTTCGTTAAAAAGCCATTGAGTGCTGAGTCGTCAACGATGTGGCGGTGCTCTTGTTCAGGCGAAACGTTAAACATAATTTCTTTTGCTCTTTCTAAAAAACTAAAAAAACTGTGGACAGAATTTATTCCCAGATTGCCGTTTTATTCCGGTAATCAACGTGATATCCAGGGTTTAGATATAACAATAACATAGCCCCTAAAAAAAGCAAGCCGGACGGTTTTTCCGCTAAAAAAACTAAAGAAAAAATCAAGAAAGTCCGGCTTGCAGGAAAAATATCGGAGTCAATAGATTGAAGAAAGCGGATAAAAGGTTCAAAATTAATAGCTAGAGGAGGTCGAAATATGTCAAAAGAATATGTTGATCGGCCAATCGGCGTTTTTGATTCCGGCCAGGGGGGCCTCACGGTCCTCAGCCGACTGGTTGATCTGATGCCAAACGAAGACTATGTCTTCTATGGCGACTCAGCCAATGCTCCTTACGGGGTAAAGAGCAAGGAAGAAGTCTACCAGCTGGCCAAGCGGGTAGTTGATGAACTGATTGACAAACACCAGGTCAAGGCCGTCATGATTGCCTGCAACACGGCAACCAGCGCGGCGGCTGACCGCCTGCGCCGGGAATACTCCCTGCCGATCATCGGGATCGAACCGGCTGTCAAGCCGGCAGCTGAAGAAAATCCCGGCCGGCAGGTTGTTGCCATGGCCACTCCCTTGACCCTGGAGCAGGATAAGTTCAACCAGCTGGTTGCCGAATGTGCTGAGCCTGGTCAGGTGGTCAAAGTGCCAGCCCCGAAACTGGTCGAATTGATCGAAAAAGGGCAAACTGACAGCCCGGCCATTTACCAGTACCTGGAAGAATTGCTGGCCCCATATGTCGGCAAGGCGGCAGGAGTGGTCCTGGGCTGCACCCACTTTCCTTTTGCCAAGCAGGCCATCCAGGAGATCTTAGGGCCCCAGGCCAAGGTCTATGACGGAGCCATCGGGGCCGCTGCTGAAGTCAAGCGGCAACTGGCCAGCCAGGATGAACTGAATGCCAGCAGCCAGCCTGGCCAGATACTGTTTGAAAACAGTGCCCCAGCCGGCGCCGATTTGAGCAAGCGCCTCTATGCCCTTTACCGGCAAAAGCAGTAGCTGGCAAAAGGCGTTTTTTCAGCTAGAATAAATAGTAAGAAAGCAAACAATTAGTTTTAGATTATTAGAGGAGGACTTATGCAAAAGCCAGCAGAATGCACGACCATTTTAGTCGGCAAGGACGCCACCATTGATGGCTCCACGATGATTGCCCGCAGTGAAGACGGCGGCAGCACCATTATCCCTGAAGCCTTTATCGCGGTTAACCCGAAAGAGCAGCCAAAGCACTACAAGGCAGTGATCAGCGGCCAGGAAATCGATGATGAAGACCTGCTGCCAAACCCGCTGCGCTACACCAGCGTTCCAGACGCTTCCGGCAAGAACGGGATCTGGGCCGCTGCCGGGATCAACGACGCTACGGTAGCCATGACGGCCACGGAAACCATCACCACCAACAGCCGGATCCAAGGGATCGATCCCTTAGTTGAAGAAGGGGGCCTGGGCAAAGAAGACTTTGTCACTTTGACTTTGCCATACATCCATTCAGCCAGAGAAGGGGTCAAGCGCCTGGGCTACCTGGTGGAAAAGTACGGGACCTACGAAATGAACGGGTCAGCCTTTGCCGACCATGACGAAGTCTGGTACATCGAAACCATCGGCGGACACCACTGGGCTGCCCGCCGGATTCCGGACGATGCCTATGTGGCAGCGCCAAATCGCTTGAACATCGACTTCTTTGACTTTAACGACGAAGAAAACTTCATGTGCTCAAGTGACTTGCTGGACATCATCAACGAATACCACTTGAACCCGGACTACCAAGGCTACAACCTCCGTCACATCTTTGGTTCATCCACCATCAAGGATGCTCACTACAACAACCCGCGGGCCTGGTACATCCACCGCTACTTCGACCCTGAATGGGAAGGCGAGCCAGGGGACCAGGACCAGCCTTTCATCACTTACGCCAAGAAGAAGATCAGCCCGGAAGACATCAAGTTCCTGGAAAGCTCCCACTACCAGGACACCAAGTACGATGTCTACAGCACGACCAACACTGAAGCGGAAAAGAAGCTCTTCCGCCCAATCGGGATCAACCGGAACTTCGAAACCCACATCCTACAGATCAGAAATGACGTTGAAGAAGGTATCGCCGGCGTGCAATGGCTGGCCTTTGGCCCGAACACTTTTAACTGCTTCGTGCCTTTCTACACCAACGTTACGACTACTCCGGCCAGCTTCCAGACCGGTCCGGACTTTGACTTGACCAAGATCTTCTGGCTCAACAAGCTGAACGCCCAGCTCGGCGACACCAACTACAAGGTTTACAGCGCTTTGGAGCAGGCTTTTGAAGAAAAGACCATGGCTAAATTGCGCCAGATCGAAAACGAAACTGACCGGGCTGTTAAGGGCTTGACTGGCCGCGACTTGCAAGAGAAGCTGGAAGAAGCCAACCAGAAGATGGCTGACCTGACTTACAAGCAGACCGCAGCCTTGACCGGGGAAATGGTCAAGGACGGCCACAGCTTGATGAAGCTGAAGTACGACCTGCTGGATTAATTGGAGATTATTGATGGAAAAAGCCGCTGAAATTCAAATGCTGAAGGACTTTTCAAATGCCAACGCCACTTCCGGCTTTGAAAATGAATTCGTTGACCTTTTTACCAAGACGGTCAAGGACTACGCCGACCTTGAAGTCGACGGGATGCTGAACGTCTACGCTTCCAAGAAGCAGAACACTGGCAAGCGGCCGGTGATCCAGCTGGACGCCCACTCAGACGCCGTGGGCTTCTTGACCCAGGCTATCCGGCCAAACGGCTTGATCAAGTTCGTGACCCTGGGCGGCTGGAACAATGTGGTTCTGCCGGCCCTCAAGGTCAAGGTCAGAAACCGGGACGGGGAATACATCCCCGGCGTCGTGGCTTTAAAGCCGCCCCACTTCATGTCGGAAGCTGAAAGAACGTCTGTCCCGCAGGTCGCTGATTTGTCTATTGACGTCGGCTCCTCCAGCCGGGAAGAAACGATCAATGACTACAAGATCGACACTGGCTGCCCGATTTTCGTTGACGTGGACTGTGAATACAATGAAAAGACTGGCCTCTTCTTCGGCAAGGACTTTGACGACCGCTTCGGCGCCGCTGCCATGGCTGACATCCTGGAAAACTTGAAGGATGAAGAAGTCAACTTTGACCTGGTTGCCGCCTTGTCCAGCCAGGAAGAAGTCGGCCTGCGGGGTGCCTATGTCACGGCCCGCAAGATCAAGCCGGACCTCTGCCTGGTTCTGGAAAGCTGCCCGGCTGATGATACTTTTGAACCGGACTGGCTGTCTCAGACTGGCCTTAAGCGGGGACCAATGTTGCGGGACATGGACGTCACCTTCCTGCCAAACCCCAAGTTCCAGCAATACGCCTGCGACTTGGCTGATAAAAACGGGATTCCTTACACCCGGTCAGTCAGAACTGGTGGCGGGCAAGACGGGGCGGCCATCTACTACGAAAACGGGGCCCCGACCATCGTGATCGGGATTCCGGTCCGCTATGAGCACTCCCCATACTGCTTCAGCAGCTACAAGGACTACAAGGCTGCTGTTGATCTGGCCTTGGCGATTATTAGAGATATCGATAAGGAAAAGCTGGAATCCTTTAAAAGCTTTAATTAATTAAGGGAACTTTTTACCTTGTTAACGCTTTAAGGATCTGCTAGACTAAATTAAGTCAAATTGAATAAAAGCCACTAGGGGAGCGAAAGCTGAGATGACGAAAGTCGACCCTTTGAACCTGACCAAGGTAATTCTTGCGCAAGGGAAGTGTTTCTTAAACATGATTTCAAACTCCTAGCCGGCAATTGTTGGATAGGAGTTTTTTTAATGCTTAGAAGAGAGAGCGAGTGGAATGTGAAGGCTATTATCTTGATGGCCTTGATTGGGATTATTATGGGGGTTATCTACACTTACGTCGTCAACCCCATCTACAATTCAGTTGAATTAGCCTTGAACCTTGTCGGCCTGGGGCCTTTAGCCGGGCAGATCTGCGCCGGTCTTTGGTACATGGCTGCGCCTTTGGCCATGTACTTCGTGCCAACCTTTGGCTCCGGGATTGTCGGGGAAACCCTGGCTGCTACGGTTGAAATGACCTTCGGTGGCCAGTGGGGGGCAATGACCATCCTGCAAGGGCTGGTGCAGGGGGCCTGCAACGAAATCGGCTTCTTCCCGAAGAAGGAAAACTATGACCGCTTCGGCTGGGGCAGCTTGATTACCGGGGCAGTCTGCTGCGCGGTGGCCGGCTATGTAATGTCTTACTTAACTTACGGCTGGAGTGCCTACAAGTCAGCCCTCTTGATTGAAATGTTCATCGCCTGCATCATTTCTTCCATCGTTTTTGACGCGGTTTTGGTCAAGCTGATCACCAAGCTCTTTGACCGGGTCATGGCCAAGTAGTTTCGTAAAGTTATCATTTTTTTGATAAAAATAATCAAAAATGCGTGACAAGCCCTCCTTAAAGTTGTATGATGAAAAACATTGTTAGTTATCTTTCAAGGGGGGAGCAAAATGACGCATTTAATTTTAAGCAGACCAAAGAAGATGAACCGGGCATACTGGAGCATGGTTGGCCTATTGCTGGCCTTGATGCTGCTGACTGCCTGGATTGGCCTGCATACCTTTGCTTACCTGAATCTCTAAAATCAAAATTTGCCAGAAAAAACGCGTGAACTTGCAAGTTCACGCGTTTTTGTTTTCTTCAAAATATTGAGGTTATTTTGTTCCTCTTAGCCGTTGATAATAGACAAGAGCTTTGAGGAGACCATGTCGATGGCCACTTGGTTTTCCCCACCCTGGGGGATGATGATGTCGGCATACTTCTTGCTTGGCTCAACGAACTGGTTGTAGCTTGGTTTAACCGTAGCCAAGTACTGGGAGATGATCCAGTCGATTGACCGGCCCCGTTCCTGGGTGTCCCGCTGCAAGCGGCGGATGAAGCGGATGTCGTCGTCAGAGTCGACAAAAAGCTTGATGTCCATGAACTCCCGCAATTCTTCTGTAGCCAAAACCAGGATCCCTTCCAGGATGATGATGTCGGCTGGCTCAACATGAATAGTGTCCTTGGCCCGGGAGAGGATGTTGAAGTTGTAGGTCGGCATTTCAATTGCCTTGCCATCCAGCAGGTCCTGCAGCTGCTCAATCAAGAGGTCAGTGTCGTAAGCATTGGGATGGTCGTAGTTGATCTTCTTGCGTTCATCCATGCTGAGGGCTGAATTGTCGTTGTAGTAAGCATCTTCAGTCAGAATGAGTACCCGGTCAGCTGGCAGGCGCTTGCTGATTTCTTTGGAGACTGTCGTCTTTCCTGAGCCTGACCCCCCGGCAATCCCAATGACGAGTGGTTTCTGCTTAGCCATTATTATGCCTCTTTTTCTGCTAAATCATTGCGGCGGAGGATGTCGCGGACTTTCGTGATCAGCATGTCCAAAGCGACATCGTTGGCCCCGCCTTCTGGCACGATGATGTTGGCGTAGCGCTTGCTTGGCTCAACAAACTGGTGGTAGCTTGGCTTAACCGTGGCCAAGTACTGGTCGATGATTGAGTCAAAGGACCGGCCCCGTTCAGCCATGTCCCGGCGCTGGCGGCGGATCAAGCGGATGTCGTCGTCAGTGTCGACGAAGATCTTGATGTCCATCAAGTTCCGTAATTCTTCTGAGGCCAGAACCAGGATCCCTTCCAGGATGATGATATCAGCTGGCTCAACGTGGACCGTTTCCGGGCTGCGCAGGTGGGTGGTGAAGTCATAGATCGGCATCTCGATGGCTTTTCCATTCAGCAGGTCCTGCAGCTGGCTGATCAAGAGCTCGGTATCAAAAGCATCCGGATGGTCGAAATTAATTTTATTTCTTTCAGCCATGGACATTTCCGGGTGGTTCTTATAATAAGAGTCTTCCGTGATGATCCGGATCCGGTCGGTTTTGAACTGGTCATATAATTCGTGGGCAATGGTCGTCTTCCCCGACCCGCTGCCGCCGGCGATACCAATAATGATGGGGTGTTGCTTTTTTGACATTGTAAAACTCCTTTAGTTATTAATTATAGAGGCCAGCCGGGGCCGGGTCTAGTCAAACTGTGAAAAAACGGGCTTTAAAGCGGTTGCACGTTTCTAAAGTAGAAACAGTTGTTGCTAAACTAGGTAAAATCTAATATAATTTAAGAATATCTCAGAAGAGGCAAAATAAAATTAAGAATATTTGGGAAAGAAGTTAAGATAAGTAAGCAAGTTTCCTGGCCTTTTATTAAAAAAAGATAAAAATATGAAGCGGAACTGACAAAAGACTTGCACGAAAGCCAACTTTATGGTAAACTTAAATTAATAAAAATTAAACATGCTTAAATAAAAATAGCCGCTTACGAAAGCAGAAGGGCAAGCTTACATCCCAGATGATTTGGCTCTTGCTTTAAAAAAGGACCGAAAGATCTGGCTGCTTTGCTAAAACAGAGCAAATAAACGAACTTTTACCAAAGGAGCCGCCTGTTTGATCAATACGGCTTAAGCCAAGAAAGCTGAGCCAAACTAACGGTGATTTAATTAAGCGTTAATAAAACGAGGAGGACAACTATGGCAGCAATTATCGAATTCAAGAAAGTCAACAAGTTCTACGGTGACTACCATGCCTTAAAAGACGTCAACTTAAGCATTGACGAAGGCGAAGTCGTTTCCATCATCGGCCCCTCTGGCGCGGGCAAGAGTACCTTGATAAGAACCATGAACGGCTTGGAAGGCATTTCTTCCGGCGTCTTGAAAGTGGACGGCTATGACCTGGGAGACAAGAAGACTGACTTGAACAAGATCCGACGGAATGTCGGCATGGTTTTCCAGCACTTTAACCTCTACGAAAACCACACCGTCCTGGAAAATGTCATGCTAGCCCCAAGAATCGTTTTGCACCGGGACGAAAAGGAAAACCGGGAAATCGCTGAAAAGCTGCTCAAGCAAGTTGGCCTTTTGGGCAAGGAAGACTCTTACCCAAGACAGCTGTCCGGCGGGCAAAAGCAGCGGGTGGCCATTGCCAGATCTTTGGCCATGAAGCCCAAGGTGCTCTTGTTTGACGAACCAACCAGTGCCCTTGACCCGGAAATGATCCAGGGCGTTTTGGATGTCATGCAGTCCATCGCCGCTGAAGGGATGACCATGGTGGTCGTGACCCACGAAATGGGCTTTGCCAGAGAAGTGAGCGACCGGGTCATCTTCTTTGACCAGGGGCAAGTCTTGGAAGACTCCCACAACCCGAAGGACTTCTTTAAACACCCGCGCAACCTGCGGGCTCAGGAATTCCTCAGCAGGGTAATTGACCACTAATAAAAGGAAGGTAGCGGTTACATGAAACACACGAAACTATTCCGCAAAGTTGCCGCCTTGCTTTTTCTGTTGCTGACCACTGTTTCACTTTCCGCCTGCGCTGTTGAAAGTGACAACTCAGTGCGTGTCTACAACCACGTCAAGAGCAGCAAGACGATTACTTGGGGCGTCAAATTTGATATGGCTTTGTTTGGGATCAAGAGCGTCAAGACCAACAAGCTGGAAGGTTTTGAAATCGACCTGGCTCGCCTTTTGACCAAGGAGATCCTGGGCAAGGACGGCAAGGCAAAATTCATTGAAGTTACGGCCCAAACCAAGATCCCGCAGCTTAAGAACAACAACCTGGACGCGGTTCTGGCCACCATGACCATCACGAATGAGAGAAAGAAGTCGGTTGACTTCTCCACTCCTTACTTCAAGGCGGGGACATCCCTCATGACCAAAACCAGCAGTCCAATCAAGTCGATCAAGGATTTAAACCACAAGGGCCGGGTGGTTATCGTGGCTAAGGGGACAACGGCCGCGGACGATATTGCCCGCCTGGCCCCCAAGGCCACGATCCGCCAGCACAATGACTACGGTGCCTGCACCAATGCCCTCTTAGCCGGGCAAGGCGACGCGGTCGCCACTGATAACGGGATTTTGGCCGGGATTGCCAAGCAGCACAAGAGCCTGCACCTGGTTGGCGGCACAGTTGCCGTTGAACCTTACGGGATTGCCGTTGAAAAGGGGCAGACCAAGATGCTGGAAGCCATCAACAAGGCTTTGAAGGAAGCTAAGGCAGACGGCAGCTACCACAAGCTTGTCAAGAAATGGTTTGGCAACATCCCAGGATTCAGTGCTAAGGAGGTTGAATATTAATGTTGAGTTTACTTGGAGCAAACTGGTCCACCTTTTTGCTCGGTTTTTGGAATACGATTCTCTGCAGTCTGATTTCCTTGTTTTTCAGTTTGATCGTCGGATCCGGCTTTGCCATCCTGGAAACCGTGCCTAGCAAGTTCTGGCGCGTGGTAGCCAAGGTCTATGTTGAAATCTTCCTGAACATTCCCTTGCTGGTTGTCACCATGGTCTTTTACCTGGTTTTGCCAACTTACACGCCGCTGAAGCTGACTGGCTTCCAGGCAGGGACAATTGGCTTGTCCATTTACTCATCAGCTTTTATCGCTGAAACTGTCCGCTCCGGGATCCAGTCCGTCGGGACCGGCCAGATGGAAGGGGCCCGGTCAAACGGGATGACCTACTGGCAGGCCATGCGCTACGTTATCCTGCCCCAGGCCTTCAGAATCGTGATTCCGTCATTGGGCAACCAGTTTGTCAACTTGATCAAGAACTCCAGCATCCTGGCTTTCGTAGCCGGCTTTGACTTGATGTACCAAGGGGACATCGTGGCATCCAATACTTTCCAGACCATCCCAAGCTATGTCTTGGTCAGCCTGTTCTACCTGGTTTTGACCCTGCCGCTCAGCTACTACATGCAGTATCTGGAAAAGAAGGGTGTTTAGGAGGCACATAAATGGAAAATCTTACAGAAGCATTATCCTGGATCAACCTCCGCTTTTTGCTGCAGGGTTTCTGGGTCACGATCGAAGTTTCAGTGATTTCAATCATCTTGAGCTTTGTGATCGGCCTGGCCCTGGGTCTGATCCGCTTTACCAGAATCGACGCCAAGACCACCCGGATTTCCAAAGTGGTCGGGGTGATCATCGACATCATCAGAAACCTGCCGCTTTTGCTGATCATCTTCTTCTCCTACTTTGGCCTGCCGGTCATGGGGATCAGAGTTGATGCCTTCCAGGCTTCAGTAATTGCCATGGTGGTCTTTGAATCAGCCATGATCGCGGAAGTTGTCCGCTCAGGGATCATGGCCGTCGACCCTGGCCAGATGGAAGGGGCCCGGTCAAACGGGATGACCTACATGCAGGCCATGACCCACGTGGTTTTGCCCCAGGCCCTGAGCAAAATGATTCCGGCCCTTTTGTCCCAGTTCGTGTCCTTGATCAAAGATACTTCCCTGGCCACGATCATCGTTTTGCCGGAACTGCTCTACCACGCTGAAATTATTTACAACCAAAACACCAATTACATGATTCCGATGTACCTAGCCGTGGCAGTAATGTACTTTATCATCTGCTTTGCCCTGTCCAGCTTTGCCAACTACTTGAGCAAGCGCATCAAGTACTAAGCACGAAGGAACCAAACCGCGTTTATTGCCTAGGAGAAAAAATGGCACGTAAACTGAGGGAGCTGACCGCCATTATGGCGGTCTTGCTGTTATCATTAGTTTTTACCGCTTGTTCACACAGTCAATCTAGCAGCACCTATGACCGGGTTAAGCAAACAAACACCATCACCTGGGGGATGCGGGCCGACACCCGCCTGTTCAGCATGATGGACGTGGACAGCGGCAAGGCCACCGGCTTTGAAGTCGACCTGGCCCGGGCTATTACCAAGCAGATCCTTGGCCCTAAAGGCAAGATGAAAATTGAATACATCAGTGAAAAGTCCCGGATCATGGATCTCAAGATCGGCAACGTCGATGCTGTCATGGCTACCATGACCAACACACCCGATCGGCGCAAGATCATCAATTTTTCCGACACTTACTTCATGGCTGGGGAAACCTTGATCGTGCCGAAAAAGAGCAAGCTGAACTCCATCAAGGATTTCAACAACTCCAAGTACTCCATTGCCGCCGTTAAGGGGTCAACCGCTGACAGCGACGTCCACAAGTACGCCCCGAAGGCCCGGGTCATCTTCTATGATGACTATGGTTCTTGCTACAATGCCTTAAAGACCGGCAAGGCCAGCGCCATGGTCAGCGACAACGCCGTTTTGGCCGGCTTGATTTCTGATGACAAGGACAAGTTCAAGATGCTGCCTGATACCTTTACGGTTGAACCATACGGGATCGGCATCAAGAGGGGGGAAGACAAGTTTACGGCTGAGGTCAACCAGGCCTTGAAAGTACTCCGGAAGAACGGGACTTACGCCTGCTTGATGAAGAAGTGGTTCAATGGCGTGCCTGGCTTCAACATCAAGTCCTCTTCCCGCTTGAAGGCAAGCGAATAATTTTTACCAACTTAAGCAGTGTGTTCGACTTTGAACCCGCTGCTTTTTTAGTTCCAGGTAAAATTATGTTAAAAAATAGATTTTTGCCTAGAAAAAGAAGCCGAAGGGGCAGATCTTTTGTACAATTGAAATAGGTGACTTAGCGCTTACAGCTGAGCTTTTAAGCTCATTTGAAATTATTCGAAAGCAATCAGAGGAGAGACATATGAGTAAAAGACAATTTGGTCTAATTTACATATCATCATACCAGGCGCGCCTGTTCATCGTTGACTTGAAGAAACTGGCCATCATTGAACAGTTGAGTTCGGTCCAGTTCGTCCAAGGGGGGAAGAAGTTTGAAGTTTATGAAAACGAACTGCCCCGCTTGACTGATGCCTTGATCGGCTTCAAGCGAAAAATCGCGGAATACGGGATCGACAACTACAAGGTTTACGGTAACCGGCAGCTTTTGGACAAGATTTCTGCCCGCTACCTGGCCGACCAGATCAAGGTCAGAACCGGCCTGGAAATCGAATGGCTGAACGGGGCCCAGATCGCCTACTACAAGATCATTGCCGGAATGGCCCTGCCGCAGTTCTCAGAACTTGCGGATGATGAATTTACTTACCTGCTCAGCATGGGCAGTGCCATACTCAACCTCACCTTGTTCAAGGGCCAGCACTACCTGTCAACCTGGAACTTTGCCCTGGGCCCGGAAGAAATTGAAGAAATGGCCGCTATGACTCGGGACACGCCAAGCGACCCGATCGACATCATCGGCGACTACATCTCCCGCAAGCTGGTCAGCTTCAAGACCATTGAGAAGCCGACTGGCAAGGCCCGGATCATCATCCAGCACGTCTTTGGCCGAGGCGAGCAGAGCCTGCGGCCCCAAGAAAAGGCCCGGGTCATCGACCTCAAGCAGTTTGCCGGCGTTTACTCTGACTTCAGAGAAGCCCCGGACCAGTACCTTATGGAAAAATACGAGCTTGATACCGACTCTTTGGCCCGGATGAAGCCGACCATTGTTTTGATCAACCAGCTGGTTAAGATTATCAAGCCGCACATGATGACTTTGACCCAGTCTTCAGCTATCACCGGTTTGATGATCCAGGAAGCCGCCAGATTGAAGTACCGGCCAGATGAATACTCAACCATCGTTTTGACGGCGACCAAAAATATTGCCCGCCGCTACGAATCAGGCGGCCAGCACGTCAACCTGTCCAACAAGTTTGCCCTGCATATTTTTGACCGCCTGGCCCATGCCGGCATGGTTGACCGCCGCGACCGGCAATTACTGGAAATCGCGGCCCGCCTGCACGACATCGGCAACTTCGTCAATTTCCACAACCACTACGAGCACGCTGCCTACATCGTGGGGGCCAACCAGATCATCGGCCTGTCTGACTGGGAAAACGAAATGCTCTTGAGCATTTTGAAGCACCAGGACATCACCAACTTGAACGCTGATGAACGTGAATACCGCCACCTTGACCCGGCCCTGCAGGTCCGGGTAGCTAAGTTGGCTGCCATCCTGCGCCTGGCCAACAGCCTGGATGCTTCCCGCAAGCAGAAGATCAGCAAGATCGTGGTTTCCATCAAGGATGAGAAAATGCTGATCGTGGTGACCAGCAAGCGGGACTTGACCTTGGAACGCTGGGTTTTTGAAAAGAATGTCAATTTGGCTGAAGCCGTCTTCGGCATGAAGATTGCCATGAAGCAGAAGAGGGGAAAGTAAAAAATGACAATTGCCAAGAACAAAAACAAGTTTACCGATCCTAGTTATTACGCCAACCGGGAACTGAGCTGGCTGGACTTCAATGACCGCTGCCTGGACGAAGCCAGAAACCCGGATGAGCCGCTTTTGGAAAGAGCCAACTTCCTGGGGATCACCCAGTCCAACGTTGACGAATTCTACATGGTCCGGGTGGCTTCCTTGAGCAAGCTGGTAGCCGCCGGGGTCAAAAGCCACGATGCCAGTGGCCTTACGCCACTTGAACAATTGACGGCCATCAACCATAAGGAACACGAAGTGGTTGAAAAGCGCTACTCAACTTACTCCCGGTCATTGCTGCCGCTTTTGCGCAAGAACGGGATCAACATTTTGGAAAGTGACGAACTGTCTGAAGACCAGGAAGAATACATCCGCCGCTACTTCTCTAACGAACTCTACCCGGTTTTGACCCCGATGGCTGACGACCATTCCCGGCCATTCCCGTTCATCAACAACGACTCCTTGAACATCGCCCTGCGCCTTAAGGACCGGGAAAGCGGTGAGCACAAGTTTGCCACGGTCAGAGTGCCGAACATCTTCCCGCGCCTGGTTAAATTGCCAGATGGCGATAATGACTTCATCATGCTGGAAGACATTATCAAGGTCTTTGCCGACCGCCTCTTTGATGGCTACGAAATCCGCCAGGCAGCCTGCTACCGGGTAACCCGGGACATGGACTTGGACGTTTCTGAAAGCGACACTTCCGACTTCCTTTTGGCGGTTAAAAAGCAGCTGGAAGACCGGGAACACGGGCACGTGACCCGGCTGGAAGTGGAAAGCAGCATGAACATCAAGCTGCTCAAGCACTTGATGAAGCGGCTGAACGTCGATGAAGGCAGCGTCTTCAGCATCAACGGCCCAATCGACTTGACCTTCCTCAAGAAGCTGCCAGGGATGGTGGAAGGCCATGAAGACCTCCGCTACAAGCCCATGCAGGCCTTTGTTGACCCGGCTTTAAGAAGTGACCACAATATTTTTGACTCAATCCGGGAAAAGGACTACCTGGTTCAGCACCCATATGACAGCTTCGACTCTGTTTTGAACTTCGTCAAGCAGGCAGCCAAGGACCCAGATGTTCTGGCCATCAAGATGACCCTGTACCGGGTTTCCGGCAACTCCCCAATCATCAAGTACCTGGGCCAGGCGGCTAAGGCCGGCAAGCAGGTGACGGTTCTGGTGGAAGTCAAGGCCCGCTTTGACGAATCAAACAACGTGCACTGGGCCAGAACCCTGGAACAGATGGGCTGCCACGTTATCTACGGGCTGGTGGGCTTGAAGACCCACACCAAGGTAACCCTGGTTATCCGCCGCGATGAAGACGGGATCCGCCGCTACCTGCACCTGGGGACTGGTAACTATAACGACGTTACCGCCCACTTCTACACTGACTTAGGCTTCTTTACCTGCGACCGGGACCTGGGCGTTGACGTGACTAACCTCTTCAACATGCTGTCCGGCTACTCCAAGCCGCCATACTTCAGCAAGCTGCGGATTTCACCAAAATTGATCCGCCAGTTCATCTATGAAAAGATCAACAACGAAATTGCCATTGCCAAGGCTGGCCGGCATGCCGAGATCCACATGAAGATGAACTCCCTGTCTGACCCGGACGTGATCGCCAAGCTCTATGAAGCTTCCGTGGCTGGGGTTAAGATCCACTTGATCGTCCGGGGGATCTGCTGCTTGAAGACGGAAATCCCAGGCGTCAGCGACAATATCGAAGTACACTCAATCGTTGGCCGCTTCCTGGAACACAGCCGGATCTACTACTTCTACAATGACGGCAAGGAAGAAGTCTACCTGGCCAGCGCCGACATGATGCGGCGGAACTTGAACCGGCGGGTGGAAACCCTCTTCCCGGTTCTGCAGGAAGACTTGCGGGAAAGAGTTTTGGACATTTTTGCCAAGATGTGGCAGGACAATGTCCAGGCCCGGATCCTGCACAAGACCGAATGGGTGCACGTTGACCGGCGGGGACAGACCCCATTCAACAGCCAGGAATACTTCATCGCTGAAGCCGCTGAAAAGGTGCGGATCGTTAAAGAAGAGGAAGAAGAAGAGAAGGCGAAGAAGAAGGACGCTTTTGAGGCGATGAAGCCGCAGGAAAGCGAATTGGAAGACGACGAAAGGTAGGCTGAAAGGACGAAAGGTAGGCTGAAAGATGGAAAAAGACCGCCACGAAATCGAAATTTTTAAAATCGATCAAATGTTTATCGGTGACAGCCAGGAAGAACTGATCAAGCAGGGAGAAGGCCGCCGTAAGGAACATCCAATTGCGGCGATCAGCACTTTCAACCCGGTCAAGCGGGACGTGTTTCAATTGATCAAGCTGACTGAGGAGAAAATGATTCCCGAGCTTTTGGGGATGCGGCACAAGCGGATGATGCAGAATCCCTTTTCCTACTTCCGGGCCACGGCTGGGATCATGGAAAAGGACCTGCGCCAGTTTCCAGACGGCCAGTCCCATATCCCGGTAATCATTTGCGGGGACTCCCACCTGACCAATTTCGGCTTCTTCGCTTCCCCGGAGCGCCATCTTTTGTTTGGCTTGAACGATTTTGACGAGGCCCGGATTGGCAACTGGGAATTTGACCTTAAGCGCCTTTTGACCAGCGTGGTTTTGATCGGCCGGATCAATGGCTATCCTAAAGAGCAGCTGGACGGGATTCTGGCAGAAAGCGTCCACTCTTACCGGCGGGGAATCAAGTACGCCAATTCCTTGCCCCTGCTTGACCGCTTTAATTTGTCTTATAGCGTTGATGACCTTTTAGGTCAAATGACGGACAATGAACAAATGAAGCGGGTTCTCTTGAAGGTAGCGGACCGGGCACCGAAGAAAAATTCTGATGCCGTGGTCAAGAAGTTTACGGAAAAGACCGAAGACGGGCGCTTGCGCTTTAAGAAAAAACCGCCCCGGGCCCGGCGTGTTTCCCAGAAGGTTTATGCCGAGCTTATGGCAGGCCTGGAAGATTACCAGAAGAGCGTAGCTGACGACATCCGGGTCCTCTTGATCAATTATGAAGTGACCGACATCATCCGCTACAGCGTGGGCGTCGGCAGCTGGGGAACCCGCTGCTATCTGGCCCTGCTCACTGGCAAGGACGGCAGCCACCTGGTCTTGCAGATCAAGGAGGCATTGCCGCTTCGCTACAACTTGTCTGCTTTGACGGTTGAGGAAAGCCAGGCCCAAGGCAAGGGGGAAGGCAAGCGGATCATTACCGCCCAGCGAGTTTTGCAGACCTACCATGATCCTTTCTTAGGGGCCATAGAAGCTGGCGGCAGAAGCTTTTACGTCCGTCAGTTCCGGGACATGAAGGACTCGATTGACCCGCTCAATCTGGACCAGGAAAGCTTCTCTGCCTACTGCAACATGTGTGCCTTCATATTTTGGCCATTGCCCACTACCAAAGCCCGACAGCGCCGATGATTTACGGCTATGTCCACAAGCAAAAAGAGCTGGACACGGGCCTGGCTCATTGGGCCGTCAAGTATGCCGACCAGATGGACGCCGACTATACCTGCTTTGCCAAATACCTGCAAGGCGAGGGAGATGAAGAATGATCAATGAAGAAATTGACCGACCTGGACCGGGTGGAACTGACCAAGCTGTCTTATGAGGCGCTGAATGTGGGCGAGACAGTTGTAGTCGCCGGCAAAAAGATCGGGCAACTGACCCGGGACGTTTACGCCAAGGACGGGATGCAGGCTTTTTTGAGCCGGACCGGGCGGATGGCCAATTACTTGAGGTATCGCCGGAATCTGCAGGCTGACTGGCAGAAGGAGTCTGACCAGCGGGCCGAACAGATCGGAGAAGAATTGTTCAACCACAGCTTTTTGCAAGATTTCAATGACCGAGATAAAAATGCAAAAGATGGTAAAGAACAATAAGACAGTTGGGCAAAAAGGCGCGTCAGTTGACGCGCTTTTTTGTTAAGAAATTGGAACTACAATTTTGTAACTAAAGGGTTGACGCTCTCACATCTTGTTGTTATTATTTTTTGATAAAAATAATATAGAGGAGCTACAATAAAAACGTCAAAATATATCTCAGTAGCACTTTTTTCAGCAACATTACTAAGCATCACTGCACCAGTAGTAACTGAGACTGTTGATGCTGCTACATTCGTACGGTATTTGAAAAATCTAAACAAAGTTCAATTAGCCAAGATGAGACTGTGGAAAATAAGTTAGCAGCTGAAGATGTTGATGCAGTGGTAGAGGTACTGAAGAGTGAATATCCTGATTTAAGTGAGGATTATCTTCGAGAGATTGTAAATAATCAACGTCATGGAAACTATAGTTTGCCATCAGAACCGCAGCCTTCGTCTACTAGAGCGCGTAGTGCTATGCTTCCCAAAAGTAGTTGGGAAAGCATTAGACTATGCAGGAAGTCCAGGATATTATATTGCTAAGTACTGGGACGCACATGACAAATACCCTAAGAATGGTCGTATTAATTTTTAATTAGGGAGAGATTTGAATGAGTAAAAAGTTGACTTTGTACCTGCTACCACCGGTACTTTTAGCAGCAATATTCATGATTGTTGATTTTGCGAGCGGCCAGCACAATTTGTGGATGTCAGCCGTTGCGACATTAGCTTGGTGGCTGTTTTCCTTTGCAAGTGACCACTTGGCTAAAGGCTGGCAAAAGGCGGTTTTTCTGGCCTGTGTTGGCTTTTTGCTCTTGGTTGCGGGCTTATGCATCTACATTAAGTTAAATTCATAAAACAGTTGTTCAAAAAGACGCGTCAGTTGACGCGCTTTTTTTGTTAAGAAATTGGAACTACATTTCAAGCAGCAGCCCAGGTATAATTTTCTTAGACGACTATAAACGTAATAGGAACAAGAGAAAAAATAGACGAGGAGCATGTAATGAAGATTGAAGAAGTGCTGGCAAAGCAGCTGCTGGCAAAAGACCCGAGCATCGAACGCTTTGAGGAAGATTTTTACGGGGACTTTTACGACTATTTTGTCAACTTTCTGAAGTTTAAGTGTCTCAGTCAAGGTAAGGACCTGGCCAGCCTGGAAAAGCAGAAACTGGTTTTGTACCTGGATTTGTTTAACTCCCAGGACTTCCCGGGCCGGAAGGCTTACCGTTACAAGTTAGTCTTTGACAGCCAGCTGAACTTTTTAGCGGCGGAGTCAGACTTCACCCTCAGCGCTCTTTGCCGGGACTTGCGGGGGCGGGTGGATCAGCTGAGCGACTACGAGGCTGTCAGAAGCCAGGCCTTAGCTTCTTTGGCAGAACGTTTTGATTCCAAGAATCCAGACCCAAATACCAGGATCCAGAACTTTAACGTTGTCCTGGCCGACCTTTACGACCGCTATAATCTCAGCCGCTTCAAGACGGCCTACCAGTTGGTCGGCTAAAACGCTTTTTTAAAAGGACGGGAATAGTTATAATTGACTTAGGAATTAAAGTTAAGGAGAAAATGCTATGCAAAAGATCGTAGTAATCGGGTCCAGCAACGTGGACACGACACTGCATGTAGAAAACTTCCCCAAGCCAGGCGAAACCATCAACGCCCACAAGGTCAGCGAGGCTGGCGGCGGCAAGGGGGGCAACCAGGCAGTCGCGGCTGCTAAGAGCGCGGCTGAGACCATCTTCATCTCTAGAGTCGGCGAAGACTCCTATGGGAGCTGGATGAAAGAGCAACTGGCCGGCTACGGGGTCAAGACTGACTATGTCTTGCCAACCGCTGGCGTTAAGACTGGCCATGCCTACATTACCTTGAACGCGGAAGGGCAAAACGACATTATCATCGACCATGGGGCCAACTACAGCTTGACTGAAGCCGACGTTTTGGCGGCTAAAGACGTCATTGAAGCTGCTGACTGCGTCATCGCCCAGCTGGAAACCCCGCTGGAAGCAACAACAGCCGCCTTCAAGCTGGCTAAGGCGGCCGGCAAGGTAACTATCTTGAACCCAGCTCCCGCGATCAAGGACCTGCCAGCTGACCTTTTGGCCGTAACTGATTTGATCACGCCAAACGAAACGGAAAGTGCCCTGTTGACTTCACTGCCAGTTGCAGAAGAGGCTGACCTGGAAAAGAACGCGGCCAAGCTGCATGAACTGGGCGTTAAACATGTGATCATCACCTACGGCAGCAAGGGGGCCTACCTGTCTTCCCCAGTCTTTACTGGTCTTGTACCAGCCTTTAAGGTCAAGGCGGTGGACACGACGGCGGCTGGCGATACCTTCTTAGGCTTTTTGGCCGGATCCTTGGCCAGCGACTTCAGCAACCTGCATGAGGCTGCCCGCTTTGCCAACCGGGCGTCGTCTTTAGCCGTGCAGAAGATGGGGGCCCAGCCTTCTATCCCGGACCGGGCCAGCGTTGCGTCTGCTTTAGCTGAGTAAAGGATGGGTGACTAGATGATTATTGCACCCTCAATTCTCAACGCGGACAACCTGCACTTAGGCCAGCAGATCCAGGAAGCAGCTGACAGCGGGATCCGCCGCTTCCATATCGACGTGATGGACGGACATTTCGTGCCCAACCTGTCATATGGTCCCCAGCTGGTCAGTGATTTTAAAAAGCAGTTCCCGGACCTGACCGCGGAAGTCCACCTCATGAGCAACAACCTGCCTGACCTTTTGCCAGCCTTTGTTAAAGCGGGCAGCGACTTTATTGAAATTCACTATGAAGCCGACTACCCAAACCTAATTGCCCACTGGTTGGACTACTTAAAGGAAAATGGCGTCTCCTGCGGGTTAGTCCTTAGTCCAGATACTGACATTAAGGTGCTGGAGCGCTACAAGGACAAGCTTGACCAGGTTCTCTTGATGACGGTCTATCCGGGCTTTGGCGGGCAGAAGTTCATGGAAGAAGCGGCAGCCCGGATCAAGGCCGCCCGGGCAATTCTGCCAGATCTTCCGATCGAAGTAGACGGCGGGATCAATGCTCAGACGGCGGAAATCGCCAAAGAGGCCGGAGCTGATGTTTTTGTGGCGGGCTCTTATATCTTCGGCCGTGACTCAGTGGCTAAGCAGGTAGCTGAGCTGACAAGCATTTTGGAAAAATAGCGGAGGCAAAAAATGGACCAAGCAAAGCAAGATGAATTGAAAAAGGCAGCTGCCAAGAAAGCAGCTGCCTTGGTGGAAGACGGGATGGTTTTAGGCGTCGGCACCGGGTCAACGGTGAAGTTCTTCATCGATGAACTGGGCAAGAAGAAAGCAGCAGGCTTGACTCTTAAGGCAGTCGTGACCACCTCCAGCCGCAGTCAAAAGCAGCTGGAAGGCTATGGCTTTACTGTCAGCCCCCTCAGTGAAGTTGACCAGGTTGATTTAACGGTTGACGGGGCCGACAGAGTGGACAAGCAGTTAAACGGGATCAAGGGAGGCGGGGCCGCCTTGACCTTGGAAAAGAACGTGGCCGTCAACTCCAAGAAGAATGTCTGGATCGTAGACGAAAGCAAGGTGGTTGACCACCTCAGCGGCTTTGCCCTGCCAGTGGAAGTTTTGCCGATCTCCTGCATGCAGGTGGAAAAGCGCCTGGCAGATGAAGGGCTTAAGCCGGAATTCCGTTTAACGGAAGATGGTCAGCGCCTTAAGACCCACTATGGCAACTACATTCTGGACCTCAAGCTGGACCGGATTCCGGTGCCAAGTGGTCTGGCTGACTACCTGGACCATACGGTCGGGGTAGTTGAGCACGGCCTCTTTTTAAACATCTGCGACCAGGTCATCATCGCCCGCGACAACGGGGAGATTGAAGTCCGCAGCCGCTAAAGAAATTTTTTGGAAAAGAAGCAACCACTTCTTTTCTTTTTATTTGCCGGGTGAAATGATAGAATAAAGCTATTCTGAATAATGGAGAACGATTAATGAACAAGAAACCTTTAATTATTTCAACTGATCCCGGGATCGATGACGCGGTCTGCCTAACGATCGCCCTGTTCGCCAAGGAACTGGACGTGAAGCTGATCGTGCCAACCTGGGGCAACGTTTCTTTGGAGAAGACTTTGAACAACACCCTGCGCTTGCAGGCCTTCCTGGGCACTAAGGTCCCAGTTGTGGCCGGGGCCAAGCTGCCTTTGGTCAAGGAAGCCATCGATGCTTCTGAAGTCCACGGGGCCAGCGGGATGGACGGCTTTGACTTCCCGGAAGCTGACCAGAGCCTTTTGGTAGAAGGCTTAGCCGCGACCAAGATCCACGAAGTAGTCAGCCAAAGCCCGGAAAAGGTGACCTTGATGCAGATCGGGCCAGCCACGGACTTTGCCCTTTACTTCCGCCAATACCCGGAAGACCTGGACAAGATCGACCGCCTTTACATCATGGGTGGGGCCCTGGGCCGGGGCAACTACGGTCCTTACGACGAATATAACGTTTCCGGGGACCCGGAAGCAGCCAAGATCGTCTTTGACTTGGGCGCCAAGGGCCTGGACATCTACGTGGCTCCTTTGGAAGTCGGCAACCAGGCCTTCGTTGACGCGGCCAGCCTTGAAGAAATCAAGGCTTTGGGCCGGGTCGGGGAAATGATCTACGGGCTCAACTCCCAATATGAATTAAACGACGCTGACGCCGATGCTGGCAAGCGGATCTATGACGCCTTGACGGCTGCCATGCTGCTGGAGCCGGACCTGTTTGAAGTCAAGGAAGCTTACGTGGCGGTAGACACCAAGGGTCCTTACACTTACGGGGCTTCAGTCATGGACTTTGAAGGCTTCTTTGGCAAAAAGGCCAACGCCAAGATCGCGGTCAAGGTTGACCGCCAGCCCTTCAAGAACTGGCTCTTGGCCGCAATCGCGCAAGCAAAGTAGGTGGCTGAATGGCTGATTATGTTTACCGGACGGTCATGCATGACATCAAACGCCGGATTTTAGCGGGCGAATATGAGGGGATGCGGCTGCCCGACGAGTGCAGCCTGGCCGAACAGTATCAGGTCAGCCGGTCGTCGATGAAGCGGGCTCTGGAACTTCTTGCCCAGCATGGCATCGTTTTTAAGAAGCGGGGCAGCGGGACTTTTATCAACCCCTTGTACTTGAAGAACCAGGCCATGTTCCGTTATGAAGGGTCCAACCTGGGTCTGACGGACAGCTTTTTAGCGCCAGGCAAGAAGCAGGGGATTAAGCTGCTGGAATTCAAGGTGGTCAAGGCCAGCCCGGAAACGGCCCAGGACCTCTTCTTGAGTGAAAATGACTTTGTCTACCAGTTCAAGCGCCTCCGCCTTTTGGACGGCCAGCCTTTCTTGATTGAAGAAGGCTTCGTGCCGATCAAGATCCTGCCGGAGCTTAAAGAAGAGATTCTGCAGGGGTCCTTGTTCAATTACCTGGAAGACGCGCAAAACAAGGCGGTCACCCGGTCTTATTTGACCATTACGGTTTCCCCTTCAAGCGCAGAAGACCAAGAAGCGCTGCAGCTCAAGGCCACTGAGCCGGTTGGCGTGATGGACGGGATCTTCTTTTTGGATGACGGCACGCCATTTGAAGTCTCCAGCATGCGGGTTCACTACAAGTACATGCGCTTCAACAGCTTTGTCAATTTGAATTAAGAGTAAATAAAACGGACAGGCATACCTGTCCGTTTTACTTTTCACTTTTTCTATCTTTTCTATCTTTTGTCTTTTCTTCTTTGCAAAGTATTTTAAGGATTTGTAAAATTGGTAGGATCCAATTACCATATTGATTGACTTGCTTTTTGTAAATTGTATGATTGAAACAAGTAAAACAGAGAGTTCCTCAAAGGAGTACAAAGATGACAGCAGATTACGATTCAAAAGAATACTTAAAGAGCGTCGACGCTTGGTGGCGGGCCGCCAACTACTTGTCAGTCGGCCAGTTGTTCCTGCTCAAGAACCCCTTGCTTAAGGAAGAACTGACGGCAGACGACGTCAAGATCAAGCCGGTTGGCCACTGGGGCACGATCGCGCCGCAGAACTTTATCTACGCCCACTTAAACCGGGTTATCAAGAAGTATGACTTGAACATGTTCTACATCGAAGGTTCCGGTCACGGCGGCCAGGTGATGGTTTCCAACTCATACCTGGACGGGTCTTACTCTGAAATCTACCCGGAAATCAGCCAAGACGAAGCCGGGATGACCAAGCTCTTCAAGCGCTTCAGCTTCCCGGGCGGGGTAGCTTCCCACGCGGCTCCGGAAACCCCGGGTTCAATCCATGAAGGCGGGGAACTGGGCTACACTTTGTCGCACGCGACTGGCGCGATTCTGGACAACCCGGACGTGATTGCCGCCGCTGAAATTGGTGACGGGGAAGCTGAAACCGGCCCGCTGGCTGCTGGCTGGTTCTCCAACCGCTTCATCGACCCGGTCAAGGACGGGGCTGTCTTGCCAATCCTGCAGGTTAACGGCTTTAAGATTTCCAACCCAACCATTACTGCCCGCATGAGCGATGAAGAACTGACTAAGTACTTTGAAGGCATGGGCTGGAAGCCTTACTTTGTTTCAACTTTCAAGGGCGGCCGCTTTGACGGGATGAAGGATATTGACCAGATCCATGAGGAAATGGCCAAGACCCTGGATGCCATCATTGAAGACATCAAGGCTATTCAAAAGAATGCCCGTGAAAACGGCGATAAATCATTTGCCCACTGGCCGCTCTTGATCTTCCAATGCCCGAAGGGTTGGACTGGTCCTAAGACCGATTTGGACGGCAACCCAATTGAAAACTCCTTCCGGGCCCACCAGATTCCGCTTCCGGTTGACCAGAAGCACATGGACCACAAGGAACTGTTGCTGGACTGGCTGAAGAGCTACAAGCCGGAAGAACTGTTTGACGAAACCGGCTACCCGACTGACTTAGTCCTGCAAAACGCGGTTCATGGTGACCAAAGAATGGCTATGAACCCAGTAACTAACGGGGGGATCAATCCTAAGCGCTTGAATCTGCCAGACTGGCGCGACTTTGCCTTTGAAGTTGGCAAGCCGGGCTCCAAGGACGCCCAGGATATGGTGGAATGGGCCAAGTACCTGACCAAGGTGGCAGAACTGAACCCGACTACTTTCCGGGGCTTTGGCCCGGACGAATCCAAGTCCAACCGCTTGTTTGACTTCCTGGACAGCGAAAAGCGGCAATGGGAAAGTGAAATCCACGAACCAAACGATGAAAACCTGGCCGCGCAAGGCCGTTTGATTGACTCACAATTGTCAGAGCACCAAGATGAAGGGATGCTGGAAGGCTACGTTTTGACTGGCCGCCACGGCTTCTTCGCTACTTACGAAGCCTTTGGCCGGGTGGTTGACTCCATGCTGACCCAGCACATGAAGTGGCTGCGGAAGGCTAAGGAACAATACTGGCGCCGCGATTACCCATCATTGAACTTTGTAGCTACGTCAACTGTCTTCCAGCAGGACCACAACGGCTACACCCACCAGGATCCAGGTCTTTTGACCCATTTGTTTGAAAAGAACCGGCCGGACATGATTCATGAATACCTGCCAGCTGACACCAACACTTTGTTGGCTGTAGCTGATAAGGCCTTCCGTGACCGGGAAGGGATCAACCTGCTGGTAACTTCCAAGCAGGAACGGCCGCAATGGTTCACTCCTGAAGAAGCTGCCAAGCTGGTTGACAAGGGCCTGGGCTACATCGACTGGGCTTCAACTGACAAGGATGCCAAGCCGGACGTGGTCTTCGCTTCAACTGAAACTGAACCGACCATGGAAACCCTGGCAGCGATCGACATCCTGCACCAGAACTTCCCAGACTTGAAGATCCGCTACATCAATGTGGTTGACGTGATGAAGCTGATGGCGCCAAAGGATAACCCAGCTGCTATTTCCCAAGAGGAATTCGACCGCCTCTTCCCAACTGACGTGCCAACCATTTTTGCATGGCATGGCTACAAGACCATGATGGAATCCATCTGGTTTGCCCGCAAGCGTTACAACGTTTCAATTCACTGCTATGAAGAAAATGGTGACATTACCACGGCATTTGACATGCGGGTCTTGAACCACCTTGACCGTTTCGACCTGGCCAAGGACGCGGTTGAACAAATCCCAGCCTTGAAGGACAAGAGTGCTGCCTTCATCGACAAGATGGACAGCCTGCTGTCTAAGCACCACGCTTACATCCGGGACCACGGTGAAGACATTCCAGAAGTAACTTCTTGGAAGTGGACTGGCCTGGACAAGTAAGAGTATATATAATTCCAAAAAAAAATATTAAATTGTCGTTCCGCGAGGGACGGCATTTTTCTTTTGGCTAGCTAAAAAAGCGAAAACATGGTAAAATAGGTTCTGAACAAGATAGCTATATTCTTATTTAAAGCTTTGAATAAGGAGTAGCAGCGGATCTGGCATCTCGATGGAAGGATGCAATTACATAGTAGCTATTGGTGCGGAAAATATTAAATTGCAACGGGAGAACCTAACATGATGCAGATTATAAAAAAATCCAGAGTTTTTTGATGGCTGCAGTGTTGATCCTGCAGTTTATTCTGCTTCCGCTGGCAGAGGTGGGCCGGGCGTCCGCCAGTGAGGTCAGCGACCAGCTTGTCTCTCCATGCAAGGGCAGACAGAGCTTACTGGTAAAGATAAGAATGAGTCCTTGAATATTTGAAGCTGGGCGGACAGGAAACGCTCACGCTCAAGCGGACGAAAGACGAGGCCGACCTGGATGTGAAAATCAGCCTGCCAGACCTGGTGAACTTGGATAAAACCGCCACGGACAAGGCCAATGAAGAATTGAAGATTGACAAGGCCGAGGAGGCCGTCAAGGAAGTTGCCGCTTCTGAAAAAGAAGGCCGGCATCTTTTGCTGCACTTTGCCAAGGGCCAGAGCCAGCTGAAGCTTTCCCTGGATCCCGGCCGCTACTACATCAGAGAACTGACCAAGCCGGGAGTGACGGTCCAGCCGCTGTTATTGTCTTTGCCTAGAAACGGCAGCAACCAGCTGACGGTCTACTTAAAGACTGAAGCAGTAACTGGCCAGGTCCAGCTGACCAAACTGGGCTACGCCAGTGCCTCAGCTAAGGGGAAAGCCTTAGCTGGAGTCAGTTTCTACCTTTATCTAGAAGGCAACAGCCTTCCCTTAAGAGTGGATGCCCTAGGCAAGCTGTCAACGGATTACCGGGATTCCCGTCTCCTTTTCACTGACCTGCCCTGAAAAAAGGGGGACGTCTTCTACGTCCACAATCTGGGTCAGACCCTGGCCTACAAGGTGGACCAGATTAAGGTTATCAAGCCAACCCAGGTCGACCAGCTCAAGATTGTCAAGGGCAGGGACCTCTGCACCTTGATGACCTGCAACTCCTTACATGATCAACACCTACCGCCTGCTGGTCACCGGATTCCTTACAATCCAAAGGCCGAAGCCAAGGCTAAGGAGAGAAGTCGGAACCGCCTAATTTGGATTATCATAGCCATCCTTTTACCGGTCTTGGCGATCATCATCTTCATCTGGCACAAGAAGCGGAAGAAGAAGACGGCTAAGGCAGACAAGGAAAAAGAACAAGAATAAGCAGGCAAAACGGTCCGTCCGGATTTTCCCGGACAGCCCGTTTAATATTTTTCGGGATTAATGTAGTTTATGAAAAAAACTCTGCAAATGATGATAGAATAAAGGTAGATAGTTCAATTGGAGTAATAGGTGAATTACAGTGATGACAACACAAATCTGGATTAATTTACTAGCAATCGGTGTGATCTTTGTTTTTGCCTCCTTCTTTGTCGCGGCGGAGTTTGCCTTGGTGCAAGTCCGGCCCAGCCAGTTGGAGGACATGATCGCCAACGGGCAGGGGAACGTGAAGAAACTTAAGCGGGCCCTGCACATGTCGCATAATTTAAATGAGTACCTGTCAACCACCCAGGTCGGGATCACCTTGGTCGGGGTTATCCTGGGCTGGTTCGGGGCGGACACCATCGCCAACATTTTTGAAAGGCTGCTGGCCTTGACCCCCATGTCCAAAAATCTGGTCAACTCAGTCGGAGCCTTGATCGGGGTCATTACCTTGACCTACTTGGAAGTGGTTTTGACGGAAGTCGTGCCGAAAAATATCGCCATCGATGCTCCGGTTAAGATACTGATGTGGATCGTCAATCCCCTCCAGCTCTTCCACACCTTGGTTTATCCCTTTGTCTGGCTTTTGAACGTCAGCTCCTCTGGCATCATAAAGATGCTGGGCTTTAACCCGGCCGATGAAGAAAACCAGGTCTATTCCCAGTCAGAGATCATCCGCTTGAGCAAGAACGCGGTGCATGGCGGGGCTCTGGACAAGGAAGACTTGACCTATATGGAAAGAGCCTTCCAGCTGAACGACAAGACGGCTAAGGACATCATGACTGACCGGACCCGGCTGACAGTTTTAGATGCCAGCGAAAACATCAAGACTGCCCTGGACAAGTATCTGGAAGACGGCTACAGCCGCTTCCCGGTCGTGCGGGAAAATGACAAAGATGATGTGGTCGGCTATGTCTACGCTTATGACATTGTTCAGCAGAGCCGGATTGACGACCGGGTACCAGTAACCAGGATCAACCGGACCATCATTACCGTGCCGGAATCTATGCCTATCCAGGACATCCTCCGCTTGATGATCAGCAAGCACACTCCAATCGTGTTGGTTGTCGACGAATACGGCGGCACCAGCGGGATCGTGACTGACAAGGATATTTACGAAGAGCTCTTCGGGTCAGTTAAGGATGAAATCGACGACGTTTCTGATGACTACATTATCAAGGACGCCGAAGGCAATATCCGGGTTTCCGGCAAGACCACCCTTTATGACTTTGAGCGCTACTTCCACCAGAACCTCAAGAGCTTCCAGAACAGTGACATCATCACTATCGGCGGGTATATGATGGAACGGTATCCCGACTTGAAGAAGGAAGAGTCAATAGAACTGGAAGGCTTCCGCTTCACCTTGGACGATATCCAGCAAGGTTTCATGCGCTGGTTCATCGTTGAAGGGCCAAAGACAAACGATCAAGCCAAAAAAGAAGAATAAGATTCAGAAAAAAAGAACGTTTTTTAGGCAAAAGCCGTTCTTTTTTGTTAAAATAATGGTATAATCTTGATGTATCATTTTGAAAGCAATTAGTAATCGAGGAAACCTAATGAAAAGTATTCATGACGCTGTTGATCACAAGTTGTACAGCGAAGAAGACATCGCGGAAATGACCAAGCGGCTTGGCCAGCAATTGACCAAGGACTACGCTGGCAAGCGGGTCCTGGTTGTCGGTGCCTTGAAGGGGGCTATCTTCTTCCTGACTGACCTCCTGCGGGAAATGGACCTGGCTTGCGATATTGACTTCATCGATGTTTCCAGCTACGGTAACGGGACTGAATCCAGCGGCAAGATCACGGTAACCCATGACCTGGAAGCTGACGTGACTGGCCGGGACGTTTTGATCGTCGAAGACATCGTGGACACTGGTTTGACTTTGAAGTTCATGAAGGACGAACTGCTCAGCCGCGGCGCCAACTCAGTTAAGTGCTGCGTCTTGCTGAACAAGACGGCCCGCCGGACGACTGAAGTAGATGTTGAATACTACGGCACCCACGTGGGCAACGAATTCGTCATCGGCTACGGGATGGACTTTGCGGGTCTTTACCGGAACCTGCCTTACATCGGCGTCATCAAGCCAGAAGTCGTTGAAGAATTCAGCAAGCACGAACACGACTAATTTTTCCTAAAAGAAAATGGATCATCCAGACGGATGGTCCATTTTTGCTTGATTTTCTTTTGTCTGTTATTTTCTTTTGCCCTAATGAAGCTTTTTCCAGTAGTAGACCGGCAGGCCCAGGAGGGTGATGCCCAGGCCAATCATGGAGAGGGCAAACTGGTTGATGACGGTCATCACGATGATGAAGAGACCCACGATGATGGAAATCAAGGGAATGACCGGGTAAGCCGGCGTCATGAAAGGCCGGGCCAGGTCCGGCTCTCTTTTTCTCAGCAAAATGACGGCCACTGACAGGAGGGTGGTGAAGGTCCACATGACGAAAACCAGCATGTCGGTCAAGATTTCGAAGTTACCTAGGGAGATCATGATCAAAGCGATGGCATTGACCAAAAGGGCGGAGAAGACCGGGACTCCGCTTCTGACAGAAGTCTTGGCCAATTTCTCAGAGCCGGGCAGGCGGTTGGCCTGGGCCAGGATATATGGCGTCCGCATCCCCGTCAGCATAAAGCCGTTGCAGGCTCCGTAAACCGACAAGAGAATGCCGACCGTGACGTTTTTTCCCCCGGCCTGGCCAAAGAGCTTAAGAGAAGCGTAGTAGGCGGTATTGTCGTTGCCGATGATCTTGTCAAAAGGCAAAACCGCCATAAAGGCGTAATTGACCAGGACGTAAACGACCGTGACCAAGGAGAGGCCAAGGATGATGGCCCGAGCCAGGTCCTTTTTCGGATTCTTCATTTCCTTAGCCAGGTTGGTCACCACGATCCAGCCTTCAAAGGCAAAGAGGGCAGACAAGAGCCCCTGGCTGATCCCGGCCAGCCAGCCGCCACTGCTATCCACCGTAACTGGCCAGAGACTGACGGAGACTTGCGGGCGGATGATTGCAAAGACGATGATCAAAAAGAGGGGGATGAGCTTGATGACCGTGATCACCGACTGCATCCAGGCTGAAGCCTTGGTCCCCAGCATATTGATCAAAAAGAGCAAAAGAACCACGCCGGCAGCGATCCACTTGCTGCTGGAGGCCGGCAGGCCCGCCAGGACCACGAACTGCTGGCCGAAAATTGAAGCTAAAGCCGCGATCTGAGCGGGGAAGTAGACAGTCATTTCCGCCCAGCCGAAGAGAAAGCCCCAGATACTGCCATAGCTGTAGTCCAGGTATTCAATGGCCCCGTTGACATTCAAGGCGGCCGCGATTTCTGACACGGTCAAGCCCGAGCAGATCGAGATGACTCCGGCTAAAAGCCAAACTAAGATGGTGGCTGAGGCCGACCCGGTGCTTTGGGAGATGCTGCCGATCTTAAAGAAGACCCCGGCCCCGATGACTGAGCCGATAACGGTTGCCAGCGCATGGCCAAAAGAAATCTGTTTTTTCACTAAACCCTCCAGTAAAACAAATCTAACCCTTAAATTATACAATAAATCTTTCTGCTTGGTCTAGGCGGATTTCTCGGCTAAAATGGTAGAAGGAGGTTTTGGGAGATGGGGCAAAAAAAGCATTTCCAGCATCCGGCGACACTGCCGGCCCTTTTGATTCTGCTGGCCGCGATTATCAGCCTTTTGGCATATGGCCTGTACAATTATACCAGCCAGACGACCCTGCCAAAAGGAGCCAGCCAAAGCGCGGTCGGCCTGAAGGTCAGCCAGGCAGATTTTGACCTCAGCCGCCTGGAAAAGGGCGGCTTGTCTTTCGTTTATCTGCCGGTTGACCAGAATTTTGCCGCCAGGCGCGAGCAGGTGGCCAAGACCAAATTGGCCTATGGCAGCATCATTGAGGTGCAAGGGGAGAAAAATGCGGCAAAGCAATTATCCCGGGCGAAGCGCCTGGCGGCTGGGCATTGGGGGGCCTTGCCCATCCTGCTGGACAGCGGGCAAGATGACCCCAGCGCCGCTAATTTAACGGCGATGAGCAAGATGGCCTATTCCCTGGTCAAGAGTCATGAGATTATGGTCAACGCTCCGGTCAAGTACAAGAAGCTTTTTCCAGCGGGATGCAAGTTCCTGGCTACCTCGGCGTCAGCGCCAAGCAAGCTGGACTACTGCTTCTGGCGCTATACGGAAAAGGGCCACGTGGCCGGAGTCAGCGGGATCGGCTGCAAGAATGTCATGTATGCCTATATCGGGACCAGCCAGCAATATAAAGAAAAGTATGGACAATTAGCACAATGATTTACACAGAACAAATTCAAGCAGTTTTGCAAAAGGAAGGCAAGAGCCAGCCAACCTTGATCCAGAGAGAGACTTATGAGGCCATTAAGAATGGAGCCAGCCTGGTCGCTTTGGCCAAGACAGGGACAGGCAAGACCCTAGCCTATGCCCTGCCGGCTTTAGAGCGGGTCATCCCGGGGGAGAAAAATTCCCTGGTGATTTTGGCCCCAACGACTGAACTGGCCGTCCAGATCAGAAATGCCATCCTGCCTTTTGCCAAGGCCCTGGGTCTGAAGACTTTAGCCTTGGTTGGGGCCGGCAACCGGCAAAGACAGGACGAACGGCTGAAGAAGGACAATTGTGAGGTCCTGGTCTGCACTCCGGGCCGCTTCTTTGACTTCTTCTCCTCGGGCCGGATTAAACTGGTTCAGATTAAGACCCTGGTAATCGATGAAGCTGACGACATTTTGGAATTCGCCAAGCTGGAGCTTTTGAGTTCTTTAGGGCAGAACCTGCCTTCTTCCAGCCAGATCCTCCTCTTTGGGGCCACTGAATCCCAGATTACCCAAGAGGCGGAAGAAATTTTTGCCCGCCACTTCCTTTTAGTCGACGTCCGCCCCGACCAGGGCAGCCAGACTGAACACGTCTTTTTGCAGGTGGACAATAAGCACAAGCTGGAATACCTGCAGCGCTTGTGCAAGCTGGACGGCTTCCGGGGCCTGCTCTTCTTTGACTCAAATGAGGGAATGCTGCGCTTTGCCAGAATTTTTGCCCACAGCAAGACCCGCTTTGAAGTTTTGGCCAATAATTTCTCAAAAGACAAGCGCCAGCAGGCCATCCGGGACCTGGCCAAGGGGAAGGTCAAGCTGCTCTTGGCCACTGACCTGGCGGCCCGGGGCTTGGACATTCCAAAACTAACCTATGTGGTTAACTACGAAATCCCGACTGATGCCAACACCTACATGCACCGGGCAGGCCGGACCGGCCGGATGCAGCAGGAAGGCAAGGTGGTGTCTCTGGGTAACGACCACGACCTGCGCAAGCTGAAGAAGCTTTTGGAAGGGGAAGTGACCGTCGACCGGGTCTACTTTGCCGGCTACCACTTGAGTAAAGAAAAGCCGGTCAAGAAGGAAAAGGCTGAAGACAAAGACAAGCCAGCTGTAATTGAGCAGCCAGTTAAGAAGAAAAAGAAGTCCAAGAAGAAAAATAAGAACAAGGGTTATCACCCGCATTATCTGAAGAGGAAGAAGCAAAGTGAATAGCGTGATTGACTGGCTGGAGCGGCACCTGATGCCCTTGGCCAATAATCTGGCCTCGGTCCGCTGGCTGGTGGCCCTCAGGGATGCTTTTATTTCCACCCTGCCGATCAGTTTGACCGGGTCGGTGGCGGTTTTAATCAAGAGCCTCATCATTACCGCCAACCGCAACTGGGGCTGGCATGTTTTTTGCCAGCTCATGCAGCCATCGATCTCCATCTGCAACTTCGTCTGGCGGGGGAGCGTGGCCATGTTTGCCCTCTTCTTCGTCCTCAGCTGGGGCTACCAATTGGCCAAGGCCCGTGAGGTGGACCCCTTGGCCGGGGCGATGACGGCTCTTTGTTCTTTCATGATGAGCATTGCCAACTATTCCTACCTCATGCAGGGGAATAAGCGGATTAAGCTGGACCAGGCTTTTAACATCAAGCAGCTGTCAACGACAGGGATGTTTACGGCCATTCTTTTTGGCGGCCTGGGCGTGGCCCTGTACATCCTGGGGGTCAAGGCTCGGCTGGGCCTGCATATCCAGACGGCCATGCCCCCGGCCCAGATCGCGGCCTTTGAAGCAGCGATCCCGGTCATGCTGGCCCTCTTTATCGTGGGCGGGCTGAACTATCTCTTCCAGACCATTACCGGCCAGTATTTTGGCGACTGGCTCTTAGAGATCATCCAGCTGCCACTTTTGAAACTGGGCCAGGGCTTTATCATGGTGATTGCTATTACGGCTTTGACCCAGCTCTTCTGGTTCTTCGGGATCAATGGGGCCAGTGCCTTAGCTCCGGTTGTCGGGTCGATCTGGGCTACGGCCCAAAACGCCAACCTTTTGGCGGCGGCTAACGGCCACAAGATCCCGTATTTGTGGACCAATACTTCTTTTGTGGTCTTTGGCGTCAATGGGGTCTGCCTGCCTTTAGTCATCGCGATTTTGCTGACCTCCAAGCGGGGGGACCATCGGACTTTGGCCAAGGTGGCCCTAGCTCCGGCTGTCTTCAACGTCAATGAGCCCATGCTCTACGGGCTGCCGATCATCTTGAACCCGGTCTGCTTTTTGCCCTTTACCCTGGCTCCTTTAGCCAATGTTTCCTTGGCTTATCTGGCGACCAAGCTGGGCTGGATCAACCGGGTCCAGGCTTCGGTGCCTAATATCATGCCCCCGGTCATCGGCCCTTATCTGGCCACTAACTATGACTGGCGGGCCCTGGTCTTGTTCTTGGTCAACCTGGTCATCGCGGTCTTGATTTGGCTGCCCTTTGTCAAGGCTGCTGACCAGATTGGGCAGACGGATGAACCCCGCCGCTTTTTCATGCCGCAATACTAATGATTTAAGCGAAAGCACTAGCTTTTTCAACACATTTTTTGTAGAATAAAATGTGTTGTATGGCCCGGTAGCTCAGTTGGATAGAGCACTGGTTTCCTAAACCAGGTTGTCGCGAGTTCAAATCTCGCCCGGGTCATATCTGCCCCTCACGGAAGTGGGGGGGTTTCTTTTTGCCTTTTGCTGCTTTTTTATACTTTTTTCCGCCTTAGCTTATTGCTCTTTGCTTTTAATTTTGGTAAAAAAGGCTGGTTTTTAACAAAAATTTAAAGAAAATAAAGTATCCAGAAAAAGAAAGCGGATTTTTGCTTTTTCAATAAGAAAATTATGAAAGTGTTGACAAAAAAGCATTGCAAAGTCCGGGAGCTTCCTCTATGATTCAAGGCATCAGTTTATGAGAGATACATTAAATGTTATTAGATACCTCATAATCTGTGTCAATGTAATTATAATTTTCTACCGTTAGGAGGCGGAGACTATATGTCTGAAACAACTCAAACAAAAGAAACAGTTGGATCATTTACGATGAAAGTCCTTAATGGTTCAGCGACTGCCATTATCGTGTCACTTTTACCAAGTGCCATTTTGTCAACCTTCTTGACTCCCTTTGCAGGAAGCAACGCGATTGTGGCCAATCTTTTGCACATTGTGACCGTCTTCCAATACTTCTTTGCCGTAATGTGCGGCTTCTCAACCGCCAAGCAGTTCAACCTGGGCTATACTGAAGCAGCCTGTGTGGGCGGGGCAGCCTTCCTGGGCTCCGGCTGTATGACCGCGGTAACTACCACGGTTAAGGGCGTAACTACCACCAGCTTCCAATTAGCTGGGATGGGGGACGTTATCAACACCATGCTGACGGCAGCCGTTGCTGTTCTCTTCATCAAGTGGGTCGGCAACCGTTTCGGCTCACTGGGGATCGTCTTCTTCCCAATCCTGGCCGGGACTGGCGTCGGTTTCCTGGGCAGCTTGATCAAGCCTTACGTATCCCTGGTAACCACGGCCATCGGTGACGTGATCAACACCTTCACCAAGCTGGCTCCATACTCAATGTGTATCTTGATCGCCATGTCCTTCGCGATCATCATCGTTACCCCGCTGTCAACTGTAGCCATCTCCGTGGCCATCGGCCTGGCCGGCATGGGTTCTGCCGCAGCTGGTTTCGGTCTGGCAAGTACCGCTGCCTTCCTTTTCTGGGCAACCCTGAAGGTTGACAAGCCAGGTGTGCAAGTTGCCATCTTCTTAGGCGTTATCAAGATGATGATGCCAAACTTCCTGAGATACCCAGTGATCGGGATTCCGATCGCTTTAACAGCGGCTATCTCAACTCTCTCCGTGCCAATCCTTGGCATGCAGGGGACCCCGGCTTCCGGTGGTTTCGGCCTGATCGGGGCGGTTTCTCCTTTAGCAGCCTACAATGCCGGCTTCTACAACGTGCTGGTGCTGGTCATCGTCTGGGTAGTCGTGCCATTCGCGGTTGGCTACCTGATGAAGAAGATCTTCGTTGACTGGACCAAGATCTACAAGCCGGAATACTTCATCAGTCCGGCCCGTTAATTGTCATTAAAATACTCCTTAATCTATTCCAATAAACCATATTTTTCCTCAGATAGTTCAAGTCCGCGGCTGAAGCTTTGTCAGCCGCGGCTTTTTCGTCTTCCTTGACAAAAAATAATATTATTAGTAGGCTAAAGTAGTCAATTGTTAAGGAACCTTTAAATTCAGTCCCGTGAGGCTGACAAGGACATTTCTGTTCCGGGTTCCAGTATTTGAAAAGGAAGATTTCTTTTGAAAGAAGACAAGACATTCCGGAACCCTGAAGCGGTTTTGGACGTCCAGGACAAGCCGAAGTTCGGTCCCTGGCTGCTGCTCTCAATCCAGCACCTCTTTACCATGTTCGGTTCGACCGTTCTGGTTCCGCTTTTAATCGGCTTAAAGCCAAGCATCGCCCTCTTCTGTTCAGGGGTGGGGACCTTGGTCTACATCCTCTGCACCCAGGCGAAGATCCCAGCCTACCTGGGCTCATCTTTTGCCTTTATCGCTACTATGCAGGCCTTGATGAAAAATTACGGCTACCCGGCCGTAGGGCAGGGGGCCATCGCGGCTGGTCTGGTCTACGTCATCGTGGCCCTCTTGATTGCCCGCTTCGGTTCCCGCTGGCTGGACAAGATCCTGCCGCCAATCGTGGTTGGCCCGATCATCATCGTTATTGGCCTGTCACTAGCGACGACCGCGGCTAACGACGCCATGTTCAACGCCAGCGGCAAGTACAGCTTGACTTACTTCGGGGTAGCGATTTTTACCCTGGTTATTACCATTATCTTCAACATGTTTTTGAAGGGCTTCCCGAGCATGATCCCGGTTTTGCTGGGGATCATCTGCGGCTACCTCATGGCCCTCTTCTGCGGGATCGTTGACCTGTCCGGCGTTGAAAGCGCCAAGTGGTTCTCTTTGCCCGCCTTTGATGTTTTAGGCGTCAGTTACAAGTTCAAGTGGTATCCGGCCGCCATCATCACTATGGCGCCAATTGCTTTTGTTACTATGACTGAGCACATGGGCCACATCATGGTCTTAAACAAATTGACCAAGCGGAACTTCTTTGAAGACCCGGGCCTGCACCGGACCCTGCTGGGCGACGGTCTTTCTAGCATCATTGCCGGCTTTTTAGGCGGCCCGCCAACCACCTCCTACGGGGAAAACATCGGCGTTTTGGCCATGACCAAGGTTCACAGCGTCTTCGTCTTGGGTGGGGCAGCCTTTTTTGCCATCGTCTTCTCCTTCGTCGGAAAGGTGTCAGCGGTGATCGAATCCATCCCAACTCCGGTTATCGGGGGGATCTCCTTCCTACTCTTCGGGATGATCGCGGCCAACGGCCTGCGGATCCTGGTTGACAACAAGGTCGACTTTGAAAAGAAGCGGAACCTGGTCATCGCTTCCGTCATCCTGGTTATCGGGATTGGGGGCACCTACCTCAAGATCGGCTCATTCCAGCTGACTAGCATCGCTTTGGCTACGGTCTTCGGGATTCTCTTGAACCCGATCTTGCCGGAAAAGGCAGCCAGCGAACAATAGAACTTTTGCAAATAGCTTTCCATAATTGCATGGAAGGCTATTTTTTATTTAAAAAGCTGCCTTTTGGGTTTAAGATAGGTAAGTAACAAAGAACAAACAGAGGGATTTTTTGATGAACAATTTACCAGAAGAATTAGCAAAAATTGTTAAGGAAGTCGACGAGCAGATCGCCGGCCGCCTGCATGAAATCGACGAACAGGTTATTTACAACCAGGCCAAGGTCCTGGAAGCCTTCGTGGACAATGCGGTCGCTGAATCTGACTTGAAGGGGACCAACGGCTACGGGGACGACGATGAAGGCCGGGACAAGCTGGAGCGGGTCTACGCCCAGGTCTTCCACACTGAAGACGCCCTGGTGCGGCCGCAATTCGTTTCCGGGACCCACACCCTGGCAACCGCCCTTGACGGCAACCTGGTGCCAGGCGACACTTTGACTTACCTGACGGGGATGCCTTACGACACCCTGCAGCACGCTATCGGCCTTACCCCAGACAAGGCCGGCACCTTGATTGAAAAGGGGGTCAAGTTCTCCTATGTGCCGCTAAAAGAAGACGGCAGCGTCGACTTTGAAGATGGGGAAAAGATCTTAAAGCGGGACCAGCCGAAGATCGTGGCTATTCAGCGGTCCCGGGGTTACGACACCCGGGAAAGCTTCCCGGTTGCCAAGGTCAAGGAAATGATCGACTTTATCAAGGAAGTCAGTCCCCAGTCTTTGATCTTCGTTGACAACTGCTACGGAGAGTTTTCGGAAAAGCATGAGCCGACTGAATATGGGGCCGACTTCATGGCCGGTTCTTTGATCAAGAATGCCGGGGGCGGGATTGCCCAGACTGGTGGCTACATCGTCGGCAGAAAAGACTTGATCCACCGGGCAGCCAGCCGGCTTTTTGCCCCGGGGATCAGCGACTCAGAAGGGCCAACCTTAAACAGCCTGCATGAGTTCTACGAAGGCTTCTTCCTGGCGCCAAACGTGACCGGGGAAGCCATCAAGGGGATGATCTACTCAGCCGCCTTGATGGAAAAGCTGGGCTTCGACGTGTCTCCTAAGTGGGATGCCCCGCGGACTGACCTGATCGAACTGATCACCTTCAACGACAAGGAAAAGATGATCAAGTTCTGCCAGGAAGTGCAGAAGAACTCACCGGTTGACTCCTTTGTTACCCCAATTCCAAGCCACATGCGGGGCTACGAAGATGAAGTCATTATGGCCGGGGGGACCTTTGTCTCCGGGTCAACGGTTGAATTCTCAGCTGACGGCCCGATCCGTCCGCCTTACGCTGTCTACATGCAGGGCGGTTTGACCTACGCCCATGACAAGATCGCCGTGACCAACGCGGTCAAGTCAGTTCTCTTTGGCGACTAAGGGAAAAAGAAAAAATAAAGAAAATAGTTCAGAAGATATAGAAAAAACGTTGACACAATCTCGTGTCAACGTTTTTTGTCAGCTTAAGATTCTTTAAGGACTTCAGCCCAGACTTCGCCGTCCTCTTGGTAGACACCTTGGATTTCCGGATCAAGTCCCGGGAACTTTCGGGCAGCGCCGATCAAGACTTGGAAGTAGGCAACGTCCAGGTCCTGCCAGCGTTCACCAGGTGCCACGATGAAGACACCAGGCGGGTAAGGGAGGGCGCCTTCCAAGGCCATCCGGCCCTTGGCGTCGGCCAGTTTGACCAGTTCGCTGTTGCCGTGGACGAATTCGCGGTCAGCTTCTTTTGGCGTCAGCTCGTAATTTTGGAAGCTGTCCTTTAGGAAAAGAGCTTGCTGGAGCTTAAAGATCTCATGCTCTTGGTAGTAGTGGTGGAGCTCCTGGCAGAGCTGGTAGAGGGTATAACCCTCGTAGCGGTTAGGGTACTGGGCTACTAATTCCGGCATGATGGCAGACAGGGGCGCCTTAGTCAAGTAGGCTTCTTCAAAGGCCATTAAGGTCGAGAAAAGGCCGTTCATATCGACTTGCCCCTCGCCTGGCGTGAGCAGGTAGAGGGTGGAGTAGCTGTCGGACTTTTCCGGGATGATGTGCTTTTCATGCAGGTAGAGAGAAACGATGGCGCCAGGGATGCCTTCTTCGGTGAAGGCAGCTTTTGCCAGGTCAATGCCGGGCGTCATCAAGGTGACTTTTACCGGGCTTAGGGCAACTTCACCCGGAGCAAGCAATTTGAAGCCGTGCCAGTCATCATCTGGGGACAGTTTCCAGGCTTCCGGGTCCTGGGACAAGACATCAGTTGGCAGGTTCTCCCACTTTTGCCCGTGGACAGTTGGGGGAACGAGGGGCTTAAAGAGCTTGCTTTCCTTTAAAAGGCGCTTGCGGAAGTCTATGCCTAATTTAACCGTATCGTTCCACCAGCTGTTAACGGCCGGTGAAGCAGCCATGGCGCTGTTAGCGACAAGAGAAGCGTAGACCGGGTAGGAGTAGCTGGTCGTAACGTACTTCATGTAGGCATGGTTAAAGTGCTTGTGGTCGACGTAGCGCTTTTGTCCCTTGATGTGGCTGTCTTTTTTCAAAATCTGGGAGGCCTGGCCCACGCCGGCTTGCTGCTTGTGGACGGACTGGGTGACCAGGATGCCTGGGTCATCGGGGCCGTAGGTCTGCTGGAAAGGAGAGAAGTCTCTGAGGACGTCGACAAATTGTTCATAGCCGCCCCAGGCGCAGTCAAAGAGGATGTAGTCACAGAGGCGGCCGAGCTTTTTCAAGATAAGCTTGGCGTCATAGAAGATGCCGTCGTAGGTTTCCAGCTGCAGAACCGCCAGGCGGAAAGGCCGGTCAGCCTTGGCGCGGCCAGGGGCGACCTTGGCGATTTCCCGGCGGATCAAGTCTTCATCAAGACTGGCGGCGGTCAAAGGCCCGATCAAGCCGTCAGCGTTCCGGTCAGTTGGCAGGTAGACCGGCTTGGCCCCCGTCATGACCAGGGCGCTGTTGTAGATGGACTTGTGGTTGTTGCGGTCAAAAAGGACCAGGTCGTCTTCATCTAAAAGGGCGGTGGTGCAGATAGTGTTGGCGCTGGTTGTGCCGTTGGTGCAGAAGTAGACCTTGTCGGCGTTGAAGGCTTTAGCTGCTTCTTGCTGGGCTTCTAAGGGCCCGCCAGTGTGGTTCATCATATCGCCGAGTTCTGAGACGCAGTCAGAAGTATCGGCTCTGAAGTAGTTGTCACCGAAGAAGTTGCGCAAGACTGCTCCAGCTGGGTGGCGGTCATAGAAGCGGCCGTTGTGGTGGCCAGGAGTATCGAAGACCAGGTCGTCTTGGTCAGAAAAAGCCGTCAGCTCCCGGATGAAGCGGGGAACGTTGGCTTCTTCGTAGGTCTGGGCCAAGCGGCTGATTTCAGCTGGAGAGGTCTCAGGAGTAAATTCGATCAAGGGCAAGTCCAGACCCAGCTTTTCCTTCATGGTCTGGTAGATGCCCCGGGACCGGCTGTCTTTTTCATCGATGACTACGGCAGCCAGGCTTGCGGGGTTGACCAGCTCGGTCAGTTCAGTTTTGGGCCAGTCGATTGGCAGATAGGGCAGAAGCTCTTTTTTAGCAGCGATTGCTAGATAATGCATTGAAAAATTCCTTTCTGTTTCATGGGTTGATGGAAGTTGCTACTTGTACTTGCGGTCACGTTCATCGCGGAGAAAATGATCAAAGAACCAGTCATATTGAGAGAGAAGCAAGAGGATACCGGCGATGACCGCGATTTGAAGCCAGCCGGGGATGCCATTACCGCCGGTCAGCTTAAGAAAGGCAACCCGCAAGTAGGAATGGCCAACAAAGAGCCAATACAAAGAGTCGAGAATAGCTGCAGCGGACAAAAGTGTCGCGGTTACTCGCAAAAACTTTTTCATATCTGTTCCTTTCTGTTACTTGGCATTTTTCATAAAAGCGCGTACCACTCAATTCAGTATCTTTATAAAAAATTGTAGTATGCATAGGTAAATTATACACTTTCAAGCTTTTTTGCCAAAAAGCATTCTTAATTGACGCATTGAGTGATGTTTACTTTTTGCGCATTTACTTGCACGAAAAAGGCCTGCTTTTCTTGCCAAGAGCAAATTAACCAAATATTTTTACTAAAAGCTGGCTAATGACCGGTATGCGGATAACTTTCACTTAACGATTGAAAGAATTTTTATCAAATTGAAAAAATGAAAACGACACTTTTTTGATTGGAGACGGTGCAGTGACCAGCTTTTTAAAGCGCCAAAATAAGCCCCCGTCCAGGCAAATTGCCGCTTAAGACAATTTGACCAATAAGGAGCTCGATTTACAGAATGATTGAAGAAACCCCCAAAAAACACTACATGGCCTGGATGACCTTGGCGATGCTCGACTTCGTCACCATCATCCGCTTTGAAGATGTTTTCTACCCATACCAAAACCAAGGTCTGTCCGTAATCTTTTCATGGATTTTCCTTTTGATTTGCTACCAATTGCCATATACCTTGATCGCCACCCAATTGGGCCTGGCCTACAAGGATACTGAAGAAGGGGGCCTGGCCTCTTGGATCCGGCGGGGGACGGGCAGCGACGTATTAGGCTACGCTACCAGCTGGATGTACTGGGCCCAAACCGTGCCCTACCTGGTGGACGTGTCCAACTCCATCATCGCATCATCGTTTCCATTTCCTGGATGATCCTGGGCAACAACACTTTAGGCAAGCACATGTCACCTTTCATGTTCGGCCTTTTGACCTTTGTCATCATCTTGATCTTTATCTTGTGCGAAAGTGCATATAAAAACTCCCTGGACCTTCTGTCCTTGATCGGGGGGATTGCCATGTTCGCCATGTCCGTGATCTTCGTGATCCTGATCATCTGGGCTCTCATGCACGGCGGCCACATCGCCACCAAGATGGAATGGTCCAGCTTTAAGCCGAACTTCAGCGTCCACTACTTCTCCACGACTGGCCTTTTGATCTTTGCCATGTCCGGGGCGGAACTGGCCGCGCCTTACGTTACCCGGCTGAAGAACCCCCGCAAGGAATTCCCGAGTCAATGTGGATGCTTTTTGGCATGACGGTCTTCATGACATTGACCGAAACTCTTGGTCTGGCCGTCCTCTTTGACGCTAAACACATCCCGCACGACTTTAAGATGAACGGGGCCTTCTACGCCTTCCAGCTTCTGGGTGAAGAAGCCGGCATGGGTAAGAGCCTCATGTACATGTACGCCATCGTCTGCCTCTTGAACTTCATGGCCGACCTGGCCGCCTTGATCGACGCCGCCAGCCGGGTCTTTGCCTCTGACACTTCTGAAAAGTACATGCCAAGCTGGCTCAGAAAGAAGAACAAGGATGGGCTGCCTGTTAACAGTTACGTGCTGACTTGCAGCATCACTTTCTTCCTTTTGCTTTTGTCAGGGACCTTGCCGGAAATAAACGATATCTTTAACTGGCTCTTGAACTTGAACGGGATCGTATCCCCGTACAAGACTTCCGTAGTCTTCCTGGCCTTCTTAGCCTTCCGCTACCGGCACAAGACTTTTGCCAAGGACGACTTCGTCTTCATCAGAAACAACAAGGGGGCCTTGGCGGTCGGCTGGTGGTGCTTCATCTTCACCTTCATCTGCGCGACGATGGGCTTCCTGCCGCAAGACGTTACTTTTGAAAGTCCGCAATGGACCAAGCAGCTCTGGATGAACATCATCACCGTTATCGTCCTCTTCGGGACTGGCTTCCTCTTGCCATGGCTCAGAAAGCTGGAATTAAAGCACTAAGCCAAGGCGAACAGCTAATAATGCAGTAAAAAGAGTAAAGAAATAAGGGATCAGCTGGACTGATTCCTTATTTTTTTGTGCTATTCAGTTTTTTTCCGCCTCATCAATTGATAAGCAGGGGATGCTGCAGGATCCAAATGGTCAAGGGGATGATGGCCAGGAGCAAAAGGAGGCTGGTAATTCTTAAAATCCGCCGCGTCTTTTGCCCCAAGGATCCGTCAAAGGAGTAGACCAGGCTGAAGCCGACCAGGATGATCAAGAGGCTGTCACCCAGGAGGGGAAAAATATTGACTGTCATAGTGCACCTCAAAAATGATTTATCGATTATTTTATGAAAAATGCGCCGCTTTCGCGCCTTTTTGCTATGATTAAGTTAGCAATTTACTAAGGAGATTAAGTATGCAGAAAATTAAAGTAATGACCGTTTTCGGTACCAGGCCAGAAGCCATCAAGATGGCTCCCCTGGTGCTCAAGCTGATCAGTGACGACCGCTTCCGGCCGGTTACGGTAGTCACGGCCCAGCACCGGGAAATGCTGGACCAGGTCCTGGAGATTTTTAAAATCCAGCCGGACTACGACTTAAACATCATGCAGCCCCAGCAAACCCTGGCTGACATCACCACCCGGGTTTTGACTGCTTTAAGCCAGATCATCCAGGAAGAAAAGCCGGACATCGTCCTGGTCCACGGGGACACGACGACTTCCTTTGCCGCCAGCCTGGCTGCCTTTTACCAGCAGACTCCCCTGGGCCACGTTGAAGCGGGCCTCAGAACCTGGAATAAGTATTCTCCTTTCCCGGAAGAGATGAACCGGAAACTGACCGATGTCTTGTCCGACCTCTACTTTGCCCCGACCTCTGTCAGCCGGGCCAACCTTTTAAAAGAAGGGCACCCGGAAGAAAATATTTTTGTCACGGGCAATACGGCCATCGATGCTCTGGCCCCAACCTTCCAGGCCGACTACCAGCATGAAGTCTTAGACAAGATCGGCCAGGGCAAGCGGATCATCTTGGTCACCATGCACCGGCGGGAAAACCAGGGCGAGCCAATGCGGCGGGTCTTCAAGGCGATGAAGGACGTGGTCGACCAAACTGACGACGTTGAAATTGTCTACCCGGTTCACCTCTCGCCAAGAGTCCAGGAAGCGGCCAAGGAAGTTTTAGGCGGCGACCCCCGGATTCACTTGATCAAGCCTTTAGACGTGGTCGATTTCCACAACCTGGCCAAGCGCAGCTACTTCATCATGACCGACTCTGGCGGCGTTCAGGAAGAAGCCCCGTCTTTGGGCAAGCCGGTTTTGGTCTTGCGGGACACGACCGAGCGGCCGGAAGGGGTCAAGGCCGGAACCTTGAAACTGCTTGGCACTGAAGAAGACGCGGTTAAGGCAGCCATGCTGGAGCTGCTGACTGACCCAGCTGCCTACCAGCAGATGGCTGAAGCTAAGAACCCATACGGGGACGGGCAGGCCAGCGACCGGATTTTAGATGATATTGCCTGGTATTTTGCCGGCAAAAAAGGCCCCAAGCCAGCCGACTTTTCTTGATTGGCCAACTTGCATGAATAAAAAAGCAGTGAAGCTCAGCTTCACCGCTTTTTTATTTTCTTCTCCAGCCGCTTCTTCAGGTTCTTTTCCTGCTTCTCGAAGACTGATTTGGTGGTCAGGTAGTTGAAGATGCCGACCAGGATCTGGTCGATGACCTTGACGATCAAGGCTGGCCAACCCAGGACAGTCATTCCCAGCCACATGATCAAGGTGTCCGGCAGCAGGCTGATGATCCGGTAGGCCAAAAAGGACAGTAGCTTCTGCCACAATTTGTGTTCATGGTCCACGTTCTTGGTGAAGACCGCCTTGTGGTTGAACCAGAAGGAGGCCAGGTTGGACACGATAAAGGCAATCGTGTTGTCGATGACCAAGACGGTGTGCAAAAAGTCATGCATGAACATGAAGACAACCGTGTTGATCAAGGCCGCGATAAAGCCAAAGAACATGTAGACCCATAAATTGCGGTGGCGCTTGAAGTTCCGCTCGCCTAAAGCCCGCCGCCGGTTAAAATCTTTATCCATTTAATTTATCCGCCAACTCCTCAGCAGCTTGATCGATGCGCGCGATATCGTCATCGTCAGGGGCGTTTTCAACCGTGAGCGGGGGAATCAGTTCCTTGGCCCCGCAGGCCAGGAAGGCCTTCTCAAAGTCAAAAACGTTCTCGCAGTAGTGTTCCTTGTAGGTCTTGTCGCCAGAACCCATGACGGCAAAAGACTTGCCGGTCAAGTCCAACTCCTTGAGCTGGTCGTAAAAGTCGGCAATTTCGTCAGTCATGGCGCCTTCCCCGTAAGTGTAGGTGATAAAGACGCACAGGTCGCTGTCTAAATAATCGTTGGCGTCAGTGAAGCTGACGTCAGAAGAATCTACTTCCAGGCCTTGGTCCAGCAGGTCTTCCTCCAGGATTTCGGCCATGTCCTCGTCGTTGCCGGTCATGCTGGCAAAAACAATCTTTGCTCTCATAAGTTAAGCTCCCAAAAAACAATTTCTAGAGTATTATACACGATTTGTCCCGGCTTGGCGAATCGGGCGCATTGCTACTTTAGCAAACTTTTAAAAAAGGTTATAATGGTGAAGACAAACTACTTCATTATGAAAGGAAAAACAAATTGATTACTATTAAATCTGTTCGTGAATTGAAGGGCATGCAGGCTTCCGGCCACTTGCTGGCGACCATGTTTGAGGCCCTGCGTGACGTGATCAAGCCAGGCATCTCCACCTGGGACATTGAAGAATTCTGCCAGGAATTCGTTTCCAGCCGGGGCGGCCGCTTGTCAGAACAAGGTTTTGAAGGCTATAAGTACGGCACTTGCATCTCTGTTAACGACGAAATTGCCCACAACATTCCCCGCAAAAATGTCTTTTTAAAGGAAGGCGACTTGGTCAAGGTTGACGTAACCTGCAACTTGAACGGCTATGAATCCGACTCTTGCACCACTTACGGTGTCGGCCAAATCTCAGAAGAAGACCAGCACTTGATAGACGTGACCAAGAAGGCCATGTACATGGGGATCGACCAAGCCGTAGTTGGCAACCGGATCGGGGACATCGGAGCTGTCATCCAGCACTATGTGGAGGATGAAGAAGGCTACGGCGACGTCCGGGAACTGATCGGCCACGGCATCCAGCCATCTATCCACGAAGACCCGGAAGTTCCTCACTGGGGCAAGGCCGGCCACGGCCTGCGCCTGCGGGAAGGGATGACCATCACCGTTGAACCAATGGTGGAAGCCGGCGGGGACTGGCGGATTTTGCAAAAGACGGTTGACGACCCGAATGACGACTGGGTCTTCTACGCAACCCCGGACGGGTCCAAGTCAGCCCAGTTCGAGCATACTTTTGCCATCACCAAGGACGGTCCGAAGATCTTGACTTTGCAAAAGCCATACGACGGCCTGGAAAAGTACATTCCGCACTTTGACGAAATGGAAGACTAGGCATGGCGGAAAAAGTTGAGCCAGGACAAAAGGGGGTCCGGCGCTTTCTTACAACTCTTTCTTCGGTCGTTTCCCAGGGGGAGATTTTTCAAAGTTCCATCGTGATTGCCTACTACATCCTGTTTTCAATTTTTCCCATCGTTATCATTGTCGGTAACGCCCTGCCCTGGTTTCACCTGGATACGGGACCGATTGCTGATTATTTGGAAATGATCTTTCCAAGTGACGTGGCCCGCTATATCATCCCGATCGTCGATACCCTGCTCAAGTCGAATTCGACCAGCTACATCTCCTTCGGTGCGATCATGGCCCTGTGGTCCATGTCCTGTATGGTGAACGCGGTCAGAATCGGGATGAACCGCCTCTATGGCGTCCACAATAAGGAACTGAAGCTGGGCTTCTGGCACTTTATCTGGAACCGGACATTGACCGTGATCTTCAGTGCCTTGATGGTCACTATGTTCATTCTTTTAGCCCTGATCGTGGTCTTTGGCCAGGAGGTCCTGCATTTCCTGGCTCCTTACTTTAACCTGCCCCTGGCCTGGATTGACAAGCTCTCCAGCTACCGCTGGCTGGTTTTGCTGGTCTTGATATTGATCGGGGTCTACTATTTAAACGCTGTAGCGCCCAATGTCCACTTCAAGAAGGCTCTTTTTCCCGGGACCATCGTGACGGTGGCCGGCTGGGAAGCCCTGTCTTATCTCTTTTCCTTCTACTTGAAAAATTTTCCGGTTAAGTGGGAAAATTATGGTATAGTTGGAAATTTTATCATTTTTATGCTCTGGCTCAATCTCCTGGCCATCCTGTTACTTTTTGGCACGGCGGTCAATGTCAGTTTGGACCAGCTGCGCTATGGGCCAGCGACCTATTCTAACGGCCCTTTGGCCGAGTTTATCGCCAAGCGGCGGAAAAAATAATTTTCCTTTTTCAAGAAGATTGGTCTAGGTTTACTAGATTCTTTTATAGAAATATGTTATTATACGCTTACATTTAAAATACTTTCATTAATGTGCGAAGTTAAGAAAAGAGGATGTAAATACATGAAAGTCAGAAAAGCGATCATCCCAGCTGCCGGTTTGGGAACCAGATTTTTGCCAGCAACCAAGGCCATGCCTAAGGAAATGCTGCCAATCGTTGACAAGCCAACTATTCAATTTATCGTTGAAGAAGCCATGGCTTCAGGGATTGAAGACATTCTGATCATTACTGGCAGAAGCAAGCGGGCAATCGAAGACCACTTCGACTCAAACACGGAACTAGAAGACAACTTGACTGAAAAGCACAAGGACGCGCTTTTGAAGCTGGCCCGGGAAACCACCATGTCCAACATAAAGGTTAACCTTTACTTCACCCGGCAGCCGCATCCAAATGGCTTGGGGGATGCCGTCAACCGGGCTCGCAGCTTTATCGCCGGTGAACCTTTCGTGGTTATGCTAGGCGACGACTTGATGAGAGACAAGACGCCATTGACCAAGCAATTGATCGACTGCTACCATGAAACTCACGCTTCAACCATCGCGGTTATGAAGGTACCGAATGAAGAAGTCAACAAGTACGGTGTCATCGACCCAATCGGCGAAACTGCTCCGGACCTGTACAACGTTAAGGCCTTTGTGGAAAAGCCAGACGTTGACAAGGCCCCAAGTGACCTGGCCATCATCGGCCGCTACCTGCTGACTCCGGAAATTTTTGACATGCTGGACAAGCAAAAGGCCGGTGCCGGCGGTGAAATCCAATTGACTGACGCCATCGACGCCTTGAACAAGACCCAGCGGGTCTTCGCCCACGAATTCAAGGGCCAGCGTTTTGACGTCGGCAACAAGGAAGGCTACATGGAAACTTCCATCCAATACGGTCTCCGTCACCCGGAAACCAAGGATGCTTTGCGCAAGTACATCATTGACTTGGGCAAGAAGCTGGAAAGCGAAGGCAAGAAGAAGCCAGCCGGCAAGTGAAATACGCAAAGAAAGAAGCTGTCTGAAGACCAGACAACTTCTTTTTTCTACGCTTTTTTGTTACTTGCAGATGATCTTGCCCTCAGCTGGCAGGATCTGGACCCCGTAGACGGGAATTTCTTTTTCCTGCCAGCAGAAGCTGAGGGGGATGGACTTGCTCCCCTTGCCGGTCAGCTGGCGGAATTTAGCCAGGGTCATTGCCTGCCCGCCGCACAATAGCTGGCAGTCTTCCCGGGCCAAGACAAACTTACTGAGGGGGAGGGTCTGGTTTTGTACCTGCAGGTAGAGGACATTTTGCCCGCCCAGGCCAGCCAGGAGCTGTAAAAAATCTTCAAGCAGCATGGATAAACCTTTCTTTTTTTATTGTGGTATACTGTTCATATTGCTTAAAATAAAGGAACAAAGCGATAAAAAAGACAGAAACTATAGATAAAGAGGGAAAGAGGAGAGGAAACTGGTGAAAAAGAAGAATAAAAAGAGAAGCAATTACCGCCTGGTCAAAATTTTAGGGGGCCTATTAGCCGTCTTAGCCCTGGCCTTGGCCGGGGCCGGCTACTACTTTTTCAACATGGCCGTGGTGCCGGGCAAGAAAAGCTTCGTGACCAACGGGACGGTGCAGTTGACCAAGTCCACCCCCCAGTACAAGCAGAAACTCTGGTACAAGCAGGTGACAAAGCAGCACTGGCAGCTGCGTTCGGCTAATAACAATTATCTCTTGCGGGCCAATTATATTCCAGCTAAAAACTCGGCTAAAACCGTGATTATCCTGCACGGCTACATGTCCAACAAGGAAAATATGGGGGCCTATGCCCAGCTTTTCCACTCCCTGGGCTACAACACCCTTTTGCCAGACGCGGAAGCTCATGGGCAAAGCCAGGGCAAGTATGTCGGTTACGGCTGGCTGGAGAAAAATGATGTCAAGAAGTGGGCCGAGCAGGTGATCAAGAAAAATGGCCAAAAGAGCAAGATCGTGATTTTCGGGGTCTCCATGGGCGGGGCCACGACCATGATGACCTCCGGCTTAAACTTGCCTAAGCAGGTCAAATGCTTTATTGAAGACTGCGGCTACACCAGTGCTAAAGATGAAATCGATCACGAAGCCCAAGCCCTTTACAATATGCCGGCCTTTCCCCGTTTTCCCCTGGTGGAAATCTTGAGCGGGATTACCAAGTTAAAAGCCGGCTACTTTTTGGCCCAGGCCTCAAGCCTTGCCCAGCTGAAGAAGAATACCCGGCCCATGCTCTTTATCCATGGCAGCAAGGATACCTTTGTCCCAACTAAAATGGTTTATAAAAATTACCGGGCCAGCCGGGGGCCAAAGCAGCTCTTGATCGTCAAAGGGGCCCAGCATGCCAAGTCCTATGAGCACAATCCGGCTTTATATGCACGCACGGTCAAGCAATTTTTAGCAAAATACGCAAAATAATTCCTTGCAATCGTTTGCATATCATGCTATACTGAAGGCGTGGAAGAGGTAGAAAACAACTGAACAGAAGTTTTTATCTCCAGATTGTAATTATTATTCTTTGTCTCTCTTAATTGAGACCATAATAAAGGCTTGAAGCTTTTAACCAAGTGGCGATTACACAACAGTCTAATTCATTTCATACGCTAGCACGTAAAACTCGAACAAGTGACTGTTTTATCTTAGCCGGTATTAGCCATTGGTGAATTCTTAAAATTGAATATCGTGACTATTAATTTGATGAGCTACCTCATCCACTTGTAAAGACTGCCGAGGGCAGTTTAAAGGCGAGAAGATTTGATCTTCTCGCCTTTTCTAATGCTTATTTTCTTTTTGTGCTTCCTACTTGCGCAAGGTCAGCTTGGCGATGCACTCGCAGCGCGGGGTCTGCGGTAGCATGTCGACGTTTTCGATGACCCGGACGTCGTAAGCCTCGCCCAAAAGGACCAGGTCCTGGGCCAGGGTGGATGGGTTGCAGGAAATGTAGACGAAGCTGGCCGGCTTGACTCTGAGCAGGGTCTTGATCAAGGACTTGGCCAGGCCGGTCCGCGGCGGGTCGACGATCAAGGCATCGATTGGCAGGCCGTCTTCCTTCAAGCGGGGAAGGAGCTTTTCCACGCTGCCATGCAGGTATTCTGCGTTTCTGACATGGTTGAGCTCAACATTGTGCTGGGCGTCCAAAACAGCTTCAGGGATGCTTTCGATCCCGACCACCTGCTTGACCTGGTCAGCCGCCAGGATCCCCAGGGTGCCGACCCCGGAGTAAGCATCGATCAAGGTCATGTCCGGCGTTAAGCTGAGCAGCTTCAAGGCTTCAGAATACAGGGTAGCCGTCTGGACCGGGTTCAGCTGGAAGAAGGCTCGGGGACTCAAGGCAAACTTCTTGCCCATGATCTCTTCCGTGACCTGGTTCTTGCCCCGGAGCTTGCTGGTCTTGTTCCCCCAGACTTGCGGGTTCTGCCAGTCGGTTTCGTTTTGGTAGACGGAAACGACCTTTGGCAGGCGCATGATCTCGTCAGCCAGCTGCAGCAGATTGTTCAGCTTGTGGCCAACAGTGATCAAGGTAACCTGCATCTCCTGGCTGGCTTCCGCCTGCCGGACCACAATAGTCTTAACGCCTGGCAAGTTCCGCCGGCGGTTGGCGATCGGGACGCGGAGCTTGATAATCAGATCCCGGATGGCCCGTTCAGTTGCCTGGGTGTCCTCGCTTTGGGTCGGCATTTCCGGCAGGTCGATCAATTGGTGGGAGTTAGGCGCGTACAGACCCAGGGAAACATGGTGGTTTTCCCGTTCGATCTGGTACTGGGCCTTGGCCCGGTAGTGCCACTGGTCTGGGGCCGGGATGGTGTTCTTGATCTTGTAGTTCTTGTAGCCGCGCGGGTGGTACTTTTCAAGGGCAGAGACCAGATTGTCCTTCTTGAACTTGAGCTGACCCGCGTAAGACAGGTGGGCCAGTTCAAGGCCCCCGATTCTCGGGTCAACGCCGGATGGGAAGGGAACCCGGTCCGGGCTGGCTTCCTTGATCCGGACTAATTCACCTTCCAGGTATTGGGGGTGGTCCTTGACGATCTTGGCCACCACGACTTCGTCTGGCAGGGCGCCGGGGATGAAGATGATCTTGCGCTTGTAGTAGCCGATCCCTTCACCGTTGATACCCAGCCGCTTGATGGTGATGATGACGTGCCGCTCTTTAGAAGCGTTTTTTGAAAAATGTTTTTTCTGCATGTGAGCCTTCTTCTTTGTCTATTCTTTCTACAATAAAGATAACTGGAAACTTCGCAACATACTATTATACAGGGCTTTTTAAAAGGGGCGCAAGTTTTTCGCAGCTTTTGCGGCAATTTGCTAAGATAGAGTTGCCAGATTTGCCAAAAAGGAGGAAAAAATGGCCATTATCACGAAAGTTAGTGCACAAAAGCGGCAGGGGCGCTACAATATTTTTTTGGACCAGGAATACGCCTTTTCCGTCAGCGAGAAGACACTGGCGGAATTTGTCCTGCTCAAGGGCCAGGAGCTTAGCCCCCAGAAGATCAATGAAATCCTGGACTATGAAGCCAGCGCCAAGGCCAGCGACCTGGCGGCCAGATACCTGTCCTACCAGCCACGGACGATCAAGGAAGTGACTGACTACCTCAGCCAGCATGAAATTTCCCGGTCAGCGGCCAAGCGGGCCGTTAACGAGCTGACCCACCTGGGCTACCTGGACGACGCGGCTTATGCCCGCCTTTTTGTCAAAAATAACCTCCAGGTCGGCAAGAATGGACCAGGGGCTGTCCGCCGGGACTTAAAGAAAAAGGGCGTTGACGATGACTTAATCGAAGCTGCCCTGGCAGACGTGACTGATGAGGAATGGGCCGGGGTTGGCAAGCGCCTGGTCAAGTCACTTTTGGGCCAGCAGGGGAAGATTGCCAAGCGGGAAGTCGACCGCAAGATGCAGACTAAACTGCTCAGCCACGGCTTCTCCGGCTCCCTGGCCCAGGCCGTGACCCAGGATTTAGTCCCGGAAGCAGATGAGGACCAGGAAAGAGCGGCTCTGGTCAAGCAGGTCCTTAAGGCCTACAAGCGCTTCAAGCGCTATGAGCCAGGCGTAAGGGAGCAGAAGATGCGGCAGTATCTGTACAGCCACGGCTTTTCCGGGGATGAAATCAGCGCCTTTTTGGTTGGGGAAATCATTCCTTTAGAAGAACTGGAAGAATACTAGAAAATAGAAAGAAGTAAAGAGATGCAGACAGAAATCAACGAACTTACTTTTATCGGCAAGGCCTTTCCTGACCGGATGATGGATGCAAACGGGACCTTCGCGGCCGCCAACCAGGAACTGGAAGCTGACCCGGCCTTTCAAGCCTTTGTCAAAGAGGCCGGCCTTGCCGGGCAGCGGGCGTCCTTGATCGTTTTTGGCCCGGAAAACTTCATGTACTGGTACGGGGTGATCGCGCCTAAGGATAGCGAAGTTAGCGGCCTGCTCAAGTTTTCCCTGCCAAGCGCCCGGGTTTTCCAAAAAGAAGAGACGGCCAATGCGGCCTACTTCGACCTGCCCTTGAACTTTGAACTGCCCCGCTTTTTGGATGAAGCCGGCGACTTAGGCAGCGACTTCCAGGCTCAGCTGGAGGAGAATCCTAACCCTTATATCCTCCGCCAGCTGGATTTAGGCAGTAAAAAACTGACCAAGAGCCTTTACCTCCCGGTCAGTCAGAATTAGGATTGCTTGATTTCAGCGTCAATGGACAAGTTGTCGTATTCGATATAGGCCCCCAGGCAAGTTGAAATGAACATGACTAAGATGACGAAGCCCATGGAGGTGCCGACGATCCATTTCAGGGGCAAAAGCAGGCGGATCACGATCGTGGCCAGGGTGCAGAGGACAAAGTCCAGGATAAAGTTGGCTACCTGCAAGAGCGGCCGGCGGCGGATGCTGAAGAAGCGGAGAATCTGCTGCAGGAAGCTGTCATAGATGTCTCCGGCCAGCAAATTCAAGGGCCGCTGGATCGTGGCCTTGACGGCCAGCATGATGATGGCCCCGACAAAGGCCCCTACAGCCGTGCGGAAGTGGGAAGTCGAGTGCAGGACCAGGGCGTTAAAGCCGATCCCGATGATGGCCAGGCTGCAGATGTAGGGGATCAAGAGCAGGAAGACGAAAACTAACATAATGCGGCGCATTTTCATGGTAAAACACCTCTTTCTACTGGGCTATTTTAACATATTCCCGTAAGGTCATATGCTATAATGTAAATATTTAAGGATTTTACGAAAGAGAGTTAAGAAAATGACAAGCGACCCTGCGACCGGCAGCCTGTTTGACAAACTGAGAAGCCGTTTTTCCAGCAATGAAGAAAGCGGCAAGGACCAGCTGCAGGCAGAAATTGACCAGCTGCATGCCGGCAATGTTTTGACTGATACTGAATATTCGATGATTGAGGGCAGTATGGCTTTCCACGACAAGGTAGCACGGGAAGTCATGGTGCCGCGGACTGACGCCTTCATGATCGACATCGAGGACGACTTGGAGGAAAATTTGGATGACATCCTCCGCCAGCCTTATTCAAGAATTCCCGTCTACCACCAGGACAAGGACCAGATCGTGGGTGTCATCCACATCCGTACCATTCTTAGAGAGGCCCGCCAGCACGGCTTTGACCAGCTGACTTATGACCGCTTGATTTCCCCGCCCCTTTTTGCCCCGGAAACGATCGAGCTGGACGACTTGCTGGTGCAGATGCAGACCAGCCAGCAGCAATTGGCCATCCTAACTGATGAATATGGCGGGGTGACCGGCCTGGCCAGCATCGAGGACTTGCTGGAAGAAATCGTTGGCGACATTGACGACGAGGTCGACAAGGCAGAAGTTTTGGTCCGGCAGCTGAATGACCGGCAATTTGTCATTTACGGCAAGATGCCTTTGACCGACTTCAACGACCGCTTTGGCACCGAACTCGAAATGGAAGACGTTGACACCCTGGCCGGCTATATGATCACCAAACTTGGCGTGATCCCGGGCAGAGGCGAGCAGCTGGAAGTGCCCCTGGACAACGGCATGGTTTTGACGACCAGAAGAATGCGGGGGGTCGCGGCTCTTAACGGTCTTATTGACCCTGCCAGAAGAAAATTACGAGGAAGAAACTGAAGAATAATGAACAAAGAACTTTTAGACAAAGTAAACAAGCGGCGGACTTTCGCGATCATTTCCCACCCCGACGCCGGTAAGACGACGATTACGGAACAAATGCTGCTCTTGGGTGGGGTGATCCGCAGCGCCGGGACCGTTAAGGCCCGCAAGACCGGGAACTACGCCACCAGTGACTGGATGGAAATCGAAAAGAAGCGTGGGATTTCTGTTACCTCATCCGTTATGCAGTTTGAATACCAGGGCAAGCGGATCAACATCCTGGACACCCCAGGCCACCAGGACTTCTCAGAAGACACCTACCGGACTTTGATGGCGGTTGACGCCGCGGTCATGGTTATCGACTCCGCCCGCGGGATCGAGCCGCAGACCAAGAAGCTCTTCAAGGTCGTGCGGCAAAGGGGAATCCCGGTCTTTACCTTCATGAACAAGCTGGACCGGGACGGCCGGGAACCCCTGGACCTGGTCGCTGAACTGGAAGAAGTCCTGGGCATTGAAGGTGTGGCCATGAACTGGCCGATCGGGATGGGGCAGAGCCTGCTGGGCCTTTACGACCTGGCCAACCAGCGGGTTGAACTCTACCACCCGGAAGAAGGGCAGGACCGCTTTATCGCTTTAGCAGACGGAAAGGCGCCAGCCGGCAGTCCTTTGGCAGATGACCCGCAGTTTGAAGAAACCTTGGGTGAAATCGAGCTTTTGGAAGGGGCCGGGGCCAGCTTTGACCGGGCAAAAGTTTTGGCCGGCCAGCAGACTCCAGTCTTCTTCGGGTCAGCCTTGACCAACTTCGGGGTGGAAACTTTCCTGGAACAATTCGTTGACCTGGCACCAGCGCCAGGCGAGCACGAAGTCAACGGGGATGAAGAACTGAAGCCAGATGATGACGAATTCTCCGGCTTCATCTTCAAGATCCAGGCCAACATGAATCCCCAGCACAGAGACCGGATCGCTTTTGTCCGGGTCTGCAGCGGGGAATTCAGCAAGGGCCTGGACGTAACCCTGGCCAGAACCGGCAAGCAGGTCCGCTTGAACAATGCCGTTGAATTTGAATCCAGTGCCCGGGTCCAGGTTTCTGAAGCCGTGGCCGGGGATATTGTCGGCCTCTACGACACTGGCAACTTCCAGATCGGGGACTCTGTCTACGCTGGCAAGCGCAAGCTGGAATTCCCGCCGCTGCCGGAATTTACCCCGGAACTCTTCATGCGGGTTTCACCAAAGAACGTCATGAAGCAGAAGTCCTTCCACAAGGGGATGAACCAGCTGGTTCAAGAAGGGGCTGTCCAGCTCTACCGCAACTACCAGACCGACGACTACATTTTGGGGGCGGTTGGTCAGCTTCAGTTTGAAGTCTTCCAGTACCGGATGAAGAACGAATACAACTCTGAAGTTGAAATGACTTCCATCGGCCACCGGGTAGCCCGTTGGATCAACCCGGACCAGCTGGACCCGAAGATGTCTTCCAGCCGGAACCTCCTGGTCAAGGACCGCTTTGGCAATCCTCTCTTCCTCTTTGAGAACGCCTTTGCTGAACGCTGGTTCCACGACAAGTACCCGGATGTGGAACTGACGGAAAAGCTGTAATGCAAAGAAGCAAGTAAAAACAAATCAGCAAAAGAAGATAGCAAACAAGAAAAAACGATGCCGCGAGGCATCGTTTTTTTGCGCATGATTGGTTTGACTGACTAGCATTCAGTCATTTCTGTTTTGCTCTTTGGCAAAAAGTAGTAAACGAGGTCAAGGACCGCTTGGGTAAACATTACCCCGGCCATCCAGTACATGGCCATCATCATCTTGTCGGTAAAGGTGTAGAAGGCGACGATGCCGTACAGTAAGACCCATAAAATCTTCAAGTAAAGGTTGTTGTTCATCATAATTCTGATCCTCCAAGTTTTTTAGTGGTGGCTGGCCCCGCTGGTCGCGTCGTGGTGGCTGGCGCCAGAAGCGGCGTCGTGGTGGCCTTCATGACCGGCTCTTGAAGCGGCAGTAACGGCTTCGACCAAGCGGCGGCTGGTTTCGGCTTCAGCCGCGTGGAAGCAGGCACCCATGTCCATGTTTTCAACGTCCATCCCTGGCATGAAGACTTCGCCTGGTTCAACGCCCATTTCTTCTACAAAGGCGTTGGTGATGGTTTCCATGTCCATCAGCTTGTAGGTCTTGTCTGGATCCTTCGGGTCAACGATTTGGATCTAGGCCATCATGCCGGCATCTTCGTGTTCGATGATGTGGCAGTGGTACATGAAGACCCCGGCGTTTTGGAAGTAGACCTTCAGGCGGACAGTTTCGCCTGGGCCGACTTCAATAGTGTCCTTGTAGACATTTATTTCGTTCGGGTTAGGCTTTTGCCCGTTGCGGGAAACAACCAGGAAGTGGGTCCCGTGGATGTGGAAGGGGTGCAGCATCCTTGACGCAGAGTTGTTGGTGTTGGTTACGTCCCAGTATTCAACTGAGTTCAAGGTCTGCTTCATGTCGATTCTTTCCATGGAGAAGCGGAGACCGTTGATCTTGTCGTTGTCGTCCATGGTTACGTGGCGGACTGGCACTTAGCTGTTCACAGCCGGGTCGTCCGGAGTGAAGATGTTGAATGGCAGTTCACGGTCGTCTTTTTCAAAGGCGTGGATGCGGAATTTAACCAGCTTGAAGTCGTCAGTGTAGAGGCTGACAACGTCGCCTTCCTTGTAGCCGGCAAAGTCAACGATGACTTGTTGTCTTTCCCCTGGCCCGATCAAAAGCTTCTTAACGTCAATCGGGTGTCTGAGGAAGGAGTCGTCCCCGCCGATTTGCGTCATGGTCAAGTCGTTTTCAAAGTGCAGTCGCCATTCCCGGCGGTTAGAACCGCCCAAGAAGAGCAGGCGGACCTTTTGGGTCGTCACGTCAACGTAAGGACGGATCACGCCGTTGATCAGAGGCACTTCACCAAAAGACGCCCATCGGGTCGTAGTCAGCCCGGTAGTCGAGCTGGTTGTCGTGGAAGGTCCGGTCTTGCAGGATGATCGGGAATTCGTCAACCCCGTAGTTCTTTGGAATCGGCAGGCGGGCTTCGTTGTCGTCAGTAACCACACCCCACATGGCCAGGCCCATCCAGACCTGCATGGCCGTTGACCGTTGACGGACATGGGTGGGCGTGCAGCCAGGTCAGAGCGGCTGGCTGCTTGACCGTAAATTCGATGTCTTTTTCTTCGCCAGGGTAAACTGGGGCGTGGCAGCCGCCGTCAGTAATTGGTCCCGGAACTTCCATGCCGTGCCAGTGGAATGAAGTGAGGACAGGCAGGCTGTTCTTCAAACGCACGTGGACTCTTTGCCCGGTCTTGACTACCAGGGTCTGGCCCAAAAGGGGAGCGTTGTAGCCCCAGGTCTCGGTCTTCTTGCCTGGCAGGATCTGGCTTTCGCCTTCCTGGGCCTCGATGGTGTAGTAGATGTCATTGGCGTCAACCTTGTCCGGCGCTAAAAGCGGGGGAACGGCCAAAGGCTGGGCCTCAACGCCAGCTGGAATGGTCAGCGGCTTGTAGCCCATGTGGCTCGTATCGAAGTCTTTTTCAGCATAAAAGTAATCCGGATAAACTGTCATGATCAGTGCCTCTTTATTTTTACTAAATCAACAGTTTAAAATTGCTGCTTTTTACACATTCACTTTCTTTTCTAAAAGCGCTTTCCAGTGTTCAAAGCAGATTGTAGAACTATTTTTTAATAAAAATTGATATAGGTCAATTTTTACATTTTTTTAAAAAAGCCTGTTTTTCGCAAGTTAATCTGTAATTTTGCTAAAAAACAAGTATTTTTTGAATTTTGCTGAAAAGAATAAGGGAAGAAGACAGGGAAGAAAAAAGAGCCCAGTGGGCTCTTTTTGCAGGGATTACTTGTCAACGTGGATTTCGACGACCCGGCGGTGCTTGTCAACCGTAAGCTGATAGCTGGTATGGTCGGGAATCAGCCGCTTGATTACAAATTCGAGTTCTTCCTCGCGGATCTTGCGGTGGTGGTTTTCCAAAACGATCCCGATGGCGATTGGGCTTTCGGTATAAACTACGGTAGTGTTGCCTAAGGAGTAAACTTTCACGTAGTTCACGCTCGTAGTATTTAGCTGACTGTGAACTAATTCGGCATAACTATTAGTAACATCAATTAAGTGCATAAAACTTCACCCGTTTTTACTTGTCTCCGATATTCCCCTCACTTTCATTATAACGCATTCAAGAAAAAACAAGGATCCTTTTTGGATAATCCTTGTTTTTTCTGCTCAGAGATAGTTATTTTTCTTTGCTCGCTTCAGTGGCTGGCAGGGCGGGAACTTCTTCGGAAATCGTGATTTCCCCGTCCCTTAAGTCCACCACTAATTGCTTGGCTTCAGTGTGGTCCAGCTTGTAGTCGGCCACCTTGTCTTCAATTTCTTCCTGGATGACCCGGCGAAGCGGACGAGCGCCCATTTCCGGATCGTAGCCTTCCTCAACCAGCTTGTCCTTGGCCGCGTCGGTAACCTTGATGTGTAGGCCCTGGTCGCTGACCATGGCGTTGGTCTTGTCCAAAAGGAGGTTGACGATCTGCAGGAGGTTGTCCTTGCTCAATGGGTGGAACTGGATGATGTCGTCAAAGCGGTTCAGGAATTCCGGCTTGAAGTACTGGCTCATCACCTTGCGGGTTTCTTCAGCTTCATTCTTGTTGTTTTCTGCCGTGAAGCCTACGCTGGCCGTCTTGATTCCCTGGCCGGCGTTTGAGGTCATGATGATGATCGTGTCCTTGAAGGAAACAGTCCGCCCTTGTGAGTCGGTCAAGCGGCCGTCGTCAAGAATCTGCAAGAAGAGGTTCAAAACATCTGGGTGGGCCTTTTCAACTTCGTCCAAAAGGATCAAGCTGTATGGGTTGTGGCGGACCCGTTCGGTCAATTGGCCGGCTTCTTCATAGCCGACATAGCCCGGGGCAGACCCGATCAATTTGGAGACGGAGTATTGCTCCATGAATTCGGACATGTCGAAGCGGATCATGGCGTCTTCGCTGCCGAACATCTTCAAGGCCAGCTGCTTGGCCAGCTCGGTCTTGCCGACCCCGGTCGGGCCAACAAAGAGGAAGGAGCCGATTGGCCGGCCGGACTTGTTGAAGCCGATCCGGTTTCTTCTGATGGCCCGGGCCACCTTGTCAACGGCCTCGTCCTGGCCGATAACCTTAGCCTTGAGGTCGCTGGCCAGGTTGGCCAGCTGTTTTTCTTCTTGTGCCTGGATGTCGCCGACCGGGATGTTGGTCTTTTCTTCCACGATCTTGTCCATGACTTTGGCCGTAATGGTCGGGGCCTTGTCCGGGTCGACGTTTTGGTCCTTCAGCTTCTCGTATTTTTCGATCTGGTCACGGTAGTAGGCAGCTTTTTCGTAGTCTTCGTTCTTCAAGGCATCCTGCTTGAGCTTCTCAGCCGCGTCGATTCTTTCCTGGATCTTTTCCTTATCGATGTAAGGGATGGTCAGGTTCATTCTTGACCCGGCTTCGTCCAGCAGGTCGATGGCCTTGTCTGGCAGGAAGCGGTCTTGGATGTAGCGGGCAGACAGCTTGACGGCGGCTTCGATGGCGTTGTCAGTGTATTTGACGTGGTGGTAGTCCTCGTAGCGCTTCTGGATCCCCTTGAGGATCTTGATTGTCTCGTCGATGCTTGGTTCCTTGACTTCAACTGGCTGGAAGCGCCGGGCCAGGGCGGAGTCCTTTTCGATTTCCCGGAATTCCTTGATAGTCGTAGCCCCGACTAACTGCAGCTCACCTCTGGCCAGAGCCGGCTTGATGATGTTGCCGGCGTCCATGCCGCCTTCAGAATTGCCGACGCCGACGATTTCATGGATTTCGTCGATAAAGAGGATGATGTCCGGCTGGCTCTGCAGTTCCTTGACCAGCTGCTGCATCCTTTGCTCAAACTGGCCCCGGATCCCGGTACCTTGGACCATGGAAACCATGTTGAGGGAGATGATCCGCTTGTTTTGTAACTTGGCTGGAACTGACCCGTCCACGATGTCCTGGGCCAGGCCTTCAACGACCGCGGTCTTGCCGACCCCGGCTTCCCCGATCAGGACCGGGTTGTTCTTGGTCCGCCGGTTGAGGATTTCAATTACTCGGGCGATTTCTCGGTCTCGGCCGATAACTGGGTCGATCTTGCCCTTCTTGGCCAGAGCTGTTAAGTCGGTCCCGAACTGGTCAAGCAGGGACTGGCCGCCGCCATTGCCGCCCCGGCCAGGGGTCGGGCCGGATGGATTTTGGTTGTTGTCACGGTTTGCGCCATTTGACCGCCCGTTCAAAGCGTTGAAGAGTTCGTCAAAGTCGCCGAAAAAGTTGTCATTATTCATTTGATTGCCTTGTTGATTCCTTAACTCTTGGTAGCATTGCTGACATAAGTCGATTTCTTTGTTTTGGCCGTTGATCTTCGTGTAAAGATGTATCGAGGCCTGCCGTTGGTGGCAGTTTTGACAGAACATGTTAAAATACCGCCTTTCATAAAAGCTCTGCCTAAATTATAGGGCTTAGCACTCTAGTTAGTCAAGTGCTAAGACTCGGGGGAGAAAATAGCCGGCTTTTGAGACTTCTTCCTTTAATTTTGACAAAAAATTGCGCTAAAATAATGGATAGGAGGTTGTGACATTAATATGGACTATACTGATATTTTGGAGAAATTGGTCTTAGGCGACTTGCTGGAGTACCAGATCGACCCGCAGAAGGACCCAGAAGATGCGTTCGCTTTCCAGCAAAGCCTGCGCAATTACGGAAAAAACAAGAAAATCACCGGCCGGGCCGGCCGAGGCGGGGTTATTACCTATACTTCGATAGAGAATAAGCCAAAGTATTAATGAAAACATTTACAAATTAAGTTGTATTGACCTCGAAAACATGTTATTCTTTAAGAGAAACGGTACTTTGGTACCCAATTCTTGATTTTTAAAGGAGATAATTTACGATGGAAAAGAAAGAATTTCACATTATCGCTGAAACTGGTATTCACGCTCGTCCAGCTACCTTGTTGGTACAAGCTGCTTCAAAGTTTGGTTCAGACATCAACCTTGAATACAACGGCAAGTCAGTTAACCTTAAGTCAATCATGGGCGTAATGTCATTGGGTGTTGGCCAAGGTGCAGACGTAACTATCAGCGCTGAAGGCGATGACGAAAAGGAAGCTATCGCAACTGTTGCTGAAACTATGTCAAAAGAAGGTTTGGCTGAATAATGACTGAAACTTTGAAGGGTATCGCAGCCAGTGACGGCATTGCTGTTGCTCCAGCCTATCTCCTGGTCGAACCGGACCTTTCTTTTGAAAAGAAGTCTATTGCTGACGCGGAAGCTGAAGTAGCCCGCTTTGACAAGGCAGTTGCCGAATCACAAGCTGAATTGGAAAGTATCCGCAAGGTTGCCGCAGAAAGCTTGGGTGAAGAAGAAGCGCAAGTCTTTGACGCCCACTTGATGTTCCTGTCAGACCCTGAATTCACTGGCCAGATCAGCGCTAAGATCAAGAGCGACGCTGTCAACAGTGAAGCAGCTTTGGACGAAGTTGCCCAAAACTTCATCACTATCTTCCAAAACATGACTGACAATGCCTACATGAAAGAACGTGCAGCTGACGTCCGCGACGTTTCAAAGCGGATCATGGCGCACTTGCTGGGCAAGGAACTGCCTAACTTGGCAAGCATCGACCACGAAGTAGTTCTGGTGGCTGAAGACTTGACGCCAAGTGACACGGCACAATTGAACAAGAAGTACGTTAAGGGCTTCGTAACTGACCTGGGCGGCCGGACTGCCCACTCAGCCATCATGGCCCGGTCTTTGGAAATCCCAGCTGTTGTCGGGACTGAAAAGATCACCACTTCTGTAGAAAACGGCCAAATGCTGATCGCTGACGGTTTGGATGGGGTGGCCATCGTTGAACCAAGCGAAGAACAAGTGGCTGACTACCGCAAGAAGGGCGACGACTTCGCTAAGCAAAAGGCTGAATGGCGGAAGTTGAAGGACGAACCATCAGTAACTGCTGACGGCAAGCACTTCACGGTCGCTGCCAACATCGGTACTCCAGACGACCTGGCTGGCGTTTTGGAAAACGGTGCTGAAGCAGTCGGCTTGTTCAGAACTGAATTCTTGTACATGAACTCAAACGACTTCCCAACTGAAGAAGACCAGTTTGAAGCCTACAAGAAGGTTCTGGAAGGCATGAACGGCAAGCAGGTTATCATCAGAACCATGGACATCGGTGGCGACAAGCACCTGTCCTACTGGGACCTGCCAGAAGAAATGAACCCATTCCTGGGTATCCGGGCCATTCGTCTGTCCTTGAAAAACAAGGAAATCTTCCGCACCCAGCTGCGGGCCTTGCTGAGAGCATCAGCTTACGGCAAGCTGGGGATCATGTTCCCAATGATCGGTACTTTGGACGAACTTCACCAAGCCAAGGCTGTTTTGGCTGAAGAAAAGGACAAGCTGGTCAAGGAAGGCGTCAAGGTTGGCGACGACCTGCAAGTCGGCATGATGATCGAAGTTCCGGCAGCTGCCGTTCTGGCAGACCAATTTGCCAAGGAAGTCGACTTCTTCGCAATCGGGACCAACGACTTGATCCAATACACTATGGCTGCTGACCGGGGCAACGAAAACGTTTCTTACCTCTACCAGCCATACAACCCGTCAGTTCTCCGCCTCATCAAGCACACGATCGACTCAGCTCACAAAGCTGGTATCTGGTGCGGGATGTGTGGTGAAGCAGCTGGTGACTCAATCATGTTCCCAATCCTGCTTTCCATGGGCCTGGACGAATACTCAATGAGCGCAACTTCAATTCTGCGGATCAGAAACGAAATGAAGAAGCTCTCAACTGAAGAACTCGCTAGCTTGGCTGACAAGGCAACCAAGGAATCATTGACCAACGAAGACAACATCGAACTGGTTAAGAACTTGATGGCTGACAAGTAAAGAGCAAATTAAAAGCGATTAGCGTGAGCTGACCGCTTTTTTGCTTGATTAATTAAGAAATTTAAAAGAAAGCCAATTACCCCCTTCCTTTTTGTAAGTATCCATGCTAAACTATATACTATATAGTAAGTAACGAATGTGTGTTCATGCAATCTCATTTTAAAGGAGCGTGGTAACAATGGTAGATTTATATGTTTCTCCAAGCTGCACCTCATGCCGCAAGGCAAAGCAATGGCTTGAACAACACAATATTCCCTACAAGGAAAGAAACATTATTTCAGATCCTTTGAACCGGGAAGAAATCATTCATGTTCTGAGAATGACTGAAGAAGGCACGGAAGAAATCGTGTCAACACGGTCGAAGGCTTTCCAAGAGCTGAATATCGACCTGGACGACATTTCAATGAATGAACTGATCGATTTGATTGAAAAGAACCCAAGCCTGCTGAGACGGCCAATTATTTTGGATGACCGCCGGATGCAGGTTGGCTACAATGAAGATGAAATTCGCCGTTTCCTGCCGCACAGCGTGCGCCGGCTGGAAATAGCCCGGGCTAAGCGCCTGGCAGACCAGTATTTTTAATTTCAGAATAGAAAGTTGCAGGCGTTGGCTTCTAGAAGCTAACGCTTTTGCTTTGTTGGCTTTTTAGGTTACAATAACAGTACACATATAAGGAGGGATGAAGATGCGAGTTGAAAAGGTGAATGAGAACACGCTCCGCGTAAGCATGACCCGGGAGGATCTGAACCAGCGGGGCTTGAAGATCTTGGACTTACTCGGCAACCGGGAAAGAGTCCAGGAATTTTTCCTGTCAGTTCTGCGCGAAGTGGACGAGGACAATGACTTTGCCAGCGATGCGCCGGTGACTTTCCAGGTCATGCCCAACGATGGCGGGATCGATCTCCTGATTACCAAGATGAATGCAGGCAGCGACCTGCCGGAAGAAATGCGGCGCTTCTTTGATCCTGAAGCCAATGGGGTCGGAGACGATATGGCGGAAGCGGTTGAGGAAGATGACTGGGCCTTTTCCGACTTGAACCCGGCTGATGACGCCAACACTGAGATGGACCCGGTGGTCATGCAGGACCTGGGCAACACCGATGATGAAGACTACGAGGACTACTGGAGTTACCAGGAGACCCATGTTTTAGTCTTTGACGATATCGATGACCTCCTGGCTTTGGCTGACAGCCTCAAGGTCAGTGACCTGGCGTCCAGCGTCTACTACTACAAGCAGCAGTTTTACCTCAAGCTGGCTTTTATGGACGAGAATTACGCGGAAATCAAGCCAGCTGATGCCTGGGCGATCGCCAATGAATTTGGCCGCCAGGTGTCCGCTGACGAATTCCAGCAGGCCCAAGCCCACGGCCAGTGCCTCTTCCAGCAGGACGCGCTGGGGGCTTTGCGCCGGCAGTTTGCCAGCAAGCGGGCTTAAGAATCCAGATGATGATTTAAGGACTCCTTCGGGGGGCCTTTTATTTTGCCTATTTTAAAAAAATCTCCCCTTTTTGGCGTACTAGTTAATGGGGGATTATTTTGTACGCAGCTTTATTAAATAAAGAATTGGTCCTGGCCGTCAGTGAGGCCGGCAAGGTCCGGGAGAACCCGGCCTATCTCAACCAGGAAGTCTACCGCTGCCCGCGCTGCCAGAAACCGGTCATCCTGGTTTTATCGCAGAAGGCAGAGCCTTTTTTCAAGCACTACCAGGCTTACCGGGGGCTAGGAGAACAATAGGAGCACCGGCAGGGGAAAATGCTCCTCAAAGCCGCTTTGACCGCGGCGGGGCTAAATGCGAAAGCTGAAGTGCCGCTGGCTGACGGTGCCTTGCGGGCTGACGTTTTGGCCACACCGCTCTTGGCCTTTGAGGTCCAGTGCGCGCCCTTAAGCAAGGGGGAGTTTGCCCACCGGCATGCCCTTTACCAGGCGATTGGGATTAAGGATGTCTGGTTGGTCGGCCGCCGGCATTTTTTAGGGGAAAAGCTAAAGCAGACCCAGCTGATCTTTTTCCGGGAAAACCGGTGCTGGGGAAGCTATTATCTGGAAATCCACCAAGAGGCAGGCTTGATTAGATTGAAGTACCAAATAAGGCAGGCCCCTGTCAGTCAGACCCTGCTGTACCGGCAGGTGGACTTCGCCTTGGACGCGGAAGGAATTGCCGCTTTATGGCACTTTAGGCCCCTTTTGCCCCCGCCTTTGGCCGATGACTGGGTCAAGGAGCGGGACTATCTGGACCAGCAGCTGAAGGAAAAGAGCAAGCTGGGTCAGAAGCTGGGGGAATTGATGTACCTGGCCGGCTACACTGTCTTTACTTTGCCCAAGGAAGCTTTTTCCACTTGGCGCAGGCCGGGGGAAAAAAGCTGGCTCTTGAAATTTTTGCAGCAAAAAACCAGCCCCTAAAGGAGAGGCTGGCTATAAGAGATGAAGGTGGCTGACCGGATAATAAAGTGGAGCATTCTCCGTCAGCTGCATCAAGGGTTCAAGGCAGCTGTCCGCGCTGTTTTGGAAAACTTGCAGGAGGTCGTCGTCGCTTAATTCACCATCAAGCAAGAGACCGCTGTTATCGATCTGGTCGTCAAAAACCACGGTTGAAGGCAGGACCGTGATTTGGAATTTCCTGGCCAGCTGCTGGTCCCGGGCAATGACGTCTTTAAGGCAGGCATCATTCAAAGTAGATGAAATTTTCTCTGGCTTGATATTGAGGCTTTCCAGCAATTCTTCAGCCAAGGCCGGGGAATAAGACCGCTGGCCGTCACTCAAACTTTCCTGCAACTTGAACAAAAAGCTCCTGGCCTTCTTCTTGCCATAAGCGATTTGCACGGCATAGTAAAAGCTCTGGGCGCTGACTGAGGCATTGTGATAATTGGCTAAATTGATGGAAGTGTTGAAGTTCCAGTTCCGCTTGACCATGTCGGCCTTCATGGCTTCCATGGTTACCAGGGGAATGTAATTGACGGAAATTTCAAGCTGCAGTTCTGCCGCCAATAGCCGGATGCGTTTTTCAAGCTGGTAGCAGGATAAACCTAACGGATTGATAAACAGAAAAAGTTCGAACATGGTCGACCTCCAATTTTTGCTTCATCTGCTACTTTAACAAAGCTTTTACTTGAAAACAAAAGAAAAGCTTTCGCCTATTTTTACTTGGCATGCTGGCTGGCCCGGGCAATCTTGCTCTGGTTGTTGGCTGACTTGACCGGCAGGGCAAAGCGGGTCTTAATTTCTGCCAGGGCTTCCTTGATAGCGGCCGGGGAGTCATTTTCAATTTCCATTTCCCAGTCCTGGTAGCCGTCCGGGTAGCTGGTCTGGTCTAAAGTCAGCTCGCAGCCCTTTGGCCCGTCTAAAAGGATCCGCCGGGTCTTGCTCCAGGAAAAAAGGGTCAGCTGGCTGGCTTTGTCCGGGTAATGCTCTAAAAGGTACTGGCCGACATTGCCAGTCAGACTTGGCCGGCCCTTTTTTAAAAAGTCCTCGGCTTCAGGCAGGGTTAAATCATCATTGATTTCCAGGCTTTCATGGTAGGTCTCCTGCAGCTTCTTGACCGGAACCTTGATGGTTTCCTCGGCCCGGTCTTGGAAGCAGCGGATTCTGAGGGCACTGTGGTCTTCTTTTAGCTGCTTGTCCGGGGTGTCAAAATAGTGGTTGCTCTGTTTGAAGTCGCTCTTGACCGGGTAGGCAGCGACGATAGCCTCATAGCTGGCCTGGTCCAGGGCGACTTTGGCTTCAATTTCGCGGTTTTTGCTCATTTTTTTAGACTCCTTTGTTAGATAAAAATTAAAAAGTTTGCGTTGGTGCTTTTGCTAACATCTATGTTAAAATGAATTTGTTTGAGATGGAAGGGAAATGTCTGTGATTACTGATTGGGATACTTTTTTATGGCCATACAATGAAGCCGCAAATGAACTAAAAGTTAAATTCAGAGCTCTCCGGCAGAGTTTCTTGACCAAGGGAGAGCATTCGCCAATAGAATTCGTGGTTGGCCGGGTGAAAACGGTCGACTCCATTAAAGAGAAAATGCAGCGGCGGGTCATCAGCCCGGACGTGATCGAAACCGACATGCAGGACATTGCCGGTATCCGGATCATGTGCCAGTTTGTCGATGACATCTACCGGGTCGTTGACCTGCTCCATGCCCGCGATGACCTGGAAGTCGTCGAAGAGCGCGACTATATCCAAAATGCCAAGCCGTCCGGCTACCGGTCCTACCACATGGTGGTGGCCTACACGGTTTATCTGTCCGAGGGGGACAAGCGCCTTTTGGCGGAAATCCAGATCAGGACTCTGGCCATGAACTTCTGGGCCACGGTTGAGCATACCTTGAACTACAAGTACCAGGGGGCCTACCCGGAAGATATTTCTGAGCGGCTCAAGCGGACGGCGGAAGCTGCCTACCAGCTGGATGAAGAGATGTCCTCGATCAGAAATGAGGTCAAGGAAGCGCAGAAGATCTTCACCAAGAACAAGGGCAAGGAAAAGTCATGAAAGTAGCTATCGTTCACAATGACCGCGTGACCACCCAGGTGGCGGTCCGGCACCTGCAGGTGCTGCTCGCGGAAAAGGGCATTTTGCAGGACCAGCAGCATCCCGACCTGGTAATTTCTGTCGGCGGTGACGGGACCTTGATCTCTGCCTTTCACAAGTATAAGCAGCAGCTGGACAAGGTCTGCTTTGCCGGTATCCACACCGGACACCTGGGCTTTTACACCGACTGGCGGAACTACGACATGGAGAAGCTGGTTGACGCCCTGGCCAGCCATCCCGTTGAAGAAAACGAGGTGGGCTACCCGCTTTTGGACATGAAGGTAACCACCAGCTGCGGGGAGAAGCGCTTTTTGGCCTTAAATGAAGCCTCAATCAAGCGGATTTCCAAGACCATGGAAGCTGAGGTCTGGCTCGGGGGTGAGCGCTTTGAGAATTTCCGGGGCGACGGGCTCTGCGTGTCAACCCCGACCGGGTCAACGGCCTACAGCAAGTCCCTGGGCGGAGCGGTAATCCACCCCCGCCTCAAGACCCTGCAGCTGACCGAAATTGCCTCGATCAACAACCTGGTCTTCCGGACGGTGGGCTCGCCCATCGTTATTGCCCCGGATGAGTGGATCACCATCGTGCCGAAGATTTCCGACCGGGTGGTAGTGATCGTTGACGGGGAAAGGATCAGCTTGACCGACGTGCAGAAAGTAGATTATAAAATTGCGGCGGAAGAGATTCGCTTTTACCAGTATGGCCACCACCATTTTTGGGAGCGGGTCAACGACGCCTTCATTGGTGACAGATAGTGCAAGTATACAAAATGATTGTTGCGAAGAATGACCCAGGCCAGCTGAGTCATTTTTTGCTGAAAAAAGGTTTTTCCCGGCGGGCAGTCAACAACTGCAAGAACCACGGCGGGATGATGCTGGTCAACCACCACCGCCGGAATGGCAGCTACCGGCTAAAAGAAGGGGACGTGGTCCACTTTTTGATGGGCCAAGAGCCGGTCAACCCCTGGCTCAAGGTCTCCCGCCGGCCCCTGGACATTGTTGAAGAAACGGCTGACTATTTGGTGATCAACAAGCCGGCCGGCCTTTTGTCGATTCCTTCCGGCTTTCATGCGGAAGACGCGGTAATCAACCGGGTGCTGGCTTACTTTGAAAAGCAGGGGGTCAACCCGGCTTACGTCAAGCCCCACATCGTGACCCGGCTGGACCAGGACACTTCCGGCCTGGTTCTCTTGGGCAAGAACGCCATCGCCCATGACCGCTTCAGCAAGCTGGGCAAGGATGCTTTTATCAAAAAGTACCACGCTATCGTGCATGGCAACTTCGCCGAAGGAGATTTAAGCGGCCTGATCGACAAGCCCCTGGCCCGGGTGGGGGACACGGTCAAGCGGGAGGTCAATCCAAAGGGGCAAAGGGCCTTGACTGAATACCGGGTCCTTAACCAGGTCCCGGGGGCCAGTTTAGTTGAACTCCGCCTGTTGACCGGCCGGACCCACCAGATCCGGATCCACATGGCTTCTATCGGCCATGTCCTTTACGGAGACGACCTATACGGGGCCAGGGATGCTTTTGCCCGCCAGGCCTTGAACTGCTTCTACCTGGCCTTCCCCAACCCCTTCAGCGGGGAAGAGCGGGAGATTGAGATTCCCGACCCAGGCGACATGCAGGGCTTGTGGCGGCAGCTGAAGCAAGAAGCAGGGAAATAAATTAGCAGCAAAATAACAAAACAATAAAGTCAAAAAAGGAGACAGGCTGGCCTGTCTCCTTTTCTTATTCATCTGTTATCTATTTTTACGCGTTTGAGATTACTGCCCAAGCCAGGCCCCCGAGGGCACAGATGGCTAGCAGCGGCAAAACTACTGAGCTGAGCAAGGCAAAGGCCAGGCCGACCCCGATCAAAAAGATCAGAACCCGCCAGAGGGCCACGCCCATCTTCCAGCAGAGCCATAAAATAAAAAGTAAGCAAAGCAAACTTAACATGTTTATTCACCGTCCTCTAGCTTGCTATCCTTAAGCAATAATAATAGCATATTTTCGCGTGAATACAAGGATTACGCAAATACCAGACCGCAGATGGTGACGATGATCCCCAAAACAATCCGGTACCAGCCGAATGGCTTGAAGTCGTGGGTCTGCACGTACTTCAGCAGGAACTTGATTGACAGGTAGGCCACGATGAAGGAAACGACCATGCCAACCAAGAGGATAGCCAGCTGGTTGCCGACAAAGACGTGGCCGGCCTTGAAGAACTTGACCAGCTTCAAAAGCGATGCCCCGAACATGGTCGGGATAGCCAGGAAGAAGGAGAACTCAGTTGCCACGTAGCGGCTTGACCCGATCAGCATGGCCCCCAGAATAGTTGCCCCAGACCGGGAAGTCCCCGGGATCATGGACAAAACCTGGAAGCAGCCGATCAAGAGGGCGGTCTTATTGCTCATCTTGTTTAAATCAGTCAAGCTCGGCTGCCGCTTGGCGTAGTAGTTTTCCAAGACGATGAAGAGGATACCGTAGATGATCAAGGTGGCGGAAATTACCTGCCAGGAGGTCATGTTTTCTTCCAGCCAGTCATTCAGCGGCAGGCCGATGATGATTGACGGCAGGACAGCCGCGATGACCTTGAACCAGATCTGCCAGGTCTGTCCTTTTTCCCGCTTGCTCTTTGACGGGGCAAAAGGATTCAGCTTGTTAAAGTAGATCACGATGACGCTCAAGATGGCCCCCAGCTGGATGACAACCATGAACATGTTGATGAAGCTGGTTGGCTGGTCTAACTTGATGATGTAGTCGGCCAGGTAGAGGTGGCCAGTTGAGGAGATCGGTAGAAATTCCGTAACCCCTTCGATGATGCCGAGAATGATGGCTTTGAAAATGTCTAGCATGTTACTAAAAAAATACTCCTAACTTAATCAGTGAATAAAACTCTGGTGCCTTCTGGAACCGCGATGTCCTTTTCCAGCGGGGTCAAGGTCCCGTCGCTTTGCCGCTGGTAGAGGGTAGCGTTGTTGCTGTTTTGGTTGGCGGCAACGACGTACTTTTCCTCAGCGTCCCAGTTGAAGTCCCGCGGGAATTCGCCAAAAGTTGACACCCGCTGGACCAGCTTCAGGGCCTGGTCCGGCAAAACGGCAAAGACGGCGATTGAATCGTGGCCGCGGTTGGATACGTAAAGGAACTTGCCGTCACTTGACAGGCGGATGGCCGCTGCCCCGTTGTGCTGGTCCCAGCTTTCCGGAATGGTTGAGTAGGTGGCCAGGGACCGGAACATCCAGTTTTCTTCGTCAAACTTGACCACGTTGACCTGGCTGGAAAGTTCACCGGCCACGTAGAAGTACTTGCCGTCCGGTGAGAAGGCCAGGTGGCGGCTGCCGAAGCCGTCTTCGTTTTGGTAGCTGGCCAGGTGGGTCAGCTTTTGCCCGTCAAAGCCGTAGAAGTCGACTCTGTCTTGGCCCAGGTCGCAGGAAACCAGGTGCCCGCCCGGAGTTTCATCAAAGTAGTGCGGGTGAGCGCCGGCTTGTTCAGGCCGCGGCCCTAAAGCCTTGTTTTCGTGCTTGACCTGGTCAAGCAGGGTCAGCTGCCCCTGGTCATCATAGCTGATGACGGCCAGGACCCCAGTGTGGTAGTTGGCCGTGTAGAGCAGCTTCTTTTCCTTGTTGATGCCGATGTAGGCCGGAGAAGACCCCTCGTGCAGCAGCTGGCTGACCAGCTTGCCGTTTGCAAAGGCCGCGATGCCCCCCTGGCCGTTTTCATTCTTAATGGTAAAAATGAACTGGCCGTCTTTTTGGAAATAGGTTGGCCCGCCGACTTCAACGACGTTTCTTCTTTGTTCCAGATGGGCCTGGTCACCGGAGCCGATAAAGTCAAACTGGTATATGCCGGCTGACTCGTGCTTGGTGTAGCCGCCAATTAAAATATGCAATTTAAGCCTCCTTATTTACTCCACAATAACTCTAGTTTAAATATTAAGCTTATCTTTAGCAAATGTCGATAAGAGATAGTCGTCCGTAAAGAATAATTAACAATTCTTTTCTTCTTAGCTTTAAGTTCCCGGTGAGTATGTTAGAATTTAACCAGGTGGTAAAAATGAAATGGATATCTACAATTAAAGCAATCGGACCAAACGCAATCAGTGAAAAGGACCGCGTCGTAATTTTGTTTGGCCAGACGGCCAAAGATGAACTGCAGGACGTTTCCGTCATCCAGACCTTTGATGATGAACAGGCTGCCCAGGCAGTCGTTCTTAAGAAGGGCGATACGGTGACCATTGACGGGACGACCTTTTTGATCAACTATGTTGGCCCTATGGCGGTCAGCAACTTGCGGGCCTTGCAGCACGCCAGCCTCTTTTTCACTGACAAAGTGCCAAAGAAGCCGATGTCCAACGCCCTCTACCTGGACTTGCCAGAAGACCAGGAAATGCCGAAGTTCAGAGTCGACGACAAAATCGTTTACGAACACCTGTAGGCTGGATTAATGAAGAAAAGAGACACGAGCCTCTTTACGGACTGGGTGCTTAACAACCGCTTCAGCGTCGGCTTGATCAATGTGCTCTTGGTCCTGGTGATCGTGCTGGTCTTTAACAAGATTTCCTTTATCTTGAATCCGGTCAACACCTTCATCAGCGCCATCCTGCCGCCCCTTTTGGTGGCCATGGTCCAGTACTATCTGATGGAGCCGGTGGTTGATAAGCTGGAAGAGAAGTTCAAGGTGCCGCGGACGGTCACCATCATGGTGATTTTTGCCATAGTCACGGTCTTCTTGATCTGGGCCATCAATTCCTTGATTCCGGTCGTCCAGAGCCAGATTGACTCCTTAGTCAAGAACTGGCCCACGATCTGGAAGAATTCGACCAACGCGGTTGATGAGCTCCTGCACAGTCCGAAATTCAGTGGCCTGCGCGATTCTCTGCAAAAGCAGATGACTTCTTTGCAGAAGAATTTCAGCAAGAGCATGGGGTCAACCGTCTCCAGCGCCCTGGGGAATTTAACCAGCGCGGTCACCGTGGCGACAGCCGTCTTCACGACCCTGGCCACAGCTCCGTTTTTGCTCTTCTTTATGCTGAAAGACGGGCACAAACTGCGGCCTTTTCTGGTCAAGTTCGCTCCCCAGCGCTGGGAGCAGGCGACCAGCAAGCTGCTGCATGAAGTCAACCAGGCTGTGTCTTCTTACGTGATCGGCCAGGTTTCCGTGGCCATCTGCGTGGGGATCATGTTCTTCATTGGCTATACGATTATCGGCGAGCCTTACGGGGCAGCCCTGGCGATCTGTGCTGGCTTTTTGAACCTGATCCCTTACTTTGGGGCCTTCATCGGTTTGATTCCAGCCTTAATCATCGCTTTAGTGACTGATTTGCCGATGGTGGCCAAGGTCTTAGTGGTTTTCTTTATTGAGCAGATCATTGAAACCCGTGTCATCAGCCCGCTGGTTGTCGGCAACCGCTTGAAGATGCACCCGGCGACGACGATTATCGTCATGCTGGGGGCCGGCTCAGTCTGGGGCCTGTGGGGCGTGATCGGCGGGATTCCGATCTACGCGGTGATGAAAATCCTTTTGACCCATGTCTACCGGTACTACCGGAAGGTTTCCCACCTTTATGACGACAGTTTCTAGGATGAAGCAGACCAGGCTGGACAAGAAGAAAAGGAAAGGAAATAAATGACCAACCATATTGTTTTGTTTGAGCCGGAAATTCCCGACAACACGGGCAACATTGCCAGAACCTGCGCGGGAACCAACACGGTGTTGGACTTGATCGAGCCCTTGGGCTTTCGCCTGGACGACAAGCATCTCAAGCGGGCCGTTTTAGACTACGGCGGTGAAGTTGAAATCCGCCGCCATGACGACCTGCGGGCCTTTCTGGCTACTTTGCCGGACAATGCCGAGATGTACTTGATCTCCAAGTTCTCTAGCAAGGTTTATACTGACGTCGACTACACGGACGAAAGCAAGGACTACTACTTTGTTTTTGGCCGGGAAACGACCGGTTTGCCGGAAACCTTCATGCGGCAATACGCGGACCGCAATCTCCGCATTCCCATGTCCGACAAGATCCGGGCCTTCAACCTGTCCAATTCGGCAGCGATTGTAATTTTTGAAGCCCTGCGCCAGCAAGGCTTTCCCCACATGGAAAAGTCCCACCACTATGAAAACGACAAGCTCAAGGACGACTACAACCGTCCTGGCCGCTACCAGCGGAACCTGCCCAAGCATTAGTGGCTAATAAAGAAATTTATGAGGTAAAATCATGGAATTTAACAAGCAGACCCCAATCATCGTTCGTGCCTTTCACTATGACCTGCTCGATGAGCCAGAAGAAAAGAACGAAGTCAACGTAGCCATCCGCCAGGTTGTCGCTACGGGCGAAGACGGCGTTGAAGATGCCGGTGAGGCAGGCGGCTACTACGAAGTAGCCGTTGTCTACGACGTTACGCCAGACGAAGACAACATCATCGAAATCAGCGGGGTCAACACCCAAGTCGTTCAGCTTTTGGGCTACCACGGCGACGGCCAGGACCTGGACCAGGAAACCTACCGTTTGCTCAGCCGGCCGCTGGTTGAATACATCGAAACCTTGACTTACGAAGTTAGCCAGGTTGCCTTGGATGAACCGATCAACTTGGACTTTGAACCTAATTTCTAAGGATTGAGCAGGTGAAGAAATGCCTCGAAAGAAAAGGCAGGCTAATCGTAAAAACAAAAATAAAAAGAAAACAGAAGAATCTTTGAGCTGGGTGGTTACCGGGATCGTCTCGATCCTGGTAGCCATTTTGGCGTTATTGCGCTTTGGCTGGCTGGGCAAGGAACTGGCCAATCTTTTGCGGCTCTTGATTGGGGACAGCTATCTTTTAGGCGGGGCCTTCCTGGCCATTTTGGGCCTGGTCATGCTGATTTACGGGCAGCCGCCCCGCTTTGGCTTTAAGCGGACAAGCGGCTTGATTTTGGCTTACCTGGGCCTTCTGTACATTTTGGCCAGCCGCTTTTTCAATGTCAGAAGCGTCCACAGCGAATTTTTGACCGCCTTCAAGAACGTGATCTTTGAAGAACTGGCCCGGGCCAATGTCACCGTCAGCGTCGGCGGGGGCTGGATCGGGAGCTTCCTGTACGGGATCCTCTACCAGCTTTTAGGCCAGATTGGCGGCCTGTGCCTGGCTGTTTTGAACATAATCAGCGGGATCTTGATGTTCTTTGACGTCAAATTCCGCTCCCTGGTCGCTGCTTTTCAAAAAATCAGCCGCTCCTTTATCCAGCAAAGCAAGGATGGAGCCGGTCAGCTAAAGGAAAAGTACTCTGAATACAGGGAGCAGCAAAGAAAAGATCCCAACAACCGGGAGAAGCTGACCGACCCTTGGCGGGATAGCGAAGAAGCCAAGCCTTCCCTGCCGGAAATCCAGGTGGCAGAGCAGCACCCTGACCCGCCGGTCACTAATTCACTGGAACTGGATGACCTGCTCAAGCCCCGCAGCCAGGCTGAAGATGACCAGAAGATGATTTTGGCCGACCAGCAGGTTGACCATGGTCTGGACAAGAGCACGGTCAGCTATGATGACAACTACCAGTTCCCGCCCCTGTCTCTGTTAAAGGCCGTCCATGCCAGTGACCAGTCCAGCGACAAGGATAAAACCAGGCAGAACACGGCTATTTTGGAGGAAACCTTCAAGAGCTTCGGGGTGGAAGTCAATGTTAAAAGGGCTATCTTAGGCCCGACCATCACCCGCTACGAAGTCCAGCCAGCCGTCGGGGTCAAGGTCTCCCGGATTGTCAACCTGGCCGATGACTTAGCCCTGGCCCTGGCGGCAAAGGACATCAGAATTGAAGCCCCGATTCCGGGCAAGCCTTATATCGGGATTGAAGTGCCTAACCAGAAGGCCCAGTCTGTGGCTTTTAAAGATGCCATGGAGCACCAGGACCAAAAGGCCAAGGACCATCCTTTGATGGTGCCTCTGGGCAAGGACGTGACCGGGCAGATCATCAGCGCTGACTTGACCAAGATGCCCCACCTGCTGGTGGCCGGGTCAACCGGGTCCGGTAAGTCCGTGGCCATCAACACGATCTTGACCAGCATCTTGATGAAGGCCCGGCCGGATGAAGTCAAGCTGGTTTTGATCGATCCGAAGATGGTCGAATTGTCAGTCTACAGCGGGGTTCCGCACTTGATGATCCCGGTTGTCACTGACTCCCGCCTGGCTTCCAAGGCCCTGAAAAAAGTCGTCGACGAAATGGAGCGGCGCTACAAGCTTTTTGCTGCCGGCAGCGTCCGCAATATGGGCGAATATAACCGCAAGGTGGCTGAGAACAATAAGGATACCAGCCGGCCGGTAATGGAGCCTTTGCCTTATATTCTGGTCGTTGTTGACGAATTGAGCGACTTGATGATGGTTGGCGGCCACGACGTGGAAAACTCCATCGTCCGCCTGGGCCAGATGGCCCGGGCCGCCGGCATCCACATGATCCTGGCTACCCAAAGGCCGAGCGTGGACGTCATCACCGGTTTGATCAAGGCCAATGTGCCGTCAAGAATTTCCTTTGCCGTTTCCAGCGGGGTCGACTCCCGGACTATTTTGGACCAGGTCGGCGCTGAAAAGCTGCTGGGCAGGGGGGACATGCTCTACCTGCCGATCGGGGCCTCCAAGCCTGACCGGATTCAAGGGGGCTACATCGATGTCGATGAGGTCGAAGCCGTCGTTGACTGGGTCAAGGGCCAGCAAAGCGCTGAATACGACGAGAAAATGATTCCCCAGGCCGGGGATGATGACGAAAGCAGCGATGACGACGTTGACGACGAGTACTACCAGCAGGCAGTGGACCTGGTCCGCCGCCAGCAATCAGCCAGCACCTCCATGCTGCAGCGGCGGTTCAGAATCGGCTACAACCGGGCTGCCCGCCTGATTGACGAGCTGGAGGAGCACGGGGTAGTCGGCCCGCCGGAAGGCTCCAAGCCGCGCAAGGTGCTTTTGCCGCCTGAAGGACAAGAAGAATAAAAATAATGAACGAAGAAAATATCAGCATTCAAAGCAATCAAAAATTTACCAGCGGCAACCTGGGCCTGTTCGTCCGCCTGCCGCTGACCAAGCACAACATGTCTATGGCCAGCCTGCTCTGCCGCATGCAGATGAACGAAAGCGAACTCTTTCCGGATCCCGGCCTCCAGCAGGTCGAATTGCAGCAGCGCTACTCCTTCCAGTTTGAAGCAGTCGTGCAGCTTTTTGGCAAGGAAATGGTCATTTCTTACCTGGCCAATTTCGTTGAGCCCCAGGAAATCCTGGACCCGGACTACAACTACCGGCAGATAGCAGAAACTTTTGCTGGCCTGGCCACCCGGCCCTTGATTACGCCCAGCTCTGTCCAGCTGGCCCAAAGACAGCTGGAAGAAGAATACCAGGAGCTCATGGCTGAGCCGAGCAACGCGGCTTTAAGCGCCTTTTTCAACAACTGGTACGCGGACCAGCCCGATTACGCTGCCAGCTTCATCGGCACGATTGAAGATATTACGAAAGCGACCAGCCAAGAAGTCCGCTGCTTTGCCGATGCCATCAAGACCCAGGCCAGCTGCGTATTTGGCCATGTCTATGATGCCCGCCAGGTTAAGCGCCTTTTGCAAAAGAAGCTGCAAGAAGAAGGCTGGCCGGGCCTGGCCTTGGACTTTGGCAGCCGGGACTTATTGATTTCGGCCCCGGACTTGCGGATTGAGAAAACAGACGAGCAGGGCAAGCAGCAGGCCCAGCTTTTCCTGGGCTATGCCTACAAGGGCCAGCCCAGCCTGCAGGATTTGGCCACGGCGACGGTCTTGCGCCAATACTTGACCGGAGACCAGTCCTCCCGGCTCTTCAGCAAGGTCAGGGAGGAAAACGGGGCGGCTTACGCGGTGGAAAGCAACTGGTATGCTGACAATGCCCTCTTCCTGGTCAACGCCGGCCTGGATCCGGACAAGTTGGACTTAGCCCGGCAGATCATCGGCAAGGAGATGCAGATGGTGGCTGACGGCCGGATCGATCCGGGCCTGCTCAAGCAGAGCCGGCAGGCGCTGGCCAACCGCCACTTACTCAACCAGGACCATGCCAGCTGGCTTTTAGCCAAAGACCTCCGCTACAAGCTCCATGCCGACTACGAGGACTTTGATATGATGGCCGCGGTCAGCCGGGTGACCAGCGGCCGGCTGGCTGACTTTGCCCAAAAGCTGTATCTGAATGAAAGCTATGTATTAAAATGATCAAACCAGAAATTATCAGAAAAGATTTCCCTTCCGGCTTCAAGGCCCAGGTGATCCGGCGCAAGGGTTTTAACCAGCGCTTTTTCGGCATTATCGTCGATTTCGGCAGCGCTGATCCCCAGCCCGTGCCCGGCCTGGCCCACTTTTTGGAGCACAAGCTTTTTGCCGCGGAAGAAGGCGACTTGTCCCTGGAATTTGAAAAAATGGGGGCTAGCGTCAATGCCTTTACCTCTTTCAATGAAACCATGTATTACGCCAGCGGGGTCAAGAATGTCGGCCCCATGATCGACCTGCTCTTCAAGCTGGTTGGCCAGCCCTACTTCACCGATGAGAATGTGGCCAAGGAGATCCCCATCATCCAGCAGGAATTAGCCATGTACCAGGATGAGCCTGACTGGATCCTGGGCGACCGGCTCCTGCGGGGCATCTATGGGGACTGCAACTTGGCCATCGACGTGGCCGGGACCAGGGAATCGATTGCCAGCGTGACTAAGGAAAAGCTCCAGGCGGCTTATGATGAAAACTACGTGGCCGCCCGCATGTCCTTTGTTGCCTGCGGGGACTTTACCGACAACCAGGTCAAGACCATTCTTAGACAGGCCAGGAAATTGTCAGACCAATACCTGCGCCCGGGCAAGCCGCAAAAAGAAGCGGACTTGGTGCCCTTTTTGCCAAGCGGGCAGGACTGGAACCTGATCGGCGGGGAAGTGCCCCTGTTTACGGCGGCTATCCCTTTGCCAAACTTTAAGAAAGTTTTAGCAAGTCGAGATATGAGTCAAATTTTGCTGGAAATCATGCTAGAATCAAAGTTAGGTGCCGCCAGCCACTGGTTCGCCAGAGCCAGACAAGCTGGCCTGATCAGCCAGCCCCTCCAGATCAGCGTGACTTATACCCGGCAGGGGGCCTACGCGGTCTTGCTGGGGATGAGCTCGGAAGCAGAAGTGCTGCTGGACCAGATCAAGGCTGAACTGGCGCCAGACAAGCTTTTTTCCAAAAAGCAGGAAATGGAAATGCGCCAGCTCTTTGAGATTCACAAAAGAAGCTGGCTGGCCCAAACCGTGCGCAGCCTGGACAATTTGTCGGGTTTTGCCGTGGAAATGGCTGAAGAAAGCCTGGATGAGGAAGACTTGTTTGCCAATGTTGAGCAGATGCAGGCCATGAATTTTGCCGACTACCGGGCCTACTGCCAGGAGCTTTGCGAGGGCGCCAGCATCAACACGGCCCGTCTGCTTGAGGAGGATGACCAATGAAGCGAGCACTGATTTTCGGGGCAACCGGCGGTATTGGCCAGGCCATTGCGGCCCGCCTGGCTGAGTCTGGCTGGTCCATGTACCTGCACTGCAACAGCAACTGGGAAGAGGCCAGCGATTTGGCCAGGACTCTGGCGGAAAAGCATCCCTTGCAGGATTTCATGCCGATCAAGCTGAACTTTTTAGCAGGCGACGACCAGCTCAAGAATTTTGCCAGCAGTCTTTTGCCCGTCAACGCGGTCGTTTTTGCCCAAGGAATTACCAACTATGACTTCCTGGGCAGCCAGAGTTCCCAGGTCATTGACCAGATCATCAAGGTCAATTTGGAGAACCCGATCAAGCTGACCAAGCTTTTGGAAAGCCAGCTTTTAAAGCAAGAGCACAGCCGGATCGTCTACCTGGGCTCAGTTTACGGGGGGCAGGGCAGCGCTATGGAAGCAGTCTACAGCGCGACTAAAGGCGGGATCAGCCGCTTTGCCCAGGCCTATGCCCGGGAAGTTGCCGCCAGCCGCTTCACGGTTAATGTCGTTGCCCCAGGGGCGGTCAACACGGCCATGAATGCCATGTTTTCCCCGGAAACCTTAAAAGAGCTGGCAGAAGAAATTCCGGCCGGCCACCTGGCCAAGCCCAAGGAAATTGCCTACTGGGTTGACTGTCTACTTAACCCTGAGAGCGACTACCTGACCGGGCAGACGATTTATGTCAGTGGCGGCTGGCTGGAATAGGGCGACACATCCGCGGCCATTGTGCTATAATTTATAAACGAATTTTAAAGTGATTGAAGAGGTTAATAATGTCAGGCATTGGAGAACAACTACGTAAGGCAAGAGAGGCCAAGGGCCTTTCAATTTCCGATATTGAGAAGGCTACGAAGATCCAGAGCCGCTACCTGGAAGCAATCGAAAACAACGATTTTGACAAGTTGCCAGGCGACTTTTACGTCCGGGCTTTCATCCGCCAGTACGCGCAAATCGTCGGCTTGGACGGCAAGGAATTGCTGAGCCAGTACCAAGGCGAAGTTGCAAATGAAGTCACGAGCGAAGTCAGCCAGCCGGCAGCAAGCAGTCCGGCTCAAGAAGTTCATGAGGAAGCTCATGAAGAAGAAGCAGCTCCAGTAGAGCCGGTAGAAAATAAGCCGGCCAGAATCAGTGCCAGCCGGCCAGCCAAGCGGGAAGTTGCCGAGGAAGCTCCTAAGGACGCCAAGTGGCGCAAGCTTGTGCCACGCCTGGCCCTGGGCTACGGGATCGCCCTTTTGCTTTTGATCGGGGGGATGGTCTTTGCCAACATGAAGAAGGCCGGGTCAAGCAGCCAGAAGGAAAATGCTGGCTCCAGCGTCACGATTACTTCCAAGAAGTCTTCCAGCAAGAAGAGCTCATCAGCTTCTTCTTCATCCAAGAAAAAGAAGACCAGCTCAATCAAGGTTGCTTCACTTGGCGGCTCAAGCTACCGGGTAACTGGCATCAAGTCCAGAACGCCATTGGTAGTCCGGTCAAGCAAGCAAAGCATCTACTACTACGTTTCCGTTGACAACGTGATCACCAACCAGGGGACCCTGCAAAGCAGTGAAAAGCACACGGAAACTGTCAAGAAGGGGCAAACTTTGATCGTTTACCTGGGGACTGATACTGGCGTGACTGTAACTGTTGGCGGCAAGAAGATTCCGTTCACTCCAATCAACGGCACGACCCGTTTGACTATCTACCTGGGTGACAGCTCTGCTTCAGCAAGCAGCTCCGCGGCAAGCCGCACGACTAGCACCAACACTAACACCAATACTAGCACGAGCTACAGCAGCCGGGCAAGTTCCAGCGTGCAAAGCTCAGCTTCCAGCCGGCCAGCTGCTTCTAGCTCCAGCGTTCAATCAAGCTCACAAGCTTCATCCAGCGCTGCCCCAAGCAGCCAGTCATCAGCTGCTCCATCATCATCTGCCGCTTCCAGCAGCAAGCAACAAGAGAAGAATGGCCATTAATTCTTAAAAGTGAGGAATTTAAAGCAATGAATTTACCAAATAAACTGACTGTTTTCCGAATCTTTTTGATTCCTGTCTTCATGATCCTGCTGATTGCCCAATGGCCAGCCGGCTCATTCACCCTGGCAGGGACTGAAATTCTGTGGAGCCGGGTTGTGGCCATGATCGTCTTTGCCGTTGCTTCCGCAACCGACTGGTTTGACGGCCACATCGCTCGCTCCCGGGGACTGGTAACCAACTTTGGTAAGTTTGCTGACCCGCTGGCGGACAAGATGCTGACCATGACGGCCTTCATCTTCATGGTTGCATTGAATCTGGCTCCAGCCTGGGTTGTAGCCATCATTGTCTGCCGGGAACTGGCTGTGACCGGCCTGCGCCTGATCGTGGTCGAAAACAACGGCAAGGTCATGGCGGCTGCCATGCCTGGCAAGATCAAGACCACCTGCCAGATGCTGTCAATCATCTTCCTGCTCTTTGGCGACATCTTCCACCTGGGCACCATCCTGCTCTACCTGGCTCTGATCTTCACGATCTACTCCGGCTACGACTACTTCCATTCTTCATGGGATGTCTTCAAGGGTTCAATGTAAGCATTTAGAAAATCACTATTCTTTAAAAATGAGTATCAGCAAGGTACTCATTTTTTATTTTTTAAGTCAGATTGGGGAAAAAGGGCTTTTTTCTTGTACTAGTAAGTGGAGGGGAAATAATTTGAACGTTAGTTCGGATTTTTCTTGCTTTTTACCAGGCCTTCAAAGTATAATGTTTATTAGTAAGTTTCCAGGAGGGAAAAATTTGGCTAAAGATGAAAAAAAAGCGGCTCTTGAAGCGGCTTTAAAGAAAATTGAAAAGAACTTCGGTAAAGGCGCGGTCATGCGGATGGGCGAGAAGGTCGACACCCAGATCTCGACTGTTCCGTCAGGCTCACTGGCACTGGACGCGGCCTTGGGCGTGGGCGGCTACCCGCGGGGCCGGATCGTGGAAATCTACGGGCCGGAATCTTCCGGTAAGACGACCGTTGCCCTGCACGCCGTAGCTGAAGTGCAGAAGCGGGGCGGAACGGCGGCCTACATCGACGCGGAAAACGCCATGGACCCGGCTTACGCTGAAGCCTTGGGCGTGGACATCGACCAATTGATCCTGTCTCAGCCAAACACTGGGGAAGAAGGGCTGCAAATCGCGGACACCTTGATCTCCAGCGGGGCCATCGACATCGTCGTGGTCGACTCCGTTGCCGCCCTGGTGCCGCGGGCCGAAATCGAAGGTGAAATGGGTGACTCCCACGTTGGACTCCAGGCCCGCCTGATGAGCCAGGCCTTGCGCAAGCTCTCCGGGACGATTGCCAAGACCAAGACCATTGCCATCTTCATCAACCAGATCCGGGAAAAGGTCGGCGTCATGTTTGGTAATCCCGAAACCACCCCAGGTGGTCGGGCGCTGAAGTTCTACTCAACCATCCGGCTGGAAGTCCGCCGGGCAGAACAGATCAAGCAGTCCACCAACGTTATCGGTAACCGGGTCAAGATCAAAGTGGTCAAGAACAAGGTTGCTCCGCCATTTAAGGTAGCTGAAGTCGACATCATGTACGGGCAGGGGATCTCCCAGTCCGGCGAACTGCTGGACATGGCTGCTGACCAGGACATCGTCGACAAGGCCGGGGCCTGGTACTCCTACCACGGTGAAAAGATCGGCCAGGGCCGGGAAAACGCCAAGAAGTACCTGGAGGAACACCCGGACGTTTCCGAGGACATCCAGACCCAGGTCCGCAAGGGCTTACGGAATCGATGCTGAATCTCTGGAAGAAAAGGAAGATCCGGAGAAGGTCAAGGAGCAGCGGGCTAAGAAGGCAGCTCCTGGCGAAGAGAAGCCAGCAGAGCCGGCAAGTCCGGAAAAGACTGATAAATAGGCAGTTTTTGGCCAATAAAAAGATTGCCAGCAGAATTCTGGCAACTTTTTTGTTTACGCAAATGCAGCTAAGGAATTGACTTTACCAAAAATGTAACATATGATTAGTAATGTGTGAATAATTCTAAATAAAAAGGCGACGTAACTCATGATGAATAATACTGTATTTCCTCTCGCAACAGTCGCTGTAATTTTTCTTATTTCACTTGTCGTGGGATGCCTGATTGGTTATGCCATCCGGAAGAATGTCTGGGAAACCAGGGCGGAAAACGCCCGGCAGAGCGTGGAGGCAATTTTGGCCAAGGCGAAAGCCGAAGTCGAAGTAGCCAAGGCCGAGATCCAGGCGCAGAAGCAGGCCGCTGAAGCCGTTAAGCGGGATGCTGAGACGGAGAAGAAGGCCAAGATCCTGGAAGCCCAGGAAGAAATCAGGGATTACCGGCAGAAGGTTGAAGACGAGCTGAACAGGCGCCGCGATGAAGCGGCCCGCAAGGAAAACCGCCTTCAGCAGAAAGAAGATACCCTGGATCACCGCAGCAGCCTGCTCGATGACCGGGAGAAACAACTCACACAAAGGAAAGCCCAAATCAAACAGCAGGAAGAAAAAGTCGCTGGTTTGCTGGAAGAAGCGCACGGGCTGGTCGAGAAGCAGAATGACAAGCTGCTGGAAATCTCCCGCTTAGACGAAGAAGAGGCCAAGAAGATTGTCCTGGCCCAGGTCTCCGACCACCTGACCAAGGAGAAGGCGGAGCTGATTCGGGCTAACGAGGAAGAAATCAGTGCCAGAGCCGACCGCTTTGCCCACCAAATCATCGTGGATGCCATCCAGAGCAGCGCGGCGGATACGGTCGCGGAAACGACCGTGTCAGTCGTGGACCTGCCAAACGATGACATGAAGGGGCGGATCATCGGCCGCGAAGGCCGGAACATCCGCTCTTTTGAAGCCATGACTGGGGTGGACTTGATCATTGACGATACGCCAAATACGGTCACCTTGAGCGGTTTTGACTCCATCAGACGGGAAGTTGCCAAGCGGGCCCTGCAGAAACTGATCAAGGACGGGCGGATTCATCCGGCCCGGATCGAAGAGATGGTTGACAAGGCGCGCAAGGAAGTCAACGACGATATTTACGAGGCTGGTGAAAGTGCCTTGATGGAACTGGGCATCCATCGGATGAACCCGGAACTGGTCAAGATCCTGGGCCGGCTGAAGTACCGGACTTCCTATGGCCAGAACGTGCTGGCGCACTCGATTGAAGTCGGGAAGCTGGCCGGGACCATGGCAGCTGAACTTGGTTTGGATGAAAAATTAGCGGTTCGCGCGGGATTATTACACGATATTGGCAAGGCAATCGACCATGATATCGAAGGCTCCCACGTAGAAATCGGTGTTGAATTGACCCGGAAATACCATGAACCGGACCTGGTGGTCAACGCGATTGCTGCCCACCACGGTGACGTGCCGAAGCTCTCCTTCATCGCTGACCTGGTCGTGGCGGCGGACACGATTTCCTCCGCCCGGCCTGGGGCAAGAAGCGAAAGCTTGGAGAACTACATCCGCCGTTTGACGGAACTGGAAGACATTGCCGGCAGCTATGACGGCGTCAAGCAGGCATATGCCATCCAGGCCGGCCGGGAAGTCCGCGTAATGGTTGAGCCAGGCAAGATCTCAGATGATGAGATCACGGTTTTGGCCCACGAAATTCGGGACAGGGTCGAGAAAGAACTCGATTACCCGGGCAATATCAAGATCACCGTAATACGGGAGAAACGTGCCGTGGCAGTTGCCAAATAAAACAGAAAGTCCAGATTGAATTCTGGACTTTTTTGTTAGCATTTGGCAAATCGCCTTAAAGCCCGGTATAATTAACTCAACTAGACTCAGAAAGCAGAATTTCATGTTTAAGATTATCGTTGACCTTTTTTTACTGGTGATCATCCAAGTAGCGATCACGCCTTTCATCCGGCGCCTGGCCTTTGTCCTGGGGGCGGTGGACAATCCTAACGCCCGCCGGGTCAACAAGAAACCCATGCCGACTATCGGGGGGCTGGGGATTTTCGTGACTTACAATATCGGGACCTTCATCTTGCTCAGAGAGCAGTTTCCGACCCACGAGCTCTTTGCCCTTTTGCTGGCGTCCAGCGTGATCGTCTTGACCGGGATGATCGATGATATTTTAGAACTCAAGCCCGGGCAAAAAATGGGCGGGATCTTCATCGCGGCCATGATTACCTACTTTTTGGCCGAAATCCGGATGACCGAGCTGAATATTCCTTTTACCGGCCAGACCATCAATTTGCCCTGGTATCTCAGCCTGCCGATTACCATCTTCTGGATCCTGGCCTTGACCAACGCGGTCAACTTGATTGACGGCTTAGACGGCCTGGCGGCCGGTGTGTCCTGCATCTCGCTTTTGACCATGGGGATTGTCGGCTACTTCTTCTTGCGTAACCAGGGCCTGTACGTGCCGATCGCTTGCCTTATGCTGGCGGCCTGCCTCCTGGGCTTTTTGCCTTACAACTTCAACCCGGCCAAGATCTTTTTAGGGGACACCGGGGCCCTCTACCTGGGCTTCATGATCTCGGTTTTAGCCTTAAAGGGCTTGAAGAACGTGACCTTTATTTCTTTGCTAGTACCGGTGATCATCTTGGGCGTGCCGATCTCTGATACGGTCTATGCCATGATCCGCCGCAAGCTGAACAAGAAGCCGATTTCCCAGGCGGACAAGCACCACCTCCACCACCAGCTGATGAACTTGGGCCTGACCCAAAGGCAGACGGTACTGGTGATTTACGCCCTGTCCTTGATCTTCTCCTTCGTGTCCATGCTCTTCCTCTTGTCGCCGATCTGGGCCATGGTCCTCTTGCTGGTCGGCCTCTTGATCGCCGTTGAGCTCTTCGTGGAATCAATCGGCCTTTTAGGGGAAAAATACAAGCCCCTCAGCCACTTGATTAACCGCCTGGTTTTACATAGCACCCACACTAAGGAGCCGGACGTTGAAGTCTGGCACCAGGGCGAGGCCAAGCCCCGGAAGTGGCAGGAGCGGTCCAAGGGGGGGCATAAGCCTGCTGAGAAAAATAGCGGTAAAAAACAATAAAGCTGAACAGACAAAAGAAAATGACCAAGCAGAAATGCTTGGTCATTTTTGGTTAGAATCTTTTTTCTCCGCTTTTAACGGGAATTTCGTTATAGCGCTGGTCCCCCTTGATCAGGTCGGGTTCCCCGTTTAAGAGCTCGGTTAGATCGCTGATAAAGGGGTCAATCTGGTCCAGGTCCAGGTAGATGGAAATGGTGATGTTTACGCCATATTCAGTGCCGTCAACGAAGACCTCTTTTTCCTTAAGGAAGTGGTCGACCTTGTCATAGCGGTTGTAGGGGATGGAAAAAATCAATTCCTGCTGCTTAACCCGCTTGACGATGCCAATGGCTTCAGCTGCCTCGCTGACGCTGGAAGAGTATGCCCGGATGAGGCCGCCGGCCCCTAATTTGATTCCGCCGAAGTACCGGGTCACGACGACGGCGACATTCTTCAGGCCCATTAATTGCAGGGTCTTTAATTCCGGCACCCCGGCCGTACCGGCTGGTTCGCCGTTGTCGCTGCTTTTGACCCGGTCGTCATTAATGCCCAAGGTGTAGGCATAGGTGTTGTGGGTGGCGTCATGGTACTTTTTGCTGGTCGCGGCAATAAAGTCCCGGGCCTCTTCCTCATCCTGGACCCGGGCAAGGGTCGCGATGAAGCGGCTCTTCTTGATGACCAGCTCATGCTGGCCGTTTTCTTTGATTGTTAAAAAATCTGCTTCTTTTGACAAAAAATCATCCCTTTTTGGTGTATTAGTTAGTGGAGGCGAAAAAATGACAGAAGAAAAAGAATCTCTGGCCGGCCGCCAATGGCTGGTTGACAAAGTGGATAATAGCATAAAAGAGGGGCAGACGGCAATTCCCGCCATCGAAAATGGCATCTGCCAGCGCTGCGGCAGCTCCTGCTGGGTCCGCCTGCCGTCGGGCTTTTTGTATTGCCGTGCTTGCGTGGGCCTGGGCCGGCTGGATGAGGGCAAGCTTTTGGTCCGCCAGGCGGCTGGCAGTCATTACCCGGCCAGGGCGGGGATGACCTGGACAGGGCAGCTGCAAGAGCGGCAGGAGGGTGTGAGCCGCTTTTTATTGGAGAAATTTGCCGCTAAAGAGGACTGCCTGGTTGAGGCCGTGACCGGGGCGGGGAAGACGGAGATGATTTTTCCCTTATTGGCTGAGGCTTTCAGCTGCGGCTGCCGGGTAGCCATTGCCACGCCCAGAATCGACGTGGTCAATGAGCTTTACCCCCGCCTAGTAGCAGCCTTCGGGGAGGTGGAGATCGGCAAGTACCATGGCCGGGAGGAAAAGGAAGCGGCCAATGAGCAGCTGGTCATCTGTACGACCCACCAGCTGCTGAAGTACTACCAGGCCTTTGACCTTTTGATCATCGATGAGATCGACTCCTTCCCATATGCCGGCAATCCCCAGTTGCATTTTGCCGCGGGCAATGCTGTTAAAAAAACGGGCAGCCAGGTCTTTTTGACGGCCACTCCGCCTGAGGACCTGCTAAAAGCGGCCAGGCAGGGGAAACTGGCCATCGTTAGGCTCAACCGCCGCTTTCACTGCTATCCCTTGCCTGTGCCCCGGCTGGACCTGTACGTCAAGCCTTTTTTGACCAAGGGCCGCCTGCATCCGAAATTAGCCCGGCGGATCAAAATGGCGGCCAAAAGCGGCCACCCCCTCCTGGTCTTTTTGCCCAGAATTGCCCAGATGCCCCAGTATTTTGCCGCTGTCAAAAGGCTCCTGCCCGACTTGCGCCTGGCAACCGTCTATGCCCAGGACCCGGACCGGCTGGAGAAGGTGGAAAAATTCCGCAAAGGCGACCTGGACCTGCTTTTGACGACCACAATCTTGGAGCGGGGGGTGACCTTTAAGCATGTCTGGGTGATCATCGTGGCCGCTGATGATGAGATTTATTCCGCTGCCAGCATGGTCCAGATTGCCGGCCGGGTGGGCAGAGACAAGCAGGATCCGGACGGGCTGGTGCTTTTTTGCTACCGGCGCTACAGCCGGCAGATCAGAAGCGCGGTCAAGCAGATCAAGGAGATGAACCGGGGATGAGTCTTTGCCTTTTTTGCGACCAGCCTTTTACCGGGGATTTGGACATGAGGCGCCTGCTTTTGCCGGGCAAAAGCAAGACTTCCTGCCTGTGTCCATCCTGCCGCCAGCTGTTTGCGCAGATCGGCACCGCCTTTTGCCCCCAGTGCGGCCGCCAGCAGGATAGCGGGGAAATCTGCCAGGACTGCCAGAAGTGGCGGCGGATCTACCAGGGGAATTTTTTGAACAACCAGGCCGTCTACTGCTACAACCAGGCCTTTCATGACCTGATGGTCCGCTACAAGCGCTACGGGGACTACCTGCTCTGCAAAGTTTTGCAGGAATTGGCCGCCCCTGCTGTCCAAAAATTAGCGGCCGACTACTACGTCCCGGTCCCGACTTCACCTGAGCACCGGAAAAAGCGGGGCTATGACACGGTCTGGGAAATTTTTACCCCCCCTTTTGCCCTTAACGCCACTTTTAGCCAAGAAGGCTGGAGCTGGGGCCCAGGGGGAAAAGGACAAAAAAGCCAGGATGCAGGCCAAGCAAAATTTCTTTTTAAATCCGGAATTTAGGGGTACGATAACAGGCAAGATCATCCTTTTGGATGACATTTACACCACAGGCCGAACACTTTACCATGCGCGCGACGCGATTGAAAAGGCTTTTCCTAAATGCCAGGTCGAAAGTTTTTCAATTAGTCGCTAAATATTTTTACAAAGCGCTTTCAAGTTTGGTATAATATGAGTGTAAAGAAACTGCGCAAGCGGGAAAGGAGATAATTATTATGTTAAAGTACAATGTTCGTGGCGAAAATATTGAAGTCACTGAAGCTTTGAGAGACTATGTTGAAAAGCGCTTGACCAAGTTGGAAAAGTACTTTGATCTGAGCCAGGACGTAATCGCTCATGTAAATCTGAAGGTATACCGTGACCACTCAGCTAAGGTTGAAGTAACCATTCCGCTTCCATACCTGGTTTTGAGAGCTGAAGAAACTACGGATGACATGTACCGCAGCATTGACTTTGTTTCCGAAAAGCTTGAACGCCAAATCAGAAAGTACAAGACCCGCGTCAACCGCAAGAGCCGTGAAAAGGGCGTTGAAGAATTCTTCATCCCTGAAGATGCTCCGGTTGAAGAGGAGAAGGTAGAAAAGGCTCCAATGTTCAAGATTGTCCGCAACAAGCGGGTTAACTTGAAGCCAATGGACCCAGAAGAAGCCATCTTGCAAATGGACATGCTGGAACACGACTTCTTCGTCTTCCAAGACGCTGAAACCAACGGCACCAGCGTGGTTTACCGCCGCAACGACGGCAGCTACGGTTTGATTGAAACTAACGAATAGTTTCGTCGCTTATCCAACTGAATACTAAGGCTGCAAGCCGGGCAGGGCACGATAATTATTGTGCCCTGCTTATTTTTGTAGATTATTTTAATTTTTGGCATTTACATGTTAAAATTATTCTGTGATTTTAGACTAAATATCAGAATTAAGGACGATTAGATGGCAAACATTTTAAAGAAGTTATACAACGCTGATAAAAGAGAACTTAAGCGTTTTGAAAAAATTGCTGACCAAGTAGAGTCATACGCTGACCAAATGGCCGCTCTCTCTGACGAAGAATTGCAGGCCAAGACGCCGGAATTCAGGAGCCGGATTGAAAAGGGCGAAAGCTTAGACGACCTGCTGCCGGAAGCCTTTGCCGTATCCCGGGAAGCTTCCAAGCGGGTTCTGGGCCTGTACCCATTCCGCGTGCAGATCCTCGGCGGGATTGCCCTGCACCGGGGCAACATTGCCGAAATGATGACCGGGGAAGGTAAGACCTTGACGGCCACCATGCCGGTTTACCTCAACGCTTTGTCTGGCAAGGGCGTGCACGTTGTTACTGTCAACGAATACCTGTCCAGCCGTGACGAAACTGAAATGGGCCAGCTTTACCGCTGGCTGGGCCTGACGGTCGGCTTGAACGTCAGCACCATGTCCCCGGAAGAAAAGCGGAAAGCTTACGCCTGCGACGTAACTTACTCAACCAACTCTGAACTGGGCTTTGACTACCTCCGGGACAACATGGTTGTCTACAAGGAACAAATGGTGCAGCGGCCACTTAACTACGCCATCATCGACGAAGTTGACTCCATCTTGATCGACGAAGCGCGGACGCCTTTGATCATTTCCGGTGAAGCTGAACAAGCCAACGCTGACTACGTCCGGGCTGACCGCTTTGTCAAGAAGCTGGTGGAAGACAAGAGCGACAATGACGCCGATGACGATGAAGACCACGGCGACTACAAGATCGACTGGCCAACCAAGACTATTTCCTTGACCAGAACCGGGATCCAGAAGGCCTGCGACCACTTTGGCCTCAAGAACCTTTACGACGTTGAAAACCAGAAGCTGGTCCACCACATCGACCAAGCTCTGCGGGCCAACTACATCATGCTCAAGGACATCGACTACGTTGTCCAAGACGGTGAAGTCCTGATCGTTGACTCCTTTACCGGCCGTGTTATGGAAGGCCGCCGCTTCTCAGACGGCCTGCACCAGGCTATCGAAGCCAAGGAGGGGGTCAAGATCCAGGAAGAATCCCAGACCCAGGCCACAATTACTTACCAGAACTACTTCAGAATGTACCAGAAGCTGTCCGGGATGACCGGTACGGCCAAGACTGAAGAAGAAGAATTCCGTGAAATCTACAACATGGAAGTCATCACCATCCCGACCAACCGGCCAGTTATCAGACAGGACATGCCAGACCTGCTCTACCCGACCCTGGACTCCAAGTTCAAGGCCGTGGTTGACGAAATCAAGGAGCGGCACGCCAAGGGCCAGCCAATCCTGGTCGGCACGGTGTCCATTGAATCTTCTGAACGCTTGAGCCACATGCTGGACAAGGAACACATCCCGCATGCTGTCTTGAACGCCAAGAACCACGCCAAGGAAGCAGCCATCATCATGAATGCCGGCCAAAGAGGGGCAGTTACGATTGCCACCAACATGGCCGGGCGTGGGACTGACATCAAGCTGGGGCCTGGCGTCAAGGAACTGGGCGGTTTGGCCGTAATCGGGACTGAAAGACACGAATCCCGCCGTATCGACAACCAGCTGCGGGGCCGGTCCGGCCGGCAGGGTGACCCGGGTTACACCCGCTTCTACCTGTCCTTGGAAGATGACTTGATGAAGCGCTTCGGGGGCGACCGGGTCAAGGACTTCCTTGACCGCCTGTCCGACAATGACGACGACAAGGTCATCGAAAGCCGCCTGATCACCCGCCAGGTTGAATCAGCCCAGAAGCGGGTTGAAGGGAACAACTACGACACCCGGAAGCAGACCCTGCAATACGACGACGTTATGCGGATCCAGCGTGAAATCATCTACAAGGAACGGATGCAGGTTATCGATGAGCAGCAGTCCTTGAAGAGTGTCTTGATGCCGATGATCCACCGGACTATCGACCACCAAGTGGACATGTTCACCCAAGGCGACCGGTCGACTTGGCGCCTGGACTCCTTGCGCGACTTTATCGTTTCCAGCCTGGCCAGTGAAGAATACGTTGATTCAGAAATCGACTTCAAGACCTTCACGCCAGATGCTCTTAAGCAGCAGCTTTACCAGCTGGTTGAAGACAACTACCAGGAAAAGGAAGCTGCCCTGGCTGATCCGGAACAAATGCTGGAATTTGAAAAGGTGGTTATCCTCCGCGTGGTTGACGAACACTGGACCAACCACATTGACGCCATGGACCAATTGCGGCAGTCAATCGGCCTGCGGGGCTACGGCCAGCTGAACCCGCTGGTTGAATACCAGGACTCCGGCTACAACATGTTTGAAGAAATGATCAGCGACATCGAGTTTGACGTGACTCGCCTCTTCATGAAGGCTCAGATCAGAAACAACTTGAGTCGGTAATAAATCAGCAAAGAGGGGGCGGGAGCCTCCTCTTTTTGGGTATAATTGTAGTAAACAAAAAGAGTATTTTTAGCAAAGGAAAAAGACAATGGAAATCAGTGAAATTCAAAATGCTTTAGACGAGTTGCGGACCCGGCTTAACCACTTCAGGGGGTCTCTTTGACTTCGATAATATTAGCGAAAGCATTGAAATCAACGAAGCCAAGATGGCGGAACCGGGCTTTTGGGACAATCAGGAAAAGGCACAGAAATTGATCAGTGAGACCAACCTGCTCAAGGAAAAGCGGGACTCCTTCCTGGCTCTGAAAAAAGACCTGACCGATGAAGAAACGGCCCTGGAATTGCTGCGCCTGGAAGCAGACGCGGACCTGCAAAAGGACACCGAAGACCAGCTGGCCAAGCTGCAGGAAGAGTTCCATCAGTATGAATTGAACCTGCTCTTGTCGGGCGAGTACGATGACCATAACGCCTTGATGGAAATCCACCCGGGGGCCGGCGGCACTGAAGCCATGGACTGGGGGAACATGCTGCTCCGGATGTACCAGCGCTATTGCGACTCCCGTGGCCTTAAGTTTGAAGTCAACAACTTTGAACCAGGTGATGAAGCCGGTTTAAAGAGCGTCAGCGTCCGGATTTCCGGCAAGAATGCCTACGGGCTGCTGAAGTCTGAACACGGCGTTCACCGCCTGGTCCGGATTTCGCCTTTTGACTCAGCCAAAAGACGGCACACTTCTTTTGCCTCGGTTGAAGTTATCCCCGAAGTCGATGACTCCATTGAAATCGACATTGATCCTAAGGACCTAAGAATTGACGTCTACCGGTCATCCGGGGCGGGCGGCCAGCACATTAACAAGACTTCCAGTGCCGTCCGGATTACCCACATCCCAACCGGGATCGTGACGACTTCCCAGGCCCAGCGGTCCCAGTTCCAGAACCGGGACACGGCCATGAATGAAATGCGGGCCAAGCTTTTCCACCTGGAAGAAGAGAAGAAGCGCAAGGAAAAGGCGGCCTTGAAGGGTGAGCAATTGGACATTGCCTGGGGCTCGCAGATCCGGTCTTACGTCTTCCACCCATACAGCATGGTCAAAGACCACCGGACCGGCTATGAAACCGCCGATGTGGGCGGGGTGATGGACGGGAAGCTGGATCCCTTCATCTACGCCTACCTGCAGTGGCGTTTGAGCCAGGAAAATCCAGAATAAGAGGAAAAATATGTCATTTACCACGATAGTACTGCTGGTTTTGGCGGCGGTAGTCGCCCTGGCCCTGCTCTCGGTTTTCTTCAAGGCCTTGATTGCCTTGCTGCCGGTGGGCCTGGTCGTAATTTTGCTATTATGGCTCTACTACCGCTTTTACTGGCGGAAGAAATACAAGCTGCCCAGCCGGCCGGAGCCCGACAGGTTCAAGCCAGGCCAGGCAGATCCGGAGCGGCCGCGGAAACAGGCGCAAGATGTGACAGTGCGAGATGTTGATGATAGTGAGGTACATGATGACGAACACGGTAAAACTAACTGAGTTCATTAATGACAATTCCAACCTGCGGGTTCTGCAGGGACAGGAATGCGTGGCTGGCAAGGAGATTACGGTTTCCGACGTTTACCGGCCGGGACTGGAATTGAGCGGCTACTTTGACTTTTACCCGGCTGACCGGGTCCAGCTTCTGGGCAGAACGGAAATTTCCTACGCTGCCCGGCTGGACCACGACCTGCGCCGGAAAGTTTTTGAAAAAATCTGCCAGAAAGAAACTCCCTGCCTGCTGGTTTCCCGCAACCTGCCGGTGCCGGTTGAACTGAAGGAAGCGGCAGAAGCAGCCGGGACCCCGATCTTGATTTCCAATGACGCCACGACCTACTTGATGAGCATGATCACCCAGTACCTGGCCGTCAAGCTGGCGGAAAGAAGCAGCGTTCACGGGGTCCTGGTCGAAGTTTTCGGGATGGGGGTCCTCTTGACCGGGGAATCCGGGGTCGGCAAGTCCGAAACCGCCCTGGCCCTGGTGCAGCACGGCCACCGCTTGATCGCTGACGACCGGGTGGATGTCTACCAAAGAGACCACGAGACCGTGGTTGGGGAAGCTCCTCGTATTTTGAAACACTTGATGGAAATCCGGGGGATCGGGATCATTGACGTCCTCAAGCTCTTCGGGATTGGGGCCATCAAGGATGAAACCGAGATCTCCCTGGTCATCAACTTGACCAACTGGGACTCCAAGGCCAACTATGACCGCTTGGGCTTCCAGGAAAACACCCGGATCATCTGCGGGATCGCGGTTACCCAGGTCACTATTCCGGTCAAGGTCGGCCGGAACATGGAAAACATCGTGGAAGTGGCCGTCATGAACTTCAGAGCCAAGGCCATGGGCTTTGACGCGGCCAAGACTTTTGATGAAAACCTGACTAGCCTGATCGCGGAAAACAGCGAGGAAGAAAAAAGGGGGTAAAGCAGACTAATGACTTTAGCACTGAATCCAATCGCCTTCAGTATCGGGGACATTCACGTCCGCTGGTACGGAATCATCATCGCCTGCGGGATCCTGCTGGCTACCTTCATGTCGATCAGAGAAGGGCAAAGACGGCAGATCATGAGCGATGACTTCATCGACTTGCTCTTGTGGGGCGTGCCGATCGGCTTTATCGGGGCCCGGATCTACTATGTCATTTTTGAATGGGGCTACTTCTCCCAGCACCCGGATGAAATTATCGCCATCTGGAACGGGGGGATTGCCATTTACGGGGGCTTGATCGCCGGGGCGATCGTCCTTTTGGTCTTCTGCTACCGGCGCTTCTTGCCGCCATTTCTAGTCCTGGACATCGTGGCGCCGGGCGTGATGGCGGCCCAGGTCCTGGGCCGGTGGGGCAATTTTATGAACCAGGAGGCCCACGGGGCCAAGTGCAGCCTGCAGTATCTGCAAAACCTCCACTTGCCCCAGTTCATCATCGACCAGATGTACATTAATGGCAGCTACTACAAGCCGACTTTTTTGTATGAATCTTTCTTTAACCTGATCGGTCTGATCATCATCCTCTCCCTGCGCCACAAGAAGCATCTTTTTAAGCAGGGGGAAGTCTTCATGCTTTACCTGGCCTGGTACTCCGTGGTCCGCTTTTTCGTGGAAGGGATGCGGACGGACAGCCTCTATATCTTTGGTGTCATCCGGGTTTCCCAGGCCCTCAGCCTCCTGCTTTTAATCGCTGTGGTTATTTTATTTGTCTACCGGCGTGTCAAAGTCAAGCCAAAGTGGTATCTTGAAGGAAGCGGTTTAAAATATCCATACGAGAGGTAGAAAAAATGACAAAAATTTCCGCTTTAGGCGCCGGTTCCTGGGGGTCAGTCCTGGCCTCCATGCTGGCTGACAACGGCCACGAGGTGGCCCTTTATGCCCACCGGCAAGTTATTGCTGATGAGATCAACCAAGATCACACTAACCTGCACTACATGAAGGACTGGACCTTGAACCCCAGCGTTTGGGCCAGCACCGACATGGGGCAGGTTCTGAAAGACTGTGACGTTATCCTGTTCGCCGTGCCGACCAGCGCGATCCGGTCAGTGGCTAAAGCGGTCCGGCAGGTCTTGGACGAGAATGGCCGCCAGCCTTACCTGGTTTCGGCCACCAAGGGGATTGAATCGGGGACTAAAAAGCTGGTTTTGCAGATTTTTAAAGACGAAATCTACCCGGACGGATTTGACAAGATGATCGTCCTGTCCGGTCCCAGCCACGCGGAAAATACCGCCCAAAAGGACCTGACGGCCATTACCCTGGCTTCAACCAGTCTGGACAACGCGGCCAAGATGCAGAAGATTTTTTCAAATGACTATGTCCGCTTCTACACCAGCAACGACCCAATCGGGGTCCAGGTCGGCGGGGCTGTTAAAAACGTCATCGCCATCGCGGCTGGGATCCTGGCGGGCCTGGGCTACGGGGACAATGCCAAGGCAGCCTTGATGACCCGGGGCCTGGCGGAAATCACCCGCCTGGGCGTGGCCTTTGGCGGCCAGCCTTGGACCTTCAGTGGCCTGTCCGGGATCGGCGACTTGATCGTTACTTGTACCTCAGTCAACTCCCGGAACTGGCGCTGCGGCTACCAGCTGGGCCAGGGCAAGCCTCTGGACGAAGTCTTGGCCAACATGGGCCAGGTTGTTGAAGGGGCCACGACCGTCAAGGCCGTGTACGAAATATGCGACAAGTATTCTTTGGACATGCCGATCTCAGCTTCCATCTACAAGGTCCTCTATGAGGGGGCCAAGATCGACGATGAGATCAAGCTGATGATGAGCCGGCAGCTGGGACCGGAAATCAGAATTTAAAAGAGGCTTGCAATCTTTTGAAAATCCTGTATGATATTACTTATAAAAAGTAAGTGGCAAGGAGACTGTTTATGACCAAAGAAGTTGACGTAGTAATCATTGGTGCCGGTCCAGCCGGCATGACGGCAGCAGTTTACGCGGCCCGGGCCAACCTGAAGACGGTTCTCTTAGACCGGGGGATTTACGGGGGGCAGATGAACAATACTGCCGACATCGACAATTACCCGGGCTTTGTGGAAGTTCAGGGGCCGGAACTGGGCGAAAAGATGTACCAGACCGTGCAAAACGCCGGGGCCAGCTATGAATATGGCGACGTCCAGGCCGTCAAGCTGGAAGGCGACTATAAGCGGGTGATTACGGACAGCGAGGAATACCTGGCTCCAGCCGTGATCATCGCGACTGGATCAGAGCACAAGCACTTGAACGTGCCGGGAGAGGAAATTTATTCCGGCCATGGTGTTTCTTACTGCGCCGTCTGCGATGCAGCTTTCTTCAGAGATGAAGACGTGACGGTGATCGGCGGGGGCGACTCGGCCATCCAGGAAGGGCTCTACCTGGCTCAGTCAGCCAAGTCAGTCACGGTCGTTCACAGAAGAGACCAGCTGCGGGCCAAGCCTGAACTGCAGGAGAAGGCCTTCAAGCACCCGAAGATCAAGTTTGTCTGGAACGCCTTGACTGAAGAAATCATCGGCGAAGACGGCAAGGTCAGCGGGATCCGTTACAAGGACAAGGTCAGCGGGGAAGAAAAGGAATTTGCCACCAAGGGCGTCTTTATTTACGTTGGCGTTCTGCCAGTGACTAAGGCCCTGGATGGCCTGGACATCCTGGACGAAAACGGCTGGATTCCTACTGACGAATTGATGAGGACCCGGCAGGAAGGGATCTTTGCGGCCGGCGACGTGCGGCCAAAGGATTTACGCCAGGTAACGACCGCCGTGGGCGAAGGCAGCGTGGCCGGGCAGGAAGCTTACAACTACCTGCAAGCCAAGGGCTTTTTGAAATAGATATTAAAAGCAGCGGACAAGTGGTCTGCTGCTTTTTTCTTTGAGCAAAATATTGTTAGAATCTATGTTCGGGCAGTAAAATAGATTACGACTGATTATTGCAAGTTTAAGGGGGAAAAAGTGATTAAGCGGCAAGACAATAACAAATTTGAACTCGTCTCACCATATAAGCCGGCCGGTGACCAGCAGCAGGCCATCGACCAGCTGACGGCCGGTTTTCAGGCCGGCGATAAAGAGCAGATCCTCAAGGGGGCAACGGGGACGGGGAAGACCTATACCATGGCCAATGTAATTGCCAAAATGAACAAGCCGACCCTGGTCATTACCCACAACAAGACCCTGGTTGGCCAGCTCTACAATGAATTTAAGGAATTTTTCCCGAACAACGCCGTGGAATACTTCGTTTCCTACTATGACTACTACCAGCCGGAAGCCTACGTGCCCCAGTCAGACACTTACATTGAAAAAGACTCCTCGATCAACGACGAAATCGACCAGCTGCGGCACGCCGCCACCAGCGCCTTGATGTCCAGAAATGACGTCATCGTGGTGGCTTCCGTTTCCTGTATATACGGCTTGGGTGACCCAAGAGAATACGAGGCCAGCGTGTTAAACGTCTATACTGGCCAGGAATACGAAAGAAACACCCTGCTCAGAGACTTGGTCAACATCCAGTACGACAGAAACGACATCGACTTACAGCGGGGCCGCTTCCGGGTCCGGGGCGACGTCGTGGAAGTTTTCCCGGCCGGCTATTCTGACCGGGCCTACCGGATTGAATTTTTTGGCGACGAAATCGACCGGATTGTCGAAGTTGACCCCTTGACCGGGGAAGTGCACGGGGTCAGAGACAGCATCTCCCTTTTCCCGGCCACCCACTTCATGACCAACGATGACCAGCTGGCCGGGGCTATCGACCGGATCAAGGCTGAGATGGACGACCAGGTCAAGAAGTTTGAAAAAGAAGGCAAGCTGCTGGAGGCAGAAAGAATCAAGCAGCGGACCACCTACGACTTGGAAATGCTGAGAGAAGTCGGCTACACCAACGGGATTGAAAACTACTCCCGGCAGATGGAAAACCGCAAAGCCGGTGAGCCGCCATACACCCTTTTGGACTTCTTCCCCAAGGATTCCCTGATTTTAATCGACGAATCCCACGCCACCATGCCGGAAATCCGGGCCATGTACAACGGGGACAGAAACAGAAAGCAGACCTTGATTGACTATGGCTTCCGCCTGCCATCAGCCTTGGACAACCGGCCCCTAAAGCTGGAAGAATTTGAGCAGCATGTCAACCAGATCATGTATGTGTCAGCCACCCCGGGTGACTATGAATTAAACCGGACTAGCCGGATCGTGGAACAGGTCATCCGGCCGACCGGCCTTTTGGACCCGAAGATCGAGGTCCGGCCAATTGAAGGGCAGATCGACGACCTGGTTGCTGAAATCAATCTGCGGATTGAAAGAAGGGAACGGGTTTTTGTCACTACTTTGACCAAAAAGATGGCTGAAGACTTGACCGACTACTTGAAAGACCTGGGTATCAAGGTCCGCTACCTGCACTCGGACATTAAAACCCTGGAAAGAATGCAGATCATCCGCGACCTCCGCTTGGGCAAGTTTGACGTTTTGATCGGGATCAACCTGCTTAGGGAAGGGATCGACGTACCGGAAGTTTCCCTGGTGGCCATTCTGGACGCGGACAAGGAAGGCTTCCTGCGGGCCTACCGGCCGCTGATCCAGACCATGGGCCGGGCGGCCCGGAACGCCAACGGTGAAGTTATCATGTATGCTGACCGGATCACCGATTCCATGAAGATGGCGATTGATGAAACGAACCGCCGCCGGGCCATCCAGATGAAGTACAATGAAGAGCATGGGATCGTGCCAAAGACCATCATCAAGCCGGTCCGGGACATGATCTCCGTGGTCAAGGCCGACAAGGAAGCCGAAAAGTCAGACTCCTTCGCCGACCTCAACTTCGACGAGCTGACGGCCAAGCAGAAGAAGCAGATGATCGCCAACTTGAAAGAGCAGATGCAAGACGCGGCCAAGCGCTTGGACTTTGAAAGCGCGGCTAACCTCCGCGACGCGATTATCGAATTGGAAGGCTCTGTAAGAAAACCGATTAAGAAGAAAGGCAAGGACTTCAATGGCAGATAGAAAGATTGTCATCCGCGGTGCCCGTGAGCACAATTTAAAAGACATCGACGTAACCATTCCTAAAGATCAGCTGGTCGTTATTACTGGCTTATCGGGTTCTGGCAAGAGCTCACTGGCTTTTGACACCCTGTACGCTGAAGGCCGGCGCCGCTACGTCGAATCTCTGTCTAGCTATGCCCGCCAGTTTTTAGGGCAAATGGACAAGGCCGACGTCGACTCAATCGACGGCCTTAACCCGGCCATTTCCATCGACCAGAAGACGACCTCCCACAATCCCCGCTCAACGGTCGGCACGGTTACTGAAATCAACGACTACCTCCGCTTGCTCTGGGCCAGGGTCGGCCACCCTTACTGCCCAAACGACGGCACCTTGATCCAGCGGCAGTCGGTTGACCAGATGGTGACCCGGATCCTGGATTTGCCGGAAAGAAGCAAGATCCAGCTTTTGTCCCCGGTCATCCGGGGCAAGCGGGGCGAGCACAAGGAGGTTTTCGCCCGAATCCGCCGGGCCGGCTATGTCCGGGTGATCGTTGACGGCGAGCTGCACGAAGCCAGTGAGGAATTTGCTTTAGAGAAAAACAAGCGCCATGATATCGAAATCGTGGTTGACCGCCTGGTCATCAAAGACGGGATCCGGTCCCGCCTCTTTGACTCGGCTGAAGCAGCCCTGCGCCTGTCTGAGGGCTACATGGACGTTGACGTGATCGGGGGCGAGAAGCTCAGTTTTTCTGAATACTACGCCTGTCCTCTTTGCGGCTTTACAGTCGGGGAAATGGAGCCCCGCCTTTTCTCCTTCAACGCGCCTTTCGGGGCCTGCCCGGCCTGCGATGGCCTGGGGATGAAGCTGGCGGTTGACCCGGACTTAGTGGTCCCGGACAAGGACAAGAGCTTGGCTGAAGGGGCCCTGGCTCCTTGGGCAGGGTCAAAGTACTACATGGGGATGCTGGAGCAGGCCTGCGCGGCTTTGAAGATCCCGATGGACAAGCCTTTTAAAAAGCTGACCAAGCGGCAAAGAGACATTATCTTAAATGGGTCAGACAAGGAAATCCACTTCCACCTGGAAGGGGACTTCGGGGTCAACGACACCAAGCAGCCCTTTGAAGGGGTGATCAACAATGTCGACCGCCGCTACGCCAAGCCAATGTCCAAGTTCATGCAGGAAGTCATGGGCGAGTACATGACTGAATTGCCTTGTGAGGTCTGCGGCGGCAAGCGGCTTAATGAGAAGGCCCTGGCCGTTAAGGTCAATGGCAAGAACCTGGCTGAAGCCAGTGACTTGTCAATCAAGGACGGCCTGGCCTTTTTCAAGGCAGTTGACTTAAGTGAGCAGGAAGCTGCTATCGCCAAGCCGATCCTAAAAGAAGTCTGCGACTGCTTGAATTTCCTGGTCAGCGTCGGCCTGGACTACCTGACCCTGTCCAGATCAGCCGGGACTTTATCCGGCGGGGAAGCCCAGCGGATCCGCCTGGCCACCCAGATCGGGTCCAACCTGTCCGGGGTTATGTATGTCTTGGATGAACCGTCTATCGGCCTGCACCAGCGGGACAACGACCGCTTGATCGCTTCTTTGAAGCGGATGCGGGATCTGGGCAACTCCTTGATTGTCGTTGAGCACGACGATGAAACTATGCGGGCTGCTGACTACTTGATCGACATGGGGCCAGGGGCCGGCAGCCAGGGCGGGGAGGTTATGGCGGCCGGAACGCCGGAAGAAGTCATGGCCAATCCGAAGTCTTTGACTGGCCAGTACCTGCGGGGAGAAAAGTTCATCCCGGTACCATTGAAGCGGCGCAAGGGCAGCGGCAAGAAGCTGAAGCTGACCGGGGCGGCGGAAAACAATCTGAAGAATATCAGCGTCGAATTCCCTTTGAGTGAATTCGTGGTCGTGACCGGGGTTTCCGGGTCCGGCAAGTCCACCCTGGTCAACCAGATTTTAAAGCTGGTTCTGGCCCAGAAGCTCAACCACAATTCCGCCAAGCCGGGCAAGTATGACAAGCTGACCGGCTGGAAGAATATTGAAAAAGTGATCGACATCGACCAAAGCCCGATCGGCCGTACCCCGCGGAGCAACCCGGCGACCTACACCAGCGTCTTTGACGATATCCGGACCCTTTTTGCCCAGACCAATGAAGCCAAGATGCGGGGCTACACCAAGGCCCGCTTCTCCTTCAACGTCAAGGGCGGGCGCTGCGAAACCTGCCACGGGGACGGGATCCTCAAGATCGAAATGAACTTCCTGCCGGACGTCTACGTTCCTTGTGAAGTCTGCCATGGCCAGCGCTATAATTCTGAAACTTTGGAAGTGACTTACCGGGAAAAGAATATCGCCCAGGTCCTGGACATGACGATCAGTGAAGCTTGTGACTTCTTCGTTAATATTCCCAAGATCCACCGCAAGCTGCAGACCATCGTCGACGTTGGTCTGGGCTATGTCAAGCTGGGCCAGCCAGCCACCACGTTGTCCGGCGGGGAAGCCCAGCGGATGAAACTGGCCAGCGAACTGCAGAAGTTATCGACTGGGAAGAACTTCTACATCCTGGATGAACCAACTACTGGCCTGCACACCGACGACATCAAGCACCTTTTGGAAGTCCTCCAGCGCCTGGTAGACCAGGGCAACACGGTTTTGGTGATCGAACACAACCTGGACGTGATCAAGACGGCTGACTGGCTGATCGACCTGGGTCCTAACGGGGGCGAGCGGGGCGGCCAGGTGGTCTGCACGGGGACGCCGGAAGAAGTGGCAGACTGCCCAGAGTCCTGGACTGGCAAGTATCTCAAGCCAGTTTTGGACCGGGACAAGGCTTTGACTGAAAGCAGTCTTGCAAATAAAAAAGAATCTTAATCACGCCCTAAACCTTTTTTAGCAAAATATTGTAAAATGAAAGCTGAAGCCAAATAATTGTCAGAATTTTTACTTCAGTGTGAAGGGGTGATTTTTATGTTTGATTCCGGCTACAACGAAAAACGCGGCTTTGACTGGGGCGTCTTCAGCGCTGGGGTCATCTCCGTCGTTTTAAGCATTTTTCTCTTTGCCAACCCTGGCAAGGGCTTGCGGGGCCTGGTCATCATTCTGGCCGTCTTGTTGATCATGCAGGGGATCGCTTGGATTTCCATGTATGCCGGCTTTCACGGTATCTTTGGCCCATCTTGGACGACCCTTTTATCGGGGATCTTTGACATTTTGATCGGGATCTTCTTCCTGTGGGATAACAAGGTCGGGGCATACATGATCGCGATCTTGGTGGCTATCTGGTTCATCGTCGACTCGGTGATCGGGATCGTCTTTGCCTGGCACCTGCGTTTCTTTGAGACCGGCTGGTATTTCTTCTTCAACCTGCTCTTGAACATCTTGGGCCTGGTTGTCGGGGTTATGCTTCTGTTCAGACCGGTTATCGCGGTGATGAGCACGGTCTACTTGATCGCGATCTACTTGATGATCTTCGGGATAAATGAGATTGCTTTGGCCTTTATGCACCGTTAAGCATTTTAAACTGCCGATACTTAACAGATTGTTTAAGTGTTGGCAGTTTTTTTGATGGTAAAATGAAAGTAAGTAGTAAAAAAGTGTAAGGAAAAAGCAAAAGCAGGGAGGCAAGGGAAAATAGAGAAAAAGATTTATATTTCCTGCGACATGGAGGGCTGCGCCGGCGTTACCAGCTGGGAGCAGACCCATTATGGCCACAAGGGCTATGACCTGGCTTTAAAAGAGATGACCCGGGAAACCGTGGCCGCGGTCAAGGCCTGCCAGCAGGCCGGCTATCAGGTGACCGTCAAAGACGGGCATGAGGACGGGATCAACCTGGATCCGGCCCTGTTGCCGGCGGGCACGGAACTGATCCAGGGCTGGGACTCTTCACCAGAAGAAATGATGGCGGGAATTTCAGCCGACTATGCTGGGGCAATCCATATCGGCAGCCACTCTCCGGCCGGCTCCAGCGAAACGCCCTTAGACCATACGGTGGAACATGGCTGGTATTCCTGGGTCAAGCTGAACGGAGAATTGGCCTCGGAATTCACCTTCAACAGCCTCTGCGCGGCCCAGTACGGGGTACCCTCACTTTTCCTGGCCGGGGATGCCGGAATTTGCCGGCGGGCTGAGGACTTTTGCCCGGGCATCGTGACCTGTGCCACTAAAAAAGGGGTGGGCAGCGCGACTGTCAATAAGAGCCCCCAGGAAGTCGCAGCGGGCATCGCGACCGGGATCAAGGAAGCCTTGGCGGGGCCCGGTGGTCTGCCGCTTTTAGCTGACGAATACCTGCTGGAATTCTGCTTTTCTTCAGCAGGCCGGGCCAGAGCCGCTTCTTTTTACCCGGGAGCTGAGCGAGCAGGCGAGCGGATCGTTTCCTACCGGGCCAAGAGCATTATGGAACTCTTGACGGCGAAAATGTTCATGACGGAAATCTGAGGTGGAAGATGGGCTTAAAAAGAGAACTGTTTTTGCCCCGGGCTTATCAAACCGGAGAGAAAAACGACATAACCGATGTTCCGGGGGTCAAGGTGGGGCCAGGTGACCCTGCGAAAGGGCGGGGTTAATACCGGCGTCACGGCAATCTTGCCCGGGAGTGACATTTTTAAGCAAAAAATGCTGGCCAGCGGCCAGGTCATTAACGGCTTCGGCAAAACTACCGGCCTAGTTCAGATCAATGAGCTGGGTACTTTGGAGACTCCGATTCTCATGACCAACACCCTGGCCGTGGGGACCTGCTGGACAGCCTTGACCCGCTACATGCTGGACCGGAACCCGGAGATCGGCCTCACAACCGGGACGGTTAACCCGGTCGTGATGGAGTGTAACGACGGGGATTTGAATGATATTAGGTCCCTGCCGGTTAAAGAGAGCGATGCTCTGACGGTTTTAGCTTTAGCTGAGGGTAATCCGCCCCTGCTGGAAGGTAATGTCGGTGCCGGAACCGGTATGCGCTGTTTAGGCTTTAAGGGCGGCATCGGGTCAGCTTCGCGGCTTTTGGAACTGGGCGGGAAAAATAAAAAAATATCACGTAGCCAGCCTGGTCTGCGCCAATTTCGGGGCTTTTGGCAAGTTGCGGGCTGGCAGCCGCCTTTTGGGCCAGCAACTAAAAGACGCCGTTTTGGCCCGGGCGAAAGCAGAAAATAACCAGCTTTATGCCCGCTATCAAAAAGACCAGGGGTCAATCGTGATGGTGATCGCACCGACCTGCCCCTCTCCAGCCGGCAACTAGGCCGCCTGGCCCGCCGGAGCGCGGTTGGCTTAGCCAGAACCGGGTCGTATATCGGCGATGGTTTTGGCGACATTGCCCTGGCTTTTTCCACGGCGCAAAGGGTCAGCCATTTCGCTAAAGAAGCGGAAAGCTTTAGCTTTTTGCCGGACAGCCAGCTGGACCCGGTCTTTGAAGCCGGGACGGAGACAATCGAAGAAGCGGTCTTGAGTGCCCTGGTCCACGCTGAGACCTTGACCGGTTTTCAAGGGAGAAGGGTCTACGGCTTAGGGGATTTTTTATAAAAATAGTGGAGAATAGGAATGCAGCTAGGGCGAAATAATTGCCAAGACGCGGCACGCCCGGTATGATAGAGTTTAACGTTTTATGGGAGCAATACGGAATCATGCATGAAAAATACAAGAAACAGCTGTTGATTTTGACGGGGATGAGCGGGGCCGGCAAGACGGTCGCCGCCCACTCATTAGAAGATGTCGGCTACTTCGTGGTTGACAACCTGCCCCCGGAATTGCTGGGCAATTTCTGGGACTTGATGAACACTTCGGAAGACTTTGAAAAAGTTGCCGTGGTGATCGACCTCAGGGTCAAGTCCTTCTACAAGGACCTAATCGACGAAATCAACTCCCTGGAAGACAGCGGCCAGACCCAGGCCACGATTGTCTTTTTGGAAGCTTCTGACGACACCTTGGTGGCCCGCTACAAGGAAACCCGCCGCCTGCCGCCTTTAGCGGAAAACGGCCGCCTTTTAGACGGGATCCGGGATGAACGCCGCATTTTGACTCCGGTCAGAAACCGGTCCAACTACATTTTGGATACCTCCAAGATGACGACGAAGGAACTGAAGCAGAAGCTGCAGAGCAAATTCGGGGAACTCCACAAGCCAAAATTCGGGATTGAGGTCATGTCCTTCGGCTTTAAGTACGGGATGCCGATTGATGCCGACATCGTCATGGATGTCCGCTTTCTGCCTAATCCCTTCTACATTCCGGAACTGCGTCCCTTCACGGGGCTGGACAAGCGGGTCTTCAACTATGTCATGGACAAGGATGAAACCAAGGTCTTTTATGGCAAGCTGCTGGACCTCTTGTTGACAGCAATTCCCGGCTACATTGACGAAGGCAAGGAAAAACTGACGATCGCCATCGGCTGTACGGGCGGTCAGCACCGCAGCGTTTCGATCGCCCAGCAGCTGGCGCGCGACTTGTCTGAAAAATATCCGGTTGACATTACCCACCGGGAAATCAGCCGTTATCTTAGAAAGTAGGAATTCAGCATGTCTTTTGGCGAAAACAAGATCATCCGCATCATCAAGCGCCGCCGGCCCCGGGTGGTCGTCATCGGCGGGGGGACCGGCCTGCCAGTCATTTTGCAGGCCTTGAAAAAGCAGGACGCGGAGATCACGGCGATCGTGACCGTCTCTGACGACGGCGGGTCATCCGGGATCATCCGCAACTACATCAACGTCGTTCCCCCGGGCGACATCCGCAATGTCCTGGTTTCCTTGAGCGACCTCTCGCAAGAAAAAAAGCAGATCTTCCAGTACCGCTTTGAATCAAAGGACTCCTTTTTCTCCGGCCACGCCATCGGCAACTTGATCATCGCGGCCTTAAGCGAGATGCAGGGGAATATTTTTGACGCTGTCCAGAACTTATCAGCCATGATGGAGGTTGATGGTCACATTTATCCTTCTGCTAACGAACCTTTGACCTTGAACGCGGAATTCATGGACGGCAGCCAGAGCAGCGGGGAAGTGGAAATTACCAGCCAGCACAAGCAGATCAAGCGGGTCTGGGTAACAACAGCTGATGACGGTGAGCCGGCATCTCCCAGTCCGGTGATCGAGGCCATTATGCAGGCCGATGCTATTGTCCTGGGGCCGGGGTCCTTGTTTACCTCGATTCTGCCGAACCTGATGATCCCGAATGTTGGCCAGGCAGTCCGGGAGACTAAGGCTGAAGTGGTTTACGTCTGCAACATCATGACCCAGGCGGGGGAAACGGTGGGCTTAAGCGATGCCGATCACGTCCGGGTCATCAACCAGCACCTGGGCGGCAATTATATCGACACCGCCCTGGTCAACGGGGCCCAGATCGACATGACCAAGTTCCATCCGGAAGACTATGATGAGTATTTAAAGCCGGTCGCCAACGACTTTGCCGGCCTGCAGGAACAGAACTGCCGGGTGATTACGGACGACTTTATCGACCAGCGAAGCGGCCTGGTCTTCCATGACGGCGACAAGGTGGCCAGGGAAATCATTGACCTGGCCCTGCAGGAAATGTTTAAGAGAAAGTAGGAAGTTAATGGCGAGTTATGCCAGTGAGGTAAAAAAAGAACTGACATCAATCGAGGTCCATCCCGAGCATGCCAAGGCGGAACTGGCGGCCTTTTTGCGGATGAACGCGGTTTTGAGCCGGCATGACGGGCAGATGAGCCTGGACATCGTGACGGAAAACCCGGCCATTGCCCGGCGGATTTTTTCCCTGATCAAGACGGCATACGGCTTTGATCCCCAGCTGATCGTGACCCGGAAGATGAAGCTGAAGAAGAACCACCAGTACCTGGTCAGAGTGGCCCAGATGGTCAGCGAGATTATGGCGGATTTAGAGATCTATTCCCCGAAAAAAGGCTTCATCACCGGGGTGCCGGACAAGATCAAGTATTCAGAGCAACGGTCAATGTCCTACCTGCGGGGGGGCTTTTTGGCCAGCGGCAGCGTCAACAATCCGGAAACCAGCCGCTACCACCTGGAAATCTATTGCACCTATGCCAACCACAGCCAGGATCTGCAGGAGATCATGAACAAGTACTTTGATCTCAATGCCAAGGTGACGGCCCGCAGAAGCGGCAGCATAGTCTACTTGAAAGAAGCGGAAAAAATCGGCGACTTCCTCCATGTGGTCGGGGCGGTCAATGCCATGCTGGCCTTTGAGGACCTGCGGATCATGCGGGACATGCGCAATTCCGTCAACCGCCTGGTCAACTGCGACACGGCCAACCTCCGCAAGACGGCCGGCGCGGCCGCCAAGCAGGTGGAAGACATTGAATTGATTGACAAAAAGCAGGGCCTGGAGCCTTTGCCGGAAAAGCTGGCCAGCCTGGCCCGCTTCCGCCTGCAGCACCCGGAACTTTCCCTCAAGGAACTGGCTGAGCAGGTTCCCGACGGGCCGATTTCCAAGTCCGGGGTTAACCACCGCTTGAAGAAATTGCATGAGATCGCGGAAAACCTCCGCTAATAATAAGACAACAAAAAATCCAGACGGCTATTTCAGTCGTCTGGATTTTCTTTTCCCGATAAGCGGATTACTTGTTTTGGTTGACCATGATGTTGTCAATCAAGCCGTAGTCCTTGGCTTCCTGAGCGGTCATGTAGTGGTCGCGTTCAGTGTCGCGCTTGATGGTTTCGATGTCCTGGCCGGAGTCCTTGGCCAAGATTTCATTGATCATCTTTCTGGTCTTCAAGATTTCTTCAGCGGCAATTTGGATTTCCGTGGCTTGCCCTTGCGCCCCGCCCAAAGGCTGGTGGATGAGGACAGTAGCGTGCGGCAGGGCAAAACGCTTGCCCTTTTCGCCTTCAGCCAAAATGATTGAGGCCATGGAAGCTGCCATACCGGTGGCAATGGTGGAAACTGGTGACTTGATGAAGTTCATGGTGTCCACGATAGCCATGCCGGAAGTGATCACACCGCCTGGTGAGTTGATGTACATGTAAATGTCTTTAGTATTGTCTTGCGCGTCAAGGAAAAGCAACTGGGCAATGATGGAGTTGGCCATTTGGTCGTTAACGTCACCGCTCAGCATGATGATCCGGTCCTTCAGCAAGCGGGAGTAAATGTCATAAGCGCGTTCGCCGCGGGCCGTTTGTTCAATAACTGTAGGTACTAACATAATTTTCCTCCTAGTGATTGGATTAGCACTCATTTAGATACAGTGCTAATTAAAACACTCCTGGCCGGGTCTGTCAAACTTGGCGCACTCTTTTTTTAAAAATAAACTGGTGCTATAATGACCTTGTGTGAAAAGACTTTTTTAGCTGGAAAGAATCTAATTTATATAAAAAGTGGAAAAGAAATGGATAAGAAACTGCTCTGCTCGCTCCTGCTGGCGGCGGCCTTTATTGGCCAGGCCCAAACGGCCCAGGCGGCCACGGTAAGCAAGATGCCGGGCACGAAAAACATGGGGATCTATGCCAAAGTAACCAAGAAGGGCGCCAGCAAGAAAGTGACGACCACTAAGTACTTTAAGTACAGCAAGATCCAGTCAACGGCCAGCAAGAAGACCAAGAAGGGGACTTATGCCTATATCTATGCCAACGGCCGCCCTTTAGGCTAGGTTAGTGAAAAGTGGTTTGTCAGAAACAAGATTTCCGCGGCCAAGCAAATCTACCTGGTCGAAGATGACAACCGCTTTGACTACAAGGACGCCATCAGCTATGTGAACGACGCTCACGGGACCATGGTGGACCCGGCAAATGGCGCGGTTAAGGCCAGTCTGTCCGGGGACAAGCTGAATTTTACTTATGGCAAGGCCAAGACGACCGTTGAATTGGTGAAGACGGCTAACCCGAACCGGAACCTTAAGCCGGCTGTTAGCGCGAAGAAGGGCCCTAAGGAAGTGGCCAGCACGAGAAAGCACTCCGGCAGCTCCAAGAACTGGAACGCCGTCCACCGCTATGGCACAGAGACCAGCAGCAACCGCTGGACCAGCGGCGGCTTGACCCTGGCCACCCAGCTTTGGGAGCCACGCAACTTGAGCCTGGAGACCAATGACTGGCAGCAGGTCGGTCCGGTTATGGAAGGCTTGGCCGTAAATGGCGGCTGGGCTTACAGCAGCTGGTATCGGTCAGCCGCGGCCAGCGACCAGCTTAAGGGCAACATCGTGGCCTTCAACATGAAGAAGCTGAACAAGTACCAGGCCCAGTATCTGTCACCGCGCAGCTACCTCTACAAGAAGCTGAGTTTTGGCAAGTTTAAGAGCTACTCCCAAAATGTCAAAGTGAGTCCTTACCTGCGCCTGGGCCACGGCCAGTCACTGGGGGCAAGTTCAAAGTACATCTATGTCCTGGCCAACGAAAACAAGCTGCCAGGCGGGGCAAGCAACGGTTTTTACTCGGAAGAAATCCTGCAGCTGAAGAAGAGCGGCTTGACCATCAACAAGGTCTGGAGCATCCGGGTAGACGTCGGCAGCTCTGGCCGCTACTTCTACAACGCCGCTTTTGCCGGCGACAATACCATGTACGGGGTCTTCCACAACGCTGCCTTTGGCCGCTATGAATTCTGGCGCCTTAACCTGGTCAACAACCGCTGGCAGGTCAGTCAGGTAACGGTGACCCAAAGCCACTTCGTCAAGCAGCAGGCCGGCAGTTCTCCGGTCCAGGGCTTCAGCGTAAGCGGCAGCAACATGTACCTGGCCTTTAACAACTTGATCTTAAAATTGCAGACTGATGGGACTTACCAGAAGACCTGGAAGCATGTCTCCAACCGGGAAATCGAAGGTCTGGCCAGTGACGGCAGCCAGCTATATGCTCAATTGGCCCAAAGAGGGGAAATCCTTTCCGGCCGCTGGTAAAAAGCTGAAAAATAGCTTTGACAGGGGAAAGGCTTTCCAGTAAGATTGGTTAAAAATAAATTAAATGTTAACCGAGAGGTAAAAAAGATGAACTTTCAAGCAATGGTAAAAGAAAGCTGGCAATTCAAGTAGAGATTGTTTCGCGGGGCGATTCAATCTGTTTTGGCTTGAATTGTTGTCTGAATTGCTGAAAGTTGATTAGGGTCCGGATAGTAAATAAATCTATCCGGATTTTTCTTTTAGAGACAGAAAAGGAGGATCCAGGCGGATCCTCCTTTTTATTTTGCTTTCGGTTAGTTTGTTATTTTTTCTGTATTTACAGTACTTTAGTTTTTGCTTTAATTTGCTAGGTAACAGAATGAAAAAGGTGCTCGCGGCCTTTGCCGCAATTTATCTTTTTTGGCAGCCACCCTGTTTATCAATATCAAGCCGGCGGCCCAAAAGAGCAAGGAAGTCAGAGTGGGGGGCTTGACCTTGATGCGCCACCCGGCCCTGGACGAAATCTACCGGGGCTACAAGGCCGGCCTGGCCAAGTCGGGCTACAAGGTCAAGATCGACTACCAAAATGCCAACAATGACCAGAGCAATCTGAAGACCATGGCGTAAAAACTAGTCAACAGCCAGAACCAGGTCCTCTTCGGGATCACCACCCCGTCTTCCCAGGCCCTGGCCAACGCGACCAAAAAGAAGCCGATTGTCTTAGGGGCAGTGACTGACCCTAAGGGGGCGGGCCTGGTGAAGAACAACAAGCGTCCCGGAGGCAACATCACCGGGGTCAGCGACCGGGCGCCGATCAAGCAGCAGCTCAAGTTGATCCAGCGCTTTTTTGCCCAGGCTGAAGACCCTGGGGATCATCCACACCTCAAGCGACAGCTCAGCCGTGTCCGGCTACAAGCAGATCGTTAGCTACTGCAAGCAGATGGGGATCAACTACAAGGCCTACTCCATTTCCAACAGCAATGACTTAAACCAGGTCTCCCAGCAAATGCTGACCCAGGTCGACGCGGTGATCGTGCCGACTGACAACACGATTGCCGGGGCCATGCAGACCCTGGTCAAAAACGCCAACGCGGCTAAAAAGCCGGTCTTCCCGGCTGCCGGCACCATGGTTAAAGACGGGGGCCTGGCCACCTACAGCGTGGACCAGTACCAGCTGGGCTTGATCGGGGCCAAGATGACCGTCCAGATCTTGCAGGGCAAAAAGCCAGGCAACAATGGCCATCCACTATGTTGAACACGGCACCCCGTATCTTAACCTCAAGGAGGCTAAGAAGCTGGGCACCAAGGTTCCGGCCAGCTTCTTGAAAGAAGCCAAGTCTAAGGGAACCATCTACAAGTAGTTTACAAGGAGGATTTTTATGAATTTGATCGTATCGGCAATCGGCCAGGGCTTCTTATGGGGGCTCCTGGGCCTGGGCCTCTTTCTCAGCTTCAGAATCATGAATACGACGGATATGACCGTGGAAGGGACCTTCCCTTTAGGCGCGGCCGTTTCCGTCAGCCTGATCGTGCAAGGGACCAACCCCTTTTTAGCTACTTTGGCCGCCTTTGTGGCGGGGGTTTTAGCCGGCCTGGTCACGGCCCTTTTGATCACCAAGGGTAAGATTCCCAGCCTTTTAGCCGGGATTTTGACCATGACCGGGATCTACTCTATCGACTTGATGGTTATGGGCAAGTCTAATGTCTCCCTTTTAGGCAAAAAGACCATCTACTCCCTGGCCTTTTTGCAAAAACTGCCCCAGTACTTTGACAGCGTCGTTGCTGGCACCATCTTGATGGTTCTGGTCACCTGCGACTTGATCTGGTTCTTGTCAACCGACTTTGGCCAGGCCTTTATTGCCACGGGTGACAACCCGCAGATGGCCAAGTCTCAGGGGATCAGCCCCCAGCAGATGACGGTGGCGGGCCTCATGATTTCCAACGGCCTGGTTGGCCTCTGCGGGGCGGTGGTCGCCCAAAGCAACGGCTACGCAGATGTGAACATGGGGATGGGGACGAGGACGATCGTTATTGCCCTGGCCTCCATCATCATCAGTGAGGTCGTCTTCAGAAACCTTGGCCTAGCCAGCCGGTTATTCGCGGTCGGCCTGGGCAGCATTATCTACCGCCTGCTCTTATTGGCAGTTCTCCAGGTGGGCCTGTCTTCAAGCAACTTGAATTTGATTTCTTCACTAGTTCTGGCCGCCTGCATGATGCTGCCGCAAGTTGAAGAAAAACTCCGCCTCAAGCAGACATTTATGAAAGGACTTAAGCATGACTAGTCAAAATTTACTGGAACTGACCGATTTGGAAGTGGTCGTAGGCCGCGGTACTAGCGAGGAAAACAAGATCCTGGGCAAGCTCAGCTTAAAGATCAAGCCAGGGGACTTCATCTGCCTTCTAGGCGGCAACGGGGCCGGCAAGAGCACCCTGCTCAATGTTTTGGCCGGGGCCATCCAGCCGACCAGCGGAAAAATTCTCCACGCCGGCAAAGACATCAGCAAGGAAAGCGAGGTCAAGCGCAGCAGCTACATCGCCCGGGTCTTCCAGGATCCCAAGCTGGGGACGGCCCCTCGGATGACGGTGGCTGAAAATCTGCTTTTGGCCGCAAAAAGAGGGCAGAAGCGGGGGCTGAAGCTGCGCCGGCTGAAGGAAAACATTCCGGCCTTCAAAGAAGCCCTGGAGAAGGTCAACCCCGACCTGGCCGGCAAGCTGGACCTGCCGGTCGACCAGCTCTCAGGCGGCCAGCGGCAGGCCTTGAGCTTCGTCATGGCTACCTATAATAAGCCGGAGCTTCTGCTTTTAGACGAGCATACCGCGGCGCTTGACCCCAGATCCAGCCGCAAGCTGATGGAGGCAACCGATGAACAGATCCGGGCCAAGAAGATCACCGCGGTGATGATCACCCACCATATGGAAGACGCCTTAAAGTATGGCAACCGCCTTTTGGTTTTAGACCATGGTCAAATCAGCCACGACTATCAAGGCCAGGCCAAGCAGGACTTGACCCTGCAGGACTTAGCCGCCTTGTTTGACTGATAAAGAAGAGGCAGAGCAGACAGAAAAACAGAACGAAAAAAGACAAAATGAAAACCGCTGCTGAAAAGCAGCGGTTTTCATATGATGGACCCCCTGGGAGTCGAACCCAGATTTCAAGAACCGGAATCTTGCGTGCGATCCATTACACTAAGGGTCCCAATCACAGTTATTAATTATAGCAGAGATTCAGAGAATGGGAAGGGGTTAAAGCAAAAAAATTGTAAAAACTTGTAAAGTATCTGCGAAAAAGGTCAAGAAAGTTATAAAACAGGCTTTTTGCCCGGGCAGGGTTAGAAAAAAAACTTGCATACGGAGCGAATTCTGTTATACTAAGAGTGTCGAGAGAGAAATGGAGATTGAAGCGAAGTCTTGTTTCTCTTATTTTTTTAAGCAATGCGGGACAGAAAACGACAACAGCGTGGTCGGGGAGTGTCCCACTAGAAGGATGGTTATTTTGAACACGGATTTATCCCTGCTCGAACTGCTTGTTCCCGATGCTTTAAAGATCTTTCGACAAAGATATCTCATCCTTGAACAGATCAGCTTGCATGCTCCAATCGGCCGCCGGACGGTGGCCAGGCAGTTGGGGCTGAGCGAGCGGAACATCCGGACCGAAACTGATTACCTGCGTGACCAGGGTCTGATCGAAATCAAGAATTTCGGGATGTTCTTGACTGAAAAAGGAGAGAGTGTTGTAAAAGATGCAGCACCAATTGTTGATCGACTTTTTAATGCCAGCCAAGCAGAAGTATGGTTGGCCCAGGCTTTAGGAATAGATCGGACAATTATCGTAGCTGGCGACGCGGACCTGCAGAGCCGGGTTTATGACCTGGCTGGCGAAGAGCTGAATTCAGCCTTGAGTCTGCTCTTGCCCCTGGCAGACTGCATTGTCACCGTTATGGGCGGCAAGACAATAGCCAAAGTGGCCAAGAAGCTGAACCGCAGCTTGAGTGAGAACCGGAGCTTGATCTTCGTCCCTGGCAGAGGGGCATTGGGCGGCCGGGTCAACACGGAAAGCAACGCGGTCGTTCAAGAAATGGCCCGGGCGACCGGCGGCAGCTATGAATCCCTCTTTTTACCGGAACATGTTTCCAAGGACGCTTACCGGTCTTTGGTCCGGGATCCGGAAATCAGCGGGGTGTTGCAGGATATCTCCCAAAGCGATGTCGTGATTCACGGCATTGGCCTGGCTAGTGAAATGGCCAGGAGGCGGGGCTACGATTCAGTTGCCCTGGCACGTCTGCGGGAGAACAAGGCCGTCACCGAATGTTTTGGATGTTTCTTCGATGAAGAAGGCCACGTTGTCGAACGCATCAGACAGGTTGGATTGCAGTTCGAGAACCTAACGAATGTCCCGCATATTCTGGCAATTGCCCTTGGCACGAGAAAGGCCAAGGCCATCAAGGCCTATATGCGCAACGCTCCTCATCAAACCTGGCTGATTACTGATGAGGCAGCCGCAAATCAGATTTTAAACGGGTCATCCCGCTTAAAATAAAATGTTTTTTATAGTTCTTAAGGAGGACTTTTCGAATATGACAGTTAAGATTGGTATTAACGGTTTTGGCCGTATTGGTCGTTTGGCATTCCGTCGCATCATGGACTTGGGTGAAGAAACCAAGGACATCGAAGTTGTTGCTATCAACGACTTGACTACTCCAGCTATGTTGGCTCACCTGTTGAAGTATGACTCAACTCACGGCACTTTCGACCACGAAGTTTCAGCTACTGAAGACTCACTGGTTGTAGACGGCAAGAAGTACCGCGTATACGCTGAACCACAAGCTCAAAACATTCCGTGGGTTAAGAACGACGGCGTTGACTTCGTTCTTGAATGTACTGGTTTCTACACTAGCAAGGCTAAGTCACAAGCCCACCTTGACGCTGGTGCAAAGCGTGTCCTGATCTCAGCTCCAGCCGGCAACGACTTGAAGACTATCGTTTACTCAGTAAACCAAGACACTTTGACTGCTGACGACACTATCGTTTCAGCTGGCTCATGCACTACCAACTCACTTGCTCCAATGGCTAACGCTTTGAACAAGGAATTCGGTATCCAAGTTGGTACTATGACTACTATCCACGCTTACACTGCAACTCAAAAGGTTTTGGATGGTCCTGACAGAGGCAACAACTTCCGCAACGCCCGTGCCGCTGCTGAAAACATCATTCCTCACTCAACTGGTGCTGCTAAGGCCATCGGCCTGGTATTGCCAGAATTGAACGGCAAGCTTGATGGTCACGCACAACGTGTCCCAGTTAAGGACGGTTCAGAAACTGAACTTGTTACTATCTTGGACAAGAAGGTAACTGCTGAAGAAGTTAACGCAGCTATGAAGAAGTACGAAAGCCCATCATTTGCTTACAACGCAGACCAAATCGTTTCTACTGACGTATTGGGCATGACTGCTGGTTCAATCTTCGACCCAACTCAAACCCAAGTTATCACTGCAGGCGACAAGCAACTTGTTAAGACTGTTGCTTGGTACGACAACGAATACTCATTCACTTGCCAAATGGTTCGTACTTTGTTGCACTTTGCTACTCTTTAATTTAAAGTTTTCTAAATTGAATTAGTAGTGTGAAAGAAGGCGGAGGGAAATTTCTTCCTTCCGCCTTTTTTTGATGAATATTAGGAGATTTTTTCAATGGCTAAATTGATTGTTTCTGACGTAGACGTTAAGGACAAGAAGGTTTTGGTTCGCGTTGACTTCAACGTGCCGATTAAGGACGGCGTTATCGGCGACGACAACCGTATCGTGGCTGCTTTGCCAACTATCAAGTACATCATCGAAAACGGCGGCAAGGCTATCTTGCTTTCCCACCTTGGCCGGATCAAGAGCGATGAAGACAAGAAGAGCTTGAGCTTGGCTCCAGTTGCCAAACGTTTGGGCGAATTGCTTGAAAAGCCTGTAACTTTCGTACCTTCAAACGAAGGCAAGGAAGTTGAAGACGCCATCAACAACATGAAGGACGGCGACGTAGTTGTTTTGGAAAACACCCGTTTCCAAGACATCGACAACGACTTCGGCAAGCGTGAATCAAAGAACGACCCTAAGCTGGGCGAATACTGGGCATCATTGGGTGACGTTTTCGTAAACGACGCCTTCGGTACTGCTCACAGAAGCCACGCTTCAAACGTTGGTATCGCTACGGCCATGAAGGCTGCCGGCAAGCCAGCAGCTGCTGGTTTCCTGCTTGAAAAGGAAATCAAGTTCCTGGGCAACGCTGTTGCTAACCCAGTTCACCCATTCGTAACTATTCTTGGCGGGGCTAAGGTTTCTGACAAGATCGGCGTTATCACCAACTTGATTCCAAAGGCTGACCACATCATCATCGGTGGTGGTATGGCTTACACCTTCCTTAAGGCTCAAGGCCACAATATCGGCAAGTCCCTGGTTGAAGACGACAAGGTTGAATTTGCCAAGGAATTGTTGGAAAAGGCTGGCGACAAGCTGGTTCTGCCAATCGACAACGTAGCCGCAACTGAATTCAACAACGATGCTGCTTCAGAAGTTGTTGGCCAAGACATCCCAGACAACGAAATGGGCTTGGACATCGGTCCTAAGACTATTGAACTCTTCAAGAAGACTCTTGAAGGTGCCAAGACTGTTGTTTGGAACGGGCCAATGGGCGTCTTCGAAATGCCAAACTTCGCCAAGGGTACTTTGGAAGTTGGCCGTGCTTTGGCTGACTTGCCAGACGCTACTACTATTGTCGGCGGTGGTGACTCAACTGCTGCTGCTAAGCAATTGGGGATCGCTCCTAAGTTGACTCACATCTCAACTGGTGGTGGTGCATCTCTTGAATACCTTGAAGGTAAGGAATTGCCAGGTATCGCTTGCGTTTCAGACAAGTAGTTTAGGAGGATTTTTCAAATGTCACGTACCCCAATTATTGCTGGTAACTGGAAGCTGAACATGAACCCAAAGGAAACTGTTGAGTTCGTAAACGCTGTTAAGGACCAATTGCCAGACCCATCAAAGGTTGAATCAGTGATTTGTGCACCAGCAGTTGACTTGGACGCCTTGCTGAAGGCTGCCGAAGGCTCAAACCTGCACGTCGGTGCAGAAAACTGCTACTGGGAAAACTCCGGTGCCTTCACTGGTGAAACTTCTCCAGCAGTTTTGAAGGAAATGGGCGTGCAATACGTCATCATCGGCCACTCAGAACGCCGTGACTACTTCCACGAAACTGACGAAGACATCAACAAGAAGGCCAAGGCTATCTTTGCCAACGGCTTGACTCCAATCCTTTGCTGCGGTGAATCACTGGAAACCCGGGAAGCCGGCAAGGAAAACGAATGGGTTGTCAGCCAAATCAAGGCTGGCCTGGAAGGCTTGACTAGTGAACAAGTTTCCAAGCTGGTGATCGCTTACGAACCAATCTGGGCGATCGGCACTGGCAAGACTGCTTCAAGCGACCAAGCTGAAGAAATGTGCAAGACTATCCGGGAAACTGTTAAGGACTTGTACAACGAAGAAACTGCTGAAAACGTCCGCATCCAATACGGCGGTTCAGTAAAGCCAGCCAACGTCAAGGAATTGATGGCTAAGCCAAACATCGACGGTGGCTTGGTTGGTGGTGCATCATTGGTACCAGACTCATACCTGGCTTTGGTAAACTACCAAGACTAATTTTTGACTGTCATATCAAAAAACGCTCCTTCGGGAGCGTTTTTTCTTTGTCTGCTATTCGATACTTTTCTGTCTTCTTTTGTACTTTTCGCTTTTTTGCTTTTTAAAACTATTTTCCCAAAAATCTCAGCCTATTTGCTGATAACGCTTACAAAGGTGGTATTATATAAGTGTAAACAAAAGAAAAGAGTTAATATTCAAGGAGGATACTCCACTAGAAAGTTTAGCTTAAATTCGCAGAGCATAACTAAATTAGGCTCGGGAAAGGACTGAGACCACCATAAAATGCAGTCGACAATTGAAGATAGAAGAAGTTCCTAACGGTTAAGTACGTGAGTAGATTAACTGTTAGGAACTTTTTGTTTGCCCGGAAAGGGCGCTTAATTGTCTTTTTTCTCCTGACTATAGTAACATGAATTGTAGGAAAACAATTTATATAGAAAAATAACAAGGAAAAGGAGAAAAAAGACGAAATGATCCGTAAGGCAAGAAAAAGCGACTTTGAAGCGGTTTACCCGATTTTAAACCAGATTTTTGACGGATACCATCAACCGCCTACAGAAGAGCCAGTTCTACGACTTGATACGGCTGGGTTTCATCTCGGAAAACTACCGTTATTCCTACAACCGGATCTGGGTCGATACTGACGAAAACGACCGGGTCTGGGGGATGATCTGCATGTACCCGGACAAGGCCCAGGGCATTATTGACGTGGTGCTCAGAAAAGAATGGCCAAGGTCGGCCTGCCAATGACCACCGATATCTTTACCGATAAGGAAGCCCAGAAGGGGGAATGGTATATCGATGCCTTAGCTGTCTCTCCGCGGGACTGGGGGAAGGGGATTGCCAGCCGCTTAATGGAACTGGCCCCGAAACTGGCCAAGAAGCACGGCTACAAGAAGGTCAGTTTAAACGTGGATCTAGAAAAAACTCGCGCTCAGCAATTATACTTGCGCAAGGGTTTCAAAACGACTAATTCAATGACTATTGGCGACCGCGTTTACGACCATATGGTAAAAGAAGTTTAAAGAAGCTGGCCGTGCTGGTCGGCCGCTGGTTGAGATTTGGAAAAAGGTCCGGCAGGTTGAGCGGGGTGACGTGCCACTGGGTGAAAAGGACCGCGATCAGCAGAATAAAGGGGGTATCTTCCTCCCGGCTGATCTGGCAGGTCAAGGTCACCCCCTTGTCGGCTACTGCCGTGTCAACGGAAGCCACCTTCTTAAAACCGTCCCGGAAGTAATAGCTGCCCTGCTTGATGCTGCCATTGACCCAGTAGTTGAGCCGGGTAATGTAGAACAAGTTGGTCAGGGGGCTGTTGACCTTCTTGACGTGGACCAGGGAGTGGTGAACCACATCCAGGGTGAAAGATGCGATCAAGCCGGTGCCATCGCTGAACAGGCGGCCGATCTCATTACCGCTGGTGTCCAGCAGGTAAAGGGTGTGGTTGGGATTGTCCAGCCGGCCGCGGATGGAGCCAAAGGGCTTGCCCTCCTCATCGGTGATTGGAATCTGGCCCGTTCGGCCTTCCTGGGTCAGGTAAAGGGTGTAAATCATTGGTCCTGCTCTTTTTGATTGTCGGCAATGATCTTGTCGATAGCCCAGGCTACCCCGTCTTCATTGTTGCTCTTGGTGACGAAGCTGGCAATCGTCTTGATCTGCGGAACGGCATTGCCCATGGCCACGCCGGTGCCGGCAGCCTGGATCATGCTTTCATCGTTCAGGTTGTCGCCGATGGCCGCGATTTCTTCGCGCTTGATGCCCTTGGCCGCCGCGTAGTCCAGCAGGGACTGGCCCTTTTGGGCGTCGGCGGCGTTGATTTCGATATTGTCGGCCGCGCTTGAAGTGATGGAAAGCTTGTCGATCTCTTCAATTTTCTTGATGACGTCGGTGAAGGCGTATTGGCCCCGGGAGTCAAAGACCAAGATCTTCATTACTTCCGTGCCAGGTTCGTCCATCAAGTCCTCATAGCTTGGCACCTGCTGGATGCTGACGATGGCCGGCTTGCTGGCTGAAACCAAAACAGCCTCCTTGAAGGTCAGCATTGGGTTCAGTTCCACCATTAAGTGAGCCACGTTGGTAATCCGCTGGCTCAAGTCTTCTGAGTAGACGTGGTTGCTGGTAACCAGTTCGAAGTAAAAGCCTTCCTTCTTGAGCAGGCGGCAGATCTTCTTGGCCGTTTCCAGCTTCAAGGGATTCTTGACGATCAAGTTGCCGGCCGTGTCAAATACCAGGCCCCCGTTTAAGTTGATAAAGCTACAGTCGATCCCGTATTCTTTAAGCATTGGCTGGGATTCATGGGGTGCCCGGCCGCTGGCCACCATGAATTCGATGCCGTTTTCTTGGGCGCGTTTAATGGCCTGAACATTGGCGTCAGAAATTTCCATAGAAGAGTTCAGCAGGGTCCCGTCCAAGTCACAGGTGATCAGTTTAATCATGTTATTTCCTCCTTGTTGTTATCGATTTCATAATAACATAAAGGAGGAAGTTTGATTACTGCAAAGTGTTTCTTTATTTGAAAAAAGTTGTCGTGAATTATTTCACTAGTCCCTTTAAATCAAGAGGCAATCATGGTAAGATTGACTAAGGTGAATTACAGATGAAACATTTTATTGGAAATGATTGGGACCATGTGCTTGCCCCGGTTTTTGAAAGTGGTGAATATCACAAGCTGCATGTTTTTTTGAAAAAAGAATACCAGACCAGGCAGATCTACCCGGACATGTACCATATCTTTACTGCCTTCAAGCTGACCCCTTTTAAAGACACCAAGGTTGTCATTTTGGGTCAGGACCCCTACCACAATCCCAGCCAGGCTAACGGCATGAGTTTTTCTGTCATGCCGGGCACGCCCCTGCCACCGTCCTTGCGCAATATCTATAAGGAGCTCTATGACGATGTTGGGGCCCAGCCGGTCAACCACGGCTACCTTAAACGCTGGGCCGACCAGGGCGTTCTCTTGCTCAACGCCGTTTTGACCGTGCCATATGGCCAGGCTAACGGCCACCAGGGCAAGGGCTGGGAAATGGTGACAGACGCCGCTATTAAGGCCTTGAGCGAGCGGGGGCAGGTAGTCTTTATCCTGTGGGGCCGCTTTGCCCAAAATAAGATACCCCTGATCGACCAGGACAAGAATGTCATTATCAAGTCAGCCCACCCGAGTCCTTTTTCGGCCAACCGCGGCTTCTTTGGCTCCCGGCCCTTTTCAAGATGCAACGCGGCCTTAAAGGAGTTTGGCCGGGCTCCGGTCGACTGGCAATTGCCGCCTAACCCGGAAGCATGATTTTTTTGAGGAGATTATTGATGGAAGTTTTTGAACAATTAAAGCAATTGATTAAGCAAAAAGACAAGCAGCGGATCGTTTTCCCGGAAGGGGAGGACCCGCGGATCCTGACGGCGGTCAGCCGCTTAAAGCAAGATGACCTGGTTGAACCGATCGTCCTGGGGCAAAAGGACCAGGTCCTGGCTTTGGCGGAAAAAGCTGGCTTGGACATGACCGGGATCGAAATCGTGGACTACCAAAACAGCCCGGACTTTGGCGAGATGGTGGAAAAGTTCCACGAACGGATGGCCGGGGGCAAGCACTTCCAGACCATGGAAGAAGCGGAAGCTGCCTTGCGCGACGCCAACTTCTACGGGACCATGCTGGTTTACACCGGCCAGGCCGACGGGATGGTGTCCGGGGCGGCTCACTCAACGGCCGACACGGTCCGGCCAGCCCTCTTCATTTTGAAGACCAAGCCGGGGATGCACCGGATTTCCGGTTCCTTCATCATGGAAAGAGGGGAAGAAAAGTATGTCTTTGCTGACTGCGCGATTTCCATCGACCCGACCAGCGACCAGCTGGTTGAATTCGCGGCCCAGTCAGCTGCTACGGCCAAGATGATCGGGATTGACCCCAAGGTGGCCTTCCTCAGCTTCTCAACCCACGGCTCAGCCAAGGGCCCGCAGGTAGACAAGGTGGCAGAAGCGGCCAAGCTGTTCAAGGAAAAGTACCCGGACATCCCGGCAGACGGCGATTTGCAGTTTGACGCGGCCTTCGTGCCGGCAGTTGCTGAACTTAAGGCACCTGGTTCAGCCGTTGGCGGCAGGGCTAATGTCTTTATCTTCCCGGAACTGCAGTCAGGCAACATTGCCTACAAGATTACCCAGCGCCTGGGCAACTTTACGGCCATCGGGCCGGTTTTGCAGGGGATTGCCAAGCCGGTCAACGACCTCTCCCGGGGCTGCAGCGCTGATGACGTCTACAAGATCGGGATTTTGACGGCGGCTCAAGCCGTTATGGAAGGGTAGAAAGAAAGCGATGACAGAATTAGCAATCAATTCCGCTTCTGACATGCAGGCCTTTGGCGCCGCCTTGGCCCAAAGCGCCCAGCCCCATGACCTTTTGCTCTTAAAAGGGGACCTGGGGGCCGGCAAGACCACGCTGACCCAGGGCTTCGGCCGGGCTCTGGGGATTAAGCGGCCAGTCAAGAGCCCGACCTTTACCCTGGTCCGGGAATACCGGGAAGGGAAGCTGCCCCTTTTTCACATGGACTTTTACCGGCTGGAAGGCGATGACCTGGCTTCAATCGACTTAAATGATTACCTGGCTGAAGAAGGCGTGGTCATCATCGAATGGCCCCAGGTGATCCAGGCTGACCTGCCCAGTAACTTTTTAGAGCTGGTTTTGACCCGGGTGGACGATTCCTGGGATTCAACCAAGCGCTTGCTTGAGCTCGTCCCGCATGGGCAAAGAGCAGCTGCCTGGGCAGAAAACGCCTGCCGCCTCTACCAGGAAAAGCAGTAAAGCAAAAACAAAAGCAGAAGTAAAAGTAAAAACAAAAGAAAAATGGATCAGCTTGCTGCTGATCCATTTTTTGCCTAGACTTGGTAGACAAACTTTTTCAAAAGCTCGCTGCCCCGCTTCTCCTCTTCTTTTAAGAGGATACCGGCGCAGGCTTCGCTGTCGCTTAAGGCATTGTGGTGGTGCCAAAGCTCCACGCCCAAAAGGTCAGAGACAGTGTTGAGCTGGTAGTTATCCAGGCCCGGCTCCAATTCCCGGCTGACCTTGAGGCTGTCTAAAACCAGGTAGTGGGGCTCGGCAATCCCGTAGCGGGCCAGGGACTGCTTCATTACATTGCAGTCAAAGCGGGCATTGTGGGCCGCCACCAGCATCCCCGGCTGAAAAAGGGGCTGGATCTTGGGCCAGACCTCGGCCATGGTCGGGGCTCCCGCCACGTCTTCAGCCGTAATGTCGTGGACCTTGACCTGCTGGGCGTCAAAAGCCATCTGGGGGTTGATGACCGTGTAAAAGCGGTCGATAATCTTGCTCTCCCGCACTAAAACCAAGGCCAAAGAGCAGGCGCTGGCCGGGTGCTGGTTGGCAGTTTCAAAGTCCATGGCGACGAAATTCATCATAAGCAAAAGCCTCCGTTTGCGCGTAAGTCAAATTAAGCCAAGCAAACTTGATCTAAGCTAGTATAACACAGCGTGAATGCGGTAAAATATCAAAAGGAAGATTTAGAGGAGGCAATTTTAATTGAAGCTGTATGACTTAAAAGCGCAAGGACTTGATTTGCAAGAAAACATTCCTTTGAGCCGCTATACTTTTACCCAAACCGGGGGACCGGCAGAATACCTGGCTTTCCCCAAGACTTTGGCAGAATTGAAAGAACTCTTGGCCGCGGCCAAGGAGGACCAGCTGCCAATTACGGTGATCGGCAACGCGTCCAACTTGATTATCCGCGACAAGGGGATCAAGGGCCTGGTGATCATTTTAACGGAAATGAAAGAGATCAAGGTTGAAGCTGACAAGGTCCACGCCCAAGCCGGGGCTAGAATCATCGATACTTCCTTCGCGGCTGGGGAAGCCGGCCTGTCCGGCCTGGAATTTGCCGCGGGCATCCCCGGCTCAGTCGGCGGGGCGGTCTTCATGAATGCCGGGGCTTACGGCGGTGAAACTAAAGACTGCCTGGAAAGCGCCACGGTCGTCACCAGAGACGGTGAGGTCAAGACCTACACGAACGCTGAGCTGCATTTTTCCTACCGGCATTCCCTTTTGCAGGAAAATGACGAGATCGTCATCGCGGCAACTTTTGCCTTAAAGGCCGGTGATAAGGCAACTATTTTGGACCAGATGAACTACTTGAACGCGCTCAGAAGCTACAAGCAGCCCCTGGAATACCCGTCCTGCGGTTCAGTCTTCAAGCGGCCGACCGGCCACTTTGTCGGCCCGATGCTCATCAAGGCCGGCCTGCAGGGCAAGCAGATCGGCGGGGCCCAGGTGTCAACCAAGCACGCAGGCTTTATTGTCAACAAGGGCGGGGCCACGGCAACCGACTACCTCAATTTGATCCACTATATCCAAAAGACGATCAAGGAAAAGGATGGTATTGCTTTGCAGACGGAAGTCCGCATAATTGGCGAAGAATAATGGCTTAGGATTAAGAGAAAAAGAAAAATGGGAACGGCAAATGGAAATTATTAAGTTAGATCACATCACCAAGCAGTATGATGATGGCTTTGTAGCCTTGAAGGACATCAACCTTGAGCTTGAGTCCGGCAAGTTTTACTCTTTGCTGGGGCCATCAGGCTCGGGTAAAACAACGATTTTGCGGATCATTGCCGGCTTTACGGAAGCGTCAGCTGGCAAGGTTTATTTTGACGGTCAGGACATCACCAATCTTGACGCCTCAAAACGGCATATCAATACGGTTTTTCAGAATTACGCTCTTTTTCCGCACTTGAATGTCTATGAAAATGTTGCTTTTGCCTTGAAGCTGCGCCAGCGGCCGGAAAGCGAAATCCGGGAAAAGGTCAAGGATGCCCTCCACACCGTCCGCCTGGACGGTTACGCCAACCGGGAAATTTCCGAACTCTCCGGGGGCCAGCAGCAGCGGGTGGCGATCGCCCGGGCGATCATCAATGAACCTAAGGTGCTGCTTTTGGATGAATGCCTGTCAGCTTTGGACAAGCGCCTGCGAAAAGAAATGCAGTTTGAACTCCGGGCCATCCAGAAGAAGCTGGGCATCACCTTTATTTTTGTCACCCACGATCAGGAAGAAGCCCTGGCCATGAGTGACGAAATTTTCGTCTTAAACGACGGGGAGATCAAGCAGAGCGGGTCACCGGTAGACATTTACGATGAGCCGGTCAACGACTTCGTTGCCCGCTTTATCGGGGACTCCAACATTTTATCCGGCAGGATGATCCGGGACTTTGCCGTGGAATTTGCCGGCAAGGACTTTGAATGTGCCGACGCCGGGATCACCCCGGGGGAAAAAGTCGAAGTCGTTTTGCGGCCAGAGGATTTGGATATTACGGCTCCAGCTGCTGGCAAGCTCCTGGTAACGGTGCAGAGCCAGCTTTTCCTGGGCGACCACTTTGAAATCAAGGCCATCGGCCAGGACGGCTTTGAATGGCTGATTCATTCCACCAACGGGGTCCAGATCGGCCAGGAAGTCGGCATCTTCTTTGACCCGGAAGACATCCACGTCATGCGGCTAGGCGAAACCGAAGAAGAATTCGACGCCCGCCTGGAAACTTATGAAGGTGAGGACTAGCCATGAAAAAGAACCGGCTTTTATTTCTTTTGCCTTACCTGCTGTGGATCGGCCTCTTCGTCATCGCCCCCCTGGTCTTGATTCTGGGCTATTCACTGACTGATGCCCACAGTCATCTGACCCTGCAAAACTTCGCCGCCTTTTTCTCGGGCGGCACCTTTTTGCGGATGATGGCCAATTCCTTTTGGTATGCCCTCTTGATCACCTTTTTCTGCCTGCTGGTCTCTTATCCGGCAGCCCTGGCTTTGACCAGGCTGAAAAACCAGCAGTTCTGGCTGATGCTGATCATTTTGCCGACCTGGATCAACCTTTTGCTTAAGGCTTACGCCTTCATTGGGATTTTTTCCCGGAGCGGGATGGTCAACCAGTTCCTGGGCCTCTTCGGCATCGGCCCGGTTGGGATCATGTTTACCGACTTCGCCTTTATTTTCGTGGCGATTTATATCGAAATTCCCTTCATGGTCATGCCCATCTACAACTCGCTGAAGGAAATTGACCCGGCTCTTTTAAGTGCCAGCTCAGACCTGGGGGCCAGCTTCTGGCAGACCTTCCGCTACGTGATCTGGCCCTTGTCCTGGCCAGGCGTTGAATCGGGCATCCAGGCTATCTTCATCCCGTCTCTGTCTCTCTTCATGTTGACCCGCTTGATCGGGGGCAACCGGGTGATCACCCTGGGGACGGCGGTTGAAGAGTATTTCTTGACGACGATGAACTGGAATATGGGGGCAACGATCGGGGTTATCCTGATCGCCTTGATGTCGATTGTAATGCTGCTGACTTCACGCAAGCAGCACAAGAAGGAATTTGAATTATGAAAAAGACCATTTGGGGCAGGGTTTACTTTGGCCTGGTGCTGCTGATCATCTACCTGCCAATTTTCTACCTGATCTACTTTTCTTTCTCCAGCGGCTCCAGCATGGACCACTTCCGCCATTTTACCTGGGAGCACTACCAGACCTTGTTTGCTGACAAGCGCCTTTTGGCTATCTTGCTGGAGACGATCATGCTGGCTCTTTTGTCCAGCCTGGCGGCAACCGTCCTGGGGACTTTTGGGGCCATTGCCATCCAGCGCAGTAAGGAGGCCTACCGCAAGATCCTGCTCTCTTTTAACAATATCTTGATCGTGTCGCCCGACGTTATTATCGGGGCCAGCTTCTTGATTCTTTTTACCGCCCTGGGCTTCAGCCTGGGCTTTGCCTCCGTCTTGCTTAGCCACATCGCCTTTTCAGTGCCGATCGTGGTCTTGATGGTCCTGCCTAAGCTGAAGGAAATGGACAACTCCCTGATCGACGCGGCCCGGGACCTGGGGGCTAACAACTACCAGGTCTTCAGCCAGGTCCTCCTGCCGGCCCTTACGCCGGGGATCCTGTCAGGCTTCTTCATGGCCCTAACTTACTCTTTGGACGACTTCGCGGTTACCTTCTTCGTGACCGGGAACGGCTTCACCACCTTGTCCGTTGAGATCTATTCCCGGGCCCGGCAGGGGATCGACCTGGAAGTGAATGCTTTAAGCACAATCATCTTCTTCTTTGTCCTCCTTTTGGTCGGGGTCTACTACTTCTTGACCAAGCGGCAGGGCAAGAAGGCTAATAGGCTGGGAGGGCTTCTGCGATGAAAAAAATTCTCTCCGCGGCCCTGGCCATCCTTTTGGTCAGCTTGGGCCTTTACCTGGGCGCCCAGCAGCTGGACAGCTCCAGCGGCGGCTCTGCCTCAAGTAAGAAAGACTTGATCATTTACAACTGGGGGGACTATATCGACCCGGATTTGATTACCAAGTTTGAAAAGCAGACGGGCTACCATGTCATCTATGAGACTTTTGACTCAAACGAAGCCATGTATACTAAGATCAAGCAGGGCGGGACAGCCTATGATTTAGCCGTGCCGTCGGATTACATGATCACCAAGCTGCGCCGGGACAATCTTTTGGATAAGATCGATACCAGCCGCTTGAGTAATTTCAAGTACATCGACAAGGAATTTTTGCACAAGTCCTTTGATGAGAAAAACGAGTACTCAGTGCCTTACTTCTGGGGAACCCTGGGGATTGTCTACAACGACCGCTATGTCAAAAAGGGCGAGATCAAGAGCTGGAATGACCTCTGGAAGAAAAAGTACCAAGGGCAGATCCTGCTGGTTGACTCAGCCCGCGATATCATGGGCATGTCCCTGGTTTCCATGGGCTACTCCATGAACGACACCAACTCTGCCCACCTTAAGGCCGCCAAGGCCAAGCTAGACAAGATCGGCAAGAACGTCAAGGCAATCGTGGCTGACGAGCTGAAGATGTACATGGTGCAAAATGAGGCCTGGATCGGGGTTACCTATTCCGGGGAAGCCGCGATGATGATGGACCAGGACTCCCACATCCATTACGTGGTGCCGGCCCAAGGGTCCAACTTGTGGTTTGACAATATCGTTATCCCGAAGACTTGCAAGAACAAGGAAGCCGCTTATAAGTTCATCAACTTCATGCTAGAGCCCAAGAACGCGGCCCAAAACGCCGAATACATCGGCTACTCGACCCCGAATACCGCGGCGCAAAAGCTCCTGCCTAAGTCCGTCCGGGAAGACAAGCAGTTTTACCCGCCAATGTCGACGGTCAAGAATTTGGAAGTTTATCGGGATCTGCCAAGCAGCAAGGTGCAGGAATACAATGACCTCTTCCTGGAGTTTAAGATGTATGCCCGTAACTAAGCTGACAGAAAATTTTAGAAAGGGAAAATTTCATGCAGTTTGATTTTGCAAGTCTGTGGACCTGGCATACCTTGTCGGTGGTCCTGGACGTCTTGATCACCTGGTATTTCATCTACCACCTGACCCATTTGATCAAGGGGACCAAGGCTGTCCAGCTGGCCAACGGGATCATTTTGATCATGGTGGCCCGGGTCTTGGCCGGCTGGGCCCAGCTGACGACCGTTACTTTTATTTTGGACCAGATCGTTTCCTGGTCAGTCATCGGGATTATCGTCATCTTCCAGCCGGAAATCCGCCGGGGGCTGGAGCGCCTGGGCCGGGTCTCCTTGTTTTCTGATTCAGAAAACAGCAAGCGCGAGCAGCAGGAAAAGCTGGTCAAGGAGCTGGACAAGGCGATCCAATACATGTCCAAGCGCCGGATCGGGGCCTTGATTACTTTGGAACAAAAGACCGGTCTGGAAGAATACGTGGAAACCGGGATCAAGCTCGATGCCCTGGTTACCGGGGAATTGCTGATCAATATCTTCATCCCCAACACTCCTTTGCACGACGGGGCGGTCATCATCAAGAACAACCGGGTCCAGGTGGCTTCCGCCTACCTGCCCCTGTCTGACAATGCCATGATTCCCAAGAGCCTGGGGACCAGACACCGGGCAGCCGTCGGGATCTCTGAAGTAACCGACGCCATCACCGTGGTCGTTTCTGAAGAAACGGGCGGGGTGACTATCACCAGAAACGGCCAGTTCATGGTTGACCTCAGCCAGCAGGAATACCTCAAGTACTTGCGGGCTGAACTGGTCACTGAAGAAAAGAAGAAGCAGCCATGGCCAATCCGCCTGGCCCGGGGCATCTGGAACTGGGGGGATAAATAATGCACAAATTGTTTGAGCAAAAATGGTTCTACAAGCTTTTTTCCCTGCTCTTAGCCATCGTCTTGGTTGCCTTCGTTGATAACACCCAGGTTAATACAAACAACCAGACCAAGGTGCAAGAAACGGCAAGCACTGAGCAGAGCTTGAAGATGGCCTTGCAAGTGTCAGTGGACACTGACAAGTACTACGTCACCGGCTACCCATCCAAGGTCAAGGTGACTCTAGAAGGACCGAATGCCCTGGTTACTTCCGCCGTTAACACCCAGAACTTCCGGGTCTACATTGACTTGAGCAAGCAGGGTGTTGGAAGCCACCAGGTGCCAATTAAGGTTAGCGGCCTACCCAACCAGGTTTCCTGTAAACTTTCGCAGAAAAGCGTGAAAGTCAACATCCAAAAGCGAAAGTCCCGCACCTTGCCGGTCCAAATAGGTTATAATAAGAATGCTGTTGCTCAAGGCTATGACATCGGCATGCCGACAGTCAGCCCGGAGACGGTTGAAGTCACCGGGGCCCAGAGCGAAGTAAAAGCGATCGACCGCGTGCAGGCCCAGCTAGTCGTGCCAAACGGCAGCACCGAGACAGTGCGGCGGAACGTTCTTCTAGCCGCATACGATGCCAAGGGCCACCAGCTCAACGTGGTGATCAGTCCGGCAACGGCCCGGGTAACCCTGCCTTTGTCGGTCTCTAAGAAGAAGGTTAAACTGAAGCTGAATGCCAGCCATGGCTCAAGCAAGAAAGTTTACTCCTTGACTGCCAAAGAGGAAAAAGTTACCCTCTATGGGCAAAAAGGAAGCCTTGAAAAAGATCAGTTCCCTGACTTTGGATGTTGATCTGACTGATATCAAGTCTTCGGTCACCAAGTCCTTCCGCCTGCCAGTTCCAAGCGGGGTTGCCTGGATTTCACCAGGCAGCGTGGATGTCCAGATCGAAGTCAGCGATTCGAACAACTAGAAAAAAAGAAAGGTTCTTTGCAACATGCTTAAATATTTTGGTACTGATGGTGTCCGCGGTGAAGCGAACAAGGTTTTGACCCCGGAAATGGCCTTTAAACTGGGCCGGATGGGCGGCTACGTGCTGACCAAGGAAAAGGAAGACGGCGGCCAGGCCCGGGTTCTGGTTTCAAGAGACACCCGGATTTCTGGTGAAATGCTGGAACACGCCTTGATTTCAGGCCTTTTGTCAGTCGGCATTGAAGTTTTGGAATGCGGGGTCATGACCACACCTGGCCTGTCCTACCTGGTCCAGGCCCAAGGGGCAGATGCCGGCGTGCAGATTTCTGCTTCCCACAACCCGGTTGAAGACAACGGGATCAAGTTCTTTGGCAGCAATGGCTTGAAGCTGTCTGACGCCAAGGAAGAAGAAATCGAAGAGCTGATCGACACTAAGCAGGACATGCTGCCGCGGCCATCAGCAGAGGGCCTGGGCACGGTAACCGACTTCCGCGATGGCAGCAACAAGTACATCCAATTCTTGGAAAACACTATTCCGGAAGACTTGAGCGGGATCAAAGTGGTAATCGACGGGGCTAACGGGGCAGCCAGCGCCTTCATCTCCCGTTTGTTTGCCGACCTGGATGTTGACTTTACCACTATTTCAACCCACCTGAACGGGCTCAACATCAACGACCACTGCGGGGCCACCCACACTGCCCGCCTGCAAGAAGAAGTTGTCAAGCAAGGTGCCCAACTGGGCCTGGCCTTTGACGGGGATGCCGACCGCTGCATCGCGGTTGACGAAAACGGCAATGAAGTCGACGGCGACCACATCATGTACGTGATCGGCTCCTACCTGGCTGACCATGGCCGCTTGAAGAAGGACACGATCGTGACGACCGTCATGAGTAATCTGGGCTTCACCAAGGCTCTTGAGCGCCGGGGCATCAAGAATGTCCGCACCCAAGTCGGTGACCGCTACGTATCTGAAGAAATGCGGGCCAACGGCTACAGCCTGGGCGGGGAACAATCCGGCCACGTGATCATCAGCGACTACCACAACACTGGTGACGGGATGCTGACCGGGCTCCACCTGATGCTGGTCATGAAGAAGACTGGCAAGTCTTTAACTGAACTTTTGGCTGACTTCAAGGAATACCCGCAAGTTTTGGTCAACGTTCCAGTTAAGGACAAGAACAGCTGGAAGAACCACCAGGCAGTAGTTGACGCGATTGACTCCGTTGAAAAGGACATGGCTGGCAACGGCCGGGTCCTGGTCCGTCCTTCAGGTACCCAGGAGCTGCTCCGGGTTATGGCTGAAGGCCCGACCCAGGAAATCACCCAGGAATACGTTGACCGGATCGTCAAGGTCGTTACGACGGAAATGGGCGAATAAAAAAGCAAGTTAAAAAGCTGTAAAGCTGAGAAGAAGGAAAGTTCAAATTGAGCTTTCCTTTTCTTTTGGCTGATTTTTTCCTTTTTTTGCGGAAAAAATTTTGCAATAATTAAGTAAGAACAGGCTTTGGACTACATAGGAGGAAAATATGGCGATTAAAATGCTGGCCATCGACTTAGATGGCACCCTGCTAACTGACAGCAAGACGATTCTGCCCGGGACCTACAAGGCCCTGCAGGAAGCGAAAGCAGCCGGGATCAAGATTGTGCTGACTTCTGGCCGGCCCTTGTCGGGTATCAAGGGCTACGCGGAAGAATTAGGCTTAAGCGGCAGTGAAGAGTACGCGATCCTCTTCAACGGGGCGGTAGTGCAGAACTTAGACGGCCGGGTCCTGATCAGTCATGATCTGGACTTTGGCGACTTCAACACCCTCCTGCATATGCAGCGGCTCAGCGACGTCAACCTGGACTTTGAAACCCCGGACCGTTTTTACACTTTGGACAAGAGGATTTCCATCCGCCTGCAGATTGACGGGGCGGAAACCAAGAACCAGCTCTGGATTCAAGACAGAAGCGACTTCAAGAAGGACTTTACCTTTGCCAAGGCAGTCTACCAGTGCGATGACCCGGACCAGGTCGACCGCCTCTGGAACCGGCTGCCGGATTGGTTCTTCCAGTCCTACGCGGTTGTCCGCAGCTGGCCGGAAGTCGTTGAAGTCGGGTCACTGGCCGCTTCAAAGGGCTACGCGGTTAGCGAACTGGCCTCAAGACTGGGCCTGTCGAACAGTGAAGTCATGATCTTCGGTGACCAGGGCAATGACCGGTCCATGTTTGAAATCCTTGACTTCAAGCGGGTGGCCATGGGCAATGCCATCGACGAGATCAAGGACCTGGCTGACTACGTCACCGACACCAACGAGCGCGACGGGATCGCCAAGGCCCTGCGGAAATTAGTTCTATAAGCGAAGAGGACAGATCTGCGGATTTGCCTTTTTTCTTTTTCAGGAGTAAAAATGACTACGGCAGAAATTGAAGAAAAAATCACCGGAATTTTTGAGGAGGCAATCCGGCAAAAGACCGTAAATGGCATCTCTTATGCCCTGGTTGACCAGGGAAGGGGCAGCCGGCACTACCTGGGCCAGGCTGAGCCGGGGCAATTCTATGACCTGGCCTCCTTGACCAAGGTGGTGGGGACGGCCAGCGGGATTTTTAAGGAAATGGCTGCAGGGAAAATCAGCTTGAAGGACCGGGTGGGAGACTTTTTCCCGGCGGCTTGTTCAGCTGTTACAGTAAGGGACCTGCTCCTGCACACCAGCGGCCTGCCGGCGGACTTGGATGATGTCTGGCAATAACAAAGCCCGGGGGAAGTCTGGGAGGCGGTTTTAGCCACTAAGCCCCTTTATTTACCTGGCCAGGAGTCAATCTATTCCGACCTCAACTTCATTATCTTGGGCAAAATTTTAGAGCAGGTCAGCGGGCAGGACTTGAGCATCTTTTTGCGGGAGGAGATTTTTGCCCCTTTGGGGATGCGGGAGACTGGTTTCTTGCTTAAGGTCAAAAGGGACAACTTTGTCAAAACAGAAATAACTAAGGAGAGAGGGCAGGTCTGGGGGAACGTCCATGACGAAACCGCCTGGCAAATGGGCGGATTGGCCGGCCATGCCGGTCTCTTTTCCACTCTAGATGACCTGGCCCACTTCAGCTCTTTTTACCTAACGACAGCTAGTCCGCTTGTGGCTGGCCTGTTTGACTATGACTGCTTTGAACGGACCCTGGCCTGGATCCGCTGGCAAAAGGGCCGCCGCTTTCTCTGGCATAGCGGCTTTACCGGTCCGGGATTAGGCCTGGACCTTGAAAATGGGCGCGCCCTGGTCATTTTGGCCAGCTCCGTTTACCCCAAGCGGGGTAACGAGGCCTGGCTGCTGGCCCGCCGGCAGGCGGCCAATACTTTTTTCGGCGGCGGCTACCGGGAAAAAAAACAAGAATATATTGTTGACAAATGTAAACCATACTGTAAAATAGTCTTTGCAAAGGTTACAGATGTAAACGAGGAGGAAGGAAATGAACGAAGATTGCCGGATTTCAGACGCGGAATGGCAGGTTATGCGGGTCGTCTGGACCCTGGGCCAGGCAAATAGCAGCGAGATTATTGAGCAATTAGTGGCAAAATGTGCCTGGAGCCCGTCAACTGTCAAGACCCTGCTGCGGCGCTTGGAAAAGAAGGGCTTTTTACTGGTTGACCGGCAAGTTCACCGCTTCGTATACCGGGCGGCTAAAGATGAAAGCGAAGCGATGCAGGAGAGCTTGACGGCCAAGTTTGCCGCAATGTGCGATATGCACAAGGGGGAGATGCTCCTCCGGCTGCTGGATGACCTGTCTTTAAGCAGAAGCGACCTTGAAGCGATTGCCAAAAAGGCGGCCGAAAAGGCGAAGACGGCTCCGGAAAAAGTTGGTTGCAATTGTTTAAGTACTTGTGAGCATATGGAAGGTGAATGGGAATGTTAGTTAATGGATTAGTAATTTTGGCCGCGGCCGCTTTGATCGGCTTGATCATCTGGTGGTTTTTCGGCAATTTCCAAAAGAGCAGCCAGCAGGCGGACCTGGCCAATGGCCGCCAGGAAGGGCAGGTAGTCGTCAAGGGCGGCTATGAGCCGGAAGTGCTCTACTTAAAGCAGGGCGTGCCGGCAGAAGTAACTTTTAAGATGGAAGACAAGACGGCCTGCCTCAGCCATGTGGTCTTTTCTTCTTTAGGCGTTGACAAGGACCTAAGCAAGGAAAAGCTGGCCAAGATCCAGATCCCGACCGACAAGGCCGGGGAGATCGACTATGCCTGCGGCATGGGCATGTTTCATGGGAAGATCGTGGTTAGATAATGAAATTGACTAATTGGCGCCGCTTTTGGCTGTCCCTGTTTTTGGCCCTGCCCATGCTGGCCCAGATGCTGTTGATGATCTGGGGAATCATGCTGCCGGGGATTAAGACTTATTCACTGATCGCCACCAGCTTGATCATGCTAATTGGGGCAGGACCTTACATTCAAAGCGCCTGGGCAGCTTTGAAACGCCACCAGGCCAACATGAACAGCCTAATCGCCATCGGCACCAGCGTGACTTATGTCTACAGTCTTTTTGCCTACTTCACTGGCCGGCCGGTCTACTTTGAAAGCGCGGCTTTTATCTTGATTTCTGTCTTGCTAGGGGATGCCCTGGAAGAAAAAATGCATGACCGGGCAGCAGCTTCTTTGAATAAGTTACTGGAACTCCAGGCCAGTGAAGCTGAGGTCAAGCGGGGAGAAGACTTTGTTAAGCTTCCCTTGGACCAAGTCAAGGCCGGCGACGTAATCAAAGTGCGGCCGGGCGGCAAGGTGCCGGTTGACGGCCGGCTTGTATCCGGGCAAAGCAACGTCAATGAAGCCATGGTGACTGGGGAGAGCATGCCAGTCGCGAAAAAGCCCGGTGACAGGGTGATCGGGGCAACCATCAACGGCAGCGGCAGCTTTTTGATGGTGGCTGAGCAGGTCGGGGAAGAGACCATGCTGTCCCAGATCGTCCAAGTGGTCAAGCAGGCCCAGAACTCCCGGGCCCCGATCCAAAAACTGACTGATAAGGTGGCTAACTACTTCGTGCCGGCGGTATTGATCGTCAGTATCCTGGCCTTTGCTATTTGGGATGTCTTCAGTTCCGTGGGCCCGGTTAAAGCCATGCTCTACGCAGTTTCCGTCATCGTGATCGCCTGCCCGTGTGCCTTGGGTTTAGCTACCCCGACAGCCTTGATGGTGGCCAGCGGCCGCAGCGCCCGGATGGGGGTTTTGATCAAGGACGGGGAAATCCTGGAAGCAGCCGCGAAAATCAAGACTATTGTTTTTGACAAGACCGGGACGTTAACGGTCGGCCAGCCCCAGCTGGTGGACCAGGTGGGGGATAAAGCAAGCCTTAGCCTGGCGGCCAGTCTGGAAGCCAATTCAGAACACCCTTTGGCCCAGGCCATCGTGACCAGCGCTAAAGAAGGCGGCCAGCCTCTCTTGCCAGTCAGCGATTTTTCGGCTGAAGAAGGCAAGGGGGTAGAAGGCAAGGTAGCTGGTCACTTAGTTAAGGTGGGCCGGGCTGACTACGTCAGCGCCCCAGACGCTTGGCGCCAGCAGGCAGAAGGCTTGGCGGAAGCCGGCAAGACGGTGGCTTATGTCCAAAAAGATTCCGCCGTCATTGGCCTCTTGGCCCTGCAGGATGCTCCCCGCCCAGAAGCAAAGGCCGTCCTCAGCGAGCTTAAAAGCCGGGGGATCAAGACGGTCATGTTAACTGGCGACAACCAGCAGCTAGCGGAAAAAATCGGCCGCCAGCTGGGCATTGACCAGGTCGAAGCGGGACTTTTGCCCGGGGAAAAAGCTGACCGCTTGGCCAAATTGCAAGAAGCAGGGCCGGTGGCCTTTGTCGGCGACGGCATTAATGACGCTCCGGCCTTGTCACTAGCTGATGTTGGCATTGCCATGGGCAGCGGGACCGACGTGGCCAAGGAAGCCGGCGGCATCGTCTTGATGACTAGCAGCTTGACCGGGGTTTTGCGGGCGCTTGACTTGTCCAAGCAGACCTTCACGCGGATCAAGCTGAATCTTTTCTGGGCCTTGATCTACAATTTGATCGGGATTCCGGTCGCGGCTGGTCTCTTCTCCTTTATCGGAGTCAGCCTCAGCCCGGAACTGGCGGCTTTGGCCATGGCTTTCAGCTCCGTCTCAGTCTTGCTGTCATCATTAATGTTGAACTGGACTAAGATCGCCGGGGCGGGCAAAAGCTGATAGAGCAATTATGAAATAATGGAATATGGCTTTAAATAGAAGTACCAGGCTGGTGCTTCTATTTTTTGCTTTCTTTTGAAACGCTTTCTGATGTAACCTTATAATTAGTGCGTTAATTAACGATCTAGGAAGAGACAAAAAGAGGCAAATAATGGATACAGTAAAAAATTATCTCAGCGTGGCTTTTTTCGCCTTTTGGGGCGGCCTGGCCCGCTATGGCTTAACGGAAGCATTTTCCTTTTACGGGACGGTGATTGCCAACCTTTTGGGCTGCTTTCTCCTGGCCTTCCTAACCTACTTTTTCCTGAGAAAGTCCAATAGCCGGGCCTGGCTGACCACAGGCCTGGGGACGGGCTTCGTGGGAGCCTTTACGACTTTCTCCAGCTTCAACCTGGATGCCTTCAAGTTGCTGCTTGGCGGGCAAAATTTCGGAGCATTGCTTTACTTTACCGGCACGATCGCGGCTGGCTTCCTCTTTGCCTGGGCAGGCAAGCAGGCGGCCAACTTCGCCGCGGGCAAACTTTTGGAAAGGGGGTAACAAGATGATTTTTGCGGTTGGATTCGGCGCCAGCCTGGGGGCTGTAGCCCGCTATGCTTTGACCAGTTATGGCAAGAAGCACTGGATGCAGGGGACGGCCTGTCCTCGGCCGACTCTTTTGATCAATCTGACAGGGGCCTTTTTCCTGGGCCTGGCCTTTGCCTTGCGGCTGCCGGCTAGCGTCTATGCCTTCTTGGGCACCGGCGTCTTGGGCGGCTACACGACTTTTTCCACTTTGAACACGGAAATGGTCTCTTTGGCTGAAAACGGGCAAAAGCACGTCCTCAAGCACTATTTGCTGGCCAGCTATTTGGGCGGGGCGGTCCTTTTAACTTGCGGATATTATCTTGGAAGCCTGCTATGAAAAAAGCCAACTGATTCTGCGCAAGAGCCTGTGCAGCCTGGCAGCCATAATTTCCCTGGTCGCTCTTTTGAGCAGCCCTGTCACCTTTAAAATGTATGAGGTCAAGGACTATGCGTCCAGTTTGATCGACACTTTTGCCAACCAAAGCGATGGCAGCGCCATGTCGATCGCGGTCAAAGCCGCGGTAGAATCGGGCCTGAAGCAGGACCTGGTTGACCAATTGCCAGACAAGGTGGAGATTAGCGAGTCCCATCTCAGCCTCTACCGGCTAGTTTCCCGCTACCGGCAAAACAAGCGCCTGCAGTCCAGTAATTTAAAGCTGCCAGCCAAGAACAAGGTCCAGCTTTTTATGGATGACTTGATCCTCTATTTGGTCAACAGTGAACTGAATGTGCATGAAGGGGAATTGCAGCAGATTACGCAAATCTACCAGCTCTCCTTGTGGATCATCTGCGTCCTTTACTTGCTGGGCGTGGCCCTGCTCCTCTTCAACCGTTACTGGTCCTGGCTGCCTTTTGTGCTGGGAGCGGCCAGTGCCTCTGGCTTCCAGGTCTTTATTACCCATACCTTGACGGAAATGGTCCAAAAGGAAGTTTACTCCAAGATGCTGTTCACCTATTCTTGGGGCAGCTGGGCCGGCTTTCTTCTGGCCCTGGCCGGCCACCTTTTTTATCTGGATGTTTGCCGTTATCGGGCGAAGGGAAAGGCTAATAAGAATAAAGAAGCGAATAATAATTTAAAAAAACTATGTTAAGAGTCAAGGCGGCTAGTCTTGGCTTTTTTCATGCTGGGAAAAGCCCCGCATTTTCTTATAGGAAAGCAGTCCCAGCTTGCTATGTTATAATAACTTTTATATAATATAAAGAATGGGTTAACACCAACTTGCTTCTGCAGATTTAAATACAAATTAATTTATGCTTAAAGCTTTTTGCCAGTTTGCAGGCAAACCGTGTTTATTAGGAGTGGTTTTATGAAAAAAAGAGCGAAGCAGGCTGAGCTGGCTAAAATCGCGCAGAGTGAAGCACCAATAGCACTTTATCAATCAAAAAAATAAGCAGATTAAAGCCATAGCCGTGTCTAAGGGCCTGTGTGAGCTCTATGGCTTGCCGGCGGCTGAGCTTAAACAGCTGCTGGACCAGGACCTGTTTGCGGGTCTGCATCCTGACGACCAGCCAGGCGTGCAAGCCGACCTGACCTCTTTCATGAACCGGGACAGCAGCGACTACCAGAGCATCTACCGGATCAAGCTGCTCGGCCAGGAAGACTATGTTTTGTTGCAGGCCCAGGGGAAGTTCTTAGAAGATACAGACTGCTTCCTGGTCTGGTATACGGAAATGTCGACCAGCCGCCTGCAGGACCTGACCACGGCTGACCGGCGGACCAAGCATCTGCTTGACGATCTGACCGGCCTGCCTAAAGCAGTCTACTTTTACGAACTGGCCGAGCTTGGCTGCCGGAAGCTTTTTAAAGCGGGCAAGCAGCCAGTCGTGCTGGCCTTCAACTTGATCGGCTTCAGTCACTTCAACCACCGCTATTCCTATATTGAAGGCAACCGTCTCCTGGTGGCCTTCGCTGACCTGCTCAAGCGGCATTTTAGCGGCGATGCCTGCGGCCACTTCACGAAAGACAACTTTTATGCTTATACGGCCCATGACCATTTAGAAGAGCGGCTGAAAGATATCCTCAAAGAGAGCCGGCAGATCAATGAAGGCCGCAACCTGGCCATCCGTATCGGGGTTTATGACGCCGGCAGCCTGGTTTATGAAGACATCAAGAAGGTCTGCGAATACGCCATGGTGGCCTGCATAACAACCGCAAGGACGTTAAGGCCCACATCACTTACTTCACCAGCCAGAACCGGCAGAGTCTGGAACTAGAAAACTACATTTTATCTAATTTTGACCAGGCTTTAAGAGAGGACTGGATCGAGCCCTTCTACCAGCCAATTGTCCGCATTTTGAACGGGCAGAGCGGGAACTGGGAGGCCCTGGCCCGCTGGCGCAAGCCAGATAACGGGATGCTGCTGGATGAGCAGTTTATCCCGACTTTGGACCGGGCCGGGATCCTTTACCGGCTGGACTTGTACATGGCTGACAAGGTGATTGCCGATCTTAAGAAAATGCAGGAGAGGGGCCATCTTGAGCTTGCTGTCTCCCTCAACCTTTTCAGCTCAGAATTTGACCAGTGCAATATGGCTGAAGAGATTACCAGGAAGGTAAAAGAGAGCGGATTGTCGCCGGAATTCATCGTAATTGAAATCAGCAACGACACCCGTAATCTCAATGCCGACAAGATTCGGGAACAGATCGCCCTCTTTAAGCAAAACGGCTTCTACGTCTGGGTGGACAATTTTGGCGAAGGATATTCCTCAATTGGTTTGATCAAGGACAATGCCCCGGTTTCCTGCATTAAGTTTGATGCCAGCTTTATCAAGGGCCCTGACCAAAAGCGGTCAAGGATTGTCTTGAAGAAGATGGTGGAACTGGCGGAAGAATTGGGAATCGACACAATCGTTGAAGGGGTAGAAAATGCCGATCAGCTTCTGGCCCTAAGGGAAATTGGCTGCGCGGCGGCTCAAGGCTACTACTTCGGCCAGCCCCTGCCTTTTGACCAAGCCTGGAAGAAGTGGGTCGAGGGTCCGGAAGCCAACCTGGAGCGTTTCAGCGAGTCAGACTACTACAACAGCGTGGGGATGATGAGCCTGGAGCGGCCCCACTTCATCCAGGAAACTTACAACAATGACTTGACCTTTGACGATCCAGACCCGGTTTTGGACCGCTACTTCAAGGGGACCCCGCTGGGCTTTTTGGAATACAGGGACGGCAAGCTTTACTACTTGCGGGGAAACGAGGGCTATACCCGCTACTTGCTCAGTTGCGGGTCGGTCACCAAAGAATAGATGGAAGAGCATCCCTTCGCCACTGAGCTCAAATCCGTCGGCTCGCAGTTTTTCAAGGACCTCAAGGGCTGGATTGCTGAAGAATACTGGAAGAATCACAAGACTGAGCGGCATTACAATGTTCACAGCTATCCCAACAACCTTTACGTTGAGGGCTACTAGCGGATCCTGTCCTACAATCCGCATACGGATACCTATGCCTTGATTGACGTTTTGACTTCCTACAATGCCAACCAAGTTTACCAGGACCAGGCGCGGGATGACCTGGGGGTAACAGTCAATTTCAGCTTGAGCGCTGACCAGTACCGGGATATGCCCCTGCCATTTATCATCGCGGCTTCGGTTTACCAGGAAAAGCGGGTGGTCGACATGCAGTACATCTATGTCAACCAGGCTTATGCCGAAATCATGGGACAGAGCCGGGAGAAGCTGCTGGGTAACAGAATGTCGAGTTTTGTCAAGCACAAGCTGGCTTTCTGGATTAAGGTGATTTGTGGCGCTAGTGACGGCGAAATCCGTCAAGGCACCTTCCATTCAAGGACGGGCCACTGGTATGAATACATTACGGCCAAGTCTTCAGTGCCGGAGACCCGGTCTTTAGTCATGATCAACATTGACGAGCAAAAGAGAAGCCAACATGAGATCAAGCAGAAACAGAATACGACCAATGAAATTGTCCAGCTGTCAGAAATCCTGAACGTTGAAAATGACAAACTGGAAACAGCGATCAGCAAGGGCCTGGCCAAGCTCGGCACAGACCTTGCTGCTGACCGGGTCGTCGTGATGGAAGGCGAGGGGCAGTATGCTAAAAATACTTACAGCTGGACCCTGCCTGGTTTAGCATCGGCACAAAAGGAGCAGCAAAAGATCGACGTAGCCACGCTAAAAGTCAAGCTGCAGGAGCAGCTGAACCATGACAGCCTCTTTTTGACTGATCAAGCCGAAATTGCCAAGCGCTTCCCGGAAATTGTCGCTACTTATGACTCTGACTACCAACTGGAAAATGTCCTTTTGGCTCCATTTTATGAAAGTGGCCGGGTTAGCGGGGCAGTTGTAGTTGAAGACCTTGATGCCAGCTTAAATATGGACTTTAACAATTTGATTGAACTGACAGCTGACTTCGTTGGTGCTAAAGTAATGGGCCGGAAATTGGAGCAGCAAAGAGATACTGACGTCTTGACCAAGCTGAATGATCGCCACCCTTACCTGGCCAAGCTGAACTACTATAAGAAAGTCAAAGCCTCAAGGTCAATTGGCGTGGCCTTCATGGACTTGAATGGCTTAAAAGAGGCCAATGATGAATTGGGCCATGATGCCGGAGATGAACTCTTGATTTCTGCCGGCCAGATCATCAGCCAGGCTTTTGGCCGCGACTATGTCTACCGGGTCGGTGGGGATGAGTTCGTGGTTTTGGATGACCAGAGCAGCCGGACGGAATTCGAAAGTCATTGTGCTGCGTTTGAGAAAGCTTTAACCCAGCCGGCCAGCCCATCGATCTTAATTGGGGCTGAATGGTGCCCGGACTCCCATTATTTGCGGGAAGCAGTTGAGAGAGCCGACCGGAAGATGCGGCGGCAGAAAAACGACTTTTACAAATCGCACAAGCGCTACCGTTGATGCTGGAGCAAAGAGGAAGAGGTTTAGTGATGAAAAAAATAACCGTACCATGTTTTATTCGCTGATCATGGCCTTAATTATGCTTGCTTTAGGCATCGTCAGCTTCTGGGGCCGGAACCAGGACAGCTTTGACGGGATTTACGCGACTGCTCCTTTGACCAGCGCGAAAACAAACTGGACTGACAAGAAGGGCAAGGCAGTTGATTTAACAGAGCTGAAGCCGGATAAACAGGGAACGCTGACGATCTACTACCGCCTGCCTGAGAAATTGAACAGGCAGGACAAGCTCATCTTTTTCTCCAGATATATCAAGCAGATTGACGCCTATATCGGGAAAAAGAAAATTTACCACAGCCATCCGGAAATCGCGGCTGACTGGCTGAGCCTGACTGAGCACTATGAGAGTTTTACCAACAGCATTGAGCTGCCGGCAAAACGGTCCGCTTAACCTTGAAGGGCTTTTACCAGCTGGCTGGCAAGCTTACCGCCTGCAGCCTGGGCAATGACGGGGCCTTTCTGGCCAACTATGTCAGAAAGAATGCCCTCCGGGTAGGGCTGGGCATCGTTTCTGTCGTCATGGGCTTGACCCTGCTGCTTTTTTCCATCTTCGCGCCTTTGACCAGCGCGTTCAAGCGCAGCCTGGGTTACTACTCAGTGGCCTTGATTTTATTTGCCGTCTTGCAGATGCAGGAAGAGATGCAGCTGACGGTGCTTTTTGGCCACTACCATGTCTGGCGCCTGTTTACCTACCCGGTCATGGTGCTCTTGCCATTTTTACTGATTATGACCATCAACGCGCAGCTGGACCAAGCTTTAAATGAGCGGAAATCCGAGCTCTACGCGGCTGCTAAGCAAGATTAAGAAGGAGACGCCAAGGCGTCTCTTTTTTCTTTAAAAAAGCTGCATGCTATAATATTTCTTACACTTTAGGGAAAGGTGATAAAAATGCAAAAAATTTTGTTTTTATGCCATGGCAACATTTGCCGGTCGCCAATGGCCGAATTCATCATGAAGCAGCTCCTGGCTGAAGCCGGCAAGGCTGACCAGGTCGAAGTTGCTTCCGCGGCCGTGACCGGCGATGAAATCATTGGTGGAGTTGGCAATCCAATGGACCCCCGGGCCCAGCGGGAACTGGCCAAAAACGGGGTGCCATTTAGCCAGCACCGGGCCCGGCTTTTGACCCGGGAAGACTATGACAAGTATGACTACTTGATCGCCATGGACAGTGAAAACTTCATGGCCATGAACCAGATCTGCGGGGGTGACCCGGAAAGAAAGCAGTACAAGCTGCTCCAATTTGCTGGTAGCTATGCTGACATTGATGATCCCTGGTATACAAATGACTTTGACCTGGCCTTCCAAGAGATCAGCCGGGGCTGCCGGGGCCTGTTAGGCCAGCTTTAGGCGAGGAATTTACGAAAACGCTTAAAGCGAGTACAATTAAGGGTGTAAGTTGTAAGAAAATTTTTAATTGTTTATGGCAATAATAAGGATTTGTTTATGAAAAAGTATGTCATTTTGCACCCGACCGGCCGGATCTCCCGCCTGGTCATCAAGCACTTGCTGGCTGACCCCCAGTTCAGCGATGTGGAGCTGGAGCTTTTGACCCAGCGGCCTGAACTTTTGGTCGACCTGGCAAAGGGCGACCGGATCAAGCTGACTGAAGGAGCGGCAACTGACCTGGACTACACCTTGATCAGAATGCCTGCCTTGACCGACTGGCCAGATGTCAAGTACTCCTTGACTGGCCGCTATGACGAGTTCGTCGGCACCTCTGTTTCAAGAGCCAGCGTGGCTGACCTAGTCTTAAAGATCATGGCTGATCCAAGCCGGTACTCCCGGGCCAGCGTTGGCATCTCCCAGCCGGAAACGGCGGGTTACGTCCGGCCAGTTTACTAAAATAAGTCAGAGAAAAAGGCCTGCACGCGCGTGCAGGCCTTTTTGGTTTAAAAAATATTGTATATTGTTTTTTAGCCGTTATTGCCTTTACTTGCTGGCTTTTGCCCCTTTTGGCAGGCGGCGGCCAATCAGCCAGACAGCCAAGAGGGCAATGACTGATTCAATGACAATGTAGAGGGCACGCAGCTTGATAGTGGTCCCGCCCAGCCAGACATTGAAGACGATTGAGCCCAAAACCAGGGCACTCATCCAGGTCCATTGCTGCTTGTCAAAGGCCAGGCCGTATTCTTCTTCTCTTCTGCGGATGCCTGGGAAGATCCCGCCCAGGCCGATCAAGACCAGGCAGGCCACGATGTTGATGGAGAGTTCATACCACCAAACCCAGCTGCCTTCCTTGACGTCTTGCGGCATGAAGCCTAAGACCGTAGCGACAGCCGTGACGGCCAGGAGGGCAAAGCCGACCCACCAGGCGAAGGTGTCGTTTTTAATGTAGCGGTAAACTGACGGGTACTTGGAGGAGTTTTTGCCTCGGACCTTCATGAAGGAGTAGAAAATCCAGCAGGTAACGGCAGGAGAGATGATCCCGTTCAAGTTCAAAAGCCAGTTGAAGATGTCGTTCATGTCTGGCAGGAAAATCCCCAGAACCATGATGAAGCCGCTCAAAAAGACAGTCAGAATGTAGCCGTTGATCGGCAGGCCGTCCTTGTTGGTCTTCTTGAGGAACTTCGGCATGTACTTGTCCCCGGTGTCGGAGATCAGCATTCTGGTCATGGCGTCCAAAAGGACGGACAAGAGGGCCGCATTGTAGAAGAAGGAGGCCCAGGCGTAGATGTAGACAAAGAGCTTGCCCACGCCGAATTGCTTGCCCATGGCGCCGAAGACGTAGTATTCACCGTTCATCTTCAAGTCGTTTGGCATGTGGTTGGCATCGATGTAGATGCCCAGGGCAATTGAGCCGAAGATGGTCAAAAAGCAGGTCATGAGGGCCAGGGCGATCATGGCCTTAGGGAATTCCCGCTTGGGGTCCTTCATCCGGGTCACGTATGGGGCGACCAGCTCAGATCCGTTGACGGCATAGATCAGCATTCCCACGGTTGAGAAGTATTTAAGGTCAAACTTGGGGATGATGGTCTTCCAGGTAAATGGCGTCGCGGTCTTGCCGCCGGACTTGGCCAGGCCGGCAAAGGCCAGAAGCACGAAGAGGATGGTCATGATGAATATGGCCCAGCCCCCGATGTTGGACAAGACTTCCATTGATTTGGAGAATTTGTGTTCCAGCAGGGTCAAAAGGATAAAAATGACAAAGGTGATGGCCGTAAACATGGCCGTTGAGAGGAATTTCGGGTCCTCAAACTCGTCAGTTCCAGTCAACCCCCAGCCAACGTCAACCAAGAGGCAGTTGGCCGTGTCGACCACGTAAGGAATCGAAGCGGCCCAGTAGGTCCAGGCCGTGAAGTAGCCTAAAAATTCACCGTCAGTGGCTCTGACCCAAGAGGAGAGTCCGCCACCTTCATGGTTGAAAACTGAACCTAAGTGGCCAACGATCAAAGCGTAAGGAACCACGTAAAGGAACATCATCAAAACCCAGGAGGTGATGACCGCAATCCCTTGGTTTTGGAAGTTGTACATGATGTCTTCCAGCCCGATGACCGTGACAAAGGCCATCATGGCTAAAGTCTGCCAGGAAATATAATTTCCCTTTTTATCTAATTCGTCCATAAAAAATCCTTCCTGTTAAACAAAGTGTACTAACAAGAAGCCAGGCCCGGGGACTTGTTTAGCGATACCATTTCCATCTCCAATCTAGCAATTATTAAGCTTTTTTAAAGCAAAATCTATTTTACAGTGCTTATAAGGGGAAAAACAGCCTTTTAACCATAATAGCGGTTCCTGGGCGAATATTTTCTGAGCAGAAGATTTCCTATCTGTTTCCTTTGGAGTACAATGAAAGACAAGTTAAATTTGACGAGGTGATTTTATGAAGGAAAAATTAGACAGCGCAATTTTCGCGGGCGGCTGCTTCTGGTGTATGGTGGCCCCTTTTGATACTTTGCCAGGTATTGAGAGCGTCACGGCGGGCTACACGGGCGGGCACGTGCCTAATCCGACTTATGAACAAGTTTGCAGCCATACGACTGGCCACACGGAGGCGGTCAAGATCGTCTTTGACCCGGATCTCATGTCTTATGAGGACTTGCTAGGCTACTACTGGCAGGTAACGGACCCGACTGACGCCAGCGGCCAGTTCCAGGACCGGGGGGACAACTACCGGCCGGTGATTTTTTACAATTCACCAGAGCAGAAGGAAGCAGCGGAAAAGTCCAAGCAGGAACTGGCGGAAAGCGGCCGCTTTGATGATCCGATCGTGACCAAGATTGAACCGGCAGCGCCTTTTTACGAGGCTGAAGACTACCACCAGCAGTTCTATTTAAAGCATCCAGACCGCTACGCGGCTGAAGAAGCCGGCGGACGGGCCCAGTTTATCAAGGAGCACTGGGGCAAGTAGGCATAAGGGGGATGCATGAAGAAAGGTTTAGTGATGGAGGGCGGCGCCATGCGGGGCCTGTACACGGCCGGGGTGACGGACGTCCTCATGAAATATGGAATCAAGTTTGACGGGGCAGTTGGCGTTTCAGCCGGAGTGACCTTTGGCTGCAACTACAAGTCTCTGCAGCCCGGGAGGGTTTTACGCTATAACCTCCGCTATGGCAGCCGGCCCCAGTTTAAGAGCTGGCGGTCCTGGATTAAAACCGGGGATCTCTACGGGGCGGACTTTTGCTACTATACTTTGCCGGAAGTACTGGATCCTTTTGACACGGCAGCCTTTGCCAGAAACCCCATGGACTTTTGGTGCGTGGCAACGGATGTGGAAACGGCCCAGCCGGCCTACCACAAATTGACCACCGGCAAGGGGCGGGACGTGGCCTGGATCCGGGCTTCGGCCTCGATTCCCGTTTTCGCCCGGCCGGTTAAAATCGGGGGCCACGCTTACTGGGACGGGGGCGTCAGCGACTCCATCCCGGTCCGTTTTCTTTTGGACAAGGACTATGACAAGGCAGTGGTCATTTTGACCCAGCCGGCTGGCTATCAAAAAGAGCCATCGCGTTTGCAACCAGTCATTGACCGGGTCTTGAAAAAGTACCCGGCTGTCGTGGCGCGCCTAAGGCAGCGGCATTTGGAATATAATGCCTGCCTGGCTTATATTGCTAAAGAGGAAGCAGCCGGCCACCTCTTTGTCTTCCGGCCCAGCCAGGGGATCGACGTCAGCGCCATGGAAAAGGATCCCAACCGCCTTAAGGCGGTCTACCAAGTCGGCGTGAGGGATGCCAAGCGGCAATTGGCGGCCTTGAAGGAATTTTTACAAGATTAAGCACAAAAAACGGTGACTGAGCTAAGGCTCAACCCCCGTTTTAATTTGCACTTGTTAAGTGTTTTTTCTTTATTCTCTTTTTCTTTTAGTCGCCGAACTTAGCCAGCTTCTGGTAGTTGTCTAGCATCCAGTCAGCATAGCTGACCTTGTTTGGCATGGTTTCGCGGATTTCCACGATCGGGATGCCCTGCTTCTTGGCCTTCTTGACGAAGTACTTGACCGTGTCGGAGCTGGCCTGGGTGTTGTTGACGAAGAAGGGAATCTGCTTTTTCTTGATGGCTTCATTCATCTGGGCGATCACGGCCGCGCTCGGGTCGGTTTCCTTTTCAGTAGCTTCTTCAAAGTTCTTGTTGCCGATCTTGAAACCGGTCCGCTCTAAAGCGTAGTCAAAAACCGGCTCGCTGACGAAGACCGGCTTGGCCTTGCTGCCCTTGATTCCGTCAGCAACTTTTTCGATCTTGGCGATCTTCTGCAAATACTTCTTGCCTTGGGCCTGGTAGTAGCTGGCGTGCTTTTTGTCAAGCTTGCTGAGCTTCTTGACCAGGTAGGCGACGTACTTTTTCGGCATATTTAAGTTGTACCAAATGTGGGGGTTGGCTCTGGAATCCAGCTGCATCAAGTCTTCCCCAACCTTGACAGCCTTCTTGCCATTAGAGGCGGCCAGGTTGCCCATCCAGCTGTCATAGCCCATCCCGTTGGCAACGATGATGTCGGCGTCAGCCACCGTCTTGGCCGCATTGGTCGTCGGCTCATAGTCATGGGGGTTAGAGTTGCCGTTAGCGATCAAGGCGGTAGCCTTACCATACTTGCCGACGATATTTTGCGCGATGTCGGCGTAAATGTTGGTCGAAGTTACAATCTTGATCTGGCTCTTGGAAGTTTGTTCATCCTTGGCGCAGCCGGCTAAAAATAGAGTGGCCAAAAGTAAAATTGGCCAGATGATTAACTGTCTGTGTGTTTTCTTCATGAATCTTTTCCTTTCAAGATCTGCAGCTTGCCTGCAAATCATATTAGAATACGGGAAAAATAGCCAAAAGTCAATAAGAATGACGAAAATAATGGTAAAATAAACGACATGAATAATTTTAAGTTTAGCAAAAGAGAAAAGATTTACCTCCTCCTGGCCCTGGCTGTCTTGGTCATGCTCTTCATCTCAAGCTCGATGACCTACCATGAGCAGAAGATGAAGGCTGGTTTTATCCATACCTACCTGGGCTGGCTGGAAGATTTGATCCACCGGCTCAATATCTATTACGGCGGGGTCTGGCACAATGTCAAGACTGACGGGGCAGCCGGCTTCACCCAGTTCGTGGTCCGGAAGCTGGCCCACTTTACCAGCTACTTCTTCTATGGCCTCTTTGCCTATCTGGGCCTAAGAAGGGTTTTCGTTATCAAATGGACCGGCCCCTTCTTTGTCTGGTCCAGCGCCTTTGCCTTCGCGGCCATGGATGAGTTCCACCAGTTCCTAACCGGGGACCGGACCCCCAGCGTGCATGACGTGATGCTGGATGCCAGCGGGGCTTTGCTGGCCATTGTTTTGGCGGTGATTTTTTATCAAGTCAAGCAGGGCAGGGAGCAAAAAAGTCGGCCATTTAGGGGCTGAAACCGTTGAATTTCTGCCCTACCTGAGTTATTATAAAAAAGCTGATTATATTAATTACAGAAAGAAGGATCCTAAAATGTCAGGACATTCAAAATGGCACAATATTCAAGGCCGCAAGAATGCGCAAGACGCTAAGAGAGGGAAGGTTTTCCAAAAGCTCTCCCGTGAAATTTACATGGCTGCAAAGAGTGGTGGTCCTGACCCTTTAGGTAATCCACGCTTGCGTTTGGCCGTGGACAAGGCACGGGCTGCCAACATGCCAAAGGACAACATCCAACGGGCCATCAAGAAGGCTGAAGGCAACTCAGACGAACACTACGATGAAGTAACTTACGAAGGTTACGCACCGGGTGGTGTTGCCATCCTTGTTGAAGCCTTGACTGACAACAAGAACCGGACTGCCTCATCCGTACGCGTGGCCTTCACCCGCAACGGCGGCAGCCTTGGTGCTACTGGGTCAGTTGCCTACATGTTCGACCGCAAGGGCTACATTGTAATCGACCGGTCAACTACTGACGCGGATGAAGACCAAATGCTGATGGACGTCATGGAAGCCGGCGGCGACGACCTGCAAACCAGCGACGACGCTTACGAAATCTACACTGACGCCAAGAGCTTCACTGCTGTCCGCGATGCTTTGGAAAAGGCCGGCTACCAGCTGGCAGTTTCTGAACTGACTATGGTGCCGCAAAACACCACTCCAGTTCCAGCAGACAAGAAGGAACAATTCGAAAAGCTGGTTGACGCTTTGGAAGACGACGATGACGTTTCCAACGTTTACACCGCTGCAGCTGACGAAGAAGAATAATTAAGCTGTAAATAAGCTATACAAAACGCGACTTTCTGAGGAAAGCCGCGTTTTTTTATGCTTTTTTACGATTTTTGGGAAAATTTTGCCTTCTCAGAAAAAAATCGCCACTTTTGGCGTACTAGTAAGTGGAGGAGGAAAAAAGAAAGGAGGACCTTGTGGAAGTTGTAGACAAAGCCCGGCAAATGCTGGAAGAAGCAGTTAGGATCCGGGCCAGTGACATCTTTTTCCTGCCGAAAAAGGGCGGCTATAAACTTCGTCTGCGGGCCGGGGATCTGGAGGAAAGGCCGTCCCTGACCCGGGAGGCGGGAAATGAACTGATCAACTGGTTTAAGTACCAAGCCGAAATGGATATCGCAGAACACCGCCGCCCCCAGGTCGGCAGCATGGCTGTCAATTTGGCGGGGCAGGACTACTGGCTCCGCCTCTCCAGCGTGGGTGATTACCGGGGGGAGGACTCATTGGTCATCCGGATCATCTATGCTTTGGGGGAGAGCCGGTACTTTTTCCCGGACCAGTTCAGGGACCTGGTGGACCTTTGCTGGCTGCGGGGGATGATCGTGACCAGCGGGCCGACGGGGTCGGGTAAGACCACGACTATGTATGAACTGGCCAGAAAGCTCAGCCAGACGAAAATGGTGATGACGATTGAAGACCCGGTGGAAGTGTATGAGGAGAGCTTTTTTCAAGCCCAGGTCAATGCCGGGGCCAGGATCAGCTATGCCAGCCTTTTAAAGGCGGCTCTTCGTCACCGGCCGGATGTCTTGATCATCGGTGAAATCCGTGATGAAGAGACGGCCCATTTAGCGGTTGACGCGGCATTAAGCGGCCACCTGGTTTTAGCCACAGTGCATGCCAAAAGTACCTACCAAACCATTTCCCGCCTGGAGAGCCTGGGGGTTAAAAATAATGAACTGGTCAACTGCTTGACGGCGGTTTCCTACCAGCGCCTGCTGCCAGGGAAAAAGGGGCCAGCCTGCCTGCTGGACTTGGCCAGCCGGGAGGACTTGCTGGCGGCTCTGGGGCAATCCGTCAGAGGAAATTTCGCGGCTTGGGAGGAAAACTTAAGCAGGCTGGTGGAGAAAGGAGAGATAAGCGCGGATGTGGCAAGGCAATATAAAGGCGGCTAAGCTGAAGCAGAGTGAGCAGGTGGAGCTTTTGGCCTTTTTGGCCAACTGTTTAAAAAACGGCTTTTCCTTGACCAAGAGCTTGCAGCTCTTGCCCCTGCTTTGGCCCCAGCGGAAAAAAGCAGCTGGCCCGGCTGGATGAAAAAATGCGGCAGGGAGAAGAACTGGGTCAGCTTTTGGCGGGCCTGGGCTTTAATAAGACGACGGTGACTCAGCTGGACATGGCACTTAGCCAAGGGCGGCTGGATGAATCCCTGGCCCAGCTGGCCCTTTTGGGGCGGATGAAGAATGAACAGGTCAAGAAGCTGGAGGGGGAACTGGCCTACCCGGTCGTTTTGGCAGGGATGATGACCTTGATTTTGATCTTTATGCAGAACTTTTTGTCGGTAGAATTTGCTGGCAGTTCCGCTAAGCAGGGGGACCTGATCTTGCTGATTTTAGTCTTTTTGCTGGTTTTGGTCATCATGTTAGTCGTTATCGCGGCAGCTTACATGAAGAAGCAGGACTACCAGTCTTTTAAAAAGCTCCTGGTCTGGCCGGTTTTCGGGCCAGTGGTGGCCTTGTATGGCCAGTATTTGATCTCTTATGACCTGGGCATGCTTTTGGCCAGCGGCTTTTCCCTGCAGCAGATGTGTGACTTTGCCTGCCGGCAGGCGCCGGGGTCACTGCAAGAAGAAGTGGGCCGTCGGACAAGATACGCGATCCTACGGGGCAAGAAAGTGGAAGAGGTTATTCAGAAGGAGCCATTTTTGAGCCAGGACCTCTTGATGCTGCTGCAGGCGGGCAGTGAACGGGAGGAACTGAGCCGGCAGTGCCTGCTTTTGTCCCGGCTTTTGTTCAACCGCCTGCGCCAGAAGCTGTCCAAGCTAATTGTCAACGTGCAGCCGGTCTGCTTTATCTTGATCGGCCTGTGCATTATTGGAATGTATTTAAAGCTGCTTTTGCCGATTTACGACAGCATGCAGCAGCTTTAGATTTGCGGAGGAAAAAAGGAAATGAAGCATTTAAGACGGTTCTGGCCAAAGCGCCAGCGAGCTTTTACTTTAATTGAAATGTTGATCGTGGTGGCAATTATCGCGACTTTGGTTCTTTTGATCTCGCCAAATTTGCTGGCCCAAAAGGACCATGCCGACAAGCGGACTAATGATGCTTTTACCACGACCATTCAGACCCAGGTGGAGCTATATGAAGAAAATACGGGCAAGAAGCCGGCCTCTTTCCAGGAAATGGTGGATGCCCACTACTTGACGCAAAAGCAGGAGAAGCAGGCTGAGGATAAGAAGCTGGCGATCGGCGACTTCGCTAAGGGCGGAGAATGAGGCAGAAGGCCTTCAGCCTGCTGGAGACGGTGATAGCCTTGGCTATCGCGGGGATGCTGTTGGGCATCGGGGAGATGAGCTTTCAAGGCTTTGAGGACAAGATCAATTTTGACCGCTTCTGCCGGCAGGCGGTAGGACTTTTTCAAGAGAAAATCAGAAGTGCCGCCATTACGGGAAAAAGGGTCGTGATCTACAACCAAAGCAGCCAGGGCAAGCTGGAAGTCATTCAAGACGGCCAGCATGAAAGCCTTAAGATTCCAGATGGAGTTACGGTTTATACCAACTTTAACAATACATCAGGCTGGACAATCAGCAGCGACGGAACCACCAGCCAGGCCTTCACGCTGAGAATCATAAAAAATGATCAGGGGAAAAAAGAGTATGAGAAAGCATATACCTTTTTGCTGTCGTGGGGGAAGATCAATGAAAAGTAAACAGGAAGGCTTTTTGGCCCTGGAGGCGGTAGTCGCTTTGGCCATCGTCTGTATTGCACTAACCGCCATGGTGACCTGCCTCAGCGGGCTAAAGAAACTAGAGCAAGAGTCAAGCCAGCGGGCCAACCAGGCTCTGGCCTACCGGATGCTGAAGGAGTGCCCGGTCAAGCGGGTCAAGGTCAGGGACCATGAGTATGTCTTGACCGGCAAAGGAGACCTGTATGATGAAACCCAGCAGAAGATTTGCCAGAAGTAAGGCTTTCAGCTTGCTGGAGACCATGGTCGCCCTCTTGGTGACGGTGATTTGCCTGTCTCTTTTGTCCTCTAGCCTTAAGCTGTTTACCCTCTTTGAAAAAGACCGACACGATCCTAATGAACTGGTCTTCTCTTATGTCCAGTTCGCCAAGTTTTTGAAAAAGGACAGCCAGCGGACCTATATTGATCTGGAGAATTCCAATCCTTTGAAGATCATGTTTATCAAAGAAGAGAAAAAGAAAGACAAGAAGGGGGAAGAGAAGATAGACAAAGCTGGCTACGTTCTGGAAATGGACAATGGTGGAAATAATCTTCGGGTCAGAAGATCCGGACCAGACGGCGGCAACATGACCCTGCTGCCAATCTGGGGGGCAACGTTCGCGGCCAGGGATGGCTTGATGGAGGTCCATATCAATGAAAAGGGGAAAAGGTCAATTTTGTATTTTAAAGTCGACAAGGCACCGGAAAAAGAAAAGGAGGCTGAGAAAAAGACTGAAGATCAGAAAACAGACCAGGCTAAACCAGCAAAGGGGGAGCGCCCTGCTGACCAGCGTGCTGCTGCTAGCCACGACAATTCTGCTGATTGACAGTTACCTGGATGCTTATCAGCATGTTATTAAGATCAACCAGCTGCTGGCAAATTACCTCTGGGGCGGGTGAAATTCCTTGCACCCTTCCTTGTAAATCATTAGAATTGGTATGTATTGCAAAGAAGGGTGGACTAAGTCATGAATAGAATTGAAGAACTGTTTGGGCAGACTCTGGAAGCAGTCGAATGCCTGCAAGAAGCCTTGAACGTGTCCCTGGCTGATGCCTTGGTGGAAACTTTTGACAACCTGGAAAGCGGGGAAATCCGGGTGGAAATGGGAGCCCCGGACCAAAAGACGGTGGCTGAGCTTGAAGAACGCTACGCGGCTTTAGACTACAAGAACTGGTCCAAGGCCCAGAAAGAGCAGGTCTATGGCCTCCTGGTCCTTAAGGCCGTCAACGATGACGGCCGGGATGCCAACCAGATGCCGACTCCGCCGCTTTTAGCCACGGTCTTGACCCTGTTTATGGACAAGCTCCTGCCTAAGAGAAAGCAAGTCCTGCTGGACCCGGCAGTGGGAAGCGGCAACCTGCTCTTTTCTGTTGACCAGCAGCTGGCTGCCCAGAATCATTCAGAAGACCGCTTTGACCTGGTTGGCCTGGATAATGATGAAGAAATGCTCAACTTGGCCGACGTGGCCGCCCACTTGGCGGGGTTAAAGGCCGACTTCTACTGCCAGGATGCCTTGACCGGCTGGCCTGTCAAGCCAGACGTAGTGGTCAGCGACCTGCCGATCGGCTTTTACGCTAACGACGACAATGCCAAGAACTTTGACCTCCGGACCAAGGAGGGGCACGCCTACGCGCACGTCCTCTTCGTTGAGCAGATCGTCAAGAACCTGGCTGAAGACGGCTTTGCCTTCCTTTTGCTCCCGCAGAACATGCTGACTGGTACGGTTGGGGCTGACTTTATGCCCTGGCTGGCCAGCAAGGTCTACCTGCAGGCGATCGTGCAATTGCCAAGCAGCTTATTCCAAAGCAAGATAAGTCAAAAAAGTATCCTTATCTTCCAAAACCACGGCCAAAGCAAGCCGCCGAAGGAAGTTTTGCTGACAAAGCTTGAAAATCTGAAGAAGGAAGAATCTTTGGTAGCCCTTAATATTAAACTGAACGAGTGGTATACTAAGGAAGATAATTGAGTTTGTGAAGTGTGTGTAAAAGGAGTTTTTTAATAATGGACAAGATTTTAGCAATCAACTCTGGTTCATCTTCATTTAAGTATAAGCTGTTCTCATTAGCTGATGAGAGTGTCTTAGCTTCCGGGCTGGGCGACCGTATTGGTATCGATGGTTCAACCTTTTCAATGAAGTTGGCTGATGGGACCAAGCATGAAGTTGAAGTTGACTTGCCAAATCAGGAAGTAGCCGTGCAAACCCTGCTTGACTGGCTGAAAGAATATGGCGTTATTGCAGACCTCAAGGAAATTGTCGGCGTTGGCCACCGGATCGTGAACGGCGGGGAATTGTTCCCAGACTCAGCAATCATCGACAAGGACAACATCCACAAGGTTTTTGACTTGACTAACTACGCTCCTCTGCACAACCCGGCAGAAGGCCGCGAAATTCAAGCCTTCATGAACATCCTGCCGGACGTGCCGCAAGTCGGCGTCTTTGACACTTCCTTCCACCAGTCAATGGATGAAGTACACTACATCTACTCCTTGCCATACGAATATTACGAGAAGTACAAGGCCCGCAAGTACGGCGCCCACGGCACTTCTGTCCGCTACGTTTCCGGCAAGGCGGCTGAATTGCTTGGCAAGGACCTCAAGGACCTTAAGCTGGTTGTCTGCCACCTGGGTTCAGGCGCTTCAGTTACTGCGGTTAAGGATGGCAAGTGCTACGACACTTCCATGGGCTTCTCACCTTTGGCTGGGGTAACCATGGGGACCCGGTCAGGTGACGTTGATCCGTCAGTTCTGCAGTACATCATGAAGAAGGAAGGCATCACTGACTTCAATGAAATGATCGACATTTTGAACCACAAATCAGGCCTTTTGGGCCTCTCCGGTATCTCCAGCGACATGCGGGACATCAGAAACAGTGATGACAAGCGCGCCAGGCTGGCTGAGGCTGTCTTCATCAACCGGGTAGTCCGCTACGTTGGCTCTTACATTGCTGAAATGGGCGGGGCAGACGCGGTTGTCTTCACTGCCGGGATCGGCGAACACGATGATGTAGTCCGTGAAGGGGTCATGAAGTCACTGTCCTTCATGGGCGTTGACTTTGACGACGCAGCTAACAAGGCTGCTAATGAAGGCTTTATCACCAAGGAAGATTCCAAGCTGGCTGGTTTGATTATTCCAACTGACGAAGAATTGATGATCGAACGTGACGTTGTCCGTTTGGCCAAGCTTAAGTAAAAGTTTTTAAGCAGAATATTTGAGGACATGGTCATTTTTTGCTAAAATTATCATGTTCTCTATTTTGGGGATGTTTTGGGATTCGACAGGCGCAGACCCGCGCTGGTTGCGATTCGTAGGTTACGTCTACGTTAAAACGTTAAACAGTTTAAATTAACTGCAAACGAAAACTCATACGCTGTAGCTGCTTAGTTCAGCCCAGCTGCCAATAGACTGCCTGCCCGTGGCGGTCTTGCGGTATCAACATTACGGGATACGCTTGCCTATCACACCTGAATAAGCGAGAAGAGACTAACAGGTTAGCCGTGGCTGTTTGGCCCTGTCATATGGCGTTTTGCCCCGGTGAAGTTTAAATAATATGACTATGATCGTAGAGATTAGTGACGGGATGCGTTTGGACAGGGGTTCAATTCCCCTCATCTCCATCTGTCTAAAGAAGGCGCGTGTGATTGATGCACGCGTCTTTTTTGTGGAATTTTTATCTTCCAAAATGAAAGAATTCTCCAATATATGCAACGATAAGCTGGAAAGAGCGGTATAGTATAAGAGATAAGTGTTTATAAGGCGTAACTAAAGGGGAAGAAATGAAAATGATTTTCCGAAGATGGTCACTGGAATAAAATAACAAATGCAATAAATCGCAAAGGAATCAAGAGTATAATTAAAAGAATAGAAGCTATTGTTTTGACTGTAAGTACACTTTTTAGTGCGGGAGGTCAACTATGAAACTCAAAGAATTTTTGCTAGGAGCTTATAGCTGCCAAAAAGTCAATGACAAGGGCAGGACCAAGCTCAAGGTCGACCTTTCCCCAGGCCTGCTGCCAACAGCACTTTTTGCCTGGGCGGTTTACAAATTCTTGACTAGCGGCGATGATTAAAAGCAAACTTTTTTCTTGTAGAAATTAAGTGAAAAAACTATATAATTTAGTCAATTAGCCCCAAACTTGTGAGTTAAGTTTCAAGCTTCTTTCACAGAATGATTGGCGGCTTTTGATACTTTTTTGCTACGATTATAATATAGTGCGGATTGCACAATTTTTCGGTAAGGGGTTAAAACATGAAGATCTTAATGGTAGAAGATGACAAGTCAGTTTCACAAATGATGGAATTGTTCTTCAAGAAGGAAGGCTGGGAACAAGTTTCCGCCTACGACGGTGAAGAAGCAGTCGAAATTTTCCAAACTCACCCGCGGGATTTTGACATCATCACTTTGGACTTGAACCTGCCAAAGAAGGACGGGATTCAAGTGGCCAAGGAGATCCGCCGGATTTCTGAGACTGTGCCGATTATTATGCTGACGGCCCGCGACAGCGAATCTGACCAGGTTCTCGGCCTGGGTGTCGGGGCTGATGACTACGTAACCAAGCCATTCAGCCCGATCGCCTTGATCGCCAGAATCAAGGCCCTGCACCGGCGGGTAATGCTGGAAGGGCAGCCAAGAAACCTGCCGAAGAACATCCCAAGCAACGACTTCGACTTGGAAACCAACCACATCCGGATCTCCAAGAGCCGGCGGGAAGTTTACTTTGACGAAAACCGGGTTGAAGGCTTGACGCCAAAGGAATTCGACCTGCTCTACACTATGGCCCAGAAGCCAAAGCAGGTCTTCTCCCGGGAACAGCTCCTGGAACTTGTCTGGGGCTATGAATACTTCGGTGAAGAAAGAACTGTTGACGCCCACATCAAGAAGCTGCGCCAGAAGCTGGAAAAGTCTGGCCCGCAGATTATTCAAACCGTCTGGGGCGTGGGCTACAAGTTTGACGATTCACAGGTTAACGCATGAAACTGATTTATCAGCATATTCTGAGTTTTTTGATAGTCATTTTAACCTCGGTCATGATCATTGGCTTTTCAACGATCAACTACCAGAAGGAACAGGCCTATCAAAGCAACTATACGCGCTTGGAAAGTTATGCCGAGAATCTTTCGACCCTGCAGCTGTATTCTAAAAAGACGCAGAGCAAGAATTCACCGCCGTTTTTTTCCGCGGATTTCCTGCAGAAGTTTTCCTTCGTCATGCGGGATGAAAATCTTAAACTGTTTTTGATGGACAAGAACTTTAAGACGACTTATCCCCTTGGCGGCTACGACATCTTGAAGAAGTCAGCCAAATCGATGCTGAAAAAGGGGCAGGTGGTCCGGATCAAGGACGACCACAGCAGCGAGCAGCAGGACCTTGCCCCGAAAGTCCAGGGCCGGGTAAAGCGCGATGGCTTAAGAAAGCGGATCAACCGCCTTTTTGCCGCTGAAAGCTATACCTGGGTCGTGGTTCCCCAGGTCCAAGGATCCGGGTCAAATAAGAAGGTCGTCGGGGCCATCATGATCGGTTCCCGGGTCAAGGATGTCCTGCAGACCGTGAGTCAGGCCAAGGCAAACCTGGCCAGAGCCCTGGTGATCACCTTCGTGGTCAGCTTGATCTTGAACTTTATTCTGGCCTACTACCAAACTGGCCGGATCAAGAAGCTCTCCCTGGCTGCCCGCAAGGTTGCTGACGGTGACCTGGACGTCCAGGTTGACCACCGCCATGCCGATGAAATCGACGACCTGGCCGAAAACTTCAATGAAATGGTCCGGTCTCTGAAGGCCTCAAATGAAGAAGTCAAGGCCCAGGAAGAGCGGCGGGACCAGTTCATGCAGGATGTGGCCCACGAAATGCGGACGCCTCTGACGACGATTAATGGCCTTTTGGAAGGGATGAAGTATGATGCCATCCCAGAAGAATCAATTCCAGAGTCCATTGACCTCATGAGTCGGGAAACCAAGCGCTTGATCCGCCTGGTCAACGAAAACCTGGACTACGAAAAGATCAGAAGCGGGAAGATCCAGATGATGAAGTCCCAGTTCAATGCCTGGACGATCATGAACGACGTTCAGCAGCAGCTGACCCAGAACGCGGCTAAGAACGGGGACAAGATTATCCTTGACGCTCCGGAAGATTTGCCGGTTTATGCTGACCAGGACCGCTTCAAGCAGATGCTGGTCAACTTGACCCAGAACGCCATCCAGTTTACCAATAACGGGACGATTACGCTCAGGGGCCGGCGCTTCCAGCATGGGGCGACCTTCAGCGTCCAGGATACCGGGATCGGGATGACCCAGGAGCAGAGCAAGTATATCTTCGAACGCTTCTACAAGGCTGACCCGGCCCGGGCCCGCTACGGTGGTACCGGTGAATCCGGCCTGGGCTTGTCGATTGTCCTCTCTTTGGTCCGCCAGCACGGCGGGGAAATCAAGGTTATTTCCAAGCCGCATGAAGGCTCAACCTTCATGATCACCCTCTTTGACCAGGGGCATGAGAAGCACTATGACAAGAAGGACAAGAAAGAGTACAAAGATAAAGAATAGCGACTAAAAAAGCTTACCGGCTGCTGCCGGTAAGCTTTTGCTTCTTCTATTTAGTTTTCTTGCTGCTGGCTTTACTTGAGCTGGAACTTGCACTAGAGCTGGATGAACTTGAAGTCATGCTCTCATTCATGGAGCTGGATGAGGACAGGATGCTTTCCGGGATCTGGGTGATCTCGCTTTGCCGCTTGGCCAGCTGGCTGGCATCGGTCTTGTAAAGCTTGCTGGTGTCGCCCTTTTGGCTGATGAGGGCGGTTGACTGCTTGCCTAACTGCTCAATCAGGTCCATCATCTGCTGGTAGTTGGTGCTGTAATTGTAATCGCTCGGGATGACCGGGCTGAAGCCCTTTGGCGTGTAATAGCGGAGCAGGTTCTTATTGTTGAGGGTGTCTGAGTAGGCCAGGGAGTTTTTGCCATAAGCAGCCAGCTTCTTGACTTCGGCTTTTTGCTTTTTGGTCAGCTTGGTCAAAAGTTTGCCGCTGGCGTCATAGACATTGCCCTTGCTGGTCTTGCCCCCGATCAAGACGTATTTTGGACTGATTACCGTCCCATTTCTGAAGACGACAATTTGCTTGTGCTTAGCTGACAGCATGTCCGTGCCAAACTGGACATATTGCTTGCTGGAGATGCCCAGCAGGTGGAGGATGGTCGGCAGGACGTCGATTTCACCAGCCAGGGTTGACTTGATCCCGCCCTTTAAATTGGAAGCGTGGATCATGAAAGGTACCTTTTGCATCTGGGCGGTGTTGTAGCTGGACCAGTCATTCGGGTTCTTGCCGATCAAAGGCGCTAGGGTGGTGTACTCTTCATTGCTCAAGCCGTAGTGGTCACCGTAAATGACGATCATCGACTTCTCATAGAGACCGGATTTTTTCAAGTAAGTGAAAAATTCCTTCAAGGCCTGGTCCAGGTAGTGGGCGGTCAAAAAGTAATTATTAATCGTCACGTCACTGGTTGAGCTGGTCTTGAAGTTTGGATCCTGGTCAGCCGTGGCCAGTTCAAAAGGCGTGTGGTTGGTGACTGTGATGAACTTGGCATAGAAGGGCTGCTGCATTCTTTCCAGGTACTTGACGCTTTCGGCAAAAAAGAGCTTGTCCTTAAGCCCGTAGCCGGAGCTGTCCCCGCTTTCCTGACTGAAGTAGTTCTTGTCAAAGAAGTAGTTGTAGCCCATATTCTTGTAAACGTCATTCCGGTTCCAGAAGCTGCCGACATTGCCGTGGAAGACGGCAGAGGTGTAGTTGCTGTTTGCCCGCAAGATTTGCGGGGAAGCCTGGAAGGTGTTGCTGGAGCCTAATGAAGTGAAGAGTGACCCGTCAGAGATCCCGTAGGTGCTGGTTTCCAGCATATTTTCCGCGTCACTGGTTCTGCCCAGGCCAACCTGGTGGTAGAAGTTGCTGTAAGACAGGGTGTGCTTGTTTTTGTAGAGGGAATTAAGGAAGGGAGTAACCTCCTTGCCGTTGACCTTCATCCCGATCAAAAACTGCTGGAAGCTCTCCAGGTGGATGATGATCACGTTTTCCCCTTTTTCCGCCCCGAAGTATTCGGAATTAGCCGGGGCGTAATTCTGCTGGGTAAAGTTGATGATCTTGTTCAATTCACTGGTCGAAGCATTCTTGGTTACGGTCGAGCTGGATTCGTTCTTAATAGCGTCATAAACCGTGAAGGTGTCAATGCCCAGGTACTTGACCACGTAAGTCCGGTCAAAAGTGTTCTTGAGCAGGCGGGGCCGGTTGCATTCAGCCACCATCATGTTGAGGCCCAAAACGAAGAAGCCGAAGGACGTAATGGCAAAAGTCCTGGAAAAGCCGTATGACCGCTGGTCGATCTTGATTACTTTTACCGCCAGCAGGATGACGATGACGATCAGGTCCAGCCAGATAAAAATGTCGCTAGGCGCTAAAAGGGCCGCGCTGGATTTGCCCAGACCCTGGGAAACCTTGCTGAGGTTGGCCATGGTCTTGACGGTAATGAAGTCGGTGAACTGCCGGTAGTAAAGGACGTTGGCAAATAAAAGCGCCGTGTTGGCGAAATCGAGGGCCAGCATGGCAATGTAGGAGGCCAGAGGCTTGGAAAAGTAAAAGCCCAGGCTGATCAAAATGATGCTCGTGCCCAGGGGGCTGAACCACATGATGATGTGCTGGAGGGGATTGGCCAGGCCTAGATTGAAGTCGCAGTAGGCGACAAAGAGGTATTTCAGCCAGTAGCAGATGACCAGGAGGGTCAAAAAGCCAGTCCGGCTTTGAAATTTGCCGAGAAATTTGCTGTGTTTCAATGTCTTTCTCCTTTTATTACTGTCTTAATTTTAAAGGTTGTGGCAAAAATAGACAAATATTTCACCAGAGTTATTGCTTTCTTAAAATTCTTCCCCCAAAAAAGCTTGTATAATGTAAGCAGACCTTAGTAGATTGGACCCAGCGAGCATGTTGTTTTTAGCACCTTTATACAATTATTTAGCCAGCCAGTACGCCACCCGGATAAATCACTTTGCCTTGATCAAGTTAACCTTGCAGGGCCTGGACAAGACAATTTTTTACTTCCTGCTCTTCGCCCTGGTCCGGGTCATCTGGCTTTTGGCTGTCCGTAAAAGACGCGGGCTCTGGTCAGAATTCGGCCTCTGGCTCTTCGTCTTTTACTTTCTCCTGGTGCTGATGCTAACGACCTTCAGGTCATCCTACTTCCCTTGGGAACTGAATTTCCATTGGACGCGGCCGCTCAGCAATATCAACCTGGTCTTCATGAAGAATACCTGGAAATTAGTCTATGCCCAGAGCAAGGTCGACTTTTACTATAACTCTATGGGCAATATCTTAGCCTTCGTGCCCTTCGGGGCCCTGCTGCCCAATCTGCTGCAAGTCAAGCGTTGCTTTGGCCGGGTCTTTTTCCTGGGGGTCTTGTCATCGGTGACGATCGAGATCCTGCAGTTTTTGCTCATGACAGGGGTCAGCGACATTGACGACGTCTTCTTCAATGCTTGCGGGGTCCTGCTAGGCTACGGGCTCTACTTTTTGCTAGGTCAAATTTGTGTAAAAAAACCCAATAAAGACTAGCAATGAAAGGGCAACAATGATATTATTATCTTGTGAATGATTTATTTAACATTTTCTAGTGAGGAAGCATAAATCAATGAATAGTGTAGTAAGTTTTGACAGTAGTAAATTGACTCCTTTTGTTCACGAAAACGAACTGAAGGAAATGCAAGCAATGGTTAACGCCGCTGACAAGGAATTGCGTGAAGGCACTGGTGCCGGCAACGACTTCCGAGGCTGGCTGGACCTGCCAGTTGACTATGACAAGGACGAATTCGCCCGCATCAAGAAGGCTGCCAAGAAGATCCAAAGCGACTCTGACGTTTTGATCGGGATCGGGATCGGCGGCTCATACTTGGGTGCCCAAGCAGCCATTGAATTCTTGAACTCATCATTCTACATGGCTGAAAAGAGCGATTATCCTAAGGTTGTCTTCTGCGGTAACAGTCTGTCAGGCACTTACTTGTCAGACTTGATCAACTGGCTGGGCGACAAGGACTTCTCCTTGAACATCATCTCCAAGTCCGGTACCACCACTGAACCTTCAGTTGCCTTCCGGGTTTTGAAGGCCAAGTTGATTGAAAAGTACGGCAAGGAAGAAGCAGCCAAGCGTATTTACGCAACCACTGACCGCCAAAAGGGTGCCTTGAAGATCGAAGCTGACGCTGAAGGCTACGAAGAATTTGTAGTTCCAGATGACGTCGGCGGCCGTTTCAGCGTGTTGTCAGCTGTTGGCCTTTTGCCAATCGCTGCTGCCGGCTGCGACATCGACGCCTTGATGCAAGGTGCCGCTGACGCCCGGGCTGCTTACACTGACCCTGACGTAAGCAAGGACTCACCTTACCAATACGCTGCCTTGAGAAACATCCTTTACCGCAAGGGCTACACCACTGAACTTTTGGAAAACTACGAACCAAGCATCAGAATGTTTGGCGAATGGTGGAAGCAATTGATGGGTGAATCAGAAGGCAAGGACCAAAAGGGCATCTACCCGTCAAGTGCTAACTTCACCACTGACCTGCACTCACTTGGCCAATACATCCAAGAAGGCCGCCGGAACTTGATGGAAACTGTTGTCCGCGTTGCTGGCCCACGGGCTGACGTAGAAATTCCAAACGACGAAAGCAACCTTGACCAACTGAACTTCCTGGCCGGCAAGAAAATGAACTATGTCAACGACCGGGCTTACGAAGGCGTTGTTTTGGCCCACACTGACGGCGGGGTTCCAGTTATGACTGTCAACATCGCTGACCAAAGCGAACACACTTTGGGCTACTTGATCTACTGGTTCGAACTGTCAGTTGCTATCTCCGGCTACTTGAACGGGATCAACCCATTCAACCAGCCAGGGGTTGAAGCTTACAAGCGCAACATGTTCGGCCTTTTGAACAAGCCGGGCTACGAAGACTTGCACGACGAACTGGCAAGCCGCCTGTAATCTTTCGTAAATGAAACTAAGAAGAACAAGATCCGCGGATCTTGTTCTTTTTTTGTTCAATTTGATACTTTTTTGGCCAAAGATGATAAAAGAATTACATTAAGTGCTACAATTTAAGGGAATCAAAAAGAGTATTGCTTATGTTACCGCTTTAGTAAGAGGGGGTAAAGGAAGATGTCATCAAGAAAAATTGCCTTGACCGGACTTGCTTTAGCTGCTGTAACGTTAACAGCCTGCAGCAAGCAGGAGAGCAGTCAAAAGGAGCAGGATTTGAACTGGTCAGTCGGCGGGGAAATCACCACGATGGACCCGTCCAAGGCCACGGACGTGGTCAGCTTCAGCCAGATGATCAATTCAATGGAAGGGCTCTACAGAAACAGCAAGGACGGGCAAAGTCCGGGCCTGGCCACTAGCGCCCAGGTTTCCAAGGACGGGCTGACTTATACTTTCAACTTGCGCAAGTCCAAGTGGAATGACGGCACGCCAGTAACTGCCCAGGACTTTGTCTACTCCTGGCGGCGGACCGTCAATCCCAAGACTGAGGCCGAGTACTCGTATCTTTTTTCCGGGATCAAGAACGCCGATGCCATCCAAAACGGCAAAAAGCCGGTTTCCAGCCTGGGGATCAAGGCCGAGGGCAAAAGTATAAGCTGGTCGTCACTTTAGAGAAGCGGATGGCCTATTTTAAGGACCTTATGGCCTTCCCAGTCTTTTTCCCGCAGGAGGAAAAAGACGTCAAGAAATACGGGGACAAGCAGAGCGTCAAGCTTGACCAGATCAGCTTCACGGTCAACAAGACGGCGACTACCGCCTACAACCTCTACCAGTCAAACAAAATAGATGTTCTGGGCCTGGACTCCAATTTGAGCAAGCAGTTCAAGGGCAAGAAGAACTACTACAGCCTCTCCAACGGGGGGACCTACTACCTGGAACTTAACGAAAAGAACCCGAACCTGGCCAACAGCAACATCCGCAAGGCCATCTCCCTGGCCATCAACCGGGAGAACCTGATCCGGATTTTAGGCGGCAACAACCAGGTGGCCAATACTTACACAGCCAAGGGCTTGACTGAATATTACGGGGAAAACTACACCAGCATGATTTCTTCCTCGGCCAAAGACCTCTACAAGTACCAGCCAAGCAAGGCCAAGGAGTACTGGCAAAAGGGCCTGAGTGAACTCGGCAAGTCCAGCTTGACCTTGAACCTGCTGACCAGTGACAGCGACGGGGGTAAGAAGACCGGCGAGACCCTGCAGAGCATGCTGGAAACCCAGCTGCCAGGGCTGAAATTGACGGTCACCAGTGTTCCCTTCAAGACCCGCCTGGCCCGGCGGGAAAACGGCCAGTTCCAGATCTGCGGGTCAGACTGGATCGCTGACTTCGGTGACCCGATTTCCTTCCTGGAACTTCTGACCAGCAAGAACAGCTCCAACTATGGCTCCTGGAAAAACAGCCAGTATGACAAGCTGATTGCTGCTTCCAAGAACACCAATGACCAGGAAAAGCGGCTCAAGGATATGAGTAAGGCGGAAAGCATCCTGCTTGACGATGTCGGGGTTTACTATGAGGACGATGCCTGGCTGATCCGGTCAAATGCCAAAGGCTGGATCTGCAAGCGGAGCGAGTGGAACTTTAAGGAAGCCTATGTGACTAAGTAATGTGATTTGAAAAGAAGAAAAAAGGCAAGCTCCAGAGGAACTTGCCTTTCGGTATTATTGCGATGTCCGGGCTCGAACCGGAACATTATGGATTCAGAGTCCACTGCCTTACCAATTTGGCTACATCGCAGTAAATCACCCGTACGAGAATTGAACTCATGACTCCACCTTGAGAGGGTAGCGTCTTAACCACTTGACCAACGGGTGAAGTTCGTGTTCGAATTACCGACATTCATTATTATGCTTTCTTTGCAAGAAAAAGTCAAGGCTCCCGGCAAAAAAAGTCTAAAATTTTTTCAGGCTAGCTTGGAAAGGCTGAAAACTGCCGTATAATAGAGCTAATTGCCCGCACGGGCCTTTTAGAAAGGAGTCACCGCTTGCTTAATTTTCCTAAAACCCAGCTGCTAATTGAAAGCCTGGTTTCTGAAAGAATTGTTCCCGGAGTCAACTACGCCCTCTTAAAAGGTGACCAGGTCTTTGCCTCGACTTTGGGCTTTGCCAGCATTTATCCGGCTAAAAGCCAGCTGAGCCCTTTTGCTTACTATGACTTGGCCAGCTGCAGCAAGGTTTTGGCCACGACGGCTGCTTTCTTGCAGCTGAGGGAAGAGGGAAAGGTTGACTTTGCTGACCCCTTGCAAAAATACGTGCCGGAATTTAAGGACGGCCGGGTCCGCCTCAGCCACCTTTTGACCCACACATCTGGCATCCGGGGCTGGATCGAAAACCGGAATGCCTTGTCCGGCCCGGAATTAATGAGGGCGATCGTGGGCTTGCCAGTGACCAGCGAGTTTAACCGGGTGGTCCGCTATGCAGACACCAACTTCGTCCTTTTAGGCCTGGTTTTAGAGCGGATCACGGGCAAAGCAGTCCAGGACCTGGCCAGCGAGCGGATCTTCCGGCCAGCTGGCTTGACTGAAACGACTTTTGCTCCGCCAAAAGAGGAGTGCGTGCCAACGGAACTAGTTGACGGCCAGGTCATTCAAGGCTTCGTTCATGACCCCAAGGGCCAGCAATTAGGCCGGCGGTGCGGGTCAGCTGGCCTGTTTAGTACCGTCAGTGACCTGGTCAAAATGGGCCAGGGCTATATGGGGGTCAGTGACCTTTTGCCATTAAAGGAAGAAACAATCCAAGATCTCTACCAGGTCAAGACTCCGGCGGGTTTAAAAGCCCGGTCCTGGGGCTGGAACCTGGTCTTTGACCCTAAGGAAAACTATCCCATCATCTACCACACCGGTTTTACCGGCACTTTGGTCTTGTTTGACCAGGTCAAGCAGTCCGGCTTGATTCTTTTGACCAACCGGGTTCACCCTTCTCGGCACAATCAGATCTTTTTGACTATGCGCAGCCGGATCATCAACGCTTTTTTGCAGGAAAACCGCTAGCTAGAAAGAGGAGCAAAATCACATGAAATTAAGCAATAAGCAAAAGGGCTGGCTGCTTTTAGCCGTCTACGGCCTGGTCATCATCATCCTGGGCTGTTTTAACAGCCGGATGTCGCCTTATTATGCCATCACCGCTATCGCGGCATTTGCCGTGGCCCTAATCGAGGGCCTGCTTTTTGCCTTTAGCAAGAACGCGACATACAAGGCGGTTGCCTTTTTTGCCGGCTTGGTTGCCTTGATCAACGTAGTCGCCGTCTTAACTACGGCAATTTAAAAAATCCCGCGGCTGACCGCGGGATTTTTATTTACTCTTTTACTTACTTGCTTTGCGTATGCTAGTTGATTCTTCTCTTCAAGACGCCCTTGTCGGCAAAGACCTGCCGCAGGTGCAGCATGGCCGTGTAGGTTGAGAGAATGTAGATCTTGTCAGTCGGCGTCTTTGCAAAAGCGGCCAACAGCTGGTCAAAGTCGCTTTCAATGATCATCTTGTCCGGGTCAAAACCGGCAACTTCCAGGCGGAAGGCCATGTCCTTGTGCCGCTCGCCGCCGACGATTACCTGATCGATCTTGTCCCGGTCCAGGCTTTCAAAGTTCCCGTCCCAGATCCAGCTGGTGTCGATGCCGTCAGCGTGGTGGGCGTTTAAGAGGGCAGCCAGGCTGTAGTGGTCCTTTTCCGTGTCCAGGAGGCTGAGGACTTCGTTTAAGCCAACCGGGTTCTTGACCAAGATGATGTTGATCTGCTTGCCCTGGTAGTGAATCAGTTCCTGGCGACCGAAGATCCGCTTGTTTTTGGCAAAAGCCGCCGCGATTTCATTGGCGGAAACGCCGAATTCTCTGGCGCAGGCAAAGGCGGCCAGGGCATTGTAGATATTGTAGGTGCCGCCGATGTTGACGGCGAATTCCTTGCCTTCAATGGTAAACTTGATCCGGCTCGGGGTCTGCTCGCTGATTTCTTCCAGCTTGTAGGTCAAATCCGGCCGCTTGTAGCCGCAGTTCGGGCAGAAGAAGTCACCCAGGTTGGCATAGGAAATTGCGTGGTAGTGCAGGATATGCTCGCACTTAGGGCAGAGGACCCCGTCAGTGTTGACGTCAGCCTTGAGGTCATTTTGCGGTTTGTCCTGGTCAGTTTCAAAGCCAAAAAAGACTTTTGGATTCGGCAGGTCGACTGAAGAGAAGATGCTGGCGTCCCCGTTAGCGATGATGGTTGCATCTGGCGCCAGCTTGATGCCGGCGACGATCTTTTCATAGGTCGTGTAGATCTCCCCGTAGCGGTCCATCTGGTCTCTGAAAATGTTGGTCAGAACAAAGGCCTTGGGGTGGACCAACTGGGTTACGGCCTTGACGTTGGCTTCATCGACTTCCAAAACGGCCAGTTTCCGGCTGCTTTTTTTCTGGTCATGAGCCAAAAAGGCAGTTACGATCCCCTGGGCCATGTTGGACCCGGACGGGTTGGTCAAAATATCGCCGTATTTTTCTTTCAAGGTCTGGGTGATGAGGGCCGTGGTCATGGTCTTGCCGTTGGTCCCCGTAACGATAATGGTCTCGTAGTCCTTGCCCAGCTGCTCAAGGACATCTGGGTCAAGCTTCATGGCCAGCTTGCCGGGAAAGCTGGTCCCGCCCTTTAAGACATTGTGCAAGAACCAGTAAGAGGACTTGCCGGCAAAAGTTGCGATGTTGGATTTAAAACTCATGATTAACTTCCTATTCTGCATTAAAACTATGATAAATCTTACCATAAGACGGAAAGTTTAGCGGCTAAAATGCGGAGCTTTTAAACTTTTGCAAAATACACTATACTTATTTGAGCGAGATTAATACAAAGGTGGAGAATATGGCACAGTTTTTTTTCGAATACGGAGCGATGGGCAGCGGCAAGACGATTGAAATCTTGAAGGTTGCCCACAACTACGAGATTCAAGGACGCAAGGTGGCTTTATTGACCAGCAGCGTTGACACCCGGGCCGGCCGCGGCGTGGTGGCTTCCCGAATCGGGCTCAGCCGCAGCGCCCAGCCGATTGAGCCGGACCTGGACCTCTTTGACTACATCACGGCTTTGAACCAGCAAGAGCAGGAGTCTGACGGCCACCCCTTAGCGGCGGTCTTGATCGATGAGGCCCAGTTCTTAAAAAAGGACCAGGTCATCCAGTGTGCCCGGGTCGTGGACGACTTGCACATTCCGGTGATGGCCTTTGGCCTAAAGAATGATTTTCAGAACCATCTTTTTGAAGGCAGTGAGTATCTTTTGCTTTATGCTGATAAAATAGAAGAGATGAAGACAATTTGCCACTTTTGCGGGCACAAGGCAACCATGGCCCTGCGCTACAAGGACGGTTTGCCCGTCTATGAGGGCGAGCAGGTGCAGATTGGCGGCGACGAGGCCTACTACCCGGTCTGCCGCTTCCACTATTTCCACCCCGATCAGGCAAGAGACTAGTTTTTATTGGAAGGATTGATTAAATGGATAATGTAATGGCACAGCTGGAAAGCTTGGAAGTACGCTATGAAGAAATTCAGGAAATGATGGCCGACCCGGAAGTCATCGCTGATACCAAGCGCTACATGGAAATTACCAAGGAAGAAGCTGACATGCGGGAAGTCGTGCAGAAGTTCCGCAAGTTCAAGGCCGACAAAGAAGAAATTGCCGGCAACAAGGAAATCATCGCTGACGGTTCAGACCCTGAGCTGGTTGAAATGGCCAAGATGGAAAACTCTGAGCTGGAAGATGAAATCAGCCAGCTGGAAGATGAAATCAAGATCTTGATGCTGCCAAAGGACCCTAACGATGACAAGGACATCATCATGGAAATCCGGGGGGCAGCCGGCGGGGATGAAGCTTCCCTGTTCGCGGGCGACTTGCTGCGGATGTATGAAAAGTACGCGGAAAACCAGGGCTGGAACGTTTCTATCGTCGACAGCGAACAAACTGAAGTTGGCGGCTACAAGCGGGCAGCCATCATGATTACTGGTAACAAGGTCTACTCCAAGCTGAAATATGAAAACGGGGCCCACCGGGTGCAGCGGATCCCAGTAACTGAATCAGCCGGCCGGGTGCACACTTCAACTGCTACCGTTGCCGTCATGCCAGAATATGAACAGGTTGACATTGACCTTGATCCAAAGGAAATCCGGGTGGACGTCTACCGGTCATCCGGTGCGGGCGGTCAGCACATCAACAAGACTTCCAGTGCCGTCAGAATGACCCACTTGCCAACCGGTATCGTGGTTGCCATGCAGGACCAGCGGTCCCAGCAGCAAAACCGGGCCAAGGCCATGGAAATTTTGAAGTCCCGGGTTTACGACTACTACGAAAGCCAGAACCGGGACAAGTACGACGCCAAGCGGAAGAACGCGGTCGGCACTGGTGACCGGTCAGAAAGAATCAGAACCTACAACTACCCGCAAAACCGGGTGACTGACCACCGGATCGGCCTCACTTTGAACAAATTGGACCGGATCATGAACGGGGAACTGGACGAAGTCATCGATGCTTTGACGGTTTACTACCAAACCAAGCAATTAGAGGAGCTGGCAGAAAATGCATAAGAGTTTACGAGAAATGCGGATTGAGGCCAGTGAACTGGCTGAAAGCGCACGGAGCGAGGAAATCGACTTCCTTTTGGCTGAGCGGCTGGGCCTGACGCCAAGCCAGTTTCAGCTTAAGCAAGACATGGAATTGTCTGACGCTGAAGTCAAGCAGGCCAGAAAGGACATGAAGCGCCTGGCTAAAGGGGACTCACCCCAGTATATCCTGGGCTATGCCTGGTTTTTAGGCTACCGCTTGCGGGTGGCCAAAGGCGTGCTTATTCCCCGCTTTGAAACTGAGGAACTGGTTGAATGGGCCCTAGCGCACTTACAAGACGGCGACACTGTCCTTGACCTGGGGACTGGGTCAGGCAATATTACGGTGGCCCTGGCCAAGGAAGCTGAAAGCAAGGGGATCAAGGACCTGCATTTTTACGCCAGTGACGTTAAGGACACCCCGCTCAGAATCAGTGAAGAGAACTTTTTGGACTACGGCCTGGACGTAACCACCCGCAAGGCCAATGTTTTGCTGGGCCTGGGCAAGTTTGACTTGATCATTTCCAACCCGCCTTATATCAAGCCCAGCGAGAAGAACGTGATGGACAAGGGCGTTCTGGCCAATGAGCCGGAAGAAGCCCTGTTTGGCGGCCAGGATGGCCTGGCCTTTTACCGGAAGTTCGCTGAAGAAGTTAGAGACCACTTAAACTCGGGCGGCCGCTTCTTCATGGAATTCGGCTTTAGCGAGGAAGATGAGCTGAAGGCCATGTTTGCCGAAAAATTGCCGGACTTTAAGGTGGAATTCCGCCGGGACATGGCCGGCAAGCCGCGGATGCTGTTTGGGGAGTGGAAGAAATAATGGAAACCAAGATTTTTAAACGGGAACAATTGGATGAAGCAGTCAGCCTGCTTAGGGAAGGGGGATTAGTTGCCTTTCCGACTGAAACTGTCTATGGCCTGGGGGCTTTGGCCACCCGAGACGATTCAGTTAAAAAGGTCTACGCGGCCAAAGGCCGGCCTAGCGACAACCCCTTGATCGTGACCGTGGCTGACGAAGCTATGATGCGCCCTTACGCTAAGGAAGTGCCGGAGCGGGCGGAGAAGTTGATCAAGCACTTTTGGCCAGGTCCCTTGACCATCCTGCTTTTAGCTAAAGAAGGGGCCCTGCCGGAATCTGTAACCGGGGGCCTGCCAACGGTTGCCTTCCGCTGCCCGGATGACCAGCTGACTCATGACTTGATCGCCAAGCTTGGCTACCCGATCGTCGGGCCTTCCGCCAATACCTCGACTAAGCCGAGCCCAACCACGGCCCAGCACGTCTACCACGACTTAAAGGGCAAGATCGCTGGAATCGTTGATGGCGGCGAGACTGAAGTGGGCCTGGAATCAACCATCGTTGACCTGTCGGTTAACCCAGCAGTTGTTTTGCGGCCGGGCAAGATTACGCCAGAAGAGATCAGCCAGGTCTTGGGCGAAGAAGTTTTGATCAACCGGGGCCAGGTAAGTGACAAGGACGTGCCGAAGGCGCCAGGGATGAAATACCGCCACTACGCGCCAAGTGCCCAGGTTTACGTGGTCGACCAGGCGGAAACTTTTGATAAGCTGGACCTGGATGCTTCCTGCGGGGTCATGGCAACTAGTGACCTTTTGGAAAACTTACCTGTACCTGAGGAAAATAAGTTCAATTTAGGCAAAAATCTGACGGAGGCTGACCACAACCTGTTTGCCGGCCTGCGCTATTTTGACGACCGGCCAGAAATTAAAAGTATTTATGTAGAGGGCTTTGACCAGGGTGAGGAAAGTCTGGCCTACATGAACCGTTTAAACAAGGCTGCCGGCGGTCATCATGTATAATCTGGACGATTTAATGTTTTAAAAAAAGAAATTGCTTTAAACAATTTCCTTTTTTATTTATAATAGAGACGACATGGTATTTTTGAATGGAGGAACTATATGGGAAAGTTCACTGTGTTAAACCATCCATTGATTCAGCACAAGCTGACGATCATTCGCCGCAAGGAAACTGGATCAAATGAATTTCGGAGAATCGTTGGCGAAATCGCCGGTTTGATGACCTACGAAATCACCCGCGACCTGCCTTTGCAAGACGTTGAAATCGAAACGCCAATGGGCAAGACGGTGCAAAAGGAACTGGCCGGCAAGAAATTGACTATCGTGCCGATCCTGCGTGCCGGCATGGGCATGGTCAACGGGGTTTTGGAAATGATTCCGTCAGCCAAGGTCGGCGTCGTTGGCATGTACCGCGACGAAGAAACCCTGAAGCCGGTAGAATACTTCTTCAAGGTTCCTAAGGATGTTACTGAACGTGAATGCCTGGTCGTTGACCCGATGCTGGCTACTGGCGGTTCCGCCAACCTGGCCATCGAAGCTTTGAAGAAGCGGGGCGTGACCGACATTAAGCTGGCCGTCCTGGTTGCTGCGCCGGAAGGCGTCAAGGCGGTGCAAGATGAACACCCGGACGTTGACATTTACGCTGCTGCCCTTGACGACAAGCTGCTGCCAAACGGCTACATCTTCCCAGGTTTAGGGGATGCAGGTGACCGGATCTTTGGGACTAAATAATTAAAAAAGTCGCTATAAAAGCGATTGCAAAAGTTCCAATTGATTTTTATTGGTGTACAATAAATGACGTGTTCGAAGAATTCAACACAAGAAGGGAGGTCACGAAGAATTGGAGAAATCACTTGTCTTCAATATTAACGGTACCGGACTGAATGTCGACTTGGTCGGCATTATCGGTTCGACCTTGATGGCAATTGTGGTTTTTGCCATTTGTTACGCTCTTTCACGTAAAGTTGAAATGAAACCGAACAAGAAACAAAATGTCCTGGAATACCTAATCGATTTTACCGACGGGATTGTCAAGGATAACGTCGAAGACCCGGCTGCGCAAAAACATCTGTCTCTTTACGCCTTTGTTTTGTTTCTTTTCATCTTCTGCATGAATCAACTAGGGTTGTTCTTGGAAGTGAAAGTCGGTGACTATATGGTCATCAAATCACCAACTGCTGATCCAGTGACGACGATGTCGTTCGCGATGATGACCTTGCTTCTGTCATTTACCTTCGGGATTCAGAAATTTGGCACGAAGGGCTACCTGCAGAACTATGCACGTCCTGTCGGTTTTCTTTTGCCGATTAACATCATTGAAGAATTTACCAACTTCTTGACGTTATCGCTGCGTCTCTACGGTAATATCTTTGCGGGTGAAGTCCTGCTGACCCTGATCGGGAACCAGCTGGGGCCAAGCATGGGGATTGTAACCAGAATCCTGGCTGCGCCGCTCGCAATGATCTGGCAAGGTTTCTCTGTCTTCATTGGCTCTATCCAGGCGTATGTTTTTGTAACCCTTTCTATGGTTTATATTGGCAAGAAGGTTACACAAGAATAATTTTTCGGAGGTTTTATTATGACTACAGGTTTAAAGGATTTAGCTGCTGCACTTGTTGCTGGTATTGCTGCTTTGGCTGCTTCATGGGGGAATGGTAAGGTTATCTCAAAGACGATCGAAAGCATCGCCCGCCAACCAGAAAGTGCTGGTAACTTGAGAGCAACTATGTTCATCGGTGTTGGTTTGATCGAAGCCGTTCCAATCCTGGCTATCGTTATCGCTTTCTTGATTTTGTTCATGTAATTAACCAGTCGATAAATTACATTAGTTACTAAATTGAGAGAGAAGGATTGTTGATGGAATTTCAACCAGTATTCGCCGGCGCTGAAATCTCAATCATTAATACCCTTTGGTATTTAATAGTATTCAGTATCCTTTTGCTGGCCGTCAAGCATTATGCCTGGGGTCCGGTAAAGGACATGATGGAGAAGCGCCGTCAGAAAGTCATTGATGACTTGGATCAAGCTGCTAGCGACCGCAAGAAGGCTGAAACTTTGGCCAATGAACGGGAAGCAGCCTTGAAGAATTCAAGACAAGAAGCAACCCAGATCCTCTCTGATGCCAAGAGTAATGCGCAAAAGACCGGCAAGCAAATCGTCAGCGAAGCCATGGCTGAAGCTTCCGCTATCCGGGAAAAGGCCAAGGCTGATGCAGCGCAAGCTGAGACTGACGCCTTGAACGAAGCCCGCGAAGAGGTTGCTGATCTTTCTGTGACGATTGCGGAAAAGGTAATTGCTAAGAACTTATCTGCTGCTGATCAAAAAGATTTAGTTGATCAGTTCATTAAGGGGTTGAACGATTAATGGCCTTAAGTAGAGAAGAAACGGCAAGACGCTACGGAACAGCGATCTTTGATTTTGCCAAAGACAGCGGCAAGACTGAGCTCATGTACAGCGAACTGACTGAATTGAAGAAGGCAGTTCAAGCAGAGCCCCGTTTTGTTCAGGTTCTGAGCAATCCTGTTTTGGACGCCAAGCAAAAGAAAAGTCTTTTGACGGCGGTTGAACAGGGCTTTTCTGCAGAGCTTCAAGAAGTTTTAAACTTCTTGCTTAGCTATGATCGTTTTGACAACTTAGTTGACATCATTGACTACTACATTCACCTGTACAATGCTGCCAACCACATCGGAACGGGTGTCGCTAAGACTGTATTGAAGCTAGATGAAGATCAGCTACAGCGCCTTGCGGACAGCTATGCCAAGAAATATGGCTTGCAGGCACTTCATCTTGAAAATGAAGTTGATCCAGAAATTATCGGCGGCGTGGTCCTTGAGGTTGAAGGCCGCGTGATCGATGGCTCAGTAAAGCATCGATTGGAGAAAATCCGCGCCATGTTAACAAAGTAAGTATTATAAAGAGGTGAAACCATTGAGCATTAAAGCGGAAGAAATCAGCTCTTTAATCAAGCAGCAACTTGAACACTACGACGATAAGCTGGACATCGAGGAAGTCGGTGTCGTAACTTACGTCGGCGATGGTATCGCCCGCGCTCACGGCTTGAACAATGTCTTGTCAAGTGAGCTTTTGCAGTTCGACAATGGTGCCTACGGTATCGCCCAAAACTTGGAAAGCAATGATGTCGGTATCATCATTCTGGGCAAGTTTGACGACATCCGTGAAGGCGACCGCGTGAAGCGAACTGGCCGGATTATGGAAGTTCCAGTTGGGGATGCTTTGATTGGCCGGGTTGTGAATCCACTTGGCCAGCCAGTTGACGGCTTAGGCGAAATCAAGACTGACAAGACTCGGCCAATCGAGTCAAAGGCGCCAGGCGTTATGCAGCGTCAGTCAGTTAACCAGCCTTTGCAAACGGGTATTAAGGCCATTGATGCGCTGGTGCCAATTGGCCGTGGTCAGCGTGAGCTGGTCATCGGTGACCGTAAGACTGGTAAGACCAGTTTAGCGATCGACACCATTTTGAACCAAAAAGGGCAGGACGTAATTTGTATTTACGTCTCAATTGGTCAAAAGGAATCAACTGTCAGAGCACAAGTTGAAACCTTGAAGAAGCTTGGGGCGATGGACTACACCATCGTGGTTGAAGCTGGTCCTTCAGAACCGGCACCAATGCTTTACATCGCGCCATATTCCGGGATCGCGATGGGGGAAGAATTCATGTACGCCGGCAAGGACGTCCTGGTTGTCTTTGACGACTTGTCCAAGCAGGCGGTTGCCTACCGTGAACTTTCCCTGCTGCTTCGCCGGCCACCTGGCCGTGAAGCCTACCCAGGTGACGTCTTCTACCTGCACTCACGTTTGTTGGAACGGAGTGCCAAGCTGAGCAAGGAACTGGGCGGCGGCTCATTGACTGCCCTGCCAGTTATTCAGACTGAAGCCGGGGACATCTCCGCCTACATTCCAACCAACGTTATTTCCATCACTGACGGACAGATCTTCTTGCAAAGTGACATGTTCTTCTCCGGTACGCGCCCAGCTATCGATGCCGGGGCTTCTGTTTCCCGTGTCGGCGGGGCCGCGCAGATCCCAGCCATGAAGAAGGTTGCCGGTACTTTGCGGACCGACCTGGCTTCATATCGGGAACTGGAAAGCTTTGCCCAGTTCGGCAGTGACCTGGACCAGGCAACGCAAGCCAAGCTGGCCCGCGGCCGGCGGACCGTCGAAGTATTGAAGCAGCCGCTGCACAAGCCGGTTGCCGTTGAAAAGCAGGTTGTCCTGCTTTACGCTTTGACCCATGGCTTTATGGACGCTGTGCCAGTCGATGATATTGCTCGCTTTGAACAAGAACTTTACACCGACTTTGACGCCAACCATGCTGATCTGTTAGCTGAAATCAAGTCAACTGGCAAATTGCCAGATGAAAACAAGCTTCAAGAAGCTCTTCAACAATTTGCATCCAGCTTTTCATCAAGTAACAAATAGGAGGTAGACTATGCCTGCATCTTTACTTGAATTGAAGAAGAGAATTGCTTCTGTCAAGCAAACGAGTAAGATTACTGAAGCCATGCACATGGTTTCAGCAGCTAAACTGAATCAGACTGAAAAAAGAGACAAGGGCTACCAGGAATATAACCGGCTGCTGCACCAAACCGTGTCCCGGCTGATGAGTGCCAGCGTAATCAACCACTTGAACAAGGCTAATTACCGCCTGACGCAAGACAACATTGACTCCATCGACTACGATGATGTCTTTGGGATGGGGATCATTTCTGACATGATCAAGCCCCGTGAGGAAGTTCACTCCGTGGGCTACCTGGTAGTTACTGGTGACCGTGGTCTGGTCGGCTCCTACAACAGCTCAGTCATCAAGCAGATGATGAGCCTGGTAGCTGACGACAAGCTGCAGGGCAGAGAGTCCAAGATCCTGTCAGTCGGCAGCGTTGGCTCCCAGTTCTTCAAGAAGAACAACCTGAACGTTGTCTACGAAAAAGACGGCGTTTCAGACGTGCCAACCTTCAAGGAAACCCTGCCAATCGTCTCAACGGCGATCAAGATGTACTTGAACGGCGTTTATGACGAACTGTATGTTTGCTACACCCACCACGTGAATTCTTTGTCCTCAGCCTTCCGGGCCGAAAAGATGCTGCCGATAGTCGACCTTGACATCGGGACCATGGAAGCCAAGGAAAGCAAGAAGATTGAATTCGAAGTTGCCCCTGACATTGACAGCGTTTTGGCAACCTTACTGCCGCAATTCGCGCGGGCGGAAATCTATGGCGCCATTTTGGACGCCAAGACCGCCGAACACGCAAGTTCAATGACGGCCATGAAGAGTGCCACGGACAATGCTAAGGACCTTGTTTCTAGTCTTAGTTTGCAAATGAACCGTGCAAGACAAGCACAAATCACTACTGAATTGACTGAAATCGTCAGTGGTGCGAATGCACTTGAATAAGAGAAAAGGAGGTAGAAGTTTGAGTCAAGGTGAAATCGTTCAAGTAATCGGCCTTGTTGTTGACGTCAAGTTTTCAATTGGCAAAGACCTGCCAGACATCAACAATGCCTTGAAGGTCATCAAGTCAGACGACGACTCGATTATCCTTGAAGTTATTCTTGAACAAGGCGATGGCGTTTTGCGCTGCATCGCGATGGAATCTACCGATGGCCTTCGTCGTGGGATGAAGGTTGAAGATACTGGGAGCTCAATTTCCGTGCCAGTTGGTCCGGATACCTTGGGCCGGGTCTTCAACGTTTTAGGTCAACCGATTGATGGTGGTCCAGAATTTCCAGCTGACCACCCTCGCTCCGGGATCCACAAAGAAGCACCTAAGTATGATGAATTAACTACTAGCCGTGAAATCCTGGAAACTGGGATCAAAGTTATCGACTTGTTGGAACCATATCTTCGTGGTGGTAAGGTCGGTCTGTTCGGTGGTGCCGGGGTCGGCAAGACCACGATCATCCAGGAACTGATTCACAACATTGCCCAGGAACACAACGGTATTTCCGTCTTCACCGGTGTCGGGGAAAGAACCCGTGAAGGTAACGACCTTTACTTCGAAATGAAGGCATCTGGCGTTTTAGACAAGACCGCCATGGTCTTCGGGCAGATGAACGAGCCGCCTGGTGCCAGAATGCGGGTCGCTTTGACCGGTTTGACGATCGCTGAATACTTCAGAGACGTTGAAGGCCAGGACGTGCTGCTCTTCATCGACAACATCTTCCGGTTTACCCAGGCCGGTTCTGAAGTTTCCGCCTTGCTGGGTCGGATTCCTAGTGCCGTTGGTTACCAGCCAACTTTGGCAACGGAAATGGGTCAATTGCAAGAAAGAATCACTTCCACTAAGAAGGGGTCAATCACCTCTATCCAAGCCGTTTACGTTCCAGCCGACGACTACACTGACCCTGCGCCAGCGACTACTTTCGCCTACCTGGACGCGACGACCAACTTGGAACGTAGCCTGGTAGAACAAGGTATCTACCCGGCCGTTGACCCACTTGAATCAACTTCCAGTGCCCTGGACCCTGAAATTGTCGGCCAGGAACACTACGACGTTGCGACCCGGGTTCAGCATATCCTGCAACGTTACCGCGAACTGCAAAACATCATCTCCGTTTTGGGTATGGATGAATTGTCAGATGAAGAAAAGCTGATCGTTGCCCGGGCACGTAGGATTCAGTTCTTCCTGTCACAAAACTTCTTCGTTGCCGAAGTCTTTACCAGCGTTCCAGGCTCATACGTTCCAATCAAGGAAACGATCAAGGGTTTCAAGATGATCCTCGACGGCCATCTTGACGACTTGCCTGAAGATGCCTTCAGAGGCGTTGGCCCGATCGAAGACGTTTTGAAGAAGGCGCTAAAGATGGGGGTTACCCCAAGCGATCCGGAAGCAAAAGCCTTATTAGAAAAGTAGGTTGATGCATCATGGCAGAAGCAGAGAAACTGTTTAAGATCAATATCGTTACGCCAAACGGGTTAATCTATTCTCACCGTGGCAGCTCCGTCTCAATGCGGGCTATTGACGGCGACCGGCAGATTTTGTACAACCACCTGCCGATTTTAACTCCGCTGACAATTGGTGAAGTCCGGGTTCAACGCGGCGCCGATGTCGACCACAAGGTTGATCACATCGCCGTTAGCGGGGGGATCATCGAATTTGCCAACAATGTGGCAACGATTATTGCCGACAACGCAGAACGCGCGCGCAACATTGACCTCAGTCGGGCTGAAGCTGCCAAGCAGCGGGCCGAGGCGCACATCACGGAAGCCAAGGAAAAGCACGACGAGCAGTTATTGGAACGGGCTCAAATTGCTTTGCGGCGGGCTGTAAACCGGATTCACGTTTACGGCGCGTTGCACAAATAAGGGAAAAGAGCGGATTTATTCCGCTCTTTTTTTATGGTAGATTTTATTATGAGACAACTTGGAATTCACGCAATCATCAGCTTGGTGATCTACTTTGTTTGCATTGCCTTAGCCTTTCAGGCGATCAAAGCCGTCAGAATTGAGAAAATCATTCGGACCAGCCGGGTATTTGAAGTCCAGGTCTTCTTGATTTTTACGGCGATTGCCCTGGGCTATACGGTCGGCCAATTTTTGATCGCCTTGATAGATACTTCATTACAATTGTCTAACCTGTTTTAAAGAATAGGTTAAAGCTAAGCGGAAGCCGCTATACAGAGCGCTTTTATGGTACAATTAAAATTAATATGTTATGGAGGAAATAGATGTGTCAAAAGATATTGGTATTGATTTGGGGACCGCGAACGTTTTGATCAACGTTTCCGGCAAGGGCATTGTGATCGACGAGCCATCTGTTGTTGCCGTGGATACGAACACCAACAAGGTGGTCGCTGTCGGCACTGAAGCTTATGAAATGGTTGGCCGTACTCCTGGCAACATCCGCGTTATCCGGCCTTTGAAGGACGGGGTAATTGCTGATTTTGACATTACTGAAGCCATGCTGAGCTACTTTATTGAGAAGCTGAACGTCAAGGGCTTCATGAGCAAGCCGAACGTTCTTGTCTGCACCCCGACTGGCGTAACTTCAATTGAGCAAAAGGCCATCATCCAAGCCGCGGAAAAGTCAGGCGGCGGCAAGGTCTACCTGGACTATGAGCCAAAGGTAGCTGCCGTTGGTGCCGGCCTGGACATTTTCAAGCCGCAAGGTAACATGGTCATCGACATCGGCGGGGGGACGACTGACATCGCCATCCTGTCCATGGGCGAAATCGTGACTTCCAAGTCCCTGCGCTATGCCGGGGACCGGATGAACCAGGCCATCGTCAACTACATCAAGGCTAACCACCAGCTCTTGATCGGGATGCGGACGGCGGAAGCCATCAAGATTGAAATTGGTGCCGCTACTGATCCAGACCCGGACGCAAGCATGAATGTCCGCGGCCGTGACACGATTGACGGCCTGCCAAAGCAGATCAAGGTAAACAGCTCTGAAGTAACTGAGGCCCTGCAAGAAGGCCTGCAAAGCATCATTGACACTACCAAGCAGGTTCTGCAGGAAACGCCGCCGGAATTGTCCGCTGACATCATCGACCGCGGGATTATGATCACCGGTGGTGGCGCCTTGCTGAAGAACATCGACAAGCTGATTGCCGACAGCCTGCTGGTTCCGGTTTTGATCGCTGAATCACCGCTTGAATCAGTTGCTTTGGGCACTGGCATCCTGCTGCAGCATATTGAAAAGCACGAACGTCACTAATAATGCGTCAAATAATGATTCTTCTAGTCCGCTTTTACCAGCGGGCAATCTCACCAATTTTGCCGGACAGCTGCTGTTTCTACCCGACCTGCTCCAGCTATATGATCACTGCTTTGGAAAAGCAAGGTCCGCTTTTGGGACTGCTGATGGGCCTGGCAAGGATCCTGCGTTGCAATCCATTTAACCGAGGCGGGGTGGATCCAGTACCGGACAAGTTTACCCTTTTGCGCAATCCCCACCCAGAAGAATATGAGGACGAAATTATTGCCAGAAAATTCCACAGTCACTAACGAGGAGGGAATATGTCAAGAAATCAAGAAAACATCGGGATCGAGGTCAACGAACTGTCTGGCCGTCGGGTACCGACTTGGGAAGTAGTTATTCCAAAGAAGCGCCAGATCGGCTTGATCGAGCAGGTTGACGGCAAGTTCCGGGTAACCAGCAGCAAGTCCAAGAATGTGATGTTTGCCAAGAGCCTTGATGCCGGCATCAACGATCTGCTGGCCTACTTCACCTTGCACGAAAAATAATTTTTACGAATAAAGTGATAGTTAATGGCAAAAGTTCAAGAAGAAAGCAAATGGTATGACCGCATCGCCTGGGGAGTTATCATTCCCGTGGTCTTGCTGTCATTCGTCAGTTTCTATTCAATTTACAACGCGTCAGTCAACGACTCGACCTATGGGACGCCAACCAGAACAGTTGCCATGCAGATTGTCTGGTACACGGTTTCCTGGCTGATGGTGGCCTTCATCGTCCGCTTTGACGCCGAGCAGATCTTTAAGCTGGCCCCCTATCTGTATGGCTTGGGGATCATCATGCTGGTCGCGGTCCTCTTCCTGTATGACCGGACAACGGCTGCCAGCAGCGGGGCCAAGAGCTGGTTCGTCGTCGGACCTGTCAGCTTCCAGCCCTCAGAAGTCATGAAGCCGGCCTTTATCTTGCAGCTGGCCCGGGTCGTCAGAGAGCACAATGCGCGCTATGCCCACAATCTCAGAAATGACTGGCTCTTGATCGGCAAGGTCATGTCCTGGTTCCTGCCGGTGGCCATGCTGCTTATGCTGCAGCCTGACTTTGGGACCACCCTGGTCTTTGTCGCGATTACCGCGGGGATTCTCCTGGTTTCAGGGATTTCCTGGAAGATCATCATCCCGGTCTTTCTGCTCATGGTGGTCATGGGCGTCGCTGTCATCCTCCTGGTCTTTACCAGTGAAGGGCAGACGATTCTGCGCCACTACTTCAAGACCTATCAGCTGGAAAGAATCAAGTCCTGGAGTGACCCGTCAGGGGACAACTCCAACAGCGCCTACCAGCTTTGGCAGAGCATGAAGGCGATCGGGTCCGGGCAGATTTTTGGCAATGGCTTTAACAATATCAAAGTCTACGTGCCAGTCCGGAACTCAGACATGATCTTCTCCGTGGTCGGCGAAAGCTTCGGCTTTGTCGGCGGGGTGGCCTTGATCGGAATTTACTTCGTCTTGATCGTGCAGATGGTCAAGATCACTTTCTCGACCAAGAACGCCTTCTATTCATACGTGTCCACAGGGATTATTATGATGATTTTGTTCCACGCCTTTGAAAATATCGGCATGAGCATTGATTTACTGCCCCTTACCGGGGTGCCCCTACCATTTGTTTCACAGGGTGGGTCAGCCTTGATCGGGAATATGATCGGGGTTGGCTTGATCCTCTCGATGAAGTGGCACAATAAGGACTACATGTTTAGCACGGCTGGCGACTTTTAACTGAATTTTTGAGAGCATACGAAAACCGCCTCGGTCAATCGACCGGGGCGGTTTTATTTATTTTACTGGACTTAGTCCAAGCCAGCCTTGTTGTGCCGAACGACCAGGATGTCGCAGTCAGCAGTTCTGGTGACGTATTCAGTCACGCTGCCGATGAGCAGGCGTTCAACGGCGTTCAAGCCGGTCGCGCCGACGACGATCAAGTCGATGTCATGCTTCTTCGGGAATTCCCGGCTGATGATGGTCTTTGGTGAGCCGAATTCGATGGAGTAGTGGACTTCCTTGACGCCGCTGTCTTGGGCAGACTGGTAGTACTTTTCCATCTTCTTCTTGGCGTCGTTGGAAACCTGCTCAACCATGGCTGAGTCAAAGCTGGAAACGTTCTGGAAGGACCGCGTGTCGATAACGTGGAGAATTTCCAGGCTGGCGTTCATGTGCTTGGCAACCGTTACGGCCTTCTTGAAAGCCAGGTCAGCTTCCTTGGAACCGTCAACGGCAACTTGGATATGTTTGTATTGGTATTGTTTAGTCATTTTTGCCACCTCTTCTTGTCTCTATTTTACCAAAAAAATGAAAGCATTTTAATAAATTTACTGATTGTTTTGCGAAAGCAGGAGGGCGAAGATAAAAATCGTCGCTGAGCCTAAAAAGAGGGTGATCAAGTTGAGATACTTGTTGTCAAAGAAGAGCAGGACGATTCCCAAGAAGCTGATCGCCAGGAGCGTCCACGAGCAGATGGTCATCAAGCTATGGAGCTCCGGGGAGCTGGAGACGTCGAAGACCAGGAAGGAGCCGTTTTTCCGGTGCCAGAGGTACCAGGCGGTCAGCAGCAGGCAGGCGATAAAAATAATCATGAAAATACGGATGTAGAGCATCGGTTAAACTTTCTAGTTTTCACAGGAAGTGAAAACACACTGAGTAAGCTAGTGGCAGGAATAAACAAAAAAGCGGCCCGAAGGACCGCTGTTATTGTCTAAGAAAATCCGAGTTGACCAAAGCATAAATGGCGCTGTTGATCCCGTAAAGAATTTACAAAATCCGGCCCGTCGCGCAGTGAATATGGATTCTGCGTGAGCAGCATTCCGATTCAGTAGTTACTGACAGGCCACCACGTCCTTAAGTTTGATCGGTCAACTAATTACAAATAAGCTTTATGACGATCAACTCAGATCACTTATTATAATATAGAACCCAGCAGCCTTTGTCAAGTTAAATTACAGCGCTTTCATTTACCCTTAAGGCCTGCTTTCTGCAGGTCATGCAGGCGCTGGTACTGGCTCTTAAAAGCCGCTTCAAATTTGCTCTCGCCCTTAGGGGCAAAATACTGCTTGCCTTGCATGCGGTCAGGCAGATAAGCCTGGGCCACCCAGTCGCCCGGATAGTCGTGGGGGTAGAGGTAGCCAGTCCCGTGGCCCAGCTTGCTGGCCCCCTTGTAGTGGGCGTCTTTCAACTGGTCGGGAATCTGGCCGACATTGCTCTGGCGGATGTCGGCTAGAGCCGCGTCAATGGCCGTCATCGCAGAATTGCTCTTAGGAGACAAGCAGAGCTCGATAACAGCGTTGGCCAGGGGGATCCGGGCTTCCGGCAGGCCCAGCTGCTGGGCCGCCTGTACGGCCAAAATAACCCGCTCACAGGCCGGGGGATTGGCCAGGCCGATGTCTTCGTAGGCAATCACGCTGAGGCGGCGGCAGATTGAGACCAGGTCACCTGATTCCAGCAGCCGGCCCAGGTAGTGCAGGCCCGCGTCAGTATCTGAGCCCCGGATGGACTTTTGAAAGGCGGATAAGAGGTCGTAGTGGCCGTCCCCGTCAGCGTCAAAGTTCTGGATCTTCATTTGCAAGGAATCCGCCATGTCATCCAGGGTGACCGTTAAGGAGGAGGCATCTTTGCCCTCAGCTTCCAGTTCCTGCTTGGTCGACAGGACTGCCAGCTCCAGGCTGTTTAAAGTGGCCCGCAGGTCTCCGTTGCCCTTTTGCGCCAAAAATTCTCCTGCTTCTTTCGTCAGCTTGGCATGGTACTTGCCCAGACCTCTTTCTTCATCGGTTAGGGCCCGGTCAACAGCTGTCAGGATCTCTTCCTCAGTCAACGGCTTCAGTTCAAAAATCTGGCAGCGGGACCGGATGGCCGGGGAGATGGCCAGGTAGGGATTTTCCGTGGTTGCCCCGATCATAATCACCTGGCCGGATTCAAGCAGCGGCAAAAGAAAGTCCTGCTTGACCTTGTTGAGCCGGTGAATTTCATCCAGCAGCAGAACGACCGTCCCGCTCATCTTGCCTTCAGCGGCGACCTGGGAGAGTTCCTTTTGCCCGTCAGTCGCCGCGTTGAGCTGGCGGAAGGCATACTTGCTGCTGCCAGCAATCGCGCTGGCAATGCTAGTCTTGCCAATGCCGGGCGGGCCGTACAGGATCATGGACGAGAGCTGCCGGGCCTCAACCATCCGGCGGATGATCTTCTTAGGACCGACCAGGTGCTGCTGGCCGACGACCTGGTCGATGGACTGGGGCCGCATCCGGTAGGCTAAGGGCTTCATTTATTGCCCCCGAAGAATCTGGCCAAAAAGCCCTTTTTCTTTGGAGCAGGCAATTTCTCAGCCGGCAGGGGCGGGGCGTAGACCTGGGTCAATTCGATCCGCATCCGGTTGATGGCCTCCTTGCTGACGACCAGGATGGCGGAATCATCATCGCCTTTTCTGGCACTTTCGTCATTGACCATGCAGAAGGGAACCTGCTCCTTGCTGGCCCGGCTTTCAATCTGGCCGACAAAGGTCGGGTTGGGGGTGTTGGCGTTGATCAAAATGGTGTAGCCCTTGTAGTCGGCAAAGTGGTCCATGAAGAGTTTGGTCAACTTGGCGTCTTCACAGTCCTTGATGGTCATGCGCACGAAAACCCGCTCCCTTAAAGAACCCAAAAAGCTCCGCCGCTCGTCGGGCCTGGTCTGCGGAGTAATGTCATTCGCGGCGTTTTCGACTCTTTTGGTTAAATTTTCAGTCATGGCTTGATCCTTTCTAAAAATTAATACTGTCTTTTTCTGGCTCTAAAGCATATTATAACTGAACTTTTTGGGCAAGAAAAAAGCCTTTCCCAAAACTGGGAAAGACTTTGAAGCCGAATTGATATTACAGCAACTTGTTGTAGTATTCAACAACCAGGGCTTCGTCAATTTCTGGTTCCATTTCGTCACGTTCTGGGAAACGAACCAATTGACCTTCCATCTTGTCTTCGTCAAATGAAACAAATGATGGACGTGAAGCAACAGCTTCCAAAGCGTCCTTAACTTGTTGCAGGTTCTTTGACTTTTCCTTCAAGCTAATGGTTTGACCAACCTTAACTTCGTATGAAGGAATGTCAACGCGCTTGCCATCAACAGTGATGTGGCCGTGGTTTACCAATTGACGGGCTTGTTCACGGGTAGTAGCCAAGCCGAGACGGTAAACAACGTTGTCCAAACGACGTTCAAGCAAGATCATGAAGTTGGTACCGTGTTGGCCTTCACGGATCTTACCAGCGCGGGCAAACAAAGTACGGAATTGGCGTTCGTTCAAACCGAACATCCAGCGCAGCTTTTGCTTTTCTTGCAATTGCATGCCGTATTCTGAAAGACGGCCGCGGTGGTTAGGACCGTGTTGACCTGGAATGTATGAACGACGAGCAAGTTCCTTGCCAGTGCCTGACAAAGAAATACCCAATCTTCTTGACCGCTTCCAACTTGGACCAGTGTATCTTGACATATTAAAATTCCTCCAATAAAAACAATAAAAATTGTTGGAGTAAAATAATCACAATATAAGCTCAACATTCGTGCATCCCGAGTTTACATTTTCGCCCGTGCAGCGTGGGTTACTCGTTCACTAAACGTCCCGGGATGTTGACGTTCTTGTCGCTTATGGCTGCAAATATTTTACACGTTGACCATTATAAGGGCTTTAGGCCCGGAAAGCAAGAAAAAACGCAGAAAGTCTGGCAAAGTAGAAATATTTCGGGGGCTAGTTTGGTATAATTAACTTTAGTTCGGAGGAGAAAGATATGTCATCAACACAATCTCTACTACTCATCACTTTAATTATCACGATCATCGTAGTGGTCATGGCCATGCTTTTGATCAACCGCCGGCAATTGCGCGATATTGAAGAGCTCGACAATGAGCTGGGCAATATGGAAGACCTGCACCTGGAGCGGGCGATTGGCAAGCTGGACCAAATGGAACTGGCTGGGGAAAGCCTGGCTACCCTCAATACCTGGAAGAAGAGCTACCAGAAGGCGGCTGAGCTTTTTCCGGAAATCCAGCGCTTGATTGAAGACGGGGCGGACGAAAATGCCCGCTACCACCTGGTCAAGTCCCACCAAAGCATTAAGCAGGCCAGAGAACTGGTTGACTCTGTTTCTGAAGATGTCAAGAATTCATCTGACGTCTTCACCCAGCTTTTGGAATCAAACCGGGAAAACAAGGCCCAATATGACGAATTGATGCAGAGCTACTGGGAAATCCGCAAGGAAATTCTGGCCGATTCCTTTGACTACAGCGTGGCCCTGGAAGAAATCGAAAACCGCTTGTCAGCCATGGAGGAAGATTTTGCCCAGGCCAAGAACCTGTCAGCCCAGGGCGACCATGTAGAGGCTAAGCGGGTCTTGTCAAAGATCCGGGCGGACCTCACGGCCTTAAAGACCAAGCTACCAGAAGTTAAAGAGGATCAGCACGACCTGCAGACCGTTTTTGCTGACCAGCTGGATGAAATCGCGGCTGGCTATAAGGAAATGCGGGATGCCAAGTACGGCTTCGGCAGCCTGGACGTTCTGCTGGAAATCAGGCAAAGCAACGACCAGATCGACCGGTCCCTGGCGGCTTTGGCCCAGCTGGACTTAGAAGAGACCAGCAAGGGGATGAAGAAGGTCGAAAAGGAAATCAAGACCCTCTACGGAATCCTGGAGAAAGAATACAAGGCCCGGCCTTTTGTGGAAAAGAACCAGGACAAGCTGCAGCGGCTCTTGACCCACCAGCAGACCGTCAGCCAGCAGCTGATCAAGAAACTGCGCCATATCGACGAAAGCTATGAACTGACCCACGGGGAACTGGACGAAAGCCGGGAGCTTGAAAGAGAAGTCCACAAGATGGATTCTGACTACATCCGGGCCAGCCAGCGGATCGCTGACGGCCGGGCCGTCTACTCTGAAGTCCAGGACGACTGGATCAAGATCCTGGGCCGCCTGCAGGAGATTGGCAAGCGCCAGCAGGAATTGTCGGAAGCAGTTGACGGCCTCTATGAGGCGGAAGAAGTGGCTCAGCGGTCAATCAAGGAATTCAAGCAGCAGGTCTCTTTGGTTTACCGCCACCTCAGCCGGCAGAATCTGCCGGGGATTCCGGAAGGCTTTTTGCAAATGTACACCCTGGTCGTTAATGAAATCAGCAAGACCAGCGGGGAGCTCAACCAGGTCCGGATCAACATGGAGAAGATCTCTGAAGAACTGGTGCAAATCTCAGATGACGTTGATCGCCTGCAAAGAGAAGCGGAAGACATTATCAGTTCAGCCAATCTTTTTGAACTGACCATGCAGTATTCCAACAAGTTCCTGGACAATGAAACTGTCGTCCGGGCCCGCAGAAATGCCATGAAGCTGTATGACCGGGACTACAACTACAAGGATGCCCTGGACACGATCGCCACGGCGGTGGAGCGGGCTGAGCCAGGCAGCTACCAGCGGATTGAAAATGCCTATTATCAAGAGCAAAAAGAACTTATTGATTGAAGTCAAGCGGATTTTGGACTAAAATAGAATATCATTTGTAATTAAGCGGTCATTAAAATGGCCGCTTTTTTAAGGAGCAAGAAGCGTGATTTATTTTGACAACAGTGCCACGACCAAGATGGCGCCTAAAGCATTAGAGACCTACAGCCAGGTGGTGACCAAGATTTGGGGCAACCCTTCCAGCCTGCACAAGCTGGGTGATCGGGCCCATGGCCTGCTGGAAGCTTCCCGCAAGCAGGTTGCAGACTTGCTGGGAGTAAATACCGACGAGATCTACTTTACTTCCGGCGGGACGGAATCCAACAACACGGCCATCAAGGGGACGGCCTGGGCCAAGCGGGAATTTGGCAAGCACATCATTACCTCATCCGTTGAGCATGCCTCAGTGGCTAATACTTTTACCGAACTGGAAAACCTGGGCTTCCGGGTTACCCGCCTGCCAGTTGACAAGGAAGGCCGGGTTAATCCGGAAGACTTGAAAGCGGCCCTGGACAAGGATACGACCTTGGTCTCCATTATGGGCGTCAATAACGAAATCGGGACCATCCAGCCGATCAAGGAAATTTCTGAAATCCTGGCAGACTACCCGAACATCCACTTCCATGTTGATAATGTCCAGGCTCTGGGCAAGGGGATTTGGGACCAGGTCTTCACCTCCCGGGTCGACATGATGAGCTTTTCTTCCCACAAGTTCCATGGCCCGCGCGGTATCGGCATTTTGTACAAAAAGCGCGGCCGGATGCTGATGCCTTTGTGTGAAGGCGGCGGCCAGGAGAAGGGCTTGAGAAGCGGGACGGAAAACCTGGCAGCCATCGCGGCCATGGCCAAGGCAGCCCGCTTGCTTTTGACGGACGAAAAGGAAAAGGCGGACAGAGAATACGCCATTAAGGAAAAGATCAGCAAGTACCTGGCAGGTAAGCCGGGCATCCATATCTTCTCTCCTTTGAAGGCGGACTTTGCCCCCCACATCCTCTGCTTTGCTTTAGAGGGGATCCGGGGCGAGACCCTGGTCCACACTTTGGAAGACCAGGACATCTACATTTCCACCACTTCTGCCTGCGCCTCAAAGAAGGCGGACGAAGCCAGCACTTTGGTGGCGATGAAGACGCCAGACGCGATCGCCACCAGTGCCGTCCGGCTAAGCTTTGACGAAAGCAATACTTTAGAAGAAGCAGACGAATTCATCGCGGCTTTTGACGAGATTTACCAGCACTTTTCCAAGATCAACCACTTAGGAGAATAAATTTGCAATACACAGAAATCATGATTCGCTACGGCGAACTGTCCACCAAGGGCAAGAACCGGAAGGACTTCATCAACCGTCTTGCCAGCAATGTCCAGAAGGTTTTGCACGACTTCCCGGATCTGAAGATCCAGACCCACCACGACCGGATGCACATCCTTTTGAACGGGACCCCTTTTGAGCCGGTCAATGACCGCTTAAAGGTCGTTTTCGGGATCCAGACCTATTCCCCAGTCATCAAGACTGAAAAGAGCCTGGAAGCCATTGAAAAAACTGCCCTAGAACTGATGCAGGCAACTTACAAGGCCGGCATGACCTTCAAGGTCAATACCAGAAGAAGCGACCACAAGTTTATCTACGACACTAACCAATTGAACCAAATGGTGGCTGACTACCTTTATAACCACATGGAAGGCCTGCAGGCGGAAATGAAGCACCCGGACATGGTCCTGCTTTTGGAAATCCGCCAGGACGGAGCCTACATCTCCAACCAGCTTCTGCATGGGGCAGGCGGGATGCCAGTTGGCACGGCCGGCAAGGCAGTGATGATGCTGTCCGGCGGGATCGACTCTCCGGTAGCTTCCTACCTGGCCATGAAGCGAGGCGTGAACATCGAAATGGTCCACTTCTTCTCACCGCCATACACTTCTGAAAAGGCCCTGGCCAAGGCCAAGGAACTGACCAGCATTCTGGCCAAGTACAGCGGCCGGATCAACTTCATCGAAGTACCTTTTGCTGAAATCCAGGAAACGATCAAGGAAAAGCTGCCTGAGGGCTACTTGATGACTGTTCAGCGCCGCTTCATGCTGCGTTTGGCCGATATTATCAGGGAAAAGCGGCACGCTTTGGCCATCTTCAACGGGGAATCAGTTGGCCAGGTGGCTTCCCAAACCTTGGAATCCATGGCAGCCATCAATAACGTGACGACCACTCCAGTATTGCGGCCAGTTGCCACCATGGACAAGACTGAAATCATCGCCAAGGCCGAAGAAATCGGAACCTTTGACCTGTCCATCCAGCCATTTGAAGACTGCTGCACCATCTTTGCCCCGCCGCGGCCAAAGACCAAGCCAAAGATCGACAAGGCCCGGGAATATGAAAGCCGCCTGGACGTTGACGGCTTGATTGAGCGGGCCTTAGCCGGGGTCAAGGTTACTCCGATCTACCCGGGCCAGAGCTTCCTTGACGACCTGGATGAAGAAGACGCGGACCTGCTTTAATGCTGCGCCTGGACAAATTTTTGGCCAACATGAAGGTGGGCTCCAGGTCCCAGGTTCATGAGATCATTAAGGCCGGCCAGGTGACGGTCAACGGGAAGGTCTGCCGGTCAGCCAAGCAGAAGGTGAAAGAGGATGCGGAAGTTCTGGTTAATGGCCAGGCAGTTGTCTACCAGCAATACCACTACTTTTTGCTCAATAAGCCAGCTGGCGTCTTATCGGCAACAGAAGACTCCCGGCAAAAGACCGTCCTGGACCTGCTAAAAGACCAGGACCGTTATCAAAAAATCGCTCCAGTGGGCCGCCTGGACAAGGACACGACCGGCCTCTTGCTTTTGACCAATGACGGCCAATTGGCCCACCAGCTCCTGGCTCCGGAATACCATGTGCCTAAGACCTATTACGCGCTTTTGGCCGGAGTAGCCGACGAAGAAACGGCCAAGGCAATTGCGGCAGGCCTCACTTTAAAAGATGGAACGGAATTAAAGCCGGGCCAGCTGAATATCTTGCGGCAAGACAAGGACCAGGAGCAGTCAGAAATCGAGATCACCATTACTGAAGGCAAATACCACCAGGTCAAGCGGATGTTTGCCTCCCAGGGGATGAAGGTCTTAAAGCTTAAGCGGCTGAGCATGGGGCCTTTGACTTTGCCGGCTGATTTAGCTCCTGGCTCTTACCGGCCTTTGACAGAAGAAGAGCTAGCGGCCTTAAAGCAAGTTGCCCTTTAATGGCTGAAAAAATTATGCTATACTTTGTGACAAAGCCAAGATCAAGAGGTGGCGCTTCATGACAGAGAAAGGTCATTTAAGCTGAGAGACCGGAAGGCGCCTGGTAGCTTGATTCGCTGGCCGGCTGAACCAGGAGTAAGCCGGTCCGGTACCCGCACCGTTACCGCGTTTAAGCGGAGCATTATGCTCAATTTAGGTGGTACCGCGGTTATATATCGTCCTAGACATTTACTTGTCTGGGACTTTTTTTGGAGGAATTTATGACAGAATTAGCACCAAAATACAACCCGCAAGAGGTTGAAGCTGGCCGCTATCAAGAATGGCTGGACGAGGACTTGTTCAAGCCGTCCGGTGACAAGAAGGCCAAGCCTTACTCAATCGTTATCCCGCCGCCAAACGTTACTGGCAAGCTGCACCTGGGCCACGCCTGGGACACGGCAATTCAAGACACCTTGATCCGCTACAAGCGGATGCAGGGCTACGACACCCTTTACCTGCCAGGCATGGACCACGCCGGCATCGCCACCCAGGCCAAGGTTGAAGCCCGCCTGCGTGAACAAGGGGTCAGCCGCTATGACCTGGGCCGGGAAAAGTTCGTGGAAAAGGTCTGGGAATGGAAGGACGAATACGCCAACATCATCAAGAGCCAGTGGCAAAAGCTGGGTCTGTCCCTGGACTACAGCCGGGAACGCTTCACTCTTGACAAGGGCCTGTCCAAGGCTGTCCGCCGGGTTTTCGTTCAGCTCTATAATGAAGGCTTGATCTACCGGGGCGAATATATCATCAACTGGGACCCGAAGCTGCGGACGGCTTTGTCTGACATCGAAGTTGTCCACCAGGATGACCAGGGGGCCTTCTACCACATCAACTACCCGCTGGCTGACGGCTCTGGCAGCGTGGAAATTGCTACTACCCGGCCGGAAACCATGTTTGGTGACACGGCCGTGGCTGTTGCCCCAGGGGATGAACGCTACAAGGACCTGGTGGGCAAGAAGCTGATTCTGCCGCTGGTTGGCCGGGAAATCCCGATCATTGAAGACCAACACGTCGACCCGGAATTCGGGACCGGTTTGGTGAAGATCACTCCCGCCCACGACCCGAACGACTTTGAAGTTGGCAACCGGCATGACCTGCCGCGGATCAACGTGATGAACGATGACGGGACCATGAACGACAAGGCGGGTAAGTACGCCGGCATGGACCGCTTTGACTGCCGTAAGCAGCTGGTTGAAGACCTCAAGGCTGAAGGCTACTTGATCAAGGTTGAACCAATCGTTCACTCAGTTGGCCACTCTGAACGCTCCGGCGTGCAAGTTGAACCCCGCCTGTCCACCCAATGGTTCGTCAAGATGAAGCCACTGGCTGACAAGGTTTTGGAAAACCAAAAGGGTGAAGGCAGAGTTAACTTCGTGCCTGACCGCTTTGAAGGCACTTTGGAGCGGTGGATGGAAAACGTCCACGACTGGGTCATCTCCCGCCAGCTCTGGTGGGGCCACCGGATTCCTGCCTGGTACAACAAGCAGACCGGGGAAATGTACGTCGGTGAAGAAGCGCCAGCAGACATTGAAAACTGGGACCAGGACCAGGACGTTTTGGACACCTGGTTCTCCAGTGCCCTCTGGCCATTCTCAACTTTGGGCTGGCCGGATGAAGATTCAGCTGACTTCAAGCGCTACTTCCCAACCAACGCCCTGGTAACTGGCTACGACATCATCTTCTTCTGGGTTTCCCGGATGATCTTCCAAAGCTTGCACTTCATCGGCGAGCGGCCATTTGACAATGTCGTTTTGCACGGTTTGATCAGAGACGAGCAGGGGCGGAAGATGTCCAAGTCCCTGGGCAACGGGATCGACCCAATGGACGTCATCGACAAGTACGGCGCTGACGCTTTGCGCTGGTTCCTGTTGAACGGGACCGCGCCTGGCCAGGACACCCGCTTCAGCTACACCAAGATGGACGCTGCCTGGAACTTTATCAACAAGCTCTGGAATGCCAGCCGTTTCGTCATCATGAACCTGCCGGAAGATGCCAAGCCAGCCCAAAAGCCGGATATCAGCAAGTTTGACCTGGCTGACGCCTGGATTTTTGACCGCTTGAACCACACCGTTAAGGAAACTAACCGCCTCTTTGACGAATTCCAATTCGGGGAAGCCGGCCGGGAAATGTACAACTTCATCTGGAACGACTTCTGTGACTGGTACATCGAAATCTCCAAGGTTGCCCTCTACGGCGACGACGCAGAACTGAAGGCCAGAAAGCAGGCCAACTTGACCTGGATTCTGGACCAGATTCTCCGCCTGATCCACCCAATCATGCCATTCGTGACGGAAAAGCTCTGGCTGTCCATGCCGCATGAAGGCAAGTCCATCATGACCGCTGCTTACCCGGAAGCCCACGCTGAATTTGACAATGCCAAGGCTGACGAAGACATGGCCTTCTTGATCGAAATCATCAAGGCTGTCCGGACCATCCGGATGGAAGTGAACGCTCCAATGTCTAGCGCCATCGACATCTTGATCCAGCTGGATGACGAAAAGAATGAAGCAATTCTGCGGGACAACATGGAATACGTGGAAAACTTCCTGCACCCGAAGAAGCTGGAAATCTCCGGCAAGATCAAGGCGCCGAAGTTAGCCAAGACGGCTGTGATCGCCGGGGCCCAGATCTTCGTTCCACTGTCAGAACTGGTTGACCTGGACGAAGAAATCGCCAAGATGGGCAAGGAAGAAGCCCGCCTGGAAGCTGAAGTTGACCGGGCAAGCAAGAAGCTGGCCAACAAGGGCTTTGTTGGCCACGCGCCAGCTGCCGTAGTTGAAAAGGAAAAGGGCAAGCTGGCCGAATATGAAAACCAGCTGGCCGGCGTGCGCGACCGCATCAAGGAATTGAAAGAAAGTCGTTAAAGACGTGAAATTTAGGACAGTTAATGAACTTACCGCTTACCTCTATCATTTGCCGCGCTTGCACGAAAAGAGCGACCTGACCTATGTCAAAAGGGTGCTCAAGGCTCTGGGGGATCCCCAGGACAAGGTCAAGTGCTGCCACATTACTGGAACCAACGGCAAGGGCTCAACTGCATATTACCTGAACAATCTGCTCCAAAAGGCCGGTCAGCAGACTGGCCTTTTTGTTTCGCCCTTTATCATCCGCTTTAACGAGCGGATCCAGCTGAACGGGCAGGCAATCGCGGATGAGGACCTGCTGGAAGTGGCAAATGAAGTTGAAGCCGCAGTCGGCCACTTGCGGGAAGAAGAGGCAGATTTTGCCCTGGTGACCTTTGAATATGAAGTTGCCATGGCCTTCCTCTTTTTTGCCAAGCAAAAATGTGATTACGCGGTTATTGAAGTCGGCATCGGGGCCGAGCATGACAAGACCAATGTGATGACGCCAGTAGTCAGCTTGATTACCACTATCGGCCTTGACCATGAGCAGATCATCGGACCGACTTTGGCTGATATTGCCAAAGAAAAGAGTGGGATCATCAAGCCGGCTGTCCCGGTCATCCTCGGTGACATCCCAGCCAGCGTAAAGGGAATCGTTGAAGAAAAAATAACTAAATCAGCTAGTCCTTCTTACTGGCTGGGCCGGGACTTCCAGGTCAAGGAAGAAAAAGCAGGCTATAAGCTTGCAGTTGCCGGGCAAAATTACCAGTTGCCGGCCTGGCCCCGGCCAGAAGCTAAAGACGCGGCCATGGCCTTGGCAGCTTTTGCCCTTTTGCCGCTTACTTTAAGTGAAAAGGCAGCTGAAGCCGCCTTAACCCAGACCACGGTTCCTGGCCGCTACCAACGCCTGGAAAAGGCGGGATGCAGCTTTTTATTGGACGGGGCCCACAATGTCCAGGCTGGAAGCGAACTTTTGCCATATGCCCGCCGCCTGGCCAAGGATAAAGACGGCCGGCTTTTGGTCTTAGCTGGCATGATGAAGGACAAGGACTTGAGTGATTTTCTGACTCTGCTGAAAAATGAAAAAGTCACCTTGACCAGCCTGGCTTATCCGCGGGCAGCTAAAAAAGCTGACTTCCCGGCCTGGGTCCAGGAAAAATTTGCCTATGAGGGCGATTTGGGCCAGGCATTAAATCAAGTGATGGCGGAAGCTGGAGACCGGGACTTGATCTTGGTTACGGGTTCATTTTACTTGGTCAGCGCGGTCTTGCAGTTTCTGCAGAGTGCCTGAGCATGAAGGGGGAAAATATGCGTGTTGCAGGTTTAAAGACGGACAAGCAGGGGGTCATTTTTGATATGGACGGCCTCCTGGTCAACTCCGAAGAGTTCTACTGGCAGGCCAATATCCAGGCCGCCCGGGAATACAAGCTGGGCATCAGCGATGATGCTTACCTGGACCTGGTTGGAGCCAGCGTCAAGGCCATGGATGCCTTTTATGAAAAATATTTTCCAAGCGATGAGGTCCGCCAGGCTTTTGTCAAGCGGACCGACGACCTGGTCTGGGAATGGACCGACCAGGGCAAGCTGAAGCTGAAGGCCGGGGTCAAGGAGGCTCTGGAGTACTTTAATGACCTGGGCTTAACCGTTGGGATCGCCAGCAACAACTATAAGAGCGTGGTTGACCACAATCTCTGGGTGACCGGCTGCCGGAACAGCTTTGACTTTATCGTCACCCATGACGAAGTTGCTGAGAAAAAGCTCCGGTCCAAGCCTTTCCCGTACCTCTATCTGGCTGCCCAAGAGCGCAGCGGCCTGGGTAAAGACCAGCTCTTGATCTTTGAAGACTCCAGCATGGGGGTCGAAGCGGCGGAAAATGCCGGGATTGACTGCGTCATGATTCCCGACATCAAGCCCGCTTCAGCCGAAGACCGGGCCAGAGCCCAGCTGATTTGCCCGGACTTTTTTGACTTTTTGAAAAAAATTTCTTAGTTTTTGGCGTAATTAGTAGTAGAGCGTAAAAATAAGGAGGAAATGCAAATGACCGAAACTACGCAAAACTACTATTATGTTGAAAGTGACCGTGACCTGCTCAAGCTGCTCTTTGACCAGCTGCCCTGCCAGAGTCTGGAAGACCTGTTGCAGCTACTGGATCAAAAGCACATTGCCAGCTTCAAGGACATCTTGGACTACGCGTCAGGACCGGACTGCCCCAATGACCTGTCCTTGACCATCGAGGTGGCCATGGACCGGTTGCGGCGGACTGACATGCGGCGCAGCTCTGACTGGGCCGGCAGCTCTAAGATTGGCAACTACCTGGCTAATAAACTGCTGGGGCAAAAGCAGGAGCAGTTCTGGGTCCTCTATTTTGACCAGCAGCAGAATCTCCTGGGGGAAAAAATGCTTTTCCAAGGCACCCTGGACCGGTCCTGGGTTCACCCCAGAGAAATCTTCCGCTGGGCGGTGGTCTACGGCTGCGCCAGCATCATCGTGGCCCACAACCATCCCAGCGGGGCGCTGACCCCGTCAGACAATGACCTGGAATTGACCAAGGGCTTGAAAAAAGCCAGCAAGATCATGAAGATCACCTTTTTGGACCACTTCATCATCGGCGGGGGTGAATATTTGAGCCTGCGGGAGCGGGAATTGTTTTAAAATTAGCTTAATTTTCCGCCAATCCATGACTTTCACGGGCATTATGCTATAATTAAGCAAGATTAAGCGAGTAAATAAGGAGAGATATCCGTGTTTGGATTAGGTTCAAAGAATATCGGTATTGACCTGGGCACCGCCAACACCCTGGTCTACGTTGAAGGCAAAGGCATCGTTTTGCGTGAACCTTCAGTTGTTGCCAAGAATACCAAGACTGGCGAAGTTATTGCAGTAGGTTCAGAAGCCAAGGAAATGATCGGCAGAACTCCAGGCTCAATCGTGGCTATCCGCCCGATGAAGGACGGGGTTATCGCTGACTATGACACGACCGCGGCCATGCTTAAGTACTTTATGGGCAAGACGGTCGGCAATTCCAAGCCTTCAGTCATGATCTGCGTGCCTTCAGGCGTTACTGAAGTTGAAAAGCGCGCTGTTATCGAAGCTGCCCGGGTGGCAGGGGCCAGAGAAGCTTACGTGATTGAAGAACCATTCGCCGCAGCTGTTGGTGCCGGTTTGCCGGTTATGGAACCAACTGGTTCCATGGTCGTTGACATTGGTGGTGGTACGACTGACGTAGCCACTATTTCCCTGGGCGGGATCGTTTCTTCAACTTCCATTCGCCAGGCTGGTGACAAGTTCAACCAAGCAATCACCAACTTTGTGCATAGCAAGTACAACCTGCTGATCGGTGAAAGAACCGCTGAAGACATTAAGATCCAAATTAGTTCAGCTTCTGTTGAGGCAGCCAAGGAAATCGAATCAAAGACCATCCGCGGCCGGGACCTGGTGTCAGGCTTGCCGAAGTCATTGGAAATCAGTGCCGTTGACGTTGCAACTGCTATTCAAGACGTTGTTCAAGACATCATTGTTGCGATCAAGGAAACCTTGGAATTGACTTCTCCTGAAATTGCCGCAGACGTAATTGACCATGGTATCGTCCTGACCGGTGGTGGTGCCCTGCTCAAGAACTTGCCAGAAGTCATCTCTGACGCGACCAAGGTGCCTGTCTTCATCGCTCAAGATCCGCTTGACTGTGTAGCAATCGGTACCGGTGAATCTTTGAAGCACCTGGACGTAATGCGGAAGACTAGCAGATAAGAAATAAGAAAACCGGCCTCCGGGCCGGTTTTTATATTGGATGGGTGTTTATGAAGAAATTTTTTCAAAACAGAAAAATGCTGGCGGCTTTCGGGACCGTGGCGGTTTTGGCATCCCTGCTGGGCTCAACGGTGATGCTGAGAAACAACCTGAGCGAGCCGCTTTTGATCCAGCGCCTGGGCAATGACATCGTCTCCGTGGGCTCAAGAATCGTGAGCGTGCCGGTTTCCTGGTTTACTTACGGAATCGACAGCGTCAAGGACTTGCAGAACGCGGCTGATGAAAACAGTCACTTAAAAAAGAAGGTGGCTGAGCTGGCCCAGGTCGAAGCCAGAAATGCTGCCCTGGAAAAGGAAAACAAGCAGCTGAAAGCTGCCGCTGGAATTAAAAAGACCTTGACCGGCTACACGACCACGACTGCTTCAGTAATTTCCCGCTCCAGCGACAGCTGGTCAGAAGTCTTGACCATTGACAAGGGCAAGAGCTCCGGCTTGAAGAAGGACATGGCGGTCATGTCCGGCGGCGGCGTGATTGGCCGGATCCTGGAAGTCGACGCGGTCACCAGCAAGGTAGAACTGATCACCACGACTGACAGCTCAGCCAACCGTTTTGCCGTGCAAGCCACGACAGACACGGGCAAGGTTTTGCACGGGATCATCAGCGTCCAGTCAAACGGCGCTTTGACCTTTACCCAGGCCTCCAGCTCAAGCAAGCTGAAGAAGGGAACCAAGGTCTACACCAGCGGCCTTGGCGGGACTTCACCGAAGGGGCTTTTGATCGGGACGGTGGCGGAAACCACCAAGGACAGCTTTGGCCTGTCTGACTTGATCAAGATCAAGCCGGCCGGTAATTTGAGCGACGCGTCCGTGGTAACGGTCGTCAAAAGGAGCGTGGCTGGCTAATGCGGATTTTCAAGCAATGGGTTTTGGCCATCGCCCTTTACCTGGCTCTAGTTGTGGAGGGGACCCTGTCCGTTTACCTGCAGCCTGCCTTGACTTACCAGCACGGCCGGGCGGGGCTCTTGCTCCTGCCAATCGCCGTTTTGATCATCGCCTATGAAGACGAAAGAAACGAGAAGGAAATCTGGCTGGCCCTGGCGGCCGGGGTAGTTGCCGACCTCTACTTCTGGGGGATCATCGGGATCTACACCTTTATCCTGCCAGCCCTGTCGGCTTTTGGCCGCTGGTATGCCCGGGTCTTTCCAGAACTCTTCGTTTTCCGCCTGCTGGGCAACATCGTGGCCATTACCGTCAGCTGCCTTTACACCTGGCTGGTTTTCCGTTTGATCGGCTGGACTGATTTGACCTTGAAGGCCATCGGCTTCAGCCTCTTATACACGGCCGGCTGGACGACCGGGATCAGCCTGGCAACTTACTGGCTTTGGGCCAAGCTGGCCAGATCTTATCCTTTCCTGGTTGACCTGGACAATTACCGGTATTAATGAGCAATAAAAAAGCGGCCAGCATGAAGCTGACCGCTTTTGAGCGTATTGCAGATTTATTGGGCAGTTAAGTAGTAAAGAACAGAGGCTGCCACGCCAAAGAGCGTGATCAAAGCCATCAAGACTACCATGAAATTCTCAATCTTTTGAAATGTTGACTTTTTCTTTTTACGTGCCATAGAAGCCTCCTATATGAGAATGATTATAACCTTTTTGGCGGCGATTTGCAATTTCCTTGCTGCACTTTAAGAGAAAAATAAAAATGTGCTAAACTAGCTAGCAGATGGAGGAAAATTATGCTGATGATATTCTTATTGCCGGTCTTTGGCCTGGCTTGCGCCTACCTAGTCAACCTGATCTGGCCTAAAGCCGCCTTTAAAGGCTATGACGTCATGCCTTTCTTTTTGATCTACGCCTGCCAGCTGATGACCAACTTAAAGGGCGTGCCATCCTTTTTACCGGCCGGCTTTTTGCTTTACTTCATATTGATATTGCTGGCCGCCATCAGATGGGCCATGATCAACAAGAACATTTCCTTAGGGAAGATGTTCCGCCAGTTCTGGTCCTACCTGGATGCCTGCAGTTTCTTTTGGTATTGCGGATTGCTTTTGGTCGTTATGATCTGACAAATTACTGTCAGCCGCTTAGCGCGGCTGGCAGTTTTTTAATTTTTTTGGAAATCTGCTTGTGCTTTTCAGATATTGTGGTTTAAAGTGGGGATTTGTGGTAAATTGTTAACAGTAAGGGAGGAGCCTGCCATGTTCATGGGCGAATACCAGCACAATTTGGACGCCAAAGGCCGTTTGATTATCCCGGCCAAGCTGCGTGAACAGATTGGGCCAGCCATGGTTTTGACCCGGGGCATGGAAGGCTGCATTTTTGGCTATCCTTTGACGGAATGGGCCAAGATCGAGGCCAAACTGGCCAAGCTTCCCTTGACGAAGAAGAACGCGCGGAGTTTTACCCGGATGTTTTATTCCGGCGCTATGGAAGGCGAATTCGACAAGCAGGGGAGAATCAACTTGTCCCCCACCTTGAAGAAGCACGCCGGCCTGGTCAAGGAATGCGTCATTGTCGGCGTCTCCAACCGGATTGAAATCTGGGCTAAGGAGCGCTGGGAAGAGTATTCTGACGAAGCCAACGAAAGTTATGATGAAATTGCGGAAGATTTGGACGATATCGAGTTATAAAGATGGAATTTAAGCATACTAGCGTGTTATTGCACGAAACAATCGACAACCTGGCCCCACAAAGCGGCGGCACATATGTGGATGCCACCTTCGGCGGGGGCGGGCATGCAAGATACCTGCTTAGGAAGCTGGACAAAGGGAATCTAATCGGTTTCGACCAGGACCAGTACGCGATTGACACCGCCCAGAGCAATTTTGCTGCCTTTTTAAAAGAAGACAGCCAGCCCCGCCTGCAGCTGGTCCACAACAACTTCAGCCACTTAAAAGAGGAGCTGGCCAAGCTGGGGATTAGCGGCATTGACGGTATCTACTACGACTTGGGTGTTTCATCTCCGCAATTGGACCAGGCTGAACGCGGTTTTTCCTACCGTTTTGACGCAAGGCTGGACATGCGGATGGACCAGAGCCAGGACTTTGATGCTTACCAGCTGGTCAACCAGTATGACCAAAAGCAGCTGGCTGACGTCCTTTACCGCTACGGCGATGAGAAGTTTTCCCGGCAGATCGCCAGAAAGATCGTTGAAAGAAGACGGGGCAAGCCGATTGAAACTACTTTTGAGTTAGTGGAGATCATTAAGGAAGCAATTCCGGCAGCAGCCCGCCGCAGGGGCGGCCACCCGGCCAAGAAGAGCTTCCAGGCCATCCGGGTGGAAGTCAACCACGAGCTGGACGTTTTGCGGGCATCTTTGGAAGAAGCCATCAGCCTGCTCAATCCCGGCGGCCGGATCTCCGTCATCACCTTCCAGTCTTTGGAAGACAAGATCGTCAAGCAGACCTTCAAGAAGTATTCAGAAGTTGAAATTCCCCGCGGGATGCCGGTTGTGCCCGAGGGGATCAAGCCAACTTTACGCCTGGTCAACCGCAAGTCGATTACGGCCAGCGAGGAAGAACTGGCGGAAAACAACCGATCACATAGTGCAAAGTTAAGAGTAGCAGAGAAGTTATAAAGAGGACCACAATGGCTGGAAACACAGTTAGAAAATACAATTACGAACCAGAAGAGGAAGCCCGGAAAAGTCCTCGTTTGGTGGTTGACCCGCAGAAGGTGCCATACTCAACTTTTGAAAAGCTGCTGGCAGTCTTGGGCCTGCTTGGGGCAGTTGCCTTGATTACCTTGAACGTGTCGGCTAGCGTTTCGGCGACTTACGCCCAGTGGCAGCTGACCAACGTCAAGGAATCAATTACCAAGCAAAAGAACGCAACAGCTGACTTGCAGCAGGAAATCGGTGAGCTGTCATCAAATACCCGCTTGAACAAGATCGCCCAAAGTCAAGGACTGAAGTTGCGTGAAAATAACATTAGGACAATTCGCTAATGAAGAAGACCACTAATTTAGGAAAAATAAAATCCAGAGCACACGGCTATCGCTTTACAGTTGGGAGAATTCTAGAGCTAGTCGTTGCTTTGGTTTTTCTTTTTTTGGCCGGCCGCATGCTTTATTTGTCGATTTCAAAAACGATTGATGGCCAGGACATCAGCAAGAGAACTGCCGCGATCTACCGCCGCAACACCGTATTGACCGCTAACCGGGGCACGATTTATGACAAGAACGGCTTGATCATTGCCCAGGACTCCCACACCTACACGGTCTACGCGATTTTGGACAAGACTTATGTTGACTCCAATAAGAAACCGCTCTATGTTCAGGACAAGGAGAAAACGGCTGAGAAGCTGGCCACGGTTTTGCCCCTTTCCAAGGCAAAAATCCTCAAGTATCTGAACCCGAAAAATAAAAACACTTTCCAGGTCCAGTTCGGGACAGCCGGGTCCGGTTTAACCTTGACTGAGAAAAAGAAGATCCAGGCCATGCACCTGACCGGGATCAAGTTCATGGAAACGCCGTCGCGCTTGTATCCAAACGGGGTTTTCGCCTCTAACGTGGTCGGCTATACGGTTTCTCAAAACAATTCCAAGACGCAGACGACGGAACTGGAAGGGGTGACCGGGCTTGAAGCATACTTCAACAAGATCCTCAAGGGGACAAACGGCTATGAGACCAGCATGGTTGACTCTTCAGAAAACCAGCTGCCAAGCGGATTCCACTCCTATAAGGCGGCTAAAGACGGGGACAATCTATATTTGACGATTGACTCTCAGCTCCAAAGCGCCCTGGAAACCTATATGAGCAAGGTGCAGAAGAACTACAAGCCGAAAGCTATGACAGTGGTCATTGAGAACTTGAAGACAGGGAAGATCCTGGCAGCCTCCCAGCGGCCGACCTTCAACTCCCAGACCAAGGCCGGAATCAGCAAGGCCGGCAGCAACCTCCTGGTCCAGTCCAGCTATGAGCCGGGTTCTGTTTTCAAGATCCTGTCTCTGGCCGCCGCGGTCAACAGCGGCAACTACAACCCTAAGTCCTACTACCGGTCAGGGTCAATCACCGTTTCCGGCTCCACTATCTATGACTGGCAGAAGTCCGGCTGGGGGACGATCCCGTTCTCCCAGGCCTTCCCGCGCTCCAGCAATGTCGGGATGGTCTACCTGGAAAAGAAGATCGGGGCCAAGCTCTGGCGCAAGTACCTCAATATGTTCCGCATCACCCACAAGACCGGGATTACCCTGCCAGGTGAAGTTTCCGGCAGCTTGTCCTTCTCAAGTCCGGTTGACCAGGCGGTAACTTCCTTTGGACAAGGGGTCACGGTCAATGTCATGCAGATGATGCAGGTTTACAGTGCCCTGGCCAACAACGGGCAGATGGTTAAGCCGCAACTGGTGGAAAAAATCACTGATTCTTCGGGCAAGACAATCAAGAGCTACAGGGTCCAGAAGGTTGGCAAGAAGATTTTTACTGCCCAGACCAGAAAAGTAGTCATGCAGAACATGAAGAAGGTTTTGGACAAGGAAATCGGGACCGGCCACATCTACTACATGAAGGGCAAGGACTTCGGGATCAAGACCGGGACGGCTCAGATTGCCAAGTCAACCGGCGGCTACATGACCGGGGACCGGGACTATGTCTTCTCAGTCGTGGGGATTACCCCAACTGCCAATCCCCGCTACTGCATCTATTTGACCATGAAGCAGCCTAGCAAGCTGGGCAGCGGGGCCGAAACCATCCTGGCCCAGATCTTTAAGCCGATGATGAGCCGGCTGGTTCTTTTGAACAAGGGGGACAAGTCAGCTTCGGCCGTGGTCAAGGTGCCGAAGTTTACCGGCATGACCTATGCCAAGGCGAAAAAGACCGCGACCTCAAATGGTCTTTCCCTGGTCCGCCTGGGGACTGGTTCCAAGGTCCTCAGCCAAAAGGCAGGGGCCGGTGAAACGGTATCCGTTGGCAGCACCGTCTTTGTCTTGACTAGCCGCAAGATCAGCCTGCCGGATTTGACCGGCTGGAGTGAAAGCCAGATTGAGGCCTACGCCTCCCTGGCCGGCATCAAGCTGCAGCTGTCAGGCAGCGGCAAGGTCAAGTCACAGAGCCTGGCCCAGGGGACGGTAGTTAAATCAGGGACGAAATTGAAAGTAGAGTTAAAGGAGTAATAGATCGATGCAAGCAAGTTTGATCGCTTTTATGATTTCACTGGTATTGAGCGCCTTGCTTTTTCCATGGCTGATCATCTGGATGAGAAGCCACGACGAAGGCCAGCAGATCCGGGATGAAGGGCCGAAATGGCATGAAAAGAAGTCGGGGACCCCGACCATGGGGGGCACGGTCTTCGTGCTTTCAGCCGCGGTCGCAACGGTTGCCATCTGTGCTTATAAGGGCCAGCTGTCTAAGACAGTCTGGATTTTGTTAGTTGCCCTTTTGGGCTACGGGATCATCGGCTTTTTGGATGACGGCTTGAAGCTCTTTTTCAAGCGGAACCTGGGCCTGAGAGCCTGGCAAAAAATGGACCTGCAGCTGCTCGTCGCTGCTGGTATCGTTTTGCTGGCGGCCAGTGACAACTTTGACTTCGCTCTTTACCTGCCTTTTGCCGGGGTGGTCAAGAACGTGGTCCTCTTTACCTTGTTTGAAGTCTTCTGGCTGGTTGGCTTTTCAAATGCCGTCAACCTGTCTGATGGTCTGGACGGCCTGGCAACCGGTCTGTCCTTTATCGCTTACGGCACTTACGCCTGGCTGGCCTTTAAGAGCCAGAACTTCGGCGTTCTGGTCTTCTGTATGGCGGTAATGGGGGGCCTGGCAGCCTTCTTCATGTTCAACCACAAGCCGGCCAAGATTTTCATGGGGGATGCCGGTTCCCTGGCCCTCGGGGGCGGTTTGGCGGCAGTCAGCATCTTTTTGGGCCGGCCATGGTCCTTGCTGTTGGTCGGGATCGTCTTTGTCTGCGAAACGGCCAGCGTTATCTTGCAGGTTGCCTCATTTAAGACGACTGGCAAGCGGATTTTTAAGATGACGCCGATCCACCACCACTTTGAAATGCTGGGCTGGTCTGAATGGAAGGTCGACCTGGTCTTCTGGCTGGTCGGGCTGGTTGGCAGCGGAATTTACTTGATGATTTGGGGATAATTAACGATGAAAGAAATCGATAAATATGCTGGTAAAAACATTCTTGTTTTAGGTCTGGGCCGGAGCGGCTTCGCGGTCAGCAAGCTGCTCCTTAAGCTGGGCGCGCGTTTGACTTTAAATGACAAGGCCGACCTGGCTGCTGACCCGAAGGCTAAGCAGTTAGCTGACCTGGGCGTCAGAGTAATTGGCGGCAGCCACCCGGTTGACCTGTTTGACCAGGAAAAGTTTGACTACCTGGTTAAAAACCCCGGCATCCCTTACGAGAACCCGATGGTGGCTAAGGCCAGCGAAAAAGGGGTTCCGATCATCACTGAACCTGAAGTTGCTTTAAGCGCCAGTGAGTCGCCTTATGTCTGCGTCACTGGTTCAAACGGCAAGACCACCACGGTCATGCTGACCCAGCAGATCATGGATCACTACCTGCAAAAGCAGGGCCACCACGCTCACGCGGTCGGCAACATCGGCTGTCCGATTTCTGAAGTAGTTTTAAACCAGGCCGGCCCAGACGACCTGCTGGTCGTGGAAATGTCCAGCTTCCAGCTGATGGGGGTAACCGACATTGAGCCAAAGGTAGCCGCCATCGTTGACATCTATAACAATGTCCACCTGGACTACCACAAGACTTTTGATAACTATGTTGACGCCAAGCTGAACGTTGGCCGCTTCCAAAAGGCCAGCGACTACTTCCTGGCCAACTTTGACCAAAAGGATATCCTGGCTAGAGAAGAAAAGGCAACTAAGGCCAAGATTCTGACCTTCAGTGAAAATGATCCAGTTGCAGACTTCTACATTGGCCAGGACTACTTGATGCATGGCGAAGAAAAGATGATGAAGATTGCCGACATCAAGCTGCCGGGGATCCACAATTTGCAAAACTCCCTGGTTGCCATCGGCATCAGCAGCCTGATGGGGGCGGGCAAGGACGACATCGCGGCCGTTTTGTCCACCTTCACCGGAGCTGAACACCGCCTGCAGTACGTGACCACCCTTGACGGGGTCAAGGTCTACAATGACTCCAAGTCAACCAACATTGAAGCAGCCACCGTGGCCATCCAGTCCTTCAAACAGCCGGAAGTCCTTTTGGCCGGGGGCCTGGACCGGGGCTTTGTCTTTGACTCCCTGGTTGATCTGTTTAAAAAGCACGTCAAGGCCATCGTAACTTACGGGGAAACCCGTTACCTGCTGGCGGACGCGGCCAGAAAGGCCGGAATCAAGACCATCGTGGTCGTTGACAACCTGCACGAAGGGGTTAAGGCAGCATCTAAGCTGGCTGAAGCCGGCGACGTCCTGCTCTTTTCACCGGCCTGCGCTTCCTGGGACCAGTTCAAGACCTTTGAAGAACGCGGCGAATATTTTGTCAAGTATGTAAAAGAATTGGAAGAGAAATAAAATGAGAGTTATTTTTTCTGGTGGCGGCACTGGCGGCCACATTTATCCCATCATGGCCTTGATTGAACGCCTGAAGGAAGAAGGCATTTGCCAAGACGATGAGATTTTGTTCGTCGGCACCAAGAAGGGGCTGGAATCCAAGATCGTGCCTGCCGCAGGGGTCAACTTTAAGACCATCGACATCCAAGGCTTTGACAGAAAGCACCTGTTGAACAATGTTAAGACCATCCAGCTCTTTTTAAAGGCGACTAAGCGGGCCAAGGAAATTTTGGCTGACTTTCAGCCGGACGTTGTCCTAGGCACTGGCGGCTACGTCAGCGGGGCGATTGTCTACGAAGCCAGCAAGATGAAGATTCCGACCATGATCCACGAGTCCAACTCCGTGGTCGGGGTGGCCAACAAGTTCTTAGGCCACTACGTGGACAAGATCTGCTATACTTTTGACGACGCGGCCAAGGAATTTCCGGAAAAAAAGAAGCTGGTCAAGACCGGCAACCCGCGTTCCCAGCAGGTTTTGAGCTTAAATGCCAAGCCAGTTGATTTGGCAGGCGACTTGGGCCTTAACCCCAAGATTCCGACTGTCCTGGTCTTCGGGGGTTCACGGGGCGCCTTGGCCATCAACCGGGTCATGCTCAAGTCTTTGATGGAGCTGAAGAAGAAGCCTTACCAAGTGATCTGGGCAACCGGGACTTACTACTATGACGCGATTGAGAAAAAGCTGGCTGATGTTGACTACGACGACTCCATCAAGGTCGTGCCGTATATCGACAACATGCCGGGCCTTTTGCCGGAAATGACCTGCGTTGTTTCCCGGTCCGGGGCAACCAGCCTGGCTGAGTTCACGGCCTTGGGCGTGCCAGTCATCTTGATTCCCAGTCCTAACGTGACCCACAACCACCAGATGAAGAATGCCATGGACCTGGAAAAGGCCGGGGCGGCTTTGGTGATTGCGGAAGATGATCTGAACGAAAACACCTTCGTGTCCTCCATTGACCACCTGCTTTTGGACCAGAGCTATGACGAAAAAATGCGGCAGGCTTCCAAGGCCTTGGGCGTGCCCGATGCATCTGACCAGGTCATCAAGGTCATGAAGGAAATTGCCAAGAAGAACTGATAATAAACGATTAGGAGGAAGCAATGGCTCGCAAACGGATAACCCGCAGAGACCCAGAAGAGGAGCTCTCTAAATTCTTACGCCACGAACCTGGCCAGGGGCAGGAAACACGCAAATTGTCGAGCCAGCTTACTTCGCTTAAGAAAGAACGCCGGCGGGGCCTGCTTACCCGGCTGGGTTCGATCATGGCCGTCTGCCTTTTGGCTATCGCTTTTTTAACCTACTACGTCTCGCCTTTAGCCGACGTATCAACGGTCAGGGTGCTCGGAGCTGATGACCTGGATGGCAAAAGCATGGTTGAAGTAGCCCAGATCAAGGCTTCTGACAAGGTCGTTGATGCCTTGCGGGGGCAAAAGAAGATCAGCAAGAAGCTGGCCGCTAAATACCCTGAAGTGGCTTCAGTCACTTTATCGGTCAAGGGGCTGAACACCTTGAACATGCAGGTGCATGAGCGGAAAGTGAGCGGCTATATTAAAGACGGGTCCAGCTACCGGGAAATTCTCGCCAACGGGGAACTGGGCACCAAGAGCCTAGCCTGGAGAGAGTTCGACCATGACAAGCCGCTTTTTATCAGCTACAGCAAGCAGGTGGCCTTGAAGACCAACCTTAAAATTTTTAACTCTTTTCCTGAATATTTCAAAAAGCAGGTCAAGATGCTGTCTGGCAATACCAGGCGCAAAACCCAGATGATTCTGGTCATGAAAGATGGCAATGTGATAATCGGCAACACTGAAACGATAAAATCCAAGGTTAAGTACTATAACTCGATTAAACAGGATTTGACAACCAACAGTGTCATTGACATGGAAGTCGGTGCCTTCACCCGCCCTTTGACTAGCGCGGAAAAAAAGGCTTACGGCTTGTCTTAATTTTGTATCTTTAAAGAATTATGATATTATCTATATATTAGAATTGGTGGAAGGAAACTTGGATAATTCAACTTTGTTAGTTGGTTTGGACATTGGGACCACGAGCATCAAAGTCGTTGTTGCCGACGCCGCTCATCAAGAGCTGCAGGTTTACGGGGCAGTTGCCGCTCCTACGCGGGGGATGCGGCATGGCAAGATCGTTGATATCGATCAAGTTGCTGAATCTGTCAAAAACGCTATCCAGCAGGTCAGCGAGAAGACCAATAGCAAGATCAACCGGGTAGTGACTGCCTTGCCAGTCAGCATGCTGCAGCTGGAAAGTACAACCGGCCTGGTTAATATTTCTGATTCCGGCAAGGAAGTCGCTAATGAAGAAGTCCAGCGGGTCATGTACGCGGCTATCAAGGCTGCCAAGAAAAAGGACCGGCAGGCAGTGGCCTTCTTCCCCAGCCGCTTTTTGATCGACGGGGAAAAGGACGTTGACGACCCGCGGACCATGATTGCCCGCTCCCTTCTCGTCCAGGGGCTGGTAATGACGGCGCCGTCAGCGGAGATTCACAACATCAACACGGTCTTAAAGCACGCTGACATCCAGAACAACTTCTTTGTTCCGGCACCGATGGCTTTTTCCAGCGTAGCCCTGGATGAGGCAGAGAGAACCTTCGGGGCAATTCTGCTGGACATGGGCGGCGGCAGCACGACCGCCACGGTCATCCGCGATGGCCAGATCAAGTACGCTACCGTCGACTTGAAGGGGGCGGCCGACATTACCCACGACATTTCCGTGGTTTTGTCAACAACAATGAGCGATGCTGAAGCTTTGAAGCGGGATTATGGCTATGCCGACCCGGACCTGGCTTCAGAAAATGAAAAATTCGCGGTCAAGGCTGTAGGCAAGGACGAAAACAACCTGGTCAGCGAGAAGTATCTCAGTGAGATCATCAATGCCCGTCTGCAGCAGATCCTGCGCCGGGTGGGCTGGGGCCTTTACAACCATGATGCCCTGTCTTTGCCGGCCGGGGTTATTATTACCGGGGGCAGCGCTCTTTTGGCCGGGATTGATGACCTGGTAGCGGCTGACTATGACGTTAAGGCCAAGATCTACCAGCCAGCCCAGATTGGCCTGCGCAATCCGGTTTATTCAGTGGCCTACGGGATCGTCAACTATGCCAACAACCTGAGCGATATCGGCTACCTGGCCAACACCGTGATTTATCATGATTCAGCTCTTGTTTCAAATGAGCGGCCGACCAGTGCCGGAAATAGTCAAAAAAATGCTAAAAGAGTGACGAAGAAAGCTGAAAATGACACTGAATTAGCTTATAATAAGGCTAAGCTTGATGGGGAAGTAGACACTGAAACCCGGCATGAAGAAAAGACTAATAATAACGAAAATAAAAACAAGGGCTTAGCTGCATTTCTCAGAAAGTTCTTTGATTAAGGGTGGTAAACGTAGATGGCTTTGGATTTTACTTTTGATTCAGATGACAACAACAACGCAGTTATCAAAGTAATTGGCGTTGGCGGGGCAGGCGGCAATGCCGTCAACCGGATGATTGAAGACGGCGTTCAAGGCGTCTCTTTTATCGCGGCCAACACTGATGTACAGGCTTTGAACAGCAACAACGCTGAAGTTAAGATTCAGCTGGGGCCGAAACTGACCAGGGGCTTGGGGGCAGGTTCACATCCTGAAACCGGGCAAAAGGCCGCTGAAGAAAGCGAAGAAACGATTGAAGATGCACTTAAGGGTGCTGACATGATTTTCATCACTGCCGGCATGGGCGGTGGTACTGGTACCGGGGCAGCCCCGGTAATCGCCCAAATTGCCCGGGAAACCGGTGCTTTGACGGTTGGGGTGGTTACCCGTCCATTCAGCTTTGAAGGCCCTAAGCGGTCCAAGAACGCCGCTGAGGGGATTGACAAGCTGAAGGAATACGTTGACACCCTGGTCATCGTTGCCAACAACCGGCTTTTGGAAATCGTTGACAAGAAGACACCGATGATGGAAGCCTTAAAGGAAGCCGACAACGTCCTCAAGCAGGGTGTCCAGGGCATTTCCGACTTGATCACTTCAACTGACTACGTGAACCTGGACTTTGCTGACGTCAAGACGGTCATGGAGAACCAGGGGGCAGCCTTGATGGGGATCGGCCGGGCCAGCGGCGAAAACCGGACGGTGGAAGCAACCAAGATGGCGATTTCCTCACCGCTTTTGGAAGTTTCCATCGACGGGGCCAAGCAGGTCCTCTTGAACATCACTGGCGGTCCGGACTTGACCCTGTTTGAAGCCCAGGATGCTTCAGAAATCGTTTCAACGGCTGCCGGCGAAGATGTCAACATCATCTTCGGTACGGCCATCAACCCTAACCTGGGCGATGAAGTCGTGGTTACGGTGATCGCTACCGGGATTGATGACGAAGCTGAAGCAGCTGCTTCCAAGCAATTTCCAGGCCGCGGCCACCAAGTGAGTGCGCCTAGAGAAAAGCCAGCTGCGCCTAAGATCTTGACTCCGGAAGAAGCCGCTCCAGCTGCTCCAGTACAAGAAGCGCCAGTTCAAGCTGAAGCAGCTAAGCCGACCAGCCCGGTCAAGGAAGAGAAGCCAGCCATGATGGACCCGATCAGCGTTTGGGGCCTCAACGACGATGACTACTCAAGACGGAAAAAACCGGAAGAACAAAAGCGGCGGGCTGAAGAAAAGGAAGCGGTTTCGGATGCTGACCCAAGCAGCGCCATTTCCCAAATTGACATCAACACCGATTACGACGACGATGATGACGACGATATTCCGTTCTTCAAGCACCGCCGGGACCGGTAAGGGAGGCAGAGTAAATGAACAACAAATTTAAGGACTTTTTCGGCTTCGGCGACAACGATTCCTATGAGGAAAGAGACGCCTACGAGGAACATTACGACGAACAAGAAGAAATGCAAAACAGCAACCGGCCAACTAACAGCCGTGACAGCAATGTCGTGTCCATTAAGGCCGGCCAGGCTGGCAGCGGGCCAAGCAAGATCGTCCTTTACGAACCGCGGGTATATTCTGACGCTAAGGAAGTAGCCCAGAACCTGCTCAACCAAAGGGCGATCATCATCAACTTCAGCCGGATGGACGACGCTTCTGCCCGCCGGGTAGTCGACTTCATCACCGGGACAGTTTATGCCCTCAATGGTGAAATACAGCGCATCGGCGACAAGATCTTCCTGGCTACTCCGCCGAAGTTTGAAACTGACGGCAAGATCACTTAACTGCTTGATAAGAAAGATACTTTAGGTTAATGCAAACATTTTTGGTTTTTTTGTACCGGCTGCTCTACTTCATCTGTGAAGCTTACAGCCTCTTGATCATTATTGATGCCTTTATGTCTTGGATTCCGGCCATCAGCGAATCAGCGGCCGGCCGCTGGATCGACCGGATCGTCAACCTCTTCGTCAACCTTTTCCGGCAGGGGCCGATCCTGCGCTTGATCTACGCGACTGGCATCGACATTTCACCAATGATTGCACTGTTTGTGATCTACTTTGTCCAAAGCGTTGCCTTGGGCTGGCTCTTTAGCATTTTAGGGAGGATCTTCCTGTGATGGACAAGCGCCAGGCCAGCAGCTTTTACCCACATTTTGCAATTGAAGAAAGACCAACAATTGACCAATTTGTTGGTCTTTTTAATCGCCTCTTGTTTACCGGCCAGTCCTTTTTAACGGACTTCCTGGACCCCCGGCAAAGGCAGATCATGGAGACGATCGCCGGCGGGGAAGCCATCGTGCAGGCTTTTGGCGGCTATGAAGAAGCGGAAAAGTGCCGGCTCTACATCAGCCTGGAATGGGAGAACCTGCGCCCAGATGACTACCAGGTTCAGCTTTTTGAAATTGAATACCCGCAAAAATTTGCCAGTCTCCGCCACAGCCAGATTCTGGGCAGCCTGGCCAATTCCGGGGTAAAAACAGATACTTTTGGCGACATCATCACGGACGGGCAAGGCCGGTGGCAGTTTTTCGCGGAAAAAGAACTGGCTGGCTTTTTTGCCAGTCAAATCGACCGGATGGGGCCAGTCAAGGTCCGCCTGGAAGAGAAGCCCTTAAAAGACAGCCTGGAAGCAGAAGACAATTCCGAGATCATTAGCGCTGTAGCTTCCTCCATGCGCCTGGACGCGGTTTTAGCGGCTCTAAGCAATAAGTCCCGCAGCCAGGTTAAAGAGGCCCTGGAGGCCGGCGAGGTCCGCTTAAACTGGCATGAAGAAGAAAAAGGTGAAAGCCTGCTGAAAGTTGGCGACATCTTGAGCCTGCGCCGCTTTGGCCGGGTCAAGCTCTTGTCTGTCCAGCCCAGCAAAAAAGGCCGCCTGCGGGTGGAAGGCCAGTTTTGGCCAGCAAAAAGGCAATAAATATTTGACAAAGGGCTGGTTGATGTCTTAAACTCTTTTACTGTAGATAGAAAATTTTTTCATTGTTTTTTATCTCTTACATAATTACGATTAATAAATCAGACTGACAGTCCTGCTTAAAGGCGACCTAGCGAGTTAATGATGGTGGAAGATTAACACAAGCCGGCGAGCGATCAGCTGCCGATTGGTCTGAGCGGGGGCCGGCACGATAAGCCGGCAGGAGTGGGGCCCTTCGAGGCTCAATTTAGGTGGTACCACGATAGTCTCGTCCTATTTTAGGATGAGGCTTTTTATTTTAGCGAAAGGATTTTTTTAGCGAAAGGATTTTTTTAGCGAAAGGATTTTTTATATGCGAGTTAAGGATACGCTGAACCTGGGCAAGACCAAGTTCCCAATGCGGGGCAACCTGCCCAAGCGGGAAGCAGAATGGGAAAAGAACTGGGAAGACCAGAAGTTTTATGAAAGACGCTTGAAGCTTAACGAAGGACATGAAAGATTTGACCTTCACGACGGACCTCCATTTGCCAACGGCAACATTCACATGGGCCACGCCTTGAACAAGATCACCAAGGACATCATCGTCCGGAGCAAGAACATGGAAGGCTACTACGCTCCTTACGTTCCGGGCTGGGATACCCACGGCCTGCCAATTGAGCAGCAATTGACTAAGCAGGGCGTTGACCGCAAGACCATGGACCGGGCTGCTTACCGGGAATTGTGCCGGAAGTTTGCCATGGAGCAGGTTGAAAAGCAGCGGACCGACTTCAAGCGCCTGGGCGTTATGGGCGACTGGGACCACCCTTACATCACCCTTTTGCCGGAATTTGAAGCCGCAGAAATCCGGGTCTTCGGCAAGATGTACGAAAATGGCTACATCTACCAAGGCAAGAAGCCGGTTTATTGGTCCTGGTCCAGTGAATCAACTTTGGCGGAAGCCGAAGTCGAATACCACGACGTGGAATCACCATCAATTTACATTTCCTTCCCGGTCAAGGACGGCAAGGGCAAGCTGAGTGAAGAAAACACCTACTTCCTGATCTGGACGACCACTCCATGGACTATTCCTTCCAACCAAGGGATTGCCGTTAACCCGAAGTTTGACTACTCAGTTGTTGAAGTTGGCGACCGCCGCTACGTTGTCGGTACTGACCGCTTGAGCGCCGTAGCCGAAATCTTGGGCTGGGACAGCTACAAGACTGTTCAGCACCTTAAGGGGACGGACATGGAATACATGGTGGCCAAGCACCCTTACATCGAAGGCCGCGACAGCCTTTTGATGGAAGCTGTCTACGTTACTGACGATGATGGTACCGGCCTGGTCCACACCGCTTCCGGCTTTGGTGAAGACGACTACAACACTGCCATGCGCTACGGCTTTGACGTTTTGTCCCCAATGGACAACAAGGGCTGCTTCACTGAAGAAATCCCTGACCCGGACCTGGTGGGCAAGTTCTACACTGACACCAACGAAATCGTCAAGGACAAGCTGTCGGCTGCTGGCAACCTTTTGCACTACAGCACCTTTGTCCACTCCGCCGCTCACGACTGGCGGACCAAGAAGCCGGTAGTCTACCGGGCAACCACGCAATGGTTTGCCTCAATCTCTAAGTTCAGAGACCAGATTTTGGACCAGATTGAAAAGACCACCTTCTACCCGGCCTGGGGCAAGACCCGCCTTTACAACATGATCAAGGACCGGGGCGACTGGGTAATTTCCCGCCAACGTGCCTGGGGCGTGCCTTTGCCAATCTTCTACGCTGAAGACGGCACCGCCATCGTGACGCATGAAACCATCGAACACGTGGCTGACCTCTTTGCCAAGGAAGGCTCCAACGCCTGGTTCACCCATCCGGTTGAAGAACTTTTGCCAGAAGGCTTTACTTCAGAACACTCACCAAATGGCAAGTTCACCAAGGAAACTGACATCCTGGACGTTTGGTTTGACTCCGGGTCATCCTGGAGCGGGGTCCAGGCTCTGGGCAGAGCCGTTCACTACCCGACTTCCATGTACCTGGAAGGCAGTGACCAATACCGGGGCTGGTTCAACTCCAGTTTGATCACCAGCGTGGCTACCAACGGGGTAGCTCCTTACAAGTCAGTACTGTCTCAAGGCTTTACTTTGGACGGGCAAGGGCGGAAGATGTCCAAGTCATTGGGCAACACGATCGCTCCTAACGATGTCATCAAGCAAATGGGGGCCGAAATCATCCGCCTCTGGGTTGCTTCCGTTGACGCTTCCGGCGACGTCGGCGTGTCAATGGACATCCTGCGCCAGGTTTCAGAAGGCTACCGGAAGATCAGAAACACCTTCCGCTACATGCTGGCCAACACGGCTGACTTTGATCCGGAAAAGGACCGGGTAGCTTACAAGGACCTGTGCAAGATCGACCAGTACCTGGAAGTCAAGCTTAACGACTTAGTTGCCGAAAGCATTGTCAACTACGACAAGTATGACTTCGCTGACGTCTACAAGCTGGTCTTCAAGTTCATCACCAACGACCTGTCCGCCTTCTACCTGGACTTTGCCAAGGATGTCCTTTACATCGAAGGCAAGGACAGCCACGCCCGCCGGTCAATGCAGACGGTGATCTACGATGCCGCTGTCAAGCTGGCCAAGATCCTGGCACCAATTTTGCCGCACACCATGGGCGAAGTTTGGGGCTACTTGAAGGAAAAGGAAGAAGACGTCTACCTGTCCAACTTCCCTGAAATCGAAGACTACGCTGACGCTGACGACTTGAAGGAAAGCTGGGGCGAATTCATGAAGCTCCGCGACGATGTTTTGAAGGCTCTGGAAGAAGCCCGGGACCAAAAGCTGATCGGGAAGTCCTTTGAAGCCAGCGTAACGGTTTACCCAGGCGAAGCAGCCAAGGCTGCCTTGGACAAGCTGGCTGGGGAAGACTTCCGGGAAATCTTGATCGTGTCCAACCTGGTCATGGGCCAAGGGGAAGTACCGGCTGAAGCCAAGCAATTTGACCAGGCCAGCGTACTTGTCCGCCGGGCCGAAGGCGAGGTCTGCCCACGCTGCCGGATGTACCGGACTGACCTGGGCGCTGACAGCCGTTTGCCGCAACTGTGCGGCCGCTGCGCATCTATCGTGGCCGGCGACCACCCAGAAATACTTGAAGAAGGCCTGGAAGACTAATGCGGACCGGACTTGTAAAACAATTTGCCGAAAAAGCAAGTTTCGGCTTTATCGAAGACGACCAAAATCACAAATCATATTTTGTCTTTTATACTGCCATCAAGGAGGAGGGCTATAAGAGGCTTGAAGTCGGCCAGCGGGTGAGATACCAGCTTGCCCAGGGTAAACACGGACTGCAGTGCATCAACGTTTACTTGGCCAAAGACTAAGCAAAGGAATGACATATGGATTTAAAGGAAACTGAAATTTCAACGAAGGAGGCTTTCCACGGCGGCTTCATCAACCTGCATGTTGAAACCGTGATGCTGCCAAACGGGAAAACCGCCTCCAGAGAGCTGGTCGACCACCGGCCTGCTGCCGCGGCCATCTGCATCAACGATGAAAAGAAGATGCTCCTGGTTACGCAATGGCGGGAAGCGATCAAGCAACTGACTCTCGAAATTCCAGCTGGAATGATTGATGCTAGCGACGTGAGTCCCTTGGATGCAATGAAGCGGGAGTTAAATGAAGAAGGCGGCCTGAAAGCCGAATACTGGGAAAAGGTTGCCGAATTCTACACTTCACCAGGATTTTCCAATGAAAAGCTGCACCTTTTCTACTGTGACACGCTCAGCCCAGTGGCTAACAAACTGGACCTGGACGAGGATGAATTTTTGACGGCAGAATGGTACAGCCTTGAAGAGTTAAAGAACCTGTTGACAGAGGGCAAAATTGTCGACGCAAAGACCATTTATGCTATTTCCGTATGGGAAAACATGCTGCTGACCGGTTCAGAAGGTTAGACTATGACAGAAAAACGTTCCGATTACCGCCGCCGCCAGGCAGAGCAAGCAGAAAAGGCAAATAGACAGGAAGCAGCTGATTCAGCTGCTTTTCCTGCTTTTAAGCAGGACCAGGACCAGAAGCCCTTAAAGGCAGAAAGGCTGAATTTTGCTATCCTGGTCGTGTGCCTCTTGATCATCCTGGTTTGGGTGATTTTATTGAAATTTTAAACTGAATTGAGGATTACCGATGAAAATTGCAATCGTTGTTCCAATGGCTGAAGAAGCTGAATTTTATCATCAATACTTTTCCTCAGGTAAAAAAGAAATGTTCGGTTCAACGGAATTCGAACATTTTTCCGTTGCCGGCAACGATCTTTACCTGGGCTTGACCGGGATCGGCAAGGTCCAGGCGGCTATGAACCTGACCAGCCTCCTGGCCAAGGAAAAGATCGACCTGGTCATCATGACCGGGTCGGCAGGGTCCTTGCAAAAAGAAGTTCAGCGGATGGACCTGGTTTTACCAAGCGAATTCGCCTACCACGATGCCCACAACACTTCAGCGGGTAACTATGTCGAAGGACAGATCCCGCAGGAACCGGCCCGCTTTAAGCTGGACTGCGCGGAAAGAGACAAGTTCAAGGACTTTTTGGGCAAAAAGGGCGTGGCCTACAAGGAAGGCTTGGTCGTGACCGGGGATTCCTTCATCTCCTCCCAGGCACAAAAAGACGAAATTCTGGGCAATTTCCCAACCGCCCTGTGCGTGGAAATGGAGGGGGCAGCCTTTGCCCAAGTGGCCTACCACTTTAACGTTCCGCTGATCGCCTTGCGGGCCATCTCCGACAATGGGGATGAAGATGCTGACAACGACTTTGCAGCCTTTGTCAGAAAGGTCGGTGCCCAGGCGGCAGAACTGATCGTGGAATACTTAAGGGAGAATGATTTTTAATGAAGCAGGTATATCTTGACAACGCGGCAACCACGCCGATGTCACCGACCGTCATTGACGTGATCACGGATGAAATGGCCAATGACTTCGGCAATGCCTCCAGCACCCACACCCTGGGCCGGAAGGCCCGCAACAGCGTGGAAACGGCCCGGCACACCATCGCCCAGGCAATCAATGCCAAAGACCAGGAGATTATTTTTACCTCCGGCGGTTCTGAAAGCAACAATACGGTAATTTTTGGCGTGGCGGAAATGCAAAAAGCAGTTGGCCGGCACTTGATTACGACCAAGATCGAACATGAATCAGTTTTAAAGTCCATGCAGCACCTGGAAGAGCTGGGCTATGAGGTGACCTACCTGGACGTGGACAGAGACGGGCATATTTCCCTTGACCAGCTCCGCGAGGCCATCAGACCAGACACGATTCTGGTCTCAGTCATGGCTGTCAACAACGAAGTCGGCAGCATCAACCCCCTCAAGGATATCGGCCAAATCGTCAAAGACAGCCAGGCCTTCTTCCATGTTGACGCTGTCCAGGGACTGGGCAACATTGACCTGGACGTGGAAGAAATGGGAATCGACTTTATGTCGACTTCAGCCCACAAGATCAACGGGCCGAAATTCCTGGGCTTCCTGTATGAAAGAGACGGGATCCGTCTGCCAAACCGGATTTACGGCGGCGACCAGGAACTGAAGCGGCGGGCTGGTACGGAAAACGTGCCGGGGATTGCCGGCTTTGGCCAGGCTGTAGCGGAAGTTCAGGCAGAAAGCAAGGCTGACCTGCAGGCCAAATATACTGATTTCCAGAAGATCATCTTGAGCCGGCTGGATGAGAGCGGGGTGGCCTATGAGGTCAACAGCCCCTTGACCGGTCTGGTTTCCCACCATGTCTTGAATCTCCGTTTAAACGGTTTGTCCACTTATGTCCTTTTGGCCAACCTGGACCTGGCTGGCTTCGCTGTTTCAGGCGGGTCGGCCTGCACGGCCGGCAGCCTGACCCCGTCCCACGTTTTGACGGCCATGTTTGGCCAGGATTCACCAAAGGTCAGCGAATCGATCAGGATTTCTTTTGGCCGCTACAACACGGTTGAAGAAGTGGAAGCTTTCGCGGCTGCCCTGGTGAAGGTGGCCCGCAAGCTGCAAGACCGGAAGCGGGAAGACTAAATAGTTGCTTTTTCAAGGGAATGTACTTACAATTAATAAGCGAGGTTTTACTTTATGGCTAATACTGTGATGATCAATGGCGACAAGCGGAAGTTTATGCTTAACACAGACGTGAAGCTGTATGCGTTGATTGACGCCGGCTTCCAGAAGACTCCCCGGGGCAACTTTGTCTATGAGCACCCGCTTTACAACGAATCGCCTTACAACGCGACGACCAAGCTGAAGATGACCATCAAGAGCGACTTGACCAGCTTGACTATGGTCGTTACGGATCCAAGCGGCCTGAAGAAGGTAAACATTTTTAAAAACAAGCAGCTGGCTCCGACGGTTGAACTTTTGGACTACATCTTGAAGGACCTGGAGGAGCGGAAGATTTTAAGCGAAGTGAAGGATTGATTTAATGGTTGACAATAGCAAGATCAGAGTCGTTGTCGGCATGAGCGGCGGGGTTGACTCCTCAGTTTCGGCCCTCTTGCTCAAGCAGCAGGGCTACGACGTCGTCGGCGTTTTTATGAAGAACTGGGACGACACCAATGATGATGGTGTCTGCACGGCAACTGAAGACTACGAAGACGTCAAAAAGGTAGCCGACAAGATCGGCATCCCTTACTATTCGATCAACTTCGAAAAAGAATACTGGGAGCGGGTCTTCCAGTACTTTTTGAAGGAATACAAGGCTGGGCGCACGCCTAACCCCGACATCATGTGCAACACCGAAGTCAAGTTCAAGTCCTTCCTGGAATATGCCCTGGACCTGGACGCGGACTACCTGGCCATGGGCCACTATGCCAAGACCATGGTCGATGAAAACGGGGTAACCCACATGATGCGGCCAAAGGACGGCAACAAGGACCAGACTTACTTCCTGAGTCAATTGACCCAAGAGCAGATCAAGCGGGTCATGTTCCCCCTGCAAGACCTGACCAAGCCGGAAGTGCGGCGGATTGCCGAAGAAGCCGGCCTGGTCAACGCCAAGAAGAAGGACTCAACTGGCATCTGCTTCATTGGGGAAAGAAACTTCAAGCACTTCCTCAGCGAATTCCTGCCAGCCCAAGGCGGGGACATGGTAACCCCGGACGGGAAGGTTGTCGGTCATCATGCCGGTCTCATGTACTATACGATCGGTCAGCGGCAGGGCCTGGGCCTGGGTTCAACCAAGGAGTCAACCGCTCCCTGGTTTGTCGTGGGCAAGGACCTGGAAAAGAACCAGCTGATCGTGGAGCAGGGCTATGACAGCCCCCGCCTTTACGCTGACCGCCTGCAGGCTTCCGGCATGACTTTCTTTACCGGCAACCCTGAGGAGGACACGGAATTCAAGGCAACCGCCAAGTTCCGCTACCGGCAGTGCGATGTTGGCGTTACGGTCAAGTACCACGCAGCCAGCAAGACTGCTGATGTCTACTTTGACGAGCCAGCCCGGGCAGTTACCCCGGGCCAGGCTTTGGTTTTATATAATGGCGAGGAATGCCTGGGCGGCGGAAACATTGACGCTGCCTTCAAGGATGACAAAAAGCTCCAATTAGTTTAACGGCAAGGCCAAGTCCCGGCGGACTTGGCCTTGTTCGTGTTTAGCGGGGCCGTCTTTTGCTATAATAAATAGCGATAGTTACGAGAGGCGATAAAAATCATGGAAATATATTTTGTAAGACATGGCAAGACACAGTGGAACCTGGAGCAGCGTTTCCAGGGCGGGCAAGGCGATTCAAAATTATTGCCGGAAAGTTTGGCCGACATTGAGAAGCTGGGACGTTATTTACAAGGGAAGCATTTTAAGGCGGTTTACGCCAGCCCCCTGGACCGGGCGAGAATGACTGCCCAAGGTCTGATTGGTGCGGCCGGGATCCGCCTGCCCTTGCACATCGATGAACGTTTGCGGGAAATGAACCTGGGCAAGCTGGAAGGAATGAAGTACGCTGAGGCGGAAAAGCTCTATCCCCAGGAAATCGACAATTTTTGGCATCACCCGGACAAATACGACAATACTGTCGTAGAGGGGGAAAGCTATGAGCATGCCATGGCCAGGGGGCTGGATTTCGGCCGGGAAATGGCCGAAAAATACCCCAAAGACAGCGACAAGGTCCTGGTGGTCAGCCACGGGGCAGTTCTATCAGCCATCATGGGGGCGCTTTTAGGCTATGACCTGGCCAATCTCAGACAAAATGGGGTTATCTACAATACCAGTGTTTCAGTCTTGGCAAGCCAGGAAAAGGGCCCTGCCTTCAAGCTGGTCAAGTGGTCAGACGTTACTCCTTTAGAGCACAAGATGTCAGAAACGGATGGTTTGTAATGGATCAGAAGATCAATCAGCTTTATGAAGAAGGAAAAGTCGACCAGGAGATTCATGCCTTGATTGAGAAAATCGACCATAATCCCCGGGAAACTGCCAACTACCTGCAGCTGGCCACTTACCTCCTGGACCAGGGTAGCGCTGAGCAAGCCCGGGAGCTCTTGACCAAGGCCCGGGGGATCGCGGAAGATCCCCAGGCCTTGGTCTATGACCTGGCGGTTTGTGACTACGCCCTGGGCGACTTTGATCAGGCCCTGGCCCGCTTGGCCCAGATTCCTGATGATGACATGACCATGTACCAAAAGGCCCTGGTCTACCTCAAGCTGGGCCAGAGCCAGAAGGCCCTGGCTTATGCCCTGTCGATCAAAGAAAGTGATGACCGGGTAAAAGAGCTCATCGGGGACATCTGGCTGGCTTTAGGAGAGTTGGAAGCAGCCCGGGCCAGCTACCTGGAAATTGCTGAAGGGCAGAGAAGTAGCAAGCTGAACTTTTTGCTGGGCCTCACTTATTTCAGCCAGGACCGGGAGCAGGCGGAAGAATTTTTTGCCAAGTCCAAAAAGCAGGATCCCAAATATTACCAAAAAGCCAAAGACCAGTATGAGTCCCTGCTGAAGCTGCTGAGCCAGGGAAAGGCAGGGGCTGGGAAAGAATAATAAGGAGCGGGAAATGACCGAGTTTAGCGGTGAAGTAAAGAGCGTTATTTATGAAAATGCGCAAAACATGTACAAGATCTTGCTGGTCGCCGTAAGTCAGCCTCTGGCCGGCTATGACGATGATGAAATCAAGGTGACGGGGACCTTCGGGGACCTGGAGCTTGGCCAGGAATACAACTTTACCGGTGACTTGGTCACCCACCCCAAGTACGGCTTGCAGTTTCAAGCGACTGGCTGCCAGCCGGCCCTGCCGAAAGAGACTGGCGGGGTGGTCAAGTACCTGTCTTCTGAGAAGTTCCCTGGCATCGGGCCCAAGACGGCGGAAAAGATCGTTGACCAGCTGGGCAGCGGGGGCTTAAAGAGCTTGCAGGCTGATCCAACCTTGATCGCCAAGCTGGATCTTTCCCAAAAGCAAAAAGACAGCCTCTTGTCCGGCCTGGCTCAGATGGATTCCTTTGACGACCTGGGTATGACTTTGGCCAGTTACGGGATTCCCCGCAAGGTGGCCGGCCGACTTTACCAGAAGTACCATGACCAGACCTTGAAAAAGCTGCAGGCCGATCCCTACCTGCCTTTAGGCGAAGTGACCGGCTATTCCTTCAAGCAGGCCGATCACTTGGGAATTGGCTTTGGAATTGCCCTTGACAGTCTGGAGCGGGCTGATGGCAGTATCCTGGCGGTTTTGCTCCAGGCCTTGACCATGGAGGGGGAAACCTACCTGGAACTGGAAGAACTTTTGCCAGCCGCCAAGGAACTGACAAATATAAATTTTGACCTCCTGGCAGAAGCAGTTAACGACCTGCAGGACAAGAAGAAGGTCGTCGTGGAAGAAGGCCGGGCCAGCCTGCTGGCCCCATTTCAAGTGGAAAGCGAGATCGTGACCGACCTGGAAGACCTTTTAGCCAAGGGCAAGGAAGCGGACTACCGGGAAAAGGACTTGGACCAGGCCATCAAGCGGGCCGAAAGGAAGCTGGGGATCAGCTATGACCCTGAGCAAAAGCAGGCCATCAAAAACGCGGTAACCAGTCCGGTCTCCATCCTGACTGGGGGACCCGGGAGCGGGAAGACGACCATCATTGACGGGATCTTGCTGGTCTTAAAGGACCTGGCCGACATGGACGAAGAAGAAGCTGAAGAAGCGATTCTCCTGGCCGCGCCAACCGGCCGGGCAGCCAAGCGGATGGAGGAAGTCACCGGCTATCCGGCCAAGACCATCCACCGCCTCTTGGGCCTGGGGATCGACAACAGCGAGGAAATGGAGCTGAATGATTTGGAAGGGGAGATCTTGATCGTCGACGAAATGTCCATGGTCGATATCTACCTCTTTGAAAAGCTGCTCAGCGCCATCAGCAATGTTCACCACCTGGTCTTTGTCGGTGACAAGGACCAATTGCCATCCGTCGGGGCGGGGAAGGTTTTCGCTGACTTAATCGAGGCGGACTTCATTCCGACCTGCCAGTTGCAGGTGGTCCACCGGCAAAAGGACGATTCAACGATCATTCCCCTGGCCCACGCGGTCAACGAAGGAGCCAACCCGGCTGTTCTCTTGCAAAAGACGGCCAGCTACTCCTTTATTCCTTGCCGGCCCCATGCCGTGCCTAGCGCCGTCGAGCAGATCACCCAGGCAGCCTTAAAGAGTGGCTTTGCGGCTGACGACATCCAGGTTCTGGGGGCCATGTACCGAGGCGACGGTGGGATCAACAGTCTGAATGACACCCTCCAGCGGGTGATCAACCCGGAAAAGGGCAATGATAAAGCAGTTGAGGCCCATGGTGAGAACTTTCGCCTGCATGACCGGGTCCTGCAGCTGCAAAATGACCCGGAGCGGGGGATCTACAACGGCGAGATTGGAAAGGTCGTGGCCGTTGACCCGGAAATGCTGGAAGACGAGGATGACGAAGTCAAGCTTTTGGTCAATTTTGACGGCAATGAAGTGGCTTACACGCAGGCGGACTTGAATAACCTGACCCGGGCCTATGCCATCACCATCCACAAGTCCCAGGGGTCAGAATTTCCTTTGGTCATTCTCTGCTTAACCATGCAGAACTATATCATGCTCAAGCGCAATCTTTTGTATACGGCCATCACCCGGGCTTCCCAGAAGCTGGTCATGGTCGGAGAAGAGCAGGCTTTTGCCCAGGCCATGCGGGTCAAGGGCAATGAGCGGCGGACCAACCTGGTCTGGCTCTTGAAGGACCGCTTTAAGCCAGAAGAACAAAGTAAGCAAGAGAGTAGTGACTCTACAGAGAATACTCTGGATAAAGAAGAAAAAGTCGAAGACTACATCTTGACCGGGGCCCGGATCAGCCGGGCGGAGATTTCTCCCATGGTTGGCATGGAGGGCCTGGTTCAGGGATGCAAGAATTTGGTGGAAATCGTCCGGACCAAGGGACCAGGAGCCTAACTTAATAAAGTTTTTGACAGAAAGACCACTTAGCTTGGTCTTTTTTTTGCCAAAAAATTAAGAAAGTTACTTTTGTAAGTAAAGTGCTGACAAGAGGAAGGCGATGGGGTATACTAAAGGAAACTTACAAAAAGTTAGTTATCCTTTGAGAAAGTTGGGTAAAAAATGACAGAAAAAGAAACAAAGAAGACAGTCAAAAACATCATCATCGGTTTTGGCAAGGGTGGCAAGACCCTGGCCAAGTTCCTGGGCCAGCAGGGCGAAGAAGTCCTCCTGGTGGAAAAGTCAGCCAAGATGTACGGGGGCACCTGCATCAATATCGCCTGCCTGCCGTCCAAGCGCTTGATTTTGGAAGGGGCAGCCGGTAGCGATTTTTCGGAAGCAGTCGCTGGCAAAAATGAGATGACAGCCCAGTTGCGGGAGAAAAACTACCAGATGTTGGCGCAAGAAGAGACGGTGACCGTCCTTGACGGCCAGGCCCGCTTTATTGGCGAAAAAGAAATCGAAGTCACGGGGCCGGCTGGCAAACAGATTTTTAAGGGCGACCGGATCTTTATCAACACCGGGGCCAGCCCTGTCTTGCCGCCTGTTCCTGGTTTAAAAGAGAGCAAGAAGCGGCTGGATTCCACCCAGGCCATGAACTTGACCAGCCTGCCAAAAGAGCTCTTGATCCTGGGGGCCGGCTACATCGGCCTGGAATTTGCAGGCATGTTTGCCAATTATGGCAGCCAGGTGACTGTTTTGGACCACAGCCCGGAATTTTTGCCAAGAGAAGATGACGATATTAAAGCCGCCGTCAAGGCTGACCTGGAAAGAGCCGGGGTTAAGTTCATCTTAGGTGCAGATGCCGAAAAAGTCAGCGACGAAGCTGACCAGGTCGTAATTGACTACAAATTAGGCGAAGAAAAATTGACGGCTGCTGCTGACAAAGTCTTGGTCGCTGCCGGCCGGCGGGCCAACACGGCTGATCTTAATTTGCCAGCAGCCGGGATTGAAACTGACGACCGGGGCAATATCAGGGTTGATGACCGCTTAAGAACAAGTGCTGACCAGGTCTGGGCCCTGGGCGATGTCAAGGGCGGACCGCAATTTACCTATGTCTCCCTGGATGACTTCAGAATTGTCAAGGACCAGCTTTTTGGCGAAGGCAAGCGGAGAGTCAGTGACCGGCAAATCCTGCCGACCAGCGTCTTCATCACCCCGCCTCTGTCAGCTGTTGGCCTTAATGAAAAAGCCGCCCAAAAGGCCGGGCTTGACTACCAGCTCTTCAAGCTGCCAGTTGCCGCCATTCCCAAGGCCAAAGTCGCCAAGGACAGCCGGGGCTTGTTCAAGGCCCTGGTTGACCCGGCAAGCGGGCAGATCCTGGGGGCCAGCCTGTACGGCCTGGAATCCCATGAACTGATCAACCAGATCGCCCTGGCCATGAAGGCCAAGCTGCCTTACAGCTTCCTGCGTGACCAGATCTACACCCACCCGACCATGAGCGAGGCCTTTAATGACCTCTTCAAGCAATAAAAAAGAACTCCGGAAGGAGTTCTTTTTTGCTATCAAGCTTTATTTCTTTTCGACCAGCATTGGCAGAATCATTGGCCGCCTTTCAGTCCGGGAGTATAGGAAGTCCTGCAGGTTCTCGATGATCGCCTTGCGGATTTCGCTGTCCTTAGGCTTGTCGCTCTTGGCCATTTCCGTCTTCAAGACATGGTAGACGTGCTTCTGGGCCGCGTTGATCAAGTCCTGGGATTCACGCATGTAGACAAAGCCCCGGCTTAGGATGTCAGGGCCTGCCAAAACCCGCTTGTGCTTGTAGTCAACCGTGGCTACGGCTACTACCAGCCCTTCTTCAGACAGGATCTGTCGGTCGCGGACCACGATGTTGCCGACATCATCAGCACCGGAAGTGTCGACGAAGACGTCCTTGACGTGGATGTCGCCGGCGATTCTGGCCCCTTCAGGGCTGAAGCAGACCACTTCACCGTTCTTCAAGACGAAGGTGTTCTCTGCCGGCACGCCTGCTTGCTGGGCCAGGTGGGCGTGGACAACCTGCATCCGGTATTCACCGTGCACCGGGATCATGTACTTCGGCTTGGCCAGTTCGACCATCAGCTTCAGTTCTTCCTGGCCGCCGTGGCCGGAAGTGTGGACATTGTTGACCCGGCCGTGGACCACGTTGGCCCCGCCTTCCATCAGCTTGTTGATCAGCTGGTTAACGCTCAAGGTGTTGCCTGGAATCGGGTTGGAAGAGAAGATCACAGTGTCATGCGGCTTCAACTTGATCTGCCGATGGGTGCCGTTGGCAATCCGGGAGAGGGCAGCCAGGGGCTCACCCTGGGAACCGGTACAGAGGAGCATGACCTTTTCCGGCGGCAGGGAGTTGATTGTTTCAGCATCGACAATCAAGCCTTCCGGCACATCCAGATAGCCCAGGTCGATCCCGTTTTGGATCCCGTTTTCCATGCTCCGGCCAAAAATCGCCACCTTGCGGCCGGTGTCGATCGCGGCTTGAATGGCGGTTGACACCCGGTAAAGGTTGGAAGCGAAAGTGGCAAAGATGATCCGGCCTTCAATGCCGGTGATGATGTTGTGCAAAGAGCCGGCAACGAAGCGTTCAGACTTGGTAAACTGTGGCACTTCGGCGTTGGTTGAGTCACTCAAGAGGGCCAAAACGCCTTCTTCGCCCAGCTGGGCCATTCTCTGGAAGTTAGGGGCCGGCTGGTTCATGACCGGGGTCAAGTCGAACTTAAAGTCGCCAGTAAAGACGACCGCGCCCAGAGGAGTGTGGACGGCAATCCCCAAAGTGTCGGGGATTGAGTGGGTGGTTCTGAAGAAGGTCACCTTCAGCTTGTCAAAAGTCAAAACCGTGTCTTCGTGCTCTTCATGCAGCTCGGTCCGGTCCAGGATTCCGTGTTCTTCACACTTGCTCTTGATCAAGGCCAGGGCAAAAGGCGTGGCGTAGACTGGAATTTCCGGAATCTTTTCCAGCAGGAAGGGAATTCCGCCGATGTGGTCTTCGTGGCCGTGGCTGACAACCAGGGCCTTGATCTTCTCCCGGTTCTTGACCAGGTAAGAGTAGTCGGAGATAACATAGTTGATCCCCAGCAGATCATCTTCCGGGAACTTGATGCCGCAGTCCATTATGACGATTTCGTCTTGGTACTGGACACAGTACATGTTACGGCCGATTTCGTGTAATCCCCCGATCGCGAAAACGGCTACTTCGTTTTGCTTAATCTTCACTGTTAGTTTGGCCAAAGGCAGTCAGCTTGAAGTCAGCGTGTTCTTGTTCGTACTTCAAGGAGTTGCCGGTTAATTCTTGGATGAGCTCGATGTTGTAGGGGGTGTTTTGTTCAACGAGGGCTCTGGCTTGGACAATGTTGTCGGCTTCCATGTAGAGAGTCTGGGTCGTTTCTCTGCGTGGGTTAACGATCTTGTCCTTTTGATATAAAACTTTGTAGATCATAAAAAATCTCCTTATTGTTTAATTGTAATTTGATCTCTGTTTGAGAAATTTTGCCAAAAATACTCAATAGCTAATTAAAGTTTAGCATAATTAGAAAAGCAAGTATAGAAACATACTTGATCTAAGGAGGCAAAAAAGCCCAAGCCAGGACGAAGCGGGCTGGCTTGGACTATTGAGCCTAGTAGATGACGATGGTGTCTTCATCCAGGGCAAATGGGTTTTCCTTGTTGATCCGGTCGTAGAAGAGGTGGCCGTTCAAGTGGTCGATTTCGTGGCCGGAGACGATGGCTGGGTAGCCCTTGAGGCGGATGGTCTTTTCCTCGCCGTCAACGGTCCAGTAGTGAACCGTAACCTTGTTTGGCCGCGGAACGTAGCCGTCGATGACCTTGTCAACGCTCAGGCAGCCTTCGCCTTCGCTCAGGCAGGTCTTGCGGACGGATTCAGAGATGATTTCCGGGTTAACGTAAACTTCCTTAAAGATGATTTCCCCCTTGTCGTCTGGCACAAGCAGGGCAGCCATAGACACGCCCTCACCAACCTGCGGGGCAGCCAGACCGACCCCGGCCCGGAGCTGGTGCTTGGCGGCAATCTTTGGATCTTGTGAGTTTACCAGGTATTCCATCATGTCATCGGCCAGCTTGCGGTAGTGGTCTGACAAGGGAAAAGTCAATTTTTGCGCAACTTGCCGCAAAACGGGATCCCCGTCGCGGACAATATCTTTCATTAAGATCAATGTGGGTTCTCCTTTTAAAATAATCGCTAATATATTTTTACCACAAAAAGGCCTGCTATGGTTAAACATTCTCTGAAAAGCATATGTAAACTAAAGCAAATTTGTTGACCAGGCCCAAGAGTGGTTGTACAATAGATGATTGTAAAAAAAATATAAACATTACTTCGGCCAGCCTGCTATCTAAGGCTAAAGGGAACTGTGCTTTTGTCACAGTTCTTTTTATGAGGAACGGGGAGGAAACATTTTTGGCAGATCAAAAGAGAAGAGAAAACATCAGAAACATCGCGATCATCGCGCACGTCGACCACGGTAAGACTACCCTGGTTAACCAGCTGCTTAAGCAGTCAGACACTTTACCAGAACACATGAACCTGGAAGACCGGGCAATGGACTCCAACGCCATTGAACGTGAACGTGGGATCACGATTCTGTCAAAGAACACCGCGGTCAGCTACAAGGGCACGACCATCAACATCCTGGACACTCCAGGCCACGCCGACTTCGGTGGGGAAGTTGAACGGATCATGCACATGGTTGACGGTGCCCTGCTTCTGGTCGACGCGTATGAAGGCCCAATGCCTCAGACCCGCTTTGTTTTGCAAAAGGCCCTGGAAGCCGGCGTTAAGCCAGTTGTTGTCGTGAACAAGATCGACCGTCCTGGTGCCCGTCCAGCTGAAGTTCTGGATGAAGTTCTGGAACTCTTCATCGAACTTGGCGCCAACGACGAACAACTTGAATTCCCAGTTGTTTACGCTTCTGCCTTGAACGGTACTTCTAGCTGCTCAGACGACCCGGCTGACCAGGAAGAAACCATGGACCCGGTCTTCGACACGGTAATCAAGGCCATTCCGGCTCCGCTTGACAACGAAGACGAACCTTTGCAGTTCCAAATCACCATGCTTGACTGGGACGACTACGTTGGCCGGATCGGCGTCGGCCGCGTTTACCGGGGCAAGATCAAGGTCGGCGACGAAGTTACTGTCATGAAGCTTGACGGCTCCAAGCAAAACTTCCGCGTGACCAAGCTTTTTGGTTACTTCGGTTTGAAGAGAAACGAAATCAAGGAAGCCAAGGCAGGCGACATTATCGCCATCAGTGGGATCAACGACATCTTCGTCGGTGAAACCATTGCTTCCAAGGAAAACCCAGAAGCCTTGCCAATTCTGCGGATTGACCCGCCGACTCTGCAAATGGACTTCGTGGCCAACGACTCACCATTTGCTGGCCGGGAAGGCAGCCAGGTTACTCCAGCCAAGCTGGAAGAACGGCTTTTGCGGCAAACCCGGACTGACGTTTCCCTGAAGGTTGAACCAACTGACCAATTGAATGCCTGGACTGTTTCAGGCCGTGGGGAACTGCACTTGTCCATCCTGGTTGAAGAAATGCGCCGGGAAGGCTTCGAACTGCAACTGTCCCGGCCAAAGGTTATCTACCGGGAAGTTGACGGGCAAATGTGCGAACCATATGAAGCTGTCCAAGTTGACGTGCCGGACGAATATGTCGGCTCGGTTATCGACGGCTTGTCCCAACGCAAGGGTGAAATGCAGAACATGGTTTCCAAGGGCAACGGCCAGACCCGGTTGGAATTCTCAGTTCCTTCCCGTGGCTTGATCGGCTACAACAACGAATTCATGTCCGCAACTGGTGGTTACGGGATCATGAACCACACTTTCAGCGAATACAAGCCAGTCGTTAAGAACTGGAACCCAGGCCGGCGCAACGGTGCTTTGGTTTCCATCAACCAGGGGCAGTCAACTACTTACTCCCTGCAGTCAGTTGAACAACGCGGCCAGCTCTTCATCGGTGCCGGCGTGCAAGTTTACGAAGGGATGATCGTTGGTGTATCTTCCCGTGACCGTGACATCGCTGTTAACGTAACCAAGGGCAAGAACCTAACCAACACCCGTGCTTCCGGTAAGGACCACGCTGCGGCCATCAGAACGCCAAAGACTTTGACTTTGGAAGAATCAATCGAATTCTTGAACGATGACGAATACTGTGAAGTAACTCCAGAAAGCCTGCGCCTGCGGAAGAAGATCTTGAACACTTCAGAACGGCAAAAGTTTGACAAGAAGAAGGCCAAGACCAACTAATTGTTAGTTTTTTGGTAAGTCTCTCCCCCTATTTATAGGAGGAGGGGCTTTTTTGTTTTATAATGAAAAGCGATGATTATTTTTAGAAGGGGAAAAACGTGAAGAAAAATAAAGTTGCTGCCACGGCCGCCAAAATAAAAGAGACATTCCAATATTTCGACTACCGGATCTTCATCGTCTACTTGCTTTTGATGACGATCGGGGTGATCGCGGTCTATTCGGCCAGTTCAGAAATCCTGCTGATCAACGGTTTCAAGGCTACGGTTTACGGGCAAAAGCAGCTGCTTTACGCCTTTTTCGGGGTATTGATCTGCCTTGCCTGCTACAGCATCAATCTGGACTACTTAAGGCGGGGCAAGCTGCTCTTGTGGCTGCTGGTAATTGTGGCCGGTTTATTGGTCTATGTCCTCTTCTTTGGCCAGGCGGTCAACGGGGCCAAGGGCTGGATCAACCTGGGCCCAATCAACATCCAGCCCTTGGAATTAGCCAAGCTGGTCCTGACTTTGTATCTGGCCCGGATGCTGGCTAAGGCCGACGGGCGGTTAGTGCGCGGACATATCATCTCCCAGCTTTTGCCTACGGCAATCATCGCGGGTTTACTAATGATCCTGGTTTTGATCGAACCTGATTTCGGGGGGACAGCCATCATTTTTTGCCTGGTCCTGATCATGTATTCAGTTTCCGGGATCCCGACCGGCTACATCCTCTTGAGTATCATCGGCATCACCGTTCTGGTGGTCGGGGGCTTCAGCTTGATCGTGGCCTGGAACCCGAGCTTCTTGCAGGATATTTACGTCTACAAGCGTTTTATCGCCTTCCTGCACCCATTTAAGACGGCTGCCAATGAAGGGGCCCAGCTGGTCAATTCATATTATGCTATCCATAACGGGGGCCTTTTTGGCTTAGGCCTGGGCAACAGTATCCAGAAGCGGGGCTATCTGCCGGAACCTTACACCGACTTTATTTTGTCGATCATTGCCGAAGAAGTTGGCTCTCTTGGCGCATTAGTAGTCTTGGGCCTGCTTTTCTACCTGGTGATTTTGATCATGGAGCGGGGGGTCAAGGCCCAGTCCCAGTACTCCACCTTGATCTGCTTCGGGGTGACCGCGATTATCTTTTTCCAGACTTTATTTAACGTTGGCGCGGTCTTAGGCCTCATGCCGATCACCGGGGTGACCCTGCCTTTTATCTCTTACGGGGGTTCCTCACTCTGGGTCTTGTCGGCAGCGATCGGCCTGGTATTAAATGTTACCGCGGAAGAAAAAATCAGACAGGAGGTGCAAGCAGAGGATGAGTATTAACCAAGAATTAGCTGACCAGGAGATTGCCAGCCGGACCAGCTTGATCGTTTACTTGCGTAACGTCAACGATGATCAGTTCAAGCTGCGCCGGTTCGGGGACATCGTTTATTTTTCCAAAAAGCTGCACTATTTGATTCTCTACGTTAACCAGGCAGAGGCGGAAGAAACGGCAAGCAAGCTGCGGACCTTCAGCTTTGTTAAGAAGGTTGAATTCTCCCAAAATGATGCCCTGGACCTGGACAACCAGAAGATTGAGCAGCAGATCAGTGACATGGCCAAGGAGGCCGAAGAGAAGTTAAATCAGACAGATAAAGAGGACTGGATTAAGTGAGAATTATTTCTGGAAAATACGCCAAACGGAACTTGTTTACCCTCAAGAGCCAGAAGACCCGGCCGACTAGCGACAAGGTCAAGGAATCCTTGTTCAATTCCCTGGGCCAGTTTTTTGCTGGAGGAGAGGTCCTGGACCTGTACGCGGGCAGCGGGGCTTTGGGGATTGAGGCAGTTTCCAGAGGCTGCGAGCATGCGGTGCTGAACGACGTCAGCCGGCCGGCCTGCCAGATCATCAGGAAAAACGTGGACTTGACCAAGGAGCCGGACCGCTTTGAGGTCTTCACCATGCCGGCGAAAGTGGCCTTGAAGGTCTTCGCTGACCAGGAAAGGAAGTTTGACCTGGTCTTTTTGGACCCGCCATATGCCAAGCAGCAGATGGTCAAGGACATGACGGCTCTGGCTTCCCTGGACCTGCTTAAGCCGGGGGCAAAAATTGTCGTTGAAACTGATGAGCAGACAGACTTGCCGCCGGTTGCCGGCTTTGACCTTTTGAAAGACCACCATATGGGCAAGACGATCGTAAGAATTTACCAGAGGGCAGAATAGATGATGACAGCGTTGTTTCCGGGGAGTTTTGACCCCATTACCAACGGGCATATGGATACAATTGAGCAGGCGGCGAAGGTCTTTGACCGCCTCTTGGTCGTAGTGATGACCAACAGCTCAAAAAAGGCGCTTTTTACGCCGGATGAGCGGGTGGACTTGATCAAGGACGCAGTAAAAGAGCATGGCCTGGCCAATGTCGAGGTCCTGGCCCGGCCGGGCCAGCTGACGGTGGACCTGGCCAGGGAATTAGGGGCCGGGATTTTAGTCCGCGGGGTCCGCAACAGCAGCGATTTTCTCTATGAGCAGCAGATCGCCCAGTTGAACCGGGACTTGGCCCCGGACCTGCCGACTGTTTTGTTTATGGCTGAGGCGGCCAACAGTGCTTTGGCATCGAGCATGCTGAAGGAAATCGCCATGTTTGGCGGCGAGCTGGACCGCTTTTTGCCCAAAAAAGCTGCCAGAGCCTTGAAGGAGAAGCTGCAAAGTGAAAGTTAAGAAAGACGGACAAAGCAAGAAGTGGCGCCGGGCCCTGGTCGGCTTGTTTGCGGTTATCCTGCTGGCCCTGGTCCTGCTCTTGCCAACCAAATACGTGATTGAGGCGCCCGGGGATGCCCTGCCGGTCGGCAATTATTTAAAGACGACAGGGGTTAAGGCTAAAAATAACCTCTACTTCGTGACCGTGAGTGAGCGGAGGGCGGTTTTGGGCGATTATTTATGGTCCTTTACCCAGCCTTATGAAGACCGCCTGACCATGGATGAAGTGACCGGGGGATCAAGCACGGAGCAATATGAACAGCTGCAGGAATGGTACATGCAGACCAGCCAGCAGACGGCCATCTATTACGCGGCCAAGAAGGCCGGGCTTAAACCCAAGCTGAAATACCAGGGCGTATATGTGATGGACCTGCAGTCCAGCTCCAGTTTTAAAAAGAAGCTCTTGATCGGGGACACGATCGTAGCGGCTAATGGGCACAAGTTCAAGTCTGTCCAGGGCTTTATGTGCTACCTGCAGAAGCAGAAGATCGGGCAGAAGGTGTCGATTACGGTTTTGCGGTCCGGGAAGAAGCAGACTTTTACCGGGAAAATCGTCAAGGTGAAAGGCACCGGCAAGCCGGGGATCGGGATCAGCATGGTGGAAAGGGTCAAGGTGGAAGTCAGCCCGAAGACGACGATTAGCACGGGCGACATTGGCGGCCCGTCAGCTGGTCTGATGTTCTCCCTGGCCTGCTACCAAAACTATACTGGCAAGGACTTGACCAAGGGCCACAAGGTAGCCGGGACGGGGACGATCGATGCAAACGGCAAGGTCGGCATTATCGGCGGCGTGGACAAGAAGGTCGTGGCCGCGGATAAAGAAGGGGCAGAAGTATTTTTCGCCCCAACTGACCAGACCGGGGTCAAGAAGTCCCAGACCAACTACGCGGTGGCCAAAAGAACGGCCAAGAAGCTGGGCACGAAGATGAAGATCGTGCCGGTGGCAACTTTTGATGATGCCTTGAAATACCTGCAAAAGCATTACAAGTAGAAAACTGAATAGTTAAGAAGAGAACCGGAGCCAGCCTCCGGTTCTTTTTTGCCTCAGTAAATTTTGTCTTTTTCTTTTTTCTTTTATTTAGGAAAAAAGACCATTTTTGGCGTATTAGTTATTGAGGTGATAAAAATGAATCAGTCAAACGAAAGAACGGAAGGCAAGCAAAAGCTGCAGGACCTGCTTGCCTGGCTTATGGATAAGAAAATGTACATCGTAGTCGTCTTGCTGGCGGCCGGGGGCTTTTATTATGCCAACCGGCAGCCGGCTGCTGACAATTCTGCTCTTTTGTCCAGCAGCCAGAGCATGAGTGAAAACAGCGGGCAAAGTCTGCAAAGCTCCAGTGTCAGTTCAGTGGCTGCCAGCGCCAGCTCAGCGGCTTCTGCGGCAAACGCTGAAGTAGTCTGCGATATTTCAGGAGCGGTCAAGCACCAGGGGGTCTACCGGCTGAAAAACGGAGCCCGGCTGGAAGACTTGATTGAAAAGGCCGGGGGCTTGACCAAGGATGCCCAATTGCAGGCCATCAACCGCAGCCAGCTTTTAAAAGACCAAGACAAGGTCTACATCCTCGGCAAGGGGGACAAGACGGAAGCGGCCCAGACCGCTAACTCTGCTGCAGCTTCTTCTCCTTCTGCATCAGCCTCAGCCTCATCAGTCTCTTCTTCAGCTTCCGGGGCAGCTTCTGGTGACTTGATCAATTTGAACACGGCTACAGCCAGCGATCTGCAGAAGCTGAACGGGATCGGGGAGAAGAAGGCCGAGCAGATCATTGCCTACCGGCAGGAAAAAGGGTCTTTTAAGAGTATTGACGAGTTGAAAGAGGTGTCGGGAATTGGCGACAAGACCTTCGCGGCAATTAAGGACCAGCTTACAATCTAGCCTGCAAGCCGGCTTTTACTTTCTTTTGGCCTTGGCCAGCGTCAGCTTGTGCGGGATCTTCCAGTCGCAAAAATGGGGGAAGCTTTTTGCCCTGGCCGCCTTGATCTACCTGCTCTTTTTGCTCAAGGATAAATATGGCGGTTTGGTTAAACTCGCCATGGCCTTCTTGCTCTTATTGACTTTGGTCCTGGCTAAGGACCAGGTTAAGCCGGGTGAGCCGGCAGGCGACATCCGCCTGTACCCCGACCAGGTGAAAATTACCGACGGCTGGCTGAGTGGGCGGGGGCAGACGGCCACGCAGAAAGTGCAAGTTTACGGGCCGGCAAGCCGGGAGGCACTAGCCTTGCTGGAAAACGGGCAAAGTATCGACTTAACTGAAGTTAGCGGCGCGGTCAGTGAAATAGAGCCATCGACCAATCCCGGCCAGTTCGACTACCGCCGATATTTGGCCAGCCAGCATGTCTACCGGCAGGTCAAGCTGGCTCATTATCAGTTCAAGTTGGCTCCGGCTAGTCTTCTTACCCGCTTGCATGGCCTCCGCTGGAAAATTCAAGCTTATCTGAAGCGCCTGCCCCGCCTATTGGCCTTTTTTGCCAGTGAACTGCTGCTAGCGGAAAATCCGGCTGGGGACAACCAAGCCAACTTGAATACCTACCGGGACCTGGGGGTTATCCATATCTTGAGCATTTCGGGGATGCATGTGGGCATTTACGTCTTTGCTCTGGCGGTTTTCGGCAGCTACCTGCACATGACCAAGGAGGAAGTTTTTGCCGTTTCCTGCGCTCTATTGACCTTTGAGGTCTTCTTGAGCGCGGGCCGGCCAGGTTTTATCCGGGCGACTCTTAGCTATGTTTTTTCAGCCGGATTAGCCTTTAAGAGCCGGAGGATCGGCCGGGCTGACCTGTTGGGCTTGACTTATTGCTGCCAGCAGCTTTTTACTCCCCGCCTTTTGCTGGAAACCGGCGGGATCTTGACTTATGTATTAGCCCTGGGCCTGGTCTTGACGGCGAAATTGCCAGACTGCAAGCAGGCTTTTTGGCTGAACGGCCTGCTGACGCCTTTTTTGCTCTACTTTTTCTACCAGGTCAATGTCTGCACGATTTTTTACAATATTTTAGTCGTGCCCTATTTCAACTATATCGTCATGCCCATGACCGGCCTGGCCTTGCTGGCTCCGCCGGGTCTAGCGGCTTTTTTTGAAAAAATCCTGGAGGCGGCGGAAGGGATGCTGGCTAATGTGGCGAAAACCGGCTTTGGCCAGCTGATCTATGGCCAGGTCAAGGCCTGGCAGCTGGCCCTGCTTTTTGCCTTAACCTTCCTGTATCTCATCACGCGGAAAAAGAAATACCGCCATATTCTGGCGGCGGTCTATCTCTTAATTTTTGTCAGCATCCACTTTCCCTTGGAAGGGCAGGTCTCTTTTATCGATGTGGGTCAGGGTGACAGCATTCTTTTAACGACGCCCATCCGCCGCCGGGTCTACTTGATCGATACCGGGAGCAAGCTGACTTTTGGTAAAAAGAAACAGAGCCAGCCCCAGATCGACCGGATTACCATTCCTTTGCTTAAAGCCCAGGGAATCAGCCAGATCGACGGGGTCTTCGTCAGCCACCAGGATGCTGACCATGTTGGTGACCTGGGCCCCCTGCTCGAGGAAATGCCGGTTAAGCGCCTCTATATGGGAGCAGGTCTTATTCAAAATCCGAGCTTTAGGGCCAGGATAGCCGGCCGAGTAGAGAAGACCAAGTTGGTTGAGCTGAAGGCAGGGATGGAGGTGAAAGAAGCGATCAACTTCCAGGTTCTTCACCCGGAAGTAGCGGGAAAAGGGGAAAACAAGGACTCCTTGTCGCTTACCTGCCGTCTGGCTGGGAAAAGCTGGGCTTTTACCGGGGACCTGGACCAGGCAGGTGAGGAGGCAATCATTAAGAAGTTTCCCGATTTGAAAATTGACTACTTCAAACTTGGCCACCACGGCAGCGATACTTCTTCTTCAACTGTCTTTTTGCGGGCAATCCAGCCAAAATTAGTCTTTATCTCCGCTGGCCGGAACAACCGCTACCACCACCCCAAGCCGGAAACCTTAGCCAAATTGCACCAGCTGGGGATTCCCTATCTCAATACCCAAACGGAAGGGATGATCAGCTGGCATTACGGCATCAGGGAATACTTCAGCAGTTTTCTGGAAGGGCGGCGGGTGTGTTATCATTATTAAAGAGTTTACTTTTAGAGGGAGGAAAGCGGCTTGCCAAATTTGATATCCCTGTTTCCTAACAGCCAGGCGGGAAACCCGAATGTCCTGCTGCAGGGACCGGACGCTTTTTTAAATGACTATCTGGCCCATAACTATGTCCAGCAGTCAGCCTTTCAAGGCCTGGAGAAGGTGACGGTTGACTGTGAGAGCGACCCGCTGGACGACTTGATCGCGGCCTTGGCGGAAGCCAGCCTTTTCAGCCAGCAAAAATTAGTCTTAGTCAAGAACCCAATCTTTTTGACGGGAAAGTTCCCGGCCAAGTACAAGCAGCAAGGGGACCGGCTGCTGGAAATCTTCAGTCACCTAGACCAGATCGACGACGTGATCGTTTTAGTCGCCAGCTATGAGAAGCTGGACCGGCGCAAGAAACTGACCAAGCAGGTGGAAAGGAGCTTCAATACGGTCTCAACCGCGGTCAAAAGCTATGAAAGCGGCCGGGTTATGCAGGCCTTGGTCAAGGCTGAAGGCTACCGCTTTGCCGGCGGGGCCCTGGACTTGCTCATGGAGAGAAGCGACCAGGTCCTGGACGCGGCCCTGGGCAATTACAACAAGCTGAAGGCGATCAGCGACGGCCAGGAAATCAGCTGGGACCTGGTGGACCGGAATATCGATCTCAGCTTAGACCAGAACGTTTTTGCTATTCTAGAGGCTGCCTTAAGAGGGGACTACCAAGAGGCAATCGACCGCCTGGACGGGCAGCTGCGGGAGGGGACTTATCCCTTGCAGATGGTCGCGGTCTTTTTCAGCCAGGTTGAATTTTTGCTCTGCGTGAAGGTGATGGGACAGAGAAGGCGGAGTGAAAGCGAGATTGCCAAGGAATTGTCCGCCCACCCTTACCGGGTCAAGACAGCCTTGAAGTCCAGGGCGAAGGTCGGCCAGCTGAAGAAAATGCTGGGCCAGCTGATCCAGCTGGACTACCGCTACAAGAGCGGGGTCTACCAGGGCAGCCGCTTTTTGAAGGCTTTTATCCTGACCTGCTAGGCAAAAAGAGAAAAAACAGGGAATAGAAAAAGACAAAAGAAAAAGAGCGGGAAACGGATTGTTTCTCGCTCTTTTGTTGATTGCTAGTTTAATTACTTAGCAAGCTTAGCTAAACGACTCTTGTCACGGGTAGCCTTGTTCTTGTGGATCAAGCCCTTTGAAGCAGCCTTGTCCAATTCACGGATAGCAGCAACGTATAATTCGGAGGCGTTGTCCGCACCAGCAGCTTGAGCAGCCTTAAACTTTTTAACGGCAGTTCTCATAGTGCTGAGTTGAGCAGCATTGCGTTCGTTAGCAACAGCTTGAGTCTTAACACGCTTGATAGCAGATTTGATTTGTGGCATTAGGTTCACCTCCAATAACTGATTGAAATTCACTAAATTATTATACTGAAAGCCAGCGCCAGATGCAAGAAGAAATTTTACTTGCTTTTTCCAAAAAATCGGGTATGATTATATTTGTTATGTGAACCCCGGACGTTGTCTTTACGTTTCACCTAACGGCTGACGCTGTCCGGGGCAATTTTTCAAAAGAAAGGTGCAGAAACATGGCAGTTTCAAAAGAAAGAAAGAACGAAATCATCAAGGAATATGCAACTCACGAAGGCGACACTGGTTCCGTAGAAGTACAAGTTGCTGTTTTGACTGAAGACATCAACAACTTGACTCAACACATGCGTGAACACTCACACGACCACCACTCATACGTTGGTCTGTTGAAGAAGATCGGTCACCGTCGTAACTTGCTCCGCTACTTGCAAGAAAATGACTTGGAACGTTACCGTGCTTTGATCGCTCGTTTGGGTTTGCGTCGTTAATCAAAGACCTACCAAGAGGCTGGGATTTCCCGGCCTCTTTTCTATTTTCAGTTTTCTTTTCCTTTGCGGGCTTAGTGACTATCATGCTCATGCCCTTTATGTTAAAATTAAAAAGATTATAAGCGTTTTGATCGACAGATCCATATAAAGCATCTATCAGACAAAGAATTGATTTAACATGATTACGAAAAGGAGAGCTTTATGTCAGACAAGTTAAAAATAATGGTTCTAGGCGGGGTCCGCGAGCAGGGCAAGAACATGTTTGCCGTTCAGGTGAACGATGAAATCTTTGTTTTGGACGCCGGCCTCAAGTACCCGGACAGTTCATTGTTCGGGATCGATGTGGTAATTCCGGACATGGAATTCTTCAAGCAATACGGCGACCAAGTGGTGGGGATCTTTTTGACTCACGGCCATGCTGACTCCATCGGGGCCCTGCCATACATTTTGCGGGACTGGGATATTCCGGTTTTTGGTTCAAAACTCACCATTGAACTGGCCAAGATCGACGTGCAAAGAGAAAACAAGCGGCGGAACAACCAGCTGTTCAACGTCATCGACGCCGATACGGAAATCGACTTCAAGAATGCCAGCGTGTCCTTCTTCCACACCACTCACTCAGTGCCAGACTCTTTGGGGATCGTCATCCATGCTCCCCAAGGGCAGATCGTCTATACCGGTGACTTTAAGTTTGATCCGTCAGCCCGGCCAGCTTACCGCACTGACATGGCCCGGCTCGCTGAAATCGCGGGAAACGGCGTTTTGGCCCTTTTGCCGGACTCATCCAATGCTGAGGCTGTTTTACCGAATGCCAGCGAAAATGAAGTCGGCACTTACATCACCAATGTCTTCAGAAACGCCAAGGGCCGGATCATCGTGGCCGGCAAGGCTTCCAACCTAAACCGGGTCCAGCAGGTCTTTAACGCCGCTGCTGCTACCGGCCGCCGGGTCCTTTTGACTGGCCGGGACGTGGCTAAGATAGTCCACACGGCCATGAAGCTGGGCTATCTGGAAGTGCCAGACGGGCTTTTGATGAAGGCCAAGGAACTCAAGGACGTGCCGGATGAAAAGACGGTCATCCTGGAAACCGGCCGGATGGGTGAACCGCTCCAGTCCCTGCAGAAGATGGCCAATAACCGCCACCGGATGATTACCATCCACGAAGGGGACCTGGTCTTTATTGCCACGACTCCGTCTCACGCCGTTGAAACCACGGTGGCTATCACCAGTGACATGGTTTACCGGGCAGGCGGCACGGTTATCGAACTTGGCCGCAACATGCACACTTCCGGCCACGCGACTGGCCGGGACCTGCAGACCTTGATTGACCTCTTGAAGCCGCGGATTCTGGTACCGGTCATCGGGGACTACCGGCTTTTAGAAGCAGTCAAGGACTTAGCCGTTGAAACTGGGATGGACCCGGACGATGTCTATATTACCCAAAACGGGGACTGCCTAGAATACGACACTAAGCGCGGCCAGTTCTTTCGTGGGGATGCCGTGCCGGGTGAAGACACGATGATCGATGGCTCCGGGGTAGGCGACGTGGGCAACATTGTTTTGCGCGACCGGGAAGTTTTGTCAGATGACGGGATCTTCATCGCGGTAGTGACGATTGACCGCAAGAAGAAGAAGATCGTGTCTGAACCGCAAGTCACCAGCCGGGGCTTTGTATACATCAATGCCAACCACAAGCTGATGAATGACTCTATCCAGGTCATCAAGGACGCTATCCAGGCCAACTTTGAGCACAAGAAGTTTGACTGGACTGAACTCAAGCAGGACATGCGCTCCAGCCTGGGGAAGTTCCTTTACAAGCAGACCAACCGTCGGCCGGTCGTTTTGCCAGTTGTCATGGAAGTCAACCAGAACCGGCATCGGGCAATGCAGAAGAAGGCCGAAGACGCGGCTGAAGGCAACAAGGAAAAGCCGGTTAAGAAGAACAACCGCAAGAAGCAGACCAGGCCGGCAAACAAGTACGCTAAGGGCAAGAAGCCGGTAAACAAGAATAAGAAGAAGGACAGCAAGGCAGATGACAAGCGTTAGCCAAGAGAACCTGCGGAAATTGGCCATAGAGGCTGAAGCAGGAGGGGACTACCAGGCTGCCTGCGGGCACTTGGAGGAGGCCTTGAGGCTGGGCTTTGACGAGGACCTGGCCCTGGACTTGTCCCGACTTTTGCGCTTAAACAAGGAAGAAGATCAGGCTTATGCCCTTATCAAGGCACTGCCTGATCTTTTTTCCCGGGATAAAGTGCTGGAGGAGTATGGACAAGTCCTGGCGGCCAATAATTTTTTGATCGAGGCTCTCCAGGTCAAGCATTTGACTGAGGGAGAGGTCGACTTCCCGGTTTTGCCAGCAGACAAAAAGGAACAAGAGAAAATCCTGCTTGCTTTTAGAAAAAAGCAGGCAGTCAGCCAAAGCCAGTACGAGCAGCTCTTGAAGCTGGATTTGCCGACCTACCTGGCCTTTGCCAGAAGCCTTTTGCTGGATCCCCTGGCTAACTACGCCTTGCGCCTGGCGGTGTGCGAGGACCTGGTCAAGCTGGGGGTTAAAGAAGAGATGCAGGTTATGATCCTGGGGGACTTGAAGAGTTTTGTGCCCGCTGAAACGGATTTGCTCAAGCAGGATCCGGTTTACCGGGAATTTATCACTTCTCTGGCCAGCCGCTACCAAAACCGCCCAAGCGAACTGCCCTTGATCTTGGCTGAAGGAAATTTCGCTTTTGGCCAGCTTTATCCCTGCCAGGGAGATTACGTGACTAATCCCGATGCTTTTGCCCGGAACTTGACCGGCTTTTTACGGCAAAAGCGGGGCGGGGAGAGCCAGGATTTGCTGGAAAAAATCTATCAGAAAAAATAGTGATTAATCTTTTTGCAAATCACTTTACTTTTTGCCGGCATTTAGTATAATCATTTTTGGATATTTTCAAGAAGTTGCGCTATTGCTACTAGCGTACTTCTTAGGAAAGTAGTACAATATTCAACAGAGAATCATCCGTTAGGTTTGTCTCAACGGACTTCTTGCAAAATTTCAGGAGGGTCATTTTAATGGCAGAAAAAGAACATTACGTTAGAACTAAGCCACACGTTAACATTGGTACTATTGGTCACGTTGACCACGGTAAGACTACTTTGACCGCAGCTATCACTACTGTGTTGGCTAAGAAGGGTTTGGCACAAGCTGAAGATTACTCACAAATCGACGCAGCTCCAGAAGAAAAGGAACGTGGTATCACTATCAACACTGCCCACGTTGAATACGAAACTGAAAAGCGTCACTACGCCCACATGGACGCCCCAGGCCACGCCGACTACATCAAGAACATGATCACTGGTGCCGCTCAAATGGACGGTGCTATCTTGGTTGTTGCCGCAACTGACGGTCCTATGCCACAAACTCGTGAACACATCTTGTTGGCTCGTCAGGTTGGTGTTAACTCCATCGTAGTCTTCTTGAACAAGTGCGACTTGGTTGACGACCCAGAATTGATCGACTTGGTTGAAATGGAAGTAAGAGACTTGCTTTCAGAATACGGTTACCCAGGTGACGATGTTCCTGTAGTTCGTGGTTCAGCTTTGAAGGCTCTTGAAGGCGACGAAGAAGCTCAAAAGAAGATCGAAGAACTGATGGACGTTGTTGACGAATACATTCCAACTCCAGAACGTGAAACTGACAAGCCATTCTTGATGCCAGTTGAAGACGTCTTCACTATCACTGGTCGTGGTACTGTTGCTTCAGGCCGTATCGACCGTGGTACTGTTAAGGTTGGCGACAGCGTTGAAATCGTTGGTTTGGTAGAAAAAGTCTTGACTTCAGTTGTAACTGGTTTGGAAATGTTCCACAAGACTCTTGACTTGGGTGAAGCCGGCGACAACGTTGGTGTATTGCTCCGTGGTGTCGACCGTGACCAAATCGTTCGTGGTCAAGTTTTGGCAGCTCCAGGCTCAATCAAGACCCACAAAACTTTCAAGGGCCAAGTCTACATCTTGAGCAAGGACGAAGGTGGCCGTCACACTCCATTCTTCTCAGACTACCGTCCACAATTCTACTTCCACACCACTGACATCACTGGTGAAATTGAATTGCCAGAAGGTACTGAAATGGTTATGCCTGGTGACAACACTGAATTCTCAGTTACTTTGATTAAGCCAGCTGCTATCGAAGTTGGTACTAAGTTCACTATCCGTGAAGGTGGTAGAACTGTTGGTGCCGGCCAAGTTACTGAAATTGACGACTAATTTTTAGTTTTTGAATTTTAGTTCTAACAGTGTAAAAAGGCGTTCTTTTCAGAAGAACGCCTTTTTTTTATCCAAAAAAGCCCTATTTTGTAGTACTTTGATTGTTTTTTGACCGTCTTTAAGGTAAGATATTTAAGTATGCAAAGTAGCAAACCCAAAATAGACATTGGAGGTATTTAATTAATGTCTGCTAACTGGAAAACTACCGGTAAGACTACTGGTGAACTTTCTTTTGAAATTTCTCAAGATGAAATCAAGAAGAGCCTGGACAAGGCTTTTGGCCGCGTAAAGAAGAGCTTGCGTGTACCTGGCTTCCGTAAGGGGCACGTTTCCCGTGTAATCTTCAACCAATACTACGGTGAAGAAGCTCTTTACGAAGACGCTTTGAACTTTGCTTTGCCAGAAGCTTACAGCGCTGCTGTCAAGGAAACTGGCATCAAGGCAGTTGGCCAACCTCAAATCGTTCCTGTATCAATGGGCAAGAACAAGGCCTGGGAAATGAAGGCAATCGTAACGGTTGAACCAGAAGTTGAACTTGGCCAATACACTGAAATTGAAGTACCAAAGCAAAACACTCGCGTTTACCAAAAGGACATCGACGCTGAATTGACTAAGCGTCAAGAACAAAACGCTGAAATGGTTTTGAAGAACGACAAGGCTGAAAACGGCGACACTGTAACCATCGACTACGTTGGTACTGTTGACGGCGTTGAATTTGACGGCGGCTCAGCACAAAACTACTCCCTGGAACTGGGCTCAAACACCTTCATCCCTGGCTTTGAAGACCAACTGGTTGGTCACGGCGCCGGCGAAGAAGTTGACGTTGTCGTAACCTTCCCAGAAGACTACGGCGCAAAGGACCTGGCTGGCAAGGAAGCTCACTTCGCAACCAAGATCCACGAAGTTAAGGCAAAGCAATTGCCAGAACTTGACGATGAATTTGCCAAGGATGTTGACGACTCAGTTGAAACCCTTGACGAATTGAAGGAAAAGATCAAGGCTGAACTGAAGTCCGAAAAGGAAGAAGCAGCCAAGGCAGCTATCCAAGAAGCAGCGATCACTACTGCAGTAAAGAACGCTACTGTTGAAGAAATTCCTGACGTGATGATCCAAGAAGACGTTGACAACCAACTCAACCAATACTTGGGCGACATGCAACGTCAAGGGATTGACCCGCAAACTTACTTCAAGTTGACTAACACGACTGAAGACCAACTGCGCAGCCAATTGTCAGCAAACGCTGCTGAACGCGTTAAGACTAACCTTGTTTTGGAAGCAATCGTTGCCAAGGAAGGCTTCGAAGCAAGCAAGGAAGAAATCGACGCTGAAATCAAGGACCTGGCTGACAACTACAACATGAGCGAAAAGGCAGTTCGCAACGCTTTGAGCGACGAAATGTTGGCTCATGACATCAACGTCCGCAAGGCAATGGACTTGATCACTGACAGCGCTAAGCAAGTAGCTAAGGCTAAGCTTGAAGAAGGCAGCGAAGAAGACAAGTAATCGCCAGTCTATAGACTGAATCCCCCAGAAGTGGCAACTGCCCCTTTTGGGGTTTTCTTTTGCCAAGGCTGATGAAAAATACAAGGCTAATTTCGCGCAAGTTGCCCGTATTTATGCTAATCTAGTCTTTAGCAAATAGAGGAGGGAATACATGGCTACTAAGTTTACAGATCCAGAAGAAGTGAAATGCTCATTCTGCGGCAAGTCTGCCAGCCAAGTAAAGAAAATGATTGCCGGCAACGGCGTATACATCTGCAACGAGGACATTGAACTCGCCAAGCGGATCATTGATGATGAGCTGCGTCTGGATTCACTGAAGGAAACGCGCGAGCTTCCCAAGCCAATGCAAATTAAAGAAGAACTGGACCAGTACGTGATTGGCCAGGACCGGGCCAAGCGGGTTCTGTCCGTAGCGGTTTACAATCACTACAAGCGGATCAGTCAAATTGATGTTGATTCTTCAACCGAATTGCAGAAGTCAAATATTGCCTTGATCGGGCCAACTGGGTCCGGCAAGACCTACCTGGCTCAGACTTTGGCAAGGATTTTGAACGTGCCGTTCGCGATCGCGGACGCAACTACTTTGACTGAAGCCGGTTATGTCGGTGAAGACGTCGAGAATATCCTGCTTAAGCTGCTCCAGAATGCCGATTACGACTTGGAGAGAGCCCAGCGGGGGATCATTTATATCGACGAAATTGACAAGATCTCCAAGAAGTCAGAGAATGTGTCGATTACCCGGGACGTGTCCGGTGAAGGGGTCCAGCAGGCCCTTTTGAAGATCCTGGAAGGGACCATTGCTTCTATTCCGCCGCAGGGCGGCCGCAAGCACCCGCAGCAGGAAATGATCCGGATGGACACCACCAACATCCTATTCATTGTCGGCGGGGCTTTTGACGGTATCGAAGAAATCGTTAAGAACCGGCTGGGCAAGAAGACCATCGGTTTTGGGGCAGAACAAGAATCTGGCAAGGTTGACGATGACAACTGGAACCGTTTCTTGACGACCGGGGACTTGGTCAAGTTTGGCTTGATCCCTGAATTCATTGGCCGGATTCCGATTATCACTACCTTGGACCGGCTGGACAGTGCTGATTTGGTCCGGATCTTGACTGAACCAAAGAATGCCTTGATCAAGCAATACCAGAAGCTGCTTTCCCTTGACGGGGTTGACCTGGAATTTGAACCTGCCGCCGTCAAGCAGATTGCTGACCTGGCTATTGAACGGAAGATGGGAGCCAGAGGCCTTAGAACCATCATTGAAAATGCCATGATGGACATCATGTACCGGACGCCGAGCGAAAGCGACATCAGCAAGATCATCATCACGCCGGAAACAATTACCGGGATGGGCGAGCCAAAGGTGGTCCGCCGCGAACTGGAAGAGGTTGTCGATGATCATTAACCAATCAGAATTTTCCGTCAGCGCGGTTAAAGCCAGCCAGTACCCCGAAGGCGGCCTGGATGAAATCGCCCTGGCTGGCCGGTCAAACGTGGGCAAGTCCAGCTTCATCAACACCCTTTTGCAAAGAAAGAACCTGGCCCGGACCTCCTCGTCGCCGGGCAAGACCCAGACCTTGAACTTCTACCGGGTGGACAGCGACCAAGCTGACTTTTACCTGGTCGATGTGCCGGGCTACGGCTATGCCAAGGTCTCCAAGAAGCAGAGGGAAGAGTTCGGGGAAATGATCCAGGATTACCTGGAAACCCGGGCCTACCTCAAGGGCTTGATCCTGATGATCGACGGCCGCCACGAACCAACCGTCGACGACATTGCCATGTATGACTATGCCCAGTATCTCAACCTGCCGATTTTACTAGTGGCCACGAAGATGGACAAGATCAAGAAGAATGCTTTTAACAAGACTGAAGCAGCCTTCAGAAAGCACTTGAACTTGAATAAGGACAATGTGACTTTCCTGCCATTTTCATCAGTGACTAAGCTGAACGTTGACCAGGTCAAGGACTGGATCCAAGCCAGATTGTACGAAGAATAGCAGACAAAACAAAAATGCTCAAAGGATTTTCCTTTGGGAATTTTGCGTTTACCGGTGCTTTTTCGGCATTTGCGGCCGGTGGTTGAAGAGCTCAGCCACCAGCTTGAAGGCTCCGTAGATGATCAAGAGGATCCCGATTTCGATGATCGACTGGTGGTTGAAGTATTCTGGGTTGATGATCACGATGATTCCCAGGGCAAAAGAAATAACGGCTTCCGCCCCGGTGATGATCATGCGGAAGACCCCGGTCTGCCGCCTTAAGATAATCTTGTGGCTGCGGCCATAGGCGTAAAAGAGCAGGAAGTAGTGAGCCAAAAAGACCAGGAGCTGGTTGCTCGATAAAAGGGCTATAGAGACCGCGAACAAGACCAGGTAGGTAATTAGGAAGAAGCGTTTCTGCTGCGGTTTAAAGGCTGAAACTGAGACCGTGAGGATATGGCTGACGCTGAAAATGATCCCCCGACAGCAGCTAGCACCCCGAAGGCCTTGAAGGCATAGTTAGGTGCTGTCAGACTGATGATGCCGAGCAGAACCAGGAGCCAGCCGGCCATGGTGTCCCGGCTGAACAAGGCCGCTCCGATCTGCTGGTTCTTGATCAACTGCCAGATCGAGGAAAAGAGATTGCCCAAAATGAATTTGGTCCGCCTTGAGGAGTTAGTCACCGACAAAAGGATGGCCCCGAAGCCCCCGAAGCCGTTCTTGGCCAGCTGGTTGATCTTGCTCGAGCCGCTAGCCGCCAGGGCATCAAAGAGGTCCTGGGTCAGGGCTTCTCGCTCTTCCAGGCTGGCTGACCCGATCCATTGGTTGATCAGCTGGTTGTAGACCCGGGACTCAGGATTGGGCCGCTTGCGGGTCACGAAATGGCTGCCTTTGATCTGCCAGGAATAGGTATCGTGCTGGGCGATATTGCCATTGGTTGAGTAGACGATGACCGGGTCGACCTCTCTTGGTTCAAAGAGGCGGCCGATAATCGAAAAGTCGGGTACGTAGCGGCGGAGGACCCTTTGCAAAAAGTCCTCGTTGTAGTCGACTCCGGCTTCGCTGGCCAGGCCGGGGCTGTCAAAGGTGTAGACGGCCTTGATCCGGGCCCGGTAGTCTTCTGGGAGATTCAAGGCGGCGTATTCAGCCAGGTTGCCCCCCTTTGAGTGGCCGCCCAGGATGTAGTCAGCTGAGTCGCCGGCCAGGAGGTCCTTGAGGTAGCGGGCACCTAAGATCTGGGCCTTGGTTTCTTTAAAAGAAATCTCAAAGTCTTCCCGCCAGCCAACCAGGGTATCGTCGGTCCCTCTAAAGGCCACATAGTGGGTGCCGTCTTCAAGGATGATTTTCAAGGCGCTGAACTGGCACTGGTCAGTCAAAACGGTGTTGAAGTGGGACAAGCGGGCATCCTTAAAGCGGTCGGCTTCGCTCATCAAGTGGAAGAGCTCCTGGTACTGGCTGGCGTCCAGGCCGGTGAAGGAAGAGGCGAAGTATTTCTCGGCGATTTCGCTAACTGTCACTTCTTTGTTGCCGGAAGGGATGTACTTTTCCAGGTTAAGATAAGAAAAAATTGCTAAGACTAAAGCGTCGATTTCGTTGAAAGGAGACTTTTCCAAGGGAATGTCGCCGCGCCATTCCAGGTAGGTCAGCAAATTGCTGTTGTCCAAGATGCTCACATCCTTAAGGAAAATAATTGCAAATGCTTACAAACTCATTTTAGCCTAAATAGGGCAGGGATGGGCAGATATACCGGAAAATTTAGCGACTTCTATAAAATATAAAAAGCCGCCAACAAGCGGCTTACTTTGCCTCTTTGCCGGCAGCTTTGTCGTCTTCCTTTTCCTTGCCCTTGCCAGAAGCGGCTTTCTTCGGGTCGGGAACGCTGGCGAATTTGTCGAAGAGCTTGTCTAAGTCGTCTTGTCTTTTAAAGGTTAAACCCATTTGTCCATATCCTGCTTTCCATTGAAATAAAAGTTCTGCTTTTGAGTCAATTATAACGATATTTTTGCTATTCAGTCAATTTTGAACTATACTTAGCAAAAACTAGCAAAAGAAAGTAGCTTCAAGAGAGGTGTAAAATGACTGACGCGATTGATACAATTAAGAGCCGCCACAGCACGCGCTATTTTGACCAAGGCAAGGAGCCCAGCCGGGCAGACCTGGAAGAAGTAATCCGCTTGGCCGGCCTGGCTCCGTCTTGGGTAGATTCCCAGCCCTGGCGGGTTTATCTGGCTATGGGGGAAACAGCCAAAAAGATCCATGCCCGCCACCTGGCTTTGGCTGAAGCAGGGACGGCGTCATCCCCAGACTGGGAGGCCTGGCACCGGGAGGACTGGGATCCTTATCCAAGAGAAAACATGGCCCGGCACAACCAGGCCAGCCAGGAATATCTGAACACGCCGGAATTGCTGGACCTTAGGACTAATATTTTGCAGAAAAATCTCTACTATGCCCCAGCGATTGCCTATTTAACTATTCCCAAGCGGTCCAATCTTTGGTCAGTCTATGACCTGGGAGCCTTTGCCCAGACTCTGGCGCTTGCCGCCAAGGCCAAGGGGATTGACAGCATGCCGGCCTATGAATTGGTCAAATACCCGGCCAGTGTCCGGGAAATTATGGGGATTCCAGAAGACCAGACCCTGGCCATGGGAATCGGCCTGGGCTATGGCAAAGATGAGTACGTCAACGGCTACCAGGCTCCCCGCCGGGATCTGCCTGACTTCTTGACAATTAAGGATTAGGAAAAAAGTTATATAAAATCGTTGACTTATAGTAAGCGAGTCTGTAAGATTAAATTAAATCAAATTGAGAGAGGAGCTAAATCATGTTTGCAATGCAAGAAAACCAAACTATGTGCGTTTGTTGTATGTCACTTATGTCATACGACTGTTTTGTGTTGCCTAAACTGGATTTAGCTCAGACCAAGTGATTTGCCAAGTAATTGTTAGCTTAGCGGCAAATGAAGCAGCTGTTTCCTTTAGGGAGCAGCTGCTTTTTGTCTCAGGAGGAAAAAATGCAAAAGATCAAGAAATTCACCCTTGCCGCCGTTAGCGTCAGTGCCGCCTTCCTGCTGGCCGCTTGCGGCAGTCAGCAGAGCTCAAGCTCAGCAAGTAAGGACAAGCAGGTTTTAAAGCTCAGCGCGACTGCTCCGCTGGATACGATCGACATCAGTAAGGCGACCGGCTACGGGCAGACGGGGAACGTTTTTGAAAGCTTCTACCGTTTGGGCAAGAACGGGCAGCCAGCCGCCGGCTTAGCCAAGTCCGGCACTGTATCCAAGGACGGCAAGACCTGGACCTTCAAGCTGCGGTCTAACGCCAAGTGGTCCAACGGGGAAAAGATTACCGCCCAGGACTTCGTCTACTCCTGGCGGCGGACGATCAACCCCAAGACTGCTTCGCCTTACGCCTACATTTTCTCCGGCATCAAGAACGCCGATGAAATTATTGCCGGCAAGAAGTCTCCGTCCAGCCTGGGCATCAAGGCTTTGAACCAGGAAACCGTGCAAGTTAAGCTCAACCGGCCGATTGCCTACTTCAAGGTTTTGATGGCTTACCCGCTCTTTGGGCCGCAAAACGAAGCCTTTATCAAGAAGACGGGCAAGAAGTACGCGACCAGCTCCAAGTACATGCTTTACTCCGGCCCATTTAAGATCACCGGCTGGAAGGGGACCAATGATACTTGGTCTTTTGTCAAAAACAACCAGTACTGGGACAAGCAGGCAGTCAAGTTGAGCAAGATCAGCTACCAGGTCGTTAAGACTACCAACACCGGCTACCAGCTCTACCAGCAGGGCAAGCTGGACCTCACCCCACTGTCCAGTGAACAGGTTAAGCAGCTGAAGAAGAACAAGGACTTCAAGACCTACCCATACTCCTACGTTGCCTTCTTGGCCTACAACTTCCAGGCCAAGGACGCGACGGTTAAGAAGGCTTTGAACAACAAGAACATCCGCCTGGCTCTGTCTCTGTCACTTGACCGGAAGATTCTGACCAGCAAGGTCTTCGGTGACGGGTCAAGCGTGCCAACTGGCTTCGTGGCTTCTGGTCTGGCCTATGACCCGGCTAACAAGGAAGACTTTGCCAAGGAGCAAAAGGTGGCTAATACCGTTGACTACAATGAAAAGCTGGCTGAAAAGTACTGGAAGACCGGGTTGAAGGAACTGGGCTTAAAGAAACTGAACCTGACCTTGCTGGCTTCAAACGAAAGCACCAACGCCGACGCTCTGACCCAGTACCTGCAGTCCCAATGGACTAAGGTTTTGTCCGGCATCAACGTGAAGGTTAACTCCATTCCAAACAAGAACGCTCACACCAAGGCTTTAAGCGGGGACTTTGACATCTACGTTTCCGGCTGGGGCGGGGACTTCAGCGACCCGATGACCTTCATGCAGATCTTGCAGAAGGGAACTTCCTACAACTACGGCAAGTGGAACAATGCGGAATACAACAGCTTGATCAAGAAGGCTTTGACGACTGATGCCAACGACGTTAACAAGCGCTGGCAGGACCTGGTCAAGGCAGCCCAAGTGGCCAACGCCGACCAGGCAGTCAGCCCGATCTACCAGCAGACGACCGCCTACCTGCAAAACAGCAAGGTCAAGGGGATCATCCACAACAATGCTGGTACCCAGTGGAGCTACAAGTACGCCTACATTAAGTAGCTGGTAGTTAGCAAATTTAAGATATGCAAATAAAAACGAGACCGCTTAGTCTCGTTTTTTTAATGCCGGCTGGCCCGGTGGCTGGAGCTGGCCTTGATTTTGTGGGGATGCCGCTTGAATTTGACCTGGCCGCCCTCTGGCAGGAAGCGGAAGTGGCGCATTTTGGCGTTAAAGGGCCGGCCAGAGAGGCGGATGGCGGTCCAGTCCTTCATCAGCTTGATCATCCGGTCCAGTTCCTGGACTCTTTTGGCCTGGCCTTCTGCTTCAGCCGCCTGGTGGATGTCGCCTTCCAGGCGTTCGATTAGGTTCTGGTGGTAGGCAAGAAGTTCGGGAGTCAAGGGAGCCCGCCGGTACTGGTTGAAGAGTTTTTGGATCAGTTCCATGGCCTCCAGGCTGTCATGTGGCTGGATATAGCGGGAACCATTATCTTCATTCATGGATTTTGTCCTTTCTATTATTTCTGCTTCTATTTCTTTATCAAGCTTTTTGCCTTTTTCTGGCTTTTTAGTTAAAAATTACAGGAGTGTTAAAAAATGCGATATCTAGAAAATGCTCTAGCCATCTTTTAATTTTTTGCCATAATATATAAAAAGCATGAGGCTTTTAACCTAGGATACCAGAATCAGCATAAACGAGAAGATGTTTGACGAAATTTGTTAGTTATTGAGGAGAAAAAAGATGTACCTCTTGCGCAAGTGGGGTTACTACCACCGGAAGATGCGGCGGGGAGACTTCACCCGGCCAACGGAACTGATGAGCGATGAGATCTTCAACCAGACGGTCGGCATCGTCGGCCTGGGCCGGATCGGGGCAGCTGCGGCGGAAATGTACCATGCCCTGGGGGCCAGAGTTATCGGCTATGACCCGGTTTACAATGCTTCTTTAGAGCCCTTTTTGGACTTCGTCGATTTTGAGACCTTGATCAAGGAAAGCGACATCGTCCAGGTGCACATTCCGCTGACTCCGGAAAACAAGGGCATGTTCAGCGCCAATGAATTTGCCAAGATGAAGGACGACGCGATCCTGGTCAACCAGTCAAGAGGCGAACTGGTCGATACCGCGGCCTTGATCGTGGCCTTGAAGTACCATGAAATCGGCGGGGCCGCCCTGGACGTTTTGGAAGGGGAAGAAAAAATCTTCGGCTGCAAGTTTGAGGATGTGGGTTCCCTGCCGGACGAGTACACGGAGCTGATCAACCTGCCAAACGTGGTCATGTCCCCGCACTCTGCCTACTATACCAAGATGGCGGTCAAGAATATGTTCCTCCAGAGCATGACAGATATCGAGCGGACCCTGTCCGGGAAAAAAGGCCTTTTTCAAGGTGAATTAGCGAAAAAGCAGTAAAATAAAGCGAAAAATGAAGAACATAGACAAGCCCTGGCAGGCTAATCCTGCCGGGGCTTTTTCCATCTGTTAAGCTTTTTGTAAAGATTAACACCCGGTAAAAAAATCTGTTAGACTTAAGGTGAACTGAAGTAAAAAGTTTTTGCAAAGGACAAGGAAATGGCAAATCAAGACCAAGCATATTTAGATTTACTGAAAAAGATCATGACGGAAGGCAATGACAAAAATGACCGGACCGGGACGGGGACCAGAAGCCTCTTTGGGGCCCAGATGCGCTTTGACTTAAGCCAGGGCTTCCCGATCTTGACGACCAAGAGGGTGCCTTTCGGCCTGATCAAGAGCGAGCTTTTGTGGTTCTTGCGGGGGGACACCAACATCCGTTTCTTGCTTGAACATAAAAACCACATTTGGGACGAATGGGCCTTTAAAAATTGGGTGACCAGCCCGGAATACCAGGGCCCGGACATGACTGATTTTGGCCTTAGGAGTCAAAAGGACCCAGGGTTTAAGGCAGTCTATGACGAAGAAATGCAAAAGTTCTGCCAGCGGATTTTGGATGATGAAGCTTTTGCCCAAAAATACGGCAACCTGGGCGATGTCTATGGGGCCCAGTGGCGGCACTGGGGTAAGCGGGACGGCGGCTTTATCGACCAGATCGCGGACGTGATTGAGCAGATCAAGACCAATCCCGACTCCCGCCGCTTGATCGTAACGGCCTGGAACCCGGAAGACGTTCCTTCCAGCGCCCTGCCGCCGTGCCATGTCCTCTTCCAGTTTTACGTGGCTGACGGCAAGCTCAGCTTGCAGCTTTACCAGCGCTCAGGCGACATGTTCTTAGGCGTGCCCTTCAACATTGCCAGCTACTCTTTGCTCTTGTCCTTGATTGCCCGGGAGACCGGCCTGGAAGTGGGCGAGTTTGTGCATACTATTGGGGATGCCCACATTTACAAGAACCACTTTGCCCAAGTGGAAGAGCAGCTGAAAAGAAAGCCGTTTGACGCGCCAACTTTGTGGCTGAATCCAGGGAAGAAAAAAGTAGCTGATTTTGAAATGGCTGATATTAAATTGGTCAACTACCAGCACGGGTCTACAATCAAGGCCCCGGTTGCCGTTTAGAAAGGGTGAAGAAATGCTTAGCTACGTTTGGGCAGAAGATGAAAAAGGCGCCATTGGCTACCAGGGCCGCCTGCCCTGGCACCTGCCGGCAGATTTAGCCCATTTTAAGGCAAAAACCATGGGCCACCCCATGCTGATGGGAAGAAAGACTTTTGAGTCCTTGCCGGGCCTGTTGCCTGGCCGGCAGCATGTCGTCCTTTCCACCAGGAAATTAGACCTGCCAGCTGGGGTTCTGCAGCTGAAAAGCGAAGAAGAAGTTTCCGCCTGGCTGAAGGAGCAGGCGGGGGAAGTCTGCGTTATTGGCGGCTCCAGCCTCTTTGCCCTGCTGGCTGACCAGGTTGACAAGCTGGAAGTGACCCGGATCAAGGGAATTTTTTCCGCTGACACCTACATGCCAAACCTTGACTGGGCGGCTTTTGCCCTGGTAAAGAGTGAAGCCCACCGGGCAGACGGCAAGAATAAGTATGACTATGTCTTTGAGACTTACCTGCGTAAAAAATAGCAGTCAAGCAGTGAAAAGTGAGATGTGAGTGTTATGAAAACAAATTTGGAGACGGGCTTGACCGAGGAGGAGGTCGCGCAGAAAAGCGCGGCCGGCAAGGTCAACACCACCATTGATGATGAGTTCAAGACCAACCGGCAGATCATCGTTGAAAACACCTTTACCTACTTCAACTTGATCTTCCTAGTTTTGACCATCCTGCTTTTGATTGCCGGGGATATCCGGGATTTGACCTTTTTGCCGGTGATCATTTTGAACACGATCGTGGGGATCGTCCAGGAAATCCGGGCAAAATCTGTTTTAAGCAAGCTGTAGGTCTTAAACCAGACCAAGCTTTTAGCCCTGAGAGGCGGAAAAAGGCGGAAGGTGCCAATCGACCAGCTGGTTGAAGGAGACCTAGTCCTCTTGAAAGCTGGTGACCAGATCCCGGCCGACGCCAAGGTGGTCGACGGCGGCGTCCGGGTAAATGAATCCCTTTTAACCGGGGAAAGCGATGAAATTGCCAAGGAAGTTGGCGACGAGCTCTTATCCGGTTCTTTCGTCGTTTCCGGCGAAGTCATGGCCCAGCTGGTCAAGGTGGGCAGCGAATCCTACATCGCAAAATTGACGGCGGAAGCCAAGGCCATGGGCGGGGGAGAAGAGTCAAAGATGATCCGGGCCATCAACCGCTTGATCAAGTGGGTTGGCATCATCATTATTCCAATGGGGCTAGCCCTTTTTGCCCAGGCCTACTTCCTCAACCACCGGTCTTTTGCTGAATCCATCAGTTCCATGGAAGCAGCCATTATCGGCATGATCCCGGAAGGGCTCTACCTGCTGACAACGGTTGCCCTGGCCCTGGCCGCCATGCGCCTGGCCCGCAACCAGGTCATGCTGCACGACATGAAGAGCGTGGAAACCCTGGCCCGGGTCAATGTCCTCTGCGTTGATAAGACAGGGACGATTACTGAGCCGAAGATGGCGGTGGAAAAAGTCGTCCCGGCCAAAAATTACCCGGGAAATGATTTGGAAGACCGGCTTGCCACCTACGTTTCCAACATGCCTGTCGACAATATCACCGCTGAAGCCTTGAGCCAGAAGTTTGGCCAGGACCAGCCCATGGTCAATGCCAAAAGGATTATCCCTTTTACCTCAGTCAACAAGTACAGCGGGGCGGTTTTCGCAGGCTACACCCTTTTGCTGGGGGCGCCGGAAATGATCCTGCGCTCGCAGCTGAAAGCCTGCCAGGAAGAATTTGCTCGCTACCCGGAAGGAAGGCTACCGGGTCCTGGCCTTTGCCAAGTATCCGGCAGAACTGGCAGATGATAAAGAGCGCCTGACCCAGGAGGTCGAAGTCCTGGGCTACGTCCTTTTGTCCAATCCGATCCGGAAAGAGGCCAAGGAGACTTTTGCATACTTTGCCAAGCAAGGGGTGGAAATCAAGGTTATTTCCGGGGACAACCCGGTCACCGTTTCCCGGGTGGCCGGCCAGGCCGGGATTGCCGGGGCAGAGAAGTACATCGATGCCCAGACGATCAAGCCAGGCGAATATGAGCAGGCCATGGCTGAATACAATGTCTTTGGCCGGGTTAAGCCGGAGCAGAAGAAAGAATTCGTCCAGGCCCTGCAGAAGATCGGGAAGACCGTGGCCATGACCGGGGACGGGGTTAACGACATCCTGGCTATGAAGGAAGCTGATTGCAGCATTGCCATGGCTTCAGGCAACAGCGCGGCTGTTCAGGCTTCCCAAGTGGTCTTGCTGGACTCAAACTTTGCCAAAATGCCCCAGGTGGTCAATGAAGGCCGGCAGGTGGTCAACAATATTGAACGCTCAGCTGGCCTCTTTTTAGTCAAAAACATCTTCTCCTTGCTGATTGCGGTCTTTTCCTTGATCTTGACGATCAACTACCCGATCAAGCCGGCCCAGATCACCTTGATCTCCAGCTTTACGATCGGCCTGCCGTCCTTCCTTTTGGCCCTAGAAAAGAACCATTCCCGGATTCGGGGCAATTTCACGGTCAATATTCTGACCAAGTCGATTCCAGGCGGGATTACCGACTGGCTGGCCGTCAGCATCCTGGTCTTGACCAACAAGTTTACCAATATCGGGGACAATGAAGTCGCTACCGCGTCAACAGCTCTCCTGGTCCTGGTGGGCTTGATGGTCCTCTTCTGGATCTCCCGGCCACTTAACAAGTACAAGCTGGGCGTTTTGGCCCTGTCGGTGGTCTGCATCATCTTGTCAATCATCTTCATCCCTGGCTTCTTCAAGTTGAGTCCTTTGTCAGGCCGGGCTGTCTTCACGGTTGTCGTCCTTTTCTTTGCCGGCATGACCCTCTTCAGAATCATGTCGCGGATCTGTGACGGAATCAAAGAAGTCAGCAACGTGCTGAAGGAGAAGGGGAAAGACGCCAAGCTGCGGGACCTTTTAGCCGCTTATGGCAAGGACCGGGACGAGCTTTAACAATTTTTTAGAAAAAGGCTTGACTTGCTTAAAAAATAATGATAAATTTAGAGCATCAAGTTAAGAAAAGTTATCTCGAAAAGCAGAGTAGTCGGGTGACGATCCTTTACAGAGAGGCGGCAGATGGTGAAAGCCGCCAGGAGAGTTCCGGTGAACATGTGCTTGGAATGATATGCCGCGGTGATATTTAGCCGCTACCGGGGTTGCTCTCGTTAAACAAGCAAGCTGTTTCTATTTATCAGAGACAGCTGGTGAGATTTATTACGCAAGTAATGAATGAACTAAAGGTGGTACCACGAGCGCTCGTCCTTTATCAAGGACGGGCGCTTTTTCTTTTCTGTTCGAATTTGACTGCCGCTTTTTCGGGATTGCTGCTGTGTTTCTGGAGGTATTAATCATGAGAAAAAAGAAACAAAGAAACAAAGAAACATTATTATCGCTATCGTGGCCGTTGTGGTCCTTGCCGTTATCGCCTTCTTCTCCTTTGGCAAGAAGGGCAGCCAGCAAAGCGCCAAGACGGTGACGGTAACCGTCGGGACTGTCGGGGCAACCAAGGCTGAACGGGCTATCTGGAAGAGTGTGGCGGCAACTGCCAAGAAGAAGTATGGTATCATTGTCAAGACCAAGAACTTCTCTGACTACAACCAGCCAAACAGCGCCTTGAAGTCAGGGGACCTGGACCTTAACGCCTTCCAGCACTACAACTTCCTCAACAACTGGAACAAGGCCAACAAGAGCAACCTGGTTGCCATCGGCAAGACCTACATCGCTCCAATCCGCCTTTACTCACTGAAGTACAAGTCACTGAAGTCCCTGCCTAAGGGGGCAACGATCGCCATTCCAAACGACACGACCAACGAAGCCCGGGCGCTTCTGGTTCTGAAGAACGCCGGCCTGATCACCCTGAAGGGGACCAGCGCTACCAAGCTGTACTCAGTTGCTGACATCAAGAACAACCCGAAGAACTTCAAGATCAAGGAAGTTGCGACTGAACAAGCTGCCAGAGTTCTGAAGTCGGTTGACGCTGCTGTTGTCAACAACGACTACGCTAACCCAGCCGGCCTGGGCGACAAGCAAACCATCTACGTTGAACCAATCAACAAGGACTCATACCAATGGATCAACGTCATCGTTGCCCGCAAGAAGGACAAGAACAAGAAGGCTTACAAGGAAGTCGTTAAGGCTTACCAGACTGAAAAGACCAAGCAGCTGTACAAGAAGTACTACGGCATCAAGCAAGTTGCGGCTTGGGACGCCAAGTTCTAAGATTTTTAACTTAACCTAGAAAGAAGCTTTGATCATATGAGCATTGTTCAACTGGACCACGTCAGTGTGACTTTTAAGCGGAAAAAGGCTGCCGATGTGCAGGCCGTGCAGGATGTGACTTTGCACATCGAAAAAGGCGACATCTACGGGATCGTCGGCTTTTCCGGGGCCGGGAAATCAACCCTGGTCAGAACCATCAACCTTTTGCAAAAGCCAACGGCCGGAGACGTCGTGGTTGGGGGTGTTGACTTTGTCAAAGACGGCAAACAGGTGATCAGCGGCAAGGACCTGCAGGCCCGCCGACGGAAGATCGGGATGATTTTCCAGCAGTTCAACCTGCTTAATGAAACGACCGTTATTGAAAATATTGCCTTTGCCCTCAAGCACTCAGACCTGTCTGACGATGAGCTGGAAGAAAAATGCCACAAGCTTCTGAAGCTGGTTGACCTGGAAGACAAAGCCAATGCCTACCCGGCCCAGCTCTCCGGCGGCCAGCAGCAGCGGGTGGCGATCGCCCGGGCCCTGGCTAACGATCCGGAAATCCTTTTGTCAGACGAAGCAACCAGTGCCCTGGATCCGCAGACGACTATCCAGATCCTGGACCTGTTGAAGAAACTGAACCGGGAACTGGGCTTGACCATCGTTTTGATCACCCACGAAATGGCCGCGGTCAAGAAGATCGCCAATAAGGTGGCGGTCATGGAAAACGGCCGGGTTGTCGAAAACGGCAACTTGCGGGATGTCTTCCTGGCGCCAAAGGCTGAATTGACCCAGAAATTCGTCGGCGGTTCTTTGGCTGTAGTTGACACCTTGAAGAGCCTCAACATCAGCCTGGCTGAAAACGAAGCCCTCTACCAGCTGGTCTACAGCTTGAACAATGTGGCCAAGTCAATCATCATCGAGCTTTACCGGGAAGTCGGCGTGGAAGCTTCGATGCTCTACGGCAATGTGGAAGTCCTGGCTGACGAACCGGTCGGGACCCTGTTGGTCATGGTCAAGGGGGATGCTGACAAGCAAAAGGCAACCTTGAAGTTCTTAAGCGATGAGGGTGTCACGGTAACGGAATTAGACGAAAGAGGTAACCGCTTATGATTAATGGTTTGGTACACTGGATCGCGCAGAACTTCCCGAATATTTACAACTTGGGCTGGACCGGGGACACCGGGTGGGGCACCTCCGTTCTGCAGATCATCTACATGACCTTCTGGCCGTCAATCTTCGGCGGGGTCCTGGGCCTCTTCTTCGGGGTCATCCTGGTTTTGACCGAGCCAGGTGGGATCTTGGAAAACAAGTTCTGGTTCAACTTCTGCGACAAGCTGATTTCCATTTTGCGGGCTATCCCTTTCATTATCCTTTTGGCCTTCATTTCACCTTTGACCCGCTTGATTGTCGGGACGGAAATCGGGGACACGGCTGCCTTGGTCCCGCTGACTTTAGGGATCTTCCCATTTTATGCCCGCCAGGTCCAGGTCGCTTTGGAAAGCTTGGATCCGGGCAAGGTTGAAGCAGCACAGAGCTTGGGCGCAAGCAACTGGGACATTATTTTTGACGTCTACCTCAAGGAAACGCGGTCAGAAATCATCCGGGTGTCAACTGTCTCCATCATCAGTTTGATCGGCTTGACTGCCATGGCCGGGGCCGTTGGGGCCGGTGGTCTGGGTACGACCGCCATCCAGTACGGCTACCGCGACTTCGCTAACGACGTGACCTTCCTGGCCACTGTCCTGGTCGTCATCATGATCTTTATCGTGCAAGTGGTTGGCGACTTCCTGGCCAAGAAGCTGAACCACCAGCACCGGTAAGAAATTTTTGAAAGTAAGAAAAGAATTTACATTTTTGAAAAATAGCCTTTTCAATTTTAAAAAGTTAAAAAATGGTTTATAATGTGGAGGTAAGTAATAAATAATTGAGTAGAGGAACTATCATGGCGAAATACGAATTTAAGTCCAGTCCAATCGATTTAGTCAACCCAAGCTACGACTTGGTAGTTATCGGGGCCGGTGGTACCGGTTTGTCTGCTGCCTTGCAGGCACATGAACTCGGCGCCAGCGTGGCTGTTTTTGAAAAGAACGAAGTTTTGGGCGGGAACACCAGCAAGGCTTCATCAGGGATGAACGCGGCTGAATCCCTGGTTCAATTCAAGCATGGCATCATCGACAACAAGGCAGACTTTTACCAGGAAACCCTTAAGGGCGGCGGCAACTTGAACGATGAAGCAATGCTGAGCTACTTCGTTGACCACGCTGCTTTGGCAATCGACTGGCTGAAGCAATATGGCGTTGAGCTGGATGACTTGACGATTACCGGGGGGATGAGCAAGAAGCGGGCCCACCGGCCAGCATCTATGGCGCCAGTTGGCGGTTACTTGATCACTGGCCTTTTGAAGAGCATTGAAGCAGCCCGGATTCCAGTCTTCAACAAGACCAAGGTTGTTAAGGTTTTGCAAGACGAAAAGGGCAAGGTAACTGGCATCGACATCGTTGGCCCAGACGGCCGCCGGAAAGTTATGGCCAAGGCTGTTATCCTGGCAACTGGTGGTTTCGGCGCTTCTAAGGAAATCATCAAGAAGTACCGGCCAGACCTGGAAGGCTACAAGACGACCAACCAAGCCGGCGCTACTGGTGACGGCCTGATCCTGGGTGAAGAAGCAGGGGCAGAATTGGTGCAAATGGACTTCATCCAAGTTCACCCAACCGCGCAAACTGATGGTGAAAAGACTTTCTTGATCGGGGAAGCTGTCCGGGGCGAAGGCGCTATTTTGGTCAACAAGGCCGGCCAGCGTTTCATCAACGAACTGGACACCCGGAAGGTTGTTTCAGCAGCCATCACTGGCTTGAATGAAGACGGTGCCTACCTCATCTTTGACCAAGGCGTCCGTGACCACGTTAAGGCAGTTGAATTTTACGACCACATCGGCCTGGTAGAACATGGTGCTACTTTGGAAGAACTGGCTGGCAAGATCGGCGTTGACGCTGCTGGTCTTGAAGCAACTGTTGCCAGCTGGAACGAAGCAGTCAAGGGCCAAGACGACCAAGCCTTTGGCCGGACTACCGGGATGGACCGCGACATTTCAGTTGCGCCGTACTTTGCTATCCACATTCACCCAGCCATCCACTACACGATGGGTGGTCTGCACATCAACCCTGAAACCCAGGTTTTGGGCAAGGACGACAAGGTGATTGAAGGCCTCTACGCCGCTGGTGAAGTTTCCGGGGGCCTGCACGGCAACAACCGGATCGGCGGTAACTCAGTTGCTGAAACTGTAGTCTTTGGCCGGCAAGCTGGTATTCAAGCAAGCAAGTTCGTGCGCGGCGAAAACTAAGCTGAAAAGAACAAGTTACAAAAGAATACTATTTTAGGCAGCAGCTCTCAGGCTGCTGTCTTTTTTTACCAAAAATCAGCAAATTAAAGTTCACTCTTTCACATGCCTGGGCTGTCATAAAGGAAAACGATTGAAATCGCTTTATGATAATTGATGTGATGATGAAAGGAAGAGATCATGAGTACACGGGAACGCTATCAGCAGAGTGAACTGGTCAAGGCGAACAGCAAGTTCAGCCGGGTCCGGGCGACTATTGAATCAGCTTTTTACGGCAACAATGTCCATGAAGTCAAGAGTGTAGCGGAAGCATATGAACTGGCCAAGCGCCAGCCTGGAGTAATTGAGACTGACCTGCCGATCCTGCACACCAGTGATTTTGGTCTGCCGGTCGGGGCCAAGCAATTGGTTTACAACCACGGCAAGATTTTGGGCCGGACGGCATCAGCCCGGCACTTTGTCGATGATCCAGAGGAAGACGCGGCTGCTTTAACCAACAGTTTGTATGAAGACATTTATGCCGGCCATGAGCAGAAGTATTTGAAGACGACGGTACTGGTTGGGCTGGACGCGTCCTTTAGCTTAAAGGCCCACTTGATGCTACAGGAGGACCAGGCCTTCAACCTGCTCAGCTACATGCTCAACTTCCGCTTTTTTGATGAAAAGGCGGCTGAGATGTACGGGAAATCCAAGCTTTATGATGAAGGGGACTTGTACTTCTACTTTGATCCGAACGTGACAGATCCGGCTTATCCAAACGGACTGGCAATTTTTGACGCTCCGCACAACTGCGCCTCGGTGTTTGGCCTGCTCTACTTTGGTGAGCTGAAGAAGGGAACCTTGACCTTGGCCTGGGCCCTGGCCCACCGGCACGGCTATGCAGCCTGCCACGGGGGCGAGCAAGCCTTCCACTTTGAAGACAAGAAAGACAAGGTATTTGCCTTTTACGGCTTGTCGGGCTCAGGCAAGTCAACCTTGAACCACGCTGACCATGACGGCAAGTATGATATTACTGTTTTGCACGACGACGCCTATATTATTTCAAGAGAAGACGGCAGCTCGGTAGCCTTGGAGCCGGCCTACTTTGACAAGACTCACGACTATCCAGCCGGTCACCACGAGACCAAGTACTACACGACTGTGATGAACTGCGCGGTTACCCTGGATGAAGCAAGGGCGGAATGTTTTGGTTACGGAAGACCTCCGGAACAGTAACGGGCGGGTGATCAAGAGCCGGTATACTTCAGCCAACCGGGTTGATGTGGAAGAAAATCCGATCACAGCCCTCTTCTGGATCATGAAGGACAACTCTTTGCCGCCGGTATTGAAGGTGACTGATCCGGTTTTGGCTACAACCCTGGGCTTGACATTAGCCACCAAGCGGACGTCAGCTGAGAACCTGCCAAAGGGTTTTGACATGAACACTTTGGGCATCGAACCATTTGCTGATCTCTTCAGAGCTTACCCAGTTGGGGGCGACTATAGCGACTTCAAGGATCTTTTTACCAAGCGGGGAGCGGAATGCTACGTTTTAAACACGGATGCCTTCTGCGGGAAAAACATTCCTAAGGAACTGACTTTAGAGATCATTGAAAAGCTGGTGGATGATACTGACCAGTGGCAGGCCTTTGGCGATTTTGCCGGAGTCAGCTACATGCCGCTTGCTGACTATCCGGTTGACCTGGAATACAAGCAGAATCTCAGAGCCTGGATACAGGACCGGATGGACTGGCTGAACATGTACAACGGTGAGCATCCAAAGACGCCGCTGCCAGAAGAAGCCAAGGAATGCTTAGAGAAAATCGTTAGTGAACTGAAGTAAGCGTCTATCTATATTAGGCAAATAGCAGCCAATCTTTTAACAGACCTTAGGGTCTGTTTTTATTTTGAAAAAGAAAATAGAAAAAAGTTTTATCTTTTTTGCCAGCAGAAATAGAGATAATCCGAACTATCTATTCTTTAAAAAACAATTCCTGCGGAAAGAAAAAAACAAAAGAAAGAGTAAGCGAGTTTGCTTTTATTACAACGGTCCCTGGTGAACCGGGAATAAACCGAATGAAAAAGAAAATTTGACGAATCAGAAAAAGCTAGTATACTAATGTTTGTTGCCGCGTGAGACAAGCAAGTCTCGCGGAGGCCAAAAAGAAAATATCAGGAAGCTGTTGACAAGAAGTCAACAAGCGAGTAAGATATAAAACGTTGCGTCACTAAGACGTAAGTTGGTACTTTGAAAACTGAACAAAGTTTCGCAGTGTGCGGGTCAAACATTGTTTGATCCAAACAAATAAGCGAAGTCAATTCGCAAGCAAATAATCTGGAGCAGATTAAAAAGGCTCAATTTTCAAATTGAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAGCTGAATTCAAAGATTCCTTCGGGATGATTTGTTGGACGCTAGCGGCGGATGGGTGAGTAACACGTGGGCAATCTGCCCTAAAGACTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAACAACATGAATCGCATGATTCAAGTTTGAAAGGCGGCGTAAGCTGTCACTTTAGGATGAGCCCGCGGCGCATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCAATGATGCGTAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGCAGTAACTGGTCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAATGATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAACTGCATCGGAAACTGTCATTCTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGCGCTAGGTGTTGGGGACTTTCCGGTCCTCAGTGCCGCAGCAAACGCATTAAGCGCTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGTGCTACACCTAGAGATAGGTGGTTCCCTTCGGGGACGCAGAGACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGTACAACGAGAAGCGAACCCGCGAGGGTAAGCGGATCTCTTAAAGCTGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGCTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGTCTGCAATGCCCAAAGTCGGTGGGATAACCTTTATAGGAGTCAGCCGCCTAAGGCAGGGCAGATGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGAGAACCTGCGGCTGGATCACCTCCTTTCTAAGGAAAACAGATGGATGGAGAGCAGAAATGCTAAGAGAAATCCATCAGTTACGGAAGCACACTGCAAAAGAAACTTTGTTCAGTTTTGAGAGTACCAACAATAAGAACTTGGGCCTGTAGCTCAGCTGGTTAGAGCGCACGCTTGATAAGCGTGAGGTCGATGGTTCAAGTCCATCCAGGCCCATTGAAATGCAAAGAAAAGTCTTTACATTTCAGCCGAGATGGAGTAACATCTTAAAAGTTGATATTTTACGGGGGCATAGCTCAGCTGGGAGAGCACCTGCTTTGCAAGCAGGAGGTCATCGGTTCGATCCCGTTTGCCTCCATTGGCCGGAAGGCCAAGTTTGTACGTTGAAAACTGAATATCTTAATTCCAAGAAAAAACCGAGAATCATTGAGATCAATGAAAACATTGCAAAGCGACCGAGAGAGTTCGAAAGAACAAACTTGCAAGGTCAAGTGAAGAAGGGCGCACGGTGAATGCCTTGGCACTGGAAGCCGATGAAGGACGCGACTAACCGCGAAAGTCTTCGGGGAGCCGTAAGTAGGCTTTGATCCGGAGGTCTCCGAATGGGGGAACCCAGCATGTGCAGACATGCTATCCTTAAGTGAATACATAGCTTAAGGAGGGAACACGCAGTGAACTGAAACATCTAAGTAGCTGCAGGAAGAGAAAGAAATATCGATTTCCCAAGTAGCGGCGAGCGAACAGGAAAGAGCCCAAACCGGCAGATTTATCTGCCGGGGTTGTAGGACTGAGACATGGCACTTCAGAGGATAGCAGAAGCGTTTGGGAAAGCGCGCCAGAGAGGGTGAGAGCCCCGTAAGCGAAATCCAAAGAAGGCCTATCAGTATCCTGAGTAGGGCGGGACACGTGAAATCCCGTTTGAATCCGCGAGGACCATCTCGCAAGGCTAAATACTAACCAGTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAAGAGAACCTGAAACCGTGTGCCTACAAGTAGTCAGAGCCCGTTAACGGGTAATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTGCGTTAGTCAGCAAGGTTAAGTCAGAAAAGACGGAGCCGTAGCGAAAGCGAGTCTGAAGAGGGCGAGCAGTTGGCTGACGCAGACCCGAAACCAAGTGACCTACCCATGACCAGGTTGAAGGCGCGGTAAAACGCGCTGGAGGACCGAACCCACGTAAGTTGAAAATTGCGGGGATGAGTTGTGGGTAGCGGTGAAATTCCAAACGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGCAAAGAGGATGCTGGAGGTAGAGCTCTGTTTGGACTAGGGGCCCGTCAAGGGTTACTGAATTCAGATAAACTGCGAATTCCAGACATTTATGTGCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGATCACCAGTTAAGGTCCCAAAATTCATGCTAAGTGGAAAAGGATGTGGAGTTGCGCAGACAACTAGGACGTTGGCTCAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTAGTCGAGTGACGCCGCGCCGAAAATTTACCGGGGCTAAGCATGATACCGAAACTGTGGATGTGCATTTATGCACGTGGTAGGAGAGCGTTCTAGCGGCGGTGAAGCATGACCGAGAGGACATGTGGAGCTTCTAGAAGTGAGAATGCCGGTATGAGTAACGAAAGACAGGTGAGAATCCTGTCCGCCGCAAGACTAAGGTTTCCTGGGGCAGGCTCGTCCGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAGAGGCGTAGTCGATGGACAACAGGTTGAAATTCCTGTACTGCACCGAATCGTTATGAGCGATGGAAGGACGCAGGAGGCTAGCAGCGCGTGGTGCTGGATACCACGTTCAAGCGTCAAGTCTGAGAGCGAGTCAAATGCTTGCTCTCATAAGGACAAGGCGTGATGAGGAGCGAAATTAAAGTAGCGAAGGCTGCGACGTCACACTGCCGAGAAAAGCTTCTAGCCAGAGACGGTGCACCCGTACCGCAAACCGACACAGGTAGTCGAGGAGAGTATCCTCAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGGCCCCGTAACTTCGGGAGAAGGGGCGCTGGTCGCAAGATCAGCCGCAGTGAAAAGGCCCAAGCAACTGTTTATCAAAAACACAGGCATCTGCAAAATCGTAAGATGAAGTATAGGTGCTGACACCTGCCCGGTGCTGGAAGGTTAAGAGGAGAGCTTAGCGCAAGCGAAGGTTTGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGTGTAATGATTTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAATACCCGTGAAGATGCGGGTTACCCGCGACAGGACGGAAAGACCCCATGGAGCTTTACTGCAGTTTAATATTGGGTATCTGTCAAGCATGTACAGGATAGGTAGGAGCCGGAGAAGATAGGACGCCAGTCTTATCTGAGGCGCTGTTGGGATACTACCCTTGCTTGACGGATGCTCTAACTCAGGCCTGTGATCCAGGCCGAGGACAGTGTTTGACGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGTGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGTAAAAGGGAGCTTGACTGCGAGAGAGACAACTCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTACCGCATGGAAGGGCCATCACTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGTGGGCGCAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGCACCGCTGGTGTACCAGTTGTCTTGCCAAAGGCATCGCTGGGTAGCTATGTGCGGACGGGATAAGCGCTGAAAGCATCTAAGTGCGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCAAGAAAGTAAGACACCTCAGAGACGATGAGGTAGATAGGCCGGGAGTGGAAGAGCCGTGAGGCTTGGAGCGGACCGGTACTAATCAGTCGAGGACTTGACCAAAAGAGCAAAGCAATGAGGTTTTGACTTGGTAAAAGATATTCAGTTTTGAGCGTGCAAGCTCAAGCAGAGAGTGCGGTGGCAATGGCAAGAAGGATACACCTGTTCCCATGCCGAACACAGTAGTTAAGCTTCTTAACGCCGAAAGTAGTTGGTGGGAAACTGCCTGCGAGGATAGGAAGCTGCCGCGCGAGACAAGAGTCAGACGGAAGTCTGGCTCTTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCACTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCCGTCCCACGCTTTGAAATTGACAGGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGAACTGTTCTTTTTGACCGCTGGGCATGCGACTTTAGCCAAACGAATAAGGTTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAACCATTAAGTGCTCAATCTCTGGGAAAGTGAGCTGAATGGCTTTGTGCAGTCTATTCCTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATTCAATTAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTGCCTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTGTTTTCTCTTTTTCTTCTTCTTACCAAGTAAAAAGCCCTCCATTTAGGAGGGCTTGAGAGCATATTAGGCATTAAGACTTTCGGCCAGTTCATGAACCAGGTCGAGCTTACGCCACTGTCCTTCTTCGCTGATTAAATTTCCGGCTTCTGTTGAGGCAAAACCGCATTGGGTAGCAATGCAGATCTGCTTTGGATCAACGTGCTTATTGGCTTCCTCCAGGCGCTTAAGCAAGACTTCCTTGTCTTCCAACTCGTCTGACTGGGTGTTGACCAAGCCAAGCACGATCTTTTGCCCCTGCCGCTTTTCTAAAAGTGAGAAGTTACAGTATTTTTCATCATCGAATTCCATGAAGAAGCCGCTGAAGGGTAGCTGGAAGATGGTGTCGACCAGGCCATCATATTTGGCGTCATAGAATTTCTTTGACCGCAGGTTGCCCTGGCAGAAATGCAGGGTGATGTCCATGTCAGCTGGCTTAGAGGCCAGGATTTCCTTGGCAGTTTCAAAGAAAAACTGCCGTACTTCTTCCGAATCAAAGCCGGCCTGGCGGATCTTATTTTCTAAATGAAAATTAGGGGAAGATTAAAAGAATAGAAATTGCTTTTTAGCCAGAAAATAGCCTACAATAGATTGACAGATAGTTAGCCGCAAAAAACCGCCCAAGTCTTGGACGGTTGCAAATAGTATTTACTTTATCTAGATTGACATTTTCAGCTGGGCCGGGCTGAGGATTCTGCCTAAGCGCTCAGCTCCTTCATCGATCTTGCTGAGGCTAGAGCCGGTGAAGTTGACCCGGAGGCCGTTTGGGCCGGGCTGAGGATTCTACCTAAGCGCTCAGCTCCTTCATCGATCTGACTGAGGCTAGAGCCGGTGAAGTTGACCCGGAGGCCGTTATTCTTGTCCCAGTTAGGATAGAAGCTAGCCGAAGGCACGTAGATGAGGTGCTCTTTTGGCACGGCTTCATTAAGCAAAAGCTGTCTGGTATCAATTTCATCGTCCAGTTCAACCCAGAAGAAGAAGCCGCCTTCCGGCTGGCTGATCTTGGCATCAGCTGGCAGGTAAGTCTTTAAGGCTTTAGCCATAGCATCCAGCTTGACCCGGTAGACCTGCTTCAACTGATCAATATGCTGGTCCAGATCATTGTCTGCAAGGTAGGCAGCTACGGTACCAGCAGCTAAGTATGGCACTTCCAGGTCAGCTGACAATTTCAAGTTGACCAGCTGTTCCTTGATTTCCGGACTAGCTACCAGCCAGCCTAAACGGAAGGCTGGGGAAAGGATCTTAGAGAAGCTGGACAGGAAAATCACTCTGCCTTCCGTGTCAAAGCTCTTGATGCTTGGCAGGCTTTCCCCATGGTAGCGGAGGTCCCGGTAAGGGGTATCTTCCAAGATGACGAAGTCGTAGCGGTTGGCCAGGTCAACCAGGCGCTGGCGCTTAGCCAGGGATATGGTGATCCCGGTTGGATTGTGGAAGTCTGGCACCGTGTAGAAGAGCTTGATTGCCGGGTGCTCTTTCAGCACTTCTTCAAAGTAGTCCAGGTTGACCCCGTCGTCTTCCAAAGGAATTTCATGGTAGACTGGTTCGTAATTGTCAAAAGCAGACAGGGCGCCGACATAGCTTGGTGCTTCAACGGCCATTTCGTCGCCTGCCCCCAGGAAAAGCTTGGCTACCAGGTCGAGCCCTTGCTGGCCGCCAGCCGTCAGCAGGATGTCGTCAGCATTAGCCTTGATTCCCTGCTGCCTTGCCCGGCTTGCCAGGTAGTCGCGCAAGGTGCCCGGCCCCTTAACGTCGTGGTATTGGAAGGAGTGGGCCTGTTCCTGGTCAACGGCCTTCTGGTAAGCAGCTTGCAAAGCCTGGCTTGGGAAGAGGCTTTCGTCCGGGCAGCCGCCCCCAAAGGAGATGTTGTCGGAAAAATTGCTTTCCGGGAAGAGCCCTTGCAGGCGGGATGGATTTTGAGTTTTGATTCTTTTGGCAAAAAGCTTGCTTAACATTTTTCTTTGTTCCTAATTTCTTTGTTCCTAAATTAATATTGTCAGTTCCGCGTTGACTATATTATAATTGCTGGAGTAAGAATAATAAAACTCAACTTTTTTGATTTTAAGTGAAATATTTTCATGTTAGGAGGGGCAAATGCTGCCATTTCCATATCTAGTCTTCCAGACAGTGATCGACCAGGGAACCTTCAACAAGGCTGCCGCAGTCTTGAACGTGACCCCGTCGGCCATCAGCCACTCGGTCAACCAGCTGGAAACCGAACTAGGCTTTCCGGTCTTTGTCAGGTCAAGAAACGGGGTTAGACTGACCCCGGATGGGGAGAAAATCCTTCCCTTGATCCAGGAAATCATCAATGACCAGAGCCGGCTGGAGCAGGTCGCCCAGCAGATCCAGGGCCTGGACACCGGTTTGATCCGGATCGGGGCTTTCTCTTCGGTCTGCATCAACTGGCTGCCGCCTTTAATCCGGAATTTTGCTAAAAATTACCCCCAGGTCAAGATTTCCGTCCGCCAGGCTGGCTTCAGTGAAATTACCCAGGCTGTGAAAAGCGGCCAGCTGGACCTGGGCCTGACCATGCTGCCGGAAAATGAGCAGGGGATCAGCTGCGAAAAAATCCTGGAAGACGAAATCTACTGCATTGCCCCCAAAGACTTCCAGGTCAAAAACGGCCACAGCATCAGTGAGGAAGACCTGGTCAACTGCAACTTCATCCTCCAGCAAAGCGACTACGACCTGGATACCAAGGCCGCGCTTGACCACTACTCAATTAAGTCAACGGCTATTAGCTTTTCCATCGACGACCAGTCAATCGTGGCTATGGTGGAAGCGGGCCTGGGGCTGGGGATCCTGCCGGCTTTGGCCCTGCAGAAGATGCAGGGGGAAGTCAGAATCCTGCCTTTCAGCACTCCCTTTTACCGGAAGATCGCCCTGGTAACCTCAAACCAGCAACGGCTGGCTCCTTCAAGCAGGCAGATGATCAAGAACGTGCATGAACTGATCAGACGCCAGTATCCGGGCGGGCGCTTGACGATGGAAGCGGAAAGCGCATAGAATGCATGCAGTCTGTATAAATAGTATAATGAAATTGTTAAAATCTGTTGTCATATCCTCTAATCTCTTGCTATAATATACAGAGTAAAAATATAATGAGACTACAAAGCGTTTTGTCACACTCCATGAGATTAATAGGAAGCATAAACTAAAATTTGCATCAGCGATGGGGCAAGCGGGCGCTGAGTAATTTTTATTCAATTTTTTAGACATAGGAAATAAAGAAGGTATTTTATGAACGGTAAACAACTTGTTGCAGAAGCTTTACAGGCGGTTTTGCCTGACTGGTCACTGGATGACATTGATGTCAAGATTGAACGGCCAAAGGACGAAAAGCTGGGGGATTACGCTTTTCCAACCTTTACTTTAGCCAAGACCATGCGCAAGGCGCCAAACCTGATCGCGGCTGAACTGGCTGAGAAGATCGACCAAGGCAGCTTTGAAAAGGTGGAAGCAGTTGGCCCATACATCAACTTCTTCCTGGACAAGAGCCAGACCGGGGCGGCCATCTTGCAGGAAATCCTGGCTGACCCTGAAAACTACGGTGCCCGTGACCTGGGCCACGGCCGGAACGTTTTAACTGAATACTCATCACCTAACATTGCCAAGCCAATGGGGATGGGTCACCTGCGGTCAACCATGATCGGTGAAGCTATTGCCCGCATTCTGGCCAAGGAAGGCTTCAAGCCTATTAGAATCGACTACCTGGGTGACTGGGGCACCCAATTCGGGAAGATGATGGCTGCCTACAAGATGTGGGGCAACGACGCCGACATCGAAAAGGACCCAATCAACACCCTTTTGTCTTACTATGTCCGAATCAACCGGGAAGCTGAAGAACACCCGGAATACGATGAAGACGGCCGGGAATGGTTTTCCAAGCTGGAACACGGCGATGAAGAAGCCAAGCGCTTGTGGAGCTGGTTCAGAGAAGTTTCCCTGGAACGCTTCAAGAAGGTTTATGACATGCTGGACGTTCACTTCGACTCCTTCACTGGTGAAGCCTTCAGTGCCCAAATGATGGATAAACCAATCCAAATACTGCGGGAAAAGGGTCTCTTGGTTAAGAGCCAAGGTGCTGAAATCGTCGACCTTGAAAAGTACAACCTGCCGCCTTTGATGGTTATCAAGAGTAACGGGACTTCAACTTACATCACCCGTGACCTAGCAACTGCCATGTACCGGAAGAAGACTTATGGCTTCTACAAGTCCATCTACGTTGTCGGCCAGGAACAGGAAGTCTACTTCCAGCAGCTGCGTGCCTGCTTGAAGGAAATGGGCTTTGACTGGGCTGACGACATTGTTCACATCAGCTTCGGTCTGATGAGCATCAACGGCCAGAAGATGTCTACCAGAAAGGGTAACGTCGTTAACCTGGAAGACGTTTTGAACGAATCAGTTGACCTGGCCCGCAAGCAGATTTCTGAAAAGAACGTCGGCTTGAAGAACGCTGACGAAGTTGCCAAGCAAGTCGGTATCGGCGCGGTTGTCTTCCACGATTTGAAGAACTACCGCCGCAACCCAATCGACTTCAACCTGGAAGAAGTCGTTAAGTTCGAAGGTGAAACCGGCCCTTACGTGCAATACGCCCGGGCCCGTGGCGAAAGCCTCTTGAGAAAGAGCGGCATTACCGACTTCTCAGACGCTGACCTGACCAAGATCGGCGCTGAAGAATGGGACCTGGTCTCCTTCATGGCCCGCTACGCTGACACCATCCAAAAGGCCATGGAAACCTACGACCCAAGCGCGATTGCCAAGTACGCCCTGGAACTGGCCAAGCGCTTCAACAAGTACTACGCTCACACCAGAATTTTGGTTGATGACGTTGACGAAGATGTCAAGAAGGCTCGTTTGGCCGTTGTCCAAGCGGTCAGCCATGTCATCAAGTCAGCCCTGGACTTGCTGGATGTCAAGGCACCAGACGAAATGTAGTTTTTTCATTTTACATGAATGATATTAAATGCCTTGAACTTGCTTCAAGGCATTTTTTATTGGCTAATGTCAATGTTGTTGGGGATAATTGCAGAAAAATTGATCGAAGAAAGTCGGATAATTCAAGAAGAATTAAATAACAGCTTTATTGAAATATAAAAGTGCGTTAAAATTAAAGGTATCTAAAACGCTTAAATATAATATTAAGGGGCAATAATTATGAACTACAAAGAAAGAAGACAGCTGATTTACGAACTGATTCAGACCAACAAGATTGAAACCCAGGAACAATTGCTGCTCTTGTTGCAAGCCCATGGCGCGAACGCGACCCAGGCTACTATTTCCCGGGACATTCGCGCCTTGCACATCAGCAAGGTGCCAGATGATGACGGCCGCAGCTACTACGTTAAGGCGCCATCAGCTGCTGTTAACCGGGAAAGGCAGCTGAAAGACGCGATCCGCGAACGGGTGGCAACTGTAACTGCCGTTCAGTTTACCGTTGTCATTCAAACCAGCATGAAATTGACTTACGCGCCAATTTTGGCAGGATTAATTGACGATATTGACAACGATGACGTGGTCGGCACGATCGCCGGGACTGATACTCTTTTGGTTATCTTGAAGGATGCTGAAGCAGCTGCCAGCTTCGCGGACTGGGCACAAGCCATCGTTAAGGAACGCAAAATATACTAAGGAGAGCGATAATGGCAAGAATTTCGGTCTATATGACTGGCGGAATAGCTGCCTATAAGGCCGTGAGCGTTGTCCGGGGCCTGCAGAAGGCGGGCCATGAAGTCCGGGTAGCGATGACGGCCAAGAGTGAACGTTTTGTTGGTCCGGCAACTTTGGCGGCCTTAACGAAATGGCCGGTTTTAGACGACTTGTTCAGTCCAGGCCGGCAGGCGGAAATCGCCCATATCGACTTGGCTGACTGGAGCCAGCTGGCCCTGGTCGTGCCGGCTGATGCCAATATCTTGGCCAAGCTGGCTCAGGGGATCGGGGATGATGCCGTTTCAACCACCCTTTTGGCATTGCACTGCCCGCGCTTGATCGTGCCGTCAATGAATAGCCATATGTGGGAAAATCCTGCTGTACAGCGCAATCTCCGCTTGTTAAAGGAGGGCGGCGACTGGATCATGGAACCGGCCGTGGGCCGACTGGCTGAAGGCTATGCCGGCAAGGGCCGGATGCCGGAAGCTGAAGAGATCCTGGCCTGGGTTAATGACCAGCTTGACTTGCCAGCCAAAGGCAAGCGAATCGTCGTCACTGCGGGGGGCAATCTGGAAGCTATTGACCCGGTCCGCTTTATCGGCAACCGGTCAAGCGGCAAGATGGGCTTCCGCTTGGCAGAAGCCGCGGCCAAAAGAGGGGCCGAGGTGGACTTGATTTACGGCAACGTCTCAGTTCCCCTGCCAAGGGATGCCCGGATTCACCTCCATCCCGCCCTGTCGGCCCAGGCCATGCTGGAGAAGCTGGAAGAACTTTTCCCGGCTGCTGATGCCCTGTTGATGGCGGCAGCCGTCAGCGACTGGCGGCCAAAGGAAGCCGCTGACCACAAGCTGAAGAAGCAGGACGGGGTAGAGGAAATGACCCTGCAGCTGGTCAAGAATCCGGACCTGTTAAAGACAATGGCCCAAAAGAAAAGGCCGGACCAAGTGGTCATCGGCTTTGCGGCTGAAACTAATGACCTTCTGGCCAATGCCAGCCGGAAGCTGGCAGAGAAAGGCGCTGACTTGATCGTGGCCAATGACGTCAGCGGGGATGCCTTTGGCGGCGACGAGGACCAGGTAACGATCCTGGAACAAGGCAAGGAGCTGGACCCTTGGCCGTGGATGAGCAAGCAGGCCGTGGCTGACCGCTTGCTCGAAATGACTTTGGCTAGGCTGGCAGAAAAGAAGAATTAAAAGAAATGAAGTGAGAGGCCTTTTACCTGGTGAAAGACCTTTTATTTTTTTCTGAAGCTTTTGCTGAAATGAACCGCTTTCACTATAATAAGGGTAAGAGCTTCGCGAAAAAGATTGGAAGACGAATAATGAAGAAAATTGATGCCCACCTGCACCTGGTGCGGGACCTGGCCAGCTACAAGGGCAATGGCCGAAGCAATGCCTTGGGAAATGGCCTGGTTGTCTGGGACAGCGGCTTTAAGACCCGCCTCTTTCCCGCTGGCTGGGGTGATGACGCTTTTCGAGCAGACGCCGCCAGGAAAGTAATGGAAGACCATGATGTGGCCAAGGCCGTCCTTTTGCAGGGAAGCCTGTATGGCTTTCAAAATTATTACAGCTGGCAGGTAGCCAAGGCCGCCCCGGACCGCTTTGCCCCAGCTTTTTCCATTGATCCCTTTGCCAGTGAAGCGGAAAAAATCGTCAAGCGCCATGTTGAAGACCTGGGCTTTCGGGCTTTGAAACTGGAAGTCAGCCAGGCCGGCGGCCTTATGGACTACCATTTGCCTTTTGACTTGGCAGAAGACGACCGCTTGGGCAAAATTTTGGACTATCTCAGTTCTTACCCAGGCTTCGCGGTGGCCGTGGACTACGGCGACAGCAGCCAGGCCAGCCACCAGCCCCGGTCCTTGGCCCGGCTGGCTAAGCGTTATCCAGATTTGGACTTTGTCCTCTACCATTTGTCCTTCCCAAAGCCTGGCAAGTTGGACTTGCTGGAAAAAGAACTGGCTCTTTTTGCTCCTTTGCCGAATATCAGCTTTGACCTGGCCGCCCTGCAAGACATCGCGGGTGAGCAGACTTATCCTTACCCATTCTGCCAGGAAGCGGTGGGCCTGGCCAAGGAAATCGTGGGGGCCAAAAGGCTCTTATGGGGCATCGACGCGCCCTGGTCAGCCACTTTCAATGATTACGGCCAGCTTTATTCCTGGCTGGAAGACGCAGGGATTTTTTCAGAAGCGGAACTGGCTGATGTTTATTATGGCAACGCGGAAAGAATTTATTTCAAGGCAGACCACGTGGCGGCTTTAAAGGCCAGCCGCGATCCGCTGTTTGAGGGAGATGCTTAAGATGGAAAATGCGAAAGTTTTGGTGGCGGGCCTGGCGGTCAGGCAGCTGCCCGAATTGGAAAAAGTATGTGAAGTGACCTTTGCTCCGGCAGGTGCCGGCAAGGACTGGTACCTGGCTAACCTAGGGGATTTTGATGCCTTGATCACCGGCAAGCTGCCAGTTGACCAGGAACTTTTGGACGCGGGCAAAAAGCTCAAGATCGTTTCCGCGACCGGAGTTGGCTATGACCATATCGACGTGGACTATGCCAGCAGCCAGGGGATCATCGTCTCCAACTGCCCGGCCAGCGTCATGCAGCCGACGGCGGAAATGGCCTTTACCCTCCTTTTGGCTCTCAGCCGGAAATTGGCCCTCTACAATCAAGAGATGCGGCAAGAGAACTTTTTGGACACAGGCTTGCTCGAAAACCAGGGGCAGAGCCCGGTCGGCAAGACCCTGGGGATCTTCGGCATGGGGAGAATCGGCAAGACCCTGGCCAGCTATGCCCGGACCTTCGGGATGAACATTCTCTACCACAACCGCCACCAATTGCCGGAAGATGAAGAGCGGGCTCTGGGAGTCAGCTACGTGCCCTTGGCCGACCTGCTCAGCCAGGCCGACTATGTCAGCTTGAACGCTCCGGCCACGGCGGAAACCTACCACGTGATTGATGAAGCAGCCTTGAGCATGATGCAGCCGACGGCCTTTTTGATCAATACTTCCCGGGGCAGCCAGGTCGATGAAGCGGCGCTTTTGCGGGCCTTAAAGGGCAAGCGGATTGCCGGGGCGGGCCTGGACGTGTTTGAAGAAGAGCCGGACTTCAACAAGGAATTCTGCCAGCTGGACAATGTGATTTTGACCCCGCATGCCGGCAGCGCCACCCGGGAGTCCCGGCGCAGCGTCTTGAAAGAAGCCAGCCACAATATTGTCTCCTTCCTAGTCGACGGAGTGCCGGTCAACCGGGTCAACTAAAAGATGCTTTTGCATCTTTTTTTGTTATCATTAAGTGTTAGCTACTATAAAGCGAATTAAAGGGGGTAGAGAGCTTGCTTGATCCACAGCAGGTCTTAAAGAAGTATTTTGGCTATGACAGTTTCCGGCCGGGCCAAAGAGAAATTATTGAAAAAGTTTTCCAGGGAAAAAATGTCCTAGCAGTCATGCCGACCGGGGGCGGGAAGTCGCTTTGCTACCAGATCCCGGCCTTGATGATTCCCGGTGCGACTGTGGTGATCTCACCCTTGATCTCCTTGATGAAGGACCAGGTTGACAGCATGCGCGAGTACGGGATACCGGCCGCGGCACTTAACAGCTCCACAGCCCAGGAAGACGTCAATCCCATCTTAAGAGCCTGCTATGAAGGGAAAATCAAGCTGCTCTACGTGACGCCGGAACGGATGGAGATGGACTATTTCCGCTACCAGCTCAACTTTTTGGAGGTTAACCTGGTCGCCATCGATGAAGCCCACTGCATTTCCCAGTGGGGGCATGACTTCCGGCCGGCCTACCGGAAGCTAAAGGACGGGATCAATGCCCTTCATACCCATCCCAATGTTCTGGCCCTTACAGCTACGGCCACTAAGGCGGTCAGAGAAGACATCGGCCAGCAGCTGGACATTTCCGAGGAGAATTTCGTCATCACCAGTTTTGAAAGAAAAAATCTCCACTTCAAGCTGGTCAACGCGCCGAAAAACAGCCGGGCCTATATCGTCAACTACTTGAAGCAGCACCGGGGTGAGGCGGGCATTATTTATTCCAACACCCGGAAAAAGGTGGAGGGGCTGACCGAATTTTTGCGCCGGGAGGGCTTTAACGTTGCCGCCTACCACGCCGGGATGTCCAATGAGGAACGGGCCCAGGTCCAAGACGACTTCCAGTATGACCGGATTCCCTTGATCGTGGCTACGAATGCTTTTGGCATGGGGATCGACAAGAGCAATGTCCGCTTTGTCCTGCACGCAAACAGCGCCAAAAACCTGGAGGCCTATTACCAGGAAGCCGGCCGGGCGGGCCGTGACGGTCTGGAGAGTGAGGCCGTGATGCTTTTTCACCCCAGTGATCTTCGCCAGTTCCGCTGGTTTATCGACAATTCTGAAGCTGATGAGTCCTACCGGCAGGTCCAGTACCAAAAGCTGCAGACGATCAGCGATTATGCCAATACAGACGAGTGCCTGCAGCAATTTATCGTCCGCTACTTTGGCCAGGACTGCCCGCCCTGCGGCAAGTGCAGCAACTGCTTAAACAGCGGCGACTTCCAGGACGTGACGGCCGAAGCCCAGGCTATTATCGGCATGGTCTATGACTTAGACGGCCGCTATGGCAAAAGAATCGTTGCCCAGGCCGTGACTGGGTCCAAAGTCAAGAAGATCAGTGAGATCGGGGCTGATGAGTGTGTCCACTACGGCCTACTCAAGGGAAAAAAGCAGGCTGATGTAAGCAGCCTGGTCGACTACTTGGTTTCAAAGGGCTACCTGCAGCTGGTGGGGGACTGCTATCCCTTGGTCCATGTAACCAACCGGGGCTGGGACGTTTTGGACGGCAAGGCCAGAGTCAAAAGGCGCCAGGAAGTCAAAAGAGAGCAGCTTGCTGAAACAGGTGGTGACCAGGTCCTCTTTGAAGAGCTCAGAAAGGCCCGCCGGATCCTGGCCCAAAAGCGGGGAGTGCCGCCATTTGTCATCTTTTCCGACTTGTCTTTGCGGGATATGGCAGCCAGGAAGCCGCAAACGCCGGAAGAGCTGCTCCAGTGCAGCGGGGTCGGGGATGCCAAACTGGCCAACTATGGAAAGGCCATGCTGGCCGTAATCAAAAAATATGGATAAAAAACCTTCAGAATGAAATCTTCTGAAGGTTTTAATCGTTATTACTGCTTTATTTTTTAGAAAAGCTTGGCCTTTTCGCACAGGTCGTCAAAGCGTTCCCAGAACTTGTCGTAGTTAGCGGAAGTAACCAGGGTCATTGGCCGGCCATTTTCAGTTTCAAAGAAGCGGGCAGCCCGGTCGCCGTCAGTGTAGACATCAGACTTGGTGTCACGGGTCGTGGCGATTTCCGGGTAAAGGGCGCTCATGGTGGTCAGAACGTCCCAGAGGTAGTAAGTTGAGTCGACTTCAAAGGAGTTGACCAGGGCGTAGACATAGCCCAGGAATTCAAAGGCCGGGTACTTGCGGTTGGATGCAAAGTGCTGGCGCATCTCGTCGGTCAGAGGCAGTTCTTCGGTTGATTCCAGGCCGACCTGCTGGATCTTGATCTTGGAGTCCCAGACCGTCTTGCAGGCTTCCGGGTCCCACCAGGCATTCCATTCCTGGGTCCCGTCAGCGCATGGTGCATAAACGTTACCGTGGGCGTTCAAAGACCCGCCCATCCAGTAAAGTTCCTCGATCTTGTCTTGGATGCTTGGGTCAATTTCCAGGGCCCGGGCCAAGTCAGTAAGCGGACCGGTAAAGACCAGGGTAACCGGGCCGTCAGCAGCATGGATCTTGTCGATCATGTCCAGGTGGGCCGGCTTTGCGGCAACTGGCGTTTCAACCGTGCCTTTTTCATTCAAGATCGGGAAGTGGTCCACGGAAAAAGCTGACACTCTCCAGGCTTCCGGGAACTGGTGGACTGCCCGGGAGTCGGACTTGGCCACTTCCAGCTTGTCGCCGCGCTGGTTGAAGCGGTCGATCAGCTTCCGGGAAGCGGAAACGCCTGGTTCAACGTAGCCGTCGGCGTCGGTTACCCCTACCCCGATCAGCTTGATGTCTGGTACCAAAAGCATGAGCAAAAGTGAAGTAAAGTCATCCATGTTGCTGTCATGGTTCAAGTAGAAGTTCTTCATGAAATCTTACCTTCCTAAATCCTATAGTCTTAACAATATTATTATACGTGATGCAGGGACAAAAAAACGGCCGTTTTCCGAGAAAAAAGTTTATTTTGGACTAAAAGTAGAACAATACTAGCTATAAAAGGATTATTGTTAAAAGACCCTTATTTTGCCCTGGTTTGGTCATGGAAAATCATTAAAATATTTTTGCGATTATAGGCGGATCGGTGTTAGAATAACACTTTTCGTGATAAAATCGTACGGTAAATGAATCGCGGGGAGGCAGACATGGCGAGTCAATTGATTGAAAACAAATTGAAATTGCTGCCGGAAAAGGCCGGCTGTTATCTGATGAAGGACGTCAACGGCAAGGTCATCTATGTTGGCAAGTCCAAAAACTTGAAGAACCGGGTCCGGTCCTACTTCAAGAGCAGCCAGGAGGGCCGCCGGGCCGAGCTGGTCAAGAATATTGCCGATTATGACATCATCGTGGTGGATTCTGACAAGGAAGCCTTTTTGCTGGAAGTCACCCTAATCAAAAAGTACCAGCCTTATTACAATGTGGCTCTGAAGTCGGGGACGGGCTATCCCTATATCGAAATCACGAATGAGAAAAATCCCCAGACCCGCCTAACCTCGATCGTCTACAAGGACAAGGGCTACTATTTTGGCCCTTACCCCAACGTCTACGCGGCCAGCGCGACTTTAAAATTCATCCAGAAGGTCTTCCCTTTACGCCGCTGCAGCGGCTATACCGGCCGGCCCTGCCTTTACTACCATATGGGCCAGTGCCTGGGCAGCTGCTTTAAGGAGGTGCCGCAAAGCGAATATGACGAGCAGATCAAGAAGATCAAGCGCTTTTTGAACGGGGACATCCAGGAGGTCAAGAAAGACTTGACCAATAAGATGCTGCAAGCTTCAGCTGACCTAGAATTTGAAAGAGCCGGGGAACTCCGGGACCAGCTCAAGTATATTGAAGAAACGGTTGAAAAGCAGAAGATCATCTCTAATGATCATACCCAAAGAGACATCTTCAACTATTACGTGGACCGGTCCTGGATTTCCATCCAGGTCTTCTTTTTGCGGCAGGCCAAGCTCTTGCGGCGGGAGTCGCACATGTTCCCTTTGACTGATGAAACTGACCCAGAAGACGAATTCATGTCCTTTATTGCCCAGTTCTACGCCCAAAAGAACCGGGTCAACCCCCGGGAAGTCCTGGTGCCAAAAGGCATCGACCAGGATGAACTGGCCGCGGCCATCGGCATTAAGGTCCGGACCCCGCAAAGGGGGCAGAAGGCTTCTTTGATGGAGATGGCCCGGGAAAATGCCCAGCTGAAGCTGGATGACAAATTCCGCCTGCTGGAGCTCGGCCAGCGCAAGACTAAAGGGGCCCAGGAAGAAATTTTCAAGGCCCTGGGTCTGCCTTACGGGTCATACATTGAAAGTTTTGACCACTCCCATATTCAAGGGGCAGACCCGGTTTCGGCCCTGGTTGTCTTTAAAGACGGAGAACCCTTTAAGACCGGCTACCGGAAGTTCAAGCTGAAGGGGGAAGTTGAGCACCAAAACAGCGCCGATGAAGTCGGCAACACCCGGGAAGTCGTCCGCCGCCGCTACAGCCGGCTGTTAAAAGAGCATGAAAGAATGCCGGACCTGATCTTGATGGACGGGGGACAGATCCAGGTGGAAGCCTGTGAGGATGTCTTAAGAAACGAGCTGAACCTGGATATTCCGGTAGCGGGGATGGTTAAAGATGACAAGCACCGGACCAACCACCTCTTGTACGGTGACCCGTTTAAGGGCCAGCCTTTCAAGCTGATTCCAATGGATCCGAAGTCAGAAGGCTTTTACTTAATGACCCGGATTCAAGATGAGGTCCACCGCTTTGCCATCACCTTCCACCGGCAGACCCATGCGAAAAACTCCCTGGTCAGCCGGCTGGACTCGATCAAAGGTATCGGGCCGAAGAGCCGGACCAAGCTTTTGCGGGAATTTGGCTCTTTAAAGAAGATCAAGGAAGCTTCTATTGATGATCTGCGCAAGGCGGGACTGACTTTAACCCAGGCGCAGGCAGTCAAAATTTCCCTTTAGCTATTGGGCAAAATAGCTTATGATTAAATGGTAACAATTAACGAAAGAAAGAAAAGGTAAAAACAAGAATGCCAACTCCTTCAACATTTGTTGATCAAACTAAAATTGAAGTCCAAGCCGGAAAAGGCGGGGACGGCATGGTGGCCTTCCGCCATGAAAAATTCATGCCTAACGGTGGACCAGCTGGCGGTGACGGCGGCCGGGGCGGGTCCATTATCTTCGTGGCCGATAACGGCCTCAGAACCTTGATGGATTTCCGCTACCGGCGCAAGTTCAAGGCTGAGCCGGGCGAAAACGGCCGCATCAAGGCCCAATACGGCAAGGCAGCCAAAGACCTGTACCTGAAGGTGCCGGTTGGCACGACCGTTTATGACTTTTTCACCGGTGAAGAAATCGGTGACTTGGTTGAAAACGGCCAGGAACTGGTCGTCGCTAAAGGCGGCCGGGGCGGCCGGGGCAACATCCACTTTGCCACCAGCGTCAACACGGCGCCGGAAATCGCTGAAAACGGGGAACCGGGTGAATTCCGGACCCTGCGTTTGGAATTAAAGGTCCTGGCTGACGTCGGTTTAGTCGGCTTCCCGTCTGTCGGCAAGTCAACCCTTTTGTCAGTCGTCACCAGTGCCAAGCCAAAGATCGCGGCTTATCAGTTTACGACTTTGAAGCCAAACCTAGGCATGGTCCTTTTGCCAGACGGCCGGGACTTCTCCATGGCCGACCTGCCGGGCCTGATCAAGGGGGCCAGCCAGGGGGTAGGGCTGGGGATCCAGTTCCTGCGCCACGTGGAGAGAACCAAGGTTATCCTGCATATGGTGTCCATGGACCCGAACAACGGCCGGGATGCCTACGAGGACTATGAGACCATCTTGCACGAACTGGCCTCATACACGGAAGATGACCTTTCCAGCAAGCGGGAAATCATCGTGGCCAGCCAGATGGATATTCCAGGCGCCGATGAGAAACTGGCCCAGTTTAAGAAGGACCTGGCCGCGCATGGGGTTGACCAGGAAGTTTACGAACTCTCCAGCGTTACCCACCAGGGCGTTGACCGCTTGATGAGCCGGGCGGCTGACCTGGTCAGCGAGGTTGAAGCCCAAGAGGCTGAAGCTGCCGTTAAGCCCAAGGAAGAGGTCAAGACTAAGACCTACAAGTACCACCGGCCAGAAAAGATGGAATTCACGGTTGAAAAGCTGGCTGACCACGAATTTGAAATTCACGGTGAGCAGCTTGAACGCCTGGTAGCCATGACCAACCTGGACCACCAGGACGGGATCATGCGCCTGGCCCGCCGCTTGAAGAGGATGGGTGTCGATGATGAACTGCGGGCGCAAGGCGCTGTCGATGGAGACGACGTTTACATTGGCGACTTCAGCTTTGAATTCGTACAATAAGGGATAGATTGCAAAAATAGAATAGAGAAACGAAAGTTAGAGAATTGAAAAATGAAGAAACGATACATTACTGGCTATGCTGGCTTGCGGGCCCTGGCCGTAATCGGGGTAATTTTGTATCACCTGGATCCCGACCACTTTGGCGGAGGTTACCTGGGCGTGCCGGTCTTTCTGGTTTTGACCGGTTATCTGGTAACCGACCAGATTATGGCTGCCTACCGCAATCAGGGCTATTTTGACATCAAGTCCTTTTACCAGCGCCGCTTCAAGCGTCTTTATCCCCCGCTGATCGCCATGCTCTGGCTGACCAGCGCATATATCGTTCTCTTTCAGCGCAATCTTTTAAACAAGCTTTACCAGATTGTCGCCAGCAACTTGCTGGGGGTATATAACTGGTGGCAGATATTCAACGGGCAGAGTTACTTTGAGCGTTTTGACAATAATGAATCGCCTTTTACCCACTTGTGGACGATGGCGATTGACTGGCAGTTCTACCTGCTCTGGCCGCTGGTGATGGTCCTCTTGGTCAAATTTGCCAAAAAGCGGCGGAATATCTTCTGGGTCCTGGTTGGCCTGTCGGTCTTGTCCGCTCTGGAAATGGCCCTGCTTTTCCGGCCGGGCCAGGATACCAGCCGGATTTACTACGGGACTGACACCCGCTTCTTCTCTTTGGGCCTGGGCAGCGCCATGGCAGTTCGCTGGCCTTTTGAAGAGCTGGACAACCGCTTTACACAAAAAGACGGGGTGATTTTCAACTGGACGGGGCTGGCGACCCTGTTTGGGATGCTTTTGATCATATTCTCGCCTTTGATGAACGCTCAGACCGCTTTCCCATATTATGGTGGGATGTTCATCTTCAGCTTCTTCGTGACGGTTTTCGCGGCGGTAATCGCGGCTCCGGTCGGAATCTGGAACCGGCTGATGACCAACCCGGTCTTTAACTGGCTGGGGTCAAGAAGTTATGAAATCTACCTCTACCAGTTCCCGGTCATGATCTTTTTCGAAAGCCGGGTCAGCGACCTGGCCGACCATGTGACTCTTTACCGGGTGACCGAGATTGTCTTGATCCTCTTGATCAGTGAAATTACTTACCGTCTTTTTGAAAAAAGACGCTACACCAGCGAAGGCATCCGCTACAGCTTGACCAAGCTTTTTCACTGGCCAGTCAAGTTGTCCAAAAACTGGCTGAAGACGGCGGCCTTCTTCCTGGTCTTTTTGATCGGCAGCAGCGGGATCATCTTCTCCCCGCTGGCCAAGGCTGACAACAAGGATGGGGCTTTGATCAAGACGATCAATGACAACTCCAAGCAGCAGGCTGAGATGAACAAGAAGGCCCTGGAATCGATCAAGAGCTCGCGAAAAGCGGCTAAGAAGTCATCCAGCAAGAAGAGCAAGCAGACTTCCAAGGCCAAGACCAAGTCAAAAACGACTAAGTCTAAGAGCGGCGGAAAAAAGGTCAACCAGGAATTTGAGAAGTACGGGATCAGCCAGGCTGACTTGCAAGCCGCGCAAAAGCTGCAGGTGACGGCCATTGGCGACTCGGTCATGGCTTCTTCAAGTGACATCTTGCACCAGCTTTTGCCGCACGCCGTGATCGACGCCACGGTTTCCCGGCAGGCCGACGTGGCCCCCCCAGCTGCTGCAGTCTTATGCCCAAAAAGGTGAGCTGCAGGACAATGTCTTGATTGGCCTGGGGACCAACGGGCCTTTTACTGATGACGAAGTCAAGCAAATCATGCAGATTGTCGGGCCGAAGCGCCAGCTCTTTTGGATCAACGTCGTCGTGCCAACCCGGTCCTGGCAAAACCAGGTCAACCAGCAGCTGCAGGCCTTGACCAAGAAGTACAAGAACTTGACCGTCATTGACTGGTACGGCTACGCCCACAGCCAGTCCAGCTGGTTTTACGACGACAAGGCCCACCCGAATAATGTGGGGCAAAACTACTACAGCACTTATATCGTCAAAGAAATGGTCCGCACCAGCGGATCGAATTAGCCTTTTTATATTTGCTTGGAAAAGAATGGGAGTTAAATGGAACTGGAATTTCTTGGCACCTGCTCGGGCCAGCCGTCAAAGCTGCGGAACGTCTCGAGCCTGGCTTTAAAACTATTGGATGAGCTGAACGAGATTTGGCTCTTTGACTGCGGGGAAGCAACCCAGCACCAGATTCTGCGCACCAATATCCGCCTGCGCAAAATCACGAAGATTTTTATCTCGCACAATCACGGCGACCACATTTTCGGTCTGCCGGGCCTCTTGTCAACCCGGTCCTTTCAAGGCGACGTCGGCCCCTTGACCATTTACGGGCCAGCAGGGATTGAACAGTTCGTCAAGACCTCTCTCAGGATTTCAAAAACGAAGATTTCTTATCCAATCAAATTCGTCACCCTGGAAGAAGGCGGCAAGATCGTCAGTGAGCGGGGCTTTGAGGTTTATACTGAAAAGCTGGACCACCGGATCGACAGCTGGGGCTTCCGGATGGTTGAAGCTGACAAGGCCGGTGAGCTTTTGATGGACAAATTGGCGGAATTTAAAGTGCCAAACGGCCCGCTCCTTGGTAAACTAAAGAGGGGTGAGCAGGTTGAACTGGCTGACGGCACGGTGTTGAACGGCAAGGATTTCTTAGGCCCGGCCAAGAAGGGGCGGGTAGTGACCGTGATTTACGACACCCGGTCAACGCCGTCAATCCGCCGCCTGGCTGACCATGCTGATGTCTTGGTCCATGAAGCGACCTTTGACGCCAGCGAAGGTAAGCTGGCCAGGGACTATTACCACTCAACGTGCACACAAGCCGCTGAGACGGCTAGCGCCTGCCATGTCGGGCATTTATACCTGACTCATGTTTCGGCCCGCTACGTGGGCTCTCTGGCCAGCCAGATGGTCAAACAGGCGCGGGAGATCTTCCCGGCCACGACCTTGGCCAAGGACCTGGACAAGTTCGTAGTTCCAATGAAAGGTTAACGTGATAAAGATGAGTGATTCATTACGCAATAAAGTTGTAGTTATTACCGGGGCCAGCAGCGGGATCGGCCGGTCAATTGCCTTGGAAAGCGCCAGCCGGGGCGCCACGGTTGTTTTGCTGGCCCGCCGCCTGGACAAGCTGGAGGAAATCGCTGCTGAAGCCCGGGAATTGTCTGCTTCAGCAGCTTTCGCCGTCAAGGCTGACCTGAGCCTGGCCAGCGACATCGAAGCGGCTTTTGCCGAAGTTAAGGAAAAGGTCAAGCGCATCGACTACCTGGTCAACGCGGCTGGTTTCGGCAAGTTTGAGGAATTCATGGAGGCTGACATGCAAGACGCCACGGAAATGTTCCAAGTTGACGTCCTGGGCTTGATGTACATGACCCGGCTTTTTGGCCGCTTGATGCTGGACCAGGGCAGCGGGCAGATCATCAACTTTGGCTCCATGGCCGGCAAGGTGCCGACGACCAAGTCAGCGGCTTACAGCGCCGCCAAGGCAGCCGTAATCCAGTTCTCCAACGTTCTGCGCCTTGAACTCAAGCCTTTTGGCGTCAAGGTCATGACCGTCAACCCGGGTCCGGTTTACACCAACTTCTTCAACATTGCCGACGCAAGCGGCCAGTACGTCAAGAATGTCCAGGCCTTCATGCTTGACCCGGACGACGTTGCCTGGGAAGTAGTCCACTACTTCGGTTCAAACAAGCGTGAGCTCAACCTACCGGTCAGCCTGGCGGCTTTGGCCAAATTGTACAACTTGTTCCCGGGGATCGGGGACAAATTGTCGCTTGAATTTGCCTCCCGCAAATAAATAAAGTAAGGTTTTTCTTGATTTATTTGCCAGGCAATAGTATTATTTAATTACTTGAGTATTTAGGTCACCGACTTGATACTGTGATATTACAATAAAGGAGATCAGTTATAAATGGCAGTTCCTGCAAGACATACTTCTAAGCAAAAGAAACGTTCACGTCGCGCTCACTTGAAGCTCAGCGTGCCAGCAATGCACTACGACGCAACTACTGGTGAATACCGTTTGAGCCACCGTGTTTCCCCTAAGGGTTACTACAAGGGTCGTCAAGTAGTCAGCGAAAACAGCGCTAGCGATAACGACTAGTTTAAAAGGCACCTGTTTTTCTGGTGTCTTTTTTTTATGCCAAAAATTAGGATTGAGGAATTCGAAGAATGAAACTGGTTTTTTTACATTCAAGCGACACCCACGGCTACTTGCTGCCAACTGACTACCAGAGCACGGGCGACTACGACGCTCCTTACGGCCTTAGCCGGGTAGCCAGCGCTATCAAGGTGGAGAAGGCCAAGTGGGGGGCAGACCACGTCATCGTGACTGATGCCGGCGACTGCCTGCAGGGGTCTCCTTTGGCTGCTTACACCCATGGCAGCAAGAATCTGGACAACCTGGCCCGCTTTACTGCTGCTTACAACGCGGTCGGCTACGACGTCCGCTGCTTGGGCAACCATGACTTTAACTTTGGCCAGGAATACATGGCCTACTATGTGGACAACAACAAGGCTCCATTCGTTAACTGCAATATTTTGGATGCCGAAACCCAGGTGCCGACTCTGGGCCGGGACTACGTGATCCTGGAAAGAAGTGGGGTCAAGGTTGGCGTTTTGGGGATTACCACCCAGTACATCCCTCACTGGGAAGCAGCTGACCGGATCAAGGGCCTGGCCTTTAAGTCTGCTTACGAACAGATCGCTCATTTTGCCAAGATCATCAAGCCGCAAGTCGATGTCCTGGCCGTCCTTTACCACGGCGGCTTTGAAAGTGACATCGCCAGCGGGGAAGCAACTGAACCGCACAACGGGGAAAACGAAGGCTACCGGATTCTGACTGAGATTTCGGAAGTCGACGTCATGCTGACGGGCCACCAGCACCGGAGACTGAACATGATCAGCCCGTCCGGTAAGCCTTGCGTGCAGCCGGGCTACCGGGGCGAGGCGATTGCGGAAGTCGTTTTGGACCTGGAAAAGACGGAAGCAGGCTACAAGGTCAAAGAAGCAACCAGCGAATTGATCGACACCAAGGACTTTGCATCAGACCCGGAAGTTGAAGAAATCGTTAAGCCGCTTGATCTAGCCACCCAGAAATGGCTTGACCAACCAATTGCCCACCTGGACCAGCCAGCCCAGATTGAAGATGCCAACAAGGGCCGGATTGAAGGGGCACCTTTCATCAACCTACTCCAGCAGATGCAGCTCTACTTCACCCACGCTGACCTTTCAGCTACGGCCGTGATGAATGACGTGGCCAAGGGTTTTGGCAAGACGGTAACCATGCGGGACATTCTTTTGAACTACCCATATGCCAACCAATTGGTCAGCATCAAATTGACCGGTAAGCAGCTCCGCCACATTGTAGAGCACACGGCCAGCTTTTTGGAAAAAGACGAAAACGGCAAGATCCACTTTATCGACCGCTACCTAAAGCCAAAGCCGGAACTTTACCACTTTGACGTCTTTTACCCACTGGAATACGAGGCTGACCTCTCCAAGCCGGTCGGCCAGCGTTTGACCAAGCTGAAGCTCAAGGGCCAGGACATTCAAGATGACCAGGTCTACCACCTGGCCGTCAACAACTACCGGGCCAACGGGGGCGGTTTCTACCCGGAATACAGCTTGGACAAGATCGAATTCTCCTTGGACAAGGACTATGTCCAGATGTTCAGCGAATACCTGACTCAAGGAGAGGTCAAGGTCGACACGAAGAAGTATTACCGCTTCTATTAGTAACGAATAACGAAGAAAAAGGCCGCCAGGCCTTTTTTTCATGCCCTTGTGGCATAATAAAAGCAGCGATTTAAGGAGGTGGAGTATGCCAGGAGAAAATGTGCGCGTGCAAGGGAAAGTGGTTAAGAGCCATTTAACTTCCTTCGTTTCAGCCGAAGAATTGCGGCAGGTGCAGGCAGCGGAAGAATTAGCCGGCCTGCCTGTCCACCAAAAGCCCTATGCTTTCGTGACCTTGAAAGACTGGGAGCTGGTTGCCGGCCATTTAGAAAAGAATTTGCCGGGAGCAATTGTTTCTTTTGAGGCGGCCGAAGGGGTCCTGCCCTGGCTGGCCAAAGAAGAAGGCGGCAGGCTCAAGCAGATTTTTGGCCAGGAAGTCCCGGCCGGGAAAGTGGTGACCTTGACTCTCAGCCAAGCCGGGAGAAATGGCAATTGGCAATTGCAGCTGGATGGGGTGATCATGGCTGCCCAAAAGCCAAATGACGCAAAAGCAAATAAAGCAGCAGAAGTAAAGGGAGTTAAAGAAGCTAAGAAAGCTAAAAAAGCAAAAGAAGTAAAAGAAAAGACTGAGTCTTTTGCCGGGAAAATGGTTGATGCTCAGGTTAAATTGGGCGGGCAGACTTTGCCCCTGCATGACTATCAGCTCTACAGCATGAACTTTATTATGGACCACCCTTACTGCGGGATTTTCCTGGATATCGGCTTGGGCAAGACCTTGACGACTCTGGCTGCCCTGGCTAAATTGCGGGAAGAGGGGATGAAGGGGCATATTTTGGTGATCGCCCCAAAGACCGTGGCTAAGTCGACCTGGCAAGATGAGATTGATAAGTGGAACTTGCCCTTTAAGACCCAGTCCTTTTTGACCGATGAAAAAGGCCGCCAGCTGACTCCAGCCGGCCGGCAAGAGCTCTATGAAGCTGCCGCGGCCAAGGCCGCCAAGGGTGACTGGCAGCTGTATTTTGCCAGCCGGGACCTGGTCAGCAAGCTGGTTGACCTGGGTCCCTGGCTTTTTAAAAACGTGGTAATCGATGAGTCCCAGTCCTTCAAGTCACCGGCTTCCCAGCGCTTCAAGGCCTTAAAGAGCGTGCGGGGGAGGATCCAGCGCTTGATTGAACTGACCGGGACCCCGGCGCCTAATTCCTTCCAGGACCTATGGTCACAAATCTACCTCTTGGACCAGGGAGAGCGGCTGGGCAGGAGCATCACGGCCTACCGGCAGCAGTACTTTGAGCCGACCTTGCTGGTCAACAACCACCCGGTCAAGTGGCGGCTTTTGCCAGGAAGTGAGGAAAAAATCTACCAGGCCATCGACGATATCGTCATCTCCATGAAAAATACCCGGCTGAAATTGCCGGAACTGACAGAGAGCCTGGACTGGGTGGAAATGCCTCCAAGGGCCAAAAAGAGCTACCAGCAGCTGAAAAAAGACCAGGTCCTGGACTTACCCGGCCAGGAGATTAGCGCCGAAAACGCGGCTGTTTTAGCCGGCCGCTTGCGGCAACTAGCCAGCGGTGCCATCTATGAAGAAGACGGGGAGCATTACCAGGAGATTTTTGCTGAAAAAATAGAAAGTTGCTTCTACTTAACCAGTAATACGGCTACGCCCAGCCTGGTCGCTTATTATTTCAAGTCAGACGCCTCCCGCCTTTTAGCCTTTTACCGGAAAAACGGGGTTAAGGCTGAGCTTTTTGACAGCTCACCTGGCATGATCCGCCGCTGGAACAAGGGCAAGATCCCGGTCATGCTGGTTCAGCCGGCCAGCGCCGGGGCGGGCCTTAACCTGCAAGAAGGGGGCCACACTCTGATCTGGTTTACCCTGCCCTGGAGCCTGGAGCAGTACCAGCAGATGAATGGCCGCCTTTACCGGCAGGGACAGAAAAAGCCGGTCATCATTCACCATCTTTTGACGAAGGGAACGATTGACCGGCATGTATTAGACAGTTTGAAAAAGAAAGACCTCTCCCAGCAGGCCTTGCTGGCGGCGGTCAGGCGGACGCTTGCCTAGTCGTCCGGGCTGTATTTCTTGAAAAAGAAGGTCTTGAGCCAGGAGCGGTCGTTTTTCAGCCGCCAGTAGCTCCAGCAGCTGAAGAGGAGGCTGCCGGCCAGGCCGGCGATCAAGTCACCCATGGTGTCCAGTAAGGCCGCCCGGCCGGCAAGAGCCCGGCCCGCTGACAGGTAGCGCTGCAGGTTCATGGCGAAAAGACTGTCACAGGTAAACTTCATAGCATCCCAGAGGACCCCGCAGAAGATGGCAAAGGGCCACCCCGTACAGCTCTTCCTTAAACTTGAAGCAGCCTAGGATGGCCCAGGCCAGGCCGAAGAGCAGGGCCTGTAGTAGAAGTGGTAGGCATCTCCCAGGTAAATGGCGCAATAGATAAAGGCCAGGAAGAAAAAGTATAAAAAAGCCGGCAGGTAAAAGCGAAGCTACTTGCTCAAAAGGGCCGGCAAAAGGACTAAGAGCAGGCCAGCCCCGGTCTCAAGGACCAGGAGCAGGCTACCGGACTTGCCTTGCGCTAATTGCCGGGCAGCAGTGAGCAGGGAAATAGCCATTGAAAGAACGACAAAGACAAAAGAAAATTTGAGGGCCAGACTTTGTTTGTGCATGGTAATGAACACCTCACTAATTATGAACAGAAATTTTTATTATTTTTTCTACATTTTAACAGATTTGCTTATGCTCGCAGCAGAATCTGCTGACTGAGTTACAATAAAGGCAGCAAGCAAAGCAAGAAATAAGATTGGAGGAAAAAGATGGATTTAGCAGAAATTCAAAAGCAGGCCAAGCAGGCCGTCAGTGAAATTGTCGAGGCATCCGGGATCAAGGCCGGTCAGTTTTTCGTGGTTGGCTGCTCTTCAAGCGAGGTCTTAGGTGAGGCGATAGGCACCAATACCAGCACTGATGTTGCTGAAGCCCTTTACCAGGGGATCAATGAAGTTTTGGCGGAAAAGCGGATCTTCCTGGCCGCCCAGTGCTGCGAGCACTTGAACCGGGCCCTGGTGGTCAGCCGGGAAGCGATGGAAAAGTATGACTTAGAGCAGGTCAACGCGATTCCCCAGCCAAACCATGCCGGCGGGGCTTTCGCGACCGTAGCCTACCAGAAAATGCCAAATGCGGTACTTGTAGAAGACATTGCTGCCCGGGGGGAAGCCGGGATTGACATTGGCGGTACCTTGATTGGGATGCACCTGCATCCGGTGGTCGTTCCCCTGAGAATTTCCCTGGACAAGATCGGGGAGGCCAGAATCATCTGTGCCCGCCGCCGGCCAAAGTATGTCGGCGGCCAGCGGGCCATCTACGATCAGGCTTTGATGTAAGAAAATATTTAATTTTTTCTAAAAATAATAGACGCCATACTATTAATACATAGGCTTAGGAGTTTTCGGTTAGCAAGATTACGGTCAAGAGCGCTTTGGACTTGCTGGAGCAGGAAGGCTTTGTCTATAAGGAGTCAGGCCTGGGAACCAAGGTCTTGTCCAACTTGACCCTTTTGGGCCAACATGACTCCCCCGTCAATTCTTTTGCCGGCCTGTCGGCTGAAAACGGCAGTGACCGAGTGAGCAGCAAGATTATCAAGCTTGAAGTAGCCTTTCCGTCAGCTGACTTGTGCGAGAAAATGACCCGGTTTATGAGATCATCCGCTTGCGCCTTTTGAACGACGAGCCCCTGGTGATTGAGCATACCTATATGCCGGTCAGCCAGGTGCCGGCCCTGTCCAAAAGGATCTTGGAAGGGTCGATCTACTCTTACCTGCACAAGAAGCTGCATATCAAGTTTGGCGGGGTCTTCCGCCGGATCAAGGCTGATCTGCCAGATAAATATGACCGGCAGTACCTTGGGGCCAACGAAAGCACGCCGATTCTGGAAATCGAGCAGATCGTTTGGACCAATTCCGGGGTCAACCTCGAATATTCTCGGTCAAGAAACCTCTAGAACAACCGGTCTTATATCATGGTCGAAACCAGCCATTAAACTTACGAAAAAATACCCACTGAAGGAAAGCAAATCTTCAGTGGGTATTTCTTTGTTATCATATTTATTAGCTCTTTAACCCAATTCCTGGTTCCGCTTAAGAGCCGCGTTAACTGCGCTGATGGCCGCGTAGCGGAAACCATTCTTCTCCAGTTCAACGACGCCGGACTTGGTCGCCATGTCAGTGGCTTTGATCTTGGTGGCCATGCCGCCGGCCATTGCAAAAATTTGCGGGGTAATCTCGTTGATGACCGGGATCGGCCGGGCATCAGGGTTCTTTCTGGGGTTGTCGCTGTACAGGCCAGGCACATCTGTCAAAAGGACCAGGAGGTCAGCCTTTAAAAGGGAGGCTACCTGGGCTGACAGGGTGTCGTTGTCACCGACTTTCAGTTCATCGATGGCGATGGTGTCATTTTCGTTGATGATGGGGATGACCCGCCGGCTCAAAAGAACGTTCAAGGCGTCTGGGCATTTTGGTAGCGGCGCTGGTCAGCGAAGTCGTCCTGGGTCAGGAGGATTTGGGCGGAAACCATGCCCTGGACCAAAAGGCTGCGGGTGTATTCCTCGATCAAGAGCCCCTGGCCGACAGCGGCCGCAGCCTGCTTGTCGGCCACCTTCCTGGGGCGTTTGTCAAAGCCGAGCCGGCGGAAGCCAGCCGCGATGGATCCTGAAGTTACCAGGACCAGCTTGTAGCCGGCCTAGTGCAGCTGGGCCAGCTGCCGGGTAATTTTTTGATCTTCTCCGGATCCAGGTCGCCGGCCGGGCTGGTCAGCGAGGAGGTTCCTACTTTAAAAACGATTAGGTTATCTTTCATTAGTCAACTTCCTTAATAAAATTAGACTAGGTAAATCATAGCATCTTTTGCCCGTGGATAGAAAAAATCACAACAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGTGAATCTCGTCTAAGTATGTTGACTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGCACCCGCAACGGCTGGCCTACGTTCAAAACAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAACCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAACACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTATCTGGTATTGGTAAAAAGCGCGCTAATGACATAACGCAAAGCCTTATTCGTTTGGCTAAAGTCGCATGCCCAGCGGTCAAAAAGAACAGTGCTCATATTCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAAACCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCCTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAAGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAAGGGCTAGCCGGTTAGGCTAGCCACTGTGGTCTTCTGTTTTATTTGTTGTACGCGGAGTCGTCATTGTATGACTTGGCCGTGATCTTTGGAATAGTCAAAGAGAACAGTAGGCCAAATACGGCACCGATGATCAACAAGGTAACAGGGTTATACGTGCTCTGGGTCAGAGGGGCTCCGATGAAGCCGATGATGAAAGTAAAAATCATCCCCCAGACGATGCAAACAATGTAACGTCCCATAGTATCTTCCTTCTTTCGCTATGCATTTTACCAGAATCGGCAATCAAATTCAATTGGAGGAAAAAGGACTTTGCTATAATTAAAATAACTAGCAAAAAGCGAAAGGCAGGGCGAGCAAGGTGAACATAGCAGCATTGCAGACGATTTCGGCCAATACCATTCTGGCCAGCCCAATGAAAACGGCTGACCTGGTCCAGGGGGCAAAAGAGCGGGGTTATAGCGCCGTGGCACTGACGGACATCAATGTAACTTTTGGCCTGGCCGACTTTTACCAGGAAGCCGTAAAAGCAGGGATCAAGCCCCTTTTGGGCCTGCAGGGCCGCTTTAAGGGAATCGAATTGGAAGAAGCAGAATATGACCTGGTCTTTTTGGCTCAAAGTCAAAAAGGCTACAAGTCCTTGATGCGCCTGTCCAGCTTTTTAAATATCGCTTCTGGCGACCTTGCCGGCCCGGCGCCTAGCCTGGCTGACCTGCCCGAATTGTCTGACTTGACCGTGATCGTGCCGGCCGGGCTGACCAGCGAACTGCGCCAGCTTAATAAACTGAGGAACAGTGGTGAGGAATATGTTAAAAAGCTCCAGGCCTTTTTGCCAAAAGGCCTGCCCTTATACTTAGGCGTTTACCCGGCTGAATCCGCGGCCGCTTATGATGCCTATGTCAAAAAGCTGGCAGAAATTTCAGCCTTGCCCATCACGGTTGTTGAGGACGTCCGCTACTTAGACCCGGGTGACCAGTTTCTTTGCAAGGTCCTGCAGGCCATTAAGGAAAGACGGGTCCTGGATGAGCATGAACTGACCTTGATGGCGCAGGGGCAGGGGTCACATTGGCTGCGGCCCGCGCCTGTCCTGGAAGATGCCTGCCGGGAAATGGGCTTAGAAGAAGCTTTGGCCAACAGCGGCAAGATCGCGGCCAGCTGCCAGGCTAAGATTCCTTTTAAGGAGCCCCAGCTGCCGGTCTTTCCGCAAGCAACAGGACTTTCTTCCGACCAATATTTGGAAAAGCTGGCTTTTGCCGGCATGGAAAAATTAGGCCTTAGGCAGGGAATTTACCACGCCCGCTTGCAAAAGGAACTGGCCGTCATCCAGCAGATGGGCTTTGCTGACTACTTTTTGATCGTCGGCGACATCGTCAATTACTGCCGGCAAAAAGGCGCCCTGGTCGGCCCGGGCCGGGGGTCAGCTGCCGGGTCCTTGGTAGCCTATGCTTTAGGCATTACCCAAATTGACCCCTTAAAATACGACCTGCTCTTTGAGCGCTTCTTAAACCCCGCCCGGGCCGACATGCCCGACATCGACTTGGACTTTACCACGAGCGGACGAAAGCTGGCTTTTGCTTACGTGCAGGAAAAATACGGTGTTAAAGCCCGCTTTGGCGAGGGCTCTGACCTGGTGGCTCGGATTTTGGCCTTGACGACCATGAAGGCCAAAAGCGTCCTTGAGCGGACCGGCCAGGTCTTTGGCTTAACCCTGCCGGCTATCGCCCGCCTCAAGCAGGCCATGGGGGCAGCCAAAACTTTGGCCGAAGCTGGCCAGCAGGCTGAATTTAAGGCCCTGGTCGCTGCCAGTCCCTTGACCCGCCTTCTTTATCAAACCGCCGCAAGGCTGGAAGGGCTGCCGGAAGACACGGGCACCCACGCTCCCGGCCTGGTCATCAGTGAAGAGCCCCTATCCAGGCAGATCGGCTTGATGACTGGGAAAGAAGCCCCTCTGTGGACGGTTGAGCAGACCAAAAAGTACGTTGAAAAGTATGGTCTCTTAAAGATCGACTTTCTGACCCTGGACAATTTGGAACTTTTGGAAGGCGTTTTAGCAGAGATTCAAAAGTCCAGCGGCCCCCTGGATTTGACCCGGCTGCCCCTGGATGATCCGGATACCTTGCGCCTTTTTGCCCGCGGGGAGACCCAGCAGATCTTCCAGTTTAATTCTAGCGGGATGCAGGAGGTCTTAAGAAAAATCCAGCCCCGGACTTTTGACGACTTGTCTGTCGCCGTGGCCCTTTACCGGCCGGGCCCGATCGCCAGCATCCCCTTGTACGTCGCCCGGAAAAACGGGACCAGCCCGGTTCAGTATCCTGACCCCAGCTTAAAAGAAGTCCTGGGACCGACCTATGGTATTTTCGTCTACCAGGAGCAGGTCATGCAGACGGCCCGGATTTTCGCGGGCTTCAGCCTGGCGGAGGCTGACATCTTCCGGAACGCGATTTCCAAAAAGCAGGCTGGCCTCTTAGCCGAAGAAAAGGACAAGTTTGTCGCTGGCGCTGTCAGAAAGGGACACAGCCGGCAAGCCGCCGAGGCAGTCTACGCCTTAATCGAGCCTTTCGCCAACTACGGCTTCAACCACTCCCACGCCGTCGCCTATGCCCTTTTGGCCTACTGGCAGGCCTTCTTGTCTGTCCATTTCCCTAGGGAGTTCTACTTGGAAAAGCTCCGGGCCAGCCGGGGCAAGGAAAAAGGGGCCATTATCCGCCAGGCCAGAAAGGCCGGCGTTGAGATCCTGGGGCCCGACATCAACTTGAGCCGGGCAGAGGCCCGTTTGTTTGAAGGCCGGATCTACCTGGGCTTAAAGGACATTATGGGGATTACGCCGGCCTTTTTGGACCAGCTTCTGGCCCTAAAACGGCCAGTAACCAGCTTCACGGCTTTTTTGCGGCAGCTGGATACCAAGGAATTGAAAGAAAAGCAGCTGGTCCCCTTGATCGAAGCCGGCCTCTTTGACCAGGTCAGTCCCAACCGGGCCAGTCTTTTGGTCAACTGCGGCAACATGCTCAATACTGCCCGCTTGTCGCAAAAAAGCCTGGTCTTGCAGGACTTTTTGGCCGCCAAGGAAGAAAACGTGCCAATGCCGACGGCAGCAGAAAAGGTGGCTATGGAAGAAAGAGCCATGGGCTTTGCCGTAACGGCATCTCCCCTGGAAATTGCCGGCAAGGCCCTGGCCAAGCGTTATGGGGCCAAGCCTTTTGCTGGTCTTGCCTTAAACGAGACCGGGCAGGTGCTTGCCCAGTTCATTAAGAAAAACGACTGGCGGGTCAAGCGGGGAGCCCGGGCCGGTGAGTTAGGCAGCAACGCCGTCTTTAGCGATGGACAGACCAGCGAGAAGGTGACCATTTTTACCAGCCAGTACCGCCGCTTTGCCCAAATTCTGAAAGAAAACGCCGTCTACCTCCTGCAAGTTGACAAAAAAGAAGACCAAAAGGACAGCCGGGGCTACCAGCTGATCTTGCAGGATTTGCGCCTTTTGGACTTAAAGCAGCTCGAGCAGGCTGAAGAAGTCAAGCCGGTTACCGTCAAGCCTAAGGACCTGGCTCTTGAGCGTTATTTTGACCAGTACTACCGGACCAAGCGCTTAGGCGACTTCCAGGTTAAAGAAAGGGGCCAGGCCCTGGCCAAGCTTTTGGCTGTCCGCTACCAGGAAGACAAGCGGGGACGGAAGATGGCGACCTTGATTCTGGCTGATTCTTCCGGCCGTTACAGGTGCTGGCTTTTTGCCGGGGAACTGGCCAAATTAACTTTGAATTTACAGGTAAATGACTACTACCTGCTCAAGCTGGAAGCTTTAGGCCAAAGAAAGAGCCTGGACTTCAAAATTTGGGACATGAAGCAGGTAAATTTGCGCTGAAAACGACTTGACCAATTTGCTTTTTTGAAAAAAATCTCTCCTAGTGAAATAAATAATAAACGCCAGGCTGGGATTTGTAAGCCCTAACAGGTTGAAAGTCTAAAAAATCGAATTTAAACCAAATTTTACAAGACTTTATGCGGGAAAAATGTTATGATTTACATGATGTGAGATATTACACAATTTAAATCATGATGAGGTGAATTCATGAAACGGATTGGTATTTTGACTAGCGGCGGTGACGCCCCTGGTATGAATGCAGCCGTAAGAGCCGTAACCAGAGTCGCGATCGCGAACGGTTTGGAAGTTTTCGGTATCAGATACGGTTTTGCAGGTTTGGTTGCGGGCGACATTTTCCCATTGGAAAGTGAAGACGTAGCCCACTTGATCAATGTTTCCGGTACCTTCCTCTACTCTGCGCGTTATCCTGAATTTGCAGAAGAAGAAGGACAGCTGGCTGGTATTGAGCAATTGAAGAAGCACGGCATCGATGCTGTTGTCGTTATTGGTGGGGATGGTTCCTACCATGGCGCCCTGCAGCTGACCCGCCACGGCTTCAACTCAATTGGCCTGCCAGGCACGATCGACAACGATATCCCTTACACGGATGCCACGATCGGCTATGACACGGCCTGCATGACGGCAATGGACGCGATCGACAAGATCCGTGACACTGCTTCTAGCCACCACCGCGTCTTCATTGTCAACGTAATGGGCCGCAACTGTGGTGACATCGCTATGCGCGTCGGCGTAGCCTGCGGGGCGGACGCGATCGTCATTCCTGAAAGACCATATGATGTCGAAGAAATCGCCAACCGGCTCAAGCAAGCCCAGGAAAGCGGCAAGGACCACGGTTTGGTAGTTGTTGCTGAAGGCGTAATGACCGCTGACCAATTCATGGCTGAACTGAAGAAGTATGGTGACTTCGACGTCCGGGCCAATGTTTTGGGTCACATGCAGCGGGGCGGCACGCCAACTGTTTCTGACCGGGTGCTGGCTTCCAAGCTGGGCAGCGAAGCCGTTCACCTTCTTTTGGAAGGCAAGGGCGGCCTGGCTGTCGGCATTGAAAACGGCAAGGTTACTTCACACGACATCCTTGATTTATTTGATGAGTCTCACAGGGGTGACTATGACTTGTTAAAGCTCAACGCAGATTTATCAAGATAGTTGTTTCTATAGTTTTTGATTTAGGGAGATTTTTTCAAGATGAAAAAAACGAAGATTGTTAGTACTTTAGGGCCAGCTTCAGACGATATTGAAACTATTACCAAGTTAGCCGAAGCAGGCGCAAACGTATTCCGTTTCAACTTCTCACACGGTAACCACGAAGAACACTTGGCAAGAATGAACATGGTTCGTGAAGTTGAAAAGAAGACTGGCAAGCTTTTGGGCATCGCTTTGGACACCAAGGGTGCTGAAATCAGAACCACTGACCAAGAAGGCGGCAAGTTCACTATCAACACTGGTGACGAAATCCGCGTGTCAATGGACGCAACCAAGGCCGGCAACAAGGACATGATCCACGTTACCTACCCAGGTCTGTTCGACGACACTCACGTAGGCGGCACTGTATTGATCGACGACGGTGCTGTTGGTTTGACTATCAAGGCCAAGGACGAAGAAAAGCGCGAATTGGTTTGTGAAGCTCAAAACACTGGTGTCATCGGCTCAAAGAAGGGTGTTAACGCTCCAGGTGTTGAAATCCGCCTCCCAGGGATTACTGAAAAGGACACTGACGACATCCGCTTTGGTTTGAAGCACGGTATTAACTTCATCTTTGCTTCATTTGTACGTAAGGCTCAAGACGTTCTTGACATTCGCGCACTTTGCGAAGAAGCTAACGCATCATACGTTAAGATCTTCCCAAAGATTGAATCACAAGAAGGTATTGACAACATCGACGAAATCTTGCAAGTTTCAGATGGTTTGATGGTTGCCCGTGGTGACATGGGTGTTGAAATCCCATTCATCAACGTGCCATTTGTTCAAAAGACTTTGATCAAGAAGTGCAACGCTTTGGGCAAGCCAGTTATCACTGCTACTCAAATGCTGGACTCAATGCAAGAAAACCCACGTCCAACCCGTGCCGAAGTAACTGACGTTGCTAACGCCGTTCTTGACGGTACTGACGCAACTATGCTGTCAGGTGAATCAGCAAACGGTTTGTACCCAGTACAATCAGTTCAAGCTATGCACGACATCGATGTTCGGACTGAAAAGGAATTGGACACCCGGAACACTCTGGCTCTGCAACGCTTTGAAGAATACAAGGGCTCAAACGTTACTGAAGCTATCGGTGAATCAGTTGTCCGCACTGCTCAAGAACTGGGCGTTAAGACTATCATCGCTGCTACTAGCTCCGGCTACACAGCTCGTATGATCTCCAAGTACCGTCCAGACGCAACCATCGTTGCCTTGACTTTCGACGAAAAGATCCAACACTCATTGGGTATCGTTTGGGGCGTTGAACCAGTTTTGGCAAAGAAACCTTCAAACACTGACGAAATGTTCGAAGAAGCTGCCCGCGTAGCTAAGGAACACGGTTTCGTTAAGGATGGCGACCTGGTAATCATCGTTGCCGGCGTACCATTCGGCCAATCAGGTACTACTAACTTGATGAAGCTGCAAATCATCGGCAACCAACTTGCTCAAGGTTTGGGCGTAGGCACTGGCTCAGTTATCGGCAAGGCTGTTGTTGCGAACAGCGCTGAAGAAGCCAACGCTAAGGTTCACGAAGGCGACATCCTGGTAGCTAAGACTACTGACAAGGACTACATGCCAGCTATCAAGAAGGCCAGCGGTATGATCGTTGAAGCTTCCGGCTTGACCAGCCACGCAGCTGTTGTCGGCGTATCACTCGGCATTCCAGTTGTTGTCGGTGTTGCTGACGCAACTTCAAAGATCGCTGACGGCTCAACTTTGACTGTTGACGCACGTCGCGGCGCAATTTACCAAGGTGAAGTTTCAAACCTGTAATCTAGGATTGCAAGTCTGACAACCACAGAAGAAAGAGTTCAATCAATCGATTGAGCTCTTTTCCTTTGCCAATTTTTTCTCTGCTTTCTTTAATGATTGCCTTGAATATAGCTAAGGCAGAAGAGGTATTTTAAACTGCTGAGCCGCTTTAAATCACCTGCAAACTTAATCTACCCAAAAAGCATAGCCGACCTTAGAAGACCGATATGGGCTGTTTAGCAGGGAGGAAAAAGCGCATTAAAAAACTCCAGCTGAGCTAGAGTTAAATTATCACTTTTTTAATTGTTAAGCTGCAAGGTCATCTTCACCTAAGATGATCTGCAAGGTGTCGTGGACGATCTTGTCCTTGGCCAGTTGGGCCTGGTCATCGTCTTGGTCGCGGAAGTCGTTGATCATTTCTGCCGCGATCCCTTGGTTTTTGATGACCCAGATCTTGTTGGCCATGATGGTGGCTTCCCGGACGTCGTGGGTAACGAGCACTGTGGTGATGCCCTCTTCCTTGCAGACTTGGAGGATGAGCTCCTGCATCTTGGATCTGGTCAAGGCATCAAGGGCTCCGAGGGGTTTGTCAAAAAGCAGGAGCTGGGGAGAGGACAGGAGGGCTCTGGCTGAGATGCAGGACCTGGACATTAAACTGGTAAAGGACCAGAGTGCCGGCCGCTGCAAGCGCGGTTACCGTGAAAACCAGCTTCTTTTTTGCAAAAGCCACTTGGTTAACGGCTCGTAGTTGATCCAGGCCCAGCCCCCTAAAATAAAGTAGAACTGGTAGAACAAGATGTTGTTGCCGTAGTACTTGAAAAGGTAAGGCCAGGAATCATGGCTGACGGCCGGATAGTAGTACTTGGCCCAGATAACCAATACTGCTAAGCGCCAGGAGCAGGTTGAGATGCTTTTTAAATAATTCAAAAAGCTTGAGCACCAGCGGGAAGATCAAGTAAAGCTGGAACATCAAGAAGATGTAGTAGAAGTAGAACTGGTTGCCCTTGCTGATGGCTTCCAGCCAGCCGGTCAGCCACTTGTTCCAGCTAAAAGAGCCGCTGGTCAGCAAGAGAAAGGCCAAAAAGAGGCCGTTCCAGAAGAGGTAGGAAATACCGCTGCCGATATAGCGCTTTTTCCAGAAGACCGGCCAGTTTTGTTTTTCAGGCCGGCCCCAGTAGCCTAAAAAGAGAACCAGGACGGTGATGAACATAAAGCCGAAGCGGGGAAAGTGCAGGATCAAGTGGGTTGATACTAAAAAGCGGCCGGCAGGGGTCGCCTTGTTGCCTAAAGCTGCGGCAAATGTGCTGGTCACGTGGTTGAGCACGACGCCGAACATAAAGAAGCAGCGCATCAGGTCAACTTCGTAAAGGTGTTTTTTCTTGGTCATGTAAGCCTCCTTTTCGTTGATTACCTAGATTAATTAAAGAACTTGGTCAAAACTTGCTTTAAAATAGAAAAAACTATGCGTGAATTGAAAAAATCAGCGAACTGGCGGAAAAACTATTGTTAATTGCTTTATTTTCTTTCTTTGTTCCCGTATACTAGCATTAGAATTATGTAAAGTTGGAGGCAGACTATGCTTGGAGAAATCCGGACCGGTAAAATCACTGACAGCAACGCTGAAGCCTATTTCGTGCAGATTGACGGCTTAACGTTCAAATTGAAGAAAGAAGAAATCACCCAGGAAGAGACGCCGGAAATTGGCGGGCAAATCACGGGATTTATTTATGATAACCAAAAACATGAACGGGAAATGACCCAGTTCCTGCCTTTTGCCCAGGCTGACCAATACGGCTGGGCCACGGTTACCAGGGTCCAGCGGGGGTTGGGGGTCTTTTTGGACATTGGCTTGCCTGATAAGGATATAGTTATGTCCCTGGACGACCTGCCACTTGACCCGGCCCGCTGGCCGCAAAAAGATGACCGCCTTTTGGTGCGGCTGGAAACTGATGAAAAGGACCGGATCTGGGCCAAGGCCGCTGACGAAAACGTCTTTGACCAAATCGCTGTCCGTTTCCCCAACAACCTGGTCAACAAGAACCTGCTGGCCCGGGTATACTCCAGCAAGTCCCTGGGTTGCTTTGTTTTGACCAATGACTACTATTTGGGCTTCATCCATGAATCTCAAATGCAGCAGCCGCTGCGGCTGGGTGAGGAAGTCAAGGCCCGGGTAATCGGGGTCAGCCAGTATGGCCGCTTGAACATGAGCGTTTTGCCCCGGTCTTTTGAAGAAATTGACGATGACGCGGCTATGATCATGATGTCTTTGCGCCGCAAGGGCGACAAGACCCTGCCATTTAGCGACAAGAGCGAGGCCCAGGCCATCAAGGACTATTTCGGCATCTCCAAGTCTGCCTTTAAGCGGGCCTTAGGCAACTTGATCAAGCGGGGCCTGGTCAGCCAGGACAAGGAAGCCGGCACGATCAAGCTGATTAAGGATGAGGCGGATGAATAAGCTCGCTGAGCAGATAAACGATTATCTGCGCTACAGCCAGATTGAGCGGGGACTCAGTCCGAATACCATCGCGGCCTACCAGCAGGATTTGCTGGAGTTTCTGGCCTTTGTCAAAGAAGAGCAGATGCCCGCTTGGCCGCTGGAAGCCGTGGAAATTGATGCTTTTTTAGCTAAAGAGCGGGACTTGGGCAAGGCTAACAGCTCTATCAGCCGGCTGGTGTCGACCTTGAGCCGTTTTTACCAGTGGCTGGTCCGCCAGCAGCTGATCGCCCTGGACCCCATGAGCCAGATTGATGCTCCCAAGCGGGAGAAGCGGATGCCCTTGGCTTTGACTGAGGCTGAAGTGGGCAAGCTCTTAGAGCAGCCAGATCTGACTACGGATTTAGGAATCCGCGACCGGGCCCTTTTGGAACTGCTTTACGCGACGGGGATGCGGGTCAGCGAAGCGGTCAACTTGCAATTAGCCGATGTCCATGCCAACCTGCAGCTGATCAAAGTCCTGGGCAAGGGGAGCAAGGAACGGCTTATTCCGGTGAGCGCCCTGGCCTTAGACTGGATTAAGCGCTACCTGCCTGTCAGGGACCAGCAGCTTTTAAAGCGGGGCAAGAGTAGCGATTACCTGTTCTTGAACAGCCGGGGCGGGCAGTTGACCCGGCAGGCCGTCTGGCAGAAGATCAAGAAGTACTGCCAGCAGGCCGGCATTGCCAAGGATGTGACTCCCCACACCCTCCGCCACAGCTTCGCGACCCATTTGCTGGAGCATGGGGCGGATTTGCGGGTGGTCCAGGAAATTCTGGGCCATACTGACATTTCCACGACCCAAATCTATACTAATCTGACCCAGAAGCATATCCTGGACGTCTACCAAAAGACCCATCCCCGCATTTAGAGGCGATCATATGCTAGTACCATATAAGAAAGATTATGAAAAAGTCGCCATGGGCCTCTTGTCCTATCTGCCGGATTTCAAGAACCTGCAGAATTTGAAGGAAGAGATGCAGCTTTACGCTGAAGACCCGGCCAACCATCTCTACCTTTACCGGGACGAGGACCAAAACATCGTCGGCCTGGCGGGCTGCGAGACCGGGGCCGGCTGCCTGGTCCTGCGCTATTTGTCTTTAGCACCGGGTTTCCGGGATGATGAGCATTTTTCGGAAATCATGCGGGAACTGGCCCAGGAAGCTGGCAAGCAAAAAGTAATGACGGTTCCGGAATATACCTATTTGATGAAATACTTGAACAATGATGAATGAAGGCATGACCATTGAGCTGCCGAATTTTGAAGGCCCCCTGGACCTTTTGCTCCACCTGATTCGGTTGCAGGAATTAGACATCTATGACATCCCGATTGCCCGGATTACCCAGCAGTACCTGGACTACCTTCAGCAGATGCAGCGGCTGAACCTGCAACTAGTCGGGGAATATTTCGTGATGGCGGCAACCTTGCTGCGGATCAAGTCCCAGTATCTGCTGCCGAAAAACGACTTTGTCGAGACAGAAGAAGAATTTGCCGACCCCCGGGAAGAACTGGTTGAGCAACTGGTTCAGTATTCCGTCTTTAAAAAGATTTCCGCCTACTTCAAGGTCAGAAATGACGAGGTACCAGTTTTGGCCGCCAAGGAGCCCAGCGTGGCTGTAGGGGCCAAGGTTCAGCCCCTGCCTTTAGGGCAAATCAGCCAGCAGGACCTGACGGCCAGCTTTATTTTGGCTATGCGCCGCTTTAAGAAAAGAAACGACCATGCCCAGGTGACCTTGACCGGCCGGCCGATCCAGGAAATGATTGCCTGGCTGAAGGAAGTTTTAGAGCAGCAGGGCCGGGTCAGCTTTTTTGCCTTGACTGACCAGGTGGAAAGCCTGGCCGACCTGGTTGGCCTTTTTTTGGCAATTTTGGAACTGGCCAAGGACCAGTACTTGAAAGTTAGGCAAAAGCGCCGCTTTGGCGACTTGGAAATAGAAAGAAGCAAGCATGACGAGTAAAATAGCCCAGCTGCAAGCCCTCCTTTATGTGGCCGGCGACGGCGGGATCAAGAAAGAGCAGCTGCGGGACCTGCTGCAGCTGGCGGACCCGGAAATTGAGAGTCTGGCCAAAAGGCTGCAGGAAAAACTGGCCAGTGATCTGGACTGCGGCCTGCAGCTTTTGGAAATCAACGACGAATATAAATTAACGACCAGCGGGGAAGTCAGCGACCTGGTGGAAGCCTATTTCAACAAGGACCTGACCAAGAATATCAGCCAGTCAGCCTTGGAAATTCTGGCGATCGTGGCCTACCGGCAGCCGATTACCAGAATTGAGATCGATGAAATCCGGGGGGTCAACTCTTCTGGTGCCCTGCAGACCCTGGTTTGGCGGGGCCTGGTCAAGGCCCAGGGGGTTAAGGACGCCCCGGGCCACCCCAAGCTGTACGTGACGACCGATTATTTCCTCCAGTACTTTGGCTACAAGTCCCTGGCGGATCTGCCGGTAATTGAGAATTTTGAAGACAGCAGCTTTGATGCCGACGGCCAGGTAGACCTGTTTGCCGAAAACGGCACGGCTGATGAAGCATTTCATAAGATGGAGGATTTATAATGGCGGAAGAACGTTTGCAAAAAGTGATCGCCCAGGCGGGGATCGCTTCCAGAAGAGAAGCGGAAAAAATGATCCTGGCCGGCCGGGTCAGAGTCGACGGGCAAGTGGTAACCAAGCTGGGGACCAAGGTCAGCTCGATTGAACAAGTTGTTGTTGACAACCAGCCGATTGAAAGAGAAAGCCACCATACTTATCTTTTTTACAAACCCCGGGGCGTGATCTCCGCGGTTAAGGATAACAAGGGCCGCAAGACGGTGGCAGACTACTTTACTGATTTGCCATACCGCCTTTACCCGGTTGGCCGCTTGGACTACGACACTTCCGGCCTGCTCTTGATGACCAATGACGGGGAACTGGCCAACCTGCTCATGCACCCGAGAAACGAAGTTGACAAGGTCTACGTGGCTAAGATCAAGGGCATTCTGCAGCCAGATGAAATCAAGGCCTTGAAGAAGGGGGTCCAGATCGGCCGCTACAAGACCAAGCCGGCCCAAGTCAAGGTTTTGAAGACCAATCCCCGGGCCCAGACCCAGATCGTCCAGCTGACCATCCATGAAGGCCACTACCACCAGGTCAAGGAAATGTTTAAAGCTGTCAATCACCTGGTTGACAAATTGTCCAGAGAACGCTACTCCTTCCTGGACTTGCAAGGCCTTACATCCGGACAGTACCGGGAATTAAACCACAAAGAAGTTGACAGACTCAAGCAAGTGGATTAGAATGTAAACGTAATCAAAAATAATACAAGTTGTCTTCGGGGCAGGGTGAAAATCCCGACCGGCGGTGCAAGTCCGCGAGCCACGCGAGTGGTTGAATGCTGTAAAGCTACCGATAGTTATAGTCTAGATGGGAGAAGGCAGACGTTGGAATAATAAGCATGCTTACTAAGAAAGGTCTGTTGCTCTTCGAGGCAACGGACTTTTTTTAATGGAGGTATGTTAATATGGAAGCTGCTAACAAACGGACAGCTAAATCAGTCAGCAACTGGCTCGCTTATGCCATGATCGGGGCCATCGCCTTTGTGGTGATGAAGTTTGAATTCCCGATCATGCCGGGTGTCAGCTTTTTGAAGATGGACTTCTCAGACGTCATCGTGGTCATTACCACCTTTATCTTCGGCATCGGCGGCGGGGTGGCCGTAGCCGCGATCAAGTGCCTCTTGTCCTTGATCTTTGCCGCCTTTGCCCTCCCGTCACTGGTCGGTGAACTGGCTGCCTTCCTGGCTTCAATGGCCTTTGCCCTGCCATTTTACTTCCTGGCTGGCTCAGTCAAGGAAGAAGACAGAAAGAGCATGAAGGGCTACCTGCTGCCGGCCCTGGGCCTGCTTTTGGACGTTTTGTCATTGACGGTGGTCATGGCTTTGACCAACCAGTTCCTCTTGACTCCGGTTTACGCCTACACTTCAGTGCCGCAGGCAGCGGGGATGCACATGAGCTACGCTCAGCTGCTCACTTTTACTGAACAGAGTTACCTGGGCAAGATGCTGCACATTCCAAGCATGTCCAGCTACATCATGGGCATCATCGTCCCATTCAACTTGATCAAGGGGGCCATCAACTCAGTTGTGGTCTACATCCTCTTTGAATCTGTCTTAAAGACGATCAAGCCATTCGTGATCAAGCATTTCAGCGTTTCCAGCAAGTACTAATGCGAAAAGACAAATAAAATATTAGATGAGGCTTTCCTTAAGGAAGGCCTTTTCTTTTCGATTAGCACCTGGTTTTATGTTAAAATGTAAGCTTAAAGGGGGAAGCTAGATGGATCAAAATGCCCAAAAGCCCTTGTCACGTCTGGCCCGCCAGCAAGCGGTCAGAGAAGAGCGCAAGAACAAGCAGGCGCCGTGGTGGGCGGCCCTCTTGATCGCGGTTATGATGGCCTTGGCAGTCGTGCCGCTGATCACCAGTCAAAACAGTGACTACGCCGTCCCGCAAGCAAAGAAAGAGCAGGCCAAGCCCAAGTCGGCCGCTGAAAAGACTAGCAAGGCCAAGCCTGCTCCTAAGGTCAAGACTTACGTGGTCAAGTCCGGCGACAGCTGGGCCGCGATCGCCCAGAAGTACGGCATAAGCGCCGAAGAGCTGGCTGAGCAAAATGGTCTGGATACCAGCTCAACCCTGGCAGTTGGTCAGAAACTGAAGATCAAGCAAGTCAAATAGCTGAATTTATTGGAAAGGATTGAAGCGATACGAGTCGCTTCATTTTTGATGTTATGCAAGTAGCAATTGATGGACCTGCTTCAGCAGGTAAGAGCACGGTGGCCAAGATTGTGGCCAATAAGCTGTCGTTCGTTTATATCGACACGGGTGCTATGTACCGGGCATGTACTTTTATCGCCCGCAAGCACGGCCTGGATTATGGGGATGAATCCGGGATTTTAAAGGCGATCGACGAAGACGGCATCGTTTTAGAGCCCGGCGAAAACGGCCAGAAGGTTCTGGTAGCCGGGGAAGACGTGTCTTTGGAAATCCGGACCCCGGAAATCACGGCTAATGTCTCCCAGGTCTCAGCCCTGCCGGGGGTCAGAAGCAAGATGGTTGACCTGCAAAGAAAACTTGCCGGGTCAACCAACGTGATCATGGACGGCCGCGACATCGGGACCACGGTTTTGCCTGAGGCTGAAGTCAAGATCTTCCTGGTTGCCAGCGCCCGGTCTAGAGCAGAAAGACGGCTTTTGGACTGGCAGGAAAAGGGGATTGAGGCCAAGCAGACGCTTGAGGAAATCGAAGCTGATATCGCCAAGCGGGACTACCTTGACTCCCACCGTGAAGTTTCACCTTTGAAGAAGGCAGCGGATGCAATCGAAATCGATTCAACTAATTTAATGATTGACCAGGTTGTTGCCGCTATCTTGGCCGAAATTGCTAAAAAAACAAATACTAGCAAGTAAAGTCAAAAAAGTCTGGTAAAATAGTAGCAAATTCATCTATTTTTTGGTAAAATAGAGAACGAATAAACAGGGAGGCATTTTGTATTTATGTCAGAAAACAATCAATTTTTAGATGCTCTTGCTCAAATGAAAGAGGTTAAGGAGGGCGACATCGTTGACGTTAACGTTTTGAGCGTTGAAGATGGCCAAATTAACGTTGGTGTTCAAGGCGCCGGCGTTGAAGGTGTAATCACTCGCCGTGATTTCACCAACGACCGTAGTGTTAACTTGCGTGACGAAGTTAAGCTAGGTGATACCTTCAAGGTTTACGTAGTTCGTCGTGCAGGCGGTGACAAGGAAAACGGTGATTTTTTCTTCTCAGTAACCCGCGTTAAGGAACGTGAAGCTTACGACAAGCTACAAAAGGACTTCGAAGAAGGCAAGACTATCGAAGGTAAGGTTACTTCATCAGTTCGCGGTGGTTTGCTCGTTGATGTCGGCACCCGCGGCTTCTTGCCAGCAAGCTTGATCTCAAACCGCTTCGTTTCAGACCTTAAGCCTTACATCGGCAAGACTATCAAGGTTAAGATTACTGAAATCGACCCGGCTAAGAACCGTCTGATCCTTTCCCACAAGGAACTGATCGAAGAAGAACGCGAACAAGCCTTTGAAAACGTTGCTTCACAACTGGTTGTCGGCGACGTAGTTGAAGGCCGGGTATCACGCTTGACCGACTTTGGTTCATTCGTTGATATCGGCGGCGTTGACGGTTTGGTACACATCTCCGAAATTTCATACAAGCACGTTGACAAGCCAAGCGACGTATTGAAGGTTGGCCAAGATGTTAAGGTTAAGGTTATTGGCATCGACAATGACCGTCACCGTATCTCCCTGTCAATCAAGCAAACTGAACCATCCCCATTCGAACAAGCTACTTCAAGCTTGAACGAAGGCGATGTAATTGAAGGCGAAGTTAAGTCTTTGACCAACTTCGGTGCCTTTGTTGAAGTTGCTGACGGCATCCAAGGCTTGGTACACGTTTCAGAAATTGCATACAAGCACGTTGACAAGCCAAGCGACGTATTGAAGGTTGGCCAAGATGTTAAGGTTAAGGTTCTTAACATTGACCCAAGTAAAAGAAGAATCTCCCTGTCAATTAAGCAAGTTGATCCAGAGAACGCTTCTTCATCAAACGACAGACCTCGCGCACGTCGTTCATCAAACAACAACGCATTTGCTCGCAAGTACATGAACAACGACGACAACGGCTTCTCACTTGGTGACATGATCGGTGACCAACTTAAGAACTCTTAATCAGCACTAAAAAGACCGACCGTTGGTCGGTCTTTTTGTTTGACAATAATCAATAGAAAGCAAAAGAGGTGAAAAGATGCCATTACCAATTGTTGCCATCGTAGGGCAGCCAAACGTGGGCAAGTCAACCCTGTTCAACCGGATTATCAATGAACGGGTGGCGATCGTGGAAGACCGGCCAGGCGTGACCCGGGACCGGAACTATGCCCGGGCCAGCTGGATGGGCCACCAGTTCAGCATCATCGACACCGGGGGGATTACCTGGGAAGACAGTACGATTGACGAAGAAATCCGGGCCCAGGCGGAAATCGCTATTGAAGAGGCCGACGTCATCGTTATGCTGGCCGATGCCAGCCAGGGGGTGACCAGTCTGGACGAACGGATCGCCCACCTGCTCTACCGGGCCGATAAGCCAGTCCTTTTAGCCGTTAACAAGGCAGACAACCCTGAGCAGCGGACCGATATCTATGACTTCTACAGCTTGGGTTTGGGCGACCCAATCCCGGTTTCCGGTTCCCACGGGACGGGGATCGGTGACCTGCTGGACGAAGTAGTCAAGAACTTCTCGCCCGATGCCGAAAAGACCGAAGAAGGGGTTATCTCCTTCAGCGTGATCGGCCGGCCAAACGTGGGCAAGTCATCCATCGTCAACCGCCTGTTGGGCGAAGAACGGGTGATTGTGGCCAACGAAGAAGGGACGACCAGAGACGCCATTGACACGCCATTCGTCAAGGATGGAACCAAGTTCCGGGTTGTTGACACAGCCGGGATTAGACGGCGGGGCAAGGTTTATGAGAAGACTGAAAAGTACTCCGTCATGCGGGCGATGAGCGCCATGGAACGGTCAGACGTGGCCATCCTGGTCCTGGATGCCAGCACCGGGATCAGAGAGCAGGACAAGCACGTGGCCGGCTACGCCCATGAAGCGGGCCTGGGGATGATTATCGCCGTCAACAAGTGGGACTTGCCGAAGAAGGACTCTTCATCCGGCAAGGACTTTGAAGCGGTGATCCGGGAAGAATTCTCCTACCTGGACTATGCCCCAATTGTCTTTGTTTCGGCCAAGACCGGCAAGAACATCGACCAATTGCCAAAGATGGTCAAGGAAGTTTACGAGAACAAGAACCAGCGGATCCAGTCATCCGTCTTAAACGACCTGCTCTTGGAAGCCAGCCGCTTGGTGCCGGCGCCGATGGTCAAGGGCAAGCGGCTCCGGGTCTACTACATGACCCAGGTCAAGACCAATCCGCCGACTTTCGTTGTTTTCTGCAACGATCCAGAACTGATGCACTTCTCCTACCAGCGCTTTTTGATCAACCAGCTGCGGGAGAATTTCGACTTCACCGGGACCCCGATCAAGATCCTGCCGCGTAAGCGGAAGTAGGACCGGGCTTTTCTTTTTCAATTTGTGACATTCTCTTGAAAAAGTGCTAAGCCGCGGGCTAAAAGCCTTGTAGGGACAACGTTCTTGTGATATTTTAGAGAGCAGGGAATTAATTGAATGCAGCAAGCGCTCAGTGTCCCTCATTTCTACAAGAGAAATGAAGTGATTAGACGCGAGTCTAATTTATAGGAGGTGAATTCCACATGGCAAATAAGGCAGAATTAGTTTCCGAAGTAGCTGCAAAGACTAAGTTGACTAAGAAGGACGTTTCAGAAGCTGTTGACGCGGTTTTCGAAGCAATCCAAGAAGACTTGGCTAAGGGCGAAAAGGTGCAACTGATTGGCTTCGGCACTTTCGAAGTACGTGACCGTGCAGCTCGCAAGGGCCGAAACCCACAAACTGGTGCTGAAATCGAAATTCCAGCAAGCAAGGTTCCTGCATTTAAGCCAGGTAAGGCTCTTAAAGACGCTGTTAAGTAATTGACGCGCTTTAAAATAAAGAAACGCCGGTATTTCTGGCGTTTTTTTGTTTGGGCAAAAAACTTATTTAGCTGACTAGTTACGGTACAATAGTAAGCAGAAAGTGAGGACAAAGATGACATATTCTGAACAATTGTTGGACGCGATTCAAGGTCACCGCTTCAGCGAGAGCCGCGCCCTCTTGAAGCAGGCCCTGGAAAACGATGATCCGGAGATCCTGGCGTCTCTGGCGGAAAACCTGACCGACCTGGGCTTTACCGACCTGGCCAAGGAAGTCTACCGCAGCTTGATCGCTGATTTTCCCAATGAAGACCTCTTCAAGGTCTACCTGGCCGAAATCCTCCTCAATGACGGAGCAGAGGACGATGGCTTGACCCTGCTTTACAATGTGCCGGCTGATTCAGATGCCTATCTGGAAAGCCTCCTGGTCCAGGCTGACTACTACCAAAGCGAGGGCCTGATCGAAACGGCACGGGCCAAGATGGAGCAGGCCCGGCAGCTGGCCCCGGATGAAGATGCCATTACTTTTGGCCTGGCGGAACTGGACTACATGAGCGACTTGAACGACCAGGCCCTGACTCTGTACCAGGACTTGCGGCAAAGACAGACCATGTTCGGGGAAGTCAATCTTAACCAGCGGGTCTTCCAGACCCTGGCTAAACTGGGCCGGTATGAAGAAGCAGCTGCTTTTATCAATGACCATAAAGAAGACCTCCTGGACATCGACGCCAAGTACCAAGCCGGGGTAATCATGGAAGAGGCCGGCCAGTTTGACAAGGCCATTTCCTTCCTTGATGATGTCATTAAGCAAAGCCCTGACTACGTCAACGCTTATACTTTCCTGGCCAAGGCCTACCAGGAAGAAGACAACCCAGAAGAAGCCCTCTTTGCCGCTCAGACGGGCCTGGGCTACAATGAGCTAGATGAAGAGCTTTACCTGATTGGGGCTAAGGCAGCTGCCAAATTAGGCAAGGCTGAGGATGCTGAGGACCTCTTGCAGCGGGGTCTTGAGGTCAACCCGGACAATTCCAGCCTCCGCCTCTTGCTGAGCGACCTCTACTTAGCCCAGGGGCGGGCAGAGGACTCCTTGGCCTTGTTTACTGCTCTGGCTGACAGCGACCTGGAGCCCCAGGCCCACTGGAACATGGCCCGGTCCTACCAGGAAATGGAAAAATATGACCAGGCCCTGCAGGAATATCTCTTGGCCTACCAGAGCCTGCAGACCAGTCCTGCCTTCTTGCGGGGAATGATCTCCTTTGCTCAAGAGAGCGCCCAGGGCGATCTGGACCGGCAATTGCTGGAAAAGTACTTGAAGCTTGTGCCAGATGACCAGGAAATGCAGGATCTTTACGAACAGCTGAGAAATTAGAATTTTGGATGATGACCAGCTTTTGCTGGTCATTTTTCTTTTTTAATATTTTCTAGCCTTTTAGCGGGCAGGGAAGAAAAGCTGTAGAATAAGAAGATAGACCATTAAACATTTTGGAGGGATGATTTTGCAATTCAGCTTTAACAAAAAGCGTGACCGGGCCGTTTACTGGAAGTACTCTGTCTTCTTCCTCTTTTTGGCGGCCTGTGTTTTTGGACCTTACTTGGTTACGGGCCATAGCCTGATCTGGAACACTGACGCGGCCAACCAGCACCTGCCCTTGCTTGTCAAGTACCGGGAGTACGTGCTCAGTTTCCTGCGCCACTTAAGCCAGGGGCCAGCTGAATGGTCCTGGACCATGGGCCTGGGCAGTGACCTGTTTTCAGTCTTTTCTTACTATACGATTGGTGACGTCTTTGCCTATCTGGCCCTTTTATTTCCGACCAGCCACCTGGTCTTTGCCTACCAGCTGATCCTGCTGTTGCGCCTTTACTGCGTGGGCTTGGCCTTTGTTTATTTTGCCCGCCATTTTGACTTTAAAGACAGTGTTGTCTTGATTGGCATCGGTGTCTACATGGTCAATGCCTACCTGCTGTACGCGGCCCTTGCCCAGCCGATGTTCACCACGACCTTTATTCTTTTTCCCTTGATCGTGGTTCAGCTGGAGCGACTCTTGCAGGGGGGCAGCGCCTGGCCCTTATTTGGGGTCTTTGTCTGGATGCTGGTCAGCAACTATTACCTGGCCTTTGTCCTGGGCCTGGGGGCAATCATTTACCTGTTTTTGCGCTGGGGCCTGGCTTATTGGAAAAAGATTCCTTTCTGGCCAACAATTAAGAAGCTCTTCTTTGCCAGTTTAGGAGCGGTCCTTCTGTCAGCCGGCCTGCTTTTGCCGGAACTTTTGGCCGTGGTCAACTCCACCCGGACCGGATCGCAGTTTGCCAATGGCTTGACCTTTTATCCGGCTTACTACTACTTGCTTTTGCCAAAGGAACTGATTGACGGGGACAACTGGAAGTTGATGTTCTGGTCAGCCTTGGGACTGGCCAGCATTATCCTGCCGGCCCTGGTCTACCTCTTCCGTAACTGGCGCAAGTACCGGCTGGTCGCTGCTTCTCTGTTATTAGGGGCAGTCATGCTCTTGATCCCGGCAGTCGGGGCAGTCTTTAACGGGGGGATGTCAGCGTCAAACCGCTGGACTCTGCTCTTGTACCTGCCTTTTGCCTTCAGCGTGATGGTCTTTGTCAAGGCAATCAGTGAGCAGGCGGTCAGTCAAAAGGAGATGCGGCTGATTTTTACCACCAGCGGGATCTACCTGGTCTACCTGGTCGCCATGTTCTTTTTGGAAAATGACTACAAGCTCTTCTTGCCAGTCATCTTCCTCTTGCTCAGTCTGGGGGCCAGCTACCTGGTCAACGAAGGACGGGCTTTAAAGCGGGCGTTATTGCTTACTGTAGCGGCTAACCTGGCCTTTAACGCCCTGTACGCGGCTCTTCCATACAATGGCAACTTTGCGGCCAACATGCTGGTCAGGGGGGAATATGAGCAAATCGCGGAAGACCGCTATGGCGGCTTGAACCATATCCTGCCGGCCGGCTTTTACCGGGTCAACACGGTGTCAAATAACCAGTTTGTCAGCCAGAAGAAGCTGTTTAACGACTTGACCAGCGGCCTGGCCAACGTGTCATCTTACTATTCCATCCAGAACCAGTACCTGGGTCAGTTCTCGACCGACCTGGGCAACCTGCAGTATGACAACAACATTCCCTTCCACCAGCTGGATGACCGGACTATACTAAACAATTTCCTGGGCGTCCGCTATATTTTTAACCAAAAATACTCAGTAAACGGCAGCAAGGTGCCCGGGACTTACGACCTGATCGCTGCTGGCAAGGAGAAAAAAGATCAAAACCAGGAGTCTGTCTACCAGGCTGAGCTCTACAAGACCACAGAGGCCTTCCCGCTGCTTTGGCTAAGCTATAAGGCAATTAGCCCCAGCCGCTACCAAAAACTGTCAGCGAGCCAAAAAGAGCGGGCTCTGGCCAGCGGGGTGGTGGTCAAGGAGGGTGGCCTTAAAGCCGCGAAATTGACCGGGGTCAAGACCATCAAGGCCAGCCTGGTCGATGCCAGTGGCAAGAAGCTGAGCAAGAATAAATTGACCTATACGGGCTCTGATGCCAGCTACAAGTTGAAGCTGCACTTGTCAGATAAAGAAAAGGCCAAACTGGGCAAAAGCGAGCTGCATGTCGAGATCAGCCAGATTTCCTACCAGCCTTTCACTTTAAGCCAGCAGCTGGACTTGGAGCTGAAGAAGGCCAAGCAGGAGGCCGACCTGGCCGGGCAGACCCTTAATGAGCGGGCGACCCGCTACAAGTACTGGCGCTACCACCTTCTGGCCGGTTCACCAGACCCCAGCTACAAGCTGACGGTAACGGGGAAGAAGGCCAGTGAAACAATTGTGCAGAGAAGCCAGGATATGACTTCTTTTTACCGCCTGGTCGACAGCGCGGTAATGAATATGGGCACTTACCAGACTCTGCCCAATAGTCTGACCTTCCAGCCTTCAAAACTGGGGACCTACCGCTTCAAGATCAAAGTTGTAGCAATTCCTTTGAATCAAGAATACACGAAAGAAGTGCGGCAGATTCAAAAGCAGGGGGTCAAGCAGCTGAAACTCGCGCAAAACCAGCTGACCGGCCTCTTTACTAGCAAGAAAGCCGGTGTCGTTACTTCGACCATCCCTTATTCAAACGGCTGGACGGCTACGGTTGACGGCAAGGCAGTCAAGGTAATTAAGACCAACACGGCCTTTGTCGGCTTCAAAATGCCAGCAGGCAAGCACCGCGTCCGCCTGGTTTACCGGACGCCGGGATTGCGAAGCAGCCTGCTGATTTCACTCTTGACGGCTTTAGCCATCTTGGTTTATGCCGCGTTTAGTCACAAAGAATGGCGGCGGGAATTCCGGGCCAAGAAGAAAGAAAAATAGTTTTTAATAGTCAAATGCCAATAAAAAAACGAGCCAGCTGGCTCGTTTTTTGTCTGCATATTTTTAAATTGCTGCTCTTATTCCTTGGTCAGCTTGCGGGCAACCAGGTCATCCTTCATCAGTCTGGTCATCACCTGGGCAACTTCCTTGTCCCGGTCGTTAGAGTCCATGTGGATGGTCAAACCGTTGTCTGACTGGATCAAGTTGTGAGGAAGTTCAACCTGGTTGTACTTAAGGTCTGGGTCCAGGTTCGGCAGCATGTATTCCAAAGTTGCCGTCCAGCCCAAACCGCCGACTGCCATTTGCAGGGCGACTTCGTAGTCGTTGACCTTGATACTCTTGTTAACGGAGAGGTTCTGGTCTTCAAGCAGGTGGTCAACGGTCTTTTGGAAGCCGGAGTCATCGCTTAAGGAAACCATCTTTTCTTTGCTGAGGTCCATCAAGAGCTGCTGGCTGAACGGAACGTCCCGCTTGCCTTCTTGGTAAAGTTTGCTGGTTTCAGGGATGATCAAGAAGATCCGCGGCTGGAAGAGGAAGAAGTTCTTCAAGTTTTCCCCCCGCAGGAGCGGCCCCAGGTAGATGTCAACCATCCGGTTGTCGATCAAACGCTTGGCAGAGTTGATAGAGAAGGTCTTGATCAGTTCAAAGCGGGTGGTTTCAAACTGCTTTTGCAGAACGGGGATGATCTTCCTGCTTTCGCTTGATGCCCAGATCGGGGAGAAACCGATCTTGATGTAGGACTGCTCTTCTTCAGTGAAGCGGCGCAGGTCCTGTTCGATCTTCATCTGGTCGCTGTGCAGCTTGGCTAAGCCGTCGCAAAGGGTCCGGCCGGCTTCAGTCAGTTCGATCGGCAGGGTTCTTCTTTCCAGGAGAACGACATTGTATTTCTTTTCTGCCTTGCTCAAAACCTGGCTGACATATGGCTGGCTCAGGAAAAGCTTCTTAGCGATATCGCTGACTGTCTGGCAGTCTTCAGCAGTGGTCAAGATTTGGTAAAGTACGTCTTGTTTCATCTTAATGCTCTCTTTTAAGTGAATGAATTTACAAAATAATTTTTACAATACAATTATTATAGCGCCTTTTTCTTATTAGTCAACGCCAATCATTCTTACTCAATTTTGACATAATATTCGGTGAAATTCAAATAATTACTGCTGATTTTTCGGATAAATGCGACTTTTCCGATCAAGAAAGAGGAATGAAAGCGGTATATGAAATCTAAATCATATATTTTCGAACTTATGTTGGCGGTTTTTAGCAGGAAATTTTGGCAAAAAAGTTTGAAAATTACTAAAAAACGTTTTAAAAAATGCTAAATTCTTGCTAAAAACTAAAATTTTGGCAAAAATAAGAGGTAAGACTTAACGATGAGGAAAAAGGCATGAACTTTCAACACTTGGAATACTTCAACGAGCTGGCTGAGACCCAGTATATGGCCTAGGCAGCGGAAAAACTGGGGATTTCCCAGCCAACCTTGAGCTACGCGGTCAAGAAACTGGAAGAGGAACTGGGCGTTCCCCTTTTTGAAAGCGAAGGCCGCAACATCCGCCTGACGGTTTACGGCAAGGTCTTCAAAGAATACGGTGAAGCCGGGGTCCAGCAGATCTAGGAAGGACGGCGGCAGTTGTCTGAGATGGCCCTGAGCGAAAGCGGCAAGCTGTCAATCGGGGTGGCTGAAATCGTGGCCCATAAATTCATTACCGATGTGATCAAGGACTACCGGCAGGTCAATCCGGAATACCGGGTCGACTTCAATTTAAAGCGGGCCGTGACCGGCAAGCTCCTGGACATGCTGCAAAGCGGGGAACTGGACCTGGCCATTGTCACTCCCCGGCCGGGTGAAAAGATTGCCGGCTTTGACTTAGTAACAATGATGCACAGAAAGCTGGAGCTGCTCTTGCCGGCGGGTCATGAACTGGCCAAGCAGAAGTCGGTCAGCTTGAAGCAGATCGAGCAGTATCCTTACCTGGCTTTTGGGAAAGAACATGCCTTGGCCGGGATCATCGCTGACGTTTTTGCTAAAAATGACATCCATCTCCAGATCAGCAGCGTGACTGACGATGTGCGGACCCTGTTGGCGATCGGTGAAGGGGTGGCTCTCTTGCCTAAGTCCAAGTACAACGAATCTGCTGGTGACATTGCCGTGCCGGTAACGGAAGATACTTCTTACACCATCAGCCTGGCCAGCCGGAATCTGGCCCAAGAGCCGAAGGTTGCCCAGAAGATGGCTTCCTTTATCGTGGACTTCTGCCAGACCCGGGGTTTAACGTGGTCCTAATTCACTAGCGGCCTGGTCGTACTTTTCTTTAGCCCGGCTGACCTGTTTTTGGTACTGGGCCAAAGTCAGGCCATTGATGCTGACGACGGCGTTGTAGTAGGCCAGTTCAGTCTTTTGGACCGCTTTATAGCTGGCATATTTGATTTTGGAATTTTTATACTGATACTGCTTGAGAAGGGCCATTAGACGGGGAGAGGGGAGCTTTCTTGCTCTGGCTCTTGCTCTTTTTCTTTTGGCAAAAATCCGCAGAATCTTGCCAGTAAAGCGGGTAAACGCTGCCGAAAACTGGCCGGATAGTGCTATAATCTTGTTAAAGGTCTGTAATATGGCAGGCAAAAAGTCATGAATGGGAAATAAGACAGATGGCAAGGATTATTGATACTCAGCGAAAGTTACTGATCCAGCACGGCTTGCTGGAAGATATCAAGGAAGCAGGGGAGGAATGCGGGAGTCTGACGGCCGCCCTGGCCGCTCCTGACTGGACCCTGCTGGACCGGGAGCTCAGCCCTTTATTTAAGCAGGTAAAGTTTTGCCTGCTTTTTGGGGAGGAAGAAGTTCCCGAACTTGCCGCGGCAAATGAACTGTCCCGGCTTTTTCCGCTCTTATCTAGCGACTGCCCGGACTTAAAGGAAAAACTGGCTGCTGGCCGGCTGGCGGTTAGTTTTTCATCGCAGAAAGAAAGCAACTTCTTTCTGCTGACCGGGAAAGACCAGTACCGCTTCTACTGGGGGCAGGGGGCGACCTACTTCTTAAGCAGCGGGGAAAAGACCGGTGACGACTGGGCCATGGTCCAGCAGCTGGTCAAAGAGCTGACGGCCAAGGCCAGAGATATTTTAGACAAGGAGATCTACCAGGGCTATTTGGACCTGGCAGAAGACAAGCGATCCCAGTACCTGCTGGAAGTCAGCGGCTTGGCAGATAAAATGGCTGAAGCACCTTTAAAGGATTTCAAAGAAGCGACCCGGCTGGGGCAATTAGGCCAAAGTCAGGCCGGCGTGTCCTTTAAGAAGACGGCCAAGCTCCTCCGCTTTAAAATCGGGATTGACAAGGAGAACTTGACGGGAAAAAAGATCCTGGCTGATGAGGAATTGAGTAAGCGGCTCAGCCAGATCGTCTTTGGTGAAGGCAATGAAAATGGCGAGGCCATTGTTTTGCCGGATGAAAAGGCCCACTACCCGCGCCCCCTTTACCTGCAAGACCCGGTAACGGGGACGATTCTGGAGAAGCCGGCAATCGACTCCTACCAGGAAGAACCAGTCGCGATCCAAAAGCCGACCCGGCAGGACGTGTCAGCAATTTTTGACATTATCCGCTTCTACCGGGATCGCAAGCAGGATAATGAATCCCAGGCTGCCTTCTCCTTCTTGATGTATGTCCTGGAAAGCGGCAGCATCTGGAAGATCCGCCAGGCCATCGATGAGCGAAACGGGATCGTGGAAGACGTCCCGATCGTGGCCGGCCTGGTCGGTCAGGGGGAAACTGGCAAGTCGACCCTGCTTAAAATTGCCTCCAACTTGACCATCGGCAATACCAAGGAGATCGTCCAGGCCAGTTCAGAAGACAAGCTCTTCGGGATGACGGCAGCGGTCAGAAAGAAGTTGCTGGCCGGCAAGAGCTTGACCAAGCAGGACCGGGTCAGCGCCTACAGCTCCAACCCCAAGGTCATCAACAAGAATATCTGGAACTTTACCGACCACTACATGGATGAAGACCAGGTCATCACCCCGATCTGCATCGATGACCCGGAAGTATCCCTCTTTTCTTCCAGCGCCGCCCAGAGCTTTTTGAAAAAGCGGAGCAACCGGCATGGCGAGAAACTGGGAGTGGAACCGGTGGCCATTTTCAGCATGAACAGCAAGGGCAAGGATATCGAACTTTTGACCGAAGTTGGCCGCAGGGGCTACGTAATTAGCCAGGGCAACCAGTTCCGCAAGAAGACGGACGCGGACATCCACTTTTTTGAATACCTGGATGGCAATACCGACAACCACGGCCACTGGCTGAACAACACCCTCTTTCTTTACCTAACCCGGCAGATCGACCGCTGGCTGGAAGAGATGGATGACGAAGACTACTTGAAGCTCAAGCACGACTTCCTCTACCCGGTTAAGCACGCCTTCTGGGAGCTAGTTGAAGAATACGGCCTGGTCAACACGGAAACCAAGTGCTACTTCCACATGAAGAACTACAATATTGTTGAGGACTTGGGCCGGCGGAACTGGAGCATTCTCTTGCACGATGAGGCGACCTTGCGGGAAATTACCTTTACCCGGGACAATCCGGAATGCATGATTCCGGCCCGGGTCTTCCCCAACAAGGACAACGACATCAACCGCTACTTCGCCTACCTGCCGGCTTCAGCTGAGATTTGCAAGACTTTTGACAGCAAGGGGCTGACGGTCAAGATGGCCAATATGGACCTCTGGCAGGGCAACCACTTGCTGACTGAGCGCTATGAGAAGGAAACCGGGATTGCGGCTGAGCGCTTTGAAATGGAAAAGGCCAGAGTCGCCGCGGAAGTTCAGGGGCAGATAATGGGCGAAAACATTGCTCCATACTTGAAGAAGAATGCTGAAATGATGGACCGGATGATGAAGGTCACTGAACAGAATGCCCGGCTTTTGGCGGAAAAGGAAGCCCAGGCCGAAAAGCAGCAGCAGGCAGAAGCTGAGAAGAAGGAGCAGGCCGACCAGATCCAGAAGCTGCAGGATGAACTGGCCCAGGCCAAGGAGGCCGCGGAAGCCGCCAAGAGCGAGGAAAAGAAGCCGCAGGGCTTCTTTGACCGCTTTTTCAAGTAATTTTTTTAGAAAGAGGGATAAAATGACCGACACGCAAAGCATGATTGCCGTTCAAGAAAAAGACAATACCGTTTCCAGCCTGATCCTGGACCATGACGGGGACTTGGAAACCGCAGGCCGGATTCTGGAGGAAAACTACCAGGATTATGAGCAAGTCCTGGCCCTGGTCAATTTAGGTGACTTAAAGAGGCTGGGGAAGACGGTGGAAGAAAGCCGGGCCTACTACCGGGACGAGCATGAAGACCAATTGGTCTTGGAAAATTACGCGGACACGGAAGTTTTTGACCGGGCTACTGAAGAGCAGGGGGATTACCTGGCCTGCTGCTTTTTGTACTGCAAGTATGAAGGTGACTTCCAGTGGCTGGTCAGAGATTTTTCCACGGGCGACAAGCGCTTTAAGCCGCTGAAGGAAGCTCTGGCTTAAGAAAAGAGGGACGGCAATGACGGATTTGGCCCAGCTGGGCGGGGATGAACTAAAGGAGATTTTGGACGAGAAGCGGAGAAGCCGCTGGCTTTATCAACCTCTTCGGGCTGCCGATCCAGGTGCAAGCCAAGCTGGACGCCAAGAAGAAGTAAGACGGGACAAGTTTTTTAGATTAGGTGATTGTGATATGAAAAAATGTGGGCCGGCAGAACTTCCGGTAAGACACTGACCAAATCGCGGACGACTTCAACTAATCCATCCGTTTTGACCAAAGAATGTATCCAGAAGACATAGCCGGCTCCATTGCCCATGCCAAGATGCTGGCCAAGCAGGGGATTATTCCTGAAGAAGCAAGTGCGAAAATCATTGCCGGCCTGGAGGGCATCTTGGCTGACTTAAATAGCGGCAAGTTGGAAATCGATCCGGCTGCTGAAGACATTCATATGTTCATTGAAGAGACCCTGACTGACCGGATCGGCCAGGACGGGAAGATGCTGCACACGGCCCGGTCAAGAAACGACCAGGTGGCCCTGGATATCCGCTTGTACATGCGGGAAGAAAACGGGCAGATCAAGCAGCTTTTAAAAGATTTGGTGGCGGCTCTTTGCGACCAGGCAGAAAAGTACAAGGCCAGTCTCATGCCGGGTTATACCCACCTGCAGCGGGCCCAGCCGGTCACTTTTGGCCACCAGCTGATGGCTTATGCTTACATGTTCATGCGGGATCTGGAACGTCTCGGGCAGATGGAAGAGCGGATGAACTATTCGCCAATCGGCAGCTGCGCCCTGGCCGGGACGACTTACCCGATCGACCGGGTTTATGAAGCGGAACTTTTGGGCTTTAAGGCTCCGGTAGCCAACAGTTTATACGGGGTTAGCGACCGGGACCATGTGGTGGAAGATTTAAGTGATTTGGCGCTGGTGATGATGCACCTCTCCCGCTTAAGCGAAGAGCTGATCTTGTGGTCATCTTGGGAATTTCACTTTGTCCGCCTGGCGGATGCTTATACGACTGGGTCATCCATCATGCCGCAGAAGAAAAATCCTGATATGGCTGAACTGGCCCGGGGGAAGACCGGCCGGGTCTACGGGGACTTGATGGCGATTTTGACGACTTTGAAGGGACTGCCTCTGGCCTACAACAAGGATATGCAGGAAGACAAGGAAGCCTTGTTTGACGCCATCGACAATGTTGAGCTGTGCCTGGAGACTTTTATCCCGATGATCAAGACATTGGAAGCTAATGAAAAGGCCATGCACCAGGCGGCGCAGAAGGGCTTTATTAACGCGACGGACTTGGCGGACTATTTGACTAAGAAGGGGATGCCATTTAGAGATGCCTACCATATTTCCGGGCAATTGGTGGCCTTGTGCATCGACCAGGACACGGTTTTAGAAGACTTGCCGCTTGAAACTTACAAGGGCTACAGCGACTTGTTTGAGGAAGACTTGTACCAGGCAATTGACCTGCATAACTGCCTGGCCAAGCGGACTTCTTTGGGAGGACCGACGCCGGAGTCAGTCCAAAAGCAGGTTGATGAGGTTAGAGGCAAGCTGAAAATTAGGATTAATCGCTGTTAAGCCAGGGCAAATTTGTCCTGGCTTTTTTGCACCTTTTGACAGAATTCCTTCCTACGGGCTTTTACCATTTGGAAGGGCGTCAGCGAATACAGAAAGCAGATCGCGGAAGAAGAAAATTAGAACAGACGCAAAAGGCGGACCAGGTTGCAAGGCTTGATCCGCTTTTTAGGTAGAGGAAGAGGGCGGGGAGATGGCATAATTTGGAGGAAGAAAACGTATTATTAGGAGGCAATGGAATGGGCGAATCTAAAGAAGACAAAAGGATGAGGGCAAAGTGGGAAAGTTTAAGCGGCGCAGAAAAATCAGAGTTTAAAAAGAACTATGCTATGAGGCGGGGGATTACGATAGATTTTATCCGCCGTTGGGCTTGGAACGAAGGAGATTTGGACAATTTGGAATATCACATTGCGGAACGTAGAAAAAAGTTTAGGGAGTTTTGAGGAGTAAAGGGGAATTTCTAGTCGGGGGGCGACGGGCGGCCTCTTTAAGTTAGCTGGAGGAATGTGGTGGTGTTAGGGTGAAAGAATGGTGGCACGAGTGGGGATGCTCTGTGATTATAGGAGTTATCCTGTCGGGATTGCTTATGTGGTTTATATGGCGCTACATTGATGTGATCATGTTTATTGTGATTTGCGGTATTATCTCCCTATTTTGGCTGGCTTTTAAGGTGATTGACAAGATACTTAAATAATGGTTTGACACAGAATTTTGAGGAGCTAAAAAAGCCGCTTAGAGATCTTCTAAGCGACTTTTTGCATGGAAAACTAGATAAGAAATGGTTACTTTGAATTATCCTCATCAAGTTCAATCAGATCATCAAGAACTTGGCCTGGCGTCTTACCCAGGGTCTGTGCGACTGCGCTAATAACTTTGACGGTTTGCCCGGATAATGGCTTAGTTTCTTTAACGGCGTTGGCTAAGGTCGTATTAGCAATCCCAGTTTGTTTAGCTACTTGGTAGCGCGTTCATTTGATTTAGATGTCCTTTCCATTTATTTACTATAGATGTAGATAATTTTTGGGCCAAGGATAGAAAAAAGCCAGTAGTTAAAACTACTGGCTACTTTGAAATACTTCCTATAGGGATACCATTTGACCTTATTAAGGAGAGTACAGGATTTGAACCTGCGCACCAATTCAACATTGGTTCGGCGGATTTCGAGTCCGCTGCATTACCGCTCTGCCAACTCTCCAGAACATTTATTATTATACTGTAAAGTTGAGCAAAGTAAAAGAGCAGGGGAAGAAATTCGCGGAAAAAACTGCAGTGAGGTTGGATGTGTTGGATACCTTGGATGGTAGATCCAAAGTTATATTTTTTTCGACGAACTAATACGATGGCAGCTTTCTTTTGGCTTATAGCCATAGAAGGCTGTTTTCGTTTTATTGTCAAAGTTGATCCCTTGCTTTCTATGCTATACTTACTTTAGTCCTCATGTAAATGGGGGTGACCCTGAGGATACTGTGTGTCTAGATGGGGATCAATAATATTTCCTCACGTAAGTGGGGGGCTTTGTCACTTTTGGCAAGGCATTTTTATTTTAGCTTGCACAATAGAATATTACGTGATAGAATTCAAATTGTGAACAGATGATTTTCTGAATGAGGAAACTGTAAATTTAGTTAACTGAAATATTGGATGTGCATGTGCAACTGTTAAAGGCTCACATATGGGCTAAAAGTTGTGTGTTATAAAATAGGAACGAGGATATTGTGTGAAGAATCATGCAAGGGATGCAGATTTGTGGGAATTAGCAAGGTTGACTTGTTATCTTCACGATCTCAGTAAGATAAGGCCAGAGTTTCAATTCAAGAAGCCACTTAATGGCGGCTAACATGGAGAAAAAACAGTTCACAAATTGTGGAAAATTTTACTTGAAAAGTGGGCAAAACGCTCTCATCCATGAAAGCTATTATATGGCAAAATTAGCTAGTACAATTTGAATTGTGAATGAAAGTTTTTACATGTTGAAGGAATTGTAATGAAACTAAGCAAAGAGGCCCTATCTTTATGGGGAAAGAAATCAAATCAAGATGGTGATGAGCACTGGCTGCCATTAGTGGCACACATGGTGGACACCATGAATGTTGGACATTGGCTCTATAATTCCTGGCTAAGTGAAGGGCAAAGAAGCATGCTGACTACTCGGATCTGCGATGCTGAAATGTCAAAATTGGTGTCATTCCTGTGCTATATTCACGACCTTGGCAAGGCGACTCCAGCTTTTCAAACCAAGGAATCATATAACCATGATCATCAGCTGGATGAAGAACTGATCCACCGATTGGTTAGTCATTCCTTTAAGAAGCTAAATGATTTGAGTTTGCCAAGTCGCAGCAAGTCACCGCATGCTCGTGCCGGTGAGGCGATACTTGAGAGGGCAGGGTTGAATGAAACGATAGCTGCTATTGTTGGCGGGCACCACGGCAAACCACAAAACGGTGACCAAGAGGAACAGATAGATGTTTTTACATCAAACTACTACCAAGCTGATAACGATGAAGAAATTCAGCAGCCTTGGAAAGATGCTCAAAGGGAACTGATTGATTATGGGCTCGAACTGGCTGGATATGAGGATATCAGTGAAGTGCCACCGGTTAACCAGCCGGAAGCAGTTATCTTGGAGGGGTTACTGATCATGGCCGACTGGTTAGCCTCCAGTACTTGTTTGAACAATGACCCTGATAAACCGATGTTTAATCTGATCGGATTAGACCAAAGCTTTGACGATTTGGATATGAAGGCCCGCTACCAAAATGCCATTTCTACATGGGCAATCAATGACGCGTGGATTCCAGAAGAGGTAGCAAATGTTGATTATTATTATGAGCAACATTTCTCTTTTAAGCCGCGGCAAATACAAGCAGCTATGGAAGAGCATGTTAAGGAGGCAGTTGACCCAGGTCTGGTAATCATCGAAGCAGAGATGGGGATCGGTAAGACCGAGATTGCGCTCACTGCTGCGGAGCAATTAGCTTATGTAACTGGCAGAACGGGCGTGTACATTGGCCTGCCAACCCAAGCAACTACAAATGCAATGTTTGACCGGGTTAACTCCTGGCTGACGAAAATTGCTGGCATTGAGGGCATCAATCCGGATATCAAGCTGCTCCATGGTAAAGCAGAATGGAATTCCAGGTATACTGATCTGCCACGAGCAGAAGACATTGAAGCTGAAGAATTAGATGCAGGAACTGTTACTGTAAACTCCTGGTTTTCAGGTAAGAAGTCAATCTTAGCGGATTTTGCGGTTGGGACGATCGACAACTTGCTTTTGATGGGGCTTAAACAAAAGCACCTTTTCTTACGACACCTTGGCTTTAGCAACAAGGTTGTGATCATTGACGAAGTTCATGCCTACGATATGTACATGCAAAGCTATTTGTCAAAGGCGTTGAAGTGGTTAGGCGCATATCATGTTCCGGTGGTTATTCTGTCGGCTACTTTACCGAAAGAAAAGCGAAATGAATTGATCAAGTCTTACATTAAAGGAAAGTATCGCCGGGTGAAAAAAGTCCTTCAAGCACAAGAAGGCTGGGAGAGCAATCGTGCATATCCGCTCTTGAGCCTTCTTGATGGCAAAGAGTTGCGGCAGTACAGCGACTTCGGACCAAAAGCAGAGCCCAGAGAAATGCAGGTCAATTATATTAACGATGAGCCGACAGAAGTCTTAGCAAAGGTTAACGATAAAATTAAAGATGGCGGTATCGCTGGAATTATCGTTAACACGGTAAAGAGGGCACAAGAATTTGCCGGCTTAGTTGGGCAAGATTGCCAGTGCTTGGTTTTACATTCGGCTTTTCTGGCAACTGACCGGTCCAGGCTGGAAAAAGAGTTGCAGAGCTTGATTGGCAAGAAAGGAAAGCGGCCAGATAAACTAATCGTAATCGGTACTCAAGTCCTTGAACAATCATTGGATATTGACTTTGATGTCATGTTTACCGATATTGCTCCGATTGACCTGCTTTTGCAAAGAGCCGGCCGGCTGCACCGGCATAAAATTTCCCGTCCTAAAGGATTGGAAAAACGGCAGTTGTATGTAATGAAGCCAGACTCGGATGATTATGGACCAGCCAATGAAGCTGTTTATGAGAAGTATTATCTGCAAAAGACCGAACACTTTTTGCCGCAAAAAATTCAGCTTCCTAATGATATTTCTCGCTTGGTTCAATTGGTTTACGATGAAGATACTGACGACCAAGTCGAAAATTTGGATGAGGCACGTGACAAATTGAATGTGGACCGTAATCGCGAGAAGAGCAAGGCAGAAAGCTTCCAGATCAATGATCCTGTTTACCCCGCAGCCAAGAACGATCTTTACGATGATACGTGGGTTGAAGAGCTAACTATTCATCGCTGGTTGGACCGTGATAAAGGAAATCTCGACGATAATCAAGCTTCCGCGGCTGTTCGTGATATTCGGGAAAGCATTGAAGTTATCTTACTTAAAGAAATTTCGGGCGAATATTACCTAATGAATGGCGATAAGGTTTCTGAAATGATGGATAAGGATTTAGCTAAAGAATTGATCCGTTTGCCTAATGCGGTAACTCCAAATATTGAACAGGCAATCAATATTTTGGAAGAAAATACTGCCCAGGCATTTCCAGATTGGCAGGGCAGTCCATGGCTGAAGGGGTCCTTGGCAGTTGTGCTTGATGAGCATGCAAAGGGAAGCTTTAACGGCTATAAGCTAAGGTATTCGACTGAGACTGGCTTGAGTTATGAAAAGGAGGTTGATAATTAACCATGGAAAGCTATAACTTAATAACTGAACCTTGGATTAAGGTATTGGATGGTAAGACCAACTCTGAGCATATGGTTTCCATTAAAGAACTTTTGCAAAATGCAAGTGATTACCGGCAATTAGCTGGTGAAATGCATGCACAGGATTTAGCAGTTTTGCGCTTGCTGGAAGCAATCTTGACAACTGTTTATACCAGGGTTGATCAAAATGATGAAGAGTATGAGTGGGTGACGCTTGACGAGCAGATGCACGTTCAGTCCTATGACGATGAAATCGAAGGCTCAACGTTATTACAGGTTCTTACGAAGACATGGAATGCGCTTTATAAGGAAGGCAGTTTTTCTGAAGCTGTGTTTGATTATTTAGACAAGAACAAAGGACTTTTCGACTTCTTTGGTGACCGGCCATTTTATCAAGTGACTGCTGAACAATACGACAGTTTTGTTCCGGATAATAAAAAAATTGCTAAAGGATCCGGGACGGTTGATTTAATGCAGATCAATCGCTTGATTTCTCAAAGTGGCAACTCCGTGGCAATTTTTTCACCAAAAAGCGCAAATCGGAAGAATAAGCTCACTTTGGATGAACTGGTTCGCTGGGTAATTACTTATCAGAACTTTACTGGCGTAACTGACAAGACCAAAGTCAAGGCAAAGAAAAAAATGTCTAATTCCCGGGGCTGGCTGTATACTCTTAATCCTGTTTATGCACAAGGGAAGAATCTGTTTGAGACTTTGATGTTGAATCTGTTGCTGTTTAACCCAAATAAGCCAGCCTACACTCAACAACGGCCCGTATGGGAAGAAGATTTGGGAGAATACGTCAAGAGACGTTTGTCGCAAGTTAAGCCGGACAACTTTGCTGAAACTTATACTGTTTGGTCAAGATTGCTGCATATCGAATGGCAGGATGGTACACCAACAATTTTCAGTGCTGGCTTGCCTACTTTTGATAGCGCCAATGCGTACGATATTGAACCAATGAGTACCTGGCGGATGAATAAAAAAGATGAGAATTATTATCCAGCAACCAGGCAGTTAAGCAGTATCGGCATTGCCATGTGGCGGAATTTCGGCCAATATGTTGATATCGAAGGCCATACCGAATCTAGAGAGCCACTGACTGTAGCTTGGCTGAATTACTTGAAAACCAAGAATGAATTCTTGAATCAGCAAATGATCAACCTGCATACTTCTGGAATTATCAGCAATGGTGGGGCAACTTCGCTAATGCCGGCGGCTGAATTCGATGACAATTTACGGATTGAAGCCGATGTTTTGTTCGATGAAACTGAGGACCGTAAAAATGCCTGGCCGCAGAGAATCGAAGAAATGGTTGACTTAAACCAGGAAGTTGGCCGGAAGTATTACGGCTTTTTGATGGAAGTCGGCAGAATTCGCTTTGGCCCACAAGGTGCTGCTGATTTTGCTGGCAGAAATAGTCAAACTTTCTACGACAATTTGAACGAGCCTTTTGAAAATTGGCTGGCCAACTTGTCTGGTGGAGATGACCGTGATAAGCAGCAGGAGCTTTGGAAAAAGCAACTGAGGCAAATTGCCTTGAGGACTCTGGATGACTTCTTGGAAATTATCGCTCCGCGCGATATTTCCGGGATTAAGGCCGATAAGAGCCAAAGTGGAACAAAGAGTACTGAAAGTAACATCTTTATCGCGGCTAACAAGTATCGGGCCGGAATTAACAAAGCATTGAACAAGAACGAAAAATAGAAGGGAAAGGTGATCGTGATGGCATTTGAGATTGAGAAGGCTACCGAACGGATCATCCGCCAGCTGTACAACAATGGCGATACTGACAAAGCGTCATTGTCAGCTTTGCGGTCAGCTGCAACAATTGACGGCTACCGGGCCCAAAAAGTCTGGCCAGTCTTTTTGAGCAATCTTGATGAGCAGTGGTTAAGCAAAAATGGCAAAGCGACTAGAGAGGAAGCAGCAATCTTCGCGGCGGTAAGAATGTATGCCCTGCATCAGCAAGCTTCAGACTCTTGCGTTTTTGGCCGGAGAAACTATTCTGATAAGAAGGATGAGGAGACAAACAGCCGTGAATTGTTTGAAGCCTTGAATTGTCTCAAGCAAGGGACTGATTCTCATGAAGCCCTGGACCGGCGGGTACAGGCTTTGCTGGGGACGAATAATTACAATGCAGTAATTGATCAGTTGGTCCACTTAATGCAAATCATTAAGAGTAAAAAGACCGGGATTAAGATTGACTACGCCCGTTTAGCTGGTGACTTGTACAAGTTCCAGTTTGGTTACCGTCAGGCAAACGAAGTCCGCTTGCGTTGGGGTGAGCAGTACTATCGTGCTTTTAAAAAGTTAGACACTAATCAGCAATAATTTAAGGAGAAAAAATCATGACTAAGAATTTATACGTCGACATCAACGTTTTGCAAACTGTTCCATCTTCAAACATTAACCGTGACGACACTGGTGCACCAAAGACTGCCTTTTACGGCGGCGTTACCCGGGCCCGGGTGTCATCCCAGTCCTGGAAGCGGGCAGTAAGAAAGGCTTTCGCTGAAGATGGAGCAAACATTGGCACCCGGACCAAGCGGGTACCGCAAATGCTTGCTGCTAAGCTGCAAGATCTCGATGCAAGTCTTGATGAGGATGCTGCTATGAGCAAGGCAATTGATGCTTTGAAGGAAGGCGGAATCAAGACAAACAAGGATAATGAAACTGGTGCTTTGCTGATGGTCAGCCCGGGTCAAGTTGCCAAGCTTGCCAGCTACGTTTTAGAGAATGAAACGCTTGACAAGAAAGAAGTTAAGAAGATCTTAATGGAAGGCAATTCACTTGACCTGGCATTGTTTGGCCGGATGGTTGCCGACAACCCGGAACTTAACGTTGACGCGTCTGCACAAGTAGCCCACGCAATCTCCACTCATGAAATCATTCCAGAGTATGACTACTTCACTGCCTTGGACGACCTGCAAGAAAAGGAGAAGAGCGGCGCTGCTTTGATTCAGACCACTCAATATGACTCAGCAACTCTGTACCGTTACGCCAACATCAATATGGCTGAGCTGAGCTACAACTTGGGTGATGAAGACGCAATCGAAGGTGCTTTGACCTTTGTTAAGGACTTTGCCCTGTCCATGCCAACTGGCAAGCAAAATTCCTTTGCCAACAAGACTTTGCCTAACTATTTGATGGTAACTGTCCGTGACGACACTCCAGTTAACTTAGTTTCTGCTTTTGAAAGTCCAGTAGTTGCCAAGGCAGGCGAAGGTTACGTGGAGAATTCTGTCAAGAAGTTGGAAAATGAATACAAAGACGCACTGCAGTTTGTTGACCAACCGCTGGCGACCGTAACTGTTGGCAAGTACGAAACGACTGTCGGAGAACAAGCCGGAAACTTGCAAGATTTGCTGGGTAAGCTGCAGGACGTCTTAAAGAAGGCGGTTGAAAATGAAGACTTTAACAATTAAGCTGACGGCACCACTGCAGGCTTATGGGAATGAAGCGAGCTTTGAGCGGCGGACCAGCTGGCCTGCACCATCAAAAAGCGCGGTAGTTGGTATGATTGCTGCTGCTTTAGGGATGCGGCGTGAAGATGAACGGATCAAGTCTCTGAATGACTTGGCATACGCGGTTAGAGTTGACCAGATTGGCAAGACAATGACGGAATTCCAGACTGTCGAGTGGAAGCCGGGAACCCGCAAGCTGACTTACCGTGACCATTATCAAGACGCAGTTTACGTGGCAGCGGTCGGCAGTGAAGATGAAGAGCTGATCGGGAAAATCGAGTATGCCTTGAAACACCCTCGCTTCCAGCTTTATCTTGGCCGCCGGGCTTGTCCGCCGGCCGGTGTTTTGCGGATTGAAAGTTTTGCGGATACGGATCCAGTTAAAGTGCTGGAAAATATGCCTTGGCAGGCAGAAAAGTGGTATCAAAATAAGCAAAAGCGGAAGGCAGAATTTACGGCTGAAATTATTGCTGACGCGAATTTATTGCCAGATGCTGCTTTTACACAAACCGTAAAAGACCGGGTGGAGAGCCTTGATCCGCAAGGCCGGTGCTTCGGTTTTCGTTTGACGGCTAAGGAAAGAATCAATTTGAAAAATCCGTGTTACGAGCAGAAATCTCAAGACATTATGGACTATCTGTAAAGGAGGAACGGGATGTATTTATCAAGAGTTGAGATCGATACTGACAATCGGCAGAAAATCAAAGACTTGTCCCATCTCGGAGCTTACCATAACTGGGTTGAGCGGTCCTTTCCAGCAGAAATTGCCGAAGGTGAACGGCAGCGGCACTTGTGGCGGCTTGATACGTTAAATGGCAGAAATTACCTGCTTCTGTTGAGTCCGGAAAAGCCAGACTTGCATGAGTTTGAAAGATATGGCAAGCCAGGCACGGCTATCAGCAAAGACTATGAACCGTTTTTGAGCAGGTTGAGTGAGGGGCAGTTGCTGCAGTTCAAATTGACAGCTAATCCTGTCCGCCGCGGCGGCAAGAGCAGTTCCCATCCGGGAAGCTTGATTCCCTGCTTTGCTGTTGATGAACAGATGAAGTGGCTGCAAGGCAAAGCAGAGAAAAACGGTTTTGAGCTTGTAGCAGCAGAAGTGGTCGGGCATGACCGGCCACTTCTGCGCAAAAAGACCCATGTGGCATTGAACAGAACTGTTTTTGAAGGCCGGCTGAAAATCAGTAACTTAGATCAATTCAAAGCAATGCTGACTTCTGGCATTGGCCGGGAAAAGGCTTTTGGCATGGGTTTGATGACCGTCATTCCGGTTGACTAAAAATGAAAGTAGAAGCAAGCTACAAGAAGCCTGATTTGACAGAATTAGGCCGGACTGAGGACAGAATCACATTTCTATACATAGAACATGCCAAGCTTTACCGCAAAGATGGTGCAGTAGAAGTTAGAGATGAAGAAGGCATTGTTTATGTTCCAGCGGCTATCATCAGCGTCTTATTGCTAGGACCTGGTGTTGATGTGACACACCGGGCGATGGAACTGATGGGAGATTCTGGCATGGCGGTGGTCTGGGTTGGTGAGCAGGGAGTAAGGCAATATGCTCATGGTCGGGCACTTAACCGGTCGTCAAGGCTCTTGGAAGCACAAGCTAAATTGGTGTCCAATGTCCGTTCACGGGTTGCAGTAGCTAGAAAAATGTATCAACTGCGCTTTCCTGATGAAGACGTCACTAAGCTGACAATGGAAGAGATGCGCGGGAAAGAAGGCACTAGAGTTCGCCGCGTTTATCGTGAACAAGCCAAGAAGACCGGGGTAAAGTGGTCAAAGAGAGAATATAAAGTAGATGATTTTGAATCGGAAACTCCGATTAACAAAGCATTGACTGCTGCCCACCAAGCTTTATACGGCTTGAGCTATAGTGTAATCGTTGCATTGGGTGCCTCTCCAGGATTGGGATTTATTCATACGGGGCACGACTTGGCCTTTGTCTATGACTTTGCGGATTTGTACAAAGCTGACATTTCTATTCCGATTGCTTTTGAAACGGTAGCAAAGTACGGAGATGATGACATCGCCAGCCGGATCAGGCATGCGATGCGGGACAAGTTTCGGGAGACCAAGCTGATCAAGCAGATGGTTGTGGATCTGAAGCACTTACTGTTAGGGGATGCTGACCAAGATCAAGACATAGATGTCATGAATCTTTGGGATGATAAATTAGGGCTGCAAAAATTTGGTGTGCAGTACCATGAGCAACAAAGTGATGAAGAATGATAGTCATAACCTTAACCAAAACACCTCCCGCTCTTAGGGGGGATTTGACTAGATGGTGCCAGGAAATTCAGACTGGAGTCTATGTTGGCGATGTCAGTGCTAGAGTTAGAGATAAATTGTGGGAGAGAGTGCAAACCAACATCGGCAATGGTGAAGCAACTCTCGTATATAACACCAATAACGAGCAGGGGTATGCTTTTAAGACAACCCGCAAGTCCAAGCAGGTAGTTGACTTGGACGGGATGCTTTTTGTCAAGCATGTTGTCAACCAGGAAACTGTAGAACACGGTTTTAGCAATGCGGCTAAGTTCCATAAGGCGCATAAAGCAGAAAAAATGAGAGCTTCTGCAGCTGCTGCAAAGCCAAAGGGGTTTGTTGCGGTCGATATTGAAACGACAGGACTGAATACCGAAACTGATCAGATTTTGTCTATTGGCGCGGTGAAACACGATGGTACAGAATTCTACCGACTGATCAAGCAAGATATTGATGTGCCAAAACAGATAGTGGAGCTGACCGGGATCACTTCTGAAATGCTAAGTAAGGAAGGCGTTCCATTGCAAGATGCATTGGAAGAACTGACTGACTTTGTTGGAAATGTACCAATTGTTGGGTACAATTTTAGATTTGATTCTGCATTTTTGAATAGGGATTATCGGAAATGCGGGATGCAAGAATTGAAAAATGAGATCAAGGATTTACTGCCAGTTGTAAAAAGAAAAGAAAAATTTCTGGACAACTATAAGCTACAGACTGTATTATCAAACTACGGGATCGAAAATAAGGTGCCGCATAACGCTGTGTCTGATGCAAGGGCTACGAAGGAGCTGGCGATGAAACTAATCAAAAATCGCATTCTGGTGATTTGAGAATGGCGTCGCTAAAGGGATCCATTACTGTATTCCCCACGCAAGTGGGGGTGATCCAAAATCGTGTGCCCGTCAAGCCAGCCGGTGATTGTATTCCCCACGCAAGTGGGGGTGATCCTCACACAAAAAGCCCGCTAGATTGAATGTCTAGGTATTCCCCACGCAAGTGGGGGTGATCCTGTATTCAGTTTCGTTTGTTTGATCCTTGCCATGTATTCCCCACGCAAGTGGGGGTGATCCTCAATTTGCTGTGAGTGTAATAATTGATGGTGAGTATTCCCCACGCAAGTGGGGGTGATCCTTAAACCCAAACTATAAGCGTATGGTTCGCTCAGTATTCCCCACGCAAGTGGGGGTGATCCTGAGACTCATTGCGCCGCTACTTCAGCGGGCTAGTATTCCCCACGCAAGTGGGGGTGATCCTCTTCGATACTAATCGAAATCGATTCAAACCCTGTATTCCCCACGCAAGTGGGGGTGATCCTATGGACTAGAGGGATGCACCAGCAAGACAAGAGTATTCCCCACGCAAGTGGGGGTGATCCCCCACGCAAGTGGGGGTGATCCCATAAGCCCGGCCGGCTGCCTTTTTTGACGTGAGTATTCCCCACGCAAGTGGGGGTGATCCTAATTCGTTTTTGGGCGTGTCAGAACCTTATAAGTATTCCCCACGCAAGTGGGGGTGATCCTAGGGCTTTGAGTTACTACGGCTATGAAATGGAGTATTCCCCACGCAAGTGGGGGTGATCCGAAATGTACAAAACAGGCTTGTCTCAAGCCAAGGTATTCCCCACGCAAGTGGGGGTGATCCTAACTTAATTTGGATTGCTACCAAAAAGCCGGGGTATTCCCCACGCAAGTGGGGGTGATCCTATCAGCCTTTTCGAGGTAATCACGGTAGATTGGTATTCCCCACGCAAGTGGGGGTGATCCCCACGGGGACGACTTCGGCCAATGGACCTCCGAGTATTCCCCACGCAAGTGGGGGTGATCCCTTTACAAGTTGGCCCAAAAGTTCAGCGGGTACGTATTCCCCACGCAAGTGGGGGTGATCCCGATACTGCTGCTAATCTGTTAGCGGAGGAAAAGTATTCCCCACGCAAGTGGGGGTGATCCTCATTTTGTTAAATTTGTTTACTGAATAATTTTGTATTCCCCACGCAAGTGGGGGTGATCCTAATCAAACTTGACTAATTCATTTTCAAAAGTGGTATTCCCCACGCAAGTGGGGGTGATCCTCAGATTGTCCATATCTGCTCTCTGGCGCCTGCGTATTCCCCACGCAAGTGGGGGTGATCCTATGTTTGAACTACTTGACGGGGCGGCCTTTGCGTATTCCCCACGCAAGTGGGGGTGATCCCTGAAGTATGTTGCCGTTGCATGCACTTCAGCAGTATTCCCCACGCAAGTGGGGGTGATCCTTAAATCGAGGTGGTCAAACGTTGTACTTTAGTGTATTCCCCACGCAAGTGGGGGTGATCCTATGCACATTTGCAATCTTTATCTTAAAAGGAGGTATTCCCCACGCAAGTGGGGGTGATCCCACAGCGAGCGTTATTGCCCAAAACATAGTGTTGTATTCCCCACGCAAGTGGGGGTGATCCTACTACAGCTTAAAACAAATTTTAAAGCGAAAAGTATTCCCCACGCAAGTGGGGGTGATCCCATCCCGCAACTCCTTGACGGGGCGGCCTTGGCGTATTCCCCACGCAAGTGGGGGTGATCCTCCGTCTTTATACTCTTTATAGGCCTTTTTCGGGTATTCCCCACGCAAGTGGGGGTGATCCCTTAACCATGCAAGAAGATGAAACCGGGCTCAAGTATTCCCCACGCAAGTGGGGGTGATCCCTTTATAACTCTTGGTTTCGTGCCCACTACAAGGTATTCCCCACGCAAGTGGGGGTGATCCGAAAAAAGCCCGCTCAGGTCAAAAGCGAGCACAGTATTCCCCACGCAAGTGGGGGGTGATCCTGTTAGTGCAGGCATTTATAGAGAAGAAAAGAAGTATTCCCCACGCAAGTGGGGATGATCCTTATAAGGAATTCAACGGGAACAAATTAACTAGGTATTCCCCACGCAAGTGGGGGTGATCCTTATTGTAATTGCTGCCGGGGCTTATGCCCTCGGTATTCCCCACGCAAGTGGGGGTGATCCTGTTAGAATGGGCCAGTACGCTATCTTTTTGTGGTATTCCCCACGCAAGTGGGGGTGATCCTCATAGTTAAGGGGGATGCAGAAAATGACCAATGTATTCCCCACGCAAGTGGGGGTGATCCTATCCTTAGTCATTTTTTCCTCCTTATTTTTTTCGTATTCCCCACGCAAGTGGGGGTGATCCCTTACGGTAGATCAGACGATACTGACAGCCAGGGTATTCCCCACGCAAGTGAGGGTGATCCTGTTCTTGCCCAGAATGATAAACTCCTGCCCGAGTATTCCCCACGCAAGTGGGGGTGATCCTTTGCTGTCAGTGTAGTGATCGACGGGGAACCAGTATTCCCCACGCAAGTGGGGGTGATCCTGGGGGGCGTAGTACACCACACTGTTATAGATCTATTTTACTTAATCGGCTGTGATCTCACTGCCATTAGTGAGTAACATGGGGCGAAACAATATTCCTCACGTATGTGAGGAGAATTCTTTCTTTATGCTATTGTGTTTTTCGTACTGTGTATTCTCCCACATATGCGGGGATGATCATAAGTTTCAGTTAAAGCACCAGCAAATTTCAAGGATCTTTGGTAGAATAGAGGTAATAGAGAAGGAGTGAGGAACAAGCATGAGCATTTACGGTAAGTACGCCGATTATCTTCCACAGATCCTGGATTCTGTTTTGCAGCAAATCCAAGGCATCGGTCAGGAGTATAGTGCAGAACACGGGCAAAAGCTATATGGGCACCTGGAAGGTCGCGTCAAAGGCGAAGAAAGCATGGCGCAAAAGTGCGAGAGAAAAGGTTTGCCGCTGATGCCAGAGTCTGCATTGATCGAAAACCGGGATGCGATCGGCCTCAGAATCGTCTGCAACTTTATTGACGATATCTACACTTGCATTGACTTGTTGAAGAAGCAGGACAACTTCAAGATCATTAATGAAAAAGACTACATTACCGATGCCAAGCCAAACGGCTACCGGTCATACCACTTGATCATGGAAGTAGTCACTCCCTTTGAAGACGTCCATGGCAACAAGCCTGGCATCTACTACGTTGAAATCCAGCTGCGGACAATTGCCATGGACACTTGGGCCAGTCTTGAACACGAAATGAAGTATAAGCATGACATCAAGAATCCTGAACGTATCAGCAAGGAACTCAAGCGGGTTGCTGACGAACTGGCATCTTGCGATGTAAGCATGCAAACAATTCGCCAACTGATCAAGGAAGGGGAACTATGAAAATTCTTCTAGCTGAAGACGAAGCACAATTGAACAGAGTTTTGACGGTCGCCATGCAAAAAAGTGGCTATGATGTCGACTCAGTTTTTAACGGACAAGAAGCCGTCGATGCAGTCAAAAAGCATCCCTACGACGTCATCATCATGGACATCATGATGCCCGTCAAAAATGGCCTGGACGCGGTCAAGGAAATTCGCTCTACTGGCGACAAAACCTACATTATGATGTTGACGGCCAAGTCTGAAATCGACGACAAGGTAACGGGCCTGGATGTTGGTGCTGACGACTACTTGACTAAGCCGTTCTCCTTAAAGGAACTGCTGGTCCGCCTGCGGTCAAAAGAGCGCCGAAGCGAGGATTACAACAGCACTCAAGAACTGAACTACGACAACCTCAAGCTGGACCTCAACTCCCAAGAGCTGTCCAGCAACAACTCCATCAGTCTGTCCAAGCAGGAAACCGGCTTGATGCGCTACTTCTTGCTCAATCCTGGCAAGGCCATCAGCACGGAAGAGCTGTTCAACCATGTTTGGAAGAATGAAGATGAAAGCGAAGACGTGGTTTGGGTATACATCTCCTTCCTTCGGTCCAAGCTGGCCTCAATCGGGGCAAATGTCCAGATTTCCGGCGAGAAGGGCGGCGAGTTCTGCCTTGAGAGGGCCTGATCATGATCAAAAAAATCAGGCGGCGCTTTATCTGGCTGGCGACGCTATCGCTTTTTTTGGTCATTCTTTTCTCTTTCTCCAGCTTGATCGGCATCAGCCTTTTTGAATCCAGCCATGAAGCTGACCAAGTCCTATCCATTATTGTTAAAAATAACGGCCGACTGGACGAGGTTCAAGCCAAAAAGCGGCTAGGCGATCAGTACAATAAGGAAGGGATGTTCAAGTACCGCTACTTCACGGCTAACATCAATACGAAAAAACAGACTTTGACCGTAATTGACGCGGACCACATCATCGGCTATTCGATCAACTCGGTTTCCAGCCGGAAAAAGCAGATCTCCAGGCGCCTGTCAGCTGGCCAGTTGAAGGGGACGATCCACTCTAATGGAGTCCGCTTCCGCTACTTGGCTAAAAAGATTTCCGCCAACAAGTACTATATCTGCTTTATTGACTTGAGTCCTTTGATGCAGTCAGCGCTTTTGCTGGTGAGATATGCCTTGATTTTCACCTTCGGTGGGATTTTGTTTTTTGTCATCATTATGACCCTGCTTGCTGACAAGGCAATCCAGCCAATCAAGGATGCCTACTACAAACAGCGGCGTTTTATCACCAATGCCGGTCACGAGCTGAAGACACCTCTGGCCGTAATCAGCGCTAACGCTGAAATGGAAGAGCTGCTGGGTAATGATGATGAATGGAGTGAAAGCACCAAAGAGCAGGTGGTGCGGATGACCGGTTTGATCAACCAGCTGATCACTTTGACCCGGATGAGCGAGCCGGGAGAACTGGTCTTGTCAAAGGTCAATTTCTCAGAAATTACCAAGGAATCAGCAGATTCATTTAAATCGGTTCTGGCTAAGGATAATAAAAAGTATGTGGTCAGCATCGATCCGGATCTCTACATCAACGCCGAACAGCGCAGCCTGCTGGAACTGGTCAACATCTTGATCGACAACGCCCAGAAGTATTGCGATCCAGAAGGCGAAGTCATGGTTGTCCTGGCCAAGAGCCGGCTTAATCAGAATGCGGTTTTGACGGTCACCAATTCATATAAGAATGGGGCTGGGATCGATACTAATCGTTTCTTTGAACGTTTCTACCGGGAAGACGAATCCCACCATTATGATCAGAAGCAAAAGAATGGTTTTGGGATTGGCTTGTCTATGGCCCAGGATCTGGTCGCTGCTTTTGGCGGCAAAATCAATGCCAGCTGGTCGGATGGCGTGATGAATTTCACGGTAACTTTCAAGCGGGTCCACTAAAAGCACTCCCTCGCGGGGTGCTTTTTAATATTTCGTTAAATCAAACGCTTCACCAAGCAAGCAGGAAAAGATTATAGTAAAATACACTGGTTATAAAAAAAGCTGAGCCAAGCTCAGCATCCCCAAAACAAAACTTAGTTAAGGAGAATAAACACATGCAAGATATTTATATTGTTGCGGCCAAGCGAACTCCATTTGGCCGTTACCACAAGCAATTGGCTGACTTTTCTGCTATCGACCTGGGCCAAATCGCCCTGCGCGGCGCATTAAAAGAAGCCGGCCTTGACGCCGAAGCCCTGGATGCCCTCTTCATGGGCAATGTCCTGTCTGCCGGCTTAGGCCAGAACATGGCCCGGCAAATTGCTTTAAACGCCGGGATGCGGCAGGACTCAGTCGCCGTGTCCATCAACGAAGTCTGTGGCTCCAGCCTCAAGGCTGCCCGGCTGGCTGAAGCCCAAATGTTAATCGGTGACCTGGGGCTGGTTGCTGTCGGCGGCAGCGAGAGCATGACCAACGCCTCAAAGGAAATCATGTTCAGCGATGGTCTCGTTGACTCCTTCTCCGGTAAATCCATGGGCATTACTGCCGAAAACGTGGCTAAGCGCAACCACATCAGCCGCCAAGACGCTGACGCCTTCAGCTTGTCCTCCCACCAAAAAGCTGTCAAAGCACAAGCTGAAGGACTTTTTGCCGATGAAATCATTCAAATTGAAGATCTCAAGCAAGATGAAAACGTTCGCCCGGATACCAGCCTGGAAGCCCTGGCCGGTCTTAAAACTTCCTTCCTTGAAGACGGGACCGTCACTGCCGGTAACGCCTCCCCAATCTCCGACGGGGCCAGCATGATCATCCTGGCTACCGCGGAAAAAGTCGCTGAATACCAGCTGACGCCTTTAGCCAAGCTGGGTGCTTACGCCGAAGTAGGCTATGACCCGGAATTCATGGGCTATGGTCCATACTATGCTATCCGTAAGCTGCTTAATGAAACTGGCCGGCAGGTAGCCGATTACGACTTCTTTGAAATCAATGAAGCCTTTGCCGCAACTACTTTGGCTGTTGCCCGCGACCTGGAAATTCCTTTAGCCAAGGTCAACAAGCAGGGCGGGGCGATTGCTTTAGGCCACCCGCTCGGCGCTTCCGGCACCCGCCTTCTGGCTACCGCTGCCCGCCAGCTGCAAAGAGGCGGCCAGCGCGCTATCGCCAGCCTTTGCATCGGAGGCGGCCTGGCCATCGCTTTTGAAATTGAGAAGGCATAAGAGTGAAATTCTATCAGTTGCCGCCCGAAGAGAGGCGGCAGTTTTTGCAAGAAGATGGGGTCGCCCTGGAAGATATCCCTGCAGCTGATTTAGCCCGCCTGGATGAGATGAGCGAAAACGTGGTCGGTGAGGTCAAGTTCCCCTTGAGCTGTTTGACCAGCGCCCTGGTCAATGGCAAAAATTGGCGGATTCCCATGACGACTGAAGAAGCCTCCGTCGTCGCCGCTGCCAACCATGGCATGTCCGTCTTCGCTAAAGCCGGCGGCGTAAAAGCGACCAGCCAGCGCGACGGCATCTACGGGCAAATCGTCTTAGAAGTCACGGAAGCTTTTTCCCTGGCTGGCTTTAAAAAGGAATTCCCGGCCTATATTAAGGAAGCTAACAAGGAATTTACCAGCTTGATCCGGCACGGGGGCGGCTTAAAAGACCTGACTGCCCGCCAGGAAGCTGACCTGGTCTACCTCCTGGCCCTGGTTGATCCGGCTGAAGCCATGGGGGCCAACAAGACCAATGCTATCCTGGAATTCCTGGCCCAGAAGATGCTGGCCTTTCCTGGTGTTGAAGCTAAGCTCTTCGCCATCCTGTCCAACTATCCCAGCCAGCTGACTACAGCTAAGGTGGCAATTCCTGTTAGCCTCCTCAGTAAAAAAGGGGACTTGGCAGAAGGCAGGGAGGTGGCCAAAAAGATGGCTCTGCTGGCTAAAATCGGGAGTAGCGACCCTTACCGGGCTGTAACCAATAACAAAGGGATCATGAATGGGGTAGACGCTGTTATGCTGGCGACCGGCAATGACTACCGGGCAGTTGAAGCAGCCTGCCACGCCTACGCCGCCAAAAGCGGCGAGTATCGCAGCCTCAGCTCCTGGAAAATTGCAGGGGAAAAGCTCCTTGGCCAAGTCACCCTGCCCCTGGCCTTAGGGGTAGTCGGCGGCTCCATTTCATCGCGGCCTGATATTAGACAAAGCTATGCCATTTTAGGTAAAATAAAAGCAGCTGAATTGGCAGAACTGACCGCCAGCGTTGCCCTAGCCAACAACTTCGCGGCCTTAAGCGCCATCTCCACCAAGGGGATCCAGGCTGGCCACATGCGCCTGCAGAGCCGCAACGTGGTTCAGACCCTGCCGGCATCAGCGGAAGAAAAAGCAGCTGTTTATCAAATGATGATTAGCCAGGGAAAGTATGGCGAAACAGCAGCTAAGAATTTTTTGAAAGAATTGCGAGGACAATAATTAATGGACATCGGTATTGATCAGATAGGTTTTTATACTCCTAATAAGTTTGTGGACATGGTTGATCTGGCCAACGCCAGAAACCAGGATCCCAACAAATTTTTGATCGGCATCGGCCAGGACCGGATGGCGGTCGCTGACAAGACCCAGGACGCTGTTTCCATGGGGATCAACGCGACGGCTGAATACCTTGACCAGGTTGATCTGGAGCAATTAGGCTTATTGATCTTTGCGACCGAAAGCGGGATTGATCAGTCAAAGTCAGCCTCCCTTTTTGTCAAGGAAGCACTTAACCTGCCAGCCCGGATCAGAACTTTTGAAATCAAGGAAGCCTGCTTTGCCTTGACTGCCAGCCTGCAGGTTGCCCGCGACTACGTCCGGGCCCACCCGCACCACTCGGCCATGATTATCGGCAGCGACATCGCCCGCTATGGTCTGGCCACGGCCGGCGAAGTTACCCAAGGCGCCGGGGCCATCAGCATGCTGATCAAGGAGAATCCGGCAATTATCGCCCTGGAAGACGGGCACACTTCCCACTCTGAAAACATCAATGACTTCTGGCGGCCGAACAACTTGGCCACTGCCGTTGTTGACGGCCACTACAGCCGGGATGTCTACCTGGACTTCTTCAAGAGCACTTTCAAGCCTTTCCTTGCAGAAAAGCAGCTACAAGTTTCTGACTTTGCTGGTATCTGCTACCACCTGCCTTACACCAAGATGGGTTACAAGGCCCACAAGATTGCCATTGAAGGCCAGGATGACGAAACTGTCAAGCGCCTCAGCGACAACTTCCAGCTTTCAGCCAAGTACAGCCGGCAGGTCGGCAACATCTACACGGCCAGCCTCTACATGTCTGTCTTGAGTTTGCTGGAAAACGGCGACCTTGAGGCCGGCGACCGGATCGGCTTCTTCTCTTACGGGTCTGGCGCCATGGCTGAATTCTTTAGCGGCAAGGTGGTTGCCGGCTACCAAAAGCGCCTGCGCCCAGCCTTGCACGCCCGCATGCTCAAGGAAAGAATCCGCCTTGGCGTTGGCCAATACGAAGACATCTTCACCGAAGGCTTGGAAGCCTTGCCGGAAAATGTCGAATTTACCAGCGACGCCAACCACGGTACCTGGTACTTGGCCGGCCAGGAAGGCTATGTCCGTCAATACAAGCAAAAGTAAATATGAAGCTAACCGTCTCAGCTCGCTGGGGCGGTTTTTTGATAAAAACAATCTGTATAGCAAGCGCTTAACTAGGGAGGGCGGGAAATTGCAGTCTCTTTTTATGCTAAAATGAAAAAGTTGAGAAATGCAAAGAAAAATGAAAGAAGGCAAACACGGTCAACATGAAAACCGAAAGTACTGAGCAAGAGTACCAACACCACCTCTCTCACCACCACCATATGCGGGTGCAGTGGGAAGAGTTCTTCCAAAGCGATGACGAGACCAAGATCAAGGAAGCAACCTTGATTGAAAAAGGGTCGATCATCTCCCGGGTCGGCATGATGATTCTGAGCTGCGGGACTGGGGCCTGGCGGGTCCGCGACGCCATGGACACCCTGGCCAGAACCCTGGACTTGACCTGCAGCACCGACATCGGTCTGATCTCCATCGTCTGCACCTACTTTGATGTCGACAACCAGTCATATTCCCAAAGCCTGGCCCTGCCAACCACCGGGGTCAACATGGCCAAGCTGAACGAATTGGAAAAGTTTGTCCGCCAGTTCGAAGCAGCCGGCGGTGACTTTGAAATCAAGACAGTCCGCCGCCGCTTAGGGGAAATCGAACACATGAAAGGCCGCTACCCCCTCTGGGGATCCAGCCTGGCCGCGGCTTTGGCCTGCGGCGGCTTCATTTTCCTTCTGGGCGGGGGGCTTCCTGAAATCATCTGCTCCTTTATCGGGGCGGGACTGGGCCAGTTTGCCCGGGGCAGCTTAGCCAAAAGACGGATCACGGTTGCCGCTACGACTGCCGTGGGGGTGGCAGCGGCTTGCTTGTCCTACTACCTGGCTTTCATGCTGGGCCACTTGCTCTTTAACGTCGACATGATCCATATGCGCGGCTACATTGGGGCCATGCTCTTCGTTATTCCAGGTTTTCCCTTTATTACTTCCGGTCTGGACATCGCCAAGCTGGACATGCGGTCAGGCCTGGAGCGGATGGCTTACGCCATCCTCATTATCTTGATCGCGACTGGCACTGGCTGTGTGATGGCTACGGCTCTGCAGATCAAGCCTGGCGACCTGCCGGCCTTGCACCTGTCTAAAGCAATTTTGACGGCTTGCCGCCTGTTGGCCAGCTTTTGCGGGGTCTTCGGCTTCTCCTTGATGTTCAACTCCCACCGGCGGATGGCCGCCGCGGCCGGGCTAGTGGGGGCGATTGCCAATACCATGCGCTTGTCCCTGGTTGACTTCGCCCATTTCCCGGCTCCCTTGGCCGCCTTTTTAGCCGCCCTGCTGGCTGGCCTTTTGGCCGGCTATGTCCGGGAAAAGGTTGGCTACCCGCGGATCGCCTTGACCGTGCCTTCCATTGTCATCATGGTGCCCGGCCTCTACATGTACCGGGGGATCTTCTTCTTGGCCTTGACCAATGTCGGGGCCGGGGCCACCTGGATGACTGAAGCCTTGATGCTGGTCATGTCCCTGCCTGCCGGCCTCTTGACCGCCAGAATCTTGAACGACAAGAAGTGGCGCCGGGTCGATTAACATAGAAAGAAAAAACAGCTTTTGCCCAAAAATAAGGGTAAAAGCTGTTTTTGCGTATTATTCCTGCAGGTCAGCCACCGTGGCCTTGACCAGTTCCTGCAAATCAAGCGGGTTGACCATGACGCTGCGGCCCACTTCGCCGCTGGACACCCAAATCCCGTCTTCTTTTAAGACGCTCTCATCCAAAAAGATCGGGAACTTCTTGCTGTGGTAAATGCCAATCGGCGTGTTGGCCCCGTGCACGTAGCCAGTGGTCTTTTCCAGCTGCTTGAGGGGAATCATTTCACACTTCTTGTTGCCGGAAACCTTTGCAATCTTCTTGAGGTCCAAGTGGCCGCTCAAAGGCACCACGCCGACAATCGGGCCGGTCTTGTTGCCATTGACCGCCAGGGTTTTGTAAACCGGGTGGCCGTCTAAAACCGGCTTGCCGGTCCCAACCTGGGCTACCCCGTGGTCTTCGGAAATTTCGCTGATATGCTGCTCATAGGCAATTTTATGCTGGTCGAGAATCTTTTCCACCAGGGTCTTGTCTAATTTGTCTTTATTCTTTTTCTTTTTTGACATTGTTATCACCGCTTTCCATGATACCATTTTAAGAGAAGAAGCTAAAGAAAGAAGATATAATAAAGAAAGAAGATATAATCATGAAATTACTTGAGATCAAGATTGAAAGCAGCTACGACGTTGAAGACGCCCTGGCATATTTTGCCACGGAAGACTTAAAGGCCCTGGGGACCGAAGCCCGGCGCAGAAGCGACTTTGAACAAGCCGGCTGGCTGCACGACTCAACGGTTGTTGACATGGATGACATCCCAAACCTGCCCGATGAGCTGGAATTCATTGCCTACTTTGATGAAGAAACCGACCCTGAAGAAATGGTCAAGTGCTTCAAGGACAAGCTGGCTGAGCTGGCGGGCTATGGCTTAAAGACCGCTCCTGGTGAAATCTCCGTTGACTATGTTGCTGACCAGGACTGGAACACTGTCTGGAAAAAGTACTACCACGTCATCAACTTGTCCCGCCACCTGGCCATTGTGCCGGAATGGGAAGACTACCAGCCGGCCTTTAAGGACCAGGAAATCATCCGCCTGGACCCAGGCCTGGCCTTTGGGACGGGCAACCACCAGACCACTCAGCTGGCCATGCTGGGCATTGAACGGGCCATGGTCAAGCCGCTTACTGTCGCTGACGTGGGGACGGGGTCCGGCATTTTGGCCATTGCTGCCCATAAGCTGGGGGCCAAGAGCGTTTTGGCCACGGACATTTCTGATGAATCAATGACGGCAGCTGAAGAAAACGCGGCCTTAAACGGCATCCACGACATCGCCTTGCAAAAGACCAGTTTGCTAGCTGACGTTGACGGCAAGTTTGACTTGATCGTAGCCAACATCCTGGCTGAAATCCTTTTGGACCTGATCCCGCAGCTGGACAGCCACTTAAACGAAGACGGCCAGGTCATCTTCTCCGGGATCGACTACCTGCAGCTGCCAAAAATTGAACAGGCCCTGGCAGAGAATTCCTTCCAAATCGACCTTAAGATGCGGGCTGGCCGCTGGATCGGCCTGGCAATTTCCCGCAAGCATGACTAAAATGCGTTAAAATAAAAGCAAAAGAAACTCTCATTTTTTAATAAGTAAGCCCGGTCAAGCATTCAGGCTTGTTTTCAAGGAACTTTTTGCGCTAAAATAACAGGTACTGATTAGTTAAATGTTAGAAATTGGTGATCTAGATGTCAAAGTATACTGAAATGACTCACGAGCAGGTCATGGCCGCTTGCAAGAAATACATAACGGCCGACCAATTGGCCTTTGTCGAAAGTGCCTATCAATTCGCGGCCCGGGCCCATGAGGGACAAACCAGGGCCTCTGGCCAGCCTTACATCGTCCACCCGACCCAGGTAGCAGGGATCCTGGCTAATTTAGGCCTGGACCCGGACACGGTGGCTGCCGGCTTTTTGCATGACACGGTTGAAGACACCTCGGTCACCAACGACGACATTAAGGAAAAGTTCGGCGCCGACGTGGCCTTCATCGTTGACGGGGTCACCAAGCTGAACAAGTACGAATACAAGTCCCACAAGGAATTCCTGGCGGAAAACCACCGCAAGATGCTGATCGCCATGGCGAAAGACCTCCGGGTCATCCTGGTCAAGCTGGCTGACCGCCTGCACAACATGCATACCCTGGAGCATTTACGCCCGGACAAGCAGCGCCGCATTGCCGCTGAAACCCTGGACATCTACGCACCATTGGCTGACCGACTGGGGATCGGGACCATCAAGTGGAAACTGGAAGACATGTCCTTCCACTACATGAACCCGGAAGCGTACTACAAGATTGTCTCCATGATGGACGCCAAGCGCAGTGAGCGGGAAGGCTACATCAAGGACGCCATCGACTACTTGCGGGGGACCCTGGATTCTTTAGGGATCAAGTACGACATCAGCGGCCGGCCAAAGCACATCTATTCCATCTATAAGAAGATGGTCAACAAGCACAAGAACTTCAACGAAATCTATGACTTGCTGGCTGTCCGGGTGATCGTGCCAACGGTCAAGGACTGCTACGCCGTTTTAGGGGCGGTTCACACCAAGTGGAAGCCGATGCCTGGCCGCTTTAAGGACTACATTGCCATGCCTAAGGCCAACGGCTATCAGTCCCTGCACACGACCATCATCGGCCCTGGCGGCAAGCCTTTGGAAATCCAGATCAGAACTGAAGAAATGCACAAGGTTGCTGAGTACGGTGTGGCAGCCCACTGGGCCTACAAGCGGGGCAACTTCCAAGGCGTTGATGAAAAAGAAGGCGGGGCCCTGGATATCGGCCGGGAAATCCTGGAGTTGCAGAAGGATTCCAGCGACGCTGACGAGTTCATGGAAGCCGTTCATTCGGATATTTTTGCCGACAAGGTCTATGTCTTTACGCCAAAAGGGGAAGTCTACGAACTGCCTAAAGGATCAGTCACCTTGGACTTTGCCTACGCCATCCACACCCAAGTCGGTGACCACGCCATCGGGGCTAAGGTCAACGACAAGCTGGTTCCTTTGGACTACAAGCTGAAGAACGGGGACGTGGTCGACATCTTGACCCAAAGCAATGCCCGGCCGTCAAGAGACTGGGCGGAAATGGTCAAGACCTCCCGGGCTAAGAACAAGATCCGCCGCTACTTCAGAGATGTTGACCGGGAAGAGAGCTTGGCCCGGGGCAAGAGTGAGCTGGTTGACCTGCTCAAGGAAAATGGCTTAAGCGCCAAGGACTTTTTGGACAAGAGCCACATTGACGAAGTCCTGGACCACTTCAGCTTCAAGACCGACGAAGACATGTACGCTGCTATCGGCTTTGGCAATATGTCTGCCGTATCCATCTACAACCGCTTGACGGCCGATCTGCGCCGGCAGCAGGAAGAAGAAAAGCAGAAGCAGTTTGAAGCCCAGATCATGTCCGCCGGCCAGCAGGCAGCAGCTTCCAGCGTGGTTAAAAAGCCCGCTCCGCAAAAAGACGATGCCAAGTCCAAAACCAAGGGCAAAAAGCCGGACAGCTTGGTCAGAGTCCAGGGGCTGGAAGATTTGGACATGCACTTTGCCAAGTGCTGCAACCCGGTCCCAGGCGACCTAATCGTCGGCTACGTGACCAAGGGCCGGGGGGTCACTGTCCACCGGGTTGACTGCCGGAACGTGGTCAGCGCGGACCCGGCTGCCCAAGGGCGGATGATCGATGTTGAATGGAATAACATTGACGAAGGCAAGCAGGCCAGCTTCAACGCCAACTTCGAGCTCTTTGGCTACAACCGGCAGAAGCTGCTGGGCGATGTCATCAACCGCTTGAATGCCTTGACCAAGAACATTACCAATGTTTCAGCCAGCGTCAACGAAGAAAACATTGCCCACTTCTACATCACGGTCGAAGTTAGGAATGCCGCCCAGCTGAATGACATCATGGCCAAGCTGCGGGATATTCCAGATGTTTATGACACCAAGCGAACGGACAACTAAGATAGAAGCAGGGAGATTTTTAGAAAAAATGCGCGTAGTAATTCAAAGAGTCAACCATGCCGCCGTCAGAATCGACGGCGAAACCGTCGGCCAGATCCAAAAGGGCCTGCTCTTATTAGTCGGCCTGGCTGAAGGCGATGGGGAAGAACAGGTGGTTAAGGCTGCTGATAAGATCGCCAAGATGCGGATCTTTGAAGATGAAGCAGGCAAGACTAACCTGGGTATCAAGGATGTCGGCGGCCAGATCCTGTCCGTCAGCCAGTTTACCCTCCTGGCTGATACCAAGAGGGGAAACCGGCCAAGTTTTGTCCACGCCATGCGGCCGCCTAAGTCCAGCCAGCTCTGGGAAGAATTTAACCAGGAGCTGGTTAAGCGGGGCCTGACCGTGGAAACTGGTGAATTCGGGGCAGACATGAAGGTCGAACTGGAAAACGATGGTCCTTTTACCATTGTCTTAGACCTGTAATTTTTTTCCCTCAGCCCTTGATTAGGAGGGCAAAACAGGATAAACTTAATGAGAATTATCAATGACAAAGAATGAAGATAGCCCGGCCTTTTTAGAGACTGCCCGTTTGGTGAAAGAGCAGATGGCTGCTAGCTGTGACCCTTTAGCAGATAATGGTTCGTTTCGTCAGCGTTAATGAAAGCAAGCAAAAGGTGGTACCGTGCTGTTTTCAAGCGCCCTTGATTATTAAATTCAAGGGTGCTTTTTGTTATCTTAGTCAAAACAAGGAAACAAAGGTGAAATTATGAGAGTTCAAAGACCAAAAGGCACAGTCGACATTCTCCCGGAAACGTCCGGCCAGTGGGAAAAGGTGGAACAAACCGCCCGTGACCTCTTCAAGCGGGCCAACTACCATGAAATCAGAACGCCAAGTTTTGAAAATTACGAACTCTTTTCCCGGTCATCTGGTGAAACCAGTGACGTGGTTGAAAAGGAAATGTACGATTTTGAAGACAAGGGCGGCCGCCACATCGCCCTCCGGCCAGAAGGCACGGCTGGGGTAGTGCGGGCCTACGTTGAAAACAAGATCTACGGGCCGGACTATGTCAAGCCCTTCAATGTCTACTACATTGCCGCAATGTACCGGTATGAACGCCCGCAAGCCGGCCGGCAAAGAGAATTCCACCAGATCGGGGTGGAAAGCTTTGGTTCAAACGGCTACCTGGCTGATGTTGAAACTATCCTGCTAGGCCACGACCTCCTGGCGGAACTGGGGGTCAAGAACTACGAACTGCACATCAACACTTTGGGTGACAGCGAAGTCCGCCAGGCCTACCACGATGCCCTGGTAGACTACTTTACTCCGGTTAAGGACCAGCTCTCAGAAGATTCTCAAAGACGGCTGGGCAAGAACCCCCTCCGGATCCTGGACTCCAAGGCCGAAGAAGACCAGCAGTTTTTGTCGGAAGCCCCTAAAATCAGGGACTACCTGGACGAGGAATCAAAGGAAAACTTCAACAAGATCCTGGCCAGCCTGGACAAGTTGGGCGTTAAGTACGTCATCGACGACGACCTGGTCCGGGGCCTGGACTACTACACCGGCGTGATCTTTGAATTCATGGTTGACGACCCAACTCTTTGGGCCAGCCCGTCAACTGTCCTGGGCGGTGGCCGCTACAACCACCTGGTTGAAGAATTCTCCGGCCCGGAAACCCCAGCCGTCGGCTTCGGGATCGGGGAAGAAAGACTGATGCTGGTTCTATCCAAGCAGAATCCGGAAATGTTTGAAGATCAAGGGATCGACTTCTTCATCACCAATATCGGTGAAGGCACGGACATTAAGGCCGTGGAAGTTGCCCGCCAGCTCCGCTCTCTTGGCTTCAGCGCCCAATACGACGTTGACCAGAAGAAGCTCAAGGCCCAGTTCAGAAAGGCTGACCGGGTCGGGGCCCGCTATGTCGTGACTCTGGGGGCCAAGGAACTGGCTGAAGGGAAATTAACCGTCAAGCGCTTGAGCGATGGGCAGCAGTTCAGCCTGGAATTTACTGACTTGGAAGACAAGACCAACCTGCTTTCTAAGATCGAAAAATAGGAGATTTTTAGCAAAATGATGCAAATGGAAAAAAGAACTGATTATTGTGGAAACATTACCAGCCAGTACCTGGACCAAGACGTCCTTCTTTACGGCTGGGTGCAAAGAGTCCGGAACCTGGGCCAGCTGATCTTTATCGACCTGCGCGACCGGGAAGGGATCGTTCAAGTCGTGGTCAACCATGACTCCGGTCAGGAACTGATGGATGTCGCTTCTTCTCTGGGCCAGGAATACGTGGTCGAAGTCAAGGGGCACGTTAACGAACGTTCCAGCAAGAACCCGGACATGAAGACCGGGGACGTGGAAGTCATTGCCAGCGAAATCACTGTTTTGAACAAGGCTAAGACTCCGCCATTTGAAATCAAGGATGACCTGGTTGCCAGCGAACAGACCCGGCTGAAGTACCGCTACCTGGACTTGCGCCGGCCAACCCTGCAAAACGCCTTGATCATGCGGGCCCAGATCATGACCGCTACCAATGCCTACCTGTCAGGGGAAGGTTTCATTAACATTGAAACCCCGGACCTGGGCAAGTCAACGCCGGAAGGTGCCCGGGACTACCTGGTTCCTTCCCGGGTTTACCCAGGCTCCTTCTACGCCTTGCCGCAGTCACCGCAAATCTTCAAGCAGCTCTTGATGGGGGCCGGCTTTGACAAGTACTACCAGATCGCCCGCTGCTTCAGAGACGAAGACTTGCGTGGGGACCGGCAGCCGGAATTCACCCAGATCGACCTGGAAACTTCCTTCATGGATGAAGAAGGCGTCCAGGAAGTAACTGAAGGCCTCTTGGCTAAGGTTATGAAGGATGTTAAGGGGATCGACCTACAGCTGCCGCTGCCGCGGATCACTTGGCAGGAATCCATGGACAAGTACGGCTGCGACAAGCCGGACACCCGTTACGAAATGCTGATCCATGACTTGGGCAATGTTTTTGCCAAGTCTGGCTTCAAGGTCTTCGCTTCTGCCCTGGAAAACGGCGGCTTTGTCCGCGGGATTGCAGTTAAGGGCGGGGCTAAGTTCTACTCCCGCAAGAAGATCGAAGCCATGCAGGACTACATCAAGCGTTACCACGCCAAGGGCCTGGCCTGGGTTAAGTATGAAGACGGCGACTTCTCCGGTCCTGTTTCCCGCTTCTTGAGCGAGGAAGAAAAGGCCGGCCTGGTTCAGGAATTCAGCCTGGAAGGCGGGGAACTCCTCCTCTTCATCGCTGACCAATGGAAGGTCTGCTGTGACTCCCTGGACTACCTGCGCCGGCAAACTGCCAAGGAAACTGGCATCATTCCAAAGGACACTTACAAGTACCTCTGGGTTGTTGACTGGCCGCTCTTTGAATACGACGAAGGCGACGAGCGCTGGATTGCTGCGCACCACCCATTCACCATGCCAGACGACAAGGGGATTGAACTCCTGGAAACTGATCCGCACAAGGCTCACGCCCGCAGCTACGACATCGTTTTGAACGGCTACGAACTGGGCGGCGGCTCCATCCGGATCCACAAACGGGACATCCAGGAAAAGATGTTCAAGGCCCTGGGCTTCACCAAAGAACGGGCCTACGAACAATTCGGCTTCTTGATGGACGCTCTGGACATGGGCTTCCCGCCGCACGCCGGCCTGGCTATCGGCTTGGACCGCTTTGCCATGCTTTTGGCTGGCAAGGACAACATTCGTGACGTCATTGCCTTCCCGAAGAACGCTAGCGCCAGCGAACCAATGATGCACGCCCCGGCTCCAGTTGCTGACCAGCAATTGACCGACCTAGGCATCGAAGTAGCTGAAGCAGCCAAGGAAGGCGTTGAAAAGTACGAAGCTTCCTTGGAAGCTGAAGCAGCTGAAGACGTTAACTCCCACGAAGAATAAAAAAGCTGAAAAAGCGCAAAAAAATAGTTCAAGATCCGAAAAAAGATCTTGAACTATTTTTCTTTGCCAACATTTAATTATCTGAATTATCGATAGTTTCTTCTGGCAGGTCTTCAGTCGTGTTGACATCATCGTCAGCCGTAGACTTGCTGGTGGTCGTGCTGCTCTTCTTAGGCGTATAGCTGGAAGAGCCAGTTGAAGTAGATGACTTAGTGGAGCTCTTGGAGCTGCTTGGGCTGGAGTAGCTGTAGCTATAAGTTGAGTTGCTGTAAGTTGAGTTGCTGTAAGCTGACCCCCAAGTAGAGTCAGAGTTTGAACTGTTTGAGCTCTTCGCCGACTTCTTCTTGCTGGACTTGGCCTGGCTGGAATAGCTGTAGCTTGAGCTGGATAATTCTTCACTTGAAGAGCTTGAAGAATCACTTGAGGACTCTTCACTCGAAGATGATTGGCTCATGTCTTCTGAAGAGCTGGATGAACTGGATGATTTCTTTTTGCTCTTCTTGCTCTTGCGTTTAGCCTTGCTTGATGATTCAGACTTTTCGTCTTCCTTGTCGGCCTTGGCCTTTTCCGACTTGCTGTAGACCTTGTAGGTCTTGCTGCTGCCAGCGCACTGACTGCTCTTGTCAGCCTGGCTTTGGTGATAAAAGACAGCTGCCCCGACTAAAGCGAGTTCAGCGGCAAGGATGCCGGCCAGCATTGGTTTGCGCATTGCATTTCCTTCCAACACAATTTGGCCGAATTAGACCAACTTAGTAAATATAGTATACCACGCCTGGCGGCTGTAAGCATAAGAAAGGCTTGTTTTCTATCAATAAATGCTGATGTTTTCTGCGTTGCCAAGCAATTACCGCTTGAATTATAATGACTTAAACTTCCCATACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAATGATGGCGATATAGCCTCTTGCATGTACTTCGGGAGGCGTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGTCGGTTGGAAGATCTCTTTCACACTCTCAAACATGGCTTCCACCAGGATCTGAAGGGAGTGATGGAAAGTGATGTCCGCAAGCTCGTCTACCATGCAATAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAGTAAAACGGGCAGCTTCACCATTCAATTGAGAATCTCGTCTAAGTATGTTGGCTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAACGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAAGCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAGCACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGTCCTCAGATTCCCACACCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAGGGCTTAACCGGTATTGGTAAAAAACGCGCTAACGACATAGCGCAAAGTCTTATTCGGTTGGCTAAAGTCGCATGCCCAGCTGTCAAAAAGAACAGTGCTCATATTCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAACCCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATAATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAGAGCTCGCCTATTGTCCTGTCATCTTCATCATCTCGCTTCTCAACTGACATGAACATGTAGCACAGAAAGACGAAAGCTATATGGGCAGTCAATGCATCATATGACAGGCCATGGTATTCAGTGCCACGCTTTAAGAAACTCTTGCAGGTCTTGAAGAAGACCTCGATGTCCCATCTTTTGCCGTAAATTCTGATGATCTCATTTTCATCGATCGTCATGTCTGTGCAAATAAGAGCGATCCAGTCTTTGCGGTTGGAACGATTTCTTACGCAGACTATTCTGGCATCAATCTGGGCACCATCTTTGGCAGGATCTCCAACCTTTACAGGGACGGACAGGAGATATCTTGAACGACCTCGACGCTTCTTGCATGCGTTGAAGATCTGCTTGACGTTCATCCGCTTTCCTTCGAACTCGTATGTGATCTTGGAGCTTTTCTTCACCATGGCAATTACGTTCAAACCACGTTGACTGATTTGGACAATCTGATGAGGATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCAGCTGGATAACTACATCGGTCCCCTTTGATTGGGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTCGATCTTCTTGGTCGTCCCGATGACATTCTGATCGTTCTTTGAGGACAAGAGTGATGAAGCGATTGGAACGAAGGAGGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTAGGTCATCGAAACGTGGTCGAATACTTTGGCAGCCGGCTCAGTCTTCTTGTATCCAGTTCTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGATCAGAAGTCAGATCTTTCAAGTGCCCATTGACGATCCTCTCAGCTAGCAGAATAGTGAAGCGAAGCCAGTTGAAGCCAGTTGATATGTGGGTTCTGCATGAATCTATAGTAGGTGTTTTTGGAGAAGCCAGCAGTACACTTGCCATACTTCTGTTGCATGTACATGCTTCTGTCTGGAAACACATTACTGAAGATGTATGAAAGGACCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGGGCAATTTTAGGTTCGTTTTCAGTATCGAATAATGGTAAACTAGACATAGCACAAGCCTTTCGCTTGATACTGATGATGTTTTGGTCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTAATGATTTTAAGAAAAAATATTCTCAAATTGCGTCAGTCAGCCTAGCTTGTCCGAACAATAGAAAAATGAAAGGGAGAAAAAGATGAAACGGAAGTATCTTTGGGTCCTGGCTTTATTTTTGGCCAGCTTTTCGGCTGTTTTTTTACCGGAAAAAGTTTTTGCCGATTATGACCTGACCAAGATGGATGTCACGGCAATTGTTAATTCTGACGGGTCTTTGTCAATGACCCGGAAGATCGTCTATGACTTTGACGATTCAGCTAACGGGGTTTATTACACCCAGAACTTAGCCAGCGGGCAGAAGGTTAGCGGGCAGAGCGTCGAGGTCAAAGACTTGGCCAGCGGAAAGACGGTCAAGCCGGCCTTGAACAACCAGGCGGACAGCGGCAATGTCTACCACTTCAATAAAGACGGCAATTCCTATAAGTTCAAGGTTTACCACCATGTTGACGATGGAAAGGTCCAGGTGGTTTACCGCTACAAGATTTCTGGAGCAGTTGACAGCTACGAAGACGCTTCTGAACTGAACTTCAAGATTGTCGGGGACGGCTGGGATAAAGAGATTTCCAATGTCACGGCGACTGTCCGCTTCCAGGATAAAAAGCTGTCCTTCTTGAAAGGCTGGGCCCATGTCAATGCTAACGGCCATTTGACCGTTGACAAGGAAAAGGGCCTGGTTAAAGCGGAAGTAGCCACTTTGCCGGAGGCGACTTTTCTGGAGCTGCACCTGCTTTTTCCAAACAGTTTAGTCAGCCAGAATAAAAAACAGCATTCCGGAGAAATCGCGGCTAAAGTCGTGGACCAGGAAAAAGCGCTGGCTAAGGAAACTGCCGCAAAAAAGGCCCGCCACAACGTTTATGAATTGATCGGCCTGGCTCTTTTTGCTTTATTACCGCTCCTTTATCTGCCGGTCTTTATCAAGAGCAGAAAGTCAGGCAGCCCGGTCAAGGCCAAGAAAGAAATCGGCCACAATTTTGAAATTCCCGCCTTCAGCCCGACCACGGCCCAGATCCTGGTGACCAAAAAAGGCCCGGACGGCAAGGCCTTGGCCGGAGAAATCGCCCTCCGGGCCGGCCGGGGTGAAATTACCATCAAGGCAGGCAAGAAGGGAAAGAACTTCACCTATGCCAAGACTAGCAAGTACAAGGGAGACCTGCCGCTTTTAAACAGGCTTTTCAAAAAGGTTGGCAACGGGCAAAGTTTCAGCAACAAGGACTTAAAGCAATATAGAGGCAGCCAGGGGATTACTTCCAGCTTCAAAAGCTGGAAGGAGGACAGCCAAAAGGCCTTGATCAAGGATGGCTACATTGACCAGTACTTGCAGGACCGGGAGAAGCTTTTGTCCCTCTATACTTTTGGCGTGATGTTTGTGTCAGTGGCAGCCATCGTCGTCTGCTTCTTCCTTTATGACAAATATACCTTCTGGCTCTTTCCGGCCATCCTCTGGGTTCTGGCAATTTTTGGTCTGGCCTGCCTGCGCCTGCACCACTTCTCCGACTTGACGGGAAAGGGGGCAAGGGCAACTGAACAGGCTTTAGGCTTTGAAGCCATGCTGGATGACATCGGCCAGTTCAAGCTGCGCGACATCGGGGAACTGACCCTCTGGGAGCAGGTCATGCCTTATGCCATTGCTTTTGGCCTGGCCAAGAAGGTCCTCAAGCAGCTGAAGCTGGAATTCTCGGAAGAGATCGCGGCCGACCCTTACTGGACCTACTACTATGCCGGTGCCAGCTACGGAGCCTTTGCCTCCAGCTTTGATGAGGCGATTTCTTCTTCAGCTGGCTCAGGCGGCAACTTCTCGGCCTCCAGCGCCTCCAGCGGCGGTTTTGGGGGCGGCAGCGGCGGCGGTGCCTTCTGATTTGTTTTTTCTGGTGAAAAAGTTTACAATGAACAAAATAGTTTTCCGGAAATTAATTAGTTGGGGAAGGCACTATGGAAGCCAGTTTATGGAACAGATTTAAAAACAACATTCACTTGCGCCGAGCAACGGTCCTGGTCATGATCATTCTGGCCCTGTACTATGTGCGGGCGATGATGAACACGATCCTGCTCACCTTTATCTTTACCTACTTGATCCTTCACCTGGTCAGGTTCGTCCAGGGGAAATTCAAGCATGTTTCTGACAAATTGATTGTCGCTTTGACCTATCTTTTGATTGTCGTCCTGCTTTACTTTGCCCTGCGCTACTATGTCCCGGTTTTGGTCAAGCAGGTGACCAAGATGACCAAGTCGGTGATCAACTATTACCAGACCAATGACGTGGGTTGGCTGATGACCCAGCTGCACAAGCATGTCTCTGAAAAAACGATTTCCAGCCAGGTCAAGAGCAGCTTAACGGCGCTGACGGCGGCCTTGAAGGGCTTCGGGTCAGTCACCATGTCCTTTGTCATGGCCCTGGTCTTGAGCTTCTTTTACACGATTGAGTTAAAAGAAATGCAGACCTTCAGCCAGTCTTTTTTGAAGTCCGACCTCTTTGGCTGGTTTTTTGAAGACATTGCCTACTTTGGCCGCAAGTTTACCAATACCTTCGGGGTGGTGCTGGAAGCCCAGTTCTTGATTGCCATCTGCAACACGACTTTGACCATTGTCTGCCTGGCCATCATGAAGATGCCGCAGATTTTTGCCCTGGGCCTCATGGTCTTCATCTGCAGCCTGGTCCCGGTGGCCGGGGTGATCATTTCCTTGATCCCTCTGTCTCTGGTGGCTTATACGGTCGGCGGGATCCAGGATGTGATCTACATTTTGATCATGATCGCTGTCCTGCACACCCTGGAAACCTATATCTTGAATCCGAAATTCATGTCCAGCAAGACGGAATTGCCGATCTTCTACACCTTCGTGGCCCTGCTCTTTGGCGAGCACTTCTTCGGCACCTGGGGCTTGATCGTCAGTGTCCCGATCTTTACTTTCTTTTTGGATATCCTGGGGGTCAAAAACATCAACAGCAAGCAGGAGAAGCTGCAGGAGGCCAGGAAGCGGATAGAGCACAAGCGGCTGGAAAAATAGCATAAGATTTTTAAAAAATAATAACTTAGTCGACAGACTCGGAGCAAATGCCTCCGGGTCTTTTCTTTTTGCCAGCAAAAAAATAAAAAAGAAAAAAGCTATACATGGGCCAGGTACGCAAAAAAATAAAATTTTTTTGCTATCTAAAAACCCTTATGAATACTGGCTTTATAAGGATTTTGTACACTATACAGTACGTGAATAGCATTGACATTTTTTAGGCGAGGACTATACTTTGTACATATCGATAAAATTATAGTTTTGAACAGGAAAGGGGTTTGCCTTGACTTACGCCAGAATTGCAAAAAGCAGCCGTTACCTGTCCGAATTCGCGGTCAGTAATGACGACTTAAGCCAGATCATGGAGACCAGTGACGAGTGGATTAAGACCCGGACCGGGATTTCCAGCCGGCGGATCAGTCAACAGGAAAACACCTCGGACCTGGCCATCCAGGTGGCCAAGCAGCTCCTGGCTGGCGAGGATCCGGCAGGGGTTGACTTGATCATTGTCGCGACCATGTCGCCAGACGCCTACACCCCGGCCACGGCGGCCCTGGTTCAAGCAGCGGTTGGGGCGGAAAACGCGGCCTGCTTTGACCTGTCAGCTGCCTGCTCCGGTTTCGTCTATGCTTTAGACGTGGCGGAAAAAATGCTGCGGCGGCCGGGCGGGATGGCCCTGGTAATCGGGGCAGAAACCCTGTCCAAGCTGGTTGACTGGCAGGATAGAACGACGGCTGTCCTCTTCGGGGATGGCGCCGGCGGGGTCTTGGTCAAAAATGACGCGCTTGAGCCGCATTTCTTGGCCAGCCAGCTGAAAAGCTACGGCCACTTGGCAAAATTCCTGTCAGCTGGCCAGACCAGCCCGCAGCCCTTTCCCGGTCCGGTAACGGACCTGGCCCCCTTCAAGATGAACGGGCGGGAGGTTTACAAATTTGCCACCCACAAGGTGCCCGAAGTAATCACCGCCTGTTTAGAAGAAGCAGGCGTGGGTTTAGCGGAAGTCGACCTTTTCCTTTTGCATCAGGCCAACTACCGGATCGTCAAGCAGGTAGCCAGGAGGCTGGATTTGCCAGAGGAAAAGTTCCCCTGCAATATTGCCGAATACGGCAATACCTCAGCCGCCAGTGAAGCCATTCTCTTGGCCGAGCTGGCCGAAGAGGGGAAGGCGCAGGCGGGCGACCTGGTCGTGTTGGCCGGCTTTGGCGGGGGCTTAACCGCGGCCGCCCAGCTGGTCAGACTATAAGAATATTGGTGTTTTAGATAAGTTAGATTTGATTTTACTTTTAGTTTTTATTTTTTAAAAAGGAGTAGACACATGTCAGAAGAAGAAATTTTCGCAACTGTAAAGAAGATCGCCGTTGAAGAATTGGACGTTGAAGAAGACCAAGTGACTATGGAAGCCAACATCAAGGATGACTTGGAAGCGGACAGCCTGGACTTGTTTGAAATCGTCAACGAACTGGAAGACGAATATGACATCGAACTGGACGCTGATGAAAACACCAAGACGGTTGCCGACGTGGTAGCTTTGGTGCAAAAGCAGCTAGCTGAAAAGGACTAACAGGACCAGACCATGAAATTCGGAATTCTCTTTGCCGGCCAAGGGGCCCAGCAGGCCGGGATGGGCCTGGATTTTCTAAGTGATCCCTTGTTTAAGGAGACAATTGACCAGGCCAGCCAGGCATGCGGCTTAGACTTGCCGGAAATCTGGAAAAACGACCGCGGCCAGCTGGATGAAACCAGGTATGTGCAGCCGGCTTTGGTGGCCTTTGAATACGGAATCTGGCAAATGCTGGTCCGGGACACTGACCTGCCAGTATGCGGTCTGGCCGGCCTCTCCTTAGGCGAATACGGGGCCCTTTTAGCCAGCGGCTGTTTAACCTGGCCAGCCGGCCTGGCCCTGGTTGCCGACCGGGGTGAATACATGCAGCTTGATTCAGAAAAGACGGCCAGCGGGATGCTGGCCTTGACCAAGCCGGATCTTCCGGGCCTGGAAGACTTTTTGCGAGCAAAGCAGGCAGCTGGCCAAGCAGTCTACCTGGCCAACTACAATTCACCTAAGCAGGTTGTTCTTGCCGGAGAAAAGCAGCTTTTGCCAGAACTGGGCCAAGAAATTGCTGACCGCAAGCTGGCCAAAAGAGCAATTCCCTTGGATGTTGCCGGAGCTTTCCACACTCCCCTTTACCAGACAGCCAGCCGGAAAATGGGCCAGCGGCTGAAGGGTGAAGTTTTCAATGCGGGAACTTACCCAGTCATCAGCAATAGCACTTGCCAGCCTTTTGCCAAAGAAGATCTGGCCAAAATCCTGGAAGTTCAGCTGATGGTGCCAACTCACTTTGACGCTTGCGTCAAAGGCCTGCTGGACTTAGGCATGACGGCCAGCCTGGAAATCGGCCCTGGCCACGCCCTGTCAGCTTTTGCCAAGCAGGCGGACAAGGGCTTGCAGACCTGGCAGATCGGGAGTCTGGTTGAATACCAGCAGTTTGTAGAAGAGGAGCAGAATGGATTTACAAAATAAGCGGGTCCTGGTGACCGGGTCAACGCAAGGAATCGGGGCAGCAACTGCCTTGGCTTTTGCGCAAAAGGGCTGCCAGGTGCTCTTAAATGGTCGGCGGCCGGAATTGCCGGAGGAAATCGCTGACCAGCTGGAAGAAATTGGGGCAGACTACCAGTATTTTTCCGCTGACGTCAGCGACGAAGGCGCGGTCAAGCAGCTTTTTAAAGAAATTGGCGAGATTGACATCCTGGTCAACAATGCCGGCATTACCAAAGACCAGATTATGATCGGGATGAAGCTGGCTGACTTTGACCAGGTGATCAAGGTCAACTTGCGGTCAAGCTTTATGCTGACCCAGAAGGCCTTGAAGAAAATGCTGAAAAAGCGGTCCGGAGCCATCATCAATATGGCCAGCATCGTCGGCCAGCACGGCAACGCCGGCCAGGCAAACTACGCGGCTTCAAAGGCCGGCGTAATCGCCTTGACCCAGACCGCGGCTAAGGAAGCTGCCGGACGCGGCGTCCGCGTGAACGCGATCGCGCCGGGGATGATTGCCAGCCAAATGACTGCTGTCCTGCCAGATGAGGTCAAAGAGCAGGCACTTAGCCAAATTCCTTTGGCCCGCTTTGGCAAGGCAGAAGAAGTTGCCCAGGCGGCAGTCTTTTTGGCAGAAAACGACTATGTTACAGGCCAGACCCTGGTTGTTGACGGGGGAATGACCATTTAAGGAGAAGATATGCGAGTAGTAGTTACAGGCATGGGGGCAGTCAGCCCGAACGGCAATGGCTGCCAGGCTTTTGTTGAAAATACTTTAAATGGCGTGGTCGGCATCAAGCCGATCAAGAAGTTTGATGCCAGTGAGACCGGCATCAGCGTGGCCGGGGAAATCGATGATTTTGACGTCAGCCAGGTTGTCGGCAAGAAAAACGGCAAGCGGATGGATCTGTATTCCCAATACGCCATCCAGGCCTGCCAGGAAGCCTACGAGATGGCTGGCTTGACTCCGGAAACAGTGAAGGCGGAAGAGCTGGGCGTGATTTTCAGCTCCGGGATCGGGGGCCTGACCACGATTGAAGAGCAGGTCATCAAGGTACATGACAAGGGGCCAAAGCGGATGTCACCTTTCTTTGTCCCGATGGCCATTGCCAACATGGCGGCGGGCAATATTTCCATCCGCTTTAATGCTAAAAATATTTCTACCTCCATTGTTACCGCCTGCGCCAGTGGGACCAACTCCATCGGGGAAGCCTATCGGCAGATCAAGGAAGGCCGGGCTGAGGTCATGATTACCGGGGCTAGCGAAGCCAGCGTCAATGAAACGGCTATTTCCGGTTTCGCGGACTTGAATGCCCTGTCAACCAGCACTGACCCCCTCAAGGCGTCTTTGCCCTTTGACCAAAACCGGCACGGCTTCGTCTTAGGCGAAGGGGCTGGGGCCTTGATCCTGGAAAGCTTGGACCATGCCCAAAAGCGGGGGGCTAAGATTCTGGCTGAAGTAGTCGGCTACGGGGCAACCAGCGATGCCTACCATATCACCAGTCCTGATCCTAAAGGTGAAGGAGCAGCCAGAGCCATGCGGCTGGCGGTTGAAGAAGCTGACATCAAGCCGGACCAAGTCGGCTATATCAATGCCCATGGGACGGCGACTAAGGCTAATGACAGCGGGGAAGCCAAGGCAATTAAGGAAGTCTTTGGCGACCAGGTTCTGGTTTCCTCAACCAAGGGAATGACCGGCCACCTCTTAGGGGCCGCCGGAGCGGTTGAAGCCGTCATTACCTGCGCCAGCCTGGAAAAAGGTATCTTGCCGGCCAATGTCGGCTGCTTTGCCCAGGATCCGGAATGCCCGGTCAAATTGGTAAAGGCGGGTGACCAGGAACAAGCTGTTGACTATGCTTTGAGTAATTCCTTCGGCTTTGGCGGCCACAATGCCGTGTTAGCTTTTAGAAAGTGGGCCTGATTTTGGAAATAACAGATGTTGAAAGACTGCTGGACAAGTTTGAAAAGTCCAGCATCCGGGAAATGAAGCTGAATTTGGACGGTTCAGAGCTTTTTCTGAGCAAGAACGAATACACGCAAAAGACAGAGGCAGAAGCAGGCCCGGTTTTGCCAGCCCAAAAAGCTGAGAGTCCGCTTTTGCCAAAAGAAGCAGCTGAAGCCGCGCCGGTTGTTCAAGCAGAAAAAGCTGTATCCGGTCATGCCATCAAGTCGCCCCTGGTTGGGACGATCTATCTGCAGCCGGCCCCGGACAAGCCAGCTTTTGTGAAGGCCGGCGACCAGGTCAAGGCCGGGCAGACCGTCTGCATCGTGGAAGCCATGAAGATGATGACGGAGATCAAGAGTGATGTTTCCGGCACTGTCAAGGAGGTCTGCGTGGAAAACGAAGACCTGGTTGAATGCGAGCAAACGCTCTTTTTGATTAAGGAGGCCTAGCATGACTGTATTGGATTCCAGCCAAATACAAGAAATTATCCCCCACCGCTATCCCATGCTTTTGATTGACAAGGTCATCGACCTGGTTCCCGGCGAAAGCGCCGTGGCCATCCGCAACGTGACCAATAATGAGGCGGTTTTCCAGGGACATTTCCCGGGAAATCCTGTCTTGCCCGGGGTCTTGCTCGTGGAATCCCTGGCCCAAACCGGGGCCGTGGCCCTGTTAAGCGCCGACCGCTTCAAGGGGCAGACGGCCTATTTTGGCGGTATCAAAAACGCTAAGTTCCGCCAGATAGTTAAGCCCGGCGACCAGGTCAAGCTGGAAGTGACTTTGGAAAAGGTCAAGGGCCATATCGGCCTGGGGCAGGGAATTGCCTGGGTCGACGGGAAGAAGGCCTGCACGGCGGAATTGACCTTCATGATTTCAGGTGAGAAAAATGTTTGACAAAGTTTTAGTTGCCAACCGGGGCGAAGCCGCGGTCCGGATCATCCGGGCCCTTAAGGAAATGGGCATCAAGTCCGTCGCTATCTACTCAGTAGCTGACCGGGACAGCCTGCATGTTCAGCTGGCCGATGAAGCGGTCTGTGTGGGCGCTAGCCGCCCCAGCGACTCCTACTTGAACATTAAAAATATCATCTCAGCGGCCACCGGGACCGGGGCCCAGGCCATCCACCCGGGCTATGGCTTTTTGTCAGAAAGCGCGGAATTTGCCAGTCTTTGCGCGGCCTGCGGTTTGACCTTTATCGGGCCAAAGGCGGAAACCATCGACCAGATGGGCAATAAGGAACACGCCCGCCAGCTGATGATCAAGCACAAGGTGCCGGTTACCCCAGGCAGCCGGGACTTTATCAAGTCACCGGAAGAAGCTAAAAAGGTTGCTGCTGAAGTCGGCTACCCGGTCTTATTGAAGGCCGCGGCCGGCGGAGGCGGGAAGGGGATCCGGCAGGTTAAAGAGCCTGGTGAAATGGCTGACGCTTTCAGCCTGGCCCAAAATGAAGCCCGTCTGGATTTTGGAAATGACCAGATGTATCTGGAAAAGGTCTTGACCAATGTCAAGCACATTGAAGTCCAGGTCATCCGGGACAGCTTTGGCAGCTGCGTCTACTTCCCGGAAAGAGACTGCAGCCTGCAGCGGCGCAAGCAAAAGGTGATCGAGGAGAGCCCTTGTGAACTGATCAGTGAAAGCGAGCGGGAAAAACTGGGCCAGATTGCTGTCCGGGCCGCCGAAGCAGCTGATTATCTGAATACGGGGACGATTGAATTTTTGATGGATCAGGACCATAATTTCTACTTTATGGAAATGAACACCCGCCTGCAGGTAGAACACACGGTAACGGAAATGGTTACCGGCGTTGACCTGGTTAAGGCCCAGATCCTGGTCGCGGCTGGGGAAAAGCTGCCTTTTAAGCAGGCAGACTTAGGTTTTAAAGGCAATGCTATCGAATGCCGGATCAACGCTGAAGATTCCAGCCGGGACTTCATGCCGTCAACCGGCCAGGTCGACTACCTCTTTTTGCCAGTCGGCAACCCGGGCATGCGGATTGATTCCGCCCTTTACCAGGGCATGGTGGTTTCGCCATTTTACGATTCCATGCTGGCTAAAATCATCGCCTTGGGCAGCAGCCGGCAAGAAGCAGTTGCCCGGATGCAGCGGCTTTTAAATGAGCTGGTGATCCGGGGGGTCAAGACCAACAAGGACTTTCACCTGGCCATTCTGGCTGATTCGGAATTTAAGCAAGGGACTTTCACCAATACTTATTTAGAGAGGGAATTTTTGCCCCGCTGGAAGGAGCAGGTAGACAAGCATGAGGCTGTTTAAAAAAAGAAACACGATCTCTGAGCGGCATGTCAAGGCTAATAAAAGGGCGGAAGACCTGGTGCCGAGCGGTTTGATGAAGCGGTGCCCGAATTGCGGGCTGGAATTTTTCGCCAGACGCCTGGATAAGTACAAGACCTGCCCGGACTGCGATTACGGATTCCGCTTGACCGCCAGGGAACGCCTGGCCTGGCTCTGCGAGGAAAGCGAGGAGTGGTTTAAAGATATTCAGCCCAGTGACCCCCTCCATTTTCCCAATTATGAGGCGAAAGTTGCCGCTGGAAAGAAAAAGACTGGCTTAAATGAAGCGGTTTGGACCGGCCTGGCCAAAATTGGCGGGCAGGAGACAGCCCTGGCCATCATGGATCCCTTTTTTATCATGGGTTCTTTAGGCCAGATGACCGGGGAAAAGCTGACCCGGCTCATTGAGGCAGCTACTGAAAAACGGCTGCCGGTCGTGGTCTTTACAGCCAGCGGCGGGGCCCGGATGCAGGAAGGAATCTACTCTTTGATGCAGATGGCTAAAGTGGTTAATGCGATTAACCGGCATAAGGCAGCCGGTCTCTTATACCTGGTTGTTTTGACCGACCCGACTACCGGCGGGGTGACGGCCAGCTTTGCCAGTGAAGGTGACATTACTCTGGCTGAAGCTCACGCCATGGTGGCCTTTGCCGGCCGCCGGGTGATTGAGCAGACCATCCATGAGCAGCTGCCAAAAGATGCCCAGCGGGCAGAAACGGTCTTAAAGCACGGCTTTATCGACCGGATCGTTTTGCGGCAGGAGGAAAAAGAGACCCTGGCCTGGCTGTTAAAGTACGGAGGGATGCAGGATGACTGATGCTATGGAAACGGTCCGGGCCGCCCGGGCCAGTGATAAATTGTCGGCTCACTATCTGCGGGAGCACTTGTTCAGCGACTTTGTGGAGCTGCATGGGGACCGGCAGGGGGCAGATGACCCGGCCATCGTTGGGGGGATCGGCCTGTTTGCCGGTCAGCCAGTGACCGTGATCACCACCAGCCGGGGATATAAGCTGGAAGAGCGCCTGGCCAAGCACTTTGGCCAGCCGGAACCAGCCGGCTACCGGAAGGCGGCCCGCTTGGTCAAAGATGCGGCCCGCTTTAAGCGGCCGGTTCTCCTTTTTATCGATACGGCAGGGGCCTTTCCCGGTAAAGAGGCCGAATATGCCGGCCAGGGGCAGGCGATTGCCCAGTGCTTGACGGATATTGGCCAGGCGGAAACGCCAATTATCAGCGTGATTTTCGGCGAAGGCGGATCTGGCGGGGCCCTGGCTTTGGCTTGCGGGGATGAGCTTTGGATGATGGAAAATTCCATGTATTCAGTCCTGTCTCCGGAAGGTTTTGCTTCCATCCTGTGGAAGGACGCCAGCCGGGCGGCTGAAGCAGCAGAGCTTTTGGGCTTGACGCCGGAATCCCTGCTCAAGGGGCAGGTGATCGAAGGCGTGATCAAGCAAGAAGGCAGCAAGTCTGCCCAGTGCCGAGAAATTGCCCGGGTCTTGGAAGAAGAATTAGCAAAATTGAAAAAGCTACCGGTCAGCAGTCTGCTTAACCGGCGCTATGAACGTTTCAGAAAGTTTTAGGTGAAGAAGATGGCAGGAATTTTATCTGGAAAAAAGTTTTTGGTAATGGGCGTGGCCAACAAGCGGTCCATTGCCTGGGGCTGCGCTGAGCAAATCAAGGCTCAGGGCGGGGAAGTGGTCTACAGTTACCAAAATGACCGCCTGGAAAAGAGCCTGCTCAAGCTGGGCCTGGCGGAAGAAGAAATGGTTGAATGTGATGTGGCCAGCGATGAGAGCATTGACGCGGCTTTTGACCAAGTGAAGGAAAAGTTCGGCCAGATCGACGGCCTGGTTCACGCGGTAGCTTTTGCCCCGAAAAATGAACTGGTAGGGTCCATCCTCAATTCCAGCCGGGAAGGCTACTTGACTGCCCAAAATATTTCCAGCTACTCCTTGATCGCCGTGGCTAAGGCTGCCCAGGAAAAGGAACTTTTGGCCCCTAAGGCTTCAATCGTTACCTTGACCTTCATCGGGTCGGAAAGAGCCATCACCAATTACAACACGATTGGGATTGCCAAGGCGGCTTTGGAAAGTTCTGTCCGCTACCTGGCCCGGGATCTGGGCAAGACTGGCAGCCGGGTCAACGCAATTTCTGCCGGGGCCATGAAGACTTTGGCCGTTACGGGGATTGCCGGAAACAAGGATCTCTTGGAGCAGTCCCGGTCCTTGACGGTTGATGGGGTCAGTGTCAGCCTGGAAGAAGTGGGTAACTGCTGCGCCTTCCTGCTCAGTGACCTGTCAACCGGCCTGACTGGCGACATCATCTACGTTGACAAGGGCGTTCACCTCTCCTAGGAGGCCGCGATGGAGATTTACTGCTACCCGGTCCTGCCTTCAACGCAAGATCTGGCTAAAAAGCTGCTGGAAAAGAAAAAGCCGCCTTTTGCCGTTAGTGCTTTAGAGCAGACGCAGGGCTACGGCAAGCAGGGGCGGACCTTTTATTCACCGAAAAATGGCCTTTACCTGTCAGTTTGCCTGGAAAAGCAAGAGAATCCCTTGCTGACCTTGGCGGTTGGGACAGCGGTAGCTGACTTCCTGCGGGCCAGGTACGGCTTAGAGATTGGCCTCAAGTGGGCCAATGATCTTTTTTATCAAGGGAAAAAAGTTGCCGGCATCTTGACTGAGCAGGTGGCAGGCGGGATAGTAGTTGGCCTGGGCCTCAACTTAGGCGCGGAACTCCCGACCAGCCTGCCCCAAGCGACCCGCTTGCTGGAAGCGGGGGATTTTGATCCGCTTTTGGCAGATGATTTGGCCTGTGTGATCTGCCGGGCTGCCAGCTGGCAGGATTGCCTGCCCCGCTACCGGGAATTGAGCATCTTGACTGGCAGGAGGGTTACTTTGAAAATTGCTGGGCGGACCATCTTCGGCACTTGCGCCGGCTTTGATGACCAGGGCCGGCTTTTGCTGGAAAAAGGCGGGAAGATTAGTGCCTGGTCCAGCGGGGAAGTAATTAAGACAAGTTTTTTGTAAAAAGCCCTTCCCTTTTCCGAAAACTTTTGCTATTATAAATATTGTTATCGGAAAGCCCACTTGGCGGAATTGGCAGACGCGCAGCGTTCAGGTCGCTGTTCTGGCAACAGAGTGAAGGTTCGACTCCTTTAGTGGGCATGACGCGAGCAAGTAGAAAAAATGCTTGCTTTTTTTATTTTTTATTTTCTATCTCCAGCTTATTTTTCAGATCAAAAAAGAGCTCCCGGAATCCGGGAGCTCTTTTGCTTTAGTTAAAGTTCTGGGCTTTTTTGGCGACCAGCTTGTTCTTCTGGAAGGTAACGTAGAAGTTGGCCTGGTCGTCGCTCTTCAGGCCGCTGGTGTAGAGCCAGAGGACCACTTCAGAATTGGAATAGTCAGATTCTGAGTAGCCGTTGGGCTTGCCGACAATGGCTTCGACTTCCTCTTGGGTCATCCCCTTTTTGAGGGACTTGTAGTCTTTGGGTGTAATTTGCTTGGACCGGTTGACGACCAGGCCGGAAATCTGCTTGGCGATAGCCACCCCGTTGGCGAATTCAACGGCCAGGTTGGCGCCGGCACTGCCGTTTTGGACCCCTTCCCAAGTGTAGATGGTGGCTTTGAGCTTGCTGGTTTTGGCCTTGCTCTTGGCGTCAGCTTCCCGGCCCAGGAGGTCAGTTACCTGGCTGGGAGTAGACCCGGTCTTTTCAACGACCTTGATCTTCTTGTAATTAGTGAGATTGATCTTGTTGCTGTTCTGCTTGACGACATTGGAGCTGGAAATTGAGCTCGCGGCCTTCTTGTCGCTTTCGCTGTCAGTCGTGGCCTTTTTGCTGGAGCAGGCAGTCAGAGCCAGGGCCGCAAAAGCAATCAAGAGAACTTTCTTTTTCATGACATCCTCCATTTTTTCGTTCTAGAATTTTCATCCCTTTTATTTTAGGCATTAAGAGCGGTCTTGTCCACGCCGGCAAGTAATTCTTAAGAGACCTTTTTGATAACTCGAAGGAAATAAATATATTTTGAACGCAAATGACGTTTTACCTGTTAGCGCTTTGTCAATAATCCAAGCTGGATTAAAATAAAGTTAGATAAGTGCAAATTACTTATAAGATGACGCAATTGCAATTTTTCCAAAAAATAAAAGGGGAGATTGAAAAATGCGCAAGGAAGCAAGAAAAAGGAAAAAGCTGGACAAGATCGGCTGGGGGATCGTGACTGTCGTCATTGTCCTTGCCTTGCTTTCAGCCGGCTGGCTGACCTACCGGGCAGTGCAAGTAGCCCGCCTTAGCCGGCAGGTTGACGTGAAAGTTGATGGCACAAAAGAATTGAAGAGCGGGAGGGCTTCAGCTAAGCTGCTGGCCAAATATGCCGCGGCTGAGCCAGCTGACCAAGGGGGCTAAGCAAAGGTCAGTGGCTTTAGTCTTCGCTGGTTTAACCGACAGCCAGGAAAGCATGAAAAGATCCTGGGCTACCTCAAAAAAGCTGGCCTTTCTGCATCTTTCGCTCTGCCAGCCGCCCGGGCCCGGGAAAACGACGTGCTGATCAAAGACCTGGTGAAAAGCCGCCAGTAGCTGATCGGAAGCGGTATCTTGGGAACAGAAGGCAGCCAGCTTGCCGGCAATTGCCCCTAAAAAGGCCCTGATCAAGGCCAAAAGCCAGGCCAGCACTTTTTCCAGCCTGGCTAAAAACAGGCAGGCCGTCTCCAGACTCCGCTTTAGCCGGGGAGCAATTAAGGGAATCAACCTGGGCTACTATGAGGCGGACCAGGTCCGGTAAAAAGGGGAGAAAACCGTCATGGGGCAGATGGTGCAAGACCTGCTTAAAAACAAGCTGGATGCTGTTGCCTATCATCCCCGGGTGAAAAAGATAGAAACTGCAAGTTGCTACAAATTGAAAACGGTCAGCCAGTTTAAGTCCTCTAAAGACTGCTATAGCTTTAACAAACAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGAGAATCTCGTCTAAGTATGTTGACTGTTAAAGTACTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGGAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGCACCCGCAACGGCTGGCCTACGTTCAAAACAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAACCAACAGGAATAGACTGCACAAAGCCATTCAGCTCACTTTCCCAGAGATTGAGCACTTAATGGTTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTATCTGGTATTGGTAAAAAGCGCGCTAATGACATAACGCAAAACCTTATTCGTTTGGCTAAAGTCGCATGCCCAGCGGTCAAAAAGAACAGTTCTCATATTCGTGGCCTCAAAATGGCTATTAACAACACTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGAGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACCTGTCAATTTCAAAGCGTGGGACGGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGTGGGAAACCCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAGAGCGAGCTGATAGAGGCCGGCAAGCGGAACTTGACCAAGCTTAAGCCCTACTGGCGGGAGTTTGCTTATGCATCATGCACTCCAACACCAGCCGCTACGGGGACAATGCTAATGTCTCAAGCGCTAACGCGGCCAGTCTGGAAAAGATGTTCAAGCTGAACGTCAACCGGGAAGGCTTTTCCTACAATAATCGGAAGTCCTTATGACTTGACCCGCCTTCAGCCTCAAGCCTGGTGGTACACCAACCACCTTTTGATGCGGGTTAAAGACGACTTGCCGGCTAAAGAGCAGAAGCAGATCAAGTTCCTCAAGGGCAGCCAGCGCCGCTGCAAAAAATGGCAGCTGGTCAAAGGGGCGGCGGAATTCAAACAGAATTTGATTGCCTTGACTTCTGAATCGGAGAGCAATGGCCTTTTGACTTTAAAAAAGGCGAAAGTGGGCGACTGCAAGCTGAACTGCGAATTTTTGGGCAACAAGATCGGCCAGCAGACGGTCTACTTGAAAACCCAGGGAACCGCATCTGGCAAGCATAATTTTTCCAGCTACTTGTCTCTGTCTTTAGAAAACAACATTCTCTACCTGTGGCAAAAACAGGGCGGGGCAATCAAGACCCTGTACAAGGTTGACATGTTCAAGCTGGAGGACGACAAGCCGGTCTCCGTGCCTGAGGACAAGCGGGCGGTTTTAAGTTCAGAACTGAATGTCCGCGGCCGCTTTGCCCAAAACAGCACAACAGCTGCTTTATACAAGCTCAAGGCTTTTAAAAAGAAACGGCAGAAGGCCAAGAGCGTCAAAGAAGAGGCAAAGGAGTATGTCCCGGAAATCCAGCTCCAGGATCCAGGCGATGTTAAAGCTGAGCTGACTGTTAAAGGGAGCAGCTTAACTTTAACGGTTAATGGCCAAAAGCTCTGCTAGCGGCAGATCAAGGAGCAAGCAGCCGGCGGGGTGGCCCTGGAGAGTGGGCTTTGGCCAAAGCCAGCGCAATATCGCTGACGACGTTTATGACGGAGCCGTCAAAGACCTTGTCATCACCAGACTGGTCCGGGTCTCATGCTTGAATTTGACGATCCGCTTTCTGATATCGACAAACTTCTGCTGCAGTTCCTTGATGAGCTCGCTCACATTGTCGTAGATGTCCAGCCAGCCATCTTCCTGGTCCAGGCTGTATTCGTAGATGTAGCGGGCGATCTTGGAGACGTCCAGGGCGCTGCCGCCGCCGATGGCGATAATGGTATCTGGTGCAAACTTCTTCATCTGCTTGGCAATCTTGATCGCCTGGCTCAGCGGCGGGTCAGGCAAGACTTCACTGTAGATGGCCGTGTCGACCTGCTTGTCTTTTAAAGCCAGCTGTTCATAGACCTTGTCAACGAAGTGGAACTTGACCATGCCCAGGTCAGCGACGATAAAGGCCCGGCTGATTTCCTGCTCATTTTCATCTGAAAGATAGGTAATGAAGTCTTTTTCGTAAAAATCTTCTCCGGCAGGCGGATCCATTGCGGCCGGTTCCGCCGCTTGGCAATGGTCTTGATGTTCAAGAGGTCGCTGGTCGACAGGTTGTGAGACAGGGAGTTCTTCCCCCATGAACCAGTCCCCAAAATCAAGCTTGGCCGCAGGCCATCACTATAGATATCGCCGATCCCGCCCAAAGCGTCCGGCTGGTTAACCAGGACTCTGGAAGCTTGGACTGCCTTGCCGTATTCATCGATGAACGGATCGTTTTGGGAGCCGATTTGGATGGCGGCATTGTGGCCAGCACCTTGGTAGTCAAGCAGGGCTTTGACGATTCTGATCCCGTCTTCCCGATCCTTGGCCTTGTAAACTGACAGAAGCGGGGAGAGTTTTTCGGATGACAGCTTTTCGCCAATATTCTTTGGATCCAGTTCAAAGAGGAGGACATCCTTGCCTTCAGACAGGGTAACGCCGGCGTGTTCACAAATCCAGCGGGCGCTCATCCCGGCTACTGGCCCATTGACCCCATGCTTGTCATTGAAGACGAAGTCGGCCAGCTTTTGGTAGTCTTTCTTTGGAACCAGGTAGGCACCCTTGTCCTGTATCATTTGCAGCCACTTGTCGTAGATCGGTGCTTCAACTACGGCTGAGTTTTCAGTCGCGCAAACCATGCTGTTGTCAAAACGCTTGGACAAAAGTATGTCTTCAACAGCCCGGTCCAAAAAGGCGGTGTGGTCGATGTAAACAGCACCGTTGCCGGCCCCGACCCCCATTGACGGGTTGCCAGACTGCAGCGCGGCGTGCACCATGCCGGTACCACCAGTTGCCAAAAATAGAAGCGATCTTTGGGTTGCGGATCAAGGCAGTGGTGTTTTTCCAGGCTGGCCTTGTGGATCCATTGAATGATGTTCTTTGGGGCACCGGCCTTTAAAGCAGCGTCATACAAGATCTGGGCAGCATGGATTGAACACTTCTGGGCCTTCGGGTGGAAGGAGAAGATGATGGCGTTTCTGGTCTTCAAAGCTACCAGGATCTTGAACATGGTCGTTGAGGTCGGGTTGGTGGTTGGCACGATCCCGGCTAAAACGCCAAGAGGAGCAGCAACTTTGATATAGCCTTCAACCTGGTTTCTTTCGATAATGCTAACAGTCTTTTCGTGCTTAATTGAGTTGTAGACATTTTCGGTAGCGAAGCGGTTCTTGGTATCCTTGTCTTCTACCATCTACCACGCCGCGGCCAGTTTCGTCTACTGCCTCATGAGCAAGCGCGAGGGAGGCCTCACTGCCGGCCAAAGCCATGGCAGCGACAATCTCTTGTCAACTTGTTCCTGGCTGTAGGTCGCGTAGGCTTCTTCAGCGACCAAGGCTTTGTTAACTAATTCATCTGTATAGCGCTTGGCTTCTTCCACCTTTTCATCAGCTGACAATTCCTTGGCAGCAGTAACAGTGGTCTGAGTTTTCTTTACATCAACCATTTTTTCTCTCCTAAAAATTACTACATTTTTTCTCAGGTCCAAGTATTTACTGTGAACCTTTTAACCTAGAGTGATAGTCCGTTTGTTTTCTTTGTCAAGCCGAAAAAGGCCATAAATTTCAATTAATCTGAAGTGTGTAGACGCTTGCAATCATGCTAGAGTAGAATGATGAAAGCGCAGAAAAAAACAAAAATAGTGAATAATTTCACTTTTTTAATAAGCTGGGCTAGACCTGGGAAAGGGAAGTGGCGAAAAACAGAGCAGGGATGAATTGCAAAAAGCTGGCAAATGAAAGCTTAGAAAAATTAGAAGAAAATTGAAAATAAAGATTGACGAAAACAAAAGATGGAGGTAAAGTAGTAAATGTCTTCGGGCAAAACACAAAGCGCTTTCTTAACGAAAGATAATTGAAGACAAAATAAATATCAAAAACTTGTTGACAAGAAGTCAACAAGCGAGTAAGATATAAAACGTTGCGTCACTAAGACGCAAGTTGGTACTTTGAAAACTGAACAAAGTTTCGCAGTGTGCGGGTCAAACATTGTTTGATCCAAACAAATAAGCGAAGTCAATTCGCAAGCAAATAATCTGGAGCAGATTAAAAAGACTCAATTTTCAAATTGAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAGCTGAATTCAAAGATTCCTTCGGGATGATTTGTTGGACGCTAGCGGCGGATGGGTGAGTAACACGTGGGCAATCTGCCCTAAAGACTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAACAACATGAATCGCATGATTCAAGTTTGAAAGGCGGCGTAAGCTGTCACTTTAGGATGAGCCCGCGGCGCATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCAATGATGCGTAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGCAGTAACTGGTCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAATGATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAACTGCATCGGAAACTGTCATTCTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGCGCTAGGTGTTGGGGACTTTCCGGTCCTCAGTGCCGCAGCAAACGCATTAAGCGCTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGCGCTACACCTAGAGATAGGTGGTTCCCTTCGGGGACGCAGAGACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGTACAACGAGAAGCGAACCCGCGAGGGTAAGCGGATCTCTTAAATCTGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGCTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGTCTGCAATGCCCAAAGTCGGTGGGATAACCTTTATAGGAGTCAGCCGCCTAAGGCAGGGCAGATGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGAGAACCTGCGGCTGGATCACCTCCTTTCTAAGGAAAACAGATGGATGGAGAGCAGAAATGCTAAGAGAAATCCATCAGTTACGGAAGCACACTGCAAAAGAAACTTTGTTCAGTTTTGAGAGTATTAGCTCTCACTTGTACGTTGAAAACTGAATATCTTAATTCCAAGAAAAAACCGAGAATCATTGAGATCAATGAAAACATTGCAAAGCGACCGAGAGAGTTCGAAAGAACAAACTTGCAAGGTCAAGTGAAGAAGGGCGCACGGTGAATGCCTTGGCACTGGAAGCCGATGAAGGACGCGACTAACCGCGAAAGTCTTCGGGGAGCCGTAAGTAGGCTTTGATCCGGAGGTCTCCGAATGGGGGAACCCAGCATGTGCAGACATGCTATCCTTAAGTGAATACATAGCTTAAGGAGGGAACACGCAGTGAACTGAAACATCTAAGTAGCTGCAGGAAGAGAAAGAAATATCGATTTCCCAAGTAGCGGCGAGCGAACAGGAAAGAGCCCAAACCGGCAGATTTATCTGCCGGGGTTGTAGGACTGAGACATGGCACTTCAGAGGATAGCAGAAGCGTTTGGGAAAGCGCGCCAGAGAGGGTGAGAGCCCCGTAAGCGAAATCCAAAGAAGGCCTATCAGTATCCTGAGTAGGGCGGGACACGTGAAATCCCGTTTGAATCCGCGAGGACCATCTCGCAAGGCTAAATACTAACCAGTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAAGAGAACCTGAAACCGTGTGCCTACAAGTAGTCAGAGCCCGTTAACGGGTAATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTGCGTTAGTCAGCAAGGTTAAGTCAGAAAAGACGGAGCCGTAGCGAAAGCGAGTCTGAATAGGGCGAGCAGTTGGCTGACGCAGACCCGAAACCAAGTGACCTACCCATGACCAGGTTGAAGGCGCGGTAAAACGCGCTGGAGGACCGAACCCACGTAAGTTGAAAATTGCGGGGATGAGTTGTGGGTAGCGGTGAAATTCCAAACGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGCAAAGAGGATGCTGGAGGTAGAGCTCTGTTTGGACTAGGGGCCCGTCAAGGGTTACTGAATTCAGATAAACTACGAATTCCAGACATTTATGTGCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGATCACCAGTTAAGGTCCCAAAATTCATGCTAAGTGGAAAAGGATGTGGAGTTGCGCAGACAACTAGGACGTTGGCTCAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTAGTCGAGTGACGCCGCGCCGAAAATTTACCGGGGCTAAGCATGATACCGAAACTGTGGATGTGCATTTATGCACGTGGTAGGAGAGCGTTCTAGCGGCGGTGAAGCATGACCGAGAGGACATGTGGAGCTTCTAGAAGTGAGAATGCCGGTATGAGTAACGAAAGACAGGTGAGAATCCTGTCCGCCGCAAGACTAAGGTTTCCTGGGGCAGGCTCGTCCGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAGAGGCGTAGTCGATGGACAACAGGTTGAAATTCCTGTACTGCACCGAATCGTTATGAGCGATGGAGGGACGCAGGAGGCTAGCAGCGCGTGGTGCTGGATACCACGTTCAAGCGTCAAGTCTGAGAGCGAGTCAAATGCTTGCTCTCATAAGGACAAGGCGTGATGAGGAGCGAAATTAAAGTAGCGAAGGCTGCGACGTCACACTGCCGAGAAAAGCTTCTAGCCAGAGACGGTGCACCCGTACCGCAAACCGACACAGGTAGTCGAGGAGAGTATCCTCAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGGCCCCGTAACTTCGGGAGAAGGGGCGCTGGTCGCAAGATCAGCCGCAGTGAAAAGGCCCAAGCAACTGTTTATCAAAAACACAGGCATCTGCAAAATCGTAAGATGAAGTATAGGTGCTGACACCTGCCCGGTGCTGGAAGGTTAAGAGGAGAGCTTAGCGCAAGCGAAGGTTTGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGTGTAATGATTTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAATACCCGTGAAGATGCGGGTTACCCGCGACAGGACGGAAAGACCCCATGGAGCTTTACTGCAGTTTAATATTGGGTATCTGTCAAGCATGTACAGGATAGGTAGGAGCCGGAGAAGATAGGACGCCAGTCTTATCTGAGGCGCTGTTGGGATACTACCCTTGCTTGACGGATGCTCTAACTCAGGCCTGTGATCCAGGCCGAGGACAGTGTTTGACGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGTGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGTAAAAGGGAGCTTGACTGCGAGAGAGACAACTCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTACCGCATGGAAGGGCCATCACTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGTGGGCGCAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGCACCGCTGGTGTACCAGTTGTCTTGCCAAAGGCATCGCTGGGTAGCTATGTGCGGACGGGATAAGCGCTGAAAGCATCTAAGTGCGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCAAGAAAGTAAGACACCTCAGAGACGATGAGGTAGATAGGCCGGGAGTGGAAGAGCCGTGAGGCTTGGAGCGGACCGGTACTAATCAGTCGAGGACTTGACCAAAAGAGCGAAGCAATGAGGTTTTGACTTGGTAAAAGATATTCAGTTTTGAGCGTGCAAGCTCAAGCAAAGAGTGCGGTGGCAATGGCAATAAGGATACACCTGTTCCCATGCCGAACACAGTAGTTAAGCTTCTTAACGCCGAAAGTAGTTGGTGGGAAACTGCCTGCGAGGATAGGAAGCTGCCGCGCGAGACAAGAGTCAGACGGAAGTCTGGCTCTTTTTGGTTACTATAGTAAAATAGGTAAGAGTCTAGAGAATAAGAAAGATATAAAGACATGGACAGAATCGACAGAGAAAACAATCTGATCAGAATTAACGCTTTTGATGATCCTAGACTAAAGCTATTTACTGATTACAATGAAGCTCAGCTCTTTCATTACTATGAGCCAGAAGCCGGTATTTTCATCGCTGAGAGTCCGAAAGTAATCGAGCGGGCAATTAGGGCCGGCTATGAGCCAATCGCCATGTTGGTGGAGGAAAAGGCCTTAGAACGTGATTTAGCGGACTTTGACCGGGAGCTGGCTGCTAACGACGATCACTTGCTTGATTTTCCCATCTTTGTCGCTCAGTCTGACCTTTTGCGCCAGCTGCCAGGCTATAATCTGCTTCGGGGCGCCATTTGTGCCTTTCGAAGAAAAAAGCGGCCAAGTCTGCGTGAATTTGCGGCTGCCTTGCCCAAGCATGCCAGAGTCGGGGTCTTAGAGAGCGTCGTCAATCCAACCAATGTTGGCGCTATTTTCCGCTCAGCCGCGGCCTTAGGCATGGACGGGGTCTTGATTACAACCGACTCCAGTGATCCCTTATACCGGAGAAGCGGCCGGGTCAGCATGGGGACGGTTTTCCAGGTGCCTTGGACTTATCTGGATCGAAAACTTTGGCGGGAAAAAGGTGTGGCCAGCCTGCAGGAATTGGGCTTTAAGACCGCGGCCATGGCTTTAAGGGACAACACGGTTGACATCGACGACCCGGCCTTAAAAGAAGCAGACCGTCTGGCTGTCATTTTAGGTTCTGAAGGACCAGGCCTGTTGCCGCAAACGATCGCGGAGAGCGACTATACGATCAAGATACCGATGGCTGAAGGAGTGGACTCCTTGAATGTTGCCGCCGCTAGCGCTTTAGCCTTTTGGGAAGTCAAAAAAGGACTGGATTAAGTTCCGGTCCTTTTAATTTTGTATTTTCTTTTTTACTTATTCACCGCTAGCCCCGTAGTTGCTCAATACCCGGGCACTTGGGTCGGTGACGCTTTCCAGGCTCTTCCAGCTTCTGTTTGGCATCCAGTAGTCCTTGATCCAGTCAGCCTTGCCAGGGTAGAATTCTTCAAAAATATCTCGGTAAAGAAGTGATTCCTTGGTAAATGGCATCCGGTATGGGTACTTTTCGCCTGCTTTAGCCAGGTCTTCATCGCTGTACTTGCTTTCAGCGTATTCCTTAAGGTCATCAACCATGGAGTGGCCCACGGCGTCGCTGAAGGCTGCTTTTTCCCGCATAAGGATGTCGCGGGGCAGCCAGTCGCCTTCTTCAAAGGCCTTCCGGAGCAAGTACTTGCCCTTGTGGTAGTGGTTCATCTTCAAGTCCGGATCCACGCTCATGACGTAGTCGACGAATTCCCGGTCAGCGAAAGGCACTCTGCCTTCCAAAGAGTTGGCGGAAATGCAGCGGTCTGCCCGCAAGACGTCGTACATGTAGAGCTCTCTGAGCCGCTTGGCTGCTTCTTTTTGGAATTCTTCCGGGCTTGGAGCGAAGTCGGTGTATTTGTAGCCAAAAAGTTCATCAGAGCATTCACCAGTCAAGATGACCTTCAAGTCAGTTGTTTCATGGATCTTCTTGCAGAGAATGTACATCCCGATTGAAGCCCGGATAGTCGTGATGTCCCAGGTTTCCAAAGTATAGATGACTTCTCTTAAAACGCCCAGCACGTCTTCTCTGGTCATGATGAACTCGGTGTGGTCAGTTCCCAGGTAGTCAGCCACTTCCCGGGCATATTTAAGGTCGATCGGGTTTTGGTCCATCCCAATGGCAAAAGTTCTGATCTTCGTATCTGGCTGCAGGCGGGCGGCGATCGAGCAGACTAGGGAAGAGTCAAGGCAGCCTGAAAGGAGGTAGCCGACCGGGGCGTCTGAGGCCAGGTGCTGGTCAACTGATTCAACCAGAAGGTCATGAATCTTGTGAGTCGCAGTCTCAAAATCGTCAGTACTCATCTTGGGGGTGAGGTCTGGTTCATGGTAGGCCACGATCTTTTCCCCGTCATAGTAGTGGCCAGGCAGGAAGGGGTGGATTTCGCCGCAGAGGTCAAGCAGGTTCTTGCCAGTTGAGGCAAAAGCAATCTTGGCGTCTTTTTTGGTAAAGCCGTAGAACATTGGCCGGATACCGATGATGTCTCTGGCCGCGTAAATCGTCTTTGAGAGGTGATCATAGAGGGCAAAGGAAAATTTCCCGATCCAGCATCTTAACCATCGTCTCAATCCCGTATTTGCGGTAAAGGGGGATCAGAACTTCACAGTCACTGCTGGAAGTAAATTCGTAGTCGGTTTCCAGGTTCTTTTTCAGTTCCGGGTAGTTGTAGATTTCCCCGTTGCAGACCAGGGTGCAGTCCAGGGTTTCAAAAGGCTGCATCCCGCTGTCCGTCAAGTCCATGATAGCCAAGCGGTTGAAGCCAAAAGTAACTCCCCGCTCGTCAAAGACCCTGGTCATGTCCGGTCCCCGGTCCTGGCATTTGGCCAGGGCTTCGTCAAAGGTCTTCAAGTCAAATTCTTTGGAGTCGATCGCTAAAAATCCGCACATATTCGCTGCCTCTTTCTTTTTTAAGCAAAAAATAATTTAAGTGAGTAAAAATTGCTCTTTAATGAAAAAAGGGTCGCCAAGCAAAGAAAAAGCCCTTCGCTCCCCGGTAAGGGACGAAAGGCTTTGTTCCGCGCTCTGATAATAGAGTCTGCTTCTTGAGCACAAATATGCTCATCCGGCGGTAACGGACCAGAACCGGCCAAGCCTACTGGAGCTAAGTCTTTCGGTTGGCAGCTGAAAAAGTGTTTTTCAAGGGGGGCAGAGCCTGCTGAATTTCCACTCTCATCAGCTCACTGGAGGTTGCCCGCCTTTACTCGTCTTTTTATGGCTTACTTTTTTAATTAAGAACTATTGTGATCAAAATGATAAATAAATCAAACCTAAATTAAAATAAATTTAAAAAGAAGAGAAAGCTTGCTAATAAAGTTTTTGATTTTTTCGCCGAAAAGTGTTGACATTTTCCCTAAACCCTGTAAAATAATAATTGTTGCGTCGCCGAGGCGTGGCAGAAAATTCCGCCTTAGCTCAGTTGGTAGAGCGCTTGACTGTTAATCAGGATGTCGTCAGTTCGAGTCTGACAGGCGGAGTATCGGGAAGTGGCTCAGTTTGGTAGAGCACCTGGTTTGGGACCAGGGGGTCGCAGGTTCAAATCCTGTCTTCCCGATGTCTTCCCGATCAAACGAAATATGCGGAAGTAGTTCAGTGGTAGAACATCACCTTGCCATGGTGGGGGTCGCGGGTTCGAATCCCGTCTTCCGCTTAGCATCAAGCGATGCTTAATTGAATAGATGCACCCATAGCGCAACTGGATAGAGTGTCTGACTACGAATCAGAAGGTTGTAGGTTCAAGTCCTACTGGGTGCATTGGAGGATTAGCTCAGCTGGGAGAGCATCTGCCTTACAAGCAGAGGGTCACAGGTTCGAGCCCTGTATCCTCCATCTGGCCCGTTGGTCAAGTGGTTAAGACACCGCCCTTTCACGGCGGTAACATGGGTTCAAATCCCGTACGGGTCATTGCCGGAAGGCAAGAATTGAATATTTTTCTATCCATCAAATGGAGGATTACCCAAGTGGCTTAAGGGGACGGTTTTGAAAACCGTTAGACGGGGCGACTCGTGCGTGGGTTCAAATCCCACATCCTCCTTTTTATTATCGCGGGATGGAGCAGTCTGGTAGCTCGTCGGGCTCATAACCCGAAGGTCGTTGGTTCAAATCCAGCTCCCGCAATATGGTCCATTGGAGCAGTGGTTTATCTCGCCTCCCTGTCACGGAGGAGATCGCGGGTTCAAATCCCGCATGGACCGTTTGATGGCTCGGTAGCTCAGTTGGTAGAGCAATGGATTGAAGCTCCATGTGTCGGCGGTTCGATTCCGTCCCGCGCCATTGAAAATGGAGGAATAGCGAAGTGGCTAAACGCGGCGGTCTGTAAAACCGCTCTCTCTGAGTTCAGTGGTTCGAATCCACTTTCCTCCATAATAGGGATATAGTTTAAAGGTAGAACTACGGTCTCCAAAACCGTCGGTGTGGGTTCAATTCCTACTATCCCTGTTAACAGAATATGGCGGTATTGGTGAAGTGGTTAACACACTGGTTTGTGGATCCAGCATTCGTGGGTTCGATTCCCACATACCGCCCTAGCCGAAGGGCAGAAAAGAATAATCGTGGCGGTGTAGCCAAGTGGTAAGGCAGAGGTCTGCAAAACCTTAATCGTCGGTTCGACTCCGATCGCCGCCTTAGGCTTAACGGCCAAGTAGAATAGCATGGCGGTGTGGCGGAATTGGCAGACGCGTCAGACTCAAAATCTGGTGTCCATTACGGACGTATCGGTTCGACCCCGATCACCGCTATAATTTAGAGCGACTCTGAGGAGCCGCTCTTTTTTGCTTTCATTTGCAGAAAAGTAATGAAAAAAGCTGACTTTTATCCTTTTTTGCCAAAAAGGCTTGCATAAAGGTGAAAGTGTGCTAGCATAGTAAGCATATTAGGAAGAACGATTTAATTAGAAAGGAGCAAAGAGCATGACTCAAGCTAGAGTAAATACTTGCAGGCTTGACGGGGTCGTTGGTAAGGCGATCCGATATTTGTCATGCTTTTTCTCTTAAGCAAAATTATTGAATAATCTGTAAGCAGCATGGCTGTAAGATTTTCTGTTCGCGCCAATGGCATCGTTAACTGGAAGCTGTTAATTGTTTATGCGAGGTATTGGAATTGAACAAGGGAAAATCTTTATTGGCTGGTGCTGCTGTTTTGTTTTCTGGGGCACTTTTGACGGCTTGCGGGCAAAGCACGGGAGCAAGTGAGAAGCTGGTATTGAACTGGATGACATCGGCAGAAATCATCACTATGGATCCATCGAAGGCGACGGACGCAACTTCTTTCACCCAGATGGAAAACACCATGGAAGGCCTGTATCAATTAGACAAGGACAACCAGGCCAAGGAAGCCCTGGCGACTAAGGCTGCCCAAAGCAAGGACGGTCTGACCTGGACTTTTGATTTACGGAAAGACGGCAAGTGGTCCAACGGGCAGGCAGTTACTGCTAAAGACTTCGTCTACTCCTGGCAGCGGCCGGTTAATCCCAAGACCGCGTCTCAATACAGCTATATCTTCTCCGGCATTAAGAACGCGGATGCGATCGTGGCAGGCAAGAAAGCCCCGTCCAGCCTGGGCGTCAAAGCTCTTGGCAAGTACAAGCTGCAGGTTAAATTAGACCACAAGCTGCCTTATTTCAAGCTCTTGCTGGCCTTCCCGGTATTTTTTCCAGAAAACCAAACTGCAGTTGAAAAATATGGCAGCAAGTTCGGTACTTCTTCTAAGACCACGGTCTTCAATGGGCCCTTTGTCTAAAAAGGCTGGACCGGAGCCAACCTGTCCTGGAAGATGGTCAAGAACAAGAACTACTGGAACAAATCAGCCGTCAAACTGGCCTAGATTAATTTCATGGTTGAAAAGTCACCGTCAACGGCCTACAACCTTTACCAGGACGGCAAGCTGGATACGGTAATTTTGAGCGCCCAGGCAGCCAAGAACCTGCAAAAGCAGGCCGGCTACGTGATCAGAAAGAACAACGGCACGACTTACATGCAGTTCAACACCAAGCTGGCTAAATTTAAGAGCACTAAGCTCCGTCAAGCAGTTTCCATGGCTTTGGACCGGAAGGCCCTGGCCAAGACCCTGGGCGGCGGCTTTACCGGTGCGACGACCTTTACCGCGGCTTATATGACCAAGGTGGACGGGCAGGACTTTACCCAGCTGGCCCAGGACAAGACGACCAAGCAAATTACCAGCTACCACAAGACATTGGCTCAGAAGACCTTTAAGGAGGCCCTCAAGGACTTGCAGCTGAAGAAATTATCTTTTACTTTGCTGATGGCTGATGACGACAGCTCAAAGGCGATTGGTGAATACATCCAGAGTGCCTTGGAAACGGCTTTTGGCAAGCAAGTCTCCGTCAAGGTGCAGAGCCTGCCGACCACAAGTCCCAGTTTGCCAAGATGGACAGCGGCAATTTTGAAGCCTGCGTCAGCGGCTGGAATGCTGACTTCGCTGACCCGATTTCATTCCTGGACTGCATGACCTCAACTAACGGCTACAACTCCGGTAAGTGGTCAAACAAGCAGTATGACCAGCTGATCGTCAAATCCAAGACCGTTACTTCATCTAGCCAGCGGATGCAGTTTTTGGCCAAGGCAGAAAACATCTTGATGACCGACCAGGGGGGTAACGCCGCTGGTTCAGTCCGGCAGTGCCTGGATGCTGAATACAAAGGTCAAGGGCTTGATCTACAACGGCAGCTACTACTTCGAATATGCCTACTTACAGTAAAAGAACAAGTAGAACGATTGTCAAAAGGGCTCGCTTTTGCTAAACTGAAGGCAGATTTAAGAGCTTTTTGCAAAGAGGGGGGAGCAAAAAATGAAGGACTCAAATTCTTTTGTCTACAATGTCTGGCTGATCATTCTGCTGGTTGCTGCCTACATTTGGCCAATCTTCGGTCTGGTGCCGGCAATTTACCTTTTTATCAAGCGTAAAGATGAACAGTTAGAGAAGATGCAAGGCTGGATTACTCTGGCCTTGATCTGGCAGATCGTGCTCTGGCTCCTAATGATCATTTTCTTAATCTGCTTTGTAGCTCTTGCTGGCTCAGCTGGCAAGTAAAAATTGACAAACTAAAACCGCTAGCCCTGTGACTAGCGGTTTTCTTCTGCCTATAAATAAGGTGCCATTTTTTTGTAAAGTTCGTCTAAAGGAACGGGCGGACTGAAGAGGGAGCCCTGGGCCAGGTTGCAGCCGGCTTCTTTAAGGAAGTCAAACTGTTCCTGAGTCTCAACCCCTTCACAGACGGTTCTGATCCCTAATTCCTTGGCCATCCGGCAGATATTGCGGACGATCGTCTTGGACCGGTCATCAAATTTTCTGAGGAAGACCATGTCGATCTTGATGACGTCAAAGTGGTAGTCCTTTAAGACGTTCAAGCTGGAATAGCCGCTGCCAAAGTCATCCATCCAGACCTGGTAGCCCACCAGGTCATGGAAGTGCTGGACGGCTTCGACCATGGCCTGGCTGCTGTCATTAAGGGCACTTTCCGTAATCTCAATATGAACTTGATCGCGGCTGAGCCCGTAGCGGGCGATGGTGTCTTCGATCTTTTGGTAAATATTGCAGGCTTCCAGGTCTGTTCTGGAAATGTTAAAGCTGATGGGGAAGATTTCTTTTCCCTTTTCTCGTAAAAACTCAGCGTCTTGCCCATAGCCCTCTAAAACGTGGCAGTCAACCTTGTAGACTTCCCGGTTGGCCTCCAGGGCAGGGATAAACTTGTCTGGAGACAGGAAGCCGTATCTGGGGTCAATCCAGCGCGACAAGGCCTCACATTCAGCCAGCTTCATGTTTTGGATGTCGATCAAGGGCTGGTAGTAGATCTTGAGCCAGTTGTCGCGGCAGGCTTGGTCGATCTGGCTCAGAACATGAACCCGGATTTCATCCGCCTTGGCCAGCTGGTCATCATAGTAGCCGATAGAGGCATTTTTCAGCTTGATTGAATTAAGGGCACGTCGAGTCCATGCATCAGCTCAGTATTGCGCTGGCGGTGCAAAATATGCCGGCTGGGCTTAAAGGGAGCTAAGCCAGCCTTGAAGAGTAAAGTTTCACCAGTGCTGCGGGCCGCAACTGTTTTAATAGATTGCTGCCGTCCTGGTAGCCGTTAGTTAAGTTGTAGTCATGCAGGTTGACTAGGGAGCTGTAAAAAATACTTAAACTTTGGCTTTTACCGAACTGCTTGAGGCTCTCTTCATAATGCTCCATGAAATAGTGGAGGCTTTTGGCCCCAGTCAGCTGATCATCATCATATTTCTTCAAGTAGCTTTCATAGCGGTTAACGCTGAAGATATTGAATTTCATGAAGAAAATGTACATGATGCAGGAAATAATAGCTAAAAAGGCTGACCACGTAGGCGATTGGCGTTGGGACCGCCGAATTGTTGCCATCAAGGAACATGCGGGGAAATTCTGCCTAGGCTACGACCAGGATCATGCAGAGTATGGTGGACCAGAAGAAGCGGCCGTCTTCCGTGATGACGGTCTGCTCCTGGCTGATGTAGCGGATTTCTTTTTTAAAAAGAAAGTAGAGACAGAGGGTTAAGATAGATAATGGTGAAAAAGTCCCATTGCCAGGTTTGATTGGCCAAGAGGGATGAAATTTCAGCGGCGATGACAAATTGACAGTAAGTGAAGACGGCTACGGACGGCTTCTTGTTAATTAGGCGCTGATAAAGGAAAATGACTGGGATCAGGGTCAAGAGGATCAATCCAGTTGCCAGAAAAAAGGCGCTTAAGGCATTAAGGCTGACCAGGGGGCTTAGCTTCTGGTAAAGGAAGACGGTCATGATCATGGATGTGCTTAAAGAGAGCAGGAAGGCTCCCAGGCTTTTGCCAATCCGTTTTGGGATGCTTTCCTCTTAAAAAAATAACTGATCAGTAATTAACGCGATAAAGAATACCTGCGGGAGAAAAGTGTGGTTGCGGGCATAAAAGGTTGTAAACTAGGCTATCATGTGTCCTTCCTCGATATAATCTCGTTATTAACAGAACTGCTTATATATAGATTTTAGCATATATTTCTGTCCAAAGCGGATGTTAAATCGGCATTTTCCGGTAAGGTAAAATTAGCGTAAAGAAGACTGAACAAAAAGTGAAAGCGCTATATTTTACAAATATAAAAAACAGATAAATTAAGCAAAATAAACTGAAAAAGCAAAGGGGAGCCTTGCGAAAACTTTGTAATTCTGTTAAGAAAGCGGCTTGTCTTAAACAAAATTAAGCATTTTACATTGATTTAACAATTATCACTGAATGCATTTAACTTGCCTCCATTAAGATTGAATCAGTAAGAATTCAAGGAGGAATTAACATGTCACGCAAAAAAAAACAAAGTCGCCATCGTTGCACTTGTTTTGCTGGCAATCGTCACTGTCTGCGTCATCGGCAGCTGCGAAGCCGATACCAAGGGAGTTTCCGGGACAGTTAACATCGCCGGGTCATCTGCCCTTCTGCCTTTAGCGCAGAGCGCGGCCAAGACTTTTATGGACAAGAACCCGGACAGTGTCATCAACACTAACGGGGGTGGGTCAGGCCAAGGCCTGCAGCAGGTTTCTGACGGCACCATCGACATCGGGGACTCAGACTTGCTCGCGGATGAAAAGCTGGACAAGAAGTCAGCCAGCAAGCTGGTTGACCACCAAGTGGCCATTACCGCCATCGCTCCGATCATCAACAAGGATGCCGGGGTTAAGATCCTGACCACTGAACAATTGATCAAAGTTTTCACCGGCAAGGTGACCAACTGGAAGCAGGTTGGCGGCAATGACCGACAGATCGTCCTGGTTTCCAGACCATCTTCATCAGGTACCCGGGCAACTTTTGAGCAATACGCTTTGAAGAAGCACGCTAGTCAGTCAAACCAGTCTCTGGAAACTGACGACTCAGGTACTTTGATCCAAATGATCCAAAGTGTTTCCGGCTCAATCGGCTACGTTGCCCTGTCCTACTTGACTGGTGACCCGCAAGTCGGCATCGTGTCAATCAACGGTGTTAAGCCAAGCCTGAAGAATGTCTACAATGGCAAGTATACGGTTTGGAGCTATGAGCACATGTACACTAAAGGCCAGCCAAAGGGTGCGGCCAAGGCATTCTTGCAGCAGATGCTCAGCGAGGAATATGGCAAGAAGATCGAAGCCATGGGCTACGGCATAGCCTCCAAGCTGACGGCTGCCGCTAAAGCCACCCATACTAAGTAAGAAGGAGAAATAAGGCATTATGGACAAAGTAGTTCAAAAAGCAATTGCCAAAGACAAGCGCTGGCGCGCGGTCTACATCGCCTGCGGCCTCTTGATCGTTGCTTTGACCCTTTTGATGGGGGCCTTCCTGCTCTACCAAGGCAGCCAGACCGTCCTTAAGGCGCACCACAGCGTTTGGGAGTTCCTGTTTACCAGTGACTGGGCACCGCTTGACAAGACCGGCATGTTCGGGGGAAAAGTCGGGGCTGCCATTTACATCGTTGGTTCCCTGGAAACCTGCTTGCTGGGTTTGCTCATCTGCCTGCCGTTCGCGATCGGTTCAGCCGTTTTCATGACGGAAATTTCACCAAAAATCGGTGAAAAGTTCTTCCGGCCGGCAACCGAAATCTACGTCAGCATCCCATCCGTTGTTTACGGCTGGTTTGGCTTGACCAAGCTGGTTCCTATAATCAGAAACGCCTTCCACCCAAAGATGGGCGGTTTCTCAGTCCTGGCCGCCTCAATCGTTCTGGCCATCATGATTTTCCCAACGATCACTACTGTCGCCGCCGACGCCATCAAGTCAGTCCCGAATAGCTACAGAGAAGGGGCTTACGGTTTAGGGGCGACCCGCTGGCAAGTTATCGGCAAGGTTGTTTTGCCAGCCGCTTCCGGCGGTATCTTGACCGGGGTGGTCTTGGGTCTGGCCCGGGCCATCGGTGAAGCTTTAGCCGTAGCCATGGTTATCGGTAAGACCCGGTCCTTCGCGACCAGTCTCTTGTCACCAACCAGCAACTTGACCAGTGCAATTGCCGCTGACATGGGTAACACGACCCAGGGCGGGGAATACAATCTGGCTTTGTGGTCAATGGCCCTCTTACTCTTCATCATCTCAATCGTTTTGATCGTCTTGATTCACAAGCTTGGCAATGGAAAGAAGGAAAAATAAATATGAGCCGTGCTAAAAGAAAAGACCGGCTGATGACGGGAATCTTCTACGCCATCGGTTGGATTATGCTGGCCTTCCTGCTCTACTTAACGCTGACCATAATCTTTGACGGCTTGAAAGGCTTCCAGTGGGACTTCTTGGGAGCAGCCGGCAACGGGATTTTCAACCAGTTTTTCAACACTATATACTTAGTTTTCCTCTCACTGCTGGTCTCAGTGCCAATCGGCATCGGGGCCGGGGTTTACCTGGCTGAATACGCTAAGGAAGGCAAGTTCCTGACAATCTTTGAAATCAGTATCGAATCCTTGTCATCCCTGCCATCTATCGTTATCGGCTTGTTTGGCTACTTGGCCTTCATCATATGGACCGGGATGTCCTGGAATATCCTGGCCGGTGCCTTGACGATTTCAATTCTTTCAATTCCTCTGATCACTACTGAAACCAACAACGCCATCCGGGCCTTGCCGGTGGAATACAAGGAAGGTTCCCTGGGCCTGGGCGCGACCAAGTCAGAAACCATCCGCAAGGTCTTGATTCCGGCGGCCATGCCGCAGATCTTGACCGGGGTAATCATGGCTGCCGGGCGCGGTTTCGGTGAAGCCGCTGCGCTTTTGTATACTTCCGGCCAGTCAACTTACATCAACTGGCAGAACTTCTGGAAGGTTACCTCACCAACTTCACCGCTGAACCCGTTCCGAAGCGGTGAAACTCTGTCCCTGCACATCTGGGTCATGAGAACTGAAGGGGCCTTGAACCCGTCAGCCACTCAGATCGCCAACTTTACTTCAGCAGTCCTGGTCGTTTTGGCCCTGCTCTTCACTTTGGTTACGCGCCGTATCTCTGACAGAATGCGCAAGCGCAATAACGGAGGAAATTAATGATGGAAGATAAAATTACAATTGAAAAGCTGAACCTGTACTACAGTGATTTTCATGCCTTGCATGACATCAATATGCACATCCAAAAGAACGAAATCACTGCCTTCATCGGCCCGTCAGGCTGCGGGAAATCAACTCTTTTGCGGTCACTTAACAGAATGAACGACCTGGTTGAAGGCTGCCGGATTGATGGCTCGATCAAGCTGGACGGCACTGACATCTATAACGGTGACCTGGATGTGACCGTCTTGCGGCAAAGAGTCGGCATGGTCTTTCAAAGACCAAACCCGTTCCCGATGAGCGTTTACGACAATGTTGCCTACGGCCCGCGGATTCACGGGATTACTGACAAGAAGGAACTGGACGAAATCGTGGAAACTTCCCTCAAGCAGGCAGCTATCTGGGACGACTTGAAGGACCGGCTGAAGAAATCAGCCCTGGGCCTGTCCGGCGGTCAGCAGCAAAGGCTCTGCATCGCCCGGGCCCTGGCTGTCAAGCCGGAAGTATTGTTGATGGACGAACCGACCAGTGCCCTGGACCCGATTTCAACCTCTAAAATTGAAGAATTAGCTTTGGAACTGAAGAAGAACTATACGATCGTCATCGTTACGCACAACATGCAGCAAGCCGTGCGGATCTCTGACAAGACTGGCTTCTTCCTCTTGGGTGACCTGGTTGAATTCGGTGAAACTGACCAGCTCTTCTCCATGCCGAAGGATGAAAGAACTGAAAAATACATCACCGGCCGGTTCGGTTAAGGCTAGAGGAGGCCAAAAATGAGAACAAGATTTGACAAGGAACTGTATCACTTGCATGAAGCAATGGAAGAAATTGGCCAGCTATGCAAGGAAAGCATTTTTGAATCAACCGACACCCTGTTTACGGGCAACTACCATGAAGCAGAGGACACGATTAACCTGCACCACCGGATTCACAAGGCAGAGCGTGACATTGAAGAAACCTGCCTGCGCCTTTTGATGGAGCAGCAACCGGTTGCCACTGACCTGCGGATAATCAGTGCATCTTTGAAGGCGGTCTACGACCTTGAAAGAATCGGTGAAATTGGCGCAGACATTGCCGACCTGGTCCTTAACGAACACCTCTCAGTCGCAAATGACATGCTGAACTTGAAGAGCATGTCCCAAATTGCTACGAGCATGGTCAACGACGCGGTAACGGCTTTAGCCAACCAGAATGTAGAACTGGCCAAGGCCGTAATTGACCGCGATGACCAGGTCGACGAAGGCTTTGACAAAGCGAAGGCATTTTTGATCGATAACTTTAACAAGGATGGTAATCCGGAATACTTGATCAATTTGTTGATGGTCGCGAAGTACTTTGAAAAAATTGGCGATCACGCCGTCAATATTGCTAAATGGTCCTTATTTGTAACTACCGGCAAGACTGGCAGATAAGTCCAATTCCCCTTACCACTCTTGTGCATGATTATGGTCGTAAACTATAATTAAGTTTAAGAAAGGTTAAGGGGATTTTTTATGACTGAAATTTGGTGCGTGGAAGACGACGAAAGCATCCGCGAAATCGAAATGTACACGCTGGAATCAATGAACTTCAAGGTCCGCGGCTTTGAAGACGGACAATCTTTTTTCAAGGCCCTGGACAATAGCCGGCCGGATTTAGTGATTTTGGACTTGATGCTGCCTGATGAAGACGGCAGCGAAATTCTCCACCGGCTCAGGTCTACTTCCGCGACCGAGGACTTGCCGGTGATTATCGCCAGTGCTAAGACGGCAGAATATGACAAGGTCAAGAACCTGGATTCCGGGGCGGATGACTACTTAACCAAGCCATTTGGAATGATGGAAATGGTTTCCCGGGTCAAGGCTGTTTTGCGCCGGACCAACCGCAAGAAGGAGGACAAGATCGAAAAAGACGGGATCAAGATTCTCTTGAAGCGGCATGAAGTTTTCGAAAACGGCCATCAGGTCGATTTGACTTTGAAAGAATACGGACTCCTGAAGCTCTTGATTACTCATCCGGGAACTGTCTTTTCCCGGGAATAAATCATGGATCAGATCTGGGAGACTGGTTTTTACGGGGAAACGCGCACAGTAGACGTTCACGTGAGAACCTTGAGACAGAAGTTGGGTGAGGCTGGTAAGCATATCGAAACGGTGCGCGGGGTCGGTTATCGCTACCATGAAGCAGACTAATGTTTAAGAAGATATTTCGGGCAAGTTTTTTACTGACTTCTCTGGTTCTCTTCTTTGCCGTACTCTTAAGCGCGATTGTCTTGAGCATTGACTTCGACCATACAGAAATGTCCGCCCTGGCTTCCCAGGCTGACCTGGCAGCCAGCGGGGTAAATACCAGCGGCAAGAAGTACATCAAGAACTTAAAAGGGGAGAACTACCGGATTACTTGGATCAATTCCAAGGGCAAGGTTCTCTACGACAATGAAGAGAATCCCAAAAAGATGGGCAACCACTCCCGCCGCGAGGAAGTCGCCGAAGCCATGAAAAAGGGGACAGGAACCAGCGAGCGCTACAGCACGACCTTGTCGACCGTAACCATGTATTATGCCGAGCGGCTCAATGACGGCGGGGTCATCCGCATCGCGATCACCAGAAACTCCTTCTGGCGGATTCTGGTCAGATTTTTGTCGCCGCTTTTGTTAATCATGCTTTTATCGGTCCTGGTGTCCTGGTTCCTGGCCAAGACAATCTCGCAAACGATCGTCAAGCCGCTGAATGAAATGGACCTGGACAAACCCCTGGAAAGCAATGCCTATGACGAAATCAAGCCGCTTTTGACCAGACTGGACAGCCAGAACAAGCAGATCGCTGACCAGATGGAGCAGCTCCACCACCGGGAAAAAGAATTAAAGACGGTGACAGATGCCATGCTGGAAGGCTTGATCTTGATTGACCTGGATGACCAGATCCTCTTGTCCAACCCGGCGGTTGTCTCCCTTTTGGGCTTGCATGATACTGACCCCTTGCCAGATGATGTTAAGGAAATCATCGATAAGAACAGCCGCTTGGCCCATGCTGAGGGGATTGTGGAAAGAAACGGCCGCAATATTCAAATCAGTGCCAGCCCGATTACCAGCCGCAAGATTCTGAAGGGGACTTCGATCCTGGTGGTTGACGTGACGAAAGAATACCATGAAGAGCAGGTCCGGCGGGAATTCACGGCCAATGTGTCGCATGAACTTAAGACGCCCCTGCAGTCCATCATGGGGTCAGCTGAACTTTTGGAAAACCACCTGGTTAAAGAAGAGGACCGGGACAGCTTTTACAAGAAGATCCACGAATCTTCTGCCCAGCTTTTGACCTTGATTGACGACATCATCCGTTTGTCCCACCTAGATGAAAATCAACGCTTTGAAGAAATCAAGCTGAACTTGAAGAGTCCGGTGACCGAGGCCCTGGAAGCCCTGCAGAGTTCGGCTGACCGGCATGGAATCAAGCTGGAGACTAATTTGTCAGACACTATGATCCTGGCCAACTTCCGCCTGGTTTACGAAATTGCCTACAACTTGATTGATAACAGCATCCGCTACAACAAGGAAAAGGGCAAGACCAAGATTACGGTCAAAGAGCACCGGGGCCAGGCGATCCTGCAGGTGGCGGATACTGGCATCGGGATTCCCCAGGAAGCCCAGAACCGGATTTTTGAACGCTTCTATCGGGTGGATAAGAGCCACAGCCGCAAGACCGGGGGGACTGGCCTGGGCCTGTCCATTGTCAAGCATGCTGTTCAGCAGTGTCACGGGACCATCCGCCTGGAAAGCGAATTAGGCAAGGGGTCAACCTTCACGGTTATTTTCCCGGCCCTGCCAGCAGGAGCAGATGATAATAGCAAATAAAGTAAAAATGACAAATGAAAACCAGTTCACTTTAAACAGTGAACTGGTTTTGCTGTATATTGGCTAATTTCTGTTATTGCACTAGTTGTCGAAGTGGAATTGTAGGTCCTTTTGCAGCTTGTAGCTAGTCAGTTCCTTGCCATCCAGGTCAGTCTTGTGCATGTCAACGGCGTGAACTTCCGGGTTGCCGTAGGTGGTGTAGTAGTAGATCCCCTTTTCCTGGTTCATGCAGGATGAGTAGATAGTGTACTCGTAGTCACCCGGAAAAAACTTTTCGAGGTATAAATTATGACAGCAATTCAGATTACGCACCTTTCCTACACTTATCCCAGCCAGGCAGAAGCAATCTTTACCGACCTCTCTTTGGACCTGGATTCCAGCTGGAAAATGGCCCTGGTGGGCAACGGCCGGGGGAAAACGACCTTTCTCCGCCTTTTGGCCGGGCAATTGGGCGACCAGCGGGCAGTCAAGTCTCCTTTAACCTTCACCTATTACCCCCGCTTTTTTGCCAAAAGATGAGCCAGCTTACTTTAGTTTAATGGATGAGGCGGCTTTTGAGCTCTGGCGCCTGGAAAAAGAAATGAACCGGTTGAACTTGAGTCCGGACTTGCTCTACCAGCCCTTTGGCCAGCTCAGCGGGGGAGAGCAGAGCAAGCTGCTCTTGGCCCTGGCCTTCAGCCAAGATGGCGTTTTTCCCTTGCTGGATGAACCGACCAACCACCTAGACGGCGCCAGCCGCGGGATTGTGGCTTTGACCGGGCCAAACGGCAGCGGCAAGAGCAGTTTTTTGGCCTGGCTCTTGGGTAATAAAGATTTTACCTGCCAGGGAGACTGGGACTTGCAGACTGGGCTAAAAATCAGCTACCTGCCCCAAGATTTGTCAAGTTACCATGGCTATCTGCCAGCTTTTGCCAAAGAGCATGACCTGGACTACGAGCACTTTTTAAATCAGCTGAAAAAATTAGGCCTGGAGCGGGAGGCCTTTAAGCAAAAGATTGAGGAGATGAGCCAGGGGCAAAAGAAGCGGGTAGCCCTGGCCAAGTCTCTGACTGAAGAAGCCAGCCTCTACCTTTGGGATGAACCGGCCAACTACCTAGATCTTTTCAACCAGGACCAGCTGATCAAGCTGCTGGCAAAAGAGCAGCCGGCCATGCTTTTAGTTGATCACGACCAGGCTTTCATCGAAGCCGTCGCCAAAGAAAGAGTCAACTTGCGGACGGTCTTATAATTTGCAAAAGCGACCGTCTTGCCCTAAAATTTACATAAAATAATGATAGCCTTTTACTTGATTTTACTTCTTTAGCTTATTCTAATAACTAAAGGGGGGCTGAAAAGGATGGCACGGTACGTCTTTTGCAAGCCGGACAAGCCCAAATTGACCTGCTGGAGCATTATTGCTTTTATTGTGCTAGGGATCATCGCCACGGCATACTTAGGCTTGACGGCATAGCTTACTTATTGATAAACTCTTCTTCAAAAAATACAACTGCGCTAAAAAGCCACGGCATTTTCTGCCGCGGCTTTTGTCTTGTAATATCTATGTAACATCCGCTTGCTACAATTATTTCCAGAGGTCACTGACAAAGTAGCACAGGGCTGCCCAGGCAACCAGGGGCAGGTAGTGGCCATAGTCGTCTCTGCCTTCCTTGAGCAGGCGGCGGGCCTCTTCCTTGTCAACTAATTTGAAGTCGCCAAAAACTTCGGTGCCTTCAGCTCCTTTGTGGTTAAGGGCTGACAAGTCATCAACGTGGATGACGGCTTTGACAATGGCGTTGCTTTCGTCGCTGAAGCCGGAAGCCATGAAGACCAGGGGGTTGATGACTTCAACCGTGTCCTTTTCACCGATGCTGAGTCCGGTTTCTTCCTTGATTTCACGGATCATAGCTGTTTTGATTGGGTCCTGGCTGGCTAGGTCAGCTGGGTCAATCAAGCCTGCCGGCAGGCCGAGCAGGTAGCTGCCAGCCGGGTACCGGTACTCGTAAAAGAGCAGGAGCTTGTCTTTCTGACCGGCTTGCTTAACGATGATGACCGCGCAGACGGCATCAGGCTGGGCGCTTCCCAGCTCTGGATCCTGCTTGAAGGCAAAGAGCTGGTCTTTGTCCCGCCTTGAAGCATCATAGTAGTGGACCCCGTTTTCATATGCCAGGTCGTAGAGTTTGACATATTTGGTAGCGGCCAGGGTTTTGCTCTGGTCAGGTAAAATTTTAGGTTCTTGCATTTAGTGTCGGTCCTCCTTGTATCACCTTTATTGTACGATAAGAATGGAACAGTCATGAGGAAAATCAGCAAATTTTTGAGTATTGTGGCCCTGGGTCTGTTAGTCGGGGGATGCAGCCAGGGGCAAAAGGCCAAGCGGACTAAGGCGAAAACTGAGACCAAGACCAGCCAGAATGCAAGCGGGGATTTGGCGAAACTCAGCCAGAGCCGGGATTTGTTTGCCTGGACGGTCTACTGGGACGTGGACAAGCCCTGGCAGACCATTCAAAAGGAAAGTCAGAACATCGATGCCGTCGGAACCTTCGCTGCTTTTTACGATGAAAACAAGAATTACGAACTTTTTTTAGCAGATGGCAGCAAGAAGCTGGACAAGGAAATGCGGACTACAGCCAAAACCAGCAAGATCAAGCGTTACATGACCGTGGTCAACGACACCCGGACGGCAGACAAGAGCACCGACCTTTTGGAGACCCTCCTGGCCAGCAAGTCAAAGGCGGACAAGCATGCTAAGGAAGTCGTGGCTCTGGCTGAAAAGTACAATTTTACCGGGGTGGAAATCGACTATGAACAGATCCGGGACAATCTCAGCCTTTGGAAGAAGTTCTTAGTTTTTGAAAAAGCCCTCTACGCCCGCACTAAGAAGGCAGGTCTGGACTTACGGATCGTCCTTGAGCCGCCAACGCCGGTAAGCAAGATCAACTTCCCCAAGGGACCGGAATATGTCGTAATGTGCTACAACCTTTATGGTTACGGGACAAATCCCGGGCCAAAGGCAGATTACAAGTTCTTGAAGAAGACGGTCAAGGACTTCTCCAGCTTGGGCAAGATTTCTTATGCCCTGTCAAATGGGGGCTTTGACTTTAACGGGGATGAAGTGACTTCCGTAACTGGGTCTGAAGCACTGAAAATCAAGAAGAAATACAAGGCCAAGGCTGTCCGGGATAAAAAGAGCGGCGCCCTTTACTTAAAATATGGCAGCCATACTGTCTGGTATGCAGACCAAACCACCCTGCAGCTCTGGGCCAAGACCCTGGACAAGGCCAGCGGGAAAAAGGTTGGCATCAGCATTTGGCGGATGGAATAAAGGCAAATAGCAAAGAAAAAACTAGCTGAAAAATCAGCTAGTTTTTTCTTTTTCCCGTCTATAATTTTTGCAGGTATTCCCGCAAAAGCTTTAATCCGCCCACTGGGGTGCAGAAGTCCGGGTCTTTGGCCTGGGCCTTCTCCCAGACCTCATCAAGGTCAAACCAGGCAACGGCTGAAACTTCTTCTTTCTGCAGGACTAATTTATTTTCGTCTACGGGCTTAGAGTAGACATGCACAAAGGAGACCTCCCGGTTTTTGAATTCTGTCTGGTGGAAGACCTCGTCGTAGCAGTTATGGAAGGTACCGATAAAGGTAAAGTCAGCGGCCTGGCTCTTGATGCCCAGTTCTTCTTCCAGCTCTCTGATGATGGTTGCCAGGGGCTCATCTCCGGCAGCGATGTGGCCGGCAGAAGAGGTGTCAAAGCAACCTGGGTAGGAGTCCTTATTGGCGGACCTTTTCTGCAGGAGGACTTGCCATTTGCCGGCTTTTTGCCGGATGATCCAAACTGAGGCGCAGCGGTGCCAGGCCCCAATCCGGTGGGCTTCATTCCGCTCAATGGTCTGCCCGGTAGGCCGGCCCTCTTTATCCACAATATCAAGAATTTCCATAATTTACCTCGAATTTTCAACGCTTTTAGAGCGATTTTACCAGCAAAAGGTCTTTTTGTCATGGCCCCGTGAAACTAAAACGCCATTTTAACCGGTTACAAGGCAAGGGGCGTAATCCATTAATAACAAGATTTTTCTCTTAAAAGATGGTCAAAAAGCATTTGTGCACCAAGGCTATTAAATACAGAAAATTAACGACAAAGCTAGATATACCAAGCAATTAAAGGACCTTAAAAAAGGAAGATGAGAAAATCGCGACAACGTGAAACGGTAAAAGTGGAAAAAGGCAAATATTGACCAAAAAAAGCAAGGCAAAAGGAAGTTCCTTTACCTTGCTTCTTTAAGGAGCGATAAATGTGTTTAGTAGACCCGGAGGCCGATTCCCAGGAAGATCAGGCAGATCACGAACTGGATGACCAGTTGCTTCCATATAAACTTAAACCAGCGGTCAAAGCCGATATTGACCATAGCCAGGGACATCAAGATCAGGCCAACTGGGGCGATCAAGCCGATGTAGCCCTGCCCCCAGTTGGACGATGTAGATCAAGAAGAGGACCCAGACGAAAGCCAGCTTGTTCATGCCGGTGATCTGCTTGCTGAAGAAGTACATGATCGTGTCGCTGGTGTGGCTTTCTGGAGACCGCCCGGGCCAGGCCGACCGTCAAGGCAACCCCTACCTAAAAGGTCAGCCGCGCCGCTGACAAAGCTTTCCATGAAGCGGTGTTCACTTAAGCCGGAAACCAGGAAGAGAAGGTAGGAAACGGCCAGGAAGACAACCGCGATTTCCGTGAAGTACCAGCCCAGGCTCTGGACACCCCAGATCATGACAAAAAAGCCAGCCACGAAGGTGAGCAGAGTCAGTTTTTGCCGCCAGGTGAAGTCGCCCTTGTCAGCTTGTGAGTCAAAAGCAAGAAACTTTTTCTTGTTTTCTTCATATTGGTCGTAGACCAGGGACTTGCTTGGGTCCTTGCGGACTTTTTCTGCATAGATGATGGTGTAGAGCATCCCGGCCCCTAGGGAAACCAGGAGCATGATGATTCTCAAAGGCAGGGCCCGGGCGAAGTTGACTCCGGCCGTGTTTGAAGCAATAACCGTTGAGAAGGGGTTGATGGTTGAACCCAAAGTCCCTAAAGTGGTGCCCAGGAAGATGGTGGCGACCACGGTCATCGTGTCATAGCCGGCCTCCAAGAAGACCGGGATCGGCATCGGGTAGAAGGCCATGGTTTCTTCGGCCAGGCCAAAAGTAGTCCCGCCCAGGGCAATCAGGACCATGACGATGACGATCAAGAGGATTTGCTTGCCCTTAATATGTTTTACCTGCCTTTAAGAGTATTTTTAGGTAAAAAATCAGCTAAAGTAAACTAAAAGTTATAGTACCGGGCTTAGTAGCGAGGCAGTAAGATGAGAACGAGATGAAGCGCATACAAAATATTTACGATATTTTTGCCAAGGGATCGGTTTATTTTAACGAAAGGACCTCCGGCTTAAGCCCCAGCAGCTGGCTGAGCTGCCAGGTCTTGGCCGGCAAAAGGCCCAGGCGGTCCAAAAGCTCCTGGTCACTAAAGAGCTGGTGAACCGGGCCGTGGTAGACCAGATGGCCCTGGCTCATGGCATAAACCTCCTGGCAATTTTCAGCCAGCCAGTCCATGTCGTGGGTGATCATGATCACGGTCTTGCCCTGGGCCAGCCGTTTTTCAAGCAGGCGGGTGACCAGGCAGCGGCCAGGATAATCCAGGCTCATCAAGGGCTCGTCCAGCAGGCAGACCTCCGGGTCAAGGACTAAGGCGGAGGCGATAGTCAATAATTTCTTTCCGGAAAGAGACAGGTCGTAAGGGTTTAAGTCACGGAATTCTGCCAGGCCGAATTCTTTAAGGGCGGCTTCCGTTCTTCTGGCGATTTCGTCTTCCGGCAGTTTAGCCTGCTTCATGGACCAGGCCAGTTCTTTTTCCACGCTGGAGTTAAAAAGTTGGTCATTGGGATCCTGAAAGGCATAGGCGATCTTGCTCAAGCGGCCGGAGGCCAGATACTCAGACAAAGTCTGGCCGTCCGCTTTAATGGCATCCCCAGCTGGCAGGAGGTCAGCCAAAAGTTTCAAGAGAGTGGATTTGCCGGACCCGTTTTGTCCGACCAGGCAGATCAAGCCGGGAGAAAGAGTCAAGTCCGGGATGTCCAGGGAAAAATTCGTTTCCGGGTATCTATAATGAAGGCTTTTAATCTTAATTTGCATTTTCGGCAGCTTCCTTTAGTTCACGGGCATTGACCGGGTAGCAGCCATCGAGTTTAAGCTCCAGCTTTTTGGCCATTTTCCAGGCAGCAGGCTTGTCGAAAGCCGGGTCATCCAGCTGGTTGAAGACCGTTTGCGGAGAGTCCGCCATCAAGAGGCAGCCGTCTTTTATGACCCAGATTTGGTCGCAGAGGGCAGCTAAGTCATCCAGTTCATTGGAGATGAGCAAGAATGGACAGGAAAGTTTTTCCAGCCAGCTGAAAAAGTGCTGGCGGCCCAAGGGATCCATCTGGCTGGTCGGGTCGTCGAGCAAAAGCAGGTCGGGCTCAGTGACCAGGGCAGTGGCAATGGCTACCCGCTGGGTCTGGCCGCCAGACAGCTGGTTTGGCGACTGGTCCAGCAAATTGGTCAAGTCCAGCTGGTCAGTTACCCGCTTAACTGCACTTTCTATTTCCTCATCGCTTTTGCCCTGGTTGAGCAGGGAAAAGGATAATTCATCATAAACGGTGTCGGCTAAACCAGACAGCTGACTGGCCGGGTCTTGCAAAAGGAGGGCAATTTCATGCTGGCTTCGCCAAGCTTCTAGCTCTTCTCCGTTGATCCGGACTGAACCGGAAAACTTGGCGGGAATCATTTTTCCCGCAATTCCGGCTAAAAGGGCCAAAAGGCTGCTTTTGCCGGCATGGCTGGGCCCGATAATGCCGATCCGTTTACCGCGGCTTTGGGCAGAAATATTTTCTAAAGCCAGATTTTCAAAGCCCAGGTAGCGGAGGCTGAGCTGGCTGATGGTCAGTTGAAAATTGTTAGACATGCTTTTACTCCTAAAAGGACCAGGCAGCTGGCAATGAGCAGGCGGTGGCAGAATTTGTCTTTCCAGTAGTCATTTGTCAAGCTGGCCGCCCGCCGCTTAGGGCTGGCATAGCCCCGCAGTTGCAGGGCGATCGACCGGTTCATGGCCTGCTGGAAGCTCTTGACGATCAAGGGCAAAAGGACGGGAAAGAGATTTTTGATCCGGGAGAGCAGGGACTTGGCTGGCGCGATCCCCCGGGCCTTCTGGGCTAGCTGGATCTTGCGCAGGTTTTCCTGCATTTGCGGCAGGATATAGCAGACTGACATGAGGACGTAGACCTGCTGGTAGGACAAACCGGAATTTTCCAGGTAGCGGGCATTCTCTGAAATGGTGGCTGTCTGGATGAAAAAGCTGCTGGAAAAAATAATGGTCAAAATCCGGCAGGCTAAGAGAGCCGCGTGGCCCAGTCCTTCCTGGTAAAAGGTCAAAGAGGCAACGGAAAAGGCGGCGGTATGGTTGCCCGGCCAAAAGAGCCCCTGGATCAAGAGCATGGTCAGGATGAGGAAGAGGCTGAAGGCACACATTCCCCAAAGGGCAGGGAGATTTTTGGTCGAAAGTGCCAGGATAAAGCTGGCAGCGAGGATGCTCAGCGCACTGGGCAGATTGCCGGCGGCGAAAGCAGCGAGCGTAAAGAGCAGGATCAAGAGCAGCTTGCTGATGGGGTCAATGGCTGCCTGCCAGGCGGGCAGGGCCAGGTCTTCCGCGTTATTTCTCATTTTTCAGTCCCCTTGAAAAAGTAGACCAGGCGCTTTGGCAGCTGCTTGTAGATCAAAAAGGCCAGGTAGGCGACGACCGTCTTGTCCAAAAGGTCAAGAACAAATTCATCAAGGAATGAAGCAATCCAGATGTTCACGTGCTTGGCAACCAGGGAGGCAAAGAGGGCATCCCCCCAAGCGATCCCGGTCTGTCCGCCCCAGAAAATGACGTTGAGCGGGGTGGAGATCACGGCGGAAACCAGGGCAATCAAAATAGCTGCTAGCAAGACGGTAACCGGCCGCTTGAAAAAGCCCCGCTGGTTCAGCCAGCCAACTGCCAGGCCGATCGCGATGCTGGTCAAAGCGTAAACGGCGGAAAGGGGTGACAGGGTCAAACTGTAGATGACATGGTTGATAAAGCCGCTGATGGCCCCAGCGACAGGACCACCCAGCATGCTGGCCAGGAAAGTCCCAAGTGACCCCAGCCAGACCGGCAATTTCAACCCTTCAGCAAAGGCCTTGGCAACATAGTTGATCCCGACAGCGGCCGGAATTAGGGTCATGGCGTGGGCGGAAAGCTTGAAGGACCAGAAGCTGGCCTTGTTTTTAGAACTGATTTCTTTGTTTTTAGAACTGATTTCTTTAGAATCCATTTTGCAACCTCGTGAAAAATATAAACAAAAATAAAATGACATAAAAACAGACGATCGTCAAACTAGATCATAAGAGTAAAGGTAACCTATACTTTTATGAAAATAATTTACTGTAAGCTTACCACCAGACTAAAGCCTGGGCAAGAGCTTTTTTTCGAAGAAGATAATGAAAACCCTTTAATTGTGACTTGCAGAAAATATAATATAAACAAGAAATAATAACCGATAAATTATATTCCGTGCTTCTTTTTTTAAGAATCAATTAAGATATTTTCAGTTTTTATTTGAAATGTGCTTTTAGAATTTTAAGAAAAAACATTCTTACTTTATAATGAATGTAAGCGCACAAAATCTAGTTTGCTGGATGGCGGAAAAACAGGAGTGAAAGACCATGGGAATAATCAAATTCACGGAGCAGCAAAGAAAAGACTATGAGCAGCTGCCGACTGACATGGCAATTTACCAAACAATTGACGGCAGCCTAAGACCTTGCTGGTGACAGATGAATTGTGCAGATTGCTGCGGATCAGCCGGGAAGACTTGATCGCTAACCTGGACAAGAGCATGTTTGGTTTTGTCCATCCCGATGATATCGGCCGGATGGCTTATTTTGGCAAGAATTTCGCGGCTCACACAGATGAGAAATACGATGTTTTCTTACGCTGGAAGACACCAAAGATGGAGGATTACCATATTTTCCACTCCTGGGCCAACCATGTGCTGGTTGATGGCGTCAGCCTGGGCTTCTTCTTTTACAGCGACATGGAAGAATCCGGCAAGAACAACCAGATTTTAGATACCCACTACCAGAAGTATGAGATGTACCAGGACCGGTTGACCAACCTGCCCAACCGCCGTTTCCTGGAGATTTTCGGCATGGAAGAAGTGGCCAAGCTGCCGTTTAGCCAAGAAGCAGCCGGTCTGCATGACTCTCAATATTGCCGGCATGAGCGTCTACAGCAACCTTTATGGCTTGAAAAAGGGTGACCAGCTCTTACGGGAATTAAGCGAGCTTTTGGTTAGCGAAATCAAAGAAGGGCATGTTTACTACAACAAGGATGACCGTTTCTTGATATTAACGGTAGCTGAGGGTATCGATGAAAAGATCAAGGAAATCCACGAAAAATTTGTCAACCTGGCCAAGAATAAAGCCGTTGACCTGCAGTTTAGCCTTTACCAGATTTTGGATGATGACCAGAACATCATGATGATTACCCAACGGGCTAACCAGGCCATGAAGGAGATCGGCCTCGACCGCCGGGTCTACGTGAAGAAATACGACCCGGCAGTGGAAGAAGACCTGGAAGAGAGCTACTTTTTGAACAACTTCAGCCGAGCCATGACTGAAGGCTGGCTGACGGCCTACTTCCAGCCAATCTGCTCGGCCAAAGACGGCAAAACGGCCTCATATGAAGCCTTGGCCCGCTGGCAGGATCCGGAAAAGGGCCTGGTTTCTCCAGCTGCCTTTATCCCGGTGATTGAAAAGCACTACCTGACCTATTATTCGGACATGTACATGCTCTGGGAAGTGGTTGCCAAATTGCGGCAGTGGAAGGAGCGGGGGCTGGATCTGAAGCCAGTCTCCGTTAACCTGGCCCATGAAGACTTTGAAATGCCTAATCTGGTTGAAAAAATCAACGACCTGGTTACCGGAGCAGGTCTCTCCTGGTCTTTGATCAAGATTGAAATTACGGAGCGGGACCTGTCAAACAACACTAGCCGCTTGAAAGAGCAGATCGATCAGCTGCGCTCCTACGGCTTTGAAGTTTGGATGGATGACTTCGGCAGCGGCTATTCCTCTCTCAACGCCTTAAACGACTATAGCTTTGACCTGGTCAAAATCGACATGGTCTTTGTCCGCCACCTGGATGACGGACAGTTAAACCGGCTTTTGATTCCGGAAATCACCAAAGTTGCCCATAAACTGGGTTTGAAAGTACTGGCTGAAGGGGTCGAAAAGGAAGAGCAGAGAGACTTCCTGCGAGAAGCAGGCTGCGACTTGCTGCAAGGCTTTTTTGTTCAGCAAGCCGGTTGAATTGGATGAAAATCAGCAGGTTATTTCCTAAACAGGGTTGGAATGTAAAGTTTAATGTGATGTGATAGTGATGAAAGAGAAAGGAAATAAAAAATTGTTCATGGCCTCAGCTGGCAATTTGCCGATGAAAAAGAAGCAGTTTACGCTGACTACCTGGCTTCAGAGGCGTTTGCCAGGGAAGTAGCCAGCAATAATTTAACCATGGGAATTGTCGTTTCCAGTTTGATCGCGGTCATTGGCTTTTTAGGCATATTTGACCTCAATTCAGATTATGCAAATATCTCGGTGCTTCTAGTAATTGCCAGTGAATGGGTCTATCTTTTCCTGCTATTAGCCAACCTACCCAACCTGTTTTTGCTCCTTTGGCTGCAAAAACACCCGCAGGCTGCCGAGCTTGAAATCCGGATCTGCTTTGCCAACCTGGCGGTCAATGCCATCTTGTCTGGTTTTACCTTGTACAGTACCCAGGAGGGGAGCGTCTACTTTTTTGAACTGGTCTTGATGATGATGGTCATCTGCGTCTTTCCCTACTATAAAGCCGGGCATGGCTTATCTTTAGTGGCTTTGAGCCTGCTCATGATCTCAGCAATCATTCTTGTCAACCATGTCCAGGTTGCCTGGCAGGATACCTATGACCTCTTCCTCTTTTACGTTATCGGCCAGGCCTGTATTGTCCTGCGCCGGTACTGGTTTAGGCAGAGCTCTTGGTACAATTACATCCTGCACCAGGCCAACGGGACGCTTTTTGTCAGCAGCCGGACCGATAAATTGACCGGCCTGTATAACCGCCTGGCCTTGCGGGAATACTTCCCCAACTACGGCAAGCAAGAGGTTGGCGTGGCCATGATTGATTTAGACGACTTCAAGCGCTTTAATGCCAATTACGGCCATGCTTACGGGGATCTGGTCTTGACTAGACTGGGCCGGTATTTGCAAAAGGACTGGATGAATGAGCATTTGCGCTGCTACCGCTATGGCGGGGATGAAATCTTGATTATTGCTTCTGGCTTAGAAGATGGTGATTTTGTTAAAAAATTGCAGATTTTTCAAGCTGAATATGCTAAACTAAACCAGCAATTAGAAGAGCCAGCCACCTTGAGCATCGGCTATGCTACCGGCGCGGTTGCCAATGAAGAAGAGTTGCGGAAAATGATTCAGCTGGCTGATAACTATCTTTACCAAGCCAAAAGACAAGGCAAGAACCAGGTGGTTGGCGCAGAGAAGAAATGAGGCATTATGTACAGCTACATCCCGAAAGAACAAATCAAGATCTACCGCTACTTGACGGTTGACGCGGTCAACGCCGCTTTGGCGGACTTGCGGCAAAAAGGCATCAGCCTGGAACTGGAGAGCACGGTCGGGACGGCCGGCAACTTCGTGACCCAAAACGACGGGGTGGTGGACCTGGACTACCAGTTAAAGCTGGTCAAGGCGGCCGAAGAAGATCCGGCGGCCCTTCTGGCTAAAATCAGCGTCGGCTTAACTGCCGGTCTGGCCAGCAAGTTCGAAGGCGGCCGGGAAAACAGCCAGGCTTTAACCTTCCTGCACCGGGCTAAGAAGAGCGGCAAGGTCAACTTTAAGTTAGACTTGACCATCATCAAGGAAGAAGACGGGGATGAATACCGCCTGGTCAAAACTGACGGGGGCAAGTGGAGTGAAGCCTTTAATACTCGCTTTTTGACCATCCAGGAAGAAACGATTAAGGACTGGGACCAGTGGGAAGACTTGCGCGAGGATTATCTTCGCCTTAAGAACGCAGATCCGGCTGGTCTGTCAGTCGACCTCTACCGGCAGGCAGTCAACCAGATCTACGGTTAAGAAGTGTGAAGCAAAGCAGGCATTTGCCTGCTTTTTTCATGCAGAAAGCATTGAAATCTCTTACAAAAAATGAAATAATGGTCTAAGAAGCTAGCAAAAATGAGTTTGGAGAAAAAGATGGAAGAAAAGAAAAAAATCAAATTAATCGCGACTGACATGGATGGCACCCTGGTCAATGACGCCAAAGAGGTGCCCGATTCATTTGCCCCTTGGGTCTTAAGCCACCCGGACCAGCAGATGGTGATCGCCAGTGGTCGGCCATATTACACCAATGAAGAGCTTTTCAAGGAGATCAAAGACCACTTGATCTTCATTGGCGACAATGGCGGATTGATCTACCAGCAGGGGCAAGTCTTGGCCAAGGCCGGCATTACAGCGGAAGAAGCAAAATTCTGCCTGGACCTCTTTAAAGATGAGCCCCTGGCCAATCCGATTCTCTGCGGAGCCAGCCAGGCAATCTGCCACGACCCTAAAGGTGACCGGAACTTTTTAAAGCAGCTGGATACTTACTATATCAAGCGCCGCTATGTTGAAGACCTTGAAGCTGAAGTAAACAGCGATGAAATTATCAAATTCACTGTTTATATCGAAGGCGGGGCCGCTGAAAGCATCTACCGGCAACTGCCGGAAATGCCGGGCAACTTAAGCGCGGTTTTGGCCGGGCCGGAATGGATCGACATCGTTAACAAGGACGCCAATAAGGGAGCAGCGGTAAAGAAGATCGCTGACCTTAAAGGAATCAAGCAAGATGAAATTCTGGCTTTTGGCGACTACTTAAATGACCTGACCATGTTAGAAGCGGCCGGGACCAGCTACGCCATGGTCAACGGCCACCCGGACTTGAAAAAGATCGCTGACCACATTGCCCCAAGCAACAATGATGAAGGAGTAATGCAAATTCTGCGAAAATTGTTTGATTAATTGCTGACAGCTGCCTTTTGGTGGCTGTTTTGCTTTACATTGTGCATGATCCAGGCATACTAGATAGTTAGGTACCGAATCTTAATTTCTTGATTATTTTTTGCAGAAAGGACAAGCAGGATGGCAGAAGAAGAACTCAATGAAGAATTGTTTCACCGGAGCATGCGTTTGCAGCGGTAATTGGCCCAAATGGTAATGCGGTATGAGAAGCTGCACGGCGGCGTCCGGGGGCAGAACCGGACTTTGGCCCTGCTCAGCAAGAATGAGGGGATGAAGCAGGCGGAACTGGCCCGCTTTGCCAGAGTAAGGCCATCCTCAATCAGTGAAGTCGTGGACCGTTTGGAGCGGCATGGCTTGATTGAACGGCGCCGGGATAACAGCGACCACCGGGTTTTCCGCCTCTACTTGACTGAAAAGGGCAGAGAGCAAAACAAACGCAACCACTCCAGCTGGCTGGGCTTTGTTGGCGACTTGCTGAGTCCTTTAGGTGACGATGAAAAGGCGGAATACCTGAACATCTTGAAGAAACTGGACAAAAAGGCATTATTCTTAGAGAAGATGCCAAAAAAGAGGGTGAAAACCATGCTTAAAATTGCTAGAAAAAATTGACTTGCTGGGCGACTTGCCTGGCAAGTCTTTTTTTATTAGTACAAGTTGCATGTGATTTGTACTTGTCGACGGTGACGGCCAACCTGGTTGACAAGGGGATCATTGGCAAGAACCTGCCCTATATCTGGCAAACAGGGGGCAAGATGCTTTTGGTTTCTGCCTTGGGCCTGCTGGCGGCTTTTGGCAACATTTACTTTGCCTCCCACCAGGCCATGCAGGTCGGCCAGCGGCTTAGAGCCATGCTCTTTGCTAAGGTCTTGACCTTATCTGATGAGGAATCAGCCGCTTTGGCCAGTCCTCTTTGATCACCAGAACGACTAATGACGTCGTCCAGGTACAGATGACCTTCATGCAGCTCTTGCGGATGCTGCTCCAGTCCCCGATCATGCTGGTGGCCTGGACCGTTTTGGCTTATATCCAGTAGCCCCGCCTGGCAAAGTTTTTTGCTATCGCCCTGCCAGTTTTGGCGGCCATCATTCTTTTATTGATCTTTTATTGATGCACTTTGCCATGCCGCTCTTTAAGAGCATCCAGCAGAAAACCGACCGGATCAACTTGATTTTCAGAGAAGGACTGACCGGGGTCCGGGTTATCCGGGCCTTTAGGCAAGACCAGCGCGAGCAGGACCGCTTTGCCGGGGCCAATTTAGACTACTCGAAGATTGGCATCAAGGCCTATACGATCATTTCTCTCATGCAGCCCGCCGTGACCCTGGTCCTTAGCTTGACCAATGTGGGCATCGTTTTTTCTGGGCAGCCGCTTAATTAGTGGCAGAATCATGGAAATCGGCAGTCTTTTGACTTTCCTGACCTATGCCACCCAGATTCTGATGAGTTTCATGATGCTATACATGCTCTTTATCGTGATTCCCCGGGCTTCTGTTTCAGCCAAAAGAATCAATGAAGTATTAGATGCCGAAAATCAGCTCCAGGACCCGGTTAAGTCAGTATCTATGCCCAAGGGTCCGGCAGAGCTGGAATTTGACCAGGTTAGCTTCCGCTATGCCGGTGCTGAAGAGGCCGCCTTAGAAGGAATTAATTTCAAGGTAAATGCGGGCCAGACCCTGGCCTTGATCGGAGGGAATGGGTCAGGTCAGGCAAGTCCACCCTGGTCAACCTGATTCCCCGCCTTTTGGACGTGGAAAAAGGGGCCGTCATGTTCACGATCTCCTGGAAGCTGACTTTAGTGGCTCTTTTGACCGTGCCAGTCAGCGTCTTGATCACGGGCACGATTGCCCCCAGGGCTCAGAAGCTGTTTGGCCGCCAGCAAGAGCATCTGGGCAAGATCAACGGGCAGGTGGAAGAAATCTATGCCGGGGTCGGCATCGTCCGCGTTTTTGGACAGGAAGAAAATGAAGAGGAGACTTTTGCAAAGCATAATGACTCCTACTTTGACGCTTCCTGGAAGGCGGAATTTCTCTCGATCATGATTTTTCCCTTGATGAACTTTGTTAAAAATGTCGGCTATCTCTTGATTGCCGTCTTTGGGGTAATCGACGTGATCAACGGCGCCATCAGCCTGGGCAATGTCCAGGCTTTTCTCCAGTATTCTAACCAGTTCTCCCAGCCCTTGACCCAGCTGGCCAACATGTCCAGCACGATCCAGCAGACCATTGCTTCTGCCGAAAGAATCTTTGCCGTTCTGGATGCTGAAGACATGGATGAAACAGTCCACCCGGCGGAAGGATTAAAGACAGATACTAAACTGACCTTTAAGGATGTTTCTTTCAGCTACACTGATGCTCCTTTGATCGAAAATTTCAGCCTGGAAGTACCAAAAGGGGAGATGGTGGCCATTGTCGGGCCAACCGGGGCCGGCAAGACTACGATCATCAACCTGCTGGAGCGCTTCTATGACGTAAAAGGCGGGCAAATTTACTTGGACGGCCAGGAAACCAGGTCAATGAGCCGGGAAGACTTGCGCAGCCATATCGCCATGGTTTTGCAGGATACCTGGCTCTTTACCGGGACAATTTTTGCCAATATCAAGTACGGCCGGGAAGATGCCGGTGATGAAGAGGTTTACCGGGCACAGGGCCGACAGCTTCATCCGCCAGCTGCCGGATGGCTACGAGACCCTGTTAAACGAAGAAGGGACAAATATTTCCCAGGGGCAAAGGCAGCTCTTGATGATTGCCCGGGCCTTTTTAGCTGATCCGGAAATTCTCATCCTGGATGAGGCGACCAGCTCGGTTGACACCCGGACGGAAAGCTTGATCCAGAAGGTGATGGCCGATCTGAAGCAGGAAAGAACCAGCTTCGTGATTGCCCACCGCCTGTCAACCATCCAGGATGCCGACAAGATCATCGTGATCAACCACGGCCAAATCGTCGAAAGTGGCAACCACCAAAGTCTCTTGGCCAAGGGATGCTTTTACGCTGACCTCTATCAGAGCAGTTTTTGGGCCAGGAAATCTGAAAAAAGCCATGATTCTCGCGAATCATGGCTTTTGCTTTAGCAATATTTAAAAAATAGCCCTTTGCATTTTGAACATGTGTTCCGTATAATTAGGATTGGTTCAAAAATTACTACTCCTTCTTGTCCTTGTCATGCTTTTGCTTAATATGATAGTAAAGGCCGAAGGGAACCAGGTTCTCATTTCCGGCGATAATCCGCTTGATGTTGGCCCGGTGGCTCCACCAGATGAGGACAACCAGGACTCCTGACATGACTGTCAAGAAGGTATCATGGAAGAAGCTGGAAATAAAGATCAAGACGACTGAAATCAAGCTGCTCAAGGACACCATGCTGGTGATTAAGAGCAGGAGGATGAAGTAGAAGGCGCAGAGGCCGAAGAACTGGACATTGTAGCCCAGAAGAAAGCCCGCCGTGGTGGCCACGGCTTTGCCGCCCTTGAACTTGAGGAAGATTGAGAAGGCGTGGCCGAAAATAGCCGCTGCCCCGAAAATCAGGCACAAGTGGTGGTCACCCAAGTGAAAGATCCGGGGCAGGCAGGTGGCCAGGGTCCCCTTGAAGAAGTCAACCAGGAAGACCAGGGTGCCGGCCTTGGGGCCCAGGACCCGGAAGGTGTTGGTGGTCCCGATATTGTGCGACCCGTAATCCCGGATATCCTTGTGGTAGAAGAGCTTGCCGACCAAAACACCGGTCGGAAAAGAACCAATTAAGTATGCTAAAATTAATAGTAATGCAAATTTCATTGCAAACATCAAATCAACTCCGTTTATCTTATTACCTGCTATTTTAACAAATAACGGACTGAATTGATACGAAGTTTATAATCTAAAGCTTGGAGATGTTTTATTTTGCCAAAGAACACATATGATGATTCTTCAATTCAAATTCTGCACGGGCTGGAGGCAGTCCGCAAGCGGCCGGGGATGTATATCGGGTCAACCGACATCCACGGCTTGAACCAGCTGGTCTACGAAATCGTCGACAACTCCGTCGACGAAGCCATGGCTGGTTTTGGCCAGGAAATCAACGTGACCATCCACGAGGACAATTCCGTGACCGTGCAGGACTTCGGCCGGGGGATGCCGACAGGGATGCATGCCTCAGGCCGGCCAACCATTGAAGTCATCCTTACTGTCCTGCATGCCGGCGGCAAGTTCACGGAGCAGAACTACAAGACCTCCGGCGGTCTGCACGGGGTCGGCTCTTCTGTGGTCAACGCCCTGTCCAGCTACATGAAGGTGCACGTGGTGCGTGACGGCAAGGCCTACGAGGAAGAATTCCAAAATGGCGGTCACCCAATCGGCACCCTCCGCTGCCTGGGGGCGACCAAGGAAAAGACCGGGACCACGATCACTTTCAAGCCGGACCCGATGATTTTTTCAACGACTAAGTACAACTACGAGACCATCCAGGAAAGAATCCGGGAATCGGCCTTCCTGCTTAAAGGAGTCAAGTTTACTTTGACGGACGAGCGGACGCCAAACCACCACGACGTCTTCCAGTATGACGACGGAATTGAAAGTTTCGTTGCCTACCTCAACGAAGGCAAGGGGACGATCGGCAAGGTCTTCTACTTTGAAGGCAGCCAGGACGGGATGGAAATCGAATTTGCCGGCCAGTACAGCGATTCATACTCAGAGAACTTTGTTTCCTTCGTCAACAATGTCCGGACTGCTGACGGCGGCTCCCACGAAGTCGGGGCCAGAAGCGGCTTTACCCGAGCCTTTAACGACTATGCCAAGAAGCAGGGGCTTTTGGGCAAGAAGGACAAGAACCTGGAAGGGTCCGACTACCGGGAAGGGCTCAGCGCCGTTTTGAGCGTCAAGATCCCGGAAGAACTGCTGGAATTTGAAGGGCAGACCAAGGGTAAGCTGGGGACTCCCCAGGCCAGAAGCGCGGTCGACAGCATAGTTTACGAGAAATTGTCTTACTATCTGCTGGAAAACGGGGAATGGGCCCAGGACCTGGTCAAGAAGGCCCAAAGGGCCCGGGATGCCAGAGAGGCGGCCAAGAAGGCCAGAGATGAGTCCAGAAACGGGAAGAAACGGCACAAGAAGGAAGTCCTGTCCGGGAAATTAACCCCGGCCCAGTCCAGAAACCCTAAGAAAAACGAGCTTTTCTTAGTCGAAGGGGACTCAGCCGGCGGCAGCGCCAAGCAAGGCCGGGACCGCCGCTTCCAGGCCATCCTGCCTTTGCGGGGGAAGGTTTTGAATACCCAGCGGGCCAAGCTGGCGGATATTTTCAAGAACGAAGAAATCAACACGATGATCCATACGATCGGAGCCGGGGTCGGGACTGAATTCAAGGTTGAAGACTCCAACTACGACAAGATCATCATTATGACTGACGCCGACGACGACGGGGCCCACATTCAGATCCTGCTTTTGACCTTCTTCTACCGCTACATGCGGCCGATGATCGAAGCAGGCAAGGTCTACATTGCCCTGCCGCCGCTTTACAGAATCAGCAAGAAGCAGACCAACCTTTACGCCTGGACCGATGAAGAACGGGATGAGTATGAAAAGAAGGTGGGCAAGGGCTATGCCCTGCAGCGCTTCAAGGGGCTGGGGGAAATGAATGCTGACCAGCTCTGGGAGACGACCATGAATCCAGAAAGCCGGATGCTGATCCGGGTCAGAATCGACGATGCCCAGTTGGCCGAACGCCGGGTAACCACCTTGATGGGTGACCAGGCTTCCGCCAGAAGAAAGTGGATTGAAGAAAACGTCAAGTTCCGCCTGGGCGAGGAAGAGTCGATCTTAGACAAAGTAAATGATTAGGAAGGAAGCAGTATATGCCAGAAACTCACGAGCGGATTCGTGAAATGCCTTTGGAACAGGTCATGGGCGAACGCTTTGGCCGCTATTCCAAATATATTATTCAAGAACGGGCCTTGCCGGACATCCGCGACGGGCTCAAGCCCGTGCAAAGACGGATTCTTTACGCTATGTACCGGGACGGCAATACGGCTGACAAGCCTTTTAAGAAGGCAGCCAAGGCCGTCGGTAATATCATGGGTAACTATCACCCGCACGGCGACAGCTCTATCTACGGGGCTCTGGTCTTCCTGTCTCAAGACTGGAAGATGAGAGAGCCATTGATAGAAATGCACGGCAACAACGGGTCCATGGACGGCGACAGTCCCGCCGCCATGCGTTATACGGAATCCCGCCTGGCCAAGATTTCCAATGTCCTGCTGGAGGATATCGACAAGGAAACCGTGCCAATGGTGCTCAACTTCGACGACACCGCCTATGAACCAACGGTTTTGCCAGCCCGCTTCCCTAATCTTCTGGTCAATGGGTCAACTGGGATTTCTTCTGGTTACGCCACGGAAATTCCGCCCCACAACCTGGGCGAGGTTTTAGACGCCACTATCCACTTGCTCAAGCACCCGGATGCCAGCCTGGAAGACCTGATGACCTTTGTCAAAGGGCCAGACTTCCCGACTGGCGGGATCGTCATGGGCAAAAAAGGCTTGCGGGATGCCTACAAGACCGGTAAGGGCCGGATCCAGGTCCGGGCTAAGACCCATATTGAAGAGATCCGGGGCCACCGCCAGCAGATCGTGGTGACGGAAATTCCTTACCTGGTCAACAAGGCCCAGCTGGTTAAGAAGATCGATGAAATCCGGGTCAGCCGGGAACTGGACGGGATCAGCGAAGTCAGAGATGAAACTGACCGCCACGGTCTCTCTATTGTCATCGAACTTAAGAAAGACGCTGACGCCCAGAACATCCTCAACTACCTCTTGAAGAATACTGACCTCCAGGTTTCCTACAACTTCAACATGGTGGCCATTGCCCACATGACTCCAGTCCAAGTGGGCCTTAAGCGGATCCTGGCCGCCTACCTGGAGCACGAAGAAGAAGTCGTAACCAAGCGGACCCAGTTTGACTTGAAGAAGGCCTCAGACCGGCTGGAAATCATCCAGGGTTTGATCAAGGCCATGAGTATCTTGGACCAGGTGATCAAGGTCATCCGGGCTTCTAAGAACAAGGCTGACGCCAAGAAGAACCTGGTAGCGGAATTTGCCTTCACTGACCGGCAAGCCGAAGCCATCGTCTCCTTGCAGCTTTACCGCTTGACCAATACTGACGTTTTGGCCCTGCAGGCTGAAGAAGAAGAACTGACGGGCAAGATCGCAGCTTACGAGAAGATTTTGGCGGACTCGAAAGTTTTGCAAAAGGAAATCATCAAGGAACTCCGGGCCGTCAAGAAGGAATTTGGCTCAGACCGGCGCAGTGAAATCAGCGATGAAACGGCCAGAGTCGAAGTTGATGAAAAGGCTTTGATCACGGAAGAATCAGTCCGGGTCTTGATCAGTCGCGACGGCTACATCAAACGGTCCTCAATGCGGTCCTTCCAGTCAACTGAAGCCGGTGACAATGGCTTGCCGGAAACTGACCGGGTGGTTTATGAAGGGAGCCTGTCGACTTTGACCAACCTCTACCTCTTCACCAACCACGGCAATTTGATCTACCGGCCGGTGCATGAGCTGGTTGAAAGCAAGTGGAAGGATGTTGGCCAGCACTTGTCCCAGGAACTGGGCCTGGCGGCTGACGAGAGCATCATCCGGGTCTTTGCCTTGGAAGCTTTGGATGATCCAGACCTGGCCTTCCTGCTGGCCACAAACGACGGCTTTATCAAGCAGGTGGCCCTGGCTGACCTGCAGCCAACCAGAACCTACAAGTCTCGGGCAATTATGGCCATGAAGATGAAGGGGGAAGACTCCCGCGTCATTACTGTGGACCTGGCCAAGACAAGTGAAAAGCGGGAAATCACCCTCTTTACCAACCAGGCCTTTGCCCTTAAATATGACATTGATGAAGTTCCGCAAGTCGGGGCCCGGGCAGCTGGGGTCAAGTCAATCAACTTGAAGGAAGACGACTATGTCGTTGCCTGCCTGGTCACTGACCCGCAATATGAAGACCTGCTCAAGGTGGGTCTGGTAACCCAAAGAGGGGCCTTCAAGCAGATGCCGCTGAAGCTGATCGGCAAGACCAGCCGGGCCAAGCGGGGCGTATTGGTTTTGCGGAACCTGAAGACCAAGCCGCACCGGATTGTGGCCTTGAAGGCTTACGGGCAAAACCATGAGCTGATCTTGATCACTTCCAGCCTGCGCAAGCAGGTCATCCGGACCAGCGACCACCCAGTCGGCGACCGGCAGAGCAACGGTTCCTTCGTCATTGATGTTAAGACAGACGGAGAGGCTAAGGAACTGCTCATGGGCCGGCCTTTACCGGACCAGGCCAGGGATGTCGGCCGCTTGTTCTAAAAAAATCAAAAAGATTACGAAAAGATCGCGAAAAGATTGAACAAAGCGCTGATTTTCTAGTAGACTTAATTAGAGAGAATAATTTTAGCTAAATCTAGAAGGGAAAATTCCAAGATGGAAAAAGAACTGATTTTTGGTCACAGAAACCCAGATACTGACGCAATTGGCACGGCGATTGCCTACTCATACTTCCAAAACCAACATGGCTACAACACTGAAGCCGTTGCTTTGGGTGAAGCCAACGACGAAACTTCTTTTGCCTTGAAGAAGTTCGGCTTTGAAGCACCACGCGTGGTTAAGACTGTCGCAAATGAAGTCAAGGCCATCATGCTGGTTGACCACAACGAACCGCAACAAAGCGTTGAAGACCGGGACCAAGTCAAGGTTACCCACGTCATTGACCACCACCGGATCAGCAACTTCGCGACGATCGACCCCTTGTTCTACCGGGCTGAACCAGTAGGCTGCACTTCCACTGTTTTATGGGAAATGTTCAAGGAACAAAACATGGAAATTCCAGCCAACATTGCTGGTATCATGCTCAGTGCCATTATTTCCGACACCTTGCTTTTGAAGTCACCAACCACTACTGACATCGACAAGGAAGCAGTTGAAGAACTGGCTAAGATTGCCGGCGTTGACTACAAGGAATACGGTTTGGAACTGCTTAAGGCCGGCACCAACATCGCCGCTAAGTCAGTTGAAGAACTGATCGACCTGGACGCCAAGAGCTTCGAACTGGGCTCAAAGACTGCCCGGATCGCTCAAGTCAACGTTGTTGACGTCCCAGAAGCCCTGGAACGCAAGGATGCCTTCCTGGCAGCCATGGAAAAGGATGCTAAGGCTAACGGCTACGACTTGTTCATGCTGGTAATTACCAACGTTTTGGACTCTGACTCAGAAGTTCTCTTCATCGGGGATGACGAAAGCAAGTCTGTCTTTGCCAAGGCCTTCGGCAAGGAACTGGTTGACTCAGAAGCCCACCTGCCAGGCGTTGTTTCCCGGAAGAAGCAAATCGTTCCGCCATTGACCCGGGCATTTGAAGCTTAATCAGCTAAATAACAAGGAAAAAGAATCCAGGTTGCCTGGATTCTTTTTTTACTGCTTTTTAAACATCCTACTTGTTACTACAATTTTTCTCAAAAAAGAAAAAGCGCGGCCAAGCCGCGCCAAAAAAATACTGTTAACAAATAAATACAAGGGTAAATTTTGTCAACAGTTATTTTTTTAGCTCTTTATTTTTTACTCGCTTGCTTTATTTGCCAGCATATTGCTTAAGCTGGTCAAACTGATTCTTCAGTTCCAAGTCTAAGTAATATGACTGCTTGACTGGCAGACAGCTTTGCCCATATAAGGCAAAAAGGTAGGCCAGTTCTTCCTTCCAGCGGCCGATTTCTTCATCCAGGCCATCTGGGCCCTCATTTAAAAGGGTGTGGAGGAAGTGGTTGGCCACGCCTACAAATTTGCCGCCCAAGGCCAGGCCCTTGAAGACGTCCAGCGGATTTCTGACCCCGCCAGAGACGATCAGCTGCTTGGTTAAAGGCGCTGCCAAAAGGGCAGCCAGGGCCGTTGGCAGGCCACAGTCGTTCAAATACGCCATAGGGTGGGGGTTGCGGGAATTTTCGATTTGGGCAAAATTGGTGCCGCCAGCTCCCCCGATATCGAACCAGCTAAAGCCAGCTGCCTGCAATTTTTGCAGGCTGACTGGATCCAGGCCGCTGCCGACTTCCTTGACGATGACCGGCACGCCAGCTGCTTCTTTAATCTCCAGCATCCGGTCCAGCCAGACAAAGTCCCGGTCGCCTTCAGGCATGGGGATCTCCTGGGCCACGTTAAGGTGGATCTGCAGGGCATCTGCTTGCAGATCCTTGACGATCTTGTCAGCCGCTTTAGCTGGAGTTAAAGGATTAACATTAGCAAACAAGAGGCCGTCTGGATTGGCTTCTCTAGCTACGTAAAAAGACTCCAGCTGGTCTTCTTCCTTGGTCAAGATGCTGGCTGAACCCAAGGCCAGGGCAATTTGCTGCTTATTGGCAATTTCACCCAGCTGCCGGTTGATCTGCCTGGATTTTTCCGACCCGCCAGTCATCGCGTTGATGAAGAAGGGGGCGGCTAACTCTTTGCCAAACCAGGTCGTCTTGACGGCGTTCAGGTTAACCTGGCTTTCAGGCAAGGCCGGGCGGAGCAGGTGGACCTGGTCAAAGGAATTCGTTTTTTGGGCATTAAAAAACATCTGTGTCAAAGCCAGATGTTCTTCTTTTCTTATAGATCTTTGTGACATCGCAATGCTCTTAGTAAGTTAATTCAGATTGGTGAATGTGAAATTCCAGGGGCAGGATGTCGTTCTTGACCCATTCCTTGCGGAGGCGGTCAATATCGGTGTCCTTGTTGACGATGACGATGCCGCAGTCGCCGTTGCCCGCGCCGCTGGTCTTGGCCGCGCCGCCAAACTTGTTGGCGATTTCGATCAGCTCAGTCAAGCGGGGAATTTCGATAGCAATATTGTTGATAGCGGCAAAATGCTGCAGCAAACGGCGGTTGATGCCGATCTGCTTTTGAATCAAAGCGATGTTGGCTTCTTCAAAACCGCGGATCATCTGCAAAACGCACTTGCGTGAGTCTGCCAAAAACTTGGCGTATTCAGTCCGCAGGTTGTTCTTGTTAGCGTTAGTCTTGTCAACCAGGCGGGAAGTTGAAGCCGGCTGCTGGCTCCAGCCAATCAAGAGCTCCATGTCCTTCGGCGGAACCAGCTGCTGGATCTTCAGACCTGGCCAGGCTTCACCGACAACCGCTGACAGGGACTTGCTTGCCAGTTCTTCTTTCAGCCAGAGCTTGTTGAAGGTCTGGTAGGCGATCCAGCCGCCGTAGACGCTGGCCGCGATATCGCCGGCGCTGCCGTTGCCTTGGACTGAGTAGTGAGAAATTGTGGAGAGCTTGTAAATCAGGTCCTTGCTTGCCTGGACACCGTAAAAGCGCAAGATTGCCTTGACCGTCGCGACCGTGACCGCGGCTGAAGAACCCAGGCCATACTTCTTGCCATCTGCGGAATCCAGGTCAGAATTGACAAACAAGTCGTAAACGTCCATCTTGACCTTCTGTTCCAGGCAGTATCTTTCAGTGAAAGAAATTGCGGACAGAATGTATTCAAATGGATTGTCCCGGTTGTCGATCACTATCTTTGACCCCCGTCTGACCCAGTGAATGGAGTCCTGGGAGTATTGCTTGGAGTGAATCAAACCGGTGTCGCTGCTGCTTGGCTTGATTGAGACCCTGACGTATTGGTCAAGGGCGACCAGAATGGCTGGACAATCTTGTTCCAAGACAGCGTATTCCCCGGCAATGTAAAGTTTGCCTGGCGCTTTTTCAGTAATCACAAAAACTCTTCCTCTTATTCTTTTAATTTATTCTTTTATATTACGTCCTAAGACATTATAGACAATTAAATAAGCTTTAGTCCAACAGAGTGACTCCTGGACCAAAACCTGCCTCAATGATCTTAACACGATCAAAGGAGGACTCAAAGCAATTAATAATATCTTTAGAATTTTTCCCCTGGCAGAGGACCTTGACGTTCGGGCCGGCGTCAATGGTGTAGTAGCACTCCAGCCCTTGCTGGCGCAGGTCCTGGACCAGCTTGATGGCCTTGATGGTATTCGGTTCAAAATAGGTAAAGCCGGGGACAGCGGTGAAGGTTAAAGTATGCATCTCACTGGCATTTAATTCAGCCAGAGAACCCAATTTGCTAAAGTCAGCCTGCTTAATCGCTTCTTCCATCTCCTTGATCTCACTGTCATTTCTGTCCAGCCAGACCTGGTAGAAGGGGGAGCTCTTGCTCATTTCCATCCCCTTGGTTGAAGAAATCTTCTTTTCCTGGTCGTTGATTTCAACAGCCAAAAGGCGCAGGTCCATGTCCGGCTCTTCGTCCAACGGGTAGGCGTAAGAAGTCTGGTCACTATCGCCTTTTTGCCAGACGGAAAAACCGCCGAAAACAGATCTTGAAGCTGAGCCCGATCCCATCCTGGCCATTCTGGACAATTCCTGCCGGTCAACGCCTAACTGGTAGTGGTCGGCAAAAGCCGCTGCCATGGCGGCGAAGGCAGAGCTGGAAGAGGCCAGGCCAGCCGCGGTTGGCACCTGGTTGACCGATTCAACCGCCAAATTTCCCTTGACTCCGAAGCGGTCCTGCATGGCCCGGAGGTAGGCGAAAACGCGGTCAGCGGCTGGACCGGAAACGGCTTGGCCGTTTAATTTAAAAGACATTTGCTCGCTGTCTGAGATTTTGGTGTCGCTATAGAAGGCATCCAGGGTCATGGACAGGCTGGACATGAGCGGCAGGCGCAATTTGGCGTCCTTCTTGCCCCAGTACTTGATCAAGGCGATATTGGTATGGGCGCGGGCAGTTTTACTCATCTGTTTCACATTCCTTTATTGTGTAATTCTGTTTTTAATAATTTTTGGGCAAAAATTAAATCTCTTCAATCCAGTAGTTACTGATTTCTGCTTGGCAAGCCTGGGCAATCTCTTCGCAGGAAGCGGCATCCTTGCAAAGGGCGATGACGATTCCGCCCAGGCCGCCGCCAGACAACTTGCAGCCTAAAGCCCCGCCTTTATCAGCAATCTGGCAGATCCGGTCGATCTTGCTTGTCGACAAGTTAAAGGAAGCTAAAAGCTCCTGGGCCTCATTGAAGAATTTACCAACGCTCTCCGGGTCTTGCTCAAGCCAGGCAGCTTTGACTTCGTCAGCCAGTTGTCCCAGCTTGCGCATTCTAACTTGCGCGTCAGGTGACTCATTTAAAAGCTTGGCGACCATAGTGACGGCTTTTCTGGTATTGCCCAAATCGCCCGTGTCCATGATCAAAAGGCTGGCACCTAATTTTGAGGAGAGCTTTTTTACGCCCCTTTGCTTATTAAAAAAGACCAGGTAATCGGAATTGACTGTGGCCGCGTCCAGGCCGGAAGCCTTGCCGTGGTTGATCGTTTCTGCCTGGTTGGTGATGTTCATAACTTCACTTGCACTTAACTTCAAGCCCAGGTATTGGCTCAAGGCCACGGTAGTACCGTAAGCGACGGTAGCTGAGGAGCCAAGTCCGCGCTCCATGGGAATTTCCCCTGTATAGGTAAGCTTGATCTGGGGATTTTTCCCGCTTCTAGTCAAAAGCTCCTTGACGACATACTTAAGGCCGTTATAGTCAGCAGGCGCGTCAAAAAAAGGACCCTGGTAGAGCTTGGTGTCCATCCAGACCGGGCCGGCATAATCACTGACGGTCGTCTTGATGTGTAGGGTCTGAATTGGTATAGCCAGGGCGTCATAGCCGTAAACAACGGAATGCTCGCCGATCAAAATTACTTTTCCATGAGCAGTATATGAAGTCTGCAAAAAGAATCACCTCAAAAAATTAATTTGTTAGTTCGGTTAACGTTTGCTTAGAATCAATGGCAATCAGTTCCCAAAAAGGAAAGAGATTGATAAAATTTAGATTGACCGATCAGTCAACAAAGGAGTGGAAGCAATGATCAAAATTATAACCGGCAGACAGTCCGATCCCCTGCAAACTGAGATCATCGGCCGGGCGGCCCGCAATTATCTGGCCCAGCCCGGCAAAGATACCTTTATTATTGTACCAAACCATATCAAGTTTAACACAGAAGTTGCCGCAATAGGCAAAGTCGCCCAACTTCAAGGGCGGGAAGAGACCAGCGTCAAGAACCTGCACGTCCTGTCCTTTTCCCGTCTGGCCTGGTTTTTCTTTAAAAAGGCCGACCTGCTCATGCCTGAAAGCCTGGATGACGCTGCCGCGACCATGATTTTGGAGCAGATCATCGACAAGCGCAGAGATGAACTGCTGCTTTTCAAAAATTCCCACGCCAATTCCGGCATGATTAAGCAGGTCTACAGCACGATCCTGCAGGTTCATACCGGCCAGCTGGACCTGGGCAATCTTTTGGAGCGGGCAGCCGACCCGGCGGTGGCCTTGGACCTGGATAATGAGACCAGGGACAAGCTGCACGACCTGGACTTGATCTACCAGGACTTTTTAGAAATCGTCAGTGAAAAGCACTTCGCCACCAAGGATGAACTGAACATCCAGCTGAACCAGCTTTTGGCCAGCCGGCCGGACCTGGTCAGCCAGGCCAGCTTCTACGTGACTGATTTCTCCCATTTTTCCATTCAGGAAAAAATGACCATGCAGCTGCTGGCGGCTTTTGCCAGCGAGATGACTTTCGCCTTCAAGACGGCTGACGGCAGCGTGATTGAGCCGGCCGCCGGGGAATACGACTATGTGGTTCAGAAGACGATCAAGGACTTGACCGGTTACTTTTCCGCCCATGACTTTGCCTGGGAGAGAGAAAAAATCGCCAGTCCAGCCAGTCCGGCCAGGGACTTGAACCAGGCCTGGCAGGGACAGGGCCAGCCGGATTTAAATAACCTCCAGCTGGTTAAGGCAGATTCCCGCTACGCTGAAGCATATTTCGTGGCCCGGACCATCTATGACGAGGTGGCTTTAAAGGGCTGCCAGTACCGGGACTTTTTGGTCCTGGCCCCGAATTTGCAGGAGTATGAAACTTACCTGGCTCCGATTTTGCGGCAAAACCAGATTCCCTTCTTTGACGACCTGCAGCAGCAGATGAAGTACCACCCCTTGGTGCTTTTGCTGGAAAATTTGGGCAAGCTCCTCCAGCAGGCAGGAGACACGCCAGCTCTTTTGAGCATCATGAAGACCCGCCTCTTGATCCCTGACTGGTATTTAGAAGGGGATGCAGAAGCCGGGGAAGCCGCGTATTTGCGCGACATCGACCAGCTGGAAAACTTTGCCCTGGCCCACGGAATCAAGTACAGCCTTTGGCAAAAGCCCCTCAAGGACTTTACCAAAGCCCAGGTCATCGCCCTGGACCAAGAACAGTACCAAAAGTGGCTGGACCGCTTGGACAAGTTGCGGGACTTCTTTGTCAGCAAGATCTCCCGGCTTGCCCGCCAGCTGAAGAGTGAAAAAGACAGCATGACCGCCGTCAAGCTCTTTTTTGACTTCTTGGTCAAAAACGGGGTCAGCGCCCGTCTGGAAGCCTGGCGCTTAAAGGCCAGCGAGAGCGGAGACCTGCAGCAGGCCCAGCAGCCGGAGCAGTGCTGGAATCTGCTTTTGTCTTTGCTCAAAGACTACCTCTTGGTCAACCCGGAAAACTTTGCCTGGGCTGACTTCTTTAAGATGCTGACGGCAGCCTTTTCCCAGGCCAATTTCGCGACGATTCCGGCCAGTCTGGACGCCGTCACCTTGTCAGAATACGGGATGGTGCAGACCAGCGGCTACAAGCAGGTCTTCATCATCGGAGCAGCCAATGGCAGCCTGCCGCAAATCAACGACCAGCCCAACTTTTTGACTACGGAAAACCTGGCCAGCCTGGCAGACTTTTTTGACCAGGATGCCTACCTGGAAGACAGTCAGCAGCTGCGCAACCTGGACCAGGAATACCAATTCGGCAATGCCCTGGCCCTGGCCTCTGACCGGGTCTACATCTCCTATCCGGTGATCAATTCCAATAATGACCTGCTGGATCCTTCCATTTACTACAAGCGCCTGCTGAAGCTGGTTAACGGCCGGGAATACCGGCAAAGGGACCTGCCAGATATCGCTGAAAAAGACCGGACCGAATTTGCCCGCCAGCTTTTGCTCTTTTTGACCAGTCCAAGGGCCAGTTTAGGCTACCTGGCCTATGCTGAGGAAAATTCCGCCCAAAGCCCGCTGGTGGCCAAGCTGGTCGAACTCAGCCGGCAGTATGAGGAAGAAAAGGCTGAAGAAATCGCGGAAGGGATGGCCTATGACAATAACCCGCAAGACATCTCAGAAGACCTGGCTGAGCGCCTGTACGGCAAGGACCTGTTGTCTTCAGTCTCCCAGCTGGAAAGCTACTACCAGAATTCTTTTGAATACTTCCTTAACTATGGCCTCCGCCTGCGGCCCCGGGCAGAAAATGAGCTGAATGCCATCCAGTCCGGTAACTACTTCCACCGGACCTTTGAGCTTTTGCTCAAGGAAATGCAAAAGAAGAATATCGAAATTGACAAGCTCAGCGAGCTGGACCTGGAGCTTTTGCTCAAGCAAGTCAGAAGCGAGATCCTGCAAGAACCCCTCTACCAGCAGTTCTTGCGTGACCCTTTCAATGAATATCTTTTCAAGGTCTTTGACAAGACGACCAGTAAGGTGGCCCAAAGCTATCGGCGCAAGCAGCAGGAAAACAAGATGCGGGCTACTTACGGGGAACTGGCCTTTGGCCCGGCTGAAAAGCTGGCCGGCCTGGTCTTGCCTTTGAAGAAGTTTGCCGGCCAGCGGAAGATCAGCCTCCGGGGCAAGATCGACCGGGTCGACCTCTTTAACGGGGACCAGCATGTTCTAGGCCAGCTGATCGACTACAAGTCTTCCGACCACAGCTTCAACCTGGCCCGTTTTGCCAGCGGGGTGGACCTGCAGATGATCGCCTATTTGGACGTTCTGGAGAAGAACCGGGACCTCCTGGCCGGCGGGCGGCAGTTTGACCTCCTGGGGGCCTTTTACCAATATGTCACCCGGAAGCTGAATTCCGTCAACTCCTCATCAACCGGGGCCTTGTTTGACAGCAAGCTGCAGCTGAAAGAGAACCTTTTGGGCGGGGAAGACAAGTTGAAATTGTCCGGGGTCTTTGTCAGTGAGCCAGCCTGGTACCAGGAAGTCGACAAAGCCCTTGAGAAAAAGGCAACCAGTTCGGTTTACCGGGGCCTCAAACTGAACAAGAGCGGCGGCTTTGGCAAAAAAGACAACTTCTTCAGCCAAGATGAGATGCGGGAGCTGCTGGAATACGTCGAAGCCTTGATTGAGGACGCGGCCAGCGAGATTTTGAGCGGGCAGATTGCCTTGAATCCTTTCCGGCAAGGCAACAATACCGGCCTGGCATTTAGCGATTACAAGGATATCTTCTACTTTGACCAGCAGCTGCCAACTAACTCCTACCGGGATCTGCCAAACCTTAAAAAGGCAGATCTGCTGGCTTTGGTAGAAAAGCGGCTGCGGCAGAGGGAATAAGAAATAGTACATAGAAAGGAAATAGCATGGCTGTAAAATATACACCAGACCAGGCCAGGGCTATTGAAAGTCGGGGGCAGGACCTTTTGGTTTCAGCCTCTGCCGGCTCAGGCAAAACCAGTGTTTTGGTTGAAAGGGTCATCCGGGAAATCATGGACGACCACTTGGAGGTTAACCAGCTCCTGGTCATCACCTTCACCCGGGCGGCGGCCAGTGAAATGAAGCAGCGGATCAAGCAGCGCCTGCAGGACCGCCTGCAAGAAGAAACAGACGCCAGCCAGGCCGACTTTTTGCGCCGGCAGCTGGCTGAAATCGATACCGCGATTATTTCCACGATCGACTCTTTCTGTTTGGACGTCATCCGCCGCTTTTACTTCGCGATCGACATCGACCCGGACTTCAGCATTTTGACTGACGCCACCCAGATTGAGCTTTTAAAGGAAAGAGCCTTGAGGGATGTCGAAAACGGCTACCTGCAAAATGAGGACCAAGCGAAAAAAGACCGTTTCCTGGCCCTCTATGATGCCTTTGCCGGCGACAGCAATGCCAATTCAGCCAGAGACTTGCTTTTGGATTTATACCAGTTTGCCATGGCCCGGCCCAACTACCGGGCTTGGCTGCAAAAGCTGGCTGCCCCTTACCAGCTGGAGACCAGCGACGTCGTTGACAGCGCCCTCTGGCAGGAGAAAATCAAGCCTTACCTGGAGGAAGAATTTTCCAACCTGGCGGACAAGCTGACGGCTTTGATGGCCGAAGCAGACTTTGACCATGAAAAGTTTGCCAAGTACCAGCCAGCTTTTACGGCTTTTGCCACCAGTCTGGCCAGCTACCGGGAGAGCCTGGCCACAGATGATCCCTTTGACCGGCAAAGAGAGCTGCTGGCGGCCTGCCAGTTTGACGGGACCCTGCGGACTAACAAGGAGATCGCCGACTTTGTCGAGGAGGCAAAGGAGGTTAAAGAAGCTGGCAAGCAGCTGGTCTTCAATGTCTATACCGGTTTTTACGCAAGCAGCAATGCTGACCAGCAGGCCCTCTTAGCCAAGGGGGCAGAAATCGCCTCCGCGGCAGCGGAAGTTGAACTGGCCTTTATTGACCGCTTTAACGAATTGAAGCGGGCTGACCGGGTCCTGGACTTCAGCGACATGGAGCAGTTGGCCTATGAAATTCTGACCCAGGACAGTTCAAACTCTGACCTGGCCCGGGCCTACTACCAAAGCCGCTTCAAGGAAATCATGGTCGATGAATACCAGGACACCAACGCCCTGCAAGACGGCTTGATCCAGCGGCTGAAAAAAGCGGGGAAGAACAACCTCTTCATGGTCGGGGACGTCAAGCAGTCAATCTACGGCTTCCGCCAGGCGGAACCCAGCCTGTTTATCGCCAAATATGATGAATATGGCCAGGAAAATTCGGCTGGCAAGCAGCGGATTATTTTTGCCGAAAACTTCCGCTCCAGCCAGCCGGTCACCCAAGCTGTCAACTTGATCTTTGACAGCCTCTTAACCAAGGACTTCGGGGGGATTGACTACCAAAAAGAAGGGCAGCTGAAATTCGCGGCTGGCTATGACCCAGAGGCGGCCCTGCCGACTGAAACAGAAGTCCTCTACCAGGAAGATTCATCTGCAACAGATGATGACGGGGAATTGAACCAGGGCGATTTAGCCATGGTCATCAGCCGGATTCAGAAGCTGATCGCTGACCAGACGCCAATTTTTGACCCGAAGACCGGGCAGACCCGGCCGGTCAGCTATGGGGACATCGCCATCTTAACCCGGTCCAAGACCAGCAACCTGGACATCAAGCAGGAATTTGACCGCTACGGGGTTCCGCTCTTTGTCATGGATGTCCAGAACTACTTCCAGACCTTTGAATTGACGGTCATCATGTCCTACTTGAAGATCATCGACAACCCGGACCAGGATATTCCCCTGGTGGCGGTTTTGCGGTCTCCGATTTTTAACTTCTCCAGTTCAGATCTGGCCGAAATCCGCCTGGTCAACAAGAGCGTCAGCTTCTACGCGGCTTTAAGAACTTATGCTAAAAAAGATACAGATCTGGCTGCCCGCTGCCGGGACTTTTTGGCCCAATTGCAGGACCTTCGCGACTTTTCCTTGAGCCACCGGATTTCAGAACTGCTCTGGACCATTTACGAGCGGACCAGCTTTTTGGAAATCGTGACGGCCATGACCAACGGCCAGCAGCGCCGGCTCAACTTGACTGCCTTGTACGAAAGAGCCAGCGCCTACGAAAGTTCGGGCTTCAAGGACCTTTACCAGTTCATCAACTTTATTGCCAGAATGCGGAAGAACCAGAAGGACCTGGCCCAGCCGATCCTGAGCGAAAATGCTGGCAACTCAGTCAAGCTGATGACCATCCATGCCTCAAAGGGGCTGGAATTCCCGGTCGTCTTTGTCTTGGGCCTGGAGCACCGCTACAATTACCAGCAAGACATTACCGGCAGCTATGTCTTAGATGCCAGCGGCCTGGGCCTGTCCTTTGCCTATCCCTTTGATGAAGCGGAATACCGGGCAGATACTTTGGCTAATGTCTGGCTGAAGATTGCCAAAAAGCAGAAGTTGCTGGAAGAAGAAGCCCGCCTGCTTTACGTAGCTTTGACCCGGGCCAAGCAGAAGCTGATTTTGGCGGCAAATATCAAGCTGCCAGCCAGAACCGACCTGGCGGGCTTGGAAGAGAAGTGGGCTAAGGAAATTTCTGCTGGCCGCCTGACCCTTTTGGATAAGATGAAGGTAGCCAAGCCCCTGGACTTTTTGGCCCCGGCTTTAGCCCGCGCCAAGCAGGTGAAGCGGCTGGGTGAAAAAGCCGTTAGCGACCTGGCGACAGGTCAAGAAGGCAGTCTGGTCTTTGTCCACTTTGACCCCAAGAAAGACCAGGCCCAATTGCCGGATAGTGAGGCCGTGGCGGCCAGCGGGGCAGACTTGACGGAAGATGAAGCAGCCGTCTTTAAGCAGGCAGAAAAGCTCTATACCTTCAGCCAGGGCGGCTATCCTTACTTGGATGCCAGCCGGACCACGGCCTACCAGGCGGTGTCTGAAATCAAGAAGGTTTTTGGCGACCCGATCGAAGACGAACTGGCTGACTCCCACATTTCGGAACTGCAGTCAGCCAACCGCTACCTGCAGCCGATCGATACTGAACCTGACTTCCTCTTCCAAAATACGGTCAGCTCAGCTGAACTGGGGACAGCCAGCCACCTGGTCTTGCAGTATTATGACTATGCCAAAGGCGACAAGAATGCCATTGACAGCTGCATTGCCGGCCTGGTGGAAAAGGGCCGGCTGAGCCAGACCTTGGCCAGCATGCTGGACCGGGAAGCCTTGTCCTGGTTTGTCAAGAGCGACTTTGCCAAAGACTTTTACCAGCAGCCTGACCGCCTCCACCGGGAGGAAAATTTTGCCACCATCCTGTCGCCGAAGACTTTATTTAAGGATTTTAGCGATTTTCCAGGAAAAATTTTGGTTCACGGGACAATCGATGGCTATTATGAAGCGGAGAATGGTATCATTTTATTTGACTACAAGACTGACCACGTGAACCCGCGTAAGCAAGAGGAAGCAATTCAGAAGCTGAAAGAGAAGTACCAGGGCCAGTTGCGCCTTTATGAGCGGGCCTTGAATGAATCTGGCCGGCTGCCTGTTTTGAAAAAGTACCTGGTGCTTTTGAGCTGCCGGGAAATTGTTGAAGTTGATTAGAAGTTTTTAGGAGTGAAAGGAGCGGAAAATGGCGGATTTTTTTGCCGGCGAAAGCTTCGCGGTCGTTGACTTGGAAACGACCGGGACGCGCAAGGAAGAGGGGGACCGGATCATCCAGTTTGGCTGCGCCATAGTCAAAGATGGTGAAGTGGTTAAAACTTATTCCTTCATGATGAACCCCCACCGGAAAATTCCCCTGTCCGTGACCAATTTGACCGGGATCGACCAGAAGATGGTGGCCGGCCAGGCTGATTTCAAGCACTATGCCCCGAAGATCCGCGAGATCCTGCAAGATACGGTTTTCGTGGCCCATAACGTCAATTTCGACTTTCCTTTCTTGAACTACGAATTGACCAATGCCGGCTTTGAGGCCTTGACCTGCAAGGCGGTTGACACGGTTGAACTGGCCAAGATCGCCTTTCCGACCCTGCCTTCTTACAAGTTGCGGGACTTGACGGCCAGTCTGGAGATCAAGCACGCCAACCCCCACAAGGCGGATTCTGACGCCTATGGGACAGCCGTCTTGCTCTTGAAGATCATCGACAAGCTGGCTTCTTTGCCCCAGGCAACTTTGAATGTTCTGGGCTCTTTGGCCAGTGGCCTTATCCGGGACACGGGGGACGTGATCAAGGTGATTGCTGACCAGTCCCGGCAAAGCAGGCGCAAACTGCCCAAAGACAAGATGCAGGTCCGCAACCTGGTCTTAAAGAGGCAGGAGATTCCGGCGGTTGAACATGGGGAAAATGGGCATTTTCCAGTTAAAGACACGGACAAACGCAAGCTTTTTAAAGGCAAGATCAATTACCGGCAAGCCCAAGTGGACTTAATCGACCGCTTGCACGACTTTGTCGAAGATGCCGGGCAAAGGGTCATACTGGCTGAAGCGCCAAACGGGACAGGGAAGACTTTTGCCTACCTTTTCGCCTACGCATACCAGCTCTATTCCGGCAAAAAATTAGTAATTGCTACACCGACCAAGGTCCTCCAGCAGCAGCTCCTAGACCAGGAAATTCCCCAGCTCCTGCGGGTTACGGGTCTTGGCTTAAACGCGGAAATGGTCAAGTCCAGCAGCCACTACCTGGATTTAGACGGTTTTGCCCAGACTCTCTACCAGAATTCGCCCAACAAGGCGACCTTGCTCTTGCAGATGCAGATCCTGGTCTGGCTGACAGAAACGACGACTGGGGACATGGATGAATTGCAGCTGACCAGCCAGCAGCTGCCGATTTTTAACCAGCTCAAGCACCCGGGGGATGCCCGGGTGGCCAGCCAGTTTGCCAGCGTTGACTTCTGGAACCTGGCCCGCCGCCGGCAGGAGCAGGCCAACATTTTGGTGACTAACCACGCCTACCTGGTCAACCACTACATGGACTCCATCTGGGGGCAGAATCCTTACCTGGTAATTGACGAAGCCCACCGCTTCAGCGAAAACCTGCAGACGGCCCGGATGGACTCCCTGCACCTGGAAGCAATTTGGGGCAGCATCAGCCACCTGCGCAATTTGCTCTACTTTACGGACAATAACCTGCTCAGACAAAGCGAGGAAAATGTCCAGCTGCAGTTCATGCTGGACCTCTTGGACCAGGAAAGCCTGGACTTGATTCACAGCTTGAACCGGATGCAAAAGTACCTCTACCAGCACAAGGGGCAGGCGATCAGCAAGGTTTTTTTGCCCAAGAAGAGCCTGCAGCTGACCATCCAGGGCCAGGATCTCTTCCCGGAAAACTCTCAGTTCCGGCCACTTCTTAGACAGTTCCAGCAGCAATTGGAGCAGGTCCGGATCCATACCAACCAGATTCGCTACTTGCTGGAGCAGGAAAAGGACCGCTTTTTAACTGATGAGGAATCTTTGCTGGAAGAATTGAATGACCAGGTCGACCTGCTGGAATTCTACACGGGAAAGAGCTACCAGCTGGCTGATCTCTTGAACCAGCCGCTCTTGGATCATTTGGGCTTCGTGGTCAACGTGACCAACCCCGAAGATGCTCTCAGCAGCAACCTCCACTGGCTCAGCCTGGACAGTTCTGAAGAATTGCATAAAATTTACGACCGCTTTGACCATATCAGCATGATCAGTGCGACAATAACTAATGACGGCAATTTTGCCTTTGCCAAGCAGCTCCTGGCCCTGCCAAATTTGGGTGTCTCCTGCTACAAGGGCAAGGCCAGCTTCCCCATGGCTGACCATCTGGAGATTCTGGCCATGGACGAGGGGCAGCCGGAACCAGATAGCCCGCGTTTTTTGGAAGAATTGAAAAATATCCTGACCAAGGACTTAAGCGGGCAAAAGCACGTTTTGTGCCTGTTTACCAATCTGGACTTGATCAAGCAGCTCTACTTTGAACTGCTGAATGATCCCCGGGTTAAGGACTATGAGCTCCTGGCCCAGGGCTTGACGGGGTCAAATGAGCGGATCACCCGCCGCTTTGTCATCGCTGAACGGTCAATCTTGCTGGGGGCGGATAGCTTCTGGGAAGGGGTGGACTTCCACAATTGCGGGATTGACCTGGTTATCGCGACCCGCCTGCCATTTGAGTCCCCGGACCTGCCGGAGGTTAGCCTCAGGCAGCACTACCTGGCCCAAAGAGGCTGGGATGTCTTTCAAGAGGACTCTTTGCCCCGGGCGGTTCTCCGCCTGCGGCAGGGATGCGGCCGCTTGATCCGGGGCGAGGATGATCATGGGCAGTTTTTGATCTTGGATCCCCGGATCTGGACCAAGAGCTATGGCCCGGCCTTTAGGTCCAGCCTGCCGGCTCCGGTGCAAAAGGTTAAAGCGAGTGAGTTAAAAAAGAAGTTGAAGTTCGAGAGGAAAAATGCTTAACGAAAGAGTCAAAAATGTCTTGCAGTATCTGGCCTGGCTGGTCTTCTTCCTGTTTTTGCTTTACGCGGGAACAGTGGCGGTTGTTGCTAAGGCAGCCAAGCCGTACAGTCAGCAGAAAGAGAAAGTCGCCAAGCTGGTCAAGCAGACTTCCATGAAGCAAATTGACAAGTACTACCATTTGAGCCGGGGCGTCAAGTCATATTCAGCCAGCGGGAAAACCAGTAAGGGTAAGGCGGCTTACTTCATCTACCTGCCGGATAAACATAAGGCCTACTATTATTCAGCTAGTGACGGCGTCAGCGAAAGCACGGTCAAATCCAGCTTTCAGAAGTCTTACCCAAAAAAGGCCATCAAGGAAGTCAACCTGGGCTGGTATCAAAAGCAGGCCGTCTGGGAAGTCACGGCAGTCAACGCAGACGGCAGCTACTGCTATGCCATCTACAAGTTCAAGGATGGCCAGCTCCTGTCTCTGGTCGATAAGTTATAGAAGATTAGGCAAAAATCTGCTATCATGGATAGAGTTATAAAAATAAGGTGGAATTAAAAGAATGACAGAATTGATTTCAATCAGAGAATCAAGCAAGCACGTAGATGAAGAAGTCAGAATGCACGTCTGGCTGACCGACAAGCGGTCCAGCGGGAAGATCGTCTTCCTGCAATTAAGAGACGGCACGGCCTTCTTCCAAGGCGTTGTCCGCAAGAACGATGTCAGTGAGGAAGTTTTTGAAGCAGCCAAGGGCCTGCGCCAGGAAGCAAGCTTCTACCTCACCGGGACCATCCATGAAGACGCCCGGTCTCACTTCGGCTACGAAATCCAGATCAGCGACCTGGAAGTCGTCTCAAACAATGAAGGCTACCCTATCACCAACAAGGAACACGGGATCGACTTCCTTTTGGACCACCGTCACCTCTGGCTGAGAAGCAGGCGGCCATTCGCCATCATGCAGATCAGAAACCGGATCTTCAAGGCCACGGTCGACTTCTTTGAAAACGAAGGCTTCGTGAAGTTTGACGCCCCGCTTCTGATGCACTCAGCGCCAGAAGGGACCACGGAACTCTTCCACATCGACTACTTCAACCACGACGCTTACCTGTCACAATCCGGCCAGCTTTACGGGGAAGTCGGGGCAGAAGCCTTCGGCAAGATCTTTACCTTCGGGCCAACCTTCCGGGCGGAAGCTTCCAAGACCCGCCGACACTTGACTGAATTCTGGATGATGGAACCGGAAATGGCCTGGATGCACCAAGATGAATCCCTGGACTTGCAGGAACGCTTCCTGTCTTACGTGGTTGGCCAGGTTTTGGAACACTGCGAATACGAATTAAGCATCCTGGGCCGGGACGTAGACAAATTGCGTCCAGCCGCTGAAGGCAATTACACCCGCCTGTCCTACGATGACGCGGTTAAGATGCTGCAAGAAGCTGGCAAGGACTTCAAGTGGGGCGACGACTTTGGCGCGCCAGATGAAGCCTTCCTGTCAGAACAATTTGACCGGCCATTCTTCATCGTTAACTACCCAGTAGCAATCAAGCCATTCTACATGAAGAAGAACCCGGAAAACCCATTGACTTACCTCTGCGCCGACGTGGAAGCGCCAGAAGGCTACGGGGAAATCATGGGCGGGTCAGAACGTGAAGCTGACTACGACACCTTGAAGGCGCAAATCGAAGAAGCGGGCCTCAACCTGGACGACTACTCCTGGTACCTGGACCTGAGAAAGTACGGCAGCGTGCCGCACTCCGGCTTCGGGATGGGCTTTGAACGGGTTATTGCCTGGATCTGCAAGCTGGACCACGTTCGTGAAGCTGTCCCATTCCCAAGAATGATCAACAGAATGCAGCCATAAGCGCATTAGCTGTTTTTTAACAAGAATAAAAGCTAAAATAAAAGAGTGGGTTAGCTCACTCTTTTATTTTTTTGTGAAAGAACGTGAGAAAATGGCAAGTTACAATTTTTACCGGCAGCTGGGTGTGACCAGCATCAGCAATGGCTTGATTGCCTACTATGCCCGCCTGGGCTTGACTGAAGCGGAACTGGCCCTGGTCTTGCAGCTAGAAGCTTTTTTTCAAAGGGGAAATTACTTCCCCAGCAATGAAAAAATCGCGGCCAATACCAACTTCAGCGTCAGTGACGTCACCCTCTTGATCCAGAGCCTGCTGGACAAGGGCTGCCTGTCTCTTAGGCAGGCCAAGGACGCCAGCGGGAAGATCAGCAGCCGCTACAGTCTGGATGAGCTCTATGACAAGCTGGACCAGTATTTAGACCAGCATGTCCAGGTCAAGGACATGAACGGGGAAGTGTTAGAAGAAGCTAAAGACAGCTTGAATAACGATCCAATGAGTGACCTGGCCCGGGAGTTTGAGATTGAATTTGGCCGCTACCTAACCCCGATTGAGCGGGAGGAAATCCAGGACTGGCTGAATTTGGACCACTACGCCCCGGAGATTATCAAGTTGGCCCTGCGGGAAGCAGTCTTGTCCCGGGCGATGAGCTTCAAGTATGTTGACCGGATCCTGCTGAACTGGCAGAGAATGAATTTGAAGACCGCCAGCGAGGTCCAGCAGTATCTGGAGAGAAACCGTTAGTAAATTTTTGGGAGGATTTTAATGGAAAAAGACGAAAAGCTCTTGAGTGATGAAGAAGCAAGAAATGTTTTGAAGCGGATTGACGCCATGTTTCCGGAAGCAAAAGGGGAGCTGAACTGGGACAACCGCTTCCAGCTTTTGTGCGCGGTCCTGCTCAGCGCGCAGACGACAGACAAGATGGTCAACAAGGTGACCCCCCAGCTCTTCGCGGATTTTCCGACCCCGGAAGCCATGGCGGCGGCCAGCCAGGAGGAGATCGAGGCAGATATTTCCCACCTGGGCCTCTATCATTCTAAAGCCAAGCACCTCAAGGAAATGGCCCAGACCCTGGTCGCTGAATATGGCGGCCAGGTGCCGGGCAAGAAGGAAAACCTGGTCAAATTAGCCGGGGTTGGCAACAAGACGGCCAATGTCGTTTTGGCTGAAGGCTGGGGAGTTCCGGCAATCGCGGTCGACACCCACGTGTCCCGGATCGCCAAGAAGTTCAAGATCGTGCCGGAGAAGGCAACGCCTTTGCAGGTGGAAAAGCGGCTGGAGGAGCTGCTGCCAAAGGATGAGTGGATCCATACCCACCATGCCATGATCTTCTTTGGCCGCTACAAGATGCCCGCCCGGGCCAAGAACCCGGATCCTTACAGTTATTTAGATTAAGCTGAGAAAAGCAAAAATTTTGCAGGAGATAGCCATGATAAAATTGATTGCCTTTGATATGGATGAAAGCTTCATGCCGCGGAAGGGATTTTATGAACGTGAGCGCTGGGCACGCGATTTTGACCTGCTGCGCGCAAAAGGCATCCGCGTCTTGCCTATTTCGGGAGACCAGTACCAGCAAGTAGCGGACTTCTTCCCGATGAAGGATGAAATGACGATTGGCGGCTTGAATGGTTCGGTGATTTTTGAAAAGGGCCAGCTGATTAAAGCAGACGAGATTGACCGGTCCATGGTTCAAAAAATAATGCAAATAATTGCGGAAAACGGCCTGGCACAACGGACCATGCTCTGCGGGATCAACTATTGTTATTTTTTGGAACAGGCTGATCCGGCTTTTCGTGAAAGAATGAATTTTTATTTCTCACATAATCAGAATGTATCTAGCTTCCTGCCTTTGCCTGATGACAAATTCACAGAAATCGTGATAGTGCCAGGCACTGACCGCATGGACGAAACTGAGGAGAAGCTTAAGGCAGTCTGCGCGGAAAAACTGCAGATTTTTAACTCGGGAGTAACCAGCATCGACATTCTGCAGCCCGAAGTGTCAAAAGGTAATTCGCTTAAATGGCTGGCAAGCCGCTATGATCTTTCGCCTGAGGAAATCATGGCTTTTGGTGATGGCCTTAACGACATTGAAATGCTGAAATTCGCGGGCCAGTCCTACGCGATGAAAAATGCCCGCGAAGAGGTCAAGGAAGCAGCCAAGTTCGTAACAAAACTGCCGGCTGCGGAGAATGGCGTCCTGGATACGATTGAAAAAGAAGTTTTGGGAATGTAAAAAGACCGCCGGAGAAGGCGGCCTTTTTTATATACTAGGCTAAAACATGTTTAATGAAAGCATCCAGTTCCTTTAAAACAGCTGGGGAGGTGAATTATCCGCCGTCGTGGTCAGCACCATTGATCAAGATGTAGGAGGCTTCTTTGCCGCACTCCTTTAATTTCAGATAAAGGTCAGTGCTGCCGATTGTGTTGACCGTCCGGTCTTTCGTGCCGTGAATGATCAATACTGGCGGAATGTCGGTATCCTTGCTGATATTGCACTCAACTGACAGTTTCCGGCGCAGGTCAGAATTCTCTCTTAAGTCAACATGGCCCATTTCCATCCCTTCCGGACTGTCAGCCTGCAAGTGGTTGATAGTTGTTGGGTTGCTGTCTTCACGCATGACGGAGACAGAGCCGTAAAAGTCGACCACGCCACTTACTTTGGCGGTTAACATCTGGGTAGAGATTGTCTTCACCTTCCGGGAAAAAGCTGGCGTAAACGGCAGTGTGATCGCCAGAAGAATTGCCCGCTAAAATAACCCGCTTTGGGTCGCCCTGGTATTCGGGCCCGTGCAGCTTCATGAAGCGTACGGCCGTTTTGGGCATCAAGAATCGGCTTCGGGGAGGAAGCCACGTCGCTGCCCCGGTATTCAACAACCACAACAACATAGCCAAGAGCGGCGATTTTTGCCATCTGGGGCAGGTCGCGGTAAACATTTTGCTTCATCCAGGCTGAGCCTTGGACGTAAACAAAGATCGGGTAAGTCAAGTCATCCGGATAAGACCATTTCTTAATTTTCATAATTTTTTCTCCTTTTCACATGTTACTTCCATTGTGATGGTAGGAAAAAGGATTGTTCCAGCAAAAAAAGTTAGCGTTTTCAATAAAGATATAATATACCAAAAAACACCGGCAGAAATTAAACTGCCGGTGTTTTCGCGTTGATCAATTCAGTAAAAATTACAGGTTAACGATGCTTCTTGGCCGGCCGCCCTTGGCGATGGTCAATTGGTCAGTCAAGCAGATCTGCACCATGTTGCGGATGGAAGTTTCCGTGTAGAAGGCTGAGTGCGGAGTAATGACAACGTTTGGCATCTTGGCCAGGGTCTTGTAGTCTTCTGGGATTTCGCTGTCCGTCAGGCCAGTGTGGCCAAAGTAGCTGGATTCCCCAGCCAAAGTGTCCAGGCCGGCACCGGCGATTTCGCCATCTTGCAAGGCCTTGATCAAGGCTCCAGTGTCGACTAATTCGCCCCGGGCACAGTTGATCAAGTAGGCAGACTTCTTCATTTCCTTCAGCTGCTTTTCCCCGATCATGTTTTCCGTTGATGGGAAGAGGGGAGTGTGGAGGGAGACGATGTCAGCTTCTTTCAAGACCGTGTCAAAGTCGGTGTAGGTCAAAAATGGTTCAAATTCCGGGTTGTAAGCCACGTCATAGGCGATGACCTTGGCCCCCATGGCTGAGAAGATTTCTGCCACGGCGCTGCCGATGTGGCCGACCCCGATCAAGCCGACAGTCAGGTTGTAGATTTCATTGCTGATCAAGTTACTTGGCCAAGTAAAGTCATGGTCATGGTCCATACGGTAGCGGAATTCCCCGATCTTGCGCAGGAGGTACATGGCCTGGGTAACCGTCATTTCAGCGATCGCCCGCGGGGAGTAGACCGGAACGTTGGTGACCAGCAAGTTGTACTTCTTGGTCCAGTCGAAGTTGATGGTGTTGAAGCCAACGATTCTGAGGCCGATGCACTTGACCCCGTATTCGCTCAATTTTTGGTAAACAACTTCTTCGTCAACCGGGCCAAGTGGCTTAAGGGAAACGCTGCTGCAGCCTTCAGCTAAATCTACAGTCGCGCTGGTCAAGGCCTGGTCGGTCGTCTTAATTTCGACATCGTTTTTCTTAGCCCAGTCTTCAATGTAAGGCACTTCGATCGGGCTGACATTATACATGGCAATTTTAGTCATAAAAAAACTCCTTTGTTACATAACCTTTTGTTTTCTTGCCTCTTATATTTTACCGCAAATGCTGGTCAAACCAGGCAGTAATTTCTTTTAAGCGGCGGATCCGGTGTTTTGGCTGCCCGCTTCTGGAGAGCTCGTGGTTTTCGCCTTTAAAGAGGCACATTCTGCTTTCCACCCCGTAGTAGAGTAGGGCCCGGAACATCTGCATTCCTTCCGGCAAAGGACATCTGTAGTCTTCCAAAGAGTGGATGAACAAGGTCGGCGTGGTCACGTTTTTGGCATATTTCAAAGGAGACTGCTGCCAGGCATAGTCCAGCTTCTCGTCCAAGTTATTTGCGTCAATGGAGTAAAGGTCATCCCAAGGACCCACGTCTGACATAAAGGCATCGCTCAGCCAGTTGGACATGGACCGCTGGCTGGCGGCAGCCTTGAAGCGGTCAGTATGGCCGATCACCCAGTTGGTCATGTAGCCGCCATATGAACCGCCAGTGATGCCCAGACGGCCGGCGTCAATTTGCGGGATTTTTGCCAAAACAGCGTCCGTGAACTTCAGCAAGTCCTCGTAGTCTTCCCGGCCCCAGTGCCCCCGCATGTTGGCGTAGTCGTTGCCCTGGCCGTCAGAGCCGTAGATGTTGGCAAAGAAGACAAAGTAGCCCTGGCTTGCCCAGACCTGCATCTCGTGGAAAAAGGGGGTCCCGTAAACTGTCTTTGGCCCGCCGTGGACATCGAGGATGGCCGGATATTTTTGCTTTTTAGCAAAGTCTTTCGGGTAAAGAACCCAGCCATGCTGGGTATTGCCGGCATAGTCTTGATAGTCAACTTGAACGGCGGAAGCAACATAGCGGCCCTTTAAGGCATCTTCGTTATAGCTAGAGTGCTTGGTCAGCTGGCCGTCCTTGTAGCTGTAAAGCTGCTGGGTCTCGTTGGCATTTGGACCAGTAAACCAGCAAGTGCCGTCACTGGTAAAGTCGAAGAATTCGATGGAAGGAAATTCAAAGACAGGAGTAACTTTTTCGCCGTCAAAGCATTCCAATACCGTGTGGTCGACCTTAGTCGTGGTGAAGTAGAGGCAGTCCTCAAAGACCCGGCTGGTCCGCACGTCCAACAGGCAAAGGTCGGTGTCTACGCAGTCGCCCCAGCAGTCTTCCCAAGCCGCGGCCAAAGAAAGAGTTTTGAATTCCGGGTCATACTTGTAAAACTGGGGATTTTCTTCCGAGCCATAGCGCTTTTCATCAGTGGCCACCAGGTAGAGCTGGCCCTTTAAGACGCAGATGTCAAAAATTGACCACTCTTCTTTTGGCAAAAGCTGAGAGTATTCCAGGCTGTTTAAGTCCAGCTGGTAGAGGGCGGACTTGCGGGCCTTGGATTGAGTGTAAGAATCCCCGGTGAAGTAGAGGTCAGTGCCATCGACATAGTGGAGGTCAAAGTTGAAGTATGGGTCATCTTTTAAGAGTTCGGTCAACTCCTTTTTGGCGGGGTCAAAAAGAAAGAGGCGGTCGCGGAACTTGGAAATAATGCCGTCGCCATTGAAGTAGGCCGGGAACTCATCTAAGACCACATAGTCTTTTTCATCCGGATCCTGCTTTTTCTCAGCTTCGCGCAGGTCAACCCGCCGGCTGAGGAGCAGGCTGCCGTCTGCTAAGACATTTTCAACCGCGAAATCTTCTCCCTCTAAAGCAGCGATTTCCCTTGCTTCACCGCCCTTTAAAGAAAGCTGGTAGATAAAGGTCTTGTCCTTTTCCTTGGTCCGGTTGCCGGCAAAGCAAACCGTGTTTTCATCGAGAAAGACGAAGTCTCTTTCCTGGCCAAAGGAGCTAAGGGGGCTGACTTGCCCGTCTTGCAAGGTCTCTAATGTGTAGAGGTATTTGTCTTTTTTGCTGGCATCTGGCAGGCCCTTGACCCAGACAAGGTTCTGACCCTTGGCCTTGAGCTTGCCCAGGTTGGCATAGTGCAAAAAGTCCTCAATTTTAATTGCGTCCATGATTTCCTCTTTTCTATTTCTGTAAGTCTTGTTGACAGATATTCTTGTTTTTTATCCTGTTGCCATATATTTTAGCAGATAAAAAAGCCAGGGCCTTGAAGAAATCAGTTGCTCTGGCTTTTTCGATAAATTATTAATTCAGCAGCTTAGTTATCCTGCTTGTCATCATTATTGTTGTCTCGCTTATTTTCTTCAGTCTTCGGCGCCTCGCTGCTCTGGCTGGAAGAAGCTGCCGAGCTTGATGAAGCCGCGCTTGAACTTGAAGAGCTGGATGAAGACGAGGACTTCTCGCTTGAACTGGAACTCGAGCTGCTCTTCGAGAAGCTGGAACTTGAGCTTGATTTGACGCTGGAAGTCACGGCTGAACTGGAAGCAGTAGAAGTATCGCTGCTTGAGGAGACATAGTCAGCGTCAGTCGGCGAATGCCCCTTGACAAAGAGTTCCCAAGTGTAGGGCTGGCCAGGGGAGGCTACTTTGTCTTCAGTATTCTTGACAATCCGCTTCTTGACGACGGTTGCTGGTTTTTCCCAGTCTGTGCTGTCTTCGTCAGCCATCAAGTAGGACATCATGTACTTGTAGATCAGCTGGGCTGAGTACTGGCCGACTCCGGAGATCGTCCCGTCCTTCAAATTGTCATAGCCCGTCCAGATCCCGATTGAATACTGCTTGGTGTAGCCAACGAACCAGGAATCCTTTGGCGTTGAGCTGTAGCTTGGGTACTTAACCAGGTCCGAGTCAGAGTACTTAACCGTACCAGTCTTACCGGCCTCGTAGATCCCGCTGACCTTGGCCGTGGTCCCTGTCCCGCTGGTGAAGACGCCCTTGAGCATGTCGGTGATCATGTAGGCAGTTGACTTCTTCATGACCCGCTTGCCAGCAGAGTTATACTTGCGGACCTGCCCGTCAGCCGTTTCGATCTTGGAGACGAATTGCGGCTTTCTGTAAACGCCCATCGTCGCGAATGCTCCATAAGCAGCCGCCATCTGCAAGCTGGAGGCGTCAGCCCCGATCGCTGTTGAAAGACCAGCATTGGCACTGACGTTAACACCTAATTTTCTGGCAAAAAGCGAGGCCCGGGAAATCCCGACTTCATTCAAGGTTCTGACGGCCGGCACGTTTCTGGACTGAACCAGGGCATAGCGCATGCTCATTGACCCCTGGTAAGTGTTGTCCCAGTCATAAAGCTGGATATTAGTGCCCGGGTAGGTGTACTTGGTATCCTGCAGGATGTGGCTGGTTCCCCAGTTGAGGTATTGAATTGCCGGAGCGTAGTCTAAGACCGGCTTGATCGTTGACCCGGTTGACCGGCCTGTCTGGACTGCCCGGTCAAGACCCAGCTGGACTGACGGCAACTTCCGGCCCCCGAGGATGGCGATAACATGTCCGTTCTTCGGGTTGATGACCGTGGCCCCGATCTGCATCTTCTTGCTGGTAAAAGCAACGCTACCGCTGTTAGCCAGGGAGTAAAGTTTGTTTTGGGCAGCCTGGTTGATGTTGATGGTGATCTTCAGGTTGTCATTGTATGGGTCGTAGCCGTCAGCCTGCACTTCAGCAATTGCTTCCTTGATGTAGGCGTCGTCGACCTTGCGCAGCTTGGATTCAGTGCTGGTCGTGTGCTTCTTAAGGCCCTTCTGTACGTCTTCAGCCTTGGCTGCCAGGTACTGCTTCTTAGTAATCTTCTTGTTGTCATACATGGCCTTAAGAACCAGGTCCCGCCGGTACTTAGCCTTCTTTGGGTAAAGGTAAGGGTTGTAGGCCACCGGGGCGTTAGGCATCCCGGCCAAAAGGGCCAGCTGGGCCAGGTCCAGCTGCTTGAGGGACTTGCCATAGTAGTAGTTGGCTGCAGTCCCCATCCCGTAGGTCCCATAGTTCATGTAAACCTTGTTGATGTAAAATTCCAGGATCTGGTCCTTGCTGTGTTCTCTTTCCACCTTCATGGCCAGCCAGGCTTCCTGGGCCTTTCTGGACAGGGTCCGCTGGGAGCTGGCAGTTGAGAAGCAGGTCAATTTGACCAGCTGCTGGGTGATGGTGGACCCGCCGGCCACGGTGTTGGAGCTCTTGACGTTGGTCAAGAAAGACGACACGATCCGGAGGGGGTCGATCCCCAGGCTTTCAGAGTAGAAGCGCTTGTCTTCGATAGAGACGACCGCGTCTTTCAAAGTCTGGGGAATGGCCGAGTCTTTAGCATAGACCCGGGTCTGTGAATCCAGTGACATTAAAAACTTGCCGTCGGTAGTGTAAAAACTTGATGTGCCGCCGCTTTGCAGCTTGGAGGTGCTGATGCTCGGCGCGTCTTTGGCGTAGTAGGCGAAGACACCGATGCCGGAGATGATCAGCAAGAAAAAGAGCAGAAAAAGCCATTTAATTACCCGCAGAACGGGCCGGGCCTTCTTGGCGCCGTCATTGGCGTGTAGGCGGGCCATCCGCGTGTTCTTTTGCTCTGGACTATTTGTTGCCATGTTCTTGTTTCCTATCCGCAATGATCCGGTCGACCGCCTCTAAATAGGGCAGGGCTGGACAGAATCCGCTTTTAATTTCAAAGGAGTTAGCTTCGATTTCAGCAAGAGTCATGGAACTCTTGCCGGCAGCCTTCCAGTTTTGCCAAGCTTGAATCAAAAAAGATGCCGGGGTGACAAAGTAGCGCTCCAGGGTCATGAAGCCGATAAGGGCAAAGCAAATCCCCTCCTGATCCAAACACTGCTCAAGGTGCAGGATCTGGTGCTCATGAAAGTTCTTTAAAGGAAAAGAAGTTTTGTTGCGCGTCTCCTTGGCTTCAAAATCAAGGTAGTAGCCTTGATAGACGCCGTTGTAGTCAGTCGTTGAGGCCTGACGAAAGTAGGCCTCACGGATGACGGCCCGCGATCTTTTTGGGTAGTCGACCTTGACGATCTGAATCGGGGTCGGCTTCTTGTGAACGACTGCGATGCCCGCGTCAAGGTAGTACTGGTTTGATTCATTGATCTGCTGCTCCAGGGTCATCCCGCGGTCAGAAAAGCTGGCCTTTTTAAGCAGGGCCTTTTTTCCTTGCCGCTGGGCTGCCCTGAGGGGCATGACAGATCCAGTTGGGTATTTGACCATAAAGCTCACTCCTGGAAGTCATTATAACAATAAAAACTTGAGAAACCTAATCAGATTATTTGCAAACTGACTCTGAAGCTAGATCATTCCTGCTTTTGCGGTTAATGTTACAATGTTTTTAAGGAACTGGCAAAGCAAAAAGTTTAAGGGAGGAATTTGCATGCAGCGAATTTGGATCAGCGGCTACCGGGGCTATGAACTGGGAACTTTTGGCGACAAGGATCCAAAAATCACGGTGATCAAGTATGCCATCAAGCAGTGCCTGACCAACCTGCTGGAAGAAGGGCAATTGGACTGGGTTATCACTGGCGCTAACCTGGGCGTTGAGCAGTGGAGCGCGGAAGTGGCCCTGGAACTAAGGCAGGACTATAACCTGCGCCTGGCAGTGATGCTGCCTTATCTGGACTTTGGCAGCCGCTGGAGCGAAAACAACCAGCTCAAGCTGCAGAATTTGAAAAATCAAGCTGACTTCTGGTCTGCAACTTCAAAAGAACCCTACCAGGGCGGCCGGCAATTCCGGGAATACCAGCAGTTTATGTTCCAGCACACCGACCGGGCCCTTCTGGTCTATGACCCGGAATACCCGGGCAAGAGCAAGTATGACTACGAGATGATCGAAAAATACCTGGAAAAGCGGGATGACTACCAGCTGGACCTGGTCGATTATTATGACCTGGAACAGGCCGCCAGGGATTATGAAGAAAATCAAAGGGAATGGTAAATTTTAACTCTTTCTTTCTTTTTTATGGGGGCGCTTTTTGATAAAATGACTTTAGTATAAAGGAGTCAAGAGTTAATGGCAGATTTAAACGATATTAAGTTGTCCGCACAGGACATTTTGAAGAAGAAGTTCAGAAACAAGGTCAAGGGCTATGATCCGGATGAGGTTGATTCTTACCTGGACCAAATCATTTCCGACTATGAAACCTTCCAGGACATTATTGAAGACCTTTACGGCAGGATTGGTGAACTGCAGGGGCAGGTAATCGACGCTGAGAAGCAAGTCAAGCAGGAAGAACAGGCCGTCAAGGAAATTCCGGCAGCCGTCCCGGCATCAGCAACTACTGAAAGCAAGGAAGAAGACGTTAAGACCTACGTGCCAAGCTCACAAAGGCAGCGGGCCGACTTCAGCCTGGATAACAGCAGCACTAGCGGCGAAATCTCAACTAACATGGCAATCATTCAAAGACTTTCAACCTTGGAGCGGAAGGTCTACAATCTGGAACAAAGAGTTTACGGAATTCAGGATTTACAAAAGTAAAGAAAGTTTGCTATAATAGTAATGTCGCAAATTTCGAGCAGTCGCGGCCGGCCTTGAGCCGGCTGAGGAAAGTCCACGCACGCACGGGCTGCGATGCCCGTAGTGATCGTATTCAGCCCAATAAGCTGGAGGAGGCCCCAGGCCTCACGGCAGAGAAAGCGCTAAAGCCTAGCCATGCGTGAATATCTTGAAAGTGCCACAGTGACGGAGCAAGCCGGGAAACCGGTTTGGTGGAACGAGGTAAACCCTGCGAGCGTGTAACCCAAAATTTGGTAGGGGCGTCTCAACTTAGGTAAATGAACCAAAAGTTGGACTACATCATGTAGAGATAGATGGCTGCTGAAACCAGCCGCGGCCGGCGGTTGGTGGAACAGAACGTGGCTTATAGAAATTTGCAAGGCAGAGAGTTGGACTTCGTTTGAAGTCCAACTTTTTTTCTTTTAGGAATAAGTCTGCAAATATAAAATCAGAATAGTAATTAGAATAAGGATCAGAAGGAAAAGAACGGAGATAGCGATGGAAGAATACCAATTGTACACGACCATGGGGGCGGGTTTTGAAAGCGTCGTGGCCAAGGAACTGCAGTCCTTGGGCTATGAAACGACGACGGAAAACGGCAGGGTCTTTTTTAAAGGCGGCCAGAAAGACATCGTCAGATGCAATTTGTGGCTCAGAACAGCTGACCGGGTCAAGATCCTGTTAAAGGAATTTACGGCTAAAGATTTCTCAACCTTGTATGATGAAACTTACGCTTATGACTGGGCCATGCTTTTGCCAGTCGACGCGGCCTTCCCAGTCAAGGGGCGCAGTGTCCGCTCAAAGCTGCACTCTGAACCGGATGTGCAGTCCATTGTAAAAAAAGCCATCGTTGACAAGATGGCGGCCCAATACCACCGGCGGGGCAAGCTGCCAGAAAGCGGCAGCCTCTACCAGCTGGACGTGAACATTTACAAGGACACTGTCCGCCTGTCGCTGGACACGACCGGGTCAAGTCTTTTCAAGCGGGGCTACCGGATTGAGCACGGGGGAGCGCCTTTAAAAGAAAACTTCGCGGCATCTTTGATCAAGCTGACGCCATATGACGGGACCCATCCATTTATTGACCCGATGTGCGGGTCAGGGACCCTGCCAATTGAAGCAGCCTTGATTGCCCGCAATATTGCCCCGGGCACTTGGCGGAAGTTTGCCTTTGACTACTTTGACTGGTTTGACCCGAGCCTGCACGAAGAGCTGCTGGAAGAAGCAAAGAGCCAGGTTAAGCCAGCTGAAGCGCCAATTTGGGCCAGTGATATCGACCAGTCGATTCTGGAAGTAGCCAAGCTGAATGCCCACAATGCCGGGGTCTTGCAGGACATCCGCTTTAAGCAGGTCGCGGTCAAGGACTTTACCACCGATCTGGAAAACGGGGTCATCGTTTCCAACCCGCCATACGGCAAGCGTTTGAAAGACAAGCAAGGGGCAGAAGAGCTTTACCGGCAGATGGGGGAAGTCTTGCGGCCGCTGACTTCTTTCAGCCAGTACTATTTGACGGCGGACCCGGATTTTGAAAAGTGCTTCGGGCAAAAGGCCAGCAAGAAGCGCAAGCTCTACAATGGTAACCTCCGGGCTGACTACTACCAGTTCTGGGCCAAGCGCAAGTAAAGAAGAGATATGCTGATGAAGGCGATTACGGATAGTGAACGGCCAGACTTCTGGCTGATCTCAGATCCCCACTTAATTGCCGATGACCTGCATGACTTTGGCGCCAGGTTTAAAAAGATGCGGCAAACCAGCGCTGGCAAGGACATTGCCTACCAGGACCTGGCTCTCAGGGCTTTTGTCAGAAAAGTTGTCAGGGCCAAGCCGGCAGCCTTGATCATTACCGGAGACTTGACCTTTAATGGAGCCAAGCGGTCAGCTGAAAGGCTGGGGGAGATTTTTGCCCCCTTAAAAGAAGCGGGGATTGCCTTGCTGGTTATTCCGGGCAACCATGACATTTATGACGGCTGGGCCAGAAGTTTTAGTGGCAGTGAGGAAAGACGGGTTGCGCAAATTTCACCGGCTGACTGGAAGGAAATTTTTTCCGCCAGCTATGACTTAGCCGCAAGCCAGGAGCCAGGCTCTTTATCATATTCAGTCAACTTGAACCCGCACTGGCGGCTGCTTTTGCTGGACTCCAACCTGTACAGCAGCCAGTTTTCCTACACCCATCCTATGACCAGCGGGGGCACCGATGATGGGGAAAGGCGGTGGCTGAGCCAGGAATTGGTTGAGGCCAAAAGACTGGGACAAGACGTCCTCTTTTTCATACACCATAACCTATACAGTCATAATTCAGTGGTTCATGACGGCTTTAAACTGAATAATGCCGGTGAAATTGTCCAGCTGCTCAGTCAGTACCCGGTCCGCTGCGCTTTTTCCGGCCATATCCATGCCCAGCACATCATGTCCGGCTGGGTTCCGGTTCCCGAGGTTGTTTCATCCTGCTTCGCGGAAAGCGACCAGGGCTATGGGGTAGTTGAGCTGACTGCTAATTCCCTCAGCTACCGGCGCCACGATTTTGACATTGACAATTTTTTAACGGCTGAAGAGAAAAAGCAGCCCGCCTTTTGCGGATTTTCACGCTTATCTGAAGGAAGTTTTTGACCAGAGCAATGATCTGCTTCTGCGCCAGCACTTGCTCAAGGGAGCAGCAAAGGACCTGCCGGAAGCCGCGGAAATGCTCAAAAAGATGCACTGGGACTTTTTCACCGGGCAAAGCTATAAGAGTGAAGCCGAGATCGCGGCAATTTCTTAATCAAGCGCTTACCGAACTTTGTTGGCAGCCATGCCCAGCATGAAAAGTTATATCAGCTCCCTTTACGAGAGCACCCAGTCAAGTCAAAAGTTAGGTTTGACTTGGTGAAAAGCCGATCATTTTTTTTATTTCTTTGCTTAAAGTCCTAACTATAACTTGATTACCGAATATTAAAAACAATGTTTAAAAATATTTTTCGTATTTTTTCGGTATTTTCCTGTTTTTTTGCTATAATCTAGATATCTAGTGACAAGGAGTTTTTCATGAAAAAACATTTGATCTTTTTAGGAGACCTTGGCGTCATTTATTACAGCTGGCTCTTGCTGGTGCTTTTCCTGACTGTGATCTTCTGTCTGGAAGGCAGCCAGTTCATCAACCTGCCGACTGTGATAACCGGCATCATCTTCCTGCTTCTGCTTGTTTTTACATGGAAAAAGTCCTACATTTCTTTTGACGGTCAGACGCGCTTGCGTTTGCCTTACCGGAAGGAGTTCGTCCTAGATGAAAAAACAGAATTGGTGACTAGTTGGCGTGGCTTTGAAGTCTACCGGGCACGGGTTTCCAGGCATCAAAGCATTGATTATCTTGTTTTTAGGAGGAAGCGTGACAGAAATGGTTAAATCAGATATCGAAATTGCGCAAGCAGCAGAAGAATTGCCTATTACTGACGTTGCGGCCAAGCTGGGCTTGACCAGCCAAGACCTTGAACCATACGGCTACGACAAGGCCAAGGTAAACTGGCAGGCAATCAAGCGCAGTGAAGAAAACGGCCACTTGGGCAAGCTGATCTTGGTGACTTCAATTTCACCAACTCCAGCCGGGGAAGGCAAGTCCACGATGACGATCGGGATCGGGGATGCCATCAACAACCAATTAGGCAAGAAGACGGTGATTGCCTTAAGAGAACCATCCATGGGGCCAGTCTTCGGGATGAAGGGCGGGGCTGCCGGCGGCGGCTATGCCCAAGTCATTCCAATGGAAGACATCAACCTCCACTTTACCGGGGACATGCATGCCTTGACCTCAGCCATCGACAACCTGTCAGCCCTGGTTGACAACTACATCTACCAAGGCAACGAACTGGGCCTGGACCCGGAAAAGATCGTCATTAAGCGCGGCCTGGACGTTAACGACCGGACCTTGCGAAAGGTAACGATTGGCCAAGGATCCAAGTTCAACGGGGTTGAACGCCCGGCCAGCTTCCAGTTGACTGTGGGTCACGAACTCATGGCTATTCTCTGCCTGTCCAAGGACATTGCTGACTTAAAGGAAAGAATCGGCAAGGTTCTGGTCGGCTACACTTACGAGGATGAACCAGTCTTTGTCAAGGACTTGGGCTTCCAAGGCGCCATCGCTGCCCTTTTGTCAACGGCCCTGAAGCCAAACCTGGTTCAAACTTTGGAACACACTCCAGCCTTCGTGCACGGCGGACCTTTCGCCAACATTGCCCACGGCAACAACTCCATCCTGTCAACCAACCTGGCTCTGCACCTCAGCGACTACGTTTTAAGTGAAGCCGGCTTTGGTTCAGACCTTGGCGGGCAAAAGTTCCTGGACTTCGTTTCCACCAAGCTGGAAAAGAAGCCAGATGCCGCCGTTGTTGTTGCGACTGTCCGGGCCTTGAAGTACCAAGCTGAAAAGTCAACTGACCATTTGAAGGAAGAAAATCTGGACTCATTAAAGGAAGGTTTTGCTAACCTGGACCGGCACATGAACAATGTCCGTTCATACAATATTCCAGTTTTGGTGGTTATCAACAAGTTCCCAACTGACACTGAAGCAGAGCTTGACCTGCTCAAGTCATTGATTGAAGAACAAGGCTTCCCATGCGAAATCGTGACTGCCCATGATGAAGGCTCCAAGGGGGCTAAGGCAGCAGCTGAAAAGATCGTTGAACTGGCCGACAAGAGCGACTACGAAATCAAGCGCAGCTACGACCTGGATGACGACCTGGAAACCAAGATTGAAAAGGTAGCCAAGCGGATCTACCACGCGGCTGACGTGGAATACACGGACAAGGCCAAGGACCAGCTTGTAAAATTGAAGAAGATGGGCAAGGACAAGCTGCCAGTCATCATTGCCAAGACCCAGTACAGCTTTACTGACAATGTCAAGGAATTGGGAGCTCCTACCGGCTTTACTTTGCATGTCAAGGGCTTGAGCCTCCGCAACGGGGCCGGCTTCGTGGTCGTTTCAACTGGCCACATTCTGGACATGCCAGGCCTGCCAAAGCACCCGGCCGCCTTGGATATTGATGTGGACGAAACCGGCAAGATCAGCGGTTTGTTCTAGAAAAGAGGATTATGCAGATAGTTGGATTAGTTATTGCTGCCTTGATCGCGGCAGCTGATCAAGCTTTGAAGTATTATATTGTCACAAATTACCGTTTGGGCGAAGTCCACGACGTGATGCCGGGGCTGTTCTCCTTTACCTATATTCAGAATAACGGGGCGGCCTGGAACATCTTGTCCGGCAAAATGTGGTTCTTTTACGTAGTCAGCGCTGTTGCCATTGCCGTAGTGCTTTACTACTACTTCAACAAGAATTACAGCCATTGGATGTTCAAGTCGGGCCTGGTTCTGGTTTTGGGCGGGATCATCGGCAACTTGATTGACCGCCTGCATTTGAAGTATGTCATCGACATGATTCAGCTGAACTTTGTGCAGTTCAATATCTTCAACCTGGCTGATGCTGCCATTACCGTTGGCGTGATTCTGATCTTCAGCTATCTGTTATTCATTGAAAGGGAGGACTAGGATGAACCGTGAGTATGAACTGACCGCGGAAGAAAGCGGCCAGCGGCTGGACAAGTATCTGGCAGGGGAAATGACTGATCTGTCCAGAAGCCGGATCAAGGAATTGGTCCAAGCCGGGGAAATCCTGGTCAATGGCAAAAAGAGCAAAGTTTCATATAAAGTGCAGAAAGATGACCTGATCCAGGTCATCGTTTTGCCGTTAGAGCCATTAAAGCTGGAAGCGGAAAATATTCCCCTGGACATTGTCTATGAAGACAAAGACGTCATCGTGGTCAACAAGCCGCAGGGGATGGTGGTCCACCCGGCCGCCGGCCACCCCAGCCACACTTTGGTTAACGCCTTGCTCTACCACACCAGGGATCTGGCCGACAGTCCGGAAGGCTTCAGACCCGGGATCGTTCACCGGATCGACAAGGACACCTCGGGCCTATTGATGGTGGCGAAAAACGCGGCTGCCCGGGAATCACTGGAAAAGCAGCTGGCCGCCAAATCCAACAAGCGCCAGTACCTGGCCATCGTCCATGGCAATTTTGCGGAAGAAGGGACAATTGACGCCCCGATCGGCCGCAATCCCAAGGACCGCAAGCAGATGGCGGTGGTGGAAAAGGGCAAGAGCGCGGTAACCCACTTTAAGGTCCTGGAGCAATACCAGGGCTACAGCTTGGTTGAGTGCCAGCTGGAAACCGGCCGGACCCACCAGATCCGGGTCCATATGGCTTATATCGGCCACCCTTTAGCAGGCGACCCCTTGTATGGGCCGAGAAAGACCCTGCCCGGCCATGGCCAGTTCCTGCATGCCAAGACCCTGGGCTTTGAGCAGCCATCAACAGGTGAGTGGCTGGAGTTCTCCGTCCAGCCACCGGAAATTTTCCAGCAGACGGTTGCAGACTTGCGAAAGAAGCGGGTGAAATAGGATGAAACGCTACCTTATTCTTGAAGATGGCAGCTCTTATGCCGGTGACGGCATCGGGGCCATGATCACCGCTACGGGCGAATTGGCCATCCAGACCAGCAATTACGGCTATCAAGAGGTTTTAACTGATCCGTCAAACGCGGGCAAGATTATCGTCTTTACTACTCCGATGATCGGCAGCAACGGGATCAACGCGGTTGACTACGAAAGCATCCAGCCCAGTGTCCGCGGCGTCATTGCCAACGACATTGCCTTGAACATTACCGACAATGACACCTTCCAGTCTTTGGGCGACTTTTTGCAGGAAAAAAAGGTGCCGGCAATTTTTAACGTTGATACCCGGGCCCTGGTCAGAAAACTGCAGAATCTAGGTCCTTTAAAGGCCTCGATCATGGATACCAATGATGAACACGCCTTTGACCAGATCAGAGCTCTGGTTTTGCCGAAAAACAAGAGCTCCTTGGTTTCCACCAAGAACGCCTATGCTGCTCCTAACGTCGGCAAGACGATTGCTATTATCGACCTGGGCCTCAAGCACTCCATGCTGCGGGAACTGTCATTAAGACAGGTCAATGCTAATGTTCTGCCATATAACGCGACTGTCCGCGATATCAAGACCCTGCGGCCAGACGGGATTATTATCTCTAACGGTCCCAGCCAGGCCAAAGAGGTTTTGCCATACTTGCGGCAGATTTTGGATGAATATCTGGGCAAGCTGCCGATCCTGGGGGTCGGCCTGGGCTTTTTGGCGATTTCAGCCTACCTGGACCTCAGCCTGGTTGACCTGCCCCAGTACCAGAACGGGACCAATTTCCCGGTGATCAGGCAGAGCAGCGGACAGATCTGGCAGACGGCCATGAATATTGGCCAGCTGGTTTTGCCGGATGACACGGCCGTGACCTTTAATGAAGAGTATTTCGACCTGCACAATGAGCTTTTAGCCGGCTTCAGCAATGATAAGCTGCAGCTGCTGGCGGTGGCCTTCAACCCGGAAGGAGCCCCGGGGACGGAAGATGCCCAGGTGATTTTTGACGACTTTTTGAAACTGGTGAAATAATGCCACGCGAAAATGATTTAAACAAAATCTTGATTATTGGTGCCGGCTCAGCCCTGGTGGGCAATGTGGCTAATACGGACCTCTTGACCAAGAGCGCCATCGAGGCCCTCTTAGAAGAGAATATTCAGGTGGTCCTGGTCAACCCCAATCCAGCCAGCGTCTCAACCGACCCCTTACCGGGCTTGACCGTGTACCTGGAACCGATGACCTTGGACTTCTTGAAGCGGATTCTCCGGATGGAAGAACCCGACGCGATCATGACGGCTTTTGGTTCCTTGATGGCCCTGGACGTGACCAAGAAGCTGCAGGCTGACGGAATCCTCCACCAGATGGGGATCAAGCTGTTAACGATCAATGAGAGGGCCATTTCCATGTCCAACCCGCAAAAGAGGACCCGTTTCTTGGAAGCCAATCATCTGCCAGTCGGGCAGACCTGGTTTTTAGACAGCCTGGGTTTAAAATACGACGAGCACCTGCAAGAGCAGCTGGAAAACAAGCTCTCTTTCCCGATTCTTTTGACCAAAAAGTACTACTTTGAGCGCGATGACCACATCTCCTTTAAGAGCAGCCGGGATTTAGCCCAGTACCTGCGCCAGGAGAGCCAGGACCGGGACTTCCGCCCGGCCAGCTACCGGATGACGGAAGACTTGTCTAATTGTGAAGAGGTCATCTTGGACCTGCTCCGTGATGAAGACGGCAACCTCTGTTTTGTCGGAGCGACTGGGTCTTTGGAACCGGTCGGGATTGACTCAGGCGACTCAGTCTTGATTAAGCCGCTTTTGACCATGAACAATGACCAAATTCAAGTCCTGCGGGCAGAAGCTGGCAAGATAGCGGACAAATTGCAGCTGGTCGGCTTTTTAAGCGTCCACTTCGCCATCAGCCACCGGGGTACGGAAATGGTCTACAAGCTCTTGGCCGTTAAGCCACGCTTGACCAGAACCGCCGTCATGGACCAAAAGACCAGCCTGTATTCAATCGGCTATGTTTTAGCCAAGCTGGCAATCGGGCTGCGGCTGAATGAAGTCACTGACCCGGCCACTGGCCTGTGTGCGGCCATTGAACCGGTCTCTGACACCGTCAGCATCAAGATTCCTTACTGGTCCTTTGCCAAGACTGGCTACAACCACTACCAGCTGGGCAAGCACACCCAGTCAACCGGGGAAGCGGTCGGGATCGGGCGGAATTTTGAAAGTGCCTTTTTCAAGGCCTTGATTTCCAGCAATGATCTGGAAGTCTTGTGGTCAGCTTTTATCAAGGAAAGGGGCAAGAGCGATGAGGTGATCCTGGATGACCTCCGCCACCCTAACGAAATGCACCTGGTTCAGCTGCTGGCTGCCCTTAGCCAGGGCATCGACTACCAGGCCATAAGCAGCGTCTTGAATATTCATCCGGTCTATTACCAGAAGCTGCGCTACCTGGTCAAGATTGGCAGGGACATTGCCCATGCGGGTGAATTAGACCATGACCTCCTTTTAAAGGCCAAGATCCGGGGCTTCTCCAGCGACCTTTTGGCCGAATTGACTAAGATGGACGTCCATGACATATTTCCTTTGCTGAATGAAAAAGACGTCCGGCCAACATTCTCAGCGATTGATGACAGCGCCGGGGTCTACCAGCCCAAAGTCAAGGTCTACTACCAGAGCTACGGGGTGGAAAGCGAATTGGAATTTGCCAAGGATCCGGAGAAGAAAAAGGTTCTTTTGCTGGGGATGCCGCCCTTCCAGGTGTCAGTAACCAGTGAATTTGACTACATGCTCTATCATGCCCTGGCGGCCTTGAAGAAAGAGGGCTATGAGACGGTCCTTTTGTCTAATAACGCGGAATCTGCCTCGATGGACTACCACTTGGCTGACCGGGTCTATTTTGAACCGATCAACTTGGACAGCATCATCACCATCTGCGAAGAAGAAGGGATCACGGACGTGGTCACCCAGTTCTCCGGCAAGCAGATTTCCGCCTTGCGCCTGCCTTTGATGAGCCACGGTTTGAAGATTTTTGGCCAGCACGAGATCGACCGCCTTTTGCCGATTAGCCACTTAGACACGGCCAAGATTTCTGAGGTCAAACGGGTGCCATATTTGGCAACGACCGACTACCAGGCAGTTTTAGCCTTTGTGGCCCGGGTGGGCTATCCGGTCTTGGTCGGGGGCTATCACCAAAAGAGCAAGCAAAAGTCGGCCGTGATCTATGATCAGCCGGCCCTGGAGAAATACTTCCGGGAAAACCAGGTTGATAATTATACGATTTCCCAGTTTATCTCGGGGGTGAAGTATGAGATTACGGCGATCACGGATGGGGAAGACGTGACTATCCCGGGGATCGTGGAGCACTTGGAGCAGTCCGGGTCCCACGCCTCAGACTCCATCGCGGTTTTTGGCCCCCAGTATTTAAGCAAGGAGCAAGCGGAAAAGTTGCGGGTAGAAACAATCAAGCTGATCCGCAGCTTCAAGATCAGAGGGATCTTCAACCTGCACTTTTTGCTCAAGGGCAGGGAAATCTACCTGCTTCAGATCAAGACTTATGCCGGTCATAATCTGGCCTTCTTGTCCAAGTCCATGAACAAGGACCTGGTTGAATACGCGGTTAAGGTCTTAGCGGGCAGAAAGATTGCTGATTTAGGCTACCCGAACGAGGTCTGGCCGGTTGACGAGTTCATCCACGTGAAGATGCCAGTCTTCTCCTACCTCAATTACAGTTCAGACAATACTTTTGACTCCAGGATGAAGTCCTCTGATGCCGTGATGGGCAGAGACAGCCGCCTGGCCAAGGCCCTTTACAAGGGCTATGAAGCCAGCGACCTGCATATACCAAGTTATGGGACGATTTTCTTCTCAGTCAGCGATGAGGAAAAGCAAGAAGTAGCCAACCTGGCAAAGCGCTTTGCCCGCCTGGGCTTCAAGATCACGGCCACGGAAGGGACGGCCAATATTCTGGCTGAGGCGGGGATTACGACCGGGGTTATCGCCAAGATCCAGGAGGGGTCTAGAAACCTTTTGGAAAGAATCCAGACCCACCGGATCGTGATGGTGGTTAATGTCGTCAACCTGTCGGACTCGGCAGTGGAAGACTCGATCAAGATCAAGGACCAGGCCCTGAATACCCATATTCCGGTTTTCTCCAGCCTGGAAACAGTCCAGTTGATCCTCGATGTTCTGGAATCGCTGGCCTTGACTACCCAGCCAATTTAAAATATGCTATTCTAAAACAGAACTTTTTAATCCAAATTAAATTTATTTCTTATCCTGATCAGGATATAAGTTTCGCAAGCAGGAGGGCAAGCGATGAGAGCAATTTTGACAACTGTCGGCCAGGACAAGACCGGGATTATTGCCGGCGTAAGCAGCTTTTTAGCTGAAAAAGACATTAACATTCTGGACCTGTCCCAGACGATCATGAACGGCTACTTCACGATGATGATGGTCGTTGATGTCAGCGATGAGGCAGATTTCTCCGCCTTGAGCACGGAATTGAAGGAACTGGGCAAGAAACTGGGCGTGGAAATCAACATCCGGAATGAAAAAATGTATGCGGCCATGCATGAAATGAGCGGAGGTCTGGAATAATGGACTTGCGGCGGATTATGGAAACGGTCAATATGATCGACAACGAGAACCTGGACTTGCGGACGACGACCATGGGGATCTCACTTTTAGACTGTATTGACTCAGACAGTGACCGGGCCTGCCAGAAGATCTACGACAAGATCACGACTAAGGCGGAAAACCTGGTCAAGGTAGCTAGAGAACTGGAAACTGAATACGGGATTCCGATTGCCAACAAGCGGATTACTGTAACCCCGATTTCTTTGATCGCGGCAGCTTCAGGGGACAGCGACTACGTTAAGTACGCGGTTACCTTGGACAAGGCAGCCAAAGCAGTCGGCGTGGACCTGATCGGTGGCTTCTCAGCTTTGGTGCACAAGGGCTACCAAAACGGCGACCGGGTCTTGATCAAGTCAATTCCCCAAGCTTTAAAGGAAACTGAAAGAGTCTGCTCTAGCGTCAATGTCGGCTCAACCAGAAGCGGGATCAACATGGATGCCGTCAAGGAAATGGGCCAGATCGTCATTGAGAACGAAAAGATCAACCCGCTGAACAACGGCAACCTGGTCATCTTCTGCAATGCGGTTGAAGACAACCCGTTTATGGCCGGTGGCTTCCATGGGGTCGGCGAAAGCGATGTGGCTTTGAATGTCGGCGTATCCGGCCCTGGCGTGGTTAAGACGGCCCTGGAAAAGGTTAAGGGCGAATCTATGGACGTGGTTGCTGAGACCATCAAACAGACGGCCTTCAAGGTTACCAGAATGGGCCAATTGGTGGGCCAGGAAGCTTCTAAGCGCCTGGGCGTCGACTTTGGGATCGTGGACTTGTCTTTGGCGCCAACTCCTGCCCAAGGCGACTCGGTAGCCAATATTTTGGAAGAAATCGGCCTGGAAAGCGTGGGGACCCACGGGACCACGGCCGCTTTGGCCATGTTAAACGATGCTGTCAAGAAGGGCGGCATCATGGCCTGCAGCCATGTCGGCGGTCTGTCTGGTGCCTTCATTCCTGAATCAGAAGATGCCGGGATGATCGCGGCAGCTGAAAAGGGGATTTTGACGGTCGACAAATTGGAAGCCATGACCGCTGTTTGCTCAGTTGGTCTGGACATGATTGCCGTACCAGGCGACACGCCAGCTGAAACGATCAGTGCCATGATTGCTGACGAAGCGGCGATCGGGATGATCAACAACAAGACCACGGCTGTCCGGGTTATTCCAGTACCGGGCAAGGAAGTGGGCGACTCAATTGAATTTGGCGGCCTCTTCGGCTATGCCCCGATTATGCCTGTTCACAAGGAATCAAGCGCGGCGATGATCAACCGCGGCGGCCGGATTCCAGCCCCAGTGCACAGCTTTAAGAACTAATTTTTTAGAATATATAGAAAAAGAACCGTACTACCATTTTGAGATAATACGGTTCTTTTTTGCATCTTAGTCAATCCGCTTAGCTAAAATCTTGTCAGCTTCCGGGGTAACTTCAATGGACTTCTGCCCGGTGTAGATGACGAAGCCGGGCTTGGCCCCGTTAGGTTTCTTGATCCGCTTGACCTGGATATAGTCAACCGGCACGTGGGCGGAATTTTTGGCCTTGGAGAAGTAGGCAGCGATCTCCGCGCTTTCCTGGATGTCGCTGTCACTTGGCTGGCTGTCAGTCAAGATAACGTGGGAGCCGGGGATGTTCTTTACGTGGAACCAGTAGTGGTTCTTGTCGGCCTTTTTCAGGGTCAGCCAGTCGTTTTGCAGGTTGTTCTTGCCAACTAAAACAGTTTTGCCGGAGCTGAGCTTGAACTTGTTTAGGCTCTTTTCGGTCAGCTTCGGCTTCTGGCGCTTCTTTTGTTCAGCTCTAAGATAACCTTGGTTGATTAGCTCTTCCTTGATGGCTTCGACGTCTTCTGGGTCAGCGTTGTCGATTTCCGTTTGAACGGAATCAAGATAGCGGAGGTTTTCTTCCGTAATCTCAATCTGCTCGGTCACGTGCTTGATGGAATCCCGCATCTTCTTGTAGCGCTTGAAGTATTTCTGGGCATTGCGCTGAGGGGAGAGGGCCGGGTCAAGTTTGATGGTCATGGGCTGGTTGCCTTCATAGTAGTTAGGCAGGTCGATTTTTTCCATGCCGGGCTTAACCTGGCTTAAGTAGGCGGTTAAAAGTTCCCCGGAGACTCTGAGATTTTCGGAGTTTTCAGCACTGTCCAGCTGCTTTTCCAGCTTCTTCAGCTTCTTTTGGAGCTTTTTGGTCTCATTAGTGACGACCCGGGTCACCTGCTGGGACCGCTGCTTGACCCAGTCCCGGTTGGCCTGGTAGGCGTAAAACTCGTCTAAGGCTTCATTTAAGTTAGTGGAGGAGCTTTCCTTGGTCATCTCCAAATGATATGGCAGGTAAGGGTAGATCCGCCGCTTGTGCTTTGGCGTCAAGAGAACGTAGGCCTTAGGGGAGGAGAACTGGTTGTAGAAGGTCTTCAGAGAAGAGAAGGAGTAGTCGTCTTCCAAGTAGCCGGTCAGTTCTTGCCGGTCATCGCCATCTAAACCGTCCATTTGCTTGGCCAGGTCAGCTGGGGTTGGGTAGTCTCTTTTCAAAGAAGAAAATTCTGATTCCGTTAAAGTAAAGCCGTTGATGCCGGGAGTCAGCGGGGGCAGTTCGTACTTGGCTTTAGGCAAGAGGAGGCGGGCCCGGTTTTCGTCAGGGTTGATCCGCTTTAGCAAGTCGATGATCTTGCCGCTTTGCTTGTCATAGAGGATGACGTTGCTGTGCCGGCCCATCAGTTCAACGGAGAGGATCAGCTGTATTTCGTCACCGAGTTCGTTACGGTTGCTGAAGGAGAAGTTGACGATCCGGCTAAGGCCAACCTGGCTGATTTCCTGGAGGACTGACCCTTCCAGGTATTTACGCAGGACCATGACGAAGAGAGGAGCAACGTTAGGGTTGGAGAAGGACTCCTTGCTCAGGTAGAGGCGGGGATATTCAGGATTAGCAGAAATTAAAAGCTGCTTGTTTTTGCGGTCCTTCCTGAAGACCAGGACCAGGTCGTTGTTAAAAGGCTGGTAGATCTTGTGTAAGCGGCCAGCAGTAATCTCATCTTGTAATTCATTAAGCAGGCTATGAATAAATAAGCCGTCAAAAGCCATTGAGCACACCTCATTCGTAAATTGAAAATTGTTCAGTAAACTATTTTATCATAAAGTACGGGCTTTATCAGATATCTTGATTATAAGGATGCAGATAGTTATTCTATACGCAAACAGGCATGATCAAGATCCTTCTAGTTTAGCTGGGGCAAGTATGCTATAATTTTCATGTTAAAACGTTAAATACGGAAGGTTTAATATGAAGATCGCATTAGTTACCGACAGTACGGCCAATTTGTCCGCAGCAGAAATTGAAAAGTATAATATCAAGGTCATTCCTATTCCGATTTACATCGATGACAAGGAATACCTGGAAGGAATCAACATCACTTCTGAAGAGCTTTTTGAATCGCAGCGGAGTGGCTCCAGCTTCCCGACCACTTCCCAGCCGAAGATGGGGGACCTCATCACGACTTTTGACAACTTCAAGGATGAGGGTTACGAGGCGATCATCTACATTTGCCTCTCCAGCGGGATTTCAGGTTCCTACAGCACCTTGATGGGGATCGCGCAAAGCAACCCGGACTACCACCTGTACCCGTTTGACTCACAAATTACTGTTCGCCTGCAGGGTTACCAAGTTCTGGCAGCAGCTAAGATGATCGAAAAGGATAGCTACAGTCCGGAAGAGATCATCGCCAAGCTGGCGAAATCCGGTCAACTGTCGACGAACTCTTTATCGTTGATGACTTGAACAACTTGTGCCGGGGCGGCCGTTTGAGCAATGCCAGCGCCTTTATCGGGTCACTCTTGAACATCAAGCCTTTGCTGACTTTCAACGATGAAGCTAAGATCGTGGCTTACGACAAGGTGCGGTCAATGAAGCGGGCAGTTAAGAAGATCGAAAAAGAATCCCTGGAAAAGATCAAGTCATTGGACATCCCAGAAGACAAGCTGCGGATCTTGATCCTTCAGTCAAATGACGCCGCGCAAGCTGAAGAAGTCATGAACTACCTCAAGGCTGAAGTGCCAAAGGCTGTCTTTGAAATGGACGAATTTAGCCCGGTTATCGCGACTTACCTGGGCGAAAAGTCAATCGGCATCACTTGGATGATTGACGTTGAACAGATGGAATTCTAGTTTTTTAGAATTCAGAATTTGCTGTGTTCAGTAAAAGAAGAAAGAAATTTGGAAAATGAGAATCAAAAAGTGGGCCGTTATGGCCCTTTTTTGCGGTATTTTTTTGACGGGTTGCAGCAATCAGACCGCTTCAAAAGAAGCAAGCAATAGTTCAAATAAAAGCAGTCAGAGCAGCAAGTCTAGCGTTAAAAAGACCAGCAAAGCTTCGTCAAGTTCAGCTAAAGCAGTAAAACTTGATGCGGCAAAACTGACGCCGCAGGAAAGCGGCAGCTTGATTACGCTCTACTGTGCTGACCGCTTTGGCGGAGAATGGTCTAATTTGCTTCAAGCAGGGCAGAATGGCTCTTTGACTATTACCCTGCACAAGACCAGCGACTACGAATTTAAGCAGCCGGGCAGCGGCTATGCTTATGAAGCCGCGGCGTCCGGACAAACAGGGACGACCTATTATACTCTTAGCGGAAGCACTTTTTACTTCTACCAAGGAGTAAAAGTAGCAGGCAGTGGCAGCTCTTTGGGCCAGGCAACTAAGCAGGAAATGGCTGACTATATCGTTAAAAAATATCAGCTGGCTGAATTCAAGCAGCTGGCCAAGAAGGTCGAGATCGTGGATAAATCTGGACAAACTCAGCGCCTGTCTGACGGGCGGAGCGGCTACTTTACTATCCCCGCGGAAATGCAGGGAACCTGGTATTCTGCAAGCAACTATGATGGTGAGACAACGCATTCTAAGTACGTCTTTGGCCAAAGCACAATTTTTATTCAAGACGACAAGTACGATACAAATGGAACCACAACTACCCTGTACGCTAGGTCGAGTGATTTCAAAATGCCGTTACCGCCAACCGAAAAACAAATGGATCAGGTAAAAGGCTGGGGCTTGGGACACCTGTACCAGCAGGACGGTTTAAACTACATGAATGTCATGGGTTGGTACCAAACTGCCGGAAGTGGTACATCTTTTGCCGTTCATACTGAAAATATCGCTGGCAATAATGTGCAAATATTGGTTTGTGCTAGTGGTGCCCGTCCTTGGGTCGATGGAATTGCCTACCGCAGCCAGGCAATGGCTGAAAAGATGCAGGACCAGCATTTTGATGATCTGCACTATCGTGATGATGAGTAATTAAATATTACCGAAAAACTAAAGTAAAACAGCGCCAGCAGGAAAATCTGCTGACGCTGTTATTTTTCAACCCGGGATTTGATTTTGCTCCGCGGGGTCCAATTGAGGACGAGTACGGCAAAAATAATCATCACAGATGCCGCGTAATCCATCATTTGCGGCTGAAAGTGAAAGACGATGATGGAGCCAATCATGGAGGCCAGCGGTTCAAAGGCATCCATAAAAGCCACAGTCATCCCCGAAATATGGCCTAAAGCATGGTTTTGCCAAAGCGTCGGGATGATCGTGCCCATAACGATGACGACTGACAGGTTGAGATAGACGGTCGGTGAACTCGGCAGGCTGGGCCAGACTGGATGAATTGCCGTCAAAATCAAACCGGAGATAAGCAGGCCCCAGCCAGTAACTGAAATAGTGGACTGCCTGGTCACCAGTGCTTGGGGAAGCAAGCTGTTGGCCGCTGCCCCAACCGCTGACATAATGCCAAAAAGGAGGGTAAGAGGCGCGATCCTAAGGTCATGGATATTGCCATGCGTTGACAGGAGAAAGACTCCGCCAAAAGCCAGCAGGCTGGCCGCGACATCAATCAGCCGCAGAGCCTCTTGCTTGGTCAAAGTCAGATAGGCCAAAACAAAGAAAGGACCGATAAACTGAATGACCGTCGCGATTGCCGCGTTAGCCTGGGCTACTACCAAAAAGAAGCAGTACTGGAAGGGCAGAACGCCGATAACTGCATATGCCAGAAGCTGAACCGCGCTCTTCTTGTCTTTCCATACCTGCCAGGGATGCTTGCCCGTCAGCTGGGCCACAGTTAACAGGATCAAGCCTGAGCAAACCTGCCGCATTTGTGTAACCCAAATCGGCGTGATGCGGGGGTCCAAGTTAAAGAGGCCCTTGGCAAAGAGGCCAGAAATACCCCATAGGATGCAGGCGGCAGCTGCCAGGCCGGCCCACTTGCTGTTTGATTTCATCTTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTCTCTAGATATAGATTTCATCATTATTCGCATATTTTCAGAAAACAACCTTCTCCATTTTACCACACTGCTGGCAGGACTCTTCAACAAAGTCAAAAAATACCCTGGAAGTCGCGATCAACAACTTCCAGGGTTTGTTTCAATGGTAAGGATAGAGAGTCAAAGTTTAAAAAATCAGCTATTTCTTGTGAGTCAAGATTCTGACGCGGGTAACAGCCGGGATCTGTTCCAAGTTGGGCACCACCTTGTCTTGGGTCGCCTGGTCGATCTCATCGATGTCGATCATGGTGTAGGCGTACTTGTCCTTGGCCTTGTTGACCAAGTTTTCAATGTTGATGCCACGGCCAGCCAGGTAGGTTGAGATCTGCCCAATCATGTTTGGAATGTTCTTGTGAATCAAAGTGATCCGGTGGTCACTTTCAAACGGTGCTGACACGTTCGGCAGGTTGACTGAGTTGATAATGTTCCCAGTTTCCAAAAATTCGATGGTTTGCTTTGCTGCCATCCGGGCACAGTTGATTTCCGCTTCAATCGTTGATCCGCCGATGTGGGGCATGAGGACGATGTCATCGTTGTGCAAAATCGTGGCATCACTGAAGTCGGTGTAGTACTTGCCCAAATGGTGTTCTGCCAAGGCTTCAGCGACAGCCTTGTTGTCAACGATCCCCAGGCGGGCAAAATTGAGCAAGATAGTGTTTGGCTTCATCTGCGCGATCTTGGCGTCAGCAATCAAGCCAGTCGTCTCCTCGTTCTTTGGCACGTGGGCGGTCACAAAGTCCACGTCCTTAACGGCGTCAGCGATGCTGGTGGCCCGCTTGATATATGGTCTGACAAGCGCCATGCGGCTTCAACCGTCAAGTATGGGTCATAGCCCCGACAACCTTCATCCCCAAATCAAGGCAGGCATTGGCTACCAGTGAGCCGATGTGGCCTAAACCAATCACAGCCACCGTCTTGCCCAGCAATTCAGTCCCGTTGAAGCTGGTCTTTTCCTTTTCCGTCCGCAGGGTGATGTCCGCGCCCGGCTTGGCGTTAGCTGACCAGTTGGCGGCAGCCACGATGTTCCGGCTGGCGATGATCATAGAAGCCAGTACCAATTCCGTAACGGCATTGGCGTTGCCGCCTGGAGTGTTGAAGACCACAGCCCCATTTTCCAGGGCCTTGTCCAAAGGCACATTATTGTAGCCGGCCCCGCAGCGGGCGATGGCCTTCAAATTCTTGGGAAATTCATGGTCATGGAGGTCAACTGATCTGATCAGGTAGGCATCTGGATTGTCAGTTTGGTTGATCCGGTAGTTGTCGCCAAATTCGTCTAAGCCTTCTTTAGCAATGGCATTGTAAGTTTTAATTTGGTACATGGGGAATCCTTTCAAAAATTAGTGCTTGGCGTCAAAATCCTTAATAAAGTCACAAAGGGCCTGAACCCCTTCCAGCGGCATGGCGTTGTAGATGCTTGCCCGCATCCCGCCAAACAGGCGGTGGCCTTTCAAGTTAAGCAGCTGGTGGGTGGTTGCCTCTTTGACAAACTCCGCGTCCAGGTCCGGGTCGCCGCTGACAAAAGGTACGTTCATAATTGACCGGCTGTCTGGATCAACCTTGCTCTCAAAATTCTTGGATTCAGCCAGGCAGTCGTAAATAAGCTTGGACTTTTCCTGGTTGATGGCCTCAATGCCGGCCACGCCGCCTTTTTCCTTGAGCCACTTAAGGGCCAGGCCAGCCACGTAAACCTGGAAGACTGGCGGGGTGTTCAAGGCTGATTCCTTCTTGGCTTCAGTAGCAAAGTCAAATAGGCCAGGCAGGTCGTCATGCTTGACCAATAGGTCCTTTCTGATGACCAAAACGGTCAAGCCGGCAGGGGCCAGGTTCTTCTGTGCCCCGGCGTAGATAACAGCGAATTTGCTGTAGGCGTATTCCTGGCCCAGGAAATTGGAGGACATGTCAGCTACCAGAGGGATATCGGTCTTAGGAATTTGGTCGTCTCTGTAGGCCGTCCCCATAATAGTGTTGTTGGTCGTGATGTGGAGGTAGTCGTAGTCCTGATCAAATTCAGTCGGGATTTTCGGGACAGCAGTGTAATTGTTGTCCTTGGCGCTAGCGACGATGTCAACGGTTAGGCCTGGCACTTTGGCCGCGTCTTCTGCTGCTCTTTGGGCCCAGTGACCACTGTCTACGACCACGATCCGGTGGTACTTGCGGGCCAGGTTCAAAGGAATTGTGCTGAACTGCTGGGTTGCCCCGCCGCTCAAGAAGAGGACGTCGTATTCTGCCGGGTCAAGCTTCATAAGTTCCAAGAGGTTGGCCTTGGTTTCCGCGTAAAGGTCCTTGTAAAGGGCTGACCGGTGGGAGATTTCCATGACGCTCATGCCGCTGTGGGCAAATCTGGCAAGTCTTGTTTGATTTGGGCAATGGCTTCGACCGGCATCACGGCTGGACCAGCCGCGAAGTTGTAGCATGTCATAAGTAAAGAATTCCTTTCCGAAAAAACAAAGGGCACCCGCCTTGCGTGAGTGCCCTTTGCCATGAGATGTTATGTTGGAGTTGTTGTTTCGGCCTCACTGTTTTAAACTGTGCTGAAGGCCATCACAAATCGCAGCCTTCTTAAGTGGAAGAAGACTGGGAGGGGGAAAAAAGTTTGTTTTGCATTTGAATTGTCTGTAAAGTAAACATTTTTTCGCTCCCTTCGTGTGATTAATTTTATTATAAGTCTAAAATTATAAATATCAACACAATTTTAATTTTGGTATAATATTTTGGTATAATATTTCTTAGCAAAGAAAAGAGAAAAAGAAAGTCTAGAAACAATGGAGGACCAGCATGACCACATTCTACTTTATCCGGCACGGGCAAACCTTTGCCAACATGGCGGGCTTGAAGCAGGGGACCATCAATAACCCCAACACCTACTTGACCGACCTGGGCAGGGAGCAGGCGCAAAAACTGGCTGACCAGTTCGACATCAGCAATTTCGACCGCCTTTTCGTTTCCCCCTTGGTCAGAACCAAGCAGACAGCGGAAATTTTGAACAAGAAGGCCGGCCTGCCGGTTGAAACGGACGACCGCCTGCTGGAGATTTCCTACGGGGACTGGGACGGGCAAAAGTACAGCGAATTGATGGCTGAATACCCGAATTACTTTTCTCCCCTGGTCAATGACGTGACGGAAGACTACGTGCAGGCAGCCCCAAAGGCGGAAAGCTTTGCCCATGTGGAAATGCGGACTGCTGAATTCGTGGCGGAAATCAGCCAAAAGTATCCAGAAGACCAGATCGTGGTAGTGACCCACGGCTTCACGGTCAGATCTTTTGCCATTAATGCCACGGGCGGCCAGGGCCTGCAGATCCTGGAACCAGACAACTGCTCCGTCACCAAGATCCTCGTTGACCCCCTGTCATTTAAGCAGCACCTGGTCTACTACAACCGGACAGTGACTGCTTTTTAGCAATATTTGTTAGATATAGAAAAACGGAACCGCTTGGCTCCGTTCTTTTATTTGATCTTTAATCGACAGACTTTAAAGCATCAAGCATGTTGACGGACTTGATCTTCTTGTGCATGATCAAGGCGACTAAAGCAGTGATCCCGGCCAGAATCAAGGCTGAATAGAGGAAGTTGCTGATCTTCATCGCCGGGTCAAACATGGCGTTGTCTGGCGGCAGGCTGGTGATGATGAAGGTGTGCAGGCCGATCCCGGCCAGGTAGCCGCAGAGGATGCCGATAATGGAGAGGATAATCGTTTCCCGGTAAATGTAGAGGGTGGTTTCCTGATCAAAGAAGCCGAGCACCTTGATGGTCGACAGCTCTCTGATTCTTTCCTCAACATTGATGTTGGACTTTTTCAATCACGAAGTTGATGTCCCGGTTGGCGTAAACTGTCGTGTCACCGGACTGATAGGTCTTCGTATTATGCTTCACTTCAATAAGTGCCATGATAGCTTACTTTAGCCATAAAAAAGAGCGGACCGGAAAATGGCCACGCTCTTACAAGTTGCTGACAAATTAATGATGAGAGCAACTCTTGCCGGTTAAATTTCGTTGATGCCGATCCGGTCCAGCTTCTGGTCGCGGATGGTCAGTTCTTCTTCAGTTTCGCCGATACCAACCCCGCAGACCGGCATGAAGCCGGCTGGCAGGTCTAGCTTCATAACTGTTTCTGGGTGAGCGGCCAGAGCAGCTGCCGCGCCAAAGAGGTAGCAAGCCCCCAAGCCCTTGTTTTCAGCAGCCAGAACCATGTTGTGGGCAATAATCCCGGCACTGGCATAGGCCATCTCGTCCTGCTTCTTGGCAGAGACCAAAATCAAGGTCGGCACACCGTACAAGGGATGTGATTCCAGATCGCCAAATATCATGGCTGCTTCCTGGTCGATCTCCTTTAAAAGCTTTGGGTCATTAATGATCGTCAGCTGGTAGTTCTCGTATAAGCCGCAGGCTACTGGAGCCAGTTCAGCTGCTTCGATGATCTTCTTGACCTGCTTCTTGTCAGCCGGCTTGCCAGTATAAGTCCGGATTGACTTACGTGATTTCAACAATTTCGTAAACTTCATGGATGATTTTCCCTCCTGTCAATCTAACAAAACACATGCCTGTCGATTCCTTAGCGCGATTATACCGCAATCACTTCAGTAAGCGGTTGAAAATGTTTTTAAACTTTTTCTACAAAAAAATTACCTGCTTTTTCGATAAAAGAGCTTGATTTAAAGGGCAAAAGTCTTTATAGTTAAGGAAACATATGAATGACCTTTAAATTTAGTCCCGTGAGGCTAAGAAGGCAGCTCAAAATCCAGATATAAACAAGAAATTCTTGGCAAACATTCGAATTGACAGGAAGACCGGGGAGGAAGCTTTCCGGGCAGTTTAAGTAGACTTTGAGAGACCATTTTAGACACGGAGACTGAGTGTATAAAATGGTCTTTTTGCTTAAGTTATTTTCGAAAGGATGCCAAATCATCATGACCACTGTTAGCTCCACCCAAAGGAAGGCCAGCACCTGCAAATGGGCCTGGTTAACGCTGGTGACGGTTCCGGCCAGCACCCATCCCAAAGCATGCTGGACATGATGACCATCTACAACGAATTCGGTCGCTTCGACGGCTTGAAGATCATGATCGTCGGTGACTTGACCAACTCCCGGGTTGCCCGGTCAAACATGGAAATCTTGAACACCCTGGGCGCGGAAGTCTACTTCTCAGGTCCGGAATACTGGTACGACGCTGAAGAATTCAGCAAGTACGGCACTTATGTCAAGAACATTGACGATGAAATACCAGAACTGGACGTCTTGATGCTGCTCAGAGTTCAGCACGAACGCCACAACGGGACAGAAGCCAAGACTGAACAGCTCTACAACGCTGCCTACGGCCTTAACCAACGCCGCTACGACATGCTTAAGGATGACGCCATCATCATGCACCCGGGCCCAATCAACCGCGGGGTTGAATGGGACGGTGACCTGGTTGAAGCACCTAAGTCCCGCTACGCTGTCCAAATGCACAACGGGGTCTTTGTCAGAATGGCCATGATTGAAGCTGTTCTGCGCGGACGTAAGTTGGGAGGCCTTGAATAATGGCTATTTTGCTGAAAAACGGCCTGGTTTACCAGGAAGGCGAATTCATTAACGAAGACGTCAGCCAGCCAAGCTCTTTGGCCTGGACGCTGGTGTCCTGGCTCCAGGCAAGGAAGCCGACCTGGCCGTCTTTGACCTAGACCACGCCGAAAAGCTGGCCGAAGAAGACTACTTGTCCAAGGGGGTTAACACACCTTTCACCGGCCAGGAAGTCTACGGCATGACCGCCTTGACTTTTGTCAGCGGCAAGCTGGTTTACAAGAGCAAGCACTTTGCCGACTAGGCAAATGGCAAAATAAAATTTTTACCACAGAAGAAAATAACTAGCAAAAGACGGAAATAAGTCCTTCTCTAATCAGAGGAGGACTTATTTTGTTTGGCGCTGGCATTGAGGGCGGCCCGTTGCTCTCTTTGGTCAACGTGGGTGTATAGGTCGGTGGCTGAGGTGCCTTTTTGCCCCAGTTGCTGGGCGACCATGACCTGGTCCTTGGTCGCCTGGTAGAGTTCAGAAGCGACCGTGTGGCGGAGCTTGTGGGGGGTGAGAGGGTGGCCGAAGGCAGCAGAATACTTGCCAACCATTTTTTCGATGGCATTCGTCGTCATCCGCCGGCATTCCTGGTGATATCTGGTTAAGAAAAAGGCCTTGTTAGTGGCTGGGGCCTTGTAGCGGTCTGCCCGGATTGCCAGGTACTTTTCCAGGTAGGGGAGGGTCCAGTCAGCAACTGGCACTGAGTCTCTCTGTCCGCCCTTCCGGGTGATATCTAAAGTTGCCTCTTTTAAGTTGAGGTCCTTCATGTCAACCCCGGCGCATTCAGAAACCCGGATTCCCGTGCCTAAGATCAAAGCGATGACTGCCATGTCCCGTTCCTTGTTTTGCTTAAAAGAAGAAAGGGCGCGCCCGCTGCAGAGGCCGGCAAATTTTTGGTCCAAAAAGTCCATGAACTGGTATTTCAAGTTGCCGGTGTACATGTGAGCTTCTAAGGCATGAGCCCGGTAGTTCAAGGTGCTTGTATAAGGAAGGAAATTGATCTTGAGCATAACATTGCGGTCAAAATAAGGCTCGCCATTGTTCTTGTCAGCCGTGATCGTCAAGTACTTGTACAAGGAGCGCAGGGCGTTGAGCGACCGGTTGACGGTCGTCGGGGAGTTGAGGTGGCCCTGCTTGTTCTTGCTGTGCTCCAGTTTATCCAAGTAGAGCATGACATCGCTCCGGCTCAATTTTTCCAGGTCGCTTGGCAGCACTTGGCTGGAGCTTTTCGCCTGGGTCAAATTTTCAGCGATCAGCCAGGAGAAAAAGCGGCGGATTTCCGTTAAGTACTGGTAGCTGGTGGTCAGAGAGTGCCTTGTTTCCAGCTGGTATTCCTTGACGAAGTCCGGCATCTGGGCCATTTCCCGGTCGATGAGGGAGAGGTATTTCTTGGTTTCCATATGACTCCTTATTCTTTCTCCAAAAAGTGGTTCTTGTACTCGTCTTCAATGATGGTCAGCATTTCTCCTAAGATGCCATAATTACCAATATTTTTCCGTTAGCTTAATTATACTAGAAAGAAGTCGAACCGACAGCTAGTTGATCAGTTGACTGTCTTTCAGCCAGGCGGCTTTTTGCTTGGAAAAGCGGTAAAATAGAGCTGACTATTGGAAAAATGAAAGAGGCAGAAAAATGATCAAGTTTATTACAGCCAGCGACAGTTTCAAGGAAAGCTTGTCAGCCAAAGCAGCCTGCCAGGCTATGACCGACGGAATCAAGCGGGTCTTTCCCGAGGCCGAAGTCATCCAGGTTCCCATGGCCGATGGGGGCGAGGGGACGGTCGATGCAATCTTGTCCTGCATCCCCGGGGAAAAAGTGGAAAAGATGGTTACCGGTCCCGATGGCAGAAGGCTCTTGGCCAGCTATGGTCTGATCAATGACGGGGAATGCGCAGTGATCGAGACAGCCGCGGCCAGCGGCCTGGGCTTGCTTGCGAAAAAGGGCCGCGATCCAATGACAGCAACTACTTTTGGGACCGGGGAGCTGCTGCTTGACGCGTTGAAGCGGGGCGTTAAAAAGATTATCGTGGGCTTAGGCGGCAGCGCGACTAACGATGGCGGTGCCGGCCTGGCTCAGGCTCTGGGGGTTAGGTTTTTAGATAAAAATGGCCAAGAGCTGCCTTTTGGCGGAGGAAGTTTAGACCAGTTAGCCAGAATTGATGCCAGCGGCTTGGCTCCCCGCTTAAAAGAAGTTGAAATCATCCTGGCCAGCGACGTGACCAATCCTTTGACCGGACTCAATGGAGCATCTGCGGTTTTCGGCCCGCAAAAAGGGGCGGACAAGGAGATGGTCCAGAAGCTTGACGCTAGCCTTCACCATTATGCGGCCGTGATCAAGGAGCAAGTTGGGAAAGACGTAGAGAACGTTCCTGGCAGCGGGGCGGCTGGCGGCCTGGGAGCGGGATTTTTGGCCTTCAGCAAGTGCCAGATGAAGGCGGGCGCCCAGATCGTGATCGAGGAGAGCCATTTGGCGGAAAAGATGCGGGATGCTGACTATGTCTTTACGGGCGAAGGCGGGATTGACTTCCAGACTAAGTTCGGCAAGACACCCTATGCCGTGGCCCAAGTTGCCAAAAAGCTTGGCATACCGGTTTTTGCCCTGGCTGGCCAGGTCGGAGATGGAATTGACAGCTTATATGAAGCAGGCTTTACGGGGATTTTTGGCATACTGCCAGGCATCTGCAGCTTGCCGGAAGCTTTAGCAGGCGGAGGAGGTAATTTAGCCCGAACCAGTGAAAACGTAGCCCGGGTGATTAAGGCCGCCAGAGTTAATTTACAGTAAAGGCTTACTGTTAAGGAAAAATAGCATTTTTTTGTCTTTCAGCCGATTTTTTTCGCATATGCTCTGTAATTTTTTCAAAAGATTGTGATAATAAGAATAGACGCGGAAAGCGAATTCAAAAATGAAAGGGTATAAAAAGATGAAAGAATACTATTTAGACTATCGTGAGCAAGTGCGGAACATCTTGGATGCTTTGGACGACAGCAGTACATCCTTGCGCCTGGGAGCAGTCGCGATTGAAAACCTCTTGACCCTGGCCAGAGTTGACCTGGATGATGAAGATGAAGAAGATTCTGATGACTCAGACGCCATTGAAGAGGCAGATAGCGGCGGGGACCTAGCAGATGCGGAAACAGAGGACAAGAAGCAAGTTAAAATCATCCGTCATGAAGAACCAACCGCCAGCAGCCATTACCAGCTCTGCCGCTTTTCCCGGGCCTTGAAGGGCGGGAGTTTTTACACCGAGCAGGGGGACCTGGTCAGCGAGATCAATGAGCTGGCCGTCAGAAATCTGAACGTGGAAAACGGCGATTTAGTCGAGCTGGACCTCAGCAGCCAGCCGCCCCGGGTAGTCCGGATAGTGGAAGCCGGAAACCTGCCTTCTAATATCGCGACTATGTCATATGGGATCGTAGAAAGGGATCCTGCCGGCGACTTGTATGTTAGCCGCAGCGCCATGGGCGAGAGCTTAAGTGAGTGCGCGGGCATTGACCGCTATGAGGTGCCGGCGATCATTGATGCTGGGCAAACCGAGACAGGTTTTGTCCATGAAGGAGACATCGTTGACTTGGCCTGGTATAAGAACAGCCCCAGCAATATGATCGTCCGCTGGGTCAGCCAGACTAAGGGAGAAGAAGTTCCAAAGAAGGAAAAGCCGGCTGAAAAGAAGGTAAAAAGCGAAAAGGAAGACAAGGATAAAGAAGAGAGCGTAACGACCTTGAATTTCGACCTGCATGGTCGCAGCGTGGCGGTGGTCATCGGCAATGAACTCCGCAGCCAGGAGATTCAGAAGATGGTAGGTGAGCACCACGGCCGCTGCAAGGTGATTGACGCCTTCAAATTTTCCGATACGGAATCTTTTTACAAGCACGCTCTCAAACGGGCTGACGTAACGGTCATGGTGCAGAATTTGAACAAGCACTCAACCAGCAAGGCTCTGCGCAAGTATGCCAAGCGGCTGGCCATCGCGGATTCGGCGGACCTGTCTTCAATTGAGCGGGCGATCTACCGGGCTATGCACGGCCTGCCGGCTTATGAGACATCTACCCAGCCGATCGCGTATCCGGTCAAGGAGCTGGCACTTAGTTAATTTTTAGAAAGGTTGGCGGTAAAGATGGCATTTTCGGACAAAGATAAATTCGTTGAGATGGATAAAAACGGCGCGACCTGGCTGGACCGGGGGGCGGAAGCCTACCGACAGGGGGACTATGAACTGGCCCTGCAGTGCTATAAAAAGGCAGCTGACTACGGCAATTCCCAGGCTATGTGCAATTTAGGCTACATCTATGCCTTTGGCCGGGTCGGTGAAGCCGACCAGGAGCAGGCTTTTTACTATTTTACTCAAGCATCTTTGGCCGGCAACCCGAATGCCTTCTATAAGCTGGGGGATGCTTTCCGTTTTGGCAATTTTGTAAAGAGAAACAACGAGATTGCCTTTCAATATTACAGCATGGCGGAAAGCGTCCTGCAGGAAGGCGACGAAGACCTGATTGCTGAGATCGACTACCGCCTGGCCCTTTGCTACGCCAGAGGCTGGGGGACGGGCCAGCGCTGGGACCTAGCCTTGAAGTATATCAATGAGGCTCAGCTTTATGCCTACCGGAACAAGCAGCATGGCGAGTACAACTGGCAAAAGACGAGCCAGCGGATCAATAAGCTGCATGATGAGATAGTAAGCGAAATGTTTTCATAAGTTTTAAGCAGCTGCTTGGGGCGAACCGGGCAGCTGCTTTTTTTCTGATTTATCCAAAACAGCTATTTTCTTTGGCCCTGCAATCAGCTTGGCTTATAATGATATATGCAAAGATAATAATAACTTAAAAGCTATAAAAAGTGATAGATAGATTATGGGTGTTTAACCAGCATGCTGCTGTCAACCTGCTAGACTACTATACAACTATTGAGATAATTATTTCATTATTTATTGCTGGCTTGCTTGCCTTGGTCTACAAGAACATACACTACAGCAAGCAACGGAAACGCAACAGCTACTGGTCTTTAGGCCTCTTGCTAATCATCAATTTAATTGAGTGGACTTCGGTCATGTTGGATGGCTTCTCGGGCCAATACAGAATATGGTTGGTAATCAACAAGTTTTTAAACCACAGCTTGATACCATTTCTAGGCTACTTCGTTATTCATATTTGAGTGCGGCATTCAAAGTATGACCGCCTGCTGGCAGTATTGCTGCCGGGGAATGTTCTCTTCCAGCTTGCGTCAATTGCTACCGGCTGAACCTTTTCGATTGACCAGAATAACTACTATTATCAAGGCCGTTATTACTACGTTTATTTCATTATCTGCATTATCGTAATGTTCGCGATTGTATCTGCCTATCACCAGTTTGAGCAAAAGACTTTCAGCGGCGACCGCCTCTTATATGGACTGCTATCCAGAAAGATTGAAGCCATTTTTAAAGAGAAAGTGGGTCAGCGATCCCAAGGCTGTCCCGGCTGCCGAAAGTTGGGTCAGCCACGATCTTCAAGACGACGTCATCCATACTTTATCTTGAGCCAGATACGCCAACGTATGTGTCATGGCGGTGGGTGATAGAGTACTTAACTTCTGGCCGGTCGTTCAGCCATGGCAGGCGCAGAGTAGTGTAGTCAAGACCGGAATCTTCCAAAAGCTGGTCGGCATTGACTGGAGAGCTGCCTTCTAGGTTGCCGCCAAAGCAGAAGTCCCGGTTCCACTTGCCGAATTTACCTGGAACTTCATCATAGATGCCTAAAAGGCTGGTTTCAATCACCCGGCTGATCTTATTCGCTTCAGCCGTTGCGATAATGTTTTTGGTTGGGCGGTTGTTACCAGCGTCGTCATGGTCAACGACAGCTGAGAAGATCATGTCACAGCCCTTAGCCGCGTCAACTACGACTTGTTTGTTGTTGATATCACCATCGACCAAAGTTACCCGGTCTGGGTAGTGGTCTTTTAAGCTTTGCAAGCGGTTGGCCTGGTGCAAAAGCAGGACCAGGTCGACATCCTTGACTTGTCTTCAGTCAAAATTCTTTCTTCAACAATGCGGGCAATTTGACCGTTAGCTGCCAAAATCAGTAATTTCATGTTTATTATTTTCCTTTCTGCTTGTCGGATTCTCTTGATGCTTTTATGATAGCGGGGTGCAAGCTTCTTGAAAAATACTCAATGTGCAAGATAGTATGCAGGAAGGACATAGTAGATATCAAATACTGTAAATTCTGATGTATATAAAAGATCATGATTGCGGATAACATAGGATAAGCCCTTTTTTCAGCCCTATTTTTTCGAAAATAGGCAATAAAGGTTGATCAAAAGGAAATGCTTTCACTTCAGTAGAGAAAAAGTTAAAATAGTATTTATAATGCAATACAATCAGAATCATTAGGTAAGTTGCTGTTTAGGGAAGAGGAAAGCTATGACTTTAGAATCACAACTGGAAGACGACCTAATCGCGCAGTTGACGCAGGATGTCCATCAGTGGAAGTTCCGTTATGATTTACGCACCGTAGATCAGCTTTGGGACAACTTTTTCCGTATCTTGGAATCAAACAATAAGGATCAGTTAAATGACCATCCGTTGACTCCTAACGAAAAAATGACGGTGAGAACGGCGATCGTTAAACCGACCTTTTACCGGGCAACGGAGTTTATGGTCGGGGCCAACCGGCAGGTTCGCTATCACTTAAGAAGAGAAGATTCTTCTATTCCCGACGCTGATTTGCTGATATTAGACAATACCAACATTGCTGGTGGGAACTCAGTTTATGAAGTTGTACACCAGGTTCAGCTACAGAAAAAGACCGCGCTTAATCGAGACCGTCGTTTTGACGTTAGTTTGTTGATCAACGGCTTGCCGGTGATTCACATTGAGCTTAAAGCGCCAAATGTTCCTTATAGGAAGGCCTTTAACCAAATTCAAAAGTATATCGATGAAGGGCAATTTACTGACATTTACAGCTTCGTAGAAATGTTTGTGGTAACTAATGGTACTCAAACAAGATATATATCTGCTGGGCAGAATTTGAATGCCAAGTTTTTAACGGCCTGGGTTGATAAGAATAATAAGCGGGTAGACAATTATCTGAGTTTTGCTGAAGAGGTCTTGTCAATTCCTGCTGCTCACCATATGATTGCCGACTATGTGGTCTTAGACAGCGAAAACAAGAGCGTTATCCTGCTCCGTCCTTACCAGATACACGCGATTCAAGCGATTTTTAAGGCTTCTAGAGAGAGTAAGTCGGGCTATATTTGGCATACGACAGGGTCAGGTAAGACGTTAACATCGTACAAGGTTGCCCGTAACTTGTTGCAAATTCCGTCAATTGATAAGTCAATCTTCCTAATCGACCGCAAAGACCTGGACATGCAGACTACAACTGCTTTCAAGATTTACGCCAACAACGATACGATCAGCGTTAACGAAACAAATAGCAGTTATGACCTTGCTGACCAGCTGACTGATGGCGACCGGACTGTAGTAGTTACTACCCGCCAGAAGATGCAAAACATGTTTAAGCGGATTGATGAATTGGATCAGTTGCCTAAACGGTACGAGAATTTAAAGAATATGCGGCTAGCCTTCATCGTCGATGAATGTCACAGAACGATTACCCCTAGCCAAAAGCGGGAGATTGATAAATTCTTTAACCGCAAACCGCTGTGGTATGGCTTTACTGGTACGCCAATTTTTAACGAGAATGCCCGGGCAAAGAATGGTCAAGACGCGCGGACGACTGAAGAATTATATGGGCCAGTCCTGCACAAGTATACGATCGGGGATGCAATTAGAGACAAGATGGTTTTGGGCTTCTCCATCGATAATCAAGGTGGCAGCAACGAGGATGGAAATGAAGAAGATACCAAGAAAATGGATAAGATTTACCGGTCCAAGGCCCATATGCATTCAGTTGCGACAGCAGTAATTAAAGCGGCGTACCGCAAGCAGGGCCTTATTTCTGGTAAGAAATACTCAGCCATTTTGACGACTTCGTCAATTGAGAAAGCCCAGAAGTACTACCGTATCTTTAAGAAAATCATCGATGGGGAAGACGAGGAATTCAAGATTCCGGAACGAATCAAGAAAGTGGCACCAGACTTCCCAAAGATCGCTATTACTTACTCAGTTAGTGAAAACGAAGATGATTCAGAATCAGTGCAAGACGAGATGAAGCAGTCGCTTGCGGACTACAACGCCGTTTATGGAACGAACTTCTCAATGGCTGAGCTGGATCAGTACAATCAAAACGTTAATGCCCGGCTGGCCCGCAAGAAGGCTCAATACCAAGCTGACAACCAACGCTTAGACCTAGTGATAGTTGTTAACCGTTTGTTGACTGGCTTTGACTCACCAAGTTTGTCGACTTTGTACATTGACCGGCCACCAATGAGTCCACAGGACATGATCCAGGCTTTTTCTAGAACCAACCGGATTTTTGATAAAGACAAGACTTGGGGACAAATCGTAACTTACCAGTATCCCAAGACCTTTAGTGAAAAGATCGATGACGCAATCGTCTTGTATTCTAATGGCGGGGAGAAGTATGCGGTTGCTCCAAGCTGGGAAGAATCAAAACAAAGCTACGTATCAGCCCGGTCTAAAATTGACATGTACAGCTTCGACGCAGATGGACCGTCAATTTATGATGCTTCCAAGGAAGAAAAGAAGAAATTCGTTAAAGCTTTCCAAGAATTTGACAAGGCTTTGGCTGCAATCAAGACCTATGATGAATTAGATACCGAAGAAGGCCTAATGCAATTAGGTGTGAGTGACATTACACCAGATGATTGGGAAGCCATGCGGGGAGTTTATGAGGATATTCTGGACGATCTGCGGAAAGATCCAGATGAAGATCCTGATCACAATGACGACATCGATGATGAATACGAACTTGAGTCATTTGGACAAAAGGAAATCGATGAGCGCTATATCATGAATTTGATCCAGGCGTTCTTGCCAGAAAGTTCTGACAATCAAGAAAAAGCTAGTGGCAATGAAATCTCGCCAGAAACTGTCAAGGAAATCAATGGCTACATTGATGAACTGGCGAAGACAAACGAACTTTTGGCAGAAATCATGCGTAAGCTTTGGCAGCAGATTTTGCAGGACCCGGCTAAATACGCAGGCAAGCAGGTTGATGAGCTCCTTGAATCCTTAATTGACCAGGAATTGCAATCAATCATGCGTGAGTTTGCTGATAAGTACAAGGTTGACTACGACCAGTTCCGGTACGTTATGGCTAACTATGACCCTAAGTTAAAGGGAAATAAGCAAAAGGGGATGAACGACCTTTTGCACAAGGAACGTTTTGTCGACTACTTGAATGACAATCCGGATTCTGACTTAAATAAGCCGTACCGTTGGAAGAGTGAAGTTCGGGAACAGGCCAAGCAATACTATGTAGATAAGATTGGCCCGTTAATTAACAGAGAAGCATAGAAGGAAGAAGAATATGGCAGAAGAAAATTCAACAGTTAGCTTGCAGAGTGGCTTATTTGCGGCTGCAGATGTTTTGCGTTCAAAGATGGACGCCAATGAGTATAAGAAGTATATTTTAGGAATTGTTTTCTACAAATACCTTTCTGACCAGCAGCTGTACAAACTTGCTGAAGACGCGGGTAAAGATGATGTCACTTTAGACGTAGCTCAAGAGACTTATGAAGATAACCTGGAAGAAGGAGATCTTTTAGAAGAAGTTAAAAGCGAGCTCGGCTATATGATCGGGCCGGAATATACTTATACCAAGATCTTAGCAAATGCTAATAATGGCAGCTTCCAACTTAATCAATTGAAGGACGCTTTTACCCAGTTAGAAAGTCAAGGTAACAGCTTTGAAGGTTTGTTCGAAGACTTCGATCTTTATTCAAGGCAACTGGGCCAAAATCTACAGAAGCAAACTGATACTATTGTTGGAGTAATCAAGGCAATTGGTAAGTTAGAATTAGTAAATACGCCGGGGGACACCTTGGGGGATGCTTACGAATACTTGATCAGTCAATTTGCCTCAGAATCAGGTAAGAAGGCCGGTGAGTTCTATACTCCGCAAGAAGTGTCGGAACTTTTGGCACGGTTGACTTTAGTAGGTAAGGATTACTCAAATGGGATGACAGTTTACGACCCAGCGATGGGGTCAGGCTCATTGCTGCTGAACTTTAAAAAGTACGTACCAAACTCATCGAGAATCACCTACTATGGGCAGGAAATCAACACGTCAACTTTCAATTTAGCTAGAATGAACATGATTTTGCACCGTGTAGACCTGGCAAACCAAAAGTTGAGAAACGGTGATACATTAGACGAAGACTGGCCTGCTGAAGAAATTACTAACTTTGATTCAGTTGTTATGAATCCACCTTACTCACAAAAGTGGAAGGCGGACAAAGGCTTTTTAGATGACCCTCGTTTCTCAAAGTATGGTGTTTTACCTCCAAAGTCTAAGGCGGACTATGCTTTCTTGCTTCATGGTTTCTATCACTTAAAGCACAGCGGGGCAATGGCTATCGTTTTGCCACACGGGATTCTTTTCCGTGGTGCAGCTGAAGGAAAGATCCGGCAAAAGTTGCTTGAAGAGGGTGCAATCGATGCTGTAATTGGTCTACCAGCAAACTTATTCCACTCAACTAGCATCCCGACCACTATTGTCGTTCTTAAGAAGGACAAGCAGGATCGGAGCGTGCTGTTTATTGATGCGTCTAAGGAGTTTGAGAAAGTTAAGACTCAGAATAAGCTGCGGCAAGAAGACATTGATAAGATTTTAAAGACCTACGAAGAACGGCCGGCAGATGTCGAAAAGTATGCTCACTTGGCAAGTTTTGACGAAATCAAAGAAAATGACTTTAACTTGAACATTCCTCGTTACGTTGATACTTTTGAGCCAGAACCAGAAATTGATCTGCGGGACGTGGCTAAGGAGCTGCGGGATATTGATCAACAGATCAATGAAAACGAGAAAGAATTGGTAGGGATGCTTAAGGAATTGACTTCAAGTGACGATGATATCATGGCAGGTTTGCAGAGCATCATCGAAGATTTTGAGGAGGAAATCCGCTAATGAAAGACGAAAAAAAGGCCCCTAAACTGCGGTTTAAAGGCTTTACTGACGATTGGGAGCAGTGTAAGTTGGGGGATGTGTTTTCTTTTTTAAAAAACAGCACGCTTTCACGTAGTGAATTAAACTACGAAAGTGGTAAATTTAAATACATCCATTATGGAGATATTCTTACAAAATTCGGAGATATAACAGACACTCGTAATTTTTCAGTTCCATTTGTTACGACCCCTGAAAAGGTCATAAGACTTGAAAAATATTTTTTGCAAAATGGTGATGTTGTAATCGCCGACACCGCAGAAGACAGCATGGTTGGTAAAGTTACAGAAATTCAAAATCCTGACCCCTTTCCAACTGTTTCTGGATTGCATACAATTCCGATTAGACCAAATAAAGAGTTTGCTGCAGGCTTTCTTGGGCACTATATGAATGCACCTTTTTATCATGATCAACTATTTAAATTGATGCAAGGGGTCAAAGTTCTTTCTTTATCAAAAAGCGCTGTAATTCAGACCAAAATTAATTCCCCATCCTACTGTGAGCAAAGATTAATCTCAAGGATGATTAATTTGATTGATGGAACAATCACTTTACATGAGGAAAAGAAACGCCAACTTGAGCGCTTAAAAAGCGCTTTACTGCAGAAAATGTTTGCTGACAAGAGCGGGTATCCACCTGTTCGGTTTGAGGGATTTAGTGACAAGTGGGAGCAAGTAAAGTATGGAGAGATATTTCAACGAAGGTCAAAAATGGGTGTTAGTACGCCTACTCTACCAAGCGTTGAATACGACGACATTAATCCCGGGATGGGTACTCTAAATAAGGAACCAAAAAGTAAAGGTATAAGCAAGCGAGGAATTTACTTCAATCCAGGAGATGTTCTATTCGGAAAATTACGTCCTTACTTAAAGAATTGGCTTTTTGCTTGTTTTGAAGGAGTGGCTGTTGGAGACTTTTGGGTTCTAACATCAAGTAAGATTGATCATGGATTTACGTATAGTTTAATTCAAACGCCGGGATTTCAATACATAGCTAATCTATCATCTGGTTCGAAAATGCCTAGATCTGATTGGGGTTTGGTCTCAAATGCAAGAACGTTTATCCCCATAAATCATTTAGAACAAGAAAGAATATCTTCTGTCTTATTTGGACTGGATCACGCCATCACTTTATATGAGCACAAGTTAGAAATTCTAAATAAGATAAAAAGTTTCCTCCTCCAAAATATGTTTATATAGTTTAAAAGGATAGCGATACCAAGCCGCTATCCTTTTATTTACAATGCAGCTAAGTGCTGCATAATTTTGGTGTTGTCTTTGTTCTCCAGTTCTTGAATGATGTGCAGGTAAGTTTGCTGTGTTGTCGTCATATCAGCATGTCCTAAACGCTTCGCAACACTTGCGATAGAAACACCGGCAAATAAAAGTAACGAAGCATGGGTGTGGCGTAGCCCGTGTACAGAGATAACAGGGATATTTAATTCCTCACAGTGCTTCTTCAGAAAATTATTAACAGTTGAGTTAAAAACTCGCTTTTGGGCAAAAATAGGCTCTCCATTAGGCAAATCTTGAATAACTTGGTTGAGCTGCATGGCAAGCTTCCAATCGATGGGAACTTTTCTTACTGATGACACATTTTTGGTTTGCTTGAAACTCCCTGTATAGCTCTTATAGTCCCAAGTTTTATCCACATTGATCGTTTGTTGCTCTAAATCTATGTCTTCTTTAGTGAGACCTAAAGCTTCGCTAAATCTCAAGCCTGTTTTAGCAATTAAAAGTATCATCCAATCAAAATTGGGGAAAGTTGACAAATCTAAGTGACGAAGTAATAACTTCAATTCGAATTCATTCAAATACTTTGCCTTCTTTTCGGAAGGTTCCTTTCCTTTAACCACGATTTTCCTTGTTGGATCTTTATGAATATAGCCTTCGTCATACGCATCCAACAGCATTGCCTTCAGTTGATGATGAAAGTCCATTACTGTCGCTTTTTCGTGAGTTTTAGCAAAAGTATTTAAGATCTGCTGATATTCAAGTCTTGTAGTATCGACTAATTTCAGATTAGGCGCAATTTCTTGTAAGTGGCGGTGGGAAAGCCAGTACTTATCTAGAGTCCTTTCTCGAACTGCTCCTTCTTTGTATACTTCAATCCATTGAGCAAAATAGTCATGTAGTAAAATTTGTTTCTTACGCATAAAAATCTCCTTAGCAAATATCTTGCTAGGGAGATTTTAGATTAGATGAACATCTTTTGTAATAATGATTTTTTGACTGAGTTTATATTATTTATTTTTTGCTGATGAAGAGCGATAGTGTCATCTAATTGTTTGAAGAACTGACCTATTTTTTGTTGCTCCTGAACTAATATGGGAATCATAAAATTAAACGAATCAATTTCTTCTGACGATACATTTGGCTGAGCGCCTGAAACTAGAACAGACTCAAGTTGCATCATGAATAATTCTGAACGGACGATTGTGGAAATAAACCCGTAGTCAATATAGTCTACAGGCTGAAAATAACCAACTCGCTGGTTTTGATAGACCTTGTCATAATCAGTTTGAGATAGTATAGCTACCTTACCTGTTGTTGCACCTGACATGGCTAGGACTGCTGATTTATCTGGAAGAATATATTTGTCATCCTTATCCTGTTCATCATAATATGCAAAATCTCCACCTACCTCCCCGCTGGAAAGAATATTTGAAATTCTAACAATTGGTACACCAGTGTTCCTGAATTTAGAGCTTTTGAATGCAAAACCGCCACGTAAGGGAGCTATATCACCCAACTTACGCTCTTCCCACTCGTCACTAAATCCTTCAAACCTAACAACAGGATACCCGCTCTCATCAGCAAACATCTTCTGCAGTAAAGCGCTTTTTAAGCGCTCAAGTTGGCGTTTCTTTTCCTCATGTAAAGTGATGGTGTGGTCGAGTCTAGAAATAAGCTTTGAGATACGATTTTGCTCCTCCAAACTTCCAAATGAAAATTCAGATTTCTCAACATCCTCTTTAGTAATATTTGGATCTTTTCTACTGCTAGCTGCGACTCGACGCCAATCGATGATATGCCTATTTAGGTAAGATTGAGCAAAGAACTGATTGATATTCTTATGAGGAGTCAAAGCTACTAATGCTTGGTTGATTGTAGCGGGAAATCCTAGAATACCGGTACGCCCAATTTGATTAAACCCACCATACATTGCTAAGACAATGGTATTCTCTGGAAGTATTTTCAATTGCTTTATACCTTCATAAGTCAGAAATTCAGTGGCGCTTTTAATCAATCCGTTATTTAAATCTGCCGTTCTAATCCAAGGGGTATCTCCGCCAAAATTTGCACTTTTTTTTCTGCTAGGAGTGTTCCCGGAATATAAATGACCATACACATCCCCCAACTTACACTGCTCCCAAGCAAAAATTACATCCCTTCCGCCTGTTCCTGCATGACCTGGCAGAAGGCGAGGACCAGGGGGTCTGCTTCATCTTTTTGGCAGACCAGGCCATAGTCCAGCGGGGCGGGGTAGTTCAACTTTACCGCCTTGATCACATCTGCTTTTTCGATCGCCACAAAACTTGGCATCACGGTGATCCCTAGACCCGCCTTGACCATTAAGCTGACGATTTCAACATCGTTAACGTAGCTGATGTCCAAGTCATCGACCTTCTTTCTGATCGTCTCCTGGAGCTTCAGTTGTTCTGGCGGGCACCAGTTGTTGTCCATCAGCAAAATTTTTTCTCCCGCCAAATCATCCAGGTCAAGCTCCTCTCTGTAACTTAAATGATGATCTGTAGGTACGAGTGCCACAAAGTGTCCGCAAAAAAGATCATAGTACTTCACCTCGGCTAGATCAGTGATATCGTCATGGGTCGTAAAAATCACATCGCTGTCGTGGTCAATCAAGTGGTGCTTGAGCTGGTTATGATCAAATCCCTCAAGAAAAATCTTGCAATTCGGGTATTCCCGGTGAAAAGCTTTGATCATCTCTGGCAGAATTGCTTGCTCTAGCGGTGTATCCGTAATCCCAATTGTTAAGTTCTTAAACTTCCCACTTGCAAACGTGGGCTCGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTTAGTCAACCACAACATCATCAGTATCAAACGAAAGGCTTGTGCTATGTCTAGTTTACCATTATTCGATACTAAGAACGAACCTAAAATTGCCAGTTCTGTTGAAAAGTTCTTCGAGGACTACAAAGTTATGGAGCTTCTCCGCAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCGCTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCGAGACAGAAGCATGTACATGGTGTACTGCTGGCTTCTCCAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCGCCTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCTGGCTGCCAAAGTATTCGACCACGTTTCGATGACCTACAGGAAGGGCTTTCGGATGATGACCATGGGATGGTATGCTTTTTACGTTACTATAAGCAGCCTTTACCTCACGAGATGAAGAACTGCACTATCCTCAAGCTGAAGTATGAAGACGGACAGTTTACCTTGCAGGATCACTTTGAACCAGATTTCAGCGAACTGGACCACTAAATACTTTCATCATGAAGTATCCAATCTGATTTTCTTTTTTTAACGGAAATTCCTTTTGTGGGAGAAAACGATTTTTTGTTATAATATAAACGAGAAAAGGCTTTTAACATAATATTAGATTTTGCTAAGGAAATAGAAAAGCAGAGGGACATCATGAAGTACGAATTGAGCGGCGGGAATACCTGCCCATTAGCAACTGTAACCCTCGATAAGGGGGAAAGCATTAAAGTCGAAAACGGCGCCATGGTGTACATGAAAGACGTCACCATCGCCGGTAAGATGAACTCCAGCAAGAAGGGCCTGGGCGGTTTGCTCGGTGCGATTGGCCGGAGCTTGACCAGTGGTGAAAGCATGTTTATCACTCAGGCAACGGGTGATGCGGACGGCGGACAAATTGGGGTTGCACCCGCAATTCCTGGCGAGATTGTAAAGCTTTCCGTTGGCAAACAGCAGTACTGTCTGAACACCGGTGCCTTCTTAGCAAGTGATGATAGCGTCAGCTACAAGATGCGCAGCCAAAAGCTGAGTAAGGCAGCTTTCGGCGGAACTGGTGGCTTCTTCGTGATGGAAACTGAAGGCGAAGGCGACATGTTGGTTAACGCCTTTGGTGACTTGGTTGAACTGACAGTGACCAGTGATAAGCCGCTCTCAATCGACAACGAACACGTCATTGCCTGGGATGCAAACCTTGACTACGACATTAAAGTAGCGTCAGGGATATTTGGTTTTACTTCAGGTGAAGGCTTGGTTAACCACTTTACTGGTGATGGCAAGGTTTTGATCCAAACGCGGAACCTGCATTCACTGGCAGAAGCCCTGCAACCTTTTATCGTTGAGAAAAACAGTAACAGTTAATGCAGCAATAAAAGATCGCCACAATCGTGGCGATCTTTTTCATGTCTGTCATAAAATTTCTTGTTACTTGAAGTAAGCCTGTGTGTAGTCAACCATGCCAACCTTGTGCCAAAGCACACCCTTTAAGTTGGCGTTTACCAGGTGGTCTTCAACCATGGTGTAAAGAGGAAGAACTGGGTAATCTTGGTTCATTTGCTCTTGTGCCTTTAACAGGTGGTTAAAGTAGACCGATCTGGTTGCGGCATTCTTTCTAGCTTGCTTGAGCTCATTGTTGTAAGCAACACTGGTGTATTTACCGTAATTGTGGCTGTTGGTCATTTCCAAGGTCTGTAGTTCACTGTATGGGTCAGCGTAGTCATTGATCCAGAAGGAAAGGTAGAGGTCGAATTTGCCATTGGCAGCTAAGTTGTAGGCTGACTTGGAAGGCAGATTCTTGACGGTGACTTTCAAGCCTGGCAGCTTACTTTCCAGCTGTGATTGCAGGAATTCACTGACATTCTTGTCAGTCGTTATGTCACTGGCCACCAAGGTTAAGTCAAGCTTGCTCTTGCCCAGCTGCTTTAAGCCAGCTTGCCAGAGCTTTTTAGCCTTGGCAACATTGTAAGTTTCTTTTGGCTGCGCTGCTGTTGCGAAGTCCTTGCCACTGGCTGGATCCTTTGCTGCATTTGGTGCTGAGAAGGTGTAGGAAGGCTTTGAACCATCTGCTAAAACCTTTTTAGACAGCTGAGTACGATTAACAGCCAAGTAGAGGGCTTGCCGGAGTTGTTTGTTGGCCAATACGGCGCCCTTAGCCATATTCAGTTTTACGAAGTTATTACCTGACCGGTAGAGGTGGTAGAGGTTCTTGTTATTTTGCAGACCTTGTGCCGTCGTGCCTGAAACTACAGCGTCATCTAAGCTTCCTTGCTGGAAGAGCTGGTGGGCAGTGTTTGAGTCTTTGACGACTTGGTAATTAAGCTTTTGCAGCTTGACCGCGCTTTTAGCGTAGTAGTATGGATTCTTTACGGCAGTCCACTTTTCACTGGTGTTAGTCCACTTGGTGACCTTGAAGGCCCCGTCAAAAGCGGTATACTTGGCAGCCGTACCATATTTGGCACCATATTTTTTAACAAGTCGGGTGTTTTGCGGGTAAAAGGCTGGTATAACCATCTTGTCGATGAAGGTCGGTTCTGGATTTTCAAGCTGCACAACCAGTTTATACTTGCCGACGGCTTTGACGCCTAAGCTGCTGACCGCCTTTTTGCCTTGAGAGATCTGGTCAGCATTCTTGATGTTGCTGAAGATGTAGTTATAGCCAGACATTGCTTTGGGAGAAACGCCTTTTCTCCAAGCGGTCACAAAGTCTTTCGCGGTCACAGTATCACCGTTTGACCATTTGGCATTGTGCCTCAGATTGAAAGTGTAGGTCTTACCGTCACTGGACTTATGATAGCTAGTGGCAACCGCGGGAACTGGCTGGTCATTTTTATCTGACCGGTAAAGGCCAGCCATAGTTTGCACCAAAGTGTCCCATTGGGGGAATGAGACAGTCACTGAGGTGTCGAGGGAGCTGACTACATCAGTCTCCATCAAGTTCAGGCTTGTCTTGCCACTGGATGGTTGGGAATTGCTATTGCCGCAAGCGGCCAGCAGGAAGGCGGCACTGACGCTGACGGCAGCAAGGGTGAATTTCTTGATCTTTTGCATTCTTCCTCCTTAGACAAAAAAGCAGCTGCTCCCTAAAGGAAACAGCTGCTTCATTTGCCACTAAGCTAACAATTACTTGGCAAATCACTTGGTCTGAGCTAAATCCAGTTTAGGCAACACAAAACAGTCGTATGACATAAGTGACATACAACAAACGCACATAGTTTGGTTTTCTTGCATTGCAAACATGATTTAGCTCCTTTCTCAATTTGATTTAATTTAATTTTACAGACTCACTTACTATAAGTCAACTATTTTATATAACTTTTTCCTAACGCAAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGAGGAAGAGAGTTGCACCATACTTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGAATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATTAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAAGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGAAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACTAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAGCGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGATCAAGATATAAACGCTGAAACGATCGACCGCTGGGTCAAAGAAGGCTGGGAATGGGGCAAGGCAATTGACCACTTCCCTTCCAAGCTGCTATAGAAGGGAAGTGGGAGATCAAGTTGACCCCGGTTAAGTATGTCCCGCACAGCTGGTTTGGTGACTTACACGGCCAAAAAGTCCTTGGCCTAGCCAGCGGGGGTGGCCAGCAGATGCCAATCTTGACTGCCTTGGGGGCAAAATGCACAGTCCTGGACTATATTCTGACCAGCAGCTGGAAAGCGAGCGCCTGGTTGCAGAGCGCGAAGGCTACGATATCGACATTGTCAAAGCCGACATGACCCAGCCTTTGCCTTTTGCTGACGAAAGCTTTGACATGATTATCCAGTCAGTTGCCAACAGCTACGTTGAAAAAGTTAAGCCGATCTGGAAAGAATGCTACCGGGTTTTGAAAAAGGGTGGGGTACTCCTGGTTGGCCTGGACAACGGGATCAACTACCTGTTTGACAGTGAAGATGAAAAGTATGTCGTCAACTCTTTGCCTTTTAATCCGCTGAAAAATCCTGACCAGATGCAGCAGCTGGAAAAAGATGATTTTGGCGTCCAGTTCTCTCATACCTTGGAGGAACAGATCGGCGGCCAGCTGGAGGCTGGCTTTACTTTAACCAATCTCTATGAAGATACCAACGGCGAAGGCCGCCTGCACGAATTGAATATCCCGACTTTTATCGCGACCAGAAGCGTGAAATAGCAAAAGCCACCAAGTTTAAGCTTGGTGGCTTTTAATGTATCCAAAATGATTTGCATTTTTCTTATTCTTCACCATGTTCAAACTGTGACTGGTAAAGATCGGCGTAAAAGGCTTTCTTTGCCATAAAGCTGTCATGGTTGCCAACTTCAACGATATCCCCGTCCTTCAAGACGATGATACTGTCTGCATCCCTGATCGTTGACAAGCTGTGGGCGATAACAAAAGCCGTCCGCCCCTGCATCAGCCGGTCCATCCCAAACATGGGCCATAAATCAGACCACTTCATCTTGCTTATATCCTGGCCGCCAATCGTGATCTTCCCGCAGTTTAACTCGTAAAAGCGCATCAAGAGCTTGACCAGGGTGGTCTAGCCGGCCGCAGTAGGCCCGACGATTAATGTGCTAAGTTATTACAAGTGGAAATCTAGAAACTTTTTCAAAGAAAAACGCCAGCAAATGCTGACGTTTAAAACTATTGAGTATTGATGAATACAGTTTATACAGCTTGGTGATGTCGACCAAGGAGAGCTTGTTGTCGTGCTTAGCTTCCAGGGCGTAGATCAAGGCCCGCGCCGTATCAAGGGAAGTGTAGATAGGCACGCCGGCTTCTACGGCAAAGCGGCGGATCAGGAAGCCGTCCTTCAAGTTGTTGTTTCTGGTTGGGATGTCGATGACCAGGTCGACCGTTTCCGTTAAGATTAAGTCAAAGATGGTGTTCTCCTTGTCATTGATCCGGTTGACCAGGCGGGCAGGGATGCCATGACTCTGCAAGAAGTCGTATGTCCCTTGGGTCGCGTACAGGTCGTAGCCGAAGTCGTGGTATTCCTTGGCGATTGGCAAAAATTCTGCCTTAGCCGAATCCTTGACCGTGCAGATAACCTTCTTGTGCTTAGGCAGGTCCAGCCCAGTCCCCATAAAGGCCTTGTACATGGCTTCTTCAACGTCTTCAGAAATCCCCAGAACTTCACCGGTTGACTTCATTTCCGGCCCCAAGGCAATTTCCGCCCCGGTAATCTTTTCAAAGGAGAAGACTGGCATCTTGACGGCAACTGTCTTCTTTTCCGGAGCAAGGCCGTAGTCATAGCCTTGCTCCTTGATGGACTTGCCAATGATGACGTTGGTTGCCACGTCAACAAGCGGAATCCCGGTCACTTTGGAGATATAAGGTATGGTTCTGGAAGAGCGGGGGTTGACTTCGATCACGTAAACTTTGTTTTCGTAAACGATAAACTGGATGTTCATCAACCCCTTGACCTTCAAGGCCTTGGCCAGGCGCTTGGAGTATTCTACGATTCGTTCCTTCATCTCCTGGGAGATCTTTTGCGGCGGGTAGATGGAGATTGAGTCACCAGAGTGGACACCAGCTCTTTCTACGTGTTCCATGATCCCAGGAATCAAGATGCCTTCATCATCGCAGATGGCGTCAACTTCACATTCCTTGCCGGCCAGGTACTTGTCGATCAAGATCGGGTGGTCTTCAATGTTAAACTGGGAGGTGATGTGGTCGATAAAGCGCTTGAGGTCGCCGTCGTTTAAGGCGATTTCCATTCCGGCCCCACCTAAAACGTAGGAAGGACGGACCAAAACCGGGTAACCCAGCTCATTCTTCAGCCGTAAAGACGGTTTGCCCGTTCGGCCGGTCGATCTGGCACTTTTCCAAAATCTCGTCAAATCTTTCCCGGTCTTCAGCCGCGTCAACACTGTCGGCAGAGGTACCAAGGATTCGGCACGCCCATCTTCATCAAGTCCTGGGAGAGCTTAATCGCGGTTTGTCCGCCGAATTGGACGATGGCCCCGTCTGGCTGCTCTGCACGTCTTCTGCCGTTAATGGTTCAAAGTAGAGGCGGTCGGCGATGTCAAAGTCAGTTGAGACAGTTTCCGGGTTGTTGTTGACGATGATGGTTTCGTAGCCAGCTTCCTTCAGGGTCCAGACACTGTGCACGCAGCAGTAGTCAAACTCAATCCCTTGGCCGATTCTGATTGGGCCGGAGCCAAAGACAATCACCTTTTTCTTGGACCGGTCTGGCTGGATTTCATGTTCACCGCCATAAACGCTGTAGAAGTATGGCGTTTCGGCGTCAAATTCAGCCGCGCAGGTGTCGACCGTTTTGAAGGCAGCCGTGATCTTCAAGCCCTTTCTGAGGTAGTAAACTTCATCAGCCGTCTTGCCGGTTAAGCTGGCGATAACCCGGTCTGGGAATTCGCAGTGCTTGGCCAGTTTCAAAAGATCTGGCGTCAGTTCTTCGCTCTTGAGGCGGTCTTCAATTTCAACCAGGTGCTTGATCTTGTCAATGAACCAGACGTCGATCTTGGTAATGGCATGAATTTCCCGGATGGAGACGCCCTTTCGCAAGGCTTCGGCAATTCTGAAGGCCCGCTTGTCGTCAATCTTGCGGAGGTCTTTACGGAGATCATCAGCTGACAGCTGGGCAATTTCTTCATTATAAAGGTAGTAGCTGTCTTGTTCCAGGGACCGGAGGGCTTTCATGAAGGCACCTTCGAAGTTGTTGCAGATAGCCATGACTTCCCCGGTTGCCTTCATTTGGGTGCCCAGCTTGCGGGAAGCGTCGTAGAATTTGTCAAAAGGCCACTTAGGAATCTTGCAGACGATGTAGTCAAGGGTTGGTTCGTAAGAAGCGTAGGTCTTGCCCGTTACGGCGTTGACGATTTCATCCAAGTTGTAGCCCAAAGCAATCTTGGTAGCAAGCTTGGCGATAGGGTAGCCAGTTGCTTTTGAGGCCAGGGCAGAAGACCGGGAAACACGAGGGTTGACTTCAATGACGCAGTATTCAAAGGAGTCTGGGTTGAGGGCAAACTGGACATTGCAGCCGCCCTTGATGTTCAAGGCAGTGATGATGTTGAGGGCAGAGGAGCGGAGCATCTGGTAGTCCTTGTCTGACAAGGTTTGAGATGGCGCTACCACGATACTGTCACCGGTGTGGACACCGACCGGGTCCATGTTTTCCATGTTGCAGACGGTGATGCAGTTGCCGGCACCATCGCGCATGACTTCGTATTCAACTTCCTTCCAGCCGGCGATTGATTGTTCAATCAAACATTCAGTAACTCGGGAGAGGCGGAGGCCGTTAGAGCAGATTTCATGCAGTTCTTGGCTTTTCTTTTTCTATCAATTGCTTGACGACTGGCACAGTCAAAGGTTCGATGTAGACGTGGTCAGCCATGTCGCCGTCAGTCATGATCGTGGCCGGGTTGGAGTTGATCAGGACAACTTCGATGCCTTCTTCTCTGAGGGCCCGGCAGGCCTGGGTCCCGGCATAGTCGAATTCAGCGGCCTGGCCAATGATGATCGGTCCGGAACCAATCACTAAAACTTTTTTGATATCGTCGCGCTTAGGCATTCTTGTGTTCTCCCATCATTTCAATAAAGCTGTCAAAGAGGTATTCCGTGTCGTGCGGGCCGCCGCAGGCTTCCGGGTGGAACTGGACGGACTTGATGTTTTCCTTTAAGTATTCCAGTCCTTCGATCGTCTTGTCGTTGACGTTCTTGAACCAGACCTTGGCTTGCTTTGGATCAATCGTGTCTTCCTTGATCACATAGTTGTGGTTTTGCGTGGAGATGTAGACCCGGCCAGTGGTCAGATCCTTGACTGGGTGATTGCTGTCGTGGTGGCCGTAGACCATTTTTTCCGTCTCAAAGCCGTGGGCTAAGGCTAAAAGCTGGTGGCCCAGGCAGATGGCGAAGATCGGGATGCCGGAAGAAGCAAGAATTTTCAGCTGGTCAATGATTTCCGTGCATTCACTCGGGTCGCCGGGGCCGTTTGAAAGCATGATCCCATCGAAGTTGTGGTCTATGACATATTGGGCCGGGGTGTCAGCCGGCAGGACTGTGATATGGCAGCCTCTTTTGGCCAGTTCTCTGGCGATATTGCGCTTGGCACCGAAGTCGTAGAGGGCAACTTCGTAGTCACCTTGACCGACATGGTAGGGCTCAAGACAGCTGCACTTTTCAACGACCCCTTGGATCTTGAAGGCCTTGATCTGGTCAATTACTTCGCTGACTTCGTAATCCTTAGTAGTGATCATCCCGTTCATGCAGCCTTCTTTGCGCAGGATCCGGGTGATGGCCCGGGTGTCGACGCCTTGGATGCCGGGGATGTTGTTTTCAATCATGTAGTCGTTCAGACTCATGTTCATGCGGAAATTGGACCCCAGCCGGGAAAGCTCGCTTACTACAAAGGCTTCGACAAAGGGGTGAGCGGCTTCCTGGTCATCCAGGGGAACGCCGTAGTTGCCGATCAGGGGATAGGTCATGACTACGCTTTGACCGGCATATGACGGGTCGGTCAAGACTTCCACATAACCAGTCATCGCCGTGTTGAAGACGAATTCGCTGATAACGTCATGGACCGCGCCGAAGCTTTCGCCTTCAAAAACGTGTCCATCTTCCAGTATTAAACGCGCTTTCATGATTGTTTGACTCCTATAAAAAAAGACATATCAACGAGTGACATGTCTTAAGTGATGAAATATTAATAATTTGAAAAAATGGAAAAGGAACAGCGAATGAAGCTAGGCAGATATCTGGGTTAATGTTCATAAATGCGGCCATTTTTGCTGCTTCCTTTCTGTTTCTTCAATAGTGTAAAGGATAGATGCAAGGCTTGTAAGTAGTTTTCTTGATTTTCATTAAGAAAGCTGCATATTTTATATTCATTTAGTTGGTAATCGTTGATTTATCTAGGTGAAAGCTTGATTTGTCTGGATAATCACGAATATTCGCTTTTTCATTATTAAAATGATATTTAAATTAAAAAGCTTTCCGCTTCTATGCTATACTTTTGACTGAGGTAAAACACATGCCAGATCAGAAACCGCAACTATTACCAACACGAGATTAATAATTTTTTGCAAGCCGCTCAAGAGAGCGTTACTTATGTCTTCTGCGACGTCAATGGCCTGCACGAAACCAACAGCAAGTTTGGCCATGAAGCCGGGGACCGGATGCTGATTGCCCTGGCTAGTGAATTAGCCAAAAGCTTCGGGCAAGACATGTCTTTCCGCTTTGGCGGGGATGAGTTTTTAGCAATTGCCTTAGACGAGCGCTTGGACAAAGTTCAAGCAAAGAGATACTTTCTAACTTGAAAAAGCAATGCTACCACGTTTCAATCGGGATCAAGCAGGCAAAGGCCGACCACTTAAATGTCAGTGACCTGCTCTACTAGGCAGACAAGGCCATGCGCAAATCCAAGGAAGAATTCTACAAGAAAGCCGAGAACGACCGCCGGGCCCGGTAATCTTCTTTCTTTACTACATTTATGACTGAAGATAAAAAGCCGGTATTAACCGGCTTTTTCTATTGCTTCTAAAGCTTGCATTTCTTTAATAACCAAGATGGTTGAGCCCAAGAAGCAGATGATTCTGGCTCCCAGTTCTGCGCTCCAGAAAGCATTAGTCTGAAGAAGCGTTAAAAGCAGCCCGGTAGCGGCTAGCTTAAGGGCTAATTCACCCAAGTTGCAGTAGAGGTATTCCTTCATCAAAACCATGCTTCTGAGCAGGCCTTCATTCAAGAACTTGAAGATGGAGAAAAGCTGGATGCCGACAAAAGCATAGAGATAAACTCTGAAGAAGGAGTAAGCTGCCTGGTTTTGGCCTGGATCAAAGAACATGCCTGCCAATAGCTGACAGAAGATGACCGACAGGGCTGAGCTGACCAGCCAGTAGATGAGGGAGACATTGCTGCAGTAGCGGTAAACTGCTTTAACAGCTGAGTACGTTTTTACCGCCAATAACTGAGCCGTCATCAGAGTTAACGTCTGGGCAAAGCCAACCAGGACGATCCGGGCCAGGTTCATGACCTTGACGATAGCGACATAGCCCAAGATTGCCTCCTGGCCAAAGGGATTGACCCAGGCCTGAACCAATGTTGCGCCGAAGGTGATCACGAATTGCTGGAAGATGGTTGGCAGGGCTATATGAAGGATGGACTTAATTTTTGTCCAGGAGAGGTCAGGCTTAAGGGAGACAGGCTCTTCTTCCTGCCGGTCCATTTTTGCCAAAAGGTAGAGGGTGACCAGCATGGTGATCCCTTGAGCTAAAACCGTGCCCAGGGCTGAACCTAATACGCCCAGCTGCAAGACGAGAATGAAAAGAAGATTTAATAGTAGGTTTAAGATGCTGGAAGTTGCCAAGAGATAGAAGGAGATTTTGGCCCGCTCATTGGAGATCAAGATGGTCCGGCCAACGTCATAGATGTAGATGATTGGCAGGGCAAAGAGGTAGACCCGGCCATAGAGGAGGGCATCCCCCATCATGTTTTCCGGTAAAGACACTGCCTTATAAAGGGCAGGCAGGGAAATCCAGGCAATTACCACTAAGACCAGACCGCTAATAGCACTGAGAAAGAGGGTGTCCCGGGCCATGGCGGCCTTCTCTTTATTTTTACTGGCACCTAACAGCCAGACCATGACGTCAACCGCCATTTCAAAGCCGCCGGAGACAACCAGGAAAAGCATGATGATATTGGCTGCGTTGCCCACGGCGCCTAATTCCCTGGCTCCCAGATAGCGGCCGATGATGGCCATGTCGATGACGCTGTAGAGCTGCTGGACAAACAGCTCGCTGATCATGGGCAGGCTGAAGGCCCTGCATACCTTTAGGGTAAACTATGCCCTAAGGGAACAGTCAAGGGCTGGAGAGTTTTAGTAAGGAAAGAGATTGACATGAACGAGGAATTAATTAAGACCGGGGATTTTGCCAAAATGTGTGCTGTCACCAAGAAAGCACTTTATGTCTATGAAGCAAAAGGGCTCCTGAAGCCGGCAGTTGTCAAAGATAATGGCTACCGCTACTACCGGCTGGAACAGGTGGACCAAGTTGCCACGATCCGCCTGCTGGAGAAATTGGGCAGCAGCCTGCAGGAGGTTGGGGACTTTTTCGCCTTAAAGGATTTGAATGAACGGCAGAAGTATTTAGGCAAGCAGCAGGAAGCAGTCGAAAGAGAGATGGCTGAGCTGGGGAAGATCAAGTCCAGCTTAGAATTTTTTGACCAGAGAATCAGTGACTTGAAGCAGACTGGTTTAAAAAAGTGGCGGTTGAGACTTGCCCGGAAGAATACCTGGAAGTCAGTCCTTTTAGGCATGGTGTTTCGCTGAATCCAATCAGCTTCGGGCCTAGATATGGGGTGATCGTCGATGACTTTGAAAAGGCAGAAATCAGCCACTTTTTTAAAGTAGTGGAAAGAAAAAAGGGCAATTACGTCAAAGCGGCTGGAAAGTATGCCTGCTTTTACCAGGAAATTGAGAACGACGATGTTGCTGGCAATGGACCGAAGGCACTGGAATATTTAAGAAGCAAGGCAAAAGTTGTCCCGCCTTTTTACCAGGAAGACTTCAGCAGTTCCGTTTCAGGTCATGACGGATCGGTAATCATCAAGTATTCTGCCAAGTTGGATTTATGAGCAAATAAGCAGTATCCATGCACGTTTTTTCGCGTGAGGGGATGCTGCTTTTGAATTTGCGGCTGTTTTCAATCGCAAAAGGAGCGTAAAAGCGATCGAAAAAATAATCCATCGCGTTTGCGATCACTTTTGCTCGAAAAATCGCTCCAAAACGAGCGCAAATATGATTGAAAAGATAATCTATCGTTTTTTCGCTCCAGCTGGTGCACTTTTGGCTGATCACAACCATTTTCGTGGTATCAATTTGGTTCGTTTCGGAGCAAATCTTAATATCATGCTGGATCGAAAAGACTATGAAGGTATTTCTGTTTTAGACCAATACAATTTCTCCATTGACATGTATCACAGTATTACCAATATAAAGAAATCAAGGGCATTAACAGGGAACTGGAACTGGTAGCAGAGATACCCGAGGAAGCTTTCAGAGAAGCAGTTGCTATGCCTTGGTCCATCGGACTTGGGACGTGAATTCTCAAATCAAAATTTCAATGTTTGATGACAGAATTGAAATTGTCTCACCCGGCGGCTTGAGCAAAGAGGAGTATCTCTTAGGGCAAATTTCAATACTGCGCAACCCGATTTTGGCTAATCTCTTTTACCGTTTAGGCTTAATTGAACAATTTGGCATGGGAATTCGCAGAATTATCAGTAGCTATCAAGGCAGCGTTATTCAACCTAAATTTAAAATCTTTGAGAACTCAATCGTGATCATTTTGCCGCTTTTTCAATCGGTGTCAGTCAATCTTTCTGAGGATGAAGGCAAAATTTATCAAGCTGTTCAATCTGGAAACGAAACTACAAGCAAGATAAATGAAGTGGTCGGCTTTGGCAAAACCAAAAGCTTGCGGTTGATAAACTCTTTGGTAAAGAAAGGCTACCTAATCAAAGTCGGGGAAGGCAGAGGCACTAAGTATATGCTACCGAAGTAGATAAAATTGAATAGCTACTAAGCAGCATCCCTGCAGAATTTTTCGTGAGGGGATGCTGCTTTTTAGTTGAAACTTTGCGTGACTCTTTTTAACCTGATTTGCGAAAAAAGGGCAAGTAATCATCTCAAAAAATTTGCGCGCAAATGAGAGCTCTTCTCAGCATTTTTGGCGAAAAATCGTTTTTTTACCGAATGCGTAGAAATAAGCATTTTTACGCATTCGAATCTTGATTAGTTAGGACGGATTTTTTAACAATTTTGCCGCTTCAATGCACCTTTGTGCTAGAATAAATGCATAAAGACGCATTCAATGAGGGGAGGATTTTGCTAGCAAAATGGGCCGAAAAGTTAAAAAAACAGAGAGCAGCAGAAATATCAGGCCGCTGAAAACTGCAAAGGAGATTAACGCTATGAAGCGGGCCCTCCAGTTTGGGACCGGGACAGTTACTGGACAAAACAGGAATGGTCTGCGGAATGCTATGATTTTTGTCTTTGGAATCAATACGGGTCTCCGGATCTCCGACATCGTCAAGGCCAAAGTCTCAGACATTGAAGACGGGGAATGGTACAACCTGGTTGAAACCAAGACCCACAAGAACCGGCATGCCTATATTGGCAATATCAGCCAGGACTTGGAAAATTACATTGACCAGATGCAGCTGAAGCCAAGTGACTGGCTCTTCCCTTCTAGAAAAGGGGAGGGGCATATTGAAGGAAAGTCATTCTATAAAGATTTGAAGCGGGCCGCCCGGCAGTGCGAGATTGATCCCAGTACAGTTGGTACCCACACCTTAAGAAAAACTTTTGGCTACCACTACATCAAGAGCGCGACAACCCCAGCAGGTGATCCAGATCCCCGGGCCTTGTACAAGCTGCAGAAGATGCTGAACCACAGCAGCCCAACCACTACTCTGAGATATATTGGCTTGGAAGACGAAAGCATGGAAGAAGATTTGAAGTCTTTCCGTTTGGGATAAAATACATCTTTTTAAGAAGCGAGTTCTATTGCGCTTAAATGTGCAGGTGATCATCTTTAACTTTTTAAGAGCAACAGAGTCGCTTTATCAGCACTATACATTTTTGAGTAAACATATCTACATAAACTTTGTTATGTAAAGTGATTTGCTGGAATTAAAAACCGGTCTCAGAATTTGAGATCGGTTTTTGCTTACAAAATAAATTCCATATTTGTTTCTTTGACCTTCAAGCCATTCTTCTTATAGAAGTTTATGGCAGAATCATTGCCCTCCCATACATTAAGCGTCACTTCATAGTATCCCAGTCTTTTGGCTTCAGCTTTGACATAATCAAGCAGGGCCCGGCCCACGCCTTGGGAGCGCTGGGTGCTGTCAATACAGAGGTCATCGATAAAGAGTGACTTAAACTGAACCATATTGGTTGAAAAAGGCTGCTCTTGCAGCTGAGTGAATGCATAGCCGAGCACTTGATCATCTTCGTCAACCGCGACAAAAACTGCTTTCTGGTCATCGTTAATGATTGTCGTCAGCTCTTCCACCGTGTACTTGGTTATGCTTGGAATAAAAATGTCTGGACGAATCGAAGCGTGAATTTCACCTAAAGGGTCACGCCTAACCAGCGTGGCCTTTTCTTATTCCAGCTTTTTGCAACTTAGCCGCCTATTTTTGCATCTTACCTAGATTTAACCCAAGAAAATATTAAAAGATGTAGAATTAACTTAGAAAGATAAACAGAAAAGGGTTACAAAATAGTGAAGAATGCTATTGAGGTTAGAAACCTATCTAAGTTCTATGGGGACTTGAAAGTCGTCAATGACATCTCCTTTGCATTAGAGACAAAGCTTCAGTATTCTTCTCAATGCTGAGTGTCATTATCATTTTTGCCCTCTACATCTTATTCATTGGTGATTCGGTGAATAGCGGGCTAAAGTTTCTGCCGCATCCCAATCGCTTGATGCGGGCTTGGATGCTAGCAGTGATGCTGGCTTCGGCGTCGATCACTACGAGTTTAGGAGCATATGGGGTAATGATCAACGACCGGGAGAATAAGGCGATCAAGGACTTTTACTCATCTCCGGTCAGCAGAAGACAGGTCGCGCGCGGCTATATCGTGACCGGCTTCATCATCAAGCATCATCATGTCCATTTTTACCTTAATTTTTGGGGAAATCTACCTTGGTCTGGCCGGCGGGGCAGTACTGGATATAGAGACTTTACTAAAGCTATTTGCTGTAATTGTCTTATCATCCTTTGCATCATCGGCGATTGCTTCTTTACATAATTTCTTTCTTGAAGACCAACAGCTCCTACTCAGCTGCAAGCACGATAGTTGGGACCTTGATCGGCTTTTTGGTTGGGGCATACATTCCAATCGGCAGCTTGCCAGACAACGTTCAATGGCTGGTAAAGTACTTCCCATGTGCTCATTCAGCGGTACTTTACCGGCAGCTTTTGATGAAGCCGGCAACTAAAGCAAACTTTGCTAATCAGCCGGCGAGTGTACTAAAAGAGATCAGGGAAATGTTTGGGATTGTCTTCGTCTATAACGGCCACATCGCGCCTGCATAGGTATCAGTAGCAGTCCTGCTGGTTACTGGGGCTATTTTCTACTTGCTGGCGGTCTTGGTAATGACCCGGAAACAAAATGAAATATAGAGAATAGTTAACGTAATTTTAGATATGGAAAGGATTTTGCTTAATATGGCCCTTGAAAAATACAAACGCTTTTTCAGAAAATCTTATCAAAAGTCCTTACACAATCATTTTTTTCTATTTTAAAATAACTAACTGTATTTGAATACGGTTATGATTGGAAACGCACACTCCCTTCATGATTAACGAACAACACGTGAATCATGAAGGGAGTTTTTTAATGCTAGAATCAAAACTGGAAAATTTTGTCTTTACTGTTATGATGGCCTTTGTTACGGTCTACGCCATGATCTGCTACAACATCGCTCTTACCATCGGCGGGGATGAGGGATGCTGTCTTACTGGACGCCTTCCGCGAAATGATGATCATGTGGCCGGTTGCAATCATCCTGGAGATGTTCGTCTTTGAAAAGCCTGTCGTTTACTTGACTCAGCGGCTGATTACACCTGAAACGCCAATCTTGCTGATCATCTTGATCCGGTGCTCAATCACCATCTGCCTTATGTGCCCAACGATGAGCTTGATCGCAACCGCGCTCTTCAAGAACTTCCAAGCAGCTGGCTTCATCGGGACCTGGCTGCAGACTGCCGTCATCAACTTTCCAATGGCGATTGGCTGGCAAATCTTCCTCTGCGGTCCTGCGGTAAGATTCTTGTTTAGAACGATTTTTAGAAAAGATAACTAAGTTACATTAGCAGCATTCATCTGTATTTAGTGCAGGGGATGTTGCTTTTAGTTTATAATAGAGACCAAAGCAATCGGTTACAGTTTGCTAGGAAGGAATTGGTATGTTTAGAAAACGAAGCTTTGTTTGACGAGGTAGAATCCGAACTTAAGAAACATGCCTCAATTCAAGATTTTGAAGAAAAATACGGTAAAATCACGGGCAGAATGATGATCACAGAAACAGAGATCCCCGAGGAATTAGGCATTAAGATAAATGATACAGATGTTCATTCTTTCAAAGCCACTTTTGACTTCTATAATACCGCAATAGGCCTGGCGCTTAATGTTAAAACGAGAGAAGCAGCAACAAAATTCTGGCTGACTCCACAAGATGATAGGAATGACGTGCCAACGGACAGCTGGTTTGAATTTTTTGCCATGATTTTGATGGAAGCCTTAGATGAAGGCATGGATAGCATCCCAACTTTCTCTTTCGTCAATGATTCCAGTGACCTTACCATCAGCGGCCTGGGCCTGCTTGAGAAGAAATAACAGGAGAAGATCATGACCAAAGCAAAAGTAGCCTTTATCTGCACCCATAATTCCTGCCGGAGTCAAATCGCCGAAGCCTTGGGTAAAAAGCTGGCCGGGGATGTCTTTGAATCCTATTCAGCCGGCACGGATCTAAAAGATCAGGTTAACCCCGACGCGGTTCGGCTGATCAAAGAGCATTATGGCATCGATATGCTGGCCAACGGGCAAAAACCAAAGACCCTCGTTGACCTGCCGGCGGTTGATTACGTAATCACCATGGGCTGCGGAGTCCGCTGCCCTTATTTGCCTGCAAAAAAGCGGGTAGATTGGGGATTAGAAGATCCAACTGGACAAGATGATGAGACCTTTATGCAGGTGATTAAAGAAATCGAAGATAAGGTACTAAAGATGAAGCAGGAGCTGAGTTAAGAGGCAGTAAGTGCACGCCGGAGTGGTACCTGCTTCAACCAGAAATGGAAGTCAGCTTTAAAGATGATGGCGACAATGTACTGGCAGACCCTGGGCTATTTGCCTAACCCGCGCATCGCGAACCTGGTTAGGGCTGCTCTAGCTAACCTTGCGCAATAGCCTTTTGCCTTTATCAAGTCCATCGATGAAAAAAGGCAAGTCATCCAGCTGGTTTTGGCCATCTATCAAAAAATGACTGAACCCGTTTTAGCCGATATCCCGCAGATTGAAAGCTGGCTCTTAGAAACAGACGGTGAAGATATTGTCGGAAAAAGCCGGCAAAAGCACCTTGAAGAAGTCGAAGTAGGGCAGCTCTTGTCTCTGCAGTTAAATCCTCCTTACGAACAGATTACGGTCTGCCCCCTGGAAGGGGATGACCTGGGAAAATTAAATCATCCGCTGCAAGGTCAGAATCCTGTTTATCGACCCGAAAAGCCAAGAAAACTGAAGACCAGACAGCCACTGAAGCAAGCAACAGCTCCAGTGGCTTTTTTCGTCTAATCCTGAAACAGACGAAATTTTTCCACTAAAGGAGAGCTTCGCCTGTTTTTTGTTACAACTTTTTTGCAAATCGCTAAAATTCCTATTGACGATTCTTAAAGACTCCAGTATTATTTAGTGTATTGCAACGGTAATACACCAATACGATTTAGGGGGTAACTATGGAAAAAGTGATGACTGTCAACAACGTTACAAAGACTTACGGTAAAAAAGGGGAGAAGCAGTTCCAGGCCTTAAAGGGCGTCTCGCTCAGCGTAGCCAAGGGCGAATTCGTCGCCATTATGGGGACTTCCGGTTCTGGTAAGACCACTCTTTTGAACATCATGTCGACCTTGGACAAGCCAAGCAGCGGCGAGGTTACGATTAACGGCAAAAACGTCGCCAAGCTGAAGAAGAACCAGATGGCCGACTTCCGGGCTAAAGAAATTGGCTTTATCTTCCAGGACTTCAACCTCTTGGACAACCTGACCGCTAGGGAAAACATTGCTCTCCCTTTGTCTTTGCAAGGGGTCAAGAGCTCAGAAATCGATTCTAAGGTTGATAAGATCGCCGCTAAGCTCAACATCAGCGAAGTCTTGGAAAAGTACCCAGCAGCCATTTCCGGCGGGCAGAAGCAAAGAGTTGCTGCTGCCAGAGCCTTGGTTCATGAACCGGCAATCTTGATGGCCGATGAACCAACAGGGGCCCTGGATTCTAAGTCTTCCAGGGCCTTGCTGGACACGATGGAGCTGCTTAATGAGAAAGACCAGGTTTCAATCTTGATGGTCACTCACGATCCGTTTTCTGCATCATTTGCTGACCGGATTCTCTTTATCAGGGATGGCTTGATTGATGAAGAGATCAAGCGCGGGGACTTGAAGCGGCAGGACTTTTACAAGAAGCTGATCAGCCAGCTCAGCGAAAATACCGACTAGTTGAGTAAAGAAAGGGATTAACATGATTTTTAAATTGTCAATGACCGGGCTGAAAAGCCGGCTAAAAGACTACCTGGTACTGTTTTCCGGCCTTAGCGCCGCCAGCATGACCTTCTACATGTTCTTGACTCTGGCCGCTAACCAGTCTTTCTTAAAGTCCAGTGTAGCGGGACGGCTGACCATGGGAGCAACTAAGTTTATTTTTTCCTTCGGGATCGTCCTCTTGGCCATTTTAACCCTGGTCTACTTGGCATACGCCAACAGCTTCCTCTTGAGCATGAGAAAGCGGGACTACGGCATGTACATGATGCTGGGGGCAAAAAGCGGCAAGATCGGCCAGCTGATCTTCGCTGAGACCCTGGTAACTGGCCTTCTGGCAACCGGGATTGGGATTATCTTGGGCGTGGGGCTGACTGAACTGGTCTCATCCTTGATGGTCAAGCAGCTGGGGCTGACTCTGGCTCACTTTAATCCGCTCTACCTGCCAGCGGTTCTCTGGACCTTGCTTTTCTTTGTCGCCTTGTTCTTCCTGGCCGCTTCCTGGAACGCGGTCAAGCTGACCAAGACTACGCTGATCAATCTTCTAAAAGAAGACCAGAAACCAAGCAAGCTGAAGAGCCGGCCGGTCTTACGGACTATCCAGGCTATCGCGGGGGTACTGCTTTTGGCTACCGGCTACTGGGCAATGTGGCATGTGGCGACTTTGCAGCTTAAGGCAATTCCAATTGCTTTAGTAACCATCGTTTTGGGTAGCTTTTTAATCTTTGACGCCTTCTTTGTAGCGGTCATCGACTTTTTGCGGAAGAGACACAGCTTCCTCTACAAAGGGATGCGGCCTTACACTCTGGGCCAGTTAAAGTTCCGCCTGCATGGCTATACCAGAATCCTGTCAGCCATCTCAATTATGCTGGCCTTGGCCCTTGGCGCTATTACGGTCGGCATTAACTTCAACAACTTGAAGAATGCCATGACTGACGTTATGTACTACGATATTGTCTTAGTTGGCAAGCAGAAGAAGCTGGCTGACAAGGTTGAAAAAATCGGTACAGAGGAGGAAGTTACTTACAGCTACAAGGCTGATGAGAAAAATGGCATCCTCTATGTCAAGAAAAGTGAAATTGACCAGACGCCGCTCAAGATCCAAATGTATAACGCGGCATCTTCAGACAAGAAGAAGGCGATTGACAAGGAGGGGCGGATTTACCACACGGTTGAGGTTACTTCCAAGACCTTAACTGGTAAGCAGACTTCAGCTACGGTCAGAAATTCTGCTCAAGCTGCCAGCCTTTTCCCAGAAGATTCCAGCAAGGGCTTTGTGGCCTTGTCAGATGCAGCTTTTGCCAAAAAGAAGCTGACGACTAAGGTCATCACTTTTTACAAGGTTAAGGATTTTGCCAAGAACAACAAGAAATTGCTGAAGCTTACTGAGCAAGAAATGCAGCTGTTCAGCAAGGACTCAATGGCATACGGCTACCTGGAATTCACCAAGCCGTTTCTTTACCAGCAAATCGCGGCAATGTGCTCAGGCTTTGAATTTATGGGCCTTTTCCTTGGTTTGTCCTTCTTAATGATGCTGGCTTCAACTCTGATGTTTAAGATCCTGTCAGCCGCAGCCAGTGACAAATTGCGGTACAAGATGCTCTACAAGCTTGGGGCTAGAAACAGCGTCTTGAAGGCAGCGATTAGAAAAGAAATTGCCATCTTGTTTGTGGCACCGGCGGTACTTGGCAGCCTGGACGTACTCTTTGGCTTGAAGATCTTTACGATTCTTCTGCCAGACCCCTACTACAAGATTTGGATTCCATTCTTAGCATTCTTCCTCTTGTACCTGGTTTACTACTTACTTACTGTCAAGCTTTACCAGGGAATCGTTTTAGAAGAGACTAAGCAAGACTAATAGATTTTTTAACAAAAAAGCGATCGAAACATGATATAGTTTCGGTCGCTTTTTGCATGGATTTAGAAGGTGAAGGCTTTTTGGAAAATAGGCGTTTGCCGTAAGTCATAGACAAAGCCGTCAGTAGGGGTGATTTCGAATGGCCGGAGCAGTTCCCGGCGTTCAGAGTCAGTCTTGTTAATCTCCAACATCGGTACTGCTTTGCGCATGGTAATTTCCTCCTATGAGTAGTGTATTTCTAAGATTTACACGTTTACTATAGCACCTTTCTGGGAGGAATGATGGGGGAGGGGGATGCTAGTTGCACTAAGCATAATTTTAGTTATGTAAAGTACGATTGCTTTTGCTGAGTGCTTATTTTGCTTTCAGTTTCATGAAATATCGATGGTGGACCAAACAAAATGACGTTAGCCGAGGCAAAAGAAGCATATGCCAAGGGTGAAAAAATCTACTAACTTTTTTGGGCGAGATCAATAAATTCCTGTACTAATTTGGGGACTGGTTTACGACAGTAGAAGCCATAGCTAGTTGCAAAGGACTAAGAGACCGGTTTAACAATATATGGATGGCACAATTCCGAATAGGCCTCTGGAATTAGTAACAGATGCTTTGTAAGCTGTGCTTGATTGACCACTGCTTTGTTAAACACGCTATAATAGTGCAGTTTAACTGCCGGGCGAACATTTAGAAGTTTGCTTAACATCACATCCTCAGAACCTGCAATAGATGGAGCTACGATTTCCAAATCCTGTGCTGCCAAGTCTTGTAAAGATAGTTGCTTTTTCTTGGCTAAGGGATGACTTGCTGGCAAAGCTACTCGAAGAGGCGAAGGAACAATGGATATGAAAGAGAATTAGTGTTCACTCAGTGGCTCTTTCGCATAAGTCATTTCTAAAATGTCTACTTCAGCAGGTATTTGCTGATAATCATTTATCTCTCTGAAAGATATTTGTGCTTTAGGATGGTTCTTCTGAAATTGTGGAATTAGGCGACCACTTAAGGTTTGTCCATTTAAATACCCAGATGCAAAAACAATTTTTTGCTGATATTTTCCTAATGCCTTCTCAGCCTGTTGGCAATCAAAAATTATCTGTCTGCTCCACTGAATAAATTCAATTCCTGCTGCTGGAGTAAGTGTTACACCATGGGTATTCCTAACAAATAGCTGGACATTTAACCGCTTTTCCAATAGATTCATTTGCTGAACGACAGCTGGTGTAGATATATATAATTTTTTGCTGCTTTACTAAAGCTTCCAGCTGCTGCAACTGCTAGAAATGTATCAAGTTCAGAATTGTACATATTTTTCTCCTTCTGCCTTTAAGTTTAACCTTAATACAGCATAACATCAATCAAGAAAGCGGTACGATAATACGTGCTATGATATAAGCATAGTGATAAAAGTAACTTAGTTTTGTTGAAGGAGAACAAAATGAACTTTGATATCGTAGTAGTAGGAGCTGGTGCTTCTGGCATCAGTGCAGCATTAACTGCATCAGAATGCGGAGCAAAAGTAGCACTATTGGAAAAAGGCGACAAATTTGGCGGTGCAGGGATGTTTGGTGCCCAGGGACTATTTGCGGTTGAAAGCAGGGCTCAAAAAGAAGCTGGAGTGAAGTACAGCCTAAAAGATGCCTATGAGGAAATCATCAATTATACTCACCATTCATCTAATGCGTTAATGGTTAAGGCCATTCTTGAAGAATCAGCAGCCACAATCGATTGGATGGCTGAATCAGGTTTGGAGACTGAATTAGTGACCAACACTCAAGAAGTCCACCAGGAGCATCCCAGAACCTATCACCAATTTATCGATAAGTTTAACGGATTTAAGCGGGTAATGAACAATTTTTTAGAAAACGGCGGAGTCCTTATGACCGAAACTTCAGCCGAAAAAATTGTTCAAGAACAGGGTAAAGTAACTGCCGTTAAAGCAAACAGAAAAGGCGAAGAAATCACCTTGGAAACTAAAGCCGTAATCTTGGCTGATGGGGGATTTGTTGGCAATAAGGACGAAATCAAGCGTACTTTAGCAATTGATCCAGATGACCTGTACTCAATGGGTGAACGGAAAGCTACCGGTGATGGCCTGCAGATGCTCAAAGAAGCTGGTGGCGTTAGCGATTACAAGAGAATTTTTGAAAACCATGCGGCAACTGTCTACTCAAAGACGGATCCAAAGTGGCACAACGCAAGTCTTTTTGACTTGACCAACATCCCACTCTTATGGGTTAACCGGGAAGGCAAGCGATTTACTAATGAAGACGTAGTATATGATTTCGCATTATGGGGTGATTCAGTCTACCAGATCGGTGGATACTACTACTTCCTTTTTGACCAAGCAACTGTCGATTATCTACGTCAGCAAGCTTTGGACTGGACAAGTTCATTTGAAAGAACCTTCCGCTTGTTAGATAAAAAGCTAATGACTTATCAAGTTGGTCCATATCCGCAACTAGATCAAGATTTAAATGAGGGTATCAGCCAAGGTGCTGTCTTCAAGGCAGATAACATTCAAAAATTAGCAGAGAAGATTACGGTTGATCCAGCAAATCTTACTGCAACAGTTAACCGATACAATGAACTGGTGGTAGAAGGTAAAGACATGGATCTTTACAAAGATGACCGTTTCATGACTTTGTCGGTCAAAGAGGGACCTTTCTATGCAGTTCGTGCTAATTCAACTACCCTGGGGACTGTCGGTGGTGCATTAGTCAATGAGCATTTTGAGGCTCTAAATGTGAAGAGACAAGTAATTGATGGTATTTATGCTGTCGGAAATGACGCATCAAGCCTTTATGACTCATCTTATCCAACAATTGAAGGCTTAAGCAACGCTTTTGCATGGAATTCAGGTCGAATTGCTGGCCGGTATGCTAGTGCTTATGCAGCAAAGAACTAAATAGAACAGAAAAAGCTCTACCTAAAGTTTGGGTAGAGCTTTCGTTGTCAGTAAAATGCCATTATTCTTCTAAGCCATTACTGAATGTATCAAAAATCATTTGATCCTTGATAATCTTGCCGTCATCAGTTAAAGACCATGGGGATCCTGGTTGATGCGTCTTTTGGCTTAATCCAGATGCACTGTAATTAATGTAGGCTTCATTAACTAATCTCAACAGGTGAGAGATATCGCCATCTTTAGAAACCAAGTTGTAATCATCAAATGCTTCTTTACTAGGCTTTCCAGTATCTAATACCGTAAGTCCCTTGAATTTGCTATGTACTTCTGTAATTACTGGATCGTACTGTGAGTGCACTATTGAAGACGTAAATAATTTGTTGTGTGTTTTCACCAGATAGCGCCCATATGCGAAATACAGTAGCTTGATTAGCTTCATTTGTGTCAATGGTTCAACGTTTTCATCTAAGGCCAAAATAATTTTCAACTCTTAGCCAATTTGCCAATTGTACAGCAATGAACTTTGGCTGGAAGCTTTGGTCAATAACAACAATATCTTCTTGCTGAAGATAAGCTTTGACCTTAGCAACAAGATCATTTGAGTAATTATTAGCGTCATCCATTATGTATTGACGCAACAATTCATCGTCATTGATCAAGTACTTTAACATTTTATTGTTTGCCGGTGTAGGAAATGCACCAGCTTCGTACAGAGCAATAGTATTTGGACTAAGTCCTGTCAGTTCTGCCAAATTGCGTTGAGAAAGACCAACTTTAGCCCGATATTTTTTGAGTTCTGTTGGCGAGAGGAGACCCATGTCGTCGCGATACGCTTGTCTAGCCATTTCAGATGCACGTTCATCAAGTTCAGCATCGTAAATTGGCTGATTTGTTTCATCACCAAAGCGAGCTGGCGCTGTGTTTTACAAAGTCTTCTGACGATAATTGCTCAATGATTGTCTTTGCTAACATGCGAGAAACAGGTACTTTCATTGTGCCTTGTCTTGCAACCAATTTAAATCTATCATGACTGACCAGAAATTTTAACTTTGTCAGTGCTTCAGCGACTTCCATAGGCTCCAATATCTCCTTGATTTTTGTACCACTATTATACCATCTCTTCAAAAAATTCTGCTACTAATTAGTAGCGCAACTAAAAACTAACCTCCAAAAGCGGGGGAGGGAACAGGGGAGGCGGTACCTTGCTACCTCCTTTTTGCTACGGCTTCTGTACAAACCGGCGAGTTTGTGCTTACATTAAATTATTGTAAAAGGAAGTCGATATCGTACATGAAGCATGTTTTTCTAATCAAGTCCAGATCAGTCCAGAAGTGATTCCCTCATCAAAAACATCGAAAGGGTGATGGAGGGGAGAGATTGCGAGATCTACTTTAGTGAGTACAAGGACCATGTAAAAGAAATCGTTAAAAATTACCCTGAAAAAACACGATTCTATTCAGTTGGTGGAGACGGCTTTTTCAACCAAGTCATCCAAAATATCGTGCACATAAACCATGGAGTTGTTTGCCTGCCATTTGGGACGGGCAATGACTTTTCCCGCGCGAGATGAGTCCTAAAGCCATCTTCAAAGCGACTTTAGACCAGCCAGCGATTCCAATTGACACAATTTTAGTCAATGATGAGCGCTACTGCGTCAACGTTGGCTGCTTTGGACTTGACGCCTTGATTGCTTGACGTTAAAACGCTTAAAAGCGCGGCATATGTAGCTTCAATTCTGCGCAATATCAGCCGCTATAAGTTTTCCAAAGTAAAGGTCATAGGCCACAAAATGGCCTGCTTTTTAACGACCAGGTCACGCTCTGTGCCTTCTGCAATGGACGTTTTATTCGCGCTATATTATATCTATAAAATTCTGCGAAAGGACCTGATTAGCTGCAAAGATGTAGTAGTGAAACAGGTGAAAGATGCGTAATAACAACGCCTGCTGCAATGAATCTTGATGGTGAAAAGAAGGAAGCAGCGAAGTATCATCTGGTCGTTCAGCCAAAATCCTTGAACTTGGTCATTTGACAGACTAGCTAGTGAATCTGCCGCAATACGGACAGATTTTTTGTAGCTTGATAAAACAGAAATCAAAAGCAGAAAAGAAAAATAAAAAATGCTCAAAAACTCAGTAAAATTCACACGTAAGAAATCAGTGGTAAAACTTTGAGCTTCAAGCATGGGTAGCTTAGTACTTTTTCTGCACATCAGGCCATTCTTCAGCAAGAACCGCGTACTCATTACTATCATGATAGCCGTCTCTAAGGATCAACCGGCCCTTATGGCAGCCTTCAAACCGCATCCCTAGCCGTTTAGCCACATTATTGCTTGGCAGATTGTCTACAGCGCACTGCAGCATAATTCTGTGTAGGCCATATTCCTCAAAGGCGATATCGATGATAGCCCGGGTAGCCAGCGTCATGATTCCGCGTCCGCGGAATTCTTTGCCTAAAAAGTAGCCGATATCTGCCTCAGAATACATAGCATCAATTGAATTCAAGCTGACTTTACCAGCTAAACGGCCATGATACCAAATGTGCAGGTCTAAGGCTTTGCCTTCAGCAAACCTGACTAAATTACGCCTAATAGCGTCAGTCTCAGCTTGCACGTCATGAACGTGGTCAACCCAAGGCAAGTAGTAGGATAAATTGTCCCGGTTTCTGTCAATTAAGTCATACAGAGCTTCACCGTCAGTCAATCTTGGCACGGCTAACTCTAATTCATCGTTGATCTTGTAGCTAAACATAAACTCATCTCCAATCCAAAAGCAATTGCGAAAAAGATTATCTGAATTATATCAGAGCGCAGTATTAAATACTACCGGGCAAAATGATCATCTGGGGCTAAGCAGCGTCCTCTCTCGCGATTTTTGCTACTCAACTTTACATAATATGTATTATTCGAACTATTAGCTAAAAGCGAAATCGTATCCCCTCCAAACAAAAAAGCACTGCATTTGCAGTGCTCAAGTTTAAGATGTTTGCGGTTCAGTTGTTTGGTTCTGCGTGTTTGGATCACTAGTGACTTCACCCTTAGGCGTTTCAACGTTGCTTGCCTTAACGTACAAGCCAACGCCGATTGCCCAGTACTTGCTGCCATTGATCTTTTTCTTGCCGCCATAGACAGTTACCGAGCCATTCTTCAGCAAGACACCGGAATTCTTTATCCGCTTGCCACTGCTGGAATAAATGTAGCTGTTATGGTTCAACTGGCAATCCAAACCAACCACGTTCATATATGCCACGTACTTGTTTTGGCCGATCATGATATATGGCTTGTCACCAACATAATTAATCATGCTGTAGCAGCCAACGGCTTTACCGGCCAGGATCTTCTTGTCCTTGGTCCGTTTGCCTTTTTCGTCATACACGTAAGTGTTGACCATGGCATTCTTGTAAAACGGTTTGTCAGCATCTGAAGCTGTCGTAGTCTTTGCCTTTGGCGCCAAAATAATGGCAAAAGCCAGTACAAATATTAACTTAACCAAAGCTGAGTTAACCGCTTTAGCGGAAGTGATCAAGAAGCACCATTTGCTGGCAATCTGTGATGAAATCTACAGCGAACTGACTTATGACCAAGAACATTTCTCTTTGGCTACTTTACTGCCAGGACAGGTAATCTTGATCAGCGGCTTGTCTAAGTCACACGCCATGACTGGCTACCGGCTAGGTTATATCGCGGCTCCGGCAAGTTTACTGCCAAATGTGGCCAAGGCCCACAGCTTCATGGTGACCTGCGTGGACAATATCGCCCAAGACGCGGCAATTGAGGCTTTGACCAAGGGGCTTGACGATCCAAAGGAATTTAAGGCAGCCTACCAGCGCCGGCGGGACTTCATGGTTGATAATCTGACCAAGCTGGGCTTTGAAATGGCTGTGCCGCAAGGGGCGTTTTACATTTTTGCCAAGATTCCGGAGAAGTTTGGCAGCGGTGACTTTGCTTTCGCCAAAGACGTGGCTAAGAAGGCCAGAGTTGGTCTGATTCCAGGCAGCGTATTTGGTAAAGGATCTGCTGGCTATGTCCGCTTCTCTTACGCGGAAGCTGATGACAAGCTGACAGAAGTAGTCAAGCGGCTTGGTGAATACGTTGCTCAGCTCTAATATTTTTCCTAAGACAGCAGTTTGCTGTCTTTTTTTATGCCGAATGATATAATTTAGAAAGAATCTAAAGAATTAGTATGACAAGGAGCATATAAATAATGTCTGAATACCCACAACTTAACCTTGACCAAGCCAAGGGCCCAAAGGCAACTATCAAGACCAACCACGGCGACATCGTCATTCAGCTTTTCCCAGAAGAAGCACCAATGACTGTTGAAAACTTCGTCCGCCTGGCACAAAAGGGCTACTACGACGGCGTAACTTTCCACCGGGTGATCAGCGACTTCATGATCCAAGGCGGGGACCCGGAAGGTACTGGTGCCGGCGGTCAAAGCATCTGGGGCCACAACTTTGAAGATGAATTCTCAAACGAACTCTTCAACCTGCGCGGGGCTTTGTCAATGGCTAATGCTGGTCCAAACACCAACGGCTCACAATTCTTCATCGTGCAAAACAAGAACATGCCAAAGCGCTTCATTCAACAATTGCGCGATGCCCAATATCCAGAAGATGTTGTCAAGGCTTACAAGCAAGGTGGTACGCCATGGCTTGACCACAGACACACTGTTTTTGGCCATGTAACTGAAGGCATGGATGTCGTTGACGAAATTGCCAAGGTAGCCAAGGATGGCAACGACAAGCCACTAGAAGACGTGGTAATCACGACTGTTGAGATTGCTGACTAAGAGTAAGTAAGAAAGGTTTGCGTGAACAAGAGTGAAGTTAAAACGGGTTTGGCTCGTTAAGTTAATATTTGTACTGGCTTTTGCCATTATTTTGGCGCCAAAGGCAAAGACTACGACAGCTTCAGATGCTGACAAACCGTTTTACAAGAATGCCATGGTCAACACTTACGTGTATGACGAAAAAGGCAAACGGACCAAGGACAAGAAGATCCTGGCCGGTAAAGCCGTTGGCTGCTACAGCATGATTAATTATGTTGGTGACAAGCCATATATCATGATCGGCCAAAACAAGTACGTGGCATATATGAACGTGGTTGGTTTGGATTGCCAGTTGAACCATAACAGCTACATTTATTCCAGCAGTGGCAAGCGGATAAAGAATTCCGGTGTCTTGCTGAAGAATGGCTCGGTAACTGTCTATGGCGGCAAGAAAAAGATCAATGGCAGCAAGTACTGGGCAATCGGCGTTGGCTTGTACGTTAAGGCAAGCAACGTTGAAACGCCTAAGGGTGAAGTCACTAGTGATCCAAACACGCAGAACCAAACAACTGAACCGCAAACATCTTAAACTTGAGCACTGCAAATGCAGTGCTTTTTTGTTTGGAGGGGATACGATTTCGCTTTTAGCTAATAGTTCGAATAATACATATTATGTAAAGTTGAGTAGCAAAAATCGCGAGAGAGGACGCTGCTTAGCCCCAGATGATCATTTTGCCCGGTAGTATTTAATACTGCGCTCTGATATAATTCAGATAATCTTTTTCGCAATTGCTTTTGGATTGGAGATGAGTTTATGTTTAGCTACAAGATCAACGATGAATTAGAGTTAGCCGTGCCAAGATTGACTGACGGTGAAGCTCTGTATGACTTAATTGACAGAAACCGGGACAATTTATCCTACTACTTGCCTTGGGTTGACCACGTTCATGACGTGCAAGCTGAGACTGACGCTATTAGGCGTAATTTAGTCAGGTTTGCTGAAGGCAAAGCCTTAGACCTGCACATTTGGTATCATGGCCGTTTAGCTGGTAAAGTCAGCTTGAATTCAATTGATGCTATGTATTCTGAGGCAGATATCGGCTACTTTTTAGGCAAAGAATTCCGCGGACGCGGAATCATGACGCTGGCTACCCGGGCTATCATCGATATCGCCTTTGAGGAATATGGCCTACACAGAATTATGCTGCAGTGCGCTGTAGACAATCTGCCAAGCAATAATGTGGCTAAACGGCTAGGGATGCGGTTTGAAGGCTGCCATAAGGGCCGGTTGATCCTTAGAGACGGCTATCATGATAGTAATGAGTACGCGGTTCTTGCTGAAGAATGGCCTGATGTGCAGAAAAAGTACTAAGCTACCCATGCTTGAAGCTCAAAGTTTTACCACTGATTTCTTACGTGTGAATTTTACTGAGTTTTTGAGCATTTTTTATTTTTCTTTTCTGCTTTTGATTTCTGTTTTATCAAGCTACAAAAAATCTGTCCGTATTGCGGCAGATTCACTAGCTAGTCTGTCAAATGACCAAGTTCAAGGATTTTGGCTGAACGACCAGATGATACTTCGCTGCTTCCTTCTTTTCACCATCAAGATTCATTGCAGCAGGCGTTGTTATTACGCATCTTTCACCTGTTTCACTACTACATCTTTGCAGCTAATCAGGTCCTTTCGCAGAATTTTATAGATATAATATAGCGCGAATAAAACGTCCATTGCAGAAGGCACAGAGCGTGACCTGGTCGTTAAAAAGCAGGCCATTTTGTGGCCTATGACCTTTACTTTGGAAAACTTATAGCGGCTGATATTGCGCAGAATTGAAGCTACATATGCCGCGCTTTTAAGCGTTTTAACGTCAAGCAATCAAGGCGTCAAGTCCAAAGCAGCCAACGTTGACGCAGTAGCGCTCATCATTGACTAAAATTGTGTCAATTGGAATCGCTGGCTGGTCTAAAGTCGCTTTGAAGATGGCTTTAGGACTCATCTCGCGCGGGAAAAGTCATTGCCCGTCCCAAATGGCAGGCAAACAACTCCATGGTTTATGTGCACGATATTTTGGATGACTTGGTTGAAAAAGCCGTCTCCACCAACTGAATAGAATCGTGTTTTTTCAGGGTAATTTTTAACGATTTCTTTTACATGGTCCTTGTACTCACTAAAGTAGATCTCGCAATCTCTCCCCTCCATCACCCTTTCGATGTTTTTGATGAGGGAATCACTTCTGGACTGATCTGGACTTGATTAGAAAAACATGCTTCATGTACGATATCGACTTCCTTTTACAATAATTTAATGTAAGCACAAACTCGCCGGTTTGTACAGAAGCCGTAGCAAAAAGGAGGTAGCAAGGTACCGCCTCCCCTGTTCCCTCCCCCGCTTTTGGAGGTTAGTTTTTAGTTGCGCTACTAATTAGTAGCAGAATTTTTTGAAGAGATGGTATAATAGTGGTACAAAAATCAAGGAGATATTGGAGCCTATGGAAGTCGCTGAAGCACTGACAAAGTTAAAATTTCTGGTCAGTCATGATAGATTTAAATTGGTTGCAAGACAAGGCACAATGAAAGTACCTGTTTCTCGCATGTTAGCAAAGACAATCATTGAGCAATTATCGTCAGAAGACTTTGTAAAACACAGCGCCAGCTCGCTTTGGTGATGAAACAAATCAGCCAATTTACGATGCTGAACTTGATGAACGTGCATCTGAAATGGCTAGACAAGCGTATCGCGACGACATGGGTCTCCTCTCGCCAACAGAACTCAAAAAATATCGGGCTAAAGTTGGTCTTTCTCAACGCAATTTGGCAGAACTGACAGGACTTAGTCCAAATACTATTGCTCTGTACGAAGCTGGTGCATTTCCTACACCGGCAAACAATAAAATGTTAAAGTACTTGATCAATGACGATGAATTGTTGCGTCAATACATAATGGATGACGCTAATAATTACTCAAATGATCTTGTTGCTAAGGTCAAAGCTTATCTTCAGCAAGAAGATATTGTTGTTATTGACCAAAGCTTCCAGCCAAAGTTCATTGCTGTACAATTGGCAAATTGGCTAAGAGTTGAAAATTATTTTGGCCTTAGATGAAAACGTTGAACCATTGACACAAATGAAGCTAATCAAGCTACTGTATTTCGCATATGGGCGCTATCTGGTGAAAACACACAACAAATTATTTACGTCTTCAATAGTGCACTCACAGTACGATCCAGTAATTACAGAAGTACATAGCAAATTCAAGGGACTTACGGTATTAGATACTGGAAAGCCTAGTAAAGAAGCATTTGATGATTACAACTTGGTTTCTAAAGATGGCGATATCTCTCACCTGTTGAGATTAGTTAATGAAGCCTACATTAATTACAGTGCATCTGGATTAAGCCAAAAGACGCATCAACCAGGATCCCCATGGTCTTTAACTGATGACGGCAAGATTATCAAGGATCAAATGATTTTTGATACATTCAGTAATGGCTTAGAAGAATAATGGCATTTTACTGACAACGAAAGCTCTACCCAAACTTTAGGTAGAGCTTTTTCTGTTCTATTTAGTTCTTTGCTGCATAAGCACTAGCATACCGGCCAGCAATTCGACCTGAATTCCATGCAAAAGCGTTGCTTAAGCCTTCAATTGTTGGATAAGATGAGTCATAAAGGCTTGATGCGTCATTTCCGACAGCATAAATACCATCAATTACTTGTCTCTTCACATTTAGAGCCTCAAAATGCTCATTGACTAATGCACCACCGACAGTCCCCAGGGTAGTTGAATTAGCACGAACTGCATAGAAAGGTCCCTCTTTGACCGACAAAGTCATGAAACGGTCATCTTTGTAAAGATCCATGTCTTTACCTTCTACCACCAGTTCATTGTATCGGTTAACTGTTGCAGTAAGATTTGCTGGATCAACCGTAATCTTCTCTGCTAATTTTTGAATGTTATCTGCCTTGAAGACAGCACCTTGGCTGATACCCTCATTTAAATCTTGATCTAGTTGCGGATATGGACCAACTTGATAAGTCATTAGCTTTTTATCTAACAAGCGGAAGGTTCTTTCAAATGAACTTGTCCAGTCCAAAGCTTGCTGACGTAGATAATCGACAGTTGCTTGGTCAAAAAGGAAGTAGTAGTATCCACCGATCTGGTAGACTGAATCACCCCATAATGCGAAATCATATACTACGTCTTCATTAGTAAATCGCTTGCCTTCCCGGTTAACCCATAAGAGTGGGATGTTGGTCAAGTCAAAAAGACTTGCGTTGTGCCACTTTGGATCCGTCTTTGAGTAGACAGTTGCCGCATGGTTTTCAAAAATTCTCTTGTAATCGCTAACGCCACCAGCTTCTTTGAGCATCTGCAGGCCATCACCGGTAGCTTTCCGTTCACCCATTGAGTACAGGTCATCTGGATCAATTGCTAAAGTACGCTTGATTTCGTCCTTATTGCCAACAAATCCCCCATCAGCCAAGATTACGGCTTTAGTTTCCAAGGTGATTTCTTCGCCTTTTCTGTTTGCTTTAACGGCAGTTACTTTACCCTGTTCTTGAACAATTTTTTCGGCTGAAGTTTCGGTCATAAGGACTCCGCCGTTTTCTAAAAAATTGTTCATTACCCGCTTAAATCCGTTAAACTTATCGATAAATTGGTGATAGGTTCTGGGATGCTCCTGGTGGACTTCTTGAGTGTTGGTCACTAATTCAGTCTCCAAACCTGATTCAGCCATCCAATCGATTGTGGCTGCTGATTCTTCAAGAATGGCCTTAACCATTAACGCATTAGATGAATGGTGAGTATAATTGATGATTTCCTCATAGGCATCTTTTAGGCTGTACTTCACTCCAGCTTCTTTTTGAGCCCTGCTTTCAACCGCAAATAGTCCCTGGGCACCAAACATCCCTGCACCGCCAAATTTGTCGCCTTTTTCCAATAGTGCTACTTTTGCTCCGCATTCTGATGCAGTTAATGCTGCACTGATGCCAGAAGCACCAGCTCCTACTACTACGATATCAAAGTTCATTTTGTTCTCCTTCAACAAAACTAAGTTACTTTTATCACTATGCTTATATCATAGCACGTATTATCGTACCGCTTTCTTGATTGATGTTATGCTGTATTAAGGTTAAACTTAAAGGCAGAAGGAGAAAAATATGTACAATTCTGAACTTGATACATTTCTAGCAGTTGCAGCAGCTGGAAGCTTTAGTAAAGCAGCAAAAAATTATATATATCTACACCAGCTGTCGTTCAGCAAATGAATCTATTGGAAAAGCGGTTAAATGTCCAGCTATTTGTTAGGAATACCCATGGTGTAACACTTACTCCAGCAGCAGGAATTGAATTTATTCAGTGGAGCAGACAGATAATTTTTGATTGCCAACAGGCTGAGAAGGCATTAGGAAAATATCAGCAAAAAATTGTTTTTGCATCTGGGTATTTAAATGGACAAACCTTAAGTGGTCGCCTAATTCCACAATTTCAGAAGAACCATCCTAAAGCACAAATATCTTTCAGAGAGATAAATGATTATCAGCAAATACCTGCTGAAGTAGACATTTTAGAAATGACTTATGCGAAAGAGCCACTGAGTGAACACTAATTCTCTTTCATATCCATTGTTCCTTCGCCTCTTCGAGTAGCTTTGCCAGCAAGTCATCCCTTAGCCAAGAAAAAGCAACTATCTTTACAAGACTTGGCAGCACAGGATTTGGAAATCGTAGCTCCATCTATTGCAGGTTCTGAGGATGTGATGTTAAGCAAACTTCTAAATGTTCGCCCGGCAGTTAAACTGCACTATTATAGCGTGTTTAACAAAGCAGTGGTCAATCAAGCACAGCTTACAAAGCATCTGTTACTAATTCCAGAGGCCTATTCGGAATTGTGCCATCCATATATTGTTAAACCGGTCTCTTAGTCCTTTGCAACTAGCTATGGCTTCTACTGTCGTAAACCAGTCCCCAAATTAGTACAGGAATTTATTGATCTCGCCCAAAAAAGTTAGTAGATTTTTTCACCCTTGGCATATGCTTCTTTTGCCTCGGCTAACGTCATTTTGTTTGGTCCACCATCGATATTTCATGAAACTGAAAGCAAAATAAGCACTCAGCAAAAGCAATCGTACTTTACATAACTAAAATTATGCTTAGTGCAACTAGCATCCCCCTCCCCCATCATTCCTCCCAGAAAGGTGCTATAGTAAACGTGTAAATCTTAGAAATACACTACTCATAGGAGGAAATTACCATGCGCAAAGCAGTACCGATGTTGGAGATTAACAAGACTGACTCTGAACGCCGGGAACTGCTCCGGCCATTCGAAATCACCCCTACTGACGGCTTTGTCTATGACTTACGGCAAACGCCTATTTTCCAAAAAGCCTTCACCTTCTAAATCCATGCAAAAAGCGACCGAAACTATATCATGTTTCGATCGCTTTTTTGTTAAAAAATCTATTAGTCTTGCTTAGTCTCTTCTAAAACGATTCCCTGGTAAAGCTTGACAGTAAGTAAGTAGTAAACCAGGTACAAGAGGAAGAATGCTAAGAATGGAATCCAAATCTTGTAGTAGGGGTCTGGCAGAAGAATCGTAAAGATCTTCAAGCCAAAGAGTACGTCCAGGCTGCCAAGTACCGCCGGTGCCACAAACAAGATGGCAATTTCTTTTCTAATCGCTGCCTTCAAGACGCTGTTTCTAGCCCCAAGCTTGTAGAGCATCTTGTACCGCAATTTGTCACTGGCTGCGGCTGACAGGATCTTAAACATCAGAGTTGAAGCCAGCATCATTAAGAAGGACAAACCAAGGAAAAGGCCCATAAATTCAAAGCCTGAGCACATTGCCGCGATTTGCTGGTAAAGAAACGGCTTGGTGAATTCCAGGTAGCCGTATGCCATTGAGTCCTTGCTGAACAGCTGCATTTCTTGCTCAGTAAGCTTCAGCAATTTCTTGTTGTTCTTGGCAAAATCCTTAACCTTGTAAAAAGTGATGACCTTAGTCGTCAGCTTCTTTTTGGCAAAAGCTGCATCTGACAAGGCCACAAAGCCCTTGCTGGAATCTTCTGGGAAAAGGCTGGCAGCTTGAGCAGAATTTCTGACCGTAGCTGAAGTCTGCTTACCAGTTAAGGTCTTGGAAGTAACCTCAACCGTGTGGTAAATCCGCCCCTCCTTGTCAATCGCCTTCTTCTTGTCTGAAGATGCCGCGTTATACATTTGGATCTTGAGCGGCGTCTGGTCAATTTCACTTTTCTTGACATAGAGGATGCCATTTTTCTCATCAGCCTTGTAGCTGTAAGTAACTTCCTCCTCTGTACCGATTTTTTCAACCTTGTCAGCCAGCTTCTTCTGCTTGCCAACTAAGACAATATCGTAGTACATAACGTCAGTCATGGCATTCTTCAAGTTGTTGAAGTTAATGCCGACCGTAATAGCGCCAAGGGCCAAGGCCAGCATAATTGAGATGGCTGACAGGATTCTGGTATAGCCATGCAGGCGGAACTTTAACTGGCCCAGAGTGTAAGGCCGCATCCCTTTGTAGAGGAAGCTGTGTCTCTTCCGCAAAAAGTCGATGACCGCTACAAAGAAGGCGTCAAAGATTAAAAAGCTACCCAAAACGATGGTTACTAAAGCAATTGGAATTGCCTTAAGCTGCAAAGTCGCCACATGCCACATTGCCCAGTAGCCGGTAGCCAAAAGCAGTACCCCCGCGATAGCCTGGATAGTCCGTAAGACCGGCCGGCTCTTCAGCTTGCTTGGTTTCTGGTCTTCTTTTAGAAGATTGATCAGCGTAGTCTTGGTCAGCTTGACCGCGTTCCAGGAAGCGGCCAGGAAGAACAAGGCGACAAAGAAAAGCAAGGTCCAGAGAACCGCTGGCAGGTAGAGCGGATTAAAGTGAGCCAGAGTCAGCCCCAGCTGCTTGACCATCAAGGATGAGACCAGTTCAGTCAGCCCCACGCCCAAGATAATCCCAATCCCGGTTGCCAGAAGGCCAGTTACCAGGGTCTCAGCGAAGATCAGCTGGCCGATCTTGCCGCTTTTTGCCCCCAGCATCATGTACATGCCGTAGTCCCGCTTTCTCATGCTCAAGAGGAAGCTGTTGGCGTATGCCAAGTAGACCAGGGTTAAAATGGCCAAGAGGACGATCCCGAAGGAAAAAATAAACTTAGTTGCTCCCATGGTCAGCCGTCCCGCTACACTGGACTTTAAGAAAGACTGGTTAGCGGCCAGAGTCAAGAACATGTAGAAGGTCATGCTGGCGGCGCTAAGGCCGGAAAACAGTACCAGGTAGTCTTTTAGCCGGCTTTTCAGCCCGGTCATTGACAATTTAAAAATCATGTTAATCCCTTTCTTTACTCAACTAGTCGGTATTTTCGCTGAGCTGGCTGATCAGCTTCTTGTAAAAGTCCTGCCGCTTCAAGTCCCCGCGCTTGATCTCTTCATCAATCAAGCCATCCCTGATAAAGAGAATCCGGTCAGCAAATGATGCAGAAAACGGATCGTGAGTGACCATCAAGATTGAAACCTGGTCTTTCTCATTAAGCAGCTCCATCGTGTCCAGCAAGGCCCTGGAAGACTTAGAATCCAGGGCCCCTGTTGGTTCATCGGCCATCAAGATTGCCGGTTCATGAACCAAGGCTCTGGCAGCAGCAACTCTTTGCTTCTGCCCGCCGGAAATGGCTGCTGGGTACTTTTCCAAGACTTCGCTGATGTTGAGCTTAGCGGCGATCTTATCAACCTTAGAATCGATTTCTGAGCTCTTGACCCCTTGCAAAGACAAAGGGAGAGCAATGTTTTCCCTAGCGGTCAGGTTGTCCAAGAGGTTGAAGTCCTGGAAGATAAAGCCAATTTCTTTAGCCCGGAAGTCGGCCATCTGGTTCTTCTTCAGCTTGGCGACGTTTTTGCCGTTAATCGTAACCTCGCCGCTGCTTGGCTTGTCCAAGGTCGACATGATGTTCAAAAGAGTGGTCTTACCAGAACCGGAAGTCCCCATAATGGCGACGAATTCGCCCTTGGCTACGCTGAGCGAGACGCCCTTTAAGGCCTGGAACTGCTTCTCCCCTTTTTTACCGTAAGTCTTTGTAACGTTGTTGACAGTCATCACTTTTTCCATAGTTACCCCCTAAATCGTATTGGTGTATTACCGTTGCAATACACTAAATAATACTGGAGTCTTTAAGAATCGTCAATAGGAATTTTAGCGATTTGCAAAAAAGTTGTAACAAAAAACAGGCGAAGCTCTCCTTTAGTGGAAAAATTTCGTCTGTTTCAGGATTAGACGAAAAAAGCCACTGGAGCTGTTGCTTGCTTCAGTGGCTGTCTGGTCTTCAGTTTTCTTGGCTTTTCGGGTCGATAAACAGGATTCTGACCTTGCAGCGGATGATTTAATTTTCCCAGGTCATCCCCTTCCAGGGGGCAGACCGTAATCTGTTCGTAAGGAGGATTTAACTGCAGAGACAAGAGCTGCCCTACTTCGACTTCTTCAAGGTGCTTTTGCCGGCTTTTTCCGACAATATCTTCACCGTCTGTTTCTAAGAGCCAGCTTTCAATCTGCGGGATATCGGCTAAAACGGGTTCAGTCATTTTTTGATAGATGGCCAAAACCAGCTGGATGACTTGCCTTTTTTCATCGATGGACTTGATAAAGGCAAAAGGCTATTGCGCAAGGTTAGCTAGAGCAGCCCTAACCAGGTTCGCGATGCGCGGGTTAGGCAAATAGCCCAGGGTCTGCCAGTACATTGTCGCCATCATCTTTAAAGCTGACTTCCATTTCTGGTTGAAGCAGGTACCACTCCGGCGTGCACTTACTGCCTCTTAACTCAGCTCCTGCTTCATCTTTAGTACCTTATCTTCGATTTCTTTAATCACCTGCATAAAGGTCTCATCATCTTGTCCAGTTGGATCTTCTAATCCCCAATCTACCCGCTTTTTTGCAGGCAAATAAGGGCAGCGGACTCCGCAGCCCATGGTGATTACGTAATCAACCGCCGGCAGGTCAACGAGGGTCTTTGGTTTTTGCCCGTTGGCCAGCATATCGATGCCATAATGCTCTTTGATCAGCCGAACCGCGTCGGGGTTAACCTGATCTTTTAGATCCGTGCCGGCTGAATAGGATTCAAAGACATCCCCGGCCAGCTTTTTACCCAAGGCTTCGGCGATTTGACTCCGGCAGGAATTATGGGTGCAGATAAAGGCTACTTTTGCTTTGGTCATGATCTTCTCCTGTTATTTCTTCTCAAGCAGGCCCAGGCCGCTGATGGTAAGGTCACTGGAATCATTGACGAAAGAGAAAGTTGGGATGCTATCCATGCCTTCATCTAAGGCTTCCATCAAAATCATGGCAAAAAATTCAAACCAGCTGTCCGTTGGCACGTCATTCCTATCATCTTGTGGAGTCAGCCAGAATTTTGTTGCTGCTTCTCTCGTTTTAACATTAAGCGCCAGGCCTATTGCGGTATTATAGAAGTCAAAAGTGGCTTTGAAAGAATGAACATCTGTATCATTTATCTTAATGCCTAATTCCTCGGGGATCTCTGTTTCTGTGATCATCATTCTGCCCGTGATTTTACCGTATTTTTCTTCAAAATCTTGAATTGAGGCATGTTTCTTAAGTTCGGATTCTACCTCGTCAAACAAAGCTTCGTTTTCTAAACATACCAATTCCTTCCTAGCAAACTGTAACCGATTGCTTTGGTCTCTATTATAAACTAAAAGCAACATCCCCTGCACTAAATACAGATGAATGCTGCTAATGTAACTTAGTTATCTTTTCTAAAAATCGTTCTAAACAAGAATCTTACCGCAGGACCGCAGAGGAAGATTTGCCAGCCAATCGCCATTGGAAAGTTGATGACGGCAGTCTGCAGCCAGGTCCCGATGAAGCCAGCTGCTTGGAAGTTCTTGAAGAGCGCGGTTGCGATCAAGCTCATCGTTGGGCACATAAGGCAGATGGTGATTGAGCACCGGATCAAGATGATCAGCAAGATTGGCGTTTCAGGTGTAATCAGCCGCTGAGTCAAGTAAACGACAGGCTTTTCAAAGACGAACATCTCCAGGATGATTGCAACCGGCCACATGATCATCATTTCGCGGAAGGCGTCCAGTAAGACAGCATCCCTCATCCCCGCCGATGGTAAGAGCGATGTTGTAGCAGATCATGGCGTAGACCGTAACAAAGGCCATCATAACAGTAAAGACAAAATTTTCCAGTTTTGATTCTAGCATTAAAAAACTCCCTTCATGATTCACGTGTTGTTCGTTAATCATGAAGGGAGTGTGCGTTTCCAATCATAACCGTATTCAAATACAGTTAGTTATTTTAAAATAGAAAAAAATGATTGTGTAAGGACTTTTGATAAGATTTTCTGAAAAAGCGTTTGTATTTTTCAAGGGCCATATTAAGCAAAATCCTTTCCATATCTAAAATTACGTTAACTATTCTCTATATTTCATTTTGTTTCCGGGTCATTACCAAGACCGCCAGCAAGTAGAAAATAGCCCCAGTAACCAGCAGGACTGCTACTGATACCTATGCAGGCGCGATGTGGCCGTTATAGACGAAGACAATCCCAAACATTTCCCTGATCTCTTTTAGTACACTCGCCGGCTGATTAGCAAAGTTTGCTTTAGTTGCCGGCTTCATCAAAAGCTGCCGGTAAAGTACCGCTGAATGAGCACATGGGAAGTACTTTACCAGCCATTGAACGTTGTCTGGCAAGCTGCCGATTGGAATGTATGCCCCAACCAAAAAGCCGATCAAGGTCCCAACTATCGTGCTTGCAGCTGAGTAGGAGCTGTTGGTCTTCAAGAAAGAAATTATGTAAAGAAGCAATCGCCGATGATGCAAAGGATGATAAGACAATTACAGCAAATAGCTTTAGTAAAGTCTCTATATCCAGTACTGCCCCGCCGGCCAGACCAAGGTAGATTTCCCCAAAAATTAAGGTAAAAATGGACATGATGATGCTTGATGATGAAGCCGGTCACGATATAGCCGCGCGCGACCTGTCTTCTGCTGACCGGAGATGAGTAAAAGTCCTTGATCGCCTTATTCTCCCGGTCGTTGATCATTACCCCATATGCTCCTAAACTCGTAGTGATCGACGCCGAAGCCAGCATCACTGCTAGCATCCAAGCCCGCATCAAGCGATTGGGATGCGGCAGAAACTTTAGCCCGCTATTCACCGAATCACCAATGAATAAGATGTAGAGGGCAAAAATGATAATGACACTCAGCATTGAGAAGAATACTGAAGCTTTGTCTCTAATGCAAAGGAGATGTCATTGACGACTTTCAAGTCCCCATAGAACTTAGATAGGTTTCTAACCTCAATAGCATTCTTCACTATTTTGTAACCCTTTTCTGTTTATCTTTCTAAGTTAATTCTACATCTTTTAATATTTTCTTGGGTTAAATCTAGGTAAGATGCAAAAATAGGCGGCTAAGTTGCAAAAAGCTGGAATAAGAAAAGGCCACGCTGGTTAGGCGTGACCCTTTAGGTGAAATTCACGCTTCGATTCGTCCAGACATTTTTATTCCAAGCATAACCAAGTACACGGTGGAAGAGCTGACGACAATCATTAACGATGACCAGAAAGCAGTTTTTGTCGCGGTTGACGAAGATGATCAAGTGCTCGGCTATGCATTCACTCAGCTGCAAGAGCAGCCTTTTTCAACCAATATGGTTCAGTTTAAGTCACTCTTTATCGATGACCTCTGTATTGACAGCACCCAGCGCTCCCAAGGCGTGGGCCGGGCCCTGCTTGATTATGTCAAAGCTGAAGCCAAAAGACTGGGATACTATGAAGTGACGCTTAATGTATGGGAGGGCAATGATTCTGCCATAAACTTCTATAAGAAGAATGGCTTGAAGGTCAAAGAAACAAATATGGAATTTATTTTGTAAGCAAAAACCGATCTCAAATTCTGAGACCGGTTTTTAATTCCAGCAAATCACTTTACATAACAAAGTTTATGTAGATATGTTTACTCAAAAATGTATAGTGCTGATAAAGCGACTCTGTTGCTCTTAAAAAGTTAAAGATGATCACCTGCACATTTAAGCGCAATAGAACTCGCTTCTTAAAAAGATGTATTTTATCCCAAACGGAAAGACTTCAAATCTTCTTCCATGCTTTCGTCTTCCAAGCCAATATATCTCAGAGTAGTGGTTGGGCTGCTGTGGTTCAGCATCTTCTGCAGCTTGTACAAGGCCCGGGGATCTGGATCACCTGCTGGGGTTGTCGCGCTCTTGATGTAGTGGTAGCCAAAAGTTTTTCTTAAGGTGTGGGTACCAACTGTACTGGGATCAATCTCGCACTGCCGGGCGGCCCGCTTCAAATCTTTATAGAATGACTTTCCTTCAATATGCCCCTCCCCTTTTCTAGAAGGGAAGAGCCAGTCACTTGGCTTCAGCTGCATCTGGTCAATGTAATTTTCCAAGTCCTGGCTGATATTGCCAATATAGGCATGCCGGTTCTTGTGGGTCTTGGTTTCAACCAGGTTGTACCATTCCCCGTCTTCAATGTCTGAGACTTTGGCCTTGACGATGTCGGAGATCCGGAGACCCGTATTGATTCCAAAGACAAAAATCATAGCATTCCGCAGACCATTCCTGTTTTGTCCAGTAACTGTCCCGGTCCCAAACTGGAGGGCCCGCTTCATAGCGTTAATCTCCTTTGCAGTTTTCAGCGGCCTGATATTTCTGCTGCTCTCTGTTTTTTTAACTTTTCGGCCCATTTTGCTAGCAAAATCCTCCCCTCATTGAATGCGTCTTTATGCATTTATTCTAGCACAAAGGTGCATTGAAGCGGCAAAATTGTTAAAAAATCCGTCCTAACTAATCAAGATTCGAATGCGTAAAAATGCTTATTTCTACGCATTCGGTAAAAAAACGATTTTTCGCCAAAAATGCTGAGAAGAGCTCTCATTTGCGCGCAAATTTTTTGAGATGATTACTTGCCCTTTTTTCGCAAATCAGGTTAAAAAGAGTCACGCAAAGTTTCAACTAAAAAGCAGCATCCCCTCACGAAAAATTCTGCAGGGATGCTGCTTAGTAGCTATTCAATTTTATCTACTTCGGTAGCATATACTTAGTGCCTCTGCCTTCCCCGACTTTGATTAGGTAGCCTTTCTTTACCAAAGAGTTTATCAACCGCAAGCTTTTGGTTTTGCCAAAGCCGACCACTTCATTTATCTTGCTTGTAGTTTCGTTTCCAGATTGAACAGCTTGATAAATTTTGCCTTCATCCTCAGAAAGATTGACTGACACCGATTGAAAAAGCGGCAAAATGATCACGATTGAGTTCTCAAAGATTTTAAATTTAGGTTGAATAACGCTGCCTTGATAGCTACTGATAATTCTGCGAATTCCCATGCCAAATTGTTCAATTAAGCCTAAACGGTAAAAGAGATTAGCCAAAATCGGGTTGCGCAGTATTGAAATTTGCCCTAAGAGATACTCCTCTTTGCTCAAGCCGCCGGGTGAGACAATTTCAATTCTGTCATCAAACATTGAAATTTTGATTTGAGAATTCACGTCCCAAGTCCGATGGACCAAGGCATAGCAACTGCTTCTCTGAAAGCTTCCTCGGGTATCTCTGCTACCAGTTCCAGTTCCCTGTTAATGCCCTTGATTTCTTTATATTGGTAATACTGTGATACATGTCAATGGAGAAATTGTATTGGTCTAAAACAGAAATACCTTCATAGTCTTTTCGATCCAGCATGATATTAAGATTTGCTCCGAAACGAACCAAATTGATACCACGAAAATGGTTGTGATCAGCCAAAAGTGCACCAGCTGGAGCGAAAAAACGATAGATTATCTTTTCAATCATATTTGCGCTCGTTTTGGAGCGATTTTTCGAGCAAAAGTGATCGCAAACGCGATGGATTATTTTTTCGATCGCTTTTACGCTCCTTTTGCGATTGAAAACAGCCGCAAATTCAAAAGCAGCATCCCCTCACGCGAAAAAACGTGCATGGATACTGCTTATTTGCTCATAAATCCAACTTGGCAGAATACTTGATGATTACCGATCCGTCATGACCTGAAACGGAACTGCTGAAGTCTTCCTGGTAAAAAGGCGGGACAACTTTTGCCTTGCTTCTTAAATATTCCAGTGCCTTCGGTCCATTGCCAGCAACATCGTCGTTCTCAATTTCCTGGTAAAAGCAGGCATACTTTCCAGCCGCTTTGACGTAATTGCCCTTTTTTCTTTCCACTACTTTAAAAAAGTGGCTGATTTCTGCCTTTTCAAAGTCATCGACGATCACCCCATATCTAGGCCCGAAGCTGATTGGATTCAGCGAAACACCATGCCTAAAAGGACTGACTTCCAGGTATTCTTCCGGGCAAGTCTCAACCGCCACTTTTTTAAACCAGTCTGCTTCAAGTCACTGATTCTCTGGTCAAAAAATTCTAAGCTGGACTTGATCTTCCCCAGCTCAGCCATCTCTCTTTCGACTGCTTCCTGCTGCTTGCCTAAATACTTCTGCCGTTCATTCAAATCCTTTAAGGCGAAAAAGTCCCCAACCTCCTGCAGGCTGCTGCCCAATTTCTCCAGCAGGCGGATCGTGGCAACTTGGTCCACCTGTTCCAGCCGGTAGTAGCGGTAGCCATTATCTTTGACAACTGCCGGCTTCAGGAGCCCTTTTGCTTCATAGACATAAAGTGCTTTCTTGGTGACAGCACACATTTTGGCAAAATCCCCGGTCTTAATTAATTCCTCGTTCATGTCAATCTCTTTCCTTACTAAAACTCTCCAGCCCTTGACTGTTCCCTTAGGGCATAGTTTACCCTAAAGGTATGCAGGGCCTTCAGCCTGCCCATGATCAGCGAGCTGTTTGTCCAGCAGCTCTACAGCGTCATCGACATGGCCATCATCGGCCGCTATCTGGGAGCCAGGGAATTAGGCGCCGTGGGCAACGCAGCCAATATCATCATGCTTTTCCTGGTTGTCTCCGGCGGCTTTGAAATGGCGGTTGACGTCATGGTCTGGCTGTTAGGTGCCAGTAAAAATAAAGAGAAGGCCGCCATGGCCCGGGACACCCTCTTTCTCAGTGCTATTAGCGGTCTGGTCTTAGTGGTAATTGCCTGGATTTCCCTGCCTGCCCTTTATAAGGCAGTGTCTTTACCGGAAAACATGATGGGGGATGCCCTCCTCTATGGCCGGGTCTACCTCTTTGCCCTGCCAATCATCTACATCTATGACGTTGGCCGGACCATCTTGATCTCCAATGAGCGGGCCAAAATCTCCTTCTATCTCTTGGCAACTTCCAGCATCTTAAACCTACTATTAAATCTTCTTTTCATTCTCGTCTTGCAGCTGGGCGTATTAGGTTCAGCCCTGGGCACGGTTTTAGCTCAAGGGATCACCATGCTGGTCACCCTCTACCTTTTGGCAAAAATGGACCGGCAGGAAGAAGAGCCTGTCTCCCTTAAGCCTGACCTCTCCTGGACAAAAATTAAGTCCATCCTTCATATAGCCCTGCCAACCATCTTCCAGCAATTCGTGATCACCTTCGGCGCAACATTGGTTCAGGCCTGGGTCAATCCCTTTGGCCAGGAGGCAATCTTGGGCTATGTCGCTATCGTCAAGGTCATGAACCTGGCCCGGATCGTCCTGGTTGGCTTTGCCCAGACGTTAACTCTGATGACGGCTCAGTTATTGGCGGTAAAAACGTACTCAGCTGTTAAAGCAGTTTACCGCTACTGCAGCAATGTCTCCCTCATCTACTGGCTGGTCAGCTCAGCCCTGTCGGTCATCTTCTGTCAGCTATTGGCAGGCATGTTCTTTGATCCAGGCCAAAACCAGGCAGCTTACTCCTTCTTCAGAGTTTATCTCTATGCTTTTGTCGGCATCCAGCTTTTCTCCATCTTCAAGTTCTTGAATGAAGGCCTGCTCAGAAGCATGGTTTTGATGAAGGAATACCTCTACTGCAACTTGGGTGAATTAGCCCTTAAGCTAGCCGCTACCGGGCTGCTTTTAACGCTTCTTCAGACTAATGCTTTCTGGAGCGCAGAACTGGGAGCCAGAATCATCTGCTTCTTGGGCTCAACCATCTTGGTTATTAAAGAAATGCAAGCTTTAGAAGCAATAGAAAAAGCCGGTTAATACCGGCTTTTTATCTTCAGTCATAAATGTAGTAAAGAAAGAAGATTACCGGGCCCGGCGGTCGTTCTCGGCTTTCTTGTAGAATTCTTCCTTGGATTTGCGCATGGCCTTGTCTGCCTAGTAGAGCAGGTCACTGACATTTAAGTGGTCGGCCTTTGCCTGCTTGATCCCGATTGAAACGTGGTAGCATTGCTTTTTCAAGTTAGAAAGTATCTCTTTGCTTGAACTTTGTCCAAGCGCTCGTCTAAGGCAATTGCTAAAAACTCATCCCCGCCAAAGCGGAAAGACATGTCTTGCCCGAAGCTTTTGGCTAATTCACTAGCCAGGGCAATCAGCATCCGGTCCCCGGCTTCATGGCCAAACTTGCTGTTGGTTTCGTGCAGGCCATTGACGTCGCAGAAGACATAAGTAACGCTCTCTTGAGCGGCTTGCAAAAAATTATTAATCTCGTGTTGGTAATAGTTGCGGTTTCTGATCTGGCATGTGTTTTACCTCAGTCAAAAGTATAGCATAGAAGCGGAAAGCTTTTTAATTTAAATATCATTTTAATAATGAAAAAGCGAATATTCGTGATTATCCAGACAAATCAAGCTTTCACCTAGATAAATCAACGATTACCAACTAAATGAATATAAAATATGCAGCTTTCTTAATGAAAATCAAGAAAACTACTTACAAGCCTTGCATCTATCCTTTACACTATTGAAGAAACAGAAAGGAAGCAGCAAAAATGGCCGCATTTATGAACATTAACCCAGATATCTGCCTAGCTTCATTCGCTGTTCCTTTTCCATTTTTTCAAATTATTAATATTTCATCACTTAAGACATGTCACTCGTTGATATGTCTTTTTTTATAGGAGTCAAACAATCATGAAAGCGCGTTTAATACTGGAAGATGGACACGTTTTTGAAGGCGAAAGCTTCGGCGCGGTCCATGACGTTATCAGCGAATTCGTCTTCAACACGGCGATGACTGGTTATGTGGAAGTCTTGACCGACCCGTCATATGCCGGTCAAAGCGTAGTCATGACCTATCCCCTGATCGGCAACTACGGCGTTCCCCTGGATGACCAGGAAGCCGCTCACCCCTTTGTCGAAGCCTTTGTAGTAAGCGAGCTTTCCCGGCTGGGGTCCAATTTCCGCATGAACATGAGTCTGAACGACTACATGATTGAAAACAACATCCCCGGCATCCAAGGCGTCGACACCCGGGCCATCACCCGGATCCTGCGCAAAGAAGGCTGCATGAACGGGATGATCACTACTAAGGATTACGAAGTCAGCGAAGTAATTGACCAGATCAAGGCCTTCAAGATCCAAGGGGTCGTTGAAAAGTGCAGCTGTCTTGAGCCCTACCATGTCGGTCAAGGTGACTACGAAGTTGCCCTCTACGACTTCGGTGCCAAGCGCAATATCGCCAGAGAACTGGCCAAAAGAGGCTGCCATATCACAGTCCTGCCGGCTGACACCCCGGCCCAATATGTCATAGACCACAACTTCGATGGGATCATGCTTTCAAACGGCCCCGGCGACCCGAGTGAATGCACGGAAATCATTGACCAGCTGAAAATTCTTGCTTCTTCCGGCATCCCGATCTTCGCCATCTGCCTGGGCCACCAGCTTTTAGCCTTAGCCCACGGCTTTGAGACGGAAAAAATGGTCTACGGCCACCACGACAGCAATCACCCAGTCAAGGATCTGACCACTGGCCGGGTCTACATCTCCACGCAAAACCACAACTATGTGATCAAGGAAGACACGATTGATCCAAAGCAAGCCAAGGTCTGGTTCAAGAACGTCAACGACAAGACGATCGAAGGACTGGAATACTTAAAGGAAAACATCAAGTCCGTCCAGTTCCACCCGGAAGCCTGCGGCGGCCCGCACGACACGGAATACCTCTTTGACAGCTTTATTGAAATGATGGGAGAACACAAGAATGCCTAAGCGCGACGATATCAAAAAAGTTTTAGTGATTGGTTCCGGACCGATCATCATTGGCCAGGCCGCTGAATTCGACTATGCCGGGACCCAGGCCTGCCGGGCCCTCAGAGAAGAAGGCATCGAAGTTGTCCTGATCAACTCCAACCCGGCCACGATCATGACTGACGGCGACATGGCTGACCACGTCTACATCGAACCTTTGACTGTGCCAGTCGTCAAGCAATTGATAGAAAAAGAAAAGCCAAGAACTGCATGAAATCTGCTCTAACGGCCTCCGCCTCTCCCGAGTTACTGAATGTTTGATTGAACAATCAATCGCCGGCTGGAAGGAAGTTGAATACGAAGTCATGCGCGATGGTGCCGGCAACTGCATCACCGTCTGCAACATGGAAAACATGGACCCGGTCGGTGTCCACACCGGTGACAGTATCGTGGTAGCGCCATCTCAAACCTTGTCAGACAAGGACTACCAGATGCTCCGCTCCTCTGCCCTCAACATCATCACTGCCTTGAACATCAAGGGCGGCTGCAATGTCCAGTTTGCCCTCAACCCAGACTCCTTTGAATACTGCGTCATTGAAGTCAACCCTCGTGTTTCCCGGTCTTCTGCCCTGGCCTCAAAAGCAACTGGCTACCCTATCGCCAAGCTTGCTACCAAGATTGCTTTGGGCTACAACTTGGATGAAATCGTCAACGCCGTAACGGGCAAGACCTACGCTTCTTACGAACCAACCCTTGACTACATCGTCTGCAAGATTCCTAAGTGGCCTTTTGACAAATTCTACGACGCTTCCCGCAAGCTGGGCACCCAAATGAAGGCAACCGGGGAAGTCATGGCTATCTGCAACAACTTCGAAGGTGCCTTCATGAAAGCCCTCCGGTCCCTGGAACAAGACAGCTACTACCTTTATAATGAAGAAATTGCCCAGCTGTCAGCTGATGATCTCCGTAAAGACCTCCGCAAGATTGACGACAAGCGGGCCTTCAGAATTGCCGAAGCCTTGCGAAAGGGCGTCTCCATCCGGGAAATTCATGCCATTACCAAGATCGACGTCTGGTTCATTGACAAGATCAAGCACCTGGTTGAAATTGAAGACCGCCTCAAGAGCGAAGAACTGACGCCAGATCTTTTGAAACTGGCCAAGCACTGCGAATTCCCAGACCGGGTTATCGCCAGCTTAACCGGCAAGACGGCTGATGAAGTTTACTACCTCAGAAAGGGCTTGAAGATCACGGCTGCCTTCAAAACGGTCGACACCTGCGCGGCTGAATTTGACGCCGAAACGCCATACTTCTACAGCGTTTATGGCGGTGAACATGAAATCCAGCCAGACCGGTCCAAGAAAAAGGTGATTGTCTTTGGCTCCGGCCCAATCAGAATCGGCCAAGGGATTGAGTTTGACTACTGCTGCGTGCACAGTGTCTGGACCCTGAAGGAAGCTGGCTACGAAACCATCATCGTCAACAACAACCCGGAAACTGTCTCAACTGACTTTGACATCGCCGACCGCCTCTACTTTGAACCATTAACGGCAGAAGACGTGCAGAGCAGCCAGACGGGGCCATCGTCCAATTCGGCGGACAAACCGCGATTAAGCTCTCCCAGGACTTGATGAAGATGGGCGTGCCGAATCCTTGGTACCTCTGCCGACAGTGTTGACGCGGCTGAAGACCGGGAAAGATTTGACGAGATTTTGGAAAAGTGCCAGATCGACCGGCCGAACGGGCAAACCGTCTTTACGGCTGAAGAATGAGCTGGGTTACCCGGTTTTGGTCCGTCCTTCCTACGTTTTAGGTGGGGCCGGAATGGAAATCGCCTTAAACGACGGCGACCTCAAGCGCTTTATCGACCACATCACCTCCCAGTTTAACATTGAAGACCACCCGATCTTGATCGACAAGTACCTGGCCGGCAAGGAATGTGAAGTTGACGCCATCTGCGATGATGAAGGCATCTTGATTCCTGGGATCATGGAACACGTAGAAAGAGCTGGTGTCCACTCTGGTGACTCAATCTCCATCTACCCGCCGCAAAAGATCTCCCAGGAGATGAAGGAACGAATCGTAGAATACTCCAAGCGCCTGGCCAAGGCCTTGAAGGTCAAGGGGTTGATGAACATCCAGTTTATCGTTTACGAAAACAAAGTTTACGTGATCGAAGTCAACCCCCGCTCTTCCAGAACCATACCTTATATCTCCAAAGTGACCGGGATTCCGCTTGTTGACGTGGCAACCAACGTCATCATTGGCAAGTCCATCAAGGAGCAAGGCTATGACTACGGCCTTGCTCCGGAAAAGAAGACAGTTGCCGTCAAGATGCCAGTCTTCTCCTTTGAAAAGATTACCGGGGCGGAAATTGCCTTGGGGCCGGAAATGAAGTCAACCGGTGAAGTTCTGGGGATTTCTGAAGACGTTGAAGAAGCCATGTACAAGGCCTTTATGGGGACTGGGCTGGACCTGCCTAAGCACAAGAAGGTTATCTGCACGGTCAAGGATTCGGCTAAGGCAGAATTTTTGCCAATCGCCAAGGAATACCACGACTTCGGCTACGACCTGTACGCGACCCAAGGGACATACGACTTCTTGCAGAGTCATGGCATCCCTGCCCGCCTGGTCAACCGGATCAATGACAAGGAGAACACCATCTTTGACTTAATCTTAACGGAAACGGTCGACCTGGTCATCGACATCCCAACCAGAAACAACAACTTGAAGGACGGCTTCCTGATCCGCCGCTTTGCCGTAGAAGCCGGCGTGCCTATCTACACTTCCCTTGATACGGCGCGGGCCTTGATCTACGCCCTGGAAGCTAAGCACGACAACAAGCTCTCCTTGGTCGACATCACCAAGCTGTATAAACTGTATTCATCAATACTCAATAGTTTTAAACGTCAGCATTTGCTGGCGTTTTTCTTTGAAAAAGTTTCTAGATTTCCACTTGTAATAACTTAGCACATTAATCGTCGGGCCTACTGCGGCCGGCTAGACCACCCTGGTCAAGCTCTTGATGCGCTTTTACGAGTTAAACTGCGGGAAGATCACGATTGGCGGCCAGGATATAAGCAAGATGAAGTGGTCTGATTTATGGCCCATGTTTGGGATGGACCGGCTGATGCAGGGGCGGACGGCTTTTGTTATCGCCCACAGCTTGTCAACGATCAGGGATGCAGACAGTATCATCGTCTTGAAGGACGGGGATATCGTTGAAGTTGGCAACCATGACAGCTTTATGGCAAAGAAAGCCTTTTACGCCGATCTTTACCAGTCACAGTTTGAACATGGTGAAGAATAAGAAAAATGCAAATCATTTTGGATACATTAAAAGCCACCAAGCTTAAACTTGGTGGCTTTTGCTATTTCACGCTTCTGGTCGCGATAAAAGTCGGGATATTCAATTCGTGCAGGCGGCCTTCGCCGTTGGTATCTTCATAGAGATTGGTTAAAGTAAAGCCAGCCTCCAGCTGGCCGCCGATCTGTTCCTCCAAGGTATGAGAGAACTGGACGCCAAAATCATCTTTTTCCAGCTGCTGCATCTGGTCAGGATTTTTCAGCGGATTAAAAGGCAAAGAGTTGACGACATACTTTTCATCTTCACTGTCAAACAGGTAGTTGATCCCGTTGTCCAGGCCAACCAGGAGTACCCCACCCTTTTTCAAAACCCGGTAGCATTCTTTCCAGATCGGCTTAACTTTTTCAACGTAGCTGTTGGCAACTGACTGGATAATCATGTCAAAGCTTTCGTCAGCAAAAGGCAAAGGCTGGGTCATGTCGGCTTTGACAATGTCGATATCGTAGCCTTCGCGCTCTGCAACCAGGCGCTCGCTTTCCAGCTGCTGGTCAGAATATAGTCCAGGACTGTGCATTTTGCCCCCAAGGCAGTCAAGATTGGCATCTGCTGGCCACCCCCGCTGGCTAGGCCAAGGACTTTTTGGCCGTGTAAGTCACCAAACCAGCTGTGCGGGACATACTTAACCGGGGTCAACTTGATCTCCCACTTCCCTTCTATAGCAGCTTGGAAGGGAAGTGGTCAATTGCCTTGCCCCATTCCCAGCCTTCTTTGACCCAGCGGTCGATCGTTTCAGCGTTTATATCTTGATAGTTCATAATTGTTTTTAGCCAGCCATGGAAGTAGACACCATCATAAAAATTGTATTTTCCCTTGCTTTGGCAAACTAAACTTATCTTCTGCACTTTACCATCTCCATCTTTTTACAGATCCGCTATCATCAAGCTATTTTAATAATAGCACTATTTGGAGACAGTCTAGTCCATTTCGTATAAGCCGCCAGCAATTTTTCGCTCCAAAAAAGCTGCATCCCCTCCAAAAGTGGGATGCAGCTTTTTCCAAACTACAATTCAATCTCTATCCGTGCAGCTTCCTTCAAGAGCTTCAGCGGGTACGGCAGCACTGTTAAGTCCTTGTATTTGACAAAAGTCACCTCTGTCATCTTCAACATCCGGTAGATCTTCTCAGCATCTTCTTCAAGAATATCACCCGAGAAACTGTTAATTATCCGCACAACTGATCCCTTGTCAATCGTCGTCTGCATCCCCCTGCCAATTTTACCAACGTTATACTTAACGCGGCCATTCTCAAGCCAGTGGTTTTCATAAACTATACCTGACATATACTCATCCAAGCCCGTCTTATTCCGATAGTATCTAAATTCTGGATCTTCGATCGTCTTATAGTACAGACTCTTGTTTGGCATGGTTCTAAGTTCGCTCTGTTTGATGCCGTAAAGTTCTCCGTCAATCCGGGCTAAGAGTTCATAATCGCTTGTCATTCTGCCCTTCTTGTCTTCCCAGAGCAAACCGTGCTCTATAAATGGATTGTTTTCTGAGAGTGGGTCAAGCAGCTGGTTGCTTTTTGCCAGTTCAAAAGTCTCTTCATCCTTGAACTTCAGTGACCAGCAAGTTCCCGTTCCCTTCTCCCAATAGTGAAATTCAGCATTCGGCATCCCTTTGACCTGCAATGGTTTGACCGTCCGATTGACAACACAGTACTTTACCAGTAATTCCTTAAGCGAATTGTCCAGTGCTGACTTGCCCTTAATCTGCCCGTTTTTCTTTAAACAATTGTCTTGGTAGATGTGCTGAATCAGACACTTGCTGTTGCTTCTTTGATATGGGTCCTTGCCATTATAATCTTTTGGTGGAAGCACAACCACGATATTAAAGCCTTCTTTTACTTGCTCAATGCAAGTAGCTTCAGCAGTCTTATCAGCGAAATACTCTGCAACCGGAGCCAAATCGAGCTCTTTTCTCGTTTGGTCAACGAGATGCACTTTCTTGTCCTTGAAAAAGTCGGCTACAGCTCTTGTTACCCTTTTATTCAATTTCATGCTGGTTTCTTCGGCCGAGATGGTCTTGGCTTTGACTTCTTTAAAGGAAAGCTTGCTGACATAGCCTGTTCCTTCGTAACAACTGTTAAAACTGCTTAACAGTTGATAAGCAAAGCCATATTTTGAATGGTCAAACGGGGTATTTTTGTCCAGGGCGAAATTCTTCATCGCCCCGTCAATAGCCTTAGGCTTCTCATTTTTATAAAGTGGAGCTTTCAGGTAGCAGTCATCTGTCATCTTCCGGCACTGCCGGATCGTCATGTCGTCCAGGTTGATCCAATAAAAAGGACCCGTCAGCAAATTGCGCTCAGCTAACTTATCCTTGAATTCTTCTCCGTACTTTTCCTTGAAAAGCTTAACCTGGGTAAACAAGGAATTCGCGATGTACATAGTTTTAGATTGCTCGTCAAAGTACAAGTGGAAGAGGACAACTTGCCCCCTTCTACTGAACTGGCCGCCCTTCCTATCTTTGCCTTGATTGATATCCTTAATATAGAAAAACAAGTCTCCCAGCAGATTGCAGCGCTCTATTTTTCCCTTCTGGTTCAGCTGCGTGGCAAAAGGGACATTCATTGTCAAAAGCTTGATAGCAGTTATATCACTAATCTGCTCTTTACCCGTCACGGCAGCCGCCGGCGTAAGATTGCTCCTCTTGAAGACTGGGTAGTTTCTCAGCTTGGCTTCAGTCAGCCCGTTGCTTTTAGCCGTCATAACATAAATCCGGCTCTTCCACTCATCCCCGATGTGCACTTTTTGATAGCAAACCAGCAGCTTTCCTTTTGAACTTTCAACCAAATCATTGAGCAGAAACTTTGACGGATAAGCCGCCTTATTGTCTTCATCAAGGCAGTCCATGAAAAAGATGTCATAGTCAGCCAAGATCTTGTCCAGATACACCTCACCAACCAGCTCGTTAGTAGTGATCAGATTTTCTTTATTCGCCATTTTCTAAAACACCTTTCTAAAATCTCTGACAAGCTTCTGGTTGAGCTCGCCCTTTTCATCAAATAAGTATGGATATAGGTAAACCTTTTTATCTGCAAGTCCGCCGGCTATTTGAATTGCCTGCATCTGTTTATTGGACCACTTTGAGATATTGATAATAATGGCTGATTTACCCATTTCCACCATGCCTAACTTTCTCTTTATCCATCTAACCGTTTGGTCATTATCGCCTGAAGGAGCGTCTGTGTTGTAATTCTTCCAGTCAACATAGACTATCCGGCCATCATCAGCTTTAAGGTAGCCATCAAAGCGCTCCATCTCACTATTCGGCAGGTCTGCCATGTCGTGGTAATCAAAGCCCAAATGCTTCATCACCGCTTCCCCAATCGCTTCACCTATCGCGCCCTTGTACAGATTGTTAAAAGCGCCAGGCGTCAGCAAGTAACGGCTTGGCTTGAAGGACAGGTCATAGCCAGCTCTTTCCAGCTCCCGCTTTAGCCAAGGCTGCTGCTTCCATATTCTTTCAAGAGCTTGCTTGTACTCTTCATAATCCATATACTGGGGCTGAAACGAGGGCTTGATCCCGGCTTCGGCCATCTGCCGCTTGACATCATCTCGGTCTTCACCGATTGCGATCAAGCGCTTATAGTCACCTTCCACATAGTAGTAATATCCGGAAACCGGGTGGCCGAAATCCCAATAGTAATTGGGAACTATTTTGGCTAATTTCCCGTCTTCCACTTCAACCAGTGAGTCAAGCTGAGGATGCTTGGCAATAAACGTCCGCAACTTGATCCACAGTTGCTGCATGTCATCTGGCATAGAGACGAGCTGAAGGGCAACCTGCACCAAATAGCCCATCGCGTTGCTGGCCATCAGCTTTTTAAGTTTCAGCTCTTTTTCTTCCGTTTGATTCGGCAGAAGCCGCAAGCCTGGATCGGAAGCCATGATTGCTTCCATAACCGCGTTGGTCCGTTTCCTATCTACCTGCGATCGGTTTAGGCAAGAAGCAATTTCTTTATCCAAGATGACAAACATGCTTTCCGGCTTAACAACAGTTCTGACCATTCTCCCGCTGGTCTGGTCAATCTGGCTAGTATAGGCATTGTCTCTTGCTTGAATCTGGTAAAAAGGATTCTTCTCACGCTTAAGCGGATATCCCTGGTAGTAAGCAGTCAGCAGCCGCTCGCTATCTGCATAAGTAAAGCCTGGTGTACCCAGATTTATCAAGCCATCACATGTATAAATCAATTGGAGATAGCCCTTTATAAATTCATCTTCAAATTGCTTCCTGTCTCTATCGGCATTGTTTTTAGGTATAAGGTGCGTCGGCTGCTCCATATAGCAACCGTTAATGTCCACAAACGGATTGTCCTTATTGAAAAAACGGTCATCCAAAACGACGTAGTCCTCTGGATACTTTGCAAGCAAGGCTTTAGCCGGGTATTGCAGGTTAACCGCCCGGCTCATGGTTGAATAAGAGGTCAAGATAATTTTCAACTTGCCCTGTGCCCAGTCAGCCTTGACCCTTTCAAGTTGCTTTTCTGGATCATCTTTTGCACTGATGCAAACCAAAGCCTTATCCTGGTCTAAATAGCCAAGTTTCTTCAAGGCTGTCTCATACCATTTAGCTTCCGCCTCTCTGATATTGCGGTTAGTGTAGGCAATAAAGGCGACCCTGCTTGGGCGTTCCCGGTTCTTTTGGCAAAAAGCTGCCAGCGCCTTAAGCAATTTGAGATTTCTCCCGAAGTAATAGCAGGCAGTCCTAATTGTCACTTTTTGCGTGATTTTTTCATTGGATTCCGGCTTATATTGCCAGTTAAAGTCATACCTTATTCCTGCAAGAGCTGACGGCATCTCCGAAATCAGATCGCTTATCTCTGGGTAAGATAATTGACTGTCTGGGAAGGAAGCTTTGAAGACATCACGCAATTTAGCACCAGGTGCCGGCTTTATCCATTGAACATTGATTTTGCCCTTGTCCCTTTGGGCCTTATTCCGCTCTTCATTCTCTTGATTTAAAAGTTGCTCGATTTTCTTAGGCAAATGGTAAACATATGGGATGTTGTTGTAGACCCAGTCTAAACCGAAATTGCTGAAGATTGACTCTGTCTCAGCCGTCGCGGAAACCAGGATCACCCGCCACTGGCTGGCTAAAGTCGCCAGCAGAAGCTCTGGAGTCCACTTTTGCGCGTAACGGGAGACTTCAGCATTTGTTCTCTTGTTCCGGTTAGATTCCAAAATGTGCACGGTAAATCCTTTGCCAAAAATTGAGTTGTCGCTGGTCAAGTTTGCGGCAATCCCCGTTTGATGGCGCTGCGGTGAGTCCCGCATATACGTCTCTAGCAGGTAATTTACCAGTGCCTCGTCTTTATCTTCGATACCTAAAAGCGACCGCAAGACAAAGCGCTGTTCATCCTCCAAGTCCATCTCATCTCTGTATTTCTTTTTGCCATTTGCTTCCTGGTGGCGATTGATCTCTTTGATTCTTGACTGAACATTTTTCGCCATGGAGTAGCTGTTCCTGACAAAGGAAGAGATATTCTGGTTTAAGTCCTCCAGCATTCTATCCAGGCGAATTGCCTGCTTGCTGCTTTTCTTTTTCTCAAGTACATTGACAAAAAGCTTTCCTTTCGCGCCGGCAAGGCTGAAAGGATCGGGCTTGTATTCAATATAGAGCTGGTCGTTGATGTTCAAATAATCTGATTCACCATCATTAATCAAGAATTTTTTAGCGAGTTCATCCTCACTCAAGCTTTCGCCAATGACCAAGTCAGCTTCAAGGTGGTATTTATTTGAAAGATCATGAAACTTCTTGCTGGCAGATTTAATTCTGCCGCGGTTGTCTCCGGCTGCGAGAATTATTTCATTTGCTTTATTGAAGCTTGGTTCCAGGGCAGAGTTGATTTTCTTGGCCAAAGTATAAAGGTCAAAGTGCTCCTGCTTTTGCCCCAGCATGCTTTCCAGCCAATTCTGGTGAATCTTGTCTGACTCATCCAAGATCAGATTTACTAATGTTTTCTCTTTACCTGCGGGCTTCTTCTGATTAAAATTCAGTCGCCAATAGTATTTGTTACTTCCCGCCAAGTCTTTGTAGCGGTAAATAAACTTGTTCGCTGCCATTACTAAGATTTTCTTATTTGCCAAATCATAATCGGGAAACATTATTTGGTACCAAGGCAAGTCGCGGAAAACGGTCGCCTTCATCCGGGCCTTCCGCTCCGCTGGACTCAAATCTTGCTCTTCTTCATCAACAATGGCATAGGCATCTGTCCGGATCATAGATTTGATCTGGCTGAAATTCTTTCGATCATCTTCTATTTCTTCCTCGCTTTGCAAATCAGAGAAAAGCAAGATTGACTGCAGGAGGCCGAAAATATGCCGGGTATTAGGATAGTTATCCGGTATGCTTTCTTCCCGCCAAGCCTTATACAGCTTCTTACGGTCCAACCGTCCAATCACTCTTTCTTCTTGTCTAACAAAGACATGCTCTTCGAAGAAGTCTGTAACTTGATCCTGCTCAGAAAGCACATTGACCAGGATTTCTTCAGGATTCTTGCCGAGTTTGAGGAGTAAGTCCCGGCAGCCTGCGTATACCTCATCCCTGTCCTTGCGCAAAGGGGTCAAGTAAAAGGTTACCTGCTGGTCGTTTACCGCCCGGTTGACGATCGCCCGAACAGTACCATACGTTTTCCCAAGGCCAGTTGACTGCTGCAGAATGCTAAGCAGAGCACTCTTATCCTGTCCTGTGATATCTTCAATGGCTGCCTGTGAGCCATTTGCACATGGGAAGTAAGTCTGACTATTTTCCATTTTTTCTTCCTCTCAATAATCAGTTTTAATTAGCTTGGATAATATATTTAGAACTGATCATAGCACTCTTTGTTAGCGCATACATGCAGACTAACTTTTTGTAAAAAAACTGTAACAAGCTGCGGCAAGACGCGAATAATACGAAAAAACGGCCAGCAACTGGATCTTTCCCAACTACTGGCCGCTTTATCTATCTATTTATCTTACAGCATGGTCCGGATCTGCTGGCCATTTAGCCAGGCAGTCACATTTTCAAAAGCCATCTCGGCTCTTCTGTCAATTGATTCTTTCGTATCAAAACCGACATGTGGGCTGCAGACCAAATTCGGAACTCCCAGGAGTGGATAATCAGCTGGCAGTGGCGGATCCTGGTCAAAGACGTCAAGTCCTGCCTTAATCCGTCCTTCTTTTAGTGCTGCAGCCAACGCTTCAGTATCTACGACCGGACCTCTGGCCGTGTTGATCAGAATGGCCCCTTCCTTCATCTCTCCGATCTCTTTTTTACCGATCAAGCCCTTGGTTTCCGGAGTCAGCGGCGTATGAATGGAAACAATATCTGCCTCCCCCATCACTTCATCCAGTGACTTGTATTCCAGGCCCAGGTCAAGGGCGGCCGCCTTTTGACTACGGCTATAGCCGATCAGCTTGCAGCCAAAAGCTTTAAAAATCTCTGCTGTCCGGCAGCCAATCGCTCCAGTACCAACAATCCCAACAGTTTTGCCTGCCAGTTCATGTCCCTGCAGTCCGCCCTTGCCCTCACCAGCTTGTACAGCCTCATTGCCGGCACTGATCTTTCTGAGGCAGTCCAAAGTCAAACCGATGGCCAATTCCGCCACCGCGTCGTTGCAATAGCCACCAGTGTTGGAGATATTGATCTTTTTCTCCTTGCAGGCCTCCAGGTCAACATGGTCAATCCCGACAAAGGCAACTGAGATGAACTTCAAATTCTTATCTGCCCGGATTACTTCACCAGGCAAGAGGTGGTTGGCGATAATCAAGGCGTCCGCGTCCTCGCTCCGCTTCTTCAATTCTTCAGTATCCGTTGAAAAGCTGTCGTAAGCCGTAAATTCATGCCCCTGCTTGGTCAATTTTTCCGCCAGCTTGTCTAAACTTTCCTGGCTAATGCCCAGTGGCTCAAGCAATACAATCTTCATTATTTTCTCCTTACTTTCTACCTTACAAACACATAGACAACGTAAGCTTCTACATCAAGAATATTATCTCATTTTTATTGTTTGCCTGACAAGGATAGAAATTACTTTAATTCTTTTCAGCCTTTTTCTTGACATTAGTCTACACAGAGACTAAAGTCTTAGTTATTGTCCACGAGGAGACTTTTTATGAACTTAAAAAAAACACGAAAGCATTTCAGAATTAGTAACCCTGGCCAGCGTCCGGGCGACTTACGCGTATGAGCAATATGACAAGCTCATGGGAATCACCCAGTACGAGAGCCTCATTCTATATGAGCTCTTCACCCACCCCCGCCTGTCACAAAAAGAGCTCGTCTATAGAAGCGGCATCCCCAAGCAATCCATCAGCAAGGGGATTCACAATCTAGCTGAGCTCGGCTACCTGGAAATCAGCTCTGCTGATCAGGACAAGCGGGTCAAGTACTGCTCCTTGACTGAGTCCGGGCTTGCCTATGCCCGGGAAAAAGAAGATGAAATCCTGGCTATCGAGAAAAAGGTAATCGACAAGCTGGGCTTTGACCGGGCCGCTTTGGCCTGCCAGATTCTAGCTGAGTGGTCTGATCTCCTCAGCAAGGAAATAGCTAACTTAAAGGAGAAAAAACAGAAATAATGAAAATTCTCTTGCCTTACTTCAAGCGATATAAAAAAGACGTTTTCCTGACTTTGATCACCATCGTCTTTTCAGCTTTTGCCACCCTCTACCAGCCCCGCCTGCTCCAGCAGGTGCAAAATGAACTGCTGGCTGACCAGCAGCAGGCCGTCATCCGGGACACCGCGATTTTGATCGGCCTGGGCCTTTTATCCATTATTACCGGGGTCCTCAACGTTTACTACGCCTCCCGGATCACCCAGGGCGTGGTCAGCGACCTCAGAGAAGACACCTATGCCAAGATCCAGACTTTCTCTCTGGCTAATGTGCAGCAATTCTCCTCTGAATCGCTCAGCGTCCGCTTGATCAACGACATGCAGCAAATCATGAACATGATCATGACTATCTTCATGCAGCTGATCCGGATGCCTTTGATCCTCATCGGGTCAATCATCATGGCCATCGTCACCATCCCCCGCTACTGGTGGGCGGTTGTCGTCCTCCTGGCCTTGATCATGGGTCTGGGCGTTGTGGCAGTCAAGCAAATTACCACCATGTTCGACAAGTTCCAAATGTACATGGACAAAATCTCCGGCCGGACCGGGGAATTTTTGCAAGGGGTCCGGGTGGTAAAATCCTTCAACCAAAGTCCCCAGGAAATTGCCAAATTAAACAAGGATTCTGACGAATTAAACGAAGTCAACATCAAGGTCGGCTACTGGTTCTCCACCATCCTGCCTGGTGCCCAACTGATCTCCTACCTGGTCATCAGCTTAGTGGTCTACTTGATCGGGACCAGCATTCTCCAGCATCCCCAAGACGTTTCCGTCATCACTCCATACGTCAACTATGTTTTGACCATGCTCTTTGCCATCCTGCTGGTCGGCATGGCCGTCATGCAGATTTCCCGAGGTAACGTCTCCTTACGGCGGATCCAGGAAATCATGGACACCCAGCCAGACGTTGTCTTCAATGAAAAAGCCCCGGAAGACGCCTTGGGCGGTTCAATTGAATTTGATGACGTCTCCTTCACCTACCCAGATGGCCAGCAGCCCGTCTTAAAGCACATCTCCTTTGCTGTTGCACCGGGCCAAATGGTCGGTATCGTCGGGGCAACCGGGTCGGGTAAGTCGACCCTGGCCCAGCTGATCGCCCGCCTCTATGACCCAACAACTGGGAAGATCAAGATTGGCGGCAGCGACCTCCGCCAGGTTAATGAGAATGCCCTCAGAAAGACTGTTTCCTATGTTCTGCAAAAGGCTGTCCTCTTCTCAGGAACCATTGCTGACAACCTCCGCCAAGGGAAAAAGGATGCTACTTCATATGAACTTGAACGGGCAGCGCAAATGGCCCAGGCCAGCGAATTCATCCAGCGCTACGATGAGACTTTTGACCATGAAGTTGAAGAAAGAAGTGCCAACTTCTCCGGCGGGCAAAAGCAGCGTCTGTCTATTGCCCGGGGGATCATCGCCGGCAGTCCGATTTTGATTCTGGACGACTCAACTTCCGCCCTGGACGCGGAAAGCGAAAAGCTGATCCAGGAAGCCCTGGAAAAGCAGCTGCCTGACACGACCACGATCATGATCGCGGAAAAGATCGTTTCTGTCATGCACGCGGACAAGATCCTGGTCCTCGATAACGGCCGCCTGGTTGCTGAAGGGACCCACGAGGAACTGCTCAAGACTTCCCCGGTTTACCAGGAAATCTATAAAACCCAGAAAGCCAAGGAAAGAAAGGAGGAACTTTAATGTCAGACAAGCAAAAGTCTCTTACTTATTTGACGAAATATCTGAAAAACTACAAAAAGCCGATCTTAATTTCAATTGCCTTCTATCTGATCGCGACCATCGCCCAGGTCATCGCTCCCTCCCTTTTAGGGCAGGCGGTTACGGACTTGTCGGCTTTTGTTAAAGGGCAAGGAAGTCTTGGCGTCTTCTACCAGGCCTTAGCCTGGATGGCCGGCTTTTATGCCTTTAACTCCGTGGCCACCTACATCGCCTGGATGATGATGACCCGCTTTAACGCTAACGCCAACAACGACATGCGCAAGGGCCTTTTCGGCAAGCTGCAGCGGATGACCTTCCGTTACTTCGATACCCACCAGGACGGGCAGATCCTGTCCTTGTTCAACAGTGACCTGGACAACATCTTCAATGCGTTAAACAACGCCTTTTTTGAAATCATCTCCCAGTCCCTCCTTTTTGTCGGCACGATCATTGTTATGTTTGTCATCAACTGGAAGCTGGCCCTTAGTGTTGTAGCTACTACTCCTTTGATCTTGCTTTTGAGCTGGATCATTATAAAAAAAGCCCGCGTCTACCTGGACAATCAGCAAGACCGGGTTGGTGAGCTTAATGCCTACATCAACGAACAACTCAACGGGGAAAACGTGATCATCACCCAGGGCCTTAGGGACCAGTCAGTTGCCGGTTTTAAAAAGGAAAACGCCAAGGTGCGGGAAGCCATGTTTAAGGGGCAATTCTACTCTGGTATCCTTAACCCCTTAGTTACCGGCTTCTCCCTCTTGAACTTTGCGATCGTGATCGCCACTGGCGCTTACATGATTATGACCAAGCAAGTCAGCAAGGCGGCTGGTCTGGGCTTGATCGTGACTTTTACTGAATATTCCTGGACTTACTTCCAGCCGCTGACTCAAGTAACTTCCATCTACTCCATGCTCCAGCTCGCCTTGACCGGTGCCAGACGGCTTGAGACGGTTGAAGAGCAGGAAGAAGAAAACACGGTACCAGACGGCAAGACTATCTCAGGCGTAAATGACGCTGTCCGCCTGGAAGATGTGCACTTTGGCTACACTCCAGACAAGGAAATCCTGCACGGGGTATCAATTGAGGTGCCTAAGGGGCAGTCTGTCGCTGTTGTTGGCCCGACCGGGTCTGGTAAGACGACGATCATGAACTTAATCAACCGTTTCTATGACGTAAACAGCGGTGCCGTAACTTTTGACGGCACAGACGTCCGGGACCTTAAACTGGAAAATCTCAGAAGCAATGTCGGGATTGTTTTGCAAGACTCAGTCCTCTTCTCTGGGACAGTAGCTGACAACATCCGCTACGGCAAGCCGGATGCTACCATGGATGAAGTTATTGCCGCGGCTAAGGAAGCCCAGCTGCATGACTTTGTCATGACCCTGCCAGAGCAATATGACACGCCGATTGAGAATGGCCAAGCAAATTTCTCTACCGGGCAAAAGCAGCTTTTGTCAATCGCCAGAACTATTCTGGTCGATCCGGCCTTCCTGATCCTGGATGAAGCAACCAGCAACGTCGACACGGTTACGGAAGAAAAGATCCAAAAGGCCATGGACAACGTGATTGCTGGCCGGACCAGTTTCGTGATCGCCCACCGTTTGAAGACGATTTTGAACTCAGACAAGATTGTCGTATTAAAGGACGGCCAAGTCATTGAAGAAGGACCGCACGCCGACTTGATCAAGAAGCGCGGCTTCTACTACAAGCTCTACACTAGCCAGATGGCTTTTGAATAAGGGATACATGCAAAAAGGACACCTGTCACAGATGTGATGGGTGTCCTTTTCTTATCTAAATTTTTGATACTTGATCTCTACTTTATTCAGTCTTACCGCTATAGTTGGCAATCCCGCCAATATTTTGGACTTTGCTGTAGCCAGCTTGCTTAAGCCAGGTAACTGCGTGGCCGCTCCGGTTGCCGCTGCGGCAATAGACAAAGAGCGGGGTATCAAGATCCGTGATCTCTTCTCTGGCTGCCTCAATACTGCTCAAGGGGATGTTGATGCTGGCCGGGATGTGCCCTGCTGCGTACTCATCCTCTTCTCTGACGTCGATTAATTTAGCCTGCAGCGTTTTCTGGTATTCTTCAACGCCGGCGTTAACGTCATTTGCTTGAAATAGGCCCATGTACTCCTCCTTAAATTTGCATTAATATATCGGATTATAGCACATCATTCATCCATGCGCTTTAATCAGCATGCTGTCAACAAAGTCGCTGCCAGCATCACTGACAGTGCTTCTTAACCATGCAAATTTCAGCTTGGAGCTATCGAACTTGTCCAGCTCCCGGTCAATGTCCTGCCAGAGTTCCTGGTTGGCTACCGGCTTTCCGTTAGCCGTCTTCCAGTCCCGCTTTTTCCAGCTCTTCATCCAGGCCGGGCCATCTTTTGTGTAGCTAACCGACTTGATAACGTACTGGGAGTTCAAGACAAACAGCAAAGGCTGCTGGGTCAGACCCAACTGTTCCAGCTTCTTCAAGCTTTCCAGAAAAGCAGTCATTTCCATTTCGTTATTGGTGGCGCCCAAACGGCCGGCACTATCAGCAAGCTGCTTGCCATCATGCTCGATCATGTAGGCCCAAGCAGCCTTATCGCTGTCTTGGACATGGGCCGCCCTTGCGCGTGCCGGTGCTGCCTGCGGCAGGCACCCCCGGTATAAATAACGGCAGAATAATCTTTCTTATCGTATTCTGGCTCCTGCTTAACTGCATTTTGCGGATCAGCTGGATCCAGCTTCAAGTAGTTCAAGGCATCCGACTCACGGCTGAAGGACTTGTATTCAGCTCCCGGGAAGCCGTTTACCTGCTTTTCAGCTTCCGGCCAACTGTAATAGATTCCTGGCTGACGGCCTTTTCTGACAGCATAAGTTTTTTTAGCTTTTTCTGCTTGCTTCACTTCAGTATCCGCAACTTGTTCCGCGGCTTCCAGCTCTTGATCATTCTTGATCTCTGCCTTGTAACGCCTCAGGCCAGGCAAGCGGCTGGAGAAAAGATTGATGATACTTACCAGGTCATCCACCAGTTCTTGGCTGGGGCTGGTCGCGGGGTTATTGATGACCACGATTTCACTTCCATGGCGCTTGCAGAAATTGGCAAACCAGTCAAAAGCCAAGCGTACAAAGCGGTCTTTGTGGGTCACGTAGATCTTGTTGACCTCGCGGTCTTCAACTTTCTGCAAGAGCTGATTCCATTCCGGACGGTTAAAATTCAGACCGCTGCCAATGTCTGACATATTCTCACTCACAGTAATGCCGTTGGCATTACAGTATCCAGCAAAAAATTCTCCTGCTTGGCCAAATCATCGCTTGTCCAAGCCGACGACACGCGAGCATAGATCACGTTTATTCTGCCGTCGTTGCTGGCTGCGCCAAGATACTCGTTAAGTTGCTCTTGGGTATAGTAACGCCGATTTGTGGCACTTCTTTCAGCCTTAAGTTTGCCCTCACGATCCCACCTTTGCAGAGTGGCAACAGAGACGTCAAGGATTTCAGCAGCTTCGCCTACTTTGTATTTCTACACGATAAAAGGCCCCTTCACATTGTTTGCTACTAGTATAACATGACTTGCATACTTGCTGTTGGCAGTTACACATAATAATGGATACGAATGGCTGCCACCGATTGCAATTAACTTCTAGGCCGCGACTTTTTCAAGAAGCAAAGAACAGCATCCCTCTTCACAGAATGATCTGCGCGAGAGGGATGCTGTTGATAAAAAATAGAATTGTTACATCTTGTCCATCTGTTCATTAACAAGGGCGTCAGCCAGGTTGTTGCCATCGCTATTAGCATGGCCAGTGACGTGCTGCAAAGTCAAATCGGAGAACTTAGAAAATTCCTTATCAATTTCCTTCCACAAGTCCGGGTTGGCAACTGCTTCCCCATTTGACTTTCTCCAGCCCCGTTCTTTCCATCCTTTGATCCAAGCAGTCCCATTGGAAGAGTCACTGAGGGCTTTGCGAACATAGTCTGAATCTAAGGAAAGCAGCAGCTTCTTCTGGCTAAGTCCCATGTCTTCAAGAGCCTTCAAGCTTTCAAGAACAGCCGTCATTTCCATCTGGTTGTTAGTAGCGCCGACTTTGCCGCCAGTAGCGGTCATGGCATGTCCATCATGCAAGATCACGTATGCCCATGCTGCCTTTGTCAGTTGGCAAAACGTGTTCACCTTCATTGTTGCGGCAGCCACCGTCGGTAAAAATCCAGGCATCGTATTCGGATTCAAGTTAAAATTATACCATGCCAATAAGAACTATATTGTTTTCTTTTTTCACTCACCTGCATCACTAGGTTTGAATTTCGTCTCAAAACCTTATCAAGGTTACACCCTACGTTATTCACATGTTTTAATAAAGTCAAAATGCATGGCCTGATTAAATATCAGCGTCATGCCTTTTTATTGTTCATCGTACAACAATAAAACTAATAGTCGTCCTGCTGTTTCCAATACCTAATATGTGCTGGATAACTCACAGAAACATGATCATCTTTTATTAGTATCTCAAGATCTTTCGGTCTTCCATGCTTCGCAACTGACTGTCTCACACTAATTGCTTTATCATGAACTAAAATATCAAGGTCTTTATCACGGCCAAAAATTGCAACTCCTCGACGAACAGAAACTATCTTGTCATGTACCAAAACGTCCAAGTCTCGGTCTCTACCTTGTTTCGCGACGGCTTTCCGCACACTAGCAACTTTATCTTTCACTAATATATCTAAATCTTTATCGCGTCCACATTCAGCAACGATGGCACGAACTTTCCAATCTGGATCGTGAACCAGTATATCCAAATCTTCATCACGGCCTTGATGGGCAACAATTTCACGAATCTTCTCATTACTGTCATTAACAAATATGCTCAGATATTTATCTTTTCCAGTAAATGCTACATAGCTACGCACTTTTAGATCTTTATCATGAACAAGTCTGTCTAAATCTTTTTCTCGTTCAAATGAAGCAACAATACATTATCTGAGGAATCATTACTTTCTCGTAATTTTTGAAGTTCTTCCTCAGTTACTGTCCAATAGTCATAGCTGATGTAACTTTTATACTTATCTCGTAACTTGTATTTCTTCATATGATTGAATACTAACCAGAAAAGCTTTTACCGTAAATCCTCATAGCCCGGCTTGGTTAAGACCTTAGCCGCGTAAGAACAAGTCGCCCGCAGTCTGGCCCCCTTCTCCCGGGCAGCAGAAGCAACGGTATCAACCAACTTCCGGCCCAGGCCTTGTCCGCCATAGGCTAGATCTACCTTAGTCGTTGTGATGATCCAGTGATCACCCTTATCTTCATATACGCACTGGCCAATCAGCTTGCCGCCATCATATACCGCGGCCCGCTTTTGCTCTTCTTCAAATTTGATTTCCATCTTATTCACCTAAAATTGCTTCTTCCAGCTTTTCAGCTGTATCGACAATCACAGTTGCCCCGTGTTTTTGCAAAAACGGCACGCTTCTAAAGCCCCAATTTACCGCGATTTCATCCATCTCAGAATTCCGTGCGGTCTGGATGTCAATTTCAGAGTCGCCGATATAGACGCACTTGTCTCTTGGTACGCCCAAGACCTTGACGCACTCACTAGTCATGTCCGGAGCTGGTTTGCGGCGGATCCCGCTTTTTTCACCCAAAGCAAAGTCGAAGCTGCCAGGGAAAAGCTCTTCGACCAGGACCTGGACGGCTTCATTTGGCTTGTTGGAAACGACAGCCAGCTTGACGCCTTTTTGACGGAGATTTTTCATCAAATCCAAGATGCCTGGAAAGGGACAAGTTTTAATCTGGCAATGGTCAGCGTAATAAGGCTTGAAAACTTCCAGGACCCGGTTAACTTCTGCTTGGGTAACGGCTTCAGGGATCCGTTCATCCTTGGTGCCAAAGGCGACCAGACTTTCCCGGCTGCTGCCAGCTTCATAGGCCAGGGCCCGGGTGACCGCCACCACGACCCCGCTGCCAAAGAAGTTCTTGATGTCTTCAACGGTAAAGTCATGCCGGTGGCCGGTTTGTTCAAACGCGTAGTTCAATGCACTTGTTAAGTCGGCGCTCGTGTCTAAGATTGTGCCGTCCATATCAAAAATCGCGGCTTTATATTTCATCAGTTTCACCTCGCTTTCATTATACCATCTGGCAGAAAAAATAGGCCTGCCCATATAGAGCAGACCTATTCCCTTCCCTGTTAGCGAGGGAAAAATCAATTATTCATCATCGCGCTTCTTGCACCAAGTTACTTGGCTAGTGTAGGTATCATTGGAGACGGTGCTGCTTGTCGCATCAGTGGTCGTTGTACTGCTGTCATTGGCAGTATTTGTTGCAGTATTTGTACTGGTGTCATTTGTAGTCGTTGCAGCGGTATCGCTTGTAGTAGTTGAAGCAACATCTTTTGTGCTTGCAGTTATCTGTCTGCTAGCGGAGGTAATTATGCTGCTCTTTTGCTAAGTAGTCGTCACCTCAGCAGCTGTATTGTCAGCCGCGGCTACCTTGCCAGGCGTAAATGTAATTGCCAGCCCGCCTAATGAAAAGCCGAGCAAAACAGAGGCCAAATCTGTATTGACCTTTCTGAAACTGTAATGTTGTTCATTTCAATCCATTTTCTGAAGCTTGTTTCTCGCAGATTTCTTCGCTTCAATCATGTCAAACTTCTTCCCATTTTTCCACGCAATAAATTAGAACACCATTCGCTAAGACTATTAGCGATTACGACCCGTGTTTTCAATTTATTTAACATACGTTTTCGAAAGTTTTTTGATTAAAATTTGATAGGTCATTTTTTATTCTGCAACTATAAGTCGCAAATACAATAAACAATTTATTATATCAATCAAAAAAGCTGTATCTATCAAAATGACAGATACGGCTTGGGTAGCATTTATAGAACTGTTTGAATTAACTTATTAGATGTGGCTTGCCCCACTTGCCGCGTCAACGTGTGCTTCTTGAGCAACAGCCTTCCCTGGTTCATCTGCTGTCAATCCAGCAATAGATTGCCCAGCCAGACGGCCAAAGGTGTGCGCGTGGCTGGCTGCCGGTCATTGTAGCTGCCCCAGAAGAAGCCACCGGCATCGTTACCTGCCGCATACAAGCCATAAAAGCCATAAAAGCCTGGAATTGGGTCATGATTTTCATCTAAAACTTCCATCTTAGTGTTGATTCTGAGCCCGTCAAAAGTTCAAAGGATGCGGCCACCCAGAACGCAGCCGTAGTAAGGCTTCTTCTTGATTGGCGTAATCCGGTAGGCTTCCTTAATGTAATCAGACAGGCCATGCTCTAAACGAAGAAACATGGTCCCGTTAAAAGATGCTTCAACGCTTTCCAGGCAGGTCAAGTTGACGACGGCTTGTTTGGAAATCTGCATGAAGTCCTGTCCCAGCTGCTGGTAGACCTCATACAGGCGCTTTCTGGAAAAATACTTGCCTTTTCCGGTGTAGATGACCGTATCGCCGCCTTCGACCCGGACGAGGATAGCGTCACTAGGCTTGATGATGACCAGGCGGTCTTCCTGCTGGGCGATTAACGGGCCAGAGCTGGCGCTGCTTTCCAGGAAAGCAACTGCCCGCTCAACCTCTTCAGTCATTTTGTCGGTATAGATCACTGCCAGGGGCAAGTCCTGGTCTTTATTCAGCTTAACTTTAACCTTCATGCTGGCCACCTTCTTTCTCTTTGGCTCTTTTACAGTATTATCGTATCGTTTTTTGCCGGTCTTGTCCCAGCTTTTCCGGTAAGATGCAAATAGAGCCTCCAGAGAAATCCTGGAAGCTCTATTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATAGCTCCCGGAGAATCAAGACAAATATCTGATTTAGGGCATGGTAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTTATTTCTGTAAAAGCAACATTAAGTCCTCATAGCCGATCACTGCCGTCCCTTTTTCAGCAGCTTTTTTACACTTTCCGGTGACATGATCCAGCTCGCCCTTTAGCAAGTAGTCAGTCACGCCGGACACCGAGCCGGTCACCTTGCCGCCGTGGCTTTGAATCAAACTGGTCAGCTCATATCTGGTTGCCTGGCGGAACTGGCCGGTAATCACAAAACGCTGGCCAGCCAGGCGGGAGTCAACCTGCTTGGGGGTAAAATCAATTATTTCCGTGGCTTTAGCTAAATCTCCGTCGAGGAGTTTCTGGTAAACGATATTGTTGGTAATACAATCGCTAATGGCAATGTGGAAGTTGATATTGATCCCATAGTATTCTTTCAGAGTCGACAGTCTGACGTTAGGGATAGGATCTGCAAAAAGACCCCTCTTTTTGTAACTATTGGCCAAAAGCAAGGTATCCAGTTTCGGATTAGCCACCGGATAGCCGTTATCGGCCAAAACATTGCAGTCAAAACTAAGTATATTGTGGCCAACCAAGGTATCGTCGCCGACAAAGTCCAAGAAGTCTGGCATAACTTCATCAATCAAGGGAGCGGCATCAGTTTGGTAATTGCTGATGCCGGTCAGATGAGAGACATAATCATTAATTTTCTCCAAGGGGTTAACATAAGTTGAGAACTTCGCTACGGTTTGGTCGTCTCTGACCTTTAATGCCCCAATTTGGATGATCTTTTTCCCAGTTGTTTCCAAGTCAAAAACCGTGTAGTCATGCAGTTTAGAATCCATCTTGCTACTTCTTTCTCTCAGTAAAAGCTCGGCTTTCGTCCAGCATGGCCAGAACTTCTTCATCTGGCAGATCATTATTGAGCAGAACTGACAGCCAGTTTTGCTTATTCATGTGATAAGCCGGGAAAAAATCCGCCTTTTTCAGCAAAGCAGGCATTTTTCCCTCAGCCAGCTTCAAATTAAGTACCGCGGCTTCCTGCTGGTCTTTCTCATCACCTGTCAACTTGCCTAGAAGCACAGCCATCAGCAAGCCATACCATTTCCGGTTCTGGGGATTACGGAAGACAGCGTAGTCTGGGAATTTCTTAAAAGGAAAATCCGGCTCATCACCGTAGCGGGTCTTAATTCCATCCTTGATCCGGTCTGCCTGGGCTTTGACGAAGCATTTACCGGCAATATCCTGCAAAATCGCCCTGTATTCCGCCTTGACTACGGCGCTGAAGCTGCCCGTGTTACTTTCAACGCGGAGTAAAAGATATTCCTCCCCGGTATCAAGATCATAGACGTTACCGCTGACCTTACCAGCTGAAGGAATTCTAATTTTTGCGAGGAAATTATCACTTTTCAAGGGAACTTCAAGGATAATAGTCATCACCATTTTTCACCTCAAATTAGCTCTTATATGCCGGGTTAGCCTGGCGGACAGAGCCGCCATATTCCTTAAGCAGGCGGGAAAAAGCCCTTTCAACTGAAGCTGGCAGGTCCACATGCGCTATATAGTCCTTCCCAAGCGGCCCATAACCATCTTTGTTGTCTCTTAAGCGCGGGATCTCACCCATGAGCAGGCTGATATAACGATCCATTGGCCACATGCCATGGATCTCCTTATCATAAGCCAGCTGTCCGTCTTTCTCCAAGACATGAACCTGGTAAGCCGCGTAATTAATGATGGTCAGCTCTGGCCGGTACTTGTGTAACACAGCACTTAAGCGCAGCTGCATGGTCGCGTCCTGGCAGAGGATGACCGATGACAGGTCAATATTATGACGGTTAAGCAGGTCTAACAAGTAAGTGATGTTGTTGCCAGAATTGGTCGACTGGCATTCAAGTAAATCGGCAGTAATCTGGTACTTTCTTTGTACATAGGCGGCAAAAATATCCGCTTCTGACAAAGAATCAACGTCCAGATCCGGAAAGACGGCTTTTGCCTGGGCCCGCAAGCCATCAGTCGTGTGGCCATGCCCACCGACGATGATGTATTTTTTGGCAATCTCAGCCTTTTTAGCCGCGGCAAAGACATCCCCGCCGGGCAAAATACTGCCGCCAAATAAAACGAAAGCGTCGGCTTGGGGAATGCCGTATTTTCCTTCTAAGTCTGCCGGGGTCAAAGCCGGCAAGTCGCGGGGGCCTAAGTAGTCAGCCAGGGTATTGATGTCGTTAATCATTTTTCATCTCCGGAAAAGGAATGATCGCTGGTGCAGGCACGGTATGCTCACCAAGCATCTTCTCCATCCAGACCATGTCATACCAGCGGCCGAATTTATAGCCGCACTGGTGGAAACGGCCGACAAATTTGTAGCCTAAGTGCTCATGGAAACGAATGCTGTTGTCATCCAGATACGGATCTTCACCAATAGGAGCAGCGATGCAGGCGTTCAAGTTGAGAAAGCCTTGCTTCTTTAAGCAGTCTTCTATCGCGTCATATAAAAATCTGCCTACATGCTGGTGACGGACATTAGCGTCGACATAGATCGACAACTCCACGCTGTGGTCATAAGCTGCCCGCTCCTTAAATGCACTAGCATAGGCATAGCCAACAATTTTGCCATCTTTAAGCGCTACTAGATAGGGATAGATCCGCAGAGTTTTTAAAATCCGGTTTTGAAATTCGCCAATAGATGGCACCTTATCCTCAAAAGTGATTGCTGTCTTCTCCACATAAGGAGCGTAGATTTCAAGCAATCTTTCCGCATCCCCGACGTTAGCCCTTCTTAACTCTAATTCAGTCAATAGCCTTCTCCATAAAAAACTAGCACCTACTTACTAACAGCTTTATTTTACCATGAAGGAAAAATAAACCGTTTTATTATTTTCTGCTTATAAAATAAATAACATATGGCATCATAAATCTTGTAAGCGCAGCCAACGCCGCTAGGAAAAAGATAGGTGATATTAGCATTGTGTTTTAAGGAGAAAAAATCATGACCGAATACAGAGCTAAAGCCCATGGTTTCAACTCGGAGATCACGGCAATCGTTGAAGTCGAAAATGGTGAAATCCTCAAGATCAGCGCTGAAGGCGAAGTGCCAAACACGGTCGGCGCTCTTGGGGTTGACACCTGGCTGGAAGAAGCCAACGCTGAGCATTCAGTCGAGGTAGATGCTATTTCTGGTGCCTCAGTTTCAACCGGTGCCTTAAGAAAGGCAACTCAAATGGCTTATGCGGAAGCTACTAGCGGGGATGTTGACGCTATCTCTTCTGCTTCTATTCATAACCAGCCTAACAACTATCCCCTCCTCAAGGAAAAGTTCTATGAAGGCGACATTGAATTCGACGACGAATATGATGTGATCGTTGTCGGTGCAGGGGGTGCCGGACTTTCTGCTGCAGCAACGGCTGCGGAAAATGATGCCAGCGTCTTGGCGATTGAAAAGCAAGGCATTACTGGCGGGACGACCAGCCTTTCCGGCGGCGTTATGCAGGCGGCTGGGGCTGGATCGGATCCTACTACCCAGGCTCAGGTACGGAAATCCACCAAGGCCGCAGAGCTGCTAAATCGATTCTTGGCTTGAGCTAATAACTTAATAGACGCAAAAATGCATCCCTGGTATGAAAGATCATACTTAGGGATGCATTTTCGCTTTACTCCAGCCCCAACCATTTTCTGTTTCTTTCCTCGATCTCCCGGGTCTTTTCCATGGTCAAACCGCCCGGCATGATTCCAATCGAAGTCTTGTACAAGAAGTCGTTCAAGTCATCTTGCTGGCCAGTCTCATAGAACTTCACCAGCTTGTGCCAAAAGTTTTCCCGCTCTTCAACCGGGACTGCCAGCATTGCCGCGTTATTTTGGACAAAAACATGGTTGGCCACCAGCTGGGCGGTGCGCTCGTTGCCATCATTAAACCACTGCTCTCTGGCAATATGGCCAAACAGATAGAAGCCTTGCTTTATGGGTGGTCAATCTCTTTTGCCAGTTGCAACACTTCCTCAATTTTTCCAATAGCTGGCATCCCCAGCTTATAATCCGTTCCCGTAATCCTCACCGGGTAGCTTCTGATCTCACCAGGCTTATCACACAAGCTCTCAAATATAATCCGGTTGTATTCCTTCACCAGATCCAAGTCAACTGGCCGGTCAAGGTTGGCCAGCATGAACTGCATCGCCCGCTTCAGATTGTGCACGGTAATCACTTCCTTGACGGTCATCCCTTCAGCTGCTTCCCCGTCGCAGATCATCTGAACCTCTGGCAGTCCAATACCTTCAACCAGTTCCGTATTGGCAATTTTCCAAACTACATCTGGCAAGAGCCTTTTTACTCCGTCAACCGCCAGATCCCGGTCAACCAGTCTGTATTCGTATTCCATAATCTTCTCCGCTTCAAAATAAAAACGCGGTCTAGCATTAATCCAGTCCGCGCTTATTTTCCGCCCGTCATACCCCAAAACGATGGTTGTGTTTCAACCAGTCCTTGACCAGTTCCTTAGCTACAGCATAAATGCCAATCAAAAGAACGGTCGCGATCAACAATGCAAACATTTCCTCTGGATAGATAGAAACGACAATTGCAAATACAACGAATGCTACAAAGCATACCAACAAGTCAATAATCTTCTCGCTAAGCATCATAATTACCCGATTTCTACGGAGCTTAGCGGGCGGTTTTATACTTATATTATACGCCAACTTCCTTGAAAACGCACTCTTGCCCCAGCCTTATTGCCTTAGCATCCGGCCGGTGGCCAATAAATTCAGTCTTGGCGATTGGAAGATTTGTTGGCAGCAGGTCCAGGAGAATTTCTTCTGGCAACTGGCTTTCCTTTAACTTGTCCAGCTCACTGAATGTCCCCAGCAAAACGCCGCTGATCTGGTTAAAAATCCCGGTCTCCCGGCATTGCTCAAGTAAACTAGCTACCAGCTCCGGCTGCCCCCGGTAGGCCTCCAGCAGCAAGATGCTGCCAGTAAAATCGGGCCAATCGGGCGTCCCCGCCAGTTTCAGCAGGCAGCGGAGGTTGCCCCCGTAAACTGGCCCTGCCATTTTACTTCCCCGGACAAAAGTGACTTCTAGCTCATCGAGCTCTTTATTTTTTTCTTTACCTGCCAGCAGGCGGTCAAAATAGCCGCTCTTCAACAAATCCTTGTTGACCAGACAATTGCTCAGCTGGAAGTTGACCGCTTGGTTGCCGTTTTTAGCCAGGGCCGTCAAGATCGTCGTCAAGTCGCTGTAGCCGTAAAAGACCGCCTGGCTGTCCTTGATCTGCTCCAGATCCAAGTGGCCTAAAACCGTATTGGCCAAGTCCCCGCCAGAAATGTCAAAAATATGCCCCATCTCTGGATCTAAGAAGAAACTTTCCAGCTCCCTGGCCCGCTTTTCTCCCCGGCCAATTAATGTATCATCGGTCAAAAATTGACTGACCACGACTTCCAGTCCCCGGTCTTCCAAGATCTTTACCAGCTGGTCAACAACTGGCCGATATGCTGCTTTTAAGGGATTTGAACACCCAACCAGGGCTGCCTTCATCATGCTGTCTCCTTTTCACATAAGCAAAATTATGTAAAGCTAATCTGCTATTGCCGCAAACCCTTAGGATAGTAATTCTTCAGCTGTCCCTTGCCAGAGAGTTTCCCAAAGCTGAAAATCATCCCCCGGCAGGAAACCAAGACGAAGCCCTTCAAGCTGCTATTTACTTGCAGGCTTTCCCCATGCAGGTAGTGGTCATACTCTTCTTCAGTCAGGTCAACCACTCTTTCCTGGTCAACTTGACCTAAAACTTCCGCCAGCTGGTGGCTTGGCTCAAAGCGCTTCTTCTTCAAAATCCCCAGTTCCAGACCGTTGTTAAGGACCTTGATTCCTTTTAATTGTTCAGGTTCAAGGGCCGGGACAAAGACGTGATCCTGGCTCTTCAGCATCTGGCTTGGCCAGGAAGCCAGACTTTCCGGCCAGTTAAAGCCGGCTATAGCTTCACTGATATAGCAGGACTCTTCCTTGCTTGGCCGCTCCAGGCTGCTTCTATTCCCTTTATTCTTGCCTTTGCCCTTTTTCTTCTTGTCCTTGTTTTTTCTGACCGGAGAAAAAACTTCTCCTGCTTCAGCTGCAAAGCTTTCTTCGCCAGCTGCCTTTTGCAGGCTGGCCACAAACTGCCCTTCACCAACACCGTCCTGTGGCCAAAAACGGGCACAGTTTGCTAAACTAGCATCCCCGTTGCCCCATTCCGGCCGGCCTGGCGCGGCTTTCTCTGCCGCAATTGGCAAAAGCTTAAAGCCATATTCATCCAGCAGCCAGCTGACGATCTCCTCGTCCTCTTCTGGTGAAAAGGTGCAGGTCGAATAGAGCAAATACCCGCCCGGCTTCAGCATCTTGACCGCTTCAGTCAAAATTTCCCTTTGCCGGTCTGCACAGAGGTCGACATTCTCCTGGCTCCAGTACTTGATGGCGTCCTCGCTCTTTCTGAACATCCCTTCCCCGCTACATGGCGCGTCCACTAAGATCGCGTCAAAAAATCCCGGGAAACGGGCGCTCAAGGCAAAAGAGTCGCAGTTCGTAACGACAGCGTTAGAAACGCCCCACCGCTCCAGGTTTTCTCGCAAAATTTTGGCCCGGGACGGCGAAATTTCATTGGCTACCAATAAGCCCTCACCTTGCAGCTTCTGGGCTAAAGCCGTGCTTTTCCCGCCGGGAGCCGCGCATAAGTCCAAAACCTTGTCACCTGGCTTAACTGGAATTGCCTGGGCCGGGAACATGGCTGCCGGGTCTTGCGAGTAAACCATGCCAGCTGTCCATTCCGGGTCCTTGCCGGAGACTCCACCGTAATAAGCGTTAGGGATGCCGGGCACCGCCTCTTCTTGCGAGTATACCACGGCTCCCTCTTTCAAACTGTTGATCCGGTAGGCCTTCTTGCTTGGCTCAGCCAAAGAGTCAAGTAGCTTACCAGCTTCTTCCTGGCCAAGCAGACCCGTAAATTTCTCCTTAAACTGGTCTGGGATCTCAATCATCCGCCTGTTTCCCCTTTCTGTACATATAAACCATCATTCCAACATATACTACCAGTTCAACCACGACTGTCCCGAGCAAAAGCAGGCCTAAAATGCTCTGGTTGCTGTAGTAGGCCTTCCACACCAAGAGGAAGTATGAGACAAAAGCTTCCAGGACCATAAAGACGATAAAACGCCCGCTCCGGTTCAAGAGTAGGTTTGGCAACAAGTCTCCCTTAACATGGCTCAAATCAGTTTCTTTCCAAGTCAGCCAGGCAATAAGACCCATCAAAAGGACCCCCACGCCCAGCAAAAAGAGGATCAAGAGGGCTTCTGGCATGAGAAGCGTCAATCTTCTTTGCCGGCCCTGCTTGACGAAGTCCGGCCAATAGGTCTCACTCTTTAAGTGGCTGGCGATCTTGCCGATCGTCTGGCTGCTGGCGTCCACGTACAAGGTAAAGTGATTTATTCGGCTTTGCCCGGTTTCCTGCTTAACCCCCGTCGTCAAGTAGTAGGCCTTGCTGGACTGGTATGGCACAGCTTTAAGGCTGCCGACAACTGAATAGTACTGGCCGTTGGCGATCAAGTAAGTATTGCCCTGGGTCTTGATCTGGGAAGCCGCTGAAGATGGGGAGACCGCCGCGATGGTGACCCGCCCTTTAAAGTCATCTTCACTGAAAAAGCGGCCACTGGAAACAGGGAAGTAGTTGAGGTCCCGGTTTTGTGACCAGATCAAGACCTGGTTCTTGTCCTCCTTGCTCTTAAACTGCATCTGGATGCTTTCCTTAGGGAATTCTTTCTTGATCCACTTAAGGAAGGAGGCAATAGTCATGGTCTTCTTCGGCTTGACGATCCGGGCCTCCATGCTCATCCCCTGCGCCTGCAGAATTTGGTCAGCCAGCTGGGACTGCATGTTGGAGCAGACGATGCCGATCATGATGAAGAGGAAAAAGGTGGACAAAATAACAAACAGTTTGTACCTTTTCATCAGCTCACCTCAATAAACTTTTCCTTGATAAAGTCGTAGGACTTAAAGCTGCGGTTAATCTTTCTCAGTTCGCTTGATTTGGCGAAATGCTTTCTGGTCCAGAATTCCGGGGAATTGGTCACCCCTTTTTCCCCGATGAAAAAGAGTCGAGCAGCTGGAGCGTAGTGCTGCTTGGCAGCGATCAGTTCCAAATCCGCCTGGCCGAAATTCGGCGCCCAGGAGCAGAGAATCATGTCGCAGGTCGCGTACTTCATGACTGCCTGGTCAGCTGGCAGGTTTTCAACTGGGTAAAAAGGCTTCTTCCCGGTCTTTGAGCTCTTGGACCATTCTAAAGAATCCGTGGCCCAGACTTGAATCCCGGCCTCGCTCAAGGCCTTAGACCAGTAGGCGTTGCCAGCCATAACTTCCAGGGCTGTCTCAATCCCTAATTCGTTTTTAAAAAGCTGGGCCGTCTCCATGTTTGGCAGTGACCAGATCCCATATTCCAGGGACAGGTACTGGCGGACATTGTTCAGCAGGTTGTTTAAAGCCCGCAGGTCCTTGATCTGGCTGTCAGGCAGCTCCCAGGTCAGCTCGGCAAAACGGTCATCACTTATGCCTAAGCGGTCTGGCGCGAACAGCAGCATCCGCTGGCTAGATACGCACTCATCGATCATTTTGATCTCTTGCACTTGCCGGTCCAGTTCCGGATCAGCAAATTCCTTGGCTAAGGCTGAAATTTTTTCAATAAATTGTGTCATATGCATTCCTCACCAGTTGATTTTATCATTTACCAACCTTTTGAGGTAGCCTGGACGATTGCAAAAAAATGACCTGGCTAAGAAGGCCAGGTCAAAACTATTCAATTAAATTACAGATCTGCCGCCAGGTCGGCCATTTCTTCGTCGACCCCGTTGGCCAGCAGCATGTCACGCGTCTCCAGCTTAGCTGCATTTTTCTTTTGCACCGGCTTTGGAGCCGCAAGACCAGTTGCCTGCTCGGTCATCTTGTTGCTGACGCCATTGGCAATCATGGTGTCCATCAACATTGTTTCTTCCGTGCTTCTCATTTTAACCAGCCTTTTTTCTGTAAAGTGCCTTTTTACTTAAGACTAATTATAGCACCATTTTAAGCATGAAAGCTGATTTTATGCGGATAGTAGCGATTTCCTTTTTTTACAAACTTTTGCCGTTATTTTCCCAAAAATTTAACTCTTCCTAGTCCCCGTCCGACAAAAATGCAGCAATTGCCGCGGTTAAGCCGGTCACGATTGTTTCCAAAGCCATTGACGGCTGATTTGGCCGCTTGACCACCTGCTCTGGCAAAAAAGGGATATGAATGAAGCCCGCCTGCATCCCCGGATGTTCTTTTCTCAAGCTCTGCGCGTAATACATGACATGGTTGCAGACAAAGCAGCCGGCCGTGGTTGACACTTCAGCCGGGATGCCCGCCGCTTTAATAGCTTTGACCATTTTCTTAACCGGCAGCTGGGTGAAGTAAGCCGCTGGCCCCTCCGGATCAATCGCCTGTCCTTCCCGCTTTTCCCCGTCATTGTCCGCGACCGGGCAATCATCATAGTTGATGGCGACTAGTTCTGGAGTCAGGCAGGCCCGGCCACCCGCCTGGCCCACGTTTAAGACAAAATCTGGCTCTTCTCTTTCAACAGCTGCTTGCAGCTTTTTCTCACTTTTCTGGTAGCTGGTCGGCAGCTGCAGCTTGATAATCTCACAGCCTGCGATTTCGTCTGGCAGCGATTTCACTGCTTCAATGGCTGGATTGATTTTTTCATGGTTGAAGGGATTAAAACCTGTCACTAATACTTTGGTCATTATTTTTCCTTTCTTGAAAAAAAGCCCCACTTGCGAGTAAACTAGATTCATATCCAAAGAATAGAAAGTGGGTCAAACATGTTTTTCTTCTTCCTCGAACCAGTTTTAATCTACAACTGGCTCCTTATCCTGGCCGCGGTTATCCCCGCCATCTTCCTAATGATCAAGGTTTACCAATCTGACCGGCTGGAGCCGGAAAGCCCCTACCTTTTGTGGAAAATGGTGACCGGGGGGATCTGGTCAGCGGTAGTTGCCGGCATCCTTGAATGGATCGCCAATGGCGTTTTAACTTCTTATGTCTCGCAAAAAGATCCAATCTACAACGTCATCATGTACTTCGGGATCGTTGCCTACGCTGAAGAAGGAGCCAAGTACTTCTTCTTAAAGCGCCGGTCCTGGTTCAGCCGGGAATTTAACTGCCAGTATGACGGGGTTGTCTACGCTGTCTTCGTGGCCCTGGGCTTCGCCCTCTGGGAAAATATCTCCTACGTCATGATCTACGGCTTCTCTACCGCCTTAGTCCGGGCTGTAACGGCCGTTCCCGGCCACGCCTGCTTCGGCGTCTTCATGGGGATCTTCTATGGCTTGGCCCGCGGCTGCGCCTACCTGGGCAAAAACATCCGGTCCAAGTTCTTCCGCGTTTTGGCTATCGTCGTGCCAGCCGCCCTGCACGGTAGCTACGACTACGTGGCTTCCCTTAATTCCGCTGAAGGGCAGTGGATCTTCCTGGCCTTCATCGCCGTCCTTTTCTTCATCTCCTTCCATCTGGTGAACAAGATGTCCAAAAACGACAAGTACTTCCAAATCGACCGGCGGAATTACCGCTTCTAGACTTTATTCACAAGTAAAAAATCTGTCCCTGCCTCCCTGGCAGGGGCAGATTTCTTTTTGCACGAATTCTTTTTAGTCCAGTTCTGCCAAGTCGTATGGCGTTTCCTGGTAAACGGCGTAGTTGATCCAGTTGCTGAAGAAGGTTGAGGCGGCCAGACTCCAGGTCAGGCGGGGCTTTTTCTCCGGATCGTTATCCGGGAAGTAGTTAACCGGCAAAAGCGGATTGATACCGGCATTAAGGTCTCTATGGTATCCTCAGACAAGGTGTCTCTGGAGTATTCCAAATGGCCAAAGTTGTAGATCTGCCGCAAGTCGTCACTAGCCGCGATTGCAACCCCGACTTCCGGCCCCTCCGCCAAAATCTGCAGACTGCACTTCTTTAATTGGTCTGGGTAAATCGTGGTATAGCGGGAGTGCGGACAGCGGTAGGAGTCGTCAAAGCCGCGAAGAAGGGGGCTGGTCCCCACTACTTCCTGCTCATAAATGCCGGACAGCTTCTTTTCCAGAGGCTGCTTGTCGATCCCAAAGTGATAGTAAAGCCCGGCTTGCGCTCCCCAGCAAAGGTGGAGTCTGGAGTAGTCATAGGTCTTGGACCATTTCAGCTGGCAGAGCTCGCTCCAGTAGTCGACCTCCTGGAAAGGCAGCTGTTCAACCAACCGGGGCGCCAGTAATAACCATCCCACTATATCATAGCGCTTGTCCTTGATGTAGGCAAAGGTCCGGTAGTAGTTTTCCAGGTATTCGTTGGAAGTATTTTTAGACTTATGACTGGCCATGTAGAGGAATTCCACTTCTAACTGCAAGGGCGTGTTGGCCAGGTGGCGGAGCAATTGCACTTCCGTGTTGGCCTTCTTAGGCATCAGGTTCACCACCAGAATCTTTAAAAACCGGATGTTCTGGGTCCGGGCTCTTTGCGAGTCCATGAGACAAAAATATTCTCCTGCCTTAACACATCAATGGCGGCTAACTGTTTGTCTAAAGTAATTGGCATAGTGCACTCTCCTGTCTGAATTCTTTTGTTTAATTTACCATTTGTTTAATTTACCATTCTTTCTGAAAAAAATGCTAACAAAAGAATTATACTTTTTAAACTTTTACAAAACGAAAAAAGTCCGCCAAAGCGGACTTTCTCAAGCAGACATCTTGTCAAATTTACTGTTTTAAAATTAGTCTTCGATGTTGAAGACAACGGACTTGACCCGGGTCATGGCTTGAATGGAGTACTTGACCCCCTGTACGCCTGCCCCTGAGCTCTTTACGCCCAGGAATGGGAAGTTGTCCGGACCTCTTTGGGTCTTGTTGTTGATGTGGACCGTGCCCACTTCCAATTTTCCTGCAATGGCAAAGGCTTTTTCAAAGTTCCGTGAGAAGACGGAGCTTTGAAGGCCGTATTCTGATTCATTGGCAATCATGACAGCTTCGTCAGCTGACTTGACGCGGATGAATGGCAATACTGGCCCAAATGGTTCTTCCCAGGCCAGGCGCATGTCAGTCGTCACTTGGTCCATGACCATTGGGTAGATCAGGTTGCCTTCGCGCTTGAAGTCAAACAAAGGCTTAGCGCCCTTTTCTGCGGCTTCTTCAATTAAGCCTTGTACGTAGTCGGCAGACTTAGTGTCGATCAAAGGAGTGATGTCGGCATCCTCTTCTGGTATCCCGACCGTCAAATCCTTGGCCAAAGCAGTCACCTTTTCAACCAATTCGTCAGCCACGCTGTCCATGACCAGAACCCGCTTAACGGCGGTACAACGCTGGCCGGAGTAGCCAAAGGCGCCGGCAACGATGTTCTTGGCCGTCAGGTCCAAGTCAGCGTCTTCCAAGACGATGGCCGCGTCCTTGCCGCCAAGTTCCAGCATAATCGGCCGCATCCCGGCCAGTTTGCCGATGTTCTTGCCGACAGCACTGGAACCGGTGAAGTTGATGAAGTTGACTGCCGGGTGTTCAACGATGTAGTCGCCGATAACCCGACCCCGGCCGGTAATGGTGTTGAAGACGCCGGCTGGCAGGCCAGCTTCGGCGAAGGCCTTGGCCAAAAGCAGACCGGAGATTGACCCTTGTGTCGGCGGCTTGAAGGCCACCACGTTCCCGCCCATCAAAGCAGGCGCGATCTTTGAGCCGGCCAGGTTAACCGGGTAGTTGAAGGGTGAAATTGCCAAAACCAGGCCGACTGGTTCCCGGCGGACAACAGCCAACTTGTTCTTGCTTGCCGCTTCAAAGTTGCCGCCCTCCATGACTTCCCCGTCCAAAGTTACGCCGACCTTGGCCGTGTATTCAACGATTTCCGCCGTCCGGGTTACTTCGCCGATAGAGGACTTGAGGCCCTTGGCGATTTCCTTGGACAAGGTAGAACCGATCTTTTCAGCATCTCGGTAAAGGATGTCCGCTGCCTTTTGCAAGTATGCGGCCCGTTCAACGTATGAGAGGGCCCGCCAGGCTGGAAGGGCCTTTTTGGCGCTGTTCATTACGTAGTCCACGTCTTCGTGGGACATGGCAGGTACAGTACCCAGGGACTTGCCAGTTGCTGGTTCGAAAATTTCAATCGCGTCAGCGGAGTCCCGCCATTCGCCATTGACATAGTTTAAATAGTGTTCTGTCAAGAGAGCAACTCCTTTCATGGATGCAATCACATCTATATTTTAATGCTTTTCTAACCATTTTCAAGCCTTTTTGCAGAAAAAGTACCTACCAATTTTCTAATTAGAGCAGACCATGCTGCTTCAGGTACTGGCGGGCCACCTTGCTGGCGCTCTCGTGCTTGACGGTCACCTTGTAGTTCATTTCCTGCATTTCAGCTTCAGTAATCTTGCCAGCAAGCTTGTTTAGGCTTTTGACGACGCCGGGATGCTTCTTGGCAAAAGAAGTTTTCAGCAAAGGCGCCCCTTGGTATGGCGGGAAAAAGCTCTTGTCATCCTTTAAGGCGACTAAGTCATACTGCTTGATCTGGGGATCGGTCGTATAGCCGTCAACGACTGCGACCTTGCCGCTGGCAATTGCCTTATAGCGCAGAGCAGGTTCCATAGTTTTAACCTTGAAGTTCAAGCCGTATTCCTTCTTTAATCCCAGGTAGCCGTCCTGCTGGTTGGCAAAGTCCGGATCAAAAGCAGCGGTTAAGGAAGCGTCCACTTTCGCCAAGTCGCTTAAGCTCTTAATATTATTTTTCTTGGCAAAAGCCTTCGTAACCGCCAAGTCGTAGCCGTTCTGATAGTTCATTGCTGGCAGGTAAGTCAGCTGGTCCTCCTCAGCCATCAGCTTTTTAGCCAGCTGGTAAGTTTTAGCCGGGTCATGCAGAGTGGCCACCTTCTTTTTAGCCAGGCCTTGCAGAACCGTCCCGGTAAATTCCGGATAGATGTCGATTTTGCCCGTCTTTAAGGCATTGAACAGGAAGCTGGTCCCACCAAAGTTGTTCTTAAGGGTCACCTTGACATGAGGATTGTTCCTTTCAATCAAGTACTTGTACATGTTGATCAAAATGTCTGGTTCACTCCCCAGCTTGCCAGCGATGACGACCTTCTCTTCTTTTGGCGCCAAGGCTTTTGGCAGCTGGCTAACTCCTAAGCCAATGGCAAAAATTGCCAGGACGGCGGCTGTGACACGGAAGTGCTTTTTTGATGAGGCCATGAACTTGAGCAGGCCGGACATGGCCAAAGTCAAGACAGCTGACAGACCAGCCCCGATCAAGAGATAGGTGTTGTTGTTTTGCTGGATCCCGATCATGATGTAGGTCCCAAGCCCGCCGGCCCCAATCATGGCAGCCAACGTGGCTGTCCCAATAATCATGACTAAGGAAATGCTGACGCCGGAAAGGGTCATGGGCAGGGCCATGGGGAATTCCAGGCGGGATAATTTTTTCCAGCGGCTTAAGCCAAAGGCATCGGCCGCTTCTTCCAAGTTGGGATCGATATTTCTTAAAGCCGAGTAGGTATTCTGGTAGATTGGCATGATCCCGTACGCAGTCAAGGCGATCAAGGCCGGAGTCATCCCGATTCCGACAAAAGGAATCAAGAGGCCGAGCAGGGCCAGACTGGGGATGGTCTGGATGATGCTGGTGATCTGGAAGACCACTTCCCCGGCTCTTTTGCTGTGGGCCAGGAGCATCCCTAAAGGAATGGCGATCAAACAGGACAGCAAGAGGGCTTCCATGGATAAGAGCAAGTGCTCACCTAAAGCCTGCCAGATCTGCCCTTGGTGCGACGATATAGTATTGATCAATTCACTCATCTCTTAGTCCCCCCATTTTCCAAAGTAGTGCAACAGGTCGCTGGACTTGATTTGGTAACCTGCTCCCTGGTAGGCAAATTGCAAAAAGCCAGCTTTTTCAGCTAATCCCGCGACTTCTTCGACTTTCTCAACTTCCGGCAGATCCGTTTCTGTAATTCTATTTACGTATGGACTAGCCAAAAGCTCAAGCATAGTGCCCAGCCGTGGCCGGGCACTCTTGAAGAAGTCAGCCACAAAAGAGTTGGCGGGCTTTTGCACGATTTCTTCCGGGCTGCCGACTTGCATCAAGCAGCTATCCTGGATAACCCCGATCCGGTCCCCTAAACGCAGGGCTTCCTGCATGTCGTGGGTCACGAAGACCACGGTCGTCTTGCTTTGCCGGTGCAGGTCAAGCAGGAGTTCTTGCTGCTGGCGGCGCAAGACCGGGTCTAAGGCACTGAAGGATTCGTCCATCAAGATCAATTTGGGCTGGCTGGCCATGGCCCGGGCGATAGCGACCCGCTGCTGCTGGCCGCCTGAAAGTTCTTTGGGCAGCCGGGAGATATACTTGTCCCCTTCCAGGCCAACCTGGGCCAGTAATGCTAAGGCCCGCTTCTTTCGTTCAACCTTTTTGACTCCGGCTTCTTCCAGCTGGATTGTAATATTGTCGCCTACCGTTAAATTTGGAAAAAGACTGCTGGTCTGCGGAACATAGCCCATATGCAGGCGGAGCTGGCGCAGGTCGTGATCTTTGACTCTTTTGCCGTCTAAGTAGACATCGCCATGAGTCGGTTCTGTTAAACGGTTGATCATTCTGAGCAAAGTCGTCTTCCCGCTCCCGCTGGGGCCGACTAAGACAAAAAGCTCCCCGTCATTGATTGTAAGATTTATCTGCTTCAAGATGACATTGTCTCCATAGGTCATCCCGACATCGCGGTATTCGATCATTTTCCCCTCCATCTCGCAGGGCATTCATGTAACTTAAATGGTTTCTCGACTTAGCATAAACTCTTTCTTAGCCCTTGTAAAGGTAAAAGCTACAGCTTTCCTCTTTTTCTTGGCCAGGAATCTATAATAGTTTCTCATCCTTCTATCTTGGGCCAGCTACTTATAAGAAAAGTGTAAAAGCAGTACTATTGCTTAGTCGGTATCTTCCAGGCGGGTATAAGCTTCATTCTGCTCTTGCTGACAAAGAACTTGTTTTTAGCAATTTCAGTTACTATACTGGTAATTAGATAAGTTACATGATTTGCCTAATTATTTGGGAGAGAAAAACAAATGAAAGTATCAACCCGTTTTAGCGACAGCATCCACCTCTTGGCCTTTCTGGTGATCTATAAGGGAAAGACCACTCTGTCCAGCAACATCATCGCCAGTTCTTTAAATACTTCGCCAGTTGTGGTGAGACGGTTAATGTCGAATTTAAGGGATGCCGGCTTTATCAAGACGACCCATGGGTCACCGGATCCAGAGCTATTAAGGGAGCCAAAGGATATCAGCCTGCTGGAAATCTATCTGGCAACTGAAGGAAAAAGCCCCCTTTTTGCCATCGACCATGAGACTAATCCGGACTGCATTGTCGGCGGCAACATCCAGCCAACCTTGACCGACTACTTTTCCCACGCGGAAACCGCGGCGGAGGCGGTTTTAGGCAAGATCAGCCTGCAGGACGTGATCGACACGATTTTGGTTAAAGAAGCCGCGAAAAAGCAGGCAGAAAACAGTAAAGACAAAGAATAAGCAAATATAAAACAGATTGCGAGGAAGCAAAATGAAATACACGATTACTGCCGCGACTGGCCACTTAGGCAGAGAAGTCGTTAAGTAATTAAATAAGTTAACTGATGTCAAGAACATCCGCCTGGCAGTCCGCAGCCCGCAAAAAGCGGCAGATTTAGCAGAAGCTGGCTATGAAGTCATACACAGCGACTACTACGATGTACCTACCGGGACAGACGTCCTGATTTACATTCCCAGCATCACTTATAACGTAGGCAAGCGGATCAATTCGAAAATTCTCTGGAAGCAATGAAGGAAGCCGGAGTCAAGCACCTGGTTGACGTCAGCTTCATGGCTGACCAGGCCAATAATCCCTTCCAGATGGCAGCAGGCTATTACGCCTACCTGCCAGCCCGTTTAGCTTCTAGCAAATTGTCCTATGCCGTGGTCAAAAATTCTCTTTACGCTGACCCCTTGGTCCCATACCTGCCGGAGTTGATTGCAAGAGGCAATGTGATCTACCCGGTTGGCGATCAGGCGATGAGTTTTATCTCAAGAAAAGACAGTGCGGAAGCTATTGCCAATGTCGCTGTCCGGCCTTACCTCAGAGACAAGGGGCAGATTTACCTTTTGACCCAGGAAAAGAACTATAACATGGTTGAATTAAGCCGGATCATGACTGAAGTTACCGGAGAAAAGATCGGCTACCAGCCGGTCAGCCTAGAAGAATTCGCGAATATCTACCGGGCTGAAGGCGACGGGGATGAACTGGCCTCCATGTACAAGGCGGCAGCCATGGGCTTGATGGACGGAGTTACTGATGACTTCACCCGGATCACGGGCCATACCCCACAGAATATGAAGGACTTTTTGGCAGAAAACTATAAGAAGTAAGATGAATCAGCTTTAACAGCAAAGAAAAAGGATGCAGCTCTACTGGGTTACATCCTTTTATTTATTTAGGCAAATCTGCCGTATGTTCCAAGCGGTCGATCCGCCGGTCTAAAGTCGGGTGGTCAGAGATCAAGTTGGTCCACCAGTGCTTGACTTGGAAGTTGTTAAAAGCTAAAGCTGAAACCATGGGGTTCTCCTTTTGCTTCTGATATTGCTGCTCAATAGCTTCCAGCTTTTTCAATGCACCGACAATGCACTTCGGATTTCTGGTCAGGTCGACTGAACCAATGTCCGCCAGGTATTCCCGCTGCCGGGACATAGACAAGTTGAGCAATTTGGCGATTGGCAAAGCCACGATGAACAGGCCAGCGCCAACTGCTAAGGCAATCGAGCCAAAGAACCAGCAAATGAACTTAGTGATAACCCCGCCATCCATCTTAAACAAGGTCCAGCCAAGAGCCAGCAAGTAAACGGCAGCCAGGTAGATAAAACTGGATAGAGCTGAGGTAATCGTCGTTACCCGCAAGTCATAGTTACGGATGTGAGATATCTCGTGGCCGATCACGCCTAAGAGTTCATCATGGTTCATGACTTTTACAAGGCCGGAAGTAACCGCCAGGCTGGCATGCTCCGGGTCACGGCCGGTCGCGAAGGCGTTGGGGATATTGCTTGGAATGGCGTAGACTTTCGGCATGGGGATGCCAGCGGCCAGGCTCATCTCCTCCACCATTTCGTAAAGTTGAGGGACGTTCTCTTGGTTGATTTCCACCGCATGGGTGATCCGCATCAAGTGTCTGGTCGAATAAAAGTAGATATAGACCATGTAAATGATTCCCGCGGCTAAAAAGATCATGCCGGCCCAGAAGGTCAAATAAACTGACAACAGGCCCGCAATAGCTAAAAGCAAGGCCGTAAAGCCACCCAGCACGACCCAGGTATTGCGCTTGTTTTGCTCGATTTGCTGATAAAGCATATTCCATCCTCAATTCTTTTCATAAAGCTAATTAAAGGATACTAATTGGATGGCTTTGGCGCAATAGATAATTACAGAGTGATTTAGTTATATCGCTTGCTAGGATAAAAATAAGACTCCGAACGATATTTTATCATCCAGAGCCTAGGGGCTAGTGCTTATATAAATTGAACTTTGTGTCGATTGCCAAAATATAGAAAATGTTACGGTTGATTTTACCAATTACTCGACCTTTGTCATTTAGCCGAAATACCCAGTAGACGTCACCATATTCTTCTAAGCGTCCAGAGCTTGAAAAAAATGGGTTAATGCTTAAAGAAACCACATTATTAGGGAGTTGTTCGAGACCTTGTTCTTTCGCCCACCCCAAGACAACCGATATTTCTTCAATAGAGAGCTTCTCTATTTTCTCCAACAACTTCGCCTGGACATTCTTATCGATACTATTGTTGTTTTTATCAAGATTGTATCGTTTGTCTCTTGTGAGAAAAGAAAAATTAAACGCAAAATATGTCTTATACGTCCTTCTGATTCTTGAGGCATTAGACTTGCGTGTCCGAAAGTTGCCTTTAATCATCGACAACGAACACCTTACTGTAAGTCATTTTTCTACCCTCATTCAATAACCATTATTTTGCCTATTATTATGCGTTCAACACAGTTTGTCTCGCAAGCTACAGGCCTTACCATTCAATCCACGTTCTACTGGCATTTTGCCAATTAGTTATTTAGATTAAGTACTCCCTGCTTCAGCCTTTGCATCCCGTCAATTACCAATTCTTTCGGGCAGGCCAGGTTGATCCGGACAAATTCATGCCCATTGCCCCGGTAGCCGTTCCCGGCAGAGATGATCAAGCCCGTCTTTTCCCTCAGGTACTTGCAGAAGTCCTCCGCGTTCATCCCAAGAGCGCTGATGTCGACCCAGGCAAGGTAGCTGGCATTTGAGTCAAGCACCTTCACTTCCGGCACTTCTTTTGCCAAAAATTCCCGGGCATAAGCAAAGTTGTCCCGCAACACTTGCTTGAGCTCACGGAGCCAGTCATGGCCTTCTTCATAAGCGGCAATAGCTGCCGGGATAGCCAACAAGTTTGGTTCCCCGATGCCGGCCAGGAAAAAGCTCTCCCCAGCCCGGGCGCGCAAATCCGGGTTAGGGATAATCGCGCAAGCCGCGTGCAACGCCGCCAAGTTGAAGGTCTTGCTTGGTGAGATCAAAGAAACTACCCAGTTTTTGGCATCCCAATCTACCGTAAATGCAGGGGTAATGTCTTCATCCGTCAAAACCAGGTCCCCGTGAATTTCGTCAGAGATCAAGAGGACCTGGTGCTTGGCGCAAAGTTCCGCGATCCGCTTGACTTCTTCCTCGCTCCAGGCGTAACCGATTGGGTTGTGAGGGTTGCAGAAGACCATCATCCGGACAGACGGAGTCGCCAATTTTTCTTCCAAATCAGCCCAGTTGACCGAGTACTTGCTATTTTCATAGATCAAGTCGCTGGAAATTACCCGGCGGCCATTGCCCTCAATGACAGAGTAAAACATGTTGTAGACGGGCTCCTGGACCAAAATTTGGTCGCCAGGGCTGGTGAACTGCCGGACCATGGCAGAAATCGCTGGCACGACGCCTGAGGCAAATACGCACCAGTCTTCTTTAGGCCGGGCGCGGTGCTCAATTTCTTCCCAGTCAGCTACAGCTTTGTAGTATTCAGCTGGCACGCTTTCATAGCCAAAAGCCGCTACTTTTAGCTTTTCTTCCATGCTGGCCATAATTTCCGGCGCGATCTTAAAGTCCATCTCAGCAATCCACATCGGTAGCTCTTTTTCCTTTAAGACGCCCCACTTGATGGAATTGCCCTGCCGCTTTGGCACATGTGTAAAATCATATTGCTTTTCTGCCATTTTTGTTACCTCAATAATCAATTACCTTTTTCGCAATCTATTTTATCTACAAAGTAAGCATCTTCACGTTTTGGAAAATCACCTGCAATTTTCAAGTTTGCAATATTATGCTGAATTGAATAGATTGCCGGATCAACAAGTACAAAGCCTAAGTTCCGATCCTTATCTCCAGATTTCAAAATAATTATATCATCAAACTAACAACCCGTTCTCTCTCCAATGCCTATAACGAGAAAGACAGGTTCCTTTCGGAACCTGTCTCCCTCTAATTACAGCACATTTGCATTAACATATCTGTTCTTGCCAATTCGGTAGTAGTACTTGCCATGAAGCTTCTGTTTCTTGCTTAAAAGCTTAACCTTCTGCTTCTTTTTCAGATGGCCAACTACCTTCCCTTTCTTGTTATAGACCTTGGCATTCTTCCTTGCGCGAACTTGCTTAACCTTCTTAGTCTTTTTCGGCAGGCTGCTTGCCAGAATATATCTGTTCTTGCCAACCCGGTAGTAGTACTTTCCATGAAGCTTTTGCTTCTTGCTTAATAGCTTGACGCTAGTCTTCTTCTTAAGCTTGCCAACTACCTTGCCCTTCTTATTGTAGACTTTTGTCAGCTTAGTCAACTTGACCTTCTTGTAAGTCTTAGTCTTCTTAACTGTCTTCTTGCTTGCCTTCTTAGAAGCCTTCTTGTTCTTCTTAGCACTAGTCTTCTTCGCGCTACTCTTTGAAGTCGTCTTGCTGTCAGTCTTTTTATCATCCTTGGCAGATGGCTTGTTATCGGACTTAGCTTCGCCATTGCCGTCCGATTTGACATCACTCTTAGTGTCAGTCTTCACATCACTCTTGGTTTCTGCCTTGTTATCAGACTTAGAATCACTCTTGCTGTCTGACTTGCTATCGTCCTTGTTTTCCGGCTTAAACTCGGCAGTCTTTTCTTCAACAACCTTCTTGACTTCATAAACGACAACAGCAGATTCGTTGTCATCCCCGTCGCGGTACTTGAACATAGCCCGGCCGCTGTCAGTCAGCTTAACTTCGCCATCAACCTTTGACCAATCCTTACCATCAGTTGAGTAAAGCAAAGTTACTTTTCCGTCAGCATCCTTTTCAGCCTGTTCAACGTTGCCAGCCTTAACCTCAACACTCTTATCAGCTTCAACCGTGCCAGTCAAATCTGGAGCGGGCAGCTTCCGTTCTACCTTGACCACACTGGTGTAGACTTGGCTCTCATTGCCAGCGTCGTCATAGCTCTTGAATTCCACAGTTCCGTTGTGGGTCAGCGTAAAGGCATCCTTGTAGTCAGTCCAGGACTTGCCACCATCAAGGCTGTACTTGATGTGGTTGAAGTCCTTGTCAACATCCTTCTTGTCAAAAGCAAGCTCAGCCTTGACCTTGCCTTCTCCATCCGGAGTCAGCTTCAATTCCGGCTGGGCAGCGACTTCCTTGACGATATTCTTGACTTCATAAGTCGTAACCTTTGACTCATTGCCGTAAACGTCTTGGTACTTGAACTCAACCTTTCCGTTTTCGGCTACCTGTACAGTATCCTTGTCCAGCTTGGTCCAAGTCTTGCCGTCAACTGAGTAGTAGAGATCAGCCGCCTTAAACTTGCCAGCAGACTTTTGTACATCGGACAGATTTCCGACCTTCAGCTGAACAGCTTGGTTGGTCTTCTTGCTTTCTGAAGCGGAAACCTCCGGTGCCTCAAGATCTGCCTGGTGGTTGTACAGGGTAAAGTCTTGTTCAGTTTTGTTGTCACTACCATCAGTCAAAGTGACCTTGACCTTCCGGAATCCGTCTTTCTCAGCCTTGATCGGGTAGCTGACCTTGACTGCATCCCTATTCTTAAAGAAGTCTTCGTTAAACACCTTGTAAGTCTTGTCTTGGTAGGCTGTATCGCTGCCAACTTGCAGGCTGTATCCGCTCAAGTTGTCATTGATCGTTGCCTTAAGATCGTAAACATCCTTGTTGGTGTAGACAGCCAACTGGCCATCCTCACCTAAGGACATCCCTTCCAATTGCAGGCTTGGCGCTGCTAAGTCAACCCAGAGCTTGTAGCCCCATTCGACGACTGGCTTGCCGTCATTAAGCCGTGGATCTTGAACCAGAGCAGTCAATGAATGGTTGCCGTTCTTTAAGTCTTTGATCGTGTAGCTGAACTTCAATGTATCTGGGTCGTACTTAACGTCATCCCCGTTTAACTGGAAGCGGGCGACTGGGTACGCGAGTTTACCCGTTACTGTGAAGCTGTGGTCCTTCTCATCGTAACCCGGCGTCATCTTGCCAATAACCGTCAGATCGCTGGCGATATTGTCAAAAGTCAGCATATCCTTGTTGTAAGTGTAACTTCTAGCGGTGAAAATCGTTACGTCCTTCTTTGTAACATTGCCATCCGCATCAGTTGCCGTCAGTTCAAAAGGATTGTCACCGTAGTTCAAGTCAACCTTTTGTGAGAACTTGCCGTCCTGGTCAACCGTTAACTTATCAGTCTTGCTCTTGTCAGACAAGTTTGTCAGTTCCAGTTTGCCGCTTTCGCCAAGGCCAGATACCGTCCCGGATAAAGTATAGGAATCATCCTTAGCCAAAATGCGGCCTGATCTTTCTTCGTCAACGCTGACTTTCGGGCCTTCAGCCTTAACAGTGAAGTTGACTGCTTCAAGGATTTGGTCCCCATCCTTGATCAAAAGCTGGTTTTGTCCATCCTTGACTGGCAGCTTAACTTCAAAGTAGCCATTTTTATCGCTTTCTGCCTCGACATCATTAAACTTAAGCTTGGCATTCTTCTTGTAAGTACCAGTTACAGTGTAAGTTTCTTTCTCTTGATCGTAAGCCGGGCTTTGACTAGTGATCTTTTGACCGTCAGCTAAGTTAAAGAGAAGAAGCTTGTTATCAGCATCGTTATTTTGACTGGAGAAAGTTGCAGCATAGCCAACATTGCCGGCATAGTCAGCCAAAACAGTTTCTACTTGGTTCTTGCCGTCCTTAAGTCCAGTCAAGGCAGACGTTGACTCGTAAACATTACTTTCTCCCTTAACCGGAGCCAGCGCCAGCTTCTGCTCTTCACCGTTTACTGCCGCAACAAACATTGTCATGTCAAGACCGCTGCCGGAATCCTTAGCCTTCAAACGGAGCTTGCCATCTTTGGTAACCTGCAAGTCACTCACTTCTGGCGCTTGGGTATCAACCTTGACAGGGATGTTCAATTCCTGCTTGCTGCCGCCAATTGCTGGGGTAAATTCAACCTTGTAGATGTATTGCCCATCCTTGACGACTTGGCCGTCAGCGTCAGTGCCATCCCACTTGTCCAGTGAGTGGGTTGTCCACTCACCGCTTGAAGAACTGTAGTAATCTTTAGTTCCCTCTTTGCCAACGCCCAAGCTCTTAACTTTGTTTCCTTGAGCATCAGTAATCGTTTCCGTGTATTCCTTGTAGTTCCGGTCAAAGAAGAGAACAGGATATGCGTAGTCCCGGCTACCATCGCCATTTGGTGAAATCGCGATCAGATCAGGATCAGTATACTTGCTGTAATCATCACCCTCATAGCCAGTGTGACCGAGCATATCATTGTTGTTAGAAAACATGACGCCAACCAGGGAGTGAATTGTGTTGATTAGATTTGAATTGCCACCTTCATAAAGCATTGGTGCGCTGACACTCGCTTGACTGTAGCTGCCGAAAAAGCCCATGTATGGAAGAACCAGGTTTGGTGTTGCCTGGTCTTTTGCTTCAAAGCCAACATAGCCTTCAACAAAATTTTGCCGCTGGAAACTGTATGGCAAGGTCAAGGTAAAGCTTACATCCACACTTTCGCCAGGCTGGACAGTTACCTTTGGCGTCTCCGTCGTCAGCTGTCCCTTAACAATCTTTGTGTCATAGATTTCGCCACTCTTCGCTTCGGTTGCCTGGGTGTATGGACCGCCATAATTATCAACTGCATAGGTCTGGGCCTTCTTACCATGATTGGTCAAGGTAACCTTAAAAGTAGTCTGCCGGCCAATTTCTTTCAGGGCTGCTGCCCCGTTGCCGTTGGCTGCCTTAACCTCAACCGTATTGTTGATGGCATCTTTAACATTGATTTCGCCACTCCCTTGCCGGCGGGGAGAAATAATTTCCTTGGTATGCTCAGTGTCATAGACGGGGTGCGAAGTGTTCATGGCTGAATTCTTAGCAAATTGTACTAATTCTTCCCCGGACAAGTTCAAACCTTGTTTCTTGATACCTTGCAAAATTAATGCTTCGGAACCTGCGACAAATGGTGAAGCCATTGAAGTCCCACTCATTTGCTGGTACTTGTTGTCGTTGGCCAGCGAGTAGATCTTCCCGCCTGGAGCAGTGATTTCTGGCTTGAAGTCTAATTCAGGAGTTGGTCCCCAGCTGGTAAAGTCACTCATCTTTCCCGCGCTGGAGTTATCGATTAAAGCAGTACCGAATTTTAGCTTGATGCTCTTACCTTCTTTTGCTGCTTTAGCCAGAACTTCCCCATCAGCCTTACTCATCCCCAAGGTTGGGAAAGTCTTGTCGTCCAGTGACATTGAAAGTAAGCCGTCATCCTCGCTATTGTAAATGACGATCCCTGCCGCGCCAGCTGCCTTGGCATTGGCAACTTTCGCTGAGAAGGTATAAGCTCCCCGTTTAACAACTGCAAGTTGTCCCTTAACCTCAGCCTTCTTTTCAGCAGTATAGTCATCTGCACCGCCCAAGCCCATGTCAACAAGCTTAAGCTTCTTGGTTAAAACGGAATAGTTGCTTTCCAGCTGGGTTGTTACTTGTGCAGCACCCTTCAATTCTGAATTTGAGCTAAAGGTGACCCCACCGAGTTCGTCTTTAACTGTGTCGGTGGTCACCTTGCTGTTTTCAGCAGAGGCAACCGTCAGAGCATCCGGTGTAACCCCTGGCGTGCCAACAGTACTGAGTTCACTTGTCCCGGTATTATTGACTGGATTGCCATCCGCAGTCGACCCGGCAACACCGGAGTTCCCAGCAGAGATAACATTAATGACGCCAGCCTCTGATGCCTTTGCTACGGCTTGTTGCTGTGGATCACTTGGATCGACATCTGATGAAACTGAGCCCAAACTCATGTTGATAACGTCGGCCCCCAGCTTAACTGAATCTTCGATCGCGGAAATGATGTCGTCATCATAGGCTCCAGAATTCTTGGCATTGTTGGAGAAGACCTTCATTGCCAAAAGCTGGGCATCAGGAGCAACACCTTTGACTTGTCCATTGGCCCCGGCAATCCCGGCCACGTGCTGGCCGTGCATTTCGCCACACCCATTGTCCACGATTTGGTCGTTCTTATCAGCGTAGTTATAGCCGTAAGGAACCTTCTCCGTGTAATACTTCCCATGACCTAGCTTACTCTTGTCGCTTTCAACCTCACTCTTACTCAACGCGGTGCTGACGCCACTGTCCAACTTCAAGTCCTGGTGGCTGGAGTCGATCCCTGTATCAATGATCGAAATGACCATACCTTCACCCTTGAGCTTTTGTTCTTGCCAAACGTCCTGCACTTGGGCCATTTGATCAGCACTCTCATCGGTTGGGTGGTAAACCTTGACAGGCGTAACGTTCTTAACCTGGGGCAGATCCTTAACCTTGTCGATATCGTCTAAATCCATATCGATTGAAAAAGCATTGACCAAGTAGCCGAACTGCCGGCGGACCTTGTTGCCGGTGATTTCTTCTACCTGCTTGATAACCTTTTCTTGACCATCCTTGACTTGGTCACTTGCCTGCTCAATCTTTTTCACCGAGGCAGCTGATCCAGTCGGCTTACTGGTGTGATCAAATGCCGCTGACTTGTTCAAACTGACAATCACCCGGACCGAGGACTCATTCTTCTTGCTGACAGCTTGGCCAGAAGCCTGTCTTTGCTCTTTAGCAGCCTCTTGGAACTTGCTGTAACTCTTCTTAGCGTTATAGCGCTGCTCTTGCTGCAAGTACTTAGTCAATGCTGCCCGGCTAGCCGACCGTGGACTAACCGTTTCTTGACTGGCAGCTTGGACAAAAGCGGCTGACTGGAAAGTTCCCGCCAGTGGACTCGCTGATAGGAGCAGTGCTGCGGCTAATTCAGCCACTTTGTTCAAATGGCGTGCGGATTTTTTCTTCTGCATCTGTTTCCTTAACTCCTTTAGACAAATAAATATTTTTATTAGCAAGCCTTTCATCACGCAGCTTCGGCTCACTAACATTTCATAATCATACCATAGTTTAAATTAAAGTTAAATGTTTTTTAGCAGAATTTTAAATCAAACAGTGGAAAAGTAATTTCTGAACGCCAAAAAACAAAAAGCACATTATTTCAGCAATACGCGAGAAAATAACGTGCTATGAAGTTAAAAATCCACAAAATACTAACTTCAAAGTTGATTCGCTAAAGTCGTGGTATAGTGTTACCTTTTTGATTATAATAACACCGTCCCTATTTAAACATAGTTCCATCTGCTTTTTCATTTAAGAAAAGAATATTGCCAAATTTTAGATATAGCTTTTTAAGTTAGATTCACATTAAATTTTTTCACTTATAAAGCAAAAGAAAAAGCAGCCAGCACCTGCTGACCGCTTTCTAGCCTTCTATCTCTTTGATCATGTTGTACCAGATTTCCCCGGCATGCTCTGACTCAGCTTGCCCATGGTTGACGTAGCCATTCTTTTCGTAAAATGGCACCCGGTCTTCCAGACAGGTCAAGGCGATCCGCCCCCGCTTCATTTCCTTAGCGGTCTCCGCGAATCTATCTAAAAGCTGGCTGCCAATCCCCCGGCCCCGGTAATCCGGATGAACCGCGATGGTCAAGACCATTTGGTTGCCGCCGGGACCTGCCAAACTCTCTGTCTCTTTTTCATACATCCAATCCTCGATGTAGTCATACTTGCTGTCAACGACTGGCCCGGTAATAAAGCCCACGACCTCTTCCTCCAAATTTCTGGCGACCAAAAAGCTCCCGGTAAATTTCTGAATTCTCTCTTTATACTGAGCCGGACTGCCTGCTTCTGCCTCATTGAAACCAGCTCTTTCAATTTCCACGATCCTGTCTAAATCTTCCGCTCTTGCCTAGTCAAATTTCAGCATGCTCTTCTCCTTGAATGCAAAAAGCACGCCTCTGTCAATCCAGAGAACGCGCCTCGTTTTATTCTTTTTAAAATTGTCTGTTAGATAGCCATCGCGTTAACTTCAGCAGCCACGCCCAGCTTAGCTAAAAACAAGGCTGGAGTGTTGGCATTCTCAGCTACAGCGCTGCGAACTTGCTGGTTCTTGTCTTGGGCCAGCTTCTTCAGGACAGCTGCGTCTTCGCTCAGCCTAGCTGCCAGGATTCGCAGACTTGCGTAGTTTGAGCTAGTTTGCTTGCCCAAGAGAGCAACCCATTCCTTCTTAGCTACGATTTGGTCCAGCTTCAGCCATTCAGTGACCTTGCACTTGCCAAAGTCAGTTACCTGGCCCCAGCTACTTACTTCGTAAATGGTGATGCCTTCCTTCTTCACTTGGGTATTGGCTGGCGTTGACAACAGCGTCTTCCAGCTTTTCGTAGATAGCCAGGTAGCGGTTGTGGTAGGTCTTGCCTGCCAGGTAGCTGCGGCCTTCACGGAAAAGCTTGCCTTCCTTAGCTGAGAATACAAGATATCCCTTAACTGCTTGTTCGATAGTTACGTTAGTCATATTTACCTCTCCTTGAATAAATTTAACTAAATAGGCAAAAGTACAAGCAGGACAACCTCCCTTGTACTAAACAGTCACAAATTCAACAGAAAACAGAATAGATTAGAGGTAATACAAGTTATGAACGAGACAATCACGCAGCTGATTCAAAACTATGGCTATGTCGCCGTTGCCTTGTTGATTGCAGCTGAAAACATTTTTCCCCCAATCCCTTCCGAACTGATCCTGACCTTTACCGGTTTCCTGACCCTGTCTGTCCCGGGAGCCATCATTGCCTCCACGATCGGTGCCTTCATTGGCGCGGTAACTCTCTATTGGGTCGGCACCTTCTTTGACCAAGACCGCCTTTCCCGCTTCGCCGCCAGCAAGGTCGGCCGCCGCTTCGGCCTCTCCCCGGAAAAAATCACCAAGACGGAAAACTACTTTAACAGCCACGGCCGGCCAGCCACCTTCTTTGGCCGCTTTATTCCAGTCGTCCGCAGCTTAATCTCCCTGCCAGCCGGGATGAGCCGCTTCACTTTAGCCCGGTTCAGCTTCTACACCATCCTGGGCACGGCAATCTGGAACACGGTCTTGATCTACGCCGGCCGCTTTGCCAGCAATGCCTACCAGCAAGTGGTCCAGGAATTTGAAGGCCTTAGCTTGATCGTGTTAATCGCTTTCTGCGCCATCGCAGCCGCTGTCTACCTGCTCAAGAAGAAGGGCCTAATCTTTAAAAAATTTTTTTGCCTTTGATCTTGACAAAAGTTAAATCCGTATTAGAATTTTACTTAATCAAATAAGTCAAAAGATGAGAAAGACGAGTAGGAAAGCACAATCTTGCAGAGAGTTGCCAGCTGGTGAAAAGGCAACAGACCCTGGCTTTCTGAATAACACTTTTTCCAGATCGCCGGCTGAAGTCACAGTAAGCCGTGCCGCCTGCAGGACGTTACCCTGCTAGAGCATGTTGGTGCTCGAAGTGGTTCGTTTAGAACAAGGTGGGTGGTACCGCGGAAAGATGCCTTTCGTCCCTGTAGTTTTTGGGGATGAAAGGCTCTTTTTATGCCCTTTTGACAAATATTAGATTTTTAGCAGAGGCAAGAGATATGGCTAAATTAGTTATTCCAAGTGATTACGATCCGAAAATGACCATCCGCGAAACGGAAAAGGCAATCCGCTACATCCGGGAAACCTTCCAGACTGAATTCGGGACCGCGATGAATCTGGAAAGAATTTCCGCTCCTATGTTTGTCAAGAAGTCTTCCGGCTTAAACGACAACCTCTCTGGCTGGGAAAAGCCGGTTTCCTTTACCCTGCACGACGGGAATGAAGGCGAATTGCAAATCGTCCACTCCCTGGCCAAGTGGAAGCGCTGGGCCCTCAAGCACTACGGCTTCAGCCACGGTGAAGGCCTCTTCACCAACATGAACGCCATCAGAAAAGACGAAGAAGTTTTGGACAACCTCCACTCCGTTTACGTTGACCAATGGGATTGGGAAAAGGTCATCGACAAGAGCGAACGGACGGAAGCAACCCTCCGCCAAACTGTCCAGCGGATCTTTGAGACCATCAAGGGGATGGAATACCACGTCCGTGCCCTCTACCCGCAAGCCGCCTACCACCTGCCAGAAGAAATCAGCTTCGTAACCAGTGAAGAACTGGAAGCCCGCTGGCCATCCCTAACACCAAGCGAACGTGAAGACAAGATCTGCCAGGAAAAGGGCGCAGTCTTCTTGGAACACATCGGCGGCGCGCTCCCGCTTTCCAAGAAACCGCATGACCTCCGGGCACCAGACTACGATGACTGGACTTTGAACGGTGACCTCCTCTTCTGGTACGAACCCCTCCAGCGGGCCTTTGAAGTCTCCAGCATGAGCATCCGGGTCGATGAAGACCGCTTGCAAGAGCAGCTGAAACTTGCCGGTGCTGAAGACCGGTTAGACCTGCCTTTCCACCAAGCCCTCTTAAAGGGTGACCTCCCTTACTCCATCGGCGGCGGGATCGGCCAGTCAAGACTTTGCATGCTGCTTTTGGGCAAGGCCCACATCGGTGAAGTCCAAGCCAGCATCTGGCCTGACGAGATCGTAGAAAAGTGCCAGGCAGCCAAGATCCAGCTTCTGTAAAAAAGCTAGTTAAGCAAAAACAGGAAGAATATAAGAGCAAGATAGACAATAAAATACCGAGGTAAAGAGATAAACATGACAGAATTGATTTCAATCAGAGAATCAAGCAAGCACGTAGATGAAGAAGTCAGAATGCACGTCTGGCTGACCGACAAGCGGTCCAGCGGGAAGATCGTCTTCCTGCAATTAAGAGACGGCACGGCCTTCTTCCAAGGCGTTGTCCGCAAGAACGATGTCAGTGAGGAAGTTTTTGAAGCAGCCAAGGGCCTGCGCCAGGAAGCAAGCTTCTACCTCACCGGGACCATCCATGAAGACGCCCGGTCTCACTTCGGCTACGAAATCCAGATCAGCGACCTGGAAGTCGTCTCAAACAATGAAGGCTACCCTATCACCAACAAGGAACACGGGATCGACTTCCTTTTGGACCACCGTCACCTCTGGCTGAGAAGCAGGCGGCCATTCGCCATCATGCAGATCAGAAACCGGATCTTCAAGGCCACGGTCGACTTCTTTGAAAACGAAGGCTTCGTGAAGTTTGACGCCCCGCTTCTGATGCACTCAGCGCCAGAAGGGACCACGGAACTCTTCCACATCGACTACTTCAACCACGACGCTTACCTGTCACAATCCGGCCAGCTTTACGGGGAAGTCGGGGCAGAAGCCTTCGGCAAGATCTTTACCTTCGGGCCAACCTTCCGGGCGGAAGCTTCCAAGACCCGCCGACACTTGACTGAATTCTGGATGATGGAACCGGAAATGGCCTGGATGCACCAAGATGAATCCCTGGACTTGCAGGAACGCTTCCTGTCTTACGTGGTTGGCCAGGTTTTGGAACACTGCGAATACGAATTAAGCATCCTGGGCCGGGACGTAGACAAATTGCGTCCAGCCGCTGAAGGCAATTACACCCGCCTGTCCTACGATGACGCGGTTAAGATGCTGCAAGAAGCTGGCAAGGACTTCAAGTGGGGCGACGACTTTGGCGCGCCAGATGAAGCCTTCCTGTCAGAACAATTTGACCGGCCATTCTTCATCGTTAACTACCCAGTAGCAATCAAGCCATTCTACATGAAGAAGAACCCGGAAAACCCATTGACTTACCTCTGCGCCGACGTGGAAGCGCCAGAAGGCTACGGGGAAATCATGGGCGGGTCAGAACGTGAAGCTGACTACGACACCTTGAAGGCGCAAATCGAAGAAGCGGGCCTCAACCTGGACGACTACTCCTGGTACCTGGACCTGAGAAAGTACGGCAGCGTGCCGCACTCTGGCTTCGGGATGGGCTTTGAACGAGTTATTGCCTGGATCTGCAAGCTGGACCACGTTCGTGAAGCTGTCCCATTCCCAAGAATGATCAACAGAATGCAGCCATAATATATACGAAAAAGGCTCTTTGTCAAATCTTACTGATGCTTGTCAAGAAATCTTACATATGTTTGATGAAGGCACTAAACAGAACACGTCTGTTTAGTGCTTTTTTGAAGCAAATGATGTTCTGCTCTAGTCTGATCCTTTTCAAAAGGTGAGTGAAATTAGAATAGCCATAGGCTGTACGTTCAATTTGTTTGATCTTACGATTAACGCCCTCTAGGCAGCCATTTGAGTACGACATTTTGGCACCATTAATGACAGCCCTCCTGTTCTTTCTAAGGGTCCGTATGGTTGTTTTCAATCGCTCACAATACTGACCGATATTACTGTCGAGCAGATCGTTAATTTTTTTCGTATCTTTGTCTGCTAAAGCATACACGAAATCCTGCATGAAGTCGTATGTGTTCTTCAGTGTTTCATTGCATTTAAGGCCTTCATCAACGATTTGAGCCGGTGTATACGGTACTTTAAGACATCTGTCATAAAATTGTTTACTGCCTTCCAGATCCTTATATTTCTTCATATACAGCTTCCAATATCGTTTTAGAAGCTTGTATTCTCTGGATTTCTTATCTAACTGTTTCATGACTTGAACTCTAAAACCGATAAAGGATCTGTTTACCATTTGAACCATATGGAAACGGTCAATGACAAGCTCGGCGTTTGGGAAAATCTGACGCACAATATCACCGTAGTAGCAGTTGAGGTCCATACTTACTGTTCTAACAGTCTTTCTAACTATTTCCGGGAACTGCAAAAAGTATTTAATAATAGTGTTTTTGAAGCGATTCTCTAAAATGGCGACGATGGTATGTTTTTCGCCATCTTGACAGATAAAGTGTAGCTTTCGCCCCACACCTCTAAATTCATCAAACGCTAAGTGTTCTGGCAAAGAATCGAATGAAGGAGTAAATTGAGCGCTGCAGTTGTCTAAGTATCTTTGCACAGTAGTAACTGATACACCATTCTCTTCAGCAATACTGGTCATAGAATGATCTTTAGTGAGTCCGACAATGATCTTACGTTTAACGGCGTTAGAGATGTGGCAATACTTGTCAACGATTTGGGTAGACGGATAACTGTATAGCTCACAGTTCTTACAAAAAATACCGTGCTTCTTGACTTTGATAATGACTGGATTGCTTTCGTCAGCTGAAATATAAGGGATATGAACGACCTTGAAGCCGTTATATATATAGTAATCAGCAGATTTACAATTAGGACATGTGTCGAGCTCGGCAATGGCTGTACACATGATTACTTTTCTCCCCTTGTAAGTTGTTTGAGAGCAATCTACAAAATTTAGGCAAGGGTCTTTAACATTAAGCAAGTTTTCAATATAATTAGCAGTAGGGTTCATAGAAACCAGCTTTCTATACTTAGAAGAATTGTGGTAGAGGATTTTAAGTTACGAATAGCGAGGCCTATGGGCCTCTTTTTTATTTTAAGCAAAAAATCTTACCGACGGATGTATTACTTGACATCCATCAGTAAGAAAAATTATAGAGCCACGAAAAATAGCTTGGAGAAAATCAATCTCCAAGCTATTTCTTTGCTATTATTATGCTCTATGCCCTTATGCTTTTGGGCAAGATTACCGGTAAACGAGTTTTGTTGGGAAAGTGACCTTGTAAGTGCCAGCTTCATCATCATCCAGCAGGTCTTTCATGACCTTAACGCTGGCCCGGCCCATCTGCTGGGTTTCAACATGTACACTGGTCAAAGCCGGGTTGGCAAATTCTGCCGCGGTCGTGTCGTTAAAGGAAATCAGACTGACCTCTTCTGGGACTTTGATCCCGGCTTCTTTAAAGGCCTCCAAGGCACCGATGGCCATGGCATCATTGGCCGCGATCAAGGCTTCCGGGAAGGATCCGGACTTAAGTGCATCTTTAATGGCTTCATAGCCAGACTGAGGGGTGAAGTTTCCAACATAGACTAAGTCCGGGTCGTACTGGCCGCGGGCCGCGAGGCTCTTCTTATAATCGCGGAAGCGGAAGTCAACCAGGTTGTTTTTATCAAAATTACTGTCCAAATCACCATCCAAAAGGGCGATCCGCTCCTTGCCCTGCCCCCAGAAGACCTCTAGCGCCTCCTGCATGGCCTGACCAAAGTCAGCCACAGTCAGCCACAACTGAGCAGTAACCCAATTTTAAGGTGTCAGTATCGACAAAGACCAGGGGCAGGCCAGACTTTTTGACTTCATTCAAGCGGTCTGGCGAATACTGCTGGTAGCCAATCATGATGATCCCGCTTAAAGCAGCTGGATCGGGCAAAGGATCAGCCGGATAAATGACCTGGCTTTCAAGTCCCTGCTTCTTGGCCTATGCTTGCGCGCTGGTTCTGATTGAATAGTAATAGAGGTCTCCTTGATCTCCTGGTCTTGGTCACACCACAGGCAGATCGCCAGGCGCTTTTGCTTGCTCTTTCTGGTCTTCCGGCTCTTATGGTAGTGCATGGCTTCAGCAGTTTCAAATATCTTCTGCCGGGTTGCCTCATTGACTGACAGGGTCTGGTCATAGTTCAAGACCCGGGAAACCGTCGCTAGCGACACGCCGGCTGCCTTGGCACTTCTCTGATCGTTGCCATCTTCCTCACTCGCTTTGCTTTTACTAAAATTTCATCCTGTTAAGTCAATTGTAGCATTTATTTTAGTAAAAGGGGCTGAATCACCAGGCGGAGCTGGCGGGCTTTTTGAGCATCCAGGCAGAATTCCGGGTGGACCTTCTGCCCCCAGGAGTCATCCCCGCCGACCCCCATCTGGGCGCTTAAGGCTCTAACCCAAGTGTAATTGTTAGTCAGTTCAAAAGCGTGGTCCGCTGCTTCAATTTGGGCGGCAGAATATGGCAAAGCAGACAAGTTCAAGTCTGCCCCATTGGCCGTAAATTCCAAGCCGCCCTTTTCATCAAAGAGCTGGTACCAGCGAACCTTGCTCCGGTTGCCCGTTTCCTGCGGACGCAGGTATGGGCTAAAGTTCTTTTTTACCGCTCCCTGGTAGATGCCCAGGTAATTACCTTCCAAGCGGTCTGGGTAGCTCTCATTAGGTCCCAGACCATAGTAGCGGTAATCGGTCAGTTCTTTTGGCAGGGCTAGGTTCAAGCCAAAGGCTGGCAAGAGACCGGCTTCTTCCGCGCCTGGGAAGTCAGCTGTTACAGCAATCTTGCCCCGTCCATCGACTTCATAGGTCACGGTTAAATCACCCTTTAAGGCGACAGGCAACGTAAAGGCAGTCTTGACCAAAACGGAGTCTTCCTTGACCTCGCAGCTGATGTCTTTCAAGCGGGCATACTTGCCGGCATTTTCCCACCGGGCCAGATCATAGCCGTAACCAGCTCCCCGGTCGTTGTCCGTCAGGGCCCGCCAGAAGGTAAATTCCGGCAGCCGCTTCAAGTATTCCCTACCGGCATACTTGAGGGAAACCGGCCAGCCCTTGACCTTGGAGAAGAGAATTTGGAAGTTATTTCCTTTCAGGCCTAGGTTGTAGTCGGAATCAACTAAATCTGGCCGCCCTTCCGGCTTAAATTCCGGCAGCTTTTGAGCTACTTCTTCTGCTTCAGCCACAGTGAAGCCCTCATCCGCCCAAGGCAAGTCTTCTTTTAAGTGGGCCGTTACCCGGTAGACGACCTCTCCTTTTTCATCAGCGACTTCCGGCCAAGGCAGGGCAAAGGTCCCGGATTCGCCAGGCTCCAGGCCAAAGGTCAGAGGCCGGCTCTGGTAGGTCAACTTGCCATCGACCAAAAGACTAGTCAAGAAGTAGTAAGATGAGCTGTTGGTAAATAAATTGTCGTTTTTGAGGAAGAGCTGCCCATCTTTTACTTCTAACTTAAGGTTGGCGTAAAGGGCCTTGACATTAGCCAGTTTCGGCGATTCAGTCCGGTCAGCAAAGACCAGGCCGTTCCCGCAGAATTCATAGTCGGTTGGCCGGTCATCGAAGTCGCCCCCATAAAGCAGGTGCCCGTCTTTTTCCAGTCCTTGGTCAATCCAGTCCCAGATGAAGCCGCCCTGGTAGTGGGGGTATTTTTCCAGGGCCGTGTAGGCGGCCAGGTCACCGACGGAGTTGCCCATGGCGTGAGCGTATTCAACTGAGATAAATGGCTTGGCTGGTTTATTGGTCAAGTATTCTTCAATTACCTTGGCCGGAGCATACATCCGGCTTTCAATCTGGGTGGCGTCGTCAAACTTCCGGTTGTGGGTCACCCCTTCATAGTGCTGAACCCGGGTCGGATCAGCCTTCCGGACGTAATCAGCCATTTGGGCAAAGACAGTGCCGGCGTAAGACTCATTGCCTAAAGACCAGATCAGGATTGAAGCATGGTTCTTGTCCCGAGCCATCATGTTCTTCACCCGGGATAAGCTGGCTCCCAGCCAATGCTGGTCATCGCCTGGAACATTGAAGCTAGGATCTTCGTGCCCCCCCACTTTTTCCCAGGTGCCGTGGCTTTCCAGGTTAGCTTCATCAATGACGTAAAGGCCGTACTTGTCACAGAGCCGGTAAAAGAGGGACTGGTTCGGGTAGTGAGAGCAGCGGACAGCATTGATGTTGCTTCGCTTCATGGTCTTGATATCCCAGATCATATCCTCTTCTGTGATAGCCCGGCCCAACTTACTGTCAAATTCGTGCCGGTTGGCCCCCTTGAAGACGATCCGCTGGCCGTTAAGGTACATAATCCCGTCTTTTAGTTCAAAGTTGCGGAAACCCACTTCCTGCCGGCTAACCTCTAAGAGGCTGCCTGCCTGGTATAAATACAGGCGGACCTGGTAAAGGTTAGGCTTTTCCGCGCTCCAGGCAGCTACTGGCAAATCAGCCAGAGTGAATTCCAGCTGCTCGCTTCTGATTGGGCCCAGCTTTTCAGCAACCAAGTCACCTTCACTATCCCGCACTTCCAGCTTAAAGCTGGCATTTGGCAAGCGGTAGGCAATATTGGCTTCGACTTCCAGCTTTCCTTTTTGGTAGTTATCGGTCAAGCTGGCCGTAAGCTTAAGGTCCTCCAAGTGCAGACGCGGCTTGGCCTGAAGAGTCACTGATCTGAACAAACCAGACATGCGCCAGAAGTCCTGGTCTTCCAGCCAGGAGGCGGAAGAATACTTGTAGAGAGCCACTGCCAGGCGGTTGTTTTCTTTCTTGAGGAACTTGGTAACCATAAACTCGCTTGGGGTAAAGGAGTCTTCCCCGTAGCCGACGAAGTGGCCGTTCAGCCAGACATAGATGGCTGTTGCCGCCCCGTCAAACTTCAAGCTGACTTCCTTGTCCCAGAAAGCTTCATCCAGGTCAAAGTATCTGACATAAGAAGCGAGCGGATTTTTGCTTGGAATTTGGGGCGGGAAAATCTCCTCACTGCCGTCCCATGGATATTGGACGTTGACATACTGGGGCTGGCCAAAGCCTTGCAGTTCCAGGTTGCCGGGTACTTTGACTGACTTAAAATTGCTATCGTCAAAGTCTTCTGCATAGAAGTTGACTGGTCCCTGGCCGTTTTCAGCGTAGTCAATCAGCCAGTCCCCGTCCAAGGACTGCACTAAACTGGACTTGCCCTCCTCCAGTTCTTCCTGGCTTTGGAAGGACTCATGGTCGGAGTGCGGGGGAATTGTATTGACTTCGTAAACTTCCGGGTCAGTCAGCCAGGCCAGGTCTGCCTGGTCAACTCTTTTTTCTTTTACTAACTTATTGCTCATTTTCTAATTCTTCCCTTCTAACTTGAATACATCATCCAGGGCTTGGACGCTGTGGCCGATCGGCAAGAGCATCTGGCTATTTGCGAAAGTTTCGCTGTTGATGACGGTCACGATTACCGTGTCGTCCAGCTTGGCCTGCTTGATCGCCGGGTCCCAGAATTCCAGGATCTGCTGGCCGGCTTCTACCTGGCTGCCCTCTTCAACATAGCTGACAAAGCCAGTCCCGTTTAATTTGGCCGTGCCCAGGCCAAGGTGAATCAAGACCAAGACCCCATGTTCATTTTCCAGGACGATCGAGTGCCGGGTCTTGGCCAGCTGGCGGACAGTACCGGCAAATGGCGCGTAGACCTTACCGTCTGCTGGCACCAGGGCAAAGCCGTCGCCTAACTTTTTGTCGGCAAAGACCGGGTCGTCAACCATGTCCAGGTTCATTAATTGTCCGGAGACTGGGCTGGCCAAAGTGAAGCTTTCAGCTTGCGCCGGCTTTTGGGCATGGCTTTGGCCGAATTGAGTTTCCAGCTGGTCGACGATTTCCGCGTGCTTTTCTTCAGTCAAGAAGACCTTTTTGGCGAAAATAGAAACAGCGATCAAGAGCATGACTGCCGGTAAGGCAAACATAGCTAACTTGAAGACCATCTGGCCATGAGCTGTAATTGTTGAGGCAGTCGCCCCAGTGGTCATGCCGGCAGTTAAGGCAATCAAGGAAACAAACCAGTTGGACAAGGCCCCGCCCAGCTTATCGACCAATGGCCGGACAGACAGGGTCAAAGCTTCGTCTCTGTGGCCAGTTTTCAGCTGGCCGTATTCAACAGCGTCAGAGATGATCATCAAAACGACCAGGAAGGCCAGAGGCTGCGGAATAAAGAAGAATTCTGCCCCAACAAGGGACAGGGCCAGAGAACCGCTGGCCACGGAGAAGACCCCGATCCCTAACAGCATCACCGCGATGCAGGCGTAGAAGAGGCGATTTCTGTTGAACTTCTTGGCCAGTGATGGGAAGAAGGATGCAGAGATTAAACCGACAAAGGTGTTGATGGTGTAAAGCAGGCTGTAGCCGCGGGCATCGCCTAAGATGTATGAGAAGTAGTAAAGTTGCAGAGCGTTCAGGGTGTTGATACCCAGGCCGTAAAACCAGTAGGCAAAGGCCAGCCAGAGGAGCTGGTCGTTTTGCCCCAGGACCTTAAAGACCTGCTTCAAAGTGGTCTTTTCATTGCTTTCCCGCAGGGCGGATTTTACTTCGTGAGTACCAAGACCAACGGTAATTGAGGTCAAGATGCCGACAATGGCCACGATCAAGGCAAAGAAGAACCAGCCCTGCTTATCCCCGTTGGGGTTGGCCTTGCTAGCCGAGAAGAAGAGGATGATTGGGGTGATGACTACCCCGACCAGGTTGGCCCCGATGGTGGAGCCGACTCTGGCGAAGGTGGAGGTCTTCTCTCTTTCCCGGGAATCCAGGGACAAGGCCGGGATCATGGCCCAGAAGCCAGTGTCTTTAAATGAGTAGAAGATATCCATAATCAAGTAAACAATACCGAAGATTACTAAGTAAACAACGGGTTTGCTTTGGTTAATGCCGCCAAAGTCGGTAAAGAGGGCTAAGAGGGCTAATGAGCTGATGATCCCCCCGCCCACAACCCAGGGCTTGAACTTCCCCCACCGGCTTTCGGTCCGGTCGATGGCGTTACCGATCAAGGGGTCGAGCAGGACTTCCCCGATCCGGATGGCGGTGATCAAGTTGGTGATGATAAAGATCATCTTGTGGTCACCGGCATTAAAGAGGTGGGTGGTGACGAAGACGATAAAGTAGGTTGACAGAGTCGCGTAGAAGACGTCGTTGCCAAAGGCACCGGCCGCGTACGACAAGCGTGAGACAAGCTTTTTCTTCATGAAATTCTCCTTTAGGTGTGTTAACTTGTTTATAATTACAGTATAGACTTGTTTACTAAATAAACCAAGATGTTTTACTAAAATATTTTTAGTAATTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAATGATGGCGATATAGCCTCTTGCATGTACTTCGGGAGGCGTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGTCGGTTGGAAGATCTCTTTAACACTCTCGAACATGGCTTCCACCAGGATTTGTAGGGAGTGATTGAAAGTGATGTCCGCAAGCTCGTCTACCATGCAATAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGTGAATCTCGTCTAAGTATGTTGACTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGCACCCGCAACGGCTGGCCTACGTTCAAAACAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAACCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAACACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTAACCGGTATTGGTAAAAAACGCGCTAACGACATAGCGCAAAGTCTTATTCGGTTGGCTAAAGTCGCATGCCCAGCGGTCAAAAAGAACAGTGCTCATATTCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAAACCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAGAGTTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAGAGCTCGCCTATTGTCCTATCATCTTCATCATCTCGCTTCTCAACTGACATGAACATGTAGCGCAGAAAGACGAAAGCTGTATGGGCAGTCAATGCATCATATGACAGGCCATGGTATTCAGTGCCAAGCTTCAAGAAACTCTTGCAGGTCTTGAAGAAGACCTCGATGTCCTATCTTTTGCCGTAAATTCTGATGATCTCATTTTCATCGATCGTCATGTCCGTGCAAATAAGAGCGATCCAGTCTTTGCGGTTGGAACGATTTCTTACGCAGACTATTCTGGCATCAATCTGGGCACCATCTTTGGCAAGATCTCCAACCTTTACAGGGACGGACAGGAGATATCTTGAACGACCTCGACGCTTCTTGCATGCGTTGAAGATCTGCTTGACGTTCATCCGCTTTCCTTCGAACTCGTATGTGATCTTGGAGCTTTTCTTCATCATGGCGATTACGTTCAAACCACGTTGACTGATTTGGACAATCTGATGAGGATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCAGCTGGATAACTACACCGGTCCCCTTTGATTGTGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTTGATCTTCTTGGTCGTCCCGATGACATTCTGATCGTTCTTTGAGGACAAGAGTGATGAAGCGATTGGGACGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTAGGTCATCGAAACGTGGTCGAATACTTTGGCAGCTAGCTCAGTCTTCTTGTATCCAGTTCTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGATCAGAAGTCAGATCTTTCAAGTGCCCATTGACGATCCTCTCAGCTAGCAGAATAGTGAAGCGAAGCCAGTTGAAGCCAGTTGATATGTGGGTTCTGCATGAATCGATAGTAGGTGTTTTTTGAGAAGCCAGCAGTACACTTGCCAGACTTCTGTTGCATGTACATGCTTCTGTCTGGAAACACATTACTGAAGATGTATGAAAGGATCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATATACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGGGCAATTTTAGGTTCGTTTTTGGTATCGAATGATGGTAAACTAGACATAGCGCAAGCCTTTCGTTTGATATTGATGATGTTTTGGTCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTTAGTAAACAAAAAATGACTCTTTTTTCAAAGAGTCATTTCCTGCTATTTACTTGTCTGCCTAAATTCTTTACTGATTATGCTTATCTCTTACTTCTTCCAGTTTAAGTCACTGTTTTTATCAGCTTCAGTGATTTCCCGGATAACCCGGCAAGGATTGCCAGCGGCTACGGAGTTGGCCGGGACATCTTTAACAACGACGCTGCCGACGCCGATCACGGAATTGTCACCGATTGTGACGCCAGGCACCACCCGGACTCCCCCGCCGATCCAGACGTTATTGCCAACAGTAATCGGGTAGGCATATTCCAGGCCGGTATTTCTTCTGGCCGCGTCCAACGGGTGGCCGGAGGTGTAGAAGCTGCAGTCAGGGCCGATGAAGACATTGTCACCAAAGGTCACTCCCCCAGCATCCAGGACGGTCAAATTATGGTTGGCGTAGAAATTGTCGCCTACTTTAATATTCCAGCCATAGTCGCACCAGAAGTTGGGTTCGATGTGGCAGTTTTCCCCGCTTTGGCCAGTATTTCCTTTAAGAGTTCCTTCTTTTCTGCTCCAGACGGCAATTGGTTGTAGCGGAGGCACTTGGCCTTGCAGGCCGTCAGTTCCGTCACCAGTTCTTCGTCTTGACCAGGATTATAGACCTGACCAGCCAGCGTTTTTTCTTTTTCGGTCGGCATTTCTTTCCTCCAGTCCCTGCCAAATCTTTTTTGCTTGTTACTTTACTCTAAGAGTTATTTTTGATCAATTAGCTATTTGGCCAAAGGAAGCTAATCGCCGTCTTTAAGACTTGCGGGTTCTCCCGCAAGCGGCTGTGCTGGGCCATTGGGCCGGTAAATTTCTTTTCTTTGTAGCTTTTTACCTTTGGACTGACCAGGTAGCGCAGAGATTTGGAGGAAGAATTCTTGACCCGGCCGTCTGAGTGACTGCCGTCTTCCAAGTCTCCGTAAACATTCAGCACCTTGGCATGCGGGTAGAGCTTCCTGAGAACCAGCTGCCGCTTGTAGTTGTCGTTCATGTGAATTGGCTTACCGTTCTTGTGGTTGGCCGAGACATACATCTCATTTATTCCCTTGTTCTATCTTTTTCACGTTTAAAGCTAATTCGCTTCTATTAAGCCAGCAGACCTTTTGCTAACATTGTTTTGTCGGGCGCGGCGAAGCCGCGCAATGTGTGTTATAATTATTGTAGTAACAATTAGGAAGCTTAGAAGAGCGGTTAAAAAGAAAGGAGCATGTCATGTATCCCCACCAGGAAGGTTTTGAGAATTGGTGCCGGGGTCCGCAAAGACTCAGCCCCAAGTCAATTGAGAACGCCGATTACTGTTTGGACCACTTCTTTACCTATGCAGAAGTGAATTTCCCATCCAGTGACGTTAATGAAATCACGGCTAGCAATGTCCGTGACTACCTGCAGCAGTTGGCGACTAAGGAAAATTTGCAGGTCACGACCGTCAACAAGTATGTCTCCTACATTAAAAAGTACTTCTACTACCTGGCCCTGGCTGGAATTACCCCAAGCTATCGTTTACTAGACCTCAAGGGCTACTCTTTTGAGCGGCGGAAGACCTATGTGATCGACTGGCCAGAGCATTTGCCTGCCCTTATCCCCTATGTCAAGCAGCCGGTGACTCTCTGGTTGCTGCAGCTTTTTGCCCTGGGCTATCAGGCTAAGGAACTCTTAGGAATTCGCTATAGCGACGTGAAAGACAATTTGGGCGAGATGACTGACTACCTGACTGGCACACTTTCCTTTGAAAAGGACCCGGATCCTTATATTTTCGCCTCCAGGTCCGGTGAACCATATGCCAGTACCAACAATATCATGCAGCTGGTCAAGGTCGACAAGGACCTCCTCTCCCCGATGCCGATCACTTTGACCAATCTCCGCCTTTCTTATGTCTATTCCTTGATCAGCCAGCAGAAGTATTCTGACAAGGAACTGCTGAAGATTTTTCGTTGCCCGCCAAAGCGCCTGGCCTACTACCAGTACAACGCTGCCCAGTGCAATCTCATTCCATTTTCTGAAGAGATGCTAAAAAAGGCCGGCCCAGACGCCGCCCCTGCAAGAAAATAGGCTATAATAAGTTAATAGTCAGTAAAAGGAGATTTTTATCAAATGAAGAAAAAGAATAAGCAAGCAGCTGAAGAAGAAAGCTGGGGCAAGTTTTTCAGGGACGTCTTAGTCATGTTCCTCGTCTTCGTCTCAATCTACTATGTCGTCTTCTCCTTCTTCTTAGCCAATGAAGTGGTATCCGGCCCATCCATGCAGCCGACCTTTGAAGACGGTGACCGCTTGATCGCCGTCCGCCACTTTACACCAAAGAGAAACGACGTTGTCATCATCAAAGCTCCTAACCAGCCAGGAGCTATGTACATCAAGCGCTTGATCGGCCTGCCTGGTGACACGGTCCAGTCCAAGAATGACGTCCTCTACATCAACGGCAAGAAGGTTGCCCAGCCGTATTTGAACAATAAATATCAGAAAGCTGACCGTTTAGCCGGCGTAAATTATACTAATAACTTCAAGGTCAAGCTGAAGAAGAACCAGTACTGGGTCATGGGTGACCACCGGGATGTCTCTAACGACTCCCGCCGCTTCGGGCCGGTCTCTAGGAGCTCTATCTTGAGCAAGGTGGTTCTGCGCTACTGGCCAGTTACCCAGATCGGCACTAACTTTTACTAAAAAATTCTGAAGCTCCCTCAACAACTTTTCAAAAAATGGTAAAATGAAGTTATTAAGGAGTGAAGATCAATGAAACCAGAAGAACTTTCGGATGCAATTATCGAGTTTCAGAGCAAGCACGCTGTGAGCGATACTACCCTGGCCTTTGCCAGTCACCTCTCAGTGGAAAAGGTGCACGCCATGAAGCAAGGGCGGGGCAACTTTACCAGCGATGAAATCAACCAGATGCTGGACTATCTCCAGAGCTATCTCTAGAGCTAAATGTAAGCAACCGGGCCAAACGGCCCGGTTTTCTTTTGCCCTTTTTTCTCTGCTTTTCCCTCTCTCATTTCTTTTTATCACTTCATTGTTTCACGCTAACCATTTTACATTTTGTATAAAGTTTAAAATAGTAAGAAGCCTGTTATGTAAAGGACAACGGCTATTATTTCTTAACAGCTGCCATTTTTATCATTTAACTTTAACCCGCTATTGCAAGCGATAAAGCTTGCTATTACAGCATTTCTCTTTCTAGCTCTGTAAGCCTTTTTCTCCGATTTTTGTTCCACGGTCTCTTTTTACCCTATCCCCGGCCAAGTTATTCACAGGCAAAAAATAAGAGCCACCCTAGAGCAGCTCTTATCCTTTATATTTAAGTTATCTTGTCTTACTTGTTCCGTTCAGCTTGCAGTTCAGCCATCTTGATCATGACGTCAACAGCCTTCCACATTGATTCCAGAACCGTGTATTCGTAGCGGCCGTGCATGTTTTCTTCCCCGGCAAAGAGGTTCGGGCATGGCAGACCCATGTAAGTCAGTTGTGACCCGTCCGTACCCCCTCTGACTGGTTCTTCATTGATTTCAGTCAAGCCGCAGGCTCTGTAAGCATCCCGGGCCAGGTCAATGATTTCCATGTGCTTGGCCAGTTCATCAGCCATGTTATAGTACTGGTCCCACATCTTCAGCTTGATTCTGTCCCCGTACTTGGCGTTGAGTTCAGCCACCTTTTCCTTGACCAGGTTCTTCCGGGCTTCCAGGCCGTCGCGCTTGAAGTCACGGATGATGTAGGACAGGTGGGCGTTGTCAACCGTACCAGAGAAGTCCATCAAGTGGTAGAATCCTTCTTCGCCTTCAGTCTTTTCCGGCACTTCGTCTTGCGGCAGGGAGTTCTGGAAGTCGATCCCGACTTGAATGGCGTTGATCATCTGCCCCTTGGCTACAGCTGGGTGCACGTTAACGCCTTGGATGTCCAGTTCAAACTGAGCTGCTGAGAAGGTCCCCCAGTCCAGCTTGCCCGGGCCCTCCCCGTCAACCGTAAAGGCAAAGGCAGCATTGAAGTCTTCCACGTCAAAGTGCTGAGCACCCGTGCCGATTTCTTCGTCTGGCGTGAAGCCCAGGCGGATTTCCCCGTGCTTGATTTCCGGGTGAGCCAGGAGGTATTCAGCAAAGGTGACCAGTTCGGCATCCCCACACTTGTCGTCCCCGCCCAAAAGGGTGTCACCGGAAGCAGAGATAATGGTCTGCCCCTTGTACTTCTTCAAGTTCGGGAAGACGGCCGGGTCCAGGTAGAATTCGCTGTCGCCCAATTGGATCTTGCTTTCCCCGTCGTAGTTTTCAGTAATCTGCGGCTTAACGTTTTCTGAATTGAAATCAGCCGTGTCGCAGTGAGCCAAGAAGCCCATAACCGGCACGTCCCAGTCAACGTTGGAAGGAATAGTTGCGATGACCGTACCAGCCTTTTCATTGTAGTGAACGTCACTTAAGCCCAGTTCTTCCAGTTCCTTCATGATGACCATTTGGTAGTCCACTTCTCTTTGGGTGGATGGGAAGCGGTCAGCATGTTCATCTGACCGGGAGTTGATCTTGACGTACTTCAAAAATCTTGGCAGCAAAGTTGGGTATTCCATCTTTTTCTCCTTATTCTTTACATAAACAAAAATATTTCACTTACTAAAAAATGTTCTGGAAAGGATCGGTTGATTCAGCGCTGATTAAGCACTCTACGCTCCAGCCCTCTTCCTTCTGCCAGGCACTGAGCCGTTTGGCAGCTTCATACTTGAAGAGCTTCTCCGTATAGTGGCCCGGATCAACTACTACCAAGCCTGATGAAATCATGTCATGGCCAGTGTGGTAGTAGACGTCACCGGTGATGTAGGCGTCGCATTTGTCAGCTAAGGCCTGTTTCCAGAACTTGTTCCCGTCCCCGCAGACGAAGGCAACAGTTTCCACCATTTTATCCTGGTCAGCGCAGATCAAGCGGACCATGTCCACCCCCATCTTTTCCTTGACGTAGTGGGCAAAGTCGATCGCCTTCATTGCTTCTGGCAGGCGGCCCTTCCGGCCAATGGCGATGCCGTCCTCGTCTGGGGCAAAGCCGGTTACGTCCAAAAGGCCAAGTTCTTCAGCCTGCCAGTCGCTTGACCCGTCCTGGGCCTTGTCGGAATTAGTATGAATGGAGTAAACGGTGATGCCGTTAGCAATTATCTTGGCGTACATGGCCTTTTGCGGGTCGCTGTAGTCCAAGTTGTTAACCGGACGGAAGATCAAGGGGTGGTGGCTGACGATGAGGTCAGCGCCTCTCCTAATCGCTTCATCAACCACATTTGGCCGGATGTCTAAAGTCACCAAGATCTTGTGGACTGGTGCTTCCAGGCTGCCGATCTGCAGGCCGACCGGGTCACCGGCACTGGCGATACTTTCCGGGAAAGCTTCATTCAGTTTAGCTACAATGTCTTTTACTTTAGTCATTTTCCCCACCTAATTCTGTCTTGATCATAGCCAGCAAGTTTTCAACTTCCTTGATCCGGGTCAGGTCCTTTTCCCGGGCCTTGTTGAGGTTAGCCAGCAGCTTTTGGTAGTAGGCTTCCTGTCCCTGCCACTTCTTATAGAAAACATCAGTCTTGTTCTTTAAGAGCAAGGGACCAAATTCCTGCTCGCGGACAGTCAATTCGTGAACCTGGTCAGTTAAACGGGCCTTGATCAGCTCATAGATGTGGCCTGCTTCATAGACGATGTCTTCAGCGACGATCTCGTACTTGTTGGCCATCAACCAACGGCGGACGGTGTTTTCCCCAATATTGGCTTCAAGGACCAGGCTTGGGTAGTAAACGCCCCGGGAGGCGGCTTCAGAGAGCAGGTTGACCATCAATTTGCCGCCCATGCCGGCGATGACGACCGTGTCGATTTGATCGCTTTCCTTAATGGTTTCCAGGCCTGAACCCAGCCGGGTTTCAATCTGGTCAGAAAGTCCCGCGGCGGCGATGTCCGTTTTCGCGTTCTCTAAGGGGCCAGCAGCAACGTCACTGGCGATAGCGTGGCTGATCTTGCCGCTCTTTACCAGGAGGATCGGCAGGTAGGCGTGGTCGGTGCCGATATCGGCCAAGCGGCTGCCTGGATCAACCATATCGGCAAGTCTGTTAAGTCTTAAATTCATTAGTAAAACGCTCCTTTATCCAAAAGTAAATTCTATCATATGCCAGCCAACAAAAGACAGTTTCTGCAAAAAATAATCCACGTGCTATAATTAATTGTATTTTTGTCAGTTTTTTTGATGACAGGAGGAAAGAAAGACAAGACATGGACCGGACGGAGCCTACTACTTTAACTAATATGTGCATGATCGTGGACAAAGACCGGGTTCTGACGATCGACCGGGAGGACCCGGTTTGGCCAGGCCTGGCTTTTCCAGGCGGCCATATTGAAAAGCATGAGTCATTTCATGATTCAGTCATTCGCGAGGTCAAGGAAGAGGCCAACCTGGACATAGTCAGTCCCCGCCTGGTCGGCTTCAAGCAGTTTTTTGACAAGCTGGACCGGCGTTACCTGGTCTTCTTCTACCGGGCCGACCAGTTCTCAGGAAGTCTCCACGCTTCAAGGGAAGGCAAACTGGAATGGGTCAAGATCAACGATTTACCTAAGCGGCAGTTAGCCTACAACTTTGACCGAGACCTGGAAGTCTTTTTAAAGAGTGACCTTGATGAGCATGTATTGTTGGACAAGAAGGACTTTTTATATTAATGAGCAAGAAAAAGAAAAATAATAAGAAGAGCAAGCGGATTTGGGGCGGAGTCGTGACGGTGGCACTTTTTGCTGCCCTCTTCGCTTTCGCGGGCGTGTATATCAAGAATTATCCAGTGGAAAAGGATGTCAAGCTGGTCGCCACCCAGCCTAAGGCCTTGAAGGCCAAGAAGACGGTAGCTGAAAAGGACATCTGGGGCTATCCATTCGCCAAGTGCTACACCAAGAAGATCAAATACCTGTCGGGCCAGCGCTATGGGAAGACCGACGTCTGCCGGCGGGTCTACCCGAAGAAGTCCTACTTCCATGACGGCTGGGACTTTGGCTGGAGCGAGGTCGGCAACAAGGCGGCTGTTTTGGCTATTCACCCGGGGACGGTGAAGAAAGTTGCCTACTACACGGGTCTGGGCTGGTACATCTGGGTCGTTTCTCCAGACTGCTATGTTGAAGTCTACCAGGAAGGTTTCGCCAACCGGTCAGACATTACGGTTAAGGCCGGTCAGAAGGTTAAGCTAGGCGACAAGCTCGGCCGGCTGACTGACTCCCACCTGCACCTGGGGATCACTAAGACCAGCGCTGACTACATCAGCAAACACGGTCACCCTTACAAGAACTACTGGCGGGACAACGACACCTGGCTGAACCCGATGAAGGTGATTACTGACAGCTTGCAGTTGCAAGAGGATGTCAAGGAATACAACGCTAAGGCAGCCAGCTACAATGCCAAGGCAGCCAGCTACAATGCCAAGGCAGCCAGCTACAACGAGAAGCTGGCAGCTAAGAAGAAGAAGCTGAAGGTGGAAGAAAGCAAGCACCCCTACCACTACTTGAAGTCATTTATCAAATAGACAGAGAGAAAAAGACGACTGAAATTAAGCAGCCGTCTTTTTTGCTCACTTTTTTGTCCCGCCCTTCTCGAGGTCAAGGAGAAGTTTTTTAGCTGCAAGGCCAGCGGCGTAGCCGGTAAGGCTGCCGTCGGCCCCGATGACCCGGTGGCAAGGAATTAAGATCAAGATCGGGTTGCAGTTGTTGGCCAGGCCGATTGCCCGGCTGGCATTCTTGTCGCCGGTCATTTCAGCCAGCTGCTGGTAGCTTCTGGTCTCTCCGTAAGGAATCTGCTGGAGCTGCTGCCAGACCTTTTGCTGGAAGTTGGTGCCTTCTGGCGAAAGGGGCAGATCAAATTTTTGTCTTTGGCCGGCAAAGTATTCCTTCAGCTCCATCATGCAGGCCTTAACCAAGTCACCTGACGGGTCATTTGGGATAATCCGGTCAGCCGGGACCTGGTAAGTTGCTTGGCCAGTCTTTTTCTCAAGATAATTTGCCGGTTCAACGCAGAGGATGGCGTCTTGGGAAGCGACAATTCTGAGTGGCCCGATTGGCGTGTCCATGACGGCCCGGGAGATATTTTGGGCAAAAAGCTGCCGGTATTTAGCCGGCGGCATCCCGGACAGCTTGCGGAAGTGGGCATAAAAGCTGGAGAAGTTAGTGTAGCCGGAATCAGCGGCAGCGTCGAAAGCGCTGGCTCCGGCCTGCAGAGCTTGCTTAGCGGCAGCGATTCTCACCTGGATCAAGTATTCTGCCGGCTTCATGTCATAGTAAAGCTTGAAGACTAGGGACATTTACTTTCTAGTTACGCCCAGCTCTTTCAGCTGCTGGTTAAGCTCTTGCCGGTCACTGAAAGAGTGGTCAAAGACGACCTTGCTTGCTTCAGCCGGGTCGCAAGTTTGGACTGCCTGCCACATTTCGTTGTCATCCATATCTCTTCTCCTCGTTTTCAAACGGTAGAAAGTTTTCAAGAAGCACTTTCAGCTATATGAAACTTTAACATATTTAGTCAGTCTTTGCTTCCGAAAAAGGCAGATTCAATTGTTAGGATAAAAAGACGGCTGACCCAAGTCAACCGCCTTTTGCTGCTAATTTCCCAGGATTTTACAACTCAAGCCATACGGATGACAGATTTTCTGCCAGCCGTATTTATTTTATGCATGACTTTTGACTTTCCAGAAATGCGAGGATCTCAGCTTTAGTTCGGGTACTTTTATCAATAGCTTTTAGTAATTCCTCCTGCTCTCGGTGTTTCTTGAGCTCATAGAGAGCATCTAGCTTCTGCGACGCTTTATCGCAGCGCTCTTTAAGGCGCCGGAGTTGTTCTTCTGTTTGGGAAATCTCGGCTTCAATTGTCTTAATATTCTTCGTTCTCGGCATCTTCATCATCGTCTTTCTGTTCTTCTGGCATTGCGGCGTTCTGAATGTCTTTTCCAATCTGCCTTGCCTGTGCCTTGATCCATTCTTCGTCCAGTCCAAAGGCACCTAGTATTACTTTCTGGGTAGCTGTGACTGCGTGATCGAGCTTATAGTTGCCGTTCGGCTGGCGTATCAGATCAATCTTTTCGAGCTCTTTCAGTGCCGAAGGTACGCTCAGATAGTTAGGCTTGCCCGGCATTTCGGCTTTGCGCTTTCTCAAAAGCGTGTAGATTCTTGCTCGGATTATCAAAGCAATGAACTGAATGAAGATCTTAGCTTCAGCCGCCTGGCTGCTTGCGACTCTGAATGAGCGATTGCCAAGGAAGGTCTTATCACTTCCAAACAGCTTCTCTGAGATATCGCGGCTCTTGTAAAGATTCAAGGCTTCAGAGGCTGTCATCTTTTCGGAGGTCACGATCGCGAAATAGCCGCACAGCTGCAGCTCTCGTTCGATGACATCTTCCCGTTCCTTTCGCAATTATTCAGGGATACTTACGGCTTTGATAGCTTGACGAGCTTCTGGAGTTGAACAAGGACAAAATAAATCCCAGCACCTTGATTGGCGTTGGGATTCTTAGGAAGTTTGCTTTAGCTATATTCTGGATTATTCTTGATCTTCAGAATAGTTGTCACGCAGGTATTCGCGGTCATCTTTATCAAGACCTTGGCCGGTCGAAAGCTCTTGGTAAATTTTATTTTCTGCCTCGTTTACCGGACGGTCTTCAACGATGTTGTCCTTCCGGCAAACTTGCACAGCTTGGTTTGAGAAATAGTCTGAGTACTGCATCACGCCTTTGGGATTTGCAGCAGTTGGCACTCTTTTGGCATAGAGATGGATGGCTCTGCCGAACAAGATACCCATTTTTTCTCTAACATTGTCTTGAACTTCATCCACGACAAAAGCAGCATTCTTCGTCTTAATCAGCTTTAATGCCATTGTATTTCCTCAATTCTATCACGCACGAACGACATCCTGTTTTCTTACTCTAATATACCACTAACCGACTCTATCTTTGAGTGTCGTTCCATCAGGGTAGAGCCACTTGACTTTACCATTTACTGAAGCGCCGAGTATACATCTAGGCAGATGAATGTAGATCTCTTAAACTACTACTTAGTATTCTCTTTATCGGGAATCTCATTCATCATATCAAGCAAGCTCTTAAATGAATCTACCTGCTCATAAATTACGTCAGTCGTTGACATTTCATTGAATAGCTTCTTTGCACACTTAATCTTAGCTTGCTCGATTGGTCGCAAATCCATACTGCTCAACGAGCCCTTGGTTTCAGCAATAAAGTAAATATGCTTTACGCTACCTTTCTTGAAGGCAATTGCCCAGTCAGGGGCATAATTACCAACTGGAGTTGGGATCTGGAAACCGCGAGGTAATTTAGCGTAAACAGCAACCTTATCATCTAAGTCCATATCCTCCGCAAATTTTCGTTCAACTGACTTTTCTGCGGACCCATCCGCAAATACATAGTCTTGAACGTTCTTTTTTGCTCTGTAAGCTTTAGAAAATTCATGGTTCTTCTCAAGAGTAAAGATACTTGAATCATAGCGACCTTCAGTTTCATTGTAGGTGATATCATCCACGATCATAGTTGCTTTCTGCTCATTGATCAGTTTGATTACCTTTGAAATGAATTATTCAGGGTTATATTGATACATCTTGAATTTAGCTGGCTGTATTGTCTTCAATATCTTCACAACGGTTCTACGTGTTAAGTGAGTCCCAGCACTAATCTTACCTATCAAGTCATACTTAACTTGACTAGTTTCACCACGTGTAAGCGTATAGGTTTGACGGCTTTCAGAAACAAAGCCAGAACCTGCTTTCACACTGTCAGAAGACCACTCTTCCCCTTGAGTACCCTTTGTTACCGTGTACTGGAGTGGAGCAACATACAGCTTACTATTAATATAATTAACTGAATTTTCAATTAATTCCTTACTATCGAAGTGGACAGTATAACTGTACTTATGGTTGATTTGCTGCCACAGCTTTTGAAACTCTTCTTTATTGAAGTTGTCATTCAAATTGTTCTCTGGAATCTTCGTTTTCCGACCATCCAAAACAAAGTCATCCAAGGCATGGTCATCATAAACACTTTGAACCAGGGCATGAATTTCTGGCGTCAACTCTCTCACCCCGTATTTTTCAGGTAGAGGTTTAAGAGTATTATTAGCTACATCGGTTCGGTATGTATCCGTAACATGATCATCATCATCAATGTAATCATTCTTTATCAGATAGTGCATAATTACATTGCTCTGTTCCTTACTGATCTTGACAACCTCATCATTATGCTTAATTTGCTTATTCTCAAAGAAGTCCAGCGTGATCTTGGTTGGACGCTCATACAAGTCGTCCTTGATTTCCTTTTGAAGGGATGAAACAAAATCTTTATAACCATCACTTGCAATGACAGTCAATTTGTTAACGTCTTGAACTTCCGCACCCAAAATATGTTCATCCATCCGATCCCCATCTTGGTTAACACAGATTCTGAGCCCACGCCCAACTTCTTGACGCTTATTGGTTGTACTATCGCCACCATGCTTTAACGTGCAAATCTGGAAGACGTTCGGATTATCCCAGCCTTCGCGTAAAGCAGAGTGAGAAAAGATGAAGCGGACTGGATTATCAAAAGAAAGCAGCTTTTCTTTGTCCTTTAAGATCAATTCATAGGCTGATTCATCATCACTAATATCAGAACCTCGCTTTATCTTGGAGTCAATCTTGTGCCCTTTCTTATCGATACTGAAATAGCCCGCATGAGTCTTCTTCACATCGATGCTCTTGAGATACTTCTCATATGGCGTATCAAATAGAGTCAGATATTCGTTCAAGATAGAATTGTATTCTTCTTCGAACATCTGGCCATATTCTGAGTTAACTTCATTGCCTTCTTCATCATATTTACGATAATGTTCAACCTTATCGATAAAGAAGAGTGACAAAGTCTTAATGCCTCGATTATAGAGATCCTTCTCTTTCTCGAAGTGCGAGCGGATAGTTTCGCGGATTTGAACTCGACGAATATCCTTTTCACTAACATCCCCTTGAACTTCACCAGTATGAATTTCAACACCGTTAGTGAAAGTCACTAGGCCATTTATTGGATCGATATCATTGATGTGGTAGCCTTGGTATTGCTCCAAGCCTTTAGAAAGGGCGTACAAGTCATCATCTACTCCAAGAATCCGAACTTCACGGTTGATTGACTTGTTGTATTTGATTTCAAATTCAAGTCGGGCTCTTGGCGGATGGTTAGGGGAAATTACGATATTCTCAAGATACAGATATCCGTCTGTCCCTCGTAAGTTCTTGATGTCGAAACCTTTGACTTCAATCTTCTTAACCAACTTCTTCTTGTAAGCGTCAAGTGCATCAAGGACATAAACCAAGTCATGGTGTTCCTTATGCGTTGCAGAGTAGTTCAAGGTAAACAGAGGATTGAACTCTTTAAGAGATTCCTGTGTTTTCTTACCACCCATTTTTTGAGGTTCATCGAGAATGACGATTGGCCTGTTAGCCTTTATAACATCAATTGGCCTACGGCTAGCAAATTCGTCTAACTCCATTCGAATTCTTCGAGCGTCTTTTCCACGCGCATTAAAGGCTTGAACGTTGATAATCATGACTGACAAATCTGCACGAGAACTAAAATCATCAATTTCTGTTAGATTCTTTGAGTTATATATACAGGTGTGGGCTTTCTTCTCATACTTCTCTTTAAAGTGATCTTCCATCATTTGGAAACTCTTCTGAACGCCTTCACGGACAGCGATAGATGGAACAACAACGATGAATTTGTTCCAACCATATCGTTTATTTAACTCAAACATGGTTTTGATGTAGACATAGGTCTTACCAGTACCAGTTTCCATCTCAACGTCCAAAGAGCAAGCACCCATATGTTTAGCAAGAGTTGAGGATTATCTAATATTGTTCTCTTTTTGTACTTCACGAATATTATTAAGAAGTTGCTCTGATGACAAAGCCACTGATGCATTAGAAAAGCCAGCTAGATATGTATTATCTATTACTTCCGAATCTGAAAGCTTGACTTCATACTCCTTACCAACATCACGTCGATAGCTGACGCCCCCCTGCTTCGGTTGACCTTTAAAAACATTAACGACACTGTTCACAGCATCGGTTTGATATTGCTGGATCGTAAATTTAAATTTCATGTCAGCTATCTTATAGAACCTTTCTTACAGTCTCTGGGCTATATGTTTCAAAGATCTGTTCGAAATTGGCAGCAACAATATCATTAGCCATGCTATTATCCCGGAAAACAGCATAAAATGGTCTCTTCTTAGCAATTTCGATTACTGTTTCTTCAGTCACATTCTTATCGAAGCAAGCCAAGAGATAACCATCTGCAACGGAGAAGACCTTCTTGCCAGCAATCTCCTGTGTTTCGATATCTGATGAAAGTAGAATACCTAAATCCAACATAACTTGAATTAACAGGTCTTCGGGCGTTCTATCCTCCTTTATATTGTCCTCAAATCCGTCAAGACTAAGTTGTTCAATATCTGCTGGAGCATAGTAAACGTCCTTCATATTAGATGAATCAACTTTGAAACAACGGAAGCCATAGTCGATATCAGCACCTGTTTCATCCTTGATCTTCTTACCTGCACGGCGGATACGCTCTTCACCTACATCACAAATATTTTTAAAACCGGATTTATAAGCTTCACTCTTCTGACCTGTTTCTTCTTGCAACTGTACTAAAATATACTTACGTTTTCCGCCATCCTCAGCATTTAATTGCATAGCAGCTTGTGCAGTAGTTGCTGATCCTGAAAAGAAGTCTACAATGATTGAATCTTTTTCAGTTGCTTGTAAAATGAGTGACTTTATGAGCGACATTGGTTTTGTATACGGAAAAAATGATTTTCCAAAAAGATCATACATTTGTTTCGTGCCTTCAATATTCATTCCAACATCACTTAGCCACGTTGATTGTGGATTTGTGGCTGAATTTAATTCAGACGCAAATCGTTTTCTCATGGGCCGCTTTGAAGTATCCTCAGGAAACACGATTCTATTTTCTTTTATCAATTGGTTCATTGATTCCGGGATATAGGACCAGACACGATTGTAATTTGGCTTATAAACCTTTCCAGTCTTTGGATCAACCAGATCATAATATTGATTGGGACGCATATCCGCTGTCATTCCTACAGTCAGATCTCCTGGTGTCCATGGGCCTCTGGGATCACTGTCTGGATTTGAATATCCTTTATAATCTTTATCGATTCCACGTAATGCAGTGAATTTTTCCCTTTTATAAGCTAGCACATATTCATGATCTGTTGAGCACTTACTTTTATCTAGTTGAGATGATGATCGTCTCTTCCAAACAAAAGTTGCTAAAAAGCTTTGTGTTCCAAATATTTCATCACATATTTTTTTTAGATTTCCGAATTCATTATCATCAATAGATATAAATATCAAACCATCTGGAGCTAACAAATCCTTTGCCAATCTAAGTCTTGGATAAATCATATTCAGCCAATCAGTGTGAAAGCGTCCATTACTCTCACTATTTTGAACTAGACGGTTTCCTTCTTCATCTGTTTGACCACTGTTATCAGCATATTCATCAACACTCTGGGCAAAGTCATCTTCATAAATGAAGTCATTCCCAGTATTGTAAGGAGGGTCAATATAGATCATCTTAACCTTGCCTAGATATGTTTCCTGTAATAGTTTCAACGCATCTAAATTGTCCCCCTCAATATAAATGTTTTCTGAATCAACTCCTCCTGGTGTACCATCCCTACCAACAGACTTTTCTTTTTCTAAACGTAAAGTTTTGGAAATTGGAGCATTCGCCATCACCATTGACTTACGTTTATCTGGCCACGTAAATTGATATCGTTCCTGCCCATCATCGATAACCTTAGTATTGATTTCTTGCATCAACACATTCTTATCAATTGCCCGAACAGTATTGCCGTCTTCATCTTTGATTTCTGTCACTGCGTCTGGAAACAGTTCTGCTAACTTTTTATAGTTTTGCTCTGCTATATCTGGCGTATGCATCTTCAGCTTATCCACGTATTAATACCTCCAACTGCTCCTTATGCTTTTTCAAATCTTGATAAAGATCAAATTTCTTCTTTGGCTGGGTCTCTCCCCAGGCTGCTTTCTCTAATTTCTTTATTTGTTGTTGCAATTGCACTATTTCATCTTGTCTCATCAACTGATCGTCAAGACTCATTTTTGAACTGATTTGAGTATCTGGTCCTATTGCGATCTGTCGGACTAGTCCACTCCAGATATCCTCAAGACTATCGCCGGAAAGGTGCAGCTCAACCTTGGCTTCCGGCATCCACTCAGTCATATAGAGTTTCTGATAGTAAACAGCTAGTTGCTTCTGATCTTCGTAGCTCATCAGAAAGACAAGTTTATGCGGGTTGCCTTTTGCTATTGCTTCAATAATCCTTTGATCGTAGTCCTGCTTCTTAAGCTCAATCGACAGTAGCAAAATTTCTTTTATCTCTGAGTCCTTAACTAAGTTCAAATTCTCTTTAGTCAAACTGTTTTCAGCCACAATACGGCTAATGTCTGACACAAACTTGCTTTTCAGAGCTGTACTCAGTGATAAATGTTTGTAAAATGCTTCCTTAGGAATCCGTCGATTAGTCTTTGTGCTTTCTGGGAAATCAATCATTTACATCACCACCAAGAAGTCAATCAATTCAAAGTCATCCAAGCCAGAGAAACCACCAGATTGAAAAGTGGTGGTGCCTGCAGAAAAGAAACTTTCAATGTCCTCTTCATTTTTAGCTTCGATGATCGATCCAATCGCATCTTCTAAGAGCTTTGAGACCTCTTGCATCTGACGACCATCTTTTGTTACCCGGTTGAATTCCTTGCACAGCTCTTTATCTGGCTCATTTCGTCCTTTTGCCAGATGCCGCATCTCGTCAAGGATATCTTTCGGCTGTAAATGGTTTACCAGAATCTCTCCATCCATATCCACGTAGACCATGTAGAACGGATGAAAGCGGTTCCTGTCTTTGATATTTATTTTCTTGTTCACATTCTTCAGTACGAAGATCACCCCGGGCTTATCACCATGAACAATGGCATGAATACCAAATGGCAAACGGTCTAGATCCTTGTGCTCTTTCATGTAGGCGAGTAAATCCATCCGGAAGTCGTTTAGCCCAAGATCCGTAATTGAGATACCTTCGTTCATGTCCTCCAGATCGACTACTTCTTCTTGCAGACGCTTCAACTGGGTTTTTCTGTAACTCAGATCTCCCTTCTCTTCTGGGTTGATTAGGTCGTCATCCCCTGTTGAAGTCATTACGGAGATCTTCATTCTGGTCTCAACACGATCTTTAAGATTGATGTATTCGTCAAGTGTCAGATCAGGCCAGAAGTTGACCAACTGAATAACCTTGTTCTTGCTGCCGATACGGTCAATCCGGCCAAAACGCTGAATAATCCGTACAGGGTTCCAGTGAATGTCATAATTGATGCAGAAATCACAGTCCTGCAAATTCTGGCCTTCAGAAATGCAGTCAGTTGCAATTAAAATATCGATATTCTTTTCAGTATCATCCGGATAGACAACATTCCTGTCCTTAGACATCGGTGAAAAGCAGGTCAAAACGTGGTTCATCTCTGCTCTAAAATTCGGAATAGTTGTCTTCCCTTCGATACTCCCAGTCACCAAGGCAGTATTCAACCCAATTTCCTTAGCCCGAGGAGCAATGTTCTCGTACAAGTATTCAGCAGTGTTTGCAAAGGCAGTGAAGATCAGAATCTTCTTATTGCCTGGATTGATAGGGTGCTCTTCTTTATTACGGATAACCTCAAATAACTGGTTGAGCTTAAAATCATACTCTGGTGAGATGTCCTCGGTCATATGGATCAAGGTTTCCAAGACGTCAACATCCGCCTTAATTTCTCGTTGCCAAGAAAGATAATCCATGTCCCGCAAATCAATCTGAACCTTCTTGCCCACTGTGAAGATATCAGTGTTTTGATCATCCTCGTCAAAGTCAGTGGCCGCGTTTGATAAGTCAGTTAATTCATTAAGCTTTCCCTTGCCATCTTTTTGGAAACGATCAATTGCATCTGAGGTATCACACATGTATGCATATATCTTTTGCAACGTTAGTAAAAATGAGTGAACTGAGCTTTCCATTCTTTTCAGAAGGTTAATACTCATCAAACGCTGAATCCCAGATTCACGACCAACTCTGAATTTCTCAGTTTCTCTTTCAGAAACGTACTTTGACAGCCGGCTTGGCAAAATGTATTTCGTTGGTGTGTAGATAGCCAGATTTAGCTGGTTTAAACACTCATACACGTCTTTGTAATTAATTGCTCCAGGCTTATCAGTTAGCTTAGGGTAAAGGCTGATTGGCTTTAATCGTTTAGGAAATGTGCCTATTTCAGTAGTGTCATAGTAATTTTGAATGTGATACCGAGACCGCGCGATCGTGACAGCATCTAAAACTTCAAAGAAGTCAAAATCTAGTTCTCTCAATAAGTTCTTAGTTGTCCGCTCCACTTCAGGCCGCTTGCACCAAGCATTGTAGACGGACTGAGCTCTCCGAAAGATCGTGTCGATGTTTGATTCGGTATTGAGCTTCTCGTTAATCTCATCTGGTACGCCTTCATAAGCCAAGGCAAGTTGATTTCTAAGATCATTGAAGCGATTGTTAACGGGAGTCGCTGATAACATCAAAACTTTAGTGTTAACACCGGCTCTAATAATCCGATTCATCAGACGCATATACCGGTTTTCTTTCTCGCCGCCATGTGTATTGGTCCCGTTACCATTTCGGAAATTGTGACTTTCATCAATTACTACTAGGTCATAGTTACCCCAATTGATTTGTTCAATTGGTAAACCTGTCGCTGTTTTGCCGTGATCTCTTGAGAGGTCAGTGTGATAAAGGACATCGTAGCGGAAACGATCTTTATAGAGCGGATTATTAACCAGATTTCCCTTGTAGGTCATCCAGTTTTCTGACAGCTTCTTTGGACACAAAACTAATACGCTCTTATTGCGCCCTTCGTAGTACTTGATTACTGCTAGTGCAGTGAATGTTTTACCCAAACCAACACTGTCGGCCAAAATGCAGCCATTGTATTGCTCCAGTTTGTTGATGATGCCTAGAGCCGCATCCTTTTGGAAGTTGTAGAGTTTGTTCCAGATTACGCTGTTTTTGAACCCAGTAGCTTCGTTTGGTAGCACATCTTCAGACACATCTGCCAGAAATTCGCTGAAGACGTTGTAGAGAGTCATAAAATAAATCAGCTCAGGAGAATTCTCTTGATAGACTGACGAGATTTTATCGATAATTTCGTCAGTTACATCTACCATTTTTTCTTTGTCCTGCCAAATTGATTCAAACGTATCTAAGAGGGCTTGACTAGCTTGATTATCGAACCTCATAGTCATGTTGGTCATAGTGTTACCACGCTCACATCCCAATCCGACAGTCGTAAATTCATTAAATGGCATGTAAGTGTAGGTATTTTCGTAATTTTCTACCGTTAAGAATTGGTTTATACTCTCATCAGTCGTATTGGTTAGGAAACGAGCCTTGTGTCGAATCCAGTTGGCACACTCTTTAGCAATTGCCTTCTGCTTAAGTTCATTTCTCAAGCGAACCTCAAACTCAGTACCATACAAACTATTTTCTCGAGTAATCCGCGGGATGTAGAACTCACGACGCTCTTTTGGCATTTGATCAGGTACAAACGTTGGTGAAGTAAAAATGAAGCGAAACTCGGAGCATTTTTCCAATTCCTCTTTTAAGGCTTGGTAGGCATAAATGGAGAAGCAGGCTGCAGCAACAGAAACTTTGCTGTTAGGTGTAATCTGCTTCTTCAAGTCGTCTCTCACTACCTCAGTTGTGTTGTTAAAGTTTTTTACTCCCACGACTTACACCCCCATTTCTGTATGCCAAAAAGCTGGTGGCAAGCCATCCGCTCTCGTATTTCATACAAAAAGGATCCACCTATCCCTAAGTTAAGTTGAGTTGAGTTCATTCTTCTAATCCAATCATATCTATAGAATAAAAATGGAACCAAATTGGCCCCATTTTTTGGATAATCTATTCATCGTTATGAAGTATTCAGTCTTATGAGGTACTAAAAATGGTATTATAATACCTTCTATTTTATTAGAAAAAACGCAAAGAATAAAGGCCTACGGCTGAAATACCGTATATGATAAGTGGCACTCCATAACAACCATAGAAGCTCATGCGATTTTATTCCTTCTTCCCAGCCACAACCTCAATCTGCAATTCACTTTGGTCAATGCCATAGAAGTCAAACAAGTCTCTCAACTTGTGGATCTTGTTCCAGTTGTCAGTGCTCGTGTACAAGTAGACACCATCCGCAACTTGGCTAAAGCCGTTTTCTGGATGATCAATCAGTACTTTTTCAAGTTTAGTTCGATCACCTGCAATTAGTTGGCGCATAGGCGCAGGATCAAGCTCATAGAGTGCCCGCACAACTCCAATATACATCTCTTTCCAAGTGCGCTTAGGTAGCTTGTAAGGTGTGTTCATCAAACTGTAGGAAGCGATCTTCACGTTAGCGTAGTTGTTGTCGTCATCAAGGCCATAAACTTCATTTTCAACAACCTTTGGCTGAAAATTACTGCTTGGCATTGGCCAGAGCTTTAAAGCTGTCTGCTTCAACAGTTCACTACGTTCTATCAATTCCTTTTCAGTCCACTGATCGCATCCCTTAACAAAATCATTCAATCTAAACCCACTATGATCAAAACCGTTCTCAGCCGTCTTTTTCTCGTGAAAACTCTTGTTGCTGTAGCTTGAATTATAAGCCGTCAAACATCTCATAAATTGGTATCGCGGTACCCTTCATTTTCATTTCCTCACATTCTCTATAGATACTTATATGATAGCAGTTTACTTCCTTAATGGCCTTTTAGACTCTACCAAAAAACTCTCCCTAAAGCATTAGAGAGAGTCATCATTTCCTTGCCCCTACATCATCGTCTGCTCAATATAGTGCGCGATATTCTTCCCAGCGCGGGCATCGCTTGGCGTCTTGGCCACCGTGGTGTTGTAGCGGTCATCGCCAAAGAAGGTCAGCCGGTAGTGCTTGCCGTCCTCCTCGATCCTAAAGCCGAAATCCTGCAGAGCCTTCCGGGTCTTGGCATCCATAATAGTGTAATTCTTCAGAACCCTCTGAATATCAGCCTTTGACCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCTGGCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCCAACCGCAAAGACTGGATCGCTCATATTTGCACAGACATGACGATCGATGAAAATGAGATCATCAGAATTTACGGCAAAAGATGGGACATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTAAAGCGTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCCCATACAGCTTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAACTCTTTTACTACATGGTGGACGAGCTTGCGGACATCACTTTCAATCACTCCCTTCAGATCCTGGTAGAAGCCATGTTTGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGGTTCACCAACGCTTTCATTTCACGCTTCCCGAAGTACATGCAAGAGGCTATATCGCCATCACTAGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTATGGGAAGTTTAAGTAATGGATCAAACAAATTTCAAGTTTTATCAAGCTGACAACGTTCAAGTTTTATCAAGCTGACAACGTTTATGGGGCCTTATTTTCCCAGTTTCCCAAAGTATTGATGTACGGCGAACAATATCGGTATTTAAGTAGTGAAGCCAAATTAGCCTATATCGCGTTTTTCCTGGTTGGCATTCCAACCGATATTAGCGGCATTTTGCCGGTAACCAAACCGGATTTTTATGGTTCGCAGCTTTAAACATCATTGAAGGAATTGCGACCCCATTTTTTACAACGCTTTTAATGGCAATGATTCAACAAAGTTATCCAGCAGAAGAGTTAGGGCGGATTCTAGGCGTTTTGAATTCTTTGTTGAATCTAGCTGGACCAATTGGCTTAATTTTTGCCGGTCCCCTAGCTGATGTGATTGGCATTGAACGCCTATTTGTGATTGCAGGAATCGGTACTGCCATTTGCGGGGTGGTCGCGGTGTTAATGCCAATTACCAGGCAATATGACATTAGGCTGCATCAAAAAATGGCGAAATTAACTGAGCAACCAGATAAGTAATTAACATGATGATCAAAAAGAGGGGAAAGACCAGACTACCAGCTGATCTTTCTCCTCTTTTTTGTCATCACTTAATTACACGTTTTTAATCTTTTCAGCAGTCAATCCCATCGCATTAATTGCCACGATAATTGTCGACATAGCCATGACCACAGCACCAACGGCTGGGTCTAGAATGATTCCAATAAATGACAACACACCGGCAGCAAGTGGAATTGCGACAATATTGTAGCCTGCTCCCCACCAGAGATTTTGAACCATTTTCCGATTTGTGATTTTAGCCAAATCAAGAAAATGTAAAATATCGCTGGGTTCTGATTTAACTAACACAACATCAGCGGAATCAATGGCAACATCGGTTCCGGCACCAATTGCAATTCCAATATCGGCCGCGGCAAGACTTGGTGCGTCATTTACGCCGTCACCAACCATGATGACGTGATTGCCCTTTGCTTGATAATCAGCAACAATCTTTTGCTTATCATCTGGTAATAGGCCTGCATGGAATTCAGTCAATCCTAGTAAGTTAGCAACGTGTTCCGCGGCTTTTGGATTATCGCCAGTGAGCATTACAGGGGTAATTCCTCGCTTCTGAAGACCACTAATTAATTCCTTAGCACCCGCTTTGATGGTGTCGCCTTCAGCAACCATTCCTTGAACTTGGGTGCCCTGCAATAGGAAGCTGACGGAATTACCCTTAGCAGCCCATTTATCAGCAGCGGCCTCGTCAAACTTGATCCCTTGCTTCTTTAAATAGTTACCATTAACAATCATATAGTCAGTGCCATCAACATTACCGGAAATACCAACGCCCGGAATATTTTGAGACTTTTCAGCCGCAACGACTTCAATGCCCTTCGCTTGGGCTTCAGTAATGATTGCTTGGGCCAGCGGATGAGTCGAATTACTTTCAAGGGCGGCCAGTCGGCTTAATAACGTTGTTTCGTCAATCCCATCATTTGGAATCAATGCATTCACCGTAAATTTACCTTCTGTTAACGTGCCAGTTTTATCCAAGAGAACGTGGCTAACATGTTGACTTGCTTCAATGGCTTGGCGATTTCGAACTAATAGCCCATTTTGAGCGCCAATCGTAGTAGAACGAGAAACCACTAATGGAATCGCTAATCCTAATGCATGCGGGCAAGCAATCACGAAGACGGTCACCATGATCGTCATTGCAGTCGCCAATCCCTGGGGTAACCAGGCAAAGAAAGCAATAATCCCAACACTAAATGCCGCGTAAAATAGATACTTGGCAACTAAATCAGCTTTATCTTCTGCTTTAGATTTAGCTTGCTGAGCATTTTTAACCATTTTCATTACTTGAGAAAGATAGCCGGAGTCACCAGTACCACTAATTTTAACCGTTAGCGTCCCGTTATTGTTGGTTGCACCACCAATGACCTTATCGCCAACTTTCTTGGGAACGGCAGCAGATTCACCGGTTACCAGTGCTTCATTCACGGTCGACTCCCCAGCCGTAATAACACCATCGGCTGGAATACTCTCACCTGAACGCACTTGGAAAGCTTGACCAACTTTTAAATCAGATACTGGCACTTCTTTTGTTTCACCATTATCTGTAACTAGATGGGCCGTCTTAGGCAACAGGGCCGCCATCTTTTGTAAGGCATCCCCAGCCCCCATCAATGCATTCATTTCAATCCAGTGTCCTAGAAGCATAATTAAAATCAGGGTTGCAAGTTCGAACGAAAAATCCATTACATGATTTGCCGGGTTCAAGAAGTTGTTGGCAATAAATGCGTACAAACTGTAGAAATACGAAACGGAAATTCCAAGGGTTACTAGCGTCATCATTTCAGGAGATTTATTCTGAATTTCCGCTTTAGCCCCCTTTAAAAATGGCATTCCGCCATAAAAGTAAAGTGCTGTATCAAACAAAACGATGATAATGCCAACAATTAGCGGTGAACTGAAACTAAGGATGGAAACGTTTAAACCCATGATTGGTGCTAACAGTAAAACTGGAATCGCTAAGACAACGGAGACCCAAAATTTAACTTTCAAATTCCCCATATGCATCATTGTGCCACCGTGCATCATCATGTCGGTCCCAGCCATATCCATATCACCGTGATTCATGTTCATTTGGCTGTGATCCATTTCGGCCATATCGTGGTCCATGTTCATTTGATTATGATCCGTTTCGGCCATATCGTGGTCCATGTTCATTTGATTATGATCCGTTTCGGTCATATCGTGATCCATATGACACATATTTGATTCATTATTTTCCATATTCTTAGCACTCATGTTTTTCATATTCATATGGTCCTCTTTATTTTCCATATTCTTAGCACTCATGTTTTTCATGTTCATATGGTCCTCTTTATTTGCCATGATTATCGACCTCCTAAAAATAAGTGTGCGTAGCAAAGCGGTTAGAAGCCGGAATATAAGTTCCTTGTGTGGAAATCCCCGGGCTCGGGATTTTTCCACCAGGTTCTTATATTTAGGCTTCTGCTTTGCGGAGCACCACGCCACTATATGAATTAGAATTACGACAAAAATTCATAAGTTTCCGCCATCAGAAATCCCAGATTCTGGATTTTTGTGCAGCAATCCTAAAAGTAAATAGAACACCACAGTCTTAACACGTTTGATCACCTGGCAAGCAGTTACACTGAACTTCCTCGGGCGCTGTTTTGGCCTTTTCAGCTAGAATCGCCTGTAAGTTCACAATATCCGCCCGTGAGAGTTCCCTTGACTGAATAACGCCGGCAATGTTGAACCAGCCCGCATCGCACACATATGGTCAAACAAATCATCTGCCGCTGCCGCCATTGATTCCTTCTCGCCAACAACCAGCTTATACGTGAATGGTCGACTGCCGCCATGCTGCGCAACCGCCTGTTTTTGAATCGACCTGTGAAGTAGCGTTTTGGTTGTTGAGCTGACCAGCCTTCTAATTCGTTCATAGCATCGATTAGTTCACGACTAGTCGCATGTCCCATTGTCCAAATTGCTCTCGTAACCATCCATCAGAATCGGTGATGGTTACATTCTTTGCATCCTTCAATTGGCTTCCTCCATTAATTGAATTCTAAGTTTACGTTTGTAGCCTCTTAACACTTATTAGTTTACGACTGTAGTCACAATAATGCAACCTTTCTGCCAGAAAATACCATGACATTAAAAAAACGCCTAGATAATATTCCAGGCGTGGTTTGATACGATATGTTAAATTAATGATCTGGGAATTTTTGGTTTTCTTGTTAGTATCTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCACGCAGAAAGACGAAAGCTGTATGAGCAGTCAATGCATCATATGACAGGCCATGGTATTCAGTGCCAAGCTTCAAGAAACTCTTGCAGGTCTTGAAGAAGACCTCGATGTCCCATCTTTTGCCGTAAATTCTGATGATCTCATTTTCATCGATCGTCATGTTCGTGCAAATAAGAGCGATCCAGTCTTTGCGGTTGGAACGATTTCTTACGCAGACTATTCTGGCATCAATATATTGAAAAGCACGGCTACCGGCCAGACATCACTGACGAAGACAGAGTCGTCCTTAAAGAAGGGACCGTTGACTACGTGGCCTTCTCTTACTACCAGTCAACTACTGTCTCCAGCGAAAAGGTCTCAGCTGATGAACTGAGCGACCTGGAAAAGGCGGTTGCGGTTAACCCGACTTTGGAAAGAAGCAACTGGGGCTGGGAAATTGACCCGGTTGGCCTCCGCCTGGCTTTGAACCACTTGACTGACCGCTACCACCTGCCCTCTTCATCGTTGAAAACGGCCTGGAGGCCTACGACAAGGTCGAAGACGGCAAGATCATGACCCATACCGGGTTGACTACCTGAAGAAACACATTAGCGAAATGGAAAAGGCAGTTGCGATCGACGGCGTTGACCTTGGGCTACCTGCCATGGGGGCCAATCGACCTGGTTTCTGCCGGGACTGGCCAAATGGACAAGCGCTACGGTTTCATCTACGTCAACAAGAATGACCAAGGAGTCGGCGACCTCAGCAGAACCCCAAAGGACTCCTACTTCTGGTACAAGAAGGTCATTGCATCCAACGGGACTGACCTCGACTAATCTTCTCTAATTCTTATTGCTACTTAATCTCTTAACGAAAACGCGAAAAGCGACCAAGATCTGCTATGATCTTGATCGCTTTTTTGTGCTTAGCTAATTTTCTTTTTCTACTTAAAATGGCTGCTGTAAACCGGATCTTTGAAGTCCTTTTGGCCTTTTAGCCAGGCAGAGCATTGCCTTGCCAAGTCTTCCGTCATCGTAAAAAAACATGCTTCCAAAAAATGGAAACATGTTTCTTCTGTCTATTCTGCTGAGAAGTAGTCCTGGAGCAGGTCTGAGTGTTGCTTCAACTTCTTGACAGCCTTATCTTCAATCTGCCGGACCCGTTCCCGGGTAACGCCCAGACTGCGGCCAACTTCTTCCAGAGTGTGCGGCTCATAGTTTTCCAGGCCGAAGCGCAGCTTCAAGACCTTAGCTTCTCTGTCAGTCAGGAACTCACCCATCATGCCGGACAGTTGGTCCTTCAGCATTTCAAAAGCAGTGTATTCTTCCGGGTTGATTGCCTTGTTGTCTTCCAAAAGGTCCCCCAATTGCGAGTCCCCTTCTTCGCCAACCGACTTGTCCAAAGAGTCAGTTTCCTGGTTCTTGGCTACCGTGATAATTTCCTGCACCTTCTGCAAAGGTTCATTCATTTCCGCGGCCAGCTCTTCCGGCTTGGCATTCCGGTCCAGGTCCTGCTGCAGAGTCCGCTGGATCCGGTTCATTTTGTTGATGCTTTCCACTACGTGAACCGGGATTCTGATCATCCGGTCCTGGTCAGCCAGGGCCCGGGTAATGGCCTGCCGGATCCACCAGGTAGCATAAGTTGAAAACTTAAAGCCCTTGGAGTAGTCGAACTTGTCAACTGCCTTCATCAGGCCGATATTGCCTTCCTGGATCAAGTCCAGGATCCCCATCTTCCCATTGTGCTTGGCATAGCGCTTGGCAATGGAGACAACCAAACGGAGGTTGGCGGCGGCCAGTTCATCCTTGGCTGACTCATCGCCGTTTTTAATCCGCTTGGCTACTTCTACTTCTTCGTCCCGGCTCAAAAGCGGGACCTTGCCGATTTCCTTTAAATACATCCGAACCGAGTCGTAAACCTGGTCGTTGTCGCTGGAAGCGGCCAGTTCTTTTTGTTCTTTCTTTTCAGCTTCTTCTTCAGCCTTGAGGGCCAGAGCAGACGGTTCACCCTGGTCGTCAACGATACTAATCCCATTGTCCGCAAACTCTTCTACCAGCTTGGCAGTTTCGGCATCATTCAGACCATACGGCAGCAAGAGCCGGGCCTTCAAGTCCTTTTCGCGGATCCGCTTGGTCTTCTTTAAACCGGTAATCACCATTTTAACTGCTTTTTCCAGTGGAAAATCATTTACGTTAGAAGCATTTTCTTTTGCCATTCAATCCGCCCTGTTCTTATTCTGCTAAAAATTTACTACTCTAAAAAGTCACGCAACTTGTTGCTCCGGCTTGGGTGCCGCAGCTTGCGCAAGGCCTTGGCCTCGATCTGCCGGATCCGCTCCCGGGTCACGCCAAAGACCCGGCCGACTTCTTCCAAAGTCCGGGGATTTCCGTCATCCAGACCAAAACGCAGACGCAATACATTCTCCTCCCTGTCAGTCAAAGTGTCAAGCACTTCCGCCAGCTGGTCTCTCAGCATTTCACTGGCCGCGTGCTGTTCCGGGCTGGTTGTGTCCTTGTCTTCGATAAAGTCGCCTAAGTGGGAGTCATCCTCTTCCCCAATCGGTGTCTCCAAGGAAACTGGCTCCTGGGCCACCTTGAGGGCCTCCCTAACCTTCTTGACCGGCAAGTCCATTTCCGCGGCAATTTCTTCTGGCTCCGGGTCTCTGCCCAGATCCTGGAGAAGCTGCCGCTGGATCCGGATCAGCTTGTTAATGGTTTCCACCATATGAACCGGAATTCTGATCGTCCGGGCCTGGTCGGCAATCGCCCGGGTGATTGCTTGCCGGATCCACCAGGTCGCGTAAGTAGAAAACTTGAAGCCCAGCCGGTAGTCAAACTTGTCGACTGCCTTCATGAGGCCCATGTTCCCTTCCTGGATCAAGTCCAGGAAGTTCATCCCCCGGCCGACATAGCGCTTGGCAATCGAGACAACCAAACGCAGGTTGGCTTCAGCCAGTTCCTGCTTGGCCTCTTCATCGCCGGCCTCAATCCGCTTGGCCAGGGCGACTTCTTCCTCACTGGTCAAAAGGTTGAACCGGCCGATTTCCTTTAAGTACATTCTGACCGGGTCGTTCATCTTCATCCCGGTCGGGGCGGCCATATTGTTCAGTTCTGCCTTTTCAACATTTTTCTGCTTGGTCAGAGCCAGCTTGGAAGGCTTGCCGTCCTCATCAACAATGCTGATCCCGTTGTCTTCAAATTCCTGGACCAGCTGGTCAACGGCCTTGCCCTCTAATTTGTAGGGCTTGATCAAGCGGTCTTCGAAAGCAGCTTCAGTGATTTGGTGGCTGGCCTTTACTCCTTCAACAACCAGCTTCACCGCCTTTTCCAGGGACATCTCATTAGCCTTGGTTTGCTTTTCTTCTGTCACTAACTGCCTCCTCTTCCTGCAGCTTCAGTTGCCTTAGCTGCAAAATTGCCTGTGTTTCCAGCAAAATTGCCGTTTGGTCGTTTCGCCGACGTGCGTCTGCAATCGCCTGCATGTGGCGGTCGATCTCATCATCTATCTTGCACAGGTTGAGTACCCGAACCTGCGCCTCGAGCTCTTCCAAGGTGATTTCCCCTGGCAGCCCGGTCATATCAGTACTAACAATTATACTCTGAAGTTCTTCAGGAATAAAATCCAAAAAGCCGCTCAATGAAACATTTTCATGAGTTTCAATGTAATTGAGCCAAAGTTTGGCCAGGCGCTCGTATTCCGGGTTTGGAAAAACAAAACCGTTGACGATCAAGTAGTCCCGGGCCTCATCAGAATAGATGTAGGCATAAAGCAGGCGCTGCTGGGCCTTTAGAGCCCTGGTGACCGGCTGCGGATCCGCGGCTGGAGCCAAGGGGGCCAGCTCGGGCAGGACTTCGCTGCTGGTATGCTGGTCCACCCGGCGCTGCTTGCGGCGGGCCCTGGACAAGTTGACCTTTAAAGCGTCCAGGGAGACTCCGGTTTCCTTGGCCAGGCGGCCTACATAAAGTTCTTGTTCAACCGGGTTGGGCAAGGCGGCGATTTCCGCTACTGCCTCGCTTAAATAGGCCACCTGCTCGCGCTCATTGTTTATGTTGTACTTCTTCTTCAAGCGCTGCAGGGAAAAGTCAGTGGTCGAAATAGCCCCTCTAATCGCGGCCTGGTAGCTGTCCGGTCCGTACTGCTTGACATATTCGTCCGGGTCGAGCTTGTCAGGCAGGATCACGATGCCCAAGTCAAAGTTGCCGGCCTGCTTGAAGAGGCCCACCGCCCGTTCAGTTGCGTGCTGGCCTGGATCGTCGCCGTCATAGTTGATGACGACTTGCTTGGTGATCCGGCGGATCATATAGACCTGCTGCTGGGTCAAACTGGTCCCCATGGAGGCAATCCCGGTCTTGACCCCGGCCTTATAGGCCGAAATCACGTCCATATGTCCTTCAAACAAGACCAGGTGTCCCTCTTTTCTGGCATGTTTCTTGGCTTCTGAAAAGTGGAAGAGCAGGTCGGACTTGTTGAAGATGCTGGTTTCCGGACTGTTCAAGTACTTGGGTTCTTCCGGGTCATCGCTGATTCTCCGGCCGGAAAAGGCTACCAAGTGGCCGCTTTCATCACTCATCGGGAACATCAAGCGGTCTCTGAAGCGGTCAAAGAGGCGGCCGTCCTGGCTCTTGACAAACAAGCCGCTTTCCGCCAGCTGGTTATCCGTATAGCCTTCGCCTCGCAAATAGGTCAAGAGCAGGTCGGACTTGCCTGGGGCATAGCCGATCTTAAAGTGCTTGAGCAGGTCATCGTCCAAGCCTCTTTTTCTTGCATATTCCAGGCCCCTTTCCCCGATCTTGGTAGTCATGAGAACCTGCTGGTAAAAGTCCGCCGCTTCCTTGTGCATCTGCATCAAAGGATTCAGCTTGACCTGCTGCTCCTGGTATTCCTGGGGCATGGGGATATTGGCGAATTCCGCTACTCTTTCAACGCTTTCTGGAAAAGTAACTTCTTCCTTTTCCATGATGAACTTGTAGACATTGCCGCCTTTATGGCAGCCAAAGCAGTAGAAGAACTGCTTGTCCGGGTTGACGCTGAAAGAGGGGGTCTTTTCTTGATGAAAAGGGCAAAGACCAACATAGTCTTTGCCTCTCTTCTCCAGTGATACATACTGGCTGATCACGTCAACGATATTTACGCTGCCCCGAACTTCATTGATAAAATCTTCCGAAATTCTTCCAGCCAATTTGCCTCACCCTTTATTAAAAATTTGCATCTTACTTGATAACCAACTTGCTCAAGTCGCCCAAGCGCTTGGCCAGGTCATTGACAGCTGCCAGCTGGCTCAAGCGGTTGTTCTTGACTGCTTCGTCCTTGGCCATGATCATGTTGACGTCGAAGTAGCGGTCGATTACCCCTTGCAAGGCAACGAAGGCTTCGTAAAGTTCAGCATGGTCCTTGACATTTGCCAAAGCTTCAACTCCATCATAAAGGTCTTGTTCGCTTCTGTCTTCAAATAAGCTTGGGTCAACCGGACTAGCCTGGCTGAACTTAGCCTTCTTCAAGATGTTGGCGATTCTAGTCAGACTTTCAACGACTGGCTTGAAGGCCTCGTCGTCATGGTGCTGCTGCAGAACCTTGGCAGCGGCCAGGATTTGGCTTGGGTCTTGTTCGCTTGAAGCCAGAACGGCGTCGATAACGTCGTATTGGTAGTTGTTCTTTTGCAAGAACTGCTTGATCCGGTCACGGATGAAGTCAGCAAGTTGCTTGTCTTCTTCCGCCCCTTGCGGCATCTTGGCCGGAGTCTTGCCAGACAAAAGTTCCACGATTTCTGGAACAACCTGGTCAAATGGCAGGGACCAGTCTTCGTTCAAAAGGATCCGGACAATCCCGTAAGCGTAACGGCGCAAAGCGTATGGGTCGTTTGATGATGAAGGAATCATCCCGGCACCAAAGAAGGCGATAATGGTGTCCAGCTTGTCAGCAACTGACAAGAGGGCGCCGACCTTGGTCTTCGGCAAGTCGCCTTCAGCCGTGGTTGGCATGTAGTGTTCCTTGATGGCGACAGAAACGTTTTCGTTTTCGCCAGCCAGGCAGGCATAGTGCATCCCCATAACCCCTTGCAGTTCAGCAAATTCGCCGACCATTTGGGTTACCAGGTCGAACTTGTACAGGCCGCTTACCCGGTCAAAGTCAGCCACTTCTTCAGCTGACAGGCCGAATCTCTTGGCCAGGTAGTAGCCGATGATCCGGACCCGGGTCATCTTTTCTGCCATAGAACCGATCTTGTCGTGGAAGGAAACGCTGTCCATCCGGTCAACAAAGTGGCTGATCGGGTACTTGCGGTCTTCGTCGTAGAAGAATACTGCGTCATCCAGGCGGGCAACCAGGACCTTTTCATTACCGGAAATCACGTTTTCCAAGTGGTCCTTGTTCCCGTTTCTCACGGAGATGAAGCAGTTGATCAGCTTGCCTTCCTGGTCGTAGACTTCAAAGTAGCGCTGGTTGTCCTTCATGGAAGTGATCAGGACTTCGTCCGGGATTTCCAGGTACTTTTGGTCAAATGAGCCGGCAAAAACAGTCGGGTATTCAACCAGTTTGTTGACTTCTTCCAAGAGGCTGGCATCCAGCTTGATTTGCCAGTTGTGGCTGTTTACCAGGTCGTTGATCTGGGAAACGATCATGTCCTTGCGTTCGTCAGCATCAACGATAACGTATTGGTCCCGCAGAGCTTCCACGTAGTCGTCAGCGTTGGCCAAAACCACGCTGTCGCCCAGGAAGCGGTGACCGGCAGTCTTGCGGCCGGCAGTGATGTCCAGGAACTCAACTGGGACGACTTCGCTGCCGTAAAGGGCAACGAGCCAGTGGATCGGGCGGACAAATTCAAAGTCTTGGGAGTCCCAGCGCATCTTGGTCGGGAAGGTCATGGCCTTGATTACTTCATCCAGGCCCAAGAGGATTTCCTTAGCTTCCTTGCCGGCCTTTTGCACGTGCACGTAGGCATATTCCACGCCCTTGAGTTCTTCAAAGTAGATATCGTCGGCGCTCATCCCCTGGCCGCGGGCAAAACCGACAGCGGCCTTGGTCCAGTTGCCGTCAGCGTCCTGGGCGATCTTCTTGGCCGGCCCCTTCTTGACTTCGTCCACGTCAGCTTGCTTTTCATCCAGTTCCTTGACCAGAACAGTCAGGCGGCGGGGAGTTGAGTAGGTCTTGATTTCCTTAAAGCCCAGGCCGTTTTCCTTCAAGAACTTGCCAGTTCTGTCAACCAGCTGCTTGACTGATTTGCTGACCACGTGGGCTGGCATTTCTTCAACGCCGATTTCAAATAAAAAGTCTTTAGTCATTGCTTGCCTCCGCCTTTGCTTGTGCACTCTTCAACAATGGGAAGCCGCGCTTTTCACGTTCTTCCACAAACTTAACCGCTACTTCGTGAGCCATGTTGCGAATTCGGTGCAGGTAGCCGGCCCGTTCAGTTACTGAGACTGCCCCCCGGGCGTCCAGCAGGTTGAAGGTGTGGGAACACTTCAAGATGTAGTCGTAAGCCGGGTGAACCAGGTTCTGGCCCAAAAGGCGCTTGGCAATTCTTTCGTAAGTGTCAAAGAATTCCAACAATTGCTTCTGGTCGCTTTCTTCAAAGGCGTACTTGGAGTGTTCGTATTCAGGTTCCTTGAAAATGTCCCGGTAAAGGACGCCGTCGCCCCATTCCAGGTCAAAGACTGAGTTAACGTCCTGGATGTAGGAAGCCAGCCGTTCAACCCCGTAAGTGATTTCGCCCATGGTTGGCTTGACATCCAGTTCGCCGACAGTTTGGAAGTAGGTAAATTGGGAAACTTCCATCCCGTCCAGCCAGACTTCCCAGCCAACACCGGCACAGCCCATGGATGGGTTTTCCCAGTTGTCTTCAACGAAGCGGATGTCGTGTTCCAAAGGTTCAATGCCCAGAACCTTCAAGGAGTCCAGGTAGTATTGCTGGATTTCCAGCGGAGCCGGCTTTAAAACGACTTGGAACTGGTGGTGCTGGAAGAGCCGGTTCGGGTTGTCCCCGTAGCGCCCGTCAGCTGGACGGCGGGAAGGCTCAACGTAGCAGGCCTTCCAAGGTTCAGGCCCGACTGCCCGCAAGAAGGTGTATGGGCTCATCGTCCCCGCACCCTTGTTTTCATCATATGACGGCATGATCATGCAGCCTTTTGAAGCCCAGAACTGTTCAAGCTTGAAGATCATGGTCTGAATATCTAATTTTTGTGCCATAGTTACCTCCTATGCAAGGTCATAAAAAGAGCCTATGCAATTTTACTTTTGCATAGGGACGAAAAAGTATTCGCGGTTCCACCCTAATTCAGGAAGCCTATTTACCTCCTGCTCTTAATTAGCTTGGCTAGAGGGGCCTTTTCCCGCTGTATCCTTCCACCAACCGATACTCGCTGCCGCGGTACTTTTATATTTCCTCATCATTACCAATATACAGGATATTTTACCACAAATTCCCTTTCTTTTCATGTTTTTTTAGGAAAATCAGCTGCCCCGGACCTCATTTAAAAAGCGGAGGCTGGGCAGGTGCAAATCCACTGTTGCCTGGTAGATCTGGGCGATGGCCCGCCGGCTTTCCTTTTTCAAATCTTCGCCGATCTGGATCTCCCCTAAACGGCTGATTGGTAAAAGGGCCAGGGTTCTGATTAAGGCAGTAGCCTTTGGCGACAGGTGCAGGCGGCTGACAGAGCGGAAATGGTCGCTGCAGACCACCCCGCCGGCGGCGATTGAATAGTCAAAAATTCCTTTTTCCTTGCCGCAGATCACGCAGGCCCCCAGCTGAGGAGCTACCCCGAAGGCATCCAGGAGCTGCAGCTGGACAATTTGGGCAATAATTTCCGGGTCCTGGCCGGCCACGATCCGGTTAAAGGCCACTAGCAAAAGGTCATAGTAGCCCCCCAGTTTCTGGTACTCGCTGAAGGCATGGTCAGCTAAGTCAAAAAGATAAGAAAGATAGGCATTTTTGTCCAGGTCGGTAAAAAGCTCATCGTGCTGGCTGAGCTTCTTATAGGTCCGCAGCTGGCTGATCCCCTTGTAGCGGGTCAAGATGCCAAAAGTCCCTTCCGTAAAGGGCAAAACCGCGGCGGCCAGCTGGGACTTGGGCCGCATCCCACCTTTGGCAATTACGGTGACGATTCCCAGTTCCTTGGTCCAGAGCTTGGCCAAGAGGTCAGCCTCTTTATACTGCTGCCTTTTAAAAAGCAGGCCGTGGACATCGAGCAGGTCAGCGGCCATTAAAGTTCCTTCTTGTCATAGCCGATGGACTTGAGGAAGGCCGGGTCCTGCCGCCAGTCGCGCCGTACCTTGACCCAGAGCTTCAAGTTAACCTTCTCGCCCAGAAGATTTTCGATTTCTTTTCTGGACCGCATCCCGATCTGCTTAATCATGGACCCTCTTTGCCCGATAATGATCCGCTTTTGCCCGTCTTTTTCCACAAAAATCGTGGCATCAATCTGCAATTTACCATTGATCCGCTGATTCATCTGGTCAACCCAGACAGCAGTTGAGTGGGGAACTTCCTGGTCGGTCAAGCGGAGGATCTGTTCTCTGATCATCTCAGCCACCACGAAGTATTCCGGCCGGTCGGTTATTTCATCTGAAGCGTAGTATTGTGGTCCTTCTGGCAGGTAGTCCTTCAAGGTCTTTAGCAAGTCGTCGACCCCGTTGCCCTGCCGGGCGGAAATTGGCAAAAATTCCGCGAACTTGCCGACGGCCTGGTAGGAGTCGATAATTGGCAAAAGCTCATTTGGGTGAACCTGGTCGATCTTGTTGATAACCAAAAATACCGGAATATCCAAATCCTTCAAAAGACCGGCCACGTATTCCTCGCCCTTGCCGGCTTCTTTAGCGTCAACCATGAACATGACTAAGTCAACGTCCTTTAAAGAAGACAGGCTGGCCTTGTCCATGTATTCGTCCAGGTCGGAATGGCTCTTGAAAATCCCCGGCGTGTCGACGAAGACAACTTGCATGTCATCTTCAGTGTAGATGCCGGAAATCTTGTTTCTGGTAGTTTGCGGCTTGGCGGAGGTGATCGCCACCTTCTGCCCGATTAAGCGGTTCATCAAGGTTGACTTGCCGACATTTGGCCGGCCAACCAATGCTACGAAACCTGACTTGTGTTTACTTGTTTGCCCCATCTTGAATGTCCTTTTCTGTGAAATGGTATGGTATCAATTGCTCAACTGTAAAGCGCTCATAGTCCCCCTGGCTGTCGGTCAGAATTACTTCCGTTTCCGGAGCCATAAATTCGCTCATTACCTGCCGGCAGGCCCCGCAAGGGGAGATTGGCCGGTCAGTGTTGCCGATGATCAAAAGGCACTTGATCTTGCCCGTCCGGCCAGCGTTCACCCAGGAGAAGATCGCCGTCCGTTCGGCGCAGTTGGTCAAGCCAAAAGAAGAGTTTTCAATATTGACCCCGGTAAAAATTTCTCCCGCGTCCGTCACTAAAGCACTGGCCACGTGAAAGTGGGAATAAGGGCTATAGGCATCCGCCAAATGGTCCTTGGCCAGCAAAAAGAGTTTTTCTTCCAACTCGTTCATGCTATTTTCCTCTTCCTTCGTCTAATTGGTCCGGATAAAGGGGCAGGCCATATTCTTCCAAAACCTTGCCCTGGATTCCAAACATTTCCTTGGCTTCGTCTGGCTCAATGTGGTCATAGCAATTTAAGTGCAAGTAGCCGTGCACGATCGTGTAGCCAAATTCCCGGTCAAAGCCGGTGCCATATTCCTTGCTGTGGCGCTCGATGACACTTGGGCACATGAACAAGTCGCCAATGTCTTCAGTAAAGTCCGGGTCCTGGGTGAACATAGACAGGTCCAGGCCGTCGTCGCCGTCTTCAATGGCGAAAGAAATCACATCGGTTGGCCGGTCTTTATCCCGGTAGTCCCGGTTGATAGCCTGCGACCGGTCTTCGTCAACGAAGTTGATGCTCATTTCCTGGGCATTGTCCTTGCCGATTTCCTTTTTCGCCATGAGGAGCAGCTGCATGATCCAGTCTTCCCAGTCCCGGTCTCCCTTAGTCAAAAAGCCGACTTCATCGCTGTAGCTTACGTCAATTCCCTGCATTATTCTCCTTCCTCTTCATATGCCTTGATAATCTTTGCTACGACTGGGTGTCGGACAACGTCAGCCGCACTGAATTCCACGAACTTGATCTGGTCGATCCCCTGCAGGATATTGCGGGCCGTGATCAAACCGCTGTTGGCCTTGCCAGGCAGGTCGATCTGGGTCATGTCCCCGTTGACCACCATCTTGGAGTTAAAGCCCAGCCGGGTTAAAAACATCTTCATTTGGGCGTCAGTCGTGTTCTGCGCTTCGTCTAAAATGACGAAAGCTTCTTCCAAGGTCCGCCCTCTCATGTAAGCAAGAGGAGCGATTTCGATAACGCCCCGCTCCATCAAGCGGTCAGTTGGTCCCTGCCCTAAGATGGCATAAAGGGAGTCATAGATTGGCCGCAGGTAAGGGTCAACCTTTTCCTTAAGGTCCCCTGGCAAAAAGCCCAAGGATTCCCCGGCTTCAACTGCCGGCCGGGTCAAGATGATCTTGGAGACCTCTCCCCGCTTAAAGGCAGCAACCGCGCAGACGACAGCCAGGAAGGTCTTCCCTGTCCCGGCGGGTCCGATCCCAAAGACCACGTCGCTCTTGTTGATGGCCTCAACATAGCTCTTCTGGATCATATTCTTGACCCGGACTGGCCGGCCCTTAGCATCTCTGATCAAGATCTGCTTGTAAAGGTCACCAAAGTATTCAGTTGTCCCCCGGTCAGCCATTTTCATGGCACTGACCACATCGGCCGGAGTTAAATTGATCCCATTGCTGGCTACCCCGTCCAGGGCCTTTAAAACCCGCAAGACGGTCTCCACCTGCTCTTCAGGTCCAGCGACCTTGATCTGACCACCCAGGTCAATAACGGTAACCTCATAGCCTTCTTCGATCAGCTTCAAATTGCTGTCATTTACGCCCACCAGCTTCTGGACATTTTCGCTGCTGTGGGGCAAAAACTTCTTTTCCAATAAAAGAACTCCTTCATTTTCAAACCAGCGGGCAAGCACATCTCTGTCCGCCAGACTATACTCTTCTAAACCAATGATACACGATTCAGGCCAAAAGAGAACACGGAAAATAAGCAAGAAAAAAGCTCCCGTTTTCACGAGAGCTTCAGTCGATTAATAATGTCTACGCTTGCGAGCGGCCTCAGATTTTAACTTTCTGCGAACGCTTGGCTTTTCGTAGAATTCACGCTTGCGGTATTCTTGCAAAGTGCCACTTCTAGAAACGGAACGCTTGAAACGACGAAGAGCATCATCAATAGACTCGTTTTCGTGAACAATAGTCTTAGCCATGTGTGATCCCCCCTTCCATTTCTTGGCATGCTGCCATAAACATTTATCTAAATTATAGCAAAAATTGACTAATTATCAATAGCCTGGACAGATTTTTTGAAAAGTTTTTTGGGGCTAAAGCCCAGAAAGCGCATTATCCGGTATAATAGAGTTGATGAGGTGATCTATATGACTGAGAATAAAGCAGAAAACAAGCAAACAGAAAAAACTGAAAAGATGGAAGTCAACATTATCATTATTTCCGACTCAGCTGGGGAAACGGCCTTTAACAACGCCCAGGCGGCTGCCGTCCAGTTCCCTGACGCCGAAGTCAACTACCGCCGCTATCCTTTCATTGTTAACGAAAAGAAGCTGGCCGCTACCCTGGAAGAAATCGAGCAGTACCCTAACCTGGTCATCGTCTACAGCATGCTGGATGAGAAGCTGCAATTGCCGATCATCAAGTTTGCCCGGGAACACAAGGCTAGGTACATCGACATTTTGTCTCCGATCATTGAGGCTATCAGCCAGACGACCCATATGAAGCCGACCGGCCTGGTTGGGGCTAACCACCAATTGACCAACAAGTACTTCAACCGGATTTCCGCCATGGAATTCGCGGTTATGTACGACGACGGCAAGGATCCGCGGGGCTTTTTGGAAGCAGACGTTGTCTTGTTAGGTGTCTCCCGGACTTCCAAGACTCCCCTTTCCTTGCTTTTGGCTAACAAGGGGCTTAAGGTGGCCAACTTACCGCTAGTACCGCAGACCCACATACCAAATGAAATCTACCAAATTGACCCGACGAAGATCATTGGTTTGACCACCGATCCACAAGTGCTCAACCGCATCCGCCGGCAAAGAATGATCAGCTACGGGATGGACCCCGACACTGCCTACTCTAACATGGACTCCATCAATGCCGAACTGGACAGTGCCATGGCCTTATACAAGAAGCTGGGCTGCTTCGTGATCAACGTGGCTGAACGGTCAATCGAAGAAACCGCGGCTTTGATTATGAACCACCTGAGTTACGAAGAAGATTAATCAAATAATCGCGTAAAAAAACGCGCTACTTACAACAAACGTAAGCGCGCGTTTTTCTTTTACTTCAGCGGACTTTCATCCACTTTGAAGACTTCTCCAGAAACTGGATCAACTAAAATGAAATATTCCTTCTTGCCGTTCTCGCGCAAGCTGTCAGTTACGCTGAAGACGTAAAAATACTCTGACCGCTTGTCTGGACTGGTCTTAGTCATCAGCAGCTTGACATTGTGGTGTCCATGCTGTTTAGCGTAAGTAGTGGCGATCTCAGTCGCCAAATCCAAGCCTATATATTTTGGTTGATAGCGGCTATTGTCCCTTTCATCTGGCGTCTATTTCACCACCTCACTTAGCTTTTTCATAACATAAGTATAATTTATTTTTTAATATTCCTCAATAGCTAAACGACTTCTTGTTCTCTAAATCTGCCATAAACTTTCTGGACTTCCGTGACACCCATGAAGGCAAAGGGGTCACACTTTTCTACTGTGGTCCGGATGTCGTAGAGGTCGTAAGTGTCGATAATGGTTAAAAGGACGGTCTTTTCAGTATGCCCGTAGGCCCCTTCCACATCATGGAAGATAGTGATCCCGCGGTGCATTTTTTCTTGAATCCCTTCGATGATGGCATTGGGATGTTCAGTAACAATCATTACCTGCAGCTTGTTGTGCTGAGTGTAGACTGAGTCGATGAAGCGGCCGTTGATGAAAATGTTCAAGACCGTGTAGAGGGCTCTGGACCAGTCAAAGAGAAAGCCGGCGATCAAAACGATGATCAAGTTGACCAAGATATTGAACTTGCCGTAGTTCACACCAGTTTTCTTCCTGACCACGATGCCTAAGATGTCCAAACCACCCGTAGAGATCCCACTCTTCAAAGCCATACCAGTGCCGATCCCGTTGAATGCTGCCCCGAAAATGGCGCAGAGGATTGGGTCCAGGCTAACTTGGGTCGGTTGGATGAAACGCATCATGATCGCGGACATAGCAACCGCGAAGATGGTGTAGCCGGTAAACTCATAGCCGATCTTGAACCAAGCTAGGATAAAGAGGGGTACGTTCAAGGCAAAGTACATCACTTCTGTTGTGATGGTAAATGGCATGTAGCGGCTAGTCACAGTGTTGACGATCTGCGCGAAGCCGGTGATCCCGGAAGAATAGATGTGGCCGGGACGCCAGAAGAAGTTCAGGGCTACGGCAATCATAACTGAGTATAGAATAGCCGCCCCGATTTTTACCAAAAAGCCATAATTGCGTGAAAAGCGATTTAAATCAAACAGCTTCATTTTTTCTGCTTTCCTTTCCGTTGTAACAGGATCAGCAGCTATTGGCTACTGGCCTTGCCCCGCCTATATAAGAAGGCAAAGCAATGAATATCCTTATTTATGATACAGATTTTTCATAAATCATTGGGGCTTTCCCAATAACTTTTGTAAGCACCCAATAGCAGAGTATATTAAAATACGCGTGGTGCTAGTTGAAATATAGTTTCAATTTCTTAACAAAAAAGGTCCAACATTGTAGACTCTAGTTGAAAAAAAAGAAAGGAGTCCTTACAATGTTTAGCCAACTATAAACGTTATAGTCACCGTTTGCAAGTAGAATTTAGAACTTTGTCGAAAGAAAATCTGCAAGAAACTTTATTACAAGTACGCCCCATCTCGGTTAACTCACCGCCGCAATGCCAGTTTGGTAAAGGTTCCAGACTACGAAATCATTGCATTACTTGTCTGGCAAGCTGAGGAAGGTATATCTTCTCAGCGCAGATTTGCCCGTTGCTGGGGACTTTGTGGTCTTTCTAGGTCTCGTTTTAATCGCAGGGCTAGAGCGCTTCTTGGCATCACTGCTCAGATCATCAACGATCTGAACTCAAGAGTCGATCTGTCCGATCAGTATATGATCATTGACAGTCTACCCATGCCTTTGTGTCAGCCAATCAGAAACCGCAGAGCTAAGGTGTTTGAAGGAACAAACAGCCAACATTGGCTATAACTCAACCAAAAAGTTTTACTACTACGGTTTTAAAGGCCATTTTGCCGTATCTAAAGACGAGTATGTTCTTGGCTATGTTAATCACCAAGGCATCAATCCACGATGCAAAAGAAGCAGAAGAGCTGATTCTCAGTACCCGTCCCGAAGGGCACTTTATCTTAGGCGATGAAGGTTATATAGGCGAACGACTGCATGATTCCCTCAAGATAGACGGTTATATACTGTGGACACCTTATCGGAAAAATATGAAGGGGGCTAAGCAGCATAACAAAAGAGAGCTAATGGCAATTCGCAGAACAATCGAGAGTGTGTTTTCTGTACTAAAGTACTACGGAATTGAAAATATACTTGCAAGAAGTGTAGATGGTTTCCAACAAACTGTCGAGATAATTGTACTAACTTACAATATCAGCTACATCCTACAGAGATATGGATTCAGCTTCTTCAACTAGCACCACGCGTAAAAGAACATATTGGCCATCAAAATCAAGCTGATTCCGCCCAGGACATTTTTGTCATTTTCGACGCTAAGCCAGATCAAAAGAAAGCCGCCAGCCATGAGGAAAAGTCTGGCTGCCAGGCGGCTGCCAAAGCCGTTATCGGTCAGCTGGAACTTCCGCAGCATGACGGCCGCTTGAATCACAGTCAAGAAAAAGGTCAGGGCCTTTTGGCCATACCCATCTTCCGCTCTGTCATTTTGGACATCATCGGCAAGCGGAGCTGGGCTAGCATCCCAATGATGATCATGGCTGACATCCAGGGACTGATCCCTAAGGAAAAGAGGCTGGCCTGGCTGCTGTCACCGCCGGTCGCGACCAGGAGCGGATTGACCTGGCCGGTCTGCAGCTTGGCAAAAGGCAGGGAAATATGCTTACCAAAAACAAAGATCCCCAAATAAAGCATGGACCACCATGCCTTAGCCAGAATCGTGCTTATTCCCAAATCTTTTAAAGAGGCCTTCTTACCCATAATTATCACTGCAGTTCACTAAATTTAGCGACTTGCCTCCGGTGCTATATTTGCATTATCCTATAAAAAAAATAAGCTTTGCTTTTTCATTTTCTTGCAAAAAAGCGGCATCGCTTACTACTTAAATGATAACATAGCACCCGCACTTATGGTAATTTCTGCCTCTTTTTGCCAGGAAAAAACAAAAAGCACGGCAGCCATCAAGGCCGCCGTACTTTCATAATTTACATTTAATAAAATTTATTATTCTGCTTCCACAAACTTGGTAATCCGCTTGAGAGCCTCTTTTAAGACTTCATCGCTGGAAGCGTAGGACATGCGGACATAGCCGGCCCCGCCAGCCCCAAAGTAGCTGCCCGGGATCACGCCGACTCTGGCATCCTTGGCCAAGGACTTGGCAAAGCCAACGTCGTCGCCCTGGTACTTTTCAGGAATCTTGGCAAAGATGTAAAAGGCCCCGCGCGGCAAAGCCATGTCAAAGCCCAGCTTCTTCAAGCCCTTTTCCATGAAGTTGACCCGGCGCTGGTAAATATCTCTGAATTCCTTCGGGTCATCCAGACCGTTGGTCAAGGCTTCAATGGCCGCAGCTTGCACGTTGTTGGTCACGACCGTGATCATGAAGTCGTTCATCTTGCGGACGCTGGCCATGATTTCAGCTGGCCCGCAGATATAGCCCAGCCGCCAGCCAGTCATGGCGTGGGACTTGGACAGACCGGAAATAAAGATGGTTCTGTCTGGAATGTAAGTAGCCAAAGAGTAGTGCTTGGCATCCCCGTAGATCAGTTCGGAGTAGATTTCATCACTGATCGCGTACATGTGGTGCTTCTTGATAACTTCAGCCAGGCCTTCGATAACTTCCTTAGGGTAGGTTACCCCGGTCGGGTTGGTCGGGTCGTTCAGCATAACAGCCTTAACCCCCTTGCCTTCCCGTTCAATGACTTCTTCCAGCTTTTCCGGGGTCAAAATAAAGCCGGTGTCTGAAGTGTCGACTTCAACTGGAGTAGCCCCAGTCAAGCAGACCAGCTGCATGTACATGGACCAGACTGGAGTAGGCACGATCACCTTGTCGCCATCGTTCAAAAGGACGGACAAGCTGCAGTTCAAGGCTTCGGTTGCCCCGACCGTGACGGTGATTTCACTCGCCGGGTCATAGTCAACCCCGGTCACGCCCTTAACGTACTTGCTGATGGCCTGGAGCAGTTCCGGCTTGCCTGACTGCGGGCCGTAGTGGCTGTCATTGTTTTCAATGTCCCGGATGGCTGCCTGCTTGATGTGTTCCGGGGTATTTAAGTCCGGTTCACCCAGGGTCAGCTTGACAACATCATCGAACTGGGAAACATACTTGTCAAAACGGCGGATATCTGAAGGAACCACGGCGTCGAGCTTGTGGTTGATAATCGGCAGTAAATCTTGCGCTAATTTTGGCATTGGAAAAAACCTCTTAATTCAAATCAGAAAGAACAACAACTTAACATTTAAGTCTATTTTAGCATAGTTTGTTAAGGGAAGCGGCAGATATAGCTAACTTTGTCCATTTTTTCTCAAATGAAAAATAATTTTCTTAATTCTATACCAGAAAAAAGTTTATTTTGTTAAAAATAGCCCGGGATTATTTTTGATATTTTAAGTCGTTGGCAATCAAATCGTCATAGCTTTCCCGCTTGATCACCAGCTGGTCAACCCCGTCCTCAGCAAAAACCACGGCCGGACGCGGATTGCGGTTGTAGTTTGAGGCCATGGAATAGCCATAGGCGCCGGTACTTAATAGGGCAACTACGTCACCTGGTTCGGTTTTTGGTAAAGGACAAGACTTGATCAAGATGTCCCCGCTTTCGCAGTACTTGCCGACCAGGTTGACCCTTTCTTCATCCTCTGCTTGAGGGCGGTCAGCAACAACGGCTGAATATTCTGCCTGGTAAAGAGCTGGGCGGATATTGTCCCCCATCCCCCCGTCAAGGGCGACATAGCTCGGATAGCCAGGCAGGTCCTTTCTTGAGCCGACAGTATAAAGGCTAAAGCCCGCAGGGCCGACGATCGACCGGCCTGGTTCAATCCAGATGGCCGGCAATTTCAAATTGTTTTCCTGGCACTTGCTTTTGACTTCTTTAACAATGGCCCGGACGAATTCTTCAGCCGGAAGCGGCTGGTCCTGGTCAGTATAGTGGATGCCGAAGCCGCCCCCTACATTCAAGATGTCCGTTTCATAGCCGTATTTCTCTTTCCAGGCACTAGCCAGCTGGCAGAGCTTGTCTGCGCAGCCCACGAAGCCCCGGACGTCAAAAATTTGCGAGCCAATGTGGGCGTGAATGCCGGCCATCTTCATCCGCGGATTGGACAGGACCAGTTCCAGGGCCCGGTCAGCCTGGCCGCTTTCCATATCAAAGCCAAACTTGGAGTCCACCTGGCCAGTCTGGATATATTCGTTGGTGTGGGCGCTGATGCCGGGGGTAACCCGGAGCATGACCTTGCTGCTTGCGTTTTTTTCTTCCAAAATCTGGCTGAGCAAGTCAATTTCATGGAAGTTGTCCAAAATAATGACCCCGACTCCCTGGTCAACAGCCAGTTCCAGTTCTGCCCGGCTCTTGTTGTTGCCGTGGAAACTCACCTTGTCCATAGGAAAGCCCGCCTTCATGGCCGTCCAGAGTTCCCCGCCAGAGACGACGTCAGTGTGGCCGCCTTCTTCATTGATGACCTGGTAGATGGCCAGGCAGGAAAAGGCCTTTGAAGCATAGCTGACTTCATAGTCTACCCCTTCTTCTTCAAAGACCCGCTTAAAGGCCCGGATTGCCTGGCGGATTTTCCCCACGTCAAAAACCTGCAGGGGGGTCTGGTACTTGGCCGCCAGTTCCAGGGCATCTACCCCGGCAATCTGCAGGTGGCCGGCTTGATTGACATCGCTTGCTTTAATTAACCGTTCACGCTTTTACCTCAGTTTTTTTTATAAAAAATTTAATCAACTTAGCTAATAAGTTTAGCCTTCTCCACCTGCCTGGTCAAGGCAGACAGGCTGAGAAAAGAAAAGGGCAATAAAGATAGAAAAAACAAAAAAGACACCCGACTGGGTGTCTTCCTCACAATTGCGTTAGCTGGATTCGAACCAGCGCATGACGGTACCAAAAACCGTTGCCTTACCACTTGGCTATAACGCAATCTTCAATTCAACCAAGGGACGGCTCCCCGCATCCCCCGACCAAGTAATATCATACTTAGCTTTTTAACTCTTGGCAAGCCTTTTTTACAAAAAATTTGCCTTAGCCAAGATTCACTTTAAGAAGTTAACCATTAACCAGCTTTTTGGCCTTCTTCTCAGCCTTCAAGGCTTCAAAATAATCCCGTTCTTCTTTCACGTTGCCCAAGGCAATCGTTCCCCGCTTCTGGTTGATGCTCAAGTCATCGATGATCGCATCGACCAGCTCCCAGAAATAGGGACTGACAGCGGCTAAGTCATCGCTCTCCCCTACGCAGAGGTGGGCTGCCTGGCTCATCAAGAGCCAGTCCCGGCCGGCTTCTTTCTGCATCTTCTGGTGGGCCTTCTCTAGGGTCTGCCGGGAATTGAGTTCTAGGCGCTGAGCCTGCTTTTGAAAGTCTTCTTCACATTCTTCTTCCACTGCCAGGGCAAAAACGATCACTTCGCCCAGGTCCCGGCTGGCCGCTAAAGCTGACCGCAGCTGATTCAAAAGGGGGGCAAAGTCCGCCGCCGGGCCGAGCTGGCTGCTGGAAAGGCTGGCGTAAAAGGCCGCCTGCTGGTCCCCTTCTTCCGCTAAGGCCAGATACAGCTGCCTGGCCTGCTTGAAGCGCTTGGCCCGGTAGGCCTGCTTGGCTTCAGCATAAATCTCCGCCTGGTCGGCAAGGTCAAATTGCCGGCGCAACTGGTCAGCTGAATAGGCTGCCCCACAGGTCTGGCAGACAAAACGGCTGCCTTCTTTTAACAAATCTCTTTGCACGCAAAGCTCACACTTGATTTTTCTCATTGGCTATTTCCCCATGTTGACTTAATTTATCGGCAACTTGTAACCGCTTACTAGCAGATATTATAGCAAAAGTTTGTGAAAAATGCAGATTAAAAAACAAAAAATCAAGACCCATTTTGGTCTTGATTTAAAGAATGATGTTAATAAACTCAGTTGCTCTGCGTGCTTTCTGCTCCCGGGGCAACCTCAATCATGAATTCTGAACTGGTCCAGGTCGACTTGTCCGGGTATGTGACCTTAATCTGGGTCTTGTAGCTGCCGGCCTTGGCAAAGTCTGGCACCGTCAGGCGAAGTTGGCAATCAAGCTGGAATCCGCGATTGCCTTGCCCACTTGAGTTTTAGCGGCTAATAAGACAGGAGTGTAGCGGGATGAGTCAGCAGGATTATTGACAGTTACCGTCAAAAAGGCGCTGGTCTCCTTTTTATAACAGTCTTCTTAGCCTTCCAGGTATGGTCATAAACGCTGACGGTTACTTCCTGGCTGGTCTCCATTGAATTGTCCGGATAAAGCAGGCGGATCCGGGTCTTATATGTCCCCGCCTTGGCGAAATTGGGCTCGGGCACGAATTTATAAACCGTATTAGCCGGCAGGCTTTTAGCATTCTTGACCAGCTCCTGGGCAATCCGGTATTCGCCTTCCCGTACCTAAAAGTTTCTAACTTCTGGATTATATTCATCTGCCTGGCTGGCCTGGCTTTCCTGGCCGGCCAAAAGGCAAAGGGGCATAATGGCAGCGGCCGTTAGGACGCTATATAGCTTCGTCATTTTTTATTCCTCCAAAACACAATTCAAACACTTTTTTGCAAGCACATACTTTATAAGTTAATTATAGTCCAAATCGTTTTATTTTTGTGCCCGCTTTCAGAATATTTGGCCAGCTTTTTCCCATAAAAAAGGCTGCCAGAATCTGGCAGCTCATGCAAAAAATCATCTTTACTTTCTAACTCTTATTCGCTCTGGACCTTGCTGTGGAAGGACATGCGAAAGCTGGCTTCGAAGTCTTCCCCGCTTGCCAGCCGGTTCATCCCCTTCTTATCTTCCAAGTCCCCGTCAGTATCGGTAAGGTCAGCGATCCCCCACCATGGTTCGATGCAGACGTAATCAGCCGTCTTTGGGTACTGGGACCAGATGCCCACGTAAGGAGCTGAATCAGTTCTGACATTGATGTGGAAGCGGCTGGTTTCCGTCTTGATGGAGAACTTGTTGTCCGGGTGCCGCATCACCAGCACCATGGCATCATCCTTAAAGAGATCGTCAGTGATCGTGATCAAGGATTCAGTTGGGGCCAGGAACCGCTTTTCCCAGTTGAGCAGGCCGCCTTCCAACGGCACCTGCACCCGGGGCTTAGCCGGGTTGACCTGCAGGTAGAAGTCATCCTTCTTGACCCCGTCTTCAACCGGCAAGGCAAAGCCCGGGTGGCCGCCGACGCCGAAGATCATGTCCCCTTCACCCTTGTTAGTGACGTGGAAGCTTTCCTTGATCATGTTGTTCAAAAGCTCATAGCTGACCCGGAATTCAAACTTGAAGGGGTAGACAGCTCTGGTTTCTTCTGTGTCGGTCAAAAGGAAGGTCAGCTTTTCCTTAGTCTGCTCTTCCAGGGCAAATTCCATGTTGCGGGCAAAGCCGTGCTGTCCCATGTGGTAGGTCTGGCCCTGGTAGCTGTATTCATCATTCTTCAGCTTGCCCACGATCGGGAACAAGACTGGAGCATGCCGGCCCCAGACTTCCGGGTCAGCCTGCCAGATGTATTCATTGCCGATGTGCTTGCCAATGACGCTCTGCAGCTCTGCCCCGCGGCTTGATACCGTAACCTTCAGAATCTCGTTTTCGATAGTATAATCCATTATTTGCCCCTTAATACTCTTATTTTTTCTAAACTCAATCGCATTTTTACACTAATTCAGGGACAATTAAAAATCCCTCCTTTACAGGATGAACTTGGTCAGGTCCTTGTTCTTGACGATATCGCTCAATTTCTGTTCGACATAGGCCTGGGTGATGGTGATTTGCCCCATTTCCATGTCCGGCCCTTCATAGAGAACTTCTTCCAGCAGCTTCTCCAAGATCGTAGCCAGGCGGCGGGCACCGATATTGTCCGTCCCCTGGTTGACTTCAAAGGCAATTTCAGCAATCTTGTCGACTGCTTCAGCCGTGAAGACCAGGTCAACCCCGTCAGCCTTCAGCAAGGCAATGTACTGCTTCAAGAGGGAGTTTTGCGGGTCCTTCAAGATTCTGACGAAGTCATCCTTGGTCAAGGCGTTCAGCTCAACTCTGATCGGGAACCGGCCCTGCAGTTCCGGAATGAGGTCGCTCGGCTTGCTTTCAGCAAAGGCCCCGGCCGCGATAAAGAGGATATGGTCGGTTGAAAGCGGACCGTACTTAGTGCTTACGGTTGAGCCTTCAACGATCGGCAGGATGTCTCTTTGAACCCCTTCTCTTGAGACGCCGGCGGAGTTGCGCTTATCAGCCGCAGTAATCTTGTCGATTTCGTCGATGAAGATGATCCCGCTCTGCCCGGCCCGGTCCATGGCCTTTTGGTAGATGTCGTCATAGTTGACCAGCTTCTTTTCTTCTTCTTGGACCAAAAGCTTTCTGGCCTGGCCGACCGGCAGGGTCCTCTTGACTTTCTTCTTAGGAAGCATGTCACCCAGCATGCTGGACATGTCCATCCCCATCTGCCCCATCATGTCGCCCATTGGGTTGGCCTTTGGAGCTTGTTCAACTTCGATGGTGACTTCTTCGTTTTCCAAAAGCCCCCGGTCCAGCTTTTCAGCCACGCTGAGTCTTTGGTTTCTGATCTCGTCAGTAACTTCTTCTGTTTCTTCCGGCATCCCGCCGCCAGCCAGCAGGCTCTGCATCATTTCCTGCATCTGCTGCATCTGGTTTTGCCGGTTGTTGCGCTTAACGCCCGGCACCAGCAGGCGGACCAGGGTCTTGTTGGCCTGGCGGATGGCCTGGCTTTCAACCTTGACAAATTCTTCTTTTTCCACGATCCGGACAGCTTCATTGGCCAGGTCCCGGACCATGGATTCAACATCCCGGCCCACGTAGCCGACTTCGGTAAACTTGGTAGCCTCAACCTTGACGAAAGGCGCGTCAACGATGTCAGCCAGGCGGCGGGCTATTTCCGTCTTCCCGACCCCGGTTGGCCCGGCCATCAAAATGTTCTTTGGCGTAATGTCCTTTTGCACGTCTTCTGGCAGCTGGGTCCGGCGGTAGCGGTTGTACAGGGCGATAGCCACGGACTTCTTGGCCTCATTCTGCCCGACGATGTACTTGTCCAGCAGGTCAACGATCTGCTTTGGCGTTTTCTCTCTCATCCCTATTTTTCCTCGATTTCATCCGTAACAATCTCGTGGTCGGTAAAAACATCGATGTCCGCAGCTATGTTGACTGCTTCCTTGGCGATTTCACTGGCCGTCATCCCGCTGGCATGCCGGAGCATCCCCACGGCCGCTGCCTGGGCATAGTAGCCGCCTGAGCCGATGGCCACCACGCTTTCGTCTGGTTCGAGCACTTCCCCGTTGCCAGAAATCAAGAGCAGGTCCTGGTCGTTAAAAGCAATAACCATGGCTTCCAATTTCTGCAAGGCCGGGTCTTTCCGCCAGGACTGGGCCATTTCCACGGCTGCCCGGCGCAAGTCGCCGCTGTAGCTTTCCAGCTTTCCTTCCAGCATTTCCTGCAGGCTGACGGCATCCGCCACCCCGCCGGCAAAGCCGATCACCACTTGGTCGTGGTAAATGCGGCGGATCTTCTTGGCCGTGGTCTTGGCAATGATGCTCTTGCCCAGGGTCACCTGGCCGTCGCCTGCAATCGCCGTCTGGCCATTGTATTTTACTGAACAAATCGTTGTCATTTTCTTCCTCCGTTTGTTTGCTTTTCTATTTGATCGCGTTATTTAAAAATCTTGCTAAAAAGCGGAAATGATTACCGCTTTCCAACCATTTTCATAATAACACTTTTCCTCATTTTCGGGGAAAATGCTGGCGATATTCCACCGTAAGATGCTGCATGCTGACATGAGTATAGATCTGGGTCGTAGACAAGTCCTCATGGCCCAAGAGCTCCTGCACGCTCCTAAGGTCTGCCCCGTTGTTGAGCATGGCGGTGGCGAAGCTATGGCGGAGTTCATGAGGGTGGGCACCAGCCGTCAAGCCTGCTTTTTGAAAAATTTGCTGGACGGCTTTGGCAATCCCCCGGCTGGAAATTGGCCTGCCGAGCTTGTTTAAAAAGACTGCCCCGGTATCTGGCTCATTTTTCAATAAACTTGGCCGGGCTGCCTGCAGATATTCCTCCAAGTACTTTTTGCTCTCTTGGTCAAAAAAGACATAACGGTCCTTATTGCCCTTGCCGTGCACCAAAATCATGCCGTTTTCCAGGTCAAGCTGCTTAATTTTCAAGTCAGTCAGTTCGCTCAGCCGCATCCCGGTCGCGTAAAAAAGCGCCACAATTGCCCGGTTGCGGACTGTTAACGGTTTGCCATCGTTTAGCGAGCGGATGACCTGGCCGACTTCATCCTGGTAGAAAAATTCCGGCAGCTTTTTCTTCCCTCGCCTAAGCTGAATGGCCACGGTCGGGTCAGCTTTGACCAAACCCCGCCTGGTCAAAAATCGGTAAAAAGACTTAAGGCTGGATAATTTTCGAGATAAAGTGCTGGATGCCAGCTTTTGCCCGGTTGCCAGCAGGTAAATTTCCAGGTCCCGGCGGGATATTTGATCCCAGCCTGGAAAGCCCCCGTTTTCCTGCCAGAATTTCTTAGCTGCTGCCAGGTCCTTTTGGTAGGCCAGGACGGTTTTGGGGCTGTAAGAGCGCTCATTTTTCAAGTAGGAAAGAAACTGCTCTTCAAGGGTCATTAGTCATCCAGCTTCTCTGCCTTAAAGGCGGCCAGGTCGGCCAGGCCCCGTTCACTGATCTTTTCGTGGCGCTCGCGCTTGTTTCTGATCTTCTTGCCCTCCAGGCCCGGAATCAAGGCAAAGCTGGCGTTCATTGGCTGGAAGTGCTTGGCATCAGTGGTCGTAATGTAGTGAGCCATAGAGCCAAGGGCAGTGGTTACCGGGAATTCAACCGTCTCTTGCCCCAGGGCTTCTCTAGCCGCGTTAATCCCTGCGACCAGGCCGCTGCCGGCACTTTCCACGTAGCCTTCCACCCCAGTCATCTGGCCGGCAAAGAAGAGGCCTGGCCGCTTTTTAGCTTCATAGCTGGCCTTTAAAACTTCCGGGCTGGCCATGTAGGTGTTCCGGTGCATCTTGCCGTAGCGGACGAAGCGGGCGTTTTCCAGGCCAGGGATCATTTGGAAGACACGCTTTTGTTCCCCGTACTTGAGGTGGGTCTGGAAGCCCACGATATTGTACATGGAGGCAGCAGCGTTGTCCTGGCGGAGCTGAACGACAGCGTAAGGAGTCTTGCCGTCCTTCGGGTTCTCCAGGCCGACTGGCTTTAAAGGACCAAAGAGCAGGGTCTTGGCCCCCCGGGCCGCCATGACTTCGATCGGCATGCAGCCTTCAAAGACCTCGCTGTTTTCAAAGCCGTGAATTTCAGCAGTTTCCGCGTGAACCAGGGCATTGGCAAAGCGGTCGTATTCTTCCTTGGTCATCGGGCAGTTGAGGTAGGCGGCTTCGCCCCGGTCATAACGACTCTTCTTGTAAACGATGTCCATGTCAATGGAGTCAGCCGCGATGATTGGAGCGGCAGCGTCAAAGAAGTGGAGGCTTTCTGCGCCTTCAAAGTCCTGGATCTTTTCTGCCAGGCTATCGCTGGTCAAAGGACCGGTCGCGATAACGGTGATGCCTTCACTTGGCAGGTCAGTGATTTCTTCATCGTGAATGATCACTTCCGGCAGGCTGGTCAATTTGTCGGTCACATACTTGGAGAAAAGCTCCCGGTCAACGGCTAACGCCCCGCCGGCTGGAACTTGGCAGGCATCAGCGGCTTGCATGATCAAGGAGTCCATCTGCCGCATTTCTTCTTTCAAGAGGCCAACAGCGTTTGAAAGCTGGTTGGACCGCATGGAGTTGGTGCAGACTAATTCCGCGAAATTGCCGCTTTCATGGGCCGGAGTCATTTTCTTTGGCCGCATTTCGTACAAGTCAACCTTGATCCCTCTTTTGGCCAGCTGCCATGCTGCTTCGCTGCCGGCCAACCCGGCGCCAATTACCGTAACTTTTTCTGTCATTTGATTCAATCCTTCGCTTAAAAATTATCTACTTACCATTTTACCGAAAAAGCTTCTCCCTGCCTAATCGCACGCTCTGAGCAAAAAATGCCACCAAGGGCCTTGGTGACATCTTTGCTTTAACTTTCAACTTATTCGGCTGCTTCGCCTTGTTCTTCTCTTGGCTCTTCCTTGTAGTCGCCATTCGGGCAGAGGACGACCATGCCGTCCTTGCGCTTCTTTTCGACCAGGAAGTGGCCGTCGTGCGGGCAGACCCGGCTGATCGGCTTGTCCCAGGAAACAAAGTCGCAGTCTGGATAGCGGGAACAGCCATAGAATTTCCGGCCCCGCTTGGACTTCTTTTCCAGAACTTCGCCTTCCCCGCACTTCGGACAAGTCACGCCGACCTTCTTGACGATGGTCTGGGTGTGGCGGCAGTCCGGGAAACGGGAACAACCGTAGAACTTGCCGTAGCGGCCCATCTTGACCAGCATCGGGGCCCCGCAGACTTCACAATCAAAGCCAGCTGGCTGGTCCTTGATCTGGATCTTCTGGATCTCTCTGTCGGCTTTCTCCAGTTCTTTGGAGAATGGCTTGTAGTACTGGTCAACCACACTGACCCAGTCTTTCTTGCCTTCTTCGACTTCATCGAGTTCATCTTCCAGCTTGGCCGTGTAGTCAACGCTGGTGATGTCCGGGAAGAACTGCTCAACCAAGCCGTCGACGATTTCCCCCAGTTCAGTTGGCACGATTGCCCGCCCTTCCAGCTTGACATAATTCCGGGACTGGATATTCTGGATGGTCGGCGCGTAAGTTGACGGCCGGCCAACCCCGTTTTCTTCCAGAGCCCGGACCAGGCTAGCTTCAGTATAGCGGGCCGGCGGCTGGGTGAAGTGCTGCTTGCTGTCTGACTTGGTCAGCTTGACCTCGTCGCCCTCTTCCAGGGCTGGCAGGGCCACGTTCTTTTCACTCCGGTTGTCATAAACCTTGGTGTAGCCGGCAAACTTCATAACTGACCCGCTGGCTCTGAAGGTCACCCCATTTTGGGTCAAGTCATAGCGGACCGTGTCAAAGACGGCCGGAGTCATTTCACTAGCCACAAAACGGCTCCAAATTAAGGTATAAAGGCGGAGCTCATCCTTGGTCAAAACCTTTTCCAGGGACTTCGGTGTCCGGTAGACACTGGTCGGCCGGACAGCTTCGTGGGCATCCTGAGCGTCGCCTTGATTCTTGAAGTGGCGCTCCTTCTTGACCGCGAAGTCGCTGCCGTATTCCTCAACGATGAACTGAGCTGCTTCCTGGCGGGCAACTGGTGAGATCCGCTTGGAGTCAGTCCTCATGTAGGTGATCAAACCGACCGTGCCTTCCTTGCCCAGGCTGATCCCTTCATACAGGTGCTGGGCAATGTTCATGGTCTTTGAAGTCCGGAAGTTCAGCCGCCGGTTGGCTTCCTGCTGCATGGTGGAAGTGGTAAACGGCGCGGCTGGCTGCCGGCGGACTTCTCTTTTAACTACCTTACTGACCGTAAACGGCTGCTTCTTATCAAACTTAGCCAGCAGCTTCTGGACGGCCTCGTTATTTGGCAATTCCGTCTTTTTGCCTTCTTCGCCGTAAAAGCTAGCCTGGAACTTGTCCTTGCCCTTGGCAAATTCAGCGTCAATCGTCCAGTATTCAACCGGCTTGAAGGCCTTAATTTCCTTTTCCCGGTCGATAACCAGCTTCAAGGCAACTGACTGCACCCGGCCGGCTGACAGCCCCTTCTTGACCTTGGACCAGAGAATCGGCGACAAAGAGTAGCCGACCAAGCGGTCCAAGACCCGGCGGGCCTGCTGAGCGTTGACCGTGTCCATATCGATGGTCCGGGCGTGGTTGAAGGCATCCTTGACTGCGTCCTTGGTAACTTCGTTAAAGGTTACCCGGTTGGCTTCTTTTTCGTCCAGGCCTAAAACGTGGGCCACGTGCCAGGCAATAGCTTCCCCTTCCCGGTCGGGGTCGGAAGCCAGGTAGACTTTGTTGGCCTTCTTGGCTTCAGCCTTCAGTTCCTTGATGGTGTCACCCTTCCCCCGGATGGAGATGTATTTTGGCTGGTAGTCGTGGTCAATGTCGACCCCCATCTGGGACTTGGGCAAGTCCCGGATGTGCCCTTTAGAGGCGATTACGCGGTACTTCCGGCCCAGGTACTTCTCGATAGTGTGGGCCTTGGCTGGAGATTCCACGATAACCAGGTCTTTTTTCACCTTGCTCTTTTTCCGCTTCGGGCTGCTCTTCTTGGCAGCCGTGGTCGCCGTGGTCTTTTTACTGCTCTTGCTTTTATCTTCTTTTGCTGTAGCAGGCATCAAATGCCCCTTTCACTGAATTCGAAATTAAATCTTCTTCAATATAGAAATAATTTCCGGAATTGTCAACCAAAAGAAAATTAACTTAAGGGAGCAGACAGGCAATTTTTGCAAGAATTTAATCTTTCACAGGTCAATTTCCTTGTCGATAACCGGGGTTGCCCCGGCTGAAATCAGCTGGTTGGTGCCGGCCGACAAGGGGCTGGTGATTGCACCCGGGACGGCAAATACGTTCCGGTTTTCCTGCAGGGCCAAATTGGCCGTAATCAACGAACCGGAATGGGCTTTGGCTTCAGTCACGATCACGTTCTTGCAAATCCCGGCCAAAATCCGGTTGCGCTCTGGAAAGCGGAAGGGCCTTGGCGGCGTGTCGGGCAGGTATTCGCTAAGCAGGAGACCCCGGGCGGCAATTTGCTGCTGCAAGAGCGTATTTTCCCGGGGGTAAAAATAGTTCAGGCCATTAGCCACAACCGCGATGGTCTTGCCGCCAAAATTCAAGGCATTCTGGTGGGCCAGGGCATCAACGCCCTTAGCCAGGCCGCTGGCGATCACCTGTTTTTTCTTTAGAAAAACCGGCATGAGGTTCTCAATCACCTTGCCGGAATATTGACTTGGCGTTCTTGACCCCACGATCACCGTCACCTCTTTTTCCAAAAGGGACAAGTCCCCCCTGGCAAAAAGCAAAATCGGCGGCCGATAAATTTCTCTTAATCGTACTGGATAAGCATCGTCAAAGAAACTAATTATTTTGAAATTCCTTTGCAAGTTTTCAATGGCACTTTCGTAGCGGTCACTTAAAAAGGCCCGCTCCACCCGGTAGAGGATTTCATCAGGCAGTTCCAGGCAGTTCAGCCATTCATGGTCCACGTCCTCATCCGGGGGCATCTGCTGCATGACCTGCAATATTTTGAGATAGCTGAGGCCCTTCTGCAGCTTCAGGCGCAGTAAGAATTCGGTTTTGTTCATTTTTTCCCTCCACTTACTATTACGCCAAAAAGCGGGATTTTTTCTTTTTCTCAAAATTTTTATTTTTTCTTTTTTGACCAAAAAGAAAAAGACCGATCTAGTCAGCCTTTTTAAGTCCAACCATCTCGCTCACCGGACTGAAGGTCAGGCGGTGAATCGGCGTTGGGCCGTATTTTCTTAATGCTTCCAGGTGGTCCTTGGTTCCATAGCCGGCATTATGGTCAAAGGCATAGTCTGGATAAAGACGGGCGTAATCGTCCATCAAAGAGTCTCTGAAAACCTTGGCCACAATTGAGGCCGCGGCAATCGAGTTAGACTTAGCATCCCCCTTGATCAATTCTAGCTGGGGCAAGTCCACCGGCACGTTCATGGCATCGACCAGCAAAGCATCTGGCCTGGTGCTCAAAGCTTCCACGGCCTGCTTCATGGCCAGGCGGTCAGCCTCGTAAATATTGATCTGGTCAATCACTTTGTTGTCCATGACCCCGACGCCGACAGCAACAGCCTCTTGCAGGATCTTGGGATACAGGGCTAGGCGCTTTTGCGGACTCAGTTTCTTTGAGTCGTTGACTTCCAGTAAGGAAAAATCTTCCGGCAAAATGACGGCAGCCGCTACAACCGGGCCAGCCAAAGGACCCCGGCCAACTTCATCGACCCCGCCCACCAGCTGCCCTTTAGCCCAAAAATCCTTCTCGTAACTGAAGCGGCCCAAGAATTCTTCCTTTTGCTTAGCCAGCTTTTCCTGCCGGCGCTGGTAGCTGACCAGCAGTTTCTGGACCCCCTTGCGGTCGTCTTTGGCTAATTCCGCCAGAATAGCTGGGTCAATAGAATCTGCTTGCAGCAGGTCTTTAATTTCATTAATTTTCATTATTCGCGCTTGGCCAGTCCAGGCTGATCCTGCCCAGCTTGCCCTTTCTTAACCGCTGCAGCATGAAGAGGGAGAAACGGTCATAGTCTTCCCGCATCCCGTTGTTTTGAGTCATGGCCAAAAGCAGGTCAGTGTCGCCGATATTTTCCAGCTTGTCCTTAGTGCAGTTGGCGAACTTGGCCAGATAAGCCGGGTAGTACTGCCGCAGCTGCCGGATGACAAAAAGTGCAACGTCGTCAGCGTGGAAAATCGTGTCCTTGATGGCCCCAAAAGCAGCCAGCTTGTAGCCTACTTCCTGGTCTTCAAACTTTGGCCAGAGAATCCCCGGCGTGTCCAGGATCTGGATGCCATATGGGGTCTTCAGCCAGGCCTGGCCCTTGGTTACCCCCGGCCGGTCCCCGGTCATGGTGACATTGCGGCCAACCAGGCGGTTGATGATAGTGGACTTGCCGCAGTTAGGCACGCCAACTAGGCAGACGCGGATGATCGGGTTGGAGGCCCCTCTCTCTTCCAGCTTCTTGACCTTTTCGCTGGCTGCCTTCTTGATCAAGGTGATCAAGGCCTGCATATTAGTGTTGTGCTGGGCATCCATTGCCATGACCAAGGTGCGCGGGCCCTGCAATTTCTTTTGCCAGAGCTTGGTCATCACCGGGTCAGCCAGGTCGGTCTTGTTTAAAATGATCAGGTGGGGCTTGTCGCCGACCAGTTCACTGATCATCGGGTTTCTGGAAGCGCTGGGAATCCGGGCGTCCAAAACTTCAATAACAACGTCAATTAAGTTTAATTTTTCTTCCAGCTGATTCCTAGCCTTGTTCATGTGGCCTGGATACCATTGAATTTTAGTCATTTTTCCTCCCAAAAACAGCAGAAAAGGAAGCCGGGGCTCCCTTTCGTGCTTGTCACTGAATCCTAAAAATTATCCTAGTACTGCATTTTCTCTTCATAAGCCTGGTAAGCATCGTCAAAAATCGTCATGCTGGGCAGGTAAGCGGCATTTTCCTCCAGATATTCTGACAGCCTGGTCCGGTCCTGTTCCTGTCTGGGAAAGGTCGAGTCAAACTGGGCGTTGTTGGCAAACTGGGCCAGGTCGCCATTTGAATCCGGATCGCGCAAAGTCATCAAAAACTGGTAAAAACTTTGTCGGTAGGCCATATATTACTCCGTATAAAACATGACCGCGTAGGCCTCATGGCCGGCGTGGGTGATGATGATCGGGCTGGTTTCCTGGACCAGGATCTCCAGGTCCGGGTTGACTTCCTTGAAGCGCTGGGCGAGCTCTTCCATCTTGTCTCTGGTGTCGACATAGGAGATGCCGACATACTTGACCTTGTCGCCCAGTTCTTTCAACTGGTCGACAAGCATGTCGTCAAACTTCTTGATGAATTTCTTCCCCCGGCCCCGGTAAGGGACATTCAAGCTGCCCTCTTTCATGGTCAGGCCGACGTGGAAGTTCAAAGCTGAAACCACCCGGCCGGCCCACTTGCCCAAACGGCCGCCGGCTAAAATGTTCTGCAGGTTGGGCACCATCATTTCCAGGTACATATTCTTGCCGATCTGGTCCAGGTGAGCCAGGATTTCATCCATTTCCTTGCCCGCTTCCGCGTCCTTGGCCGCCTCAATGCAGTAGTAGCCTTGAGAGCGGTCAGTATAGCCGCAGTCGATGACCGTGATCTTGCCGGCTACCATTTCAGCGGCCTGGCGGGCGGAATCAACCGTCCCCGACAGGGTCTTGGCCATGAAAATCCCCAGGACTTCACTGCCGTCAGCCGTCAGTTCCTCCATTCTCTCCACGAACAGGCCGACCGGGGGCTGGCTGGTCTTGGGCAGCTTCTCTGCCTCATCCATCTTTTGGATAAAGTCGGCCCGGGTAATGTCAACGCCATCCGTGTAGGTATGTCCGTCGATTGTCACCGACAGGGGCACCACCGTAATACCATATTTTTCAATTTCTTCCGGACTCAGCTGTACTGAGGAATCCGTCATGATCTTGATCTTAGACAATTTAACTGCCCTCAATTTACAAATTATCCTATCAGCTTCTCAGTTGTGATAGAATTAGACTTAATACAGATTTTAGTATAGCAAATTTTCGGCTAAAAATTATAATTAATTGATCAAAACTGAAGGGACTTTATATGGCTTTCAATCCTTGGCAGCCGGTCGAAGACCGGCCCAAATCTTACTATATTATTGACAATGTTCTCTCAGCCGTCGTGCACGGGATCGGCTTCGGCCCCTCAATCGCCGGCCTGGTTATTTTAGTGGTCCGGGCCGCCCACAGCCACAGCGCCCTCAGAGTGACAACTTTTGCCATCTACGGGGCTTGCATGATCCTGCTTTACCTATTCTCGACCCTCTACCACAGCCTGGTCTTTACCAAGGCGAACAAGGTCTTCCAGATCTTAGACCACTCTTCAATCTTTATCGCGATTGCCGGCTCTTATACCCCTTATACCCTGGTCACGATCGGCGGGGCTAAAGGCTGGGTCATGTTCGGCATCATCTGGGCCCTGACGGTCTTTGGTATCCTCTATTATATCTTCAACCAGGGCAAGCACGTTATCGGCGACACCATCCTTTATATCGCCATGGGCTGGATGGTGATCCTGGCCGGCAGCCAGCTTTATTTCAGCCTGGGGCCGACCGGCTTATGGCTTTTAGTCTCAGGCGGGATTGCCTACACCTTTGGCTGCCTCTTCTTCTCTATGCGGGGCCTGCCATATAGCCACGTCATCTGGCACTTCTTCGTTTTGCTGGGCTCCATCTTGATTTTCTTTTCAGTTTTATTTTATGTATAAAAAAGGCGCTGGTGACCAGCGCCTTTTAGATTGCCAAAAATTCCGCGATTGCCGCCTGGCTGTTCTCTACCTGGCCGCTGACCACGCCCTCAAGGGCTTTGCGCAAAAGCTGGCCCAGTTCCGGTGAAGGCTTAATCCCCTCCTTGATCAGCCACTGGCCGTCAATGGCCAGCTCCCCTGCCGCCTTGATTGGCAGACGGTTATAGCGGTCTAACAGGACCTGGCTGGATAGAGGCTTGCCCAAAAGCCCCGCTAGCTTTAAAGCCGCCTCCAGGTTCTCCTGGCCGATTTCAAAGAGGTCAAAATCACTCTCTTCCCCCCGGCTCAAGAGGTCAAAGGCGGCCACGATCTGTCTGACTTGCTGGTTCATTGCATTGGAGTTCTTCCAGGCCCGCATGAAAGGCGAAATCTTGTCGGCCGGCAGGTTGATTAAAACGGCGATCAAGCTCCAAAAGACTGCTTCGTCATCCGGACCGGCCTTAAGGTCAGTTAAGACAGAGAGCTGGTCCTTTTTCCCGGCCAGACCCGGGCATTCCTCGCTTAAGCCGGTGGCCAAAAAGTCCTTAAAAGCCTGCCGGCTGTCCTTGCCCAGGGCCAGCTTGACAAATTCTTCCCTAATTCTTTCCACGGAAATCTTGCTTAAAAGCTCGTGGTTGTTGATAATAGCCTGCCTGGTCTTTTCTTCCAGGCTGAAAGAGAGCTGGCTCATGAAGCGGACTGCTCGCATCATCCGCAAGGCATCCTCATGAAAGCGGTCTTCAGCTACGCCAACAGCCTTGATCACCCGCCGCTTCAAGTCGCCTAAACCGTCAAAAAGGTCAATGATCTCCCCTTGCCGGTTCATGGCCAGGGCATTGATGGTAAAGTCCCGCCGCTTTAAGTCCTCGTCCAGGTTCTGCACGAAGGTGACCTTGTCTGGCCTGCGGAAGTCCTGGTAGCCGGATTCCGTTCTGAAAGTCGTGATCTCGTAGCTGGATCCCCCATAAAGGACGGTCACTGTCCCGTGCTGGATGCCAGTGTCGATACTTTTGGCAAAAGTCTCCTTGACTTCTTCCGGGTAGGCACTGGTCGCGATATCCACGTCATGAATCGGCCGCTCTAAGAGCAGGTCGCGGACGCAGCCGCCGACGAAGTAAGCTTCAAAGCCAGCTTCTTCCAACTTTTCCAGGACCGGCATGGCCTGGGTAAAAACTTCCGTTATACGAATATTAGTCATCTTCTTCTCTACCTCGACTTTTTTTGCTAAAATTGATTACGTATGGGGAATAATTTAAGAAATAAGAAAGGAGTGTCGAAATGAACAAGCCAAAATTCAAATGGACCACTAGTGACACGATCAACATCCTGATGATTGCCCTGGGCTCGGCCATCTACGCCTTCAGCGTGGACATGGTGTCGATTCCCAACAAGCTGGCCGACGGAGGATTGTCGGGTTTCATCCTGATCATCCGCCACTTCTGGGGGGTCAACCCCGGTCTCAGCACCTTCATCATCAACATTCCCTTGATCTTTTTAGGCTTTAAATATATGGGCAAGCGGGCCATGATTTATACCGTCTGGGGAACCCTTTGCCTGTCCTTCTTCTTAAGCATGTGGACCCTGCAGTCTATTATAGACCAAGTTCCCCTCCATCACGACCCCTTCCTGGCTACTGTCACGGCCGGCTGCTTGTCGGGGCTGGGACTAGGACTGGTCTTCCACTTTAACGGGACCACCGGGGGCAGCGATATTGTCGCCCGGGTCTTGCAGGAAAAATATGGGATCACGCCCAGCAAGGGCCTTCTGGCCCTGGACTTCTTAGCCCTGGCCTGCTCCCTGTCTTACCTGGACTTCTTCCATGTCGGCTACACCATGGTCTCCTGCTTCATTTTATCCAAAGTCATGGCCCTGGTTACTGAAGGCGGGACCCGGGCCAAGGGGGTCTTTATCATTTCCCAGAATTACCGGAATATCGCTAAGCTGATTTACCTGCGCTTAGAGCGGGGCTTCACCTACATTAACGCTGAGGGCGGCTATTCCAACGAACCCCGCCACATGATCTACCTGGTCCTGTCACCAAGAGAAATCCCAGAATTAAAGAAAATCGTCAAGCAAGAAGACCCGCAGGCCTTCATCATCTTCTTTGACGTCAACGAAGCTTTGGGCGAAGGCTTCAGCTACAAGACCAAATCGCCAAGCTTATTTATCAGAAAGTAAAAGAGTCACAAGCGTGACTCTTTTTTCTTGCCTTAATCTTACTTAATCCTGAGAGCCGCGTCCCGCAGCTTCTTGCTAAAGACAGGCGCCAGGTGCTGCAGGAGGCTGACCGGATTAATTTCGCCCTTGTCATAGACATTAGTCAGAAGCAAATAGGCTTGGATCTCACCAAAGTCATTCTTAACCGGAACCAGCAGGATTGCGGTCAATATCATTCTTGGCGCAGAAATCCCCTTGTTCAGCAAAGTCAGCCTCTTCTTCGGCAAATTTAGCAACATCAGCAATGTCTAAATAATTCTGCCGGGCCAGCAGGCGTTCAATCGGCTCCAAGAAACACTTGCTGATATTCTCCAGTTGCGTATTGAGCGGCGCAACATAAGGCGCGGCCCATTCGTAATTAATCGTGAAGCTGTCTGCCCCTAGCTCTAGCAATAGTGCGTGTGAAGCCAGGGTAACATCACCGATCTCCCCCGCAGGGCTTTCTGCATCGAGCTGAAGTATCTCCGGTCATTTAGGAGCTGCTGGTTGACCTCGAAAATTCCGCGTCAGTTGCTACGATCCGCTTGAATTCCGACTCACCGCCTTCATCCAGGGCAAAGACCGTCACCACGCAGTTTGGCATGGTCGAGGCCTTGGTATAGTAATTGACCCAGCTGCGCAGGCCCCGGCGGGTCAATCCACCGGCTCAGAGCTTCCAGATTGCAGACCTTATCAGTCAAAGTCCGGATAACCGGCTGAAAGTAAACCTGGATCCAGCCCTTTTCCAGGGCCTCGTCAATGTGGCTAAGCACATACTCTTGCAGGCGGTGTCTTTGGTCCAGCTTGTCATCATAGTAAACTATTCCGGACTTAAAAGGATCTTCCAAGGACTCACAGGCCATATTCCTGGCAGTAGGCATAAAAGCGGTCTTCACCCGACCGGGTGCAGTCCTGGTCACCAAAACTGTCCTTAAGACAAGCTCCCACAAAGCGCAGCAGGTCATCCCCCTGCGTATTGGTTGTTGTAATCCTTCATCCCCACCAGGTCAAAGGAAATGATCGAAACACGCTCGCCTTCCTTGATCCAGTCCCTTGTCCGGCTTTGGCCGACTTCTTGGAAAGAGCGCAGGTCCAGCAGGCCGGTCAAAAGGTTCCGGTTGATGTTGATCAGCGTAATGTAGCACAGGTGCAATTCCCGGCCAGCAACTTCAGCCTTGCGAACCTAAGCATTAAGCATGTGCTCTTGCCCCTTGGCATCTGCAACTGTCATGTGTTCAAATTCGGCATGATCACCGCTTAGACCTGTAGTCAGCGGGAAGAGCTTTTCCCAGGCAAAATCAGTCAGTTCAGCCATATTTTTGCAGGCAAACAAATCCAGCAGCTTCTTATTGGCATAGACGATGGCCGTTTTATTATCCTTGACTTCCAGAACCAGGAAGGGCTTCCGGATATAAGTAAAAGACTTTCGCAAGAAATTTGTCAGATCATCTTTTTCAATCATATTACCAGCTTCCATCTAGCTGTTTTTTGTCATTAGAGACTTGTACAAAGTAATTATACTAAATCCTTCTATCTTTTTCTCAAAAAATAATAGTATTTTTGCAATTATTTTGCGAACTAAAACCGCTCTCACTTAGAGAACGGTTAAAAACTTAAAAAGTATTCAGTTATGATGGCAATTTCGCGAACTGGCTGCGGTAAAGCTGGCTGTAAAAGCCGCCCCGGGCCAAAAGGTCAGCGTGCTTGTCGCGTTCAATAATCTGCCCGTCCTTCATCACCAGGATCAAATCAGCATTAACGACCGTGGACAAACGGTGGGCCACGACAAAGCTGGTCCGGCCCTGCATCAACTTGTCAAAAGCAGCTTGAATCAGCATTTCTGTCCGGGTGTCGATAGAGCTGGTTGCTTCATCCAAAATCAGCATTGGCGGGTCTAGCAGCATGACCCTGGTGATACAGAGCAGCTGCTTTTGCCCGGCGCTTAAGCTGTCAGCGGAAAGGGGCGTGTCCAGGCCCTGGGGCAGGCGGCGGATAAAGCACCAGCTGTGGGCAGCTTTAGCCGCCGCGATAATTTCCTCGTCAGTAGCATCTTCCTTGCCGTAAGCCAGGTTATCCCGGACTGTCCCCTCTTCCAGCCAAGTGTCCTGCAAGACCATGCCGAAATTTTTTCTTAAGGCATGGCGGGACATGTCCTTGATATTTCTGCCGCCTAAGTAGATTCCGCCGGAATCCACGTCATAAAAGCGCATGAGCAGGTTGATGGTGGTCGTCTTCCCGCAGCCGGTCGGCCCGACCAGGGCAACCCGCATCCCCGGCTTGGCAGTCAAGTTGAAGTCCCTGATCAGAGGCTTGTCCGCCTGGTAGGAGAAGTTGACATGGTCAAAGACAACTGAACCGGTCTTGACTTCAGGCAAATCGCCATCAGCCTTGTTCAAGTCAACCGGATCAGCTTCCGGCTCTTCATTGATCAGTTCGAAGACCCGGCCGGCGCAGGCAGCCGCGTTTTGCAGCTCAGTAATCACCGAGCTGATGTCGTTAAACGGCTTCATGTACTGGTTAGAGTAATTCAGCAAAACGCTGAGCCCCCCAACCGTAAGACGCCCGCCCATGATGGCAAAAGCACCCGCCAAGGCGACCAGGGCATAAATAAGGGAATTGATAAAGCGGGTGGCCGGGTTGGTCAGGCTGGAATAAAAGGTCGCCTGCTGGCTGTATTCTTGCAGGCGGTGGTTTATTTCAGCGAAGCGGCTTGAGGCGGTTTTTTCATAACCAAAAGCCTTGACCACCTTGACCCCGCTCACCATTTCCTCAATCAAGCTGGTCTGCTCGCCCCGAGTCTGGCTCTGCTTTCTGAACATCTGGTAGGACCGGCTGGCAATAAAGCGGGCCACGATGAAACTCAAAGGAGTCAAGACCAAAACCAGGAGGGTAATTTCCACCGACTGGCTGAGCATGAAGGCTAGGGTAGCCACAATAGTGATCAAGCCGGAGAAAAGCTGGGAAAAGCCTAGGAGCAGGCCGTCAGAGAGCTGGTCGGTGTCGGCAATGATTCTGGAAACAATGTCCCCGCTTGGGTGCTGGTCCAGATATGACAAGGGCAAAAGCTGCAGCTGCCGGATGGCCTTTTCCCGGATATCCTGGACGGTCCAGTAGGTCAGTTTATTGTTGATCAGGCCCATCAGCCAGGTGGCGGCGGCTGAGACAATCACCAAGATTAAAATCTGGACCAGGTCCTGGCCAATAGCTGGAAAGTCAACTTTGCCAGGGCCGACAATCTGGTCAATGGCCCGGCCAAAGATGATCGGCACATAAAGCTGGAAGATAACGGAGACTGCCGCCAGAATTATGCTGATGAATAAAAGAAGGCGGTAGCGGCCGATAATTGGCAAAAGCTGCTTCATCGCCTGCCAGCTGGCCATTTTCTTGTCTTGCTTTTTCATCGGCTCCCCTCCTTATCTTCTTTTGCTTCTTTTTCCTTCGGGAACTGGGAATAATAGATTTCCTGGTAGACCTGGCAGTTGGCCAAAAGCTCTTCGTGCTTGCCGCTAGCCACCAGTTTGCCATCGTCTAAGACCAGAATCTGGTCAGCCTGCATGATGCTGGAAACCCGCTGGGAAACCAGAATCTTAGTTACGTCCTTCAAGCTGGCCAGAGCCTGCCGCAGACGCGCCCCCGTTGCCAGGTCCAGGGCGCTGTCGCTGTCATCTAAAATCAAAAGCGGAGCCTGCTTGACCAGGGCTCGGGCGATGGTCAAACGCTGCTTTTGCCCACCGGAAAGGTTTCTGCCTTCCTGCTCGAGCTGAAAGTCCAGCTGGCCGGGCTTAGCCAAGACTACGTCTTTCGCCTGGGCCAGGCTGAGGGCCTGCCAGAGTTCTTCATCACTGGCCTCCAGCCTGCCCATCAGCAGGTTGTCCCGGATGCTTCCGGCAAAAAGCTGGGCCTTTTGCGGCACCAGGGCATACTGGTCCAATAGTTCCTCTTGGGTCAGTTCCTTTATGGAAACGCCGCCCAGTTTGATCTCCCCTTCCCCGCAGTCATAAAAGCGGGTCAACAGCTTCAAGAGGGTGCTCTTGCCGCTGCCCGTCCCCCCGATAATGCCGACGGTCGCGGCCGGCTTGATCGTAAAGGTCAAGTTTGAAACGGCTGGCGCGGAGGCTGCCGGATAGGTAAAGGAAACATTTTTAAAGTCAACCTGGCTGTTTGTGACCTTTGGACCTGCTTTAGGATAAGTCAAGTCATTTTCCGTGGCCAGAACCTGGCCAACCCGGTCTCCGCAGGCCCAGGCCCGGTTGATGGTGATAATCAGGCTGGCCAGCTTAATCAGTTCCACGATCATTTGGGCCAGGTAGTTGTAAAGAGCCACCACTTGCCCTTGAGCCATTGCTCCGGTATTTACCTGGACGGCGCCAACTTGAATCAAGACAATGGCCGCGATGTTGATCATGACATAAGTCACCGGGTTCATGGCGGCTGACAGGCGGCCGACGAACTCATTCAGCTTGGTCATGGCGGAAACTTTTTCATCAAATTTGGCCACGGCGGCTCTTTCTTTTCTGAAGGCCCGGATGACCCGGACCCCGGCCAGGTTTTCATTGCTCAAGCGGGTAATTTCATCCAGCCGCTTCTGCACCTTCCGGTAAAGGGGAATGCTGACCAGCATGATGCCAAAAACGACCAGGGCCAAAAGCGGAATCGCTACGGCAAAGATCAAGGCCGCTTTAACATTGACCGTAAAGGCCACGATCATTGACCCAAAGACGATAAAAGGACTTCTTAATAAGAGGCGCAAAGCCATGTTGAAGCCGGTCTGCACCTGGTTGATATCACTGGTCAAGCGGGTGATCAAGGTGCTGGGCGGCAGCTGATCCAGGTTGGCAAAACTGAACTTTTCCACCTTGTCAAAAGCCGCCTGACGCAGCTGGCTGGCCAGGCCCACGCTGGCCTTGGCGGCAAACCACTGGGCAGTAATGCTGGCCGTGATCCCGAAAAGGGCCAAAAGGGCCAAAAGGCCAACCTGCTGGAAAACATAGGCCTGGTTTCTTTCTTTGATCCCGTAATCGATAATCCTGGCCACGACCAGGGGAACGAACAGGTCAAACAGGGCTTCCAGCAGCTTGAAAAGCGGGGCCAGAACGCTTTCTTTTTTATAGTCTTTGAGGTAGCTAAAGACGTATTTCATGTTCCACTTCCTTAATTTATTTGATGTTTCGAAATTCGATCATACTTTATTCTTATTAAAATCAACAAGCACAAATTTCTAAAATTATTTTAAATCGATCATTTTTACGAGTTTACCACTTGATTTTTTACAGGATTAGCAATAAAGTTTATTCATAATACTAAGATGAACACTTTTTCATTGCTAATACCTCAATTTCTTTTGCCTGGCAGCACTTTTTAACCGGGAAAATTAGAAATAGTTAGGTAAAAAATTTTTAAAAGTTTCGTTTTTTAATAACAAGTGTTTTTATTTCTTAAGGAATTGATATATTATTATATCAGAACTGTTTGATACGCGTAGCATATATATCTGACATTTCAATCTTTTTATTATGAGGAGCTTAGTAAACCCGTGAGAATCGAACACCTAGAGATCTTTGTAAACGCCGCGCAGACGCAGAGCTTTACCAAGACTGCACAAAATATGAACATGTCCCAGCCAGCGGTTTCCCTGGCCATATCCTCAATCGAGAAGCAACTGGGCTACCAGCTGTTCAGCCGCTCCCGCCGCAAGATGCTGCTTACCCCGGCCGGCCGGTCTTTGTACAACAGCATCAAGAGCGAATTGAACAACTACCGGACCGCCGTTTCCAAGGCCAAGCGGATCGCCATGTCAGAAGGACAAATCACCTTGAAGGTCGGCTTAATCGGAATTCTAGCCGAACAGCTGATGCTTCCAGGCTTGATCCGCCAGTTCCGCAGGAGCCGCGACACCGTAAACATCGAATTCTTCGTTGAAAGCAGCCCGGTTCTCTTTGAGAAGCTGGCCTCCCACGAGCTTGACCTGGTTTTGTCAACTCCGGAAGCCATGCCGAAATTCCCGGACTTCACCGCCTACACGATCGGCAAGTTGAAGTGGTGCACCCTGGTGCCAAATGACCACCCTCTGGCTGAAAAGGACCTGCTTTCAGAAAAGGACCTGGACGGCAAGGACCTGGTCTTCCTGGATCTTTCTTATTCATCACCGCTGATTACCTTGATGCAGGACCGGATTGAAAAGAACTGCAAGCAAAGCCGGATCTTCTTTGCCAACAATGTCGTGGCGCAAACCATGATGGTTTACACCCAGCAGGGCCTGGCTATCCAGCCATACACCGGCTCGCTTGATGACGACAATTGCGAAGTCAACGGCCTAAAGCGGGTTCCCCTGGACGTCAAGGTCAGCTCAGACCTGACCCTCTTCACTTGCAAGGACGTCCTCAACGAACACGTCCTGGACTTGATGAACTGGCTCAAGGCACAAAAGCTGGGCTAAGATTATAAGTATATAGAAAAAATGCTCATCGGCTGATGAGCATTTTTCATTGCTGTTTTTTCGACTTGAGTTATTTGATTTCATTAAAGGACTTGTTGCAGTAGTTGATCAGCTGCCGCATGTCCTGCTTGCCCCAGTTCCAGGCCCGGAATTCCTTCAAAAATTCCTCTGAGCAATAGTTTAAGTAGTTGTCCTCTGCTTCTTCCAAAATCTGCCGGGGATCCATGGCCTTGATTTCTGCCAGCCGGCTTTCCCTAATATAAGCCGGGTCGTTTAAGAGAGACTTGCGGCTGACCGGCTTTAACTGGCAGCCCCAGCTGGCTGCCCGGGCGCTTGCCAGGTGCAAGAAGGCAGCGTTGTGGGTAATGCAGTCTTGCAGGATCTGCTGGCCCCGGCCAGATTGTCTGGGCATCTCCAAACTGAAGCAATACTGCCGGTCTAAAGTCAGAAAAAGACCGTTATTGTCAAGGCACTCAAACAGCTTCATCTGGTGCAGGCCCACCAGGTCAAGCGGCTTGTGGCGCATGATGAAAAAAGAGAAATAGGCATGTGAGCCAAAGGACTGCACATACTGGTCTGACATCCCGATCTGCCGGCAGAGCTGCTTTTTAATAGTCAGTTCGTGGGCCGGCTCCTTCTTTCTCAGTTCATGAACCAGGCGGCGGCATGTCTTCTTTTTAAGCAAGACCCAACCGGCATCGGCGTCATAAATGATCGTCCGGTACTTGCCCAAAAGCAGGTCCATCTGGAAGTCGTAGGCCGCGACCGTCTTCTGGTTTATCTGGTAGTCCTCGTCGGCCTGGGCAGCTATTTTCCCGCTAGCCAGTAAGGCAGGCAGATTCTGCCGGTCAACCACCGCCACATTCATATCGCAAATTTTCTTTCTCGTTCTCATTTTCTCCTAAACAAGCTCCTAACACTATTTACCGTTTATATGTTGTTATTTTTCTCCTAGTTTAATTTAACAAAAAGGCCCTTGTGAGGCAAGCGGTTCCATCGATTTTGGCCAACTTTTATCAACTTTGTATGCGCTTCCGGTATTGGTTGATTTTCCAGCCGGGGACGTGTAGAATATTTTCCGTAAAAGTCCGCTTGTTTTTATCTGGACAAGTCAAGTTTTGCTAGAAGGAAAATGAAAATTTGCAAGTCGACCTTATCTCACTGACAATCTCAGGGCTGGTCCTGCTAGTCTTGATCCTCAACATTCTCTATTCCCCGGCCTTCAACCGCCTGGACCGGAAGCTGCACAAGAAACTGGTGCGGACGCAGAAGAATATTTTTTGGAAGATCATCGCCTTCATCAACGAGCCCAAGCTGGTCATTGTCTGGGACGTCTTGATTGCCGGCCTGCTCTTAAACGAAAACAATTACCGGCTCGGCCTTTGGGTCCTGGCTACCTTAGGCGTGACCGATGCAGCCGGTTTTATCGTCAAGCACCTGGTCAAGCGGAGCCGCCCTCATGCCCACCTGTCTGAAGAAGAAGGCTACAGCTTCCCCAGCGGCCATGTCTTAGGGGCAACGACCATGTGCCTGATCCTTTACGCCCTGCTCAGACGGGAATTTGATCAGTTATTTGCCGTAATTCTTTTGATCTACTGGCTCTTTGTGGTTATCTCCCGCCTTAACCTCCGGGCCCACTACCCGTCAGACGTCCTGGGAGCCGTGGCCTTGTCGGTCTTCTGTTTTACAGTCGTGCAAACAATCTATGCTGCCCTCTTTTTGAAGTAGAACATAATACATAACAGAGACGATAACGATATATAGGAGCAAAAAATCCAGAGTTCTAACTTAACAGAACCCTGGATTTTTTATTTTGCAGCTTATTAATTGTGAAAGCCGACCATGAGCCCCCCTCTTTCCGCGTAGAAAGAGCACAGGCCCCGCATTGGCCGGATGGTAATCTCAGCCTCAGGATATTCTGCTAGCAGCAGTTCCTTCAGCTTCTCAGCATCAGCTTCATTTTCGCAGTGGTCAATCACGACCCGGCCGCCCTGGTACTTCTCTTCCTTCATCTGCTTGACCAGTTCCCGCAGGGCCTTCTTCATTCCTCTGGCCTTGGTCAAAGGCTGCAAGTCACCGTCAACGCTGGCCGTCCCGATTAAATTTATCTTCAGCATCCCCGCAATTTTGGCCACGGCTGGCGACACCCGGCCGTTTAAGGACAGGTTTCGCAGGGACTGGAGGACGAAAAGCAAGTGAGTCTTGGTCCGGTACTCGGCAATTCTGGCTTTCAAGTCAGCAAAGCGGAGCTTGTCATCTTTAAGAATGCTTTCGATCCCTTCCAGGATTACTTCCAGTTCCTGACCGGCTGACCGGGAGTCAACGACCACGATCTGGGCATGCGGGTGAGTCTCTAAGTAGATGTCTCTGGCCTGCAAGGCGGAAGAGTAGGTCCCCGACAAGCCGCTAGTAATAGTCCCGATCACTGCCTTCTCGCAGCCCTCCAAACTATCCAGCCAGCGCTGGATGCTTGGCGCGGCAGTCTTGCCTGCCTCCTGGCTGGCCTCCATCTTGTTCAAAAATGCGCCCATGTCCAGATGCTCGTCATCCAGCCAATTTTCCTGGCCGATGGTCAAAGTCAAGGGCACGACCTCAAGGCCGCGGCTTGGGTCGGTCAAAGTATTGGCGCTTGAATCAACTATCAGTCTCACGTTTTCCATAATATTATCCCGATTCTACATTGTCTCTGGCAGCTTTTCCTGCCTTGTCTGTTTCTAAATCTATTTTAACAGTTTTTCCTTAACCGGGGAATTTTTTACTAACCGCTTTCAAACTTGGATTTTGACCAAACTTGCTTAGCAAAAAGTAAAATTTGTAAAAAAGCGGTTTTTTGGAATCGTTTTCAAAAAACTGGCTGTTTACGGATTCACAAGCTTATACTATAATGAACTTGTAAATAATTACAGAGCGAATGCTCTTGCTGTCGGAGAATTCCTCCGCCAGCGTATTTTAAGGAGGATTTTTTAATGACCAAGGTTGTTATTGAAAACGTTCATGCTAGAGAAATCTTTGACTCACGTGGTAACCCAACTGTTGAAGTTGAAGTTACTTTGTCAAACGGTGTAGTTGGCCGCGCTGAAGTTCCATCTGGTGCTTCAACTGGTGAAAACGAAGCTGTTGAATTGCGTGACGGTGGCTCACGTTTGGGCGGCAAGGGGGTTATGAAGGCTGTTAACAATGTTAACACTGCCATCAACAACGAACTGCAAGGCGCAGACCCATTCAACCAACCAGCTATCGACAAAGCTATGATCGAACTTGACGGTACTCCAAACAAGGGTAAGTTGGGCGCTAACGCTATCTTGGGTACTTCAATGGCTACTGCTGTAGCAGCTGCTAAGGCTACCCACCAACCTCTTTACCGTTACCTTGGCGGTACTGACTTGTCAATGCCTCAAACTTTCCACAACGTTATCAACGGTGGTGAACACGCTGACAACGGCATCGACATCCAAGAATTCATGATCACTCCAGTTAAGAAGACTTCATTCCGTGACGGCTTCGAAAAGATCGTTAACACTTACCACACCTTGAAGAAGGTTTTGGAAGAAAAGGGTTACGAAACTGGCTTAGGTGACGAAGGTGGTTTCGCTCCTAACATGAAGGACTCAGAAGAAGCTTTGAAGGCTTTGCACGAAGCTATTGAACGTGCTGGTTACGTTCCTGGCGAAGACATTGCCATCGCTTGTGACTGTGCCGCTTCATACTACTACAACAAGGAAGACGGCAAGTACCACCTGGAAGGCAAGGTTCTTGACGGTGACCAATTGGCAGAATACTACGACAAGTTGCTCGCAGAATTCCCAGAATTGATCTCAATGGAAGACCCATACGACGAAAACGACACTGAAGGTATGGTTAAGTTCACTCAAAGCCACAAGGACCGTCTGCAAATCGTTCTTGACGACTTTATCTGCACCAACCCACGTTTGTTGGAAAAGGCCATCAAGGAAGGCGCAGGTAACGCTTCATTGATCAAGCTGAACCAAATCGGTACTGTAACTGAAACTTTGGAAACCATCCGGATTTCACGTAAGCACGGCTACAACACCATGATTTCTCACCGTTCAGGTGAAACTGGTGACACCTTCATCGCTGACTTCGCTGTTGCTACTAACGGCGGCCAACTGAAGACTGGTGCCCCAGCTCGTTCAGAACGTGTTGAAAAGTACAACCAATTGTTGAGAATCGAAGAACAACTCGGTGACGGCGAACGTCTCGACTTCTTCCCAGCTCAAGACTAATTATTACAAAATTAGCTCAAAAAAGATCCGCATATGCGGATCTTTTTTCTGTACGCAAAATTTTCCTGGTGAATTGACAGCTTTTCCCCTGCTCTTTATACTAGTTCAGACCAACTTGCCAGACGAGGCAGTTAAAAAGCGGGCAAAAGCTGTTTTTGCCAATGGGAGTATTATTTTGGCCGCGCTTTCAGCACTGCTGGTCAGCTACCACTTGACCGGCCACGGTCTGCCCTGCCTTTTCCGGGCACTGACCGGCTACTTGTGCCCCGGCTGCGGGATGACCAGGGCGGCAGTTGCTATTTTGGGAGAGGATTTTGCCAAAGCCTGGCAGTACACCCCCCTCTCCTTAACCCTGCTGCCTGTTTTTGCCTTCTACCTGCTCTATATCTATAAAACTGGCCGCTATATTCGCAAGGGAGAGGAAGATTTCAAGCTGGGAGAGAGCGTCTTTCTGCTCCTTATCGCCATCTGCTTTGCCATTGCAAGAAATCTGTAAGCTTTCTTGGTTTTTATCTAATTTAGGAGGAACAATGTGTTGCATACACTGCGGGGCTAAGTTGCCCGAGGGTACCAATTTTTGCATAAAGTGCGGGGCACCAGTTGAAAAAGTTGAGTCCGATGGCAGTGAGAAAAAGCCGTCGGTGCGTCGGTGGTGAACCAGGTTGACAACAGTATCGACCAGATGGGCGAGCAAATCGGCCAGGGCATTGACGATGCCGCTAAAGACATTACTTCTGGCTTGAAGAAAACTGGCGAAAAAACGGGAGACTTTTGGGAAAACTGGCGGGACTATCTGACACCTAACAACGCGGAAAAATTCGTCAGCGTCGCCCTCCTCTTCCCCCTCTTTATGACCGTGGTTTTGTGGCTGCTGACCCGCGTGTCCGGCTGGGTCTACGGCCAGTATTTCCTGCCTTTATATGACTTCTTCTTCGCTATTTTCCAGATTGCCATTTTCCTGGTCAAAGCCCTCTTCCTGATCGGGTCTGGCTTGGGTGTTGCCGCAGCTGGCTATGTTTTGTATAAAAATGAGAGCAAGCGGACGGTCTGGGGCTGGCTTACCGGCGCGGCCACCGCGGCCACTGTTTTATCCTTCCTGGGCTGCCTGGGGATCAACCAGTCATATCCATATAATGGCTTGACGCAGACTTTCAAGATCTTGGGCTGGGTGGCCGTTGTCTGGGGGATCGATACCTGCTCCAGAGTCCTCCTGCAGAAATTGGGAATTGACGTTGAACCAATCATCAGCCGGGATCTGGCCGCTTACCGGGACTTTTACCAAACCTACCGGGCCAAGCATGAAGCTGAAGAAAAGGCTGAGAGGGAAGAAATTGCGAAGGCCCAAAATGGTCAAGCAGGTCCTGTCTCCTACTTTGATGGAACTGGGGCCGGCCTGTTTGGTACTTACCTGCTCTATGCCCTTTTAACCATCATTACTTGCGGCTTCGCCGCGCCTTGGCTTAACTGCGCCATTCAGCGCTGGAGAACCAAGCACATGGTAGTTGACGGCAAGCGGGTAACTTTCAATGGGACTGGGGCTTCTCTTTTGGGCCACTGGATTCTCTGGGAATTCTTGACCGTGATCACCTGCGGGCTTTTTGCCTTTTTCATCCCGGTTGGCCTGCAAAAATGGAACATGAACCACACCTACTATGAAGGGGAAAAGGGTGCTGAAGATTCCCGCTTTGACGGCAACACCTTCCAGTACATTGGCTACAACATCATGCAATTCCTGCTCTTAGTTGTGGCTTTTGGCCTGGCCTACCCATGGACTCACAAGATGATTCTCCGTTGGCAGACCAAGCACCAGCTCATTAACAATGACCAGCTCATTAACAATGACCGCCTGATTTATGACGGGACCGCCTTAGGCATGCTTGTCCGGGCACTTGTTGTGATCCTCACCCTGGTAATTCCTTTTGCCTTCCTGGCATCCCCATGGGCATATTGCTGGCTGTGGTGTTACCAATACTCCCACACTCATGTGGACCACAGTTCTGCAGAATAATATTTGACAAAAAATAATACGCTCAGATCAGCTTGATTTGAGCGTATTTCTTTGCTTTATTCTTCCGTCTTGATGACCAGCTTGCGGCCATCCAGGGTCCCCTGGAGCAGCTGCCTGATCAGTTTCTTGGCATTTTCTTGCGACCGGGCCAAGAGGCCGGACTTTTTGGCCACGCCTGTCGCCTTCTTTAAGGCCGCCTGCTCAGCCTTGGTAATGTCTTCTTTTTGGTTCCAGTTAAAAAGAGCATAGCTCTGGTCATAGAACTTGATTGAGGACGGGTCGATCTTCTTGTCCAGCAGCTGGCTTTGCGGCAAAGTCACGGTCACCTGGTCTTGATTGACTTGGACCTTGATGTCCTTGACCTTGACCCCGGCTTTAAAGTTGGCCGTATAGACCATAGTGAAGCCCTTCTTGGTGATAAAAGGAATCTGCCCGTTAGATAGTTTGTAAATGCCAGTATAGGTGTACTGCTCAGTCGCCAGCTCCCCAATAGCCTTCAATTTAGCGGAAACCGTGGCCACCGTTACCTGCTCCCGGCTTTTCTTGGGCAGATGCTGGCCGATCATGATCCCGCCAGCCAAAAAGACAACGGCGATCAAGAGGGCAGCCAGCTTTTGGAGAAATCCGGTCCTTCTGCCAGACCCTTTATCTGTTCTTTTTTGCAAAAAAGTCCCTCCTTACGTTCCCCCTATCATAGCAAGGGCGGCTAGAAAAAACAATCAAGAAGCCAGTAATTTCTAAATATCTTAGCAATTTGCCCCCAAAAATCTTCTTTTCTTAGCTTTATACGGATATCTGGCTATTTTACCTATTTTTACAATCTTTTTCATGAAAGTTGTCATTTTCCCTTGCATCAGCTTCCCTTTTGCGCTAGAGTTAAAAATCAACAAGAGATTTAATCTCAGATTTATCTTTACTTTTATTTTTAAAGGAGCAGATCATAATGAGGACGAGGACTTACCACCACCGAACATAGCACCATCCACGATGGTGACTGAAGCTGTTTCATTGCAAGGCGAGGACTGGCAATGAAAAGCTGTCATAGTCATAAGTCGCTCATTGGCTCCAGTATTTCAATTACTGTCAACTTGATCAATTTTAAGTACTCTTGCCCGGAACTTTGCCGCTTGTCAGCTCTTCATTGCTTGTGTCCTTTTAGACGAAGGATTAAACATGAACAAGATCATCGAAGTTAAGCATCTGAAGAAGAATTACGGCGACAAGGAAGTTCTCAAGGACATCAATGCCGTCATCGAAAAAGGAAAAGTCATCACGGTTATTGGTCCATCCGGTTCAGGCAAGAGTACTTTTTTGCGCTGTCTGAACCTGCTGGAAAAGCCAACCAGCGGCCAGGTGATTTTTGAAGGAACGGAACTGACCGACCTTAATGAAGAAGAACTGGACCAACTCCGGCAGAAGATGGGCATGGTCTTCCAAAGCTTCAACCTCTTCCCTAACATGTCCGTCATTGAAAACGTCAAGCTGGCGCCGATGAAGGTCAAAGGGATGAGTGACCAGGAGGCCGGCGACCTGGCCCATGAACTTTTAGCAAAAGTTGGCCTGGATGACTTTGCTGACCACTCCCCGGCCAGCCTGTCCGGCGGCCAGCAGCAGCGGGTTGCTATCGCCCGGGCTTTAGCCATGCAGCCGGACATGATGCTTTTTGACGAACCGACCAGTGCCTTAGACCCGGAAATGGTCGGGGAAGTCTTAAAGACCATGCAGGATTTAGCCCAAACTGGGATGACCATGGTTGTGGTCACCCACGAAATGGGCTTCGCGCGAAAAGTCGCTGATGAGGTCTGGTTCATGGCTGACGGTTATCTTTTGGAACAGGGCAGCCCCGACCAGGTCTTTGACCACCCGCAAAGTGACCGGGCCAAGGACTTTTTGGCAAAAATTTTGGAAGCCTAGCAAAGGAAGAATGAAGCAAGATGAAGAAACTTATTAAAATTATGACCGCCCTCCTCCTCTTGGCCGGGCTCTTTACCGCGGCAATTCCAGCAGTTGATGCCGCCAGCAGCAGGAAAGTGGCCAGCGGCACGGTCATGAAGAAGATCAAGAAGTCCGGCAAATTAGTTGTCGGCATTTCCGCTGACTACCCGCCATTGGAATTTACCAAGAACGTCAACGGCAAAAACAAGTATGTCGGCGTCGATGTTGAACTGGCCAAGCAGATCGCCAAGGACCTGGGGGTCAAGCTGGAAATCAAGAACATGGACTTTGACTCCCTCCTGGTTGCCCTGGAAACTGGCAAGATCGACGTGATCATTTCCGGGATGACCCCAACGGCCGAACGGAAAAAGAGCATTGACTTCTCCAAGATCTACTACGCTGAAAAGTCCGACTACTTTGTCATCAGCAAGACCAACAAGGCCAAGTATACCAGCACCGCCTCCTTTAAAGGCAAGACGGTTGGTGCCCAAACCGGTTCGCTTCAGTACACTTCCTTGAAGAAAAACGCTGCTAAGAGCGGGATCAAGGTCAAGGGGCTGGCAAAGATCAGCAACCTGCTCATGGCGCTTAAGTCCGGTAAGGTTGACGCTGTTTTATTAGGTGAACTGAACGCCAAGACTTACACCACTAACGACACTTCCCTGTCTTTGGTCAAGTCCAGCCTCAGCCAGGCTCAGATGGGCAACGCTGTTGGGGTGGCCAAGGGGCAAGGCGACCTGGTCAAGGCCATCAACAAGACCATCAACAACTGCCAAAAGCAGGACCTATTTAACAAGAAGTACATCCCGGCCGCTGCCAAGGCCATGAAGCAGGCCTCAAGCAAGACCAACAACTCCATGAGCAAGTACGCCAGCTACTTCGCGACTGGCCTGGGCTACACCATGATTATTACGATTTGCTCCATCACGATTGGTTTAGTCCTGGGTGTCATCTTCGCCTTGATGCGTCTGTCTAAGAACAAGCTTTTGCACGCCATTGCCGTTTGCTACATTGAGTTCCTCCGAGGCACTCCGCAGATGGTTCAGATCATGTTTGTCTACTTCGGGGTCGGGATGCTGATCAAGAATATGCCGGCTCTGGCCGCCGGGATCATCGCCATCGGCCTTAACTCCGGGGCTTACGTGGCTGAAGACATCCGGTCCGGGATCAATTCCGTGGCCAAGGGGCAAACGGAAGCTGCCCGGTCCCTGGGCCTCAGCCAGGCCAAGACCTACCGCTACGTAGTCTTCCCGCAAGCCTTGAAGAATATCTGGCCAGCCCTGGGCAATGAATTCATTACCTTGACCAAGGACAGCTCCCTGGTCTCCGTCATCGGGGTTGGGGAATTGATGTACGAGACCGGCCTGGTCCAAACCGCGACCTACCGCGGGGTCATGCCGCTTTTTATCACCATGTGCATCTACTTCGTGGTAACCTTTATTTTTACCCGTCTGCTCAATTACTTTGAACGGCGGATGAACCTGACTTCAAGCCGGGCATAAAGACAAACAATAGAAAGAAACTGGAAACCTAGATTGGCTTCCAGTTTTTATTTTGCATATAGGGCAATAATTTGCCGCATTAAGGGGGTAACCACCCGGTCTTTGCGCCAGACTAGCTGCAGGCGGGTCCGCCACTTAGCCGAGTCGATTGGGTAGATGTGGCCTTTGGCATAAGTTTTGGCGATTGATTCCGGCACCAGGGCAATCCCCAGGCCAGAGTCGCTCCAGCGGATAGCGGTTCTGGAATCATCGCACTTAACCACAAAATTTGGGGTGAGACCTTTTTCCGCGAAGGCTTCCTTGAACATGTCCTCAAAGCGCCGGTAGATGACCAAGGGCTGGCCGGCCAGGTCCTGCAGCCCTACTTTTCCCTTGCCAGGGAAAAAGTCCTGGCAGGTAACCGCGGTCATCGGCTCATCGCTGATGTCGACAAAGTTCAAGTTGACCCGGTTGTAGGGGGTGCGGACGATGGCCAGGTCCAGCAGGTTGCCCTGCAGCTTGTCCAGGATGCCGAAAGTGTTGTCTTCGTAGATGTCAAAGGAGACGCCGGGATGCTGGCGGGCAAAAGCCGTCAATTTGGCGGAAGGAAGCTCGCCGATTGAAGAAGAGACGGAACCTAATTTAACCCTTCCCCACCCGCCCCGGTCCAGCTCCGTAATTTCAGTTTGGACGTTTTTGGCTAATGTCAAAATCTGACCAGCATAATCCCGCAGCTTTTTTCCAGCCTCGGTCAGTTCAATTCCATAAGGCTGACGGATAAAGAGCTTAGCCCCTAGCTCCTCTTCTAATTGCTTTAATTGGTAGCTGAGGGCTGGCTGGCCGACAAAGAGCCGCTTGGCGGCTGAAGTAATCTGCCCTTCCTCGGCTACGACCAGAAAGTAATTGAGCTGCTTGAAATTCATTTTCTTCCCTCTTTTTTTGATGATCTTTGAGCTTAGTAGATATCAACTCTTTAGATATCTAACATCATAAATCAGTATTTTGTTTATATCAACCTGGGGGCTACAATGAACAGTGAGAGAAATAACTTCTAAATGTAACACGTCACGACTGAAGAATAATTATAAGGAGATCTTTGCATGAAAGTAAAAGGCTTGACGCAGGCTGAAGCTGACCTGCGCTTAAAAAAAGACGGACTCAACCAGGTGCCGGAGCCGGAATTCAGCTTCTGGAAGGAATTTGCCGGCAAGCTTTGGAATCTCAGTGCCTGGATTCTGGAGGCGGCACTCCTCCTGGAATGTGCCCTAGGCAAGTGGATCCAGTCCCTCTTCGTTTTGCTTATGCTGCTCTTTGCCGCCTACAACGGGGCCACGCAGAAGAAGAAGTCCCGCAAGGTCCTGAGTTCAATTTCCCAGCAGCTGACCCCGGTTGTCGCTGTTTTAAGAGATGACCGCTGGCAAAAAATTGACTCCAAATACCTGGTAGTCGGCGATATCGTCAACCTGCAAAAAGGGGATATTTTGGCCGCCGACATTGACCTTTTGGACGGGAACTTGACCTTAGATGAATCCTCAATCACCGGGGAAGCCAAAAATGTCCATAAAAAAGCCGGGGCGACAGCTTTTGCGGGCACGACCGTCATGGACGGCGAGGCTCTGGGCAGAGTCAGCGCGACCGGGACCAATTCAAGAAGCGGGCAGACCATCAACTTGATCAACACGTCCGCGGCACCTGGCCACCTGCAGCAGCTTTTGACCAAGATCATCTACTACCTCTGCCTCTTAGACGGGGTTTTGACCGTCATCCTCTTGATCGCGGCCGTAATCCGGGGTGAAAATATCTTGGAAATGCTGCCCTTCCTGGCCATGATGTTCATCGCTTCTATTCCAGTAGCTATGCCGTCAACTTTTACTCTCTCCAATTCCTTTGAGGCCACCCGCCTGTCTAAAGAAGGAGTTTTGACCAGTGACTTAACCGGGATTCAAGACGCGGCCAACCTGAACCTGCTCTTACTGGACAAGACCGGGACCATTACTGAAAACAAGACGGCTGTCGCCTCTTTTGCTAATTTTTCAAAGCTCTCAGATGAAGAAGTCCTAGCCTTGACCAGCCTGGCCATCGACCAGCGCAACCAAAGCGTGATCGACCTGGCCTTAATGGACTTTCTGCAAGAGAAAAAGATACCAGTTAAAGAAGCAGAAGCCTTTACCCCCTTCACTTCCAGCCAGGGCTATTCTGAAGGCCGAGGAGAAGGCCACGACGTTAAGCTGGGTTCAGTCAAGCAGTTCAGTAAGATTGATCCGGCTATTTCTGAACAAATGGCAGCTGTCGACCTCAGTCTGGGCCGGTCAGTCGGGATTTTGCTCGACGACCGTTTGGCGGGTATTTTTATCACTAAAGACAAGGTCAGAGCTGATTCAAAAGCCGCCCTGGCCGAACTGGTCAAGCGGGGAATCAAGCCAGTCATGCTGACCGGGGACAACCAGAAAACCGCGGCCAGCGTGGCTGAAGAAGTCGGCTTGACTGGCAAGGTCATCTCGATCAGCGACTTTAAAGAGGGGGTAAAGGCGGAAGACCTGGCCGGGATCGCCGACGTTTTGCCGGAAGACAAGCTGGATATGGTCAAGTACTTCCAAAAGGCTGGCTATATCGTCGGCATGACCGGGGACGGGGTTAACGACTCCCCTGCCCTCAAGCAGGCCGAAGTCGGCATAGCTGTATCAAATGCCGCTGACGTGGCAAAAAAGAGCAGCAAGATGGTCCTTTTGGATGAGGGCCTTAGCCCTATCGTCAAGATCTTGGATGCCGGCCACCGGGTTTACCAGCGGATGACCACCTGGTCTTTGACCAAACTGGCCAGAACGGCTGAACTGACCATGCTCTTGACCTTCTCTTATCTTATTTTCGGCTACCTGCCGATGGCCTTAAATGCCATGGTCATCTACACGATCATGAACAACATGGTCACCATGATGATCGGAACCGACAAGACTCACATCACTTACAAGCCGGAGAACTGGGACATGGGCAAGCTGGCTAAAATTGCCTTCTCCTTGGCCGGAGCCTGGACAATCATCGGTTTTGCCTTCGTCTCTGCCTTAACAAAGGCCGGAGTAAATCATGATCAAGTTGGGACCATGGTCTACGTCTTCTTAGTTATGAGCGCCATGATGATCGTCTTGATCACCCGGACCAAGCGCTTCTTCTGGCAGTCTGCCCCATCTAAGCCGGTAGCCAGTGTCCAGATCGCCGATATCCTTTTGACCTGCCTTTTAGCACTTTTGGGCATCGCCATGCCGGCCATCGGGATTAAGGAGCTCTTGACCCCTTTGGCCGTAGCCTTCCTGGCCGCCATTTTGATCGACCTAGTCTACCAGCCGGTCATGAAGAACAAGTAACAAATAAATGTGTGTTTGGCTATTTTTTGCCAATTAGCTTTACAGGGAAAGAAGAATTTATGCGCAAGAGAATTTTTAGAATCATCATGAGTCTGGCAATTCTGTTGCTGGTCATCTTATCCGGCATGCTGGCCTACAGCTACTTCAATGTTGAAAGAGCCGTCAGCCGGTCCTATCAAAAAAGCGGCTTAAAAGCCGCTGAAAATGAGAGCAAGGAAGAAGTATTAAAGGGAAAAAAGCCCTTAGTCGTCCTCCTGCTGGGGACTGACACCGGGGCCCTGGACCGGGACTACAAGGGACGGACCGACTCCATCATGGTTTTAGTCCTTAATCCCCGGACCAAGAAGTCGACCATCGTCAGCATCGAGCGGGACTTCCAGGTCAACTTCCCGCAATATCCTCAATACTCCCCTTCTAAGATCAATGCCGCCTATACTTACGGCGGGGTCAAGCTGCTCAGCCAAACCTTAGACCGGTATTTCAAGATTCCAGTCATACTTATGCCTTGATCAACATGGGCGGGATGAAGTCGATCATCGACCAGCTGGGCGGGGTCGACATTACTCCCCTTTTGAGCTTTGACTACGAGGGCTATAGCTATAAAAAGGGCGTGACGACCCACATGAACGGGGACAAGGCCCTGGAATACTGCCGGATGCGTTATGACGACCCTGAAGGCGACTACGGCCGGCAAAAGCGGCAAAGACAGGTCTTGACCGCGATTATTAAAAGTGGGGCTGACGTCCAGAGCCTCTTAAAGCCGGCCTTCCTCAACTCTGTTTCCAGCCAGGTCAGAACTGATTTGACTTTCAGCGACTTGACCCAGATGGCCAAGTCCTACCGGGCAAGCGGCGACCAGCTGGAAACCGACTACACCCGCGGGACCGGCTTTAACCAGGACGGGGGCTCCTACCAGCACATCAGTCTGGCAGAGCGGCAAATAATCAGCGACCTGGTCCGCCAGGCTGCTGGCCTGAAAAAAGTTCAGCTGGCTAATGGCCAGTAAGACAAACTATATCATCGACTAAATGCTTTATACTTATTACTGTTTAATCTGACAAAAAGGACCCGCTTTTGCGAGTCCTTTTACTTAGTTCTTATATCTACTTTCTGCTTACTGCTTACTCTTCACTTGCCTCTTTGCTCTTTTCCAGCTGCTTTTGCCGGTAGGCAATCAAGCGCTCGAATTCCGTTTTCAGCAAGGCCCCCATCGGGACGGCAATCAGCATCCCCACAAAGCCGCCCATGGCCCCGCCGGCAATCACGCAGGCGATAACGTACAGGGGGTGGATGTGAATGGCTGAAGACAAAAGCTTAGGATTAAGAATATTGCCATCAATCGCCTGGATCAAGAGGAGAATAATCATCCCCACGATCAAAGCTGTCATATTCTGGCTGAGGGTGCAGGCTAAGATAACCATCCCATAGCCTAAAATCGGACCAAAGTATGGGATTAGGTTCCCCAGCCCGGTTACCAAGCCGATCAAAAGGCCATATGGGACCTTGGCAATCAGCATGGCCAGGCTAACTAAAAGGCCAACGATAAAAGCATCGATAATTTGCCCTCTGATGTAGCCGGAGAAGGACCGGTCAGCGTCTGCTAAGAAGAGCTTGATTCCCTTGATCACCTTTTTATTTAAGAGGGTGCCCAGGTTTCTCTTCCAGTATGCCGCGATCCGCTGGCCATCGTAGAGGAAGTAGATGGCAAAAATCACCCCGAAGAAGAAGTCGCTCAAAAAGCCAGTTACCCGGCCGACCCCCTTTTGCATATAAGAGACCAGGCCGCTGGTCGACCAGCCCTGCTTTTGCAGGTAGGCTAAGATTTCGTTGATAAAGCTGCTGTACTGGGCTTTCAGTTGGTCATAGAGGCTTTCTAAGCTGTCCAGGCTGAAATGGCTCAGCTGCTTGGAGAAGGTCACGAAAACCGCTGTCGCGGCCAGTAAAATAACCAGCAAGAGCAAGAGCAGGGTCAAGGCCACTGCGGCTGACCGGCTGGCCGTCGCCACTGCCCCCCGGCTGCTGCCCTTGGAAAACTTCCGGTCAAAGAAGTTGGTCAAAGGCAGCAAGAGATAGGTTAAAACTAAGCCGTAAGTCAAAGGCTGGGCAATTGCTGCCAGAATCTTGCCTACCCGGACCCAGAAGCCAGTTGACTCATAGGCTAAAAGCAGGATGAAGAGACCGGCAAAGACCGTGCCCAGACAGTAGAGGGCAATCTTAAAATACTTCTGATCAATGTGGTTCCAAAATTTGTTCATCATACACCTCGCTAGTTTGACTAGCTTTTATTATAACAGTTTCCGGCCCTGGCCAAAGCAATAAAAAACAGCAGTTGCGAAAACTGCTATTTTTTATCTTCTTCTCGATTATGATTTTTACATCACGTGGTGGATCCAGCCTTCTGGGGCTTCGACTTCCCCGTTTTGGATGCCAGTCAAAGTGTTGTAAAGTTCTTCCATGAACTTGCCTGGCTTGTCCATGCCTGATGGCAGGTCGATGACCTGGTCGCCATTGACGATGCGGCCAACTGGTGACAATACGGCAGCCGTGCCGACCAAAGCACATTCCTTGAAGGATGGAACTTCGTCGAAACGGACTTGTCTTTCTTCAACCGTCAAGTTGAGGTAGTGTTCAGCCAAGTATACAATGGAGCGTCTAGTGATTGATGGCAAAATTGAATTTGACTTAGGAACGACCAAGTGGTTGTTTTGGTCGATGAAGATAATGTTTGAGCCACCCGTTTCTTCAATGTAAGTTTGGGTAGCTGGGTCCAGATACATATTTTCAGCAAAACCTGCCTGGTGGGCATCGACAGTCGCCTTCAAACTCATGGCATAGTTCAAAGCGGCCTTAACGTGGCCAGTCCCGCGAGGTGCAGCCCGGTCATATTGGGCAACCTGAACGGCAACTGGAGTAGCCCCGCCCTTGTAGTATGGGCCAACTGGAGTTGCAAAGATTCTGAACATGTAGTCAGTTGCCGGAGCAACGCCGATGATTGGTGTAGTGCCGATTTCGTATGGACGCAGGTAAAGAGTCGCGCCTGAACCGTATGGCGGTACCCAGTCAACATTGCCCTTGACTACTTGGTCGATTGCTTCAACGAACTTGTCCTTTGGATAAGGCTGCATTTCGATCCGCTTAGCGGAGTTGTACATCCGTTCCGCGTTTTGGTCTGGCCTAAAGACAACAACAGATCCGTCCTTCCAGGTGTAGGCCTTCATCCCTTCAAAAACTTGCTGGGCGTATTGCAGGGTTTCAGCACATTCATTCAATACGACATTAGGGTCGTCGGTCAGCTTGCCGCCTTCCCAAGCACCGTCGTGGAAATAGTCCACGTAGCGCTTGTCGGTTTGATGATAGCCAAAGCCGATATTTGCCCAATCGAGATCTTTTTTTGCCATGATATTACCTCCTAAAAATTCAATCACTAGTTTTTATAGTTGTAACTATAATACTCTTTCTGAAGGTTAGCAAGACCTTTTTAAGAAAATTTTCATTTTATTACTATTTTTAGCTAACTTTAATTCTTCTAAGGCCTAAGCCTTGCGAAGACAAGCCTTTTGACCCTAATTTTCTCTTTTTTAAGTTAGATAATCTTTTCTTAATTTTCCTTGTTGGTTGACAAAAGGTCCTCGTCCAGGCCCCGGCTACATTCTGCCTGCAGGGTAACGTGGTTGATGGCAAACTTTTCCTTCAGACAAGCAGCAATCTCTTCATCAAGCTCTTCAATCCGCTTGGCGGTTAAATCGGAGTCAACCACAATGTGGGCGTCCAGCATGATGGTGTCATCACTGTAGCGCCAGACATGCAGGTGGTGGAGCTGTCTTACCTCCTTAAAGGCCAAACCAGCCTCTTCAATGGCTTCCAGGTCCAGGTCGGGGTTAGCTTCCATCAAGACGTTAGCTGAGTCCCTGGTGACTTCAAAAGCCTCTTTCAAGAGGAAAATTGCCGCGGCCATAGTTAAGACCGGGTCCACCAGGGTCCAGTTTTGGTAGTAAATCAAGAGTGACCCCACCACGACAGCCACGCTGGACAAGGTGTCCGACATCATATTCAAAAAGAGGGCCCGGGCATTCAAATTCTCCTTGCTCCCCCTGCCCAGGATCAGCATGGAGATCAAGTTACCGGCCAGGCCGATCAAGGAGACGATGAACATGACGCCCCCTTCAATCGGTTCAGGCTTGCTGAAACGCTTAATGGCTGAAATAAAGAGATAGATGCTGATGGCCAGCAAGAAGAGGCCGTTGGTGTAGGCAGCCAGGGTTTCGGCCCGCTTGTAGCCAAAGGTCTTGTGCTGGTCCTTGCTTCTTTTGGCGACCAAATTAGCCGCAAAGGCAACCACGATGGAAACAACGTCACTCAAGTTATGCAAAGCATCTGACAAGAGGGCCAGGGAACCGGAGATAATCCCGCCGGCAATTTCCGCGGCAGTAATGGTGATATTGAAGACAGTCACCCACAAATACCTTTTTGATGCTTGGTCTTTCATGATTTTTACCTGCGCAATCTTTTATATATCATTTTTGGTATATTTACTCTTGCCTACACTATATTACAAAAATAATATACAATCAAGGGGGAAACTGGAAAGGAGACCCGCATGACACACGAAGAACTGATCGACCGGGCGGCCCGCCTTTTCAAGGTCTTGGGCAACAGCCTGCGGATCCATATTCTCTTTTACCTGAGAAAACACGGCGAAAGCCCGGTTTCGGCAATCGTCGGCCACCTGGGCGTCTCTCAGCCGGTAATTTCCAAGCAGCTCGGTATTTTGAAAAAATACGATTTCGTGCAGAAACGCAAAGCAGGCACTTTTGTCTACTATTCAATCAACGACCAGGACATCGTGCAGATCATCGACGCGATGACCGAGCACCTGGACCACCTGGACCGGCTGCAATAGTTTTACTTTTATTTTTAATACAAACAAAAACGGCTTCTACCTTCCGGTAAAGCCGTTTTTTTCTGTCTTGCTCGTAAAATTAAGCGCCGGTGTATTGAACCAGGGAGAAGATGTCCACGTCCGGGAACTTTTCTCTGCCCTTAAGGTCGGTCAGTTCAATGTAAAAGGCTGCCCCGACAACCTTCCCGCCCAGGCGTTCAATCAATTCCTTAGTGGCGTGCATGGTGCCGGCCGTAGCCATCAAGTCGTCGCAGATGACTACTCTTTGGCCAGGCTTGATCGCGTCCTTGTGCATTTCCAGGACGTTTGACCCGTATTCCAGGTCGTAAGCCGCAGCTTCTACTTCCCGTGGCAGCTTGTGGGGCTTACGGGCTGGCACGAAGCCGATACCCAGTTCGATTGCTACCGGAGTCCCGACCAGGAAGCCCCGGGCTTCCGGCCCGACGATCACGTCAGCTTGCCGGCTCTTGGCGTATTCAGCAATTTCGTGAGTAGCTGCCGCGAAGGCTTCACCGTCTTGCAGGATCGGGGTAATGTCCCGGAAGATGATTCCTTCATTCGGGAAGTCCTTGACGCTGGCAATGTACTTCTTAAAATCAATTGACATTTTGTAATCCTCCATTTGCTAGACCACTGGCATAGCGAATTAATTCATCCGAAGAGATTGTTCGTAATTTGTTAGCAAAGGCATATTCTGCTTTCACTGACCGGTAATAGGCTGAATCGTCCAAAGACTTCTTTGTAGGACTCGGTTTAGGGAGCAATCTGTCCTCTTCCATTTTAACAAAATCAAGGGTAAAAAACACCCTCAAAATAAACTTGATGCTGTCCGGATCCATCCCCAGCTGGCCGGCAGCCTGCATGTAATCATTCGGTTTTAGTCCCGGGTGGGCTAAAAAGTACTGCCAGACCAGGCCGAAGTTGCCCCGGCTGGGCAGGGTCTCCCCTGGCAGCTGGTCCAACTGAAAGCGTAGGTAGAGCTGGCGGTAAGGCTTGGCCAGGACAAAGTTCAGCTGGGCCTCATTGGCCGGCACGTCAAGAACTGACACGACCTGCTGGCTGAGGTCTTCATTGTCCTTGGCCAGGGAAATCTGCTCTTTAGTTATGCCAAAATGATTCATGGCCTGGCTGAGATTTCTCTCATCAAATAAGAGATACTTGTCCGCAAAACCCAGCAAATTCTCCTGCCCGCGAAAGTCCACAATCCGGGCGGCTGGCGCGTACAAGGACTGGCCGTAATGCAGGTCAACAATCCGGAACTGGACATTGGTCTTGCCTTTAAAAGTGTTAGAAGCAAGCTTAACCAACATCTGCCGCAAATAAGGCAGGACAGTTTGGTTTAAGCCGTGGTCAAAGTCCACCGCTCTGACCGGGCCCACCATGAAACTGCAGCCCTTCCGCATAGGGCGGAAGTTAGAGATCTGCGGCCTGTCAAGCAAAAAGACCGGCTGGGGGTTGTCCGTGCCAAAAGGCCCGGCCTGGGCCAGGTCATAAACGCTGGTCAAATCAACATCTAATGGACTGATCGTGCCATCATATTCCTGGACCTTTTCCGGAGCCTTCTCCCCTGCCTTATAGCTTTGGTTAAAGTCACGCCTGAGCTGGTTCAGATTTTCCTCAGTCGTCGACAGGCCGCAGGCAAAGTCGTGGCCGCCAAACTGGGTGATGGACTTGCCTTCAAAAGGCTTCAAGGCATTGAACAAGTTGAAGCCCTGGCTGGACCGGCCAGACCCCTTGACCAGGCCGGCCTCGTTTTTCGTCAGCATCAAGGTTGGCTTGTGGTATTTTTCCACGATCTTGTTGGCGACTAAGCCCATGACCCCTTCATGCCAGGCCGGGTCATACAGGGTCAATGTCGCTTCTTTCTGGTAGCCCCGTCTCTTAATTTGAGCCTCAGCCGCCTGCATGGTCGCTTGGGTTAGGTCTTTTCGCTCATTGTTCAGCTTTTCAATCTGATCGGCTAATTCCTGGGCCTCGCCCGGGCTTTCCGCCAAAAGCAGCCTTACGGCCAGGCTGGCATCAGCCAGGCGGCCGCAGGCGTTTAAACGGGGAGCGATGCTAAAGCCGACGTCTTCTTCATCAATCATCCCCGGGGTAAGGCCGGCATTGCGGATAAGAGCCTCCAGGCCCGGCCGGGAGCTTTCATTCAGCATCTCCAAGCCCCGCTTAACGATAACGTGCCCTTCACCGGAAACTTTGACCATGTCCCCAATGGTCCCGATCATGGCCAGTTCCAAAAATTCGCTGGCCGTGTCTTCTAAGACTGCCCGGGCAATAGTATAAGCTACCCCGGCCCCGCAATAGTCGTCAAAAGGATAAGCCTGGCCTGGGTAGTTGCAGTGCACCAGGGCATAAGCGTCGGGCTTTTCCTCCTTGAAGGTGTGGTGGTCGGTAACGATCACGTCCACGCCGTGAGACTGCGCATATGCCACTTCTTCAATCCCGGTTGCCCCATTGTCAACGGTGATGATCAATTTCGTCCCGTCTGCCACAATATCCTTGTAGCGGTCTAAACTTGGCCCATAGCCGTCCTTGAAGCGGTCAGGAATGAAGTAATGGACATCAGCCCCCATGATGGTCAGCATTTCCGTCATTATGGCCGTGGCGGTGATCCCGTCAGCGTCATAGTCCCCGTAAATAGTGATCTTTTCGCCCTCGTCCAGGGCCTGGTTGATTCGGCCGACTGCCTTGTCCATGTCATGCATCAAAAAGGGATCAGCCAGGTCATTTTCACTGGCGTGGAGCCAATAGTCGATTTTTTCCTCGTTGTCAATTCCCCGCAAAGAAAACAACTTAGCCGTTAATGGGCTAAGTTGAAATTCCTCAACCAGGTCACTGGCCAAAGGAGCAGCTGTTCTTTCTTGCCATTTCATCGAAGTTTAAACATCTCCAAATTCTGCTTGCTTGCCGGCTTGACCGCGGTCAGCTTCCCTCTTAAAGACCAGCGGTTTACCCCGCCATCAGCACAGGTGATCAAGGTCACGATCTTCTTCTTGGTGTTGGCAACCAGCCAGACGGCGCTGGGGTCAACCACCTTCTTGTAGTAGATCTTGTATGCATAGACCTTCTTTAAATCAGTCAAATAGACCATGCTGCCCAGCTTGACCCTTTCAAGGGGTGAAAAAAGGCCCCCCTGGTCGGTCATGTAGTGGCCGGCCAAAGGGTAGTTCCCCTTGCCCATCTTCTGGTCAGCCCGCATGGTGCCGCCCCCTGTTGACAGAGCCGCGTCTGAGAGGCCCTGCATAACTGGCAGGTAGAGCTTGACGCTGGGGATGGAAATTGCCCCAATTGCGCCAGCTGTGTTCTTGACCCGGCTGCGGGTGGTCTGGGCAAAGTCAATTGACTTGACCTTCTTGAAGTCATACATCCCCTTCTTTTTCTGGTTCTGCACGACCTGGTCCCGGGTCAGGCCCTTTAAAGCCGCGGTCTGGTTCTGCTTGACCAAAAACGCGCTGATCTGCTGGTTAAAGACCAAAGCCAGGCCCAGCAAAAATAGGATTACGGCAACTAGGCGCAGAATAATGCGGCGGACTGGGTGGTCTTTTGTATTTTTACTTGCCGTTGATGTCATCGTCATTCATCCGTAATACTGCCATAAAGGCGTCCTGCGGGACTTCCACCCGGCCAACTGACTTCATCCGCTTCTTGCCCCGCTTCTGCTTCTCCAGAAGCTTGGCCCGCCGGTCCGGGTCACCGGTGTGGATCTTCCAGGTAACGTCTTTTCGGTAAGGCTTGATCGTAGCCCGGGAAATGATCTTGGACCCGATTGCTCCTTGGATGTCGACTTGGAAGTTTTGCCGCGGGATCAGCTTCTTCAACAGGCTGCACATCTGGACGGCCCGGTCCCGGGCTTCTTCGCGGTGGGCGATGAAGCTCAAGGCATCGATTGGTTCCTTGTTCAAGAGAATGTCGATCTTGACCAGGTTGGTGGCCTTGTAGCCGATGATTTCATAGTCCAAAGAAGCATAGCCCTTGGTTGAAGACTTAAGCTGGTCAAAGAAATCGTAAATAATTTCTGCCAGGGGCATTTCGTAGATCACGTTGACCCGGTACTTGTCCAGGTAGTCCATGGTCTGGAACTCGCCCCGCTTGCCTTCACACAGCTGCATTACAGCACCGACGAAGTCGTTTGGCACCATGATTTCCGCCTTGACGTAAGGCTCTTGCAATTCCTTGTATTCACCGGCATCCGGCAGGTCAGCCGGGTTGTCGATCAGCTTGACCTCACCAGTCGGCATGATAGCGTGGTAGTCAACTGACGGCGCGGTCATGATGAGGTCCAGGTCAAATTCCTGCTCCAAGCGCTCTTGCACGACGTCCATGTGCAAAAGGCCCAAAAAGCCGCAGCGGAAACCAAAGCCCAGGGCTTGGGAAGTTTCCGGCTCAAATTCCAGAGACGCATCGTTAAGCTGTAATTTCTGCAGGGCTTCCTTCAAGTCGTCATAGTCCCGGTTGTCGGTTGGATACATACCAGAGTAGACCATTGGCGGAATCTGCCGGTAGCCTGGCAAAGCTTCTGCCGTCGGGTTTTCAGCGCTGGTGATGGTATCCCCGACCCGGGTTTCCCGGACAGACTTGATGTTGGCAGTAATATAGCCAACGTCCCCGGCAATCAAGATGTCTTCTTTAACCGGGTGGGGGCTGGAAACGCCGACTTCGGTTACTTCATACTTTTTGCCGGTGTTCATGATCATGATTTCGTCGCCTGGCTTAACCGTGCCTTCTTCAATTCTGACTGACATGACCACCCCCCGGTAGTCATCATACTTGGAGTCAAAGATCAAGGCCTTGAGGGGCTTGGTCAAGTCCCCAGTCGGCGCTGAGATGTCGGTCACGATTCTTTCCAAAAGTTCCGGAATCCCTGCCCCGGTCTTGCCGGAAACTTCCACGGCGTCGCTGGCGTCTAAGCCCAGCATGTCGCCGATTTCGCTCTTGGCCATGTCCGGGTCGGCGCTTGGCAGGTCGATCTTGTTTAAAACAGGCAGGATTTCCAGGTCGTTTTCCAAAGCCAGGTAAGTGTTGGACAGGGTCTGGGCCTGGACACCCTGGGAGGCGTCAACGACCAGGACAGCCCCTTCACAGGCAGCCAGGGACCGGGAAACTTCATAGGAGAAGTCGACGTGGCCGGGGGTGTCGATCAAGTGGAAAATGTAGTCTTCCCCGTCATTGGCGTGATACTTGACCTGCACCGAGTTCATCTTGATGGTGATCCCCCGCTGCCGTTCAAGGGGCATGTCATCCAGCATTTGATTTTTCAGCTGCCGCTTGGAAACCGTGTCCGTCAGTTCCAGAATCCGGTCGGCAATCGTTGATTTGCCGTGGTCAACGTGGGCCACGATTGAAAAATTGCGGATGTGCTTTTGGTAGTCTTTTAATTTTTCTAAGTCCATATATTTTCTCGCATCCTTACTAAAGTACTAAACAATTATACCCGAAAACAAAGCATTTGTCTTTTCCCAGTCATCAAAAAAGGCAGTCCTTGCAGACTGCCTCCTTAATTTGCTTAAAAATTTAGCTCAGCTTCTCCTTCAAGCGTTCAAAGAAGCCTTTTTCCTGCGGGGCAATGGAGCCACCGCTGGCCTTGACGAATTCCAGCAGGGCCTTGCGCTGGGCCTCGTTGATGGACTTCGGAATCACGATCTCAACCGTGGTTACCTGGTCACCAGTGCTGCCGCCGCGCAGGCTCGGAACACCCTTTTCCTTTAAAGTAAACTTCTGGTTTGGCTGGGTGCCGGCCGGAATCTTCAGTTTCGTGTCACCGTAAACTGTCTTGACGTTGATCTCGTCACCCAAGGTTGCCTGGGCAAAGGAAATCGGCACAGTCGTGTAGATGGTCTGGCCACGTCTGGTGAAGTCCTTGCTTGGCCGCACCCGGAAGACGATGTACAGATCCCCGTATGGGCCACCATTCTTGCCGGCTTCGCCTTGGCCGGCCAGGCGGATCTGCTGGCCGTTGTCGATGCCGGCTGGCACCTTAACCTGCAGGGTCTGCTTCTGGGTCTTGACCCCCTTGCCGTGGCAATTATGGCATGGATGCTGGATGATGACCCCGCTGCCCGTGCACTTGTCACAGGTCGTCTGCCGCTGGATCATGCCCAAAACGCTTCTTTGCGTAATGGTCATCATGCCGCTGCCCCCGCACTTGTCGCAGGTGATCGGGTGGGTGCCCTTTTCAGCCCCGGAACCCTTGCAGACTTCACAGGTGGTTGACCGGCTGTAGCTGATTTCACTGGTCTTGCCCTTGATGGCATCCATAAAGTCGATCGTCATGGTGTAGTCCAGGTCAGCCCCCCGCTGCGGAGCGGTCGGGTCTACCTGCTGGCGGGCGCCGCCAAAGAAGCTGCTAAAGATGTCACCAAAGTCACCAAAATCAGCTCCGCCAAAGCCCTGGCCCCCGTACTGGCCGCCAAAGCCGCCCTGGCCGTTCATGCCAGCCTGGCCAAATTGGTCATACTGCTGCCGCTTTTGCGGGTCATGAAGCACTTCGTAAGCTTCGTTGACTTCCTTGTACTTTTCTTCTGCCCCTGCTTCGTGGTTTAAGTCCGGGTGATACTTCTTGGCCAACTTCCGGTAGGCCTTGCTGATTTCTGCGTCACTGGCATCCCGGCTCACGCCTAAGACGTCATAATAGTCACGGTTTGCTGCCATCTGTTTATTATTGCTCCTTTTACTAACAAAAGAAAAGAACTACATCAAGCAGTTCTTCTCCTTTTGTTTAATTATAGTCGCTTTACTTGTCTGGGTCTACCTTGGTGAAGTCGCCGTCAACCGTGTCGCCGTTTGCGCCATTTGAACCATCGTCAGTTGGGCCTGCTTGACCGCCTTGACCTTGCTGGTTTTGGGAATTTTGCTGGTAGAGCTTGACAGCCAGGTCTTGGGCAACCTTGCTCAAAGCGTCCTTCTTTTCCTTCATTTCGTCCAGGTTGTTGTCCTTTTGGGCCTTCTTCAGGTCTTCCAGGGCATCCTTAACTGGTTGAATGTCGCTGTCTGCGAGTTTGCCGTCAACTTCCTTCAAAGTCTTTTCGGTTTGGAAGATCAAGCCGTCAACTTCGTTTCTAAGGTCAACTTCTTCCTTCTTCTTGGCGTCTTCTTCAGCGTGTTCTTCAGCTTCCTTCTTCATTCTTTCGATTTCTTCGTCTGACAGGCCGGAAGCTGATTGGATGGTGATCTTTTGTTCCTTGCCAGTCCCCAGGTCCTTGGCTGAAACGTTAACGATACCGTTCTTGTCGATGTCGAAGGTAACTTGGATTTGTGGCACGCCACGTGGAGCAGCTGGAATGTCAGTCAGTTCGAAGCGACCCAAAGTCTTGTTGTCAGCTGCCATTGGCCGTTCACCTTGCAAAACGTGGATGTCAACAGCTGGTTGGTTGTCAACGGCAGTTGAGAAGATTTGACTCTTGGAAGTTGGGATGGTGGTGTTTCTGTCGATCAGCTTGGTGAAGACCCCGCCCTTGGTTTCGATACCCAGGGAAAGCGGAGTAACGTCAAGCAAAACGATGTCCTTAACGTCACCGGAGATAACCCCGCCTTGGATTGCGGCACCCAAAGCAACGGCTTCGTCTGGGTTGATTGAGTGGTCTGGTTCCTTGCCGGCCCATTGCTTTACAGCTTCTTGAACAGCTGGAATCCGAGTTGAACCACCGTTCAAGATAACCTTGTCGATGTCGCCAACTGACAGGCCAGCATCACGCAGGGCGTTGTCAAATGGAATCTTGGTTCTTTGCACTAAGTCATCAGTCAGTTCGTTGAACTTAGCCCGGGTAAGGTCTACTTCCAAGTGCAGAGGACCTGCTTCACCAGCGGAGATGAACGGAAGGGAGATGTGGGTTGAAGATACGCCTGACAAGTCCTTCTTGGCCTTTTCAGCCGCGTCCTTCAAACGTTGCATTGCCATCTTGTCCTTGGACAAGTCAATGCCGTTTTCTTGCTTGAAGCCGTCAACCAGCCAGTCGATGATCTTGTTATCAAAGTCGTCCCCACCCAAGTGAGTATCACCGTTGGTTGACAGAACTTGGAAGACACCGTCACCTAATTGCAGGACGGAAACGTCGAAAGTACCACCACCAAGGTCGTAAACCAGAACAGTTTCGTCGTCTTCATCCTTGTCCAAGCCGTAGGCCAGGGCTGAAGCAGTTGGTTCGTTGATGATCCGTTGCACGTTCAAGCCCGCAATCTTGCCGGCGTCCTTGGTTGCTTGCCGTTGCGCGTCGTTGAAGTAGGCTGGAACAGTGATAACCGCGTCAGTAACTGGTTCACCAAGGTAGTCTTCTGAGAACTTCTTGATGTATTGCAGGATCATGGCTGAAATTTCCTGCGGGGTGTAAGCCTTGTCGCCAACCTTAACCTTGTAGTCACTTTCGCCCATATGCCGCTTGATAGAAACGATGGTGTTCGGGTTGGTGATGGCTTGCCGCTTGGCAACTTCACCGACTTGAATTTCGCCGTCCTTGAAGGCAACTACTGAGGGGGTAGTTCTAGCGCCTTCCGGGTTGGTAATAATCTTTGGTTCCTTGCCTTCCAAAACCGCAACTGCTGAGTTGGTGGTACCTAAGTCAATCCCAATAACTTTAGACATTGTCTTTTTATCTCCTTTTGTTTATTTTTGCTTGTTTATTGCTTTGTTAAAAGATTGCCTTACTGGGCAACGACAACCATGGCTGGCCGCAGGGTCCGGTCCTTGTAGACGTAACCCTTTTGCAGGACCTGAACGACATGGCCTTTTTGATCATCATTTTCAGCTGGTACGCTTTGGACCGCCTGGTGCAATGTCGGATCAAACTTTTCGCCGTCAGCCTTGATTTCTTCAATGCCGTTGTCCTTCAAGGCTCTGACCAGGCCTTCCAGGGTCATTTCGATCCCCTTCTTCAGCTGTCTGGAAGCCTCGTCGTCTGCCTTGACCTGCAGAGCCCTTTCCAAGTTGTCCACGCTGGACAGGATATCCTTGCCCAGACGCTGGGACTCGTACTTGACCAGGTCGGCTCTTTCCTTGCTGTAGCGGCGCTGGGCGTTTTGAATCTCAGCTTGGCTGCGCAAGTACTTGTCTTCCAGATCCTTGTTCTTCTGGGTCAAAGCGGCAACTTCAGCCTTGAGCTGATCCAGTTCTACATCAGCTGGCTTGGCTGCTTCTTTTACGCCGGCCTTGTCAGCTTCAGCTGCCTTGGCTTGCTTTTCCTGGTCTTCTTGCGGCAAATCTTTCTCACTTGGAAATTCTTCTTTGCTCACGACAAACCTCCTTATTTAAATCTACCATAGTAATCTAACAACTTGCGGGCCAGTTCTTGGCGGAAGTATTCCATCAAGCCGATCATTTCCGAGTAAGGCATGTGTCTCGGCCCCAGCAGGGCGATCATCCCCCGCCCGTAGCGGCCAACACTGTATTCAGCCATTACCAAGCTGAAATCCTTCAGCAAGTCGTTCTCTAGTTCCGCTCCTAAGCGGACATGAACTGGGTAATGGCTGGGACTGTCGCTATATGAACTGATCAGTTCTCCAGCCAGAGAGCTAGAATTGATCAGTTCATATAGCGACTTGATGGCTTTTAAATCGCTGTTTTCAATATTGTTGAGCAGGTTCAGCTGACCGTCAACATACATCTGTTCGCTTGCCGCGTCCTTAATGACGGCTTCCAGCAATTCCAGAAATTCCGGGGCATTCTTGCCCACGATCTGGCTTCTGTACAGCTGCTCAAAGGTCTGCTTGTTGATTTCGCTTAAATTCTTGCCAACCAGCTGGTCATTGATCAAGCGGGCCACCTGTTCAACTTCATCCCCTGAGATGTGCCGTGGCAAGGTGTAGAGCTGGTTCTTGACGCTGCCATCGCTGATTACCAGAATAGCCATGACCTGCCGGGGAGCCAGGGGCACGATTCTGAAGCCAGTGATGCTGACATTCTTGGCTTCCGGCCCTTCTGCAATGGCCGTGTAGTCAGTCAAGTCTGACAGGATCTTGGCGGCTTCTTTGACGATTTCGTCCACTTGGTTGAACGGCTGATCAAACTGGTAGCCAATTTGATTGTACACTTCTTCCGGCAGCTGCAGCGGCTGCACCAAATTGTCCAGGTAATAGCGATAGCCCTCAGTCGATGGCACCCGGCCACTGGAGGAGTGAGTCTTTTCAATCAAGCCATGCTCTTCCAGAACCGCCATCTCGTTGCGGATTGTCGCGCTGGACACTTTAATCGACAATTGATTCATGACTGTCTTTGAGCCAACCGGCTCATGCGTCTTGGTAAAATCTTGAATAATTGTCTTTAGAATAAGTTCTTGACGTTTGGTCAACATAACATCGCCCTCGCTTTTAGCACTTACAACTTTCATGTGCTAACATGGCATAGATTAACAAGAAATTAGCAGTTAGTCAAGGAGAATGCTAAAAAATCCCGCAAAAAACGGTCTTGCTTAAAAGACCGTTCTTATTACTACTCAATCAGTGAACTAAAATAGTTTTTACTAGCGACTTGGTCCAGCTTCAGCTGCTCGCTTAAAGCCGCCATATCGGCAAACTTTTCTTCCCCGCGCAAGTATTTGTACCAGGCGATGGTGATTTGCTGGCCGTAAATGTCCTGGTCAAAATCAAAGATGTTGGATTCGATGTAAATCTTCTTCTCATCATTGAAAGTGACATTGTAGCCGACACTGGTCATTGACTGGTACCAGCTGTCCCCTACTTGGGTCATGGTCGCGTAGACCCCGATTTTCGGCAAAACTTTTGGCCAGGCCAGTTCCAAATTCGCGGTTGGGAAGCCCAGCTTGTGGCCGTTTCTGAAGCCGTGGACGACCTTGCCACTGGTCAAATACGGGTGGCCCAGAAGTTCCGTGGCCAAGCGGAGATTGCCGCTTTTAACAGCCTGGCGGATTTCAGCTGAACCGATTTTTTCTCCGGCAAAGATCTGCTTTGGAACCACCTTGATGTCAAAGCGGCCCTTGGCAAAGGACGGCAGATTTTCCATATTGGCCACGTCCTTTGGGCCGTAGCTGTAGTCAAAGCCGGCTACCACCGTGTCTGCTTTCAGGCCCATGATGATCTCATCAACGAAGGCCTGGGGAGCCAGGTGGCTGAACTCCGGCGTAAACTTGAGAATCACCAGGTAGTCGACCCCGATCTTGGACATTTCGTAGGCCTTTTCCTCCGGTGGGTTCAAGTACTCAAAGTCCTTAACTCCAGCATAGACCTCCTTGGGGTGGCGGTCAAAGGTCAGCACCATCAATGGCAGATCCTTCTCAACTGCAATTATCCGGGCTTCCTTGATCAACTTCTGGTGGCCGATATGAACTCCGTCAAAAAAGCCCAGGGCCAGCACAACCTTGCCGGCCGTCAGCTCTTTCTTGAACGGATAGCTTAGATTTATTACTTTCAAACTTAATCCCTCAATTACTCATTACTTAATTACATAATATAACAGAATAGCGTAATACCGCCATTCAGCAAGCTAACATAAAAATATTGCACCTAATATTGTACCAAAGGCACCTAAGCCCGCATGAATTTGGCTAGTTGTTGAACACTTTCTTCCTTTCTGTCATTGGTTACATGAGTGTAAATGTCCATAGTGGTTGAAATGCTTGAATGTTCTAACCGCTCTTTAACATCTTGCATAGTCAAACCAGCTTCAAAACATAAACTTGCGTGTGTATGTCTGAACCCATGCAAACTAATTGCCCTTAGTCCCTTGTTTTCAGCAATTTTTTTGTTCCAGCCTTTAATTGTGCCATTGCTTAAATGTCCCCCGTGTTCGCTGGCAAAAACAAGGTTATTGCGGGGCTTGCCGAAATAGATGATCCGCCTTGCTTGTTCAGCCCGCCATTGTCTAAGAATGGTCATCGTTACATCATCCAGCAAGACCGTTCTATTACTATTCGTCGTTTTTGGGCTCCCTACCGTCGCTTGTCCGTACTTGTCCAGCGTTAACGTCTTATTTATGGAAACTGATTGGCTTGCAAAATCAACATCCGACCATTCCAAAGCGATCAGCTCCCCGATCCGCATTCCGGAGAAGGCCAACAGGCGGAATAAAGTATATTTCATCATTCCAGCATCCCTTGCACCGCTCAAGAATGTTTCCAGCTCATCTTTAGTATAGAACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAAGCACAAGGCCTTTGTTCGCTTGATATGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGTGCTATGTCTAGTTTACCATCATTCGATACCAAAAACGAACCCCAAATTTCTCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTTGGTCCTTTCATACATCTTCAGTAATGTGTTTCCAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCAAAAAACACCTACTATAGATTCATGCACAGAACCCACATATCAACTGGCTTCGCTTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCCGGCTGCCAAAGTATTCGACCACGTTTCGATGACCTACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCCTCCTTCGTTCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCGCGGCCAAGAGGCGGATTATGGCCCAATCAAAGGGGACCGATGTAGTTATCCAGCTGCTCGATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCAGTCAACGTGGTTTGAACGTAATTGCCATGGTGAAGAAAAGCTCCAAGATCACATACGAGTTCGAAGGAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGAGGTCGTTCAAGATATCTCCTGTCCGTCCCTGTAAAGGTTGGAGATCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCCAACCGCAAAGACTGGATCGCTCTTATTTGCACAGACATGACGATCGATGAAAATGAGATCATCAGAATTTACGGCAAAAGATGGGACATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTAAAGCGTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCCCATATAGCTTTCGTCTTTCTGTGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGACAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAACCGAATAAGACTTTGCGCTATGTCGTTAGCGCGTTTTTTACCAATACCGGTTAAGCCCTTTAAGAAGTCGGTGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGGTGTGGGAATCTGAGGACAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGCTCAATCTCTGGGAAAGTGAGCTGAATGGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTTTTGACATAAAATATTATGACCTTTTTTTCAATTACTTTTTATTTAATTCAGAAAGAGCAAAAAACATGGGAAGATATATTAATTTATGAAATAAAAAGTGATTATTCATCACTTAATCGATAAAAATCACCTCTTTTCATTATTCTTTCTCCTCGTATTTAAACTTAATTAACATACCGTCTATAGTACTTTCCAATTTCTTTTTTTCTGTACTTGTTACGATATCTTTTTTGTTGTTTCTTAATTAATTTATGCTTTAAGTATATTTGCTTTTAGTTAGGAAAAATAAAAAAAGTCGTATTTGAACATCTTTAAGTAAAAATGCTAAAATACGACAACTAATTCCTTTTTTACCCCTGCTTGTAGATGCTATCTTTAAAATAAATATACGCACTTCAATTATGAATATAACAATGCAGTGGTCACTATGGTTAAAAATTCCTTTTTTAATTATGTGTATCTTAGCATATATGTATTTTTGGTACGCTTTGTTTAAAGAAATCAAAGATAGTCTATGAAAAAATAAAAAGTAGTCATTTAGTCTTAAAAACGCAGTAAAAAAACTGCGTTTTTTATGTATTCATTAAAAAATAATTAATTATTGTATTCATAAGTTGAAACAGGAGAGAGTATTAACAGCTAAAGCAGTATTGCGGTAAGTTACCACGGCGCTAACCTGCAAAATATCCTTCACTGCCAAAACACTGTAACGCTTATATTTGTCATAGCCCATCAGCTTATCCAGTGGGTATTGGGCCTTCTTGCCTGGACAAGCATATCTTCTGCGCCAATAGCTAATCTCACCAAAGGCAGTCACAACTGAACGCTTATTTTTCTTCTCGATCTAATAGCCTTGCTTTTTAGTCTCTTCAACTAGACCAGCATCAACTTCTTCTAGTGCTAATTTAATTAATTCTCTAATCAAATCAAAGAAGCAGCACATTAATGCCTTTTCACGAGCAATAACATTATTTTCAGACTTAATAATTTTCACGATATCAGCTATAATAGATTCCATAAAAGACCAGATTCTAATGTGTTTTTTGTTCTTAACATCAGACTACTGGTCTTTTTGTTTTAGCTCAAGTCCAAATTCAAAGGACTTGAGCTTTTTAATTAATCATTCAACTTACCGCAAAAAATTATACACTTAGATTTAATATAGCTGGGATAGAATAAAGCTGAAAAAGATAAACAACTAAAAAATAGAAAACTAATATTGAGCTAACCATTAAATTCGAAATCTCTATTCCAATAAATTTAATATGAACATCATAATGTAAATAAAAAAATATATCGCAATGTTCTTGCTTGCAGTATGTCTCGCTCTTATCTGAATAAGATGATATTCAATCTTATCAACAATATAACTGATATAACAAAAGCAAATTAAAACATTCACGAAACAGAATTTGAAAATAACACCAGAGAAAAAATATTTTCAAGCTACTAGAAATTTCAACTATGTTATCATGACTTTTTTTATTTTTTAGCTCAAGATTGACAGATGTCTCGAAATTGTGTATATTAATCATAATAAAAATTTCGGAGGTGTCATGATGAGTCAATCAATGTTTAATGCGATTGATTGTTGCTGTCGAACAACGCGTTTTTGGCGATGTTCGGCCTGTTAGCATTGACGTTTTTTGGGAAATCATGACCTAAAAAGAGTTCAATGTCCACTTGGCTGGAGTTGAACTAAGGGCGCGAAAATTCTGGATTTCAGAATTTCGCGCCCTTTTTCTATCTATTGCGGCCATTTTCCCTAGCATCCCGCCAGCTAAACACTGCCCCAAATGATTAGAAAGGATCTTATTTATGCTTATTCATTCCATTTCAGAACTGATCGGTCATACGCCACTGATTGATCTGCAAATCAACATTCCAAATCACAGTCACATTTACGCCAAACTGGAGATGTTTAATCCAGGAGGCAGCATCAAAGACCGCCTGGGCCAATACATGATTCAAGATGCGATTAATCGTGGTCAGGTAACTGAAGGTGTAACAACAATTATCGAACCTACTGCCGGCAATACCGGAATTGGGGTTGCCCTTGCCGCTCGACAACACCATTTGCCAACCATTCTGGTCGTACCGGAAAAGTTCAGTTTTGAAAAACAACAATTGATGAAAGCCTTAGGGGCAAAATTAATCAACACCCCCAGTGATCAGGGCATCAAGGGCGCCATTGAAAAAGCAGAAGCGCTTCACGATCAAATTCCTAACAGTTTCGTTCCAATGCAATTCAAAAATCCGGCCAACCCTGATACTTATTATCACACTCTGGCACCAGAGTTGCTTGACGACCTCAATGACCCAATTGACGCCTTTGTTGCCGGTGCGGGCAGTGGTGGGACATTTGCAGGCGTCGCTCGTTACTTAAAGGAGCAGAATCCGGCGACTCAAACCATCGTTGTGGAACCTGAAGGCTCAATTCTAAATGGTGGGCCTGCCCATCCCCATCGGACTGAAGGCATCGGTGTTGAATTTGTCCCACCATTTTTTAAAGATGTTCAAATCGACAAAACGTTAACAATTTCCGATGCCGACGCCTTTCATCAAGTTAAGGAGCTTGCCAAGAAGCAGGGATTATTCATTGGCAGTTCAAGCGGGGCTGCTTTGGCTGCCAGCTTAAAGGTTGCCAAGGCACTTCCCGAGAATAGTACCATTGTCACAATTTTTCCAGATAGCAGTGAACGTTACATGAGTGAAAATATTTATAATTAAAAATAAAGTGAGGTTATTAAAATGGAATTTGATACAAAATTAATTCATGGTGGTATTAGCGAAGATAAAGCAACCGGAGCAGTTTCGGTGCCGATTTATATGGCATCAACTTTTCATCAGCAAAAAATCGGTGAAAATCAATATGAGTATTCTCGTTCTGGAAACCCAACTCGAGAAGCAGTTGAAAAACTAATTGCCGAGTTGGAAGTCGGCACAGCCGGGTTTGCATTTGCTTCCGGTTCAGCTGCAATTGACACAGTCTTCTCAATGTTCTCCGCCGGCGACCATTTCGTCATTGGCAATGATGTCTACGGTGGTACCTTCCGATTGATTGACGCCGTTTTAAAACGCTTTGGCATGACCTTTACCGTGGTTGACACCCGCGACCTGGCCGCTGTTGAAGAAGCGATTACGCCAAATACCAAAGCAATTTACTTGGAAACGCCAACCAACCCACTTTTACGAGTAACCGATATTGTAGCGGTTGCCAAGATTGCCAAATCGCACCAAATTTTAAGCATTATCGACAACACTTTCTCCTCGCCTTACGTTCAGCGACCGCTGGAACAGGGAGTGGATATTGTTCTTCACAGTGCTTCCAAGTATCTTGGTGGTCACAGCGACGTCATTGCCGGGCTGGTCGTCACTAAAGATGATCAATTGGCCGAAAAAATTGGTTACCTTCAAAATGCCATTGGTGGTATTTTGGCCCCTCAGGAAAGTTGGCTATTGCAACGTGGGATTAAAACGTTGTCTCTTCGAATGCGTGCTCATTTGGCCAATGCCGAAGCCGTCTTCAATTATCTGTCAAACCAGCCACTTGTCAGCAAAATTTACTACCCTGGCGATCCGAACAACCCTGATTACGAAGTCGCCAAAAAACAAATGCACGGCTTTGGCGCAATGATTTCCTTTGAATTACAGGACGGACTGGATCCAAAACAATTTGTTGAACAACTGCACGTTATCACATTGGCCGAGAGTTTGGGTGCACTGGAAAGCTTGATCGAAATTCCGGCCTTGATGACCCACGGCTCAATTCCACGTGACATTCGGTTGAAAAACGGCATCAAAGACGAGTTAATTCGCCTTTCAGTCGGCGTTGAAGACCAAAAGGATTTGTTAGCCGATTTGGAACGCGGCTTCAATGAGCTTAAGAGGAGCGAGAAAAATGTTTCAGACAGCAAGGTCCATTCTCAAGCGTGATCCGGCAGCCCACAGTCTTTTAGAAGTTCTCTTAACCTACCCGGGGATTCGGGCCCTGTTTTGGTACCGAATCGCTCACTTTATGGCTTTTCATCGACTTTATACAATTGCCGGGTTCCTAAGTCAACATGCCGCCAAAGTAACCGGGATTTCAATTTCGCCGGAAGCCCAAATCGGTAAGCGCGTTTTTATCGATCACGGGATTGGCGTTGTGATCGATGCCACTGCCGTGATTGAAGATGACGTCACTATCTTGCATGGCGTGACGCTAGGTGCCAGGAGGGCCGTTGAACGCTAATTTCCCAGGATTTTACAACTCAATGTATAAGAAGCCTACTATTACGGCCTTTTTCGAAGTTTACGATAATATTTTTTGAGTTGTAACTTTAAACTCAACGAAATCCTCTAAAAGGTTGGCATATCAGGTGATAGAGCACTTTGAGTAGTAATTTATGGGAAATTAGCATTGAAGGTCGGCGACATCCCTATGTAAAAAAGGGTGCATTCATTGGTGCCAACGCCCAATTGCTTGTCACCATTACGATCGGCGCCTTTAGTAAAGTTGGCGCAGGGGCAATTGTCCTGAATAACGTGGCCGATAAAACCACAGTGGTCGGCAACCCTGCCCGAACCGTTAACAAGTTACCCGCTAAAGTCATTAATGTGACCTTCACGACAAACACGTCAACCACTAAAAATTAATAACTTACGAAAAACACCTTGATGAAAAGAGTTGCCAGTTGGCAAAAATATCATCAAGGTTTTTTCGTATTTAACTATTGTGTCGAAAATAATTAGGGTCCGTCTGAAAACACATCAAATTAAGCTCAATTGGCGTTAAAAGCCAATTTTTTTCTCGATTAAGATCGAATAATCATGAATGTAACATGGTAATTGCGTTACATTCATGAGATTTCTGCTATCTTAAAAGTTAAGGAGGAGTATTAAATTGCAATTTGCTAATGTGTTACGAAAAAAAGAACTGCACTTAACCCAACAACATTTGGCTGGATATGAAGCTTCTGCTTTGCAAAGTGCTTATTCTGTTTCAAAATTTGGAATTCGTGGCTTGACTCAAGCTGCGGCCAAAGAATTGGCAGTAGATAAAATTACTGTTAATGCTTATAATCCAGGAATTGTTCGCACAAAAATGCGAGATGCAATTGATAAAAAAATTGCAAAAATTAAACATGAAACAATAACGCAGCAACACGCAAATTGTCTCAAAGAGATAGCGCTTGGTCGTGAAGCAAAACCCAGCTATGTAGCTGAAGTTGTGGCTTGGTTTGCTTCATCAGGTGCTGGGTATGTTACTGGACAATCACTTCAAGTTGATGATGGAATGAGATTTCATTAAAAAAATATTTAGAATAAATAACTTAAACTTCCCACCTTAAACTTCCCACTTTTGTAAGTGGGAAGTTTAAGTATTTACAAATACGGTTGCACTTTGAGGTGCAAACATAACCAGCGTAGTTGAAAATACGGAGGTTACAAACAAGAGCATTTAGAAATACGGTTGTACCTTGAGGTACGCCCGTTAAGCGCACCCGATTCAGGGCCCGTGAAAACCTTTTTTGGAGTTTCTGGAGCATTCTAAAGAAATATCCTGGCCATTGGTTGAATTGCCCTTTTGAAGCGCTTAAAGCGTGGGATGCTGGCACGAAATGGACTTTCTTACCCCCTAAAAGAGAGGTACAAACAAAACAAGTTTTTCAACACATCTAAAAGGGAGCAGGCTCCTATTTTGCGTTGTACGCCAATTTAAAGGCCCTGGAGCTCTTGCTAACCTTCTTTAGTGTAAAGTTACCTGGCTAGCGTTTCCGCCTTCTATTAAGGGAAATTTTGCTTCTACGGTTCCTTATTTATTGTATCCCCGGAGCGTATAACATGTTCTATCGATTGGCCAGAAATTGGCCAACGAGTAAAACAACCCCCTGGCACAGGATTTAAGGAAGCAGTACCGATTTAGGGCCCCAGCCACCCCAAAAAAGAGCATAAAAAACCGCCTGCTTGACGCAAGCGGAGAAAGTAGAAATCACTACTTAAATTTTATCATAGATTGTCTTTAGCATCATGTTGAAGCCTGTGGACGCATCCGAATCATTTCACCAAATATTGCACCGAATTTAGTAGCAACATTTTCTATTCCCTGTTAATCAGAGCTAGCTAGATTGGAGAGAATCCCGCAACGGCAAGGGTTGAGAAGCTTCTGGACTTGCCTAAAATTTGGCCCAAATTACTCATTACTTAAAAGCATTAAGTCCGGGCAGTAGAGACCTTGTCCCTTGGCCCGGTAAATCGCTTTAACTGTTTTATTATACCGCAAAGCGACCTTGTCTGCATCAAGAGGGAGTTTGATCCAGGCCCCGTTTTTAACCTGCTGCCATAAGGCAGCATCTAAATCAACTTGCTGGTAGTCAGCGAAAAAGCTGTCGATTGGCTGAATATAATCTTCAGCGTGGTCCAAATTATCCGCCAGTTCTTCCAAAGTAACCGCGTCTTGGAGCTTGTAACCGGAACTGGCCGTCCGCCGCAGTTTGGTCATCACTGCCGGCAGGCCCAGTTCTTCGCCTAAGTCGTTAACCAGGCTGCGGACATAGGTCCCCTTAGAGCATTCAACTTCATAAGTAAAAGTCTGCCGGCCCTTCTCCGGGTCGAACTGACTTGGCGCCGTCAAGTCGTAGAGGAAAACCTGGACAGTCCGCTTGGGCCGCTCAACTGGGATCCCTTCTCTAGCGTATTCGTAGAGCCGCTTGCCATTTACCCTGACGGCAGAATAAATCGGCGGCTGCTGGACGATTTCCCCGATCAACTTTTCCATTGCTGCTTTGATGGCCTGGTCACTGACCGGCTGAGACAAGGCTCTTTCCGCCAAAATCTTCCCCTCCAGGTCATAAGAGTCCGTGGCCAGGCCCAGCATCCCTTCACCAACATAAGCCTTTGGACGCTCATGCATCAGCTCGATCAGTTTGGTTGCCTGACCCAAAGCAATTGGCAAAACTCCGGTGACTTCCGGGTCCAGGGTTCCGGCATGGCCGATCTTTTTTTGCTTTAAGAGCCGGCGCAGCTTATAAACCACATCCCCGCTAGTCATCCCTGCTGCCTTGTCGATTACGATAATTCCATTGAACATCTTTTTCTCCTCTTCTATAAACGCAAAAAAGCGCCCGAAGGCGCTTTTTGCTAGTTTTGGCGATCTTGTTCCTGCTTCTTCAAGTCAGCAAGCAAACGGTCGATCTTGCTGCCGTAGATCACGGACTGGTCCCGCTTGAAAATCAGTTCCGGAACCTTGTACATGGTCAAGCTCTGGCCGAGCAAGTGCCGCATGGTTCCCTTAGCCTTTTCCAAGCCGGCTTCCGCTTCCTTTTGCGCCTGTTCATCTTCAGTCAGCAGACTGTAGTAGACAGTCGCGTATGAAAAATCATTGCTGCACTCCACGGCGGTAAAAGTCACGTTGCTGACCCGGGGATCGCGGATGTTCTTGCGGATGATCTTAGTCAGTTCCCGCAAGATTTCGCCTTCAACCCGTCCTTTTCTGTGCTTCATTTCAGCCTCCTGTTAACTTGGCTTAACTTCCTGCATTTCGTAGGCTTCCAGTTCGTCGCCTTCCTTGATGTCGTTGAAGTTTTCAATGGTCAAACCACAGTCAAAGCCTGCCTTGACTTCCTTGACGTCGTCCTTGAACCGGCGCAGTGAGGCAACCTTGCCGTCGTACTTGACCACGCCGTCTCTGATGACCCGGATGCCTGATTCTCTGGTCACGTAACCGTTGTCGACAAAGGCACCGGCGATGGTCCCGATCTTGGAGACCTTCCAAGTTTCGCGGACAGTAAGGTTACCGATAACCTTTTCTTCGTAAGTTGGTTCCAGCATCCCTTGCATAGCGGCCTTAACGTCATCGATCGCCTTGTAGATGATACTGTAAAGGCGGATATCGACGCCTTCTTGGGCAGCCTGGCTCTTGGCCGTAGCCGTTGGCCGGACGTTGAAACCGATGATCAAGGCGTTTGAAGCGCTGGCCAGGGTAACATCACTTTCATTGATGGCCCCGACACCGGAGTGGATAATGTTAACCCGAACGCCTTCAACGTCAATCTTTTGGAAGGATTGAGCCAAGGCTTCGGCAGACCCTTGCACGTCAGCCTTCAAAACGATGTCAACGGACTTCATGCTTTCCCGCTTCATCGTGTCAAAGAGGTTGTCCAGAGTAACGTGCTGTACGTTTTCCCGCTGCTTTTGCAGGGATTGCTGTGCCCGGGCTTCACCAACCGCGCGGGCAGTCTTTTCATCGGCAAAGACAACCAGCTTGTCGGCAGATTCCGGCACGTCGTTCAAACCAGTAATTTCAACGGGCATTGATGGCGTAGCCTTCTTGACCTGGTGTCCCTTGTCGTTGGTCATCGTCCGGACCCGGCCGAAGGTGTCACCAACAACGATTGGGTCACCGACCCGCAGGGTACCCTGCTGGATCAAAACATCGGCAACTGGCCCCTTGCCCCGGGACAGACGGGCTTCAACAACCGTACCGATCGCCTTTTGCTTCGGGTCAGCCTTCAGTTCCAGCATATCGGCTTCAAGGATGATGTTTTCCAAAAGTTCATCAATCCCCATCCCGGTCTTGGCTGAGATGTTGACGAAGATAGTTGAGCCGCCGTAGTTTTCCGGAATCAGTTCATACTGCATCAATTGTTCAGTAACGTGGGCAGGGTTGGCGCCTGGCCGGTCCATCTTGTTGATGGCCACAATGATTGGCACGCCCGCGCTCTTGGCGTGGTCGATGGCTTCGATAGTCTGCGGCATAACCCCGTCGTCAGCGGCAACGATCAAAACGACGATGTCGGTGATTTCCGCCCCGCGGGCCCGCATGCTTGAGAAGGCCGCGTGGCCTGGAGTGTCCAGGAAGGTGATCAAACGGTCGTTGATCCGGACCTGGTAGGCCCCGATGTTCTGGGTGATCCCGCCGGCTTCGTGTTCAGAAACCCGGGTGTGACGCAGACGGTCCAGCAAGGTAGTCTTACCGTGGTCGACGTGACCCATGATAGTTACGACTGGCGGACGGACAACCTGGTTTTCAGAGTTCTTGGACTCTTCCATTTCCTGGGCAAAAATATTGTCGATGTCGGAAATGTCTTCATGGACCTTTTCAACAGCTTCGATGCCGTAGTCAGCAGCCAGCAGTTCAATGGTGTCCTTGTCCAAAGACAGGTTCTGGTTGATCATGATCCCCAGCATGAAGAGCTTCTTCACGATTTCAGCTGGTTCCCGGTGAAGGATCTTGCCCAGGTCTTGGGCGTTCATGCCAACTTCGTATTCAAAGCTTTCTGGAAGTGGACGGTCCTTTCTTTGGGTAACCTGCTTCTTAACTTGCGGAGCACTTTGGTGCTTCTTGTTCTTGCGCTTGCGCTGTTCGCTGCGGTTGCTATTTGCCCCTCTGCCTTGGTCAGCGTAAGAGTTTTGCCCCTTGCGACCTGGCTTGCCACTCTTTCTGCGGCGGCCTTCCTTGTTTTCCGGCATTGGCGCTTCAGTGAAGCTTGGCCGGGAACTTGGCCGGCGAGAAGATGAAGGCTTGGCAGCAGGCTTTTCACTGTTTGCCTGGTTTTGCTTCAAGCGGGCTGGGGATGGCTTCAAGATCTTTGGCCCACGGACTTTTGGTGCTTCAGCTGCGGTTTCAGCAGGCTTTTCGACACTTTCGACCTTCTTGACAACCGGCTTGCTTTCGCTGGCCTCAGCCTTGTTCAATGACTTCTTGTATTCCTGCTTAGCAGCCTTGCTTTCCTGGTCCAGACGGGCTTCGTCAGCCCGCTGCTTTTGCTTGAGGTCCTTCAGCAAATCCTGGGCAGCTGGCCGGCGGCGCTTGCTGTGGTCGTTAGAGTGGTTGTTAGCCCGGCGGCGGGTATTTGATCTCTTACCCTCAGTCTTCTTTTCGCCCTTGCGAATAGCACTGACTGAAATCTTTAATTTACCAGACTTGCCGCTGGTTTTCTTGTTATCCATGCCCAATTCCTTTGAAGTTTCGTTTTCTTGTTTCTTGGTCATTAGATCACACTCCTTCTTTAATCTTATCCAGCAAGGTTTTCGCAAAACCACGATCTGTTAATGCCAAAACTTTGCGTTTCTTACCTACAGCCTGACTGAGTTCAGCTTCCGTAAAGACGTCGACCAATGGCGTTGGGCGGGCCTTTACAGCAGCTTCAATCTTGCCGCGGCTATTTTCTGCTAAATCATTCGCAATGATAATGCACTTAAGCTTGCCCTTCTTCAATTTGGCCAAAACTATGTCCGTGCCCGAAACGGTCTTCCCCGCCCGGGTGGCCAAACCAAGCAAATTTAAGGCTTTCTCTCGGTTGTTAATTATTTTTGATCACCAAATAATTCTTTTCTTGCCTTCTGGTGGTCCACGTAAGCGAAGAGCTCGTCGTAAAATTCATCGGCTACCTTCACGCCCAAACTGCGTTCCAGCACCTTTGACTTTCGGGCGGCAGCGATCTTCTCCGGTTTTAAGGAAACATAAGCGCCGCGGCCCGGCTTCTTGCCGCTTGGATCAACAGAAACATTCTTTTCCTTGTCAACGACGATTCTGACCAAATCCTTCTTCGGCTGCATCGTATCGGTCAACAAGTCCTTCCGCATGGGGATTTTTCTCTTTTTCAAGTAAATCACCTATTCTTCATCGTCAAGATCCAGGTCTTCTGCATCTTCTGCTTCTTCAGCTTCTGTATTTTCATCAGCTTCAGTCGCTTCAGCTTCTGCTTGGTCATCTGCTTCTTCAACTGCTGCTTGCTGGAGATCTTGATCTTCTGCTACTTCAGTTTCGTCTTCTACTTCGCTTTCGTCAACAAATTCGACTTCGGATTCTGGCCGGATGTCGATCTTGTAGCCAGTCAAGCGGGCGGCCAGGCGGACGTTTTGCCCTTTCTTGCCGATAGCCAGGGAAAGCTGGTAGTCCGGCACGATCACGAAGGCTTTCCTTTCATCGTCTTCGTCTTCAAACTGGACAGCGATGACTTCAGCCGGGTTCAAGGCATTGGCGATGTAGTCAGATGGGTCTTCTTCGTACTGCACGATGTCGATATTTTCCCCGCCCAGTGCGTTGACCACGTTCTGCACCCGGCTGCCGCGTGGGCCAACACAGGTACCAACCGGGTCGATGTTCGGGTCGTTGGACTTAACGGCAATCTTGGTTCTTTCGCCGGCTTCCCGGGCGATGGACATGATTTCAACGGTCCCGTCAAAGATTTCCGGCACTTCTTGTTCAAAAAACCGCTTAACGACATCCGGAGCGGTCCGGGAAACCCGGATTTGGGCTCCCTTGCCGTCAGCACCGACCTTGGTGACCAGGACGCGGACCCGGTCTTGCGGGTTGTAGTGTTCACCTGGAATAGTGTCACACTTGATGTCCATAACTGCCTCAACATTGCCGATGTTGACGTAAACGAAACGGTTGTCAGTTCTTTCTACTGTCCCGGTGACCAGTTCATCTTCGTATTGGGAGTATTCGTTGACGATGTGGGCATTTTCCGCTTCCCGCAGGCGCTGCATTACGACCTGCTTAGCCGTAGCTGCCGCAGTCCGACCGAAGTTCTTTGGGGTAACTTCGAACTTGATCGTGTCGCCGACTTCGTATGCCCGGTTGATGGCCAGGGCATCCTTTAAGCTGACTTCCACCCGGTCGTCTTGCACTTCGTCAACCACCGTCTTCAAAGCCATGACCTTAAAATCGCCCTTCTTTTCATTAAAGTCGATTTCGACATTTTCCGCCAGGCCGTAGTTCTTCTTGTAGGCAGCGGCCAAAGCAGCCTTCATGGCTTCAACGATAACGTCTTGTTTGATACCCTTGGTCTTTTCCAAGACGTCAAAGGCTTCCAGCATTTCTTTTGACATAAGTTTTTGATCACTCTTTCTAAAATTCGATTGCAAAACGGGCGCTGGCGATCTGCTTGCGCGGAATAGTGAGCTGCTTGCGCCGGGTCTTGATCTTGATTTCCAGTTTAATCTCCTGGTCGTCCAGGTCAAGCAAATGACCTTCAAAGACCTTCTCGCCTTCCAATTTCTGGTAGAGGCCGACATGGATGTACTGGCCCTTGGCCTTCTCCCAGTCCTGCTCCTTCTTGATCGGTCTTTCCAGGCCCGGTGAGGATAGTTCCAAAATATACGGGTCTGGCAGCGGATCTGGCTGCATTGAGTCCAATTTTTCTCCAACCAACTCACTCAGCTCCGCAATCGTTTCGATGTCAATCCCGTTTGGCTGCTTATCAACGTAGATTCGCAGATAGTCTTGACTCTTTTCCTTGACGTATTCCAAATCAACAAGTTCACAGTCATGACCGATAATGACCGGTTCGATTGCTTCTAGGATAGGTGTTAAGTTTTTTGGCAAAATTTTCCTCCGTAATAAAAAGAGTGAGCATCGCTGCTCACTCGAATTTACCATATTCGATCTACAGGAGATTATAACAGAATTTTTCCCACTTGTAAATAAGAAGCTCTTAGAAGAGGGAAAGTTGGTTCTGGTCAGGCATCCCCTCTAAGACATTGTTGTTTTCAAAGAAGTCCATGATCTTCTGGGAAACCTTGCCACGAACCTGCAGGTCTTCCTTTGACAAAAATGGCGCTTCACTTCGGGCAGCCACGATCTGCTTGGCCGCGGAGTCACCTAAGCCGTCAACGGCGTTAAACGGTGCCAGAATGGTGTGCTTGTCCACGATCTTGTAAGTCGTAGCTTCAGACTCGTTGATGTCGACCATCTTGAAGTTGATCCCCCGCTCAATGGCTTCGTTGACCAGTTCCATGTAGGTCTGCAGGTCCTTTTCCAGCTTGGTCGCTGCCGTCCCTTTTTCCTTGATCCGGTTGATCAAGGCCACAACCGTGTTCTTGCCCCGGCTCATGGCTTCCAGGTCGACCTTGTCGGCTCTGACTGAGAAGTAGGCGGCATAGTAGATCTCTGGATAGTAGACCTTGAACCAGGCCACCCGGAGAGCCATCAAGATGTAGGCGGCCGCGTGGGCCTTCGGGAACATGTACTTGATCTTCAAGCAAGACGGAATATACCAGTCAGGAATGTTCTTATTTTCCTTTAAGACGGCCATGTTCTCATCAGAAATCCCCTTCCCCTTCCGGACAGTTTCCATGGTTGAAAAGGCAACTTCTTCCTTAACTCCCCAGCGGATCAAGTCAGTCATGATGTTGTCCCGGCAGCCGATCACGTTCTTTAACTTGCAAGTGCCGTTGTTGATCAGTTCCTCGGCATTGCCTAGCCAGACGTCCGTCCCGTGTGACAGGCCGGAAATCTGCAAAAGCTCGGCAAAGGTCGACGGCTTGGTCTCTTCCAGCATACCCCGGACAAAGGGGGTCCCGAATTCCGGCAGGCCCAGGGTCCCGGTCTTGGAATTGATCTGCTCTGGAGTAACGCCTAGGGCTTCCGGGCTGGAGAAAAGGGACATGACCTTAGGGTCATCAGTTGGAATCGTCAAAGGATCAATCCCAGACAAGTCCTGCAGCATTCTGATCATGGTCGGGTCCTGGTGACCCAGGATGTCGAACTTCAAGAGGTTGTCGTGGATCTGGTGGAAGTCAAAGTGGGTCGTCTTCCATTCCTTGGAGATATCGTCTGAGGGATACTGCAGGGGAGTCAGTTCATAGATGTCCTTGTCATCCGGCAAAACGACGATCCCGGCCGGGTGCTGGCCGGTCGTGGCCTTGACCCCGGTAACCCCGATGGCCAAGCGGTCAACTTCCGCGTTGTTCATCTTGATTTCCGGGTGCTCGTCTTGATAGTGCTTGACATAGCCAATCGCCTTTTTATCAGCCAGGGTACCTACGGTGCCGGCCTTAAAGGAGTGGTTTGGCCCAAACATAACTCTGATGAAATTATGGGCAACTGGCTGGTAGTCACCAGAGAAGTTCAAGTCGATGTCGGGCACCTTGTCACCATGGAAGCCCAGGAAGGTTTCAAATGGGATGTTCTGCCCGTCTTTAACCATCATGACCTGGCAGTCAGGACACTTTTTATCCGGCAGGTCAAAACCGGAAGCGTATTCGCCGTTTTCAAAAAATTCTGACTGCTTGCACTTCGGGCAGCGGTAGTGAGGCGGCATAGGGTTGATTTCAGTGATACCCATCATGGTGGCAACCAGGCTGGAACCAACGGAACCCCGGGAGCCAACCAAGTAGCCGTCCTTAACTGACTTGGCCACCAGCATCTGTGAAATCAGGTAAACAACCCCGTAGCCGTTACCGATAATGGCATCCAGCTCCCGGTCCAGACGGGCCTGGATATTGTCCGGCAAAGGATCACCATAAAGTTCGTGGGCCTTGTCATAGGTCAGCTTGCGTACCCGTTCAGCCGTATGCGGGATCTTTGGCGGGAAGCTTTCGTCTTGGACCGGCTGCACTCCCTCATCGATCATGGCATTGATCTTGTTCGGGTTGCTAATGACCACTTCTTTAGCAATGTCTTCGCCCATGAAGCTGAATTCATCCAGCATCTCCTGGGTGGTATAGAAGTGCAAGTCAGGGTGCTGCTTGTTGCGGTTTGGGTTACCCCTTTGAGCAGCCAGCAATACGTCCCGGTAGATGGCTTCATGCTTGTCAATGTAGTGGGCATCGCTAGTTGCCACGACCGGCTTGTTCAGCTCCCTGCCCAGCTTGTAAATATTGGTCAGAATTTCTTCCAGCTGGGCTTCATCAGCAATCAAGCCATCGGCAATTAAGCTAGAGTAGTTTGACGGCGGCTGGATTTCCAAAAAGTCGTAGAATTCCGCCTTCTTTTTGGCTTCTTCATAGCCCTTCTGCATCATGGCAATAAAGACTTCCCCCTGGCTGCAGGCAGACCCGTACAAAAGGCCGGCGTGCAGGCGGCGGAGTTCTGACTTAGGGGTCCTCAGCCCCTTGAAGTTGTATTTGATCCCGGCCAGGGAGACCAGTTCATATAAATTCCGCAGGCCTGGCTTTTGGTTCTGGGCTAAGACCGTAATATGGGTCGGCCGGGCCCGCTTGTAGCCTTCCCCGTTGCTGTAGTCGTTCATCTTGCCCAGGTCATCTTCCTGGTACTTGTCGTTAAAGGCATCCAAAAGCTTGAACATCAGGTAGCCGGTTGCTTCAGCGTCCTGGTTGGCCCGGTGGTGGTGCTCCAGGGGCACATTGTACTTGCGGCAAAGCGAATCTAGAGTGTGACGGGACTGTTCCGGGTGCAGGAGGCGGGAAACTTCCAAAGTGTCGACGACCGGCTGGCTGATTTCCGGGTAACCGCAGCGCTTCAAGGCCGCATCAACAAAGCCCACGTCAAACTGGACATTGTGCCCGCAGAGCGGGTCATTGCCGTAAAAGTCCATGAACTGCTTAATTACGACAGCTTCGTCGTCAGCCGCCTGGACCATCTCGTCCGTAATTGAAGTCAAGTTAATCGTAGTTTCAGACAATGGATGGTGAGGGTTGATGAACTTGTCAAAGCGGTCGATAACTTCACCGTTTTTCATCTTGACCGCCCCGATTTCGATAATCGTATCGTAAACAGAAGACAGACCGGTCGTTTCAACGTCGAAAATGACAAATTCCTGGTCTTCATACTTCATGCTGGCGGGGTTTAAAACCAGCAGGCCGTGGTCTTCAACCATGTTGGCCTCCAGGCCCATGATGACCTTCATCCCGGTCTTTTTGCCCGCTTCAAAAGCATTCGGCAGGGCCTGCAGGCCAGCATGGTCAGTGATGGCGACGGCCGGCTGACCGAACTTCTTGGCTGTCTTGATGATGTCTGCTACATCGCTAGTCGCGTCCAGCTGACTCATGTTGGTGTGGACGTGCAATTCCACATGCTTTTCTTCACCTTGGTAGGCTTCTTGCCGGCCCACGTGCTCGGTTAATTCCATGCTGTAGATGTTGAAGATCAAGTCATGGGCATACTGGTCATCCTTAAGGCTGCCCTGCATGCGGATCCAGACACCAGGCTTAATGCCTTTCAAATATTCGATTTCTTCCTTGTCGGAATCACGGACGAACTTCTTAAAAGAAATAGAACCGGTATAGTCAGTCATTTCCCCGTAAAAAATAAAGGAGCCCGACCGCAGTTCCTGCATTTCCGCTTTGAAGACATGGCCTTCAACAACCGCGCTGCGCTGGTCTTCTGACAAGTCTTTCAACTGGGTAATCTCTGCCTTGTCGCTGATGGCGCCTGGGCCAAAACTGGTCTTCTTCCCCCGCCGGCCCTGGTAGCTGGGCCGGGGAGCTGGCTTTGGCTTGGCCGGGGCCTGCTGGAAGGCTTCCTGCATGTTCTTCTCATGGGCTTCCACCAGCTGGGCCAGGCTTTCAAAGTCGCTTTGCCCGCCCTGGTCAGTAACTTCCGTCAAAAGCTTGACGTTAAAGAAGCCGTAATCGCGCAGCTCTAAAGAGAAGCTGTCCAAGAGCCGCTGCTCCAGCATCTTGTCAAAAAGCTGGCCATTGATTGGAATAACCCAGCGGCCACTATCTTCATAGGGCGCCTGCCCGACCAGGAAGTTCTGGGCTGCCGGATTGGCGGACAAGACTTCTGAATTTTCAACCGCGTACTGCCAGTAGTCTGGCAGGTATTGCTGCTGGCCATCAGCCGTTTCAACTATGAGCCGAGTATCAACAAAGTCATTAAATTCATGCTTAATTGCCTGGTTCAAGGCATTGTAGCTTTCAAAACGCAGTGGAGTAGTAAAAAAAACGTGGATATCCCATCTACGTTCTTTTCTGTAGACATCCACGTTTTTTATCTCCCCTGCCTGTAAAACCGCTTCGTCAGCTCCCCCTGCCGAAAAGCCGACTTGTTTTAACAATTTGAGAAAAAGTTGGTTTTTATCAGTCACGAGAGTTCAATCCTAATCTAATTCGTTGGCAATAAAGTCTTCCAGGTCGGCAACGGCCAGCTTTTGTGCCTGGTCGTCGCCTGGACGCTTGACTTCAACAATCCCGTCAGCCGCGTCGCGGCCAACAGTAATTCTGATTGGCGCGCCAACCAGGTCAGCATCGTTGAACTTGACGCCTGGCCGTTCGTTACGGTCGTCATAAAGGACGTCATACTTGGCAAACTTGGCTTCCAGGTCTTCGGCCAGCTTGCTTTGGATTTCATCCTTCATCTTCATCTGGATGATGTGAATCCCGAATGGCGCGATTTCCTTTGGCCAGGCAACCCCATTTTCAGTCGCGTGCTGTTCAACGACGGCTGAAAGCAGGCGGGTAACCCCAATCCCGTATGAGCCCATGATGACTGGCTGGGACTTGCCGTTCTGGTCCAGGAACTTGGCCCCCATGGTTTCCGTGTAGTAGGTCCCCAGCTTGAAGATATGACCAACTTCAATTGAGGTAGTAAACTTAAGCGGTTCATGGTCAACCGGGTCAGGTTCGCCCTCGTTGGCAACCCGGAGGTCAGCAAAGCGGTCAGCCCTGAAGTCCCGGTCCAAGTTAGCGTTGATGAATTGAGCATCGCTTTCGCCAGCACCAACGACCACGTTATAGAGGCCCTTGACGGTTTTGTCAGCCACGATTTCGTCAGCCCAGTCAGCATTTACCGGGCCAACGCCGCCCTTTCCGGCCCCGGTCAGTTCTTCCAGGTCGCTAGTTTCAGCAACCCGCAGGCTGTCGCAGTCCAAGAGGTGAGTCAGCTTGACTTCGTTGACTTCCTTGTCAGCCCGGATCAAAACCAGAACCTTCTTCTTTTCGTCAACGATGTAGAGGACGCTCTTGACAATTCTGGTGGCTGGCACTTGCAAGAATTCTGCCAGCTTGTCAATGGAGTCGCAGCCTGGAGTAGCAACCTTTTCCATCGCCTTCAGTTCTTCAGGCTCTTGCTTGAAGGTATCAACGCTGACGGCCATTTCCAAGTTAGCGGCGTAGGTACCGGAAGCGTTGGTTGCAATAGTGTCTTCACCAACAGCGGCAGGTGCCTGGAACTCAATAGAGTTCTTGCCCCCCATAGTCCCGGAGTCAGCGATAACTGGCCGGACTTCAACGCCTGTGCGCTTGAAGATCTTGAGGTAGGCTGCCTTTTCATCATCAAACTGCTTGTCCAGCTGTTCTTGGCTGGCCGCGAAGCTGTAACCGTCCAGCATTACAAATTCTCTGCCCCGGAGAAGACCGAAACGTGGCCGGTTTTCATCCCGGAACTTGGTTTGAATCTGGTAAAGCTGCAGGGGCATTTGCTTGTAAGACTTGAGGCTCTTAGCCACCACGTCAGTAAAGGTTTCTTCGTGGGTTGGCCCCAGCAGCATTTCCCGGCCATGCCGGTCCTTCAGACGGAACATTTCCGGACCATACTTTGGCAGACGGCCTGATTCTTCCCACATTGAAGCTGGCAGCATGTGCGGCATGATCATTTCAACTACGCCGGCATTAGCCATTTCTTCTTCAATGATCTTTTCAGTCTTGCGCAAGACCTTGTAACCCAGCGGCAGGTATGAGTAGACACCAGCCGTAACCTGCCGGATGTATCCGCCCCGCAGCATTACTTGGTGGCTCTTTGCAACCGCGTCGGCTGGAGTTTCCTTCAGCGTCGGCATGAAAAAGATTGATTGACGCATAATTAATTAAATTCTCCTAAACATTTATTATTTCAAGGACTACTTGATAAAGTAGCGGTAGATGTCGTTGCCAGTTACGGCGATAATCAGAATCAGCAAGAAGACCACTCCGATCAAGTCAACGACTGTCTCATGCTCCTCTGGAATCGGCTTGCCCCGCAGGAGCTCGATGAGTTCCAGAAAAAGCTTGCCCCCGTCCAGACCTGGAATTGGGATCAAGTTGACGATCCCCAGGTTGATGGACAGCATGCCAACAAAGGCCAGCATGTAGGTCAGACCCATGGAAGTTGCCTTTGAAGTTTCCGAGTAGATCCCGACTGGGCCAGACAATTTGTTTAAGCTGAAGTGCTTGAACAAGTTGCCCAGGGCCTGGAAGATCATTCCTGTTACCTGCCAGCTCAAGTCCCAGCCCCGCTTCAGCTTGGCGGAAAATGAGTTGTCGGCCTTAGCCACTATGCCAACCAGGTATGACTTGGTCTTCTTTGAGTACTTTGGCGTCAGCTGGACTGACTTTTCGCTTCCCTGCCGCTTGACCTTGACCGTCAGGGTCTTACCCTTAGAAGAGTCAATCGCCTGGCTGACCTGGTCAAAAGTACTGATCTTCCGACCGTTGATGGCCACGATCTGGTCGCCTTTTTGCAAAACGTGCTGGGCCGGGGAGTTTGCCGCTACCTGGCCCACGGTCGTTGTTGCCGGGCCAACTGAAGCAAAGCTGTAGATCGTCAAGACCACAAAGCCCAAAACAACATTCATAAACGGTCCGGCAAAAGAGGTTGCCAGTTTCTTCCATGGTTTGGCTGCCGGCAGCTGCACGTCCCGGGGGGCAATCTGCAGCTCGGTGCCTGTGTCGTCGATCATGGTCGCGTCATGGTCGACCTTGTAGGTCACCAGCTGGCTCTCATCGCCATTTTCATACCCTGCAATGGTCAAGTCATCAACCAGATCGGCCTTAGTCACCCGCAAGGGGCGGCCTTCGATCGGCAGGTCTGATTCTGAAGCATCGATTCGCGTAACAATTCCAGCCTCATTCAGTTCCAAGACAACTGCCGTCCCCGGGTCAATTTCACTCTGCTCGTCAGGACCAGCCAGGCGGACATAGCCGCCCAGCGGCAGCCAGCGGATGGTATAAGTCGTTTGACCAGGCCGCCACTGAATCAATTTTGGCCCCATGCCGATTGAAAACTCGCGCACCAAAATACCGGCCTTTTTCGCCACGAAAAAGTGCCCGAATTCGTGGACAAAGACCACCAGGCCAAAAACTATAATGAAGGCTAGAATACTTTTCACAGCGACCTCCTAAATTCCAAAGATCAAGGCAACGATTGGCAAAACGAAAAGCGTGCTGTCAAACCGGTCCAGGATCCCGCCGTGGCCCGGCAGGATCTTGCCGGAGTCCTTAACCCCGTAGAAGCGCTTGTAGGCTGATTCAACCAGGTCGCCCATCTGGCCGGCGATTGACAGGAAGAAGGAAGCAATGATCAAGCTGGTCTTGTCGCCGCCGACTGGAGCCAGGTTGACATAAATTGCCGTCACGATAACCGCGATGATCACGGCCCCGATTGACCCTTCCCAAGTCTTGCTCGGGCTGATTACTGGCCAAAGCTTGTGCTTGCCGAACTTGCGGCCAACCATATAGGCAGCCGTGTCAGTCGTCCAGACAATCACGAAGGCAAAGAGCAAGCGCCACAAACCATAGACTGGATCGCTGTTTCTGATCGCAGCCAGGTAGTGGAAACCAGTCCCGATGTACAAACTTGACAGGACGTAAACGCCGATATCGTCAAAAGTCGTCTTGTTCTTAGACAGAACCGTCCAGGTCAAAAGAATCATTACCAAGGCATAGAAGACGCCCCACTTGCTCCAGTTTTTTGGCAAAAAGCCAAAGAAGGAGTTGGGCACGGTCCAGGTCAAGGTGGCCAGGGCAGCCAGGGTAAAGTCAACTGAGACCAGGATCTGCTTCTTCATCAAGAAGACTTCACTGATGCCGACGGCAGCCACAAAGGCAGCCAGCCAGTCAATCCACATGCCCCCGGCAACCAGGACCGGGATAAAAATCAATAAAGCAACAACTGCTGTAATTACTCTTTGTTTCATATTACCTAACTATCTGTTTCATCTAATTTACCAAAGCGCCGGTCCCGGTGCTGGTAGATCTTAACCATTTCGGCCAAGTCGTTTTCGTCGAAGTCCGGCCAAGCCTTGTCCGTAAAGGCAAGCTCTGAGTAAGCAATCTGCCAGAGCAGGAAGTTGCTGATTCTCTGCTCGCCAGATGTTCTGATCAAGAGGTCTGGATCAGAATAAGGGGCAAACTTGGCGGTCATCAGCTTGGCGGAGACCATGTCTTCAGTAATTTCTTCCGGCGTGATTTCCCCGCTGGCGGCCTCTTTTGCCAGAGCCTGCACGGCTGAAACGATTTCTTTTCTTGACCCGTAATTAAAGGCAAAGTTCAAAACCAGACCGGTATTGGCCGCGGTTTCCGCCATGGCCCGCTCAACCACTTCCCTGGTTGATTCCGGCAGGGCATCCAGATAGCCCATGATGTTGACCTTAACATTGTGGGCCTGCAGGCAAGGCATGAACTTGTCAAAGAACTTGACCGGCAGTTTCATCAAATAATTGACCTCATCCTTAGGCCGGGCCCAGTTTTCCGTCGAAAAAGCATAAAGAGTCAGGACTTTAATTCCCAACTCATCTGCCGCAAGCGCAATCTTTTCAACGTTGTCCATCCCGGCCTTGTGGCCCATGAAGCGCGGCATTTTCCGCTTCTTTGCCCAGCGGCCATTGCCGTCCATGATGATCGCCAAATGATTCAGCTGCTTATTCTTATCCATAATTAACCCTGAATGATTTCCTTGCGCTTGTTGTCAGCCATCTGGTCAATCTTCTTGGTTGATTCGTCAGTAACCTTCTGGACTTCCTTTTCCAGGCGCCGTTCTTCGTCTTCAGTGATTTCGCCGTCTTTTTCCTGCTTCTTCAAAGCCTTCATGGCTTCCTGGCGGACATTGCGGACAGCAATCTTGGCTTCTTCAGCCAGCTTACCGACTTCCTTGGCAATTTCCTGCCGCCGTTCCCCGGTCAGTTGCGGGATAATCAGGCGGATGACGTTACCGTCGTTAGCTGGCGTAAGGCCCAGGTCTGAGGCCAAAATGGCGTGTTCAATATCGTTCAAAGAAGTCTTGTCATATGGAGTGATCATCAAAACCCGTGGTTCTGGAATGGTGATCCCGGCCATTTGCACCAGCGGAGTTGGTACCCCATAGTATTCAACCATCACCCGGTCCAAAAGGGAGGCGTTGGCTACCCCGGCCCGGACAGTTGCCAGATTGCTCTGGTAGACTTCGATGGACTTGTTCATGTTTCTCTTGGCTTTAGCAATCGTTTCGTTGTTCATTACTTGTCACCTCTGATAATCGTCCCGATGTTTTCGCCTTCAACTACCCTCTTGATGTTGCCTGGAGTGTTGACGTTGAAGACGATCAATGGAATATGAGTGTCCATGGACAAGGAGCTGGCAGTTCTGTCCATAACTTGCAGGCCCTTGGAGATCATGTCCAGCTGGGTCAGTTCAGCAAACTTCTTGGCACTTGGGTCCAAGTTCGGGTCAGCAGTGTAAACCCCGTCAACCCCGTTCTTGGCCATCAAGATCACGTCAGCATTAATTTCCGCTGCCCGCAAAGCAGCCGTGGTGTCAGTTGAGAAGTATGGGTTGCCAGTGCCGCCGCCGAAGATAACGACCCGGTTCTTTTCCATGTGGCTGATTGCTACCCGGCGGATGTAAGGTTCAGCTACCTGCCGCATGGAGATTGAGGTTTGCAGTCTGGTCTGCACGCCAGCAGTTTCCAGGCCATCTTGCAGGGCCAGGCCATTCATGATCGTGGCCAGCATGCCCATGTAGTCAGCTTGAGCTCTTTCCATGCCCAGCTTGGCCCCGGTTTCACCGCGCCACATATTGCCGCCGCCACAGACAACGCCGATTTGCACGCCCATGTCATGAACCAGCTTGATTTCGTGCGCCAATTTCTTGATCACAGTTGGGTCAATGCCAGTTCCCTTTTCCCCGGCCAAAGCTTCGCCGGAAATTTTCAAAATGATACGATTATATTTAACTTGACTCATAATGCCCTCCTAATTAGCTCTAACTATTTTACCATAAAACAGAAAACTGTCTCTCCTATTTATCCTATTTCACCAGCTTAAATTTGCAAAAGCAAATTTGCCGACAAAAAAAGGATGGGTTTCCCCATCCTTTTTCTTGCTAGAAGAAATTAGTTCTTCATTTGTGCAGCAACTTCAGCAGCAAAGTCTTCTTGCTTCTTTTCGATGCCTTCGCCGACTTCGAAACGAACAAAGCTTACTACGGAAGCGTTGACTGATTCAAGGTATTGTTCAACAGTCTTGCTGTCGTCCATAACGTAAAGTTGAGCGAGCAAGGTGTTTTCTTGGTCAACCTTAGTGTTGTCCAGCATGAAGCGGGCCATCTTGCCTGGGATGATCTTGTCCCAGATCTTTTCTGGCTTGCCTTCAGCCTTCAGTTCTGCCTTGATGTCTTCTTCAGCTTGAGCAATGACTTCGTCAGTCAATTGCGCCTTTGAACCATACTTAAGGTGTGGCAAAGCTGGCTTGTTGACCATGGCACGTGATTCGTTGTCTTGGTCAATCTTGTGGTTAAGTTGAGCCAGTTCTTCGCGGACGAAAGCTGGGTCAAGTTCCTTGTAGGACAGAACCTTTGGGCTCATTGCGGCAATGTGCATTGCAATGTGCTTAGCCAAGGCTTCGTCGCCGCCTTCAACAACAGTCAAAACGCCGATGTGGCCGCCATTGTGTTGGTAAGCGCCAAAGTGTTGGTCATCAGTCTTTTCAAGAACAGCGAAGCGGCGGAAGGAAATCTTTTCACCGATAGTCGCAGTAGCATTTACGTATGCTTCTTCAAGGCTTTCGCCTGAAGGCATGGTCAATGCCAAAGCTTCTTCGTTGTTAGCTGGCTTGCCCTTGGCAATAGTTTCAGCAGTTTCGTTGACCAAAGTCTTGAACTGTTCGTTTTGCGCAACGAAGTCAGTTTCAGCGTTGACTTCAACGATAGCAGCAACGTTGCCGTCTACGTAAACGCCAGTCAAACCTTCAGCAGCGATCCGGTTAGCCTTCTTGGCAGCCTTTGCTTCACCCTTTTCGTGGATGATTTCAATAGCTCTTTGCATGTCGCCTTCGGCTTCAACCAGGGCCTTCTTGGCGTCCATGACGCCGGCACCAGTGGTTTCACGCAATTCCTTGACTTGCTTAGCAGTAATGTTTGCCATTTAAAAAAGTCCTCCAGTTCAAACTAAATAACAGAATTCTTCCAAAGATAGTTTACGACAAATTATTCAGCGTCGTCTACTTCTTCAGCAGAGTTTTCTTCAACACTTTCAGACAATTCCTTTTCAACGTCGGCGTTATCTGCACCTTGCTTGCCTTCGATTACGGCATCAGCCATAGTACCGGCGATCAAGCGGATAGCACGGATAGCGTCATCGTTTGAAGGGATGATTACGTCGATCGGAGTTGGGTCAGTGTTGGTGTCAACCATGGCTACAACTGGGATACCAAGCTTGTTAGCTTCGTGAACGGCGATCTTTTCCTTCTTAGGGTCAACGACGAACATTACGTCAGGAATCCGAGGCATGTCTTCGATACCGCCCAGGAACTTTTGCAGCTTGTCCATTTCCTTGGTCAGCAAAGAAACTTCCTTCTTTGGCAGTACGTCGAAGGTGCCATCTTCAGCCATCTTCTTCAAGTCCTTCAGACGCTTAACCCGGCTTTGGATAGTAGTCCAGTTGGTCAAAGTACCACCCAACCAGCGTTGGTTGACGTAGTATTGACCTGCACGGGTAGCTTCTTCAGCGATTGCTTCTTGAGCTTGCTTCTTGGTACCAACGAACAGGAAAACACCGTCGTCTTGAGCAACAGCCTTAACGTAGTTGTAGGCATCGTCAAGCATCTTGATGGTCTTTTGCAGGTCGATGATGTAGATATCGTTTCTTTGAGTGAAGATGTATGGCTTCATCTTCGGATCCCATCTTCTAGTTTGGTGACCAAAGTGTACACCAGCTTCAAGCAATTGCTTCATAGATACAACTGACATAAATAAATTCCTCCTAGGTTATTTCCTCTCAAGCGTTCATTTCAGCATTCAACCGTTTGTCTTTAGGCACCTGAACACCGATCGCTCTTGATGTGTTTTCTAGCGTGCAATCGCACGTTTATCTATCATACTCGATTTTTCCTTTAAGCGCAAGCTTTTCCGCCTAAAATTTAACCCCTTGCTCGTGCAAAAATTTTTCCTTCCAGGCCCGGTCATGATGCTTGAACCAATATTCCCGCTGCATGGCCGTCCGCTTGTCGGCATATTCTTCAAGATAGATCATTTCAACCGGCCCCCGGCTCTTGGTGTACTTGGCCCCTTTACCAGAATTATGAGCCCCCAGCCTTTTCTTTAAATCATTGGTGTAGCCGCCGTAAAAGCTGCCGTCGCTGCATAAAAGAACATAAAAGTAATGCTTTTCCTCTGGCAATTTGGCCTCTAAAATTTCCTTGATGGCCGGGGTATTGCTGCCGTCTGCCTCATGGACTTCGATAGCGTCGCGCAGAACCAGCCCGTCGCCTTTCCCGCTTCTGACCGCTTCAACGATGACTAAATTGGCGTCTTGCCCTCTTCTGGAGACAAAGGGCTGGACAGTCTTAACGGCCAGGTCATGCTTAAATCCGTAATTGATGATCTCACCCAGCCGCTCTGGCCGGTGGACCATGAACATCTTCCCCTTCATTTTCAAGAGGCCGGCGGAAACGGCGATGATTTCTTCCAGGTTGATCTCCAGTTCATGGCGGGCAATGGCTTTAGACCGGTCCGGGTTCAGCTTGTGGCCGGCCGGGGCCTTGAAATATGGCGGATTGACCACGACGACGTCATAGCTGTCTTTTCGCAAAAAGCTGCCCGCGTCTTTGACATTGCCCTGGTGGACCGTTATCCGGTCCTGCATGTCGTTTAATTCAACCGACCGCCGGGCCTTGGAAACGATGTCTTCTTGCAGTTCAACATCGTCGTAATGGGCCTTGTTAAAAGCAGCCATGTAGAGGCTGGCTGCCGCGTTGCCGCTGCAGAGTTCAACCACCTTGGACCGGTTTTTGATGGCTTCTTTGGCCCAGTAAGCCAGAAGCAGGGTATCCAGGGAAAAGGCAAAAGACTGCCCGTCCTGGATGATTTTCAGCTGATCGCCCAGCATGTAATCGATACGTTCATTTTCTTTTAGTTCAATCATGTAATTCTGAAGCCCGTCCCTTATTCTTAGATGTGTTATAATTTATTCTACATCATTTGGAGGTTCTTTTATGCTTTATCGTATTTTCAGACCGATCGCCCGCTTCATCGTCTGGGTCTTAAACGGCCACCTGCATGTCCACCACAAGGAAAGACTGCCCGAAGGCACCTACATTTTGGTTGCCCCCCACCGGAACTGGTGGGAGCCGATTCTTTTCGCCCTGGCAGCCAGCCCTACGGAATTCATGTTCATGACCAAGCAGGAGCTGTTTAAAAATCCGGTCCTCCGCTGGATCTTAAACAATGCCCACGCCTTCCCGGTCAACCGGGAGCATCCAAGTCCTTCCGTTATCAAGATCCCGGTCAAGGGCTTAAAGTCAGAAGGCCTGTCTTTGATCATGTTCCCATCCGGCACCCGGCACTCAGCCTCCCTTAAGTCCGGCGCCCTGGTTATCGCCAGAATGTCCGGCCGGCCCCTGCTGCCGGCTGTCTACCAGGGACCGCTTACTTTTAAAGGGGTCTTGCAAAGAAAAGGAATAGAAATCAACTTTGGCAACCCGATCGTCATTGACCGCAAGACCAAATTGACCCCGGAAACCGAAGCTGCCTACAACCAGCAGCTGGAAGACGCCTGGAAGCAGATCGACCAGGAACTGGATCCGGATTTCCACTATGAAGCTAAATAATTAAAGATGACAAAACAACAAGAAAAAGGATTGAGCATGGACGCTCAATCCTTTTTCTTTATGCTTTTTTACTGCTGCTTATTACTTGTTATTTTCCAGGTATTCCATAATCTGGACGGCGTTGGTTGCCGCCCCCTTTCTGATCTGGTCGCCGGTGCACCAGAGAGTAAGGCCGTTAGGGTTGGTCAAGTCCCGGCGCAGGCGGCCGACTTGCACGATATCCTTGTCGGAGTTTTCTAGGGGAGTTGGAGTGTGATCAGTAACCAGGAGGTCGCCGTCAAAAGCCGCGATGGCATTTTCAGCAGCTTCAACTGAGACCGGTTCTTCAGTGACAACCGTCACCGCAATTGAGTGGGACCGGTAGACCGGTACCCGGACGCAGGTGCAGGTCACCAACAAGTCTGGCAAGTGCAAGATCTTTCTGCCTTCATTCTGCATCTTCATTTCTTCAGTCGTATAGCCGTTTTCCAAAGGACTGCCAATGTCAGCGATGACGTTAAAGGCGATCTGGGCCGGGAAGACCTTGGCTTCCACGCTCTCGCCCTTGGTCAAAGCCGTCACTTCATCCTTCAGTTCGCTGATCCCGCCCATGCCGGCACCGGAAACGGCCTGGTAGGTGCAGGCGTTGATAGCCTTGATCGGAGACAACTTGGCAATTGGAGCCAGAGCCATCAAGGTAATGGCAGTTGAACAGTTGGGATTGGCAATCACGCCGTGGTGGTCTAAAGCATCTTGGCCATTAATTTCAGGAACTACCAAAGGCACGCCGTCTTCTTGCCGGAAGGCTGAGCTGTTGTCAATGTAGACTGCCCCGCTCTTTTCGACCAGGGGCCGGTATTCCTTAGACAGGCTGTTAGAAACTGCCCCCAAAACGTAGTCCAGGCCATTCAGTCTTTCCTGGCTGACCACTTCCAGGGTCAATTCCTGGCCAGCAAAGGGCAGCTTTTTACCCTTGGAACGCTCGGAAGCAAAAACGCGCAGCTCTTCAACCGGCAATTGTCTTTCTTCAATACATTCCAACATCTGCCGGCCAACGGCCCCTGTAGCTCCTAAAATACCAATTTTCATTTATCGTTCCACTCTTTCTTCACTAATAAACTGCTGATAAATCGCCTTGATTGCCGGCACCAGGTCCTGGTTGTTGACCCCAATGACGATGCTTTGTTCATCGCAGGCCTGGTTGATGGTGCGGATATTGATCTGCTGGTCACCCAGTGTTGACAAAATTTTGCCCGACATCCCCGGCATTTGCCGCATGACCCGGCCAACCACGGCCAGCATGGCCTGCTGGCTTTCGACCTGGATATCGTCCAGGTGCAGGTCCTGCTGTAATTCCGCCACGATCTCATAGAGATAGCGCTCGATTTTCTTGGTCTGGACCACAATGGAAAAGGTATCGACCGTGACCGGAACGCTTTCAATCGAGATCTGAAATTTTTCAAAAACGGCTAAGACCTTGCGTAAGAAGCCTGCCTCAGCTGAAACATGCGACTTAACCATGGTGATGACCGTAAAGTCCTGCTTGCCTGTAATCCCGGTGATGACATGAGGCGGCTCTTGCGCGTCAAGTTCACTGCAATCATTCATGATCATGGTGCCGGGATTTTCCGGATGATTGGTGTTGCGGACATTGATCGGGATGTTTTTCTGCCGGACGGGAAAAACCGCGTCGTCATGCAGGACATTGGCTCCCATATAGCTCATCTGCCGCAGTTCTGAGTAGGTAACCCGGGGAATCTGGACAGGATCTTTGATAATGCGCGGATCGGCCACGTAAAAGCCCGAAACGTCAGTCCAATTTTCATAGACGTCAACGTCAAAGGCATTGGCCACGATTGACCCGGTAATGTCTGACCCGCCCCGGCTCATGACCTTAATCACCCCATTTGGCAAAGAACCGTAAAAGCCGGGGATCACCACCCGCCGGCCCGGGTCAACCTGGGCTTTTAACAGTTCCTGGCTTTTATCGAGGTCAATTGAGCCGTCATAATGGAAACGGATCACCTGGCTGGCGTCACGAAAGTCCGCGTCCAGGTATTCAGCCAGGCAAAGGCCGGTCAAGTATTCGCCCCGGGAAACCAGGTAGTCCAAGTTCAAGTTCTGGGCCATGTTCTGCCGGATCTTGGCGAATTCTCCAGCCAAGTCGATTTTAAGGCCCAGGCTGCGCTTGATTTCCATGTACTTGTCCACGATAGACTGGAAAATCGACTCATAGCTGACGTCATAGGTAATGTGGGCCGCGCAGAGGTAGAGGAGGTCGGTTACCTTATGGTCCTCCTGCCCGCTCTTGCCGCAGGCGCTGGTCACCACGTACTTGCGGTCCGGATCAGCCAAAATGATTTGCTTGACCTTCTTAAACTGTTCGCTGTTGGCGACTGAAGAGCCGCCGAATTTGACTACTTTACTCATCTGCCACTCCCGCCAAAAAGGCCGCCGGGTCCCCACTTTCCTTGACCAGGCTTGAAATTTCCGCCAAAGTCAGCTTTTTGGTCAAAAATGCCTTTTCGCTGATTCTTTCTGCTACTACATCCTGGAAAAAATCCGCCCGGTTAGTCCGCAGGTAGAAAGTCTGCTCTTCTTCATCAGTCAGCTGACCCGGTTCAGCACTTTGCATGATTTCCTTTTTCCCTTCAGCCAGATCCAAGAGGTCTTGAACAGCCGCGTGGGCGGTTGGCAAAGACCCTGCCCCCTGGCCCACAAAGGTTGCCGGACCCAGGGAGGCGGAATCAGTTTCCAGGGCATTGAAGTTAAGGCCCACTCCGGCTAAAAGGCTGGTCTTTTTCAGCATGACCGGCAAAACCTGCAAGGACAGCTTCTCACCTGCCTGCCGGCCCCGGCCCAGCAACTTGATGGTCCGGCCATTTGCCTTGGCCCAGGCAAAGTCTTCCTTGGTCAAATGCCGTATCCCCCACTGGTCAACCTGGCTTGGATCAGCAATTTTGCCAAACGCAGTCAAGGCTGACAAGCAGACCTTGTAGCAGACATCCCCGCCGTCGATGTCATCGCTGGGATCCTTTTCCGCGTAGCCCAGCTCCTGGGCTTCTTTTAAGCAAGCAGCAAAGTCCAGGTCCTTTTCTGCCATCTGGGAAAGGATGTAGTTGCTGGTCCCGTTAAAAATTCCCTGGAAGGCCGTGACCGGCTCCAGGCGCTGAATGTGCTTGATGTTGTCAATCCAGGGGATGCCGCCGCCAACGCTGGCCTCATAGGCCAATACCAGGCCCTTTTGCCTGGCTAAGTCAAAGAGCTCGCCGGCATAGACCGCCAGCATCTTCTTATTAGCCGTCACCACGTGCTTGCCGGCTTCCAGGGCCCGCTTAACATAGCTGTGGGCCGGTTCTACCCCCCCGATGCACTCGCAAACCACTGAAATTTCCGGATCGTTCACGATTTCCACAAAGTCAGTTGTATACTGGTCATCCAGGATCTGTTCATCTCTGTGAACCAGGATTTTTTTAATTTTAATCTTCTGCAAAAGCGAAGTTTCAGCCTCTTCAACCAGCTTGACAATGCCGCCGCCAACCACGCCGCAGCCCATGATTGCAATTTGCATACCCGCCTCCGTTGTTTCTAATCTAGGGACACTTGTTTTTTAATTAAAAACATAGTATCATTATACGCAAGGCTTGACAAGGGAAAAGTTACTTATTATTAAGTAAAAAATTAAAGCAATATGTCAAAGGAGAATTTGCCATGGCCGACTATTTTTACGTTCATAAAAAGATCCTGCCCGACTATCTGGAGAAGGTCCTAGAGGCAAGGGAAATGCTGGACAGCCGGGAAGCAGCCACCGTCACCGAGGCGACTGAGCGGGTCGGCATCTCCCGCAACACTTATTACCGCTATAAAGACTATGTTTTTAGAGCCAAGGACCCTGCAAGGGGCCAGCAGGCGGTCTTGTCTCTGCTTTTAGCTGACCTTCCTGGGGCCCTGTCAGCCGTTTTGACCTGCGTAACCGACCACCGGGCCTCGGTTTTGACTATTTCCCAGGCCATCCCTTTGGCCAGCCACGCCAGCGTCTTGATGTCCCTGGACCTGGCCGGCCTTAAAGGAGACATCAACACCCTTTTGGCTGATTTGAAAAGTCTCCCCTTTGTTAAAAATCTCCAGCTTGCCGGATTAGAATAATAAAAGAGCGCGTCTTCTGGGCGCGCTCTTTTTTGTCTTAATTCATTCTTAGTTTTCCCGGTTTTGCTGGAGGGTGTAAAGGTCATAGTAGTAGCCCTTTTGGGCCAGCAAGTCCTCGTGCTTGCCGTGTTCGACGATTCTCCCCTTGTCTAAAACAATGATCTGGTCAGCATCAGCAATCGTTGACAGGCGGTGGGCAATAGCCAGGGTCGTGCGGCCCTGGCGGAGCTTTTTGAGTCCTGCTTGAATCAAACTTTCTGTTTCCGTGTCCACGTTGGCCGTTGCTTCGTCCAAAATCAAAATCTTAGGATTGGTTACCAGGGTCCGGGCAAAGGAAATCAGCTGTCTTTCCCCGCTGGAGAATTCCGATCCGCCTTCAATGACCTTGGCATGGTATTTCCCAGGCAATTTTTCGATAAAGCGGTCAGCCTGGACAGTTTTGGCGGCTTCTTCAATCTGCTCATCAGTGATCTTGTCATTGTACAAGCGGATATTGGAAGCCACGTCCCCATAGAACATGAAGGGTTCCTGGAGAACCAGGCCCATTTTTTGCCGTAATTCTGCCTTGGAAAAGTCCCTGATGTCGGTCCCGTCCAAAAGGATCTGGCCCGAGTGAAATTCGTAAAAGCGCATCATGACGTTGATGATCGAACTCTTGCCTGAACCCGTGTGGCCAACGATTCCCAGGGTCTCGCCTGGATTAAGGGTGAAGGAAACATCGCGGAGAACGTCATGCTTGCCGTCATATGAGAATGACACATGCTTAAACTCAATTTTCCCTTCCGTAATCTTGGCGTCGGCCAGCTCTTTTTGCTCAGGCTCGTATTCTTCCTGGTCCAAAATCTTGAAGATCCGCTTGCCAGCCACGATCCCGTCGGTAAAGAAAGTCAGCGAGTTCATCATGTCCGACAAGGGGTTAAAAAAGTTCTGCACATAGTTTGCAAAAGCATAGATCATCCCGGCCGGGACAAAAGTTGCCCGGAGGGGGTAACCGAACCAGACCAAAACGCAGGTTAAGGCCAGCGAATAGAGCAGGGTCGTAAACGGCGACAAGAGCAGGCCGTTGGTTCTGATCAGCTTGAAGCGGGTCTGCATCTGCTGGCGGTTGATTTTTTCAAAATCATCGTCTATCCGCTTTTCCTGGCGAAACTGCTGGATCACGGAAATTCCGGCAATGCTTTCTTCCAACTTGGTGTTGATCAAAGAGTTGCGGGCCCGGTATTCGTGGTAGATTTTGGAGTTGACCCGGTTATAAAGCCAGATTGCCCCAACGATAAGTGGAATAAAGGCCGTCACGATCCCCCCGGCCACCGGGTCAGCCATATACATAGCAATCAAGGCGGTTACCATGGAAACGATCCCTAACAGAAAGGCAGAGAAAACCTTCATAAAGTTGCCCAGGGTCATCGTGTCGTTGGTTACCCGGGACAAAATCGACCCGGCTGGAGTCTGGTCAAAATACCGCATCCCCAGGGTGTGAATTTTTGCATAAAGGACCCGGCGGACCTTTTCCAAGGCCTTTTCCCCGGCCAGGGCATAAAGGTATTCATAGGTAAATTGGCAGACCGCCTTAAATACCACGCCAATGCCGTAGATCAAGGCAACATAATAAACCGTGCTGAAGTCAACCTTGCCCGCCTTCAAATAGTGGTCCATGTAATACTGCAGCCAGGTCGGCAAGAGCATATTGATCGCGGAAACTGCCACCATCCCTAAGACGGCAGTCAGTAATTCCCCCTTGTAAAGCCAAACAAAGGTCCAGAGCCGCTTTAAAATCTGCCCCTGCTCTTTGGTCGAAATTGGCTGCTGCCAGACTGACTGGAAGTCCTCATTATTCATCGTCATCTTCACCTACCTTCTGGGCTAATTCCTGCCGCTGCCACATCTGGGCATACCAGCCCCCCTTGGCCAGCAATTCTTCATGCGTACCTCTTTCTGCCACCTGCCCGTCCTGCATGACCAGGATCAAGTCAGCATCCATTACGCTGCTTAAGCGGTGGGCAGCGATGACGGTAATTTTCTTTTCCCGTTCTTGCCGAAGCTTAGTCAAGATCGCCTTTTCAGTTTTGGCGTCAACAGCTGACAAAGCATCGTCCAAAATCAAGATTTCACTGTCATGAAGCAGGGCTCTGGCAATCGACATCCGCTGCTTTTGACCGCCCGACAGGGAAACCCCGTTTTCCCCGATCATGGTCTCATAGCCATTTGGAAAGGCCAGGATATCGTCGTGAATGGCGCTCTTTTTAGCCGCCGCTTCGACCTCTACCTGGCTGGCATCCGGCTTGGCAAAGGCAATATTGTCTCTGACCGACATGGAGAAAAGGAAGTTGTTTTGGGGAACGTAAGATATTTCTTTTAAGTAGACGTCCAGGGGAATCTGCCGGATGTCGTGGCCGGCAAAAGTGATCCGGCCCTTGTAGTTATCAAACTCCCGCATCAAAAGCTGAATAATGGTCGTCTTGCCTGAGCCAACCCGGCCAACCAGGCCGATAGTCTGCCCGTTTTTCAAGTCAAAGTCCACTCCCCCCAAGGCAGCCTTGTCTGGTTCATCCGGGTAGGCAAAACTGGTCACGTGATAGCGCAAATCCCCAGTCAGCTTCTGCTCCTTGTCCATTGAATCTGAGTCCACGATCAAAGATTTTTCATTGAGCAGGCTCATAATCCGGTCGTAGCTGGCACTCCCCCGCTCAAGAACATTAAACAGGTAGCCAATGGCAAACATTGGCCAGACCATGGCCCCAATGTAGGACAGAAAGGAAATCAGCTGGCCCAGGCTGATCGATTTGCTGAGAACCAGCCGGCCACCGTAGATGATGGTAATGATGTAGGTAATCCCGATGATCATGGTAATCATTGGGTCGTAGAGTGAGTCGATCCGGAAGACCTTTTTATTGATATCTACCGTTTCATAGGTCATCTTGTTAAAAGCTGCCGCATCCTCCTTTCCCTGGCCAAAAGTCTTCAAGACCTTAATCCCAGACAAGGATTCCTGAGTCTTGTTGTTCAAGCGGGAAAAGGCCGCCTGCGAATCCATATAGGCGTCATGCAGGCGATCACCCAGGTAGCGGGCACAGAAGGCCAAAAGGGGCAGCGGCAGCATGGCCGCCAGGGTCAAGCGCCAGTCTACCAGGATCATCATGGCCAGCAAGGTGGTCCCCCCGGTAAAAATCGCGTCGATCAAAGTCAAGATCCCGTCACCTGCTACGTTCTGCACGGCCTGGACGTCATTGGTTGCCCGGGCCATCAAGTCCCCGGTACGGTAGCGCTGAAAGAAGGTCCGGTCCATCTGCATAAAATGCCAGAAGAGCCGGCCGCGGAGTTCTTTTTCCAAAATCGCCGCTCCGCCGTAAATCTGCTTGCGCCAGAAATAGCGGCAGACATAAAGGGCCAAAGCCGCCAGCAAAATTGCCAGAACATAGCTAAAAAATTGCTGCCAGCTGATTTTCCCCGTATCCAGCTGGTCAGCCATCATGCCCAGGATCCGCGGCGAGACCAGGTTGGCTGCCGAAGTCAGGACTAAGGCCGTGATCCCTAAGGCGTAGCGCTTGCGGTGGGCTTTAAAGAACCAGCCCAGCTTGCTGAAAGTATCCATTTTTTCTCCCTCTTTTATTTCGGTTTTATCTTTTTTTCCTTCTTTTCTAATCCCCCTAGCCCGAAAAAAAGAGCGCCAGGATTCCCCTAGCGCTCTATGGCTGACTAGACTAGTTCTTGGCTGCCTGGTGCTTGATCATGTTCATCACTTGGTTGACCTTCTTGGCTGAAGGCTTCTGGCCCATTTGTGACATCATGGTTTCAACCATTTCCCGGGTAATCGGGGGATTCTTCTTAAAGTAGTTCTTCATGTAAGTCCGGGCACCGTAAAAACCAGCAACCGCACCCAGAAGAGCTGCCAAAATAATCAAGAAAATCGCCAAACCTAAATTCATTGTCGCTAAACCTCCATTGGTCTTAATTTGTTATCCGCCTCAGCGGAGATGCATTCGTTAGTCACACAAATACTATCTTACAAAACTTCAGACCAATTTTAAAGGATAAATCTTATCTGAGAACCTTTTTCTTCTGAATTTGCTTGGCTTTATCCGGCGTAACGTCCTTGCCTTGATCGTCAACAATTACCAGGCTGTCCAGCTGCTGCTTGAAACCTGCCCGGAAGTTGGCGATAAACTGCTTGTGCAGTTCTTTGCGTTCAGCCTCTTCAGCCTCCGTCAAGCCGCTTTCCTGCTTCTTCTTGTATAATTCATTGATTCTTTTTCTGACTTGATCTGCTTCTGTCATATATATATCCGCCTTTCTAGTGATAAGAATAGTGTACTCGCTTTGCAAAAATAAAAAAAGTTTTAAGCCCAGAACGCCCGTTTGCAAACTTCCCGAATATTTGCTAAAATAAATAATAATCGACAATAAGATTTTTGACGAAGGAAAAGTAACTATGGCAACTCACGACTCAAAACAATTAGAAATTCTGCAATACATCTACGATACCGTTGAAAACCGTGGCTTCCCGCCGACGGTCCGGGAAATCTGCGCGGCAGTTGGCCTGTCTTCAACCTCCACTGTCCATGGCCATTTGACCAGACTGGAGCGCAAGGGCTACCTCATCAAGGACGCCACCAAGCCCCGGGCTTTGGAAATCACCCACGCCGGCCTTGACGCCTTGGGCATCAAGCCTAAAGACATTCCAGTCATCGGGGTTGTTACCGCCGGCCAGCCGATACTGGCTGTCCAGGACGTGGAAGATTACTTCCCGCTTCCACCGAACCTGGCCAGTGATGCCGGTGAGCTCTTCATGCTCCGGGTACACGGCACCTCAATGATCAATGCCGGTATCTTGAACGGGGACTATGTCATCGTCCGCAAGCAGACCACGGCCCAGAACGGGGAAATCGTGGTCGCCATGACTGATGACGGGGAAGCAACAGTCAAGCGCTTCTTTAAAGAAGACCTCCACTACCGCCTGCAGCCGGAAAATGATGCCATGGATCCAATTATCTTGAACCATGTACAAATTTTGGGCAAGGTCGTCGGTCTTTACAGAACAAATATTGATTAATACAGTTTTGCCGGTCAGCAAGCTCGATTAGCTCATATTTTTTGAAAATATGTTTTGTTTTATGCAAAGCATCTTTTCCCTTTTAACCGTTTTCTGAAAGCGGTTGACATTTTCATAGCGCTTTCTATTGCTATTTTCCTAAAACTCCGTTAATCTAATAACTATTCGACAAATTATTAGTTAAAGGAGTTTTCAATTAATGAATATCATCATTGCCTTACTGCCAGCCATCGGCTGGGGGGTTATGCCTTGGATCGTCAACAAGGTGCCAAACAGCAAGCCGGCCAACCAGATCTTCGGCGTTGGCATGGGGGCGACTATTGTCGGCATCATCGTGACTTTAATCCAGCATCCGGCCATTTCCATGCCAGTTTTCTTCCTGTCCCTTCTGTCCGGTGCTTTATCGACGATCGGTCAAATCGGCCAGTTCATCTCCTTCACCCGGATCGGGGTCAGCAAGACCATGCCGTTCTCAACTGGCCTGCAGCTGGTCGGCAATACCATCATCGGGGCTTTGATCTTTGGTGAATGGAAGACCAGCAACAACTTTATCTTCGGGATCATTGCCCTGGTCATCATCATGGTCGGCGTCATCTTGACCGCCTACACTGAAAAGGGCAACGGCTTCACTCAGAAGACCACCAACAAGGACATCCTCTTCCTGGTCTTGACCACGATCGGCTACCTGGCCTACTCTGCCTTCCCGAAGACGATTACGGCAGACGCTGAATCCATGTTCCTGCCACAAACCCTGGGGATCCTGCTGGGGTCTGTGATCTACCTGGCCTTCAGCGGCAACAAGGCTGCCTTCAAGGAAAAGGCCAGCTACCTTGACCTCTTTGCCGGCATCAGCTTCGGGATTGCAGCTTACGCCTACATCATCTCCGCTCAAGTCAACGGGGTGACCAACGCCTTCATCTACGGCCAACTGAGCGTAATCATCTCCACTATCGGCGGGATGACTCTGCTGGGCGAACGCAAGCAAGGCAAGGAACTGGTCGCAACGCTTGCCGGCCTCTGCTTGATCGTTGTCGGCGCTATCCTTTAAATCTAAATCAAAATACTAAAATACAAATAATTTACGTGCTAGCTAAAAAGCTAGGAGCAGATGCTCCTAGCTTTTTACTTTTTGTATTAGTTTTTCCGTCTTATTGAATCTTAACCTTCTGGCTTTCTGCATGTTTGACGTCAAAGCCGGAGACCTTGCCGAACCACTTCTTGACCAGCTGGTCATATTTTCCGTTGGCCCGCAGCTGCTTTAAGGCCTGATTGATCGCCTGGCGCATTTCGGTCTGGCCCTTTTCAACCCCGATGCCGTATGGCTCCTCAGCTAAAGAGGCCTTGGTCAAGGTGAATTCCGGGGTATCAGCGATCAAACCAGCCAAAATCCCGTTGTCGTCGATCATGACATCCCCTTGCCCGGCCTTTAAGGCGTTGAAGGCTGACCCGTAGTCGTCAAACTGCTTGACGCTGGCCTTTGAAGCCAGCTTAGCCACCTGGTTGGCCACGTCGGTCCCCTTGATGGCAATAACCACGACTCCCTTTTTATTCAAGTCAGCAATGCTTCTGATCTTGCTGGACTTCTTAACGATCATGGATTCGTTGGCGTTAAAGTAAACGTCAGAGAAGTCGATCACCTTCATCCGCTCCTTGGTGATGGTCATGGTTGAAATGACGGCGTCCAGGGAGCCGTTGTGCAAAAGGGTGATCCGGGTCTTTTCCGTGATCGGCCGGAAGACAGCCTTGCTTTTAGGGCCAAGGATCTGCTTGGTGATGGCCGTAGCCAGATCAATTTCAAAACCTTCGATCTTGCCGGTCTTGATGTTGGTCAAGCCGAACAGCTTGGTATCTGGCCGGACCCCCCAGGTTATCTGCTTAGACTGCTTGGCCCGGGCATAGCTGCTCTCCTGCTTGCTGGAACAGGCAGTTAGGCTGGTCGCTAGCAAAAGCAGCAGACTGCAGGCCAATGCCTGGATGATTCTCTTGATTGTTTGCGGCTGTCTTTTCATGTTTTTCATGTTTTTCATATTTTTCATCTTGCTATCATATCGGATCTATAAAATATTATACCCGATATTTTAGAAAGTTTCTTTTATTTATAATGAAAGTCTCTTTTTCTTGCTTTATTAAGTAGAACTAGGCTTATTCTTTACGAAATTAGTTTTTTCCAAAAATAAAGCCTTTTCCCAGAACTTTTCTCCATGAAAAAATTTAGATTAAAATCAGCCGTAGTCGACATTTTTCATGGCTGACCACTGCTTGCCCAGGCTTTGCCCGGCAATTTCAAAGGCCAAAAGTTGCTTCAAGTCAGCAAATTTTTCCACCTTCATCTGCCCGCTCTTCTCCAAGCGCCAGGTGAGCTGCCGGTAGACCTTTCGTTCACTGGACTGGACCAGGCTGTACTGGCGGCCGGCTAAAGAAAACTTAATGTCGCAGCCGTCTTTAATCGCCTGGACAAATTCCTCCAGGCTGTCAAACTGCACACTCCAGACAGCTACCTCGCTCATCTGGGGCCAGCAGTCAGCCAGGGACTGACCGCCTATCTGGCAGGTCAGAAATTCCTCCGTATTGGCAAAAAACTGCTGCTCTTCAGGCAAATCACAGTTGATCAAGGTCTTGCTGGCCGGGGTCAAAGGATTGCCATCATCAACTAACAGCCACTGCTGGCCGTTTAACTTAAAATGTATCTCATCGCTGTCATCAGCGGCTGTTTCTAATTCTTGAAAACTGGAAATCGGACGCTTGCTTACTGACATAAATGTCCTTTCTAAAAAATCGAGATTTGATTATTAGACATTATTATACATCTTTTTTAAGCCATTTGTCTCGTAATCTCTCCGATTGCCCGCCGCATTTCAGTCAAATCCAGGACACTATAGGCAAATTCTTTTCTGACCAGGTCGTCTGGCAGGTATTCATCATACTTGTCAAAAACCGGCACTTCCTTTGGATAGAGCAAGTCCAAAGGGTCAAAGTCTTTAGCGGCTTCTTCAGTCAGAATCTGGTAAAAGTCTCCTTCACTGACATCCATGCTGAACTGGATGTAGTATGGCCGGACTGAGTCAATATTCTTAAACCCTAAACGGCTGGCACATTTCAGGCGCAAGAAACGCTCTAGGGCCAGAAAAGCATAAGAACCCGTCCAAGGGAAAAGGCAGTAGGTCTTAGCCCCCAGGTTAATCAGCTGCTTATCTGGCAGGCCAGCGGCTTCCGCCATTGCTCTCGTTTCACTCAAGCGGGCAGCCGCGTTTTTCATCAAGTAAGGATACTGCCTCTTTTCTGCCAGAATTTGCCGCATCTGCTGGAGGACTTTGGGATGGATATCACCGGCTACATCCCCAAAATATGCTGGGATCTGGCCTTTAACCTGGTGGACGTAGACCTGCCGGCGGCGGCGGTCGATTTCTTCAACCACCCAGACATGGCCGGCGATGGCGATTTTTTCACCCAAGGGCGGGGGCTTAACGATCGTCCCCAGTTCTTCTGACTCAGCGTGGACGCTGTATTCCTCGTTTTCCTGGAAAACTGCGTAAAACTTGAAATTGTTGGTCACCCGCTCGCCGGCTAGGCCGACGATCAAGCCGCCATTTTCCGTCAGCTGGATCTGATCGGTCTTGATCAAGTGGCGGAGCAAAACTCTATAGTCATCCTGGCTGACCCAGCGGAAGTACGACAGGGTCAAAACCCGGGAAGCAAGTTCTGCCGGGCTCATCTCCCCGCCGGCCATCAAAGTAGACATGGTCTGGTGGTAAAGGAGGCTGTATGGCAATTGGTGGTCTCTTGGCGGTTCAACCCAGCACTCTTGTAAATACAGCTCAACTAAGGCAATCCCCTGCAGAAGCGACCAAGGAAGCAAAACTGGCAGCATGTCCCGGCTTTCAGCCTGTTCTTCGCGCATGACAAACCACATTTCTGCCGGATTGCCCCGCCGGCCAGTCCGCCCCATCCGCTGCAAAAAGCCGGAAACGGTAAAGGGCGCTTCAATTTGAAAGGCCCGCTCCAGCTGGCCGACGTCAATGCCCAGTTCTAATGTAGCCGTCGCGCAGGTCGTAATATTGGCATCTTCGTCTTTCATGATAGCCTCTGCCCCCTGCCTAAGGGCCGCGGACAGGTTGCCGTGGTGGATCATGAAGCGGTCTGGTTCATGCTTATATTCGCAATATTGCCTTAGAACCTGGCAGACAGCTTCACATTCTTCCCGGCTGTTAGTAAAGACCAGGCACTTTTTGCCCCTGGTATGGTCAAAAATATAGGCCAGGCCCGGGTCAGCTAATTCTGGTGCCTGATCGCTGGCTTGATCCAAAACAGCCTGGGCCAGCAAGGCAGAATGGTCGCCAGCCTGGTCACCGCTTTTATAGAAATGCTCCATTGACAAGTGCCAGCGCTGTGGCCGGCTTTTTACCTTAGGAATCCTGGTCTGATGGCCCGATCCGTCCCCTAAAAACTGCCCAGCCGCTTTCGGGTCCCCGATCGTAGCTGACAGGCCGATCCGGCGGGGTTTAACACCAGCCAACCGGTTTAAGCGCTCTAAGAGGCAGAAGGTCTGCCCGCCCCGGTCGCTTCTTAAAAAGGAGTGCAACTCGTCGATGACAACATAGCGCAGATCACCAAATAAGCGGGGAATATCCGCGTGCTTGTTGATAATCAAGCTCTCTAAGGATTCCGGCGTTATCTGCAGGACCCCCTGGGGCCTTTTAAACATTTTCCGCTTTTGAGCAGCCGAAACATCCCCATGATAGCGCCAAACCGGGACATCACTGCCTTCACAGATGTCTTTAAGCCGGTCATACTGGTCATTGATCAAGGCCTTTAAAGGGGCAATATAGAGGCAGGCAATAGAGTCAGCCGGATTTTCCGCCAAATCTGTCAAGATGGGAAAAAAGGCTGCTTCGGTTTTCCCGGAAGCAGTCGAAGCCGACAAAAGCAAATTGTCGTCAGTATCAAAAATCACCTGGGCCGCAGCTGTCTGCAAAGGCCGCAGGGTCTCCCAACCCCGGGAATAGATATAGTCCTGGATGAAGGGAGCATAGCGGGAAAAAGTATCCATAAAAAACTTCCCTAATTAAAACTTAAATCGTAAATTCCGCAAAGTCGCTGGTCTTTTCATCAGACACGGCGTCTGACTTAGTGTAGGCAAAGTCCCCGTCTGTCAAAAGACTCTGCACGGTCTGACCAGGATTTTGCAAGACAATGTCCAGCAGCTCGATAAAGTCCCGGATGATTTCTCTTGGGGTGATCATGCTGCTCGTACCAACTCTGGCATATTCAATCTTGATAAAGTCAGCCAGGTCCTTTTCGCTGATCGTCCGCTCATAGCCATAAAGGCTGGCATGCATGTCGGCCAGTTTCTCCGTTAAAACCAACATTTCTTCTGCCGTCAAGGGTTCCAGGCGGATCACGGGAGCATACAGGTCCCGCTGCCCTTCCTTGGCAAACTTGCCTTCGGCCAGGCGGGACCTGAGGGCTTCGTAAGAGTAAACGCCCCGCCGCCGGTCTTCGACTGCCTGGGGCGTGGCCCCCATAATAATGCCTAGGTACTTGGCCTTGCCCTGCATGGCGTCATTGTACATGCTGAGCAGCTTTTCATAGTTGTACTGGCGGGAGATGGCGTTAGGAATCTTGTAGAGGTTGACTAATTCATCGACCATGATAAACATGCCGCTGTAGCCGGCCTGGCGGAAGAAGACGGCAAAAAGCTTCAAGTATTCATACCAGTCTTCCTCAGAAATAATGATATTGACGCCCAGATCCTGCTTGGCTTCTGTTTTCAGCCGGTATTCCCCTCTAAACCACTTAACCACCTTACCCTTGGTATCCTCGTCGCCGGCCAGGTAGGCATGGTAGTAGCGCTCTAACAGCTGAGCAAAGTCATAGCCGTGCACCATTTCGCTCAAAGAGGAAATCTGTCTGACGATCTTTTGGTCAACGGCTGTCTGAAAGCCGGGGTCATCAAAAGGAATTTCACTGGCTACTGCCGTCTGGACATTGTTGATCCAGCGGTCCAGGACTAAAGTTAAGGCTCCGCCTTCCGGCCGGGTCTTGGTGGCCAGGTTCTGGATCAGTTCCCGGTAGGTGGCCAGGCCCTGCCCCTTGCTGCCCTGCAGGCGGCGTTCCGGGGACAGGTCGGCATCTAAGACTATAAAATTTCTGTCCATCACATAGTTGCGGATGGTCTGCAACAAAAAACTCTTGCCTGACCCGTACCGGCCCACAACAAAGCGGAAGGAGGCCCCGCCTTTTTTGACTAAGTCAACGTCGTGTAAAAGGGCCTCGATTTCCGCCTTCCGGCCCACCGTGATATATGGCAGGCCGATCCGGGGCACAACCCCGCCTTTAAGTGAACTGATAACCGTTTGGGCAATCCGCTTGGGAATCCGTTTCTTTTGCTCCACTATTTCTCCTCAATTCCTAATAAGTCAGCGAGATCGCTCCGATAATCTTCCACGATTTCTGCCTTCTGGCCATCGCAATCGATTACGGCATCGCCGATTTCGTCAAAAATTTTCTCATTAATCTGGTCCACGACCACGCTTAAGAGCAGGTGCCGCTGGAGTAAAAAGTCCTGGTAGGGCTGGCCGGAAAAAAGAGCCAAAAGCAGCTGCTCTTCATTCTCGTCTAAGCCCAGGCCGCTGGCAGCCGTTTCATCAATGTCCTTCGTCATCTTTTCTTCTGTAGCAGAAGACTCAGATACTTGCTTATTACTCTCGCTAGTGATTCTCTCAGCTTCTTCGGCCTCCAGCTGCCGCTCTTCTTCAGTCAGCAGGCTTTCCTTGGTTTCAGCCGCGTCGGACCGGATCTGGTCCAAGCTGGCTAGGTTGATCTTAACCTTTGGCCGGGCCCTTTCTATCAGAATTTCCTGGTAGTCAGCAATTCCTTGCACGATTGCCTGCTTAAAAGCGGGAGGAAGGTCTTTTTCTTTTAAGGCCCGCCCCTGCTTAAAGGCCTGCCGGCTCAAGCGGTCAAATTCATGCATGAAATTGGCCAAAAGCTGTCTCTGCCGGCCGGAAGGCCAGTAGACTTCATTACTCCACTGCCCGCCCTGGCAGCGGTAGACAAGGCCTGGCCCTAAAATGAGCTCAGCGTCTTTGACCGGATCAAGGCTGAAGAAAACCGTATCAGCAAACATTTCTACCGGCAAGGTCGTTTTTTCCCCGACCAAAAGCTTAAGCAGCTGGTAAGGATTTAGGCGGACTTCCTGCCAGACCTGGGCCAGAAGCTCATAAAACTTCTCCGGCTCCTTTTTCAGCAAAGGATTGTTCTTGGGCAAATAAGAAGACAAGCAGCAGATGGCCTGATAGAGTTCCTGTCCGCTCGCTTCACCAGACAGAAGATTATGATAAACTTCCCCCCGCATCAGCTCATCTGCAAAATCCGGCCGGATTTCCTCAAGAGCAAAACCGTAATAAACCAGGTAGTTCTGCAGGATGTGCTTTTCCTGCCAGCTAGTGGAAATATCCTTTTGCTCCACGCACTTGGCAAAAAGAAGGCGGAGCTGACGGAGGCCATCGGCTTTATCCTTAACCCCGATCTGGCAGACTAATTCACTGGCCAGCAAATAGACATAGGCAGCCGGAGCTGGCTTGTACTTGCCCTGCCGGAACTTGGTCCGCCAGGAAAAATAGGACCGCAACTGGTCGACGGTCAGATCATGGTAGACTGGTCGCTGCTTGTTAATTGGGACCATTTGGGCAAAGTCATCTTCATAATTAGCCATCAGCATCCCCTGCCGGTAAAAATTGCTCTCCCGCCGGGGTACTGCCAAATAGTCGTAACTCTCCTGCATCTGCCTAATCCCTTCCGGGATCACGGGCTGGCCTTTTTCAGCCAGCAGGCGGTCAAAGTCGCTGTCTTTAAAAAAGGCTGGCCGCTTAGGAATTACTTCTTCTTGGAAGTCTTCTCCCTCATCATCCAGCAGGTAGATTTCATGCTCTTGCCTATCTTCTGCCGTATTTTTCGCTGCTTCCAAGGGCCGGGAGCTCTGATAGGCAGAATCCAGGGTCTTGTAAAAAAAGCGGTCGTTTAAGGCAGGATTATCTAAATCAACCCTGATCCAGGCCAGGTCCTGCATGAAGACGGCTGGTCCAAAAGCCGGCTGGGCAACCAAAAACTTAGCCAAGGACCCGGCTTTCAGTTCAACCGTTTCGCGGCCGTCCTTCTTAAGGAGCAAGGCGAAACTTTCATTTGCTCCCGGGACCGTGACGGCGGCCAGGGTTTGCCCGGCCAAGTCGACATAGCTGGCCTCAATACCATATTTGCTTTGAATGTAGTCGGCTACTTCCGCCAGATGCATGCCTGCCCCTCCTTGCTGTTTCTATCATAATTATAGCACGATTTTTCGAACGTTAGTTCCAAAACGCGTAAAAATAAAATCTTCCCAAAGGGGAAGATTTCAAGAAAACAAAATTCACTTAAACTATTATTTCTATTTTTCCAGGGCCGCTGCCTGGTCAGCGGAAATTTCCACCTTCCGGTTCAAAGCCGGACTGACAATCTGCTTGCCGCTGGCCGTCTGCTGCTTAAGGTAGCTGATGAAGGTTTCCGTGTCAGTCCCGGTCAAGATGCCCACCTTTTTGCCAGCAGTGAACTGAGTAAAGTGGTCACCGCCGCCAGCGATAAATTCGTTGGCGACAACCCGGTAAGTCTTGGTCAAGGAGAGTTCAGTCTTCTCGCCTTCACCGACATAAACCTTGACGATCTTGACCTTGCCGGCCGCGTCCTTGGTGTAGACATAGTGCAGACCGCTGACCAGGAGGTAGTAGTGGTCATATTGCTGGTTAAGGGCAGCTAAAATCTGCTTCCCGGTCATGGTCAGAACCTGCAGGCTGTTGCCAAAAGGCTGAACGGCCATGGCCGCCCCGTAAGTAATTGATTTATCACTGCCCACAGCCAGGCCGGACCGGACCCCGCCCCCGTTAGTCATGGCAAAGTCAGCCTTGAAGCCCTGCCGGTTGGCTTCTGACAATTGCGCGTCAACGACCAAGTCGCCAACCGCGTTTTCATTGGAAGCATTGTTGTTTTCCCGGCCAGTGATTGTTTCCGCCTTTTGGGCCGTAGCAATCTTTTGCTTGGTGATGGCTGAAACCCGCTTGTCAGCGTCAGCCACAATCTTGGCAACTGTCTTGTTATCCTTGGTCTTCGGGTCATCAGCAGCTGACAGGACTGGGTAGACATGAGAAACCAGGCTGCCCTTGACGAAATCCTTGGTCTTTGGACTGATGTAGCCGATTGAGTCAGTGTAGGCCTGGCCATACTTCAAAGCTTGAACCAGCCGGGTCTTGCCGACCTTGGCGTTGGCATACTGGTGAGAGTGGCCGGCGATCATCAAGTCAACGGTGTTTTTCGGATCGATCTTGTTCAGCTTCTTTAAGATCTTCACGCTGTCACCGCTAGTGGTCAGCTTGCCCTTACTGTCCGCCACCGTTTCAACCCCCTTGTGGGCCAAAACAACGATAGCCTTAACGCCCTTCTTGCGCAGAACCTTTTCATACTTGGCAATGGTCTTGGCTTCATCCAGGTACTTGAAGGCAGAGTAGTTTTTCTTAGTCGTCAAAGTTGGCATTTCCGTGGTCAAAATGCCGATAAAGCCGACCTTGGCCTTCTTCTTGCCCGCTTTTACGGCCTTGATGGTATAAGGCTTCCAGCCATATGGTACCTTACCGGTGGACTTTCTGACAACGTTGGCTACGATTAGCTTGATGCCTGACTTTTGGTGGGGGTAGGCCATTTCAGCGGAATTGTACTTCTTAGTTGGCTTTTTGCCTAAAAGAATCCGGTTGAATTCGCCCAATCCCTCGTCAAATTCATGGTTGCCCAAAGTGCCGATGGTAAACTTCATGGCCTTTAAGGCGTGCATGGTTGATTCATCTTGCAAAAGAGAAGAATTGGCCGGAGATGCCCCCACTATGTCCCCTGACTCGACTCTGAAGGTCGTGCCTTGCTTGTTTTTCTTCTTAAAATCCTTTTGGGCCTGGTCCAAGTAAGCGGCCAGCCGGGCCACCGTACCGGCATTACTGTAGCTCTTTTGCCCCAAGGTCGCCGTACCAGTCGTCGACAGGTTGCCGTGCAAATCGTTAATGCTCAAAAACTGCACCGGAATATCCCTGCTGTACTTCTTGGGATTCTTCCAGTCCTTGCTTTGGGCCGGCTTGATGGCAGTATCAGCCTTGCTGGTAACTTCTAATTTGCTGGCGCTAGCCTGGCCCGGTGCTAAAACGGCCACGGCCAAAAGCAGAGCCGCAAGTTCTTTCTTGATGGATCTAGCCATGTTTTCCTCCGTGAATTACTCAATATTAAACAACAGTATACTGCTAGTATAGCATAAAATGCAGCTAGTTAACAGAGAAAGTTCGGCTGTAAAAGACAAACAATTACTTTTTCCAATATATCAAGCAATAGTCTTAGTAAAACACGGATTATTTTTAAGGAAAAACTATAATTAGTCAGAAAAAAGTGTTTTGCTTCTTAGGATTTTTTGGCAAAAATAAAACTGCCTTGCAAAATGCAAAGCAGTTTCAGATTCGTTGTCAGAATTAACGACGACGTTCTGTGATACGAGCAGCCTTACCGCTACGAGTCCGCAGGTAGTAAAGCTTAGCACGACGCACGCGGCCGTGACGAATAACTTCAACCTTGGCAACACGTGGAGTGTTAACTGGGAAAGTCCGTTCAACGCCAACACCGGAAGCGATCTTACGAACAGTGTAAGTAGCACCGATGCCAGTGCCCCTCTTCTTGATTACGACACCTTCGAAGATCTGGATACGTTCGTGAGTACCTTCAACAACACGTACGTGAACACGAACAGTGTCCCCGGCACGGAATTCAGGCATGTCGTCACGAAGTTGTTCTTTAGTCAATTCTTGAATTAATGGATCCATTATTATTTCTCCTTCTACGGCATTCATCAACCTCTCTGGGCCAGCGGAACACCCATAATCTTTATTGGCAAAATACCACGTCTAATAGAATACCATCTTTAGCCAGGCAAAGCAAGCTTCTTTAGTCCAAAATCTTGAGCAAGTCTTCCTTTTGCAGGCTGGCGCTGGAAACAGACTCTGCCGTCAAGATGCCTTGCGCCAGCAGGCTCTTAGCTTCCTGCAAGTCCAAAATAGCTTCCTCAACCGTATCCTTGGCAATCAGCTTGTAGACCGTTACCTTCTTTTCCTGGCCGATCCGGTGGGCCCGGTCAGTTGCCTGGTTCTGGGCCGCCACGTTCCACCATGGGTCATAGTGAATGACGGTATCCGCCCCGGTCAAGTTAAGGCCCGTCCCTCCGGCCTTAAGGGAAATCAAGAAGACCTTAGCCGGACTGTCTTTATGGTTGAAGACGTTGACTAAAGTCAGCCGTCTGGCTTTAGGGGTTTGGCCATCGATCCGTAAAAAGCCGATTTCCTCTGCCTTTAGGCTTTCTTCCAGCAGGTCCAGCATGCTGGTAAACTGGGAGAAAAGCAGGACCTTGTGGCCCTCGTCAATCGCGCTCTTGATCAAATCCACGCAGGCCAGGCGCTTTTCAGATTCGCCCTTGTAGTCTTCATAAAGCAGGCCCGGGTCGCAGCAGATTTCCCTGATCCTGGTTAGCGCCGCCAGAATCTCTATCTGCTCGCGCTTGATACCTTCATCGTCCTCAGCCATAACCTTATTTTTCAAGCGGGCAATTTCAGCGTCATAGAGCCTTCTCTGTTCCTTGCCCACGCCGACATAGCGGACTTCCTCCAGCTTGTCCGGCAGGTCCTTGAGAACGTCTTTTTCAAGCGGCGGAGGATAAAGGGACCGACCATCTGACTGAGCCGGTTCAAGCAGTCCTGGTCGTCTTCCTTAACGATCGGACTTTCAAAATCCTTCTTAAATTCCCGGTAACTCTTTAAAAAGCCCGGCATGACGAAGTTAAAAATACTCCAGAGCTCACTTAAGCGGTTTTCAATCGGCGTCCCGGTCAAGGCAAAGCGGTGTTTGGCCTTAACCACGGAAACCGACTTAGCCGCGGCTGTCCGCGGATTTTTGATCATCTGCGCCTCATCGATAACTTCATAGGCAAAAGTATGCGGCTCATAGTTGGCAATATCGCGCTTAAGCAGGTCATAAAACGTGATTACAACGTCAATATCAGTCAAGTCTGCCAATTGCCCGCTTCGTTCTTTCTTAGAGCCAGACAAAACCAGCGTCTTCATTTCCGGGGCAAACTTTTTAAACTCAGCTTCCCAGTTAAGAACGAGAGAGGCCGGAGCCACGATCAAGCTCGGCTGGTCCTTTTGACTGGCCAGGAGGCTGATCACCTGCAAGGTCTTGCCCAGACCCATTTCATCCGCCAGAATCCCGCCAAAGCCATGCTGGGCCAGCCGGTTCATCCAGGCAGTCCCGGTCTTTTGATAAGGCCGGAGGATCTTCTCCAGGCCGGTTGGCAGTTTTAGCGGCGCTTCTTTTTGGTCAAAGTCAGCAAGCAATTGCTGGAAGTGGTCGTATCTTTCAATTTCGCCCATCTCCTGCTCTTTTAAGAGCTGGTCGACGTAAAGGGCCCGGTAGGCCGGCATTTCCAGCTGTTCTTTGCTAAAATCCTTAGCGGTTAAATCTAAGTTTTTAGCTAAAAGGGCCAGCTTTTCCAAGTCCTGGCTGGCTGGATTAAGGAGGCTGCCGTTCTTCAAGCGGATATACTTCTTCCGGTCCTTGTACTGGCTGAAGACCTCCGCTAATTCTTCTGGCGTAAGCTTGCTTTTCAGATCCAGACGCAAAAGCCCGTCACTTAAGGAAAGGCCAAAAGCCAGATTCAGCCTGTCTTTAAACTTGAGCTTTTTAAAGGCTGGAGTAACTTCAACTTCATCAAAGGCGGCGAAGCAATTTCGCCATCCCTTCCAAAAGCTGGTATACCGCTTCGTCATCCACTTTATCCAAGCGGCAGTCGCCATCTTCCAGGTCAAAAAAATTCTCCAGCTGGGCCAAAAGCTTCACGTCCTCTAAGGCATCCTGGTCGAATTCTTCCAGCATCTCTGCCCTGGCCAGGGCACGGTCTGCCTGGTAGTCAGTTACTTCACCCAGGTTTTCCCGCATGATCATCAAGACCAGCTTCTGCAGGAGGGCAATTTCATGCCGGCAAGGGCCGGTAATTTCGTGTTGCTTGCATTCCGCAATATTGCACTTCAGCTCGCTTACTTGCTTAAGGCCAACTTTAACGTTGACCTTGTTCCCGTTCCCGCGGTTGGCGAAATGGCTGAAGCCGGTAGCCGTTAACAGGGGCTGCTTATCATTAGCCTGGCTGTCATCCAGGTTAACGGCTACCAAATAGGCTAGGGCCGGATTATCCCAGATCCGCTCCCAAAGGACCGGGTCAAAGTCAACCGATGCAAGAATCTTGCCAGGATCAAAAATATAGTTGACATATTTTCTGCCAAGGCCGTAGACCTTTTCAATGATCTCTTCCTGCCGCTTTTGCGGTCGCTTGCAGGCAATTCGCTGGTCAAGGGTTCTTGAATGGCCTGCATCCCTTCAATAAAAAGCTCCGTGGCGTACAAGCAGGCTGCCTCGTGCTTGCAGTTGTAGCCTTCAGCCGCGTAAGGGCAGTCACAGTCCATCCACTTGATCTCGCTCCAGTCATCAGAGAAGTCAATCGTTACGTCATAGCTTTGCCCGGGCTTACCAACCCGGCAGTGGATGCCGGCTGGCAATTCACTGTAGCTGGGCGCGTAGACCCAGTCCTTTTTCCAGTAGTCCCTTCCCCGGTCCAGGATCCGGTTGGAAAAAAGCTTTCTCCATTGCAGGGTCATCTAATTCCCCTTTTCTATAGCTTGTCTTCTTCAGCCTGCTCGTCTTCTCTGATCTGCCGCAGCATTCTGACCTCTTCCGGGGTCAAGTCCCGCTTCTCCAGCAGGTCCGGCCGGTGCAGCTTGGTGGCCTTTAAAGCCTGGTAGTGCCGCCATTCATCGATCTTGCCATGGTTGCCTGAAAGGAGGACTTCCGGCACCTTTTGCCCCTCAAAATCGGCTGGCCGGGTGTATTGCGGATATTCCAAAAGGCCGTCTGAGAAGGATTCTTCAACTGTAGACAGGGCATTGCCCAGAATCCCTGGCAGAAGGCGGACAGTGGCATCGATCATGCTCATGGTCGGCAGTTCCCCACCAGTCAAAACGTAGTCACCGATTGAGACCATTTCGTCAGCCAGGTCGTAAACCCGCTGGTCAAAGCCTTCAAAGTGGCCGCAAATGAAGGTCAGGTTTTCTTCCTTGGACCATTCCTGAGCCATCTGTTCATTGAAGGTCTTCCCCTGGGGAGCCGTAATGATGACCTTGCCCTTATTTTCCAGTGAATCAAGGGCATCCTTGATCGGCTTGACCTGGAGAACCATCCCGGCCCCGCCCCCATAAGGAGTATCGTCGACTGACTTGTGCGGCCGGTCAGAAAAATCGCGGAAGTTGACCAGGTTCAGCTTCCACTTGCCATCTTCCTGGCCCCGGCCCAGCAGGGAAACCTGCAAGGGGGTAAACATTTCAGGAAACAGGGTCAATACGTTGATGTTCACTATCTCAAGCCCTCCATTAATTCAACCCGGACTTCTTTTTTATCAATATCCACGCTCTTAACGACCTGCGGGATGTATGGGAGCCAGAAGCTCTTGCCGTTTTTGTCAGTTACTTCCCAGATGTCATTGGCGCCTGGCGCTTCGATATCAGTCAATTCGCCGATTTCTTCCCCGCTTTCATCGTCCAGGACCTTGCAGCCCAAGAGCTCCCGGTAGTAGTAGACCCCGTCAGGCAGTTCCCCCTGGTCTTCTTCGCTGATCAAGATTTCCGTCCCCTTCAGCTTTTCCGCCTGGTCAATATCAGTGATTTCCGCAAAAGTTACCAGCCAGAACTGCTTAAAGGGCCGGCCAGCAGCTACCGTCACTTCCCGGCTATCGTCGCCCAGGTAAAGGCGGGAACCAGCTCTGAAGCGGTCTTCTGGAAAGTCGGTGGTCAAAGCGACCTTGACTTCACCCTTTAAGCCATGGGTCGCGATGATTTTGCCAACATTGTAGTAATTCATGGTGTATATTTTTCCTTTTCAACAAAAAAAGTTTGAAGCTAGTGCCCCAAACCTTTTCCAATTATTTGTTGTACTTTTCGTCGTGCAACTTAGCCATCAAGCCAGCGCTTGAAAGAAATGAACGAACAGTGTCTGAAGGTTGTGCACCCTTCTTCAGCCATTCAAAGATCTTGTCTTCATCAAGCTTCAATTCCTTTGGTTGTGAAACTGGGTTGTAGTAACCAACTTCTTCGATGAAGCGGCCATCACGAGGTGCACGTGAATCTGCTACAACAATCCGGTAAAATGGCTTTCTCTTGGCACCCATACGGCGCATACGAATCTTAACTGACATTAATTAGTCCTCCTAAATTTCAATAGTTATACTATAACACCCAAAAAACAGCCTGTAAAGTATTTTTACTTAACAGCCTGCTCTTTTTTAAAAATTATGAGTGGAAGCGCTTGACCTTCTTCATTTTCTTGGCCTTCTTCTTCTTGAAGCTCTTCCCCATCCGCCGCATGGCCATCTTGGCCATCGGGCTGTTCATGCCAGGCAATTTCTCCAAGTCCTTGAAGTTCCCCTTGGTCACCTTGGACATCATGTCCTTGGCCGTCTTGAACTCCTTGATCATCCGGTTGACTTCTACAATCGGTACGCCTGACCCGGCCGCGATCCGCCGGCGCCGGCTCGGGTTAAGCAGGCTTTCGTCTTCTCTTTCGGCTGGCGTCATGGAGTAGACGATGGCCTTGGTGTGGGCGATCTGCTTCTCATCGATTGAGAAGTTCTTCAATTGCGGGTTATTGGCCATACCGGGAATCATCTTCATGATTTCATCCAGCGGCCCCATCTTTTGCACCTGTTCCAGCTGGTCGATAAAGTCGTTGAAGTCAAAAGTGTTTTCCCGCATCTTCTGGGCAACTTTTTCCGCCTGCTTGGCATCGTAGTCCTGTTGGGCCTTTTCGATCAAGGTCAGCATGTCCCCCATGCCCAGGATCCTGGAAGCCATCCGGTCCGGGTGGAAGACTTCCAGGTCGGTCAGCTTTTCCCCTTGCCCAGTGAAGAGGATTGGCTTGCCGGTGATGGCTCTGATAGACAAGGCGGCCCCGCCCCGGGTGTCACCGTCCAGCTTGGTCAAGATGACCCCAGTCACGTCCAGGCGTTCATTGAAGGTCTTGGCCACGTCAGCAGCGACTTGCCCAGTCATGGCGTCAACTACCAAGAGGATGTTGTCCGGCTGGCTGACCGCCTTGACTTCTTCCAGTTCCTTCATCAAAGGTTCGTCGATTTCCAGCCGGCCGGCCGTGTCGATGATCACGTAGTCGTTTCTGTGGACGGCGGCTTCTGCCAGACCGTCTTCTACAATCTTGGCCACGCTCTTTTCTTCCGGGTCGCTGTAAACCGGGACCTTTAAGTCCGCCCCGATTTGCTTGAGCTGGTCAATGGCCGCTGGCCGGTAGATGTCGCCGGCAATCAAAAATGGCCGGGCTTTTTCTTCCTTCATCAAGCGGTAGGCTAATTTGCCGACCGTAGTGGTCTTACCAGTACCTTGCAGACCGACCATCATGATAACAGTTGGGATGTGCGGGGACTTAGTCAAGCCGACCGCTTCTTCACCCATCATCTTGGTCAGTTCTTCATTGACGATCTTGATGACCTGCTGGCCTGGAGTCAGTGATTCCTGCACTTCCTGGCCCAGGGCCCGCTTTTTGATGGTCTTGATAAAGTCCTTGACCACCTTGAAGTTGACGTCGGCTTCAAGCAGGGCCAGGCGGATTTCCCGGGAGGCGGCGTTGATGTCTTCTTCAGAGATCTTCCCCTTCCCGGTCAAGTTGCGCAGGGCCTTCTGCAAACGTTCGCTTAAATTTTCAAATGCCATCTTATTCTCCTCTAATTATCTGCAACAAGTCTTCCATCTGCAATTTGGCCGTTTCCTGGTCACCGGCGGCCAGGCTGGCTAAGGCCTGGCTGATGCCTTCTTCCAATTGGCTGTAACTGGCCAGCAGCCGCAGCTTGTCTTCGTATTTTTCCAAAGACTTGGCGCTGCGCCGCAAATTGTCATAGACCGCTTGTCTTGAAACATGCCGGTTGTCGGCAATTTCGCCTAAAGACAAGTCGTTGTAGTAATAATCTTCAAAATAATCCTGCTGGCCATGGGTGAGCAAGGCGCTGTACATGGCGTACAGGTCACCCAAAGCTTCATTTTTGCTCAATTCATCCATCTTTTTCACCTGGTTACCAGTATAGCAAAAAGCACTGCAAGTGCAGTACTTTTTAGAGATTTTTATCCATATTAAAAGTCAGCTTGGACAGCTTGATGGCTTCCTTAAAGAGCTGGCCCCAAAGCTTTTCGCTTTCCTGGCGGCAGTGGGCCACCGTTTCCTGGTTAGCCTTGGTCAAAAAGGCGGTCAGTTCTTCGCCAGTGAGGCCTTGGGCCTGGTCGGTTACTTCGGCCACCCGGGCGCGGAAATAGCGGTTCAGCTCAGTCAAATAGGTCGCGTCCATTTGGACGAAGTGGGAGTAGTGGCTTTCCACCAGAGCCGCTAAAGACTTGTAGAACCACCAAGCGTCAGACTGCCGGTATTCCAGGGAAGCTTCGTTATAAGAAGGGTCAGTGTCGTTCATATTGGTAAAGAAAGGCACGAACGGAGTGAAAGTCGGTCCCCCGATGCAGAGCCACATGATCCCGGCAACGCCAGCTACTTGGTCATTTCTGACTTCCAGAATATGGGCGTTTTGCGTCCGGTTAAGGCCGATTGGCCGGTAGCGGTGGTGTTCTTCATCGCTGCCCTTGACGGCAAATGGGTCGTAGACCGTGGCCTGGTAGTGAGAACCCAGAATGTATTCGATGTCTTACTTGCTGATCTTCTTTTCTGCCCGGCGGATGAATGGCAGGTCAGGGTCTTCCGGGTCCTGGTCGATGCTTGGGTTCAAGATCTTTTGCCCATACCAGACACGGGAAGTGTTGTAGTGGCGGTCCTGTTCAGTGAAGGTGCCGAAGATATGGCGGAAGTTCCAGCCTTCCAGGTCAGGGTTGAGCTTGTTTTTGGCAACAAAGTCCTGGATCCCTGCACTCCACATGAAGTCATCACTAGTAAAGTCAACTTCCTGGATGGAGACCCGGTTGGCGGCGATGGCATAAGCATCGTCGGGGATTCTTTGAGCGACCCAGTGGTGGCCGGTCACGATTTCCATGTACCAAATTTCATCCTTGTCAGAAAAAAGGACTGAGTTCCCGGCAGCTGACCCGTACTTGGCGATCAAGGCGCCCAGGCGCTTAACCCCGCCTCTGGCAGAGTCAATATAAGGCAAGACGACATTGACCATGCAATCCTCGTCTAAACCGTCAACCACTAAGGGGTCAAAGGCCAGAGTGCGTTCATGCCGTAAGTTGACTCAGTAGCCGACATGGCCACGTTCTTTTCGTTAATGCCGCTTTCTTCATAGTAGCCGTACTTCTTGTAGTCGACATTAGGCACAGCCGGGTAGCGGTAGGCGTCTTCCGGCAAGTCCATTTCGAACTTGTTCAGCCAGGACTTGATCTTGCGCCCCTTTTCCCCGTGAACTGCCGGGTTAACGACAAACTTTTGCTGGTTTAAGGGAGAAAAGGTGTCGTCATGCGGGCAATCAGGTTATTGCCGTCCATGGCCGCTTTTTTGCCGACTAAAATCGAAGTACATGCATCATCTTTCATTTTTCTTTTTAACCTTCTAATCTAACTTTGCTCTTCTTTTTTAAAACTACAGCAGGTCGTGGAAGAGGCCGACGGCATAGTTGGCAGCGTCAAAGTCGGCCAGGTCTTCTGCCTTTTCGCCCAGGCCAACCAATTTGACTGGCAACTTCATTTCGTGGCGGATGGACAGAACCACCCCACCCTTGGAGGACCCGTCCAGCTTGGTTAAGACTAAACCAGACAGCTTGGTCGTCTTGTCAAAGTCCTTGGCCTGCAGGAGGGCGTTTTGGCCAGTTGACCCGTCCAGAACCAGGAGGGTTTCAGCCGGCTGATCTGGCAGGCGCTTCTTGATGGTCCGCTGGATTTTTTCCAACTCGTTCATCAAATTGACCTTGTTTTGCAAACGGCCGGCCGTGTCAACCAAGAGATAGTCTGCTTCTTCCGCGATCGCCCGCTCTAAGCCGTCGTAGACCACGGCAGCCGGGTCAGCCTTGTCTGGGCCAGTTACGACTGGAACACCGGTCCGCTTGCCCCATTCAACCAGCTGCTCAACCGCGCCGGCTCTGAAAGTGTCGGCAGCGACTAACAGGACCTTCTTGCCCTGGTCGTGGAAACGCTTGGCCAATTTGCCAACCGTAGTGGTCTTGCCGGCCCCATTGACGCCGACGAAGAGGTAGACATTTGGCTTGGCGTTTGGATCGTAGGCCAGCTTTTCGTTTTCGCTGTTGGCATTTTCGTCATAGACTTCCACTAGCTTTTGAACAATGACCCGCTTTAAGTCATCCCGGCTCTTGGCCTTTTGCAGCTTGGCTTCTTCTCTGAGCTGGTCAGTCAGTTCTTCACTGGTCTCATAGCCAACGTCAGATTCAATAAGCAATTCTTCCAAGTCGTCAAAGAAGTCTTCGTCAACCGTTCTGAATTTGGCCAAAAAGGCATTGAGGCGGGCACCAAAGCCCTTGTTGGACTTCTCCAGCCCCTTTTCATAGATCTCGGTTGTCTTTTCTTCTGTACTTTCTTCTACTGGTTCAGTGGTCTCTTCTTCAGCTTCAGTCTTTTCTTCTGCTTCTTCAGTAGTTTCTGTTTCTTCTGCAGTTTCAGTAGTTTCTGTTTTTTCTTCTACATCTTCTGTAGCTTCAGTAGATTCTTCTGTTTCTTCTGTAACTTCAGCAGATTCTTCTTCAGCTGCTTCAGTAGATTCTTCATCAGCGGTTTCTTCTTGCTCTTCAGCCTTTTCTGCTACCGCTTCTTCAGAAGTTTCAGTAGTCTCTGCAACTGCCTCATTTTCTGTTTCAGTATTTTCTTCTGTGGCTTCTTCCTGGTCAGCCTTGACTTCTTCTGGCTTTTCTTCGTCTTTTTGGCCGAACAGGCTCTTTTTGATTCGATCAAATAATCCCACGGTTATACCTCATCTTTTAAATCTTTCAAGGAGACCGACAAAATCTGGGATACCCCGGATTCCTGCATGACCACCCCGTAGAGCTGGTCGGCTTGTTCCATGGTCCCCCGCCGGTGCGTAATCACGATAAACTGGGTCTGGCTGTCATATTGGCGCAGAAAACGGGCAAAGCGGGCGACATTGGCATCGTCCAGGGCCGCTTCCACTTCATCCAGCACGCAGAATGGCACTGGGTTGACTTCCAGCATGGCAAAGAGCAAGGTGATCGCCGTCAGCGACCGCTCCCCGCCGGACAGAAGGCTCAAGCGCTGCAGTTTCTTGCCAGGCGGCTGGGCGATGATTTCCACCCCGCTCTCCAGCAAATTGTCCGGATCCGTCAAGGTAAAGCGGGCATTGCCCCCGCCAAAGACCACCGGGAAAAGGCGGCTGAAAGAGGCCGAAATCTGCTGGAAGGTCTGACCGAAGCGGCCCTTGACTTCCTGGTCCAATTCATCCATCGACTGCTGCAGGTTGCTTCTTGCTTCCAGCAGGTCGTTCTGCTGCCCGTTCAAGAAGTCATAGCGGTCCTTGACTTCCTTATATTCGTCAATCGCGCCCAAGTTGACCGGGCCGATGTCTTCCAAAGACATCCGGTGCAGCTTGACGCTGCGGCGCAGGTTCTGCTGGTTTTCTTCCGTATTTTCCAGCTTGGCCTGGGAAAGCGCGGCTTCATAAGTCAAAGAGTAGTCTTCTCTTAAACTGTCCAGGTGCTGCTTGAGCTGGCCTTTAACCGTGGCCAGCTTGACTGATAACTCTTCTTGTTCACTAGCCGCGTCTTTTCGCAAGTCATAGTTTCTTGTCGCCACGGCTTCCAGCTGGTTGATTTGCCCGTTTAGCTGGCCCAAAAGCTGGCTGGCTGCATCCAGGTCAGCCTGCTTGTCTTTTTGCTCAGCCAGGAGCCGGTCTTTCTCCAGGCCCAGCTCCTCTTTCTTTCTGGCTGACAATTGACTGGAATTGTCCAAAGCAGCCAGTTTTTCTTCCAGCTGCCCGATCTGTTTCTGGATAGCCGCCTTTTGCCGGCCGAGCTCAGCCTTTCTGGCTTGCAGGTTTTCCTGCTTGTTGGCTAAAACCGCCAATTGCGGGTCAAGCTCAGCCAATTTTTCTTGCACGCCCTGGTTTAAATCAGTGTAGTTCTGAATGGTCTCTTGCAGGCTGGCCAGGTCGCGTTTTTGCTGGTCGGCCAAAGCGGCCAGCTCTTCCTTCTTAATCTTTTGGGCCTTTTCTTTGTCAGTCAAATCTGCCAGGTAGGCAGCTTGTTCAGCCTGCTGGGCCTGGTAGAGCTGAACGGCGCTTTCCAGGCGCTTGACTTCTTTTTCCTGGCTTTGGAAGGTCAAGACTGCCGCGCTCAAGTCCTGCTGCAGGCTCTGCAGGTCCCGACTGATTTGCTCCCGGTTCTCCTGCTTGTCTTTAACTTGCTTGTCTAAGCCTGCCAGCTTTTCTTCTTTGATATGGAACTGTCTTTCTAATTCCTCCAGCATGGCGGTCGTCTTGTTGATTTCAGCCGTTGTCTGCAAAGGGGAATTATTCCGCTGGTTGCGGGCCCCGCCAGTCATGGCCCCGCCGGGACTGATGACATCCCCGTCCAGGGTAACGACCCGGTAGTGGCCGATCTGCCTAGAGACAGCCAGGGCCGTGTCCATATTGTCAACGATAATGATGCTGCCCAGCAGGTACTGGATAGCTTCTGAAATGTCAGTATCACCCTTAGCCTCAACCAATTCGCTGGCCAGGCCTTGGAAGCCGGCAAAGCGTTCCAGAGCCTGCCGGGTTGAAGCGGGAATTGCCCGGTATCTTAATGCATCCAGGGGCAAAAAAGTTGCCCGGCCCAGTCTTCTGACTTTCAACTGCTGGATGGCATCTTTAGCCGCCATCCGGTCTTTAGCTACCAGACTTTGAACGTTGCCGCCAAGGGCAGTCGTCATGGCTGCTTCCAGGTCAGCCGGGAAGGTTAAAAGCTCCCCAACTGCCCCGATAATGCCCGGGAAGCGGTCTGGCTGGTTTAAAACCTGTTTGACCCCCGCATAGTAGCCATCATGCCGCTTCTGGATATTGACCAGGGCATCCCGGCGGGCAGTCAGCCGCTGGAGGTTGGTCAAATCTGCCTGCAGCTGCTTTTGGGCAACCTGCTGTTCGGCAGCTAATTTCCCTAATTGGTCGCTGGCTTCCTTTAATTCCGCCTGCAGCTGGTCATTTTCTGCCCGCAGCTTTTGCTCTTTCAACCGCAAGCCTTCCAGTTCTTCCTGGCTCTTGGCCAATTGGCTGGAGGCATCTTCATAGCGCTGGTCCTTGCTCTCTTTGGCCCGCTTGATTTCCCCTTCCAGGTAAACCAGCTGGTTGTTGACACTGGTTTGGTCCTGCAAGGTCTGAATGTATTGCGAGCGCAGGTCTTCTACTTTCAACTTGAGGCTGGCCGGGTCTTCTTTCAGCTGGTCGACCAGCTTTTGTCTTTTGCATTTCAGCTGATCCAATTGCCCGGCATATTCAGCTTCCTGGTCAGCCAATTTGCTGATTTCCGCATCCGTAGCCGCCAGATTTTCCTTTAAATCAGCCAGCTGTCTTTGGTATTCCAGCCTGGTTGCCTGGTCAAACTGCCGGGACTGCTGGGAAACCTGCAAGGAAGTGTTGATTTCTGAGAGCCGGTTGGTCAATTTAAGGACTTCCGCTTGCACCTGGTCCCGCTTTTGGCTTTCCAGCTGGAATTCCTGCCGCTTGGCTGCCAGCTTGGCCTGGGACTGCTTGACTTCCGCGTCCAGCCGGCTTAGAAGTTCCTGGCTCTTGGCCAATTTCTGGGAAACTTCCCTTTCTTCCTGGTCCAAGTCGGCGATTTCAAAGGCCAGCAGGGTCTTCAAGTCCTCATCAAGGGCGGCTTTTTGGAATTGGTATTCCTGGGCCAAGGAGCTCTGTTCATGCAGGGGCTCCAGCCGCTTCTCCAGCTCGTTGACCAGGTCGTTGATCCGGATCAGGTTGTCATTGGTCGTCTCCAGCTGCCTTTGAGCCTGCTGCTTTTGCTGCTTAAAGTGGAGCACCCCGGCTGCTTCTTCGAAAATTCCCCGTCTTTCCCGGGCCTGGGAATTGAGGATCTGGTCCACCCGCCCCTGGGAAATAATAGCCAGGCTGTTTTGGGAAATGCCTGAATCCAGAAAGAGCGCCCGGACATCCCGCAGACGGACCGGCTGCTGGTTGATCAAGTATTCATTGTCGCCGGACTTTAAGATCCGCCTGGTAATTGAGACTTGGTCAGCTGAAAAATCCAGTTCCCGGTCTCGGTTGTCGAAAACCATGGTCACTTCTGCCCGGTTTAAGGGCTTGCGGAACTGGCTCCCGGCAAAAATCACGTCTTTCATGTTGCGGCCACGCAAGGATTTAGCACTGCCTTCCCCCATGACCCAGCGAATGGCTTCAGTAATGTTGCTCTTGCCTGACCCGTTAGGGCCGACAATGCCGGTAATCCCTTTAGTAAAGTCAATCACCGTCTTGTCTGCAAAAGACTTGAAGCCTTCCAAAATCAAACTAGTTAAAGGCACTATTTTCCTCCATTCAAGTGCTCCAAGGCGTGGCTGGCCGCGTCCTGCTCAGCCTTCTTCTTGTTGCGTCCTTCCCCGCTAGCTAGCTTCTTTCCGTCGACCAGAACTTCAACTTCAAAGTGGGGCGGCTGCTGGCTCTCATTCAACACCCGGTATTCGATGGTCACGCTGCCGTTTTGCTGCAAAAGTTCCTGCAGGTCCGTCTTAAAGTCCCGGGACGGGGTAAAGTAGCCAGCCGCGATTAAAGGATAAACGGTCTGGCTAAGGAACTTTTCGACAGCTTCAATCCCCTGGTCTAAGAACAAGGCACCGTTGAAGGCTTCGAAGACGTCTTCCAAAAGGGCCTTGCGCTTGCGGCCGCCAGCTTTTTCCTCGCCAACGCCCAGGTTGATTTCTTCTTTAAAGCCGCAGTCCAGGGCCACTTTTGAGAAGCCTTCAGTGCGGACGATATTTGATCTCAATCTGGTCAGTTCCCCTTCATTTAAGTGCTGGAAGTGGCGGTAAAGGTAGTCAGAGACTGTGAATTCCAATACCGCGTCTCCCAGAAATTCCAACTTTTCATAATTCCCAAAAGTTTTGCCGGGATTTTCATTGACATAGGAGGAATGGGTAAAGGCTTCCTCCAGCAAGCGGACATCCTTGAAGCGAATCCCGTATTTTTCATCCAGCATTTTAATAAATTTAGTTGAGACCATGAACTATACATCCTTTCATAACACTAAGAATTATATCAAAAGCCCGACATAAGGGCGGCTTTTTTACCTAAATCCAAGAAAAAACTCTGCCTTGTCCGGCAAATGGACAAAACAGAGTCGCAGATTATTTTTTATAGCCGATTTTATACCATAATGGATGGCTGTTGTTCATTTCTGCCGGTTCATAAGAGAGGTTGACCAGCTGCTTGTTGATGGCTGTAATCTTGTAGGAACTGGTCAAAGGAATTACAAAGGCTTGCTCTTTCATGTACCTTTGCCACTTTTTGAAGACCTTGATCCGGTAGTTGATGTTAAAGGCGGCATCTGAGTCCATCGCTTCCAAAAGCCGGGTATTGATCTTGGTAGCAAAACGCTCCAGGTTGTACTGGGTCCCCGCCCCGTAGATGCCATTTTGGGAAGGCTCATTGTTTAAAGTCCAGCCGGCGATGAACATGTCGACCTGGCTGTCATCTTGGAAGAGCAGGTTGTAAAAAGTATTGAATTCCAGCAGGTGGCCAGTGGTCAGTTTGACGTTTAAGCCAATTTCTTTCCACTTCTTAATGTAGTTGTTGATGATCTTGCTTTGGCTGGCGTCACCGGTCATGGCGGCCAGGTGGATCACCAGCTTATGCCCCTGCGGGTCCCGCCGGTATTTTTCCCCCGGCCGGAGCTTGTAGCCTGCCTTGTCCAAAAGCTTTTTCGCCTTAGCTGGGTTATAAGGATAACCCTTGCTCTTATCATCGTAGTAGTCGCCAAATTGCAACGGGATCAAGCTCTTGATGCGGAAGGTCAAGCCAGACGTATACTTGCGCTGGATCTGGGTGACGTTCATTGCGTAGCCAATAGCCTGTCTCAGAGACTTATTGGCCATCTTGGAATTCTTATTCATCTTGACTGAGTTGGTCTTCTCGTCCCACTTCCCCAGCTTGAAGCCCAGATAGTTGTAGCTCAAAGGAATCGTGGCCACGAACTTGTAGTTTTTGGTAGTCCTGATCTGCTGCCACTGGGAGTTAACAACTTCGATGATGTCGTAAGTTCTTTCTTTAATGGCCGTGGAGACCGACTTTGGCGAAATAATGGAGATGGTGATCTTGCTCAAGCTCGGCGTCCCCCGCCAGTAGTATTCATTGCGGGTCCAAACCACCTTCTGACCCGCTTCAATGCTCTGGACCTTGTAAGGTCCAAAGTAGAGGGGCTTTTTGCGGATTTCGATGCAGGTTCTCAGCTTGCTGAAAGGCACATTCTTAAGATAGTGATATGGCAGGGCAGATTCCCAGAAGTAGCCGTTACCGGACTTCAGCATCCCCGGGTGCATTTCTTTAAAGTGAATCACGACCTTGCGGCCATTTTCCCCATCCGGCATTTCGATCCCGCTGATCGTCTTGGCTTTCCCGTCATGGTATTCCTTCAAGCCCACCACATCCTGCAGGGAAGAAGTATAGTGAGAACTTTTTGTAGCCTTGTTGGCAATTACTTCATAGGCATATTCCACGTCTTTAGCCACGATCTGCTTGCCGTCAGACCACTTGACCCCTTTTTTAATATTAATGGTGATCTGCTTGGCCTGCCGGTCCAGGCTGAAGCTTGCCGCCCCGCTGTCTGTGATATTGTAGCTGTTGTCCGTGTCAAATAAAAATTCAGAGCCAAACTGGACCAAAGTGGCATCAGTTGTTGAATCAGCCAGTTCATCAGAAAAAATCCCCGTGAAAGGAGTATCAGTTTCTAAGGCTACCTTGATGCTGCCGCCCTTTTTCGTCTTGGCAAAACTAGTAGCCACTGGGAACTGCATGGCATCTTCTGCCCCGCTGTTGCCATTTTGCTTGCTTTTCTCCGGCTTTTGCCCGCAGGCCGCCAGACTTAGGGCCACTAGCAGGCAAAGCGTTATTTTCGTTAGTCTTTTCATCAATCAAGAGTCCTTTTGCTAAATTGCTACATAATGTAGTTTACCATAACAAAAGCGGCAAGACCGGGCCCTAAGCCGGGAGAACAGAAAAAAGAGGAGGGAAAACCTCCTCTTTTGAGAAATTATTTATTATCTTTTACTTCTTAAAGCCAGTTTCGTACCACAGGGTAGCTGCCTTTGATGGCTTAGTTGAGTAGTTGACCAGCTTGCTGTTAACCGCAGTGATCGAGTATGCGTTAGTCAAAGGAATTACAAAGGCTTCCTTTTGCATGTATTGTTGCCATTCGTGGAACTTTTGTACCCGGTAGCTGTGGTTAAAGGCCTTGTCACTGCCAATTTCCTTCAGCAGCTTAGTGTTTTCACTAGTTGCAAAACGGGTAAAGTTGTAAGGAGCCTTAGGACCATAGAGGTCATCTTGGGTAGGTTCACTGGACAGAGACCATGCGGCCATGAAGACGTCTACTGATGGGTCATCGTTTTGTACCTTGTCATAGAAGGAGTTTAATTCGATCAAACGGCCAGTGGTCAAAGTTACGTGCAGGCCGATCTTCTTCCATTGCTGGATGTAGTTTTGCACGATTGCTTCCTGGTTTGTAGACCCACTCATGGCTGCCAAGTGGATGGTTAACTTCTTGCCATTTGGATCCCGGCGGTAGGTTTCACCCTTCTTCTTCTTGTAGCCGGCCTTGTCCAACAAAGCGTTGGCCTTCTTGATGTTCAGTGGGAAGCCCTTCACGCTCTTGTCATAAAAGTCACCGAAGGCTTCTGGCACTAAAGTCTTAACTCTGAAAGACAAGCCTTGGGTGTAGTGCTGGGTTACTTCATCAACGTTCATGGCATAACCCATGGCTTGACGGAGATAGCGGTTGCTCATCTTAGAGTTCTTGTTCATCTTGACTGAGCCGGTCTTCTTGTCCCACTTGCCGACCTTGAAGCCCATGTATGAGTATGACAATGGAATTTGGGCAACGAAGTTATAGCCCTTAGTCCCCTTAACTTCCTTCCATTGGGAGTTAACAACGTTGATCATGTCAAACTTCTTGGACTTGATTGACTGGGAAGCTGAATTTGGTGAGATCACAGAGATGGTGATCTTGTCCAGCTTGGCCTTGCCACGGTAGTAGTAAGGGTTTCTTACCCAAGTAGCTGATTGGCCCCGGACCAGCTTGGAGAGCTTGTAAGGACCAAAGAAGAGTGGATTCTTCCGAACCTTGTCACTGGATTGCAACTTGCTGAACGGTACATCCTTCAAGTAGTGGTAAGGTACGGCACTTTCCCAGAAGAAGCCGTTACCGTATTGGGTCATGCCTGGTTTCATTTCCTTAAAGTGCAAAACCACCTTGCGCCCGTTTTCACCATCAGGCATTTCGATCCCGGAGATCTTCTTGGACTTGCCATCGTGGTATTCTGCCAAGCCGACGATGTCGGCAAGTGAGCTGGTGTAGCGGGATGACTGGCTGGCCTTGTTGGCGATGATTTCGTAAGAGTATTCAACGTCCTTGGCAGTTACCTGCTTGCCGTCAGACCACTTGACCCCCTTCTTAACTTCGATAGTGACCGTCTTGGCCTTCCGGTCCATCTTGAAGGTAGCGGCACCCTTGTTATTGATCTTGTATTGATCATCGGTTGCAAACAGAGCTTCATTCCCAAACTGCATAAAGTCACTGTCGTATTGGCCGTCAGAAAGTTCGTTCAAGAAAACACCCTTGACAGGAGTGTCAGATTCTTCTGCGATAGTGATGCTGCCGCCCTTCTTGGCAGTTGCAGTTGCCGTAGCTTCCGGGAATTTCTTGGCATCCTTAGCCCCGCTGTTGCTGGAGCTGGAGCTGCTCTTGCCGCAACCGGCCAGCAAAGCTGCCCCGGCCAGAAGTACTCCAAATGTTCCGAGCATTCTTCTCTTCATAATTTAATTTACCTCCACACAATATATTCAAAAGATAAAACACACAGCATATGAATAGTTATCGAGATAGCGATTCACAAAGTTTATCTTTCATGCCTTTTACTTTAACATTTTCATTTTTTTAAAGTCAATGAGAAATTTAATTTAATGCTAATTATTTTAGTTTTCTCTTTGCCGGGCGTCGCCAGCCTTTTGCAGGGCCTGGCCGACATAGTTGATGCTCAAGCAGATCACCAAAAGCAGGACAGTTGCCGGCAGCCAGAGCCACGGCCGGTCAATGATGTTAACCGGGTCATTGGCAAAACCAATCAAGGTCCCCAAAGATGGAATCTTGTTTGGCAAACCATAGCCGATGAAAGACAGGGCAGTTTCAATCCCGATGTTGCCGGAAACGCTCAAAACTACATCGATGATGATCATTGATGCAATATTTGGCAGAATTTCCCGGAACATGATCTTGGTATTTGAAGAGCCTGAAGTCTTAGACGCCAGAACATAGTCTCTTTCTCTTTGTGACAGAATGAATGACCGGTAGTATCTGGCTTCACCCGTCCAGCCGAACATCGAAATCAGCAGAACCAACGTCATGGCATTATAGTTTGGCAGAACCGTTACCAAAACGATCAAAATTGGCATTTGCGGCAAAATCTGCACGAAGTCGACGATTCTCATGATGATGGAGTCAGTAGTGCCGCCATAGTAGCCGGCTACAAGGCCGACTATTAAGCCAACTAGTTCACAGAAAAGAGTGACCAAGAGACCAATCATAATCGAGTTGCGCCCGCCCATGATCAACAGATTCAAAATATCCCGGCCACCGTCATCAGTTCCCAGCAAGTGGCCGTTTTGTCCCCAGCCGGCGTAGGATTCCAAAATGTGCATTTCAGTAACCTTGCTGCTGTCAAGGAATAAAGAACCGCCAAAGGTAAGTAGCAAAATAACGACAATGGTGCAAAAGGCTATAGTCGCAGCCTTGCTTTTAAAAATTTCTCTAAAAGTAATCTTTAAAGCGGATGGTGGAATTTGGGCCCGGTCATCCTGCTTCTTTTTTACCAACAGTAAATAAAGCCATCATTTCACCTCTACTTCACGCGAATTCTCGGGTCAACCAGACTCATGATAATGTCAGACAGCAGGTTGCCCAGCAGGGTCAAGGTCCCGTAAATCATAATCAAAGCCGTCAAAGTGGTATAGTCACGCTGGCTGATTGAGTCAAGGAAAAGCTTCCCCATCCCCGGGAAGGAGAAGACCGTTTCAATGATCAGTGACCCGCCAAGCAGACCGGTGATGGTGTTCCCCATAAAGGCAGCGATCGGGAGGAAAGAATTCCGCAAGATGTGCTTGTTGAAGACGACTTTTTCCGGCACGCCCTTGCTACGGGCAGTCTTAACATAGTCTTCCACCTTGTTGTCAATGATCCCGGTTCGCAGGTATTGCACTGTCCCAGTCGTGGCGATGATCGCAAAGAGAATTGCCGGCAAAATCATGTGCTGCAGGCGGCTAAAGAAAACTCCCCAGAAGCCACTGGCATTGGCGGCAACCGTCCCGCTGATCGGAAACCAGCCCAGAGTAAAGCCGAAAAGCCAAAGGCCCAGCAGGTAGAAGACAAAGCCTGGGATAGCATATGTCACGTAGTTAAAAATTGAGATTGCCCGGTCCTGCCATTCACCTTCATGCTTGCCGGCGCTGATCCCCATCGGGATAGCAATGCCGTAAAGAATGATGGTTGACAAAAGCGAAAGCCAGAAAGTGTTCTGGGCCCGGTCGGCAATCAAAGATGCTACTGGGACGTGCTGGATGTAGCTTTGCCCCAAATCACCATGCAAGAGGTTCTTAATCCAGCGTACGTATTGCACCGGTACCGGGTCATTCAAACCATATGCCTGCTTTAAGCGGGCAATTTCCTTAGGACTTGAGTTAGGGTTGATCAAACCGGTAAAGGGATCCCCTGGCATCATTTTGGCCAGCATGAAGACAATAATGCTAAGTAGGATCAATTGCGGGATCATGATCAAAACCCGTCTTAAGACTGTTTTCCACATTTGCTATTCTCCTCCCTTGATCTGCTCTTTAGGCAGGGCTACCTGGTGGTTGGGGCCAACCTCGGTCAATGGGTAGACCCGGCCATCTGCATCATACCAGTTTGCCTGGTCCTGCAAAAATTCCCGTTCGATTTCCCGCCGTCTGGCCGCGTGTTCCGCCCGGTGTTCAACATCAATCTTCGGAATCGCGGACAAGAGGCGCTTGGTATAAATGTGCTCCGGATTCTTGTAAATTTCTTCCTGGCTGCCCACTTCCACCAACCGGCCCCGGTGCATGATTGCCAGATTTTCTGACATGTGCTTGACCACGCCCAGGTCATGGGAAATGAACAAGAAGGCAATGTTGTACTGCTGTTGGATGTGCTTCATGAAGTTCAAAACCTGGGCTTGAACTGACAAGTCCAAAGCACTCGTTGGCTCATCGGCCACGATTAATTTCGGATTAGTGGCAACTGCCCGGGCAATCCCAATTCTCTGCCGCTGACCACCGGAAAATTCATGGGGAAACTTGTAAATCGCGTCACTTGGCATCCCGACGATGCTCAGCAGTTCCTGGACCCGGTCACGTTCCTGGTCAGTGGTCAAGTTTTCAAAGTTCCGGATCGGTTCTGCGATAATGTCTTCAATCCGCTTGCGGGGGTTAAGACTGGACATGGAGTCCTGGAAGATCATCTGCACGTCCTTGTTGTAGTTCATCTTCCGGCGGACGGATTCCTTGGTTATGTCTTCACCCTTGTAGAGAATCTGCCCGCTGGTCACCTTCTCCACGCCAACGATTGCCTTGCCAGTCGTGGACTTGCCGGAGCCTGATTCACCGATCAAGCCATAGGTTTCCCCTTCCTTGATTGAAAAAGAAACCCCGTCAACTGCCCGGACATAATCAGTAATTCTGTTCCAAAAGCCCGACCGGACTGGGTAGTGGACTTTCAGATCTTTAACTTGGATAATTTCTTCTGCCATACTTGCTACCTATCCTTCATCTTGAAAGTGGAAAGTCTTCCAGCAGGTGCAGCGGACAAAGTGATTTGGCTCAACTTCGTGCAGCTGCGGGTCTGCTTCATGCGCTTCAGCTGGAATCCAAGGAATTCTAGCCGCGAAGCGGTCGCCGGTCCGCGGCATGTTTTTAAGTGAAGGAACAGTTCCCTGGATTACATGCAGTTCATCCTTGTCATCATCTGACTGTGGAATGGAATTTAACAGTGACCGGGTGTACGGGTGCAAAGGATGAGTAAACAAAGTTTTCACATCAGCTTTCTCTACAATTTGCCCCGCATACATCACGGCAACTTCATCAGCCGTTTCCGCTACAACGCCCAAGTCGTGGGTGATCAAAATAATTCCAGAGTCTGATTCTTTCTGGATCTTCTTGAGCAGGTCCAGGATCTGGGCTTGAATGGTCACGTCCAAAGCAGTCGTTGGTTCGTCAGCAATGATAATTTCCGGCTTGCAGGCCACCGCCATCGCGATGACGACTCTTTGCCGCAAACCACCGGAAAGTTCATGCGGGTACATGTCATACATGGCTTCCGGCTTAGGCATCCCTACTTGATTGAAGAGTTCAATCACCCGGTCGCGGCGCTGCTGCTTGTTCATATCCGTATGGTAAAGCAAGGCTTCCGCTACCTGGTCCCCAACCTTCATCAAAGGGTTCAAACTGGCCATCGGGTCTTGAAAAATCATGCCAATATTGTTGCCGCGAACTTGGTTAAACAAATCCTCACTCAAATTGACCAAGTTCAGGTTCTTGTACCTAATTTCTCCTTCGACCCGGGTGTTTTTCCGGTCATACAGGCCAACGATGCTGGAGGCAATCGTACTCTTGCCGCAGCCGCTTTCGCCGACAATAGCCAAAACTTCGTTGCGCTTGAGAGTAAAACTGATGCCATCAGCCGCATCATAGAACTCGCCCTGCAAGCGGTAGCCGGTATGAAGCTTTTCGACGTCTAGTAAAACGTTTTGCTGATTATCCAACTTTTTTCTCCTTCAAAATAATTATTAATCAGTAAATAAATACCACACTAGTAGATTTTAACCTTTTTCAAATATTTTGCAACAGTTTCTTAATTATCTTCTAGTGCTTTTCAGTTATTTCTTCATCATTTCTGCCAATCCACATCATAATCATTAAATTATTGTTTGCTTTTTATCATATTTGCCGCCATTTCCTGGAAAGAGACCACAAAAAAAAGCATTTGCCGCAGATCTTTCTTTGGCAAATGCTAATTAAATATTAGTTGTTTGCATTTCGTTTTCAATGCACTTTAGCCTTGGTGGCTCTTGATGTAAGCTACCGCGTCAGCGACTGTGATAATCTTAGCAGCGTCTTCATCAGGAATTTCAGCGCCAAATTCGTCTTCCAGCTGCATGATGAATTCTACCAAGTCGATGGAGTCAGCGTTCAGATCCTTGGTAAAGTTAGTGTCCATAGTGATTTTGTCCTTGTCCAGCTGGAAGTTGTCAGCGATCAAAGTGGCAATCTTGTCAAAAATTTCTGCTTCAGTCATTATTCTTTCTCCTATAATTTCTAACTGCCCGCTTGCTTGGGCTATTTTCTTTTTCTTATCCTTACTTGCTGAATTCTTGCTTAAAGGTATTTGTTAAGTCTTCAGTCAAAATCTTGTCGATCTGCTTAACCGCGTAGTAGACGGCCCGGGCGTCTGACCGGCCATGCTGCTTGACGACTGGTGAGTTTAAGCCGAGCAAAACCGCCCCGCCATACTTGTCCTTGTCAAAGCGGCTGGCTACAGACTTCAAGGCGTCTTTAGCCAGCAGGGCCCCCAGCTTGGCCTTAACACCATTGTTCAAAAGGCCGTCTTTCAGCATGTGGATGATGACGCTGCCCGTTCCTTCGATGCTCTTTAAGACCGCGTTGCCGGTAAAACCGTCTGTGACCACAACGTCGGCCTTCCCTTGCAAGAGTTCGTGCCCTTCAATGTTGCCGGTGAAGTTCAGGGAGCTGTCCTGCAAGAGCTGGTAGACTTCCTTGTGCAGGTCGTCGCCCTTGTCAAATTCAGCCCCATTGTTTAAAAGAGCTACTCTCGGCTTGGAAACGCCACGGACCTTTTCCGCATAGTAGGAGGCCATTTCCGCCCATTGCAGCAGGTATTCCGGCTTGCTAGTAGCATTAGCGCCAACGTCAATGATGTTGAAGCCGTCATCTGAAGATTCAACTGGCATGGTCGGCATAAGGCCTGGCCGGGCCACGCCCTTGATCCGGCCGACAATGAAGATCCCGCAGGTTAACAGGGCCCCGGTATTGCCTAGTGACAGCAAAGCGTCTGCCTTGCCTTCCTTGACCCAGTTAGCTGCCACGACCATGGAAGAATCCTTCTTGGTCCGCATGGCCTTGACTGGCTCATCTTCATCAAGAATAACTTCCGTGGTGGCCACGATTTCGATCTGGTCATCGTCTGCTGGCAGCAGCTCTTTCATCTTGCCTTCATCGCCGAAGAAGATAAACTTGTCTTCCGGCAGTTCAGGCTTGGCCTTTAAAACTGCTTCTACAATCTCCTCAGGAGCGTTTTCCCCGCCCATGGCGTCAATCGCGATTTTTCTCATCAATAATCTCTTTTTCTATATTGGATTAGACTAAGCTCTCGCTTGTACAATTTTCTTATATTTTATCACAGCTTGCAGGTCTGCCAACTTTTCTGTTTTCAGGTCCGGATCAGCTTGGACGATCCGCTTGGCCTCATCCCTGGCTACCACCATGACCTGGTAATCGCTGACAACGCTGCCTGTCCTGAATTCCGGCAGGCCTGACTGAGCCTTGCCAAAGAGGTCACCCTCGCCCCGCATCTTGAGGTCTTCTTCAGCGAGCTTAAAGCCGTCGTTAGTTTCAGCAACGATCTTCATTCGCTGCTTGCCGGCTTCTGTCTTCGGGTCAGCTAAAAAGACGCAGTAGCTTTGCGTCTGCCCCCGGCCGATCCGGCCACGCAGCTGGTGGAGCTGGCTTAAGCCAAAGCGGTCAGCGTCAAAGATGACCATCAAGTTGGCATTGGCCACGTCAACGCCAACTTCAATCACGCTGGTAGTAACCAGAATATCGACCTCCCCTGCCGCAAAGCGGTCCATGATCTGCTCTTTGTCAGCTGCCGCCATTTTCCCATGCAAAAGGACAACTTCCTGGTCTGGAAATTCGCCGGCCAGCCTGTCGTGCAGGGCTTCAGCATTTTCCAGGTCAATCATTTCCGACTCACTGATCAAGGGCGTAACCGCATAAATCTGGAAGCCTTCCGCCAGTTGCTGGCGCATCAATGAATACACCTCATCTAGCTGGCTGCTGGTCTTCCAGTAGGATTTAATCGGCTTACGGCCGGCTGGCAGGTGTCTGATTTCTGACAAGGCGGTGTCGCCATAAACAGTCAAGGCCAATGACCGGGGAATCGGGGTGGCAGTCATGGCCAGGATATCCGGCCGGTCCCCCTTGTTGATCAAGGCCAGGCGCTGGACAACGCCAAAACGGTGCTGCTCGTCGATAATAACCAGGCCCAGCTTTTTAAAGGCTACTTGCTCTTGGATCAAGGCATGGGTGCCGATCACCACATTGATGCTGCCATCAGCCAGCTCCTTGTAGATTTCCCGCCGCTCCATGGTTTTAGTTGATCCCGTTAAGAGGGCCACCCGGACGCCGAAATCTTCCAGCATGGCGGAAATTTTGTGATAGTGCTGGTTGGCCAGAATTTCAGTTGGCACCATCAAGGCGGCCTGGTAGCCAGCTGTCACTGCCCCGTAAATGGCAAACACGGCCACTACGGTTTTCCCGGACCCAACGTCCCCCTGAAGAAGGCGCTGCATCTGCTGGTCAACAAACATATCGGCAAAAATCTCATTAATCACCTTTTTCTGGTCAGGAGACAGGGCAAAAGGCAGGGACTTGGTCAGCTTGCCGATTTCTTCCAGGTCGTAATGCTTGGCATAACCACTGTGGCTCTTATTTTGGCTGGACATCAAGGCCAGCTGCATTTGAAAGAGGAAGAATTCCCGGAAAACAGCGCTTCGGCGGGCCTCCTTAGCCTCAGCCAGGTCTTTAGGGTGGTGCATGGCGATGACCAGGTCCTGGTCAGCCATGAGCCGGTAGTGCTTCCGCAAGTCCTCTGGCACAGCATTGCCCATCTCATCCATGCTTTCGGCAATCGCCAGGTCGATCATGGTCTGCAGCTTCTTTTGCTTGATCTGCCGGTTGATTGAATAAATCGGCGCCATCCCGTCATCACTGTTTTTATTGGCTAAGAGCTTATAAGCTGACAGGCTCTGCTTTCTCAGGTCATATTTGCCATAGACGGCGATTTCCTGGCCCACGCTCAGCTGCTTGGTCAGCCATGGCTGGTTAAAAAAATTGACCATGATAATATCATGATCAATTCGCAGTTTGAAGCTGACCCGGCTCTTGTGGTAGCCAAAGTAATTCTGGTAGGGGTTGGTGGCCACGATCCCCTTCAGCATGACCTTCTGTCCGTCCTCCAGCTGGTCCAGCGGCAGATTCTCCAGTTCGTCATAGCGGTAAGGGAAGTAGAAGAGCAAGTCGTAGATGCTGTAAATGCCCAGCGACTGCAAAGCTTCTGCCGTCTTGGCCCCCACGCCCTTCAAGGCCGTCACCGGTCTGAAAATAGCTTCGTTTAAAGTCATTATTCTACAGAAATCAAGAAGTTGTAAACTGGCTGGCCACCGTCGTAAATTTCGAATTCGCAGTCATCATCTTCGTGAGCTGCTTCCAGGCGGTCAACAACTGCCTGGGCTTCTTCTTCAGTAGCATCGCTGCCGTACATTACAGTCACGATTTCAGAGTCTTCATCCAGCATCTTTTCTATCATAGCGACAGTTGCGACAATTGGGTCAACGTCGTCAACCACAATAGTGCCTTCAACGATACCAATGAAGTTGCCCTTGTGGATTTCAACGCCGTTGATTTCAGTGTCACGGGTTGCCCGGGTTACTTCACCGGACTTGACAGAGCCAAGTTCATCAGTCATGGCTTCAACGTTCGCGTCAACACTGGCTTCCGGGTTGAAGGCCAGCATAGCAGTTAAACCTTGCTGGATAGTCTTGGAAGGCACGATGCCGACTGGGATTTCAGCAACTTCAGCAGCCTGCTTGGCGGACATGATGATGTTGCCGTTGTTTGGCAGGATGATCGCCTGCTTGGCGCCAGACTTGGTGATGGCGTCCATGATGTCTTGAGTTGAAGGGTTCATGGTTTGCCCGCCGGAGATGATCCGGTTGACCCCTTCGCTTTCAAAGAGCTTGCGGACACCGTTGCCGGAAGCCACTGCGATCACTGCAAAGTCAACGCTTTCTTGTTGTTCTTGCTCGTTGTCAACGATCGTTTCGTGCTGAATCCGCATGTTGTCGATCTTGATCTTGCCCAATTGGCCGAATTGTGACCCGTAAAGGAAGACCTTGCCTGGGTATTCAGTGTGAACGTGAACCTTGGCGATTTCGCCGTCAGAAACTGCTAAGAGGGAGTCACCCAGTTCTGACAGGTAGCTTCTGAATTCTTCCAGGTCGAATGGCTTCTTGTTTGGCACGTCAGCCTTGAGGTCAACCATGATTTCAGTACAGTAGCCGTTGGCAATGTCGGAAGTTGCCAGTTGCCCTTGCACTGCCTGGTGGTGGGTAGCGTTGATCAAGGAGTTCATGTCGTCAGCATCTGGCACGTACTTGTCATCGAGGTTTTCACCCAAAAGGCCTTCCAGGAAGCCTTCATAGATGAAGACCAGACCTTGGCCGCCGGAGTCAACCACGCCGACTTGCTTAAGAACTGGCAGCAGGTCAGGAGTGCTCTTCAAAGCTTCCTTAGCGCCTTCAACGATCGCCTGCATTACTTCTTCTACATCATCGGTTTCATTTGCCTTGTTAGCACCTGCTTGAGCGCCAACCCGGGCCACAGTCAAGATGGTCCCCTCAACCGGCTTCATCACAGCCTTGTAGGCAGTAGCTACACCATTGCTAAAGGCATTTGCCAATTCCTGGGCGTTCAAAGTGGTCTTGCCTTGAGTTGCCTTGTAGAAGCCGCGGAAGAGCTGGGAGGTGATAACCCCACTGTTACCGCGCGCGCCCATCAGCATCCCCTTAGCCAGGCTTTCGGTCAAGTCGCCGACACTGCTGCTTGCGTTTTCGGAAACGGCCTTAGCCCCGCTTTCCATCGTGAGATTCATATTCGTGCCAGTGTCGCCGTCAGGAACTGGGAAAACATTTAGATCATTGACGAATTGCACGTTCTTGCTCATCCGGTGAGAGGCAATCCGCACCATGTCTCTAAATTCTTTACTGCTAATTTCACTTAAAACCAATATTGAATCCTCCACTTATCTAGTCGTCGAGAACCTTTACACCTTGAACAACGACGTTGACCGCCTTGGTGTCGATCCCCAGCTGGCTTCTTAAGTTATATTTGACACTGTCTTGTACATTACGACTTACTTCAGAAATTTTTAAGCCGTAGCCAACAATAATATAGACATCAACAGTTACTTGATTTTCGTCAGACTTAACAACGACACCGCGCTTGTAGTTTGCCCGGCTCAAAATGCTGTCGACTCCGTCTCTGATGGCATTCTTGGATGCCATACCGACAACGCCATAGTTAGACGTAGCTGCACCACCAACAACAGTTGCAATTACACCGTTTGAAATATCAATCAAACCATACTTTGTCTTGATTTTAACAGCCATGTTTATCCTCCGTCTTATTTCCAATATACATCCTTATTTTATCATAACGAGATCAAAAGCTAACAGTTCCAACTTTATTTTCTGGAAAATACTTTTCAAAATAATAATTGAAAAAGGTCAAACTTTATGGTAGAGTTTAATAGTGTGACATGACATGTAAAGGGGGTTTAGCAGCATGGCAAAAGATTTCGTAACCGGTAAGAAGACCACTTTTGGTAACACGCGTTCACACGCTTTGAACTCATCAAGTCGTTCTTGGAAGCCAAACCTTCAAAAAGTTCGCATTCTTGTAAACGGCAAGCCTAAGCGCGTTTGGGTTTCAACCAAGACTTTGAAGTCTGGTAAAGTTACCCGTGTCTAGTGACGAAACGAGCCCGGTAGATCAATGATCTGCCGGGTTTTATTTTGCTCTAGCAATGTGCATTAAAGTGATTTGTGCCGCAAATTGCAAGAATAAATTGAACACTTACCATAATATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACTTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTATACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATTCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTATCCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACATAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGTCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCCCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGCGCTTGCCCTTTTGGTGTTGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGAATAATATTAGTCAAAAAGAATCCACTACCAATGAGAACTAATATTATTCTTACCGTTCTTTTCTAAAGCACGAAGGGACTTATACGCACCAATAATACCTTCATCCAAGAAACCATAGCAAGATCTTAATTCAATCTTTTTCACGTCACTATTAACGTACTTCAGATTTTCGCCTGCTATTTTCTTTGCTGCGGATATTAAATTATCTAGCGCATCGTCCGATATGGTCAAGAGATACAGCCATGGTGCAAGTGCTTTAAGAATATAAACTGCTGAATAGAACACAAACATGTATACGACAACATGCATCAACATTGATAAAAAATATAGAAAATATAGCATATATTCTACCTCAAAGGAGAAATATAATGATAGGCAACATGTGGATTGCTCCACTAATCAAACAACAAAAAATAGACGGTGAAACTCAATACCTTTTCCAAGCAGGCAGCAAAATCACCGGTTTGACGTTCCCAACTTATTATACTATGGACGCATTGATATCCATATCTGAATTGGACTTGTCAGACCATAAAATCGAAATAAGACTAGACAAAGAGACTATCTCAGTAAACAATTTAAGCCAGAATGCGCTAACCGATGCAAACATACTTGATGGTTCTCTGACCATTGTAATTACACTAAGAAATTTTTTATTAAAAGAGTCTGGCATCAAAAAGTTTTCCCTTTATGTTGATGGCCAAGAAATGTCTGTGTTTCGGCTTAACTTTTCATCAACAAAATAATTTTGCAGCTACCACTTAGGGTAGATCCTAGGCAAGAAGATCCAGATGATCAGGTACGGCAAGCAGGTAAAACAAAAAAGCCCGCGCTGGCGGGCTGGAAAGGATAATGGTATGGAAAATGATTTTGACTGCGTAGTTTCGTTTGATAAAAACGATAATTTTTGGATTCTAAGAGCCAACGGAGGGAAGTATTTAGACGACTTCATAGACGACAATTATATTGGCATTCAGTATAACAAAGTGTCCGTTGCAGATCTGATGGATCTAGACCACAATCGAATAACCTCTGTTGAAAGTGTGAAAGACCTATATATTGAAAAATATGAGTTTGCGACAGGGTATAAAAATGATGATGAACTAGACACGTCTCAAAGGCAACGACTTACTACACACGCAAAACAAGCTTATTTGTTCACCTTTGAAATGAAGCCCGGTGATATAGTGTTAGTTCCAAGCAAGAAATCGCGAAAATTTGCCGTAGGAATCATTGAAGGAGAACCGTATGATGAATCTAAGGATTACATACAGAGTAGATTCGCAACTTCTAAACCAAATGGTAAGCAGTTTCTTATTTCAAACTACATAAAGAGGAGACATGTAACCTGGCATTCCTTTTTATTGCGCTCAGAGTTGCCGGCATTTCTTTCATGGATCATAAACTCACATCATGCATTGACAAAAATTGATTGCCAAACAGACGACAAAAGAATTCAGTTATTTTCACTATTAACGCCACTGTTTCAGTACAATGGAAAAACGTATTTAAAGCTCCATACGGGAAAAGGCGGGGATTTATCGATATCAGACTGGCGTAAGATTACTGAATGTACTAATGATATCGATAAAATCAGTATGAAAGCCGATGTGCATTCACCTGGATTTTTTACATTTGTTGTTAGCAACATTGACATAAACGCTTTGTCAAAATTTGTAGCAAACATTTTTGGATTAGACACTGCTCCTGTGACTTTAGCCGGTGCACTGTCCCTTGTCGCCATACTATTTTATGGTGGAAAAGATGTTTTTCTTCATGGCGTACACGGGGTTCATTTACAACACCAAAAAATAAATCAAGAAATTCAAGAGCAAAGAATAAAGAATGAAATAGCAAGACTAGCGCTAGAAAAGCAAAAAGATAGCTACAAAACTAAGACTTTAGCTGAAAAGCTTGAAATACAATTTACTGCAAATGGAACCGCAATCGAAAATGGACGTAATACCGGTGAAGAAACAGATGGCCCTGTTGCTCATAGCGAAAAAGCAAAATAGATGCTGGTAAAGCTAGTGGAAAAAAGAGATATGGGTAATATCCATCTAAAAAAGGCATTAAAATAATTGCAACTAAGCATGATATAAAACAGCTAAGCCCAAAATAGTCAAAAAACTTTTCCATTTTTCACTAATCCCCTCGAAAAATAACTTATTATGTTAATTATAGCCCAAAATATACCAGGCAAAAAGCAATTATCTTAATTAGGGACTAATCAATCCCCTTAGAATAAATTGTAGGGGAATTAATACTCGCCACAACTGGCATAAAAAAGCACGTCTTTAGGCAAAAAAGGCCTAAAAACGTGCTTTTCTTTGATTTACCTCTTGTAACGCATTTCCATATATGGTAATATATAAATAATCGAGCTTAAGTTAAAACAGGAAGGTAAAAAATTAGATGAACGTCTTGCAGAAGTATCTAGATCAAAACAAAATGACTCGGTATCAAGTAGCAAAAAAGACCGGAATTGCTAACACAACTCTGGCCAATGCAGTTAAAGATACTAAGCCACTTGCTGGCCAAACTGTAAAAGTGATTAGCGCAGTTGCAAAAGCTCTGGGTAAGACGCCTGGGCAAGTCCTAGACGATCTAATCAAGCTTGAAAATAGCGAGGAATAACGGTTGGCACATATCTATAAGCGTGGCAATACTTGGACCGCTAGAATTACTAAGCGTATTGGTGGCAAGCTGATCCAGTCTTCAAAAGGTGGCTTTAAAACAAAAGCTGGGCCACTGAGCAAGAAGCACTTATGCTTAAAGGCGTCGATATTGCCAATGACCCAACGTTCGTTCAGTTTTTTAACGAATGGTATCACACATTCAAAGAAAAATCGGTAACTTCGTCAACGAAGAAGCGCTATGTCACTCACGGCCGGATAATCTCCGAGTATTTCCAAAATACCAAGTTAAAAGATATAAAACGTACCGATTATCAGAGATTCTTAAACTGGTTTGGCGAATCGCATGCGCCTGGTACTGTTCACAAGCTTGATACGATGATTAGAGATTGTGTTTCTTCAGCAATAGCAGACGGTTTAATTTCTATGGACTTCACGGCTAAGACGGTTATAGCTGGTGACGACAGCAGAACTAGACACGTTGAATATCTAAACTTAGATGAAATCAAACGGTTGATCAGCTTGTGCTATGAAAATCGTCAGCCTAGATATACGAGCCCCTACATGATCATAACGGCAATTTACACCGGGATGAGATTAGGAGAGATTAGTGCACTGAATTGGAGCGATATCGATTTTAGTAGTAAGCAAATATCGATTACTAAGTCTTGGAACCAAGACCGCCGTGAAATGAGTAAGCCTAAAACTGAGTCGTCTATTAGAACCGTTCCAGTCAACAGTTGGCTTCTTGAGCTGATAACAGAGCTAAAAGCGAATGATTGCGACTTTGTTTTTGGCAATCCACTAACCGGATTTCCCCCAACTTCGCAAGCCATTAACCAAGCCCTTAGACGCTTCCTGAAGCAAGGCAACATGAAAAAAGAGATTTCCACTTTCACAGTTTACGGCACAGTCATGTTGCATTCCTGCTTAATAACGGAGTCGACATCTATGCAATCAGTCAAAGGTTGGGGCACGCAAACATAGCAATTACGCTTAAGGTTTATGCCTACTTGCTTGACGATCAGAAGCAAAAAGAAGATGATAAGATTATCGCTTCACTAGACATTTTGAACAAATAAGACTTAAATTGTGCATCAGTTTGTGCATCACTGGCAAAACTTCTATAGTTTTCTATAGTCTTGTTTAGCGCCATTGCAGTGTTTTCCGGCTATTACGCTTGCTATGTTTTTATATAAAATTCCAACCAAGACTTTGAAGTCTGGTAAAGTTACCCGTGTCTAGTGACGAAACGAGCCCGGTAGATCAATGATCTGCCGGATTTTATTTTTGACAAAAATTCATCAGCAACAAAAATAGGCGGCTCATTGAGCTGCCTGTTTTGTTACTTCTCGGCTAAATTGACCACCCGGTCAAACATAGCTATTTCTTCATCTGAAATCTTGTGAGCTACTTCGATTACGGTGCCAGGGAAATTCTGTAGAATTGTCTGGTGAATTTGCTTGGACAAGCGGGGATCCAGGGCTGAGGTCGCTTCATCGGCCAATAATACCGGCCGCTTGGCCAGCAGAGCTCTGGCAATTTCCAGCCGCTGCCCCTGACCGCCGGACAAGTTTTTGCCTTCTTTTCCGACTTGGTAGTCCAGACCTTTTTCCTCAATCAAGCTGGTTAAACCGGCTTTTTGACAAACTGCCAGCAGGTCTTCCCGGCTGACTTCCCTGCCTAAAGAGATATTATATTCGATTGTATCATCAAGAATATAAGGCTTCTGCTGGACAAAGGAGAAGTACTCGTGGTCCTTGCTCCAGTCACCATTGGCGTCTTCACCGTTGATCTCGTAATCCCCATCTGCCAGTTTGATCCGGCCAACCAAGACGTTAAGCAAGGTTGACTTGCCCCAGCCAGACGGTGCTTCCAGCAAGACTTTTTCACCATTTTTAACAGTCAAATCAAGATCGTTTAAAAGCTTCCGGTCCCCTCTTTGCACACTTGCATCGTCTAAAGAGAGTTCCTTAAATTCATCCCGGTCCGCAGCACTTTCTTTTGCTGTAAAATCTGCCACGGCAGTAAACTTTTCCCAGATCGGATTGCTGGTTTTAATGTCATTGACCGAAGAAAAGATACCGACAATCGGATTGATAAAGTTGTTGGCCAGCTGGGAGATCATCATGAAGGTCCCCAAAGTGATCTGCCCTTGAGTCACAAAGTAGATCCCCAGGCTGAAAGGAATGATCACGCTGCAGACGTAGGCAAAAGAAGTGATGACTTCTGTCGTCACCATTTCCGCCTTTTTCATCTTGGCCAGGGCCGTTTCCATTCTCTGGCTGTAGTGGAGCATTCTACTGTAAATACTGTCTTCAGCGTCATAGAGTCTGGCAAAAGCGGCAAAATTGATGGTGTCCGTCATTGCCTCAGTATATTTGCTGTTCTCCCCTTCCCAGGCAGAAGAAGCAGCTTCAATTTTTGGCCCGAAAATATTCTGCAAAAGGCCGGGAGCCAGGGAGGCGACCAGGAAGATCAAGGATAAAGCCCAGGAAGACAGCATGGCTGCCGCAGATGCCGCGATAAACTGCAAACCATTGAAAATAATATCCAGTTCAGCTTCCACCCGGTGACTTTCCACCTGCTTGAGGTCATTAGTCATAAAGGACAGGTCAAATTTGGGATCAGAATTATCTTAATACAACAAATATTTTGTTGCCTGCTCCTTGATCTTCAGGTTGACGTCCTTGATAATATTCGCCTGCATAATTTGGTAGATTAAGGCCAGGCAGGCAAAAAGGACAATACCCACAACTGCTTTAATAGTTAATTGTAATAAACTCCCCTTAGGATTTCCAGAAAAATTAATGAATTCCTGGAAGACATAAGCGATAAAAACCGCCTGCAGTGCCTTTGCGGCGGCGAAGACCGCAAAGACCAGCAACTTCCACTTGCTGGCATATTTTAACGTCATTTCTCTCCTCCTCGTAAATAATAGACAACACTACTGCAAGTCTGTCTATTCAAATACTTAACGATTTTCTTAAACTCATCAAAAATCTGATCATGGTCATCAAAGGCTTCTTTATTTACATCTTCCTCTCCAAAAATCATTTTCGAGAAAGAGTCAATGCTCTTTTCAGCACCATCAAATTGCAGCATCCTATTAAACAGAATATTTTTGATTGTATCTGCTACTTCTACCTTGGACAGGTGACTTATGCTTTTAAAATATGCTGATATGTTTCTAGTAACTTTTGTAACATCACTTGATGTATAAGATGTTAATATCTGCAGATAAATTCTGTTACCTCTTACAACTGGATTGGCAAAGACAAAATACAGTTTTGGTATTTTTTATGTAGACTCGTCAAGATAGAATTCTTCCCGTTATTCAATACAGAAAACAAGAAACTCAAGGATGCGATTTTGACTTCATCAACTTCTGATGAGCAAACATCATAAACTAATGACACGTATGCCGTTCTGGCTTTTTCTATTCTGTTCTTGTTTTCACCTCCTTAATTTATGATTAAAATTATACTACAGTTCATCAAATAATTCATCTTTTTTTAATTAAAAACACTTCGAATTTTATTCAATGTGTTTTTCTTGGATAATTTACATTTTGTTCTTCTTACGACGGCCAAAGGCGAGGAGACTTGCACTGGCCAGCAGTGCCACAATCCCTGCCAAAAAGGCGGACTTATTCTGGCTTTCGCCGGTTTGCGGCAAAGTTGCGCTTGCTTTTGCCGGAGCCTTAGCAGCAGAAGTTGCTGGAGCAGTCTTTTGAACAGTGCTGGCTGGAGCGGCTTGCTTTTTGCCAGTTGCCTTGGTTTCAGTCTTGCCAGCTGGAATTACGATAGTTTCGGTTTCCCCGGAGTTAGCCGGACTTTCACTTGGTTCGTCTTCGCTTGGAGTAGTCGGAGTTTCGCTCGGCTTGTTGTCGCTTGGAGTAGTCAGAGTTTCACTCGGCTCGTTGTCGCTTGGATTAGTCGGAGTTTCACTCGGCTTGTTGTCACTTGGAGTAGTCGGAGTTTCACTCGGCTCGTTTGCTTCTTCCAAAGCTTCCAAAATAGCCAGGTGCTTCTTAGCTTCAGTAAGTGCCAAATCCGCTGCTTCCTTGGCCTTAGCCGCGGCAGCTGAATCAGCCTGCTTGCTTTGCGCGGTTTGTACGGCAGCATCAAGTTCTGCCAACTTAGCCTTTTCACTGGTAGCAGTCTTTTCTGCTTAGCCGCAGCAAGAGTTTCATTTGCCGTAGTCAAAGCTGCTTGCTTAGCAGACAGGTTGCTTTCGGCGCTTGCGAGTTCTTGTTTGGCTCGAGCAAGCTTAGCGTCAGCTGCCTTGAGCGCGTCAGCCTTTTCATCAGCCGTCTTTTGAGCGGCAGAAGTTGCTTCTTGCGCCTTAGTCAATTTTTCCTTTTCAAGGCGTCATTGGCCACTACCTTAGGTAAAGCCTGGTATTCCTGCTCAGCTTCGCTTTCGGCTGCCTTCTTTGCAGCTAAGTCTTTATTTGCGGCGTCGCTGGCAGCCTTAGCCTCGTTATCCGTGTCAGTCAGTTCCTTAACCTGGCCGTTTACCTGGTCAACTGCCTTTTTCTCTTGATCAACCTTATCTTGAGCTTGGCTTACCTTGCCTTCTTGGTCAGCCAAAGCTGCTTGCGCCTTCTGGCTGGCTGAGTCTGCCGTCATTTCAGTTGCACTTGCTTCATCTTCAGCAGCCTTTTCTGCCTCTTGCGCGCTTGACAAGTTTTCCTCGCTCTTTTGGGCTTGGTCTGCCGCGCTTTTAGCTGCCTTATCAGCTTGGGCCTTCTTGTCAGTGGCCGCCTTAGCAGCAACTTACGCCAAACTTGCTTAAATCATCTTGCGCCTTTTTCTGCGCTTCTTCAGCTTGACGCTGCCTTGACTAACCGCGCCTACACCGACCACGCCAATCCCGGCAGTCGCGACTACAGCAATTTTCCGTAAATCTTTTTTCGCTTTATTTTCTATATGACTCACCTCTATAAACACACAATAGTTCGAGATAATATCTCTTAACTTTTATTATACAAATAAGTCATTTACTGCTGAGCGCTTTCACGGAGGAATATTTGCATTTCTTTGTAAAATCACGTCAAAGGCGCAAAAAAGTCCCGCTTTTCAGCGAGACTTTTTTATAATATTAATTATACTATCTTTTGCAAATCAAGCCATTTGGTAGCGGTCTAAATCTTTAGAATAAACAACCGCTACTAAGCCTTTCTTCAAGGATAACCGGCAGCTATCCTTATCCGGCAAAAACTCATTAGAAGTAAAGGAGCGTAGATAGTCACCGCTATAAGGAGCCAGGTCATACAAGGCCCCCTCAATCGTCAAATCTTCTACTGGCAGAAGGCAGGTCACCCCAAAGTAGCTATAGTCCTGCTGCTTAATCTCGTAGCTGCCAGCTTGCCGGTAAAAAATCAGATTCTGCTTGTCAATCAAGGTCAGCTGGTTAGCATACTTGCGCAGGTCCGGGTTCAAAATGCCAAAAGCATTGATCGCCGCGTGGTCAAGCCGGCCGCCAGTAGCCCCGTAAACCTTTAGCTGGTCAATCTTATAATCGCCAAAAGCAATCCCCAGCATCAATTCAGAATCGGTCCAGTCCTTCTTGGGTACCGAATAGCGGATATCCGCAACCGTCCCTTCTACCCAGGCCAGTTCATCAGCCTTCAGCGAGTCAAAATCCCCGATTGCCAAATCCGGCTTAAAGCCTAATTCCAGCAAAAGCAGGGCTCCCCGGTCGACCCCGATTAAAAGGTTTCCCTTAGCTTGCGCCTGCTTCAGCTGCTCCTTCAAATCAGCCGGCCATTCTTCCTTTGGCCCGCCAAGCAACACTGACGCGTCCATCACAAAACACCCTACCCTAACTTATTTCATCATTTCAAATATTCCGGCATCCGGCCTTCCTCGATTTCCGTCCGCATGGCCAGATAGTCATCATAGCGGAAAGTAGCGATTTCACCTAGAGCCATCTGATCCTTGACCGCGCACTTCGGTTCATGCAAGTGCTGGCAGCCCCGGAACTTGCAGCCCGTACTCAAGGCCTTAAATTCTTTAAAATACGTACACAGTTCATTCAGCTTGATCGGCGTCAGATCAATTGCCGAAAAGCCTGGCGTGTCTGCTAAAAAGCCTTCCCCTAATTTGAAAAGGGTAACCGTCCGGGTTGTATGTTTTCCCCGGTTCAAGCTGGTTGAGATCGCGCCCGTCGCCTGGCCCGCGTCTTCCTTGATAAAGTTCAGCAAAGTTGACTTCCCCGCCCCTGACTGGCCAGCCAGAGTCCAGATCTCGCTTTCCCCGATCTGCTTGGGAAGTTCTGCTGCCAGGCTTTCCCTGTCCAGGTAAACCCGGTAGCCGATCTTTTGGTAGTAAGCCAGCTGGCTTTCAATTTCTGCCAATTTTTCCTTTTCCAGCAGGTCGCTCTTTGACAGGTAGATCGCTACCTCTACTCCCTGCCAGGCAAAAAAGACCAGGAAGCGGTCCAGAAGAGCGGTGGAGAAATCTGGTTCAACTGCCGAAATGACCAAAAGCACGTGATCGACATTAGCCACCGCCGGCCGGCCGATCCGGTTCTTCCGGGGCAGAATCTTCACCAAATAAGCCAAGCCCTGTTCATCCAGCTTGACCTGCACGCTGTCACCGACCTGGGGCTTCTCCCGGTTCTTGCGGAAAACGCCCCGGGCCCTGGTCCGCACGACTCCTGCCGGCGTTTGCACGTCGTAGTAGCCGGCAATTAAAGAAACTACCGTTCCTTGTACTATTTCTGCCATTTAATTCCCGCTTTCACTGTCATCTGCCGAAATCGTCTCATCAACTACAGTTTGGTCATCACGGACAATCTTGATCTTACCGTCACCCTTAGTAACAGAAAAAGTGATCGTAAAGTCCGTGTCCTTGGTGATGTAAAGGTCCCGGTAAATATTGCCGAGACTGTGGTCGTCATCCTGGATATAAATCCGGACATGGTTGCCCTGGCTGGAGGAAGAGCTGGAGCTTGACTCACTTGAGTTTGATGAGCTCTCTGCAGCCTGGTAGTCAACCGTGAAGGTCTTCTTGACCTCTTTCTTCTCAGCCCCCTTGGAGACCGTAATCGTCAAAGTATCACCCTCAGAGACCTCGCTACCAGCGGCAGGATCAGTGTAAATCACGTCACCGCTGTCCACGCTGTCCGAGTGGTCCTTCTCAACCTTGACGTTGAGCTTCTTACTCTTGGCGTAAGACTGGGCGTCTTCCAGGCTCTTGCCCGTCAGATCGGCCAGTTTAAAAGTTGCCTTCTTGCTGCTGGAGGAGCTTGAAGGCTTAGGCTGGTCTTCTAAAGCCACGGCCACCACCAAAGTGATCGTTGTCTTAGAGGCATCTACCTTGCGGCCGGCCTTGACGCTTTGGGAAATGATCAAGCCTGGCAGGTACTCATTTGATGGTGCCTCCCGGCTCTTGACCTTGAAGCCCAGCTTGTTCAGCTTCTTTTTGGCGGTCGACAAATAAAGGCCCTCAACATCGGGCACCTTGGTCAAGTTTGATCCCTTAGACACCAGCAGGTTGACCTTTCCACCTTTGTCAACGGGACTGTTGGCCTTCGGCGTGGTCGAAATCACCTTGCCTTTTTTAACATCGCTGGAGTAAGTCCGCTTAACAGCGCCTACTGCCAGGCCCGAGCTCTTCAAAGAAGTCTTGGCTGCCTTCTCCGTCATGTTCACGACGTCCGGCACCCGGACATTGTTATGGCCAACTGCCAAAAACATGAAGAGCAGGATGGCAAAAACAGGGAATAATGACCCAATCCACCACCACTTATATTTCTTGATACTAGCCCAGAAAGACCGCTTCTTTGGCTCTTCAGCCTTGCCTTCCTTGGCCTTCTCAGCCTGCATGACCTTGCCGTTCAAGGCTGGCAGGATCTTAGTTTCATCATTATTGCCGTGGCTTGGCCGGTAAATTGCTTCGCCTGCCCGGCTCGGATCCAGACTGGAGTCCAGGTCTGCCTTCATTTCAGCCACGGAAGCATACCGGTCCCGCGGATCCTTGGCCGTCGCTTTTAAAACAACGTTTTCCAAGGCCTGGGGAATGGCCTTGTTTTGCTTTCTAAGGGACGGAATATCGTCTTCAGCATGCTTGAGGGCAATTGCCACCGGCGTTTCCCCATTAAAGGGCACATGGCCAGTCAAGGCCTCATACAGGATGATCCCCAAAGAATAGATGTCAGACTGCTTGGTGACCATCCCTCCCCGGGTCTGCTCAGGAGACATATAGTGCACCGAACCCAGGACCGAGTTGGTCTGAGTGATCGCGCTTTGATTCAAGGCGACAGCGATACCGAAGTCGGCAATTTTGATGTTGCCTTTTTCATCCATCAAAATATTCTGTGGCTTCAAATCGCGGTGAATCACATTGTGCTTGTGGGCCAGTTCCATCGCTGACAAAATCTGGTCCATGATCTTGATGACCTGCGGGAGGGGAATCGGGCTTTTTTCCCGGATATATTCCTTTAAGTCAGGTCCCTTCACGTATTCCATGACCATATATGGCAGGCCATGGTCGGTCCCCACGTCAAAAACGGAGACAATATTAGGGTGGCTCAGTTCACTGGTGGCCAGGGCCTCTCTTTGAAAGCGGGCCAGAACCTGGGAGTCCTTCTGCAAATCAAGGCGAATAATTTTAACGGCGACCTGTCTCTTCAAAATTATGTCATCAGCCAGGTAGACGTTGGCCATTCCGCCTTCACCCAGGGTGTCGACGATCCGGTAACGGTCTCCAAGCAAATAACCTTTATTGATCACTCGCGCCATCCTCCTCATTTACGGCCAGGCAGACGGTAATATTGTCGCCGCCGCCCAGACGATTGGCTTCATTGACCAACTTGTTGCACCTCTCCTGCAGGTTTAGGCCCTTGGTCGCCAAAACCTGTTGAATCAAAGGATCCGATAGGGAATTGGTCAAGCCGTCAGTGCAGAGAAGGAGCACGTCGTCAGTCTTCATTTCAAGTTCATTATATTCCGGATCAATAGTGCTTGAAACGCCTAAGGCTTGCGTAATGATATTTTTCTGTGGGTGGGTCTTCGCCTGTTCTTTGGTGATCTGCCCCATCTTGACCAGTTCATTGACTAAAGAGTGGTCTTCAGTGATCTGGCGGAAATTCCCTTCAGAGTAGCTGTAGGCCCGGGAGTCACCCAGGTGGGCAAGCAAGACTTCCTGGTCAAAGAACATGGCCAGGACAATCGTCGTGCCCATCCCGTTCAAGTCCGGGAAGCGGTCTGCGGCCTTCAGAATCGTTTCGTTTTCTGAGCGCAGCTGGACGTCCAGCCATTTTCTGGCCAGATTCTTGTCGTGCAGGTCGGTGTTAGCGAAATTGTGGCCCAGGTGGCTGACTGCCATCGTGGAAGCAACGTCGCCGCCCTGGTTGCCCCCCATCCCATCGCAGACGATGGCCATGGTTACCCCAACGCGATTTTGAAAAATCTGCACGAAGTCTTGATTGCTCTCTCTAACTCTACCAATGCTTGAAGCAAATGCCGTTTTAATCACAAGTACTAACCTCTTGTCGTAAACTTGGCAATGAAAAATCCATCACTGTTGTAGCTGTCGGGCAGGATCTTCAGCATCCCCTTGGGCGCGGAGATCTTGGCCGTTTCAAATGGTTTCAATGCAAAATCTGGATGCGCGGCTAAAAATTTCCGCACGTTTTCTTCGTTTTCTTCTACAGAGATTGAGCAGGTGGAGTAGACTAACTCCCCGCCCTTTTTCAGCAATCCGGATACTTCGTTCAAAATGTCCAGTTGTATTTCAGCCAAATGGCTGATGTCTTCCGCTGTTTTCGTGTAGCGGATTTCCGGCTTGCGGCGCAGCAGTCCCAGACCGGAACATGGTGCGTCTATCAATATCTTATCAAATTCTTGCCCGGAAAAATACTCCCTCGCCTTCCGCGCGTCCAAAGCTTTGACCTTGACCCGGTCAGCAACCCGCATTCTGGCGGCATTTTCCTTGACCAGACGCAATTTCTTTTCATGGATATCCAGAGCAGTCACTTGCCCGTCAGGCAATTGCTCAGCTATTTGAATGGTCTTGCCGCCTGGGGCGCTGCAGGCATCAAGGGCCTGCTCATTTCCCTTAAAGTCAAAGGCTTCCGCCACCAGGCTGGCTGCTTCGTCTTGCACCGTCACTTCACCATCTTTGAAAAAGTCGGTCATCACGATCCCGCCCCGGCTTAAGGCATAGCTGCGGCTGGCCAAAGGCGACTCCTGAGGGGCAAAATGGGCCCGGTCCAGGTCCCGGACGACCCGCTTTTCATCAGCCAAAGCCGAAATCCGGATTTCGTTTTTCGCCTTGCTGTTGAAGCTGGCCATGATTTTTTCTGCCCTGCTCTTGCCCCAGTTGGCTACGAAATAGTCGCTCAGCCAAAGGGGCATGCTGCACTTGACGCTGAGATAGTCTGGCGCGTCTTTTTCCGGCAGGACCTCTCCTCGCCGTAAAAGCGAGTGCAAAATCCCGTTAACCAGGCGGTAGCCGCTAGATTTTGGCCGGCCATAGACCTTAGCCAGCTTGTTGGCCTCGTCTAAGACTGCCCGGTTTGGCACCTTGTCTAAAAAGAAGATCTGGTAGGCCGACATCAATAAAAGGGGCTTGATATATGGCTCTCTCAGCCGGGCCTTGACCAGGTCCTTGAGCTGGTATTCCAGGTAAAGCTGGTATTGGATAGTCCCATAGACCAGGTTGGTGGCCAGCCGACTCTCTTCACCCGGCAGCTTAGCCGCCTTTAACGCGTGGTTTAAGCTGATATTTGAATATGAGCCCTGGTTAATCACCTTCATCAAGGTGTCCAGGGCCACGGTGCGGGCGTTAGTCTTCATCTACGATCTTTTCTCCTGCTGCAAACTTCTTCCCCTGCCCGTTCAAAAAGTCCTTGATGGCCATGGCCTTCTTGCCATTTGGCTGGACTTCAAGCAGGTTCAAGACCGTGTTGCCGGCAAAGCTGATAGCAAAGCGGCCCTGGTTGGTCAAAAGGTGGCCAGCTGGCAGACTGGTGTTGTCGTCAGCCACTTCTGCCTTCCAAACCTTTAAGCGCTGGCCCTTGATGACCAGGTAGGCGCCTGGGTCCGGATTGAGGGCCCGGATCAAGTTCTTGGCCTCCTTGGCCGTCAATTTCAAGGAAATTCTTTCTTCAGCCTTGCTGATGGTTGGGGAAAAGACTACCTGGCTTGGATCCTGCGGCTTTTTGACAATTTCGCCACTGGCAATCTTTGGCAGAGTTTCCAAAAGCAGGTCCCGGCCAAGCGGAGCCAGTTCTTCGAAGACTTCCCCGCTGGTCTCATCTGGTCTGATCGGCAGGCTGGCCTGGGCATACATGTCGCCGGCGTCCATTTCCTTGACCATTTCCATGATGGTGACCCCAGTTTCCGCATCCCCGTTTCTGACCGCATACTGGATCGGTGCCCCGCCCCGGTATTTCGGCAAAAGGGATCCGTGCACGTTAACAGCCGCGATCTTAGCGGACTTCAGGAATTTGGTCGGCAAAAACTGGCCAAAGGCCGCGGTGATGATGAAATCGGCGTCAAGCTGCAGCAATTCGTCAAGTTCATCTGACTTGGACAGGCGGACTGGCTGGTATAAAGGCAAGTCGTTGGCCAAAGCCACTTCCTTGACCGGGGAGTAAACGACCTTTTGCTTGCGGCCAACCTTCTTGTCCGGCTGGGTGACCACGGCCAAAATATGATAACCGGCCTTGATCAGGCCTTCCAAAACTGTAGCGCCGAATTGCGGCGTTCCTAAAAAGATTACTGAATTCACGTTTTTATTCCTTTCCTTTACATAATTCTCTCTGGCTCTGAATCGATCTCAACAGTCAAGCCGTACTTTTTCACTTCCTGGGCCTGGTCCTGGATCTGGTGCAGGAGCTCATTTAAGTGTTTTTCTCTTTTATATTTTACCAGTATTTGGTAATAATACTGGCTCTTTAAGCGGCTGATCGTTGCCGGAGCCGGCCCTAAGATAATAGTCGGCGCCCGCAATTCCCTCTGCAATTGCCGTTTGATTTTAAAAGCCTCCCGGGCCGCGTTTTGCTCATTTTTGGCTGAAACGGAGACCAGGACCGTGTAAAAGTAAGGCGGGTAGTCGCCGGCATGGCGGACCCGCATTTCTTTAGCGTAAAAAAGCTCATAGTCCTGCTTTTGCGCCAGGTGGATAGCGTAGTGGTCCGGATTATAAGTCTGGATCATGACCTGCCCTTCCTTGTCGGCCCGCCCTGCCCGGCCAGCTACTTGCGTAATCAGCTCAAAAGTCCGCTCAGAAGCGTTATAGTCGGGCAGCCATAAACCAGTGTCAGCATTGATTACCCCAACCAAAGTTACATTAGGGAAGTCCAGGCCCTTGGCGATCATCTGCGTGCCCAGCAAGATGTCGGCTTCTCCTTGGCCAAAACTGGTCAAAATCTTGTCATAGCTGCCCTTCCTCCGGGTCGTGTCCACGTCCATGCGGATGATTTTAGCTTGCGGAAAAAGCTCAGCCAGCTCTTCTTGCACCTTCTGCGTCCCCGTCCCCAAAAAGCGGATCTGCCGGTCCCGGCAGTTGGGACAAATTTCCGGAACAGCTTCTTGGTAGCCGCAATAGTGGCACTGCATAGTCCAAGTGTCCTTATGCATGGTCAAGGACAAGTCGCAGTTAGGGCACTTTAAAACAAAGCCGCAATTGCGGCAGAGCATGAAGTTGGCAAAGCCCCGCCGGTTTAAAAGCAGGATTACCTGCTCTTTTTTCTCCAGCCGCTTTTGAATCGCCTCAGCCAATGGACAGGAGATGTCAAACTGGCTGCCGGCAAACTGCACGTGCTTTAAGTCAAGCAGGTCAACTCGCGGTAAAGGCTGGCTCTTGGCCCGCTTTTTTAAGCGCAAGAGCTGGTAGACCCCCTTTTGGGCCCGGGCCCGGCTGGCCAAAGACGGCGTCGCGCTACCCAAAATCAAGGGACAGTGGTGGTAGCGGGACCGCCAAATTGCCACGTCCCGGGCATGGTAGCGGGGATTGTTGTCCTGCTTGTAGGAGCCTTCATGCTCTTCATCGATAATGATGAGGCCTAAATTGTCCAAGGGGGCAAAAACCGCGCTTCTAGCGCCTACGACCACCTGGGCCTGACCCCGGCGGATCCTGCGCCATTCGTCATAGCGCTCACCTTCCGACAAGGCCGAGTGTAAAACCGCCACCTGCTGGCCAAAGCGGGCCTGGACCTGCTTGACCATCTGGGGGGTTAGGGAAATTTCCGGCACCAGCATCAAGGCTGTCCTGCCCAAGGCCAGGGCCTGGCTGATCGCCTGCAGGTAGACTTCGGTTTTCCCGGACCCTGTCACTCCTTCTAAAAGAAAGGTCTGGCTGACCCGGCCCTTGATGTCCTGGCTGACCCGGCTCAAGGCCGCGGCCTGCTCGTCATTTAGGTCTAAAGGCCGGCTGGGAGCAACCGGCTTGGTTGGCCGCCGGTATTTTTCCTGGTCTTTTTCCTGCAGCCATTTCTTGCTGACCGCCGCTTTTAAAGTTGCTGAACTGATGCCCAGACCGGTCAATTCTTCCCGGCTTTTAGGATAAGCCGCAAAGTCCCCGGCCAAATCTGCCAGCAATTTTCTTTGCTGGCTGGCCGTTTTTCTAGTTTCTAAAAGAATCTCCTGGCAGTCAGCGGCCGACAGAAGCGGATAGTAGACTGAAACCATCTTCTTTTTCGCCTTATTTTCAACCAGGTATTCTATCCTGGCCTCCCCCTTATTCAGGAGCTGCTTGACCAGCTTGATCAGACGCGGCTCTTCTAAGTTGGCCAAATCCACCGGGTCTCCCGCAAAAAGAGGCATTTGCTCTGCCCGCGGGCTGTTTGGCAGGAGGATTTTCCGGTAATTGGCCCGCATAACCCCCGGTAGCATGGTCTTGAGGATACTGATCCGGTAGGCAAAAATCTGCCGGGCCAGGTCGCTGGACAGGGCGACCAGCTCGGGAGTCAAAGGCGGCATTTCATCGACCACTAAGAGCAGGTCCTTTAACTGGCCGGTAAAGTCGCTGCTTTTTTTCACGGCGACGACAAAGCCCTGGACCTTGCGGCGGCCAAAAGGCACCACTACCCGGCTGCCAATTTCAACTTCCAGGTCATCAGGGATATGGTATTCAAAAACGCGGTCAGTCTGGTGGGCAGCCACATCGACAATAACTTCTGCGATCAAGTCCTTCTCCCTTCCTTTACGCTAAAAGAGGAGCGGGCTTCTGGTCCGCTCCTCTTCAAGAATTATTCGTCGGCTTCACCGTGAGGGTCAGCGTCAATCGTTACCTTGCCGGCAGCAATTTCTTCCAATGCCTGGCCGACCGGCTTCAAGTTGTGGTAGTTGTCCAAAGCGCCCGGCTTGCCGGCTTCCAGTTCACCAGCCCGCTTGGCAGCCAGAACTGACAGTGAGTATCTTGAATCAACTTCATCTAGCAGCTTGTCAATTGATGGATAGGTAATTCTCATCTTAGTCCTCCTTAACCATTTTCCGATAATCGTCGATCACGCGCCTGACGCTGACGTGTTCAGCGTCAACGATTGCTTTAATGTGGTTGACGGCGTTGGCGACAGTGTCGTTGACTACCGCGTAATCATAGTCCTGCATAACCAGAATTTCCTTGCGCGCTTGGGCAATTCTGCCCCGGATCACGTCTTCGGATTCCGTGCCCCGGTGTTCCAGCCGGTCTCTTAAAGTGTGCAGGTCAGGTGGCGTCAAGAAAATAAAGACGCCTTCTGGCATTTGTTGGCGAACCGTTCTGGCCCCGTTGACATCGATTTCCAGCAAGACGTCCTTGCCGGCAGCCAGCATTTCCTTGACCGGGCCCAAAGGGGTCCCGTAAAGGTTGCCGACGTATTCGTTGTATTCCAGCAGCTGATTGTCAGCAATCGCCTGCTTGAATTCTTCCCTGGTCACGAAGTAGTAGTCTTTCCCGTTCACTTCGCCTTCACGGGGCTTGCGGGTAGTCATTGAGACTGAGTATTCGAAGGGGAAGACCTTGTGTTCAACAATTGCGCTTTTGACGGTTCCCTTGCCCACCCCGGACGGGCCGGACAAAACCAACAGTAATCCTTTATCTGCCATGATAGCTCCTTTTTTGACTAGTAATTCTATTTTGGACCATAAGCGCCTTCTGATCAAGTCTTAAGGCCGAAAAAAGCTTTTTTAAAAAAGGGGCTTGCTTTTTCGAATACTTGTTCGTATAATATGTTTACAAACAGGCGTTCGAAAATGATTTACTTAAAGGAGTCTTCACCATGTCCAAATTTCAAAACTTTGCCAGCCAAGCCGCTCAGCCCCTTAAGAAGGCCTTTCACTATCTCTTTGCTTATGACGAAGACCGGCTCACCCTCCGCGGCGACAGCCTGGCAGTTAACTTAGCTAAATTGCAGCTGGCCTTCTTGAAGAGGCAATATCTCCTGGTCACCTTGAATGACGGCAGCTGGCGGGTTGGCAAGATCACCAAGCGGATTTCACCCAGCCGCTTCGTTTTCTGCGATGCCGACAACAAGATTTTTTACCAGCTTGACATTAATGACATTTTAACAGTTGAGCTGCCTTAAAGCAAAAAAGAGCCTGGCTTTTCCAGACTCTTTTTGCACTTATGTTCTCTTACGCTTTTCGTTATTTCACGCTGGCGTACTTGAACTGCCAACCGCCGAGGTTGTCGTTGTAGACATTCTTGATTTCCGGTCTGATCAAGTAAGCAGTTGAGATGTAGTAGATTGGGGTGATCCCTTCATCTTCCAGCAGAATAGCTTCGGCCTTTTGCAGGTCGCTTACCCGCTGGCTGCTAGAAGCAGTTGTCTTGGAGTCCGCGATCAAACGGTCGTATTCACTATTGCTCACCGTAGTTTCTGCTGTTGTTGCTGGTCAGAAGGTCCAGGAAGGATATAGCGTCGTTGAAGTCGGCGATCCAGGTGGAAACCATGACATCGAACTTCCCTTCTTCCCGGCGGGCCATCCGGGTCTTAAAGTAAGGAATCCGCCGGTCCAAAGTCACGACCAGCTTGTAGTCGCCTTCTGCTTTCACGCCCAGGCTGGATAAAGGCTTCTTGCCGGCAGTAATAGCCGTGGCATCTTGATGCCCTCAAACAAGTAGGCATATTCTGAAGCCGTCTTATGGTTGACCGTTCTTCGACAGGAATAGACAAAGTCCTTGGCCGTGACCGGACTGCCATCACTTCACTTGGACTTGCGCAAAGTAAAGGTATAGGTCTTGCCGTCCTTGGAAACCGTGCTGCTGGTGGCCAGGGCCGGCATCAACTTGCCATTTTTCCCGATCCGGTACAAGCCTTCCATTGTGTTCCGCAATTGGTCAAAGCTGACAGTATCACTGGCCTTGGACATGTCAATGGTCGAAATTTCAGCTGAAGTCGACCAGGAAAATTCCTGCTTCTTGCTGGCCTGGCTATTGGATTTGCCGCAAGCCGTCAGCATAATCATTGACAAGGCCGCCAGAGCCAGCGGCGCTTTAATCTTAATCGGTCTCATTTTTTCGTCCTCTCTTTCTTGCAGATTTTTACACTGGTCCAGAAATACATTATATTTTCTGGGAGTATGTTTAAACTTAAATTAAAACAGTAGTTATCCATTGTCAACACTTTTTTACCTATAATTAAAGCAGAAATTGCGTATTCTTCCCATGCGCATGCAAAAAACTCTCCTGCCTTCTGGCAAGAGAGTTATTTTTTGATAATTATTTTCTAATCTTGTTTCCGCTGACTGGCAATCAGGTCGGCCGCGTTTTGCTCAGCAGCTTCGCTGACATTAGCTCCAGCCATCATCTGGGCGATCATATTGATGCTGCTGTCTTCATCAAGTTCCTTGACCTGGGTAAAGGTCTCACCGGCTGCAACCTGCTTGGCGATGGCAAAGCGGTGGTCGGCGCTGGCCGCTACCTGCGGGGAGTGGGTGATGGCGATAACCTGCTTTTGGCCGGCAATCGCGTGCATCTTCTTGCCGATGGCCGCTGCCACCCGGCCGGAAACCCCGGTGTCAATTTCATCAAAGACCATGGTGCCAACCGGCTCAACCCGGGAGAAGATAGCCTTTAGGGCCAGGATCAGCCGGGACTGTTCCCCGCCGGAAACGATCTTGACCAGCGGCATCAGCTCTTCGCCTGGGTTTGGCGCGATGTAGAAGGCCAGGTCATCAATCCCCTTGACCGTGAAATTATCAGTCTTGGCGAAGCGGATGGAGAAACGGGCCTTGTCCATGTACAGGTCAGCCAGTTCATGCTTGATCGCTTCTTCCAGCTTCAAGGCGGTAGATTCTCTGGCCTGGTGGAGGTCAGCCGCCATGACTGACATTTTTTCCTCAACAGCGGCTATCTGCTTGACCAGTTCTTCTTCGTCAAGGCCACCAGTTTCAAACTGGCTGAGCTCCTTGGAGACTTTTGCATAGAAGTCAAAAACGTCTGCCAGGCTTGGTCCATACTTCTTCTTCAAGTTGTTCAAGAGGTCCAGGCGGTTTTGCACGTACTGGTAGCGTTCTTCATCAAATTCCAAGCTGTCCATGATGTCGCCCAGTTCTGAGCGGGCATCGCTCAGCGAATATACCCCGTCAGTAATGGACTGGGCCACATTCTTGAAGTCCTTGTCCAGGTCGGCCAAATCTTCTGCCGTTCCTTGGGCATCCCCCAGCAGGCTGGTTAAGCCATGCTCGTCATCGTCAAAAAGCTGGATCATGAAGTTGGCGGATTCAGCAATCTTCTGGTAATTGTTCAGCTTGTTGAACTCGTCTTCCAAGTTCTGGTCTTCCTGCTCATCCGTCAAATCCGCTTGGGTCAACTCTTCGACCTGGAACTGGAGGATGTCCTGGCGCTGGGCCAGTTCCCGGCTGTCCCGGCGCAGGTGCTCCAGGCGCTGGTTAAGGCTTTGCCAGGTCTGGTATTCAGCCTGGTACTTGCCTAAAAGGGACTTGAAGTCCTTGCCCGCGTATTCATCGACCAGGTCAATCTGCCGGCTTTGGTCCATCAGCATCTGCTGGTCGTTTTGTCCATGGATGTCGACCAGGTACTCACCAATTTTTGCCAAAGCGGTGATGGTGGTCAGTTGCCCGTTGATCCGGATGACGTTCCGGCCCTTGCTGGAAATCTCCCGGCTGATGATCAGGTCATCACCGTCCATCGGCAGGCCGTAGTCAGCCGCGATTTGTTCAACTTCCCGCATTTCCTCATCTTGCAGGGTAAAAAGGCCCGTCACCACTGCCTTGCTCTGGCCAGACCGGACCAGTTCTTTTTGGGCCCGGTGGCCCAGCAAAAGTGACAAAGCATCGATCAAGATGGACTTGCCGGCCCCGGTTTCCCCGATCAGGACTGTCATTTGCGGCTGAAACTTGATTTTCAGACTCTTAATGATAGCGAAATTCTGGATATCCAATTCGACAAGCATAAGCGTCCCACAGCATCCTTTCTACAGACCCTGGGCAGCCCGGTCAACCAGCTCGCTGACTGAGCCGGACCAGAGATTCTGCCCTGGATTTGCCTGGTCCTTCTTCAAGTGAAGCAAAAATTCAATATTCCCCTTGCCGCCCTTGATTGGTGAATAGTCAACGCCCAAAATGGAAAAGCCAATTTCCAGGGCCTTGGCCATAGTGTGCTCGATCACTGCCTGGTGAACCGCGTGGTCCCGGACGATCCCGTGCTTGCCGACATTTTCCGGACCGGCCTCAAACTGGGGCTTGATCAAGCAAACGGCATCCCCCTGGTCTTTCAAGATTTCATACATCGGCGGCATGATCAAGTCCAGGGAGATAAACGACACGTCGGTCATGGCGAAGTCCGGCAGGCCTTCGGTAAAGTCGGCGGGAACCGAGTAGCGGAAGTTCTGCCGCTCCATCACCACCACCCGGGGGTCATCCCGCAGCTGCCAGGCCAGTTGGTTATAGCCCACGTCCAAGGCATAGACCAGCTTGGCCCCATTTTGCAGGGCCACGTCGGTAAAGCCACCAGTTGAAGCCCCGATATCCAGGCAGACCTTGTCTTTTAAGTCAATGTTCCAGACCTTGACCGCCTTTTCCAATTTGAAACCGCCCCGGGAAACATACTTGAGATTATCCTTTTTAATGAAAAATTCCTCGTCAACGGGAAACTTCTCCCCGGCCTTATCGATCCGCTGGTGGTTGTGGTCAGTTACAAGACCCGCCATGATGGCTCTTTGGGCCTGAGTTCTGGAGTTAAAATTTCCCTTGGCGGCCAATAATACGTCCGCGCGTTCTTTACTTGCCATTACAATACCTTCTGATACAAATCCAAAAAGCCCAGCAAAACTTCTGCCTTTTCCCCGGCCAGGTCAGCCTTGCCCTTTTCAATCAGCTGCTTGAGTTCATTTCTGGTTGCCTCTGCCCCCAACATGGTCAAGCTGTTGTTCTTGCCCACTTCCTGGTCCTTATGGGTCGCCTTGCCCGCTTCTTCCTGGCTTTCAACGATGTCTACCAGGTCGTCATAGAGCTGGTAAGAGCGGCCAAAGTGCTTGGCGAAGGCCAGGTACTTTTGGGCCTGCTGGTCAGGGCAAGCAGCTAATGCCGTGGCCATCTGAACGCTGGCCAAAATCAAGCAGCCGGTCTTCAGCCATTCCATGTGGTCAATCACTTCTTCACTGCTGTCTTCATTGTTGGTGGTGTCGATGTCCAGATATTGGCCAGCCACCATCCCCTTTGGACCCACAGCTTCAGTAATGATCTCGACCAGCTTCCAGTTATGTTCAGCCTGGGCGATCCACTGGATACCTAAAGGCTGGAGGGCATCCCCGGCCAAAATAGCTTCAGCTTCGCCCCATTTCTTGTGGCTGGTCAATTCCCCCCGCCGGTAATCGTCATTGTCCATGGCCGGCAGGTCATCGTGGATCAAAGAATAGGTATGGATCAGTTCAATCCCGCAGGCGGCCTGGACTTCTTTTTCGGTGATCTCAACGCCCAAGGCATCTAAAGTTGCCAAAAAGAGCAAAGGCCGCAGGCGCTTGCCCCCAGCCATAACTGAATAAGCCATGATTTCAGCAAAACGGGGGTCATCGCTTTCTTTTGCCAGTTGTCCTTCTAAAAAATCATTAATGATTGGCGTGTACTTAGCTTGAAATTCTTTAAAAGTTGTCATGGCTTTATTCCTTTGGTGCTGAAGCATCGGTTGGATCAAGTTCCTTCTCGCTACCATCAGACTCGATCAACTTGGCCACGGTGTTTTCGGCCTTGGTCAATTCCTGCTTCAATTCCCGGCTCAGCTTGACTCCGGTCTGGAACTGGGCCAATGATTCTTCCAGTGACAACTGGCCATTTTCCAGCTGGCCAACGATTTCCTGCAGCTCCTTGAGCTGGCTTTCAAAATTGTTCTTCTCAGTCATTTTTTTCTTCCTTAATCTCTTCAATCCGGCCGATGGCCTGTCCATCCTTTAAGTGCAGGCGAACCTGGTCGCCTGGAACCAATTGCTGAACTGACTTGACCACGTTGCCGCTCGCGTCAGTCGTGTAGCTGTAGCCCCGAGCCAGGGTCTTTAAAGGACTGTAGTCGTCCAGCTGCTGGACGGCCTGCCGGCAGGCAGCCTGCTTTTGTTCCAGAATCCGCTTGATCCCCATTTCCAGGCTCTTGGCCAGGTAGCTGTTTTCCTGCTTAAGCTGCTTGATTCTCCGGTCTGGGGCCTGGTGCTGGAGGCGCTGGGTCAAAAGGCTAAGCTTTTGCCCCTGGTCTTTGACAATTACTTCCATCATCCGACTCAGCTGCTGGGACAATTGGTCGACCTGCTGCATCTTCTGCTCATAGAGGCGCTGGGGCTCTTTCATGATAAAAGAATTCTCCAGCTGGGCCAGGGCCTGGGCCCGGACCTGGATCACGGCCCGGATGTCGGTCAAAAGCCGGGTCTGCAGCTGGCCAATTTCAGCCAGGACCAGGGGCAGGGCCGGCGTCGCCATTTCAGCGGCTGCCGTTGGCGTAGCCGCCCGGCAGTCAGCTGCCAGGTCACAGAGGGTGGTATCTGTTTCGTGACCAACTGATGAAATCACCGGCATCTTCATGGCATAAACCTGGCGGACCACTTCTTCTTCGTTAAAAGGCCACAGGTCTTCTAAAGACCCGCCCCCCCGCCCGATAATGAGCACGTCATATTCATCTGCCCGGGCTTGGATCTGCTGCATAGCAGAAACCAAGCTGCCAGCTGCGCTTTCCCCTTGCACCTGGGCTGGGAAAAGGTCAATTTCAGCGTGCGAGAAGCGGCGGTTAGCCGTTACCATGATGTCGTGGATGACCGCCCCGGAGGCTGAAGTCACAACCGCGATCTTATCTGGAAAAAGGGGCAGAGGGCGCTTGTGCTCTTGGGCAAAGAGGCCTTCTTTAGCCAGCTTCTCCTGCAGCTGCCTAAAGCGTTCATACAAGGCACCAAGGCCGGCCGGTTCCATGCTTTTGGCATAAAACTGGTAGCTGCCCTGGGCTTCATAAGTTGACAAGCGGCCGGTCACGTAGACCTTCATCCCTTCTTCCGGCTCGAACTTAACCTTGTCAAAGTCTCCGCGGAACATCACCACATTGATTTTAGACTTGTCGTCTTTTAAAGAAAAGTACTGGTGACCACCTCTCCGGAAGCGAAAATTCGACAATTCCCCTTGGAGAAAAATTTGCCGCAGGTAGGGATCCCGGTCAAATTTCTGCTTAACATACCAATTTAATTCACTGACAGTCAGGTACTTTTCGTCCGTCCCCTTAATCGAGTCCATGCTGTCTCCTCGTCAATTTGATGACTTCTTCCATTAAAAACTCTACCGTCAAAGGGCCAACCCCGCCAGGCACAGGCGTGATCCAGCTGGCCTTTTCTTTAACGGGGGCAAAATCAACGTCACCGACCAGGTGGCCGTCCACCCGGTTGATGCCTACATCAATCACGACCGCCCCTTCTTTAACCATGTCCGCCTTGATCATTTCCGCCTTGCCGACCGCGCAGACCAGGATGTCGGCCTGCTTGGTCAAGTCAGCCAGGTTCCGGCTGCGGGAGTGCAGGATTGAGACAGAAGCGTTTCTTTCCAGCATCAAGGCAGCCAGGGGCTTGCCAACAATGTTTGACCGGCCGACAATCACGGCGTTCTTGCCAGTCAAGTCAATTTGGTAGTGGTCCAAAAGGGCAATGATGCCGGCAGCCGTAGCTGGTTCGACAAAGTGCTTGCCCTGCCAGAGGCGGCCGATATTGGCCGGAGTCAGGCAGTCAACGTCCTTCTCCGGATCGATCCTTTCAATGACCCGGTCAGCATTGATCTGCGGGGGAACCGGTAACTGGACCATCAGGCTGGAAACTTCCGGGTCCGCGTTCAAGCTGTCGATCAACTTTAAGACATCCTCTTCGCTTTCATCAGCCGGCAATTGATAAACTACCTGCTTGATGCCCAGCTTCTCAGCCTTCCGCTTCTTAGAGGCGACATAGACCTTGCTAGCCGGATCATCGCCAATATTGATGACGCAGAGCTTGGGACTGACCCCATGCTCTTTTAGGGAATCCACTTCACTGCCTAACTTTTCCCCTAATTCCCAGGCCAGCTTCTTCCCGTCTAAAATTTCTCCCAAAACTGCCTCCTTAAGAAAAAAAACCGGCGAAACACCGGCTTAAAGATTATTTTAAAGATTATTCTTGCACAAAGTTTGCCAATATGCCATTGATGAAGGCCTTTGACTTCGGATCATCAAACTCGTCACACAAGTTCAAAGCCTCGTTGATGGCTGACCGGTCTTCAATAACCGGGCTGTACAGCATTTCATACAGGGCTACTTCCAAAATCGCCAAGCTGGTCTTGCTCAGCCGCTCCAAGCGCCAGCCTTGCTTCAAGTTGGCGGAAAGCTTGTCACGCAGTTCAGCCTGCTTGTCGATCACGCCGCTGACCAGTTCCTGGCTGTAGGCCGGCAAAGTATCCAAGTCCAAAGCGGACTTGACATTGTTTTCCAATTCACTGGCCGTAAAGCTGGGATCCTGGTTGTACAGATAAATGGCTTGCAGTGCAATTCTTCGACTATCGTGTTGATTCATTACTTATCTTCTTCTTGATCGGGGAATAGTGGTTGACCAGCATCTTCAAAGTTCTTTTCATCTTCAGGGAAGACGAGACCAACGACATGAACATCAATGGACTTCAAATTCATATCCGTCATCTGAGTCAGCTGCTGCTTCAGAGCTTCTTGAATCTTGCCCGCAACAGCTGGCACGTTGACGCCGTACTTGAGATATACGTAAACGTCAGCCGTCAGTTCGCCGTCTTCATCAACTGAGACGGAAACTCCCTTGCCCCGATCCTCGCGGCCAAAGACACGGCTCAAGCCTGACTTCAAGCCACCGCGCATCCCGGCAACACCGTCGACCTTCTGAGCTGAAATGCCCAGAATGACTTCGAGTACCTGCAGGTCGATCTTGATTTGATCGCCCTCATCATTGCCGCTTAAAACGATTGTTGAATTATCAGCCATTTTTCCACCTCGAAAATTACTGCTTAGAACGTGATACGTATGAACCGTCACTAGTATTGATCGTCAGCACGTCACCAACATTGATAAAGAATGGCACAGTGACAACCAAACCGGTTTCCATCGTAGCTGGCTTACCACCACCTGATGAGGTATCGCCGCGGATGCCTGGTTCGGTTTCAACGACTTCCAGGTCAACCGTGTTTGGCAGGTCCAGACCCAAGGTTTCACCATTGTGGGAAATAATGTTCACAATCATGTTTTCCTTCAAGTACTTGGCTTCCTGGTCGATCTGAGCGTTCGACACTTCCAATTGCTCGTAAGTTGCCGTGTCCATGAAGACATAGCTCGAACCGTCGTTGTAAAGGTATTGCATTTGTCGGGTTTGAATGTCAGCCGTTTCAACCTTGGCAGTTGAACGGAAAGTGTATTCTTGAACGGCGCCAGTCCGCAAGCTCTTCAGCTTTGAACGAACGAAGGCACCGCCCTTACCTGGCTTAACGTGCTGGAATTCAACGATACGCCACAGGTCGTTGTTGTATTCGATCGTGAGGCCGTTCTTGAATTCGTTAACAGAAATCATTGTCATCTGGTAAATCCCCCATTTCTACATCTTAAATTGTACCAATAAACACTAAATTTTACCATAAAAATAATCTTACAGGTGAATGAGTTCGTCCTTTGGCAAAGTGGACAAAACTTCCGGAGTGTCGCCATTAACCAGAATATCATCTTCGATCCGGACCCCGCCTTGCGGCAGGTAGATGCCTGGTTCAACCGTGTGCACAATCCCGTTTTCCAGGGTCGTCTGGCTGAACAAAAATTCCGGCTGACACATTTCATGGATTTCCAGGCCGATCCCGTGGCCAATCCCATGGCCGAAGTATTGCCCGTAGCCGGCGTCATTGATGTAGCCCCGGGCTGCCTGGTCAACGTCCTTGCCAGTTGCCCCGGCAACAGCGGCGGCAATCCCCCGCTTTTGTGCTTCCAGAACAATCTTGTAGATCTTTTCCAGTTCGTCTTCCACGCTGCCCAAAGCGTAGGTTCTGGTAATGTCGGCGGTGTAGCCGTTATATGAAGCGGCCGCGTCAATTACGACCAGTTCGTGCTCTTGCATCAAGCGGTCGCTGGCCACCCCGTGGGCCCAGGAAGAACGGGGACCAGAAGCGATAATTGAGTCATAGCCCGGGCCGTCGCCGCCGTAGAGCTTGAAGAGGTAGTCGAGCTTGGCGCCCACGTCTCTTTCCTTGGCACCTGGCTTAAGCATTGGCAGAACTTCTTCAAAGGCTCTTTCTGAGATTTCAACAGCCTTTTTAAGAGTGGCCAGTTCCAGGTCATCCTTGACATTGCGGACCCGTTCAACGATTTCAGCAGCCATCACCAGGTCAACATCTGGCAGCTGGGATTTGATCTCGTCATATTCATAAGCAGAAACAAATTCTGCTTCGACTAAGAGTTTCTTGACCCCCAGCTTCTTGACTTCTGCCGCGATTTCGGCCGCTTCGTGGCCATGCTTCATGACTACCTTCAGTTCACCCACTGCCTGGGCTTCGATTTGCGGGGCAAAGCGGGAGTCTGACAGAAGCACCCGGTCGCCGTTTTTGGTAATGATCAGCTGGGCTTCTTCACCGGTAAAATTGGTCAGGTAGCGGTAGTTTGCCCGGTTGAAAACCAAGAGGGCATCCGCGTCCTTGTCCTTGATCAAGTCAGCAGTTCCCTTGATCCGTCTGGTCAACAGACTTAACAATTCATTGTTCTTGCTCATAAGCACCATCCTTTTCTGCAGCTTTTAAGCTTTTATTCATGATGTTTTTTATTATACAAAAGATCAAGGACTTAAACATGCTTTCCCTGGAAAAAGGGCAAAAAAAAAGCAGGCAGCTGGGCTGTCTGCTCCTTTGCCGGCTTGATTATTCAGCGTCTTCTACTGGCAAAACAGAAACTTGCTTCTTGTACTTGCCAAGACGTTCGAACTTAACAACACCGTTAGTCAGTGCGAACAAAGTGTCGTCGCCACCGCGGCCAACGTTCTTGCCTGGGTGGATCTTAGTACCACGTTGACGGTAGATGATTGAGCCAGCGTGTACTTCTTGACCGTCGGCACTCTTTGCGCCCAAACGACGACCAGCTGAGTTACGACCGTTGGTAGTTGAACCACCACCCTTGTGGTGGGCAAGTAACTTTGCGTTTGAAAGAATGTTCATCATCATAGTGTTCACCTCTTACTAAGCTTCGATGCTCTTAACAGTAACCTTGGTGTAAGGTTGACGGTGACCGTACTTAGAATGTGAGTGCTTCTTTGGCTTGTACTTGAAAGTTACAACCTTCTTTTCCTTGCCTTGCTTGTCAACACTAGCAACTACCTTAGCACCTTCAACTAATGGAGTACCAACCTTAACGTCGTCACCATTAGCTACCAGGATAACTTGGTCAAAAACAACTTCTTCGCCAGCTTGTACGTCAAGCTTTTCAACGAAGATACTTTCGCCTTCGGCAACCTTGTATTGCTTGCCACCGGTCTTAATAACTGCGTACATTAGTACACCTCCGTATAAAATTACTTAGACTCGCCATCAAAGGTGCTGCCCAAAGCAGGCTTGTCAACCTTATCTGCGCGGTTGCAGAATCGAGGTATCACTCAAATTGCAACTCTGTTAGTATAGCACGCTTTGCCCGCCTTGCTCAAGTCTTTTGCCAGGCAAATTCCTGTTTTTGCCAGATTTTTTGCGTTAAACTCAAAAGAGATAATTTAGTAAGGAAGAAATCGAGGGAAAAACATGCCAAAATTCTATGGATACAAGCGCTGCTCCACTTCCCGGAAGGCCCAGAAGTGGTTTGACGACAAAGGCATCAGCTATGACTTCCAGGACCTGGTGGAGACTCCGCCGGAAAAAGACCTGCTCTTGTCCTGGCTGACCAAGTACCAGGACCGCGGCCTGCGCTACTTTTTCAACACCAGCGGCCAGCACTACCGGCAAATGGGCCTGAAAGACAAGTTACCAAATATGACTACAGAGGAAGCCGCTGATCTCTTGTCTAAAGACGGCAAGCTGATCAAGCGCCCCCTGGTCGTTGATGACCAGCACTTAACCTGCGGCTTTAAAGAAGAGGTCTACGAGCAGACCTGGAAATAAGCAAAAACAAGTTCCGGCTTCTGGAACTTGTTTTTTTGCTTTTATTCCCCCAAGGCCTGGGCCAGGTCGGCAATCAAGTCGTCCGCGTTTTCCAGGCCCACTGAGAGCCGCAAAAGCCGCGGCGTAATTCCCAGCCTGAGACGCTGATCTTCTGCAACATCGTCATGGGTCTGGTAGTAAGGAATGGTCAAGAGGCTTTCTGCCCCGCCCAAGCTTTCCGCGAAAGTAATCAGCTTGACGCTCTTGAGAACCCGGTCGACTTCTTCGTCGCTGTCCAAATAAAAGGAGATCATCCCCGCCTTGCCCGGGTAGAGGACTTTTTCCACGTACGGCGCCTGCTCCAGGAAAGAAACGATCTTTTTCGCGCTGGCCGTGTGCTGCTGCATTCTTAAAGGAAGAGTCTTCAAGCTTCTGTTCAAAAGCCAGCTGTCAAAGGCGGACATAGTGTCGCCAACCGTAATGGTGTACTGGAAGTAAAAGTCGGCCAAAACCGGATCCTTGACCACCACGACCCCGCCTAAAATGTCGTTGTGCCCGCCCAGGTACTTGGTGGCTGAGTGAATGACCACGTCTGCCCCTTGGGTCAGCGACTTTTAAGTATTGTCAACGGCCCCAAATTAACTGTTTTCTTAATCTAAAACTAATTATACCCGAAGGATCAGCCTTTTCCTAGCAGATAAGAAATGAAGAAAAAAATAACCTTCGAAAGCAGTTTCCCGCTTTCGAAGGTTATTCTTTTTAACCACCAAGGTAGGCCTTTTGCACAGCCAGGTCGTTGAGCAGGTCCTGCCCGCTGCCGGTCATCTTAACTTCGCCTGAGGCCAAAACGTAGCCCTGGTTGGCAATGCTGAGGGCCTGCCGGGCGTTTTGTTCAATCAAGAGGACAGTCATGCCTTCCTTGTTAATGCTTTTAATAATGTCAGAAATTTCCTGGATGTAGATTGGCGCCAAACCCATGGATGGTTCATCCAGCAAGAGCAGCTTCGGCCGCTCCATCAAGGCCCGGGCCATGGCCAGCATCTGCTGTTCCCCGCCGGAAAGAGTTGCGGCTTCTTGCTTTTGCCGTTCCTTCAAGATCGGGAAGCGTTTGAACATGGCTTCCATGTCCTTTTCCACCCCGTCCTTGTCCTTTCGGAGGTAAGCGCCCAGCTGCAAGTTTTCCTTTGAGCAAAAGAAAAAGGAGCCAATGGCTCCTTTTTTCCAGCTTTAAAAGCGCTTGCCGGTTGCCCGGTAGCCGATATCACGCCGGTAGAATGTCTGCGGGATATCCAGCTTGGCCAGGTAGGCATAAACGTGTTCTTGGGCTTCTTTTAAGTCAGCTGCCTCAGCCCGGACCATCAAGATCCGGCCGCCGCTGCCGACCAAATCAGTAGCCGGGCCGGTTACGTTGGCACAGTCAACGAAAATGCCATCTTCAGCTGGCAATTGGCCCAGTTTTTGCCCCTTAAGCGGCTTCTTCGGATAGCCTTCAGCGGCCAAAATGACGCCAAGGACTGCCTCATCCTTTTCTTCAACGGCTGGCATTTCCTCATCATTTACGCAGGCAGCAACCAGTTCCGCAAAGTCGCTCTTCAAGCGCGGCAAAACAACTTCCGTTTCCGGGTCACCCAGGCGAACATTGTATTCGATCATTTTCGGCCCCTGCTTAGTCATCATGAGGCCCAGGTACAAAACGCCGTGGTAGTCATAGCCGCCAGCCAGCAGACCCTTGGCCGTCGGTTCAACCAACTGGTCAACGATTTCCTGGTATTCAGCCTGGCTCAATTGCGGAACCGGGCTGTATGACCCCATCCCGCCGGTGTTCGGCCCCTTGTCGCCGTCATAGGCCCGCTTGTGGTCCTGAGCCAGAGGCAGGAGGCGGTAATTGCCCCCCTGCATAACGGCAAAGACGGAGTATTCCGGGCCAGTCAGGAATTCTTCAAGAACTACCTGCTTTTGCCCCTTGGCAAACATTTCCGTCAAAGTACTTTCCGCCGTTTCCTGGTCTTCAGCGATGACCACGCCTTTCCCGCCGGCCAGGCCGTCCTCTTTCAAAACGACTGGCAAGCCAAAGTCTGGCAAGGCACTAATGGCAGTTTCCGCACTCTGGAAGGTTTCATAACGCGGGTGCGGCACCTGGTACTTTTCCATGAACTGCAGAGCATAGTCTTTTGACCCTTCCAATTGGGCTGCTCTGGCATTAGGCCCGAAGATCTTCAAGTCAAAAGCATGGAAGTAGTCAACAATCCCGGCTACCAAGGCATCTTCCGGACCCACAAAGGTCCAGGCAATGTCTTCCTTAATAGCAAAGTCCTTCAAGGCCTTGAAGTCGTCTTCTGCAATACCGGTAGCTTTAACGCCGATCGCGGCCATGCCGGAGTTGCCCGGCGCGCAGAAGACTTCTGCAACGTGCGGACTCTTCTTCAAAGCGCGGGCGACGGCGAATTCCCGGCCGCCAGACCCGACTACCAAAATTTTCAGCTTGTCTTTCATTTTTTATCAGCCCTTTTAGTGTCTAAAGTGACGGACGCCAGTGAAGACCATGGCAATGCCGTACTTGTTGGCCATGTCGATGGATTCCTGGTCACGGACAGACCCGCCTGGCTGCACGATGGCCTTGATGCCGTGCTTACCGGCGTATTCAACGCAGTCGCTGAATGGGAAGAAGGCATCGCTGGCGAGGACTGCCCGGTCGTCCAGGGCTTCTGCCGCGTGGTCGATGGCAATCTTTTCAGAGTCGATCCGGTTTGGCTGGCCGGCCCCAACACCCAGGGTGCGTTCATTGTTAGCGACAACGATCGCGTTGGACTTGGTGTGCTTGACTGCCTTCCAGGCAAAGAGGAGACTTTCCAGCTGCTCTTGCGTTGGCTTGGCCTCAGTTACGCATTCCCAGTCAGCGAAGTCTTCGTCCAGAACATCCTGGTCTTGCACCAGCAAACCGCCCATGACGGATACAGTTTCCTTGCTAGTTGCTTCGTCCTTCTTGCTGAAGTCCAGCTTAAGGATCCGGAGGTTCTTCTTCTTGGTCTTCAAGGCTGCCAAAGCATCTTCATCATAGTCTGGTGCGATGATGATTTCCAGGAAGATCTTGTGCATCTTTTCAGCAGTTGCCAGGTCAACCTTCCGGTTCAAGGCAATTACCCCGCCAAAAATTGATACAGGGTCAGCAACGTAAGCCCGGTCCCAGGCTTCTTCTAAAGTATTCCCTTGGCCGATCCCGCATGGGTTCATGTGCTTCATGGCCACGACAGTTGGCTTGCTGAATTCGCGGACGCATCTCAAGGCTTCGTCAGCATCCTTGATATTGTTGTAAGACAGCTCCTTGCCGTTTAATTGTTCAGCTTGCAAAACTGAGAAGGCCTTTGGCAGGGCATCTTCGTAGAGCCAGGCCTTTTGGTGGCTGTTTTCCCCGTAGCGCATGGCTTCCTTTAAGTCGTAAGTTAAAGTCAGCTTTTCCGGAGCAGTTTCGCCGGCCTTTTCAGTCAAGTATTGGGAAATCAAGGCATCGTATGAAGCAGTCAGGCGGAAAGCCTTAGCCGCTAAGCGGGCCCTGGTTTCCAGGCTGGTAGAGCCGTCTTTTTCAATTTCAGCCAAAACCTGGTCGTAGTCAGCCTGGTCAACCACGATCGTTACATCGCGGTAGTTCTTGGAAGCTGACCGCACCATGCTTGGGCCACCGATGTCAATGTTTTCGATAGCTTCAGCCAGGGTCACGTCAGGCTTTTCAATGGTCTGCTTGAATGGGTAGAGGTTAACGCAAACCAAGTCGATTGGCGTAATCTTGTGTTCCTTCAAAGTTGCCACGTGTTCCGGCAATTCCCGCCGGGCCAGGAGGCCGCCATGGATGTAGGGGTTCAAGGTCTTGACCCGGCCGTCAAGAATTTCCGGAAAGCCAGTCACATCTTCAACTGAAATAGTTGGGATGCCGGCTTCATCCAAAACGCGCTTGGTACCGCCAGTTGACACGATTTCGTAATCATTGGCCACCAGGCCCTTGACGAAAGGAACCAAGTTGTTCTTGTCTGAAACACTTACAAGTGCACGCTTCATTTATTTGTTCTCCTCTTCAAATTTCAGCAAAGCTTTTCTCAAGGCTTCCGGATACAGATGGTGTTCACATTCGTGAATTCTTGCTTCCAGAGTATCAACCGTGTCGTCGTCATAGATCGGCACGTGCCTTTGGGCAATGGCCGGACCAGAGTCCAGGCCTGAGTCGATATAGTGAACCGTTACCCCGGTTTCAGCCGGGTGGTCGGCAAAGGCCCGTTCAATTGAGTGCAGGCCTGGGTAAGCCGGCAAATAAGCCGGGTGAAGGTTGACGATTCTGCCTTCATATTCGCTCAAAATCGTTGGCCCGATCACCCGCATGTAGCCAGCCAGGGCAATAAAGTCGATTTGGTAGTCCTTTAAGACTCGAAGGATCTTTTCTTCGTACTTTTGCTTGCCGCCGCAGGACTTGACCGTAAAAGTCACTACCGGTGTGTGGAATTTTTCTGCCCGCTTGATCACCGGAGCGTCCGGGTGGTCACAAAAGAGCAGGGCAAGGTCGCCGGGCAGGTCACCCTTTTGAAAATGTTCGGCCAGAACTTCATAGTTAGTTCCGTTGCCGGATGCAAAAATTGCTACTTTCATTATTCTACCAATTTAATAAAGATCTTCTCGCCGTCAGTTCTCTCACTCAAGTGGCCAACTTCAAAGACCTTTTCGCCACTTGCCAAAAGCAGCTTCTTGGCTTCTTCTTTCTTGTCAGCCGGTACTGCCAGGATCATCCCCAAACCCATGTTGAAGGTCTGCCAGCAGTCATCATCTGACAAATTGCCGACTTGCTTGAGGTAGTTGAAGATGTCCGGGACTTCCCAGCTGCCAGCGGCAATTTCTGCCCGCAGGCCGTCATTGAACATCCGCGGCACGTTTTCGATGAGGCCGCCCCCGGTAATGTGGGCCACGCCGTGAACCAGCCCTTGCTTGATCAAAGGCAGGACAGACTTGATGTAGATTCTGGTTGGAGCCAGCAGGCTTTCACCCACGCTCTTGCCCTTCAGTTCAGCTGGCTTGTCAGTCAGCTTGACATCATGGTCCTTAAAGAGGATCTTGCGGACCAATGAAAAGCCATTGGAGTGGACCCCACTTGAAGCCAGGCCCAAGAGAACGTCACCAGCTTGCGGAGTGTCAACTGACAAAAGGCGGTCTTTTTCCGCTACCCCAACTGTAAAGCCGGCCAGGTCGTATTCGTCTGGGGCGTACATGTCAGGCATTTCTGCGGTTTCCCCGCCGATCAAGCTGGCCCCAGCCTGCTTGCAGCCTTCAGCCACGCCTTGGACAACTGAAGCCAGGAGGGCTGGATCGTTGTGCCCGCAGGCAATGTAGTCCAGGAAAAAGAGCGGTTCAGCCCCTTGAGCCAGGACGTCGTTAACGCACATGGCCACTACATCGATCCCAACGGTGTCATTCTTGTCCATCTTTTGGGCGATAATCAGCTTGGTGCCGACCCCGTCAGTCCCGGAAACCAGGACCGGGTGGTCATAGCCCAGGGAATCAAGGTCAAACAGGCCGCCAAAGCCGCCAATATTGCCCACGTAGCCTGGCCGCTTGGTTGAGGCTACCGCCCCCTTGATCCGGCGCACCAGTTCATAGCCAGCATTAACGTCAACGCCTGCATCCTTATAGCGATTCACGATCATTCACCTCTGTTTTGCTTCTTTAAAATTTCTTCAACCGGTTCCACATTCAGCGGTTCCTTGATTTGTTCTTCGTAGTCGTACAAAGGAGTCGGGTACTTGCCGTCAAAGTAAGCAACCGTAAGGCCCCCGTTTGGCGCGTCACCGGTATCTGGTATGTCGACTGCCTTGATCAGGCTTGGAATGCTCAAAAAGCCCAGGCTGTCGGCCCCGATCAGCTTGCACATGTCGCTGACGCTGTACTTGGCCGCCATCAAGTCTTTTCTTTCAGAAATATCAATCCCGTAGAAGTGCGGGTATTTGAAAGGCGGAGAAGCAATCCGCATGTGGACGGACTTGGCCCCGGCTTCTTTCAGCATCTGCACGATCTGCCGGGAAGTCGTCCCGCGGACGATTGAATCGTCAACGACCACGATATTTTTGCCGCTGACCACCCCACGGACAGGAGCAAGCTTCATTTTAACCCCCTGCTCACGCAGAGCCTGGGTCGGCTGGATGAAGGTCCGGGCAATATATTGGTTCTTGATCAAGCCCATTTCATAAGGCAGGCCAGCTGCTTCAGCATAACCAGCCGCGGCTGACAGTGAAGAGTTTGGCACCCCGATAACCATGTCCGCTTCTTCTGGAGCTGGCTGTTCCTTAGCCAGCAGTATCCCCATCCGCTTTCTGGCGGTGTGGACGTTAACCCCGTGGATAATGGAGTCTGGCCGGGCAAAGTAGATGTATTCCATTGAGCAGACGGCCAGCTGGGTTTCAGTCGTGTAGTGGTCAATCTTGATCCCGTCTTTGTTGATGATGATGAGTTCACCTGGCTGCACATCCCGGACCAGCTTGGCGTGTACCGCGTCAAGGGCGCAGGATTCGCTGGCTACGACATAGCTGCCGTTGTCCATTTGCCCTAAAACCAGGGGCCGGAAGCCGTTAGAGTCAAGGGCGGCATAGAGGGTGTCATTGGTCATCAAGAGGAAGGCAAAGCCCCCTTTGACTTCGTTCAAGCTGGCCTTCAAGGCTTCGATAAAAGGCATACGGACCTTGCGGCGGATCAAGTGGATCAAGACTTCCGTGTCAGAGCTTGACTGAAAGACTGACCCGGAATCTTCTAGGCGCTTTTTCAGCGTCTTGGCATTGGTCAAGTTCCCGTTGTGGCAAAGGGCGATTTCCCCGTCCTGGAAGTGGAAGAGGAAGGGCTGGACATTGGCCAGGGAGTCTGAACCGGCAGTACCGTAGCGGACGTGGCCGATAGCCATGTTCCCTTTTAAAAAGTCCAGGTCAGCCGGGTTGGAGAAGACTTCTGACAAGAGCCCCCGGTCACGGAACTGGCGGAGATTCTTGCCATCGCTAGCCACGATCCCGGCCCCCTGCTGGCCCCGGTGCTGGAGGGCATGGAGACCAAAGTAGGTCACGTTGGCCGCGTCAGGGACATTGTAGATCCCGAAAACGCCGCATTCTTCATTTAATCCTTTGATTTCATAAGGCATGGCAGGGCTTCCTCCCAAATTTGCTTCAATTCCGCTACCGGCAAGTCGGCTGCTTGGTCCTTCAAGGTCAGCTTCAGGCTATCGCCAGCCGTTTGGCCGATCTTGACCGCGTCAGCTGCCAAAGCTGCAGCAAATTCAGCTGAGTATTCGCTTGGCACGCTGACCAGGAAGCGGCCTGGAGTTTCGCTGAAGAGTTCGGCACTGGTCAAGTCGCAGGCAACTTCTGCCCCGATCCCGTGGCCAAAGCTGCTTTCAGCCAGACTGACAGCCAGGCCGCCTTCGCTTAAGTCGTGGGCGCTGGCCACGTGGCCGGCTTCCATTTGGGCCAAGAGGCGCTTCTGGTAGTCCTTAATGTGGTCTAAGTCCAAATCGTTCAAGGACCCGAAGATTTCCCCGGTCAGCATCTTTTGCAGTTCTGAGCCGGCGTAGTCCGCCCCGGTTTGGCCGACCAAGTAAAGGTCGTCGCCTTCTTCTTGGAAGCTGTCTCTGACCAGGTGGTCCAGGTTCTTGACCAGACCAACCATGCCGACCATTGGGGTTGGGTAGATGGACTTGCCGTCAGTTTCGTTGTAAAGGGAAACGTTACCGGAAACAACTGGAGTTTCTAAGACTTCACAGGCCTTGGCAATCCCCATGACTGAGTGGTGGAGTTCCCAGAAGACTTCCGGTTCATTCGGGTTACCGAAGTTCAAGCAGTCAGTGATGGCCAGAGGTTCTGCCCCGCTGGCGATGATGTTGCCAGCTGCTTCAACAACGGCCCGCTTGCCCCCGATTTCCGGGTCCAGGTAGATGAAACGGCCGTTGCCGTCAGTGGTCATGGCAATCCCCTTGTGGGTGCCGCGAACCCTCAAAACGCCGCTGTCTTCACCAGGCCCGACAACCGTGCTGGTTCTGACCATGGAGTCGTAGGTCTGGGTGAACATTCCCTTAGAAGCGATGGTTGGCTGGGCCAGCATCTGCTTGTAGGTCTTTGCCAAATCCGTAATCTCAGGTTCCCAGGCCGGCTTAGCCGCGTCATCGATCATGTGCTGCGGCTGCTTTTCTTCGCTTGGTTCTTCCAAGACATCTTCAGTCAGGCTGGTTACCGGGATATCGCAGACAACTTCGCCGTGGTGGCGCAAAACGTAGTTGTGACCGCTGGTAATCCGGCCTATAACAACGGCGTCAAGGTCGTAGAAGTCAAAAATCTTCTTGACGTCTTCTTCGTGGCCCTTCTTAACGCAAAGCAGCATTCTTTCCTGGGATTCACTCAGCATGATTTCGTAGGCTGACATCCCGCTTTCTCTTTGCGGTACCAGGTCCAGGTTCAGTTCCATGCCAGACTTGCCTTCTGAAGCCATTTCTGAACTTGAGGAAACGATCCCGGCTGCCCCCATGTCCTGGATGCCGACCAGCCAGTCAGCGTGCTTTTGGGTCAATTCCAGGCAGGCTTCAAGCAGCAACTTTTCCATGAAGGGGTCACCAACTTGGACAGCTGAGCGTTGGCTTTCGTGTTCTGAGTCAAAGGAGTGAGAAGCAAAGGTTGCCCCGTGGATCCCGTCACGGCCAGTCTTGGCCCCGACGTACATTACGGCATTGCCTTCACCTTGGGCCAGGCCCTTTTGCATGTCCTTAACGTCCAAAAGGCCGACGCTCATGGCGTTCATGACTGGGTTGCCCTTGTAGATGTCGTCAAAAGTGAGTTCGCCGCCAACAGTTGGGATCCCCATGCAGTTGCCGTAGCCGCCGATGCCGGCGACAGTTTCGTTTAAAAGCCAGCGGGTGTGGGCGTCATCTAATTCACCAAAGTGCAGAGAGTCCAAAGTAGCAACTGGCCGGGCCCCCATGCTGAAGACGTCACGCAGGATCCCGCCGACACCAGTAGCTGCCCCTTGGTAAGGTTCAACAGCAGTTGGGTGGTTGTGGCTTTCAGCCTTGAAAACGACAGCTTGGCCGTCACCGATGTCAACAACCCCTGCCCCTTCACCAGGCCCTTGCAAAATGCGGGGACCCTTGGTTGGGAAGAGACGGAGAACCGACTTAGACTTCTTGTATGAGCAGTGTTCGCTCCACATGGCTGCGAAAAGGCCGGTTTCAGTGTAGTTTGGCAGGCGGTGCAAAAGCTTGTCACAGATGTAGTCGTATTCTTCTTCAGACAAGCTCCAATCGAGATAAGGCTTCTTTTCTTTGATTTCTTCTGGAGTCATTTCCTGCATCATTACGCTTTTACCTCCGCGTGGTTCAAAATTGACTTAAACAGGCGCAAACCGTCGGTGTTGCCCAAGAGGGCTTCGACTGCCCGTTCCGGGTGAGGCATCATCCCTAAGACATTGCCTCTTTCGTTGGTGATCCCGGCAATATTGTTCAAAGAGCCGTTCGGGTTTTCCTTTGAATAGCGGAAAACGACCTGGCCATTGTCTTCGATCTTCTGCAAGGTTTCCGGGTCGGCGTAGAAGGAGCCGTCAGCGTGCGCGATCGGCAGGTTGATCTTCTCACCCTTTTGGTATTCAGAAGTAAAGATGGTGTCGTTGTTGGCTACTTCCAATTCAACCGTCTTGCAGACAAACTTCAAAGAGTCATTTCTCTTCAAAGCGCCTGGCAAAAGGCCAGCTTCGGTCAAGATCTGGAAACCGTTGCAGGTCCCGAAGACCGGCTTGCCGGCCTTGGCCATTTCGACAATAGCGGGCATGATATTGGTAAAGCGGGCAATAGCGCCGGCTCTCAGGTAGTCCCCGTATGAGAAGCCACCTGGCAGCATGACAGCGTCAAAGCCGTCCAGGCTGCTTTCCTTGGAAGGAACGTAGGCCACGTCAGCTCCACAAACCGTGTGCAAGGCTTCGTAGAGGTCGATGTCGCAGTTGGAGCCCGGGAATTGGATTACCGCAAACTTCATTATTTTTCCTCCAAGATCTTGTAGCTGTAGGTTTCCATGTTGAAGTTGACCAGCAGCTCTTCAGAAATTTCCTTGACAGTTTCTGCTACAGGCTTGTCTCCTTCTTCAATAGTTACATCGAAGAACTTGCCGACCTTGACGCCCTTGACTTCATCGTGGCCCAAAGAGTGAATTGAGTTGGTGATGGCTTCACCTTGCGGGTCGAAAACTGATTGCTTGTAAGTAACGTAAATCCGTACAGTAGTCATTTGCTTAATCCTCCTTGGCCAAAGCATCCTTCAAACGGGCCAAAACTCTTTCGTAAACATCGATTAGGTTGCCGATTTGCCGGCGGTAAACGTCCTTATCCATGTGGTCCTTGGTTTCCATGTCCCACAGGCGGCAGTTGTCTGGTGAGAATTCGTCAGCCAGGACGACTTCACCGTTTGGCAGGGTCCCGAATTCAACCTTGAAGTCAACCAGCAGCATGCCGGCGTCGGCAAAGAGCTTGGTCAAAAGCTGGTTGACCTGGCGGGAGATTTCCCAGATCTGTTCATGTTCTTCATGAGTCAGCAAGTGGAAGGCAATGGCGTCTGATTCATTCATCAGCGGGTCGTGCAGGGCGTCGCTCTTCATGAAGAGTTCTTCAACTGGAGTGTCCAGCTTCTCGCCTTCTTCTTTCAAGCCATAACGCTTGCAGAATGATCCAGCCGCGATATTCCGAGTAACAACTTCCAGGTCGATCATCTTGACCTTCTTGACCAATTGTTCGTTTTTAGACAAGCGCTTGATAAAGTGCGTCTTCACCCCATGCTTCATCAAATATTCGAAAACCAGGCTGGAAATTTCCGCGTCAAGTTCACCCTTGTTTTGGAAGACATCGTGCTTCAAGCCGTCCAAAGCGGTAGCATCGTCCTTGTAAACAGCGCGGAGCACTTCTGGATCGTCAGTGGTCCACATTTCCTTAGTCTTACCCTGATAAAGCAATTCTGCCATTTTTTACCCTCCGATTAACACAAACTATAATAATGTAAACAGGAATTACTATTCGTAATTTCTTTCTTGAACTAAGAATAACAACTTAAAGGATAACAACTTAAAAAAGTTTGGTCAAGAGATTATCGAATATTTTTTAGCTATCACTCCTCTTACAATCGGATATTCCTTCATTATTTTTGGACAAAAACTTTAACGAGCAAAAATCAAGGGATAAAAACCGAACAAAAAGCGGCTCATTTTATGAGTCGCTTTTAATTATCTAGATTTCTCTATCCTTTTATATATTGGCAATCGCATTGAAAATCATTACCTTTTTACACTTATTCCAAACCTAGGCGCTTGTAGATGTCGTCAACGTGGCGCAGGTGCCAGTGGTAGTCGAAGGCATCGTCAAGATCAGCCTTAGTCAGTTGCTTTTGAATGGTTGGGTCTGCTTCAAGGAGAGGCCGGAATGGAACTTGTTCAGCCCAGCACTTGGCCGTGTATGGCTGGATCAAGTCGTAGGCAGCTTCCCGGCTCATGCCGCTTTCAACCAGCTTGAGCAGAACGCGGCCGGAGTAGATCAAGCCCAAAGTCTTGTCCATGTTCTTCTTCATGGTTTCCGGGAAGACATCCAGGTTGGCCAGGATCTTGCCCATCCGGTTGAGCATGTAGTCAAGACCGATGGTGCTGTCTGGCAGGATTACCCGTTCAGCACCTGAGTGGGAGATGTCTCTTTCGTGCCACAGGGTTACATCTTCGTAGGCAGTTACGACATTGCCGCGGAGAACTCTGGCCATCCCGCAGATGTTTTCTGAACCGATCGGGTTGCGCTTGTGCGGCATAGCGGAAGAACCCTTTTGCCCTTTGGCGAAGTGTTCTTCAACTTCGTGGATTTCCGTTCTTTGCAAAGAACGGATTTCCGTAGCGATGTTTTCCAAAGAAGTTGCAACCAGGGCGATGGCAGCAATGTATTCAGCGTGCAGGTCACGTGGCAGGACCTGGGTTGAAATTTCCTGGGCGTGCAGACCCAGCTTCTTGCAGACATACGCTTCTACTTCTGGGTCAACTTCAGCGAAAGTCCCGACGGCACCGGAAATCTTGCCGGCTTCCACTCCGCGGGCAGCATGTTCAAAGCGTTCCTGGTTCCGCTTCATTTCTGAGTACCAGCGGGCGAACTTCAAGCCGAAAGTAGTTGGTTCAGCGTGAATGCCGTGGGTGCGGCCCATGCAGACCGTATCCTTGAATTCAAGGGCCCGCTTGGCCAGGATGTCGATGAAGTCCTGGATGTCCTTGCGAAGGATGTCGTTAGCCTGCTTCAATTGGTAGCCCTGGGCAGTGTCAACCACGTCAGTACTGGTCAAGCCGTAGTGCACCCACTTCTTTTCCGGCCCCAATGATTCAGAAATGGTCCGGGTGAAGGCAATAACGTCGTGGTGAGTCACGGCTTCAATTTCGTTGATGCGGTCAACGCTGAACTTGGCGTTCTGCTTAATCTTTTCCACGTCTTCTGCCGGAATGTGGCCAAGCTTGGACCAAGCTTCATCAGCAGCGATTTCTACTGCCAGCCAGCATTCATACTTCTTTTCATCAGTCCAAATGGCACCCATTTCTGGTCGGGTATAGCGCTCAATCATTTATTTTCCACCTTTAAAAAATCGACAATAATCTGCTTTTTAATTATACATCCCAAACTTTTGTCGCGACAATCTCGGCCAAAGTCTTGTCGACATCATCAGTCAGGATCGTCACGTGCCCCATCTTCCGGTCTCTGCGGACCTCGCCCTTGCCATAGTCATGGAAGGACCACTGCGGCTTTTCGGCGATCAGCTTTTCCGTGCCGGCCACGTGCTGGCCTAATACATTGACCATGACGACCGGGCTGAGTAGCTTGATCTTTGGCAAAGGCCAGTTGCAGATGGCCCGGTTGTGGACGGCAAACTGGGAGAAGTTGCAGGCTTCAATTGAGTAGTGGCCGGAATTGTGGGGCCGGGGAGCAAGTTCGTTGATGACAATTTTGTCATCTTTAGTAACGAACATTTCTACGCCTAAGATCCCCTTTAGGTCAATGGCTTCAGCGATCTTAACGGCAGCCTCCTGGGCCTTTTGGGCCAAGTCCGGGGAAATCCGGGCCGGGACGATACTTTCATGCAGGATTTCGCCCTGGTTTATGTTTTCGCTGACCGGGAAGACCGTGACTTGGCCATCAGAGTTGCGGCCAATCATGACGGAGGCTTCCATACGGAAGTCGACAAATTTTTCCAAAATGCAGTCACCGCAAGCCAAGACATCAGCAGTCTTGTCCAAGTCGGCAGCTGCTTTTAAAACAACCTGGCCCTTGCCGTCATAGCCGCCTTCACAGGTCTTCAAAACGGCTGGCAGGCCCAAGTCACTGACGGCTTCTTCCAGGTCAGCCCGGTTCTTGACCGCTCTGAACTTGGCCACTTCACAGCCGGCACTTTGGATAAAAGTCTTTTCCCGGATCCGGTTGTTGGTCGTGTATAGAAGCTTGGTCCCTTGCGGAATAAAGACCTGGTCCTTGACGCTCTCCAGGGCATCCAGGTCCACGTTTTCAAATTCGTAGGTCAAGACATCGCTTCTAGAGGCCAGTTCATGGATGGCGTCGATATCACTGTATTCAGCCACGATCTGGTCATCTGCGGCTTGGCCGGCCGGGCAAGCCGGAGTTGGGTCCAGGATGATGACCTTCATTCCGCTGGCCTTGGCATCAAAAGCCAGCATTTGCCCTAATTGCCCCCCGCCAATGATGCCGATCGTTTGGCCGGGCTTGATTTTAATAGACAAGGTCTGCACTGCTTTCTTTGGCTTGGTCGTGCATTTCCTTGCGGTAGTCCACGATCTTTTGCTGGAGTTCTTTATCTTCGATGCCTAAGATCTGCATGGCTAAAAGAGCCGCGTTCTTGGCGCCGGCCGGGCCGATGGCAGTCGTCGCTACAGGGATGCCGGCTGGCATTTGCACGATGGAAAGAAGGGAGTCCATCCCGCCTAAAGCGCTGGTCTTGGCTGGGCAGCCAATTACCGGCAAGGGAGTGTTGGCAGCGATCATGCCTGGCAGGTGGGCTGCCCCACCAGCGCCGGCAATGATCACCTTAGTACCGTTTTCCGCTGCTTTTTGGGCAAAAGCGAACATTTCCTCCGGCATTCTGTGCGCTGAAATAACCTGCTTGTCGTAGTCAACCCCAAACTTGTCGAGCAACTTGCAAGCTTCCTGCATATAGCCCCAGTCTGACTTGGAGCCCATTACAACACTGATTCTACTAGTCACGATTATTCCTCCTGTCTGCTTTCCCTTAGGATACCAGAAAACGGGACTTTTTTAAAGAGAAAGATGAACTATTTTCCGTGAATGCGGTTGGATCATTCACTTTTAATTAAAAAATCGTAAAAAAAGACCACCATGTGGTGATCTTAAATGCCATAAAATCAATCTTTCTTTTCTGCCCGCCAGTAATGCTGGCCATAAGGGTCCCGCCCCAAGCGGCCAGTGTCAACCAAGTAGCGGCGCAAAATCGCGTAGTCGTTATAGACTGCCGCCAAAACTTCATTGACTTCCTTTTCAGAATAGTCCCGGCCAAATTCAAAGCGGTCGATTAGCGCTTCAAACAAGGCCTCTTTCGCCTTTTGCTTGCGGAGAATGACCTGCAGGCGGCTGTCCTTGAAAGATCCTGTAATATCCATTTAAATTTCCTCAACTTCCAACTTCTTACTTTGCATGCCTAAAATTGCCAGCAAAAAGATCAGCAAACCCAAAGCGGCTAGACTTACCCAGGCAAAGCCGATGCCAAAGCGGTCTGACAAAAAGCCATTAATTGCCAAAATCGCGACTTCCGCGCCCGCGTCCAAGGCATTGGCAACTGACATAATAGTCGCCCGGCGGTTCTCTGTTTGAATCGTCGTTTGCAAAACAATCCCGCCCAGCATGTTTTCTAAACTGCCAAACATGGTATGGAGCATGAACAAGCTCAGAGACCCATAATACCAGTTTTTCAGACCAACCACGCCGAACAAAGTAGCAGCCATCATAACCGTGCTGACAACAATCAAGCGGATCTGCCCCCTATTAGACAGCGGCTTTTTGGACACATAGCGGTTGTAAAGGGAAATCGCCAGCATCCCGGACAGACTCATCAAGACAGAAATCGTCCCGGAATTAACAGTCTTGCCGCTTTGAAAGTACATCTGCCACTGGTCAAGCGGTCCGGCTGAAATAATTGCCACGGGAAGCAGAAGCAAGATCCAGGCAAAAGTTTTCTGTTCTTGCTCGACCGTGTATTTTACATCGGCAACCAAGTTCAGTTTCGGCATCCCTTCTTCCGCCTCAGCCAGGTTTTGGCTGTCATATTTTAAGAGAGGGATGATTGTCAAACTGGTCGCAAGCAAAAAGGCCGCGCCGATCAGCAAGGGCAGGTCCAGGCGAATATTGCCTAAAATATTAGCCCCAACGAAGGTGGCTGCCATGGTCAAGGGCGTGCCGATAATACTGTAGCCAGAAAAAATCGCGCCAAGCTGATCTTTTTCACCATGCTCAACGGCCTTGTTGGCAATCCAGGAAGTCATGGTGCCCGATTGCAGGGAATCCCCCAGCGCGGTCAAGACCCCGCTGACTGTCATCCACAATAAATTCATGGGACTGAGTGCCAAAATTATCAAACCTAAGGCTCTGATGATCCCACTGGCCATGATGGTTTTTAAATAGCCGAATTTGTCAGCAATGTAGCCGGATGGTATTTCGGCAAAAAAGGTGACCAGCCAGAAAATCTCCAAGAAAAGATTGATCAAGCTATAGCTGTAGCCGTTATGCCGCATAAACAGGTAGATCGTTCCGCTCCATAGCGAGGTTCCCATCGTATACAAGATGCTGATGTAGTAAAAAATATACTTGTATTTCTTCATCGCTCCTCCAGTTTGTTATCTCCATAAATCCGCTCTTACCGCGACTAAGTATACCTCCTTAATTTATCATCTTTCTTAAAAAATCCATCTTTTTTCTTCATATTATATTAATAATAAGGCGCTCCTTTATCATCATCCCGCGCAAAATAAGCTTTCACTTATTATTTTTAGATTAAGAAATGCACTAGGCAGTTATACGCCTAGTGCATTTCAGTAAGAATATTTATTTTTTAAGAGCCTGCTCTTGAGGCTGTTTCGCCATATTCGAGTCAAAAACTTCTGCCCGCTTGTTCATGGCTATATAGATCTTTGACTTGTAAGAAGCCAGGCCCTCTACTTCCCGCTTGGCATTGAAGTGGTAGTAGTTGGCCAGGTTACCCTTGGCATCAATCTTAAACAGGTAATCGTTAAAAGCAATGTAATAGCACTTGTGGGTGTGGGCAACACTGTAAGTAAAGCCCTGTACCTGGCTGGAGTTAGAAATCAAGTCACCGTCAGTAGTGGCTGCTTCTTTAACCTTGAAGCTGTTGCCCGTCCGGGTGATCTTCCAGATTTCAAAGCGGTGATTGAACTTGCTGTGGAACAAGGCCAGCATGATGTTGTCGTCAATCACGTCCGCGTTTAAGAAGTAGCAGTTGTTTTCCCGCTTGCCGTTGCTGACGGCAAAAGTCCAGATCCGCTTGACCTGCATGTCCTTCTTGTCAATCTGCAAAAGCTCGTTTGACCGCGGTTTCTTCGTATGGTTCCAGTTAGCCAGTTCATAGATATAGCGGGAAGTTGACCCAACAGACTGACTATGGCCGAGTTTAATGTAAGGACTGATCTTGATGCTCTTGACGTAATTCTTCCAAAGCTGGAAATTCAAGGTATTGGTTGGAATATACTGCAAAGCATACTTTGGCACTTGGTTCAATTGGTAAAGGACCATATGCCCCCGGGCACCATCCATGGAAGATTCTGGCCCGCCATAAAAGTTGGTCGTAACCATATCCTGGCCGTACACGTCCAAACCCTGGACATTGCCCCGGACATTGGTCTCCTGGCTTCCTTCCAGCAGGCTAAAAGAATTTGGCTCATAAAACTTAGTGGTCAATTTAGCCGTCTTCTTGCCATGCTTGTCAGTCCCGACGTAAGTGTGCGGGGTAACCTGGGCATTGTAGTTGCCTCTAAAAGCCAATTCATGCGGGAACCAGGTCTTGCCAACATTGCCGCCCTTGCCCAGCTTGGCATCAGCCTTGGAAATTCCTTCATTGGCATCGTTTCTGACCGTCACCGTGACCTTTCCGCTGGCCTTGCCGTAACGGTAAGTCACCATATACCGGCCAGGCGTCTTTTCAGAAATCCGGTCCGTCGACCGCTTCACCGAATTAACGTCAACCACGCTGCCGTGCTTGTCTGTCACGTAGTTGATGGCATCAGTCGTCACAAAGCCGTTGGTATCCAGCTCGTTGTTGACCAAGCTGACGCTCTTAACTAAAGACATCTTGCTTCTGGCAAAAGCCCGCTCGCTGACATAGCCGACCCCGCGGCCGTCAACTTAGACATAGTAATACCGTCTGCCCCGGGCGAGTTTGTAGGATCGGGACTGGACATGGGCCAACTTTAATTCTTTCGTAGTTGCTATCTTCTTGCCAAACTTCCAGACCAGCTTGGTCTTTTTCTTCTTGCCCTTGCCAGTCTTGACCTTACCTGCTTTAAGCTGGAGTAGATCCCATAGTTCTTCTTCCCATCGATCACCTTGGTCGACAGCTTCTCACTCGTGGCTACAACTGGCTGACCAGCTTTAAACAAACAGGCAATGGCCATAAATGCGGCTGAAAAGGCCAGCCTCTTCTTTAATTTTATTCTTCCTATACCCACAATCATTAGACTCAACTATTTTGTAATATGATTCACTTTCAAAGTTTCCGTTGGATGATTCAAGTTGACGTAGAGTTCGGGCCCGTAGCTGCTCAAACCTTCAAATTCCCGGCGGCCAGTGTCAAACTTGTAGTAGTTCAATAGCTTGCCGGCATCTGTTTTGCCATCTAAGCCTGCCCCGATCTTAAAGAGGTAGTCGTTAAAGGCAATATAGTAAACGTCATAGGCACTGTTCCAGACAAAGCCCTGGACTTCAGCGGAATTGCTGATGAGGTCGCTGCCGGTTGCCCCAACTTCCTTAGCCTTAAAGCTGTCGCCGCTTCTGGAAATCTTCCAGTATTCATAGCAGTGCTTATAAGCATTGTGGAAGAGAGCAAGCAAAGTGTTGTCGTCAATCACGTCCGCGTTGAGGAAAATCCGCGGATACTTGGCTGACCCGTTCCAAACCTTGAAGGTCCAGATCTTGTCAATTTCCATGGTGGATTTCTTGACCCGGATCAGTTCCTGGGAGTTGGACCAGTTGTTGGACCGGTTCCAGTTGGCCAAAACGTAAACATACTTCTTGGTGCTGCCGACTGACTGGCCATGGCCCAGCTTCATGTATGGGCTGACCTTGATGTTCTTGATATAGCTTAGCCAGGTGTTGAAGCTCAGCATCTTGCTTGGAATCAGCTGCCAGTTATACTTCTTGACCTTCCGCATATTATAGTAGACCATGTGCCCCCGGGCTTCCCAGTTGTCTGCCTGGCCTAAGTCAAGGTTGCTGGTCACCAGGTCATTGTCATAAAAATCGATCCCTTGCACAGCACTTGATACCTTGGCCTCCAGGTTGCTTGAACCTGGCGCGCTCAAAACTGCCGGATGATAGAAGATGGTTTCAATATCCGCGCCCTTAGCGTTGCCAGACATGGTCTTGGTCGCCCAGTACTTGTGGGAGCTGGAAACCGCGTCTTTTGAAGTAATAGTTGAAGATGAGGACAATCTGGCCCCGTCTCTGGCTGACCAGGTCGTAATCTCTGGCAAATCAGTTTTCACCGGCGTTACATCAGCCGAGCTGATCCCTTCTTTGGCATCCCCGCGTACCGTCAGCTTGCTGGTCGCCTTGGCCTTGCCGTACTTGAAGGTCAAAACCGCCGTCCCGGCCTTGCGGCTGGATACATAGCCAGTATCAGAAATATTCAATTCAGCAGACTTGCAGCTGATCTCAACTGAATCATTGTCAACCAGACTGCCGTGCTGGTCAGTCACGTAGTTAATCGCGTCTTCGGCGTTAAAGCCAACTGAGTCAGACGGGTTGTTGACCAGGCTGACCTGGGAAACCACATTAGCTTTCGAAAGGGCAAAAGCCTTCTCATTCACGTAGCCGACTGGCCGGCCGTTAACGTAAATGTAGTAGTAGCGCTTGCCATCTTTAACCTTGTATGACTTGGACTGGACGTGGGCGTATCTGAAGTCAGCCGAGACCGTCAATTTCTTGCCGAACTTCCACTTCTTCTTCACGTTCTTGTAGGCCGTCTTAGTCACCCACTTGTACTTGACCTGCTTGACCGTCTTGTACTTGGTCTTGCCCTTCTTACTCTTCTTCTTGACGGCGACCTTCTTCTTGACCGTGTACTTCTTCTTTTCCTTGGTCTTTGTCTTGACCTTCTTAGTTACCTCTTCCAGCTTGAGCGAAGAATAGACCTGGTAGCTCTTGTTACCCATGATCTTGGTCACAAGATCGGTCTTCGTGCTCTTACTATAGTCTTTGCTGCTTGCTTGCACCTGACTGGCCAGGCCGGCCATCAGTGCCGCACTGGTCATCATGCCCAGGGCAAAACGTCTCATCAAACTCTTCCCTTCACTTCTAAAAATACAAAACTCATAAATCTACGATTATTAACAAAAAGCACCCAGATAATTTACACTTTTATCACGAAATGCCTTTTTCATACTTTACCACAGTTTTCGGGCACTATTTCATTTGTAACAGATTTGTTAACTCATTTTAAGAAATATTGCTTTTGCAAAAATCAGTCAAAAACCAAAGAGAGCTTGTCCCCTTCCAGCTGCAGCTTGGCTGAATACCGCTGCCCGCTCTTTTTAGAGACAAAACCGTCCAGCTTGTCAGTCTTGCCCTTGCTGATCAAGGTCTTCACAATCCGCTTGCCCATATTCTTGCCGGCAAACTTCTTGGGCAAGGTGAAATGGCAGCCGCCCCGGTAATTACTGCAGCCGTAAAACTTGCCCTTGTCAGTAATTTCCCCTTGCTTGCAAACCGGGCAGGGGCCGATTGCCGCGGTTTTGGCTTGCCGGGTCTGGGCTTCTTCCTGCAAGCCCTGATCAACCTGGATCTTGCCTGGCACTTCTGTAATCATCTTTGAAATGAATTTCTTGATCTGCCCTAAAAAGTTATCCTGGCTCCGCTCTTTGGCCCCGACTTGCTTTAAGGCCTTTTCCCACTGGGCCGTCATCTGCGCGCTGACTAAGAGTGGCTCAGCTTCCGCCGCCCTGCAGAGGATGGTCCCTTCCGGGGTAACCGACAATTTGTTTTGCCGGCTTTGCATGTAGCCCCGCTTCTTCAAGATTTCGATGGTGCTGGCCCGGGTAGCTTCCGTCCCGATCCCTTCAACGTCCTTTAAAGTAGCCTGGGCATCTTCATCGTCCAGGGTCTTGCCGGCCGTCTTCATGGCCGTGATCAAGCTCCCTTCCGTAAACTTGGCCGGAGGCTTGGTCTCTTCTTCTTGCTCTTTCAATTTTGCCGTCAGTTCCTGGCCGACTTCCAGGGGCGGCAGCTGGGCATCTTTAACCGGCCCTTCCAGAATCTTCCAGCCCAGATTCACGCTGACATTGCCGCTGGCTTTAAAAGTCAATTGGCCGACATTAATTAAAGCCGTGGTCTTCTCATAGACATAGGCCTTTAAAAACATCTCCAAAGTTCGCCGCAAGACCAGGCCATAGACCTGCCCTTCCAGCTTAGACATTTTGCCCATTTGTGCCTGGCTGGGCACGGTCTTGGTCATGATGATGGCGTGGTGCTCCTGGACCTTGCCGGAGTCGACATAGCGCTTCTCCGCCTTTAAGGGCTTCATTTGCTCTTTGACTTCTGCAGAATTTGGCAAAAGCCCCTGGTAGCGGTCCAAGTTCTGGGCCAGGTAGGCATACTCATTGTCCGTAATATAATTGCAGTCTGTCCGCGGATAGCTTAAAAACTTATTTTCATACAAATTCTGCACGGCCTGTAAAACCTGGCTGGCTGAAGCATGGTAGCGGCGGTTGGCTTCCGTCTGCAGGCTGGACAAAGAGAAGAGGCGGGGGCTGGCCTGGCTCTTTTGCTCCTTGTCCACCTTGGCCACCCGGCCAGTCTGCTTGCCCAGACTCCCGCCTTTAGCCAGCAAAAACCGCTCCAGTTCTGCCGGGCTCTTGAATTTCGTTTCCGGCAGCAAGCGGCCGGTAAATTTCTTTCTTCCCTGCCAAAAATCGGCCATAAGCAGCCAGTACTTCTCCGGCTTAAAATTGGCAATCTCCTGGTCACGCTTATAGACCATGTACAAAGTTGGCGTCTGCACCCGGCCGATTGAATAGGTCCCCTTGATCCCCTGCTTTCTTAACAGCAAGGTAAATAAGGGACTGCCGTTCATCCCAACCAGCCAGTCACTGATCTGCCGGGTCTGGGCTTCCTTATAGCGGTAGTAGTAGTCCCAGCCTGGCCGCAAGTTCTGGAAGCCTTCCCTAATCGCGGCTTTTTTCCAGTGAATTGATCCAGAGGCGGAAAAGGTGCTTCTGTTTCAAATCGATCCCCGCCTGCCGCATAATGGACCAGGCGATGTTTTCCCCTTCCCGGTCACTGTCCGTGGCAATCACGATCGTATCTGCCCGCTTGAGCAAATTAGCGACAATATTGAACTGCTTCTTCTTGTCCCGGGGAACCAGGTACTTGTACTGGTCGGGAAAAATCGGCAGCTTCTTTAAAGACCAGCGCTTGTAGCTGGCGTCATAGGCTTCCGGCAGGGCCATTTCCACTAAATGGCCAAAACCATAAGTGATCACCGTGTCTGCCGGCAAGATCGGGTCCGCCACCTTAATCTGCCCCTCCCCCTTCTGGCTCTGGGTAAAAGCGGCCGCGTATGCCCGGGCCTGGCTGGGCTTCTCTGCTAAAATTACCGTCGTCATTACATTTCCTGCCTTGCGTTAAAAATCCCGAGCAAATAAAAAGGACCCGGCCAAGTGGCCAGGATTGCTCGAACAAGCGTTTAATATTTGTTCCATTATAGTTTACTTTTGCCGGCTTGGCAAATTTTCTGCGGATATAACAAAAAAATCACTGAGGCAAGCCTCAGTGATTTCTCTGGTTGCAATCATGATTCGGGTGAGATTCGAACTCACGACCCACGGTTTAGAAGACCGTTGCTCTATCCAGCTGAGCTACCGAACCGTTATGCTCCGACGCAACAAATTAAGTATATTAGACCAGGGATAAATTGTCAAACATATTTCAGAAAAAAGTTGCGTTTTTCTTGGTCATTTTTTTCTTGACAAAAAGGAAGCGGTTTGCTTGCATTAACTTGAGGACTTGCTTAAAAAACAGCTAAAAAACTGGATAAAGCAAAAAGATACAATATCCCATAGATGTAAAGATATAAAGATGAGGTAAAGCATGAAATACAATCAATATGCCTACGTTGAAACCAGTCCGGAAAAGGCAACTGAAGAGCTGCTGGCGATCAACTTCTTGCCAGAAAACTACTCTTCTCTTTCCTTCAGTGAGCTCCTGGCCGTCTTGACCGGCAATGTCCTGGCGGAAGCCACGACCCGCCAGGCTAAAGACGCCAAATTGGCGGAATTTGCCGTGGACGACCAAACTGACCTGGCCGCCTTTCTTTTGGACACGCCGACTGCCATCACGGCCAGCCAGTTCGCTAATGTTGCCCTGCAGCTTTTAGGCTACCACCCAAACTACGACTACAGCCTGACTGATCCTTTGACTTGCGGGGAAAAGCATGCCCTGCCGGCCTTTAAGGACTTGACCAGCAAGGAAGAATTGATTTTTGCCTTCTACCGCCTGCTCAACACCCGGAGCAAAAACGGGCAGATCCTCTTGGACGTCATGGCCGGCAAGGGCTACTTCACCCAGTTCTGGGGGGAAGGCAAGTTTATGTTATTCAACGGCAAGTCCCTGCCAGTTTTTGACACAAGCCAGGTCATACGCGAGGTCGTTTACGTGCAAAGCGACCTGGACACGGACGGCGATGGCAAGGGCGACCTCTTGCCGGTCACGGTCTTCCGGCCAGTTGAAAGCCAGGACCAGCTGAAGGTCCCAGCCCTCTACACGGCTTCACCTTACTTTGGCGGGATCATCGACAATGTCAAGACTAACCACAATGTCGACGAGAACCTGACTGACGCGACCACTTGGACCAATCCCAAGTACGTGGCCAAGCCTTTAGTTAAAAGCCCTGCCCCCAGTGGCCAGGACGTGCCGGCCACTGAACTGGCAACTGGGCAATCTTCTTACGGCTTAAACGAATACCTCCTGGCCCGGGGCTTTGCCTCTGTCTTCTCCGGTGCCATCGGCAACCGGCACGGGGACGGGATCCGGATCACCGGGTCACCGGAAGAAACCATCTCCCAAAAAGAAGTCATTGAATGGCTGACTGGGGACCGAGTGGCTTATACTGACCGGACCCGCCGCTTTGAAACCAAAGCTGGCTGGTGTAGCGGCAATGTCGGCATGACTGGCCGCTCTTACCTGGGGACCTTGCAGATCGCCATTGCGACGACCGGGGTCAAGGGGTTGAAGACGGTGGTTTCTGAAGCCGCTATTTCCTCTTGGTATGACTACTACCGGGAACACGGCTTGGTTATCGCGCCAAGCGAATGCCAGGGCGAAGACATGGACAAGCTGGCTGAAGTCTGCCAGTCAAACCTCTGGGACGGGGGCAATTTCACTGCTAAAAAGGCTTATGAAGCAGAGCAAGCTGAACTTTTAGCCGCCCAGGACCGGGCAACCGGCCAGTACTCTGATTTCTGGGAGTCCAGAAACTACCGCCACCACGCCGATGGCATCAAGTGCTCCTGGATCTCCGTTCACGGCTTAAACGACTGGAATGTCAAGCCGAAGAACGTCTACAAGATCTGGCAAAAGGTCAAGCAGCTGCCGGTGGAATCCCACCTCTTCCTCCACCAGGGTCCGCACTACAACATGAACAACCTGGTTTCCATCGACTTCACCGACCTCATGAACCTCTGGTTCGTCCACGAGCTTTTGGAAGTGGAAAACGGGGCTTATGAGCAATGGCCAAAGGTCATGATCCAAGACAACCTGGAAGCTGACAAGTGGCACGCAGAAAGTGACTGGGCCAACGACCTGGGCCAGGCCAGCCTCTATTCACCAACGGCTGACGGGTACCTGTCAACGGTTGAAAACGGGACAGGCCAGCTGACCTTCACCGACTTAGGCGGGACAGAATTCAAGAAGGCCGGCATTAGTGAAACTGACTGGGAATACCAGTTTATCAGCGGGGAGAAAAAATGGGCCAAGGCCAGCCTCCGCTTTGAAAGCGAGGAATTCCTCCACCCGACTACCCTGGTCGGCCGGCCAAAGGTCCAGGTCCGGGTAGCAGCTAATAAGACTGTCGGCCAGCTGTCTGTTGCCCTGGTTGACCTGGGGACCCGGCAGCGGCTGACGGCTACGCCGAAGATTTTTGCCAGAGGAAACCAGCCCTTTGGCTACCGCTTCGAGGCAGACTCCTTGCAGGAATTCGTCCCGGACAAGGCCACTAAGGCCAAGCTGATTACCAAGGCCCACATGAACCTGCAGAACTACCAGGACATGAAGCAGCCAAGCAAGCTGGAAGCCGGCCAGTTCGTCGACCTGGAATTTGAACTGCAGCCGACCTACTACACCCTGCCAGCTGGAGCAAAATTGTGTCTGATCATCTACTCAACCGACCAGGGGATGACCAAGCGGCCGCTGGAGACCGAAGACTACACGGTTGACTTAGCCGGAACTGCTCTTTTGCTCTACCGGAAATAATGCCTGGGCAAAAATTGGCGGTTTATGCTAAAATAACTTTATCGCAAACAAACAAAAAGGCTGTCGCGGAGCTACCGCTGACAGCCTTTTTGTGTTCTTAGAAAGGTTCTTATGGAAAAATCAAGCAAAGTCAACCTCGCCATTTTCAGTGCGGGCCTGATGACCTTCATCGGTATTCTGAATGAGACCTCCATGAACGTCACCTACCCGCTTTTAGTCAAAGAGTTCCACCAGCCCCTGGCAACCGTCCAGTGGATCACTACCGCCTACCTGCTCAAGCAGGTCCAGGCTCGCTGGCTGCATTTAGGAGCCGCCCTGTCCTTTATTTGCGGCTGCATCATCTGCGCCTTAACTTCCAGCTTTCCTTTGATGCTGGCCGGCCGGATCATTCAGGGGATCGCCACCGGCTTTTCCACCCCGATCATGTTCCAGCTGATCTTTACCCAGGTCACTAAGCAAAAACTCGGCCTCATGACCGGTTTTGCCGGGATGATCATCTCCTTTGCCCCGGCCCTGGGCCCAACTTACGGGGGCCTGGTGGTCTCAGCTGCCAGCTGGCGGATGATCTTCTGGCTCCTTTTGCCCCTGGCTTTAGTCAGCTTAATCGGCGGTCAGGTCTACATCCGCAACCAGGTAAGCGGGCAAAAGAAAAAATTTGATGCCCCCTCCCTGCTCTTGCTGGGTCTGGCCCTTTTTGCCATTATCTATGCCCTGTCTTTAATCGGGACCAGCAGCTTGTCCTGGCTTCTGCTTTTAGCCGGAGCGGTCCTCTTTACCCTCTTTGTTTTTGTCAACAAGCGGGGAAACAGCCACTTGCTCAACCTGGCAATTTTTAAAGAAAAAACTGTCTGCCTGGCGGCTTTAACCTACTTTTTCCTGCAGCTGGTCAACATCGGCCTGTCTGTCGCCGTTCCGGTCTATGCCCAATATGCTTTAGCAGCCAGCAGCTTGATCAGCGGCCTGATCCTTTTGCCAGGCTCCTGCATGGGGGCCGTCATCTCGCCTTTTGCCGGGAAACTGGCCGACAAGCGGGGCTTCAAGTTCCCGCTGACCCTGGGCGGCTGCCTCTTTCTTTTGGGCAACTGCCTGCTTTTGGTCCTGCAGCCCTTGCTGACCCCGGTCTTGATCGTTGTCTGCCATATCGTGATCCGGTCCGGCTTCAACTTGAGCTTTGCCAACACCATCTCCAACACCTCAACTTTGGTTGACCGGAAAAACGTGGCTGACGTTAACTCCTCTTTCAACATGCTCCAGCAGTTTGCCGGTTCAGTCGGCGTCAGTCTGGCCACGGCCCTGATCTCCCTGGCCCAGAAAACGGGGCGAGGGACTTTGGCCCAAAGAAGCTACCAGGGCGGGAAATACGACTTTATCATGTTCAGCTGCCTAGCTTTGGTGACCCTTTTGGCCATCTGGCAGAACTTCCGCCTGCAAGAGCAGAAAAATAAAGAAAATTAGTTTTCTGTAACTTTTTTCTAATTTCTCTTGCCAAAGCAAAAAATAGCGGTTATACTTCAAGTAACTAATTTAGGAGGTAAGCCAAATGTTCAACAAGAACCTGTTCAACGTAAACATGACTGCTTGTTGTTGTGGATTGTGTCTTAAGCAATCCACTATTTGGCTTGGACTGGAAAGCTAGGAGCAGACCAGAATTCCCAATATCCAAATAACTTTGATTGTTTAAGACGCGTAGAGCTTGTCTCGCGCGTCTTTTTGTTTTCCCAGACTTACCTGCTATTTTTTTAAAAAAGGACTGACAAACAAGATGAGCAAGAAAATCGGCATTCTCAATTTGATGCATGACAAGATCGACACCCAGAAACGGTTCAGCCATGTGATCAAAGAAGCCAGCCCGGAAACTGAAATCACTTATTTTTACCCCCAAAGCCACTATCTAAACCGGCCCCGACCCCAAAACTGGCCGGCTGAGCCGCTAAATCTCAAGACAGTTGCCAAGCTGGACGGCTTCATCGTCACCGGCGCCCCGATCGAGCTCCTACCCTTTAGCGAAGTCGACTACTGGGAGGAATTGACCAAGCTCTTTGACCTCTTAAAGGCAAAAAACATTCCCCAGCTCTATGTCTGTTGGGGCGCCATGGCGGCTCTCTACTATTTCTACGGGATCGGCAAGCATCCCATGCCGGAGAAGATTTTCGGCATCTACCCCCAGGAGATCCTGGCTCCCACCCCCCTGTTAAGTGGCCTGATCACAGGCTTTCTGGCCCCGCATGCCCGCTACGCTGAGATGAACAGGAGCGAGATTGAGCAAGAAAAAGCTTTAACCATCAACGCGGCCACACCAGATGGCCACCTTACTCTGGTCACTGGGCCTGGCCAGCAGGTCTTTCTCTTCAGCCACCTGGAATACGGCCCCCAGGCTTTTAGCAAGGAATACCAGCGGGAATTATCCGCTAGAGGAGGTGATGACCGGAAGATAGCGAAACCGCAGCGGTATTTCGCGGATGAAGCCGCCATGTCCCTGCCCCAGTTTACCTGGGAAAGCAGCCAGCAGCACTTTTTTAAAAACTGGCTGCAAACTATCAAATAAGATTTAGAATTTTTTAGCGAATAATTTCAGGAGGAAAAAACTATGTCAACTGACCGCATTTACGGCAACATTTTGGAAACTATCGGCCACACCCCAATCGTTAAGTTAAACCGGGTCGTCCCAGAAGGAGCTGCCGACGTCTACGTCAAGCTGGAATTCTTCAACCCCGGCGGCTCGATCAAGGACCGGATTGCCCTGGCCATGATTGAAAAGGCAGAAAAAGAAGGCAAGCTTAAGCCTGGCGACACCATCGTGGAACCAACTTCTGGCAACACCGGGATCGGCCTGGCCGCTGTTGCCAGCGCCAAGGGCTACCACTTGATCATCGCCATGCCGGAAACCATGAGCGAAGAAAGAAAGAAGATCATGCGGGCCTACGGGGCTGAACTGCTTTTGACCCCGGGCAAGGACGGGATGCCAGGTTCTATCGCCTTGGCGGAAAAACTGGTTAAAGAAAAGGGCTACTTCATGCCAATGCAGTTTGAAAATCCGGCTAACCCGGAAATCCACGAACTGACCACGGGCCAGGAAATCGTCAACGCCTTTGCCGGCGATTTGCCAGACGCTTTTGTAGCCGGGGTTGGTACTGGCGGCTCTTTGACCGGGATTGGCCGGGCCTTGAAGAAGGCCGGCGACGTCAAGGTCTACGCCCTGGAACCGGCGGAATCCCCGCTTTTGAAGGAAGGCAAGAAGGGCCCGCATAAGATCCAGGGGATCTCTGCTGGCTTCATTCCAAAGACTTTAGACCAGTCCATCTACGACGGGATTGTCGAAGTTTCTAGTGATGATGCCTTTGCAACAGCCAGAGAAGTTGCCCGCCTGGAAGGCTTTTTGCCAGGGATCTCAGCTGGGGCCAACATCCACGGGGCCATCGAACTGGCCAAGAAGCTGGGTGCCGGCAAGAAGGTAGTCACTGTAGCGCCGGACAACGGGGAACGCTACCTGTCAACGGCTCTGTACCAATAAGATAGATAATAGACAGAATTAAAAGTAAAAAAGATACAATAAAAGGCAATAAACAAAACAACCAAATCAATCTAATTTAGTACTTAACACTTTACAGCTTAACATCAACAACTAATCACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCTAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGCGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATTGCCCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCGAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCCAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCGCTTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCTGACTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCGCCTGTCATATGATGCATTGACTGTCCATACAGCTTTCGTCTTTCTGCGCTGCATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTATTGCATGGTAGACGAGCTTGCGGACATCACTTTCAATTACTCCCTACAAACCCTGGTGGAAGCCATGTTCGAGAGTGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGGTTCACCAACGCTTTCATTTCACGCCTCCCGAAGTACATGCAAGAGGCTATATCGCCATCATTAGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTAAAATACGTAATTAGGTTTAATAATTAGTGGAGGAATTGCATGTTAGAAAAAACATTTTACAAAATGATGCTCAGTAAGTCCTTCCCTTTTCCCGTTAAAGTAACTTATTGGGACGGTAAAAGCGAAGTATATGGTAACGGTACTCCAGAAATTGAAATAGTTTTCAATGAAAAAATTCCAATGGGCGACATTACAAGAAATGCTTCCCTAGCACTTGGTGAAGCATACATGGACAAGAAAATTGAAATCCATGGCAGCATTCAAAAATTAATTGACGGCGTATACGAAAGTGCCGACAGTTTCATGCGTTCATCCAAATTCCGTAAATTCTTGCCTAAAACTAAACATACTGAAAAGCAAAGTGAAGAGGACGTTCAAAGTCACTATGATATCGGTAATGATTTCTACGAACAATGGCTTGACCCAACCTTGACTTATTCATGTGCTTACTTTACGGACGATAATAAAGATGATCTTGAACAAGCTCAGATCGCCAAGGTACATCACATTTTAAACAAGTTACACCCACAAAAAGGAAAGACTTTACTTGATATTGGTTGTGGCTGGGGTACTTTGATGCTCACTGCAGCTAAAGAATATGGTCTTAAAGTTACCGGTATTACTTTGAGTGAAGAACAATACAAGTTAGTTCAAAAGAAGATTTATGCCGAAAACTTGCAAGATGTTGCCGAAGTTAAACTTGAAGATTATCGTGAATTAGATGATCAACAATGGGATTACGTCACTTCAGTTGGTATGTTTGAACACGTTGGTTCTGAAAACTTGGGTGAATACTTCAATGATGTAGCTAAATACTTAAAGAACGATGGTGTAGCCTTAATCCATGGTATTACTCGTCAACAAGGCGGTGCCACTAATGCTTGGATTAACAAATACATCTTCCCAGGTGGTTACATTCCAGGTTTAGTTGAAATTATTTCTAGAATTGAAGAAGCTCACTTGCAAATTAGTGACGTTGAAATGCTCCGTCGTCACTACCAAAGGACTTTGGAAATTTGGGACAAGAACTTTAACAATGCTCGTCCTGAAATTGAAAAGAAGATGGGCGAAAGATTCTGCAGAATGTGGGATATGTACCTTCAAGCATGTGCTGCCAGCTTTGAATCAGGCAACATTGATGTTGTACAATATCTTTTAACTAAGGGTCTATCTGGTAAGAACTTGCCAATGACCCGTGATTACATGCTTAATAATAAATAAGTGCAAACCAACAATGACTACTGGAAAAATCCAGTAGTCATTGTTTATTTTGTCTAAATTACCAAATAGTAATTCTATCTTCAGGATCAAGCCACATGCCATCATCAGGCTTAACATCAAATGCAGTGTAGAAATCGTCTTGACATTGAACAGGGATATTTACACGAGTTGGTTGTGGTGCATGAACGTCAACTTGCACTTCAGTTTTAATTGCTTCTGGACGTTGCTTTTGCATCCAGCTTCTTGCATAATTTTCAAACAAGTCTTTCAAATCAACATTGTCGTTCTTACCAGCTTGAACAGCACAAGCAAGCCCTGCCAAGTCAGCAATATTTTCTCCTACTACTTGCTTACCGTTAATCTTAGCTGGACCGTATTGCAAGCCATCAAAAATATCAACCATTTGGCCAACCCGCTTATTGAATTCAGCGAAGTCTTCATCAGTCCACCAGTTATTCATATTTCCGTGTTCATCAAATTTAGCACCACTATTATCAAAGGCATGAGAAACTTCATGACCAATAGTTGCACCGATACCACCGTAATTTGCACCACGGGATTGATGAATATCATAAAATGGCGCTTGCAAAATACCAGCTGGGAAAGTTAAATCATTTCTTTGTGGATCATAACAAGCATTGTTAAAGTTTCCTGGCATGAGCCATACTGAGCGATCTACTGGCTGAGTTAATTTATCGAGCATATACTTGGTGCGTACCGTTGCCATTTGAGCTTCATTTTCATAAAGACTCCTTTCTGGGTCAATTTGCAAAAGATCATAAATCTTTTCGATTTTTTCTGGATAACCAATCTTAAGTACTAAAGCTCTTAATTTAATAATTGCCTTTTTCTTAGTATCTTCAGATAACCAATTATTATCATTGATTCTTTGCTCATATACTTTAAGCATATTGTGAATCATATCTTCGACATCGTGTTTAGCTTCTTCACCAAAGTATTTCTTACCATAAAAAATACCAACAACTTCATCAAAAGCACCATTACTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAGTGATGGCGATATAGCCTCTTGCATGTACTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGAGAAATTTGGGGTTCGCGTAAGCCTTTCATTTGATATTGATGATGTTTTGGTCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTATTAGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTAATCAAAAAACTGCATCCCCAGGGATGCAGTTTTCTTCGTTCTAAAATCTTTAGGCTTATTTTTCCAGCAAGGCCAAAAGGCGGTCTTTTTCCTCCTGGCTGGCAAAAGCGGCTCTAACCGAGTTTAAGTAGAGCTGCTTTTCTTCAGACTTAGTCAAACCCTGCTCTTCCATGAGCTGGTATTCGCGGGGCAGGTTGGTCGCTGAGACCGTCATGTTGTCGGTATTCAAGGTTACCCGCAGATTTTGCCCCAGCATGGAGCGGAGGGGGTATTCGGCGATCTGGTCAAAAACCTTGGTGTTCAGGTTTGAGCTGGCGCAGCATTCAAGAGTAATCCCCTCTTCAGCTAATTCTTTAACCAGACTTGGGTCTTCCTGGCAGCGGATGCCGTGGCCGATCCGCTTGGTCCCTAAGGCCAGGGCATCTCTCATCGACTCTGGCCCCATGGCTTCACCGGCATGGATAGTGTATGGAATCCCCCATTCTCTTGCCTGCTGGAAAAAGGACGCGTACTTGCAGTTGGCCACTTCTTCGTTTTCCGGGCCCGCCAGGTCCAGGCCAGCTACCCCCTGATCTTTAAACTCTTTAGCCACTCTTAAAGTTTCCCAGTTTGCTTCATCCTGACCAACTAGCCGCATCAAGCAAAGGAGGAAGTTGGCGTGCAGGTCGTCTCCTTCCTGCCCTTTTTGCCAGGCGTAAAAATCGTCCCTGCCATCTAGAACTGCCTGGACAACTTCTGCCTGGGTCAAAGTTTCCGTGTGCTTCTGCGGGGCAAAACGGATTTCCGCGTAAACCAGGCCTTGTCCACGCAGCTCTGCTAAGAGTTCTCTGACAATCAGACGCAAGTTTTCTGCTGTCTGCATCAAGGACAAGGGGAAGTCGAACTTGTCCAGGTATTCGTCCAGGTTCCGGCAGTCCGGGCTGACTGAAAGTCTTTTTCGCAAGTCAGCTTCCGGCAGGCTTCTCCCCTCTTTAGCCAGCAGTTCACGGACGGTTTGGTAAGGGACGGAGCCATCTAAGTGCAGGTGGAGGTCAATCAGTTTTTTCATAGTGTCTTTTACCCCTGTAAGAAAATAATTGTTACTATTCTAGCACAATTTTCACTTTTTTAAAGGTGGATTTTTGCTAAAAACTTTAATGCCATTAACACAAACCAAGCCAAGCATAGTTACTCTATTGTTCGGGATTTGTTGAAATATATTTTCTTTAAAAAAGCAAAATCCTGCTTGAAAGCAACATTGCTGTCTCAAGCAGGATTTTTCACGGCAAATTAATAATGCCTGTGTTTTTTATAAATCTTTTTAACTTTTTCAAAACCAGTCTCTTCCAGCTCGCAGACCAGCCCTTGCGGCAGGACGTAGAGCACCCGGCCTGTCGCCCCGTCGTCGATCAAGTCGTACAGGCGGCCGGCGCTGTGGCTTTCGCCCAAGACAGTATACGGGCTGTTGGCCACGTAGCCGATCTTGCCTAAAGCCCGGGCTTCCACCCTAATGGCTTCCTTGTCATACTTGTTGTCAGGTTCCTTGTACAAGGTTACCTTCATTCTCGGCTTGAAAGCTTCCGTCCCAAAGTAGTGGTTGCAGCCCGTTACTGTAAAGAAAATGTCTTCCATACCGCTCGCCTCCATTCGCGCATATAGTCAAGAATTTTTTGTAGTTTTTTTGCAAAAAAATATTCTATCTTAACTATAATCCTGCTTTTATCGGCGGCAAACATTTTCTCCCCATCTTGCCCAATTGTCCATTTTTCACTAAAATATCATTACTTAAGCTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGCGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATTGCCCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCCAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCCAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCGCCTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACCTGAAAGATCTGACTTCTGACCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAAAACTGGATACAAGAAGACTGAGCTGACTGCCAAAGTATTCGACCACGTTTCGATGACCTACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCCTCCTTTGTCCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCAAAGGGGACCATGTAGTTATCCAGCTGCTCGATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCAGTCAACGTGGTTTGAACGTAATCGCCATGGTGAAGAAAAGCTCCAAGATCACATACGAATTCGAAGAAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGAGGTCGTTCAAGATACCTCCTGTCCGTCCCTGTAAAGGTTGGAGATCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGCTCCAACCGCAAAGACTGGATCGCTCTTATTTGCACGGACATGACGATCGATGAAAATGAAATCATCAGAATTTACGGCAAAAGATGGGATATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTGAAGCTTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCCCATACAGCTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCTAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACTTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTATCGTAATAATCCGCAATATGACAAGGTTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACCGCTGGGCATGCGACTTTAGCCAAACGAATAAGGCTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATGCCGAAAACAGTTTTCAATAGATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTGCATGGTAGACGAGCTTGCGGACATCACTTTCCATCACTCCCTTCAGATCCTGGTAGAAGCCATGTTCGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGATTCACCAAAGCATTCATTTCTCGCCTTCCAAAGTACATGCAAGAGGCTATATCGCCATCACTAGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTCTTACTACTTACTTTTTAAGCAATAAAAGAAATTATGATTTCCAGCTGCATCAAGGCATTGATAGCGCCAGGCAAACTTTCTTCACTGACTGTCTGCTCAATCACGGCATGGTCTTCATCAAAGTCAAAACCAGCATCCATAATCATCCCGGCCGCGTACTCGTTCAAATCCTCGTTTTCTTCCAATGGATTGTACTTGAACATGAGGTAGCCGTCATCAGTTACCGTGTACTTGTCCCCGCTTTTTTCGACCAGGACAAAAGGCTTGCGGCCGTAAGCATCAACCAGTTCGTTTTCTACCTGGAAAACCGTGTCTGACCAGAGCTTAAAAACTGTCTGCCCCGCCAGCCAATTGATGTAGTCTGCCTTCAATTTCTCGATTTCCATTATTCTTTTCTTCCTTCCAAAAAATTTACGCTATCATCAATTATAGACAATTAAGGGGCAAAAGAAAAACCAGCCTGGCGGCTGGCTTAATTTTTGGATTTTAGTGATTATCAATTGCCCCGTTCAAGCGCTTGCGCCAAATCAAGTAAACAATCAAGGCCAAAGGTACCACGATCAGCTGGACCAGGTAGAACCAGCGGCCCGGAAGAGCCTTGGCCACTACCCCGGCCAGCATCGGCCCAAAGGCCATGGCGATGTCTAGACCCAGGTAAAAGGTGGAGCTGCCCAGACCCTGTTCATTAGCCGGTGACAAAAGCAGGGCCGTTGACTGCAAGACGGAGTAGATCAAGCCATAGCCGACCGCCATCCCGGCCGCCCCCAGGGCCATCATCCAGTTGCTGCTCATGTAGGCCAAAAGGACCAGGTAAATGGCCGTAGCCACCTGGCTCAGCCAGAACCAGACCCCGAAGCGGACCGTGTCAAAGTAGTTCTTGAAGAAGGTACGGATCAAGAGCAAGACGATGGCGTAGATGAAGAAGTAGCTCCCTACCGCCACTGGCATGTGCATCTTGGCCACGTAAGTCACGATGTCGGCCTGGGTGACGAAGTATGGGATCCCGAAACAGGTCGTCAAAAGTGCTACTGGCAAAGCGTTGACGGAGATCATCTTGAACTGCTTCTTTTCTTTTTGCCGGGGACTAGGAACAGCCCGGTTGCCGACGAACTGGATGATGATGATCATGATCAAAGTTGCCGCGGCTGGCAGCATCATGGTCTGCCGGTAACCAATCACTTTGTAAAGGTTGATGGAGATCGCCGGGGCAATGGACATGGCCAAGGCGTTCATCAGCCCGTACAAGCCCATTGCCGCCCCGACATGCTGGCGGGGAACCAGGAAGGCGATCCAAGTGGTCATGCAGACGGTGCAAAGAACGAAGCCGGTCCCGTTGATAATTCTGAACAAGAGCAAGAGCTCCCCGTTAGGCGATATGATATAGCCCAGGATCCCGATAAAAATCAGCACCCCGCCGATAAAAGACAGCTGGTACTTGGAGAACTTGTCAGTCAAGTTGCCGGCGATTGGCCGGAGAAACATGGCCGCGAAACTCATGATCCCCACGATCACCCCGGCTAAAATGCTGCTGGCCCCCAGGCTTTCAGCATAGCCGTTGATCAATGGGTTATTGAACATGGTCCCGAACAAAAACAGGAAGGAGGCGGTCATGACCAAGATGACGTCTTTGGAATAAATCGACTTGCCCTTTTCCTTTTCCATCCGCCCCGCTTTGGCAGGGGAAACACTTGCGCTCTTGCTGCTCACTGTATAACCTTCTTTAGTCTCAATCAATAATAATGATTTTTGCTTAAAAACAAATTAGATTTTACCATATTTTCCCCTCTGCGCTAAGGCTGGCAAAAATCTCTTTGCCTTTTTTCGATTATCCAGCAGTAAAGCGCTAGCAAGCGCCAGCTTGCTTAAGATAATTACGTCTGATTTCTTCATAAGAAAAAAGCCTGCCCAAAAGGCAGACTTTCTGATTAGTCAATGATAAATATCGTATTCTGAACTTTAGTAGTTGAAGTAGCGCTTTACTTCCCATTCTGAAACTGATTGGGTGTACAGAGCCCATTCAGTTTCCTTCAATTCCAGGAAGCTGTCAACGATGTGTTCGCTGAAGGCAGACTTGACGACTTCGTCTTCCTTGAAGGCCTTGATAGCATTGTGCAGGGTTGATGGCAATGGCTTGATGCCCAGTTCCTTGCGTTCGTCATCAGTCATTTCAAACAGGTTGGAAGTTACAGGTGCCATTGGCAGCTTGCCTTCCTTGATTCCGGTCAAACCAGCCTTCAAGCAGGCTGACAAAAGCAGGTATGGGTTAGCAGTTGGGTCAGTTGACCGCATTTCCAAACGAGTGCCGACTTCGTTGGCGTTAGGAATCCGGACCATTGGTGACCGGTTCCGGCTAGCCCATGAGATGTAAACTGGGGCTTCAAAGCCTGGGATCAGCCGCTTGTAGGAGTTGACCGTTGGGTTAGCCACGCAGGTAATAGCGCGGGCGTGTTCCAAAATCCCGTTCAAGAAGGTCAAGGCAGTAGTTGACAGGTTGTATTGGCCATCCTTGTCGTAGAAGGCGTTCTTGCCGTCCTTGAGGAGGGACATGTTGGTGTGCATCCCGTTGCCGGCCAAACCTTCAACTGGCTTAGCCATGAAGCTTGCGTGCAGGTGGTACTTGCGGGCGATAGTCTTGACAACCATCTTGAAGGTTTGCAACTTGTCAGCAGTTGCCAAGGCATTGTCGAAGCGGAAGTCGATTTCCTGCTGGCCATCGCCGACTTCGTGGTGGGCAGCTTCTACGCGGAAGCCCAGCTTTTCCAAAGTTTCCACGATTTCCCGGCGGCACTTGGCGCCTTCGTCTTCAGAAGCCATGTCGAAGTATGAGCTGTGGTCGGAAACCTTGGTGGTTTCTTCCCCGTTCTTGCCTTCCTTGAAGAGGAAGAATTCAGCTTCAAAGCCGATTTCAAAGTCGGAGAAGCCCATTTCTTCCATTTCCGCAATAACCTTCTTCAAGTTGTTGCGTGGGTCACCTTCAAATGGAGTGCCGTCTACGTTGTGAACTGAGCAGACCAAGCGACCGATCGTGCCTTCTTCAACAGTCGTCCATGGCAGAACTAACCAAGTTGCCAGGTCTGGGTACAGAACCATGTCACTTTCTTCCAGACGAACGAAGCCGTCGATTGATGAACCGTCAAAACGGGTTTGGTTGCCCAAGACGTCGTCCAATTGGCTGACAGGAACTTCCAAGTTCTTCAGCGTACCGTTAATGTCAGTGAAGGCCAAACGCAAAAAGCGAACATTCTTTTCTTCTACATCTTTGCGGATTTCTTCTTCAGTAATTACCTTGCTCATGTTCTCACCTTTAAAAATCAAGAATAAATTTACGATCAACTACTCAATTGGCTCTACGCTAATCGATGCTTTAAAGATACCACTCTAACCGCGTGAGGTCAAATTGGTCTAAAGACTTCTTTAATAAAAAAGGACTTTTAGCCATTTTCCTTAAAAAATAAATGATTTACGGCATTTGTAACTGCTATTCTATCGTGAGCATAAGTTAGACCACATTGCATGTAGAGGGCGTAAGGCGGCCGGATCGGGCCATCTGCTGAGAATTCCATGGTTGAACCAGAGACGAAATTGCCAGCGGCCATGATAACCTTATCTTCGTAACCTGGCATGTCGCTTGGAATTGGCTCAACGAAGGAGTCAATTGGCGAATTTTTCTGCACTTCTTTAGTAAAATTGATCATCTTTTCCGGAACATTGAAGATGATCGTCTGAATGAGGTCGGTTCGCGGTTCATGCCATTTTGGCGTGACTTCACAGCCCATTTTTTCCAAAAGAGCTGCTGAGAAGATCATCCCCTTGATGGCTTCACCGGTTGTGTGCGGAGCCAGGAAGAAACCTTCATAAAACTCGTGCATGTTGGTCAAGGTGGCCCCTTCTTCCTTGCCGATCCCCGGAGCCGTCAAGCGGATAGCCGCGTTTTCGACCAGTTCCTCTTTGCCGACGATGTAGCCGCCAGTCTGGGCGATCCCGCCGCCGGCGTTCTTGATCAAGGAGCCGGCCGTAAAGTCGACCCCGTATTCAGTCGGCTCATGCTTTTCAGAAAATTCCCCATAGCAGTTGTCGACGAAGACCAAGCTTTCTGGGCTGACCTTTTTAACAAAAGCAGTCATTTTCTTGATCTGGTCAACCGTGTAGCTCTGCCGGGTGTCATAGCCCCTAGACCGCTGGATGACCACGATATGGGGCTGGTCGCGCTTGAGGACCTTTTCCGCTTCTTCGTAGTCAACCCCGCCTTCTTCGTTTAAAGGCACGTAGGAGAAGTTGATCCCCTTCTGGATCAATGTCCCCCGCTTCTTCGGGGCCAGGCCAATCACCTGCTGCATGGTGTCATAAGGCATCCCGGTCAGGTAGGTCAAAGTTTCACCTGGCAAAAGGTTGCCGTCTAACGCCACAGCCAGGGTGTGGGTACCTGAGACGAACTGGGGCCGGACCAGGGCGTCTTCAGTCTGGAAAACCTGGGCATAGATGGCTTCCAGCTTTTATCGGCCGATGTCATCGTCCCCGTAGCCGTTGGTCCCCTTGAGGTCAGCTTCCGCCACCTGGTGGTCGACAAAGGCCTTGAGGACCTTTCCCTGGTTATAGACCACCTGGTCGTCAATTTCCCGCAGACGGGGGGGCAATTTCCTAGTCAACTTCAGCCAGGATTGCCTTTAATTCTTCTGGTAATTTTCTCATTTTTCTTCCTTCATCCATTCTTCTATTCTGACAGCAATCCGGTTAGCGCAGTTGGGATCCGTCAAGGGATCATACCACTCAACCGGCAATTTATTCCTAAAGTAAGTCAGCTGCCGCTTGGCATACCGCCTTGAGGCCGTCTTAAGGGCCATCACGCAGGTTTCCAAGCTAGCCTCTCCTGCAAAATAAGGGAAAAATTCCTTATAGCCGATAGCCTGCAGGACCTGGTGCTCACCTGCCCGGTGCTCGTAGACAAAGCGGGCCTCTTCTAACAGCCCGGCCTCCATCATCAAGTCCACTCTCTGGTTGATCCGCTGGTAGATGGCCTCCCGGTCACTGTTTAAGCCGATGATCAAGTAGTCATAGCGGGTCTTAATTTCTGCCTGCTGCTTGGAAAAAAGCCCGCCCGTCCGGCTGATCACGCTGAGGGCCCTAAGGCTTCTTCTGCTGTTGGCCACCGGGATCTTTTTAGCAGCTTCCGGGTCTTTCTTGTTTAATTCCTCCCACAAGGCCTGGGGGCCGTTAGCTGCTAAAAAGACTTCCCATTCCGGATCCACGCTGGCCGCTTCTTCTTCCTTGTCCCCCAGCTGCATGTCATTTAAAAGGGCATTGACGTAAAAGCCAGTCCCGCCTGCGATAATCGGCAGCTTGCCCTTGCCCGCGATCTCTCCGATGGCGGACCGGGCCTCATCAACGAAATTTTTTACGGAAAAATCCTCAAAGACCGAGTGGGCATCCACCAGGTAGTGCTTGACTTCTGCCTGCTCTTCCCGGCTGGCCTTGGCCGTGCCAATGGCTACTTCTTTGTAGATCTGCATGGAGTCCCCGGAGACGATCTCCCCGTCCAGTTTCTTGGCGATTTCGATAGCCAGGCTGGTCTTGCCCACGGCGGTCGGCCCGACTATGGCCACTACTTTCTGCATAAAATCCTCCTGCAATTTTCTCTTCTATCATCATAAACCAAAAAAGCCTGCTTGAGAAATTTTCTCAGCAAGCTTTCAGCTTAGTTCTTGGCTGCCTTCTTGCGGCCGTCCCATTGGGAGAAGCCGTCCTTGAGGTAAAAGACCTTGGCAAAATTGTGCTTGCGCAGGATGCTGGCGCAGCGCAGGGTCATGGTCAAAGAGTCCGAGTAGAGGTAGACCGGCAGGTCTGGCCGCAGTTCGGTGTATTGGTACTTGAACATGGTATATGGGATGTTTCTTGCCCCATCAATATGTTCATGCTTGAACTCATTGGCTTCGCGGACGTCGATGATCTGCGCCTTCCGCATCCCGGCCTTGAATTCTTCGTTGGTCAGCTCCCCGCCTAGGCGCTTGGCCTGGATCCGGTTGTAGGCCCAGAAGCCCAGAAAGCCCAGCAGGATGACGCCCAAGATGACGTCAAGAACGATTAAAAAATTGGTCATGTAAAAAAGCTCCTTCTTGCAAGTCTTATCTCATAATAACGCTAAATTCAGCCTGGGGCTAGCTAGTCCAGCCTTTTTTCCCGCTCAAGCCGTTCTTCGTATTCGTGCTCATGCTTTAAGACCAGTTTCGCGTTTAAATAGATTTTTTTCTCTAAGAGGCCTGCCTTATACAAATTGTCTAATTCAATCGCCATTAATTCGATGTCCCACTTCCGCTTGCCCAAGTGGACCAGGATGCCGTATTTTTTCAAAAGCTGCTGAACATCGTAAAGATTTTTCAAAACAGTCATCATACCGTCACTACCATTCCTAAACGCAAAATCAAAACCACATAGACAATCAAGCCAGCCGCGGCCAATAGCCGGCCGCCCTTGCCGTAGCCTTTATAGGTCGCGTCACCCAGGATTACCGCCAGCAAGGCCCCGGTGATCAAACCGCCCACGTGGCCCAGGATATCCACGTCAGGCATGAAGACGTCCAGGACCAGGTTGATGACCGCTAAGGCCAAAGCCTGCCGGCCCAGGAAGGACAAAAGGGTATTGTCTTTATCCTTAAAGCCGGCGCAGGTCATGGCCCCAAAGAGGCCAAAGAGGGCAGTTGAGGCCCCTGCACTGATGGCCTGGTCATTGCCAAAGGCCAAGGTTAAAAGACTGCCGCCCACCCCTGACAGCAGGTAGATCAGCAAAAAGCGCCAGTGGCCGAAAACCGGCTCAGCGTACTGGCCGATATAGTAGATCATAATCGCGTTGGAAGCGATGTGCATGATCCCGATATGGAGGAACTGTGCGGTAAACAGGCGCCACCACTGTCCCTCCATAACCACGGCCGGGTTGAACATAGCCCCCATTTTCAGCAAAACAGAAGTGCTCTCAGAGCCGCCCATAAAGGTTTCCACCAGGAAAACGGCAAAGAGGACCACAACCAGCGCGGTTGTCATATAATTACGCCGCAGATTATTCATCACCGGCCTCCTTTACAATAATCAAATCATCCATGGCCTGGTCATGGTCTTCCATTGGCCAGACCGGAGTCTTAAAGTACATGGCTGAGTTGACCAGGGCCAGGGTCTGGACGGAATTTTGGGCCAAAAAGCGGTCGTAGTAGCCCCCGCCAAAACCAATCCGGCTCTTGCCCGCCGGACTGAAGGCCAGGCCGGGAACAAAAAGCAGGTCCAAGGCGTTATCAGCTTCTTTTTTCTTCCGCCAGCTCCCAGACCCCGAACTTAGTCTGCATTAAGGGAGCGCCTTCGTCCCATTTTAAAAAGTCCAGCTGCCAGCCGGGATGGCACTTAGCCAGATAGAGCTCCTTACCCTCTCCCCGCAGCTCTTTAATCAAGCCATTTATGTCCACTTCCAGCAGCATGGGTAGGGTCAAGCCAATTTTTTTCGCCTCCTGGACCAGGGGATGCTGCAGGGCCAGGGAAGTCAATTCCTGGTCTTGCCTTTTTTTAGCCGGAGTCTTGGCGAAATCCGCCAGCCGCTGCCTTTGCCAGGAGCGGAAAGTCTTCTTGTCCATCAAAGCAGTCACGCCCTCACTTCCTGCAAAATAAAAAAAGCAGGCCTTTCGACCTACTGTCTTTTATTACTTAGTCTCGCGGTGAAGAGTTACCTGTCTTTCAACTGGGCAATACTTCTTCAAGGTCAAACGTTCCGGATGCTTACGCTTGTTCTTCTTAGATAAGTAACTTCTGTCGCCACATTCGGTGCATTCTAAAATGATGTTGTCTGCCATTATTTTCACCACCTACAATTAATATCTGACTGTACAATCATAACATTTTCAAGGGCAAAGAGCAAGTTATCTTGCCAAATTAACTATTAATTTGTGCTTGAAAACTTTCCCTTGTACATCTTGTAGTAAGTCGTCACCATCGACTTGGCCATGTTCTTGTTGTAGTTGCCTTCCTTGTTCGGATCGATGCCGGCAAAAACAACCGCGAAGGCAATCTGCGGGTGGTTGGACGAAGCCCAGCCGACCATGGTTTCGTTAATCAGTTCCTTATCAGTCGACTTCTTGGTCTTAGTGTTGTAGTAGAATGTCTGGGCCGTACCGGTCTTAGCAGAGATCGACGGCTTGACATTCTTCAAGGCATGCGCTGTCCCCCAGGCGTTGGACCCGTGAACGACCTGGTAGAGCCCCCGCTTGATGACAGCCAGCTCATCCGCTGTCCAAGGGATCTTGAACTGGACAGTCGGCTTCTTGTTATAGTAAGTATAGAAGTGCTTGCCGTCGCTGCTGGTTCTGCCGATAGACTGGACAACGTATGGCTGCATCCGGTAGCCCCCGTTGGCAATCGTTGAAATGTACTGAACCAGCTGGATTGGGGTATAAGCATCATAGTTCCCGTAGGATTCGTCGAGGACTGACCCGGACAGGATGATCCCGTTGGAGTCAGTTGATGCCCCTTGGATACCGGGGCTTTCACCTGGCAGGTCGATCCCGGTCTTTTGCCCAAAACCAAACATGGCAAAGTTGTTTCTCAAGGTCTCAAAGGCCGTCTGCGGCATGTGAATGTACTGCTTGGCCACATAGCTGGCCTTCACCCAGCGCAGGGTCAACTGCATCATGTAGATGTTGGAAGATACTTCTAGGGCGCTGGCCGCCGTCAAGGAGCTGAAAGTCCCGGTCGGGTAAACAGACTTCTTGACCGGAGAACCAGGCAGGTAGATGGCCGTATCCGGCAGGGTGTTGTTGGTTGGAGTGATGACCTTATTGATCAAGCCCCCGGCCACCTGGGCCCCCTTGACAACAGACCCCATAACGAAGGACTGGTTGATGTTGCCCAGGGCGTTGTCCGTGATCTTGCCCGTTGATGGGTCATAGCTGATCCCGGACATAGCCAGGATCGCCCCGGTATTCGGGTTCATGGCGATCGCGTAAGCCCCGCTGGACAGGCTGGCCGCCCCGGCACTCAAGGCAGAGTTAAACTGCTGCTTGAGAGCCTTGGTTACGGCTGCTTGGTACTTGGCGTCAATCGTCAATTTCAGGCTGGCCCCGGACTGGCCCTTGTAAACCTGCTTGGTCTTGGTGATTTCGCTGCTGGAGTTGCTGGTGACCTTGTAGCTGGCTTTGGTCCCCTTCAAGAGGGCCTCGTATTCCTTTTCCAGGTAGGAAATCCCGACCCGGTCGTTTCTGGAATAGCCATTGACCAGGTAGTATTGCAGGCTGTCCCTCGGCAGACCTGTCTTGGTCGTGGAAACTGACCCGATGATACTCTTGATTGAAGACCCGTTCGGGTAGTAGCGGTTCCAGTCAGTCCCGATCCCGACCCCCGGCATGGAAGACAGGTGCTCGCCGACCTGGGCGATTTCCTTGTTGCTGAGGCCGCTGCTCTTTAAGTTGATCGTCGACAAGGTTGTGGCCCCTGACATCATGTTATACAAGAGGGCGGCCGTCTTTTCCTGGCTGTTTAAAGACGGCTTAAGGGTGTTTTCGACGTAGGCCACTTCATTGTCGTTGATTTCTGAAGTCGACAGGCTGGACTTCTTCTGGGACTTGGGCAAGGCAGCCAGGACTTTCTTGGCCCGGCTGCTCTCAGCCAGGTAATAATCGGCAATTTGTCTTTTTGTCGGCTTTTCGTCGGTAATTTTTATATAATTACTAAGGGTATTAGCAACCTTGTACATCTCTTTGGAAGTCGTTGACAGGCTGCGCATGTAAGTAATCGCGTTCTCAGCCTTGTTGCCGACCAGGACCCGGCCCTGGGAGTCGTACATGACTCCCCGGGGGACAGACTTGGTCATGGTGTTTTCGTCGGTGGCGTTAACCTCCGCGGAGAAGCGCGAACCGTAGAAGAGCTGCAAGTATGCTAATTGGCCGATTAATGCCGCGAACAAAATTACGATGACCCCGACCAGAACCTTCATTCTGAGAGGGGTGTTTGCAGTTTGACTACTGTTGCCAGTTCCGCTATTCTTTCTAAAATAACTCATGATAAAACCATCCTCACTAACAAGTAATTTTAGCAAAAAGACCTGCGCAATTCTATCATTTAGAATAGGAGTTAGCCAATTCTTAATGTACATGTCCAAAATAAAACGTTTTTTCAAAAATTCGGCCTTAAGCAGCTTTATGCCTGCCTGGCCTTCGCCCTGCCGGCCTTGATTTTCGCCGGTTACTTCCTCAGCAAGAAGGGCAATATTCTGACCGTCGACCTGGGCCAGCAGTACGTTGACTTTCTGGCCTACTACCAGCAAAATCTCTTTAAGGACCCAAGCAAGTTGATTTACAGTTTTGCCAGCGGCCTGGGCGGCTCCATGCTAGGGACGGACAGCTACTACCTGCTCAGTCCCTTTAACCTGCTCTTGCTCTTTTTCCCGCAGAAGTTCCTGCCCCAGGGGATCCTTTTGGTCATCTCCTGCAAGATCGGAGCTATCGGCCTGTCCGCCTACCTGGTCTGGGGAAAGAAGTACCAGCTGGCTAAGGAATACGTTCTGGCAGCCAGCTTTGCCTTTGCCCTCTGCGGCTTTGTGGTTGCCAACAATTTGAACTTGATGTGGCTGGACAGCCTGGCCCTTTTACCCTGGCTGCAGGAAGCTATTGACCGCCTTTTATCCGGGGAGAAAAATCACCTGGTCCTAATTACCTTCCTGCTCTGGCTGACCAACTTCTATACCGGCTACATGACCCTGCTCTTTGGCCTGCTCTATTTGCTAGTGGGCCTGGCCACGAACAGGAAGCCAAAGAAGCGTTTTTGGGCCTACTTCAAGGGCAGCTTCTTTGGCAGCTGCCTGGCCGGGGTCAGCCTCTGGCCGACTTTTCTGGAACTTTTAGCCGGGAAAACTGATGCCGACGTCAGCTGGAAGCTGAACTTCCAGTTTCCGCCCTACCAGCTAATCGCTAAATTTATCGACGGGGCCTACAGCTTCCATGAAATGTCGGACGGCCTGCCCAACATCTTCATCAGCTCCTGCTTTACCCTCTTGGCCCTGCTCTTTATCTTTAATTCCCAGTTCAGCAAGCGGGAAAAACTGGCCCGGGGCCTGCTTTTGACCTTCCTGGTCTTGTCTTTGTCCTTTACCCCCCTGGTTTTGATCTGGCACTTGGGCCAGTTCCCGGTCTGGTACCCGGCCCGGTTCAGCTTCCTGGTCTCCTTCTATGCCTTGAACCTGGCCCTGGAAAACATGGACAGGGAACCCGTCTTCAATCTCAAGCAGAAGGTCCTGGCCGCCCTTTTGGGGGCCAGCGTCTCCATTTATCTGTCCATCAATCCGGACAAGCTGGAATTTATCCGGCAAGACGGACAAGTCGCGACCGGTCTCTTCCTTTTGGCCAGCCTGCTCTTCATTCTCTTTATTTACGGACAGCACTATTTAGCCGGCCACTACGCCCTGCTTTTGGTCGTTTCGGAAGTCACGGTCAACTTGATTTTTTCCTTAAACGCGATTTCCTACCAGGAAAACAAGAACTATGCCAAGTTTGAAGCCAACGTCAACCAGGCGACCAGCTACCTGGCCAAGACCGACTCCAGCCTCTACCGGACGGAGAAGAGCTTCAGCCGGTCAGACGATGACCCCTTCACTGGCAACTATTACGGAATCACGACCTTTAACTCCATCAGCAATTCCAGCACTTCCAACCTGCTCAGCCGCTTAGGCTACGTCCACAACAGCAACTCTTACACCAACCAGGGCGGGACGCTTTTGACTGACGCCTGCCTGGGAGTCAAGTACTACCTGGAGCCGAATTATTCTTATGACGGCGTTTCAGCCGCCCAGCGGATGCCTTATGACAACTTGAACCACCGGGCTGATTTGAACAGCTATTATCCAATAAAGCAGTTCAAGCAGATCAGCATTTTAAAAAACAAGCAGGCCCTGCCTTTGATTTTTGCTAGCCAGAGCGGGCAGAAAAAGGTCAAGTTCCTGGATAATGACCCGGTTCACAACCAGCAAAAGCTCTGGGAAAGCCTGGGCTTGTCCGGCCAGCTTTTCAAGAAGGTCAAAAACGAGATCAAGCTGACCAACTTGAAAGTGAACCAGTCCAATCCCTTGGTCTTTAAAAAGGCCAACTCTGCCAAGCCGGCTTCCGTCACCTTCAGCTTGACGCCAAAGAGCAATGACTCCTACTACCTGCAGCTACCGGACGGTTTTGACTTCAAGAACGCCAGCTTAAGCGTCAACGACATCTTCTACAACTACGAGAGCCGGGACGGGCAGATCCGCCTGGTCAACATCGCCAACCAAAATAAAAAGTCCAAGATCAAGGTCACTTTTAACTTGACCAATTCGACCCTGGACTTAACTGGTCTTATCTTCTGGCACTTTAACAATTCCGCCTTCAAGGCCGGGATCAAGCAGCTGAAAGCGCCGGAACTTAAGTTAAAGCAGACTGGCTTGCAAATTTCCAGCCAGACTTTTAAGAGCCAAAAGAAGCTCTGGATCACGACTATTCCATATTCCAAGAACTGGCTGGTCTATTACAACGGCAAACGGGTCAAGACCAGCAAATACGCTGCCAGCCTCCTGGCCTTCAACTTAAAGGGGGGCAAGCACCAGCTGACCCTGGTCTATTTTCCGGTCAGCCTGATTGCCGGCAGCTTGATCAGCTTGGTAACTTTGGCTGTCTACCTGCTTTTGAAAAAGGAACAGAGAATTTAAACAGTAAAATAGAGCGCAAAAAAAGGTGCTGTCCGGGTGGACAGCACCTTTTTAGTCGGTCGTCTTAACGTCGTTGATTACGACATCGTAGCTGACGTTGGCTGAGTCAACGTTGATCTTGACCGTTTCACCCTTCTTGTGGCCAAGCAGGGCCTTGCCGATCGGAGATTCGTTGGAAACCTTGCCGTGGAATGGGTCAGACTGGCTGCTCCCCACGATTTCGTAAGTTTCCGGTTCGTCTTCGCCGACTTCAGTAACCGTAACGGTCTTGCCGATACTTACTTCGTCGGGGTCAACGGCAGCAGTGTCGACAATGACAGCATACTTCAATTGTTCGCTGATGGCATTGATTCTTTCTTCCAGCCGCATTTGCTCATCTTTAGCTGCGTCGTATTCTGAGTTTTCAGACAAGTCCCCGTATGAACGGGCAATCTTCAAACGTTCAACGATTTGCGGCCGCTTGACAAACTTCAAGGTCTGCAGTTCTTCTTCCAGCTGCTTCTTGCCTTCGGCAGTCATTTCATAGGTTTTTTCAGGCATTTTGATTCTCCTTCATTTAACGCATTATGCAATGTTAAATATTAGAGTTTAATCCCGGGAAAGTCAACCATTAACGAATGTTTGCCTCTAATTTTTCTTCCAAAGCGGCTTGCACATTGTCAGTTGCCTTAGTGACAACCGCGTCAGTCAAGGTTTCTGCCTCATTCAAGAAGGTCAGGCGGTAAGCCAGGCTCTTCTTGCCGGCAGCCAGGTGGGCCCCTTGGTAGACGTCGATGACTTCAACGCTAACCAGGTACTTGCCGGCGTTTTCCTTGATGCAGCTTTCAACTTGGGCATTAGTGACATCTTCGTCAACCAAAATTGACAGGTCCCGCTGCACGGCTGGGTACTTCGGAGCCGGCTTGGACTTGACCCCCTTAGCCATCAGCGGCAGCAGGGCATCCAGGTTCAGTTCGTAAACGTAGATTTCCTTGCCGGCGAAGTTCTTGTCAGTCATGGCCAAAACTGGGGCAATTTGGCCGATCAGACCAATATATTCATCATTTACGTAGATGCCAGCCGTTCTGGTCGGGTGCATCCCCTTGATTGCTTCGGCCCGGTATTCCACGTCCTTGACCCCGATCATTTCAAATACGTCTTCCAGTTGCCCCTTGACGTAGTAGAAGTCAACGACTTCGTCCTTGTGCTGCCAGTTGCTTTCACCAGCTAAGCCGACGTAAGCGGCTGCCAGGTGTTCATGTTCGTGGTAGTCGCCGCCTTCCATGTCGTAGACGCGGCCGTTTTCAAAGAGCTGGAGTTCAGTTTGCTTGCGGGCGAAGTTGTAAGCAACCGTGTCGAGCAGGCCGCAAATCAAGTTTTGCCGCATGGTGGTTCTGGCTGAGTTCAGCGGCCAGTTGACCTTGACTGGGGCCAGGGCCTTTTTGACAAAAGTCGTAGCCAGTTCTTCAGAAGTCAGGGAGTAGTTGATCGTTTCACTGAGCCCCTGCCCTTCCAGCAATTGACGCAGGTGACGGGCCTTGACTTCATCAGCCGCATAGCCGCCAATAAGTTCACCGGTCGCCGGGTGGGTGGACTTGATGTTGTCGTAGCCGTAGATCCGGCCGACTTCTTCAAAGATGTCGGAGTCAATGAAGATGTCCCAGCGGCGGTTTGGCACAGTTACCGTGTATTCGTCGCCATTTACTGCAACCGGGAAGTTCAGCTTGCCCAGGATCTTGACGATTTCGTCCATGGACAGGTCAGTGCCCAGGATCTTGTTGGTCCGGGAAGCAGTGGTCGTAATAACAACTGCTTCCTTGTCCAGGTCGCTGGCCTTGATTTCACCAGATAAGACAGTGGCGCCGGCATTTGCCCGCAAGATCAAGGCGCAGATATCCAGGGCCTTTTGGGTGTTGTCCCAGTTGATCCCCTTTTCAAACAAAGCAGAAGCGTCAGTCCGGTTGTCGTGGCGCAGAGCTGCCTTTCTGGTCAAGGCCGGGTCAAAGACAGCAGCTTCCAGGATCACATCAGTAGTTTCTTCAGTTACTTCGCTGTTCAAGCCGCCCATCACGCCAGCTAAGCCGACTGCCTGCTCACCATCAGTGATCACGATGTCTTGCGGGTCCAGGTTGATTTCTTTTTCATTCAAGAGCTGCAGCTTTTCGCCTTCCTTGGCCAGGCGGACCTCGATCTTCTTGGTATTGTCAAAAAGCTTGGCGTCGTAAGCGTGCATTGGCTGGCCAGTCAAGAGCATGACATAGTTGGTCGCGTCAACCACATTGTTGATTGGGCGGATGCCGGCATTCCACAGGCGGGCCTGCATCCAAAGGGGACTTTCAGCGATCTTGACCCCGGTCAGCTTTCTCAAGTAGTACTTCGGCGCGATCTTTTCATCAGCAACGGCAGTAAAGTCACCAGTCCAGTCTGCCCCGTCTTCTTTAAGGACAACGTCTTCGATCTTTGGCTTCTGGTCAATCAAGGCACCAACTTCATAAGCTGCCCCTTCCATTGAGGAAGTGTCGGCCCGGTTTGGGGTAATGTCGAAGTCCAAAACGTAGTCGTCCATGCCCAAGGCTGCAAAGACAGAGTCACCAGGCTTAAGGTCCGGATCATGGAAGACCCAGATGCCGTCGGCGTACTTCGGCGGAACAACTGAGTCGCTGAAGCCGAGTTCTTGCAGGCCGCAGATCATCCCATTGGATTCAATCCCGCGCAGCTTGCCCTTCTTGATCTTGATCCCGCCTGGCAAACGTGCCCCGGGCAGGGCCACGATCACGTCCTGACCAGCAGCCACGTTAGGTGCCCCGCAGACGATCTGGCGGGCTTCATCTTCACCAACGTCGACCGTAGTCTTGTTGAGGTGAGTCCCTTCGATCTTTTCGCAGGTCAAAATATGGCCCACGACCAGCTTGCTCACGCCGTCTTCCGGGTGAACCGTTGAGGCGATTTCAACCCCGGACCGGCTCAGTTTTTCAGCCAAGGCGTAAGGGTCTACGCCGTCCATGTTCAAGAAATCTTTCAACCAATTGTAAGAAACTAACATTAATCTTCCTCCTGACGGAATTGTTGCAAGAAGCGCACGTCGTCACTGTAAAAGTCGCGGATGTCGTCAATACCATACTTCAAGATGGCGAAGCGGTCCAGGCCCAGGCCAAAGGCAAAGCCAGAGTAGACGCTTGGGTCAATGCCGGCGGCAGACAAAACATTCGGGTGAACGATCCCGGCACCCAGAACTTCGATCCAGCCGGTGTTCTTGCAGATCGCGCAGCCCTTGCCGCCGCATTCAAAGCAAGAAACGTCCATTTCAACTGATGGTTCAGTAAATGGGAAGTAGCTTGGCCGCAAGCGGGTTTCCCGGTCCTGGCCGAATTCGTGCTTGGCCACCAGTTCCAAGGTCCCCTTAAGGTCACTCAAGGAGATGTTCTTGCCGACAACCAGCCCTTCCATCTGCATGAACTGGTGGGAGTGGGTGGCGTCGTCATCGTCTCTTCTGTAAACCTTGCCTGGGGAGATCATCTTGAGGTCCCCTTTATCGAAGTCATGCTTTTCCATGGTCCGGGCTTGAACTGGTGAAGTCTGGCTCCGCAGCAGGTGGTCAGCGTCAACGTAGAAAGTAGCCTGCATGTCCCGGGCCGGGTGGTCCTTAGGCAGGTTCAGCATTTCGAAGTTGTAGTGTTCGCTTTCGATTTCCGGGCCTTGGACAACTTGGTAGCCCATGCCGATGAAGAAGCGTTCCAGGTCGTCTTGAATGATTCTGATCGGGTGCTTGGAGCCGACATGCTTTCTGCGCCCTGGCAGGGTCACATCAATCTTTTCAGCTTCCAGGCGGGCCTCAATGGCCTTTTCGATCAAGTTATCCTTGGCAGAAGCCAGGTTTTCATTAAAGAGGTCGCGGAGTTCGTTGACCTTCTGGCCGACTTCCCGCCGCTTTTCCGGAGCAACGTCCTTCATCTGGTGCAGAATTTGCGTCAGTTCCCCTTTCTTGCCGACCAGCTTGACCCGGACGTCATTCAGGCTCTTTTCGCTTTCTGCTTCCTTGATTTCAGCAAGCCCCTGCTCCCGCAGTTCCTTCAATCGATCAAATAAATCCATTTGCTTATTCCTTTCAACAAAAAAACTCCGCCCCCCAAAAAGGGACGAAGCTTCGCGGTACCACCCTAGTTTAGGCCCAAAAAGGCCTACGCTCTATACCGATAACGGTGGCAGCCGGAATTGATTAGATCCTACTCGCAAGATGAAATTCGCAAGCCGCTCTTTGGTTTCCTTTCAGTTGCCAAGAAACCTCCCTGTCAAAGACCGAACTTGCTACTAGTCTTGTTCTTAGTAATTAATTAAAATCATAGGCTAAAACTTGCTTAAATGCAAGTCGTTTTTTACGCCCACTTGTCAGCCCAGATATGAACCTGGCTGAAGACCGGCTTTAATTTGGCCCCTTTTGGCGTCAAAGTGTAAAGGACGATCTTCTTTTCCGCATCCTTGGACCGCTTGACGATCCCGTTAGCTTCCAGCTCCCGCAGGCGTTCGACCAGAACCCGGTCAGAGCAGGCACCGACCGCGTGGGCCAGGTCCCGGAAGCGCATGGCCTTGGTGTCGCACAAGGAGCTGATGATCAAGCCGTTCCACTTCTTGCCGATGATCTCAAAGGCCTTGACGAAGCGGGCGCACATTTCGTAGTTTTCAGCGTTTTTACAGCATGGCGTGTCCTGTTCAGCTAATTCTGTCATAGAGAAATCCTCCTCAAATTAGTTTCCATGTTAATTATTTAAGCACACTTTACTTACGAAAAACAAGCAAAAAGCCTTCTCCTAGCTGAAGTGGTAGATCATGATCCCGGCAGCAACAGCGGCGTTCAAGGATTCAGCCCGGCCCTTGATCGGAATGTAGAGCTTCTCGTCAGCCAGAGCCTCGATTTCCGGGCTTACCCCGTGCGCCTCATTGCCGATGATCAAAGCAACCTGGGCTACTGGGGCAAAGTCCCCCAATTGTTTAGCGGCTGGATCCAAAAGGCTGGCGTAAACTGGAATGTCCGCGGCCTTCAAGCTGGCAATGGCGTCTGGCAGGTCAGCCTTGATCAAGTTCAAGTGGAACTGGCTCCCCTGCATGGAGCGCTGGACCTTTGGGTTGTAGAGGTCAACCGTCTTGTTTGACAGGATCACCCCGTCAAAGCCAGCCGCGTCAGCCGTCCGGATGATGGTGCCGACATTGCCCGGGTCAGCCAGGTCATCTAAGAGGACCCACTTGCCGTAGCTGAAGGCAAAATGCTTAGGCCGGTTGATCTTGACGGTCATGTTGATCTTGACGGTCATAAAGATATCCTGGGAATTCTTGGTGCTGCTGAGGTGACTGGCCACGCTTTGGCTGATCTTGATCAGCTTGCCCTCATCATAAGCCAGGCCAAGTTGCGCCAAGCGGCTTAGGGCTGCTTCAGTAGCCAGGATTTCCCGGTACTTGACGCTTGCTTTTAAGGCTTCTTCAACCAGGTGGAAGCCTTCGATCAAGTAATAGCCGCTTTCTTCACGGTATTTCTTCTGCTGCAGCTTGCCGATGGCCTTAATTTGCGGATTGTTGACAGATGTTCTTTCTTGCATGATAAAATACTCCTTAGAAATACTATTTTAATGATTTTTTGCAAAAAATAAAGAAGGTAGTCAAAATGCAAACATGGGAACTATTAGCGCATGGAGTCGTCCAGGGCGTGGGCTTTCGCCGGGGCGTGCAGATGCTGGCCCAGAAGATGAAGCTGCCAGGCAGCGTGAGAAACAACCCTGACGGGACGGTCACCATTGTCATTCAAGGGACGCCAACTGATCTGGTCAAGTTTAAAGCTGAGTTGCCAAACGCGGTGCCATATGCCCAAATTTCACGTTTGGACACAAAAGTTCTGCCTGAAATGGAACAAATGCATTCTTTTCATGTATTATATTAGACAGATCCTAAGAATTTGGAGAGAAACTATTCAATGAAAAAAAACAAAAAACGTTTATTACCTGTCAGCCTGCTGGCGCTCTTGCCGCTTTTCCTTACGGCCTGCGCCAGCCAGACCAGCAAAAACGGCAGCTTAAAGGCCCCGACCAGTGGTCCTTACTACTGGATCTATGAATGGATCGGCCTGCCTTTGCAGCATATCACCGTCAACATCGCCCACGCCATCGGCGGAGCCAGCGGGGCCGGCTGGGCCATCGTCATCATCACTTTGGTCGTCAGAGTGATCTTGATGCCGCTCATGCTGAGCCAGCAGCACAAGGCTACCCTGCAGCAAGAAAAGATGCACCTTCTGCAGCCGCAAATGCAGCTTTTGCAAAAGGCCATGAAGACGCCAGGGATGACTCCTGACCAGCAGATGGCCTTGACCGGTCTGCAAAGAGAGATCTATTCCAAGAACAATGTCTCCATGACTGGCGGGATGGGCTGCCTGCCCCTCTTGATCCAAATGCCAATCATGATCGGGATCTACCAGGCCGTGGCTTACTCAAACGCACTTGCCAAGTCCACCTTCTTCGGCATTTCCCTGTCCAGCAAGTCCATGGTCCTGGCCATCATCGCCACTGTTTTTGCCTTGATTCAAAGCTACGTGGCCATGATCGGCATCCCTGAAGAGCAAAAGAAGACCATGCAGGCCACCATGCTGATGAACCCAATCATGACCCTCTTCTTCTCCATGTCCTTCTCCGGCACCCTGGCCCTTTACTGGGCAGTCGGTAACCTGGTCATGGTCATCCAGCAGCTGATCACCACCTTCATCGTGCAGCCGCGGGCCAAGAAGCGGGTTTCCAAGGAACTGGCAGACAGCCCGATCGTGGAAGTCGTTACCCAAGCCAAGCTTAACCAGATCTTAAAGCCAGCCCCTGAACAAAAGCCAACCAGCCAGCCGAAGTCCGGCGACCTGCGCAAGCGCAACCAGGGCAAGCAGAAGCGGAAGTAATTCGCCAAGCTAAAAAGAAGCTAAACATAATAAGATAAACAAGAAAAAAATAAAAGCCGCTGAAAAGCGGCTTTTACTTTGCTCTAAATTCTGTTAAATTGTCGGATCTTGCTTTGGACTCTCAGTTCCAGCTTGCTTTTGCTCTTCCCGGCTTTCCAATTCTTTGACTTCTTCATCAGTCAAGACCGGGAAGGTGATTCTGAACTGGCTCCCCTGCCCTAAGACTGATTCAACGTCAATGGTCCCATGGTAGGATTCCACCAGCTTCTGGGCAATTGACAGGCCCAGGCCGTTGCCGCCCTTTTCCCGGGTTCTGGCCTTGTCGACCCGGTAGAAACGGTTGAAGATCTTCTTCTTGTCCTCATCGGAAATCCCTTCCCCGTAGTCTTGGACCACGATCTGCATTTCCTGGCCAGACTGGCCGGCAGCTACGGCAATTTCCTTGCGGTCGGTTGAGTACTTGATCCCGTTGTCGATCAAGATGATCAAAATCTGTTCCAGGTGGCCCTGGTAGATCTGAATCTTGGTATCCGGATCCAGGTCCTCAACTTCCAAAGAGATCTTGAAGTCCGGGTGAACCATGCCTATGTCCCCGACTACCCGGGTCAAGACTTCCATCGGCTCAGCGATGGCGTTCGGGTAGTGGACACTGATCTGCTCAGCCCGGGTCAAGTCCAGCATTTCCTGGATCAAGTGCTTCATCCGCTCAGCCTCTGAAATCGAGGCGTCAATGGATTCTTCCAGGACCTGTGGGTCATCCTTGCCCCAACGCTTAAGCATGCTCAGATGGCCCTCAATGACCGCCACAGGCGTCCTCAATTCGTGGGAGACGTCAGAGACGAACTGCTTCTGCTGCTCGATATACTTCTGCATCCGGTCCAGCATCATGTTGAAGGACAGGGCCAGTTCTTCCAGTTCGTCGTTTCTGTGCAGCTCGGGAATTCTGGCCGTGCTGTTCGGGTCGGCGTTGACTTCCCTGGCCACCTTGGACATCTTGTTGATTGGTCTGACGACGCTGCGGACAACCAGGTAGGAAATTACAATCGCCAGGCTGATCCCTAGGATTGAGAGCCAGAGCATGGCCTTCAATGTCCGGGAAATCAAGCGGTTGTAGCCGGTCATCTGGTTCTTGACGACAATGTAGCCAGTCAATTTATGGCTCTTCCGGTTTCTGACCTTCCGGTAGACATAAAGAGAACTTTGCCCATCCTTGCCTTCCTTGGTCACACTCTTGCTCTCACTGGTGAACTTGACCAGTTTAGGGGCACTATCGCCGTTGTGGAAGACGATCTCATTGCGGAGATTATAGATCGCCACGGTCATGTCAGGGTTGGTCACGGTGCTTAAGACCGAGTCGCCAAAAACGCTGCTGTTGCTGTTGTCATTTTCTGACAGAGCCGGCCCGCCCGTTAAAATCCGTCTGGTGTTCGGTGATAGTTGCTGGACCACATTGGTGATCTCCAGTTCATCATCGATGCCGATTAGACGCTTGCGGAGTACGTTGACAACTTCGTTAGACATGTACTTTTGCTGGCTCAAGGCTTCCTGCTTGACCGTATTGTAGACGACAGCTGAGAAAACAAGAAAGGAAACCATGATCGTCATCGCGACGATGCTGACCCATCTCACGATCAGTGAAACGTGTCTGGTCCCCTTCTTGCCGCTGGCGGCCTTTTGCTTAGGCATTGTCTTCCTCGTCTCTGACCATATAGCCGGTTCCGCGCACCGTCTTGATGTAAGATGGCTGGCCAGGGATGTCGATCTTGTTGCGGAGGTAACGGACGTAAACTTCGACAACGTTAGTTTCGATGTTTGATTCCGGTCCCCAGATCTTGTTCAAGAGCTGGTCTCGGCCAACAACATTGTTCTTGTTTTCGATCAAGGTCATGAGCAGGTTGTATTCCCGCTTGGTCAAGTCAACGGTCTTGCCGTCGCCCCGGTGGACGATCCGGTTGGCGGTTTCGATGGTCAAGTCCTTGAACTTGACAACCTTTTGCCGCGGCAGCTTGTTCTTTGAGGCGTCCTTTTCGATCTTGACCCGGCGCAAGACAGCGCGCAAGCGGGCCAGGAGTTCTTCAATAGCAAATGGCTTGACGATGTAGTCGTCAGCCCCGTGGTCCAGGCCTGATACCCGGTCAATCACGGAGTCACGGGCCGTCATCATGATAATTGGCGTGGTCTTGCTCTGCCGTACCCGGCGGGCAATTTCCAAACCGTTCAAGTCTGGCAGCATCAAATCCAGCAAGATCGCGTCGAAGTCTTCGCTCAAAGCGCGGTCCAATGCCTTGCGGCCGTTGTTTTCCACTACGGTCTCATAACCTTCGTGCTGGAGTTCGAGTTCGACGAAACGAGCCAGGTTCTTTTCGTCTTCAACAATTAAAATTTTCGGCATGTTTTTATCCCCTCATATCGATTTAATTTGGGTCTGCTGAATCCAAGTATAATCTTAAAGTATATTTTAATAATTCTAGGATAGCCCAAAATTAGCTTTTTAACAAGCCCCATAGAAAAACAAGTCTTCTGCCAGATTAATTTTCTCTGGAAAAAGACTTGTTTACTGAAGATTGTTTTTATTTTTCTTCGTCTTCGGCTTTATCTTTGTCTTCTTCAGCCTGCATCTTGTCCAAAAGACCCCGCAGCTGGGCGAAGGCCGGGTTGACCTGGTCCTTCTTCTGGCCGGCGAAGTCTTGTTCAGACATGACTTTCCAGCCCTGCCCTTCTGGGTACAGGTCTTCTTCAGCTTCTTCCTTAGTCAAAACCGTGCTTGGAATATTCAAGAGCATGTTGTCTTCCACGGCCGTCTGCACGTCAATGCGGTCATCGTCCAGCGGAATGATCATCAAGCCCAGTTCCTTTTCTTCCTGGGTCGGTTCATGGTCGGAATAATTTTCCACGAAGCTGAATTTCTGCTTCAAAGGCACTGCTTCCAGGCTGCGGGAGGACGGAACCAGGAGGTCGGCTTCCACTTGGAAATTGCCAGTCACGAAGGGTTCGTCATAAAAGAGCTGCCCTTCCACGTGGGCGCTTTTCACCTCATAGACCAGGTCCTTAGCCCGCTGGTAAAAGCCGTCAGCAAAAGTCAAATCAGCTGAGATCTGGGTCAATGGCTCCCGGCTGTTCTTGATTTGGAAAAATGAAAGTTCTAGCATTAATTTACCTCGAGTGGCCGCCGGCCAAAGTTCTGGTCAGCGCCAACAATCTGTTCAAATAAGCGGTCAACCCTGACTTTCAGACCCAGGGTCCCTTCTTGGGCATTCTTGCGATCCACTTTGGAAACGATATCGATCTCAAAGTCTTTCCGCTGCTGCTTCAAATATTTCCGTCCCCGCTTGCTGTAAGCCAGAAGCATGGTGGAAACATGGTCATAGCTGTTTAAGACATCGGCTTCAGTCACGTTCAAAAGAGTATAAAGACTCAGTCTTCTTAACCTTGAATAGGTGTAGCGCTTGGACTTGACCCGGCGGAGGAAGTCAGCGAAATTTTCAGCCAGGTGGATTTCTGCCTTGAACTTGTATTCCAGGCCCTCGCTCATCTGGTAGATCTGCTGCAATTCCTTGATTGAGGCTGATTCCAGCCGGTATTTCAGAAACGGGAAGAGCAGTTCCCAGTTGGGCAGGACCTTTTCCTGGTCAAAAGCGGCAATTTCCCCTTTTGGCAGCCATTGCTCCAGTTCTGAGCGCTCGGCCCCGTTTAAAAGGAGGTTGCGGATAGCGCTGGCACTTTGGACAACTGCTTCTCTTTGCAGGATCTCATCATGGCCGGCTCCAACCCGGTTGACCGGGCTGAGCTTTAAAGGCGAGCCCAGATTGGCATTAGCCACGGCATAAGCCAGGCCCAAAATCGCGTTGGGCTCACTGACTTCATGGCCGATTTCCCGGGCCACCATCTGGTTGTACTGGGTGGAATAAGTCTGGCTGTAGTCGGCGAATTCCTGCCTTTGCCGGGGGATCTTGGAGATCCGGTCGCCGAAATATTCAAAATTCAAGTTGGCGTCTTCAACCCCAAAGACCAGGTTCTTGGCCCCCAGCCGGGTTAAGAGGTCGACCCCGCCGGTGGCGAACATGTCGGCAGCTTGGACAGCATAGGAAAAAGGCAGCTCAAAGACCAGGTCAGCCCCAGCCTCAATGGCGCTGCGGGCCCTGGACCACTTGTCCAGGATGGCCATTTCCCCTCTTTGCACGTAATTGCCGGACATTACCGCGATAATGGGGTCATCACCGGCGATCAAGCGGGCCTGGTTCATCAGGAATTCATGGCCGCTGTGGAAAGGGTTATATTCAGCTACAATCCCGACAACGCTCATGCCTAGTCTTCCTCGATTTCCACGCGCTTGCCGTCAGCCCAGAGCTTTTCCAGGTTGTAGAAAGCCCGGGCATCTTCTGAGAAGATGTTGACAACGACGTCGCCCAGGTCAACCAGGAGCCATTCTGAGTCATGATTGCCTTCAACCCGGTAGTCGTAGAAATTAGCTTCGTGACAGGCTTCTATGATGCTGTTGGCAATGGCGTGCAGCTGGCGGCTGGAAGTGGCGCTGGTGGCCACGAAGTAGTCAGCCAGGATGCTGATGCCGCGCATGTCGTAGGCTTCGGTGTCTTCCCCGTGCCGTTCGCTGATTGCGTTTAAAACTAAGTCAAGTAATTCTTCGCTCTTCAAATTTTTCTCCTAATGTTTAGTTACTCTTAATTTATCTGTTATTACTCAGCTGCCCAGACATTGTAAGCAGCCAGAGTTCTTGGGTAGATCTTGCTTCTCTTTTGGACTAAAAAGGCCAGAGTGTGAGCCAGTTCATAGCCAACCCCGGAAGCTAAATCCGCGTAGCTGGTCTTTCTGGCCTCTTCAACGCCGGCAAAAGTCCGGCCAGGCTCAATATAGTCAGCCACGAAGACGATCTGGTCCATGGTGGTCATTTCCACGTCCCCGGTGGTGTGCCGGTAGACAGCGGTTAAAATTTCCGGGTCGGTGATACCGAGGTCGCGCTTGATGAACCAGCTGCCCACGATCCCGTGCCAGATAGCCCGGTTCCAGTTCAAAAGATCCGGATCAAAGCCTTCTTCCTTGATGACCTTGATGTATTCTTCAACTGGAATCTGCTTGGCATAGTCGTGGACAAAACCAGCCAAAGCCGCCTTGTCTTCGTCATAGCCGTTCAATTTGGCCAGGGTCCGGGCCGTTTCACTGACGCGGACGCAGTGGGCAAAGCGGTTTTCATCCATCATGCTCTTCTCCTTGGCCACCAATTCACTGCTGGACAAGGGGGAATATGTTTCCTTAAAAACTGGATCAGTCACGGTAAAGCCCCTTTTCTTCAATATATTCGCGGACCTTGTCCGGGACCAGGTAACGGATTGAGATTCCGGTTGAGACAGCCCGGCGGATAGCAGTTGAGCTGAGTCGGATGTCCGGAGCATCAACCCAGATCATGGAATATTGCGGATCTTGCGGGTAGCCCGGCCGGCGGATACCGACCAAGGTAGCTAACTTGGCCAGTTCCTCAGCATTCTTCCACTTGTGTAAGCTGTTGACCTGGTCGCTACCCATGATCAAGTAGTAGGTGTTTTCCGGCGCCTTCTTGGTTAAATAGTGTATGGTATCAATCGTGTAAGAAACGCCGCCTCTGAAGAGTTCCAGCAGCTTAACCCTGAAACGGGGATTGTCCCGGGTAGCTAAATCCAGCATGGTGGCCCGGTCGCGGGCAGACACGTTTAAGGGAGCATCCTTATGCGGGGGAATATTGTCCGGAACGAACCAGACTTCATCCAGGTGCAGCTTGGTCATGGCCTGTTCAGCGGCGACCAAATGGGCCATGTGCACCGGGTTAAAGGTGCCGCCCATGATGCCGATCTGCTTGCCTTTCCGCTGGCTCTCAGCCGTCTGCACTTTTACTTGCGTTTCTTTACTGAAATCTACCAATGAATCCATGTTACAACCTCTAAATCAAAGCTCTTCTGGTTCCCAAGCCGATTCCGCCCGGCGTGTAGGCCTTGATCACGCAGCCTTCCGGCACAGTGATGAAGCCTACCCCGGCAAACAATACATCGCTGCGGTACTTGATGGAGTACTCCTGCCCTTTAAGCGGCGGCAGGTCGCTGTTTGGCCCTGGCGGAGACAGCAATTCGCCCACATGCTTTTGGTAAAATTCGTCAGCCTTCTCCGTCTTAGTCCGGTGGATGTACATGCCCCGGGCAGCATAGATAGTAAAGCTGGTTGACGGCCCCTTCAGGTAGTCAATTCTCCCCAGGCCGGCCAAGAAGATGGTATTGCCTGGCAAAAGCTGATAAGTGGCCGGCTTAAGCGGCTTCTTTGGAGAAGCCAGGTCCAGGTCCTTCGGGTCCAGCCGGCTGGCCAGCTGCTTGTCGGTCAAGATCCCTGGGGTGTCGACCAAGAAGTGGCCGTTGTCCAGGGGAATTTCAATCTGGTCCAAAGTGGTCCCAGGGAAGCGGGAAGTGGTGATCAAGTCCTGGACGTCCCCCATTTCATCGATAATGGCGTTGATCAAGGTCGACTTGCCGACATTGGTCGTGCCGACGAAGTAGACGTCCTGGTCCTGGCTGTGCTTGTTCAAGTAGTCGATCAAAGTGTCCAGTTTCTTCTTCTTGGCCGCGGAGATCAGGAAAATGTCCTTTGGGTAGAGGCCCATCCGGTTGGCTTCCTGCCGCATCCAGTCCTTGATCTTGCTTTCCTTGGAGTTCTTCGGGAAGAGGTCCAGCTTGTTGCCGACCAGGATAAAGTCATTTGTGCCGACAAAGCGCTTCAAAGAAGAAATCAGCGAGTTGGAGAAGTCAAACAGGTCCACCACGTTGACGATCAAGGCCTTCTTTTCCGCCATGGTGTTCAGAAGTGCTAAAAAGTCATCATTGTCCAGGGAGACCGGCATGATCTCGTTGTAGTGGCGCAAGCGGAAGCAGCGCTGGCAGTAGACTTCTTCTCTTTCACCATTTTCCACCTTGGCCAGGGCACTGGCCGGCAGGTAGCCTGGCAGCTGCTTGTCCTGGCTCTGCAGAGCCGCGCCGCAGCCGATGCAGCGAATTTCTTCACTCATGTCTGAGTTTTCCTCCTTAAATTTCATCTTCCTTAATTATATCTTAAAGCCGGCATTTAACAAAGAAAAAGCGCACCTAGCCAAGCTAGATGCGTTTCTTCCAAAGAATTAAGCCAAAGCCTTCTTAGCAGTTTCTGCTAAAGCGGCAAAAGTCTTTTCGTCGTTGTAGGCAATGTCAGCCAACATCTTACGGTTCATGTCAACACCAGCTAGCTTCAAGCCGTGCATCATCTTTGAGTATGACAAGCCGTTTTGACGAGCAGCTGCGTTGATCCGGGCGATCCACAGTCTTCTGAATTCGCTCTTGCGCTTCTTACGGTCGCGGAATGCGTACTTGTATGAAACGAACAATTGAGTGCTTGCAGCCTTAAATTGAACGTGCTTTGAGCCACGGTAACCCTTGGCAAGCTTCAAAACCTTCTTACGACGTGCGCGTGTAACGGTACCACCTTTAACTCTTGGCATCTGAAAATCCTCCTAATATCGTTAGTGTATTAAAAAATAGTAAATTAACGCATTTGGGAAAGCATTTGCTTGATGCGCTTCAAGTCGCTGCGTGAAACCATAGCGGCTTTTCTCAAATGGCGACGTTGCTTCTTGGTCTTACCGTGGAAACGGTGGCCAGTGAAGGCGTGGTGGCGCTTCAAACCGCCGTTACCAGTTCTCTTAAAACGCTTAGCTGAAGCGCGGTGGGTTTTCATCTTTGGCATGGTAAAATTCCTCCAATTAACTATTGTTTGTTTTTGTCTTTATCGCTCTTGGGACTGAGCATTAAAAACATTTGACGGCCTTCCATCTTTGGCCGGCTGGTTACAACAGCAATATCCGAAGTTTCTTCGGCCATCTTTTCCAGCACTTGTTGTCCTAATTCCTTGTGCGTGATTGCCCGGCCTCTGAAACGAATCGAAACACGAACTTTGGCGCCTTCTTTTTCTAAGAACTTGCGTGCATGCTTCAACTTGGTTTCGAAGTCATTGCCTTCAATCGCCGGACTCAAACGGATTTCCTTAACGCTGACCTGCTTGGAATTCTTGCGTGATTCCTTCAGCTTCTTCTGCTGTTCGAACCGGTACTTACCATAATCAAGAATCTTTGCTACAGGCGGCTTGGCGTTTGGTGAAATCAAAGTCAGATCGAGGCCAGCATCGCTCGCTTGGCGCAGAGCTTCATTTCTTGACACGACCCCAACTTGTTCACCTTCAGCGTTGATCAGCCGAACTTCACGAGCGCGGATGCTTTCGTTAAGGATCATGTTGTTTTGTTTCTGTGGTATAACTGTTCACCTCCATGTTAATTTCGAGGACAAGAAAAAGGCGGGCATATAGCACCCGCCTTTAAAATCAACAGAAAATATCGATTTGCCCAGAGGTTAAATAACTTAGGCGAGAAGCGGGGGCTTCTTCTTGTTCTCAACTTCTACTATTGTACTAGGTCTAAGATTGCTCGTCAAGGGCTAATTTCACTTTCAGCCCGATTGCTTAAAGCTTAATTTTGCCAATCGCAACAGGAACGTATTCGCAAGAACTTTCACAACAATCTGCTTCATATTTCCTTTTCCCTCTCCTTTTCTCATCTCTTTAATTCGCTTTCTTTTGAAATTATCATATATAGCCATACTGATCAAGGAAACTCTCCATTCGCTTTTATCAATCATTCATCTGAAATGTGTCCTTGTATACGCAGAAAATCTCGCCTCAGTGTTGAGACAGGATGCATCCCTCAATTAACAATATCGTAAACTTGTATATCATAAGCTTGTAAAGTATAATATTGTAAATTGTATTATTGCTAACGAGGTGTTTCAATGTTTATCGGCAGAAATCAAGAGCTTACAGCTTTGAATAAGCTCTATCAAGAAGACAGCTTTCAATTTGCGGTCATCTATGGCCGCCGCCGTATCGGGAAAACCAGCTTGATCAACCAATTTCTTAAAGGCAAGCGGGCCATCTATTTTACTGGTCTTGAAGAAAACGCCTTGGAAAACCTGGCCCGTTTTTCTGACGCGATTCACGCCTACGAAGATCCCAGCTATCTGGATGGACCTAATTTTGCTTCCTTTGAGCAGGCCTTCAAATACCTCGTCCATCTCTCTGAGAAAAATGACCGCTTAATCTTAGTCATCGATGAATTTCCTTACCTGGCGAAAGCCTATCCGCCAATCAGTTCAATGCTGCAATCCTACATCGACCATTATTTTAAACAGAACAAACTCTTTCTTATCCTCTGCGGCAGCTCCATGCCCTTCATGGAAAAGCAGGTCCTTGGCTACAAGAGCCCGCTTTATGGCCGCAGAACTGCCCAGTTTAAGCTGAAACCCTTCAGCCTGCATGATGCCGAAGAATTTTTCCCGCAATTAAATAAGGAAGAAGTTTTTGAACTCAATGCCATCACCGGCGGAATTCCCCTCTACCTCTCCCTGATGTCTCCCAAAAAATCCCTTAGGGAGAACATCAAGGACAATTTCTTAACCACCAGCGCCATGCTCTATGCCGAGCCGATGAGTCTGCTCAATCAAGAACTCCGCGAGCCGGCAAGCTACAGCTCCATCATCAGTGCCATCGCGGCCGGGGCCAGCCGGCAGTCAGAGATCTCAACTAAAACTGGTATTGCCAGCGGAGCCCTTAGCCCTTACCTGGACAATTTGATCGACCTGGGCATTGTCGAAAAACGGTTGCCGGTTACGGAACTTGATAAAGCCAGAAGCCGAAAGACCATCTATGCCATCAAAGATGGCATGTTCCGCTTCTGGTATACTTTCGTCGGCAAACGGGTCAGCTTTATCGAACGGGGGATTACCGAGCCAATTTTAGACTACATCATTAAGCAGCTCCCCCACTTCATGGGACCAGAATTTGAAAAACTCTCCCAAGAATACCTCTGGTCCAAACTGTTTGATCCAGACCTGGTGCCAGAGCCTTTTGTCAACTTAGGCAACTGGTGGGGGCCGGATCCCAAGGAAAAGAAGCAAGTCGAAATGGACATTGTCGGTTTCGATGACCAAAAGCTGAACGGCTACTTTGGCGAATGCAAGTGGAAAAACGAACCGATCTCCGCGGATATCCTCGAAACTCTCATCTACCGAAGCCGCCTCTTCCCCACTCCTAAGAAAAATTACTACCTGTTCTCCAAGACCGGCTTTACTGATAAATGCCAGCAGCTTGCCCAGCAAGTCGACTGCCACTTAATTACCTTCGACATGATGTAAGTCCAAAAATAGAATCCCATACGCAAAAACATCCCGCCTCAGAGTTGAGACAGGATGTTTTTTATGTCAGTTTTGCTTTCTTATAGTAATGCAACATACACAAGAATTATTGCTAATAAGACTGCAGCTACAACCGTAATGATATTGATCACCTTTTTTACTCTATCAGACACAGAATCACTTCTCAAGAGTTCATAGCTGCCTAAGCCTACGACAGATATCGGAATGATACTCCAGTAGTTGCTATTCCTATTGGTTAGCTGCTCAACTATATAAGCAAAAATAAACAGAATTAACGTTACCGAAAAAACTTTCATGAAAATCTGTTTCATAACACTACAGATTAATCCTTCCATTGTTAGGATAAGCATCGTGTTTATCCCAATACTTCGCTATTATCGTGCCTGGAGAATTGTAATTCAAAGCATAATCAATAAATGTACTGGTAACAGCACCTGCAGTACCAAACTTCTTAATAATTTTTTGGCGAATCAATCTACTCAACTTTTTCCGACCCACTTTTTTTACAGCAGCTTTTATCCCTGCTGCAGTTAATTTATCTATACCTCTACCCACAAGCAAACTGATTATTACATCAATTGCTGCGGCGGCCTGTGCAACGGTAATCCCTTTCCACGAGGATCTTGAGGAGATTGTTTTTTGACTCTTGAATACAGATACAGATGGGATTTGTCCATCATTTAATTCATCTCGAATCAGCTCCTTAATGTAGTTCCTTGAAAACTCAGGATGAGATTTTTGTAAAATATCAGCAAGTTGATCAATTCGTTCATCAGACCAATACTTTTTGTCAATCTCAATATTCTTGTTAGGTAAACTCATCGCTTCATTCAAGTTAGTTTTCGCACTTACGCTAGTAGCACTGAATGGCAAAAAAATTGTTACAGTAATCATGGCAACAAAAAAGACAGTTAGATATCGTTTACACTTTTTCATCATTCTTCCTCCGAATTTATTTCACCTTTTATGATACTACCAAGTCTTCAACCAGTAAATAATGATTTTATCGCTTTTAAGCAATAAAATCTCATTTTCTATTTCTTACGCAAAAAACATCCCGCCTCAGAGTTGAGACAGGATGTTTTTTTATGTCAGAAAGGGTTCAATTTTATAAGGAAGGAATTAGTCTTCGCGGGAGTAGTTTGCTACGTCCTTGCTCAGCTTGCCCATGAACTCAGCCAGGCTTTCGGAGTTTTGTTCTTCAGTCCCGTAAGGACGAACGTTAACCGTGCCGGCGTTCATTTCATCATCCCCAAGCACCAGAGTGTAAGGTACCTTTTGGGTTTGTGATTCACGGATCTTGTAGCCCAGCTTTTCATTTCTGAAGTCGATTTCTGCTCTGAAGCCCTTGGCCACCAGTTCGTCGCGAACCTTCTTAGCGTAGTCTGAGTGAGCGTCCAGGTTAACTGGAATGATTTCAGCTTGAACAGGAGCCAGCCAAGTTGGGAAGGCACCCTTGTAGATTTCAGTCAGGTAAGCGATAAAGCGTTCCATAGTACCGACAATCCCGCGGTGGATCATAACTGGACGGTGTTCTTCGCCGTCAGCGCCGATGTATGACAGCTCAAAGCGTTCTGGCAGCATGAAGTCCAGTTGGATGGTTGACATGGTTTCGTCGTTGCCCAAAGCAGTCTTGGTTTGGATGTCCAACTTTGGACCGTAGAAGGCAGCTTCACCTTCAGCTTCAACGTAGTCCAGGCCCATGTCGTCCATGGCTGCCTTCAGCATGCTTTGGCTTCTTTCCCACATTTCATCGTTGGCAAAGTACTTGTCAGTGTTCTTTGGATCCCGGTATGAAAGACGGAAGTAGTAGTCATTGATGTCGAAGTCGTGGTAAACGTCCATGATGATTTGCAAAGTTCTGGCAAATTCTTCTTGAACTTGGTCCAGAGCTACAAAAGTGTGACCGTCGTTCAGAGTCATTTCCCGGACACGTTGCAGACCTGACAAGGCACCAGACTTTTCGTAGCGGTGCATCATCCCCAGTTCAGCAATCCGGATTGGTAGTTCCCGGTAGGACCGGATGTGGTGCTTGTAGATTTGGATGTGGGATGGGCAGTTCATTGGCCGCAATTCCAGCATTTCGCCTTCACCCATGTCCATTGGCGGGAACATGTCTTCCCGGTAGTGAGCCCAGTGGCCGGAAGTCTTGTAGGCGTCCAGGTTCATCAAAACTGGCGTGTAAACGTGTTGGTAGCCGGCTGCGACTTCCTTGTCCACGATGTAGCGTTCAATGATCCGGCGGATAGTGGCACCCTTTGGCATCCAGTATGGCAAACCTGCCCCAGCCTTAGGGTCAACGAAGAAGAGATCCAGGTCCCGGCCGATAGTCCGGTGATCTCTTTCCTTGATTTCTGCCCGCCGCTTAAGGTCAGCTTCCAGGTCAGCTTCCTTGAAGAAGGCAGTCCCGAAGATTCTTTGCAGCATTGGGTTTGAGCTCTTGCCCTTCCAGTAGGCACCAGCTACTGACAAGAGCTTGAACTTCTTGATCTTGCCAGTGTTTGGCAAAAGCGCGCTAAAGCCAAAGTCAACGAAGTCGCCCAGCTTGTAAGCGTCAACCACGTCGCCTTCCTTGGCCAAAAGTTCGCTCTTGTATGGATCGTCCTTGAAGGCTTCAGCCAGTTCGCTCTTAGCTACTTGTACGTGTTCAATGGCTTCGCCGTTCTTGATAGCCTTTTGCAGGGCCTTTTCCAAGTCTGGCAATTCAGTGACCTTGATTTGGTCTTCCTTGTCAGTTTCGATGAAGAAGCCGTCTTCTGAAACTTCAGCCTGGCCCAGCTTGATTTCCGGATACTTGTCCTTAACCAAGGCTTCCAAAACGAAGGCAACAGTTGCCCGCAAGACGCTCAAACCTTCAGCGTCCTTGTTGGTCAAAATGGCAACTTCGTGGTCAGTGTCCAGCTGAAAGTCAAGGGGCTTGATTTCCCCGTCAACCTTGCCGGCAACGGCGTTCTTAGCCAGGGAAGTTGAGATGCTGGAAGCAAGGTCAGCAACGGAAACAGCTGCGTCAAATTCTTTCTTTGAGCCATCTGGCAGAATCAAAGCAAAACTCATTGGTTTAAATCCTCCAAAAACAAAAAAGACCCGAGCACATATACATGCTCGGGACGATTAATTATCGTGGTTCCACCCAAAATTCAGGCCTAAAGCGGCCTCTCTTATTGGACTGATAACGGCGTCCAACCTTGTCATTTATCTTTTGGGGTCATAGAAGGTGGGGTTCCTCCCAAATGGGGGCTTTCAGAACTGGGCCCCTCTCTCTGAAGCGGGAGGAATCATGTCTTCTATTTACTTTTCGATTATACCCCCTTGCCCAAATAAGACAAGGCTTTTTTGCCATTTTTTTCAAAAAATCTAAGGCAGGCGGCGGTTGTTCCCGTAAACCACCACTTCTTTAGCCAAATAGCGGACCCTTTGCATCAGCCGGGCCGCCTTGACCGGGTCATCCGCGTTCTTGGTCGCGCTAAAGTGGCTCTCCAGGGTCTTCATGTCAAAGTTGGAGCTGAAGAAGGTCGGCAGGTCATTGTCCATCCGGGCCTGGAGAATCACTCCTAAAACGTCGTCTCTTGACCAGGGACTGAGGGTCTCGGCCCCGATATCGTCCAGAATCAAGACATCGCAAGCCGCCAGGCGCTGGATTTCCGTCTGCAGGCTGTTGTCGCCGAAGTGGCTAGACAAACCAGCGATAAAGGTCGGCATGTGCAAAAAGATCACCCTGCCGCCCATTTCCGCTACCCGGTTGGCCAGGCCCGCTAAAATGTAGGTCTTCCCGACTCCGAAGTCCCCGCTTAAATAGAGGCCCTTGGCATGGGGATTGCTCTGGTAAGCCTGCAAAAAGGCCCCCACTTCAAACAAGGCCTGCTTGCGGTCATCGGCCATGTCCAAGTCAGCCAGCTTGACCCGGCGCAATTTCTCCGGCAGGTCAATCAACTCAATCCGCCGCTTGGCTGCTGCTTCTTTGTCCCGGCGCTGCTTGTCCTGGCTGGCCCGGTAACGAATCCCGATTAAAGGACCCTCCATGAAAAGCTGGGGCAAATAGCCGCTGATCACCTTGTCGTGGCTGTCTTTTTGCCGGCAGTATTCATAGAGGCTGGCAAAGCTGGCGTCCACGCTCTCCTTAGTCAGCTGGTCCTGGTGGGCCGTCAGAAAGGCCCGTACGTCGGGGTCAGCGAAGACCTGTCTTTTCATCTTTTCAAATGATTCCGCCGAAAAATCCTGCCCGTTCTTGGCTGCCGCGGCCTTAGCCGCGTCACTCAACATGTCGCCAATTGCTCTCATCTAATCACCCTTACTTGTCTTTCTTGTCCGGCCCCTGCAGCATCTTCCGCAGGTCTTCATCAGAAATATTGACCGGCTGGACAAACTGCTTCTTGTTCCAGTCAGTCCCCTGTTCAAGCCGCCGGTTGCCTGAATATGCCGGGTAGTTCTTCTTTTGCCCTGACTGGGCCTGTTTCTTCCCAGCGCGCAGGTGCTTGATGGCGGCTTCCGGGGTCGTGATTCCCTTTTGCAGCCAGTCGTTGGCAATCCGGTAGGCCAAATCCTGGGTCAAAACCGGCTGGTAGTTGAGGCAGGTGTAGACCAGAACATTGATCAAGTCCATTTCCAGGCCGACATTTTCCCGCAAATCATAAACGATCTGCCTCTCTCTGGCCGTGGTAAAGCCGCCCTTTTCCCGCTTCATGTCATCCAGGAAGTTGACCGGGGACTTGCTCTTCACCAGGTCTAAAAGCTGCTGGTCTTGCTGGTCCACGCTCGGCCGGTCCTGCTTTTCTTCCTGGCGCTTGATTACCTGCTTGCGGCGGTGGTTAGCCTTGTAGTTGTAGTTGAGGCTATTTCTGATCGCCGCGGCGTCCAGCTGGTAGCTGCCATGCAGGGTCGGCAGGGTTTCGTTGATAAACTCTTCCTCGCTTAAGCCGTAAAGTTCCATGATGGACCGGATTTCGTCTTTCTGCAGGTCGATCTCGCTTTCCGGGATCTGGTAAGTCGCGAAGCGGTCTTTCAAATACTGCCAGTCGATCTGCTTTAAGTTGACCTGGGCTTCTTCCGTCTTCTGGCCGGTATTTTCCTCAGCCGCCTTTTGGACGTCTTCAGAAGGATTGATGGCCTCATTTTCCGGCAGGCGGAAGACTTCAAAAAAGGAAGCGGAAACTTCTTCTAGGTTGTCCAACTGCCGCTCCTTGACCTGGGCCTGCTTGGCAAATTCCCGGGACAGCTGGCTGAAGCGGACCCCGCCAACTTTTTCTTTTAAGAGGCTGGCTAACAGCGAAGTGTTGAAAAACTCACTGGCCTCCGGCACGGCGTGCAGCTTAAAAGCCAGGATATCCCCCAAGCGGAGATTGTGGCTGACATAGGTCTTGAGTAGCCCCACAGCTTCCAGCTTATGCAGGGCCTGCCAGAGCTGGCGGAGGCTGCAGTCCAGGTCTTCTTGCAGGCTGTACAGGGCATTTGAAGCCGACAAAGACCGGTAAGGATCAAAGTCCTGGACCAGGGTCTGGTAGAGGGCAACCCCTAAAGCCCCGATCAAGGGCTGGTAGAGCTTGATTAAGACCTGCCCTTGCCCTAACTGGTCGGCCAGCTCATTTAAAACGACGTACCTAAGGCGGGGATTGGAATTTTCGTACATGGACTACTTGGCCTTGCTGTGCCGGTCCATCATGTCCTCCATGGTCTTCATGAAGCTGGACATGTCAGTGAACTGGCGGTAGATGGAGGCAAAGCGGATGTAGGCCACGTCGTCGATGTCGGCTAATTGGTCCATGACCAGTTCCCCGATTTCCTTGGAGTAGATTTCGCTGACTCCTTTAGCCCGGATCCGGTTTTCAACATTGTCGACCAGCTTGTTGAGCTGCTCGCTGGTTACCGGCCGCTTCTGGCAGGCAGCCGCCACCCCGTTCAGGATCTTTTCCCGGCTGAAGGCCTCTCTGGTGCCGTCGTTCTTGATCACCAAAAGGGGTGACTGTTCCACCCGTTCAAAAGTCGTAAAGCGGTAGCCGCAGTTTTCGCATTCCCGCCGCCGGCGGATGGTCCGCCCTTCGTCAGTTGGCCGGGAGTCAATAACCCGGGAGGCGTTTTGATGGCAATTTGGACAAAGCATTGTAAAGCTCCTTTCACGCGATAGTTTTCAGCAGATTGCTCAATTTGTCTCTTAATTCTTCTATTGTACCAGTATTTTCAAGGACATAGCTAGCCAACAGGCGTTTTTCCCCTAAAGGCAGCTGGGCCTGCATCCGCCTTTTAGCTTCTGCTTGGCTTAAAGAGTCCCGCTTCATCAAGCGGTCCAGTTCCACTTCTTCCGGGGCCACGATCAAGAGGACAGCGTCAAAGTAGTCCTGCCAGCCAGCCTCAAAGAGCAGGGGAACATCGATGACGCAAACAGAAGCCTGGCTGTCTTTCATCTGCTTTTGAACTTCTTTTAAGACCTCGCCTTGGGTAATTTCAGACAATTTGGCCAAAGCCTTAGGATTGGCAAAGACATACTGGCCCAGCTTCTTGCGGTTAAGACTCTTATCTTCATTGAAGAAGTCCGGCCCGAATTCTTCTAAGATCCTTTGCCAGGAGACCTGGCCCACTTTGGCCTGCTGGTGGGCAATCAAGTCGCTGTCAATGACCTGGCAACCCAGATCTTTTAATATCCGGCTGGCGGTCGACTTGCCCGTGGCAATCCCGCCGGTCAGTCCCAGATAAAAAGTCATCTAATCTTTTACCTCTTTTGACAATGCAGGCAGTAGGTGGTTCCCCGCCCGCTGATCTTGATCTTGACAAAGTCTTCTCCGCAGCGGGGGCATGGCTGCCCCTCCTTGCCATAGACCTTGAGCTTTTCCTGGTAGTGGCCGGCCCCCCCTTCCGCGTTTAAGAAGCTGTGGACGGTGGTGCCGCCGTATTTAGTAGCTTCTTCTATGGTTTCATTGATGGCTGAATGGAGCTGTTTGACCTGGTCCTTGGTTAATTCGTTAGCTGGCGTTAAGGGGTTAATCCGGCTTTGCCAGAGGACTTCATCAACATAGATGTTGCCCAGGCCGGCCACCAGGGTCTGACTCATGAGCAGGCTCTTGATGTTCATGCTCCTCTTCTTCAAGCCTTTTTCAAAGTAGTCCAATCTAAATTCTGGACTATTTGCTTCAACGCCCAAATTCTTCAAGCCGGTGACCTGAAATTCAGTTCCAGTTTCCACCAATTGCAGGCGGCCGAATTTGCGGACATCCGCGTAGCGGAGGCTGCTTCCATCGGTAAAAGCAAACTGCAGGTGCTCATGCTTGTCTACCGGTGCATCCCAGGTCGTTAGATGGTACTTGCCTTCCATCCGCAAGTGGGAAACGACCGTCAAGTCGCCTAAACGGAAGAGCAGGAATTTGGCATAGCGGTCAACGGCGGTAAAGGTCTTGCCCTTTAACTCCCTTTTAAAAGTTTCCGGGTCGCCGGTGATGACCTTGTCGTACCAAATATCGACATGGTCGATCGTTTTGCCCACGACCAAGGGCCGCAGGGTCCGGCGGACCGTTTCAACTTCTGGCATTTCTGGCATTTTCTACCTCCTACTTTGCTTCATACCAGTCATGGCCCCAGCTGGCGTCAGCGACTAAAGGCACGTCCAACTTAACAGCTGCCTGCATGACTGACGGGACAATCTTCTGGATCGTTTCCAGTTCATCAGCTGGTACGTCAAAGATCAATTCGTCGTGGACCTGGACGACCATCTTGGTCTTTAATCCCAGTTCATCCAGCTTCTTTTGCATGTTGATCATGGCAATCTTCATAATGTCCGCGGCTGACCCTTGGATTGGGGAGTTGATCGCCGTTCTTTCCGCGAAAGAGCGGACATTAAAGTTCTTAGCGTGGATATCTGGCAGGTAGCGGCGGCGGTGCATGATGGTTTCCGCGTAGCCCTTTTCTCTGGCGTCTTTAACAGCCCAGTCCATGTAGGCCTGAATGCCTGGGTATTGGTCAAAGTATTCGTTGATGAATTCCTTGGCCTGCTTGCGGGAGATGTCCAGGTTCTTGGAGAGGCCGTAGTCAGAGATCCCGTAGACGATCCCAAAGTTGACCGCCTTGGCCCGCCGTCTTTGCAAAGACGTTACTTCGTCAACGCTGCTTAAATGGAAGATCTTCATGGCCGTGTGGGCGTGGATGTCGTAGCCGGTCTTGAAGGCTTCCTGCATGTTCGGGTCGGCTGAGACATGGGCCAGGACCCGGAGCTCGATTTGGGAGTAGTCGCAGGAGTAGATATAGCCATCCGGACTTGATGGGACAAAAGCCTTTCTGATCTGCTTACCTTCTTCCGTTCTGGTTGGGATGTTCTGCAAGTTAGGGTCAACTGAAGACAGGCGGCCAGTTGCCGTCAAAGTCTGCAGGTAGCGGGTGTGGATGCGGCCGTCACGCTCATCGATGACGTCTAAGAGGCCCTTAACGTAGGTTGATTGGATCTTGGAAATCTGCCGGTATTCCAGGATGTCACTGACAACCGGGCTTTGTTCTTTCAATTGGTTCAAGACTTCAACTGAAGTGGAGTAACCGGTCTTGGTCTTCTTGATGACTGGCAAGCCCAGCTTTTCAAAGAGGATGACCCCCAGCTGCTTTGGTGAATTCAGGTTGAATTCTTCCCCGGCTTCCTTGTAGATCTTCTCTTCCAGTTCCTTTAAACGGACAGCAAAGTCGTTTTCTAGTTCCTTCAAGCGGGAAGGCTGGACCTTGATCCCGTTCATCTCCATCTTGGCCAGGACTCTGGCCGTTGGCAGTTCGATTGAATCGTAGAGGTCATCTTGCTCATGGTCTTTTAACTGCTTTAAAAGACTGTCCTTCAAAGCCGCGATCGCCGCGGTCTTGCCAGCCAGGTGGTTGAAGAAGACCGCGTCATCTGCCGGAATCTTGGCATTCTTCCCCTTCCCGTAGACTTCCAGGTCGGTCTTTAAGTCATAGTAGTCGTAGCCTTGGACCAGTTCACCCAGGTCGTTGGAATTTTTCTCATTGTCAACCAGGTAAGAAGCCAAGAGCAGGTCAAAGGACAAGCCTTCAGCCTTAATCCCCAGCCGATAGAGGCCGTAAGTGGTCCGTTTTAAGTCAAAGACGTTCTTTTGAACGGCAGAATCTTCCAACATTTCTTTTAAGGGACTTTCCTGCAAGAGGAAGACATCCCGGCTGACGAAAGTTTCCCCGCCGATTTTCAAGGCAAAGCCGGCGAAGTCAGCCAGGTGGTAGTTGTCGCCAAACATGGCCAGGTAGAAAGTAACTTCAGCAGCCTTTGGCAGCTGGTCTAAGTTATCAGCACTGAGCACGACATAGTCCTGCTTTTTAACTTCCGTCTTGTTTTCAGTCAACTCCCCTTTTTGGGCCAAGTCGGCCAGAAAGCGGCGGAAGTTCATCTTTTCGTAGAAGCGACGGAGGTCGTCGACATTGCTGCCCTCATAGCTAAGGTCATCAAGGGTCACTTCCACCGGGCTGTCGCACTTGATGGTGGCCAGCTTTTTACCCAAAAGGGCATTGTCCTTGCCGGCGATCAGGTTTTCCTTCAGCTTGGACTTCTTCATTTCATCAACGTGGTAATACAAGTTCTCCACGCTGCCGTATTCCTGGATCAATTTAGAGGCAGTCTTGGGGCCGACCTTGGCCACGCCTGGGTAGTTGTCGGACGGGTCACCCATCAAAGCCTTCATGTCGATGAACTCAGTCGGGGTCACCCCGTTGACTTCTTTCATGTGGTCTGGAGTGAAGGCTTCCAGTTTAGTTACCCCGGACTTGGTCACGTAGACGGTGACATGGTCACTGGCCAATTGGGTCAAGTCCTTGTCCCCGGAAACAACGGCCACTTCATAGCCGGCTTCGGCTCCTTTTTTAGCCATGGTGCCGATGATGTCGTCGGCTTCATAGTTGGCCAGTTCGTAGCTCTTGATTCCCATGTCCTTGAGCATTTCCCGCAGGTAAGGGAGCTGTTCGGAAAGTTCTGCCGGAGTCTTGTCCCGGCCGCCCTTGTAGTCTTTGTACATGGCGGTTCTGAAGGTGGTCTTGCCAGCGTCAAAGGCCACCAGGATATGGCTTGGGTCTTCCTGCTTCAAGACCACGTCCAGCATGTTCTTAAAGGCATAGAGGGCGTTGGTGTGGAGACCTTCTGGATTCTTAAACTTGTCCAGCTGCTGGTACATGGCGAAAAAAGCCCGGAAGGCCACGGAATTGCCATCGATTAAAAGTAACTTCTTGTTCATTGTCATTCCTTGCAAAATAAAAACTGTCAAAATACCTATATGTATTTTAACAGTTTTTGCTAGTTCGTTAATTATTTAGATCCACCTTCTGTTTTCACGTTCTTGTAGAACATGAGCCAGAGGAAGACTACGATTACGGCCAGGAAAATAAAGGCGTGCTGGGTGCCGATTGCTGTCGGCCGCGGGCCCTTTGACCCGTATTGGGCTTGGCTCAGGCCCACAATAGCTGAAGTCAGAGAAGTCCAAATGGCGCCGGCAAATTGCTGAATGGTATTTAAGAAGGCATTGCCTTGCGCGGAGAATTCCGGCTTAAGGCTGGCCAAAGCATTGGTCATAATGGCGCCAATGCTCATCCCCATCCCGGTCATGTAGATGATATAGACCAGTGAAATTACAAGATCGGACATCTGCTGGGACAAGCAGACAAAGGCGATCAACTCGGCAGCCATCAGACTGGCCCCGGTAATGATTGGGAAGCGGGCCCCTTTGTCGTCATAGAGGCGGCCTCCAACCACGCTCATCAAGGCCCCGACAATGCCAGCCGGCATGGTAACCAGACCAGCAACAGTAGCCGTAGACTGGTTGACCAGCTGTAGTTAGGCAACAAGAAGGCGTTGCCCAAGGAGCAAAGCTGGATCATGAGAAAGCCCAGCAAGTGCACGCTGAAGGACTTGTTCTTGAGAATTTCAAAGTGCAGGATCGGTTGAGCCAGCTTTTTGGACCGGCCCAGCAAGAAACCAAAAGAGCAGAGGCCGATAAAGATTGGAAAGAGATTGGTCAGCAATTTACCTGATGAAAGGTTGCTGAAGTCATAGATAACGCCGGCAAAGAGAACAGCGATAAAGACAATGCTCAAGAAGTCCGGCTTGATCTTGACGATATTGGACTTCTGCTGGATGTCATAAAGACCCAGGAAGAGAGACAAAATGATCAAAGGCATCAAGAAAAAGAAGACGTAGCGCCAGCCCAGGTTGTTAATGACAAGGCCCCCGAAGGTCGGCCCCAAGGCAGGCGCAACACCCGTGATCAAATTGCCAAAGCCCATCATGAGGCCGATTTTGTCAGCTGGTACCTGCTCTAAAATGATGTTGAACATGAGTGGCAAGGCAATCCCGGTACCCAGGCCTTGGATGGCCCGGCCCAGGAGCAGAATCATCACGAAATTTGGCGCTAAGGCGTCCAGCAAGAGGCGGCAAAGAAGAGCAAATTGGCGGTAACAAAGAGCTGCTTAGTCTTAAAAGAGCTTTTCAAAACAGCGGAAAGCGGCACGATAACGGAAATGACCAGGAGGTAGATCGAAGTCATCCACTGAACAGTGTTAGTGGCCAGGACAAACTGTTTCATCAAGATTGGGAAGGTAACATTCATCGCCGTTTCCACCAGGACGCCGCTGAAGGACATCAAGCCCGTGGCTAAGATGGCCGCGTAGACTTTTTTAGAAATTTTCGAACCGCCAATTGCAAGAATAAATTGAACACTTACCATCACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGCTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCTTTACGACTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCACTTGACCTTCTCTCACTGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGAAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCACATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGATGTGGTTTAGTGTTAGAATATGTATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGTTTTTTCTTACTGGATCGGAACAGTGTTCAGTTTGATTTTACAATCGGCGAACAGAACATATTTTGTCAATAATTCTTTCTGTTCATCTTCGATTAGTTCAACTGGTAAAGCTACATTAAATTCTTTCGCGTACCGTGAATTTGCTCGTCGATCTTTTCTTTCGACCTCATTCCATAATTGTTCTCTATCACTCGCCCATGCTAGCGCATTCTTAGGAGTTAAAATAAAACTCTCTGGCATGACAGATCGGGCATAGAAATAGTGGCGACCTTCCTTATCATCAAATAATTTTTCACCACTTCGATAAGCGGCACTGGCAATGGCGCTGCGTCCTTTTTCTTCAACTGACTTCTGCACTCTGGCCTAGGATTCCGGCTTATTTTGGTACATGTGGTAAGAACCGCCGGCATATGGGTTGTCCAGATGGGCAAACTGGGTGGTCTGGCTGGTCGGGTTCAGCTTGATTTCCATGCCCAGGCTCTCGATTTCTTCCAGAGTCGGCTTGGCATTTTCCACGATCCGCCGGGTCAGTGGCCCATTGTTCAAATAGTGGTTGTACTCATTTAATTGCCGGGTGGCTTCTTCCGTTGACAGCTGCAAACCAGCTTCCCGCTGCTCCTTGGTGTCAATCGCGAAAAAGCCGCTGGAGATCTTGGTGTTGCCGCCTGGCTGAGCCTGCTTTTCAATTACCAAAGTCTTTAAGCCCTGGCTGCCCCCCGCGTCAGCTGCCGCCATCCCCGTGCCGCCGCAGCCAGCTACCGCCAAATCAACCGTGTATTCTTTGCTCATGCTTGTTTCCTACCTTTCACAATCTTGCTTTTCTTACGACAACTTCTCCCTATGCTAGAAAAAGCAGCCATACATTTCATATTGACCTCCTGGAATGCTTGACTGATGCCGTATTGTCAGCCAATAAGCGCCTCTTCTCTCTGAAAAAATTCGACATCATCGTCGCTACTGGCTTCAAGGAAGTCCACCTGTCTCCGTTAGCTGAAAATAGCAAAGCTGCTGCTTCTGCCTCTTTCCGCCTCCTCCAGATAGATTTGGCCTACCCGGATTGGCCTACCCGGACCCCCTTAACCAGTACCTGGTCGCCGACAACGCCTTAATCCATGACTTAATGAATGACAAGTCCAGCAAATATGCCTATATCGTCTTTCAAACTCTGGCTGACGGGATGACCAATGGCTATATCAACTTGCTTCATATTCTTGCAAAAAGAGACAAAGACGAATACGACGATTTTCAAGTCCAGCGCCTGGCTGGCCTGCTTTTGACTGAACTGCTCCACCAACACCGGCAGAAGATCTCCAAGAGCAGGTCAAATTTTCCAAGAAAAAACGTGCGCCACGCTAACCGTGACGCACAATCTGGCGCTATTATGACTTACCTGACCCAGAAAAATGGCCAGGTTTCTTTAAAAGAAGCGGCTGAGTACTTCGGCTACCAGGCAAATTACTTTTCCCGCCTCTGCCGCAAGCTCTTTGCCACGGACTTCGTTCACCTGCGCCGCAATATCCGGATCAACCTGGCTGAAGACCAGCTACTTTTAACCAACAAGAAGCTGGAAGAAATCGCCGATGAACTCGGCTATCAAGACCTGTCCAGCTTTTCCAAGGCCTTTGCCGAATCCACCGGCTTTTCGCCAGGCAAATACCGGAAAAAATATGGCATAAAAACAAGCCGCTGACCTAGTCAACGGCTTGTCTGCTGCTTATCTTACTTTCCCAGCATTTCTTCAAATGCTACTTCATATTTAGGAATATCGCCGGCACCCATGAAGACAATGCAGTCACCCTTGTAAGCCAAAAGATCCTTCAGATTGTCGAAGTCAATGACTTCAGCGCCTGGAATCTGGCTGGCGATGTCTTCACTCTTGATGTCGCCCGCTGCTTCTCTGGCTGACCCGTAAATTGGCGTCAAGAAGGCCTTGTCGACCCCCTTCAGAATTTCCACGTATTCTTCTTCGAATTCCTTGGTTCTGGAGTAAGTGTGCGGCTGGAAGATGGTAACCAGCTTCCGGTCCGGGAACTTCTGCCGGGCAGCTTGAATCGTAGCCCGCAGTTCAGTTGGGTGGTGGGCGTAGTCATCGATGACCACCGTGTCACCGAAGTCCTTTTCGCTGAAGCGGCGCTTGGCCCCGGTGTACTTAACCAGACCCTTTCTGACTACATCAAGGTCAATGCCTTCAGTAAAGGCAATAGCAATAACCGCCGTAGCGTTCATCACATTGTGGTCACCGAAAAGGTGGATAGTAAATTCGCCTAAGTCTTCCCCATTAGCCCGGACATGGAACTTGGCCCCTTCAGTGGTCTTAACCACGTCAAAGGCCTGGAAGTCATCGCTGTCTTTCAAGCCGTAAGTGTACTTCTTGGCCGTCTTTGGATGGATCTTCTGCAGGCGTTCGTCATCGCCCCAGACAAAAAGCCCCTTCTTAGTCTGGTCAGCCGCCGTCTGGAAGGCTGAGGCATAGTCGTCTCTGTCCTTGAAGTAGTCAGGGTGGTCAAAGTCGACATTGGTCATGATCTGGTAATCCGGGTGGTAGGCCAGGAAGTGCCGCCGGTATTCGTCAGCTTCGTAGACGAAGAAGCGGGAGTCCTTGACCCCCTTCCCCATCCCGTCACCGATCAGGAAAGAAGTCGGAGCGGCTTCGCCCAAAACCGTTGCCAAAAGGCCGGTGGTTGAAGTCTTGCCGTGGGAACCCGCAACCCCGATACTGGTGTACTGCTGGACGATTTCTTCAACCGTGTCCGGGTAGCTTTGCCACTTGACGCCCTTTTCCTCGCAGGCGGCAACTTCGATGTTGTCGCTCTTAAAAGCGTTACCCTTGACGATCACCTGGCCGCTTTCCTTGATGTTGTCCTTGGAGAAGGAAGCAACTTCAATTCCAGCGGCTTCCAGCGGGTCCTGGGTGAAGGTGTACTTGTCGATGTCGCTACCGGCAACCTTGTAGCCCAGGTCGTGCAAAATCAAGGCCAAGGACGCCATCCCGGTCCCCTTGATCCCAATAAACCAAATTTGTTTAGTCTTGTCTAACATTTTTTCGCTCCATTTGTTTCAAACGTTCGACCCTTATTTTATCATTCTTGGGCCAAGAAAAAAGAGCTCCGGGCCATAATCAGCCGAAAGCTCTTTATTTTTTGCCGTTTTTTTAACAATTACAGGGTGATAGCGCCGCTGGCCAGCAGTTCGTCACACTTGGTCGGTTCAAATTCGTCACCGATCTTGAAGCTGTCCGGAACAACCATGATCCCCCGCTTTTGCGGAGCATGAGCCAAGCCCAGTTCTCTGGCTGAGCAGATCATCCCGTCTGATTCAACCCCGCGCAAGGCGCCTGGCCAAATCTGGGCCCCAGTTGGCATCAAAGTACCAGGCAGAGCCACAACGACCTTTTGCCCTTGGGCGATGTTTGGTGCCCCGCAGACGATTTGGTGGTCCTGACCATCGCCAACGTCAATTTGCGTTACGTGTAAGTGGTCAGAGTCCGGGTGTGCAGCGCATTCCTTAACGTAGCCGTAAACCAAAGTTGGCTTGGCCACAGTCAGCTTGTCGGAAAAACCAACGCTGGCCAGTTTTTCGTTCAAGGCTGCGACTTGGTCTTCGTCCAGCTTGACTTCGCCGTTTGGCAGCTTGTCGTAGTCCAGCACCTGGTCAACGTTAAAGAAGTTGAAGCCGGTCAATTCGCCCTTGCCGTCCGTAACCCGGGTTACGTCGGCCTTTTCTTCGAAATTGCTTTCGCCATCGCCTTGCGCCAAGATGACGATCAAAGTGTTGGGATAGCTTACTTTGTTAATACTAGTGATCATTTGATCTCAAGTCCCCTCTTATCTAGTCAAGCGACCGCAAAAATGCTTCTACTTCCTGCTTGGTCTTGCGGTCTCCATTAACTAGTCTACCAATTTCTTGCCCATCTTGGTAGACAACAAATGAAGGAATTCCCATAATGTTCATTTCCTTGCACAAGTCGATAGAGCCGTCCCGGTCGATCTTGATGAACTTGCTGTCTGCGAAGTCAGCTTCGATTGCTGGCATGGCAGGTTCCAAAAAGCGGCAGTCTGAGCACCAGTCAGCAGAAAATTCGACAACCGTCCGCCCGCTCTTGACTAAGTCCGCCAGCTTTGCCCGGTCAACTACTTTATATTCTTCCATGTTTGCCTCCTGCTTACTTTTAATAAGAGAAATATTTACTAGCTATTTTAACCGATTTTCCCGGCAAAGGGAAATTTTTTACTTGGCCAGAAAGCCCGCGTGCAGGCAGTAGATCGGCTGCCCCTTGCTGGCAAACTTGTGCTCATACTCAGTTTCCACGTTCTTTTCCACGATTTCTTCGCTTTCGTGGTGGAGGTCAACTGACATGAAGTCAAAGTGCATCCCGTAATTGTTCATGCTCTTGACACTGTACGCAAACAGGCCGGAGTTGTCGGTCTTGAATTCGATCAACCCGTCGCCGGTCAAGACTGCCTGGTACTTGGCTAAAAAGTCCTTGTAGGTCAAGCGGCGCTTTTCATGCCGGCTCTTTGGCCAGGGATCGCTGAAGTTGAGGTAGATCTTGCTGGTGGAGTTTTCCCCGAAATAGGCTACCAGGTTGGCCGCGTCGGCGCAGAGGATCTGCAGGTTGTCTAGCCCCTCGTCCAGCTTCTTTTTCAAGATGATGCCGGCTGCCGTCTTCTGGATTTCCATGGCCACGAAGTTGCGGTCAGGGTGCTGCTTAGCCAAAGTAGTAATAAACTGCCCCTTGCCTGAGCCTACTTCGATTTCAATTGGCTTGTCGTTGCCAAAGCGGGCTTCCCAGTCGATCTTTTCCGCTGGATCCGGCCGGTCCAAGGCGCTTTCCGGGTGCTCTTCTACCAGTTCGTTTGCCCAAGGCTTGTTCTTTAAACGCATGTCTTTCTCTCTGTTCTTTCTAATTCTTAGTTTTATCTATATCTTATTTTACCGTTTGCTTTTTTACCCTTTTGCCCTATTTTTTCCGCTTCTTGTAACGGGATTTTTTCGCCAGCTGCTGGGTCTTGTAAGGCAGGTAGCCTTTGGCCAAAAGGCCGCACCAGACCAAGAACAAGAGGCTCCAGGCAAACTGGCCCGGCATAATGGCCAGCCAGAAAATTATAATCAGCCCCGTCTGCAAAAGCAAGGCCCAGGCCAAGACCCGGCTGACTTCCTGCCCCCGCTCTTTTTGGGCAATCGGGTAGACCCGGTACATGATGTTCTGGTCATATTTTTGCCCTAAAGGCAGGAGCTGCCAGACGGTTAAGTACATGACCAAGGCGGACAGGAGCAGAGACCAAACCGGATCCTGGATCATGGCTGTTAACAAAACGGCAAAGGCCGTCATCCGGGCCAAAAGGTTCAAGTATTCCGGGTTCCGCAAAAGAGTCCGCCGGTACAAGAAGCTGTTTGGGCTTTCCTTGCCAAAAGGCGGCAATAAAAAGTCCAGGTACTTCCGCCGCTTGATATTGACCTGTCTTTCCTTGACGTCAGTAAACAGGGCAAAGCCGGCGTAAACCGTCTCTTTCCGCCTTGCTTCATAGTCAATGGCGTACTGCCAGTCAAAGGCGGAATTTTTCCAGGCCCGTAAGGCCAAAACTGCGATAACGGCAAGAGCCAAAAGCAGGTACAAGGCATTTGGCAAGAAATACAAACTCGCCAAAAGCAGGGCTAATAGGACTAGCCTGATCAGCCAGGTCACCTGCTTGACCCTGTGGTCAAAAGTCAGGCTGCGGCTGACCGCCCCTTGCTCAAAGACCTTGGCGAAAAAGAGGGCCAAGACCAAGCTAAAGTAGTTGAGATTGGACAGGCCCATTTTTAAACTGGCGAAGGGATACATGATCCCGCCAGCTAAGGCCAAAAGCAGGGCCGGCAGAACTAAGCTGTAGCGGCGCATGGGAGCCAGGTAATCATCCAGCCGGTCGTCAGTGGCCAGCAGGAATTGCCGGTCAGCCGTCTGCAATAGGGTCACCAGTTTGCCCGGCAAGTAGGCCAGCCAAAGCAAGGCGGATAATACCAGGGGATAGTACCAGGCCTTTACCGGCAGGACCTTCATCACCTGGGCATACCAGAACATGACTGCCCCAAAGATGAAGATCAGAGCCAGGACAAAGAAATCGTTGAAAACCAGGGCCAAATACTTGGCTGACTGCTGGAAGTTACCCTGCAGTCTCTTCTTTGCCAACTCACGCATTTTTCTGCTCCTGGTACAAGAGCTGATAGAGCTTGTCAAAAGAGTCGCTGGCCTCTAAGCCATAGTGGTCCCTGATTTCATCCAGGCTGCCGGTGAACTCGATCGTGCCCTGGTTTAAGATCGCGTAGGTCTTGATGGCCTTCTGGGCATCGGCTAATACGTGGGTGGTCATCAGAATTTCCTTGCCAGACTCTTGCGCTTCTTTGATGAGGCCGATGAAGTTGGCGACAGCCAGAGGGTCCAGGCCGGTAAATGGCTCATCGATCACTAAAAGCTGGGCGTCAGTCAAGAAGGCGGCCACGATCATCACCTTCTGCTGCATCCCTTTTGAAAAGTGCACCGGCAGCCAGTCCAATTTGTCTGCCAGGCGGAACATGGTCAAAAGCTCTTTAGCCTTTTCCCAGGCTTTATCCGTATCCAGCTGGTAAGCCAGGATGGTAAGTTCCAGGTGCTCTTTCAAGGTCAGTTCCGGGTAGATGACTGGCGTTTCCGGGATGTAGGCCACCAGCTTTTTAAATTCAGCTGGCTTCTCAGCCAGGTTGATCCCGTTTAAAGTAATTTTGCCGGCTTGCGGGCGCAAAAGGCCCAGCAGGTGCTTGATGGTGGTCGACTTGCCGGCCCCGTTCAAGCCAATCAAGCCGATCGCCTCACCGGAAGCGATGGTCAGATTGACGTCTTTGATTACCGGGATGCTGCTGTAGCCCCCGGTCAAATGCGATATTTCTAGAGTCATATTTTCCCTATCTTTCTTCATGTTTTTATCTGCCTCTTATGATAGCATGGAGACATAGAGAAACTGAAAAAATAACTCATTAAAATTGATCAGAGGTAACACAATGACTAAGGCTGAATTAATTGACGACTGTTTATTCTGTAAGATTATCCGCGGCGAAATTCCCAGCTACACCGTTTTTGAAAATGACGACGTGAAGGCCTTTTTGGACATTTCTCAGGTCAACGAAGGCCACGTATTGATGGTGCCAAAGAAGCACTTGACCAACTTCTTTGACTACAGCGCTGAAGATGCCAGCCGCTTTATGCAATGCGTGCCGGAAATCGCCAAGGCCATCAAGGCTTCTGACCCGCGGATCCAGGCGATGAACATCACCAGCAACAACGGTGAAATTGCCGGCCAGGTGGTCATGCACTCTCATATCCACTTTATCCCCCGCTGGGAAGGCGACGGCATCAAGTTCTTCACCAGAAACAATGCCGACCAGTACGACGAAAAGAAGTACCAGGAAGTCTGCGACCGGATCAAGGCCCAGTTTTAACTGAGGGGGAAGAAAAATGCGGAATTTCAAGCACTTTGGCCTGGGCTTTTTGCTCGGGGCAGCAGCAGGAGCGGTCTTTGCATTTTTGCCAAATGAAAACGGCAAGAGCACCAGGGAATATCTCAAAGAAGACGCGAAAGACTTCAAGGAAAGCCACAAGGAACTGCAAGACGGCCTCTCCCGGGCCCAGGAAGCCGGCAGCCGCTTAGCCAGTGAACTGCCAGCAGCTGAGCAGATGGTCAGCGACCTCAACACCGACGTTGAACGCTTCAAGCAGGAAGCCGACGAGGAAATCGCCCGCCTGCAGGCCAAGATTGACAGACTAAGCAGCGAGCTCAACCAGGACCTGAACGAGAGCGAAAATTAATCAGAACATAAAAAAGTGTTGAATGATTACTCTTACCATGAAGTAATTACTCAACACTTTTTTCTTGCTCTAAATTTTTCTATTGTTTATTTGACTGCCACTGGCCAACCAGGCTGGTAACGTCACTTGCGCCCATGCCAGCCAAAACTGCTGGCAGACCGTCAATCACGTGTTTGATGGCCAATTTGTCATAGAAGGACATGCTGCCGATCTGGACAGCGCTGGCCCCAGCCAAGATGAATTCAGCCGCGTCTTCCGGGCTGTTGATCCCGCCGACCCCGATGATCGGCAGACTAGTTGCCTGCTTGACCTGGGCCACCATGCGGACAGCCACTGGCTTAACTGCTTGACCGTACAAGCCGCCAAAGTCATTGCCTAAAACCGGCCGCCGGGTCTTTAAATCAAGGTGCAGAACCAGCAAGGTGTTAATCAAGGTCAAGCCATCAGCCCCGCCTCCTTCAGCGGCCTGGGCAATTTCCACGATGCTAGTAACGTTTGGCGTCAATTTCACGTATACCGGCAGGTCCACTTTTTCCTTAACCAGGCGGGTTATCTTTTCCAACATTTCCGGCACGATGCCAAAAGTCATCCCGCCTTCAGACACGTTCGGGCAGGACAAGTTAAGCTCTAAAGCGTCCGGCTTGGCCGCGGCCAGAATTTCCGCGACTTCCACGTAGTCTTCCACGCTTTCCCCGCCCACGCTGGCCAAGATCGGCAGGTCCGGGTGCTTTTCTCTTAAAGCCGGGATCTTCTCGCTAGCCACAACCTCAGCGCCTGGGTTGGTCAAGCCTACGGCGTTCATGACCCCGTCAGCGAGCAAGTCAATCTGCGGCTGAGGGTTGCCGGTCCGGGCATGCCGGGTGGCAGTCTTTAAAACGATCGCCCCCATCTCGTCCCAGTTGAAATTCTCTGGCAAGTCGCCAAAGGCAAAGGTCCCACTCGCCGGCATTACCGGATTCTTCAGCTTCAAGCCTGGCAGTTCAACAGCCAAATTAACTTCTGCTGTCATTTTTCCTCCCGTGTGACTTCATGTGACTTATTTAACTTTTCAATTCGCCAAAATTATCCTACAAAAAAATAAAAAAGGCAAGCTGGCCTGGCCCTTGATTTTTCAGAAAGTTCGTGATAGTCTTTTGTTAACTGAGCTTTAATTGGTACAGAGAGACCACAAGCAGCACAATCTTTTTGGTATGCACGCATTCTGCCCGCCTGGGGTCTCTGTAGACTCTGGCGGGCTTTTCTTATGCGGTCATACGCGCTTTGTAAATTTAAGGAGTCGCAATGAACAAACCGTTATTTATCGCTTTGGACTATGATGATCAAGAAAAAATGTGGCTGTTCCTCAACCAGCTGAAGGACAAGCAGGGCCTGCACGTCAAGCTGGGGATGGAAATGTTCTACCAGTACGGGCCGGAAATTGTCCGTGATCTGTCCGCCAAGGGCTACCAGATCTTCCTTGACCTCAAGCTGCACGACATTCCCAACACCGTCAAGCGGACTGCCCACCAGCTGGCTGCTTTGGGCGTTTACTGCACGACTGTCCACGCCCTGGGCGGCAAGCAGATGATCCAGGCCGCTAAAGAAGGCCTGATCGAAGGTACCCCGGCCGGCAAGCCGGTGCCAAAGCTTTTGGCCGTGACTGAACTGACTTCGATCTCTGAAGAAGTCTTGAAGAATGAACAGCACTGCTCACTCAACCTGGCTGACGAAGTAAAGAGCCTGGCCCACCAGGCCCAGGAAGCCGAGGCTGACGGGATCATCTGCTCACCTTTGGAAGTCAAGGCGATGAAGAGCGAATTCAGCGACGACTTCATGTTCGTCACTCCGGGCATCCGGCCAAAGAGCTACCAAAAAGACGACCAGGCCCGGGTGGCCACCCCAGGCCAGGCGCGGGAAAACGGGTCAACCGCTATTGTTGTCGGCCGGCCAATCACCCAGGCCGCTGACCCGCAAAAAGCATATGAAGAGATTTTGAAGGATTGGAGCAAGAACGATGCAAAATAACGAAATTATCCGCCAGCTGATCGACAAGAAGATTGTGACTATTTCCCCAGACAAGGACTTTGTCTACGCCAGCGGGATGCACTCCCCGATCTACACTGACCTGCGGCAAACCATTTCCTTCCCAAAACTGCGGCAGGCAATCGCTGAAAACCTGGCAGCCTTGATCAAGCAGGAATTCCCGGAAGTTACGGTGATCGGCGGTGTCGCTACGGCCGGCATCCCGCACGCTGCCTGGGTTGCCCAAGTCATGAACCTGCCAATGGTTTACGTCCGCTCCAAGCCAAAGGACCACGGCCAAGGCCGGCAAATCGAAGGCCGCCTGTCCATGGACGACCACATCGTTTTGATCGACGACCTCATTTCAACTGGCGGCAGCGTTTTGTCTGCCGTGCAAGCAGTCAAGGAAACAGGCGCCCACGTTGACGGGGTCAGCTCAATCTTTACCTACCTTTTGCCAGACGCTGACGAAAACTTCAAGAAGGCCGACACCAAGTTTGCCCCGCTCTTGAACTACCGGGAACTGATTGAACAGGAAATTGCTGAAACGGTCAGCGAAGAACAATATAAGGAATTGTTGGCTTGGCACCAGGATCCTTGGAACTGGAAGCGGTAAGAGCTAGTAAAGAAATTCCTAAGAAAGGCGATTTTTTTCATGAACTTTGCCTCCAGGAACTCTATAGCTGGAAAAATATGTTATATTAGTAACCAGTACGTATGAAGGATGTGGAGACTTAATTTTATGAAAAATCATTTGAAGAAAATTGCCGTTTTGGCAGGTGCCGCAGCTATCGGTCTGTCCACTGCCGCTTGCTCAAGCAGCTCAGCTACTGTAGTTAACTACAAGGGTGGCAAGATCACTCAGGACGAATACTACGAAGCTATGAAGGACACTTCAGCCGGCCAATCAACTTTGGTCAGCTTGATCATCTACCGCACGCTGAAGGCCCAATACGGTGACAAGGTATCTTCAAAGAAGATCAACGCCGAATACAACAAGTACAAGAAGCAATACGGCTCAAGCTTCAGCACTGTTTTGAGCTCCAGCGGCTTGACTACTAAGTCATTCAAGCAAAACCTGGCAACCAACCTGTACTTAGTTGCCGCTTTGAAGGACTTGGAGAAGCCAACCACCACGCAAGAAAAGAACTGGTGGAAGAGCTACCACACCAAGACAACTGTGCAACACATTGTAGTTGCCAAGAAGTCAACTGCTGAAACTGTCATCAAGAAGCTGAAGAGCGGCACTAGCTTTGCTACTCTGGCTAAGAAGTACTCAACTGAGACTGCTACCAAGAAGAAGGCCGGCAAGATGGCAGCCTTCGACTCAACTGACACCAGCTTGAGCAGCACTTTCAAGTCAGCTGTTTGGAAGCTTAAGGAAGGCGAATACACTACCACGCCAGTTAAGACTTTATCCGGCTACGAAGTCATCAAGGTTTTGAAGACTACTGAAAAGGGCTCATACACTAAGAACAAGAGCTTCATCGACAAGCAACTCTACGCTAAGTGGGCAGCTGACTCCAACACGATGACCAAGATCATCAGCAAGGTTCTGAAGAAGGCCAACGTCAACATCAAGGACAAGGACCTGAAGAGCAAGAACCTGCTGGCTAACTACCTTGGCACTTCATCATCATCAAGCTCAAACTAATGCGGGCTGACGATTAGACGATAAAAAGACGCGATTCACTGAATCGCGTCTTTTTTCTTTGTTTCTTTTGATACTACTTTTTCAGCTCATAAGCGGCCAGGATTTCCTTAGCCTGCCGGCGGTCAGCCAAAAGGCTGCTGAAGACATGTCGCCGGGTACTTCTACTTCCTGGCCCAGCAATTCTTGGCCCGGCTGGACATGGATGGTCAAATTGTCCGCCTCTGTTGTGATATCAGCGCCAAACTGCCGCAACATGATCTCAGTATGGTTTCTGGTCGGCAATTTTTCGATGATGGTTGACGGGCTTCCTGCTTCAAGGGCAGCAAAAATCGCCGCGCTTTTGACCTGGGCGCTGGCAACTTCCAGCTGGATTTCCGCCCCATGCAGCTTTTGCCCTATGACCGTGGCAGGCAGGGTTCCGGCCGGGCTCAAGGCAATCTCTGCCCCGAATTTAGCCAAGGGCTGGCTGACCCGCTTCATCGGCCGCTTGCTTAAAGAAGCATCCCCGATCAATTGACTGGCAAAGGAGCTGCCGGCCAAAATTCCCAGCAAAAGACGGTTCGTCGTGCCGGAATTGCCTATGGCATTAACCCCGACAGCGGCCGCGGCAAGCTTGGCGTCCAATTTCGTCTCCCATTTTGAAAAATCTTCTGCCGGATCTCACTGACGTCTAAGGGCTTTTCAGAATCAGCTTCTACTGCCCCGACTTGCGCCACATAAGCCACCAGGCCGATATCCAACTGCCGCAAAAACTGCTGAGCGATATTGCCCAAAGCCACCCACAGGGTAGTTTCCCGGGCTGAGGACCGTTCCAAGACATTGCGCAGATCCCGGTGCCGGTCGTGATCACCGCGTCTTTGCCAATATTGGCCAGCAGGGCCCGGTGCTCGCAAAGGCGGAAGTGGTCTTCGCCGAACTTGGCAAAAAATTCCGGGATGGTCAGCTTTTCTCTTTCCACAATAGCCTGGTCTAAGTCGATCTGCAGCTTGTTCAGCTTTTTCGCCAGCAAATCGCCAAACGTCGTTTTCCCGCATGACATGAAGCCAACTAATACAATTCTCATCTTGTCCACTCTTTCTAATCTAAAAATAAAAGCCACCTGTTTTGGAAGACGTCTCCAATCCAGATGGTTGCATATCTATAAAAGAGTGGGCCCTTGCACCCAGCCATGCTAGATTGAATGTGTATCTAGCAGGCTCAACAAACATTGGCTAGCTGAGATACGAACGTCTCGCGTCCGTATCCGCGGACGCTTTAGTCGAAATAAGCATAGCCATAAAAGAAACTAGTCATGTTTGTCTTGAGCAAGTTCATTGTTAGATCCTCTCTTTTCAAATGATTGTTTGATTGAAATAATTTAAAAATCTCTCATTGAATCTGCCAAGAGTTTAATCTAAAAAATAAAACAAGGAAAGAGAGAAATATAAAAGGAATAGAAAAAGAAGAATTTTTCCTATCTTTCCTGTCTTGGCCGGTAATAGCGGCGGCCGTCCTGGGACATCAGCGGCGGGGTGAATTCCCCCGGCTTGGTCGTGGACAATTCAGTCGTGATGGCGTTGACCGCCGCGTCCAGGTCATCGATCCGGTGTAAAAGCTCTGCTTAAAGCAGCGCCGGCAATTTCGGTGACCCGTACTCATAGCGGCCGTGGTGGGATAAGACCATGTGCCGCAGCAAAAGCAGGTCTTCACTGGCCAGGTCGATTTTCAGTTCCTGGGCAGCCAGCATCAGCTGCTCATCGATCAAAACCAGGTGGCCAACCAAGTTGCCTTCTGCCGTGTACTGGGTCGCTACCGGGCCGGACAATTCCAGCACCTTGCCCATGTCGTGCAAGATGCAGCCGGCATAAAGCAGAGACCGGTTGACGGCTGGGTAGTTGTCAGCTAAGCCTCTGGCGTCTTTCAGCATGGTCAAAGTGTGGAAGGCCAGACCACCTTTGTAGGCGTGGTGGTTGGACTTGCCAGCCGGGTAAGCGAAGAAGCGGCTGGACCACTTTTTCAAAAGGAAGTCCACCAGGTCATGCCAGTTCTTATTGTCGATCTGGGCCACAAAGTCCTTAATCTCCTTCTCCATTTCTGCTGGCTTTTCCGGAGCAGTGGCCACCAATTGACTCAAGTCCGCCTGGTCGTCCGGGCTGACCGGATGAATGCTGAACAGCTTGATCTGGTCATGGTTGTGGTAGTCCTCAATCATCCCTGAGGCCTCAACCACCGTGCCGGCGTTGAAGCGGCTGGCGTCCTCAGCCTTGGCCTGCCAGTAATTGGCCCGGATGCTGCCGGAAGAGTCAGCCAATTGCATGAGCAGATAGTGCTTGCCCCTCTTATCTTGGCGCAGCTCGGAATTCTTGACCATCAAGACCAGGTCAAATTCTTCCCCTTCATTGTAATCCAGCAAACGTTTAAGCATCCTGCTCCTTCTTTCTGTATCTGATTGGCGCGGCGCTGACGGCTTCAGCCAAGTCTTCTCTGGCCGTAAAGACCAGGATCTGCTTGTCTTCGCTCATCTTCTTGAGCATGTCTACAATGTAGCCGGTCCGCGGGCCGTCGAAGTTGACGAATGAATCATCGATCAAGACCGGCAGGTCGATCTTGTCCTTGATCTGCATGACAAAAGCCAGTTTCAAGGCAAAATAGAGCTGCTCCTGGGTTCCCCGGGACAGGTAGGCCAGGGGGATCTTCTTTTTGTCTTTTCTGACCACCTTGAGCGGGGTCTTCTTGGACAATTTGGCCGGCAAAAGGATTTCCCGGTAGCGGCCGCCGGTCAAAATTTCCAGGTAGTCCTGGGCTAATTTCAGCATCTTCGGGAAGCGGTCATTTGAGGCTAGATCCAGGGTCCGGCCAATGACTTCCCCGGCCAAAAGGCTGGCCAGGTAGTCCTGGCTGTCTCTTCTGAAGCTGTCGGCGATTTCAGCCAAGGTCTGCTTGTCTTCAGCCACCTGGCTGGAAGAAGCATAGCGCTTTTCTTCCGCCAAAAGGTTGGCCATTTCCTGCTGGAGGACTGAGACAGCTCTTTGCTTGTCAGCCAGCTCTTTTTCCAGCTCTTGCTTTTGCCCCAGCAATTTGCTTAAATCCAGGCCATTTTCTTCAAAAGCCGCTAACTGGTCACCCAAGTTGTTCTTCAAAGCAGTGATCTGGGCAGATAAAGCCTTTTGCTCTTGCAGCTTTTGCGCTAATGCCTGGTAGGCTGTCAGGTTTTCTACCCCGGCAGTCTGGTAGATGGCCAAAAGCTGTTCAGTTAAAGCGCTGATTTGTTTTTGGTAGTTCAAGTTGGCTGCCTTGACCTCCTGGCTGGCCCTAAGCGCCGCACTCTCAGCTTCCACCTGCGCTTCCAAGCGGCCCAATTGCTGGCTGACAGCTGTAAGGTCACTGCCATCCAGGCCCAATTGCCGAGCCAGGTCAGCGGCCTGTTTTTCTTTTTGAGCGAGTTCTGCCTGGCTATTTGCCAGGTCACGCCGGTTGATGGCCAGGTCCCGGTAAGGGGCAAGCAAGGAGTCTACCTTAACACTGGCATCGATACCGTACTTTTCCTTAAAGGCTCCCGCCTTGTCTGGTCCCTTGGCGGGCTTTTTGAAGTAGGCATAAGCTGCTAAAGCCGCGCCGGCAAGGATTAACAATATTGCCAAAATCCGGTTTTGCCCGATCAAAGCCAGGCCAATTACCGCTACGATCAAACCGACATATGGCGGCAAGGTCTTAGGCGCGGCTTCTGCCTTCTGGCTTTCTTCCCAGTCAGCCTGCATCTGCTGGAACTGGTCCATGGATAAATCTGCCACTTGCTCTAAATGCGGGGTCAATTCTAAGAGACTGGCCTGCTTTTCTTCCAGCTGCTTGACCTGCTGCTTGAGCATTTCCAGGCTCTGGCTGATTTGCCCCAGTTCCTGCCGCCAGGCCCGGACCTGGTCCTTTCTTTTGGCCAAAAGAGCCGGGTCAACCGCTGCTTTTTCTTCCTTGATGGCGGCCTTGAGGGCCTTGATCTGGGCATTAAGCTCCAGGGCCCTCTGGTAGAGCTCCTGGTCAAAAGCGACCGGGCTGACCTGCTTTTTTAGGTCCAGATAAGTCTGGTAGTTCTGCACCTGCTCCAGCTGCTTTTCCAGCTTGCTTAGCTGGCTGGAGATTTCCTGGACTTCTTTTTCCAGCTTTTTAGCTGCTTGCTCTTCAGCCAGCCTCTGGCCTTCCAGCTGCTGGTAGGCGTCGAATTCCTGGCCATCAGCGGCCACCTTGTCTCTTTGCTCAGCCAATTTGAGCAAGTCCTGGTTGACCGGGGCCTTCTTCCCGCTTGGCTTGAAGAGGTCCTTGGCTTCCTTGTCAAAGTCAGCCCGGATGGCTAAAAGCTGGCTGCTCTGGGCCGCCCCCAGATAGTAGATGTTCTCCAGGATCTCGCCTTCAGACAGGGAGCTGACCTGGCGGAGGAGGTCTTCATTAAAGATAAAGCTTTCAGCGTAAAAGCTCCCGTCGATATTTTGAATCTGGTCGTAAAAGAGACTGACCGGGACTTCCTGGCCGTTTAAGAGGACCTTGACTGCCCCGGTCTTGCTCTTGTCCCCCCTGCTCCAGGTCCGCTCTAAGACATATTCCCCTTCATCACTAGTAAAGACCAGCTGCCCGCCCATCGGGTAGCTCTTGGTCAAGGGCTCGTAGTCTTCAAAAAAGACTGAGCTGGTATTTTTCAAATTGAAGCCAAAAAGGATCTGCTTGATGAAGGCCACGGTCGTGCTCTTGCCAGCCTCATTGCCCCCGAAGAAGGCTGCTAAATTGCCGTCTGGCAGATCAAAAGTCTCCTGGCTGAACTGACCGAAATTGTAGATTTGAATCTGCTTGAGTCTCATTTTTCTCCCCCAGTCATTGCCTGCAGGCGGCTGGCCAGCTTGACAGCAACCAAGTCCCGGACCTGGTCGCGGAATTCCCCGTCCTCTAAAAGCCGGCGGGCATATGGGTCCTTCTTGGCCCAGGAAGCGGCCAGCTGCTGGATCTTCTCGTCAGTCAAAACTTCTGCTTCAGCAGCAGCCAGGGCTTCCCGGTCGCTGTTGTTGAGGCTGACCAGGCCCCGGACGGATAAGCGGACATCAACCAATTGTGATGGGGCTAAAGCCGCGGACAGACCGGCCCAAGCCTCCTGGTCCTGCCAAAGGTCTATTTCTTCGCTGGTCAAATATTCTGAGCCCGAAATCTTCAAACTGAAGTAGGTCTTGCCTTGGATATTTTCTTGCAAAAGTTCCAGGGCTTTGGCATGTAAGCTGCTCTTATCAATTGCCTGGTCCAGCTCTAAAGTCAGCTGCTTCCAGGTAATCGGCGCTGTTTGGACAAAAGTCAAGCTGGTCTGCCCGCTGGTTTCATCGACTTCAGCCAGGTAGCAGCCCTTCTCCCCCAGTTCGCCGACATCCCGGCCTTGGATGTTGCCGGGGTAAACAATTAGCGGCTTCTCGCTTAAAATTTGCCGGGCGTGGATGTGGCCCAGGGCAAAGTAGTCATAGTTCAGCTCCTTCATCTGGCTTAAGTCAAAGGGAGCGTAGACATTGCCGCTGGCCGCTCTTTGGGCCGCGTGCATCAGGCCGATGGTATAGCCCTCTTTTTCCGGGAACTGGTCCAGGAGGTCAGCTTCAATATGGTTCTGGCTATAGGAAAAGCCGGTCACATTGTAGGCAAAGCCGGTCTTAGTCTTAAAAAATTCCCGGGCAACTTTTTCCTGGTCGCCCAAGAGGCAGAAGTAAGGACTGTTTTCGACCAAGAGATCCTGCCGGGTCATGTAATCGTGGTTGCCGAAGATCATGACCACTTGGATCTGGGCGTCAGTCAGCCGCTTCACCTGCCGGGCTAAAAAAAGCTGGCTGGCCGGAGACGGCTTGTTTGAGTCAAAGGTGTCGCCGGCGATTAAAACCAGGTCGACCTGCTCTTTTAAGGCCAGGTCCACGATCCTAGTCAAAGACTGGGCAGCTGACTGGCGGATTTCATCATATTCCCTCTTTGGCAAAAAAGATAATCCACGAAAGGGGCTATCTAAGTGCGCGTCAGCTAAATGAATGAATTTCATGATTAGGCTTTTCTCAAATCCTCGTATGCTTCAGACAAAGGCTGGCCGATATTCTTTTGTACGTCGTTGAGCAGGGTGTAAACAGCTTGTTCTGCCAAAAGCATGCTTTGCAGGGTGGTGTTTTGGCTGACCCGTTCGTTCAAGCTCTTGAAGTGGTCTTGCTGCTCCTCAGTCAATTCCTTGCCGGTTTGCTGGGCTTCCATGATTTCCATTTGAGCCGCGTCCAGTTCCTTGAACAAGGCCAGGCTGCCCTCATCCGCCTTAACAGCGTCCATGGCTTCCTTCAAAGCCAAAAATTGCTGGGTTTCCCGCAAGTCGTTAGCTAATTGGTTGGCAGTATCGTAAATGTTGACCATTTTCTTTTATCCTTTTTTATTCCATAAAAAATTCTGTTTGCTTATTTTCCAGTAATCTTATTGTACCATGACTGAATCGTTGATTCGGCATTCTTTACCCCATTGCTGATCGATTCTTTCAGCTTCTTGCTCCAGTCCGAAGAACTTGAAGAAGAGCTGCTTGTCCCATTGCTTTGGGCCATGGAGTCAGCTGACTGAACGGTAAAGCTGGTCTGCTTGCTGTAAGGAAGGATCCGGGTCATTTCGTCTTTATAAAGGGTGGTAATCCCGGTTTCCGAAATCCCCTGCATGTAGTGGTTCTTGTCGGTCTTGTCAAAGCCGACCCAGGTAGCCACGACCACGTCCGGGGTATAGCCGACGATCCACTGGTCCTTGGTCCCGTAAGCAAAAGATACTTCAGTTGACCCGGTCTTGCCAGCTACTGAATAGCCGGCTGGCTTGGCGTTAACGGCCGTCCCGGAAGTGAAGACGCTGAGCAGCATCTGGGTCATTTCCTTGGCCGTGTCAGCAAAAATAATCTGGCTGGTCCCGGTATTGTTGTTTTCCGCGATCACGTTGCCGCTGGCGTCGGTGATCTTGGTGATCATGTATGAGCTGTCCGGCAGCTTCCCGCTGTTGGCAAAAGCTGAGTAGGCCCGGGCCATCTGCAAAGGACTGACCCCGGTGGACACCCCGCCCAGGGCCAGGGCCAGGTTCTGGTCACTCTTTGAGACGGTAATGCCGAACTTCTTCAAGTAGCTGACCCCGGTGGACACCCCGATCGTGTTTAAAAGCCAGACAGCCGGGACGTTCTTGGACTGGGCCAGGGCCTGGTACATCGGGATCGTGGTCGAGTACTGGTTGTCGACGTTGACCGGCTCATAGCCGTTATTGCCGAACTTCTGCCGCTTGTTGGAGAGGTCAGAGTCATAGTGGTAGCCGTTCTCCAGAGCCGGCGCGTAGACAGCCAGGGGCTTGATGGCACTGCCGGGCTGGCGCTGCATTTGCGTGGCCCGGTTGTAGCCTCTGAAGACGTGCTTGCCGCGTCCTCCGACCAGGGCCTTGACTGCCCCAGTCTTGGGATCCATGGCCACGCTGGCCCCTTGGGCCCGGGCCGTGCCGGCCGGGTTGACCGGGAAGTTGTACTTGTTCTTGAAGCTGGCCTGCATGGACTTCTGGTAGTTCTGGTCCAGGGTCGTGTAGATCTTCAGCCCCTTGCTCATGATCTCGTTTTCGCTTAAACCGTACTTGCTGATGGCTTCAGAGATGACGGCGTCAAAGTAGTAAGGATACTTGTAGCCTCTGGTCGCCTTGTAGGTATCAACCAGGTTCATCCCCTCTTTTTTAGCTTTGTTGGCGGTCGTCTGGCTGATAGACTTGTTGTCAACCATCCGCTGCAGGATCAGGTTTCTTCTGGAAACCGAGTGCGAGAGGGAATCGATCGGGTTGTAGTAGGAAGGGTTCCGCAAGATGCCGGCCAAGGTTGCCCCTTCAGCCACCGTCAATTGGCTGGCGTTCTTGCCGAAGTACTTGCGGCTGGCATCCTGGACCCCGTAGACCCCGTTGCCGAAGTAGGCATTATTGAGGTACATGGCCATGATCTGCTTTTTAGAATAGACCTTGGTCACCTGGATGGCATAGAATATTTCCTCCACCTTCCGGGACAGAGTCTGCTGCTGGGTCAAAATGGAGTTCTTGACCAGCTGCTGGGTGATGGTCGACCCGCCCCCGGCGATATTGCCCCCGTGGATGACATAGCTGACCGCCGCCCGGAGGATGCCCTTGGGGCTGATCCCGATATTGGTCCAGAAGGTCCGGTCTTCGGTGGCGACTACGGCCTTTTGGACATTGGGGGAAATCTTGCTCAAGCTGACATAGGTCCCCTTGCCGGAAGACACGGACCCGGCCTTTTTGCCATTCTGGTCATAGATAACCGTGGTCTTGGCCAGGGAAGCCTGGAGGTTGGACAGGTTGGCTATTTTGACTTTAAAGGTATAATAAGAAGATACAGCTAAAAAAAGGCTCAAAACGATCAAAATCAACCATCTTAGCAGTTGGAAGCGGTAGTTGATCCTTTTCAGCCATCCCCACAAGCCCTTTTGGGGCTGGGAGTCGTTCATTTGTTTATGCGCTTTGCGCCTGTTTTCCATTAATATATGCTCCTTCGTTAGAACGTGGTCTAAACAGTTTGATTTTATCATAAAAGCTGGCCGCGGCTATCCTGCAAGGAGCAAGTTATCCATTTCTTAATTGCGCTAACAAGGTTTTTAGAAAGAAAATAAATCCCGTCATGATCTATCATTTCAGCTTAATCTATCCCGCAGACCGTCCCCCAGTTTCCGTCAGTGACCTGCTTAGGCAGCTCTTAATTCCCCGCAAATGGCGGCACTATCTTCGTACTGAGCGGCAGGTTTTAGTCAACGGCCAATACCGCAGCTTCAACCAACTGATCAAGGGCAATGAAAAAGTCGACCTCTACTTAGACCAGGTGGAATCCCTGCAAGGAGACTACCCAGCCAGCGGCAAAATGCCAAAAGTCGTCTATGAAGACGAAAATGTTTTAGTCATTGACAAGCCCAAGGGGCAAAAGACCCACCCCAACCAGGGGGAAAACGGAACCGCCTTGAACGACTGCGCCAGCTACTTAGGCTACAGCCCCTACATCGTCCACCGCCTGGACATGCTGACGGGCGGGCTCTTGCTGGTCGCTAAAAATCCCGCGGTCGTGCCGATCTTGAACCAGCAGCTGACCAGCAAGACCTTAAGACGAGACTACCTGGCTACGGTTAACTTAAACAAAGAAATACCCGATCAAGGCACAATTGACCTGCCGATCGGGCAAGACCCGGCAGACCAAAGAAAAAGGCAGGTTAGAGCTGACGGCTTAAGAGCAGTCAGCCACTTCCAGGTCTTAGAAAAAGACGAGGTGAAAAAGAAGGCTAAACTGCTGGTAACTTTGGAAACCGGCCGGACCCACCAGATCCGGGTCCACTTGTCGGCCTCAGGCTGGCCGATCGTGGGCGATCCCCTCTACAACCCAAATTTTGCCGGCGAAGACTTGGCTTTAACCGGCTGGCAGCTGACCTTCGTCAAACCCTACAGCTTTAACCAAGTCGCAGTCAGATTAGACAAAAAATAAGCACAAAATTGAATAAGAGAAAAAGAAAAAGGCTCTATAGCAGCAAATGCTGTTGTAGAGCCTTTTCTCATGAAAAATATTCTGAAGCTTCAGATTATTCTTCGTTAAGTGAGCTTCTGTCGAATGAAGCGTCAGCTTCCTTGTCGTCGATTGATGGAGTACCCATCCAGCTGATCATTTCCTTCATTGAGTCAGTGATAGCTTCAGTACCTGGCAAGAGCAGCTTACGTGGGTCGTAACCCTTCTTGCTCTTGTCTTGGTCCTTGCCTTCTTCGATGTACTTGCGAGTAGCTTCTTGGAATGCAAGTTGGAATTCAGTGTTGATGTTGATCTTTGAGATACCCAAAGAAATTGCCTTTTCGATTTGGTCTTGAGGAATACCTGAACCACCGTGCAAAACAAGTGGAGTTTCAGGAACAGCTTCAGCGATTTCCTTAAGACGGTCGAAGTTCAAGCCGCTCCAGCCTTCTGGGTAAACACCGTGGATGTTACCGATACCGCAGGCAAGCTTGTCAACGCCAGCAGCTACGAAGGCCTTAGCGTCTTCTACTGAAGCAAGTTCGCCGGCACCTTGGTTTTCACCGATCTTGCCGATTTCAGCTTCAACAGAAATGCCGCGTTCGTGAGCCAGCTTGATGATTTCCTTGGTCTTGGCCAAGTTCTCTTCAGTTGGCAATGCGTGGCCGTCGAACATAACGCTTGAGTAGCCAAGCTTGATACATTCAATAGCTGAGTCGTAGTCGCCGTGGTCCAAGTTCAAGATAACTGGAACTGAGATGTTCATAGCGTCCATTGAGTCTTCTACCAAGTCCTTAACGAGCTTGTAGCCACCCATGTACTTAGCAGCACCAGTTGAAACTTGAATCAACAATGGAGTTCTGGTTTCTTCAGCACCACGAAGAAGAGCGCGGGTCCATTCCAAGTTGTTAGTGTTGTAGGCACCAACAGCGTAGTGTTCCTTACGAGCCTTCTTAAAAATGTCATTACCGTTAACGAAATAAGCCATAAAAATACCTCCTGAGCTTCTTACGACTCTATTGTACCCAATAATGAATATTTGAGCAAATAAATTCTTTCTTGTAAGCGCTTTATGCCAAAAATATTTGTGTTCGCTTTCTCTATGCAGATTTCCTAATGCATTTTGAGGACAACCTTGCTGCCAACTGGCAGGCCCCCGTTCAATCTTTGCTCATAGATCCACTTGGCATCGTTGACTGACAGACGAACGCAGCCATGGCTGTCCGGCTTCTTGCCCAGGGTGGTCAGGTGGGCTCCGCCCTTGTAGCCATAGTGGTATTTGCCGGCCTTAACCCCGGAATTGAAGTTGTTGATCGGGACTGAGTGGAAGAGGTAGACCCCGTGCTGGTCGTAGGAGACGCAATAGCGGGCCCCTACCCCGTCATTATTGTAGAAGACCTCGCCGGCTTCTTCCTGGATCCGGTAGTTGCCGACTGGGGTCCGGCTTTCACCGTTCTTCTTGATCGCGCCCGGGGAAGCGTACATGGTGTAGATGACTTTCTTGCCAGACATGACATAGACCCGAGCTCCCAAAATGGAGACGCGGATCCAGACATCCTTGTACTTACGCAGGTCAGGGTACTTGCGCTTGGTTTCGCTGGAGTACAGGTAATAGTGGCCGGTCATGGGACGCATGTCACTCGGATCAGGGTAAGGGCGGTCATTTTCTTTCTTGGCAACCTGCTCCTTCTTCGGGGGATGCTCCTGAACCTTGCTCTTTCCGCCGACCTCCGGCAGGGGCTCAAAGACTGGAATAGCACGCGATTATGGCAATCAGCAACATTCCTATTCGTTTATGGGCCTTGTTCATCAGTTACACTCTTTTCCTAATTTCTTTTCAAAAGCTTGCAATCGCCAATATAGCGATTTCACACAGGATTAAGCTTATTATCTTACAAATCAGCATAAAAACATAGTCAAACCACTTCAGTTTGCCCGAATTTTAAAGAAAAAGCAATCCAAAATGGATTGCTCTAAAAAACTTATTTGATTTGTAATAAGCGACATCTAACTGTAAAACGAGTCGTGCCGTCATAAGTACAAGTGAACAGGCTCAAATCGTACTTACTTTGAACCATCTTGCTGATGGCGGTCGGCTGCAGGACTTCCATTTTCTGGACCTGGTAGACATAGCGCTGGCCGGCCGCGGCTTCAAAATAGACCTTGTCGCCGACTTCCAGCTAGTTCAAGCGGCCAAAATGGTTCACGAAATTGTGCCCGGCCACGATCCAGTCCCGGTCCTTTGCCGTCCCCGTATAAGTTGCCGGGGACACTTCCAGCTGGCTGAAGCGCCACTTGCTGGCTACCGGCAAAGTCAGATTTAAAGTCGGGAAATTGAGATAACCGCTGCAGGCTGTTCCGTTGACTTTAATCGCGTCCTTGCCAGATTTCTTTGCTTTCGCAGTTTTTGGCGCCTGCTCGATCGTCCGTACGATTGCCTTGGCAGAACTGCCGGCGCGGTAGTCTTCAATTAAGTTGTGGGCCAGCAGTAAACCGGCCAGCAAGATAAAGATGGCTCCTAGCGCCATTTTGATTCTGCCCTTTTTTCTCATCGTTCACCTTTCTTCTGCTCAGCCCAGCCCCAGATAAACAGGGTCAAACCTGCCAAAGCCAAAAGCGGGATCGGCCAGTTTAACTGCCCCGTCTGCGGCAAGCGCGGAGTTTGCGGCAAAGTCGGAACCGTGCTGCCAGTTGGCGTCTTGCTGGTCTTCTTGGCCGTAATCGTTGGGGTGCCAGGATATTGCGGCTTGCTAGAGAGCTTTCTGTTACTTGAGCTTGAAGACGACGGCGTGCTTGGCGTATTAGGCGTAGCCGGCTTAGACGGCGTCTTCTGGCTGGGCTACGCTTTTATTGACCGTCTGCCCATCAATCTTATATGGCAAGACCAGGCAGAAGGGATTGATCTTCTCATATCCCGCAGCGCTGGTCGTTTTCACTACCAGCTAAACCGCGTTTGACTCCAGGCTGATTGAAGCATCCCCGCTGGAGGAAATTTCCGCCATTTGCGCGCTAAGCGACTTGCTGCTGACATAATTAGCCAAGCTGCGGGCAAAATCCACCGTCATTATCTCATTTTGCGACATGCCAGCAATATCTTGACTCATTTTAGAAAAATCACTGGTATATTGGAACTTTTTCGCTGAATCAAGCTTGGCTACTTGATAAACGACCAAATTCCCGCCGGAAATCGCCTTGCCTGTTTCCTGGTCCCGCATCTGCACCGTCAAAGAGCCGGTATCAGCTGCCTGGACAGGATTGACCGCGGTAATAGCTAAAAACAAACTGAACAAGACTGCCAGTTGACCCAAAAGTTTTCGCTTTAGAAAACAAGCCATCCACCCTCTATCTATTTAAGTGCTATGAGAAATGTGGAAGAATGTGCGCTTGATACCGGCTGGTTCACATTATGGTCAAGATATTCAACTTTGCGACTATCGCATCATCGATATCTTTACTTCCAGCACCGACATGCCTGGCTGGAACATACCTAGCGCATAACATAGGACTCTGCCGACTTCCATTTCTCCCACGAGCGTTCACTGCCAAGCTTTCGCATTGACAGCGTGGGCGATCTCTGCACTCGATATGCTCACATCACCTGTACGGCCGAAGCCGCAGACAATGCCTTTATCCGAAGATGAGCAACCGAACTGTCTCACGAGTTCTGAACTCGCTTCTCGCATGTTCTTCCATTTGACGAATTGCATGCGCGGTCGTAGAAACCGATTCGCTGCCAAAACAACTTATCGGCTTCCCGTCCGGTGAGCCATCTGCACCGAAACAGCCACTTACGCAACTGCTCAAGTAACAGATGGCATTCCGGCCATTAGCCTGCCCGCATGGATCCTTGCGGATCCCTTATTTTTTTTACAGTGCTTTATTGTATCTTGGATGATCAATCAAAAAAGTAAGATTCATCATCGCGTTCATGTCCCGAACTACAACCTTGCCATAGTTCGGGCATTTTTTGTTGTAGCACACATATTCATTGTGCTTGGTGCCATGCTTTTTATTGCAAGAAAGGGTGATCTTTTCATCGTCCTTCTTGATGTTGCCACAGGCTGCACAGCGCTGGGTGCTTGGATAAAAGCGATTGGCAATCACCAGCTTAACCCCGGCAGACTTGCACTTGTATTCAAGATAGCTGCGAAAGCGTCCAAACAGTGCACGGTGTACGCCTTTTGAAGCGACATGGCTCATAAGCATGCCCTTAACGTCCAGATCCTCAATGCAGATTGCATCATATTCTTTGACAAGGTGAGTCGTGTACTTGTGCATTGCATCATCCTGCATGCGGTGAGCACGCTCGTAAAGCTTCTGAAGCTTGATTCTCGCTTTTTGATAGCTTTTTGAGCGCTTTTTGAGCGCTTCCCGGCAATCTAATCTGACCATTTTCTTTCAACTTTCTTGCCATAATCCGCTGCTGGTGCTTGATGTTCTCATAGACTCTTGCCAGCTTGACGGCGCCATTGTTTCCCTTGTGCAGAAAATAGTGTTCCCCCTCTGCATCATTGAAATGGCTGACATTGACATCGATCCCTGTTTTCTTACCCGTATGCTTGTGAATGTATGGTGGCGTCTCATACTTGTAAGGAACCGCCATGTAGTAATGGCCGTGTTCACGGTAAAAGCTTATCGTCCCAAATTCGGCATTTTTGGGGATTTCAGAAAATCTTATGCTATGCCACTCACCCTTATAAGGTGCTGGGACAGGCAAGGTCAGCTTCCCGTGATTGCCTTCCTTTGCGAGCACCACACCTTGATTCAACTTAATGCCTTGGCTCTTGGCTTTCTTGGATTGAAAAACGGGGTGTCCGGCACCTCTTTTAACTTTGAGTGCCTTATCTTTGGCAAACTTCTTGAACGATTTGCCCAAATCAGCACATGCTTGCTGCAGGATACGAGAAGAAATCTGCTTTTCCCATGACTGTTTGCTTGCCGTAAGCTTTTTCTAAATCAGTGCTGCGGTTGGGTAGTATCTAGATATAAATAAATTCTGCTCTTCAGTAAATTGCCGTTCTTCTTTTGGCTTCTTGAATTCCGCCAGAATTTCTGGACTAACTAGCATACGATATTCCGAATAGGTAGCATTCCAAAGTTCTAGGGCCTTATTGTAGCAATAACGGCGATAGTCACACCACTGGTCCAAAACGTGAGCCATAGTAGCATCTGGATATAAACGATATACGTGAGTCCTTTTGGTTGCCATTTGTCTTCACCTCTCTTCGACAAGCATATTTTAGCACGTATCCCAGCTCTCTTCCAAACATACGTTTGAAGAAGGGCCAAAAAATGCGCTGCATCTTTTGATTAAAATCATAGGTGCAACACACTTAAATTCTATTGAAATAGATTCGTTTTCTTTCACAAGAACATTCTGCTATATTTTTCTATATAGTTCTATATTACTTGTTACTAATTAGTAGCTCTTGATCAAGGACATAAGTCTTGTCACCGTCAGTCAAGCTCTGCTGGCTCTTGTCGGTTAATTCCCGGTAAAGCTCACTGGCTAAAGCGTAGTGAGTGCCGGTCCCCCGGTCAGTTACGGCTTCATCATGGCTGGTATATCTGGTCGCGTTATAGATGTCGTCCTGCAAAACCGCAACAATCAGCAATTCAATTCTATACAAGACAAAAAACAGGGCTCTTCCACATTGTGTGAAAAAGTCCTGTTTACTTTTACATTAACAAGTAATATTAATTTTTTGACTAGAAATTCTACTTAAAGGCCTACTTGTACTTGATAACGACCTTGGTACCCACCTTCAGCTTGCCTGAAGTCCGTTGACCGTACAGCCAGCGGGCGTCACTCAGCGTCAGCCGGATGCAGCCGAGAGAATCTGGCTTGGTCCCTTGCACAGTCAAGTGGGCCGTGCTGCCGACGCCGCCGTAGCCATAGTGGTAGCCCTTGTAGTAGACGCCAGAGCCATAGTTGTTGATTGGCACGCTGTGGAACAAGTAGTCACTGCCGTAGTAAGCCATGTAGTAACGGGCCCCTACGCCGTCTGAAGACATGAAGGACGGGCCATAAGCTGCCTTCAAGTAGAAGGTGCCACGCGGCGTGTCGCTTTGGTACTTGCCGTTAGTCATTTCAAAACGGCCGGCTGAAGAGTACATAGTGTAGATGACCTTCTTGCCGCTCATGACGTAAACCCGGTTGCCCAGGATGGAAACCCGGATCCAGACATTCTTGTACTTGGCCAGGTTCGGGTAAGCCCGCTTCTCACTTGACTGGAAGTAGTAAGCTCCAGTCTTGGCCCGCATGTCGGCAGGGTCATAGTAAGGAGCGTTGGCTGGCTTATGCAGAACCCGCTTGTAACTGACCTTGACGGTAATATTCTTGGTCTTGCTGGTCACCGTCTTGGCCTTAACCTTAGTCGTGCTGCGCTTGTAGCCGCTTATTGCAGGAACCTTATAACTCTTCCAAGTCCCTTTTGACCACTTGCCATAGCTCTTCTTCGCCTTCTTGGAAGTCTTGGTTAACTTGCCATCAGTATAGGTTTTAGTCGTCGTGGTGGTGGTCGTTACCGTTCTGGACAGCTTAACCTTTTGGGTGATGGTCTTGTTCTTGCCCGGCCGGTCCAGGATGATCTTCCGGGTCTTGGTTACGTATTGCTTCTTCTTGCTCTTCTTGACCGACTTCTTGGTCGTCACGACTGAAGACACTTTAACCGTGACATCTACCGTGTCAGTCGACTTGTCAGTGTAGGTTACTAAAACAGTCCCCTTGACCGTGCCGGCCTTGGCCGTGCTTGGTGCCTGCTTCCAGGTCACGCTGGCCACGTTCCTAAGGCTGGAAAGGTTGCTGATGGCTGAGCGGGCCGTCAGGCTCTTGCCCACCTTGACCGTCAAGCCGGTCTTGGCTACAGGGCTATTCTGGCTGGCACAACCGGTTCCGGTTACTTCCAGGTCGACTTCAACTTCGCTGGTCGTCCCGTCAGTATAAGTGATGACTACCGTGGCCTTCTGGCTGCCGGCAGCTGACACGTCTGGCGTGGTCTTCCAGCTGTAACCATGGACTCTCTTTAAAACAGCCTTGTTGCTGATGGCGTCTTGAGCATTCGGCAGAGTGCCCACAGGCGTGGTCAGCTTCTGTCCTTTGGCTTCTTGATGGTTTAAGGCAGTTGACGTTTTTGACGTATCCGTTGTCGTGTTGGTTGACGTATTGGTCGTCTGCGCCGTGTCCGTGTCAGCCAAGACTGCTTGGCTGCCCAGGCCACTGGTCAGCAGGGTCAAAGCTGCCACAGAAAGCAGGGTAAGATACTTTGACTTTTTCATAATTCCCTCCGATATCTAACAGGTGCTCAGGCGCTTCATCAAGCGCGGCATATAAGCAGAAATTTGCGTTGGCCGCACCAGGTAGGAAGACTGGTAAAGGTCGTCCCCTGCCCTTGAGTGGCAGTAAACTGCTGCTAAAACGCTGGTCAGCTTGGGGCCAAACTGGCCAAGAAAAGCGGCAATAATTCCAGCTAAAGTATCGCCCATTCCGCCCGTAGCCATTCCAGGGTTGCCGGCTGAATTGCGGTAGATTTCACCTGTAAAAGCATATACTCGCGTTCGATGTGCCTTCAAGACTAGTATAACACTTTTCATTTTGCCAGAGAACAAACGCGAAAGAGCCGCTTGGTTGGCCTGGTCTTCCTGGTCAGCAATCTTGATCCCGCTCAGCCTCTGCCACTCCATCTGGTGGGGAGTCAGAATGACCAGGCCGGCCTGGAGATTTCTCAGCAGGTCAGGCTTTTGGCTGAGCAAGTCTAAAGCGCTGGCGTCAAAAACAATAGTCTGGTCAGAACCTGCATGCTGGCAGACTGCTTCTAAAATTTCCCAGGCTTTTTCCTCCAGGCCCAGACCAGGCCCGCACAAAATTACATTAGACCGGGAAATCTGCTCAGCCAGATCTAAATTGTAGTCAAGCACGGCTGCTTCTGGCAGGCGGGCGTGGAGGGCGGCAAAATTGACCGGGTCGGTCGCTACCGTCGTCAGACCCGCCCCGGAGTAAACCGCGGCTTCGGCGGCCATGCTGATGGCTCCGCCATACTGGTGATTTCCGCCAATTAGCAGGACCCGGCCGTAATTGCCCTTGTGGCTTTCAGCCGGCCGGGGGCGGACCACCTGCCGGGCTAAATCTTCATCAATGCTTTTCATCTTACTTGCTGCCAAAGATGCTCCGCCACAAACGGACGAAGAAGTTGGCCTCCTGGTTGTCCTGAGTTGCCACAGCTGGGGCAGTCACCGTCTTGCCGCTAAGAGATGGCAATTTACCGCTAGTGGCTGAGAACTTGTAGCTGGCCACCTTGCTCCCCTTCTTTACAGGGGCAGAAACAGCAGTCTTGGATAAAGAAGTCTGCAGCTTGCTGCCCTGCTTGGCCCAGATAGTCACCGTCTTGCCCAAAACAACCTTGCTGCTGGTTTCCTTGCCTTCTGGCACCTTGACCGTGTTGGCCCCGCTGATGCTGGACCCCTTCTTCAAGGTTATGGCCGTGTAGTTTTGGTAGACATAGTGCATCAATTTGGCCGTCTGCACGAAACGGGACGGGTCCTGGCTGTTTGCGTGCTTGGCGCCCAAAACCACAGTGATGATCCGGTGGCCGTTTTTCTTCACAGTCCCGGCAAAGCAGGCACCGGCCTTGTCAGTCGTCCCGGTCTTCAAACCGTCAACTGGCAGGTCAGAGTAGTAGCTGCTCAGCCCTTTCAGCATCCAGTTCCAGTTGGTCATCTGGCTTTGCGTTGAACCGGATGAGAAGGTAGCGCTGGTGATTGAAGTCGTCTGCAAGACTTCCGGGAAGTCCTTTAAGAGCTTCTGGCAGACGATGGCCATGTCAGTGGCTGACATCTCGTTTTCAACGTCCTTGCCCACGCCCGGGTAAGCAGCTGAGCCAAGGCTGCCATTAGCCAAGCCGCAGGCGTTGTAAATCTTGGCGTCCTTAATCCCCCAGCTGGTCAAAAGCTTCCGCATCTTTTTAATAAAAGTTACCTGGTCGCCGCTGACAGCCTGGGCCAGGGTCAAGGCTGCCCCGTTAGCGGATTCGATCAAAGTGGCCCGGTAAAGCTCCTTGATCGTGTAAGCATGGCCGCTAGTTAATGGCACATTGGAATACTCAGTGTTCTGGCTGATCTTGGCAATCGCGGCCGTCGGTTTAGCCGTGCTGGTCCAGGACAGCTTGCCCTGCTTGATGGCCTGCAGGGTCAGGTAAACTGTCACTAGCTTGGTCATGGAAGCAATCTGCCGCGGGGTCGTGGCATTCTTGGCATAAAGTATCTGCCCGCTGTCGGCATCAACGGCAATCGCGGCCTTGACGTCCAGGTTCAAGTCCTGCTGCTGATAGTTGGCGGTTGCCGCCGCAACCGGCGCGGCCTGCCAAGTACTTATTCCGGTCAGTAATAATCCACTGGCTGCCAGACTCAGCAGTGCCTTTTTGATCTTTTTTAACAAAGTCGCTCCTCTTTTCAAAAAAATTACGAAAATTTTGGATTAGCACTTCCATTTTACCAAATTTTTGCTATTATTAAATATGTGCTGAGGCACGAGATGCCCACTTGGCGGAATTGGCAGACGCGCAGCGTTCAGGTCGCTGTTCTGGCAACAGAGTGAAGGTTCGACTCCTTTAGTGGGCATGAATGAATAGCTGGGACATCCAGCATGGGAGTTTTAAGAGCTGACCTAAGGGTCGGCTCTTTTTTTTGCTTCCCCTGCCTTTTCAGCCTAGCAAAGTAATGGAAAACTGCTCCTAAGAAAAAGTAAATTTTTTCTAAAAAGGCAAAAAGAAGATCTCCCTCAAAAAAGGAGATCTTCTTTTGATGTTACTAGTTATGCTGGCTCTTAGTGAGAAGCACCTGAACTAGTGTCTGGTGCAGTTTCTGGAGATGATGCACTAGTAGTTGACTGAACTTGCAAAGCGTCAGCCTTGTCTTCTGAGCGACCAGATGCACCTGAAGCCGCGTCAATTTCCAAACCAAACTTTTCAGCAAAGTATGAGAATGGGTGCAGGGCTTCTGCGTGGTAGTACTTCACGAATTCTGGGTCATCCAGAGTGTTAAGTTCAGTTGAGTAAGCCATGTGCTTAGTGTACTTAACGTCGATGAAGGCCGGGCCGTCCATCTTCTTCCATTCTTCTACAGCGGCTTGGAATTCAGCCTTGTCGTGAACAGTGAAGGCCTTCATGTTCATACCTTCAGCAACCTTTGCCCAGTCGTTGTCTGGAATGATAACACCTGACAGAGGTTGGTTGGATTCGTCACGTTGTTCTGCTTCGATGTAACCCAAAGTTTCGTTAGTGAAGACAACAGTCAATACGTGCATGTTGTAGCGAGCCAAAGTAAGCAGTTCTTCGCTCATCATCGCGAAGCCACCGTCTCCGGTCAAGTGCTATACTCCACGGTCTGGCATAGCAGTTGCGGCTGCAATAGCAGCTGGTGAGCCGTAACCCATGCTTGCGTACAAGCCTGAAGTAGTCCAGCGTTGCTTGTCGTTCATGTTCAACAGACGTACGTGGTCCATGTTGACGTTACCAACGTCAATAGCGAAGACAGCGTTGTCTGCGGCTTCCTTGTTGATGACATCCCAGATTGGTTCTTGGCGTACGCGGCCTTCGTCCTTCAAGTGGTCGTCAGCAAGCCTTAGCACCGATACGGCCGATAGTCCCCAAGTATGGCTTGAAGCTGTCTTCAACGATACCCTTGCCCAGGTATGAAGACATCATTGGCATCTTGAACTTGTCAGCAAATTCCTTCAATTCGTCAGCAGCTGCTGAAGCACCCAAACCGAAGTAAACAACTGGGTTCTTAGCTTCCTTGATCAACTTAGTTGCGGCTTCAATTGATTCAGCAGTTGGAGCAGCGTAGTTGTCAGCAACGTGGTTGCTTGCGGAAACACGGTAGTTGTCTTCGATTTCTTGCCAACCGAAGTCCTTAGGAATTACCAAAACAGCTGGACCCTTCTTTGCGTAAGCTTGACGGATAGCAGTGTCCATCAAAACTGGCAAAGCTTCCTTGGTCTTGGCTTGGTGGACCCAAACGGCAACGTCACGGAACCATGGCATTTCGTCAAAGGCTTGGAAGAAGTTGATGTCTTGACGAGGAGTTGGAACATTGGCTACCAGGGCAACCATTGGGGTCTTGTCGTACTTAGCATCGTACAAGCCGTTCATCAAGTGGATGGCACCAGGGCCAGCTGAACCCATGCAGACACCAAGCTTGCCAGTAAGCTTGTATTCTGCTGAGGCAGCCAAGGATGCGGCTTCTTCATGACGAACTTCAATGAACTTAATCTTGTCTTGCATTTCATAGATCGCGTTCATGGTTGAGTCTAATGACCCGCCAGGGAAGCCGTAGAGGTGGTCAATGCCCCACTTGTACATAACATCTAAAACTGCGTTTGCACCCTTAATTTTTGCCATAAGTGAATCTCCTTACAATTAATTCCTTTAAAAGTTATTTACAGTAATAATTATAGGCTTCCTGTAAGCGTTACCAACATTGTGAAAGGATTAATTTTATCCAGCCTGGATATTGCCAGGACAATCTTCTGCTTTTTGCAAGCAAAAAACACTTCAAAATACTTCTATGAATATTAGGCAAAGTTTTATTAATGAAAGCATGCAAAAAGCGGATCGTCAGATCCGCCTTTTTTAAGCTTCTTCAAATTCGATGATGCTCTTGGTTGAGATGTAGGCTGGTGAAAATTCACCCCGGTTGTACTTCTCGACCTTCATGAAGCCGTCCTTGGATGAAAAGACGTATTCAGCCAGTTCTTCCAGGCTGGCAAACTGGTCAGTGTAGAAAGTCCCCTTTTCCGTAACCAGCTTCATCTTGCCGGCAAAAAGTTCCCGCCGCTTAGAGTAATTGTTGGTCCGGTTCTGGTTTTGGTAGCCGTTTCTCTGGTTGTTTCTGCGCTTGCCGTAATTGCCCCGGCCCCGCTTGTCGTCGTTAGTGCGCTTTCTAACAACAAATTGCTGGTCATTGGCCGGCTCATGGCTCTTTTCGGCCTTTTCCGCCGGCTTTGCTTCTTCCTTGACTTCTGTGTCAGCCTCCTCAGCCTTGTTTTCGGCTTCCTCGCTGTCATCAAAGGCAAAAGGCAATTCAACTTGCGGGTGTTCAGCCAACTTTTCCGTTGTCGGGCGCGGCGCCTTCTTGATAAAGCGCGGGCCAGCTGGCTTATCATCTTCTTTGACTTCTTCTGCAGCAGACTTTTCTTCTTCTACTACTTCTTTGACTTCTTCCTCTGCAGTAGTCTCTTCTTTGTTTTCATCCTCTACTTGGCTTGCTTGTTCTTGCTTTTCTTCCGTCTTTGCTGCTTCTACAACTTCTGCAGCTTCTACTTTGCCTTCAACTTCGGTAGTCTTTTCTTCTGCTTGCGTGGTCTTTTCTTCAGCCTTTGCTTCTTCTGCTCCGAAGTGGTCATTGATGTACTGGATGGCGCTCGGACCCCAGTATTTCTTGTTGTGGTTCTTTTCATCAACAAAGTCTGGCCTCAATTCCTTGTGTTCCCGCAAAAAAATCCGCAGCTTCTTCTTGCCCAGGCCAGTAGTTTACGCCAGGGCATTGATGTCCAGCAGGCCATTGTCGGTTGCCGGCGAAGCTGCCGACTTGGGCAGGACCTTGCCCAGTTCTTGGAAAATCTGCCCCACAGCTCGTTCATCATAAAATTTATTGCCGCTGGGGTCAGTCAAGGTCGGTTTGAGCTTGAACTTCATGTTGATCAGGTAGTAGACCTAGTAGACCTGCTGCTGGGAAACCTGTGCCAATTTTGCGATTTGATCCATTGAGTAGTATTGTTGTGCCATTTATCTGCTTTCCTCTTAACTTAAAGTGCCGCTTTTTACTAAAAAAATGATGACAATTCATTTTTAATTTTACGTCAAATTGGCATGAAATGCTTGATTTTTGCAATTATTCAACAAAAAAGCCGCTCCTTTTGGAGCGACTTATGGTCAAATCAATCTAATTACCATCCGTAGTCTTCAGTATCCTGCATCCCCAGGCCAGTAGCCTTGTCCAGCAGAATTCTTTGTTCAAAGTGCGCTACGTTGAACTTGGTTTCCTTAACCATGTCCGGGTTTACGGAAACGTAGTCAATCCCGCTCTTAACCAGGAATTCAGTGAAGTCTGGGTATTCTGAAGGTGCCTGCCCGCAGATAGATACGGTCTTGCCATACTTGTGGGCGGTCTTGATCAAGTGGCGGATTGCCCGCTTAACAGCCAGGTTGCGTTCGTCGTAGAGGGCGGAAACGGCATCGTTGTTCCGGTCAGTCCCCATGATCAGCATAGTTAAGTCGTTTGACCCGATTGAGTAGCCGTCAACGTACTTGTTGAACTTATCAGCCAAAATGATGTTGGATGGATTTCCGCCATCATGAAGACCTTGAAGTCACGGTTGCGCTCAAGCCCTTCATCAGCCATGATCTTAGTTACCTTTTCTGCTTCTTCAACAGTTCTGCAGAATGGGATCATGACATTCAGGTTCTTCAAGCCTAATTCGTTTCTAACCTTCTTGACTGCTTCCAGTTCCAGCTTGAAGGCTTCGATGTACTTCGGGTCGTAGTAGCGGCTTGCCCCGCGCCAGCCAAGCAGGTCAGCTGGTTCATGCGGTTCGTACTTGTCCCCGCCCTTCAAGTTCCGGTATTCGCTGGACTTGAAGTCAGAGAATCTCAAGACAACAGGTCTTGGGTTCATGGCCCGGCAGACCTTGCTGATCCCGTTAGCCAGTTAGTTGACAACCCGTTCTGGGTGGCCGGTTTCGATCAAGTAAAGCGGGTGCTGGTGGATGTAAGTGGTCCAGAGGAATTCTTCCCGCATCAAACCGATACCATCAGCTGGCAAAGTTGCGTACTTTTCAGCCAGGTCCGGGTCACCCAGGTTCATCATGACTCTGGTTGCCGTTGGCGGGAAGTATTCAGCTGCAGCCATTGGGGCAGTCTCAGCCTTCTTTGGCTTAACGACTTCGTCAGCCACCCCTTGGTAGACAACCCCGTTCTTAGCGTCAACCGTTACTTCCTGGCCGGGCTTCAGCAATCTGGTTGCAAAGGTCCCCCGGCTGGCAGTACCAACGATACATGGGATCTGCATTTGGATTTCGCCTTCCTTGAAGTCACCGATGTCCTTCGGGTCATCAATTACGTGCACGATACCTGAAGCTACACCAGGGCTGGCTGGCAGACCCTTGACCAAAACCTCCTTGTTGGAGCTTGGAGACTTAGCGTCAGTTGCTTCCTTTGCGCCGCCCTCCTTCTTTCTTTGTGACCAAACAGTTTCCGGCCGGGCTTGAACGAGCCAGAGCTTGTCGTCTTGGTCTCTGGATCATTCCATGTCCATGTAGCAGCCATAGTGCTTTTCAATTTGTTTAGCGTAGCCGGCAAGTTCAATAACTTCTTCATCAGTCAAACATGGACCCTTGGCCACGTCTTCTGGGACGTCTCTTTGTTCAAACCCGCCGCCTGGCAGACGGATCAATTCAATGTTCTTGTTGTTGATGGTCTTGCTTGCGATCTGCATGCTTTCCTTGTCAACTTCGAAGTTGTCCGGGGGAACCGTCCCTTGGACGATGTATTCACCCAAACCCCATGAACCTTAGATCATAACCTTGGTATCATCACCGTTGGCAACGTTGACCGTGAACATAACCCCGGCTGACTTGGAGAAGGCCATCATTTGGACAGCGGCTGACAGAGCCACCTTCTCTTGCGGGAACTTCTGCTTGATCCGGTAGTAGGTTGCCCGGTCAGTAAACAGGGAAGCGTAGCAGTCTTGGACCTTGCGGATAACGTCCTTGCGGCTTCTAACGTTAAGGTAAGTGTCTTGTTCCCCGGCGAATGAAGCGTCTGGCAGGTCTTCAGCCGTAGCACTTGAACGTACGGCAACGTATGGTTCGTTTTGTCCGGTCATCTTGGCCAGTTCGTCATATGAGTTGCCGATGTCTTCGGCTAAGTCTTCCGCCTCGCGCATGATCTTTCTGATCTGGCTGCAGACCCGGTGCAGTTCTTCTGAGTCTTCCGGGTCCTTCAAAGTTGCCAGCAAGGCATTTACCTTCTCGTTCAAGCCATTGACTTCCATGAAGTGCCGGTAGCCCGCATGCGGTCGTTGCGAAACCATAAGGCACTGGCACGTCAGTACCTGAAGTCAATTCACCCAATGATGATTTACCCCCAACCAGGGCCACGTCAGCGCGTCGCAGTTGGTTAAACCAAAGAACGTATGCATTTTCGCGTTCTTCTTCAGTCAATTCCTTCTTGTCGTTAACTTCCATTATTTTCACCTCATATCACTCGGCTTATAACCCCTTTCACTTTTCACTATTGATTATTGTCCTTTTGTGAAAAAAATGTCAACAGTTTCTTACAAGTTTTTGGGGGAATTTCCTGTAACCGTTTCCCTTGCTAAAATAACAATCTTACAAAAAGTCTTTTTTGTTAAAAGTCCGTCAACTATTGAATTGCTTTTATTCACAAGCTAAAAAATACTTTTATCAAAAAAACTGCTTCGTCCCTTACCGGACCTAGGCTTTTTGCAATTTTTTTCGCAAGATTTTCCCCATGAATAGACGTTTTGGACAAAAATGAAAACGGAAAAATACCCAAAAAGATCCTCCAAATGGAGGATCCTTAACTGGCTCTATTCTATTATCTGAACTTTTGCATGATCCGGGTCACCCGGCTGCCCAAAATGTTTTCAGCCAGGCCGGTCTTAAGACTCAAGACCCCGTAAACAAGCACGCCGACAGCTACCGCCAAGCCGCTGAGTAGCATGGCTGACAAGCGCTGGTAAGGGCTGAGGAAAAGGCCGCCCAGCTTAACGGCAACAAAGACCGCCGCGAACATCACTATGGAGAAGCTGGCAATCCCGATAAAGCGCCGCATGATCCGGTCAACCCGCCAACGGTATTTCACGCTAAGGTGCTTGAGGGACATGGCGATGACCGTCAAAAGGCCAAGGTTGGTCGCCAAAAGCGGACCATAGACCTTGAAAAGGCGGATCATCGGATACTGGACGATCGCTTTGATGACCAAACCAAAGATCAAGTAGCGGATAGCATACATGTTCTCGTCCAGACCCTGCAAGATGGCCATGAGGACCGTAAACATCCCCAAGCTGATGGCCGTAAAGGAGGACAGGTACAAGACATGGGCCCCCAGCCGGTCATAGCCGTAGAAAATGGTGTACAAGGGGTCTGAGATCGCGGCCATCCCCAGCGAAGCCGGCAATAAGACGAACAAGAAAAGTTCCAAGGTATTGCCGATCTGCCGGGAAATATCCCGGTAGTCCCTTCTGGCGTGGGCCCCTGACAAGAGCGGAATAGCCGTAACCGCCATGGCCGTTGACAGGGAGACCACGATCATGATCAGCTTGTTGGCGTTCAAACCGAACAAGGCATACCAGATTTCGATCGCGTCATAAGGCACGTGCATGAAGCTGGCGATCATCGGGTGGAAGGTATACTGGTCCACCAGCTGAAAGATGTTGATCCCGGAGTCAATGATGATGAAGGGGATCGACTGCTGGATGATTTCAAAGAGCAGGCTGTTGGTTGAAACCTGCACCTGGTTGTTGGACTGGGCAATCAAAGGATCAACCGTCCGCTTCTGCCTAAGGTAAAAAATTACCAGCAGGCCAATACCGAACACGGCCCCGATCGCGGCGGCCAGGTTGGACTGGGTTACCGCGTCGACATAGTTGCCGTGCTGGACCCGCATGATCACATAAGCCGTCAAAAGCATCCAGATCACCCGGGCCAGCTGTTCCACGAACTGGGATATGGCACTGGGCATCATGTCGTTGAAGCCCTGGAAATAGCCCCGCAGGATACTCAAGATCGGAATGATCAAAACGGCCAAAGCCAGGCACCGGATCACCGGTACTTCCTGAGGGTTAAAGCCGGACAGCGGCAATGCCAAAAAGTACATGCAGGCCGCTGAGATAATCCCGAAGACCCCCATTAAGGCCAGGCCGTGCCTGAAGAGCTTGCGGCCGACCCCGTACTCATTCAGGGCATTGTACTTGGCGATCTGCTTGGCGATCGCCCCTGGAATGCCCGCGGTGGAGATGATAATGAACATGCTATAGATGTTGTAGCTCTTCGCCGTCAGAGAGTTGGCCAAGTTGCCATACTTTCCCATCCAGGCATACCAAGGGATGATATAGATCGCCCCGAGAATCCGCGACAGGATCGAGCCAATAGTCATCCAGGCCGAGCCCTTTAACAACTGGGCCTGGGAGTTGGTCTGTGATTTGTTCTTTGCCATAAAACTTCCCTAATCTTTATACTTCAACCTACTATCATATTCCTGATCCAGTTTGAAATATACCATAAATTAATTTTTTAGGAAAATTTTAGATTTATTTGGCAACAATGTTCACGATCTTGTTTGGCACGACAATGACCTTCTTGATCTCCTTGCCTTCCAAAAATTCCTTTACGTGCGTCAGAGCGGTTGCGGCAGCTTGGGCTTCTTCTCTGCTTGCGTCCTTGGCTATTTGGAAGTTGCCCCGCTTCTTGCCGTTGACCGTAACCGCCATTTCAACCGTGCTTTCAACCAGCTTGCTTGCGTCGTAAGTTGGCCAGGCAGCAAACTGCACGCTTTCGTCGTGGCCGAAGACATGCCAGATTTCTTCCATCATGTGCGGAGCAACCGGAGCCATCAGCTTCACGAAGCCTTCAGCGTATTCCCGCGGAATCTTGTCGACCTTTTGGCAGGCGTTCATGAAGACCATCATTTGGGAAATAGCCGTGTTGAAGCGCAGTTCTTCAAAGTGTTCCGTAACAGTCTTGACCGTTTCATTGTAGATCTTGTCCAGCTTGCCGTCGTTTTTGTCAGTGATCTTTTCAGATGGGATCGGATCCAGGTCTAAGTCATTGACAAAAGTCCGCCATACCCGGTCAAGGAACTTCTTAACACCGGAAGGACCGTTGTCATCCCAGTCAATAGACGCGTTCAAAGGCCCCATGAACATTTCGTAAGTCCGCAGGCTGTCGGCACCGTATTCGTCAACGACGTCGTCTGGGTTAACCACGTTGCCCCGGGACTTGGACATCTTTTCATGGTTCTTCAAGATCAAGCCCTGGTTGTAGAGCTTTTGGAACGGTTCCTTGGTTGGAACGACGCCCAAGTCGTAAAGAACCTTGTGCCAGAATCTAGCGTAAAGCAGGTGCAAGGTCGCGTGTTCTGCCCCGCCGATGTAAAGGTCAACTGGCATCCACTTCTTCAAGAGTTCCGGGTCAGCCAGGGCCTTGTCGTTGTGCGGGTCAATGTAGCGCAGGAAGTACCAGCTTGAACCAGCCCATTGGGGCATGGTGTTGGTTTCCCGCTTGCCCTTCCGGCCGTTTTCGTCAACAACGTTGACCCAGTCAGTCAAGTTGGCCAGCGGACTTTCCGGAGTGCCGGACGGCTTGATGTTGCTTTCCTTAGGCAGGCGCAGCGGCAGTTCGTCTTCTGGCACCAAAGTGGTTTCCCCGTCTTCCCAGTGGATGACCGGGATTGGTTCACCCCAGTAGCGCTGACGGGAGAAGTTCCAGTCCCGCATCTTGTAGTTGACCTTCTTTTCGCCGACGCCCTTTTCAGTCAGCCAGTCAACCATCTTGGCCTTGGCTTCTTCATTGTGCAGGCCGTTCAAAAAGTCTGAGTTGACGTGGACCCCGTCACCGGCAAAGGCTTCCTTGCTGATGTCGCCGCCTTCAACGACTTCCTTGATTGGCAGGTCGAACTTAGTGGCAAAAGCGTAGTCTCTTTCGTCATGGGCTGGAACGGCCATAACTGCCCCGGTCCCGTAAGTTGCCAAAACGTAGTCAGAAATCCAGACTGGCACTTCTTCCCCGTTAACCGGGTTGATAGCGTAAGCACCAGTGAAGACCCCGGTCTTGTCCTTGTTCAAGTCAGTTCTTTCCAGGTCAGACTTGGATTCAATGGACTTGATGTAGGCGTCAACGGCTTCCTTTTGCTCTGGACTGGTGATTTCCTTAACCAGTTCGTTTTCCGGGGCCAAAACCGTGTATGAGCAGCCAAAGAGGGTGTCCGGCCGGGTAGTGAAGACGGCAAAGCTCTTGTCTGAGTCCTTGATCTTGAAGGTTACCTGGGCCCCAACTGAGCGGCCGATCCAGTTTCTTTGCATTTCCTTGATCGGTTCTGGCCAGTCCAAGTCGTCCAGGTCGTCCAGCAAACGGTCAGCATAAGCAGTGATCTTCAGCATCCATTGCCGCATCTTGCGCCGGTAAACCGGGTAGCCGCCCCGTTCAGTCTTGCCGTCGATAACTTCTTCGTTAGCGACAACCGTGCCCAGGTCTGGTGACCAGTTAACCGGTACTTCAGCTTCATAGGCCAGGCCCATCTTGTACATTTGTTCAAAAATCCACTGGGTCCACTTGTAGTAGTTCGGGTCAGTAGTCTTGATTTCCCGGTCCCAGTCATAGGAGAAGCCCAAAGCTTGCAGCTGCTTCTTGAAGTGGGCAATGTTTTCGTCGGTGAAAGTTGCCGGGTCGTTACCAGTTTGCAGGGCGTATTGTTCTGCCGGCAGACCGAAGGCATCCCAACCCATTGGGTGCAAGACATTGTAGCCTTGGGCCCGCTTCATTCTGGCCATGATGTCAGTAGCGGTGTAACCTTCCGGGTGACCAACGTGCAGGCCCTTGCCAGATGGGTAAGGGAACATGTCAAGAACGTAGTACTTTGGCTTTTCCGGGTCAGTCCCGGTCTTAAAAGTCTTGTTTTCCAGCCAGTACTTTTGCCACTTCTTTTCGACAACTTTATGGTTGTACATCTGATAAATCCTTTCCTAAAACCTTTCCTAAAAACAAAAAGCGCCCTATGTTCAAACATAGGACGAATTGTTTCGCGGTACCACCTAAGTTCCACGCTTTCGCGTGACACTCAAATGTTTCTTAAAGCGAAACAACACTTTGGCATTGTCCGGGTGAGTTCAAAATTCCTCTTTCAAGCCTCGCAGCCACCGGCTCTTCTCTGAAGAAAGAAAAATTTCTACTAGTCCCTGCCCTTTATTATTTTCTCGATAACGATTATACTTTACCACATGGCTAAAATTTTACAAGGGAGAAAAATTAAAAACAATTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTCGTAGATTTTGACTATCTACGCCCGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACGGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAATAACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATTCCTTCATAACGATAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTTGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGACTCTAGGACTACGTTCATCGATGCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCAAAGTCAACGTAGTTATACAGTGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGTTTTTTCTTACTGGATCGGAACAGTGTTCAGTTTGATTTTACAATCGGCGATTAAAAACAATTGAATACGAAAGAAAATAAAGTTAATTATCAGCCGCTTTTAATTTTTGGCGGTGCCTTCAGCCTCTTTTTTGCTTTTTGGGTTTACCTGATTGCCAGCAAGAATCCCTTTATCAAGTCTTTTGATACGGTAGTCTACAATGCAATCAGAAACAACAATCCTGTCGAAAGGCAGCTGGCCTTTTACTGGACCCAGCTGGGCAATACCTTGACGATCACAGTCTTTACCGTGGTCCTGGTTCTTTTCCTGGTCTACCAGCGAAACTATATCCACGCAGTTTTTGCCAGCTTAACCATGATCGCGGCAAACGCCTGCAACTCAATTATCAAAAATATCATCCAGCGCCAGAGGCCCCGGATGGACAAGGCGGTTCACGCCGATGGCTTCTCCTTCCCGTCCGGCCACTCGGTCGGTTCCATGACCCTGGCCCTGGTCTTGATCGCCTTGATCGTCGTCTTGGTGAAAAAGAAGCCAGTCAAGACCTGGTTGATCGTCTTCTGCGTCTTCTTCACCCTGTCGATTGGATTTACCAGAATGTACTTGCACGTCCACTGGCCAAGCGACGTCTTAGGGGGCTGGTGCGAGGGCCTGGCCTTCAGTTCATTGGCTAGCTGGCTCTTTTTCAAAGCCTTGGACAAAAAGAATAAACTAAATCCTTAATAAAAAATCTGCTCACATGCCGTGAGCAGATTTTTGTTTGCGTTCATATTTTAACTAGTCCTTCTTTTGCCGGTAGATATGGTTGAAGACCAAGGACAAAAGCAAGGCAATCAGAGAAACGATGTAGATCCCCCGCATGGATGAATGCAGGATCTCCCGCAGAGGGGCCAAAACGGCCGGATCCAGGCTTTTAGCCTGGACTGGGGAGACAATCTTGTTCATCATCTCGCTGGTCAAGGAAGGCTGCTTTTTGAGCCCGCTGGCCACGACCACGTTGAAGGTCATCCCGTAGAAGACCATCATGACAGTTTGACCCAAGTACTTCATCAGAGTGTTAAAGGAAGTTGCCACCCCTACCTGGCTCTTGTCAACCACCATCTGGGCCCGGACCTGGCTGGCCGTGGCAATACTGCCGAAGCCAATCCCGTTGAAGACGGCGATCAGGCAGAAGACCCAAAATGGCGTGTAGGTCGGAATCAGGATGAAGGCCAGGTCTGCCCCAATTAAGAGAAAAAGTGACGCGTCAAAGTACTTCTGCGTCCTACACCGGCCCATAAGGTCACCGGCTAAAAAGGATCCGCAGACCCACAAAAGGGAGCTTGGCGTAATGGCGAAGCCGGCGATTGAAGCGCTGACCCCATTGATCCCCTGCAGCCAGGTCGGGATGTAGAATTCAAAGCCGATCACGACCCCGGAAACCAGGAGCTGCAAGATGTTGACCGCCAAAAATTCCTTGTCTTTTAAGATGCTGAAAGGAATAATCGGGTCAGCGGCTGTTTTTTCCACCTTGGTAAAGGCCCAGAGGCTGACCAGCATAATTGCTGCTAAAAGCAGCAGAGTCCAGTTAAATCCTTTTTCCAGCCCCTGCAAAAGCAGCATTAGGGATAAAAGGAAGATAACCAGGCTAAAGCTGCCCTTGAGGTCGATCTGTAATTTATTTTTAGCAAAATCTTCATGCAGGTAAAAGGCAACCAGCAAAAAGGCGAGCAAGCCGATCGGCACATTGATCATAAAGACCCAGTGCCAGGACAGCTTTTGGACGATAAAACCGCCCAAAAGCGGGGCGATAACCGAAGCCAGGCCCCAGAAGCCCGAAGTCAAGCCCAGCATTTTAGCCCGCTTGTCAATATCATACATGTCCGCTAAAACCGTCACCCCGGCTGTCTGGATAGCCCCTGAACCAAGCCCCTGCAGGACCCGGAAGATGATCAATTCCACCATCGAGTGCGAGAAGCCGCAGAGGGCTGACCCGATCACGAAGAGTCCAATGCCAAATAAAAAAACTGGCTTGCGTCCTACGCTATCAGCCAGTTTCCCATAAATCGGCGTTGAGACTGCCGTCATCAGCAGAAAGACAGACACCACCCAGCTCATGATTGCCAGCCCGTCCAAATCGGCGATAATGGTTGGCATCGCGGTCGACACAATCGTGCCTTCGATCGCGGACATAAAAGTGGTGATAAAGACAGCGAGCGTGACCATTTTCACGTTTGTTTTCTTCATTCTTTTCCCCAACGAAATTTATGTTACGTTAATGTCTTACGTGTATTCAATTGTAAAAAATATTACTTGTGGCCATTAACAAAAGCCTGGAGGGCTTCCGCCTTGTCGGTCTTTTCCCAAGGCAGGTCGACGTCAGTGCGGCCAAAGTGGCCATATGCAGCCGTCTGCTTGTAGATTGGCCGGCGCAGGTCCAGCATCTTGATGATCCCGGCTGGGCGCAAGTCAAAATTGGCCCGGACAGCTTCAGTCAAAAGCTGGTCGCTCACCTTGCCGGTCTCGGCAGTATCAATCATGATGGAAACCGGGTGGGCCACCCCTATGGCGTAGGCCAGCTGGACTTCACAGCGGTCAGCCAGGCCAGCGGCGACAATGTTCTTAGCCACGTAGCGGGCAGCGTATGAGGCGCTTCGGTCGACCTTGGTGGCGTCCTTGCCGCTGAAGGCACCGCCGCCGTGGCGGGCATAGCCGCCGTAAGTATCGACGATGATCTTGCGGCCAGTCAGACCGGCGTCCCCCTTCGGCCCCCCGATAACGAAGCGGCCGGATGGGTTAATCAGGTACTTGGTCTCGTCATCCAAGAACTTATCTGGAATGACTTCCTTGATCACGTCGTTGACCATGGCCACCCGGATCTCTTCATTAGTCACGTCAGGGCTGGTTTGGGTTGAAATAACGACCGTGTCCACCCGCTTAGGCTTGCCGGCGTCATCGTATTCCACCGTGACCTGGGCCTTGGCATCTGGCCGCAGCCAGGGGAAGGTCCCCTCTTTTCTCAGCTGGGCCACTTTGCGCATCAAGCGGTGGGCCAGGGAAATCGGCAAAGGCATCAGTTCCGGCGTTTCGTTGATGGCGAAACCAAACATGAGCCCCTGGTCACCAGCCCCAATCTGGTCGAGTTCATCGCTGTCGTCTTCTCCCCGGACTTCCAGGGCTTCATCAACCCCGCCGGCGATGTCAGGCGACTGCTTGTCCAGCGCTACTAAAACGGCGCAGTTGTCGGCGTCAAAGCCCAGGTCTGGGTCATTGTAGCCGATCTCGCGGATCGTCTTGCGCGCGACCTGCTGGTAGTCAACATTAGCCGTAGTCGAGATTTCCCCGAAGAGCAAGACCAAACCGGTGGTTACAGAAGTCTCACAGGCCACGTGGGCTTGCGGATCCTGGGCGAGTACCGCGTCCAGGATGGCATCGGAGATCTGGTCAGCGACCTTGTCCGGGTGTCCTTCTGAAACTGATTCTGACGTAAATAAGTGCTTTTCCATCTATATGTGTCCCCCTATAGACTAGCTACACGGTTACAAGGCATCTTCACCAATTTGGTGAATCCTATCAGGACTTGTAACAAATAACATTTTAAGCATGTTCAGTTTTTTGTAAAAAAAAAGATTACCGTCCGGTAACCCGTCCGGTAACCTTCTGAACATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCATATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCTTTTCGTAAGCACGTTTACTAGTATACAGCAATTCCCGGTCAATGCAAGCTTTTTTCGGGAAAAAGTTTTCAGAAAAAATAGAAAAGATTAAAGAATAGACGAAAACAAAAAACCACGACCAAGTCGTGGTTTGCTTATAGCGGCGGGGGGAATCGAACCCTCGACCTCCCGGGTATGAACCGGACGCTCTAGCCAGCTGAGCTACACCGCCATAAAACGGAGTGTGAGGGATTTGAACCCTCGATACAGGTATTTACCCGTATACATGATTTCCAATCATGCTCCTTCAGCCGCTCGGACAACACTCCATATTAAACTCCGCCTGTCAGACTCGAACTGACGACATCCTGATTAACAGTCAAGCGCTCTACCAACTGAGCTAAGGCGGAATGTTGAGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTATTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGTGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAACTTGGCCTTCCGGCCAATGGAGGCAAACGGGATCGAACCGATGACCTCCTGCTTGCAAAGCAGGTGCTCTCCCAGCTGAGCTATGCCCCCGTAAAATATCAACTTTTAAGATGTTACTCCATCTCGGCTGAAATGTAAAGACTTTTCTTTGCATTTCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCCGAGCTACAGGCCCAAGTTCTTATCGTTGGTACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCCGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCGCAGGATGTCAAGGCCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTGCGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTACGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGACTTCTTGTCAACAGCTTCCTGATATTTTCTTTTTGGCCTCCGCGAGACTTGCTTGTCTCACGCGGCAACAAACATTAGTATACTAGCTTTTTCTGATTCGTCAAATTTGCTTTTTCATTCGTTTTATGATTGGCGCACCCGGACGAGTTGTGATTGATAGTTTTCTGCTTATATTCCACTTTTCTGCTTTTCGCTGAAAAATAATCTTTGCCTGGAAAAGATAGTTCGATTTTCGCCTTTTTTTCGGCTTTAAAATTCTGTAACAAGTTTTTTGCTTTTTTCGTTTCGCTTCTTAATTAATTTTGCCGGCGTTCTATGGTAAAGTGGTTTTAGTATATTTTCGAAAGGAGATCTCGCTTATCAAACAATATGATCTTGCCGTGATTGGCGCTGGACCAGTCGGCCTCTTCGCGGCCTACTTCGCACACCTGCATGGCTTAAAGACAGTTATCCTTGAATCCTTGAACGAGCCTGGCGGACAGCCAGAAATGCTCTACCCCTTCAAGAAGATCCTGGACATCCCTGTCTTCAATGAAATCACCGCGGCTGACTTAACCAAGCGCCTCTTAGCCAACTTAACCGACCAGGACCTGGTCACTGGCCACAAGGTCAGCCAGCTGGAGAAAACTGACGAATTTGTGATCGATGGCGAATACCAGGTCCGCAGCATTATCGTCGCAACTGGCAACGGGGCCTTTAAGGCCAAAAAGTTCCCCCTCAAGGCGACCCCGGAAGCTGAAGACCACATCCACTACTTTTTCAAAAATCCTGACCTCTTTGCTGGCCAGAAGATCGGCATCTTTGGCGGCGGAGACACGGCCTTAGACTGGGCCCAGGAACTTTCCCAAATCGCTGACGTCACCCTCGTTCACCGGCGCGACCAGTTCCGGGGCATGGAAAGCAGCGTGGAAAACTTGAAGGCTGACCAAAAGGTGACCTTGAAGACCCCCTACCTGCCAAAGAGCATGCAGGTCGAAAAGGGCCAGCTGGAAATTTCCTTGAAAATGGTTGGCGGAGATGAAGTCACTCAAGAAACTTTTGACCAGATCCTGGTCGCCTACGGCTTCCGGGCCGACAACCGCTTCGTCAGCAAGTGGGGGGTTGACCTGGACCAGGGCTTGATCGCCGTTGACCGGTCCATGCAGACCAGCGTGCCTGGCATCTATGCCATTGGCGACTCCTGCGGCTACCCGGGCCGGGTGCCAGTTATCGGGATTGGTTTTGGGGAAGCCCAGATCGCGGTCAACGCGATTATGCAGGACCTCTTCCCGGAAAAGAGCCTGACCATCCACTCAACCAGTATCTAGCGGAAAAAAGAAAAATAAGAAATGAGGTTAACACATGCCACTGATTGACTTTATCCTGCACATCGATGACCACTTGGTGACCATCGTCAACAACTTTGGGGCAGGAACCTATTGGATCATTTTTGCCATCATCTTTATCGAAACCGGTTTGGTCATCTTCCCCTTCCTGCCAGGTGATTCCTTGATCTTCGCGGCAGCCGCCATGGCCGCCAACCCGAAATACGGTTTAAATGTCTGGCTGCTCTACATCGTTGCTGCCGCTGCCGCCATTATCGGTGACAGCATCAACTATGAAATCGGCAAGTGGTCAGTAACTTCCGGGGCTAAGCACAGCTGGTTCAACAAGCTGATCAATGAAAACGACCGGCTGGCAGCGGAAAAGTTCTTTGAAAGACATGGCTCCATCACCATCGTGATCGGCCGTTTCATCCCCTTCATCCGGACCTTCGTGCCTTTCATTTCCGGGGGCAGCAAGATGCACTACCAAACCTTCGTTATTTACAACATCCTGGGTGGCCTGCTCTGGACGGCCCTCTTTACCAGCATCGGCTACTTCTTCGGCAACTTCCCAGTCGTCAAGGGCCACTTCTCCTTGATCGTGATCGGCATCATCCTGGTTTCAGTCGTGCCTATCCTGGTCGTGGCCTTGAAGAAAAAGCTCACCATGCGGCGCGAGCAGCACTTCAATGATTAAAACAAAGCAAAAAATAAGGACCTGCCGGTCCTTATTTTTTTGGTCTAAATTCTGTTTAAGTACTTTCCAGTTTACTTTTTCAGCAAATAGCGGGCCAGGTAGAGCTCGTAAATCGCTCCGCCAACCGCAAAGCAGGAGGCAAAGAAGCCTTCCGTCAGCACGTTGATGACCGGGTCAGTCGCCGGGTCAAAGAGCCAGTTGTCATTGCGGAAAAAGAAAGTATGAAAGACCCGGAAGAAACTGCCAAAGTCGGTCAAGGCAAAAGGCATGACCACAATTGGCAGCAGCATCAAGAGCAAGGCCTGGGTCTGGGTCAATTTAAGCGGCTTCTTGTAATTGCGGAAATAGCTGCTGAGAGCCAGGCAGAGCAGGAAAACCAGCTCGGCCAGAATAAAAAGATTTTTGACATCGGCAAAGTGAGCAGCCGCTAAAGCCGAAGTCGGCAGGTTGCTCATCTGCAGCTTGGTCTGCCCAGGCCAAACCAGGTAAAGCAGGAGCTGGTTATAGTTGCTCATGACCTGGCCCACGGTCAAGTTAACCGTTTGGTAAGTCTTCTCCAGCAAGGTAAAAAGCAAAAGCAAGGGCCAGCTGACTACGATCGCGCCAACGACAGCGCTGGAGACCGCGAAAAAGAAATGGAAAAGGGGCTGGCCCAGCTTGCTTAGGAATTTTTTCATAGGCTAAATTCATCCAAATCGTTCACTAAATAAGTCGGCGGAGTGAGACCGGCCAGGTCTGCCTTTTGCGTCACCCCGGTCAAGGTCAAGAGGGTGTCGACTCCGCTGTTGATTCCGGCCATAATGTCAGTTGGGTAATTGTCCCCGACAATCAAGGCCTCTTCCGCCTTGACCCCAGCCAAGTCCAGGGCGCGGTTGACAATAATGGCTTCCGGCTTGCCGATAAAAAGGGGCTTTTGCCCGGACGCGACTTCCAGAGCCGCGCAAATTGAACCGTTGCCTGGCCGCAGCTCCTTGCCCACCGGCAGGTTCTGGTCGGAATTGGTGCCGATAAAGACCGCTCCCCGGTGAATGCAGCGGGTGGCAACCATGAGCTTGTGGTAGGTCAAGTCTGTGTCCATCCCCACTATCACGTAGTCAGGATTTTCCTCGTCATAATAGAATTCCGGCCGGTCCAGGATCTCCTTCCACAGGCCAATTTGGCCAATGATGTAGACGCCGATTGGCCTTTTCGCCTCTTTTTCCAAAATATAGCTGGCCGTGGCCATGCTGGGCGTGTAGATCTTGGAAACGTCGGTCTTGACTCCGTGCCCGGCCAGTTTGTCAGCTACCATCTGGGGCGTCCGGGTCGTGTTGTTGGTCAAAAATAAGTAATCAAGACCTGCCTCATCCAGGCGCTTGACAAAGCGGACGCCGGATTCAATGGTATCCTTGCCCCGGTAAATGGTCCCGTCCAAATCAATCAAAAATAAGCGGTAATCTTTCACGGCTTCTTCTTTCTAATCACAAAGGCCTGGTGGCGGCGGTTCTTCTTGCAGCTTTCAGCATAGCTGCCCTTCTTGGGACGGCCGCCCTTGACCTTTCTTTCGCTAAAAGCCGCCTTGTTCTTCGGCCGCTTTCTGGCTGGCCGCCGGCGCTGGGTAGGCCAGGGCTTACGGCTGGGCTGGAGGGATTCCAGGATAAAGTAAGGCGCGCCAGGGTTGCAGTATTCAGTCAAGTAGTCAACAATCGTCGACTTTTTCCGGTCAATGGATGTCTTGACATAGTCATTGTAAAAGCCCCTGAGGCGGAGGTGGTCGCTGGATACATCCCCGACCAGATAATCATACTGGTCCAGGTATGGATCGTACTTTTGCTTCAAAACTTCCCGGTCTAAAGCATCCCGCTGGTTGACCAAAAGGCGGTATTCCCGCTGATTGATCACGACCTTTTCACCGGCAACCACCACCTCTGCCAGGGGGTGAAGGGGCTTAGCTTCAGCTGCCTCTGTTTTCTGCTCTTTTTTCGGCTCTTTCTGCTCTTTCCTCAATAAATTCACCTTCTTTTTTCATAGGATACTTGCGGCCTAAGTAGTCGCCTACGACTTCCCTTAAAAACTGCGGGAAGAGGAATTCATTTTCACCGACAATGGCCAAAGTCGGGAAAAACGGGATCAGGACATAGTGGTCCAAAACGGCGATCCGGTATTCTTCCGCCGGGTCCAGCAATTGCCCGTTGACGAAAACGTTCCTGGTCATTGGGTCATACTTGATCCCCCTGTAGTAGACCTGGCCAAAAATCTTCCCTCTAAAGCTCATCCCCACCAGAGGATAATTTTCCAAAAAGTGCCGGTTCTTTTCCACTTCCATGACCAGCCGCCACAAGTCCCGGCCTAAAAGGGTAGTCCGGACGACATGCATCGTGTGCGGCAGGGCATGCTGGAGGTCAAACTGGTTGATGAGGCCTCCCTTAAATGGCGTCAAAAAGAGGCCGGTGCTCAGCATGGCCAGGTCGGTACCGGCAAAGTCAGCGATCGCTTCCAGGGAGACGTCGATCGCGGCCAGCTTGTCATCCTTGAACTTCTCTGGCAAGTCCGCCACATGCCGGCTCTGCAGCATCTTCTGCCCCTCTTCATATAAGGCGGCAATTTCTGCTTCGTCGCCCGCCTGACTTGGCAAATCAGCTACCGGCACGGTAGTTGGTTTAATCGAAATGATCTTGTGGTCATCGCCGATTTCCAGGCTGATGTCGCCGACATAATTGCCCCACTTGTCCGTCTGGGTGATCCAGGTGCGGCCTTCCTTGACCCCTTTTTCCAAAAGGGTGTGGCTGTGTCCGCCCACGATCAGGTCGATTTCCGGGTAGTGCTTGGCCAGCCACTGGTCCATTCTGAGGCCCACGTGAGTCAACAAAATCAAGCAGTCATACTGGCCGGCAATTTCCGGCAGGACCCGGTCCATAGTTTCGCCCAGCATCTTGATCTGCCAGTGGTTAGGACCGTATGTCATTGGATAAGCGGCCGTCAGACCCACCAAGGCCAGGCGGGTGCCCTTTTTGGTCTTGATAATCTTGTAGTCATTGGCCCAGGCCGGCCAGCTTTCGTCTTCTTCTCTGAGATTTGACAAGAGGACTGGGAAGTTGGCATGGTCAAAAAGCCGCTCCAAAACGGCATGCGGGTTGGAAATCCCCTCATTGTTGCCGATCGTGATGGCGTCATAGTGAAAGTCATTCATCAAGCGGATGTTGGCCTGGCCCTCTGTAGCATCAGACAAGGGATGGGACCGGTCCATGAAGTCGCCGGCGTCAAAAGTCAAAACCTGGTCGGCAGCCGCCGTTTCTTGCACCTGCTTCAAATAGCGCCTGATTTTTGGAAAATGCTCAAAGTGCGAGTGCAAGTCGTTGGTATGCAGAATCCGCAAAGTTTCCATTGTCTTCCTCCTAGCCGATCTTGTTGGCTTTCAAAACCATTTCGTAAGCATCCCTGACCGGGCCTTTAGGCTTGTCCCATTCCACCCATTGCGGGTTCTCCCAGTCTTCTTCGTTCATCAAAGTATGCAACTGGTAGGCCTTGTTAATGTACTGCTCGTAAGTTTCCAGCGCCTTGGTGCGCGGGATGTTGATGACCAGAATCCGCACGCTCTTGATTAAACCGTTGTTGACCGCCAGTTCCGCGAAGCCGTTTTGGTCGATGTTGGAAATTTCATAGTACTGACTGCCGTCGTTTCTGGTAATCTCTTCGATCAAATCGAATTGCTCGTATAAGTGATCCATTTGTGCCCCCCATTATCTTATAAAAAGATTGTAACACAAAGTTCAGCTGCCTTTGCCCGGGCGAAACTAAAAGAGCCCGCCGCTTGGCAGGCTCTTTCGAAAAATCTTACTTGTTCAAGGTACTTTGCTTCTTGATCAGTTCATATGGCAAAACGATGTGCTTGTCTTCCAAGCCTTCATCGTTCATCAGCTTGGTCAGCATTCTCATGGCCACGGCACCCAAGTCGTAGAGCGGCTGCTTGATCGTAGTCAAGGCTGGCCGGACAACTGAGGCGATCTGGGTCGCGCTGGCCGTAACGATTTCGAAGTCTTCCGGCACCTTAGCCCCGCGGTCCAGAGCTGAGTTGAGGAGGCCGACTGAGGAAACGTCCTTGGTGATGATGACCCCGTTGATCCCCTTCTTGGCCAGTTCCGGGTAAAGGTTGTAGCCGTCAGAGTAGTCCTTGATGTTGTCAAAAATCTCGCAGCCTTCCAGTTCATTGTCAGCCACGAACTTCTCAAAGGCCGGAATCCGGTGGTTCCGGTTGATCGGAGCTTCCTTGTCGCCCACGATCAAGGCCAGCTTCTTCTTGCCGTCGTTCAAAAGCAGGTTCAAAGCTTCCGTGTCGGCCTTCTTGTAGTCGATGTTGGCTGAAGGGAATTCTAGGTTGTCGGAAACAGTCCCGGCCAAAACGACTGGCGTGTCGGTCCGCTTGAAGGCTTCCGCTGCTTCTTCAGACAGCTTGTTGGACATGTAAATAACCCCGTCAACCTGCTTGTTGAGCAAGCCTTGAATGACGGCGTCTTCCTTCATCAAACGGTTTTCCACGCTGGAGATGATGATATTGTACTTGTACAAAACAGCAATGTCGTCGATCCCCTTTGACAATTCGGCAAAGTACAAGTTGGTCAGGTCCGGCACGATCAAGCCGACCGTTGTGGTCCGCTTTGAGGCCAGACCCTGCGCTACCGCGTTTGGTTGGTAGTGCAGACGCTTGATAACTTCCATGACCCGGTCACGGGTTTCCTTGCGGACATTGTTGTTGCCGTTGACTACCCGGGAAACCGTGGCCATAGAAACCTTGGCTTCCCGAGCAACATCGTAAATGGTTACATCTTGCTTATTCATAATAACAGCCCCACCTATCTAAATACTAATTACTGATTTAATGATACCATGAGAAATTTTTTGGTGCAATCGCTTACAGCTATTTTTTCAACTTTTTTCACTTTTTTTAGTGCTATACTGAGGTTAATTTCATTAGTAAGGAGAATTTTGCCATGAATTTAGACAAATTACAAAACTGGCTGCAGGAAAACGGGATGGACGTAGCCTACGTTTCCAGCCCGACTACCATCAACTATTTCACGGGTTTCATTACTGATCCTGAAGAAAGAATCTTCAAGCTTTTCGCCTTCAAGGACGCTGAACCCTTCCTCTTCTGCCCGGCCTTGAACTATGAAGAAGCCAAGACATCAGCTTGGGACGGGGACGTGGTCGGCTACCTGGACAGCGAAGACCCATGGGGCAAGATCGCTGAAGAAATCAAGCAGCGGAGCAAGGACTACCAAAACTGGGCTGTCGAAAAGAACGGCTTGACGGTTGCCCACTACCAGGCCCTGCACGCTCAATTCCCAGACTCCGACTTCTCCAAGGACTTGTCTGACTTCATCGCCCACATCCGCCTCTTCAAGACGGAAAGCGAACTGGTCAAGCTGCGCAAGGCCGGGGAAGAAGCTGACTTTGCCTTCCAGATCGGTTTTGAGGCCCTAAGAAATGGGGTTACCGAACGGGCCGTAGTCAGCCAGATTGAATACCAATTGAAGCTGCAAAAGGGCGTGATGCAGACCAGCTTTGATACCATCGTCCAGGCCGGCAAGAACGCGGCCAACCCGCACCAAGGCCCAAGCATGAACACGGTGCAGCCAAATGAACTGGTACTTTTTGACTTAGGGACCATGCACGAAGGCTACGCTTCTGACTCCAGCCGGACGGTCGCTTACGGGGAACCAACTGATAAGATGCGGGAAATCTACGAAGTCAACCGGACTGCCCAGCAAGCAGCCATCGACGCGGCTAAGCCAGGCATGACGGCCAGCGAACTTGACGGGGTAGCCCGCAAGATCATCACTGACGCCGGCTATGGTGAATACTTCATCCACCGCCTGGGCCACGGGATCGGGATGGAAGTCCATGAATTCCCGTCCATTGCTAACGGCAACGACGTCGTTTTGGAAGAAGGCATGTGCTTCTCCATTGAACCAGGGATCTACATCCCAGGCTTTGCCGGTGTCCGGATCGAAGACTGCGGGGTCCTCACCAAGGATGGCTTCAAGCCATTCACCCACACTAGCAAGGAATTGAAGGTTCTGCCAGTTAAGGAATAAGACTGAAAACAGAAAATGGCTTCTAGAAGTATCTCTCTTTTAGAAGCCTTTTTTTCGTATACAATTATACCTTACGAAGGTCGCGAATCAAGTAGTAGACGCCAATTAAAGTCAACAGCAAGAAGACATTCTGAAAATCATGATAGCCTTCCTTCATGACAAAAATGGCAAAAAACACGGCAGGCAGGATAGTCAAAATTATCCCCCGGTATTTTCTCAGCTTCAAAACAAAAGGATTATCTGATTTTCTGAAGGAAAAATACGTTACCATTAAGTAAATCAGAAAAAGGACCATGTTTGTTGTCGTCATGTGATTTATCCTCCTATGCAAATTTAGCAATCCGTTGATTACTAATTTCAAGCAACAATTTTAATTATTGAGCAAATAATACAACCCGTATTTTAATGGAAATCCAATTATTTAAAATTCCTAACGGCAACGACGTCGTTTTGGAAGAAGGCATGTGCTTCTCCATTGAACCAGGGATCTACATCCCAGGCTTTGCCGGGGTCCGGATCGAAGACTGCGGGGTCCTCACCAAGGAAGGCTTCAAGCCATTCACCCACACCAGCAAGGAATTGAAGGTTCTGCCAGTTAAGGAATAAAACTGAAAAAGCAAAAAAATGACGAGTCTTGCGGCTCGTCATTTTTTTATATTCGCGTTAACTATTCTTGATCTGGACTAGTCGGAGTGCTTGGTTCTTCCGGCTTCTCTTCCCCTTCTTCGCTCTTTTCAGCATTGTCCAGGTCGCTGGCGTCTTGTTCGCCGGCGCCGTTAGCTGAATCGTCGATTACGATGTCGTCGAAGTCCTTCAATTCAGAATCATCTTCAATGTTCTTTGGGAAAGAAGCCAGTTGGTTTTTCAAGATTTCTGTCCCGTTGTCGTACTTTTCCTTCAAGTCTTCAACGTTTGGATTGCTCTTGATCTTGTCCTTGACTTCTTTAAGCTTGTCGTCTGAGATCAGGCTGGCAGCTGCAACCCCAGCAGCAGCCCCAAAGACGGCCCCTAATAAAAAGCTACCAAATTTGCTCATGATTGTTCTCCTTTTCTTAATCCTAACCCTTCCGCCGGAAATGTCTGGCAAAAGCCGACGTAATTACGGAAGTGATCATTCCCGTCCGGGTAAAGTGGGCATTGGAAACCTTGTTGATCATCTTCTTGGATGATTCGTTGATGTCTGAGACGCTTTGGCCCAGGTCAGCGGCGGCCTGAACGACCGGCTGCAAAGTTTCCATCTTGCCATTGACGTCTTGCAAAAGCGCGTCTATCTTTTCCAAGAGTCCGCCGGTCTGCTTCATCAAGTCATCCATGTCTTCAGTCAGCTTGGCCATAGATTCATTGGTCAATTGGACTGTCTTCTCCGCCTCTTTCAAAGTCTTCGAAACATTAAGCAACATGGGAATCGTGAACAGGACCAGTACCAAAAAGGCAATGGCCGCAATCAAACCGGCTAAAGCGCCAAATGAAATTGTCATAGCTTACTTCCCCTTTCCTTTCTAAAAAAGTCTAGCATGAAAACGATTTAGACACAATCGAAAGATCTTCCGAAGTTTTTACCCGCTTTTCTGTTATCCTTTAAGCATAGCTGAAAGGAGCATTTTTTCAATGAAAAATCTTGATTTCAAAATTGCCGGCATCTCTGTCGACGTCGACAATCTTTTTACCAGCGGCGTGACCATCCTCTGGAAGCTGCTGATTTCGACCCTGGTCTTCTACCTGGTCAGCCATTTTGGCCGGAAAATTATCAAGCGCTACCTGGACAAGCACAACGACAAGCTTGTCCTCTCCAAAAGGTCCCAGACCATCTCAGCCTTGGTGAACAGCCTCTTCCACTACACCATGGTCTTCTTCTATGTCTACTCCATCTTAACCATCCTGGGCATCCCCGTCGGCACCTTGATTGCCAGTGCCGGGATCTTCTCTTTGGCCATCGGCCTTGGGGCCCAGGGCTTCATGAGCGACCTGGTCAACGGCTTCTTTATCCTCAGTGAAGGCCAGTACGATGTCGGCGACAATGTCGAGATCGGGACTGAAGCCGGGACCGTGACCCAGCTGGGCCTCAGAACCACCCAGATCGTCACCACTGACGGCACCTTGATCTTCATCCCCAACCGGCAGATTTCCATCGTCAGAAACCTGACCCACGGCGGGATTGGCCTTAACTTGGACCTGAACCTGGATGCAAATACCGACTTAAAGCAGCTGGCCAGCCTGCTTGACCAGGCTGATGAAGATCTGCTTGCCTGGCATGACAAACTAGTCAGCGGACCAACCCAGATCGGGGTCGTCGGCCAGCAGGGGCAGACAATCACCTACCGGGTCCACTTCCAAGTCAAGCCGGGCTTTGAAGGCAAAATCCGCCAGGCCTACTGGCAGACCTACCTGCAATACTTACGGGTCAACCAGGTCAAATTTGGCCAGGAACCGGTTATCATCAACAACAGTAAAAAAGCTTGATCTAAAAATGCTGGGCCGCGGCCCAGCATTTTTTTGACCTTAGTTGAATTGAGCGAGCCAAGCTGGCAGTTCTTCGATCAAAGCCTTGACTGCCTTGCCCCGGTGGGAGACTTCGTTCTTTTCTTCAGTGGTCATTTCGGCGAAAGTCTTGCCCTTGCTTGGTACGTAGAAGAGTGGGTCGTAGCCGAAGCCGTCCTTGCCGCGCGGAATTGCAAGAACTTCACCTTCGCAGGTGCCAGTTACAACCAAGTCCTTGTCTTCGTGGCCTGGCATGGTCAAAACAAGGGTAGTGACAAACTTGGCTTGGCGCTCGTCTTGCGGAACCCCGCCCAAGGCTGCCAAAAGCTTAGCGTTATTTCTAGCATCGTTGTGGGCCTCACCGCCGTAACGGGCTGAGTGTACGCCGGGAGCGCCGTTCAGTTTAGCAACCAGCAGGCCTGAGTCGTCAGCCAGAGTTGGCAGCTTACTATAGTCTGCCAAAGCGTGTGCCTTCAGCTTAGCATTAGCTTCAAAAGTCGTCCCCTTTTCGTTAACGTATGGCGGGTTGTCCAAATCTGCATTTGATTTAAGCTCAATGTCCAGACCAGCCTGCTTGAAAGCTTCTTGCAATTCCTTAACCTTGTTTTGATTATCTGTAGCAAACAATAGTACTTGAGTCATATGTTACTCCTATCATTTCAAAATATAAAAAATCTCTCTACTGAAATTTTACCACTTATTCAAGCCTTTTCGAACTTACAAAGAGAGTAATTTCTGCTATTTTCACCGCTTTTTCAGCCGGCAGGAACTTTTTTCTTTTTTTCGGCGATTTCCTAGCCTTTTTCTAAAACTTGTTAAAAAATTTCACCATCCTGTAATATTTACGGTAGAATTAAAATAGCGAATAAGGATGAGGATTATGTCAGAACACAACGAACACGTATACTTTGTCAATCAACTATACCGCGACTTCTTGTTGCCAACCATTTTAGGCGGGGACACGCCGGCAATTCTCTACTGGGCCGGCAAGCGGATCACCCGCAAATATGCCTTGAGTGAATTTGAAGACTTAAGCGAATTCTTCAAGATGGCTGAATTCGGCAATTTAACCATTGTCAAGGAGCGCCGTTCCTCAGTCATCTTCTCCTTGAGCGGGCAGCCAATTAGCGACCGCCTGGCCGCCGGCAGCCGGGAATTCTCCCTAGAAAGCGGAATGATCGCCGAAGCGGTTGAACAGAACCGGGGCCGGTCAGCTGAAGCCGAAATCGCCATCGACGACAAGAAAGAGACCGTTCAGATCACCGCCTTCTTCTAACAAGCAAATTCAGCAAGATAAAGAAAATACAAACGAAAAAGACCAGAGCCAATGGCTCTGGTCTTTTAACATGCTTATTTCTTAGTCAGCGTACTGGTCAAGAATTTCGTTCAGCTTTTCCTTTGGAGTGTAGCCAGTCAAGCGGTCAACCACTTGCCCATCCTTCTTGATCAAGAGGGTTGGGATGGACATGATGCCAAAGTTCTTGGCCGTTTCCGGGTTGTCGTCAACGTCCATCTTGGTGAAGTGCACGTCTTGTCTTTCTTCAGCCAAAGCTTCGATGACTGGTGACTGCATCCGGCAAGGACCGCACCAGGTTGCCCAAAAGTCAACCAGAACTAAGCCATCCTTGGTTTCTTCTTCAAAAGTTGCGTCAGTAATTTCATCTACCATGTAAATACCTCAAATTCGTTAATCTGAAAAACATTATTATCTACTTACTGCTTTAAGTTTACTAGACTTACTTACTTTTCGCAAGTAGATTGCCTACTTTAAGGTCACGATCGTGGCCCCGGTCCCGCCTTCATTGGCTGGCGCGTAGCTGTAGGTCTTGACATGCTTGTTGCGCTTGAGATACTGCTGGACCCCCTGCCGAATGGCCCCGGTCCCGATCCCGTGGATGATCGTGACCGTGCTAAGGCCGGACAAAAGGATGGTGTCAAAGTACCGGTCCAAATTGACCATGGCCTCTTCATAGCGCTGACCTCTAAGATCCAGGGAACTGCGGGCCCGGCTGGACCGGGAGGCAGAAGTGGCCCGTCTTTGGGCCTGCTGCTTCTGCCCGGCGGCCAGCTTGTCGATGTACCTGTCGGTCACCTTGAGCTTGATCCGGCCCAAGGAAACCTCATAATCATGCTCACCCAGCTGCTTGGTCACCGTCCCGGTCTGCCCGTAAGACAGGACCTTGACCTTGTCACCCACCTGGACGTGGTGGCGTTTCTTTTCCTTTTGCAGGACCTTGTTTTTGGCCAGGTTGACCTCCTGCTTGGCCAGCTGGTTGAATTCGCCCTTGGCGTCCATCAGCTGGTTGGTCTTGACCTGCATCCCTTCCTTGCGGGCTTCTTCCAGCTCGGCGATGACCTTGTCGGCCTTCTTTCGCTTCTTGGCCACGATTTCATTGGCCCGGTCCAAGGCAAAGTCCAGCTGCTTTTGGACCCGCTGGTTGTAGATATCCAGGGCATCCTGCAACTTCTTTTCCAGCTGCTTGGCCCGGTCCAGGCTGGTCTGCAGCTTCTGCTTGTTTTCCGTGGCCAGTTTGGTCTGCTTGTTTAATTCGTCGATCATGTGGTTGATGTCAGAATCATCGCTGCTCATCAGCTTCTCAGCCCCGACCACCACGTCTTCCCGCATGCCCAGCCGGCGGGCAATGGCAAAGGCATTACTGTGACCCGGGATCCCCATCTGCAGGCGGTAGGTCGGCGACAGGGTCTTGATGTCAAATTCCATGGAGGCGTTGGTGGTCCGCTCTCTGTTATAGCCATAGAGCTTGAGTTCCGGGTAGTGGGTCGTGACGATGATCTTAGCCCCCTTCTTTCTGAAGAAGTCCAAAATTGAGATGGCCAGGCTGGCCCCTTCTTCCGGGTCGGTCCCGGCCCCGATTTCGTCGATCAGGACCAGGCTTTGGTCGCTGACCCGCTTCATGATCGCCACGATATCGTTGATATGGGATGAAAAAGTACTCAGCGACTGCTCGATTGACTGTTCGTCCCCAATATCAGCAAAAATCTGGTCAAAAACCGCCACGCTGGAGCCCTCATTAGCCGGAATAAAGAGACCGGACTGGGCCATCAGCTGGAGCAAGCCTGCCGTCTTCAAAGTGATCGTTTTACCACCAGTGTTGGGCCCGGTGATCAAAATCGTGTCAAAGTCCTGGCCTAAAGCAATGTCATTGGCCACGACCTTGTCTGGATCAATCAATGGGTGACGGGCCCCCAGAAGCTTAAAGGACTGGTCTGCAGACAAAGCCGGCTGGCTGGCCCGCATCTGCTTGGCCAGCTTGGCCTTGGCCTGGAGGAAGTCCAATTCGCTTAAAGCCGCGGCCACCCGCTTGATAGTCTCCATTTCTTCTCTGGCGTCCAGAGACAGTTCATGCAGAACCCGGTGGATTTCCTGCCGCTCTTCAGCCAGCAAGTTTTGCAGGCGGTTGTTTAAAGGCAGGATGGCAGCCGGTTCAACAAACAAGGTCTGGCCAGAGGCGCTTTGGTCGTGGACCACCCCGCCGAACTTGTAGCGGTATTCCTGCTTGACCGGGATAACGTAGCGGTCGTCCCGGATGGTCACGATCTGCTCAGACAGGTACTGGCCGTTCTTGCCCTTGGTGTAGGCGATCATCTTTTCCTTGATTTCCGCTTCCGTGGCCAGGCGGCCGTGGCGCAGGCGGGCCAGGTCAGCTGAAGCGGTATCCAGGACTTCCCCGTCATAAGTCAGCGAAGTCCGCAGGCGCCGGTAAAGGTCATCCGGCAATTCCAGGTCCTCCAGCAAAGTTTCAATCGCCGCCAGATCCAAGGTCTCATTTTCTTCCGCGTCTTCTACAAAGCGGCTGCTTTCCTGGGCCAGGGTGAAAATCAGCAGTATATTGCCTAATTCCAGGGCGTTCAAGTCGGCCTTGACCTTCAAACGCTTGAGGCTGGGCGCAACATCTTGAAAGTCGGTCAAAGGCAGCTGGCCCTTGATCCGGTCCAAGTCAACCAGGGCCTTGGTTTCGCTTAAGGCCCGGCTGACCGTCTCCCGGTCGCTGGCGGGCTGGAGGTTCAAGGCCTTGCTCTTGGCCGGAGCCGTTACCGCTTGTTCAGCCAGGCGGCTGCTAATTTCCTGGTATTCCAGAATGTCTAAAATTTTATGATTCATCATCTCAGTAATTTTATCTAAAAAATTTTCCTAACAAAAAAAGCGGGCTAAGCACCCGCTTCTTTGTTATTCTGCAGAATCGTCACCGCTCAAACGGTCATCTTCAAGGAAGGTGTTGAGCACTCCTTGAACCATGTCCCATTCAGCGTCAGAAGTGATTTCGTGCAGGTCGCTGCTGGTTACGTCGCCATCTTCATCGGCGTCGTAGCTGAAAGCCTGGACTTCAATTTCGTCGTCATCTTCTACAGCTGCCGGGTAAAGCAGGATGTAGGACTTGTCATTGTCGTCAGAATGGAAAGTAAACAATACTTCAAATAATTCTTCGTTGCCGTCTTCATCGATCAAGGTCAATTGTCTGTCTTGATCTTCGGCGCTAACTTCAAAAGCCATAGTTATTCCTTTCGCTGTAAATCCAAATAGTTCTGCAAAATCAACACAGCTGCCATTTGGTCAACGACCTCCTTGCGCTGCCGGCGATCATGCATTCCCGCCTCTTCAACCAAAATCCTCTCTGAGGCCACGGTCGTCAAGCGTTCATCGTCATAGTAGACTGGCAAGCCGAACTTCTGCTCCAGGCGCTCGCCCATGGCCTTGCTCCGGCTGACCGACCGACCGGCCGTTCCGTCCATGTTCTTAGGCAGGCCCAGGACAAAGCCGTTCGCTTCATATTCGCGGACCAGCTTCTTTAAAGACCGCATGCCGAAATTGTGCCGGTCTTCATCAATCGGGATCGTCATCACGGACTGGGCGGTGATGCCCAAGGGATCACTGACGGCCACCCCAATGGTCTTGGAGCCGACGTCCAAACCCAGCAGGCGCATTACTTGTCCTTGCCCAGGTAGCTCTTGACCAGTTCTTCGATGATTTCATCGCGTTCGTGCTTCAAGATCAGGTTCCGGGCGTCGTTGTGGCGTGGGATGTACGCTGGGTCGCCTGAAAGCAGGTAACCCACGATTTGGTTGATCGGGCTGTAGCCCTTTTCTTCCAGGGCCTTGTATACGTCTTCCAGAGTGTCGCGGATGTTCTTGCCCTTATTCTGGTTAAAATCAAAGTGCATCGTTTTATCAAGCGAACTCATCGTTATTCCCCCTCTTTTGTCTATTCTACTTTAAAATTTTCCTTAACTCAATTATTTTAGCTTAATTAGTCCAGCTGGCTGACTGCAGCATCGATGGCATCCTGCAGGCCTTCTGGATTCTTGCCGCCGGCTTGGGCCATGTTTGGCCGGCCGCCGCCGCCACCGCCAAAGATAGCAGCCACGCTCTTGATCAAGTCGCCGGCCTTCAGACCCTTGTCCAGGGCCTTTTGGCCCAGGCTGATCAGCATGTTGGCCTTGTCTTCAGACTTAGCGCCCAGGATCAAGACGTCAGACTTGCCTTCACTCTTCCATTGGTCAGCGATTTCCCGCAAGTCGTTCATCCCCTTGACGTCAGCGATCGTGGCGATAACCGTCAAGTCACCAACCGTCTTGACCTGGTCAAAGATCTTGCCGGCCTTGGAAGCGTTGATTTGGGCTTCGTAAGCGGCGTTTTGCTTTTCAGCGCTTCTGAGTTCTTCTTGCAGGCTGGCAATCTTGCTTTGGATGCCGTCAACCTTAGTGGCCTTAACTTGAGCCTGGATCTGGTCCAGGATGTCTGAGCGGCCAGCTAAGTATTCGTAAGCCAGCTTGGAAGTTACGGCTTCAATTCTTCTGACCCCGGCACCGATGGCTTGTTCAGAAATAATCTTGAAGACGCCGATTTGGGAGGTGTTGTCACAGTGAGTACCCCCGCAGAATTCGATGGAGAAGTCATCCATTTGCACGACTCTGACCTTGTCAGTGTACTTGCCGTCAAACAGAGCCAAGGCGCCCATCTTCTTACCGGTTTCCGGATCAGTTTCCGTGGTCTTGACTTGGATTGCTTCCCAGATCTTTTCGTTGACGATCTTTTCAACGTTCTTCAATTCTCTTGGCGTGATTGGGTCAAGGGAAGTGAAGTCGAATCTCAAGTAGTCTGGTTCAACAACTGACCCGGCCTGGTGGGTGTGTTCACCCAAAACTTGCCGCAAGGCAGCGTGCAAGAGGTGGGTAGCAGAGTGGGAGTGGCGGAGGCCTTCCCGGCGCGCCCGGTCAATCTTCAGCTTGTAGGTCTGCCCCTTTACAAGTGGCAGGACCACGTCGACAAAGTGCAGGTTCTGGTCGTTAGGCGCGTGCTGAACGTCAACTACCCGGGCAACTAAGTTGCCTTCCTGGTCGTAGATGTCACCGTGGTCAGCCACCTGGCCGCCCCGTTCAGCGTAAAATGGCGTCTTGTCGAAGATCAAGGTTGCCTTTTCACCGTCAGCCTTGTCCACAAGCTTGTCGTCAACGATGATGTCAACCAGCTGGCTTTCTTCTTCATAGACCCCGTATTCAAAGACGCTCTTGTCCTTGATTTTCATCAAGGTTTCGTCTTGTGAACCCATGGATTGCAGGTTGCCCCGGGCCTTGCGGGCGCGTTCCTTCTGCGCTTCCATTTCGGCGTCAAAGCCATCCTTGTCAACCTTCAAGCCCTTGTCTTCAGCAGCTTCAACCGTCAATTCGTATGGGAAGCCGTAAGTGTCGAACATCTTGAAGGCGTCCTTGCCAGAGATGGTCTTGTCTTCGCTGTTTTCGGCCTTGTCGATCAAGTCGTCCAGCAAAGTCAAGCCGGCTTCCAAAGTTGCACCGAAGCGGTCTTCTTCGTTCTTAACGACCTTGCTGATGAATTCAGCCTGGTCGCTGACTTCTGGGTAGTGGCTCTTCATGATGTCGCCGACAACTGGCACCAGCTTGTAAAGAAAGGCGCCGTCGATGCCCAGCTTGCGGCCGTTCAAGGCTGCCCGCCGCAAAAGCCGGCGCAAAACGTAGCCGCGGCCAGTGTTGCCTGGCAGAGCCCCGTCACCGATGGCAAAGGAGATAGCCCGGATGTGGTCAGCGATAATCTTGAAGGAAATGTCGTCAGCCTTGTTTGCGCCGTACTTCTTGCCCGCGCTCATTTCTTCAGTAGCGTGGATGATTGGCAGGAAGAGGTCGGTTTCAAAGTTGGTCGGGGCATCTTGCAGGATAGACAGGACACGTTCCAGACCCATCCCGGTATCGATGTTCTTGTGTGGCTGTTCAACGTAGCTGCCGTCTGGCAGGTGGTTGAATTCTGAGAAGACGATGTTCCAGATTTCCAGGTAACGGGCGTTTTCCCCGCCTGGGTAGTTTTCCGGGTCGTCTTCTGGCACGTCATTGTTTTCCTGGCCACGGTCGTAGAAGATTTCTGAGTCAGGACCACATGGGCCTTCACCGATGTCCCAGAAGTTGTCTTCCAATTGCACGATGTGGCTTTCCGGCAGGCCGACGACTTCATGCCAGATCCGGTGAGCTTCAGTATCCTTAGGGTAAACAGTTACGTAAAGCTTGTCCTTGTCCAGGTCCAGCCAGTCAGGACTGGTCAAAAATTCCCAGGCCCAAGGAATCGCTTCTTCCTTGAAGTAGTCACCAACTGAGAAGTTGCCCAGCATTTCAAACAAGGTTTGGTGGCGGGCAGTCTTACCGACGTTTTCAATGTCGTTGGTTCTGATTGACTTTTGTGAGCTAGTAATCCGGCGGTTCTTTGGCACGACTGAGCCGTCGAAGTACTTCTTCATGGTTGCCACCCCGGAGTTGATCCAGAGCAAAGTCGGGTCATCCTTTGGAATCAGGCTGGCTGACTGCATGACCATGTGGCCGTGTTCAGCAAAAAAGTCGAGGAACATTTGCCGAAATTCTGAACTGTTTAACTTTTTCATCAAAATCTCCTAAAAATACAAAAAACAAGCATGTTTGCCTTCTTCAAGGACGCTCTAGACGCGGTACCACCTTGATTGCAACAATGCTTGTTACCTCTTGATTATCTTAAATTAATCACTTTAAGTAGCATTTCCTGCCTGGTGATAAACCCTTCCCAGCTGCCGGTTCTCTCTTTGAATCGCCTGGACAGAAAACATATCTTAAGCGTCTCTAATTTTACTACTTAGAGAAAAAATGTCAACGTTTTTGCTCGCGCTTGCGCTTACGGAGGTGCTTTTGGTGGCGCATTTCGTGGCGGGCTTCAATCTTCCGCTTCTTGCGGTTGTCTTCTTGAATCGCCTGCTTGATCTTCTTCTTGTAGCCAGGCTTGCGCTTGGACTTGATCTTCTTGACCACGCCCTTCATGTGGGGGTCAAGCTGGCGGTTTGCAGCCGTCCGGTTGTCCCGGCGGCGGTAGTGAGTCCGCGGAGCGAGTGCCCCGTCCTTGATTTCAACGAAGTCAAAGTGAACGCCCATGTACTCCAAGGCCCCCACCCGATTCATCTCTTCTTCCCTGACCAAAGTCACGGCGTGGCCCGGCAGGCCGTTCCGGCCAGTCCGGCCGATCCGGTGGATAATGAATTCCAGGTCCTTGGGAATCTCATAGTTGATCACCAGGCTGACGCCAGGCAGGTCGATCCCCCGGGCAGCCAGGTCGCTGGCGACGACATACTGGTACTGGCCGGCCCGGACTTCCCGCAGGGTCCGCTTTCTTTCCCGTTCGGTAATGCTGCCGTGGATCTTGGCCACCTTAAGCCCTTGCTTAGTCAGGTAGTCAGCCAGTTCGTCAACCATCTGCTTGGTGTTGGCGAAAACCAGGGCCAGGTAAGGCTGGCCCATGGTCAAAAGCTTGTAGACGATCTTCTTTCTGTCCTTGCTGCCGATGTCCAAGAGGTCGTTTTTGATGGTTGGGGCAATAACTGCCGGATTGTCGATCACGATTTCTTCCGGCTTGGCCATGTACTTGCGTAAAAAGTTGGTCAGCTTGACCGGAATCGTGGCTGAAAAGGCGGACATGACCACGTCCTTTGGCAGGCGGGCGGCAATCTTGTCCACATCGGCCAGGAAGCCCAAGTCCAGGGTCATGTCGGCTTCGTCGATGACAAAGTTCTTGACCTGGTCCAAAAGCAGGATCTTCTTGTCAGCAAAGTCCAAAAGCCGGCCCGGCGTAGCGATAACCAACTGGGGCTCGTTCTGTTCAAATCTGGCGATCTGCCGGTCCCGGTCGCTGCCCCCGGCCAGGTGGGCAATGGCGATGTTTAAGCCGGAATTATCCCGCAGCTGGCGGGCCACCCGGTAGAGCTGGTCAGCCAGTTCCCGGCTGGGAGCCGTGACGATGGCCTGGACATAGCGGGCGTCTTCATCAATGGCGTTTAAAATCGGGATCAAGTAGGCGTGGGTCTTCCCGCTCCCCGTAGCCGCCTGGACGATCACGCTTTCGCCTTTCAGCATGGCCGGGATGACTTTCTCCTGCACCGGAGTCGGTTTAGTAAAGCCGATCTTGGCCAGGCCCTGGCGGATTTCGCTTCTTAAGCGGGTATCAGTAAAAATGTTATTCATGGTCTTCCTTGTATTTCTTGGTTACTTCAACTAATTCCTGGAAAATCTGGTCGATTTCCACCTGGTCATGGGCCGTTGCCCCAGAGGCTAATTCATGGCCGCCACCGTCGTGGGCTTCAGCCAGCTTGTTGATGTGCGGACCCTTTGACCGGTAGTGGACCCGGTAAGTACCGTCTTCTTTTTCCACGATGACCAGCCAGGTCAGAATCCCCTTGATCCGACCCGGGGTTGAAACAGTGACTGAAGCTTGCGGCTGGGTAACGCCCAGGGCCTTTAAGTCAGCCTGGCTAATTACGGCGATAGCGACCAGGCCGCTTTCGTCCAGCTGCATTTTCTCCAGGGCCAGGCTCTGCAGCTTGGCCTGCTGGAAGGTAACTTCACTTTCGTTTCTGGCAATTTGGGAGATGTCAATCCCCGTCTCCATCAAGCGGGATACTACTTCGAAGGTGTGGGCGCTGGTCGCGTCGTACATGAAGCGGCCAGTGTCACCGACAATACCGGCGTAGAGGGCCAGGGCAATTTCCTGGGTAAGGGGCAGGCCTTCTGCTTCGATAAAGTCAGCGATGATTTCACAGGCAGCAGCGGCTTTTGAGTCAACGTAAGACATGTCAGCATATGGGTCAACATCCGGGTGGTGGTCAATCTTGATCAGGTAGTCCCCCAGCCGGTAGCGCTGGTCAGAGATCCGCGGCGTGTTGGCCGTGTCAGTCGTGATCACCAGGGCACCTTGGTAGTCTTCATCCTTGACTTCGTCCATGGTGTTGATCCAGTCCAGGTCACCGACGTCATTTTCCCCGGTGCAGAGAATCTTCTTGTCCGGGAACTGCAGGCGTAGGCTCTTGGCTAAAGCAGCTTGGGAGCCGATAGCGTCCGGGTCTGGATTGGTGTGCCGGTGGAGGATGATGGTTGGATATTGCTTAATCTTACTGAATATTTCGTCAAAAGTGTTCATCGCGGGGTCCTTTCTGCCTTATGAGTTCAAAATTTTATTTTAGCAAAAAATCAGCCTTTTAGCTATTCATCTGCAAAAAGACTGATTTCCTGGTAATGTTTTTCTTCAAGTTCGCCGGCTGACAGGCCCAAGAGGCGGATGCCTTCAGCCAGGAATTCCGGTTCCCGGGCCAGGAGCTCCTTGGCCAGCTGGTAAAAGACTTCCGGGTCACTGGTCGGCTGGATCTGCTGCCGGCGGGTGATAGTTTTAAAATTGCGGTCGCGGACCTTTAAAACGACCACCCGGGCTAAAAGATTTCTCCCCTTTAGTTCAGCCGCCACCGTCTGGCTGAAGTCCTTTAAGTAGGCATCAGCCCGGTCAGGGTCATAGATTACCGGTTCAAAAGTCCGCTCCTTGCCCAGGGACTTGCGCTGCCTGGAGGCTTGGACGGGGCTTAAGTCAATGCCATAAGCATGCAGGGCCATGTAGTAGCCGGACTTCTTATAGTCTTTTAAAAGGCGGCTGAGTCCGTAATTTCTGATGTCGCGGCCGGTCAAAACTCCGGCTTCCTTTAGCCGCTCCTGGGTCTTCTTGCCGATGCCGGGGAATCTCTTGATCTCCTGCCTGTCTAAAAAGTCCTGGACCCGGTCCGGGGCAAGATAAGTGCGGCCAAAAGGCTTGGCGTATTCTGACCCCATCTTGGCCAAAAACTTGTTGTAGCTGACCCCAAAAGATGAGGTCAAATGCAGCTGGCGGAAGATCTGCTCTTGCAAATAGCTGGCCAGCTCCAGGGCGCTTTTGCCGGGGATCTTGCTCCGGGTCACGTCCATATATGCTTCGTCCAGCGCCACGCTTTCGATCTGGTCGGTCAGTTCGTGCATTAAGCCGTGCACTTGCCCGGAAACCCGGTGGTATTTCGCGAAATCGGGTTCAACGAAAACCAGTTCTTCAGCTGGAATCAGCTTGACGGCTTGGGCGGCCGCCATGGCTGACCCGACCCCGTACTTTCTGGCCCGGTAGTTGGCGGTGGCGATCACGCCATGGCCGCCAGTTTTCCGGGGGTCCTGGGCAATCACGACTGCCTTATTAGCCAATTCCGGCCGGTCCCGCATTTCAACTGAAGCATAGAAAGCGTCCATGTCCAGGTGGATGATCCGGCGGGAAAAATCGTTCCTGGGCAAAAGGTCAATATCGGCCATTACTTGTAGATCCAGCCATCCTCAGGATCCGCGAAGATCTTGCTGGTATCCGGCCCCATGCCGTAAGGACGGTACTTGACCGGCTTTTCGCCGGCAGCGTTTTGCTTTTGCCAGGCAGCTTCAACCGCGTCCACGAATCTCCAATACTGCTTCAGTTCTTCCCACTTGGTAAAGTTGGTGGAGTCGTTGACAAAGACGTCGTGGATCAAACGTTCATAGCCGTCTGGCACCTCAGCTTGTTCATCTTCGCTGTAGCGGTAGCGGAATCTTTCAAGACGGAGGCCACCGCCAGCAACAATCTTGCCGTTTAAGCGGAAGTAGACCTGGTTGACCGGGTCAATCTCAATAGTCAGTACGTTGGTCTTAGCCTTATCGCCATACAGGCCAGCTTCATCCTTAAAGACCACGTCCACCCGGGTCTTCTTTTCCCGCATTTCCTTGCCAGTTCGGAAGTAAACCGGCACGCCAGCCAAAGGTCCCTTACTAAATTCCAAACGGCCAGCCACGTAAGTTTCCGTCTTGGAGTCTTCCGCCACGTTCGGCTCTTTGACATATTCAAAAGTGGTTTCCGTCCCCAGATACTGGCCGCGGATGATGTTTTCGCTGACTGCTTTTTCATCTGGGATAACTAAAGATGCCAAAAGGTCTTCTTTAGCCGCGTGGATGGCCTTGTCAGACAAGTCTTTTGGCTCCGGCATGGCCAAAAGGGTGATGATCTGCATGATGTGGTTCTGAACCATGTCCCGCAGGGCACCGGAGTTGTTATAGTAGCCGCCCCGGGCTTCAACGCCCAGCCGTTCAGCCAGGGTAACCTGGACATTTTTAACCGCGTCGGCGTTCCAAATCCGCTTAAACAAGGAGTTGCCAAAGCGCAGAGGCAGGATATTCTGCACCATTTCCTTACCCAGGTAGTGGTCGATCCGGAAAACCTGGTCTTCAGCAAAAGAATTGCGGATCTGCTGGTTCAAGACTTCCGCACTGGCCAGGTCAGTCCCAAATGGCTTCTCAACCACTAGGCGGTTGAAGCCGGTCCCGGTCAAATGCTGGTCGGCAATGTGTTCGGTAATCGTCCCAAAGAAGCTTGGGGCCATGGCCATGTAGAAGATGCGGTTTCCGCCGCATTCATAGCGCTCATCCAGTTCCTGGGCCAATTGCTTCAAAGTTACGTAGTGTTCAACGTTGGTTACGTCGTGGGACTGGTAGTAAAAGTGGCTGGCAAATTCCGTCAGCTGCGCTTCGTCGACCTCTTCCCAGCTTTCATGAACAGCTTGGGCCACCTGCTCGCGTAGGTATTCATGCGACCATGGCCGCCGGGCAGTGCCGATAACGGCAAAATTGTCGTGAATGACATTCCGGCGGTAGAGATTGAAGAGGGCCGGATAGATCTTGCGGTGGGCCAGATCGCCGCTGCCGCCGAAAAGGATCATTACTGTTGGAATATTGTTCATTATAGTACCTCAAAAAAATCAACTACTAACTATTTTAGCAATTTATCGACGCAAGCAAAGCAAAAACGTCCCCAAAGGAACGTTTTGTTCGTTTATTCTTGACTGTCTTTGTCTTCTGCTTCTTCAGTCTTGGCTGCTTCAGCCTTTTCTTCTGCTGGCTTGGCTGCTTCAGCTTCACTTGCGTCAGCTTGCTTCAAAACAGTTCTGACTGCCAGTCTGGAGAAGGTTAGGTAAATGCCGTCAGCGTCCAAGACGATAGTCTTGTCAGCATCGTTGATTGAGTCGATCTTGCCGCGCAGGCCGTCGACCATTTCCACGCTGTCGCCCTTCTTGAGCTGATTCATCATTTCCTGGCGCTGCTGTTGCTGCTTCTTTTGCGGCTTGATCATCGTAAAGTAAGTAAAACCAAACAAAACGGCCAGCATAACCAACATGAAGATGTTGCTGCCAGCACCGCTGTTGGCTGCGGCTAATGCAAAAGTATTCAAATTATCCACCTCATAAAATTTATTTGCCGTTTTTTGGCAGATGCCAAAAGGCTTTAACGAACATTATACTGTAAACCAGATTTTTTTGCTATTCTTCCTCACCCGGCAGGGGCAAATTCAGCTGCTGGTAGGCCTTCTGGGTCACTACTCGCCCCCTTGGGGTCATGACGATAAAGCCGTTTTGCAAAAGATATGGCTCATACAGGGACTCGATCGTCTCCCGGTCTTCCCCGATATTGGAAGCCAGGGTCCGGATCCCGACCGGGCCGCCCCCATAGCTTAAGATCATGGTTCTCAGCAGCTTGCGGTCAGTCTGGTCCAAGCCGGCACTGTCGACTTGCAGCTGCTTTAAGGCCATGGCCGTGGTTTCCAGGGAGATTTCTTTTTCTCCCTTGACTTCCGCAAAGTCCCGCACCCGCTTTAAAAGGCGGTTGGCCACCCGGGGCGTTCCCCGGGACCGGCGGGCCAGTTCATGGGCAGCTTGCGGGGAAATCTTGGTGTGGAAGACCTCGCTTGAGCGGAGGATGATTTTTTCCAAGTCTTCGACCTGGTAGTACTGCATGTGCTCAACGATCCCGAAGCGGTCGCGCAGAGGCGCCGACAACTGCCCGGCCAGGGTGGTTGCCCCGATCAAGGTAAAAGGCGGCAGAGGCAAGTGGATGGCATGAGTCGTCTGCCCTTCCCCAACCACGATATCGATGTAAAAGTCTTCCATGGCTGAATAGAGGACTTCTTCAACCGGCTTGGCCAGGCGGTGGATTTCGTCGATAAACAAGACATCCCCCGGCTCAAGGTCAGTTAAGAGGGCCACCAGGTCCCCGGCCCGCTCGATGGCCGGACCGCTGGTGCTTTTTAAATTGACCCCCAATTCATTGGCAATAACAAAGGCCAGGGTAGTTTTACCTAAACCTGGCGGGCCATAAAGAAGGACATGGTCCAGGGCCTCGTCACGCTGGCGGGCGGCCTGGATGTAGACTTCCATGTCCTTTTTGACATGCCCTTGCCCGATATACTGGCTGAGCAGCTGGGGCCGTAAGGACAGTTCCACCGCTTCCTCGCCTTCGGCGGCTTCCTGGCTGGTCAAATGTTCTTCCGTCATTTCCCTTTCCCCCTTATTTCTTCAGCAAAAAGCCCAGCCCCTGCTTGATGTATTCGTCAGCGGACATTTCCGGCAGTTTCTTCAGTTTCGGCTTGATCCGGTCAACTTCCTTTTGACTGTAGCCCAAAGCCCCAAGGGCCAGGAGGGCGTCTTCCAGGGCTGGGAAAACAGACTTAACCGGTTCATCTTCGGTAAAGAGGTTTTCCGCCACATAGTTGCCCATCTTCCCCCGCAAGTCCAGGACGATCTGGGATGCCGTCTTCTTGCCGATCCCCGGGAAACGGGTCAAGTAGGAAACTTCGCCGCTCTCAATGGCGGAAGCCAGGGCTCCGTTGTCTTCAGCGGCCATGATGGCCAGGGCAGACTTAGGACCGATACCGGAAACTTCATTAAGCTTGTTGAAGAGGACCTTGTCTTGCTGGCTCTTGAAGCCGTAGAGGGTCATCCCGTTTTCCCGGACGACCTGTTCAACGTAGATCCGGGCCTTGTCCCCATCTTTATAGGCATAAGGGGTCGGGGTCAGGATCCGGTAGCCGATCCCGGCCACTTCAATCACGACATAGGCCGGATTAACCACGGTAATGGTGCCCTCAAAATACTCGTACATCTAGTTTTGTCACTTTCCTTTCTTAAAAAGCTTGCTTAAATCATTCTGGCTCAAGCGGACGACGGCGAGCTGGCCGCTGGCATCCCGGTAAGGGTCGCTGGCCGTCTGCAAACGGAGCAGCAGATCGGCGGCTTCAGCGCCGGTTAAATTGACCCGGCGGGAAACATTGCTTTCCGCCGCCTTAGCCGCCACCAGCTTCAAGAGACTTTTTCCATCGTTTTCCCGGCTGGACAAGAGCTGGTCCAAGAGCTCCCTGACCTGCACGGTGACTTCCCCTTTCAGCCAGGTTGGGTAAGAGTGCATCAAGAGGGTGTTCTGGCCAAAGTCTTCCATCTCCAGGCCCAGCTGGCGCAAAAGGGGCAGCTGGTCTTTTAATTTCTGGTAGTCATAGACGCTGAAGTCAAAGACCAAAGGCTCAAGCAAGCCTTGCTGGTAGTTCTCGTCTTTTTCCAGGCTGGCTAAAATCTGGTCGTACTCCAGCCGTCTTCTGGCCGCCACCTGGTCAATCAGGTAAAGGTCGCCCTCGTGTTCAGCCAGGAGATATCCCCCCATCTGGCCCAAAAGGCGCAGGGCCGGCAGGTGTTGCCTTAGCAGCTGGTCAGCCTTTGACGTGACCGGGCTAGCGGCTTCCTCTCCGCCCGCAAAAGGCGGCAGGGCCGTCTGTTCCTTGACATGCTGGTCCCAGCTCTTGGTTAAGACATATTGGTCATCTTCTCTGACCTGGTTTAAGTCCACGTATTCCGGAGCAGAAGTTTTTTCTTCTTTCTCTTCTTGTTTATTTTCTTTCTTCTCTGCTTTTTCTTTTGTCTCTGTTTCTTTTTTATTAGTTATATCTGTTTTGCCTTCCGGCTCAGCCACCTGGGAGACTTCCAGCTGGAAGTCATCTGGCCGGCGGGTGTCGACCACGTTTGGTTTTAAGTTGAATTCCAATTGGTCCAACTGGGTCTTGTCTTTAAAAGGAGTCAGCTGAAAAAGCGGGCTGGCCTCGTCCTCATCCATTAAAGCCTCAGTCACGGCACTGGTGATCAAGCGGCTGAGCTCTTTTTCCTTGGACAGGCGGACTTCTTCCTTAGTCGGGTGGACGTTGACGTCGACTAAGAGGGGATCAGCCTCAATCGCCAAGACCGCGATCGGGTACTTGCCTCCCAATTTGTTGCCGTAGCCGTCCAAAAGGGCACTGGAGAGCTGGTAGTTCTTGATGTAGCGGCCATTGAGCAAAATCGAGATAAAGTTGCGGGATGACCGGGTCAAGTTTGCTTCTGACACCAGGCCATAGAGGGTAAAGTCCGGGTCCTCATTTTCCACCGTCAGCATTTTTTCGGCGACTTTGCGGCCATAAATATTGGCCACGTCCTGCTTTAAGTTGCCGTTACCGGGCGTTCTGAGCAAGACTTTCCCGTCGCTGGCCAAAGTCAGGCTGATTTCCGGGTGGCCCAGAGCAATCCGGTTGACAATATCCACAATCTTCAAGAGTTCAGTCTTCGGGCTCTTCAGATACTTCAGCCGGGCCGGAGTATTGTAAAAAATGTCCCCGACCGTGATCTTGGTTCCCTTAGCGCTGCCGGCATCTTCCTGGAACTTTTTCACCCCGCCGGCAAAAGCTGCCCGGGTGGCCGTCTGCCCGCCAGTTGAAGTCAAAATTTCCACATGGGCTACGGCTGCGATGGAAGCTAGGGCTTCCCCTCTGAAGCCCAAGGTCGCGATATTGAACAAGTCATGCTCATCTTGAATCTTGCTGGTCGCGTGCCGCATAAAAGCCAGGTCAACCTGGTCCGGGGCAATCCCGCTGCCGTTGTCTTGGACAGAAATCTGCTTTAAGCCCGAATGCTGGACTTCAACCCTAATCCGGCTGGCTTGGGCATCGATCGCGTTTTCGACCAGTTCCTTGACCACGCTGGCCGGCCGCTCGATAACTTCCCCGGCCGCGATCTGGTTGGTCAGATTTTCTGAAAGTTCATGAATTTTCGCCATTATTCTTCCTTCAAGGCCTGCTGCCAGTCAGCTACCAGCTGCATGACTTCCAGCGGCGTCTTTTCATTCAAGTTGACCTGGCTGATCTCGTCTAACAGTTCCTCCTGCTCTGCCTTGAGCGGGTTCTCTTCCACTACTTCCACCGGACTGAAGAGGTCCAGCTGCTGGCGGCTTGGGTTGATCTCCCGGGCCCCTTCTGCTTCCAGGCGCTTGAGCATGCTGGAGGCTTCTCTTAAAACGACCCGCGGTAGGCCAGCCAATTTGGCCACGTGGATCCCGTAAGACTGGTCGGCTGGTCCTGGCAAAATCTTGTGCAGGAAGATCAGCTTACCGTTTTCTTCCGTTGCTCCGACGTGGATGTTCTTTAAGTGCAGCAAGGTTTCATCCAGTTCAGTCAGTTCATGGTAGTGGGTGGCAAAAAGGGTCTTGGCGCCAACCTTGTCATGCAGGTACTTGATAATCGCCCCGGCCAAGGCCATCCCGTCGTAAGTGGCCGTCCCCCGGCCGATTTCGTCAAACAGGACCAAAGACCGGCTGGAAGCGTGCTGGAGGGCCTCATTGGCCTCGCTCATTTCCACCATGAAGGTGGACTTGCCGGAGTAGAGGTCGTCAGCGGCCCCGATCCGGGTGAAGACCTGGTCAAAAACTGGCAGCTTGGCGCTGTCTGCCGGGACGAAGGAGCCGATCTGGGCCATGATGGCGATTAAGGCCAACTGCCGCATGTAGGTGCTCTTACCAGACATGTTTGGCCCCGTGATGAGGTAGATGCTGGTGTCTTCATCCATGACTAAGTCGTTAGGGATGTAGGAGCCAGCTGGTAAAACTGCCCCAACAACCGGGTGGCGGCCGTTCTTAACGGCGATTTCGTTTTTGCTGGAAAAACTTGGCCGGCAGTAATTTTTCTCTTCAGCATCCTGGGCAAAGGCCACGAAGACGTCCAGGGCCGCCAATTGCCGGCCCAGTTCCTGCAAGTCCGGGATATGGGCCTTGACAGCCTCTCTCAGCTGGCTGAAGAGCTCGTATTCCAGGTCAGTTGACCGGCTCTCAGCTTCCAGGATCAAGTTTTCGTGTTCCTTTAATTCCGGGGTAATGTAGCGATCAGCATTGGTCAGGGTCTGCTTTCTGGTGTAGCGGTCCTGGGGCACTTTAGCGACATTCCCTTTGCTGACTTGGATGAAGTAGCCAAAGACCCGGTTGTAGCCGATCTTCAGATTGTCGATCCCGGTTCTCTGCCGCTCTTCCATTTCCATCTGGGCTAGCCACTTTTTCCCGCCATTCATGGCTTCTCTGTACTTGTCCAGGTCCTCGCTGACCCCGGCCCGGATAATGCCGCCGTCTTTAGCCGAAATCGGCGGCTGGTCAACTAAGCAGTTAGTGATGCTCTCAGCAAGTTCACTTTGCGGGTCGATCCCCTGCCCGTATTTTTCCAGGTCTGGATTGCCCGATTCGACCAGGGTCTGGATGATCAGCTTGGTCGCCTCCAGGCTTTTCGCCAGTTGCAAGAGCTCACGGGGGTTGACATTGCCAAAAGCCACCCGGCCGCTCAACCGTTCCAGGTCATAGACTCCCTTCAAGGAGTCAACGATATTTTCCCTGGTAAAGTAGTCGTCCAACAGGGCTTGCACCATCTGCTGGCGCTGCTTAATCCGGTCTAAAGACAAGAGCGGCCGGCTCAGCCACTGCTTTAAAAGCCGGCCCCCCATAGCCGTGGTGGTCTTGTCCAAAACCCAGAATAAAGAGCCCTGCTTCCTGCCAGTCGTGGCTGACTGGGTCAGTTCCAAATTCCGCTGGACAGTGTTGGCCATCTGTAAATACTGGCCGATTTCAAAGCTTTCCGCCACTTGCAGGTGAGCCAGGCTCCGCTTTTGTGTGGCCAAAAGATAAACGACCAGCTGGCGGACGGCGGCTTTTTCCATAGAGTCAGTCAGTTTCTGCTGGACATAGGAAATTTCCGCGTGCTCGCCTTCCAGTTCTGCCGGTTCAGACACGGTGATGTTGGCCTTTTGCAGTCTGTCCCGGTCGCTGGCGCTAAGGTTGCCAGCAAAAACGACTTCCCGGGTTCTCAAAGACAGGAGCTCGTTGACCACCTCGGCGTAGTGCTTGACGTGGGTGACAAAAATCTCCCCGGTCGACAGGTCGCTGTAAGCCAGGCCATAGCCGCCGGCCTTTTCAACCACGCTGGTCAGGTAGTTGCTTTCCTGGCTGTCGTCTGGCCCCTGGGCCATCTTGGTGCCGGGAGTAACCAGCTGGATGATCCCCCGCTTGACCATCCCCTTGGCCTTCTTCGGGTCTTCCAATTGCTCGCAGATGGCCACCTTGTAGCCTTTTTCCACTAAAGTGTTGACATAAGAATCAACCGCCATGTGGGGCACCCCGGCCATGGGAATCGGGTTTTCCGACTTATTTGACCGGTGAGTCAGGGTCAACTCTAAAATCTGTGATCCCTTGATGGCATCGTCTTCATAGAGTTCGTAAAAATCTCCCACCCGGTAGAAGAGAAAGGCATCCGGGTACTGGTCTTTAATCTGGTAATATTGCTCCATCATTGGAGTCGTGGCTTTTCTTGGCATAAAAACTCCCTCGCTTATCGTATGCTTTCAATTATTGCTAATTTCCCAGGATTTTACAACTCAATGTATAAGAAGCCTACTATTACGGCCTTTTTCGAAGTTTACGATAATATTTTTTGAGTTGTAACTTTAAACTCAACGAAATCCTCTAAAAGGTTGGCATATCAGGTGATAGAGCACTTTGAGTAGTAATTTATGGGAAATTAGCAATTATACAGCATTTCGCCGGCCTACTTGCCTTGTCTGCACGCAAAAAGAGCCCAGCCAAAGCTGGACCCTTCTTAAAGTAATTCTTGTGTGTGTTAAATTTCAGTATTTTACATCATGCCTGGTTGAGCTGGAGCAGCTTCTGGCTTGTCTTCCGGAATTTCTGCCACAACTGCTTCAGTGGTCAGCAAGAGGCCGGCGATTGAAGCAGCATTTTGCAGGGCTGACCGGGTCACCTGGGTTGGGTCGATGATCCCTTCGTCAATCATGTTGACATACTTGTCTTCAGCAGCGTTGTAGCCGACTTCCGGGTCAACCTTGCGCAGGTGGTCAACAACGACTGAGCCTTCTTGGCCGGCGTTTTCAGCGATTTGGCGAACTGGGGCAGTCAAGGCGCGGGCCACGATGTTGATCCCGGTTTGTTCGTCATCAGTGTCACCCTTGGTTGCCTTAACAGCTTCTTCAACGTTAACCAAAGCAGTACCACCACCAGCTACGTAGCCTTCGTCAACAGCGGCACGGGTAGCGTTCAAGGCATCTTCTACCCGGTAGCGGCGTTCCTTGAGTTCAGTTTCAGTAGCAGCACCGACGTGGATTACGGCTACGCCGCCAGTCAGCTTGGCCAGACGTTCTTGCAACTTCTTCTTGTCGAAGTCAGAAGAAGTGTCTTCGATTTGCTTTCTGATGGTGTCAACCCGTTCTTGGATGGCTTCCTTAGCGCCAGAGCCGTCAACGATAGTAGTTGAGTCCTTGGTGATAGTTACCCGGCGGGCTTGACCCAATTGGCTGAGCTGGGTGTCCTTGAGTTCCAGGCCCAGGTCTTCAGAAATTACCGTACCGCCAGTCAAAGCAGCGATGTCAGCCAGTTGTTCCTTGCGGCGGTCACCAAAGCCAGGAGCCTTAACAGCAACAACGTTGAAGGTACCGCGGATCTTGTTCAAAACAAGAGTTGGCAAAGCTTCGCCAGTCACGTCATCAGCGATGATTAGGAGTGAGCGGCCTTGTTGCACGATTTCCTGCAACATTGGCAAGATGTCCTGGATGTTGGAAATCTTCTTGTCAGTGATCAAGATGTATGGGTTTTCCAAGTCAGCTTCCATCTTGTCGTTGTCCGTTACCATGTATTGGGACAGGTAGCCGCGGTCGAATTGCATCCCTTCAACCACGCTCAGTTCAGTTTCGATCCCGCGGGAGTCTTCAATGGTGATAACACCGTCCTTGCCGACCTTTTCCATGGCTTCAGCGATCAAGTCGCCGATTTCCTTTGAAGCACTTGAGATTGAAGCAACTTGGGCAATTTGGTCCCGGCTGGAAACTTTGTGGCTGTTCTTGTGCAATTGGTCAACGGCTGCTTTGGTGGCCTTTTCAATCCCGCGGCGAATGCCAACTGGGTTAGCCCCGGCAACCACGTTCTTCATCCCTTCTTGCACGATGGCTTGGGTCAAAACAGTGGCCGTGGTCGTACCATCACCAGCGATGTCGTTGGTCTTTGAAGCAGCTTCAGCAACCAACTTGGCCCCTATGTTTTCGTAGTGGTCTTCCAGTTCAATTGCCTTGGCGATGGTCACGCCGTCGTTGGTAATCGTTGGGGCGCCGTAGCTTTGTTCCAAAACAACGTTTCTTCCCTTAGGCCCCAAGGTCGTCTTGACAGTGTTAGCCAGCTTGTTAACCCCGTTTAAAAGTGAACGTCTTGCGTCTTCTGAAAACTTGATGTCTTTTGCCATTTTTTAATTCGCACTCCTACCTTAAATTACTTAACGATTGCCAAAATGTCTTTTTCATGAAGGACTAAGTATTCCTTGTCTTCGTACTTGACTTTGGTGCCAGAATACTTATCGTATAAAACTTCATCGCCCTCTTGGACGGTCATAGGAAGCTTGCTACCATCTTCCGCGTACAGGCCGCCGCCTACGGCAACAACCTTGCCTTGGGTTGGCTTTTCCTTAGCGTTGGAAGCAAGTACGATACCACCAACAGTTTGTTCTTCAACTTCTTTAACTTCAACGATCACGCGATCTCCAATTGGTTGTAACATGTTATTCCCTCCTAAGACTAATTGTCTTTAGAAATTCTTTAGCACTCATCTTGATCAAGTGCTAACTTACAACTATGATAATAATCCCTTTTTCCCAAAAAGGCAAGAGAAAAATAGCACTTTTTAGTCGAGAGTGCTAAAAAATGCTGTTTTCCTTATTTATTCGTGTTGTTCATGGCCTTTTTCCGCTCTTCCAGCTGCTTTTTGATCAATTCGTCAGAGTCAAGGAAGTAGATCAAGGTCTGCAATTCGGTAGCCAGGTCGACGTTTTGAATCCGGACCCCGTTTGGGGCGGACAGGCGGATCGGGGTAAAGTTCATGATCCCCTTGATCCCGGCTTCGATCATTTCATCAGCCGTATTCTGGGCCGTCGCCTGGGGAACGGTCAAGATAGCGATCCGGATCTGCTGGTCAGCGATCTGCTGCTTCATTTCATCCATTGAGTAAACCGGGACCCCCTGGGTGATCTTGCCGGTGATTTCCGGGTTGATGTCGAAGGCGCAGGAAATTCTGATATTGTTGCTGCGCTTGAAGTTGTAGTTCAAAAGGGCGTGACCCAGGTTGCCGACCCCGACCAGGGCAACGTTGGTCAAAGTGTCCTGGTTGAGGATCTTCTTAAAGAAGCTGAGCAGGTTCTTGACGTCGTAGCCGTAACCCCGCTTGCCCAGGGCACCGAAGTAAGAAAAGTCCCGGCGGATTGAAGCGCTGTCGACTTGGACGGCTTCCGCCAGTTCAGTTGAAGAAACCTTGTCTTTGCCTTCATCATTCAAAAGCAGCAAGTAGCGGTAATATAGTGGCAATCTTCTGGCAGTAGCCTTGGGAATTCTAAATTTGTTGTTCATAAAAAGATGCCTCCAGTTTTTATTTTGTGAATGTGAATCTATAATCAATCATCTACTATGATACCCATTTTTAACAGTCCTTGGCAAGTCGTATTTTCACAATATTTGCCGTAAAATCCTTTTTATTGAACTTTTTCACAAATTGATTAAGAGATCAGCGCTTCCGGCATTTTCTTTAAAGAAAAAGGAAGGAAAAAAGAAGCGGAAAAGAAAGGGAAAATCAGCCCGGCTGACGGCAGGCAAGCCTTTTGCATGGTACAATGTTTCAAGGTGAAAAAATATGATAATAGCACAAGGACACAATTTGGAGCAACGCTTCGGGGCTGCTCCTATATTCAGCAAGGTAAACTTTTCAATTGAGAACAATGCCCGGATCGGCCTGGTCGGGCCAAACGGGGCCGGGAAAACGACTCTTTTAAAGATCATGACCGGCCGCCAGGAAGCCAGCCAGGGGGAATTTACCGTCAACAAGGGGATCGAGCTTGGCTACATCGCCCAGGAGCACGACTTTGACGAAGAGAAGTCGATCTGGGAAGAGATGCTGACGGTCTTCCAGCCCTTGATCGACCAGGGCCAGCAGCTGGAGAAGCTGCAGTACGCCATCGCCGACCATCCGGAAGACGAAGACCTTCTCCGCCGCCTGGACCAGGCCCAGTATAATTTTGAACAAGCCGGCGGCTATACCTACCAGGCCGAAATCAAGAGCATGCTCAACGGCTTCAACTTCCCGGAAGCGACCTGGAACAAGCAGATTGCCAGCCTGTCCGGCGGGGAAAAGACCCGGCTCAGCTTCGTCAAGCTCCTTTTAAAGAAGCCCCCGCTCCTGCTTTTGGACGAACCGACCAACTACCTGGACCTGGATACTTTGGACTGGCTGGAAGCCTTCCTTAAGAACTACCCAGGCGCCATCCTGACAGTTTCCCACGACCAGTACTTCTTAGACCACCTGGCTACGCAGATTTTTGAACTCCAGCATGGGGAACTGACTGTCTTTAAGGGCAACTACAGCCAGTACCTGGCGCAAAGAGAACTGCGCGACCAGCAGCAGGAAGCCGCTTATGAAAAGCAGCAGGAAGAGATCAAGCGAGAAGAAGAGTTCATCCAAAAGAACATCGTCCGCGCCTCCACCACCAAGCAGGCCCAAAGCCGGCGCAAGGCCCTGGAGAAGATGGAACTGGTCGACCCGCCAAAGCACAAGTCAAAAGTCCGGATCAAGTTTGACAGCGCCCGGCCGTCAGGCAAGGAAGTCTTGATCTTGAAGGACCTGGCCGTTGGCTATCCAGACAAGACCATGCTTAAGGACATCTCCTTCCAGATCAATAAGGGTGACCGGGTGGCCATCATTGGCCAAAACGGGATCGGCAAGTCCACCCTTTTAAAGACCGTCATGAAGCAGCTGCCGGTTAAGAGCGGGGCCATCAAGTACGGGGCCAGCCTGGACATCGGCTACTATGACCAGGAACTGCAAGGGATAGACTATTCTAAGACTGTGATCGACACCATCTGGGACCGGCATAAGGACATGAACGAAAAGGACATCCGCTCCATTTTGGCCAGCTTCCTCTTTACCGCCAAGGACATCGACAAGAAGGTCAGCCAATTGTCCGGGGGGCAAAGAGCCCGCTTGACGCTGACCGTCTTGTCCATGGAACACAACAACTTCCTTTTGATGGACGAACCGACCAACCACTTGGACCTGGACGCCAAGGAAGTTTTGGAAAAAGCTTTGGCCGATTACGACGGCACCCTCCTCTTCGTTTCCCACGACCGCTACTTCATCAACGAACTGGCCAACAAGATCGTCGTCGCTAAAGACGGCCAGGCCAAAATCTATGAAGGCAACTACACTTACTACTTGAACGAAAAGGCCAAGGAAGAAGCCGCTGCTCAAGAAACAGCCGCGCAGGAAGCGCCAGTCGTCAAGGCAGTCAGCGAAAGCAAGTTCTCCTACCAGGAGCAGAAAAAGCGGGACTCGGAAAAGCGGAAACTGGAGCGTCAGGTCGCCCAGGCAGAAAAGGACCTGGAAGAGCTGGAAGCAAAAGAACAAGAGATCCAGGAAGCAATGGCTGACCCGGCAATTGCCGCCGACTTCAGCAAGCTGGGGCCTCTCCAGGAAGACTTGACCGCTGTCCAGGAAAAGATCAGCCAAGTTAGCCAGGCTTGGGAAGATGCCTCCTTGGCCCTGGAAGAATTTTAATTTTAGGCAAAGGAAAAGCAAGTCCAGTAACGGACTTGCTTTTTTGTTGCATTTTCGTCTTGCTTTTTACTTGTAATCCTCAGCGTAAGGCAGTTCCATTGACGGGTCCGCGTCCAAGGTCAAGTCGGCAAAATTACCGGCTAGGTACTGGTTGTAAGCGGCAGCCCCGATCATGGCCGCGTTGTCCCCGCAGAGCTTAAGCGGCGGCAGGATAACCTTCGGTGCCTTTTCCAAAGCAGCGATCTCCTTGTTCATCCGCTCTCTTAAGCCCAGGTTGGCGGCAACCCCGCCCCCCATGATGAAGGTCTTGGGCTGGTACTGCCGGATGGCCCGCACGGTCTTTTCAGCAAGAACGTCCACCACGGCCGCCTGGAAGCTGGCTGCCAGGTCATACTTATCCAGCTTTTCGCCGATTTGGTCAGCATGGTGGCAGGTGTTGATAAAGGCACTCTTGAGGCCTGAGAAAGAGAAGTCGTAATTATCTTCATCGATCATGGCTCTAGGGAAGCCGAAAGTATCCTTACCCTGGTGGGCCCACTGGTCGATCGTCTTGCCGGCCGGGTAGTTGACCCCCAGGACCCGGCCGATCTTGTCGTAAGCTTCTCCGGCCGCGTCATCGCGGGTGTCGCCCACGATTTCAAAGTGGGTCGGGTCTTTCAACAAAGCAATTTCGGTGTGGCCGCCGGAAACCTGCAGGGCCAAGGCCGGATACTCAACCGGTTCAACCAACTGGGCAGCTGAAATGTGGCCCATGATATGGTCCACCCCAATCAAAGGCAAGCCGGTCGCCATGGAGGCCGCCTTGGCCGCGTTGATCCCGATCAAAAGGGCTCCGACCAGGCCTGGCCCGTGGGTTACGGCGATGGCGTCCAGATCTTCCCAGCTGACCTTGGCTTCTTCCAGGGCTTCCCGGGTAATCTGGGTAATCACTTCGATATGGTGGCGGCTGGCCACTTCCGGCACAACCCCGCCAAAGCGGGCATGGCTCTTGATTTGGGTAGCAACGACCAGGCTTTCGATCTCTGACCCGTTCTTGACCACGGCAGTCGAAGTCTCGTCACAGGAGCTTTCAAAAGCTAAAATGCGAATGTCTTTCTTTTCCTTCACAGTCAGTTCTTCTTTCTTAGATGGCAGATCATGTTCAAACCGTCGCTGTCCGGACGGTCATCATTATCGTAGTAGTTCTTGCGGACAAAATTGTCTTCAAAGCCAAGCTGCCGGTAGAGCTCTTGGGCCTTCTTGTTTTCGACCCGCACTTCCAAGGTGACCGCTTTAAGGTCAGCCGACTTGGCCAAGTCTAAAACCGTCTGAACCAGGTAGCTCCCGATCCCCTGCCCCTGCTCTTTCGGCATCACCGCCAAAAAGGTGATGTGGGCTTTAGAGAGACTGAAGCGGCAGCCGATGGCTCCGACCAAAAAATCCCCCTCAAGCAAGAGCAAGTATAAGGAATCCCGGCGACGCAATTCTTCGGCAAAGACTTCCCCGTCCCAGGGCCGGCGGCCGGCATAAACTTCCTTTTCTAGCAAAAGGAGGCGGGCAAGCTCGCCTGCCTCCGCCTTCTTTAAACAGTATTCATGGCCGCTGATGCTGATTGCCCGGGGGGCAAACTGCACCAGGTCATCTTTAAAGAATAGTCCCATAAGTCTAAACTTCTTCTACATATGCACTGTCTGCTTCAAATTCCTGGCCGGTCTTCTTTGCCCAGTCATACTCAGCCTGCGTCCGGCGCAGATAGTTCGGCACGGCCTGGTCCGGATCAAGGACGGGAGCACTTACCGCCAAGCGGCCAATTGCACCGGCGTGCAGAAGGTTCTCTTCCCCTTCAGCCAGGCGCAGGTCCTTGTCAGCCAGCCCTGCCGCGATTTCTTCCTGGTACTTTCTGAAGTCGCTGCCGACAAAAATCACCTTCTGGTCAGGCAGGGCCCCTACTTGCTCTAAGAGCTCGCTTAAGTGGTAGTGACCGTCTGCAATCACGGCTTCCTTGCCCCGGTAAGCACCGGCAAAGAAGTTCTTGTTTCTGGCGTCTAATGCCGCCACGATCAAGGCATCTTCACCGGCAAAGTTCTGGGCCAGGGCCTGTAAAGTTGAGACTCCAACCAGCTCTTTATTCAAAATGCTGGCAAACATCTTAGCCGTGGTCAAGCCGACTCTGAGGCCAGTATATGAACCAGGCCCGATCGCCACCGCGAAGCGGTCGATGTCTTTTAGAGACAGACCGTTTTCTGCCAGCAGGCTGGCAATATCCGGATCAAGGTCAACGCTGTGGTTGCGCTGGTTTTCCTCGATCTTTTCGCTGACCAAGTGGTCAGCTTCATTCAAGGCAATGCTCAAATCGCTCGTTGCCGTCGAAATGCTTAAAATCTTCATGCTCTAACTTTTATTTCCTAAAATTTTCTACTCAGCTTGACCCGGGACAGGCCTTCCAGGATAAACCAAACCACGACCATATGAATCCATGGAGTGATCATTTCCTTGAGGATCCGGCTGGACAAGGCGACCATAAAATTGGTCCCGCCCAGCATGCTGACCCAAAGGGTGTTCAAGCCGATGTAGCAGATTACCGTGACACAGATTACGGACGCGATGACCCGCCAAATCTGGATGGGCTTCTTGTACAAGAAGAAGCCGTAGATCATCGACTCCAAGGCCGCGGTCAAGGTGAAACCGATAAAGAAGCCGCCCAGGTTGCCAAAAATTGCGGATGAAACCAGATCGCTCAAGGCACCGCCGGCAAAGCCCCACCAAGGCCCGAACAAGTAGCCCAGCATGACGCTGCCGATAAAGCCCAGGCCCACCTGCAGGGTGGCATCCCCGACCTTAAACTGTCCCAAAACCACCTTGATGGCGATAACCATGGCCAGTAAGACCAGCTCCCGCAACTCCAGCTTGCTGCTGACTTTTGATTCACTTTTCACAAGACTGTCCTCCTAAAAAATGGCTTATCAAATCGCTCGTTGCCGTCGAAATGCTTAAAATCTTCATGCTCTAACTTTTATTTCCTAAAATTTTCTACTCAGCTTGACCCGGGACAGGCCTTCTAGGATAAACCAAACCGCGACCATCTGAATCCATGGAGTGATCATTTCCTTGAGGATCCGGCTGGACAGAGCGACCATAAAGTTGATCCCGTACATCATGCTGACCCAAAGGGTGTTCAAGCCGATGTTGCAGATTACCGTGACGCAGATTACGGACGCGATGACCCGCCAAATCTGGATGGGCTGCTTGTACAAGAAGAAGCCATAGATCATCGGCCCCAAGGCCGCGGTCAAGGTGAAACCGATAAAGAAGCCGCCCAGGTTGCCAAAAATTACGGATGAAACCAGGTCGCTCAAGGCACCGCCGGCAAAGCCCCACCAAGGCCCGAACAAGTAGCCCAGCATGACGCTGCCGATAAAGCCCAGGCCCACCTGCAGGGTGGCATTCCCGACCTTAAACTGTCCCAAAATCACCTTGATGGCGATAACCATGGCCAGTAAGACCAGCTCCCGCAACTCCAGCTTGCTGCTGACTTTTGATTCACTTTTCACAAGACTGTCCTCCTAAAAAATGGCTTATCAAAAACAACTAATTCAGTCTCTATTAAAGCACATTTTTTGCCAGTTTACCTCACAAAGTGCCATAAGTTCACCTTGCCGGGTAATGGCGTGGCAAGTCTTGACAGCGCTGTCTTCCGTTTCCTGCATAACCTGGCAGACAACTTCATCGCCGTATTTAATTTCCTTATCAAACTTGATGGCCAGGTCTTTCGGCTCATGGCTGTTGACGAAGTCCCGGGGAAGGCTGTCGACGATCCAGTCCAGGTAGTGGGCGTTGTTGACGTGGTGGTTGGAGTCCAGGTCATAGTAGTAGGCCCGGTAGACCTTCTCGTCTTTGTAATCGTCTTTTGGCCGCAATTTCTTAAAGCGAGGTATTTTAGCCAAAAAGGGTGCTCCCAATTCCTCAGCGATTTTATCATCGCTGGGCAAAAGCTTCCGGCTCTTTAAATCAAACAAAACCCACTGGCTGTGGGCAATTACCAGGTCTTTGCCTGCTTCGTCCTCAATGCCGAAGTCCCGGTAGGACAAAAAGCGGTTGTAGCCAACCGCTTCGGTCCAGACCCTGACTTTTTGCCCGGCCCGGGGAAGGCTGGTAAATTCAAACTCGTACTGAGTGACTACCCAGCCCCTGCCCCGCTCTTTCATGGCGCTAGCCCCGCCTAAAGTTGGCGCCAGCTGCCCTTCAGAGCTTCCCATCATCAGGTCGATCATTCTGGGCAATTTCAGCTGGCCGCTTTCCCCGCAGTCAGCGTATTCCAACTGGTAATCCTTGTAGTATCTCATTTTGCCCCCTCCTGGTGGTAGCGGTCATAGAGTTCGTTTTTGGAAACGCCCTGGCTCTTGGCCACCTGCTTGATGGCATCCTTTTTAGAAACGCCTTGGGCAACTTGCTCTTTGACCAGCTTGACCAGGTCAGCCCAGTCCAGGGTCTTTTCTTCCGTGTTTGGCGACACCAAAACGACGAACTCGCCCCGGGGGTCGACTTCTTTAAAGTGCTGGATGACTTCTTCCAGGCTGCCGCGGACGAATTCTTCATGAATCTTGGTCAGTTCTCTGGCACAGACGACCTGCCGGCCGCCTGGCAAAACTTCCACCATTTGCTCTAAAGTCTTCAAGAGCCGGTGGGGTGCCTCATAAAAGATCGAGGTCGCTCTTGAAGCATTGATTTCTTCTAAAAAAGGCCGCTGCTGGCTGGCCTTGCGGGGCAAAAAGCCGTAGTAGGTAAAGGGCTGCCCGTCAAAGCCGGAAGCGATCAAGGCCGTGGCAAAAGCCGACGGGCCCGGCAGGGGAACGACTGGAACATTGCTTTTGATGCATTCCTGGACCAAAATATAGCCGGGATCAGAAATCACCGGCATGCCGGCATCGCTGATCTCAGCGATTGTCGCCCCCTCCTGCATCAACTTGACCAGTTCCGGCGCCTTTTCTTTAGAGTTGAACTTGTGAAAGGCCACCATCTTGTTGTTAATGCCCAGCCGGTCCAGCATGATCCCGCTGGTTCTGGTATCTTCAGCGGCAATGTAGTCAGCCTCTTCCAGAATCCGCTTGGCCCGGATCGTAATGTCTTCCAGGTTGCCGATGGGGGTAGGCACCAAGTAGAGCTTGCCCTGCTGGTCATCCGCGTAGCTGTGTTGCGTTTGCATTATTTGTGCACCAACTTCTTTCCAAAATTATCCAAAATATCCAGGCAAAACATGCAGTCCGCGCTGGGATCCCGGTGGGTTCCGTAGTACATGTTGCAAATATGGTAGCCAGACTGGTAGATCTGCTTGAGCATGGCCATCCCGCTCTGGCTCTTGCCTTCGTGTTCTTTAACCGTCAATTTGTCCAGCTTCTCGCGCAAAAGCTGGTTTTCAACCTTGAGCTCGGTATTTTCCTTCAGGCTCTCCAGCACCTCCTGCTGCAGGGAGCCCATGCTTTTGAGCATGCGCTCCATCTGCTGCTGCAGCTGCTGCAATTTAGTATATGGGTCCACTTTCCTTACCGCCTTTACTGCTGCCACTTTAAGGCCAAATAGTCCAAATTGTTCAAAAAGCCGACATTACTCTGCCACATCTGGTCAACCCGCATGAGGTCCGCCAAAAAGTTTGCCGCTTCCTGGCAGTCACCCTTCTCCAGGTCCTTTTCGCCCCACTTCTTGAGCAAAATCCAGACATACTTCTCCCACGCCTTGGTCCCCTGCTTTTGCTTTTTAACCAGGCCCGCCAGCTGGTGGGCGGACACGATAGCCAAAGAGTCATGCTCGCGGAGCTCCTGGTAAAAAAATTTTACCGCCTGGTCGACTTCCTGGCTGCTTTTCACCTGGTCAACTTCTTCCTGGCTCATCCCGTTGGCCAAAAGGAGCCTGTCCTTGCTGGAAGCAGCTTGCTGGCTGAAATTGATGATCTGGGTTCTGGACTTGATCGTCGGCAGAATCTGCCCGCCGTTATTGGCAATCAAGAAGGTGACTACCGGTGCCGCTGGCTCTTCCAGCAGGTTGAGCAGGGCGTTTGCAGCCGGCAGGGTCAATTTCTGGGCATGGTTGATCACGAAGTAGCGCCGGTCGCCTTCCAGAGGGCTCTTGGCTAATTCCTGCTTAAGCGGCCGGATCTGGTCAATCGCGATCGACTGCTTGTTTTCTTCCGTGTCGATCAAAAAGACGTCCGGGTGGTTGCCGGCCAGAATCCGCCGGCAGGCCGGGCAGGTCCCGTCCGGCTTCTTTTCGCCCGTGCAGTTCACGTAGCAGATCAGCCAGTAGGCCGTGTTTAAGGCTTCTACCTCATCACTTGACAAGAGCAGGTAGGCATGCGACAGCTGCCCCCGATCCTGGGCTTGCTTGAGCTGCCGGAATTCAGAAGCGCCAATTTGCTTTAAATCCAGCATTAAAAGTGCAGGGACTGGTCAACCGGCAAGACAAAGACCGTCGCGCCGCCGACCGTGATGTTGACCGGTTCAATCGGCTGCTCGAAGGAAATGCCAGGGTGAATGCCCGGGTTAATTGTTTCTTCTCTGGTTTGGGAATGCTCTTCGATCAGCTTCAAAACGCCGTCAACGTCTTCATCTTCCACCCCAAGCAAGAAGGTGGTGTTGCCTTCGCGCAAAAAGCCGCCCGTTGACGCCAGTTTAGTGGCGCCGACATTGTTGTCAACAAAAGCCGACTGCAGGCGCTTGGCGTATTCAGACTGGACAATGGCAATGATCAGTTTCATCTTGATCCCCCCTAAAACAATTCTGGAAATGTGCTTTTCACCAGTTTAACACTTGCGGCCACAACTTGCGGCAAATCTTGACTCGCGTCGACCACTTTTACCCGGTCCGGATGAGCCTGGTTGACCTTTTGGTAGCCCCGGTAGACCTCTTCATGGAAGGCCAGCTTCTCTTGTTCCAGCCGGTCTTCGCTGCCTGACCGGACCTTGGCGATTCTGGCCAGGCCCTGGGCCGGGTCTAAATCCAAAAAGATGGTCAGGTCCGGCTCCAAGTGGCCGGTAGCGAAAGCGTTGATCTGGGCTACTTCATCAATTCCCAGTCCCCGCCCCTGGCCCTGGTAGGCCAAAGAAGAGTCGACAAAGCGGTCGGACATGACCAGGTCCCCCCGCTTTAAAGCCGGATTGATAATCTCGCTGACATGCTGGGACCGGCTGGCCGCGTAGAGCAGGGCCTCGGTCTTGGCATTCATTTCCGTATTGGCCGGGTCCAGGATGATGTCGCGGATTTTTTCCGCGATTTTTGACCCGCCTGGCTCCCGCGTTACTAAAATTTCCCGCTTGCACTGGCCCTGGATGGCCTTGACGACTTCATTGATCACTGTCGTTTTGCCGGCGCCGTCGGGACCTTCAAAAGTGATAAAGTAACCTTGCATTTTAACTTGCCTCCTATCTATCTATTTTACAGAACTAAGGCTAGTATTTACAGACTTATCTTCCCACTAAATCTAGTAGGTAAAAATCGTAAAAAAATAATCCCCCGAAACCAGGAGATTATCAGTTTTTTATTGGGAAATGGCGTTGGTCACGCCGGTGTAAGAAGCATGGCGGTAGCGGGCCTCATCGTACAAAAAGGCATACTCAGCTCTAAAAATCTTGCCCGCCACGATATTGTCATCGGACATGTCCAGGGTCGTGTTGTCTAAACCCTTGCTAAGGCTTATTTCCTGCTGCAGCTTTTCTACCAAAGCCATCAGCTTCTCATCTTCTGCTTGCTTGATTTTGTCGCTGTGCTTACTCATGCTATAGCTCCGTTCTACCTTGAACTGCCCGCTTCAAAGTGATCAAGTTGGCATACTCAATGTCTGAGCCGACCGCCAGGCCCGCGGCCAGCCGGGTAACCTTGAGGCCGGCCGGCTTGATCAAGCGGGAAATGTACATGGCCGTTGACTCCCCTTCCGGGGTGGAATTAAGGGCCAGGATGACTTCTTTGGCAGCATCATTTTTCTGCAGGCGGACGATCAAGGACTTGATGTTGATCTGCTCCGGCCCGATCCCGTCCATCGGGGACAAGACCCCATGCAGGACATGGTAGAGGCCGTCATATTCGCCCATATTTTCAAAGGCCATCACGTCCTTGGCTTCCTCAACCACCATGATGGTTGACCGATCCCGGACTGGATTGCTGCAGATGGCGCAAGGGTCTTGTTCGGTGATGTTGCCGCAGACCGAGCACTGGCGCAGCTTTTCCTTAACGTCGACCAGAGCCTGGGCGAATTCGTCCACGTCTTCTTTAGGCATGTCCATGGCGTAAAAGGCCAGGCGGGTCGCCGTCTTTTCACCGATGCCCGGCAGTTTCATGAAGGAATCGATCAAGCGGGCGATTGGCAATGGGTATTGCAAATTACATCAGGCCTTTCGTGTACTTGCCCAGGCTCTGCTGGGTTGCCTGGTCGATCTGCTTCAAGCCCTTGTTAACAGCGTCGATAACCAGGTCTTCCAGCATGTCCGGGTCATCCGGATCAATGGCTTCCGGCTTGATGAACAAGCTCTTTAAAGTCCGGTCGCCGGTAAAAGTAGCCACTACCATGTCGTCAGCTGCCTTGCCGGTGAATTCCTGGGTCGTGATGTTTTCCTGTTCCTGGGCCATTTGTTCCTGCAGCTTCTTGGCTTGCTTCATCATCTGCTGCATGTTCATGCCGCCCATTCCTGGGAAAGCTGGTCTTTTGCTCATGAAAAAATCTCCTTTTACTACTTCTTACTACTTCGTTTTTATCTGCTTAATTTTAACGCGAAAAAAGTTTTTTGGCGAATATTAGTCCTTAACCTGGGCCAAAGGGCCGAAAAGCTCTTCTGCCTTGGTCACGATCGCATCATCTGCCGCTTCTTCCGGCGGCGCCTGGTCCGGCAAAGGCGGCTCAGGAGCTGCTTCTTCTGCCGGCTGAGCTTCTGCTGGCTGGGCCTTGGCCCGGAGCTGACTGGCATGTTCTTTAATGAACTCCTGGCGGATCTTTGGCCAGGCCTTTTCGTCAACGATGGCGATGGTCCAGCTCTCCTTGGTCAATTGATCCAGGTCAGCTTTGAGAGTTGCTAAAAATTCCTGAGGATTTGTGACCAGCTGCCAGGCCCGGGACTGGCTGGACAAAAGAACCGCCCGGTCGCTGGCCGCGATCGGCTGCAGGAAGCCCAAGACCGTCTTGGCCGGCTCTTCCAGCATGCTTGGCAAGTCCCGGTCCCAAAGGTTGCGGGCCTCAGCTAAGCCGGGCTTGGTGGCCTGGCTTAAGACCGCGTAGATCTCTTCCTGGCTGCTGGTGATTTCAGCCTGCAGGCTTTCGGCTTGCTGCTGCTTTTCCGCCGCCTGCTGGGCCACTTCGGTTGCCCCGCCCTTTTGCGTGTACAGCTGCTGGTTGAGCTGGAAGACATGGCGGGGGCTGAAGGCCTGGCTTGGCCGCTGACTCAGCTGCTGAACCTGCTGGGTCAGCTGGTGGACTTGTTCTTTCAAGACCTTGATCTGCCGCTCTATGGCCGGGTTGCTGGCCGCGGAAGCAACTTGCGGGCCTGCCTGGCTGTTTTGCCGCTTCTGGCTGGCCTGGACTAAAAAGACTTCCAAGGGAATCTGCTGCTGGTTGGTAAAGCGGAGACTGCCCAAGGCGTCATTAGCCTGGTCAATGATCTGGCTGAAGCGGTCCGGGCTTTGCTGGGCAATTTCCTGGGCAAAGTCATCCGTCAGGAATTCCCCCTGCCCTGTTTTGGTAAAAAGCATGGCCTGGACGGTCAAGCTAATAATTTCATTTAAGATGTTTTGGGCGCTGGCCCCGTCCTGGATGGCAGACTTAGCTAAGTCCAGGGCCATCTGGCTGTCCCCGTTTAAGAGGGCCAAAAGGAGCTTTTCCACTTGCTCCTGGGCGGCGAAGCCGGTGACTTCCAGGGCGTCCTCGTAGCGGACACTGCTTTTTTCAAAAGAAAGGAGCTGGTCCAAAATGCTCAAGGCATCCCGCATCCCCCCGTCAGCGACTTGGGCGATGACCTTTAAGGCCTTGTCCTCATATTCGACCCCTTCCTGGCCCAGGATGTATTCCATCCGCTGGACCATGGCCTCATTTGAGAAGCGCTTGAAGTTGTAGCGCTGGGTTCTGGAAATGATGGTGGCCGGCACCTTCTGCAGTTCAGTCGTCGCCAAAATAAAGACGACGCTGGCCGGCGGTTCTTCCAAAGTCTTCAAAAGGGCATTGAAGGCTGAAATCGACAGCATGTGGACTTCGTCAATGATGTAAACCTTGTACTTGCCTTCAGTTGGGGCGTAGTGAACCTTGTCCAAAAGGTCGCGGATTTCGTCAACGCTGTTGTTTGAGGCCGCGTCCATTTCAATGATGTCCGGCATTGCACCCTGGTCGGCGGCCAGGCAGTTGCTGCACTCGTTGCAAGGTTCGCCCTCTTGCAGGTTTAAACAGTTCAAGGCCTTGGCAAAAATCTTGGCGCATGAGGTCTTCCCCGTTCCCCGCGGGCCGGCAAAAAGAAAGGCATGCGAGACCTTGCCCCGGATAAGTGAATTCTTGAGGGTATCGGTAATGGCTTCCTGCCCGACCACATCATCAAAGGTGCGCGGGCGCCATTTGCGATACAAAGCTTGATAAGCCATACATTCTCCCCGTAATGAAAAAGCTCCTAGCCCCGAAGAGCTAAGAGCCTGTTAATTGCTAAATAAAGGGCACATGTCCAAGCGACCTTAGTGCTGCTACCTTCCGGTCCTGACACGCTTCGGAGGTCGAACATTGCCCAACAAATATTGTAACCTAAACTAATCCTTTTGGCAATTTTCCTGGGCTTTTTTTGCTAATTTTTGTTTGCGGCGGATTTCCCGGAAGAAATCTTTCAAAAGCTGGGCCCCTTGCTCCTTGTAAAGACCCCGGATGACCTTGGGATGGTGGTTGAATTTTTCCACGCTGAAGAGGTCGACCACGCTGCCGGCGGCGCCAGCTTTGGGGTCCATGGCCGCAAAATAGACTTCCTTGATCCGGGAGTTGATAATGGCTCCGGCACACATGGCGCAAGGCTCCAGGGTGACAAACAGGTTGCAGTCGATCAGGCGCCAGGAGTCTAGCTTTTGGCAGGCTTCTTTAATAGCCAGAATTTCGGCATGGGCTGTCCCGTCTTCATCCAGCTCCCGCCGGTTGTAGCCCCGGCCGATAATCTGCCCGTCTGGCCCCACGACAACGGCCCCGATGGGAACCTCGTCTTGCCGGCGGGCCTTTTCTGCTTCCGCAAAGGCGGCCTCCATGTAGGTCTTTTTTTCTTCGCTTGAATACATTATTTCTTCACGCTCTTTAAAATGTAGTAGCCCTTGTCCCGGGTCAAGATTTCGCAGTTGCCCAGGCTGGCTGCCATCAGCTTCTTCGCGCTCGGTGCCCCCTGCTTTTTCTGGATGACGACCAGCAAAATCCCGCCATCAGTTAAGTGGCCCTTAGCTTCTGACAAAATGCTGGACCAGATGGCTTTGCCGGCCCGGATCGGCGGATTGGTCACGATCATGGCATATTGGCCGAAAACTTCTTGATAGCGGTCTGAGGCAAAAATATTAACGTTGCCTGCCCCGTTGGCCGCCGCGTTTCTTCTGGCCAGGTCCATGGCCCGTTCATTAACGTCAACCATGTCGACCTGGCGGCCGGGCCATTTTTTAGCGGCGAAAAGACCGATCGGGCCATAGCCGCAGCCGACATCCAGAATATTGCCGCCTGGCAGCTCCTGGTCCAGCATCTGCTCAATCAAGACCCCGCTGCCGTAGTCGACCCGGGTTTTGGAAAAAACGCCGGCATCCGTGGTCAGGTTTAAGTTAATGCCATTAAGGTGGTAGTTGACATGGTGCTCATCATGGTCAACCGTGGGATTTTCAGTAAAGTATTGTTCAGCCATCTTATGCCTCGCTGATCTTTACGGCGTCAGTACCGTCGATTTCGCTGACCTGGACCTGGACGTCCTCGCTGGCCGCGGTTGGGATGTTCTTACCGATAAAGTCCGGCCGGATCGGCAGTTCCCGGTGGCCCCGGTCGATCAAGATCGCCAGAGCGATCTTGTCTGGCCGACCCTGGTCCATGATGGCGTCAAGAGCTGCCCGGATGGTCCGGCCAGTGTAAAGGACGTCGTCAACCAGGATGACCGTCTTGCCAGTCAAGTCAAAGGAAGTGTCAAAGCTGGCAATGGCCTTGGCCTTTTCCTCCTGGCTGAGGTCGTCCCGGTAGGCGGAGATGTCTAAAGACAAGACTGGCAGCTGGCTGTCTTCAATTTTGGCCAGGCGGTCGCCGATTCTCTGGGCCAGGTACCAGCCCCGGGTCTTAATTCCGATTAAGACCAGGTTTTCCGTCCCCTTGTTTCTTTCTACAATTTCGTAGCTCATTCTGGTCAGAGCCCGGCGGATCCCCGCTTCATCCATGATTTGTTTGCTCATTTTTCTTCTCTCCGTATGGTAGTTTTTTCTATTCTATTGTTCTTTTCTGTTTCTATTTTTTATTCTGGTAAAAAAGCATCGCTAACCATTTTATAAGACTGGCCCGGATGTAGTCAAATTCCGCCAGTTCTTTTCATAAGCGCTGGCCACCAAGTCCAGGTACTTGTCATAGTCAAGCGAATGCAAAATTGCTTCCTGCTCTTCAGCTTGAAGTAAGTTGACGGCCCGGTTTTCCACGTGCATGAACCAGTCAGGTGACAGATTAGGAATTTTCTGGACCGTAGCCTCCCGGCCTTTTGCCAAGTTGCCCAGGCCGTTAGCCTTAAGGACGGACAGGGCTTCTTGGTCATGCTGGATCACGGCCTCCCCGCTTTTCTTGCGCTTGTTCAGCATGGCCGGGGTCAGCTTTTTAGCCGCGGCGGAATAAAGGTGAACCGTCTTCGGCAGGCCGTCTTGATAGATAAAGACCCGGTTGTAGCGCTGCAAGATTAAGAGCTGGCCGGCATCCCCCCGGCCGAAAATGCAGTTAGCCCGCTCCTTGCTGTGGTTGGCTGAGAGGACGTTTTGGAACATTCTGAGCCGGTGGGCCGGGTCTGGGAAGGCTTCCTCAGCTTCCGCCAGAATCTGCCGGCCCAGGTCCCGGTCAAAAGGCGCTGCCAGGTCTGTTCTTTTTTCCAGCAGGTAGCGGCTTAGGGCCCAGTCGATGATGGCCGGGTGGGCCAGGGACTTGGTCGGGCTGGTGTCCTTCCGGCAGGCCAGGCTGCCTGAGGCAGACAGGATCTTGGTCAAGTCCGGGCTGGCTTCCAGGCGGTTGTTGGAGTCTTTAGAAACCAGGTAGAGTTCTTCCGGGACGATTTCCACCCCGATTTCAGCAGCTTCTTTAGCCAAGATCTTCCGGTTTAAGTCCGCGTCCAAAACTGAGTAAAGGCCATCAGTGTTGGTTGACACGATCCGGGCTCCGGCATAGGTCTGGGCCTGGCCGATCATATAAGTGAAGAGCTGGCCGATGATCCGCATGGACCGGATCCGGTTGTTCATTCTAATAGAGGACGGCACTTGCCCCTCTCTTGGGTCAGCGGCCCCGGTAGCTGAGTTTAAGATCAGCTTGGTCCCTTCTCTTTCAATATTAAACATCCGCCGCTCTTCGTCGCTGTATTGGGGATCAGTCCGCTTTTTGTCCAATTCCTGCTTTCTTTCAAAGATCGCCGTATACCGGTCTTCACCTAAGCGGTCATTGTAAAAAGCATTCAAGCGCCGGAGCATGTTTGGATAGTAGGAAGTAAAGTCCTCGTGGTTGGTCAGGTCGCTTGAAGTAAAGGCATAGCGGTCATCCAGTCGGACCCGGCTCCCCTGCTTTTTGAAAACGGTTGGTTCATCTTGACTGAAGTCCCGCCAAAACTGCCCCCGGTCGGCTGGATCCGTCTGCTCCATCAGCTTGATCGTTGCTTTGGCAGTCAGAAAAGTCTGGTACTTTTCCACCCGGCCGTCTGGCAGGGTAACTTCCCTGGCCTTACGCAAGTCCAAAGGATCTGGATAAAGCTTTTGCACATAAGCCAGGTCAGCCTGCTTTTTCTCCCAAAGGGCATGGTCTTTTAAATAAAGGTCACGGTTATATTCTGACCCATGCAGGCCGCCGACGGAAAAAGTAATGTAGCAAGTCGATGGCTGGCCGTCCTTTTGGTAGTAGAAAAGGTTGGTATCTTCGTTTTCGACATCGCTTAAGTCGCTGACCGGCAGGGCCTGGTCGCCGTAATCTTCCCGGTATTCTTTTGAAGGATTGAAGTTCTTGCCGGCAAACTGCTTATAGTAGTCATAAACCCGGTCGAACTTCTTGCGTAAGTTTTCGTCCTCAAAGAGCTTGTAGAAAAAGTCCCGGCTTTCTTCCAGGATGTCTCTCTGCTTTTCGCCCGTTTTTTCCGCCACGCTGGCCGCCGGGTACAAGAAGGAAACAGCCCGGTCATCTTTTAAGCGGCCATATGGGCAGATGGTCCGGCGGGCAAAATTAGCAGAAGAAGAATCGATGGTCAAGCGGTCTTTTCTAACAAAGGCCGGGCCGATTTTCGCCTGGTAGCTGTCCCCGTCTTCTTGGTAGATCAAGTCCGGGTACTGGCCCAAGAGGCCCTTTTTCAAAATAAACTGGCCCTGGTAGTAAGGATGGCAGAAAAGCTCCTTTAAATTGACCACGTCAGAAACGTTGTAGGCAATGAGATCTGCCAGTTCTTCGGGACTGGTCAAATAGTCCTGGCCAGGCTTTAATTTGTCACTTTCCAGAATCTGCCAGCCCAGCATCCCCAAAAGGCGCTTGAGGCCAACCCGTCTTTGCCGCTCATTGAGCTGGGCCACGTCGATATGGCGGCCGGACATCTGGAAGTTTTTGGCAACTAAACCCATGGTCTTGTCCTGCCAAAGGCGCAGGCGCATGTTGCCGATATAGCGGATGAAGAGCTCATCGTTAAAGTCCCGCATCTCCCTTGCCGTCACGGCTGAAAAGCGGTCCCGCTTGCCGCTTTCGACAGGCTGCCAGGCTCTAGTAAAGTAGTAGGCCAGCATGGTCAAGTCGTAGTTGCTGGAATTGTAGCCCATCAGGTAGGGCGCTTCTTCTTCCTGGTAGCCTTGGTCAGTGTCGCAGACCGGGCGGAACTGGCCAGGGAAAGAGGACGGGGCTTGGGGATCATTGACGTATTGGGCATCTGAAACCCCAAAGGTCTGGGCCAGACGGGCGGAAGCTGCACTTGAGCAGAGATTGTAGTAGTAGATCTCCCCTTTAAAGTTCTGGTTCTTCTCCCGGATCCGCCGGGCAGCAGCCTTCTTAAAGTCCAGGCTGTCTTTGTCATTTAAGGCCGGATCATCAACCAGGTAATAGATGTCAACCCGCTGGTCGTCTGGCCGGTAGCAGGACAAGGTAAAGGCGTTGGTCAAAGATTCGATATCGTAGAAATAAGAATTGAGTCGGCTAATTTTTTCCTCCAGTCGTTTACTTACATTTTAGCAAAAAGCAAGAAAAAAGCGGGCCATCAGGTCCGCTCCCTTGTCCTGCCGTGCAGCTGCTCATAGCGCTCCAGCGACATTGAGGTTACATGATAATTCTTGCAATAAGGACACCGGTAAGCCCGAATCGGCATCTGCCGCCAGTGCTCATGGTTGATTTCACGCAGGTGAAAGGTCACCTCTTCCTGGTAAAGAAACAAGTCGGCATCAAACTTCGTCTTAAAGGCCCGCTTGCCGCTGGAGCAAGCCAGCAGACGGCTGCGGCGGGCGCGCCGGTAAGCCTTACTGGCTTTACTCTTCGTCATTGCTATGCCCCCCTTACTTTCTTCAGAAGTAAAACAGCAAATCACTGAATCCTTATGTCAATATTCACTTTCTAGCTTGATTTTATCACCATTCGCCTGCCTGCTCAATTAATAGCTACTTTTTACCAAGATTTTAGTAAGCGCTCTATTGTTTTTTAATTAAATAAGGATGATAATAAACTAGTGTGCAAAGAATATTTCATGAATTCTTAGGAGGCAAAATGAGAAAATTAACTAAGTCTGTCGTGACTAAAGTGCCCTACAATTGTTAGACATAGACATCTAACGATTGTGGGGTATTTTTATGACCAAGTATTCATCTGAACTAAAAGTACAAATTGCTTCTGATTATCCTTACGGTAGAGACACATACAATGGATTAAGCAAAAAGTATAATATCGCTGCGTCAATAATTCGTACGTGGGTGAAAGCCGCTGAACTCAATGGATTGGAAATCTTAAAAGTTAAGCGAACCAAAAGAGAATATTCTGTTGACTTTAAGCTACTATACTAAAATCCAATGTAGGACGTAATCTGGTAGCTGCTAAATTCAATATTAGTCCGTCACAAGTGTATTCATGGACTAAGAAGTTCTAGCGAGGCGGTCCAGATGCGCTCCTTCCTGTCAAGAAAGGTAGACCCGCTAAAATGTCTAAGAAGACCGAGAAAGCCAAGCGTAATAAGCAAATAGGTACTCTAACTGATAAGCAGAAATATGAGGACAAAATTCTGGAAAAGGATGCCAGAATAAAAGAATTAGAATTGGAGCTCATCATCGCAAAAAAAGTGGCCGCCCGGAACTTTTGGCCCTAAAGGCCGGAGCCGACCTCCTTTTAGGCGGCAAATTGGAAAACTTACCAATTTTGGAAGCAGCCGCAGAGAGCGGTGAATTGCCAAAAGAGCGGATCAAAGACGCTCTGGTCCGGGTCCAGACCCTGCAGGACGATTATTCTCTTTAAGCTTTTAAAAAGCTCTGTAACATTTCAGAATTAACCAGCAATTTAACGACAAAAAAGGCAGATCCGGAGATCTGCCTTTTTATCTTGCAATTTATTGTCTATTTCTTACTTTGTTTCTTTGTTACTTTGCTTAAGTCTTAGAGAAAGTAGCAAACCTAATCTTTTTCAAGATCTGGTAGCCAACATCCTTGACCTTGTCTTTACCAAAGCTGCGCTGGTTGAGAAGCAGGATAATCCCGTTCTTGTTGTCAGCTGTCAGCTGGAAGTAAGCAGCATAGTGGGCGCTGCCAATTGCCCCGTAGGCCAGCTTGACCTTTTCCCCCTTCTTGAGGTAAACACCGCCGCTATATTGGTTGATCTTGCTCTTGAGGTGGGTCAGCTTGTGAAAGGCGCTCGGCGACAGGAACTGCCCTGTCCCCAAAGCTTCTTGGATAAGATAGTAGTCGCTGGCTGTCGTCAGCATGTTCCCGGCCCCAACCAGCTGAGACAACCGTGTCTTTTCCAAAGTTGCCGCCTGCTGGTAGTTCTTGCCATGCTTATAGGCGTAAGATACAGCCAGCATCTTATTCTTAGGCAGCTGGCTGCTTACATAAGTTGACTTGAGGCCCAGTCTCTGGACCACCCGCTTCTTAAAGTTCCAGGCATATGACTTATGGCTCACCTTCTTGATGATGCCTGCCAGCAAAACATAATTGACATCGCTGTAGTGGTAACTCCCCACCTTGTCTTGCGGCAATTGGTTAGCCCGGGTCACAATCCAGTTTACTGCCTGGTCTTCACTGTAGTTGATATGGCGGTCGGCTTCGACTTCCGGAATCTGCACGCCTGAAGTGTGGGAAAGCAAGTTGCCCACGCTGATTTTCTTGGCATTCCGCAAGGCCGGGTACCAGCGGGAGATCTTCGTGTTTTGACTAAAAGCACTTGAGCTCCCCTTCTTTTCTTCCATCAGCTGCATGATCATGGCCCCGGTAACTTCCTTTTGCATGGAAGCGGCCGGGTAGACGACCTGGCTGGCCCCGTTCTTGACCTTCTGCTTAGCATTAGCCAAGCCATAGTTAACAACCTGGACATGCCCGTTTTGCACTATAGCCACGCTTCCGGTCACATGCTTCTTCTTAAAAAGCTTCTCGACAAAAACATGCATATCGGCCGCCGTTGCCAGATCAGGGGCGGTTTCTTCTGGCCAAAACGCCAAAGCGGCCACTAAGACAAGCAGGGCAACGATTAATTTCTTACCTTTTTTGAACAAGTCTGCTTTTCCCTCCTAGAATAAATATGAACATTATAAGCCCTTTTCCAGGGAAAAGGGAAAAGTCATTATACTTTTAAAAAATTAAAAAAATACTCACTAATTCAAACTGAAGGTTCCCGGCTGTATCTTCTGCAAGAGGCCGAAGGCCAGGCCCTTGAGCTGCTGTTCAGTCTGGCTGCGCTCATTGACGAACATGATGATCCCATTTCTGTTGTCCGCCGTCAGCTGGACGTAAGTCCCGTAGTGCTCATCCATAATCGCGCCAAAGGCAGACTTGACCTTGCCGTCCCGCTTCATGTACATGCCGCCGCTATAGGTGGTCTTTCTGGCCTTGAGGTGAGTCAGGTATTTAAAGTCGCTTTGGTTCAAAATTGCCCCGTTCTGCAAGGCCAGCATGATCTCATAATATTCAATTGGCGTGGTGCACATATTGCCGGCACCTGGGATCTGGGAAGCTACGGACTTAGGCAGAGAAACCGGTCTTTGGTACTTTCTCTGCCAAAGGTAGGCATAAGAGACCTCCTGGCTCTGGGTCCAAGGGATGTCGTGTCTGAGGCTGGTGTGGGCTAAACCCAGCGGCTGAACGATCCGGTGCTTGAAGTTGTAGGCGTAGGAGTGACCGGTCAATTTGCGGATAATGCCCGCCAGCAAGATGTAGTTGGAATTGTTGTAGTTAAAACTGCCCGTCTGATACTGCCAGCTACCATTGATCTTCTGGATCACCCAGTTGATGGCCTTGTTTTCTGACAGATTCTTGCGCCGGTTGCTTTCTGAGCCTGGCGTCCGGTAGCCGCTGGTGTGGGTCAAAAGGTTGCCAACCGTCACATAGCGGGCATTCTTCAGCTTGGGATACCAGCGGGAAATCTTGGTGTACTGGCTGAATTGCTGCTTGGTATGATTCTTTTCGTTCATGATCTGCACTAGCATGGCCCCGGTTACCACCTTTTGCAGGGAAGCGGCTGGATAGGTCACGTTATAAGAACCGTTCTTCATCCGCCGTCCAAACCAGGCATAGCCGTAGTTGACGGTCTTGACGCTGCCGTTTTGGACTAAAAGAACTGCCCCGGCCAGGTGGTTGTCCCTCATTACCCGGTTGACGTCGCTCTTGGTCGCTTCCGCCTGGACCGTAGCTGGCGCCAAAGCTGGAAGCAGGAGGCTGGCAGCTAAAGCCAGCTTGCCGGCAGTTTTCGCGGATTTTTTCAAAAAGAAATCTTTAAAATTCAATTTGCTCTTCCCTTTCTCATCATAAGCATAACTACGAATTATGTTAGCCCTAATATTTATTAAAAACAAGGGAAGCTGTGTTACGTTTTAATTACAGGATTTTTCCGCAAAAAAGACCACCGGAATCAACCGATGGTCATTTAGAAGTGGTCAAGCTTACTTAACGGCATCCTTCAGGGCCTTGCCTGGCTTGAAGGCTGGAACCTTGCTTGCAGGGATTTCGATTTCAGCGCCAGTTTGCGGGTTGCGGCCCTTCCGAGCAGCGCGTTCACGAACTTCAAAAGTCCCAAAGCCGATCAATTGTACCTTTTCACCCTTAGCAAGTGCTTCTTCGATTGATGCAAACAAAGCGTCAACGATTTGAGCAGATTCCTTCTTGCTGAATTCAGTCTTTTCACTTACAACTGAGACAAGTTCAGTCTTGTTCATCTTGTTTCCTCATCTTTCTATTAAAAGGTTCAGCAATATGCCGAAGCTTAGTCATAAGCTTAATTATAGCAAAACTTTGCCGCTGCAACAGCCTTTCTGTGAAATAGATGAGGGGGGGGGAATACTAAAATTACAAAAGTCTTCTAGCAGAATCCACCTATTTCACTGGCACGCAGTGCTTGTCGTTGATCGCCTTGACTTTGTCCACCCGCCGGCGGTACTTTTCTTCCATCAAAGGATCCGTGTTCAGCCAGGTCTTGACGATTTCGCCGGCCATCATGTCCCCGATAATCTTGGCACCTAAGCAAAGGACGTTGGAGTCGGTGTGCTGGCGGGCAAGCTTGGCGCAGAAAGGATCCTAGCAGACCGCGGCGTAAATGCCGTTAATCTTGTTGGCGATCAAGGCGCTACCGTAGCCAACCCCGTCAACGAAAATGCCCCGGTCGCATTCGCCCTTGGCCACAGCCAGGCTAGCTGGGTAGACAAAGTCTGACAGGTCGCTCTTCATTGCCGGTCCCGAAGTCAACGACTTCATAGCCTTATTCCTCCAGATAGGCCTTGATTTTGTTCTTCAAGCGGGTACCCGCGTGGTCGTTTGCCATTGCGATCTTCATGTTTATGCCTTCTTCTATTTCAATTTTTTAAAAAACTTCTCTCGCCTCTATTCTACCATTTCCAAAGAAAGGGAAAAGTTATGAGCAAATTTTAGCCTTTCTTAAATAAGTTCATGCACTTTGGTCAATTTCTTGCCATACTTGCTTCTAATTATCCAGATAGAATTTCTTGTAATATCAAGGAAAGTATTTTATGGCAAGGAGGGACTACCATGTCTGCCAGAAAAGTTATCACGAGTGTACTCGCCGTTGGAACAACCATTGCTATTGCCATCGACGGCTATCTCTTATTTTTAAAAGCTGACCAAGCCAGCTCGGCTGCATCTACAGCTTAATCCAGCACAAGCACTGCAACTTCCAGTTCTGCTTCATCTTCAAGCTCATCTGCAAGTTAATCCACGTCCAGCGGATTAAAAGACGGTACTTACAGCGGCAAATCTGTCAGCACCCAGTGGGGCGATATCCAAGTCCAGATCAAGGTCAGAGGGGGAAAAATCACCACGGTTAATGTCTTAAAGTACCCTTCAGACAACGACCACTCCCAGCAGATCAACGACCAGGCCCTGCCTGTCTATAAAAAAGAGGCCGTCGAGGCCCAGAGTGCCGACATCCAGCAGGTTTCCGGGGCCACCGTCACTTACGAGGGCTTCACCCAGTCCCTGCAAAACGCCATCACCCAGGCTAAAGAAAGCTAGTGGCCATTATAACTGTAACCTGCCTTAACCAGACAGTGGAAGCCATGACCATTTCTTTCACTGTTTCTGTTGCTGTTCAAGGAGAGGCATCCCCGAACTTGACCCAGGCTTTTACAGACGCCTGTAGAAAAATTTATACAGAATTAAAAAGAATCGAAGCTGATTTCTCCGCCTTTTTGCCAGACTCCTTAGTCAGCCGCTTTGCTGAAGGCGATGAGAGCATCCTTTTAGACAATGCTGAATTTCAAGAAGTGTACGCGGCCGCCCTTTTGGCCAAAGAAGAAACAGCCGGTGCCTTTGATCCCTACTTTGCCGGCAAATTCGACCCGACCGGCCTGGTCAAGGGCTGGGCAGTGAAAAAAATCTTTGCCTCCTGTCTCATGCCCCTAGCTGCTTTTCCCGAAGTCACCGGCCTCTGCATCAACGGCGGCGGGGACCTGCAGGCCTGGACCAGGGGCGACTTCCGCTGGGAAGACCGGCATTGAGAACCCGGCCCAGCCCCGCCTGCTCTTGCTGATCGCCGGCGGGATCGGGGTTGTCCCCCTCCTGTCGGTAATTGACGGCAGTCCTGACTTGCCTACTAAAGTCTTTTACAACGCCCACACCAAGGAATCCTTGATCTATGAGGAAAAATTCTACTACTGGAACAGCCGGGACAATTTCCAGAGCCACTGCCAGGTGGGCCGGTTTAAAGATGAGGAAATTTTTCCCTGCCTGAAGACTTTTCCGGTCTCCAGGTTTTGATCGGGGGTCCCCAGGTCATGGCTGACCACTGGCTCAAGCTCTTAAAAGAAAAGGGCCTGCCAGCCGGGCTGATCTATTATGAAGAATTTGACTGGTAAAAAATAATCCAAACAAAAAGTGAGACCCAGCGGTCCCACTTTTTTCTGTGTTTCTGAATTACTAATTAGCGATGTAGGCATACTTGAAGTTGTAGCAGGCGCCGGCACTGTTGTAGATAATGCCCTTGACCTTGCTCTTGATCATCCAGGCCTTGTTGGCTTGAGTTAAAGGAGTTACCCCCTGGTTTGACCATCAAGATGTTTTCAGCCTTGGCCAAAAGCTTCATATGGGCCTCCCCGGAACTGGTCTTAGATGCCGCGATCAGCTTGTCGTATTCCTTGTTGCTCCAGCTCCCGTAGTTGTAGGAGTTACCAGTCGTTTCACAGTCCAGGAAGGAGATCGGGTCAGCGTAGTCGGCGATCCAGCCGTACAAGGTGCATTCAAAGTTGCCGGCCAGGACCCGGTTGAGCTTGGTCTTGGAAGGGATGCTCTGCACCTTGACAGTGGTCTTGTCGCCAAAAGCAGTTTCCAGCTGGCTCTGGACGAATTCCGCCAGTTTCTTGGAAGTATCGTCGTCAGAAGCCAAAAGGGTAAAGAACAATTTGCTTAGGCCCTCTTCCTTCAAGCCTGTTTCGAAGTACTGCTTGGCCAGCTGTTTATTGTAGCTGGTGTACTTTTTAGCCTCGCTGCTGGCGGCCAGCTTGGTGAAGTCCTCACCGTTGACAGTAGTCAAGCCGCTGGAAGTAAGGGTCGTCGCTGCCTTGTAGGTGGCCCCTAATGTCTTGGACAGGCTGGACCGGTTGATGGCCATGGAGATCCCCCGGCGGAGGTTAGTACTCTTAAACTTGCTGTACTTCTTCAAGTTGAACTGGAGATACTGGGTGTTGGCCACTTTTCTGATCGTGTAGCCCTTGGACTTGGTCAATTGCTTGGAGGGTTGGGCGTCCAGGATGGTCCCGTCCAATTTTCCTGCCTGGTAGAGGTTGTAGGCAGTTGACGGAGACTTTTGGACAGAATAGTTGATTTTGGTCAGCTGACATCCTTCTTGTCCCAGTAGTACTTGTTCTTGACCAGCTTCCAAGAGAGGTTGGAGCCAGTCCACCCTTGTGCACGAATGGGCCATTGTAGACCATGTATTTAGAAGCGATCCCGTACTTGGACCCGTACTTCTTGACTGCCTGTTCATTTTGCGGGAAGAAAAGCGGGAAGGCCATCAAGAGCTTGAAGTATGTGATCTTCCACTCTAAGCTGACAACCAGCTTGTACTTGCCCACGGCTTGATGCCCAGGGTGGAAGCCTTTTTCTTACCGGCGACGATCGCGTCAGCGTTTTTAATCCCGGAAAAAAGATAGGAGTATTCCGACGCGGTCTTGGGGTCAACCGTCCGCTTCCAGGAGTAGACAAAGTCCTTGGCGGTCAAGGCCTGGCCATTGGACCATTTGGCATTCTTGCGGATTTTGAAAGTCCAGGTCTTGCCATCTTTAGAAACGGTTGCCTTGGTTGCCAGGGCGTTTTTCACCTTGGCATTGTTGCCCAGGGTGTAGAGGCCCTCCATGACTTGGTTGACCTGGTTGAAAGAAACGTCGTCCATGATCTTGGACACGTCGATGGTGGACAGTTCCGCCTCTTCCATCCAGTTCAGCTTTTGATTGGCCGCGGTCTTGCTGAAACTTGCCCCGCAGGCAGCCAAGAGGGTTGACGTCATGACGGCCAGACCGCCCAGGATAATTTTGCTCTTTTTCATTTATTTTTTGCCTCAAATCAAACCAGACTGGTTCAAGGACGCGCGGTGAACCAGCACTACTGCCATTATTCCTAAACCTACATGTCGCCTGTAGTTTCTCTCCTGATTCATCGCTTGTCACGCTCCTTTTATTGAGGTATATAAGCTATTTTTTCATTCTATCAACTAGAGCGGAAATTGCACGCATCTTTTGGTGAAAAAACAATTTTTAAGCAAAAAGGGCAGAAATACTGATGGTAAAATAGAAATAATCCAAGTAGTATTATCTGTAAGTAAATCGTAGTTTGACAAGTAGAGAGAATTAATAAATGACGACACGCGACAAATTGCTGGCAGAGAACTGGATAAAGAAAAAATCCGCTATTACATCATGCAGGACTTTCTCTATCTGAAGGACTATGCGGCTGGCAACGTCCACCTAATTGATATCTTCGTCACCTGCTCCCGTTATGAGGCTGACTTCTGGCAGATGGCCTGGGAGCAGAAGCAGTAGTCCAAAAATATTGCAGTAAACGTTGCAGTTTTTTCGTAGAAAAATTTTTCGTTAGAGGCCTTTAGGCCTCTTTTTGGGCAAAAAGTTAAAAAAGCCAAACAAAAAACGCGCCTGTGGATGTCCACAAACGCGTTCTTCGTTAATAATTAATGCCCGAAGGCCGTAATTATTTAAGGGTAACAGTTGCGCCAACTTCTTCAAGCTTAGCCTTAAGTTCGTTAGCTTCGTCTTCTGACAAGCCTTCCTTAAGAACAACTGGAGCACCGTCAACAGTCTTCTTAGCGTCCAGCAAGCTTGCGCCAGTAGCTTCCTTAACGATCTTGATAACCTTAACCTTTTCAGTACCTGCTGAAGTCAATTCAACGTCGAAGCTTGACTTAGCTTCTTCAGCACCACCAGCGGCACCAGCAGCAGCTACAGGAGCAGCAGCAGTAACGCCGAATTCTTCTTCGATAGCGTGTACAAGGTCGTTCAATTCAAGAATTGAAGCACCCTTCAATTGTTCAATGATGTTAGCAGTATCCAAAGCCATTGTAATATCCTCCGAAAATATGGAATTTAATATCTAGTTTAAAATGACCAGACTATTCAGCTGATTCTTCCTTTGATTCAGCGACAGCCTTAACAACGTATGCAAAGTTGCGTACAGGTGCTTGCAATACAGAAAGAAGCATTGAAAGCAGACCTTCGCGACCTGGAATTGCAGCCAGTTCTTCGACTTGTTCCTTGGTAGCAACTTGACCTTCAAGTGCACCACCCTTAATTTCAACAACGTCGAACTTCTTAGCGTAGTCAGCAGCGATCCGGGCAGGTGCAGTAACATTGTCTTCATCATCAGTGTAGATCACAGCTGATGGACCAACGAATACTGGTGCCAAATCGTCCAAGCCGGCTTGAGCAGCAGCGCGGCGAAGGTAAGTGTTCTTGACAACCTTCATCTTGGCGTTGCTTTCACGCAATTCTGCACGGAACGCAGTAACTTGGTCAACAGTCAAACCAAGGTAGTTGATAACTACGATGGACTTAGCTGACTTAAGTTCTTCTGCAAATTCTTCAACGAATTTAGCCTTAGCAGCGATAATAGCTTGACTCAAAATTATTCACCTCCATAAAATTTTGTAAAATTCTACAAGGCCTAAAAACCTCCATGCCAAGAAAGACATGGAGAGTTTAACAATCTTCATTATCTTCTGGCCTCGGCGGGATTGTATTGAGGCTTTACGCCACCCACGTCTTAGGTTAGAAATTTACTTTATCTAGACTACCATCTGAAACAAGATCTGTCAAACCTTTTTCGCCACTTTTTGCAAAAATCTGCTAAAATTTACTGTAATGACTTTTAGGAGCATAATACTAGTGTAATGTTATACTGACATTTAAAACATGTGCAATCAGAACTATAGTTGCTGATATAGATCCGCATGCGTAGTATCCGTGTCAGTATTATTAAGATATCATCATGACACTACACTAGTGGCAAAAAACGTACTTAAAGTGTTTGATTATATGTAAGAGTTAGCAGATAGGTACTAAGCCGAATCAACGTAGAGAAATCTAGGACTTTGCTTTAAGAATAGAGCACAGCTTTCACCCACATTTCAGAAACATATGTTTGGAAATCTGTAGGAATACGTGCTAAAATATTCCTCGAAACAAAGATTGACAAAGATATAATTCTGAAAGGCGGTGAAATCAAATGGCGGAACAGGTAAAAGAAGCACCGGCAGAATTAATTCAGACAAGAGTCTATGAACTATGTCCCAACAAGACTATGAGAAGAGTTTTGGATGAAGCTTGTGACTACCGTCGTTATTGCTGGAATCAAGGCCTCGACTTGTGGAATGAAATGTATAAGGAAAGGCAAGCACTTAAATCTTCTTTGGCCTCCGACTCCAAAAAGCTGACCGAAGAGCAGAAAGTGCTGCTTAAGCAAAGCCTTCGCCGAGTGAACGAAGAGTTCGTAATATGTTAGTTGCCGATAAAAAATACTGGCAGTATACACAGTCAGCCCGGATTCTGCAACTGGCAATTTCTGACTTGGGTAAGGCTTGGAAAAATTTCTTCGACAAGACCCAACCAAGCTGGGGTAAACCGAAATTTCGATCAAAGCGGGAAGCCAGACAAGGCTTCAAAAGTGACCGGAGCAAGATCAAAGATGGAATTCTTTATTTGGAACAGGCAAGAGGAAGTAGCGTTCCAAAAGATCAATGGCGTGGCTTTAAGCTGAGCGAAAAGCCTTTGTCAGATGAATTTGGCACTGTCAGCTATTTCAAAGAAAAAGGCCGTTATTACGTTGCCATTCCGTATAAGATCAAGGCTGAAGATGTTAAGCTGCCAGACAAAACAGGTAAAGCTACCGCGGTTGACGTCAATGTTGGTCACTTTGATTACACGGGTGGCCGGGTGAACGTACTACCTAAGAAGCTTGATAGAATTTATAAAAAGATCAAGCACTATCAAAGGAAGCTTGCCAAAAAGCAAGTCGAAAATGGAGAAGTTGCTTGCAAAATCGAGAATTACTTGAAGACGAAAGCCAAGCTTCAAGCATGCTATCGTAAAGCAAGCAATATCCAAAACGACTTGATTCACAAGTTTACGACCGAACTGGTTAATGACTACGACAAGATCGTGATCGAAAATCTGTCGGTTAAGGGCATGCTGATGAGCCACGTGGCTTCAAAGGGTGTTCATCGGTCGATGTTTGGCAAGTTTAAGCAGATCTTGACCTACAAGTGCGATTGGTATGGTAAGGAACTTATCCTGGCAAATAAGCTGTATCCGTCTACTCAGCGTTGTGCGGCCTGTGGCAATGTCAAAAAAGGTGATGACAAGATCCCCCTTTATGGAAACAAGAAGCATGGTACTAAACACAATGAGTACGTCTGCTACAACGAAAAATGCCCGAACTACAATAAGGTCGTAGATCGAGATAAGAATGCGATGCTTAGTCTTTTAGCGCTGACTGAGTACCCAGAATTAAATCATGCACTATAAATATTAAAGAAAGGAGAATTAATGGCTAAGGCCCTGGCCTTAGTCATGCGGGTTGGCTGTACCCGAGGATTGGCGAGAGCCTTTCCATGAAGTTGCAAGAGTGGTGCTTCGGTACCTGCGCTGGTCAATGCGGTTACCCCCCTTGTTGGGATATCGGAATACCGGTGATGACGGCAATAAGAAAAATGTCTGTATTCATGTCTTCGGACAATACATAGTCAAAGATTACTATTTGGCTACATTGCACACGTTTTTTGCAGCAGGTACAATTTTGAAGAGTAAACTGATCGACATTTTCTACTTCTTCTTAGCCGGCATTTCCGGCACCTTGGCCGTCTTTAGCATGTTCAAGGACCATTCCGCCGCTAGCATCGCCATGGACGTCTTATTCCTCATCATCAGCGCCTACTTCATTGTCCGCGGCTTCCTGGACATCGAATCTGAAAACAAGAAGTTGAGCAAGAACTGGCAGATCCTCTCCTGGATCGCCTGGTGCCTGCTCCTCTTGGGCGTCATCTTGACCTTGACCGGCTACAAGCTGGGCATCAACGGCCTGGGCTGGGGCGGCTTCGTCCTCTTCCTGCTCTGCTCTTTCGTCGTGCCCGAACAAGCCAACGACAAGAACTTTCATGTCAAGCGCCGGGACGAGACCGGTTTTGATGACAAAAATTAAGTCTGTTTTTTAGTATTTTTTAACAAAATAATTCAGCAAACGCTTGCAGCCTGCCTTTTGAAAAAGCAGGCTCTTTTTTGCCCTTTTTTCCCAACTTTTCCAGGCAATTTCTTCTCTTTCTAAATTGGTCTAGAGTTTTACAAAATTCACCGGCATGGTATAACTAAGAACATAAATCTGAGTAAATAATTGGTATAGAGATAGAAGCAAAAAGGAAATAAGGATGAACACAGCCAACACCGTCTTCTTAATTATCGCCGCCGTCCTGGTCTTGATGATGACCCCGGGCCTGGCCTTTTTCTACGGGGGTTTGGTCTCGAAGAAAAACGTGGTCAACACCATGATCTCGGTTTTTATCATCTGCGCTTTAGCCATCGTCTTATTCGTGGCCTTTGGCTATGAACTTTGCTTCAACGGCAATGTAGCTGGAATTTTTGGCAGAGTCCAGCACATCTTCCTCTCCGGCAGTGACTTGACTAAGGTCGTTTTAAAAGAGCAGGGAATTACCGCCGCCAGCTACCTGCTTTTTGAAATGATGTTTGCCATCATCACCCCGGCCCTCTTCGTTGGGGCCACGGTGGGCCGGATGCGGTTCAACTTTCTATTGGTCTTCGTCTTCTTCTGGTCAGTGTTGGTCTACTACCCCCTGGTCCACATGGTCTGGGGGACTGGCGGACTCTTAGCCGGCTGGGGGATCCTGGACTTTGCCGGCGGCACGGTCGTTCACATCAACGCCGGGATCACCGCCCTGGTCTTATCCATCTTCTTAGGGCCCCGCTACCAAAAGCAGACCCGGCCCTACAGCCTGCCCTGGGTCCTCTTGGGGACAGCAATCCTCTGGCTAGGCTGGTACGGCTTTAACGCCGGCAGTGCCTTCGGCATGAACCAAACGGCCTTGACGGCCTGCTTGACCAGTACGGTTGCGGCAGCGGCCTCTATGATGACCTGGCTTTTGCTGGAAGAAGCCTTTAGCGGCAAAGCCAGCCTAGACGGGATCTGCACCGGTACCCTCTGCGGCTTAGTCGGCATCACGCCAGGGGCTGGCTATGAAACCTGCGCTGGAGCCCTCTTCACCGGTATCCTCTGCAGTCTGGCCAGCTACTTCTTTATCAGCCAAGTTAAAGGACGGCTTAGCTTTGACGACCCCCTGGATGCCTTTGGCTGCCATGGCATTTCCGGTATCGTTGGCTCTTTAACCGTCGGCCTCTTTGCCAGTCAAAAAGTTGACCCGGGGATTTCCACTAGCGGCCTTTTCTACGGAGGCAGCTGGGAACTCTTAGGCAAGCAGGCAGCCGGCACCCTCTTCACCATCGTCTTTACTCTCTTGATGGTCAGCTTAATTACAGCCGTCTTGAAGCGCTTCATCAACATGCGGGTTTCCGCCCGTGATGAAGAAGTCGGCCTGGACCTCAGCGAGCACGGCGAATTCGCCGACTGCCAGATCAGCGCAAGCCAGGCCATCTTCGGCAAGTAGCAGCATTTTTTCTCAACATCCTATTCATCAAATCAAAAAGCTTTGGCCTTCTTGCCAAAGCTTTTTTGTCGAATATTGTATCTTTTTTCCCCTGCCCTAATTAAACGAATACAACCGCTGCAGGATCAAGTAGGCCCCGCTGACCATCTGCCGCATAGGCAGGACGTCCCGGGAGACAAAATGGCCCACCAGGCGGCGTTTAAAGGACTTGTAGGTCTCCAGGTCATAAGTCTTCAGGAACTGCCAGAGCTCGTCCTTTTTGGCAATATACTCCTTCTTCTTGCCCCGGATCAAGATTACGCTAGTCACGCCTGTGACGGCCTCTAAGAAGTATTTCATGTATTTGGCGTAAGGCGCCCGCTTGTTGACCTGGGAGGCGTAGAAGACGATCAGCTGCTTGTTGATCAGGATCTGCTGGTCGATCTTTTTCAGCATCACCTTTTCGTTGACTGACTGGTCATCTCTGCCGATAAAGTAGTGGTAGAGGTTGACCGGCAGGTAGCGCATGGTCTGCACTTGCACCATCGGCTCAAAAACAAAGATATTGTCGTCATAAGACACCTTGGTCGGCAGGGTTACCTTGGCCCGGTCCAGGACTTTCCGGTTGTAGATGACGGAGTGGAGCATGAAGTACTGGCCCATCCGCAGCTTGACCTCATCCCAGGAGAAGGTCCGCCCGACTGGCAGATGCGGGAACTTGATCACCCGCTGGTGGCCGGCAGCTGGCTTGTCATAGACATAGTTGGCCAAAAAGAGGTCGACCTCTGGATTACTTTCCAGGTAATCCAGCACCTCTTTGTAGGCCTCCTGGTCCAGCCAGTCGTCGCTGTCGACGATCTTGACGTACTTGCCCTTGGCCAGTCTCAGGCCATTGTTGATGGCCCCGCCGTGGCCGGCATTTTCCTGGTGGACAACTTCCAGGTCCAAGTTTAAATTCTTAGCTTGATAGTCATCCAGCATCCGGCCGGTTTCATCAGTTGACCCGTCGTCAACCAAGATGATTTGCACCCGGTCACCGCCGGGCAAAAGGGAGTCGACGCAGCGGTTCAAGTATTCAGCTGAGTTATAGCAGGGAACGATGAGAGTTAGTAATTTTTCCACCTTGATACACTTCTTTCAGTTCGCTATTTGTCTCTACTAGTATAACAAGACTTTTTAAAGAAAGCCTTTTCCAAGACTAAAAAATTCTTAAGGTAAAATTAGAACAAAGAAAAAACTCCCCGCCAAAAGGCGAGGAGCTTAATTTGCTTAACTTAGGGAAAATTAGGCCATCAAAGCGATTGGGTCCAACTTGATCCCAGGGCCAAAGGTTGCGGCAACTGCGCAGCTCTTGATGTATTGACCCTTAGCTGAAGCTGGCTTTGCACGCAGGATAGCGTTTTGCAAAGCGCGGAAGTTTTCAGTCAATTGTTCTTCAGTGAATGAAACCTTGCCGATAGCAGTGTGGATTGAAGCTTGACGGTCGACACGGTATTCTACCTGACCAGCCTTAACATTTTGAACAGCCTTGGCAGTGTCCATAGTAACAGTGCCAGTCTTAGGGTTTGGCATCAAGCCCTTAGGCCCAAGCACACGACCCAAACGACCAACCTTAGCCATCATCATTGGAGTAGCGATGACAACGTCGAAGTCCAGGTAACCGTTTTGAACCTTTTCTACCAGGTCGTCTGCGCCGACTTCGTCAGCACCGGCAGCCTTGGCTGCTTCAGCTTGTGGGCCTTCAGCAAATACGATAACCTTAACAGACTTACCAGTACCGTTTGGCAAAACGATTGAGCCACGGATTTGTTGGTCAGCTTGCTTAGGGTCAACGCTCAAGTTGTAAGATACTTCTACGGAAGCGTCAAAGTTAGCGTATGAAGTTTCTTTAACCAGCTTGATAGCGTCTTCTACTGAGTACAACTTGTTGCTGTCAACCTTCTTGGCAGCTTCTACGTATTTCTTACCATGCTTTGGCATGAAAAATCCTCCTTGTATGTGTGGTCAAACGAGCTTTCTCTTTGCTCTCCCACCTGACTTGTTAATTGGTAAAAATTAACAAATTAGTCCTTCACTTCGATACCCATACTTCTAGCAGTACCTTCAACCATGCGCATAGCAGCTTCGATTGAGGCAGCGTTAAGGTCCTTCATCTTAGTTTCAGCGATTTCCTTAACTTGAGCAGTGGTTACTGAACCAACCTTGTTCTTGTTAGGTTCGCCTGAAGCCTTTTGAATGCCAGCAGCTTGCTTCAACAAGACTGGTGCTGGAGGAGTCTTAGTTACGAAGTCGAATGAACGGTCTTCGTAAACAGTGATGACTACAGGGATGATCATGCCCTTTTGGTCAGCAGTACGAGCATTGAAGTCCTTAGTAAAGCCAACAATGTTGATACCTGCTTGACCCAAAGCAGGACCTACTGGAGGTGCAGGGGTTGCAGCGCCAGCTGGAATTTGTAACTTAACAACGTTAATAACTTTCTTTGCCACGGTCAAAACCTCCTTGATTCCGTGATGTGGTTAAAATGGAGAGTTTCCACACTCTCCTCCCACAGTAGTAAAGTACGTTTAATATAGTACTCTGGAAACCGGCAGAATGCAAGACTTTTTTATGTTTAATCTTCCATTTTCTTGACTTGGTCAAAGTCCAGTTCAGCCGTGGTAGCGTGGCCAAACATGTCGATGGTCAAGAAGATCTTTTTCTTGTCGTCCTGGATTTCAGCGATCTTGCCGACCATGCCGTTGAAGGCACCTTCGGTGATCATGACGCTTTCGCCAACTTCGTAGTCGTAGTCAACCTTTTCAGTTGCTTCGCCTTCTTGCATCTGCAGGATAGCTCTGACTTCTTCCTCGTAAAGCGGGGAAGGCTTGGAACCACCGCCGTGGCTGCCAACGAAACCTGTAACGTTAGGAGTGTTCCGGACAACAAACCAGCTTTCGTCAGTCATGACCATTTCAACCAAAACGTAACCAGGGAAGACCTTTTCGTTAACTTCTTCCTTCTTGCCGCGCACGTCTTCGATCTTTGGTTCTTGCGGAACGACAACCCGGAAGATGTAGTCCTGCATCCCCAGTGACTGGGCCCGGGACAGCAAGTCGGATCTAACCTTGTCTTCAAAACCAGAGTAAGTGTGTAGGACGTACCATTGCTTCTTGGCGGATTCTACCATAATTTCTTTAATCTCCTTTTTGGCAAACAAAAAAACCTCGCTAAAGAGGTTTTTCTTGAAACTAGCATGATTATAACATACTTTGTCGCTCTTACAGAACTAATTGAATCAATTTTGCAAAGGCCCAATCCAAAGAGCCCAAGAAAATCGCGTAAAACAGAGAAGTTACGACCACGTTTGCCGTGTCGCGCCGGTTTTCCTTAGCACTTGGCCAATGAACCAGTTTCATTTCCTGACCAACGCTCTTAAAAAACTTAATCATCCCTGTCTACCTCGTTTCCTTGTGCAAAGTCTTCTTGCCGCAGTGCTTGCAGAACTTGTTCAGTTCCAAACGCTTGGTGCGGTTGCTGTTTGCAGTGATTGAGTAGTTCCGTGACCCGCAAACGCTGCAGGCCAAAGCTGCTTTCTTTACTGCCATAATATCACCTTCAAACTTCATTTGATTTTAGCAAAAATCCGCCCTAAAAGCAACTATTATATGACTGACTTTGCCGGGCTTTATTTTCACATCTTAAGCGGCCCCTGTGTCATAATGGAACTAGCAAAAACGCAGTTTACAAGATTGCCGGTTAGCCGGCCATGAGGTGAAGAAATGAATCAACACCCTGAATACCTGCTCAACAAGATCAAGTCACCAGCTGACATTAAGGTCTTGGATCTGGAAGAAATGAAGCAGCTGTCTTCAGAAATCCGCCACTTGATTATCGAGAAAGACGCGGCGGTTGGCGGCCACCTGAGTCCTGACCTGGGGATCGTGGAACTGACCATCGCCTACCACTATGTCTTTGACGCCCCCGGCGACAAAATCATCTGGGACGTCCTCCCACCAGACCTACCCCCACAAGATGCTGACGGGCCGGGCTTATGCCTGGCTGGACCCGGAAGCCTACGGCAAGGTGACTCCTTACACTAATCCCGATGAAAGTCCCTATGACTACTACGCGGTTGGCCACACTTCTACCTCTATCTCTTTAGCCGCCGGCATGGCCAAGGCCCGGGACCTCTTAGGCGGCAGCGAGCGGATCATGGCCATCATCGGCAACGGCTCCTTAACCGGCGGGATGGCCTATGAAGGCTTAAATAACGCCGCGCTGGAAAAGGGCAACCTGGTCATCGTCATCAATGACAACCAGTGGTCGGCGGCTTGACCACGGCCCTAAAGAAGCTGAGAGACAGCCAGGGGCAGGATCCGGAAAATCCTTTTAAGGCCTTTGGCTTTGATTACCGCTATGTCGCTGATGGAAATGACCTGGAAAGCATGATTAATGCCTTCAGTGAAATCCGCTATGTCGACCACCCCCTGGTTTTGCACATCAATACCTTAAAGGGCAAGGGTTATCAGCCAGCTATTGAGGATGAAGAAAAGCACCACTGGGTCCGCCCCTTCAACTTAAGCGATGATTCGTCAAAGAGCATTACTGAGGGCTCGACCCCAGCGGAAATTGCCATTAAGACCGTGGCTAGCGCTATTGACGGGGGCCAGGAAAACATCATGGCGATCACTGCCGTTATCCCTGGCGTCTTTGGCCTTGACACCTTTAAAGAGTCTTACCCGGACCACTACCTGGACGTCGGGATCGCCGAGCAGGATTCCGTGGCCTTCGCGGCGGGCTTTGCCAAGGCCGGCGGCCAGCCAGTCCTTTTTGAAAACTCCACCTTTCCTGCAGCGGGCCTTTGACCAGCTCAGCCATGACGTGGCGGCTAACAATTTGCCAGTCGTCATGATCGTGGCTGGCGGCGGGATCCAGGCCAACTCCAAGACCCACGTGGGCGTCTTTGACCAGGTCATGGTCAGCAACCTGCCTAACTGGAAGTACCTGGCCCCGACCAGCTTGACTGAAGAAGCGGCCATGATCAACTGGGTCTTGAAGCAAAAAGACGGCCCTGTAGCTATCAAGCTGCCAGTCCGGCCAGTTCCAGCCGGCGGGGCTGTGCTTGAAGGCTACCGGCACATCCACTACCAAAAGCGGCGGGCCGGCAAGAAGATCGCCATCCTGGCTTTAGGCGACATGCAGGAATTAGGCAGCCAAGTGGCAGAAGAACTTAATGCTGCCCTCTACAATCCTTTGTCAGCTAACATCCTGGATACTGACTGCCTGGACCACTTAGCCTGGCACTACCAGGCTGTAATTACTTTGGAAAACAATATTCTGGACGGGGGCTTCGGGCAAAAGGTGGCCGGCTACCTGGCTGACCGACCGGTTTTGGTCAAAGCTTTTGGCGAAAAGCGGGAATACACCGACGTTGACCAAAGCTATGACCAGATCCTGGTCCGCAACCAATTGACGGCTGAGCAAATCGTTGCCAGCGTCAAGCAATTATTTAACTAAGAAGCAGATATAAGCAAAAAGCTGATCACGCAAGGTGACCAGCTTTTTCTGTACTATCATATTTCTTTTTATTCTCTTGTTTCCTTTTTACTATTTAACTCATTACTTGTCATGAGCAAGTAAATATTGCCGAACCGCCTGGGCGGTTGCCTGCTGCTGGGCCTTTCTGGAGATGGTTGCCTGCCCGTCCCCTTTTTGCAGGCCGTAATTGCCAAACTGGGCATGGTTGACGCCCTTGATGACTTGCTTAGTATAGTCATTTGGCAGATACTGGGGATTCTTTTGCAGCATCTTCGCGTTCCCGTCTTTTGACCCATAGATGCTGAGCACGGAAAAATTAGCCGCGTGCAGGTCCTTGGTTGGGTAGCCGGCCAGCATGATCAAGCCCCCGGTAGTCTTTCAAGTGGTCCGCGCTATACATAGCCGCCATGGCCGCCCCCAGCGAGTGGCCCGACATGTACCAGTTTTGGTAGTGGTAGCTGGCCCGAATCTTGTCTGCCTTGTTGAGGCCGAAGAAGGCCATGTGCAGGGGCATGGCGACTAAGAAAACATCCGCCTCCTGGCTGGCGATCTGCTTTAAGAGGGGCGCGTAGGCGGTAGTTTCCACTTTCGCTCCCGGGTAAAAAATAATGGCATTCTTCTTTGCAGGCCCATCAAACAGGTAGCCCTCAGCTGTCTGCTTGACCTTGACTGTCCGACTGCTCTTCATCGCCTGCTGGGCCGTCTTGTCAGCATGATAGTAATTGCCAAAATACAGACCAAAGGCAAGCAGCAAGGCGGCTAAAATCACCGCCAGAGCCAGCAGCCCTTTTTGCTTCTTGGCCATCTTATTCTTTTTTTCTTTTGCTTTTTCTTCTGTTTCTCCGTTTTTTCTTGTTTCTTTTCCAAATTTCCAAATTTCTCCTTGTCAGATTTATAGCCAGATTATTATTTTAACAGAAAAAAACGGCGGCTCGCTTGAGCCGCCGTTTTTCGCCCCTTCCCCTCCCTTATGGGAGACAAGAGGTCAGGAATGTAGGTAAAAATTATTTCTTAAGGTTCTCGTTGACAAATGCGATGATCTTGTCGTCAGAGTCGCTCATGAATGGAAGCATGGCTTCCTCAGTCTTGTCGGTGTTGTGGCCGTTTGACTCCATGAAGTAGTCCCAAAGGGCATCTCTTACAGGGGTGTCTGAGTCACTCCAATCAAAAACTTCTTTCATTGAACGATCCAGAAGAGCAGTCTTAACAATTTCTGACATTTTTGATTACCTCCTAAATAATCTTTTCATCCTACAACTATATTATAGTCCCATTTGGCTAAAATGTTTACGCACCTATCCGCAATTTTAGCTTGATTTTTTCCTTCACCCGGTATTTGGCCCGTCTGAGCCCCATCTCATTTACCTGGTACTGGCGCTTGATCTCCCCGGCCTGCTTATAGCCCAGTTCCAAAAGCAATTCTTCCAATTCCAGCATGCTCAAGGACTCAACCAAATCCTGCCAGTCCAAAACAGGCGCCGGCGGACTCGCGATCAAGCAGGAAGCCTGCTCAAGTTCGGTAGCCACATCTTCCCAATAGACCTGGTCACTGGCGGCCAGGCGCTTTTTCCGCTTGCCCCGTCTGATCAAGTTGATGGCCCGGTTGTGCAGGCTGACTTTATAAAAGCCGACAAAAGGCTTTCCTTGCTTTAAGTCAAAGCGCTTGGCAGTCTTATAGCAGAGGATCAAGGCCTCCTGCTCCCAGTCCTGGTTGTCATATAGCTCCACAAAATACTGCTTGATGGTGCCGCCGATCACAGGCAGGCAGCTGTAATACAGTTCTTTAAGGGCCTGCTCATCGTCATCTTTTTGAATCCGGCTGATCAGCAGGCGCTCTCTTTCCTTTGTCAATCCCATTATAAAAAAGCCTTTCATTCTGTTTGCCCACAGAATAAAGGACTTTTTACCTTGACAGAATCGAACCATTGTTTGATTCAATCACTTTTCTTGAACTGTAAACGATTTGCTTTACAAAGGGTGGCGGCTGTTAAAGGCCTGGTAGAGCAAGACCCCGGTTGCTACTGAAGCATTCAGGGATTGGACGTGGCCAATCATCGGGATGGTCAAAGTCTGGTCCATTTGCTTAAGAAGAAGCGGGGAGATCCCCTTGCCTTCATTACCGATAACTAAAACGGTCTTGCCATTGGCATTCCACTTCCGGTAGTCATCGCCTTCCATGGCCGTCCCGAAGATCCAGTAACCCCGGTCCTTCAAGGCCTGGCAGGTTTGAACCAGGTTGTTCACCCGGGCAACTGGCACGTGGTCGATGGCCCCGGTTGAGGTCTTCGCCACCACGCTGGTCAGGCCGCTGGCCCGGCGCTTAGGGATGATCACCCCGCTGACCCCGGTCGCGTCGGCGCTGCGGAGGATGGAGCCCAGGTTGTGGGGGTCTTCAATATTGTCCAGCATGAGCAAAAGGGGGGCCTCTTCTTGGTCCAGTTTGTCCAAGAGCTGGTCAAAGTCGGCGTATTCAAAAGAAGCGACAGCCAAAACCAGGCCCTGGTGGTTTTCCCCGCCAGTCAGCTTGTCCAGCTTGTTTTTCGGCACCCGCTGGATGATCAAATGCTTCTTTTTAGCATAGCGGTAGACTTCTCTGGCAAAGTCCTCCTGAACCCCTTCAGCCAGGAAGACCTTGTTGATCTTTTCGCTGTCCTGGGTTTTCAAAAAGTCGATTCCGGCATGACGGCCGAAGACAAAATCATTGTTAGTTGAAGACATATTCCCTTGTCCCTTCACTTTCCACCTCATCAATGCACCAGGCAATCAATTCCTTGACCCTGCCTTCTTCACCGGCCAGGTCCAGGTAGCCAAAGACTGCTTCAAAGCCAGTTGACATTTCATACGTGGCCAGGCTGGTGTTCTTGGCCTTGGTATGGGTCTTGGCATTTCTGCCCCGCCGGTAGGCTGTTTCTTCTTCTTCAGTCAAAAAGCCGGTGTCCAGCATTTTAGCAATCAGGCCCGCCTGGGCCTTGGCTGAGACATAGTGGGTTGCTGCTCTTTGCAAGTTCTGCGGCTTCAGCATCCCGCCCTTGATCAAGTGCCGGCGGATGGCGGCTTCATAGATCCCATCGCCCAAGTAGGCCAGAGTCTGCCCGCTCAAGGTGTTGGGATCAATCTTTTTTTCAGTTAACTTCTGTGCTTTATTCACGGCTCCACCTGGTTCCTTGCGGGGTATCCTTGAGGACTACCCCCATTTCCTTAAGCTGGTCGCGGAGTTCGTCACTCTTGGCCCAGTCCTTGTTCTTTCTGGCTTCCGTCCGCTGGGCAACCAATTCTTCGATTACAGCGTCATCATCACCGGCTTCCTTAGCCAGGAGCTTGTCAACATCCAGGCCAAAGACGCTGAGCCAGGCAGCTAATTTTTTAGCAAAAAGCCGCAGACTTTCCTTGTCGGCTTTTTCAGCATTGGCGTTGGAGTTGACGGCTGGCAGGGCTTCGTAGATGGCGGTCAATGCATTTTGCACGTTGAAGTCATCGTCCATGGCGGCTTCAAACTTGGCCGTGGTTTCAGTGACCAGCTTGGCCAGATCCGGGTCCGGCAAGCCTTCAGTCGCGTCAGCCAGGCGGTAGTTGATCCCTTCCAGGGTGTTCTTGAAGCGGCCCAGAATGTTAGCGGCCTGCTCCAGGTTTTCTTCCGAGTAGTTGATCTGGCTTCTGTACTGGACGCTGGCCATGAAGAAGCGGAGAACCTGGGGATCAACGTTTTTTAAGATATCGTGGACGGTCACGCAATTGTGCAGGGACTTGGACATTTTTTCCTCATCCTTGCCCACGGTCACGAATCCGTTGTGCAGCCAGTAGTTGACGAACTTCTTGCCCGTCTTGGCTTCACTTTGGGCGATTTCGTTTTCGTGGTGGGGGAATTCCAGGTCCTGCCCGCCCCCATGGATGTCCAGGGTATCACCTAAGTACTTGGTTGACATGACTGAGCATTCAATGTGCCAGCCCGGCCGGCCCTTACCCCATGGGGAGTCCCAGGCGATTTCGTCTGCAGCCTTCTGCCCCTTCCAGAGGGCAAAGTCGATTGGGTCTTCCTTGCGGCCTTGTTCTTCATCGTTTACGTGCTGGGAGGCCCCTTCTTCCAGCTGGTCGATGTTTTGGTCGCTCAAGTGCCCGTAGTCAGCGAACTTTTTAGTCCGGTAGTAGACGTCCCCGTCGGCTTCATAAGCGTAGCCCTTGTCGATCAAGGTTTGGATGAAGTCGATGATGGCCGGGATTTCGTGGGTTGCCCGCGGGTGCAGAGTCGCTTCTTCGATGTTTAAGGCCCGGGTGTCTTCCAGGAAGGCCTGGATGTAGCGTTCGGCTAATTCCGGCACGGTCGTGCCTTCGGCTCCAGCTTCGTTGATCATCTTATCATCGACGTCAGTAAAGTTGGAAACGTAGTTGACCTTGTAGCCCTTGTATTCAAAGTAGCGGCGGATGGTGTCAAAAGCGATGGCGCTTCTGGCGTTGCCGATGTGGATGTAGTTGTAGACCGTCGGCCCGCAGACGTACATGCTGACCTGGCCGGGAACCAGGGGTTTGAATTCTTCTTTCTGCCTAGTTAAAGTGTTGAAAAGCTTCACGATATTTTCCTGCTTTCTTTAAGAAGTTTTCCTTACCTGCAATAATTCAGTACTTAACACTCTACATTTTAACAAACAATCACCGCCCGTGGTAAAATCTGAGGAAACAGAGAGAAACATAAAAATAGAGAGAAGAGAAGAATGACTTTACTGACTGATTTAAAAAATTACCAACCCTTTAACGAGCAAGAAGCAGCCGACGTCAAAGAGATGATCTACCGGCTGGAGACCGGGGAAGAACTGTTCTTGCGGTCCAATTTGGCCGAGCACTTTACGGCTTCAGCCTGGGTCGTCAATCCGGCCCGGGACAAAGCCCTGATGGCCTACCACCGGATCTACGACTCCTGGGCCTGGCTGGGCGGACACGCGGACGGCGACCAGGACCTTTTGCACGTGGCTTTAAAAGAAGTCGAAGAAGAAAGCGGAGTTAAAGCAAATCCAGTCACGGACCAGATCTATTCTGTTGAGATTTTGACCGTGGACGGGCATGAGAAAAAAGGCAAATACGTCCCGTCACACTTGCACTTAAACGTTACCTACCTCCTGGAAGCAGACGATAGCTTGCCTATCCGGCCTAAAGAAAACGAAAACAAGGCTGTTGCCTGGTTTGGCTTGGATGAAGCCCTGGAAAAATCAACCGAACCCTGGCTTGTCGACCGGATCTACTCCAAGCTGAACGCCAAACTCAAGGATTATCCGGCTAGGTAAATAGAAAAAGCAAAAAAGAAAAAGTTTTTTTCAAAAAGCCGCTTGACAGAAGCCCATTTACGTCTTTAACCCCAAGCAGGATCACTGACCCGGTTACCGGCAAAGAATTCAGCAAGGAAGTCGTAACCAAGCAGACCAAGGCTATCCAGTCCGGGACTAAGGCCCAGGCTAAGGCTTACTACAAGAAGGCTTTGAAGGAGCTGGGCAAAAAGCAAATCACCATCAAGCTTTTAGGCGATGACACTGATGACGCCAAGAAGACCACGGAATTCATCCAAAGCGACCTGGAAAGCAGACTGGCCAAGCCGGTGCGACCGTTATCTCCGCTGGGGCCAACTACGGCCGCTTCTTTAAAAACGGGGTCGGCTACGGGCCTGCCTTCCCGGACAGCCTGGACACCGCCCACGCCATCGACGAATCCGTCAGCCTGGCTGAACTGGAAAAAAGCCTGGCCATCTACGCTGAAGCGATTTACGAATTAACCAAGTAGAATATGCAAAAAAAGACTTTTACCCAAAACAAGTAAAAGTCTTTTCTTATCTGCTTGCCTTCAGTTCCGCGCAGATCTGCTGGTGACGGTCCGCGTAGAGGCTGTTCTTCTCCCAGATAAAGGTGAAGTCATGGCGGATCTGGAAGTCCCGCAAACTCAACTTCCGCAGCTTTCCTGCCTTTAAAAGGTCACTAACGGCAGTCCGGTACAAGAAAGAGACCCCGCAATTGGCCAAAAGCAGCTGGGTGATCATCTGCATGTTGCCGACCTGGACATACTGCTTGAAGTCGCTCAGTTCCTGCCCCTGGGCGCCTAAGCTGTCCTCCAGGATCTTCCTGGTCCCTGAGCCCGGTTCCCTGACCAAAAGGCGCTGGTCAAAAAGGTCAGCGATCTGGTCCGGCTCCTTGGCAAAAAACAAATCTGGCGAGCAGACGGCGATGAAGTCCTCGCTTTGGTAGCGCAGGCTGGCATAACCCCTGGCCGGGTCCCCTTCTACCAGGGCAAAGTCCAGGTCCCCCTCATCCAATTTCTTGGTCAAAAACTGGGTGTTGCCGCAGACTACTTCCACATTGGTTTGGGGATGATCTTTTAAAAAGCGGCTGAGGGGCCTGGCTAAGGCGTATTCCCCAATGGTCATGGTTACCCCAAAGCGGACCGGCGGCAGGTCAGCCTGCTTGATTTCCGCTTTAAGCAGGCGCTCATCGCTCTGCATCTGCCGCATGGCCTGGCGGAGTTTCTCTCCCGCCGCGGTCAAGGTCAGTTTCTTGCCCTGGTATCTGAAAAGCTTGACCTGGTACTCCTTCTCCAAATAGCGGATGTGCTGGGACACCGCCGGCTGGGTCACATGCAGGCGGTCAGCCGCCCGGGTGAAGTTCATAGTCTCACAGACCGTTAAAAATGTTTTGACGCGAAAATCCAGCATCCCCTGCCTCCTTACAATAATTCTGCTTTATCGACAGATAATAATCTATAATTTTATTTTCTACAACTTTACTACTATACTAAAGCATGTTCAAAAAATATCTGGAGGCAAAAAAGAAATGAATTGGATTAAAAAGAATCTGCCCGGCATCCTGGTCTGCCTGGCCATCGCTACCCCCGCCTGGCTCTTAGGCAAGGCCCTGCCAGTCATCGGAGGCGCCGTCTTCGCCATCTTGTTTGGCATGGTCATCACCCTCTTTTGGGAAGAGAAGAAAGGCTCGGCCAGCGGGATCAAGTGGACGTCCAAGTATATCCTGCAAACGGCCGTCGTTCTCCTGGGCTTTGGGATGGACCTGCAGGTGGTCGTCAAGACCGGCCGCCAGTCCCTGCCGATTATCATCTGCACCATCTCGACCTCGCTCTTGCTCGCCTGGCTTTTGCACAAGTCTTTAAACATCCCCGGCAAGATCTCAACATTGATCGGGGTCGGCTCATCCATCTGCGGGGGCAGCGCCGTCGCCGCTACCGCCCCGGTTATCGACGCTGACGACGACGAAGTAGCCCAGGCCATCTCTGTTATCTTCTTTTTCAACGTCCTGGCCGCCATCCTCTTCCCCATCTTTGGCAAGCTCCTGGGCTTTGACCAGACTTCGGGGACTTCTTTCGGCATCTTTGCCGGGACAGCCATCAACGACACTTCTTCCGTCACTGCCGCGGCGGCAACCTGGGACAGCATGTTCCATTTGGGCAGCCAGACCCTGGACAAGGCCGTGACCGTCAAATTAACCAGAACCCTGGCCATCATCCCTATCACCCTGGCCTTAGGCTATTTCACTGCCAAAAAGGAGCAAAGGGGCAACAGCTTCAGCTTGAAGCGGGCCTTTCCTGCCTTCATCCTCTACTTTGTCCTGGCTTCCTTAATCACAACCTTTGCCCTGGCTAATGGAGTAAATGCCAATGTCTTCCTGCCTTTAAAGGAGCTGAGCAAGTTCATGATCGTCATGGCCATGGCCGCGATCGGCCTTAACTCCAACATCGTCAAGCTGGTCAAGTCCGGGGCCAAGCCCCTCCTGCTCGGCGCTTCCTGCTGGGCCGGGATCACAGCCGTCAGCCTGCTTTTGCAGCGGCTAATGGGGCTCTGGTAAAAAATAAAGCAAACAATTTAATCGATTGCATCAAAAAAGGCTTTTACCGCTCGGTAAAAGCCTTTTCCTTTGTTCTTTAGCTTATTCGATGCCAGCTTCGCTAAGCTGCTTCAAGGTCAAGTCCAGGTGCTTCATGACCGTGTCCTTGCCCATCAATTCCATAGCTTCGCCGATGCCAGGGCCGACCATTGACCGGGTAGTAGCGATCCGGATTGGCATGAAGAGCTTGCGGCCCTTGATGCCAGTTTCCCTCCGGGTAGCCATGATGGCGCCCATGATCTTCTTGGCCGTGAAATTGTCCAGCTTGTCCAGTTGCTTCTTGAATTCTTCAATCGCCGGACGAGCTTCGTCCTTCTTGATTTCTTCCACTTCTTCGTCAGTCAGGTATTTTGCTTCAGTGAAGAAGATCTTGCTTAAGTCAACGATTTGCTTGGTGTAGGACATTTGGTTGGCGTACATGTTCACCAATTGTCTTACCCATTCCATCTTGCCTGGAGCCGGGTTAGCTTCAACCAGGCCAGCTTCTTGCAGGTTGTGCAGGGCCAGGTCCAAAAGTTCATCTCTGTCAGCCGTCTTCATGTACTGGTTGTTGACCCAGTCCAGCTTCTTTTGGTCAAAGGCAGCTGGGGACTTGGACAGACGGGCCGGGTCAAATTGCTTGATGAATTCGCGCTTGGAGAAGATTTCGCTTTCGCCAACTGGCGACCAGCCCAACAAAGTGATGAAGTTGAACATGGCTTCTGGCAGGAAACCAAGTTCTCTGTATTGTTCGATGAACTGCAGGACTGATTCGTCACGCTTGGACAGCTTCTTGCCAGTAGCGGAGTTGATGATCAAAGTCATGTGGCCGAAGACTGGAGCTTCCCAGCCCAAAGCTTCGTAAACGCAAAGCTGCTTTGGCGTGTTAGAGATGTGGTCATCGCCCCGGAGCACGTGGCTGATTTCCATCAAGTGGTCGTCGATAACGACGGCAAAGTTGTAAGTTGGCATCCCGTCGCGCTTTTGGATGACGAAGTCACCGCCGATAGTGTCGGATTCAAAGCTCAAGTGGCCCTTAACGATGTCGTCCCATTCGTAAGTCACGCCTTCTGGAATGTGAATGCGGACAACTGGCTTCAAGCCCTTGGCCCGGGCTTCGTCTTGTGCCTGCTTGATTTCGTCAGTAGTCATGCCTTCGTATTCGTAGACATAGTGAGGAGCAATCCCCATGGCCCGCTGTTCTTCACGCTGGGCTTCCAGTTCTTCTTCAGTTTTAAAGGAGTAGTAAGCCTTGCCTTCTTCAAGCAGCTGGTCGATGTACTTTTGGTAGATGTCCTTTCTTTCGGACTGCTTGTAAGGGCCGTAGTCCCCACCGATGTCCGGACCTTCATCCCAGTCGATCCCCAGCCAGTGCAGGTTTTCGATTTGAGATTCAGCCCCGCCTTCAACGTTTCTGGCGGTGTCAGTGTCTTCGATTCTCAGAACCAAAGTCCCCTTGTTGTGACGTGCAAACAGATAGTTAAACAGAGCAGTACGCGCGTTACCAATGTGCAAGTGGCCAGTTGGTGACGGAGCGTATCTCACGCGGATTTTCTTATTAGCCAAAATTATGCCTCTTTCTTACTATTCTTCAACTTATTAAGTTTACTAGCAATAAGGAAAAAATTCAATCTTTGACCGGCAAATCGGGCCCTGACGGCAAGCAAAAATGCCCACCAAAGGCAGGCATTTGTCACTTAATCTGATTTGCTTATTTCTTGGCTTCAACGCCCTTCTTGAAGACGAAGTATTCCGCTGCCCACAAGATGGCCACGTAGACCAGCTCAGCCAGCATGTAGAGCCAGCTGATGACCGGCAAGCCCAGGTCGGTCTGGGACGTGTGCAGGCCAGTATTGTCAATGACAAAGTTGAAGTCAAAGCCGGAATTTGAAACCATGCGAATGACCGCGCCCAAGATGCTGCTGCTGCCCCAGGACAAAAGAGCCAGCAGGGCCAGCAGGATAACTGCCTTGGCAAACTTGCTCGTTCTCCCCTTCAAAGGCAGGAAGTCCCCCAAAACGCTGGCTGATTCAGTGATGAGCAGCCAGAAGCAGATGCCGCCGGCAAAGCTGACTAGGGCAAACAAGGTCATGTAGAGCAGCCAGTTGCTGATGCTGGAGACGTAAGGCTGGAAAGTCGCCACTGCTTGCGAATCGATCCGCATCTCCCCGCCAAAAATAAATGGCAGCAAGGTAATTACGAAGATCAAGAGGTTAGCTAAGGCAAAGATAACCGCGGTCACAAGCCCGGTCAGCACGTTAGCAGTCAGGAAGTTGCCCGCTGTTACCGGCACTTGCCGCCAGGTCTGGGACCGGTTGACCCGGTAGGCCGCCATAATCACGTCAATTTGGTACCAGATGCCCACGTAGAAGATCACCGTCGCGGCAATCCCGATGCCAATACCAGCTGAGTCGCTGCCAAAGCCGTATCTGATACCAAAGTACAAGCTGATCAAGAGGATAAAAATTGCCTCGATGCCCAGGCTGAGCCAAGTCGTCCGGCTCTTTTCCTTGAACATGGCCGCGAAAGTCTGCTTAAAACCGATCATTACTCTTCCCCCTCGTAAAATCCTTCATACCACTCTTCGATGCTTTCTTGTTCAGCCCGGATTTCTTCAGCACTGCGCTGCTCTAAAACTGAGTGCTTCTTGATCAAAACGACCTCATCGATCACCGGAGCGATTTCATCTAAGACGTGGTCGCTGATGACCAGGGTCGCCTCTTCCGGCTTCCAAAGCAGCATGGACTTGATAATCTTCTTCCGGCTCATGGCATCAACCCCGCTGAAAGGTTCATCCAGCAGGTAGAGCTTGGCCTTGCGGGAGAAGACCAGGGCGATGATTAATTTCTCCTTCATCCCCTTGACAGGCTGCCCAGTCTTTCATCTTCATTCAAGTTCATGAATTCCAGAATATCAGCAAACTGCTTGTCGTCAAAGTCCGGGTAGACCAGGCGGTAAAAGTCAGCGACATCCTTGATCTTTCTGGAGTCGCGGAAGGCGGACAGGCTGTCGGTCATGGCGATGTACTGCTTGCGGCGGTCTTCATCTGCTTCCCCGCATACCTCCACGCTGCCCTTGTACTGCTTGGCCAGGCCCGTGATCACCCGCATCAAGCTGGTCTTGCCGGCCCCGTTGGCCCCGACTAAGGCCACGATCTTGCCGGCCTCCAAAGTCAAGTTGACTCTCTCCAAAATCGTCTTTGAATTCTTGTGGTAGCTTAAATCCTTAATCTCCAAAGTCTTCATGCTATTCCTCCCTTGTGTCATCTAAGTAGCTGGCCAATAGTCCAGTCAGGTTTTCCCTTTCGACTCCGAGTTTCTCCATCCGGCTGACGAAAGCCGCCAGCTCCTGCTTCAGCAATTTGCTCTTCATTTCCTCCAGGCGGCCTTCATCGGTCGTAACGAAGTTGCCTTCGCCGCGTTTGGTAAAAATATAGCCCTTGGCCGTCATTTCTCTAAGTGCCCGCTGGACTGTATTGGCGTTGACCGTCAATTCAAGTGCCAGGGCTCTGACTGAAGGCAGCTTCTCGCCGGCCTGCAGCTTGCCCTGGGCGATCTGCAAGTAGATATAGTCTTCAATCTGCAAGTAGATCGGCAGGTTGTCTTTGAATTTCATTTGCACACCCCTTCGCTGTACTAGTTATCTAATACACTGTTAGTGTATAACGGATCGGGCCTTTCGTCAAGGCAAAAACAGAGAAAAAGCAAAATTTTCTTCCTTTATCTTTGGCCTAGTTCTGTCCTATGCTTTTTACTTACCTTTCTTCCTTTAAACAATCAGCCAATTCTGCTTTTAAGTTAGACTAGACTGCTTTCTAGCAAATGAACTAATACGTAAAGTTACCTTTAATTACTTTACGGTTGCTTTAACAACGGTTTCAGTCCCGTCTCATCTTCAGCTCATAGTCGCAAGAGAGCGTTTCTTTTTGTGTATTTTCTGTTAGACTACAATTAGTGTTTGATAATGTAAACTTTTCAAGGAGGACAACATGAAAAAGACTAAGACTTTTTTTGGCTGCCGGCAGCATCTTGACGGCTGCATTAGCCTTGACGGCCTGCGGCGGCAACTCTTCATCTTCTTCATCTAACAAAAAAGAACTGAACTGGGAAGAATCAGCTGAAATTCCGACTATGGACCTGTCCAAGGCCACTGACTCTGCCAGCTTTACCCAATTGATCAACACCATGGAAGGTTTGTACCGGGCAAAGTCTGACGGCAGCCAGGAAAAGGCCATGGCAACCAGCGAAAAGGTATCCAAGGACGGGAAGACCTACATCTTTACTCTCCGTAAGGACAACAAGTGGTCAAACGGTGACCCGGTAACCGCGCAAGACTTCGTCTACTCATGGCGTAGAACGGTTGACCCAAAGACTGCTTCTCAATACGCTTACCTGTTTGAAGGCATCAAGAACGCCACCGACATCCAAAACGGCAAGAAGAAGCCGGAAACTTTGGGGATTAAGGCCGTTGGCAAGTACAAGCTGGTCGTAACCCTGGATCGGCGGATTTCTTACTTCAACAACCTGATGGCCTTCGGGAGCTTCTTCCCGCAAAACGAAAAGGCAGTCAAGAAGCACGGCTCCAAGTACGGTACTGCCTCCAAGTACATGGTCTACAACGGGCCGTACGTCATGAGCGGCTGGAGCGGGTCAAACCTGTCCTGGAAGCTCAAAAAGAACCCATACTACTGGGACAAGAAGAAGGTCAAGCTGGTCGCGGTCAACTACAGCGTGCAAAAGACCCCGTCAACTGCTTACAACCTCTACCAGTCAAACAAGCTTGATGCTGTTTCCCTGGACGCTGAACAAAGCAAGCAGCTTAAGAGCGTGAAGGGTTATGCTCTCTACCCACGTGGGACTACCTTCTACATCCAATTCAACCAGGCTAAGAACAAGTACCTGCAAAACGCCAACATCCGCAAGGCCCTTTCCATGGCTATTAACCGGGAAAGCCTGACCAAGGTCCTGGGCGGCAGCAACACTGTTGCTCACACCTTCACTCCAGCCAAGCTGACCACGGTTAACGGCAAGGACTACACCAGCCTGATTTCCAAGAGTGACGAAGCTTACACTTACTACAACAAGAAGGAAGCCCAAAAGTACCTTAAGCAAGGTATGAAGGAACTTGGCGTTTCCAAGCTGAGCTTCAAGTTTTTGTCAGACGACACCGATGGTGCCAAGAAGTCTACTGAAGCAATGCAATCAAACATCCAGGAAACTCTGCCGCAAGTCTCCATCGCCACCCAGAACCTGCCATTCAAGACCCGTCTGGCTAGAACTAACGCGCTTAACTTCGACATGGTTGTTTCTGACTGGGGTGCCGACTTCAACGACCCGATCTCCTTCTTGGACTTGCTGACTTCCACCAACGCCCAAAACGGCGGCAAGTGGTCCAACAAGGAATACGACAAGCTGATCGCGGCTTCAACAGACTCTGAACGCTGGAGCGACATGTCCAAGGCTGAAGGCGTTCTGCTGAAGGACGTTGGTATTTCACCACTTTACTCAAGCACCAGTGCCTGGATCGTCCGTCCAGAAATCAAGGGCTTGGTAAACCTGCGCGACCACTGGGACTTCAAGTACGCTCACGTTAACTAGTGTCTGTCCCTAGAGGCTAACAAACTGAATCACTGAAAATAGCAGACCGCCTGGTCTGCTATTTTTGTACTTTTAACTGTTTTTCTTGCTACAATTGAACTGATTTTTAAAGAGATTGGTGGCAGGCAAAAAATGTACAAAGTAGTCCAGAAAGAAACTATCAAGGCGGACCGCTTCACGGTCATTCAAGAGAAGGTGGCCAAGGACGGGCAAATCGCCCCATATTCCTACGTTACGATCGGCTTCGGGATTTCCATCATCCCCTTCGTTGATGATGACCACGTCTTGCTCTTGAAGGAATACCGGCATCCCGTTGGCAGCTGGCAATATGAATTCCCCAGCGGCGGCATTGATGGGGGAGAAGAGCCCAGTCAGGCAGCCAGAAGAGAGCTGCTGGAAGAAACGGGCTATGAGGCCAGCGAGTTGACAGAACTCGGTTTCACCTACCCTTCTTTTGGCTCAACCAATGAGAAGATCACCCTTTTTGCCTGCCGGGCCACAAAAATGGCTCAGCCAAAAAGAGAGATTCTGGAAGAAATCAAGATGGAGATCGTCTCTGTCGACCAGCTGGAAGATTTGATCGTCAAGGGTGAATTTGCCCACGGGGCTGGCCAAGCAGCCTGGCTCAAGTGGCGGCTGCTTAATGAGAGAAGATAAGAAAAAGCAGGGAAGGCTATAAAATAGCCTTCCCTGCTTTTTAGCTGTATACTGCTGCTTTTTTCAGCCAGGCATCCAGCTCATTTAGTTTTTCTTCAACGGTCCTGCTGTCTTTTCCGCAAACGGAAATTGCCGCAAGGGCCTCTACGCTGCTTGCCGCGCCATTATAGGTCCGGCCAAGCTTAGCATATTGATAGTAGTCATAGACTTCCGGATTGGCTGCTAGCACGGCATCTGCAGCCGGCAATTTTTGTAAAATTCCCCGGCCAGGTTCAACCATCACAAAACCGCGAATCTCAGCTGACTTATACTCCTTGTCAAGGTCCACCTTATTCGGCAGGCCCAGATCCAGCTTCAGCAATTCTTGAATAGGACTAAAGCCCAGCCCTTGCTCAAGCTCTTGCAGAATCCGTCCTCCCCCCAATCTTGACCCGATCTCGCACAATTTTACCTCGCGGCCGTCGCAAAAGACTTCAAGATGAAAGAGATAGTTTTCCGGCGTATCCATTCCTTTGAGTAGGTCTGTCACGTAAGAGCGGATCAACTTCTGTTCTGCCGCAGTCGGGCTTATCTGCACGCTTCCAACTGATTTACCGTTTTTCACTTCTAGTGTATTGGCAAAATACTTAGAACTGATCAAGTAGACAAAATGGCCTTGCTTTACAAAACCATCCACGTGGTACAGGGGCCAGGGGATAAATTCTTCTGCCAAATAGCCACGAAGAATTTTATCAGCGGCCAGCCTTTCTAACTCAACATGATCATGAACTACAAAGGTATCCATCGACCCCATGCCGGCAATTGGCTTTAACACGAAGGGGAAGCCCAGCTTCTTTTCTGCCTCGATCAGATCAAACACGTTATCGACCGGCCAGTAACGGGGAACGGCTACGTGAGCTTGCTCAGCTGCCTTGACCATAGTTAATTTATTCCGGAATTCTTCCGCGCTCGTCAAGCTTTGCCCCAAGGTAACTTGGTATTTTTTCCGTAATTTTGCCGCAAAGATGATCTCTTCTTCAGAATAAGCATAAACGTAGTCGATCTGCTGGCCAAAAGTTTGACTGATCACGTAGTCAATATATTCTTCATTCCAGATCTTCAAAAAAACGAATTTGATGTTTTCTGGCAAAGTTTCTGGATAATTGTCACGGTGCCGTTCCATGGCAAAAATCAGATAAAGGTTATCCTTATCCCCGCTAATAGCATCGAAATAGTTAATATAGTTGTTGCTGATAGGGGCTAAAATTACAATCTTTTTCATCGGCAAACCTCATTAAAAGCCTTGTTGATTTTGGCGCTGACCATATCTGAAGCTGCTGCATCCTTGCTGGTATACTGGGCCAGAAAGAAGGCATCCCCGATAGATTCAGCTGCTTGCGACTGCACGCCTACAGGATGGTTTTGCTCGTAAGTGAAAAGATCTGGGATTTTTTCCTCTAAACTTTCCATCATCGTCTTTCCATTGGTCAGCTGAACATAAGAGCTTGAGCAGACCCGCGGCGAAAGAGGCTGCTCCCAATTAATCTCTTCTGCACGCCTTTCTTGCATTTTCCAATATTCTTCCAGAAGATCGACGCCAAAGGAATGCTTAACCAATTTTGGAATCTTCGCTCCGCCAAAACGCTTGCCAACCTCGGTAAAGACAAAGCTCTGGTCTTTGTCTTTCCAATTCTAAATAGGCTTCTGTTTTAGTTTCTGGAACAACGAAGGAAATTCCCTGACTAGGACGAATGCCGACCACCTTGGGATTGTAGGCCCAAATAAAGTATTTCATTGCTGGCTCACCTCCTTTTTTAAGGCTTCCGCGTATTGACCAGACCGATGTTCTATATTGTCTAAAACTTCTTTTTTAGACAATATTCCCCGTTTTAGCAATTCCAAATACGGCGACCCTATAATACGACCAGTGGTATTCTCTAGCAGTGCAATTAAAGTTGAAGCATTTTTTAAGCCGTCCATTGAACCAGTGTCCATCCAAACCAAAGAATACTTATGTCCGGCATTGATAAATTGCTTGTCCTTAACCATTAAGTTTATTGCTGAAACTATTTCGTATTCGTTTCTCTCGGATTTTGAGATCTTGTCAATATAGCTGAATACATCACTTTTGAAAATATAAAAGCCAGGAACCGCATTCTTTCTTGTAGGATCACTGCCTTTTTCAATAATATAATCTCCGTCAAAGTACGAAAAAGCGCGTGCATCTTTTACAGGAACTGTTATTGTCAACGATACACCACGTTCTTCAAATTCTTCTCGCAGATCGTTGAATATACTATTTGTCAAATCGACAAACAAGCAATCTCCCATGAAAAGTGCAAATGAGTCTGTGCCTACAAATTTTTCGGCTTTCTTGATGCTGGTCGCTGTGCCTTGAACGTCATCCTCTTGTTCGTCCACGAAAGTTAAATATTTCAGTAAAAGACTATCTGAAAACAACTTTTTGAACTGTCTGTTCATTTCTGGCGTACCGACAATACATATGTCAGTAATACCCATTGCAATCAAATTAGTTAGGTTGTAAAACACTGTCGGCTTATCGTAAATTTGGTGAAATATTTTGGAATATGCTTCCGTAGCAGGCCACATCCTCTTGCCAAACCCTGCAGCAATAATTACGCCCTTCACAGTTGGCTCACATCCTTAAAAATCGTATTCGCTGTGCCAGTTATGTAAATAGTCACCATAATACTCATCTGGCAATCCTAAGGAGCTCTGTGCTACTTCTCTAGTTAAGTTCTTTTTCTCAACAGTTTTTACTGCTGTCCGGTAATTTTTTTGTGTTGCCCGCAGATTATCAGTAAAAATAGTAAAAATATCAGCAGAATAATTTTCAGCTTTACCGATCTGCTCAACTACTGACACTAGCTCATCAACGTCATTGTTGACATAATAGACGTAGTAAAAATAGAGATGGCGTATCTTCCGCTTTACTTCACTATTAATTCCTTTGGCAGCTGGAAGAATCCCTAGAGACATGACTTTTAGCACGGTGCGAACATCATTAATAATCACATGTTGGTCTCTAGGTTCATTCGTATACTTAGCAACTGCAGCTTTCTCTGCTTGATATTTAGCCTCATCAAAGATGAAACGTTTATTTTCGGTCAACAAATCTATCAAGTTTTCTACCCAAATAGAATCACGTTGTGAAGAAAAGTCACTTGAGTCATAATCGACCAATACAAAATCAACAACATTGATTGACCCAGTCTTAAACTTCATTCGTACTTTAATGTAATAGTGCTTTCCTGGTATATCCAACTCGCAGAGATATCTATCAGTTGTTTCAACTTCATTGAGCTTAAATTCAAATTTTCGTTGTGCAAAGTAATCATGCAAGATGTCTGGGTAGGTAATTTCTACTTCAGAAGCAGCAATTTGTGGGAATAGCTTTTCACGGCTGACTTCAATTAGCTGCTTAATCAAATCGATTTGATTGGATCGTTGATATTTTTGTACAGCATACGTCGTCTGATAATTCAGATTTAAAGGGTTCGTCAAATCTAGCGCGTTCAGTTTTCTGATTGTTGGCTGATATTTTACAAAGATGCTAGACGCACTTTTTAAACTGTCAAAATTTTCTTCTGTATCTTGGAAAGGCGAAAAAGTGAAGTATCCATCATCTGACCGCAAAAGCGGACTTTCAGGTAATTCTTCAACCTGCCATTTTCCCCGCAACATCCGAACAAATTTTTTATAGGTACTCATATTATTACCTCACTGCTCCAAAGAACTGAACATTTTCGCCTCCATAATTGTTTGCTGCAATCAGTGACTTTATTCTGTCATGGTCAGAAGAATATTGGGCAATAAATCCTGCCATAAAGGCATCCCCCGCACCTGTTGAGTCTACACAGTTTACCTTATTTGCATCTACATGATATACATCATTCTGAGAAATCATAGTTGCTCCGCCTTCTCCCTCAGTGATGATCACATTTTTTATGCCACATTCATTAACTAACTCTTTACCACAATCGATCAAATTAGGTAATTGACACAATCTCTGTGCCTCCAAATTATTCATAAACAAAAAGTCTAATCCCGAATACTTACCCTCTTTGATAAATTGATACAAGTGATTCGTATCTCCCGTTGTTCCTGCATATATGGTATGACCATTACTGTGAGCTCTAGCAATCAGCGGCTTCAAATCCGTTTCAAGATGAGGCAATAGCCCTAGTCCACATACCGCTATATCGTTATCCAAATCTTCTAATTCCGCTGCGGATAATTCGAATTCATCATTCATCCCTTGATAACTTGTAACCGATCTTTCCCCGCTCTGATCTACCAATACCAAGGAAATCCCAGTTGACTCATGACAGTTTTGGTTCCAAGTCACATTGTTCTTAACAAAATCCTTTATGATCACACTGCCCGGATAATCATCCCCGATATAACCATAGAATTTTGTCTCAACTTCCTTTTGAGCCAAATTAATCGCTAAATTACAACCATTGCCACCAGCCGAGATTCTGGTGTTTGAAATACTACATCCATAAACGCTGTTCCTAATACATTAATCTTCATAATTCATCTCCATCTAACTCTATTCTGCCCGCCGCTGATTCAGCGAGTAAATTACACTGGCAAGGCCTGCTACAAACGTCAGCAATCCCCCCAGCCACAAATAATCCACGCTGTCCTTTACGTCCATGACAAATTGGAAGAAAAAGGAACCGAGCGGCACGAAAATGATTGCCGCCGTAAAGACAATACTGAATACCCGGCCAATGTAAGTCATATCCGCGTTGGTCTGAATGTAAGTCATAAACTGAATGTTAAAAAACGAAATGCAGAAATTAAACAGGGTAATACAGATTATCGGCCCAAAAAGCCAATGACTAACTTGATACAGCGAACTCATCACCGCCAGCGGCAGTCCAGCCACAGCAATAATCCAGAACAGATACTTGCTGGATAATTCCTTCTGAATCAAATTTGAAGCCACTGCTCCCAGCAAGCCACCAACTGATTCAGCCGTTAAAAAGAAAGCATAAGCATTCTTGCTAAAAGCAAAACTGGCAAAAGGAAGAATCAATTCGTAACCTGCCAAAATAAAGTTGATTACGCTGGCAAAAACAATTACGATCAAAATATTTTTTTCGGCCAGCAGATACTTAAATGCATCCTTGATCTTGCTAAAATTGCTTTGCTTAGCTACCGGCGGCTCTGTTTCAAACAAAATATCCAGCTGTCTGATCAACAAACCAGAAATAATAAAAGTAAGTCCGTCCAGCAGCAAAGCCATCTTACTGCCAACAAATTTAGCGATCACCATGGCAAGCACTGGGCCAGCAACCTTGATAGTTTGCTTGCAGCTTTCAAGCAAAGAATTGACCCGGCCAATCTGTTCTTTGCGGACAATTTCACCAAAGACCGCCTTATAGGCTGGATCTCTGATCGAAGACAGAACCGATAAAGCAATATTGACCGCAATAATTGCGTATAACAACCAAATAGAAGGAACAAACACTGCTAGCGCAATACACAAGAGACCGGCAATAATATCGCAAATCCAGATAATGCTCTTCCGCTGCTTCGTATCAGACAAGATTCCGCCTATAAAGTTGACGAAAACACTGACGATCGTTTCACTGCTCTGATACACTGCCATCCAAAAACTGCCGTTCCCCAGCTTCGATAGCCAGACAGAATTAACATAATCGAACAAGATGTCTCCAAGCTTGGAAATACCATTGCTTGTTACAAGCTTGACGGTATTAGCTAGCTCTCTTTCATTTAATTTCATTTTTCACCTCACTAGCACACCCCTTACCTTTTAGATTAAAAATATATTTAACTAGTAACATTTCTCATTGTATTGTCAATTAAATTTCGGTTTTTTTAAGCTTCTGTCATTCAAGGTGATCGCCTACTTATCGCCAAATTTTTTCAGAGCTTTTCATTGCAATATACAGTCCGTATAAATTAGAGATTTGTTTGCTTGCTCTTTCTTTTTGAAAGAAAAAAGGTCATGCTCAAACACAAAAAGTGTTTGGGTATGACCAAATAGCTCACTTTTTAACTGTTTCCTCACAAAAGTAACAAATCTTTCCTGGTCTTGGTAAAGGGGTGGAAGCCGTCTTCACCCAGCCAGCCGCAGTCCTCGATTCTGACGCCGCCAACACCCGGCAAATAGATCCCCGGTTCAATGGAAAAGCACATCCCTGCTTCCAGCTTCTGCTTGCTTCCCGGCTCCAGATTCACCGGCTCATGGACCTGCATCCCAATCCCGTGACCCAAGCGGTGGGTAAAGTACTGCCCGTAGCCCGCTTCTTCGATAACCCCACGGGCCACCTGGTCCAGCTCACCTGCCGTCATCCCTGGTCTGGCCGCCCTAGCTGCCGTTTCCTGGGCTAGCCGGACCGTCTCATAGATTTCCCACTTTGCCGGGCTGATTTCGCCCAGGGCCACCGTCCTGCTGACATCTGAAGCATAGCCGTCCTTCATGATCCCCAAGTCAAAAATCACTATGTCCCCGGCTTGAACCCCCTTTTGGCTGGGCAGGCCGCTGATACTTGCCGCGCTTTCCCCGGCCTGGACAATCAATGGAAAGCTCAAATCCCCCATCCCCTTTTTCTTCAGCTGGTAGTCCAGTTCAAGGGCCAGCTCGCTTTCACTCATCCCCTGCCCCGCTTTTAAAAGGGCAAAAGCCAAGTCCAGGGCCTGGTCAGCCAGCCTGCCAGCCGCCTGCAGCTTTTCAATTTCCGCCGGCGACTTGATCATCCGTTGTCTGGCCAGCCAGGTAGAAATGTCTGCTGCCAAATTTGCTTCCGGGAAAACTTCCTTAATCGCCCGGTAGTGGCTGAGGGTCACTGCCCGCGCTTCCAGGGCCCAAAATCCTTTTGGCCAGGCGGTCATTCTCTTTTTTGCCTTCTCCCAAGGATTCTCCCCGTCTTGGTAAAAGCAGGCCCGGTCCGCCCAAGAAGTCTGCTTGACTTCTCCTTCATTGATCGCCGGAGCCAGCAAGAGGGCCTGGCCTGTTCTGGATACCAGCAGGGCGAAGACCCGTTCCTCCGTCCAGCTGCTGTAGCCCGTCAGGTAGGCAATGTCCACTGGCTCTGCCACATAGGCAAGGTCAATGCCTTTTTCATCCAAGTAGGACGTTAAGGCTGCCAAATGCTCTTCCCAGGTTAATTTTCTTTCTTCTTTCATGCTTTTTCACTCCCAAGAAAGTGTTCTTGCTCTATTTTCATATTTCTTTCCTTTTTCTAGGCTTTTTTAATGAATTAGCTAGGCAAAGCCACTAGATCATAATATAATTTATATCAAATCCAAAAATCATTCTATTGATCTATTTTTTGGATTTTGGGGAAACAAAATTTTCACATCATAAGCACTGACTTATTAGAAAAGAACTATTAACTTAATCCGATAATCACCCACTTGATTATCCTTCAATAAATTAAGGAATAACTATGGCAGAAGCCCTTTACCAATTTACCGATCAAGAACGCGCCCTATATGAGAAAACACCTCTGCCGCTTTTAGTTATGCAGGTCATCGACGGGGAGTACCATGCCTTGCTGGCTTCTGACGAATACTGCAAGATGGTTGGCTCTGACCGGGAGTCCATGCTGGAATACCTCAACCACCACAGCTTTGGCCGGGTCTACCCGGCTGACGTTGTCCGCCTGGCAACTTTTTCAGCTTCAGCTGTCAAATATCCCCAATGCCACTTGACCTACCGCCTGTCCATCAAGGGCGAATACCACACCCTTTTTGCCCACTCAAAGCGGATCAAGACTGAGGACGGCACAATCCTTTTTCTGGTTACCTACTTTGACCTGGGCAATGACCAGAGCCAGCAAGACCAAGGAACAAAGTGAGTCCCCCGACATGGACCTGCTGACGGGCATGCCCAATGTCAGCTACTTCAGCAAGTTCGGGGATGACTTTTTAAGAAAGCTCTTAAAGCAGGCCGGGCAAGTTGACGTTATCTACTTCGATATCTCCTCCCTGCACTCTTACAACGACCACTTTGGCTTCTTGCAGGGGAACCAGCTTATCAAGAAGTGCGGGAAAATCATCCGGGCCAGTTTCCAGGAAGGGCTGACCCTGCGCTATGTCGACAACTCCATCTTGACCATCACTGCTCCCAGCCAGCTCAAGAAGCTGCTGCCGGAGATCCAGAAGAAAGTCGCGGATTTTTCCTTGACAAGGTCACGACCGTCAGAGCCGGCGTCTACCAGGTCAAGGAAATGGAACCAGCCACCAGCGCCGTCGACAAGGCCTACCTGACCCTGCGCTACATGGGCGATGACCGGCACAAGGCTTACCAGGTCTACAACACATCCGTCAAGAAGCCCTTTGAGATGCAGGACTACTTGATGGGCCACTTTGAAGAAGCCCGCTGGCAGGAACCAGGTAAGCCGGCTTTAAAGGCCAGCCGCTTTATCCCTGTTCTGGAAAGAAGCGGCCTGGTCTACTAGCTGGACCTCCATGTCTTAGACCATGTCTGCCAGCTGCTGAACCAAAGGCGGGCCGACAACCTGCCAACCATTCCGGTATCCATCAACCTCTCGCCTAGCGACTTCAACATCGACAGTTTCATCGACCAAGTTCTCGGGATCACCCAGAAATACCAGATCCCCCACAACATGATCCAGTTTGACCTGATGACCCAACCAGTCGCGGTTGACCAGCAGCAGCTGAAGGACACGGCGGCCAACTTGCGGAAACAAGGATTCAGGATCTGCCTGGACCGCTATGGCGGGGAAAACAACGACTTGTCAACGGAAACCCTGCTGGAATACAATTTCGACTATCTTAAAGTCGACGTCCGCAGCTTCAATACCAACCGGCAAAGGGCCAAGATCATCCTGGCTTCCGTCATCAACATGTCCCGCCTGCTCAAGATCGTCCCGGTCGTCAAGGGGGTTGAGGACCAGGCCATGCTAAACTTCATCCGGTCCTTAGGAATCATGCTGACTCAGGGGCGGCTTTTGGCTAAAGAAATGCCGGAAGAAGAACTGAGCCAGGAAAGAGATAACTTTGAAAGCGTTGAAGAAAGAGCCCTTTTCTCTGGCTTCAACCACATCAACGTCCTGGATCCCTACTTGGAAACCCGGGACCGGCTGGACAACAACTTTGAGAATCCCCGGCCTAATTCCATCTTCATCGTCCAAAGCCAGCAGGCCAAGCTGGTCTACTGCAACAGTGCCTTCCGCTCCTGGACCGGCTGCGCAGGAATGACCAAAAGGTCCGGGAATACTTGAAACAGGTCAAGATTCTGGACTTGAAGTTTGACATCCATATTTCTGCCGGCTATGTCTATGGCCAGGCCCAGACCCCAGACGAGGTCTACGAAATGATCCGGGAAGCCGACCGAATGCTCTACCAGAGCAAGGACAATGTACAATGTCCGCAACCAGATCAGCGGCGGGCCTTCGCGCTATAATTAGCCTTCTGTTTAACTGAATGAGCATTAAAAAATCCACCCATCTGGGTGGATTTTTGCTTGCAGTGCTTTCTGTATTTCTTTTTTCTCCCTGTTTACCGCAAGCGGTGTTGGAGCTGCTTTTCGATGCCGGCATGGTAGACCAGGTTGTAGCCTAAGCCCGCCCCAACGGCTGCCTGCAGGCATTCAAAAGGAAACTTGACCAGGGAGATGGCCGGGGTCGCGTAAATAAAGGCCCGGCCTAAAGTGTAGCCAGTTACCATCACGGCGGCGCCGATAAAGATGCCCAAGATGACCTTCTTTTGCTCGCCGGCAAACTTGTGGGCAAAGTAAGAGATGATCAAAGCTTCAAAGCCATGGGAGAAGAGGCTGACGAACATGGGCGCAGGGTAGAAAAGGAAGTCGCCCAAGAAGGCCCCTACCCCGCCGACCACGAAGGCCTCTGATGGGGACAGCAGCAAGGCCGCGGCGACGATGACCACGTCGTTGAAGTAGAGGTGGCCGCCCGGGACAGGGATACTGAATGAAGACAAAGCAACGTTCATCGCCATCAAAACGGCGACGACGGCGGTTCTTTTGACTGACCATGATTTTTGCATGTGATTTCCCTCCGGCTTGTAACTTTGCTTTCTATTTTAGCACTTTTTCAGTATTTTTTGAGGTTTTTCTCTTACAAAAAAGAAGAAATAAAAAGCCAAGGCGATGGCCTCAGCTTAGCTAATTTAAGACATGGATTCTTGCATTTTAATGACGGTATTTTTTATAAGATTGGCTTTCTCCTCATGGCCACGGTCTTGATGTTCAAGAGGTCCTTGGCGGTGATGTTGTGAGAAACTGAGTTAGCCCCGTATGAGCCGGTTCCCAGGGTCAAGGATGGCATCATGTTGTTGTAGACCCCGCCGATCCCGCCAAGGGCAGCCGGGCTGTTGACCAGGATACGGCAGGCAGACATGGCGAAGGCAAACTTACGGATAACCTTGCTGTTTTGGGTGTGGATGCCAGCAGTGTGGCCCCGGCCGCCGTAGTTCAAGAGGTCGGTGCAGATCTTGAAGGCCTGGGCACTGTTTTCCGCCTTGTAGAGGGTGAAGACCGGGGACAGCTTTTCAGCTGACAATGGGTACTTCGGGCCAACCCCGCTGTATTCAGCCACGATGACTTGGGTGTCGGCAGGCACGGTCACCCCGCACATTTCAGCGATCTTGACCGCGCTCTTGCCGGCCATCGGGCCAGCGACTGTCCCCCGGCGGGGGTCGATGAAGTGTTCTTCAAAGAGCTTGATTTCGTCAGCCTTTAAGAAGTAGCAGTGGCACATTAAGAAGGCTTCCTTGACTTGGTCATAGACCTCTTTGTCAACGACGACGGAGTTTTCTGAGGCACAGATCATCCCGTTGTCAAAAGTCTTGGACAAGACGATGTCGTTAACTGACTGTTCAATGTCCGCTGTCTTTTCGATGTAGGACGGGCCGTTGCCTGGGCCCACGCCCAGAGCCGGCTTGCCAGTTGAGTAGGCGGCCTTGACCATGCCTGGGCCGCCAGTGGCCAGGACTATCTGCACCTTTGGGTTGTTCATCAAAGCCGTCGTGGCCGTGAGGCTTGGGTGTTCGATCCATTGGATCCAGTTTTCCGGTGCCCCGGCGGCAACCGTGGCTTCCTTGATCAGCTTGGCTGTTTCCACGCAGCATTTTTGGGCTTGCGGGTGGAAGCCGAAGATGATGGTGTTCTTGCTCTTCATGGCGATCATAGCCTTGAAGATAACCGTGGAAGTCGGGTTGGTGACTGGCGTTACCCCGGCGATGGCCCCGATCGGTTCAGCAATCTTCATCAAGCCTTCCTGCTTGTCTTCTTCGATCACCCCGACCGTCTTCATATCCTTCATGCTTTCCCAGATAGTCTGGGCAGCGTAGGTGTTCTTGGTCACCTTGTCTTCGACCTTGCCCCGGCCAGTTTCGTCAACTGCCATTTGGGCCAGGTAGCGGGCATTGTCTTCACCGACTTTTTCAATGACTTGGCAAAGCTTGTCCACGTCTTCCTGGCTGAAGTCGTCCATCTGGGCTAAGGCTTCATGTGATTTATTAACCAAAATATCGATATTGTGGTAGATTTTGTCTTCAGTTTGAACTGACTTTTCCACTTCTGTGGTGCTTTGCTTAGGCATTCTCTCGTCTCCTGCTTCTTGCTTATTCCTTGTGATCAATTTCTCAATTACTACTATAACAGCATTTAGAAAAAAGAAAAGAGGGTAAAATCCCCCTTTCTTAATGACACAAGAAGCTGCTTTTCACTTACGTTTTGCCTTATTAGCGATGTGAGCGGTAACCATCTTTTGCTATTGTGAATAAATCATTTTATATATCTTTTCCACTTTTACAAAAGATAGCGATTTCTGTCACAAAAGTTAAAAGGTGTTTTTTCAGCTTTTTTGCCGATAAAAAACAGATTTGCTTGCCTGCATTCTCCTTTTTTCACTAAAAAAGACCCGGTAAAAGGCCTTTTAGCAGTTCAGTAACCTTTTCACTTACTCTCTGTTTTTAAGTTAATTTTTGACAAATAAAAAGGACTCAAACGAGTCCTGAAATTTATCTTCTACTTAAAAGGGTTGTAAAAGCGGCCCTGGTTCAGATGCCAGAAGTAGAGCATCAAGAGAACCAGCAAAACTGCCACCCCCAAGCTCAGCCAGTCGCTGGCTTTAAGCTTTTGGGAAGTGTACCAGGTCCGCTTCTTCTTAGAGCCAAACCGGCGCAGTTCCATGGCCGTAGAGATCACCGTGATCCGGTCTAAACTGGACAGAATCAAAGGCATGACGATATTGACCGTCCCCTTGGCCCGGTCAGCCAGCTTGGCCTTCTTGGAAATTTCATTCCCCCGGGCCTGCTGGGCATGGGAAATCGCCCAGTAGCTTTCCTGGATGTCTGGAATATAGCGCAGGGCCAGGGAAAAGGCATAAGAGAAGCGGTAGCTGATCCCAATCTGGTTCAGACTGGAAGCAAACTGGCTGGGATTGGTCGTCAATAAGAACAAGATTGCAATCGGCACGGCACAGATATACTTGAGCAGCAAGTTGAAGAGGTAAAAAGTCTCCTCAGCCGTTAAAGCAAAAAAGCCACTGCCCAGCAGGACGTGCTTGCTGCCATAGAGGTCCGCCCCGTAGCTAGGCTGAAAGACATAAACCAAGATCAAGTTCAAGACCGCGAAAATTATGATCAGGTTGACCACAACTGACACCTGACGCCACTTGACCTGGGAAACCTTGAACAAGACCAGGGACAAAAGGCACATAATCAGCAAAAAGCGGGTGTCATAAGTCGCCATGCAGGCCACCGAAGTAATAATCAAGAGCAAAAGCTTGGTGGTCGCGCTCAAGCGGTGGACAAAGGTCTTCCCCGGCGTATAGCCTAAAACAGCATCATTCATTAGCGTTTTCCCCCAATCTTTCCCGTTCATAAGCCGCGAACTTGCGGGCAAAGCCATCCGGATCTGGCAAGCCGTAATGCTGGGCCAGGTCAAAGAGGCTGACCTGCCGCAAAGAAGCCTGCTCGATCAGCTTTTCATCAGTCAAGAGCGCAACCGGCGTGGTGTCGGCAATCAAACGTCCCTTGGCAAAAACAAGTGACCGGTCAGTGTATTCCATCATCAAGTGCATGTCATGGGTGATAATCATGATCGTCTTGCCAGCTGCATTTAATTTCTGCAAGAAGGACATGATTTCCGTGTAGGTCTTCCAGTCCTGGCCAGCTGTTGGTTCATCCAGAATCAACAAGTCCGGTTCCAGGACCAAAATCGCCGCGATCGTGACCCGCTTCTTTTGCCCAAAGCTGAGGGCGGAAACCGGCCAGTTTCTGAATGGGTAGAGGCCGCAGATCTTAAGAACCTTGCCCACCCTTTCCTTGACCTCGTCTTCTGGTACTTTCCGCAAGCGCAAGCCCAAGGCCACTTCGTCAAAAATCATAGTCTGACTGATCATCTGGTTGGGATCCTGCATCACGTAGCCGATCTTGTCCGCCCGCTCCTTGATGGACAAGCCGGCCATGTCCTCGCCTTGCCAGGCAATCTCGCCCGTGTTTTGCAAAAAGCCGCAGATCAAGCGGCAGAGGGTGGTCTTCCCCGCCCCGTTTTGCCCGACGATGGAGATAAAGTCCCCTTCCTTGATGACGGCATTAACGTCCTTTAAAGGATATTTTTGGTCGGCGCTGTAGGCAAAGCCAACATTCTTCAAGGTCAAGAGCTCCTTAACAGCTGCCTTTTCTGCCGGCAACTGGTAGCTGTCTTGCCAGGCCAAAAGCTTGTCCTTGGCATCCCTCTCAACCGGCAAAGCTTCCAGCGGGGTCAGCTTCTCAAACTTATTCAAATTGATCCCAGCCGTCTTCATGGCGTCCAGGTAAAGAGGATTTCTGACCCCAACAGCCTCCAGGCGGTCAGCCTTGAGCAGGTCATCCGGCTTTTGGTCAGCTAAAATCCGGCCATCATCAACCAGGACGATCCGGTCTACTTCCTCGGCCAGGACTTCTTCCAGGCGGTGCTCGATGATGATGACCGTGGCCCCGAACTTCTTCTGCATCTGGTCGATGAGGCGCATGGTCTTGTAGCCAGAGGCCGGGTCCAGGTTGGCCAGGGGTTCATCAAAGAGCAGGATCGGGGACTCGTCAACCAAGACCCCAGCCAGGGCCACCCGCTGCTTCTGTCCGCCCGACAAGCTCTGGGGAGCCTGCTTAAGCAAATCGCCCAAATCCAGCTCCTTAGCCCAGCGGTCCACCACCTGCTTCATTTTGTCCTGGGGCACGCAGTCATTTTCCAGGGAAAAAGCGATGTCTTCCCCGACCGTCAGGCCGATAAACTGGGCGTCCGTATCCTGGAGAATGGTTGAAGTGGTAAAAGATAAGTCAAACAGGCCAGTCTGACTGATGTCCTTGCCATCAATCAAGCACTGGCCTGTGATCGTCCCTTTATCCAGGTTGGGAATCAATCCGTTCAAGCACTTGCCCAGGGTTGACTTGCCAGACCCTGAGGGCCCGGCCAGCAATACTTTTTCCCCCTGCTCAATCGTCAAATTGATATTGTGGAGGGTTGACTCCTGCTGGCTGTCGTACTGAAAAGAAAAATCTCTAAACTGAATCAGACTTGTCATATATTAATTCCTTAATCCTTGTGCAAACTGCCCTTCTTGACCCGGCTGCCGGCGTAAAGCTTGAGCAGGATGGTACCCAAAACCGCGATGGTCAAACCATCCATCAAGGTAGTCAGGCCTGCTTGGGCAAAGACCTTAGCCGCTGGTTCGCTGTTCAAGACCATGTCGCCCACGGACCCCAAGAGGAACCAGACAATAGCGTTGGCCACGACCTGCACCACATTAAAGATCACCATTTCCTTAGCGCTGAATTCACCTTGGTCGATGTTGACGCGCAAAGCGTAGAGGCCGATGAAGAAGCCCAGGAAGCCGGCTGCGAAGTTCCAGTTCCACCAGGTCTGCCCGTACATCATCAAGTCCAAGAGGACGTGGCCGATGAAGCCGACCCCGAAGCCGACAGTTGGCCCGTAGATCATGGCAATCATGGCCAAGAAGGCGTAAACCAGTTCAAAGTTGGTGTTTGGCAGACCGCTTGGGATTGAGGCAAAACGGCCGACAATCACGAAAACGGCTGACCCGATCCCCAAGGCAGCGATGTTCTTAGGGCTTAACTTCCACATATCCTTATTCATAAAAAATCTCTCCAATTCCTTTTTTACTTGTTAACCTTGCTGATCTTGACCTGCCAGTCGGTCCCGATGCCGATGTGGTGGACAGCGGCGAAGGATTCCTGGTTGAGGGCAATCCCGATGTTGACCAGGGAGTTGATGTAGACGAGTGGCTGGCCCAGGTTGACTTCCGCGAATGACCGCACGAAAGGGATTTGTTCCTGGTAGACGGCCACGTTCTGATGCAAGATGGTGACCAGCAGGCTGTCGCCCCGGTCGATGGACAGCTCTTTGACCATTTCCAGCGGAATGTTGGTCCATAAAGAACCAAAGCGGACATCCAAAACGTCGATGGTGCCGACGGCCGTGTCGCCTTGCAGGCGAGGCTCGATCACCGGCAGAGTCACCAGGCTGTCAACTGGGACATCTTCGCCTAATTCTTCAAAAGCAACCTGCCCGCTGGCCAGCAAGGCCCCGTTATAAGCGTAAACGTCCCGGCCATGGAAGGTGTTGCTTTCCTGGGAGTGCGGCAGGCGGTTCTTGTTTTCATCGATCACCCGGACGGCTTCAACCCCTTCATACTTGTAGATATGGGTCAAAGTCCCGTTATCTGGGGTGATGACGTAGTGACCGGACTTGGTCTTGACGGCGATTGACCGGCGGGCTGAGCCAACGCCTGGGTCAACGACAGAGACGAAGACCGTGTCTGCTGGCCAGTACTTGATGGTTTGGTAAAGCCGGTAAGAGGCGTTCCAAATGTCGTAAGGTGGGATTTCATGAGTTAAGTCAGAGACCTGGATGTCACTGGCAACCGTGTGGGCCACCCCGTGCATGGCGCTGACCGCCCCATCTACTAAACCAAAGTCTGTCTGCAGAACCAACATCTTATTATATGCCATCCGATTTCCACCTTTCAATCGTTTTCAATTTTTAATATATATTAAAATACTCTCTTTACCAGGCAAAGTCAAGAAAAGTATTCGGTTTTTTATAAAAATTTCTAGCTTTTCTCCCTTGTTTTTTCCAGTATTTTTGGAGAAAACCTAACATTACGCATAAAAAACAGCCATGACTCGGTCATGACTGTATGATTTATTTACTTTTATTTTCCGGCCCGCTTGTCCTTAACCCGCTGGTGGAAGTAACAGAAACTCCCAAAGAAGACGGCCCAGGCCGTGGCCAGGCTGGCTCCGAAGATATTCGCCTTGACGAAGAAGAGGCTGAAGAAGATGACCAGGAAGAAGGCAATCGTCAATGGACTGGTTACCTGGTAAAAAGGCATCTTGAAACCATCTTCCATAAAGTCACTGGACTTGCGGTACTTCCGGTGAGCCAGCAGGGCCAGGACGTAAACCAGGATGAAGATATCACTGGTGGCCCCGGCGACCATGCTGAAGACCTCAATTGCCGTGTTAGAGAAGCTGAGAATTGGCGCGATCAGGGCGAATAAAACTGAGATCGCGATCCCTCTTGCCGGTACCCCGTTTGGTGCAATCTTGGCAAATTTTTTTTTCAGCCAGCTGCCCTTTTTAGCTTCTTGCGCTAATTGGAAGAAGTGCCGGCCAGCTGAGAAGATGGTTGAGTTCAAGGCTGAAGCCGCGCTGGTCAAAACCACGAAGTTCAGGACTGAAGCCGCGGTAGCGAAGCCTGCTAACTGGAAGACCTGGACGAAAGGACTGCTTGAGGCAGACACTGACCACCAAGGAACCACGCACATGATCACGGTCAAAGTCCCGATGTAGAAGATCAAGATTCTCAACAAGGTCTCGTTGACCGCCTTTTTGATCACCTGGTGGGGATCTTCAGCTTCCCCGATCGTGATAGTCACGAATTCAATCCCGGCAAAGGAGAAGAAGACCATCGGGAAGGCGGTAAAGAAGGCGTAAGTGCCATTTGGCGCCAGCTTGAAGTTCTTGGTCAAGCTTGCTAAAGAAGCATAGCCAACCGGGGTTTTAGCATGGGTTGCCACCAGGAAGACCCCGGTCAAGATCATGGAGATAATAGCGATGATCTTGATCATGGCAAACCAGAATTCCGTTTCCCCAAAGAGGCGGGCTGCCGTCAAGTTCAGCAGGGTCAAGGCTCCTAGGAAAATCAGCTCAACCAGCCAAAGAGGCGCGTGCGGGAACCAGTACTGGAAGTAGGTCCCGACCGCTGTAAGTTCAGCCATACAGGCAAAGAGCAGGCCGATCCAGTAGGACCAGCCGGCGAAGTTGCCGGCTGCTGGCCCCAGGTATTTAGTAATAAATGAGACAAAGGTATGGTGGTTGGGGTCTGAGTAAAACATTTCTCCCAATGCCCGCAGCATGAAGAAGAAAAAGACCCCCATGAATGCATAAATCAAAATGACTGACGGTCCGGTGGCCGAGATCGTGCTGCCGGACCCTAAGAAGAGACCAGTCCCGATAGTGCCCCCGATGGCAATCATCTGGACATGTCGGTTCGATAAGGACCGGAGCGTTCCGTCCGCGTTTTCGTGTTTTTTCGCCATCTGTCCTCCTAAATAATCAAATCAACATTAATCTATAACCATTTTAATAATAGAGAAAATAGCCGGAAAAGTAAAGTTATTAAGCAAATTAGGCTGATTTTCACCCTTTAACCGAATTGATCTTCAAGATAAAAATCTAAGGGCTGTTGATACTCCAATTTAACTTTCTTTGCGGAATACAATTTGTTTTTCTTTAAGAAAGCAATTGTCTGACTGTAGTTGCTGTAAACCGGATAGTAGATCTTAGCCCGCTTGCCATTTGCCCGCGTCCAGGAAACCGCGACTTGGCCAATCGGCTTCTGCAGGCTGGCCTGCTGGTAGTCCCACTTGGCTAAGTCTTGCTTGTAGGCTGCCCGGAAGTCCTTGTAAAGCTGGCTGTCCTGGCGCTTGATCGTTTCCTTGCCATTTGTGTAGGTAAAGGACACGCTATCCAGATTGTCCATAATCATCTGGTCATGGTAGATCTGGAAGTAAGCCTGCTTGTAAGCCTTGGTCTTGCTGATTGGTTCAAAGTATTTCTTCAGCGTCTTTCTATCCACATCATAGACCCTGGTCTTGACGCGGCCATTCTTCATTCTGAAGACAAAGCGCATCTGGACTGAATCTTCCCGTTCATGGAACCGGTTCTGAGTAAATTTGCTGCCAGCTTTAACCAGATTTATGAGGTCACTGTTTACCGGCAAATACATGTATTTCGCGGCATAATCGCTGGCGTCACCTTTAGCTGATTTTTTACCCATGTAATAGTTGGTATAGATGCCGTCATCCCGCGAAATTGCCACACTGGCTACTTGCTTGCTTGCAGGCAGCCAATCATCATAGCGCTTGGCTCCCCAAACCATGCCGGCCAAAATTGCTAAACCCGCCACGGTTAACAGCAAGCTCTGGACAAAATTATGCTTCCAGGCAGCCAGGTCAAACTTGTAGATGATTTCCATCAAGCTGGCAGTTATTAAACCAATGATCAGGGCACCAATAATGCCGCAAGCAAAGTTTAAGCCGATCATCGTGTAGCCAATGATCCCGCCAATTGCCGCGAAGTAGACAACCACGATGATCTTAACCATCTGTTCAATCCAGGCAAAAGCCACAGCTCTGCCTGCCTTTTCATTAGCCCGTTTCTGGTAAGCCCAGTAGGCTAAGGCCAGGTAAAGGACGGTCCAAAGCAGGTTAATCCCGATCCCTAGCCAGTGATTTGAGTTATATACCTGAGTCGAAGGATTGGTGTATGCCAGCCAATCATGATTGTCATAGCCAGCCGTAGTTGCCAAGGTGGAATAGAAGATTGAATTCAGAAAAATCAAGCCAAATTCAAAGCAGGAGAAAAAGATCGTGGCTAAGCCAGCCACAAAGGTATTACCTGTGATCATCATGCTCAAAGAGGCGATAGCGTACCAGGCTGAAAAGGCAAAGAGGTCAGCCAGAAAGCCCCGCCAGATCTCACCGTCAGCCAGGAAATTAGCCCCACCTGCAGCCAAGATCAGCATTCCGGCCAGGAAAAAAAGCAAGTAAAGCAAGCTATAAATAAGCAAGCTGTTGACCGTAATTCCGATGAAGCGAGTCTTGCGGCTGACCGGCTGGCTCTCGTAATAGTCCACTTGCCGCGGCACATGCAAGAAGCGGAAGCCTTCAAAGGCCAGGTAGATGCCGAAGATCCCGGCCATCACAGCCGACATGCTCGTATTTTGAAAAATATAATATGTCCGGGCGTCATGCAGCAAGGAAGCCGTCTCAACATCTTTGTTGCTGATCAAAACCAGAATCGACCCAACGATATAGAACATGGCCATGACCAAGATCGCCAAGACTACAGGTACTTTCCGGTGCCGCAGGATTTCTTTTTGCGGCAGACCGTGTTTATTTAAGGATAAGTTTGCGCGTGTCATAGCCAACTGCCTCCGCTTCTGCAATAAAGATTTCTTCCAAGGTCAACGGCAGGATTTCGAAGAAGGTCATCGGCACATGGTCAAAGACCGCCTCGACTTCGCTCCGGCTCCCCCGCACGACCAAAGTGTGCAGGCGGCCCCGGCTGCTGTGGTCAACCAGCTTCAGCTTGCCCAGGACTTCCTCCATGTCCCGGTCGTCCTTAAAGACGCACTGCAGCTTCTGGATTTCCAGTTTCATGTCGGCCAAGTCTTCTGATAAAAGCAGACCGCCGCTGTGCAGGAAACCGATGTGGTCACAAATATCTTCCAATTCCCGCAAGTTGTGAGAGGCAATGATTGGAGTCAATTGCCGCCGGTCCATGTCTTCGGCAAAAAGGCTCTTCATGCTCTGCCGCATAACCGGGTCTAAGCCGTCAAAAACTTCGTCTAAGAGCAGGTACTTGGTGTTAGTACATAATCCTAGTAGGATCGCCAATTGCCGCTTCATGCCCTTAGAATAGTCGTGTATGCGGCGCTTTGGCTCTAAGCGAAAGTCCGCCAGCAGTCTGGCAAAACGTTCTTGGTCAAACTCCTGGTAAACCGCCGCGTAATCCCTGGCCATAGACTCCGCTGTGGCATTTGGGAAGAAGTAGGGGTCATCTGGAATGAAGCAAAACTTTTTCTTTGCGGCTGGATTGTCATAAACTGGCAAGCCATCAATAGTGATATGCCCAGAAGTCGGCCGCAGGATGCCAGCGATCATCCGCAAGAGGGTGCTCTTGCCGGCCCCGTTGGTCCCGATCAAGCCAAAGACCCGGTCTTCTTCAATGGTCAGGTTAAGGTTCTTAATGGCCTCTGTCTGCCCATAATCCTTGCTTAGTGCATCAATCTCGATCATCTTCTGCCGCCTCCTCCATGGCCTCAGCAAATAATTCCTGTGAATTCAGGCCTACTGCTTGAATCTCCTTAATTAAATCAATCATTTTCCCTTTCATCTCTTCTTTTTGCTTGCTCTTCAGCGTTTCATTGGCCCGGACGAAATTCCCCCGTCCCTTGACGCTGTAAACGTATCCCTCCCGTTCCAGCGCGGCGTATGCCTTCTGCACTGTATTAGGGTTAGTCGACAATTCCATGGCCAACTTCCGCACAGACGGCAGCTGCTCATCTGGCAGCATGACTCCGGTCAGAATCAGCTGCCTGTACCTGTCCGCGATCTGCTGGTAAATCGGCCGGCTGTCCAAATAGTCAATAAAGTCCACTAGCTCGCTCCTTTCTAGCTGTCTCTACTGTACTATTTATTCTAGTACACCAAAGACGAATTGGCAAGCAATTAGCAAAAAGAAAATAGATTGTTTCTAAAGTAAAATAAGCAGCCAAGAAAATTTAGAAAGAAAAGAATAAGACAGAAAGGAAAAATAAATGCAAAGACAAAAGAAGCAGGTGGATACCTGCTTCTCAGTGACGGTCCATGCGGGATTTGAACCCGCGATCTCCTCCGTGACAGGGAGGCGAGATAGACCACTGCTCCAATGGACCAAATATTCTGTTTTGCCTTCCGGCAATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCAGATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCAATGCACCCAGTAGGACTTGAACCTACAACCTTCTGATTCGTAGTCAGACACTCTATCCAGTTGCGCTATGGGTGCGCTGAAATATTCTGTTTGCTAACGCTGCTGCGTTAAGCGGAAGACGGGATTCGAACCCGCGACCCCCACCATGGCAAGGTGATGTTCTACCACTGAACTACTTCCGCATGATAAAAGCCAGGCTAGACAGTCTGGCTGATTGAGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATTCTTCTTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATATCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAGTGAGAGCTGATACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCTGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGACGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTGCGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCATCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCAAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTCAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGACTTCTTGTCAACAAGTTTTTTGATATTTATTTTTGTCTTGCTTCAAGCACTTGGCTCGTTTCAAGACAAATACTACTTTACCTTGTTTTTTCTTTTTCGTCAACTTTTGCCTTTTAATTGTCTTTTCCGCCAAACGCCAGGAGGTGTTGTAAAGGTTGTTTCCTTTTTTGCTTTTCAAAATCCTCGCGCACTTTTGGAAAAATTGCTTTTTCGAAAAAAATGTTCGGATTTTATGTCTTTTCTAGGTTAAATGCATAAAAAGTTTTTTTGAAATTTTTTACTTTCAACTTTTTTACGGGTTGAAAGTAAAAAAAGGAGCAGCCAAATGACTGCTTCTTGCTTATTTTAGGTATTGCACGGTGATGTCGCTGACGTTGATCAGGAGCATCTGGTAATTTTCGTGTCTGGCAATTTGCTGGGCACTAAGGCGGAGATATTGCTCGGTTTGCTTAAAGTCAAAGTAGCTTGCCTCACCCTGGTCAACCTTTTGGGCAAAGGCGTGCAGCCGCTTGGCAATTTCTGATTCCGGCTTGTTCCATTCATTAACGATCTGCTTAAAGACTGCCGGTGCCCGCTTGACTTCTTTCTGAAATTCTTCGTTGACATAAAGCAAGCGGAAAAGGCTGCCATCGTCTAAGGCCAGGCAGGTCGGCTTGTCGCTGGCCAAGTCCACCAGGCCAACACACTGGTAGAACTTGCTCTGCTGCCAGTTCTCAATTTCGATCCCCTTTTCAGCCACCAGCTTGGCGAACTCACCGGTTGGCAAGGGCTTGCTGTAGTAAAAACCCTGGATCCGCTCGCAGCCAATCGACTGCAAGAAGTCCAACTGCTGCTTAGTTTCAACCCCCTCAGCCAAAGTATGGATTCCCAGGTCCTTGGCCATCTTCACGCAGGCGGTTAGGATCTTCTTTGAAGCTTCGTCAAAGTCCTTCATGAAGATCATATCCAGCTTGATCTCATCGAATTCAAAATTCTTGAGATAGTTTAAGGAAGAATAGCCGCTACCAAAGTCGTCCATCCAGACTTCATAACCGGCCTGGCGGAAGTTGTGAATGGCCCGCTTCAAGCCGGCAACATCCTTAGATAAGGCACTTTCGGTGATTTCCACGCGGACTAGGGACCAGCGCAAGCCATTTTTCCGCATGGCCTGGTTTAATTCGGTCAAGGGATCCATCATCTGGAAGTCTGCCCGGGACAAGTTGATGGAAACTGGCACGAGCTTTTCTCCCTTGTCGATACGCCCGCGCAGGCCCTAGGTAACTTCTTGGATGACGTAACGGTCAACCTTGTAGGACAAGTTCATCTCTTCAAAGAGGGGAATAAAGTCGCCCGGTGACAAGAAGCCCTTGACCGGATCAATCCAGCGGATCAAGGCTTCCGCCCCGCAGAGGCGGCCGGTCAAAGTCCGGATGACTGGTTGGTAGTAAACCTGCAGGTAGTGCTTTTCAATAGCTTCATCCAGGTGTTCGATCAAGTACTGCTTTAATTCTTCCTTTTCCTGCATGGCCGAAGTGTATAAGCACCAGCTATGCTCAGGCTGCTTCTTTGCTTGGTCGCAGGCTAAAGAAGGACTGACTTTCTCATCATACTGGTAGACTCCGACCCACACCCGGAGCTGGCTGGCTAAAGGCAGGTGCTTTAATCGGGTGTGCAGGCGGATGATCTGCGCTCCCAGTCACCTGGTTCTGGATCATAAACATAGAACTTACTAAAAAAGCCTTCCAAAAACGAATTTTGGAAAGCTCTTCTTGTGAATTATAAAGTTACCTGCTCATTTTCCTTAACCCGGGCCCAGTTGTGGGGATCCTGCAGGGTCGTGTCCAGCTTGCCCAGCATGTGGTCCATCTTGTGATATTCGGTGTCCCTTTCTTCATCGGTCGTCTTGGCCAGTTCTGCCTTCAGTTCATCCGCAAAGATGGTTTCTTCGGCGTTGGTCCAGAAGTAGTCTTCATACTGGATCCCGCTGAAGCGCCAAGGCTTAAAGAAGAGATTGTAGTGGATAAGGCCAGGATTTTCCAAGGCGGCGGTGTTTTCGTTTGGCATGGCGTCCCAGCGGCCGTCCAGGTACTTGATCCGGCCGGAGCAGATTTCATTTAGGTAGTCCTGGTCCGTGGCGATGCAGTCAAAGTGGTAGCGGCCCAAGAGGCTGAAGAACTTGTCAACGAAGTTTTCCTCTCTGAAGGCCTTGGCGTTCATGACCAGCATCCCTGAATTGATGTATTCCTTCGGATCCAGAGTCAAGACTTCCTTGATATAGCGGAGCATCTTTTCCACGAACTGGATGGAAGTGTCGGTGCAGGCACCCAGGAGATTATTGCCTAAGTCATGGTCATAAAGCTTGGCGATGTCGTCATTTAAGACCGTGTCACTGTCGATGTAGACTACCTTGTCGTATTCCGGGAAGAGGTCCGGGATAAAGAGGCGGTAGAAAATGGACATTGCAAAGAAGTCGCCCCGCAAGTAGTTCTCCTTCCGGTCCTGGATTGGCTTGAGGAGTTCGTCGGACATCTCGTAGAACTTAATGTGGACATTGTCTCTGTTATAAGCGGCCAGGGCCTTTTCATGGTCCCGGCTTAAGCCCTGGTGCAAAAAGGTTACCGTGTAGTCACGCTTTGGGTCAGCATGCTTGACTAAAGAGTGCAGTGAGACAGCCGCGTATGGGGTGAAGTCGTCACTGATTGAATAAAATACTGGAACTGTCATTATTATTTTTCCTTTCCATCTACCCTCAATCGTATACTACATTGTAGTTCTTACCAGCATTTTAGCAAGAGAAAAGTGCAAATCGTATGAAATATTACATTCGTTTTCTCTATGAGAAAAGGTAGTGGAGGGCCTGGCGGACGCTGGAGACCGGAATTACCTCAATCCCCAAATCCTGCAAGGCCGGGCTCATATTGTATTTCGGGATAAAAATCCGCTTGAAGCCAACCTTGCCGGCTTCCTTGACCCGGGCCTGGATCTGGTTGACCCGGCGGACTTCCCCAGTCAGGCCGATTTCCCCGACAAAGCAGTCAGTTGCGGAGATTTCCTTGTCATAGTAACTGGAGGCAATGGCCATGGCGATGGCCAGGTCAATGGCCGGTTCGTTTAAGCGGATGCCGCCGGTCGCTGATAAATAGGCGTCCTGGTTCTGCAGCATTAGGTTCCCCCTTTTTTCCAAAACGGCTAAAAGCAAGGAGACCCGGTTGTAGTCCAGGCCCGAAGTAGTCCGCTTGGCATAGCCGAAGGCGGTTGGGGTGACCAGGGCCTGGATTTCGCCCAAGATCGGCCGGGTGCCTTCTAAAGAAACGACCACGGCTGACCCAGTTGAGTCGGGCAAGCGTTCATCTAAGAAGACAGCGGAAGGATTGGTCACTTCTGCCAGGCCTTCGGTCTTCATTTCAAACATGCCGATTTCGTTGGCCGCCCCAAAACGGTTCTTGACTGAGTGCAGGATCCGGTAGGCATGGTGCTCGTCACCTTCAAAGTAAAGGACGGTATCAACCATGTGCTCCAGGATTTTCGGCCCGGCGATGGACCCTTCCTTGGTCACGTGGCCGATGACAAAGACAGTGACCTGGTCCAGCTTGGCGATCTTCATCAATTCGGCGGTAACTTCCCGGACCTGGGAAGCTGAGCCCACCATGGAGTCCAGGCTGGGTTCATTCATGGTCTGGATGGAGTCGATCACGACAAAATCTGGCTTAACGTCGTCGATCTGGTCGCGGATGTGTTCCATGTTGCTTTCCGGATATAAAAGCATGGGGCTTTGGCCCAGGCCTAAGCGGTCAGCCCGCAGCTTGATCTGGCTGGCAGATTCTTCCCCGGAGACGTAGAGGACCTTGTATTTTTCGGCCAGTTCGCTCATGATCTGCAGCATCAAAGTGGACTTGCCGATGCCGGGGTCCCCGCCAATCAAGACCAAAGAGCCTGGTACGATCCCGCCGCCTAAGACCCGGTTAAGTTCAGAGGACTTGGTTAAGACCCGCTCTTCTTTTTCCGCCTTGACGGTGGACATTTTAACGGCTTCTTTAGCACCCACGCTGGCCATCAGGCGGCTGGGGGTAGCTTTAGTAGAAGTCTGGCGGACCTCCTGGCTTTCTTTTTCAAACTGGTTCCAGGCCCCGCAGTTCGGGCACCGGCCCAGGTAAGAAGCGGAGATGTAGCCGCAAGACCGGCACTTATACTGGGTTCTAGCTCTGGCCATTACTTGCCGCCCTTCTTGCCGGTTGAGCCAAAGCCGCTTAAGCGCTGGCTTTCGATTGGCTGGTCGTCATCAGTTTTGAGGTACTTAATGAAGATACCCTGGGCGATCCGTTCACCCTTTTTGATCTTGAGGGGACGGACGCCGTAGTTCAAGACTTGTACGAAGATCTCCCCTTCATTATTGGGGTTGTTGTAGTAGTCGCTGTCGATGACGCCGATCCCGTTTGGCAAGGACAGGTTGCGCTTGAAGGTGTTGGAGGACCGGTTGGCCAGGATCAGGACCTCGTCTTCTGGCATGTAGGCCTTGATGCCAGTTGGGACTAAGATCGGCTTTAAGACTTCTTCAGCCTGCAAAAAGTCGCTTTCGATCAAGTCGTGGCCATTTCTGATCAAGCAGAAGATCCTGACGAAGTTCAAGCTCCAGATGCTGGGGATGGTGATGTCACGGGCCGCTTCGATATCGTAGCCGGCGCTGGCCAAAGTCTGCCGGCGGGGCAGGGTCAAGCCTTGTCCTTCATACTTCTTAACTACTTCAAAGCCTCTTACTCTGTTCATTGTTTTTTTGCTCCTTTAATTATCTAGACATCTATTTTACACTAGTTAAGATAGCAAAGGAAAAGGCAGGGACCGCAAAATATTTGCCGCTTTGAAAGGAAAAACTATGCCAGAAGAAAGAGAAAAAGTCATTGAAATCAAGGCTGACGGCCAGTTGGTTGCCAAAAGTCCCCTCCTCTTGATCGAGAGAAAGAGCGGGCCGGTTTGGGCCATGAACCAGCTTTTTATCGCGCCGGGGGCACCAGAAGGAACTTTGGATCAAGTAATGAAGCAAGTAGAAAAGCTTTGCCAGGAGACGGGCTTAAAAGTTTGGCCTTTAGACCCACAAGTGATCGCTTATTGTCAAAAGCACGGGGAATTGACGAAAATTTGGGCCTGGAAACCAACAAATTAAGCTACTTTGATAGACGGCCTTGTTTTTATGGGCTAAAATGGGCTTAGACAGTTTTTTTTAAAAAAGAGAAACAGGAGGCAATAGGATGTCAAAAGAAATCAGCTTTGACACGATCGAAGACTTCACCAGCAACTTGAGCAAGCACCCAGCTTACGGGGTAGCTGCCAACGCTGCCCAAACCAACGGGATTTTCAAGGCCAGCCAAAGCACCCAAAGCAAGGTTGACCTGGACCCGACCTTCTCAGTGGAAATCGACACTGGTTCAGTTACCAACCAAAAGCAGTCAGGCCGCTGCTGGATGTTCAGTGCTTTGAACACCATGCGTCACTCAATCCAAAAGGAATTCAAGCTGAAGGGCTTTGAATTGTCACAGAGCTACACCTTCTTCTGGGACAAGTTTGAAAAGTCAAACTTCTTCTTTGAAAACGTGATCGGCTCAGCTGACAAGCCACTGGGCGACCGAAAGGTCTCCTTCCTCTTTGCCACTCCGCAATCAGACGGCGGGCAATGGGACATGCTCTGCGGCTTGATTGAAAAGTACGGGATCGTGCCGAAGAAGGTTTACCCGGAAACTGCTAACTCAGAAAACTCCCGCGCTTTGGACGACACTTTGAACACCATGCTCCGCAAGGGCGGCTTGGAACTGCGGGCTTTGGTCAATGAAGGCAAGAGCGCAGAAGAAGTAGAAGCGCACAAGGCTGAACTTTTGGACGCTATCTTCCGCATGCTGGCTACTTCATTGGGCTTGCCGCCAAAGAGCTTCAACTTTGAATACACTGACGATGACGGCAACTACCACATCGACAAGGACATCACCCCGCAAGACTTCTTCAAGAAGTACGTTGGCTGGGACCTGGAAAACTACATCTCAGTCATCAACGGGCCTACTGCTGACAAGCCATACAACAAGGTCTTCTCAGTTGAATACCTGGGCAACGTGGTTGGCGGCCGGCAAGTCCGCCACCTCAACTTGGAACTGTCCAAGTTCAAGGACTTGATCATCAACCAATTGAAGCAAGGCGAAGTTGTTTGGTTTGGTTCAGACGTTTCCAAGGGCGGTGACCGGGAAGCCGGGCTTTTGGACACTAAGATCTACCAAAGAGACCAGCTTTTTGACTACGACTTCTCAATGAGCAAGGCTGACCGCCTGGACTCAGGCGAAAGCATGATGAACCACGCCATGGTTATCACTGCCGTTGACCTGGTTGACGACAAGCCAACTAAGTGGAAGATCGAAAACTCATGGGGTGACAAGCCAGGCTTCAAGGGCTACTTCGTCATGAGCGACGAATGGTTCGACCAATTCGTTTACCAGGCTGTTTTGAACAAGGCCTTCCTGCCAGAAGACGTTAAGAAGGCTTACGACGAAGGCAAGGAAAACCCAATCGAACTTCTGCCATGGGACCCAATGGGCGCTTTGGCTTTCGACTTCTAATAGATTTGAATAGATATGAAAAACGAGTTGCATCGCGCAACTCGTTTTTTGGTATGTATGGAAATTTAGTGTTGAACAAAACATTGAATCACGTCTTTGGCATTCAAATGCGTCAGCAAAATAGCGATGTTTTGATCTGCTTTTGGCAGCCAGTCATTATTGAGGTCCACGTATTTTTCCGTCCGCGTCCCCCCTTCTTCTGGCATGATCAAGGCATCCACCGTTCTCGCAGCCCGTTTTCTAAACAAGAAGTGATAAACCAGCTGTTTGTGATTCAAGTCTGTCAGCTTAGTGTAATCACATGAAAAAAGCTTTTCCCCGCAATCCTGAGGAAAAGCTTTTTCTCTGTCTTTTACCAAATGTACAAAAGTCTGGTCCGGTCCAGATTGCTCAAATTAAACTGGTGAACGTGTGATTCCTTGTTCTCCGGAAATTCTCTGATAAAGTCAGCCACGTTGTAAAGGCCGGTCGTGTAAGACCAGGTACCCTTGACCTTCTTGACCGGGTCCAGCATCTCGTTTCTGATCGGGTAAGCCGAAATCAAAAAGTGCTTGTGGTGGAACTTAAAGGCAAAGTATGGCAGACGGAACTCGTCGACCACCTCTTCCTTGGTCTTGCCGATAGTCACCACATTCCGGTAAGTCCCGTACTTTTCACTGAACTTGTCGTTGAAAGAGAAGTAGAAGTTGGAAATGTGCACATAGGGAAAATCTTCTTCTGCCACCTCGTCAGGTATGGCAATCACATGTGAATAATGGTCCAGATTGTTCTCTCTCTGCTGCAGGGCCTGCTCCATCTGGTTGGGCTTGATCCCCTTAACCCACTTGGGCAGCTCCGGGTGAGCCTTGTAAGAATTGTACATCATCGTGATGACTTCCGGCTTCACCCAGTCGTATTGCCTCCGGATCTGGTTTCTCTTCAACAAACCTTCCAGGGTCTGGTTCTGCATAAAATCAACCACATAGCACTCGTAATGGTACTTCTCGCACCACTTCTTGTAGTGATCGATCTCGCTGGCGACAATGTGGGTCCCGTCCACGATGACGGTTTCCCCATAGGACATCTTGTGCTCAACCAAGTTGTCCTTCATCCGCTTGGTCTGTTCCGTGACATGCCGCGGAATAACCTGGTGCAGAACGTCAGTCTTCTGGTCATAGTAAACGGTCAGGTTCGCCAAAAGCAGGCGGATCGCATCCCCGCTGATCGAGTACGGCAATAATTGGTGCCGGGCGATAAATGAAGACTTGCCAGAGCCGGGCGCGCCTCTCAAAAGAAATAATTTGCGCATACTTAGCTCCATTTTAAAAAATCTATTTTGAATATATCAGAATAGATTTTACCATAGATTGCCCCCGACATTTAGCAATCTGGCAAAAGTCGCCATAAATTTTTGCTTTTTTCTAATTTTTCGCCTGCATGTCCTTGCCGTCCCGGTCACCCACGATAAAGACCAGTTCCGTCTCGCAGACCACGTCCCCGTTCACTTTAGCCACTGCCGCCACGCTCCCCGTCTTAGCCCGGACCTTGAGCATCTTCACTTCCATTTCCAAAACATCCCCCGGCCGGACTATCCTTCTGAACTTGGCCTGGTGGATCGCCCCAAGATAAGCAGTCTTCTTGTAAAAGGCCGGTGACTTCAAGATCAAAATCGAGGCCACCTGGGCCAAAGTTTCAATGATCAAGACCCCGGGCATCACCGGATTTCCCGGAAAATGCCCCTGGAAAAAGGATTCGTTGATCGTCACGTTCTTCACGGCCTTGATCCTTTTGTCGGCTTCCAGTTCTTCCACCCGGTCGATATAGCAGATCGGGTAGCGGTTGGGAATCAAATCCATCACTTCTTGGGCTGTCATTACTGGCATCTTATCACACTTTCCGTTTATAAAATCTTTTTACGAGTTTTCTAATAACTTGTGACTAAGTGTAGCACTCCCAAAAACGATGTCAAGTTTTTCAATAACCGCTGATTTTTTCCGAGTAAAAAAAGAAGAAAAAAGGCAAAATAAAAATAGGCCTCAGCCTGTTTTTGTCATCAGTTGGTGATCATCTTATCCACAATGTTCAGCTCCTGGTCAAAGTCATAGACAATGGCCTGGGCGTTAGGCACCTCCAGCTTTAGGATATCCACATTGTTGATATCTTCTAAATATTTGATCAGCGCCCGCAGGCTGGAGCCATGGGCCACGATCAGCTGGTCTTCCCCAGCCACTAAGCGGCTGGCCACCTCGTCTTCATAGTAAGGCAACAAACGCAGCTGGGTCTGGTGCAGGCTCTCCGCTCTTGGCAAAAGCTGAGGGTCCACTCCCCAATAGCGGCGGTCGATAGTTGGTGACCCTTGCGCTGGCGGGACCGCGTCACAGCCCCGCCGCCACTCTAAAACCTGCTCTTTGCCGAAAATCTTCCTGGACACGTCCTTGTCCAGGCCCCGCAGGGCCCCGTAGTGGCGTTCATTCAGCCGCCAGGTCTTTGCAACATGCAGGTATAAAAAGCCCGCGGCTTCGGCCACGATGTTCGCCGTCTCAATTGCCCTCGACAAAAGGGAAGTGTGAATCATAGTCGGGTGAAAGTCCCCGACTTCTTTTAATTTCTCCCCTGCTGCCCAGGCCTGCCGCCGGCCCTTATCCGTTAAGGGGACGTCATTCCAGCCTGTATATACGTTTGCCGCATTGGCCTGGCTTTCCCCATGCCTCAGCAGTGCCAACTTTGCCATAATTTTTTCCTTCTAGAGCCAAAAAGACCAAATTCCAGTAATGATGAAGAGGATGCCTAAGAGGACAAAAGCCTTGCCCCCCAGCCCCTTCTGCTTGACGCCCTGCTTCTGCCGGCGCAGGCGCGTGATGCCGGTAATTAAATCCCAGATGCCGAAAAACAAGATGGCATAAGGAACCCACCAGGAATGAACGTTCATATTAGCCCCACAACTTTACCGCGTAATAAATGGCCACGGCCAGGATGCCGGCCCCGGTCAGGTAGTAGGACTTGGCTGGCAGGCTGTCCTTCTTCCCCATCCGCTGGCTGTTATAGCCCCGGGCAAATTCCCACAGGCCCACGATCACCAGCAAAACGAGCGTAAAAGTGTGCGTATCCCACTTCATCTTCTAGTCTGTCTCCTTGTTCATAAATCTTCAGCCTTGCAGTTGTAGTCGACAATTTCAAAATTGCCTTCTTCGTCCAAAATCCCCTGGCTGACGCTGCCGTTGTCCGGGAAGGTGATGTCATGCAGGCCGTCGTTTTCCTTCCAGTACTTGATCCCCAGGGTCTTGATAAAGTCCCCGTGGGAAACCAGCAAGACCCGGCCTTCGCCGCTGGTCTCTTTTCTCAAGACCTTGATGGCCCGGCACATTCTGGTTTCCAGTTCTTCCGTGCTTTCGGCCAAATGGAGGGGGTCAGCCTTTTTAGTGACTTCCCGGAACTTGTAGATGCCGATGGTATCGATAATCTTCTTCACGTCAGTGGTTGCTGGAATGCCCGCGGCTTTAGAAACACCGAGCCAGATATCATCGATGCTGCCGCCTTCAAAAGAACCGTAAAAAACTTCTCTGAATTCCGGCAGTTTTTTGATCTTGCCAATCTTAGACACCTGGTTGGCGTCCTTCATCAAGTGGACGGTGTCAATCGCCCGCTTCAAGTCTGACGAGTACATGTTGTCAAAATGAATTTGAGAGAGGGCGTCAGCCGTCTTCTTTAAATCGTCAATTCCTTTGATGGTCAAGGGGGTATCGCACCAACCCTGCACCTTGTTCAGGCGGTTAAAAAGCGTTTCCCCATGTCTGACCAGATAAACTTCAGTTTTCATGCCCGTCCTCCCTAAATCAATCAATAACTATTCTAACTTACTTTGCCTGGCTTGGGTAGTTAACCCCAGGCCCGCCAGCCCAGGTAAATGGCCAAAAGGACCGAGAAGCAAGCCGTGATCCATCTGACCCAGGCAGGCTTTAGATATTTAATCATTTTTTGCCCGAAATAGCCACCAATAAAGAGGCCAATCGCCAAAGGAAAAGCTACTGGACAGTTGACCCCGCCCTTAAAGGCAAATAGCGCCAGAGCCACCAGGTTGGCTAAAGAACCGATCACACTCTTAATGGCATTGATGACGACAAAAGAAGAGTCACTTAAAGCCGTCAAAAAGATCAAGGTCAAAACGCCCGACGCCGCCCCAAAGTAGCCGGCATAGATCCCGGCCACGAACAAGCCAAAATAAGCCCCGATTCTTCCTAGCTTGGTCGCCTGCTTTGGCTGCTTTTGCCGGCCGCTGTAAAGGAGCAGGCCAGCTGAAAAAAGGACGAAGAAGGGCACTAATTTTTGAAAGTTTTTTTCCCGGGAACTTGACTAAAAGCCAGCCCACAATTAAGGCCCCGGTCAATTGGAAGAAGGCATAGCGCCAAAGCTCCCCCCAGTTCCCCCGCATCTCCTTTAAGTAGGAGGACAAGGAACCAAAACCGGTCGTCACCAGGGCCGCCGTATTAGTCATATTGGCGCTGACCGGGCTGAGGCCGAAGAGGAGCAGGCCCGGGTAAGAGACAAGCGACGCCATGCTGGCCACCGCCGCCACGATGCCGGCCAGGACGCCTAAGATAATGAGGTAAATGAACTGCATGTTTGCTCTTTTTTGTTTTTTCACTGATTCGCTTATTTTTCCATTTTCACTGATTCGCTTATTTTTCCAAAGGAAAAAGCCGTATCCATTTTAAACGATCACAGCCGGCAATTGCAAATTGATGAAAATAGCCCGCTTTCAGCGACAAGCTGACCGCAATTTTGTACAATAGAAGGTAGCAAATCATTAACAAAAAAATTAAAAGCGCGAACAAGTAATTTTTAGAAAAAAGGAGAAGAAAACTATGCCAACTGCAGCAATTGTTTTTTCAGATGGATGTGAAGAAATCGAAGGCTTAAGCCAGGTCGACGTCCTGCGCCGGCTGGGCATCCCTTGCGATATGGTGGCTCTGGACAACTTGACCATCACTGGCGGACACGACATCCGCTTTACCTGCGACAAGTTAGTGGACGAATCCCTACTTGACTACGACTTGGTCGCCTTCCCGGGCGGGGCCCCGAACGCCAAGCACCTAAGAGCAAGCGAGAAGCTGGCCGGGCTGATGAAGCAGCGCTTCGCGGCCGGCAAGTGGAACGCCGCCATGTGCGCCTCCCCGATCGCCTTGTCTAAGTACGGCTTTTTAAAAGAAGCCAAGTGGACCAGCCACCCGGACTTTAAAGAACAAGTTGCCAGTGAAAACCCGGCCAGCACCTACGTCGACACCCCAGCTGTCATTGACGAGGACCACAAGCTGGTCACCAGCCGGGGGCCGGCCACTTCCTGGGCTTTTGCCTATGCCCTGGCCCAAGTTTTAGGCGTGGACACCAGCCAGCTGGAAGACGCCATGCAATACAGCTACTTAAGAGACCACATCAACGAGGCTTAAGATGACTGAAGAAACCTTAGTCAGAAAGGCAGAAAGCCGGGACCTAGAGGACATTGTCGCCATCATCAAAGACGCCAAGGCCCTTTTGAAGGCGCAAAACTCCAGCCAGTGGCAAGAAGGCTACCCTAACCGGGCCAGCATTGAAGAAGACCTGGACAACCGCCAGGGCTGGGTTTTACTTAAAGATGGGCAAGTCGCCGCATATATGGCCGCGACCGACTTCGACCCCAACTATGAAGTCCCGATTTGGGCGGGAAGTGCTCCCTACTGGGCTCTGCACCGCTTCGCCATTAAGAAGGATTTCCGCGGACAGGGGCTCATCCAGCTTTTGCTGAAAAAAGTAATTGCTTTTGGCCAAGAAAATGGAATTAAGAGCTTCCGCCTGGATACGGGCAAGCAGAACCAGGCCGTCCAGCACCTGGCTGACAAATTGGGCTTTGTCTACCGGGGCATCATTACGGTGACCAACGACTCGGTCGACCCGGAGCGGCGGGCCTATGAACTGCTTTTTGACAAGTAGGAAAAATATAAAGAGAAAAAAGAAAAATAAAGAAACAGGAAAATAAACAAGGAGGAAAAAATGGCTGAACAATTGGCAATTGCAGACCTGCAGGTCGACATTAAGCAGATTCCCTTAAAGCAGCCCTTCGTCACGGCCCTGCACCGGGTTGACGCCGTCAACGCCGTCCGGGTGACGGTCCGACTGGCTAACGGAGTAACGGGTGTCGGTACCTGCACCCCTAATGAAAAAGTGACCGGGGACAGCTTGTCCAGCGCCCGGGCCGTTATTGAAGAAACGATCAAGCCTCTCGTCTTGGGCAAGAACCTGACCGACTGGAAGGAACTTTTAAACACGGTCAAGACTTCCATCGTCCACAATGCCCCGGCCAAGGCCGCGGTCGAAATCGCCCTCTACAATACCCGGGCCAACCTTTTTGGCCTCACCCTCTCCCAACTCTTAGGCGGCAAGGGCGGCAGCGTGGAGACCGACTACACCATCAGCATCGGCAAGGCTGAGCAAATGATCGCTGACGCCCAGAAGATGGTCGATCAGGGCTTCAAGACCCTTAAACTGAAATTGGGGGCTGGCCATTTAAAGCGGGACATCAAGCTGGTCGAAGACCTGGCCTACGCGGCTGGTCCTATGGTTCACCTGCGCTTAGACATGAACCAGGCCTGTGATGTCCGGCAGACCATGCAGGCGGCAGAATACTGGCACAAGCAGGGCCTTTTGATCGACTTTATCGAGCAGCCGGTCCCGGCCTGGGACCTGGATTCCATGGCTTACTTGACCCGCCACTCCCCTTACCCGATCATGGCGGATGAATCCGTGGAAAGCTACGAGGATGCCCAAAGAGTTTTGGCCAAAAATGCCTGCGACTACATCAACATCAAGCTGATGAAGACGGGCGGCTTGTCTGAAGCCCAGAAGATCAACGACTTAGCCGAAAGCCGGGGGGTGCCAACCATGGTCGGCAGCATGATTGAGTCAATTGAGTCTTTGGCGGCAGCCTGCGCCTTCTACCGGGCCAACCCGAATACGATTTTTGCCGACCTGGACGCCATCTTCATGGTTGACCAGGACCCGGATTTGAATAGTTACGCCGAATGCGTCGGCGATAATATCGTGGTGAGATAAAATGCTGGATTTTAAGAAGATTGCTGACATCCTGGCTCCCCTGCCAGGGAAAACAGCCCTTTTGATCAAAGACAAGACCGGCGTCCTCTACGCCAGCCCCTTAGCCGGGGAAGAATTCAAGTCAGCCAGCCTGATCAAGCTCCTGCTACTACCAGGCCCACCCGCAGGACTTAAGCCAGATGGTCCATGTCCCGGAAGACAAGATCGTTGAGGGCGGGATTCTCTGCCACCTATTTTATCGGCTTTGCAAAGATGGCCGCCTGGTTTGAAGCAGAATTTGCCCATCTTCACCTGGGCCGGTACTTGATGGAAGTGACTGACCGGGAAATAAGGTATATTCTTTTTTGGACGGCTAGCCATTTTTATCACTATTGTGATAAAATTAAAGCAGATTTATCAAAAGTAGGGATATAAATGGACATTACCAATTTTTTTCACGGTTGAGACTTCTGAGCTCTCCAAATCTGACCGGAAAATCATGAAGAGAATGACCTCCGACTTGACCAATGTTGAGTCGCTGACCATCAACCACCTGGCTGAAGAAGCGGGAACTTCCCTGGCTTCCGTTCAGCGCTTCTGCCAGAAGATGGGCTATTCCGGCTTTAAAGAATTCAAGTTCCAGCTGCTGACCTACATCAAGAAGCAAGAGAGCCAGGAGGCGGCGGTTTCAAGCAGCGAATACCTGGATGACTACCATGACGCTATCAACCGGGTCTGGACAGCAAATGAAAAGGACGCGGAAGAATTGGCGGAAGTCCTGGCGACTAGCTCGACCAACTTTATTTTCGGGATCTATTATTCTGAACTGCCGGCCAGGCTGCTCAGCATGGGGATGCGGGATTTAGGCAAGTCGACCTACTTTGGGGACAACCTGGCAGCTGGCGAGCACCTCTTCCCGCTAAGCGATGAGAACTCCACAGCGGTCTTTTATTCAGTTTCAGGGATTTCCAAGCTTTTTGGCTCATCGCCCTTGCCCAAGTCGATTTCCCACTTCAAGCACAGCTACCTGGTCACCATGAACCCGGACACGCCTTTGAAGAAGTACTTTAAGAAGGTCATCGTCCTGCCGGGCAAGAACCTGGCCCAGGGCCTGCCGGTCGACCCCCAGTCGATCCCGGTGGTCTTTACTGAAAGAGTGATTGATATCGCGGCAACTAAATACCGCCGCTAAAGCTGCCGGAAGGCGGCTTCTTTGCTTGGCGTCTTGTTTGCCAGGGCTGGCGAAGATTGATAGAATTTTATTTAGGTGGTTAGTTACTTTTTGTAACTAATTTCAAAAAACAGCAGACATTGAAAATAAACATTAGGAGAAAAAGATGGACTTAAACTTTAAAGAACTGGCGGAAGCCAAGAAGGACGCGATCTTAAAAGACTTAGAGGAATTGATCGCCATTGACTCTTCCGAAGACCTGGAAAACGCCACGGAAGAATACCCAGTTGGCAAGGGCCCGGTTGACGCCATGACCAAGTTCCTCAGCTTTGCCAAGCGGGACGGCTTTGACACGGAAAACTTCGCCAACTACGCCGGCCGGGTCAACTTCGGTGCAGGCGACAAGCGCCTGGGCATCATCGGCCACATGGACGTAGTGCCAGCTGGTGAAGGCTGGACCCGAGACCCCTTCAAGATGGAAATCGACGAAGAAGGCCGGATCTACGGCCGGGGCAGCGCCGACGACAAGGGGCCAAGCTTAGCTGCCTACTACGGGATGCTTTTGCTCAAGGAAGCTGGCTTTAAGCCAAAGAAGAAGATCGACTTCGTCTTAGGGACCAACGAAGAAACCAACTGGGTCGGGATCGACTACTACTTGAAGCACGAACCGACTCCAGACATCGTCTTCTCACCAGACGCTGAATACCCGATCATCAATGGTGAACAAGGGATCTTCACCCTGGAATTCAGCTTCAAGAACGATGATACTAAGGGCGACTATGTTTTAGACAAGTTCAAGGCCGGGATTGCCACTAACGTGACTCCGCAGGTTACCCGGGCTACTATTTCCGGACCTGACCTGGAAGCTGTTAAATTGGCTTACGAAAGCTTTTTGGCAGACAAGGAATTGGACGGATCATTTGAAATTAATGACGAAAGCGCCGATATCGTCTTGATCGGCCAAGGGGCCCACGCTTCAGCTCCGCAAGTCGGCAAGAACTCAGCAACCTTCCTGGCCCTCTTCCTGGACCAATACGCTTTTGCCGGCCGGGACAAGAACTTCCTCCACTTCCTGGCTGAAGTGGAACACGAAGACTTCTACGGCAAGAAGCTGGGCATCTTCCACCACGATGATCTGATGGGCGATCTGGCCAGCAGCCCGTCCATGTTCGACTACGAACACGCCGGCAAGGCCAGCCTCTTGAACAATGTCCGCTACCCGCAAGGGACTGACCCGGACACCATGATCAAGCAGGTTATGGACAAGTTCAGCGGCATCCTGGATGTCACTTACAACGGCTTTGAAGAACCGCACTACGTGCCAGGCAGCGACCCAATGGTGCAGACTTTGCTCAAGGTTTACGAAAAGCAGACCGGCAAGCCGGGCCACGAAGTCGTAATCGGCGGCGGGACTTACGGCCGCCTCTTTGAACGCGGGGTTGCCTTCGGGGCCCAGCCGGAAAACGGCCCAATGGTTATGCACGCCGCCAACGAATTCATGATGCTAGACGACTTGATCCTGTCCATCGCTATCTACGCTGAAGCCATCTACGAATTGACCAAGGACGAAGAGCTGTAAGAAAAAGCCGAAAAGGTAATTACTCAGGGTGACTTAATTTTCTTTAGTCTAACCCGGTCAAAACAAAACATTTTTAGCTTTAGCAGGTTGTCAAATTAATTTTATTTTGACAGCCTGCTTTTTTTGCCCTTTCTTAAAGGATTTTATCTTTATGCTTTAGTAGGAAGGACTTGCTTTATGGAAGACCGCAGCATTGAAAACACGGACGGGACTATCCGCTCCTTGTCCAACCGGCACGTGCAGATGATTGCCATTGGCTGCACGATCGGTACTGGCCTCTTCTTGGGGGCCGGGACCACGATTTCCGCCACTGGTCCCTCAGTTATTTTTATCTACGCCATCATGGGCCTCTTTTTCTTCTTCCTCTTGCGGGCCTTAGGAGAGATGTTATATTTTGACTCCAACAGCCACACCTTCGTCTCCTTCATCACCAGATACCTGGGTGAGGCGGCTGGCCGCTTTGCCGGCTGGACCTACTGGATCGGCATCCTCTTTGCCTGCATGGCGGAACTGACGGCCGTTTCAACCTATGTCTAGTACTGGCTGCCCGGCCTGCCCGCCTGGCTGATTGAAGTTAGCGTCTTAGGCCTCTTGACCCTGCTCAACTTGACGGCGGCCAAGCTTTTTGGCGAAACTGAATTCTGGTTTGCCATGATCAAGATCATCGCCATCATCTCCCTGGTCGTAACCGGGATCATCATGGTTGCCGCGAATGCTAAAACTCCGGTTGGTCACGCTAGCCTCAGCAACTTCACCGGCATCTTCTCCCTTTTGCCAAAAGGCAAGTATGCCTTCTTCACCGCTTTCCCGATGGTCTTCTTCTCCTTTGCAGGGATTGAATTCGTGACGATTACCATTGGCGAGGCCAAGAACCCGAAGAAGGTCATCAAGAAGGCCGTCAACGAAACCCTGCTCCGGATCCTTCTTTTCTACATCGCTACTTTAGCCGTAATCATGTGCGTCATCCCTTGGGGAAAAATTACCAGCGGGACAAGTCCCTTCGTCCAGTTCTTCAAGATCGCTGGCTTTAATGCTGTTGCTTCAGTCTTCAACTTCGTCGTATTGACCGCCGCGGCTTCTTCTCTTAACTACGGGATCTTTTCAGCTGGCCGCCACTTCTTCCAATTGGCTGAAGAAGCGCCTAAGGATTCCTTTTTGAAAAAGCACTTCGCCAAGATTTCAGCAAATGGCGTGCCAGCCGCGGGGATCGTGATCTCCGTTGCCTTAATGCTAATCGCGCCAATCATGAGCTTCTCCAGCACGGCTATTGAAGTTTTTGGCACGGTGGCCGGGGCAACGAGTGACATGTACATCCTGGTTTATGTTCTGGCCCTGCTGGCCCACCGCAAGTACCGGGAATCCAGCGATTTCATAGTCGCCGGCTTCAAGATGCCTTTTTACAAGCTCTCCAGTCCTTTGACCATCGCCTTCTTCCTGATCATCTTCTTCAGCCTCTTCTTTATTCCGGCTGATGTCTTCGGGGCAAGTCTGGCCGCCAGCTGGGCCCTCCTCTTTGGGGCTGGTGCTGGCTCAGCGAAAAGCATTGAAGTGCCCATCCGAGTTTAAGCAATTAAAGTTAAACAAGCTAAAAAGCGTTGACAGATTTTTCTGTCAACGCCTTTTTTATGCTTCAATATTTGTCCGCACCGAAGTAATATTGCTGGTAATATTTCAGGACATCTGCGGAAACTTGGGAATTGGTGACCAGTTCATCGATGTCATACAGACTGTAAAACTAGTAGAAGTCGCGGCGGATCGTCATTTCTGAAACCTGCAGGCTCTTGGCTAAATCCGCGACTGATATGTAATTTTGCTCAGTAACCATATTCATAACTTGGTCAAGCCGTTCTCTTTTTAGCATTTTGGTCAGCCATCTCTTTCTTGCTTTTCCATGCTTAACTGTGTTCGCTTTAAAACACAATTTAACATCTGCCATGGCTTTTTTCAATGGATCCATAACGCTTATTTTTAGCAGAAACTCACGTAAAAAAGCCGGTACAGGAAACCTGTACTGGCTTTCTTAGTCTAAATTGACTAGCATGATCACTTTTAAAAAACTATCCTAATAAACAGTCCAGCTTTTCTTCACTCATCAAGTGATTTTCCAGGACCAGTTCCCGGACGCTGCGCTTTTCCTTAAGGGCCCGCTTGGCGATCTTAGCTGAGAGCTGGTAGCCCAGGTATGGGCAAAGAACCGTGGCGATGCCGACGCTACCTTCCTTGAGCTGCTTGCAGCGGCCCTTGTTGGCGGTGATGCCCGTAATGCAGTTTTCTACCAAGGTATCGACTGCCCCGGTCAAAGCCGTAAAGGATTCGAAAAGCTGATAGAAGACAACTGGTTCAAAAGCGTTCAGTTCCAGTTGCCCGGCTTCTGCCGCCATGGTGATGGTGGTGTCGTGGCCGCAGACCAGGAAGGCCGCCTGGCTGACGACTTCCGGGATAACCGGGTTGACCTTGCCCGGCATGATGGAAGACCCGTTTTGCTTGGCTGGCAGGTTGATTTCGGCAAAACCGCAACGCGGGCCGGAAGACAAAAGACGGAGGTCGTTGGACATCTTGGACAGGCTGATGGCGCAAGCCTTAAGGGCACCAGACACTTCCACGAAGGAGTCCAGGTTTCCCGTAGCGTCAAAGAGGTCGTCGGCCTGCTTGAGCTCAAAGCCAAAGAGCTTGCTCAACTGCCCGGCGATGTGGTCTTCGTAATACTGGGAAGCGTTAATCCCAGTCCCGATCGCCGTTGCCCCTAGGTTGATCTCGTGCATTTCCATGGTGGCTTTTTCCAAACGCTTCTTTAAGCGGCTGACCATTGAAGCGTAGCCGGCAAAGCTGTCACCCAAGGTCATCGGCACGGCGTCTTGCAGCTGGGTCCGGCCCATCTTGATCACGTCAGAGAATTCATCTGCCTTGATCCGCAGAGAAGCTTCCAACTTGTCCAGGCTAGCGACCAGCTTTTCACTGAGCAGGATGGTGGTCATCTTGCCAGCCGTTGGAATGGTGTCGTTGGTAGACTGGGCCATGTTGACCTGGTCGTTAGGGTGAACCAGGTCGTAAGTCCCCCGCTTGCCGCCTAAAAGCTCGTTTGCCCGGTTAGCAATAACCTCGTTCATGTTCATGTTAGCGCTAGTCCCGGCCCCGCCTTGGATTGGATCGACGATGAAATCTGCCGCGAATTTGCCGGCAATCACTTCATCGCAAGCAGTTTTAATCGCGTCAGCCTGCGGCTTAGTGAGTAGACCAATTTTAAAGTTTACGCTGGCAGCTGCCTTTTTGATCAAGGCCAGGTTGCTCAGAAAAACTGGACTCATCTTTAAGTGCGTAATTTCGAAATTCCGGCTGGCCCGTTCAGCCTGGACCCCGTAGTAGGCGGCTGTCGGGACTTCAAGACTGCCAATTGAATCTGCTTCTAATCTGCTTGCTGCTTTCATCTGTTTTTGCCTCGTTTTTTTACTTCTTTTTTTGATTTCTTTCTATGGCCAATACTATAGTTGAAAATTAGACCAATGTTAAGACCATTCCCCCTTTTCTTTGCCATCTTTTTAGAAAAGGCTTACAAAAATTAGATTATTAACTTCTTTTGAGGAGAAAATTTAACATGCAAAGCTGAAAAAATTAGACCAGTTATTGGCCAAAAGATATAAAACAGATCATGCTCCAATAAAACAGCACGAAAAAAGAGGCTGATTGCTTAGCCTCTTTACACATTATTCTTTTGTATATTCTTCCCTAAGCCTTAAAGCTGCCCCAGTAGGCGCCGCCGTAGGCCCACTTAAGGTGGGCTGGCACTCCGATATAGTGCAGGGAGTAAGTGCCGTTAGTGTAGGAAACGTTAAAGCCGTAGTAGTCCCAGTCGCCGTCATACTTGCCGCCCTGGGTATTCATGAGGTCCCCGGCGTGCTCCCATTCCGTGTACTGGCTCAGCTGCTTGACCTTGCTCTGGTTAGCATAGCGGTAGCCAAACATCATGGTCTTCAAGCCAAAGTAGATGTCCTTCTTCATAGCCGTCATGGTCACCTGACTGCCGTCCTTAAAGCCGGCCATGTCTTCGACATAGTTGTAGTTGCTTGGCAATTTCAAGCCGACCCGGTTAGTGGCCCGGACAATCCCTGGCACATAGTGGCCAGTAGCGATGGTCTTCTTGTTTGCCACGTATTCCTTGGAAATTTCCAAGGCCAGCTTCTGGGTCCCCTTGCTGTACTTCCACTTCTTCAGGCCCAGCTTGGCCCGGGCCTGGTTGATCAAGCGGAGGGAGTAGGTTGCCAGAGTCTTGGACTGACTGGTATTCAAGTGGCCATTGGTCAATTTAACAATGGTCTTGTTGTCCTTGCTGCTCTCTGACCAGGAACTTTGGTCAAAAGTATTGGCCGGCATCCCCTTAACGTTGATCTTCCGCCACTTCTTCAGCCAAGCCGCGTTCTTCTTGTTTTTCAGCCACTTCTTCTGCTGGCTCTTAGACAAGTTGGAGTACCAGTAGGCCTTCTTCATGTTGGCCTTAGTATAGCCCTTAGGCAGGGTAAAAACCGCCTGCCGGCTGCTGGCTGCAACTGGTCTTACCTGGCTGGCCGCGAAAGCCGTCCCGATTGCCAAAGCAGCTGCCACGCTTACGAAAAATTTCTTCATCTTTGAACCTCTGTTTCTCAATTCAAATCCTATCCCATCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGGACATGAGCACTGTTCTCTTTGACAGCTGGGCATGCGACTTTAGCCAAACGAATAAGGCTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGCTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGCTTTGAACGTAGGCCAGCCGTTGCGGGTACTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTTGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCCAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTATACCTTGTTTAGCAGCTCTTTTCTCCACAAAAAGGCAAAGAAAAAGACGGTTCCCCGAAAGGAACCATCTTTGACCAGCAGCTGATTAGTACCAGCCGTTAGCTTGCCAGAAGGCCTTGGCTGCAGTCCATGAACCATACCGGCTTTGAACGTAGCTGTTGGCAACCTTTTCCTGGTTGGCGGCAGAAGTGTCACCATTCAAGTAGCTCAAGCTCAATTGGTACTTGCCGTAGTAGTTACCGTTTGAGGCAGTGTATGAGCCGCCGCTTTCCTTGCTTGCGATCCAAGCCTTAGCTGCTTCTTCAGATGATGATGAAGAAGTTGAAGTTGAGCTGGAAGTGCTTGCGGAAGCAGTTGAAGTTGAAGCAGAAGTGCTTGAACTGGTCGTGCTTGCGCTGTAGCTGGAAGTGTTGGCTGCGCCAGTATTCGCGCTGTAGGTGTAGTTATAGTTTGAGCCGTAGCCGTAGTTATTTGCTGATGAGCTGTAGCTCGTAGTGTAGCCAGTGCCAGTTGTGCTGTTAGCAGTGTTAGTGCTGGTAGTATTCGCGTTGTAAGTGCTGTTAGCAGTGTTAGTGCTGGTAGTATTCGCGTTGTAAGTGCTGTTAGCAGTGTTAGTGCTGGTAGTATTCGCGTTGTAAGTGCTGTTTGAAGTAGTTGATGCTTCAGTGGTGTACTTGGCCATGATCCATTGGCGCTTGCCGATCTTGTACCACTTTTCACCTGAAGCGTCGCGGGCGGTCTTAACTACCTTCCATGAGCTGCCGTCCTTAACGGAACCGGTAACCGTAGCAGTGTAGTAATTTGACCAAGTTGCAATTGATTGTCCATCAATGTAGTCAACCGTTACGCTGTCACCGATGGTTGCCGCGTCTGCTTGACCGTTCGTGCCTAAGCCAATCGCTGCCACGCCAGTCAAAGCCAAGCCTGCAGCAAATACTGATTTAAGTACGTTAGATTTGATGTTCAAAAAAATTCTCCTTTGCTTGTCGCAAGCTCTCGTCTGCCAAGTTACTTCTCCTTTGGCAAATTCCTTCTTGCTACTCTTATATTATTGACAGTCTATATGTTAACAGGGCCAAATTTCAAAATCATAGCAAAAAAGTAACGATCCAGTTAAGAATAGATTACAGGGAAGACATTTTCTGTAACATTTGTAATATTTTACCCGGCCTTAACTGCCTTGGAATATTTGCCCAAAAGCAAAAAAGACACCATGCACACGCATGATGTCTAGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATTGGGTTTATTTAACTAGCGCCGAAGCGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATGGGTTTATTTAACTAGCGCCGAAGCGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATGGGTTTATTTAACTAGCGCCGAAGCGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATGGGCTGCGGCTGACTTTCGTCAACCGACATTTATCTATTATACAGAAATGCGACAGGAATGCAAGCCTTTTGGCAAGATTTTTGCTCAAAAACTTCCTTTTCCTGTCCAGCCCGTCCTTTTCTTCCTTATTTCTGCCAAAAAGCACCCCGCGGGGCAACTTCCAGCCGGCGGATTTCATCCTTTAAGCCCGCCTCTCTGACCGCGTCGACAAAGTCGCTGATACGCTGGGGGTCAACCAGGCTCATAATGGTCGGGCCGGCTCCTGACAGGTAGGTCGCTACCGCCCCATGCTCATGGCCGACATTGCGGATGACCTCCAGTTCCGGCACCAATTTGCTTCTGTAGCGCTCATGGAAGAGGTCAGCCTCCATTAACTCTCCGGCCTTTTCATAATCCTGGGCAAAAAGGGCCGCTACCGCCGTGTTGGCCACGGCACTGGCCTGAACCGCCTCTTTAAAGGAAAGCTGCTTGGGCAAAGCGGCCCGGGCATCGCTGGTCTTTAAGTTATAGGCCGGGATGTAGGCGATCATGGCAAAAGGCGGTACCGGGGCCTTGACGGCTGTAAAGTGGCCGTTGACCTTGCAGCCGACAACCAGGCTGCCCAGAATGGTCGGGGCTACATTGTCCGGGTGCCCTTCCAGTTGGGCCGCGATTTCGATTTTTTCATGGGGAGCCAGGTTGAGTTGACCCAATTGGTCGGCCAGTTCAATCCCGCCCACGATGGCGCTGGAACTGGAGCCCAGGCCATGAGCCAGGAGGATGTCTGATTCCACCCGCAAGTGCTGGGGGGTTAAATCCGGCTTGACGCTTAAAGCCGCCTGGACGATCATATTGTCTTTCCCGCTTGGCAGGTCCCCTAAGTTATGGTCTACCTGCCAGTGGTCGCTCTCCCCGATTACTTCAATGGTCAGGTACAAGGAAATGGCCACCCCGATGGAGTCGAAACCCGGGCCCAGGTTGGCGCTGGATGCTGGAACTTTGATTTTCACGCTATTTCACCTCAATAATTGGCAATCGCTAGTTTTCTTAATCATTTTATCATGTTTTCTCTTTTAGAAAAATGATTTCCCCGTTATAATTAGCTATAAAGGAAAAAATCTTTTTCAACCATCGTTACTAGTTTACAGATCACGCATCTGACTTTTAGGGAGGATTTATGATTTACCGCAGTACCCGCAGCCAGGGGCAGGAAGTTACCACTGCCCAGGCAATCGTCCAAGGCCTGGCCCCAGATGGCGGCCTTTTCGTGCCCAAAGAATTCCCGGCTCCATTTTCAGCCGCTGCTTTAAAGGAAATTTTTGCCCTGCCTTACCAGGATATGGCTAAAAAGATTCTGGCTTTGTTCTTAACCGACTACAGTGCAGAGCAGCTAGCAGAGATTGTTAAAGGCGCCTACGGCCAGCAATGGGATGACGACCGGATCGCCCCGCTGACTGATAAGAAGGCCGGCAATTACTACTTGGAGCTCTTCCACGGGCCAACCCTGGCCTTTAAGGACGTGGCCTTGCAGTGCCTGCCCCGCTTGATGAAGACGGCCTTGGAAAACTCAGACGAACACAGGGGGATCGTGATTTTGACAGCGACTTCCGGGGACACCGGGACCGCCGCCATGCGGGGCTTCCAGTCCTTAGCCAAGACCCGGGTCATCGTCTTTTACCCTTACCAAGGGGTGGCCCCGATCCAGCTTAAGCAGATGCTGAGCGAAAACAGCGACAACACCGTGGCTGTAGCGGTTGAGGGCAACTTTGACCAGGCCCAGACCAGGGTCAAGCAGATTTTTAACGACCCGGACATGAACAGTTTGCTGGCTGACCACGATTTGACCTTCTCCAGCGCCAACTCCATGAATGTTGGCCGCCTCTTGCCCCAGGTCGTCTACTACTTCGCCGCCTACAAGCAGCTGCTGGACCATGAAGCCATTGCCTTTGGCGATCCCGTCAACTTCTCCGTGCCAACTGGCAATTTCGGCGACATTCTGGCCGGCCATTATGCTCAAAAACTGGGCCTGCCAGTCGGCCGCCTGATCTGCGCTTCCAACAAGAACAATGTCTTAACCGACTTTTTCAAGACGGGCAAGTATGACAAGAAGCGGGACTTCTACGTGACCAACTCCCCATCCATGGACATCCTGGTTTCCAGCAACCTGGAGCGTCTGCTCTTTGACCTCTGCCAGAACCCGGACACGGTCAAGTCTTTGATGGAGCGGCTGAATACAAAGGGCGAATACCAATTGCCAGAAGACATGCAAAAGAAGCTTTCCGGCTTCTGGGCCGACTACGCCACTCCGGAAGAAATCGAGGGCGAAATCAAACGGGTTTACGAAGAAAGCGGCTATGTCATCGACCCGCACACGGCTGTCGCTTCTTTAGCCGCCAAGCGCTTTAAGGAAGAAGACGATAAGCCAACTGTCGTCCTCTCTACCGCCAGCCCTTACAAGTTCCCGGAAACCGTCTACCACGCCATCAGCGGGCAAACTGTTAAGGAAAAAGGCCTGCCAGCCCTTAAGGAACTGACTGACCTAGCCGGCCCTGCCCCAAAGGCCATGGAGGCCTTCTTAGGCCACAGCTCCCAGGAAATCGTCATCCCGGCTGATAACATGGCAAACGAAGTCAAGCGGCAGCTGGATCTGGACTGATTTTTGCTAAAAAAGAGAATAGATAAAGAAAAAAGCAGCTGAGGATTTGTTCCTGAGCTGCTTTTGCCATGTAATTGAAAATAAGGAAAAAAATTCAAAATAAAAAATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCATATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCATTTATTTTGCTTAGCCTTTTTGCAAGGCACGACTATTAGTATACCCGACCCAGAAGAAAAAGCAAGGGTTTAGGGCAAAAAGCTTATTATTTTTATTTGCAAAAAGCACTTGCACTTTTCCCTGCCTTTGCTATACTAATAGATGTGCTTGCGGGCGTGGCGGAATTGGCAGACGCGCAAGACTAAGGATCTTGTGACCGCTTTTGGTCGTGGAAGTTCAAGTCTTCTCGTCCGCACCAAGCGAAAGGAACTGGTTTATCCAGTTCCTTTTTTGTTCTTCGCCAGCCTTTTTTGCTAGAATATTCTCAGAGTGATAAGCAAAAAGCAAAAAACAATTTAAGGTAAAAAAAGCATGACTGAATTAAACTGCCGCTTGGCAACGGAAGCTGACTTGGCTGCCCTCTGCCAGTTCTACCAGGACATCTGCGCCCACCAAAAAGACGACCAGTTCGGGGCCGACTGGCACTGGGGGATCTACCCAAGAGAAAAAGACATCGCGGAAGCAATTGCACAAAAGCGGGCCGTGGTTGGCATCAAGGACGGCAAGATCGCCTCAGCCGGCATCTTGACTGTGGGTAATGACCCTCTTTACAGCAAATTTGCCTGGCCAACCCCAGCTGAAGATAACGAAATCGCCGTCCTCCACCTCTACGGGGTCCACCCATCCTTCCGCCGGCAGGGCCTGTCCTCTGTCCTTTTGACCTTTATCAGGGACCAGGCCAAAAAGCTCGGCTGTAAATCCATCCGCTTGGACAGCATGGATGGCAACGTTCCTGCTCGCCGCCTCTATGAAAAGAATGGCTGGCGCTTTGTCAGCCAGGAAACTGTCTACTACGACGACATCGGCGACTGCAAGGTCGACCTGCTTGAATTAGCCTTATAACAACAAAAAACCACAAGCCTGGCTTGTGGATTTTTTCTTTACTCTTTTTCCTGTTCTTGATCCTCATTTTTTCCCGCCACTCCTTGGCCCGCTGGTCCGGCATAAACCACATCAGCATGACCAAAGCCATGAAGACCCAGGACAAAATTGGCCAGGCAAAGGCTGACAAGGCAATCCCCAAGTTGGCGGCCAGGGTTAAGCAGCCCTTGATCCCCATATTCTCTTTCAAGTCTTGGCTGTCGTAGGCAATCTGCCAGGCAAAGTGCTGCAAGAGCAAGAAGCTTACTGAGCTTAATAAGAGAACCAGGCCGTACAAGAACAAGGGCGGCCCAGCCAGAGGGTTCTTCCCCACCCAGGCCGTGGCCAAAGGAATCAAAGAGGTCATGAAGAGCCAGGCCATGTTGGTCCAAATTACCTTGTGGTTGACCGAAGGCAAAGCGTGAGTGATATTGTGGTGGTTGACCCAGTAAATGGCCATGTGAAAGAAACTGAGCAGGTAGATGACCAGTTGCGGGATAAGTGGCTTGAGGGCCTGGAAGCTGGCTTCTTCTGGGGCCCGTATTTCCAGGACCGTGATGGTGATGATGATGGCCAAAACGCCATCGCTGAACGCCTCCAAGCGGTTCTTGCTCATAATTTTCCCCCAAAAACAGAAATACTCAATACGCGAGTTAAGAATACTTTTATTGCATCTTTACCATTTTAGCCTACTTTTGCCAAAAGGAAAAAGCCCGGCAAAGCCAGGCCCAATTTCTTCTGCTTTATTCAGTAGTTAGCACTATTCTTGATTCTTGTAGTCAGCTCCCATTTCCTGCGGATCTTCCGCCTCTTCTTCATCGAAGCTGTATTCCATCTTCTTGTTGCGGTCCTTCATAAAAGCATAGGCTATTTCCGCCCCGTAGACCAGGAGGCCGATCAGGCTAAAAGCCAGAATGAACAGCCAAACGCGTTTCTTCTCCATGCTTGTCACCTTAGCTTTCTTTTAACTAAAAATTGCTTCCTAATTTTATTATAAGCGCTTTTCGGGGAAAATACAGATTATCCTGGCAAAGACAGGAAAAGCCCCCCCGCAGGAGATGCTTAAACAGTCTGGTTTCTCAGCAGCTTGACCGGGAGCAGGTAGCTGTTTTGGGCCAGCTTCTTTTCCGGGTCCGCGATCCGCTCATAGAGCAGCTTGACCAAGGTCCCGGCCAGGTCTGGAACCGGCTGGGTCCCGTCAAAGCCAACGATTTTCAAGTCCTCCGGCACCCTGATCCCCAACTTCCTGGCTTCTTTTAAGAGCAGGATGGCCGTAAGATCGTCTGAGCAAAAGACCCCGTCGATCTTCCGCCCGCTGGTCAAGAGCTCCCGGAGTTCTCGCGCCTTAGCCGCCGGAGACTCGTAAAAGGCTGATCGGGCCGTGTGTACCGTCAATCCCGCCGCGGCCACCGTGTCTGCGTAGCCGTCAAAGCGGCGGGAGGTCGGGTTGCCTGTTTTAACCGGATTGCCGACAAAGTAGACATGCCCGCATCCCGCGTCAACCAAGGCTTGGGTAGCCAGGCAGCCGCCCTGGTAATTGTCACTGGTCACGATCGGCACCTGGTCAGACAGGTACCGGTCAAAGGAAACGATCGGCAGGCCATAGCGCTGGTATTCTTCAATCCCCAGGTTGTGCGAACCCGCGATGATCCCGTCGACCTGGTTGGCCTCCAGCATCCGCAGATAGCGTCGCTCTTTATCGCTGTCCTGACCGGCGTCGCAGAGCAGCATCTTGTAGCCGTCCGCTTCCAGCTTGTCTTCAATTGCCGCGACCAGTTCCGCGAAGAAGGGATTGGTGATGCTGGGCATGATCACCCCAATCATCTTGGTCTGCTTGCCCTGCAAAGACCAGGCCAAGGTGTTGGGCTGGTAGTTCAGCTCCCGCATGGCCGCATTCACCCCGGTCAACCGTTAAGCGGGCGTGCTTGCCGGTCTTGAAGCGGAGCTTGATGCAGTTCTTACCTTCACTGTCTGCCACCAAAAGCAGCTTGCCCTTCTGCCCCTGCTTAATAGTCAGCTTCAGTTCGCTTTGCGCGCCAGCATCAAAGGCCAGGTCACCTGTGAAGTCTTCTTCGACTCCTCTCAGGCTCTTCATGGCCTTGACCGGCTTTTGAAGCAAGCGGCCGTACTTTAAAGCCAAGCGCTTGACCTGGCTCAAGCAGTTAGCCCAGCCTTCCTTATCACTTGGGTAAGTCACATCCGGCAGGCCAACCCAGCTGATGGCGTAAGCATAGCCATCTGGCGCGTTGAAGGCCTGAGTAGCGTAAACGTCAAAGCCCCCGTCCAGGTTGATCGGGGACTTCTGCTTGGTCTCGAAGTGGCCGGTTTCAAAGTCAAAGCTTTCCCCAACCCAGTACATGTTCGGGTAGACATTCTGGTAGTCGGTCACGTTCTTGTCCAAACCCTGCGGGCAGAAGATGAAGACCGGCTTGCCGTCAACAAAGACCAGGTTCGGGCATTCAACCATGTAGCCCATGTCTGGCAGGTCAACATAGCCCAGGTCCTGCCATGGACTCGTTACAGCATCTGCCTTGTAAAGGCTGATCTTGCCGGCCTTGATCTCCTTGTCCTGGGCACCCAGAATAGCGTAGTACTTGCCATCGTGCTCTAAAATCTGCGGGTCACTCACGGAAGTGCTCAGTCACATGCTCTGGCGAGTTGATCAGAGGCGTCTCCAGCTTGGTCACCTTTCCCTCTTCGTCCATCCAGGCCCCAACCTGGTAAGAATGGCGAACCCAGTTTTCGTCGCGGACATTGCCCATGTACATCAGAAAAAGCTTGTCCTTGTCGCCAATTGCCTTGGCTGAAATTGCCTTGGCTGAACCGAAATAGGCCCCATGGCTGTCCAGCGGGGTGTCAGGATAAACAGCTTCGCCCAGGTTTTCCCAGTGAACCAGGTCGGAACTGGTCAAGTGCACCCAAGACTTCAAACCATGCACTTCCCCAAATGGGTAAGCCTGGTAGAAGACCTGTCAGCCGTAAATGACGAAGTCTTCTCCCAGAAGCTCATGGGTAACGGGGCAGCCATCGTTCCTAGCGACGGCAATGTCTACTCTCCTGTTACCGGTACTGTTTCCGTTGCTTACAAGACTGGCCACGCTTACGGGCTTAAGTCTGACGACGGTGCCGAAGTCCTGATCCACATCGGTCTGAACACGGTCAACTTGAACGGCCAGCACTTCAAGTCCCTGGTCACTCAAGGCCAGCACATTGAAAAGGGCGACAAGATCGGTGAAGTCGACCTGGATGCCGTCAAGGCTGCCGGCTACGACACCACTGTCATGGTTGTCATCACCAACAGCCCTTCATACAATGAAGCGGCCCGGGTTGAAGCAACTGACGTTAAGCACGGCGACAACTTGATTTCTTTAACTGCTCACTAATCAAAACTACTACCATCAAGCAGCCCTGCCCGGGCTGCTTTTCCTTTACTAATTTTCATTTGACAATATATTCATGATTTTTTTCAATTAGATTAAAAAATCTGCTTGCACCTTGGCAGGTATATGACTAAGATTTAAATTAAGCCGAATTTTAGAGAACTGTTTAGCACGGGGAGGAATTTAAGCATGACTTTACGAGTTGGTATTTTGACGAGCGGCGGCGACTGCCAGGCGCTCAACGCGACCATGCGGGGGCTGTCCAAGACCCTTTACAACTGTGTCGATGACGTGGAAATCATCGGTTTCAAGCGGGGCTACTACGGCTTGATGCATGAAGACTACGTCAAGATGAAGCCGCGGGACTTCTCCGGCATCATCAACGAAGGCGGGACGATTCTGGGCACTTCCCGCCAGCCATTCAAGGAAATGCGGGTCATCGTTGACGGCTTTGACAAGGTAGCCGCCATGAAGAAGACCTACAAGAAGCTCAACCTGGACGCTTTGGCGGTTTTGGGCGGCAACGGGTCACTTAAGTCAGCCAACATGCTGGCCCAAGAAGGCTTGAACGTGATTGGCCTGCCAAAGACCATCGACAACGACACTTGGGGGACTGACTACACCTTCGGTTTCCAAAGCGCCATTGATATTGCCACCAGATACCTGGATGACATCCACACTACTGCTCAAAGCCACTCCCGGGTCTTTGTCGTCGAAGTCATGGGCCACAAGGTTGGCCACATCACCCTGGCCGCCGGCCTGGCTGCCGGCAGCGACATTATCCTTTTACCGGAAATCCCTTATGACATCAATGTCGTGGCCAAGAAGGTCAAGGAAAGACAAAAGTCTGGCAAGGGCTTCACGGTCATTGCCGCCGCTGAAGGGGCAATTTCCAAGGAAGACGCCACCCTGTCCAAGAAGAAGTACAAGGCTAAGGTTGCCGCTAGAAACGGCGCCAGCGTGGTTAACGAAATCGCTGCCCAATTGCAGGAAGTTTTGCCAGACGCTGAAATCAGAACGGCGGTCATCGGCCACGCTCAACGGGGCGGCCGGCCAGATGCCTACGACCGGCAAATCTCAACCCGCTTCGGGATTGAAGGGGCCCGCCTGATCATGAACCGGTCCTTCGGCCGCCTGGTTGTCTTGAAGCAAGGCGAAGTCGACTCTATCGCCCTGGAAGACACGGCCGGCAAGCTCAAGTACGTTGACCCGAACGGCAAGACCGTAAGCAACGCCCGCCTTATGGGAGTCACCTTTGGGGACAAGTAAGAGCCTATAATTCTTAACAGCACACAAGCACAAAGAAAGAAGCATCGCGTTCGCGGTGCTTCTTTCTTTGTTGTTTTAAAATTACTTCAGCAATTCGCTGATAGCGTCTTGGTAGCTTTCAGCTGCCTTTTCAGCAGTTGCGATGTCAGCCTTGTTAACGCCGACATAAGCCTTGATTACTGGTTCAGTACCAGATGGCCGCAGGGCTACCCAAGTTTCGTCATCCAGGAAGTACTTCAAGACGTTTGACTTCGGGAAGCCAGTCAATGGAGTTTCTTCGCCGTTTTCGACAGTAACTTGTTCTTGGTAGTCTTCGATCTTCAAGACCTTGGCCCCGTTGATTTCGCTGAGGCGTTCTTCTCTCAGCTTGCTCATCAATTCAGCCATCTTCTTTTGCCCGCCGATCCCTGGCATTTCGATAGCCCGGGTGATTTCGTAGGCAACGCCGTACTTCTTCCAGATTTCCTGCAGGCCGTCAAAGACAGTCATGCCCTTGGAAGCGTAGTAGCTGGCAACTTCGGCGAACATCAAGGCCCCTTGCATGGCGTCCTTGTCGCGGGCGAAGGCTTGGAAGAGGTAGCCGTAGCTTTCTTCAAAGCCCATCAAGAACTTGCCGTCCCCTTCCTTGTTCATCCGGTCGACTTCTTCACCAATGTACTTGAAGCCAGTCAGAACTGACTTGGTCTTGATGCCGAAGTCCTTGGCAATCTTGAATGGCAAGGCACTGGAGACGATTGAGGTAACGATTTCGTAGTCCGGAGTCAGCTTGCCTGAGTCCTTCAAGTTTTGCAGGAGGTAGTAAGACATCAAAGTAGCGATTTGGTTCCCAGTCAAAACTTGGAAGTCGCCCTTGTCAGTTCTTACGCAGGCCCCCATCCGGTCAGCGTCCGGGTCGGTAGCTACAATCATGTCAGCGCCGATTTCGTTGGCCAGTTCCACGCCTGGGTTGAAGACGTCACGGAATTCCGGGTTAGGCTTCTTGCAAGTTGGGAATTCCGGGTCCACAATCGCCTGGCTTGGCACTGGAACAACGTTGCTGAAGCCGCCCCGTCTGAAGGCGCGGTCGTAAAGCATCTTACCCGTACCGTGCAACGGAGTGTAAACAATCTTCAGCTTGTCGGCGTTTTCCTTGATCATGTCCTTGTTGACGTTGACTGTTTCCAGCTTGGCCAGGTAGGCTTCGTCGACATCTTCGCCGATCAGCTGCAAAGTGCCTTCAGCACGCAGCTTCTTGACTGGAGCTGCCTTAACGCTGAAGATGTCTTCAACCTTTTGCGCGTAGGCAAAGAGGCGGTCAGCATTTTCCGGCCCCATTTGGGCACCGTCTTCGCCGTAAGCCTTGTAGCCGTTGTACTGCTTGGCGTTGTGGGAAGCAGTTATGTTGATCCCGGCAAAGGTGTGCAGGTAGCGGACAGCGAAGGACAGTTCCGGCGTTGGACGCAGGTCGTCAAAGAGGTAGACGTGAATGCCATGAGCCCCCAAAACGCGGGCAGCGTGGGTAGCCAGTTCGCGTGAGTTGTAGCGGGAGTCAAAGGAAATTACCACGCCCCGCTTCTTGGCTTCTTCGCCGTTTTCGTCGATCAAGCGGGCCAAACCTTCAGTTACCCGGCCGACCGTGAAGACGTTGATCCGGTTGGTCCCTGGTTCCAGGAGCCCCCGCATCCCGGCAGTCCCAAAGTTGATGTCCTGGCCAAAGGCGTCTTCGATCCACTTTTCGTCGCCGCCTAATTCAGCCATTTGTTCAGCCAGGTCTTCCGGCAGGGCGGCTTGTTTCCATTGTTCAAAAATTTCTTTTGCATCCATATTAGATATATTCCTTTTTATTCCTTTTTATTCTTTTTCATTCCTGTCCAGCTTAAATGTCTTCAACAGATAAGCCTTCTGAGCTACGCTTTCTTGGTCCAGTATATCACTTACCAGCTCTCCAATCTTCTCTGGCAGGCAATATGTTTGAAATTCTCCCGCGTCCAGGATCATATCCTGGTCGGTCTTGTTGTAGCAGTAAATGACCAGTTCCCTTTGGTTGTAGCGGACCAGGGCGTTGATGCCATAATCAATCTTGACATAACCAACTTTCCCGTCGACTAGTACCCGGTTTTCCCGCCGCCAGTGGGCCAGTTCCTTGACTTCTTTTTCCAAAAAGTCGCTTTCCTTGCCCCATGGGAAGTAGCGGCGGTTGTCCGGGTCCTTGTCCCCTTCTAGGCCGGCTTCATCCCCATAATAGATGTAGGGAACGCCGGGAACAGAAAACAAAAACAAGAGGCCAAAGGCCAGAGCGACCAGCTGCTCGTCTCCCCCCAAGACGGTCTTGATTCTGGCCGTATCGTGGGTGCCAATATTGTTCAGGCAGTTTTCCAGAAAGGCCTTAGGGTAGTTCTCAACCAGCTTTTCCAGGTCATTCAAGGCGGCCACTTTTTCCGTTTCGTTATTGGCCTGCAAGAGCGAAACGATAAAGTTGCGGACCGGATAGTTCATGGTCCCGGTTAAATTGTCCCCGGCCATATAAGTCCGGAATTCACTGTTGACGAACTTGTGGGAGGCGTCTTCCCAGACTTCCCCGATCAGGACATGGCAGTCTTCATTCTGCAGGCGCTCGCGGATTTCCCGCAAGAGCGGCATTGGGAGTTCGTCTGCCACGTCCAAGCGCCAGCCGTCGATATGCATCCGGGTCCACTTGGCTAAGACGCCATCGGGCCCGCAGATGAAGTTCTGGTAGCCAGCATTATTCTTGTTGACTTCAGGAAGCGTGGTTACCCCCCACCAGGACTGGTACTTAGTCGGATAGTTGATGAAGTTGAACCAGGAGTAGTAAGGGCCCGTCTTGTCAGTGACCGCGCTCAAGAAGTACTTGCTGTCGGCCCCGACATGGTTGAAGACCCCGTCTAAGATCAAGGCAATCCTGTTTTTGTGCAGGTCCTTGATCAAGTTCTTGAAGTCCTCCTCTGTCCCCAGCATGGGGTCGATCTTCATGAAGTCCTGGGTGTCATAGCGGTGGTTGCTGGAAGCCTGGAAGATCGGGTTCAAGTAGATGGCCGTCACTCCCAAATCCTTTAAATAGGGAATCTTTTGCCGGATACCTTCGAGGTTGCCGCCAAAAAAGTCCCAGCGGGCTATATCGCCATGCTCATCCTTAATATAGTAAGGACTGTCTTCCTTGGTCGCGTAGATGAAACTGTCCTTCTTGCGGCCCTGGATCTCCCCATGCGGGTTGCCGTTGTTGAAGCAGTCCGGGAATATCTGGTAGACCACCCCCTGGGTGTACCAGGGAGCCTGTGGGACCGCCCGGTCATAGCAAGTCAGCTGGAAGATCCGGATATCCCGGCCGTCCTGGGTGATCTCCCCGTCGCCAAAACCGTCCTGGCTTCTTTCCAAGAAGTAAAACTGGTCGTTTTGCTTAATGAATTAATCTTTTCGAACTTTATCATCATCTAATACTTCAGCTACAATTCTGCCGTTTTGTTCATAAACGCCTTGCACTTCAGGTTCAAAGCCAGGGAATTTCTTAGCAGCGGTGAGTAAAACCTTGAAATAATCGATGTCAATTTTATGCCATCTTTCTCCAGGAGCGACAATAAATACACCTGGTGGATAAGGCAATGCGCCTTCCAGTGCTATTTCATCAGTCAAATTATCTACTTCGACTAATTTACTATTATTTCTATTAAATTCTTCATCAGCCTTGGCTGGTGTCATTACATATTTTTGAAAATCGTTCTTTATAAATAGTTGCTTTTCAAGGTCAAATATATGATTAGAACGATAATACTCATGCATCTCTTGGCATAGATCATGAAGCGTGTAATTACTGTAACGATCAGGGAAAGCATTGCTTAATTGAGGCATAACTTGCTTAAGCGGTTCATTATTTAGATATGCTTTTTCAAAATCCATTAAGGCAGTATATAGAGTCTCCATATCTACTTCAGTTTCACCTGGTGTAATTAGATAAAGCGTTGAGTAAATATCAGCCTTTTCTGGAATAATGTGCTTTTCATGTAAATATGTCTCTAAAATTACGCCAGGAATGCCCTCTTTAGTGAATTTAGCCGTAGCTAAATCAACACCTGGATTTATAATTGTTAGTTTCAAGGGACTTAAAGCCACTTCGTCATTTTCAATCTTTTCAAAGCCATGCCATTTATCAGTTGGCTTTAGTTTCCAAGCATTAATATCTCTAGCTAAAACATCTGTTGGGATATCCTCCCACTTTTGATTATTAACTGTCTTAGGAACCAACGGTCTAAATAATTTGCTATGACGCAGTAATTTCCTCCTAAATTCAATGGATAATTTAACTGTATCATTCCACCAAGTTTGACAAGCTGGAGAATTAGCCATTTTTGCATTAACAACTAGAGATGAATAAATTGGATAAGAACAACTAGTAGTTACATACTTCAAATAAGCATGATTAAAGTGCTTATGATTTACATAACGCTTTTGCCCTTTAAGATGACTATCTTTTTTTAGAATTTGAGAAGCTTGAGATACACCTACTTGTTGTTTATGAATCGATTGAGTTACTAAAATACCAGGATCATCTGGACCGTAAGTTAATTGCATTGGTGATAGATCACGTAAAACATTGACGAATTGCTCATAGCCACCCCATGCACAATCAAACAAGATGTAATCACAAAGCTTGCCTAATTTTTTAATAATATATTTTGCATTATAGAAGACCCCATCATACGTTTCTAATTGTAAAACCGCCATTCGGAATGGTCTTTTGGCCTGGGCGCGTTCTGGGTCTATCTTTGCAATTTCAGTACGAATTTTATCTTCATCTAGGTCATCTGCAACTAATGGACCAATTAATCCGTCTGCATTACGATCGGTTGGTAGATATACTGGTCTAGCTCCAGTCATTACTAAAGCACTATTGTACAAGCTCTTGTGGTTATTTCGATCGAAGAGAACGAGATCATTTCGTCGCAAAACAGCTGCAGCACAAATAGTGTTAGCACTAGTCGTGCCATTTGTACAAAAATAAACTTTGTCAGCATTATAAGCTTTAGCAGCTTCTTCTTCAGCCTTTAATGGTCCACCTTCGTGAGTCATCATATCCCCTAGTTCAGAAACGCTATCCGAAACATCAGCTTTAAAAAAGTTGGGTCCGAAAAAGCTTTTCATTATAGCACCAGCAGGATGACGATCATAAAAATGACCGTTATGATGACCTGGAGTACTTAGAATTAGATCATCTTGATCAGCAAATTTAGTAAGATCTAATAAGAATTTAGGTATTACTTCTTGCTCATATTGACTAGCAGTTTGATCAATAATTTGTATCATATTTTGCTTTTCATCATAAACAATTAAAGGCAAATCAAGTTTTAATTTATCTGCCCAAAAATGATGCATCCCCTTGCCACGACTATCATCTTTACGCACAACAACAGCCGCTAGATATGCTCCATTTAGATTCTCTTTAAGTTCTACTATTGGCCAATTTTTAGGTAAATAAGGTAATAGGTCTTTTCTAGCTGCGATTTTTAAGTAATGCATTAATTTTGTCCTCTCATGTTTTAACAATTATTTTCATTATACTCAAAAAAAAGTGTGGAATTACAGCTTTTTTAAGACTAAAATGACACTAAGGTTAAGGTTTAATCGATTCTAAGTACAAGGGAGGAATGAATGTCATACCAAGTAGTCAAATATTTAAAAATTCAAAATAAGTCCCCCGTCTCTGTATAGTTGCCAATCACATTAAAAGAATAAGTAAGAGGAGAAAAAATGACTGAAGAAAATAACAAGAAAAATTACATGGGCTGGGTTACCCTATCGATGTTTGTCTACATCACTGTAATTAGTTTTGAAGATCCTTTTTACCCTTACCAAGAATACGGTCTGTTTGTCCTGGTATTATGGATCATCATGTTGCTTTTTTATCAATTGCCTTACACATTAATTGCAACTGAACTAGGTTTCGCTTATTCTGGTAAAGAAGATGGGGGTATGTCATCCTGGATTCGGCACGGAACAGGTAGTGATTTGTTAGGATACGCAACTGGTTGGATGTATTGGGCACAAACAATTCCTTATTTAATTGACTGTGCAAGTTCAGTGGTCGTTTCAATTTCTTGGATAATCCTAGGTGATAACTCATTAGGACGTCGAATGTCGCCAATGGTATTTAGTTTGATTACCTTTTCAATTATCTTGCTCTTCCTGATTTTTGATAATACTGTTAAAAATGCGCTGGATGCTACTTCTTTGTGGAGTGGTATTGCTATGGTGGCTATGACCATCATCTTTTTCGCCATGATTGTTTGGTCACTAACACACGGTGGCCATATTGCAACTAAATTAACCTGGGATAATATCAGACCGCATTTAAGCTTGCATTATTTCTCAAGTGCTAGCATGTTAATTTTTGCCATGTCTGGTGCAGAATTAGCAGCGCCATACGTGTCACGGCTGAAGAAACCACAAAAAGGATTTCCAAAAGCAATGTGGCTTTTGTTCTTTGTTACTGCTTTAATGGTAATTTTAGAAACATTAGGTTTGGCTGTATTATTTGATGCCAAGCATATTCCTAATGATTTCAAGATGAATGGTGACTACTATGCCTTCCAATTATTGGGACGTGAAGCAGGAATGGGCAATAGCTTAATGCTAGCCTACTCTATTGTATGTTTAGTAAGTTTGTTAGCTCAAATTGCGGCATTGATTGATGCAGCTAGCCGGTTCTTGGCTTCTGATACAGCTGTTAAGTATATGCCTAGATTATTGCTGAAGAAAAATAAGAATAATCGTCCTATCAACAGTTATATTTTCACTGCTGCAACAACTTTAATTTTGATTCTCTTAGGAGGAACTTTGCCTCAGATTAACGACTTCATTAACTGGCTATTGAACATTAACACTATTGTTTCACCTTATAAGACATCTGTAGTTTTCTTATGTTTCTTAATTTTAAGATATAATAAAAAGAATTTTAAGAAAAATGAATTTGTCTTTATTAGGAATCGTAAATGAGCCTTAGCAGTAGGTTGGTGGTGTTTCCTATTAACTTTCATTTGTGCAACGCTGGCCTTCTTACCACAAAACGGCCAATTCGGGACAGCTAAATGGTTCAATCAATTATGGATGAATATTATTGTTGTATTATTCCTATTCGGAACAGGATTCATTTTACCGTTACTACGTAAACTAGAAGTTAAGTGGCATTTAAATAGAAATTAAACAGAAACACCAAGTGATTCTTTTAGTCGCCTGGTGTTTTTTTGATGCATTAGTATTCTGTAGTTTTTGATTTTTAATTTAGGTGATTGAAATTGTGATGGTTATTTTTGTGTTGAATAGTCTAGAAAGTTAATTGTTTTTTGTGATTCAGTAACAATAGATAATGATCAAGTAGTATTCTTTTCAACGCAAACAAAAACCCATTAGCTTTTCATTTTAGCTAATGGGTTTCTATTTATGTTTAAGAACAAAAAATTATAAGTTCTTCAAAAGAGCAACCAAAGACTTCTTTAATTCGTCATTGTTTCTGCCTTTCTCGTTAAGCAATCTTGCCTTATCATCCAAAGCTTGATTGTACTTATCTTGCAATTCATTAAATCTACGCTGCTGATTGTAAAATCAAATTGAACACTTGATAAAAAATAAAAAGTCCATTCGGACCTGTTTGATAGAATGTAGTTACCACACAACATTTAGAAACGAGGTCAAAATGGACTCTTTACATTCCTACCATGAATCAGCACATTAAAGGCAAGCATTTATCATTCGAGGAAAGAGTTATTATTCAATTGCGTTTGAAAGATGGCTATTCTTTGCGTGCCATCGCCCGTGAATTAAACTGTTCTCCTTCTACTATCAGCTATGAGGTTAAGCGCGGTACTGTAGAACTGTATCATGGCAAAGTCAAAAGATATAAGGCTACTCAAGGGCATGATGCATATCAAGCTCATCGTAAAAATTGTGGGCGCAAATCAGACTTTCTCAGGAAAACTCAATTCATGCGCTATGTCCACAAGCATTTCTTTAAAGACGGCTGGTCGCTTGATGTGTGCAGTAATCGTGCCACTGCTGTTGGCGAATTTAGCAGCAGAGATGTTGTCTGTACTAAGACTCTTTACAATTATGTCGACCAAGGTCTATTAGATATACATAATTACGACTTGCCAGAGAAGCTTAAATGCAATACCAAGCTTCATCGTATTCGCAAAAATAAGAAAAAACTTGGCAGAAGCATTGAAGAACGTCCTAAAGAGATCAATAAACGTAATGAATTCGGTCATTACACCAGTGTGAAACTACTATTACTAATTACTCATTTCTACTTATTCATTTGTCTTCTCTTTCACTCTAAAAGTGACCATCATTACTATGAAACTAAGAGCAAAAGCAATCACATTGACCAACCAACCTAGACTATAAGAGCCAGTCTGATCAAAGAATAAGCCAATCAAATAAACTGAAGCTGCCATAGCAAAGGCTCCAATCATATTGATAATTGAAAGGATATTGCTGTAATCTCTTTCACCAAAAATTTGTCTGATTAAATAAGGCAAAGCTACAAGACATACACCCTGTCCTAAACCTAAAATTACAGCTGAAAGAATCAATAGATTACTTTCTTTAAGCATCGCTTGACCAGCCCAGCCAATCACACCAAAGAGTGAGTAAATCAAAAGAACCAATTTTGCATTAAAGCGATCTAAAAAGTAACCAATAGAGATTTTCCCAATAGCTGCTCCAATCATCACACCTGATACTACAGTTGCTGCAGTAATTGGAGAAATACCAATATTAGTAATATGACCAGATATGTGTTGAACTGATCCAGATACAAATTGCAGAGCTAACATGGCAAAGGCTAATGCATAGAACACAGGCATTTTCAATGCTTGTTTCAGATCAAGACCACTTAAGTTCTTTCTCTTAATTTGTGTTTCCTTACCATATGCTGGAAATCTTTTGGAAGGTGCTGGTTTAATTGAAAGAGCTAGTGGTACCAAGATTAATCCTAAAAGCAGTGCTTCTCCAACGAAGCCACCTCGCCATCCAAATTGCTTAATAATTTCCGCAATGATTGGATTAAAAATTGTTCCACCAAGTGCCGATAGTCCAAGAGAAATACCCATTACTGTACCCAATTTTTCATTGAACCATTTACTTAGTAAAACCGGAATTGATAAAGTAATAGCAATTGGCTGACAAACACCAATTATTATCCAAGCAAGATAAAAATGAAGCAAGTTATTGGCAAAAGCCAAGCTCATCATACTAATAGAAATTAAGGCAAAACATGCCGTTAATAACCAACGTAGATTACTTTTTGCCATAATTTTTCCTGCAAAAAGCAAAGCAATTGCGGCTGCCGCATTTTGAAAAGTCGTCATCAAGGCAACTTGAGCTCGACCTACTCCAAATTCATTACTAATTGGTCCAAAGAACAATCCGATCGTATTCACGATTAGTCCAAAACCAATCATTGAAATAAAACAACATACAATAAAAATCCACCAAGGAAATAAAGTCTTCTTCTGTGTCACTTCTTTTCCAACTTTCTAAAAATTATCTTTTTTATTATAAGGAAAAATTGATTACTTGTGTTTTAAGAAAAGGTAAAATTATGTACAAAAAATAAAGATATCTCTAAAGTGAGACACTTTTAGGCCTTTTACTATGTCTAAATTTAATAAAGAACAAAAGATAGAAATTTATCGTAAATGGAAAGATGAGAAAATCTCAATCAGTCAGTTGTCAAAAGCATATAAAATGAACTTAGCTAATCTGGATTACATGCTTAGATTGATTGATATGCATGGAACAAATATTTTGAATACTAGAAAGCGGGTTTATTCTAAGAAGTTTAAAGAACAAACAATTGAACAAGCTATCTTTGGTACTAAGTCAGATGTTCAATTATCTCTAGAATAAGGATACTTCAGTTTTGGACGCTTACTTTCTAAAATCTGAATTTGCACTTTCTTTTTTACCCAATGTAATCATGATCACAATGAAACTAAGTGCAACTGCTGAAACGTTAATCATCCATCCTAAGTTGTAAGATCCAGTTTGATCAAAGAATAAACCGATCAAATAAACTGAAGCTGACATTGCAAAGGCACCGATCATATTAATGACAGAAAGAATGTTGCTGTAATCTTTTTCACCAAAAATTTGACGAATAAGATATGGTAAAGCAACCACGCAAACTGCTTGACCTGAACCTAGAATTACAGCAGCTAAAATCAATAAATTGCTTTCTCTAAACATTGCCTGGCCGCCCCAACCGATTACACCAAATAAAGAGTAAACGGCTAAAACTAACTTAGCATTAAACTTATCCAGAAAATAACCGATAGAAATCTTACCAATTGCGGAACCAATCATTACTCCAGATACAACAGTTGCGGCAGTAATCGGTGAAATTCCGATATTAGTAATATGTCCTGAAATATGATAGATAGAACCAGAAACAAATTGCAGTGCAAGCATAGCGAAAGCTACAGCGTAAAATACTGGCATCTTCAAAGCTTGCTTTAAACTTAAACCTGTTAAAGCCACCTTTTTACTTGATCGCATTACCTTGCCATATGCAGGATATTGCGTCGTTGGTTCAGGATTAATAGAAATAGCTAAAGGAACCAAAATTAGCCCAATTAGCATTGCTTCTCGAACGAAGCCGCCACGCCAACCAAATTGTTTAATCACTTCGGCAATAATCGGATTAAAAATTGTTCCGCCTAAAGCAGAAAATGCAAGCGAGATTCCCATCACTGTACCAAGCTTTTGGTTAAACCATTTGCTAAGCAAAACAGGAATTGACAAAGTAATTGCGATTGGCTGACAAATCCCAATGATTGTCCAAACAAGATAAAAATGAACTAATGAATTGGCAAATGTTAAGCTAAGCATGCTAACGGCAATTAAGGCAAAACAAGCAGTTAAGAGCCAGCGTAAGTTTACCTTTTCCATGATTTTACCTGCAAAAAGCAAAGCAATTGCGGCTGCCGCGTTCTGGAACGTCATCATTAGTGCAACGTTAGCACGGCCTACATTAAACTCTTGACTGATTGGCCCGAAGAATAACCCAATTGTGTTAACCAATAGGCCGAACCCAATCATTGATATAAAACAACAAACAATAAATATCCACCAAGGAAAAAATGATTTTTTATGTGTCACTTCTTTTCCAACTTTCTAAAAATTAGTCTTTAATTATTACGCTGATTGTAAAATCAAATTGAACACTTGATAAAAAATAAAAAGTCCATTCGGACCTGTTTGATCGAATATAGTTACCACACAACATTTAGAAACGAGGTCAAAATGGACTCTTTACATTCTACCATGAATCAGCACATTAAAGGCAAGCATTTATCATTCGAGGAAAGAGTTATTATTCAATTGCGTTTGAAAGATGGCTATTCTTTGCGTGCCATCGCCCGTGAATTAAACTGTTCTCCTTCTACTATCAGCTATGAGGTTAAGCGCGGTACTGTAGAACTGTATCATGGCAAAGTCAAAAGATATAAGGCTACTCAAGGGCATGATGCATATCAAGCTCATCGTAAAAATTGTGGGCGCAAATCAGACTTTCTTAGGAAAACTCAATTCATGCGCTATGTCCACAAGCATTTCTTTAAAGACGGTTGGTCGCTTGATGTGTGCAGTAATCGTGCCACTGCTGTTGGCGCATTTAGCAGCAGAGATGTTGTCTGTACTAAGACTCTTTACAAGTATGTCGACCAAGGTCTATTAGATATACATAATTACGACTTGCCAGAGAAGCTTAAACGCAATACCAAGCTTCATCGTATTCGCAAAAATAAGAAAAAACTTGGCAGAAGCATTGAAGAACGTCCTAAAGAGATCAATAAACGTAATGAATTCGGTCATTGGGAATGCGATTTAGTTCTCGGACATAAGTGCAAAGATGATGAGGTGCTGCTAGCCTTATCTGAGCGTATGAGTCGTGAGTTTTTAATTCTTCGTATTCCTGACAAGACTTCTGTCAGTGTCATGCAGGCCTTTAAAGAACTCCAAAGGCAATACAGCGAACATTGGAATGATATTTTTAAAACCATTACCACTGATAATGGCTCAGAGTTTGCAGATCTTTCCAACCTAGAAAAAGCATCCAATACACTGGTTTACTATGCCCATCCTTACACTTCTTGTGATAAGGGAACAGTTGAAAGACACAATGGTCTTATTCGCAGATTCATTCCTAAAGGAGAAGCAATAGCTAACTATTCTTTACAAGACATCATTAATATTGAAACCTGGTGCAATTCTTTGCCAAGAAAGATACTGGCCTATCATACACCAGATGAAATCTTTGAAAGAGAATTAGATCTAATCTATCAAGCAGCTTAACTAAAAGTGTTCAATTTATTATTGCAATTGGCGAAAACAAAAAAGACTTCAATTTTTTTAAAGTTGAAGTCTAGTCGTCGTGTACATTACTTCTTTCACCTAACCAGTTTTGAAAGTTGGTTAGATCCTGGTGATGATAGCCCAAAATATGTAAAAAATTGCCTATTTCAAAAAATCCTCTAAAACAGCAAAAAAAGCCGTCGTATCAAGGCTTGTAACCTTTTAAAACGGCTTTAAACTGTTCAAAACAACTTAAAAGTATGCCAATTGTTGGAATCGAACCAACGACCTTCTCTTTACGAGGGAGATGCTCTACCAACTGAGCTAAATTGGCAATTTATCAACTCTTTCATTATAGCAAACAATCTGCTTTTGTCAAAAAAATTTTCGCCAATTTTCGCAAAAAATCTGTCTCCCTCAGACCGTTTTCTCAGCCCTTATTTCTCAATAATGGTAATCTCGCTGATCCGCATGACTTCTTCGTAAACCTATACGCTGCTGCCATCATAAAGGTTCTTGTAGATCCCCTCTGGCAGCTGGGTCGGAATCGCCTGCTTCTTGCCGGTCGTATTAAACGAGCCGATCAACTGCTTTTCTTCTTCACCTTCACCCAGGCTGTGGACAGCTTCCAAGACACCCTTTCTGACCTCTTTAGCCTCATAGCTGCCCTCAGCCATGATTGGCAGCTGCTTGATTTCATGCATCCTCTTTAAGAGGTTTGTCAAATCAATATCGCCGTTCCAGTCAACCGGGTCCTTGTCAAACAGGGTCACGTGGTGAGCATCCCCCTTTTCTTCCCCATTGTAGACCAGCATGGCCCCCTTCATGAAGTAGATGAAGGCCGTCATTGCCCGCAAGGCCGCCGGATCATCGATCATCCCGTGCGCCCGGACCACGTCATGGTTTTCCAAAAAGTGCGCCTTGACATAGTTTTCCGGGTAGACCCCTTCTTGCCGGTTCAGGCCAGCCAGGTAGTCAGATCCTTTTTCCCCAGCAGCGCTGCCCGCAAATCTGGGTAGATGTCATAATCATAGGTCATGTCAAAAGCCTGGTAGAGCTCAGAATCTGACCCACCGACTGCCCCCTTGCTTCTCAAGAAGCGGATAAAGTCCGGGGCACCAGATTCAGCCAGCCAAATAGCCCCTGGCCGCACCTTAGCCACTTCTTCTCTGGCATACTTCCAAAATTCCACCGGCACCATCGGGGTCACGTCGCAGCGGAAACCGTCCACATACTTGGCCCACATGACCAAAGTCTCTGCCTGGTACTTCCAGAGGTCCCTGTGGCTGTAGTCTAAGTCGATAACGTCGCTCCAGTCGCCCACCTTGTTGCCAAAGCTGCCGTCCTTCTTGTGGTAGAACCAGTCCGGGTGCTCCTTAGCCAGGACTGAGTCTGGGGAAGTGTGGTTGTAGACGCAGTCGATGATGATCTTCATCCCCTTGGCGTAAACGTCATCGCACAGGCGCTTGAAGTCCTCCATAGTCCCGTATTCCGGGTTGATAGCCCGATAGTCGGAAATTGCGTAGTGTGAACCCAGGCTCCCTTCCGCTTCTCCTTGCCTGACGGCTGGATCGGCAAAAGCCAGATGATGTCCGTTCCCAAGTCCTTGATCCGGTCCAAATCCTTCTGGACCCCTTCGAAGTTGCCCTCTGGCGAGTAGTTTCTGACAAAAATGCTGTAAATCATTTGCTTGCGCAAGTCAATCTTGGTATCGCTAGCCATTTTTTCCTCCTTGACCTGTGGCCGTTTTTTCTCACCCTTCTACCTTAGTCGTTTTCCTAAGCGCTTTCACTTTTTTTCCCCGGTCATGTTACCGGTAACTCTTTTGCAAAAAATAATCCTAGATCTAGTAGTATGGTTAGCGGTTCCAACTCAAGATCTTGAAAATTTTACCTTGCCCTTACATTGCTTACATTGTATCCTTAATATATAGAATGATATTGACCCTATTTAAGAATATTGTTCGTGTATTGTTACTATTGTTCGTGTATTGTTACAAAGTCCAAAGATTTATAAGGAGAATATCTGGACAATGAAGACTAATCGTTACATTGTTGCTTTGGCGGGGATCATGCTGCATCTGATGATTGGATCAGTATACGCTTGGAGCGTCTACACTAAGCCAATCGTGGCACAGACCGGCTGGAGCGAATCATCAGTTGCATTTGCATTTAGTTTGGCCATCTTATTCCTGGGGATGTCCGCGGCTTTCATGGGCCGCCTGGTTGAAAAATTCGGCCCGACCTTGACCGGGACTGTTTCCGCCATCCTTTACGGGATCGGGATCGCCTTGACTGGCCTGGCTGTTCAAAGCCAGCAGCTCTGGCTCTTGTACGCTTCATACGGCGTCATCGCTGGTCTGGGCCTGGGTGCCGGCTACGTCACCCCGATCTCAACCATCATCAAGTGGTTCCCGGATAGACGGGGTTTGGCTACTGGCCTGGCCATCATGGGCTTCGGATTTGCCGCTCTTTTAACCAGCCCGATCGCCCAATTCCTGATGTCAAGCGTTGGCTTGTCCAATACCTTCTACATCTTGGGTGCCGGCTACTTCTTGATCATGATCGTATCTGCCCAGTTTATTAAGCGGCCAACTGCTGAAGACCTGGCCAACTTCAAGAGTGAAGACAAGAAAGCTGTTTCCTTGACTGGCGGCCTGCAAATGACGGCCAACCAAGCACTGAAGACCAAGACCTTCTATCTGCTCTGGTTCATGTTATTTATCAGCATCACCTGCGGGATCTCCCTGGTCTCCGCTGCTTCACCAATGGCCCAGGAACTGACTGGGATGAGCGCGGCTACTGCCGCTGTCATGGTCGGCATCATTGGCCTCTTCAACGGCTTTGGCCGGCTGGTTTGGGCAACCTTGTCCGACTACATTGGCCGGCCTTTGACCTACAGCTTGATCTTTGTCGTTGACATGGCCATGTTCGTGATCTTGATCTTCACCCACTCACCATTCATCTTCGCTGCAGCCCTCAGCCTTTCGATGTCCTGCTACGGGGCCGGCTTCTCAGTTATTCCGGCTTACCTGGGCGACGTCTTTGGCACTAAAGAACTCGGCGCCATCCACGGCTCCATCTTGACTGCCTGGGCGGCAGCCGGCATGGTTGGCCCGCTCCTGCTCTCCTTCACCCACGAAGTTTTGAAGAGCTACTACGTGACCTTGGCCGCCTTCATCATCCTGGCCGGCCTGGGCCTCTGCGTCTCCTTCCTGATTAAGCGCGAATTTGCCAAGCTGACCGACCTGGCTGACGAATTAGATTAATGACTTTTCAAGTTCCTGCTGACGCGGGAACTTTTTCTTTCCCCGCGAGCTTTTAAGCTGGCTAAAGGCTATAATATTATCGAAGAGAGATTAATGAGGGGGAAAAACATGATGCTTCCAAGCAAGCTGCGCGACCTGCGCAAGAAGCATGGCTTAAGCCAAAAAGAATTAGCGGAAAAATTAATGACCACACAAGCCAAGGTGGCCAGCTGGTAAAACGGCGACAGCGTGCCCGACATATCATACATCGCCAAACTGGCGGTTTTATACGACGTGTCAGCTGACTACCTGCTGAAAGACGACAAGCAAGAAGGGCAGACCATCGAACCAGGCGAAGAGATGGACCGGCCGAACACTAAGTGCTTGGGCAGGATCAACAGCATCTACTGGACTATCGTCATCGCTGTCTACCTGCTGGCCAGCATCGCGACCGGCCGCTGGTCCACCAGCTGGGTCCTCTTTATTTTAGGAGGCGCCATCTGGCTCATCGGGGCTGGTTTTCACTGGATCAATTCGACTAAATAAGAAAGGAGCTGCTTCTTAACTAGAAGTCAGCTCCTTTTGCTTTCTTATAAATTGTTTGATGACATGATGTAAAAAGTCAATAAGACAGAAACTGCAAAACACAAGGCTGCCGCCAGTAAGTAGGCCAGAAAAATATTGACCCCGTGCTTGACAAAAGTCACTCCTAACAAGTCAATCCCGCAAAGCAGGGCGAAATCAGCAAGCGAAGCCCCAAACTTGGCCTGGCCAAAATGGCTCATCAGCAGGCCAATGATGACCGCGGCTGCAATACAGATACTCCACCGTCGGCTGGTCTTAGGCGGATAAGCGCTAATGGCCCGCTCTTTAAGATGTTGCATGTAATTCTTCATCATTTTCCCCCTTAGTAAAAAATCCTGCTATAAGCATATTATAGTCTTTTTGTGAGAATAGTAATAAAAAGCCATGATTTAGCAAATTTCCCCGAACCTGATACAATTAAGGCAAAACACTTCAGAAAGCAGGAAAAGCATGCTGAAAGACGGTATTTATGAACAAATCCTTAACCAAGAAATCCTGGACCAGCTGGAAAAAATCGACCCAAAGGATTACAACCTGGAACAGCTAAACGCTGATGACTCCCGCCAGCTCTTGACCATCTACCTCTCCCAGGTCATCCGGTCGGGCCTGCACTACCTCCGCGACAGCTTCAAGTCCGGTGAAGACAAGGCTGCCCTCATCGCCCAGATCCGCCTGGCCAACTCCATCGTCGACCAGGTCGCCCTGCATACCGGCGAAGCCAACTACGAGGACCTGCAGATCCTGGAACAAGGCGAAGTCCTGACCTCCATCTACCACAAGCTAACCCAGTCCCAGAAGATTACCCCTATCCGGCCCCAGACTTCCATAGTTGAGAATGCCCTTTTTACCGGCAGTAAAAATGAGCCCAGCATGCTCAGCGAAATCAAGAAGGAAATTGCCTCTTCTGACCAGGTCGACTTGCTCGTTTCCTTTATTAAGTGGTCGGCCATCCGCCCCCTTTTAGGAGATTTGGAAGCTTTTTGCCAAAAAGCCGGCCACCAGCTGCGGGTGATCGCGACAACCTATACCCAGGCAACTGACTACAAGGCTATCCTGACCTTGAGCCAACTGCCCAACACTACAGTCAAGATCAACTACGAGACCGACCACGCCCGCCTGCATGCCAAATCCTATCTTTTTAAAAGAGAGACTGGCTTCTCCACTGCCTACATCGGTTCCTCCAACCTCTCCAGCGCTGCCTTGACCACGGGCCTGGAATGGAATGTCAAGGTTACTGAGCAGGAGTCTTTTGACATCGTCAATAAATTTGCCGTTTCCTTTGAAAGCTACTGGAACGACCCCTCTTTTGAAACTTTTGACCCGGATCAAGAAGACTGCCGGAAGAAACTGCAGACAGAACTGAACCGGCATAAGGCAAATACTTTCCACTTGGAAACCAGCATCCGCCCCTACAACTACCAGCAGGAGATCCTGGACCGGATGCAGGCTGAGCGGGAAGTTTACAGCCATTATAAAAATCTCCTCGTCGCCGCCACCGGGGTGGGGAAAACCGTCATTGCCGCCTTTGACTTCAAGCGCTACTTGGCAGAGCATCCCCATGCCCGCCTCCTCTTCGTCGCTCACCGGCAGGAAATCCTGGAGCAGAGCCTGCAGAAGTTCCGCGAAGTCCTCAACGACTTCAACTTCGGCCACTTGCTGGTCGGCCAATACAAGACTGATGATGTCAGCCAGCTTTTCGTCTCCATCCAGTCCTTTAACTCAGAAAAAATTGCTGATCTCTTGCCCAGCGACTACTACGACTTCATCATCATCGACGAATTCCACCACGCCGCGGCCAAGTCCTACCAAAAGCTGCTCAGCCACTTCAAGCCCAAGATCCTTCTGGGCCTGACCGCGACCCCCGACAGGATGGAAGGACAGGATATCTTGCAGTACTTTGACGGCAATATTGCCGTCGAAATGCTGTTAGGCGAGGCTATCGACCGCCAGCTCCTCTGCCCCTTCCAGTATTTCGGGGTCACCGACAATGTTGACTACTCCGGCATGAAATGGAGCCGGGGCCAATACGAGGTCAGCGAACTGGAAAATGTCTATACGGCTAACGACGCCCGGGCCAAGTTGATTTTGCGCAGCCTGGACAAGTACAGCAACAATTTGGAAGACATCAAGGGCTTAGGCTTCTGCGTCAGCGTCAAGCACGCCGAGTTCATGGCCGCTGCCTTCAATCAGGCCGGCATCCCTTCCGCTGCTTTGTCTGGCCAGACTACCCAGGCTGACCGCCAGCAGGCTAAAGAAGATTTGACCTCCGGCAAGCTCAAGTTTATTTTTGTCGTTGACCTCTATAACGAAGGAGTCGACATCCCAGCCGTCAACACCATCCTCTTCCTGCGGCCAACCCAGAGCCCGACCATCTTCCTCCAGCAACTGGGCCGGGGCCTCCGCCTCAGCCCGGGCAAGGATTGCTTGACAGTCCTGGACTTCATCGGCCAGGCCAATCGCCACTATAACTACGAGGCCAAGTTCAAGGCCCTGACCGGACCAGGCCATGCCCTGCCATATGAAATCAGAGATGGCTTCCCGCACCTGCCGGCAGCCTGCTATCTGGAGCTTGAGCCCGTTGCCAAAAAGTACATCCTGGCCAATCTTGGCCAGAACACGGCTAACAAAAAGGGCTTGACCCAGCGGGTGAAGACTTTTAGCGAAGACACGGGCCTGGAATTAAACTTGGCTAACTTCCTCAAGGCCTATGACATAAGTCTTTATGACTTCTACCACGCCAGCGGGTCGCGTTCACTTTTCCGCTTGAAGAAGTGGGCCGGACTGATTACTGACGACCGGGATGTGGAAAACCAGGTCTACCAGAAGTTCAGCAGCTTTTTCCACATCGATTCCAAAAGGCTCCTGGACTACTGGCTGGCTTACTTGAAGATGCCAAAAAAGGCAAGTAATGAGACTGAACGCTTGATGCTGGGGATGCTCTACTACAGTTTCTACAAGAAAAAGCCGGCCCAACTGGGCTTTAAGGACCTGCATGAAGGGATCAAGGACTTTTTAAAGGAAGACTTCGTCAAAGAGGAATTAATGGAAGTCCTCCGCTACCGGCTGAGCCAGTTGACCGTATTGCCGGAAGCTAACGAATACCCCTTCACCTGTCCCTTGGAAGTCCACTGCCACTACAATGTCAACCAGATCATGGCGGCCTTTGACTACTTCAACCAGGACCAGTCCCCGGAATTCCGGGAGGGGGTCAAGTACTTCGCTGATAAAAAGACGGATATCTTCCTTATTAATCTGAACAAGAGTGAAAAAGACTTCTCCCCGTCAACCATGTATGAGGACTATGCCATCAATGCCCAGCTTTTCCACTGGCAGAGCCAGAGCCAGGACCGGCCAGCCAGTCCCAAAATCCAGCGCTATATCCACCAGGGCGAGACTGGCAATCTGATTTCTCTTTTTGTCAGAGAGTTCAAAAAGCAGGGAAATTATACAGCAGCTTACACTTTCTTAGGCAACGCGGATTATGTTTCAAGTGCAGGCGAGCGGCCGGTTTCCTTTGTCTGGCACCTCCACCAGGCGATTCCAGCCAGTCTTTTGGCTAAGGCCAACAAGGCAATTGCCCTGTAATTGCTTCAGCCGGGGAAAGCATTTTCTGTTATACTAGGTATCAGTTAGGTTTTGCAAAAAAGTATAAAAAAGGAGTAAACATGAAAATTTTAGTTGTAGGTGGTGCCGGCTACATCGGCTCCCACGCTGTAAGACGGCTGGTTGCCGATGGCAATGACGTAGTCGTTTTGGACTCACTGTTCACTGGTCACAAGGAAGCTATTGACCCAAAGGCCAAGTTTTACCAAGTTGACCTTTTGGACAAGGATGCGGTAGCTGACGTCTTGAAGAAGGAAAAGATCGAAGCTGTGATGCACTTTGCTGCTTACTCTTTGGTCGGCGAATCAGTCAAGAAGCCGCTGAAGTACTACAAGAACAACGTATCCGGCATGATCAGCCTGCTGGAAGCCATGGAAGAAACCGGGGTTAAGTACCTGGTCTTCTCATCCAGCGCTGCGACTTACGGCATCCCTGAAAAGCTGCCAATCACTGAAGAAACTCCGCTCAACCCAATCAACCCTTACGGGGAAACCAAGATGATGATGGAAAAGATCATGCACTGGGCTGACAAGGCTAACGGGATCAAGTCTATCGCCCTGCGCTACTTCAACGTGGCGGGTGCTTCCCTGGATGGGTCAATTGGTGAAGACCACCACCCAGAAACCCACTTGATTCCTAACATCATGAAGGCTGCCCTGGCTGGCGGCGGTGACTTTACTATTTTTGGCGACGACTACGACACCAAGGATGGTACTAACGTCCGCGACTACGTGCACGTGGTTGACTTGATCGACGCCCACGTCCTGGCTTTGAAGCACTTGATGGAAACTAACCAAAGCGACGTCTTCAACCTGGGTACGGCCACCGGCTTCTCCAACTTGGAAATCCTGAAGGCCGCCATCAAGGTTACCGGCGTTGACATTCCTTATACTATCGGGCCACGCCGCGGCGGTGACCCGGACTCACTCGTTGCTGACTCAAGCAAGGCCCGGAAGGTGCTGGGCTGGAGTCCGAAGTACGAAAATGTCGACGACATCATCGCCAGCGCTTGGAACTGGCACCAAAAGCATCCTAACGGCTTTAGCAAGTAAGACAAAGAAAAATAGTGGAACTTCCTCAGATGGAAGGTCCACTATTTTTTGCCTATAATTCGTATTCTTCTAATACTGCCCCGTATCCACACAAGTAAATCAATCGCTTGATTCCGTATGCGTTGTCACTCTCGCCTTTATTCAACTGACACAGCAAGACGTAAGTGAAATCTGCTGCTCTTTCAAAGTCAAAATTGGTCATTGCATCCACAAAACAGCGGGCACTTACCTGCTGCGCAGTAAGGATTTCGAACAGGTCGTCAGCTATTATTCTCTGATCTCCACTCTCAATTCTGGAATACTGCGTTACAGACATGGTCATACCAGCCATTTGCTTTTGAGATAAGCCCAAATCCGATCTTATCCTTTTCAGCAGTTCACCCACCTTTGTACTGCATCCCATAACTATTCTTACTCTCCACACAAATACACAAAAATATTAAACGGATCCTCGATTATCTACCGCTACTACCTAATCTTATCTTTCCTTTACTTGATCAGCATGATGCTTTTCAATCCCCAATTTTGGTGCAATCCAATCGAAAATTATTGAGCTGGCAATTCCGGCCAGCAGATTTGACAAATAGATGTTTAACGCTAACTTCGAAAACAGGTATTGCAAAATCAAAAAAATGACAAGAAAGCTCCCTAACGATTTGGCTTTATCTAAGAATTTGTTCATGCTTAACATTTCTCCCGATTTTTCTATTTCCTTTATATTTTAGCTAAAAAATACTTTCTTGTCTGAAAAATTGCTGATCTGCAAATCCATTTCATTTCTTTTGCTAAAGGCATGACTATATGTGCATATAAAAAAGCCTTTCATGGCAGAAAGGCTTTTTACTATATGCTTCATTCCTCTTAAAACAGGGAGCCGCACTTCTCGATCATCTGGAAGAGGTCGGCCCGGTAGTCAGGGTCTTCCTTACGGAGGCTGCTGATGGCTACCCCGAAGTGCTCCTTATAGCCAGTTGAGTTGATGTACTTGCCGTGGCCCAGGTACATGGCAATATGTCCTGGGAAATAAATCAAGTCCCCTGGCCGTAGGTCTTCAAACTCAATCTCGTGCACCGGCCAGGCTTCTTTGATTTCCGCGTCCCGCCAGAGCAGGACCCCGTTTAGCATATAGCTCATGAAGACCAGGCCCGAGCAGTCGATCCCCAAGGGGCTCTTGCCCGCCCACCGGTACTGGTAGCCCAAGTACTCCTTGGCGGTCTCCGTTACCTGCTTTCTGAAGCTTTCTTCATCCGGCTTGGCTTGAAGCAAAAAGTATTCCAGATCTGCTGACCACAAGAAGTCATCTTCATCCAGCCGCTTTGCCAAGGCCGTCTTGGAAACCCAGCCGCTTCGTCCGTACAAGAGCTTAACCTTGTAATAGCCGTCCACAAGCTCATCCGTCACGTTAAGCAGGCTGCCCTTATAAACCGTCAACAGAATGTCGGCTGAAACCTTGGGCTCAGCCAGGACGTCAATGACTGGCCGCCGGATGAGTTTGACCTCCCGCGCCTTGATTTCTTCTAGGCTAACTGGAGTTACCGCGGCCTTTGGCACGTAGCCCTTATAGCCGTAATGACTGGTTACATACCAAAAGTCTTCCTTTTCCCCGGTTGCCTTGACAGCCCAGCCGTATAAAAGTTCATCGCTTCTGGATTTGAGGTCGTCTTCCGTCATGAAGACCGCTGGTTGATTGATCAAGCCGTACATTTGCCTTCCTCCTAACTTTAATCGCTTATTTTTCCTTCTTTATCCTAATCGTAGATAATCCCAATCATTTTTGCAAAATGACAACGTACCCTATTTCTTAAGATTCCTTTGCCTTATAGACTATTTTCTTAAATTAATTTCACTTTCTGCTAGCTTGTGTTAAAATATTTCATGTAACTCAATGGAGGTCTTATGGAAGAAAAGAAAACACAAAATACATACAAACGGACACTAACCAATGCCCACATTCAGCTGATTGCCCTAGGCGGGACGATCGGGACCGGCCTCTTTCTTGGGGTCGGCAACAGCATCCAGAAGGCAGGGCCGGCAGTCATCTTGATCTACATCATCGTCGGCCTCTTCCTCTTTATCTTGATGCGGGCCCTAGGTGAACTGATCTTATCTGACTTAAAGAAGCACACCTATATCGAGTTTATTGAAAAACATCTCGGCAAGGACATCGGCAAGGTGACTGGCTATCTTTACTGGCTCAGCTGGCTGATCCTGGCCATGGCGGAAACGACGGCCTTAGGCATCTACTTCAAGTCCTGGCTGCCCAACCTGCCGACCTGGCTACCCGGGGTGCTCTCAGTCGCGGTCCTGCTCTTGATCAACTTGATCTCTGCCCGCTTCTTCGGGAATCTGGAGTTTGCCTTCGCTATCATCAAGATTTTGATGATCGTCGGCTTCGTTATCTTCGCGGCCTTCATGCTGCTGAGCTCCGGTTCAACCAAGTACGGCCAGGTCAGCTTCAGCAACCTGTACACTGACGGCTTTTTCAACAACGGGGCAGGCGGCTTCTTGCAAGGCTTCCAGATGGTTATCTTCTCCTTCATCGGGGTGGAACTGATCGGGCTGACAGCCGCTGAAGCTAAGGATCCGCACAAGACTATCCGGAGCGCGATCAATGAATTGCCACTGCGAATCATCCTCTTCTACGTTTTAGCGATTATCGGGATTTTGGTGATCCTGCCATGGAACAAGGTTTCAACTTTCAGCTCACCATTCGTCCAAGCTTTGATGGGGGCAGGCTTTAAGGGTGCCGGCAACTTGATCAACTTCGTGGTCATCACGGCAGCTATTTCAGCAACCAACAGCTTCATCTACAGTGCCGGCCGCCTGCTCTTCTCCGTTACTTTAGGCGGGGAAAGCAAGTGGAGCAAGTTCTTCGGCCAGCTCAACCACCGGCAATTGCCAATGAGAGGCCTGGTCTTCTCAGCCTTACTCATTATCTGCGCGCCTTTGATCACCATGATTATGGGGGACGAAGCCTTCAGCTTCATCTCATCAATGGCAACCAGCATGTTCCTTTTGATCTGGATCATCATGACCTTGACCCACCTGCGCTACCGGCAGGTTACGCCAAAGGACCAGCTACATGAATTCCAACTGCCAGCTTACCCATATCTTGACTACCTGCTCTTAGCCTTCTTCGGTGCCATGGTTATCCTGCTCCTCTTCCTTGAGAGCTACCGGGTCCCAATGATCATGGCTTTGATTACCTTCGCTGTCCTCTATGGTTTCAGCAAGGCCTTCAATAAGAAAAAAGAAGCAGCAAAATAATTAATGAGATACAACAAAAGCTGACCGCAAGGTCAGCTTTTTTATGTACTTTAGTATTTCACCAAGAAGAGGCCGTTACGCTTAAGCAGCTTATTAACCAGCTTCTTCGACTTCTTAGAAAGCTTATACAGATCAGCATCAATGCCGCTTTCGATCCGGAGCAAGGAATAGTGCTTCTTGTCCCTAAAAAGGACATTTACCCCGAGGTAATAGTCTGTCACAATCAACTTCTTGCTGATCTCCAGCAGATCAGCCACAGGCAGCTCGGTCAAATCCCGGTCAAGCAAGTCAGGATAAGTTTCTTTAGCCAGATCATGATCCAAAAAAATGTGTGTCTCATACTGGCTGACCAGCATTAACAGCAACAGGAGCATTTTGTCCGCGTAGGCTTCGCCAATCGTATGCGACCTCAAGCACTCAAATATCTCAGAGCTAGTCCACCAGCTTATACGCCTGCTTTGCTTTCATGTCGATCCTCCATTGGCAAAGCTCTCTTTTCAGTATAACACGGAGATTTTTAACATTACCGCACAAAAATAAGCCCGGACTTGGTCCGGGCTTATTTCCATTCTATTTCTTTTTGCGAGTAAAGAAGAGCTTGATCGTATCCCAAACTCCCAAAGCCTGCCGCATGTGGTCGGCCGGGACATACTTACGGATCGCCCGCAGAGTCTTCTTCGGATCCTTGGTAATAAAGATGAACTTCCCATCCTTCTTAGTCCGGATCTCAAAGCGGGGAATGTACTTCCCTTTGAAGTGAACGTCCGCGACTACATAAGTTATCTGATCCCAAGGAATCTGGATATAGTCCTCAACATTCTTCTCGTTATAGAATTCAAAAGCTTCATCGCCGATCATGACTTTGCCATAGGTAGACATGGCCCGGAACCAAGTTCCGGATACAGCCAGATCAACGGTCTTATTCATTGATTGAGCCATTTGTTAATCTTACATCAAGCCCCATACGTGGAAGAGGATACCAACAACGAAGATCCCCAAGATGATAACGATTGGAGAAACTTTCTTCTTCAAGAGCCACATGCAAAGGAAGGTAAGCAGCAGACCTGCCAAACCTGGAACCAGCATGTTCAAGTTGTCTTGCAGAGTAGTAACCTTGGTATTAGTCAAGGACCGACCATCAGCTTGTTGGGTCAAGGCTTCCTTGATACCAGCAGCACCGCTTGGCAGCTTGTTCCAGTCGATGTAACCACCCTTTTGGATTGGCACTTCTGAAACCTTCAGAGTGAAGGTGATTCTTACCCAACGTTCGATCAAGGCACCCAGGACGAACATACCCATCATGGCAGCCCCACGGGTAACCTTCTTCAGCAAACCACTTGAAAGGTCGGAGCTGATAGCGGCACCAGCCTTGTAACCCAATTCTTGAGTGTACCACAAGAAGGCGATACGGATCAGGTTCCAAAGAATGAAGAAGAGGATTGGCCCGAGGATGTTACCGTTGATGGCCATTGAGGCACCAAGGGCACCGAGGATTGGACGAACAGTGTACCAGAAGACTGGGTCACCGACACCGGCCAAAGGCCCCATCATACCAACCTTAACACCTTGGATAGCTTCGTCGTCAACTTCAACGCCATTAGCCTTGTCTTCTTCCAAAGCCAGGGTAACACCAATGATTGGTGAAGCCAAGTAAGGTTGAGTGTTAAAGAAAACCAGGTGACGTTGCAAAGCAGCAGCCATGTCTTCCTTGTTTGGGTACAGCTTTCTTAAAGCTGGGATCATACTGTAGGCCCAACCACCGTTCTCCATTCTTTCGTAGTTCCATGAACCTTGCAGAAGTTGTGAGTGCCACATAACGTACCAACGATCACGCTTTGATAAAGTTACTTTCTTTTCAGTCATGATTTATTTCTCCTTTCTGGCTTGATTTCTAATAGTCATCAATGATGTCGCCCAGCGGGTCACCAGTACCAGCTGCAGCAACATCGCCAGAGCCCTTGCTTACCTTTTCTTCCAAAGCGAGGTACATCAAGGCCATAGATAAACCAATCGCACCCAAGGCGATCAAAGTCAAGTCCTTATCGCCGGCCAAAGCGAAACCAATGGCCAAGAATGGCCATACTTCACGGCTGACCATCATGTCGATAACCATAGCGTAACCTACGGCAACAACCATACCACCACCGATGGTCATACCATCTGACAGCCAGGCTGGCATAGCAGCCAGTGCGCTTCTAACAGTTTCAGTTGGAATAGCAAGCAACAAGCCGGCTGGGATAGCAATACGCAGACCCTGCAAGCAGACAGCGATCCATTGCCATACGCTGATCATGCGCCAGTTACCTTCTTCGGCGTACTTGTCCATGATGTGAACGATGGCAGTTGAAATAGTCCGGACCAACATGGTCAAGAACAGACCGGCAACGGCCAAAGTGATGGCCAAACCAGTGGCAGTCCCGATACCCTTGGTACCTTGACCACCCTTGATCAAAATGATGGCTGAGGCAACAGCGGCCAAAGCGGTGTCAGGTGCGATAGCGGCACCGATGTTGGCCCAACCTAAAGCGATCATTTGCAAAGAACCACCGAGCATAATACCCAAGGTAAGATTGCCAGTAACTAAACCGATTAAAGTACATGCAACCAATGGTTGGTGGAATTGCCATTCATCCAGGACACCTTCCATCCCGGCCAGGAAAGCTACCACAATCACCAGGATGACTTGAATAGCATTTAAGTCCATTTTTAACTCCTTTTCTCACTACTACTTTGTTCATCGAGCAGGCTTTGTGCCTTCTTCAGAATTGAATCCATGTTTTCTGGGTTGTCTGAAGGAACCTTGCGGACGTCGAACTTGATGCCCATCTTTTCTAGTTCACGGAAAGTGTCGACGTCAGTCTGATCCATGGACAGAACGTTGTTGGCGTTAACCTTGCCCTTGCTGTATGACATGGAGCCGACGTTCAAAGTCTTGATGTCTACGCCGTTCTTGATCGTTTGCAAAGCATCTTCTGGGTTTTCAAACAACAAGAAGGCGTGCGTAGTACCAAAACGCGGGTCTTCATAGATTTCCTTCATCTTCTCCAATGGAACGGTGTGTGCTACCGTACCAGCTGGAGCAGCTTCACGGATCATGCTCTTGCGCAGGTCGTCCTTGGCAATCTTGTCAGAAACCACGATAACCCGGTCTGGGTGAAGTGATGGAATCCAACCAGTTACAACTTGACCGTGCAACAAACGTGAGTCAATTCTGGCACCAACGATCTTAATGTGACCGTCGCCCAAAACAGTCCCTTCTGGGATTGCTTCCTTAGGAGCGCCAGCTGCGGCTGCAGGTGCAGCTGCCTTTTCCTCTGCAGGCATTAAGCTTTCAGGCTTGGTCTTGATACCATCCTTAGCTGGCTTAATGATCGCAGTCGCGATGTCTTGCGCGGTAGCCTTGTCATTGATCATTCTTTGGGTCAAGGCTTCAACTACCATTGGCAAGTTCAAACCGGAAACGATTGCCCACTTGTCGTGACCGTCGAGCAAACCGTTTGCCTGGTTGAAAGGCGTGCCACCCCACAGGTCAACCAGGAACAAAACTTCTTCCTGGTCTGCAAAAGAAGCAATCGCTTCATTCATCTTACCCTTAATATCTTCTGGGCCTTCAGAAGGCTTCAGAATGACATGGGCAAAATTGTCTTGTGGGCCAAAGAGCATTTGCGCGGATTCGGCAATACCGTCCGCGAAACCGCCATGGCTAGCTAAAACAATTCCTACCATGATATTTCCTCCTCAAAAACTTCGGTACGTTCCTAAACTTCGGTACGTTCCTATTATACAACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCTAATAAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTCAACTACAACATCATCAATATCAAACGAAAGGCTTGTGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATTTCTCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGATTCCCACTTTGGTCGGTCCTTTCATACATCTTCAGTAATGTATTTCGAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCCAAAAACACCTACTATAGATTCATGCAGAACCCACATATCAACTGGCTTCGCTTCACTATTCTGCTAGTTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTACAACTGGATACAAGAAGACTGAGCTGGCTGCCAAAGTATTCGACCACGTTTCGATGACCTACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCCTCCTTTGTCCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCGCGGCCAAGAGGCGGATTATGGCCCAATCAAAGGGGACCGATGTAGTTATCCAGCTGCTCGATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCAGTCAACGTGGTTTGAACGTAATCGCCATAGTGAAGAAAAGCTCCAAGATCACATACGAGTTCGAAGAAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGAGGTCGTTCAAGATATCTCCTGTCCGTCCCTGTAAAGGTTGGAGATCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGCTCCAACCGCAAAGACTGGATCGCTCTCATTTGCACGGACATGACGATCGATGAAAATGAAATCATCAGAATTTACGGCAAAAGATGGGATATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTGAAGCTTGGCACTGAATACCATGGTCTGTCATATGATGCATTGACTGCCCATACAGCTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAACCGAATAAGACTTTGCGCTATGTCGTTAGCGCGTTTTTTACCAATACCGGTTAAGCCCTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGGTGTGGGAATCTGAGGACAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGCTCAATCTCTGGGAAAGTGAGCTGAATGGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTGCATGGCAGACGAGCTTGCGGACATCACTTTCAATCACTCCCTACAAATCCTGGTGGAAGCCATGTTCGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGGTTCACCAACGCTTTCATTTCACGCCTCCCGAAGTACATACAAGAGGCTATATCGCCATCACTGGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTATACAATAAAAAGCGCTTACGTGGAGCACTTTCTTGAAACCTTTTTCAACTTTTTTGTTAATTTTATCTCTATGACTGAAAATGCATTACAATAACGCAAAAAGAGGCCCAAAAATTGCATTTTTGCGAAAAATACCAATTTTAATTAAGAAAAGAAAAATACTTATTAGATGAAAAAAAGCGGCTGATTCAGTCAAATCAGTCGCTTGTCTTATATATTTGTTGTTATAACGGAGTAGCAGAGATTCGAACTCTGGCGCCGGTTTCCCGACCTACACCCTTAGCAAGGGCGCCTCTTCAGCCACTTGAGTACTACTCCAAGTCATGCATATTAATATTAGCAAACTTTTTCCGGGTCCGTCAAACCCTTTTGAGAGATTTTTTCTGCTTTTTCGCTTTTTTGCGTCTTTTTTCCTCCAAAACAGACGATGTCTGCAAATCAATTGAAAGCCGGTCTCACTTTTCATCGTTTTTGGCTATTGTGCTATAAGAAATGTAGAAGAATGTGCGCTTGATACCGGCTGGTTCACATTATGGTCAAGATATTCAACTTTGCGACTATCGCATCATCGATATCTTTACTTCCAGCACCGACATGCCTGGCTGGAACATACCTAGCGCATAACATAGGACTCTGCCGGCTTCCATTTCTCTCACGAGCGTTCACTGCCAAGCTTTCGCATTGACAGCGTGGGCGATCTCTGCACTCGGTATGCTCACATCACCTGTACGGCCGAAGCCGCAGACAATGCCTTTATCCGAAGATGAGCAACCGAACTGTCTCACGAGTTCTGAACTCGCTTCTCGCATGTTCTTCCATTTGAGGAATTGCATGCGCGGTCGTAGAAACCGATTCGCTGCCAAAACAACTTATCGGCTTCCCGTCCGGTGAGCCATCTGCACCGAAACAGCCACTTACGCAACTGCTCAAGTAACAGATGGCATTCCGGCCATTAGCCTGCCCGCATGGATCCTTGCGGATCCCTTATTTTTTTACAGTGCTTTATTGTATCTTGGATGATCAATCAAAAAAGTAAGATTCATCATCGCGTTCATGTCCCGAACTACAACCTTGTTGTAGTTCGGACATTTTTGTTGTAGCACACATATTCATTGTGCTTGGTGCCATTCTTTTTATTGCCAGAAAGGGTGATCTTTTCATCGTCCTTCTTGATGTTGCCACAGGCTGCACAGCGCTGGGTGCTTGGATAAAAGCGGTTGGCAATCACCAGCTTAACCCCGGCTGACTTGCACTTGTATTCAAGATAGCTGCGAAAGCGTCCAAACAGTGCACGGTGTACGCCTTTTGAAGCGACATGGCTCATAAGCATGCCCTTAACGTCCAGATCCTCAATGCAGATTGCATCATATTCTTTGACAAAGTGAGTCGTGTACTTGTGCATTGCATCATCCTGCATGCGGTGAGCACGCTCGTAAAGCTTCTGAAGCTTGATTCTCGCTTTTTGATAGCTTTTTGAGCGCTTCCCGGCAATCTAATCTGGCCATTTTCTTTCAACTTTCTTGCCAGAATCCGCTGCTGGTGCTTGATGTTCTCATAGACTCTTGCCAGCTTGACGGCGCCATCTTTTGATTAAAATCACAGGTGCAACACACTTAAATTCTATTTAAATGGATTCGCTTTCTTTCGCAAGTACATTACGCTATATTTTTCGATATAGTTCTATATTACTTGTTACTAATTAGTAGCTCTTCCCGCCTGCTTAAAAAATAATTAGCAAAAGCGTTGCTTAACAAAGCTCATAATGTTATAGTAGGAAACATAAAAATTCGAGTGATCTTTTAGTAGCTGTCAGGCTCAGCGCTCATAAAACCGGTGGTTGATGCGAACCGGACAGGCCTGGAGTAGCGAATTACGGGATCAAGCAGTTCGGCCGGTCTAGCCCCGTTACGGCTAAAGCAAGTGCAGCATGCTGCAAAGTTGGGTGATACCGTGCCTATAAGCGCCCCAGCCTGAGTCAACCGACTCGGCTGGAGCTTTTTGTTTGCAGAAAGGAGAAATATGAAGCGATATCAAGCCTTGGTTTAAACTGGCAAAAGCAAATACAGATTTAACTAAGGAACAAACACATGAACAAACAAATCAGTTTTAAAGAAGCAGTAACTATTCTTATTTTGATGCTGGTCATGCTGGGCTGGGGCGTCATCGGCTTTGGCCTGTCCCCGCAGATCCCGGTCTTGACCGTCATCGCCTTACTCATCTTCTGGCTGCAGATCCGCGGCTTTGAGTGGGAAGAAGTCATGAAGGGAATCAGCCAGGGGATTTCCACGGCCATTGTCCCGATCTTTATCTTCCTTTTAATTGGGACCTTGATTGCTGTCTGGATCCAGGCTGGGATTATTCCATCCTTGATGGTCCTGGGCTTTCATATGATCAGCAGCCACTTCTTCGTTCCCTCGGTCTTCCTGGTCTGCTCTTTGGTCGGCCTGGCCATCGGGTCCGGCTTTACGACCGTGTCCACCGTCGGGATCGCCCTCTTTGGGATGGGGAGCACTTTAGGCATCAACCCGGCTTTGACGGCTGGTGCAATTATCTCCGGCGCCGTCTTCGGCGACAAGATGTCCCCTCTGTCTGACTCAACCAACCTGGCTTCCGCGGTAGCTGAAACTGACCTCTTTGACCATATCAAGAATATGATGTGGTCAACCATTCCCGCCTTTATCGGCTCTTTGCTCTTTTTCTTCTTCCTGGGCCAGAGCAATAAGGCAACTTCCTTAGCCGGCATCGCTGCCGTAGAAAGCAGCCTCCGCCAAAACTTCTCAGTTTCCTTCTGGGCAGCCTTGCCGATCATCTTGATGTTCGCCTGCGCCTGGAAAAAGGTGCCAGCCATTCAAACGCTTTTTGCCAACATCTTCTTGTCCGTTGCCATGATTTTTGTCCAAAATCCGGGCTTCAAGATGCAAAAGCTGGCAACGCTGATTGAATCCGGCTACGTTTCAAATTCCGGCAACAAGACCATTGACGCCCTCTTGACCCGGGGCGGGATCTCCAGCATGATGGGGACTGTTTCCTTGATCATCATGACCCTGGCCCTGGGCGGAATCTTGATGCACCTGGGCATTATCGACAGCGCCATGAAGCCTCTGGTTGAACGCCTTAAGAAGCCGGGCCGGCTGATCTTGACGACAATCATGGCCGGGATTGGGATCAACCTCTTCGTCGGTGAACAATACCTGTCTGTTATCCTGCCGGCCAACGCCTTTAAGCCTGCTTACAAGCGGATCGGCCTTGACCCCCTGGCTCTCAGCCGGGCCCTGGAAGACGGGGGCAGCGTCATCAACTACTTGATCCCTTGGGGGGTGGCTGGTTCCTTTGTGGCTTCAGCCTTAGGCGTACCAGTTCTGGACTTCCTCCCCTTCACCATGTTCAGCCTACTGTCACCTGTCTTCTCTATCCTCAGCGGCTTTACCGGCATCGGCCTGAAGTGGGAGCAAGAAAAAGTGGCTTAAGCCTTATCTTACTTAAATTAATAAATCAAAGAAGCCTGTTTCCAGCTGGAAACAGGCTTTTAATGTAGGCAAGTATCTTGACAGGCTTTCTCCTTCTTTCAGACCTGTAGAAAACGGCTGAAGTAGCTGAGCTATAAGCAACTAACAGCTGTTAAGAGAGCTGATTACAGGCGATTAGAAGCAAACAGATAAATAGAGAGTATAGATTAGCTGATAAATTGCAAGAAACAAGAATACAAAAACAAAAAGAGCCAGACTTCCGTCTGACTCTTGTCTCGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCAAAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGTAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTATTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAGTGAGAGCTGATACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCTGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTACGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTCAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGGATTCTTGTCAACAAGTTTTTTGATATTTTCTTTTCCGTGTCTCCGGCAAATTCCTTCTTCGCCGCGACAACAAATATTAGTATACTCGTTATTTTTGAAAGGTAAAATCAGCCTTTTCATTCGCTTTATCATAGATACAGCCGGCAGAGTTGTAATATTTTGCCTTGCCGCTTCTGCTTCTTTTATTCTGCTTTATCTTTCTTTTTAATTCTTCAATGAATTCCTCGTTCGTTTTTTGCCCTTTTTTGCCGGGAAAAATAATTTTGTTTTTTTTTTTTTTTATCTGCTCTTTTATCTCCTCTTTTGCCTTTCTCTGCTTGTCTGTCTCGCTTATAAGAAGAGCTTTGAAAATAAAGTCGCCGTGCTATTTGGCTGTTGGCAGCTCTTTCCCTCACTTTTTCTGCCCTGGTACAGTTATCAAATCCTTTTCATTTTTTATATAATTTTTTCTTGTGTTCCTTATGTCCTATATTCCATTTTGGACTATTGTTTTTGTTTTTTTAGAAAGGCTGATCCAACTCCCATGATCAAAACCCGTCTTATCAAGCAGCTGGGCTCTTTCAGCCGCTACCTCAGCCAATTCGCCTATGCCTTTCTGGCTCCCTTGACCCTGTTTGCCGTCTTGGTCAAAATCGACGCCCCGGCCAGCATCTTCCTTTTATGTGCCGTGCCCGTGTGATCCCCATCGTCATCATGGTCGTCATGCTTGTCGCCAAAAAGATCCTCAGCCGCTACTTTGCCATTTACCATCATCTAGCCGATACCTTTTTGGAAAAAATGCAGGGCATGACTACTTTAAAGGTCTACCAAAATGATTCCGCAGCTGAACAAGAACTGGCTGAAGAATCGGAACTCTTCCGGCAGATCACCATGAAAGTCCTGACCATGCAGCTGCTCAGCACCGTGGTCATGGACACCGTAGCCTATGGCGGCGCTGCCTGCGGGATCGTCATTGCCCTTAATAACGCCCTTAATAACCTGCGGCAAGGGCAAGTAAGCCGGCAAGGGGCCATCATCTTGATCCTTTTGGCCGCCTCCTACTTTCTTCCCATGCGGCAGCTGGGCAGCTACTTCCATATCGGCATGAAGGCCAGTGACCATATTTTTGCCTTCCTGGACCTGCCGGAAAAAGCTGCTGGGCAAACTTCCCTGCCGAAAAAATGGCCTTGACCGTCAGTGACCTTTCCTTTACCTACCCAGACGCTGACCAAGCCGCTTTAGACCAAATCAACCTGTGTCTATCCCCGCCCCCGGCTTCACTTCTATCGCCGGCCTGTCTGGATCAGGTAAAAGCAGCGGATCGAGATCGCCCGGGCCTTCCTGAACGGCGGAGACCTTCTCCTTTTAGACGAAATCACCGCCAACCTCGACGCCTTAAACGAAGGCATCATCCTCAAAGCCCTCAAGGAAGCCCGGGGCGGCAAGACCGTGGTCCTGGTCTCCCACCGGCTCAGCACCCTGGCCATCGCTGACCAAATCATCGCTTTGCCAAGCCGCGAATAAGCTAAAAACGCCTGGAAGAAATTCCAGACGTTTTTTTGCGCTCATTTTTCTTTTTTACCCGATCGAGCCCACCATCTGGTACTTGATCAGGCGGTTCAGTTCCACCGCGTATTCCATCGGCAGTTCCTTGGTAAATGGTTCCAAAAAGCCCATCACGATCATTTCCGTGGCCTTGGCTTCTGAAATCCCCCGGCTCATCAAATAGTAGAGCTGCTCTTCAGAGATTTTTGACACCTTGGCCTCGTGCTCCATGGAGACGTTCCCGTTCAAAACTTCATTGTAGGGAATCGTGTTGCTGGCCGACTTGTCGTCCATGATGATGGTGTCGCATTCCACATGGGCCAAAGAGCCGTCGCTGTCCGGGTTGAAGCGGACCTGCCCCCGGTAGTCCACCCGGCCCCCGTCCTTGCACAGGGACTTGGAGACAATGGAGCTGGTGGTCTGGGGAGCATTGTGGACCATCCGGGCACCAGTGTCGGAGTCGATCCCCTGGCCATTTGAATCGCAGCCGGCAAAGGCAATCGACAGCATGGTCCCCCGGGCCCGGCGGCCGTTCAGGTAGACACTAGGGTACTTCATGGTAACTTTGGAACCTAAATTGCCGTCCACCCATTCCATGGTCGCGTTCTCCAGCGCTTGGGCCCGCTTGGTTTCCAGGCTGTAGACATTGTCTGACCAGTTTTGGATGGTCGTGTAGCGGCAGTAGGCGTCTTTTAAGACATTTACTTCCACGACCGCCGCGTGCAGGCTGTCAGCTGAATAGTTGGGTGCCGTGCAGCCTTCCACGTAATTGACGCTGGCCCCTTCATCGACAATGATCAAGGTCCGCTCAAACTGGCCGGAATTACCGGCATTGATCCGGAAGTAGCTCTGGATCGGGACTTTGGCCTGGACCCCTTTGGGCACGTAGATAAAAGTCCCCCCGGACCAGACGGCGGAGTTGAGTGCCGACATCTTGTTGTCATCCGGCTTGACCAGCTTGCCGAAGTACTTTTTGACCAAATCGGGCACCACTTGGACGGCGGCGTCGGTTGACATGAACAAAACGCCCTGCCGGGCCAGGTCCTCTTTGATTTTTTCATAAACGACTTCTGACTCATACTGGGCCGACGACCCGGCCAGGTACTGGCGCTCGGCCTGGGGAACGCCCAGCTTTTCAAAGGTCTCCTTAATCTTGTCCGGCACCTCGTCCCAGTCCCGGACCGCCTTTTTGGCATCCCGGCGGAAGTAGTTCAAGTGGTCAAAGTCAATCTTGGTCAAGTCCGGGCCAAAAGCCGGCAGGGGCATTTTGAGGTAGGTCTGGTAGGCCTTGAGGCGGAAGTCCAGCATCCAGTCCGGCTCTTTTTTCGCCGCGGAAATCTGCCGGACCACCTCTTCACTTAAGCCTGTCCCCGTGGTATAGATGGGTTCGATCTCGTCTTTGAAGCCGTACTGGTAGTCCTGGTCCAGGGCCTGTAAGGTTTCATCTTTTTCAACGGTCATCTAATTTTTCCTTTCTATTGCTTCACTCAAGCCTTGCCAGGCCAGACCCGCGCACTTTACCCGGGCCGGAAAGCGGGAAACGCCCTGTAAAAGTGCCGCGTCGCCCAGCTCCTTTTCTTCCTCCTGGCTGATCTCTTTTCCTTCAAGCATCCGCCAAAAAATCGGCAAAAGACCGGCCGCTTTTTCAAGCGGGGCTTGGTCAACCAGGCCGGCCATGATCGCCGCTGAAGCCTGGGAAATCGTGCATCCCTCAGCCAGGCAGGCGACCTGTTCAATTTTGCCCTCCTTGACCTTTACCTGCAAGGTCAGCCGGTCCCCGCAGCTTTCATTGACCAGGCTGACCGCCTTTGTAGGACTGGCTAAAGGCTGCCGGTATTTTTGGCTAGCCGCGTAATCTAAGAGGACTGCCTGGTAGACCTGCTTTAAATCATCTAGTGCCATTGAAAAACTCCTTCGCCGCTTGCACTCCCTTAATCAAGGCTTCCACATCAGCTTCATTGTTGTAAAAAGCCGCGCTGGCCCGGGCAACGGCCTTGACTCCTAACCAGTCCATCATGGGCTGGGCGCAATGCTGGCCGGCCCGGATGGCAATACCCTGGGCGTCCAGGGCCGTCGCTAAATCGTGGGGGTGAACGCCAGGCAGGTTGAAAGATGCGATGCCGCCCCCCTGCCCGTAAACCCTGGCGCCTGCTTTTCTCAAGCCTTCCGCCATGGCCTGGCCTAATTCTGTTTCCCTGTCTTTAATAGCATCTAAGCCAATTGCATTCAAATAGTCGATCGCTGCCCCCAAGGCAACTACGCCGGACACGTTCTGACTGCCGGCCTCAAACTTTTGCGGGGCCGGCTTGAAAGTCGCGGTAGTTTTGCTGACCTCTCTGATCATCTCCCCGCCAAATTCCAAAGGCTGGGTCTGGTCCAAGAGTTCTTTTCGGCCGTACAAGACCCCGGTCCCGGTCTGGCCCAGCATCTTGTGGGCGGAAAAAGCGTAAAAGTCGGCGCCTAATTTTTTGACGGCAACTGGCAAGTGGCCCGCTGCCTGGGCTCCGTCGACTAAAACCAGGGCCCCGCGCTTTTTGGCCAAGGCCGCCAGCTCTTTGACCGGCTGCTCAGTCCCTAAGACATTGTTAACCTGGGCCAGGGCTAAGAGGCGGAGGCGGTCAGACATCACTTTTTCTGCTTCCTTTAAGTCAACCCGGCCCTTTTTGTCCAGGGGCAAAAAGACCAGCTTGGCCCCGGTAAGGGCGGCAACTTGCTGCCAAGGGACCAGATTGCTGTGGTGCTCAGCGGCAGTTAAGGCGATCTCGTCTCCCGCTTTTAAATGCCGCAAAAAATAGCCAAAGGCCGCCAAATTGATAGCCGAAGTCGTCCCCTTGGTAAAAACTATTTCGCTGGCCTCACCACCAATAAAATCTGCTGCCTTCTGCCGGACTCCTTCATAAGCCTCTGTTGCCTTGGCAGACAGGGCATAAGTTCCCCGGTAGATATTGGCATTTTCTTTTTGATAAAAAGCAGTAATTGCCTCAATCACACTCTTGGGCTTCTGGCTGGTGGCCGCGTTATCCAGGTAGACCAGGGGCTCGCCGTTCATTTTTTCAGCCAGGATGGGGAAATCCTGCCGGAGCTTATTCCAATTCTTGTCCATCGATCAGCTTTCTTTCTACCATTTCAAATAAAGGCTGCCGGCTGGCTTCCGGGATCTTGGTCAAAACCGGGCCCAAAAAGCCCCGGATGACTAAACGCTCGGCTAAAGGCTTGGGCAGGCCCCGGCTCATCAAGTAATAGAGCTGCTGGTCGTCAACCCGGCCGACGCTGGCCGCGTGCCCGGCAAAAACGTCGTTATCATCAATCAAGAGGATAGGGTTGGCATCCCCTCTGGCCGACCTGGACAGCATCAAGACCCGGTTCTCCTGCTGGGCATTGGCCCCTTTTGCCCCCTTCATGACATGGCCGATCCCGTTGAAGACCAGGCAGGACTTCTGCAGGATCACCCCATGCTGGAGGATACGGCCATCTGACTTTTTGCCGTAATTATTGACAACGGTGTTCAGGCCCTGGACCTGGTCACCGATGGTAATGGCGATCACGTTCATCTCGGCTCTGGCTCCCTGCCCGTAAAGGTCAGAGTCATAGTCAGCCAGAATTTTCCCGTCGCTCAGCATCCCCATGGCCCAATCCAGCTTGGCGTCCCGGCCGACCCAGGCTACCCGCTTTAAGTAGGCGGTCGTGTTTTTGCCCAAGCGGTCGATAGCGGCATACTTAACCTGGGAGCCGGCTAAGGCGCAGATCTCCACCACCAGGTTGGCTGTTGCTTCCTTGTCTCCTCGGCTGGCCACTTTTTCAAAATAGGAAAAAGCCGCGTTTTTCCCGGCCACGAGCAAGACGTGCAGGGCAAAGTCCTCTTGCTTTTGGCTGTCTTGCAAATAAGTTACCGTCAAGGGCTCTGCCAAGGCCACATTGTCTGGCACATAGACAAAGAGCCCCTGCTCCATCTTGGCCACGTTTTCTCCTAAAAGGCGATTTTCCTTAAAATTTGCCGCCCGGCCAAAGTACTTTTCCAGCAGGTCCCCGTGCTCAGCTAAAGCCGTCTCCCAGTCGCAGGCGACGCAGCCTTTTGCCCAAAATTCTGCCCCAGCTTCAATGGAAAAAGCTGCCCTCTTTTGCAAGGGCCGGGTCAAAGACAGGGGCCAGGCCCGGTAGTCCACCTTGGCAAAGTCGGGCCTAGGCAAGTCCGGCAAAGCGGCAGCGGCTTCTGCCTGCATTTTTGCAAACCATGCTTGTGCGGTCATGCTTCCTCCTTAAACGTCTTCATCCGTCAGTTCAATGTCCAGGCCCAGCTCGTCGCGCAGCTTGGTGTAGCCTTCCTTTTCCAGGCGCTTGGCCAGGTCCGGCCCGCCTTCAGCCACGACCCGGCCACCCATCATAACGTGGACCTTGTCAGGCACCACGTAGTCCAAAAGGCGCTGGTAGTGGGTGATCATCAAGGCGCCGAAGCCTGGCCCCCGCAGGTCATTAACCCCTTTAGAGACCACCTTCAAAGCATCGATGTCTAGGCCGGAGTCGATTTCGTCTAAAATCGCGAACTTGGGCTTGATCATCAGCATCTGCAAGATCTCGTTACGCTTCTTTTCCCCGCCGGAAAAGCCATGGTTCAAGTAGCGCTGGGCCATTTCGACCTTCATGTCCAAAAAGTCCATCTTTTCATACAGTTCCTGGAGGAATTCCCGGGCCGGGACTGGATCGCCTTCCGGCCGGCGGGCGTTCAAAGCCCCCCGGATGAATTCGGCGTTGCTGACGCCAGGGATTTCAGCCGGGTACTGCATGGCTAAAAAGAGGCCGGCCCGGGCCCGGTCGTCAACTGGCAAATCCAGCAGCTCTTGCCCATCCAGCTTGACTGATCCCTGGGTTACCTTATATGCCGGGTTGCCCATAATGGCTTCTGACAGGGTCGACTTCCCCGTCCCATTTGGTCCCATAATGGCATGGATCTCCCCGGTTTTCAGCTGCAAGTTAACCCCTTTGAGAATCTCCTTGCCGGCAATTTCTACGTGCAAATCAGTAATTGCTAACTCTGACATGACTCACCTCAACTAGTTATCTACAAAATTTAGTATCACGTCTATTTATAGCACACAAGGTCTAGTGGTTATAGAGGACGAAAGGAGAAATATGCGATTTTTTAAAAGATTGCAAATCACCAGAAAAATATCTGAAAACTTCAGAAAATAATCAAGTAATTTGACAAATCATTCTAGCCTGCTACAATGACTAAACATAATCAACTAGTTATGGAAAGGATCCTGTCGTCAACCGTGAAAAAGCGTCAGAAAAACGACTTCAGTAAAGAAATTCAAGTCAAACATTTTAACGAGCTCTCTGCCCGGGAGGTCTTCTGCCTGTCCAGAATCCGCGATGACGTTTTCGTTGCCGAGCAGGAAATCACGGTTCCTGAACTGGACGACCAGGACCTTTCCGCCTACCATGTCTTTATTTTAAATGAAGACCAAAGCAATGCCCTGGCGGCGGCCCGCTTCTTCAGCGAAGAAGGCCGCTTCTACATCGGCCGGGTCGCCGTGCAAAAGACTGCCCGCCACCGCGGGATTGCCAGCCAGCTGTTAGGCGCCATTGAAAACTACGTTTTGGCAAATAGCTTAACCAAAGAACTTTATCTGCACGCCCAAGCCAATGCCCGGGACTTCTACCTGGCCAATGGCTACCACGATGTCGGCCCCGTCTTCATGGAAGCCGGCATCCCCCACCAAATGATGGCTAAAAGCCTCGCCTAAGCAGCCGCAAGGCTGCTTTTTTCATGCAAAAAACTGCCCCGGTAAAGATCCCGGAGCAGTCTGGCGATTTGTGAGTTAGTAAAGAAATTTTTTTAAAATAGAGGAGTAAAAGTATAAAGTAAAAGTTTTGGATTAAAGAGTAATGTTAAAAATGGTAAAAATCATCACACGCTTTAGTTAAAGGCAATTTCCTGCGCGTCGTCGCCCGCCTCTACAGGGCGCGGGTCGACATCCTTGACTTCTTTAAGCAGGTCCATGTTGGTGTAAACCACCATGACCGTGTTGTCCAGGCCGTGGTCAGCCACGTCGGCGATGTCCATTTCCGCCAGCTTGTCGCCAGCCTTGACTGAGTCGCCTTGCTCAGCGAAGAGCTTGAAGGGTTCCCCCTTCAGTTCCACCGTGTCGATCCCCAAGTGGATCAAGACTTCCAGCCCTTCGGCCGTCTTGATGACGATAGCGTGCTTGGTCGGGAATAGGGTGGTAATGGTCCCGGAAACCGGTGCAACTACTTCCTGGCCGGTCGGCTTAACGGCAAAACCGTCGCCCAGCATCTTTTGGGAGAAGACGTCATCGCTGACTTCGGACAGGGGAATCAGATTGCCCTTGATGGGCGCCTTGACTTCATTGCCTTTTGACTTGGACTTTTTAAAGAAATTAAGCATGAATATCAACCTTTCACCGCTCTAAAGGCGAGAACTACATAGAACACAAAACAAATTACGAATAAAGAAGCAATCAAGTAGGTCAAGGACAGCAGCTGGCTCGGCTTTACCTTGCTCTCTTCAGGTAAATCCTCTCCCCGCCGCAGGGCAAAAATAGCGAAGAGGAGACAGAACCAGTTGCCAACGATCAGCTGGGTCCACAGCTGCAGCTTCATAAACTTCATGTACTGGCGCCGGTCGGCCAAGAGGGCCCCGCCGTCGATCCAGCAGAGGTAACCCAAGAGAAAGTCACCGGCTGCCACGATGATTGACACCGTGGTCGCGGGACTGGCCGCGATGAAGTCAGTGATCGTCTGCTTGGCCGCCCCGGCCCGCAGCTGCAAGAGCAGCAGGTAGGCCATCGGGGCAAAAAAGAGGACGAAGGTGTAGATCTTTAATATTCTTTTCGGCGTCAGACGGGCAGACTTAGTCAACCTGTCTAGCCAATTCAAAGCTTTCTCCTGCATTATTCATCATCTTTTCTCAGCCACTCGCAGTAGCCGTTAATCAATAAATCAATCATTGTGTAAGCCGGACTAAAAGCCCAGTTCTTGGTGCTGTTGCTCTCATGGAAGAGACTTGGCTGGAAAAAGAGACTGTAGTCAGACAGACTGGCCAGCCGGCTCTCCTTGATGGTCGTCACCGATCTTCTTTTGCCGGTCAGCATCAATGTCGTACAGTTTCAGTTTCCGCAGGGGAAGCTTATCTTGATTGGCACAGAGACTGATTACAAAGCCAGGGGTGAAGGTGCTGCCACCGCCGGCAATAACTACTGAAAATTTCTTGTCTGACATAAATCAATTGCTCCTTACAAAAGACATTGTTTCATCACATGGGGCCTTTCAGGCGCCCTGACCTCCCGTAAGCTTGCTTACACTCTTGTTATGGCACCGCTTCCAGATATGTAAAGAGTTTACAAAAACAAAGAACCATATTTCAGATTGTGAAAAGTATTTCGCAAGGGCGAAAAATATTTTGGAAAGCTGTCTGGACTAATTTTTGCAAAGAAAAAAGGCACTGGTCTTGCCAGTACCTCGCGATTAACTTAATTTAATTAACTAAAGCTGCAGGCCATTTGGCAGAGCCAAGGCAACAGCGAAGACCAGCAGAGCAGCGCCGATCAACCAAAAAGCAATTTTCTGCCCCTTTGGCAGCTCCTTTTTGAAAGCGTAGATTACCAAAGCCAGACCAATCAAGCCAGACAAAAGCATAATCCAAAACCCCATTGTCAATTCTCCTTTACAGTAATATTTCCGTTTTTTAGTTGCAGCACCCTATCGTGCTGACTGGCAATATGCGAATCATGCGTAACCGTAAAGACGGTTTTCCCTTCCCGGCTGAGTTTCTTCAGCAGGTCCATGATGATTTTCGCGTTTTCTTCGTCCAACGATCCCGTTGGTTCATCCGCCAAGATGAGCTGTGGGTCATTAATCAAAGCCCGGATTGCAGTCACCCGCTGCTTTTGTCCACCTGATAAGGTTGCCGGCTTTTGATCAAAAACTTGACTGACTCCTAACTGATCGGCAAATTGCTCGGCTCTGGCAAGGTAGTAGTCTTTGCTCTTGCGCAGTGATTTGTCCAAGTATACGGTTGGCAGCAAAATATTGTCCCTAACACTCATATTTTTGATCAACAAGGGCTCTTGCAGGATAAAGCCAATTTGCTGATTCCGCAAGCGAGCCATTTCAGTCTGGTTAAGCTCGTTGACTTTTTGGCCAAACAATTCAACTTGCCCGGAGTAATCCGTATCCAGAAGACCGATCACGTTCAAAAGAGTAGTTTTACCTTCACCTGACGCGCCAACTAGGGCTGTCAAAGACGATTCTTCAAGTTCCAGATTTAATCCGGAAAAAATCTTCCTGCCGTTTTTAAATTCTTTTTCAAGCTCTGTAATTCTCACCGAATACATTATTCGTCTCCCATCCGCAGCGCGAGTGTTTTCCTGTTAAAGTGAGCAGCTACTAAAGCAATGGCCAGAACAGTAATCAATAGCATCAAGATAAAAGAAATCAGTAAGCTTACTGTTTCAGCTCTTGGCAGCAAACCGTTCAACACTATCTGCGAACTGCTCCCAACCGAGCTGTCAGCCAGCATCTTAGAATAAGAACCTGCATATAGCAATACTGGCACGATAGCTAAAATATCAATCAGCAATTGGTAGATGATCGCTGCTGATAGTACATCTTTTTGCCGCATGCCTAACGAAATTCTTAGCGCGATCTCACTCTGTTCCTCACTCAAACAATTCCACGTGTTCCAAACGATTATCAAAACTGCAATCACCATGATTGCCAATGAAAAAATCGCGAACATGATGGCAGTACCTCTATAGCTGTCATAGAAGTCGGAAATATTTTTCTCAACTGAAATAAAACGGATCTTAAAAAAATCCCCTTGATTAAATTTGCTTGTCAACTTGTTCAATTCTGTCCGGCTGCTGTCAAAAATAATCAAGTCCTGGGCTGCGGCAAGCAACTGCGCAGCAGTCAAATTCATTTTATCCGCCCTTCTTAACGGGCGGATGATGGTGTTATTCAAATAATTTTGATTGTCAAGCAAATACACTGAAGGCACGTTCGCGTTCTGCTGCAAGACACCTACCACCTGGTAATATTCTTTTTTCCCGGAAGAAGAGTTTACTGCAGTAAATTTGCTGCCTAAAGGCTGGCTTTTGGCGACATTGGCCCCAACCAAAACAGGAATATAGTAGCTGCTACTCTTATAGTCAGCTGAATTAAAGCTGCGCCCCGCCGCGATATGAAGTAGATAAAACTTGAAGAAGTTGCTATTGACCGTATCGATGCTGACGGAATCACCATTATTCAAGTTTGAGTCGAAAGACCATCTCAAAGAATAGTGGTAATTTTTATCCAGATAAGCAAAAACTTTACGCGCGTGAGCATTAGTTTTAGCCAGATTCTTTTGCTTAAAATTCTGACTGAACTGCTTCCCAGTCGACTGGTCATTGCCAACATACACTTTCCGCTTCACCAAGGTCTGCAAACTACGCTCATTGTTTAGGACGTACAAGTTTGACCGTAGCAAGTGATAGCTGATGAAGCCAAACGAAATTAGGCACAATAGGGTCAGCAGAGTCAAGACCAGTTTCTTTAAAAAAACGTTCCTTATAAATTCAAAATACACTTGGCTTTGCCTTAGCGATCAATCACCTTAACCAAAAGCGGCCACCACAGCAGTAAAACCACGGTATGCAACATACTGGCTAAAACGAATTCTCGCAAAGCTCCTCCTTCGTTCTGACCAGTCAAATATCTCATTCCAAAAAATGCCAAGGCAAAGGTCAGAAGATCAGCCAGAAATATCATGACCTCCCCTACCGAATACTGCTCTCGGCAAGTAGAACCGACGATAATTCTAATCCTTCTTTCTTTTTGCCCTTTTTTGCATAAATGGTAAATCACCAAGAGCGAGGCAATACTGGCAAAAGCGAGAATTGAAAAAGAACTGGCAGAATCTTCTAACAGATTCTTGATCGCCCAATTCACCCGAGCATTCGCTGCCTTTTGACTTACCAAGCTGAAAATAGCTAAATAAAGAAAATTGAGATATTCAACTAGTAACAATCCGATCAATGCTAAAAAGCTGAAAGGATTTCTTGTCAATTTTTTCATCAATTAAATCCGTAATGGAACTTCGTCTTAGGTGCAGTTGGATTCAAAGTATCCCAGCAACTTACATTGGCTTCAATTTTAGTTTTACTTGAATACTTTGAGTTGTTTTTCACATAGGTTGTCCACTTGGAAGCAACAGTCTTGCCATTTCTAGTATATTTTGCATAACCCACATGAGTATGAGTAGCATAATGTGGGTAGAAAAATACGCCGCCACTGTAGTGAATTTGCATAGTTTCAGTACTCCAAGCACCACGATGAGCAGTCCCAAACTTAGTAGTACCAGCTAATACAGTCGCAGTTGGAACTAACGCTAATGCAGTCAGCATGGTAAAAAATAGAGTTGTCATTTTTTTCTTACTTTTCATTTTTCTAAACCTCTTTTTAGATTCATGCCTGTTCTTTTTCTCACATTCATTTTACAACCGCGCAAGCCTTTTTTTCAATTATATTTTAAAAAACTTTTTATTTATGTGTGGATATAGAAATAATTTTCATAAGACAAACAAAAAATCCGCCGGAAGGCGGATTCCTTAAATTCTGTATTTTCTGCGCAGTTCCCGGTCCTGGTCGCGCTTCTTGATCGTTTCGCGCTTGTCGTATTCCTTCTTACCCTGCGCTACGCCAATCAAAACCTTGGCAAAGCCGTGCTTCAAGTAGACCTTGAGCGGCACGATGGTCATCCCCTTTTGGGCCTTCACATCGGCCAGTTTGGCGATTTCTTTCTTGTGCAAAAGCAGTCTGCGGCTTCTCAGCGGGTCATGGTTGTAGCGGTTGCCTTCCTTATATTCATCGATATGAACATTTTCCAGGAAGGCCGACCCGTTGATGATCTGCACGTAGCCGTCACGCAAGGTCACGTGCCGGGCTCTGACTGACTTGATCTCCGTCCCCGTCAAAGCAATCCCGGCTTCATAAGTATCCTTGATGAAATAATCATGCCGGGCTTGCCGGTTCTGCGCGAGGACATTTTCATCCTTGGCTTTTTGTTTCATAAAAAATCCTCCCGCTTACATATTAACGGTTTGGCCGCCGGCGGTTGCCTTTTTCACTTTGCCCCAGCCGCTGGCCGCGGTTGCTGCGGCTTGGCTTGTGACGCCGTTCACCGCTCTTGTCGCGGCCGCCGTAATTGCTCCGGCCCTTGAAGTTCCGGTCCCCGCTTCTTCTGCCCATCCCGCGGTCATTGTGGGGCCGCTTTTTGGCATCTGGATCGTAAACTTCAAAGTCCAGCTGGTGCTGCTCAACATTCGCATTGGTCAAGACAACCTTGATCGGCATCCCAACCTTATACTTCTTGTGGGTTGTCCGGCCGGTCAATGTCATGGACTTTTCATCGTATGAGTAGTAGTCGTCCTTCAAGTTGGAGATGTGGATCAAACCTTCCACCGTGTTCTCCAACTGCACGAACATCCCAAAGCTGGTTACTGATGAAACAACCGCTTCAAACTTGTTGCCGACCTGGTCAGCCATGTATTCGGTCATCTTCAAGTCGTTGGTTGCCCGTTCCGTATCGATTGACCGCCGCTCTTGCATTGAAGTCTGATCAGCTGCTTCCGACAGTTCTTCCTTAAAGTGCTCCTTGACATCATCCCCCATTCCTTCTTCCAGGTAGGCGTGGATCATCCGGTGGACCATGGTGTCTGAATACCGACGGATTGGGGAAGTAAAGTGGGTGTAGTACTTGGCCGCGATCCCGAAGTGGCCCAGCGGATCTTCTGAGTAGTGGGCCTGCTTCAAGCTCCGCAGCATCATCATCTGGACAACCGATTCTTCCGACGTGCCCAAAGTCTTGGTAACCACCTTCTGCAAGTCCAGCGGCTTGATGTCGTTTGGATCTGCCTTGACGTTCAAGCCGAAGGCACTGCAGAATTCAAAAAATCTGCTGATCCGGTCAGCTTCCGGCGTTTCGTGCACCCGGTAAAGGAAAGGCACCTTTTTTCTGTAGTAGGCTTCTGCCACAGTTTCATTGGCCAAAAGCATGAAGGATTCGATCATCTTTTCGGCCGTCCCCCGGCTGTGCAGGACGATGTCCACCGGCTTGCCCTTCTCATCCACGATGATCTTGGCTTCCGGTTCTTCAAAGTCGATGGACCCCCGGGCGTGGCGCTGTTTATACAGGATTTCATGCAGAGCTGCCATGTCCTTAAGCATTGGCCGCACCTTAACATACTTGTCTTCCAAGTCGCTGTCCGGCACGTCAGCGCGCAAGGCCTGGTTGACCTTGTTGTAGGTTAAACGGCCGTGGGACCGCATCACGGCCGGGTAGATGTCGTAAGATACCCGCTCACCTTCCGGGGTGATTTCCATGTCACAGGACAGAACCAAACGGTCAACGCCTTCGTTCAAGGAACAGATCCCGTTGGACAGTCTGAACGGCAGCATTGGAATAACCCGGTCGACCAAGTAGGTACTGTTGCCCCGGGCAAAAGCTTCCCGGTCCAAAGGCGTTCCTTCTTTAACATAGTGGGCCACGTCAGCGATGTGGACGCCCAGGTGGTAGTTGCCGTTGTCCAGCTTCCACAAAACGACCGCGTCGTCAAAGTCCTTGGAGTCATCCCCGTCGATCGTGACGGCTGGCTGGTCGGTAATGTCCCGCCGGCCTGCTTCATGCCTCTCTTCTTCAGTTACGTGGTCCGGGATGGCATTGGCCTGCTCTAAGGCGTCTTCTGGCCATTCAGTCCGGATGTCGTGTTCCGCTACGATGGACATGATGTCCACGCCCGGGTCGTTCTTGTTACCGATAATTTCGACAACTGCCCCGGTCATCTGGTCTGGCAAGTCTTCGGTCGGGTAGGTCTTCAGAGATACCTTGACCATGTCCCCCATTTGCGGGATCAGGCCGTTTTCAGATACATAGACCCGGTACTTCTTGAACTTCTTGTTGGTCGGAATCACGTAGCCGGCAAAGTGGCTGATCTTAACCTGCAGGTCTTCCAAAGGGGTGTATTCGCCGACAATGCTGCTGGCCCCGCGCTCCAGGATTTCTTCAACCTGCCCTTCCGGCCCCTTCCCGTTCCAAGGGTTGCCGCCGGCCGTGATCTTGACCTTGACCCGGTCCCCGTCCAAAGCCAGCTTGGTAGCGTCAGAGTTGATGAACACGTCATCGGCTTCTTCATCATCTAAGCGGACAAAGCCAAAGCCCTTGTCGTTGGCCCGGAAGACCCCTTCGACTTCAGTATTTTCCTTGGCCAGCTGGTAGCGGCCGTTGCCGTCAGTGATGATCTGCTTTTCCTGCTCCAGGTAGGCCAGGGCCTTGACCAGGTCGGTAAAGTTGCCCAAGCGATCCCGGCGGGCCTGCCGCTCGATCTGGTCAACGCTGAATTGCTTTTGCGGGTTGTGCCGGAAGATCTCCAACACGCCCGCCAATACAGTCTCGTTTTGCGCCATTATTTTCTCCATCTGTATTTTCGTTAAAAAAACCTCCCATCAAGCAAGTGATCGGGAGGTTAATGATTATTTAGAAGACAGGATTGCCAAAATAATCGAAAAAGCAAAGAACAATACGAGTAGAACTGACGTCACTTTTTCCATAAAGGCTTCAAAGCCCCGCTTCTTGGTCTGGCCGCTAAAGACGGCGCCGCCTGACAAAGCGTTCAAGGCATCTTGCTGCTTCTGTGGTTGCATCATTGTCGCAATAATGATCAGCACTGAAACAATGATCAACAGCGTCATAATAAAGTTGTACAATGCACTGCCTCCAATTTATTCTACAATTACTTTACTATTCTATCATAGATAGACTTACTTTGTCTTAGTTTTTTTCAGTTCGGGCGCGTCAGTTTTATAAAGACTGCTTGCGTCCTTCTTGCCCAGCTGGCTCTTTAAGCTGGTCTTGCTCTTACCGGCTTCTGCCAGCTTCTTTAAAGAGTCAGTCTTATTGTAGTCATAGTCACTGGTCTTGACCGGAGTAAACCAGGAGGGGTGGTAGAAGCGGAGCAGGTTCCCGGTCACGACCCGGTCAGACAGGGTCAGCTGGGTCAAAACCTGGTTGGCGATCAAGCGGCAGGCCTTCTTTTCCTTAGTGCCGGTGACCTTCTTGCCCGTCCTGGTGTAATAGTAGCTGCTCCCCACCTTGGTGTAGGTCGGGGTAATAAAGTTCCCATTCCGCTGGGCCACCACTTGCGGGTTCTTTTTGCTTAACAGGTCATGGCCAAACAAAATCAAGCCCTTGCTCTTGATCCCCAGCAGGTTGAGCAGGGTCGGCATCACGTCGATTTCCCCGCCGTAGGTATGCTTAATGCCGCCTTTTAAGTTGCTTGAATAAAACATGAGCGGCACTCTTTGCTGCTGCTGGTCGTCAAACTCCCCGTAATTTTTCTTCCCGGTCAGCTGGGCCATGGCCTCGTTGTGGTTGTTGGAAATCCCGTAGTGGTCCCCGTAGAAGACCAGGAGGGTCTTTTTGTCCAGGCCGGTCTTCTTCAGCCAGGTCATGAATTCGCCGATCGCCTGGTCCAGGTAGTGGGCCGTCTGCACGTAGCCGTCAACCGTGTTGTCCCCGGTCGTGGTCTTCTTGATCGACTGGTTCTGCTTGTCCAGGGTATATGGATAGTGGTTGGTGACCGTGATCATCTTCAAGTAAAAAGGCTGGGGCAGTTCAGAGATGTACTTGGCCGACTGCTGGAAGAAGATCTTGTCCTTTAAACCGTAGCCCAGGTACCAGCTGTTTTGGTACTGGTAGTAGTTCAAAGAAGCAAAATAATCATAGCCAAAAGACTTGTAGGCATTGTTCCGGTTCCAGAAGGACCCCGTCCCCCCGTGCATAACGGCGGAAGTATAGCCGCCTTTTTGCTTCAAAATAGCCGGCATGGATTCAAAAGTATTGCTGGTCCCGTAAGTCGACATGGCTGACCCCGACTGGACCCCGAAGAGGGAGTTTTCCAGCATCAGTTCCGCATCAGAGGTCTTCCCCTGCCCCACCTGGTTGAAGAAGTTGTCAAAAGCCAGAGTGTGCTTGGAATGGTAGATCTTGTTCAAGTTGGGCGTGACTTCCTTGCCCTTCCACTTGTAGCCGATCAAAAACTGCTGGAAGCTTTCCAGGTGGATAACGATGACGTTTTTCCCCTTGGCTACACCCGTATAAGCTGAATTTGGCTGGACGTAGTTGGCCTTGAGGTACTTTTTAACAGAACTCAAATCCGACACCTTGGCATTAGCCATCTGGGCGTTGGTCTGAGCCGTCTTGATCCCGTCATAAAGGGCATATTCGTTGATCCCTAAATACTTGACGATGTAGTTGTTGTCAAAAGTCCGCGTGAGCAGGCCTGACCGGTCCTTTTGGGCCAAGAGGAGGTTGCCCCCCATCAAGAGCAGGGCCGTCAGTTCAATGGCGACCTTCCTTTTCCAGGACTGAGCGTAGAGGTCCATTTTGAAAAACTTCCCCAGCAAAAGCCCCAGCAGGATCAAGGGGTCAACAAAGGCTAAAAAGTCGCTGCCCTTGAGGATGCCGGCAATGCTTTTGCCCAAATTCTCCGAAGCGCTGCCCGAATTCTGCAGCAGGGAGAAAGAGAGGAAGTTGGAGAATTCCCGGTAGTAAAGGATGTTGGCGAAAAGCCAGGTCGCCAGGAGGAAGTCCAGGACAAGCATGGTCCAGTAGGACTTGCGCCCCTTCATCAGCATCCCCAGACCCAGGATCAGCATCCCCGACGGAATAGGGTTGATGAGCAAGAGGAAGCCCTGCATCGGGCCCGTCGCCCCCAGGGTAAACTTGGTCAGATAGATTAGGTAACACTTGAGCCAGTAGCCGAAGACCGCCAGAGTAAAGAAGCCGTTCTTCGACGTCCGCAGCCAGGTCCCAAAGGCCTTGATTTTCTGCATTTCTTTCACCTCAAAAAATCAGTCCCGCAACTTGGCCGGCTTGAAGGACCAGCCAAAGATGCCGAGAATCATGCCGAAGAAGTAGGTCGCGAACCGCCACAAGAACATGGCCAAAACGACTACCCCCGGCTGGCTGATGAAGCTGGCAAAGAGGGTCTGGAAGCTGAATTCCGCCCCGCCACTGCCCCCAGGCAAAGGAATCACGGCCATGAACATGATGATCAAGATCGTCATCAAGGTCACTTGAACATAGTCAACTGGCTGACCCAAGGCCCGCAAGGCCAGGTAAGGAGCCGAGTAGTAGCACAGGAGCTGCCCAACCGTCAAGAGAACCACGCCCCATAGCTTTTTCTTCTCAGCCTTAAGGGCCTGGCTTTCCTTGTAGAAGCTTTCTACTTGCTCCAGGGTAGACTTCTCCCAAGCCTGGGCCCTTTCCTGGCCAAAAATCCGCCCCAACAGCTTCATGACCTTTTTAACAGCCTTGACCGTCCAGTTATGGGCAAACATGGCTAACAGGAGCAGGATGATGGAGAAGACGTGGAGGGCAAAGCCCAGGAAAATAAAGATGGCTAAAGCCGAGAACTTGCCGGCCACAAAGTGAAAGCCGAAGATAAAGGCCGTCAAATAGGCAAATAAGACAACCAGCTGGTAGCAGATGAACTTCATCATCAAAATCGAAGTTGCCCGGCCGCCGGCCATGCCCATTTCCACCATGGCCGCCAATTGCGACGGCTGCCCGCCGGTGGCCATCGGGGTGATCCCGTTGAAAAGGGCCTGGATGAGCGGAATCCGCAGATAAGACCAGAAGCTCCGCTTGGCTGTCCCCGGCCTTTTGGCCAAAAGACGGAGGATCAAGGCCTCACAGACATAGGACAAGGCCATGGCCAAAAAGACCAGGACCAGGCGCCAGGGAATAATCTGCCCGGCTGCCGCCTTTAAAGTCGCCATTGGCGTGGCCCGGAGGTCAAAGTACAAAACAAGGGAGCTGATCAATAAGACGATCAGGAATCCCCACAGATTTTTCTTATTCATAGCTGATCTGCCCCAATTCCCGGCCCAGCTGGTACTGCTCCTGGTAGAAGTCCCGCCAGATTTCAGCCAGGTGGTCTTCAGAATACTGCTGGCTGGCCTTGCGGGAAAGCTCCTGCTGGCGGGCCAGGACTTCCGGATGGGTAGCCGCGAAGCGGAGCTGTTCGTTAATTTCAGCAGAGTCCTTGCCGGCCAGGTAGTAACCGTCAATGATCGCCCGGTAGAGGTCCAGGTCTCTGAGCAAGACCGGGGTCCCGCAGCTGAAGGCTTCCAGAACTGACATCGGGAAGAGTTCGTCAAAGGACGGCAAGAGGAAGAGGTCGGCCATGTTCAAGTAGTCAACCAGCTTCTCCCGGTCGATGATGCCGGTAAAGGTCAAGTTCTTGGGCGGGTTCTCCACCAGCTGCTTGAAGTGGTCATAGCCGTCCGTTATCTTGCCGAAAGAAAAGCCGCCGGCCCAGATAAACTGGTAGTCGGGGTTGGCTTCCGCCAACTTGGCGAAGTCGTCGACCCCTTTTCTGGCCTGGACCTGCCCGTCGCCAAAGACAACGAACTTGTCCTGCGGGATGCCTAATTCCTGCCGGGTGGCGTTCTTTTTGGCCTGAGTCTGTTCATAGAACTCACTCTTGGCCACGAAGTTCGGAATGTAGCGGATCTTGTTTCTGTCCAGGCCGTATTCAGTCAGCTTGTCGATGAAGATCGGGTTGACGACCACGATCTGGTCCATCCGCTTGTAAAAGTCAATCACGTACTGGTAGAAGACCTTTTTAGCCACCCCTGGCAATTTGATTGACCTTTCCAGGGTATCTGGCAAAAAGTGGACATAGCCGATCTTGCGGCCTCTGGCTGGTGAAAAGCTGTTGGCGAAGTAGGTCGGGTTGATGGTGTGGTAGTGGGTCAAGTCGCTTCTGCCGTACTTGTTGATGGTCACGTAGAAATCATCGACCAGGTGGGTCCTGAGAAGCCGGATCAGTTCCAGGTAGGCTGCCCCGACCCCTTGGCCGGCAACTGAGTCCGCCTGGGAAAACATGTTGATTCTAATCATTGCTGTCCTCTTTTTTCACTTGATAGTTGTCAATCGCGTACTGGTAAAACTTGCAGACCTCGCTGGCAAAGTGGCTGGCGGAAATTTCTTCCAGCTTTTTTGCCAGGAGCTGGGGCGGAATCTCCTGCCGGCCCTGCCGCAAGTAAGCCGCGATTTCTTCCTTCATCTGCCGCAAGCTTTCAAAAGTCAAGCCGTAAGCCGGGTCATTGAAGACCTGGTCGGTGTAGTCGGTCTTGTAAACCACGCACTTGCGTCCGCTGCCCAGGGCTTCGATATAAGTCAGCCCCTGGGTTTCCGTGTCGCTGGCTGAGACGAAGAAGTCGGCCATCTTATAGTAGCTGGCGACCTGGTCATGGGGAATATTGCCGGCAAAAATCACATGGTCTTCCAAAGTCAGGCGCTCAACCTGCGCTTTTAAGACATCCACGTCCGGGCCGTCGCCGGCGATAACAAAGACCAGATTAGGGAATTCAGTCAACAGGTCTGGCATGACCTGGAGGATGCGGTCAATCTTCTTTTCCGCGGCTACCCGGCCCAGGGTGATGATCACCTGGGCATCCGGGGCAATCCCCAGTTTTTCCCGCAGATCCGCCTTGTCCGGGCCACTGATGGCGTCCAGGTCAACCCCGGTAGGAATCACCCGCATGGGGATTTCCACCCCGTATCGGGCCAATAAATCCGCTACCCGCTGGCTGGGCGCGATGACCCCGTCCATATTCTTCAAGTAGCTCTTGGTGAACTGCTGGACATGAACTGGCCGGAGCAAGTGGCCGTTTAAGACATAGTGCAGGTAGTTTTCGTACATGGTGTGGTAGGTGTGGATAGCCGGGATGCCCAATTGCCGGGCCACGTACTTGCCAATTAAGCCCATGGAAAATTCGGTCTGGGTGTGGACGATGTCCAGGTTGACCTCCTTGGCCACCTTGACCGCCTCAAACAGGCCCCGGAAAGCAATCCGCCGCTCAGAGAAGCCAATGAAGGGCACGGAGCTGAAGCGGAAGATGTTGGCTTCAACCGTGTCCTTGTCGACGTTGGGATCAGTTGTCGTGAAGATGAAGACATTGTGACCCTGGGCCTCCAAAGCTTCTTTAAGGGTTTTGATCGACGTCGCTACCCCGCTGTTTTGCGGGAAGTAGGTGTCTGTAAACAAACCGATATTCATGTGCTTTCATTACCTCCATACTAAAAGACATTATAGAGAATCGGCAAAAGAGGTGCAAATTTCTTTACCAAAATCCAAAGAATAAAAGATATTTGCTGCAGGGAAAAAGATAAAAGAAAAACGACTCCCAAGAGGAAGTCGTCTCAAGCGATAGCGGTGATCGGGGTCGAACCGATACGTCCGTAATGGACACCAGATTTTGAGTCTGACGCGTCTGCCAATTCCGCCACACCGCCGTGATATTAAAGTTGAATAGCGGTGATCGGGGTCGAACCGATACGTCCGTAATGGACACCAGATTTTGAGTCTGACGCGTCTGCCAATTCCGCCACACCGCCATGCTATTCTACTTGGCCGTTAAGCCTAAGGCGGCGATCGGAGTCGAACCGACGATTAAGGTTTTGCAGACCTCTGCCTTACCACTTGGCTACACCGCCACGATTATTCTTTTCTGCCCTTCGGCTAGGGCGGTATGTGGGAATCGAACCCACGAATGCTGGATCCACAAACCAGTGTGTTAACCACTTCACCAATACCGCCATATTCTGTTAACAGGGATAGTAGGAATTGAACCCACACCGACGGTTTTGGAGACCGTAGTTCTACCTTTAAACTATATCCCTATTATGGAGGAAAGTGGATTCGAACCACTGAACTCAGAGAGAGCGGTTTTACAGACCGCCGCGTTTAGCCACTTCGCTATTCCTCCATTTTCAATGGCGCGGGACGGAATCGAACCGCCGACACATGGAGCTTCAATCCATTGCTCTACCAACTGAGCTACCGAGCCATCAAACGGTCCATGCGGGATTTGAACCCGCGATCTCCTCCGTGACAGGGAGGCGAGATAAACCACTGCTCCAATGGACCATATTGCGGGAGCTGGATTTGAACCAACGACCTTCGGGTTATGAGCCCGACGAGCTACCAGACTGCTCCATCCCGCGATAATAAAAAGGAGGATGTGGGATTTGAACCCACGCACGAGTCGCCCCGTCTAACGGTTTTCAAAACCGTCCCCTTAAGCCACTTGGGTAATCCTCCATTTGATGGATAGAAAAATATTCAATTCTTGCCTTCCGGCAATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCGCGTAAGCACTCTTAAGATGATACTCGCTTAAACTCATCTTGTCAAGCGGCTTTCTCAATCTTTTCAAAGGCCACTTGCACCGACGCTCGCGCGTCAACAAATACTAGAATACAGAAAAATCCTGTCTTTGGCAAGTCTTTTTTAGAAAAAAGAGCTACTTTTTTGCCTTTTCTCCTGCTTCTGCCCTCTCTCCTTCTTACTTTTAGAGTTAAGCAGCTTTAAGGCACAAAAAAAGAGCTGCGGAACAGCTCTTTATCAGGCGGAGTAAGAGAGATTCGAACTCTCGCGCCAGTTTCCCGGCCTACACCCTTAGCAAGGGCGCCTCTTCAGCCACTTGAGTATTACTCCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCTGAGCTACAGGCCCATAAGCGGGTAACGAGAATCGAACTCGCGACAACAGCTTGGAAGGCTGTGGTTTTACCACTAAACTATACCCGCAAATATTCAATTTATGGCGCGGGACGGAATCGAACCGCCGACACATGGAGCTTCAATCCATTGCTCTACCAACTGAGCTACCGAGCCAGCTTATTAAAAAGCAATTGCGGGAGCTGGATTTGAACCAACGACCTTCGGGTTATGAGCCCGACGAGCTACCAGACTGCTCCATCCCGCGATAATAAAAAATGGACCTTGTAGGACTCGAACCTACGACAGGACGGTTATGAGCCGTCTGCTCTAACCGACTGAGCTAAAGGTCCAAGTTTACAAAATAGCGGCGGGGGGGATCGAACCCTCGACCTCCCGGGTATGAACCGGACGCTCTAGCCAGCTGAGCTACACCGCCATACTGTAACCAATATGGAAAATATTAAATTACAAATCGGGAAGACAGGATTTGAACCTGCGACCCCCTGGTCCCAAACCAGGTGCTCTACCAAACTGAGCCACTTCCCGGATTTATGCACCCAGTAGGACTTGAACCTACAACCTTCTGATTCGTAGTCAGACACTCTATCCAGTTGCGCTATGGGTGCATGCATGCCGAAGACCGGGGTCGAACCGGTACGGTTGAAACCAACCGCAGGATTTTAAGTCCTGTGCGTCTGCCAATTCCGCCACTCCGGCATATATACTATAAAAAGCGGAAGACGGGATTCGAACCCGCGACCCCCACCATGGCAAGGTGATGTTCTACCACTGAACTACTTCCGCACAATGCCGATTATACGACTTGAACGTACGACCCCCTGTTTACAAGACAGGTGCTCTACCAACTGAGCTAAATCGGCATGATATAAAATACGGGTGGCGGGACTTGAACCCGCACGTCCAAAAACACTAGAACCTAAATCTAGCGCGTCTGCCAATTCCGCCACACCCGCAGATCGGGGCCATGAGTCGTGAGGGACTTGAACCCTCGACCCTCTGATTAAAAGTCAGATGCTCTACCGACTGAGCTAACGACTCGATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCATATGACTAGTTTACGGCATAGGCCGTAAGCACAAATATTAGTATATCGTATTCAGCCAGGAATGCAAGTCTTTTTTGCCTTTTTATTTTGAAAAAGCAAGGCGAAACACAAAAGAACAGCGTAAAACCGCTGTTTTGGGAAAGATTTTAAAATCAATTACATAATGTTGATCTTCTTGTTGGCAATCAGTACGATAGACAGAACGCAGAGAATTGCAATAAAGATAAAGGTGATCTTTTCGTTCTTGTTGAGCTTTCTGCCTTGTTCACGGACGCCTTGGTAATAAACGATTAGGCCTGGGATGTAACTCAAGGAAACAACCAAGACTGATTGCCAGCCAGCCAAAATCATGCACATGAATTGGAAGAGGGCTGCCAATAAGCCGTAGATCCATTGAGTCCATTCCTTGTGTTGTGTTCACGGCTGAACTTCATTTGGTACAAGCCGACAAACAGGTATGAGAACAAGATGGCACTTGAAGCCAAAGTGTAGCAGAATTCGTAAGCCTTGTCAGTGAAGAGCAAGGAGAAGAGGAAAATGGTCTGCAGGATAGCAGTAGTGAACAGGGCGTTGGTTGGCGCCTTCTTGCTGTTCAGCTTGCCCCAGAACTTAGGAGCAGCACCGTCTTCAGCGATCAAAAGCATGGTTTCTGCTGGTAGCATGGTCCATGACAGCCAGGAAACGATAGTGGAAATGATCAAACCAATGTTGATGATCATCATGCCCCAGTCGCCGACGATCATCTTCAAGTCGTTACCCAAAGCTGGTTGTGCAGCGCTGGCCAATTGGGCCCGGGTAAGTGAGCCGCATGGCAGGATTGAAATCATCATGTAGAAGACCAAAAGCAGGACGAAACCAAGCAATAGTTGCTTGTTGCGCTTCATTTAGGCTCTTGGCACGTGACCCCATGACTGAGGCCCCTTCAACACCGATAAATACCCAGATCAGGGTCATCAAAGTCCCCTTCATCTGTGGCCAAAGGCCGCCAGTAGTGGTCCCCTTGGACAGGTTGTTGGCAACTCTGCCCCAGAAGTCAGCGGTGAACATCCCGCCCTTGAAGGAAACGATGCAGATGATTACAAACATAATCAATGGCACAACCTTGCAGAAAGTACCGATCGTGTTAACGAATGAGGCACTTTCAACACCGTTGTTAACCAAGAAGGTCAAGGCCCAGCAGAAGATGATAGCCACGATGATTGAAGGCAGGTTTGAACCGCCCTTGAAGACCGGAATAAAGGTCCCGATCGCGCTCATCAGCATAGCCGCAAAGGCCAGGTTGCCCAGTCAGGCACTCAGCCAGTAGGCCCAGCCGGAAATGAATTCGCCCAGAGGGCCATAGCCAGCCCCGGTGTAAGCGAAGATATCACCCTTAAGGTCGGATCTCTTCTCAGTCAAATTGTTCAATGACAGAACAAGCATCAAGAAACCAAAACCGACCAGCAGCCAGGACAAAATAGCGGGCCCTGGAGCGGCAGATTGGGCAATGGAACTGGTAATGACGAAGATCCCAGTCCCAATGGAGGAACTGACGATCAAAGCGGTCAGGCCGACAAGGCCTATCCCGTTTTTGTTTACTTTCTCTTCCATGATTTTTACCTCCCAAATACTCTTTCCACCTAAAAAGGCGGAGATAGTCTAAGCCCTTGAGCGATAGACCAGCTCCGCGATTTTAGGATCTTAAAACCAATTAGATGTCTTCACGAACAATTGGCCGGCACCATGCACCTGGGCCAAGTCCACGAAGGCCTGCCCTTCCAGCCAGTTTGCGCTGACAAGGACGAAACCGACCCTTGAAGGGGAAGTTGCCTGGTATGACGACCAAGGTGCCGTTTGCCGCTGCCTCAACTGGCGGGATGCCCAAAGAACCATGCTGGATGAAGATTCAACTAAGGGCGTAATCGTAATTGAATCAGTCAACGCTGACCAGGCGCAGCGAGCTAACGAAGCCATGAGCGACTTGAAAGAGCTTTTGGGAGAATTCTTCGGCATCAAGCGGGACAAGTCCGTCATCTTGCCCAAGGACGCGCCAAGCGTGGACGTTGACTAAAAAACTATCAACAAGTTTTCCACAAGCAAAAAGTCTTACCCGTCATAGGTAAGACTTTTTTCGATTGACTAAAATATTTTACTTCTTTTCCTGGCTCCAGACCTTTTCTCCGCCAATCCAAGTCGACGCCGGCTTGACCTTGGCTAAGTCCTCTGCCTTTTGACTGAAGATGTCTCTGTCCAAGATGACAAAGTCGGCGTCCTTGCCCGGGGTCAAGGTTCCATTATTGACGAAGCCGCCCATCTTGGCCGCGTCTCTGGTATAAGCCAGGATGGCCCGGACTACTGGGATACCTTCATCTTCATTAATAAAACCGCCTGCTGCCGTGTGCCGGGTCACTGCCGCGTAGATTCCGTAAAAAGGACTGTCCGGTTCCGCCCATGGGGTGCATGGGGCATCAGAACTGAGGCTGAAAAGAATATTTTCTTTGTCTAAGCTCTTGATCCGGTAGGCCATTTTCAGCTGGTCCGCTGACAAAAACTGCCGGTAGAAATCTTCTTCGGCGAAGAAGAAGATCGGCTGGGTGGAAACAGCCAGGCCAATTGTTGGCCCCTTCAGCTCCTTGAGCATGGAGTCGGATAAAAGTGAAGCGTGCTCGATTCTGACCGCGACTTCCCGCATGAAGCCAGTTGGCCGGCCGGAAGCGTCTTTTTCAATCTTCCCGCCCGCCGGGTCCGGCGTATGCTCATCAATTACTGCCAATTCCAGAGCCCGGGAGTTGCCCACAGAAGAGTGGCAGTCAGACCGGTACAAGAAGATCGGCTGGGTAGTTGACACCTGGTCCAGGTCATCTCTGGTCGGGCTCCGGTGTTCAGCCAACTTGCTTTCGTCAAAGCCCCAGCCCTCAATCCAGACGTCAAGCCCCTGGCCATATTCCGGAGTATGGCGGAGGGCTTCCTGCATTTCACTAATACTGTTAACCAAAGGTGGGGTGCAGGCTGCCCCATGCAAGGCGTCAGCAATATACTTGGGGTGGGTGTGGTTGTCGATCAGACCTAGCAGGACGGTTTATCCCTGAAGATCAATGATTTCACCCCAGCCTTTTTCCCCAATAGCCACGATCTTGCCATCTTCAACCGTGATTGAATCGGTAAAGGCCGTCTCGTTTTCCCCGGTAAAAATTTTCCCGTTTACAAAAGTTCGGCAGTTCATCTTTTTCTCCTGTTTTCCTATTAATCCTAATTCCGCTTATTAAACGCTTACAATTTTATTCTACTCAGAAAGCAGACAAATAAAAGTAAAAATTAGGCAAATAGAAAATAAAACAAGAAAACAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGTGAATCTCGTCTAAGTATGTTGGCTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTGGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACAAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGTACCCGCAACGGCTGGCCTACGTTCAAAGCAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAAGCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAACACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAGCAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTATCTGGTATTGGTAAAAAGCGCGCTAATGACATAACGCAAAGCCTTATTCGTTTGGCTAAAGTCGCATGCCCAGCTGTCAAAAAGAACAGTGCTCATGTCCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAACCCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAAGAGCCAGACTTCCGTCTGACTCTTGTCTCGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTACGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCAAAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAATGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAACGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGTAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAACTTGGCCTTCCGGCCAATGGAGGCAAACGGGATCGAACCGATGACCTCCTGCTTGCAAAGCAGGTGCTCTCCCAGCTGAGCTATGCCCCCGTAAAATATCAACTTTTAAGATGTTACTCCATCTCGGCTGAAATGTAAAGACTTTTCTTTGCATTTCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCTGAGCTACAGGCCCAAGTTCTTATCGTTGGTACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCCGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTACCCGAAGGGAACCACCTATCTCTAGGTGTAGCGCAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTACGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTGCGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACATTGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCAAGTGACGCAACGCTTTATATCTTACTCGCTTGTTTGATTCTTGTCAACAAGTTTTTGATATTTATTTTTTGCCTCCGCGAGACTTGTTTGTCTCACACGGCAACAGATATTAGTATACTAGCTTTTTCTGATTCGTCAAATTTGTCATTTTATTCGGTTTATTATGTGAACACACGGCAGAGTTGTTGTTGCTCAGCTTTCTCCTTCAGCGGCAATAAATCGGATTAACAGCATTTTTCCTTCTTTTAACAAAGGATTGTTCTTATTTCGCTTGCTTTTCCCGAAAAAAGCAGAGAAAATTTCTGCGATTTTTTCTAAAAATCGGCAAAAGAAGCTGAGCAAAAAAATGGCGACCTAAGTCACCATTTTCTTCACTCCATCATACTCTTTTTTCCCAGTTTTTTCTTTTCTCTCTACACTCTACATTCTTCAAATCTCTGTATTTTTATCTCTGCAGTTTGGCAACCAGCTTGTTTGGCAAAACGAAGCTCTGGCTGCCCATGGACATTGGGCCAACTTCGCCTTGGTTGAAGACGATAACCACCTGGTTCTTCTTGTTGATGTAGAACTGCTGCTTCTTCTTGATCTGGCTGAAGCCGTCCGGATTGCCATTTTCCTTGAGGAAGTAGCTCTTGTTCTTGTCAGCCTTCATTTCCTGCTTCATCTGCTTAATGATGTTCTGGCTGATGGCCTTTTGGTAGTTGCTGCCGCTCTTGAACAAGTCCCCCAGCTTGACCTGCTTGCCGCTGGCCTTGCTGAAGACGTAGTAGCGGCTGCTTTCCCCGCTGTCAGCTTGCGTTTGCACGGCTGTCAGCTTGACCACGTACCAGTAGCGGTTGTTAGTCACTTGCTTGGTCTTGACCGTCAAAGAACCATAGCCGCCCTTCTTCAGAGATGCCTTGAATTTCTTGGTCAAACGGTCAGTTTCCTGGACAATTTCTCGGTTGACTGCCTGGCTGCTCTTCTTGGCCTCCTTGGTTGCCGGCCCGGTTACCCCGCTGACGGCAACTTTATCAACAGAAATATCGGCTGAATGCTTGCGGCTTTCATAGTGGTAATCACGGAAGGTCACCAGCTTGAAGTAGTTCCCCACAACTAGCAAGTTCTGCATGGCATTAGCCACCTGCGGACTCGTGTTTGGCAAAGCCACGCTGAAAGCAGCCGCGGCCGCGATCCCTGCCACCAGGCGGACCCACGGCTTGCGCTTGGCTGACAAAGGAATGACCTTCTTTTGCCCCCGGCTGGCTGCTGCCTCCACGATGTACTCAGTCTTGATTCCGCCCATTGCATCCATTAAGTCAGTGTTTTTCATAATAATATCCCCTTTAGATATACTTTTCTTCCTGCAGCTTTTTGCCCAGCTTGCGGCGCATCCGCAATAATGATACCTTGACAGCCGACACGGTCATCCCGTTAGCTGCCGCAATATCGCTGACAGCATCCATGTAAAAATACCGCTGAACAAAAATAATTCTTTTTTCTTTTGGCAGGCCTGCCAGAAAATCATTGATGATCTCCGTCAAAGCGCTGCTCTCAATCCCTTCCAGCTCTGCCGGCCCCTGTACCGCGCCGGATAACTCTCCAATTTCATCCAGCGAGGTGGTATATTGATCCCCAGCTCGTTTCTGCCGGTTTTGGTCGCGGACCATGTTCAAGGCTCCGTTGCGCGTGACGCGCCCCAGGTAGGCCAAGAGGCTCTGCGGCCGCTTCGGCGGAATCGTGTTCCAGGCTTTCAGCCAAGTATCGTTCAGGCACTCCTCAACGTCCTCCTTATCCCGCAAGATGTTGCGGGCAATCGTTGAGCAGTATGCCCCATATTCACTCTGGACTGAAGTGAGAGCAGCTTCGTCTCTGGCGAAGAACTGCCCGATGATTTCAGTTTCTCTCACTGTCTTTTTCCGTCCTTTTACTTTTTGTTTTTCGAGGCCCTCATCTCCTCTACCCTAATAGACACCTAAGGGAGCTGAAAGGTTACACTTTTGCAAAAAGTTTTTTAGAAAAATTTTCCACGCAAAAAGGAACCCCTCCGCGGAGTTCCTTTTTGCACTAGTGCCACTTAACTTCTGGCGTGATCTTGGTCATGCCGTGCATGTATGGACGCAAAGCTTCTGGTACGGTAACCGTGCCGTCTTCGTTTTGGTAGTTTTCCAAAATAGCGGCAACTGTCCGGCCGACAGCCAGGCCTGACCCGTTCAAAGTGTGGGTCAGCTTAACCTTGCCGTCTTCGTCACGGTAACGGATTTGTGCCCGGCGGGCCTGGAAGTCAGTACAGTTGGAGCAGGATGAGATTTCCCGGTAAGTGTCCTGGGCTGGCATCCAGACTTCCAAGTCGTAAGTCTTGGCACTGGTGAAGGATGCATCCCCGGTTGACAAGGCTACAACCCGGTATGGCAGACCCAGCTTTTGCAGCAGGTGTTCAGCGTTGTGGGTCAGGTTTTCCAGTTCCTTCCAGGAGTCTTCTGGCTTAACTACCTTAACCATTTCCACCTTGCGGAATTCGTGCATCCGAATCAGGCCCCGGGTATCGCGGCCAGCTGAACCAGCTTCACTTCTAAAGGCTGGTGACAAAGCAGTCACATTGATTGGCAGGTTCTTGCCATCAATGATGTCACCTCTGAAGTAGTTGACCAAAGGAACTTCAGCAGTTGGAATCAAAGTCAGGTTCCGGGCTACTTCCGGGTCGTCGTTGTCAACAATAGTGTAGACGTCTTCCGTAAACTTCGGGAATTGGCCAGTCCCTTGCATTGAGTCATTGTTGACCAAGGATGGGGTGATGACTTCAGTGTAGCCTTCGCTGGTGTTTTCATCCAGGAAGAAGTTGTAAACTGCCCGTTCCAGCAAAGCGCCGGCACCCTTGTAGTAAACGAAGCGGGCTGCGGAAACCTTGCTTGCCGCATCCCAGTCCAGGATGTTCAAGTCAGTGCCCAGGTCCCAGTGAGCCTTTGGCTGGTAGTCAAACTTGGTTGGTTCGTTCCAGCGGCGGACTTCTTCGTTGTAGCTTTCGTCAGGGCCAATTGGGTCTGAGTCAGCCGGGAAGTTTGGCAAACGGAGCAGGATGTATTCTTGCTTTTCCTGCAATTCGTCAACTTCCTGGTCCAATTCCTTGATCTTGACGCCGACTTCACGCATGTTGGCGATGGCTTCACTGGCGTCTGCCTTTTCCCGCTTGGCGGCAGCAATCTTCTTTGAAACTTCGTTTCTTTCTGCCTTCAAGTTTTCACATTTCACCATAGCTTCCCGGCGCTTGGCGTCGATAGCTACCAGTTCATCCAATTGCTCAGGCTTGATGCCCCGAGTTGCCAACTTTTCCTTGGCCCAGTCAAGATTCTCGCGAATGACCTTAATATCCAGCATATATAACCTCCGAAAAAATAAAAAAACCGGTCCGTCCCAGTCTTGGGACGAATCGGCGCACGGTTCGCGGTACCACCCAGTTTCGGCTCAAAGAGCCGCACTCAGTTGAGCGTTAACGGTGCCCGGCCGTGCAATGATTAATTGCCCACACTAATGAAATCTGGAAGCGACCGCCGTCCGCTCTCAGCATACGCGGACTCTCTGTCGGCAGTCTAGGGATTTCGTGTTTGTCTCTATTCTATGCTATTCGCTCCGTTTTAGCAAATAATACTTGGCTGAAAAATCCAAAAAAGGCGGAATTTGCCGGTAATCGACTTCATACATCTGCCGAAAGCCCAGCTTTTGCAATAAATGCTGGGGCCGCAAATTGTTTGCCCGGCAGCCGGCCCAGATTTCCTTGATCTCCGGATCTTTAAAAGCCTCCCCTAAGAGGCAGTTGATGCTTTCAGTCATGTAACCCTGCCCCTGGTACTTTTTATCCAGTAAAAAGCCCAGCTCCCGGGACTGGCCATCCCGGGGGTACAGCTCCAGCAGACCGATCGCCTGGCCCTTTTTCAAGCAAATCATGTAGCTGGCCGGCCGCTGCTGGTAGGCCAAGGCCCCTTCTTCAGCTTCTGGCAGATTCCGGTAATGGGCAAAGCCTGCCGTCTCCTGGTAATAGGGATCCTGCCCCCAAGACAACAGCAGCTCAGCATCTTCCGGCCCGACCGGCCGCAAATATATCCGCTCACTCTCCATCACATCAGCCTCATGATCCAGCGGGCCCCGTAGACCAGGCCCAGGCTGTAGACCGCGATAGTCCAAGGCTTGCAGAGAACGATAATCCAGAAGTAGGTCCAGGGCTTCATCTCCGTTAGACCCGCTAAAAGGCAGAGCAGGTCATCCGGAGCTACCGGGGCTAAGATACAGATGGCAAAGAGCCAATTGAACTTCTTTTGGTTCTTAGTCCACTTGGTATACTTCTCCAAGCTCTCTTCCGACACGATGTGCAAGATGAAGGACTTGCCGTAGTAGCGGGCCAGGAAGAAGTTGATCAAGGAGCCGATGACGATCCCGATATAGTTGTAGATAAAACCGGGCCCAGCGCCGAAGAAGACGACCCCGGCCAAAAGGGAGACCCCGCCGGGGATAATCGGGATCACGACCTGGATGATCTGGATCAAGACAAAGATGATGGGGCCGAGGATCTTTTTGTCAGCCAGATAGGCGCTCATCTTCGCCTGGCTGGTAAAAATCCCCAGCTGGTACCAGTAGATGCAGAGGCCAATGATCACGATGGTTGAAATAATGGTCAACCGGTTGATCAGCTTGCGGCTTTGTTCGTAACTCATGGTCTTTTCCCCCTAAAAACAATTCCAGGATAATTTTAGCAAAAAGCCTCCGGCAGCCCCACCAGTTTGCTTCAAGTTTTACCCAAACTTATCCAAGTTCCTTGCAAAAAAGACAAAAGACAAGCAGAAATTATTGCTTTGAGTATATAATTAAGTTAGAAGTAAAGATCAGAATTTAAATCAGATCAGAAAGGAAAAATGAGATTATGGTTGTGACTGTTAACAATATCGCTTATGACCTTAAGCATGGTCTCAAGACCGACATCTACTATCCCAACGATACCGACTCACAGACAAAAATCCTCATCTTCTGGCACGGCGGCGGCTGGTTCCGGAGGAGCAAGGAAAGCATCAGGGACGTAGCCATCGACCTGGCCAACGCCGGCTTCATGACCTTTGTGCCCGACTACCGGCTGGCTCCAGCGAACCACTTCCCGGCTGCCCACGAGGATGCCCTCAACTTCGCGGCCTGGCTTTTAGCTTCAAACTACACCGACGAAGGCGATGAAAACAATATCGTCCAGATCGGGGCCAGCAGCGGCGGCACCCTGGCTTTGAAGGTGGCCGGCATGTACGGCTTTCCAACCGTCACCTGGTCAGCCCCGGTCGACTTCAGCAGCTGGCTGGCCGACCACCAGGAGGTCAAGCCCTCAGTCAATGCTAAAGAAGAACTGGGCTTGACCAAGCAGCAGGCCATCAATGAAGCCTTTTACAAGTACTTCGTCTTGACCTATGTCGGCAGTGAAGACTACGACCTTTTGGCCGACCTGGACGCTCAGAGCTACGACTACAGCAAGTTGGGTCGCCTGCTCATGCTGAATTCCGCGGCTGAACTAACCGACCTGGCCGGCGTTACTAACTTTGCCGGCCACCTGGCCGGCCGTGGCCACCAGGTTGACCTGGAAATCATCCCCGGCCACGGCCACGCCATGGACTACGGCCGGGAATATCTCCGGGAAAGCATGACCTATCTCAATTATGCCCTCAGTCTGAAAACAGGAAGCGAATAGCCATGATAAACATTGAAAAATTCATCAAAATCCGCAAGTCACTCAAACTCTCCCAAAATGAGCTCTGCAACGGGATCTGCACCCAGTCAACCCTAAGCAAGTTCGAAAACAACGGGCAAATCCCCTCTTTCAAGATCCTCAAGCAGCTCTGCGAGCGGATGAACATCTCTTTATCCGACATCGTGCTGACCAGCACGGAAAGTGAAATTGCCCAGAAGCTTTTTTCCGCGGACTTCTACTTTATCACCTACGACTATGACCAGGTCCGCAAGATCCTCAAGCAGGTCAATGAGAAAAAGATCCGCGACAAGCAGGACCTTCTGCACTACAACTACCTCTGCGGGCAGCTGGCCCTGGACGGGGACCACAACGATGTTTCAGCTCTCTTCTATTTCAACAATATCTTGACGACGGACAACCTCAAGGCCGACAACATCTACCGCCTCTTGGCCCTTAAGGGCTGCAGCCAGGTTTACGCCAGCCAGGACATGGACAAGGCCTCTCACTACTTTGACCAGATCCTGGGCCAGATCAAGAAAGTCGAAATTAAGGACAGCCTAAGAGAACTCCAGGTCATGTCCATATTGACGGCAGCCGGTGAATTTTATGGGCAAAACGGCCAGTACAAGCACGCTGACGACCTGCTCAACTACGCCTACGAACTGGCATCGAGCCACCATGTGGTCTACTTTTTAGCCCGGGTCGTTTACCAGCTGGCTCTGAACGACTTGGCCCAGAAGCGGTCCCTAAATACTGCCCTGGAGCACTTGCATGACTCCCTGGCCTTCGCCCGCCTGAACAAAAACGAGGTCATCCTCAAAGAAGGCAGCAAGCTCCTTAAAGAACTTGAAGAGAAAGCATAAGAAAACGGTCAATCGCGAGATTGACCGTTTATTTTTCGCCTTAAATAGTGCCGTAGCCAGTCAGCGGCCGGCATGGGCAGTTGTTAAAGTCGTAAGTCTTTAAGAGTTCCAGTTCCTGGTCACCCTTGATAAAAGCAGTTGCCCCTTCAGACAGCATCAAGTTCATGATTGGCTTCTTTTCCGGCTGGTTAGTGAAAGGCACGATGATGACCGGCTTGTTCTGCGCCCGCAAAAAGCCGATTTCAAAGGCGCAGCCGTCATCCAGTTCATCCATGTCGTAGAGGAAGACCCCGCAGTTGGCCATGGACAGGCCGTTGATGTCGTTTTGGTAGGTCTGCTGCTTCCAAAGCAGGCTGCGTTCGTCGCCAAAGCCGACATTCGGGTCTTCAGCCGGGTCGGTTACCTGCTGGTCAAAGGGAAAGTGGACATGTTCAACCGTCGGGTTGGCCGCCAGGTATTCGCGGACCTGCTTGGCCCGGGCTTGATGGTGGTCACGGTGAAAAGATGAACCTAAATAAATACGTGCTGTTGCCGTCATGAATCCTCCTAGTGGACGCTTAAATAATCTAACATGGTGTAAATGGCGCGCTTGTTGGCGCTTGGCAAAGGCTGGGCCAGAATCTCAGCCGGAGTCTGGTGTAAGTCATTGCCGCTTTCAGCGTAGGCGCCGTCATTGATGACGATTTCGCGGACATTGTCAGCCAAAGTCTCTAAGTGAAACTGCAGGCCGATCACGTTGCCATTGACCAAAAAGCCCTGGTTGGCCAAGAGGTCGCTGGAATAAAGCAGGTGGCTTTCAGCCGGCATTTCAAACATGTCCTGGTGCCAGTGCAGGGCCAGGAGCTTGTCTGGCAAACCGGCAATAGCGTCATTTTGCTTGTAGACCGGAGCCCAGCCGACTTCCTTGTGGGCCGCCGGGTGCACGCTGCTGCCTAAGCAGATGGCAATTTGCTGGGCGCCCAGGCAGATGCCCAGAATCGGCAGGTGTTGCTTGAGGCAGTCCTTGATCAATTGCCGCTCTTCTTCCAGCCAGGGCAGGTCATCGCCCGGACTCATCGGCCCGCCCAAAACGACCAGCATGTCAGTTTCATCAGCTTTCGGGAAGATGCCGAAAGTTTCCGGATGGTATACATAGACTTTATTGTCCCGGTCTTCGGCCCAGGCCTTGATGGCCCCTGGCCCCTCATTCGGGGTGTGCTGCAAAACGTTGATCCGCATAATCTCGTCCTTTCAATTTTTAAATATTTTACCATGCTCACCGGATTTTTTCATTAAACGGGAAATTTTTACCAAAAGCTTTGAAAAAATTGCCGTTAAAATATTCCTTCCGCCAATTGCAAGAATAAATTGAACACTTACCATAGCATCTCGTAGTTTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAATCTTGTAGTTTAAGATCTTCCGATGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTTGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAAGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCAATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTGGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCCCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATTGGTGTGGTTTAGTGTTAGAATATGTATGATTCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGTTACTTTTTTCTTTAATCTTTATTACATTACCTACTTTTTAGTGTTTCTTTTGTACTAGTTTTTGCTGCTTAATTCTCAACTTTTAAGTTTTTATTTTTCACGAATCTCCAAGTAGAAAATACCAAGAAAAGGCCGCTGGTCACTCAGACCAGCAGCCTTTTTGTCTGCAAAAAACTATTCTTCACTATTTTGCCTGGGCTTGACCATTGGCTGGAACATGTTGATACCGGCCAAAACCGTGGTCAGGCAACTGACCAGGATCAAGAGGTAGCCGGAAATGCCGATGGCCACGGCATAGCTCTTCAAGCTGGAAACAGCCTGGCTTAAGTAGCTAGCCGCGCTAGTTGTCTGGGCCAATTGGAAAAAGAGGTAGATCAAGACCAGGCTTTCGACCAGGGACAAGGCAAAGGCCCGGACCCGGGAGACCCGGGTATTCTGGCTGACGGCCAGCATGATGAAGACTGGCAAGAGCAGGAAGATAGCCAGGAAGAGGTAGAGAATCAAGGCGGGAACGATCTTACCCGCCGCGATCTGCCAGTTGGCGACTTCAAAGAAGACGCTGGCCACGGTCAGCTTACTGCTGGAGGTCACGAAGCCTGTCCCCAGGAAAAGCAGGACCAGGGTGATCAAGCTAGTCAAGAGGATGGAGAGCTGGATGATGCCGAAGTTCCGGGGCTTCTTGGTCTTCTTTTTCACCTTTTCCACTTCCACCTTAGCTTCAAATTTCGGGTGGGCCTGGGTGAAGTCTTCATTCTTCTCTTCAATTTCGCTTTCCTTATCATCAAAGGCATTGAAGACTTTAGAAGCCCAGTTCCGGATATATTCAGTCAAGTTCCGGTCAGCCGTGTATTCACCCTGGGAGTCCCGGTAGCCGGTCCAGATGAGGAGAGCCATGGAGACAGCAAAAGCCGTCCAGCCCAGGGGCCGGGAGAAGCTCATGATGATCAAAAGGCCCACGCCGACCAAGAAGGCGATCGTGGTGTTGTCTCTCATCCACTGGAGCATTTTTTCCGCGGTTGGGTTGCCGGTAAAGGCATTCCGTTCCTGCTTTTGCTGGTAGGCGGACCGGCTGAGCTTGTCAACTGGCTCTTTTTCTAAAGACCGGTCAGCTTCTTCTAGCTTAGCTTCTCTTATTTCAACATTTTCTTCTACTGCTTCTTCCGTAAAGTAGTCGCGGCGGTATTTTTCCACATTGAATCCACAGTTCGGGCAGGCCTTTTCCTGGCCAGTCAGAGCCTGGCCACAGTTGGGACACTTTTTCATAGTAATCGTCCTTTGCTAGTGTTTCTTTTTCCACATTATAGCATTTTCCTTCCGGAGACAAAAAAGAACCCGCCAAAGATGACGGGTTCTTAATGCATTATTTAGCTTTCATTTAAGACTTCTTGCCGAAGCTGAGGCTCTTCTTGCGGCCTGCCCACTTAGGCCATGGGAAGCCTTCGTAGGTCAGCTTGGTTGAAGCAGACAGGTTGATCGGCATCAGGAAGACCAGGATGGCCAGACCGATGATGACCCCGATGGCCACTTCGATCAGGGTTGGCACGCCTGATGGGATCAAGGCCGCGAAAGTACCACCCAGGATGACGGCAGCTGAGATGACAACCGTCCCGATAACCGTACATGCCTCCAGGATTCTTGCGCTAGACAAGGCATGCGGATCGCTGTCGCGGTAGCGCATCATGACGAAGATGCTGTAGTCGACCCCGAGGGCGATCAACATGATGAAGGTGAAGAACGGCACGTTCCAAGCCAGGGTGCTCCGGCCCATCACGCCGCTGACAACCCAGCGGGTGATTGACAGAGAACTGATGTAGGCCAAGAGCAGAGTCCCCAGGATGTAGATCGGCTGAAGCAGACTCCGGGTGACGAAGATCAAGGCAATGCCGATACCGATCAGCATGATTGCCATAGTTCTGGTAAAGTCACCGCTGGCCGTGTTCTTGGTGTCTTCGATGGTTGAGCTTTGCCCGCCCATTTCGACTTCAGCCTTGCCCAGGTCGGTCCCCTTGAGGGACTTGCGGGCCATAGCGCTCAAAGCTTGTGAGTGCTCTGCGGCACTTTCAGAACTTGGGTTGCTGTCCAGGATGATGATGATCATAGCACTCTTCTTGTCCGGGCTGAGGAAGACCTTGAGGGACTTCTGCAGATCGGCGTTGTGCTTCAAGACGTAGCTTGGCACGTAGAAGGTGTCAGAGGCCTTGGACTTGCGCAGGCCGTTCAAGTATGAACCGGCGGAAACCAGACCGTTGTTGACGGCAGTCAAGCCGCTGGTGATGGCTGGCGTATTTTCAGCGAGCTTGCTTGCGCCGCTGGAAAGCTGGCTGGTACCGGACTGCAGCTTGTCAGCCCCTTGTGACAGGGCCAAAGCACCTGCCATCCCCTTGCTCAATCCACTGTAGAGTGAATTTGAACCTGTGTAAAGCTTGTGAGCGCCGGTTGCAAGCGCGTCAACTGCTGCCTGCAATTGTTGCACTTCCGTGCTCAAGTCGGCCGTAGAAACTGCAGAAGTACCGCTGCCCAGACTGCCGGTGGCACTTTGAATGCCTGAAGCGGCACTATTCATGTTGGTTGCGGCAGTACGGGCAGTAGTCAAGCCGCTGCCTACAGTACCCAAACCACTGTTAAGGGTTTCTAATTCCTTTTGCAGTTCTGCCTTCAAAGTTGGGTCTGAAACCTTGCTGATTGAGCTTGCCAGACTGCCAGCTGCGGCACTTGCAGTTCCAAAGCCAGTACGAGCAGTGGTCAAAGCGGTCTTGGCATTGGTTAAACCAGTTTGCAGAGAGCCAACTTGTCCTTGCAGGCTTTGCAGACCGCTGTTCAAGTCGGTCAAGCCAGATGACAATTGGTCAAGCTGGTCAGCGTTCAAGGAGCTGGCATTTTCTGACAGCTGGCTCTTCAGCTGGTCAAGGCCGGCAACCAAGGTGTTCATGTTGGCCGTCAGATCCTTGGCGCCATTGGTCAAGGTCTGAGTCCCCGTGTACAGGTCCTTGGCCTCATCACTCAAAGTGCCGGTGCCTTCGTCGAGCTGGTCAGCCCCGTTAGCCAGTTTCTTGGCCCCGCTGGTCACCTGCTCGCTGCCCTTAGTCAATTTGCCGACACCCTTTTCCAACTTGGCGATCCCGTCGGTAACTGACTTCAGCTGCTTCTTAACGTAGAGCAGCTTGATCTTTTCGTTGTATGGCTCAGTCGCGGACATAACCTTGTCCACGCCTTCAGAATTGCGCAATTTCCGCGTCAATTCGTCGATCAGCTTCAAGTCCTTCTCATTGTCGAGCGTGTGGTCACTCTTGATGTAAAGGTATGAAGGCATGGCCATCCCTTCAGAGAAGTGCTTTTGCACCAGGTTCAGCCCCTGCTTGGAAGGCACTGAATCTGAAATTTCCGCCGTGTCGTCGTAGTTAAAAACGTTAGAGTAAGTAACGAAGAATGGTGCAACGACAACCGCTACAGCTGCCAAGAAGACAACTGGCCGCTTCAAAGTAGCGCTGGAAATCCCGTGCCACATCTTGCTTGGTTTTTCCCCGGCGAATTCCTTGCTTGGCCAGAACATCTTCTTGCCCAAAGTGGCCATGAAGAAGGGGTTCAAAGTCAAGAGGACGATCAAGAGGACCAGAACGCCGACAGCAACGCCGGAAGCAGACCGGTAAACGGAGAAGTTGGCTAAGCCCAAAGCGGAGAAACCGATCAGAATTGAGGAGCCGGAGTAAAGAATAGTCCGGCTGGCCTTCTTGATCGAGTCCTTCGTGGCTTCAGCCACCCCCAGGCCATTGCCCAGGTACTCCTTAAAGTGGTTATATAGCAGAATGTTGTAGTCTGTCCCGATCCCGAACAAAACAATCACCATGAAGACCTGGGTGAAGTTGGAGAACGGGAAGTTCACCTGGTTGACCAGGTTGGCCACGATTGAGAAGGAAACCAGGAAGGAAACCCCAACCGTCAAAAGTGACACAAGCGGGACAACCGGTGACCGGAAGACGATGATCAACACGATGAAGATGAAGACCACCGTGATCAATTCCGTCTTCTTGATCCCTTCTTGGATCGAGCTGGTAAAGTCATTGTTGAGGACGTCTGCCCCAGTGACGTAGGTTCTTACCCCACTGGTCTTGACGACCTTGTTGATCTCGTCGTAAACCTGGGAGATGCTCCCATGGCTCTTGGCGATGTTCATCTGCATGACCCAAGTCGTTCCGTCTTTAGACTTGAGCAGCTTCTTGGTCGCGATGTTGTTTTGCGGCGCCAGGTAGTCCTTGATGCCGTATTTTTTCTGGTTGCTGGTCAAGCGGTCGATTGAGGCTTCGATGTTGCCCTGGTCGGTCTCGGTCAGCTTACCGGATTTCTTGTTGAAAACAACCGCGACTTCGTAAGTATTCTTTTTCTTATTGCCCCATTCGTTCTTGATTAGTTTGGCTGCTTCGCTTTCCACGTTGCTTGGCAGGGAGATTTCGCTGTGCGCTCTAGTCAGTGAGTCAACGTTTGGCAGGGCAACCAAAGAAATCACCAGAATGAGCACCCCGGCGATCAAAGCGCCGAGGTGGTTCTTCAGTAACTTCTTCAACGTCCTTTTTCCTTTCTTTGTCTTTTACAATCAGTCTACTAAGCTAGGCATTTGACTGCTGGACGCTGGGCGAAACCAGCCGCCAGACCATTTCGTGATAGTTCTCCTCTGCTTCTCGCGGACTTTCCACCTTTTCCTGGCCATCTGTAAACCGGTCCAGGAAGACGTAGCCCAGGACAGCGCCAACCAAGGCGTGCTGGGAAACCACGTGTTCAGTGTCCACTTGCAGCTGGTCCCCCAAGTCCAGGATCTTAACCACCTCTTTAACCACTTCTGAATCATCAGAAAATTCATCCATGTGGTAAAGGAGGGTCGCCAGGGCCTGGTCTTCCAAAAGGCGGTCGCGGACCACGTCAGCAAACTTAAACAATGCTTCGTGGCCTGACAAACCGACCAGCTGCTTGAGCAGGTCCTGGTAGAGCAGGCGGATCCGGCTGGCCGCGACCAGCGACAGAAGTTGCGAGCGGTTCTTCACGTAATGATAGAGTGACTGGCTGCGAACGCCCAGATCCTTGGCAAGATTTGGCATGGTCGTCTCGCTTAAGCCCCGGCTTTCAATCATTTCCGTGGCTTTGGCCAGGACCTTGTCCAAGTCCAAAGTTCTTTTTTGAGTCATAATTACTACCATTTTTGAGTCATAATTACTACCATTTTCCTTTCAACTGTAGCAATTATATAACTACTAACTGAAGGTTTCAATCTACACTCTGTAAATTAATTCCACTTTCTATTGAAAGCGGTTCCTAAAGGCGCTATCATATATTCAGATAGGGGATGAAAACTAAAAATGAAAATCTGGTGGTTCGCAAACTTTTACTGGTTCAGTTTACTGATTTATCTAAATGTTTTCATGTTCAATTTTCATTACGCTGACGGCAGCAGCATCAATCCTTTCGTAGTAACCTTCCTGCTGCTGGCTATCTGCATTATGGTCGGGGAATTCCAATTCGCCTGGTATATGTGGCTGGCCACGAAAACTTATAAACCACGTAAACGCAAGAAAACACAAAACGACTCTACTGTCTGGCTGTAGAGTCGTTTTTCATTTCTTCTGTTCAGTTTGCTCCGTCTTTACTTTTCCATGACTTGCTTGACGGCTTGCCCCAAGGAAACAAAGTCATCAGTCTTGCTAGACCAGGCGCTGACCACGTAATTGTGGCCGTTATTGCTGATCAAGGCGACCTCTAAATTGCCATCAGCATACTGGTAGATGGTCCCCTTGGCCTTGCTGGCCAGCTTGGTCTTCCCTGTCATAGCAGTCAGAACCTGCTGGTTGTAGCTGCCGACCAGCTTGCCCTGGTAGATGGAAACCATGATCTTGGCCAGGTCACTGGCTGTCGTCTTGCCGACCACGGATTTAGAGAAGGTCCCCGTTAGCTTAGTCTGGCTGGCCCCCAGCTGCTTAAGGATCTTGTTGACCTGCTTAGTCCTGATCGTCCGCAAAAGCGCGTTAGCCGCGGTCTTGTTGCCCTTCAGCATCTGCTCGCGCAAGTAGCTTGGCCCATAGCTGATCCCGACCGCGATCGCCCTACTTGTCCCGGCCTTGTCAGCCTTGGTAACCTTGATAGTCGTGCTGGCCCCGATCTTGCCGGACTTTTCTTGGGCGTAAAGGGCGAGCAAAAGATAGAGGTAAAAAATCTTCTGGGAATCCTGGCCGCTCTTGGTATTGGTCACTTCCGCGAAATGGCTGCTCTTATTCAAGTCATAAGCCGCCACCTGGTAGCTGACGTCCTGGCCCATAGCCTTCTTAATTGCCTTGACCAGCTGCTTGTCACTGCCCTTGCTGCTCTTGACCTGGTTGTCATATTCAATGGAATTGACATTCGGTTCCTTGTCAGTGGAAGAAACGGTCTTTTTGACCTTGCCGGACTTCTTTACCTGCACCACCGTGACTTTCCGCATTTCAGCATCCTTGTTGGTGCTGGTGTACACGACAAAAGCCAGCAGGGAGGCGATCAAAGCCCCGACTACAATATTGTTCTTCATTAAAGCTCCTTGTTTCTAGCTCTTAATTCCTTTAGAAAAGATGGTGCTTACGCATGAAGAAGATCAGCCAGACCATCAAAAGGACGGTGATCAAAATAATGACTATCCAGTCATAGCTGGCCCCGAGAACCGGCAGCTTCACGTTCATCCCGTAAAAACCAGTCAAAATGGTCGGGATGGTCAAAACGATGGACCAGACCGTCAGGAACTTCATGGTGTCATTCAGGTTGTTGTTCATCATGTTGTTGGAAGTCGATGACAAAGTCTTGGTAACCTGCCGGGAAATCTGCACCATTTCTGAAGACTGGCTGGATTCAATCAAAACGTCGTCCAGCCTTTCCTTGGCCGCTTTGGAAAAAGTCAGCCGGGAGTGCTGCAGGCTGCGCAGCATCATCTGGTCAGTCTGAATTGAACTGGACAGGTAGACCAGACTCTTTTCAATATTGGACAACTCCACCAGGTCCTTATTGTCGATGTCATCGCTCAGCTTGACGTCTAGGTCGTTGCGTTCAGCATCCAGCTGGGTGATGGCCAGATGGAAGTACTGGGAAGCATACATCAAAAAAGTCGCCAGCAGTTCCGTCACATCCTGGGCGTGTGAGAGCCAGCGCAAAACCTGGGGATCATTGAACTCGTCAAAAACATAGCTGGTCTCAATCGTATGGAAAGAAAAGAGGTTCTTGCCCTGTAGCAAAAAAGTGATTGGCCGGGAAGTGAAGTGCTTGATGGTCGTCGTTGGCCAGACTGGCACGTCATAGACCAGCAGGTGGGTGTCGGTATATTGGTCGTAGTCGTAGTGGGGCCGTTCATGCCGGTCGGAAACGTAGGAAATGATTTCCGGGGTAAAATAAAACTCTGTCTGCAGGCGCCGACTGTCAGCTTCGTTCAAGCCATTGACGTCATACCAGTTAAAGTCTGTTTCAATTGGAAAAATTTGTTGCTTAATCATGGCTGTTCCCACCTTCATTTTACTCATTATTCATTTTACTCATTATTCATGTTACCATTTTTTAAAAATGAAGTTGTTTAAAGTAGGTAAAATAATGATGCAAATCACAGAAAAATATCTTCCATTTGGAAATTGGCAAACCTACTGCCGGATCGTGGGCGAGGCTACTGACCGCGCCCCGCTCCTCCTTCTCCACGGCGGGCCCGGCAGCAGTCACAACTATTTTGAAGTCCTCGACCAAGTCGCTGAAAAAAGCGGCCGCCAGGTCATCATGTATGACCAATTAGGCTGCGGCAACTCCAGCATCCCCGACGACCAGGCGGAAACGGCCTACACGGCCCAAACCTGGGTCAAAGAGCTGGAAAATGTCAGAGAGCAGCTGGGCCTTGACCAGATCCACCTTTTGGGGCAAAGCTGGGGCGGGATGCTGGCTTTGATCTACCTGTGCGACTACCAGCCTGAAGGGGTCAAGAGCCTGATCCTCTCCTCCACTTTAGCCTCCGCCAAGCTTTGGAGCCAGGAACTGCACCGCTTGATCAAGTACCTGCCCAAGGGCGAGCAGGCCGCTATCAAGGAAGCTGAAACAACTGGCAACTACGACTCCCTGGCCTACCAGGCGGCCAATGCCCACTTCATGGACCAGCACGCCATCAAGCTTACGCCGGACCTGCCGGAGCCAGTTTTGCGCAAAAAAAAGGGCGGCAGCCTGGCCTACTTGACCGGCTGGGGCCCTAATGAATATACGCCGATTGGCAACCTGCACGGCTATGAGTACACTGACCGCTTAAAGGACCTGCACTTGCCGGCCTTGATTACCAGCGGCACTGACGACTTATGCACTCCCCTAGTGGCTAAAAGCATGTACGACAACTTGCCAAATGCCCGCTGGGAGCTCTTTGCCGGCTGCGGCCACATGCCTTTTGTCCAGGAAAATGCCAAGTACCAAGAGCTATTGTCTGACTGGTTAATCAGCCAGGACTAGACCAGAGCCTTCTTTAACAAAAAATCTGTCTGACGGTCATCGCCAAGAACGAAGACATGCTCGCTGAACCGGGTCAAACCACGGCTGGCATAGAAGTTCTTGGCGTTTTCGTTGTGCTCCCAAACGCCCAGCCAGAGGACAGACTTGCCCCATTCCCGACCCTTTTCTTCCGCGAACTCAAATAGCTGCTTGCCCAGGCCCCGGTGCTGGAAACTTTTCTGCAGGTAGATCCGCTCGATTTCCAGGCCGTTTGGGTCGACCTCTTCGTTTTGGGCGTCGTCAACGTCCAGCTTCAAGTAGCCGGCAACTTCCCCGTCCGCTTTTAAGAAGTAAAAGAAGCTGCCCGGAGTTGCCATTTCTCCCCCAAGCTTGTCTTCATTGTAGTTTTCGTCCAAAAACTTGGCCATATCTTCCGGGCTGTTGTCTTTGCCAAAAGTATCCGCGAAAGTCTCCCGGCTGATGGCAATCAACTCTGGCAAATCTTTTTCACTAACTTGCACAATTTTTACTTATGTCATGCTTTGCCTTCTTCTCTTTTTCTGCTTTACAGTTTCTTAGTTAAGGCCGGTCAAGACCCAGGTTCTGAGCAGCATCCCTGCTCTTTCCCAGTCTTCTTCCCGGTAGTCGTGGCCAGCGCCCCGCATTTGCAAAAGTTCACCTTGCTTCAGCTGCTTGGCCATCATTTCCAGGCTGGCCAAAGGCGCCTGGTCGTCATCGCTGCCGGCAACAATGTAGCTGCGGCCCTGGTAGCCCTTGATCTTGTCCCAGTCCTTGATGACTGGTGACATTAAAAAGATCCCCCGGACGGACCGGCCAATTTCACTAGCCGCAACAGCTGCAGCGTTGCCCGCTTCCCCGTAGCCGGCAAAGACGATGTATTCGCTGGCCACCCGGTCATCGTTTCTAAGTTCGTCAAAGGCCAGGTGGTAGCCGCTGATGGCGCTGGCTGCATCTTCTGCTTCAAAGGTGAAGGTTAGGATGCCAGCGTCGTTTAAGTAGCGGCTGAGCCAATAGGCCTGGTCCTTATCGCCGATCTTAGCCAAAATTACCAAAGGGGTAATCCCTTCGATCGAGTTGACGGCTTCGCCCCAAATTCCCTTTAACTTGCCCTTGGCGCTGATTAAGGTCATCTCTTTTTCCATAAAAAACTCCTTACGATTTCTTACTTTACATTAAAAAACTTACAATATTCCTATTGTACTATTTTTTGCCGGAAATTAGGGCCGGTACTTGTAAATCGAGTTGTTGAGGTTGTCCTTGACCAGCTGGTCAAAAATTCCCTTGCCCTTGGCCGTAATCGCCGCGGCAATTTGATCATTGGCTTCCGTCAAAGACCCGGCGGTTGCTGGCTTCGCTTTCCGTTGAACTCATGGCCACGTTGTAGCTGTTGATCCCCTGCTCGTCAAAGCGGCCGTAGTCTTCTACGGCGTCGCGGACGGCGGGGAAGCCGCAGCCTTCTCCCTTTAAGGGAATTTCAACGCCAGTTCCTTTGGAGACAAAGAGCTCATCATAATTTTTAGCTGGACAATAGACAAAGCGCTTTTCGTTAAAGCCCTGGTCGTAGTCTTCATCTCTGGCCACGATCGTGGACCCGTCAAGGCTGGCCTTCTTGGCCCACCAGCATAGTTGTACAGTTGTCGCGCATTTTTCTTCCTTCTTTCTATTCGCTGACCTGCATGCCGCGGTCGATCTTTGCCCGGCCGGTTTCGTAGTCAAACTGGTAGCCCGGCTGCACATTGTAGATATAAACGTTGAAATCCAGGCTGCCGTCGGTGGAAACTGCCTGGAGGTTGATCCCCCGGGCCATGAGTTCCCGGCCTCTGAAAATTGGCGTTGCCTGGTAGATGACCTTCTTCCCGCTTCTTAAAGCTGACCGGACCTTGCTTTCAAAAATCGTCTGGATCTTCTGGTTAGAAAAGGCTGACTGGGTAAAGAGGTTCTTGGGGTTGTTCTGGTCACCGGACTGGTTCTTGGGGTTGTAGTTGCCGTCCTGGTCGATGCCGGCGGAAACTGAGTAGGCAATCAGGTGGCCCCGGTTGTAGATCTGGGTCCCGTTTTGCCGGTTGGAGTGCCAGCCGGTTGGCTGGACGTACTGCCTGACTCTTAAAGAGTCGTTAGCCACGTTCCGCTTCTCCAAAAAGGCGGTGTTGGAGCTGGAAGTCCGGTTCTGGCTATCCAGGTTGGAGTAAATGACCCGGTTGACCTTCCAGGCGCTTTTCACCAAGGTGGAGTGGTTATTGTTAACATAGCGCCAGCCCTTGCCTCCGGATTTAAAAGTTTCCTGGGCTAATTTCTGGTAGTCGCTCTTGGCTAATCCCCCGTAGACGGTTTTAGCCGTTTGGGCCGAGCTGACCGCACTTGATGAAGTACTGGTATTTGAACTGGAACTAATTAAATTTCCCTGGCCGCCCTTGGTGTAGACGCCCCAAATGATTGCCGCCGCGGCGATAGCGACCGACAGCAGGCTGGTATTTTGGCGCTTCTTGCGCCTGCGTTTTTTTGCCATTTCTTTTCCTCGCTTTTTAAACTAAAACTATTTTAGAGGATTTTTCCCGGAAACCAAAAGATTTAACCTATAATTGAGAGAAAAAGCAAGCAATACTTATCTAATAGAAAGGCAAAGGAAAAAATTATGGAAGAATTCAAGCTAAATGACGGAAACCAAATTCCAAGGATCGGCTTTGGCACATACAAGATCAAGGGCTACCAAGGGGCCCTGGCCATCAGCCAGGCGATTGAAAGCGGCTACCGGCTCTTGGACTCAGCCGCCCGCTATGAAAACGAAGGAGCCCTGGGCAAGGCAATCAGAAGCAGCTCTGTTGCCAGAAGCCAGCTCTTTGTGACCTCAAAACTGCCGGGAGCCCACCACGAATACAAGGCCGCGATCAACGAACTGGAAGAAGGGCTTTTAAGAAGCGGCTTGGACTATTTTGACCTCTACCTGATCCACTGGCCAAATCCTTTGGAAGACCACTATGTAGAAGCTTGGCAGGCCTTGATCGACGCGCAAAGATTTGGCTTGGTCCGGTCGATTGGGGTATCGAATTTTGAGCCAGGGCATATCGACCGCTTGATTAAGGAAACCGGGGTTACGCCAGCCGTCAACCAGGTGGAGCTGCATCCCTACTGGTCCAGCCGCGCCGTCCGGGCTTATGACGATGAGCATGGGATCGTTACGGAAGCCTGGAGTCCGCTCATGCGGGCCGGGGAAGTTTTCCAGGAAGATTTGATTCAAAAGCTGGCCGCCAAGTATGGCAAGAGCCCGGCTCAAGTAATTTTGCGCTGGGAAGTCCAACTGGGGGTAGTGCCAATTCCAAAGGCTTCCTCCAGCCAGCACCAGTTGAGCAACCTGGACATTTTTGACTTCAGCTTAACTGAAGAAGAAGTGACCGCCTTGACGGACTTGGACAAGGCAGATGGCCGCCGGCCCGACCGCGACCCTAACCAGCACCAGGAATTTTAAGCAGTGGAAATAAGCAAGAAATAAGCTAATTTTTCAAAAAAGCCAAGTCCAATATGTCACATAGCCCCCTACAGGAAGCGGTATCATATGTACAGAATATAGCTTTTTAAACTTGGAGGCACCATGATGACAAAAACAGAAAAAACTTTTTCAACGATAATCAAGACCGTCAACTGCTTGATGTTCCTGTCCGAAGCAGTTTTAATCTGCTTAATGGGCGCGGAACTGGTCGGTTTTCAAACAAAAGCCAAAGATCTGACCATTGGCTGGTCACTAATCATTGCTTCCGTTGCCCTCGTATTGGCGGCCATCCTAATCTGGACAAGCAAGTTTTCCGTCCTCTTCTGGATCACCGAAGTTGCCTTGCTTGCCAGCTTCATCATTTTAACCATTTTCCGGATCATGGATGTTGGTACAGCCTTTGACATACTTGGTTCAGCCGCGATTCTCGCCCTCATCCGCTATGGCAAATTTACCAAGCCCTACATCGGGCCAATCGTGGTCGTGGCCATCGACCTGGCTTACCTCTTGCTTTTAATCTTCTATTACGACTTCTTCAATTTCTCCTACTAAGGAAAAAGTAAAAGGCAAAATTTCCAGCAATAACAAAACTGAGCTCACATTAATATGAGCTCAGTTTTTTCTATATTCAGCTAATTTTTTCCCGCTACTTTTGCATCCCCTGCAATAAGGCAAAGAGAGCACCGTAGAGGTTGGTATCATTCTTGGCCGCCACGATTTCCGGCGGAATTACCTGCTGGCCCAAAATCGGGTTGTCCTGCAAGATTTCCCCGAACTGTCGGCGGATCTCCTCGATCAAGATTTCCTGGGCACTGATCCCGCCGCCGATCACAACCTTTTCCCCGTTGATCACGGTCTGCAGGTTAAAAATCATCACGGCAACATCCAAGCAGTACTGGCGGAAGATCTTGCCTGCCTCTTCATTGCCGGACTTGATTGCTGCAAAAGCCGCCAAACTGTCAGCAAGGTCTTCATTGCCCAGCTCCTGGTTTGACCCTTTCCACCATTCTGACAGCTGAGCAGCGGGCACCAGTATAGTCAGCCATTTCCTTAAGCCAAGCTTCCTGGTTAGTGATCATCCATCTGAGTTCCCCAGCCTGGAAGCTGCTCCCGTGCATAAGCTTGCTGCCAACGACGATCCCGCCGCCAACGCCAGTGCCCAGAGTCATCACCGCTCTGGTATCAACTCCCTTGAGTTCGCCCCGCCACTGCTCGCACAAGGTTGCCGCCTTTGCATCATTTTCCGCGCTAACCGCTACCCCGTATCTGGACCCCAGCGTCTCTTCCAGGTTTAAGCCGTCCAAAAAGGTCAAAGCCCCGCCATAGTGGATGTTCATTTTCTCCGTGTCGATCTTCCCTGGCGTGCGGACCGCGATCCCGGCAAACTTGCCCTTGTACTACTGGTCGCCGACTTCATACAGGGCGGCGACAAAGTCGTCCAGATTGTCCGCGCTTGGCCGCTTCCCCTTTTCCAGCAGCTGCCTTGTCCAGCCATCAGGGTCGTTCTTTTCCAAGCCGTCAACAGTGTAGCGGCTGTGGCCAGTTGCTTCAAAATCTTCCTTCAAGTATTCTTCAGGGTTCATGTCCTGCAGCCATTTTGGTTCTGCCGTAATTCAGTCTCCTTCAGTCTTGCAACAAACTATTTTCTTTGTTTTCTTACTTACACTCTTCATTGTATCCTGTAAGCGCTTACTCCGCAAGAGCGATATATCATATTTCTTATATGTACAAAAATATATATTTTTCTTTTACTAAATCAAAAAGCTTTTTAACATATATTTTACTGTATAAAAGTAATAAAAAAGCCAGCTTAGGCTGGCTTAACTTTGTCTAAAACAATAATCTGGTCGAACATGGCCTTTTCCACGTCCGAAATCTTGTGGGCGACTTCGATCACCGCTACCTTCGGATTGCCCAGCAAAGTCTCATGGATCTCCAAAGACAGGCGGGGATCCAGGGCACTGGTGGCTTCGTCAGCCAGAAGGATCGGCCGGCCAGACAAGAGGGCCCGGGCAATTTCCACCCGCTGGATCTGCCCGCCGGAGAGGTTGTTGCCGTTCTCCCCGACCGGGTAGTCCAGGCCGTTTTCCTGGATAAGGTCATCCAGGCCCGCTTCATGGCAGGCCATGAGCAGCTGTTCTTCATCCACCTGCCGGCCCAGAGTCACGTTAAAGCGGAGGGTGTCGTCAAACATGAAAGGCTTCTGGTTGACGTAGGAGTAGAAGTTGTGGGCCTTGTACCAGTCCCCCGTCACTTCTTCACCGTTGATTAAAATTTCACCATGGCTTGGCGTGTAGATGCCCAGCATGAGGCGCAAGAGGGTGGTCTTCCCCCAGCCGGACGGCGCCATCAAGAGGATCTTTTCCCCCGGCTTGATCTTGATGTTCACGTGTTCAAAAATCTGCCGCTTGCTGTGCTTGGTCACGTAGGCCACGTCCCGGATTTCCATGCCGTCAAAGTGGTCGACAGGGTAATCGTCGTCTTTTTGCACGTAATTGAGGGCCCGCTGGGTTCTCTGCCACATTGGCACGGTTGACTTGACCTGGTTGAATTCGTTAAACAAGGTGACCACCGGGCTGATGAAGTTGATGGCCAAGTCGACCATCATAACCAGTGTCCCAACCGCCAGCCGCCCCTGCATCATCATGATCCCGCCGATCGTGCAGGGAATGATGAAGCAGAAAAGTTCCGCTGCTGAGTAGATCAATTCCAGGGCCCAGGCCTGGGTCAAGGTCATGTTCCGAAGGGCCGTTTCCATATCCCCGGCAGCACCCACCGCCCGCTTGACGATATTAGTGCGGACGTTGTATAGGCGGGCTGACTGGGCCCCGTTCAAGCTGTCAGACACGTACTGGGTGTAGACGGCGTTCTTCTGGGTCCAGATCTTGGACTTCTTGGTGATGATCTTGCTGGTAATCATCTGCACGCCGGCCGGAGCCAGAGTCGCCACGATAAAGACCAGGGTCATTTCCCAGGAGTTATATAAAGCAAAGGCCAAAGAGCCCACGAAGGTCAAACTTTGGTAGATGATGTCCAGCTGGGCCGTGACCCGGTTGGTTTCGATCTGCTTTAAGTCGTTGGTCATGAAACTCAGCCCGTCCTTGGTGTCCAGGCTGTTTTGGTCGATCAGGTAGCGGAGGTTGGCCTCTTTCAAGGTCATGTTCACGCTTCTGATGATGTTCATTTTGGTCGTTTCATAGAAGAAATTGCTGGCCATGAACAAAAGCTGGCCCCCGGCCGTCAAGGCCGCGAAGCCGACCAGGCGGCCGTAATCAGCCTTGCCGGAAGAGGCAATGTTCAGCATGACCTTGAGCATGTAGGCCACGAACAAAACATTGCAGGCCTTGATGGCGGCCAGGAAGCTGAACAGGGCTACCTGGCTTTTCCGTGCGTATTTGAGACTCATTGGATAATCCCTCTCTTTCATAAACATTATAGCAATCTTTCCTATTTTTGCCGCCAGCATTGATATAATTAAGATAATCCTAAGAAAGTAAAATCTTGCTAAAGTCTGATTCTTGGCAAAGCGTGAAAATTTTTTAAAAACGCCGATTGTAAAATTAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTTACTGGATTAGAGCACAAAAAATCCATTTTAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCTTATTCTAACACTAAACCACACCAAAAGGGCAAGCGCCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATACCGGCAATGTGAAGCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAAGCGAATGCGGCCGCAAGAGCTTGTTTCTTCGCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCATGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTCCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGGACGAAGCATCGATGAACGTAGTCGAAAGCTTGGTCACTGGGAATGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATATGTTGCTTACTCTGTGGGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATTGAGGATAAGACCTCAGCTAGCGTTATGAAGGCATTTGATAAGCTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGAGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCACCCTTATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCGAGGGAGACCGTATGGATAAGTACAGTGTGGAAGATATTGCTAAGATCGAGGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGACTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCTGCGTAGATAGTCAAAATCTACCAGATGTTATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGAATTTTTTTAAAAAAGAGAAAAAGACCGGAAAGACTAACGGGGAAAAAAGAATAAAAACTAGAAAGAAACGAGAAGACAAAATAAATGAAATTAGTTGAACTGCATACCAAAGCCGACCAATTATCCGGCAGCTACTATCTGGGCTACCTGATCTACCAAAGCGCGGACGCGGCCACCCTCATCAGCCTGGACGACGACGCCAATGCCGGCGGGGTCTTGGTCATCAATAACCAGGACATCCTGACCAGCGTCGACGAATCCCCCAGCCTGGCCTACTGCCAGCGCCTGATCGATGAAGGCAAGTCGACCGACCCCTTCGCCCTCATGCCCCTCAACCAGGAGCTCCTGAAGACGCCTTTGACCAGCCTTAGCGCGGCCAGCCAAGCCGCACTGGAGAAGGACCTGGTCGTCAATATCACCTTAACCAGCGGGATCGTCTACACCGGCATCATCGCCTTAGCCGGTCCAACCGAAATCCAGCTGAAGCAGATCGGGGACGACTACGAGCTGGACCCTCTCTGCCTGGTCATCCCCCTGTCTGCCATCTCCAGCCTGGAATTAAACGCTCCTTTAAACAAGCTCTGGACAAAGTACCAGGCGGTTAAAGAGCAGTTTGCCGGCCAGAATCCCTACGGCTTAGTTGAACTTTACCTGGACTGGCTGGATGACGCCCGCTTTGGCAGCTGCCTTTTGGGCCTGGTCCTGGACCAAAGTGACCAATTCCTGCTTTTTGAAAGCTTGAATGACTATGGGCAATTAGAATCCATCTGCCTGGTCAACAGAGAAGACGTGGTTCATGAATCAGTAAATTCCGCGGCTATCGACTTCTCCAACTTCCTGGTCGCCTACAACCAGAAAAATAAAATTTTTGATCCGGGCCACTTGGGCAAATTAGCCCAGTCCTTAAACCATGTCCCAACTGCCCGGGAAGTGATTGAAAAAGTCGGCAATCAACTGGTCAGCGTTGACGACTATGAATTAGCCGAGGAAAACCTGGGCTACGTGACCGCGGTAGACGAAGCAGGCTTCACCATTGAGGACCCGGAAAGCGGGCAGGAAGTCAGCCACCTTTTTGAAAACGTCTGTGCCTTGGACTTGGCCAGCACCGAACTGAAAAAAATGCGGGAATTCCTGGCAGCCCAAAACCAGTAGGCAAATAATGCATATAATAGATAAAGGCATATAATGAACTAGATAGTTATAGTTAGGAGATTTTTTCAATGAAACAAGGAACGACGATTTTGACTTTGGACAATGGCTACCATCTTTGGACCAACACCCAAGGGACAGGTGACATCCACCTGCTCTGCCTGCACGGGGGCCCGGGCGGCAACCACGAATACTGGGAAGACACGGCTGAACAATTAAAGAAGCAGGGCTTGAACGTCCAGGTCCACATGTACGACCAGCTGGGCTCCCTTTACTCTGACCAGCCGGACTACAGCGACCCAAAGATCGCGGACAAGTACCTGACTTACGAATACTTCCTGGACGAAGTTGAAGAAGTCCGGCAAAAGCTGGGCATCGATAACTTCTACTTGATCGGGCAAAGCTGGGGCGGCCTTTTGGTCCAGGAATACGCGGTTAAGTACGGAGACCACTTGAAGGGGGCCATCATATCCTCCATGGTTGACGACATCGACGAATACGTGGCCGCGGTCAACCGCCGCCGGCAAGAAGTCCTGCCGCAGACCGAAATCGACTTCATGCACGAATGCGAAGCCAAGAACGATTACGCCAACCAGCGCTACCAGGACGACGTGCAGATTCTGAACATCAACTTTGTTGACCGCAAGCAGCCTTCCAAGCTCTACCACCTGGGCAACCTGGGCGGCACGGCTGTCTACAACGCCTTCCAGGGCGACAACGAATTCGTCATCACGGGCAAATTGAAGGACTGGCACTTCAGAAGCGAACTGCCAAAGATCAAGGTGCCAACCTTGCTGACTTTTGGCGAAGTGGAAACCATGCCTCTGGAAACGGCCAGAACCATGCAGAAACTGATTCCTAACTCCCGCCTGGTCACTACTCCTGACGGCGGCCACCACCACATGGTCGACAACCCCGATGTCTACTACAAGCACCTGGCTGACTTCATTAGGGAAGTTGAAGCCGGCACTTTCCAAGGCGAATAAGATTATGAAGTCCTTATTTTTGAGGGCTTTTTTTGTAAAAGAAATCTTAACCTTTGGTAAAAGATCCAAGTTGGAAAAGACTTCTGCCTTTAGCTTTTAGCCATTTTCAAGTAAAATAGGCTAAGACTAATCAGAAGCATTTAGGAGGCAAAACTTTGACAATCGGTAAAGAACTACAGAAACAGCGCCGCGCAAAGCAGCTCAGCCTGGAAGCCGTTAGTCAAACCCTGCGGGTCGACCAGGCGACTCTGCAAAAGATTGAAGCCGATGATTTTCAAGGCTTAAACCCGGTCATGGTCAGAAGCTGCATCCGGCAATATGCCAGCCTGCTGGGGTTAGACGGGGCACAGCTGCTCGACCAGTTTACTGAGCCGGCCGCCGCCGGCAAGGACATTCCGGCAGCTAAGCCAACCAGTCCAGTTAAGGAGGCCAGCCCGGCCGGCAAGGCCAAGGAAATTTTGGACAAGAGCAAGGTGCCGCATGGCTTCAAGGCAATTTTTAAATTCTTTGACGCCATCAACTTGGACAAGCTCTTAAAGATCGGGATCTGGGTCATCCTAGGCCTGGCCGTGGTTGGGTCCGTAGGCGGCGGCTTTGGTGCCCTGGCTTCTAAAGCCACCAGCATTTCCCGCTCATCCAGCTCTTCCAGCTCCTCGTCATCATCATCATCTTCTTCATCTAAGCCAGCTCAAGATGATTCCGCTAAGCCTGATGAAAACAAGCCAAGCCATGATGACCAGCCGAGCCAGCCGAGCCAGCCGAGCCAAAGCCAAAGTAAAGAAGAGCAGGTCAGCTCTTCCAGTGAAGCCAGCTCTTCTAGTTCCGTGGCCAGCTCTTCTAGCCAAGAACAGAGCAGCCAAGAACAGAGCAGCCAAGCCTCTTCCTCTAGCAGCCAGTCAAGCACTGACACGACGACTGATACAAACGAATAAAGTGCATGCAAAAAGCGCCCGGGTAACCGGACGCTTTTCGTTTACTTTTTTGGCCTTAACCCCGGCTCTTGTAAGTCCCTTCCTGGGTGTTGATGACCAGTTCATCGCCTTCGTTGATGAAGTCAGGCACAGTCACAACCAGGCCGGTTTCCATAGTGGCTGGCTTGCCGCCGGAAGCTGCGGTTGCCCCCTTAATGCCTGGCTGGGTTTCTACTACCTTCATGTTGACAGTTGATGGCAATTGCACAGCCAAAAGTTCCCCGTCTTCAGTGAATTCCAGGATAACTTCGATATTTGGCATCAGGTACTTGACGTCGTCACCCAGTTGGTCGCCGGAAATCGCATATTGTTCGTAGGTTTCCGTGTCCATGAAGTTGTAGCTGTCGCCTTCAGCGTACAGGTATTGGGCTTTCTTCTTGACGACTTCGACCAGCTCGATCTTTTCACTTGGCCGCATGGTCTTGTGGATCACGCTGCCGGCCCGGACGTCACGCAGGTCCATTTGCATAACGGTGTTGCCCTTGCCTGGCTTGTGGTGGTTAGCCGCCACAACCAGCATCAGCTTGCCGCCATCGTCAAAAATCATGCCTTTTTTCAATTCAATTGCTTGCATAAGAAAATCTCCCTAATAAATTTTTTATCACCGTTCTTCATTATACCATTGACTTAAAAGCTGCGAAGGTAAATTTTGTCAATCAAGTGCCCCTCAACCTTATGCAGGATCAAATTGGCCCGCTCCTTGGTCGGGGCGATGTACTGGCGGAGGTTGACCAGGTTGACCATCTGCCAGGTTTCTTCCGCCAGGCGCAGGGCCTCGTCTTCCGGCCCGTTGGCCAGCTTGTAGTAGAAGTTGCTTGGGTCATTCTTCTTCATTTTCATGATCTTCTTGAAGCGTTGCATATACCACTTTTCAATCAAGTCTTCTTCCGCATCGATATAAATTGAAAAGTCAAAAAAGTCGCTGGTCACCAGCTGGCCGCTTTCCGGCAGCTGCAGGGTGTTGATCCCTTCGATGATCAAGATGTCGGGCTTTTCCACATGGCCATAGCGGCCCGGGACGATGTCACTTAATTCCTGGGAATACAGGGGATAAACGACGTCATTTTTTCCGCTGACCACGTCCTGGAGGAAGTCTCTGAGCATCTGCATGTTGTAGCTTTCCGGGAAACCCTTCCTGGGCATCAGCTTCCGCTTCTCCAGCTCCTGGTTGGGGTAGATGAAGCCATCAGTGGTCATCATCTGGGTCTTTAAGTCCGGGTAATACCGGGTCAAGAGCAGCTGCAAAAGGCGGGCAGTCGTGGACTTACCCACGGCAACTGAGCCGGAAATGCCGATAATATAAGGCACCTTGCTTTCCGGCAGCTGCAAAAATTCTGCCTTCTTAGCGGCTGTCGCCTGCTTGGCCTGGTAGGCCAGGTGGATATAGTTCAGCAGGGTCTGGTAGATTTCACCGACGTCCTTGACGTCCAGCTGGTCGCCCAAAGACTTGACCTTGGCCAGCTCTTCATTAGTCACCGCCAGCTCGGTCTTGGGGGTTAAAGCCGCCCAGGCCTGCCGGCTGAATTCAGTATAGTTTCGCATTCTTTTTACTTGTCCTTTTCTCATTCTTTACCTATTATAGTAGAAAAAGCAGGAGAAACTGGCAAATGCCAGCTTCATTTTTCAAAGAAATGGGTGAACCAGATGAAGAAAGTCGTGCTTTTTGGCGATTCAATTTTTAACGCGTATGACGGGCAAAAGGATACCGACCGTTTGACCAAGGCCTTGGCCAAGCGGCTGGGAGACGCTTACGAGGTCGTGAACATCTCGGTCAGCGGTGCCTGCGCCCAGGACGTCCTGCCCAGAGTCAGCAGTCTGCCTGCCTGCGACATTTTGGTCGTAGAGTACGGGACCAACGACGCCGCCAGCTGGGGCTGCAGCGCCTATGACTACCAGGAAGGGCTGGAAAGCTTGATCAAGCAGGCCCAGAAGGTAACCGGGGCCAGCGATACCCTGGTTTTAGCTCCGTCCATGCCGGATTTGACAAACCCGGAAATGGCCGCGGCCTACTCCTTGGAGAAGCTGGACGAGTACGTCGACATCGCGCAAAGAGACGCCGGCAAGACCAACTCCTTCTTCTTCGACTTGACCCACAAGATGGAAAAGCTGAAGGACCTGCCTTCCTTCATGATTGCAGACGGCCTCCACTACAGCGAAAAGGGGATCTCCTGGCTGGCCGATGTCCTGGCTGACCAAATCAATAAGATGGCATAGGAAAAGCGTCCGGTTCGTCCGGTTACCCGGGCGCTTTTTGCATGCCGCTTAAACAGGAAAAATGACCGCTTGCGCGTCTGCTCTTTCATTTTTGCTTAAGCTTCTTCATAATAAAATCTGAAAAGGGGGGAGAAAAGATGCAGGTAGAGTTTAAACAAGACAAGCAGCTAAAAGAAGACCAGCTCATCATCAAGGCCAAGAAACTGACGCCGGAAATCGAAGCGGCCCTGGCCTTTTTGGAAGAAAAAATGGCTCAGAAGATCACGGTCTATCAAGGCAGCGATGTTATAATCCTGCCCCTAACCAGCATTCTCTTTTTTGAGACCAGTGACCGGCACGTCTGGGCTCATGACCGGGAAGGCAGCTACCTGGTCAAGCAGACCTTGCGGCAGCTGGAAGCCAACCTGCCCAGCGACTTTGACCGGGCTTCCAAGAGTGCCCTGGTCAACTGCCGGCAAATCAATGCCGTCAAGCGGTCCATTATGGGCTGCGAGCTTGGCTTTACCGCTTCTTACAAGAAGGTCTTCGTCTCCCGCCGCTACTACCAAACCCTGATCAGCCATTTGCACGAAATGAGGTAAGCACAATGAACAAGAACAGAAAGTCCGCGGTCAGATGGGGCTTGATCCTGATCGCTATCGCCATCCCCTTGATTTTAAGCCAGCTTTTTCCAGACTACTTTACCCTTTTTAAGCTCTTCAACTTAAGCTGGGGCCAGGTCTTCTGGGTTCTCCTCTTAGCCTGGATCGCCTGGACCAGCTTCAAGAACCGGGCCCTCTTCTTTGGAATTTTTGCCAGTGGCTTGATCGTCAAAACCATCAGCGAAGCTAGCCACTTCTTTAAATGGACCGGCTACATGTACCTGGCCCTCTTCCTAATCGCCCTGGGCTGCAAGCTTTTGGCCGGAGGAAGCCAGCTGGAGGTCAAGATGAATGTAAAAACTGGCAAGAAAGACGATGACGGCACTAGCCTTAGCTACAGCGAATCAATCGGCGAAAATGGCGAAAAAGTTTCCATCGAATCCGTCTTCTCCAAATGCGTCCGCTACGTTCACAGCCAGGCCTTGCGCAAATTATCCGTCTCCACCGTTATGAGTCCGGTAACTATCTACTTGGACCAGACCCAGCTCAAGGATGGACGCGGCAAGCTGGATTTGGATGCGGTCTTCTCCAAAGTTGATATCTACATTCCCAGAGAATGGGAGGTCCAAGCCGACGACAGCCCGGTCTTCTCCCGCTTCACCGCCCTTAACCCCAGCGGTTTAACAGCGGATTCACCCCTTTTAAAAATCGATGCTGACCTGGTCTTCAGCCAAGTCACCATTCACCGGGTCTAAAAAAACTGTTCAGTTCCTTATTTAATAAGGCTGAACAGTTTTTCTTTTATTCTATTTTGTTCTAATCAACCTTGCCCAAGTAATTTGACTTTTGTCCGAACCACTTCTGGTTGATCTTGGCCAAAGTCCCGTTGGCCTGCAGCTCCGCCAGGGCCTGGTTGATCTTCTTTTTCAAGTTCTTGTCGCCCTTCCGCATCCCTACCGCGAACAAGTCCTCTGGCACCTCTTTGTTCAAGATGACCTGGTAAGACTTTGAGTCTGCCTCGTGCTTGATGTAGTATTCCGCGTAGGTTTCATCCAGGAGGATCCCCTTGATTCTGCCGGCGTTGAGGTCCAGGAAGGCTGACGGAATAGTGTCGTAAAGGACCTTGCTCTTCGGCTTAATGACCTTTTGGCTGCCATCCAGCCAGATCTGGGCGGTTGACCCACTCTGGGCCCCGATTGCCTGCCCCTTCATCTGGGCAAAAGACTTGATCCCGCTGGACTTCTTCACGACCAAAACCTGCCGGTTTCGAAAGTAGCTGCGGCTGAAGGCAACTTTTTTCTTCCGCTGGCTGGTCACGCTGTAGCCGCTCCAAAGAACGTCAATCGTTCCGTTTCGCAGCTCCGTTTCCTTCATGGACCAGTCGATAGTCTGGAAGTCCGCCTTAAGGCCCAGCTTCTTGCACACGGCCTTGGCTAAGTCGACGTTGTAGCCGACCAGTTGGCCACCTTTTTTGCCGGAAGTCCATGGGCACGAAGGTGTCATCCAAGCCGATCACCAGGCTGCCCCGCTTTTTAATCTTAGCCCAGGTGTCTTTTTGGTTAGCTTCTTTAGTTAAATTGCTGCAGGCTGTCGTCAAAAAGCAGGACAAGACCAGGCCCAGCAGCAGGATTCTCTTAAACCATTTCATTGCTAACCCTCCAATGGCTTAACCTCTAGGACCTGGTCGGCCACCTTTTTGGCAAAGTCCATGTCGTGGGTGATAATCAATTGGGTCAGGCCTGACTCCTTCAAGTTCAAGATGAGGTCGGCCACCTGGTCCCGCAAGGCCGAATCCAAAACACTGGTCAGTTCATCGTAGCAGAGCATCTTCGGCAGCATGGCCAAAGCCCGGGCGATGGCTACTACCCGCTGCTTCTGCCCGCCGGAGAGCTGGTAAGGGTAAAGGCCGCCCTTGTCCGCCATCTGCAGCTTCGCCAAAAGCTTTTCTTTTACTTTTTTGCAAAAGTTGCTTCATTAGTTGGCAAAAGCGGACTCTTTTCACCAGCGTAAACCAGGTCCAGCTTGTACATGGCCCGGGAAGCGATCGTGTAGACCAACTGGGTCTCGTCTTCTTCGTGGTAGGCCGCTTTAGAGGCATCCCACATGATTACGGCGTCAAATTCCAGTCCCTTGGCCAGGTAGGACGGCAAGACCAGGTTCCCTTCCACCAGGCGCTGGTTGGCGCTGGAAATAAGGTGGACCCCCTCAAGCTGGTCAGCCAGCTTTTTGGCCGCCTCCAGGTCCTTAGTGATGATGGCAGTCGTCAGCTTTTGGGCATCGTTTTCCGCCAAAGCTGCTTTCAAAGCCGCTAAAGCGCCAGCTTCATCACTTCTGCCCCAGACTTGCGGCAAAGGCCCCTGCCGGTTGAAACTTTCGATTTTTTCACCATGGCGGAGGATCTGCTTGGTGTAGTCAGTCAGCTGCTTGGTTGACCGGTAGGACTTGGTCAACTGAACCAGCTTTGTCTTTTCCGGGTCAAAGAGACCGGAGATCTGCTTTAAGAGGCTGCTGCTCTCGTCCTTGGTAAAAATCGCCTGGTTCAAGTCGCCCAGCATGGTGAACTTGGCCCGGGGGAAGTTGTAGCGCAGATAGGCCAGCTGGAAGGCTGAGTAGTCCTGGATTTCGTCGATAAAGCAGTAGCGCATCTCCAGGTTGGTCTGGCGGGCAATGATCTGGTCGTAAAGGTAAAGATAGGCTGAAGCATCTCGGAGGTCAATTTCCTGCTCTTTGAACTTAGCCTTGACTTCTTCAACATGGGTCAGCCATTCTTCTTCGCTGATCCCATATTTGGCCAGGTCCGTCATCTTCGGCACGGCCCGCAAAAAGGCTAGGTACTGGCCACGCAGGTTCAAGAAGCCGTTGTGGTTGATCCGGCGGGCAAGCTTGGACAGGTGCTTGATAACAATCTTTTTGCCCAGGAAGGCCCGTTCCGCCTTTTCTGAAGAGAATTCCTGGTCCGGCCGGTCGTACATGTCCAGCATCTGCTCGTGGCTGAGCCCTTCGATTTCCCGGCTGACCCAGACCTTGCGGGCTTCATTGGCCACCCGTTTATTCAAGCGGCGGATCAGTTCCTCGCGGGTAGCGTCAATCCGGTTGCCCAGCTTGTAGTTTTCATTGAAGGAGTAGTAGAGCTCCTTGATTTCTTCCTTGCTGAAAAACGGCTTCTTTTTGGTCCGGAAATAGATATTGCGGAAGATCATGCCGGACTGGTTCAGGTGCTGGCCGTAGCGGGTAGCCAGCTTGTAGAAGGCCAGCGAATCCTTGAAGCGGCCGATTGCCGTGTCAGCCTGCCGGTCTTCAAACTGGTCAAAGAGGTTCTGCACCTTCATCTTCGGCAAGCGGCGGGCGATAAACTGCCAGTAGGTCATCTGGACCATGTTCTGCTCGCCCATTTCCGGCAGGACGTTTTCGATGTAGTCGTTAAAAAGCTGGTTAGGACTGAACATGATCACGTTCCCGCTCTTGAGGTTGCCCCGGTAGCGGTACAAGAGGAAGGCGATCCGCTGCAGGATGGCACTGGTCTTGCCAGACCCGGCCGCCCCCTGGACAAAGAGCAGGTCGCTGGTCGTATCCCGGATGATCTTGTTTTGCTCCTTTTGGATGGTCTTGACGATGGACTTCATCTGGATGGAGGACTTTTCTGACAGAACTTCCATCAGCATCTGGTCGCCGATGGTTTCGTCAGTGTCGAACATGTTGATGATGGTTCCGTCTTCGATCATGAACTGCCGCTTCTTGCTCATGTCGACTTCAACCGGCCCTTCCGGTGAGTAGTAGGTTACCTTGCCGATCTTGCCATCGTAGTAGATTGAGGAGATCGGGGCCCGCCAGTCATAGATCAAAAGCTCATTGTTCTCGTCCATGAAGGAGGCCAGGCCGATGTAGATACTTTCCGGCTCTTCGCCAGCCTCCTCAAAGTCGACCCGGGCGAAGTAAGGATGGACATGCAGCCGCTTTAAAGTAGCCAGTTCGCGGGCGTTGACCTGCCAGGCATTGTCGCGTTCTTTGAGCATTTGCTGCTGCTGCTGAATCGACAGGGCCGTGTCCATTGAGGTCGAGTAGTCGTCAAAGTCCAGGCGAATATCATCATAGAAGTGGGCGCTGATGTTGCGGGCTTCGGACTTGTCTTTAGCGATAGCCTGCTTGAGCTGGTCCCCCTTTTGATCAATCTTTTGCAGGACCTGGTCCAGGTGGGCTTGTTCTGCTTTGCGGTCTGAGTTTTCTACCATGTAATATATGCACCTTTTCTAAAAAAATAAACTCCAACAGCTTTTCTTTGAAAAAACTTGCCTAATATTCTACCATTTTTCAGCTTAAAACTAAAGCCAGACCTCCTTAGGAAAAGCTTAAGCAGTTTCAGCGGCCTTTTTGCTAGGAAAAAGAGCTGGCAAATCTTATAATAATTAGCGCAAAGGAGAAAATTGATGCGACGATTTTTTAATTTCATCAAGAACCTGCTCATCTTAGCGATCATGGCCGCGGCCGTGGTCAACTACCATGAGCAAATACAGACTTTCCTGCTGGAAGCAGCGGGCACGGCCAGCACTTATCTGGAGCAGAAAGGCTTAAAGAGCAAGACTCTGGATTTAAGCGTCGGAATCGTTGCTGAAAGCAATGAGAAGGTCACTAAGAACACGACCGGCTATCGCTGGCCAAAGGCGACGGCCAAGGTCTACATCGGGGTTAAGCAAACCGACCTCTACAACGCCACGGTCAATGCCATGGCAGCTTGGAACCAGACGGGAGCTTTTACCTTTAAGCAGACTAAAAACAAGAAGAACGCCCAGATCGTGGTCGTGGCCAACTCCAAGAACAACGGGGCAGCGTGCCTGACTACCTACAAGTATCTCAGCCACACCAACCGGCTCTACTCAGCCCAAGTGGCTCTGAACACCTACTATCTGGAAAACGACTATTACAACTACACGCAGGCCAGAATCGTCAACACGGTTGAACACGAATTAGGCCACGCGATCGGCTTAGACCACCGGACCGGGGTTACTGTCATGTACCCGACCGGATCCATCTACACGATCCAGCCAAAGGACATCAAGCTGGTTAAGAAGATTTACAAGAGCAAGTCATAAGGCAAGTTAGAAAAATGAAACGGATTTATCTGGTTAGACACGGGAAAACTTTTATCAACAAGTACAACAAGATGCAGGGCTGGTGCGACACCCCCTTGACTGATGAAGGCCGGGAAGGCGCAGAAAAGGCCGCTGAGGCCTTGCAGGAGCTGCCTTTGGACATTGCCCTGTCTAGCAACACTTTACGGGCCAGCGAGACCTGTGAAATCATCATGGAGAAGAACTGCAACAGGGACCTGCTCCAGCACCTGGCCTACCCTTACTTCAGAGAGCATTTCTACGGCTACTTTGAGGGGATGGACAATGACGTGGCCTGGCGGATGGTCGGCGCGGCCCACGGCTTTACTAACGCCGCTGATTTAGCTGAACACGCGACTTGCGACCAGATCGCTGACTGGACCAAGGAGGCTGACCCCTACCATGATGCTGAAGACAGCAAGGAATTTTGGGCCCGCTGGCAAAAGGGCTTTGACTTGATCCAGCAATTGGACGGAGCAGAGAATATCCTGCTGGTCAGCCACGGTTTTGCCATCAAGACCCTGGCCCAGAAATTTGCGGTGGACGGGATCGACACGACCGTTCACCCGAGAAATTCATCAATTTCGACTTTAGTGATGGATGAAGCTGGCAATTTGCAGATGACCAGTTACAACAAATTGCAGCTGTAATTTTTACCAGATTTTTACGGACAAAAGGCCTGCAAGTTAGCATAGAGCTACTATAATATGAGCCGGCAAGAGAAAAAAGCAAGATTCCAGTTTAAGGATGGAGCGCAATTAAATATATGAGAACGAAGATTTTTGGTCACCGCGGTTATCCAGCCAAGTTCCCGGAGAATTCCCTGGAGGGCTTTGACTACTGCATGCATCACGGGGCTGAGGGGGTCGAATTCGATGTCCACTTAACCCGTGACGGGGTGCCAGTGATCATGCATGATGAGAACATCAAGCGGACCACTAATGGCAAGGGCCTGATCAAGGATTTCAGCTTGGCGGAATTGGACCAGTTCCACCTGGCCAATGGCGAGCGGATCCCCCGTTTGAAGGACCTCTTCCAGCTGACTGAAGAATCTGGCTATGAAGGCCAGCTGAATCTGGAGATGAAGACCAATAAGTTCGATTATCCAGGCTTGCCGGAGAAGATTTTTGCCCTGGCGGACCAGTTCAAGTTCAAGCAGGAGATCATCTACTCTTCCTTCAATTTGCAGACCTTGATCCACGCGCAGAAGATCCGGCCAGAGGAAAACTACAATTTCTTGACCGACAAGCGGATCAAGGACCCGGCAGCTTTTGTCAAGGAGCACGGCTTTAAGGGGATCCACCCCAAGCGCTTGCTCGACACGGACACGCCGGAGCGGATCTGGACGGTGGACAGTCCCCTGCGGGCCAAGAAGATTATTGAGTACGGCGCGGCCGGCTTTTTCACCAACAAGTTCGAAGATATGATGGACCTGCGCAAGCGGGTGGCAAATTACTAACGCGAATATATGAAGAGAGTTGCTTTAGCGGGCAGCTCTTTTTTGCGTGGTCATTTTTATAAATTCTATTCTTTATCCAAACAAAAACTATCCCATGCGGGATAGTTTTTTTACTTTATCGTATACTTTATTTTTAAAAATCAGCGATGACCTCGCCTAATGTCCAAAGTGAGATAATTCCAGCCACGGCTTCCTGCCCATCTCTGTAGATGTATCCTTCCATGACTGTTGTGGTCATATTGTAAGTGTCCGTGATAATCTCAAATTTAGCATCCGGGTACTTTTCCAAATACTCTTGCAAGTCGTATCTTACGCCCGAAAATTCCCCATTTTCTATCCCCTTGTCAAAAACTAAGGTATGGCATTCTTCCAAATCGATATCTGTGAACGTTAACTTTGCCGGATAAAACTTCTAGGAATCTTTGTGGTACTCATACACTTGGTCTAAATGCAAAGTGAGATCGCCATCGTTAACTTCCATTTTTACAATCCGACTGTCATGCAAGTCAAACGGAATGTTGCTGATCGTCTTCTTTATCAGTTTCATAGCTTCTCCTCTAGTTTATCCCTGTTTTTCTAGTTATTAACGATAGCACTCATCGATTCAATCAAGCCCGCGTCATTCAAGGTAACCTTGTCCGCACCATTTTTAATCATATCCGCAACAGCGTTATCATTCTTGCAAACCGTCCAGATTCCATAGTCTACGCCATACTTACGAGCCGCGAGAATATCATCAAGCGTTGTCTTATTGTAGTAACAGTCAGCACCGGCCTTTAAGTGGGACAGGAAAATATAGTCGTTATCAGTCAAATGGCGGCTGTAAATCCCCATCATGGCAATTTCTTTGCCACCCGGAATCACGTTTCTGACTTCTTCCAACTCACCAATATTAAAGGAAATCAAGGTCGTCTGCTTCTGCATCCCTGCTTCGTTAATTTCCTTAACTACCTCTTTCAAGGCTTCCATATTGTTGATGTACTTCAACTCCAAAAAAGCTTCCTTGCCATACTTCTTACAGATTTCTAAGTACTGACGCAAAGTTGGCACGCGAAGATCTTCATAAACCTTATCCTTATCGACGCCATCCAGCACACCCTTGATCTTGTAGTTTTCCACCTGGTCAAAAGGAATATAGTTGATGTTCTTTCTGTAGTTTGGATCATCCGCGCTGATATTGGTCGTCCGGGCCAAAGTATTATCGTGCATGATAACCAGCTTGTTGTCTGACGTATTATCTACGTCGGTTTCAATCCCCCAAACTCCGGCTTCCTCACCAGCCTTTTCAAAAGCCAGGGTCGTGTTTTCCGGATACTTAGTGCTATAGCCCCGGTGAGCGATAAACTTGACCTCCGCCTTAACCAGGCCAGAAGTACTCTGCGTCTTTACATCAACATTTTCCAGCTTGCGGTACTGGGCCCACAAGGTCGTGCTCTTCTTAAAAGTGTAGGCCTTGCCGAGCCGGTACTTCTTCCCCTTTCCGTTTGTGGCAACGGTATAGTTTAAGAACTTGTAGCCTTTCCGGTAAAAGCCAGTCTTTGGCAGAGTAACTTTCTTGCCTAAGGTAAAAATCTTCTTTTGCCGGCGGCCAGACCCGTCATTGGAGGCAAAAGTCAGCGTTCCCTTAGCTGCAGTAACTTTAACCATGCAGGCGTAGAACTTTTTGCCATTTTTAGCAGTAATCTTGGCTGTCCCGGCCTTGACTGCCTTGACCTTGCCCTTAGAAGATACTGTCGCTACCTTCTTGTTGGAACTTCTCCATGTCGTCTTTTTCTTGCTGTTCTTCAGATACAAGCGGGCTGTTTTCCCCTGCAGCAGACTCAGCTTTTTTTTATTTATAGAAACCTTAGCTTTTTTGCCTTTCTTGGCCTTCCTACTCTTCTTAACCTGCCTGGCGGCGTGCACTGGCTGCAGCGGTTCCAGCTGCTGTCCAATCCCAAAAGTCAGCAAGACTGCTGAGGCCAGCAGCAACTTTTTGATATCTTTCCGTTTATTCAAAAGAATTCACTCCACTTTCTTTTCCTGTATATTAGATTAACATCTCTATTCTAGCGCATTTTTGCTAAATAAAACAAAAAGCCAATGAACAAATTTTCTTTTGTCCATTGGTAAAAATAGCTCTTAACTTGTTTTTAGCGGCTTATGCCAACCCATCGATAAAGTGATCAATCTGCAAGACGTATTCTACTAATTCCCGGTGCTTCTGCCCGACTTTTTCATAGTAGTCCTGCAGATCAGCCAAATCCATCTGCTCCATCAGCTTGGAAGCCGTCTTATCCTTGCTCCAGCTTTGGTGGCGCTGCTGCATCAAAAGTCATACATGTGCTGCTTAACGTCTTCGTATGGCGCAAAGACATGTGTCTTCTTGCCCTCTTTAAAGACCAGGTAGTTCTCAATCTCCCGCTTAAAAGTCGCGTGAATGTGTGCCTGCATCCATGGATACTTTGCCCTAATCCGGTGCAAGTGCCGCTGGCTCTGCTTAGCTTCATCCGTCCCCTTGTCTGAGTCGATCAAGATGAACCAAGGTTCATTCAGTTTAGAAAAAAGGTCAAAATTCAGCCAGGCCAGCAGACTGCCGCATCCCCCGACCGGTAAAATAAAGAGCCCTTTTTCAGCAAAAGTCGCCTCCACCAGCTTTTCTTCATACATCCACTGGTTGATCTTGGTCACAAAACGGACGTCTTCCTGCCCTTCGACCAAGAGAACGCAGCGGGACTTGACCGCCCGCTGGTCAGCATCCAGGCCCAAGCTGCTAGACACTTCCGCCAAGATCTGGCTGTCACTCAAAAGCTGCTGCTGGCCGGCAACCTTCTTGATGATCTTGATCCCTTCCAAAGGCAGAAGACCCATCAAGTGCGGCGTGCGCGGAATCAAGATGACCTGTTTGTTCTTAGCGACCAGTTTTAAGCAGGGCCTGGGCCAACAAGGCTTCATCTTCCTCCGACAAATCATTCGCTTCAAAGGCATAGACCACGTTGTCGATGCTGGCATTTTCACTTTGGGCCAAAAGAAAGGCCAGAATAATCCGGCTGACCTTGGCCGTTCCCGTCACTCCGACCTTTTCCCGCTGCTTGATTAGTTCAGCCAGGTTGGGATCCTGGAAGACAAACTGGGGAGCTGGTTCACCCAAGTCCCGGTAGTTGGCCAGAAGCTGGGAGAGACTGCGGCCCAGGCGGTCGTCCAGGTAGTCCTGAATTTCCTTGATTTACGCTGCCTTGTCCCTAATAGCGCTGCGGGCCACGAAGTTCAAGGGGCTGGCCGCCCTTGACTCTTCATCAAAAAAGACATACAGGGGCATGCCGGCTGAAAGCTGCCGGTAGCGGCCCCGGTTTTGGTCCGTAACTGGCTGAAAGTCCCCGCCTTCTTCCGCGAAGCTGTCGCTTTCTTCCAAATATTGCTTAAGGTCAAAGGACTTTTTGATAGCAAAATCATCGAAACAGCAAGTGATGGCAATTTGCCAGTCCCCGGCCTTGAGGGCTTTCTCGTTTAAGTCTTGCAGCTTCAAAGGCCGCTTAGCCAAAGGGCCGTTGAAAAAAATGTCCATAGCCCGCAGGATGGTCTTCTTGCCCACTTCCCCTTCACCTAAGAGACTGGTCAAGGGGGCGAATTTCAGCTTAAAATTGCGATAACCGCGAAAGTTATGCAGCTCAACCGCGCGCAGCAACATAATTTGCTCCTTAATCAGCTTGGTCGCCGTGTCTTTGCCGGTAGTCCTTCCGGCTCATCTTAACCTTCGGTACCTTTTCAGTTGGGTTGGCCAGTTGCCGGCTGACCCGGTCCAAACGGGCAGCTTCTGCTTCCCCCTTGGCTTTAGCTTCCGCGTGTTCCCGGGCCTTGCGGAGTTTTCTGGCCTGGATGTCCCGCATCCACAAGGTCGGCATGATTGCTACGGCTCCTAAGAAGGCACCCATGGTGTTGGCGATCATGTCGTTAACATCATATGTGCCCAGCCCTGTCATCCGCTGGAAATGTTCAATAAACCAGGACAGGCAGAAGACCATAAATGTGGTGATCATGATGCTATGCAGCCACTTGGACCAGGATGGAATAATGTAGCCCAAGGGCACGAAGAGCAGAACATTCATCAAAAAGCCGTAGCGGCCGCCATAGTTTGAGCTGGCAAAGACTTTTTTCAGCCCCCACTTCCAAAAGGCCGGATCTTTCAAAACCTCTGAGCCGGCGGCCATTTGGGCCGGATGCTGCCAGTAGTAGACAGCAACCGTTAGCATTCTTGAGGCAAACACATAGTAGATCAAAGCACAGCCATAGATAACCGTTACTACCAGCCGCAAAAAGGAGTTCCCCGTGCGGATAGCCCAGTAGCCTGCCAAAACACAAACAGCAATAACCACAAAGCGGATCTGCAAAGCCAGTTCATGATACATTCTTTTTCACTTCCCCTCACGAAGTCCTTTCTACATATTTTATACCATTAGTCGACTTATCAACAAAAGTTGTGATTATTAATTTTATTATCAATATCACAAGATCATTTTTCTAAAGTTCTGCTCTGTGCTATTCTTTATATTAGTGCTTTTAATTACAACAATACATAAAATTGGAGTATCAAACATGGACAAAGAAAAAATCAATGAATTATGGGGCAAGTACAAGGATATCATCCCCTATGTCTTCTGGGGCGTCATGACCACCCTAGTCAACATCTTCTCCTACTGGCTCTGCAACAGCGTCTTCAAGTGGGACATCATGCCAGCGACGATCATGGCTCAGTTCCTGTCCATCGTTTTTGCCTACTTGACCAACCGCAAGTGGGTTTTCCACAGCCAGGCATCCACCTTTAAGGAATACGCCAGTGAAATCGCTAGCTTCTTCGCGGCCAGAATCGGGACTGCCCTTTTAGACATGGCCATCATGTTCATCTTCGCTGAGCAAATGCACTTAAACAGCATGGTCATCAAGATCCTGGCCAACGTGGTTGTCGTTATTGTCAACTATGTGGCCAGCAAGTTCTGGATCTTTAAATCCAAAGACTCAGAATAATCTGTCTGAATTAATTGCTAAGAAATGGTAATTATTCCGGCTAAAAGTTTCACCTAATGCATTTTCGTGTTAATCTTGAAGTCAGTTTAACCAGAGAGGAAGGATGAAAATGCGAAAAAGAAACATAATTTTAGCCTTTTTGGGATGCTTGGGGTCGGTCCTGCTGATCAGCGGCCTGACTTTCCAGAATTCCGGCCAGTCAGCCCAGCTGACCTTAAAGTTCGTCAACTTATTTGAGAAGGTTCATTTTCACTTGACCGGTACTATGATGGCTGAGTACCCGATTTACCACATGATGCGGAAGCTGGCCCACACGGCTGAGTATTTCCTGCTCGGCACCAGTGCCTGCTACTTCTTCAGCCGCTGGCAAAAGCACTATGCCTGGTCAGCCCTGGCCCTGTCCGCCGCCTTCTCTCTCTTTGACCAGACCAGCAAGCTGCTGGTTCCCGGCCGGGAATTCGACCCAACTGACTTTCCTTTCGATATCGCCGGCTACCTGCTCGGGATTGGCTTAATCCTCTTGCTCCAGCGGTCATGGGCCAAGCGGGCCGTCAACTAAACCGCTAATACATTTTACTAATTGCTAAAAAGAGTGCTTTCCCGGCACTCTTTTTTCATCTTTAGCATTTCCTTGCTTCATCATTGCTATTTTAAAATTATCATAAACAGCTAAAAATTGTATAATATGTATTGTTTAAAATTTGCTATCAGAAGAAAGGAAAAAATACTAACTCCTCCACATTCAACAAATCATACTTTCCCTCCCGCCAATCGGCGGTGCTTTCAAAAGAGAATGCGATATGGAGAAAATATCAAAGGAAAGCTTAATGAATACGAACAAATTTACAATTAGCTGGGGAGACTTCAGCCGCTATCGGAGCAGCATGTTTGGCCTTTCAATCATTGGCATCATGGTCTTCCACTACTTCGAACATATTCGCAGCGCCCACCTGCTTCTGAAATCAGAGCAGTTCTGGGACTACTACATCGGTTCGACCGGGGTTGACTTCTTCCTCTTTTTGTCCGGGATGGGCCTCTTCTATTCCTTGACTGCTAATTTCCCATAAATTACTACTCAAAGTGCTCTATCACCTGATATGCCAACCTTTTAGAGGATTTCGTTGAGTTTAAAGTTACAACTCAAAAAATATTATCGTAAACTTCGAAAAAGGCCGTAATAGTAGGCTTCTTATACATTGAGTTGTAAAATCCTGGGAAATTAGCATTAAAAGAGCATTCCGCTGGGAATGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATAGCTCCCGGAGAATCAAGACAAATATCTGATTTAGGGCATGGTAAATACAGCCACCTTCTGTAATTTCAAAAAAAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGTTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAAACGAATAAGGTTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTCCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTACTTACGACATCGTGTGTCCAAAGAACTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTTACTTTACCAATTTACTTTTTATCGTGGTCCGGATCAGTGTCCAAATCTTCGTGAGACAACTTGCTTTCTTCAGTTACCTCGTTTGCGTCATACAGATCATGCTTAATCTTGGATGAGCTGATCTCAGGGGTTCTTGGCAGGTAAACAACGTTGACGCCTTCTTCTTTCAAGAAGTCGAACTTGCCCTTCCAGTCATCCCCCATGACAAAAGTGTCAATGTGGTATTCGTGCATGTCGCTGCGCTTTTGGTCCCAGTCATTTTCAGGGATGACCAGGTCAACGTAGCGGATGGCTTCCAGTAGCTGCTTGCGCTGTTCATATGAGAAGTAGGTCTTCTTGTGCTTGGAATTCCAGTTGAACTCATCAGTAGATAAGGCAACGATCAAATAATCGCCCTGGGCCTTGGCTCTTCTAAGCAGGTTGATGTGGCCGTAGTGCAGCAGGTCAAATGTTCCATAAGTAATTACGCGTTTCATAACTGCTCCTTGTCCCCCTATTTTAGGTATTCCTTGTAAGACTTGTCGGGATCAAAGATGACTGAACCATGGAGTGATCCGCCTCTGACAAAGATGTTCCACTTGCCGTACTGCTTAGTCAGCAAAGGATCGTAATCCTTTGGGATCGGCAGGCTGAGCAGCTCAAACGGCACTCTGACAGGATTGGCCACATACTCGCGCTTCCAGCAGCACTTTTCTGTCCCCAACATGACCATCATGACCTCTTGGGTAGCTTGGTCATCATACTTGGTGATTTCCTTGGCAAAGCGGTCGTAATAAATGTTTCGCCCACCGCTCTTTTTCTTTTCAAAAAAGAACTTGGTATAAAGCAAAAATTGCTTTAGTCCAGACAGATTCTTATTCGGATATCCGTTGCAGTAGTTGTAAAATTGCCGAGCCCGGTGTTTGAGCTGGTTGACGCTTTTGACAAAAGCTTGCCGCTCTTCCGGATCATCTGGCACATTGTCCAATGGGAAGATATCGATAAAAATCCCCTGGTTGAACTGGTAGTGAAAGTACTCCTCAGACTTTAAGATTGCAGTGGTAGCCGAATTACGCAACTGTGCATGCCCTCGTATAGATCCTGTATCCGTTTCTTCAGTCTGAAAAAAATAGGGTTCCGTAAATTCTTGACTGGCAACTTCGCAGAGGCGTTCAAAGTCCTTCCTGTACATCATCAAATCGATATCATCATCCCAAGGAATATAGCCCTGGTGACGAACAGCGCCTAAGAGAGAACCACCGGACAGATACCAGGGAATATCATATTTCTGGCAGACTCGGTCCAGCTGGTCCAGAAGATCCAGTTCCACGGCCCAGACCTTCTTCATCTCCGGGCTGACTGTATAGTCGTTTCTGACTTCTTCTTTTAAAAAATCTTCTGAGAGCTTGAGCTTAATATTGTCCATTTTCTTTTCTAAAATCTCCCTTATCCCCTGCCCAAAATCTTCTTAAGCAGGCCAACAGAATCATCCTTCATGATAAATAAGGTCGCCAGGTAAGTACCCGCGCCTAAAACAAATTGGATGCCCAGCTTGATGATGCCAGGATTGCCAAATGGATTCAAGGCCAGGATGACCAGCATCATCAGAGTTCCGGCAATCAGCTTCTTCCAGATCACCTTGCCAATATAAACCAGCTCTAAGTAGCCATTGTCATGGCAAAGGTAAAGCAGGCTGATTGTCAATTCCGCGATGATTGAGGCAAAAGTTGCCCCGGCACTGGCAAAGCGTGGAATCAAGAACAGGTTCAAGACAAAGTTGATGACTGCCCCGATGATAATGTAAACCGCGCTCTGCTTCCGCAGGCCAGCCGGGTTGTAGTATTGCGAACCCAGACAGTTGGAAATCCCGATGATCACGATCTGCGGGCTGAACAAACGGAGCAAAAGTGCCACCTTATCCCAGCCGTGACCGAAGAAGACCGGCACAAAGGTATCCGCAATTCCGAGCAGGCCAAAGCCGATCCCCACTCCGATGAAAAGGATATAATTTATGGATCCTTGGATCCGCTGCTTGATTTCCTTCTCATTCTTCTTGGCAAACAAGTATGAAATTCTGGCCCCCAGGACATTGTTGACGGCGGTAAAGGTCACCGCCTTGGTCAAATTGATGATCTTGGTTGCCTGCTCATAGTAGGCATTTTCCGCGTTGTTCTGGGTCATGAAGCCGATCAAGGTCTTGTCCATATAAGTATAGATGGAGGTGGCAATGGTCGGAATAAAGTAGATCAGAGTTTCATGGAAGTGCCGTTTCAAGTTGACCAGTTTGATTGGAACTTTTACGACGAACTTATGCAGTTCCAGCCACATAGACATGGTCCCCAGCAAGGTCGTCCCCGTCATAATGAAGACGTAAAGGTTGGTATCCTTAGGGGTCTTGACAAAGAGCAGGATCAAGATAACCCCAGCCACCTTGACCAGGGCGTTCTTGGTCACCGTGTACTGGAATTGCTCCAAGCCGTCAAAGAACCAGGAGATGTCCAGCATAGTGTTGAACAGGTTCAAGGTCAAGATAAGGAACATAACCCGGTAGTGGCTTTGGAAGCCTAGGTAAATTCCCCATAACAGCAGCATGGCCAGGGAGGTAAAAACACTCAGCATCTCAATTTCCCAAAAAATCTGGCTCCGCTTTTTAACATCGTTACGGTTGCGGGCAATTTCCCGCATCCCATATGAAAGCGTCCCCAAGGCCGCGACCAGGGAAAAGTAGGTCTGAATTGAGGAAGTCCAGCTGTAGGCCCCAATCCCATCAGTCCCGATGACTCTGGAAACGTAAGGTGCCGTAACTAATGGTGTAATTATAGATAAGACCTGATATAAGGTACTAATGAATATGTTTTTCTTAATGCTCGGATTATTCATTTACGCTCTCAATCTAATAAAAGCTACTGTCAAACCGTAATACTGTGACAATTACCATACGGTCTTACTATTTTTAATACCTTTAACAAGATTTTTTCGTCATTAGGATAGTAGCTAGGGCTATATCTTAACCAAGCCGTTTTTACTTTTCCAAAGCTTTAACTGCTTTTTTCAAAGCAACCTTGGTGAAGTCGCCTCTTCTGAGCTTTTTAGCTACTTCTCTCGCATTGATCGCGAAGTGTTCGTATTCTTCTTTTGTCACTTTATTCAGGACTTTTGGTAGATCATTCAAGGAGTCAATAGTTAGTCCGAGATTGTTATCAATGATGAAGCTAGCTTCAGCTGCTTGGCTCCAAATGATAACTGGCAAAGCTGAAGCGAGATACAGTGACAGTTTATGAGGATCGTTATATCGTAGGTAATTGCCAAAGGCGCCATCACAAGTCTCAATGCTACTACCGTACCAAATTAATCCAAAGCCTTAATTTAATTGATTTGGAATCTCATCAGCTGGAAAAGCGCCATGATACTCAACATTTTTGTAAGCATCTAGAGTAAAATTTAACCCATAAAGATTAAATTTTGCATCTATCTTTCCAATATCTTTCAAATATTGTGTCTTACTTACATCCAGATTACCAGCAACTGAAACGGATCTCTCAAATTTAGCATGGTTAATTTCACCATTTGGAATCAAATAGTCAAATATTTTTAGCGTAACCAATTTCTTTGGGTCAACACCACGATCCTCAAAAAAATTTTTCATGGAATCGTTGTGAACGATCAAGCAATCAGCATACTTAAGCATCTGGTTGAAATCTTCCTCAAAAAATTTACGATAGTAAAACTTTCTCAATTCTTCAACGTCATGTACCAAATAAATAAACTTAACGTTTTTTTATTCTTAAGTTTAGCTAAGGTTTCCTCTGCATTTTTACTGTTTCTGTCCCTTGCGGCTCAAACTCCCCTTAGTGGTTAAAAATTGACTTGTAAGGGTAGACTTGCTCAAAGCCCATAGCAAAGTCATGGACAAAGAGTATACCAAAGATCACAATAACTAAAATATACAAGATCAAGCGACGTTTGTCATCTCTTTCAAATTTACTGATTGCATTTGGGATAAAGATGAACTGGGCATAAGTAAAGATTCTAACTACCCGGTACGTAGCTGGCAAAATTCCATCCATAGCACATACAATCAAAATCATCCATTGCAAAAGCTTGGCAATTGCCCATTCTTCAGCTGAATTTCCTAGTTTTTGGCGATCATCAAGTTGTAACATGCCAACCAATTGGCTCTTAAAGGAAGACTTGTTATAGGAAAACTGCGTCAAATCCCTATTAAAACACTGCTGGTATTCTAGATAAAGGTAAATTAGTGAGATAGCAATTTGTACTCCCAAATAAAGTTTACCGATCGTCTTACCCAGATATACTCCTTGATTTAGATACATCTGTACTCGCGGAATGAGTAAGGCTAATAAGGCTAAAATTCGCTTGCCTAAAAGCTTAATAAAAATGTAAAAACCTAAGTTAATCAACAGATAGCTGAGCTGTGACAGAGGTAGTAGATCCAGAACCGCCATAATCAAGAAATAGTAGGCACTTTGGTGCATGGTCCCTGCTAGAATCGTCAATAAAACAAAAGCAATTTTCTTCTTACGAACTAAGAAATATAAAGCTGGTAACAAGATTGCTGAAGCTAAAGCTTGTCTAATATTGTTGATCGAAACAAAGTAGGTATAAGTCAAGTAGAACAGCAAGATCGATATAAAATAATTATCTGATAAAAAAACTGTTACTACATATACCAGTCCTAGGGTTAGGAGCGCACAAAGAGCAATTAACCACTGTGGATCACTGGTTAAACTAGCGACTAGCAGATTCAGTAAATAAAAACCAGGTTCATAATAATGAGTATAACTACCATTTACAATTGATAGAAACTGAGGGACATATGTATGAAAATAGTCAGTTCCCACTCCATAACGAAAACAAGAAATCAGCAAGATGGGTAGGGCAGATAAAGAAACAAGTCCAATTAGCTGCCATTTCTTGGTATCTTTGTACCAAGGCTGCTTAACCAGTAAAAAAGTTCCATGTTGGTTTTCTTCAATTAGTCGTGGCACAAAAGCAGCCACAAGAAGCGACATCGAAATCGCAATCAGATAAGCCATACTATAATCCTTTATTCTTTCCAAAGAAACAATTTGGTAGTTTATTTTTTCAAAGTGTAAAAGATCTGGTTGGTGATCTGGCGGCGGTAATTAGTAATTTTTTCCTTCATTGGCATTTCGGTATTAACGATCGGTAAGTGCTTAACCTTCAATTCCTTATGCGAGATCCAAATATTTAACAACCGCTCTGACAAGAAACCATATAATCTTTGCTGATATGCATTCAAACTACTTAAATCAACCTGTGGCTCTAGGTTAAAGAGGATTGTAAACAACCACTGACAATATTCATCAAATAAGTCCCCTCTGCAAAACATCATATTAAATAAAACTGCCTTGTTTTGATTAAAGAATTTATCAAAATCAGATAAGTATTCGGGACTGCATTTGGCCACGCTGGCTCGCAACTTACCAAAAATTTCTTCAGTACAACAATGAATCATAATTTCATCATGAGCATTCTGCTTAAAGTTAGCGACATATGAAGTCACCAAATCATGGTCCTGTAAAAAGCCTTTAAGCTCATCATAACTATATATCTGCTCAAAACTAGAAGAGAAATCACTTTTGCCAAAATAACGACGATAATGTACTAATCCCTTATAATCATCTTTTGTATTTTTCCAGATCCAATATAGTCCTGTCAATTCACAATAGTTAGGATTTTTTTCAGAAATATTATCTCCTGTATCATCAGTCAAGTAGTCCAGGTGTTCATGCAAACTACTCCCCACTTGCAAAGGAAGATATTTGTCTAGCTTGGGTAGCTTGACTCTTTTATGGGTAATAATGTAGATCATTTTGACCTCGTTTTTAATGATTACGAATTATATAGCTTCATGAAAGCAGCCACTGTATCTGTAATATCCAATTTTTGACGGGATAATAGGTCATAGTCGTCACGATGCCCTAATTCCAGATCCTTGATCACTTGACTTTGCCAAGCTGACAAGCTTGTTTCATCAATTGGCAAGAAAGAAACATTGTTAGTCATTTTAGCCTCACTAGTGATTTGATCAGAGAAAATTACTGGCAAACCAGCAGCTTGTGCTTCAACCCCGACAATTGGCAAGCCTTCAAAATGAGATGGCAGCAAAAATACATCCATCGCTTGAAAAAGCTCACTAGTATTGGAACTTAAGCCGTAAAAAATTACTTGCTTATCCAGTCCCAAGTCATGCACCTGGTGTTTACATTCATCTTGCAAATCACCTTTTCCTACCAAAAGCAAGCGAGCTTGTGGATCTTGAGCATAGACTTTTGCAAAAACTTGAATCAAGTATTGGTGATTCTTCTGGTAAGCAAAACGACCAATATGGCCTAGTACATGTTTGCGAGATAAACCTAACTCTTTTCGTATCCTTTTTCTAATAATAGGATCATAACGAAAGGCGGCTAAGTCAACCCCATTCATAATCTTAATCACCTGTGACTTGGGTATACTTGGGAACATCCAATTAGAGGCTAAATCAGAAACTGACACATAACAGTCAGCCAATTTGACTAGCTTCCCTCTCAAGCTTTTATGAATAAAGCGCTTAAGCTGACGATGAGAACCATCCACATCACTGGCATGTGACTGCAAGATTATTTTAACCCCACTATCAGCCTTACGTGCAGCCAAAGCCGTTACGTAGAGTTTATTTGCTACATCCCCATGGATATGAACATAGTCATAATTACCATCTTTTACAACCTTTTGTAATTTCTCATAGTACTTAAGCTGCTTCTTGATTTTATTACCAGGGTAACCAATGTAATAGACCTGAGTCCCTAGCTTGTTTAAATAATCAATATTTTGCTGTGATTCAAATGGCTCTAGGCAGGCTAAGTCAATCTGATAATCGGCCGGCTTATTTTCAATTACTCGTTTAATTAGAGAATACACTCCGCTGTAACCATTGTCATCAACATTAACTTCTAAGATTCTCTTAGTCATGCTGCTCCTCAATATATTCAATTTCAGGTCTGAAGAAAATGCCCTCAACTGAACCCCCTAAGATTATCCCCAGTTTTTTGAGCTTATGTGGATTATGAGTAAAAATAACTCGCAACATATTGTAGTTGACCTTGGCGAACTGTCTAAGTCGACCCTTCATTCCATTTTCTCTAGCTATCACGCACTCATTACGATAGGCAAACTTATAAAGACCGATCCGATCACCCTGTTCCTTAGCGATATTAGACCCATTATTATCCCTAGTCTTATGGATTACTTGACTCTTACCAACTACATAACAAGGATATTTTTTTGAAAGGCGGTTGGAATACTCAACATCATCCCCCCAAATAAAGAAGTCTTTAATTGGCAGGCCAAGTTCCTTAACCGTTGCAGTTTTAACAAAAAATGATACAAAAGTTGAGTAGTACGTTCTTACCAAGCCAGCAGACAGATAACCCAGATCACTAGTCCAGTCCTTGACCAATTTCGGACGGTTCATAACACAAGGCTGGCCATCAGTCCAAAAGACTGTACTAGATAAATAGCCATAGTTTCCCTTAAGCAGCTGATCTGCCTTTAGCAACTCTTTTAAAGCATCCCTTTTGACGATCGCATCATCATCCATAAGCCAGACATACTTGTAACCAGCCTCACAAGCTTTGCGCATTCCAAAATTAAACCCACCGGCACCTCCTAAATTCTCGCCGGTATTAATATAAATGATTTGCCCTTGATCAATGTAGTCAGCAATATAGTCCTTAGTCCCATCCGTACTTGCATTATCAACGACTAATACATCTGCCTCAGCTGCACTCTGCATCAACAAGGCATCAATTGCTTCTTTTAGTAGTTCTTTTCGATTATAAGTTACAACTACGGCAGCCACAGATTTCAAAATTTGCTAAATCCTTTCGCTAATTAATTATTTTTGCAACTTTTTACTAATTAAGTTCTTGGCTTGATCAATAATTGGAGCCTTTAAAAAATATACTAGCCCAGCATAAATTACTACACCAACAGCCACTTCACAAATCAACCAAAGCCAGCTAGCCTTCAAGTGTGTATTCATCCCAAAGACCGCAACAAACATTACCCCACTGGCCAATAAGTATTTCCATGAACTTTGGAACATTAAGCTTAGATCCAAGTCCTTTCTAACGACATAGAGCTGGTAGCCCGTCACAGCCACTTCCGACAAAACGGTTGCCCACATCGCCCCATTTAATCCCCAGAGACTGATAAAAGGAAAGTTCAAGATAATATTGACTACAGCCCCGATAGTTACGGAAGTCGTAAAGTCCTTGACCCGGTTAATTGGGAGCAAGTACTGCGTTCCAATAACATTGGACCAGCCGATCATCAAAATAACGATTGATTCGATCAGCATGGCTGGACCAACCGGAGCATACTTGGCACTATAATACAATGGCGCTAAAGTTAGCGATACACCAGCAATTCCAAACATCATTGGGTAGGCCAAGGCGGATACGAAATCAAAAGACTTGTAGAGCATCTCATGGGCTTTTTTCATATCGTGCTTGGCAAAGGCATTGGCCACGTGCGGCAGCATGACTGTCCCAGTTGCTGTAACAAAGGCCAAAATCAGCTTAACCAGGTTGTCTGAATATTGGTAAAACCCGAGGCCTTCTGGTCAACCATTAGGCCCAGCATGGTTCGGTTCAGTTGAACATAGAGCTGGGTCGCGATTTGTGGGATAAACATAGCAATTGTTGGCTTAAAATGCCTTAGGGGCTTTAAGCTGGCCAGGTTAACACCAGGCAACATCACTTGAACTCTTAATAAAAACAAAAATAGCGACCATCGAAACGATTTTAACAAAGGTATTTCTCAAAACCGTTCGCCGGAAATCCTCAATTCCTTCATATAACCAAGAAATGTCAAAAGCAACCGCGATCAAGTTGATTGACTGGACCCACATGTAGGTCTTGTTGCCGGAATAAAAGGCCATAAAGACCACAAAGGACAGATAGGCAACAACCGTCATCACAGTCTTGACGATTTGAATTTCCCAGAAGGTTGCCGCCATCTTTTGCTTATTGTCTCTGACGTAAGCAATTTCCCGGTTTCCGTAGTAACCAATCCCGATGTTGGCCAGCAACATGAAGTACTGGATGATGGAGCTGGTAAAGGCGTTGGCCCCAACCCCTTCCGGACTCAGTACCCGGCTGACGTAGTAGGAAGTGATCAGCGGGACGATGATGGCTAAAACCTGGTAGCCGACATTGTAAAGGTAATTCTTAACAACACGCACGATTACTTACCGAATTCCTCATTAACAGCTTCCAAAGCAGCCGCGATGACCTGGTCCATGTTGTAGTACTTGTACTGACCCAGGCGGCCGCCGAAGATGACCTTGGCATCTTCTTTGTCAGCCATTTCCTTGTACTGAGCGTACAGGTCGTTGTTTCTGTCATTGTTGACCGGGTAGTAAGGTTCATCGCCCTTGTGCCAGTCAGCTGGATATTCCCGGGTAATGATGGTCTTGTCCGGGTCCCCCTTGCCAAATTCGAAGTGCTTGTGTTCAATCACCCGGGTATAAGGCGTTTCTGCGTCGGTGTAGTTGATCACGGCGTTACCTTGGTAGTTACCCACGTTCTTTTCTTCAGTTTCAAAACGGAGAGACCGGTACTCCAGTTCACCCAGCTTGTAGTCAAAGAATTCATCGATCGGGCCAGTGTAAACTACCCTGTCGAACTTTTGCAGATACTCGTCCTTCTTGGCAAAAAAGTCAGTGTCCAGTTCAACCGTGATCTTGTCATCCTTGAGCATGTTTTCCACCAGCTTGGTGTAGCCGCCCTTAGGAATCCCCTGGTAGTCGTCGTTAAAGTAGTTGTTGTCGTAAATCAAACGAACTGGCACCCGCTTGATGATGAAGGCTGGCAGTTCAGTTGCCTTTCTGCCCCACTGCTTTTCCGTGTAGCCCTTGATCAGCTTTTCATAAATGTCGCGGCCGATCAAAGAAATAGCCTGTTCTTCCAGGTTTTGCGGAGTCTTGCCCGCCATTTCAGCCCGCTGCTCGTTGATCTTGTCTATGGCTTCTTGCGGCGTCCGGACACCCCACATTTGAGTAAAGGTGTTCATGTTGAAAGGCAGGTTGTACATCTTGCCCTTGTAATTAGCTACCGGGCTGTTGGTGTAGCGGTTAAATTCCGCGAACTGCTGGACATATTCCCAGACTTCCTTGTTTGAGGTGTGGAAAATGTGGGCACCATACTGGTGGACCTGGATGCCGTCAATTTCCTTGGTGTAGATATTGCCGGCGATGTGGTCACGTTTTTCGATTACCGTAACTTCGTGCCCCCGCTTGGCTGCTTCGCGGGCAAAGACAGCACCGAAAAGACCTGCACCAACTACTAAATACTTGCTCATACTTGTTTTGCTCCTTTTATTTAAAAGTGGGTCTGCTTCTTGCCAATGCCAAGCTTGCGCTTGATCAGGTTGTAGCCCTTCTTGATTACCGCTTCACCGCCGATTTGCCCCCAAGGCATTTCAACGAAGTCCTGCTTGGTCGTGTAGAGCCAAACATCCAGCAGTCTTTCGGAAATGTAGCCATAGACCCGCTGGTCCTGGACAGAGTAGCCGTAAATATCGATTTGCCCTTCCAGCTTGCTCAAAACGCCAAAAACAAACTCACAATAAGACTCAAAGGCTGGCCGTTTCATGACAAACATATTGAACATGTGGGCACTGCGCCGCTTCATCATCATGTCAAAAGCCGGCAGATAGTCTGGATAGGCATCCGCGATAATGTCACGGGTCTTGTCCAGAGGCTCTGCCGGATGGGCATGAATGTAGTGGTCATAGTTGCTTTCGATGTAATAATTCCGCTTCTTCGGCACGATCACGTCGTGGTCAACCAAAAAATGCTCGTAGTCGGCTCCTTTAGCCACGTGATCCAGGTTATGAGGCTTGGATACATAAAAATAGCGGCGGTAATGCACCAGGCCAATTGCGTCAAAGTCTTTCAAGTTCTTCCAGGCCCAGTAAACTCCGGTTAGTTCAGAGTAATAAGGATTCCTGGCAGAGATGTTGTCTCCTTCGTCATCGCGTCGGTAGGCAATACCTGCTTTGTAGTTCTTAACCGCCCCGACCAAGACCGGCAGATAGACAGAGTCGTCCGGCATCGGGAACTGCTTGTGGGCCGCGACTAATACTTTAATTTTCACTAAGTTTCCCCCTATTTTAGTAAGCCCCTTCTTTTTTGAAGATGCTGAAGATTGTCTGGAAGAAAATTTTTACGTCATAGGTAAAAGAGATATTGTCGATGTATTCCAGCTCAACGTCGCAGCGCTCCGGGTAGCTGATATTGCTCCGGCCCGTTGCCTGCCAAAGTCCCATGGCCCCAGGTCTGACTGAAAGGAACTTATCCTTGCGGTTGCCATATTCAGCCAATTCTTTTTCAACCACCGGGCGGGGGCCGATGATGCTCATATCACCTTTAAGGATATTAACGAACTGCGGCAACTCATCAACTGAGGTCCGCCGCATCCAGCGGCCAATCGGCGTGATTCGCGGATCTTCATCAGCCAGCAGCTTATAGTCGTTGGCCACGTACTTTTGGTAAAGTTCTGGATCGCTTTTGAGAATTTCCTCAGCGTTCATCTTCATTGACCTGAATTTGTACATTTTAAAAGACTTGCCGCCTTTGCCAATCCGTTCTTGAGCAAAGAAGGCGGATCCGCCATCCCGGCTCTTGATCAGCAGTGACAAAACTAAGAAGACTGGTGAAAAGACGATTAAGGCCAGCAAACTGCCGACAATATCTAAGAATCTTTTCACGTACCGATATGCTCCCAGCCTAGTCTCTCCATCAAAACCATTGTTATCTGTCATTATCTTCGAGCTCGACATATTAAAATCCCTTTATTATATTATCATTTCGCTATTATCATAATATAGCAACAGTACACACAATTTTAATCAACAGTATACCATCTTTGTTTGCTTATTCCAAAACTTGCTTAAGCGTTTTTGGCCTTTTTACTTAATTTCAATAATTGACCAGCTATTTTATCGATGATCGCCTTATCTACTTCAGCATCAAATTTCCTGGAAAAAAGGTGGGCCCTGCCGGCGGGCAGCCAGCAAAGTCTCATAATCCTTCTCCCGCCAAACGTAAGGAATTCCGTCCCACCAATTAATATAGCGGAGGTTGCCTTGGAATTCTTCAGGCCGGTCGTGAACCGGCCGGTCATAGTAGATTCTGTCTTTGAATTCCGGATAGATGTTCAGCATCGTTGGCACCAGCAGCTCATCGACCAGGAAGCCCCGGGCAAACATCGTTCTGATCCGGTCATCTTCCCGCAGCAAGACCTGGACCAGGTCATTTTCCAAACTGACCCAGTTGGAACCAAAGGCCAGTGTTCCAGCGAATTTCTTCCTTACTGGAAAGACCCGCTGCTCTGCCTTTTCGATTTTTCTAAAAAGCCGCATGGCCTTGTTTGGCTGCCGGAAGTTATGGGTGAAATGATATTTCTGCACCCGGGCCAATAACTGTGCCCCATTTTTCTGGGAACTGTAGGTAATGAATTCCTTGCCAGGATGAGCGGCAAAAAAAGCATGAATCTCATCCTGATTAGCCAGCGGCAAGTCCAAGCCAGACAGCAGATGGTAATAGGCATATTTGCCTGGAGCTGCTCCTTGGAAAAGCCGCATTTCAGCTTCAATCTGCGAATAACTACCCCAGTCGATGACCAGGGGCGAGACACTGAAAAGCGTGGCGTAGTTCAGCTGAAAGTCACGCGGATAGCCCACGCTTTTTCTGTCGACCAAGAGATAAATATCGTTACGGCTGTCATCAAGCAGAGTCAGCAAGGTCTGCAACTGACCCGGGTTGCGGTTGGCGATGATTAAGTAGGCATGTTTCTACATTTTTTCACTTTTCAATAACACACTTAAACTTCCCACTTACAAAAGTGGGAAGTTTAAGTTAGTAATTAATAGCCGGTACTGTTGTTTTGATCATTGCCGGCTGAGTAGCCGCCAGTAGTGCCGGAATCAGCGCCATTGCCGGCTGCTGCCCCATTATCGCTTGGGCCAGCGGTGTTACCAGCCCCGCCGGTAGTATCGCTGTCAGTTGTCGTGCTGCTTGAGCTCGAACTGCTGCTTGTTGACGTATCGATTGAATCAGTGCTTACCGTCTTTGTCTTGAGGCCCAGGGTCTTTCTGATCAAGTTGCTGATTCTCTGCCGTTCAGAAACAGAAATCTTCTGGTAGGAAACCCCGTCTTGCATGTAGCTAGTGCCGTGAGTGTAGTCAGTCTTCAAGTCCTTCGTGGCTGCCAGGTAGCGCTTCGCCATAGAAGTCATGTCACTGAAAGTAAAGTCAGTTTGCACTTGCTTGGACAGGGAAGAAATGAAGCTGGAGTTCAGCAGGGTTGTCGCGCTTTCAGCCTTATTCAAGAGAGCTGAAAGGACTTGCCGCTGCCGCTTTTGCCGGCCGTAGTCACCTTCTGGGTCATCATACCGCATCCGGGAATAAGCCAGTGCCTTGGCCCCATCCATGTGAGTCGTCTTCCCCTTGGTGAAAGTGTAGCCTTCATAACTAAAGGAAAGAATCGGAGCAATATCAACACCGCCGACCTTGTTAACGATGGTCTTCAAACCGCCCATGTTGATCAAGACATATGCGTTGATCGGGATATTGTAGTACTTCTTCAGAACCTTGGCTAATTCCTTAGCATTGCCGTAAGCGTAAGCCGCGTTCAACTTGGAAGGTGAATTTTCCGGGTAGTCTGGCAAGTTGACCTGCTGGTCTCTTTCAAAGCTGACCAAAGTTGTCTTCTTGGTCTTTGGGTTCAAGACCGCGACCATGATTGAGTCGGTCCGTCCCTTGTAGGTTCTGCCCAAGGCCCCAGTGTCCGTCCCCATCAAAAGAATTGCAATTGGCTTGGAGTTGCTGATAACAGAATTCTTGCTCCCGTTTTCCGCATTCCCCAGACCGCCAGACCTATAGGCAGTATCAGCCGCGTTCTTTACAGTATTGTACTCATAGAGGGCAAAGCCGCCGATCGCTACCAGAATGACCGCCATCACGCTCCAGAAGATCCGCATGGCCTTGTTGCGTTTCTTCCGCTTGCCGACTCTGGTATTTTTGTCCATATCATTATTCACAGTTTTCACCAGTATCCTATCTATATAATGATTATTATCTCCATTATAATTAAGATCTCGTTAATTTGATACCATGAATTAGATTTTTAGCTTTTTTTAAAAAGTAGACCCGGCTTGCAAACAGTAAATTTCCGCCATTTTCCGCCTATTCCTTCTTTATGTAATCATGTTAGAATGTCAAAGTTGTTTGTTCTAACACTAAAGTGATTTTGTAAAGAAGAGGAATTTCCGTGAAGAAAGCAATGCAAAAATTAACGGCCCTCCTGCTGGCCTCAGCCAGCTTCCTCGTGGCCAGCCCCGCCAAGGCCAGCAGCCTGGCTGACCGCAACTACCAGGGGCAAAAAGTTATCACCGTCAACCAGGAGCGGCCAACTTTTTCCAAAAAGGCCCTGTCGACTAAAAAGGGGGCCTAGCAGATCTACCACAAGCTGGACTTGGACTCTTTAAACCGGGCCGGGGAAGCCGATGCCCTGCTGAACAAGCGGCTCATGCCGGCCAAGGCCAGAAAGCCCCTTTACTGGAACCCAACCGCCTGGCACAACAAGAAGATCGCCGGCGGCTGGCTCTACAACCGCAGCCACCTGATCGGCTACCAGCTGACCGAGCAAAACAATAACCCCAAGAACCTGATCACCGGGACCCGGCAATTAAACGACCCGGGCATGCTCAAGTACGAAAACCAGGTGGCCAGCTACATCAAATCCTCCAGCCGGCACTACATCCGCTACCGGGTCAAGCCAATCTTCCGCGGCCGGGAGCTCCTGGCCCGCGGGGTTGAGATGGAGGCCCAGTCCACTGGCTCTAACGCTGTCCGCTTCCACGTCTACATCTTCAATGTCCAGGACGGCGTCAAGCTCAACTATTCAAAGGGTACCAGCGTGGTTACCGGCGCGGCGAAAAAGTCTGCCAAAAAGACAGTAGTTAAAAAGGCCGCTGCTAAAAAATCCACATCTTCTAAAAAGAAGATCAAGACTTCTACCACCGGCCGGATCGTCGGCAACCGCCGGTCCAAGATCTACCACGTTCCAGACCAGGCCGGCTACCACATGAATTCAGCCAACGCGGTCTACTTCCGCACCGAAACTGAAGCCAAAAGAGCCGGCTACCGCCGGGCACTGCGCTAAAGCATATTTATTGTATTTTTGCAAGGGCCTGTGTAATATTGACAGTAGGAAAAGGCAAGAGAGGTGGACCTACCTTTTCCTGTAAAGGTTTTATATCATGCTCTTTTCTTATCGCATTTTTACACACATACTCTTTCATCTTATTTGTACATGGTACAATATGTTGGCATATCGGGCGACTCATTTCAAACACTTCTAACATCTTTCGCATTTTTACCGATTCCTTTCTATTCATAAAATGTATCGAAGCCATATGCCATCCCCTTTTACATCAAAGAGGAGTCCCAACCGCGGGTTGGGGCTCCTTTTTTGCTCTATTAAGCTTTCTTCTTTTTTCTTCTTGCTCGTTTCTTCTTGCTCGTTTTCTTCTTTTCCGTCTTCATCTTCTTCACCGGCAGCGGGTTCTCTTCCAGCTTGTTCAAACTGATCTGCCGAAGCAGCTTCTTGAAGCGGGCTTGGCTGCCGATTTTTTCTATTTGCCCCCGGTTCCCCTTGAACCAGTAAACGCCACTAGTGTCTGCAAAGAGGCAGACCATATCAGAACCCGCGTAAGCGCCGGTCAAACTTCCTTCCGTCCCACCAATCGCCACTTTTTTCCGGTAAAAATAGCGCGGCTTGACCCCGCCAACCGGGAAATAGCTAGGCAAGCTGTTTAAAGTATCCGGCCGTTAGCTGCTACCGCCAAAACCAGCAGGTCACTCACTGCCTGCCCGGTCTGGTTGTCGATCTTTAGCTGGAGCTTGCCGCCCTTTTCTTCTGTCTCCCAGACGTTTAATCCCGCGGCCGCGCTGGCTGCTGGCAGGTCTTGGTTGGCCTGCTTAAGTGCCTGGTTTTCCTTGGCCAGGCGGGAATTTTTCTTCTTTAAACTGGAATTGTCGCTCGCCAATTTGTCCAGGCGCTTTTTGATGCTGGAAGCTTCCTGGCTCTTGGTCCGGCTGGCCTGGTAGAGCTGGCCGGCCAGCTGGCTGTTTCTCTGGGTCTGCTTGGCAGCTTGCGCGCTCAGCCAGACGCTGGCTCCCATGGCGGCAAAGCCCACCACCAGGGCCAAGACCGTCAGCCAGGTCAGCCAATTCTTCTCCTTCATCATCTTATCCACCTTATATTTTTAACATCACTCTTTCATTATACTGCTTCCTTTGAAAAGGCTTCCGCCCCCCCTGGCTAAAAGAAAAAGGCGGGAACTTCCCGCCTTATTGAGCATCGCGCTCGGCAATATCCCAGCGCATCAGCTTCTCAATGATGTCAATATATTCCCGCTGCACCTGCTGGCCCAGATAGGTCAAACGGATATCGCGGTCGGTCAAGTCGACCACCCTGCGGTCTGCCTGCTCCAGCATTTCTACCGGCAGCCCGGCCAGAATGCTGTTCCTGGACACGCCAAAAATATTCGCTATCTTATCAACAGCCTTCATCCGCGGTACCTTGCGGCCAACCTCCCAATTAGAGATGGTCTGCTTGCTTACTCCCAAGGCCAGGGCTAGCTCCTGCTGACTCATCCCCCGCCGCCGGCGCAGGTCTCGCAAATACTTGCCAATCATGTTCTTTTCCATCCAAAGTCACCACCTAACATAAGCATAACATAAGTTGTAATAAAATGAAATGTTTATGAGAGTTTTTGCCTTTTTTGAGAAAAGAAGAGAAAAGATAAAAAGAAGCCTGCTTCCGCAGACTTCTTAATTAACTTTATTACTTGGTCATTTCTGACTTCTTTTCCCGCAGCATCAAGGCGTCAACGGTTTCCCGGGCATCAGCACCGCGGTTGACCACGGCGTCAACGGCGAAGACGATTGGCATTTCCACGTCATACTTGTCAGCCAGTTCCAAGGCAGCTGGAATGGCGTTGATCCCTTCAACGACCATGCCGACTTCCTTCTTGGCTTCTTCAGCGCTCTTGCCCTTGCCGATCAGGTAACCAGCATTGTTATTCCGGCTTTCCTTGCTGGTAGCAGTAACGATCAAGTCCCCCATGCCGGCCAGGCCGTCAAAGGAGTCTTCCTTGCCACCCATCTTAAGGCCCAGGCGCTTGATTTCCGCCATCCCGCGGATGATCAAGGCAGCCCGCATGTTGTCCCCGTAGCCCAGGCCTGAACAGATCCCGCTGGCCAAAGCAATTACGTTCTTCAAGGCCCCGCAGAGCTCAACGCCCAAGCGGTCAGAGTTGGTGTAAACCCGCATGTTCTTGTTCATGAAGACATCTTGAACCTTTTTGGCCACAGCTTGGTCTTCACAGGCGGAAACGATAGTGGTGGGCAGGTCCTTGGCCACTTCTTCAGCGTGGGTCGGGCCAGACATGGCAACGTAGTGGACATTGCCATGCTTGCCGTCCTTGTTCAATTCGTCAGCGATGACTTCAGTCAAAGTTAAGAGGGTGTCTGGTTCGATCCCCTTAGCCACGTCAACGATGATCTGCCCGTCTGGAATAAAGGCAGCGGCAGTCTTGGCAATTGAGCGGACGAAGACTGATGGTACGGCGAACAGGATGATGTCCTTGTCTTGGCAGGCTTCCGCAATTTCCTTAGTGAATTTAATTTCGTCAGGAATAACCATACCCGGCAGGTTCTTCTGGCGACGAGTTCTTGAAAGTTCGTCGACTTCTTGCGGCAGGGCTGACCAGACGGTCACTTCATGACCAGAGTTGCTGAGCATCCGGGCCAGTGCCATGCCCCAAGTACCTGCTCCCAAAACACCGATTTTTGCCATATTATTACCTCACTTAGTTTGTTGATTCCTATTCGCGGCGGCAAAACGGCCGCCACTGACCTAACCTATTATAGCACTCAGCCGGCAACTTTCTCTTTAACCCCAGCCTAATTATTGAAAAATTATCCTTTGCCTACGCAAAAAAGACGTTTCCCAATTGAAACGTCTGTTAGAGAATAGCCATATTAAAAAGTGTAAACAAAAAACAGCTATGCATTTATCTCCAAGTGAAAAACTCAATAGTTTATTAAAAAGTAACCGCTTACTCTTGCATAGCCTATTGTATGATGTAAAATAGGATTTGACAAGGCTCTTTGTGAATTTAAACATTTTTTATGCACTTTTTTCAAAATACGAACATTTTTCCTAATTGCTTTCTCAGCAGCATAACATTTTATCAATTTGTACTAACGCTAAGCGAGGGGGATTATAACTAAGAGTATATTATAACAACAAATAAGCGCAATTCAGCAATGTTTAAACAGCTTAGGAAAGCAAACCAAAACGACTACTTGCTTATCACGGCTACTTTGATTTTGTTGGTCGTCTTCAGCCTCAGCTTGCTCAGTTACGTCCAGGGACAACAGAAAGCAAGCTGAGCGCGACCAGGCCCAGGCCCTGGCAACCGGCTTCTCCAGGACCTTGAAGGACGAGATCAAGAACGCCCTGACCCTGTCGACGACTCTGAAGGAACTAGTTTTAGCCAGCGATGGCAAAGTCGACAATTTCTCCACAGTTGCCAAGGACCTTTTAGCAGAAAATACCGCGGCCAGCAACCTGCAGCTGGCGCCTAAAGGAAAAGTCACTGAAATCTACCCTTTAAAAAGTCACTGAAATCTACCCTTTAAAAGGAAATGAAGCAGGCAAGATCAACCTTTTGACCTACCCGATCCGGGGGCCGCTTTGCCGCTACGGTATCAGCCACCAGGTCACCGTGTCAATCGACCGGCTCAGCAACCACCGCTTCCTGCTGGGCCTGGTCAGCGGGGACCGGAAGAATGAGTTTAAGGCTTTTGGCCGGGACTGGAATGAGCGCAGCGAGATCTTCAGAGAAGGCTGGGACTTAACCAAGAAGTCTCTGACACATCCCAACCGCCTGCACTTCAGCGGCAACTACTATAGCAAGCTGACCGGGTCTTTGAGTTGTCGTGCCTCAGCTTGAAGAGGGCTACTCAATGCCTCTGGTGGCGATCGGCCGCTGCCGGCAAGATCTCTCCTGGCTGGCTAACGAGCCGGACTCCTGGATCTGGCATGGGATCGGCGAAGATGAGACGGCGCCGGCGGTTAAGAAGCTAAATGACTTGAATGAGGACGGCAACTGGCATCCCTTCGGCTACCAAAACTTCGTTGAGCTGTTGGATGACCCGGACGCCCCATGCGAGCTCTTCAACAAGATCTACCTGCGCGGGGGCGCCAAGAGCATGGCCCAGTTCTGGCGCAAGCAGCGCGAGGAAGGCTTAAACCACGTGATTATCAACTTCAAGCCAACTAAACGGCCAATTGCGGACTGCTTGGCTGACATGGAAAAGTACGTTTTCCCAGAAGTAAATAAAGACTAAAAAAAGGCTCTGCCATCGTGCTTGATGACAGAGCCTTTATTTTTGCTCAAATTAATTACTTAGCTGAGCTAGTTGAAGATGCTGAAGTTGACTTTGCGCTACCCTTCTTTGCAGCCTTCTTAGTTGACTTCTTAGCAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTATCCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTATCCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTCCTTAGCAGCCTTCTTAGCTACCTTCTTGGTGTCCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTAGTAGTCTTAGCTGCCTTCTTGGTAGTCTTCTTAGTGTTCTTTGCGACCTTCTTAGTTGACTTCTTTGCAGCCTTCTTGGTGCTCTTCTCTGCAGCCTTCTTGCTTGATGATGAAGCTGCTGAAGAACTGCTCTTTGAAGCTTCTGATGAGCTTGAAGCCTTTGATGATTCTGATGAGCTAGTCTTCTTTGATGAAGATTCAGCAGCAGTCTTGTTGCTCTTAACTTCAGTCTTGTTTTCAGTTGCAGCCAGAACTGGGCTTACGCTAGTAGTCAGCAGAGCAGCAGCAACAGCAGCTTTACCAAGGTTTTTCATTAAACGCTTGTTCTTCATAATACGGTTCCTTTTCCTATATCGGTATCAAAACAATTTCTATTACTTGCCCCTAATTATACTCAATTATTGAAAGATGTTAAGCCAAAAAAATTACGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGCTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCTTTGGGAATATAGCATCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCCCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCATTTTTTGTACTCTAATCCAGTGAAAACGATTTTTCTTACTGGATCAGAACAGTGTTCAGTTTAATTTTACAATCGGCGAGCCAAAAAATTAAGAAAATTAGAATTAAACTTTTATCCTCACTGAAGGCAAAATTATCCAGCTTATTTTCAAGTTAAAAGAGTTTTTAGCCTGTTTTTTCCACCTATGAACATTATATGATCGATTTCTATATGTCTACACAAAAAGCAAAAGTTATATTTTCAATAACAAGTATAAACAAAAACAGTCCTGCTGCTCAGCAACAGGACTGTTAAAAGCCTTATTCTTGCTATTTTACTGCCGCTTTCACTCTTGCGCCCAGCCCCACATAAAATTATACAGTTTCAAATATTCAATACACCGGAAATAAAGGCTCATGGTGGTAATGAAGACTGGTATGACGAGCTATTGGAAAAAACAAGCTCTTACTTCGTCAAAGACCTGCTAGATCAGGCATATAACTCACATGACGAAGTGGAAATGTGCATCAGACTTGAAGAGATCATAGATATCTGTAAGGCAACTGAAAATAGTCACTTTATTTGGTTTGCACGTCTCTTATACCGCCATTTGAGAGGGATCTACACGTTTGCCAAATACGGGATATCAACTGGCAAATTTGAGGGGTATTAACAATAAGATAAAGACCGAGAGACGTAAAGGGTATGAGTATCCAGATGATGAATATAATGGAGCTATCACGGAAGGCTTCCTAAGTCTCTCAATCATTTACACAAGTTTCTATACTGAACCCTTTTAAGCAAAAACTGGCCAAACGACGATTTTTCAGATTAATTTTCAATTATCAGACTATTCTTGCTTTTTAGAGTTAAAATTAAATTAACTTTGGGAGAGGAGGAAAGACTATGCAATTTACCAAGCAATTTGAAGGAACTTTCGCCCAAGTCAAGGAACAAATCGACAAGTTCGTTGCTGAAGGCGGCCATATCGACGCGGTCATCACCGACCACACTAGCGAAAAGGTTACCGAAAACCACACCTTTAGCTACAAGATGCGGGTCATCGCTATCTGCAGCGAAGAAGAAAGCTAAATAATCGCAAAATGCGCCATCCCCAAATCGTGGGATGACGCATTTTTTGTCTATAAATTATTCAACGCTTGGCAACTTAATGTCCACGTCATGTTTATCAGTAACTACCGTCATGACCGTTGGGTCGTAGCCGGCTTCCTTAATGCACTTTGCTAACCAAGGTAAAGAAGTCGACTTTGCCCTGCCATGGGGGATCCCGCACAGCGGTGACTAAGACTTAGACGATCTCTTTGCCTGGATTGACCAGATTATACAAAAGGAGGAGGACTAAAACCACAAAAAGTACAATGAATAAAACGAAGACTCCAGGCAATTCCGGCAACTTAATGTTCATTTTTCTTCCCCAAAAATCAAGCAGACTAATCAATAGAATAATTTTTGTAATTGATTAAAAAATCTATTGACATCAAGCAAAGTTCCTTTGAAATTAATACTATCAAATAAAGATTACAGAAATATTGAATCGCTTTTTTGTCTGATATGGGAGGAAATCATCATGAAAGAGGTCAAGCGAATTATGGTCGCCGCTGCCGCTGCCGTCATGGCGCTCACGGCAGCTGGCTGCAGCTCATCATCGTCATCATCATCCAGCAAGTCTTCTTCCAAGGTCTACAAGATCGGTATCTGTCAGCTGGTCCAGCACGAGGCTTTGGACGCGGCGACTAAGGGCTTCAAGGAAGAAGTTACCAAGGAACTGGGCAAGAGCCATGTCAAGTTCGACACGCAAAACGCCCAAGGCGACTCTTCAACCGCCACTACGATCTGTAATAACTTCGCTTCTGAAAATGAAGACTTGATTTTGGGAAACGCTACCGCCTCCCTGCAGGCAGCCAGCGCGGCTACTAAGTCAATTCCAATCTTGGGAACGGCGGTCACCAACTACCAGGTGGCTTTGAACCTGAAGAAGTTCAACGGCACGGTTGGCAGCAACATTTCCGGAACTTCTGACCTTGCTCCTTTGGACAAGCAGGAAAAGATGATCAAGGACTTCGTTCCTAATGCTAAGAAGCTGGGCATCCTCTACTGCTCTGCTGAGCCAAATTCCAAATACCAGGCTGATGAAGTGGCCAAGTACGCCAAGAAGGACGGCTTGAAGGTCACCGAGTACACTTTATCTGACACTAACGACGTCAACTCTGTCACCCAACAAGCTGCTAGTGCCAGCGACGTCATCTACATCCCAACTGACAACACGGCTGCATCCTGCGCCAAGACCATCAACAACGTGGCTCTGAAGGCCAAGGTGCCAATCATCACCGGTGAAGAAGGGATCATGAGCAAGTGCGGGGTTGCCACCCTGTCTATCGACTACTACGGCCTGGGCAAGCAAACTGGCAAGATGGCCGTGCAAATCCTTACTGGCAAGAAGAAGATCGCCCAAATGCCGGTTCAGTACTACAAGAACCCGGTCAAGGAATACAACCCAACCATCTGCAAGAAGCTGGGCATCAAGGTTCCGGCCGGCTACAAGGCTTACAAGAACTAGTTTTTAGTTTTCTTTTGTAAAAAGCTGCTTGAGACTGGAGGACACCATGGCAGGATACTTATCATCATTGAGCTTTCTCGACTTGGCTGGCCGTTTGCCAGCATCAGTCGCGCAAGGGCTCTTCTGGGGCATCATGGCCCTGGGCGTATACATTACTTTCCGGATCTTGGACATCGCAGACCTGACGGTTGACGGGACTTTCGCTACAGGCGGGGCGGTCTCAGCCGTCTTGATCATGAAAGGGGTCAACCCCTGGCTGGCAGTTCTGGTAGCCCTCGTAGCAGGCCTTTTGGCCGGCGGGCGCTTTGACCTTGCTGATGGCAACTCTGGTCAAGCCGAAAGTTCTCCTATTGGATGAACACACGGCGGCACTGAACCAAAAGACGGCGGAGAAGGTCTTGAAGGCGACCGACCGGATCGTCGAAGAAGGCAAGCTGACCACGATTATGGTGACTCACAACATGAGGGATGCCATTGCCCACGGCAACCACTTGATTATGATGAACGACGGCAAGGTCGTTTTGGACATCAAGGGTGAAGAAAAGAAGAAACTGACAGTGGAGAAATTGCTCCACCAGTTTGAAGTCGTATCTGGCGAGGAATTCGCCAGCGACAAGGCAATTTTAGGCTAGAAAACAAGAAAACTGGCGATTTCCAAATCAAGGAAGTCGTCAGTTTTTTCGTTTATTCGAAAAGCTGCCGGTATTCGCCGTAACCCGCTTCTTCCAGCTGGTCGTAAGGGATGAACTTGAGGGCAGCAGAGTTGATGCAGTAGCGCAGGCCGCCTCTGTCCAAAGGACCATCGGTGAAGACGTGGCCCAGGTGGGAGTCAGCCTGGCGGCTGCGGACTTCGGTTCTTTCCATGCCAAAGGACTGGTCCCGGCGCTGGGTCAGCTTAACCAGAGGCTTGGTGAAGGCTGGCCAGCCGCAACCGGAATCGTACTTGTCCAAAGAGGAAAAGAGGGCTTCCCCACTGACCACGTCGACGTAGATCCCTTTTTCGAAGAAGTCGTCGTACTCACCTGTATAAGGCGGTTCAGTTGCCGCGTTTTGGGTCACGTCGTACTGCATTGGCGTCAGCCGGTCTTTCAAATCTGCTTTTTCGTTCACCTTGGTCACCTCATCTATTTAGATAAGGCTATTGTAGCTTGGATAGATGCGCGGGGCCTTGATCTGGATCAAGAAATTAGTTAAGAGATTCCTTATTTTTGGCCTGTACCTCTGTAAAAGGCTTAATTGCTGACAAGTCACGGCTAAGATGCTTCTTGGCATCCCGCAAGTCAATGTCACTTTACAGATTAATGTCACTTTGCAGATTAAGGAAGTAAGCATCTGACACGCCGAAGAATTTGGCTAATCTGAGTGAAATGTCAGCAGTGATTTCCTGGCTGCCGTGCAAGATATCCTTGATTCTTGCAGCCAGCACATGGATGGCTTGCGCCAAGTCAGCAGCGCTAAGGCCTAACGGCTGCAGGTATTCGTCATTGATGGTTTCAGCAACTGTTGGCATTTTGATAGATTCGGTCATTTTTTTCCTCCTTAAAATTATTTCTCTTGTACTGTTTGAGCCTATTCTACCTCATCCAAAGCAGATTTTTGAACATGCATTCGGTAGAGAACCCCCGTCACTACAGCATTCTTACACAGCAAACTTTTTGTAAACTAGCCACCGCTAGCGCCTTTCTAGAAGAAGATCTTGCCACAAAAGTTTTTGGCCGATTTTTGGGCGAACGAAAACCCCCTTGGAAATTGAGAGCATATTCCAAGAGGGCGTTTATATCTTTTAGCAACATCATGCTTAGCGCATGGTTCGCTCGGCGCTATCTACCTTATTACCCATAATATCATATTTTGCATGTTTAGTCCTATGGCTTGCTCTATTTTAGTGCCGCTTGGACGATTACCATGAATAGGTGGATATGCCTAAAAACAAGCAAAAAAGCACCGGATTTCACATCCAGTGCTCTTAAAAATTGCTTAGTCAAAGAAGCCGTCAGCCTTCAAGGCTTCCAAGTAGCGGTGCACGGCGTCTGGCCAAGTTGGCAGCGGCTTGAAGCCGTTCTTTTCCAGCTTGCTCTTGTCCAAACGTGAGTTGAATGGCCGTACAGCCTTGGAGAGGCCGTATTCTTCCGTGGTAACCGGAGTTACCTTGGTCTTGTAGCCTGCCTGGCGGTAGATTTCCTTAGTGAAATCGTACCAGCTGATGTAGCCGGTCTTCGTGCCGTTTTCATCATAGCCGCTGGCAGTTTCTGGCAATTCCGCGTTAGTTGCGTGGTAGTAACCGTACTTGTCAGTTTCGATCATGTCGACCAAAAGCCGGGCCAAGTCCAAAGTGTAAGTTGGCGTACCGATTTGGTCGCTGACCACCTTGACTTCATCATGAGTCTTACCCACGTTAAGCATGGTCTTGATGAAGTTCTTCCCGTTCAAGCCAAAGACCCAGGCGATCCGGACGATGAAGTACTTGTCCAAAGTTTCAGATACGGCAAGTTCCCCGCCCAGCTTGGTTTCCCCGTAAACGTTCATTGGCTTGTAGCCCTTGAAGTCCGGGTCCCATGGAGTAGTGCCCTGGCCATCGAAAACGTAGTCAGTGGAGATGTAAACCATTGGCACGTCTAATTCCTTGGCTACGTTGGCGATGTTTTGAGTACCATCGGTGTTAACCTTGCGGACAGCCGCAACCTTGTCGTCGTCTTCAGCCAGGTCAACCGCAGTCCAGGCAGCGCAGTGAACGATCACGTCAGGGTTAACTTCAGTGATGGCCTGCTTTACGCCTTCCGCGTTAGTAATGTCCAAAGAAACGTAAGGAGCAGTGGTAACGGCTGAGCCGTCAGCGATCCCGCTGTATTCCGGAGCCAAGTCGCTGCCAACGCCTTCGTAGCCGCGCTTAGCCAGTTCGTTCATCACGTCGTGGCCCAGTTGGCCATTGACGCCAGTTACGAAAACCTTCATTTTTTCCTCCTAATTAAAACTTGAAAGTGTCCTTGAGGCCCAGCCACTTTTGGTCCCTGTCGGACAAAGTCAGCTTAGTACCGTCTTCCAAAGCGTAGCCGCTAGCATCAGCTGAGCCCGGGTATTCGCCAACCAATTGCGGCCATTCAATCCCGATTTCAGGGTCGTTCCAAGCCATGCCGCCTTCATCGTTTGGGTGCCAGAAGTCGTTAACCTTGTAGCAGAATTCAGCCACGTCGCTCAAAACCAGGAAGCCGTGGGCGAAACCTTCTGGAATCAAGAACTGCTTCTTGTTTTCAGCGGTCAGTTCCACCCCGTACCACTTGCCGTAGGTCTTGGAGTCGCTTCTAAAGAATCTGTCTAGCGCTTCTCTAGGATATGCTTTCATAGTTGGTGGCGTGTACCTAATCGTCATCTACTTGATAATTTCGATGCTGTTTATCGGCATTAAGAAACTGTTTGCTGATGGGGAATATCAGATTGATTTCAAATTTTGCATATTGCTTTCGATATTTTCCATTATATTTTTCACCGTAGGAATTGTGCTGCTCAATACACTTCACTTAACGTAATGTATTAAAGCCCATAAAAGATAAAAGTTCTCCGCTCTGTTAGAAGTGAAGTCTAACAGTTGCAGAGAACTTTTTTCTAATGCTATTTAATTCTGTACCCGGCTGGTACCATCGCTGTAGTTCAAAACAACGCCGGGCTGGACGTTAAAAACATAGACGTTAAAGGAAACCGCGTTGCTGCCAACAGACTTGGCCTCCATTTGAACGCCACGGGCCAGAAGTTCATCGCCTTTGAAGATTGGCTTAACCCGGTAGCGGACGTAGTTATTTGAAGATTCCTTCAAATAGTCAGCTACTTCGTTTTCGTATGGCAGCATCCCTGATACGTTCATTTCTTCCGTACCAGTGATTAGGTTCTTCGGGTTGTTATTCTGTCCAGTCAGCTGGTAGCCGATCAAGTGACTCCGGTTATAGAGCCAGCCGCTGGAAATCCGCTTGTTGTGCCAGCCAGTTGGATCCCAGTGCAAAGGTTCTCTTTTAGCAGTCGGCATCAAAGACTGATTCAGCATTGCATTGGCCATAGTAGCCCGGTTCAAGCTGTCCAGATTGCCGTAGGTCTGCCAGGCACCGCGGCTGGTTGACAGGTCACTTTGGCTGAAGTCTGGTTGGTTGTTATTTACTTCAGTAGACAGTTGCCCGCTATAAGTCAAGGATGCCAGATCAGTTTGCTTTGACTTAGCAGAAGCAGTTTCTTTCGTGGACGTAGTCTGGCTGGTCTTACTACCCGGCTTTTTGGCCAGCTTTTCCTTAGCTTCCTCAGTCTTATCCTTAATAAGATCAGTCTCAGCTTTTAAAGTAAGATTATCGGACTCGTAGTCTTCGATTTTATCTTTATACTTATTGACCCGCTTGGTCTTAACGGTAATCTTTGGATAATTCTGGGAATCAACCGGCTTGGTAGAAGTCACGGCAAAAAGCAGAGCAACCGCACCGGCAACAAAAATTATTCTTTTCTTTTTCATTATCTCTTAGCCCTCCGGTAACCTGCTCTCTGCGCTTCTTCTTCACTGTTGAAGTAGACAGCGTTTGACGAATTCATAGGGTAGCCGGCCTGGCCAGGGACATGATAAATTTTTGAGTTGACATTACCAACAATTTTCTGAGAGTCAGCCGTGTTCATATCACCGCGCTGGTTACTTGAAGTATCAGCTGAGTCATCAGTGTTTGAATCACTGGCACTAGATGCGGCAGCGGCTTGCTTTTCCGCGGCTTTACGGGCGGCTTCAGCCTCCTTTTTAGCTTCAGCTGCCTGCTTTTCCTGCTCCCGCTTAGCCTTTGCGGCTGCTTCTTTTTCTGCCTTTTCCTGGGCTTCCAGCTTCTTAACCTTCTTAGCCAGAGGCGCGTAGGCCAACAAGGCGGCCTTTTTTGGCAGAAATCAGCGCAGCGTTCTTTTCTTTTACCTGTTGGTATTCCTTAGCGCCAGTATACTTAACCACGACTTTGGTCCGCGGACTGTATTCTGCCGCGGCTACACTGCCAACACCGACAGTCACAAAAGAAAGGGCCAGCAAGAGCCAGGCAGTTGCCTTTTGTACCTTTAACTTGTGTTCTTTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATAGCTCCCGGAGAATCAAGACAAATATCTGATTTAGGGCATGGTAAATACAGCCACCTTCTGTAATTTCAAAAAAAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGTTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAACCGAATAAGACTTTGTGCTATGTCGTTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGGTGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATTCAATTAGATCTAATTTTCTCAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTACTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTACTGTAGGCAAAATACATCAGAACAAAAGCGGCAATAAAGAAGCATCCCCCTACACTTAAAATTCCTAACGGCAGATAGCTCATCATAACGCCTAGCAAAGACATAAAGGCAAGGCAGCCCCACCCTCTAACTGAATAGTAATCTTTATCAGCCTTACCAGCTTTTTTCTTACGATAGCTGATCGTTGTCATAGCAGCAGATACTACTAGCAATATGGGCCATAATACGGCCATAAATATCCTCATCTCTTCCTCCTCAAAAAACACACGATTAAACAGCTAAGTGCCGAAGGTCCCACTTAGACTTTACATTATAGCACGCGTGTAAAGAGAAAAAGACTCCCTATAAAAAGAACGAGTAGTTGGTTCAGAAAAAGTGCATAAAAAAGAGCGCCTATTAAGCGCCCTTACCGGTTCGGCACAAGTAATAAGCTGGTACCATTTCTTGCACATCAGATATGAACCCGGTTCATAATTCTGGTATCTATATTTTAGCACACACACCAAATACCCCCTTGAAGCAAAGAGAGCACACTTCAAGGGGGGCGGTAATTAAAATAACAGTATGTATTTATTTTAGGCTGGCGATGTAGTCCTTGGCATTCATGGCCGCGTGACGGCCGGAGTTGACATTGTGAGCGCAGGCCGAACCACCCAAGGTGATGGTGTAGACGTTGCGGTACTGCATGGTTGAATCCATGCCAGCCACGTACAAGCCTGGGATCGTGTTAAAGTCAGGATCAATAGCCTCAAACTTCCGGTTAGAGCCAATCCCGCCAACGCCGATCAAGTTGGATGGGTCAAGCCGGGCAATGTAGTATGGCCCTTCTTCCATTGGAATCAAATTGTCACTGTCCTTGGCGAATTCTTCATCCTTGCCTTGGCGGGCAAACTTGTTGTAGTCGTTCAAAGTCTTGGTCAAGATATCCTTTGGCAGGTCGAAGTGATTGGCCAGGTCTTCCAGGCTGTCTTCCTTGTACAAGGAGTCACCTTCGTTAGTTTCAACAGCTTGGGCCAGGACCTTGTCCGCGTCGGGGATGCCAGCGGTAATTCGGTCATAGATATCCTGGTTGAAGACTTCGTAGGCATTCTTGACTGACTGCATGGCCATTCTCCGGTAGAGCAGGTTGTACTTCTTGGCATTTTCGTTGACGAAGCGGCGGCCATCTTGGTCGACAAAAAACGTCGGACCACCAGATGGCAAACTCATGAAGCCATTGATCGGATCGATATACAGGTGCACGCCTTCGTGTGGCAAAGCCATAATGTAGTTCATCATGAACTCAGGGGATTCAACCAGCATGTCTCTAGCCCCGGCAGCCATGGCCATCTTGTAGCCGTCACCAGTGTTGGAAGGCATTGAGCAGTAGTGCAGGTTCTTGGTTGACCAGCCTTGCTTTTTCTCCTCAAAACTCTGTTACCGTTTTCAAGATTAGTATACCAAGTTTGGTTATTGAAGGTATAATCATAATTGTGATTGATAATCGGAATGACTTATTAGTGAGGAGAAAAATGTATCTGGAGCACTTAACGACTTTCGTCAATTTGGTGGAAACGCTCAACTTTTCCAAAACGGCAGTCAACTTGAACATCTCTCAGTCTTCAATTTCTCAAGCGATTGCCTCGATTGAAAAGCAGCTGGGCGTTACATTGTTTTACCGTAGCCGCAAAGCTGTCAGTCTGACACCAGCTGGACAGGAATTTTACGACCGGGTCAAGCCCTGGCTGAACGAGTACAACAAGGCCGTGCAGCATGTCCAGCAGGTGCAAAACGCGCAGAAGATGAACCTAACAATTGGCTACAGCGGGACGCCGTATGAACATACTGTGGTGCCAGAACTAGTTAGGGCTTTTTGCCAAGAGCATCCCCAGATCAACGTTTTCCTGGAGAATTATGCCCACCAGGAACTGAAGGGCCACTTGACCCATGGAAATTGCGACGTGATCTTCACCATGCCGGACATCATTGCGGGAATGGACAACCTGGCTTACCACAGCCTGCTTATTGGCTACTATTGCTTGATCGTGCCTAGCGAAGTCAAGCTTGGTCCTCCGCCAATTTCTTTGGAAGAGCTGAGCAAGAACAGGCTGATCTTCCTGGACCACCGCTGGTGCCCGCCTACGCAAGACCAATTGCAAAAAGAGATTTGCAGAAACAACCATTCTCTGGACCTGGCCTATGTCAACAATATCGCGACCGCACGGGCCATGGTTAAGGCCCGGCTTGGCTGGGGAATCTGGGCCAACTTTGTGTCCGATCCTAATGACCTCGACCTTAAAAAGCTGCCCCTTTCCACCAAGATTGTGCCCGACTATGGTGTCGCCATCTTGAAGCAAGGCAGCCCGCAAGCCGCCAGACAGTTCGTCAGCTGGCTGGAAAAGACCGGATTGCCAGGGTGAGATGTGGGACCAGTATCTTTATATGCAAAACAGGGATGTAATCCGTTGTTGGACTGCATCCCTTATTGTCGTCATGGCTGCTTCTTTAGCTTGACAGCTAATTTCCCATCATTCTTAATCCGTGAACTTGTAATATAACCTACATTGCGTAAGCGTTCCGACAATGCTACATTTCCTTTAGTGTTATCTAATTTTACCTCTTTCAAAGAATTATACTTTTCATAAAATTCATGGTAAGTACCAGGTAATTTTGAAAAGCATTGGCGAAAATCGTCTCTATCTAAAAGATCTATATTTCTTTGCATCCAAGGTACTCTCTTAACATCACTTAAGTTTTCCAAAATGGCGAAGAACCACTGCTTATTAACATCAAAAAACTTATTAGCCAAATTCATGGCCACTTCTTGATCTACCATTTTTTGTGGTAAGTTGTTGTCAACAATTCTATTTATAAGTTCAGAAGAAATAGATGGACTTGCTAATAGATTAATTGCCAGACCATTGATATCTGAGATATCCAACTTATCAAGTGCTTCTAGCTGATGTTTCAAAATATAAGCTGTAGCTAACTCATCACTCACAGATTTTACTTGGTCATAATATTCCTGTGTAAACTTAAAGAAATCTTGGTCAATTAATACTCTTAAATTCTGCTCCGGAATATCTGAGATAGTACCGCTAAATTTCCATCCCTTGAAACATGGAGCTAAGCTACTAAATGTATCATCATCCCAAGTAGCATTAATAAACAAATCATCTACAAAATCTTGGGTACATACAAGTCTATCACTAGCAATTATACTATCGATGTTATTTTGTATAAATTGGAACAACTCGGGTGAAAATTTAAAGGAAGACCAGTACTCACCCACTGTAGACCATGTAGCTTTAACTCTACTATTCTTTAATACCAGATTCCAGATATATTGATCCGGTTCATCTAAGGTGAATTCTGATAAACTAACCCCTACAAACTCTTCATGTTGCAACAGCCTATCTTGATAATCTTCATTTTCTTTAAGGCGGTCAAGCAAATCTCTAATAGCTTCTATGCTCTCAAAGATATTGTCATCTGCAAGAACTACTTCATCCATGAAAATCGAAAGATTATCTTTCTCATAAATATATTCCAAGATCTGCATCTGGAGATTATCATCACGATCAAGTTTCAAGAGGTTGGTATACGCATGTTTATTGAAGCTTTTCTGTAAGTCTGGATTAAGTCTTCCCAAAATCTCATCGAGCATCTTCTCGTTAATCTTGTAATATCTCTTAGCAGTAATATGGTTAATCATACTTTTTGGAACATCTGATAAATCTTCCTTGGAAAACTTTACAGAGAGAGCATTGTCTAAAATTTCAGTCATACGAGACACACGGATATCTTCAAACCTTTGAAGACTGTTTTCAGTGTAAGACAGATATTTAGAAATCGACTTGCTCGTATCCATTTCTTTGATATCGGATGTGTCTGCAAACTTGAAAATCAGCTCAAGATAGCAATCGACCGTCTCAGGTGACAAGTCTATTCTATCTTGAATATAGTTAAACATATTGTGCCAAGCATACGATAATATTCTAATAAACTTGCATCTATTTTTCTTAGCTTGATCAGTTTCCAACGCTAAGTAATTCGAGACAAATAACCAACTGTCTTCTGTTTCGTCTTTCAGCTGTTTAATAAAAGCTTCAAGCTTCTGATCAGTGCTAGAATATTCACGTAACATATAATCCATTAAGTCATTATTATAAATTTCCTTCTGACTGAAATCTATCGCTCTCAATCTATCTGCGACATTTGCAACCTTCGTAAGTTTATATGATTGTGGCAGCTTCTTTCTATTTTTGACTGCTAATATAAAGTTTTGATCTTCTCTAGAAATACTGTTACCTTTAAAGTAATTAATGTAACTAGCATACTGCTCATCAATATAGCCGCGTCGTAGTAAGAAGACTAATAGATTATTTTCTTTTACTTCATCTGGCAAATAGTCATCCAATGGATAATTTTCTATAAGCTCTGCCAGTGTCACCAAATCTAGTTCGGTCATTCTCCGCTTCAAATTTTGCAACTGTGACTGGAGATCTTTTACCTTAGATTCCTTTGCACTAGTTGCAAGTTCTATTCTAGATTCATACTTATTATACAGTTCATCTATATTGCAATCGATTCTACGCTCTTGAGTATCTTCAAAAGAAATATACTCAATGTTGTCAATTCCTACATCCTTTAAATCTTTTAGTGTCTGTTTTCCGTTCAGTAAATTCACCGAATTAAATTTCTGACGAGAATATCCATACCCATGATAAAAGCTTGTTGTAACACCTTGATAGTTTGTAGTTTCTAACAAAAAGGCGGTCATTAACTCCTTATGGCTCTCCAGTACTTCATTCTTAGTACTTTCTATTTTACTTTCTAACGAAGAGATTTGTTCTTTAAGGTCTCTCTTAATTGTTTGAAGATATGCCTCCTTTCCATTGAACACATCTTTGACAATCCCCTGCTCAAGTTCTAATTCTGCAAACTCTTTAGGATAGAGATTTTTGAAAATAATGAGAGCTAACAATTTTTCTACATCTAGATCCAACCCTTGTTTTTTAATAATTATTGGCTCATAAACCTCAAATTCATTCCAAATATTGACCAAGACCCTAATATTTGGAATATATGGACTTACATCAAAAATAAAATCTTTTGTGATCTTAGGCTCTAGCTTACCGTGCTTTACCTTCTCCAACAAAAATTCACCTGCATTTGTGGCATTCATTACAGGGATTACAGGAATGATATAATCAAAAAATTTAGTTCTCTCTTCTTCATTTTGAAACATATCATCACCAAGAGCATATACGAAAACTAAAGGCTCTTTAATTGCATCATCTCTATTTAGAAGCGAATTCAATTCTCGCAAATGCGAAAAGATGTCAATGTTCCCCCATCGATCTAAATCTTCAAAAAATACAATACGATAATTTGTTGTTTCAAAAAAGTAGGCTAACTCATCCATGTTCTTATCAAAGAATGACTCTGAAGTTTGTCGGTCTACTTCCGCCACTTTGCCTACGTTTATCTTGCTCAAAGATAGTCTTGATAATATATGTGCAACTGCTTTAACAAGGATATTTAATAGCGTTCCGGACACAACAACAATAACTATCAAAATAATATAATATAGCATGCCAAACGCATGAGCATGTTTTACAGCTTGGTCAAGAAGAGAGCGATTCTTAGACCACAACCCATAATCAAAGATATACAAGCCGATTAGGAACGAAAGGACCAGGGTGATTAAAATAATAAAAATCTTTATAACGGAAGGGTTATGAAGTTTTCGATACCTGCTCAGTGGTATCTCGCTTGGCTTAACCTTGTAAAAAATTTGCTTTAAGATACCTCTTTGAATCTCTTCTTCAGTTAAAGATGTATCACCATCATCAGGATCTTGCTTTGAAGAAAAAGCTGCCAATGATATATTCAGACTTATCTTCTCAACGTCTGGATGCCTCTTCAAATATGATGCTATAATGCTTGATTTTCCCGATCCATACGGCCCTGTTAAAGCCACATTATGCAATCTATCACACTTTTTTAGAACCTCATCTAAAAGTTCTAAGTACTCGTTATCGGATTTTAGGTTGTCATTTGGTGCCAAATCATCAAGTTTCTTTTTATTATTTTGTTTCATCTTACAATAGATTCGCTTACTATAATATCCCACGTATCTTCTCCTTCAAAGTCCCTATCCATATTGATATTTAGACGCTAATAATATAAAATCATTGATATTTAGACGCTAATAATATAAAATCGTACAAAACTGTCCTATAAACATTGTACTTCACTGTAAGGTAAGCACCCAATAGTGTGGCATATTAAAATCCCATCCTAGCAATGCTAAGATGGGATTAATCATTTTATGAGACTTTACGTAGAGTGAAGCTGATCAATGGTAAAGTCCTACATCAAGCGCATGACTTGCTCATCAGACAGCTCTCGCACTTCGTCTTCATTGTTTGGCCAGGCAAGCTTTCCATTCTCAAAGCGCTTATTGCTAATTTCCCAGGATTTTACAACTCAAGCCATACGGCTGACAGATTTTCTGCCAGCCGTATTTCTTTTATGCATGACTTTCCAGAAATGCGAGGATCTCAGCTTTAGTTCGGGTACTTTTATCAATAGCTTTTAGTAATTCCTCCTGCTCTCGGTGTTTCTTGAGCTCATAGAGAGCATCTAGCTTCTGCGACGCTTTATCGCAGCGCTCTTTAAGGCGCCGGAGTTGTTCTTCTGTTTGGGAAATCTCGGCTTCAATTGTCTTAACATTCTTCGTTCTCGGCATCTTCATCATCGTCTTTCTGTTCTTCTGGCATTGCGGCGTTCTGAATGTCTTTTCCAATCTGTCTTGCCTGTGCCTTGATCCATTCTTCGTCCAGTCCAAAGGCACCTAGTATTACTTTCTGGGTAGCTGTGACTGCGTGATCGAGCTTATAGTTGCCGTTCGGCTGGCGTATCAGCTCAATCTTTTCGAGCTCTTTCAGTGCCGAAGGTACGCTCAGATAGTTAGGCTTGCCCGGCATTTCGGCTTTGCGCTTTCTCAAAAGCGTGTAGATTCTTGCTCGGATTATCAAAGCAATGAACTGAATGAAGATCTTAGCTTCAGCCGCCTGGCTGCTTGCGACTCTGAATGAGCGATTGCCAAGGAAGGTCTTATCACTGCCAAACAGCTTCTCTGAGATATCGCGGCTCTTGTAAAGATTCAAGGCTTCAGAGGCTGTCATCTTTTCGGAGGTCACGATCGCGAAATAGCCGCACAGCTGCAGCTCTCGTTCGATGACATCTTCCCGTTCCTCGTAGCCATAGAACTTGTCTTTGTGGTAGGTGAGCTTGAAGTAGTGCTCGTATCGCTTTGGAAGCTTGTATTCTCTGCCTTTTATCTTGTCCATCTCGGCTTCCATTCTGTCCAGATCAGCTTCCAGTCTAGCACGCTCGCTAGCCTGCTTCTTGGCCTTGTAGTAGATATGAAAATAGCGGTCAGTGTCGTCATCCGCGTACAGCTTGGCTTTAACCGTCATGCCATAAGTCTGGTAAGCCTTGATGGAGCAGGCTCTCTTTGATTCGAATTCGCCCATGTGCTCCATGATCAAGCCATGTACAAAGGAGGCCCTGCCTTTAACCATCATCACGAAATCATAGTCGCACGAGTCCATGAATTGGATGTTAGCCTTACTGAAGTATCCACGATCAAGAATGAAACCTATCTTCTTATAGCCGTAGCCGCGAATCTTCTCCAGCATGTATTTCAGTTGTGAGACATCCACGATACTGCCCGGGTAGCTTTCATAAAGCAAAGGCTTCTCATTGGTCATGTCGTAAGCAATCGAGTAGTTGATTATTGGAGCGCCAACTTCATTCTTAGGGTGACCGTATTCCGCCATCTCAATATCTCCAGCCTTACAGTTCTTGTTGGTGGAGTCATAGGAAACGTAGATTTTCTCGTTCTTATCGTGGGTGGCGTTCCAGCTGTTCAAGAATTCAACTCTGTCATTGTCGTCAATCTCACGAATGAAGCGCGAGATTGTAGAGTCGCTGTAAATCTTGTTCTGTGGCGTCATCAATGGGTGGTTGTATGCATAATCCGGGAAGTGCTGAGCCACGTTGCTTTCTGCGATAACTGAGTAAGCGGCGAGATCAAGGAGCAGACCTTTTCCCCGGTCATCCCAACGCTTCAAATGTTCAGCGAGCTTGTAGTCTTCAATAATTCGTCTGACTAAAGAGAAGGCACCAATTCGGATACAGCTGCTTCTAGACTCATTGACAGGTTCAGCCGCCGTTCCTTCGGCGGGAATCTCAACATCAGGGAAGAATTTTTCGAAGTTAGGGTTAGGGAACATCATTCCAGGATGATCTGGGTCGGCTTTCCCGATGGTCGTTCTTCTGGCAATGTTGTATTTCTTCTCGGGAAGGTACTCTCTAGCATAAGTGTATTCGATGTAGGTAGTCTTGCCCCGTTTATTTCTGGAAATTTTACCAGTGTTCTTAGGAATGTTAACCAGGCAGTTGTAGTACATGATTTCCTCCTTCACTGAGTATGATATCATACTCGAATTATACCGTAGAAAAGCACATCAATGCAAGCAAAGATGTGCTAAAAATGTAGTATTTTTGTGGGTTTAGGGCACTTTCTCTGAGGACTTGAGTTTGCTTGCTCTGGGAAGTCAACACTCAACCTAACTTAGCCAGATTAATCATGGCTCAAAAACCTGCCTACAACTTCAAACATAAGCTCGCTATTGTTGTCACTGTAGAGTGGCAACTCAACCCCTTTGGACCTCATAAATCTGTTTCTTGTAGGCCTGTTCTTAAACTTGAATCTACCTTTCAAAAGCTCAAGCGAGACGATTAGATGTTCAATCATAAATATAGTGTTCCTACGCATTCAATTGTTAGGAACAGTATATGACTATTGAACACAGGTCGGTAGATACCACGCTATTGTGCACTTACTCTGCACCTAACTCTTCAAGTAACTTATTCAATCTTCTCTTCATGTTAGCAACAATATCAACAGCTAAGTCCCTCTTGATATCCTCATCTGCACTATCATTCTTAAAAAGAATTTGAATCGTTGGCAACAGATCTAAATGTGTTAAAAGCAGCAACTCACATCTCAAAATAGGATCATCTATTTTCTCTTCTCTGTAAGGACCATCATAGGAGTATAAATCTACACCTACTCCGACTAAATCACTGCCGCTTCTCAGCTCGACTTTAAGGTTTCTATGTTCCTTATACGTCATGGCTAAACTCACCTCAGTAAGCCTATCACTTTCTAGTAAAAATGACAAAGTCGTCAACATTTTTATTACATCGCTACCCTCTGTTGAAACAGTATTTAGAGATGCAACAGTCTTACCTTTAACTGCATCTAAAGAATTAAAAGAGATGCTAGCATCTTCCAATGAAGAATTCTTATCATCACTATCAAAATCAATTTGAGATTCATCATAGTAGATTCGGCTGATAATCCAAAAAAATAAGCGGCCATCAAAAAAAGAATCATCTCTTTTAGCTGGTATAACAACACCCTTTTGTGATGAGTCATAACCTAATAAAGCTCTAATAAAGTGCAATCCTATTTTTGACTTATCTACAATAAAGCCAATCTGGTCATTTTGGTCAAATACAATAAGTTGGTTGTGAATTCTTTTTCCAGTTGTAGATGCAATCGAATAATCAAATAAATTATATCTAATCTCACTACCAGATAAATCTAAGATCTGATCCTGCATCTTATTAACCAAACTAAAATCCGGATAATGTTCCGGATTTAGACTAAACTTCTTCTCATTAAGACGCTTAATAACAGTCTCATACTTCAAATTATTATCATTCAAATACCAAAGCGTCGATTTCGTTGACATGATTTTCTCTACTCCCAGTAAAAAATTATTTTATTTTCAATCTTAACCGACTTAAACTTAAAATCACTGCTACAATTCATTGTCTTGTAGCCCGCACTAGTAATCTTATTTTGTGGAGAAGCAAGTAAACGAAACTCTACTTCATCGTTACCAATCTCACTTAATGGAATCACAATCCTATGTTTTTCTGAATCAACAAACTGATCCAATTTAAAATCAAATCCGACTTCAATATCATTGGGATAATCGAAAATCAATGAATGTTTAACTAGTGTTTCTTCTTTAAAGCCTGCTAATTTAATATAAATTTTAAAAGGAACAGCCTTACCCTCAGACAACTTAAGTTGTATTTCGTTAAAATTATTATCCCAACGTCCCCCATTTTCAAAGCGAACCACAATCGTTGATCTTCTATGAATAATAAACGAAATCAAACTACAGGTAACTGCCCAAAAAGCAGAATCTATATTAGAGCTTTCATGATGAAAGAGAAACTTAGATACTGGAATAAAACAAAGAACAGCAACAAGTAGCGTCCAGACAGAAGATTCATACTTCTCAAAGTACTCTCTCAGCCATTTAGCCATTTTATCGATTCCAAGCTTTCGTTAACTCACAGAGGACAATATTAACCCATGCCACATCATATGTATCAAAAACTCCATTAGATCTAATGGTCATAACCCCGTGATCATTATTTCTAATAGAAATTGCATCAAGGTCAATGGAAAACGCTGATTCTAGATAATCCAATCGAGAATGAATATCATCGTCAGTTAACAAGCCATCCATATAAGCTTTAAACAAATTGGTGATACGCTCTTTTGCTTCAACATCATCGTCATCATACAGAGTAATTCCAGCCAAGTAATTATTTTTAGACTGTAAAAAAGACAATAATAAATTAATCATTGTATCAGAAGTAAGCAAAAATTGAGTTAATCCTTCTCCATTCATTCGTTTTAAGAAAGTATAGTATGAATCTGCCATATCAAATGGCTTTGCAACAAATTCTCTAGCACTATTTCTAAATAATTTAAAGGAATGACGCCCCAATCTACTCACCTCCCAAGAATGCATATAGCCAATTATATTATACCTTTTGGCATATCTGTTTTTCAACCAAAAAGGCACCATTCTCTGTATCTAGGTATACAACTTAACGCGTGGTGCTAGTTGAAGAAGCTGAATCCATATCTCTGTAGGATGTAGCTGATATTGTAAGTTAGTACAATTATCTCGACAGTTTGTTGGAAACCATCGCAAGCACCCAATAACGCAGTATCTATTACCCGCCGGTCAATAGTCATATACTGTTCTTAACAATTGAATACGGAGGAACACGATATTATGACTGAACATGCAATCGTATCGCTCGAGTTGCCGAAGGACAGAATCAGGCCTAGGAATAAGCTTCCAAAGAAAAGGCCTGTCCTTAATCTCAAGTCCAATGGGGTTGAGCTGTCATTTTACAGTGATGCCCCTAACGAGCTTATGCTCGAAGTCGTAGACAAGTTCTTGAGCCATGATTAATCTGGCTGAATTAGGTCGAGTGTTCATTGTTTGCGGTAAGACCGACATGCGACGAGTAATTGATTCGCTCGCTTATATAGTTAAGAAGAGCTTCAATCTTGATCCTTTCTCTGGCTGCGTCTTTCTCTTCTGCGGCAGCCGAAGAGATCGTTTTAAAGCACTTTATTGGGACGGCCAGGGATTCTAGCTGCTCTATAAGCGCTTTGAGAATGGAAAGCTGGCCTGGCCGAGCAATGAAGACGAAGTTCGAGAGTTGTCCGAAGAGCAAGTCATGCGCTTGATGCAGGGTTTTACCATTGGTCCTAAAATTAATACCGCAAGAGCTCGTGAATTGTATTGATTCCACGAGCTTTTCTTGTATTCTTAGATTATGAATCAAGGAGGGACAATAACCATGACTGACAAAGAAATTTCAGCTTTAATCGAAACGCTCAAAGCAAATAACGAAGAATTGCTCAAGCAGGTTGCCCTTCTTACTGAACAAGTTGCTTATTTGACTAATAAGCTTTATGGCAAGTCTTCTAAAAGAAGTCTGTCAACCCAAGATCAGCTAAGCCTTTTTGAGGAAGACAACGCCTCTCAAGAAACGCCTCTCAAGATGACAAGGACTTGCCATCGCATTACCGAAACTATTACCTATAAGAGACGCAAGCAAGTCGGTAAAAAGCAAGACATCTTAGACTCTCTACCGGGCGAGGAGCTTCATCATCGTTTGGATAATCTTACCTGCCCAGACTGCCAGCACGAGCTGAAAGAGATCGGCAGCTTCTGTGCCAGAAAAAAGCTGCTCTACATTCCAGCCCAAGTTAAGAGAATCGATCACATCCAGCACTCTTACAAGTGCTAGCACTGCAGTGATAAAGCGCCAGCTGACAAGATTATCAAAGCACCTGTACCTAAGGCTCCGTTAACCAACAGTCTTGGCTCAGCTTCTTTGATTTCAAATACTATCTATCAGAAGTACATTCTCAAGGTTCCTACCTACCGGCGAGAGAAAGACTTGCGGCGTATAGGCCTTCCGCTTGATCACAAGATGGTTTCTAATTGGCACATCAAGGTCTGCGAGTACTACCTCTCCAGCCTTTACGAACTCTTGAGAAAAGAGCTGCTAAAGCAGGATGTATTTCACGCAGATGAGACGCCATATCGAGTCTTAGACAGTGAAATAGCTAAAGACTACGTCTTGACCTTCTTGTTAGGCAAGCATGCCGAGAAGCCGATTGCCATGGATCACGAAAAGGCGCCGAAGCATGGGATTTCCTGGCAGGCTGCCGCGAATACCTTCATTATGATCAATATTACGATTAAGCCAACAGGATGTGACTCTTGTAGGCTATATGGCTCATGCAAGACGAAAATTCCATGATTCCTTGCCTAAAGGCAAGGCTATAGAGTCCGACGCGACTTCGGTGGCTAATCAAGGGATCAACTACTGTAGTCAAATGTTTAGCCTGGAGCACGCCTGGGAAGACCTTTCCGCTGAAGAGAGATACGAGAAGCGTCAGTCCGAATTAAAGCCTCTGCTAGAGAAGTTTTCCGACTGGTGCTCCAAGAAGTCAATCTCCGTGTTGCCTTCCGGCAAGCTGGGGACAGCCTTCCAGTATTGTATGAAGCACATGAACAAGTTCATGAACGTTCTAAAAGATGGTCGCCTTGAACTGTCCAACAACAGAGCAGAACGAGCAGTCAAATAGATCGTCATGGGACGCAAGAACTGGCTCTTTTCACAGAGCAGTACCGGCGGCCAAATTCCATGAAAATCATTATGAGCATACTCGAAACCGCCAAGCAAAATAGCTTGGATCAATTCAAATACATCAACTATTTTCGAGACAAGCTGCCCAATGGGCTGTCATTATTAGACAATCAGCATCTGGAAGCCTATTTACCATGGTCTGAGAATGTTCAGCTCCACTGTAAGTAAAGTCCCATAAACTAATTAATCCCATCTTAGCATTGCTAGGATGGGATTTTAATATACTCTGCTATTGGGCGCTTACTTATCTCTTCAATTTCTCAGCATAAAGATTGTACAAGTCATCCGCGTTTTTAACAGCGTCATAACCTTTAGCTGCTAAACGCTTAATATTATCATCTGACTCATCACCACGTGATGGCAAATCTGCCTTTTCAATTGCCTCAAGCCATGTTTTTGAATCCAATGAAACAAATTCCAGCTTACCAGTTAGGTTACTTTCTCGTGAAATCTTGTCTGACAAAATTATTGGTAGACCATTAGCTGAAGCCTCAACAACGACAAACGGTTGGCCTTCAAAGCGAGATGGCAAAACGAACACGTCCATAGCTGAAAGATAGTCGGGAACATTATGAACTGATCCTGTGAAAATTACGCGGTCTCCTAAGTCCATTTCTTCTGTTTGCTTCTTGACTTGATCAAACATACCACCCTGACCAACCAGAATCAATTTATACTTGGAATCTAATTTTTTCATAACATCGAGCAAGAATGCTTGATTCTTCTGCTCATTAAAACCGCCAACATGTCCTAATAAGATATCTTTCTTACTTATGCCTAATTGTTTGCGCATCCGTTCCCTAACGACAGGATTAAAGCGGTACTTGTCTAAAAAAACACCATTATCGATAACCGTGAAATTCTTTTTGTTAAACAGCCATTTACCAGCTGCCTCATTGCAAGCTACCCTACAATTGACAAACATATTAAAGGGTATACTCAAAAGTTTATGTAGTTTTTCGTGCTCTGTAACTGTGTTGTGACTGTGAGCAACCCTTACTTTCACTCCGGCAAAAAAGGCAGCAGCCAATTCAATTGACATGATGTTACTACTACCGTTAACATGTACTACATCATATTTTTTGCGCTCAAGTAAAGAAACTAAGTTCTTGAAGTATTGCTTGGGATTGGAATTACGATCATGGATTTCAAAGACATTAACTTTATTTTCCTTAAGATCAATCGTAATGTCCTCAGCAACTTCATTAGGAGCCAAAACATCAACATGAATATCCTGCTTCTTAGCCAACAATTTTGCATTGTTAATAATAAAAGTTGAAACCCCATTATCACTCAAATTATTTGTGCTAACTAGTAGAACCTTCATATTTCCTCCAATCTATTTATTCCCCGTTTTTTTCAGAATATAGTTGATAATTTCTGAGTCCTTGTCTAATGAAAATTTCCGCGCAATTAAAGCACCTGCGGTTGCATCTTCTAGCAACTCCTTGTCAGCAATTGTAAAAATATGCGGACTACCATTTTTTGAACGCACCCAGTCAATAAAACGTAAGTTATCAGCACCATTAGGATTATGGTACATCCTGTTCATAAACCCACAGTTAAAAGCTATTGTTTGAATTAATAACTCATCTGAACAGTTAGTCCACCTAAATAGTTTTGAAATCTTGGGTTCTTCTTGTAACATTCTAATAACAAAATCATTAGTCACACTTGCCCACTCAGACCCTAGTTTGATCTGCCAATCTAAGTTTTTAACCCTGTTCACATGCAAGATCAGCTGGAGTAGCAAAGAACATCTCTCAAAGAAAATAAAGATGTTATTTAGCCATTGAATCTGGAATCGACGACAATAATTTTGTAAAAAGTGATACAACTTAGTGCGGCGTTTAATTTCCGGATCGTGCTCATTTTGTTCATCTTTGAACTCTATAAATTCTTTGCCTTGGTTCTTTTCAAAGAATGAATCGAATTCTTTGTTATTGACCAAGAGAAGATCCGCCCCTGACATCATATGATAGTAATCATACGGCCCATTGTTAGAAGCCTCTTTAAACAGTTGTAGTTCAGCAAGTGTTAGCGTGTATCCTCCCCAGTACACCTTAAAATTTGAATATATTCTAACTTTAGAATACTGTGTAACTGCCTCTAACTAAGCTTTAGGATAGTTTTTAGCTTTGGCATCAATATGAACATAGATATCATGATCGGGAAAATCTATCTGCTTTAAAAGCAGCTTCAGTTGCTTCCAATTACTATGAGCCGTTATCAAGAATGCATGTTTCATTATTTTCCGCCAATCCATAACGATTTAATTGACACATTATGCAGAACTGCCTGCCTAGGATATACAAATTTTGTTTGAAAAGTCACATGTCCTAAAACAATTAAAAACATGCTTATTATTCTTAGGAGTTCAAAGTTTGACTGCCGTACTTTTTTAGCACTATCAACCATATATAACCGTTTTCTCTATAGATATGCTATCTTTGTCTTCTTCTCACTAATAGATCTTTTAGTTGATTGATGATTGGTGCTCTTAGCAAAAAGATCATACACAAATAGATAACGGTACCAACTATTACTTCAATGAGCAACCATAACCAGCTAGATTTCATGTGCGTATTCAGCCAAAAAACTGGAACAAACATTACAGCACCTGACAATAGATACTTCCAAGTACTACCAAACATTTGCTTTACATTCAATGAATTTCTTACTACAAAAAGTTGATAGGTTGTCACTGATATTTCTGACATAACAGTCGACCACATAGCTCCTTGTAGCCCCCAGAAATGAATCAGCGGGAAATCAAATATTATATTGATTACTGCTCCAAAAGTAACAGAAGTAGTGTAATCTTTAACACGATTAACTGGTATCAAGTATTGTGCACCAATAACGTTGGACCAAGCAATCATTAATATAACAATTGATTCAATTAACATAGCCGGACCAACAGGTGCGTACTTAGCACTATAATACAGCGGAGCTAAGGTCAACGAAACACCAGCAACTCCAAACATCATCGGATATGCCAATGCTGATACAAAATCAAAAGATTTATAAAGCATCTCATGAACTTTTTTCATGTCACCTTTGGCAAACGCATTTGCCACATGAGGTAACATAACAGTTCCCGTTGCTGTAACAAACGCCAAAATCAATTTGACAATACTATCCGAATACTGGTAAAAGCCGGATGCTTTTTGATCTACCATCAACCCTAGCATGGTACGATTTAATTGAACATACAATTGCGTAGCAATTTGTGGTACAAACATCATAACTGTGGGCACAAAGTGATGCCATGGATTCAACCGAACACCATGTCCTACACAACCATAATTTTTTACGGCATGTGGCCATAAAGTCAAATTTCCCAACATAGTTGACAAAGCTAGAACCGTAATATATAACGTCACATCATTCGGGCTCTTGATGAAAATGAAAATAGCCACCATTGAAACTATCTTAACAAATGTGTTACGCAGTACCGTTCGCTTGAAGTCTTCCAGCCCCTGGTAGAGCCAAGAAATGTCAAAAGCAACCGCGAGCAAGTTGATCGACTGGGCCCACATGTAGGTCTTGTTGCCGGAATAAAAGGCCATAAAGACCACAAAGGACAGGTAGGCAACAACCGTCATCACAGTCTTGATGATTTGAATTTCCCAGAAGGTTGCCGCCATCTTTTGCTTATTGTCTCTGACGTAAGCAATTTCCCGGTTTCCGTAGTAACCAATCCCGATGTTGGCCAGCAACATGAAGTACTGAATGATGGAATTGGTAAAGGCATTGGCTCCAACGCCATCTGGACTTAAAACCCGGCTGACATAGTATGAGGTGATCAACGGGACGATGATGGCTAAAACCTGGTAGCCGACATTGTAAAGGTAATTCTTAACAACACGCACGATTACTTACCGAATTCCTCACTAACAGCCTCCAAAGCAGCCGCGATGACCTGGTCCATGTTGTAGTACTTGTACTGGCCCAGACGGCCGCCGAAGATGACCTTGGCATCTTCTTTGTCAGCCATTTCCTTGTACTGAGCGTACAGGTCGTTGTTTCTGTCATTGTTGACCGGGTAGTAAGGTTCATCGCCCTTGTGCCAGTCAGCTGGATATTCCCGGGTAATGATGGTCTTGTCCGGGTCCCCCTTGCCAAATTCGAAGTGCTTGTGTTCAATCACCCGGGTATAAGGCGTTTCTGCGTCGGTGTAGTTGATCACGGCGTTACCTTGGTAGTTACCCACGTTCTTTTCTTCAGTTTCAAAACGGAGAGACCGGTACTCCAGTTCACCCAGCTTGTAGTCAAAGAATTCATCGATCGGGCCAGTGTAAACTACCCTGTCGAACTTTTGCAGATACTCGTCCTTCTTGGCAAAAAAGTCAGTGTCCAGTTCAACCGTGATCTTGTCATCCTTGAGCATGTTTTCCACCAGCTTGGTGTAGCCGCCCTTAGGAATCCCCTGGTAGTCGTCGTTAAAGTAGTTGTTGTCGTAAATCAAACGAACTGGCACCCGCTTGATGATGAAGGCTGGCAGTTCAGTTGCCTTTCTGCCCCACTGCTTTTCCGTGTAGCCCTTGATCAGCTTTTCATAAATGTCGCGGCCGATCAAAGAAATAGCCTGTTCTTCCAGGTTTTGCGGAGTCTTGCCCGCCATTTCAGCCCGCTGCTCGTTGATCTTGTCTATGGCTTCTTGCGGCGTCCGGACACCCCACATTTGAGTAAAGGTGTTCATGTTGAAAGGCAGGTTGTACATCTTGCCCTTGTAATTAGCTACCGGGCTGTTGGTGTAGCGGTTAAATTCCGCGAACTGCTGGACGTAATTCCAGACTTCCTTGTTGGAAGTGTGGAAAATGTGGGCCCCGTACTGGTGAACCTGGATGCCGTCGATTTCCTTGGTGTAGATGTTGCCGGCGATGTGGCCGCGCTTTTCGATCACCGTGACCTTGTGGCCGCGCTTGGCGGCTTCGCGGGCAAATACAGCGCCAAAAAGCCCTGCCCCGACTACTAAATAATTTGACATAAATTCATCCCTTTTGCTATTTTCTACAAACAATAATAGTGAACTCTATACTTAATACACATGGTGCTGATTAAAATGCTAACTTAAACTTCCCGCTTGCACAAGTGGACTAGTGTAGTGTCATACTGAAATTTAAAGCTTGTGCAATCGAAACTATAACTGCTGATATAGAGACGCAATCCTAGTACCCGTATCAATACTGTTAAGATATCGTCATGACATTACACTTGATATTGTTTATGGTAAGTGTTCAATTGATCAACTTGCTTAATTACAAGTGCGCATATAATTGCCGCAAATGCCATATCTCTATCATTAATTCCATCAGCATAAGTGAATGCATAGGAAGCGTTAATTAAAAAACTTAAACAAACAGCTGCTTTCACAAATACATTCTTGTCTGTCGACCTTAGAGATTTTATATCAGCTAACAAAGTTCTTACATATACGCTTAAAAAGCAAATCGGCAACACTATACCACCATCCAAGAACAGCTTGCTTAATCCAGTTAAGTCATAACCATAATATAGACCGTATAGTCTGACAAAATATGGTTGATATGCTACTTTACCAGCCTCCTTAAGAAAAACGATATCTAACGATGCTGCTGAGCCTAAGCCATTGCCTATAATTTTAAGTAATGTGGTACTTTGCCGACTATACACGTTTATTAGTGCCTCAAATCTACCATATTGGTAAATCCCCCAATTAGAATTACCAAAAATATATCCCTGTGCACCGTTTAACGTCATAGCACTCTTAAACCTCGGATATATTTCTGTCAGCAAGTTCACAGCAACACAAACAAGAAAAGAAACTAACACAATGCTTATAACTGGCCTAAGATTCACCTTTCGTTGTATCAATCCAATAATAAGAAGTGCAATAAACAATAATACCACTTGGGCTTTGCATTCAGCCATAATCAATATAGCTACTGAAATTACTATTGAAATTAGTGTGGAACGCAAAGTTCCTTGGTTTACTGACCACTTTGAGTATTCATAAATAGGATACAATAGGACAAATGCTGAATAAGCTCCTAAACCAAAAACTCCGAATATCCCATTTCTTTGATCGACATTGAACCCAGCTATCGTTTGACCAATTGTGAAAAAGAAGCATACTACATAAATAAATTTATATAAATCAACGAAGCTTAGATCACTTTTGCTGTATCGTATAACAAAAAAATATTCTATGCCTATAATATAAGGAATTGCACTTTCTAAAGCTTGAATACCAGGAGTACTGTGTATTATCACACCCAAGCACGTGTAAAAAAACAATCCTAAGGTACAAGCCCACCAGCTAAAGCTCTTAAAAATTTTAGTACTATACCTTAACAATAGAAGTGAGATCGGTATAAGAGATAAATCTCTTAGTCTTATATTTATAGGGTGTCCCAAATAGTGAACTACTACTTCTAATGTAAATACATACGTAAGTAACGTAAAAATTGAAAATTCAAACAGTTGTTGATTACGCATGCTCAATGAAAGACAAAATAAAATTCCGCCCACAAATAGTGCGTATGCAACCCAACTCTCAGTGCTAAGCGACGTTACTAAGCTAATCAAGCCTAAGGAAACCAACAGGAAATTATATCCGCTAAAACGTAAATATTTTTTATTTACAGTACACGTTGCATTTCCATTTGTTCCGATGGTTAACATTTAAATACCTCACATCAAATATTGACTACCATACACTACTTGGGAACCGGATATTTAGTTGGATCGTAAGGCTTTTTGTTAAGTCTATGTTTCATACTTTTGAGAATAGAATATATTTTCTTTCCTTCTACTACTGAATATATTGGCAATTGCTTAATCCTAGCCAAATTAAAACCGTTATGTAAAAGCCACACATATTCAAGTCTCTCCGACATGAAACCATAAGCACGTTGTTGATACTTAGATCTATTTGATAAATCAGTAATGTCTTCTAACTTGAAAAGAATTGTAAACAACCACTCGCAATACTTGTCAAACACGGGCTTAGGTACAACCATCATATTAAGGCCGAAACTGCTCTTTCCTAACATGACCGTTTGAAAATCCTTACTGTACTCAGGATATATATTATGAATTATTTGAGCAGTATTTTCATAATCTTCCTTACTGTGATAAGTTTGATAGTACTCCTTAATAGAAATTGTATTTGTCACGATATCTGGTAAAACAATCTTTTCCTCCTCTAAAAACGAAATAATCTTTTCAGGTGTACAAACTTTGGGAATAATCGCTGCAGGGTCCATAAAAAATCTACGGTAATGTTCAATAGATACATACTTAGAGCTCTTGTCATTTTTCCAAATCCAGTACATCGCAGTCAATTCACAAAAATGTGGATTTTTTTCTGCAATATTGTCACCGGTGTTATCTCTAAGATAGTTATTTTTATTATCCCCACCTCCTACAAATATAGGAGTTCTACCTGCTGGTACAAAATTTACTGACTTATGTGTAACCATGTACATTGTTAATTCATTTTTATCAATTTTTTTAACCATTTTCCCTAGCCTATTTAACACCAAAAAGTACTATTACCATAATTGAATGTTGACATTTAATTTATTTTAATCATATTGTCAACAATTTCACTCAGATCCTCATTAAACTTCTTATTATTGCTACTTTCACCACTATTTTTCGTCTTAACAATACTGTCGTAATTAGCAATTGTAGCAGCTAAATCATCAATATCGTAAATGGGAATGATATTGTTCATTCTTTCAGCAATCAGCTTGGTAAAATCAACTTGGTGATCGTTAACATGTTCATTGAATTCTAACTGTCTCGGCACTACAATCGGTACCTTACCATACTGCAGAGCTTCTACAAAGCTAGATGGACCACCGTGAGTGATGACAATACGTGCATCCTTAAACGTTTGCTGCATTTCGTCAAAACTCATAATTTTGTGCATTTCACAATGCTTAGCTTCATAAGTACTAAACCCGTACTGGACAACCACTTTTTCTTTAATTTCACCTTTTTCAACCAATTCGTCCATCTTCTCAATCAAACGGTTGAATGGTTGTTCATGTGTTCCTACAGTTACAAATATCATATGTTCCTCTAGAAGATACTACCCAAGTTAATTGCCTTAGGATAAACCTGCTTCATTTCTTCCCATTCTACAATGAACTTATCAGTAATAGGATAAACTAGTTTTCCTGTTACTGTAGGTTTATCGTAACGGTCAAACACTTCAATATAAACCAGCTTAGCTCCCATCATTTTTCCGATGTAGAAGAATGGTGCTGCTACTGCTGCACCACTAGAAATAATAAGATCTGGCTTCTCTTTACGAAGCACTTTTATTGCTAGAAAAGTATTTTTGATCAAGTTCTTCAAATTACGGTTAGTGGGGTAATAGCAAGGGTAGAATCTTTCACCTTTAAGTTTGCTTCTAGCATCTTCTTTATCAAAAGTCACCCAGAAACGATCCTTGTTTTGCCAAAATGGTTTCAACATATACAAGTGTGTCAAGTGGCCACCACTTGATCCAACCAAACAGACTTTGATATTTTCTTTAGACATTGCTTGCTTCCTAATAAAAAAGCGAGGTTCTTAAATCCTCGCAAACTCCTACTCTTCCTACATCCCGTTCGGGTGGAAAATAACACCGATTGTCTTGAAAATGATCCACAGATCAAAGAAGACGCCACTCCGATTGATGTACTCGATGTCGAGCTGCACCATATCCGCAAAATCAGCCGCATTCCGGCTAGTTGCTTGCCAAAGGCCACTGCAGCCTGGTTTTACGAGCAATCTCTGCTTGTCATAGTCAGTATACTGTTCAACCTCATCTGGCAACGGTGGCCGAGGCCCCACCAGTGACATATTCCCAATCAGCACATTCCAAAGCTGAGGTAATTCATCCAAGCTATGCGCTCTGATAAACTTGCCAATCTTAGTGATCCGCGGGTCTTCATGCATCTTAAACATGGCTCCTTCGACTTCATTTTGCTCCAGCAGATCCTTCTTCAGCTTCTCAGCATTGACCACCATGGACCGAAACTTGTAGATCCGGAAAGGCTTTTCATCCTTGCCAATTCTGATTTGTGAGTAAAAGACTGGTCCGCCGTCTTCGCCATGAATCTTGATCGCCAGCCACAGAAAGAGCGGTGACAACAGAATCAAGGCAACCAAGGAAGCCAGAAAGTCAAAAAGACGCTTGATCCCATGGTAGAGAGGGCGGCCCTTGACTTTGGACTGTTTAACATATGCTGGACTACTGCTATATCCCATATCCATTTTTTCCTCTCCTTCATCCAAATTTCTACTTTAAAACAGACCCAAGAACTTCTTGCGCTTCTTCGGTAAAGATTGCCAGTTCAAGTAAACTGGATCGCCATTGATTACCGCTTGCGCATTGTCTAAATACTTCTGTTTCTTATCTTCACCAAATTCTTTCGCCAACTTATCCAGTGCTTCACTCAGTTGATATTGCCGTCTTGGCAAATCATGAGCATCACTGGCAAAGAAGGCACATTGTCCAGCCTTGATAAACTCCCGGCTACAGTCCTCAATTTCTTTACCAAACAAACCGGTGTAAGAGCTAGCAGTAATCTGCACCAGAACGCCCATTTCCAGAAATTCTTGCAGCTTCTGTGGGTTGCCCAGAATTTCTTTATTCCGTTCTGGGTGAACAACGATTGGCGTAATCCCTCTTCTGGTCAATTCGTACACCATGTTCTTGGTGTAATGTGGCACTTCATTGCTTGGCAATTCCAAGAGCATGTAGTGTCCTTCTTCATCGCAGAAGAGGATGTCATCATTATCAAGGGCTTCAGTTAAGCCACCTGACAATCTGACCTCATGTCCTGGAAAGACCGTCAGCGGAATACCCGCTTGGTCAATCCGATCTTGAAACTCTTCCGTCAACTTGATCACATCTTGCTTGTGGCTGGTGTAGCGGCCATTTAATGTGTGTGGAGTACACAAGGCATGGGTTACGCCATCCGCAACCGCGGCTCTGGCAAGCTTAAGTGAAGCCTCCCAAGACTTTGAACCATCGTCGATCCCTGGTAAGATGTGACAGTGTAAATCAACTACCGGCATGAGCTACTTCTTTCTCCCAAAGAGACCCTTCTTCTCCTTTTCTTCGCCATAACCGTAGCCGTAACCATAACCATATCCATAGCCGTCATCCCCATCGGCATCAACATCGTTCATAACATAACCTAAAATTGGTGACTTAGTCAGCTTAAGTAGCTCAACTGCCCGCTTAACCGCTGACTTCTGTGAATATGCCTGGCGCACAACCAAGATCGTCCCGTTCAAAAAACTGGTCAGTTGCTGGGTTTCGCCCGCGTCCAAGATCGGTGCTAAGTCAAGCACGACCATATCATATTCTTGCTTTAAATCTTCAATCAAATCCAACATATGCTTGGAAGACAGAAGTTCTGATGGGTTTGGCGGAATCGGACCTGCCGTCAAGATTGACAGGTTCTCTACACCACTTTCCCGGATCACGCTGTTTGCGTCCATTTCCATAGACCGGCTAGTCAACAAAGTGGTCAAGCCGTTGCTATTGGATACATTGAAAGTAGAGTGCATAGTTGGCCGGCGCAAGTCCGCATCGACCAAGATCGTCTTCTTGCCGGCTTGCGCCATGGTAATGGCTACATTAGCACTGACCGTCGACTTGCCGGCGCTGGCCATGGCTGAAGTAAAGACAATCGTCTTTACTTCCCTATCAACGTTCATAAAATTGATATTGGTTCGGATGTTTCTGAACTGTTCTGAAATAACGCTTTGCGGGTTGGCCAAAGTAATCAGCTTGACCCCGTTCTTCATCGTATCGTTGTTTAAATGCTTCTTTCGACCGAATGCCATGCTAACATCCTAAACCCGTCTTCTGGAACTGCCACGCTTTTCAGCCGTCTTAGCCGTAAAGGTCCAGTCCTTTGGCATCGTGATATGTGCGATTTCACCTAAGTTGGTCAAGCCAAGTTCATTGGTCATAAATGAATCTTCACGAACAGTCGTATCTGACAAGTCCTTGATGATGATGATCAACAAACTGATTACCAAACCAGCTAAAACACCAATTGCAGTAAACATACTTACCTTCGGGAAAGACTTAGTTCCCTTAGAGGCTTCCGCAACGATCGTCACGTTGTTAACATTCATGATCTTAGGAATCTGTTCCTTAAATTCCTTGGCAACCGCGTTAGCAATTGCTTGGGCCTTGGCTGGCGTTTCAGCCGTAGCTGACAAGGTGAAGACCTGGGAAGAATCCGTAGTGGTTACTGAAACCGCGCTAGCCAATTCACTGGCTGAGACTGAGTAACTCTTGCTTTCCCGCTTGTAAACCGCTGGCTTAGCCTTAACCGCCTTCTTGGCTGGAGTTGCCTTCTTAACCAAAGTTACCGGGTTAGCCAGGTACTTGGATGCACCCTTTAAAATAACGTTACTAGTGATAATGTCCTTGTAAGTAGTAATGGCGTTAATATCGGCTTGCTGGTTGGCATAAGCCTGGTTAGCATCCGCTGTCTTCCGGTTGACCAAGAGTTGTGTGCTAGCAGTGTACTTTGGCACCAGAACATATTCTGAAACCCCATAAGCGATCAAGCCCAGGCCGATCATCCAAATCAAGATGCTGATGATGTGCTTCTTGATTAAGATGAAGAGCCTGCGCAGGTCAATGGTTACTTCTTCATTATTCTGTTGTTCAGCGCTCACTAGTTATCCTCCTTATAAACGTCGACATTCTTAATTCCTAAAGTTTGCCGGATATTGTTGGAAATCCGCTGTCTTTCCTTAGTAGACATGATTTCAACTTCCATGTTGCCGAATCTTTGATTGTTGACGCTGCTGCTCTTCCCTTGAGCGTAGTCTGACTTGACATTGTCAGTTACCCCTTGGTAATTCATGGCCAACTTAATCATGTCGTTCAAACTTAGATCAGTCTGCATGCTGTCACCCAAAGATTGCATGAATGAGCTGTTTAAGATGGTCTTGTAGGACACGCTCTTCTTAATTGCAGCCATCATCACCAGCCGTTCACGCTCCTGGCGGCCGTAGTCTTGCCGCGGATCACCGTGGCGGAGCTGGACGAAAGCCAAAGCCTTCTTACCAGAAATGTGGTACATCTGCCCCTTCTTGAAGGAGTAGCCCATATTGTCAAAGGTCAATGGAGAGATGACATCCACCCCGCCCATCTTGGTGATAATCTTCATGGTACTTGCCCAGTCAACCAGGACATAACCATCAATCGGCACGCTGTAGTACTTATCCAAAGTCTTGATCGTCTCGCTAACCCCGCCCAAAGAGTAGGCGCTGTTCAGCTTGATCGGTGAAACCTCCGGGTAATCCGGCAGGTTAACCTTGGAGTCCCGGGCGATCGTGGTTACCCGCGTCTGCTTCTTGCTTGGGTTGACCGTGACGAACATCATCAAGTCAGTCAAGCCGTGGTAGTTCTTTACGCTCCGTCCTTCAGCCCCGGTGTAAGTCCCCAGAATCAAGAGGTTGACTGGCTTCTTGGCATCTAGGATCTTGTCTAAGCTGGACCGGTTTTTGTTTGACTTGGTAGACTTTGAAACCGGCGTGTACATCGTCGTTGCAGCATCCCTGTCATTCTTATAAGCATAACCGATTACTAATGACACTGCCAGAAGCAAGACCCCAACAATCCCCGCGATCCAGCGGCCGATATGACGCTTACGGCGGCGGTGATGGTGGTGATGAACACGACTTTGATCAGGTTCATTCATAATTGCCTTTTCTTATTCTCCTTATATCCCATACCAATTTTTATCTCTATTTTTCCTAGAACATAATTGTTCTTGTTGGATAAGCATTGAGTATCGCATGCGCAATCCACGCCATTATCCCATTATACAACATGTGGCCTTCACAAAAAAGTTTAAATCGTTTTTAATCTATTTCCATGGATCAAATTTCCTTAACATTTATCTGTTTGAGTAATTTCCGCCTAAATTTAGGCAAATTCAGCGATTTTTCTTCTCCGCTTCTTTACAATAGATAATAAATAGATGTACAAATTCATCATCTAGCAATATAGAAAGGAAGTTATAGATGATCGACAATCAAGCTCACTCAGTTAAGGCCTACTTAGCCGGCGTCAACCTTGACGATCCCAACTTTGACTACTCCATGACTGAACTGGCCAATTTAGCAGAAGCCAATAATTTCACCGTTGTCGGCTCCAGCCAGCAGAAGGCGGAAAACATCGTCGCCTCCAGCTACCTGGGCAAGGGTAAGGTAGCTGAAATCAAAGACCTGGCCCAAGGACTCGGGGCCTCCGTCCTCATCGTCAACGATGAACTGACCCCAGTCCAAATCCGTAACCTGGAACACATGACCAAACTCCGCGTCATCGACCGGACCGAACTCATCCTGGAAATATTCTCTTCCCGGGCCCGGACCAAGCAAGCCAAGCTGCAGGTCCAATTAGCGCGCCTCCAGTATGAACTGCCCCGCCTCCACCCGTCTGAAAACAACCTCGACCAGCAGCACGGCAGCGGCGGTTCCACCGGCGGGGGCTTCGCCAACCGCGGGGCCGGGGAATCCAAACTGGAAATGAACCGGCGGACCATCGGCAAGCAGATCTCCGCTATCAAACATGAATTAAAGGAAATCTCCGGTCAGGAAGAAATCAAGGCTGCCCGCCGCAACCAGAGCCAGCTGCCTAAGGTCGCCCTGGTCGGCTACACCAACGCCGGCAAGTCTACCACCATGAACGGCCTGCTTAAGGCCTTTGGAGCTGGCAATGAAGATAAACAGGTCATGGCCAAGGACATGCTCTTTGCGACCCTGGACACCTCTGTCCGCCGGATTGACCTGGACGGCTTCTCCTTTATCCTGTCTGATACCGTCGGCTTTGTCTCCAAGCTCCCCCACAAGCTGGTCGACTCTTTCAAGGCGACCCTGCAGGAAGCCAAAGACGCTGACCTCTTGATCAATGTCGTTGACGCTGCTGACCCGAATATGAATCAGATGATCAAGACCACTCTGGAAGTCTTGGACGAAATCGGCGTCAAGGACCTGCCAATGATCACGGCCTACAACAAGGCTGACTTGACAGACCGTAACTACCCGCAGATTGAAGGGGGCGACCTTCTTTACAGCGCGGTTGACTCAGCTTCCATCCAGGCCCTGGCCAAGCTGATCACAACCCGCCTTTTCAGCAATTACCAGATCACTGGCCTTCGCCTGCCGCTAACAGCCGGCAAAGACCTGGCCTACCTGCACCAGCACTCCCGGGTCTTAAAGGAAGACTACCAAGCTGACGGAATCGAAGTTTCCGCCCGCCTGTCGCCCCAAGACCGGGCACGTTTTAGCGCTTACCAAATTTAGACCGCATAAAAAGCCAGACTCTATCTCTAGAGCCTGGCTTTCCTATTGCTATAGAACTCTTCTTGCCCGACTAGGCCAGAAGTAGGTGGACAGGCTCGCTTGTACAACACCCTGCTGGTCTCCAGCAGCGGTAACGTACTTCCCATCCCCCACGTAAATGGCTACATTATATGGTTTATTCTTGGAACCCCAAAAGAGCAGGTCTCCTTCCGCAAAGCCAGAACTTGGATCAACCGCAATCCCCTTCTTGACCTGGCTCTTGGTGCTGGAACCTGTATTGACGCCAGCTGCCTGCTTGTAGACATAAGCAACCAAACTGGCATTGTCAAAGGCATTCGGGCCCTTGGAGCCCTTGACATAGGCCTTGCCGACCTGCTGCTTAGCCAAAGACACGACTGCCTTAGCCCGGGCCTTAGACCCCATCGGGGCAGACCAAGAGGCTGCCAAACTGGCAGCACTGCGGGCCTTCTTAACCGTCTTCTTAGATTTAACCTTGGTCTTCTTGGCCTTCACGGCCTTCTTGGCAGACTTGACCTGGTTAAAGTACTTGGCCATGACCCATTCCTTCTTGCCAATCCGATACCACAGATTGCCCATGGAGTCAGTTGCCGTCTGGTAGACGAAGTGACTGCTACCCTTCTTTAAATGAGTCGCAACATGCCGCCCCTTCTGGTAGTTGGTCCAGACAGTGACAGATTGCTTGCTGATAACCTTGATCCGCTTGCTGGCGGCCTGGACCGGCTGCTTGACCGGCTTGACCCCTGTCGCTGAGATCCCTAAGAAAGTCAGCGCTGCAGCAAAGAACTTGATCATATTAGACTTCTTCATGCTCATTTCCTCCCTTACACCGCTAACTCTATTTTAACACGGAAACTAGAGAATCCGCCGGGCCGTTGTTGGCCAGAAGTAACTGCTGATGGTTGCCAAGATAACCCCTTGCTGCTCATCAGCGGCGGAAACATATTGACCATTACCAACATAAATTGCAACGTGATATGGCGCTGCCACATCCCCCCAGAAGAGGAGGTCCCCCGGCTGCAGGCTGGCCGTTGATACCGGCACAGCTACGCCTTCCTTAACCTGGGTATAGGTAGTCCGGGAAACAGTTTGCCCAATCGCGGTCTTGTAAACCCACTGGACTAAGCCAGAGCAGTCAAAGCTGCTTGGACCGGTCGCGCCCCAGACGTAAGCCTTGCCGACTTGCGCATTTGCCAAAGCAACTACCTTCTTTTGCTTAGCCGCCTTAGCAGCCTTAGCCTTAATTGAAGCGTACTTCTTAGTCGTGACTGTATTAGTCCCCAGAATCCACTTGTTGTCCTTGATCCGGTACCAGGCCCTCCCCTTGTACTGGGCCTGACCCGTAGCCGTGAACTTGTAGCCGGACTTAACCTGGCCAACCAATTTCTTGCCGGCCCCGTAAGTGGTCCAGGTGTTGACCTTATTACCCTTATTGTAGGCTACCCGGGTCTTCTTCACGATCGTAATATTGCTGTCCTGCCTGTCCGTTGCCGCGTAGGCCGGCTGCGCCCCGCCCAGCCAAGCTGCCAGCAGTAAAAGGACTAAACTGAACGCTTCATTATAACTGTTTTCTCCTAAATTGAATTCGCTTTTTCTAGTGTAAGCAAGTTGTGTTACAGAAAGGTTACAGAAAAATACAGTTGTTTTTTAATAACAAAAGGCAAAAGAAAAAGGACGCCAGCTGGCGTCCTATATAAAGGATATTTCTCAATTAAATCAAGCGCTTGGCAGTTGATGGCCAGAAGTAGTAACTCAGGCTCTGCTTGATCACGCCCTGGCTTGGAGTAGCCGCGTGAACAAACTTGCCGCCGCCCACGTAAATCCCCACGTGGTATGGTGAAGACTTGGAACCCCAGAAAAGCAGGTCCCCCTTCTTCAAAGTTGCCGTAGAAACAGCAACCGTCTTGCCTTGGTGCACTTGCGTGTAAGTGGTTCGGGTAATGTACTTGCCCAGGGCCAGACTGTAAACGTAGCTGGTCAAGCCGGAGCAGTCAAAGCTGTAAGGACCAGTAGCGCCCCAAACGTAAGGCTTGCCCACTTGGGCCTTGGCCAAGGCAACAACCTTGTTCTGCTTGGTCTGCTTGCTCTTAGATACCTTCTTGGCTGCCGCAGCCTTCTTAGCTGCCTTGGCAGCGGCCTTCTTAGCAGCTGCTGCCTTCTTGGCCCAGGCTTTAGGACTCAAAGTGTAAGAAGCCAGAATCCATTCGTTGTCAGCGATCTTGTACCAGGTTCGCTTCTTGTACTTAACTTCGCCGACCACCGTCAAAGTAGTCCCGTGCTTGAAGCTGATGCCAGTGTCGTTGGCCGCGCCAAGCTTAACCTTGTAATTCTTCCAGGCCTTAACGCTGTAGCCAGACACGTAGTTGACTACAACCTGCCTGTTAACAGCCTTAACAGTCGCTGCCTGGGCTGCCGGAGCTTGGGCGCTGGCGGCAACAGGTGCGACCAGAGCCAGGGCCATTAAAACTTTGACTAATAAACTCTTGAACTTCAAAACTTGATATCCTTTTCTATTCTAATTTTTTACACAGGTTCTATAATAAGTTACCGATGTTACAAGAATGTTACAAAAAGAATACTAGATTGTTAAAATTAAATCTAATTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCGATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCAAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCGTTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCAATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTGGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGAAGCTCCTAGATTGTAGTCCGGTCGTTCAGCTTAAGGCGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATAAGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTAAAATGGATTTTTTGTGCTCTAATCCAGTAAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGATTAAATCTAATTTAAAAAGGCCAGCGCTTTTTGCCGCGCTGACCTTCTTTTTTATCGTTATTATCGTAATTTTAGCAGGTAATGATAAATTAGATAACCCGCTTGGCGGTTGATGGCCAGAAGTAGGAGCTCAAGTACTGCTTGCGGACACCTTGGCTTGGAGTAGCCGCGTGCACGTACTGGCCGCCGCCCACGTAAATCCCAACGTGGTATGGGGAAGACTTGGAGCCCCAGAAGAGGAGGTCACCCTTCTTCAAGCTGGCAGTTGAAACCTTAACAGTCTTGCCTCGGTAAACTTGGCTGTAAGTAGTCCGGCTGATGTACTTGCCAATGGCGTGGCTGTAGACGTATGAAGTCAAGCCTGAGCAGTCAAAGGCGTTAGGACCGGTTGCCCCGTAAACATAGCGCTTGCCGACTTGCTTCTTGGCCAGCTTAACGACCTTGTTCCGCTTGGTCGTCACGCTTGCTGCCTGGGCCTGGTGGCTGTTTTCCTGAACGGCGATTGGCACAACCAGGGCCAGGGCTAAGGTCAATTTTACTAAGATCTGCTTAAACTGCTTCATTACGTTGTAACCCTCTTTCTCTTTTCTCGATGCTTATATCATAGCCGATGAGTGTTACAAGAAATTTAAAGACCGTTTGCAGTTTCTTTAATAATCCTTTTCAGTTTTTTAACATCCTGCAATTTTTTCGTAAAAAAAAGGCCCTGGCAAAGAGCCAGAACCTTAATTTATTAAGCCCGCAGCTTCTCAGATGCGGAAGTGGAGCTTTCCGGTGCAGCCACGACTTCATTGCGGGCATCAACTGCCCCCTCAGTGGCCATGTTATGGAAATTGTTAAATGACAAGGAGATCATGTCTTCCAAGGCTGGTTCAGTAAAGGAGCCCATGTGCGGAGTCAAGAGCACCCGCGGGTAAAGATCCATCAAGGACTGGACTTCCTGGTCCGGCACGTCGCTTTCACAGTCAAAATTGTGGCCCATGATCTTCTTTTCATTGGAAACCACATCAGCGCCGTAGCCAGACAGGTGGTTACTGGAGACAGCAGCGGCGATGGCTGCTTCATCAGCCAGTTCGCCCCGGGCCGTGTTGACCAAGACTGCCCCTTCCTTCATCTTAGCGATGAATTCAGCGTTCATCAGCTTGTCGTTCTCGCCTGGGAAGTATGGCACGTGAACGGAAACGATGTCACAAGTTGCCAGCAGTTCGTCTTCTGTTACAAAAGTGCAGTACTGCTTGGCGAAGTCAGATGGGAATGGGTCATAGGCATAAACTTCAGCGCCCAGAGCCTGCCACATCTTGCCTTCAACCGCCCCGATCTTGCCGGCCCCGTAGATGCCGACCTTCAAACGGTTGAATTCCGTAGCGAAGTAGTCCGGATGCATCCCAAAGTCATGTTCATGGACATGATGGGCAGCTTCACCAACGTGTCTTGACAAAGTCAAACCCAGGGTAAAGGCCAGGTTGGCTACCGCGTATGGGGAGTAGTTTGACACCCGGGCAACGGAGATGCCCAAGTCCTTAGCGGCTTCCAGGTCGAAGTGGTCCACGCCGACTGACCGGGTGAAGACCCAGGAGATCCCGTAGTTCTTAAACTGTTCCAGGTTTGTCCGGTCACAGAGGCAGTTGCCCCGGACCAGGACGGCGTCGCAGTCTTCTGCTTGTACTACGTTTTCCCGGTTCAAGTATTCAGGAATGAGCTTCAAGTCGTAGTCATACTTGTTCAGTTTTTCAAAATAACTTCTTTCAAGCGGCCTAACGCCGTAACATGCAATTCTCATCTTGAATACCTTCTTTTCTAGTACTTCACTTTATTTCTTTCAATAATTGCCCCTATTTTATTTAATTCCTTTCTCATTTTCAACCCTTTCCTTCAACTTCTTAACTATTTAATTTTCTCCCGCCTTTCCAGGCCAAGTAAGGGCTGACAGACTTTGCTTTCCGTAAATCCTTCCCTTAAAAGTCCAGCTTTTGCTTTTAATCTACAGGCCAAAAAGGCAAAGAAAAACGCCCCTGAGGCGGGTGCCTCAAGGACGCTGATTTGATCATTTTGAAGTTTGCTAATTAGATAACCCGCTTGGCAGCTGATGGCCAGAAGTAGGAGCTCAGGTATTGCTTACGGACACCCTGGCTTGGCGTAGCGGCGTGCACGTATTGGCCGCCCCCAACGTAGATGCCCACGTGGTATGGGGAGGACTTGGAACCCCAGAAGAGGAGGTCACCCTTCTTCAAGCTGACAGTTGAAACCTTAACAGTCTTGCCTTGGTAAACTTGGCTGTAAGTAGTCCGGCTGATGTACTTGCCAATGGCGTGGCTGTAGACGTATGAAGTCAAGCCTGAGCAGTCAAAGGCGTTAGGACCGGTTGCCCCGTAAACGTAAGGCTTGCCGACTTGCTTCTTGGCCAGGGAGACGACCTTGTTGCGCTGGCTGGTCTTAGAAGCAGCTTGGACAGTGTTGTTTTGAGTGTTAACAGTATTTACGGCAACAAAACCGGCGAAGGCCAGGGATACGGCTGCGACTACTTTGGCTAATGACTTCTTGAACTTCAAAATGATTTACTTCCTTTCCTTAACTTGATGTTTTTCTTAACTTGATGTTTAACATCTTACAGGATAAATATTTCAATTCTGTTTCAAAAAAGTCACGCCTTTTTTACAATCTATGAGGAAAAGCTTAATTTTGTAATTTTCTCACCAAACTGTCCAAGCTGGCATAGGTCGCTTGCAGGTCGTCATTGACCAGGACATGGGCGCAAGAAGCCAAATCTTCCGGCAATTCGTTCAACTCGCTGCCGGTCAGCCGATTCTTGATCTGGTCACTTGCATCACCCCGGTCAGCCATTCTTTGCGCCAAGGTATCCAGGCTGCAAGTCACATAAAGGAAGTAAACCTGGTCACCTAAAGCTTCCAGGTAGGACCGGGCTCCCTTGATGTCCACGATCAAGCTGACCAGGTCGTTCTTGGCCCAGGCTCTTTCCAGCCCTTCTTTACTGGACCCGTACTGGTAGTCCCCGTATTTGACATGTTCAAAGAAGTGCAGTTGGGCAAAAGAATCATCGTCTTCAAAATAATAGGCTGACCCGCTTTCCCCAGACCGCTTTGGCCGGGTGGTATGGGTAATCACCCGGGGGATCTGGTAGCGGTCGGTCAGGTATTCAGATATAGTCGTCTTGCCCGCCCCGCTGGGACCGGCAATCAAGATAATTTTTTTAGCCAAAAAGGGATCTCCTAACTTGAAAATTTTCGCTCTATACTATATCATAGCCTAGACTATATCATAGCCTAGGTGAAATTTTAACCATTTGCGAATTAAGGAGATTGCCATGAAGAAAGCCGATGTTGAATTAGGTGCCGTCGTTAACGCCAAGTCAGAAGAAGAACTGAAGAAGCAGTTCCAAGGCACGGTGGAAAAGATCTATGAAAACTCCGCCCTCCTGGCCATCACTTCCTTTGACGACGTTGATGCTGCTGCCGTCAGCGACCTCAACTACAAGCTGGTCGTCAGCTTCAAGAACATGAAGCCGGCCCGGGCAGCCAAGAAGGCCAAGGCCCTCTCCACCAACAACGTGACCATCGAAAAGGTGGCCCCAACCATAAAGGCTGACGACAAGGATAAGGACAAGAAGGAAAAGAAGGCTCCGGCCAAGAAGAGCAAGTAAGAGAACTCCGTGGTTATCCCGCGGAGTTTTTTGTTAAGATAGTAGAGAAAGCGAGTTGACAACATGAAAGAAAAAACTAAAAGCCTGCTCTACTGGTTCATCCTCCTCCAGCCCTTCCTGGATTTGGACTTCTTCTACCGGGGGAAGCTGGCCACCATCCTGCCCTTCACCATCCCGACCATCATCCGGATCGCCGGTGTCATCGTCTTGGTGGGCCTGCTTGTCTGGGGGCAAAAGCAGCTGCCTCCGGCCTGGCTCTGGGCCTACCTGGACCTCTTGACCCTCTACGGGATCTTCCACCTCTGGCACATGCAGAACTTCAAGAGCCTCAGCCCGAACGATTATGGCTACTCGAATTTCGGGGAGATTTTTTACCTCTTCAGAATGCTCCTGCCCCTGGCCTTGATCTGGGTGACCAAGAAACTGGAAATCAGCCAGGACTTCTTATTAAAAGCCTTCGCCTGGGTCAGTGGCCTCTTCACCGGCACGATCGTCTTGAGCAACCTCTTCGTGGTCTCTTTGAAGTCCTACGAAACTGGGGTAATCTCCGGCAACATCTTCACCTGGTTCATGGGGCCGCTTTACGGCTACTCCCACAGCGCCTCCAAGGGTTTCTTCTACTTTACCAACACCTTGAGCGCCATCCTCTTGATGCTGGCCCCGGTCGTCTTCTACCTTCTTCTTGAGCGCTTCTCCTGGAAGACCGGCCTTTTGGCCCTCAGCCAGACTTTGGCTATGCTGGAAGTCGGCACTAAGGTCGCCCTCTACGGCTTAGCCGGAACCCTGGCCGTCAGCTTGATTGCCTGGCTGGTCCACCTGTTTTGCTTAAAAAACGTCAAGTTTTCTAAAGGCGGCCTGGTCACCCTTTTGGCCTTAGCCGGGATCACCGGGGTCTGCTGGCAGGTCTCCCCGGCTGTCCAGCGCTACAAGTACGAGATCTACTTGGCAAACAGCCATGACTCCAAGATCGACCAAGAAAACGCGCTCTTAAAGGCGGGCCTGGCCAAATACAAGAATGACCCGGACAAGCTGAAAGAGTTTGAGAAGTACTTTTTGGCCAAATATTACCAGAAGTACGCCTTAAACAAGCGCTTCATTACCAAGTCCTACCCATATAAGTACGACCCGCAATTCTGGATCGACCTGCTTAAAGAGCCGGCCAGCGTCCGTTTAGCCAACCGCAAGGTCGAAGAGGCCATGCTTAAGCAAGTGGTCAAGTATGACAATGATCCTTTGGACAAGTGGCTGGGGATCGGTTATATGCGGCAGACCAACATCTCCAACCTGGAGCGGGACTTCACGGCCCAGTACTACTCTCTGGGGCTAGTCGGCGCCTTCCTTTACCTGGCCTTTTACCCGGCCATCATCCTCTATGGGGCCTTTGAGTGGCTGAAGGAAAAAGCCTGCCGGACCCTTTACTTAACCAGCCTCTTGATCGCTAGCGCCCTGCTACTGGGGGCCAGCTACATGTCGGGCAATGTCCTGGACTTCCCGACCTCTAACCTGCTTTTAGCCTTCCTAGGTGGCGGCCTCCTGGCTTACATCAAGGAAGAAAAAGGCCGAAGCACCGGACTCCGAATCGTCAGATTTGAGAAAAAGTAATACCAAAAAATCGTCTTCTTTAATTAGAAGGCGATTTTTACTTTGTTTTCAATTCTTACTTGATTTCCTTATCAATAAAGGAACTGTCCGGCACCCGGATCAGGTAGAAGCGCTTGGCACGGCGGCCGGCATGGAGGCCGATCCCGTTAGCCGCGGTGTTCTTGTACTTGGCCGTGTAGATGGCCACGTAGGCCTGCTGGTAGCGGGAATCTTCCTTCTTCAGCTCCTTGCGGCTGAAAGGCAGAGCTGAGGCGGTCACGTTGATCGGGTCCTTTTCATAAGAGACCGTAGCCAGGTAGCTAGGCACGGTATACTTTTTCCCCTTCAGGTAAAAAATATACTGCTGGCTCAAATCCCGGTTCTTGGTGGACTTGACCTGGACATAGTAGCTCTGGCTGGCGCTAGGCTGCAGGACCAGGGGCTTGTAGGTCACGGATGAAGTAATCCGGGAAGTATCCGTCAAGTTCGGGTCGTCAAAGAGGCTGACAGCTAAGAGCCAGCCGACCAAAAGGCAGAAGCTGGCGACTTCCAGCAGGCTGATCATAAAGTTGCCCCATTCAAATTTATGCTGGCGCTGGATGATCATCTTCAGCCGCCGGCGCCGGATATTTTGCACGATAAAGACCAGGTAAACGATGGCTCCCACCCAGAGAGCCACCCCCAGTACGTTCCAGCTCCACATAATTATGCCTCTTTCTTCGTCTTGGCCTTGGCTTCTTTGGCAGCTTCCTTGGCGGCTGCTTCGCCTTCCTTGACCTGCTTGATCTTCTCGCTCATGGCATCAGCCAGGCGGTCGGCTGCCCCTTCAACATCGGCTACTAATTCGTCGCCATCCATGAAGAGGTCGATCCGGAAGTGGGAAGCGTTCAGGTATTCGCTGGCCGTTTCAAAGTAGACCTTGACCGGCTGGGCTTCTTCTTCGTCAAAGAAGTTGATCAGCTTCTTGTAGTTGGCCAGGGGCAGGTTGATGATGTTGGTTTCCAGGGCAAAAGTGATAGGGTTCTTCCCCTCCAAAACCAGCTGGACCTGCATGAGCCGGTCTTTATTCAAGGCCGTGGCCACTTCCTGGACCATGGTCAAGGCGTGTTCACGCAGCTTCTTCTTGCTCCGGGAGACTTCGGAATATTTGATGGTCTCCATGTCAGACAGGTAGGTCTGTTCTTCGATTGCTTTAGTTAAGTCTTTCAGGTTGATCTGCATTTGTTGTCACCGTCCAATTATGTCTGTATCTACATTAACTAAAAAAGTCCCCGGGTGCAAGCGAAAAAAAAGAGCCGGCCAGGGGGGGCCGGTTCTCATTAGGATTAATAGGAAATGTAGGTTGTCACCAGTACTCGACTGATTTATAACCTCCGGGGCGGCGATAACATGGGGAAAACACCGCCGCTCCGGGAAATAGAGCCTGCCGCGCGGCAAGTTCTCTATTACTCTGCTATTTTACCATATCCATCCTCAAGAATCTCTCATGATATGCGATCTCAGTGAAAAAATCTTCGGCTATAGCTGAATTATTAGCCAGCTATTCTGACCAGAAGAGGAAAGCAATTATAGCGTGAAATGACAAAAAAGCCGCCAGAAGCGTACTTGCTTCTAGCGGCTTTCTCAACTCAAGGCACTTGCCAAACGGCAAATGTGACTCCTTCTCGTTCACATCAAGGGTGTGTCAGCATCGACGCTTCCCGCGTCTGGCCAAAGGCCTGATGCCCTCTATCTTAAAAATACGCACCTTTGCGTTTTCCTCGACTCGTCGATATTTGATTATACGCTCTTTCCCAGGCCTTGTAAAGCTACTTTTTCAACTTCTCCCGCAGCTTGAGCCGCTTGATGTACTTGTTCCAAGCTTCCTGGAACAGGGTTGACAGCAAGAAGCCCAAAGCGATCGACACAGTCACGATAGCCACCCGCATCATCATCTGATGGGCAGCAATATACTTGCCATCAATCAGCCGTCTGACCACCATATAAGCCGGCGCTCCCGGCACCAGCGGCACCAGGCCCGGTACGCTGAAAAGGGTGACTGGACACTTTTTCCACTTAGCCAAAACCACCGCGACCAAGCCCACGGCAAAGGCCCCCAGGGTGTTGGAAATCATCCGCCCGCCAGAAGCCTCCGTCACCAGCCAGTAGACCATCCAGCCCGCGCAACCGCAGATCCCGCTCCAGTGAATCACCCGGTGGGGAATATTCACCGTCAAGGCAAAACCCACCGTGTCAATGTATGAAAAGACCAAGTTGATCAAGACGTCCCAGATGTTGAAACTAACCTGCATTCCCAGCATGACTAAGCTCCTAAAAATCTAATCACGATCCCGACGCCGCCGCCCAGGGCAATCGCCGTCATCGCCGCCTCACACATGCGCACGATCCCTGACACCCAGTCGCCCATAAACAAGTCTCTCAAGGCGTTGGTCAAGGCCAGGCCGGGCACCAGAGTCATCAAGGCCCCAGTCAAAATATTGTTTACATTGCAGGCCGGAAGAATCCCATTAATGATAATGGTGAGTAGCCCCATCCCCATGGCCGCGATCATTTCCGCCAGGAAGCGGATCTTGGTGTGGCCCTTAAGCCAGGAGTCCATCAAATAGCCGCTGGCCCCGATCAGCCCGGCAACCGGGAAGTCGATCCAGTCATAAACACCCAAAAAGAGAACCATCAAGGTGGCACTCAAGATCCCGGCCCCGATGACCTGCAGCCATAAAGGAAAAGTCGGGGCGTTCTCCTCGATTTCCCGCAGCTTCTCTTCCAGCTCCTCCAGGTCAATCCGCTTGTCGGCGAATTTCCGGGAGAATTCATTGACCTGGTCAACCAGTTCCAGGTTGATGGCCCGCTTCTTTACGGTTTCCAGTTCCGTCACCGTGCTGCATTCCCCATCATCCAGGCTGACGAAGAGGCCGGTTGGCATGGCAAAAACATTGACCTCCTTGATGCCGGCGTTGACAGCGATCCGGCGCATGGTGTCCTCCACCCGGTACATTTCGCTACCGCCGGCCAGCATGAGGCGGCCAGCCTTCAAACAAGTATGAACGACTCTTTTCATGTACGCGTCTGTGCTCATTTTTTTCACCGCGAGCCTGCCTAAAGGCAGCTAAATCAATTATTCATGGCTTCAATATCGACGACCTTGTCGACCCAGTCACCTCTGAAAAAGTCCTGCTCGTGACTGACGATGATGACCCCGCCCGGGAAATTGACGATGGACTTCCGCAGGCTGTCCTTAGTTTCATTGTCCAGGTGGTTGGTCGGTTCGTCAAGAAAAAGCAGGTTGGCCGGCTCAAACTGCATCTTAGCCAGCTTCACCTTCTCCTGCTCGCCCCCTGACAATTCCTTAAGTGGACTCATGACCAATTGGGCGGTCAGCCCCATCCGGGCTAAAGCCTGCCGTAATTCCTTGGGCTTCTTCTGGTCAAATTCACTCTCTAAGTACTGCAGAGGCGTCATATTCTGGTTGGGCCAGGTCAAGTCCTGCTTGAAGTAGGCCAGCTTAGCCGTAGCCGACAGGTCAAAGCCCCCGTAGATCGGCGGAATCTGCCCCAAGAGGGTCTTCAGCAGGATGGTCTTGCCGATCCCGTTAAAACCGGTGATGGCGACCTTTTCCCCATTGCCAACGGAGAAGTTGAAGGCTTCCTTAACCAAAGCCTGGTCGTATCCGATCACCAGGTCCTGCGTCTGCAAAAGCAAGTTAGAGGCCGTTTCCACGTATGGGAAGTCAAATTTGGCCTTCTTGCCGTTTTGCGGGGGCGTCAAAACTTCCATTCTGTCCAGCTGCTTTTGCCGGGACCGGGCACTTTTGGCCCGGGTGCCGGCTTTATTTTTTCTGATATAGGCTTCAGTCTTGGCGATCTGCCGCTGCTGGTTGGCATAGGCCTTCATATAAGTCTGCCGGTTGGCTTCCTTTTGCCGCATGGCTTGCTTTAATGTACCGGTATAGCGGGTGATGGTCCCGAAGTCGATGTCGATAATACAGTTGGTTATCCGGCCTAAAAAGTCGTAGTCGTGGCTGACAACGATAAAAGCGCCGGTAAAATCATTCAAGTAGTCGACCAGCCAGTCGATGTGGCCGACGTCTAAGTAGTTGGTTGGTTCGTCCAGGACCAGGACTTGAGGCTGCTCTAAGAGGAGCTTGGCCAGGATCAGCTTGGACCGCTGGCCACCGGAAAGCTGGGATACGTCCCGGTCAAAGCCCAGTTCAGCCAGGCCTAAGCCGCTGGCCACCCGGTCGATTTCTGTGTCCAGGTCGTAGAAGTTGTTTTCTTCCAGGTAGGTCTGCAAACGCCCGGCTTTAGTTAAAAGGGACTCATCGCCGCTTTCGCTGTAATCGATGTAAAGCTGGTTCAACCGGGCTTCATCTTGGTAGAGCTGGTCAAAGGCAGTTTTTAAAAAGTCCCGCATGGTCAGACCGGGCGTCAGTTTGGCGTACTGGTCCAGGTAGCCGACGGAGAGCTTGTTTTGCCACTTGACTGACCCTTCATCGGGGAAGATTTCCCCGGTCAGGATTTTGATCAAGGTGGACTTGCCGACCCCGTTTTGGCCGGTGACCCCCATGTGGTCTTCCTTGTTTAAAACGAAATTGGCGTCTTCATAGAGGGTCTTTTCCGCAAAGCCCTGGGTCAAGCCGCTAACGGTCAGTAAACTCAAATTTTTTTCCTTTCTTACAGGTGAAAGTTTTCCGCCTGCTTGCGCTCATGGTCGTACTTCTGCAGGGTCTTGAGGATTCGCGGCCAGAGATAGCGCGGGGCGGTCAAGTGCAGGTGGTCGTCAGCCACCCGGAAGTAGCTGGGACTGAGCTTGGTTAAGCCGGAGAGGAATTCCTCATCTAGGTGGTACTTGTCAGAGATCCGCTGGATTTCGGCAATCGCGTATTCGGTGTAAGACGAGCTCACGAAGACCAGGATGGCGCCGATGATGCCCCAGACCAGGGACTGGGTATTGGTTAAGGCGAAAGAGTGCCGGCAGATGTAGAACATGGCGATGAAAGTCATTACGCCGGCAATCCCGCCGTAGATGTATGGATAATAGCGTTTTTTCACGAAAATTCCTCCTAATTCTATCAACTATCTTAACGTATTTTGCCCCCTGGATAGTAGGAAAATTATTGCTGAAAGGGAAAAAATACCCCTAGCTAAGCTAGAGGCATGATTGTCAGCACTACCAAGAATCACTGCTTCTTGGCGTAATTGAGTTGGCTTCATAAATCGTGTAGTTGGTGATGGTCTCATTGCTGGAGAAGTCGACCCCGTTATAGGTCTCGTTCAGACTGTTCTGCCGGGTTTCCTGGTTGGTCAAAGTCTGCGTGGACAGGCCCAGGCTCTTTCTCAGCTTGTTGGACCACTTCTGCAATTCTTCAGTTGACGCGATCTGGAGGCTGGTTCCGGAAATCGTCGCGTCGTGGCCCTGGATGTAGCCGCTGGAGATGTTGCTGGCCGCGCTTCTGTAGTTGATGGCCAGGCTGGTCATGTCGCCAAAAGTCAAATTGGTCTTGACGTACTTGGCAAAAACCTTGAGCAGCTTCTGGTAGTTGACTAAACCGTTGACGGACAAGCCCTTCTTGACCACGGCCTGGATGATCTGCCGCTGCCGCAGCTGCCGGCCGTAGTCCCCCCGGGGTTCGTCATAGCGCATCCGGGCATAAGCGATGGCGTGGCGGCCATCCAGGTGCTGCTTGCCCTTCTTAAAGTCACACCAGTCATAGCTGAAGCTGAACGGCACGTTGACGTCAACCCCGCCTAAAGCGTTGACCAGGCTCTCCAAGGCCTTCATGTTAACTTCCACATAATAGTTGATCGGCACGTTGAGCATGGCCGAAACCGTCTTGACCGACCCGCTGCTGCCCCCAAACTGGTAGGCCGAGTTGACCTTGAACATGTAGTAGCTAGTGTTGCTCGTTTCACCCAGAATTTCCGTCAAGGTATCCCGGGGAATCGAAGTCATGGTCGCCTTCTTGGTCGTTGGGTTGACGGTCACCAGGATGATGGTGTCCGAGTTCCCCTTGTCATTTCTCCCCTCAAGCCCCTGGTCGACCCCTAAAACCAGAATCGAGATCGGCTTCTTGGCCGCGATCCGGGCACTGGTCGCCGTGCTGCCGTTATTGCCGTTCATGCTCACCAAGGCTGAATGCAAGGAGAAGTAGGCATGCGCCCCCCAGGTCGCCGCGATCATGACGGCAAAGGTCACCAAGAGGCCAATGATGGTCGGCAGGGGACGGCGGGACTTTTTTTTCAAAAAGCCAGCCTGGACAAGAGTCACATTACGAAAAATTTTCTGTTGTCTTCTGCTGTGTTGCTCTTCCATGGACTAACCCCTTTAGTAATTTGCTATTATTTATTTTCGCATGAAAAAGGCATTTAATAAACCAGGCGTGGTAATATTTAGACTATCTTATTTTTTTGGCAAAAAGCCGCTTTGAGAGGACAATACTAGTGGCGAAAAACGTACTTAATGTGTTTGATTATATGTAAGAGATAACAGGTAGGTTCTAAGTTCAATTAATCTAGGGAAATCCGGAACTTTGCTTTAGGATAGATCCCAGCTTTCACCCACACTTCAAAAACGTATGTTTGGAAATCAGCAGGAATACCTGCTAAAATATTCCTCGAAACAAAGATATAATTCTGAAAGGCGGTGAAATCAAATGGCGGAACAGGTAAAAGAAGCACCGGCAGAATTAATTCAGACAAGAGTCTATGAACTACGTCCCAACAAGACTATGAGAAAAGTTTTGGATGAAGCTTGTGACTACCGTCGTTATTGCTGGAATCAAGGCCTCGCCTTGTGGAATGAAATGTATAAGGCAAGACAAACACTTAAATCTTCTTTGTCCACCGACTCCAAAAAGCTGACCGAAGAACAGAAAGTGCTGCTTAAAGACAAGCCTTCACCGAGTGAACGAAGAGTTCGTAATATGTTAGTTGCCGATAAAAAAGACTGGCAGTATACACAGTCAGCCCGGATTCTGCAACTGGCAATTTCTGATTTGGGTAAGGCTTGGAACAATTTCTTTGACAAGGCCCAACCAGGCTGGGGCAAACCAAAATTTCGGTCAAAGCGGGAAGCCAGACAAGGCTTCAAAAGTGACCAGAGCAAGATCAAAGATGGAATTCTTTATTTGGAACGGGCAAAAGAAAGTAGCGTTCCAAAAGACCAATGGCGCGGCTTTAAGCTGAGTGAAAAGCCTTTGTCAGATGAATTTGGCGTTGTCAGCTACTTCAAAGAAAAAGGCCGTTATTACGTTGCTATCCCGTATAAGATCAAGGCTGAAGATATTAAGCTGCCAGACAAAACAGGTAAAGCTACCGCGGTTGACGTCAATGTTGGTCACTTTGATTACACGGGAGGTCGCATGAACGTATTGCCTAAGAAGCTTGATAAAATTTATGGGAAAATCAAGCACTATCAAAGGCAGCTTGCCAAAAAGCAAGTCAAAAATGGAGAAGCTGCTTGCGAAAGCGAGAACTACTTGAAGACGAAAGCCAAGCTTCAAGCATGCTATCGCAAGGCAAGCAATATCCAAAACGACTTGATGCAGAAGTTTACGACTGAACTGGTCAATAACTACGACAAGATCGTGATTGAAAATCTGTCAGTCAAGGGTATGCTGATGAGCCACGTAGCTTCAAAGGGTGTTCACCGGTCGATGTTTGGCAAGTTTAAGCAATTCTTGACCTACAAGTGCGATTGGTATGGTAAGGAACTTATCCTGGCAAATAAGCTGTATCCGTCTACTCAGCGTTGTGCGGCCTGTGGCAATGTCAAAAAAGGTGATGACAAGATCACCCTTTACGGAAACAAGAAGCATGGTACTAAACACAATGAGTACGTCTGCTACAACCAAAAATGCCCAAACTACAATAAGGTTGTAGATCGGGATAAGAATGCGATGCTCAGTCTTTTAGCGCTGACTGAGCACCCAGAATTAAATCATGCGCTATAATTTTTAAAGAAAGGAGAGTTAGTGGCTAAGGCCCTGGCCTTAGTCATGCGGGTTGGCTGTACCCGAGGATTGGTGAGAGCCTTTCCATGAAGTTGCGAGAGTGGTGCTTCGGTACCTGCGCTGGTCAATGCGGTTACCCCCTTGTTGGGATATCGGAATACCGGTGATGACGGCAATAAGAAAAATGTCTGTATTCATGTCTTCGGACAATACATAGTCAAAGATTACGGTTTGGCTACATTGCACACGTTTTTTTGCAGCAGTAGAATATCAAGTATCGTAAAATAGAACGTAAAGTAATAAGAAAAAGAAGAGGTATCGTATGGAAATCCCTTATCGCAGTGAGGTTCCCAAAGAACAGACCTGGGACTTGACCCGGGTCTTCAAGACTGAGGCGGACTGGGAGGCCGCCTTTAAAGCTGTCAAGCAGGAAGTCAAGGCCCTGCCGGCCTTGGAAGACGGCTTTACGGAGAGCGCGGCCGTCCTCTATGACCGCTTGACCCAGATTTTTGCCGTTGACCGCCGCCTGTCCAAGATCTACGTCTATGCCAGCATGGCCAGCGACGTCGACACCAGCAACCAGAAGAAGCTGGCCCTCAATTCCCGCGGCCAGAGCCTGGCCGCTGAATACCAGGCGGCTGTTGCCTTCATTCAGCCGGCTGTTTTAGCCTTGGGGAAAGAGGCCCTGGACGCCTTTTTCAAGGAAGAGCCAAGACTGGAAAACTACCGGCACTATTTGGAACAGATCGTCAAGCAGGAAGAGCACGTTTTGCCAGCTGAAGAGGAGAAGCTGGTATCGGCGGCCGGGGATGCCCTGTCAGCTTCGGCCAACACCTTCAACGTCTTGACCAACTCCGATTTGCGATTCCCTTACATTGAAGATGAAGACGGGGAAGCAGTAGAACTGACGGAAGCCAACTACGACATCTTGATCCAGTCCCAGAACCGGGAAGTCAGAGAGGACGCCTTTGACGCCCTTTACGCTGGCTACGGCCAGTTCGCGTCAACTTTTGCCTCAACCTTGGCCGGCAATGTCAAGGCCCACAACTTTGATGCCCAGACCCACCACTACCAGGACGCCTTAGCCGCGGCTCTGTCAGAAAACAACATCCCTGTCGACGTCTACAACCAGCTTTTGACTAGCGTCCACAAGCACCTGGACCTCCTCCACCGCTATGTCAACTTGCGCGAAGAGATCCTGGACCTGAAGGGCGACCTGCAAATGTGGGACATGTACGTGCCGATCACGGGCAAGCCAAGCCTCAGCTACACTTTCGCTGAAGCCAAGGCCCAGGCCAGAGAGGCCCTGCAGGTTTTGGGCGAGGACTATGTCAAACACGTCGACTACCTCTTCAATAACCGCTGCATCGACCACGTGGCTAACATGCACAAGCAAAGCGGGGCCTACTCCGGCGGGGCTTATGACACCGACGCCTATGTGCTCTTGAACTGGCAGGGGGACCTGGATTCCCTCTACACCCTGGTCCACGAGACCGGCCACTCAGTCCACAGCATGTACACCCGGGAAAACCAGCCATACGTGTACGGGGACTATCCGATCTTTGTCGCGGAAATTGCCTCAACGACCAATGAAAACCTGCTGACCAACTACTTCCTGGACCGGGTGACGGATCCAAAGACCCGGGCCTTCCTGCTCAACTACTACTTGAGCTCCTTTAAGGGAACGGTCTACCGGCAGACCCAGTTCGCGGAATTCGAGAAGTTCATTCATGAAAGCGACCAGGCGGGGGAAGCCTTGACGGCTGACTACCTGTGCGGCTTCTACGACCGGCTCAACCAGCAGTACTACGGCCCAGCGATCAGCCTGGGCAGCGACATCGACCTGGAATGGGCCCGGATCCCCCACTTCTATTACAACTTCTACGTCTACCAGTACGCGACCGGCTTTGCCGCGGCGACTGCCCTGGCTAACAAGATTACTTACGGCAGCCAGGAAGACAAGGAGAAGTACCTGGACTTCCTTAAGTCCGGCTCCAGCGACTACCCGATCAACATCATGCAGAAGGCCGGCGTCAACATGACCAAGTCCGACTACCTGGAAGATGCCTTCAAGGTCTTTGCGGAAAGACTGGACGAATTTACTGACTTAATCAAAAAATTGTAGAAAAGAAAACGAAGCTGCTCAAAGTGAGTAGCTTCGTTTTTTGCTATTAAACTTGACACATGTTCAATCTTAGTGGTGTGAAGCACCAGTAGCCGCGTCTGGTTCAGACTTGATTTGGTTGACCGCGGTAACTGAGTATGGCGCACCCGCGGGTCAGTGCTGGATGGCTTATGTCGCCAGCGTACTGGAAGTCAGTCAAGCGGGCGTGCTTAACGTCTTCAATCGTCTTGCAGCCAGTCAGTTGCATGTCGATCTTCAATTCATCGTTCAATTCGTTGATGATTGAAGCAACCCCGTGCGGGCCACCCAAAGCCAGGCCGTAAAGGTAAGGACGGCCAATACCAACTAGGTCAGCCCCTAAAGCCAAAGCCTTGAAGACATGGGAGCCCCGGCGGACACCACCGTCGAAGATAACCGGGCAGCGGCCGTTGACTGCTTCAACAACTTCTGGCAATACGTCGATAGTTGCAGGATCACCGTCGATTTCCCGGCCACCGTGGTTAGTCACGTAAACGCCGTCTGCGCCGGCAGTCAAAGCAACTTCAACGTCTTCAGCACAGTTGACACCCTTAACGATGACTGGCAAGCCTTTAGCGTTAGGCGTACCTAATTTTTCCAAAACGTAGTCGCCGTCACTGTCCTGGCTGATGATCCCGTTTTGGTAAGTGTCAGTCACGCTGGTGTCATCCTTGTCACCGGTGTAAGAGAGGTTGTGGGTGACCGTGTAGTTGGCGTAAGTCTTGCCGCTGCCGGCCGGGCTGGTAGACAGGACGCTGACGACTTCGTTGTAATTAGCGACTGAGTCAGAGTCGTCCCAGTTGTCGTGCAGCTTCTTGATGCTGAGGTAGCCGGTATTGCTGCTGCCGTTGACCCAGTCTTCGCTGTCGTTGTCATCCCAGATGTCCTGGAGAAGGTCTTCAGCATCTTCGCTGCTTGCCAGGCCCTTGTCGTCCAGGTCGGCTACCTTCTTATCGTAGATGTAGACTTACGCTGCTGACCGTGAAGCTGCCAGTAGTGATGTTCAAGCTGACCTGGTGGTTGCTGAAGAGGTCCAGCTTAACCGGGCTAGGTGAAATGGTCTTCCCGCTCAAGTTGGCTGAAACTGAGAAAGTATAGCGGCCGGCGATTACCGGGTCCAGCTTCTTTTGGTAGTAGTCCCCGGATGCAGACAGCTTGCCCACGTTTTTCCCGTTCATCTTAATCGTGGAATTCTCGTGGTTGGTCACAACCGTTGGTGAGTAGGTCTTAACCATAAGCTTGTATTTCGGGAAAAAGAAGAAGTAGTGGCCGTCTTCGCCTAAAGAAACGGAGTCTTCAAAGACGTCGTCAAGGTCGTCCTCCCACTTCCGGACCTGCTTGAGGTCGGCCCGCCTTTTGCCTGTTTTAGCTGGCTTAACGGGTTGAACTTGCTGAGTTAGCTGGCTTGATTGTGCCGGCTTAACTAACTTTGCCCCGCAATTGGCGCAGACGCAGAAAGTAGCATTGGCCTGGTTTTTGGCGCCGCAGTTAGCGCAGTAGATCATTTTTACTTCCCCCTTTTTGATAAAAACTCTGTATGCTTAACTGGCAAAAAATGCTCTCAAGCCCAGTATTGCATAGAAAAATACAATTTTAGGCAAAAGAAAAGGAGCTCAAGAGCTCCTAAAATTCCATATTTGACTACGCCCGCTTCTTTCTGGCTTGGGTGAAGTAAACCAGCAGGTAAGCCGTTACCTCAATTACCGAAATGAAAAAGGTTACCGGCCAGTTGGTGATATAGCCCAGGCACAGCCCGGCCCAGACCCCCAACAGGGCCAGGCCGACCGACCAGGCCAGCATGCTCGGAATCGACTTGCCCAAATAACGGGCCGTTGATGACGGCATGGTCAAAAGGACAAAGACCAGCATGGACCCGACCACCTGGGAGCCGATGGAAACCGCCATGGCCAAAGCTACCAGGAAGACCACCCCGACAAAGCCGGTATTGATGTGGTGGGCCGCTGCCCCGATATGGTCAAAGGAATCATAGTTTAGGGGCCGCTGGATAGCAAAAATGATCAATAAGACAACCACTGACAGGCCGACCAGCTGATAGACGCTGGATCTGGACACCCCGATAATGGACCCGAACAAAATGTTGGTCGCGTAGCTGCTGGCTGAGCTGGACAGGGACAAAAAGAGGATCCCCAAGCCGACGAAGAAGGCGGAAATCGCGGAAATCGACGACTCCTTCTGCTCAGTCTGCATGGACAATTCCCCGACCCCGATTGAACCCAGGAGGGCAAAAATCAGCATCCCCGTCAAAGGCTTCAGTCCCATCAAAATGGCAAAAGCCGCCCCGGCAAAGCCGATTTCCGACAGGGTGTGGGCCAGGAAACTGAAATTGCGGGCCACGACATAGACGCCCACCACCCCGCAGGTAATCGCGATAAAGGTGGCCGCCCAAAAAGCATTGCGCATGAATTCGTAGGCAAACATCAGTTGAAATTCTCCTTAAAATCTTCCATCTTCCCCTGGCTGACCGTCCCGTCGCTTAAGTAAAGATAGTCCTTCATATAGCGCTTGGCCAAAGGAATGTCGTGGGTGACGAACAAGACCGTCATCTTGTGTTCATGGTTGATGTGGGCGATCAGGCTCATCAATTCTTCCTTGGCCTTAGGGTCCAGGCTGGCCGTGGCTTCATCCAAAATGATGAAGTTCGGCTGGTCCAAGAGGGCCTGGGCCAGGTAGGCCCGCTGCTTCTGCCCGCCGGAAGCCTCCCCCATCCTGGTGTCCGCCAGGCCTTTCAAGTGGGTCTCCTGCAAAATATGGTTGACCTGGTCCTTAACCTTCTTGCTCTTCCAAAAAGGCGTGTTTAATTCGATAAAAGACTTGATCGACAAGGGATAGTCCGGGTCGATATTGCGGAACTGGGGCACATAGCCCACCTTTACGTCGTCAGCCAGCTCAAAATATCCGTGGCTGGGGCTCAGCATCCCTATCAGTATTCTGACCAGGGTGGTCTTCCCGGCCCCGTTAGGGCCCAAAAGAGCCGTCATGGACCCGGTCTCCAGGCTGAAATTGAGCTTTTTAAAAATCTCCTGGTCGTCGAACTTCATGCTCAAGTCCACGACCTGCAAAGCTTTACTCATTTACTTACCTCTAGTCTCAGTCTCTCTATAGCTTCTTCAGCAAGTCCAGGACCCTGTCCTGGACGGCACTTTCATCGCTTGAACCGATGATCCCGTTAGCCGCCCGCTTGGCTTCCGGCAAAGCCGTAGCTGTCGCGTAGCTCTGGCCCACGTATTGGAGCATGGCCACGTCGTTGCCCCCGTCGCCGAAGGCCACCATTTCGTCAGCCGGGATCCCGTAGCGCTTGCCCAAAAGCTTGAGGCCTACCGCCTTGTTCATGCCCAGCTTGCTGATGTCAACGGCTGAGTCGCTGCCGGCCACCATGTCCAGGCTCGGGAATTCCCGCTTGAGCTGCTGGGCAAAGGCTGATGATTCCCTTTCCCCGGTCACCACAGTGAACTTGAATATCCGGTCCTTGACGCTTTCGTAGTCGTCAACTGCTTTCAGTTCCTGGTAAAAAAGGCGGAGGTAGTTGTAAAACTCTTCCCCGTAGCTCTGCAAGGTGTAGGCGCTATTCACCCCAGCCAAGACAGTCGGGTGGTCCTGGCCGTACTTTTCCTTGATCTCGTGGATCGTGGCCAGTTCATCGCTGTTTAAGTCCACGATGTTGAGGATTTCCCGCCCCTTCAAGACATAGGCCCCGTTTTCAGCCACGAAGTAGAGCTGGCTGAGGTATTCTTTCGGAAAACGGGTAACCAGGTTTTCATACTGGTTGCCGCTGGCGATGACGAACTTGACCCCCTTTTCCCTGGCCAGGTCCATGATTTGCTTGAACTTGTCCAGGTCGTACTCCTTCTTGGAGTTGAGCCAGGTACCATCCATGTCAGTCGCGATTAACTTGATCATCTTTTCTGCTCCATTCTCGTAATAAATCGTCTCATTTTTCAGTAAGTATAAAACTTTTGCTTTCTTTTGCTTTTTCCACTATCTATCTTACAGAATTTTGCCCGCTATTACTTGCTTTTTGTCCGCATTTAAAAAATCTGTAACAGTGAAATATAACAAATCTTCCAGGAGAATGCCAGTATTTTTTCTAAAAAGAAAATTTAGGGCTAAACACAAAAACAGGAGGGACTTAATCCCCTCCTGTTTTGCATTTTAACTTATTTGTTTACTTTTCAATTGGTTTCTTCCAGAAGCCCATCATCAAAGCAGCTACGATTGAGCCGACAGCTACGGCGCCCAGGTAGCCCAGCCAGTTGCTGGACAAAGCGATAACCCAGAAACCACCGTGAGGTGCTGGCACGCCGACGTGCCACAGACCTACCAGGGTCCCGCCGACAGCACTGCCGACGATTGATGAAACGATAACGTGCAGCGGGTCAGCACTGGCGAATGGGATAGCCCCTTCAGTGATAAAGGAGAAGCCCAGGATCCAGTTGGAAACACCGGCCCGGCGTTCATCTTCAGTAAACTTGTTCTTGAAGAAAGTAGTCGCGATAGCAGTCGCTAATGGTGCTACCATACCACCAACCATAACGGAAGCCATCAAGATAGCTGAGGTCTTGGAAGTCGGGTCGTTGGCGAAGGCACCTGAAGCGAAGACGTAAGCGGCCTTGTTGAAAGGACCACCCATGTCGATACTCATCATGCCGGCCAGGATCGTGGTCAAGAGAACCAGGTTGCCAGTGCCCATGCCGTTCAAGAAGTTGGTGATAACCCCGTTCAAGGCACCGAAGACCGGGTTGATGATGTAGTACATGATCAAGGCTACGAAGAGCAGACCAAAGATTGGGTAGAGCAACATTGGCTTCATACCTTCAACGTTCTTCGGCAGCTTAACGAAGAGCTTCTTGAGGCCCAAGATCAGGTAACCGGCGATGAAACCGATGGCAATCCCGCCCAGGAAGCCGGCTGGTGAAGCAGCCTTGGCGTTGGCGTTAACAACGTAAGAGCCACCCAAGGAAGAGTTGGTGATTGAGGCCATGAAACCACCGACGAAACCTGGCATCAAGGCTGGCAGGTCACCGATTGATTCAGCGATGTAGCCGGCCAGAACCGGAACCATGAAGGCGAAGGCCAGGTTACCAGCACTGTTCAAGAAGATGAAGGCCGGGCTCTTGGCGCCACCCATGTATTGTTCAACCAGGAAGGAGATGGCCATCAAGATACCGCCACCGATAACGAACGGAAGCATGTGGGAAATACCGCTCATCAAGTGCCGGTAGATGGTTGACCATACGCTGCCGTCGCTTGCAGCTGAGCTTTCACTGGCTTCACCAGCTTCTGCATGGTAAACGCTGCCCTTGCCGGACAGGATCTCGTCAATCAGTTGGTCTGGCTTGTTGATCCCGTCAACAACTGGGTGCTTGACCAGTTTCTTGCCGTCAAAGCGGGCCATCTTGACCTGCTTGTCGGAAGCGATGATAACACCCTTAGCCCGCTTGATTTCGTCAGCAGTCAGTTCGTGCTTAACGCCTTCTGAACCGTTGGTTTCAATCCGGACTTCAACGCCGCGCTTTTCACCGGCCTTGATCAGGGCTTCTTCAGCCATGTAAGTGTGGGCGATCCCGTTGATGCAGGCAGTAACGCCGACGATCAATGGCTTTTCGTCACTAGCTGCCTTAGCTTCTGCTTCCTTCTTAGCGGCCAGCTTGGCTTCGCGTTCAGCGTCTTCCTTGTCCTTGTCAGCTTCTGCCTGGCTGAAGAGGTCGATAACTTCGTCAGCCGTCTTAGCTGCCTTCAGCTTTTCAACCAGGTCAGGGTTGATCAAGAGGCTGCTCAGCTTAGCCAGGGCTTGCAAGTGAGTGTTGTCCGCACCGGCTGGGGCAGTGATCATGAAGAAGAGGTGGACTGGCTGCTGGTCTAATGAGTCGTAGTCCACGCCCTTTTCACTCTTGGCAAAAAGCACCCGGGCCTTGTTAATGTATTCGTTTCTGGCGTGAGGCATGGCAATCCCGCCACCGATCCCGGTAGTGGATTCCTTTTCCCGGGCCCAGATGGATTCAACGAACTTTTCCTTGTTGTTGACGATACCCGTAGCTACTTCCAAGTCGGCCATTTCGTTGATGGCTTCATCCTTGGTGGTAGCCTGCAAGTCCATAATCATGGACTCTGGGCTCAAAATATCTTTAATCCGCATCTTGTTTTCCTTAGTTACTAAAAAATACTCTGTTACTTCTTATTCCCTTTATTCAACGACGTCGATCTTGATTTGCGGCAATACGGCGTCGATTTGGCTCTTGATCGCGATGTCTTCAGTGAAAGCCGTTGCCCCGCCGCAGGCGCTGCCGACCCGGAGGCCTTCAGCCGCGTCGTGCTTTTCAAACCAGGTGCCGACGAAACCGGCAATCATGGAGTCCCCGGCGCCAACGGAGTTGACCGCCGTGCCCGTGGCCGCGTTGGCGTGGTAGACGTGGTCAGCAGTTACTAGGTAAGCACCTTCGCCAGCCATGGAGATCATGACGTTTTGCGCGCCCAGCTTCTGCAGCTTCTTGGCTGCTTCCAGCATGTCGGCAGTTGATGAGAAGCTGGTGTCAAAGAGGTCAGCCAGTTCGTGGTGGTTTGGCTTGATAACCAATGGATTGAACTTCAAAGTACGCAGCAGGGCTTCGCCAGTCGTGTCAACGACGAATTCCGCCCCCTTTTCCCGGATCAGCGGCAAAAGGCTTTCGTAGAAGTCAGTTGGCAGGCTTGGAGCCAGGCTGCCGCTCAAAACAACGACATCGCCTGCTTCCAGGTCGTCCAGGCGGGACTTGAAGGCTGCGACTTCCTGGTCGGTAATGTCCGGGCCAGCCGCGTTTATTTCAGTTTCTTCCTGGGCGTGGATCTTAACGTTCACCCGGGTGTCGTCGCTGATTCTTACGAAGTCGCTGCTGATCTTCTTGACGTTCAATTGGCGGATCAATTCTTCGCCGGTAAAGCCGCCGACAAAGCCCCAGGCAGTGTTGTCCACGCCTAATTGGTTAAGAATCTGGGAAACGTTGATCCCCTTGCCCCCAGCTAAGAACTTGGTGTCGCTTGACCGGTTGGTCTCCCCGTCCTTGACTTCTAGCAGTTGCAGAACGTAGTCCAAAGCTGGGTTGACAGTCACGGTGTAAATCATTATTCAGCCTCCTCAAGTTGAATATTTACTGGCAATTTCTCCCGGTCGCCAGCCTCCAGGCGGCTGATGATGGTCACCTGGTCGGTCTTGGCGAATTCGGCAAAAGTTACCGCGTTAAATTTGCTGCGGTCGATTAAAACGAAAGCCTGCTGGCTTTGCTGGATAGCCGTCCTTTTCACGGCAGCTTCCTCAGTGTCCGGCGTGGTTAAAAAGCCGGCCGGGCTCAGGGCGTTGGCCCCAATGAAAGCCGCGTTGAAGTTCAGCTCCTGCAGGCGGGAGACAGTGGTCGCGCCAATGGCCGCGTGGGTCTGCCGCTTGACATGGCCGCCTAAAAGGCAGCAGTCAATTCCAGCGTCAGTCAAGGCCAGGGCCGTTTCCAGCCCGTTGGTCACCACGTGCAGGCCGCTGATCTCTTTTAAAAAGGGAACCATTTCATAAATGGTCGTCCCCGCGTCTAAAAAGAGATAGTCGTGCGGGTGGACCTTCCTGGCGGCCAGGCGGGCAATAGCCAGCTTGTCATCCTTGTTCAGATTGAAGCGGATCTGCTGGGCCACATCCTGGCCAAAAGTCTGCAGGCTCTGCGCTCCGCCGTGGACCCGTTTAAGCAGGCCCCGGTCTTCCATTTCACTCAGATCGCGTCTGATCGTCGACTCGGATGTCGAGGTCAAGCGGCAAAGTTCCGTTACGCGGCAAATCTGATGTTCGTCTACATAATGGGCAATCATTTGTTGCCGCTCTTCCGCCAGCATCTTTATCTCACCTCGCCATCTATTGTAAAGGCTTTCTCAGCCAAAAGCAATCATTTTCCGTCAAAAATGAGCGATTTTCCTAAAAATTAACTGTTTCTGACTGAAACATACTTAAAATTAGCAAGGCAAGCAAAAAAGACCAGGATTTCCTGGTCTTTTATTTAGTCATATAGATATTTCTGGCAGGCCTGGCGGGGATCTTGCCCGTTCCTAATCGCCAGAGCCAGTTCGATCGACACGTCAGCGATGATCGACTGGGGGTCGATAACCTGGTAGGGGTGGTCCGGCGCCTGCTCCTGGGCTAAGGAAAGTTCCGTGCAGCCCAGCAGGATCACGTCGCAGCCATATTCGTCGTGCATCTTGCGGAGGATCTCATGGTAGAGCTCCTTGTCGACGATCCCCTTCTCCTTGATGTCCCGGTAGATCAATTCCGTCACCATCGGCTGGATCTCGGGACCTCCGAATTCGACTTCCCGTCCCACCCGGTGGATCTCGTCTTCATAAAGGTGGTCGTAAATTGACCCTTCAGTCGCGATCAAGCCGATCTTGGGACTGTTTGGGAACTGGTCGACATATTGGTGCACGGCAATCCGCATCATGTGCAGGAAGGGAATGTCGGTCAAGGCCGCCAGGTCGTCATAAAAGTAGTGGGCCGTGTTGCAGGGCATGACCATGAAGTCCGGCCCCAGCTTGGCCTGGCCTAAAACATCTTCTTTAAGCGCATTGAAAAAATTCGGCTGGCTGTGGTCCTTGATGTAGGCCGTCCGGTCTGGCACCTGGGCATCATTGACCAGGATGTAGTTCAAGTAGTCCTGGTCCTTGCTGATCTTGACCCGGTGGTTGATCAAGCGGACATAGCTTTCGGTCGCAATGGTCCCCATCCCGCCAATAATGCTAAAGAAATGCTTCACTAAATATCAATCCCTACTTTTCTAATTCCTGGATCACTTGCCGGGCGATAACAATATCGCCGGCATATGGAGTGTCTACCCCGCGGATCTTCTGGAAGGCGTCAGCCCCCTTGCCGCAGAGCAGGACCACGTCGTCCGGGCCAGCTTCGGAAATGGCTTCCTTGATGGCCTTCTCCCGGTCCAGTTCAATAACCGTTTCACACTTGGAGTGGTCGATCCCGGCATCGATTTCCTCGCAGATGTCCTGGGCATTTTCAAAGCCAGGGTCGTCCGTGGTCAGGTAGGCCTTGTCAGCTTCCGCCGTCAAGCTTTCACTGAAGCCCGGCCGGCGGGAAATTCCCTTGTCCCCAGGCGCACCGACCACGACGATGACCCGGGGGGTGGTGAATTCCCGGCGCATGAACCGCATCAAGGCCAGCATGGAGGCCTTGTTGTGGGCATAGTCCACCACAATCAAGCCGTGCTTTTGGGTCGTGACGGTTTCCATCCGGCCTGGGATGGTCACGTGCCGGATCCCCTTGGCGCAGTCTTCATAACTCATTCCGGCTAGGCCAGCCCCGATGATGGCGCCGGTAGCGTTGGTTTCGTTGAAGTCGCCGATCATCTGCAGAGTGTATTCACCAGAGATTGGCAGCTTGTGGGCCTTGCTTGAAGCCGTAGTCAAGGTGAACTTGGTTTCAGCCAGGTCAGTTTCCACGGACTTGTAGCGGAAGTCGATTGGCTTCTTCAGATCCGGATTTTCAAAGCCGTCCCGGGCAAACAGGTAGATGCTGTCCGGGTTGGTCGTGGTCGTTGCTGCCGCGTAAACATCAGCAAAACGGTCGGTTTCCGCGTTGATGATGCACTTGCGTGAGTTAACCAAAAGCTGCAGCTTGCAGTGGAGGTAGTCCTCAAAGTTCGGGTGCTCGTTGACCCCGATGTGGTCCGGGCTGATGTTCAGGAAGAAGCCCAGGTCGTAGGTCAGGCCAAAGACCCGGCTCTTCTTGTAGGCTTGGGATGACACTTCCATAACCATGTGGGTCATGCCGTTGTCAACTGCCCGCCGCATGTCTCTGAACAAGTCCAGTGATTCCGGCGTGGTCAGGCTGGACTTGAAGGTGTCTTCCGGAGCCGGCCCGAGGATGTTGTCGACTGAGGACAAAAGAGCAGTCCGGCCCCCGTTGAGCTGGTCCAGCATCCCCTTTAAGAAGTAGGCGGAAGTGGTCTTGCCCTTGGTCCCGGTAAAGCCAACCAGGAAGAGGTCGTCTTGCGGGAAGCTGTAGAAGGCAGCTGACAAAAGGGCCATCGCCTTGGACACGTTGCGGACGATCAAGGCGTGCATCCCCGTGCCTTCCGGGTATGGCTGCTCAGCCACGTAGGCAATTGCCCCGTTTTCCTTGGCCATGGTCAAGTAGGTTGGCCGGAAGCCCGCCCCCTTGCAGAAGAAGAGGCTGTTGTTCTGGACATCGCGTGAGTCATAAGAAACAGCCTCCATTATGGTCTGGACAGTGTCCTGGACGGCACTGGACTTGAGCAGGTGGTGTTCTTTTAAGATTAAAATACAGGTGTTTAATGAGATGTTCATTTTTACTCCTCAGTGTCAATTAAGATTCAGTTCAAATTATACCACAGGTCTAAGAGCAAAGTTGTTTGCCTGGGGATCCCGGGGCAAGAGAATGATGAAACTGGTCCAATCCTTGTTTGATTCACAGCGGATCGTCCCCCCGTGCAGCTCGACGCCCCCTTGGACGATGGACAGGCCTAAGCCCGTGCCCCCGGTCTTGGTATTGCGCGAGCTTTCCACCCGGTAGAAGCGGTCAAAAATCTTCTTCAATTTGTCCTTGGGAATCGGTTCCCCGTTATTCTCCACCCGCAGCTCAACCTGCTCGTGGTTGATCAGGTTGGCCACCAGGTTGATCCGGCTGGCCCCGGCCGCGTACTTTAAGGCATTGGAGATCAAGTTGTTGTAGACCCGGACCAGCTTTTCCACGTCGGCGTTGACGATCAAGTCATCCGGCCGGGCCTTGACGCTAAAGGCAATGCCCTTCTTCTCCGCTTCCAGCTCAAAGCCGGCCGCCACCTGCTCCATCATGCCCTTGATATTGATCGGGGTCACGTTCAGCTTGGTCTTGGTCGACTTCAAGGTGGTGTACTCGAAAAGGTCATTGGCCAGGGACTTCATCTGCTCAGCCTTGTCATAGGCGATATTGATGTACTTGAGCATGTCCTCCTGGCTGGTCACGGCCCCGTTCTTCAGCAGGCCCAGGTAGCCGATGATGCTGGTCAAAGGGGTCCGGATATCGTGGGAAACATTGGTGATCAGTTCGTCTTTCGACTGCTCGATCGCCTTTTCTTCATTGATCGCCCCCACGGTCGAGTCGACCAGGGAGTTGATGGAATCGATCACCTTCTGCATGTCGTTGTTGACGCTGAAGGAAATCCGGTGGTCAAAGTGGCCGTTGGCAATATAGTGCAATTCGGAAATGATGTGCCGCAGCTGCATTTGGTGGTAGCGGCGGATTAAGCGCCAGTACAAGACGATGACGTCAGCGATCCCCATCAAAATGATCCCGATTCTTTCCCAGGACCAGATATGGTAGCCCGGTCCGATCGTCATGGTCTTTTTCAAAAAATAAATGCCGTTGACCAGGCTCTTGTCCTGCAGGACCGCCAAATGGTAGAGGATGATGACGGACATGTTCAAGAGCAGCATGATGATGACCGTCACCACGCCCTCAGCAAAAAGCTCGCTCTTCTCAGCCGCGGTCAGCTTGACCCGGGGCCGCTTGCCCTGGACGACTTGTTTTTCTTTGTCTTGCTCAAGCTTCAACTTTGTAACCTACACCCCATACAGTCTTGATGACTTCTTCGCCGTCGGTGGCCTTATGGATCTTGTCCCGCAAGTGGGAAACGTGAACCATGACCGTCTTGGCGCTGACAATGGACTCTTGCTGCCAAACCCGCTCGAAGATCTCATCAGCTGAGAAGACCCGGTTGGGGTGGCTGGCCAAAAGGTAAAGAATGCCGAATTCCAGGGCTGTCAGTTGGATTTCCTTGCCTTCAACCGTCTTGACCTCATGGGAGTCCTTGTTGATGATCAGAGGCCCGACTTCCAAAACGTCAGGCTCCTCTCCCTTGACCTGCTTCTGGCTGCGGCGCAAAAGGGACCGGACCCGGGCCATGACTTCCAGGGGGTTGAAAGGCTTGGACACGTAGTCGTCGGCCCCGGTGATCAAGCCCTGGATCTTATCCATGTCGCCGGTCTTGGCGCTGACGATGATGATCGGAATGTCAGAATCCTTGCGAACTTCCTTGACCACATCGATGCCTGACATGTTCGGCATCATCACGTCCAGAATCATCAAGGCGATATCCGGCGTGGTTGAGAGCTTGGTCAAAGCTTCCTTGCCATTGTAGGCGGCAATCGGCTCATACCCTTCGTTCTTCAAATAAATGCTTAAGAGTTCCACGATTTCGTGGTCATCATCGACAACGAGAATCTTCATTTGCAAAACCTCTTCTATTCCAAACTTATCTATCCTATATAGTACCTTTTATTTTAACCAATATACCAAAAAGAGCGTACTTTGACGTACACTCTGACTTGGATTTTAGCAAAACATAAGATTCGCTCTTATTGGATTTCTTTTTTGCCGGTGTAGAGCTCGTAGTAGTAGCCCTGCTTGGCCAGAAGCTGGTCGTGGTTGCCGGCTTCCAGGACCCGGCCGTGGTCCAGGACAATGATCAAATCGGAGTTGACGATGGTGGACAGACGGTGGGCAATGACGAAGCTGGTCCGGCCAGCCAAAAGGTTGTCCATCCCGGCTTGCACCAGGCGCTCAGTCCGGGTGTCGATGGAACTGGTGGCTTCGTCCAGGATCATGACCGGATTGTCAGCGATCATGGCCCGGGCAATGGAGAGCAGCTGCAGCTGCCCCTGGGAGAGGTCGCTGCCGCCCCCGTCGATCACCGTTTCATAGCCATCATCCCGGTCATGGATGAACTCATCGGCCCGGGCCAGGCGGGCTGCCTGGTAGACGTCGTCATCTGAAGCGTCAGGCCGGCCGAAGCGGATGTTTTCCATGATGTTGCCGGTAAACATGTGAGTTTCCTGCAAGACGATGGAGACAGACTTGCGGAGGTCATCCTTCTTGATGTCCTTGATATCGATCCCGTCGTAAGTAATCGTGCCGGAATTAATTTCATAGAAGCGGTTGATCATGCTGGAAATAGTAGTCTTCCCGGCCCCCGTTTCCCCGACCAGGGCCACCTTCATGCCCGGCTTGGCTTCAAGGGAAATATCGTGCAGGATCTGCTTGCCTGGCACATAGCCGAAGCTGACGTGGTCAAAGACGATGTGACCCTTGACTGGCACGTACTTAAAGCCGTTTTCGGTCGGCAGCTTCCACTGCCAGGCATTCTTGACGCCCGGCTTTTCTTCGATAGTTACCTGGCCGTCGTCGACTTCAACTTTTTCATCCAGGACCTGGAAAATCCGACGGGCCCCGGCAATAGCCAGAACGATGGCGTTCAGCTGCTGGGAAATCTGGGCGATCGGCATGATGAAGGCCTTGGACAGCTGCATGAAGGAAGCCAGAGCCCCCAAGGTCAGCGGAATGTTGCCGGCTAAGATTGCCGCCCCGCCGAGCAAGGCGATCAAGACATAGAGCAGGTTGCCGATATTGCCCATGATTGGGAACAAGATGGTGGCATAGGTGTTGGCCTTGCCTGAGGCAATCCGCAGCTGGTCATTGTAGCGGTCAAAGTCGGCCTTGGCTTCCGGTTCATGGGAGAAGACCTTGATGACCTTCAAGCCGTTAAGCATTTCTTCGTTGTAGCCGTTGACCGTCCCTACAGTCTTCTGCTGCTGGTCAAAGTAGTAGCTGGACTTGCCGGTCAAGTAGCGGACAACGCCTAAGGACAGGAGAACCACTACCAGGGAAACCAGGGTCAATTGCCAGCTGAGGTAGAACATCCCCGCCAAAACGAAGACTACTGAAAAGACAGAGTTAGCGAACATCGGCAGGGCCTGGGAGATCATCTGCATCAAGGTGTCGATGTCGTTAGTATAGCGGGACATGATGTCGCCGTATTCGTTCTGGTCAAAAAAGGCGATCGGCAGCCGCTGCATGTGGGTAAACATTTCATTTCTGATTTGCTTTTGCACCTGCTGGGACAAGACCATCATCAGCAAGGTGAAAAGGTAGTTGGCTACCAGACCGATGGCGTAAACGCCGGCCATGAGCAAAACAGCGTGAGCCAAGGGGCCAAAGTCCGGGCTCTTTTGCTTGAGCATGGGCGTGATGTAGCGGTCGATAACCTGTTCAATGAACAAGGAGCCGACAACAGAAGCCGCCGCGCTGATGATCACGGAGGCCAGGGAAACGATCAAAGCCGCCGGGCTAACCCGGTAGACGTATTTCAGCAGGCGGGTCAAGGTCTGCATTTGTGATGGTTGCTGAGCTTGTTTTTTAGTCATCGATTATCACCTACTTGCTGTTTTCTTCCTGGAACTTGGCGATGGATGAGTACAAGTCGTTGCGCTTGATCAATTCATCGTGGGTTCCGACGTCTTCGATCTTCCCGTGGTTCATGACCACGATCCGGTCGGCATCCTTGATGGAGACGATCCGCTGGGAAATGATGATCTTGGTCGTTTCCGGCAGGTCCCGCTTCAAGGCTTCCCGGATTTCCCGTTCAGTCTTGGCGTCGACGGCACTGGTGGAGTCGTCCAGGATCAGGATCTTCGGCTTCTTCAACAGGGCCCGGGCGATCGTGATCCGCTGCTTTTGCCCCCCGGAAACGTTGTTGCCGCCTTGTTCGACCATGGTGTTATAGCCGTCCGTCATTTCCCGGATAAAGCCGTCAGCGTGAGCAATCTTGACTGCCCGGACGATTTCCTCGTCGCTGGCCTTTTCATTCCCCCACTTGAGGTTGTCCTTGATAGTGCCGGAGAAGAGGACGTTCTTTTGCAAAATGACCGCCACGTTGTCGCGCAGGGTCTTAAGGTCGTAAGAGCGCACGTTGTGGCCGCCGACTCTGACTGCCCCACCAGTCACGTCGTAAAGGCGGGGAATCATGGAAATCAAGGTTGACTTGGAAGACCCGGTTTCCCCGATAATCCCCAAAGTTTCCCCGGACTTGATCCGCAGGTCAATGTCCTTTAAGGCATAGTGGTCATCTTCCTTGTTGTACTTGAAGTCAACGTGGTCAAAAACGATTTCCCCGTTGGTCACGCTGGTCAAAGGTGACTTGGCCGGGTTGACAATAGTTGGCTTGGCCGTCAAGACGTCAGCCACCCGGTGCCCGCTCGACCGGGCCATCATCAGCTGGGTGAAGATCATGGACAGGATCATCAAGGACATCAAGATGGACATGGTGTAAGAGAACACGGAAACCAGCTGGCCGGTTGCCAGTTGATGGCCCACGATCAGTTTTGCTCCAAACCAGGACAGGGCCAGCATGACAGCGTCGATCATCATAGTCATGACCGGGCCGTTGAAGGCCATGATGAACATGGCCCGGCTGAAGAGCTTGTAGATCTTGCTGGTGGACTTTTCAAAGTTCTCGATCTGCTCTTCTTCATGGACATAGGTCTTGACTTCCCGGACCCCGCGGATGTTTTCCCGGACCTTCCGGTTCAGTTCGTCATAGGCCCGGAAGATTCTCGGGAAGTATGGCCGGGCATTCTTGATGATCAAGATCATGGCCAGAGCCAAAACCGGAACAGGCACGAGGAAGACCAGGGTCAGTCTCCAGCTGATCGAAACTGCCATGAACAAGGAAATGATCATCATGAACGGGGCCCGGACGGCTATTCTGATGCTCATCTGGTAGGCCTGCTGGATGTTGTTGGTGTCGGTCGTCAGCCTGGTCACCAGACTGGCGCTGGAGAACTTGTCAATGTTTTCAAATGAAAAGTCCTGTATGTGGTAGAACATGTCCTGGCGGAGGTTGGCGGTAAAGCCGGCTGCCGCATGGGCTGAGAAGTAGCTGGCACTGGCCCCCAGGACCAGGGAGACCAGAGTCAGCAGGATGGTGAACAGACCCATCTTGCGCACGTAGTCCATGTCCCCCTTGTTGATCCCGTTGTCAATCAAGAGCCCCATGATATATGGGATATACATTTCAATGAAGACCTCGACGACCACGCACAAAGGAGACAAGAGCGTCTCTTTTTGTACTGGCGGACGGACTTCAATAAAGTTTTAAGCATTAATGACCTCCCTCTTTACTGCTCATCGCTTTTTATAAAAAATCGTCAAAAAAAACAAATAGATGCTGAGCATCTATTTGTTTTATACTTATCAGCTTATTTTACGCCCATTAGGATTAAAAAGCACGCTATAGATTTACTTTTTCTTCATGGTCAGCTTGTCCGGGCTGAGAGAAGTCCCTTCAATCCCGTAGTGACGGCGAACCAGCCAGCGAATCCCGTAAGCGGCTGCGGCCACCAGGATGTCAGCCCAGCCTGGCAGAACCGGGTTGATGACGGACAGGGCCGGAATTGAGAGGACAAAGACGATCAGCATGATGATCAAAAGTGACCCCAAAAGGCCCCAGATCACCTTGCCCCAGGCCTGCTTGTCGGTCTTAGGGTCAGGCTGCATCCAGGTGTTGTATTTGGTGAAGTACCAGCCCATGGACAGACCCATCACGATCAAGGTCAGGATCCCGGAACCGGAGGAAGTGGACTTGCTGTTGTCCGTGAACAATTGCAAGACCCCAAACAGAACCGTCAGCATGGCCGTGTAGAAGAGGGCCCCGTCCAGGGCTACCAGCTTGTCCGACACCCTTTCCGGCTTAACGACCGGGTGCAGGATCTGGCTGGCCTTCATCTTAGGCGCGGCGCCAAACAAAACGTTGGCCGGCTGCCCCTTGATCTGGGCGTCGTAGATTTCCGGCAAAAGGCCGTCGATCTGGGCGTCAGCGTCGCCTTCGCTCATGCCGCCGGCAACCAGTTCCTTCTTCAAGCGGTAGATGTAGTCCTTGTTCTTGTTGGACAATTTCCCCCGGAGTTCTTCCGGGTTCTCCTGCTTGATGCTTTCCGTCTTGGCTTCTGCCTGCCCCTGCTTTTGCAGCTCGGCTTGAGAATCGTTCTTAACTTGCTTTTCTTCGCTCACTTCTGTCTCCTGCCTTATACGTTAAATCTGAATTCGATGATGTCGCCGTCCTGGACTTCGTATTCCTTGCCTTCCAGGCGGACTCTGCCGGCTTCCTTGATCTTCTGCATGCTTTCGTACTTGTCCAGGTCTTCGAAGGAAACGACTTCGGCCCGGATGAAGCCCCGTTCAAAGTCGGAGTGGATGACACCAGCGACTTGCGGCGCCTTCATGCCCTGGTGGAAGGTCCAGGCCCGGGTTTCCTTGCCCCCGGCTGTAAAGAAGGTTCTGAGGCCCAGCAGGTGGTAGGCAGCCCGGATCAAGCGGTCCAAACCGGATTCTTCAACCCCTTCAGCCGCCAGCATTTCTTCCTTTTCTTCATCGTCCAGGCCGGCAATTTCTTCTTCGATAGCCGCGGAGATGCCCAGGCAGCCAGCCCCTTCCTTGTCGGCGTGGGCCTTGACGATTTGGTAGTACTTGTCGCTTTCCGGATCAGCCATGGATTCTTCCGCGATGTTGGCCACGTAGATGACCGGCTTGGAAGTCAGGAGGAAGAGACCCTTGACGATCTTGGCTTCGTCATCAGTGAACTTGATGGACCGGACCGGGTCGCCGGCTTCCAGAACTGGCTTGATCTTTTGCAGGACATTGTATTCAGCCATGGCTTCCTTGTCCTTTTGCTGGGCCATCTTCTGCACCTTGCCGATCCGGCGGTCAACTGAGTCCAGGTCAGCGTAGATCAGTTCCAGGTTGATGGTGTCGATGTCTTCTTCCGGGTCAACCTTGCCGGAGACGGAAGTGATGTTTTCATCGTCAAAAGCCCGGACCACGTGCACGATAGCGTCGGTCTGGCGGATGTTTTCCAGGAACTTGTTGCCCAGGCCTTCACCCTTGGAAGCCCCCTTGACCAAACCGGCAATGTCGGTGAATTCAAAAGTCGTGTGGACAACCTTCTTGGCCGGGATCAGTTCCTGGATTCTGGCCAGGCGCTTGTCCGGCACTTCAACCATCCCCACGTTCGGTTCAATGGTCGCGAATGGGTAGTTAGCCATTTCCGCGCCCGCCTTGGTAATTGCGTTAAAAAGAGTTGACTTGCCGACGTTTGGCAAACCGACGATACCAGCAGTTAAAGCCATATTTTGTAATTCCTCTTTCTTGTTTTTTCTTGCTTGCGTGTTTAATTCTTGGCCTTTTGGCCAGATTAGTCAATGCCTAGCCGAAATTTGGCCGGGCGATGTCTTCCTTGGCCACGTAAAAATCGTTTTTCAAGTTGACGGGATCATTGCTCTTGGCCAGGAGCTTCTTGACCTTCTTGTTGAAATCAGCCCGCGGCATCATGATCACGTGCCCGCAGCCCATGCATTTCAAGCGGATGTCGGCGCCCAGGCGCAGGACCTCCCAGTTGTTGGTCTGGCAAGCGTGGGGCTTCTTCATTTCAACCGTGTCCGCCAAGTCAAAAGTAATGTTTTTAGTCATCGAGATTCACACCTAACAAATCCAGAATCCGGTTCAGTTCATCCGGGGAAGCAAAGTCAATTGACAAGTGCCCCTTCCCCGTCTTGTTTTCCGTAATGCTTACCGGCGAGCCGAACTTGGCGGCCAGCTGGCTTTCGCTGGCCCGCACGAAGGCTGATTTGCCGGCATTATTTTTCTTCTTCTGCCCGCGCTCGTTCATCTTGGCGACCAGCGCCTCGACCTTGCGGACCGGCATCCCTTCCTTAACCACCCGCTTGGCCAGTTCATCGATCCTGTCCTTGTCCTTTAAGCCCAGAAGGGTTCTGGCCTGGCCCATGGACAATTCCCCTCTTTGCAAAAGGCCCTTGGTCTTCTGCGGCAGGGTGAGCAGGCGGAGGTAGTTGGTGATGTAAGGGCGGGACTTGCCCATCTTCTTGGAAACCTCTTCCTGGGTCAAGCCCAGGTTCTTTTGCAGCATTTCATAAGCCTGGGCTTCTTCCAAAGGAGTCAGGTCTTCCCGCTGCAGGTTTTCCAAGATGGCCACTTCCATCATCTGGCTTTCATCAAACTGGCGGATGATGGCCGGGATGGTGGCCTGGCCGGCTAATTCGGAAGCCCGGCATCGGCGCTCACCGGCGATGATCTCGTAGCCGCCGACTGACCGGCGGACGATGATCGGTTGCAGGACCCCGTTTTCCTTGATGGATTCAGCCAGTTCGGCCAGCTTCTTTTCATCAAAATTCTTCCGCGGCTGGTAAGGGTTGGGCCGGACTTCTGCCAAAGGCAGGTCTTCGATTTCTTCGGCCGGCTTTACCTGGGGTTCTTCTTCAAAAAGCGCCCCCAAGCCCCGACCCAGGCCGCCCTTCTTCTTTTCCTGTTTCTTATTTCTTGAGTCTCTTGCCATGAGCCTTCAGCACCTCTTTTGCTAAGTCATCATAAACCTTGGCCCCGCGCGAACTTGGCGCGTATTCCGTGATTGCCTCCCCGTAGCTTGGCGCTTCAGCCAGCTTGGTGATCCGCGGGATGATCGTCTTGTAGACCCGGTCGCCGAAATATTCCTTGACCTGCTGGACCACGTCGGCCCCCAGGTTGGTCCGGGCATCCAGCATGGTCAGCAAGACCCCCTCCACGCCCAGGTCCTTGTTAAAGTGCTTCTGGACTAAGCGGATGGTGTTGAGCAGCTGGCTCAATCCTTCCATAGCGTAGTATTCGCTTTGGACCGGAATCAAAATCGACTGGCTGGCCGTAAAGGCATTGATGGACAACTGCCCCAAAGAAGGAGGACAGTCGATAAAGACGAAGTCGTACTTGTCGCCCAAGTCTTCAATGGCCCCCTTCAAGCGGGTTTCCCGGGCCATCATGCTGATCAGCTCGGTTTCCGCCCCGGCCAGATTGATCGTGGCCGGCACGATGTCCAGCTTCTTGCTGCTAGTCGGCTTGATGGCTGAGGCGATCGGGATTTCATCGATCAGAACATTGTAGATATCATACTCGATGGTCGACTTCTCAATCCCCAAGCCTGAGGTGGCATTGCCCTGCGGGTCAATGTCGACAATCAATACCTTGTAGCCTCTTTTAGCAATGGAAGCGGCCAAATTGATGGTCGTCGTGGTTTTGCCAACGCCGCCCTTCTGGTTGGCGACTGCGATGACGCTGCCCATGCTAGTCCTCCTTCTTCTTTCTCTGATTCTTCATCACGATAGTAATCTGGTACTCATCCGGGCTCTTCGCCTCGGTAACCTTGACTTTCACGCCGGACTCCTTGGCCAGTTTAACCGCCTGCTTGATCGTGTTGATCTGCAGCTGCATGTCCCGGCCATAGCGGACCACCGCCTTCTTCTTAACGGCTGGCTTAGGATTGGCCAGCTTGGCCGCCCGCTCTTCCGTCTCTTTCACGCTGAGACCTTTTTCGACAATCTCTTCAGCCAATTTAACCTGGTCCTCTTCGCTTAAGCCCAAAATGGCCCGGCCATGGCGGGCGCTGAGCCCGCCTTTAGCCAGATACTCTTGCACAGGTTCAGCCAGCTTGAGCAGGCGGAGCTTGTTAGCCACGTAGGACTGGGACTTGCCGATATCCTGGGCCAGCTGGGTCTGGGTCAAGTCGTTGAGCTGCATCAGCTGCTCATAAGCCTGGGCCTCATCGATCGGATTCAGGTTTTCCCTTTGCAGGTTTTCGATTAAGGCCAAAGAAGCGGTCTGCTGGTCATCGAGATTGTTCACGATAGCCGGAATCTTTTCCCAGCCCAGGCTCTTGGCCGCCCGGAAGCGGCGCTCGCCGGCAATGATTTCGTAGCCGCCCTGGTCCTGGCGGACGATGATCGGCTGCAAGAGCCCTTCTTCTTGCAAGGTCTGGGCGAGTTGCTGGATGGAATCATCGCTAAAAGTCCTTCTTGGCTGGTAGCGGTTCGGATGGATTTCCGCTAAAGGCAGGTCCTGGACCTGCTTGTTTTGGGGAATTTCATTTCGATGAAAAAAACCAAAAGCCATTTGGGCACCTCCAAAAAACTACAAGGGTTTGCGGTTTGGCGTGCCTGCCTGGCGCGGGTACTTGCCCGGAGTTGCCTCGACCTTGTCAACCAGGACAAGGGTCCGCACTTCAGTGCTGCCTGGCAGGGTGATGACCCGGGTGAAGACAACTTCGCCGCCCAATTTCTCCAGGGCACTCTTGGCGTCTTCCAATTCTTCGTCAGCCCGCGGCCCCTTTAAAGCCAGGAACTTGCCGCCGACTTTGGCCAGGGGCAGGCAGTATTCGCTCAAAACGCTCATTCTTGCCACGGCCCGGGCAGTTACCAGGTCAAACTTCTCCCGGTAGTCCGGGTTTTGCCCCACATCTTCAGCCCGGCCGTGCACCAGGTTCACGCCTTCGATGCCAAGCTTCTCCAGCAAGTCAGACAAGAAGTTCAGCCGCTTGCCTAAAGAGTCAACGATGGTGACTTCCAGGTCCGGGCGGAGGATCTTGATCGGCAGTGACGGAAAGCCGGCTCCGGCCCCGACATCGCAGAGCTTGGCTCCTTCTGCAAAGACCTCTGGCCAGAGCAGGAGCGGAGTCACGCTGTCGTAGAAGTGCTTGAGGTAGACCTCGTCTTCGTCCGTGATCCGGGTAAGGTTGACGTGTTCATTGACCCGGACCAATTCCTTAAAATATGTTTTAAATTGTTGCTCTTGGACAGGAGACAACTTAAAATTATATTTTGACAATGTTTCTGCAAAAAGTTCAGGATTCATTCTTTCACCTGTGAAACCGTGTTTCACACCCTTAAATGTAACGCAAAAAGCAATCTTGCGCAAAAAAATGTTACACAAACTATCTTAACAATTATGGATTATTTTTGCTTGAAGGTCAAAAAGAATCCATGGAAAATTACAGCTAAAAACAAAGGATATAAAGATGCTCTTAGTTATTTTCGTCATTCTCTACATCGCCTGGCAGACCTACAAAGGCTACCATGTGGGTTTCTTTAAGCGGATCGTCAATTTGATCTTCGCCGGTCTGGTCTTCATGCTGGCCATCATGCTGCAGAATCCGGTCGGCAACCTGATCTACACCCAGTTCATCCAGGGGCAGGCGGGCGACTCCAGCCTGGTCCTGCATGCCTGCCGCTTCGGGGCCTTCTTCGCCCTCTTCTTCATCCTCAAGCAGATAGCCAAGATCTTCAAGGCCTGGCTGCCCGCCCAGGAGACCAAGACTGGTTTCACGGCCACTTTGGACCACATGGCCGGGGCCATCGTTTCTTTCGTGGCCTCCTACTTCTTCATGTACGTGGTCTTGTCCATCCTCAACTCAGTCGGCGTCAGCCAGCTGAGCCAGCTGATCAGCGATTCACAGCTGCTCAGTTTCATCGTCAACGACACGCCAGGTCTGTCGACCGGGGTCTTCAAGACTCTCTTCAGCGTCAGCCGGACCACGGCCTAAGGAAAAAGCAGCTTCACAAGAAGGTGAGGCTGCTTTTGCTTTACTTTAGTAATCCAGGCCGACTTTTTCCACCCGTTCATCGTTATACACGTAAATGGCGCCTAAGCGGCAGTCATTGACCCAGTTGGCAATTGGCTGGCCGGCAAAGAAGCAGCGCTTGCACTCGATTTCCGCGTCAACGGAATTCTTGGTGAAGGTCGTCACCCCGGCGATGTTGGTTTCCACCGGGTAGCCGGTCCGGGAGTCGATCAAGTGGTGGTACTTGTGCCCGTCCACTTCCAAAAAGCGCTCGTAAGTCCCGCTGGTGACCACGGAGCATTCCGGGATCATCATGGCCGTGATGTTTTCTCCCCGCGGCTTCAAAGGATCCTGGACGCCTACCGTCCACATCCCGTTGGCCCGCTTCGGGCAAGGGTTGACGAAGAGGACATTGCCGCCCAAGTTGATGATGCCGGCTTCGACCCCGTAGGCCCGCCAGAGGTCCCTGATCCGGTCGGCCGTCCAGCCCTTGGCGATCCCGCCCAGATCCAGCTCCATGCCTTCCTGCTTCAAAAAGACCGTGTGGTCATCGTCATTTAATTCGACCATCCAGGGATCGATCAGCTTCATTTTCTCCTGGATTTCCGCGTCACTTGGCACGCGGGCATCCTGAAAGCCGATGGACCAGAGCTTAACCAGGGGGCCGATTAAGGCGTTGAAGCCGAAGTTTTCCCGGCTGGTCTCAACGGCCAGCTTGATCAAGCCGTAAACGCTGCTAGAGACTTGCACGGCCTCCTTGCCCGCCTGGTCGTTGACCCGGGTTACTTCGGACAGGCCGTAGCGGGGGTGGTCCGGCTTGCGGTTGACCGTCAGCAGGTCTTCAAAGTGGTCGATTAGGACCTTGGTCTGGTCCAGGATCTTTTCCGGGTCTTCCCTTGCCCCGTAGATCTGCAGGCTGATGTGGGTCCCCATGGCCTTGTGCTGGGCCAAGACTTGGTCAGTTGATATGTATTTGATGATTCCCATTTTTAAAATCCTTACTCTTCTAGATACTTGGCCCGGAGCTGGTCACGAAGGACGGGCGTTACGCCCAATTGCCGGGTCAAAAAGGCTTCCATGCCGCCATATTCCTGGTCGATGGTGATCAAGGCGCTGTCTAAGTACTCATTGTTGACCGTGCCCAGAGACCTAAGGTTGGCCCGCTGCACCAGGCTTTCCCCGTTTTCCCGGGCTTCCTTGTCCCTTTTGGCCCGGTAGCCGTTAAGGTAGGGAGCGGATAAAAGATAGTCCTGGCGGATGGTTTCCGGGTCAACCCCCAAAACTGTCAGCAAAAAGACAGTCACCAGGCCCGTCCTGTCCTTGCCTTCCGAGCAATGATAAATAGTTCCGCCTTCAGTTTCAGCCAGATAGGCTAAAACCTGGCCAAAAGCCGCCTGGGCGTGCTCTTCCGTCACCATCAGCCGGTAGCTCTCCACCATATGGCGGAAGCCCGCCAGGGGGTCTAGGCCGTACTGCCTGGCTAATTCCGCAAGGCTGGCTTCGGCCTTGGTCTGGTCCCGGCTGTTAACGGGGATATTGACGTTCTGGATCCCGGCTAGCTTTTTATCCGGCCGCTTGCGGCATTCTTGCGGAGAACGGAGGTCGATGATGGTTTTCACCCCGCGAGCCCGCAAATAATTGCCATCTTCTTCACTGATCGCTGCGACCGTCCCGGTCCGTAGCAAAAGTCCGGCCTTGATCTTCCTGCCGGAAAAGCCGGTATAGCCGCCAAGATCCCGGGGATTGCGGACTGTTTTCAAGGGTAAAAGCTCCTCTGCCATCTTTTCTCCTCCTTCACTTCTCCCTACAATTTTAAAACAAAACAAGGCGGAAGCGCCAAGCTATCCGCCTTATTTTGCAGTTTTTCTTTTTTAAAACAAAACAAGGCGGAAGCGCCAAGCTATCCGCCTTATTTTTCAGTTTTTCTTTTACATTACTTCTTGGCTTGGGCAACGAAAGCAAAGAAGGCTTCCATAACCTTGTCCAGCTGAGCGATTGAAGCTTCGTCAACCAGGTCGCCGCTTTCCTTGTCAAAGCTGCTGTAAGCCTGGCCGATCAGCAATTCGTTGCCTGGCAAAACGTTGGCCGTCATGTCCGGAGACAGCAGGATTTCCCGGGCATCTTCCTGGGCGCGGGAAGAGCCTTGGACGCCCAAGGACACGCCTACAACGCAGACTGGCTTGTAGGCCATAACCTTGCTGCCAGCGTGGCTGCCCAGCCATTCCAAAGCGCTCTTCAAAGCAGCTGGAATAGCGTGGTCGTATTCTGGAGTAGCGATGATCAAGCCGTCAGCCTGGTCAACCTTTTCCCGCCATGCCGCAACACGGGCATCAGCTTGCCCTTCCTTGTAGAAGGCTGGCAGGTCGCCAATTTCAGCGACTTCGATTTCCGCCTTATCGCCAAAGCGCTTGGCGATGAACTGGCAGAGCAGACGGTTGAAAGAAAAATCGGCATTAGTTCCGACAATAGCTAATAATTTCATTTGGCAATCCCCCCACTTACTTCGTGATTTGTGCGTACCAGGCGTCGACTTCGTCAAAGAAGTGTTCCAAGAAGTCAACGGTACCGGGAATCTTCAAATCGCCGTTTTCGTCAAAGGCAGTAGCTGCCCCGCCCATCATGAATTCATCGTCGTTGAAGACAACCGGGTGCAGGCCTGGGGAAGCCAAAATCGTCTTCAGCTTGGTCTGTGACCGGGCACCCCCTTGGGCCAGCGGTGAAGTTGACACGATAACGACTGGCTTGCCGTTGAAGGGGTGAGTGTTGGTTGACAGCCATTCCAGGGCGCTCTTCAAAGCGCTGGTTACTGAGTGCTGTTGTTCCGATGACCCGATCAAAGCCAGGTCAGCAGCGGCAACTTGGTCACTCAATTTGGCCACGTCAGCCGGGTCTTCCTGGCCTTCCTTAAACATCGGCAACCCCTTCACGGTCGCGAATTCAAAATCATACTTATCAGCGAAGTGCTTGGCAATGAACTTCAGCAGCATTTCGTTGTAAGACTTGTCAGCGTTAGATCCGTTAAGAGCTAAAACTTTCATAAAAACCACCTTTCAGATTTTCCATTACTTCCCTAGTTATACCCAAATTAAAGGGGTTTCAGCAAGGCTTTTGTGAAAAAATTACAAGGATAAAATGACCGATTGATAGTTTGATTTTTTAAATGGATCAGCGGTCAAAAAGGCTTTCCAGCTGCCGTTTGATGATCCGGACGAAGTTGTCCTGGTCATAGTCAATCAGGCCATCGACCAGCATTACGGCCAGGCCGTTGACGATAATCCAGTTGAGGGCGATGAGCCACTTCTCCAGTTCCGGGTCAAGGTCGCGCTGGTACTGTTCGCGGAGCTTGGTGTGGCCCAGGTCCATCAAGGTATCGCGGATTAAGTCGTCACCAAATTCCCCATTGACGAAAATCGTTGAGAACAGGCTCCGGTGGTCGCGGGCAAATTGCAGGTAGGAGAGGTCAACATCGTATAAGGGCTCGCCAATAAATTTCTTCTGCAGGATTTCATCGCGCAAGGTGCGGGAGACGCGCTTAAGCACTTCCTTGCGCAGGCCATCCATGTTCTTGAATTCCAAATAGATCGGTTGAGTTGAAAAGTGGCCAGTCTGGGCAATGCTGCGGGCAGTCAAGTTCTCGATCCCGTCGGTCAAGGCCTTCTTGTAGGCGATGTCCAATATTCGCTCGCGATCAATTTCTTTCCTTCTGGCCATCATCTGCTCCACTTAATTTCATCATATTCTGAAAACACTTTAATATTTCATTCCTAACCAGAACAAGCTTTTCAAGCTGATTCTATTAGCTTAGACTAATGGATCATCGGCAATCAGCCTATAAAAAACGCTTATTCGCACTAATTATATATTAGCACAATATCTAACCAGCGGCGTATTTTTAGTAAAAAGTTAAGCAGATAAACCCCGTCCCTGCGGGCGGAGGCAAAACAAGGTAAAATCTAAACAAGAGCAAAAGGAGAAAAGAGGACAAATTATGACAACACACGGACGTTCATCCTGCACTTCAATCTTGATCGGGAAAAAGGCTAGCCTTGACGGCAGCGTGATTATTGGCCGCAATGAAGACTCACGGACGGCCTGGCCCAAGCACCTGGCCTTCCACCAGCGGCAAGCAGGAGCCAAGACTTTCAAGTCACATGATAACAAGTTCACAATTGATTTGCCAGAGGAGGCCTTTGCATATTCATCCACTCCAGAATGGACGAAAAAGTACGGGCTTTTTGAAGAAGACGGGATCAATGAGCACCATGTGGCAATGAGTGCTACGGAAAGTGCTTATGCCAACGAGCGGGTTCTGGCCATCGACCCCTTTGACGCTGAAAAGGGCCTGCTGGAAGAAGCCATGGTGACTATTGTTTTGCCTTACGTCAAGACGGCCCAAGAAGGGGTCAAGCGCTTGGGCGAAATCGTGGAAAAGTACGGGGCGGCTGAATCAAACGGGATTCTGTTTGCGGACAGAGACGAGGCCTGGTACTTGGAAATCGGGTCCGGCCACCACTGGGTTGCCCAGAGAATCCCGGACGACTCCTACACGGTGGTTGCCAACCAGCTGTCAATTCAGGAGATCGACTTTAAGGATCCGGCCAACTTCCTTTATTCAGCCGGACTGCAAGAATTCGTTTATGAGCACCAGCTTTGGCCAAAGGAAGCCAAGTTCAACTGGCGGGAAATTTTTGGCACGAGAAGCGAGAGCGACCTGCATTACAACACCCCGCGGGTTTGGTACGGGCAAAAGCTGTTGACCCCGTCAGTCAAGCAAGAGCCGCAGTCTTTTGACCTGCCCTTTATTCAAAAGGCAGACCGGCCGCTCAGCATCCAGGACGCCCAGACGGTCCTGGCCAGCCACTACAGCAACACGGAATACGACTTGACCAACCCGAAGAACGCGGGCCAGGCAACTTTCCGGCCGATTGGGGTGGCGACGACCCAGGAATCCCACCTCTTGCAGCTTAAGGGCGAGGACATGTACCACTGGCTAGCCATGGGGGTTACGGCCCAGAGTGTCTACATTCCCTTCTTCCCGCAGGGGACCAAGGTGCCTTACATGTGGGGCAATGGCAAGGTCGACTACAGCCCGAACTCTGCCTACTGGATCTTCAAGCTGGCCGGGGTTCTGGTTGACCGGAACTGGGGCAAGTACGGCAAGGAACTGGCCAACGCCCAGACGGAAGCCAAGGAAAAGGTCCTGCGCCTCCGCTATGAATACGACCAGAAGCTGCATGCTGACCCAAGCCAGGCCACGGCGATCGCGGATGAGGCCAATGCCAAGATGGCCAAGACGGTGACGGACATCTACAACAAGCTGATCAGCAACTTGATTACCCAGCAGACGGGCGATTCCCCGCTCAGCTTCCAGATGGACCCGAACTTGTAAAAAAGCATATTAAAAAAGGCGTGAAAGTGCACCATTGCTGCTTTCGCGCCTGTTTTGCTGTTCCTTATACCCAACAGTCTCCCTTCGATTGTTGATTGTTTTGCCTGGCCTGCCCTCTTATACTAAAAACATCTCTACTGATACAAACAAGTTGAGTAAACGAAAGTAGTCCACACATGGCTAAATCCAAACTGATCAAGGCAAATGAAAAAATCACGGAAAAAGTAACCGGGGCTTTTGGCAAGGTCCAAGATTCCGTAGTTGGCGGCTATAGTAAAATCGAAGACAAGTTTGTCGACCAATATCTCACCAAAGACGGTGAGAGCATCGCCGATGCCAAGGCCCGCTTGAAACAAGAACAAGCTGACCGTAAGGCAAAGCAAGACCTGCACAAGCAATAAATAAAACAGGCGTGAACCCGCATCCCTGCAGCGTTCACGCCTTTTTCTTCATCTAAATTAATGGTAGCTGATCGTCTGGACCGCTCTTTTGGCATTGATCTCCCTAAAGAAGACCGGTGCCGAGACCCCTTTGAGGATCTGGTCGTTGGTATAAGTCACGATCACCGTATCGTCGTAGCCGAGCCCGCGGAGCAACTTACGGTTCATGGTCGCCAATAGCTGCCCCTTTTTAACTTCCTGACCGGCTTCAACTAAAATGTCGCAGCCGACCCCGCCTAGCTCTACCGTATTCAAACCCAGGTGGATCAAGAGATCCAGTCCTTCCTTGGTCCGGATGCCAATCTCATGGTTGGTCGGAAACAAGGAAGTAACCGTGCCGTTCAATGGAGCGTAGATCAAGTCGCTGGACGGCTGAACCGCGAAGCCCTCGCCCAGTCCCTTGCTAGCAAAAATCTCATCGTTGACGTCCTCGAGCGGGAACAACCTGCCCTGGACCGGAGCCAGAACCTTGCTCAGCCGGGCCCTACTCTTTAGCAAATCAAAAATTCTAAACATAAATCAACCTCAAAATGATATTCAGACTAAAATATGTAAGCGGAATCATCACTGTCTAGTTTATCATTTTGATGGTAGTTTTGCTATATGTTCCCGCTAACAATTGTCATTTTCCTAACGGAGCAGCCGTTTTGTCGCCGTTTCAACCTTCCAATTATATTCGTCAACCAATTTGTCCATCTCATGCCGGAACCTCCGTGAAAAGCTTAGAATCTCACCGTTCAGCATGACAATAGTCCGTTTGCGCAAGTTGATCGCCGCTACATTTTTTGGGTTTATCAGACAAGACTGGGATATCTTAGCCAAAAAATCATTTTCTTCATCAACTCTTCCCGCTTCATCCTTGTAGCGCTTTTGCGCAGGGCGAATCAGATAGCCATAAATAAGCTTGGCCGTGGTTGACATGTCTTGGTACTTTTCATCAGTGAACAGCTTGCCATTTAGGACAATGCTGGTATTCCAGAGGTCTAGTCGGGCTGGGCCATCGTCCTAACAGTAGAATAGGGGATTCCTGTTTCTTTAGCAATGCCTTGCCAACTTAATTTGGACTGCAAGATCTTTTGTTAGTCCAAGCTGGTGCTGCTTAGACCGTTCAGTGTCTTCGTATCGTTTGCATCAAGCAGCTACATCAAGCTGCTGCAAAGCCTTGCCAATCATCCGGCCGTATGGTGATACAAGCTGGAAACATGTCGACAGTTCATTCAGCCCAAGCCGGAGATGGCCAAAAAGCTCCTAAACACTAACCCCCTGGTTGATTTTCATCTAACCAGGGGGTTTTCTTGTCAGTTATTTAGTTTAGATTTTTTGCTTAACTTCTTGCACGTGGACAACCAGGACCTTCCGCAACCAAGGCAGATCGGCTTTCATGAGGTCAAAGTACTCTCCGGCTTCAACGAATTCGCCAGTAGCATAAACGTGGTAGCCACGGCCTGGACCTTCAGTGCCTTCAAACTTCATGGAGCCGAAGGTCAGGATCAGCTGGCTGTTTTGAGCCGCAATATCTGCTTCAATCGACCGCATCCCAGCAGCAGGCACGAGGAAGGTTGAGTCATCAACCACCTTGATGTAGCTGCTCCAGGTGTTGACCACATGAGCTGGACTGGCTTGGTAGGAAACGATCGTTACTGGTTGCGGATCGCTGATTACCTCCAAAAAGTTTTGGGTTAAAGTAGTGCTTTCTTCTAACATATTTAAATTCTCCTTTTCTTCTTGTTGTAGATATCATAAAATGAAAAGGTGACAATTTACGGCACCTTTTAGCAAAAATAAGGAGAAAAAATTGAAAAAATCTGAGCGGCTTAATCAAGAGCTGATTTTTTTAAGTGACAAGAAGCGCTTTAACCTGCAGGACCTGATGGACAACTTTCAGATTTCCAAGCGGACGGCCCTAAGGGACATTGCCAGCCTGGAGGAACTTGGCTTGGCCTTATACGCCGAAGCAGGCCGGGCTGGCGGCTATTCACTGATTCAAGAGGACCTTCTGACCAAGATATACTTCAATTCGGATGAGGTTGCCGCGATATTTTTCGCGCTCAAAGCCATGGAGCAGCTAAAAGAAACCCCGTTTAACGAATCTTTCCAGATGATCAGCCAAAAGCTGCTCAAGAACCTGGCAGCGAGCCGGCAGCAGCAGGTCTTAGCCTCACAAGCAGCGGTTTCCTTCTTCAACACCCCGGCAGTTCACCACAACCCTTACTTGCGCCTGCTGATGGAGTCAATCCTGCACGACTCCCTGGTCCGGGCCAACTTCAAGGGCCAGCAAGTCCTGTTGCAACCCTGCCAACTCTTTTTTAGGGATGGCAACTGGTTGTTTGCGGCCTATGACTTGCTGGGCCAGGCCTTTTGGAACTACCGCTGCGACCAATTGCAGGATTGTACTGAGCAGGCTGCCGTTCCTAATAAACTTAGTTTGGCTGAATTGAAGCAAAAGCAGCTAGAGTTTGAGCACGACAATTCAGGCCAGAAATTTAAAATTCTCCTCAACCACCGGGGCCAGGAACATTTTTTGAAAAATCTCTACCCAAATATGCAGCTTGAGCATGAAGGCGGGACTACTTATTTGACCGGTTCATATACGCCACGCACCTTTGAGTACTTAATTGACTATCTCTTGACTTTTGGACTGAATGCGAAAATCATCACGCCAGAAGAGCTAAGAAGGAGCTTTAAAGAGCGGCTGGCTGCCATACTTGACCAATACAGCTAAAAAGCCCCTAATTGGACTATATTCCAATCCAATGTCATTAAGTTAAGGGATTGACATCAAGAAAGAACCGTATTATCCAAAATTTGGGTAGTACGGTTCTTTTGACTTTTGTAGAATTCGGAATAAAAATAAACGTGGAAGTGTCATTAGCACTCCCACGTTTATTTTTCCATCCCTAACGACCTCACATTTCTCACTCATTTTCTTATTTAATCATACCCTTTTTCCATATTTTTCCGCCAAAAATTCAGATCCGGTCATTTTTCCGCGTATCCGGTCAAAAAAGGCCCCGCCTGAGCGGAGCCTTCTTCTGTTATTTTCTTTGTGTCAACTGCCCGTCCATCATGTCATAGATGTGGTCAGCGTATTTTTCCAGCCGCGGGTCGTGGGTGACCAAAATGATCGCCTTCCCGTCATCCTTGGCCAGCTTCTTAAACAAGCGGCCGACTTCTTCCACCCGTTCACTGTCCAGTGATGCCGTTGGCTCATCAGCCAGTAAAATCTTCGGGTTGGCGTACATGGCCCGGGCGATTGCCACCCGCTGCTTCTGCCCGCCTGACAAGTTCTCCGGATACTTCTTGACCAGGTTCTCAATCCCCAGGTCAGCCAAAAGATCCTTTAATTCTTCCTGGCGCAAGTTGCCGGTCTTCTTCACCTTGTCCACCAGCTGGAACTGCTCCTTAACCGTCAAGTAAGGCACCAGGTTGTAGGCCTGCAAAATAAAGCCCAATTTGTTCAAACGCAGGCGGCTGCGGTCCTTTTCCTTCAACCGGCTGATGTCCTGGCCGTCGATTTCCACCTTCCCGCTCGTCGCGGTCTGCAAGGCACCCATAATCGTCAGCAGGGTGCTCTTCCCGGCCCCGCTTGGTCCCATCAACAGAACCACGTTGCCAGTATCCGCGCTGAAGTCGACCCCCTTGAGGGCAACCGTCGCTGCATCCCCCTGCCCGTAAACTTTTTTCACGTTCTTAATTTCAATCGCTGCCATCTTAGCCTCCAATTGCCTGTACCGGGTCAATCTTCAAAATCGTTCTAACTGGGTTAAGCCCGCCCAGCAGAGCCATTACCAACATCCCGCCGATCGTTGCCAGGAAAATCCCTGGCGTAAAGGCCATCGGAACAGATGCCGGTATCGCGGCCGCCGTGCCCCAGATTGCCAAAAGAGCCAGGACCAAAGCACTCGTTACCAAAAGCAGACTCTGGCTAACCGTGGCCCAGATCAAAGTCTTGGCCGGCACGCCCTGTGCCCGCAGAACCGCGTAGTTCGGCAGCTTCTGGATAGTCAAAATGTACAGGAAGACTGCCACGATGGCCAGGGAAATGATGAACATGAAAGCAATCATCAATTCAAAAGTCAGGTTCTGTTCAGAGTGGCCCGGCAGTTTTTGCGTAAATCCCTTAATCCCGTAAGTCTTGAAGTTCTTCCCCTTAACAGACAGCTTCCGCTGGGAAATGATCCCGGAAGCTTCAATCCCCGGTGCCACGTTCTTTAATTCCTTCCATGCCGGCAAAAAGCCACACATGATCGGTTCAATATTAATCTTGGCATCCCTGACGAAGCCGACGATCGTGTACTTGTGGTCTGACCCGTTCAAGGTTACCTTGTCGCCCAGCTTGTAGCCCTTGTCCTTAAAGCTGCTGTCAGCCGTGACTTCGTACTTGCTCTTAGCGCGTCGGCCAGCAATTACATCCTGGTCCTTGTAGATAAATTCGCCCTTCTTAACCCCCATGTACTGGGCGTTAATCCCGGTCTTGCCCTTTTTCTTGGCCACTACCTGCAGTTCGCCGACCACGGCTTCCTTGTCAGTCAAGTCGATCTTCTTCAAGTCGTCCTTGGTCAAAATCGAACTGTTCATAAACAGGTTGGCGTTCTTGTTCAAGACCACGCTCTTGGTCTGCCAGCCTTCCAAAGCCACCGTGTTTTCCCGGGCCAGGCCGTATGCCAGGCCCCAGGTTGCCAAAATCATGTACGCGATCAGAAAAATCATGAAGACGATCAAGCCGTACCGCATCTTTTCATGCTTGATCTCTTTTAGTGCTAAAAACATTCTTTCTGCTTTCTTCCTTTCTTATGTCTTTTCCCAGCTTGCCTATTTATGTTGGCTAAAGAGCTTCTCTAAAGCCTCATGCTCCCGGTCTAAGTAAAAATCTGCCTTGTCCGGGTCCAGCAAGGCTTCCTTGATCGCCTCGTGTGACAAGACCATGGCCGCCCAGGCACAGGCCGGCATCTGCTTGGGCTTGTTGCTTGGCAAAAGCGCCTCGTTAGCCGCGTAGTGCAGGCGGATCAAGTCATAGTACTGGCTGCCAGTAGCCTTGGTCACAAAGTCCTTGGTCATCTGATAGAGCTCGTCTGCCCCCATCCGGCCGGTCAGGCCCGTGTGCAGGTCCCGCATGGCCAGCTTGAACAGGTACTGGTAAGCATCCGTCAAATCCTCAAAGTACTTGTAAAAGGCCCCCCGGGCAATCCCGGCTTCCTTAACGATCCGCACCACCTGGGCGCTGGCCAAAGTATGGGCGCTGAATTCCTTGAGAAGGGCCTCTGTTACCCGGTCCTGCTTGTCTTTACTTAAATTCTCAAAAGTTGCCTTGACCATTTTTCACCTCCGTGACACCGTGTCACCCTCAACTGTTTTCCAGTATGTGCCTGAAGTGACACCGTGTCAACACAAAAGGTGACGCAGTGTCACTTTTCCTGCACAAAAAAGGGCTGCCGGAGCAGCCCTTCCCTGTGATAATTAATTTGTGAAGCTTAAAAATTAAAATGTTGTTTTGTTGTTTTTATGTACTTACTGTTAGGTACTTGTTCTTTTCGGTTTTTGGTTAATTCTTGATTTGCTTAGTTGATTAGTTCTTGATTATTTTTGCTTCGGATTTTTGAAGCTTGCCGCGCGGAGGAAGCCGTGATTTAGTCTAACGGGAAGATCTTGTCTGGGTTAAGGATGCCCTTAGGATCGAAGAGGCCCTTGACCTTTCTGAGCAAGTCGGTGTAATCCTTGCCGTAGAAGTCTTCGTAGTAGTTCTGGCGGGCGTAGCCAACCCCGTGTGTTCACCGGACATGTTGCCGCCCACTGACTTGGCGGTCTTGTAGAGTTCAGAGATAGCGTTGTCGCCCTTCTTGGCGAATTCTTCGTCAGTCATGTCGTCTGAGCAAAGGTAGATGTGCAGGTTACCGTCGCCGGCGTGGCCGAAGTTAGGAATCCGCATGTCTTCTTCCTTTTCCAGTTCTTCGATCCGGTGCAGAACCAACGGAATCTTGTTGATCGGCACGGAAACGTCGACTTCGTCCATCTTAGGAGTTGACTTTTGGATGGCCAAAAGCAGCTTTTCACGGGCGTCCCAGATGGTCTTGGCTTCGTCTGATTCAGCGTTCAAGACAGTTTCCTTCAAAGCGTGGAATGGCTTGACTGCTTCCAAAGCTTGAGCCAATTGGGCTTCAGCGTCGCTGGCCGTGAAGGAGTCGATGCCCAGGATGATGAAGCCGTCGCCTTTCTTGATTGGGAAAGTAGCGTCGTAGTACTTTTCCCACAGGTTCAAGACCTTGCGGCCCATATATTCAACAGTGGTTGGCACAACGCCGGAAGCCAGGATAGCTGGCACTGATTCGATGGCATCGTCCAGAGTTGGGAAAGGAATGATGGCGTTCAAAGCGTGCTTTGGTCTTGGGTAAAGACGGAGAACAGCTTCAGTGATGACGCCCAAAGTCCCTTCAGAACCGATGATCAGGTCCTTCAAGGAGTAGCCGGATGATGACTTAACTGACTTGGAACCGAACTTGTAAACCTTGCCGTCAGTCAAGGCAACCTTGACTTCCCGGATGTGTTCACGGGTTACCCCGTACTTGATGGCCTTCAAGCCGCCGGCGGCTGATGTTGCCGGCTACAGTAGACCAGTGCATGGCTGGTGCTGGCATGTAGGTAAATGGCTTGTCTGCCATCAGCCGTGGTTGGCTGGATTACCAGGTCAAGGTCAGGCATAGCCCGGACAGTCTTGAATTGGTCGTGGTCCCAGTGTCCAGTTACTTCAGTAATAAAACGTTCTGGGTCGGCAATCATTGGCCGCAAGTTTTCGATGTCTTCAGCAGTTAACTTATGATATTCCATTCTAGCTCACCTTACAGTTTTCTTTTTTGTGTTTCAATCTCTGTTTCTATTAAATCACATCTGAAAGCGTTGCCGATTTTATAATTTATTGCACAAAAGAAAAAAGGCCAGTCAGCAAGCGCTTCCTATCCTTTTAAAAGTGTAATTTTTTCTTTTTCGCACTTTGTGAAAAATTGTCATGCCTTCTTCCGGAAAACTACCCGGTCTTCCCCGCTTTGGTCAGGGGCAAAGGCATAGCCGAAGTCGGTGAAGCCCGGCAGGTCGGACAAGTCCCGGCCCCCTTCCGCCAGCCAGCGGACTAAACGGCCCCGGGCCATCTTGGCATGAGTTGCCTGGGTCCGCCATTTGCCGTTTTTCTCTTCCTGGAAGACGACCTCAAGCAAGCGGTCTCCCTCTTTTAAGAACGGAGTCAGGAGATGGCTGTATTCCTTGGAAGCCAAGTTGAGGACCACGGAATCATCTTGGTAGAGCTCTTGGTAAACTTTTTCTCCCCAGAATTCATAAAGACTCTTATACTTAAAGGCAGGCAGGGGGCTCTTCATTTCCAGGCGGTAGGGCACGATCCCGTCAAAGGGGCGAAGGCTGCCGTAAAGACCGGACAAAACGCGCAGGTGCTGATCCAGGTAGTCTAGCCCGGCTTGGTCTAAAACGTCGGCGGCCAGGTACTGGTACTGCAGGCCACTGTAGGCAAAGAGGGCTGGTACTTGCGGCTGAGTTAGGTCAGCAGCCAGCATCTGCCGGGCTTCTTCGGTGATTTTGGCATTGGCCCGCCAGACTTTTTCCAGGCCAGCTTGATCTAAGGAATGCAAATAGGACCAAAGCTCCTCAGCCTGGTCGAGGAAGACGGGCTGGCTTTTCGGCAAAAAGCCGCCGTCTGTCTGCATTTTTTTAGCGGGGGAAATTACAATCTTCATTTTTTACATCCTATTAATAATCTAGTAAAATAAAACATATGTTTAACAATAAGGAGGAGCAAGCATGATCAACCCTGATTTTGCGATTATCTTAAATTTTAACCCAACTGGGGCAAATGTAAACGCGGATGCTCTGGTCCGCCGGGCAAGGGACATCGGTGCCCGCGCCGTCAGCGGCCGGGAAGAATTAAAAGCGGCCTGCGAAAAGTACACCATCGCCTACCTGCCAGACCAAGCTGGCCAGCACTACAAGGCAGATGAAGTCGTGGACGCTTTGCTAGCTGCCAGAAAGGCCGGCCAGGCCTTAGTCGTTGACGTCGACGGCGAAGACGAAGCTGACCAAGCGGCTTTAGACGCTTTGAACGCCTGGATGCACAAGTTTGGCCACGCGGTTAATGAAGGCCAGGAAAGTGACTTGTCAGCTGACGCGGCAGAGGCTTTTGTCTTGACCAACCGGCACGCGCCCTACCAGGCCTACCTTTTCTTAAAGGCCCCTTATCCTGCAGAGGTCAAGGTGACTGGCTTGACGGAAGCGCCAAACCGGATCGAATGGATCGACGGCCGGGAAGAATGTGAATTTGTTTTTGAAAACGGAGTCCTGACGGTTCAGTTAAAGAAGCAAGAAAGTCCTTTTGCCTGGCAACTGGTGCGGATTCAAGGCCACCGGCCGGAGGACGATATCGCGGAGACAAAATTTTAAATTCATATTAAAGATCTCTCCGTACATTTTAATCGCTAAGCGATTCGTATTATACTGAACACAATCTTTTGAATGAACAGATTGGAGTTATTAATGACTTCTCGCAAAGACTACCGGAAGAAAAACACTCAAGGCAGCAAATACCTGATTATCACGGGTGTGGCGGTTATCTTCCTGGCCTGCGCGGGTATTTGGGGCCACAATGCCTACCAACAGCACCAGGCAACCGTTCCGGCGGAAAACAAGAAGCACTTCAACGCTAACGTCACTATCTATGGCGTCAAGGTGGGCAAGCTGACGGTTGACCAAGCGGTCGAAAAGATCCAGGCCAAGGCTGTCAACAAGCTGGTCTACAAGGACGGCAAGATCAGTGCTGTTCGTGACAGCAAGCTGACAACTATCAGCAAGGAGCAGGTCCAGAAGTACTTTGACAAGCAGTACACCCAGCTGCCGACTGACCAGAGCTACAATTACGAGAACACGGCTCTGAAGAAGGGCAAGAGCAAGCTGAAGGCCATTACCGCGGCCAGCGTGGACTACTCTGTGGCGGGGAAGACTTTTACCCTGGCAGCTAAAGACTACTTGACCCAAGTCAGCTACTACAGCGGCGCTGTCCACTACGACGACGCAAGCAAGCTGACAGCGAAACTGAACGCCATGGACAAGGAAGTCAAGACTTTGGGCAAGAGCTACAAGTTCAAGACGCCAGCCGGGTCAACCATCACCGTTACCAACCAGAGCTACGGCTGGGGGATCTGGACGGCCAGCGCCAAGAAGGCGGTTCTGTCAGCTTATGAGACTGGCAAGAAGACCATTGACGGGAAGAACCACATCTATGGTGAAGGCTACACCACGCAAGGTCTGGGCTACGGCAAGAGCAACAATGGGCTGGGCAACAGCTATGTGGTTGTGTCAATCGCCAGACAGGACATGTGGGTGGTTGTCAACGGCAAGGTGGTCGTAACTGTATCTGACGTGGTTACGGGGACGGCCAACAAGGGCGACAACGCTACGCCTACTGGGGTTTGGTACATCATGTACAAGCAGCAGGACGCTACTTTAAGAGGGCAGAACGACAACGGGTCGAACTACGCTTCTAAGGTCAGCTACTGGATGCCGTTTACGATGAGCGGCTGCGGGCTGCACGACGCGTCATGGCGGACAGACTGGTCAAGCACGGCCTACCTGGAAGGCGGGTCACACGGCTGCGTCAACATCCGGCCTAGTGAAATCAAGTCCGTTTGGGACGCGGTTAAGGTGCACATGCCTGTGATCGTTTACTAAGAAGTAAATTACATATGAAAAAGGATCTATCTTCATCGAGAAGGTAGATCCTTTTTTGGTGTGTTGTTTTCTATTTATCAGCTAATTCCTTAAGTTTCTGGACAGGTTCGCTCTCCTTGAGCTTTCTCTTCCCCTTCTCCATGAGGATCCCTGCCTGCACGCCCTTCAAGAATGGCGCTGACCGCTTCAAAGCCTGACCACCAGCATAGCATAAAGTCAGCAAAAGGGCGATTCTCTTAGCATGGTAGAAGAAAAGAAGGTAACTCCAGAAGCACGCGATGCCGCGGTTAACACCTTCCTTCCACTTTACGAAAAGGCTGACCGGCAAATGTTAGTTGAAGGCGCAATAGTTGATGCCTCACTCGTTGCCATGTAACTGATGCTGGTTGCCCGTGAACACGGCTACGAAACCAACCTAATGGCTGGCTATGATGCAAGCAAGGCAGCAGCAGAATTTGGCCTGGACCCAGAACAATACATTCCAGTGATGGCTATCTCCATTGGCAAACCGGACCCAAGTGAAGTCGTTCCAGATACTGTCCGTTATGATGTCAAAGACGTGACGGAATTCGCCTAAACTTAGTCTGAATACATACAAAAACTGTTTCCAGCTCTTACCGGAAACAGTTTTCTTATGCTCTATTCAATTACTTTTGCAAAGCAGCAGCAACCGCGGCGTTGACGTCAGCTTGTTCGCTGGCAATCAAGTCTACCCGGTTAGCGATGACCTTCCGGTCCATCTTGATTTCCCGGTTCAGCAGCATGTTGCTTTCCTTGTCAGTAAAGAAGGCGTTGTATTCGTCGTAGCGTTCCTGGGTCTTGAAGACGCGGGAGATGACAGTGATGAAGGTAGCGAATTCCATGTCGCCGCCGACCGTCTTTTCCAACCATGCCCATTCGTCTCTGATCCAGTTCCAGGCCAGCTGTTCACCTGCCGGGTTGGACAAAACGCCGCTGAACCAGCCGCGCAAGTCCTGCGGCTTAACAATTTCAGCGTTTTTGAACCAGGAAACGATCTTCTTCAGTTCGCCTTCGTCCTTGCTCGTCACGATCGCGGCTTTCAGGTCCATCTTGAATGATGGGTCACTGGTTGCCTGGTACAAACCGATCAGCTTGTCAGTCAATTCGCTTGACCCGTAGTTTTCAACTTCGTTCATCAAAACGTATGGCCGGATGTCAGCGGACAGTTCTGCCAACTTATCAGCGTATTCCACGTAGATTTCGTGGGCTTGCTTTTCTGAATCAGCGTTGCGGCCGTAAAGGCTAGCAGACAAAACGTATGGCCGGGTCTGAATGTCTTCATCGCTTTCCCCTGCCTTAGGCAGCCAGCCCAAACGGGCAACTTGGTCCTTGGACAAGTCGTTGTACAGAGCCCGCAGGTTCTTGTCAGCTTCACTGCCGGCTGGGGCAAATTGCCGCAGCTTAGCAGCAGTCGTGTACAGAGCATCGTTGACAATGTGGCTTTCTGAGTTCTTGAAGAGTTCCAGAACTGGTACCACGTCAGCGTATGAAGCCTGCTTGCCTTCTGCCAAAAGCCGCAGGTCTTGCAGCAATTGCAATTGGGAAACTGGATCAAAGTCCTTGGCTTCCTTCATGATGTCGTCCATCAAAGTCTGGTCGTACTTCACGATGAAGTGGGAGTTGTTGCCCACGTTCAAGCGCAGAGCGTGGCCGGCTTCTGCCCGCAGAGCCTGGTAGTCGCCCAGGTCAAGTTCAACGTCTGACATGATCTTCGGTGCCTTGAAGTTAGCGTTAAGCGGAATTTCCCACTTGCGGCCGACTTCCTTGCCTTCACCGATGAAGAATTGCTTCTGAGTCAGCTTCAAGTGGCCGTCCTCAACAAAAGCATTCACCACTGGGTAGCCTGGCTGGTCCAGCCAAGTGTGCATGATTTCCCCAATGTTCAAGTCAGTGGCCGTTGACAAGGCATCCCAGAGGTCGTCACCTGCCGCGTTGCCAAACTTGTGCTCGTCAAAGTAGCGCTTCAAGCCCTTTCTCAAGGCTTCATCGCCCAAAAGTGACCGGACCATGACCAGCATTCTTGACCCCTTGGCGTAAACGATGGCCCCGTCAAAGAGGGCGTCGATTTCAGCCGGGTCATTAACTTCCACGTGCACTGACTGTACCCCGTCGGTTGCATCCCGGGTCAAGGCAGCCGCTGCTTCAGAAGTCTGGAACATTTCCCAGATGTGCCAGTTAGGTTCCAGGTGGTCAACTGACAAGTATTCCATCATGTTGGCGAAACTTTCGTTCAGCCAGAGGTTGTCCCACCATTCCATGGTTACCAGGTCACCGAACCATTGGTGGGCCAGTTCGTGGGTCACCACAGTCGCAACCAGCTTCTTCATTTCCAAAGTGGTGTTGTCCGGGTCCAAAAGCAGGTAGACTTCCCGGTAGGTTACCAGACCCCAGTTTTCCATGGCACCGGCTGAGAAGTCAGGCAGGGCCAGCTGCAGTGATTGCGGTAGCGGATATGGAGTTTGGTAAAAGTCTTCGTAGAATTCAATTGCCCGCTTGGCAATGTCCAAGGAGAAGGTCAGTTCCTTTTCAGTGTGGGCTTGAGTTGAGTAAACCCCGATCAAGACCCCGCTCTTGGTGTGGGTGGTCAATGACCGCATTTCACCAAAGGCAAAAGCAACCAGGTAGCTAGACATGCGGACAGTTTCCTTAAAGTAGTGCACGCCGTTTTCTACCCGGTCTTCTGGCATGTTGGCCAAAACAGTTTCGCCTTCGTGTTCGTCGAACTTGAGGGCGAGGGAGAAGGTTGCCTTAGCTTCTGGTTCGTCAACACATGGGAAGGCTTCCCGGGCAAAAGTAGTTTCAAACTGGGTCCCGATCAGTTCCTTCTTGACGCCGTCAACTTGGTAGTAGGACGGGTAGATCCCCATCATGGTGTCAGTCAAAGGCGCTGAGTAGTCGATCGCGATGACCGCTTCCCCAGTCTTGCCGGCTTCGATCTTGATGCCTTCAAAGTCGTCGCCAAAAGTAAACGGCACTTCCTTGCCGTCAACAGTGACCTTGCTGATGGTCATGTACTTTTGGTGGACCAATACAGTTTCTTCCTGGATTTCACCATGGATGGTGGAAGTCCCTGAGAAAGATCTTGCTGCCCGGTCAACGTCGATGTACAGATCGTAGTGATCTGGATGGAATGTTTCGTAAAAGCGCTTAACAGCCATTGTTTCCTCCTATAATCCGCGTCTGATTTTTCCTCGCGTATATTGTATTCATACTTCTCTATTCTAGCAAAAAAGGCAAAATAAAGCCATTTAACGCAAAATATCTGTTTTTCGTCTACCTCAGCCCCTTGGACTCGATCAGCTAGTTCAGTTTCTAACGAAAATTAATTCCTTTTATTTCATTCTCTTGACAATCGTTACTAATGTTACTTATATGCATAGCTGATTTAAAGCGCTTAAAATGATAATTTCAGCCCTGTTTCCGTCTTTTTTATGATCTTTTTGCCAAAAAAATGTGCATTTTACCCGATTGTTAACGAGCTGTGGTCGTTTTGTAACAGTCCTGTCATATTCCTTTAGTAGCATAGACTTAGTTTTTAAGAGAAGCATGTGAGGAGTTTCTACCATATGATGTTCAAACACAATTTCAAGAAAGTTTTATCAGCAACTGCTTTTGCAGTTGCCCTCGTGGTTGCTCCCGCCGCTAACGTTTCAGCGGCTACTAATGACGCAAGTTCTACCCAACAATCAGCAACTGCAACTAGTCAAGACCAACAAGCCAGCCAAGACCAGGCCGCAAGCCAGTCTAGCGCTGCTAACCAAAGCTCAGCTACTGCTGTTTCAGCAAGCTCAAGCACTTCTACTTCTAGCGCGACTTCAACTAGCACGGTAAAGAAAACCACTAAGAAGGCTAAAAAGACTACTAAGAAGAGCAAGAAGAAGACTTCCAAGAAGAAGGCAGTCAAGAAGGTTGCTAAGAAGACTACTAAGAAGAGGGCAACTAAGAAGGCTGCTGAAGCTGCTGCCAAGAAGGCCGCTGCCGTTAAAAAGGCTGCCGCCAAGAAAGCCGCTGCCGCTAAGAAGGCTGCTGCTAAGAAGGCTGCTGCTAAGAAGGCTGCTGCTAAAGCCGCCGCTAAAAAGAAGTCCGCTGCCAAGAAGAAGGCCGCTGCCAAGAAGAAAGCTGCCGCTAAGAAGAAGGCTGCTAAGAAGTCAGCTGAAAAGGCAGCTAAGTACTGGATCGCTATGCGGGAATCAAGCGGTTACTACACTGCCAGAAACGGCAGTTGTTACGGCCGCTACCAACTCTTGATTTCTTACCTGGGCGGTGACCTGTCCAAGAAGAACCAAGAACGGACTGCTGACCGCTACGTTTACGGCCGTTACGGTTCATGGGTCAACGCCAAGAGATTCTGGCTGGCTCACAACTGGTACTAAAATCAGACAATGCCGAAGGGGGAATCGATTGATTCCCCCTTCTTTTTTACCCTTTTTAGTTCTTTTTTCCTTTTTCAAAAAGTGATACCTTTTTACTTATTTTACAAAAGTAACCTTTTGCTTTACAATATTTAAATAGTCTTTTAAATGTCTAAAATTGGGAGGAAATCATGCAGCTCAGCAACGACCAGCTTGCGAACATCGCACACGACTACTACATCAGCAAACTCAACATCGCCGAAATTTCCGCCAAATACAACCTGTCCCGCTACCTCATCGACAAGGCCTTAAGCGATGCTGAAAAGACCGGCATCGTCCAGATCAACATCAAGGAAGGAGCCAAGCAGAATCCCGGCCTGGAAAAAAGTTTCCGCCAGCAGTTTGGCCTCAAGGAAGCCTTTATCTTAAAGAAGCTGGAGACTAAGAACCAGGACAGCGAAAAGATCGTCAGCTTTGCCGCTGAACAGATCCAGAGCTACATGCAGTCCAGCAAGAACGTCGGAATCACCTGGGGCACGACCATGCTCGACATCATCAACTCCTTTACGGAAGTTAAAAACGATGACCTGACCTTCGTCCAGCTGGTTGGCTATCCTCTCCAGGGCAACGACCGCAAGAATCCGCTGGAAAGCATCGCCGCTGCCCAATGCGGGGGCCACTTCCGCGCCCTGCCCGCTCCCCTTTACTCCTCCAACCCCGACCTGGTCAACTTGATCAAGAAGGAACCTTTTTACGAGCAGTTGGATGAGCTCTACGACAACATGGACCTCCTGGTAGCCAGCCTGGGCACCCTGCAAGCCTTTGAAGAAGAAAGCTTCCTGCACGAAAAATACGAGAGCCTCCTCTTCAAGAACATCCACCAAAAGAGCATCTCCGGCATGATCTTCGGCCGGCCATACGACCATGAAGGCCACTTCTTCAGTTCAATTACTGACAAGATCATCGGCATCTCCGACCAGCAGATCGTCAAGACCCCGGTCCGCTTCGTCGTGGTCAACGACCGCTTCAAGTCTGAAGCCCTCTTAGGCGCCCTCAAGTCGGGCATCATCACCCACCTGGTCACTAGTGAAACCATCGCTGACCGGGTCCTGCAGCTGCAAAAAGAAAGCGGCCGGTAAAAAAATAATTATTTTGCCTGCTTAGCAGGCAAAAGGACCAGCTCCGAAAAAGAGCCGGTCCTTTTTTCAACCGGTATAATCTAGCTATCCCCTATTTTGTATGTAAAAATCTTTCTCATTTTCCGATAATTTCTTGCCCAGCTCCTTCTTAAGAAAGTAGTTCCCCTTTTTGTATAGGGTTATAATTTAATGGTAAGAGGCTTATGATTTCTTTTAGCAAGCGCTAACAAGCGTTGCTGTGTGATTGATAGGATTATGTTTGATAGGGGGAAATATCATACGTAAGTTTATTTGGGCTGCCGGTGCCCTGGGCCTGGCCGCTGCTTTTACCGCCACATCTGTTAAGGCTTGCACGACTGTAGTAGTTGGCAAGAAGGCCACGACCGACGGATCAACCCTGGTTGCCCGTAATGAAGACGTTGGCGCCTGGTCCAAGCACTTCTATGTTCACCAGGCAACCAGCAATGGCCCGACCACTTATGTTTCTGAAGACAACGGCTTAAAGACCAGCTTGCCGAAGACTGCCCTACGCTATACCAGCACGCCAGACGGCGAACAGGTTAACGGCCAGTGGATTTTTGGCGAGAGCGGGATCAACAGCGAAAATGTGGCCATGAGTGCTACGGAATCAGGCACGACCAACAAAAAGGGCCTGAAGGCTGACAACTTAGTCAAGAACGGGATCTCCGAAGCTTCCATGCTGGACGTGATTCTGCCTTACATCCATTCCGCTAAGGAAGGCGTCCAGCGCCTGGGCCAGATCGTTGAAAAGCAAGGCAGTGCCGAAAACAACGGGGTCATCTTCAGCGACAAGAACGAAATCTGGTACATGGAAATCGGCTCCGGCCACACCTGGGCAGCTGTCAGAGTTCCAGACAACAAGTATGCCGTCATCCCTAACCAAATGGTGATCGGCAAGCTCAACCTCAAGGACTCTAAGAACTACATGGCTTCAACCAACCTGGTCAAGAAGGTTAAGGCCTGGTCCCAGAACAAGAAGATCAAGCTGGCTGGCTATGTAAAAGGCACGGTCAACTACTCCAAGGCTTTTGGCACCAACGACAAGACCGACGCCATCTACAACCGGCCAAGAATGTGGGACGGGCAGAGAATCTTGACCCCAAGCAAGAAGCAGTCAATTACTAAGAAGTCCTACACCCTCTTCCTCAAGCCGGACAAGAAGGTTAGTCCGGCCAAGGTTGGCCAGGTGCTTTCCTCCCACTTCACCGGGACCAAGTACTCCAGCTACGGCAAGTGGAAGGCCGGCTACCGGCCGATCAACGTGCCAACTGACGTGGAATCCCACATCCTGCAGATCAGAAACAATGTGCCTAAGGAATACGCGGCTATCCAGTGGCTGGCCATGGCCTCCCCGGCTAACAGCGTCTACATGCCTTTCTACACCAACATCAGTGACACGCCAAGCCAGTACAAGGTTGACGGCGACTACCAGGACCCGACTAATACAAAGTCCGCCTACTGGACTTACAAAACCACGGCCATGGTAGTTGAAGCCTACAAGCACAAGAAGTTCATCGACAGCTCAACTGGCAAGAAGACGGACCTGATCTACAAGGACGTTAACCCGACTAAGAAGGCCGTAACTAAGTAGCTCAAGGCCAACCTGGCCCAAAGCGACAAGGTAGCCAAGACTTTGTCCGGCGACAAGCTGACGGCCTATCTGACAGAACAGAACCAGAAGAATGCCGACTACGCGCAAAAGAAGTGGCAGACCATGGACAATAGCTTGATCGTCCACTCCAACAAGCTGGCTCCGGTAACCAAGTCCAAGCTCACTTTCAACAAGTAATTTTATTTCTGTAATCTCCATAGTAACTGTAAACAAGAAGCATTTTAACAAGTAAAAAAAGAGTAACATCGATATTTTAACCGCGCGAGAAAGGCAGCCCCGCTAAGGAGCTGCCTTTTCACTTACAAACTTTTTACTTTACTTACAAGCACTTTGCAAACTTGCTTTTAAACTTTTTACCACAGGCCGATCAGCTTCATCCACAAGCCGCCGATGCCGCCGTAGACTACCAGGTAGAAGAGACCCAAAACGAAGCACATCTTCCACCAGTCAGTCTGCTTGACATAGCCTGGGGCGAAGAGGGCAGTAGCAGGCCCACATGAGTAGTGGGTGGTTGACTGGAAGATCGCCCCAGTCATGCCCAGCATGATAGCCGCGAACATTACCGGCACGCCAGCACTCTTGGCAATCAAGAGCAGAGGCGCGTACATGGCAACAACGTGGGCCGTGCCGGAGGCAAAGAGGTAGTGGCTGTAGAAGTAAACCAGGACCAGGATGGCCATGACCAGAACTGGTGACATGCCGCCGATGACAGACTTGATTGAAGTCTGCAGCCACGGAATCACGCCGCCCTCAAGGCTCAGTTGGTTGGCCATGAAGATCAGGATTGAGAACCAAACGACAACGTTCCAGGCACCAGTTTCGCTCAGCATGTCCTTGGTGGTCAGCACCCCGGTTACCAGCAAAAGCGCGGTTGCCATGAAGGCTACCCAGGTAGCGTCCAAGCCGATGAAGCTGGACAGCATCCACAAGACAAGGGCCAGGATGAAGACTGCCATCATAACCTTCTCAGAAGCCTTTATAGCGCCCATTTCCTTCAATTGGCCGTCAGCCCATTCCTTGGCGTTAGGAGTTTCATTGATCTTAGGCGGGTACATCTTGTAGATGATGATTGGCACTAAGATGAAGGAGATCAAGGCTGGCACGATAGCGGCTGCTACCCAGCCTAACCAGGAAATCTTGACCCCATTAGCCGCTGCCAGACCAACCGCGGCCACGTTAGGAGCTGAGGCAGTCATGAAGAGGCTGGATGAGATCGTGTTGGCGTGGAATTCGTTGAAGACCAGGTAGGAACCGATCTTGTCTTCCGTGCCATCAGAAACCTTGGAACCGAAAGTGTCGGACAAGGATTCGATGATTGGCAGGACGATACCACCAGACCGGGCAGTGTTACTTGGGGTGGCTGGTGAAACGACCAAGTCGATCATGGACAAGGCGTAGGCCAGACCCAAAGTCTTTTTCCCGAAGGCCCGGACGAAGATCAAGGCGATCCGCCGGCCCAAGCCAGTCTTGGTAAAGCTCCGGGCAATCATGTAGGCCATGGCGATGGTCCATGGAGTTGAATCAGCGAAAGCTGACAGGGCTGGCTTCATTTGCACCAGGCCCAGGCCGATGATGGTCACGTAGGCGATGATGGATACCCCGGCGATTGGCAGGGGCTTGGTAATGCAGGCAATGATCGTCGCCAGGAAGATGGCGAACATATGCCAGCCGGCAACGGTGATGGTCGCCGGGCGCAGAGGAGTGAGCAGGAAGAGCCCAATCCCGATGATCAAAGGCCAGATGAAGCCTTTGTAATTAACTTTTGCTAACATTTTTTCTCCCGCTTTTTGAAAAAACTATTCTTCCGGCTTAGTACGGTCGATGTTGGTCATGGCCATGTAGTCCATCCATTCATCGTATTGTTCTTCGGTCACCTTGCCGCTCTTCAGGGCAGCTTCCTTCAAGGTAGTGCCTTCACGTTGAGCAGTTTGAGCGATTACGGCAGCTTCATGGTAGCCGATCTTTGGTGACAAAGCAGTAACAGTCATCAGGGAGTTTTCCAGCAGGTCATCCATTCTTTGTTCGTTGACAGTCAAACCGTGGATCATCTTGTCAGCGAAGCCAGTAATAGTGCCGGCCAGGATGTCAGCTGATTCCAGGAAGGCAGCGATCATGACAGTCTTGAAGACGTTCATTTCGAAGTTACCTTGGCTGGCAGCGAAGTTGATAGTTACGTCGTTACCCAATACGCGGGCTACAGCCATGGTTACGGCTTCAGCCTGGGTTGGGTTAACCTTACCTGGCATGATTGATGAGCCTGGTTCGTTGGCTGGGATGTTAAGTTCACCGTAGCCGGCACGTGGGCCAGAAGCCAGGAAGCGGATGTCTTGGGCAATCTTGAACATGTCGTTGGCCAAAGTCTTGAAGGCGCCGTGCATTACGCTCAAAGCTGAGTGGTGAGCCAGGCCCCAGAACTTGTTGGTATCGACCTTGAATTCGTGGCCGTAAACTTCTGACAGCTTGCCAGCGATAGCTTCAGTCATGCCTGGGGCAGCGTTCAAGCCAGTACCTACGGCAGTACCACCGATAGCCAATTCGTAAAGGCTTGGCTTCAATTCTTGGATGTAAGCCAGGTCATGCTTCAAAGCTGAGATGTAGCCGGAAACTTCTTGGCCGAAAGTCAAAGGAGTAGCGTCTTGCAGGTGGGTACGGCCAACCTTGACAGTCTTCCAGTACTTGTCTTGCTTTACCTTAAGTTCGTCAATCAAGTGTTCAATAGCTGGCTCCAGCTTGTCGACAGCTTCAACGGCAACGATGTTCATTGCAGTTGGGTAAGTGTCGTTTGAGCTTTGGCCACGGTTGACGTCGTCGTTAGGCAGGATGTTCAAGCCTGGGTGAAGCTTGTTAGCCAGGTTGGCAACAACTTCGTTGACGTTCATGTTGGTTTGAGTACCTGAACCAGTTTGCAATACGTGAAGTGGGAAGTCCTTGCGCAGGTCTTCGTCGCTAAGTGCCAGCAATTGGTCGATAGCTTCTTCGATTGCTTGTCCCTTTTCAGCTGGTTCGTCGCCAACTTCAACGTTTGATTCAGCAGCAGCCTTCTTCAAGTGCAGGAAAGCACGGATGATAGCCAATGGCATCAATTCGCCGGATTGGAAGTTGTTGCGGCTTCTTTCAGTTTGCGGCCCCCAGAGAGCTTCCTTAGGAATCTTAACTTCACCGATCGTGTCTGATTCAATACGGTATTCTTGTTCTGCCATCTTACAAATCTCCTTACAAAAAACTTTTAACAAAAATCTTGCTTAACTAATTGCATTATATAACGGCTTTTTTGAATTTTGTTAAAAATAACACAGCTTTTTGTTGTTTTTTAAAGAATTTCAAGGACTGTCTATTTTTTGAAATTTAAGGAATTTTTTAGCAAATTTGTTAAAATGTAAAAGCATTCAATTAGAAGTAAGCGGTTGCCAGAAGCTTTTCGCAATTTATTTTGACGTAGTAAAAAATTTTTGGCCTGTTTTTTACAGGAAGTTAATGAAAAATGTAACTTGTGAAATATTCATTAGCCAAAAGCGGTTCAGGCAGTTTTTGGGCAGTTGCATCCCCAGCACAAACACAAAAATACAAGGAAAAAAAGAGCTCCAGAACTTGCTAAACGCTTCTGAAGCTCTTTCTTTATGGACTGATTTTCAACAAATCAAGACTTACTTTTCTTGCTTTCTTTTCTCAAAGCTGAAGCCAAAGAGAGAAACTCCGGCCAGCAGAGAAAGAATGCCTGCCAAGATGCCTGGCTTAGCGTCTTTTTCACCGGTTTGCGGGAGCTGAGCTGCAGTGGCTGCTGGGGCCTTGGCTACTGGTGCAGTGTTGGCTAACTTAGTTACAAGAGTTGGCGTCTTGGCTGCTGACTTAGTTGCTGGCTCTTCATCCGTGTTCACTACAGTCACAACGTCACCGCCGTCAGTATCTTCTTCCGTATCAGCTGGTTCTTCAGTATATTCCTCAGCGGTTGGTTCTGTAGAAGGTTCTTTGGACGGCTCGGTAGTCGGTTCTGTCGTTGGATCCGTTGACGGTTCTGTACTTGGCTGAGTCGGTTCAGTTGGAGTCGTTGGGTCCGGTCCGTCGGCTGTGTTGCTTCCAAGGCAGCCAAGCGGGCCTTTGCCAGGTTCAAAGCGTGCAGAGTTGCGGCCGCTTTTGCCGTAGCAGTGGCCAACGCTTCCTTCTTTTCCGCCAAATCAGCTTCCTCCGCGATCAAAGCAGCTTGCGCGCTTTGCAGCTTCAGCCGTCTTAGCGTTCTCTTGCGCCGTCTTCAAGTCATCCTGGCTGGACCTAGCCTGGACGTCATTAGTGGCCGCGTTGACTGACTGCCCCAATACCAGCAGCCGCAACTACTGCCATCTGCTTGATCCGGGTCTCGCTTCTCGCTTTCATGTTTTTCCACTTTTCGCTCTTAAATAGTAAAATCACATATATATTTAATTATAAATGATGGAAATATTCCCGGGAAAGCAGGAAGCACCGGAAAAGTAGAGATACTTTTATCTATTAAAAAGACAAAAAGTATCATCAAAAAGCAATAAAGCTGCTAAACTATTTTTCACCCAAAGGATCGGTAATTAGCCTATAATCTTAGTTAAACCGTCTGAAAAAAGAGCCTTTGCAAGCCAACTTGTGCTAGGCTTGTGATGCGAAAGGAAGATTTATATGGCAAGAATGTCGCGCAGACAGTACCAAGAAAGACAAGAACAAACCGCGCAAAAGCAGACGCGGCAGAGAAACCCTAACTCCGTTCCTCGCTTGGACACTGACGGGGCTTCAAGAAGCGAGCAGAAGGTCCGGCTCAACTTCTGGCAGATCTTCGCCGACCGCCCTTACGTCACGGTCATCATGATCAGCCTGGCCCTCTTCTGCATCCTGGCCAAGTGGTGGATCGGCCTGGCCATCATCATCATCTTAACCATCGCCGGTATCTTCGTGATTGGCCGCTCTCACCACCCTAACCGGGTCCTCAGTCTGGAATTCAAGCTCAAGGCCTCCCGCAAGCTGAGTATGATCAAGGCCCTGCAGCTTTTGGGTTCAACCATCATGTTCCTGGCCGCCTACATGCGGCAGATCGTCAGTGTTGACTTCTCCAGCGCCGGGGCGACTGACAGCCTAACAGTCATCCAGAACATGCTCTCCAATCAAGGGACTTTCGGCCAGCAAGGGTCCTATTTCTTGAGCCTCTTCAACCAGCTGACCGGGGGATCGCTTTGGGGGACCTACCGCTACGCTACCAACAGCTCGCAGATGATGAACTCCACTGCCGGCACCATGATCATCCTCTGGATCTTCCTCTTGATGATCGCCCCGGCCTTCTGCGTTTTATCCCAGTTCTTCAGAGAGCCTTACTCCCGGCACGTAATGACGGTGGCTTCCTTGATTTCCACCATCTCCTTTACCTTGACGCCAACTTTGATGAACCGCTGGGTCATCTCATACGCCGTGCAAAACCAGATGAGCCAGGCAGCAGCGGAAAACGCTGTCCAAGTCGGCGGTATGGTCTACCCGGCCATCATCTCCGCCGTCTTCGTCTTTATCCTGGCTATCTACCGGGAAATCAAGAAAGATTAATTTTAATAGCAATGAAAAAAGCTTCAGTATTGCTTTACTGAAGCTTTTTCGTTTGATTCTAAATCTATTTTGTCAGAAAAATCCAAAGCAGGTTGACTGCCAGCAAAACAGCTGCCATGCATCCCTTCCACAAATTGTATTTCTCTGCCGGCGCCTTCTTGTTCACCAGGTACTCCATGCTAAAACCGCAGACCAGGTTTAAAGCCAGCATGACCAGGCGGTACTGCAGCGTTCCCCAGCTGCTCAGCAAATTTAGCAGAGCCAGCAGGGTAAAGACGATTGTCACGTAATATTTTCTCAACACCTTCTATCCCTCTCTTGTAAGCAAAAATATAATTTACACTATTTTCAAATTATCATTAGTTTGAATCATCATGAGAGAGATGTCAATCTCCATTTCCTACCCTAGCAATTTCTGGTACAAGGCGTAAGTCCGGGCGTCGTAGGCCACCATGATTACCCGCATTTCGTAATCCTTGTGCTCTCTCAGCCACTTGCGGACCTCACCGAAAGCCACCTTGCTGGCCGCGTCCAGCGGATAGCCGTAGACCCCGGTTGAAATCGCGGAAAAAGCGACCGAGTGCAGGCCATTTTCCTTGGCCACCCGCAGGCTGTTTCTGTAGCAGGCCGCCAAAAGCAGGGGATCGCTGTGTGAACCCGAGTAAACCGGCCCTACAGTATGGATGATGTACTTAGCCGGCAGGTTAAAGCCCGGCGTGATCTTGGCCTCACCCGTCTCGCAGCTGCCCAGGGCCCGGCAGGCCTCATTCAATTTAGGTCCCGCTGCCCGGTGGATGGCCCCATCAACGCCACCGCCGCCCCGCAGTTCCCGGTTAGCCGCGTTAACGATCGCGTCCACCTTCAAAGTCGTGATATCCCCTTGCCAGATTTCTAAATTCATTAGTCCTCTTCTTCCTCCTCTAAGTACATTTCCCGGAACTTTTCCAAGTCAGCCTGCTTAAAGCCCAGTTTTCTGGTAAAAAATTTGTCAAAACTGCCCCAGCCCTGCCGGATAGTCTCCGTGATCCCTTTAACCGCGGTTCCTTCGCCCCGGGTCACGTTCATCTTCGCGATCACCTGCGATAGCTTCTCATTAGTCGGATGCTGCTTCTCAATGGAAAAATCGTACAATTCATCCGTCAGCAAATAGTCCTCCGCGATGGTCTTGTCGTCCACGCCTAGGGCCATCAAGATCAAAATACTGATGATCCCCGTCCGGTCCTTTCCGGCCGCGCAGTGGTAGACCAAGGCCTGGTCCTCCGGCAGCTTCAGCAATTCCTCAAAGACCCGTTTGATCCCCTCTTCTGAATGCTCATTTAACAAAACCTGCTGGTAGATCTTAGGCAGGTAGTCGTCAAATTCCGGCAGATGGTGAAAAAGGCGCAAGAAAGGATGGGCCTGGTTGAAGCGGTCCCCTTCAGCGTAAAGGCCAATATTCACAAAACGGACCCCCGGCCAGAGCAGGTCGGGGTAGGACCGCTGCTCCCGGCTGGACCGCAGGTCACAGTCCACCGTAATACGCAGGTTGGCCAGCTTGACCCGGTCCCTGGCTGACATCTCGTTTAAAGCCGCCGACCGGTAAATCTTCCGCCACTTAACCTGGCGGCCGTCCAAGCCTTGATAACCGCCCAGGTCACGGAAGTTGACCGGCATGTCCAGTTCAATTACCCTTTGCATCTCCATCCGGCATCCCTCTTTTCCAAAAATCCGCAAAATTTCTTCTCCCTTCCATTTTAGTTTTCCCGGAATTTTTTGGCAAAAAAATCGCCCCAGCTTAAGCCGGAGCGAGGAAATTTATTTAGACAAAACAATTTGTCTGTCAAACATGTCAACCATCTCATTCGTGAAATTGTGGCCGATAAAAATAATCGTTGCATTGGTTTTAAGAAGGTTCTTTAAAATACGCTTCGTGCTATCTTGATCCACTGCAGCCGTAGCTTCATCGATCAAAATAAAGTCACTTTGATTGAGTTCCGCACGAGCTAAAACAATCTTTTGTCTCTGCCCACCAGAAACATTAAGCTCTTCTACATCTATAACAGTATCCTGGCCTTTTGGAAACTTGGCAATATCTTTAGCCAAATCAACTTTCTGCAGGTATTCTCCAACTTTATCATCCAACTTAGGCTTGAACATGGTAATGTTTTCTGCAATTGATACTGGGAACAACACCGGATCTTGCGGCACGTAATGCATGGCTTTAAGTGAAATATCGATTTTCCGATCATCATGATCATAGAAAGCGATATTGCCAGTCGTTGCTTTCAGCTCTCCCGCCAAAACCTTTAGCAAAGTTGACTTCCCCGTCCCGCTGTCGCCGGTCAGCAAAATTTTTTCGCCAACCTTGATTTTCAAATCGGGATAATTAATTGTCTCCCCATGATCATAGGAAAATGACAAACCAGTTGTCTGCAAATGATCAAAGGAGGTCAATTCTTCATCTGTACATACATCCTTAGGTGGATCAGCTAAGGCAGCGGCTACCTTTTCATTCAACGGTTTAGTTGACTTGATTTGCTCAAGGTAGTTAGACAGCATAACCAGACTGTTAAATATTGTACTAGAGAATTGGCCAACCGCGACAAGTTTCCCGATAGAAATTGTTCCAGCAAGAATCAATGTTCCAGTTACGACATCTAATACAACTTGACAAAAGATGCTCATAAAACCGTTGATAAAATTTATCTCAATTGCGCTAACTTGACGCGTAACCAATGATCCTTCTAATTTCTTAGACCGCTTTTCTAAAACTTCAACTAGCTTGTGTCTCGCATCATAACGTTGAATTTCAGCTAGGCCCCCTAACCAATTCTTTATACTAGTCAGATAGGCCGTGTTCATATTAGAAAAAATCAGAGTTCTTTCTTGATATTTTTTAGAGAAGATGCTTGGCAAGTATAGAAACATAACTGACAACAGCACAGTTGTAACCAACAAAATCCAATGCATCGTAACTAGCGCGTATGCTGAAAATACAACAGCTAAAGCAGAATCAAAGAAAACGAACAGTGGCTGAGTAAAGTTGTCAAATAACATCTGAAAGTCATTCGTCAAATGACTTTGCATTTCAGCAACAGTTTCATGATTTTGGTAATAATAATCAACTGTTTTTCTTCTAAGTTGATGAACATATTCTTGAACTTGTACAATATATAAGTATTCAGCAAAACTGATTAGGACATATCCACCAATATACAATACAAAAAACACGGCTAAAACTAGATAAAATCTACTAGTCTCTCTCTTAACCAGTAAGTCTAGTATAAAGCCAATTATATAATTTCCAACCGCCACACACAGCTGTACCAAAACTTCTAGAGCAACTGCACATGTAAATCGCAGTCGATTTTGCTTAACAAGTTCACCGATTTTCATTCAACTTCTCCCATTCTTTCAATACAAACGCCATTCCTCGATTACCATAAAACAGACTGGTATCTAACGCTTCACTTCTAGAATCAATCAAATACATCAAGCCATGGCAATCTACACAAAAATATTGGTAAAAAGATAATTGCCGTTCAATTAGGGGCATATAGTCCCTATCATGTGATTGCTCAACATACTTTATAAGGATCCAAGTAATGCCAGACAAGCCTTCTATGAAGGTACCATTTTTAGCATACGCCATCTTAGAAAGTTCATTAGCCAATTGCTTAATCCGTCGGTCATACGCCTTAGTCTGATAAATTACTTTTGCATTCATAAGTACTATCAGCATCCCTGCCATACCATTTTTTAAATATGGAGAAATGTATTTTGATTTTGCAAACAATCTATAACCACAAAAATCATTATTTTCTACCCAAAACATACTTTCTATTTTCTTTATCGTAATATCAAAATTATCAAATTTGACTGAAGCTGTCGGAACTCTCTCTCTAAGATATTCAACAATCAAAAATAACTGCCGTAATATCTTTTCCATTGAAGGTCTAGTTCGACTTAGTTCTTCGAAAATTTTTAATTGACTCTGTTCAAAAGCAGGAACTGGACAGTTGTTATTTCCTAATTCCACTGATAAAAGTGCCTTCACCACTTCATCTTCACTATTTTTTTCATCAAGGCTATTCTCTTCAATCTGTTCAATTGCCACCGGCCTTTGCAACCCTTGCAATAGTGACTTTAAAGGTAATTGCTGAGTTGTGGTAATTTGACTCAGTACATTCATATCATCTTTTTGCAAAATCTCGATTGCCCTATCTAAGCTACCTGCCGTAGCATTGATCAGCACTTTCATAACCTTAATAAACACAGCAGGAATTTTTTCTTGAGCTGCCTGTTTAATAAAGAAATTCCAACTTTGTTTACCGCTCTGATCTATTTTCAAAAAGTCGTTTGCCCTTGAAAATACGCTCATCACTAAGTATCCAGATTGATGAACATCTTGAAGCTCGGGAGATAAATTATCTACTCGTCTATCATAGAATCCCTTGGTTCGATAATAAAAACTCTCATCCATATTTGTTAGTAACGCTGATTGCGAAACATCAACTAAAAATACTTTTTCACTTTCAAAATCAACAATGATGTTACTAGCAGAAATATCTCCGAGAAAAAAAGAATCATTATGTAACCTTTGCAAGCATCTTAGGTAATTAAGTACAATGTGCCTTATTTTAGCAAAGTAAAAGCTATTTCTCTTATCGCCTATAAATTCCGCTCTCAGATCATCAATCAGCACGCCCTTAATGTACGATTCAACTAAGAAAAAGTCTTTCTGCTCATAAAATGAGTCCAGTACCTTAGGAATAAAATCATACTTTTCCCAATTTATTAGGTTCTTTCTCTCATTTTGTAATTTTTGAATCTCAGTTTCTTCTGAATCTTTAAATCTGTATTTGGCACGCTTGATTACTACATCTCTCCCATAAATATCTTGTGCTCTATAAACACCGCCTGAACTTTTTCGTGAAATTATTCCTTTTAAAAGGTACTTTTTTCCTATCGTCTCTAGCTTATGTTCATTTTTTGATTCAAAAGGTTCTTTTACGAAAGATGGTAATTGATACGTTCTTAATTCATGATCTCGATACAACTTATTATTTCGTTCATCACGTATGAAATCATCATCAGAATTAATTATTCCATATCGGTAATAAACATTCTTGCTATCCCTAAAAGCCTGGTCTGTAAAGATTGGAATTCCATCTTCTTTTCCCACCAAATCGTAGATTGTTCTAATCAATTTTTCGAATCTACTTTCAGTTTCTGGATAAATAGTAATATATTTTCCAGTCATCCATAGTGGGCCCGTCCCTCCTAAATACTGCTCTAACAGGCTATAGTTGCTAATATACTTAAACGTAAAATTATTCTCACAACTAAGGTCGTATACTTTGTCTAAAATAACTTGGTAGTTTTGCAAGGTAGCCGAAACGTGTATCTTAAACCCCTGGCGTGGCAAGGAAGCTGCCGATTTATTAATCTGAAGAAAGACATGGTGAGGATCCCTTGAAATTATTTCTCTAGATAAACCCAAAAAATTGGTTGGCACAACGTCGACATGATTATATTGCCGAACGCAGAAATCACCATTAATTAACTTATATTTCATACTGCCTCCAAAAGCGCGGTTGACTTATCTTATTAATTCACTATAATATATCACAAGTGAACGTGATTTTCACCGAAAATTGTAATATTTATTTAATGATGTAGAGGCGCAATTATGAGCTCAGTCACTTATTTAGATGAATTAGACTTGCTTGTTCCTGCTGAAGAAAATCAAGAGGAGCTTGCTGGCAGTTTTGTTTGTCGTACATTTATTTGCAAAATGTAGTTGCAAGGATTACATTTTTGTTAAAAAGCGTTAGCAACAAATGAAAAGGATCTCCGATCGGAGGTCCTTTTCATTTTCACACTATTGTGGTATAAAATCTTATTCCAAAAACTTGTCCCTAAGCCGGTCCAAGTCTCCTTGTCCAAAGCCCAGGCTGGCAAAATAGCGGTCAAAGCCGCCCCAAGTCTGCCGGATCGTTTCCGTAATCCCGTAAAAAGCCGTCTGGCTGACCTGGGTCTGGTTCATCTTGGCAATCTGCTGGCCCAAGCGGTCGTTTTCATCCGCCTCATCCCAGTCCCAGCTGTATTCCCGGCTGAGCAGGTAGTCCCGCAGGATTTCCCGGTCTTCCAGGCCCAAAGCCATCAAAACGTTCACCGACACCATCCCCGTCCGGTCCTTGCCCATGGAGCAGTGGTAAATCAAGGCCTCATCATCTTCCAGGGCCAGCATTTCCTTAAAAATCTTCCGCATCACCAGGCCCGTTCTGGGGGCGACAAGATTCTGCTGGTAGACCATGGCCAGGTAAGATAATTTGGGCAGCTTGCCCGAATACTTTTCCCAGGCTGCCTCAGCTTCTTCCTCTTCATCCCCGCTCTCGCTGTAAAAGTGGGCATCGACCAGTTTAGCCCCCGGCCAGAGCTTGTCCGGGAAGTTGTCCTGTTCATGCCGGGAGCGCAGATCGCAATCCACCACAATCTTCCGCCGGACCAGTTCCGACTGGTCCGCCTTGGTCAAGTGGCTGAGTGACCCCGACCGGTAAAGCCGGCCCCACTTGACAGTCCGGCCGTCCTGGCTGACGTAGCCGCCCAAATCCCGGCAATTGTAGCCGGCCTCTAACTTTACGATCCGCTTTGGCATTTTTTATCCTTTCATCCTGTTAAACGTTAAAAACTAAAAATCTTTCCCGTGGGCAAAGACCCGGGTGGCCAGAACCGCCCGCTGCCAGCCCGCGTAGAGCCGGTCTCTTTCCGCCTCTTCCATCTTTGGTGCAAAGGCGGCCCCGGTCTTGGCAATTTCCTTCAAGCTATCCAGGTCTTGCCAGTAGCCGACGGCTAAACCTGCCAGAAAGGCTGCCCCCAGGCCAGTGGTTTCCAAATCCGCTGCCCGCTCGATCTTCTTGCCTAACAGGTCTGCCTGGAACTGGAGGAGGTAGTTGTTGTTTGAAGCCCCGCCGTCGACTCTGAGAACCGGAATCTCAATGCCCGAGTCCTTCTGCATGGTGTCGACCACATCCCGGATCTGGTAGCCCAAGGACTGCAGAGTTGCCTTGATCAAGTCCTTGTCACTGCTGCCTCTGGTCAAGCCAAAAATCGCCCCCCGGGCTTCACTGTCCCAGTATGGTGCCCCCAAACCAGTAAAGGCGGGAACCACATAGACTTCATTGGCGTCTTTAGATTCCAGGGCCGCCTGCTCTGATTCCGGAGCTGAGTTCAGCAGCTTGACCGAGTCTCTCAGCCACTGGATGGCTGACCCGGCCACGAAGACTGACCCTTCCAAAGCATAGTTTACTTGATCGCCCAGCTTGTAGCCAATAGTCGTCAGCAAATTATTCTTGGATTCAATCGGTTCCTCCCCCGTGTTCATCACGATGAAAGACCCGGTCCCGTAGGTGTTCTTGACCATGCCCGGCTTGACGGCCAATTGGCCAAACAAGGCCGCCTGCTGGTCCCCGGCCATCCCGGCGATCGGTACTCTGCCGCCGAAGAACTGGTAAGGGTCAGTTTCCAGACCAACCAGGTATCGATCGTGCCAAAAAGCAGCTCCCCTTTTTCCGCCCTTTCCTGGGCCCCTTCCACATGGTCCAAAATCCAGCGGATCTTCGTGGCGGAGAAGTAAGGGGCGATCACCAGGCCCGTCTTTTGCCGGATCATCTCGCTGTAGCTGTCCTTAACCAGCTTTTCCGCGATATCACTGGTTTGCCGGGACTGCCAGACGATGGCCGGGTAGATTGGCCGGCCCGTCTCCTTATCCCAGACCACCGTGGTTTCTCTTTGGTTGGTAATCCCGATGACCGCCAGTTAGTTGGTCCGGCCGGATGGCGGAGTTGATTAGGGCCGTTGACGTCGTGATCTGGACCGCGTTCCAGATTTCCTCAGCCTGGTGCTCCACCCAGCCGGGCTTGGGGAAGTACTGGGTGAATTCCCGGGCCACGCTGGCCACCTGCTGGCCGGCATAGTTGAAAATGATTGCCCTGGTTGAGGTCGTCCCCTCATCGATTGCCAAAATGTATTGTTCGCTCATGTTGTAATCCTTTAAACTTATCCTTTTCTTACTTTACTTACTTTCTTTTTCACCGTCTTTTGAGAAAGCGCTTACCATTTTAGCCTAAGCCAGTTTGTGAAAAAAGCAAGCCAAAAGGACCTGGCCTTTAGATTATTATTTTTCCGCCTTTTAGTTTATAATCAGTGTAATTGATTATGATAAGGAAGATTTTGACTATGGATGATAATTTGATTCGCATTGCCTACCTCTACGAAGACTTGATGAACACCTACGGGGACTCCGGTGACGTCAAGATCCTCCGCTACTTTTTGCAGAAAAAAGGCTGGCAGACCCAGATCGACAATATCTCCCTGGGCAGCCAGTTCAACGCGGCCGACTACGACTTTGTCTTCTTCGGCGGCGGCCAGGACTATGAACAAAGCATAGTGGCCAAGGACCTGCAGCGCTTCAAGGAAACCCTGAACGACTACATCCAGGCCGGCAACCCCATGCTGGCCATCTGCGGGGGCTACGAACTGATGGGAACCCACTACAACACCATTTCCGGGACCAAGATCAAGGGCCTGGGGATCCTGCCCCTGCACACGGAATTTGACCCAGATAAGCGGATGATCGGTGACACCAAGTACGAAACTGAATGGGGCCCGACCATCGGCTTTGAAAACCACTCCGGCCAGACCTTCCTGGATGACCGGAAGATGCTCAAACCTTTAGCCAAGGTAGTCGAAGGCTACGGCAACAACCATGAGGAAAAGGAAGACGGGGTCCGCTACAAGAACTTCATCGGCTCCTGGTCCCACGGCCCGATGCTTAAGAACGAGAATGTGGCTAATGCCCTGGTGGACATTATTTTGAAGCGGCACGCTGCCCGCGTGGCCCAATAAGATAGCTTTTTGACCAGCTTTTGACGAGCTGGTCTTTTTTTCGCGATTTTTTTAAAAAATCGTTATTTCACACTTGTGGTATATCACAGATGTGGTATAATGGTTGGCGTAGGGGAGTGAGAACGATGAAGATCGATGTTATTCGATACCTCGACGACAGTGGTATAATAGTTGGCGTAGGGAAGTGAGAACGATGAAGATCGATATTCTTCGATACCTCGACGACAAGCACCTTACCATTTACCGGGTGGCGAAAGAGTCGGGCTATGGCTACACTACCCTTCACAAGTCATTTAACAAGCAGCAATCAAATGCGACGTCAATCAACTTGCGCGATCTTGACGCGATCGCCCGGGCCAAGCACTTGGCGATGTGGCAGGTTCTGCGTGAGCTGGAGAATGATTATCTCAGCGATGACGATGATGACTAAACTAAATACGAAGGTTGGTTTAACCGCTGAGCAAGTCCTATTGTTTTGATTTCGCTTGATGTAGAAGGAGTTTTTAGTTAGCCAAAAACCAGCAACTTATTTTACTCAGAAAGGAGTAAAATCATGGATTACAACAACTTTAACGATATGGATGATCTTTTTAGAGAATTAATGAACGGCTTGGGCGGCTTCAATTCCGAAAACCGCCGCTACTTGATCAACGGCCGGCAGGTAACCCCGGAAGAATTCGCTGAATACCAGAAGACTGGCCAGCTGCCAGGACATGGCCAGGCCAAGAATTTCCAGGGCAAGCAAAAGAAGGCCAACGGCATTTTGGAAAAGTTAGGCCGGAACCTGACCGCTGAAGCCCGGGAAGGCAAGCTCGACCCGGTCATCGGCCGGAACAAGGAAATCCAGGAAACGGCGGAAATCCTCTCCCGCCGGATCAAGAACAACCCAGTCCTGGTCGGGGACGCCGGGGTCGGCAAGACCGCGGTCGTTGAAGGCTTAGCCCAGGCAATTGTCCACGGGGACGTGCCGGAAGCAATCAAGAATAAGGAAATTATTTCCATCGACATCTCCAGCCTGGAAGCCGGGACCCAGTACCGGGGCTCCTTTGAGCAGAACATCCAGGACCTGGTCAAGGAAGTCAAGGACAGAGGCAATGTCATCCTCTTCTTTGACGAAATCCACCAGATCCTCGGTGCCGGCGGCATGGGCGACGGTAATGGTTCCAAGGGGATGAGCGACATCTTGAAGCCGGCTTTGTCCAGAGGTGAAATCACCGTAATCGGGGCCACCACCCAGGATGAATACCGGAACACCATCATGAAGGACGCCGCTTTGGCCCGCCGCTTCAACGAAGTAACTGTCAACGCTCCGAGTCAAGCTGACACCTTCAAGATCTTGATGGGGATCCGGTCCTTATACGAAAAGCACCACAATGTGGAACTGCCAGACGACGTCTTGAAGGCCGCCATCGACTACTCAGTCCAGTACATTCCGCAGCGGTCCCTGCCTGACAAGGCCATCGACCTTTTGGACATGACCGCCGCTCACCTGGCTGCCCAGCACCCGGTGACTGACGCCAAGACCATCGAAAAGCAGATCAAGGAAGAAAAGCAGGCTCAGAAAAAGGCCGCTGAAAAGGAAGACTACCAAGCCGCCCTTGACCACAAGGCCAAGGCTGAAAAGCTGGAAAAGCAGCTGAGTGAAAACCACGAGGAAAGAAAGACCGTGGCTACCCCGGCTGACGTGGCCGCTGCCGTTGAACGCTTGACCGGGATTCCGGTTTCCAAGATGGGCGCCAGCGACATCGAACGCTTGAAGGGGCTCAGCAGCCGCTTAAAGGGCAAGATCATCGGCCAGGATGAAGCCGTTGAAGCAGTAGCCAAGGCTATCCGCCGCAACCGGGCTGGCTTTGACGAAGGCAACCGGCCAATCGGCTCCTTCCTCTTCGTCGGCCCGACCGGGGTCGGCAAGACGGAACTGGCCAAGCAGCTGGCCTTGGACATGTTTGGCTCTAAGGATGCCATCATCCGCCTGGACATGTCTGAATACTCCGACCGGACAGCCGTTTCCAAGCTGATCGGGACCACGGCCGGCTACGTGGGCTACGATGACAACTCCAACACCTTGACGGAAAAGGTCCGCCGCAACCCTTACTCAATCATCCTTTTGGACGAAATTGAAAAGGCTGACCCGCAGGTCATCACCCTGCTCTTGCAAGTGCTTGACGACGGCCGCTTAACTGACGGGCAAGGCAACACGGTCAACTTCAAGAACACCATCATTATCGCTACCTCTAACGCCGGTTTCGGCAATGAACAGCTGATGGGCGACGCTAAGAAGGACGAGAAGCTGATGGACCGGTTAGCTCCTTACTTCAGACCGGAATTCCTCAACCGCTTCAACGCGGTCATCGAATTCAGCCACCTGACCAAGGAAGACTTGAAGGAAATCGTTAACTTGATGCTGGCTGACGTAAACAAGACTCTGGCCAAGAAGGGCATCAGCCTGACTGTCAGTGAAAGCGCCAAGGACTACTTGATTGAACAAGGCTACGACGAAGCTATGGGGGCACGGCCGCTGAGAAGAGTCATCGAACAGGAAATCCGTGACAAAGTAACTGATTACTACCTGGACCACCTGGACGTCAAGAAACTGAAGGCGGACATGGTCGACGGGGCCCTGGTTATCAGTGAAGATAAATAATAGGATTCTGTTAAAGATCTTGCACAATCGTAAAAAAGGCAGTCAAATGACTGCTTTTTTACTTTGTCCGGATTTTTGTATTATAATCAATGGGTAATATAAAATCGTTTACGGAAGCTTGCTTTATGCAAGATAAATTCTACGCTTTTAGTGAGGAAGCCAGGGAAGTTTACGAGCACTCCACTTTCCAAACCTTGATCTACCAGTTGATCGACGGTCAATACCAAGTGGCGGGAAGATCCAGCCGGAAAACCTCTGGGATGCCATCACCCACCAAATCAAGCTGGGCGTCTTCTGGAAGGACAGACAGCGGAACTTCCTGGGGGCTAACCAATACTTTTTGGACTACTACGGCTTGACTCTGCCAGAAGTGATCGGCCTCAACGTCCATCCGGAAAACTTCCAGGAAAGCGAAATGCAGCTTTTAGAAGACGGGGTACCAGTCAAGGAACGGGGCAAGACCCGGTCCCGGGGCCAGATTCGGGAAATTATGATCCTCAAAGCTCCCGTCTATGACCAAGACCAAATCGTTGGCTTGATCGGCTTCTTTATGGACATCACCAATACCAGCAAGCAAATCAACCGCCTGGAAAACGAGGCCGCAAGAGACGACCTGACCAGTCTGAAGAACCGACACAATTTTGCCCGGGACTTCAACTACCTTACCGGCAAGCCAATCCTGGCCATGATGCTGGACGTGGACCACTTTAAGAAGTTCAATGACAACTTTGGCCACCGCTACGGCGACGAAGTCTTGAAGAAGATCAGCCAGGCCCTGCTCAAGATCTACGGCATTGGCCACTGCTACCGGTACGGGGGGACGAATTCCTGGTGCTCCGCGACTTTACTGATACTGACACGGTTGCGGAAAAAGACCGGCAGTTCCGGAAAGAATTGGAACATGCCCGGGTCCTGGATCTTTACATGAACATAACCGTTTCTGCCGGCTACGCCTACGGGATCGCCAATAACAGCGACGAGATCAAGAGCATGATCCGCCTGGCCGACCACAACCTTTACCAGGTTAAAAAGAACGGCCGCAAGGACATCTGCGGCAGCCTTTTCCAGCCGAATTTTTTGAATATGAGTAAAAAGAAACAGCGTGAAAGCTTAATTTGCTTTCACGCTGTATTTTTTGTGGCAGGTAACGGCCGGCAAAGGCAAGGGCAGCCTTGGCAAAAGCAGTATTGCTAATAATGCTTGGGGCCGCGTTCAAGCCGTCAAAGATGGCCGGAATAATCGTAAAGTAAACCGCAAACTTGTAAACTGCCGGATCATTATTGAAAAACTTGCTGGTCAAGCCGCAGAAGATCAAGGCAATGGCCAGGGGGTAGAGGAACATCAAAACCGGAGTTGACCAGGCGATGATGGTGGTCAAGCCAAAGTTGGCAATGGCAAATGAAAACAGGCAGTTAAAGGTCAGGAAAGTCCGGTAGGAAATTTTTGGAAAACGCTTGTGGAAGTCCTGGGCAAAGGCAACTACCAGGCCGATGGCCGTGGACATGTAGGTGATGGTAGCCAAGGTCGCCAGGAGGGCTTCCCCGAAAGTGCCCAGGTAGTGGTGGGCGATTTGGGCAAAAGCAATCCCGCCGTTTTCAGACAATTTGAAGTAGTGCAGGCTGCCGGCGCCCAAGGCAACCAGGATAAGGTAGATGATGGCGATGCCGGCAAAACCGATGGCACCAGTCTATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCACATCGGTCCCCTTTGATTGGGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTCGATCTTCTTGGTCGTCCCGATGACATTCTGATCGTTCTTTGAGGACAAGAGTGATGAAGCGATTGGGACAAAGGAGGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTAGGTCATCGAAACGTGGTCGAATACTTTGGCAGTCAGCTCAGTCTTCTTGTATCCAGTTTTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGGTCAGAAGTCAGATCTTTCAGGTGCCCATTGACGATCCTATCAGCTAGCAGAATAGTGAGGCGAAGCCAGTTGATATGTGGGTTCTGCATGAATCGATAGTAGGTGTTTTTGGAGAAGCCAGCAGTACACTTGCCAGACTTCTGTTGCATATACATGCTTCTGTCTCGAAACACATTACTGAAGATGTATGAAAGGACCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTACTTGAAGAACTTTTCAACAGAACGAGAAATTTGGGGTTCGTTTTTGGTATCGAATGATGGTAAACTAGACATAGCACAAGCCTTTCGTTTGATATTGATGATGTTGTAGTTGAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTCATTATTAAATTTCCCTTTTTAAGACATATATGTATATCAGACCATTTTCTGTATTTACAGGTACACCCCATAAAAGCACAAAAGAAGCTCGGTCCTGTGGACCTGAGCTTCTTACATAGGTCTCATTATACTATTAATTAAGTCTAATATTTAATATAAGATTCTACGCGTGGTGCTAGTTAAATCGTTTTAGTTAATAAAAAAGTCCAATCGGACTAGACTCAAGTTGTAGTATTCAATAGAAAAGAGTCTGATCTGATTGAACTGCCTTAAGCTTAAGCGTTTTAGTCATCCTAACACAAGTTGGTTTTAAGGATTTAGTCAAAATTTGCCGGTACTGGTATCGTTTATCTGCTCCGGCTGAATTTAGTCAACGGCGAAACATCAACCAGGTAAAAGCTACGGACAGTTTAATCTTGGCTTTGCTTATCTGGCAGGCCAAGACTGGAATCGAATCACAAAGAAGGTTCTGCGAATATTGGCTATAAGGCAACCAAAAAGATCTACTATTATGGTTTCAAAGTTCATGCGATTGTCAGCGACGACGGCTATGTTCTTGATTATGCCGTAACCCGCGCCTCAGTCCATGATGCCAAGGAAACGGTGGAACTAATGAAAAATACTCATCCAGCCAATCGCTAGCTGCTTGGCAATGAGGGCTATTTAGGCAAACGATTGCATGATCGATTAAAGCAAATGGGCTATGAACTGTGGACGCCATATAAGAAAAACATGGCTGGCGCCAAAAAGCACAATGATCGTCAATTGATGGCTATTCGCAGAACAATTGAAAGCGACTTTTCACTTCTAACTCATTACAACGCTGAGAACAATCGAGCGCGCAGTTTAACTGGCTTTCAAGCACGATTAGAAATTGCTATTCTGACTTATAATCTAGCTTATTGTCTAGAACGATTTAACTAGCACCACGCGTAAGATTCTTATATTGCATCCCCACAATGCAATGTTATTTATATTTTTATAATGTATTTCTAAATCAATACGTTTTATATTGTATAAAAGTTATTTAATAAAATAAATAGCATTAGTAATTTTTTTCTAAAAAATAAGGCTCCTGTTTTCACAGAAGCCTTTTCCAGTACGCTATTTCTATTTTAATGCATCAGTAGCAAATGATCTGTTTTCTAGGGACTTGAGTAATGCGTCCGCAGTATCTAAAGCTGTTAATAAAGGAACATTTTGCTGAATCGCCATTTGTCTAATAATAAACCCATCCGAATTCTTTTCAATATCATGCCCCATCGTATTGATTACTAAATCGATCTTTCCATCGCGTAATTCGTTCAAGATGTTATCGTCTGCTTGCTCATCTTCATGTACTTTTGTCACGAGTTCTACGTGCAGGTCGTTCTTTTTAAGGAAGTTGGCTGTACCCTTAGTTGCGAAGATTCTGTAACCGATCCGAGCAAATCTCTTTGCAATCGGCAAAATCTTTTCCTTATCTCTATCTTCAATAGTAAGAAGGACATTACCATTTTCAGGTAGCTGCATCTTTGCACCTGCAAAAGCCTTGTAGAGTGCCTTAGCAAATGTATGATCACTACCCATTACTTCACCAGTCGATTTCATTTCTGGTCCAAGGTAAGAATCAACATCAGCTAATTTACTAAAGCTAAAGACCGGTGCCTTAACACTAATCATTTCTGGTTCTGGAGCTAAACCATCTGCATAACCTTGCTGCTCAAGACTTTCTCCCATGATCACGCGAGTTGCAACTTGCGCCATTTCAATACCGGTAATCTTACTCAAGAATGGCACCGTTCGACTTGCACGTGGATTTACCTCAATTACATAGACATCCCCATCGCGCACAATAAACTGAATGTTCATGATTCCCTTACAGTTCAAAGCTAAAGCTAATTTCTTAGTCACATCCATAATCTTTTCTTCAACTTCATCACTAAAGGTTTGTGGTGGATAGACTGCCATAGAATCACCTGAGTGAACGCCCGCATGTTCAATGTGCTCCATAATTCCTGGAAGCAGTACTGTCTTGCCATCAGAAATTGCATCAACATCACATTCACGTCCATCAAGATAATCATCGACCAAGATAGGATGATCTTCTGCAATATCGGCGTGATCATGCAAATATTCTTCTAATTCATCCTTTGAATAAACGATCTCCATTGCCTTGCCGCCTAAAACATAAGATGGTCGAACCAGCACTGGATAACCTAGTTGATCAGCTGCCTTCATTACTCCTTCATGCGTCGTTGCAGTCAAACCTTGTGGTTGATGCAAATGCAAGCTCTTAATAATCTGATCGAATTCTTCTCTATCTTCTGCTCGATCAAGATCCTTAACCGTTGTTCCTAAAATTTTAACGCCATGTCTTTCAAGACCGGCCGCCAAGTTAATTGAGGTTTGACCACCGAATTGCACGATCACGCCTTCAGGCTGTTACAAGTCGCAAACATTCAAAACATCTTCTAAAGTCAGTGGTTCAAAGTAAAGCTTATCTGAAACCGAGAAGTCTGTTGAAACAGTTTCGGGATTAGAGTTAATGACAATGGCTTCATAGCCCATCTTTTGCAAAGCCTTAACCGAGTGAACTGTTGCATAGTCAAATTCTACCCCTTGACCGATGCGGATCGGGCCTGAGCCAATAACGATCACTGATTTCTTACCAGATTTTCTACTTTCATTTTCACCATCATAAGTGGAGTAAAAGTATGGCGTGGTTGATTCAAATTCAGCGGCACAAGTATCAACCATCTTATAAACTGGCACAATGCCATTAGCTTTTCTCAAATCTCTTACTTGATCAGGATATTCATGCCATAGTTTTGCAATCGTTTGATCACTAAAGCCATATTTTTTAGCTAGACGCAAAACGTCTAAGTCATCTGGATTTGCCTCAATTTCTTTTTCCATCTCAACCATGTGCTTTACAACATCTAAGAAATAGAAGTTAATCTTAGTTAATTCATGAACATCTTCAAGTGAGTAGCCGCGTCTAAATGCTTCAGCGAGATAAAATAATCTATCATCTTGCGGTCTAACCAATTTTTGTTCAATTTCGTCATCGCTTGCCTTATGTGCCTTAGCTGAGTACAAATCTTTTTCATCAATTTCAAGCGACTGCACAGCCTTTTGCATTGCTTCTTCAGCTGTACGACCAATTGCCATAACTTCACCAGTTGCCTTCATCTGCGTTCCTAACACGCGGTCAGCTTTAGGGAATTTATCAAATGGAAAGCGTGGAATCTTGCAGACCACATAGTCAAGTGCTGGTTCAAATTCGGCATAAGTAGTACCAGTTACTGGGTTCTTGATTTCATCTAAAGTCATGCCGATCGCAATCTTAGCAGCCATCTTGGCAATTGGATAACCTGTTGCTTTAGAAGCCAAAGCACTTGAGCGAGAAACTCTTGGGTTGACTTCGATTACATCATAATCCAAACTATTAGGATCAAGTGCTAACTGAACATTACAACCACCTTCGATTTTTAATGCTCTAATCAGTTTTAAAGAACAATCTCTAAGCATTTGGTATTCTTTATCAGACAAGGTTTGGCTTGGTGAAAAGACAATTGAATCACCAGTATGAATACCAACCGGATCGAAGTTTTCCATACAGCAGACGATCATCGCATTGTCACTTGAATCGCGCATTACTTCTAATTCGATTTCCTTGTAACCTGCAATTGATTTTTCAATTAAACATTCCGTTACAGGAGACAATTCCAAACCGTTTTTAGCAATCTCGGCTAATTCATCATGATTGTGACAAATACCACCACCGGTACCGCCCATAGTAAAGGCTGGGCGCACAATGATTGGATAACCGATTTCATCCCCAAATGATAAGGCATCTTCGACTATCTTGACTGTCTTAGATGGTGGAACGGGCTCGCCCAATTTTTGACAAAGTTCTTTAAATTTTTCACGGTCTTCTGCTTGTTCAATTGAAGCAAGCTTGGTACCTAAAAGCTCAATATGGAGTTCATCCAAAATTCCTGTTTTTGCCAAAGCTAAAGCCATGTTTAATCCCACTTGTCCGCCGAGTGTTGGCAAAATCGCATCTGGATATTCCTGACGGATAATTCTAGAAACTGAATCTACTGTTAAAGGTTCAATATAAACCTTGTCAGCGATTGTAGTGTCAGTCATGATTGTCGCCGGATTAGAATTGACTAAAACAACTTCATAGCCTTCGTCGCGCAAAGCCAAGCATGCCTGAGTACCAGAATAATCAAATTCTGCGGCTTGGCCGATAATAATTGGGCCTGAACCAATCACCATAATCTTATGAATATCTGTTCTTTTAGGCATGACGCTCTTCTTCCTTTCTTTGATCAATCATTGACATAAAATCATCAAATAGCGAATCTTCATCGTGTGGACCTGGCGTTGCATCTGGGTGAAACTGAACTGAGAAAGCAGGATACTTTTTATGTCTAAGTCCTTCCACAGTACCATCGTTAACTTCTTCATGAGTAATCATTAAATTATCTTTATCAATTGATTTGGCATCAACTGCATAACCATGATTTTGAGAAGTAAAACCGATGTGTCCGGTCGCAATCTCGCGGACTGGATGGTTAAAGCCGCGGTGGCCGAACTTCATCTTGTAGGTTTTAGCACCATTCGCTAAGGCAAAAACTTGGTGACCCATGCAAATTCCGAAGAGCGGTACATGCTTTTCTACCTCTTGTACCATCTTGGTTGCTTCGATCATTTCTTCGGGATCACCTGGTCCGTTTGAAAGAAGAACACCGTCGGGATGCAAGTTTAATACTTCTTCTGCAGTTGCGGTATATGGCAAAACAATGCAGTTGCAGTCGCGCTCAGCCAATTCACGCAAGATGCTGTGTTTAATACCGAAGTCAATAACCACGATGTTGCGCTTTGAACCTGGAACTGGGTAGGCGCTCTTAGTAGAAACGCGGCTAATCACGCCTTGAGTAACATTTTTGTGTTTTAATTCCTGAACTATTTTTTCTGCGTTTTCTTTAGAATTAGCAATCTTGCCGCGCAATGTACCATGTACACGCAATTTTTTAACTAATTCTCGTGTATCAATACCTTGAATGCCTGGAATATGCAATTGCTTCAAAAATTCTGGCAAAGTAGTTTGCATCCGCCAATTATCAGGATGGCGGGCAATTTGGTGGCAGATTACGCCTTTGATCTGTGGCTGCAGTGATTCATAATCGGCTAAGGTAATGCCGTAATTGCCAATTAATGGATTAGTGAAAACCAAGATTTGGTCGGCATAAGATTGGTCAGTAATTGCCTCTTGGTAGCCGGTCATCCCCGTCGTAAAAACAACCTCACCAGTAGTTTCTCGATCGCTGCCAAATCCTTCACCAGCATAAATGCTGCCATCTTCTAAAATTAAATAGCGCATTATTTTTCTCCTCTTTGATATACAACTTCACCATCAACCATTGTCATTACCGTTGCTCCATAAATCTTTTGTCCAGTAAATGGGGTGTTGATGCCTTTTGATTGGTAATTTTTTTCTTTTAATTCTGTTTCATGTTCTAAGTCAAAAATCGCAACATCTGCTGGGCATCCGGGTTCCAGCACTCCTGCCTTTTTTAAGCCAAATACTTTAGCCGGTTGATCACTCAGCCAAGATAACAATTGCTCTAATGTAAAGACCTTATCTTCTTTAACAAATTTGGTATAAAGCGTGCTAAAGGCTGTCTCACTACCGGTAATTCCGAAGGCCGCATTTTGCATTCCACCTTGCTTTTCCTGCTTGGCATGCGGAGCATGATCAGTTGCAATTAAATCGATCGTGCCGTCCAGCAAGCCTACTAATAAAGCTGCTTGATCTTCTTTACTTCTCAAAGGTGGATTCATCTTGTAATAGCCATTGTCCTTAGGAATATCATCTTCGGTTAAAAGCAAGTGGTGTGGTGCGGCTTCGCAAGTAACATTGATTCCGCACGCTTTTGCCATTCTGACTAATTCAACGCTAGTCTTAGTTGAAACATGGCAAATGTGATAATGGACACCAGTTTTTTCAGCTAGTAAAAGATCTCTAGCAATCTGAGTTGTTTCAGCTAATTCAGTTACTGGTGGTAAATTCAGTTCTTTTGCCTTTTCTCCTTCATTAACGATACCGTGATTAAAAAGTGAATCATCTTGCGCATGTGCTGCTACGATTAGATCATTTTTCTTTGCTTCTTGCATGGCCAGATACATCGTTTGAGCCGTTTGCACGCCATGACCATCGTTACTGAGAGCAAAGGCACCAGCTTTTTTCAATGCGGCATAATCAGGCAATTCATCTGTTGTTTCATTTTTAGTAATTGGACCATATTGAAAAATATGCACGATGCCTTTTTGTTTATTTTCTTGGACCATCTTTTTCATTAAATCAGGCGTATCTGGAACCGGCGTCACATTTGGCATCGCACCGACTGTAGTAAAGCCGCCATGGGCTGCAGCCTTACTTCCAGTTTCGATATCTTCCTTATATGTTTGTCCAGGATCGCGGTAATGAACATGGACATCAACCAGTCCTGGGCTAACCAACTTGCCAGTTGCATCGATGACCTTGTCGCCAGTTAAATCAGTACCAATCGCCTTGATTTTTTGATCTTCAATTAGCACATCAGCATGAATCAAACGTCCATTTTGATAAACTGTTCCGTTCTTAATTACTGTTTGCATTATTCAAGCCCTCCGAGTTTTCTGCCACGCAAAACTGCTTCCAACATGGCCATTCTCATAAAGACGCCGTTTTCCATTTGGCGAACAAACATGCACTTGTCACTTTCTACCAGGTCGCCACTTAATTCGACATTGTGATTAATTGGACCCGGGTGCATGATGATCGCATCTTTTTTCATTGCTTCATATCGTTTGTGATTAATACCGTATTTTTCATGATAACGATGTGCATCAAACTTCTTTTCATTAGGATCACCGCTATGACGTTCGTGTTGCACCCGTAGCAACATCATGACATCCATTTTAGGGATCAATTTATCAAGTTCTTCATGCTTCCCATATTGATCGAATTCTTCAGAGTACCAACATTCAGGGCCGGAGAAGTAAACTTCAGCACCGAGTTTAGTTAAAAGTTCCATGTCACTTTTAGCTACGCGAGAATTAGTGATGTCACCTACGATTGCCACTTTCAAACCTTTAAAATGACCAAAGTGTTCATGAATAGTCATCATATCAAGCATGCATTGACTGGGATGCTGACCTGAGCCATCTCCTGCATTAATCACACCGATGTTTAATTTTTGATGCTGCTTTAAATTAATCAAATCCTCGTAATATTCATTTTGTGAGTGGCGAATTACTTCAAGGTCGATGCCAAGTGCATTCATCACTAGTGAAGTGTCGTATAAGGTCTCACCCTTGTTGACAGATGAATGAGCTGGATCAAATGGAATCACAGTCAAGCCTAACTTTCTTTCAGCCATCTCAAAGCTGGTGTGGGTTCTGCTTGAATCTTCAAAAAACATGTTAGTGACATAGACCGGACTAGTTAACCTAGCTACAGCTCCACCTTTTTTGAAATATTCCGCACGCTTAATCAGAGCCTTTACTTCATCATTTTTCAAATTTTCAACACTAACAAAATGTGGTAAAGCGACAAGATTTAAATTTTTCATATTCTGTTCTTTCTATCAAAAGAAGCCTGAAGCATTTAATTGCTCCAGGCTTCTTCTCCATATTTTTGTATACGAAAAACTAAGCAACCCTTCTGGCCCTCTCTGGAGTCAATTAAATGGTTGATTATTTATCTGTTATTCTTTTTACTTAGGCAAAGCCTTCAGTTCAACTGAATCTTTGCCATCTTTTTCAACTACATTAACTGCAACTTGTTCATCTGCAGAAGTTGGAATATTTTTACCAACAAAGTCTGCTCGAATTGGCAATTCACGGTGGCCGCGATCTACTAAAACTGCAACCTTAATCAAGCTTGGTCGACCAACGTGCATCAACGCATCCATCGCTGCTCTAATTGTCCGGCCTGTGTAGATTACATCATCGATTAAAACTACTCGCTTATTGTTGATGTCTACACCAACGTTGTCTGAATTAACCACTGGATCTTGCTTTAGTAAAGCATCATGTCGATCATCACGGTAAAGTGTAATGTCTAATTCACCAACAGGCACATCTACGCCTTCCAATTTTTGAATTCGATCATGAATTCTATTAGCTAGATGAACGCCACGTGTCTTGATCCCGACTAAAACTAAATCATCGGTTCCCTTGTTTTGCTCAATGATTTCATAGGTAATTCGCGTTAATGCACGCTTAATTGCCAATGCATCCCATATTTCTTTTGCCATAAAATTCTCCTTACTCTGCCCATGAAAAAAGCTCCCGGCCTACATTGAGACTAGGAGCTTTTAGTAAAGTAAAACTATTTATGTGCTAACCTCACGGGACTAATTTTAAAGGACATTCATTGCTTTAAAGTTACTGTAATTGAATATGTTTGTCAAGAGTTAATTAAATTTAACTTGACCGACTAAATCATTGATATCTTCAATGCCTAATTTTTCTAGTTCAGCCGGTAAATTCTCAGCAATATGTTTAGCTGCTAATTCATCTTCAAAATGAGCGCTGCCAACGGCTACGGCATTGGCACCAGCCAGTATAAATTCGATGACATCTTGTGCAGTACTAATTCCGCCCATACCGATAATTGGCAATTGCGTTACTTGACGAACTTGGCTAATCATACGAATAGCAATTGGTTTGACCGCTTCTCCAGATAAGCCACCCATGTTATGACCTAACAACGGCTTTCTAGTTTTAACATCAATCCGCATTCCTAAAACAGTATTGATCATTGAAATCCCATCGGCACCACCGGATTCGGCTGCTTTAGCAATCTCAACAATATCAGTCACATTAGGAGTTAATTTGACATAAATTGGCAAAGCAACTGCCATCTTAATCTTTTTGGTTAACTCTTCAACAACACCGGCATGAACGCCAAAACTCATGCCGCCTTGTGCCACGTTAGGACACGACACATTAATTTCCAACGCATTAACTAAGCCAGAAGCAGACAACTTTTTAGCGACTTCGACGTAATCATCTTCGCTGTCTCCGCCTACGCTGGCCATAATCGGTAAGTCAAGATATTGATGACGTAACTTAGTCAATTTTTCACTAATTACCTGATCAACCCCGGGATTAGTTAATCCTACAGAATTTAAAACGCCATCTTCTAAGATCGCAATTTGTGGCTGCGGATTACCAGTCGTAGCGTGCGGCGTCGTTGTTTTAATCACCATTGCACCTAAGTCGTTTAAATCAAATTTTTGTGCGGCTGGCACATCGCCAAAACCAAAGGTGCCACTAGCCGGCATCACTGGATTCTTCAAATCTAGACCTGGTAAATTTACATGAGTATTAACCATAATTTTCCTCCAAAATGAATGCTCTCTGTCATTCGCTTATTTTTTAAGAATTGATTCTACACGCCTTTTATTTTTTTGCAAGGTCAAAAATTTTCTGTTGTATTTTCTAATCAGGGGTGTTAAACTTCATCTTGATCAAACTTTAAACGGTACAGAGAGACCGCAAGTTCAAAATATTGGCTTAAATTTATCTAGGGAAAGTCTATACCTGGTATCTCTCTGCACTGGTATAGACTTTTTTGTATGGAGGCAAAATGAAACCTGTAATTGTTGCTATAGACGTTGATAATCAAGAACAATTAACAAAAATCTTACTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAATGATGGCGATATAGCCTCTTGCATGTACTTCGGGAGGCGTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGTCGGTTGGAAGATCTCTTTAACACTCTCGAACATGGCTTCCACCAGGATTTGTAGGGAGTGATTGAAAGTGATGTCCGCAAGCTCGTCTACCATGCAATAAAAGAGCTCGCCTATTGTCCTATCATCTTCATCATCTCGCTTCTCAACTGACATGAACATGTAGCGCAGAAAGACGAAAGCTGTATGGGCAGTCAATGCATCATATGACAGGCGAACGATTTCTTACGCAGACTATTCTGGCATCAATCTGGGCACCATCTTTGGCAGGGCCGCCAAACTTTACAGGGACGGACAGGAGATATCTTGAACGACCTCGACGCTTCTTGCATGCGTTGAAGATCTGCTTGACGTTCATCCGCTTTTCTTCGAACTCGTATGTGATCTTGGAGCTTTTCTTCACCATGGCAATTACGTTCAAACCACGTTGACTGATTTGGACAATCTGATGAGGATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCAGCTGGATAACTGCATCGGTCCCCTTTGATTGGGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTCTTTGATGGTGGCGTTACGATTTACAGTTATAAAAATAACGTTTGGACTGGCGATACCTTTTTAAACGCTCAGTAACCACTGATAGATAATTACAATCTACCATATGAAAAACTGTGCGCTTGAATTATTTAGGGTTGCATACAGCGAATTAAAGTGTTAAAATTAGTTAAATTGACATATACGGAAGTTATAAGTATCATTCATTTTTGCTATCTATTATTTTCCTAGATGTTAATTCAATTTGGTTACTTTGGTTTGATTCCTAGGAGGATATATATATGCAAAATGGTACTGTAAAATGGTTTAATGCTGATAAAGGCTTTGGGTTTATCACTGGTTCAGATGGAGATGTATTCGTACACTTTTCATCAATTAAAACTAACGGTTTTAAGAGTCTTGAGGAAGGGCAAAAAGTTAGTTACGATGTTGAACAAGGCAATCGAGGACCTCAAGCGACTAATGTTGTTCCACAATAATTTGTCTAATACTATGAAGAACTGCTTTTGATGGAGCAGTTCTTTTTTATGGCTCTTCGTCAAGAAGTACTGATAGAAAAATTTGGATAACTTTTCAAACAGCTCGTGTCTGAGATTGGACATGAGCTGTTCTTTTATTCTTCCAGTTGATGGCAAAGTATGAGTTAGGAAGGGCAAGCAGGATTCGAGCCCGAAAATTAAAGAAGTTACGAAAGCCTGGGGAAAGCACCAGATGTCAGGGCTTGTTTGTCGTACCTATGGCACATTTTTGGTGTTGGAAAGTATTTCCATTCCAAAAGTACTAGGCCCTAATTTAAAAAGCCATTGATAATGGATCAAAAACGGCCAATAGGGTATACCCTATTGGCCGTTTTTATTTCTGTGCTATGCTAGGAATTACAAGTGTTCATTAGAACTGTCCAAAAGGAGAACTGTAAATGGCTAAAATCGGTTATGCGCGTGTGAGTTCCAAGGAGCAACATTTAGATCGACAGTTAGCGGCTTTAAAAGACGTTGATAAATTATTTACGGATAAATTAAGTGGGGCTAACACTAATCGGCCAGAACTGCAAAAAATGCTGGCCTATATTCGTGAGGGTGATATTGTAATGGTCACTGAATTAGATCGCTTAGGCAGAAACAACCAGGATTTAACTAATAGTTTAGCCAATAAATATTCAATTAAGCTGCTAGTGATGGCGTTAATGCCTCCTGCATGTACTTCGGGAGGCGGGAAATGAAAGCGTTAGTGAACCTTTCCATCTGCTCTTCTGTCGTTGTGCTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACGAGCCCACGTTTGCAAGTGGGAAGTTTAAGTTAATATCTGACTAGCGGCCTGTAGTGCTTCCTGCTTGCATCCCCTAGTACAGGATAGTACAGGATTTTAGGAAGCCGCCCCGATTCGGGGCCCCACAAAAAAGGCAAAAAAAGAACCGCCTGCTTAACGCAAGCGGAGAAAATAGAATCACTACTTAGATTCTATCATAGGTTGTCTTAGTAATCATGTTGAAGCCTGTGAACGCATCCGAATCATTGCACCAAATATTGCACCGGATTTAGTAACAACATTTTCTATCCTCAGTTAGTTAGAGTTGGCTAGATTGGAAAGAATCCCGTAGCAGCAAGCATTGAGAGACTTCTAGATTTGCTTAAAATTCGGCCAGGCTTAACCCCATGTTAATGATCAAATCATCGTTTTGATTTTAACACAGTTTTCCTTGCTCTGACGGGCTTTTTCGGCAATATGCATAAAAAGTTCTAAAGCTTTCTTTGCAATTTGCCCCGGCGGGGACTGGGCACGACCTGCAGGCAGGTGGCCAGGATAATCAAGACCCCGCCCGCCATCTTCATGATGCCAAAGTCGCTGCCCAGAAGGGTAACCGACAGAATCGTCGCTACCAGCGGCTCAAAGGCCTCCAGCATGCTGACCAGGCCGGCTGAGATGTACATAACGCTGGAAAGGTAGAGCGAGTAAGCGAAAACCGTACCGGCGATCACGATGTAGATCACCAGGCTCCATTCCTTAACCGTAACTCCAGTGGCGGGCATCACGGCCAGGGCCGGACTGAGGATAATCCCGCCCAGCAACATCCCCCAGGCCAAAATAGTGATGGTCCCGTACTTTTTAAAAAGCTTGGCCGGCATGGCAATGGCCAGAGCCTGGGTCAAGGCACTGAAGAAGCCCCAGACCAGGGTTTTAGGCGTCACCGCCAAGTGGCTGAAATTCCCATTGGTCACCAAAACCACCGTCCCGACCACTGCTAGCAAGACCGCGATCAGATCGATTCTCCGGGGCATTTGCCGGGTTTTAGCCGCCATAAAGCAAATGATCAAGACCGGGGCCAGGAAGACCAGGACAGTGGCCGTCGGCGCGTTTGAGGCCGCTACCGTGTAGAAGTAGGTAAACTGGGCCCCGGTGATGCCCAGCATGGAGAAAAGGGCCGCGTAGAGAAGGTCCCGGTGATTTTTGAAAATAGCAAAGGTCCCCTTCCCCTTGTGGACCAGGGAAATGAGCAAAAGGCTAGCCCCGGCCAGCCATGACCGGACGTCAACCAGCCAGAAGGTATTGATATTTGGGCTTTGGTAGAGCATTTCCGCCGCCGTCCCCGAGGTCCCCCATAAGGCAGCCCCGGTAATTGCCAACAGGATTCCCAAATGCTTGTCTTTCATTTCTTCACCGCCATCGTTTCACGTGTAACATTCCATTTCTGCCTGGAAAGACAGAACCTTTTACATTATGACAGTTTTATGAGATCTTTGTTAGTCCCTTTCTGAAAAAAGGCAAAAGAAAAAGCAGCGAAAACGCTGCTTGCTTCTTTTCTTCTACTGCTTCTCTTCTTCCGCCTTATCGATCAAGTACTTGAAGAGACGGTTCATGATGGCTGCTTCCGGGGCAGGGTTAGCGTGCATTTCTTCCGGGTGCCACTGCACGGCGATCACCTTGCCGTCAGTGCTTTCCAAAGCTTCCGTCACCCCGTCGCTGGCGCTGGCTGATTCGGTCAAGTCCGGAGCCACTTCCTTGATCAGCTGGTGGTGGAAGGAGTTGGTCATGAGGCTGCTTTCCCCCATGATCTTTTTCAGGGTTGTCCCGCTCTTGATCTTGACCACGTGGGTGCCCACGTCAGGCCGGATAGCCTGCATGTGCTTTAAAGTGTTGCCTGGCCGCAAAGACAGGTCCTGCCACATGCTGCCGCCGTGGGCCACGTTGATGATCTGGGCGCCCCGGCAGATGCCCAGGACCGGTTTGCCGGTTTCTTCCGCCCGCTTCAAGAGGGCCATGTCGAAGGCATCCCGGTCTGGCCAGGTTTCCCCGCTCTTTTGGTCAATCTCTTCCCCGTACAAGTGGGGGTTAAGGTCATGGCCGCCAGACAGGATCAAGCCGTCAACTAAGTCCAGCTGCTTAAAGGCCATTTCTTCTCCGCCAGCGGTAAAAGGAATTACCAAAGGAATCCCGCCGTTCTTGAGGACTGAATCCACGTAAGCAGCGTTGACGTAGGTCCGGGGCTCGCCCATGAAGGGGCCGGACTGGATCGTAACTTCTGAAGCTGAAATACCGATAACTGCTTTTACCATCTTATTATCCCATGTCTACAAACTTCTCCACCGCCAAAGCGATGCCGTCCTGATTGTTGCTGGCCGTGACGTAGTCAGCCGCGGCCTTGATCTCGTCGATCGCGTTGCCCATGGCCACCTTGAAGACCCCAGGCAGCTGGAAGTCAGAGAGGTCATTGTTGTTGTCGCCAAAAACCATGGCTTCTTCCGGCTGGATGTTCAAAAGGTCCAGCAAAGTGGTTAGGGCCTGGCCTTTGGAGGTGCCAGGAGTATTGAATTCCAGGCACTGGCCGCCGGAAGCAGAGATTTCGAATTCCTGCTCAGTTGCCGGACTGAAGCCAGCCCGGAACTTCTTTATCTTGCTAGGCAAAGAAACAAACTCGCCCTTGATGAATTCGTAGTGCTGACCGGGCACCATCCGCTTGACCCCCATGTTCCGGGCCTTGGCCAGAAAGCCAACACCGAAGGAACTGCCCTTTGGGGCTACATAGAAATCCTTGGTGTCCATGAAGTAAGGACCAAAAATCCCCGTCTGCTTCAAGGCCAGCATGTGCTCCACGTTTTCATCAGTCAAGGGGCTGGCGCTTAGGACTTCCCCGTCCATCCGCTGGACCAGGCCGCCATTGTAGCAAATAGCAAAGTTGTCTGCCGGATCCAGCTTGAAGGGTTCAAAGACCTTCAAGACGCCAGGCAGGGGCCGGCCGGACAGGGGCACCACAAGAATTCCTTTTTCCCGGGCCTTTTTTAAAGTCGCCAGGGTCTTAGGGCTGACCTTCTTTCTGGAAGTCAGCAGGGTTCCGTCCAGGTCCACCGCGATCAATTTAATCTTCATAGATGTTTCCTTTCATATTTGCTACTATTTTACGGCAAAAGGCGGCCAGCGCCTAATTTCACGCTTAGTTTTCCTTGTGCTTGGAATTTTGGCTGTTGTTTGGCCCCGGCTTGACCTGTTGCTTGAGCAAGTACTCCTGGATAATCCTGACCACCTGCTTATTCTGCGGCAGGCTGGAGTGCTGGGCTTCTGCCCCGGTAACAGTCATCGTGGTATAGCTCTTGACCTGGTTCTGGAAGATGTACTTGCCGGCTTCCACGCTGCTTTCCGGCACGATCCCGTCGGATTCGTAGTTTTCCCCGCCGGACAGGGAGTAGACGATCATATTTTTCGGCAGGCGCTTGCGGTACTTGATAAAGTCCGTCATCATTTGCGTCTTGTACTTGATGCTCTTTTCACTGAAGTTGTAAGGCGAGCCCAAGGTCATCAAGCTCTTGATTGTGATTTCATCTGAATAGTTGTTGCTGTAGTAGTGTTCCAGCCAGTAGGTCCAGATCAGGCCCCCGTTTGAGTGGCCAAAAGCCTTGAAGTTGTTAAACATGTAAGTTTTGGCAATTTCGTAAAAGGCATCGTCCAGCCAGCCGGCCTGCTTCTTGATATTGCTGTAACCGTCATGGTTATTTTGGAAGCCAATCACGATAAAGGGCTCATTGTCCTCCTTTTTCATTGAACCAGAATAAGTCAAGGTCCCGTCTTCACTGATTTCCACCTTAAGCAGGCTGTGCTTATAAGGGGTATTCTCGTTGAGCAGGTCCACCAGTTCATTGAAGCGGTTGACGGTAGCACTGGAGCCGGGAACCATGATCAGAGGTGACAGTTGCGAGCGCTGGCGTTCAGCGTGCTCCTTGTTGGTCTTTTTCATCCAGGAATAGCCCGGAACGGCCAGCAAAATAATGATCGTCAAGGCAACGACGATCAGTTTCCAGTTGCGGCTCTTAAACATGACGGTCATCCTCCATTTCATAGTCCTTCAGCAGGATCTTGGTCCGGTTGTCCAGCTTGACGGCTGGAATCATCATGACCACGTCCAGGCAGAAGAGGAAGATGGTGAAAATCAAGGTCGGCCAGTTGCCGTTAGTGGAAAAAAACGGCACCAGAGGGCCTGGCGTCCCCGTCAAGACCGTGTAGACCGGAGTCGGCACGATATGCAGGAAAATCGCCAAAGCCGCGATCAGCATGTTCACGACTGGCACCAGGACCAGCTGAAGGGCATAAATCGGGTTGAGAATCACCGGCAAGCCGACCAAAAAGCCCCGGGACGAACTGAACAAAAGCGGCCAGAGGTTCATCTTAGCCACTGTTTCCCGCTCCTTCCGCCGGCCCCCGATCAAGATGGCCACGGCTAAAGCTAAAATTGCCCCGCAGCCACCCATCACCCCGTAAATCGAGATCATGGACCCGCCCAGGTAAGGATAAGGCACCTTCCAGACTGACCCCCGCCGCAAGACATAGGTCAAGTTGGCAGTCGCGGCGGCTGAACCAGCCACGTTGCTCATGCTCAAGTCAAGAATCGGGGCTTCCAGGCCCAGCCAGCTCAAAAATGAAGCTAGGGCCGTGGCCGGCACCGTCAAAAGCAGGTTGTTGGAATTTTCAACCGGTGACACGATGCTGGTCAGGCTAAAGTTGGCCTTGACCTTGCTGATGACCACATAGAGAATCCCGCCGATAGCGATTCCCCCGATTACAGTAACCAGGGTCGGCTTCAGAGCCTTGATCGCCCGGTCCTGGACCAGTTTGGTGTTCTCATAGTTGACAGACTCATAATCGGCCCCTAACCAATGGAAAACCTGCCCTACCCCATAACCCAGCAAGAGGGCAAAGGAGGTGTACTGGAAGCCCAAATAGCCCCCTGTAAGCAAAGAAATCCGTCCGGTCAAGCCCAGCTGAAAGAGATAGATCATGACCAAGAGACTGGTCAGAGCACTGATCCCGGCCATCGTCGCATCTTTACGGTAGATTTTAGCCGTAAAGGAAGCTGAGAAATAAACCGTGAACAGGCAAAAAAGGCCGAAGATGACTTCAACCACGCATTGTGACAGGCGGGTCCCGATGTCCCAGAAGCGGTCACTCATGATTTTGTCAAAATCAAATAAATTATAGATAAAACTTTCCGGCGCAAAGACGCTGTACTGCAAGACCTGGAAAAAGGCCCCGACCGTCGCGATCGGCATCAGAACGGCAAAGGTCCGCTGGGCCACTCTGAAAAAGGAGCGGCGGCGCAGCCAGATGCACCACTTGGCTAATTTGTCCATTTACTCTTTCCCCCACAAAAACTATATCAATTATACAAATTCCCATAGTACTTGAGCAAACTTTTGCCGCAAAAAACCGGACCAGAAATTGGTCCGTTTTAAAAAGTAACAAGAAATGTATTTATTCAACACTTGTAGCTGTTTCAGTTGCCAATGTGGGGTTAACCAGCATTACCAAACCGATGATGAGTGTTAGTAATCCCATGGTAGCTGCCTGCTTTCTATGATGTATGTGTTTAAAAAAATATAAAAGCCAAGGAAAACAAAAAGAGCCAGACTTCCGTCTGACTCTTGTCTCGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAGTGAGAGCTGATACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCTGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGTGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTACGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCACCCCGAAGGGATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTTAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTTGATTCTTGTCAACAAGTTTTTGATATTTATTTTTTGCCTCCGGCGAATTCCTTCTTCACCGCGACAACAAATATTAGTATACTCGCTATTTTTGAAAGGTCAAATCCACCTTTTCATTCGCTTTATCATGGGTACAGCCGGCAGAGTTGTAATAAGCGCTGCTTGATATGGTTTTGCCTTTGTCTTCGCTTACGGGGGAAAATCTTTTTCTTTGCGAGGAATAGTTCGGATTATCGTATTTTTTCCGGGAGAAAAAAGGTAAAACTTTTTATTTTTTTTGCTTTAAACAAGAAAAAACACTAGAGTGAAGCACTCTAGTGTCAGCAAACTCTTCATTTTTTACCAATATCCAATGCACTTGGTCCACAGCAAACCGCCACCCAGCCAAATAACATTGAAAATCACACCGATGATCGCGCTCAGCTTCCACCAGTCCTTGTTTGAAACATAGCCAGTACCGGACAGCATAGCTGCCGGGCCAGCTGAGTAAGTCGAAGTCGACAGGAAGACCGACACGCAGAAAGCCAGCATCAAAGCGGCCACCTACTGGCACGCTGCGTTCCATGTTCACTTGGTCGCCAGCCTGCAGATTTTTAAAAGTCGTCTTGGCAAAAGTCTGCGGCATCATGGTTACCGTAAAGCTGTCTTTGGAAAAAGCCTCCACCGTCAGGCAGCAGCCATTGACGGCGATCGAGTCACCGATTTTTACCCCAGCCAGGTTTTCCGGGAATGTTTTAACCGTCAAAACGATTGTCTTGCCTTCCTGCTCCAGGCGCTGAATCCGCGCCTTGCCGCTTACCAAACCACTAAACATCCTTGATCCTCCCATAGATTCTTACATCGTCGCCGACTTGCTCAGTTTGAACATCCTTTAAGTCCGGTGCTTCCGCGGCTACGACTGCTTCAGTCCCCCGGCCCAAAAAGCGGGGAGCGACATAGCTGATCACGTCATTGACCAGGCCCGCTGCCATCAGGCTCTCTTGCAAATGCGCGCCGCCTTCAGCGTAAATGCTCTGCACGCCTTGGTCTGCCAGAATTTTTATGCTGGTCGAGATTTTTCCATCCGGCAGGGCAAAAATTTTTACCTGCTTTTGCATATCCTGCTCCAAGAAAGCCGGATTTTCCCTCAAAATCCAGGTCTCAGCCCGCTTGTCGAAAAATAAGCGTAAATCCAAGTGCTCAAGCAGCCGGCCCCGCCGGTCCAGCACAACTCTGACTGGCGGGTGAACCAGGTCCTCGCTGGTCAAAAGCAAAGGATCGTCGATGATCGCCGTTTCTGACCCGATCAAGACAGCCTGGTAACCAGCCCGTTCCTGGTGTGGTGGACCCGGGTCCAGGCCTCAGCCACAGTAATCGCGGTCCGCTCACCCTTTTTCGCCAGCATGTGGTCCAGGGTCATGGCCTGTTTCAAAGTCACGTAAGGCAGACCTGTTTGGTAAAAGTAGTTGTAGTGGTCATTCAGCTGACTTGCTTCTTTTGCTAAAAGACCAGTGCTTACTTCAAGGCCTGCCTGCCGCAAAGCAGCTATACCCTTGCCCGTTACAAGAGAGTGGGGATCGGTTGCCCCGACCACCACCCGCTTGATCCCGCTGTCAATAATCAGCTGGGTGCAGGGCGGTTGCTTGCCGTAATGGCAGCAAGGCTCTAAAGTCACGTAAATAGTGGAATTGGATAATTGTTCCGGAGTCAATTTGGAGATGGTATCACGTTTCTCTTTTCAATCAGCAATTCCATGGGAATAAAAAGCAATAGAAACGAAAAAAAGCAACGACCTAAGTCGCTGCTTTAATTACGGTCCATGCGGGATTTGAACCCGCGATCTCCTCCGTGACAGGGAGGCGAGATAGACCACTGCTCCAATGGACCATATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCGATGCACCCAGTAGGACTTGAACCTACAACCTTCTGATTCGTAGTCAGACACTCTATCCAGTTGCGCTATGGGTGCGCTGGAATATTCTGTTTGCTAACGCTACTGCGTTAAGCGGAAGACGGGATTCGAACCCGCGACCCCCACCATGGCAAGGTGATGTTCTACCACTGAACTACTTCCGCATGTTCGCTTAATGCGAGATCGGGAAGACAGGATTTGAACCTGCGACCCCCTGGTCCCAAACCAGGTGCTCTACCAAACTGAGCCACTTCCCGGTACTCCGCCTGTCAGACTCGAACTGACGACATCCTGATTAACAGTCAAGCGCTCTACCAACTGAGCTAAGGCGGAATGTTGAGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATATCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAACTTGGCCTTTCCGGCCAATGGAGGCAAACGGGATCGAACCGATGACCTCCTGCTTGCAAAGCAGGTGCTCTCCCAGCTGAGCTATGCCCCCGTAAAATATCAACTTTTAAGATGTTACTCCATCTCGGCTGAAATGCAAAGACTTTTCTTTGCATTTCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCTGAGCTACAGGCCCAAGTTCTTATTGTTGGTACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCCGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCTCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAAACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTACGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCACCCCGAAGGGATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTTAATCTTCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGACTTCTTGTCAACAAGTTTTTTGATATTTTCTTTTTTGCCTCCGCGAGACTTGTTTGTCTCACGCGGCAACAGATATTAGTATACTAGCTTTTTCTGATTCGTCAAATTTGTCATTTTATTCGGTTTATTATGTGAACACACGGCTTAGTTGTCATTTTTATTTTTTATTTCTTTTGCCTTTTGTTTAATTTTATCTGGCTTAATCTGGGAGAAGCAGTCTTTTAGTTCGCTTTTAGGTCATTTTTACCGGAAAATTTTTTCAAAAAAATGTTATTTCCCGGTAAAAAAGAAAAACCGCGGATCAAATCCACGGTTTCTTAGTTCTTGCTCTTATTTCAATCTGCTTTCTTCTTAAAGCCATTTTCCAGGTAGCTCAAGCGGCGGTCCAGGACTTGGGCCAGCTTGGCCGTATCGACGGGCCGGCCGGCTTCATAGTCTTCTGCTCCTTCAATAAGGCAGCTGATGAAGGCCAAGAGCAGGCTGTGCAGGAGAAATTTCAAGTCAGTCCGGTCCTGCAAAGCAACCTTAGCTGTCAAACCGGCAATTTCCTGAGCCGACAGGCAGGCCAGCGGGTCTTCTGCCCGCTTGGGCCGGGGCACTTGCTGGGAGTGCAGCATGTCAATCTTCCGGTAGAAGAAGGCCGCGTTTTCCCCATAGAAGATTTCATCTAGCCACTGGGGCAGGACCTTCCTGGCCAGGGCAAAAGGATCATAGCCGCAAGCAGCTAATTCTTTCCGGGCGCCTTCGATCATCCGCTGGCTGATCTGGTCACCCAGGTAAAAGTAGACGTCTTCCTTATCCGCAAAATACTGGTAAAAGCTCCCCCGGGGGATCCCCGCCGCCTTGATCAAGCGGTTGATGGAAGCTTCATCGAAGCTGTGGGTAAAAAATTCCTCCCGGGCCGCTGCCATAATCCGGTCCTGCTTTTCCTTAGGCAGGTTGAAAAAAGTCTGGCTGGGCATTTTTTACTCCTTCCGCAAAGCTTCAACTGGATCCAGCTTGGAAGCGTGGTTGGCTGGCAGGATCCCGGCGATCATGCTGATGACAATGCTGATGAGCAAGCCAGTCAAGGCGTATTGCGGGGTCAAGCTGACCACGGCCGCCTTAAAGGCTGACTTGGTTAAGCTGTTGATCCCTTGGGCCAAAAGCCAGGTCAAAGCAATGCCGACAATCCCGGAAGCCAGGCCCAGCAAAAAGGCTTCGCTGGAGAAGATCCGCCGAATGTCCTTGCGCCGGGCACCCAGGGCCTTCATGACCCCAATTTCCTGGGTTCTTTCGACTACCGAGATGTTCAAGACAACCAGGATCATGATAGCTGAAACCAAAAGGGAAACTGCCGCGATAGCCGTCAGAACGTAAGTCAAAACGCTCAAGATGCTGTCAAACATTTCCGTCATCTGCTCCTGCATTGAGCCGGCAAAGCCCTTGTCCTTGGCTGCCTGCTTGATAGAAGAAGTGTACTGCTTGTCCGTTGCCGTCAAGTAGACCACGTTTGCCTTCAAGGTCAAGCCGTTGTCTTTGAAGATTTTTGCCAAGTCGCTGTAGGGCAAAAGCAGGGTGCTGACCTGGCCGGAACCGGAAGCTTCATAGATCCCGACTACCTTGACCGTTTTGGTGATAGTCTTGGTCCCGATCTGCAAACTTGCCTTGACCTTCTTGCCTAAGATCTTCTTGCCCAAGTTGTCGGCGCTGCCGCTGTCGATCATGACCTCGTCCCTGCCAGCCTTAGGCAAGTGGCCCTTCTTGACATCTGACTTGGCGATCCCATCATTGACCGTCTTAAGGTAGATCATGCTCGCCGTCTTCTTGCCGTATTTCAGCTGGTTGGTCCCCAGGGAAATCGCACTGTAGCCCTTCTGCAGCTTTTTGACATGGGCGATCTTCTCCAGCTTCTTTAAGTCCTGCTTGCTAAAAGCCGAAGCGCTGCTGGTCCCGGACAAAGAGGCCATATTGTTTTGCTGCTTGGCCAGGGCTGCCTTGTCCCCGGTTTGCTGGGCCTGCATCCCCTGCTGGCGCATCTTCTGGCTGGAAGTCTTCTGGATTTCCGCGACCAGGGGGTTGGAGTAGGTGTTCATCTGCCCGCTGAAATAAGAGGTAACCCCCTTGCCCAGGCTGAGCATGAGGATTACGGACATGATCCCGATCCCCATCCCGGTTGAAACCAGGGCGTTGCGGCCAAACTTGGCCTTCATGTTCTTAAAAGCCAAAGAGATCGCCTTAAAGAGGATCATCTGCTGGATCTTAACTTCAGTTCTCTGCTCCAGGTGATGGTCCAGGGGCTTTTGTTCCTGGTCGCTGACGATCTGCCCCTGGTCGATCCGCAGAACCCGGCTGCAGTGGCTGGCCACCTTGTCTGAGTGGGTAACCATCAGGACCAGCTTGCCTGAAGCCGCGATGTCTCTGATCATGTTCAAAATCACGTCAGTCGTGTCCGCGTCCAGGGCCCCGGTTGGTTCATCGGCGATGATCACGTCCGGGTCATTGGCCAAAGCCCGGGCAATGGCCACCCGCTGCTTCTGCCCGCCGGACAGTTGATCGGGCTTCTTGTGCATGTGGTCCTTCAGGCCCACCTGGGTCAAGAGCTCTTCCGCCCGGCCGCGCCGCGTTTTTTCATCCGCGTTGGACAGGGTCATGGCGATTGACACGTTGTCGATCAAGTCCAGGTGGGGGATCAAGTTGAAGTTTTGAAAAATAAAACCGATTGATTTCTTATGGTAGTTAACCATTTCCTTTTGGGAAAAATCACGCAGGTTCTTCCCTTCGTATAAAATGGCCCCTTCAAAGTCAGAGTCCAGGCCCCCGATCGTGTTCATCAAGGTCGACTTGCCTGACCCAGATTCCCCGACGATGGCGACCATTTCCCCGGCGGCAAATTTCGCATTGACCCCGCGCAAGGCCTCGTACTGGCCCCCGCTTGGCATCTTGTAGTACTTTTTGACGTCTTTCAATTCAAGAACTGTCATCTATCCGTCCCTTTATGCAAAAATATGACAACTTGTCATATGACATGTTGTCATATTAATCCCTCTCCCAGCTTCTGTCAAGCAAAACAAAAAACATGACCCCGGAAAATTCCGAAGTCATGTTTTTTTCACGTTCTTAGCAGCTGGCGCCGTTTTGAATCTGTTCAGCGGTAAGTTTGCTTGGCTCGTAAACATTGACGCCAACTGCGCTGTCAATCAAGCCGCTGCCGTCGCTCAAGGACAGCATCCCGTACTGTTCGCCAACGCTCAAGCTGTCATCCAAGAAGCCCATTTCCGCCTGGCCCGTGTACAAGTCCAGACCTAAATCGTTGTCGATCTTGATTTGGTAGTCCGCGTCTGCCTGGTCCAGGGCGACGAACTGGAAGTTAGCCCCGATCGTGCAAGTCCCGCCTTGCAGTGAGTACTTGTTGGACCCGTCATTTAAAGCCAGGAGCAAGACTGCCTTGTTTCCCAGCTTTTTTTGCAAAAAATCTCTAGCTTCCGGACTAAAAGTCATTTTAACCATATTGTTACCTCCCCATAGGACTTACTTATTTTTTGATAGTTTAAGTATAGCAGGTTTTTTCTCAGAAAAATTGATCCAGGTCAATTTTCTTCCCCCTAAGGGCAGAAAAATGCTTAAGAATGTTATAATTTCCCTAAAAAGAGTGAGGAGGTGGACCACATGACTAAAGTCAAATTCAACCTGGACGACGAACTGGCCATCCTGCTTTAGGCCTACCAAGACCAAAGCGGGACAGACAGGGACGCTATCATCAACCAGGCCGTCAAACAGCTGCTGGTCAAAAAACTGGGCAAAAAGCGGATAGCCCAGCTGCTCAAGGACAGCGAAGACGGCAGCGACTACCAGCTAGAACAGTTCCTCAGCAGCTACGACTGGCTTGAATAGGCAAACAAAAAAGCCCAATTCCACCAACATTGGAATCAGGCTCACACAGTGCGTGCCAAAGCAAACCACATATTAAGGGCTGTTTTCGCTACCGGAGAAAACAGCCTAAGCATTTGACACAAGATAGATTATATACTCAAACTGGCTTTCGGACAATCTTTTCGCCCCGAAAGCTTATTTTTTTAATTTTGCCAGGACGTCTTTATTCGTCAAATCCACCGTCGGCAGCTTTTTCTTTTCCCGCCAAGTCTTGGTCAAGTAGTAGTCGTTAATCGCGTATTCCGGTTCCGCGTACTTCTGCTCCATAAAAGGCTTGACTGCCTGGTCAACGGCCAGCCAGCCGTTCCAGCCCAGGTGGATGGTGTCTTCCATGAAGTACTTCTTCTTGCCGTCCTTGGACAGGTCATAGATGTTGTCAAAGCCCTGGCTGATCAGCTGGTGCTTGATCTTAGTCGTAGCCGTGTCATACATCTTCTGTGACAAGCCAGTGTACTTCTGCCACTTGGCGTTAACTGGCGGAATAATGAAGAGGACCTGGGTCTTGTCCTTGGCGAACTGGTTCAAGAGCAGCTCGAAGTCCGAGTATTCCGGGGATTCAACATAGTTGAACTTCTTCTGGCTCCCCTTCAGTTTCTTGAGCAGCTTGGCATTCAAGCGCTTTTTGTAAAAACTAGTCCGGATCCCAAAGCGGTTGCCCTTGGTATCCTTCTTGGCTTCCTTCTCTGAGGCCTTCTTCAAGCCCTCGTAAGAGTAGGTATCCGGCAGCTTGGCCCCCTGCTGCTCAATCTTTGGCAGGCGGTCGCGCAGCTGCAGGGAAGTAAAGAACTTGTCTTCCGTGGAGTAGGTCTGCCGCCGCCAGCGGAGGTAGTAGCGCTCCTTCTTGGAGATCCCCACCTCGGCCGCGATTTCCAGCAGGGCATGGTGGATCACGTGCTCACTCTTCACGCTTGGCATTTGCAAAAGGCGGCGGGCCGCGTAGCGGTCAGCTTCCGTGTCTTTAGCGTTCAAAATAAAGTCGCTGGCATGCAGAGGCGAGTAGTAGAGGCTAAAGGCATCCGGGTTCTGCCCCTGGGGCGTGAACCATTGCGGTGAAATAATCACCACGGCCTTCTTGCTTGGCGCCTCCTGCATCCCCAGGTATTGAGCCAGGGACTGGCTGCCCGGTCCCCCAAGCAGGAAAGGCGTGTAGGAACGCTGGTACTTGGTAGCCAGGACAGTCGGGTGCATGTTGTCAAAACGCGACAGTTCACTTGACCCGTAGAAAGGCACATAGCCCTGCTTATAGTCCTTCTGCCGCATGGCCTTGCCCTTGAAGACAGTCGTGGTCTGCGAGGCGGCGGCCTGGAAAAGGCTGCCCTTTGAGAAGGTCCGCTCCCAAGGCAGGGATAAGATCCCCATCAGCAAGAGCACCGCGCAGATGACTGGCCCAAAGATCAGCCAAAGTTTTGTCTTATTCTTCATCTTGCAGTTTCTTCACCTGTTCAACCAGCTTGTTCGGGGTGTTCCAGTCGTCGCGGTTGAATTCAGAAACCGGAACGGTGATGTCGAAGGTTTCCTGCAGGGTCAAGAGCATCTGCACAGTGGTCATAGAGTCCATGATCCCGCTCTCGTAAAGTTCTTGGTCCATGTTGTCTGAGAAGTCTTCACCAGTTGCTTCAGCTAAAATGTCAACGATTTGCTTTTGAATATCCATAATTTTCCTCTTTCTTGTTAAATCTATTTCTTTAGATCTTTTTCTTTTTTCTGTTTTGTTTTCTGTTGATTTTTTAAAAAATTACTTGCCCAGCGGCACGTTGAACCACAGGTTGTTCAGGAAGCCTGAGAAGATCAAGAAGCTGAGGCAGACCACGTTGAAGGTCACGAAAATTGCCACCGCTTCAGTGAACTTGTTGTGCTTGACCAGCTTGTGCTTCTTCTTGAAGCGGAGCCAGATGTCATTGATGATGATGGCCAGGGCGTGGTAAAGACCGTAGACGATGTAGTACCAGGTCAAACCGTGCCAGACCCCCATTACCATGAAGTTGACCAGGTAGGTCACTTGCGACAAGCGGTTCCGGTTCTTGATCAAGCGCTTCTTCATTGCGAAGAAGGTGAAGCGCATGAAGATGAAGTCTCTGAACCAGGAGGACAGAGTCATGTGCCAGAGGTTCCAGAATTCCTTGATGTTGTGGGCCGCGAAAGGCTTGTTGAAGTTCATCGGCGTGTGGATGCCCATAAAGTAGGAAATCGACACGGCGAAGAGGGAGTAGCCCGCGAAGTCAAAGAACAGGTACATTGAGTAGCAGTACATGACCCCTAAAAGCCACCAGGACAGGTGCAAAGGATACATCCGCCCGGCCAGGATGGCCTGCTGCTCAAGGTATGGCAGGCAGTAGGTCCCGAAGAACCAGCCCAGGAGGAACTTGTACAAGAAGCCCTGGAAGAGGTATCTGACCGCGTAAGAGAGGTCCTTAATGTAGTCTTCCCGGCTCGGTGCCTTGTCATAGTCCTTGACGAAGCGGCGGTAGCGGTCGATCGGGCCGCTGGAGATGGTCGGGAAAAACAAGAGGAAGCGGGCGTATATGACCGGATCCACCTGCTTGATCGTCCCGTCGCGCAGCTCCATGACCACCTGGACCGTCTTGAAGGTCAGGTAGGAAATCCCTAAGAAGCCGAAGTCGATCCCCTGCTTGTGGGGCACGATCGGCCAGATTTTTACCCCGACCAAAGGCAGGATAGCCAGGATCACGGCCAGGCAGAAGACCCAGGTCTTATTGGCCTTCCCTGTCTTCTTCCGGTAGTGCTGGTAGGCAAAAGTCACCAGGAACTGGTAGACGATATAGCAGATCAAGGTTACCCCTTGCTGCCACTTGTCCGCGTCGAAGATGAGGAAGATGAAAGCCAGGGAGACCAGGGCTTCGTACCACTTGTAGCGCTTGCCGAAGTAAAGGCCGATGATCAAAGGCAAAAGCGCGATCACCAGGTAGACAAAGTACTGCGGGTTTTCATATGGTTGCAGATTTATCACGCCTGGTTAACCTCCTTGATGACCGCCTTGATGTCGACCTTCCCGTTCTGGGAGATCGGCAGGGCGTCTTGGTAAAGGTAGCGCTGCGGGATCATGTACGGCATCACGTCCTTGGTCAGGCCGTCTCTGATCTGCTTAGTAATGGTCCCTTCATCGAACTTGCGGCTGACCCCGTCGTTTAACTCAACCACGGCTACCAATTGCTTGATCGTGTGGTCAGGCTTGTAGATCGGGGCAGCAACCGCGTGGCGGACCAGCGGATTCTGGTTCATGTAGAAGTTGATTTCTTCCAGCTCGATCCGGTAGCCGTTGAACTTGATCTGGAAACCGATCCGGCCCTTGTAGAAGAGCAGGTCCCCGTCAAAGTAGCCCACGTCCCCGGTCCGGTAGTGCTGAACGCCGTCTTCCTGGTAAAAGGCTTCTTCGGTCTTTTCCGGGTTATTGATGTAGGCCTTGGAAACTGACGGGCCGGCGATGATCATTTCCCCGCTCTTGCCGTCATCGCCCTGGCTGAGGTCAATGGTGATTTCCGTATCTTCCTTGACATAGCCGATTGGCAGGCGGTCATATTTTTCCAGAATTTCCGGGGTGATCTCCACTTGCGTGACTGCCACGGTCGCTTCCGTTGGCCCGTAGGTATTAAAAATCCGGCTGTCCGGGAAGCGCTTCTTGAGCATTTCAACTTCCTTGCGGGGCAGTTCTTCTCCGCAGAAGAGGAAGTGGCTGAGGCTGGCGTGGTGGTCTGCGTCAAAAGTCCGGTCCAGGAAGCACATTTGGGCAAAGGACGGAGTTGACACCCAGACATTTACGTCGGTTTCCGGCAAGGCCTTGAAGAGCTGGGCAAAGTTTTCCGTCACTTCGTGAGGCAAAACAACCAGTTCCCCGCCGCTCAACAGGGCCGGGTAGATGCTCATGACTGACAGGTCAAATGAGTAAGGAGCCTGGGCCAAAAAGCGCGGATGGTCCGGCAGGTCAAAGTCCTTCAGTTCCCAGTCAACGAAGCTAACCAGGTTGTCGTGGCTGATCTGGACCCCCTTAGGCTTACCGGTCGTCCCGGAAGTACAAATGATGTAGAAGTTTTCATCGCCCTTGACGTAGTCAGCTTCATCCGCTGTCCCCTCTTCCGGAACGTCGTCCGGCTTAAGCAGGGTCAAGTCGCCCAGGTCGACTTCCGGCAAGTCACTGATGGCGATCAAGACCGGGGAGGCAGAGACTTCTCTGACCAGGTCGATTCTTTCAGCGTTAGAATAGTCGGCGATTGGCACGTAGCAGTGCCCGCTCTTTACACAACCTAAGAAGCAAGCCAGCATGTCAAAAGTCTGCCCGCCCCAAATCATAACGGGTACCTTGGCCGGTGCTTTTTCCTTTAACAAGGCTGCCCAGCTGTTAGCCCGCTTGATCAAGTCAGCGTAGGTGTTCTTTTGACCCAGGTAGTCGTAAACTACCCGGTCTGGTTCTCTTTGCGCGATCTCATCGATCGTCTTGACAATATTTCTCATTTCCACTCAACTCCCCTAAAATTCATTGTAAATAAAGCCAGTTGAACCCAAGCCACAATATTCATACAAATAAATCAAGCCTAATAAAATGAGGCTGTAAAGCAGGGTTCGCAGGATAAAAGACCGGATGACCTTCCCCCGGCTGACTGGTGTCTTGTTTTCCATTAAGCTCATCTCCTCTTCTTTTCACCAGAGTCTGCTATCCCAACAGAATGAAACAACACAACTTACTTTTTGATTACAGTCAACTGTAACACATAATTCATCGTTCACAGTCTTCAGTCTTCTGACATTTTACCATTTCTTAACGTATTAAAAAACACAAAAAACTAGTCCTTAACCTTATATTTTTGCAAAAAACTACTTCAATCCGGCCTTACGCTCCTGGCTGTAGCAGAACAAAAGCGGAATTGAAGGCAGGAAGCCGACGAAGAACATCGCGATCAAGCTCATCCGCAAAACGTAGCTTGGGGACTGCCACTTGTCCAGCTTGGCGGTCGCCAGCACGTAGGCAGCGTACAAAACGACCAGGGCCAGGCCCCACAAGAAGCTGGCGTAATGAGTGATCTGGTAGAGGTAGAGCAGGCCGCTGGCCGGGATCAGGCAGGACCAGCCGGAAATCTGCACGTCGATGATGATTTTCTTAGCAAGTTGGCTATCCATTTTTTATTGTCTCCTTTATTTGATATTCGCTATTTATCAGTTATTGTCCAGCAGGGCGTTGATATTGACCGACAGGGTCCGGTCCATGACCGTGATATCCTGGCGGGCATACTGGCTGGAGGCCGATTCAAAGAGGCAGAGCAGCTGGCCCCTATAGACTGTGATCTGCTCTAAGTAAGGCGGCATCCTGACCACCTGCTCGGCATTTGACTCGTCGAGGTTGTTCACGGCCGTGATCGGGGAGATGTAGAGCTTGGAATCCTGGCTGCCATATGACTGGCTGAGGAAAATTTTGTCCCCGTAGATGGCCAGGCCCTGGATCTGCTTGTTCATACTGGTCGTCCCGTCCGGGTCAGACCAGGAAACGGACTCATTGATACTGGAAATCTCACTGGTGGTGATGGTGTTTTTGTACTGGCCGGACCGGGCCAGCTTGTAGCTGGCGACCTTGCCATGGCCATTTTCATTGAAGTAGCCGACAAAGAGCTGGTCATCGTAATAAGTCAGAGCTGAGGCCTTGGCGATCGAGTTGATCGGAATCTCATGATCATAAACCAGCTGGTCGCTGGTCTTGGCGCTGGCCACGTATTCGATCAATTTGGCCAAGGAGAAGGACATCAAGGCTGACTGCCCGTCCTTTGACCCGGTCAGCCAGATCTGCATCCCCTTAGGGTCGTAAGCAATCCCGCCCAGGTGCTGCCGGCCTGGCAAGCGGACCGTTTTCAAAAATTTCCCCGTCTTTTTGTCTAAAACATAAATGACCGAGGCATGCCGGTGCTGGCCGTCATAGGCCGTGATCAAAAGATAATTGTAGACTACGGCGATCCCCTGGGGGGTCATGGCGCTGGCTGAAGTAATCTTTTTCGCCTGGTAGTCATAGCTCCGCATCGAAATAAGGCCCGGGATGACCACGTCCTGGCCCACCGTCGTCCTTTTCGGGGTATGGTAGGCGGCCTGATAGACGAAGCTGTAATTGTCCCGGATCGCCTTCCGGTAGGCTGTCAGCTTGTGCCAGGCCGGGCTGGTGCTGGTTCCGTCCTTGGCCTTGGTCAGCTTGGGCCGGGCCGCCAGCATGGCCTGCTTCATCTGCCACTGGCTGTAAGCCGGATAGGCCCAGTAATAGCCACAGGCTGACAGGCCCGCCAGCAGGATTAGGTTAAAAATCAGCAGGCGCAGCTTCCGGTGAAAATGGTGCTTCTTTCGGCTGACTAGTTTCTTTCCGCTTTTTCTGTCTTTTTTGCCCATTGGCCCTCCTTCCGGCCTTTTTTCTGCAATTTTTCCCCTAAAAAAGAAAATTCCCCTCTATCTTAACAAGCCCGGCCAGGGGCGAAGCAATTTTTTCGGCTTTTTTTGAATTTTTTCGCTAAATTTCATACTTTGTTCACATTTCCAGTATAATATAATGACCGTAGCAAGCGAGAGCTTGTTACTACACTCAACTTTTTGTTTTTCATTCATACTCCTCCAAAGTAAATGAAAAATATCGACTGACTCCATAGTCGATTCATATCTATCCCTTTCGGCTCACGTGCGTTGCGTGAGCTTTTTTGTTGCTTGAAGAGGCCTTTTTCGGTCTTTATAGATCCGCAAGCAATTCTTTACTCTTTGTTAAGGAATTCCAAACCCTTTATTGAGAATTACCCTGTATGATAAACATGTAACGAGCTGGTAGAACTCGTTACAAGTACTCCCACTTTTTTTATTTCATTCATTCTTACTCCTCCAAAGTAGATGAAAACCAATTAGGCCTGCGCGAGCAGGCCTTTTCTTTTTTTCTTTTTCCAAAATAGTTTTATACGCGTGGTGCTACTTGAAGAAGCTGAATCCATATCTCTGTAGGATGTAGCTGATATTGTAAGTTAGTACAATTATCTCGACAGTTTGTTGGAAACCATCTACACTTCTTGCAAGTATATTTTCAATTCCGTAGTACTTTAGTACAGAAAACACACTCTCGATTGTTCTGCGAATTGCCATTAGCTCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGGACATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAAACGAATAAGGCTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGCTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGCTTTGAACGTAGGCCAGCCGTTGCGGGTACTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTTGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCCAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTGTTATGCTGCTTAGCACCCTTCATATTTTTCCGATAAGGTGTCCACAGTATATAACCGTCTATCTTGAGGGCATCATGCAGTCGTTCGCCTATATAACCTTCATCGCCTAAGATAAAGTGCCCTTCGGGACGGGTACTGAGAATCAGCTCTTCTGCTTCTTTTGCATCGTGGATTGATGCCTTGGTGATTACATAGCCAAGAACATACCCGTCTTTAGATACGGCAAAATGGCCTTTAAAACCGTAGTAGTAAAACTTTTTGGTTGAGTTATAGCCAATGTTGGCTGTTCCTTCAAATACCTTAGCTCTGCGGTTTCTAATTGGCTGACACAAAGGCATGGGTAGACTGTCAATGATCATATACTGATCGGACAGATCGACTCTTGACTTCAGATCGTTGACGATCTGAGCAGTGATGCCGAGAAGCGCTCTAGCCCTGCGATTAAAACGAGACCTAGAAAGACCACAAAGTCCCCAGCAACGGGCAAATCTGCGCTGAGAAGATATACCTTCCTCAGATTGCCAGACAAGTAATGCAATGATTTCGTAGTCTGGAACCTTTACCAGACTGGCATTGCGGCGGTGAGTTAACCGAGATGGGGCGTACTTGTAATAAAGTTTCTTGCAGATTTTCGACAAAGTTCTAAATCTACTTCAACTAACACCACGCGTAGTTTTATACTTAAATTATGTCAAAACAAAAATCAGCATAGAAAAAATATAAGGAATTAGGTTGATGATTTCAGCAGCTATTCAACGCGTTCTCGCGGAAAAGTCCGGCTCCTTTTTGATCCCGGCCAGCAAGATTGCCATCGTTGAAGAAGACAATCCCCTTTACCATGCCTTCTTGATCTTAACCAAGGTCAAGTACGCCAAGATACTCGTCTTGAACAAGCAGGGCCAGATCACGGGCCTTTTGAGCCTGGCCATGATCACCGACAAGATGCTGGACCTGGATGGCATTTCCGTTAAGCCTTTGAACAAGTACCAGGTCAAGGATGTCATGGAGACTGACTTCGTTTCCATCAACTTTACGGAAAAAGACATCGAGACCCAGCTCCACCTGCTCGTTGACAACAACTTCCTCCCCGTTGTCGACGACCAGGGGGGCTTTCAAGGGATGATCACCAGGCGGGAATGGTTCAAGGCCTTCAACTACCTGGCCCGCACTTTTGACGACCACTATGTCACGGTTGACAAGAAGCAGGTCCTTAAATTAGAAGCGGAGAATTAGCAATTACAATCATAAGCATTTTCAGTGTAAGAAATCCAATTGGTGCTAGAATATATTTAGTAATCTATATTGTCTTTTAAGATAAAAAGTGCTTGTCCACACTCCTTATTTTTACTATTGGGAGGACTATTCATGAAACGCCAATGGAAATTCATTGTCGTCCTGGTTCTCGGGGCGATTGGGCTGATCACTGACAATGTCCTGCATATTCCGGGAATCGCGGAGGTCTTGTTCGACATTGCTGGTGCCTACATCAGCTTCTCCTTAGGCAAGGAAATGTTTGGGGACTTGAAAGAAGGGCACTGGGGCATCGACGTCCTGGCCCTGATCGCGGTCATCTCCATGATGATTACCCGGGACTACTGGGCTGAATGGATGATCCTGGTCATGTCTACTGGTGGCGAAAGCCTGGAAGACTACGCGACCGGCCAGGCCAACCGGGAACTGCGGGCCCTTTTGGACAAGAACCCGCGGGTAGCCGGCAAGCTGGTTGACGGCAAGGTAGTTGAAGTCAAGGTTGACGACCTGCAGATCGGCGACCAGGTCTTAATCAAGCCAGGTCAGCAGGTGCCAGTAGACGGGACCATCATTGAAGGCAGCTCTGTCTTTGACCAGTCATCTCTGACCGGGGAATCAGTTCCGGTGGACAAGACGGTCGGCGACGACTTGATGTCCGGTTCCCTTAACGGGGAAACCGCCGTAACCATGGAAGTCAAGAAGCTGGCCAAGGACTCTGAATACCAGACCATCGTTGAACTGGTTAAGTCTTCTGCTGCCCAGCCGGCCAAGTTCGTCAAGATGGCGGACCGCTACGCCGTGCCATTTACCATTATTTCATTAATTATCGGGATCGCTGCCTGGGTGACGACCGGGAACTTCACCCGCTTCGCGGAAGTCATGGTCGTTGCCTCCCCATGTCCGCTCTTGATCGCCGCTCCAGTTGCCCTGGTAGCGGGGATGAGCTCCATGTCCAAGCACCACATCATCGTCAAGTCCGGTTCAACCTTGGAACAATTAGCCAAGGCCAAGACTTTTGCCTTCGACAAGACTGGTACTTTGACCCAGAACCAATTGGTCATCCAAGACGTTCTGCCGGAAAACGGCTTTGACAAAGAAACCATCCAAAGCTACGCGGCCAGCCTTGAGCAGCAATCCGACCACATCATCGCCAACTCCCTGGTTCAAGGGACTGACAAGAACTTGATCCAAGCCGTAAGCAACCTGCAGGAATCAACTGGTAACGGGGTCAGCGGGACCGTTGACGGCAAGAACGTCATGGTCGGCAAGCTTTCCTACGTGGCGCCTGACGCTAACGTAAACAAGGCCAAGACTACTGCTGTCTACGTTTCAGTTGACGGCAAGTACGCCGGCTGCATCACCTTCAAGGACCGGCTGCGGCCAGAAACTCCGCAAACTTTGGCCCGCCTGCGCAAACAAGGCGCAAAGCACATCATGATGCTGACCGGGGACAACAAGGACGTGGCCCAGGCGATCGCTGACGTGGCCGGCGTCGATGACGTCCGGGCCAGCCTTTTACCAGCCCAGAAGATTGAAGCCATCAAGAACGTGGCGCCTGAAAACCGCCCAGTCGTCATGACCGGGGACGGGATCAACGACGCGCCAAGCTTGACGGCCGCTGACGTCGGCATTGCCATGGGAGCCAAGGGGGCTAGCGCGGCCAGCGAAAGTGCTGACGCGGTCATCATGGTCAACGACTTGAGCAAGATCAACGATGCCGTGGCCATTGCCAAGCACACCATGAAGGTGGCTGAAATCGACATTATCACTGCCATCGTGGTCGTTATCATTCTGGAACTGGTGGCCTTCACTGGTCTTATTCCGGCCTTCTGGGGCGCTGTTTTGCAGGAAGTGGTTGACATGATCACCATCTGCCTGGCCCTTTTGGCTAAGACCGAACCGAAGAATCCAAAACAGACCGGTTTATAAAATTTGTCTTTTCTCTAATTTCTTGCTAAAGTATTATTAGTTAACATGACATTTTTCAGAGGTTGGAGTTTCAAAACTTTCAAGAAAAAGCTTCTTTGGGTCAAGAAGCTTTTTCTTGGGAGTTTTTTGCTTTCCAGCCCTTTTTTGAAACGGAGGTCAATATGAAATTTATTGGACAACTGATACTGGTCTTGCTGATGACAACCCTGCTGGGGCAAGTCTTTGCCCGCTTCAACTGGCCCCCGGTCATTGGCCAGCTCTTATCGGGGATCCTGCTGGGACCGGCTCTTTTGGGCTGGATCCACCCTAACGAAACGATGACTCTCTTCTCCGACATCGGGGTTATCATGCTGATGTTTTTAGCCGGGATGGAAAGCGACCTGGACTTGCTGAAGAAGTACTTTAAAATCAGCTTCACGGTGGCCACGGTCGGGGTTATCCTCCCTATCCTCTTTATTGGCGGGGCCTCCCTGCTCTTTGGGATGCAGTTCCTGGAAGCCCTCTTCATCGGGATCGTCTTCGCGGCCACCAGCGTCTCCATTTCCGTGGAAGTCCTGCGGGCGACCGGGAAGCTGCAAACCAAGGCCGGGACGGCAATTTTGGGGGCAGCGGTAGTCGACGACATTTTGGCGGTGATCGTCCTCAGCCTCTTCACCACCTTCAGCCATGAAGGCGGCAAGTCAGGACTGACCAACAACTTCTTCCTGAACCTGCTCTTTGAAGCCCTCTACTTCGTCTTCGTCTGGCTGGTTTCCAAGTTCATCGCGCCAAAGTTCATGCAGCTGGCGGAAAAAATCAATGTCAGCTACTCTGTGGTCATCGCCTCTTTGATCCTGTCTTTGGGCATGGCCTACATCGCTGAATTAGTCGGCTTGAGTGCCGTGGTCGGGGCCTTCTTCGGCGGCCTGGCCATCCGGCAGACCAAGCAGGAAGCAGAAGTCAATTCCTCAGTCTCCGCGATCGGCTACTCAGTCTTTATTCCAACCTTCTTCGTCAACATCGGCCTGTCGATGACTTTTGCCTCCATCGGCCAGGACTTCCTCTTCATCGTGGTCATGACAGTTCTGGGCGTTCTGTCCAAGTACTGGGCCGGCAAATACTCATCAAAAATCTTCGGCCTTAAGCCGCTGGAAGGCAGCATTGTCGGGGCCGGGATGGTTTCCCGGGGGGAAGTGGCCTTGATCGTGGCCCAGATCGGGATTGCCCACCACCTTTTCCCAAAGTACATTTACTCCAGCTTGATTCTGGTCATCATCTTGACGACAGTTCTCTCACCAATCATGCTCAACCACTACATCAGAAAAGACGAAGCGCAAAACTAAAAAGCAGCGAAGCCAAGCTTCGCTGCTTTTCGTATATCCAAACAGATTTCTCTTTTTCTCTTTTTGTTGTATTCTTGTATTTTTCCTTTTGGCCTAGCCTAAAATGCTGAGCATATTCCACATGATGTGGGTGGCCATGGAGTAGCGCAGGTCCTTGGTGGTCATGTAGACCCAGGCCAGGACTGACCCCATCATCCAGTAAACCAGGAGATATGGTGACCAGAAGGGATTGTGGGCAAAGGCAAAGAAGAAACCGGAAACCAGGATCCCCGCCCACTTGGCGACCTTGCCGGCATGGTTAAAGAGGAGGTTGAAGAACATCCCTCTGAAGATGATTTCCTCCATAACCGGGGCAACTAAGACCACCATGATATTGTAGGTCGGGCCCGCCGTGTGCTGTAGGTCATCCAGTTTCTGCTGGTTGACTGAGACCCCGCCGCCGATCAAGTTCATCAAGAGGATGTAGAGCAGCTGCATCAAGAAGAAGCCCCCGACTGCAGTGGCCAGCTTCCGCCAATCCCAGTGGAAGTCCTGGCTGAAGCCCCAGTCATTGTCATCATCCAGCTGCCCCTTATAGAGCCAGAAGCTGAACCAGAAGACCAGGACGGTCGAGAGGGCCAGGATGAAAGCCTCAGCCGACCCGAAGCCAAAGATGTCCGGGTAGAAGTAAAACTCCTGCAGGGTCGTGTACAGCGCGAACACGATTGCGATTTCGATCAAGTAAAAGAGATAATGCCCAATTTTTTTCACGTTTGTCACCTTGTTGTCTCAAAAAATTCTTATCCTCTATTATAATAAAGTTTGACCAATTTTCTAAACGATATGGACTAGGACCTAAAAAAATGCCATCCGGATTAAACACACTGCTATTTCTATTCAGCCAGAACCGGGCCTTCAGCTACTTTACCATTTTGGTGGCGATTGCCGCGGTAACCTTCATTTTTTCCTGGCTGAGCGACCCGCGCCACTTGATCAACGGGGTCTTTTTCACCTTTTTCATCGCTTCGCTGGGGGCCTGGTTCACCTTCCTGGTCTATGCCACCAACCTGCCCAGCTTCCGCAAGGTCTACCTCTGGGCCCTGGCGATCCTGGCAGTAACCGTGGCCGTCATCGTCTCCTTCTCCTGGATCCTGCTTTTATGGAACTCCTATGTGGTCTTGAAGCATGAGAGCCATACCCTGCCCAACCTCCTGACCTTGATCCTGGCCGGGGCCATGCTGGGCCTCTGGGTCTTCATTTTCATCGGCCACTTCACCCGCAGCACGCCGACCGGCCTGCGCCTCATCCTGGACATTTTCCCGACGGTCGCGGTCTACCTGGCAGCCGTCATGTACAACTTCCTGGTCAACCTCCTGCTCTACCAGATCGTTCCCCGCCGCTACCAGCAGAACTACCTGATCGTTTTGGGAGCGGGCCTAATCCATGGGGACCAGATTTCTAACATCCAGGCGGCCAGAATCAACCGGGCCATCCAGTTTGCCTACCACCAGCAGGAAAAGGGCCAGCCCTTGCCCAAGTTCATCATGTCCGGCGGCCAGGGGCCGAATGAAAAAATTTCTGAAGCGGCAGCCATGGCCGCTTACGCCATCAAGCGGGGGGTCCCGAAGGAACTGATCCTGCTGGAAGACCAGTCCAGAAATACCGAGCAGAACATGGAATTTTCCCAGATTGTGGCCTACAACGACTATGGCAATGACAACTTCAAGGCTTGCTTCTTTACCAGCAACTACCACGTCTTCCGGTCAGCCATCTACGCGAAAAGGGCGGGGCTGGATGCCAACGGGATCGGCTCTTACACCCGCCCTTACTACCTGCCCAACGCGGTTTTGCGGGAATTCGCCGGCATGTTCGTCATGAACCGCCTCCGCCACTTCACCGTGATAGCCTTGATCGTGGCCGGCTACATCGCCTTGGCAATTTGCAAACTACTAAATGTCTTTTAACTTTTTTAAAATTACCTGGAAAATCCGGGTAATTTTTTGTTTTTTTCTAGTATGCCCTTCCCGCTTAGAACCATATATCTTGAGGGGTTTTTGTCAAAAACGAGAACCCCGTCAAATCAACACTCTATCTTGTGGGTGACCTTTTGACACGACTACCAAATATTGATAAGATCGTAATCGTGTTAATTTTAAGGGGTATTTTATCGTGAAGAAAATCAAATTCAAGAAAGTTTTGGCTACTGGTACTGTTTTAGCAGCGGGGATTGCCATGACTGCCTGCTCAGGGGCCAAGCAAAACGGCGGCGGCTCCAACAAGAAGAGCTCAGCCAGCGTGGCCTTGATCACTGACACCGCCGGGGTTGACGACCACTCCTTCAACCAGTCCGGCTGGGAAGGGATGGTGGCTTACGGCAAGTCCCAGGGCTTAAAGCGGGGGACCAACGGCTACCAATACTTCGCCTCAAGTTCAGCTTCTGACTTTACGCCAAACATCAACCAGGCGGTTGCGGCCGGCTACAAGACCATTTTCGGCGTTGGCTACTCACTTAAGGGCGCGATTGCTTCAGCAGCCAAGAAGCACACTGACAAGAACTTCGTCATCATTGACGACGTGATCAAGGGGCAAAAGAACGTGGCTTCCGCCAACTTCAAGTCCCAGGATGCTTCCTACATGGCCGGGGTAGTTGCAGCCCGGACCACCAAGACCAATGTGGTTGGCTTCATTGGCGGTGTTCACGGGGACATCGTCGACTTGTTTGATGCTGGTTTTGCCAAGGGCGTGCAGGACACGGCCAAGAAGATGGGCAAGAAGATCACGATTTTGAACCAATACGTCGGCTCATTTACGGCTGCTGACAAGGAAAAGTCAATCGCCAAGGCTATGTTTGCCAAGAAGGCGGACGTAATCTTCCACGCTTCAGGTTCAGCCGGCCAAGGCTTGTTCAGTGAAGCCAAGTCCGTCAACGAAGGCCTGGCTGCCAACTCCAGCAAGAAGGTCTGGGTCATCGGGGTCGACTCTGACCAGTCCAACCTGGGCAAGTACAAGTCCAAGGACGGCAAGAAGTCCAACCTCTGCCTGACTAGCGTAATGACCGGGGTCAACGTGGCAGTCAAGGACATCGCTACCAAGGCAGCCAAGGGCAAGTTCCCAGGCGGCAAGCAGCTGGTTTACGGCTTGAAGAACAACGGTGTCTACCTGACCCGGGGCTACGTGGCTGACTCAATTTGGAAGCAGGCACAAACTGCCCGCAGCCAGATTCTGTCCGGCAAGATTTCCGTACCAAGCCACCCAAGCAAATAAGTAAACAAAACAAAAATCTCTGAGCAGGAGCTCAGAGATTTTTTGCGTATCAGGCGTTTTTTCGGCTTTAACGGCCCAAGAGACCAGGAGCAGGCCAGCAAGAAACATTGCTTCTGGCAGCAGCATGCTGGATAAGTCAAAAGCAGCATCCCGCAAAAAGTAGAAGGCCATCAAGGCACTGATAATCAAGACGGCCGCGAAATCGTGCCAATCTTCGCTGGTGAAAGCTTGCCAGTCCTTTTTGACAAACATCATGACCAGGCCAGCAAGACCCAGCAGCAAATAGAGAACCGCAATCACAAAAAGTACCAACGCCGTTTCAAACACCTTTCTGACCAGCATCCCTTCAACCAAGAGCAGACTCCCGCTTGCCAGAAAAATCACTGTCAATTTCCGCCAGCTGAAGGTCACCGGCAACTGCTTAAAGCCGCTCAGCAGCATCCCGCAGCCGATCAACAAATTTACCAAAAACAAGCTATTCATTGCTTTCCTCCTCCAACAACTAATATCCGCCATCCTGCTCTATTATTCTTCTTCGTTCAAGCTCTGGTAGCCGTAATTTGCCAGCTGCTGGTCAGTATCGATCACCGACATCCCCCTAACCAAACAGTAGATCAAGACCGCGTCCCGTTTTACGTTGGCGTAAAGGGCCCCGTTATCGCTTAAAGACAGAAGGCGGTTGGTTTCAGCCAGAGATAATTTCAAGCTGAGGGCCAGGGACAAAACCTTATTCCTTGCTGGCAGGCGCCGCCCCTTCAAAATTTGATAGCCATAGCTGCGTTCGATCATAGCCTCGTTGAAAAGCTCGCTTTTCTTGCCCCCCTTATCTTCGATCAGCTTGTTCAAGTAGCCGGCAAAATTGTAATCAGCCACTTGATCTAGTACATTAGAAATATGATCTGCTTTCAAAGCAGCGAGTAATTTTTCAGTTTCCATTTTTACCCCCATTGTTACCATTATGGCAGAAAGATTTTATAGATGAAGCAAGGAAAAATAAGCGATTACGTTAATCCCGTCCCCATTAAAATAACGGACGACAAGGCAATTTTCAAAGTTGAAAAGCTGGTCCCGACCCCTTACATCGAGCGAGTCCTTCCTTTAGAGTACGCTCCTTTATATGAACAGCTGGCTGAGCTGGACACCGCGATTCCCAAGATTGTCTGCCTGGAAAAAAGCGACCGCCTGACCGTCATCGAAGAATACATCGACTCTCCCCGTCTCGACCAGTACTTAGAGACCCACAAGCTCACTTCTGCCCAGATCAACGACTTAATCTGCCAGCTGCTGGACATCCTCGCGGTCCTGCACCAGCAGACACCGCCGATCATTCACCGGGACATCAAGCCGGAGAATTTTTTTATGATGGCCAAAAGCTGATCCTGGCCGACTTCGATATCGCCCGGAACATGCAGGAAGACGCTGACCGCGACACCCGCATCCTGGGGTCAGTGGGCTACGCGGCCCCGGAACAGTTCGGCTTCAGCCAGAGCGGGCCAGCCAGTGACTTCTATGCAGTCGGGGTGCTGATGAACGTCCTTTATACTGGCTACCTGCCCAGCGTCCGCCTTTATAAAGGACCAGAACGGGAAATCATTGAAAAAGCTACCCACATCAACAGCCAGAAACGCTACCAAAGTGCCCAGGAATTCAAGGATGCGATTACTGGCTTAGGCCGGTCCAGCTGGCTTTTGCCAGGCTTCCGCAGCCATCAGCCCGCCCGCATGCTTACAGCCGGTTGCGGCTACTTATTGATGCTGTTTAGTTCCTTTAGTATGGACGCCAAGAGCGACTCAGCGGCTGACAGTTTCCTGCTCCGCCTGTCCTTTTTCATGGTTCTTTTCTTGATCGTCCTTTTTGCCTGCAACTACCGCAATATCAAGAGCATGTGCCTTTTCCATTCATCCAAGTCCAAATTTACCCGGGCCTGCGGGATCATCATCAGCTACCTGCTCGTGGCCACGGTTTTGACCACGGCTTTAGCCGCTTTATCGGTAGCGATTTCATCTTTTGGCCATTAGTGGGCTGCCTGCCCACCAATTCTTCTCTTTAAAAGTCTACACTTAAACTGGATGCTGACCCATGCAAGATGGTGAATTTTTTAGCTAAGAATTCTGCTTGAGCCGCCTTAGGCAAAAATGTAGTGTGTGCAAGCAGACTTTCAGCTTTCAGCATCAATTAAGTCACTTGTTTAAGGAGAGGATAAGATGAAAGTAGTTGGAATTCTGTTAATCATTTTAGGCGTTATTGGTATTGCCATTGGACTGATGATGTTCGGTGATATTGGCGTAGCATGTATTGTCGGCGCTCTTGCCGCCCTGCTGTCGGGATTCGGCTTCTTAAGCGTTAACAACAAGCTGAATAGTTCTGAGTCTTAAAGCCGGGGGGATCTTGCCATGAAGTCCAATAAAAAGCCATTTTATAAGCAATGGTGGGCTGTAACCATCGCCTTCATTTTCGTGTTTTTTGTCGGCTACATCTTCGGCTCTGCCGCTTCTTCGAGTGACGACTCCAATGACGAAGCCTCTGTAGCCAGTTCATCAAAGAGTTCTTCTAAGAGCACTACTGACGACAAGTCTTCTGGGAAAAAACAATGCTAAGAAAACTTTGGACGACAAGTCTTCTGGGAAAAACAATGCTAAGAAAACTTTGACTGTCAGCTATAAAAATTACGAAATTTCTTCAGAAAAGACCTTTAAGCCGAACTATACGAATAACAGCTGGGCCGGCGGCAGCGTATCTGTCGACAGCATTACTTTGTACAAGACAGCCAAGGCCTACAATTATGATAGTGCCAACGATGGCAAATTCACTATTCAAGGTTTCATGCAGATTCATTACGTAATTAAGACCAAAGCTGATGTTTCAGTTTACCCGACTCAAGGAACATATATCTACTCCAATGGTGAACAGCACGGAGCAGATTCCACTGAAAGTTGGGATGGCGATATTTCTAAGAACGTAACAAAGCAAGGAACGGTAACTGTCCCAGTCGAAAAGATTTCAAGCGTCAACAGTGTTCGCGTAAAATTTGACGCGAGTGGCCAAGACTTTAGTGATGATTCTTTAGACCACGATTTTGATTTCACTATCACTTTGTCCTAACAGACAGCTTGATCTTTAAGAAATTTGGTTGGCGAAGCAAAGACTTCTGCCAAAACGCTGCAGCTGCAATACAAAACCTCAATTTGGAACGACAATACGGTTAAATTCAAGCTCAAATAAACCGCGAAAGCAAAGCCTGCGAGAGCCAGGTTTTGCTTTTTTTGTTAACCGCTGTCAAAAAACAGTTCGGAATTTCGCTTATATTGTTGCTTTTTTCTGTTTTTACACTATAATAAACCGAGATAAAAATAAACATCTTTTTTGCGATTGTCACACAAACATTCGTGTTGCAACGGAGGAAATCACGTGTCTGTTTCTAAATTTAAAAAGTTAGCAACCATCGCTACTGCTGCTGTTTCAGTTTCAGTTCTGTTGACTGCCTGCCAAGGCAAGAAGTCATCATCTTCAACTAGTACTAAGACCACCAAGCACAGCATCGCGCTTATCACTGACAACAACGCCATTGACGACCACTCCTTCAACGAAGCTGCCTGGAATGGTTTCAAAGCCTTCGGTAAGAAGCACGGCCTGAAGCAAGGCAAGGGTGGCTACCAATACTTTGAATCTTCATCAGCCGCCGACTTTACTCCTAACGCCAACGAAGCTGCCAGCTCCGGCTTTGAAACCATCTTCGGTGTCGGCTACCAACTGACCAGCGCTATCAAGTCCGCTGCCAAGAAGAACCCTAAGAAGAACTTCGTGATCATCGACGACGTGATCAGCGGCCAAAAGAACGTTGCTTCAGTTACCTTCGAAAGCAACCAGGCATCATACCTTGCAGGTATTGCTGCTGCTTACACTACCAAGACCAACCACGTAGGTTACATCGGTGGTGCCAAGTCAGCTACCCTGGAACTGTTCGAAGCCGGCTTTAAGCAAGGTGTTGAAGCAGGTGCCAAGGCTTTGGGCAAGAAGATCAAGATTGACGACCAATACATCGGTAACTTCACTTCAACTGACAAGGCTAAGTCAATCGCTCAATCAATGTACGCCAGCGGCGCGGACATCATCTACCACGCAGCCGGCAACGCTGGTAACGGGGTCTTCACTGAAGCCAAGGACATCAACAAGAACCGCAAGGCTTCCAAGAAGGTTTGGGTCATCGGTGTTGACGTTGACCAATCAAGCCTGGGTAGCTACACTTCCAAGGACGGCAAGAAGAGCAACTTCGTTCTGACTTCAGTTCTGAAGGGTCTGGACGTTGCTGTTGAACGTATCGCTGAAAAGGCATACCAAGGCAAGTTCCCAGGCGGCAAGCACTTTGTCTACACTCTTGAAGGCAACGGTGTTTCTGTAACCAAGGGCAACATCGACTCCAAGACTTGGAGCAAGGTTCAAGCAGCCCGCAAGCAAATCTTGAACGACAAGGTTAAGGTTGCTGAAAGCGTAAGCGACTTGAAGTAATCTCAAACAACAGATTTTTTTAAGAGGCACTCATCATTCGATGGGTGCCTTTTTTCTTCGCCTTAGCGTTATAACTATATTAAGACAGCGCTTTTATAAAAAGGCGATAATCATGCTCAAAAAACTACGTAACTCACTATTTGCTTTAACTGCCCTACTGAGTTTTACGGCTTTAGCGGCAACCCCAAACACAGTTTCAACAGCAAGTTCAGCAAAATACACGCCCAAATATGTCAAACGACAAGTCGTACTGCAGTTAAACTGCAACAGCTATGTATATGACCGTTATGGTAATCGAATGCCCTGGTTTAACGGACTTTATGGTCCCCTCGGTTACCTAAAGGAAGACAGCTACGTCTACACAACCAGAAACAGAATTGTACGGACTAACAAAGACGTCCGCTACTTCACCTTATTCACCAAATACCACGCTACTAAATACAATTATGACTTCGTAGGTAAAAAGTATTGGCTGCCATATAAGAAGATCAACGGACATTATTTCTACTACATCGGCTATGGCGCCTACATCAAAGCAAGAAACGTCTTTTCAGTCAACGGCCTGCTCCAATACTCTAATGGTGAAAAAGCCATGCTTACGATGTCTGGTTATCCTTTTACATTTGACAGTAAAACCAAGAAAATAAAAGATATGACAAAAAATACGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACACTAAACCACACCAAAAGGGCAAGCACCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTACTCTAATCGTGCTATAGCTAAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAAGCGAATGCGGCCGCAAGAGCTTGTTCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCATGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTTCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGGACGAAGCATCGATGAACGTAGTCCTAGAATCGAAAGCCGTAAGGACTTTGGTCACTGGGAATGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATGTGTTGCTTACTATGTGGGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATTGAGGATAAGACCTCAGCTAGCGTTATGAAGGCATTTGATAAGCTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTGCTAATTTCCCAGGATTTTACAACTCAAGCCATACGGCTGACAGATTTTCTGCCGGCCGTATTTCTTTTATGCATGACTTTCCAGAAATGCGAGGATCTCAGCTTTAGTTCGGGTACTTTTATCAATAGCTTTTAGTAATTCCTCCTGCTCTCGGTGTTTCTTGAGCTCATAGAGAGCATCTAGCTTCTGCGACGCTTTATCGCAGCGCTCTTTAAGGCGACGGAGTTGTTCTTCTGTTTGGGAAATCTCGGCTTCAATTGTCTTAATATTCTTCGTTCTCGGCATCTTCATCATCGTCTTTCTGTTCTTCTGGCATTGCGGCGTTCTGAATGTCTTTTCCAATCTGTCTTGCCTGTGCCTTGATCCATTCTTCGTCCAGTCCAAAAGCACCTAGCATTACTTTCTGGGTAGCTGTGACTGCGTGATCGAGCTTATAGTTGCCATTCGGCTGGCGTATCAGCTCAATCTTTTCGAGCTCTTTCAGTGCCGAAGGTACGCTCAGATAGTTAGGCTTGCCCGGCATTTCGGCTTTGCGCTTTCTCAAAAGCGTGTAGATTCTTGCTCGGATTATCAAAGCAATGAACTGAATGAAGATCTTAGCTTCAGCCGCCTGGCTGCTTGCGACTCTGAATGAGCGATTGCCAAGGAAGGTCTTATCACTGCCAAACAGCTTCTCTGAGATATCGCGGCTCTTGTAAAGATTCAAGGCATCAGAGGCTGTCATCTTTTCGGAGGTCACGATCGCGAAATAGCCGCACAGCTGCAGCTCTCGTTCGATGACATCTTCTCGTTCCTCGTAACCATAGAACTTGTCTTTGTGGTAGGTGAGCTTGAAGTAGTGCTCGTATCGCTTTGGAAGCTTGTATTCTCTGCCTTTTATCTTGTCCATCTCGGCTTCCATTCTGTCCAGATCAGCTTCCAGTCTAGCACGCTCGCTAGCCTGCTTCTTGGCCTTGTAGTAGATATGGAAATAGCGGTCAGTGTCGTCATCCGCGTACAGCTTGGCTTTAACCGTCATGCCATAAGTCCGGTAAGCCTTCCTTGATGGAGCATGCTCTCTTTGATTCGAATTCGCCCATGTGCTCCATGATCAAGCCGTGTACAAAGGAGGCCCTGCCTTTAACCATCATCACGAAATCATAGTCGCACGAGTCCATGAATTGGATGTTAGCCTTACTGAAGTATCCGCGATCAAGGATAAAGCCAATCTTCTCATAGCCATAGCCGCGAATCTTCTCCAGCATGTATTTGAGCTGTGAGACATCGACGATACTACCCGGATAGCTTTCGTAAAGCAGGGGCTTCTCATTGGTCATATCGTAAGCAATCGAGTAGTTGATGATTGGCGCGCCAACGTCGTTCTTAGGGTGGCCGTATTCAGCCATCTCAATATCTCCAGCTTTACAGTTCTTATCGTGGGTGGCATTCCAGCTGTTCAAGAAGTCGACCCTGTCATTGTCATCGATCTCGCGAATGAAGCGCGAGATTGTAGAGTCACTGTAAATCTTGTTCTGTGGCGTCATCAATGGGTGGTTGTAGGCATAATCCGGGAAGTGCTGAGCCACGTTGCTTTCTGCGATAACAGAGTAAGCGGCCAGATCAAGAAGCAGTCCCTTTCCCCGGTCATCCCAGCGCTTCAAGTGTTCAGCGAGCTTGTAGTCTTCAATAATTCTTCTCTTCAATAATTCTTCTGACTACGGAGAAGGCACCGATGCGAATACAGCTGCTTCTTGATTCATTAACTGGTTCAGCCGCCGTTCCCTCGGCAGGAATCTCAACATCAGGGAAGAACTTTTCAAAGTTGGGGTTCGGGAATATCATTCCCGGATGATCTGGATCGGCTTTCCCAATGGTCGTTCTTCTGGCGACGTTGTATTTCTTCTCGGGAAGGTACTCTCTAGCATAAGTGTATTCGATGTAGGTAGTCTTCCCCCGTTTATTTCTGGAAATTTTACCAGTGTTCTTAGGAATATTAACCAGGCAGTTGTAGTACATGATGGCCTCCTTCACTGAGTATTAGAAAAGCACATCAATGCAAGCAAAGATGTGCTAAAAATACAGTGTTTTTGCGGGTTTAAGGCACTTTCTCAAAGGACTTGAGTTTGATTGCTCTGGGAAGTTAGCATTAAGGAAAGCAAATCCTTCTTCTAGACAAGCTACCCAATGAGCCGTAGATAATCAACGTCTGGAAGCCTATTTACCATGGTCTGAAAATGTTCAGCTCCACTGTAAGTAAAGTCCCATAAACTGATTAATCCCATCTTAGCATTGCTAGGATGGGATTTTAATATACCGCGCTATTGGGGGCTTACTTTACGAGCTTATCTTATGTTCGTCATTTTCAGCACGGATGCCCTAAATATGAACCGAAGCATTGAACGAGTACTTCGACTTCTAAATTATAGTTAGCTGATCACAACTTAATATTCGGATTTGCTATTGACGCAACTTCGGATAATGTGTATAATTATTTGTATTCGGAGGTAAAGATGAACAAAAAATCCGCAGTTTATTTGCTTTTGCCTGCTTTTCTAGCAGTGCTTGTATTTACGTTTTATCCATTGATCCAGATTGCTATTCCGACATTGAATAGTAAACAGGGCTTTCTGCGTTTGTATACTCAATTTTTGAGGAGTACATACAATTGGGAGGTCATTCAACGAACATTTATTATTGCTATCATTACAATGCTTATTGTTTTGATTTTGGGACTACCTGTTTCACTCTGGATCGCTCGTCAAAAACGTTCATTCAGACAAGTTCTCTCAGTATTGATCTTGTTCCCAATGCTTACTAACGCAGTTGTCAGAAACTTTGCTTGGATTATTATTTTAGGTAAGAATGGTGTAATCAATCAAACTTTGATGGCTTTGCATATCGTTAAGTCTCCAGTGTCGATCTTGTATACCGATACTTCAATAATTGTTGGCTCTGCATATTTGTTCTTGCCAATTATAATAACTTCTTTAGTTGGTAGTGTTTCTGAATTGAACATCGAAACCGAAGAAGCCGCAGCTGTTTTGGGGGCTAATCCATGGACAAGTTTGTTCAAGATTATTATCCCTCAGCTGACAACAGGTATTTTTACAGGTAGCATCCTAGTTTTCGCAGGTACGATGACAGCTTATACAACTCCTCAAATTTTGGGTGGTAACCGTCATTTGGTGATGTCTACGTTGATTTACCAACAAGCGATGACTCTTAGCAATTGGGACAATGCAAGTGCAATCGCCATTGTCTTGATTTTGATTTCAGCCTTATCAATGACGATTTTGCGTTTAATTGGTAAGAAATTAGATAGGAGACCTGGCCTTGCTTAATGGTAAAAACAAACTTCTGACAGCGATTTCAATCATTATAATTTTGATGATCATGCTTCCATTAATGATGGTTGTGATCACGTCATTCAATGATCAGAGTACTATTTCATTTCCAATCAAGGGTTTTACATTTAGATGGTATCATAATATTTTTGAACAACCCGATTTTGTAAGTGGGTTTGGAAACAGTCTGATAGTTGCTTTGATTGCTAGTCTTCTCGCCTTGGTTTTGGGGATTCCAGCGGTTTACGCTCTGACTCGTTTCAATTTACATCATGCAAGTTGGTTTCAATCCTTCTTTCTAAGCCCAACGCTAATTCCAGAAATAGTTATTGGCTTCGCTCTGTATCAGGCAGCAGTAGTATCGATGGGTTTACCGGTTATGCCCAGCTTAATTATTGGTCACTTTCTGTTATGCCTTCCATATGTTATTCGCCTGATTACAGCAAGCATGTTATTGCTAGACCCTCACGTTGAAGAAGCAGCTTGGGTTTCAGGATGTTCACGTAAGAAATCTTTTTTTATTATTGTTTTGCCTAACATAAAATCTAGTATCATTGCAGCATTTATGATGTGTTTTATCAATTCATTCAACAACATTCCAATTTCGTTGTTCATGAACGGCCCAGATTTGACTATGTTACCAGCTGCAATTCTTAACTACTTACAGAATAATTATGATCCAACTGTTTCAGCAATTTCAGTTCTGCTAATGACTTTCACGGCAGCGTTGATGTTCCTGGTTGAAAAAGTTGTTGGCATCAATCAATTGACAGAATAGGAGATTTTAATGGCAAATCTTGAAGTTAAAAATTTGGCCAAGTCTTATGACGGCAAGAACAACGTTTTGAAAGATATTTCTTTTTCAGTCAAGAATGGGGATTTTGTTTCAATCCTTGGCCCATCAGGCTGTGGTAAAACTACTACCTTAAGAATCATTGCTGGATTGATTGATAAAACTTCTGGTGAAATCAATATTGATGGTACAGATATCAGTACGGTTCCAGTTTACAAGCGAAACTTTGGTATGGTGTTCCAAAGTTACGCTTTGTTCCCTCACATGACTGTCTTCAATAATGTTGCTTTTGGTTTGAAAATGCGAGAGCTTTCTAAAAATGAAATTAAGGATAGAGTTGATGCTATGCTAGAATTGACAGGGTTAACTGATTTTGCAAATCAGTTTCCGGATAATCTTTCTGGGGGACAGCAACAACGTGTTTCATTAGCTCGTGCATTGGTAATTAATCCACAATTACTTTTAATGGATGAGCCACTGAGCAATCTTGATGCTAAGCTACGCTTGAAGATGCGCGAGGAGATACGTAATCTTCAGCAAAAAATGAAGATGACAGTTCTTTTTGTCACACATGATCAACAGGAATGTTTTGCTATTTCTGACAAAGTTTTAGTTATGAAGGAAGGTCGCATTGAACAATACGATACTCCGCAAAATATTTTCCACCACCCACGCACAAAATATGTAGCTCAATTCATTGGTTACGAAAATTTTATTAATATCGATAAGAAATTGGATGATCACAAATCCGTCAGCGCCGGCATTCAATTTGATACGGCTGACACTGATCAAGACGCGGTTGCGATGACAATTCGTCCTGAAAATATTAAGGTTGCTGAAGAAGGCGATGATAACCTTATTTCTGGTATGATCATAAGTCGAGAGTACCTTGGGCAAAGTTTCCAATATACCGTTCAGACTGTTTTAGGCAATTTGAAGTTTGAAGAAGTTCGTCGTGCAATGAGAGACTTGAATGAGCAAGTTACTCTTTCTTTGCCAAAGGAACATTTACATTTGTTGTCAGAATGAAGTAAACACTTGTTTTTAAGAGAGGATAAAGAATGTTTAATAAGAAAAAAATTGGCTTGATTGCTGCTAGTGTTTTGGTTGCAGGCTCTGCAATTCTTTCAACTGCATGCTCATCATCTAATTCTAACGGCTCAAGTAAGTTGGTAGTTTCAACTTTTGGCATGTCAACTAAGCAAATGCAAAGAGATGTTTTGAAGCCATTTGCTAAAAAGTTCAACGTCAAGGTTTCAACTCAGTTTGGTGACTCTTCAGCTCGTTTGACCCAAATCGAGCACAACAAGAATACCTCTGTTGACGTTGCAGAATTTGCACAAAATAATGCTGTTACTGCCAACAAGAAGGGACTTGCCAAGAAGCTTGATACTTCAAAGATTAAGAACTTTAAATACCTGTCAAAGGAACAACAAAAGCTTGCTAAGCAAATTAATGCAGTCCCATATACTCTTAACAGTTGCGGTATTATTTACAACTCAAAGAAGGTAAAGATTACTTCATGGGATCAGCTTTGGAGCAAATCTTTGAAGGGGAAAATCGCAATTCCAGATATTACTACTACCTTTGGTCCGGCAATGCTGTATATTGCTGGTGATCATGCAGGTACTGCAGTAACTAGTGACAATGGTGTAGCTGCTTTCAAGGCTCTTAAAGCTCTCAAACCTAATGTTGTTAAGACTTATACTTCAAGTTCTGATCTGGTTAACATGTTTAAGAACGGTGAAGTTGAAGCAGCTGTTGTTGGTGACTATTCAGTAGCAATGATTTCAGCGGCAAGCTCAAGCATCAAATACTTCGTTCCATCTTCAGGTACTTACGCTAACTACAACACTGTTTCAATTTTGAAGAACAGCAAGAATACTGCTGCCGCTTACAAATACATCGACTACCGTTTAAGTACCGCAGTTCAAAAGAAAGTCGCAAGTGCTAAATCACTTAACAATGCACCCGTTAATACTTCAGTAACGTTAAGCGCTAAGGACGCTGAAAATAAGGCGTATGGCGCAATTGCTAAGCGTTCAAAAACTATTGATTACTCATACGTGAACAGTCACCTTTCAGGCTGGATCACCAAGTGGAACAAGCTGATGAACAAGTAATTTTGAATTTGGCAAAGTTGGAACTCAAAAAAGTTCCAACTTTTTTCTTGAGGAAACAAATATGACTAAAATTGATTTACTGGTAAAAAATGCTCACGTGTTTAATGTTTACTTACGTAAATTTGAAGATGTAAATATCACAATAAAAGATGGTAAGTTTTATTGGATCAATAAGGAATTACCAGGGATAGAAGCGGCAAAGGTTATTGATTTACAAGGAAAGTATGTGATACCTGGCTTTGTTGATGCTCATATGCATATCGATAGTTCGATGACTACCCCAAAAGTTATGGGACAAACAATTGGCAAATACGGCACAACGACAATTATTGCAGACGATCATGAAATCACTAATGTTGCAGGGGTAAAGGGACTAAAAGACTTTATTGACGAGAAAGCGCCTATTGATATATTCTTCGGCATTCCTTCATCGGTTCCGTCGACTAATCCTAATATGGAAACGACAGGCGGATTAATTGGCGTAAAGGAGACCGAGGAATTACTTAAAGATCCACGTTTCGTTTGTCTTGGCGAAGTTATGAACTTTAAAGACATGACTAGTGATCACGATACATTAATTAAAAAAATTATTGCTGCTTGTCGCAAGGCTAGGCCTACGATGCCACTTGAAGGTCATGTGCCCGCATATCACAGTGAAGATTTAGCAAAGGTTATTTATGCCGGAATCACAACTGATCACACTCAGCAGACTTCTTCTTTAGTTGATGAAAAAATTAGAAGCGGTATGTTTGTTGAAATTCAATTAAAATCAATGCACCAAGAAGTTATTGATACGGTAATAGAGCATGGATATTTTGAACATGTTGCTTTGGTAACGGACGATTCAATGCCGGATACTCTACTTAAAGGGCATCTGAACTTACTGGTTAAAAAAGCTATTGATATGGGAATGAGACCTGAAGACGCTATCTATATTTCAACTTATACACCTGCACGTCATATGGGGCTGTGGGATCGTGGTGCCATTGCGCCAGGACGAGTAGCCGACTTTATAGTATTAAATAACCTGGAAGACCTATCGATTGCGCAAGTTTACAAAAATGGGCTTCCATTTGCGGCAAAAGATGAAAAGGATAATAATGTTTACCCTGAAGAGTTATTGCATTCAGTTAAGGCCCCTAAACTTTCAGAAGCAGATTTTGATTTAAAGACTGATTTGGTCCAAAATGGTAAAGTTGTTGCCAATATTATTCAAATTAACGAAGTTGGAACTTTTACTAATCATATCCAAAAGTGTTTGGAAGTTAAAGATGGGCACGTACAATGGAAAAAAGCAGGTTTGGCTCTAATGCTCTGTCAAGAACGATATGGTAAAAATGAGGGCAGATACGCCTTTGCATTAATTGATCGTGGCATTGTTGGAGATGGTGCTATCGGTGCTACCTGGGCACATGATCACCACAATTTAATCATCTTAGGGACTAATATTGCAGGTATGGTTTCTGTTCAGAACCTTCTTGTCGAAGAACAGGGGGGCTATATAGCAGCTAAAGGCAGTCAAATTGTTGCAAATGCACCACTCCCATTGGGCGGGGTAGTTAGTCTTGAGCCAATGTCTGTTTTGGGAAAACAAATTAGTAAGGTCAGAGAGACAATGGTCGATTTAGGCTATAAGAATACAAATGAAATTATGTCTTTTTCAACACTTTCCTTACTTGTTTCTCCAACACTGAAAATTTCAGATAAAGGAATCTTTGAAGTCAAAACCCAGAGACATATTCCTTTGTTTGAATGTTAACTTCCCAATACCAATCAAACTCGAGGCCAACTAATCAGTCGCCTTACTACATTTTCATCAGGATGGTCTGGGGTTCTGGAGGCTTGCTCTGTAAGCTCTTGGAACTGGCCAAACAATGAAGACGAAGTGTGAGAGTTGCCCAATTAGCCACCCTTATCAGATAATCAACGTCTGTAAACCTATTTATCATGTGCTGGAAATGTTCAGCTCCACTGTAAGTAGAGTTCCATAAACTGATTGATCCCATCTTAGCATTGCTAGGATGGGATTTTAATATACCGCGCTATTGGGTGCTTACCTTACAGTGAAGTACAATGTTTATAGGACAGTTTTGTACGATTTTATATTATTACTAAAACTTCCCAGTCCGGGAACTGATCTATACAAAGCTGCCACTTTGTTTGCGAATTAACCGTTTTCTTATTTCTCCAAATTCGTCCAAAAAAGCGAATATTCACCTATCTATTCTCTTGCTTTTTCCTAAACTGAATGCTATCTTTAACTCTTGCTTTTTCCTAAACTGAATGCTATCTTTAATACATAATTGTTCGTCTATGAAAAAGAAAAGAAGAAAAAGAAAGAAGTGATTTAACTATGCGCTTTAATTTCAAGAAATTGGTTGCCGCTGGGGCAGCCACCCTGTCAATCGCTGCTGTATTGACTGCCTGCTCCGGCAAGAAGTCTAACACTTCCGTCAACAAGGACACCAAGCACGGTATCGCCTTGATCACTGACAGTAACGGTGTTGACGACCACTCCTTCAACCAAGCCGCTTGGTCTGGTTTCAAGGACTACGGCAAGGAACACGGCCTCAAGCAAGGCAAGGGCGGTTACCAGTACTTTCAATCATCATCTGCTGCTGACTTCACCCCTAACTTTACTCAAGCTGCCCAAGCCGGCTATCAAACCATCTACGGTGTCGGCTACATGCTGAATGACTCAGTTAAAGCCGCATCCAAGAAGTACCCTAAGAAGAACTTCGTCTTGGTCGACTCAGTTATCACTGGCCGCAAGAACGTTGCTTCAGTTACCTTCAAGAGCAACGAAGCTTCCTACCTTGGCGGTCTGGCTGCTGCCTACACCACCAAGACTAACAAGGTCGGCTTCATCGGCGGGGCCAAGGTCAGCATCCTGGAACTGTTCGAAGCCGGCTTCAAGCAAGGTGTCAAGGATGGTGCCAAGGCCTTAGGCAAGAAGATCACCGTTTACGACCAATACATCGGCAACTTCACCTCAACCGACAAGGCCAAGTCAATCGCCCAGTCAATGTACACTGACGGCGCTGACATCATCTACCAAGCTGCCGGCAACGCCGGTAACGGTGTCTTCACCGAAGCCAAGACCCGCAACAAGGCAACCACGGCTGCCAAGAAGGTCTGGGTCATCGGTGTTGACGTTGACCAGACAAACCTGGGTAACTACACTTCAAAAGACGGTAAGAAGGCCAACTTCACGCTGACCTCCGTATTAAAGGGGCTGCGTTTCGCATGCAAGGACATCGCTGACAAAGCCTACAAGGGCAAATTCCCTGGCGGTAAGGTAATTTCCTACGGCTTAGCTCACGATGGCGTCTCTGTCACTAAGGGGAATCTTGATGCCAAGACTTGGAAGGCAGTGCAAGCTGCCCGCAAGCAAATCCTGGCTGGTAAAATTAAAGTTGCAACTGCTCCAAGTAAGTAGCACAATATAATATATAGTGGTCAATCTGAAACACTCCGCAATATTACGGAGTGTTTTTTGTAGGAGTAATACAGAAAGTTTTGTCATATGGAAAAAGAGATCAAAAACATCATTGAGATGCGCCATATCGTGAAAGACTTTAACGGTTTTAAAGCCAACAACGATATCAACCTCACGCTCCGCAAGGGCGAAATCCTGGCTCTTCTTGGCGAAAACGGCGCCGGCAAGTCTACTTTAATGAGTATTCTTTCCGGCCTGCTCGAACCAACCTCTGGCGAAATCTACGTGCGGGGCGAGAAAGTCAACATCTCCGGCCCAAACGTCGCTACCAGCCTGGGGATCGGGATGGTGCACCAGCACTTTATGCTGGCCCAGGCCTTCACTGTCCTGGAGAACATCATCTTAGGCCATGAAACCACCAAGGGCCTGGCCCTGGACTTCAAGACCGCCAGAGAAAAGATCCTGGCCCTGTCCAAGCAATACGGCCTGGCCATCGACCCTGACGCTAAGATTTCCGACATCACCGTCGCTCAGCAGCAAAGAGTTGAAATCCTGAAGGTCCTTTACCGCGGGGCCGACATCTTGATCTTCGACGAACCAACTGCCGTTTTGACGCCGCAGGAAATCACTGAATTCATCAAGATCATGAAGAACCTGGCCAAGGAAGGCAAGTCCATCATCTTGATCACCCACAAGCTGAAGGAAATCAAGGAAAGTGCCGACCGGGTCACTGTCATCCGGGCTGGTAAGTCCATCCAAACCGTCAGCGTTGCCGATGCAAATGACGAACAATTGGCCGAAATGATGGTTGGCCACCATGTTAACTTTAAGCTGGACAAGGCTCCCCTCAATCTGGGCAAAAATATCCTGGAAGTCAAAGACCTGCACGTCAACGAAGACCGGGGGACCGACGCAGTCAAGGGTCTCTCCTTCAATATCCGCGGCGGGGAAATCCTTGGTCTGGCCGGGATCGACGGCAACGGCCAGGACGAACTGGTCGAAGCCATCACTGGCCTGCGCCATGTTGAAGGCGGCCAAGTCGTCATCAACGGCCAGGATTTGACCAACAAGCCAGTCCGCCAAATCACGGAAGCCGGCGTCGGCCACATCCCTGCCGACCGGCAAAAGTACGGCTTGATCCTGCAACTGCCTTTGTCTGAAAACATTGCCAGCCAGACCTACTACAAGGAGCCTTACTCCAAGCACGGGATCATGAACGAACAGACCATCCGGGAGCACGCCCGGGAACTGATCAAGAAGTTCGACGTCCGCACGACCAGCGAACAATTGCCAGCCAGCGACCTGTCCGGTGGTAACCAGCAAAAGGCCATCATCTCCCGGGAACTTGACCGGGACGCTGACTTGATCATTGCCTTCCAGCCAACCCGGGGCTTGGACGTCGGGGCCATCGAATACATTCACAGCCAGCTGCTGAAGCAAAGAGACGCCGGCAAGGCCGTGCTCCTTGTGTCCTACGAACTTGACGAAATCTTGCAGCTGTCTGACCGAATTGTCGTCCTGCACGACGGGGCCGAATCAGGTGAAGTCAAGCCTGACCAGACTAGTGAAACTGAACTCGGTTTGCTTATGACCGGGAAGAATACCAAGAAGGAGGCTGCCGCTAATGATTAAGGTGAGCCCTAAAGCCAAGCGGCTTTTAGTGCCGATCGTTTCTGTTATTGCCGGCTTTTTAGTCGGGGCCATCATCATGCTGGTCTGGAGCTATGACCCATTCCAGGCCTACAGCTCAATGTTTGAAAGTGCCCTGGGCTCAGCCAACGGGATCGGGGAAACCATCCGTAACGCCACCCCGTTGATCTTTATCGCCATCGGCTTCCAGATCTCTTCAGCCGCTGGCTTCTTCAACATCGGTCTGCCGGGCCAGGCGCAAGCCGGCTGGCTGACCGCCATCTGGATCGGCCTGGCCTTAAAGGGCCTGCCCGTCTACATCCTCTTGCCATTTGAAATCATCGCCGGCATCCTGGCCGGTGCCTTGGTTGCCGGGATTGCCGGCTGGCTGCGGGCCTACTTCGGAACCAACGAAGTTATCTCAACCATCATGCTTAACTACACCGTCCTCTACCTCTGCCAATACCTGCACCAGGACGTCATGAGCAAGAGCCTCCGCGTTGACACCGACACTACCAAGACCATCGGGGCTAGCGGCAGCCTGCGGATTCCGTGGCTGAGCGAAATGTTCGGCGACTCCCGGATCAGCGGCGGTATCTTCCTGGCCATCATTGCCCTGGTCATCTTCTGGTTCTTGATGAAGAAGACCACGGTCGGCTTTGAAATTAAGGCGGTTGGTTTGAACCCATTCGCCAGCCGTTACGCCGGCATGAGCGACAAGAAGAACATCATCATCTCCATGCTCTTGTCAGGTGCCTTCTGTGGCCTGGGTGGGGTCGTACAAGGTCTGGGGACTTACCAGAACTACTTCACCCAAACGACTACCCTGGACATCGGCTGGGACGGCATGTCCGTTGCCCTTTTGGGCGGCATTAGCGCCATCGGCATCCTGCTGGCTTCCCTGCTCTTCTCTATCTTGAAGATCGGTGGCCTGGGGATGCAGACGGCAGCCGGGATTCCATTTGAAATCGTTTCTATCGTCATCGCTGCCATTATCTTCTTCGTAGCCATCAGCTGGGCTGTCGGCCTCCTTTTCAAGGAAAAGAAGTCTGACAAGACCGCGACCTATATTGCCACGGCGGAAACCGCCAGCCGGCAAGCCGCCAATGACCAGCAAAAAGGAGGGGAAGCATAATGAACTTCGTGACTGTATTAGCCTTAATCGTTTCATCAACTTTAGTTTATTCAGCTCCCTTGATTTTCACCGCTTTGGGCGGGACCTTCAGTGAAAACTCAGGGATCGTCAACGTTGGTTTGGAAGGGATCATGACCATGGGGGCCTTCACCTCCATCGTCTTCAACCTGAGCTTCGCCTCAACCTTCGGCACCGCTACTCCATGGCTGGGTGCCCTCTTGGGCGGGATTGTCGGGATCATCTTCTCCCTGCTGCACGCCGTTGCCACGGTCAACTGTCGGGCTGACCACGTTATTTCCGGGACGGTCTTAAACTTGATGGCGCCGCCATTGGCCGTCTTCCTGGTCAAGGCCATCTACAACAAGGGGCAGACCGAAAACATCAACCAAAACTTCGGCTACTTCTCCTTCCCTGGCCTGGCCAACATCCCGGTTATCGGGCCGATCTTCTTCAAGAACACTTCAGCTCCTGCCTGGGTGGCTATCATCTTGTCCATCTTCCTCTACTGGGTACTGTACAAGACCCGCTTTGGCCTGCGTCTGCGGTCCAGCGGTGAAAACCCACAAGCTGCCGACACTTTGGGGATCAACGTCTACAAGATGCGTTACGCCGGCGTCTTAATCTCCGGTTTCCTCGGCGGGATCGGCGGGGCCGTCTTCGCTGAAGCAATTGCCGGGAACTTCTCAGTTTCCACTATTGCCGGGCAAGGTTTCATGGCCCTGGCGGCCATGATCTTCGGCCGCTACAACCCAATCGGCGCTATGCTATCCTCCCTCTTCTTTGGCTTCGCGCAAAGCTTGAGTATCATCGGGGACCAGATTCCAGGCATTTCCAGCCTGCCATCCGTTTACCTACAGATCGCGCCTTACGTCTTAACGATCATCGTTCTGGTGGTCTTCTTCGGCAAAACTGTCGGGCCAGCTGCCGACGGGCAAAACTACATCAAGTCGAAATAAAGAAAACAGGGCTTTGGCCCTGTTTTTTACTGACATTTTTTCTGAAAAAATGCTAAAGTAAATTAATGACAAGTTTTTAAAGCAAGCTTTGTGGAGCTTGGTTCACTGGAATATTAGAGTATGACTCCAATTCTGGCTGAATCCAAAGACCCTTTCCGGGCCCGGATTCGCTGAATTGTAGTTTTTTATTGGAGGTTAGAATTTAATAGAAGCTCATGAAAAAGTCGCCCCTTCCGTGATCTGGTCGATCATCGGGACCGCGGGCGTGTCCGTGATCATTGCCATCGCCGGCAGTCCTTACCAGGGGCAGAGCAAGCAGGTAGTCATGGGGTCACAAGCTGCCTTCATCGTCCTCTTCGTCTTCACCCTCTTGATTTTTGCCTGCGTCTTGCGCTTGATCAAGCGCGACAAGCAAGGCCTGGTCAAAAACTAAAGCAAGCGAAAAGCCTTACTCCACACGGAGCAAGGCTTTTTCAGATCTTAAAAAGCAATGTCGTCAGCAGGCGCAAAAGTGCGAAGACCGCGAAGACCCAGATGCTGTCTTTGATCCCGCCTAAGTAGCGGCGCTGGTAAAGAGTCATCCCGGCAGCCGCGGCAAAGAGCAGGATAAGGGATATGGCGGCCAGCCAGCTGCCCGGCCAGTAGATCAAGTGGATCACAAACAGGCAGGCCAGGTAGGGCCAGGACCACTTCAGCCGCAGCAGGGTAAACTGCTTCCGGCTCAAGTGCCGGGTCAGCAAGAGCGGCTCAATCCCGGCCAGGTCCTCTGGGAGAAAAAGCCGGGCAAGTACCTGGCCTTCCCAACAACTTGCAAGCAGAATTAAAACAGCTTCCTTGCCAGCCAAGCGGCTGGATCATCAGCCGCTTTTTGGACTGTGGGGAAGAAGGCGGCAAGGTCTACGACTACTACAAGACCTTCGTGGAGATCAGCTGAAAATTAAATGCTCTCCAAGGGCTGCTTGCTCTTCGGTGGCAGGTAATCCCGGTCCAAGGCGGCCAGTTCACCGGCGGTCAAGACCAGGTCAGCAGCCGCCAAGTTGGCCCGCATGTGGTCAACTGAACTGGCCTTTGGAATGGTCAAGACCTGCCCGGTCCGCATGGTCCAGGCCAGCAATACTTGATGGACGGACACGCCCCGCTTGTCAGCGATCTGCTTTAAGCTGGCTTTAACGGGGATAGATTGCCCGTTGCCTGAGTTAAAGGGCGAATAGCCAATAAAAGCAATGCCGTGCTGCTTTTGCCAAGGCAGGAGGTCATATTCAACGCCCCGCTTGTCGAGATTGTAGAGGTCTTCATTGGCAAAAACGGCCCCTTCCCCTGCGATATCTACCAGCTCCTGCATATCAGCCGTATCAAAGTTGGAGACGCCCCAGTGGCGGATCAGGCCGGCAGCTTGCAAATCCTGCAGGCCCTTGACTGTTTCTGCTAAAGGATAATCGCTCTTCCAGTGCAAAAGATACAAGTCCAGATAGTCTGTCCCCAGCCGCTTCAAGCTGGCGGCCAGGCTTTTTTTCTGCTCTCTTGGACTGGCGTGCCAGGGGTAGAACTTGGAAATAAGGAAGAGCTGGCTCCGGTCCAGGTCCTTGATGGCTTCACCGACCAGGCTTTCGGCCTGCCCTTCCCCGTACATTTCAGCGGTGTCGATCACGTTGACCCCGGATGACAAGCCGCAACGCAGGGCCGCGATTTCCTCCTCCCGCTTGCTGGCCTTTTCCCCCATGCCCCAGGTGCCCAGGCCCAGCTGGCTCAGTTTTTCTCCTTTGACAGTCATGTATTTCATGGAATTTTCCTCCATCTGTTTTATTGTTTTTTTATTTTTGCTTTCTCATTAAGCATAGTACAAGGGCGGCCATTTTTTAGCAAAAATCACACAGATTTTGCCAGGATTTATCGGTCTAGACCTTGACAAAAAATCTTCTTGGAACTAAAATGGACTATACCAATATGAGTGAGTTAAAAAATAAGGAGTCGTGATCAAGATGAAAATTATCGTTGTGAAAAACGCCAGTGAATTAGGCAAGCAGGCCTTTGACCTTTTGGCAAAGGCGGTTGACGAAGGGGCTAAGACCTTGGGCTTGGCAACCGGGTCTTCACCGGTTGAGCTCTACCAGGAGATTGTGGCCAGCCAGCTCGACTTCAGTCAAATGACCAGTGTCAACTTGGATGAATACGTTGGTCTCAGCCCGGAAAACCCGCAGAGCTACCACTACTTCATGAACCAGCATCTCTTCCAGTACAAGCCATTCAAGCGCTCTTACCTGCCAGACGGCCAGACAAAGGACATCCAGGCAGAGTGCGGCCGCTACAACCAGATTTTGGCGGAGAACCCGGTAGACTTGCAGGTCTTAGGGATCGGGCAGAACGGGCACATCGCCTTCAACGAACCGGGGACGCCGTTTGACAGCGTGACTCATGAAGTTGCTTTGACGGAAAGCACGATCAAGGCCAACGCCCGCTTCTTCAACAGCATTGATGAAGTGCCAAAGAGCGCAATCTGCATGGGGATTGCCAATATCATGGCGGCTAAGGAAATCGTCCTTTTGGCCAAGGGGGAAAGCAAGGCTAAGGCTATTAAGGACATGGTTGAAGGGCCAGTGACTACGGATGTCCCGGCCAGCGTCTTGCAAAAGCACCCGAACGTTACGGTGATTGCCGACCAGGCAGCCGCGAGCTTACTTAAATAAGAAGTAAAACAGGAGCACCTTCTTCGTAAAAAGATGCCCCTGTTTTTGCTAGCGCTTCGGAAAGCGGTTGCGTAAAGCAAAGGACAATGATAATATAATATGTAACAGATACTATAAACTTACTTCGGATTTAACATTGGGAGTGATGAAAATGCCTTGGTTTACAATCATGACGGTCATCGTAGTCATCTTGGCAGTCTTCGGCCTAATTACTTTGGCCAAGTATCTGATCAACTACTCTAAAAAAGGCAGCTAAACAGTATACGCAAAAGGATCTGCCTCAACAGAAGGCAGATATGACCCCCGAAATTAGGACACTAATTTCGGGGGTTATTTTCATGACTAAATACACTAAAGAAATCAAACTTGCTATCTACCTAAATGAGCTTGAGCAAGCTATTCACAAATACATCGATTACTACAACAACGTAAGAATCAAGACAGGACGAAAAAACATGACCCCGATTGAATATCGGAATCATGTTTTAACAACCTTAACGGCGTAATACTAAATTGTCCCAATTTTGGGGGTCACATCATTGAATTAATGATGTTCTGCTTTTCCTGATCAGAAAAGCCAATCCGGCGGTACAGGGCAACGTAGTCTGCAAGAACTTGCTCTACTATAGTAACAATTTTCTCTAGCTTTCGGTTCTTTACATGGATTCGCCTTAAGATAGTTAACAAAGCTAGGCTAACGAGCCAGATGGCAAACGCAATTAATTCAGGATATACACTTATGAGCTTTTCACCTCCGCCCTTTTTAGAATGTGTTAAAATCAAAAATATAAATCTGTTTTTCTAAGAGGTACTTATGGATACTACCGAGAGCATAACCTTTACTAGCAAGCTAACATTCTGGGATAAGTTTAAATGCTTTTATTTGCTGCACCTTTACAGTCTTATTTTTTTAATACGATTTCAAAAGAAGTGGCAAAAGATTCTTATTTATCTGTGGTATACCAGTGTTTGTGGCTTTTCACTTGCGATTCTTGTTGTTTCCTATCCTTTTGTCACCATTAAAATGTTTATTGATGTCTTTTTAACGCTATCTTGTTTTTCGTGGGTACCAGCTATCACTGCATTCCTAATTTCACTAAAGTGCCCATCTATTATAAATCTTAAGCTTTCACCCGATAATAATTTAGGAAGAGCGCCTATAGTAAAAATAGGTGATTCAAATTCACAGATAGTATACTTAAAAAGTTCTTTACTACTTGATACTAAGAATTTCTATTTGATAATGTGCCCAAATTATTTGCCAAAGCATAAAAGCAGAGTATTCTATAGCTTCATTTCCAAAAGCCAAAACACTACAGCGCTATCTAAAGTCAACTTTATAGCTTCCGTAAAACCACATTTTAAAAAATTCATCAAGTTGCATATTTGATGTTAAAAAATACGAACTTATTAGTCTGGGATTCTAACCTACTAACAACCCGGTAAACAATTGTGGAATAAGATCTAATAAGACTGAAAGAGTCCCTCCACTAATAAAAATAGATACTCCAGCTATTGCAACAACCGTTGAAAAGCCAATTAAGGTCTCCCATGATTTCTGATCAGTTTGACTTTGGGTTACGAGCTTCGGAACATCAACGTTTGGAATTTTCGTGCCAGTAAATAGATCTGTTGGCTTTGAAGTGACAGTGATAACTACAGACAGTTCATTATCCAATTGCTTATCCTTAGCTTCTAAAATATGGTAGATAAATTTAAGCTTGCTTTCACCAGAGTTGTTAATCGAAGCTTCTATCGCCACGTTACCATTGGTAATGCTTGCGCTTGAGATCACCTTATTTGCTTCGTTTACAACCGCATCAACACCATTTCCTTTAATATGTCCTGAAGTTTGAAGCCAATTGGCAAAACTGATTGAATCTAACTTACCGTTTGAAATAGTAATTGCAGGAGATTCATCAGCTACTGACAGCGAATTAACCAATTCTACTGAAATCTTTAAAGAAGGGATATCCACTAATTCAATCTTCTTGTTGAACTCAGCAGATACCGACTTACCAAAGCCCTTTAGTACATCAGCTGCTACTTCCCTATAAGAAATAGTACCGTATAACTGGGGAACAAACTTATTAACACCGGCATCTTTGCCAGAAGCTGCTACTTGGTCAATATCCGTGCTGCCAATTGGATATTCAGTAAACTGGTCAAAAGCCCAATTTGTTGGCATTCTAAAGCCAAGATTCCCACTCCAACCATAGGACATATCCGCCACGAAGCTGTATTTCATCCCAACTTCTTCGCCGTGGAGGAAGACATTTCTAGTGCCATAAATACCTGGTTCATATGGACTGAGCTTCAAGGCATCGATGATCCCTCTCATGTAAGGAACGACTGTACCTTCAATGTCACCATCCTGAATATCAACGTCCACTGCAAAGCAAAAGGACCACCAGAATTGCCAAAGCCGCGCCAAACATGATAACCGTCTGCCACAGGCTCTTCTGCAGCCTGTCTATATAGGAAGAAACACTGACAAAATTGGGCTTGTTATCGCTCAGATTGAAGCGGGCCAACAGGGCCTTGTTCGTGTATCTCTCCCGCGTTTTTTGGTCAGCAAATTTCAAATAGCCATTCATCGCGCTGGCAAAAATCCCCCCGATCTCAACATAGGTCATGTTTTCTGGAACCGCCAGATGGATGACTGGATTCCTAATCTAGTAGGGTTCTTTCAGATTATTGTTCCACGTGAAACACCATCCCCCCTCCAGGCAAATTATTCCTCTATCATATAAAAAATCTTTTTGGACAAAAAGCTTGCTAAGGCACTATATCTTGCAATAAACTATTAGAGCAACATAGATCTAGTATAGTATGAATAGAAAGAGTGTGATCACCGTTATTGTCTTAAGTGGCCCAATTGGAGCCGGCAAATCCAGTTTAACCAGTATCCTCGCCAAGCACCTTGGCTCAACAGCATATTACGAAGAGGTCAACAACAATCCGGTTCTGCCTTTGTACTACAAAGACATGAAACGGTACACCTTCCTCTTGAACACCTACTTCTTGAACAAGCGGCTGGAAGAAATCAACGCGGCGGCAGGCAACCACAATGACGTGCTCGACCGCTCAATCTACGAAGACTTGCTCTTCTTCAACATGAACGTCGATAACGGGGTTGCTGACCCAACTGAATATCAGATCTACCACGACCTGATGGACAACATGATGGAAGACGTGCCAGGCAATCCGCGCAAGAAGCCGGACCTCCTGATCTACATCCACGTCTCCCTTGACACCATGCTCAAGCGGATCGGCAAGCGGGGCCGAGAGTTCGAACAGCTCGACTCCAATCCAGGCCTGAAGGAGTACTACCAGAACCTCCTGCGCTACTATGAGCCATGGTATGAACAATACGACGTATCGCCAAAGATCGCGATCGATGGCGACAAATTCGACTTTGTCGACAACCAAGACGATCAGGACTTCGTTTTGGACACGATCGACAGCAAGTTGCGCGAAATCGGCAATTTGTAATTGATAGAAGGAACGTGATGACCGTTATTGTATTAAGTGGGCCCGTTGGAGCCGGCAAATCCAGCCTAACCGCAATTCTTTCCAAATATCTGGGGACCAAGCCTTTCTACGAAAGCGTCGATGACAACCCTGTCCTCCCGCTTTTCTACAAGGACCCCCTCAAGTACACCTACCTGCTGCAGCTATTCTTCTTGAACACGCGCTTCCACAGCATTAAAAAAGCCCTCAGCGACGACAACAACGTCCTGGACCGGTCCATCTATGAAGATTCTCTTTTCTTCCATATGAATGCCGACATCGGCCGGGCCAATGACCTGGAAGTCCAGACCTACGAGGAGCTGCTGGAAAACATGATGAAGGAACTGGAGCGGATGCCTAAGCGCCATCCTGACCTCCTGGTTCACATCAATGTTTCCTATGAAACAATGATCAGACGGATCCAGAAGCGGGGCCGGTCTTACGAGCAGCTCAGCTTCGACCCGACCCTGGAAGACTACTACAAGCGAATGCTCCGCTACTATGAGAAGTGGTATGACGACTACGACTACTCACCAAAGATGATGATCGACGGCGACCACTACGACTTCATGGCTAGCGAAAGCGACCGGACTGAAGTCCTGGACCAGATCACCCAGAAGCTCAAGCAGGTGGGCAAGCTGCCAAAGAACTGGCAGGCCGGTGAAATTGCCAGAAAGGCCATCGAGATCGGCCAATAAGCCAACAGCAAAAGAAGTCATTATTTCCCAGGAAATGATGGCTTTTTTGCTTGGCCCGGAAAAATTAAATAACGTATTTCTCCTTATTTTCTTAGAAAAAGGCAACGCTGTAATGAATTAATTAAGGCAAAAGTCTGCTTCGACTTTATTATCTTAAGTGTGCCCGCTGTCTTTTCTCAGCTTTTTTCTCACAATGCTGATATGTCATAGTCCAAAGCATGTTACAATAGTTATTAACTTATTCTAAAAAGGCTTAAAAAGATATCAAAATGATTAAGGGTGATTTATTTTATGAGATTCGCAAAAATTAAGCAAATGCTGCTGATCCCATTTGCAGCACTTCTGATGCTGGTCGCGCTGGCTATGCCTGGCCAAGCGCAAGCCGCCAGCAAGAAGACTTACATCATCGGTACCGACCAGACTTTCAAGCCCTTTGAAATCCAAGACAAGGATGGTACCTACAATGGCAAGAACCCGGGGATTGACATCGAAATCCTCCGGGAAATCGCCAAGCACGAAAACTTCAAGTACGAGCTGAAGATCATGTCCTTCAACGCCGACGTCCAGGCCCTGCAGTCTGGCCAGATCGACGGGATGATCGCCGGCATGAGCGTGACTGAAGAAAGAAAAAAGACCATCGACTTCAGCAACTCCTACTACACTGACGGGGTCTGCCTGGCCGTGGCCGAGGACAGCAAGATCACCAGCATGAAGGACCTCAAGGGCAAGACGGTTAACGTTAAGACCGGGACTACTTCTGCTATCTATGCCAAGTCCATCCAAAAGAAGTACGGCTTCAAGCTGAAGTACTACACCAACTCCAACACTTCCTGGGCTGACGTCAAGGCCGGCAACGCTGACGCCTGCTTCGACGATGGTCCGTCCCTGCGCTACGGGATTGCCAACGGGACCGGCCTGCGCATCGTCGGCAAGCAGGTTTCCAACGCCCCTCTGGCTTTTGCCGTTAAGAAGGGGGAAAACCAGGAACTCCTCAAGATGTTCAACGACGGTCTGGCCTGGCTGAAGAAGACTGGCCGCTTAAAGAAGATCGTCAACAAGTACACCAGCAAGAAGGTTGTTAAGAGCCAAGTCGTAGCTGATACTTCAATTTTGGGCTTAATCAAGGACAACGCCGGCGCTCTTCTGCAAGGTCTGTGGATGACCATCGAACTCTCAATCGTCGGCATCCTGGCCGCCCTGGTCTTCGGTTTAATCCTCGGGATCATGGGGATCGCTGAGCACAAGTTCTGGCATGGCCTGGCCAACGTAATCATCTACATCTTCCGTGGTATTCCAATGATGGTTCTGGCCTTCTTCATCTACATCGGCATGCCAACCTTGCTGGGCCACAAGCTGCCCCTCTTTACCGCCGGCATCCTGACTTTGATGCTGGACGAAGGGGCCTACATCGGGGCCATCGTCCGCGGGGGCTTCGAATCAGTTGACGTGGGCCAGTGGGAAGCAGCCCGGTCCCTGGGTCTGCCTTACTACAAAGCCCTGTGGAAGGTTGTTGCCCCGCAAGGCTTCAAGCTGATGATTCCATCCCTGGTCAACCAGTTCATCATCACTCTTAAGGACACGTCCATCCTTTCCGCCATCGGGGTCATGGACTTGACGCAAACTGGTGCCAACTTGATCGCCCAGAACTTCCAGGGCTTCAAGATGTGGCTGATCATCGCCGTAATGTACCTGATCATCATCACCCTGCTTACCTGGCTGTCCAACTACATTCAAAAGAAGATGCAACATTAGTTAAAAGGAGGCTTTTTCCATGGAAGAAAAATACAAGGTTCAGGTAACTGACCTGCACAAGAGCTATGACGACGTTCATGAAGTCATCAAGGGCGCCAGCCTGGACGTCGCGCCAAGCGAAGTCATCTGCATCATCGGTCCGTCTGGTTCAGGCAAGAGTACCTTCCTGCGCTGCATCAACAAGCTGGAAGACTTCCAAGACGGCCACATCTACTTGGATGGCGTTGACCTGGCTGACCCAAAGGTCGACATCAACAAGATGCGGGAAAAGATCGGCATGGTCTTCCAGCACTTCAACCTCTTCCCGAACATGACCGTCCTGGAAAACATCACCCTGGCTCCGGTCGAACTGGGCAAGGAAGACAAGGAAACGGCCATCAAGGAAGCCCACAAGTACTTGCAGATGGTCAACATGGATGACAAGGCCGACGTCAAGCCGACCACCCTGTCCGGCGGCCAGCAGCAGCGGGTAGCCATCGCCCGGGCCCTGGCCATGAAGCCGGATGTCATGCTCTTTGACGAACCGACCAGTGCCCTGGACCCGGAAATGGTCGGCGACGTTTTGAACGTTATGAAGAAACTGGCCCAGGAAGGGATGACCATGATCGTGGTAACCCACGAAATGGGCTTCGCCAAGCAGGTGGCTGACAAGGTTGCCTTCTTCTACGGCGGCGTGATCAAGGAACTGGGGACGCCGGAAGAAATCTTCGACCACCCGCAGGAAGAAGAAACCAAGAACTTCTTGAACAAGGTTTTGAATATCTAAGCTGAGTTTAGATTTTTTTAAAAACAAGTCAAAAATTAAAAGGAAAGCGCTTGAGTTGCCATGCTCAAGCGCTTTTTAGCGGCTAAAAATAATGGAAACACACTTTATAATCACTAATAAAATTATAATTCGTATTTACATCCGGTTGATTCCATGTTAAGGTAGAAATATCCCCTTCTATTGGAGGAAATTCCGAACGTTACCTACTGGAGGATCAAATGGAATTTATTAACAAGTATTTCGAGCTCGACAAGCTCGATTCAAACCCTAAGCGGGAGTTCATCGCTGGTCTGACGACCTTCTTCGCGATGTGCTACATCCTTTTCGTCAACCCTAGCGTCTTGGGCGCCAGCGGGATGGACAAGGGCGCGGTCTTCACGGCAACTGCCCTGGCCAGCGCGCTCGGCTGTCTTATCATGGGTATTTTTGCCAACTACCCGATCGCTACTGCCCCGTCTTTGGGTCTTAACGCCTTCTTCGCTTACACTGTCTGCATCGGCATGAAGGTGAAGTGGCAGACTGCCCTGGCTGCTGTTTTCGTGGCCTCAATCATATTCATTTTGATTACGGTCTTCAAGCTGCGGGAACTGATCGTCGACAGCATCCCTAACGACTTGAAATTTGCCATCTCCGCCGGGATCGGGATCTTTATCGCCTTCCTGGGTCTGCAAAACGGCAAGCTGGTTGTCAACAGCGCTTCTACTTTGGTAACTATCGGTTCCTTCAAGGACCCGGCTGCCTGGGTAACCATCTTCGGTCTGCTGGTAACCATCTTCTTGATGATCCGTCGGGTGCCAGGCGCGATCTTAACCGGGATCGTCCTGTCATCAATCTTCAGCATCCTGGTTGGCCAAAGCAAGATGCCGACTTCAGTCGTTTCTTTGGCGCCAAGCTTGAAGCCAAGCTTCGGCCAAGCCATCCTCCACCTGGGCGACATCAACACGGTGCAGATGTGGACGGTCGTTTTAACCTTCCTCTTGGTGGCCTTCTTTGACACCACTGGTACCTTGATCGGTCTGGCTCACCAGGCTGGCCTGGTTGACAAGGACGGCAAGATGCCAAGAATCGGCAAGGCCATGGCGGCTGACTCAACGGCCATGATGGCTGGTTCCATCATCGGTACTTCACCGGTTGGCGCCTACGTTGAATCTTCATCCGGGATCGCTGCCGGCGGCCGGTCAGGTTTGACTGCCGTTTGGGTTGGTATCTTCTTCCTTTTGTCCATGTTCTTCAGCCCGCTTTTGAGCGTGGTAACGACTACGGTTACTGCTCCAGCCTTGATCATCGTCGGCGTTTTGATGGCCGCCAACCTGGCCAAGATCTCCTGGGACAAGCTGGAAATCGCTGTTCCAGCCTTCTTGATCGTGATTGGCATGGGCTTGACCTACTCCATCGCTGACGGGATGGCCCTGGGGCTGATCGTTTACCCGATCTCCATGACTGCTGCCAAGCGGACCAAGGAAGTCAGCCCAATGATGTGGATCCTGGCTGTAGTCTTCGTGATCTACTTCTTGATCTTGAACGTCTAAACGCTAACAATAACAATTTTTGCCAAGCTAAAAAGCCCCGACTTCGGTCGGGGCTTTTTTTTATACATTTTCAGCTTTATTCTTTGGCTTCCTGCAGTCTGGCCATCTTATCATAGACCAGGCCCCGCTGGTTTTCATCGATTTCCAAGACTAAAAGGTCACCGGCTAACAGCTTGGTATTCCCATTAGGGATAATATCCTTTTGCCCCCGGTGGATAACTCTAACCAGGGTGCGGTCCGGCCAGGCGATGTCCTTGACCTGGTGGTCAGCCAACTGGCTGCCTTCATAAATGGAAATAGTCAGCTGGTCTGCTTCACCAACATAGTCGTTGTCTTCTTTGGTCTGCATCCGGCCAGCCAGGCTTTCATAGATCGGCACCCCGCCCAGCAGTTCGTTGACGACATAAGCGGCAACTGAGACCACGGCTAAAGGCATGAGGTGCAGCAGTGACCCAACCATTTCCGCGATCAGCATGATAGCGGTAAAAGGCGAGCGGACGATGGCTGAAAAAAGCCCGGCCATGGAGAAGATGATCAAGTTGACGACCAATTTTTGGTCCAAAAGGCCCAGGTCAACCATGAACTGGCCATAAACCGCCCCCAAGAGGGCCCCCATGGTCAAGATCGGCAGGAAGATCCCGCCCGGCAGGCCAGAATCGTAAGACACGATGGAAAAACTGATCCGCAAGAGGAAGATCAAGACCAGGACATTTACGGCGTGAATTTGGTTCAAGCTCAAGATCAAGTTGTTGCCCCCGCCGACATAGCCTGGGAAGTAGTACATGACCGGCACTAAGATGAGGGCCGGGATGATCCCGTGCAGCCAACGCGGCAGGACGGGGATTTTTTGATAAACATGGCTAAAATTGAGCAGGCCCCACTGGTAGAATCGGCCGATCAAGCCTAAGAAAGCCCCCAATAAGAGCAGCTGCCAGTACTGGAGGATGGGGAAGCTGTGCTTGTAGTCGATCGCTAAGACCGGAGTCTGGCCAAAGACATTAGAAACCACAAAGTTGGCCATGATGGCTCCGGCTAAAGCGTTCAGCCAGACCCGGGGAGAAAAGTTGTGAAAGACTTCTTCAACGATGAACATGGCCCCGCCCAAAGGTGCCCCGAAGGCTGCGGACAAGCCGCTGGCCGCCCCGGTTTCCAGGAGGACCCGGGAGTCGCTCTTTGAAGCCTTGAAGCCCTGGGCCACCCCCTGGCCGACTGTTGAGCCCAATTGGATTGACGGACCTTCCCGGCCTAAAAAGAGGCCAGACCCGATCGACAGGACCCCGCCGATGAACTTCCGCCAAAAGACCGGCCACCAGGCCAGTTGCAGCTTGCCCTGCAGCTGGAGCTCTACTTCAGGGATCCCGGACCCGCCGGCATGGGGCTGCTGCTTGACTAAGAAGCCGGCCACGATCACGCTGGCCAGAACGCCCCCGGCTAAGAGCCACAAGAGGGCTGGGTTAGCGTGCGCTGCCTGGTAGCCTTTTTGCCACATGGCCAGGGTCTGCCCGATCAGCCAGCGGAAGCTGCCAACAACAATGCCCGCCACCAGGCCTACGACCAGGGCTTCGAATAATAAGCGCAGGTTGGATTTGCGCGTTTGTCTGTCTTCACTCTCCATATAATTTTCCCCTACCTTTTTTGCATATAAAAAAGCATAACCCTTTTAGGCGGACATGTAAAATCTACTTTATCTCGTAAAGGCTTCATAGCCGAGGTTCTTGAGGAACTTGAACAAGTCTTCCGTTTTGATAAAAATCGTCTTTTCATTGGTATTGGGGTGAAAGCTCATTCTGTCCTCATCAACGATCTCCTTGTCAAAGTAGACCTGGATGTCGTGGTCAGCGTTGTTCAGCAGGCCAAAGGGAGACACTACCCTGGATGGCAAACCCATTTTTTCAAAGAGGCTCTTTTCTGAAGCCATCTTGATCTGCTTCTTGCCGGCAATCTCCTTGAACTTGTCCATATTTAGTCTTTTAGCATCATCCATAATCACCAGGTAGAAGTTCCGCTTCTTCTTGTTGGTCAAAAACAAGGTCTTCGTTCTGACCCCTGGGATCCCCTCGATGAATTCGTCAGCCTGCTCCGTCGTCAAGGCCGGGGCGTGCTCCACCAGCTGGTAGTCGATGCCTAATTCAGCCAATTTATCCTTTACTTCTTCAAACACGGCAATCCTCCTTTTAAATGCACACAGTCCCTTCAGAATCAAGGAGGACTTCTCAAGTATGTAATGTCTTTGTGTTTTAGGTAATGTTAAGAAAAAGAATGAGGATATAATCGATTTTGAAAATGAGGATATATAGGATATAAGGATACGCGTGATGCTACTTGAAGAAGCTGAATCCATATCTCTGTAGGATGTAGCTAATATTGTAAGTTAGTACAATTATCTCGACAGTTTGTTGGAAACCATCTACACTTCTTGCAAGTATATTTTCAATTCCGTAGTACTTTAGTACAGAAAACACACTCTCGATTGTTCTGCGAATTGCCATTAGCTCTCTTTTGTTATGCTGCTTAGCACCCTTCATATTTTTCCGATAAGGTGTCCACAGTATATAACCGTCTATCTTGAGGGCATCATGCAGTCGTTTGCCTATATAACCTTCATCGCCTAAAAAGCTAAGAAGCTGCAGACTTACGATCTGACTGGGACTGCCATCAAAGGCAAGAAGATTTTAAACTTATTTGTTCACGTGGATGGGCAAGCTTACCTGCTAAACACGCAGACTAAGAAGGTTGAGCTCTTCTACCACCTGCAAGACCAGCACCTGATCGGCGAGTTCTTCTGGTTTGAAACTCAAGCAGACGACGAATATTTCAAGGCAACTGATCAATACAATGGCTTCTTAAAGGCCAGCGAAGTTAAGAAAGCAAAGCTGCCGACCATCATTTCCAAGAAGGCAGCCAAGACAAGCGACCAGCCGGCCAGCGCGAGCCAGCTGGCAGCCTTGAAGAAGGAAATCACCAAGGCTGAAGCCGTCCAGAAGAAAACAATCTACAAGCTGTCATCTTCCTACCGCCGTGACTACCTGGACTACGCGCTCAGCAACGCGCAAAAGGCACTTTCCGGCAATAAGGGTGAGGTAACTTTTGCCAAATGGCTCCTGGCCAACTCTGAGACATATCTTAATGGGAAAAAGGCCCCAGTCACCAACATCAACAAACTCAGCAAGGCTGAGTACGAACGCGTGCGGAGAATCGTTTCGGATGTAGCGCCAAATGGCTACATGACGGCCATTTACTACAAGCGGGCGGATGGCACTTAGCACAGAAAATACAGTGAACTTTGGAACAACAAAAACTGCAAATTCGTTTATGTCAGCATGACGACCAAAGAGAAGAAATTCTTGAAGATCAGCGACTACGCGAAGAACAGCAAGTAATAGTTTACAGATGAAAAGCAGTCAACTTTTTTGAAGCTGACTGCTTTTTGCTCGCTTATTTTTCCTTTAAGCCCGATATTTTGCCAGAATCAAGCGTAGCCACTTTGGTCAAGTTGCTCTTGTACTGATAAAGGCTGCCCTCATCTGAAAGACCGGCATTATATTTTAGAAAGGCATAGTAGTCATCGCCAAGCTTAAACAGGCTCAGCATCGCGATAGCGTGCTTGCTTCTCTTGGCGACCAGCTTAGTTAGCTTGACCCAGTTTTCATCAGAAGAGACCTGTTTGTTTTTCCTCAGTGCTTTCTCGTTTACTGTTAAATAAATATTGTTTTTCTTGTCCGTATGCTCCACAAAAACTTGTGGGTCTACTTCAATTGGCTTAACAAACTTCTTGTTTTGGCTGGACCTGCTTTTTTCGACCTTCCCGTTATCATAGATGGTCGCGAAGCTAGTTCCAGAGTCATCGTCAGCCGTTATTCTAGCTTCCAAAATCGCGCTAGCACTGTTGTCGACGTGCTTTAACAGCAACAATGTCCCAAGTAGCAGAACGACAATTAAGCCAAAAATAGCCAGTAACCTTTTGTGAGATCGAATAAACTCCATAACATGCTCCCTCTATTTTTAACCGCTTTCAGTATGTTTCTGGCAGATTTATTTGTCAACTATATATTTAACAGCCTTTTTATGAAAAGAACAGTATAAGATAGCCATGAACAGTTTTTTATTCTAATTTTGTAATAGCTTTCCTTAATTCATATTCTCTGCATTTTGCTGCACTAGCTATGCAAGCAAAAAGTGAAACTTCTTTGGAAAGTTTCACTCTTTTTGCTTTTTTTAATGATTGCTCCTTTTTCAAAAAAGTAAGAATTTCTTTTTAAATACATGACTGAATAAAAACATCGCTAAAGCCGCGTCTAGCATGATACCAGAGCATGTATCAATGACTTTTGCTTGAATTTTTTGTTGAAATTTATGTTGACAGTAATTATATGTAGAACTATTACTGAGGCGATTAAGGGGGAAGAAAAAATATAAGGGTGGAGCCGTATATATGTATATCATTAGGCAACAATGGCTGCAGGACAATGCTATACGTAAGTGGTATTTCCTAGCAGCTATTTTAATTTTATTTGGGGGATGCAGTACTGCTATTCTGGTAAGCGACGCTCCGCAAAATCAGTGGTTAATCCAGACCATATTCTCACGCTTTCTTGTTTTCAGCCTGCTGGTTCCTGTTCAGATCTTGCTTTTACTGAGTACATTTCGTGTCCGTCTACAGGATATATATGTTACTGGGAGCAGGCGGATAATTTGGAAGCAGCTGGAGTATCGTTTGGCGATAGCTTTGCTCGTGACCCTTGTACCATGGGCAGTCGGCTGCTTGATTGGTATGTGCCTCAATGGCTGGGGGACCAGATTAGGGACTATAGTGGCAGAAGCATTGATTCGCTACCTGTATCTGGCCTTGTCCTGCCTGGCTATTCTCTTGCTGGTCAGTCTCTGTTTGCTGGCTAGCAAGAGAATCTGGGCCTTTCTGGCCGGCTTTGTTCTAAGCGGAATTTCCTATTTCTTGAACGTCAACCATCATTTTTCCTTGTTCTATGATTTTCTTATCGATGATTTGGGAACCCTGCTTCTGTCCCGCTTGCCGATCCTGCTAAGCATAGTCTTGTTTCTAGCTGTTGGCGTGCAAATGGAAATCGCTAGAAAGGACTGGTAAAATGCGGCTTTTTAAAGATCAGTTTCTGTATTTCTGGCAGCTGATAAAGGTGAGGTTCCTATCATGGCTACTGTTGACCTGTTTGTTTTTGCTGGTTGCCGGTGGTTTCATGAGAAACGGCAGAAGTGCCAATATAATGGTCTTCCAAGGGCTTGGATTGGCAGAGATAAGGGCTGGCATTAGAGATTTTCCGGTCTCGTGGTTCGGCTATTTCTTTTTCCCGCTGATGATCAGCTTGAATATTTTCAAGGAATTGTGGATCAGCAGGGTAATGCAGCTGCGGGGCCAGCAGATCAAGCCAAGTCACTTCAGCTGGGTCAATGTCATATTGCAGTTGCTCTTGGCCGCAGTTTACGTCTTGGCAAGCAATGCCTGCCTGTGGTTGAAAGACTTGCTGTGTGGCAACTCGCCTCTTGTTCTGGGACCCTGGCAAGGAGGAGCAGCAGAATTGCACTGGATGTTAATTGCCTGGCTTGGGGTCAGCTCACTCTTACTGATTCAAGCCAGTTGCAGTGAGCTCACTCCCGCTTTGGGCTTGATTATGCCAATCGTCTTGTTGGTTTCGACCTCTTTGACGGCTTGGAGCGGCAATCCGCTTAATGCATTAATGTTGAGCCGCTGGACCAGTGGCGCAGAGTTGTTTATGTTTGTGTGGACCCTGATCTGGGCTTTGCTGTACGTATTAGTTGACAGCAAGCACGGCTGGGTCTAAAGGAGGAAGAATGTTTATTGAGTTAAAGAATGTAAACAAGGTCATCTCAGGCCGGCAGCTGCTCAGTCAAGTCAACTGCGAGATTGAGGCTGGCCAGATCGCGGTTTTTGAAGGGATCAACGGATCTGGGAAGACTTTGACTTTAAAGACGATTTTGGGCTTGATGAAGGTTGACGGGGAAGTCTTGGTAGCTGGCACGCAGGTCAAGCCGCAAGATGCTTATCCTGTTAAGGCCGGGATTCTGATTGAAAATCCCAGCTTGATTACAGACTTCACGGCAACGCAGAATATGGAGCTTTTAGCCAAGCTTGATGAGCATATTTCTGCAACTGAAATCGCAGAATTGCTGAAATACTTTGACTTAAGCCGCTTTCCTAATGAAAAGGTCAAGAAGTTTTCTTTAGGGATGAAGCAAAAGCTGGGTATTGCTGAAGCCTTCTTGGGCTCATATCCGCTGATTGTTTTAGATGAACCGACCAACGCTTTGGACAGCGATAGTATTGATAAGTTGGTGGATTTGATCAAGTTGCGGCAAAGCAAGGGATGCACTTTTGTCATCGCTTCACATGACCGGGATTTTGTTGAGCAAGTGGCAACCAAGCGCTTTAAAGTTGAAGAAGGTGTGGTTCATGAAGCGTAAAGTATGGCTGGCGGCAGCCATCGTCTTGTGCGTGCTGGCAGGCCTGCGCTATTGGCAAGTAAACGCTAATCCTGTTTGCCGCGGGGTAGACAAGGAAATTTTTGTCAAGAAAGGGCAGGAGGTTCATGCTCCAGGAATCGACTTTAAGATTCTGTCCGCCAAGATGGTCAAAGGGAAAGAAAACGTTTATTTGACTGTAAAGGTTGATCTGAAAGACCGTGGCTATTACGCGGATGGCAAGCATGGAATAATCGCCGCGGTTAGCAACATGTATTTCAATATGCCATACAGCATCAGCAATCACTCAGATCTTTATGTGGTGGATGGCAATGGGCACAAGGTAGCCATTGGATATTTGACTAGCAAAACTCCCCAGCCATTGACGCTGAAATTTGACAATGTGCGAAGTTGGTATGATACAGAAAACACACCGGCCAGATTCAGCTTTTTGGTTGGGGATGGCAATGGGTATAAGAAGTATTCAATACTTTTGGAATGAGGGAAGACAGAATGAGTTTATTATGGTCAAGATTAAATAAGCGCTGGTTTGTTGCGGCAATCGCTGTTGGCATGGCAGTGGGCTTGGGTCAGATAATCGTCAACTGCTACACTGGCATGGCGAATATCGACTCTCCTTACACCCGCTGGCTGTCAATTAACACTGACTCATCTGCAACGACAATTTTCTTTATCCTCTTGCCCTTCTTAGCCAGTATTCCAGCAGGAAACATGTTAAAAGAGGACTTAGACAGTGGTCTATTCAATAAGTTTAAACTGCAGGTGCCTGTAGCTCGTTTGATTATGCAATATGCGGCTATGGCTTTTATGACCGGATTTGTGACCATCATGATTCCGCTACTTTTAAACTTGCTAGGATATCTGTTGATTCTTCCTAATTTTAAGCCAGATAATTTGTTGAATATCAATATTGGGGTTTTCAACTTCAACACCATGCTGGTTTCTTTGTATTATAGTCATCCTTTTGTTCACGCATGTCTTAATATATTGCTAGCTTCCGTCTGGGGTGGTTTGTTTTCGGTATTTGTCTTGGTCAACTCGGTTTGGATCAGAAATCGTTTTGCATCATTGAGTACAGCCCTGGTTTTAGAGCTGATCTTAATGGAATTGGATACTGTTTTGCCAATTGATGATATGCCAAGCATATCACCTACTGATTTCTTGCCAGAGCTGGGGGACCGTCCTTTGTTATGGCTGACAGCTTTGATGACGATAGCGTTAGCTGCATACTGTATGGGGATGTATAAGCTGGCTTGCCGCCGGGCCGTGCTGTAATTTTCGTGCGAAAAGGGAGGAGTCTAAGTGTGAAGGTTATTAAACAGCAATGGCTGTTAGATACGACTGTACACAAGTGGTTTCTGTTAACTGCCGCATTGCTATTCTTTGGGGGATGTAGCAATGCGTTTTTAGTAAGTAATACACAGCAAAGCCTGTGGTTAGAGCAAACTCTGTTCTCGCGCTTTCTGATTTTTAGCCTCTTAATACCTAGTCAGATCTTGCTTTTATTGTGTACCTTTCGAATTAGGTTTCAAGATATTTACATCGTAGGTGGAAGATGGATTATTTGGAAGCAACTTAAGTACCGTTTGATAGAGATACTACTTTCAAGTCTTTTACCATGGGCGTGTGGCAGTTTAACGGGGATGCTTGTTAATGGCTGGAGTCCGACGTTAGGGGCAGTAGCTACTGAGGCATTGATTCGCTGTTTATATTTAATTTTGTCGTGCTTAGCACTTCTTCTGCTTACCAGTTTTTGCTTTCTAATTAGTAATCGAATTACGGCCTTTCTAGCAGGGTTTGTTATAAATGGTCTTTCTTTCTTCTTGAATGTTAACCACCACTTGTCTATAATTTATGATTTTGTTGTCCCGGAATTTGCTACTTTACTCTTTTCCTGCTTGCCAATAATGTTAGGCTTGCTTCTTTTCTTGATTTTCATTGTACAGCAGGAGATTTCCAGAAAAGATTTGTGAAATATGATATATAGAAAATAGAATTGAGTATAGCGATTTTAGGAGGTAATGTATATTATGTTACATAAAAAGTTTATTGTACTAATCGCATCAATTTTGATGACGATTGGTGTTGTTACTATTGTTTCACCTGTTTTAGCCGGAAATACAAGTCAAACTTATTGGCATAATGTATACAGAATCTGGTCTCCTTACGACCACACTCCGGCTCGTAGAAAAGAAACTAAATCTGCCTACTACAATAAGACAAATCATATTAAAATTAGTGGCAACTACATTGTTATTTGGGCTGCACTTTATGATGGCCGTGATGTTTCAGGAGGCCACAGGTACAAGAGTTATAAAGGACAAGTAACGAATTTGTGGAATAATGCTGTAGAGCGTTACAAGAAAGGCGTCCAGGTAAGAATTGATTCAAAAAGAGTGGCGAATGGATGGGCAGATGGTGTTTGGAGCCCTGACACCAAGTAAACTTTAGTCAAAGTGGCCACACTTAATTCCGGTAAAATCTCAAGCTTAAAGATAAAAAGCAGTCAACTTTTTTGAAGCTGACTGCTTTTTGCTCGTCTATATTCTGTTTTGTTGTCACAAATCTTTTCTGGAAATCTCCTACTGAACAATGAAAAGTCTAATATTATCATCAAGCAACAGAAGAATCAAGCACGACAAGCAAAAATAGTGAAACTTTCCAACGAAGTTTCACTATTTTTCATCAATACTGTTTGTTATTTTTCTTCATACCATTCGGTGTGGTAAACGCCCTCGCGGTCGTTTCTGTAGTAAGTGTGCGCACCGAAGTAGTCTCTTTGTGCCTGAATCATGTTGGCCGGCAGGCTTGGGTTGAAGATTGATTCCAGGTAGTTCAGAGCGGCGCTGAAGCTTGGAGTCGGCACGCCAGCTTCCGCAGCCAGCTTAACGACTGCTCGCAAGGCTGGCAGGTTCTTTTCCATCACGCCCGCAAAGTATGGGTCCTGGAAAAGGTTGTCCAATTGCTTGCCGTCAGCGTAGGCATCTTCAATGTGGTACAAGGTCTTGGCGTGGATGATGCATCCCGCTTCCCAGTTCTGCGCGATCGCCGGGTAGTTCAGTTCCCAGTCGTAAGCCTTAGCGGCCATGGTCAACTGCTGGAAGCCTTGAGCGTAAGCCACTATCTGCGCCAGGTACATTGCCTTGCCCAAGTTGTCGATCAAGTCGCTGGCAACTTCACCGTCGTAAACCACTTCCTTGCCTTCCCGGGTCGTTGCCTTGGACATAAACCGGGCCAAAACAGCTTCCGCTACCACCGTAATTGGAGTGCCCAGCTTGATGGCATCTTCCAGCATCCAGTTGCCAGTCCCCTTGTAGGAAGCAACGTTCAAGATGTGGTCGATCACATCGTCGTCAGTCAAGTCGTCCTTTTGCCGCAAAACTTGTGAAGCAATTTCAATCAAGTAGGCGTTCAAGTCACCCTTGTCCCATTCAGCAAAAATATCCGCCATTTCCTTGTTGGACTTGTGGGCTACCTTGCGCATGATATCGTAGACTTCAGAGATTTCCTGCATGATCGCGTATTCCATCCCGTTGTGGACCATCTTGACGTAGTGGCCCGCCCCTTCTGGCCCGATGTAGGACACGCAGGCGCGGCCGTCTTCAGTCTTAGCGGCCATCGCGGTCAAGATTGGCGCTGCTTCTTCATAAGCTTCCTTGTCCCCGCCTGGCATCAAGGCCGGGCCGTTCAAGGCGCCTTCTTCACCGCCGGACACGCCCATGCCGATGAAGTGCAGGCCGTGCTTCTTTAATTCATGGTAGCGGCGATTGGTGTCGTGGAAGTTGGAGTTCCCGCCGTCAATAATGATGTCGCCCTTGTCCAAAAGCGGGATCAGCTTCTGAATGGTTTGGTCAACCGGGTCACCAGCCATGATCTGCACCAGAATCTTGCGGGGCTTTTCCAAAGAATCAACGAATTCTTCCCAAGTGTAGCAAGGCTTCAGCTTGTCATCCTCGTACTTGGCCAAAGCATCGACTTCCGGCTTGTCGATGGAGAAGCCGGAAACTGAAAAGCCGTGATTTCTAACATTGAGGGCTAAGTTCTTGCCCATGACCGATAAACCGATCACACCAAATTGTTGCATTTATTTACCTCCTAGTATGTCTGCTTCTTTTATTATACTTGCAATAAAGAAGAAAGCGAAACCAAAAGGTTTCGCTTTCTTCTTTATTTATATCTCTCTTAGTAAGAAGCACCTGAACTAGCGTCTGGTGCAGTTTCTGGAGATGATGCACTAGTAGTTGACTGAACTTGCAAAGCGTCAGCCTTGTCTTCTGAGTGACCAGATGCACCTGAAGCCGCGTCAATTTCCAAACCAAACTTTTCAGCAAAGTATGAGAATGGGTGCAGAGCTTCTGCGTGGTAGTACTTCACGAATTCTGGGTCATCCAGAGTGTTAAGTTCAGTTGAGTAAGCCATGTGCTTAGTGTACTTAACGTCGATGAAGGCCGGGCCGTCCATCTTCTTCCATTCTTCTACAGCGGCTTGGAATTCAGCCTTGTCGTGAACAGTGAAGGCCTTCATGTTCATACCTTCAGCCACCTTTGCCCAGTCGTTGTCTGGAATGATAACACCTGACAGAGGTTGGTTGGATTCGTCACGTTGTTCTGCTTCGATGTAACCCAAAGTTTCGTTAGTGAAGACAACAGTCAATACGTGCATGTTGTAGCGAGCCAAAGTAAGCAGTTCTTCGCTCATCATCGCGAAGCCACCGTCTCCGGCCAAGTGCCATACTTCACGGTCTGGCATAGCAGTTGCGGCTGCAATAGCAGCTGGTGAGCCGTAACCCATGGTTGCGTACAAGCCTGAAGTAGTCCAGCGTTGCTTGCCGTTCATGTTCAACAGACGTACGTGGTCCATGTTGACGTTACCAACGTCAATAGCGAAGACAGCGTTGTCTGCGGCTTCCTTGTTGATGACATCCCAGATTGGTTCTTGGCGTACGCGGTCTTCGTCCTTCAAGTGGTCGTCAGCAAATGAAGCAATCCATGCGTCCCATTCTTCACGGTCGGCCAAAGCAGCCTTGTAAAGTGGTGATTCTTCACGGGCTTCACCGGCGTCGATCAAAGCACGCAAGCTCTTCTTAGCGTCTGCCAGGATTGATACGTCAACTGAGTGACGCTTGCCTTGCTTCTCTGGGTCAACGTCGATTTGGATAACCTTGGCGTTCTTAGGGGACCACAATACTGAGAATGGTGAGTTGTTACCAACCCAAACTACCAGGTCAGTGTGGCCTTGAACTTCGTTAGGAGCCTTAGCACCGATACGGCCGATAGTCCCCAAGTATGGCTTGAAGCTGTCTTCAACGATACCCTTGCCCAGGTATGAAGACATCATTGGCATCTTGAACTTGTCAGCAAATTCCTTCAATTCTTCAGCAGCTGCTGAAGCACCCAAACCGAAGTAAACAACTGGGTTCTTAGCTTCCTTGATCAACTTAGTTGCGGCTTCAATTGATTCAGCAGTTGGAGCAGCGTAGTTGTCAGCAACGTGGTTGCTTGCGGAAACACGGTAGTTGTCTTCGATTTCTTGCCAACCGAAGTCCTTAGGAATTACCAAAACAGCTGGACCCTTCTTTGCGTAAGCTTGACGGATAGCAGTGTCCATTAAAACTGGCAAAGCTTCCTTGGTCTTGGCTTGGTGGACCCAAACGGCAACATCACGGAACCATGGCATTTCGTCAAAGGCTTGGAAGAAGTTGATGTCTTGACGAGGAGTTGGAACATTGGCTACCAGGGCAACCATTGGGGTCTTGTCGTACTTAGCGTCGTACAAGCCGTTCATCAAGTGGATGGCACCAGGGCCAGCTGAACCCATGCAGACACCAAGCTTGCCAGTAAGCTTGTATTCTGCTGAGGCAGCCAAGGATGCGGCTTCTTCGTTACGAACTTCGATGAACTTGACCTTGTCTTGCATTTCGTAGATCGCGTTCATGGTTGAGTCAAAAGAACCACCTGGGAAACCGTAAAGGTGGTCAATGCCCCACTTGTACATAACATCTAAAACGGCGTTTGCGCCCTTAATTTTTGCCATAAGTGAATCTCCTTAAAAATTATTACTTGCAGCCCTTTATTAAACCACATTTTTTCACTTTTGCAAGTGCTATCAAAAACCGCTATATCAAGGATAGTCGCATTTTTAAGCTAGTTAATTCACAAACTTGCTTTTTCTGGATAAAAATTTTTTGCTATCTTCCCTTTCTTTATTGTGAAAAAGTAGCTAACTTCTGGAGAATATTTTTCGGTAAAGTTTCTATTGATTTTTAAAAAAGTATGAAAGCCATCGATTATTTAAAAAGCAGGCCAGGATCTCTGGTCTGCCTTCTAAAATTATTGCTCTTTACTTCTGAACCTTGGCGTATTTGCCATTTTGCACGTAGACGCTCAAGATGGCCAAGTCAGCCGGGTTGACCCCGGAGATTCTTTCCGCCTGAGCCAGGGTTTCCGGCCGGATCTTGGCTAACTTCTCCCGGGCTTCTGTAGCCAGGCCCTCGATCTGGTCATAGTCGATGTCCTTCGGGATCTTCTTGGCTTCCTGCCGGCGCAGGCGGGCCACTTGAATCTCCTGCTTCTTGATGTAGCCGGCATACTTGATGTCGATTTCCACCTGTTCCTTGACATAGCGGTCCCCGGCCAGCTTCTGCCCAGTCAGACGTTCAACGTCTTCAACCGTCACCCTTGGCCGTCTGAGGAAGACGTCTGCCTTGACCCCGCCGTTTAAGTCAGTTTGGCCTAAACCTGCCAGGTATTCGTTGACGGCAATGGTCGGGTGAACGGTGATTTCGCCCAGCCGGTCCAGGTCTTCCTGGATCAGTTCCTTCTTAGCCAAAAATTCAGCATAGCGATCATCGTCAATCAAGCCCAGGTCATGCCCCTTTTCCGTCAAGCGGAGGTCGGCATTGTCGTGGCGGAGAAGCAGGCGGTATTCAGCCCGGCTGGTCAAGAGCCGGTAAGGTTCTTCCGTCCCCTTAGTTACCAGGTCATCTATCAAAACCCCGATATAAGCTTCGTCCCGGCCCAGGGTGAAGGCTGGCTTGCCTTCCGCGCTCAAGGCTGCGTTGATCCCGGCAATCAGGCCCTGGCCGGCGGCTTCTTCATAGCCGGAAGTCCCGTTCATCTGCCCTGCCATATACAGGTGCTTGATCCGCTTGGTTTCCAGGGTGTGGGTTAACTGCCAGGGGTCAACCACGTCGTATTCAATGGCGTAGCCCGGCCGCATCATTTCAACCTTTTCCAGGCCAGCGACCGTGTGCAGCATTTCCAGCTGCACTTCTTCCGGCATGGAGGTAGAAAAGTCCCCGACATAGATTTCTTCCGTCTTCCGCCCTTCCGGTTCCAGGAAGATCTGGTGCCGGTCCTTGTCCGCGAAACGGACGACCTTGGTTTCAATTGACGGGCAGTAGCGCGGCCCTACCCCGACGATATCACCGGAGAACATTGGTGACCGGTCCAGGTTTTCATTGATGATTTCGTGGGTCTTCGGGTTGGTGTAGGTCATCCAGCAGGAAGTCTGGTCGGTTAGGTAGTCTTCATCCCTGCTGGTAAAGGAGAAGTGGCGGGGCTCCTTGTCGCCCGGCTCTTCTTCGGTCTTGGAATAGTCGATGGTGTGCCGGTTGACGCGGGGCGGCGTCCCGGTCTTAAAGCGGCGCAGCTTGAAGCCCAGTCTCTCCAGGCTTTCAGACAGCTTAATGGCTGGAATCGTGTTGTTCGGACCGGATGAGTAGTTCAATTCCCCGATAAAAATCCGCCCTCTGGCCGCGGTCCCCGTCGTCAAGACCACGCTTTTGGCCCGGTAGCGGGCCCCGGTGTTGGTCACTACGCCCCGGCATTCCCCGTCTTCAACGATCAAGTCGTCAACGACCGCCTGGCGCAGGGTCAGATTAGGGGTGTTTTCGATGGTCCGCTTCATCTCTTCGTGGTAGTCCCACTTGTCAGCCTGGGCTCTTAATGCCCGGACAGCAGGCCCCTTGCCCGTGTTCAGCATCCGCATCTGGATGTAGGTCTTGTCGATGTTCTTGCCCATCTCCCCGCCTAAAGCGTCGATTTCTCTGACCACGGTCCCCTTGGCCGGGCCGCCGACTGAGGGGTTGCAGGGCATAAAGGCCACCATGTCCAGGCTGATGGTGAGCAGCAGGGTCTTCTCCCCCATCCGGGCACTGGCCAGGGCTGCTTCACAGCCGGCATGGCCGGCACCGACTACGATCACGTCATATTCGTTTGAAACATAAGTCTTCATTTTTTTCGTCTTCCTTGCCTTCCTCGCTATTTCCCTAAGCAGAACTGACTAAAGAGGTCATTGATCAATTCATCCGGGGCGCTGTCACCAGTGATTTCCCCCAGGCTTTCCCAGGCCCCGGTAAAGTCTATCTGAACCAGGTCAACCGGCATCCCTGCCTCAAGCCCGCTGGCCACGTCGGCCAATTGCTGCTTGGCCTTGGCCAAAAGGCCCGCCTGCCGCTGGTTGGTCACCAGGACCTGGTCGTTGGAGTTTTCGATCCCCTTGAAGAAGAGCTTCTTGATCAAGGCTTCCAATTCGTCCAGGTTTTCCTTCATCATGATCGAGGTGCTGATCACTTCACTGCCGCTTTCTTTAGCAATCTCAGCCGCGGTCAGCTTCTGGCCCAGGTCCGTTTTGTTCAGCACGATGATCCGCTTTTTGCCGGCGGTCAGTTCCAAAAGCTGCCGGTCTTCTTCCGTCAATTCCTGGCTGCCGTCCAGCAAAAGCAGGATCAAGTCCGCCTGGGCAATGGCCTTCTTCGACCGCTCGACCCCGATTTTTTCCACCTGGTCCTCGGTATGGTGAATCCCAGCCGTGTCAATCAACTCCAAGGGCACCCCCTTGACAGACACGAACTCTTCCAGGGTGTCCCGGGTGGTCCCGGCCACGTCCGTTACGATCGCCTTGTCGCTTTGGGTCAGGTAGTTCAAAAGGGAGGACTTGCCCACGTTAGGCCGGCCGACAATGGCTGTCTTCAAGCCGTTTCTGAGGATCTGCCCCTCCTGGGCCGTCTCCAGCAGGCGGTCAATCTTGCCGCTGACGGCTTCCGCGCAAGCCAGCAGCTTCTGGGCCGTCACTTCTTCTTCATCGTATTCCGGGTAGTCGATGTTGACTTCGACATTAGCCAAAACATCCAGGATTTCCTGGCGCAGGGCCCGGATTTCCGTCAAAAGGCCGCCGGAAAGCTGCTTGACCGCCACCTGCCGGGCCTTGTCAGTCTTGGCCCGGATGATGTCCATCACGCTTTCAGCCTGGGTTAGGTCGATCCGCCCGTTGACGAAGGCCCGCTTGGTAAATTCGCCCGGGTCAGCCATTCTGGCCCCGTTGGCCAAGAGCAGCTGCAGGATGTCATTGGTGACCACGATCCCCCCGTGGCAGTTGATTTCCACGATGTCTTCCTTGGTAAAAGTCTTCGGCGCCAGCATGACGGAGGCCATGACCTCGTCGATCACCTGCCCGGTTGCCGGGTCCACGATGTGGCCGTAGTTGATCGTGTGGCTGGGAACCTTTTCCAGGTCCTTGCCCTTAAACAAGCGGTTGACAATGGCGACCGCATCTTCCCCGGAGACGCGGACGATGGAGATCCCGCCTTCTCCCAGCGGCGTTGAGATCGCCGCGATCGTATCAAATTCCGTTAAACGTTGAACCATCTCGTTACCTCGTTTTTTCCAATAAAAAAAGCGCAATTTCCACCATGAAAAATGATGGATAAAGCACTTTCACTACTTTATCTAAAAAACTTTAGATGAACATTCAATTATTTCCGCTTGATCCGCTTGTAAGCCCGCCGAATCTTGCGCTGGCGCTCGCGTTCAGCTTCTTCCTTGGCTTCCTGCTCCTTGCGGTACTTGAATGGGTTCTGCAGGACCAGGGTCTGGCCAACCTGGAAGAGGTTGGAGATCACCCAGTAAAGGGAGATCGCGGACTGGAAGACGATGGCCCAGATCCCGACCATGATGGCCATGACATAGCTCATCATCTTAGTCATCGTGGTCTGGGAAGACTTAGGCACCGACAAAGTCGCGATGTATGAGGACAGGAAGGTAAATACCGTTGCCAAAATCGGCAGGATGTAGTATGGGTCTGGCTTGCCCAGGTCCATCCACAAGAATTTACCATTCTGCATCTCTGGCGTCCGCCAGATGGCCTGGTACAGGGCCCACATAACCGGCAACTGGATCACCATCGGCAGGCAGCCGGCGTAAGGATTGACGCCCGCTTCCTTGTAAAGCTTCTGCGTTTCTTCGTTCAGCTTGTTCCGGGTCTCCAGGTCCTTGCTGGAATACTTCTCCTGCAAGGCCTTCAGTTCCGGCTGGATCTCCTGCATCTTTCTGGTGCTGTTGATCTGCACCGCGTTCAAAGGCAGGAGGATCACCCGGATGATAACCGTAAAGATGATGATGGCCCAGCCGTAGCTGCCCCCGCAGACTTTTGCAATCCAAAGCACGAACTGGGAGAGGTAGTAAACTACCCAGGCATCCCACCAGTTGCTGGAATTATGGGAGATCTGCGTTGGCTTCTGGGTGGTCTGCGTGGCGCAGCCGCTCAGAACAAGGGCAAAAACCGTCACCAGTGCCAGAACGGCCAGAAGGCGCTTGGTACTCTTCTTCGATAAAATGTCCTTCACTATTTTTCCTCTTTATTTGGCATTTCTTCAATGACGTGGGCCAGGTTCAGCGCGTGAAGCAGGTTTTCCCGCGTCTTTTCCCAATCGAAATCGTGAGCGTAGGGTCTGGCAATCACCAAGAAGTCCAAGTCCGGCGCAATCCGATCCCGGTTCTCGGTCAACACCGCCCTGATGTAGCGCTTGAGACGGTTGCGCACAACGGCCGTGTGACCGACCTTCTTGCCGACAGAGATGCCGACGCGAAAATGCTTATTCTGCTTTCTAGGCAGGACGTAGATCACAAAAGCCCGGTTGGCAACTGATTCGCCATTTTCAAAGACGGTCTGAAAATCCTGTTCAGATTTAATTCGATATGACTTTCTCAAAGCTCTTTACACTCTTGCAAATTAAAAAAACCACTGGGATTCAGTGGCTTAAGCAGATAATACCTTTCTACCCTTTGCACGGCGTCTAGCCAAAACCTTACGGCCGTTGCTTGTAGCCATACGCTTCATGAAGCCGTGAACGCGTGAACGGTGACGCTTCTTAGGTTGGTAAGTTCTCTTAGTTGACATATATTTGCACCTCCATTTTTTAGTGCTACGTGCACAATTTCTTATCTAGGATAGCACGGAAATCGAAAAAAACCAAGCTTTTTCTTGCAAACTTGCCCGATTTTTTCCTTAGACTGCCTGAGCATGATCCCCCGCCTGTGGACAGAAAGTAGA", "alphabet": "DNA"}, "features": [{"location": "[0:1864998](+)", "type": "source", "id": "", "qualifiers": {"mol_type": ["genomic DNA"], "organism": ["Lactobacillus delbrueckii"], "strain": ["ATCC 11842"]}}, {"location": "[322:1687](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0593"], "gene": ["dnaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05648"], "locus_tag": ["MAAAAKME_00010"], "product": ["Chromosomal replication initiator protein DnaA"], "transl_table": ["11"], "translation": ["MFDLEKFWDSFNAEMRSEFNEVSYNAWFKNTKPVSFNKDTHELVISVQTPVAKGYWEQNISANLIQSAYAYAGIDIYPVFVVKNGPTPSSERMLEPQPQAKPEKARPQGREFTKDLRLNEKYTFENFIQGEGNKLAAGAALAVADNPGTFYNPLFIFGGVGLGKTHLMQAIGHQMLAERPDAKVVYIQSETFVNDFINSIKNKTQDKFREKYRTADLLLVDDIQFFAKKEGIQEEFFHTFETLYNDQKQIVMTSDRLPTEIPDLSERLVSRFAWGLQVEITPPDLETRIAILRKKAESEGLEIDESTLDYVASQVDTNIRELEGALVKVQAQATIQKQDINIGLARSALADLKLVQKSRGLQISKIQEVVANYFQTSVPDLKGKKRVRQIVIPRQIAMYLSRELTDASLPKIGQEFGGKDHTTVMHACDKIARQIKTDTEIKSAVSDLRQMLER"]}}, {"location": "[1867:2995](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0592"], "gene": ["dnaN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06672"], "locus_tag": ["MAAAAKME_00020"], "product": ["Beta sliding clamp"], "transl_table": ["11"], "translation": ["MKFTVQRNLFINDLNSVLKAVSSRAQIPILSGIKLELTEAELIMTGSNADISIELSQPVSDDLRVESTGSIVVTAHLFSEIVRKLPGREFTFEVKEGNQIQITSDKADYVINGLDASAYPRLPEIAGTSFSLPSKTLRELITQTVFAVSTEESRPTLTGVNFSFKNGQIKAVATDSHRLSQRIVDIAAGPSEDLSLIIPGKNLQELAQIIGDADQDIKVYLGDSQIRFEFENLSFYTRLLEGVYPDVDRLLPTESTTSVQFTVSDFMQTLSRASLLTHANRTNAVQMTLNVADQTVLVSGNSPEVGKIEEEVGFSSLTGRDLTISFNPDYMAAALRASVTDSVIINFTESLRPFTVVPNDQSVEFVQLITPIRTF"]}}, {"location": "[3216:3450](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKVKTIETFAINGEFITLGQFLKDECIVSSGGQAKWYLKDSPVLVNGDKEDRRGRKLYPGDRLTVAGKEYELVQGL"]}}, {"location": "[3449:4595](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1195"], "gene": ["recF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8RDL3"], "locus_tag": ["MAAAAKME_00040"], "product": ["DNA replication and repair protein RecF"], "transl_table": ["11"], "translation": ["MYLSRFKQSGFRNLAPLNLEFDPHVNVFLGENAQGKTNLLEAIYFLAISRSHRTSNDREMIAFGQDFASLAGRVHKRQLDLDLRIVISKKGKSAWVNRVEQARLSKYVGHLNAILFSPEDMELVKGAPSLRRRFMDLEFGQINPEYLYFASQYRQLLQQRNNYLKQLARRQASDQVLLGVLTEQVATAASELIWRRYRYLADLNRYAAEAYRAISGQREELRVLYRPSAKEITAADQPAQIKQKLLDRFAEIADDELRRATTQLGPHRDDLEFQLDGKNAHLFASQGQQRTIALSLKLAEIQLIKQLTGEEPILLLDDVMSELDQNRQAALLNFIHGQTQTFITTTDLDSISQEIVKQPRIFYIHSGQIIEKEEGLNGRRR"]}}, {"location": "[4578:6540](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0187"], "gene": ["gyrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q839Z1"], "locus_tag": ["MAAAAKME_00050"], "product": ["DNA gyrase subunit B"], "transl_table": ["11"], "translation": ["MADEDNKLKKAKQFEQEADKYNASQIQVLGGLEAVRKRPGMYIGSTSSQGLHHLVWEIIDNGIDEALAGFATKIEVTVNEDNSVTVQDDGRGIPVDIEKKTGRPAVETVYTVLHAGGKFGGGGYKVSGGLHGVGASVVNALSTKLNVTVMRDGKKYYIAFDHGRVVEELKEVGTVPLTEHGTIVHFWPDPNIFTETTVFDDKILKNRIRELAFLNKGLKLTFTDKRNDTAETYVYHFEGGIKEYVSFLNRGQEVLFDEPIYVEGKYEGIDVEVSLQYTTGYKTTLMTFANNIHTYEGGMHEAGFKTALTRVINDYAHKAKILKENDDNLSGEDIREGMTAVISVKHPSPQFEGQTKTKLGNSDARTAVDRAFSETFSTFLMENPQVARKIVEKGQLAERARVAAKRAREVTRKKSGLEIANLPGKLADNTSNDPNISELFIVEGDSAGGSAKQGRSRLTQAILPIRGKILNVEKASMDRILANQEIRTLFTALGAGFGADFDVSKARYHKLIIMTDADVDGAHIRTLLLTLFYRYMRPMIDKGYVYIARPPLYQVRQGKLIKYLDTDEELHDYLGSLQPSPKPIVQRYKGLGEMDAEQLWETTMDPENRRLDRVDPEYAKDADEVFEMLMGNEVGPRRKFIEDNAQYVENLDA"]}}, {"location": "[6552:9024](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0188"], "gene": ["gyrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPM2"], "locus_tag": ["MAAAAKME_00060"], "product": ["DNA gyrase subunit A"], "transl_table": ["11"], "translation": ["MDNENQGQDRRIRNVDLTQMMRSSFLDYAMSVIVARALPDVRDGLKPVQRRILYGMNELGVTPDKPYKKSARIVGDVMGKYHPHGDSSIYLAMAHMAQDFAYRYMLVDGHGNFGSVDGDRPAAMRYTEARMSKIAVEMLRDINKNTVDWQRNYDDTENEPTVLPARIPNLLVNGSSGIAVGMTTNIPPHNLSEVISGIHMLMKNPDVTTKELMKAIPGPDFPTGGILMGRGGVLHAYESGKGNIVVRAKTEIETEKSGRERIIVSEIPYLVNKAELVQKIAELARDKVIDGITGVRDESDQSGMRITIDVRRDASASVVLNNLFKETQMQTNFAMNMVAIVDGAPKFLTLKQMLQYYLAHQEDVITRRTKFDLEKAEARAHILEGLRVALDHIDEIVSLIRNSESSDIAKAGLISRFDLDDRQAQAILDMRLVRLTGLERDKVEGEYQELLVKIADYKDILAKPERIDQIIYDELLDIQKRFGDKRRTQITASEVVTIEDEDLIEEQDALLTLSHQGYVKRMLIDDFKTQNRGGRGIKGMGVQKGDFIEHLLYSSTHDYLFFYTNKGKVYMKKAYEIPEYGRSAKGLPIVNLLQLDKGEHIQTVVNLPQGHDDDYAFFITKLGTVKRTKIREFENIRTNGLIALTLKDGDELSNVLTTDGQQNILIATHQGYAVTFNEDDVRAMGRSAAGVRGINLREGDYVVGSGILKPEDEVLTISEKGYGKRTAASEYPVKGRGGKGIQTAKIGEKNGPLAGVAVVDGQSDIMLITTDGIMIRFKTSDVSQTGRSTMGVRLIKVADGNAVASMAVVPAEAEGESEPETEV"]}}, {"location": "[9239:9533](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0360"], "gene": ["rpsF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21468"], "locus_tag": ["MAAAAKME_00070"], "product": ["30S ribosomal protein S6"], "transl_table": ["11"], "translation": ["MTTKYEITYIIKPDVDDEAKKAIIDKYTKVIADNGGEMVEAKDWGKRRFAYEIEKYREGSYYIMTFTAEDAAAVNEFARLSKIDDSVLRSMTVKLDK"]}}, {"location": "[9573:10149](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0629"], "gene": ["ssb"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66854"], "locus_tag": ["MAAAAKME_00080"], "product": ["Single-stranded DNA-binding protein"], "transl_table": ["11"], "translation": ["MINNVVLVGRLTRDPELRTTGSGISVATFTLAVDRQFTNASGQREADFISCVIWRKAAENFCNFTSKGSLVGIQGRIQTRNYDNKDGQRVYVTEVLVDNFSLLESRRERESRQQNSGFGGQGQSQNTGFNTGFGGGSGYANNAFGSPAQSNGPANAGFNEDNKKDAGGDTNTNPFDSSDDAINVSNDDLPF"]}}, {"location": "[10175:10412](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0238"], "gene": ["rpsR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNZ2"], "locus_tag": ["MAAAAKME_00090"], "product": ["30S ribosomal protein S18"], "transl_table": ["11"], "translation": ["MPQQRKGGRRRRKVDLIAANHIDYVDYKDVDLLKHFISERGKILPRSVTGTSAKNQRKVANAIKRARIMGLLPFVAED"]}}, {"location": "[10552:12574](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.59"], "codon_start": ["1"], "db_xref": ["COG:COG3887"], "gene": ["gdpP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37484"], "locus_tag": ["MAAAAKME_00100"], "product": ["Cyclic-di-AMP phosphodiesterase GdpP"], "transl_table": ["11"], "translation": ["MKNFLRKLELPEFVRDSRLIIAFSSIVFLTVLSTVVAFFINRIFGVALLLVLIVDVFWVVFGVYILAKNTNNYAANLSYRIKRGEQEAMIKMPLGILLYDESRHIQWVNPYLQLYLGDKDAIGKTITAVDRKLGKLVEEALEAQTSESKVVKWGDHQFEMVVQDSIGVIYLIDITRYADLADKYRAERLAIGQIFVDNYDELSERMHDQELARTSTYLQTTLNDYAEKFKAYLKRIDEDHFLLLAHLQDLEAMEEDKFSVLDKIRLETSRNNTPLTLSVGIAYGGESLRKIANQAQANLDLALGRGGDQVVLRELGQVARFYGGKSNPMEKRTRVRARMVSQALGELFKDVDQVFVQGHQRPDMDSVGSGIGVVKIARLHGVKAHFLLDTAHCNYDVDRLVKKMQAEDPQLDLFVSPDEANAVATDNSLLVMVDHSKYSITYDQRLYDRLRNRIVVIDHHRRGEEFPENPMLTYVEPYASSASELVTEMVEYQQPAEDNRVLTNLEATAMLAGITVDSKEFSLRTGTRTFDAASYLRSIGADSSVVSELLKEDISSFLVKSHLVASLQMLRPKMAVMQGPEDKVIDPILTAQAADMALDLEGVSASFAITRRSGDKVGISARSMGHINVQVIMEKLGGGGHLSNAATQIKDITVKEASQRLLAAIDEYLEENS"]}}, {"location": "[12596:13052](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P02417"], "locus_tag": ["MAAAAKME_00110"], "product": ["50S ribosomal protein L9"], "transl_table": ["11"], "translation": ["MKVIFMQDVKGRGKLGQVKDVPNGYAQNYLIKQGLAKEANKGNLNTLKRVEANEKAEYEAQKAAAQEIKKQLEADETVVELKAKAGSDSRLFGSISSKKIIEGLDKQFGIKLDKHKLELREPIKVLGYTNVPVKLFKGVESKVRVHVTQEN"]}}, {"location": "[13075:14446](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG0305"], "gene": ["dnaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37469"], "locus_tag": ["MAAAAKME_00120"], "product": ["Replicative DNA helicase"], "transl_table": ["11"], "translation": ["MDNLVTQQIPHDSAAEKAVLGAIFIDPEVINEVSSVLEPADFYEHANRLVYSALLALYDESRSIDLVTLQEELKRRGQLEELGDMAYVSELLLATPTAFHAKDYARIVHQKAQLRNLINASQKIISSAIQGSDSVDEILSNAENEIMNVSNEKGSGGFHKIEDLVAGAFEQISNNAQNQDVVTGLRTGFAYLDEMTTGLHDDELIILAARPGVGKTSFAMNIAKNVGITEKKPVAVFSLEMSGEQLVQRMLASTGLIDSQHLRTGILDRDEWNQLDMAASVLRQAPIYIDDTPGIKISEIRAECLALQKELGDLGLVVIDYLQLIEGPKTESRQQEVSAISRQLKKMAKELHVPVISLSQLSRSVEQRQDKRPILSDLRESGSIEQDADIVGFLYRDDYYRDEDADGEEPKEDPENVEVEVIIEKNRSGRRGSAKLMFSKPYNRFSNLDTGHEAQG"]}}, {"location": "[14494:15652](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MASTLDYLRWRGDLPFQACPFNSLDASLMASLAYLPFDGSTVGHSLGEVCQSIYQREPDRWQNLDKTELLLLPKSPRLADLTVLDWVNKMEIEPEPIQFNAGAFRLDDRTILVAYRGTDQSMIGWSEDMVMDYTPEITGHRLAAKYLNQIGQAYPNDRIYITGHSKGGNYAHYALAFADPQIQARVIKSYSFDGPGYRHQIYGTSGFQDNIKKMKTYIPESSIVGCMLDHTERVLVVKCNQPVLSQHDPRTWSVGRDSYVLAQEGLTTTARVIRHSLIAFNHQIPAEKRGQMWSALFEAFDSLDITKIKQISGFTGTYRFSRAYFAMDPEMRAIFRQIFNNIIETARQSLTLPFNMSDDPYKNRPNFNDSKKGPIFFDAYDIKQE"]}}, {"location": "[15759:17865](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00140"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MDLLKIEGLSVKYSEKTILSKISFSFLPGNFYLIKGPSGIGKTSLINCLGLLKKPSSGSVFWGEKNLWELSDNDRADFRHSYISFVFQKNNLVENMSVKNNILLPLATSSDYNSDHAIKKLSEITRLLKIEDLLGKFPKDLSGGEEQRVAIARALISQSKIILADEPTSSLDETNADNIYGFLSKLAHDFGKIVIVVSHESLPSKYADSILEIRNQSLLMVKDDTHSFTKDEEPIKKTNDLTLKQSFSYNSKLKNHISSLSCILSVVVVLLMLLSSYLPALPTILVNKQESSFSAVMDKNIFVVNDVAKVNSPQDLDSYRAFSSKTTSKIKNAFLGAKVYPFINFTSYGITPTNVRTAVPKSYSIYLGNKQRTISNDFSIQPIYPEDLNKKYFYEFGKPLKNSKNFVVSQDFLSQNGLSVKSVMNKVITLKAYVPYLLYITETELPNDNTKSISIDGDVYKVVTIKAKISGVYKSNYPYHRSEQGNVFFMDYKAMKDIQDKVISKSDIHKRVFKSFSQKAWAPSAYVLAMKNINQLKSAPKKLSSISKDIRTYSTLQNVDNVKQQLEQTKRATYKFTFFIVLLVFLVLYVIFNIIYKQRTYEFGILKCIGFSNKDVFKIITAYSVKIGTLYALLGTIITVVSYFMLISKNTAIGIPIFFEALLRLVLLCYVLTFLAVLPTFAKIAKIDPIDVITESRTADL"]}}, {"location": "[17407:39909]", "type": "protocluster", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "category": ["RiPP"], "contig_edge": ["False"], "core_location": ["[27407:29909]"], "cutoff": ["20000"], "detection_rule": ["(micKC and not PKS_KS)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iii"], "protocluster_number": ["1"], "tool": ["antismash"]}}, {"location": "[27407:29909]", "type": "proto_core", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "tool": ["antismash"], "cutoff": ["20000"], "detection_rule": ["(micKC and not PKS_KS)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iii"], "protocluster_number": ["1"]}}, {"location": "[17407:39909]", "type": "cand_cluster", "id": "", "qualifiers": {"candidate_cluster_number": ["1"], "contig_edge": ["False"], "detection_rules": ["(micKC and not PKS_KS)"], "kind": ["single"], "product": ["lanthipeptide-class-iii"], "protoclusters": ["1"], "tool": ["antismash"]}}, {"location": "[17407:39909]", "type": "region", "id": "", "qualifiers": {"candidate_cluster_numbers": ["1"], "contig_edge": ["False"], "product": ["lanthipeptide-class-iii"], "region_number": ["1"], "rules": ["(micKC and not PKS_KS)"], "subregion_numbers": [], "tool": ["antismash"]}}, {"location": "[18014:18404](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRKAKGLISLAAAMSVFAVFANLNEQKADAAFVSRQATCTWKSRANITTGWFTLHGKGYSYPNSGKVTSAWITSGSAMFNTIVNKKHWTYKTPRGMHLMGQATDKCAVGTQWAYVPISSDTRTVGVQF"]}}, {"location": "[18416:18641](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIETIKPIWLTLLLVLSFILPLLGWLPLVYLYSQRQDPAMQGMEKTLKLAAGVQVGCLVILAAIFYFFAPIHD"]}}, {"location": "[18751:19456](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1285"], "gene": ["sapB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45514"], "locus_tag": ["MAAAAKME_00170"], "product": ["Protein SapB"], "transl_table": ["11"], "translation": ["MEKFTGIPVSFQLVWLLRILLSAFCGGLIGFERATQRKSAGLHTHVVVAIASTLFSIVSKYGFYDMLTFSNVSYDPSRIASLTVTGISFIGAGTIMVHKEQISGLTTAAGLWATSAIGIAIGVGLYWVGIVAAVLLLLVQRFLREETVLNLLRKVSISLLIEASNTPHILETIQSELEKNEVHQLSIKIISVSDDHVLFSCDGEIASRIDENQIIMNLRKYPDIKRITYSPGSK"]}}, {"location": "[19583:19658](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_00180"], "note": ["tRNA-Thr(agt)"], "product": ["tRNA-Thr"]}}, {"location": "[19985:20390](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFKILFARQIDLVEFGKLVQGTYDSAENKAEKRYQSQMNVAVSTKDLKLMEKYCQDIIESSNDEILQLRALVALAYFKGELGGLSKEIRVKIKEKFDEGRNWTKRTELLGLLANTMLLWDQDDLNYSRKISQTV"]}}, {"location": "[20577:21507](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_2"], "gene_functions": ["transport (smcogs) SMCOG1000:ABC transporter ATP-binding protein (Score: 136.2; E-value: 2.5e-41)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00200"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MEDARIKRQACLSVAEFTQEIVDNIGIVGVPFLAGILYFRGQVAFGAIIAAGYLANGVFSSLQESFSAYISAKSTTKLNETMLQHLQVQAAAKTEDPQTIIGRGIEVNLGGQVIKYPDFTIKAGEKVLLTGPSGCGKSSLFKLLLGQIEPSKGQLTYLDSEGKEIQNPARSFEYLPQAGWIFPGTVADNITMYDAKKQTKLAEVLKKVGLDRDFSKAVDLDREVSPQQADLSGGQKQKIFLARGLLRHKKFSLMDEPLSALDQASRQKILPLLLGRKQTLIFVGHNLPLEERERFDQVINLKEGENFAN"]}}, {"location": "[21674:22625](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene_functions": ["transport (smcogs) SMCOG1288:ABC transporter related protein (Score: 90.2; E-value: 2.1e-27)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q57538"], "locus_tag": ["MAAAAKME_00210"], "product": ["putative ABC transporter ATP-binding/permease protein"], "transl_table": ["11"], "translation": ["MLLLGSLLDQVTDYFWELHLEKYFHQIRQEVLAHAYAEAAGTKENLQSELTNDLEMLKDQYADSIGGIVHSAVLLALVAGSLASFRWSLLLLVIAVSVLQMYLPRVLDEPLQKATDKISASNRKYLQTLADWLNGIDTLRRYAVGEKFLSIIHADARELESAYVKQQKADQELDYLNQAIYSLGNMLIFLLTAYLVARGQLEFGLIASVNDFSLYLFGSLMNIANYRGQLVVSRGLQEKILDLRQPLTKAEEGGTAPAAFSVKDLRLAFANGHEIKYPDIQVKPGEKVLLTGANGTGKSTLFKLLVGEAAASGGHF"]}}, {"location": "[23056:23839](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3279"], "gene": ["agrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0I7"], "locus_tag": ["MAAAAKME_00220"], "product": ["Accessory gene regulator protein A"], "transl_table": ["11"], "translation": ["MLAIIILEDNTAEREIIQQMIENRIQINETPAAYDARVVLSTGDPHSVLAYIAEHQDLNYLAFLDIDLKTSLDGIEVASRIKNIGILSQIVFVTADATALRLTIERHVEPLDYITKDAAPLEIQHRIYETVDTAYKRYRLTMTSAKQTSYFTYSKIRNFVEKIPLADLYYISIQPKKYKTLRVYAKNKVFDCLGTLKDYEKRYPSLVPADRQSLINLDAVQNYDEKKGIAYFDQGIAHSVAVRRRRSVMLKLNATKNDLA"]}}, {"location": "[24068:25148](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINSLFNNLAFNPYLFSVLLAFTLAGVKRSDLLLYPLLLLPVLFGYQYVLAAIIALQLISQLFARGQAKSLSRLFFYYLVLILYPILGELFGWIVQLLFYFFTHHLLDHVAINLVCFLPEILICLLFCFLKKHFAINLEKIAADVKGNPQFLNLLVWIVWSFLLVTHVIWSMIEVFSIAPLVELGLMTIVLLLITVLFFNLYQAIQKNQEIMATRIQKAEIQQIQEYSSRLEEANISLRKARHDYKNSLLALNGYLLTADVAGASKYLEELVADSNRLQEAANSMTLELANLQIKELKYLIIDKLQQAQDQGIKTKVEINKPIATLPVNIVSIIRCVGIFLTTRLKPASHRQMGRSAFC"]}}, {"location": "[25331:25499](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTDTQNFQTENNPALKNLQGTATSIRAKKHRRKTRVSNSNISILCNHINFNILG"]}}, {"location": "[25520:25688](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGNYILMIEKELSQAFKELEQPRSKHWNWRNAHSHISIMCPNSDSHFSIFSIKIR"]}}, {"location": "[25691:27401](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["bmrA"], "gene_functions": ["transport (smcogs) SMCOG1288:ABC transporter related protein (Score: 312.4; E-value: 9.9e-95)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06967"], "locus_tag": ["MAAAAKME_00260"], "product": ["Multidrug resistance ABC transporter ATP-binding/permease protein BmrA"], "transl_table": ["11"], "translation": ["MKLLKITPRLLWGILLSMIASLLNLYLPLLVRHFINLKQFAWSGLSKKVLLLGGLILIGNLLVSSLSDYLISSEGDRQVRQLRLRLQKQVLRLPQKYFDQQISGNLTSRIINDVNVLRSFLTETIPAVVTGCLTILGTMLITFSLDWKLTLLMLLVFPIDGLVTVPLGKISEVIADQTQSSLAALTGVTSESIKQIKTVKLNKTEEDVFAKNAREINKLYRLSLKGDRIAAMIGPLQSMLSFCLIMAVVLYGTLRVKSGSLSTGTLGAFMMYFFQIIGPINNVALFYSDRKQMLGATRKISEIINETAEETAGKEQLAVAPGSSLLRLDQVSFAYQDLPVLEKVYLEARSGEKIALVGATGAGKTTLANVITRLYPVAAGRISLNGQASTDFSLEQWRGFFSVVLQENTIISGSIRDNLTLGLNRKVTDQELWDALALVRLEEYAKKLPKGLDSLLGESGKQLSGGQRQRMQIARACLRDFKFLLLDEATSNLDADTEKIIMTALDRLKRTKNCGQITIAHRLATIANSDRIYFIKNKTVVASGSHEELLEKVPDYRRYVHEQQLKEKR"]}}, {"location": "[27407:29909](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0515"], "gene": ["ramC"], "gene_functions": ["biosynthetic (rule-based-clusters) lanthipeptide-class-iii: micKC", "biosynthetic-additional (rule-based-clusters) Pkinase", "regulatory (smcogs) SMCOG1030:serine/threonine protein kinase (Score: 74.9; E-value: 1.2e-22)"], "gene_kind": ["biosynthetic"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O88037"], "locus_tag": ["MAAAAKME_00270"], "product": ["putative SapB synthase"], "sec_met_domain": ["micKC (E-value: 1.8e-131, bitscore: 436.5, seeds: 18, tool: rule-based-clusters)", "Pkinase (E-value: 2.3e-11, bitscore: 40.4, seeds: 54, tool: rule-based-clusters)"], "transl_table": ["11"], "translation": ["MLEEQIKYLEAARNSGSLFYTRQKGEEEHFFTLKDRPDAAWLEKKTANWHYILYEPDELPVQGWKIHLSATVKQAQGMLDEVAPCLIKQKVSFKFQSSLEQYVESNSKYADRGESGKFITVYPRGEEEFACLLAELQKLTETFALGPYILSDQNWQESNVYFRYGGFKPLYLVNAAGERVPAIYDPAGNKVADQRLPYYQQADFVKDLPIFGKNTFPKQEAFAPLEEYQVKEALHFSNAGGVYLALHEGKKVVLKEGRQQAGLDANLKDGFARVENEAEILRQLADLTGVVNYLDDFTSWRHHFLVEEYIAGQSLEELLATEFPFVVGDLEKKARYKAKAIKILEQLKELLKQIHARGLAVGDLSLSNILVTEDGDVRLIDLENAGKATEKYVPGLTTVGFVSRAAKTYAEADDFALARIAYYLFLPVIPVADLAPDIIAKQEKWIGGYFGQDLVQFLRKIAGNMQASEPIFLKKPLAIPEKDLSRQTVDFFTDGLTRGILRHSRFDQVGLVPNLHEKNADPMELLNLARGAAGILWAVGQNADLQAWVARNQGKIIKIAEESEATGLFNGLAGLASVLEKRDFPALAKQLRQILRQKVDLNMADNSLATGLTGIALALREEKPEVSEKIAEELAGRWKQVDFANFADEDVGLLTGWGGVSWLFWQLGQKEVAEEIVSRILRDHAEEAETLTISDQSRGFERLLPYLENGNFGLALLMHKFMREDPAFKQRYQLPFDKLKKSCLTYCTYMETLVSGYSGVLPLAKSLAGDGDYALLDYALAALNQYLVANNDEILAPGKYGYKLSLDFSTGSAGLLTLLKDLRQRDEFSWLPL"]}}, {"location": "[29928:30090](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNVILDFEKMVERKAEQLSRKEITPASSLSILCTGHDVSSFGIGSLLFKLFK"]}}, {"location": "[30185:30258](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_00290"], "note": ["tRNA-Thr(agt)"], "product": ["tRNA-Thr"]}}, {"location": "[30392:31031](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG4619"], "gene": ["fetA"], "gene_functions": ["transport (smcogs) SMCOG1000:ABC transporter ATP-binding protein (Score: 203.4; E-value: 6.6e-62)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77279"], "locus_tag": ["MAAAAKME_00300"], "product": ["putative iron export ATP-binding protein FetA"], "transl_table": ["11"], "translation": ["MALIELKQVSYRAGDQEILQDVSFAVEEGDYLTLTGPSGSGKSTTLKLIAGLISPNKGEIFYKGQNLDSLDLVQYRRQVSYCFQQPTLFDETVKDNLALPFAIRKQDFAEKRAQEALKQVDLPADYLDKKITTLSGGEKQRVALIRNLLFRPELLLLDEVTTGLDEESKQIVYQLIARVHQEGTTIVQVTHDQEELAASKQLLHMEKGGVLK"]}}, {"location": "[31027:31795](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0390"], "gene": ["fetB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77307"], "locus_tag": ["MAAAAKME_00310"], "product": ["putative iron export permease protein FetB"], "transl_table": ["11"], "translation": ["MKAIAVSDLSLILSFALVLVPVAISWKEKLGLTRDIFYSVGRAIVQLVIVGYVLKFIMQVNNALLTLLMTLFIIFNAAWNANKRDPNPNRQLWQSIMALLIGTYITLGVLLLTQTVKLKPMQIIPITGMIAGNEMVAMGLCYKVLATGFHDQRQQVLEKIALGADVKTASMTILRRSIKTAMQPTIDSAKTVGLVNLPGMMSGLIFAGVDPVYAIKYQIMVTFMLLSATGLGAVIAGYLSYRNYFNKRSQLREEQ"]}}, {"location": "[31797:32049](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLEKYFTWLAEVLLIIVVGVGLVFITLHSLYYSYGMMIFGEHSAAATEMFWESEKIWSSIYTVAVIVIAVSTQIVRSFKSSKK"]}}, {"location": "[32269:35089](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKRLKLLALVSTLTAAVSMSFAGLTQASTTSASSRSYGVDVSSYQPTSTTEYSKAGAQFVIVKVSEGTSYRNPNAKAQVASAKANKLLPMAYHFANFGSSSSRAKSEADYAIASAKAVSLPAGSYLACDWETSSGNSTSGSRSANTSAIMAFMKKVKAAGYQPLLYSGSYLLNNAINMSTVTSTYPNSLWVAYYTSSGRIDAPDFSYFPSMNGVIIWQFTENWKGLNVDGNISILPLSISSSLSSSSSSRPSKTPASQAPVSKTKKKIMSKSYVYTSAGKRTGAYKSAYTYVYVIGGIVKIGSNNYYKIGTNQYIKVNNVDGTARKLVHSAWTYNSKGKRVKSVATLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKRTGAYKSAYTYVYVIGGIVKIGSNNYYKIGTNQYIKVNNVDGTARKLVHSAWTYNSKGKRVKSVATLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKKTYYRINVGRYIKAGNVK"]}}, {"location": "[35341:35464](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQIRKAELKDFDQVMAILQDGRNQLAESGIDQWQGGLPES"]}}, {"location": "[35604:35859](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTLPSTGWPSTPTTLVNGYASQLYQAVINYFTSGFNDIKSVRVDTHEDNLPMQHLIEKSGFKRVGTLHGVYRGKTRPATFTNF"]}}, {"location": "[36263:37130](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.35"], "codon_start": ["1"], "gene": ["pdxK"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01638"], "locus_tag": ["MAAAAKME_00360"], "product": ["Pyridoxine/pyridoxal/pyridoxamine kinase"], "transl_table": ["11"], "translation": ["MKSVLISQDLSCVGQVSLAVALPVLGASGLQTAALPTAILSTHTGGFGENTFLDLSASLPDIWAHWDKENISFDAIYLGYLGQAASRVWEKGLEEYSRQGKLILLDPAMADHGRLYRGFDDSYVVQMQLLARQATILTPNLTEALLLLNEPVDFTEVDSHRACVITQRLAQKFALSQVVLTGVSLADNRIGVYGLSRGGRVWERTQSGFRTAILARGTFLPAASWPACFTGWTWNRRLAWPGTSWPRQSWQLIWTRTSALALITRRPCLGFCSNCTISALIIYLKEEK"]}}, {"location": "[37129:37687](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRDEQNSLRAVVMTGLFAAMIYIGIWVLRIPLPAVVGRPFIHFGNTLTAVAILYLGFRNGTLAGIIGLGGFDILNGYAATSWLTMLEVVVVAAILSAVYKGMKYNDSKKNIIILAVIAGVTKIFTSYATMVVAALMAGTALQPALVAAFLSLLATVINSCSTAVCTPILYFALKDITVRVMKRAH"]}}, {"location": "[37713:40479](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["uvrB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00204"], "locus_tag": ["MAAAAKME_00380"], "product": ["UvrABC system protein B"], "transl_table": ["11"], "translation": ["MELSPLSPPRLVSNQQENIWQTLRRQLLTCQSFTWAVAFITADMLPPFKLVMEDLQASGIRGTIITGTYLAFNQPRVFAELLKISNLTVRIADGPFHAKGYLFDHGDWQTAIIGSANFTRSALLANQEWCLKVDSQTDSTLPRQLAAALADLTGKSQPLTYTWLADYEKSWQPPAKPVLHVKQEKIVPNQMQAAALENLQALVKSGARRALVVSATGTGKTYLAALAVKDFAPRRFLYLVHREEIARKALETFKKVIGGKDSDFALLTGTSHQQARYTFATIQTVSQDQFLASQAADFYDYILIDEAHRSAAPSYQKVLNHFSPAFCLGLTATPERMDQQDIFALFDYNLAYEIRLADALESKMLTPFHYIGIRDYEIDGQTSDDFSDLRWLGAKKRVSYLLKELDYYGYSGTRPCGLVFCSRQEEARQLAEAFTQQGQPAQALTNQDSPAVRRQAVKDLESGRLHYLVTVDLFNEGVDIPALNQIVMLRATQSATVFIQQLGRGLRLYPGQDFVTVLDFIGNYQNNYLIPLALAWKKLSRDQLKYQLQTVSFAGLSTINFSRIASQEILASLDKVKLDSLKQLREAYADLASSWAGRPFCWIFAKKGQVSPRLWLDNKSLPHYGAFLEQMGQPYQLSSYESQVLSFVTKELAPGQRPHELLLLQALLPKGQISQTDFQALLKNYGAYDSPALEKSLEAILSLDFYDVKSGSTSQKAKYGGEPVACLKDGCWSLNPQIVQASPDFLRLFKDAVETGLFLAKEKDPAQDFTLYAAYDRKEVCRLLNWPLDVSRPMYGYRLSGNVCPVFITYQKTDQEQRNARYDNQARGQRLAWYTRTPRHLSSPEVQQLLRGTESGQQVTRIPVFVKRADAYGPKFYYLGSAKIDPATVREVNLKGKSAVGLDLVLPDPLPAKIADQLFSN"]}}, {"location": "[40626:41154](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKAKEIRALAQENLKQIPKKIYMPMGLLLVLANIIPNVVDQATDSKSGVGANIIFFLLEIAAALLTANGYIFFDRWRNKIQKGGEEPNAWCGLTGQHIARLLIYGVIEALIIGTVAVAIAAAVVGLAIPQVSVAVSIILLILLVVLLVWIELRLTYVVYVIDDDVRTGQKRSVWA"]}}, {"location": "[41099:41234](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYQPKKDKLRQSSFQTRPLVSFQPAPIYAQTDRFCPVRTSSSIT"]}}, {"location": "[41422:41902](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAHALYISEIHMDLNEYTRMAMKVTEKSRRRIIMIAEAIWIAAGAVAFALKQYDFTVMFALVIAFYPAAIVYLYKRRLKKIYAGMPAIKDDYVRYEFYPDHFLVLTNRGDGEYHYDQITRYVETDEEIIMMPAPDQGMLLLKKNCSPDLIKFLREKCQR"]}}, {"location": "[41992:42421](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1959"], "gene": ["ywnA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71036"], "locus_tag": ["MAAAAKME_00420"], "product": ["Putative HTH-type transcriptional regulator YwnA"], "transl_table": ["11"], "translation": ["MKFSHKLSDAVHLLAYIEIFPDDDLSSRAIARSIVTNPSMVRSLMMDLRKAGFLKTKQGSAEPELAKKPEEISLYDIFAAVGMEHHLLHVDEDTEQKCPVGGNIQGPLAKAYAEVEEAAFAKMREISLREIVDQIKEEGQLA"]}}, {"location": "[42559:42787](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.5.2"], "codon_start": ["1"], "db_xref": ["COG:COG0702"], "gene": ["qorB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39315"], "locus_tag": ["MAAAAKME_00430"], "product": ["Quinone oxidoreductase 2"], "transl_table": ["11"], "translation": ["MKYAISAATGNFGQTAVKNLVDAVGAENVVSIVRNKEKGKQLLPAGIEIRQADYGDEAAVEKALAGVDKLRQAGQ"]}}, {"location": "[42810:43200](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.5.2"], "codon_start": ["1"], "db_xref": ["COG:COG0702"], "gene": ["qorB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39315"], "locus_tag": ["MAAAAKME_00440"], "product": ["Quinone oxidoreductase 2"], "transl_table": ["11"], "translation": ["MVEAAKNAGVGYVAYTSFPKASESDNWLAADHKLTEKLLKESGLKHSFLRNNWYLENEMTFLAPGPANRIYWANNFAGWAPESEYAAAAVKVLTSDDPKEVYEFAGPKWSYQDLAAALNVATGEEAAAK"]}}, {"location": "[43467:43656](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.2.6"], "codon_start": ["1"], "db_xref": ["COG:COG1942"], "gene": ["ywhB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P70994"], "locus_tag": ["MAAAAKME_00450"], "product": ["2-hydroxymuconate tautomerase"], "transl_table": ["11"], "translation": ["MPFVHIELLAGRTPEQLEKMMKDVTRVISEDTGAPKEHISVIINELGKQQLAQGGEWREPQA"]}}, {"location": "[44121:44694](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITSIKLLEANQILAQVLDSERGSEINVKKFCKLAACSRPTFYAHYGSMRQLSAELLLKKLDQHLHFATSDYSNGLKRLLTYMEKDRCFILNLLALIDAEKGKIKGKEFAARFPQKVEWLLRKKTVCYVDAHSVSGDYSIKTLNNAAHIIYAILYEWLAEGLQLSARDVYDRCQLAIEIVEEQTSKKALL"]}}, {"location": "[45156:46717](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_00470"], "product": ["16S ribosomal RNA"]}}, {"location": "[45420:45945](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRITPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[46747:46843](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[46936:49840](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_00500"], "product": ["23S ribosomal RNA"]}}, {"location": "[49916:50026](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_00510"], "product": ["5S ribosomal RNA"]}}, {"location": "[50161:50662](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00520"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVTHFDLAATYRPVRCSTVNGYTSLNRVRISSTVFLWQSPSDVKQEKQMSSILDDQLRLMALKQYGLIKSIKTPDISYADLILILKNTENETIKQLAAEKLLKETNIYDIYKADLKLILKNTENETIKQLATEKLQYLNSHPRLGWAGSLARANRLGSFHSESTKD"]}}, {"location": "[50690:50888](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.85"], "codon_start": ["1"], "gene": ["lacG_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01574"], "locus_tag": ["MAAAAKME_00530"], "product": ["6-phospho-beta-galactosidase"], "transl_table": ["11"], "translation": ["MKKLKFGIFYIMLINLMGHSKWSWMNAYRNRYGLIRDDIHTQKKTLKKSAYWYRKLSDSNELDAD"]}}, {"location": "[51009:51978](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.8"], "codon_start": ["1"], "db_xref": ["COG:COG1482"], "gene": ["manA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31646"], "locus_tag": ["MAAAAKME_00540"], "product": ["Mannose-6-phosphate isomerase ManA"], "transl_table": ["11"], "translation": ["MQMAEPLFLAPVFHEKIWGGTGLKDEFGYQIPSDHTGEAWAISAHPHGPATIKNDLYKGMKLNELWDQHRELFGNAKGDVFPLLTKILDANQDLSVQVHPDNEYARIHEGELGKTESWYVIKAKPGAKLYYGHNAQTREEFAEMVKNGEWKKLLRTVPVHEGDFFYVPHGMVHAVGSGIMVLETQQSSDTTYRMYDFDRVDKKTGKLRQLHLQQSIDTAQVPFEMPKLNHEEWDVGDVHVTQFVMAEYFGVFKLDVRGKGDFEIKDGKYRLLSVLDGSCDLTVDGQTYPLKKGDHLILPSTISCYTLDGQATIIASKPGDEA"]}}, {"location": "[52017:52221](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.4"], "codon_start": ["1"], "db_xref": ["COG:COG1940"], "gene": ["gmuE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05510"], "locus_tag": ["MAAAAKME_00550"], "product": ["Putative fructokinase"], "transl_table": ["11"], "translation": ["MTYTFVGSIEAGGTKFILGVQNVETGETTATKRVPTTTPAETLAACRDFFKERNPVKAIGIGSFGPI"]}}, {"location": "[52770:53373](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIIQATYLFLDGTRTLMMNRILPSNEALVNFASLCLAITLNILSYTTLMFIACKIELPLAEDKRQNRIVLGLPIAISIFDIVCALFAPNLIFSANDINAFTPFFSTLFLLLPIGYSTFVFGVTAYNALINRKNGLGHYYLVLSFYPVLMTVFGFIERHVQAAGHRDFMRGDREPEPVRLPQGDRLPVPAGLPLRGFHAAG"]}}, {"location": "[53730:54495](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEEVEAVLKRLLAGRVWPASLGRELESKRICLSDLLLDKQRKNVIKPADVPLIRQALGELRKNLQEEVKKVLQTEQEMASDTARLAWLLLQLFAKKRKRVRDLTADQLALLQTEEAKKYVLFHGPRVYFRNNACFLTNTFPAELVHINDLAGLKGQPAAFSVLLQGEEVDGEELRSWLDLFGPLYEEKYFGKHYGPGVELAGFQISSGKRDPRIYYVLRYLLKDKEPEARSKNLAALPLKTILRRNLVCHEAFK"]}}, {"location": "[54491:55274](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMTVYSREYYQAGLAEGKIKAKKLDKYRLGPDFILAYDLGPAASYRTLLVDRKQGEIVLRVTTKTLLAHFVNEDLPGGYPLQDKLYKLLGIREQHVISAGHVAIFSPESFHAGLVDLVALQRMRGMEACQGGLLMTDLAGVNCYFFQVKRGYANASRQVKEAVEHNALYCSLFHGLAGQVGCPVCRQGDWNLLYGPSYQQAVEADLAGRIPSLRQLLAEIKAEEKAVLKQILLDELGLPLLPDDLDYALKQAEKKLLFRI"]}}, {"location": "[55324:55810](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNMQINQAMDQAWERRKLVAGALKTAHVYRKCADYEDLFQEGLIVYAQCLQEMADKPQEEADKLAFRKVYWRILDLLRQKKRQRDHDEPLLAAAFVGQADQHNLLLKEAWKKLSTSEKLLLGQNLLADRSIKETADLMNIPYRTASRIKKQALEKLRRQLA"]}}, {"location": "[56237:56960](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0580"], "gene": ["larD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F9UST3"], "locus_tag": ["MAAAAKME_00600"], "product": ["D/L-lactic acid transporter"], "transl_table": ["11"], "translation": ["MIHNLLNEFLSTGLMILFGVGVHCDDVLNKTKYHGSGHIFAITTWSFGITACLFIFGGVCMNPAMALCQAILGIIPWSSFIPYTLAEFAGAFAGALLAYFMYADHFKASEDTIDGVASRNIFSTNPNLRNLPRNWMVEMIATTIFFSGILAIVAKFEKFGFTPLLVGLLVWAIGMGLGGTTGFAMNQARDLGPRLAYQILPIKNKANNDWQYGLIVPGTAPFAGAVLAAMFVKYFLKLTF"]}}, {"location": "[57300:58287](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.7"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59495"], "locus_tag": ["MAAAAKME_00610"], "product": ["Sucrose phosphorylase"], "transl_table": ["11"], "translation": ["MWNTFGPDQIDLDVRTEVTKRFVKETLQQLVKHQASLIRLDAFAYAVKKLDTSDFFVEPEIWDLLDGVRQDLAGTDAQILPEIHEHYSLPRKVSEHGYFIYDFALPMVLLYSLYTGKSQRLAAWLKQCPMKQFTILDTHDGLGVVDSKDILTDEEIDYTTQELYKIGANVKRKYSSAEYNNLDIYQSNTTYYSALGNDDQKYFLARLLQVFAPGIPQIYYVGLLAGENDLDLLERTKEGRNINRHYYSLEEIDQEVKRPVVAKLLKLLESRNTEAAFDLDGRLEVAAPSDHEIVLKRVNQAGDREAVLRVDLTALTYQISVNGEEISL"]}}, {"location": "[58752:59709](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARPAIGSVEEREKTINMKKLKKINYAACWPYLAVVLFAAYLAYRQMRTGNIIIGSDTIFHFNRFYETEEQIRNGNLSWFMTLYGFNQSGRVINAFYGPAFAYLNGLLLLAVGTWYRYQIITSFLVFAVGGVGGMYRAVHRFKVRGSIAVLVTIIYMTIGWLPRWQSGSNFTGIGAALMPYGILVACDMFYDKEKPIHWIKLTILMTVALECHLLTALMYMAFLVPAWLYAIIKRENKRGILLNTLKAVLLTIFLTVNTLLPLYWMSKTNNLAPTATMRMLENAVHLKHTTVAFHPFRILTHNLRASLTFWLAYAFIV"]}}, {"location": "[59799:60747](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVEWDRITNHLPALARFIQFPSRFVCIAYPLLIVGLGLSFEHILHHKQKWVQIAAYASLGMLTFAAADCLVITLTSNAWAGYQNNVGRSRNTKFGEETQKTSSRKKKGKKKKKAMEDYGVYHPVKLDDRRKQALVDTNAATHAHDLQAFLDMTKKAIPDYLPVYKWDPEPDVPSHLYTYKWKQYYTIENSKITAAYRKSVMNHNRNVKVKTVKHGLKLTWKAKKGKHKQQLPVIIYKQSKLTVNGRVLTKYKRNRVGAPTVPEKTKGTNTAYLEFQTSFWIKLAIAVSLLGQFAAVVWGLLWRGGSFKKREEKKA"]}}, {"location": "[60752:61700](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0463"], "gene": ["csbB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45539"], "locus_tag": ["MAAAAKME_00640"], "product": ["Putative glycosyltransferase CsbB"], "transl_table": ["11"], "translation": ["MKKISIIVPCYNEEEALPFFYPVAHEVLEKLPDDYELIFVNDGSKDKTLEILRDLAAKDPHVFYISFSRNFGKEAAMYAGFVNASGDYVAVMDADLQDPPALLPEMIKILDSGEYDSVATRREDRKGEPPVRSWFARKFYQIINKISDADVVDGARDFRLMKRDMVDAIVEMSEYNRFSKGIFGWVGFKTYWLPYENVERVAGESKWNFWKLLKYAIDGIINFSLVPLNLSSWMGFFMTGVSFIMLIVIVLRKLIKGDPVAGWASLICVVIFIGGLVMLSLGVMGQYLAKIYMESKRRPHYISSESNIKDVKKID"]}}, {"location": "[61727:62249](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKIARSLAGLHLPRYQELPQMGLYLEQTATYINEALAPLENVHLTSSMVSNYVKHDLIASPKKKLYSRQQIAELVFIAVSKNVLSLADLCEALKLQRSNYDTETAYNYMVDELENVLAYVFGFKGELTDVGHEHGEYEYGEYKTMLRNVIMTVSYKVYLDKYFAQFTGQEEE"]}}, {"location": "[62450:63248](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DQI6"], "locus_tag": ["MAAAAKME_00660"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MTAGNLGSCQLEVAALSLIQGDKTWLDDASFDQAEFNQRAKDGIAASSACPSISSWLDAYAGGSEIYVVTISSVLSGSYNSAVQAAKIYQEEYPDALIHVFDSKGAGPAQFLAAEKIAELKEKGMQFPDLVEAVSDYLENHVRVFFALKSMTNLANNGRVSPAVAKIAGLLKIWVYGWAEEGEIKLLGKARGEKKTLAALLRTLEEKGYRGGRVKIDHADNFDSAAELHDLIKKKRPEARVDLGTCRALCSFYAEAGGLMIGVEI"]}}, {"location": "[63194:63740](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKHLVIHTLCEGVETKEQADFLRAIGCDRLQGFYFSKPLPQEEMLALIEKNGLDHYEPQEMNDYYDTIGETNILVNPMVSHISQGIKHLEMPLTLIERRTGDQLVYYFTNFAYKDELTRRHLASYQDRDMYVCSINNFGHYLDKTRRREVKKSAPGPVLIFYMLNFYSNHQPARFSVEAA"]}}, {"location": "[64033:64618](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRILLLGDSIFARKEGLDQPRINWTLKEKKLDLEIDNTAVSGINSGALLALLGDLALKRPRAGQLFLMVGVNDAASHKQVPLDQYRKNLQAIVSALVCFYPGTQTVLVSGPAVDEDKQRGRTNAKLAKYAKVMEEVAAEYQVAYADFFTAMLKEGNLKALCRGELDDGLHFGPRGYQLLAAEMMKQLPKEEVEQ"]}}, {"location": "[64614:65268](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.73"], "codon_start": ["1"], "db_xref": ["COG:COG0406"], "gene": ["cobC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P52086"], "locus_tag": ["MAAAAKME_00690"], "product": ["Adenosylcobalamin/alpha-ribazole phosphatase"], "transl_table": ["11"], "translation": ["MKKIYVVRHGRTYLNKYQRLQGWSDAPLTEEGIEGAHRMGKALKDQHFDLVASSDLKRAADTRKIIVSENDNWESTKMTQTADLRELFFGYYEAFHDTEGVAAAFKSTKYPRLVDAVKDGYTWQEIGNLFHAADPEGDAESGSEFESRLKRGIDYLVNYDESERILLVGHACVIHCLACIYGGKHLRTDLPKHNEMTVLNVDDNGQVSLEEFGRPMY"]}}, {"location": "[65343:65472](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISKEDKLLIRRCLYAMINMYGIIPLRHAYHIFSHQNPLAQR"]}}, {"location": "[65590:66064](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRENEWYYERTTATEEYRQYLKDSNPGLGDDRLEEAFFEALTQLHSVSYGKTVEETINAVPRSLRLIGFTVTDEQEDELRDLLRRMLDGTRQEALRGKMYKYHKLSTTLEIIETEGLTPENISRIHSGKIDAMELVPQIELKQPNLAQQLATIYQQ"]}}, {"location": "[66912:67197](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDRFSKLAVSTKKVLKWVLGLLIINFIGLMLITLYSAYYSFGTMIFGVHTESAIKDFWSTEFITAIPFVIGINLLAIITASVRIYKNKKKENNS"]}}, {"location": "[68068:68614](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1268"], "gene": ["bioY2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI45"], "locus_tag": ["MAAAAKME_00730"], "product": ["Biotin transporter BioY2"], "transl_table": ["11"], "translation": ["MSRKNTFQLCLLALSIALIIVGSQLAVPLPGGVPFTLQTLIIPLIAAAFGWQLGTGAVALYLLLGAAGLPVFSGASGGIAVLFGPNGGFLWAFLPLALITGLDKGNRFYLTLAAGIALFLQLLLGAAWLAWISHLPFAAAANAAIWPFLPTTLAKLALVVALAPRLRAIFAVYAGKVNRGY"]}}, {"location": "[69334:69955](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_00740"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MRPQELFLRRHKFIDYVSHCFHNQGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILVRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMEAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYIHPVIKAA"]}}, {"location": "[70002:70137](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKYRVEDIAKIEVWCNSLPRKILNYKIPEEYFDTELDRIYRRR"]}}, {"location": "[70249:70963](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1011"], "gene": ["yfnB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06480"], "locus_tag": ["MAAAAKME_00760"], "product": ["Putative HAD-hydrolase YfnB"], "transl_table": ["11"], "translation": ["MRYQQIILDVDDTLLDTEATIHDSLVQLFKSHGWEISDEFEKEFHAYNQGLWRRLEKGELTLNQLYEIMFPDIIKKYCGVEVDGMETADEFHSYFHTGHKLLPGVKETLRYAKRLGYSLAVLSNGEQFGQEHRLELAGIRHYFDLVVTSQEAGVQKPNAEIFDYFFARSGYSPNQTVFFGDGLSSDIMGAENYGFASIWFNHRHRQKTLSVHPLFEVDNYAQFQRILKKDFAPTALR"]}}, {"location": "[71012:71186](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGNYFFDFDDTICESRHIYAASVQKTFEARGVKVPSTEDIYQAMGIPIDVSIARWAQ"]}}, {"location": "[71228:71564](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.18"], "codon_start": ["1"], "db_xref": ["COG:COG0546"], "gene": ["gph_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32662"], "locus_tag": ["MAAAAKME_00780"], "product": ["Phosphoglycolate phosphatase"], "transl_table": ["11"], "translation": ["MAEYVLLEDDQVRLFPGIVKTLTQLKLAGKQLFVCSSKTDPEIAHNLENLGLLDLFVDFVGADEVVNYKPASDEIDLLVKRHGLNLSESVMLGDAKYDIRMGKNAGCATCA"]}}, {"location": "[71708:72536](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.11.2"], "codon_start": ["1"], "db_xref": ["COG:COG0708"], "gene": ["exoA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37454"], "locus_tag": ["MAAAAKME_00790"], "product": ["Exodeoxyribonuclease"], "transl_table": ["11"], "translation": ["MRLISWNIDSLNAALTGTSPRAEMTRGVLKNLHDLDPDVLALQETKLPASGPSKKHQAALADLFPEYDFVWRSSMEPARKGYAGTMFLYKKGLEPVVTRPEIGAPEPMDFEGRILTLEFPDFYVTQVYTPNAGNGLVRLGDRQEWDKCYRAYLEELDKKKPVLASGDFNAAYQEIDLKHPENNHHSAGFTDEERAGFGQLLAAGFTDTFRQIHGQVEGVYSWWAQRVRTAKANNSGWRIDYWLVSNRLADQVEKSEMIETGERADHCPILLEVKL"]}}, {"location": "[72615:73092](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00800"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRLEKGVIGLILVIFAGTVIMAVSSGGQKAESSSDAFDTSEYRKAVKSTDNHHFKNMKVELSGKKSKRVDLDFTASKKDSVLISKQTVKLLTPKGQELTHATVGEIGYDPDSDKVLIFASDKNYSRGFYPLGNLKRNEPSPASLSADQDPLEFSFKD"]}}, {"location": "[73278:74187](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14295"], "locus_tag": ["MAAAAKME_00810"], "product": ["L-2-hydroxyisocaproate dehydrogenase"], "transl_table": ["11"], "translation": ["MRKVAVIGMGHVGATAAFILFTHGVADELVLLDKNETKCRAEWGDLRDTLGRNDFYVNVKWGDWKELADADLIITAFGDVAASITTGDRFAEFPINTKNAVEVGQKIKDSGFKGVIINISNPCDVVTSILQKVTGLPKSQVFGTGTFLDTSRMQRVVGEKLGQDPRNVSGFNLGEHGSSQFTAWSTVWVNNRPAKDLFNEAEKEEMDRLSKDNAFMVGKGKGYTCYAVATCAVRLARAVFSDAKFYGPTSCYVESLGTYIGYPSIVGKHGVEEVPVLDLPADEQAKLEASAKKLKDSLASLE"]}}, {"location": "[74305:75163](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0656"], "gene": ["yvgN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32210"], "locus_tag": ["MAAAAKME_00820"], "product": ["Glyoxal reductase"], "transl_table": ["11"], "translation": ["MTLHGLEDTYELANGVKIPVIGFGTWQTPDGDVAQEAVETALNAGYRHIDTAAAYGNEASVGRAIKRSGVKRSDLFVTSKLWNGSHSYEGAKAAIDDSLLKLDTDYLDLYLIHWPNPVAIRDHWAEGNAEAWRAMEEAVQAGKIRAIGVSNFRRHHLEALLKTAEIKPVVNQICLNPNDLQAEVTAANKEYGLLSEAYSPLGTGGLLGNETIKAVGAKYGKSSAQVLIRWSLQHNFLPIPKSVHPDYIKANAEVFDFALTADDMAKLDGLQGIGQPVLDPDQAEF"]}}, {"location": "[75458:77678](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.17.4.2"], "codon_start": ["1"], "gene": ["rtpR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59490"], "locus_tag": ["MAAAAKME_00830"], "product": ["Adenosylcobalamin-dependent ribonucleoside-triphosphate reductase"], "transl_table": ["11"], "translation": ["MSEGISLSAEFIDRVKASVKPHWGKLGWVTYKRTYARWLPEKGRSENWDETVKRVVEGNINLDPRLQDSPSLELKQSLTEEAERLYKLIYGLGATPSGRNLWISGTDYQRRTGDSLNNCWFVAIRPQKYGDSKIVPSYLGKQEKAVSMPFSFLFDELMKGGGVGFSVARSNISQIPRVDFAIDLQVVVDESSESYDASVKVGAVGKNELVQDADSIYYRLPDTREGWVLANALLIDLHFAQTNPDRKQKLILDLSDIRPYGAEIHGFGGTASGPMPLISMLLDINEVLNNKAGGRLTSVDAADICNLIGKAVVAGNVRRSAELALGSNDDQDFISMKQDQEKLMHHRWASNNSVAVDSAFSGYQPIAAGIRENGEPGIVNLDLSKNYGRIVDGYQAGIDGDVEGTNPCGEISLANGEPCNLFEVFPLIAEEQGWDLQEVFALAARYAKRVTFSPYDWEISREIIQKNRRIGISMSGIQDWLLTRLGNRVVTGFKDDFDPETHEAIKVPVYDKRAIKMVDQLYKAVVKADQDYSKTLGCNESIKHTTVKPSGTVAKLAGASEGMHFHYGAYLIQRIRFQNSDPLLPALKACGYRTEADIYTENTTCVEFPVKAVGADNPNFASAGTVSIAEQFATQAFLQTYWSDNAVSCTITFQDSEGDQVESLLRQYRFIIKSTSLLPYFGGSLQQAPKEPIDKETYEKRSQEITGNVEEVFSQLNSDVKDLELVDQTDCEGGACPIK"]}}, {"location": "[77742:78558](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKKILAVVVASAAFMGLFASQPVQKQYVQAAKNTKTAKKTTKKAKAKQISVTYTLKDTTKAKNNQTLAKKTFKVKKGTSVFTVLKKAWKVNYTKSSYGVFITKIKGLGNEKKKLYWTYTVDGKMAKVAADKQKLTKNKSKVVFTLKQYVQAAKNTKTAKKTTKKAKAKQISVTYTLKDTTKAKNKQTLAKKTFKVKKGTSVFTVLKKAWKVNYTKSSKYGVFITKIKGLGDEKKKLYWTYTVDGKMAEVAVDKQKLTKNKSKVVFTLKQY"]}}, {"location": "[78559:79108](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTKERYQLQRLTLLALLTAMCVVLRIFKIIDIPNVQPVTDIIMLTTLELGAGTGILLAILVMVISNIFLGFGIWTLPQIFAYAACALTVALFARLLPLKSRKFFWLQELLAGFLGLEYGFFVSLGMAGWGGWAAFIAYWVSGLTFDLYHAAGNLAFYPIFYLPLVLGLDRFKKKAGWKQNA"]}}, {"location": "[79100:79664](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.17"], "codon_start": ["1"], "db_xref": ["COG:COG2096"], "gene": ["yvqK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34899"], "locus_tag": ["MAAAAKME_00860"], "product": ["Corrinoid adenosyltransferase"], "transl_table": ["11"], "translation": ["MLKVYTKVGDQGKTKQVTGKMVAKYDPQIQTLGALDELQSWLGVTVANLSPACQGLEEKLIKLEREMYELQADLVVKRHHTITLAEVTYMEEQIDAWTEELPEMKGFILPGGSKTSANLQYARALARTSERVCVLYADESGEVKSDSLKYLNRLSDYLFVMARYANLLEGVADVKSKPARPRRRPKK"]}}, {"location": "[79875:80901](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_00870"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLNDRTTIQELHSEGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWERDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMKAFDKFREYYGSKWNQIFKSITTDNGSGFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDQYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[81169:82171](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.28"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["ldhA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26297"], "locus_tag": ["MAAAAKME_00880"], "product": ["D-lactate dehydrogenase"], "transl_table": ["11"], "translation": ["MTKIFAYAIREDEKPFLKEWEDAHKDVEVEYTDKLLTPETVALAKGADGVVVYQQLDYTAETLQALADNGITKMSLRNVGVDNIDMAKAKELGFQITNVPVYSPNAIAEHAAIQAARILRQDKAMDEKVARHDLRWAPTIGREVRDQVVGVIGTGHIGQVFMQIMEGFGAKVIAYDIFRNPELEKKGYYVDSLDDLYKQADVISLHVPDVPANVHMINDESIAKMKQDVVIVNVSRGPLVDTDAVIRGLDSGKIFGYAMDVYEGEVGIFNEDWEGKEFPDARLADLIARPNVLVTPHTAFYTTHAVRNMVVKAFDNNLELVEGKEAETPVKVG"]}}, {"location": "[82461:83853](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0277"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIT1"], "locus_tag": ["MAAAAKME_00890"], "product": ["putative FAD-linked oxidoreductase"], "transl_table": ["11"], "translation": ["MNFSAYNTDEIIDFLQEQVKDGIVKTDKDSLQTVSYSQNLPGQHGLALALVEAGSIADVQGVMRAARRFHLPVVSQNRFTSTVVGADAVDHAIILSTAKMNKILELNAEDAYAVVQPGVINNDLDQAARKQGLFYAPDPASKKMSGIGGNVATNAGGLSGVRYGSTRDNVLGLKVVLADGRLLDLGGKTSKQAFGYDLTQLFVGSEGTLGTIVEITVKLLPLPLGESLMGLAYFKDMHTLAEATKDLRMSGIYPAMLEAMDSHTLQAVSEFRDNKEMAGRGAALIFRVDSISDEGKQIVKNIMDKYHVTDVQLATDPAEQDKIISVRQDMLPAIFTGRSAVMEDMAVPTSRMAELVDTIQAFSDKYPELEIFTAGHAGDGNLHPTVTWSKDAKEMPESVNIVLHEMFTKALELGGTISGEHAVGMLKNQWNNVELGEDVDWIQHQIKSLFDPMNLLNPKRKID"]}}, {"location": "[84045:84477](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.88"], "codon_start": ["1"], "db_xref": ["COG:COG0242"], "gene": ["def1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KVU3"], "locus_tag": ["MAAAAKME_00900"], "product": ["Peptide deformylase 1"], "transl_table": ["11"], "translation": ["MTVQKIIHDPLSLSQPAAKAAASDRQAAQDLLDTLLAHRESIDGLPPAAGLAANMIGVNKAIIAVNAGFLPIVMLNPTIVKRSGHYLAEEGCLSLPGERPADRYEEITVKYQDMDLEEHEQAFTGFVAETIQHEVDHCKGKLI"]}}, {"location": "[84519:85401](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1464"], "gene": ["metQ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32167"], "locus_tag": ["MAAAAKME_00910"], "product": ["Methionine-binding lipoprotein MetQ"], "transl_table": ["11"], "translation": ["MRRKKKHQRLIAATIALIVIIAAFFALRLTSSRQTAKSQTTTVTVGSIGPDVQVWQHIAKSSQAKKLGLKIKVKAFTDGPSILRATSDGSINVSAFASWAYLEAYNKSKSNTGQQVALATTYLEPMGIYSSKYKKLSDLPKGATIALANNAANEARGLLLLQSAGLIKLKKNFDSASGNTNDIVSNTKKFKFKLIDDTTGPRIIKSVDAVLIGNTIALAGNLNVLKDSLYHEKINQSTKNNINVLATAKKNKNNAAYKKLGKLYHNKQIQKWIAKKYSGTKVEVNKPVSYLTD"]}}, {"location": "[85428:85908](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.4.1.21"], "codon_start": ["1"], "db_xref": ["COG:COG1854"], "gene": ["luxS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RRU8"], "locus_tag": ["MAAAAKME_00920"], "product": ["S-ribosylhomocysteine lyase"], "transl_table": ["11"], "translation": ["MAKVESFELDHTKVKAPYVRLITVEEGPKGDKISNFDLRLVQPNENAIPTGGLHTIEHLLASLLRDRLDGVIDCSPFGCRTGFHLITWGEHSTTEVAKALRDSLKAIRDDITWEDVPGTTIESCGNYRDHSLFSAQEWCNDILKKGISDDPFDRHVVED"]}}, {"location": "[86085:86868](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.30"], "codon_start": ["1"], "gene": ["metA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A1D3PCK2"], "locus_tag": ["MAAAAKME_00930"], "product": ["Serine O-acetyltransferase"], "transl_table": ["11"], "translation": ["MSKKIGILNLMHDKIDTQKRFSHVIKEASPETEITYFYPQSHYLNRPRPQNWPAEPLNLKTVAKLDGFIVTGAPIELLPFSEVDYWEELTKLFDLLKAKNIPQLYVCWGAMAALYYFYGIGKHPMPEKIFGIYPQEILAPTPLLSGLITGFLAPHARYAEMNRSEIEQEKALTINAATPDGHLTLVTGPGQQVFLFSHLEYGPQAFSKEYQRELSARGGDDRKIAKPQRYFADEAAMSLPQFTWESSQQHFFKNWLQTIK"]}}, {"location": "[87299:88277](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_00940"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKRLKLNDRTTIQELHSKGCAIARELNCSPSTVGYELKRGTVSVYTGNVKRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTNTRRARVNKRILGRRIDERSPRVESRKDFGHWECDLVLGHKTKDDDVLLTLWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLSDAIFPKETVWISTVWKILLRSRYGATLFLGRS"]}}, {"location": "[88789:89089](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNETELLQAVQQLADKDVAPFDLQIDRQAKLPNGLFQKIVDLGLLRAKIPKEYGGLDVSAQTAGLALLGPFDLILIGATIADYLRDRKFNSGKQKQGN"]}}, {"location": "[89251:90829](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00960"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MTFKEFYLRKPVKSSLLFLAAALSSLLLVGSSYALTLEFNALRNRQPVLFAQMLALQLACLVFSALLTYYGNLALEQLIQSYLQQIRQELALHIFNDGQAHDPAQAQNQLLKEGDLLTVSYLRNIYSSFKAGMTVLASGGALLSFHWSLFIACLIFALVQIYLPRLLDRQLNHANQRLATQNQAYLKVLGDWLLGLGDLHRCLSLAWFKEKAGLAAKELEDAHVHKSAVSARLDYLNQLAYSLGSSLILLLTAFLVIQHWTAFGLLSSIASFNSDFFGNLQNAADYLGEISGSRQLRQDLLKQREAVPEQKEAGQAPAAFASSPLTVEFNGLSLAYPAIKLQPREKVLLTGASGRGKSTFFKLLLGEVKAASGEIHYLDQKGQVIQPNLSQIGYLPQDPQLFPGSVAENMTMFNPALNDQDLLRQTADQVNLSEDLRLWPAGLDTRVAVEDSNISGGQRQKIVLARSYLYHSQLLLIDEGTSAIDQAATREIIVRLLKTDKTIMFVAHNLTADSRQLFDREIQLD"]}}, {"location": "[90825:92388](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00970"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MTLRKLINSNRGRFAIIFALLVMTQVIDVASTYLFSPMVNQVSAGRFNIFCSLLLIQFALALVLNLAFNGANYLFSKQTQQYLHGVRDRMADHYYQQPAGLSEMTNHFSQDLDTLTYDYATVLFYLICDVINALMVAASLLSFHWLLLLASILTTVTSFAIARLLEKYSNQATDQLSAASQHFLATIAQWTAGLAELRRYFAKGPYQKALLKSGQELADRQVSRRKINSQIQCLQSLSNALGTVSIPLIAGFLFFKGQMSLGGVITSGYFASSIFSVLENIAGSYSYLNSTKSLRQQLSRLQESKKNDNLQPVNRMAQIEIKQVSLTHGKQLLSYPDLTIHAGEKILITGDSGSGKSTLLKLLLGNLQSEKGQIIFKDAAGQAFQPDPYSIGYQAQDLVLFPATLAENVTMHTPGLSADPKDYLKTVGLQLDPQRQITPDDLTLSGGQKQKLALARTLSHGFPLLLLDESLSAVDRAGQDQILRTLCQLPATVIFVAHNLSPEQKARFDREISLAKKEHV"]}}, {"location": "[92530:93259](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["mutS2_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00092"], "locus_tag": ["MAAAAKME_00980"], "product": ["Endonuclease MutS2"], "transl_table": ["11"], "translation": ["MTNIAKIVTHAQSRSLVLLDELGSGTDPDEGAAIAISVLQAPQLKGCLVLATTHYSRIKDYAVKHPNYRTASMDFNADTLTPTYRLLLDQVGQSRAFWIAQKVGMPKEIIDQAQKVLAGQLPLSSSTVVLKEKATSKIVKTHFCKGDVVYAGNLEKEGIFYALEANQTLAKIFVNKQFSVVPVKRLKLRRKAADLYPEGYNLDLLFISDWQEYKFNKDLNRGSKKAYKKLVKYEQEAKSKKQ"]}}, {"location": "[93197:94430](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1193"], "gene": ["mutS2_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9X105"], "locus_tag": ["MAAAAKME_00990"], "product": ["Endonuclease MutS2"], "transl_table": ["11"], "translation": ["MTEIFENNQLQFAQVLTQVASYAKSPEARNLLLQAQPLTKPAAVTHLLDETEEGTRLLERSLQLPFVSSDSLLPLINRAQKGLLLSADDLEKVADYLRVCELLQRFLYREKDLVPILNSYGEELQLFPKLVEQIYQSIEHGQVADSADRDLRRLRRQEQELSQEIKDTAGKLLQSKKVSQSLQEQRLVEKDGHLTLPVKSSFKKAIAGRIIAYSANGQTAFILPRKLDQLSSEKIAVKGQIEAIEAMILGQLTAAVYEESPGLLRNIDVVAAIDQIMARARYSRELNGKRARLNQTNQLLLRGMRHPLLRNPVPLDLEIKPPVRGLIITGPNAGGKTATLKTCGLAIMMTEIGLFLPSREICDIPVSQQIFSQIGDQQDLDNFPVDLLSRNDQYCQNCHSRSKPQSSFAR"]}}, {"location": "[94510:95212](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGWILLLLVIIICVGTYINFRNEKKKQSQLWAQRQKDSYVPPMPIIILETVDGASKLVVKNDSSVYFTQYEKGKAPWPGGVENFSVYYDKDTKHLLILSLVQENDNIDFGEVDPEATEKFLAIFQSVGGHLAQHYELLTLNKVDSSDLNLAVKSFPAKVYFYTEKSVTDGKKRLYFSPDPTSTAYKLLGVAVSDGSNGEKSVELSLETFKGVKYSIYTTLSEAGVKDLQENFA"]}}, {"location": "[95438:96353](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["argP"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00513"], "locus_tag": ["MAAAAKME_01010"], "product": ["HTH-type transcriptional regulator ArgP"], "transl_table": ["11"], "translation": ["MRIQQLLYLQKVVALGNMTEAAKELFIAQPTLSSAIKQLEKEMGITILIRGKKGVSLTEDGREFMQYAQQILDQVQLLERRYGDQSSAPKIFSVAAQHYAFAVDAFVQLLKEIGQSDYQASLKEMRTYEVIEDVANLHSEIGIVYLSRYNRQVMENSFQEKELSFTPLFKAHPHVFLYRNHPLAGKKSISLADLFPYPKLSYDQGQHNSFYYCEETLADQHSPKSIIVSDRATLFNLAIGLKGYTISSGIINADLNGDDIIARPLISDEYIEIGYLTNRLHQLSSIGQKYLGYLRESIEKNAKR"]}}, {"location": "[96484:97609](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.14"], "codon_start": ["1"], "gene": ["metE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00172"], "locus_tag": ["MAAAAKME_01020"], "product": ["5-methyltetrahydropteroyltriglutamate-- homocysteine methyltransferase"], "transl_table": ["11"], "translation": ["MPFPRYDIVGSFLRPAALKEAREKFARGEISQAELTAVEDQEIKNLVQKEVAAGLKVVSDGEFRRSYWHLDTFWGFGWVEHVRADHGYFFHDEETRPDAAKLVGKLTYEAGHPDVAAFDFLKPLADSAGVEARQSIPAPAQLYCELICRNDELIAATDAVYPDRAELAKDVSKVYRELILDLYKHGARDIKLDDCTWGVLVNDSFWHAFDEGHLKREEILQLYKEINENALVDLPEDLRITTHICRGNYDSTWASEGGYGPAAPYVCKEKGVEAFYLEFDDDRSGDFAPLAEVPADKVVVLGLVTSKKPELEDPEALKAWIKEAGQYHPLATTALSIQCGFASTEEGNHLTDEEQWVKIMLVIDTAKEVWPDAE"]}}, {"location": "[97865:98486](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLFAVSMCLIFPLIAGSVEASTNKSLSANRLNSINTEYKIDSTKWSDEKIDQLVKALSELHPELSNEYLRELVESQLNDEAIPNLTNRDISPSLALRANLARSTKSSWKGITVAQMGAVIDTIIGTVIGGGLSSITKAGLKAAVKKMGRKKLSRLVRQHLLRKFSAAYIISSKVIETALNYTSPGTWVAKYWDKHDAYPNNGRINF"]}}, {"location": "[98548:98743](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLIDKLAHRQSTFWGILSFLAFYGAYEFQMSESVPKKVHTIVNVVLGVAALAIVCVLIYISFHN"]}}, {"location": "[98915:99854](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG1940"], "gene": ["glcK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54495"], "locus_tag": ["MAAAAKME_01050"], "product": ["Glucokinase"], "transl_table": ["11"], "translation": ["MKKYAFGVDIGGTTVKIGLFETNGELSQKWEIPTRKEGNGSKILPDIAASLNDKLKELDIPKEEVAGVGIDVPGPILDDEIVNRCVNLGWGVFNVAEKVRKLTGLDKVKVANDANAAALGEMWQGGGESHQNVVMVTLGTGVGGGIISEGKIVAGAFGASGEIGHMLVNKDETQLCGCGKKSHLEQYASATGIARKAKELLAESSEESSLRGVDQLDAKAVFDAAKEGDKLALEIVDFVGETLGTALASISCVFDPEVYVIGGGVSKAGQILLDTVQKHFVDAAFHASGGTEFALAQLGNDAGMYGAVKMVL"]}}, {"location": "[99904:100828](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.27"], "codon_start": ["1"], "db_xref": ["COG:COG0039"], "gene": ["ldh"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59645"], "locus_tag": ["MAAAAKME_01060"], "product": ["L-lactate dehydrogenase"], "transl_table": ["11"], "translation": ["MSRKVLLVGDGAVGSNFANDLLQTTRVDELVICDLNKDRAAGDCLDLEDMTYFTGQTKLRAGDYSDAADADVVVITAGVPRKPGESRLDLIKKNEAILRSIVDPVVASGFSGIFVVSANPVDILTTLTQKLSGFPKKRVIGTGTSLDSASLRVELAKRLQVPIESVNAWVLGEHGDSSFENFSSAVVNGKPLLDYPGMTEAALDEIEAHVREKGSEIIVKKGATYYGVAMMLAKIVTAILENNDLALPLSAPLHGEYGIKDEIYLGTLAIINGQGISHVLELPLNDSELAKMRASAATIKATLDSLG"]}}, {"location": "[101546:102773](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["naiP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34691"], "locus_tag": ["MAAAAKME_01070"], "product": ["Putative niacin/nicotinamide transporter NaiP"], "transl_table": ["11"], "translation": ["MDNTSPMSTNQKWVLASMSSGFLLENMDVMFLSFSLSEIIAQMHVSSTAGGWIGTFTNLGMFFGGALFGLLGDRIGRVKTFSYTIFLFAIATGLTYFAHNITALYALRFLAGIGAGGEYGVGIALIAENFQANQIGRASSVAAVGGQIGSIVASLLAAWIIPTYGWNTLFLFGVVPVVLTYFVRRHVKESDEFLAAHKKAEETGEKISFGRLFETPRLALQTLGLMLMTIVQIAGYFGLMNWLPSIVQKKQGLSVSGSSYWMIATIIGMSIGIMVFGTIMDKICPRWAFGIFLLGSAVVVFAIVNVTSYWTMLLAGALTGFFSNGMFGGYGAVISQLYPTEIRSTANNLIMNTGRAIGGFSSVIIGALMDHYNLYVVMGFLSALYIISFLVMISLPGLREIQTKKRAA"]}}, {"location": "[102973:103516](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNAFGNGITISSNIGTAPWGASEVNLAHIFHTSIALAMFLTGFLVAVINQLLMRRFDLPRFLDEVVFIACFSYFINLFTSLFSALGLPDLPLPWRLVAGLLGIMTLGCSISFCQRANLLMHPNDDTTNILRFMYCKNKVVRAQLINFSVPLLLTGICWLATGKVYAVNIGTLLCLLVNGR"]}}, {"location": "[103766:104603](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSVKKHRYAATASTVYFSYFMMGIGMSLLAQFKPQFASLWHSSISEVLSVVSAVGIGGIVSILITGPISDHFGRRASAVIGHLLWAIYYIGLLYAPNFAVAYIIGILGGIANSFLNASNFPALMEIFSESASVAGLMSKFAINIGQFCLPLAILLGTALDSGYRTVFMLAEILYIVMALILAFSPYPDQVTGPKKQEKAKHDFKPVANFYAAGELVGGANGKDSMPSMMNSWSYASGFVAGTAAADNANNYAVDVITSASHAPAPKPEATSGAIHYHC"]}}, {"location": "[104737:105652](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["gltC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20668"], "locus_tag": ["MAAAAKME_01100"], "product": ["HTH-type transcriptional regulator GltC"], "transl_table": ["11"], "translation": ["MNIRHLRFFVELAKTEHMAKTAEKLGISQPSLSYAISSIEEELGVPLFEKEGRNIRLTNYGKIYLEYVKSGLSDLDRGGEYIAELLDVNRGHIRVGFTMGQDLIPQLIYKFKQEKDTKDITFSFVQGTTDDLVDQLVNDNLDLVVSPAPDLPGLEDKVDISHLVDQEMLAVVPFSNPLAQKDSVSLADLAKYPMIYYSKSSRLRPLLDKMFAEAVVKPKIIMESMEDHTIIGFVHWGYGVAIVPHLPQLDPRTVKLLHIDENLGVHPIFVVKKSDHFLTPAVTRFERFIKSYCRKHCNNEHKLV"]}}, {"location": "[105836:107498](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.25"], "codon_start": ["1"], "gene": ["aroE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00222"], "locus_tag": ["MAAAAKME_01110"], "product": ["Shikimate dehydrogenase (NADP(+))"], "transl_table": ["11"], "translation": ["MADERNNEIEETKIQGVNGPITGWLDGHTILVGLMAYPIRHTMSPTMHNNAFAKLGLNGAYLCVEIDNEKLPGAIDAIRPLDMRGSNVSMPNKKKVIPYLDKLDKTSQMCDAVNTIVNEHGILSGYTTDGMGWVRALKKDGQDVKGKIITLAGAGGAGLAAATRSLQHDKKVVILEKFPQLGGNTARACGPMNAAEPDWQKGFKALPGEKGTLQELAETPTSEIDPEYVADFEKLRDQIKAYLDLGEDYLFDSVLLHEIQTYLGGKRVDLKGNEIHGKYELVTTLVNNVLDSVNWLTDLGVKFDRSDVTMPVGALWRRGHKPVEPMGFAFIHVLGDWVKEHGATVLTETRAKHLIIEGGKVTGVIAEKTDDSKVTVHAKSVILMAGGFGANTKMVQKYNTYWSEIADDIATTNSPAITGDGIVLGQGAGAALTGMGFIQLMPVSDPVTGELFTGLQTPPENFIMVNQKGERFVNEFAERDTLAKAAIDNGGLFYLIADDKIKETAYNTTQESIDAQVEAGTLFRADTLEELAEKVGMDPAVLTDTIKEVQLLR"]}}, {"location": "[107954:108818](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIIGDKRLDVIHNIKQAANERNFTAKTEIGDPVMSSEEKLALVEGFWQKQDQAKTKFDGTVGHELLQLLTKTISGSTKVNGLGKLKGLPKGGAIVTANHFNQVDALAVNRLAQKAHRRMDIVIEDTNLMLPGFFSYIMNNMGSIPLTQSPNYLGREFIQHLNQAFNQNHWVLIFPEQEMWWNYRKPRKPQRGAYYFAAKCNVPVISTFVEIQDLPKLEKQNEHFYQTRYTVHVLDVLYPDPTKTASENASRLMEEDYKLKVQAYERVYKKKLDYDFTSWDIAGWRGE"]}}, {"location": "[108833:109436](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNADIAGLYQTELGNNLVAACHDQSVHYIEPLQTYIRDCLGIDPDKYVNSGVLVMNCLAMRDEGFVDKFLQLLSTYQFNSIAPDQDYLNEICSGRIKLLDPRWDAMPNDFDPEMTGPYLIHYNLSYKPWHFEEVKYGSYFWQVAKETPFYKDLQKQLAAFSDQDRKEELAKMQSMVDMVCKNLHDPQNWFHGKREIKVTL"]}}, {"location": "[109814:110639](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNFLFCGDHNAERGVLIAVLSLLKAERGEEVHVYILTMRAKSKSRSFKPFSQHAADFIRSLIVADNPNSSLELIDCTENFIKEPPTANMGTRFTPYAMLRLFADELPQIPDRILYLDDDVIIRRPVDQFYTQDLTGTELVGVLDYFGRFFFHNQKKIFDYLNSGVLLLNMPEIKRTGLFKRVRHLMQVKKMFLPDQTAINKLAKEKRIAPRKYNEQYALQDDTVIQHFTTSFRFFPYFRTQTVKPWDVKRVHSVLNLHEYDDLLNEYLQLKDQL"]}}, {"location": "[110666:111443](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKTYYYHSESEDLVSSAQQDFQLPDDYQFFREGAAWQFWNGLVRSLACAFAWLYSRLFLLVKVKGKEKLRPFKKQGYFVYGNHTQMLGDPFNPMTIVNPYHYYALAAQANWGIPFLGKYVIPAAGLPVGKNIKQSIRLLKEVKYAYEEKQAAIVIYPEAHLWPYYTKIRPFPATSFNFPVSLKAPAFAMTTTYQPCRWRKRPKITVYIDGPFYPDEKLGKKAAQEKLHGEIAKSMQERAKLSTCEYCSYVKIDSKN"]}}, {"location": "[111502:111575](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_01160"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[111701:112430](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["walR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37478"], "locus_tag": ["MAAAAKME_01170"], "product": ["Transcriptional regulatory protein WalR"], "transl_table": ["11"], "translation": ["MPKKILVVDDEKPISDIIKFNLIKEGFDVETAYDGEEAVEKVEEYNPDLLILDLMLPKKDGLEVAREVRQTHDMPIIMVTAKGGEIDKVLGLEMGADDYVTKPFSNRELVARVKANLRRRDIVKKAVEVNQQKEKEQESNDIQIGNLLIKPDAYLVEKNGEKIELTHREFELLYYMAQHMDQVMTREHLLQTVWGYDYFGDVRTVDVTVHRLREKIEDNPVRPKILVTRRGVGYFVKQQTEE"]}}, {"location": "[112464:114372](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.13.3"], "codon_start": ["1"], "gene": ["walK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45614"], "locus_tag": ["MAAAAKME_01180"], "product": ["Sensor histidine kinase WalK"], "transl_table": ["11"], "translation": ["MDGLMKKDKKARKEKVKKEKTYLLKRAVSSIQTKIALIFMLLLLATIEIIGAYFTRQMEQTSINNFQTTIQLQSIVTDQLTTQLVKNGKSADRKMNQIITDYSNDAISEIQVVDSKNVIRAVSNLSDKNRVGQLSNNGDIREVINSGQQKTQVTSDQKGSFMVQIVPLTSGTNIVGAVYVRASMADVFNNLRNISMMFLTASLLAVVVAAIASMFISRAITRPIEELRQQAIQVADGDYSTQVKIYSNDELGQLGAAFNTLSTKIERSNEQSESERRRLDSVLSHMTDGVIATDRHGNVSIMNQMAQDFLDVKAEDAIKKPISQVLGLGEDYTSQDLISNQSDMQVTVNAGTDDEMILHASFTLIKRVTGFVSGAVCVLHDVTEQIKNEDEQRQFVSNVSHELRTPLTSVRAYIEALNEGAWKDPEIAPQFLDVTQKETERMIRMVNDLLVLSRMDRGATKLEPEWVNFTDFVSHLLNRFDMIVEHDQGEAQSDTKEYVIKRDLGNQALWVEIDTDQMMRVIDNIMNNAIKYSPDGGTITVRLTQNQNQILLSISDQGLGIPRKDLGKIFDRFYRADKARSRAQGGTGLGLAIAKEIVTAHGGRIWADSREGHGSTFYIALPYEPMDEEDEWDEV"]}}, {"location": "[114361:115909](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKFKFKFNDFLLHLATLAVILISIGLWVTVMTSDQRFSRISNESSSQSSASLSTHYRNVQSFYAPGQTYVFQNGVRYQVHDAKRNLPLKFVQYLEKVKLGTIEKMSTTASDYEKLLADQNYIMFAYPDQINFTVLLGKKQANSSLQFNRVFVPVKSKTRYLYFGNDKGSRVYRVKIKSGSFRQLAKYVKSAQDRQEVSFLHLKKLYVPFYAKEIKAKEYSYLISYQSSSYYASRLLGSSYRKSVAKNGRTVYTAGYSKRLQIPKEGKSNDHQYLYQNYLTSQERTATQEMLESAAYVKQLGLAEQDLRFFERSGKTVSYIKYIEGYPIFANDALAQTQVTMGTESVSVAFSSMNLQIPIPYDGRVKTLPKTATLLKELNSIGIKESEIEKITIGYHIQADKKRSDLITLVPTYFIKVGGSWNSLAGWKKIKAENTDLLMEGASSSSSSYSSSSSSSNESSSEASSSASSSVSQAPASRQEAYSSSRSQPAAESSSSSSSAVSASSASSKEGEK"]}}, {"location": "[115909:116710](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4853"], "gene": ["yycI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45612"], "locus_tag": ["MAAAAKME_01200"], "product": ["Two-component system WalR/WalK regulatory protein YycI"], "transl_table": ["11"], "translation": ["MDHRKIEWLFLILFCLVDIYLLIELWRAPVTLTSSTNSVTTSTSLKAEMKSDNITVPSLSIKGDSGYYLATRSKSDLKEAAKKLSSDVFTSYAEGDKTLYATMKTAIPLERMTVGEFKNDSNYVPHGKQYVFAKNLSSNSSYVYVQKSQYGLVYSSLAQLVVNVRNKKITGYYQTYLTDLSSVRELQATISPLRAVTNLYTTRELADNSRVMQVKLGYTKLTEVRGSVIFVPTWLVWIENKSSKSSCLKRVNAFSGQLLQNSTLDD"]}}, {"location": "[116728:117526](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1235"], "gene": ["yycJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C0SP91"], "locus_tag": ["MAAAAKME_01210"], "product": ["Putative metallo-hydrolase YycJ"], "transl_table": ["11"], "translation": ["MQFAVLSSGSAGNCSLLMTDQHKILMDAGLSGKKTKELLAKVGVAIEDLDMVFLSHDHGDHSGGMGVLMRRYPQLNAFSNTVTWKYLEETGKIGCLPKDQINVIEPGQTKCYGDLEVTAFATSHDAAQPQYYVFSSGGKRLACLTDTGYVSEEVEYEIQDADAYLLEFNYDDLMLRSGPYPWSLQQRVRSDHGHLSNEQAAETLARVISSKTKHVFMAHRSQQNNLNYLARDVAEEVLAARDADVASDLELHDTEPMTPSSLINL"]}}, {"location": "[117620:118904](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.107"], "codon_start": ["1"], "db_xref": ["COG:COG0265"], "gene": ["htrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9LA06"], "locus_tag": ["MAAAAKME_01220"], "product": ["Serine protease Do-like HtrA"], "transl_table": ["11"], "translation": ["MSEEQDKQRNTRKKENNRLLTKAAIIGVVAGILGGGIAYGGLSAANLNSNTSSSTASSSSSNTGENGSVTTSSSGTTKVNKSKTTSGTMTSAYKKVQNAVVSVLNYKYTSSSSSSSDIYSMFGYGDSDSSDSSSSKKSLTLYSEGSGVIYTTANGKGYIVTNNHVISGAAKVKVILASGKTIAAKVVGKDSTSDLAVLSIDSKYVTQTASFGDSRSLLSGQTVIAIGSPEGSEYASTVTQGIISSPSRTITYNSNQMTVIQTDAAINSGNSGGPLVNSDGQVIGINSMKLSSSSSGDSVEGMGFAIPSNEVVTIVNQLVKKGKITRPQLGIKVAAIADLNSYYKKQLGISTSLKKGLYVASVTSGSAAASAGIKKGDVITAADGKTVNDVATLHSILYSHNVGDKVKITVNRNGKTMTFTVTLQASN"]}}, {"location": "[119396:119876](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.177"], "codon_start": ["1"], "db_xref": ["COG:COG1576"], "gene": ["rlmH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45601"], "locus_tag": ["MAAAAKME_01230"], "product": ["Ribosomal RNA large subunit methyltransferase H"], "transl_table": ["11"], "translation": ["MNIKIVCVGKLKEKYFKDGIAEYQKRLSRFAKVEIVQVPDEKAPESLSPAQMEEVKKREGERILSKIKDKEYVYVLAIKGKERASEEFAKELKNLGTYGHSDITFVIGGSLGTSDAVNKRANDLFSFGKLTMPHQLMRLVLIEQIYRAFMINSGSPYHK"]}}, {"location": "[120004:120148](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKTERYMWLANDLLLTAAAVSLIINLVGQTASGYAFSGSHGQATAL"]}}, {"location": "[120107:120443](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPLAAVMGRQLLYDAFILLVAAAALGVWLSKWLAPAAAWVIGACLLLGLVIDRVVGLYFGLTWYWTLAVVALEVSLVLASYRWRGKAVSNYWLAGILLAVSLVSCVMAWLG"]}}, {"location": "[120460:120841](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLLKILVKVVDVILLCFLTVVVCSNLKDYINALRTIKGNDLKVTVFGHVVLILVLLTELALAVFSQKNPRKPFLIIGLVCIALTLIGLITPIAFGPGNLPLNFLALVLLAVSRFLQENVAQKRTL"]}}, {"location": "[120939:121281](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMKNFATKPAVKTVFLLAGLCLALFMAVQWIFALGNPGPVSWAIAGMIAITLLTLFLGIAPLTKLSPVAGYVTAAVLAFVVLIFVFNIHEYISIGILYLIYAALACGLLWAKK"]}}, {"location": "[121350:121542](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKHQERQQVAVVVADVPSHTSVRVVGSVTIHEGDDFAKEYAAKVGKPETAPAVVVEVEEIFA"]}}, {"location": "[121502:121718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLDATTLTADQQKFFNDALAFVASVDKDGNPQVGPKGSLTALDDKHLVWSEVTSSHLWENIKNGSRLLL"]}}, {"location": "[121965:122322](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDHSYSNTKQHQKGKRLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRIKSLSLSQPTTDLSSQIYPILSKFPRLLCTTLTLIHPVIKAA"]}}, {"location": "[122369:122504](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKYRVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[122589:123258](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ecfT_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01461"], "locus_tag": ["MAAAAKME_01320"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MTKSKMNPSLKFLLILIISLELSFKVSLFSNVIVIVLSLAYLLYRRIKPKTLGGMLLATGLAAITVFSSGYIFSDHLDLWYALDISSRAFVYTFATACLTISTTAEEMARSLEQNLHLPSKFAYGTLAALNIIPRMQAAVKQIRVAGMMRGVYLSFWSPVLYFKAILVALNSADNLAQGMESHGYREGAPRSVIVEVPLTNKDWLLFIIAVLLLNLGAFLLP"]}}, {"location": "[123267:124623](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ykoD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34362"], "locus_tag": ["MAAAAKME_01330"], "product": ["Putative HMP/thiamine import ATP-binding protein YkoD"], "transl_table": ["11"], "translation": ["MQAELTIDHLTFSYGDREVIRDLSLTLPAGTFSLLIGPTGCGKSTLLKIMAGLYPKYGGQLTSGQVSLGWRSQAMMFQEAGEQFTMATPREEIIFAMENLGKSKTEFADRLKLASEFAEIDSLLDQKIVTMSGGEKQRVALAVLVAMDVDLFLLDEPFASVDPAARRFLIGLLAKLKEQGKTIIITDHLFDDYQGKVDGVYRFKGEQVDLLTKDEQALLLATEPIGLHFPLPENEPAAFVMKNFAIKQGRPLLEQKELSIPKGKVTLITGPNGSGKSSLFKAMTKLLDYQGSLTWKGKEVAKLKERTYFQHVAQIFQNASDQFMAITVKEELALSQKHASPYFTPEVLDQALADLDLADHMDQVVYSLSGGQKKKLEILLMLLSGQEVLLIDEPLSGLDQKSIEQVVQLLQKCQEKSGQTILLISHHFYGISTWCDYHLRLAGRELAFVQD"]}}, {"location": "[124925:126401](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bmr3_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96712"], "locus_tag": ["MAAAAKME_01340"], "product": ["Multidrug resistance protein 3"], "transl_table": ["11"], "translation": ["MSDQRRRVITVALMLSNVMSGLDNTIINTALPRIIADLHGIEYTGWLVAIFLLGTAVSTPLWSKLGERRGNKLAYQLAAACFLLGALLQGCAQQMSFLLTFRLLAGIGNGGMVSLPYIIYSDLYPNAHKRLKVLGMVSAFFTTATILGPLFGGWIVDALSWRWVFYINIPVALISIVLIQIFFLDEKKDRPVRRVDLGGAIFLSFGVVDLLLGTQLVGSASLATALLIFAAALIFIGLLVIIERRAEDPIIPGRLFKNIPLVVDFTLFVLIWAAMSAYSVYAPMWAEGLMATTALVGGMTQIPGAFTDMLGSLSVEKMRRRWSAYQVMLATCWLLAAGYLAMAVAPRYFPYWGILLAGMLQGWGHGVMFNQLQVKVQEDAESQDVPVATSFSYLIRMLAMAISSSVFGVILNEHLAKGVKASGGKITLSMLNHLSDAKTRASLPKQDLVQMENILYGAIHAIFWAAFILVFLSLLLAIWARWREKKLAGKR"]}}, {"location": "[125153:136119]", "type": "protocluster", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "category": ["RiPP"], "contig_edge": ["False"], "core_location": ["[130153:131119]"], "cutoff": ["20000"], "detection_rule": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "neighbourhood": ["5000"], "product": ["RiPP-like"], "protocluster_number": ["2"], "tool": ["antismash"]}}, {"location": "[130153:131119]", "type": "proto_core", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "tool": ["antismash"], "cutoff": ["20000"], "detection_rule": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "neighbourhood": ["5000"], "product": ["RiPP-like"], "protocluster_number": ["2"]}}, {"location": "[125153:136119]", "type": "cand_cluster", "id": "", "qualifiers": {"candidate_cluster_number": ["2"], "contig_edge": ["False"], "detection_rules": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "kind": ["single"], "product": ["RiPP-like"], "protoclusters": ["2"], "tool": ["antismash"]}}, {"location": "[125153:136119]", "type": "region", "id": "", "qualifiers": {"candidate_cluster_numbers": ["2"], "contig_edge": ["False"], "product": ["RiPP-like"], "region_number": ["2"], "rules": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "subregion_numbers": [], "tool": ["antismash"]}}, {"location": "[126464:127313](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEIAKLQKKLQEAGDATLPLSKGKGQTAACTFVLLGDKAEGWKNDSLTALLLLAGTGRFRAGQQKWQVKPGDWFLLAAGQDCKASLKEGLLVQLVLPEAFSVKDLKKDLMLGEAEEVGTHGRVAVDGPAGAAFLAALNEYQTSDSVSSVLLKSQLLTALALALRALNEVGSLSEREIRRYISENYVSTSVKDAAAYYQLSPNYFSDLVKKKTGQSFIELVDEQKMETAVRLLARPDLSIKQIIGLVGYRGKSFFYEKFGKYYGMSPAAKRKELFRQQGINL"]}}, {"location": "[127454:128387](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_5"], "gene_functions": ["transport (smcogs) SMCOG1000:ABC transporter ATP-binding protein (Score: 165.7; E-value: 2.4e-50)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_01360"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MIEIDQLSFDYRTFSKEPGLKGALQDIFHRKYQLVPALKDLNLTIKDGEIIGLIGPNGAGKTTLTKLLTGIIQPTSGSVKVAGLIPGSRQKKLLRQIGVMFGQKSQLSWNLPAVDTLNMLAAIYQLKPDHYQARLRELCDLLDIGEIVKTPVRKLSLGQRIRCELACSLIHEPSYLFLDEPTIGLDLLTQEKIYNFLKTENRLHQTTIILTSHNVRDIEALAQRLLILSKGELIFNDSLNKLPLQIDQSDSYCLKYWINDQTDVREEIIHDPQQLFVKMEKFQPEQIISLSKSGISAEEVILKIYQREKQ"]}}, {"location": "[128383:129130](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRYLPVYYLGLKNSLIYRANMIMKLVLQLASLLVTVLMWKFILAESGNFQQMARYLLATNLISLIFTTGPVFQFADMVESGNLSLYLTRPLSLYWYLFNYNLGLQTPLLLLYLILLLFLVKSAGPVFLLLIYLLLSSLMFFSLMMVLAMLSFWLINMWPLRSGINAVYLLLGGLYFPLNLLGPVYQYLKYNPFSLVTDFPARLLTGTTDQRDFFTNCLAVCCWLLLSVLLGKALFKKGIKTFEGAGA"]}}, {"location": "[129126:129891](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKIKAIWRQSLAEFMIYRGTSIITFLLATVFLLIELLAGQVYFSQRENLAGWTANRYYVMISFMNSATYLYNLFFILGHEGLGEDILEGNLDYLLVRPSSSYWLAVGRSLDIPSFFNLLLSLGLLAYYLTREGASFGQIMLINCMIVLPAALIFILNQLCLTLLFWFEGLTALGGIVEDLVSLAGRPKQIFPRVIQQLFTWIIPLLLVSNLPVDWLLGRGKSLLIYLLAFLPILYWISAKFWQWGLRRYSSAN"]}}, {"location": "[129923:130076](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGRTRTELTKGGPILVEGLNDEELNFFDALMSSPKDLSDQVNNVKTEVVK"]}}, {"location": "[130153:131119](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene_functions": ["biosynthetic (rule-based-clusters) RiPP-like: YcaO"], "gene_kind": ["biosynthetic"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01400"], "product": ["hypothetical protein"], "sec_met_domain": ["YcaO (E-value: 6.6e-23, bitscore: 78.8, seeds: 127, tool: rule-based-clusters)"], "transl_table": ["11"], "translation": ["MQIEREMPDADAHTNWLELINRLHLTADYRMWVSANLALQTVQCILSDSKKQQVSVGMGKGMNHMPVLGAEFESIEHLFYNSQTHSAKQRVLVSQIMEQDLDFLDDPALNQLSKNTKLTVDSFVDIESSKEVYYPSFLSDVNFIDDGVSINNHAYQYASDSGYASGSTVNEALLHSINELIERDSISRFIIKYGLGIKENSVTAFKIIPKSLPKDLYKIYLGLKDTVDTEVILVKVINNYQIPTYFTAVLSQGSDILPIYGSGSSVDERYAVMRSLTEAYQLVSVKKGSESQQLRKRLNLIWSEISPIEEDDVSNFYKKVG"]}}, {"location": "[131338:132178](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYGQYFKRLRNYKKMTLGEAAKDITSSPALSRWENGVDDIRLKKFLALLDRVDITPREFFAYTEVQGNLDNSYYDELQLLVQQKDGQRLHQIFLRQISSFHQTKDPDILGKAVAAANSYFSLTKINCLTDADLKSFKDLLLDSEYLDFKSLRFLENSVYLIDCDLLISYNSKVIHQLSHLEQVDYELYLNAWTALTNIVFSLIQQKQNSVASHILNQLLTIDLPQQMAAFKIRIVFLKKLLAYRESGDDREINAYLKSLTEIGLSNLVSELLDYWDSVY"]}}, {"location": "[132321:133221](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG0501"], "gene": ["htpX_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O30795"], "locus_tag": ["MAAAAKME_01420"], "product": ["Protease HtpX"], "transl_table": ["11"], "translation": ["MLYQQIAQNKRKTAGVLGVFVLIFALVGAGLGQLMWGKPLPGVLTAGVIALIYSFLVFQDPVNVVMSMNHAQHLNKEDNPQLFHIVEDMALVANIPMPEVYLIPDKSPNAFATGLSPDKSAIAVTQGLLDMMNREELEGVLGHEISHIRNYDIRLSMVALVLVSAISFIADFAQRCVWFGFGLDRDDDDDREGGTIGMIIGVIGVIFVLILGPLAASLAQMALSRNREYLADASSVELTRNPHGLISALTKIENSQPMQAASSASASLYIEDPIRRHSLSHLFDTHPATADRIKRLEKM"]}}, {"location": "[133237:133792](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1704"], "gene": ["lemA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A8AVK0"], "locus_tag": ["MAAAAKME_01430"], "product": ["Protein LemA"], "transl_table": ["11"], "translation": ["MAVWIIAILVVLIVIFYISAYNGLQKAKVNTEEAWSQISVQLKRRNDLIPNLVETVKGYAKHEKETLSKVVELRNQLTQLPADDHEGAMHLSNQITDSLKTIFALSESYPDLKANTNFANLQEELTNTENKIAYSRQLFNSSAAVYNKMLLVFPSNIVANIHHFTKVDYLEIPEEETKVPKVSF"]}}, {"location": "[133949:135095](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0471"], "gene": ["ybiR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75788"], "locus_tag": ["MAAAAKME_01440"], "product": ["Inner membrane protein YbiR"], "transl_table": ["11"], "translation": ["MEAAKSKSSNNFLTTLKKIFSDRILQITIVITIISLFFARPLSADMNWHTIESVTTMLVLIQVYSYLHVLDIIAYKLAAIADSTRKLILLFTLLSVFSGMFLGNDITCLTMIPLYLNIAKKYKLPEILPATLIGMGANIGAAFTPWGNPHNIFVVSNYHLAPAIFFKWTLPYLIVAMVVFLCFFFFIPKKNIPTQEVVEINVSWPMTMITTVIFCFFFVGVFKFVPIWMPMLASIIWALIVNWKILLHIDYSLLLTFTLFFLFISDIQQIPFVVALIHGLVGTEMSTYWTSILSSQVMSNVPSTILVGKFSKYAEALTLGSNIGGFGSPIGSMANMLVMRTFYAHASKDAKKKFFPKWLGYQIAGLIILSLIGWVIVKLNL"]}}, {"location": "[135688:135823](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSRNIHTGINPHRRPRNASNAKERVAHVAATISFLNQAAKDENK"]}}, {"location": "[135944:136856](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["cas9"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01480"], "locus_tag": ["MAAAAKME_01460"], "product": ["CRISPR-associated endonuclease Cas9"], "transl_table": ["11"], "translation": ["MKFQCSSCGLRLESLHFKLPGLVNDRLASLCDICRQRGLDPAASPNPVVKLFAANLLYAFVGKDGEASGDFSLPDLKIRRSYEALMQDYDGNVLARQQLPRADFNQAVIKAEDDPSFFLPGKLPFAEKLQALGLSVDFQLNEVDYIDRERIRAKYKYRCQYCGRRGRSVDHKDPVSVSHDNSLDNLILSCSECNRIKSNMPYDLFVKLNEELQPLNKKLVKYENALGPLEKEFQDRRNMLAAKVHLKGVVNDPELAAIRKENKRLRDAIDSLESDYDAVRRLREDHFKLGWKLYLAQQDKEII"]}}, {"location": "[137085:138225](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yneA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02014"], "locus_tag": ["MAAAAKME_01470"], "product": ["Cell division suppressor protein YneA"], "transl_table": ["11"], "translation": ["MKKKNLLMTTLATLSASGALLTTGASALADSYTVVKNDTLWGLSKKYGVSVSDLKKANGVSGHLIYVGQKLQIPTKSTKATKTAKTSTSTSTVDTTSTTHTVVKGDTLWSLAKKYGVSVSALMKANNLSSSTILIGQSLNLRAGMTTYGVNGVTTGSSSTAASANTASSTSTTASSQAPKDKKTATKAKSTTINTSSNSNTSTSANTQSQSTASNSSASTTTNTNTVASNANTTSSTNTAASSSQAVSQAPTASTATTTASASASAITSYALTFLGVPYVWGGTTPSGFDCSGLVQYVYSHFGINLGRTTYTQQYAGTKISVASAQAGDLYFWGSYGSAYHVAIALGGGQYVMAPAPGQNVMTGSVSSYTPSFAVRVLG"]}}, {"location": "[138852:139614](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["artM_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54537"], "locus_tag": ["MAAAAKME_01480"], "product": ["Arginine transport ATP-binding protein ArtM"], "transl_table": ["11"], "translation": ["MADYKDNEIILNVQHLQKAYGEHQVLKDISFEVHKGKVMTVIGPSGGGKSTMLRCINLLEDPTGGEILFHDQNILDENYNIPRYRSKVGMVFQQFELFENKNVLQNCMIGQELVLKRSKAEAKKIALENLKTVGMDPYIDAKPRQLSGGQKQRVAIARAISMNPEILLFDEPTSALDPEMVGEVLETMKKLAKTGLTMIVVTHEMAFSKEVSDQVLFMSDGYVAEQGSPDEIFNHPQSEKTQKFLANFRGPQI"]}}, {"location": "[139617:141201](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.2.-"], "codon_start": ["1"], "gene": ["mltF_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02016"], "locus_tag": ["MAAAAKME_01490"], "product": ["Membrane-bound lytic murein transglycosylase F"], "transl_table": ["11"], "translation": ["MKKHSSWISALMAAVLTLVLAVSWSQPAQASGTLKIGMEANYAPYNWTQTTSANGAVKIDGTSSYANGYDVKIAKIIAKKLGKKVIVEKTQWDGLLPALTSGKIDLIIAGMSPTAERRKAINFTSPYRTTNFVVIVNKQSKYAKAKYLTNFKGAKLTAQQGTLHYDLIKQLPGAKREPASKDFAAMRESLEAGTIDGYVAEDTELTSFQMVDSNITGVNLSKMKGFKVSSSDAEVSIGVKKGNAQLLSQVNKVLAGISTSERNKLMKEAVQQQPQTSTKKENWLVSMLKNYGQMILEGIGMTLLISLVSTIAGIFIGLLVSIVRTIPEPKNKFKKGLLAFCKWLLSVYVEIFRGTPMMVQAAVIYYGIAQFWHINLNRTVAALIIVSINTGAYLAEVIRGGIISTPKGQFEAASALGMTHNQRMWNIILPQAIRNCLPSITNEFIVNIKDTSVLSIISVSELFFVGSTIASQSFQFFQTYLVISVIYLFLTFTITRIFNLIEKHIEGPENYNMMANQVQVGKQEGDK"]}}, {"location": "[141588:142215](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG2094"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WJP7"], "locus_tag": ["MAAAAKME_01500"], "product": ["Putative 3-methyladenine DNA glycosylase"], "transl_table": ["11"], "translation": ["MDYRNFFTGRPTSEICRDLIGRPFYYQAGGEKIGGYIVESEAYLGIYDRAAHSYGGRRSHANEGLWRAGGTIYIYSQRQYVFFDIACQEEGNPQGVLIRAIEPVWGLDQMLKNRGGKDGVLLTNGPAKLMQAMGIKSRNWDLAPLADSPFVIDLTEKKPAKEIVASPRIGIVQADPAWAQAPLRYYVAGNPYVSGMKKRDWADDHGWL"]}}, {"location": "[142297:142669](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTIKTVRIYAKEQPAGYRILVDRLWPRGIKKEAANLDEWEKELAPSRDLRIWFKHDPARYPDFRQDYLEELADNPEWPPFVEHLQELLQKGDVLFLYGAKDEEHNQAVVLKEAAKEALAKLP"]}}, {"location": "[142655:143354](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.286"], "codon_start": ["1"], "db_xref": ["COG:COG0846"], "gene": ["cobB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66815"], "locus_tag": ["MAAAAKME_01520"], "product": ["NAD-dependent protein deacetylase"], "transl_table": ["11"], "translation": ["MDQAKLAEFKADLKKAKHPIFLTGAGVSTHSGIPDYRSKTGIYNGVSEPPEVILSEETLYDRPQLFYDFVMQNMYFPDAKPNLIHEKIAAICNEKGALVTQNIDTLDRQAGNQHVTEFHGNLYDIYCSKCKQKVSYEDYAKGYKHECGGIIRPGIVLYGEGINPANVNQSILEMRQSDLVVIVGTSFVVYPFAGLLGYAAKDAKIWAVNLTEIPAQGIKQLTGDALEVFKEV"]}}, {"location": "[143466:143946](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDTLFYLVADTLLAAYAGYSWYSQATVILRARWRMTAVVMPILLVWLGASWGYLELGTPGFIVFLALFILTGILEATSGFADKRVILSGYFRRTLKYSEISQVILTAAPPEVGDLSIAALETSRHQIYYLRFNKQVSDVVSFLMQRLERGVNIDVRKMG"]}}, {"location": "[144015:145479](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "db_xref": ["COG:COG1502"], "gene": ["clsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71040"], "locus_tag": ["MAAAAKME_01540"], "product": ["Major cardiolipin synthase ClsA"], "transl_table": ["11"], "translation": ["MTAISWIDIWHIIFFANAILALWTVFHRKRSVAASWAWLIVLIILPVVGFIIYGFVGRGISQEKLFAINRQKHNGLSNVQKMITEAPAKIDQSDTSPSAHILIKYLDKDQESPITKNNKLKLYTDGHDKFRDLFADIRQAKSSINVEYYTIYNDAIGNEFLKLLIQKAREGVQVRVLYDAWGSFGASKSWFNQLTEAGGDVLPFITSRNMISRNRINYHLHRKIVVIDGVTSWTGGFNVGDQYLGRKKKFGYWRDTHLRLVGSASLLLQERFVMDWNASAVKEEELISFDEKLFPDLDENDISKGDMAVQVVSDGPDNDEPYMRNGLVRLMMLARKRVWIQTPYLIPDEAMIAAWQILASSGVDLRIMIPCMPDHPFIYRATQWYANQLVKIGVKVYTYNNGFMHAKTIIVDDKYATVGSVNQDYRSYDLNFEDNVFVYDRAFNKEMSDQFEKDMEQSTLLTPEMIKKQSRWLRSLQNFSRLLSPIL"]}}, {"location": "[145480:146425](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLFFNSKKYAEETEKKRGKNPDPRDHSLAMMFFLGILATFPPFRIFLKLRGKRVSDLAENQASGSDQVPIIYVHGFRGGDYTTRMMVEDALKQKGDARFLKVEADLTGRIKLTGCYTGDKQPIIQLTFKDRIAGYQAINYYLSFILPFLSKKYVFTRYSAVAHSLGSPCVVATEMRYAKRKNFPHLASCALIAGPFNGVMYLGDIPNVNRLTESGRPSMMTPHYSYMLRHRRDFSPSIRVLNIYGNVLDTTNSDRFISVVSAKSIRYILAPDAVYYQEVEVLGDNAEHSQMHDEPFVIGILNRFLGLDKIKKGL"]}}, {"location": "[146496:147264](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "gene": ["rnhA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00042"], "locus_tag": ["MAAAAKME_01560"], "product": ["Ribonuclease H"], "transl_table": ["11"], "translation": ["MKVYVVKKGYRPGIYHSWPEAEEQVKGFPGAEYKSFSNIMEALDYQQMDPEDALKALQGAEDKLQAAIAKVRQGGSKKKQAESQKEFAASSKYAAHIFTDGGCRNNGTHKGGHVQADDKAAWAYLIEYGGQKLSASGGRFGATNNEMEMTAFLESLKKLEELGLNDQPLLFSLDSQYVIKAVSDNDQGPAWIKGWQRRGWKKADGSPVANRELWQEIAKEMAKFAQPEFEWVKGHANSAGNNFVDGLLNKYMDQM"]}}, {"location": "[147351:148308](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4086"], "gene": ["ypuA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31847"], "locus_tag": ["MAAAAKME_01570"], "product": ["putative protein YpuA"], "transl_table": ["11"], "translation": ["MNTKIKKIITACALFLGLGLTAGRVSAAEDTTPVITLGTSLTASQKQGTLDVLKGALSDSSSYNTLTVTGSDLVTYLNPSGSSFTSSSGVWSSAAIEKTSSGSGINVRILNYNGQNNITTITANQYRNAAITAGITDANIYVTSAIPIDGSGALAGIYKAYAKSGEKLNQKQITAAQNELNTLSGITKENKGKDGYSDAQLNNAVAGAKKEMAQKGSNITKNQIITIVNNQIENNNLTNVITNKQKQQIVNILVEIRDSGALNSSSFKQQASQAMSAIQKSAKGIFAKLNTSENRNALQKLWDAIVNFFTSLFSSLSK"]}}, {"location": "[148477:149302](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.53"], "codon_start": ["1"], "gene": ["arnC_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01164"], "locus_tag": ["MAAAAKME_01580"], "product": ["Undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferase"], "transl_table": ["11"], "translation": ["MRANADLKLTVIMTVYNQEKYLARALDCLLEQKNQQFKLLVIDDGSTDSTAEIAASYQDRFQAFDLVSKANEGVAAARNLGLDMVDTPYCIFHDGDDWVEPDYTDYFIKAFDRHPDDDMVTCGYYVDQAGKPSVPITKPVEGELTRLEAVLKVLGSAHSPVKGYTWNKCYKTQLVRSLHLRFNEDLDLMEDQVFNIDYLMQTEGCYYSSVPLYHYWQRADSAVHTVSWDHFWSIVGANISIYKSIFSHLWQKSPQQAAANPGIPRQLCKGKDQR"]}}, {"location": "[149298:149958](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.99.20"], "codon_start": ["1"], "gene": ["menH_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01660"], "locus_tag": ["MAAAAKME_01590"], "product": ["2-succinyl-6-hydroxy-2, 4-cyclohexadiene-1-carboxylate synthase"], "transl_table": ["11"], "translation": ["MIIKVNGVDLYYQKLGQGQPLILLHGHHLDGGMYSKVIAPLSLYYTVYTLDMRGHGLSGGDGAEHYQTEVEDLAVFIKELGLEQPYVFGYDSGGLVTLMLASQQPDILGKAVVAGVFIDGRGIHKYHYLTEGVRRFLRFDHDSRVELTESYMEPESLEQIKIPVLCVVGENDWVKVEHVRWYSSLIPNGRLALMPRQTHDSYVVDSLKILDLIKDFCKE"]}}, {"location": "[150048:151053](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.1"], "codon_start": ["1"], "db_xref": ["COG:COG0462"], "gene": ["prs_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14193"], "locus_tag": ["MAAAAKME_01600"], "product": ["Ribose-phosphate pyrophosphokinase"], "transl_table": ["11"], "translation": ["MMTSITKEEIHKLLNPMKVIGLGGNPQLNEKVASTLGVPLIETTVHHFSDGEIQVNVAESVRGCDVFVIQSIQDPVNENFMELEIVLDALHRASAHTVNCVIPYLAYSRSDTKTRSREPITAKLIANLLQLTGIDRVLTIDLHASQIQGFYNVPVDHLHAIPLLAQYFLDNGIAAKDDDDVVVVSPDHSGTKLARVFGQYFNAPIAIVDQRGARYDDSVHDMIGDVKGKKCIIVDDLIDTGTRLASSTRSVFAAGATKVYVAATHALLSQDAIKILNGLPLEQIVVTDTIKHEKYPDRMVRISVDRLLAKGIDHIYNDRSIHDIFDEQNRFTKD"]}}, {"location": "[151234:151915](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["betI_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00768"], "locus_tag": ["MAAAAKME_01610"], "product": ["HTH-type transcriptional regulator BetI"], "transl_table": ["11"], "translation": ["MARRKNMQRRREILYNTFRLIRANGFDNVSLQMIAENSGISKSLLQSYYPHKARLMTDIVRNFFNTMWDQVEINYHAPKKNPFTRVDALIYTIATLGMADKGLDRVITEAFTDQTSLDNWSRMLDEWMKSHNAFSEYSNYQEIRTGIAFIITGVGRLYRDRGKNGLNAEQMADYSTSSLMYGFLHADPAEIDVVLEEGHRIIDDINIGEVHHAIDTMFDEGKVIYS"]}}, {"location": "[151925:152759](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAESSGTHRRRNNYEIVDNALEYKRPLAFIAFLLLSLLLATGTFLNPAFMKETIKTDSNTVVISQQVNSHFNRLATIVNGSSDEKNLISDDQAREVADLIIDYKYGWHFIHTSNLDLAKDIKAVILKKEQTDTDQVTAIRKKLKKQSDSSVYIVSNAFDLATVMLEANLITIIRIVNLLVIPLCLVAVVSILREAFASHTKRAVVHDMTAGLMWTAFWFILVYGLLAMVPIFMDTSVITVADLGYWLEIASGVFLDFVIAGVILYVVSAIPWQATSR"]}}, {"location": "[152798:153449](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["anr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O85222"], "locus_tag": ["MAAAAKME_01630"], "product": ["Transcriptional activator protein Anr"], "transl_table": ["11"], "translation": ["MHQHDELNCISHVPFFKNLPLDLRQDLVHISTHQQFFKKGSLIHAPGDGRLSVMSLDSGRAKVYSLSPDGHEQVLSLMQEGDINGEENLFDTENDDLFIEALEDSTVCSINYFDFQDLLLKSPELSLYLLNEFGKRLVSAQKNAMRRNSLEAGPRLYASLKDYADEAGSATFTLPLKKKDLASLLGITPETLSREFSKLKKDGYIAAKGKQITILK"]}}, {"location": "[153486:154818](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKMRHKPVLLLLPAILLAVGPTAVQAAEFTPQEQAEVLRFQREYQALSKTVYPQQNIYASKPSLKNKFKAGSLKSSYINEQVAYINYYRDLFGLTAVKTSSQGNKNAQTTAAVMAAINANPFVNQHGLPNEKKPSYISKKNWLLAQDVSNSANLNFNASPQTAGDVVTDLLTDRYNLSGSDTGHRAWPLSTRLSKISVGAAYGTNGYRYSVNQVLNVGDSARTASREMVAYPNAGVFPLELLNGQNIAWSLYFSNKVVTSTPKITVTDDDTGKTVTASQVANYSEYGFGNFQTVITYYPSKLQLTAGHKYTVRAGNLATYSFKLFKQSSSQTYSSKVSSSSTQSKNKVSQKDLQNKGLAKYLYKVGKNISTVKSKKITNAKAVKTTSKTKKTSKKSSKKSSKKSAKKSSKKSRKKSSNKAKAKSKKTSKKAAKKSNKKSSKKK"]}}, {"location": "[154965:156054](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.4"], "codon_start": ["1"], "db_xref": ["COG:COG1181"], "gene": ["ddlA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A1F0"], "locus_tag": ["MAAAAKME_01650"], "product": ["D-alanine--D-alanine ligase A"], "transl_table": ["11"], "translation": ["MTKKTQVGLIFGGNSSEYEVSITSAGNIYKAIDKDKFDVHPIWITNSGYVASEADSYKVLEEPGYMVEKNDKTANLSNLIELASRPELDVLFPIVHGNLGEDGVLQGLFRLIDKPFVGVDVLAAAVTMDKEFTKILAQRAGVPVAKWVSIKRYEYEDAKNQKLSYDWVSGQLGTSNLFVKPSNQGSSVGITHVTDDSNYAEALAEAFKYDDKVLVEEGIVGTEVETAVLGNDHPVVSGVGQIINADNTWYSYENKYSTESTTTLQIPAQIPAETAEKVQENALKIYQITECSGMARVDSMLRESDGEVIFNELNALPGFTNISMYPKLFEEAGISYPDLITRLIRLAEERYAHKKTLLRKHD"]}}, {"location": "[156103:156379](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSEKSEQMKTSEAAQALGVSENTLRKYSQAVEKAASPAYFPRVKNTRRYRPEDLTVLKQMQDLVKAGQKIDQAAQELFAGEKEEAPVKTAR"]}}, {"location": "[156592:156739](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKSDQEVHKELLSRTQENAAKGAPTYRTLADMQLAPKKTPWWNKIFK"]}}, {"location": "[156870:157980](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METKKQSILAALVLLALGLGLAALTYFKTTGYKNPVAVITDTKIKDRLLKKETDIYGNKDEERRQYLHVQVLIGKYKGQTFETVNTYYPSQLVTQKYRAGERVFVTVTDGSLALVSPKRDWILVMTLAITLALMVAVVGRRSWHLIVSMAIIWILFYCLILWDVAVNGAGIIWMFSLADIVFSFFSLAIVQGVNKKMLVTWLATLLGVFVSFALCYAVIKLTGETYLNYEMGDYATQDTRGIFMAQALLGVLGAVMDEATDIVSSLYELIQHKPEITVKELLASGRTMGQEIMGPLINVLVLIFISEALPETILYFRDNNTIATTFNFTMSLGATQSAVSAIGIVLTIVFASLCSLLFLKKPQKGGKQE"]}}, {"location": "[158067:158772](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINSLLLVLVAMLISWGLSIPIITAIFVPLKLITIIFLGTHDYTVAKNSFYASLIVLSLVSVLILGIQYLAQAAGLGPEAGEILLGHSQMPGISYGQIAVTVAIFSALGAVAEAAVSMSSGILELKKAKPDITEEQLMKSGAAIGYDVLGTAMNTIIYGMFGSFLSLFLWYYRLHYSFSEVINDKLFVNEALIIMYSLLGVLLTVPLATFLLAKGMSRQSEAKNGNEKTRDQEL"]}}, {"location": "[158737:159532](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METKKLEIKNFNGRTYQLQTYTVKSSHAPLNKLRPLAIVVPGGSFTHLSVKEGEPVALAYVSRGFNACVVSYNLLQDEGMIYPDAGLDVLSTVNYYHERAAEYQIDPNKIMTIGFSAGGHIVSAANYLADEAEYQERYGYEGDQVRPNATILGYPLTDVHKVAFEIGGRADGALPPDPKLVDTALGVSPKTPPTFIFQSWNDPICLPTNAMAYEEALFKNKVKCEAHMFDIGYHGYSLATPELSTEDIFWQGNPHTARWFNLSL"]}}, {"location": "[159744:160002](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRVEAGRDLPDLSQVLPGHKRRRGRRDLRGIIKRLDYLQDLGIDAIWLYPVYKSPGVDNGYDIADYEAIDTPPVRDHGGHGRINQ"]}}, {"location": "[159982:160291](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.70"], "codon_start": ["1"], "db_xref": ["COG:COG0366"], "gene": ["dexB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99040"], "locus_tag": ["MAAAAKME_01720"], "product": ["Glucan 1,6-alpha-glucosidase"], "transl_table": ["11"], "translation": ["MEELISEAKKRGIRIVMDLVVNHTSDQHHWFIEARKNPSSPEHDYYVWADKANELKSAFSGSAWEYDGQVVQYYLHLFAKEQPDLNWKNPALRQKVYDLMNF"]}}, {"location": "[160339:160924](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1175"], "gene": ["malF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P02916"], "locus_tag": ["MAAAAKME_01730"], "product": ["Maltose/maltodextrin transport system permease protein MalF"], "transl_table": ["11"], "translation": ["MAYAVPQFVSLLLIAQFLDAQGPLNTLLQNWGWILGPLHFIDNEDAPWVARLTVIIVNMWIGIPVSMLVSMAIIQNLPQDQIEAARIDGANVFQIFHNITFPQILFVMGPSLIQQFIGNINNFNVIFLLTGGKPMNNDYNGAGSTDLLVNWLYNLTFGQQQRYNASAVLGILIFILSATISLIAYRHTTAFKEG"]}}, {"location": "[160926:161784](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3833"], "gene": ["malG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P68183"], "locus_tag": ["MAAAAKME_01740"], "product": ["Maltose/maltodextrin transport system permease protein MalG"], "transl_table": ["11"], "translation": ["MKSYSNQRKVSLFFRYLLLTILAILWLIPIFWIVLASFSYNDTGFISTFFPEKWTFQNYIGIFTNSQFPYLHWIINTLLVAIISATLSTFFQISVAYVLSRLRFRLRKPFLQIALVLGMFPGFMSMIALYYILKGLNMLNLGGLILVYVGGAGLGFYVAKGFFDTIPRSLDEAAELDGATKWQVFTKIGLPLSKPMIVYTALTTFMAPWVDFIFSGIILSTSGDPKTYTIAYGLYNMLSSSKGSATTYFAQFVAGCVITAIPITILFVIMQKFYVSGITAGADNG"]}}, {"location": "[161935:164941](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTADLQNSRHQLGRLVGVNKRENYYELHYATGEIARVYLIANGIFRYWLDPSQEFAETNDMLVKGIEPDPQCFARATAHATSDMFIITTGSCKLIFQQKTGSFSIFDESVHRPRMVQASALELSGKHSIEILKQGKNEYYYGGGVQNGHFSHKGEKITIKTDGITGADGVLAAVPFFWTNAGFAELRNTTATGHYDFGRQNSQLTILSHRTPVFDSYYIIGNSPQELLSSFYYLTGKPFMLPSYALSFGHIGNFLDGSWQEADGKGHEAVRFEDNRYYSRKTENSGRLPSLNGEQDYQFSARAMLDRYQRWGFPLSWIIPNYESQTAAKPDDFAAFASYAQSRNCHPGFWSEKGQPLAHHSEFAAVDDPSSDLTAVNSDLAKENPKAKPLTLVRDSLLPYQSQAALAFGDVSGDWSSIKTQISTLLGAGLSGLPFIGAAAGGKHGQENAQVAVRDLEWKTFTPLFFAIDDQSPLSKTPFAFNNKVSRIMKAYLGLREQLKPYLYALSRQAQDGLPLVRPLLMSFPHEQVGYGRDFADEFMLGDQLLVAPIVNGKSDNRGLSVRDRIYLPDKQTVWIDLFTGDRLMGGRVYNRRKYPLWQLPVFVRGGSIFDLGSRRFVLYPQGDATISTYSDNDQSDYKHNSAQTVIRTHVADSKLRVIIEPTTGYYPNMAIKEQTFLYIYCDQHPDEIQLRAGDEEVVTLTEYGTPETLQRAKEGFYYDNKFCWPEGFKDLGATPRPALIIKLQERDIKQEKLEILVNNFRFANEQLIHQITDAALPLPGKVEVDLDKISAHSLTVKWAQRTPSVQIELNGLLYTGISGNIFTFTDLAANTGYRLRLRYEAGYKVSEWSDLLQVKTKRDPRDFIISNVKVTSNQESASGHQLKNLLDRRMATDWQSTGKPSEDQPLTLTFSFPDQTELNKLIYVPRASSRDGRPLRMRVEISTDGENFTSYGTDYQFKSDCKNKVIGLRGGSAKAVRLSILETTGDYATASGIDFYRPLK"]}}, {"location": "[165537:166686](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1820"], "gene": ["agaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8XAC3"], "locus_tag": ["MAAAAKME_01760"], "product": ["N-acetylgalactosamine-6-phosphate deacetylase"], "transl_table": ["11"], "translation": ["MRYYIHADQFYLPNGREKGGYLEIVDGKFGAYLPEGSQVPDAVDYTGFSVAPGYVDTHIHGSVKEDVMKSDWEGINRLSEALLSAGVTSWLPTTVTASSEQLGEVCRMLAAHQGEESGAKIQGIHFEGPFFTEEHAGAENPKYMMDPSPAELDKWLEASKGMLKKISLAPERPGTPAFVSYAVSRGVKVALGHSSASYDQTKAAAQAGATIFTHTFNGMPDFSHNRPNIANAAMTLENMDNELIADGHHVTPSAIKALLAAKGKEHIVLITDCMEAGMMPDGDYMLGELPVYVKDGMARLKEGDNLAGSVLQLKDGVKNLVDWGLAGKEEAVLMASYNPARSQGLLDKCGAIRPGLPADFLILKDDMSLAKTYLNGEIRWEE"]}}, {"location": "[166756:167230](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.6"], "codon_start": ["1"], "gene": ["ntd_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9R5V5"], "locus_tag": ["MAAAAKME_01770"], "product": ["Nucleoside deoxyribosyltransferase"], "transl_table": ["11"], "translation": ["MPKKTIYFGAGWFTDRQNKAYKEAMEALKENPTVDLENSYVPLDNQYKGIRVDEHPEYLHDKVWATATYNNDLNGIKTNDVMLGVYIPDEEDVGLGMELGYALSQGKYVLLVIPDEDYGKPINLMSWGVSDNVIKMSQLKDFNFNKLRFDFYEGAVY"]}}, {"location": "[167403:167883](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEELLKAESCFVLRAEDRADMFAQVYKKLLEQGLVAAGFLDQVVDREEDFPTGLASCNLAPDLPNLAFPHTEGCFVKEQRVVPIKLLAPVSFKSMVDPSRELPVGFCFMLLDQKADGQAELLARTMTFLSQAEPAALSRIFAQTDPAGLYSALREEGF"]}}, {"location": "[167892:168690](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSLKQQLLDVKGGRNFRELGGYQTVSGKKIKMHKLIRSGHLADLLKEDQEYLRRYGLKYDIDLRTSFERNKQPDRKISGVEYFADPVFDEDLTNSTMSISDMARESQDPGWGYQRMLWAYKNMATGKNANKAYQHLFEVLLANEKDSESVLFHCTAGKDRTGFGAILILTALGVPMKTIEKDYLFTNEVIKDFVSQLLAKEKAAGADDSLLATFRDLQTVQPAYFKYLLDVINRDYGSINAYLHQQIGLSNADLLDLRTIYLEK"]}}, {"location": "[168886:169360](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A551"], "locus_tag": ["MAAAAKME_01800"], "product": ["Putative universal stress protein"], "transl_table": ["11"], "translation": ["MTEEKIKILVPVDGSESAERAFDKAVKIAANNGYHADFLNVIDTRQFMGEMQDTLISGDTIYQMTQDSEEYLKSLKQWAHDNLAFDDIDYHIRYGSPKRIISYDFVKDHGNNLIVMGATGLNAVERMLMGSVTEYVNQHAMADVLIVRTDVNNMPAK"]}}, {"location": "[169778:170720](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3221"], "gene": ["phnD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QQ71"], "locus_tag": ["MAAAAKME_01810"], "product": ["Phosphate-import protein PhnD"], "transl_table": ["11"], "translation": ["MKKFKKALFGALTVAAAVLATACSSSKSSSSSKGYTPSKSHPLTIQFVPSQAAPTLEAKAKPLEKILSKKLGVPVKISMSTDYNTVVEAMKSKKVDVGFLPPDGYVMAHKEKAADVLLQALRYGIKQPGGKETNKLVKAYRSEILVKKGSKIKSWKDLKGKKIAVQNATSSAGYIFPIAELKEKGLDLTKKGNANLVTVTGHDQAVLDVLNGDVDAAFTFEDARNTVLADQPNIMKKVVPIYFTKSIPNDTISVRSDMSSSFRKKLSKAFESLRKDKKSLKIIESIYRHEGYTPSKDSDFNIVRKYDKMAATK"]}}, {"location": "[170837:171608](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1135"], "gene": ["metN_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q87RS1"], "locus_tag": ["MAAAAKME_01820"], "product": ["Methionine import ATP-binding protein MetN"], "transl_table": ["11"], "translation": ["MADQPMIEMKNVTKVYDNGTVGLKNINLKINKGEFVVIVGLSGAGKSTLLRAINRLHDISEGDILIAGESITKTKGKNLRLMRRKIGMIFQSFNLVKRSSVLRNVSAGRLAYYPTWKTTFNLFTDEDKQRAYEALQSVGMAEKVYSRADELSGGQQQRVAIARVLTQRPEIILADEPTASLDPKTSRQVMEDLKMLNEKFDMTVVANLHSIELAKEFGHRVIGVRAGEIVYDGKMEDTPQSVFDNIYNGGKGKEED"]}}, {"location": "[171610:172411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSATDRDMLKLPKKKFKMWNWVWVILMVLGLVLSVNNTQTSLPEFFANFDQFAEIFVQMAQPDWSYAGTAIPYLVETIKMAIISTVIGSLLAFVYSLLIARNIVHNRAITGVLRFIMNIIRTIPDLLLASIFVAVVGIGPVAGILALTVFTFGVVVKLLYEAIETIDPGPSEAIKAVGGNGMNNIMFAVMPQILPYFISYALYAFEINVRASTILGYIGAGGIGLQLKNTLDMFNYNQTGMIILVVFLVVLVIDFVSTKAREALMR"]}}, {"location": "[172410:173223](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3639"], "gene": ["phnE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QQ68"], "locus_tag": ["MAAAAKME_01840"], "product": ["Phosphate-import permease protein PhnE"], "transl_table": ["11"], "translation": ["MDTTMKKLPPKPVTTKSRAIKWGGWIISIAIIIWSCTGINFGGIKPTAVQITGAIFNGLFHPDWSYVYNGSGEDLVSQLWQTLCIAFLGTFISAIISVPFAFWAANTRHKKFWVSESGKIVLTFIRSFPEIVLALMFIKAVGPGAPAGALALGLHSVGMLAMLFSEAIESLDDGPAEAITAAGGSKFNVAVFATMPDLMPAIVSNTLYRFDVSVRSASVLGLVGAGGIGYPLIIALNYRQWSRVGIILLGIIVMVVVIDWISGAIRKKLV"]}}, {"location": "[173476:175102](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_01850"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MRSKKLLASSTVILASAATLAACGSNSSQSSAKKQPLTWMNTAEIATLDASKATDQASVEQINNVEEGLYLLGKNAKVQNALATSTKNSADSKTWTFTLRKNAKWSNGDPVTAQDFVYSWRRTIDPKTASEYAYLFSGIKNADAIVAGKKKPATLGIKADGKYKLTVTLEKRIPYFKLLMAFPLFFPQNQKFIEKMGSKYATASKYMIYNGPYKQVGWTGSNLSWKLVKNGKYWDKKNVKLDTVKFSVQKTPATDYNLYQSGKLDAAFLDAQATKSLKGKTGYTQRKMSTTQYLAYNLKKHPEFKNKNLRLAISMAINRKELASTLGGAATPATTFDPEGMTTVNGKDYTDTVKNAATEKAATYNVKEAKKLYKQALKETGKKKISFTLLGDDDDTAKKASEFVQSQLEDNLGIDVQVQSIPKKTRMNKMMSGNFDVVSTRWNADFADPISFLDLQTTGASYNYGKWSNKTYDKYVAASKTTGSTSTRFKELAKAEQILLEEQGVTPLYHPVEAWMVKPSVKGVIYNGAGANYSFKYAYLK"]}}, {"location": "[175349:175835](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKLTTMELADELAEAQDKILNGEAKLDTGRVYQAIDDLGVLNDPISNYFDRTEDEYYETESDHYLALTNLTGKLGDLHDRVLINHVDGFVDKDEINLTYNHENAYVEDNYVPRTDLHVLVYGLKVIGAVEAIAAADLRNVLSKDAVLSLGLAAHALAENL"]}}, {"location": "[175892:177293](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.53"], "codon_start": ["1"], "gene": ["cpdA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00905"], "locus_tag": ["MAAAAKME_01870"], "product": ["3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA"], "transl_table": ["11"], "translation": ["MDLFKYTKGIIDKAVGAFKLHAVQKNAGELLDPMQKYLTVGEYHVDARDATPDGRPFTLTVYQDDQGILHQALSPESTDSLAAEYDRKFVPELNRFKAFRNRETGRRYVVEDYLARFVSDVKKEIREGDDSVNIGVITDTHFKNVDSLDFYGWNGLMHVKEFSYLDQLDILDLKCHLGDWIDGSDAGLISESELMKLRDSFKSSKVPYLMIKGNHDENDKFDEHHDLKASFPEREFEKIMWPEMYRQRELGYVSRQHGVAWFDQGHVRVISLNTSDIPYILDEKGQKKYDVKLTLGVREDQVQELIEILQQSSGKQVILLSHANPINRKGGNALKYNGRSLHELLVAFNQKEKGRMHSSKDVPAEFRLSNDFDFTKVKDARIIAYFCGHRHVEDQYRINGIQYVLFNCSALMGPNHQLTTKYNKNLNRKMDHQNEFAGYVVNVDLFRRRIKVFGYGAATRRRIFFI"]}}, {"location": "[177389:179339](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG0367"], "gene": ["asnB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54420"], "locus_tag": ["MAAAAKME_01880"], "product": ["Asparagine synthetase [glutamine-hydrolyzing] 1"], "transl_table": ["11"], "translation": ["MCGIVAFYDPEINDKQAAIGKMMATIQHRGPNSDGMYTNDKVALGFRRLSIIDLRGGSQPIYNEDRSRAIIFNGEIYNFKPLREELIKAGHTFSTKADTEVILHGYEEWGMDGILKRVRGMFAFIIWDDNTQTMYGARDFFGIKPMYYQDVDGHLLVGSELKSFLAFPHFKKELNTEAVKPYLMNQYNDLKETFFKGVYRFQPGHWFEYKDGKMKTHQYWDAEYKDNNLSFEETVKKINEDLKETVDLYRNADVKVGAFLSEGVDSSFLTALLDPDEVFSIGFDDNTYDEASKAKALADINGWHFYADKVYSEEAMRDFPEMQYHMDEPDANPSIIPLWYLCKLARKHVTVALSGEGADELFAGYVNYGMHTHNNVIKVFTDKLKKLPKGKRVKLAHKIKKMPNFPGKVHLYTNLAEPSEFYVGQSVIYDMDYPTIFTSKDANAVLQPSYRNKLTVNGNYQEDFKKVKDLDNVKQMQYIDLHHFMLNDIEQKADKISMAHSLELRVPYLDVKIAKLANSIPSKYLVNKYDTKYALRKASEQVLPDEWAKRPKLGFPTPIKQWLQEERFYKQVRDLFSEDFVNDIFEQKKILDLLDENYNGDGSHRRQIWVIYTFLVWYKLFFVDYEETVRKYQRVQPEVASLIAQGKLL"]}}, {"location": "[179372:180632](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.12"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:H8L902"], "locus_tag": ["MAAAAKME_01890"], "product": ["D-aspartate ligase"], "transl_table": ["11"], "translation": ["MAKFTPILLGSDINVYGMARSFNEAYGIKVQAWAATQLAATRYSKIVDVEVHPGFSEDPGFMEVMQKKIKEYQNHEEPVILIACGDGYAELLAKHKQELEGTFVVPYIDYQLLEKLISKEGFYEVCEEYGLPYPKTKIIKLADYHDGSYADVPFAFPVALKPEDPVSWLDVQFEGRKKAFVIKDLAEFKDIVGKIYTNGYKEDLILQDFIPGDDSNMRVLNAYVDKNHQVKMMCLGHPLLEDPTPQSIGNYMAILPAYDEKLYETVQTFLEKINYVGMANFDIKYDARDGQYKFFEINLRQGRSSFYVTLNGYNLAKWYVDDYAEDSLAGQETVYANKLESSHMLWLGVPEKIFKEYAVDNEAKQAALKLIDAGQVGTTVFYDQDSSFKRWLLMKYMFHNYYKRFKTYFQVNKGQYFDK"]}}, {"location": "[180997:183208](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.98.6"], "codon_start": ["1"], "db_xref": ["COG:COG1328"], "gene": ["nrdD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P28903"], "locus_tag": ["MAAAAKME_01900"], "product": ["Anaerobic ribonucleoside-triphosphate reductase"], "transl_table": ["11"], "translation": ["MLKPAAETVSLNFANAPKKFIKRDGAPFKFEQFKLEMVLDELGLEDSEIKAAVLSKVYAKLATYTVDAVQVHAAFRASLNELGYLNEAKEYEAKRREDEADWRAETDTKQRLAKLVDKDPSIVHENANKDSDVFATQRDLTAGTVGKTVGLTLMPQHIAKAHLRGDIHWHDLDYTPLSPMSNCCLIDFDYMLNHGFKIGNAFVEVPNSIRVATSQVAQIITSVASSQYGGCSFDRCDEVLAPFAEKDYKKHLEEGREFIDDEDKVKAFAKKRTQKDIYDAMQSLEYEINTMFSSQGQTPFTTLGFGLGTNWIEREIQKDILQVRIEGLGREHRTAIFPKLVFSLKKGFNLHPGDPNYDIKKLALECATKRMYPDVLSYDKIIDITGSFKAPMGCRSFLQGWKDEQGREVNSGRMNLGVVTLNLPRIAMESQGDMDRFWEIFNDRLELGRQACEYKAKRVTEAKPVNAPTLYEYGAFGQGVGDDGDVNDFFKNGRATVSLGYIGLYEVGTVFYGPDWEKDPEAKAFTLEVVKKMHDACAKWEKEDPNHYHYSVYSTPSESLTDRFCRLDTEKFGKVKDITDKEYYTNSFHYDVRKHPTPFEKLDFEKDYPYYAAGGFIHYCEYPNLKQNPAALEAVWDWAYDRVGYLGTNTPIDKCYECGFAGEFKSTAKGFECPQCGNHNPETCDCVKRTCGYLGNPLKRPMVHGRHEEIVHRAKHMSLGMVSEEASLEKQKNSQY"]}}, {"location": "[183279:184002](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01910"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPEKDKNQQEGPDVRDNLIRISVGGETVFVDANQYKAKNAGQTAKPRKMKRQPKNPKPGEWISEDYSKHKIADYKPFNFVDGEGVRCSLYVSGCLFDCPGCYNLAAQNFNYGRPYTQELEDQIIADIGQSYVQGLTLLGGEPFLNTWVCNRIIDRVRAEYGHSKDIWSWSGYTWEELLRETPDKVEMLKKLDILVDGRFMDNLKDLTLQFRGSSNQRIIDVQKSLKTPDLHPVIWDKLQR"]}}, {"location": "[184099:184267](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sufT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H2XI17"], "locus_tag": ["MAAAAKME_01920"], "product": ["Fe-S protein maturation auxiliary factor SufT"], "transl_table": ["11"], "translation": ["MWSTLGLIYGVYIDDEGNCLVTMTLTTAGCPLNDYLNREIRQAVSQLAAIRGRTV"]}}, {"location": "[184370:184814](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEVEQAEEKARPALTDSFIEFAEGSLSYEQLSAVLDLLPLDLIFVDKDDVIRYFGGSCGFYPHSKNDLSMNLFSIHMPKSVSKVKAIVDDLRSGRKDKHAFWFEVRGRFVYIQYLAVRNKAGEYLGVLEVLQDITDLRALQGKKKEL"]}}, {"location": "[184913:186134](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mdtH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01529"], "locus_tag": ["MAAAAKME_01940"], "product": ["Multidrug resistance protein MdtH"], "transl_table": ["11"], "translation": ["MKTKHGQSQLPEIALPWLVVAQLATWIGASFIWPLTSVYLNKRLGISLSVIGIVLFCNCAANMLGSTISGRLFDRLNPYPLITGGMLLNALVLLAMAFFHGWPVYWVWLVCMGFLGGWNGALVNSIATSLRKYPGRYVFNILYFSQNLGVVIGTLIVGYLYDYSIELLFIIASCLFLIGTLVAFCKFKPIVAYHARRQEQKKTGQTPLKAEKMPKANFWMTMGFFITLGVTWLMYMNWESNLSVYMVSLGIPFHLYSTLWTINAGIIVVVQLILARFPRIFKSIYLQIYFGIFMFAVSWLTLIFAKTYPGFVLSMSILTLGESTAFSAIPAYVNDMSPYSSKGKYQGMTLVASGVGRAFGPLFGGTLIDLFGYEIMFVVASCGILLCLLALLPLRAKLKDQVQFFK"]}}, {"location": "[186221:186560](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLKVYGTKICPDCIACEASFKKYGIGYEFVNIFATMPDFKEFLRLRDASPAFAHAKEQGSAGIPACVKEDGEIFTDWEGFLKDQGLEPIWPEAADQAKAEIAAQCDLRQHNC"]}}, {"location": "[186584:188537](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG3590"], "gene": ["pepO_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q07744"], "locus_tag": ["MAAAAKME_01960"], "product": ["Neutral endopeptidase"], "transl_table": ["11"], "translation": ["MNNKFAVRGGSGDTTVVDKTARPQDNLYLAVNSDYLDQLEIPADRSRMGSFDQIAENVEKTLMADFAAFASGEKEVPALPNLAKAVELYKLAKDFDKRNADGAEPIQADLKKLEGLNSWNDLQGAAAALAKEGFDLPFSFSVDADMKNTKVNTVYFGGPHIFLPDTTTYESPDSEKLLGVLKEQTLKLFQMAGVSEEKAAEYVDGALAYDQRLAKVVKSSEEWADYPAMYNPISLADFKSKFTSFDMGQFLAGFLGEEPEVLINTEPRYLDQAEGLLNEASFSEIKGWMLVKFINDVASSLSQEFREAAFPFSQALTGQPQLASGIKQAYRIANSTFSEVVGIYYGQTYFGAAAKEDVLGMIKRMLKVYEDRLAKNDWLSQATKEKAITKLQALILKVGYPDKIEDIYNRLQVTPAEEGGSLYSNLQAASQESIKYSLEKLHQPVDRTVWMMPGNLVNACYDPQRNDITFPAAILQAPFYSADQSRAANYGGIGAVIAHEVSHAFDNNGAQFDEFGNMKNWWTEADYKEFADRTKAEIALFDGLKFGPTTLNGKQIVSENIADQGGLAAAMTACKEEGQGLEDFYANWARVWAQKSLEAAIKMIVSVDVHAPGPLRANVQAQCQDEFYETFDVKPGDGMYLAPEDRVKIW"]}}, {"location": "[188853:190884](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["kup"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01522"], "locus_tag": ["MAAAAKME_01970"], "product": ["Low affinity potassium transport system protein kup"], "transl_table": ["11"], "translation": ["MEVENKLNRMTAAGLLIAIGIVYGDIGTSPLYVMKSVIAGNGGINTVGRDLIIGTISLILWTVTLLTTVQTVIIALRATNHGEGGIFALYALIRKKAAWLVWPALIGGAAILADGTLTPAVTVTTAIEGLKGLEFGKGNVPVSNQTTVLVITIVILLVLFSIQRMGTRIIGKAFGPIMLVWFAFLGVMGLINIGGNWWILQALNPYYAIKLLFSPYNKAGFAILGSIFLATTGAEALYSDVGHVGKGNIIGSWPFVFVCLSLNYFGQGVWILNNTNMHSATEINPFYAMIPENIRLASIVLATLAAIIASQALITGSFTLVAESINLKFLPRMNILYPSDERGQIYIPAVNKMLGITTIALVLFFRTSAHMEAAYGLSITISMLTTTILLYEWLVLKQGHNLANLLFVIFFSTINILFMGSSLSKFTHGGYVSLLITLLIASVMVVWYFGNKVRDQNGAGNAYVRLDEYTDMLTNLSHDDNYPTYSDNLVYMANVKYNKFIKREILYSILDKRPKRARAYWFVTVNVTNEPFTAEYAVNTFGTKNVINIQLYLGFKKQTSVNVYLRQIVHDLIKDNTIEAQPQEYTTTPGRDVGDFKFVIVNDVISPSTTLSSYKKWLVKARVQLQNLSLNPAQWFGLEFADMVIERVPLILGKQEHERIKRVAPVDYSKTSLNKK"]}}, {"location": "[191051:191468](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEEEEKKIRSNEDMFKIVMPEPERVTMPAREVADQPAYLVNFANFYVSSFERDDLEIISEFDEDHNMVNINHYLLLNQPFSRKNLVKHVLIDHAHNFQAILDKMTAETGVDPEAMTTYEDWSNWYEGVRAKIKSSLS"]}}, {"location": "[191584:192532](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mapZ"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01941"], "locus_tag": ["MAAAAKME_01990"], "product": ["Mid-cell-anchored protein Z"], "transl_table": ["11"], "translation": ["MKKSTIWSIVVVAVLALGGAGAYFYSSQQKQSQEQTVSSSYSSHMQAGKEAVKAKKYSQAADEFDQAYQAKATAQAKNYQAQAENLADSVKLAKTTVKYASALNLAQKAQEQNGGYSVMTSQAKKLVKQLKAVKDNYDSEIKPLLNKAAKAMEDGYYDSAASTYSSILDLPYINGAYYAKVRSNVKDLLKEAKSKQEDSSSSSESSSSSSSDSSSKSSSKESSSSSSSDASSSASSSSNQAEGSGTSYNDKVGGSTVTSRDVQQIRTQLDNLGESTAGWSPQDLINLFNYAYQQGHTTIDSITKDDVEGYLKSGK"]}}, {"location": "[192745:192955](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNFTLADQSIQYTFKAEKYDKGQMQRSLQNVKLDASPESLVKVGQAISKLQGDELAALTLVQKHNLTLA"]}}, {"location": "[193014:193251](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTTTELQLTFKSSAGKKKSLNLPYAVKGLSADVVREAAAAIAGEGVFVKEGEVLYAEPLAANYIERTVTGVFDDSNH"]}}, {"location": "[193518:194724](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRRFLTGLATAAMLTSVAVPVTNNMFLSNQAVEASATSDAFLSKVSLQAQKTSKKYGVYASLMLAQAALESGWGTSTLSTQANNFFGMKATGWTGATYSVKTAEQTSSGKTYYITAAFRKYSSYQASFDDYGLKMRTTLGNYGSLCYSKTWLENASSASAAAKAIKAAGYATDTNYATKLISHIGTYNLTKYDPVYSGTNYTAKVAKSGATYLYPTDHSVSPKKSYVTAGQTVTVTKTYTYYNGKKRMYLKGLGWINGESLNTGSSQAPSAADNAASVSGQMKVLMHSAAIYTSTGAKSTAKSVKAGKSVTTYGSVTINGAKYYRVNSASADQFIKASNFDGTSRKLKRNAYIYNNAGKRVGKTKWLKGSTHTVYGGSVKIKGKQYCIVGLNQYVKKANF"]}}, {"location": "[194744:196355](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRFNKILTAAAVASLGLTFVFSQGKAAEASINSEAKTKTYSGTKSLETLLKAVGLTYNQFNSVANGNKYGSRFGYRNGVGKPEGVVVHETATPGATAWDEGRYFNNNWMAAYTYVHAVVDNNQTIQLMSPDYGVWGAGPIANVRYIQVELCEVSTRSQFVQSVANDAYYIASLLHSYNLTPSRASQDGSGTIWSHNEVSHYLGGTDHGDPDGYFAKWGYSMSDFYSLISYFYNKQGASTGTNTGSTNTGSGSNTGNTNTGSNTSSSTASSGQAPATQPVTTKKLRLMWNAYSYDASGKKLAVKALKAGQYLKVYGSAVTIGSSKYYKYADGKYVKAGNIDGTSRTLTGNAWTYTISGSREWSTTKLLKGSKVTTYGSQVNIKGKAYYMTGFTSNNVAKYVKASNFQVKTVETTTTKRLMRNSYSYSAAGKKLPDSMLKAGQYLKVYGSAVTIRKAKYYKYANGKYVNAGNIDGTSRPLKHNAYVYTVKGTRNWSEAKRLKGSTVTTYGSRVKLAGKYYYMVGFSGQTALYIKAGNF"]}}, {"location": "[196465:198304](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0475"], "gene": ["kefC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P03819"], "locus_tag": ["MAAAAKME_02040"], "product": ["Glutathione-regulated potassium-efflux system protein KefC"], "transl_table": ["11"], "translation": ["MEGLSLFLTVFLALVIPIVMARLRVTTVPTAVAEIIVGILMGKSCLNLITQTSQLTFLSDLGVIVLMFLSGMEIDFDLLSPKKHTRARKSESGKQVKPMVVAAFAFGGVAVASVLLALGMKALGLFSDVALASIIFMTVALGVVIATLKEKEILGRPIGQTILLTAVMGEVIPLLLLTIYSTVNGGDARKLWLIILLFVAAIILLRRFKRPYLWFAKVTKATTQLDVRLAFFLTFALVTVAEQVGAENILGAFLAGMVMKLLEPTQATKDKLTSIGYGFFIPIFFIRTGVNLNLKLLFANPQALMLLPVLVICFFLAKLPVTLTYMRAFNKRNAFAGGFLTATTITIVLPTLQVARKLNAITATQSSAFILAAVIVCIACPIVFNSTFALTPEDKIKEKVVIFGLNAVTMTVYQDLHDSWYSVQVLTCRKEKYDTYKSKVKNLKLLPDRKLDTLESAGAFDTDIFVATFIDDQANLEVGRAAKQAGVKRVIVSQGKIVADTVDQLREEGIELFAFNNLHGAMLRALIESPAVYRIITDTNNALYDVVVRNSAYTGRQLMDWDFVDQITVSRIRRGDKWISPHGSTVIEPGDELIYSGPWREADRIHQLLSRE"]}}, {"location": "[198374:199004](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.371"], "codon_start": ["1"], "db_xref": ["COG:COG0673"], "gene": ["iolU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05265"], "locus_tag": ["MAAAAKME_02050"], "product": ["scyllo-inositol 2-dehydrogenase (NADP(+)) IolU"], "transl_table": ["11"], "translation": ["MLKDDQVDTVYVATPSSMHYQMCLDSLAAGKNVICEKPFVFTTEEALELKQLADQKGCLITEAITNRYLPAFKSLASDLQLLGPVHVVSLNYTQYSSRYDRFLAGDISPAFNPRLGGGALLDLNVYNIHLAVSLFGAPLDVHYFPNLQKGVDTSGVLVLAYDDKQASLTAAIGLPGLCPQPACHRRPGSSQGLHALRKKQKKQNRKIKN"]}}, {"location": "[199220:199970](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSKKKKIHLLTLLALASLFLTACAKPSPQSLVKKAQQSKIANFQLKTDEHYYTGNKPVRFYGQINYQRSPFVMQADLTQSGDQNVKMWVGQRYAYVKYYKDQQEAWYKAKLNQFTTISHFQQLVKDMDTLTLSQKSAKLFSVSRTKNGWRLNYTGKSQRLWQEITETNGLASLSSDSQIAKAKLQQIKMTIDFSQKKQLTGLAIYAKYKVKGQTSSTKLSMLKVNQQKKLAIPKTVSKNSVDVSRLNK"]}}, {"location": "[200133:200823](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "gene": ["gpmA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XB88"], "locus_tag": ["MAAAAKME_02070"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MSKLVLIRHGQSEWNLSNQFTGWVDVNLSDKGVEEAKKAGRLIKEAGLEFDQAYTSVLTRAIKTLHFALEESGQLWVPETKSWRLNERHYGALQGLNKAETAEKYGDEQVHIWRRSYDVLPPVLADDSEFSQANDRRYANLDPHIVPKAENLKVTLDRVMPFWEDHIAPDLLAGKNVIIAAHGNSLRALTKYIENISDEDIMDVEMKTGEPVVYTFDDKLNVVSKEKLD"]}}, {"location": "[201074:202364](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_02080"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MKKEDKLGIPETRQHARKRKQKQIRNWIIGILAVVCAIAAGVGLYAAHLYKTAEQAANKAYDSENAVKTTYGEFNGKKPFAVMLLGTDTGALDRTEKRGNTDTIIVVVVNPKKKNYTMISIPRDTMADMVGDDSNDVQKINAAYSIGGAKMAMKTVSNLLNIPVKYYALVNMGGLMKLVDYVGGIYVTPPLTFTYSGFPFKKRVRQHLNGQAALAYSRMRYDDPQGDYGRQKRQREVITKLVQKLATADSLTNFSKIANNLSSNVKTNLSFQALKSILANYSDCTSSSDSDYLHGYSTYVNDAAYQIAPTSELQRISNKIRKLLGLKTATVSNRETELNTLNETAGFKFGSGETQNYTIYDPGTTADSVKSGKKSSKSSSKSSSQASSSSSSSTDYSGNTAYSGSTNYDTTYSYSYNYNYNINPFSGGY"]}}, {"location": "[202366:202984](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.275"], "codon_start": ["1"], "gene": ["plsY_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01043"], "locus_tag": ["MAAAAKME_02090"], "product": ["Glycerol-3-phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MLSKFLAVIIGYLFGNFISAMFVGKYYLHKDPTKYGSCNPGTANMGAVFGKKAGILTCIGDLLKTLLAICLVYAIYHQHLLTAYTVLGVVLGHCFPVFNHFKGGKAVAVTAMVTVLYDWRAGLITLLIALVLTAIMQNLTIPPLVFMLSFSIYQLTKSLEPGLAFLIMTAVMAFKFRYDIRDFFTGHGKRVDILYTIKKKLGILK"]}}, {"location": "[203023:206056](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLQKKRIIPILMSEQTQSRKIHNLLKYGFLLLAALVLLLQMFNFKSSMLKSSITYLRHLPLIVESATYWFIPMVFGAVYSKRKLRFNEGFRAWAIMEVTLLAYYLAFFISKPWHLNAWRFWGILFPILTSISVLMTGLVFGLLVQPVIYDWQEKFSKKQSLIILIALTLLGFTLSAGTFEMNYSIYGLYLALPFAWGMFLGKADFSVKQTVIFIVAGILSLGLVIVGVAGFNAVYWSQIMSWRANPSSWNYQFLLNVTSPFIFIIALAAFTFARPAIKALEAKDLDFLVLLIIFMQAPDANSFMSSFKYGTGSRQLNRMITILIMLVIAIAWHWLIERYLWRFKPVKRINRFLYESKSFGAAAEEAFNRLWGWMKYHRINLLTWTFFFILSFASFLVESDNIRIQITTASNVNAVVWLVGTKLGALILTTIFIDAFFTILYFVTTRYWVSLITTSTVVIAWAVANKIKLDLRGEPIYPSELSEVTNADSLLSMIGGQKTLSMILLALAAVIALMVFCEVKFKVKKRGNWKQRGMWALASLALFMTPKWFNHQGSAIYRLNRAFDNKQSFRNPERDIQVNGPILNFLNYIDLQIMDKPSNYSKSQIQKLYEKYQKVADQINKTRTNDLSKQTVIFNLSESFIDPYTFPTIKFAKGTKDPISYIHSLKKTTTYGSMLSAGYGGGTANMEWESLTGFNMGSFSTTLTPYVQVVPQYQYYPTIGANSNYSSAVHPFIGTYYSRIEDYKRFKFNKFVYLGSKYKIVEQKKLGTSSYNSDFTTYANGLRQINSRKGGQFINLISIQNHMPYNNWYPKNYYAGKISGDLFDDGSIRTQVATYIMGTHYTDQAVKKFIKQIDKIKKPITLVFYGDHYPSIVSQSYTSKYPVQMHSTRYFIYSNKYARQHGAKAKLTSKTNYVNTSDFIAMMLEQTNSKVTAYQALLTEVHKKLPALTISYSDDTGFTLVDQKGKEVDPKTLTNSQQALLKDYEMIQYDMTAGSAYALKIKGFYTMKK"]}}, {"location": "[206134:206443](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "gene": ["wecH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01949"], "locus_tag": ["MAAAAKME_02110"], "product": ["O-acetyltransferase WecH"], "transl_table": ["11"], "translation": ["MAHKQRVAYLVAYLDYLRLVAILGVITIHVATSLNFYRQDYASLNWQILNFWDGLSRFCVPFFIMISGAIFLNPDFDLSWEKLFNLNFPLTKVGLYLENSIV"]}}, {"location": "[206528:206837](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKMARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKPGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[207194:207770](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_02130"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFDTWFSNPHQIVQIRQRGLNVIAMVKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGGPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKLGTEYHGLSYDALTAHTAFVFLRYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[208269:209118](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTVLYRRWLSWLLNGIWRSSQAFQASAKTLL"]}}, {"location": "[209370:209568](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_02150"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMVDELADIAFNYSLQTLVEAMFESVKEIFQPTEEQMGRFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[209607:209757](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEITLNQLYDIMYYHLDPNGWWPGRSDWEVIWSTVLIQNLNFPHQKEL"]}}, {"location": "[210197:210548](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.2.25"], "codon_start": ["1"], "db_xref": ["COG:COG1539"], "gene": ["folB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P56740"], "locus_tag": ["MAAAAKME_02170"], "product": ["Dihydroneopterin aldolase"], "transl_table": ["11"], "translation": ["MYTIRVQNMQFHGHIGVLPEEKKVGQTLQVDLEVVINAVPVADQLASTVSYGDFYPIVEKIIDENHVNLVETLAQKILTAIKQLDSRIQTVTVRIRKLNLPVDGVFNNVEIEMKQS"]}}, {"location": "[210544:211618](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.16"], "codon_start": ["1"], "gene": ["folE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00223"], "locus_tag": ["MAAAAKME_02180"], "product": ["GTP cyclohydrolase 1"], "transl_table": ["11"], "translation": ["MMENVILSLGSNIGNREAYINKAVALLGNDPAILIDKASSFYETSPVGNVNQRAFINIALKIATTDSPEDLLTKIHQIELHLHRTRDVHWGPRTLDVDIIFWGDQKIKTESLIIPHPEAFNRLFVLVPTLGIVTPEFPFYNQIKAQIQKLQKADQTIQLVQKQTQSKQVVESAIRQILNAIGDDPDRPGLVETPDRVARMYNEIFSSEGLDNFEDYKLFNTKETDNSKMVMVKNITFYSMCEHHMMPFWGKAHIAYVPDHGKIIGLSKIPRLVDFVSHKLGLQEKLTDDIVAQMNRILAPKGVAVIVDSRHMCVEMRGVKKADSLTRTIRFSGVFETDQALRMAFLNSIGDVNGKTI"]}}, {"location": "[211601:212939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.17"], "codon_start": ["1"], "gene": ["fpgS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15925"], "locus_tag": ["MAAAAKME_02190"], "product": ["Folylpolyglutamate synthase"], "transl_table": ["11"], "translation": ["MGKQSELNAAEFPTFLYDQGDRIGLLKRILKALGSPDQKFKIIHICGTNGKGSTAMMITAILKQMGHRVGLFTSPYIGEIYNGIQIDFKNIPSRIFEEKISVIKKLLRTAAFANVKVSEFEAQFLISMLYFAEQRVDYVVLECGLGGELDATNAVATTMYSIFTKISLDHVGILGNNITEIATTKSKIIRHHNVTITAQNQSLEALKVLENEAVSKQAVFLNADRVTITTSQQSKRSKQVHYRALLEHSEQSGTFRFGLAGTYQLENLATVLTWFFDFVKRTSFQQRLDDILAHSLAELVVPGRFETVQQKPKIVLDGGHNPDGISAFVETVQKLYPNAPKLIVNGFLKDKSYEIAVQKLLTLKNSSFIITQPENQQRELSPVKLADVYQKYTNRQFPEFTSPVKAIKQAIMTASPTTVILVVGSFYLLNPIRTYLLSRSEHNGN"]}}, {"location": "[212928:214020](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEIKKINNRQQTFSGNVTISFNANTEELPKLINLLADQTANLSISSSLVIATFTQTELAAVIKSWPEVFGAENGTLQQIQAASQIHFKGRGFDFDITTKPIIYSILNLTPDSFYDGGRNASVDGVLKRIEADLAAGTAIFEVGGKSSKPHFDDISAEEEWGRIKPFLDAIHKRFPNIVLAIDSNTNAVIEEALKNGIQIINDIDGFNSQAKLNLVAKYKPAVVTMFNGRNFNEQTETLSKTMMDFFTHTISDLTGVGLEKENIVIDPGVGFSDHNTLAFDLIKMKLTKLMAEFQTPIMIAISRKSFAKRLFNLESADDRLIPTLLFEAFMTVLGGRVIRVHDAKETRQLIDAFELLKDQLLLK"]}}, {"location": "[214031:214568](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPQDPYLSVLIKAIDQLAELPVSWLPDKKLVQIKGILTDQQPAELRNRKSKVHLSASAMVFSKNAGFFIRHPYLRTTLLPAGHVEPGELPINCAVREFHEETGYQVKPESGQLIDVNLIAIPANPVKGESAHQHVDFRFHFLIEPGTRSNPELPVSLLTQAQAPTEFAKYFALIKSGD"]}}, {"location": "[215391:216051](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEQ6"], "locus_tag": ["MAAAAKME_02220"], "product": ["Glutamine transport system permease protein GlnP"], "transl_table": ["11"], "translation": ["MNWSIIQQALPLFAHAFGITIWLSLIGIIGSIIVGIIASLTQYFKIPVISQIMTAYVELARNTPLLIQLFFLYYAFPVIGIKMSAEVCGIIGLIFLGGAYMAEGFTGGFNGISTSQINSGKALGMSRFQLARYVVFPQGFALSLPALTANIIFLIKETSIFSVIAIPELTNTALDLIGMYYRSNEYLLMLVIAYAIILIPVILLLTWLERRVRYGAFGN"]}}, {"location": "[216031:216706](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEQ6"], "locus_tag": ["MAAAAKME_02230"], "product": ["Glutamine transport system permease protein GlnP"], "transl_table": ["11"], "translation": ["MVHSGINVLFEGSNFARLMAGLWTSIWIAAISLIIGLAIGTIFGILRTLTNKIIRFVLRIYLEFFRIVPTIVLLYLVYYILPRTFHVNWPATWMAVLAFSLWVAAEFSDIVRGAIESVPKSQRESGLALGLSKIQLFRYVLLPQAVKLELPATINLATRVIKTTSLLLVISIMEVINVGQQIIEANNQQYPTGVFWVYGLIFILYFVLDYPLSAWAKKLTKESK"]}}, {"location": "[216715:217456](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["glnQ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27675"], "locus_tag": ["MAAAAKME_02240"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MTEEILKVEHLDKFYDDRQVLHDINFSLKKGEVLTLLGPSGSGKSTLLRTLNGLEDYKNGAIYFHGKKINPSPKEWQMLRQKIGMVFQSYDLFPNLTVIENVLLAPVKVQKRNENEVKEEAIKLLKQVGLDQYLNAYPRELSGGQKQRVAIVRALAMRPEVMLLDEITASLDPEMVRGIEEIVERLSKRDHMTMIIVTHQMNFASRIADEVLFLENGHILEDTPGKDFFDHPQTQRAKEFLDSMDY"]}}, {"location": "[217467:218328](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_02250"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MKKKNIFNIIMGIVALIVVVSAAYFGFTQPNLNSGTAGSRWSNENGVSEIKRRGYIRVAVFGDLPPYGWVNEQGKRVGYDVYLARRIAKDLNVKIRFIQVNANNRVDTLNSNKADIVLANFTVTPERKDVVDFAKPYMKVSVGVISPKNAPINSAQKLKGKKLIVTKGTTAENYFAKQSGVNLLKFDSKTQQFNALKNGRGAALADDNSYLYAWVKKNPKYVVGIKSIGPRQYVAPAVKKGNRSLLKWTNHEITKLTKEGFFVQDYQKELAPYFGKDIKPTDIVLR"]}}, {"location": "[218739:218847](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGYYFSQAHMSKRNLYFVQALGLLGAGATIGLSG"]}}, {"location": "[219424:220690](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.1"], "codon_start": ["1"], "gene": ["tyrS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A537"], "locus_tag": ["MAAAAKME_02270"], "product": ["Tyrosine--tRNA ligase"], "transl_table": ["11"], "translation": ["MANFDILEDLKWRGAINQETDEEGLRDYLAKHDDLALYCGTDPTGDSLHIGHLIPFMILKRFQLAGYKPVIVIGGGTGSIGDPSGRSTERVLQSEETIKHNEEALTAQMVKLFGTENFRIVNNRDWLGKMNLLEFLRDYGKLFQVNNMLNKEVVASRLKNGISFTEFSYQILQAIDFYILNRDHCVQMQIGGADQWGNITAGIDLIHRLEGADRPAFGLTIPLMLKADGTKFGKSAGGAVWLDPEKTSPYEFYQFWINQDDRDVIKYLKYFTFLKHEEIDALEEKVKTEPWKREAQKRLAEEVTKFVHGEEGLKEAQTVTEALFSGNVKDLTTKQVEIALAKAPSAESGAEKKNLVDFLVDTKIESSKRQAREDVNNGAIYVNGDRIQDTDFEVDPAAAFDGKFVIIRKGKKKYTLVHIKG"]}}, {"location": "[220784:220857](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_02280"], "note": ["tRNA-Thr(ggt)"], "product": ["tRNA-Thr"]}}, {"location": "[221099:221408](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKMARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKPGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[221786:221888](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLAKIRGGAGDITKPDLNARIQDNLYLAVNSD"]}}, {"location": "[222083:222449](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLNTNKLTEEQVNLFKNNLVYLATVDAEGNPQVGPKGSMTVLDPSHLQYLEKTKGEAYENIKRGSKVALVAADVPSHTAVRVLATAEVHEDDDYAKKVLAKTEFPNAFVVNLNIEEVFA"]}}, {"location": "[222745:223054](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADKHPNNNLKRSIGFGSAISIVIGTIIGSGIFFKQVSVVIYTLVTIGIFRFLPVGLIHRLGENTTAYLATKVFGTIGGKLLSAGIIISMMGTLNGKMLTFP"]}}, {"location": "[223500:224688](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.47"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01692"], "locus_tag": ["MAAAAKME_02330"], "product": ["N-acetyldiaminopimelate deacetylase"], "transl_table": ["11"], "translation": ["MNANFETKLMQLLDQNKDEIIKIRRYLHEHPELSFHEKKTSEFIENYYRDLDCQVRHCGDDYGIVVDINPDKPGKKLAWRADFDALPIQENNELPFKSQNPGVMHACGHDGHTAYLLVLGKCLIQLKDQINGSIRLIHQPAEEVTPGGALSMIKDGALDGVDDVIGIHVMSTMPTGTVQLHAGATQTGRANFDLTFTGKGGHASMPQLSNDAIVAGSYFVTQLQTVVSRRLNPFDVGSVTIGSFDGAGSYNAIQEQVKLKGDVRVMNEATRKLMKKNIKQIIKGIDVTFGVKSELNYDDNYPVLVNNQDLTKKVENWIKESKIPEVTAVKDSGVVNASEDFAYYAQKKPACFFYVGCQPEDGGIYPHHSPKFMMNEDCLIICARSAASVISHYFA"]}}, {"location": "[226070:226805](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0833"], "gene": ["rocC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39636"], "locus_tag": ["MAAAAKME_02340"], "product": ["Amino-acid permease RocC"], "transl_table": ["11"], "translation": ["MQKWFPQVSVWIWSLTCMILIFLSNFFSVKAFAESEFWFAAIKVFAIVAFIVLGGLAIAGFLPVEGYHAAPGLANFYRNGWFPNGFSGVFTTMLTVNFSGTELIGVTAGEAENPQKAIPSAIKTTLWRLLIFFIGSIAVMSALIPYKVAGVTQSPFVYVLDSIHVPFAANIMNFVVLTAIISAANSGLYASTRMLWSLSNEGTIPAIFKKTNKNGIPVLALIFSMLGGVFALVSKVRSQLTQFA"]}}, {"location": "[227157:228405](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQNTIINSATEKLSPFKTLTAEQENLVNDILSFTTKHIKQDYPAIFTVYGDAGTGKSVVLAHLFNEIQVAARTKEDSPLYQTTNYFVVNHPEILKVYKEIAGDLPHLYKKDFTRPTSLINQLDKKDETVDVVVIDEAHLLLSRSDPYNNFTYNNQLVELIKRAKVVILVFDQYQVLRTKTFWTNKQLEKITHQCPHEDYHLTHQFRVNASDDLLNWFNYFTDEEEILPFPEDARHNYDFRIFDDAEKMRQEIVKRNNEVGLSRILSTTGYPSTLDGGKHYITEGKFKMPWDQYNYTSKPWAEIPETINEVGSIYTCQGFDLNYTGIILSPPITQIPGTNKLKVDPSKFTDIEAFKKRKDLFNDQELNEAKKRLFMNMINVLLKRGVYGTYIYAHDPLLRQTLYQNYQKLISKHNR"]}}, {"location": "[228504:229155](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1418"], "gene": ["yedJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46144"], "locus_tag": ["MAAAAKME_02360"], "product": ["putative protein YedJ"], "transl_table": ["11"], "translation": ["MERKLIADFVKENLAEERTGHDYYHGKRVAVLAERMLLADHPEAGQKSRDIAYTAGFVHDTIDEKVCPNPSKVLAKLREVFTAAGLSASDQDNVFFAIEHMSFSKNIDRHYRLSLEGEYVQDADRLESLGAMGIARAFVYSGKHDDKIYDPEIPPMELVSHDQYRNHEETTINHFYEKLFKLEGLMNSRAAQKEARRRTEYMRDFVREFRHEWYLD"]}}, {"location": "[229305:229554](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVLEIWLKEVASVALDKSMVGISDATVQFKVFLVVDLEDEELEPQAASIKADNVTAAPAPKNLETFIVLSPYLSILMIDSHV"]}}, {"location": "[229665:230028](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["ygiS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46863"], "locus_tag": ["MAAAAKME_02380"], "product": ["putative deoxycholate-binding periplasmic protein YgiS"], "transl_table": ["11"], "translation": ["MERRYGVTAKDFVYSWRRTVNPKTASRYSYPFSGIKNADAIVAGKKSVNSLGIKAVGKYKLVITLERRIPYFDKLMGFAVFFPQSEKVVKKYGSKYGTASKYMIYNGPFVQKGWTVSNLS"]}}, {"location": "[230031:230991](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_02390"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MVKNKYYWDKKSVKLNTITWSVQKTPSTSYNLYQSGKLDYTSLDSSQTKQLKSTKGYTTLNKGATFYMQFNIAKNKYLANTNIRKAISLAVNRKGLVSSLGGNNVAANTLTTPGLTDVNGKDYTKLLSSSAESLYPSSTKKSEAVKYMNKGLKQLGVSKFSFKILADDTDSGKKTAELLQSNIEATFGSKVSVSVQNLPFKTRLSRSTAGNFDIVVSGWSADFADPISFLDLFTSTNSENNGKWKNATYDKLIADSKTTSSTSKRWSDLTKEENILLKDAGVAPLYYSTTASLIRPSVKGVIQNRGTWNFKNAYITSSK"]}}, {"location": "[231232:232861](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_02400"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MKLSKTFSVGATVLASAALLAACGSNSSKESSSSKKTLNWTVASEIPTMDMSKATDTTSFNQLSNTMEGLYRLGKNSKLEKALATSEKVSKDGKTYTYTLRKSKWSDGSELTAKDFVYSWRRTVDPKTASQYSYLFSGIKNADAIVAGKKKPETLGIKAVGKYKLVITLERRIAYFDKLMGFAVFLPQSEKAVTKYGSKYGTASKYMLYNGPFKQTGWTGSNLSWKMVKNPYYWDKKNVKLDTITWSVQKTPSTSYNLYQSNKLDYTGLDASQTKQLKNQKGYVTLNQGATFYLQFNIAKNKYLANTNIRKALSLAVDRKGLTSSLGGNSVPANTLTPTQLTDVNGEDYTKRISKSAESFYPASTNKKEAVKYLNRGLKELGVSKFSFKILSDDTDSGKKTTEFLQSTFESTFGNKVSVSVQNLPFKTRLSRSTSGNFDVVVSGWSADFADPISFLDLFTSTNPENNGKWKNTSYDKLIADSKTTASTSKRWDDLTKAEDILLNNVGVAPLYYSTSAALIRPTVKDVYQNRGTWNFKDTYIK"]}}, {"location": "[233185:233398](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_02410"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MDSAEIPTMDLSKATDAASFNQISNTMEGLYRLGKNSKLEKGLATSEKVSKDGKTYTYTLRKSKWSDGSD"]}}, {"location": "[233601:234072](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_02420"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MGFAVFFPQSEKAVTKYGSKYGTASKYMLYNGPFKHVGWTGSNLSWKMVKNPYYWDKKSVKLDTIKWTVQKTPSTAYNLYQSNKLDATALDSSQTKQLKNQKGYTELNQGATFYLQFNIAKNKYLANANVRKALSLAVNRKGLPPFWAATTSQPTL"]}}, {"location": "[234068:234680](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTPTQLTNVNGEDYTKLIPSSAESLYLANPNKKEAVKYMNKGLKELGVSKFSFKILSDDTDAGNKTTEALQSNFESTFGDKVSVSVQNLLFKTRLSRSTAGNFDIVVSGWSADFADPISFLDLLTKSNAYNYGKWESTAYNKNVSLSKTTGSTATCWKAMVAAERALLEDQGVITVTPLYYTNEAPPASRALNSGYFSLLVNL"]}}, {"location": "[234844:236437](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_02440"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MLAACSKTATKSAKPVSSSGYEKSINWMTTSELESLDPAKADDTASEEQIANTYEGLYRLGENSETVPGVAIKSTTSKDSLTWTFYLRKDAKWSNGDPVTAEDFVYAWRRQVDPKTASSQVNNYEGIKNAIKISEGKKKPSSLGVKAEGKYKLVVTFEKKIPYFKVVTAISLKPLDSKAVKKYGKRYGTKSAYAVYNGPFKSVGWTGSNLTWKLAKNPYYWDKKAVKLETINYSVQKTPSTDYNLYQTGKLDAAILDTQAAKSMKGKKGYRVLTLGNTTYLCYNYKKKKIFRNANLRRAISMAINRKQLLSTIGTYNTQAKTFSATNVVLDGKNFAQEAESANSSVNKYVEYDLKSARSYFKKALKELGVKKVSFTLMADDDDSYKKQTEFIQSALTEAFGGKMTVSVNNLPKTTRVSRQIANNFDVVLGGLTSDFPDPYHFLAYMQSGQTYNFGKWSNKEYDKAVKASLTMDKTKRRKALLKAEKILIDQEAISPLYHMGQAWMIRPNIKNLVFNGEYPDFKTTYAVKN"]}}, {"location": "[236860:237781](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0601"], "gene": ["oppB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24138"], "locus_tag": ["MAAAAKME_02450"], "product": ["Oligopeptide transport system permease protein OppB"], "transl_table": ["11"], "translation": ["MAKYLLKRIFYMILTLFLVATITFFLMKMMPGSPYANEAKMTATQKAIMNKQYGLDKPVIEQYITYLAGAAHGDFGISFQYSNQPVSSLIGARLGASAQLGLQALVVGIILGIIIGSIAAVNQGTWIDSTATIVSIIGKSVPNFVLAVLLQYYIGLKLGWFPIAGWGEAAQTIMPTIALSVGPLAETARFIRTEMVDTLSSDYVELGKAKGLSRIEVIRKHTLRNSMIPLVTLIGPYAVALMTGSMVIENIFNIPGIGEQFTKSILTNDYPTIMGVSMVYCFGLVVILLLTDIVYSLIDPRIRLTD"]}}, {"location": "[237802:238834](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1173"], "gene": ["oppC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24139"], "locus_tag": ["MAAAAKME_02460"], "product": ["Oligopeptide transport system permease protein OppC"], "transl_table": ["11"], "translation": ["MDQDASNVKITPESFEHVEKGDMQSAEHISGPSLSFMQNVWIRFKSNKAAMISAVIIIVMVVIAFGSSFWINNSSLVKSAPQYANLPAKWKGFDWLNGLNGKIKQNGVWTDAYSSVPAGKYFVAGTDYLGRSLAQRIIYGTKISLIVAVVAAFFDLAIGVTYGIISGWKGGMTDNIMQRIIEIISSVPTLVIVVLMLVVLKPGITSIILALAISSWTTMARQIRAETLSLKNEEYVLAARSLGESTFKIATKHLIPNLSSIIIIQTMYTIPGAIFFEAFLSFIGIGISAPETSLGVLLNEGQKNFQFLPYQMWYPAAALCVLMIAFNLLGDGLRDAFDPKGQR"]}}, {"location": "[238847:239891](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0444"], "gene": ["oppD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24136"], "locus_tag": ["MAAAAKME_02470"], "product": ["Oligopeptide transport ATP-binding protein OppD"], "transl_table": ["11"], "translation": ["MANRILDVKNLKIDFHTYAGEVKAIRDVSFHLDEGETLAIVGESGSGKSVTTRSIIGLLAKNSQIMGGQILFHGKDLLKISEKEWQQIRGNQIAMIFQDPMTSLDPTMKIGQQIAEPLIKHKGASKKEAWAKALEMMKAVGISNAEERINQYPHQFSGGMRQRIVIAIALICEPEILLADEPTTALDVTVQAEILDLMKDLQKRVKTSIIFITHDLGVVAGMADRVNVMYAGEFLEKGTVDEIFYNPQHPYTWGLINSMPTLTSEKLESIPGTPPDLLDPPKGDPFAPRNKYAMKIDAQMKPPFFKVSETHQAATWLLHPDAPKVTPPDEIVRRWEHYKELQAADED"]}}, {"location": "[239905:240859](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4608"], "gene": ["oppF_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24137"], "locus_tag": ["MAAAAKME_02480"], "product": ["Oligopeptide transport ATP-binding protein OppF"], "transl_table": ["11"], "translation": ["MPEERKKILEVKHLKQYFKNGRTVTKGVDDVSFDIYEGEVFGLVGESGSGKTTTGRSILQLYKPTAGEVLFEGKDVAKLHGRDEQLAFRRDAKMIFQDPYASLNPRMTVEDIIAEGLDIHHLVKDKAERRKRVEDLLETVGLNRNHASRFPHEFSGGQRQRIGIARALAVEPKFIVADEPISALDVSIQAQVVNLMIDLKKQHDLTYLFIAHDLSMVKFISDRIGVMHYGKLLEVGSADEVYDHPLHDYTKSLISAVPQPDPEIERSRKRIDYEYGKFEGDGKDDQRSMHEIRPGHFVKCTDDEVAYYEKVAQSYEK"]}}, {"location": "[241210:242524](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "db_xref": ["COG:COG3579"], "gene": ["pepE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94870"], "locus_tag": ["MAAAAKME_02490"], "product": ["Aminopeptidase E"], "transl_table": ["11"], "translation": ["MSHELTLQELAEFSANFNADPKNQVIARAAARSGVLEASYNERVAGRLTRVFSTELPTDNVTNQKQSGRCWLFSTLNVLRHDFGAKHKAKNFTLSQSYNFFWDKLERANLFYEKVIETADKPLDDREVRSYFDFAGHDGGQWHMAVSLVKKYGVVPSYVMPESFNTSATNGLASALADKERKDALALRRLAQAGDQEGLEKARKTFLNEIYRMVAIAVGEPPKTFDLEYRDDDKNYHLEKNLTPVSFFNKYFDVDLDDYVVLTNAPDHEYGKLYHLGAEDNVEGGSPILFLNVPMEYLEQAAVAQLKDGEAVWFGNDVGRQMDHKTGYLDTDLYKLEDLFAVDLSLSKADRLATGVGEVSHAMTLVGVDEDKGDIRQWKVENSWGDKSGEKGFFVMSHNWFKEYVYEVVVHKKYLTKDQQELLSSTPVELAPWDSLA"]}}, {"location": "[242575:243889](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "db_xref": ["COG:COG3579"], "gene": ["pepE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94870"], "locus_tag": ["MAAAAKME_02500"], "product": ["Aminopeptidase E"], "transl_table": ["11"], "translation": ["MSHELSPQLLESFSRDFNADPKNQVISRAARRSGLLEAAYNPAVSHRLNRTFSIELDTDNVTNQQQSGRCWLFSTLNVVRHNFGKANKAKNFTFSQSYNFFWDKIERANYFYDRIIATADRPLTDRTVRGYFDWCQTDGGQWHMAASLIAKYGVVPAYSMPESFNSNHSQALDMVLADKERKDALTLRRLAQAGDQEKLEAARTDFLSQIYRIMATALGEPPKTFDLEFRDDDKNYHLDKGLTPVQFYKKYCATDLDDYVVLANAPDHEMNRVLHLGFEDNIKGGYPNLFINVPMEYLEDAAIAQLKDGEAVWFGNDVGRQMDRKTGFMDLDLYQLDQLLDIDSHLSKADRLATGIGESSHDMALVGVDVDGGQVRQWKVENSWGDKSGEKGYFTMSADWFREYTYEVAVQKKHVPAEILDLLKNQPIELDPWDSLI"]}}, {"location": "[243985:244411](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ibpA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02000"], "locus_tag": ["MAAAAKME_02510"], "product": ["Small heat shock protein IbpA"], "transl_table": ["11"], "translation": ["MTNDLMNRYNDLFDQIGGWLDNSKDLLDSHAFRNILQSDVAEDEHEYTVKIDVPGMSKDDIHLSYTDGILTISAHRSTFKDDSDKKKNILRQERSEGSVSRSFSLPNVDKKGISAKLDGGVLTVTLPKAAPEENEDTITIE"]}}, {"location": "[244638:245100](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["greA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDQ7"], "locus_tag": ["MAAAAKME_02520"], "product": ["Transcription elongation factor GreA"], "transl_table": ["11"], "translation": ["MVYYQKMTPEGYKQIEDEIAALKADRPRRVQNLKEARALGDLSENTEYSTAKRELRHLDSRVRYLNKQLKYAEVIETVNDGKVNLGKQVEIRYEDDQEVEEYRIVGRMEEAVGDGKLPFDSPLGHALMKHKAGDRVKVKAPMGDYEVTILSVK"]}}, {"location": "[245183:246473](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.4"], "codon_start": ["1"], "db_xref": ["COG:COG0104"], "gene": ["purA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65887"], "locus_tag": ["MAAAAKME_02530"], "product": ["Adenylosuccinate synthetase"], "transl_table": ["11"], "translation": ["MTSIAVVGSQWGDEGKGKITDFLGTTADLSVRANGGNNAGHTIDFDGKEFKMRLIPSGIFAAKLGAVISNGVVINPKVLLGELNNLEKSGIDTSNLKISNRAHIIMPYHIMQDTYEEEAKGNLKVGTTKNGIGPTYMDKASRIGIRVCDLIDPETFAEKLRFNLERKNALFTKVYGKPAMDFDEIYNEYVEYGKRIAKYVCDTSLYVNDALDRNEKVLFEGAQGIMLDIDQGTYPFVSSSNSVSGGIASGSGIGANRIKTVLGICKAYTTRVGAGPFPTELHDETGDKIRDIAHEYGTVTGRPRRVGWFDSVALRHAKRVAGINALSLNLLDVFSGFDKIKICVAYDLNGKQIDYYPASLKEVEACQPIYEELPAWEEDITGAKSWEDLPEKAQAFVKRISEITGIPVVTVSVGPDREQTIVLQDPWTL"]}}, {"location": "[246658:247651](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.7.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG0516"], "gene": ["guaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05269"], "locus_tag": ["MAAAAKME_02540"], "product": ["GMP reductase"], "transl_table": ["11"], "translation": ["MNNYFSMEAFDYDDIQLVPNKAIVKSRKECVTSVKFGNRTFKIPVVPANMESVIDEKLAVWLAQNGYYYVMHRFQPEKRADFIKMMHEKGLFASISVGIKDDEYDFIDELVEKDLIPEYTTIDVAHGHSVYVIDMIKYIKEKMPDTFLTAGNVATPEAVRELENAGADATKVGVGPGKACITKLKTGFGTGGWQLAALRMCSKVARKPLIADGGIRHNGDIAKSVRFGASMVMIGSMLAGHEESPGNVIKIDGKTYKQYWGSASEVQKGAYRNVEGKQMLVPYRGSIANTLEEMKEDLQSSISYAGGRDLESIKRVDYVIVKNTIMNGDY"]}}, {"location": "[247779:249087](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG0389"], "gene": ["dinB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47155"], "locus_tag": ["MAAAAKME_02550"], "product": ["DNA polymerase IV"], "transl_table": ["11"], "translation": ["MYDYRYEPHRVIFMIDNKSFYASCEALRLGLNPMEVALAVVSQQPGTDWGSGLIMAASPLAKKKYGLSNVMRARDLPPKDQAPDLMLVEPHMNLYIKRSMEVLQIFRKYAADEDIHVYSIDESMIDMTESWHLFGDDPYLVARKIQKDIHDSLGLYTTCGIGENPLLAKLAMDISAKHRTSMIACWHYIDVPDTIWKIPKLEDVWGINVKTADHLRRLGINNMYDLAHSDPAILKKEFGVIGDQLFAMSWGVDRSIIKQKYRPKSKSYGNSQILSRDYEDQREIEIVIQEIGDQVASRIRAQHLLAGRVSLYIGYADYEADPAGFSIQEKITPTDISSDLVAKLRALFRRKWRGQAVRRLGVTYSNLASAGCQQLTFFLPPAEQIKQQKRDQVVDKLRKKYGFASVVRASSLLSGATAIARSRLVGGHNGGNAYE"]}}, {"location": "[249064:249439](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGATPMSKEFDQRVTDFFAHYQDRGMKKWAGFFLSDHTAMINKETRQKSVPDRAEMSREECGKVLGEAFGNQRSVAVQLKEVDENGDRPEEIVDFVQGYAEDKVVIGEHVIALDDLRCVLLLSD"]}}, {"location": "[249508:250801](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A2A5JY22"], "locus_tag": ["MAAAAKME_02570"], "product": ["Nucleobase transporter PlUacP"], "transl_table": ["11"], "translation": ["MDQTQEPSQGRSFVLGLQHLLAMYSGAVAVPILIGNALHFNSEQLTYLISIDIFMCGLATLLQLLRNRYFGIGLPVVLGCAIQAVAPLEMIGQKYSIGTMYGSIIVAGGFVFLIAGVFSKIKRLFPPVVTGTLITTIGLTLIPVGIQNLGGGSATAKDFGDPKNLLVGCVTILVIVALQAFAKGFIASISILIGLIVGTLLAACLGMVSLTPVSEAAWLHFPQFFYFGLPKFEWSSSLTMMIIALVSMVESTGVFFALGDLLGKDITEDDLKRGYRAEGLAQIFGGLFNTFPYTTFSQNVGLLQLSGIRSKRPIYWTAGLLMAMGLLPKVGALVTIIPTAVLGGAMVVMFSSISVQGIKMLLKVDFSDNHNLLIVAISLGLGLGVSVYPTIFQALPSELQLFLENGIVIASISSVLLNLIFKGKKGLDEK"]}}, {"location": "[250830:251400](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.22"], "codon_start": ["1"], "db_xref": ["COG:COG0503"], "gene": ["xpt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831Y0"], "locus_tag": ["MAAAAKME_02580"], "product": ["Xanthine phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MELLEERIKKDGVVLPGNVLKVNSFLNHQIDPQLMMTLGQEFARLFKDAGVTRVLTAEASGIAPGIMAAYCLGVPMVFARKKKPSTVTDAVYTAEVFSYTKQVTNTISVEAKFLDANDRILVIDDFLANGEAAKGLISLAEQAGAEVVGVGVVVEKAFQGGHDWLVNHGYHLEALASIKEFADGQVIFN"]}}, {"location": "[251754:252912](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.205"], "codon_start": ["1"], "gene": ["IMPDH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01964"], "locus_tag": ["MAAAAKME_02590"], "product": ["Inosine-5'-monophosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MSLWETKFAKEGITFDDVLLIPAESHVLPNEVDLSTQLAPNLKLNIPLISAGMDTVTEGRMAAAMAKMGGLGVVHKNLSIQAQADEVRLAKNTPVTAEDTYAAVDKDGKLLVAAAVGVTSDTFERAKALFEAGADAIVIDTAHGHSAGVLRKIKEIRDHFPHNTLIGGNVATAEGTRALFEAGVDVVKVGIGPGSICTTRVVAGVGVPQLTAIYDAADVAREFGKPIIADGGIKYSGDVVKALAAGGNAVMLGSMLSGTEEAPGDVQQGSDGRLVKSYRGMGSVGAMSQQHGSSDRYFQGGVNEANKLVPEGIEAVVSYKGTVSNVVYQILGGLRSGMGYCGAENIDKLIETAQFVRISNAGLRESHPHDVMMSKAAPNYGGIDF"]}}, {"location": "[252911:254465](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.2"], "codon_start": ["1"], "gene": ["guaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99105"], "locus_tag": ["MAAAAKME_02600"], "product": ["GMP synthase [glutamine-hydrolyzing]"], "transl_table": ["11"], "translation": ["MAKIDLSNFDKIIVLDFGSQYNQLITRRIRDFGIYSELLPHTITAEEVKKIAPKGIIFSGGPNSVYDENALDVDPEIFELGIPILGICYGMQLMTQKLGGTVEKAGEAEYGSAHIEVKEADSPLYKGLPEKQVVWMSHGDLVTKVPEGFEVLASSKNCPIASMADPDRKFYAVQFHAEVRNSEYGLDILRRFAFDVCGAKDNWTMDDFIKLSVDSIREEVGNANVILGISGGVDSSVTATLLHKAIGSQLTAIFVDHGLLRKNESDEVMAALKEGLGVNIVRVDAKDRFMSKLAGVTDPEKKRKIIGNEFVQVFNDEAKKIKDAKFLAQGTLYTDVIESGTDTAHTIKSHHNVGGLPEDMQFKLIEPLRQLFKDEVRVLGEKLGLPHDLVWRQPFPGPGLAIRVIGEITEEKLRIVRDADAILREEVKNAGLQESIWQYFVALPGMRSVGVMGDGRTYDYAVCIRAVTSIDGMTADFAQIPWDVLQKISVRIVNEVKQVNRVLYDVTSKPPATIEYE"]}}, {"location": "[254789:255041](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKWDKLLQRILSLSKGMRFVELKKVLESYGYVMTAPRSGSSHYTFRKPGKTPITIPKHEPIKKIYVEMVRKVVEEETKHEDN"]}}, {"location": "[255027:255399](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTIDDYLALPYRLELVPDPDEGGYVASYPELPGCITIGESLEAAAKNAEDAKKAWLEAALEDGIEIAEPASLDDYSGQFKLRIPKSLHRSLAEHSKREGVSMNQYCVYLLSKNDALEERNRA"]}}, {"location": "[255832:258085](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINLNYQSSDTSLLPSDFQLEDYKKIARDSKKRFLQFCFSNAEIPDQGFKIHISATQINYQVILDEVFDLCKSNLIDFKYISNREQLLDNLAGKDDLWASGKFITIYPSSLDDFKKVIVKLYENNVLKVQDGIAIFSDRRYRDSNVIFYRYGRLKGPDKWIYNPITKLKEYRDYESMEYRLPAWVDEPFPDNSDDSKTCKYFFKKIIPTEGLNSKPSGATFLAHVAGSEEEFVLKNAHPGYMNLGVACTDSLKNEAVNIKRMMKFDFIPNYIADFSEDEDYFLCEEKKCGLSVDDYRADSHHNFIDKKLRKKTINDYRKSITDLLKNVQILHDERIFLGDISSENVLVDPETNLVSFVDLEQSVFLEDHSKIAFFARTEGFFDENTPFLAPIAQDNQQLAYLLISFFCRGNMFLLIDHSGAMTINFFKQYASTHNLPKVFVDVIMDLLEDPNQRLDNLVEVLDKMDCENLYNSEDLVSLDDFQYELVKSVYLAMIDGIQIDDKKTLFFEEDTDLIFNENMVSIYKEYLQKPTIFNDIFFEKKMHNHVISEGKRLVEMLKDGDERLAETSLVQVYALLLCTIKIASPSEKIIIDSLINYTQEKYMESTINGRFFRITEYSTYLSPYFADGTAGMINILLEYREKFHDTKYDASILDLVNSISQEHMPKNSSLYRGLGSFIYVLQKFKKIFKSSKRDNDIREMFRNLPLYSIVSNGNRYMVDESFRRISLDFADGNAGIIFLIEQAKQMGIL"]}}, {"location": "[258107:259709](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_6"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_02640"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MYYSDFIKGNRVRFIAIILLVIGGSALLAGNNALLTLLGDSLRKGNLLLFVTIIGINFVVNSIGSSLSYRANYLYDKQTQEYFHKLRSAEVEKIYNSGNKAPKVSSVQNSLTQDLNMLGENFLAPWLKIAACGLDVVLSSIIVFTYSWLLLLVILLLAVLMFFMPRFLSPALQKATDDISNENKHYLDMLEKWFSGLSVLQRYHVKQKLLAVTTAQGKRLEDANVRRSGRMQVASGVNNAANVLSQALILLVSGVLIITGRMNFGVFFSIGNFASTIFTELGVVVNQYTILQSSKTLNAKLRKQLAVQTDHLEKTESLDHFQSLSVQALSVAFSNEEKITYPDFQIKRGEKILLSGDSGTGKSTLFKLILQELPLATGKICFKNEAGQEIERPDLSQIGYVPQDPVLFPGTIKENITMFNSKLNDRVMHFVKQVNLEKDLAKFPAGVDTELDQGKHVLSGGQRQKVVLARAQIHDSQLIFIDEGTSAIDAHNGLEILQNLLQTDATIVFIAHNLTEEMRQLFDREIHLSNTAG"]}}, {"location": "[259793:260588](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rhaS"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01534"], "locus_tag": ["MAAAAKME_02650"], "product": ["HTH-type transcriptional activator RhaS"], "transl_table": ["11"], "translation": ["MPIAYEEVNNLARLPFKFFKRSNYVPKAPTHWHTGIEIDYLVSGEDFKVVIAGQTHHYNSGDIWAIDRTQIHAATGHKDRSYYVMGLIIDNNFLEKEYTSSKNWRIKMDHISRDTASYRQLRKNLITIAELVDQPISDSIRFLILSEFFQMIALIDSEYTEKTAVTTPPNQSLADTVITYIANNSSTNITAQSIAEHFRISQVTLNKELSQVTKLPLGKYLKQVRLMHARYLLLSTNYSVAYIANYCGFSSAKVLERNFKAWKK"]}}, {"location": "[260831:261755](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.85"], "codon_start": ["1"], "gene": ["lacG_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01574"], "locus_tag": ["MAAAAKME_02660"], "product": ["6-phospho-beta-galactosidase"], "transl_table": ["11"], "translation": ["MSVTDITTAGSLESPRYLTYTLDGKDGKVAGMFASSLPKGAKGKIFDNEYYPNHVAIDFYHYYKEDIKMFADMGFKVFRTSIAWTRIFPTGEEDKPNQEGLDFYRRVFEELKKNGIEPLVTISHYEDPLALGEKYNYWQDRKMIDLYVKYATTLFKEYKDLVKYWLTFNEINSFLMFLKLVGDGKVSDADYQKAYQKLHHQFVASAKAVVAGHKINPDFMIGNMIAGSVYYPGTPDPKDALAARYEEELSQLYCADAQAKGEYPSFAKRLWDEHNVHLKIEDGDLEVMKEGKAAGKMPFCLLRGRSR"]}}, {"location": "[261780:262383](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.1"], "codon_start": ["1"], "gene": ["deoD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01627"], "locus_tag": ["MAAAAKME_02670"], "product": ["Purine nucleoside phosphorylase DeoD-type"], "transl_table": ["11"], "translation": ["MADHFITIDRLRPIYIIENQGEQLCLCRAPLGGPAAAQFMDALIALGCRKFLAVGSCGTLVDIKENDFLIPARALRDEGTSYKYLPASRYVDLDPAAVEKIGQGLKEQGLPFEPCTTWTTDGFFRETQDMVEYRRGEGCQVVEMECASMAAVAAKRGAEFGQLLYTADSLANVEAHDDRDWGQASQAKALHICLRIIHNF"]}}, {"location": "[262462:263725](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.12"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:H8L902"], "locus_tag": ["MAAAAKME_02680"], "product": ["D-aspartate ligase"], "transl_table": ["11"], "translation": ["MQQFTPILLGSDINVYGMARSFHEAYGIKVQAWGASTLAPTRYSKIVDIEVHPGFTEDPEFIKVMREKIKEYKKHPEPVILISCGDGYSELLAKHKQELEEAFIVPYIDYALLEKLISKEGFYEVCEEYGLPYPKTKIITMSAYKDGSYADVPFPFPVALKPEDPVSWLDVQFEGRKKAFVIKDLDEFKDIVGKIYTNGYKEDLILQDFIPGDDSNMRVLNAYVDKNHQVKMMCLGHPLLEDPDPIAIGKYMVIAPDYDEKLYQTVQAFLEKINYTGMANFDIKYDVRDGQYKFFEINLRQGRSSFYVTLNGYNLAKWYVDDYVEDSLKDQPVVYGNQDPAKHKLWLGVPDKIFEQYAVDSLAKKEALALLRAGKVGTTVFYKPDMNVKRWLLMKHMYHNYYKDYQKYFKVNKEQYFEKK"]}}, {"location": "[263818:264784](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLTPNDSSSFENQLSPRQDLTFNSLQALFDQQGLPFSPPSSQFGILQFSNFDLLVSDQCPYTIKCAVFKGTDQDEFLDRQEFTGSLAAQFQQVYAFLEKHNPVESQIKGLYREDRPAYPKQALREALMNAIIHRDYSNPASSLINLYTDRVEFISFGGLMPGITLEDIQLGLSVCRNKRLADLFYQLKLVESYGTGLARIKSAYKGSRLAPQILAAPSSFKVVLPHYQAAVKATSKPVKKAVTPAPSPSPAPKPKARATGNEETVLAFGKEHGEFIRSDIEELLGVSPATATRLLRQMENSGLVLKRGKAKAIRYRISENS"]}}, {"location": "[264934:265300](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0833"], "gene": ["rocC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39636"], "locus_tag": ["MAAAAKME_02700"], "product": ["Amino-acid permease RocC"], "transl_table": ["11"], "translation": ["MLGGVFSLLTSVYAADTIYLVLVSISGLAVVFVWMAIALCQLKFRQKWLKEGNTEDELKFKTPLYPFTPWFAFIASLASCLLIWFDPSQRVALYATIPFVIFCYVAHHFYAKHQEKKQTSL"]}}, {"location": "[265305:266259](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0833"], "gene": ["rocC_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39636"], "locus_tag": ["MAAAAKME_02710"], "product": ["Amino-acid permease RocC"], "transl_table": ["11"], "translation": ["MCYHVTAYFNKKTGYTISQAGPIGTIIAYFFGAILVYAVMLCLGELSVAMPYTGSFHVYAKNLLNPATGFTVAILYWLTWTIALGSEFTAAGIIMRHWFPSVPVWIWSLVFMILIFLSNFFSVKIFAESEFWFAAVKVAAIVAFIILGGLAVVGVIPLKGSQGAPGLTNLTKDGWFPTGFGGVFTTMLTINFAFSGTELIGITAGEAKEPEKTLPKAIHTTLWRLIIFFIGSIFFMACLIPYKQAGVTESPFVHIFNMMGIPFASDLMNFVVLTAIISAGNSGLYASTRCSGPWAMRGLFQLFLPKPTKEGFRPSPC"]}}, {"location": "[266274:267207](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.10"], "codon_start": ["1"], "db_xref": ["COG:COG2040"], "gene": ["mmuM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47690"], "locus_tag": ["MAAAAKME_02720"], "product": ["Homocysteine S-methyltransferase"], "transl_table": ["11"], "translation": ["MADLPTLLAQGPVTLDGSMSTPLEAWGEDTNSDLWTAKALADNPDLVYRVHQEYFKAGARVTITDSYQASLPAFMKHGLSEDAARALIRESAAVAIKARDDFEKETGIHNFVAGSVGPYGAYLADGSEYRGDYALSHEEYVDFHAPRIEELVAGGVDCLAVETQPKLSEVRAILDYLKAKYPDLPVYVSFSLKDPATISEGLPLTEAVEEVSAYAQVFAAGANCFKLAWTVDVVKNLRASKLPIVVYPNSGAEYDPSVKKWVYPPEAADFGQAGAAWLAAGAKLVGGCCTTMPEDIAGLAAAVKKVYTAF"]}}, {"location": "[267262:267712](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAVERVKDSFKDTDVNVIELPESSATVALAAQALNTEPDQIAKTLSFLVDDAPILDVMAGEASTDNHKYKATFHKKAKMIPVDQVEDYIGGVCPFAVKPGVKVYLDESLKRHTEVYPAAGSSNSAVRLTIPALEKYSDYTAWVDVTKTA"]}}, {"location": "[267947:268151](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADLSKLREQIDQADQDLVKALVKRYDLVMEVGRVKREKGQAVFDPKREERVLDKVTNLAQRPEEDF"]}}, {"location": "[268209:268659](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["slyA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01819"], "locus_tag": ["MAAAAKME_02750"], "product": ["Transcriptional regulator SlyA"], "transl_table": ["11"], "translation": ["MMDLGLRVKKINDLMAKRGNYELKKLDLTFSQFHCLVYLEKCAGQQAPLKQLEKHFEVAQTTMAGIVGRLEGKGYVRSHLAESDKRVKIVCLTDEGRQICASAKKGMHKLQEKVELLYSRQELSQLEKYLDRLYELLAEENREACEEKR"]}}, {"location": "[268655:269663](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG0252"], "gene": ["ansA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26900"], "locus_tag": ["MAAAAKME_02760"], "product": ["L-asparaginase 1"], "transl_table": ["11"], "translation": ["MTNKKILLLSTGGTIASVASEEGLIPGQSGAELLHTLGGLPYEVEVKDILSLDSSNIQPEEWAFIAEQIYKLRRGFDGIVVSHGTDTMAYTASMLTFMLQGIDLPVVLTGSQVPMQAILSDAPDNLRVAFAAAATCKPGIYIAFNRQIMRGCRCVKIRTTGFDAFKSINVDPVAMVTSDGIDIKHKDFEYVPSEHAICTLNTKVEPQVAMIKLFPGFDPAVLSAMVDSGVKGIVIEAYGLGGMNYMRRNMVKAIGEIIKRGVPVVACSQCLYERTDLTKYEVGRAAMLEGAISGRDMTSESAVTKLMWALGQGMDLEDVRAFFNKDIAGEVTITD"]}}, {"location": "[269788:270070](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "gene": ["cof_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01847"], "locus_tag": ["MAAAAKME_02770"], "product": ["HMP-PP phosphatase"], "transl_table": ["11"], "translation": ["MIKLIASDLDETLLGPGSRVVEENLRAIKKCQELGIKFVPATGRDFYSLRQTLEELGQADQAGQYTICYNGGAVFENKGPRLISFTGMDGEPG"]}}, {"location": "[270107:270617](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "gene": ["cof_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01847"], "locus_tag": ["MAAAAKME_02780"], "product": ["HMP-PP phosphatase"], "transl_table": ["11"], "translation": ["MHIYTEDQVYGYQLTQEEIDFCQGRADFAALPGGDLTALRASGARFAKIIYVDTDFPRLKKLRKDLADFEKVSEMSFSSNRYLEFNPPKVNKGTGLKKLCQELGYQLDETMAIGDSFNDLAMIKAAGTGVGVANVSPEMRADCDKITEKTFDQGAVAEAIGRWVLPDYE"]}}, {"location": "[270701:271178](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mscL"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00115"], "locus_tag": ["MAAAAKME_02790"], "product": ["Large-conductance mechanosensitive channel"], "transl_table": ["11"], "translation": ["MPKRINLPDGQQAVESTKGFFGEFKAFISKGNVMDMAVGIIIGGAFTTIVKSLVSDIISPLLGLVGGMNFDQFSLKFAGVTLAYGKFLTAVINFLMMAFVLFFIVKAFNRAGSLIKKEEEVEEEATTKVCPYCKSEIDIEASRCPMCTSQLEEKMAEQ"]}}, {"location": "[271257:272781](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.21"], "codon_start": ["1"], "gene": ["pncB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00570"], "locus_tag": ["MAAAAKME_02800"], "product": ["Nicotinate phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MVSVQFILAIGEVFIFTFNSYIFEKADFYTMSLSHALITDLYEFSMANGYFETLPRDTEAVFDVFYRTVPDNGSFVVSAGLEQVVEQLRGFHYTKEDIDYLKSLKLFSAEFISYLETMTFDCVVYAIPEGTPVFPRVPILTVKGPLIQCQLLETFVLNLINHQSLIATKSRRINLAAAGRPVMEFGARRAQGPDASVLGARAAVIGGCGSTSNVLSAAKYNIPVAGTMAHAWVQSYPTELEAFEKWAEIYPDNALLLVDTYDVLTSGVPNAIKVFKELRAKGHKKFGIRIDSGDIAKLSRKARKMMDDAGFPEATITASNALNENVIDSLLQEGAPLDSFGVGEQLITSSSSPVLSGVFKLAALKIGDGEWQPKIKLSNSKEKVTLPGEKKAYRLYHKGTKNAFADVIALADESLPEEFVGINMDPMMTETEANLKDFDAVLLTQVVVGPKAKSIETDTFKIQKHMYEKLAELPEETQRLLNPDRYPVYLTPALADLQAKMIKDHKL"]}}, {"location": "[272800:273508](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_02810"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRRIDERSPRIESRKDFGHWECDLVLGHKTKDNDVLLTLCERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYRVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[273523:273835](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_02820"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLKDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHG"]}}, {"location": "[273996:274551](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.110"], "codon_start": ["1"], "gene": ["rutB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00830"], "locus_tag": ["MAAAAKME_02830"], "product": ["Peroxyureidoacrylate/ureidoacrylate amidohydrolase RutB"], "transl_table": ["11"], "translation": ["MKNEALLIIDYTNDFVDDKGALTCGAPAQALAGQIVSLADQFLAAGKWVILPTDKHFKGNPYHPETKLFPPHNLPNTWGREFYGPLQTWYNKHQDDEHVLVLDKSRYSAFCATGLDLFLRERKVSRVHLAGVCTDICVLHTAMDAYNHGYDITVHEKAVAALNDAGQEWALNHFKSCLGAEVVD"]}}, {"location": "[274805:275663](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKNRKNLALLLLAASLLAGCAGQSNSQSSQSNQAKSEKKEESKASSKSAAKSAASSAVSSTKSSSSRASSKSAASSSQRADANRMGTLTSQLRVKLPGMLLPAADGLGQGSSNLNIRYTSSSSQNVVYYSVGNSPLALNDSRIASEKPYAVLTENKNVADASSLINYQEPKTGLPAVKIAGNVTGTEEGAAGSTYLQFNQGQWSFVVRASNVQGQKPLPTAQKLLALYQQYGLPDTAAKSSVQVDVGESLGSLNTVITWAKGSSVYQLKAHSTETAFKMLKSLN"]}}, {"location": "[275655:275922](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNFWQSSLLLINLIAFALYGIDKAKARMHAWRIPERLLLTCGLLAPVGSGLGMLAFHHKVRKAYFYLAIFAGFILWSAIDYLILSFS"]}}, {"location": "[276017:276794](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPELEKIVERPLITITNLIWSFNKETHRVQLLLVKRKDEPFADRWALPETLLLLRENESADQAAVRLIKEKIGLDLPETSTEQLATFTSPHRTPGERALALTYMTYLPAMPNLRPGYGASDVAWFAFENFGHKYELFSADKDLTFELAENSHALAFDHDEIIAVAIQRIRNKLDYQPSILQILGPEFTLREAREVYAPFFQTTVDEIDNSNFRKTHGSLFTELGVQKNYHKSGRPPKLYCLKETQSNILWRKANNKQG"]}}, {"location": "[276960:278259](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEQIEEVPAELIQTRVYELHPNKTMRRVLDEACDYRRYCWNQGLALWNKMYKARQALKSSLASDSKKLTEEQKVLLKEKPSPSERRVRNMLVTDKKDWQYTQSARILQLAISDLGKAWNNFFDKAQPGWGKPKFRSKREARQGFKSDRSKIKDGILYLERAKESSVPKDQWRGFKLSEEPLSDEFGVVSYFKEKGRYYVAIPYKIKAEDVKLPDKTGKATAVDVNVGHFDYTGGRVNVLPKKLDRIYKKIKHYQRQLAKKQVKNGEAACESENYLKTKAKLQACYRKASNIQNDFMHKFTTELVNDYDKIVIENLSVKGMLMSHVASKGVHRSMFGKFKQILTYKCDWYGKELILANKLYPSTQRCAACGNVKKGDDKITLYGNKKHGTKHNEYVCYNEKCPNYNKVVDRDKNAMLSLLALTEHPELNHAL"]}}, {"location": "[278528:278816](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFFNKKENEAEEAFKKQLETVANDPAVKANAALSNLIEAAVKKVEKSESIRSIASNLDTQLRSNFAENELPKAVISLQLDLARYSAVGANGVVLK"]}}, {"location": "[279003:279255](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYQASRLPLWERVFHIVGDSMIIWLWHHLLIVALGLLTLLGLVIYLVVSGIRQKNVAKAVWPVVIFCSCLGLVYFAMSCAIMD"]}}, {"location": "[279388:280009](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKIVEYIFCRDCKKVYFYLHGGPLFTLRNWQEYPFATMLYNEQRNFILLNYPIVYGNGGISDYQFLKEYFWEYKRQNPNTEMVLLGESYGGYLASLFAAEYIFRKIIAISAFTSIAYQELFSSERSWLKDYLSENALDFYTLCRDNKVNTRTIFINGSRDSRVPYQQFLVLPFMKKFKVNILPGFTHRESRTRLEYVVSLIKQEL"]}}, {"location": "[280010:280811](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02910"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNPQHFRNISLGLRSIRIVANNEWRAFVHNKGLLLSMFMQPLITYGLLVMALNQNLASVHYESLILPYKQYALTGVLSFFMTTQMSQAMYRATVDKEYGLLAIKFTNGVQPWHYLTGMSFFPIAGLLFQSAVLIVLGLATGGVYNLGLLLLSLLVLIISLEFWSTLGIVLSTRISSYQQRDIIMTLIFSPVAYAAPTLYVFSNNSPLIIKVLAYINPLSYQLKALRTVAFGIFNINDLLIALVLTIIMIIFAQIILRRMPLSLAER"]}}, {"location": "[280807:281518](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1121"], "gene": ["mntB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34338"], "locus_tag": ["MAAAAKME_02920"], "product": ["Manganese transport system ATP-binding protein MntB"], "transl_table": ["11"], "translation": ["MISTNNLNIGYKDKVVVHDLSFSLDKGMFIALIGANGAGKSTLINSLIGVIPPVSGQISWKLKTDRVNPFNDVGFSPQSQLIDWYTSVYDNVYQGPLLAGFKTKEAQKTTKQALKLLDISDLSAKPVDHISGGQQQRVQIAREIAREPQVYILDEPTTGLDVETSEKLFTYLKQKVDAGSIVLTSSHDLTLLESYASHVLFLDDHEQKYFGPLTDFLDSGTSLREKYLNERKAIEK"]}}, {"location": "[281642:281888](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSIEFQKLIQKLQSDPITIGNFLADPEEFLKSTKLTNQEKKTLLARDVEALNDLGLTIDQAVGALSGAHSQRCSTNHPTRG"]}}, {"location": "[282190:282919](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKEDIAIQFELLLKEYSVARYEDSIWAFPDYPHHIKSNYGWKIHISAILTNAIQIARKFLTLNQKYHFDFKIISSIPYLEQMNMGYFGNSQVGKFITIYPDQSAVTETLELLYYYFHDDVGIRVGSDISYKQGLNVYYRYGTLLDDVENIDKRDKKLKPSSNVEKIYDYRLERYNSLPTRYLILEAIKQKGPSGVLLALDLQTKVKVIIRYAEKYYNIESAGIDERDRLISASSLLEKDFV"]}}, {"location": "[283791:284460](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTPRSRKGNLVRYLVYFVVFVFTALADNLAIKSPSISIWNVILFLVLAAMCLLFYIYRYNREQRFFDSRFNIPWLSSFNFTLLLSFVVAAGRIGISYLQLYKGMPASGLQLAYASHSTSSLYWFMMLANGVVLPILEEYLCTGFLFNYWFRTEKKGVAYVGIICSGLFYAILTFQFTPAIFAFNFAFGMLFAWSYLSTQTIWLPLYLVALNGVLTVVTIAV"]}}, {"location": "[284529:284600](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_02960"], "note": ["tRNA-Gly(ccc)"], "product": ["tRNA-Gly"]}}, {"location": "[284780:285806](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG0180"], "gene": ["trpS2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RVD6"], "locus_tag": ["MAAAAKME_02970"], "product": ["Tryptophan--tRNA ligase 2"], "transl_table": ["11"], "translation": ["MTKEIILTGDRPTGKLHIGHYIGSLKNRVMLQNTGKYDSYIMIADTQALTDNARNPEKIRNSLIEVALDYLAVGLDPEKSTIFVQSQIPALFELTTDYMDLVTLSRLERNPTVKTEIKQKGFGDSLPVGFLTYPVAQAADITAFKATLVPVGDDQEPMLEQTREIVRSFNRTYNVDVLVEPKGYFPPKGQGRLPGLDGNAKMSKSLGNAIYLSDDAETVKKKVMSMYTDPNHIHVEDPGQVEGNTVFTYLDVFDPDKDTVAQLKEDYQKGGLGDVKIKRYLNKVLEAELAPIRERRQKYAENLDAVYDMLYQGSQKANQVADQTLQEVRDAIGFNYFKNRG"]}}, {"location": "[285807:286290](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.33"], "codon_start": ["1"], "gene": ["tadA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00972"], "locus_tag": ["MAAAAKME_02980"], "product": ["tRNA-specific adenosine deaminase"], "transl_table": ["11"], "translation": ["MTRKRIPWKQYFMMQALVIAQRSTCDRALVGSVLVKDKRILSTGYNGSVSGQDHCDDVGHQLVDGHCVRTIHSEMNSLISCAKNGVSTDDTEIYVTHFPCYNCTKHLLQAGVIKINYYYDYHDSPLAIQLLRDSGVPYEQIKLDRQFVEELAHKLEDGSD"]}}, {"location": "[286270:286885](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTAATRLAWLLALVCLFPLVTGASSFFVQDNAGIINSDTWKMVDQNNAKYQKSDQHPIVIVETLQNAKKTQPAGLSKASRTFYIVINVQKDGTKKAYLYSSSDLHSQFTAQVRANILSHTASKITDDDPIAFNEGVQELFKISVTLIDQSLGFKKDSLDLSSEEVNRVIKPADLRIPIMLALLVLIAAVIIFLRFTIRRQDRK"]}}, {"location": "[287243:289934](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.14"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["mgtB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22036"], "locus_tag": ["MAAAAKME_03000"], "product": ["Magnesium-transporting ATPase, P-type 1"], "transl_table": ["11"], "translation": ["MLNKTMNKAASDDAKRVARIALEKRSVTLAQLHTNSNGLSTEEAANIREKTGTNEIASSNQASKLHFLAEAFLTPFTLVLLILATMSLFTNYIFVPQREKNLSTVIIMVVMVLVSGITSFIQNVRTSNAVQSLLKMVSVTTNVRRDGKDQEIPTKDVVVGDIINVSAGDMVPADMKLLSSTDLFCSASSLNGESTPTEKNANFVPTPDKMENYLDYPNILFKGTTIVSGSGRGVVFATGEHTVFGKIAAQIADTEMKETTFDTGIKNISKLLLTMTAIIAPLVLVVNGLTKGNWTDALIFAIATAVGLTPEMLPVIVTTNLVRGSLEMSKHQTIVKKMNSIQNFGSADILCTDKTGTLTQGQVILEKHYNLEMRETDRVLKMAYLNSYYQTGMKDLIDQAVIDVADDELDTSEIQRDYHKIDEIPFDFQRRRMSVVVANSDQKHGEHLLITKGAAEEMLAVSSQVEIGGQILPLTEERKKQIFKDIDDLNSDGMRVIVLAYKVDPSPVGEFTVDDESDLIVIGFLTFLDPPKESAKNALASLNRDGITVKILTGDNEAVTRAVALKVGLNIDTVYGQKDLIGKSDEELAKIVEECDIFVKLSPEWKTKIINALQKNGHTVGYMGDGINDAPAMKQADVSISVDSAVDVAKESADIILLQKDLSVLEHAVRIGRKTLTNTMKYIKITLSSNFGNILSIMVASVFLPFLPMLPLQLLILDLLYGTSCLALPFDSVSEDYLHVPREWSTKNMPKFMSYFGPTSSIFDVITFAVLFFVICPALTGGSYASLGPAGQLAFMTIFHTGWFVESLWTQEMVIHALRDERLPLIQQRASSPVMLATFGAAIFGTFLPFSKLAGAMKFVHLNEEFLWIVAGLLVCYLLLTTVVKHFYMKKEKFLI"]}}, {"location": "[290069:292052](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.10"], "codon_start": ["1"], "gene": ["metG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67579"], "locus_tag": ["MAAAAKME_03010"], "product": ["Methionine--tRNA ligase"], "transl_table": ["11"], "translation": ["MADNKKTFYITTPIYYPSGRLTIGNAYTTIAADTMTRYKKARGYDTFFLTGTDEHGLKIEQKAEKLGMKPKAYLDGMVKDIKELWKKLDINYDKFIRTTDEEHVKAVQKIFEKLKASGDIYLGEYTGWYSVEDEEYFTESQLKEVFKDDQGNVVGGIAPSGHEVQLVKEPSYFFKMSKYADRLLQYYKDHPEFIQPNSREKEMVNNFIKPGLEDLSVTRTTVDWGIPVPSDPKHVVYVWIDALANYITALGYGSEDDSLFKKYWPADVHLVGKEIVRFHTIYWPIMLMALDLPLPKQVFGHGWVLIYKDKMSKSKGNAVYPESLISRYGLDPVRYYLMRAIPFGADGSFTPEDFVERTNFDLANDLGNLLNRTVSMINQYQKGLVAPVDQEQDKYGQDLAAVAAKAISDYYGNMDKMHFSNALENVWQLISRANKYIDETTPWVLNKEGKTEELSRVMSNLAESLRLVAIMIAPVMTETPGKMFAQLGLDWEDESQKDLQFGGFAWDVNVVAKPTPIFPRLKNDEEVAYIKEEMKKAKPKKQSRREQKQEEKQITIDDFAKVKIQVGKILSVEPVKGSSKLLMFKLDFGKTGERQILSGIRKFYPDESILLGKKVLAVTNLKPRKMLGHESQGMLLSSEADGDVKLALVGDEHPVGAELG"]}}, {"location": "[292051:292831](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.96"], "codon_start": ["1"], "gene": ["dtd3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P73335"], "locus_tag": ["MAAAAKME_03020"], "product": ["D-aminoacyl-tRNA deacylase"], "transl_table": ["11"], "translation": ["MKIYDNHTHLNDKPFAGKEADYIQKARDLDVVGMNCVGQDPEMNLGALELAKRFANVKAIIGYCPDVAKDYDQAAEDLLVEQVKGGQVVAIGEIGLDYYWDESPRDVQRKVFARQIEVARDLQLPVNIHTRDAFADCWQILKEADLEYGAVLHSYNGGAEWTEKFLDLNVNFSFSGVVSFKKAAEVHESAKLVPLDRLLVETDAPFLTPVPYRGRQNEPGYVRYVAQAVADLKGLDLAEVAEATYANTMRIYGLNAEEF"]}}, {"location": "[292814:293387](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.8"], "codon_start": ["1"], "db_xref": ["COG:COG1658"], "gene": ["rnmV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37547"], "locus_tag": ["MAAAAKME_03030"], "product": ["Ribonuclease M5"], "transl_table": ["11"], "translation": ["MQKNFNAVVVVEGKDDTIRLKQFFPGIETVETNGSAVSDAVLAKLKKLAQSREIIVLTDPDVNGERIRRIVTEAVPTAKQAFITRKEGEPQKKGSLGVEHASKEALERALSDLREVQAQKADFDYGDYVDLSLAMGRQSRQLREAVGIKLGIGYANSKRFYQRLQTFGISLAELKQAVEEAENDQQNSNR"]}}, {"location": "[293361:294252](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.182"], "codon_start": ["1"], "db_xref": ["COG:COG0030"], "gene": ["rsmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37468"], "locus_tag": ["MAAAAKME_03040"], "product": ["Ribosomal RNA small subunit methyltransferase A"], "transl_table": ["11"], "translation": ["MTNRIPIASPVRTAAIVNRYFVHAKKNLGQNFLVDLDAVQGIVRAAGIEPGDQVVEVGPGIGSLTEQLLLAGGKVAAYEVDQSLPEILANELPEKVDGQDLDQRFKLIMKDVLKADFATDLAGFFDLSKPVKVVANLPYYITTPIIFNLLESSLDFTSLTLMMQKEVAERLAAQPGSKAYGPLSIAVQTQMSVDLALEVGHASFMPQPKVDSAVVVLTPLEKPADVGDRKQFNRVVKLCFAQRRKTLANNLKTLLPDKEDREKLLADLDLDPRQRPEQLAISDFIRISQAIAEMNK"]}}, {"location": "[294311:294563](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4466"], "gene": ["veg"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37466"], "locus_tag": ["MAAAAKME_03050"], "product": ["Protein Veg"], "transl_table": ["11"], "translation": ["MLINIQDIKQKLDAHLGEELTIVAQAGRKKVTRRRGILKNTFPAVFVVALDQDSNNFEHASYSYTDVLTKNILLEFDDESDAE"]}}, {"location": "[294668:295499](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0503"], "gene": ["purR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37551"], "locus_tag": ["MAAAAKME_03060"], "product": ["Pur operon repressor"], "transl_table": ["11"], "translation": ["MKRSERLVDMTKFLMERPHTLIALPFFAKRYGAAKSSISEDLAILKHTLASNEDGILETVAGAAGGVRYIPFLGQKPAEKYLKDLAGRIQDSSRILPGGFLYLSDILGGPYDLEMIGKLIATRYAYANIEAVMTVETRGISLANAVASYLNVPAVTARKRSKVTEGATVSVNYMSSSTSRVAKMELPTRALDKDTSVLIVDDFMKGGGTLDGMRQLVKEFDCQVAGVCVLCETEYEEERKIKDYVSLVNIDQIDSEKEIVLAQPGNFLTRTNFDRF"]}}, {"location": "[295560:296946](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1207"], "gene": ["glmU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97R46"], "locus_tag": ["MAAAAKME_03070"], "product": ["Bifunctional protein GlmU"], "transl_table": ["11"], "translation": ["MEKYVVVLAAGKGTRMKSKLYKVLHQVCGKAMVEHVVDAARAVKPSKIVTIVGHGAEDVEKVLAGKSEFVMQEEQLGTGHAVMQAEGQLAALEGATLVVTGDTPLFTSETFEKLFAYHEEEGNAATVLTAEAPDPFGYGRIIRDDQGNVLRIVEQKDGKPEELKVKEINTGVFCFDNQDLWAALKQVGNDNSQGEYYLTDVLEILRKAGKKVGAYKMPDFSESLGVNDRIALAEATRIMQRRINEGHMRDGVTFIDPATAYIDADVEIGNDTVIEGGVTIKVHTVIGSDCLITSGSRIVDSQIGNGVTVTSSTIEESIMEDNTDIGPNSHLRPKSLIKRGAHLGNFVEVKKAEIGENTKVGHLTYVGDATLGKDINVGCGVIFSNFDGVKKFHTTVGDKSFIGAGSTLVSPINVADHAFIAADSTITKDVGKYEMAIARGRQVNKKDYWHKLPLSEDEEWK"]}}, {"location": "[297115:297814](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFTKKIAFASASLALTLATPAALLTQNVAFAKTTTVKQATKVKVTKKTTPFYHKDGSKFTKKKPYVYGGWKSTVAYKNTSYNVVKTVTIKGAKYYYIGNDAYLKASDVKVTATKTVKSSSTSSAKKASTSSSKSSSKKTSSTSSSTSSSSSSKKTVTQIQVTKKTTPFYHKDGSKFTKKSPYVYQGWKSTVAYKGTKYKVSKTITIKGSKYYYIGNSAYLKASAVKVIASK"]}}, {"location": "[298043:299024](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.1"], "codon_start": ["1"], "db_xref": ["COG:COG0462"], "gene": ["prs_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14193"], "locus_tag": ["MAAAAKME_03090"], "product": ["Ribose-phosphate pyrophosphokinase"], "transl_table": ["11"], "translation": ["MSYKDNIKLFALNSNKPLAEKIAKRMGLKLSTSSVVRFSDGEIQVDIDDSVRGKDVFLIQSTSAPVNDNLMELLIMIDAVRRASAASVNIVLPYYGYARQDRKTRSREPITAKLVADMIQAAGADRVLSLDLHAPQIQGFFDIPVDNLMGAPLLADYFLSNHLEEDAVVVSPDHGGVTRARKLAEFLGTSIAIVDKRRPKANVAEVMNIIGDVKGKRAILIDDMIDTAGTITLAAQALKDAGATEVYACATHAVLSGPAADRLNNSVIKSLVLTDSIQQPAEKNLDKMILVSVGPLMGDAIKLIMEHKPMSPLFDTRYDANKYKDK"]}}, {"location": "[299095:300409](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01212"], "locus_tag": ["MAAAAKME_03100"], "product": ["Deoxyguanosinetriphosphate triphosphohydrolase-like protein"], "transl_table": ["11"], "translation": ["MTKFDSPKLAREVVVRDPVHGYIHLDTQVALEVVRSQEFQRMRRIKQLGPTAFVFPGATHTRFEHNLGVYELARRISNLFTDKYPSQSTGDGLWDPSENLLVQMAGLLHDIGHGPYSHTFEHLFGTNHEQIGQQIILDPSTEVNQALSKVDPDFPKAVASVIAKTYPNPQVVKLISSQADADRMDYLLRDAYFTGASYGEFDLSRILRVIRPYEKGVCFTANGMHAVEDYIVSRYQMYQQIYYHRVNRSMEVILHHLLKRAQYLYQEKELPVTPSLARFLAGTWDLQDYLKMDDGVMETNFSMWTESSDPVLVDLTKRYLFRRPLASAKINEESKQLLPQLKDLIKKAGFDPDYYTGVGSAFDEPYDAYKPSGKNANSQIEIMQEDGSLIELSQLSPLVKALNGTLQGDERFFFPVAMLKQADFQQYLKNGESLTKK"]}}, {"location": "[300548:300947](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKIKIDLTSKITQGEQTETIRQQAEGELREDGAVKRIFYEAEKVPVKMLVKEQELLIRRGTDHSNFSQMHFILGEKGQCKYVVEGRQLDLLSETKRLELKENAAGQQLEVEYDLFSGVDLIGSYAVSLIFA"]}}, {"location": "[300992:301562](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpoE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00357"], "locus_tag": ["MAAAAKME_03120"], "product": ["DNA-directed RNA polymerase subunit delta"], "transl_table": ["11"], "translation": ["MGLADFKDVDRNELSMIEVAHAILEDRGERMAFADIVNEVQKYLNKSDEEIRQRLPQFYTDMNTDGRFISMGENVWALRTWFKFEAVDEEVDHPEDDGDEESTRKHHKKVNAFLATTEGDDVIDYENDDPEDEDLSDDSDADEDDADDNSGDDYDDNEDDDDDDSLLDGIEDQLSQMDDDDLDDDEDEE"]}}, {"location": "[301678:303298](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.2"], "codon_start": ["1"], "db_xref": ["COG:COG0504"], "gene": ["pyrG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O87761"], "locus_tag": ["MAAAAKME_03130"], "product": ["CTP synthase"], "transl_table": ["11"], "translation": ["MTKYIFVTGGVVSSLGKGITASSIGRLLKNRGLKVTMQKFDPYINIDPGTMNPYQHGEVFVTDDGTEADLDLGHYERLVDVRTSKYSNVTTGKIYQEVLQRERRGDYHGGTVQVIPHVTNMIKEKVMRAAQMTDTDVVISEIGGTVGDMESTPFMEAIRQMRREVGSENVMYVHVTFVPYLRAAKELKSKPTQQSVSMLRSIGIQPNMLVLRSEMPVPQEMKDKISTFTDVPVDYIVESLDAPSLFDVPLSYQEQGVDQKVVDFLHIDSPKPVADMDEWRRMDERAKNLKYKTKITLVGKYVELEDAYISVTDALHHAGYLYNSKIEVEKIQAEDITEDNVAELLKDTQGLIVPGGFGTRGLDGMITSIKYAREHDIPFLGICLGMQMASVEFARNVLHLEDANSAEAEPNCKNNIIDLMADQRDQEKIGGTLRLGLYPAMLKAGTKTRECYDGQEVIQERHRHRYEFNNKYREDFEKAGMTFSGISPDNHLVEIVEITDKKFFVAAQYHPEFLSRPNRPEGLFKGFIGAASGLQVDKF"]}}, {"location": "[303417:304689](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.7"], "codon_start": ["1"], "gene": ["murA1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H2ZNL3"], "locus_tag": ["MAAAAKME_03140"], "product": ["UDP-N-acetylglucosamine 1-carboxyvinyltransferase"], "transl_table": ["11"], "translation": ["MKKMIIHGGKPLQGDIWIGGAKNSTVALIPASILSRTPVTLESVPRIADVDNLMDLLSEMDVHCDFRETTLQIDPTEIKMSPLPAGKIKSLRASYYFMGALLGRFGKAVVGFPGGDDIGPRPIDQHIMGFQSLGADVRCENEQIVITAPDEGLKGAKIHLKMASVGATMNIIMASVTASGRTVIENAAKEPEIIDLATFLNNMGAKIRGAGTDTIRIDGVDRLEAKVPHTIIPDRIEAGTYISMAACIGNGIRIHNIIAEHLDAFLAKVEEMGVVIDTDEDSLFVYPAGDLRMVQVKTGTYPGFATDLQQPITPLLLTAKTGEGVIIDPIYPKRTRHVPELQKMGAPITVVNNIILVQPGSRLHGAVVHADEIRAGACLMLTGLMVDGETVINNAGNILRGYDRVEEKLRQLGADVVIRDVED"]}}, {"location": "[304788:305040](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0254"], "gene": ["rpmE2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTN5"], "locus_tag": ["MAAAAKME_03150"], "product": ["50S ribosomal protein L31 type B"], "transl_table": ["11"], "translation": ["MKKGIHPDYQEVCFMDAATGFKFVAGSTLKSSETVEFEGNTYPLIRVEISSDSHPFYTGKQKFAAADGRIERFNKKYGFNKKN"]}}, {"location": "[305147:306515](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0770"], "gene": ["murF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P11880"], "locus_tag": ["MAAAAKME_03160"], "product": ["UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D- alanine ligase"], "transl_table": ["11"], "translation": ["MKMQLAEIAQALNTSCEGDAETVITSVAFDSRKISQGALFIPIKGERDGHDFVGSAIEAGASATLWEAGNPNKPEGIAVLEVADTLKAMQDLARYYLQKVNPTVVSITGSNGKTTTKDMVAAVLAKRFNVYKTQANFNNEIGVPMTILEMKPITEILVLEMGMDRAGQLHELSQLARPDVAVITMIGEAHIEFFGSRDKIADAKMEITDFLQEDGEFIYNGDEPLLAERAAKLPQDKSTFGFADSDSIHASDLRSTMHHSFFKINGTDREFSIPMIGRHNVANAMAAILVGRHFGESDEEIAAGLANFVPTANRMEWEKGDCGEDIMSDIYNSNPTAVKAVTASFGQVPVSEDGRRIAVLADMLELGSRSADLHKGLAACLDPDKINVLYLYGPEMNHLYQALLDKYGQQNLHYYPEDEMSHLIDDLKSDIHSQDIVLLKGSHGMHLERVLDRLK"]}}, {"location": "[306524:307976](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0513"], "gene": ["cshA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y8N0"], "locus_tag": ["MAAAAKME_03170"], "product": ["ATP-dependent RNA helicase CshA"], "transl_table": ["11"], "translation": ["MKFTELGLNDNILKAIKRSGFEEATPIQAQTIPLALAGQDVIGQAQTGTGKTAAFGLPILQKLDLDKQEQAIQAIVIEPTRELAIQTQEELFRLGRDEKAKVQVVYGGADIGRQIRDLKKVPEILVGTPGRLLDHLKRKTIKLDGVKTVVLDEADEMLDMGFIQDIESILTYAENRDQTLLFSATMPKPIQALGEKFMHDPQVVKIQAKQLTADLIDQYFVRVRENEKFDTMCRLIDVENPDLAVVFGRTKRRVDELTRGLVARGYNAAGIHGDLTQARRMQVLKRFKEGELDILVATDVAARGLDISGVTHVYNYDIPQDPDSYVHRIGRTGRAGKSGMSVTFVTPNEIGYMRTIEDLTKKKMSPLRPPTDAQAFAGQMKQAVLKVDDLLSGDLSKYDDAAEKLLENYSAEDIAAALLKELSNDSEVKVTITPENPHPYRGKHSGGRGRGSRSRSGNKNFKGKRNFDRKKRKPGFKIHGRKG"]}}, {"location": "[308060:308474](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.7"], "codon_start": ["1"], "db_xref": ["COG:COG0736"], "gene": ["acpS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A2W7"], "locus_tag": ["MAAAAKME_03180"], "product": ["Holo-[acyl-carrier-protein] synthase"], "transl_table": ["11"], "translation": ["MIKNIGVDQIEVDRIAKVVDRGDGFARKVLTDREFAQYQDLTHKRKIEYLGGRFAIKEAFSKAWGTGIGQAVSFEDVETLRTESGAPVTTSRIFTGRIFSSIAHDDHEIVAVVVLEEPAGWRRAIGKLLHLLSGRKK"]}}, {"location": "[308470:309601](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.1"], "codon_start": ["1"], "gene": ["alr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S5V6"], "locus_tag": ["MAAAAKME_03190"], "product": ["Alanine racemase"], "transl_table": ["11"], "translation": ["MITAVNRPAALHINLAAIKENTRQAKAHLKPGQKLFCVVKANAYGHGAARLAPVMEEAGADGFCVAMLDEGLELRRAQIVKPILVLGLQPAEEAALAAANDISLPVSSLDWLKKAEKVLRKEGLQLKIHLAIDSGMGRIGFSEDEDFKAVNEYLQGNDAFFVEGMFTHFASADSADASYFDYQVKRFKHMESLLTVKPKWIHVDNTAAILFDKDVASDIVRFGIGLYGLNPSSAPGSRDLEPAFALKPAMSFVSELTYVKQIHKGYGVGYGSTHIAEEDEWIGTVPVGYADGWIRKFQGFKVKVGDTYCPIVGRVCMDQFMVLLPKEVPAGTPVELISADPAAPNSLRRAADWLDTIHYEVACQFNDRLDRIYDNE"]}}, {"location": "[309654:310353](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLIKSLVIKKDYLTTVNEHATLEEALKVLESSGYRCVPILDDSGKIFRGNIYKMHIYRHKSQGGDMSLPVTYLLKNATKTIKINAPFFQVFFTIKDLPYIAVLDTDNTFYGILTHARLLDMLSSAWNIKTGAYVLTVLSTNDSGNLTKMTKIIAKFVNLAGAMTLDAPASEFDGKYVRRTLFTLPQGTTETELKAICKKLKAKGFPVVAVEDLAAGMNIMSEEKPGVFLNEE"]}}, {"location": "[310576:311134](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.29"], "codon_start": ["1"], "gene": ["pth"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:B5XIP6"], "locus_tag": ["MAAAAKME_03210"], "product": ["Peptidyl-tRNA hydrolase"], "transl_table": ["11"], "translation": ["MKLIVALGNPGLKYEKTKHNTGFMALDHYLDEKGLRLDRDKFTALYAKEKVAGEDVIFMEPQTYMNESGRAVGAAAKFFKIDPSDILVIHDDMDMPIAKLRIRAGGKSGGHNGIKSIIACLGTEKFNRLKIGIRHPDKQSVVSWVLTPFNPDQQKELEASFAKVDQIIDDFIAGKDAQYLMNRYN"]}}, {"location": "[311150:314627](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "gene": ["mfd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A7B2"], "locus_tag": ["MAAAAKME_03220"], "product": ["Transcription-repair-coupling factor"], "transl_table": ["11"], "translation": ["MQVIDFLKKDQGVTAFIAKTSRIKNSLLTGVERGAFAVLIQAYLAQVGQPLLLIEENEYKAQERHNDLSRLLADDDLELFVLDGNLATQTAVSSPDELSSRIQCLNLLLSGRPGVVIATPQGLQYPLSAPALFKKGQKHFAVGDEIALPDLAQWLNQAGYHRENLVVKPGEFAMRGDIVDLYPLDRESPLRLEFFGDEIDTIKTFDLTSQRSLEELPEATVPAASDHVFTAEDLDRAGRELAGDLPKEAAASLEIAQEALANGQLPDDCNRYLDYLLSKSFSLLDYLPAKGLLLFNDWQLIAESVKNMGAINDDYLASQIASKMMTSRQKLRLDFDAVLKADCHHRLYVSLMAHSMGRLRFGQHLAWDSREPQQFFSQMELLKTELDSYAKKGQTVVLQVSSRRQAEEFNRSCHDYDIYLPLAEADGLKEGRAQLVIGGYASGFVLPDSDLVYLTEKELFNQNKRSKKRIKTLENAQRLRSYTELKPGDYVVHVNHGIGRFEGIQTLETDGKKRDYITITYQKGDQLFVPDDQLSLVQKYVASEGKQPHINKLGGSEWAKTKKRVAARVEDIADDLIELYAKREAEKGFAFSPDGSDQAAFEAAFPYEPTPDQLRATAEIKADMEKAKPMDRLLVGDVGFGKTEVAMRAAFKAICDGKQVAFLVPTTILAQQHYQTIKDRFKGFPVEIASFSRFQGQAESKKIVAGLKDGSIDLVVGTHRILSKDVQLKDLGLLIIDEEQRFGVAHKEKLKQLKTNIDVLTLTATPIPRTLHMSMIGIRDLSVMETPPQNRYPIQTYVLEQLPGTVKEACQREMQRGGQVFYLHNRVGDIEETVARLEQLLPEARIAYAHGQMSENQLEDILSRFLDREFDILVTTTIIETGIDMPNVNTMIIEDADHYGLSQLYQLRGRIGRSARLAYAYFLYQPNKVLTEVGEKRLDAIRDFTELGAGFKIAMRDLSIRGAGNMLGAQQHGFIDSVGYDLYSQMLADAIKERQGKKPVKKSNAEVDLGLEAYIPEDYIADQEQKIEFYKKIKGIGSLQNREDIEDELLDRFGDYPAAVENLLNVASLKASCDLAQILTLVKEKAQIRVIFSDSGSREMEGPNIFKALEHVSWKARIALGAQNRLVVTLLLPDKLTRRAMFTELGTFAKDAAEIIQR"]}}, {"location": "[314695:314938](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIDKFLKISRLVKRRTVAKEMADQGRVSVNGKTVKSSYNVVVGDVIAVAYGTRVIKARVLDLRETTKKAEAGDLYELVD"]}}, {"location": "[315003:315384](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsL_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00910"], "locus_tag": ["MAAAAKME_03240"], "product": ["Cell division protein FtsL"], "transl_table": ["11"], "translation": ["MGNNRGNQQNVTPLRPDQDVRRLKKRQIKFREVHRVRRNRLLALILLVFAVLGFQLAMTKARTAKIQKQVSQNQATLTKIKKNKEKLTNERDDMKDSDYVAKVIRYKYKYTKDGERVYNIKEKGDN"]}}, {"location": "[315383:315737](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.8"], "codon_start": ["1"], "gene": ["pnp"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01595"], "locus_tag": ["MAAAAKME_03250"], "product": ["Polyribonucleotide nucleotidyltransferase"], "transl_table": ["11"], "translation": ["MNYKVGQRLDGVINNVTDLGIFVTLPKHKSGLVHRNDFGSDWPRKRQHWQAGDQVRVVVQNLRKGRLDLSIRRVNDPDLIDPTNQFSQLRAGDFARVLNQVDQEARAEIEQLEAALK"]}}, {"location": "[315783:317079](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.19"], "codon_start": ["1"], "gene": ["tilS"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01161"], "locus_tag": ["MAAAAKME_03260"], "product": ["tRNA(Ile)-lysidine synthase"], "transl_table": ["11"], "translation": ["MDIKKRLSAFFAEEGLPLEGNFLVAASGGPDSMALLDLMRRLPGGFQLYAAHLDHQLRADSQKESQVLRAYCHKYQLPLYESVWPKSLHPESGLEAAARDYRYNFLFEVARQVKADYLLTAHHGDDLLENILLKLVRSGIPREMNSLKPVSQRGQVKLVRPLLAVGKADLLAYAKKQGLEYVEDETNFTGITARNRLRQEVVPLLKKESPDLLENAWRFSQEMTAEEDYFAQAAGKLPEPEPFFGGWRIPKAAGQAESELVKAYLENFIQKKYNKRVQLDRILLANRQSQEKGGLHLSFYQGHYWLYPVKQPAPSPLEEVVAGQPFFFRGNCYLLSEEKREESPLAEISFPGKLSAGSLPNGQRLLLKDGRRTKSKKLFAAAGIPLALRGNCLSLFAGQEAVYVAGCYQQAVKEGKRPLYLYQVKTCKKGR"]}}, {"location": "[317149:319363](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG0465"], "gene": ["ftsH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q88Z31"], "locus_tag": ["MAAAAKME_03270"], "product": ["ATP-dependent zinc metalloprotease FtsH"], "transl_table": ["11"], "translation": ["MKNNRNRLFSNGLFYIVVFLLLLWGINWVLGGSSNSGATETISYSEFVKKLRNGEIKDFNVQPSNGVYSVTGSYKSSQTKSSSSSDIFGGNTSSKVTGFSTTMLENDPSVKKVQDLAQSENVKMSTQGESQSSNWISTIIMLVPTVLFIVLMVMMMNQGGSRGQGGGIMNFGRSNVKPQDPKKNKVRFDDVAGEEEEKQELVEVVEFLKNPARYTKLGARIPSGVLLEGPPGTGKTLLAKAVAGEAGVPFFYISGSDFVEMFVGVGASRVRDLFTNAKKNAPSIIFIDEIDAIGRKRGNGQGGSNDEREQTLNQMLVEMDGFEGDEGVIVMAATNRSDVLDPALTRPGRFDRKVLVGPPDVKGREAILRVHAKNKPLADDVDLKEVARQTPGFVGADLENVLNEAALVAARRNGTKITAADIDEAEDRVIAGPAKKDRMISKKERERVAFHEAGHSICGLVLSDSRTVRKVTIVPRGRAGGYNIMLPKDDQFILTKKQLFEQIVGLMGGRAGEEVVVGDQSTGASNDFEQATTIARSMVVNYGMTDELGMVELEKEGEGTPYGFKPYSEATAAKIDEAVKKILDEAHAKAVEIVENNREKHRIIAEALLKYETLDEKQIYSLYKTGKMPEKSSEEFPSEAKALSYEEAKEAAQKRAEEKAEEDTAEKQALATPSEDAVKPETDAAKLAEPDASASQEDPVDSLPTPSESDLSKDPEKDDNDAPSQKTEQTDDSDKDE"]}}, {"location": "[319407:320289](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hslO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99082"], "locus_tag": ["MAAAAKME_03280"], "product": ["33 kDa chaperonin"], "transl_table": ["11"], "translation": ["MNDYLIKAINASKDLRLLTINGKDLVAEAQKRHDTWSASSAVLGRSLLGTLLLAGAELKGDQELTLRLLGDGPVGAAVVTAKSDLTVKGYVQNNHVALPAREDGHIDVKKAVGKGWLQVTKDLGLKQPYTGEVPIVSGEIAEDLTYYLAKSEQIPSAVGLSVFVNPNDTIGAAGGFLLQALPGASEELLQETEDRIKALPQLSSAFLDGMTPEDLAKKILGDDCKILEKDEVSYHCDCSKEKYAGMLETLKGSQLKEMIDEDHGAELVCNFCGNKYNFTEAELQAILDKKLGK"]}}, {"location": "[320742:322368](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_03290"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MTLKKITAAGLLTASALVLAACGQQKSSQSQTKQVLNWIESAQISTQDPSLTTDSTSFQALLNTQEGLYRLDKKQKPQLALAKSAKVTDGGKTYTFVLRDAKWSNGQAITANDFVYSYRRSLNPKTKSSMAFYLYQIVNAEAINAGKKPVSSLGVKALSKNKLQIKLVRPVSYFKLLLAFPLFFPENQQFIEKVGSKYGTAAKYTISSGPFKLTKWTGSNKQFTLVKNQNYWDKKNVKLDKVNETISETSSTAYNLYQAGKLDETYLTGEQVKANKGKSTFYDQPASAIQRLELNRKKVKAFNNFNIRRALSLAIDRESLAKVLSDGSVAAKGFVPSGMGNNPTTGEAFYKEAYVKEAVSYNLKEAKKYLAKGYKELGIKSLNLNLTVSDTDSAKQVGEFLQSKLGELPGVKITVTILPYTTLISRQSAGNYQLTIKNWQAILGDPINFLDVFEKDSSYNTSGFASSKYDQLLNEAENVYGNKPVQRWKRLVAAEKLLMNEQGTIPLIQTAKPQLVQSYVKNVSYNPLGIPYDFKLVYIKK"]}}, {"location": "[322377:323664](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.4"], "codon_start": ["1"], "db_xref": ["COG:COG2195"], "gene": ["pepT_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81WU4"], "locus_tag": ["MAAAAKME_03300"], "product": ["Peptidase T"], "transl_table": ["11"], "translation": ["MAFSDFDFLEKNFIHYAKEDTQSKYANKDQVPTTPNQVKMMKELADQVKDYDLESYYNEKTAFAIGHLAANTAGVAPIGFFAHVDTVEFDDRFPIRPQVHRDYQGQKLALDEANGIFLDPEEFPDLLTLKGQTLITSDGKTVLGTDDKAGVAGLLAALKYLHEHPEVEHGDIYVAFGPDEEIGLGGQRFDPADFPGVEFAYTLDNGRPGDFEYETFNASAADLTIKGTVVHPGEAYGLLVNATTIMTEFLAALPQDQVPEKSRGHEGFIMVTDAQSSVDSAHVGLIIRDFDWDEFLAKEDLVKKLVASLGEKYGPDRFQLDLRRQYENIYNGVKDRPYVVNLALDSYEKAGLAPNVQTFRGGTDGNFITKKGIPTPNLFNGGGNYHGRYEYVTVEQMDKLAEVLVTIADEHARQSKEGQDKRPLEKYW"]}}, {"location": "[323777:324812](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0042"], "gene": ["dusB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0ABT5"], "locus_tag": ["MAAAAKME_03310"], "product": ["tRNA-dihydrouridine synthase B"], "transl_table": ["11"], "translation": ["MAMDTTWKIREIEIPNRVMVAPMAGVSNMAFRKVCKEFGAGMVVCEMISDHGIIYGNKKTLSMLDVDPGEHPMSIQIFGGAEDSLLQAAQYIDQHTDADIIDINMGCPVPKVTKTDAGSKWLLDSNKIYQMIHKVVHNVEKPVSVKMRIGWDRKHIFAVENALAAQEAGASMLAMHGRTRKQMYQGEADWETLHEVAQVMDIPFVANGDITTPQLAKKALDEIGCTAVMVGRAALGNPWILKEMTHYLATGEELPKQSVREKVETAKHQLDGLVQLHGEKRAVPEFRQQAAYYLKGIPRSARTRAKINEVWTRQEVFDLLDEFVEICEKRARQKQDRVADTQSM"]}}, {"location": "[324828:326334](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.6"], "codon_start": ["1"], "db_xref": ["COG:COG1190"], "gene": ["lysS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97RS9"], "locus_tag": ["MAAAAKME_03320"], "product": ["Lysine--tRNA ligase"], "transl_table": ["11"], "translation": ["MAKNEINDQLLVRRQKLEELKEMGIEPFGRKYDREALARDLDEKYLGLDKDELNANMPKTKIAGRMLAKRGKGKVGFADLYDRSGKIQIYVRKDMVGEENYQIFKKADLGDFLGVEGEVFKTDSGELSVRAQHVTFLSKALRPLPDKYHGLKDVESIYRQRYLDLITNHESYQRFVNRTKIIQAIRDYLNGQDFLEVETPVLHNIPGGAEARPFITHHNALDINLYMRIALELPLKRLIVGDMERVYEIGRVFRNEGMDLKHNPEFTELETYAAYYDFHDVMDEAEGIIRAAAKVVSEDGKINYQGTDLDLGKPFRRVHMVDLIKELTGVDFWQPMTLEEARKVAAEHHVEVEPYWQVGHIINAFFEKFGEKTIVDPTFVYGHPVEVSPLAKKNADDPRFTDRFEIFIMGNEYGNAFSELNDPLDQRERFEAQMAERDAGNDEADIIDEDYLRAMEYGMPPTGGLGIGIDRLVMLLTNAASIRDVLLFPTMRPEKNINLDK"]}}, {"location": "[326455:326890](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRAAIRKGEFLPIYKYLLSILTTISALAGAFLAASSGLPAYLAGHPLKAGIFAVLCLLEGLSAYLLWRPGKRALGVLNGGLLAAALLLFWQGEGLAAGSALALLAINYLLKREETWAWTLALVLNLVFAALTMLPHQFMSFPAA"]}}, {"location": "[326907:327663](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLDKINYYGVSRADYQACQEQIDRHATTYLVFVVLVAVLLTDKFWTTGAFYLAMLLVFSFCSYYFKGPIMWELDSFNGLTFTLVALALNYIVQRERIASFLLFNKYKENQRELRVQANFDYLSGVILRSTFMDLSQKAIEQPECTDFFIGLVDIDYFKQINDNYGRRMGDLAIQRLSQCLEKGLEVDYRDLADFVEKFDPAKDNVLARLGSDEFVFACHCPSEAACLEKMQGLQAAFAKEEIALDGQRLS"]}}, {"location": "[327928:328147](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISWFLFALFSKKRIDIFPKASILKTKLKTDEERRTEMEFAAKNCQMQVMPMNMLMSSMPFSVEANTCGSPS"]}}, {"location": "[328410:328572](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.-"], "codon_start": ["1"], "gene": ["metZ"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02056"], "locus_tag": ["MAAAAKME_03360"], "product": ["O-succinylhomoserine sulfhydrylase"], "transl_table": ["11"], "translation": ["MSKEAISNEGLSFETLQVHAGQPIDETGARAVPIYQTTSYVFDDADQAAGPLP"]}}, {"location": "[328528:329701](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG2873"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WZY4"], "locus_tag": ["MAAAAKME_03370"], "product": ["O-acetyl-L-homoserine sulfhydrylase"], "transl_table": ["11"], "translation": ["MSLTTLTRQLALCLDRRLQHLQPFDNPTTAVFESRVAALEGGTGGVSLATGAAAITAAILNVAGAGDEIVAASTICGGTYDLFAQTLPPLGIKTHFVDPSDPANFEKEINDHTKVGYAETIGNPNANLIDIDAVAAVAHKHGVLVIIDNTFATPYLYRPFEHGADVVVHSATKFFGGHGTTMGGVVVESGKFDYEKSGRYPTFTNPDPSYKDVTWAKLGAGAFTTKIRATVLRDTGASLSPFNAFLLLQGLESLSLRVERHVYNAQRVSEYLSKHPKVAWVRYPGLADSPDHAMAERDFPKGVGSIFPFGLKGGEEAGKQLIDNLKLFSLLANVADAKSLIIQPASTTHAQLNGEELASVGITPDLIRISVGVENIDDLLADLDQALAKL"]}}, {"location": "[329763:330372](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKKRLLAACLALALLPLLSSCSMISDYTLDLKSKLVGIPFTVSTYDYDGQKIDQIKGKSVYIETYKPMSKENSSGDEQSKVIDVEFGGQQMIHVGSSLIANEGLRNYEDTFSKKVTITDKQRSIPVLSIMYNNFRNDWLSKGKVIMIRSQAGKPIAVYAGNKVRVSATDMPSTTQINVDGHRLFIYRCDYSIYDMETIKKM"]}}, {"location": "[330507:330579](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03390"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[330582:330658](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03400"], "note": ["tRNA-Pro(cgg)"], "product": ["tRNA-Pro"]}}, {"location": "[330765:330837](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03410"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[330995:331457](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.4.14"], "codon_start": ["1"], "db_xref": ["COG:COG1956"], "gene": ["msrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76270"], "locus_tag": ["MAAAAKME_03420"], "product": ["Free methionine-R-sulfoxide reductase"], "transl_table": ["11"], "translation": ["MAAASQAEYELLLEQAKALTAGESDWIANAGNVSALLKAGMRNVNFAGVYRFEKGELILGPFQGMPACVHIQLGKGVCGKAALEKKTQIVANVHDFPGHIACDSASNSEIVVPVFNRDGSLWGVYDFDSTNLDNFDDLDQKYLEQIAAVALGN"]}}, {"location": "[331480:333940](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["clpC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A797"], "locus_tag": ["MAAAAKME_03430"], "product": ["ATP-dependent Clp protease ATP-binding subunit ClpC"], "transl_table": ["11"], "translation": ["MQNSYSKSSRQVLEIAQEQAKEFHHRLVGTEHVLLALVIEADGKAGKILRTMNVTPTGVREEIERYTDYGSAAPTSYMEFSPRLTLALDYAKRNSELRSSKEIETTDILQALVSSEQILSAMILRNLDVDLENLKDELDDANQVTGESSQTSRPDAAGSSQSQTPILDRFGIDLNRRAKEGDIDPVIGRQRELDRVIHILSRRTKNNPLLVGEPGVGKTAVAEALASAIVAKKVPRDLADKRVVSLDVNSMVAGTRYRGEFEERMDRLIKEVTASKNVILFVDEIHSLVKAGDAEGAMSASNTLKPALARGDIQLIGATTFEEYRKHMEKDSAFVRRFQLVRLAEPNEEETLQILHGIKDKYEDYHRVALSEEALQAAVDLSSHYIADRYQPDKAIDLIDEASAAVKLANDTGEDKDLAEIDLEISRTLKQKNDEAAKQNFAQAAKLRDQEIALRQKRNEIAKKLAGKDEKRSVVGAEDVAKVVSIWTGVPVTQLKTSENKRLAHLEGILHERVIGQDDAVKAVANAIRRSRSGLKDENRPIGSFLFLGPTGVGKTELAKAVAEAVFGSEDNIIRVDMSEYMDRESSSKLIGSAPGYVGYEEGGQLSNKVREHPYSVVLFDEVEKANPEIFNVLLRVLDEGFMTDSLGRKVDFRNTIIIMTSNLGSRSLEADSHVGFSASQEDQGKLIAEKVTRATKDFFRPEFLNRIDEKIVFKPLEAKQLRKIVTLLTRKLVKRLAEKDITLRLSPAALDQLAKDGYNPEMGARPLRRTIQDEVEDELAQDLVSEKLQAGDTVKIGARGGKLRFEIVKAKTGEKIKG"]}}, {"location": "[333964:334153](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFGKKNKAEAAKAEKEASKKTDGRILLYSDIIDALYDEMPRESGRPCWKLSSSWNRRSTWAR"]}}, {"location": "[334152:334308](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRDLRIALEPVAIKSQLSPQGKQIFWNITAGGYQLTGVGLASQAAMLFSGR"]}}, {"location": "[334509:338184](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "db_xref": ["COG:COG0085"], "gene": ["rpoB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37870"], "locus_tag": ["MAAAAKME_03460"], "product": ["DNA-directed RNA polymerase subunit beta"], "transl_table": ["11"], "translation": ["MFSLLNGHVVNYGQHRTRRSFSRIKEILPLPNLTDVQTESYKWFLDEGVKEVFDDILPISDTSGRLTLEYVDYKLQEPKYTVDESRKHDATYSAPMHVTLKLTNHETGEIKTQDVFFGDLPLMTKSGSFIVNGAERVIVSQLVRSPGVYYSGEFDKNGRQIFGTTVIPNRGAWLEFETDAKNISYVRVDRTRKLPLSVLVRALGFGSDSEIKEIFGDSDTLDLTLDKDVHKNPADSRVAEALKDIYDRLRPGEPKTTDSSRSLLVSRFFDPRRYDLAAVGRYKVNKKLSLKNRLLGYTLAETLADPGTGEVLAAKGTVVNNEVMDVLKDYLDRDDFKTVTYTPSDEGVIPEPVTVQEIKVFSREIPDREIKLISNGHIAEDVKCITPADIIASVNYFLELQEGVGNIDDIDHLGNRRIRRVGELLQNQMRIGLARMERVVRERMSIQDAATVTPQQLINIRPIVGSIKEFFGSSQLSQFMDQNNPLGELTHKRRMSALGPGGLSRDRAGYEVRDVHYTHYGRLCPIETPEGPNIGLINSMATYAIINKYGFLETPYRRVSWATHKVTDKIDYLTADEEDNYIIAGANTPLNEDGSFVDDVILCRHREDNVEVSPDRIDYIDVIPKQVVSVTSACIPFLENDDSNRALMGANHQRQAVPLINPHGPLVATGMEYRAGHDSGDALLAEADGEVEYVDANEIRVRREDQTLDTYTLEKYRRSNATKNYNQTPNVKRGDKVVDGQVIANGPSMADGELALGQNPVIAFTTWNMYNFEDAIMLSERLVKEDVYTSIHIEDYDSEARDTKLGPEEITREIPNVGEDALKDLDENGIIRIGAEVHDGDILVGKVTPKGITELSAEERLLHAIFGEKAREVRDTSLRVPHGGGGVVQDVQVFTREAGDELAPGVNTLVRVYIVQKRKIQVGDKMSGRHGNKGTVALIAPVEDMPYLPDGTPVDICLNPMGVPSRMNIGQLLEIHLGRAARALGIHVATPVFDGASEDDVWDFVREAGVDSDGKTVLYDGRTGEPFHNRVSVGVMYYLKLTHMVDDKIHARSIGPYSLVTQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQEILTYKSDDVVGRVKAYEAIVKGERITKPGVPESFRVLVKELQSLGLDLRVLDSDENEVELRDMDEDSNEHVNIDALSRLAEAQEKKKLAEEEAEIAAEAEAEGSAEGDAAEADADANEAETADDDKASK"]}}, {"location": "[338199:341865](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "db_xref": ["COG:COG0086"], "gene": ["rpoC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37871"], "locus_tag": ["MAAAAKME_03470"], "product": ["DNA-directed RNA polymerase subunit beta'"], "transl_table": ["11"], "translation": ["MIDVNKFESMQIGLASPNKIRSWSYGEVKKPETINYRTLKPEKDGLFDERIFGPTKDYACACGKYKGVRYKGIVCDRCGVEVTTSHVRRERMGHIELAAPVTHIWYFKGIPSRMGLVLDVSPKQLEEVIYFAAYIVIDPGDTGLEAKQLLTEAEYREEKAKYGNRFVAKMGAEAIRDLLKQVDLDKEVTALKAELQTLKGQKRTRAIRRLDILDAFRNSGNKPEWMVMETVPVIPPDLRPMVQLEGGRFATSDLNDLYRRVINRNNRLKKLLDMHAPGLIVQNEERMLQEAVDALIDNGRRGRPVVGPGNRPLKSISHMLKGKQGRFRQNLLGKRVDYSGRSVIDVSPELKFYQCGVPRPMALELFRPFVMRELVRRGIASNIKNAKRKIDREDDDIWDVLEYVIKERPVLLNRAPTLHRLSIQAFEPVLVPGKALRLHPLACEAYNADFDGDQMAIHVPLSDEAVAESRLLMLAAHHILTPKDGTPIVTPSQDIVLGNYWLTQAEIGREGEGMIFATPEEATIAYNNGDIHYHTIIGVSAASMPKKDWGAGHEDSVFVTTYGRLVFNSLFPDDYFYINEPTQDNLKQPMADKYFLEDGQDIQDKIAEIGQDLVATPFKKGFLGDTISEIYKRYRVQRTSEYLDDLKEMGYSASTISGLTIGMADIPETKTKDALVAEARKQVKQVSKMFRRGKLSDKERHDNIIKIWTDCKDAVQQEIAEFKDQKNPISVMQQSGARGNISNFTQLAGMRGLMATPSGELFEIPVISNFKEGLTVLELFMSTHGARKGMTDTALKTAQSGYLTRRLVDVAQDVIIREDDCGTDRGITAKAIVDKDAGLIESLYDRLVGRFTNRTIRDPQTGEVICSKGVLMDEQMAQKIVDAGVQEVQIRSILTCNTSHGICRKCYGRNLATAEEVEIGEAVGTVAAQSIGEPGTQLTLRTFHTGGVAGAEDITQGLPRVQELFEARNPKGRAVISEVDGVVDKIESNAAEHLQEITVKGKIDTRVYTIPYTAKPAVQEGDEIHRGDKLIPGSIDPKELIKVTDTLTTEEYILAEVQKSYRTQGVDLADKHAEVLTRQMLQKVRVLDPGETDILPGEVMDIAEFRDRNRDVIISGGIPATAQAYILGITKAALETNSFLSAASFQETTRVLTDASIRGKNDPLLGLKENVIIGKIIPAGTGMPIYRDQVPKADVQQPDSVYSIADLEKKMEDENKETESK"]}}, {"location": "[341932:342493](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSEMISLLCGLLAALIADRYRYNTFLECKSRLADDIPYIILTGNLLVYLISNSRSSAISLLFIINFFLMVVSDLHEQSFDTCLLVVPLATGLMHFFQASNTEGLGQAAIFLAVLVWLAFTGKMGSGDVWHFLLLSLNFSCPVAVKSFLLASLLAIAHALWHKRPGKDPFAFLPYLFWGLNLQFFL"]}}, {"location": "[342676:342787](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNELGIKGEDQYAVTLNGAISRKASGEIMTSDLIAN"]}}, {"location": "[342783:342945](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKLVAIDTDGTLLNSQGEIQDSTKEAISKALDRGVKVRPLFRPANRGPWPLT"]}}, {"location": "[343208:343616](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0048"], "gene": ["rpsL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RP74"], "locus_tag": ["MAAAAKME_03510"], "product": ["30S ribosomal protein S12"], "transl_table": ["11"], "translation": ["MPTINQLVRKGRHSKTTKSKSPALNYSYNSMKKEQVFNPAPQMRGVATRVGTMTPKKPNSALRKYARVRLSNLTEVTAYIPGEGHNLQEHSVVLIRGGRVKDLPGVRYHIVRGALDTAGVDGRKQARSKYGAKKG"]}}, {"location": "[343631:344102](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22744"], "locus_tag": ["MAAAAKME_03520"], "product": ["30S ribosomal protein S7"], "transl_table": ["11"], "translation": ["MPRKGHVSKRDVLADPVYNSKLVTKLINHLMKDGKRAQASSILYDAFDIIKDKTGREPMDVFEEAMNNVKPVLEVKARRIGGSNYQVPVEVRPERQTTLALRWLVSYSRLRNEHTMDERLANELIDASNNTGSAVKKREDVHRMAEANRAFAHYRF"]}}, {"location": "[344135:346220](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0480"], "gene": ["fusA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80868"], "locus_tag": ["MAAAAKME_03530"], "product": ["Elongation factor G"], "transl_table": ["11"], "translation": ["MANKREFSLEKTRNIGIMAHIDAGKTTTTERILYYTGKIHKIGETHEGDSQMDWMEEEKERGITITSAATTAQWKDHRINIIDTPGHVDFTIEVERSLRVLDGAVTVLDAQSGVEPQTENVWRQAENYGVPRIVFVNKMDKIGANFDFSVKSLHERLNANAIAVQMPIGAEDQFEGVIDLFDMVADVYDEDKLGAKWETIPVPDEYKEEAESRREEMIEEIAEVDDDIMEKFLGGEEISNEELKAALRRATLDLKAFPVFAGSAFKNKGVQMMLDGVVDYLPSPLDVKPYIAHDKEGNEVELLADDNKPFAALAFKIATDPFVGRLTFIRVYTGSLKSGSYVLNASKNQRERVGRLLQMHANSRTEIPEVFSGDIAGAIGLKDTTTGDSLTDPAHPLILESLDIPAPVIQVSVEPKSKADRDKMDVALQKLTEEDPTFRAETNPETGETLISGMGELHLDIMVERMKREFNVEATIGEPQVAYRETFTVPTQAQGKFVRQSGGKGQYGDVWIEFTPNEGKGYEFEDAIVGGVVPREYIPSVDAGLQEAMKNGVLAGYPLIDVKAKLYDGSYHEVDSSEAAFKVAASLALKNAASKAGAVILEPIMKVQVIAPEEYLGDVMGSITARRGQMEGMEDRAGAKVINAMVPLSEMFGYATTLRSSTQGRGTFTMVMDHYSPCPKSIQAEIIKKRGGNA"]}}, {"location": "[346606:346915](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0051"], "gene": ["rpsJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21471"], "locus_tag": ["MAAAAKME_03540"], "product": ["30S ribosomal protein S10"], "transl_table": ["11"], "translation": ["MANEKIRIRLKSYEHSILDESGAKIVDTAKRTGAEISGPVPLPTERTLFTVLRSPHKNKDSREQFEMRTHKRLIDILNPTPKTVDSLMKLDLPSGVDIEIKL"]}}, {"location": "[346940:347570](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0087"], "gene": ["rplC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42920"], "locus_tag": ["MAAAAKME_03550"], "product": ["50S ribosomal protein L3"], "transl_table": ["11"], "translation": ["MTKGILGRKVGMTQIFTKDGVLVPVTVIEATPNVVMQVKTVENDGYEAVQLGYQDKREVLSNKPEKGHADKAKTSPKRFIRELRGVELSDYEVGSEVTVETFKEGDVVNVTGTSRGHGYQGNIKRHHQSRGPETHGSRYHRIPGSMGSIINRVPKGKKLPGHMGVKTVTIENLVVEKVVADKNVLMIKGNVPGAKNSLIVVKSSAKASK"]}}, {"location": "[347584:348202](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0088"], "gene": ["rplD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42921"], "locus_tag": ["MAAAAKME_03560"], "product": ["50S ribosomal protein L4"], "transl_table": ["11"], "translation": ["MANFKLMDQNGNNAGEVTLNDNVFSVEPNEAVVFDAIIRQRAGKRQGTSKVKNRSAVRGGGKKPWRQKGTGRARQGSIRAPQWRGGGVVFGPTPRSYAYSMPRKQRRLAIKSVLSQKLLDQNLVVLDKLTMDAPKTRDFVAILNGLKLEGKVLVVSDDKNVQLSAKNLPKVKVVPVNGLNVEDAVNYDKLVLTQDDVKKIEEVLA"]}}, {"location": "[348201:348498](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0089"], "gene": ["rplW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42924"], "locus_tag": ["MAAAAKME_03570"], "product": ["50S ribosomal protein L23"], "transl_table": ["11"], "translation": ["MDARDIILRPVITEKSADLMDSKKYTFDVALTATKLQVRDAIEEIFDVKVKSVNIMNVRGKEKRVGRYTGKIARRRKAIVALTEDSNDIKIFKDENNE"]}}, {"location": "[348523:349360](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0090"], "gene": ["rplB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNQ2"], "locus_tag": ["MAAAAKME_03580"], "product": ["50S ribosomal protein L2"], "transl_table": ["11"], "translation": ["MAIKVYKPTSNGRRNMTSSDFAEITKSKPEKTLLASKSKTAGRNSYGHITVRHRGGGHKQQYRIIDFKRTKDNVKAKIVAIEYDPNRSANIALLHYTDGTKAYILAPKGLTVGSWVESGVDADIKVGNALPLKNIPTGTEVHNIELKPGKGGQIARSAGTSAQVLGVDGKYTQVRLQSGEVREILSECRATIGAVGNEQHSLINIGKAGRSRWMGKRPQSRGSVMNPNDHPHGGGEGKAPVGRPQPMTPWGKKSRGIKTRDSKKASEKLIIRHRKGRK"]}}, {"location": "[349377:349653](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0185"], "gene": ["rpsS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNQ1"], "locus_tag": ["MAAAAKME_03590"], "product": ["30S ribosomal protein S19"], "transl_table": ["11"], "translation": ["MSRSIKKGPFADAHLLKKVDEQQAAEKKQVIKTWSRRSTIFPSFVGLTIAVYDGRKHVPVFVTEDMVGHKLGEFVPTRTFRGHKADDKASK"]}}, {"location": "[349674:350028](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0091"], "gene": ["rplV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42060"], "locus_tag": ["MAAAAKME_03600"], "product": ["50S ribosomal protein L22"], "transl_table": ["11"], "translation": ["MAEQISSARAEARTVRIAPRKARLVVDLIRGKSVAEALAILKFTPKAASPIVEKVLRSAVANAEHNYDLESANLYVSEAYVNEGATLKRFRPRAKGSASPIMKRTSHVVVVVSELND"]}}, {"location": "[350041:350713](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0092"], "gene": ["rpsC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21465"], "locus_tag": ["MAAAAKME_03610"], "product": ["30S ribosomal protein S3"], "transl_table": ["11"], "translation": ["MGSKINPIGFRLGVNRDWEAKWYAARGYKETLNEDLRIRKFLDEKLKDASVSTVEIERAANRVNIAIHTARPGMVIGKGGAEVEALNKEINALTNKQVHINIVEIKKPDLEAKLVADGIARQLEARIAFRRASRQAAQRSMRAGAKGIKVQIAGRLNGADIARREWHTEGSVPLHTLRADIDYAWVNAFTTYGEIGVKVWINRGEILPGRKNQPAKRSKGGKK"]}}, {"location": "[350712:351156](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0197"], "gene": ["rplP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A475"], "locus_tag": ["MAAAAKME_03620"], "product": ["50S ribosomal protein L16"], "transl_table": ["11"], "translation": ["MPLVPKRVKHRREFRGKMRGAAKGGKTVAFGEYGLEALESHWITNRQIEAARVAMTRYMKRGGKVWIRIFPQKSYTAKGVGVRMGSGKGAPAGWVAVVKREKIMFEIGGVSEETAREAMRLAASKLPIKCKFVKREDQEAGGATNED"]}}, {"location": "[351145:351343](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P04457"], "locus_tag": ["MAAAAKME_03630"], "product": ["50S ribosomal protein L29"], "transl_table": ["11"], "translation": ["MKTKEIRSLSTDELLAKEKQYKEELFNLRFQQATGQLENTARLSQVRKNIARIKTILSEKELEQN"]}}, {"location": "[351361:351628](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23828"], "locus_tag": ["MAAAAKME_03640"], "product": ["30S ribosomal protein S17"], "transl_table": ["11"], "translation": ["MSESIERNRRHVYQGRVVSDKMDKTIVVVVDTYKNHPVYSKRTRYSKKYYAMDENNEAKVGDIVRIMETRPLSRTKRFRLVDIVKKSV"]}}, {"location": "[351658:352027](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0093"], "gene": ["rplN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A473"], "locus_tag": ["MAAAAKME_03650"], "product": ["50S ribosomal protein L14"], "transl_table": ["11"], "translation": ["MIQTETRLKVADNSGARELLVIRVMGGSKRKTGNIGDIVVAAVKQATPGGVVKKGDVVKAVIVRTKSGARREDGSYIKFDENAAVIINADKSPRGTRIFGPVARELREGDFMKIVSLAHEVL"]}}, {"location": "[352043:352283](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60735"], "locus_tag": ["MAAAAKME_03660"], "product": ["50S ribosomal protein L24"], "transl_table": ["11"], "translation": ["MFVKTGDKVKVIAGSEKGKEGTVLSVNVKENRVVVKGVNMIKKATKASASNANGGVVETEGSIHASNVKVIAKAESNKD"]}}, {"location": "[352302:352845](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0094"], "gene": ["rplE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12877"], "locus_tag": ["MAAAAKME_03670"], "product": ["50S ribosomal protein L5"], "transl_table": ["11"], "translation": ["MANSFATKYNEEIVPALTKKFNYTSSMQVPKIDKIVLNMGVGDAVANAKNLDEAVEELTLISGQKPMITKAKKSIANFRLREGMSIGAKVTLRGDRMYDFLSKLINVSLPRVRDFRGVSTRSFDGRGNYTLGVKEQLIFPEIDFDKVNRTRGLDIVIVTTAQTDEEARELLTQFGMPFAK"]}}, {"location": "[353067:353466](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0096"], "gene": ["rpsH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12879"], "locus_tag": ["MAAAAKME_03680"], "product": ["30S ribosomal protein S8"], "transl_table": ["11"], "translation": ["MVLTDPIADFLTRIRNANMAKHDSVEIPASNIKKSLTEILKQEGFIRDYEVTEDGKQGVIKITLKYGPNGERVISGLKRISKPGLRNYVSADNLPKVLNGLGIAIVSTSAGILTDKEAREKNVGGEVIAYVW"]}}, {"location": "[353490:354021](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A466"], "locus_tag": ["MAAAAKME_03690"], "product": ["50S ribosomal protein L6"], "transl_table": ["11"], "translation": ["MSRIGLKVINVPESVTVTKNGNEITVKGPKGELTREFDPRIKFEQEDGVIRFSRSNENDKAIHGTMRANLANMIEGVVNGYKKELKLIGVGYRAVAKNNVLTLNVGYSHPVEMKAPEGVTVTTSSATDVTIEGISKQVVGQFAAEIRAVRSPEPYKGKGIRYADEVVRRKEGKTGK"]}}, {"location": "[354047:354407](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A467"], "locus_tag": ["MAAAAKME_03700"], "product": ["50S ribosomal protein L18"], "transl_table": ["11"], "translation": ["MISKPDKNKLRLKRHRRVRGKISGTAERPRLSVFRSNTNIYAQLIDDVAGVTLASASTLDKSVSKDATKVEQAQAVGKAIAEAGKAKGITEVVFDRGGYIYHGRVKALADAARENGLEF"]}}, {"location": "[354423:354936](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P02357"], "locus_tag": ["MAAAAKME_03710"], "product": ["30S ribosomal protein S5"], "transl_table": ["11"], "translation": ["MANRNDSKNRRNKDDIEDQLVAINRITKVVKGGRRQRFAALVVVGDKKGHVGFGTGKATEVPEAIRKAVEAGKKNMISVPTVGTTIPHEVLGHYGSGNVLLKPAEAGSGIAAGGAVRIVMDMAGIGDVTSKSLGSNTPINVIRATIDGLQKLKTREDVLKLRESAKSLQD"]}}, {"location": "[354947:355133](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0G0"], "locus_tag": ["MAAAAKME_03720"], "product": ["50S ribosomal protein L30"], "transl_table": ["11"], "translation": ["MTDLKITLIRSVAHRLPEQRKVVKALGLGKINSTVVQPDNAATRGALMKIAHLISVEEVNK"]}}, {"location": "[355153:355594](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0200"], "gene": ["rplO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19946"], "locus_tag": ["MAAAAKME_03730"], "product": ["50S ribosomal protein L15"], "transl_table": ["11"], "translation": ["MKLNELHPSEGSRHARKRVGRGTSSGFGKTSGRGQKGQHARSGGNTRLGFEGGQMPLFRTMPKRGFKNINRKEYAIVNLADLNKFEEGSVVDFEALKAKGLVKKQLSGVKVLGNGDLNVKLTVKVNKVSEAAKSAIEAAGGTVEVI"]}}, {"location": "[355593:356889](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["secY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A468"], "locus_tag": ["MAAAAKME_03740"], "product": ["Protein translocase subunit SecY"], "transl_table": ["11"], "translation": ["MFSTLKNAFKDKEIRNKLFYTLFILVIYRLGANITVPGINAKALTTVANTGLVSVLDTVSGGGLDNYSIFSLGVSPYITAQIVIQLLQMDIVPTLVEWGKQGEVGRRKTNQVTRYLTLFVAFVQSVGITLGFNALSSFGLVKTQTWQTYFEIGMIMTAGTFLLTWLGDEITDKGLGNGVSVIIFAGIIARLPGGLYQVFQDQVINNSASDRWQGVAFFVALIVAILLVTKFVTWVEQADRRIPIQYTRRATTSGSESFLPLKVNVSGVIPVIFASSFIVTPATILMAFQGKYGDTTWYQVLSNIFSLQTTPGAIIYTLLIILFTFFYAFVQVNPEKLAENLQKQGAYIPSVWPGKDTEKYMSSMLLKLSTVGSVYLGLVALLPQLATNIWDLPSSIGLGGTSLLIVIGVVLELSRQINGLLMKREYAGFIR"]}}, {"location": "[356899:357553](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.3"], "codon_start": ["1"], "gene": ["adk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27142"], "locus_tag": ["MAAAAKME_03750"], "product": ["Adenylate kinase"], "transl_table": ["11"], "translation": ["MINLILLGLPGAGKGTASEQIVDKYHLAHISTGDMFREAMANKTPVGLEAKSYIDKGDLVPDEVTAKLVEERLGQDDVKNGFILDGFPRTTNQAELLDEITTRLNKQLTNVIAIDVKEETLIDRLSARFMCKNCGATYNKFSKKPKVEGTCDRCGGHEFYQREDDKPEVVKNRLEVNEKMNAPLKEYYDKKGLLATVNGEQVPEKVFADIDAILSKD"]}}, {"location": "[357628:357850](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0361"], "gene": ["infA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20458"], "locus_tag": ["MAAAAKME_03760"], "product": ["Translation initiation factor IF-1"], "transl_table": ["11"], "translation": ["MAKDDVIEVEGKVVDTLPNAMFKVELENGATILAHVSGKIRMHYIRILPGDRVTVELSPYDLTKGRITYRFIK"]}}, {"location": "[358006:358357](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0099"], "gene": ["rpsM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20282"], "locus_tag": ["MAAAAKME_03770"], "product": ["30S ribosomal protein S13"], "transl_table": ["11"], "translation": ["MARIAGVDLPRDKRIVIALTYIYGIGEHTAQEICAAAGVSEDVRSKDLTPEQQEKLRAEVDKYRVEGDLRREVSMNIKRLVDIGSYRGIRHRRGLPVRGQNTKNNARTRKGAKRSR"]}}, {"location": "[358385:358775](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66357"], "locus_tag": ["MAAAAKME_03780"], "product": ["30S ribosomal protein S11"], "transl_table": ["11"], "translation": ["MPAKKTAHKRRVKKHVESGVAHIHSTFNNTLVMITDVQGNAVAWSSAGALGFKGSRKSTPFAAQMAAEAAAKSAIDQGMKHIEVSVKGPGSGRESAIRALQAAGLEITSIRDVTPVPHNGSRPPKRRRV"]}}, {"location": "[358818:359757](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "db_xref": ["COG:COG0202"], "gene": ["rpoA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66709"], "locus_tag": ["MAAAAKME_03790"], "product": ["DNA-directed RNA polymerase subunit alpha"], "transl_table": ["11"], "translation": ["MIEFKKPNITVVDQEDSYGKFVVEPLERGFGTTLGNSLRRVLLTSVPGTGLVKVKIDGILHEFTTVPGVKEDVTKIILNLKKLELRAYTEEVKTIELDVEGPATVTAEDLKADADVEVLNPDQYICTIAQGGHLHMWIDVCNGRGYVPASENKTAEMSIGDIPVDSLFSPIEKVNYQVESTRVGKREDFDKLTLEIWTNGSIAPNDALNFAARVLVEHFKAFESADAAAEIGEVMVEQENDQKEKKLEMTIEDLDLSVRSYNCLKRAGINTLQDLTVKSEAEMMRVRNLGRKSLEEVKNKLADLGLSLRQED"]}}, {"location": "[359780:360164](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07843"], "locus_tag": ["MAAAAKME_03800"], "product": ["50S ribosomal protein L17"], "transl_table": ["11"], "translation": ["MSYRKLGWDSSQRKAMLREMTTQLIINERIVTTEARAKEVRRTAEKMITLGKRGDLAARRKAAAFVRNEIADIHEEGDEVVVKSALQKLFSDVAPRYKDRNGGYTRIMKLAVPRKGDAAPMVVLELV"]}}, {"location": "[360353:361202](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1GBJ0"], "locus_tag": ["MAAAAKME_03810"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA1"], "transl_table": ["11"], "translation": ["MSDNIISFDHVTFTYPDSPRPALSDLSFAIERGSWTALIGHNGSGKSTVSKLINGLLAPDDLDKSSITVDGVKLGADTVWEVREKVGIVFQNPDNQFVGATVSDDVAFGLENRAVPRPEMLKIVAQAVADVGMADYADSEPSNLSGGQKQRVAIAGILAVKPQVIILDESTSMLDPEGKEQILDLVRKIKEDNNLTVISITHDLEEAAGADQVLVLDDGQLLDQGKPEEIFPKVEMLKRIGLDIPFVYRLKQLLKERGIVLPDEIDDDEKLVQSLWQLNSKM"]}}, {"location": "[361177:362041](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA2_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1GBI9"], "locus_tag": ["MAAAAKME_03820"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA2"], "transl_table": ["11"], "translation": ["MAIKFENVSYVYSPGSPLEAIGLDQLNFSLEEGKFIALVGHTGSGKSTLMQHFNALLKPTSGKIEIAGYTITPETGNKGLKDLRRKVSLAFQFSEAQLFENTVLKDVEYGPRNFGFSEDEAREAALKWLKKVGLKDDLIEHSPFDLSGGQMRRVALAGVLAYEPEIICLDEPAAGLDPMGRLEMMQLFKDYQAAGHTVILVTHNMDDVADYADDVLALEHGRLIKHASPKEVFKDSEWLQKHHLAEPRSARFAAKLEAAGLKLPGQPLTMPELADAIKQSLKGGEHE"]}}, {"location": "[362033:362831](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ecfT_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q035B4"], "locus_tag": ["MAAAAKME_03830"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MSKIIIGRYLPGTTFVYRVDPRAKLLTTFYFIIMIFLANNWVSYLVISIFGLAYVFATGLKARVFWDGVKPMIWMIVFTSLLQTFFMAGGKVYWHWWIFTLSSEGLINGLYVFIRFAMIILVSTVMTVTTKPLEIADAMEWMLTPLKLFKVNVGMISLVISIALRFVPTLFDQTVKIMNAQRSRGADFNDGGLVKRAKSVVPMLVPLFIDSLEVALDLSTAMESRGYKGSEGRTRYRILEWSKVDLIPVAYCLLLTILMITTRKH"]}}, {"location": "[362830:363619](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.12"], "codon_start": ["1"], "db_xref": ["COG:COG0101"], "gene": ["truA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07649"], "locus_tag": ["MAAAAKME_03840"], "product": ["tRNA pseudouridine synthase A"], "transl_table": ["11"], "translation": ["MTSRYKLTLSYDGHDFHGFQSQPGQRTIQGTVEEILKQMTKGQEVRVFGSGRTDAGVHSVGQVIHFDYPGREIPAANMIKALNSQLPMDMVFTDCEIVDKDFHSRFSVKGKWYRYRVSLDGFVNPFKRFYTGHYPYPVDVEKMQEAAKDLLGRHDFTSFAASGGQIEDKVRDMYYVNVALDEENNEVIMDFIATGFLYNMVRILVATLLEIGNGRRPVHDLKRVIAAKNRLEVQQTAQACGLYLYHVFYEEVPRKYRLDLDL"]}}, {"location": "[363724:364168](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0102"], "gene": ["rplM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P70974"], "locus_tag": ["MAAAAKME_03850"], "product": ["50S ribosomal protein L13"], "transl_table": ["11"], "translation": ["MRTTPLAKTSEIERKWYLIDATDVSLGRLSTAVATILRGKNKPQFTPNVDTGDNVIIVNASKLKLTGKKATDKIYYHHSEYRGGLKSVSAGELLAKNPVKLVELSVKGMLPKNTLGHQEFLKMHVYAGEEHKHEAQKPEKLDINNLI"]}}, {"location": "[364180:364576](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YYM9"], "locus_tag": ["MAAAAKME_03860"], "product": ["30S ribosomal protein S9"], "transl_table": ["11"], "translation": ["MAQQVAYAGTGRRKDAVARVRLVPGDGKITVNNKDVADYIPLPILVKDLKQPLTLTETEGQYDVIVNVNGGGFSGQAGAIRHGIARALLEVDPDFRGPLKKAGFLTRDPRMKERKKPGLKKARKASQFSKR"]}}, {"location": "[365058:365259](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYLNVHFKPRFAEKIKFIAFALMYQHESYVYLDEAVSNALYPDLKNKNLRNIGLERLGEIHRYYGD"]}}, {"location": "[365248:365530](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVIDNYGSLNILLKQENDFSLMRIEDGFSTIFFNLKGQLREEVESLVEHQGLYFKELTEQTNFSPQLIHIRKLSISLDQLNKVNPCRTENFQN"]}}, {"location": "[365711:367085](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_03890"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MWLFKGKFICQKTLNWSAGAEIPTMDLSKATDSVSFTQISNTFEGLYRLGKDSKITPGLATSEKVSKDGKTYTFTLRKNDKLSNGDPVTAQDFVYSWRRTVNPKTESEYSYLFSGIKSADKIVAGKKPATSLGIKVVGKYKLVVTLERRIPYFNNLMCFAVSFPQNEKAVKNYGSKYGTASKYLVYNGPYIQKGWTGSNLSWKMIKNKYYWDKSKVKLNQINWSVQKSTTTSYNLYQAKKLDATSLDSSQIKQLKSDKAFSLLPQGGTYYMTFGQGKSGNEYVKNANIRKALSLAIDRGGLRGPGFYHLRRGQTANTLTSKDLTKVNGKDYTSLISSSAKSLYPKDGNKKLTKQYLAKGLAELGKSKIKLTLISSDTDSAEKTAESIQSNIEATLPQVKVEVNSVPFKTLLNRLASHNFQLGLIDCIADFADPISWTFLRLATAKTTGNGQTANTTS"]}}, {"location": "[367132:367279](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKAEDILLNDAGICPLYYSTSVMLVRTSVKNAVYNRGNWDFKEAYVK"]}}, {"location": "[367397:368018](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.22"], "codon_start": ["1"], "gene": ["nudC_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00297"], "locus_tag": ["MAAAAKME_03910"], "product": ["NADH pyrophosphatase"], "transl_table": ["11"], "translation": ["MKKGDKLIDWAMEIQAIGQTGLAYSKDVFDTERYSRLREIAAEMLAEKSAVSYDKVKELFCNEIGYQTPKIATRAAIFKDDQILLVQEKEGRWSLPGGWCDVDQSPTDNCVKECREESGLTVKPVKIIAVQDHFKHHGSIHPYGITDIYYLCQSLGGEFQANSETSQAAWFKEDDLPPLAENKNSTEQVKMCFAAHRDANWQTLFD"]}}, {"location": "[368078:368759](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2814"], "gene": ["pbuE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q797E3"], "locus_tag": ["MAAAAKME_03920"], "product": ["Purine efflux pump PbuE"], "transl_table": ["11"], "translation": ["MISLLTLVTFILLLAFVPRDTPQSQSSKGNKQFAILGNWHIQLTLLAIILVCAAQYTYYTYIRTLITDYMHFPKSWLNVLLLLLGLAFIAGNKTGGFLADHGGIKRLPLVFGIQTVLLFLLAPLLPLSWLAFLCIVGICCVNSMYGWSSTQVYFLDLAAAEYPESIDFASSFNSIFANVGISLGSFTAAQAAGLTGIASIPYFGGVYSLLSCLLMVLVCRQLAAKK"]}}, {"location": "[368755:369205](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sotB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00517"], "locus_tag": ["MAAAAKME_03930"], "product": ["sugar efflux transporter"], "transl_table": ["11"], "translation": ["MLGCNEYMIVSVLPDISREINASLSSLGYLVTVFALVYAVATPLVTSLTKYFKRHQLLFFLMGIFFISNTWTALSYSYVSLLLSRILSATTAGAIISLILVIANFVAPLEKKSLASLLDFCRLLDCFHHRPANRDLDLNDFFPSMLVSG"]}}, {"location": "[369355:369847](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQIQVKLDKGYLSDEYAKYASVKEAGNPVVSFPFTLTDLPEGTKYLAWSLVDYDSIPVCGFAWIHWLASDVPAVSEIPADFSRTTDTPQGYNSTVSRFLTDPEEVHTGYIGPTPPDKDHDYRFRVYALSEKLDLEQPYYYNEFLRALKGKVLAESQVDLPARV"]}}, {"location": "[369944:370018](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03950"], "note": ["tRNA-Gln(ttg)"], "product": ["tRNA-Gln"]}}, {"location": "[370136:370307](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGKEQEAEKIQKLLGQLEEEISLSYFLKPGTITVGRDLLQAMQDLLANPENWEEN"]}}, {"location": "[370631:371813](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0436"], "gene": ["dapX_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16524"], "locus_tag": ["MAAAAKME_03970"], "product": ["putative N-acetyl-LL-diaminopimelate aminotransferase"], "transl_table": ["11"], "translation": ["MVDLTKHFKQGVAEVKSSAILNFAKYTSQYPDIVKFTVGEPDFNTPDHIKTAAIKGIVDNHSHYALSNGTPGLRKAAADFLARHYDMHYEPSEIIATNGATEAIYTVMSAIINPGDVMVLPTPIFPLYIADAALEKAEVVQIDTSQTGLKLTPDQLQAAVDEYGDRIRILVMNYPTNPTGVMYSQEELDALAAVIKDRPTFVLCDEIYSELNYEQEHASMAKSLRSQAIVLNGVSKSWAMTGYRIGIMAAPQEITDQLAKVHQFITTTEPTPMQDAAEEAFKNGDRDAREMKAAFKERRDYLYQALTETGFEVIKPQGAFYIWAKIPAGLNQKDTEFVYELADQAYVGVCAGSWFAKGGQGWLRFSYATALDEIKEGVSRIKKFVEENKNDGK"]}}, {"location": "[371799:372855](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTESKETNGLKQGTLNILNGIGLGVIAALVPAAILGQLMKALLGVAPAFAQTVINITTFTQSLLAAMAGFCAAYLFQMNMIQMCSVAAAAMIGSGAVTFKNGLIMVAGTGDVINIGLTITLAILLIKLIGNKLGSYTTILLPIIVLVVGGGIGLLILPYVKTVTTFIGMIVMAFTKLQPLLMGVLIGMSFAAMIVSPISSVGIAVAIGLTGVASGAANLGITGAAYTLGIMSYSVNGMGTTLAHFIGTPKIQMTNMLEKPKLFVPVLLSSALSGLLAAIFNLQGTPNSAGFGFSGLIGPLAAYAKMTPGWGSIILLTVLYVVYPVALGFFMRWLFIDRLSFAQAEDLRLEV"]}}, {"location": "[372930:373012](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03990"], "note": ["tRNA-Tyr(gta)"], "product": ["tRNA-Tyr"]}}, {"location": "[373016:373090](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_04000"], "note": ["tRNA-Gln(ttg)"], "product": ["tRNA-Gln"]}}, {"location": "[373226:373559](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTYNLKQAQKEWALAKKRLGKSKITIELLTSDMDAPKRVGEYLQSNLMKNLPGLTVKLRSIPLKSRLADTSKHNFDMVYGTWQPSFQDPIDYLTIGGLFNLESDYKNSTF"]}}, {"location": "[373916:375029](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKYIKVGSGGGEVTWHRAMLDMKPGDYLLLEPGYYVWPRGRLLEDVTIKGLGASPEDTRIRSFFSIGENSSRVVFENLTLEPYGDVNTLDLPEETNSYLILRGCVLTGTGSKTTTISVNGQDTVEMYSCRLLNGTLSFFEKANFRLEMADCLLDYESEKFGTISLEGTGTAIINNSEIRGTVNSFDSSNIELNINNSAIGNLNLGGKSWVNVYACRFLNRDYSLYARGECWLNILESQMPSQLAIEDHCHLLMQNSQLYNFQARGESQSFLSNVQIAAAASLEGKSFMDGSLVTFSGNGDYPYFIFLVDQAVLKGRNLQFDPQNWPVLVDNDARLVANALYYQGAPLEIKCEHPENISLMGIKWTERKE"]}}, {"location": "[375043:376111](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRLIKVSQDPRDLSWEQALDQLEDDDVLMLAPGFYEIPFGQKLKNIVIKGTGTSADMTVLVGTVILDGRYLTLENLAVKTTAIAGALVRVYEGENAPYLTLRGCRLEAAEGERGTALLTLGPVWLELYSCQLKGGIRLVGDEEQHVQISSSEIAATPVAFTGNGFGPLAISQSQIKGNFVLEESSAYEGHFDQTAFDQVTSLSEGNDLYFTESALSLTLKNGQADLLNCDLPGTTLLEKANSAAFQNCTFKQFKQVSGSSNLTNCHLEAGEIMGQGKAVFCRPHFSCSEGTWLSLRDASQVRLQNTLLNVAGSHLRLADKAGILGNVLESDQDQLLVKQTGQGKVKLTGIKCKLV"]}}, {"location": "[376177:376879](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2188"], "gene": ["nagR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34817"], "locus_tag": ["MAAAAKME_04040"], "product": ["HTH-type transcriptional repressor NagR"], "transl_table": ["11"], "translation": ["MQEPMYIKIHNQLRRDIENHVYQVGDRIPAERQLAEQFKVSRMTLRQAIKTLEEEGILERRLGSGTYVASQKVQEKMSGIMSFTEITRANGQTPSSKLVSYKITQPSLSEKERLGLEGSDKVLRMERIRYADQVPICHEIVTVPEDLIAPFAKDDVSSHLYQTLEKQGGYQIGDATEYISAAVANEQEARLLNCRRGEALITRRQVTKLADGRPFEYTRASYVGERFEFTFSK"]}}, {"location": "[377041:378181](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSILFRLYLAVMKFLARWQKEDPNTYVILNGSGRSGSNGYLFYKYLCREHPEVTAYLIEPWPSSHLPWSDWQKIGRAKYVLTTHQPFKVRKSQVNLALWHGIPLKRMGTMANNTQRRDNQRNEKLWHKTADLVTSSSELYESLMSACMGIEGPRYVQLGFPRIDSLLKSPYKKAQLLADFFSCQDPEAQVGIYVPTFRYELEEPEVMERIKEGNFFAFSDFDLAALDQALAARKQYLLVKLHPWEMKLFSDFHLEAKHVAFLNNSDLLAKKLDLYEILGATDFLMTDFSSIYFDYLHLDKPLIFITNYLAQYEKTRGFLLGPYEKIVPGPCVASQADLVKQLGEKDGYGLERKKWLELSDQADHGQACQTIFDYLSGV"]}}, {"location": "[378184:379612](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["rfbX_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37746"], "locus_tag": ["MAAAAKME_04060"], "product": ["Putative O-antigen transporter"], "transl_table": ["11"], "translation": ["MKRTFLNIFYNAVYQVFLVLVPLITVPYLSRVLGPTTYGIYSSVNNTVQFLMIFCVLSLSNIGVRSISKARAKSKSGELTEAFWGLWYFQFIGGLVTIALTVLTCLVLKVRYWNYFLLMLPYLIAAQFDISWFFQGLADFGRVVLRNTIVKIVSVVFILLLIKSPADLWKYFLIMSVSTMLGSFVFWSSIGKYVGRPVKHFYHFAETRRAIMTLMIPQIATQIYTSLDKPLLGLFQNTAQVSYYDNSQRISNMILGVITSISLVIMPQMAVQGKETQKKVLKKSLEVTTMLGTMFAMVVMANTKEFVPFFFGKKYIPMTPLMFFFTLTIILIPMGGVFANQFALANKRDKDYAIPVTIGAVLELVFSYFLDRPFGAAGAMVAILLTEVVVFFLRCWIVRDGYDFKETFSDVPKCFLAMGISLAAGMLWPWQIPSAFINMMVKSLVIMALYLAILWLLKFDLNEDLVTIVKKRLKK"]}}, {"location": "[379663:380398](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.187"], "codon_start": ["1"], "db_xref": ["COG:COG1922"], "gene": ["tagA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27620"], "locus_tag": ["MAAAAKME_04070"], "product": ["N-acetylglucosaminyldiphosphoundecaprenol N-acetyl-beta-D-mannosaminyltransferase"], "transl_table": ["11"], "translation": ["MVKINILGVGFDKYSLAEFEARFLDRLRKKESTLVVTANPEIVMAAKEDPEYREIINNVADYVTADGIGIIKGAKMLGLKLPERVTGYDLFCWYLQIANEDHLRVYLIGAKPAVIAAVKEKIAKDYPGIDLVGAEDGYSKEALPEIASRIAQSRPDLVFAALGFPKQEKLLAILRKQNLPASMMGVGGSFDVFAGAVKRAPKLFQDAHLEWFYRLLKEPSRIGRMMVLPKFVVEVKKSKKQDQQ"]}}, {"location": "[380397:381498](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.250"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["mshA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QQZ8"], "locus_tag": ["MAAAAKME_04080"], "product": ["D-inositol 3-phosphate glycosyltransferase"], "transl_table": ["11"], "translation": ["MKVLHINAGLESGGGLTHIVNLLSQAKKAGQDFDLLTFAEGPVAQAAREKGIKTIVLGGSSRYDLALLKRLKKTIKDGRYDLVHSHGARANLFVSLIKSSLPCPWLITVHSDPAIDFEGRGIAGKIFTKLNLRAIKQADGVFAITPRFEKILLNYGVKPSRIHVIYNGIDFRDNRNIAGKEDHAGFNIINVGRLEKVKGQDLLLKAFKAANLPQAHLYIAGSGSQEADLKKLRQDLALTDQVTFTGFLTQEELRQLYRKMDLAVLSSYSESFPLVLLEAADNLLPLLATDVGGARELIPEGKGWGVPVNEEKAMADQLRAIAALPKEELAAIAQTEKAYARQHFSLDRQLADVLAGYQACLQGEKA"]}}, {"location": "[381494:382196](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIPKIIHYVWVGGNPKSKTIQTCLASWQKRLPDYEIIEWNEDKLDLNANKYVKQAYQAKKWAFVSDYVRAKALYEMGGIYLDTDVMVLKDFAGLLNDRAFIGFENNDYLSAAIIAAEKGHPFMADILHYYDDLDFAFDQKDQLAGVNSLSVTEILKEKYGLKTGNQEQVLKEGIHVYPDGILCNPSPQSRSIHLFTGTWLEGKNSWKHDLVTFLKLHIRSQKNAKIYYQLFRR"]}}, {"location": "[382300:383131](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.5"], "codon_start": ["1"], "db_xref": ["COG:COG0171"], "gene": ["nadE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q830Y9"], "locus_tag": ["MAAAAKME_04100"], "product": ["NH(3)-dependent NAD(+) synthetase"], "transl_table": ["11"], "translation": ["MRELQKKIVEYEHVLPEIDPQEEIRKTVDFLKDYLKANPFLKSYVLGISGGQDSTLTGKLTQMAISEMREETGDDSYKFIAVRMPYGVQADAADAADAVAFIQPDVDLIENIKPATDAMVATLKETGVEMTDFNKGNIKARQRMVMQYAIAGANQGAVVGTDHAAENFSGFYTKYGDGAADLTPLFRLDKRQGKQLLAALGCPKHLYLKAPTADLEEEKPSLPDEVALGVTYEEIDDYLEGREVSEKAAERIEELWTKSEHKRHLPVTIFDDYYKK"]}}, {"location": "[383336:386003](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q73E41"], "locus_tag": ["MAAAAKME_04110"], "product": ["Calcium-transporting ATPase 1"], "transl_table": ["11"], "translation": ["MAKKYYSQDIPGTLAEFGSDANHGISSAEAKKRLDQYGPNALAGKKKRSMFARFMDQFKDLMIIVLLVAAVLSGVVAQEWTDAGIILVVVLLNAVLGVIQEARSEAAIEALKDMSTPSARVRRDGAVIEVPSTDIVPGDVVLLEAGDVVPADLRLLVAESLKIEEAALTGESVPVEKSNETLQGEDIALGDRINMAYSSTNVTYGRGEGVVVATGMNTEVGNIAKMLNEADETDTPLKQNLNQLGKTLTYMILAICVVVFIIGVIRNPQHEPMNALLIDMFLTAVSLAVAAIPEGLPAIVTIILALGTQTMADHKAIVRKLPAVETLGATDIIASDKTGTLTQNRMTVEKVYYDGILHNASDDIDLNNKALITMLLANDTKIQGGGELLGDPTETALVQFGFHKDLPVNDFLAEHPRVQEVPFDSDRKLMSTVNRYDGQFMVAVKGAPDMLLERVKYVNINGELSEISAEQKKAILASNNEMAKQALRVLAMAYKVVAEPYADPTTDNVEQDLIFAGLVGMIDPERPEAKDAIAEAHRAGIRTIMITGDHQVTAQAIAERLGLVEKGRGDAVITGAQLDKLSDDYFTKHVGDYSVYARVSPEHKVRIVKAWQANGKIVAMTGDGVNDAPSLKQADIGVGMGITGTEVSKGAADMVLADDNFATIVEAVKQGRKVFANIQKAILYLMSCNVGEVLTVFLMTLLGWDVLKPVQLLWINLVTDTLPAIALGVEPIEKWIMNKKPRGKNSNFFSGGVASSIVYQGILEGALVLTAYGLGLHVLPRGTNPHEDALTMAFLTLGLIQLFHAVNSKYVKQSIFQKRTFANKWFNGAIVLSALIMAAVELPFLTRVFSVSELHLDQWLIVLGMGVLIIVIVEIVKFFERKADQRNN"]}}, {"location": "[386216:386543](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYLLVIIGQMAYAIYDNALISKNNAFAFEYLFNTVQPFGVDETMIGAIAIFLFVPIVGAALAIYIKNNHELYNVVSRTGWNNFLTKSTAYAFLGAVGLYWPRILPIS"]}}, {"location": "[386686:386950](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLKTRYQRLIAITLFLDFAVSLRCGLQFAMIGGEGEMPMYYLNANLISLYIQPGLTVMAAVQILSFRSVRPLLAPRGKMDYFDQRLA"]}}, {"location": "[387254:387857](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.4"], "codon_start": ["1"], "db_xref": ["COG:COG4555"], "gene": ["natA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46903"], "locus_tag": ["MAAAAKME_04140"], "product": ["ABC transporter ATP-binding protein NatA"], "transl_table": ["11"], "translation": ["MLKVSHVKKCFKKLAVLKDISLENQAGELVHISGVNGCGKYTLFKIIVGLLKADSGEIHTDKDDYLGALIENPGFIEYETAWDNLIFLGHFNYRFQPEKTRDLLKAFDLDPDNPQSVGNYSVGMRQKLGITQAVMEEQNIILLDEPTRGIDKEGVDQFVNLMKDLRSENKTVIVASHDEIPGLVYDRRLRMKDGILLAEE"]}}, {"location": "[387860:388358](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00745"], "locus_tag": ["MAAAAKME_04150"], "product": ["Protein SprT-like protein"], "transl_table": ["11"], "translation": ["MAFPALTSYNNTMISEQELQQLVESISLESFSRPFLHQAKINRRLKTTGGRYQLSDHHLEFNPLFLKEENLHYLPGIIKHELVHYHLHLAGLGYQHKDRDFKLLLQKVGGSRYAPRLEGNKRSRWHYRCRQCGQDYWRQRQVNVKKYFCGRCRGKLKKIAGPLAK"]}}, {"location": "[388388:388475](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_04160"], "note": ["tRNA-Leu(aag)"], "product": ["tRNA-Leu"]}}, {"location": "[388591:389215](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYDSEARQKTLNLTVSAVFVAILLLEAFIPNVGYITILPGLPAITTIPLTVAVFASLRGPKAGAAFGLVWGLTSLLRAYVAPNGLVTILLFQNPLIALLPRLAAGWAAGLAGQLADKWEKESRKPLAYALSGLLASAVNTLIVILLSDLVYFIHPQKLALALGAKSGQSLLVILFTALAVNGILEAVFSGLITPLITAPLKKRLKRR"]}}, {"location": "[389228:389882](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1705"], "gene": ["lytG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32083"], "locus_tag": ["MAAAAKME_04180"], "product": ["Exo-glucosaminidase LytG"], "transl_table": ["11"], "translation": ["MAGHRKTRKGKQTTTILVVRVFAIILLCLGFFVAFRYYRRQALQQEQIRQAELAKQEAAAKLLRQKKAFIQKVGPISQNVDKGTGLLPSITIAQACLESNYGQSALSQKYNNLFGVKGTNPNTSAVMTTKEYSNGKWVTVKARFQIYDSYEASIRAHVRLFQQGTSWNKDQYKDVLAAKDYKSQAKALVTDGYATDPDYSTKLINLIEQYNLNKYDN"]}}, {"location": "[389970:392232](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["pcrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P56255"], "locus_tag": ["MAAAAKME_04190"], "product": ["ATP-dependent DNA helicase PcrA"], "transl_table": ["11"], "translation": ["MSEATILQGLNPQQVQAVKTTEGPLLVIAGAGSGKTSVLTRRIAYLVEEKRVAPWNILAITFTNKAAKEMKEREVKLLGDQAESIWMSTFHALCVRILRRDGHLIGYDRDFSIADPSEQVTLVKRILRQLDLDPKQYLPRNILSQISNAKNCLQTPKQYEASAVGPFEKVVADVYKKYQASLERDQILDFDDLIMQTLTLFKASPDTLAYYQQKFRYLLVDEYQDTNEAQYELCRLLADGYHNICVVGDADQSIYGWRGANMENILNFEHDYKNAQTVKLEQNYRSTGHILKAANSVIDHNENRKAKKLWTDKGDGEKVHYYQAQSDRDETRFVLAKIKEEVDKKKRRYQDFAVLYRTNAQSRGMEETLVEANVPYQIVGGHKFYDRKEIKDIMAYLKLVANPSDSMSFNRIINVPKRGIGQATTTKLAAFADEMGGGIYEAMRNVELAPISSAAAKKLLAFSDQLTAAIAYAQDHTVSELTDKILEDFGYIKALKEEEAQGSLEAAARLENLQEFATVTKRFDDNYNEEENPDSSRLSDFLAEVSLLSDQDDLEESDDRVTLMTLHAAKGLEFPVVFLIGMEENIFPLSRAIKDEDPNQLEEERRLAYVGITRAREELYLTSAYTRMMYGSKQYNSQSRFIGEIKDEDLDIVASTAPKSSTSFIDLDRLPFAKKSQAKAAQPAKIHRASKAAGAVGAEKKGWHPGDQVEHKSWGKGVVIKVTGSGEDMELDIAFASKGNKRLLAAFAPIKKI"]}}, {"location": "[392242:394258](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.5.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG0272"], "gene": ["ligA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q837V6"], "locus_tag": ["MAAAAKME_04200"], "product": ["DNA ligase"], "transl_table": ["11"], "translation": ["MAESLEEAKQEVRQLRAQLDQWAKAYYEQDAPVVEDHVYDEKYARLLELEAAYPELKSADSITQRVGGEVNSDLPKVEHPVPMLSMGDVFSKEELAEFDQRVQKAIGHPVAYNVELKIDGLSLSLEYEEGCLKRASTRGNGQVGEDVTKNVKYIKDVPQKLPKAITTEVRGECYMSKEAFAKLNQERDEAGESIFANPRNAAAGSLRQLDPKVTKKRQLSTFIYTWINPPAGIDSQHQAICEMAKLGFHTNENGRRLENLADVYDYIDEFTKKRDSLPYVIDGIVLKVDDLALQADLGNTVKVPRWEIAYKFPPEEEETVVREIEWTVGRTGVVTPTAVMDPVRLAGSTVARASLHNPDLLAKLDVRLGDTVKLHKAGDIIPEISEVVLSKRPEDSVPYEVPTKCPSCGEDLVHLDEEVALRCINPSCPAQVEEGITHFASRQAMNIAGLGPKIVKQLIAKDLVHNVADLYYLTADDLSQLDHFKEKSINNLLVAIDQSRKNSVELVLFGLGIDNVGGKAAQLIARKFKNMSKIASASVQELTAIDTIGMTIAESLTAYFQQEEAKKLLARLEEAGVNMDYLGEDGEAADNFFKGKTVVLTGKLAHYSRAEFTKKLQALGAKVTGSVSKKTNCLVYGEDAGSKLAKAEALDIPRLTEAEAISKIEEKDTEK"]}}, {"location": "[394254:395400](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRFLQAITLASCSLLLAACGNLKNSDLASNSTTTTSEAKKYETTSSTDGGYSVLLKKGVYKTSPISGLEATNYDNSVDESAMERGLIRVSKKVFSTKDYVIQEGQQLDEATVTNWLGRYSKSNKEGLNLKNNGKTGSTTRNPIILQQIMEEDFYVKSGSSYKLAGISISLGLNSVDYYTKTTDGAEYSTKISPAKRRAFGQKTANTIVSRLHAKTKLKNIPIMVGLFSKTDTDSLVGGTYFSYGTASANSSKISKWSSVNEKTQVLPTVDGASAVSASDKSKFTSFKDEIEDYFPNVSGVTATLRYYDGKLAYESIAITTQFYGYLQVQSFAQTVMSRAKKYLGTSSPVEITISSVNDTQAVVAKETATGSYRMHIYGGN"]}}, {"location": "[395411:395717](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.-"], "codon_start": ["1"], "db_xref": ["COG:COG0721"], "gene": ["gatC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SE5"], "locus_tag": ["MAAAAKME_04220"], "product": ["Glutamyl-tRNA(Gln) amidotransferase subunit C"], "transl_table": ["11"], "translation": ["MEKVTNDTIKHVAALAQLEFSEEELAKFTPQMGKILEMAEELQAVDTTGVEETVQVVDRDTVFREDVPEKWQTREEMMKNVPDKSNGFVKVPVIIDKDDNQ"]}}, {"location": "[395716:397159](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.7"], "codon_start": ["1"], "db_xref": ["COG:COG0154"], "gene": ["gatA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SE6"], "locus_tag": ["MAAAAKME_04230"], "product": ["Glutamyl-tRNA(Gln) amidotransferase subunit A"], "transl_table": ["11"], "translation": ["MNYLNETIDSLNDKLKSGAVSADQLVKDTIANIKKTDEKINAFITVDEDAKPAEDLDFNNKLAGVPIAIKDNIITNGLKTTAASHILYNFEPVYESTVVAKLKAAQATIIGKTNMDEFAMGSSTETSYFGDTKNPWNLNKVPGGSSGGSAAAVASGEVVAALGSDTGGSIRQPASFNGIFGIKPTYGRVSRWGLIAFASSLDQIGVMSKRVKDSAEVLNVIAGADDRDATVSEKEVPDYTSFLGKDVKGLRVAVPKEYMSDAVEEGVRKEVEAQIELLRANGAIINEVSLPHTKYVVPTYYIIASSEASANLERYDGIRYGYRAEAKNLDEVFLKSRSEGFGDEVKRRIMLGSFALSAGAYDKFFLQAAKVRTLICQDFDKIFEDNDVIVGPVSTETAFDLNSEISDQIKMYNNDILTISANMAGIPAASVPAGLSETTGMPVGFQIMAKRFDEGHVFQVADFIERSNKFYEQTPAGLED"]}}, {"location": "[397164:398595](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.-"], "codon_start": ["1"], "db_xref": ["COG:COG0064"], "gene": ["gatB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O30509"], "locus_tag": ["MAAAAKME_04240"], "product": ["Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B"], "transl_table": ["11"], "translation": ["MNFTSTIGLEVHFELKTKSKIFSPSPVTYGAKPNTETNVIDWGYPGTLPMVNKEVYRLGLMVALATHSHVNPVTHFDRKNYFYPDNPKAYQITQFFKPLAENGYVEVEVHGKKKKIHIHEMHIEEDAGKNTHGTNGFSYVDYNRQGVPLLEVVSEPEMTDPDEAVAYLEKLREIVQFTGASDVKMEEGSMRIDTNISIRPAGQKELGTKVEMKNLNSFEHVRMSLAYEQKRQQEILLSGGRVRLSTRRFDTNTGKTVLERVKEGDADYRYFPEPDLPPYHIKQEWVDEIAANLPKTADERRKIYVDEYGLKPYDANVLLQNKESSDFFDATVAAGADPQQAANWMNTQVNGYLNEKHAELKDIALTPENLAAMIKLISDGTISSKIAKKVFAETVANGTDPKKYVEENGMAQLSDESVLAPMVKEVVDANPQSVEDYKNGKDRAIGFLVGQIMKQTRGKANPKVINKLLLADLASR"]}}, {"location": "[398630:399557](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.107"], "codon_start": ["1"], "db_xref": ["COG:COG1597"], "gene": ["dagK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31502"], "locus_tag": ["MAAAAKME_04250"], "product": ["Diacylglycerol kinase"], "transl_table": ["11"], "translation": ["MTKRARLIYNPVSGHEQMPKNVSDILDILEQAGYEASAFRTTQAPLSAQNEATRVAKDGFSLVVAAGGDGTINEVVSGIAFLPKEERPRMAIIPAGTTNDYARALKIPRDDVVAAAKVILKDKVQKMDVGRADFGDGSQKYFVNIAAAGSLAELTYGVSSDVKSALGYAAYLIKGAEMLPNLSECEMRLTFDKGVYEGKLSLLLLGMTNSIGGFEKIMPNAELSDGLFQLIVVKPSDPGNLLRLMALALNGKHVDDPNIIYTKTTSLKAELIGHNRDDKLSVNLDGEEGGMFPVTFENLRERIEFYVG"]}}, {"location": "[399617:400340](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITNKKKELARKRAERSLQPLSPEEQSEWDQLSQYREKAIKESGTKLAEHVMTFNDGVIAIIITIVLVEIADPLSKSAYQDFFSQIFIYLISFFVVANFWYEIHYTFSFHIMRAGKMTMVCDFAFLANLSLIPVMTKWIMGDLSVLSVVCYGIVYFLVQIFELATEIVGMRSSLPHIKTFRKFWGRFSWLRFIWLFLLNLVFILISFVQPRLGMILYLAFPIINFVMPDNRSQRTRKGDK"]}}, {"location": "[400342:401698](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG2265"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97R12"], "locus_tag": ["MAAAAKME_04270"], "product": ["putative RNA methyltransferase"], "transl_table": ["11"], "translation": ["MKKNEIVEVEITDLSYEAMGVGHVNGETVFVNNALPGEVVKAQILKDKKSYAFARISEIVKESPDRVKVPLRQYVQTGLASLAHLKYDKQLEFKQKQVKELLSKAHLDQIKVAEILPSPLETGYRNKAQVPVRMVKGQLEIGFFRRHSHDLVPLEDFFTNDPEIDRVLLAVRDILREKRIPAYDEEKHQGQVRYLEVRRGTATGDMMVVLVCLDRDFPGLHAVVDEIKEIAGVKSIFLNHNPKRTNVILGEHDYHLWGKRYIDDKIGDLTFEISPQSFFQINSLQTPRLYKLAIDQAGLTKDDLIVDAYSGIGTIGLSAAKYVKEVRGVEVVKAAVKDAKNNARLNQIHNAKYYVGKAEELMPKWAAEGLKTDVIFVDPPRKGLTKEFIDAAVKTGPKKVVYISCNPATLVRDMQLLMEAGYTTDLVSPVDMFPQTPHVESVTVLERTQID"]}}, {"location": "[401881:402739](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAINRMEEFENLIMIEVLKAMQALGGRVTRKEVKREICDHSEAISEDKVDEVKHSKKTGTPYRPFDYRFNFAVKHLITTGFIITEDNRNLELPEKGRTTKLEDFDPIRDVRAVLSENSADDTDVEEETEIEEEPWKAELLAALAKMPPQKFEIFSRGLLIHMGVDLDDNIGVRYVGDGGLDGFGYITSDDFRTTRVALQTKRWDGKVSAPEIDKFRGAMDKYNAEYGIFITTSNFTREAMKTAKAGTRIITLINGDKLCDLVAKYHYYVEPVTTYKLKSFFTDNE"]}}, {"location": "[402992:403628](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEYINYQTQDQWQGPASQQSPIDIVLEQTTPRPLADQPLTVSFVGDQALTRDPRSSGDQFIGAGTLTLGNHHYHFLRLHFHDHSEHLFDGQRQDAEVHFVYQDDQGQTLVLAMLGIRAADGEAGFDFAPVINGQAGSAYLNQFFANNQGYFNYTGSLTTPPLSPDVTWVVLDAVHPFSSGSLALIHDLFADNYRAPQPITVPVYHYYESGK"]}}, {"location": "[403801:404449](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISIKIGIFAKFFYEKSHPGEFDPLNGLVLVDAVDFTSRDWKSDVLVVMVVDLAANAFWQFQVSWHAVDVDHPLVQGQVLGAVRRPNCPVLGDQPAKGGGPARSQQDTPGLYQVLYQVDGDAEGGHEDVSPLTAPDIAFMTKVLGMNLTAIWVRLMIGRFSGQALVKASHEGTTYHDAIYRAHFPYADYHLTNQKSVPATVIGAQIERANKGSEQ"]}}, {"location": "[404509:405763](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.3"], "codon_start": ["1"], "gene": ["cadA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20021"], "locus_tag": ["MAAAAKME_04310"], "product": ["Cadmium-transporting ATPase"], "transl_table": ["11"], "translation": ["MQKWLMKNRNRLTEITGILIVLAFAAKWLFRSETAESGLLLAASLIGGFPIAESAWQALKVKVISIDLLVTLAILGAFVIQEFEESAIVAFLFLFGAYLEQKTLAKTRSAIKELVEMVPETALRQTADGDFEEVDLDDLDEGDILLVKTGGKIPVDGEVVSGSGTANEASITGESMPLGKKPGDPVYAGTILENGTIRIKAGKVGDETTFGKIIELVEEAQDSKSQAERLIDRFSKYYTPVVLLLAIIVGLISQDLELAVTILVLGCPGALVIGVPVSNVAGIGNGAKQGILFKGSEVITKFSKVDTIMFDKTGTLTYGDPRVSQVKKYGQGQLAEQLLVSVEKESAHPLAKAITGYYEDLEAKEVEASRVLQGGGIVAQVAGQQVLVGNRYLLDQYHVLVSYKRNGKGHGRAGKCW"]}}, {"location": "[405737:406400](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG2217"], "gene": ["zosA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31688"], "locus_tag": ["MAAAAKME_04320"], "product": ["Zinc-transporting ATPase"], "transl_table": ["11"], "translation": ["MEELASAGNSLVLVAVNGQLELALGLKDEIRAGVKEDLAALKKQGVKNLLLLSGDNQKTVDLVAEELGLTEAYGQLLPEDKAEFVKKRQAAGEIVAFVGDGINDSPSLARADIGIAMGSGTDVAIETSNVVLMNGSFDRIPRALALAKATRRNMIENITIALVVVAVLLISVLASSWMNMAIGMFAHEGSILVVILNAMRLLAYRSKLQKSRKLIENNFS"]}}, {"location": "[406464:406692](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["copZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32221"], "locus_tag": ["MAAAAKME_04330"], "product": ["Copper chaperone CopZ"], "transl_table": ["11"], "translation": ["MKKAILQLETLACPTCMQKIAGAIANVDGVEKTSVKVLFNASKAKANFDPEKTNLDTITQAVKNIGYDVLKASAK"]}}, {"location": "[406729:407008](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["scdA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01156"], "locus_tag": ["MAAAAKME_04340"], "product": ["Iron-sulfur cluster repair protein ScdA"], "transl_table": ["11"], "translation": ["MIKEFFDKNDEMLDLCTQAITKAHGAHHPEVFEVRKVYEDIQKKVKAGQEDLTADFSKLRSLTADYNIPADACGAMTKTYQTLEEFDHLVQG"]}}, {"location": "[407032:407683](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0664"], "gene": ["fixK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29286"], "locus_tag": ["MAAAAKME_04350"], "product": ["Nitrogen fixation regulation protein FixK"], "transl_table": ["11"], "translation": ["MQHICVSLVPLFVDLPEKDQLKINSLASHRRYQEGETIFQPGDEKLQIVARGNIKVYQLSASGREQLLRVAQPGDYEGEKQLFGLENDSFFGQAMENTEICSLSKADFNRVLMENPQLSLKLLELITQKLLATERQTQFLAMERVEERLASYLLDLAKAAGSDQVQLSMKMKDIALYLGTTPETLSRKFKLLEKMGYLKRTGKQVKILDEDGLLDL"]}}, {"location": "[407737:409078](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1114"], "gene": ["brnQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AD99"], "locus_tag": ["MAAAAKME_04360"], "product": ["Branched-chain amino acid transport system 2 carrier protein"], "transl_table": ["11"], "translation": ["MKEKLTHAESLTISSMLFGLFFGAGNLIFPAYLGEASGANLWISLLGFLITGVGLPLLAIASLGMTRSEGLLDLSGRVSHKYSYFFTCLLYLTIGPFFAIPRCFTVPFETGISALLPSGMAKSTGLFIFSLIFFTIMLFFSLRPGRIMDWIGKFLTPAFLLFFFFIMITALLHPLGNYHAVKPVGEYASAPLISGVLAGYNTMDALAGLAFGIIVISSIRTFGVTKPEKVASATLKTGVLTCLLMAVIYAITALVGAQSRTALGLAANGGEALSQIARHYFPGLGAVIFALMIFVACLKTAIGLITACSETFVEMFPKTLSYNKWAIIFSLLAFGIANVGLTTIISFSLPVLMLLYPLAISLILLALTSNLFDFKQVDYQIMTAVTFLCALGDFFKALPAGMQVKAVTGLYGRVLPLYQDGLGWLVPVAVTFVILAIKAAISKKRA"]}}, {"location": "[409223:409886](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPPFEKYQAVKKAYAAGANKENAQAMDKYMRNLFPFYGLKTPTRRELSKPFLKGVTKEEIAWDLVDLCFKDDYREMQYFALDYLKKVQKQLTFKDLPKIKQLAETKSWWDSVDSLVKLAGQIFIKDEENKEKTAALMLAWAQDPDFWVRWTAIEFQLEATDPDLLGKIIDRNLGSQEFSINKAICWALRYYSKTNPAWVRDYMASRDLSALSRREGSKYI"]}}, {"location": "[409929:410436](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.22"], "codon_start": ["1"], "db_xref": ["COG:COG2816"], "gene": ["nudC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32664"], "locus_tag": ["MAAAAKME_04380"], "product": ["NADH pyrophosphatase"], "transl_table": ["11"], "translation": ["MFELNYCPQCGQKLTKKELPLDGLIPYCEQCGDFRFPVFSVAVSMIVMNEGGDQVLLIKQYGKDSYILVAGYVNKGENTEDSCRRELMEELHLTAKSLHFNRSQYFAPSNTLMLNYTVTVDQAEKVSPNEEIDAWNWLSIDEARRQIRPNSLARTFLLEYLNKCKLHR"]}}, {"location": "[410731:411241](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLGYVELMNQCMDWAMQDGDPSDAIMILLSEIDEELGAARAFRENSGYYISDMAAFKETDPMLYEVFSRQELSSLVLCPFYFETDLVGFVGVDEPKDMSLALPVMQIASSHMSGLLQKSFYVEKGASDDSVTNLCSVTAFRHHVAYELEEIQANPGLKLDLVHFDIRNF"]}}, {"location": "[411293:411740](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVQEVGSPWLVRPVADHFYALIPDSKVGQAIRNVHDAIIGDEAFGVSIRAGIYPLSASDQQVSFAMDRARIAANNAVSNYQNYYCRYEQKMEADLTLANYLLGHIDEAVAKGWINVLNALYPFSGSNHQELVENRFGHGLFRQGRGR"]}}, {"location": "[411708:411984](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVFLDKGGDVDIIYANKASKSWTESLRLKGEDYAVAIKEEFCALLRQLVSQTDGEIIEKSFRIKDYAGRLRLQLVAEMSGQRAYVISTNMV"]}}, {"location": "[412060:412318](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04420"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNELDKMRSGDFYQLTAPEVEPYQEAGIIWNDEFRQGNNLDRPAQLLRLKMHLGALGDQASFGTSFSCLNGPNIYIGHHFLAAGV"]}}, {"location": "[412714:413071](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIALQVLACLVAVEFFYIMYLETFATTSKKTAEVFQMDQEELSRPSVNTLFKNQGIYNGLLAVLTLIAAFALGKIVLQLVLAYMILVAAYGAVTSQPKILLMQGGLPILTLIVSFFA"]}}, {"location": "[413188:413674](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1522"], "gene": ["lrpC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96582"], "locus_tag": ["MAAAAKME_04440"], "product": ["HTH-type transcriptional regulator LrpC"], "transl_table": ["11"], "translation": ["MVEYKIDKTDRRILQMLEENARISVKDIAEANFMSSPAVANRIRRMEDNNLIKHYYADIDYSSMGYVVKAFINLEVKPEDKSEFYPFIEKVPNVIQCDCVTGDYSMLIQAAYRRPEELDHLVNELQKFGRTRTEIAFSTPIEHRPIPVKTESDDEEDKKED"]}}, {"location": "[413882:415694](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.16"], "codon_start": ["1"], "db_xref": ["COG:COG0449"], "gene": ["glmS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0CI73"], "locus_tag": ["MAAAAKME_04450"], "product": ["Glutamine--fructose-6-phosphate aminotransferase [isomerizing]"], "transl_table": ["11"], "translation": ["MCGIVGVVGKPAREVVLNGLKNLEYRGYDSAGIYLNDLQGHEYLTKAVGRIANLEEKLAPEEEGTTGIGHTRWATHGHPTVENAHPQYSEDGRFYLVHNGVIENYLELKEKYLAGAHFKSETDTEVVVQLVAKLAKEENLDAFSAFKQALKLVKGSYAFLLVDNTKPDHIYIAKNKSPMMLGLGDGFNIIASDAISVLDQTKTFIALNDGDCADVTKDSIEIQDCDGNKAEREAKVLDIDPNAASKGTYEFYMLKEIDEQPAVMRRLSTDYLDEAGKPVVDEKIIDAVSQADRIYIFAAGTSYHAGLVGKEIFEKFTGIPTEVGYASEAGYHFPMMSKHPFFIFLTQSGETADSRVVLTEANKRGIPSLTMTNVEGSTLSREATYTMLLNAGPEIAVASTKAYTAQVALQAILAKAVGEKLGDQAAKDWNLKQGLSLAAEGIQEIVDGKEKIEELAKKYLIPSRNAFYIGRGIDHAVSLESALKLKEVSYIQTEGFAAAELKHGTISLIEDGTPVIALINDPVTADLTRGNIQEVASRGANVITIVGKQFAKEGDNIVLPEIDYYLSALLSVVPTQLLAYFASKNKGLDVDKPRNLAKSVTVE"]}}, {"location": "[415830:416166](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVTDRQQRILQILLENEDGISLAEVEKRLETSRRTLYREFGLLRPELAKSDLTLTNKKGYLQLTGPDESIADLRGELEESQGQGEMKAEDRGNALAALLLLNWMSLPVKT"]}}, {"location": "[416162:416270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIGGSQFLKEEGYKHLNDEDKAEVDKYVGFPERRC"]}}, {"location": "[416376:416586](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.17"], "codon_start": ["1"], "gene": ["mtlD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99140"], "locus_tag": ["MAAAAKME_04480"], "product": ["Mannitol-1-phosphate 5-dehydrogenase"], "transl_table": ["11"], "translation": ["MEGVHYAPDLEPYIERKLFSVNTGHATVAYTGKALGYETIGEAVKDDRVVDQVTRVLAETFPPFGQVGL"]}}, {"location": "[416597:416837](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.17"], "codon_start": ["1"], "gene": ["mtlD_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00196"], "locus_tag": ["MAAAAKME_04490"], "product": ["Mannitol-1-phosphate 5-dehydrogenase"], "transl_table": ["11"], "translation": ["MKNTMLKSSTASRTHTSLTISGRTPIRKLGYDERFIRPIRELKARGLDYTALLETVGKIYHFDEPVDAESQKAATDAQG"]}}, {"location": "[417055:419785](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG2352"], "gene": ["ppc"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QWX4"], "locus_tag": ["MAAAAKME_04500"], "product": ["Phosphoenolpyruvate carboxylase"], "transl_table": ["11"], "translation": ["MTAKKLENNSNHAVTAEEVKILTDLLDESTRHLVGDEEFAKIKGLVKIAASSDHSQLESQIACLSNQEMIIVARYFATLPLLINITEDVDLATEVNLLNNTDKDYLGKLESTVDLVAEKDNAAEILSHVNVVPVLTAHPTQVQRKTILELTNKIHDQLRRHRDVKASTINRKEWTNQLRRYIEIIMQTDIIREKKLKVSNEIKNVMVYYPGSLIPAITKLTARYKELAREKGLNVDGATPITMGMWIGGDRDGNPYVTAETLRLSATIQSEVIFEYYVKALNDLYRTVSVSTSYVQPTPEVAELAKLSADNSPFRENEPYRRAFYYLESRLAHTEMELLDVFSKEAVVKKEAALKAPVYKDAYEFKKDLEAIKRSLIQNHDRAVTGGHFDALLEAIDVFGFHLATIDMRQDSSVNEACVAELLKSARICDNYSDLDEEEKIQILLSELNNDPRSLHSSNSPKSELLQRELKIYHTARLLKDTLGENVIKQHIISHTESISDMLEQAIMLKEYGLLDSEKARVQVVPLFETVEDLQNSREIMKRYLSFDIVKRWVASKGNYQEIMLGYSDSNKDGGYLASCWNLYKAQTELTAIGEEQGIKITFMHGRGGTVGRGGGPSYEAITSQPFGSIKDRIRTTEQGEIIQNKYGNKDAAYYNLEMLVSAAVDRMVSKQKVSQDHIQDFTASMDGIVEDSNRVYRELVFDNPHFHDYFFQATPIKEVSSLNIGSRPAARKKITELSGLRAIPWVFSWSQSRVMFPGWYGVGSAFKHFIDADPNNLKELQEMYQGWPFFHSLLSNVDMVLSKSNMEIAEKYADLCEDEATRSVFDIIKKEWELTKEVILQIEGHSKLLEDNPSLERSLDYRLPYFNVLNYVQLEMIKRGRQEKLSGIYESIIHITINGVASGLRNSG"]}}, {"location": "[419951:420896](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFFISLEQICIMFILMAIGFLCRKKGMIHEETGKDLTAILVYIVGPCLIINAFERPASASLIKDFDLTFLAGSLNYLFPIAFSSLFLRLPRLKNDPDKQLIAFGAVYNNCGFIGIPLIQALLGSKGTFFAVPILVLNNIFVWSHGIGTFKKRQPLADTLRTVLFNPNIIATAIGFALFITGSSLKFPAVIDRSVSYVASLNTPLSMIVIGSNLGTISGDFYKDSKAWLICFLRNFLMPACMSVILLLFPLSTTAYLAVVIMAAAPVAGFIVMLSLLANRPVAFPMRCLCLSTLMSVVSVPLIIMLASWLKQLV"]}}, {"location": "[421076:422699](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0488"], "gene": ["ybiT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9U3"], "locus_tag": ["MAAAAKME_04520"], "product": ["putative ABC transporter ATP-binding protein YbiT"], "transl_table": ["11"], "translation": ["MITVTDLSLQIGSRTLYSDVNLKFTPGNCYGIIGANGAGKSTFLKLLEGKMEPTTGSISMGPNERMSSLNQDHFAFEDFSVMETVIQGHQKLYQVMKERDALYAKADFSEEDGVKAAELETEFAELDGWNAEADAAQLLQSMSIPEDMHQKQMSELAESDKVKVLLAQALFGNPDTLLLDEPTNGLDVHTTAWLENFLADYENIVLVVSHDRHFLNQVCTQMCDVDRGQIKLYVGNYDFWYESSKLATELARQQNAKKEEQIKQLQEFIARFSANASKSKQATSRKKQLDKISLDDIKPSSRKYPYIKFEMNRDLGNDLLRVDNVSYKSGDEQLLDNVSFIIRPGDKVAFLSRNTRATTALMEIIAGRLEPDSGTVTWGQTTSFNYMSRDLNANFDNDELTILDWLRQYADKEHDDNTFLRGFLGRMLFSGDEINKQIKVLSGGEKVRCQLSRMMLEAANVLVMDDPTNHLDLESITALNEAMENYPGSILFTSHDHEFIQTIANHIIEVGPKGVVARADISYDDFLAHPTVQEQVAKIY"]}}, {"location": "[422758:423421](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["kgtP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEX3"], "locus_tag": ["MAAAAKME_04530"], "product": ["Alpha-ketoglutarate permease"], "transl_table": ["11"], "translation": ["MDESAQFTAKNKQNKQAGSFALLMKYPKQVAIVVGMSLGGTISFYSYTTYMQQFMINSAGMDKETVAMINFLVLLVMVALQPLFSHLSDKIGRRPLLIFFGIGGTLLTVPLFTLLAHVSTALQAFLLMLTGVVIVSGYTSINAIVKAELFPSEIRALGVGLPYGLTVALFGGTSQYVALCMRSIGHESLFFYYVSFAVFISLMLYIFTLKGHRSALDDDA"]}}, {"location": "[423444:423771](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["kgtP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEX3"], "locus_tag": ["MAAAAKME_04540"], "product": ["Alpha-ketoglutarate permease"], "transl_table": ["11"], "translation": ["MAAGSLIIAFAPTYAQVGIISPLILVITRMVQGLSLGGEYGTSATYMSEMASRGRWGFYSSFQYVTLIAGQLFSLLVQIILQQVLTDAQLYAFGRRIPFPSSLVLSAP"]}}, {"location": "[424454:424664](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEAQKAIKLQLKSRDTDPDKSLFLNYRVKAKSGKILHLSTLGRYVEDSYYGDVFVIFVLPDDLSMKRKK"]}}, {"location": "[424720:425086](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKVITKILQAVSFLLSLFLLWAGLASLLDVCNSARLMGWSSFIPSIVAGLVFIVMLICEAWLGLRINKLDDRGIFFFLAALLLLTAGEMVAPVALGSGFLWLNLLQLLLVLLARFSIDFHE"]}}, {"location": "[425328:426528](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sbnD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2G1N0"], "locus_tag": ["MAAAAKME_04570"], "product": ["Staphyloferrin B transporter"], "transl_table": ["11"], "translation": ["MQKQPVWKRNLQVSTVSVFLAGIAFSEITPFLSLYIDTLGKFSHQQLSFWSGIVFSAVYVVAALVSPIWGKLADKKGRKPMILRASLGMAVVFTCMGLAQNVWQLLFLRGMQGVFAGFISNSNALIASETPKNKSGKALGIMISAQTGGQLLGPFAGGALSQAFSYRVTSFITGALLFTCFILSVFFIHEDDFVPVESKQRGSFKDTMKQFKSGQLILGLLLTTLIIQAANNSINPIVSLYVRSLMHNSRQVVLVSGVIAALPGIATVAAASYFGGLGDRIGTHKIILGGLIGSIILFFLTAFVRNTVELGVCRFLVGFTDACLFPQVQTLLTKHSPKELTSRVFSWNQSAMYVGNIFGPLLGSTVSAHFSYSAVFLVTSGIVVINLLLYRTNILKNIA"]}}, {"location": "[426667:427381](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0670"], "gene": ["ybhL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AAC4"], "locus_tag": ["MAAAAKME_04580"], "product": ["Inner membrane protein YbhL"], "transl_table": ["11"], "translation": ["MFNVSPEQEHRHIVDDSALNGFLTKMYSIMGLAVLVSSLTAYLTLTVFSGSLLPLLTNRVFLWVLLLLPLILSVGISFKATRKPTTAFFMLMAIAVVYGLEFSLLAFAYTGAQIGGAFISASAVFIGMAAYGSVTKKNLDTIGAYASAAIWGLIVASLVNMFLKSTPASFIFSIIGVIIFTILTAWDAQKMKSIYASYGDQLPELGLAVNGALMLYLDFINLFLQFLRIFGIADNDN"]}}, {"location": "[427648:428434](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.3"], "codon_start": ["1"], "db_xref": ["COG:COG0796"], "gene": ["yrpC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05412"], "locus_tag": ["MAAAAKME_04590"], "product": ["Glutamate racemase 2"], "transl_table": ["11"], "translation": ["MSKEYVDRPIGVFDSGQGGLTVLSRLVDLMPNEDYVFYGDSANAPYGVKSKEEVYQLAKRVVDELIDKHQVKAVMIACNTATSAAADRLRREYSLPIIGIEPAVKPAAEENPGRQVVAMATPLTLEQDKFNQLVAECAEPGQVVKVPAPKLVELIEKGQTDSPAIYQYLEELLAPYVGKAAGVVLGCTHFPFAKQAIQEILGPQAKVYDGAIGAAAEVKRQLASQDELNASSQPGQILFENSAPAGADLSKRLYALYRQKQ"]}}, {"location": "[428512:429934](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_04600"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MQKPAECTTILVGKDATIDGSTMIARSEDGGSTIIPEAFIAVNPKEQPKHYKAVISGQEIDDEDLLPNPLRYTSVPDASGKNGIWAAAGINDATVAMTATETITTNSRIQGIDPLVEEGGLGKEDFVTLTLPYIHSAREGVKRLGYLVEKYGTYEMNGSAFADHDEVWYIETIGGHHWAARRIPDDAYVAAPNRLNIDFFDFNDEENFMCSSDLLDIINEYHLNPDYQGYNLRHIFGSSTIKDAHYNNPRAWYIHRYFDPEWEGEPGDQDQPFITYAKKKISPEDIKFLESSHYQDTKYDVYSTTNTEAEKKLFRPIGINRNFETHILQIRNDVEEGIAGVQWLAFGPNTFNCFVPFYTNVTTTPASFQTGPDFDLTKIFWLNKLNAQLGDTNYKVYSALEQAFEEKTMAKLRQIENETDRAVKGLTGRDLQEKLEEANQKMADLTYKQTAALTGEMVKDGHSLMKLKYDLLD"]}}, {"location": "[429947:431033](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG1363"], "gene": ["ysdC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94521"], "locus_tag": ["MAAAAKME_04610"], "product": ["Putative aminopeptidase YsdC"], "transl_table": ["11"], "translation": ["MEKAAEIQMLKDFSNANATSGFENEFVDLFTKTVKDYADLEVDGMLNVYASKKQNTGKRPVIQLDAHSDAVGFLTQAIRPNGLIKFVTLGGWNNVVLPALKVKVRNRDGEYIPGVVALKPPHFMSEAERTSVPQVADLSIDVGSSSREETINDYKIDTGCPIFVDVDCEYNEKTGLFFGKDFDDRFGAAAMADILENLKDEEVNFDLVAALSSQEEVGLRGAYVTARKIKPDLCLVLESCPADDTFEPDWLSQTGLKRGPMLRDMDVTFLPNPKFQQYACDLADKNGIPYTRSVRTGGGQDGAAIYYENGAPTIVIGIPVRYEHSPYCFSSYKDYKAAVDLALAIIRDIDKEKLESFKSFN"]}}, {"location": "[431240:431810](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4721"], "gene": ["ykoE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34738"], "locus_tag": ["MAAAAKME_04620"], "product": ["Putative HMP/thiamine permease protein YkoE"], "transl_table": ["11"], "translation": ["MLRRESEWNVKAIILMALIGIIMGVIYTYVVNPIYNSVELALNLVGLGPLAGQICAGLWYMAAPLAMYFVPTFGSGIVGETLAATVEMTFGGQWGAMTILQGLVQGACNEIGFFPKKENYDRFGWGSLITGAVCCAVAGYVMSYLTYGWSAYKSALLIEMFIACIISSIVFDAVLVKLITKLFDRVMAK"]}}, {"location": "[431921:432053](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTHLILSRPKKMNRAYWSMVGLLLALMLLTAWIGLHTFAYLNL"]}}, {"location": "[432139:432766](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.48"], "codon_start": ["1"], "db_xref": ["COG:COG0572"], "gene": ["udk_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SKR5"], "locus_tag": ["MAAAAKME_04640"], "product": ["Uridine kinase"], "transl_table": ["11"], "translation": ["MAKQKPLVIGIAGGSGSGKTTVSKEISKRLPADRVLILTEDAYYNDNSALSMDERKKINYDHPNAYDTDLLIEQLQDLLDGKAIEMPTYNFNILSRAKDTIHVEPADIIILEGILVLATEELREFMDIKLFVDSDDDIRFIRRLQRDTQERGRSIDWIISQYLATVKPSYNQFVEPSKKYADIIIPQGGENQVAIDMVSSKLLSIING"]}}, {"location": "[432768:433422](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.48"], "codon_start": ["1"], "db_xref": ["COG:COG0572"], "gene": ["udk_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67413"], "locus_tag": ["MAAAAKME_04650"], "product": ["Uridine kinase"], "transl_table": ["11"], "translation": ["MSKKQHPIIIGIAGGSGSGKTTIAHELYDQFKTDRIRIITEDSYYKNHPEMSMAERNKINFDHPDAFDTELLISQLQDLLNGKAIEMPIYDFTTHLRSPETVHVEPADIIILEGILVLASEELRNLMDIKIFVDTDDDIRLIRRQRRDMAERGRSFDSIIDQYLATVKPSYHQFVEPSKRYANIIVPEGGANDVALDMLITKVRDILRRNDLAEKEA"]}}, {"location": "[433971:434712](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["glnQ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27675"], "locus_tag": ["MAAAAKME_04660"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MAAIIEFKKVNKFYGDYHALKDVNLSIDEGEVVSIIGPSGAGKSTLIRTMNGLEGISSGVLKVDGYDLGDKKTDLNKIRRNVGMVFQHFNLYENHTVLENVMLAPRIVLHRDEKENREIAEKLLKQVGLLGKEDSYPRQLSGGQKQRVAIARSLAMKPKVLLFDEPTSALDPEMIQGVLDVMQSIAAEGMTMVVVTHEMGFAREVSDRVIFFDQGQVLEDSHNPKDFFKHPRNLRAQEFLSRVIDH"]}}, {"location": "[434733:435573](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_04670"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MKHTKLFRKVAALLFLLLTTVSLSACAVESDNSVRVYNHVKSSKTITWGVKFDMALFGIKSVKTNKLEGFEIDLARLLTKEILGKDGKAKFIEVTAQTKIPQLKNNNLDAVLATMTITNERKKSVDFSTPYFKAGTSLMTKTSSPIKSIKDLNHKGRVVIVAKGTTAADDIARLAPKATIRQHNDYGACTNALLAGQGDAVATDNGILAGIAKQHKSLHLVGGTVAVEPYGIAVEKGQTKMLEAINKALKEAKADGSYHKLVKKWFGNIPGFSAKEVEY"]}}, {"location": "[435572:436214](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34671"], "locus_tag": ["MAAAAKME_04680"], "product": ["putative glutamine ABC transporter permease protein GlnM"], "transl_table": ["11"], "translation": ["MLSLLGANWSTFLLGFWNTILCSLISLFFSLIVGSGFAILETVPSKFWRVVAKVYVEIFLNIPLLVVTMVFYLVLPTYTPLKLTGFQAGTIGLSIYSSAFIAETVRSGIQSVGTGQMEGARSNGMTYWQAMRYVILPQAFRIVIPSLGNQFVNLIKNSSILAFVAGFDLMYQGDIVASNTFQTIPSYVLVSLFYLVLTLPLSYYMQYLEKKGV"]}}, {"location": "[436225:436894](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnP_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34606"], "locus_tag": ["MAAAAKME_04690"], "product": ["putative glutamine ABC transporter permease protein GlnP"], "transl_table": ["11"], "translation": ["MENLTEALSWINLRFLLQGFWVTIEVSVISIILSFVIGLALGLIRFTRIDAKTTRISKVVGVIIDIIRNLPLLLIIFFSYFGLPVMGIRVDAFQASVIAMVVFESAMIAEVVRSGIMAVDPGQMEGARSNGMTYMQAMTHVVLPQALSKMIPALLSQFVSLIKDTSLATIIVLPELLYHAEIIYNQNTNYMIPMYLAVAVMYFIICFALSSFANYLSKRIKY"]}}, {"location": "[436935:437781](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_04700"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MARKLRELTAIMAVLLLSLVFTACSHSQSSSTYDRVKQTNTITWGMRADTRLFSMMDVDSGKATGFEVDLARAITKQILGPKGKMKIEYISEKSRIMDLKIGNVDAVMATMTNTPDRRKIINFSDTYFMAGETLIVPKKSKLNSIKDFNNSKYSIAAVKGSTADSDVHKYAPKARVIFYDDYGSCYNALKTGKASAMVSDNAVLAGLISDDKDKFKMLPDTFTVEPYGIGIKRGEDKFTAEVNQALKVLRKNGTYACLMKKWFNGVPGFNIKSSSRLKASE"]}}, {"location": "[437986:439498](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.40"], "codon_start": ["1"], "gene": ["gppA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01550"], "locus_tag": ["MAAAAKME_04710"], "product": ["Guanosine-5'-triphosphate,3'-diphosphate pyrophosphatase"], "transl_table": ["11"], "translation": ["MSKRQFGLIYISSYQARLFIVDLKKLAIIEQLSSVQFVQGGKKFEVYENELPRLTDALIGFKRKIAEYGIDNYKVYGNRQLLDKISARYLADQIKVRTGLEIEWLNGAQIAYYKIIAGMALPQFSELADDEFTYLLSMGSAILNLTLFKGQHYLSTWNFALGPEEIEEMAAMTRDTPSDPIDIIGDYISRKLVSFKTIEKPTGKARIIIQHVFGRGEQSLRPQEKARVIDLKQFAGVYSDFREAPDQYLMEKYELDTDSLARMKPTIVLINQLVKIIKPHMMTLTQSSAITGLMIQEAARLKYRPDEYSTIVLTATKNIARRYESGGQHVNLSNKFALHIFDRLAHAGMVDRRDRQLLEIAARLHDIGNFVNFHNHYEHAAYIVGANQIIGLSDWENEMLLSILKHQDITNLNADEREYRHLDPALQVRVAKLAAILRLANSLDASRKQKISKIVVSIKDEKMLIVVTSKRDLTLERWVFEKNVNLAEAVFGMKIAMKQKRGK"]}}, {"location": "[439501:441667](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.1"], "codon_start": ["1"], "gene": ["ppk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0DP45"], "locus_tag": ["MAAAAKME_04720"], "product": ["Polyphosphate kinase"], "transl_table": ["11"], "translation": ["MTIAKNKNKFTDPSYYANRELSWLDFNDRCLDEARNPDEPLLERANFLGITQSNVDEFYMVRVASLSKLVAAGVKSHDASGLTPLEQLTAINHKEHEVVEKRYSTYSRSLLPLLRKNGINILESDELSEDQEEYIRRYFSNELYPVLTPMADDHSRPFPFINNDSLNIALRLKDRESGEHKFATVRVPNIFPRLVKLPDGDNDFIMLEDIIKVFADRLFDGYEIRQAACYRVTRDMDLDVSESDTSDFLLAVKKQLEDREHGHVTRLEVESSMNIKLLKHLMKRLNVDEGSVFSINGPIDLTFLKKLPGMVEGHEDLRYKPMQAFVDPALRSDHNIFDSIREKDYLVQHPYDSFDSVLNFVKQAAKDPDVLAIKMTLYRVSGNSPIIKYLGQAAKAGKQVTVLVEVKARFDESNNVHWARTLEQMGCHVIYGLVGLKTHTKVTLVIRRDEDGIRRYLHLGTGNYNDVTAHFYTDLGFFTCDRDLGVDVTNLFNMLSGYSKPPYFSKLRISPKLIRQFIYEKINNEIAIAKAGRHAEIHMKMNSLSDPDVIAKLYEASVAGVKIHLIVRGICCLKTEIPGVSDNIEVHSIVGRFLEHSRIYYFYNDGKEEVYLASADMMRRNLNRRVETLFPVLQEDLRERVLDIFAKMWQDNVQARILHKTEWVHVDRRGQTPFNSQEYFIAEAAEKVRIVKEEEEEEKAKKKDAFEAMKPQESELEDDER"]}}, {"location": "[441695:442961](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKDRHEIEIFKIDQMFIGDSQEELIKQGEGRRKEHPIAAISTFNPVKRDVFQLIKLTEEKMIPELLGMRHKRMMQNPFSYFRATAGIMEKDLRQFPDGQSHIPVIICGDSHLTNFGFFASPERHLLFGLNDFDEARIGNWEFDLKRLLTSVVLIGRINGYPKEQLDGILAESVHSYRRGIKYANSLPLLDRFNLSYSVDDLLGQMTDNEQMKRVLLKVADRAPKKNSDAVVKKFTEKTEDGRLRFKKKPPRARRVSQKVYAELMAGLEDYQKSVADDIRVLLINYEVTDIIRYSVGVGSWGTRCYLALLTGKDGSHLVLQIKEALPLRYNLSALTVEESQAQGKGEGKRIITAQRVLQTYHDPFLGAIEAGGRSFYVRQFRDMKDSIDPLNLDQESFSAYCNMCAFIFWPLPTTKARQRR"]}}, {"location": "[442957:443095](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYGYVHKQKELDTGLAHWAVKYADQMDADYTCFAKYLQGEGDEE"]}}, {"location": "[443098:443422](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLTDLDRVELTKLSYEALNVGETVVVAGKKIGQLTRDVYAKDGMQAFLSRTGRMANYLRYRRNLQADWQKESDQRAEQIGEELFNHSFLQDFNDRDKNAKDGKEQ"]}}, {"location": "[444014:444260](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKLTLYLLPPVLLAAIFMIVDFASGQHNLWMSAVATLAWWLFSFASDHLAKGWQKAVFLACVGFLLLVAGLCIYIKLNS"]}}, {"location": "[444406:444904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIEEVLAKQLLAKDPSIERFEEDFYGDFYDYFVNFLKFKCLSQGKDLASLEKQKLVLYLDLFNSQDFPGRKAYRYKLVFDSQLNFLAAESDFTLSALCRDLRGRVDQLSDYEAVRSQALASLAERFDSKNPDPNTRIQNFNVVLADLYDRYNLSRFKTAYQLVG"]}}, {"location": "[444971:445892](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.15"], "codon_start": ["1"], "gene": ["rbsK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H2WZY4"], "locus_tag": ["MAAAAKME_04780"], "product": ["Ribokinase"], "transl_table": ["11"], "translation": ["MQKIVVIGSSNVDTTLHVENFPKPGETINAHKVSEAGGGKGGNQAVAAAKSAAETIFISRVGEDSYGSWMKEQLAGYGVKTDYVLPTAGVKTGHAYITLNAEGQNDIIIDHGANYSLTEADVLAAKDVIEAADCVIAQLETPLEATTAAFKLAKAAGKVTILNPAPAIKDLPADLLAVTDLITPNETESALLTSLPVAEEADLEKNAAKLHELGVKHVIITYGSKGAYLSSPVFTGLVPAFKVKAVDTTAAGDTFLGFLAGSLASDFSNLHEAARFANRASSLAVQKMGAQPSIPDRASVASALAE"]}}, {"location": "[445907:446558](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.3.1"], "codon_start": ["1"], "db_xref": ["COG:COG0036"], "gene": ["rpe"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AG07"], "locus_tag": ["MAAAAKME_04790"], "product": ["Ribulose-phosphate 3-epimerase"], "transl_table": ["11"], "translation": ["MIIAPSILNADNLHLGQQIQEAADSGIRRFHIDVMDGHFVPNLSYGPQLVSDFKKQFPDLTAEVHLMSNNLPDLLPAFVKAGSDFIEIHYEADYPNLIAHWLDYLKENGVSCGLVLSPDTDIKVLERYKDKLDQVLLMTVYPGFGGQKFMEEAAARIKAARAILPDLPIEVDGGINAQTAEIAKEAGADVFVAGSYIFGRDSVAKQVAELTSILEK"]}}, {"location": "[446570:447263](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.6"], "codon_start": ["1"], "db_xref": ["COG:COG0120"], "gene": ["rpiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTT9"], "locus_tag": ["MAAAAKME_04800"], "product": ["Ribose-5-phosphate isomerase A"], "transl_table": ["11"], "translation": ["MDQAKQDELKKAAAKKAAALVEDGMVLGVGTGSTVKFFIDELGKKKAAGLTLKAVVTTSSRSQKQLEGYGFTVSPLSEVDQVDLTVDGADRVDKQLNGIKGGGAALTLEKNVAVNSKKNVWIVDESKVVDHLSGFALPVEVLPISCMQVEKRLADEGLKPEFRLTEDGQRLKTHYGNYILDLKLDRIPVPSGLADYLDHTVGVVEHGLFLNICDQVIIARDNGEIEVRSR"]}}, {"location": "[447358:448294](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1957"], "gene": ["rihC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22564"], "locus_tag": ["MAAAAKME_04810"], "product": ["Non-specific ribonucleoside hydrolase RihC"], "transl_table": ["11"], "translation": ["MNKKPLIISTDPGIDDAVCLTIALFAKELDVKLIVPTWGNVSLEKTLNNTLRLQAFLGTKVPVVAGAKLPLVKEAIDASEVHGASGMDGFDFPEADQSLLVEGLAATKIHEVVSQSPEKVTLMQIGPATDFALYFRQYPEDLDKIDRLYIMGGALGRGNYGPYDEYNVSGDPEAAKIVFDLGAKGLDIYVAPLEVGNQAFVDAASLEEIKALGRVGEMIYGLNSQYELNDADADAGKRIYDALTAAMLLEPDLFEVKEAYVAVDTKGPYTYGASVMDFEGFFGKKANAKIAVKVDRQPFKNWLLAAIAQAK"]}}, {"location": "[448302:449025](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2188"], "gene": ["gmuR_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05509"], "locus_tag": ["MAAAAKME_04820"], "product": ["HTH-type transcriptional regulator GmuR"], "transl_table": ["11"], "translation": ["MADYVYRTVMHDIKRRILAGEYEGMRLPDECSLAEQYQVSRSSMKRALELLAQHGIVFKKRGSGTFINPLYLKNQAMFRYEGSNLGLTDSFLAPGKKQGIKLLEFKVVKASPETAQDLFLSENDFVYQFKRLRLLDGQPFLIEEGFVPIKILPELKEEILQGSLFNYLEDAQNKAVTRSYLTITVSPSSAEDQEALQLKATEPVGVMDGIFFLDDGTPFEVSSMRVHYKYMRFNSFVNLN"]}}, {"location": "[449228:451631](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.2.9"], "codon_start": ["1"], "gene": ["xpkA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q937F6"], "locus_tag": ["MAAAAKME_04830"], "product": ["Xylulose-5-phosphate phosphoketolase"], "transl_table": ["11"], "translation": ["MTADYDSKEYLKSVDAWWRAANYLSVGQLFLLKNPLLKEELTADDVKIKPVGHWGTIAPQNFIYAHLNRVIKKYDLNMFYIEGSGHGGQVMVSNSYLDGSYSEIYPEISQDEAGMTKLFKRFSFPGGVASHAAPETPGSIHEGGELGYTLSHATGAILDNPDVIAAAEIGDGEAETGPLAAGWFSNRFIDPVKDGAVLPILQVNGFKISNPTITARMSDEELTKYFEGMGWKPYFVSTFKGGRFDGMKDIDQIHEEMAKTLDAIIEDIKAIQKNARENGDKSFAHWPLLIFQCPKGWTGPKTDLDGNPIENSFRAHQIPLPVDQKHMDHKELLLDWLKSYKPEELFDETGYPTDLVLQNAVHGDQRMAMNPVTNGGINPKRLNLPDWRDFAFEVGKPGSKDAQDMVEWAKYLTKVAELNPTTFRGFGPDESKSNRLFDFLDSEKRQWESEIHEPNDENLAAQGRLIDSQLSEHQDEGMLEGYVLTGRHGFFATYEAFGRVVDSMLTQHMKWLRKAKEQYWRRDYPSLNFVATSTVFQQDHNGYTHQDPGLLTHLFEKNRPDMIHEYLPADTNTLLAVADKAFRDREGINLLVTSKQERPQWFTPEEAAKLVDKGLGYIDWASTDKDAKPDVVFASTETEPTMETLAAIDILHQNFPDLKIRYINVVDVMKLMAPKDNPAAISQEEFDRLFPTDVPTIFAWHGYKTMMESIWFARKRYNVSIHCYEENGDITTAFDMRVLNHLDRFDLAKDAVEQIPALKDKSAAFIDKMDSLLSKHHAYIRDHGEDIPEVTSWKWTGLDK"]}}, {"location": "[452051:452600](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLGGQETLTLKRTKDEADLDVKISLPDLVNLDKTATDKANEELKIDKAEEAVKEVAASEKEGRHLLLHFAKGQSQLKLSLDPGRYYIRELTKPGVTVQPLLLSLPRNGSNQLTVYLKTEAVTGQVQLTKLGYASASAKGKALAGVSFYLYLEGNSLPLRVDALGKLSTDYRDSRLLFTDLP"]}}, {"location": "[452654:452954](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDQIKVIKPTQVDQLKIVKGRDLCTLMTCNSLHDQHLPPAGHRIPYNPKAEAKAKERSRNRLIWIIIAILLPVLAIIIFIWHKKRKKKTAKADKEKEQE"]}}, {"location": "[453096:454440](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WFP3"], "locus_tag": ["MAAAAKME_04860"], "note": ["UPF0053 protein Rv1842c"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTQIWINLLAIGVIFVFASFFVAAEFALVQVRPSQLEDMIANGQGNVKKLKRALHMSHNLNEYLSTTQVGITLVGVILGWFGADTIANIFERLLALTPMSKNLVNSVGALIGVITLTYLEVVLTEVVPKNIAIDAPVKILMWIVNPLQLFHTLVYPFVWLLNVSSSGIIKMLGFNPADEENQVYSQSEIIRLSKNAVHGGALDKEDLTYMERAFQLNDKTAKDIMTDRTRLTVLDASENIKTALDKYLEDGYSRFPVVRENDKDDVVGYVYAYDIVQQSRIDDRVPVTRINRTIITVPESMPIQDILRLMISKHTPIVLVVDEYGGTSGIVTDKDIYEELFGSVKDEIDDVSDDYIIKDAEGNIRVSGKTTLYDFERYFHQNLKSFQNSDIITIGGYMMERYPDLKKEESIELEGFRFTLDDIQQGFMRWFIVEGPKTNDQAKKEE"]}}, {"location": "[454549:455119](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.8"], "codon_start": ["1"], "gene": ["hpt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99085"], "locus_tag": ["MAAAAKME_04870"], "product": ["Hypoxanthine-guanine phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MKSIHDAVDHKLYSEEDIAEMTKRLGQQLTKDYAGKRVLVVGALKGAIFFLTDLLREMDLACDIDFIDVSSYGNGTESSGKITVTHDLEADVTGRDVLIVEDIVDTGLTLKFMKDELLSRGANSVKCCVLLNKTARRTTEVDVEYYGTHVGNEFVIGYGMDFAGLYRNLPYIGVIKPEVVEEFSKHEHD"]}}, {"location": "[455200:456493](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["steT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34739"], "locus_tag": ["MAAAAKME_04880"], "product": ["Serine/threonine exchanger SteT"], "transl_table": ["11"], "translation": ["MKKQISFGHALATVIGSVIGAGVFFKIGSISQSTGSASATILVWLLAGVISICSGLTVSEIAAALNVNGAIEYLDYSYGSIWGFLFGWAEMTVYFPAQIAALASIFGQQFVVLAGLPASSSKWIAAGVVLLLFLINMLGTKASAWMQSVITVIKLIPLFLIIVFAIIRPQVSVSLWPVTVDSSGGWLAGISQGLLSALFAFEGWIVVTNLAKEMKNPKKDLARAIILGLSLVTVVYVLVNYAFMAVLPFDKIIGNDNTAYYASLKLFGQAGGKNVTVGILLSVYGACNGFMLTGMRTPYILAQANRLPGSEKLAKTSVRSGVPVFSALLVNAIALIMISLGNFEILTDMLVFVMWTFTTLLSVAVILLRKREPDLARPFMTPAYPVIPLISIIVGLFIIVMTVINQFALSMIGLGITLLGLPVYYWKKLH"]}}, {"location": "[456598:457285](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGQKKHFQHPATLPALLILLAAIISLLAYGLYNYTSQTTLPKGASQSAVGLKVSQADFDLSRLEKGGLSFVYLPVDQNFAARREQVAKTKLAYGSIIEVQGEKNAAKQLSRAKRLAAGHWGALPILLDSGQDDPSAANLTAMSKMAYSLVKSHEIMVNAPVKYKKLFPAGCKFLATSASAPSKLDYCFWRYTEKGHVAGVSGIGCKNVMYAYIGTSQQYKEKYGQLAQ"]}}, {"location": "[457281:458526](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0513"], "gene": ["yfmL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34750"], "locus_tag": ["MAAAAKME_04900"], "product": ["putative ATP-dependent RNA helicase YfmL"], "transl_table": ["11"], "translation": ["MIYTEQIQAVLQKEGKSQPTLIQRETYEAIKNGASLVALAKTGTGKTLAYALPALERVIPGEKNSLVILAPTTELAVQIRNAILPFAKALGLKTLALVGAGNRQRQDERLKKDNCEVLVCTPGRFFDFFSSGRIKLVQIKTLVIDEADDILEFAKLELLSSLGQNLPSSSQILLFGATESQITQEAEEIFARHFLLVDVRPDQGSQTEHVFLQVDNKHKLEYLQRLCKLDGFRGLLFFDSNEGMLRFARIFAHSKTRFEVLANNFSKDKRQQAIRDLAKGKVKLLLATDLAARGLDIPKLTYVVNYEIPTDANTYMHRAGRTGRMQQEGKVVSLGNDHDLRKLKKLLEGEVTVDRVYFAGYHLSKEKPVKKEKAEDKDKPAVIEQPVKKKKKSKKKNKNKGYHPHYLKRKKQSE"]}}, {"location": "[458518:459838](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1455"], "gene": ["celB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9CJ32"], "locus_tag": ["MAAAAKME_04910"], "product": ["PTS system cellobiose-specific EIIC component"], "transl_table": ["11"], "translation": ["MNSVIDWLERHLMPLANNLASVRWLVALRDAFISTLPISLTGSVAVLIKSLIITANRNWGWHVFCQLMQPSISICNFVWRGSVAMFALFFVLSWGYQLAKAREVDPLAGAMTALCSFMMSIANYSYLMQGNKRIKLDQAFNIKQLSTTGMFTAILFGGLGVALYILGVKARLGLHIQTAMPPAQIAAFEAAIPVMLALFIVGGLNYLFQTITGQYFGDWLLEIIQLPLLKLGQGFIMVIAITALTQLFWFFGINGASALAPVVGSIWATAQNANLLAAANGHKIPYLWTNTSFVVFGVNGVCLPLVIAILLTSKRGDHRTLAKVALAPAVFNVNEPMLYGLPIILNPVCFLPFTLAPLANVSLAYLATKLGWINRVQASVPNIMPPVIGPYLATNYDWRALVLFLVNLVIAVLIWLPFVKAADQIGQTDEPRRFFMPQY"]}}, {"location": "[459898:459975](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_04920"], "note": ["tRNA-Arg(cct)"], "product": ["tRNA-Arg"]}}, {"location": "[460315:461389](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSETTQTKETVGSFTMKVLNGSATAIIVSLLPSAILSTFLTPFAGSNAIVANLLHIVTVFQYFFAVMCGFSTAKQFNLGYTEAACVGGAAFLGSGCMTAVTTTVKGVTTTSFQLAGMGDVINTMLTAAVAVLFIKWVGNRFGSLGIVFFPILAGTGVGFLGSLIKPYVSLVTTAIGDVINTFTKLAPYSMCILIAMSFAIIIVTPLSTVAISVAIGLAGMGSAAAGFGLASTAAFLFWATLKVDKPGVQVAIFLGVIKMMMPNFLRYPVIGIPIALTAAISTLSVPILGMQGTPASGGFGLIGAVSPLAAYNAGFYNVLVLVIVWVVVPFAVGYLMKKIFVDWTKIYKPEYFISPAR"]}}, {"location": "[461620:462904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pyrP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39766"], "locus_tag": ["MAAAAKME_04940"], "product": ["Uracil permease"], "transl_table": ["11"], "translation": ["MKEDKTFRNPEAVLDVQDKPKFGPWLLLSIQHLFTMFGSTVLVPLLIGLKPSIALFCSGVGTLVYILCTQAKIPAYLGSSFAFIATMQALMKNYGYPAVGQGAIAAGLVYVIVALLIARFGSRWLDKILPPIVVGPIIIVIGLSLATTAANDAMFNASGKYSLTYFGVAIFTLVITIIFNMFLKGFPSMIPVLLGIICGYLMALFCGIVDLSGVESAKWFSLPAFDVLGVSYKFKWYPAAIITMAPIAFVTMTEHMGHIMVLNKLTKRNFFEDPGLHRTLLGDGLSSIIAGFLGGPPTTSYGENIGVLAMTKVHSVFVLGGAAFFAIVFSFVGKVSAVIESIPTPVIGGISFLLFGMIAANGLRILVDNKVDFEKKRNLVIASVILVIGIGGTYLKIGSFQLTSIALATVFGILLNPILPEKAASEQ"]}}, {"location": "[463016:464267](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNLPEELAKIVKEVDEQIAGRLHEIDEQVIYNQAKVLEAFVDNAVAESDLKGTNGYGDDDEGRDKLERVYAQVFHTEDALVRPQFVSGTHTLATALDGNLVPGDTLTYLTGMPYDTLQHAIGLTPDKAGTLIEKGVKFSYVPLKEDGSVDFEDGEKILKRDQPKIVAIQRSRGYDTRESFPVAKVKEMIDFIKEVSPQSLIFVDNCYGEFSEKHEPTEYGADFMAGSLIKNAGGGIAQTGGYIVGRKDLIHRAASRLFAPGISDSEGPTLNSLHEFYEGFFLAPNVTGEAIKGMIYSAALMEKLGFDVSPKWDAPRTDLIELITFNDKEKMIKFCQEVQKNSPVDSFVTPIPSHMRGYEDEVIMAGGTFVSGSTVEFSADGPIRPPYAVYMQGGLTYAHDKIAVTNAVKSVLFGD"]}}, {"location": "[464350:466438](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.17"], "codon_start": ["1"], "gene": ["odcI_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P43099"], "locus_tag": ["MAAAAKME_04960"], "product": ["Inducible ornithine decarboxylase"], "transl_table": ["11"], "translation": ["MHYLAIAAKKELLPYLPIDWPKTELTELVNPASLAAVVIDEKDSRSRGIYQTMKEKLGLDLPLIEFTPETSPAEISRLAQTYEEANVPRFIRELTAFSDQDDLVFDTPGHHNGRFYDRHPAGAVLRNFFGDNYFRADTSDCVSELGDMMNHTGGPLEAQQEAAKAFNADKVYFCTNGTTSANTICTTALLDEDDLVLFDRNNHKSIYNSALVMTGAKPVYLPTDRNADGLIGPLTAASLDEDLIRREIAKVAPGRAKADRPFRLAVLQLETYDGIFYDAKLILKKLGRLCDYILFDCAWGGYEQFVDVLRDFSPFQQTYGPDDPGILVTQSVHKQQAGVGQASQILKKDSHIKGQKRYVDHKHFNHAYMKYVTTSYSYPVYASLVANSAMAASPAVNSWWNDTVKLGIDFRKRLLKESKLFKPLVPPTVHGQKWENLPTDVLSQDPEAWKLSPDDDWHGFKLLAPGEVALSPVKVTLMTPGIDLAKAAFTEEGIPGAIVSLYLHEKHIIPEKSDSYSTLYLLTPGEGQVDMNGLFSTLMAFEEAYLTKAPLSAIMPELVAQYPNRYEGYTLYQLCQELHHYYQEHEIFKLQQALFLKDSFQNYELTPKEADREFVHGNSELVKLADAKGRMALEGALPYPPGVFIVAPGERWQDLDVAYFQVLIGAARKFPGLDPEIQGVYQEDGEVWAEVLKES"]}}, {"location": "[466477:466720](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKFLRVTATLLSAAAILDSLYWLFVGHSYLRVAFLKLTGGNGIPGWLQIAVIAGILLLLSQYDWFFDHFLRDERDRKYK"]}}, {"location": "[467146:467509](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_04980"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MIEETPKKHYMAWMTLAMLDFVTIIRFEDVFYPYQNQGLSVIFSWIFLLICYQLPYTLIATQLGLAYKDTEEGGLASWIRRGTGSDVLGYATSWMYWAQTVPYLVDVSNSIIASSFPFPG"]}}, {"location": "[467505:467892](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_04990"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MILGNNTLGKHMSPFMFGLLTFVIILIFILCESAYKNSLDLLSLIGGIAMFAMSVIFVILIIWALMHGGHIATKMEWSSFKPNFSVHYFSTTGLLIFAMSGAELAAPYVTRLKNPRKEFPSQCGCFLA"]}}, {"location": "[467870:468590](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_05000"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MWMLFGMTVFMTLTETLGLAVLFDAKHIPHDFKMNGAFYAFQLLGEEAGMGKSLMYMYAIVCLLNFMADLAALIDAASRVFASDTSEKYMPSWLRKKNKDGLPVNSYVLTCSITFFLLLLSGTLPEINDIFNWLLNLNGIVSPYKTSVVFLAFLAFRYRHKTFAKDDFVFIRNNKGALAVGWWCFIFTFICATMGFLPQDVTFESPQWTKQLWMNIITVIVLFGTGFLLPWLRKLELKH"]}}, {"location": "[468693:468888](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVNIFPLLGDSLLIILVGFSLVYSFDGSLGQKTRRILRITSLLLLLAIIPLTIWILQHPLLIN"]}}, {"location": "[468989:470132](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.3.14"], "codon_start": ["1"], "db_xref": ["COG:COG0381"], "gene": ["mnaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39131"], "locus_tag": ["MAAAAKME_05020"], "product": ["UDP-N-acetylglucosamine 2-epimerase"], "transl_table": ["11"], "translation": ["MQKIKVMTVFGTRPEAIKMAPLVLKLISDDRFRPVTVVTAQHREMLDQVLEIFKIQPDYDLNIMQPQQTLADITTRVLTALSQIIQEEKPDIVLVHGDTTTSFAASLAAFYQQTPLGHVEAGLRTWNKYSPFPEEMNRKLTDVLSDLYFAPTSVSRANLLKEGHPEENIFVTGNTAIDALAPTFQADYQHEVLDKIGQGKRIILVTMHRRENQGEPMRRVFKAMKDVVDQTDDVEIVYPVHLSPRVQEAAKEVLGGDPRIHLIKPLDVVDFHNLAKRSYFIMTDSGGVQEEAPSLGKPVLVLRDTTERPEGVKAGTLKLLGTEEDAVKAAMLELLTDPAAYQQMAEAKNPYGDGQASDRILDDIAWYFAGKKGPKPADFS"]}}, {"location": "[470173:470653](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKDFNRRRALGERNFKRHRNLWVYMFFGFIAALINTVVFMFMHDFLHTVLVIDNTIAFIVSNLASFWFNHKAVFTKNVDHEHKLWQKLLSFLAYRIISLLPDTLIMWLGMTVLGWPALIVKVIDQILVGIFNYLTTKSVFEKQEKNLKKRLEKKIKKR"]}}, {"location": "[470645:471092](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0716"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P00323"], "locus_tag": ["MAAAAKME_05040"], "product": ["Flavodoxin"], "transl_table": ["11"], "translation": ["MRAKIVFASMTGNDEDMAEILEEDLLDQGLEVDSSDVSFTDANDYLDSDLCVFITYTYGEGAMTDEIADFYDQLKELDLTGKSFAVMGSGDKTYKEHYCENVFDFEKAFLACGAKELIPPLTVENAPDDDDIARIDQAAEELADKLNG"]}}, {"location": "[471238:472066](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.18"], "codon_start": ["1"], "db_xref": ["COG:COG0024"], "gene": ["map"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19994"], "locus_tag": ["MAAAAKME_05050"], "product": ["Methionine aminopeptidase 1"], "transl_table": ["11"], "translation": ["MITIKSVRELKGMQASGHLLATMFEALRDVIKPGISTWDIEEFCQEFVSSRGGRLSEQGFEGYKYGTCISVNDEIAHNIPRKNVFLKEGDLVKVDVTCNLNGYESDSCTTYGVGQISEEDQHLIDVTKKAMYMGIDQAVVGNRIGDIGAVIQHYVEDEEGYGDVRELIGHGIQPSIHEDPEVPHWGKAGHGLRLREGMTITVEPMVEAGGDWRILQKTVDDPNDDWVFYATPDGSKSAQFEHTFAITKDGPKILTLQKPYDGLEKYIPHFDEMED"]}}, {"location": "[472068:472983](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEKVEPGQKGVRRFLTTLSSVVSQGEIFQSSIVIAYYILFSIFPIVIIVGNALPWFHLDTGPIADYLEMIFPSDVARYIIPIVDTLLKSNSTSYISFGAIMALWSMSCMVNAVRIGMNRLYGVHNKELKLGFWHFIWNRTLTVIFSALMVTMFILLALIVVFGQEVLHFLAPYFNLPLAWIDKLSSYRWLVLLVLILIGVYYLNAVAPNVHFKKALFPGTIVTVAGWEALSYLFSFYLKNFPVKWENYGIVGNFIIFMLWLNLLAILLLFGTAVNVSLDQLRYGPATYSNGPLAEFIAKRRKK"]}}, {"location": "[473106:474021](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.9"], "codon_start": ["1"], "db_xref": ["COG:COG1210"], "gene": ["gtaB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q05852"], "locus_tag": ["MAAAAKME_05070"], "product": ["UTP--glucose-1-phosphate uridylyltransferase"], "transl_table": ["11"], "translation": ["MKVRKAIIPAAGLGTRFLPATKAMPKEMLPIVDKPTIQFIVEEAMASGIEDILIITGRSKRAIEDHFDSNTELEDNLTEKHKDALLKLARETTMSNIKVNLYFTRQPHPNGLGDAVNRARSFIAGEPFVVMLGDDLMRDKTPLTKQLIDCYHETHASTIAVMKVPNEEVNKYGVIDPIGETAPDLYNVKAFVEKPDVDKAPSDLAIIGRYLLTPEIFDMLDKQKAGAGGEIQLTDAIDALNKTQRVFAHEFKGQRFDVGNKEGYMETSIQYGLRHPETKDALRKYIIDLGKKLESEGKKKPAGK"]}}, {"location": "[474081:474363](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLEDFLQLLAGLGGQNVLYLQVQNQTLPLSKFVLAREDCQLLCGGQAMTLAKFRQLTGKGSKSIPLSFCWQEKEIPVYGVQILPAEGKIICK"]}}, {"location": "[474478:475447](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.99.20"], "codon_start": ["1"], "gene": ["menH_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01660"], "locus_tag": ["MAAAAKME_05090"], "product": ["2-succinyl-6-hydroxy-2, 4-cyclohexadiene-1-carboxylate synthase"], "transl_table": ["11"], "translation": ["MKKKNKKRSNYRLVKILGGLLAVLALALAGAGYYFFNMAVVPGKKSFVTNGTVQLTKSTPQYKQKLWYKQVTKQHWQLRSANNNYLLRANYIPAKNSAKTVIILHGYMSNKENMGAYAQLFHSLGYNTLLPDAEAHGQSQGKYVGYGWLEKNDVKKWAEQVIKKNGQKSKIVIFGVSMGGATTMMTSGLNLPKQVKCFIEDCGYTSAKDEIDHEAQALYNMPAFPRFPLVEILSGITKLKAGYFLAQASSLAQLKKNTRPMLFIHGSKDTFVPTKMVYKNYRASRGPKQLLIVKGAQHAKSYEHNPALYARTVKQFLAKYAK"]}}, {"location": "[475828:477211](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.189"], "codon_start": ["1"], "db_xref": ["COG:COG2265"], "gene": ["rlmCD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31503"], "locus_tag": ["MAAAAKME_05100"], "product": ["23S rRNA (uracil-C(5))-methyltransferase RlmCD"], "transl_table": ["11"], "translation": ["MQKKHFSKNASKERHVIITIKRLGINGEGIGYYKRKIIFIPGALPDEVVVAKIVKDHPQYLEGELVRIKEASPDRVPFPSGVDPRIGGLELAHLSYAGQLKFKKDNLVSALEKYHPRGYKNYKIKNTIPAPDQWHYRAKAQYQIERENHHVSLGLYAPNSHQLIDLPEMPTQSEDTQATERAIRDLIIKLRVPIANRRRNLPGVKTIVVRQAEASQEMQVTLITVGHKLNNLLQLADEIMRLPKVVSVYQNETDWQNPQVWGNKTSKLRGKNQVTEEIMGKKFALSPRAFFQLNPVQTATLYSEALKLLSLTPDMTLIDAYSGVGTLGILAADQVKQVVGIESIPEAVLDAQHNVELNHVRNAEYLHGSVEKLLPRLKEDGLPIDALIVDPPRTGLAKSLIKTLLRVKPASFVYISCNPSTLAQDLVLLGEAYDVRVIENVDMLPQTPRCECIAKLTLRK"]}}, {"location": "[477371:478187](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["recX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66003"], "locus_tag": ["MAAAAKME_05110"], "product": ["Regulatory protein RecX"], "transl_table": ["11"], "translation": ["MAIITKVSAQKRQGRYNIFLDQEYAFSVSEKTLAEFVLLKGQELSPQKINEILDYEASAKASDLAARYLSYQPRTIKEVTDYLSQHEISRSAAKRAVNELTHLGYLDDAAYARLFVKNNLQVGKNGPGAVRRDLKKKGVDDDLIEAALADVTDEEWAGVGKRLVKSLLGQQGKIAKREVDRKMQTKLLSHGFSGSLAQAVTQDLVPEADEDQERAALVKQVLKAYKRFKRYEPGVREQKMRQYLYSHGFSGDEISAFLVGEIIPLEELEEY"]}}, {"location": "[478208:478685](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTEINELTFIGKAFPDRMMDANGTFAAANQELEADPAFQAFVKEAGLAGQRASLIVFGPENFMYWYGVIAPKDSEVSGLLKFSLPSARVFQKEETANAAYFDLPLNFELPRFLDEAGDLGSDFQAQLEENPNPYILRQLDLGSKKLTKSLYLPVSQN"]}}, {"location": "[478681:479149](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKMRRIMLVFVFLLLIPYICSLAIIGIGFNALVLHSTSHFRTAVGAFVGAIIMLAVKATIQRPLNLLAGDIYDSFLQQILRFFSIRRRPLLQVANFILDFVLCTLATIVIRLLLPLKWIVGTSMGFVILVMFISTCLGAYIEYDNLSIDAEIKQS"]}}, {"location": "[479249:480107](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WFP1"], "locus_tag": ["MAAAAKME_05140"], "note": ["UPF0053 protein Rv2366c"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSDPATGSLFDKLRSRFSSNEESGKDQLQAEIDQLHAGNVLTDTEYSMIEGSMAFHDKVAREVMVPRTDAFMIDIEDDLEENLDDILRQPYSRIPVYHQDKDQIVGVIHIRTILREARQHGFDQLTYDRLISPPLFAPETIELDDLLVQMQTSQQQLAILTDEYGGVTGLASIEDLLEEIVGDIDDEVDKAEVLVRQLNDRQFVIYGKMPLTDFNDRFGTELEMEDVDTLAGYMITKLGVIPGRGEQLEVPLDNGMVLTTRRMRGVAALNGLIDPARRKLRGRN"]}}, {"location": "[480113:481685](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["prfC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99V72"], "locus_tag": ["MAAAAKME_05150"], "product": ["Peptide chain release factor 3"], "transl_table": ["11"], "translation": ["MNKELLDKVNKRRTFAIISHPDAGKTTITEQMLLLGGVIRSAGTVKARKTGNYATSDWMEIEKKRGISVTSSVMQFEYQGKRINILDTPGHQDFSEDTYRTLMAVDAAVMVIDSARGIEPQTKKLFKVVRQRGIPVFTFMNKLDRDGREPLDLVAELEEVLGIEGVAMNWPIGMGQSLLGLYDLANQRVELYHPEEGQDRFIALADGKAPAGSPLADDPQFEETLGEIELLEGAGASFDRAKVLAGQQTPVFFGSALTNFGVETFLEQFVDLAPAPGEHEVNGDEELKPDDDEFSGFIFKIQANMNPQHRDRIAFVRVCSGEFSKGLDVTLARTGKQVRLNNAVEFESSARVQVSEAVAGDIVGLYDTGNFQIGDSVYAGKRKLEFPPLPEFTPELFMRVSPKNVMKQKSFHKGMNQLVQEGAVQLYRNYQTDDYILGAVGQLQFEVFQYRMKNEYNSEVEMTSIGHRVARWINPDQLDPKMSSSRNLLVKDRFGNPLFLFENAFAERWFHDKYPDVELTEKL"]}}, {"location": "[481786:481975](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMNNNLYLKILWVLLYGIVAFYTFTDKMMMAMYWMAGVMFTQAVLDLVYYFLPKSKTEMTEC"]}}, {"location": "[481996:482245](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDMETITNAFVEEMGVEPGEVFMPGMDVENMDMGACFHAAEAETSRRLVEAVTAASRAGHEGHHDAASGASHHDATSGASHH"]}}, {"location": "[482290:482623](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "gene": ["mco_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q69HT9"], "locus_tag": ["MAAAAKME_05180"], "product": ["Multicopper oxidase mco"], "transl_table": ["11"], "translation": ["MDDNDKINGLRFSMERIDMKQTLNSVEYWDVTNTNNSASRMLHPFHIHGTHFLVVSRNGQKPNPNEINVYKDTIEVGPGETVRLKVYFQNAGVFMYHCHIIEHEDAGMMA"]}}, {"location": "[482644:483013](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2132"], "gene": ["ftsP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26648"], "locus_tag": ["MAAAAKME_05190"], "product": ["Cell division protein FtsP"], "transl_table": ["11"], "translation": ["MPLINGVIRPYVDVTTQKVRLLFLGGSNRREWRLHFENDLTMTQIGGDDSFLRHPIDVKKLLIGPGERQQVIVDFAGYKEGDVVSLYTDDFKLVKFRIHAFEKDDRELPFNIFTPDDPAVNS"]}}, {"location": "[483150:483669](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "gene": ["mco_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q69HT9"], "locus_tag": ["MAAAAKME_05200"], "product": ["Multicopper oxidase mco"], "transl_table": ["11"], "translation": ["MTVYPDYFYAEKDFDTSHMGYKPLTIPAGVEAQPLAVPPLLAPDKVDANDIYYTIEAQEGESQILPGKKTETWGYNAPLLGQTLVVKTGQRVHVRLKNSLPVLTSFHWHGMEVPGPITDGGCHAPVYPGEEKDIEFTVKQPAALTWLHAHPCPSTVNGHAGLDGPGHVGCGY"]}}, {"location": "[483954:484233](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHLIDVTNSYAELVHSQLNTTSVNYVKVYSLGNTTVVYTESPIAIGIVLENHHRKIREEELEFVIKRLIPDHTSYQLTVDKHRRVVEIHVDK"]}}, {"location": "[484348:486544](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0542"], "gene": ["clpE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S5Z2"], "locus_tag": ["MAAAAKME_05220"], "product": ["ATP-dependent Clp protease ATP-binding subunit ClpE"], "transl_table": ["11"], "translation": ["MFCQNCHQRQASIHLYTKINGQNKEIDLCQQCYQELRNQQGNQMNNDNFFGDFDELFNALNGRSNGANRDNNQNPSGPTPGRGGNGGGQSLLDQFGTDLTALAKKGKIDPVIGRDREIARVIEILNRRTKNNPVLIGEAGVGKTAVVEGLAQDIVDGSVPAKLQNKRIISLNMVSMVQGTGIRGQFEQRMQQLVKELQSQPDIILFIDEIHEIVGVGNSEGGMDAGNIIKPALARGELQLVGATTIKEFREIEKDSALARRFQPVEVKEPSIDETIKILKGIQKRYEDYHHVKYTDNAIEAAVKLSARYIQDRFLPDKAIDLLDEAGSRMNLTIPYIDKEKIQERIDAAEKLKQDALKNEDYEKAAYYRDQIEKYEKLKDQNVDPDKAPTITAKVMDKIVEEKTNIPVGDIQAQEEKQLANLASDLKAKVIGQDEAVDKVARAIRRNRIGFNKSGRPIGSFLFVGPTGVGKTELAKQLALKMFGSEDAMIRFDMSEFMEQYSVSKLIGSAPGYVGYEEAGQLTERVRHNPYSLILLDEVEKAHPDVLNLFLQILDDGRLTDSQGRTVSFKDTIIIMTSNAGQGIKTASVGFTAENNKNEAEETRKVMSQYFKPEFLNRFDDIIQFHPLSKDNLLQIVNLLLDKTNAMVSDQGLHIKVTDAAKDKLVEEGYDPEMGARPLRRVIQEEIEDKVADYKLDHTEAKQLVVDLRDGEITISEEVPALPATEASKEK"]}}, {"location": "[486712:486913](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDYTDILEKLVLGDLLEYQIDPQKDPEDAFAFQQSLRNYGKNKKITGRAGRGGVITYTSIENKPKY"]}}, {"location": "[487020:487287](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1925"], "gene": ["ptsH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07515"], "locus_tag": ["MAAAAKME_05240"], "product": ["Phosphocarrier protein HPr"], "transl_table": ["11"], "translation": ["MEKKEFHIIAETGIHARPATLLVQAASKFGSDINLEYNGKSVNLKSIMGVMSLGVGQGADVTISAEGDDEKEAIATVAETMSKEGLAE"]}}, {"location": "[487286:489014](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.3.9"], "codon_start": ["1"], "db_xref": ["COG:COG1080"], "gene": ["ptsI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23530"], "locus_tag": ["MAAAAKME_05250"], "product": ["Phosphoenolpyruvate-protein phosphotransferase"], "transl_table": ["11"], "translation": ["MTETLKGIAASDGIAVAPAYLLVEPDLSFEKKSIADAEAEVARFDKAVAESQAELESIRKVAAESLGEEEAQVFDAHLMFLSDPEFTGQISAKIKSDAVNSEAALDEVAQNFITIFQNMTDNAYMKERAADVRDVSKRIMAHLLGKELPNLASIDHEVVLVAEDLTPSDTAQLNKKYVKGFVTDLGGRTAHSAIMARSLEIPAVVGTEKITTSVENGQMLIADGLDGVAIVEPSEEQVADYRKKGDDFAKQKAEWRKLKDEPSVTADGKHFTVAANIGTPDDLAGVLENGAEAVGLFRTEFLYMNSNDFPTEEDQFEAYKKVLEGMNGKQVIIRTMDIGGDKHLSYWDLPEEMNPFLGIRAIRLSLKNKEIFRTQLRALLRASAYGKLGIMFPMIGTLDELHQAKAVLAEEKDKLVKEGVKVGDDLQVGMMIEVPAAAVLADQFAKEVDFFAIGTNDLIQYTMAADRGNENVSYLYQPYNPSVLRLIKHTIDSAHKAGIWCGMCGEAAGDSIMFPILLSMGLDEYSMSATSILRIRNEMKKLSTEELASLADKATKESLTNEDNIELVKNLMADK"]}}, {"location": "[489192:489597](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["spxA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60379"], "locus_tag": ["MAAAAKME_05260"], "product": ["Regulatory protein Spx"], "transl_table": ["11"], "translation": ["MVDLYVSPSCTSCRKAKQWLEQHNIPYKERNIISDPLNREEIIHVLRMTEEGTEEIVSTRSKAFQELNIDLDDISMNELIDLIEKNPSLLRRPIILDDRRMQVGYNEDEIRRFLPHSVRRLEIARAKRLADQYF"]}}, {"location": "[489700:490450](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4862"], "gene": ["mecA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37958"], "locus_tag": ["MAAAAKME_05270"], "product": ["Adapter protein MecA 1"], "transl_table": ["11"], "translation": ["MRVEKVNENTLRVSMTREDLNQRGLKILDLLGNRERVQEFFLSVLREVDEDNDFASDAPVTFQVMPNDGGIDLLITKMNAGSDLPEEMRRFFDPEANGVGDDMAEAVEEDDWAFSDLNPADDANTEMDPVVMQDLGNTDDEDYEDYWSYQETHVLVFDDIDDLLALADSLKVSDLASSVYYYKQQFYLKLAFMDENYAEIKPADAWAIANEFGRQVSADEFQQAQAHGQCLFQQDALGALRRQFASKRA"]}}, {"location": "[490551:490749](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYAALLNKELVLAVSEAGKVRENPAYLNQEVYRCPRCQKPVILVLSQKAEPFFKHYQAYRGLGEQ"]}}, {"location": "[490767:491412](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLKAALTAAGLNAKAEVPLADGALRADVLATPLLAFEVQCAPLSKGEFAHRHALYQAIGIKDVWLVGRRHFLGEKLKQTQLIFFRENRCWGSYYLEIHQEAGLIRLKYQIRQAPVSQTLLYRQVDFALDAEGIAALWHFRPLLPPPLADDWVKERDYLDQQLKEKSKLGQKLGELMYLAGYTVFTLPKEAFSTWRRPGEKSWLLKFLQQKTSP"]}}, {"location": "[491424:492069](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFELFLFINPLGLSCYQLEKRIRLLAAELQLEISVNYIPLVTMEAMKADMVKRNWNFNTSINLANYHNASVSAQSFYYAVQIAYGKKKARSFLFKLQESLSDGQRSYSPALAEELLESLNIKPEKISSTLNDACLKDVIARDQQLARKFQITVLPSTVVFDDQIDNSGLLLDGELSDDDLLQVFQNSADSCLEPLMQLTENAPLYYPVSHLHLL"]}}, {"location": "[492149:492752](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG4116"], "gene": ["yjbK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31609"], "locus_tag": ["MAAAAKME_05310"], "product": ["Putative triphosphatase YjbK"], "transl_table": ["11"], "translation": ["MSKNREIEAKVALDQASYEAIVAAYPVKSDFKQSNHYFDTPDKQLKEDHSALRIRCFQDRAEETIKVPVKKLQETYHESLEINDDLTLPEAEDFLKKGRPSLTGNVGQYLLEHYPDKASQLTLFSWSKTRRILLDGPKGCELTLDQTSYPDGYQDWEMEIENDSPAAIKEALAEIKTRFALPVKSANNQSKIARASQHAK"]}}, {"location": "[492849:493488](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.5"], "codon_start": ["1"], "db_xref": ["COG:COG2357"], "gene": ["yjbM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31611"], "locus_tag": ["MAAAAKME_05320"], "product": ["GTP pyrophosphokinase YjbM"], "transl_table": ["11"], "translation": ["MSVITDWDTFLWPYNEAANELKVKFRALRQSFLTKGEHSPIEFVVGRVKTVDSIKEKMQRRVISPDVIETDMQDIAGIRIMCQFVDDIYRVVDLLHARDDLEVVEERDYIQNAKPSGYRSYHMVVAYTVYLSEGDKRLLAEIQIRTLAMNFWATVEHTLNYKYQGAYPEDISERLKRTAEAAYQLDEEMSSIRNEVKEAQKIFTKNKGKEKS"]}}, {"location": "[493484:494282](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.23"], "codon_start": ["1"], "db_xref": ["COG:COG0061"], "gene": ["nadK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65779"], "locus_tag": ["MAAAAKME_05330"], "product": ["NAD kinase"], "transl_table": ["11"], "translation": ["MKVAIVHNDRVTTQVAVRHLQVLLAEKGILQDQQHPDLVISVGGDGTLISAFHKYKQQLDKVCFAGIHTGHLGFYTDWRNYDMEKLVDALASHPVEENEVGYPLLDMKVTTSCGEKRFLALNEASIKRISKTMEAEVWLGGERFENFRGDGLCVSTPTGSTAYSKSLGGAVIHPRLKTLQLTEIASINNLVFRTVGSPIVIAPDEWITIVPKISDRVVVIVDGERISLTDVQKVDYKIAAEEIRFYQYGHHHFWERVNDAFIGDR"]}}, {"location": "[494296:495190](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVAKNDPGQLSHFLLKKGFSRRAVNNCKNHGGMMLVNHHRRNGSYRLKEGDVVHFLMGQEPVNPWLKVSRRPLDIVEETADYLVINKPAGLLSIPSGFHAEDAVINRVLAYFEKQGVNPAYVKPHIVTRLDQDTSGLVLLGKNAIAHDRFSKLGKDAFIKKYHAIVHGNFAEGDLSGLIDKPLARVGDTVKREVNPKGQRALTEYRVLNQVPGASLVELRLLTGRTHQIRIHMASIGHVLYGDDLYGARDAFARQALNCFYLAFPNPFSGEEREIEIPDPGDMQGLWRQLKQEAGK"]}}, {"location": "[495275:495464](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSLLCLLFILWLCWKMGVALWRVLIFLIGVGLAFALLSSVVLPLLAICALGGLAWAVISNA"]}}, {"location": "[495535:496363](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.27"], "codon_start": ["1"], "gene": ["uppP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5WNX2"], "locus_tag": ["MAAAAKME_05360"], "product": ["Undecaprenyl-diphosphatase"], "transl_table": ["11"], "translation": ["MLDIFKAIILGIIEGVTEFLPISSTGHLYLADYIIKLDQPTSFINMFMVVIQLGAILSVIVIYFNKLNPFAPSKSKREKGQTWQIWFKVIAAVLPSIIIGLPLNDWLEENMTSWQVISATLIIYGILFIVLENYYAKRQPSLTDLNKMSNKTALLIGCFQVLSMIPGTSRSGATILGAMLIGSSRYVATEFSFFLAIPTMFGASLLKLVKFFKAGHVFVGNQLAILLVGMVVSFIVAYLSIKFLLKYVQTHDFKPFGWYRIVLGIIVTICGLVFA"]}}, {"location": "[496386:497397](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG2706"], "gene": ["pgl"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34499"], "locus_tag": ["MAAAAKME_05370"], "product": ["6-phosphogluconolactonase"], "transl_table": ["11"], "translation": ["MHILIGGYTKHESAGIYQFDFIGSGDQAHLEQRRNVVEVGGPTYFQKDGQFIFTIKNENGQGGIAAFANGKLVSQLLHEGSSPAYIGINKEKKLLYTANYHTGVLAVISYDDQGQLTLLDQVKHENKALGPRPEQAGAHPHYFDETPGGHLVSCDLGQDRVDFYGFDGQKLTHLASYQNEDGFGSRHLAFSPDGKYFYVAGELSSQVNVVKFDEENWMFRSLATYSTIPESWDQHNGAAAIRLSSDGKFLYVSNRGHDSIAVFAVLPDQALKLVQRVSTFGEFPRDFNWDAEEKYVVAANQNSNNATLYQRQSDGTLTPLEKDIAVPEGTRVLFTD"]}}, {"location": "[497561:497942](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWISTIKAIGPNAISEKDRVVILFGQTAKDELQDVSVIQTFDDEQAAQAVVLKKGDTVTIDGTTFLINYVGPMAVSNLRALQHASLFFTDKVPKKPMSNALYLDLPEDQEMPKFRVDDKIVYEHL"]}}, {"location": "[497951:499088](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKRDTSLFTDWVLNNRFSVGLINVLLVLVIVLVFNKISFILNPVNTFISAILPPLLVAMVQYYLMEPVVDKLEEKFKVPRTVTIMVIFAIVTVFLIWAINSLIPVVQSQIDSLVKNWPTIWKNSTNAVDELLHSPKFSGLRDSLQKQMTSLQKNFSKSMGSTVSSALGNLTSAVTVATAVFTTLATAPFLLFFMLKDGHKLRPFLVKFAPQRWEQATSKLLHEVNQAVSSYVIGQVSVAICVGIMFFIGYTIIGEPYGAALAICAGFLNLIPYFGAFIGLIPALIIALVTDLPMVAKVLVVFFIEQIIETRVISPLVVGNRLKMHPATTIIVMLGAGSVWGLWGVIGGIPIYAVMKILLTHVYRYYRKVSHLYDDSF"]}}, {"location": "[499133:499691](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.207"], "codon_start": ["1"], "db_xref": ["COG:COG0219"], "gene": ["trmL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AGJ7"], "locus_tag": ["MAAAAKME_05400"], "product": ["tRNA (cytidine(34)-2'-O)-methyltransferase"], "transl_table": ["11"], "translation": ["MTNHIVLFEPEIPDNTGNIARTCAGTNTVLDLIEPLGFRLDDKHLKRAVLDYGGEVEIRRHDDLRAFLATLPDNAEMYLISKFSSKVYTDVDYTDESKDYYFVFGRETTGLPETFMRQYADRNLRIPMSDKIRAFNLSNSAAIVIFEALRQQGFPHMEKSHHYENDKLKDDYNRPGRYQRNLPKH"]}}, {"location": "[499722:500118](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEFNKQTPIIVRAFHYDLLDEPEEKNEVNVAIRQVVATGEDGVEDAGEAGGYYEVAVVYDVTPDEDNIIEISGVNTQVVQLLGYHGDGQDLDQETYRLLSRPLVEYIETLTYEVSQVALDEPINLDFEPNF"]}}, {"location": "[500137:502456](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1674"], "gene": ["spoIIIE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21458"], "locus_tag": ["MAAAAKME_05420"], "product": ["DNA translocase SpoIIIE"], "transl_table": ["11"], "translation": ["MPRKKRQANRKNKNKKKTEESLSWVVTGIVSILVAILALLRFGWLGKELANLLRLLIGDSYLLGGAFLAILGLVMLIYGQPPRFGFKRTSGLILAYLGLLYILASRFFNVRSVHSEFLTAFKNVIFEELARANVTVSVGGGWIGSFLYGILYQLLGQIGGLCLAVLNIISGILMFFDVKFRSLVAAFQKISRSFIQQSKDGAGQLKEKYSEYREQQRKDPNNREKLTDPWRDSEEAKPSLPEIQVAEQHPDPPVTNSLELDDLLKPRSQAEDDQKMILADQQVDHGLDKSTVSYDDNYQFPPLSLLKAVHASDQSSDKDKTRQNTAILEETFKSFGVEVNVKRAILGPTITRYEVQPAVGVKVSRIVNLADDLALALAAKDIRIEAPIPGKPYIGIEVPNQKAQSVAFKDAMEHQDQKAKDHPLMVPLGKDVTGQIISADLTKMPHLLVAGSTGSGKSVAINTILTSILMKARPDEVKLVLIDPKMVELSVYSGVPHLMIPVVTDSRLASKALKKVVDEMERRYKLFAAGSVRNMGEYNRKVAENNKDTSRPVMEPLPYILVVVDELSDLMMVGGHDVENSIVRLGQMARAAGIHMILATQRPSVDVITGLIKANVPSRISFAVSSGVDSRTILDQVGAEKLLGRGDMLYLPIGASKPDRIQGGYIDVDEVEAVVDWVKGQQSAEYDEKMIPQAGDDDESSDDDVDDEYYQQAVDLVRRQQSASTSMLQRRFRIGYNRAARLIDELEEHGVVGPPEGSKPRKVLLPPEGQEE"]}}, {"location": "[502461:503685](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEENISIQSNQKFTSGNLGLFVRLPLTKHNMSMASLLCRMQMNESELFPDPGLQQVELQQRYSFQFEAVVQLFGKEMVISYLANFVEPQEILDPDYNYRQIAETFAGLATRPLITPSSVQLAQRQLEEEYQELMAEPSNAALSAFFNNWYADQPDYAASFIGTIEDITKATSQEVRCFADAIKTQASCVFGHVYDARQVKRLLQKKLQEEGWPGLALDFGSRDLLISAPDLRIEKTDEQGKQQAQLFLGYAYKGQPSLQDLATATVLRQYLTGDQSSRLFSKVREENGAAYAVESNWYADNALFLVNAGLDPDKLDLARQIIGKEMQMVADGRIDPGLLKQSRQALANRHLLNQDHASWLLAKDLRYKLHADYEDFDMMAAVSRVTSGRLADFAQKLYLNESYVLK"]}}, {"location": "[503681:504935](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKPEIIRKDFPSGFKAQVIRRKGFNQRFFGIIVDFGSADPQPVPGLAHFLEHKLFAAEEGDLSLEFEKMGASVNAFTSFNETMYYASGVKNVGPMIDLLFKLVGQPYFTDENVAKEIPIIQQELAMYQDEPDWILGDRLLRGIYGDCNLAIDVAGTRESIASVTKEKLQAAYDENYVAARMSFVACGDFTDNQVKTILRQARKLSDQYLRPGKPQKEADLVPFLPSGQDWNLIGGEVPLFTAAIPLPNFKKVLASRDMSQILLEIMLESKLGAASHWFARARQAGLISQPLQISVTYTRQGAYAVLLGMSSEAEVLLDQIKAELAPDKLFSKKQEMEMRQLFEIHKRSWLAQTVRSLDNLSGFAVEMAEESLDEEDLFANVEQMQAMNFADYRAYCQELCEGASINTARLLEEDDQ"]}}, {"location": "[504931:505660](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.100"], "codon_start": ["1"], "gene": ["fabG_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KQH7"], "locus_tag": ["MAAAAKME_05450"], "product": ["3-oxoacyl-[acyl-carrier-protein] reductase FabG"], "transl_table": ["11"], "translation": ["MKRALIFGATGGIGQAIAARLAESGWSMYLHCNSNWEEASDLARTLAEKHPLQDFMPIKLNFLAGDDQLKNFASSLLPVNAVVFAQGITNYDFLGSQSSQVIDQIIKVNLENPIKLTKLLESQLLKQEHSRIVYLGSVYGGQGSAMEAVYSATKGGISRFAQAYAREVAASRFTVNVVAPGAVNTAMNAMFSPETLKELAEEIPAGHLAKPKEIAYWVDCLLNPESDYLTGQTIYVSGGWLE"]}}, {"location": "[505728:506904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSGIGEQLRKAREAKGLSISDIEKATKIQSRYLEAIENNDFDKLPGDFYVRAFIRQYAQIVGLDGKELLSQYQGEVANEVTSEVSQPAASSPAQEVHEEAHEEEAAPVEPVENKPARISASRPAKREVAEEAPKDAKWRKLVPRLALGYGIALLLLIGGMVFANMKKAGSSSQKENAGSSVTITSKKSSSKKSSSASSSSKKKKTSSIKVASLGGSSYRVTGIKSRTPLVVRSSKQSIYYYVSVDNVITNQGTLQSSEKHTETVKKGQTLIVYLGTDTGVTVTVGGKKIPFTPINGTTRLTIYLGDSSASASSSAASRTTSTNTNTNTSTSYSSRASSSVQSSASSRPAASSSSVQSSSQASSSAAPSSQSSAAPSSSAASSSKQQEKNGH"]}}, {"location": "[506930:507494](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.5"], "codon_start": ["1"], "gene": ["pgsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63756"], "locus_tag": ["MAAAAKME_05470"], "product": ["CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase"], "transl_table": ["11"], "translation": ["MNLPNKLTVFRIFLIPVFMILLIAQWPAGSFTLAGTEILWSRVVAMIVFAVASATDWFDGHIARSRGLVTNFGKFADPLADKMLTMTAFIFMVALNLAPAWVVAIIVCRELAVTGLRLIVVENNGKVMAAAMPGKIKTTCQMLSIIFLLFGDIFHLGTILLYLALIFTIYSGYDYFHSSWDVFKGSM"]}}, {"location": "[507699:508695](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0468"], "gene": ["recA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16971"], "locus_tag": ["MAAAAKME_05480"], "product": ["Protein RecA"], "transl_table": ["11"], "translation": ["MAKDEKKAALEAALKKIEKNFGKGAVMRMGEKVDTQISTVPSGSLALDAALGVGGYPRGRIVEIYGPESSGKTTVALHAVAEVQKRGGTAAYIDAENAMDPAYAEALGVDIDQLILSQPNTGEEGLQIADTLISSGAIDIVVVDSVAALVPRAEIEGEMGDSHVGLQARLMSQALRKLSGTIAKTKTIAIFINQIREKVGVMFGNPETTPGGRALKFYSTIRLEVRRAEQIKQSTNVIGNRVKIKVVKNKVAPPFKVAEVDIMYGQGISQSGELLDMAADQDIVDKAGAWYSYHGEKIGQGRENAKKYLEEHPDVSEDIQTQVRKGLRNRC"]}}, {"location": "[508957:510601](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1418"], "gene": ["rny"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31774"], "locus_tag": ["MAAAAKME_05490"], "product": ["Ribonuclease Y"], "transl_table": ["11"], "translation": ["MMNNTVFPLATVAVIFLISLVVGCLIGYAIRKNVWETRAENARQSVEAILAKAKAEVEVAKAEIQAQKQAAEAVKRDAETEKKAKILEAQEEIRDYRQKVEDELNRRRDEAARKENRLQQKEDTLDHRSSLLDDREKQLTQRKAQIKQQEEKVAGLLEEAHGLVEKQNDKLLEISRLDEEEAKKIVLAQVSDHLTKEKAELIRANEEEISARADRFAHQIIVDAIQSSAADTVAETTVSVVDLPNDDMKGRIIGREGRNIRSFEAMTGVDLIIDDTPNTVTLSGFDSIRREVAKRALQKLIKDGRIHPARIEEMVDKARKEVNDDIYEAGESALMELGIHRMNPELVKILGRLKYRTSYGQNVLAHSIEVGKLAGTMAAELGLDEKLAVRAGLLHDIGKAIDHDIEGSHVEIGVELTRKYHEPDLVVNAIAAHHGDVPKLSFIADLVVAADTISSARPGARSESLENYIRRLTELEDIAGSYDGVKQAYAIQAGREVRVMVEPGKISDDEITVLAHEIRDRVEKELDYPGNIKITVIREKRAVAVAK"]}}, {"location": "[510704:511904](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.33"], "codon_start": ["1"], "db_xref": ["COG:COG0472"], "gene": ["tagO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34753"], "locus_tag": ["MAAAAKME_05500"], "product": ["putative undecaprenyl-phosphate N-acetylglucosaminyl 1-phosphate transferase"], "transl_table": ["11"], "translation": ["MFKIIVDLFLLVIIQVAITPFIRRLAFVLGAVDNPNARRVNKKPMPTIGGLGIFVTYNIGTFILLREQFPTHELFALLLASSVIVLTGMIDDILELKPGQKMGGIFIAAMITYFLAEIRMTELNIPFTGQTINLPWYLSLPITIFWILALTNAVNLIDGLDGLAAGVSCISLLTMGIVGYFFLRNQGLYVPIACLMLAACLLGFLPYNFNPAKIFLGDTGALYLGFMISVLALKGLKNVTFISLLVPVIILGVPISDTVYAMIRRKLNKKPISQADKHHLHHQLMNLGLTQRQTVLVIYALSLIFSFVSMLFLLSPIWAMVLLLVGLLIAVELFVESIGLLGEKYKPLSHLINRLVLHSTHTKEPDVEVWHQGEAKPRKWQERSKGGHKPAEKNSGKKQ"]}}, {"location": "[511956:512616](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1739"], "gene": ["yigZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27862"], "locus_tag": ["MAAAAKME_05510"], "product": ["IMPACT family member YigZ"], "transl_table": ["11"], "translation": ["MSKEADFLTIKENGQHELVIKKSRFIATLARVQDEEEARDFIAATSKKYHDATHNTYAYTLGINDDRVKSSDNGEPAGTAGVPELKTLQLMGLKNVAVVVTRYFGGIKLGAGGLIRAYSSSVSEAAEAIGIVKRVKQQELIFSIPYNRYDKVDHFLKEKEVFVDGTEYGVNITISIYLDLDQIDPFISDLTELLNGEPDLIKGDQRYNEIPVKSGEKRF"]}}, {"location": "[512659:513937](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG4098"], "gene": ["comFA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39145"], "locus_tag": ["MAAAAKME_05520"], "product": ["ComF operon protein 1"], "transl_table": ["11"], "translation": ["MTEEKESLAGRQWLVDKVDNSIKEGQTAIPAIENGICQRCGSSCWVRLPSGFLYCRACVGLGRLDEGKLLVRQAAGSHYPARAGMTWTGQLQERQEGVSRFLLEKFAAKEDCLVEAVTGAGKTEMIFPLLAEAFSCGCRVAIATPRIDVVNELYPRLVAAFGEVEIGKYHGREEKEAANEQLVICTTHQLLKYYQAFDLLIIDEIDSFPYAGNPQLHFAAGNAVKKTGSQVFLTATPPEDLLKAARQGKLAIVRLNRRFHCYPLPVPRLDLYVKPFLTKGRLHPKLARRIKMAAKSGHPLLVFLPRIAQMPQYFAAVKRLLPDLRLATVYAQDPDRLEKVEKFRKGDLDLLLTTTILERGVTFKHVWVIIVAADDEIYSAASMVQIAGRVGRDKQDPDGLVLFCYRRYSRQIRSAVKQIKEMNRG"]}}, {"location": "[513933:514488](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLCLFCDQPFTGDLDMRRLLLPGKSKTSCLCPSCRQLFAQIGTAFCPQCGRQQDSGEICQDCQKWRRIYQGNFLNNQAVYCYNQAFHDLMVRYKRYGDYLLCKVLQELAAPAVQKLAADYYVPVPTSPEHRKKRGYDTVWEIFTPPFALNATFSQEGWSWGPGGKGQKSQDAGQAKFLFKSGI"]}}, {"location": "[514700:515258](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hpf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H3GEZ8"], "locus_tag": ["MAAAAKME_05540"], "product": ["Ribosome hibernation promotion factor"], "transl_table": ["11"], "translation": ["MLKYNVRGENIEVTEALRDYVEKRLTKLEKYFDLSQDVIAHVNLKVYRDHSAKVEVTIPLPYLVLRAEETTDDMYRSIDFVSEKLERQIRKYKTRVNRKSREKGVEEFFIPEDAPVEEEKVEKAPMFKIVRNKRVNLKPMDPEEAILQMDMLEHDFFVFQDAETNGTSVVYRRNDGSYGLIETNE"]}}, {"location": "[515417:517820](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0653"], "gene": ["secA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P28366"], "locus_tag": ["MAAAAKME_05550"], "product": ["Protein translocase subunit SecA"], "transl_table": ["11"], "translation": ["MANILKKLYNADKRELKRFEKIADQVESYADQMAALSDEELQAKTPEFRSRIEKGESLDDLLPEAFAVSREASKRVLGLYPFRVQILGGIALHRGNIAEMMTGEGKTLTATMPVYLNALSGKGVHVVTVNEYLSSRDETEMGQLYRWLGLTVGLNVSTMSPEEKRKAYACDVTYSTNSELGFDYLRDNMVVYKEQMVQRPLNYAIIDEVDSILIDEARTPLIISGEAEQANADYVRADRFVKKLVEDKSDNDADDDEDHGDYKIDWPTKTISLTRTGIQKACDHFGLKNLYDVENQKLVHHIDQALRANYIMLKDIDYVVQDGEVLIVDSFTGRVMEGRRFSDGLHQAIEAKEGVKIQEESQTQATITYQNYFRMYQKLSGMTGTAKTEEEEFREIYNMEVITIPTNRPVIRQDMPDLLYPTLDSKFKAVVDEIKERHAKGQPILVGTVSIESSERLSHMLDKEHIPHAVLNAKNHAKEAAIIMNAGQRGAVTIATNMAGRGTDIKLGPGVKELGGLAVIGTERHESRRIDNQLRGRSGRQGDPGYTRFYLSLEDDLMKRFGGDRVKDFLDRLSDNDDDKVIESRLITRQVESAQKRVEGNNYDTRKQTLQYDDVMRIQREIIYKERMQVIDEQQSLKSVLMPMIHRTIDHQVDMFTQGDRSTWRLDSLRDFIVSSLASEEYVDSEIDFKTFTPDALKQQLYQLVEDNYQEKEAALADPEQMLEFEKVVILRVVDEHWTNHIDAMDQLRQSIGLRGYGQLNPLVEYQDSGYNMFEEMISDIEFDVTRLFMKAQIRNNLSR"]}}, {"location": "[518026:519025](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["prfB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6R4"], "locus_tag": ["MAAAAKME_05560"], "product": ["Peptide chain release factor 2"], "transl_table": ["11"], "translation": ["MAEPGFWDNQEKAQKLISETNLLKEKRDSFLALKKDLTDEETALELLRLEADADLQKDTEDQLAKLQEEFHQYELNLLLSGEYDDHNALMEIHPGAGGTEAMDWGNMLLRMYQRYCDSRGLKFEVNNFEPGDEAGLKSVSVRISGKNAYGLLKSEHGVHRLVRISPFDSAKRRHTSFASVEVIPEVDDSIEIDIDPKDLRIDVYRSSGAGGQHINKTSSAVRITHIPTGIVTTSQAQRSQFQNRDTAMNEMRAKLFHLEEEKKRKEKAALKGEQLDIAWGSQIRSYVFHPYSMVKDHRTGYETADVGGVMDGKLDPFIYAYLQWRLSQENPE"]}}, {"location": "[519035:519338](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSFTTIVLLVLAAVVALALLSVFFKALIALLPVGLVVILLLWLYYRFYWRKKYKLPSRPEPDRFKPGQADPERPRKQAQDVTVRDVDDSEVHDDEHGKTN"]}}, {"location": "[519312:520263](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG1493"], "gene": ["hprK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RE09"], "locus_tag": ["MAAAAKME_05580"], "product": ["HPr kinase/phosphorylase"], "transl_table": ["11"], "translation": ["MTNTVKLTEFINDNSNLRVLQGQECVAGKEITVSDVYRPGLELSGYFDFYPADRVQLLGRTEISYAARLDHDLRRKVFEKICQKETPCLLVSRNLPVPVELKEAAEAAGTPILISNDATTYLMSMITQYLAVKLAERSSVHGVLVEVFGMGVLLTGESGVGKSETALALVQHGHRLIADDRVDVYQRDHETVVGEAPRILKHLMEIRGIGIIDVLKLFGIGAIKDETEISLVINLTNWDSKANYDRLGFQENTRIICGIAVTQVTIPVKVGRNMENIVEVAVMNFRAKAMGFDAAKTFDENLTSLIAENSEEEKRG"]}}, {"location": "[520272:521106](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.145"], "codon_start": ["1"], "gene": ["lgt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60962"], "locus_tag": ["MAAAAKME_05590"], "product": ["Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase"], "transl_table": ["11"], "translation": ["MTLALNPIAFSIGDIHVRWYGIIIACGILLATFMSIREGQRRQIMSDDFIDLLLWGVPIGFIGARIYYVIFEWGYFSQHPDEIIAIWNGGIAIYGGLIAGAIVLLVFCYRRFLPPFLVLDIVAPGVMAAQVLGRWGNFMNQEAHGAKCSLQYLQNLHLPQFIIDQMYINGSYYKPTFLYESFFNLIGLIIILSLRHKKHLFKQGEVFMLYLAWYSVVRFFVEGMRTDSLYIFGVIRVSQALSLLLLIAVVILFVYRRVKVKPKWYLEGSGLKYPYER"]}}, {"location": "[521111:522128](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.94"], "codon_start": ["1"], "db_xref": ["COG:COG0240"], "gene": ["gpsA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97NF1"], "locus_tag": ["MAAAAKME_05600"], "product": ["Glycerol-3-phosphate dehydrogenase [NAD(P)+]"], "transl_table": ["11"], "translation": ["MTKISALGAGSWGSVLASMLADNGHEVALYAHRQVIADEINQDHTNLHYMKDWTLNPSVWASTDMGQVLKDCDVILFAVPTSAIRSVAKAVRQVLDENGRQPYLVSATKGIESGTKKLVLQIFKDEIYPDGFDKMIVLSGPSHAENTAQKDLTAITLASTSLDNAAKMQKIFSNDYVRFYTSNDPIGVQVGGAVKNVIAIAAGILAGLGYGDNAKAALMTRGLAEITRLGVAFGGQPWTFSGLSGIGDLIVTCTSVNSRNWRCGYQLGQGKPLDEVLANMGQVVEGATTVKAVYEICDKYSLDMPISASIYKVLYEGAKIDDEIKLMMSRQLGPEIRI"]}}, {"location": "[522199:523132](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0492"], "gene": ["trxB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80880"], "locus_tag": ["MAAAAKME_05610"], "product": ["Thioredoxin reductase"], "transl_table": ["11"], "translation": ["MTKEVDVVIIGAGPAGMTAAVYAARANLKTVLLDRGIYGGQMNNTADIDNYPGFVEVQGPELGEKMYQTVQNAGASYEYGDVQAVKLEGDYKRVITDSEEYLAPAVIIATGSEHKHLNVPGEEIYSGHGVSYCAVCDAAFFRDEDVTVIGGGDSAIQEGLYLAQSAKSVTVVHRRDQLRAKPELQEKAFKHPKIKFVWNALTEEIIGEDGKVSGIRYKDKVSGEEKEFATKGVFIYVGVLPVTKALDGLDILDENGWIPTDELMRTRQEGIFAAGDVRPKDLRQVTTAVGEGSVAGQEAYNYLQAKGFLK"]}}, {"location": "[523252:525295](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0556"], "gene": ["uvrB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37954"], "locus_tag": ["MAAAAKME_05620"], "product": ["UvrABC system protein B"], "transl_table": ["11"], "translation": ["MIKRQDNNKFELVSPYKPAGDQQQAIDQLTAGFQAGDKEQILKGATGTGKTYTMANVIAKMNKPTLVITHNKTLVGQLYNEFKEFFPNNAVEYFVSYYDYYQPEAYVPQSDTYIEKDSSINDEIDQLRHAATSALMSRNDVIVVASVSCIYGLGDPREYEASVLNVYTGQEYERNTLLRDLVNIQYDRNDIDLQRGRFRVRGDVVEVFPAGYSDRAYRIEFFGDEIDRIVEVDPLTGEVHGVRDSISLFPATHFMTNDDQLAGAIDRIKAEMDDQVKKFEKEGKLLEAERIKQRTTYDLEMLREVGYTNGIENYSRQMENRKAGEPPYTLLDFFPKDSLILIDESHATMPEIRAMYNGDRNRKQTLIDYGFRLPSALDNRPLKLEEFEQHVNQIMYVSATPGDYELNRTSRIVEQVIRPTGLLDPKIEVRPIEGQIDDLVAEINLRIERRERVFVTTLTKKMAEDLTDYLKDLGIKVRYLHSDIKTLERMQIIRDLRLGKFDVLIGINLLREGIDVPEVSLVAILDADKEGFLRAYRPLIQTMGRAARNANGEVIMYADRITDSMKMAIDETNRRRAIQMKYNEEHGIVPKTIIKPVRDMISVVKADKEAEKSDSFADLNFDELTAKQKKQMIANLKEQMQDAAKRLDFESAANLRDAIIELEGSVRKPIKKKGKDFNGR"]}}, {"location": "[525284:528140](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["uvrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63383"], "locus_tag": ["MAAAAKME_05630"], "product": ["UvrABC system protein A"], "transl_table": ["11"], "translation": ["MADRKIVIRGAREHNLKDIDVTIPKDQLVVITGLSGSGKSSLAFDTLYAEGRRRYVESLSSYARQFLGQMDKADVDSIDGLNPAISIDQKTTSHNPRSTVGTVTEINDYLRLLWARVGHPYCPNDGTLIQRQSVDQMVTRILDLPERSKIQLLSPVIRGKRGEHKEVFARIRRAGYVRVIVDGELHEASEEFALEKNKRHDIEIVVDRLVIKDGIRSRLFDSAEAALRLSEGYMDVDVIGGEKLSFSEYYACPLCGFTVGEMEPRLFSFNAPFGACPACDGLGMKLAVDPDLVVPDKDKSLAEGALAPWAGSKYYMGMLEQACAALKIPMDKPFKKLTKRQRDIILNGSDKEIHFHLEGDFGVNDTKQPFEGVINNVDRRYAKPMSKFMQEVMGEYMTELPCEVCGGKRLNEKALAVKVNGKNLAEASDLSIKDGLAFFKAVDLSEQEAAIAKPILKEVCDCLNFLVSVGLDYLTLSRSAGTLSGGEAQRIRLATQIGSNLSGVMYVLDEPSIGLHQRDNDRLIASLKRMRDLGNSLIVVEHDDETMRAADYLIDMGPGAGSQGGEVMAAGTPEEVMANPKSLTGQYLRGEKFIPVPLKRRKGSGKKLKLTGAAENNLKNISVEFPLSEFVVVTGVSGSGKSTLVNQILKLVLAQKLNHNSAKPGKYDKLTGWKNIEKVIDIDQSPIGRTPRSNPATYTSVFDDIRTLFAQTNEAKMRGYTKARFSFNVKGGRCETCHGDGILKIEMNFLPDVYVPCEVCHGQRYNSETLEVTYREKNIAQVLDMTISEACDFFVNIPKIHRKLQTIVDVGLGYVKLGQPATTLSGGEAQRMKLASELQKLSTGKNFYILDEPTTGLHTDDIKHLLEVLQRLVDQGNTVLVIEHNLDVIKTADWLIDLGPNGGERGGQVVCTGTPEEVADCPESWTGKYLKPVLDRDKALTESSLANKKES"]}}, {"location": "[528236:528779](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFDSGYNEKRGFDWGVFSAGVISVVLSIFLFANPGKGLRGLVIILAVLLIMQGIAWISMYAGFHGIFGPSWTTLLSGIFDILIGIFFLWDNKVGAYMIAILVAIWFIVDSVIGIVFAWHLRFFETGWYFFFNLLLNILGLVVGVMLLFRPVIAVMSTVYLIAIYLMIFGINEIALAFMHR"]}}, {"location": "[528929:529703](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG2362"], "gene": ["dppA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26902"], "locus_tag": ["MAAAAKME_05650"], "product": ["D-aminopeptidase"], "transl_table": ["11"], "translation": ["MEGCAGVTSWEQTHYGHKGYDLALKEMTRETVAAVKACQQAGYQVTVKDGHEDGINLDPALLPAGTELIQGWDSSPEEMMAGISADYAGAIHIGSHSPAGSSETPLDHTVEHGWYSWVKLNGELASEFTFNSLCAAQYGVPSLFLAGDAGICRRAEDFCPGIVTCATKKGVGSATVNKSPQEVAAGIATGIKEALAGPGGLPLLADEYLLEFCFSSAGRARAASFYPGAERAGERIVSYRAKSIMELLTAKMFMTEI"]}}, {"location": "[529711:529831](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGLKRELFLPRAYQTGEKNDITDVPGVKVGPGDPAKGRG"]}}, {"location": "[529805:530411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLRKGGVNTGVTAILPGSDIFKQKMLASGQVINGFGKTTGLVQINELGTLETPILMTNTLAVGTCWTALTRYMLDRNPEIGLTTGTVNPVVMECNDGDLNDIRSLPVKESDALTVLALAEGNPPLLEGNVGAGTGMRCLGFKGGIGSASRLLELGGKNKKISRSQPGLRQFRGFWQVAGWQPPFGPATKRRRFGPGESRK"]}}, {"location": "[530878:531757](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67109"], "locus_tag": ["MAAAAKME_05680"], "product": ["Nucleotide-binding protein"], "transl_table": ["11"], "translation": ["MHEKYKKQLLILTGMSGAGKTVAAHSLEDVGYFVVDNLPPELLGNFWDLMNTSEDFEKVAVVIDLRVKSFYKDLIDEINSLEDSGQTQATIVFLEASDDTLVARYKETRRLPPLAENGRLLDGIRDERRILTPVRNRSNYILDTSKMTTKELKQKLQSKFGELHKPKFGIEVMSFGFKYGMPIDADIVMDVRFLPNPFYIPELRPFTGLDKRVFNYVMDKDETKVFYGKLLDLLLTAIPGYIDEGKEKLTIAIGCTGGQHRSVSIAQQLARDLSEKYPVDITHREISRYLRK"]}}, {"location": "[531766:532789](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0391"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PN8"], "locus_tag": ["MAAAAKME_05690"], "product": ["Putative gluconeogenesis factor"], "transl_table": ["11"], "translation": ["MSFGENKIIRIIKRRRPRVVVIGGGTGLPVILQALKKQDAEITAIVTVSDDGGSSGIIRNYINVVPPGDIRNVLVSLSDLSQEKKQIFQYRFESKDSFFSGHAIGNLIIAALSEMQGNIFDAVQNLSAMMEVDGHIYPSANEPLTLNAEFMDGSQSSGEVEITSQHKQIKRVWVTTADDGEPASPSPVIEAIMQADAIVLGPGSLFTSILPNLMIPNVGQAVRETKAEVVYVCNIMTQAGETVGLSDADHVRVINQHLGGNYIDTALVNGAQIDMTKFHPEDYDEYLKPVANDFAGLQEQNCRVITDDFIDQRSGLVFHDGDKVAREIIDLALQEMFKRK"]}}, {"location": "[532796:533729](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1481"], "gene": ["whiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06975"], "locus_tag": ["MAAAAKME_05700"], "product": ["putative cell division protein WhiA"], "transl_table": ["11"], "translation": ["MASYASEVKKELTSIEVHPEHAKAELAAFLRMNAVLSRHDGQMSLDIVTENPAIARRIFSLIKTAYGFDPQLIVTRKMKLKKNHQYLVRVAQMVSEIMADLEIYSPKKGFITGVPDKIKYSEQRSMSYLRGGFLASGSVNNPETSRYHLEIYCTYANHSQDLQEIMNKYFDLNAKVTARRSGSIVYLKEAEKIGDFLHVVGAVNAMLAFEDLRIMRDMRNSVNRLVNCDTANLRKTAGAAAKQVEDIELIDKKQGLEPLPEKLASLARFRLQHPELSLKELAEQVPDGPISKSGVNHRLKKLHEIAENLR"]}}, {"location": "[533796:534381](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.92"], "codon_start": ["1"], "db_xref": ["COG:COG0740"], "gene": ["clpP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RQI6"], "locus_tag": ["MAAAAKME_05710"], "product": ["ATP-dependent Clp protease proteolytic subunit"], "transl_table": ["11"], "translation": ["MLVPTVIEQTARGERAYDIYSRLLKDRIIMLSGDVNDQMANSIIAQLLFLDAQDNTKDIYMYINSPGGVITSGMAIVDTMNFIKSPVSTIATGMAASMASIILAEGEKGKRFALPHATVLIHQPLGGAQGQATEIQIAAEEILKTRKMINEILAKDSGQDIETIKRDTERDHYMTAQEAKDYGLIDNIMVNQNK"]}}, {"location": "[534564:534825](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKKLLCSLLLAAAFIGQAQTAQAATVSKMPGTKNMGIYAKVTKKGASKKVTTTKYFKYSKIQSTASKKTKKGTYAYIYANGRPLG"]}}, {"location": "[534927:536061](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNDAHGTMVDPANGAVKASLSGDKLNFTYGKAKTTVELVKTANPNRNLKPAVSAKKGPKEVASTRKHSGSSKNWNAVHRYGTETSSNRWTSGGLTLATQLWEPRNLSLETNDWQQVGPVMEGLAVNGGWAYSSWYRSAAASDQLKGNIVAFNMKKLNKYQAQYLSPRSYLYKKLSFGKFKSYSQNVKVSPYLRLGHGQSLGASSKYIYVLANENKLPGGASNGFYSEEILQLKKSGLTINKVWSIRVDVGSSGRYFYNAAFAGDNTMYGVFHNAAFGRYEFWRLNLVNNRWQVSQVTVTQSHFVKQQAGSSPVQGFSVSGSNMYLAFNNLILKLQTDGTYQKTWKHVSNREIEGLASDGSQLYAQLAQRGEILSGRW"]}}, {"location": "[536460:536667](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAATLFINIKPAAQKSKEVRVGGLTLMRHPALDEIYRGYKAGLAKSGYKVKIDYQNANNDQSNLKTMA"]}}, {"location": "[536887:537295](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPRLKTLGIIHTSSDSSAVSGYKQIVSYCKQMGINYKAYSISNSNDLNQVSQQMLTQVDAVIVPTDNTIAGAMQTLVKNANAAKKPVFPAAGTMVKDGGLATYSVDQYQLGLIGAKMTVQILQGKKPGNNGHPLC"]}}, {"location": "[537275:537401](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAIHYVEHGTPYLNLKEAKKLGTKVPASFLKEAKSKGTIYK"]}}, {"location": "[537419:538322](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLIVSAIGQGFLWGLLGLGLFLSFRIMNTTDMTVEGTFPLGAAVSVSLIVQGTNPFLATLAAFVAGVLAGLVTALLITKGKIPSLLAGILTMTGIYSIDLMVMGKSNVSLLGKKTIYSLAFLQKLPQYFDSVVAGTILMVLVTCDLIWFLSTDFGQAFIATGDNPQMAKSQGISPQQMTVAGLMISNGLVGLCGAVVAQSNGYADVNMGMGTRTIVIALASIIISEVVFRNLGLASRLFAVGLGSIIYRLLLLAVLQVGLSSSNLNLISSLVLAACMMLPQVEEKLRLKQTFMKGLKHD"]}}, {"location": "[538314:539079](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1125"], "gene": ["opuCA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34992"], "locus_tag": ["MAAAAKME_05780"], "product": ["Glycine betaine/carnitine/choline transport ATP-binding protein OpuCA"], "transl_table": ["11"], "translation": ["MTSQNLLELTDLEVVVGRGTSEENKILGKLSLKIKPGDFICLLGGNGAGKSTLLNVLAGAIQPTSGKILHAGKDISKESEVKRSSYIARVFQDPKLGTAPRMTVAENLLLAAKRGQKRGLKLRRLKENIPAFKEALEKVNPDLAGKLDLPVDQLSGGQRQALSFVMATYNKPELLLLDEHTAALDPRSSRKLMEATDEQIRAKKITAVMITHHMEDALKYGNRLLVLDHGQISHDYQGQAKQDLTLQDLAALFD"]}}, {"location": "[539164:539236](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_05790"], "note": ["tRNA-Arg(ccg)"], "product": ["tRNA-Arg"]}}, {"location": "[539428:540577](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2390"], "gene": ["cggR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32253"], "locus_tag": ["MAAAAKME_05800"], "product": ["Central glycolytic genes regulator"], "transl_table": ["11"], "translation": ["MEIEAKSCFSYFFKQCGTENDNSVVGECPTRRMVILNTDLSLLELLVPDALKIFRQRYLILEQISLHAPIGRRTVARQLGLSERNIRTETDYLRDQGLIEIKNFGMFLTEKGESVVKDAAPIVDRLFNASQAEVWLAQALGIDRTIIVAGDADLQSRVYDLAGEELNSALSLLLPLADCIVTVMGGKTIAKVAKKLNRSLSENRSLIFVPGRGALGGRVNTESNAVVQEMARATGGSYESLFLPEHVSKDAYRSLVRDPEISGVLQDISQSDVVIHGIGLASEMARRRGYDSVALARLRENKAVTECFGCFFDEEGHVVERIRQVGLQFENLTNVPHILAIALGTRKAKAIKAYMRNAPHQTWLITDEAAANQILNGSSRLK"]}}, {"location": "[540614:541631](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.1.12"], "codon_start": ["1"], "gene": ["gap"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59309"], "locus_tag": ["MAAAAKME_05810"], "product": ["Glyceraldehyde-3-phosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MTVKIGINGFGRIGRLAFRRIMDLGEETKDIEVVAINDLTTPAMLAHLLKYDSTHGTFDHEVSATEDSLVVDGKKYRVYAEPQAQNIPWVKNDGVDFVLECTGFYTSKAKSQAHLDAGAKRVLISAPAGNDLKTIVYSVNQDTLTADDTIVSAGSCTTNSLAPMANALNKEFGIQVGTMTTIHAYTATQKVLDGPDRGNNFRNARAAAENIIPHSTGAAKAIGLVLPELNGKLDGHAQRVPVKDGSETELVTILDKKVTAEEVNAAMKKYESPSFAYNADQIVSTDVLGMTAGSIFDPTQTQVITAGDKQLVKTVAWYDNEYSFTCQMVRTLLHFATL"]}}, {"location": "[541727:542939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.3"], "codon_start": ["1"], "gene": ["pgk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q6GIL7"], "locus_tag": ["MAAAAKME_05820"], "product": ["Phosphoglycerate kinase"], "transl_table": ["11"], "translation": ["MAKLIVSDVDVKDKKVLVRVDFNVPIKDGVIGDDNRIVAALPTIKYIIENGGKAILLSHLGRIKSDEDKKSLSLAPVAKRLGELLEKPVTFVPSNEGKEVEDAINNMKDGDVVVLENTRFQDIDNDFGKRESKNDPKLGEYWASLGDVFVNDAFGTAHRSHASNVGIATAMKAAGKPAAAGFLLEKEIKFLGNAVANPVHPFVTILGGAKVSDKIGVITNLIPKADHIIIGGGMAYTFLKAQGHNIGKSLVEDDKVEFAKELLEKAGDKLVLPIDNVAATEFNNDAASEVVGQDIPDNEMGLDIGPKTIELFKKTLEGAKTVVWNGPMGVFEMPNFAKGTLEVGRALADLPDATTIVGGGDSTAAAKQLGIAPKLTHISTGGGASLEYLEGKELPGIACVSDK"]}}, {"location": "[542957:543716](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.1"], "codon_start": ["1"], "gene": ["tpiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q93GB7"], "locus_tag": ["MAAAAKME_05830"], "product": ["Triosephosphate isomerase"], "transl_table": ["11"], "translation": ["MSRTPIIAGNWKLNMNPKETVEFVNAVKDQLPDPSKVESVICAPAVDLDALLKAAEGSNLHVGAENCYWENSGAFTGETSPAVLKEMGVQYVIIGHSERRDYFHETDEDINKKAKAIFANGLTPILCCGESLETREAGKENEWVVSQIKAGLEGLTSEQVSKLVIAYEPIWAIGTGKTASSDQAEEMCKTIRETVKDLYNEETAENVRIQYGGSVKPANVKELMAKPNIDGGLVGGASLVPDSYLALVNYQD"]}}, {"location": "[544250:544469](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDTINRLQKSQFYDLIRLGFISENYRYSYNRIWVDTDENDRVWGMICMYPDKAQGIIDVVLRKEWPRSACQ"]}}, {"location": "[544444:544744](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.189"], "codon_start": ["1"], "gene": ["mshD_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01698"], "locus_tag": ["MAAAAKME_05850"], "product": ["Mycothiol acetyltransferase"], "transl_table": ["11"], "translation": ["MAKVGLPMTTDIFTDKEAQKGEWYIDALAVSPRDWGKGIASRLMELAPKLAKKHGYKKVSLNVDLEKTRAQQLYLRKGFKTTNSMTIGDRVYDHMVKEV"]}}, {"location": "[544700:545270](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYTLYLTQEGRTGQIPITDEEGKPFGSIRGRLDNPNHTLYLLDTSGNEIGRLFSDGTGLIASFTLDVVHHSLVHVKKVNSPLTNLFYITRLNYWVNGSIKQGSYYFRDGFKKVASVDTAVADKGVTLTCQISREEDTPFILLIAVLFTQWHVTPLNLPDLFPNLNQRPTSTASFFKLLLPYGRKRGRQ"]}}, {"location": "[545266:546151](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ywpJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94592"], "locus_tag": ["MAAAAKME_05870"], "product": ["Phosphatase YwpJ"], "transl_table": ["11"], "translation": ["MIKLITCDLDGTLLNSSMEISDANVQAIKRAQENGIEFMVASGRAPHESQPMLKEYGIDCSFINLNGGLVFDTAGNLIVKNPLKLETAKKICRLLKKEGFYFELVTSNHVYSEDLSQRITNVAHLMVELNPMLTFKEAVLVSASKPAIVSIQQVPSYEDLMDEPGTEVMKILVFDSRGQYAFTDVIKKIEEIDKLSITSSAADNIEINAADAQKGQSLLDYAAAKGIKREEIAAIGDNLNDESMIQAAGTGVAMGNAVPQIKTIASFVTKSNNEDGVAWAIDKIIADNQKEQDQ"]}}, {"location": "[546312:546996](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.27"], "codon_start": ["1"], "db_xref": ["COG:COG0692"], "gene": ["ung"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39615"], "locus_tag": ["MAAAAKME_05880"], "product": ["Uracil-DNA glycosylase"], "transl_table": ["11"], "translation": ["MKHFIGNDWDHVLAPVFESGEYHKLHVFLKKEYQTRQIYPDMYHIFTAFKLTPFKDTKVVILGQDPYHNPSQANGMSFSVMPGTPLPPSLRNIYKELYDDVGAQPVNHGYLKRWADQGVLLLNAVLTVPYGQANGHQGKGWEMVTDAAIKALSERGQVVFILWGRFAQNKIPLIDQDKNVIIKSAHPSPFSANRGFFGSRPFSRCNAALKEFGRAPVDWQLPPNPEA"]}}, {"location": "[547016:548006](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.8"], "codon_start": ["1"], "db_xref": ["COG:COG0280"], "gene": ["pta"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39646"], "locus_tag": ["MAAAAKME_05890"], "product": ["Phosphate acetyltransferase"], "transl_table": ["11"], "translation": ["MEVFEQLKQLIKQKDKQRIVFPEGEDPRILTAVSRLKQDDLVEPIVLGQKDQVLALAEKAGLDMTGIEIVDYQNSPDFGEMVEKFHERMAGGKHFQTMEEAEAALRDANFYGTMLVYTGQADGMVSGAAHSTADTVRPALFILKTKPGMHRISGSFIMERGEEKYVFADCAISIDPTSDQLVEFAAQSAATAKMIGIDPKVAFLSFSTHGSAKGPQVDKVAEAAKLFKEKYPDIPADGDLQFDAAFVPAVAELKAPGSAVGGRANVFIFPELQSGNIAYKITQRLGNFTAIGPVLQGIAKPVNDLSRGCSADDVYKIGILTAAQAVMEG"]}}, {"location": "[548016:548502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0802"], "gene": ["tsaE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05515"], "locus_tag": ["MAAAAKME_05900"], "product": ["tRNA threonylcarbamoyladenosine biosynthesis protein TsaE"], "transl_table": ["11"], "translation": ["MTELAINSASDMQAFGAALAQSAQPHDLLLLKGDLGAGKTTLTQGFGRALGIKRPVKSPTFTLVREYREGKLPLFHMDFYRLEGDDLASIDLNDYLAEEGVVIIEWPQVIQADLPSNFLELVLTRVDDSWDSTKRLLELVPHGQRAAAWAENACRLYQEKQ"]}}, {"location": "[548576:549113](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "gene": ["polC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63982"], "locus_tag": ["MAAAAKME_05910"], "product": ["DNA polymerase III PolC-type"], "transl_table": ["11"], "translation": ["MMNFVAMDFETANQHPASACSLALVLVRESKIIDRFYTVINPQMAFDAQQVKVHDITAEDVAGAPTMAEVWPKIQPLFQPGMLVAAHNARFDCNVMKQSLARYGIAEPHYLVLDSLKVSRELEPGLDNYQLNTVSDLLGVELWHHHNALSDSEACAGILLKEEEKRGSELLKKFVYQV"]}}, {"location": "[549234:550128](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.98"], "codon_start": ["1"], "db_xref": ["COG:COG0812"], "gene": ["murB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y776"], "locus_tag": ["MAAAAKME_05920"], "product": ["UDP-N-acetylenolpyruvoylglucosamine reductase"], "transl_table": ["11"], "translation": ["MKLYDLKAQGLDLQENIPLSRYTFTQTGGPAEYLAFPKTLAELKELLAAAKEDQLPITVIGNASNLIIRDKGIKGLVIILTEMKEIKVEADKVHAQAGARIIDTSFAAGEAGLSGLEFAAGIPGSVGGAVFMNAGAYGGETKDCLESATVVTRDGEVKTYTNAELHFSYRHSLLQENDEIVIAATFALKAGDKATILDQMNYLNALRSYKQPLEYPSCGSVFKRPTGHFVGPMLIKAGLQGKQIGGAQVSTKHAGFIVNKGGATATDYLNLIHYIQKTIKEKDGIALQTEVRIIGEE"]}}, {"location": "[550168:551257](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.11"], "codon_start": ["1"], "gene": ["potA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A679"], "locus_tag": ["MAAAAKME_05930"], "product": ["Spermidine/putrescine import ATP-binding protein PotA"], "transl_table": ["11"], "translation": ["MEIIKLDHITKQYDDGFVALKDINLELESGKFYSLLGPSGSGKTTILRIIAGFTEASAGKVYFDGQDITNLDASKRHINTVFQNYALFPHLNVYENVAFALKLRQRPESEIREKVKDALHTVRLDGYANREISELSGGQQQRVAIARAIINEPKVLLLDECLSALDKRLRKEMQFELRAIQKKLGITFIFVTHDQEEALAMSDEIFVLNDGEIKQSGSPVDIYDEPVNDFVARFIGDSNILSGRMIRDFAVEFAGKDFECADAGITPGEKVEVVLRPEDLDITAPAAGKLLVTVQSQLFLGDHFEIKAIGQDGFEWLIHSTNGVQIGQEVGIFFDPEDIHVMRLGETEEEFDARLETYEGED"]}}, {"location": "[551259:552072](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1176"], "gene": ["potB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFK4"], "locus_tag": ["MAAAAKME_05940"], "product": ["Spermidine/putrescine transport system permease protein PotB"], "transl_table": ["11"], "translation": ["MKKNRLLFLLPYLLWIGLFVIAPLVLILGYSLTDAHSHLTLQNFAAFFSGGTFLRMMANSFWYALLITFFCLLVSYPAALALTRLKNQQFWLMLIILPTWINLLLKAYAFIGIFSRSGMVNQFLGLFGIGPVGIMFTDFAFIFVAIYIEIPFMVMPIYNSLKEIDPALLSASSDLGASFWQTFRYVIWPLSWPGVESGIQAIFIPSLSLFMLTRLIGGNRVITLGTAVEEYFLTTMNWNMGATIGVILIALMSIVMLLTSRKQHKKEFEL"]}}, {"location": "[552068:552872](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ydcV_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFR9"], "locus_tag": ["MAAAAKME_05950"], "product": ["Inner membrane ABC transporter permease protein YdcV"], "transl_table": ["11"], "translation": ["MKKTIWGRVYFGLVLLIIYLPIFYLIYFSFSSGSSMDHFRHFTWEHYQTLFADKRLLAILLETIMLALLSSLAATVLGTFGAIAIQRSKEAYRKILLSFNNILIVSPDVIIGASFLILFTALGFSLGFASVLLSHIAFSVPIVVLMVLPKLKEMDNSLIDAARDLGANNYQVFSQVLLPALTPGILSGFFMALTYSLDDFAVTFFVTGNGFTTLSVEIYSRARQGIDLEVNALSTIIFFFVLLLVGVYYFLTKRQGKKANRLGGLLR"]}}, {"location": "[552868:553951](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0687"], "gene": ["potD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFK9"], "locus_tag": ["MAAAAKME_05960"], "product": ["Spermidine/putrescine-binding periplasmic protein"], "transl_table": ["11"], "translation": ["MKKILSAALAILLVSLGLYLGAQQLDSSSGGSASSKKDLIIYNWGDYIDPDLITKFEKQTGYHVIYETFDSNEAMYTKIKQGGTAYDLAVPSDYMITKLRRDNLLDKIDTSRLSNFKYIDKEFLHKSFDEKNEYSVPYFWGTLGIVYNDRYVKKGEIKSWNDLWKKKYQGQILLVDSARDIMGMSLVSMGYSMNDTNSAHLKAAKAKLDKIGKNVKAIVADELKMYMVQNEAWIGVTYSGEAAMMMDQDSHIHYVVPAQGSNLWFDNIVIPKTCKNKEAAYKFINFMLEPKNAAQNAEYIGYSTPNTAAQKLLPKSVREDKQFYPPMSTVKNLEVYRDLPSSKVQEYNDLFLEFKMYARN"]}}, {"location": "[553983:554823](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.85"], "codon_start": ["1"], "db_xref": ["COG:COG1624"], "gene": ["dacA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y5E4"], "locus_tag": ["MAAAAKME_05970"], "product": ["Diadenylate cyclase"], "transl_table": ["11"], "translation": ["MQFDFASLWTWHTLSVVLDVLITWYFIYHLTHLIKGTKAVQLANGIILIMVARVLAGWAQLTTVTFILDQIVSWSVIGIIVIFQPEIRRGLERLGRVSLFSDSENSKREQQEKLVKELDKAIQYMSKRRIGALITLEQKTGLEEYVETGIKLDALVTGELLINIFIPNTPLHDGAVIIKNNRVQVASAYLPLSDNAMIPKSLGTRHRAAVGISEVTDAITVVVSEETGGVTITRNGQFMVDLSQQEYLKYLRAELVTEEKKKQPWPIRLARGIWNWGDK"]}}, {"location": "[554822:555653](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4856"], "gene": ["cdaR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34659"], "locus_tag": ["MAAAAKME_05980"], "product": ["CdaA regulatory protein CdaR"], "transl_table": ["11"], "translation": ["MHKLFEQKWFYKLFSLLLAIVLVAFVDNTQVNTNNQTKVQETASTEQSLKMALQVSVDTDKYYVTGYPSKVKVTLEGPNALVTSAVNTQNFRVYIDLSKQGVGSHQVPIKVSGLPNQVSCKLSQKSVKVNIQKRKSRTLPVQIGYNKNAVAQGYDIGMPTVSPETVEVTGAQSEVKAIDRVQAQLVVPNGSTETVRRNVLLAAYDAKGHQLNVVISPATARVTLPLSVSKKKVKLKLNASHGSSKKVYSLTAKEEKVTLYGQKGSLEKDQFPDFGC"]}}, {"location": "[555600:555774](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKKEALKKISSLTLDVDLTDIKSSVTKSFRLPVPSGVAWISPGSVDVQIEVSDSNN"]}}, {"location": "[555798:557151](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG1109"], "gene": ["glmM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34824"], "locus_tag": ["MAAAAKME_06000"], "product": ["Phosphoglucosamine mutase"], "transl_table": ["11"], "translation": ["MLKYFGTDGVRGEANKVLTPEMAFKLGRMGGYVLTKEKEDGGQARVLVSRDTRISGEMLEHALISGLLSVGIEVLECGVMTTPGLSYLVQAQGADAGVQISASHNPVEDNGIKFFGSNGLKLSDAKEEEIEELIDTKQDMLPRPSAEGLGTVTDFRDGSNKYIQFLENTIPEDLSGIKVVIDGANGAASAFISRLFADLDVDFTTISTHLNGLNINDHCGATHTARLQEEVVKQGAQLGLAFDGDADRCIAVDENGNEVDGDHIMYVIGSYLADHGRLKKDTIVTTVMSNLGFTKALERRGIKNVRTQVGDRYVSEEMRANGYSLGGEQSGHVIISDYHNTGDGMLTGLHLMLVMKKTGKSLTELLADFKEYPQVLVNVPVKDKNSWKNHQAVVDAIDSVEKDMAGNGRVLVRPSGTQELLRVMAEGPTQEITQEYVDRIVKVVTTEMGE"]}}, {"location": "[557299:558112](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XD45"], "locus_tag": ["MAAAAKME_06010"], "product": ["Putative phosphatase"], "transl_table": ["11"], "translation": ["MAIKMLAIDLDGTLLTDSKTILPGTYKALQEAKAAGIKIVLTSGRPLSGIKGYAEELGLSGSEEYAILFNGAVVQNLDGRVLISHDLDFGDFNTLLHMQRLSDVNLDFETPDRFYTLDKRISIRLQIDGAETKNQLWIQDRSDFKKDFTFAKAVYQCDDPDQVDRLWNRLPDWFFQSYAVVRSWPEVVEVGSLAASKGYAVSELASRLGLSNSEVMIFGDQGNDRSMFEILDFKRVAMGNAIDEIKDLADYVTDTNERDGIAKALRKLVL"]}}, {"location": "[558163:558502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTAEIEEKITGIFEEAIRQKTVNGISYALVDQGRGSRHYLGQAEPGQFYDLASLTKVVGTASGIFKEMAAGKISLKDRVGDFFPAACSAVTVRDLLLHTSGLPADLDDVWQ"]}}, {"location": "[559211:559655](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["copY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47839"], "locus_tag": ["MAAAAKME_06030"], "product": ["Transcriptional repressor CopY"], "transl_table": ["11"], "translation": ["MNEDCRISDAEWQVMRVVWTLGQANSSEIIEQLVAKCAWSPSTVKTLLRRLEKKGFLLVDRQVHRFVYRAAKDESEAMQESLTAKFAAMCDMHKGEMLLRLLDDLSLSRSDLEAIAKKAAEKAKTAPEKVGCNCLSTCEHMEGEWEC"]}}, {"location": "[559648:560023](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLVNGLVILAAAALIGLIIWWFFGNFQKSSQQADLANGRQEGQVVVKGGYEPEVLYLKQGVPAEVTFKMEDKTACLSHVVFSSLGVDKDLSKEKLAKIQIPTDKAGEIDYACGMGMFHGKIVVR"]}}, {"location": "[560022:561939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.8"], "codon_start": ["1"], "gene": ["copA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32113"], "locus_tag": ["MAAAAKME_06050"], "product": ["putative copper-importing P-type ATPase A"], "transl_table": ["11"], "translation": ["MKLTNWRRFWLSLFLALPMLAQMLLMIWGIMLPGIKTYSLIATSLIMLIGAGPYIQSAWAALKRHQANMNSLIAIGTSVTYVYSLFAYFTGRPVYFESAAFILISVLLGDALEEKMHDRAAASLNKLLELQASEAEVKRGEDFVKLPLDQVKAGDVIKVRPGGKVPVDGRLVSGQSNVNEAMVTGESMPVAKKPGDRVIGATINGSGSFLMVAEQVGEETMLSQIVQVVKQAQNSRAPIQKLTDKVANYFVPAVLIVSILAFAIWDVFSSVGPVKAMLYAVSVIVIACPCALGLATPTALMVASGRSARMGVLIKDGEILEAAAKIKTIVFDKTGTLTVGQPQLVDQVGDKASLSLAASLEANSEHPLAQAIVTSAKEGGQPLLPVSDFSAEEGKGVEGKVAGHLVKVGRADYVSAPDAWRQQAEGLAEAGKTVAYVQKDSAVIGLLALQDAPRPEAKAVLSELKSRGIKTVMLTGDNQQLAEKIGRQLGIDQVEAGLLPGEKADRLAKLQEAGPVAFVGDGINDAPALSLADVGIAMGSGTDVAKEAGGIVLMTSSLTGVLRALDLSKQTFTRIKLNLFWALIYNLIGIPVAAGLFSFIGVSLSPELAALAMAFSSVSVLLSSLMLNWTKIAGAGKS"]}}, {"location": "[562090:562477](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["crcB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00454"], "locus_tag": ["MAAAAKME_06060"], "product": ["Putative fluoride ion transporter CrcB"], "transl_table": ["11"], "translation": ["MDTVKNYLSVAFFAFWGGLARYGLTEAFSFYGTVIANLLGCFLLAFLTYFFLRKSNSRAWLTTGLGTGFVGAFTTFSSFNLDAFKLLLGGQNFGALLYFTGTIAAGFLFAWAGKQAANFAAGKLLERG"]}}, {"location": "[562481:562841](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["crcB_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00454"], "locus_tag": ["MAAAAKME_06070"], "product": ["Putative fluoride ion transporter CrcB"], "transl_table": ["11"], "translation": ["MIFAVGFGASLGAVARYALTSYGKKHWMQGTACPRPTLLINLTGAFFLGLAFALRLPASVYAFLGTGVLGGYTTFSTLNTEMVSLAENGQKHVLKHYLLASYLGGAVLLTCGYYLGSLL"]}}, {"location": "[562824:563595](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEACYEKSQLILRKSLCSLAAIISLVALLSSPVTFKMYEVKDYASSLIDTFANQSDGSAMSIAVKAAVESGLKQDLVDQLPDKVEISESHLSLYRLVSRYRQNKRLQSSNLKLPAKNKVQLFMDDLILYLVNSELNVHEGELQQITQIYQLSLWIICVLYLLGVALLLFNRYWSWLPFVLGAASASGFQVFITHTLTEMVQKEVYSKMLFTYSWGSWAGFLLALAGHLFYLDVCRYRAKGKANKNKEANNNLKKLC"]}}, {"location": "[563914:564718](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKGLCELYGLPAAELKQLLDQDLFAGLHPDDQPGVQADLTSFMNRDSSDYQSIYRIKLLGQEDYVLLQAQGKFLEDTDCFLVWYTEMSTSRLQDLTTADRRTKHLLDDLTGLPKAVYFYELAELGCRKLFKAGKQPVVLAFNLIGFSHFNHRYSYIEGNRLLVAFADLLKRHFSGDACGHFTKDNFYAYTAHDHLEERLKDILKESRQINEGRNLAIRIGVYDAGSLVYEDIKKVCEYAMVACITTARTLRPTSLTSPARTGRVWN"]}}, {"location": "[564798:565740](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNGQSGNWEALARWRKPDNGMLLDEQFIPTLDRAGILYRLDLYMADKVIADLKKMQERGHLELAVSLNLFSSEFDQCNMAEEITRKVKESGLSPEFIVIEISNDTRNLNADKIREQIALFKQNGFYVWVDNFGEGYSSIGLIKDNAPVSCIKFDASFIKGPDQKRSRIVLKKMVELAEELGIDTIVEGVENADQLLALREIGCAAAQGYYFGQPLPFDQAWKKWVEGPEANLERFSESDYYNSVGMMSLERPHFIQETYNNDLTFDDPDPVLDRYFKGTPLGFLEYRDGKLYYLRGNEGYTRYLLSCGSVTKE"]}}, {"location": "[565941:567357](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIDVLTSYNANQVYQDQARDDLGVTVNFSLSADQYRDMPLPFIIAASVYQEKRVVDMQYIYVNQAYAEIMGQSREKLLGNRMSSFVKHKLAFWIKVICGASDGEIRQGTFHSRTGHWYEYITAKSSVPETRSLVMINIDEQKRSQHEIKQKQNTTNEIVQLSEILNVENDKLETAISKGLAKLGTDLAADRVVVMEGEGQYAKNTYSWTLPGLASAQKEQQKIDVATLKVKLQEQLNHDSLFLTDQAEIAKRFPEIVATYDSDYQLENVLLAPFYESGRVSGAVVVEDLDASLNMDFNNLIELTADFVGAKVMGRKLEQQRDTDVLTKLNDRHPYLAKLNYYKKVKASRSIGVAFMDLNGLKEANDELGHDAGDELLISAGQIISQAFGRDYVYRVGGDEFVVLDDQSSRTEFESHCAAFEKALTQPASPSILIGAEWCPDSHYLREAVERADRKMRRQKNDFYKSHKRYR"]}}, {"location": "[567406:567805](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFYSLIMALIMLALGIVSFWGRNQDSFDGIYATAPLTSAKTNWTDKKGKAVDLTELKPDKQGTLTIYYRLPEKLNRQDKLIFFSRYIKQIDAYIGKKKIYHSHPEIAADWLSLTEHYESFTNSIELPAKRSA"]}}, {"location": "[567807:568218](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKGFYQLAGKLTACSLGNDGAFLANYVRKNALRVGLGIVSVVMGLTLLLFSIFAPLTSAFKRSLGYYSVALILFAVLQMQEEMQLTVLFGHYHVWRLFTYPVMVLLPFLLIMTINAQLDQALNERKSELYAAAKQD"]}}, {"location": "[568302:568761](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "db_xref": ["COG:COG0394"], "gene": ["yfkJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O35016"], "locus_tag": ["MAAAAKME_06140"], "product": ["Low molecular weight protein-tyrosine-phosphatase YfkJ"], "transl_table": ["11"], "translation": ["MQKILFLCHGNICRSPMAEFIMKQLLAEAGKADQVEVASAAVTGDEIIGGVGNPMDPRAQRELAKNGVPFSQHRARLLTREDYDKYDYLIAMDSENFMAMNQICGGDPERKQYKLLQFAGSYADIDDPWYTNDFDLAFQEISRGCRGLLGQL"]}}, {"location": "[568857:569256](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKYVILHPTGRISRLVIKHLLADPQFSDVELELLTQRPELLVDLAKGDRIKLTEGAATDLDYTLIRMPALTDWPDVKYSLTGRYDEFVGTSVSRASVADLVLKIMADPSRYSRASVGISQPETAGYVRPVY"]}}, {"location": "[569343:570975](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_06160"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MDELDKKGNYISWQTLAMMAFVTVIGLEDIMYNFQNQGIAVITSWVLMMFLYVVPYALIVGHLGSVFNHEGGGLSSWVRATDGEFLGYFTAWTYWAASIPYVVDTANCLLVDVGWGLTGTDEFEDPKFLSTAMFTAITFVIFILLTLLEHKFSKSMEVLSNIGGWAIFIMTILFVLLAFAGLAKSGGKTATPFTWKTIIPKFDLKYFSTVGMLIYAVNGSELVAPYVTRMKDPKREFPKAMIALALMTCFLTIFGSIALGIYIDANHMPNDLKMNGEYYVFGAMGKQFGVGKLFVYIYAWASFFYNAALLSVLLDAMTRMLISDTGDKYMPKFLKKTNKDGLPINGYILTVFLSGFIMVLGIFLPDMNDIFNWLLNLNGIISPAVTCWIFYSFMKVRGKNSSKYPSVYRYIKNDTFAWWVGFALLAVTAVATVLGFMPQDVKEGSWVWWYELSINIVACLVLIGLGGIFPGIRRREEEYGLAFDKQQWTWMSALVLGSIVFNVWLGGTTIKLRALYIVIESVIALLAVWLIGRRLPKGAKASK"]}}, {"location": "[571234:571762](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.4.11"], "codon_start": ["1"], "db_xref": ["COG:COG0225"], "gene": ["msrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54154"], "locus_tag": ["MAAAAKME_06170"], "product": ["Peptide methionine sulfoxide reductase MsrA"], "transl_table": ["11"], "translation": ["MKEKLDSAIFAGGCFWCMVAPFDTLPGIESVTAGYTGGHVPNPTYEQVCSHTTGHTEAVKIVFDPDLMSYEDLLGYYWQVTDPTDASGQFQDRGDNYRPVIFYNSPEQKEAAEKSKQELAESGRFDDPIVTKIEPAAPFYEAEDYHQQFYLKHPDRYAAEEAGGRAQFIKEHWGK"]}}, {"location": "[571810:572626](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRGLYTAGVTDVLMKYGIKFDGAVGVSAGVTFGCNYKSLQPGRVLRYNLRYGSRPQFKSWRSWIKTGDLYGADFCYYTLPEVLDPFDTAAFARNPMDFWCVATDVETAQPAYHKLTTGKGRDVAWIRASASIPVFARPVKIGGHAYWDGGVSDSIPVRFLLDKDYDKAVVILTQPAGYQKEPSRLQPVIDRVLKKYPAVVARLRQRHLEYNACLAYIAKEEAAGHLFVFRPSQGIDVSAMEKDPNRLKAVYQVGVRDAKRQLAALKEFLQD"]}}, {"location": "[572711:573593](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKTHRQLIIWPILLLATLFLAGCAKDEQTSKSQIKIVTSTNIYADIAQNIVGKYGKATALIANGNSNPHDYEPTTNAAKTVADADIIVANGMGYDSWMGNLAASNGKKAVKVGEDLMQLDSRANPHIWYNLNMPKKYVAYLVKKLSKLDKKHASYYQAQGKKYLQKIAKIEKVADGIKGSKAKPVFVSEPVFDYALERTGFKIGNKNFEEATEKETDPSAAVIAQMNEAIKKKQIPFFVNNTQASSDTVKYFVKKAKKQGIPIVEIRETMPNKVSYADWMLDNYQKLAKFGD"]}}, {"location": "[573701:574229](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNFKFSKREKIYLLLALAVLVMLFISSSMTYHEQKMKAGFIHTYLGWLEDLIHRLNIYYGGVWHNVKTDGAAGFTQFVVRKLAHFTSYFFYGLFAYLGLRRVFVIKWTGPFFVWSSAFAFAAMDEFHQFLTGDRTPSVHDVMLDASGALLAIVLAVIFYQVKQGREQKSRPFRG"]}}, {"location": "[574305:575037](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0217"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P44634"], "locus_tag": ["MAAAAKME_06210"], "product": ["putative transcriptional regulatory protein"], "transl_table": ["11"], "translation": ["MSGHSKWHNIQGRKNAQDAKRGKVFQKLSREIYMAAKSGGPDPLGNPRLRLAVDKARAANMPKDNIQRAIKKAEGNSDEHYDEVTYEGYAPGGVAILVEALTDNKNRTASSVRVAFTRNGGSLGATGSVAYMFDRKGYIVIDRSTTDADEDQMLMDVMEAGGDDLQTSDDAYEIYTDAKSFTAVRDALEKAGYQLAVSELTMVPQNTTPVPADKKEQFEKLVDALEDDDDVSNVYTAAADEEE"]}}, {"location": "[575195:576167](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2804"], "gene": ["comGA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P25953"], "locus_tag": ["MAAAAKME_06220"], "product": ["ComG operon protein 1"], "transl_table": ["11"], "translation": ["MEVVDKARQMLEEAVRIRASDIFFLPKKGGYKLRLRAGDLEERPSLTREAGNELINWFKYQAEMDIAEHRRPQVGSMAVNLAGQDYWLRLSSVGDYRGEDSLVIRIIYALGESRYFFPDQFRDLVDLCWLRGMIVTSGPTGSGKTTTMYELARKLSQTKMVMTIEDPVEVYEESFFQAQVNAGARISYASLLKAALRHRPDVLIIGEIRDEETAHLAVDAALSGHLVLATVHAKSTYQTISRLESLGVKNNELVNCLTAVSYQRLLPGKKGPACLLDLASREDLLAALGQSVRGNFAAWEENLSRLVEKGEISADVARQYKGG"]}}, {"location": "[576138:576306](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MWQGNIKAAKLKQSEQVELLAFLANCLKNGFSLTKSLQLLPLLWPQRKKAAGPAG"]}}, {"location": "[576310:577138](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRQGEELGQLLAGLGFNKTTVTQLDMALSQGRLDESLAQLALLGRMKNEQVKKLEGELAYPVVLAGMMTLILIFMQNFLSVEFAGSSAKQGDLILLILVFLLVLVIMLVVIAAAYMKKQDYQSFKKLLVWPVFGPVVALYGQYLISYDLGMLLASGFSLQQMCDFACRQAPGSLQEEVGRRTRYAILRGKKVEEVIQKEPFLSQDLLMLLQAGSEREELSRQCLLLSRLLFNRLRQKLSKLIVNVQPVCFILIGLCIIGMYLKLLLPIYDSMQQL"]}}, {"location": "[577159:577483](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKHLRRFWPKRQRAFTLIEMLIVVAIIATLVLLISPNLLAQKDHADKRTNDAFTTTIQTQVELYEENTGKKPASFQEMVDAHYLTQKQEKQAEDKKLAIGDFAKGGE"]}}, {"location": "[577479:577917](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRQKAFSLLETVIALAIAGMLLGIGEMSFQGFEDKINFDRFCRQAVGLFQEKIRSAAITGKRVVIYNQSSQGKLEVIQDGQHESLKIPDGVTVYTNFNNTSGWTISSDGTTSQAFTLRIIKNDQGKKEYEKAYTFLLSWGKINEK"]}}, {"location": "[577906:578173](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSKQEGFLALEAVVALAIVCIALTAMVTCLSGLKKLEQESSQRANQALAYRMLKECPVKRVKVRDHEYVLTGKGDLYDETQQKICQK"]}}, {"location": "[578138:578759](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMKPSRRFARSKAFSLLETMVALLVTVICLSLLSSSLKLFTLFEKDRHDPNELVFSYVQFAKFLKKDSQRTYIDLENSNPLKIMFIKEEKKKDKKGEEKIDKAGYVLEMDNGGNNLRVRRSGPDGGNMTLLPIWGATFAARDGLMEVHINEKGKRSILYFKVDKAPEKEKEAEKKTEDQKTDQAKPAKGERPADQRAAASHDNSAD"]}}, {"location": "[578900:579899](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNRIEELFGQTLEAVECLQEALNVSLADALVETFDNLESGEIRVEMGAPDQKTVAELEERYAALDYKNWSKAQKEQVYGLLVLKAVNDDGRDANQMPTPPLLATVLTLFMDKLLPKRKQVLLDPAVGSGNLLFSVDQQLAAQNHSEDRFDLVGLDNDEEMLNLADVAAHLAGLKADFYCQDALTGWPVKPDVVVSDLPIGFYANDDNAKNFDLRTKEGHAYAHVLFVEQIVKNLAEDGFAFLLLPQNMLTGTVGADFMPWLASKVYLQAIVQLPSSLFQSKISQKSILIFQNHGQSKPPKEVLLTKLENLKKEESLVALNIKLNEWYTKEDN"]}}, {"location": "[579934:581122](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG0282"], "gene": ["ackA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37877"], "locus_tag": ["MAAAAKME_06300"], "product": ["Acetate kinase"], "transl_table": ["11"], "translation": ["MDKILAINSGSSSFKYKLFSLADESVLASGLGDRIGIDGSTFSMKLADGTKHEVEVDLPNQEVAVQTLLDWLKEYGVIADLKEIVGVGHRIVNGGELFPDSAIIDKDNIHKVFDLTNYAPLHNPAEGREIQAFMNILPDVPQVGVFDTSFHQSMDEVHYIYSLPYEYYEKYKARKYGAHGTSVRYVSGKAAELLGKDLKDLKLVVCHLGSGASVTAVKDGKCYDTSMGFSPLAGVTMGTRSGDVDPSVLQYIMKKEGITDFNEMIDILNHKSGLLGLSGISSDMRDIRNSDDKRARLAEAVFINRVVRYVGSYIAEMGGADAVVFTAGIGEHDDVVREGVMKSLSFMGVDFDDAANKAANEGFITKEDSKLAGLIIPTDEELMIERDVVRLAKLK"]}}, {"location": "[581188:581547](+)", "type": "tmRNA", "id": "", "qualifiers": {"gene": ["ssrA"], "inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_06310"], "product": ["transfer-messenger RNA, SsrA"]}}, {"location": "[581844:582000](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLKEFLLGAYSCQKVNDKGRTKLKVDLSPGLLPTALFAWAVYKFLTSGDD"]}}, {"location": "[582179:582905](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["srrA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L524"], "locus_tag": ["MAAAAKME_06330"], "product": ["Transcriptional regulatory protein SrrA"], "transl_table": ["11"], "translation": ["MKILMVEDDKSVSQMMELFFKKEGWEQVSAYDGEEAVEIFQTHPRDFDIITLDLNLPKKDGIQVAKEIRRISETVPIIMLTARDSESDQVLGLGVGADDYVTKPFSPIALIARIKALHRRVMLEGQPRNLPKNIPSNDFDLETNHIRISKSRREVYFDENRVEGLTPKEFDLLYTMAQKPKQVFSREQLLELVWGYEYFGEERTVDAHIKKLRQKLEKSGPQIIQTVWGVGYKFDDSQVNA"]}}, {"location": "[582901:584467](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_06340"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MKLIYQHILSFLIVILTSVMIIGFSTINYQKEQAYQSNYTRLESYAENLSTLQLYSKKTQSKNSPPFFSADFLQKFSFVMRDENLKLFLMDKNFKTTYPLGGYDILKKSAKSMLKKGQVVRIKDDHSSEQQDLAPKVQGRVKRDGLRKRINRLFAAESYTWVVVPQVQGSGSNKKVVGAIMIGSRVKDVLQTVSQAKANLARALVITFVVSLILNFILAYYQTGRIKKLSLAARKVADGDLDVQVDHRHADEIDDLAENFNEMVRSLKASNEEVKAQEERRDQFMQDVAHEMRTPLTTINGLLEGMKYDAIPEESIPESIDLMSRETKRLIRLVNENLDYEKIRSGKIQMMKSQFNAWTIMNDVQQQLTQNAAKNGDKIILDAPEDLPVYADQDRFKQMLVNLTQNAIQFTNNGTITLRGRRFQHGATFSVQDTGIGMTQEQSKYIFERFYKADPARARYGGTGESGLGLSIVLSLVRQHGGEIKVISKPHEGSTFMITLFDQGHEKHYDKKDKKEYKDKE"]}}, {"location": "[584513:586736](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1368"], "gene": ["ltaS2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34952"], "locus_tag": ["MAAAAKME_06350"], "product": ["Lipoteichoic acid synthase 2"], "transl_table": ["11"], "translation": ["MKHSKFLGKFQSRTGFLTLLVICYWLKYLFVAYCDFNLGLANPLQHIIMWFSPLGTSIILISLGFYFSKPLASYIAMLALDFANTALLFANVLYYRQFTDFITVKTMANLSKVSQGLGKSSAALLAPSDIFIWLDLIVIVILLAVKVIKIDQRSYGFSRTFAITSFGFFVLGLNMMVAECNRPRLLKNTFDRTYVVKYLGIDTFTVYDAIKNESSSTVTKNASTSELNKIINFTQQNYAPANSEYFGAEKGENVIIIHLESFQQFLIGMKVNGKEVTPFLNSLYKNKHTLSYSNFYHQVGLGRTSDAENMLETSTYGISDGSLFTSLGSSNTFQASPQILRANSNYTSAVFHGNVGSFWNRNDVYKNMGYNYFFDKNYFSQESGDSSGYGLKDKLFFAESVKYLERMQQPFYAKFITVTNHTPFELATADQDPNFKTSSTSDVTINNYFLTAHYLDQALKEFFTYLKKSGLYEKSMIVIYGDHYGLSNEEYTTLAPLIGKNPNDWSSYNTAQMQKVPFMIHASNLKGGIKSTLAGEIDVLPTILHLLGISSKQYVQFGTDMLSAKHKQIVVFRNGTVISPKYVLIGGKTSKGNVYDASGKLLTKLTKKQKAEVKKLAAYGKNSLAYSDTLNNKNLLRYYTPKGFSPVIPSDYNYSTNYQQMMDLIEQLGKQSTALISQKGDTSKLYKTDASQLAKRQSEITQIPESILSSSSSMNESMTSSSSSSSASSSSSKASSKKTK"]}}, {"location": "[586884:587511](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLFLAPLYNYLASQYATRINHFALIKLTLQGLDKTIFYFLLFALVRVIWLLAVRKRRGLWSEFGLWLFVFYFLLVLMLTTFRSSYFPWELNFHWTRPLSNINLVFMKNTWKLVYAQSKVDFYYNSMGNILAFVPFGALLPNLLQVKRCFGRVFFLGVLSSVTIEILQFLLMTGVSDIDDVFFNACGVLLGYGLYFLLGQICVKKPNKD"]}}, {"location": "[587587:588928](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0166"], "gene": ["pgi"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P81181"], "locus_tag": ["MAAAAKME_06370"], "product": ["Glucose-6-phosphate isomerase"], "transl_table": ["11"], "translation": ["MNSVVSFDSSKLTPFVHENELKEMQAMVNAADKELREGTGAGNDFRGWLDLPVDYDKDEFARIKKAAKKIQSDSDVLIGIGIGGSYLGAQAAIEFLNSSFYMAEKSDYPKVVFCGNSLSGTYLSDLINWLGDKDFSLNIISKSGTTTEPSVAFRVLKAKLIEKYGKEEAAKRIYATTDRQKGALKIEADAEGYEEFVVPDDVGGRFSVLSAVGLLPIAAAGCDIDALMQGAADARAAYTDPDVSKDSPYQYAALRNILYRKGYTTELLENYEPSIRMFGEWWKQLMGESEGKDQKGIYPSSANFTTDLHSLGQYIQEGRRNLMETVVRVAGPRADVEIPNDESNLDQLNFLAGKKMNYVNDRAYEGVVLAHTDGGVPVMTVNIADQSEHTLGYLIYWFELSVAISGYLNGINPFNQPGVEAYKRNMFGLLNKPGYEDLHDELASRL"]}}, {"location": "[589102:589594](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23843"], "locus_tag": ["MAAAAKME_06380"], "product": ["Periplasmic oligopeptide-binding protein"], "transl_table": ["11"], "translation": ["MSSRKIALTGLALAAVTLTACSKQESSQKEQDLNWSVGGEITTMDPSKATDVVSFSQMINSMEGLYRNSKDGQSPGLATSAQVSKDGLTYTFNLRKSKWNDGTPVTAQDFVYSWRRTVNPKTEAEYSYLFSGIKNADAIQNGKKPVSSLGIKAEGKSISWSSL"]}}, {"location": "[589602:590586](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_6"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_06390"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MAYFKDLMAFPVFFPQEEKDVKKYGDKQSVKLDQISFTVNKTATTAYNLYQSNKIDVLGLDSNLSKQFKGKKNYYSLSNGGTYYLELNEKNPNLANSNIRKAISLAINRENLIRILGGNNQVANTYTAKGLTEYYGENYTSMISSSAKDLYKYQPSKAKEYWQKGLSELGKSSLTLNLLTSDSDGGKKTGETLQSMLETQLPGLKLTVTSVPFKTRLARRENGQFQICGSDWIADFGDPISFLELLTSKNSSNYGSWKNSQYDKLIAASKNTNDQEKRLKDMSKAESILLDDVGVYYEDDAWLIRSNAKGWICKRSEWNFKEAYVTK"]}}, {"location": "[590643:590716](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_06400"], "note": ["tRNA-Gln(ctg)"], "product": ["tRNA-Gln"]}}, {"location": "[590720:590794](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_06410"], "note": ["tRNA-Glu(ctc)"], "product": ["tRNA-Glu"]}}, {"location": "[590963:591968](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.16.4"], "codon_start": ["1"], "db_xref": ["COG:COG1680"], "gene": ["yfeW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77619"], "locus_tag": ["MAAAAKME_06420"], "product": ["Putative D-alanyl-D-alanine carboxypeptidase"], "transl_table": ["11"], "translation": ["MLNFPKTQLLIESLVSERIVPGVNYALLKGDQVFASTLGFASIYPAKSQLSPFAYYDLASCSKVLATTAAFLQLREEGKVDFADPLQKYVPEFKDGRVRLSHLLTHTSGIRGWIENRNALSGPELMRAIVGLPVTSEFNRVVRYADTNFVLLGLVLERITGKAVQDLASERIFRPAGLTETTFAPPKEECVPTELVDGQVIQGFVHDPKGQQLGRRCGSAGLFSTVSDLVKMGQGYMGVSDLLPLKEETIQDLYQVKTPAGLKARSWGWNLVFDPKENYPIIYHTGFTGTLVLFDQVKQSGLILLTNRVHPSRHNQIFLTMRSRIINAFLQENR"]}}, {"location": "[591990:592242](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLSNKQKGWLLLAVYGLVIIILGCFNSRMSPYYAITAIAAFAVALIEGLLFAFSKNATYKAVAFFAGLVALINVVAVLTTAI"]}}, {"location": "[592303:593659](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.13"], "codon_start": ["1"], "db_xref": ["COG:COG0769"], "gene": ["murT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DNZ9"], "locus_tag": ["MAAAAKME_06440"], "product": ["Lipid II isoglutaminyl synthase (glutamine-hydrolyzing) subunit MurT"], "transl_table": ["11"], "translation": ["MSFKSNIATFAGKSSYWFLHNVLKGGTSFPGKLAMKLDPDVLEQLGKDYETIIVTGTNGKTMTTALITQTLKEKYGDILTNPSGSNMAQGIVTAFLAHDQKKSSRKLAVLEVDEANVKAVTQLVHPKAFVLTNIFRDQMDRYGEIYTTYEKIVAGIKLAPDATIIANGDASIFSSVDLPNPKVFFGFETDQDKPQNDLKADVNTDGVLCPKCEHILHYHAISYANLGDFFCPNCGYKRPDLTYKLEEISEQTPSRIKFTIEGKEFAVNIGGTYNIYNALAAFACAREFGVSANEIAAAFAKNKRIFGRQELIHYQGKQINIILVKNPVGLNEVLSLLDTEKDHYSLAALLNAHHADGIDTSWIWDGNFESLDRDKIDQVIVGGERHKDMAFRLEVAGFDPDKMIIESDFDQLLAAFAKTPTDKIYILSTYTAMLHLRQVFADKGVLKRRIN"]}}, {"location": "[593799:594402](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.21"], "codon_start": ["1"], "db_xref": ["COG:COG1435"], "gene": ["tdk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9PPP5"], "locus_tag": ["MAAAAKME_06450"], "product": ["Thymidine kinase"], "transl_table": ["11"], "translation": ["MAQFFFEYGAMGSGKTIEILKVAHNYEIQGRKVALLTSSVDTRAGRGVVASRIGLSRSAQPIEPDLDLFDYITALNQQEQESDGHPLAAVLIDEAQFLKKDQVIQCARVVDDLHIPVMAFGLKNDFQNHLFEGSEYLLLYADKIEEMKTICHFCGHKATMALRYKDGLPVYEGEQVQIGGDEAYYPVCRFHYFHPDQARD"]}}, {"location": "[594425:595511](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0216"], "gene": ["prfA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DU64"], "locus_tag": ["MAAAAKME_06460"], "product": ["Peptide chain release factor 1"], "transl_table": ["11"], "translation": ["MDNVMAQLESLEVRYEEIQEMMADPEVIADTKRYMEITKEEADMREVVQKFRKFKADKEEIAGNKEIIADGSDPELVEMAKMENSELEDEISQLEDEIKILMLPKDPNDDKDIIMEIRGAAGGDEASLFAGDLLRMYEKYAENQGWNVSIVDSEQTEVGGYKRAAIMITGNKVYSKLKYENGAHRVQRIPVTESAGRVHTSTATVAVMPEYEQVDIDLDPKEIRVDVYRSSGAGGQHINKTSSAVRMTHLPTGIVVAMQDQRSQQQNRAKAMEILKSRVYDYYESQNRDKYDAKRKNAVGTGDRSERIRTYNYPQNRVTDHRIGLTLNKLDRIMNGELDEVIDALTVYYQTKQLEELAENA"]}}, {"location": "[595503:596346](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.297"], "codon_start": ["1"], "db_xref": ["COG:COG2890"], "gene": ["prmC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYV8"], "locus_tag": ["MAAAAKME_06470"], "product": ["Release factor glutamine methyltransferase"], "transl_table": ["11"], "translation": ["MHKSLREMRIEASELAESARSEEIDFLLAERLGLTPSQFQLKQDMELSDAEVKQARKDMKRLAKGDSPQYILGYAWFLGYRLRVAKGVLIPRFETEELVEWALAHLQDGDTVLDLGTGSGNITVALAKEAESKGIKDLHFYASDVKDTPLRISEENFLDYGLDVTTRKANVLLGLGKFDLIISNPPYIKPSEKNVMDKGVLANEPEEALFGGQDGLAFYRKFAEEVRDHLNSGGRFFMEFGFSEEDELKAMFAEKLPDFKVEFRRDMAGKPRMLFGEWKK"]}}, {"location": "[596345:597341](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.87"], "codon_start": ["1"], "db_xref": ["COG:COG0009"], "gene": ["ywlC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39153"], "locus_tag": ["MAAAAKME_06480"], "product": ["Threonylcarbamoyl-AMP synthase"], "transl_table": ["11"], "translation": ["METKIFKREQLDEAVSLLREGGLVAFPTETVYGLGALATRDDSVKKVYAAKGRPSDNPLIVTVADEAMMRPYAKEVPERAEKLIKHFWPGPLTILLLAKEGALPESVTGGLPTVAFRCPDDQLTHDLIAKLGYPIVGPSANTSTKPSPTTAQHVYHDLKGKIAGIVDGGETEVGLESTIVDLSVNPAVVLRPGKITPEEISQVLGEEVLINRGQVSDKDVPKAPGMKYRHYAPSAQVYVVDQAETFDKLDLDASCGVMATSDLLENLPVPEENKFNLGKNLTEADHNLFAGLRYFDDRPEIKSIYVEGFDQGEESLAYMNRLNKAAGGHHV"]}}, {"location": "[597440:598070](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.9"], "codon_start": ["1"], "gene": ["upp"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P70881"], "locus_tag": ["MAAAAKME_06490"], "product": ["Uracil phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MGKFTVLNHPLIQHKLTIIRRKETGSNEFRRIVGEIAGLMTYEITRDLPLQDVEIETPMGKTVQKELAGKKLTIVPILRAGMGMVNGVLEMIPSAKVGVVGMYRDEETLKPVEYFFKVPKDVTERECLVVDPMLATGGSANLAIEALKKRGVTDIKLAVLVAAPEGVKAVQDEHPDVDIYAAALDDKLLPNGYIFPGLGDAGDRIFGTK"]}}, {"location": "[598179:598899](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["atpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P09218"], "locus_tag": ["MAAAAKME_06500"], "product": ["ATP synthase subunit a"], "transl_table": ["11"], "translation": ["MEKSLVFNINGTGLNVDLVGIIGSTLMAIVVFAICYALSRKVEMKPNKKQNVLEYLIDFTDGIVKDNVEDPAAQKHLSLYAFVLFLFIFCMNQLGLFLEVKVGDYMVIKSPTADPVTTMSFAMMTLLLSFTFGIQKFGTKGYLQNYARPVGFLLPINIIEEFTNFLTLSLRLYGNIFAGEVLLTLIGNQLGPSMGIVTRILAAPLAMIWQGFSVFIGSIQAYVFVTLSMVYIGKKVTQE"]}}, {"location": "[598917:599142](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["atpH_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01396"], "locus_tag": ["MAAAAKME_06510"], "product": ["ATP synthase subunit c"], "transl_table": ["11"], "translation": ["MTTGLKDLAAALVAGIAALAASWGNGKVISKTIESIARQPESAGNLRATMFIGVGLIEAVPILAIVIAFLILFM"]}}, {"location": "[599195:599702](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0711"], "gene": ["atpF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY5"], "locus_tag": ["MAAAAKME_06520"], "product": ["ATP synthase subunit b"], "transl_table": ["11"], "translation": ["MEFQPVFAGAEISIINTLWYLIVFSILLLAVKHYAWGPVKDMMEKRRQKVIDDLDQAASDRKKAETLANEREAALKNSRQEATQILSDAKSNAQKTGKQIVSEAMAEASAIREKAKADAAQAETDALNEAREEVADLSVTIAEKVIAKNLSAADQKDLVDQFIKGLND"]}}, {"location": "[599701:600244](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0712"], "gene": ["atpH_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY4"], "locus_tag": ["MAAAAKME_06530"], "product": ["ATP synthase subunit delta"], "transl_table": ["11"], "translation": ["MALSREETARRYGTAIFDFAKDSGKTELMYSELTELKKAVQAEPRFVQVLSNPVLDAKQKKSLLTAVEQGFSAELQEVLNFLLSYDRFDNLVDIIDYYIHLYNAANHIGTGVAKTVLKLDEDQLQRLADSYAKKYGLQALHLENEVDPEIIGGVVLEVEGRVIDGSVKHRLEKIRAMLTK"]}}, {"location": "[600266:601778](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.1.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0056"], "gene": ["atpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5FKY2"], "locus_tag": ["MAAAAKME_06540"], "product": ["ATP synthase subunit alpha"], "transl_table": ["11"], "translation": ["MSIKAEEISSLIKQQLEHYDDKLDIEEVGVVTYVGDGIARAHGLNNVLSSELLQFDNGAYGIAQNLESNDVGIIILGKFDDIREGDRVKRTGRIMEVPVGDALIGRVVNPLGQPVDGLGEIKTDKTRPIESKAPGVMQRQSVNQPLQTGIKAIDALVPIGRGQRELVIGDRKTGKTSLAIDTILNQKGQDVICIYVSIGQKESTVRAQVETLKKLGAMDYTIVVEAGPSEPAPMLYIAPYSGIAMGEEFMYAGKDVLVVFDDLSKQAVAYRELSLLLRRPPGREAYPGDVFYLHSRLLERSAKLSKELGGGSLTALPVIQTEAGDISAYIPTNVISITDGQIFLQSDMFFSGTRPAIDAGASVSRVGGAAQIPAMKKVAGTLRTDLASYRELESFAQFGSDLDQATQAKLARGRRTVEVLKQPLHKPVAVEKQVVLLYALTHGFMDAVPVDDIARFEQELYTDFDANHADLLAEIKSTGKLPDENKLQEALQQFASSFSSSNK"]}}, {"location": "[601788:602751](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0224"], "gene": ["atpG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY2"], "locus_tag": ["MAAAAKME_06550"], "product": ["ATP synthase gamma chain"], "transl_table": ["11"], "translation": ["MPASLLELKKRIASVKQTSKITEAMHMVSAAKLNQTEKRDKGYQEYNRLLHQTVSRLMSASVINHLNKANYRLTQDNIDSIDYDDVFGMGIISDMIKPREEVHSVGYLVVTGDRGLVGSYNSSVIKQMMSLVADDKLQGRESKILSVGSVGSQFFKKNNLNVVYEKDGVSDVPTFKETLPIVSTAIKMYLNGVYDELYVCYTHHVNSLSSAFRAEKMLPIVDLDIGTMEAKESKKIEFEVAPDIDSVLATLLPQFARAEIYGAILDAKTAEHASSMTAMKSATDNAKDLVSSLSLQMNRARQAQITTELTEIVSGANALE"]}}, {"location": "[602770:604210](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.1.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0055"], "gene": ["atpD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5FKY0"], "locus_tag": ["MAAAAKME_06560"], "product": ["ATP synthase subunit beta"], "transl_table": ["11"], "translation": ["MSQGEIVQVIGLVVDVKFSIGKDLPDINNALKVIKSDDDSIILEVILEQGDGVLRCIAMESTDGLRRGMKVEDTGSSISVPVGPDTLGRVFNVLGQPIDGGPEFPADHPRSGIHKEAPKYDELTTSREILETGIKVIDLLEPYLRGGKVGLFGGAGVGKTTIIQELIHNIAQEHNGISVFTGVGERTREGNDLYFEMKASGVLDKTAMVFGQMNEPPGARMRVALTGLTIAEYFRDVEGQDVLLFIDNIFRFTQAGSEVSALLGRIPSAVGYQPTLATEMGQLQERITSTKKGSITSIQAVYVPADDYTDPAPATTFAYLDATTNLERSLVEQGIYPAVDPLESTSSALDPEIVGQEHYDVATRVQHILQRYRELQNIISVLGMDELSDEEKLIVARARRIQFFLSQNFFVAEVFTSVPGSYVPIKETIKGFKMILDGHLDDLPEDAFRGVGPIEDVLKKALKMGVTPSDPEAKALLEK"]}}, {"location": "[604221:604662](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0355"], "gene": ["atpC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY0"], "locus_tag": ["MAAAAKME_06570"], "product": ["ATP synthase epsilon chain"], "transl_table": ["11"], "translation": ["MAEAEKLFKINIVTPNGLIYSHRGSSVSMRAIDGDRQILYNHLPILTPLTIGEVRVQRGADVDHKVDHIAVSGGIIEFANNVATIIADNAERARNIDLSRAEAAKQRAEAHITEAKEKHDEQLLERAQIALRRAVNRIHVYGALHK"]}}, {"location": "[604695:604941](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVDFIMRQLGIHAIISLVIYFVCIALAFQAIKAVRIEKIIRTSRVFEVQVFLIFTAIALGYTVGQFLIALIDTSLQLSNLF"]}}, {"location": "[605026:606016](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1077"], "gene": ["mbl"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39751"], "locus_tag": ["MAAAAKME_06590"], "product": ["Cell shape-determining protein Mbl"], "transl_table": ["11"], "translation": ["MSKDIGIDLGTANVLINVSGKGIVIDEPSVVAVDTNTNKVVAVGTEAYEMVGRTPGNIRVIRPLKDGVIADFDITEAMLSYFIEKLNVKGFMSKPNVLVCTPTGVTSIEQKAIIQAAEKSGGGKVYLDYEPKVAAVGAGLDIFKPQGNMVIDIGGGTTDIAILSMGEIVTSKSLRYAGDRMNQAIVNYIKANHQLLIGMRTAEAIKIEIGAATDPDPDASMNVRGRDTIDGLPKQIKVNSSEVTEALQEGLQSIIDTTKQVLQETPPELSADIIDRGIMITGGGALLKNIDKLIADSLLVPVLIAESPLESVALGTGILLQHIEKHERH"]}}, {"location": "[606030:606306](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0759"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97NX8"], "locus_tag": ["MAAAAKME_06600"], "product": ["Putative membrane protein insertion efficiency factor"], "transl_table": ["11"], "translation": ["MILLVRFYQRAISPILPDSCCFYPTCSSYMITALEKQGPLLGLLMGLARILRCNPFNRGGVDPVPDKFTLLRNPHPEEYEDEIIARKFHSH"]}}, {"location": "[606318:606546](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSRNQENIGIEVNELSGRRVPTWEVVIPKKRQIGLIEQVDGKFRVTSSKSKNVMFAKSLDAGINDLLAYFTLHEK"]}}, {"location": "[606570:607761](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.129"], "codon_start": ["1"], "db_xref": ["COG:COG0772"], "gene": ["rodA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39604"], "locus_tag": ["MAAAAKME_06620"], "product": ["Peptidoglycan glycosyltransferase RodA"], "transl_table": ["11"], "translation": ["MAKVQEESKWYDRIAWGVIIPVVLLSFVSFYSIYNASVNDSTYGTPTRTVAMQIVWYTVSWLMVAFIVRFDAEQIFKLAPYLYGLGIIMLVAVLFLYDRTTAASSGAKSWFVVGPVSFQPSEVMKPAFILQLARVVREHNARYAHNLRNDWLLIGKVMSWFLPVAMLLMLQPDFGTTLVFVAITAGILLVSGISWKIIIPVFLLMVVMGVAVILLVFTSEGQTILRHYFKTYQLERIKSWSDPSGDNSNSAYQLWQSMKAIGSGQIFGNGFNNIKVYVPVRNSDMIFSVVGESFGFVGGVALIGIYFVLIVQMVKITFSTKNAFYSYVSTGIIMMILFHAFENIGMSIDLLPLTGVPLPFVSQGGSALIGNMIGVGLILSMKWHNKDYMFSTAGDF"]}}, {"location": "[607832:608294](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A551"], "locus_tag": ["MAAAAKME_06630"], "product": ["Putative universal stress protein"], "transl_table": ["11"], "translation": ["MTKQYQYKHIQVAVDGSKEADLAFKKAVTVAKHMNASLEILHVIDTRSFQNVSSFDSAMVEQVSNDAKKKMEKYYQSAQDSGVKEVHYSIEFGSPKTIISREFPKKHDIDLIVVGATGLNAVERLLIGSVTEYVTRTADCDILVVRHNKAGLD"]}}, {"location": "[608351:608636](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLYIRIFMIIFIACLLLTAWYLWHRKNGSFLVFDVSSSPELHSLMTICSWTLLAISFLGIVLLFFDNKYLNLITLFLGSATIFIFALLLSQNNQ"]}}, {"location": "[608986:610291](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2256"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQN1"], "locus_tag": ["MAAAAKME_06650"], "product": ["putative AAA domain-containing protein"], "transl_table": ["11"], "translation": ["MKPLAYRMRPQSIDQVVGQQHLVGPKKIIRRMVEARQLSSMILYGPPGIGKTSIASAIAGSSKYAFRQLNAATDGQKELSQVAAEGKMSGTVVLLLDEIHRLNKVKQDFLLPLLESGQVIMIGATTENPYLAISPAIRSRCQIFELKPLTEEEILTAVDRALTDEERGLGKYHAKLTKEAGEFLAQKGNGDLRATLNSLELAVLSTKQELEAEGKDASSLTVTLDDMADSLQMKIQNFDADGDGHYDLLSAFQKSIRGSDTDAGLHYLGRLLESGDLVSICRRLSVIAYEDIGLANPPACERVILAVQAAQQLGLPEARIPLANAVIELCLSPKSNSAMTAIDAALADIRQSNVGQIPDQLKDAHYKGASKLGHGTGYLYPHDYPGDWVAQAYLPDRMQGKQYFAPKGESKFEAAFKSQYQRLHDLQKAGLKGK"]}}, {"location": "[610287:610752](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTENLTKRVENAANDITPQTRPDERRSFLGSLRERVFVRMTIKDCEDAKLTKLFMDHFADYKGYTILINANTPNPTFVGQIESRASKEQVPFCMVNDESARKGDDDSAILVVSKEAINRMRIELTQVYAPPLPAEKLPAPKKKGFLARFFGGNK"]}}, {"location": "[610876:611488](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0522"], "gene": ["rpsD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI10"], "locus_tag": ["MAAAAKME_06670"], "product": ["30S ribosomal protein S4"], "transl_table": ["11"], "translation": ["MSRYTGPSWKRSRRLGISLSGTGKELARRSYIPGQHGPNHRGRLSEYGMQLQEKQKLRWMFGLNERQFRTLFARAGKIREGQHGTNFMILLERRLDNVVYRLGLATTREQARQLVNHGHITVDGKRVDIPSYEVKVGQTISLKEKSKNLQQVKDALEAVASRPSFVSFDEDKMEGQLVRFPERDEMEPEIDEALVVEYYNKLL"]}}, {"location": "[611783:613502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4477"], "gene": ["ezrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34894"], "locus_tag": ["MAAAAKME_06680"], "product": ["Septation ring formation regulator EzrA"], "transl_table": ["11"], "translation": ["MSSTQSLLLITLIITIIVVVMAMLLINRRQLRDIEELDNELGNMEDLHLERAIGKLDQMELAGESLATLNTWKKSYQKAAELFPEIQRLIEDGADENARYHLVKSHQSIKQARELVDSVSEDVKNSSDVFTQLLESNRENKAQYDELMQSYWEIRKEILADSFDYSVALEEIENRLSAMEEDFAQAKNLSAQGDHVEAKRVLSKIRADLTALKTKLPEVKEDQHDLQTVFADQLDEIAAGYKEMRDAKYGFGSLDVLLEIRQSNDQIDRSLAALAQLDLEETSKGMKKVEKEIKTLYGILEKEYKARPFVEKNQDKLQRLLTHQQTVSQQLIKKLRHIDESYELTHGELDESRELEREVHKMDSDYIRASQRIADGRAVYSEVQDDWIKILGRLQEIGKRQQELSEAVDGLYEAEEVAQRSIKEFKQQVSLVYRHLSRQNLPGIPEGFLQMYTLVVNEISKTSGELNQVRINMEKISEELVQISDDVDRLQREAEDIISSANLFELTMQYSNKFLDNETVVRARRNAMKLYDRDYNYKDALDTIATAVERAEPGSYQRIENAYYQEQKELID"]}}, {"location": "[613587:614745](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.7"], "codon_start": ["1"], "gene": ["iscS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O54055"], "locus_tag": ["MAAAAKME_06690"], "product": ["Cysteine desulfurase IscS"], "transl_table": ["11"], "translation": ["MIYFDNSATTKMAPKALETYSQVVTKIWGNPSSLHKLGDRAHGLLEASRKQVADLLGVNTDEIYFTSGGTESNNTAIKGTAWAKREFGKHIITSSVEHASVANTFTELENLGFRVTRLPVDKEGRVNPEDLKAALDKDTTLVSIMGVNNEIGTIQPIKEISEILADYPNIHFHVDNVQALGKGIWDQVFTSRVDMMSFSSHKFHGPRGIGILYKKRGRMLMPLCEGGGQEKGLRSGTENLAAIAAMAKAARLLLTDEKEKADREYAIKEKISKYLAGKPGIHIFSPLKADFAPHILCFALEGIRGETLVHTLEDQDIYISTTSACASKKADEASTLVAMKTPDAIATSAVRLSFDESNTLEEADEFIAAFDEIYQHFSKINHLGE"]}}, {"location": "[614747:615965](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.4"], "codon_start": ["1"], "db_xref": ["COG:COG0301"], "gene": ["thiI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81KU0"], "locus_tag": ["MAAAAKME_06700"], "product": ["putative tRNA sulfurtransferase"], "transl_table": ["11"], "translation": ["MQYTEIMIRYGELSTKGKNRKDFINRLASNVQKVLHDFPDLKIQTHHDRMHILLNGTPFEPVNDRLKVVFGIQTYSPVIKTEKSLEAIEKTALELMQATYKAGMTFKVNTRRSDHKFIYDTNQLNQMVADYLYNHMEGLQAEMKHPDMVLLLEIRQDGAYISNQLLHGAGGMPVGTAGKAVMMLSGGIDSPVASYLAMKRGVNIEMVHFFSPPYTSEKALAKAKELTSILAKYSGRINFIEVPFAEIQETIKEKLPEGYLMTVQRRFMLRLADIIREKRHALAIFNGESVGQVASQTLESMAAINNVTTTPVLRPVATMDKTEIIAKAEEIGTFDLSIQPFEDCCTIFAPPRPKTKPKIDKAREYESRLDVDGLIERALAGVKVTPIYPGQSFLDDLDEEDADLL"]}}, {"location": "[615964:616690](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.19"], "codon_start": ["1"], "db_xref": ["COG:COG1187"], "gene": ["rsuA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AA43"], "locus_tag": ["MAAAAKME_06710"], "product": ["Ribosomal small subunit pseudouridine synthase A"], "transl_table": ["11"], "translation": ["MLRLDKFLANMKVGSRSQVHEIIKAGQVTVNGKVCRSAKQKVKEDAEVLVNGQAVVYQQYHYFLLNKPAGVLSATEDSRQKTVLDLLKDQDRYQKIAPVGRLDKDTTGLLLLTNDGQLAHQLLAPEYHVPKTYYALLAGVADEETAKAIAAGLTLKDGTELKPGQLNILRQDKDQEQSEIEITITEGKYHQVKRMFASQGMKVLKLKRLSMGPLTLPADLAPGSYRPLTEEELAALKQVAL"]}}, {"location": "[616950:619590](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.9"], "codon_start": ["1"], "gene": ["valS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99TJ8"], "locus_tag": ["MAAAAKME_06720"], "product": ["Valine--tRNA ligase"], "transl_table": ["11"], "translation": ["MTELAPKYNPQEVEAGRYQEWLDEDLFKPSGDKKAKPYSIVIPPPNVTGKLHLGHAWDTAIQDTLIRYKRMQGYDTLYLPGMDHAGIATQAKVEARLREQGVSRYDLGREKFVEKVWEWKDEYANIIKSQWQKLGLSLDYSRERFTLDKGLSKAVRRVFVQLYNEGLIYRGEYIINWDPKLRTALSDIEVVHQDDQGAFYHINYPLADGSGSVEIATTRPETMFGDTAVAVAPGDERYKDLVGKKLILPLVGREIPIIEDQHVDPEFGTGLVKITPAHDPNDFEVGNRHDLPRINVMNDDGTMNDKAGKYAGMDRFDCRKQLVEDLKAEGYLIKVEPIVHSVGHSERSGVQVEPRLSTQWFVKMKPLADKVLENQKGEGRVNFVPDRFEGTLERWMENVHDWVISRQLWWGHRIPAWYNKQTGEMYVGEEAPADIENWDQDQDVLDTWFSSALWPFSTLGWPDEDSADFKRYFPTNALVTGYDIIFFWVSRMIFQSLHFIGERPFDNVVLHGLIRDEQGRKMSKSLGNGIDPMDVIDKYGADALRWFLLNGTAPGQDTRFSYTKMDAAWNFINKLWNASRFVIMNLPEDAKPAQKPDISKFDLADAWIFDRLNHTVKETNRLFDEFQFGEAGREMYNFIWNDFCDWYIEISKVALYGDDAELKARKQANLTWILDQILRLIHPIMPFVTEKLWLSMPHEGKSIMTAAYPEAHAEFDNAKADEDMAFLIEIIKAVRTIRMEVNAPMSSAIDILIQLDDEKNEAILRDNMEYVENFLHPKKLEISGKIKAPKLAKTAVIAGAQIFVPLSELVDLDEEIAKMGKEEARLEAEVDRASKKLANKGFVGHAPAAVVEKEKGKLAEYENQLAGVRDRIKELKESR"]}}, {"location": "[619594:620860](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.17"], "codon_start": ["1"], "gene": ["fpgS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15925"], "locus_tag": ["MAAAAKME_06730"], "product": ["Folylpolyglutamate synthase"], "transl_table": ["11"], "translation": ["MKFRTVNELTAYLYHLPRLHEKSDLTYVKRVLKALGDPQDKVKCCHITGTNGKGSTAYYLNNLLQKAGQQTGLFVSPFIIRFNERIQLNGQAIADEDLLEVANEVEAAVGHLREEEADFALVTFEYEVAMAFLFFAKQKCDYAVIEVGIGAEHDKTNVMTPVVSLITTIGLDHEQIIGPTLADIAKEKSGIIKPAVPVILGDIPASVKGIVEEKITKSASPSYWLGRDFQVKEEKAGYKLAVAGQNYQLPAWPRPEAKDAAMALAAFALLPLTLSEKAAEAALTQTTVPGRYQRLEKAGCSFLLDGAHNVQAGSELLPYARRLAKDKDGRLLVLAGMMKDKDLSDFLTLLKNEKVTLTSLAYPRAAKKADFPAWVQEKFAYEGDLGQALNQVMAEAGDRDLILVTGSFYLVSAVLQFLQSA"]}}, {"location": "[620877:621558](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG0637"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9X0Y1"], "locus_tag": ["MAAAAKME_06740"], "product": ["Phosphorylated carbohydrates phosphatase"], "transl_table": ["11"], "translation": ["MRVAGLKTDKQGVIFDMDGLLVNSEEFYWQANIQAAREYKLGISDDAYLDLVGASVKAMDAFYEKYFPSDEVRQAFVKRTDDLVWEWTDQGKLKLKAGVKEALEYFNDLGLTVGIASNNYKSVVDHNLWVTGCRNSFDFIVTHDEVAEKKLRSKPFPYLYLAAQERSGLGKDQLLIFEDSSMGVEAAENAGIDCVMIPDIKPASAEDRARAQLICPDFFDFLKKIS"]}}, {"location": "[621606:622221](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTETTQNYYYVESDRDLLKLLFDQLPCQSLEDLLQLLDQKHIASFKDILDYASGPDCPNDLSLTIEVAMDRLRRTDMRRSSDWAGSSKIGNYLANKLLGQKQEQFWVLYFDQQQNLLGEKMLFQGTLDRSWVHPREIFRWAVVYGCASIIVAHNHPSGALTPSDNDLELTKGLKKASKIMKITFLDHFIIGGGEYLSLRERELF"]}}, {"location": "[622311:623316](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1077"], "gene": ["mreB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q01465"], "locus_tag": ["MAAAAKME_06760"], "product": ["Cell shape-determining protein MreB"], "transl_table": ["11"], "translation": ["MFGLGSKNIGIDLGTANTLVYVEGKGIVLREPSVVAKNTKTGEVIAVGSEAKEMIGRTPGSIVAIRPMKDGVIADYDTTAAMLKYFMGKTVGNSKPSVMICVPSGVTEVEKRAVIEAARVAGAREAYVIEEPFAAAVGAGLPVMEPTGSMVVDIGGGTTDVATISLGGIVSSTSIRQAGDKFNQAITNFVHSKYNLLIGERTAEDIKIQISSASVEAAKEIESKTIRGRDLVSGLPKSLEISAVDVATAIQDVVQDIIVAIKETLELTSPEIAADVIDHGIVLTGGGALLKNLPEVISDATKVPVFIAQDPLDCVAIGTGESLKHLDVMRKTSR"]}}, {"location": "[623366:624218](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1792"], "gene": ["mreC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y6Y4"], "locus_tag": ["MAAAAKME_06770"], "product": ["Cell shape-determining protein MreC"], "transl_table": ["11"], "translation": ["MKKFFQNRKMLAAFGTVAVLASLLGSTVMLRNNLSEPLLIQRLGNDIVSVGSRIVSVPVSWFTYGIDSVKDLQNAADENSHLKKKVAELAQVEARNAALEKENKQLKAAAGIKKTLTGYTTTTASVISRSSDSWSEVLTIDKGKSSGLKKDMAVMSGGGVIGRILEVDAVTSKVELITTTDSSANRFAVQATTDTGKVLHGIISVQSNGALTFTQASSSSKLKKGTKVYTSGLGGTSPKGLLIGTVAETTKDSFGLSDLIKIKPAGNLSDASVVTVVKRSVAG"]}}, {"location": "[624217:624757](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIFKQWVLAIALYLALVVEGTLSVYLQPALTYQHGRAGLLLLPIAVLIIAYEDERNEKEIWLALAAGVVADLYFWGIIGIYTFILPALSAFGRWYARVFPELFVFRLLGNIVAITVSCLYTWLVFRLIGWTDLTLKAIGFSLLYTAGWTTGISLATYWLWAKLARSYPFLVDLDNYRY"]}}, {"location": "[624813:624936](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARKKKKSTFQKIENFMVVLMALITLFGVAASVLYYLTAQ"]}}, {"location": "[625053:625383](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06800"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLMIFLLPVFGLACAYLVNLIWPKAAFKGYDVMPFFLIYACQLMTNLKGVPSFLPAGFLLYFILILLAAIRWAMINKNISLGKMFRQFWSYLDACSFFWYCGLLLVVMI"]}}, {"location": "[625515:625947](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mraZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65439"], "locus_tag": ["MAAAAKME_06810"], "product": ["Transcriptional regulator MraZ"], "transl_table": ["11"], "translation": ["MFMGEYQHNLDAKGRLIIPAKLREQIGPAMVLTRGMEGCIFGYPLTEWAKIEAKLAKLPLTKKNARSFTRMFYSGAMEGEFDKQGRINLSPTLKKHAGLVKECVIVGVSNRIEIWAKERWEEYSDEANESYDEIAEDLDDIEL"]}}, {"location": "[625949:626894](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.199"], "codon_start": ["1"], "gene": ["rsmH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60392"], "locus_tag": ["MAAAAKME_06820"], "product": ["Ribosomal RNA small subunit methyltransferase H"], "transl_table": ["11"], "translation": ["MEFKHTSVLLHETIDNLAPQSGGTYVDATFGGGGHARYLLRKLDKGNLIGFDQDQYAIDTAQSNFAAFLKEDSQPRLQLVHNNFSHLKEELAKLGISGIDGIYYDLGVSSPQLDQAERGFSYRFDARLDMRMDQSQDFDAYQLVNQYDQKQLADVLYRYGDEKFSRQIARKIVERRRGKPIETTFELVEIIKEAIPAAARRRGGHPAKKSFQAIRVEVNHELDVLRASLEEAISLLNPGGRISVITFQSLEDKIVKQTFKKYSEVEIPRGMPVVPEGIKPTLRLVNRKSITASEEELAENNRSHSAKLRVAEKL"]}}, {"location": "[626905:627262](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsL_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00910"], "locus_tag": ["MAAAAKME_06830"], "product": ["Cell division protein FtsL"], "transl_table": ["11"], "translation": ["MAGNTVRKYNYEPEEEARKSPRLVVDPQKVPYSTFEKLLAVLGLLGAVALITLNVSASVSATYAQWQLTNVKESITKQKNATADLQQEIGELSSNTRLNKIAQSQGLKLRENNIRTIR"]}}, {"location": "[627261:629424](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0768"], "gene": ["pbpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q07868"], "locus_tag": ["MAAAAKME_06840"], "product": ["Penicillin-binding protein 2B"], "transl_table": ["11"], "translation": ["MKKTTNLGKIKSRAHGYRFTVGRILELVVALVFLFLAGRMLYLSISKTIDGQDISKRTAAIYRRNTVLTANRGTIYDKNGLIIAQDSHTYTVYAILDKTYVDSNKKPLYVQDKEKTAEKLATVLPLSKAKILKYLNPKNKNTFQVQFGTAGSGLTLTEKKKIQAMHLTGIKFMETPSRLYPNGVFASNVVGYTVSQNNSKTQTTELEGVTGLEAYFNKILKGTNGYETSMVDSSENQLPSGFHSYKAAKDGDNLYLTIDSQLQSALETYMSKVQKNYKPKAMTVVIENLKTGKILAASQRPTFNSQTKAGISKAGSNLLVQSSYEPGSVFKILSLAAAVNSGNYNPKSYYRSGSITVSGSTIYDWQKSGWGTIPFSQAFPRSSNVGMVYLEKKIGAKLWRKYLNMFRITHKTGITLPGEVSGSLSFSSPVDQAVTSFGQGVTVNVMQMMQVYSALANNGQMVKPQLVEKITDSSGKTIKSYRVQKVGKKIFTAQTRKVVMQNMKKVLDKEIGTGHIYYMKGKDFGIKTGTAQIAKSTGGYMTGDRDYVFSVVGITPTANPRYCIYLTMKQPSKLGSGAETILAQIFKPMMSRLVLLNKGDKSASAVVKVPKFTGMTYAKAKKTATSNGLSLVRLGTGSKVLSQKAGAGETVSVGSTVFVLTSRKISLPDLTGWSESQIEAYASLAGIKLQLSGSGKVKSQSLAQGTVVKSGTKLKVELKE"]}}, {"location": "[629431:630391](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.13"], "codon_start": ["1"], "db_xref": ["COG:COG0472"], "gene": ["mraY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2FZ93"], "locus_tag": ["MAAAAKME_06850"], "product": ["Phospho-N-acetylmuramoyl-pentapeptide- transferase"], "transl_table": ["11"], "translation": ["MQASLIAFMISLVLSALLFPWLIIWMRSHDEGQQIRDEGPKWHEKKSGTPTMGGTVFVLSAAVATVAICAYKGQLSKTVWILLVALLGYGIIGFLDDGLKLFFKRNLGLRAWQKMDLQLLVAAGIVLLAASDNFDFALYLPFAGVVKNVVLFTLFEVFWLVGFSNAVNLSDGLDGLATGLSFIAYGTYAWLAFKSQNFGVLVFCMAVMGGLAAFFMFNHKPAKIFMGDAGSLALGGGLAAVSIFLGRPWSLLLVGIVFVCETASVILQVASFKTTGKRIFKMTPIHHHFEMLGWSEWKVDLVFWLVGLVGSGIYLMIWG"]}}, {"location": "[630397:631780](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.9"], "codon_start": ["1"], "gene": ["murD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8E186"], "locus_tag": ["MAAAAKME_06860"], "product": ["UDP-N-acetylmuramoylalanine--D-glutamate ligase"], "transl_table": ["11"], "translation": ["MKEIDKYAGKNILVLGLGRSGFAVSKLLLKLGARLTLNDKADLAADPKAKQLADLGVRVIGGSHPVDLFDQEKFDYLVKNPGIPYENPMVAKASEKGVPIITEPEVALSASESPYVCVTGSNGKTTTVMLTQQIMDHYLQKQGHHAHAVGNIGCPISEVVLNQAGPDDLLVVEMSSFQLMGVTDIEPKVAAIVDIYNNVHLDYHKTFDNYVDAKLNVGRFQKASDYFLANFDQKDILAREEKATKAKILTFSENDPVADFYIGQDYLMHGEEKMMKIADIKLPGIHNLQNSLVAIGISSLMGAGKDDIAAVLSTFTGAEHRLQYVTTLDGVKVYNDSKSTNIEAATVAIQSFKQPEVLLAGGLDRGFVFDSLVDLFKKHVKAIVTYGETRYLLADAARKAGIKTIVVVDNLHEGVKAASKLAEAGDVLLFSPACASWDQFKTFEERGEYFVKYVKELEEK"]}}, {"location": "[631781:632894](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.227"], "codon_start": ["1"], "db_xref": ["COG:COG0707"], "gene": ["murG_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9HW01"], "locus_tag": ["MAAAAKME_06870"], "product": ["UDP-N-acetylglucosamine--N-acetylmuramyl- (pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase"], "transl_table": ["11"], "translation": ["MRVIFSGGGTGGHIYPIMALIERLKEEGICQDDEILFVGTKKGLESKIVPAAGVNFKTIDIQGFDRKHLLNNVKTIQLFLKATKRAKEILADFQPDVVLGTGGYVSGAIVYEASKMKIPTMIHESNSVVGVANKFLGHYVDKICYTFDDAAKEFPEKKKLVKTGNPRSQQVLSLNAKPVDLAGDLGLNPKIPTVLVFGGSRGALAINRVMLKSLMELKKKPYQVIWATGTYYYDAIEKKLADVDYDDSIKVVPYIDNMPGLLPEMTCVVSRSGATSLAEFTALGVPVILIPSPNVTHNHQMKNAMDLEKAGAALVIAEDDLNENTFVSSIDHLLLDQSYDEKMRQASKALGVPDASDQVIKVMKEIAKKN"]}}, {"location": "[632917:633763](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1589"], "gene": ["divIB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16655"], "locus_tag": ["MAAAAKME_06880"], "product": ["Cell division protein DivIB"], "transl_table": ["11"], "translation": ["MARKRITRRDPEEELSKFLRHEPGQGQETRKLSSQLTSLKKERRRGLLTRLGSIMAVCLLAIAFLTYYVSPLADVSTVRVLGADDLDGKSMVEVAQIKASDKVVDALRGQKKISKKLAAKYPEVASVTLSVKGLNTLNMQVHERKVSGYIKDGSSYREILANGELGTKSLAWREFDHDKPLFISYSKQVALKTNLKIFNSFPEYFKKQVKMLSGNTRRKTQMILVMKDGNVIIGNTETIKSKVKYYNSIKQDLTTNSVIDMEVGAFTRPLTSAEKKAYGLS"]}}, {"location": "[633821:635204](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0849"], "gene": ["ftsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P28264"], "locus_tag": ["MAAAAKME_06890"], "product": ["Cell division protein FtsA"], "transl_table": ["11"], "translation": ["MDNSTLLVGLDIGTTSIKVVVADAAHQELQVYGAVAAPTRGMRHGKIVDIDQVAESVKNAIQQVSEKTNSKINRVVTALPVSMLQLESTTGLVNISDSGKEVANEEVQRVMYAAIKAAKKKDRQAVAFFPSRFLIDGEKDVDDPRTMIARSLLVQGLVMTAPSAEIHNINTVLKHADIQNNFFVPAPMAFSSVALDEAERTFGAILLDMGGGSTTATVIRDGQIKYATVDLKGAADITHDISVVLSTTMSDAEALKRDYGYADPDLASENEKFAVKAVGKDENNLVSEKYLSEIINARLQQILRRVGWGLYNHDALSLPAGVIITGGSALLAGIDDLVAADYDVKAKIYQPAQIGLRNPVYSVAYGIVNYANNLSDIGYLANTVIYHDSALVSNERPTSAGNSQKNAKRVTKKAENDTELAYNKAKLDGEVDTETRHEEKTNNNENKNKGLAAFLRKFFD"]}}, {"location": "[635219:636578](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsZ"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00909"], "locus_tag": ["MAAAAKME_06900"], "product": ["Cell division protein FtsZ"], "transl_table": ["11"], "translation": ["MALDFTFDSDDNNNAVIKVIGVGGAGGNAVNRMIEDGVQGVSFIAANTDVQALNSNNAEVKIQLGPKLTRGLGAGSHPETGQKAAEESEETIEDALKGADMIFITAGMGGGTGTGAAPVIAQIARETGALTVGVVTRPFSFEGPKRSKNAAEGIDKLKEYVDTLVIVANNRLLEIVDKKTPMMEALKEADNVLKQGVQGISDLITSTDYVNLDFADVKTVMENQGAALMGIGRASGENRTVEATKMAISSPLLEVSIDGAKQVLLNITGGPDLTLFEAQDASEIVSTAAGEDVNIIFGTAINPNLGDEVVVTVIATGIDDEAEAAASKQFPGRGHQVSAPREKPAAPKILTPEEAAPAAPVQEAPVQAEAAKPTSPVKEEKPAMMDPISVWGLNDDDYSRRKKPEEQKRRAEEKEAVSDADPSSAISQIDINTDYDDDDDDDIPFFKHRRDR"]}}, {"location": "[636592:637009](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1799"], "gene": ["sepF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31728"], "locus_tag": ["MAAAAKME_06910"], "product": ["Cell division protein SepF"], "transl_table": ["11"], "translation": ["MNNKFKDFFGFGDNDSYEERDAYEEHYDEQEEMQNSNRPTNSRDSNVVSIKAGQAGSGPSKIVLYEPRVYSDAKEVAQNLLNQRAIIINFSRMDDASARRVVDFITGTVYALNGEIQRIGDKIFLATPPKFETDGKIT"]}}, {"location": "[637038:637341](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTFLVFLYRLLYFICEAYSLLIIIDAFMSWIPAISESAAGRWIDRIVNLFVNLFRQGPILRLIYATGIDISPMIALFVIYFVQSVALGWLFSILGRIFL"]}}, {"location": "[637340:638138](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKRQASSFYPHFAIEERPTIDQFVGLFNRLLFTGQSFLTDFLDPRQRQIMETIAGGEAIVQAFGGYEEAEKCRLYISLEWENLRPDDYQVQLFEIEYPQKFASLRHSQILGSLANSGVKTDTFGDIITDGQGRWQFFAEKELAGFFASQIDRMGPVKVRLEEKPLKDSLEAEDNSEIISAVASSMRLDAVLAALSNKSRSQVKEALEAGEVRLNWHEEEKGESLLKVGDILSLRRFGRVKLLSVQPSKKGRLRVEGQFWPAKRQ"]}}, {"location": "[638487:641283](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.5"], "codon_start": ["1"], "gene": ["ileS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67509"], "locus_tag": ["MAAAAKME_06940"], "product": ["Isoleucine--tRNA ligase"], "transl_table": ["11"], "translation": ["MRVKDTLNLGKTKFPMRGNLPKREAEWEKNWEDQKFYERRLKLNEGHERFDLHDGPPFANGNIHMGHALNKITKDIIVRSKNMEGYYAPYVPGWDTHGLPIEQQLTKQGVDRKTMDRAAYRELCRKFAMEQVEKQRTDFKRLGVMGDWDHPYITLLPEFEAAEIRVFGKMYENGYIYQGKKPVYWSWSSESTLAEAEVEYHDVESPSIYISFPVKDGKGKLSEENTYFLIWTTTPWTIPSNQGIAVNPKFDYSVVEVGDRRYVVGTDRLSAVAEILGWDSYKTVQHLKGTDMEYMVAKHPYIEGRDSLLMEAVYVTDDDGTGLVHTASGFGEDDYNTAMRYGFDVLSPMDNKGCFTEEIPDPDLVGKFYTDTNEIVKDKLSAAGNLLHYSTFVHSAAHDWRTKKPVVYRATTQWFASISKFRDQILDQIEKTTFYPAWGKTRLYNMIKDRGDWVISRQRAWGVPLPIFYAEDGTAIVTHETIEHVADLFAKEGSNAWFTHPVEELLPEGFTSEHSPNGKFTKETDILDVWFDSGSSWSGVQALGRAVHYPTSMYLEGSDQYRGWFNSSLITSVATNGVAPYKSVLSQGFTLDGQGRKMSKSLGNTIAPNDVIKQMGAEIIRLWVASVDASGDVGVSMDILRQVSEGYRKIRNTFRYMLANTADFDPEKDRVAYKDLCKIDQYLEVKLNDLVAESIVNYDKYDFADVYKLVFKFITNDLSAFYLDFAKDVLYIEGKDSHARRSMQTVIYDAAVKLAKILAPILPHTMGEVWGYLKEKEEDVYLSNFPEIEDYADADDLKESWGEFMKLRDDVLKALEEARDQKLIGKSFEASVTVYPGEAAKAALDKLAGEDFREILIVSNLVMGQGEVPAEAKQFDQASVLVRRAEGEVCPRCRMYRTDLGADSRLPQLCGRCASIVAGDHPEILEEGLED"]}}, {"location": "[641282:641492](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1278"], "gene": ["cspG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S170"], "locus_tag": ["MAAAAKME_06950"], "product": ["Cold shock-like protein CspG"], "transl_table": ["11"], "translation": ["MRTGLVKQFAEKASFGFIEDDQNHKSYFVFYTAIKEEGYKRLEVGQRVRYQLAQGKHGLQCINVYLAKD"]}}, {"location": "[641507:642065](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG0494"], "gene": ["nudF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54570"], "locus_tag": ["MAAAAKME_06960"], "product": ["ADP-ribose pyrophosphatase"], "transl_table": ["11"], "translation": ["MDLKETEISTKEAFHGGFINLHVETVMLPNGKTASRELVDHRPAAAAICINDEKKMLLVTQWREAIKQLTLEIPAGMIDASDVSPLDAMKRELNEEGGLKAEYWEKVAEFYTSPGFSNEKLHLFYCDTLSPVANKLDLDEDEFLTAEWYSLEELKNLLTEGKIVDAKTIYAISVWENMLLTGSEG"]}}, {"location": "[642068:642275](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEKRSDYRRRQAEQAEKANRQEAADSAAFPAFKQDQDQKPLKAERLNFAILVVCLLIILVWVILLKF"]}}, {"location": "[642294:642993](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.9"], "codon_start": ["1"], "gene": ["mtnN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5B0"], "locus_tag": ["MAAAAKME_06980"], "product": ["5'-methylthioadenosine/S-adenosylhomocysteine nucleosidase"], "transl_table": ["11"], "translation": ["MKIAIVVPMAEEAEFYHQYFSSGKKEMFGSTEFEHFSVAGNDLYLGLTGIGKVQAAMNLTSLLAKEKIDLVIMTGSAGSLQKEVQRMDLVLPSEFAYHDAHNTSAGNYVEGQIPQEPARFKLDCAERDKFKDFLGKKGVAYKEGLVVTGDSFISSQAQKDEILGNFPTALCVEMEGAAFAQVAYHFNVPLIALRAISDNGDEDADNDFAAFVRKVGAQAAELIVEYLRENDF"]}}, {"location": "[642992:644156](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.7"], "codon_start": ["1"], "gene": ["iscS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O54055"], "locus_tag": ["MAAAAKME_06990"], "product": ["Cysteine desulfurase IscS"], "transl_table": ["11"], "translation": ["MKQVYLDNAATTPMSPTVIDVITDEMANDFGNASSTHTLGRKARNSVETARHTIAQAINAKDQEIIFTSGGSESNNTVIFGVAEMQKAVGRHLITTKIEHESVLKSMQHLEELGYEVTYLDVDRDGHISLDQLREAIRPDTILVSVMAVNNEVGSINPLKDIGQIVKDSQAFFHVDAVQGLGNIDLDVEEMGIDFMSTSAHKINGPKFLGFLYERDGIRLPNRIYGGDQELKRRAGTENVPGIAGFGQAVAEVQAESKADLQAKYTDFQKIILSRLDESGVAYEVNSPLTGLVSHHVLNLRLNGLSTYVLLANLDLAGFAVSGGSACTAGSLTPSHVLTAMFGQDSPKVSESIRISFGRYNTVEEVEAFAAALVKVARKLQDRKRED"]}}, {"location": "[644210:644552](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MANTVMINGDKRKFMLNTDVKLYALIDAGFQKTPRGNFVYEHPLYNESPYNATTKLKMTIKSDLTSLTMVVTDPSGLKKVNIFKNKQLAPTVELLDYILKDLEERKILSEVKD"]}}, {"location": "[644556:645684](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG0482"], "gene": ["mnmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97T38"], "locus_tag": ["MAAAAKME_07010"], "product": ["tRNA-specific 2-thiouridylase MnmA"], "transl_table": ["11"], "translation": ["MVDNSKIRVVVGMSGGVDSSVSALLLKQQGYDVVGVFMKNWDDTNDDGVCTATEDYEDVKKVADKIGIPYYSINFEKEYWERVFQYFLKEYKAGRTPNPDIMCNTEVKFKSFLEYALDLDADYLAMGHYAKTMVDENGVTHMMRPKDGNKDQTYFLSQLTQEQIKRVMFPLQDLTKPEVRRIAEEAGLVNAKKKDSTGICFIGERNFKHFLSEFLPAQGGDMVTPDGKVVGHHAGLMYYTIGQRQGLGLGSTKESTAPWFVVGKDLEKNQLIVEQGYDSPRLYADRLQASGMTFFTGNPEEDTEFKATAKFRYRQCDVGVTVKYHAASKTADVYFDEPARAVTPGQALVLYNGEECLGGGNIDAAFKDDKKLQLV"]}}, {"location": "[645783:646443](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "gene": ["gpmA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01039"], "locus_tag": ["MAAAAKME_07020"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MEIYFVRHGKTQWNLEQRFQGGQGDSKLLPESLADIEKLGRYLQGKHFKAVYASPLDRARMTAQGLIGAAGIRLPLHIDERLREMNLGKLEGMKYAEAEKLYPQEIDNFWHHPDKYDNTVVEGESYEHAMARGLDFGREMAEKYPKDSDKVLVVSHGAVLSAIMGALLGYDLANLRQNGVIYNTSVSVLASQEKGPAFKLVKWSDVTPLEHKMSETDGL"]}}, {"location": "[646442:647096](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDQKINQLYEEGKVDQEIHALIEKIDHNPRETANYLQLATYLLDQGSAEQARELLTKARGIAEDPQALVYDLAVCDYALGDFDQALARLAQIPDDDMTMYQKALVYLKLGQSQKALAYALSIKESDDRVKELIGDIWLALGELEAARASYLEIAEGQRSSKLNFLLGLTYFSQDREQAEEFFAKSKKQDPKYYQKAKDQYESLLKLLSQGKAGAGKE"]}}, {"location": "[647109:649500](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG0507"], "gene": ["recD2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RT63"], "locus_tag": ["MAAAAKME_07040"], "product": ["ATP-dependent RecD-like DNA helicase"], "transl_table": ["11"], "translation": ["MTEFSGEVKSVIYENAQNMYKILLVAVSQPLAGYDDDEIKVTGTFGDLELGQEYNFTGDLVTHPKYGLQFQATGCQPALPKETGGVVKYLSSEKFPGIGPKTAEKIVDQLGSGGLKSLQADPTLIAKLDLSQKQKDSLLSGLAQMDSFDDLGMTLASYGIPRKVAGRLYQKYHDQTLKKLQADPYLPLGEVTGYSFKQADHLGIGFGIALDSLERADGSILAVLLQALTMEGETYLELEELLPAAKELTNINFDLLAEAVNDLQDKKKVVVEEGRASLLAPFQVESEIVTDLEDLLAKGKEADYREKDLDQAIKRAERKLGISYDPEQKQAIKNAVTSPVSILTGGPGSGKTTIIDGILLVLKDLADMDEEEAEEAILLAAPTGRAAKRMEEVTGYPAKTIHRLLGLGIDNSEEMELNDLEGEILIVDEMSMVDIYLFEKLLSAISNVHHLVFVGDKDQLPSVGAGKVFADLIEADFIPTCQLQVVHRQKDDSTIIPLAHAVNEGANPAVLLQKTASYSFIPCRPHAVPSAVEQITQAALKSGFAADDIQVLGAMYRGDGGINSLNDTLQRVINPEKGNDKAVEAHGENFRLHDRVLQLQNDPERGIYNGEIGKVVAVDPEMLEDEDDEVKLLVNFDGNEVAYTQADLNNLTRAYAITIHKSQGSEFPLVILCLTMQNYIMLKRNLLYTAITRASQKLVMVGEEQAFAQAMRVKGNERRTNLVWLLKDRFKPEEQSKQESSDSTENTLDKEEKVEDYILTGARISRAEISPMVGMEGLVQGCKNLVEIVRTKGPGA"]}}, {"location": "[649665:651015](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1249"], "gene": ["rclA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77212"], "locus_tag": ["MAAAAKME_07050"], "product": ["putative pyridine nucleotide-disulfide oxidoreductase RclA"], "transl_table": ["11"], "translation": ["MTEKETKKTVKNIIIGFGKGGKTLAKFLGQQGEEVLLVEKSAKMYGGTCINIACLPSKRLILEGAAGSDFSEAVAGKNEMTAQLREKNYQMLAQEETVTVLDGQARFIGEKEIEVTGPAGKQIFKGDRIFINTGASPVLPPVPGLKESKKRLDSTQAMNLTSLPKELLILGAGYIGLEFAGMFANYGSQVTVLDHSPEFLPREDDDIKAAVKADLERAGVKFILGADAEKVSDEADQVVIDYKLGEEKLTAAADKVLVAAGRRANTADLNLPAAGIETDDRGNIRVDDRLRTSADQVWALGDVKGGPQFTYVSLDDFRIVKDQLFGEGKRRVSDRQILPTSVFITPPLSAVGLNEKAAQKAGLDYQLFKLPVAAIPKAKVAKDSRGLFKALVDPASGQILGASLYGLESHELINQIALAMKAKLPYSFLRDQIYTHPTMSEAFNDLFKQ"]}}, {"location": "[651054:652734](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["rnj1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8K5W8"], "locus_tag": ["MAAAAKME_07060"], "product": ["Ribonuclease J 1"], "transl_table": ["11"], "translation": ["MKIKQNEVAVFAIGGLHEIGRNMYCVQYQDEIVIMDCGIKFPEDDLLGINYVISDYSYLVKNREKIKALVVSHGHEDHIGGIPFLLEKIPEIPVYATPFALALIKSKCEEHGILDRTELHEEHEDTVLTFDKLKVTFFRTTHSIPDTLGIAVHTPLGAVVFTGDFKFDLTPVMNQPAPNFQRMAQLGEEGVLALLSDSTNAEVPQFTKSERFVAGSLHNIITGIEGRIIFATFASNLYRVSTAIQAAIDTGRKVAIFGRSMENGIQNGIDLGYLDVPEGLIVDAETINSLPPEKVMLLCTGSQGEPLAALSRIANGTHRQIKLKPHDTVIFSSNPIPGNTLSVNQLINKLMEGGANVVHGRVNNVHTSGHGGQEELKLMVELAKPKYMIPVHGEYRMQVVHAHLAQQAGVPAENTFVLKNGEVVCFSPEGARIAGDIHVKDVFVDTSGADDVGNIVVRDRQILSEEGLVVAVATVDYKHKRVLAGPDILSRGFVYMRESQDLINAAQKHVYHVLKTEMAKSDKPKDSEIRKAIIENLQDFLYSRTERRPMILPMLVEKK"]}}, {"location": "[652723:652957](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA23"], "locus_tag": ["MAAAAKME_07070"], "note": ["UPF0356 protein M6_Spy1605"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYKVLYQKDKIVNPRRETTQTLYMEADNIVQARALVEQNTPYNIELIQELTGNSLKYEQEHADFKLTAFGQTNSED"]}}, {"location": "[653135:653690](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.88"], "codon_start": ["1"], "db_xref": ["COG:COG0242"], "gene": ["def2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q819K2"], "locus_tag": ["MAAAAKME_07080"], "product": ["Peptide deformylase 2"], "transl_table": ["11"], "translation": ["MILMKDIVRDGDPVLRQVAQKLTFPLSDHYRKLADDMMEYLVNSQDPKIAAKHQLRAGVGLAAPQVGEGVSMAALLVPDDKGEIIFKEVYVNPEIISESVRKTCLSEGEGCLSVDKVIDGYVPRPNKVTVHYWTVDGEEKTIRLKGYPAIVSGHEIDHLNGHLFYDRINKENPFALDEDTIVIY"]}}, {"location": "[653935:655783](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1217"], "gene": ["typA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32132"], "locus_tag": ["MAAAAKME_07090"], "product": ["GTP-binding protein TypA/BipA"], "transl_table": ["11"], "translation": ["MADQKRRENIRNIAIIAHVDHGKTTLVNQLLKQSDTLPEHMNLEDRAMDSNAIERERGITILSKNTAVSYKGTTINILDTPGHADFGGEVERIMHMVDGALLLVDAYEGPMPQTRFVLQKALEAGVKPVVVVNKIDRPGARPAEVLDEVLELFIELGANDEQLEFPVVYASALNGTSSCSDDPADQEETMDPVFDTVIKAIPAPLDNEDEPLQFQITMLDWDDYVGRIGVGRVYRGKIKVGDEVTVMKLDGSKQNFRVTKLFGYFGLKRNEIKEAKAGDIIAISGINDIFVGETIASKENPEALPILRIDPPTLQMDFVANDSPFAGREGSQVTPAKLEERLLRQTRTDVSLKVEPTDQLNAWTVSGRGELHLSILVEEMRREGFELQLSRPKVIYREVDGQMCEPYEAVQVDVPDEYVGSVIDGLSQRKGEMQNMVSKGNGQTRLEFSVPSRGLIGYNNEFMSATGGYGIMNHTFSEYKPVVKNWNPGRRNGALVSINQGQSTTYSLQSVEQRGQLFIGAGVQVYEGMIVGVSSRDRDIAVNVTKGKNLTNTRASGKDHAAAIRTPKTLTLEESIEFLNDDEYCEVTPESLRLRKKILNTSERQKFDKKKAKTN"]}}, {"location": "[655881:657084](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.129"], "codon_start": ["1"], "db_xref": ["COG:COG0772"], "gene": ["ftsW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07639"], "locus_tag": ["MAAAAKME_07100"], "product": ["putative peptidoglycan glycosyltransferase FtsW"], "transl_table": ["11"], "translation": ["MKKNKVAATAAKIKETFQYFDYRIFIVYLLLMTIGVIAVYSASSEILLINGFKATVYGQKQLLYAFFGVLICLACYSINLDYLRRGKLLLWLLVIVAGLLVYVLFFGQAVNGAKGWINLGPINIQPLELAKLVLTLYLARMLAKADGRLVRGHIISQLLPTAIIAGLLMILVLIEPDFGGTAIIFCLVLIMYSVSGIPTGYILLSIIGITVLVVGGFSLIVAWNPSFLQDIYVYKRFIAFLHPFKTAANEGAQLVNSYYAIHNGGLFGLGLGNSIQKRGYLPEPYTDFILSIIAEEVGSLGALVVLGLLFYLVILIMERGVKAQSQYSTLICFGVTAIIFFQTLFNVGAVLGLMPITGVTLPFISYGGSSLWVLSAAIGLVLNVTAEEKIRQEVQAEDEY"]}}, {"location": "[657073:657415](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSINQELADQEIASRTSLIVYLRNVNDDQFKLRRFGDIVYFSKKLHYLILYVNQAEAEETASKLRTFSFVKKVEFSQNDALDLDNQKIEQQISDMAKEAEEKLNQTDKEDWIK"]}}, {"location": "[657411:657963](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.171"], "codon_start": ["1"], "db_xref": ["COG:COG0742"], "gene": ["rsmD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P44869"], "locus_tag": ["MAAAAKME_07120"], "product": ["Ribosomal RNA small subunit methyltransferase D"], "transl_table": ["11"], "translation": ["MRIISGKYAKRNLFTLKSQKTRPTSDKVKESLFNSLGQFFAGGEVLDLYAGSGALGIEAVSRGCEHAVLNDVSRPACQIIRKNVDLTKEPDRFEVFTMPAKVALKVFADQERKFDLVFLDPPYAKQQMVKDMTALASLDLLKPGAKIVVETDEQTDLPPVAGFDLLKDHHMGKTIVRIYQRAE"]}}, {"location": "[657963:658458](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.3"], "codon_start": ["1"], "db_xref": ["COG:COG0669"], "gene": ["coaD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831P9"], "locus_tag": ["MAAAAKME_07130"], "product": ["Phosphopantetheine adenylyltransferase"], "transl_table": ["11"], "translation": ["MMTALFPGSFDPITNGHMDTIEQAAKVFDRLLVVVMTNSSKKALFTPDERVDLIKDAVKEHGLANVEVLARPGQLTVDLARELGAGILVRGVRNSSDFLYEQQIAQLNRDLAPDLPTVLFMAEAANSALASSMLKEIAMFGGELDRFLPKKAARALKEKLQSES"]}}, {"location": "[658447:659488](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3480"], "gene": ["ylbL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34470"], "locus_tag": ["MAAAAKME_07140"], "product": ["putative protein YlbL"], "transl_table": ["11"], "translation": ["MKVKKDGQSKKWRRALVGLFAVILLALVLLLPTKYVIEAPGDALPVGNYLKTTGVKAKNNLYFVTVSERRAVLGDYLWSFTQPYEDRLTMDEVTGGSSTEQYEQLQEWYMQTSQQTAIYYAAKKAGLKPKLKYQGVYVMDLQSSSSFKKKLLIGDTIVAANGHKFKSVQGFMCYLQKQKIGQKVSITVLRSGKKQTFTGKIVKVKGTGKPGIGISMVERVKVEVSPKTTISTGDIGGPSAGLMFSLACYQNYTGKDLTKGHKVAGTGTIDANGKVGIIGGVDKKVVAADKEGAEVFFAPTDQTGVKKSQTNYAVAKRTAKKLGTKMKIVPVATFDDALKYLQKHYK"]}}, {"location": "[659623:660370](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQSNERTEGKQKLQDLLAWLMDKKMYIVVVLLAAGGFYYANRQPAADNSALLSSSQSMSENSGQSLQSSSVSSVAASASSAASAANAEVVCDISGAVKHQGVYRLKNGARLEDLIEKAGGLTKDAQLQAINRSQLLKDQDKVYILGKGDKTEAAQTANSAAASSPSASASASSVSSSASGAASGDLINLNTATASDLQKLNGIGEKKAEQIIAYRQEKGSFKSIDELKEVSGIGDKTFAAIKDQLTI"]}}, {"location": "[660323:662582](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0658"], "gene": ["comEC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39695"], "locus_tag": ["MAAAAKME_07160"], "product": ["ComE operon protein 3"], "transl_table": ["11"], "translation": ["MATRPSRQLRTSLQSSLQAGFYFLLALASVSLCGIFQSQKWGKLFALAALIYLLFLLKDKYGGLVKLAMAFLLLLTLVLAKDQVKPGEPAGDIRLYPDQVKITDGWLSGRGQTATQKVQVYGPASREALALLENGQSIDLTEVSGAVSEIEPSTNPGQFDYRRYLASQHVYRQVKLAHYQFKLAPASLLTRLHGLRWKIQAYLKRLPRLLAFFASELLLAENPAGDNQANLNTYRDLGVIHILSISGMHVGIYVFALAVFGSYLHMTKEEVFAVSCALLTFEVFLSAGRPGFIRATLSYVFSAGLAFKSRRIGRADLLGLTYCCQQLFTPRLLLETGGILTYVLALGLVLTAKLPDCKQAFWLNGLLTPFLLYFFYQVNVCTIFYNILVVPYFNYIVMPMTGLALLAPPGLAAFFEKILEAAEGMLANVAKTGFGQLIYGQVKAWQLALLFALTFLYLITRKKKYRHILAAVYLLIFVSIHFPLEGQVSFIDVGQGDSILLTTPIRRRVYLIDTGSKLTFGKKKQSQPQIDRITIPLLKAQGISQIDGVFVSHQDADHVGDLGPLLEEMPVKRLYMGAGLIQNPSFRARIAGRVEKTKLVELKAGMEVKEAINFQVLHPEVAGKGENKDSLSLTCRLAGKSWAFTGDLDQAGEEAIIKKFPDLKIDYFKLGHHGSDTSSSTVFLRAIQPKLVFISAGRNNRYHHPKPETLAKLHQLGIPYLNTQTEGMISWHYGIREYFSSFLEGRRVCYHY"]}}, {"location": "[662612:663602](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1466"], "gene": ["yqeN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54459"], "locus_tag": ["MAAAAKME_07170"], "product": ["putative protein YqeN"], "transl_table": ["11"], "translation": ["MPNLISLFPNSQAGNPNVLLQGPDAFLNDYLAHNYVQQSAFQGLEKVTVDCESDPLDDLIAALAEASLFSQQKLVLVKNPIFLTGKFPAKYKQQGDRLLEIFSHLDQIDDVIVLVASYEKLDRRKKLTKQVERSFNTVSTAVKSYESGRVMQALVKAEGYRFAGGALDLLMERSDQVLDAALGNYNKLKAISDGQEISWDLVDRNIDLSLDQNVFAILEAALRGDYQEAIDRLDGQLREGTYPLQMVAVFFSQVEFLLCVKVMGQRRRSESEIAKELSAHPYRVKTALKSRAKVGQLKKMLGQLIQLDYRYKSGVYQGSRFLKAFILTC"]}}, {"location": "[663694:663946](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0268"], "gene": ["rpsT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RMG0"], "locus_tag": ["MAAAAKME_07180"], "product": ["30S ribosomal protein S20"], "transl_table": ["11"], "translation": ["MPQIKSAIKRVKTQAVANERNAAQLSTMRTAVKKFKAAQAAGADNASELYVAAIRELDKAASKGLIHKNKATRDKSRLAKLAK"]}}, {"location": "[664149:664419](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0184"], "gene": ["rpsO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21473"], "locus_tag": ["MAAAAKME_07190"], "product": ["30S ribosomal protein S15"], "transl_table": ["11"], "translation": ["MAVSKERKNEIIKEYATHEGDTGSVEVQVAVLTEDINNLTQHMREHSHDHHSYVGLLKKIGHRRNLLRYLQENDLERYRALIARLGLRR"]}}, {"location": "[664620:666465](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["rnj2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8K7S6"], "locus_tag": ["MAAAAKME_07200"], "product": ["Ribonuclease J 2"], "transl_table": ["11"], "translation": ["MSDKLKIMVLGGVREQGKNMFAVQVNDEIFVLDAGLKYPDSSLFGIDVVIPDMEFFKQYGDQVVGIFLTHGHADSIGALPYILRDWDIPVFGSKLTIELAKIDVQRENKRRNNQLFNVIDADTEIDFKNASVSFFHTTHSVPDSLGIVIHAPQGQIVYTGDFKFDPSARPAYRTDMARLAEIAGNGVLALLPDSSNAEAVLPNASENEVGTYITNVFRNAKGRIIVAGKASNLNRVQQVFNAAAATGRRVLLTGRDVAKIVHTAMKLGYLEVPDGLLMKAKELKDVPDEKTVILETGRMGEPLQSLQKMANNRHRMITIHEGDLVFIATTPSHAVETTVAITSDMVYRAGGTVIELGRNMHTSGHATGRDLQTLIDLLKPRILVPVIGDYRLLEAVKDLAVETGMDPDDVYITQNGDCLEYDTKRGQFFRGDAVPGEDTMIDGSGVGDVGNIVLRDREVLSDDGIFIAVVTIDRKKKKIVSEPQVTSRGFVYINANHKLMNDSIQVIKDAIQANFEHKKFDWTELKQDMRSSLGKFLYKQTNRRPVVLPVVMEVNQNRHRAMQKKAEDAAEGNKEKPVKKNNRKKQTRPANKYAKGKKPVNKNKKKDSKADDKR"]}}, {"location": "[666451:667279](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSVSQENLRKLAIEAEAGGDYQAACGHLEEALRLGFDEDLALDLSRLLRLNKEEDQAYALIKALPDLFSRDKVLEEYGQVLAANNFLIEALQVKHLTEGEVDFPVLPADKKEQEKILLAFRKKQAVSQSQYEQLLKLDLPTYLAFARSLLLDPLANYALRLAVCEDLVKLGVKEEMQVMILGDLKSFVPAETDLLKQDPVYREFITSLASRYQNRPSELPLILAEGNFAFGQLYPCQGDYVTNPDAFARNLTGFLRQKRGGESQDLLEKIYQKK"]}}, {"location": "[667467:668658](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["tuf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XD49"], "locus_tag": ["MAAAAKME_07220"], "product": ["Elongation factor Tu"], "transl_table": ["11"], "translation": ["MAEKEHYVRTKPHVNIGTIGHVDHGKTTLTAAITTVLAKKGLAQAEDYSQIDAAPEEKERGITINTAHVEYETEKRHYAHMDAPGHADYIKNMITGAAQMDGAILVVAATDGPMPQTREHILLARQVGVNSIVVFLNKCDLVDDPELIDLVEMEVRDLLSEYGYPGDDVPVVRGSALKALEGDEEAQKKIEELMDVVDEYIPTPERETDKPFLMPVEDVFTITGRGTVASGRIDRGTVKVGDSVEIVGLVEKVLTSVVTGLEMFHKTLDLGEAGDNVGVLLRGVDRDQIVRGQVLAAPGSIKTHKTFKGQVYILSKDEGGRHTPFFSDYRPQFYFHTTDITGEIELPEGTEMVMPGDNTEFSVTLIKPAAIEVGTKFTIREGGRTVGAGQVTEIDD"]}}, {"location": "[668841:670161](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.2.1.8"], "codon_start": ["1"], "gene": ["tig"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99080"], "locus_tag": ["MAAAAKME_07230"], "product": ["Trigger factor"], "transl_table": ["11"], "translation": ["MSANWKTTGKTTGELSFEISQDEIKKSLDKAFGRVKKSLRVPGFRKGHVSRVIFNQYYGEEALYEDALNFALPEAYSAAVKETGIKAVGQPQIVPVSMGKNKAWEMKAIVTVEPEVELGQYTEIEVPKQNTRVYQKDIDAELTKRQEQNAEMVLKNDKAENGDTVTIDYVGTVDGVEFDGGSAQNYSLELGSNTFIPGFEDQLVGHGAGEEVDVVVTFPEDYGAKDLAGKEAHFATKIHEVKAKQLPELDDEFAKDVDDSVETLDELKEKIKAELKSEKEEAAKAAIQEAAITTAVKNATVEEIPDVMIQEDVDNQLNQYLGDMQRQGIDPQTYFKLTNTTEDQLRSQLSANAAERVKTNLVLEAIVAKEGFEASKEEIDAEIKDLADNYNMSEKAVRNALSDEMLAHDINVRKAMDLITDSAKQVAKAKLEEGSEEDK"]}}, {"location": "[670312:671566](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1219"], "gene": ["clpX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50866"], "locus_tag": ["MAAAAKME_07240"], "product": ["ATP-dependent Clp protease ATP-binding subunit ClpX"], "transl_table": ["11"], "translation": ["MATKFTDPEEVKCSFCGKSASQVKKMIAGNGVYICNEDIELAKRIIDDELRLDSLKETRELPKPMQIKEELDQYVIGQDRAKRVLSVAVYNHYKRISQIDVDSSTELQKSNIALIGPTGSGKTYLAQTLARILNVPFAIADATTLTEAGYVGEDVENILLKLLQNADYDLERAQRGIIYIDEIDKISKKSENVSITRDVSGEGVQQALLKILEGTIASIPPQGGRKHPQQEMIRMDTTNILFIVGGAFDGIEEIVKNRLGKKTIGFGAEQESGKVDDDNWNRFLTTGDLVKFGLIPEFIGRIPIITTLDRLDSADLVRILTEPKNALIKQYQKLLSLDGVDLEFEPAAVKQIADLAIERKMGARGLRTIIENAMMDIMYRTPSESDISKIIITPETITGMGEPKVVRRELEEVVDDH"]}}, {"location": "[671555:672158](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0218"], "gene": ["engB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P38424"], "locus_tag": ["MAAAAKME_07250"], "product": ["putative GTP-binding protein EngB"], "transl_table": ["11"], "translation": ["MIINQSEFSVSAVKASQYPEGGLDEIALAGRSNVGKSSFINTLLQRKNLARTSSSPGKTQTLNFYRVDSDQADFYLVDVPGYGYAKVSKKQREEFGEMIQDYLETRAYLKGLILMIDGRHEPTVDDIAMYDYAQYLNLPILLVATKMDKIKKNAFNKTEAAFRKHLNLNKDNVTFLPFSSVTKLNVDQVKDWIQARLYEE"]}}, {"location": "[672206:672524](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFAVSIALLSSNQLLVFLAHYFLLFYAYGRSHKIILRRQTGVFRMIITGAEAVISFALGIIVIINPEYFNHQSIIEIGILLIIYGAFKLVAELFNHRPQMPKKHR"]}}, {"location": "[672538:673801](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDNSNLLTYLEWRGDIPLEKSPFNEIDALVLAIFSYLNLEKYIPSGNKEVTVSEIAEKYFASSFTGLDASQYQELFHLMSEADRFKDARLSHFNTVLTDQCQFSALKIILEDGTHYVAFRGTDDTLVGWREDFEISFKETKAQILGARYLKDLLAGDSADYILGGHSKGGNLAEYAALNLPEDYRARIKAVYTFDSPGLASEAGVDYNEDFLQRVLRRYVPDFSIIGRLFEPREVDPVIVYSTNGNIAQHDTYSWQIKGSHFVTRKRPNPESRVYNQLINQWIGSASLEEREALTQDLFDALAASGSSKINQLAKNGFGGFGAILLSVTNSSRRTKFILGNLFSSIWQLIKNQQIGAALFSRDTMAGWLLVLLGIISLTAPNYAFKAFGVLAAVGGSFSASAISSRSQFQPLNRSRNASS"]}}, {"location": "[673934:674075](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGLTFKRQDDLDKLFDKFASVPDPKKAASGKGKEKEDDKAAGKEAK"]}}, {"location": "[674212:674875](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0778"], "gene": ["nfnB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R6D0"], "locus_tag": ["MAAAAKME_07290"], "product": ["Nitroreductase NfnB"], "transl_table": ["11"], "translation": ["MTDAIDTIKSRHSTRYFDQGKEPSRADLEEVIRLAGLAPSWVDSQPWRVYLAMGETAKKIHARHLALAEAGTASSPDWEAWHREDWDPYPRENMARHNQASQEYLNTPELLDLRTNILQKNLYYAPAIAYLTIPKRSNLWSVYDLGAFAQTLALAAKAKGIDSMPAYELVKYPASVREIMGIPEDQTLAMGIGLGYGKDEYVNGYQAPRRDLPDFLTIKD"]}}, {"location": "[674958:675063](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFAMQENQTMCVCCMSLMSYDCFVLPKLDLAQTK"]}}, {"location": "[675147:676797](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_07310"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MQKIKKFTLAAVSVSAAFLLAACGSQQSSSSASKDKQVLKLSATAPLDTIDISKATGYGQTGNVFESFYRLGKNGQPAAGLAKSGTVSKDGKTWTFKLRSNAKWSNGEKITAQDFVYSWRRTINPKTASPYAYIFSGIKNADEIIAGKKSPSSLGIKALNQETVQVKLNRPIAYFKVLMAYPLFGPQNEAFIKKTGKKYATSSKYMLYSGPFKITGWKGTNDTWSFVKNNQYWDKQAVKLSKISYQVVKTTNTGYQLYQQGKLDLTPLSSEQVKQLKKNKDFKTYPYSYVAFLAYNFQAKDATVKKALNNKNIRLALSLSLDRKILTSKVFGDGSSVPTGFVASGLAYDPANKEDFAKEQKVANTVDYNEKLAEKYWKTGLKELGLKKLNLTLLASNESTNADALTQYLQSQWTKVLSGINVKVNSIPNKNAHTKALSGDFDIYVSGWGGDFSDPMTFMQILQKGTSYNYGKWNNAEYNSLIKKALTTDANDVNKRWQDLVKAAQVANADQAVSPIYQQTTAYLQNSKVKGIIHNNAGTQWSYKYAYIK"]}}, {"location": "[676856:677234](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEDNGSRYIQPHDSLEAMELIQKLFNQYRRAPLTPELLAYHQNLIERLEGDIHQAAEAEGQAKRVQELDRMIKLMKDWTAIRLSGRPFNAKMRHFRFLPEGGQVKFKRHPHKIKASSSHRASRH"]}}, {"location": "[677475:678141](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.399"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["hgdH_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D2RJU7"], "locus_tag": ["MAAAAKME_07330"], "product": ["(R)-2-hydroxyglutarate dehydrogenase"], "transl_table": ["11"], "translation": ["MYLLRKWGYYHRKMRRGDFTRPTELMSDEIFNQTVGIVGLGRIGAAAAEMYHALGARVIGYDPVYNASLEPFLDFVDFETLIKESDIVQVHIPLTPENKGMFSANEFAKMKDDAILVNQSRGELVDTAALIVALKYHEIGGAALDVLEGEEKIFGCKFEDVGSLPDEYTELINLPNVVMSPHSAYYTKMAVKNMFLQSMTDIERTLSGKKGLFQGELAKKQ"]}}, {"location": "[678300:679257](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.45"], "codon_start": ["1"], "db_xref": ["COG:COG0207"], "gene": ["thyA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q834R3"], "locus_tag": ["MAAAAKME_07340"], "product": ["Thymidylate synthase"], "transl_table": ["11"], "translation": ["MANQDQAYLDLLKKIMTEGNDKNDRTGTGTRSLFGAQMRFDLSQGFPILTTKRVPFGLIKSELLWFLRGDTNIRFLLEHKNHIWDEWAFKNWVTSPEYQGPDMTDFGLRSQKDPGFKAVYDEEMQKFCQRILDDEAFAQKYGNLGDVYGAQWRHWGKRDGGFIDQIADVIEQIKTNPDSRRLIVTAWNPEDVPSSALPPCHVLFQFYVADGKLSLQLYQRSGDMFLGVPFNIASYSLLLSLIARETGLEVGEFVHTIGDAHIYKNHFAQVEEQLKRKPFDAPTLWLNPGKKKVADFEMADIKLVNYQHGSTIKAPVAV"]}}, {"location": "[679270:679759](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.5.1.3"], "codon_start": ["1"], "db_xref": ["COG:COG0262"], "gene": ["dhfR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q54801"], "locus_tag": ["MAAAAKME_07350"], "product": ["Dihydrofolate reductase"], "transl_table": ["11"], "translation": ["MLSYVWAEDEKGAIGYQGRLPWHLPADLAHFKAKTMGHPMLMGRKTFESLPGLLPGRQHVVLSTRKLDLPAGVLQLKSEEEVSAWLKEQAGEVCVIGGSSLFALLADQVDKLEVTRIKGIFSADTYMPNLDWAAFALVKSEAHRADGKNKYDYVFETYLRKK"]}}, {"location": "[679792:680074](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["ctpE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3Y2"], "locus_tag": ["MAAAAKME_07360"], "product": ["Calcium-transporting ATPase CtpE"], "transl_table": ["11"], "translation": ["MKTNLETGLTEEEVAQKSAAGKVNTTIDDEFKTNRQIIVENTFTYFNLIFLVLTILLLIAGDIRDLTFLPVIILNTIVGIVQEIRAKSVLSKL"]}}, {"location": "[680125:681064](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["ctpE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3Y2"], "locus_tag": ["MAAAAKME_07370"], "product": ["Calcium-transporting ATPase CtpE"], "transl_table": ["11"], "translation": ["MPIDQLVEGDLVLLKAGDQIPADAKVVDGGVRVNESLLTGESDEIAKEVGDELLSGSFVVSGEVMAQLVKVGSESYIAKLTAEAKAMGGGEESKMIRAINRLIKWVGIIIIPMGLALFAQAYFLNHRSFAESISSMEAAIIGMIPEGLYLLTTVALALAAMRLARNQVMLHDMKSVETLARVNVLCVDKTGTITEPKMAVEKVVPAKNYPGNDLEDRLATYVSNMPVDNITAEALSQKFGQDQPMVNAKRIIPFTSVNKYSGAVFAGYTLLLGAPEMILRSQLKACQEEFARYPEGRLPGPGLCQVSGRTGR"]}}, {"location": "[681110:682202](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["ctpE_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3Y2"], "locus_tag": ["MAAAAKME_07380"], "product": ["Calcium-transporting ATPase CtpE"], "transl_table": ["11"], "translation": ["MSNPIRKEAKETFAYFAKQGVEIKVISGDNPVTVSRVAGQAGIAGAEKYIDAQTIKPGEYEQAMAEYNVFGRVKPEQKKEFVQALQKIGKTVAMTGDGVNDILAMKEADCSIAMASGNSAAVQASQVVLLDSNFAKMPQVVNEGRQVVNNIERSAGLFLVKNIFSLLIAVFSLILTINYPIKPAQITLISSFTIGLPSFLLALEKNHSRIRGNFTVNILTKSIPGGITDWLAVSILVLTNKFTNIGDNEVATASTALLVLVGLMVLFWISRPLNKYKLGVLALSVVCIILSIIFIPGFFKLSPLSGRAVFTVVVLFFAGMTLFRIMSRICDGIKEVSNVLKEKGKDAKLRDLLAAYGKDRDEL"]}}, {"location": "[682646:683468](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1464"], "gene": ["metQ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31728"], "locus_tag": ["MAAAAKME_07390"], "product": ["putative D-methionine-binding lipoprotein MetQ"], "transl_table": ["11"], "translation": ["MAVVVLAVIAFFSFGKKGSQQSAKTVTVTVGTVGATKAERAIWKSVAATAKKKYGIIVKTKNFSDYNQPNSALKSGDLDLNAFQHYNFLNNWNKANKSNLVAIGKTYIAPIRLYSLKYKSLKSLPKGATIAIPNDTTNEARALLVLKNAGLITLKGTSATKLYSVADIKNNPKNFKIKEVATEQAARVLKSVDAAVVNNDYANPAGLGDKQTIYVEPINKDSYQWINVIVARKKDKNKKAYKEVVKAYQTEKTKQLYKKYYGIKQVAAWDAKF"]}}, {"location": "[683504:684560](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1135"], "gene": ["metN_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32169"], "locus_tag": ["MAAAAKME_07400"], "product": ["Methionine import ATP-binding protein MetN"], "transl_table": ["11"], "translation": ["MSIVQLDHVSVTFKRKKAADVQAVQDVTLHIEKGDIYGIVGFSGAGKSTLVRTINLLQKPTAGDVVVGGVDFVKDGKQVISGKDLQARRRKIGMIFQQFNLLNETTVIENIAFALKHSDLSDDELEEKCHKLLKLVDLEDKANAYPAQLSGGQQQRVAIARALANDPEILLSDEATSALDPQTTIQILDLLKKLNRELGLTIVLITHEMAAVKKIANKVAVMENGRVVENGNLRDVFLAPKAELTQKFVGGSLAVVDTLKSLNISLAENEALYQLVYSLNNVAKSIIIELYREVGVEASMLYGNVEVLADEPVGTLLVMVKGDADKQKATLKFLSDEGVTVTELDERGNRL"]}}, {"location": "[684556:685270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2011"], "gene": ["metP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32168"], "locus_tag": ["MAAAAKME_07410"], "product": ["Methionine import system permease protein MetP"], "transl_table": ["11"], "translation": ["MINGLVHWIAQNFPNIYNLGWTGDTGWGTSVLQIIYMTFWPSIFGGVLGLFFGVILVLTEPGGILENKFWFNFCDKLISILRAIPFIILLAFISPLTRLIVGTEIGDTAALVPLTLGIFPFYARQVQVALESLDPGKVEAAQSLGASNWDIIFDVYLKETRSEIIRVSTVSIISLIGLTAMAGAVGAGGLGTTAIQYGYRDFANDVTFLATVLVVIMIFIVQVVGDFLAKKLNHQHR"]}}, {"location": "[685392:686790](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P83223"], "locus_tag": ["MAAAAKME_07420"], "product": ["Fumarate reductase flavoprotein subunit"], "transl_table": ["11"], "translation": ["MAKYEFKSSPIDLVNPSYDLVVIGAGGTGLSAALQAHELGASVAVFEKNEVLGGNTSKASSGMNAAESLVQFKHGIIDNKADFYQETLKGGGNLNDEAMLSYFVDHAALAIDWLKQYGVELDDLTITGGMSKKRAHRPASMAPVGGYLITGLLKSIEAARIPVFNKTKVVKVLQDEKGKVTGIDIVGPDGRRKVMAKAVILATGGFGASKEIIKKYRPDLEGYKTTNQAGATGDGLILGEEAGAELVQMDFIQVHPTAQTDGEKTFLIGEAVRGEGAILVNKAGQRFINELDTRKVVSAAITGLNEDGAYLIFDQGVRDHVKAVEFYDHIGLVEHGATLEELAGKIGVDAAGLEATVASWNEAVKGQDDQAFGRTTGMDRDISVAPYFAIHIHPAIHYTMGGLHINPETQVLGKDDKVIEGLYAAGEVSGGLHGNNRIGGNSVAETVVFGRQAGIQASKFVRGEN"]}}, {"location": "[686967:688002](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.49"], "codon_start": ["1"], "gene": ["pckA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00453"], "locus_tag": ["MAAAAKME_07430"], "product": ["Phosphoenolpyruvate carboxykinase (ATP)"], "transl_table": ["11"], "translation": ["MSTRERYQQSELVKANSKFSRVRATIESAFYGNNVHEVKSVAEAYELAKRQPGVIETDLPILHTSDFGLPVGAKQLVYNHGKILGRTASARHFVDDPEEDAAALTNSLYEDIYAGHEQKYLKTTVLVGLDASFSLKAHLMLQEDQAFNLLSYMLNFRFFDEKAAEMYGKSKLYDEGDLYFYFDPNVTDPAYPNGLAIFDAPHNCASVFGLLYFGELKKGTLTLAWALAHRHGYAACHGGEQAFHFEDKKDKVFAFYGLSGSGKSTLNHADHDGKYDITVLHDDAYIISREDGSSVALEPAYFDKTHDYPAGHHETKYYTTVMNCAVTLDEARAECFGYGRPPEQ"]}}, {"location": "[687952:688609](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQGRNVLVTEDLRNSNGRVIKSRYTSANRVDVEENPITALFWIMKDNSLPPVLKVTDPVLATTLGLTLATKRTSAENLPKGFDMNTLGIEPFADLFRAYPVGGDYSDFKDLFTKRGAECYVLNTDAFCGKNIPKELTLEIIEKLVDDTDQWQAFGDFAGVSYMPLADYPVDLEYKQNLRAWIQDRMDWLNMYNGEHPKTPLPEEAKECLEKIVSELK"]}}, {"location": "[689132:690693](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_07450"], "product": ["16S ribosomal RNA"]}}, {"location": "[689396:689921](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[690723:690816](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNNKNLGL"]}}, {"location": "[690805:690881](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_07480"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[690949:691022](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_07490"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[691151:694055](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_07500"], "product": ["23S ribosomal RNA"]}}, {"location": "[694131:694241](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_07510"], "product": ["5S ribosomal RNA"]}}, {"location": "[694454:695678](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_07520"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNRNRLHKAIQLTFPEIEHLMVNPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSSHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKVGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[696001:696400](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDITLHFCQGNLRSKKFYDAKYDGLVDTIFQLPFSGFFMEFDDEKYCNFSLLEKRQGQKIVLGLVNTQSDELEDKEVLLKRLEEANKHVDPKQICIATQCGFASTEAGNLISEEGQWRKLDLVHELAESLNA"]}}, {"location": "[696672:697926](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.39"], "codon_start": ["1"], "db_xref": ["COG:COG1167"], "gene": ["lysN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q72LL6"], "locus_tag": ["MAAAAKME_07540"], "product": ["2-aminoadipate transaminase"], "transl_table": ["11"], "translation": ["MLSKLFAKRIKTQNPSRLQGLFPESNFSDNISFGGGCPDESLFPSQALQAAYQKAVDQEQAHSFQYHDVKGPGTLRDYLASRARQQGIKANADDILLTAGGQQGLDLVAKLFLGAGDEMAVEAPSYVGALSAFDNYEPVYHEIPLEDDGVNLDYFEEVLKEHPAIKLFYTVPDFHNPTGITISLAKRQRLVDLANRYDFVILEDTPYRDLRYHGESLPSIKSFDTEGRVIFLSSFSKILSPAFRLGWLVASPEIKEQLVNLKLSADLEVPYLAAGTVAAYLADNDLDQHIDQLKQVYRVKLDAMAKALKTYLPADAKISQPEGGFFFWVELDDEIDTRQLLLNEAVPKEHLIYVPSASFYPNWDKNNGLRVNFTGSSLSQIDEGAERLGRILSPAQTASGSTSPALASARSMKELSA"]}}, {"location": "[698065:698980](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hdfR_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01233"], "locus_tag": ["MAAAAKME_07550"], "product": ["HTH-type transcriptional regulator HdfR"], "transl_table": ["11"], "translation": ["MLPFPYLVFQTVIDQGTFNKAAAVLNVTPSAISHSVNQLETELGFPVFVRSRNGVRLTPDGEKILPLIQEIINDQSRLEQVAQQIQGLDTGLIRIGAFSSVCINWLPPLIRNFAKNYPQVKISVRQAGFSEITQAVKSGQLDLGLTMLPENEQGISCEKILEDEIYCIAPKDFQVKNGHSISEEDLVNCNFILQQSDYDLDTKAALDHYSIKSTAISFSIDDQSIVAMVEAGLGLGILPALALQKMQGEVRILPFSTPFYRKIALVTSNQQRLAPSSRQMIKNVHELIRRQYPGGRLTMEAESA"]}}, {"location": "[699214:700912](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.19"], "codon_start": ["1"], "db_xref": ["COG:COG0018"], "gene": ["argS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q54869"], "locus_tag": ["MAAAAKME_07560"], "product": ["Arginine--tRNA ligase"], "transl_table": ["11"], "translation": ["MNGKQLVAEALQAVLPDWSLDDIDVKIERPKDEKLGDYAFPTFTLAKTMRKAPNLIAAELAEKIDQGSFEKVEAVGPYINFFLDKSQTGAAILQEILADPENYGARDLGHGRNVLTEYSSPNIAKPMGMGHLRSTMIGEAIARILAKEGFKPIRIDYLGDWGTQFGKMMAAYKMWGNDADIEKDPINTLLSYYVRINREAEEHPEYDEDGREWFSKLEHGDEEAKRLWSWFREVSLERFKKVYDMLDVHFDSFTGEAFSAQMMDKPIQILREKGLLVKSQGAEIVDLEKYNLPPLMVIKSNGTSTYITRDLATAMYRKKTYGFYKSIYVVGQEQEVYFQQLRACLKEMGFDWADDIVHISFGLMSINGQKMSTRKGNVVNLEDVLNESVDLARKQISEKNVGLKNADEVAKQVGIGAVVFHDLKNYRRNPIDFNLEEVVKFEGETGPYVQYARARGESLLRKSGITDFSDADLTKIGAEEWDLVSFMARYADTIQKAMETYDPSAIAKYALELAKRFNKYYAHTRILVDDVDEDVKKARLAVVQAVSHVIKSALDLLDVKAPDEM"]}}, {"location": "[701131:701605](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1438"], "gene": ["argR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9K973"], "locus_tag": ["MAAAAKME_07570"], "product": ["Arginine repressor"], "transl_table": ["11"], "translation": ["MNYKERRQLIYELIQTNKIETQEQLLLLLQAHGANATQATISRDIRALHISKVPDDDGRSYYVKAPSAAVNRERQLKDAIRERVATVTAVQFTVVIQTSMKLTYAPILAGLIDDIDNDDVVGTIAGTDTLLVILKDAEAAASFADWAQAIVKERKIY"]}}, {"location": "[701616:702816](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0452"], "gene": ["coaBC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WNZ1"], "locus_tag": ["MAAAAKME_07580"], "product": ["Coenzyme A biosynthesis bifunctional protein CoaBC"], "transl_table": ["11"], "translation": ["MARISVYMTGGIAAYKAVSVVRGLQKAGHEVRVAMTAKSERFVGPATLAALTKWPVLDDLFSPGRQAEIAHIDLADWSQLALVVPADANILAKLAQGIGDDAVSTTLLALHCPRLIVPSMNSHMWENPAVQRNLRLLKEGGDWIMEPAVGRLAEGYAGKGRMPEAEEILAWVNDQLDLPAKGKRIVVTAGGNLEAIDPVRFIGNRSSGKMGFRLAEAAAKRGAEVDLIYGNVSVPLPRDARIHLHPALSAQAMLEKLEELFPAADALLMAAAVSDWRPKEAADHKLKKQDGVEEMTLQLVKNPDLLKTMAQKKRPDQVVIGFAAETNDLLANASRKLAEKGADLIVANDVSGDAFGGDEDQVTILEQGKELDPWPWMSKQAVADRLLEMTLARLAEKKN"]}}, {"location": "[702845:703919](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDLLFFSEAFAEMNRFHYNKGKSFAKKIGRRIMKKIDAHLHLVRDLASYKGNGRSNALGNGLVVWDSGFKTRLFPAGWGDDAFRADAARKVMEDHDVAKAVLLQGSLYGFQNYYSWQVAKAAPDRFAPAFSIDPFASEAEKIVKRHVEDLGFRALKLEVSQAGGLMDYHLPFDLAEDDRLGKILDYLSSYPGFAVAVDYGDSSQASHQPRSLARLAKRYPDLDFVLYHLSFPKPGKLDLLEKELALFAPLPNISFDLAALQDIAGEQTYPYPFCQEAVGLAKEIVGAKRLLWGIDAPWSATFNDYGQLYSWLEDAGIFSEAELADVYYGNAERIYFKADHVAALKASRDPLFEGDA"]}}, {"location": "[703920:704871](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.81"], "codon_start": ["1"], "gene": ["ghrB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01667"], "locus_tag": ["MAAAAKME_07600"], "product": ["Glyoxylate/hydroxypyruvate reductase B"], "transl_table": ["11"], "translation": ["MENAKVLVAGLAVRQLPELEKVCEVTFAPAGAGKDWYLANLGDFDALITGKLPVDQELLDAGKKLKIVSATGVGYDHIDVDYASSQGIIVSNCPASVMQPTAEMAFTLLLALSRKLALYNQEMRQENFLDTGLLENQGQSPVGKTLGIFGMGRIGKTLASYARTFGMNILYHNRHQLPEDEERALGVSYVPLADLLSQADYVSLNAPATAETYHVIDEAALSMMQPTAFLINTSRGSQVDEAALLRALKGKRIAGAGLDVFEEEPDFNKEFCQLDNVILTPHAGSATRESRRSVLKEASHNIVSFLVDGVPVNRVN"]}}, {"location": "[704945:706715](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG0514"], "gene": ["recQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15043"], "locus_tag": ["MAAAAKME_07610"], "product": ["ATP-dependent DNA helicase RecQ"], "transl_table": ["11"], "translation": ["MLDPQQVLKKYFGYDSFRPGQREIIEKVFQGKNVLAVMPTGGGKSLCYQIPALMIPGATVVISPLISLMKDQVDSMREYGIPAAALNSSTAQEDVNPILRACYEGKIKLLYVTPERMEMDYFRYQLNFLEVNLVAIDEAHCISQWGHDFRPAYRKLKDGINALHTHPNVLALTATATKAVREDIGQQLDISEENFVITSFERKNLHFKLVNAPKNSRAYIVNYLKQHRGEAGIIYSNTRKKVEGLTEFLRREGFNVAAYHAGMSNEERAQVQDDFQYDRIPLIVATNAFGMGIDKSNVRFVLHANSAKNLEAYYQEAGRAGRDGLESEAVMLFHPSDLRQFRWFIDNSEADESYRQVQYQKLQTISDYANTDECLQQFIVRYFGQDCPPCGKCSNCLNSGDFQDVTAEAQAIIGMVYDLDGRYGKRIVAQAVTGSKVKKISEIGADECVHYGLLKGKKQADVSSLVDYLVSKGYLQLVGDCYPLVHVTNRGWDVLDGKARVKRRQEVKREQLAETGGDQVLFEELRKARRILAQKRGVPPFVIFSDLSLRDMAARKPQTPEELLQCSGVGDAKLANYGKAMLAVIKKYG"]}}, {"location": "[706771:707710](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.-.-"], "codon_start": ["1"], "gene": ["rihA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01431"], "locus_tag": ["MAAAAKME_07620"], "product": ["Pyrimidine-specific ribonucleoside hydrolase RihA"], "transl_table": ["11"], "translation": ["MKNFYLNHDSNMDDFTSLLLMLLVPDIKLIGVGVTDADGYVEPGVSASRKLIDRFNQRGDKLEVAKSDSRAVHQFPEAWRVSAFSVDHFPILNEKGTVETPVAAKPAHLDMIDKIHAADGPVTLVFTGPLTDLARALEIDPSIQDKIEELYWMGGSLNAHGNVYAPCADGTQEWNAWWDPEACKTVWDSKIKIQQVGLESTEELPLTDEMRQHFASNRKYPAFEFLGYVYALVNSFEVDSTYYLWDVLTTMSALYPEIATTRDTKSDVYTDGDRAARFFETENGRPMTLVTSANYDKFWERFDDLCEKAKLF"]}}, {"location": "[707983:709786](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0322"], "gene": ["uvrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5KWH6"], "locus_tag": ["MAAAAKME_07630"], "product": ["UvrABC system protein C"], "transl_table": ["11"], "translation": ["MASQLIENKLKLLPEKAGCYLMKDVNGKVIYVGKSKNLKNRVRSYFKSSQEGRRAELVKNIADYDIIVVDSDKEAFLLEVTLIKKYQPYYNVALKSGTGYPYIEITNEKNPQTRLTSIVYKDKGYYFGPYPNVYAASATLKFIQKVFPLRRCSGYTGRPCLYYHMGQCLGSCFKEVPQSEYDEQIKKIKRFLNGDIQEVKKDLTNKMLQASADLEFERAGELRDQLKYIEETVEKQKIISNDHTQRDIFNYYVDRSWISIQVFFLRQAKLLRRESHMFPLTDETDPEDEFMSFIAQFYAQKNRVNPREVLVPKGIDQDELAAAIGIKVRTPQRGQKASLMEMARENAQLKLDDKFRLLELGQRKTKGAQEEIFKALGLPYGSYIESFDHSHIQGADPVSALVVFKDGEPFKTGYRKFKLKGEVEHQNSADEVGNTREVVRRRYSRLLKEHERMPDLILMDGGQIQVEACEDVLRNELNLDIPVAGMVKDDKHRTNHLLYGDPFKGQPFKLIPMDPKSEGFYLMTRIQDEVHRFAITFHRQTHAKNSLVSRLDSIKGIGPKSRTKLLREFGSLKKIKEASIDDLRKAGLTLTQAQAVKISL"]}}, {"location": "[709923:711177](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.5.-"], "codon_start": ["1"], "gene": ["obg"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A584"], "locus_tag": ["MAAAAKME_07640"], "product": ["GTPase Obg"], "transl_table": ["11"], "translation": ["MVAFRHEKFMPNGGPAGGDGGRGGSIIFVADNGLRTLMDFRYRRKFKAEPGENGRIKAQYGKAAKDLYLKVPVGTTVYDFFTGEEIGDLVENGQELVVAKGGRGGRGNIHFATSVNTAPEIAENGEPGEFRTLRLELKVLADVGLVGFPSVGKSTLLSVVTSAKPKIAAYQFTTLKPNLGMVLLPDGRDFSMADLPGLIKGASQGVGLGIQFLRHVERTKVILHMVSMDPNNGRDAYEDYETILHELASYTEDDLSSKREIIVASQMDIPGADEKLAQFKKDLAAHGVDQEVYELSSVTHQGVDRLMSRAADLVSEVEAQEAEAAVKPKEEVKTKTYKYHRPEKMEFTVEKLADHEFEIHGEQLERLVAMTNLDHQDGIMRLARRLKRMGVDDELRAQGAVDGDDVYIGDFSFEFVQ"]}}, {"location": "[711228:712842](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "gene": ["oatA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A3D6"], "locus_tag": ["MAAAAKME_07650"], "product": ["O-acetyltransferase OatA"], "transl_table": ["11"], "translation": ["MKKRYITGYAGLRALAVIGVILYHLDPDHFGGGYLGVPVFLVLTGYLVTDQIMAAYRNQGYFDIKSFYQRRFKRLYPPLIAMLWLTSAYIVLFQRNLLNKLYQIVASNLLGVYNWWQIFNGQSYFERFDNNESPFTHLWTMAIDWQFYLLWPLVMVLLVKFAKKRRNIFWVLVGLSVLSALEMALLFRPGQDTSRIYYGTDTRFFSLGLGSAMAVRWPFEELDNRFTQKDGVIFNWTGLATLFGMLLIIFSPLMNAQTAFPYYGGMFIFSFFVTVFAAVIAAPVGIWNRLMTNPVFNWLGSRSYEIYLYQFPVMIFFESRVSDLADHVTLYRVTEIVLILLISEITYRLFEKRRYTSEGIRYSLTKLFHWPVKLSKNWLKTAAFFLVFLIGSSGIIFSPLAKADNKDGALIKTINDNSKQQAEMNKKALESIKSSRKAAKKSSSKKSKQTSKAKTKSKTTKSKSGGKKVNQEFEKYGISQADLQAAQKLQVTAIGDSVMASSSDILHQLLPHAVIDATVSRQADVAPPAAAVLCPKR"]}}, {"location": "[712858:713173](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "gene": ["oatA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A3D6"], "locus_tag": ["MAAAAKME_07660"], "product": ["O-acetyltransferase OatA"], "transl_table": ["11"], "translation": ["MIGLGTNGPFTDDEVKQIMQIVGPKRQLFWINVVVPTRSWQNQVNQQLQALTKKYKNLTVIDWYGYAHSQSSWFYDDKAHPNNVGQNYYSTYIVKEMVRTSGSN"]}}, {"location": "[713209:714139](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.11"], "codon_start": ["1"], "db_xref": ["COG:COG1234"], "gene": ["rnz"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54548"], "locus_tag": ["MAAAAKME_07670"], "product": ["Ribonuclease Z"], "transl_table": ["11"], "translation": ["MELEFLGTCSGQPSKLRNVSSLALKLLDELNEIWLFDCGEATQHQILRTNIRLRKITKIFISHNHGDHIFGLPGLLSTRSFQGDVGPLTIYGPAGIEQFVKTSLRISKTKISYPIKFVTLEEGGKIVSERGFEVYTEKLDHRIDSWGFRMVEADKAGELLMDKLAEFKVPNGPLLGKLKRGEQVELADGTVLNGKDFLGPAKKGRVVTVIYDTRSTPSIRRLADHADVLVHEATFDASEGKLARDYYHSTCTQAAETASACHVGHLYLTHVSARYVGSLASQMVKQAREIFPATTLAKDLDKFVVPMKG"]}}, {"location": "[714149:714944](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.87"], "codon_start": ["1"], "gene": ["hcaB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01647"], "locus_tag": ["MAAAAKME_07680"], "product": ["3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase"], "transl_table": ["11"], "translation": ["MSDSLRNKVVVITGASSGIGRSIALESASRGATVVLLARRLDKLEEIAAEARELSASAAFAVKADLSLASDIEAAFAEVKEKVKRIDYLVNAAGFGKFEEFMEADMQDATEMFQVDVLGLMYMTRLFGRLMLDQGSGQIINFGSMAGKVPTTKSAAYSAAKAAVIQFSNVLRLELKPFGVKVMTVNPGPVYTNFFNIADASGQYVKNVQAFMLDPDDVAWEVVHYFGSNKRELNLPVSLAALAKLYNLFPGIGDKLSLEFASRK"]}}, {"location": "[715058:715250](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0333"], "gene": ["rpmF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RHH0"], "locus_tag": ["MAAAAKME_07690"], "product": ["50S ribosomal protein L32"], "transl_table": ["11"], "translation": ["MAVPARHTSKQKKRSRRAHLKLSVPAMHYDATTGEYRLSHRVSPKGYYKGRQVVSENSASDND"]}}, {"location": "[715318:716884](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.6"], "codon_start": ["1"], "db_xref": ["COG:COG0737"], "gene": ["cpdB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P08331"], "locus_tag": ["MAAAAKME_07700"], "product": ["2',3'-cyclic-nucleotide 2'-phosphodiesterase/3'-nucleotidase"], "transl_table": ["11"], "translation": ["MKLVFLHSSDTHGYLLPTDYQSTGDYDAPYGLSRVASAIKVEKAKWGADHVIVTDAGDCLQGSPLAAYTHGSKNLDNLARFTAAYNAVGYDVRCLGNHDFNFGQEYMAYYVDNNKAPFVNCNILDAETQVPTLGRDYVILERSGVKVGVLGITTQYIPHWEAADRIKGLAFKSAYEQIAHFAKIIKPQVDVLAVLYHGGFESDIASGEATEPHNGENEGYRILTEISEVDVMLTGHQHRRLNMISPSGKPCVQPGYRGEAIAEVVLDLEKTEAGYKVKEATSELIDTKDFASDPEVEEIVKPLDLATQKWLDQPIAHLDQPAQIEDANKGRIEGAPFINLLQQMQLYFTHADLSATAVMNDVAKGFGKTVTMRDILLNYPYANQLVSIKLTGKQLRHIVEHTASFLEKDENGKIHFIDRYLKPKPELYHFDVFYPLEYEADLSKPVGQRLTKLKLKGQDIQDDQVYHLAVNNYRANGGGFYPEYSLDKIEFSLDKDYVQMFSEYLTQGEVKVDTKKYYRFY"]}}, {"location": "[716969:718886](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "gene": ["rapA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01821"], "locus_tag": ["MAAAAKME_07710"], "product": ["RNA polymerase-associated protein RapA"], "transl_table": ["11"], "translation": ["MPGENVRVQGKVVKSHLTSFVSAEELRQVQAAEELAGLPVHQKPYAFVTLKDWELVAGHLEKNLPGAIVSFEAAEGVLPWLAKEEGGRLKQIFGQEVPAGKVVTLTLSQAGRNGNWQLQLDGVIMAAQKPNDAKANKAAEVKGVKEAKKAKKAKEVKEKTESFAGKMVDAQVKLGGQTLPLHDYQLYSMNFIMDHPYCGIFLDIGLGKTLTTLAALAKLREEGMKGHILVIAPKTVAKSTWQDEIDKWNLPFKTQSFLTDEKGRQLTPAGRQELYEAAAAKAAKGDWQLYFASRDLVSKLVDLGPWLFKNVVIDESQSFKSPASQRFKALKSVRGRIQRLIELTGTPAPNSFQDLWSQIYLLDQGERLGRSITAYRQQYFEPTLLVNNHPVKWRLLPGSEEKIYQAIDDIVISMKNTRLKLPELTESLDWVEMPPRAKKSYQQLKKDQVLDLPGQEISAENAAVLAGRLRQLASGAIYEEDGEHYQEIFAEKIESCFYLTSNTATPSLVAYYFKSDASRLLAFYRKNGVKAELFDSSPGMIRRWNKGKIPVMLVQPASAGAGLNLQEGGHTLIWFTLPWSLEQYQQMNGRLYRQGQKKPVIIHHLLTKGTIDRHVLDSLKKKDLSQQALLAAVRRTLA"]}}, {"location": "[718882:719104](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFTCDSLFAMNLQRYLSAGRALAGRAALLDTMGDLIAGLAGSLLFSCWSYWRLKNDRSWLKTFFFKKYSPDD"]}}, {"location": "[719305:719485](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKQSLALKFSFVFVVLSMAISLLTAARQLAQGKSGSLLLVLETGAGLLLVLLPALLSK"]}}, {"location": "[719632:720196](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39157"], "locus_tag": ["MAAAAKME_07740"], "note": ["UPF0340 protein YwlG"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLAEIQKQAKQAVSEIVEASGIKAGQFFVVGCSSSEVLGEAIGTNTSTDVAEALYQGINEVLAEKRIFLAAQCCEHLNRALVVSREAMEKYDLEQVNAIPQPNHAGGAFATVAYQKMPNAVLVEDIAARGEAGIDIGGTLIGMHLHPVVVPLRISLDKIGEARIICARRRPKYVGGQRAIYDQALM"]}}, {"location": "[720297:720534](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLEQEGFVYKESGLGTKVLSNLTLLGQHDSPVNSFAGLSAENGSDRVSSKIIKLEVAFPSADLCEKMTRFMRSSACAF"]}}, {"location": "[720485:720812](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2188"], "gene": ["gmuR_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05509"], "locus_tag": ["MAAAAKME_07760"], "product": ["HTH-type transcriptional regulator GmuR"], "transl_table": ["11"], "translation": ["MRENDPVYEIIRLRLLNDEPLVIEHTYMPVSQVPALSKRILEGSIYSYLHKKLHIKFGGVFRRIKADLPDKYDRQYLGANESTPILEIEQIVWTNSGVNLEYSRSRNL"]}}, {"location": "[720926:721310](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.11"], "codon_start": ["1"], "gene": ["proB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00456"], "locus_tag": ["MAAAAKME_07770"], "product": ["Glutamate 5-kinase"], "transl_table": ["11"], "translation": ["MNVLLSRRVIPIINENDTIAIDELKVGDNDTLSAQVASLLKADLLVLLTDVPGLYSDNPRKNPDARPIPVINEITPQIFAMAGGMATKIKATDMATKSGVVELEKNGFRYAAISAVNAALKRNQELG"]}}, {"location": "[721998:723222](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_07780"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTILALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[723440:723641](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGRYIVCIVWGMIFTFIIGFIGAPLTQSTYNPVTLLIIGAVFGLLFSLTIPKITAKSYNDDSAYNK"]}}, {"location": "[723760:727255](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG0587"], "gene": ["dnaE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P10443"], "locus_tag": ["MAAAAKME_07800"], "product": ["DNA polymerase III subunit alpha"], "transl_table": ["11"], "translation": ["MNIAALQTISANTILASPMKTADLVQGAKERGYSAVALTDINVTFGLADFYQEAVKAGIKPLLGLQGRFKGIELEEAEYDLVFLAQSQKGYKSLMRLSSFLNIASGDLAGPAPSLADLPELSDLTVIVPAGLTSELRQLNKLRNSGEEYVKKLQAFLPKGLPLYLGVYPAESAAAYDAYVKKLAEISALPITVVEDVRYLDPGDQFLCKVLQAIKERRVLDEHELTLMAQGQGSHWLRPAPVLEDACREMGLEEALANSGKIAASCQAKIPFKEPQLPVFPQATGLSSDQYLEKLAFAGMEKLGLRQGIYHARLQKELAVIQQMGFADYFLIVGDIVNYCRQKGALVGPGRGSAAGSLVAYALGITQIDPLKYDLLFERFLNPARADMPDIDLDFTTSGRKLAFAYVQEKYGVKARFGEGSDLVARILALTTMKAKSVLERTGQVFGLTLPAIARLKQAMGAAKTLAEAGQQAEFKALVAASPLTRLLYQTAARLEGLPEDTGTHAPGLVISEEPLSRQIGLMTGKEAPLWTVEQTKKYVEKYGLLKIDFLTLDNLELLEGVLAEIQKSSGPLDLTRLPLDDPDTLRLFARGETQQIFQFNSSGMQEVLRKIQPRTFDDLSVAVALYRPGPIASIPLYVARKNGTSPVQYPDPSLKEVLGPTYGIFVYQEQVMQTARIFAGFSLAEADIFRNAISKKQAGLLAEEKDKFVAGAVRKGHSRQAAEAVYALIEPFANYGFNHSHAVAYALLAYWQAFLSVHFPREFYLEKLRASRGKEKGAIIRQARKAGVEILGPDINLSRAEARLFEGRIYLGLKDIMGITPAFLDQLLALKRPVTSFTAFLRQLDTKELKEKQLVPLIEAGLFDQVSPNRASLLVNCGNMLNTARLSQKSLVLQDFLAAKEENVPMPTAAEKVAMEERAMGFAVTASPLEIAGKALAKRYGAKPFAGLALNETGQVLAQFIKKNDWRVKRGARAGELGSNAVFSDGQTSEKVTIFTSQYRRFAQILKENAVYLLQVDKKEDQKDSRGYQLILQDLRLLDLKQLEQAEEVKPVTVKPKDLALERYFDQYYRTKRLGDFQVKERGQALAKLLAVRYQEDKRGRKMATLILADSSGRYRCWLFAGELAKLTLNLQVNDYYLLKLEALGQRKSLDFKIWDMKQVNLR"]}}, {"location": "[727462:728422](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0205"], "gene": ["pfkA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80019"], "locus_tag": ["MAAAAKME_07810"], "product": ["ATP-dependent 6-phosphofructokinase"], "transl_table": ["11"], "translation": ["MKRIGILTSGGDAPGMNAAVRAVTRVAIANGLEVFGIRYGFAGLVAGDIFPLESEDVAHLINVSGTFLYSARYPEFAEEEGQLAGIEQLKKHGIDAVVVIGGDGSYHGALQLTRHGFNSIGLPGTIDNDIPYTDATIGYDTACMTAMDAIDKIRDTASSHHRVFIVNVMGRNCGDIAMRVGVACGADAIVIPERPYDVEEIANRLKQAQESGKDHGLVVVAEGVMTADQFMAELKKYGDFDVRANVLGHMQRGGTPTVSDRVLASKLGSEAVHLLLEGKGGLAVGIENGKVTSHDILDLFDESHRGDYDLLKLNADLSR"]}}, {"location": "[728461:730231](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.40"], "codon_start": ["1"], "db_xref": ["COG:COG0469"], "gene": ["pyk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P34038"], "locus_tag": ["MAAAAKME_07820"], "product": ["Pyruvate kinase"], "transl_table": ["11"], "translation": ["MKKTKIVSTLGPASDDIETITKLAEAGANVFRFNFSHGNHEEHLARMNMVREVEKKTGKLLGIALDTKGAEIRTTDQEGGKFTINTGDEIRVSMDATKAGNKDMIHVTYPGLFDDTHVGGTVLIDDGAVGLTIKAKDEEKRELVCEAQNTGVIGSKKGVNAPGVEIRLPGITEKDTDDIRFGLKHGINFIFASFVRKAQDVLDIRALCEEANASYVKIFPKIESQEGIDNIDEILQVSDGLMVARGDMGVEIPFINVPFVQKTLIKKCNALGKPVITATQMLDSMQENPRPTRAEVTDVANAVLDGTDATMLSGESANGLYPVQSVQAMHDIDVRTEKELDTRNTLALQRFEEYKGSNVTEAIGESVVRTAQELGVKTIIAATSSGYTARMISKYRPDATIVALTFDEKIQHSLGIVWGVEPVLAKKPSNTDEMFEEAARVAKEHGFVKDGDLVIIVAGVPFGQSGTTNLMKLQIIGNQLAQGLGVGTGSVIGKAVVANSAEEANAKVHEGDILVAKTTDKDYMPAIKKASGMIVEASGLTSHAAVVGVSLGIPVVVGVADATSKIADGSTLTVDARRGAIYQGEVSNL"]}}, {"location": "[730516:730774](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRSKMQELILQVCKEEGITTVLVTHDVREATIMANKIWVIKNQGIAAEMINDFRDQDDDQAQLAKDKIVHDTLQIILGEDDLAA"]}}, {"location": "[730844:730958](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQDLDIKLVKDQSAGRCKRGYRENQLLFCKSHLVNGS"]}}, {"location": "[731045:731597](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKKKHLYEVDLMRCFFMFGVVLNHVTSTFAAALGNKATPAGRFLVSTHLILHFPRFGFMFITVLVLFLGYWGRPEKQNWPVFWKKRYIGSGISYLFWNGLFLAFLLLTSGSFSWNKWLTGWLEAISKGNQFYFYYIFLMFQLYLIFPLVLKLFELFKKHLNLLLALSSIGYLGQVLLSGRQP"]}}, {"location": "[731786:732665](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cvfB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5Q1"], "locus_tag": ["MAAAAKME_07860"], "product": ["Conserved virulence factor B"], "transl_table": ["11"], "translation": ["MLGEIRTGKITDSNAEAYFVQIDGLTFKLKKEEITQEETPEIGGQITGFIYDNQKHEREMTQFLPFAQADQYGWATVTRVQRGLGVFLDIGLPDKDIVMSLDDLPLDPARWPQKDDRLLVRLETDEKDRIWAKAADENVFDQIAVRFPNNLVNKNLLARVYSSKSLGCFVLTNDYYLGFIHESQMQQPLRLGEEVKARVIGVSQYGRLNMSVLPRSFEEIDDDAAMIMMSLRRKGDKTLPFSDKSEAQAIKDYFGISKSAFKRALGNLIKRGLVSQDKEAGTIKLIKDEADE"]}}, {"location": "[732657:733554](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0P0"], "locus_tag": ["MAAAAKME_07870"], "product": ["Tyrosine recombinase XerD"], "transl_table": ["11"], "translation": ["MNKLAEQINDYLRYSQIERGLSPNTIAAYQQDLLEFLAFVKEEQMPAWPLEAVEIDAFLAKERDLGKANSSISRLVSTLSRFYQWLVRQQLIALDPMSQIDAPKREKRMPLALTEAEVGKLLEQPDLTTDLGIRDRALLELLYATGMRVSEAVNLQLADVHANLQLIKVLGKGSKERLIPVSALALDWIKRYLPVRDQQLLKRGKSSDYLFLNSRGGQLTRQAVWQKIKKYCQQAGIAKDVTPHTLRHSFATHLLEHGADLRVVQEILGHTDISTTQIYTNLTQKHILDVYQKTHPRI"]}}, {"location": "[733564:733918](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLVPYKKDYEKVAMGLLSYLPDFKNLQNLKEEMQLYAEDPANHLYLYRDEDQNIVGLAGCETGAGCLVLRYLSLAPGFRDDEHFSEIMRELAQEAGKQKVMTVPEYTYLMKYLNNDE"]}}, {"location": "[733907:734642](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1354"], "gene": ["scpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P35154"], "locus_tag": ["MAAAAKME_07890"], "product": ["Segregation and condensation protein A"], "transl_table": ["11"], "translation": ["MMNEGMTIELPNFEGPLDLLLHLIRLQELDIYDIPIARITQQYLDYLQQMQRLNLQLVGEYFVMAATLLRIKSQYLLPKNDFVETEEEFADPREELVEQLVQYSVFKKISAYFKVRNDEVPVLAAKEPSVAVGAKVQPLPLGQISQQDLTASFILAMRRFKKRNDHAQVTLTGRPIQEMIAWLKEVLEQQGRVSFFALTDQVESLADLVGLFLAILELAKDQYLKVRQKRRFGDLEIERSKHDE"]}}, {"location": "[734631:735234](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["scpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C1CMI5"], "locus_tag": ["MAAAAKME_07900"], "product": ["Segregation and condensation protein B"], "transl_table": ["11"], "translation": ["MTSKIAQLQALLYVAGDGGIKKEQLRDLLQLADPEIESLAKRLQEKLASDLDCGLQLLEINDEYKLTTSGEVSDLVEAYFNKDLTKNISQSALEILAIVAYRQPITRIEIDEIRGVNSSGALQTLVWRGLVKAQGVKDAPGHPKLYVTTDYFLQYFGYKSLADLPVIENFEDSSFDADGQVDLFAENGTADEAFHKMEDL"]}}, {"location": "[735233:735953](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.22"], "codon_start": ["1"], "db_xref": ["COG:COG1187"], "gene": ["rluB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P35159"], "locus_tag": ["MAAAAKME_07910"], "product": ["Ribosomal large subunit pseudouridine synthase B"], "transl_table": ["11"], "translation": ["MAEERLQKVIAQAGIASRREAEKMILAGRVRVDGQVVTKLGTKVSSIEQVVVDNQPIERESHHTYLFYKPRGVISAVKDNKGRKTVADYFTDLPYRLYPVGRLDYDTSGLLLMTNDGELANLLMHPRNEVDKVYVAKIKGILQPDEIKALKKGVQIGRYKTKPAQVKVLKTNPRAQTQIVQLTIHEGHYHQVKEMFKAVNHLVDKLSRERYSFLDLQGLTSGQYRELNHKEVDRLKQVD"]}}, {"location": "[736177:736882](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3601"], "gene": ["fmnP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50726"], "locus_tag": ["MAAAAKME_07920"], "product": ["Riboflavin transporter FmnP"], "transl_table": ["11"], "translation": ["MEAANKRTAKSVSNWLAYAMIGAIAFVVMKFEFPIMPGVSFLKMDFSDVIVVITTFIFGIGGGVAVAAIKCLLSLIFAAFALPSLVGELAAFLASMAFALPFYFLAGSVKEEDRKSMKGYLLPALGLLLDVLSLTVVMALTNQFLLTPVYAYTSVPQAAGMHMSYAQLLTFTEQSYLGKMLHIPSMSSYIMGIIVPFNLIKGAINSVVVYILFESVLKTIKPFVIKHFSVSSKY"]}}, {"location": "[736991:737387](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDQNAQKPLSRLARQQAVREERKNKQAPWWAALLIAVMMALAVVPLITSQNSDYAVPQAKKEQAKPKSAAEKTSKAKPAPKVKTYVVKSGDSWAAIAQKYGISAEELAEQNGLDTSSTLAVGQKLKIKQVK"]}}, {"location": "[737485:738118](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.25"], "codon_start": ["1"], "gene": ["cmk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCU3"], "locus_tag": ["MAAAAKME_07940"], "product": ["Cytidylate kinase"], "transl_table": ["11"], "translation": ["MAKIVANKLSFVYIDTGAMYRACTFIARKHGLDYGDESGILKAIDEDGIVLEPGENGQKVLVAGEDVSLEIRTPEITANVSQVSALPGVRSKMVDLQRKLAGSTNVIMDGRDIGTTVLPEAEVKIFLVASARSRAERRLLDWQEKGIEAKQTLEEIEADIAKRDYLDSHREVSPLKKAADAIEIDSTNLMIDQVVAAILAEIAKKTNTSK"]}}, {"location": "[738205:739411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0539"], "gene": ["rps1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50889"], "locus_tag": ["MAAAAKME_07950"], "product": ["30S ribosomal protein S1"], "transl_table": ["11"], "translation": ["MSENNQFLDALAQMKEVKEGDIVDVNVLSVEDGQINVGVQGAGVEGVITRRDFTNDRSVNLRDEVKLGDTFKVYVVRRAGGDKENGDFFFSVTRVKEREAYDKLQKDFEEGKTIEGKVTSSVRGGLLVDVGTRGFLPASLISNRFVSDLKPYIGKTIKVKITEIDPAKNRLILSHKELIEEEREQAFENVASQLVVGDVVEGRVSRLTDFGSFVDIGGVDGLVHISEISYKHVDKPSDVLKVGQDVKVKVIGIDNDRHRISLSIKQTEPSPFEQATSSLNEGDVIEGEVKSLTNFGAFVEVADGIQGLVHVSEIAYKHVDKPSDVLKVGQDVKVKVLNIDPSKRRISLSIKQVDPENASSSNDRPRARRSSNNNAFARKYMNNDDNGFSLGDMIGDQLKNS"]}}, {"location": "[739487:740795](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1160"], "gene": ["der"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50743"], "locus_tag": ["MAAAAKME_07960"], "product": ["GTPase Der"], "transl_table": ["11"], "translation": ["MPLPIVAIVGQPNVGKSTLFNRIINERVAIVEDRPGVTRDRNYARASWMGHQFSIIDTGGITWEDSTIDEEIRAQAEIAIEEADVIVMLADASQGVTSLDERIAHLLYRADKPVLLAVNKADNPEQRTDIYDFYSLGLGDPIPVSGSHGTGIGDLLDEVVKNFSPDAEKTEEGVISFSVIGRPNVGKSSIVNRLLGEERVIVANEEGTTRDAIDTPFVKDGTKFRVVDTAGIRRRGKVYEKTEKYSVMRAMSAMERSDVAILVLDASTGIREQDKHVAGYAHEAGLGMIIAVNKWDLPKKDSSSGKDFEAVIREEFSYLDYAPIVFVSAKTGKNIDQLPKMVKEVYENKNQRIQSSVLNDLLLEASRLVPAPMVKGKRLRVYYMTQVKTNPPTFVVFCNDPELMHFSYQRFLINQLRENFDFTGTPIKILPRKRK"]}}, {"location": "[740998:741274](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hup_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5J1"], "locus_tag": ["MAAAAKME_07970"], "product": ["DNA-binding protein HU"], "transl_table": ["11"], "translation": ["MANKAELVSEVAAKTKLTKKDVSEAVDAVFEAIQEDLAKGEKVQLIGFGTFEVRDRAARKGRNPQTGAEIEIPASKVPAFKPGKALKDAVK"]}}, {"location": "[741389:742643](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "gene": ["bepA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00997"], "locus_tag": ["MAAAAKME_07980"], "product": ["Beta-barrel assembly-enhancing protease"], "transl_table": ["11"], "translation": ["MTYSEQLLDAIQGHRFSESRALLKQALENDDPEILASLAENLTDLGFTDLAKEVYRSLIADFPNEDLFKVYLAEILLNDGAEDDGLTLLYNVPADSDAYLESLLVQADYYQSEGLIETARAKMEQARQLAPDEDAITFGLAELDYMSDLNDQALTLYQDLRQRQTMFGEVNLNQRVFQTLAKLGRYEEAAAFINDHKEDLLDIDAKYQAGVIMEEAGQFDKAISFLDDVIKQSPDYVNAYTFLAKAYQEEDNPEEALFAAQTGLGYNELDEELYLIGAKAAAKLGKAEDAEDLLQRGLEVNPDNSSLRLLLSDLYLAQGRAEDSLALFTALADSDLEPQAHWNMARSYQEMEKYDQALQEYLLAYQSLQTSPAFLRGMISFAQESAQGDLDRQLLEKYLKLVPDDQEMQDLYEQLRN"]}}, {"location": "[742770:745626](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQFSFNKKRDRAVYWKYSVFFLFLAACVFGPYLVTGHSLIWNTDAANQHLPLLVKYREYVLSFLRHLSQGPAEWSWTMGLGSDLFSVFSYYTIGDVFAYLALLFPTSHLVFAYQLILLLRLYCVGLAFVYFARHFDFKDSVVLIGIGVYMVNAYLLYAALAQPMFTTTFILFPLIVVQLERLLQGGSAWPLFGVFVWMLVSNYYLAFVLGLGAIIYLFLRWGLAYWKKIPFWPTIKKLFFASLGAVLLSAGLLLPELLAVVNSTRTGSQFANGLTFYPAYYYLLLPKELIDGDNWKLMFWSALGLASIILPALVYLFRNWRKYRLVAASLLLGAVMLLIPAVGAVFNGGMSASNRWTLLLYLPFAFSVMVFVKAISEQAVSQKEMRLIFTTSGIYLVYLVAMFFLENDYKLFLPVIFLLLSLGASYLVNEGRALKRALLLTVAANLAFNALYAALPYNGNFAANMLVRGEYEQIAEDRYGGLNHILPAGFYRVNTVSNNQFVSQKKLFNDLTSGLANVSSYYSIQNQYLGQFSTDLGNLQYDNNIPFHQLDDRTILNNFLGVRYIFNQKYSVNGSKVPGTYDLIAAGKEKKDQNQESVYQAELYKTTEAFPLLWLSYKAISPSRYQKLSASQKERALASGVVVKEGGLKAAKLTGVKTIKASLVDASGKKLSKNKLTYTGSDASYKLKLHLSDKEKAKLGKSELHVEISQISYQPFTLSQQLDLELKKAKQEADLAGQTLNERATRYKYWRYHLLAGSPDPSYKLTVTGKKASETIVQRSQDMTSFYRLVDSAVMNMGTYQTLPNSLTFQPSKLGTYRFKIKVVAIPLNQEYTKEVRQIQKQGVKQLKLAQNQLTGLFTSKKAGVVTSTIPYSNGWTATVDGKAVKVIKTNTAFVGFKMPAGKHRVRLVYRTPGLRSSLLISLLTALAILVYAAFSHKEWRREFRAKKKEK"]}}, {"location": "[745703:746639](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQDVLYQILTTAEDCQTVSDIAKKLFLSQPYVSQVLSKAEKKYNVVLLERRTLPIELTEAGRTLCDGLAKLHSDQMKIEQDLRRFTEEEQSYIKIGFSPIWASSESRKIIPVLQKQFETTRFELIKTFSINSAKRLIDNRMVDIYLGPLLRGENLKNFFLFQPRIFLIIPETSKLYQEGKRDVPFSQQLLMDLSKEKMVSLSDDSGFQKTVDHLLEDQNLSVNKSIKVNDYEVALQMAVGGLGWTATLEYMLPNLDPDLKYNQVELPHNLIQSDNGLTIHMDSNDRDKEVAQVMTRLMKDDLVARKLTKE"]}}, {"location": "[747100:747235](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cynR_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27111"], "locus_tag": ["MAAAAKME_08010"], "product": ["HTH-type transcriptional regulator CynR"], "transl_table": ["11"], "translation": ["MSYAVKKLEEELGVPLFESEGRNIRLTVYGKVFKEYGEAGVQQI"]}}, {"location": "[747250:747904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["gltC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20668"], "locus_tag": ["MAAAAKME_08020"], "product": ["HTH-type transcriptional regulator GltC"], "transl_table": ["11"], "translation": ["MSEMALSESGKLSIGVAEIVAHKFITDVIKDYRQVNPEYRVDFNLKRAVTGKLLDMLQSGELDLAIVTPRPGEKIAGFDLVTMMHRKLELLLPAGHELAKQKSVSLKQIEQYPYLAFGKEHALAGIIADVFAKNDIHLQISSVTDDVRTLLAIGEGVALLPKSKYNESAGDIAVPVTEDTSYTISLASRNLAQEPKVAQKMASFIVDFCQTRGLTWS"]}}, {"location": "[747889:748087](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALLKQYQYKNSKIKYASYKAVQKTELAYYNAVVSINGLTLAQYQKQVSRAKEKYDQAASELGPR"]}}, {"location": "[748266:750702](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARIIDTQRKLLIQHGLLEDIKEAGEECGSLTAALAAPDWTLLDRELSPLFKQVKFCLLFGEEEVPELAAANELSRLFPLLSSDCPDLKEKLAAGRLAVSFSSQKESNFFLLTGKDQYRFYWGQGATYFLSSGEKTGDDWAMVQQLVKELTAKARDILDKEIYQGYLDLAEDKRSQYLLEVSGLADKMAEAPLKDFKEATRLGQLGQSQAGVSFKKTAKLLRFKIGIDKENLTGKKILADEELSKRLSQIVFGEGNENGEAIVLPDEKAHYPRPLYLQDPVTGTILEKPAIDSYQEEPVAIQKPTRQDVSAIFDIIRFYRDRKQDNESQAAFSFLMYVLESGSIWKIRQAIDERNGIVEDVPIVAGLVGQGETGKSTLLKIASNLTIGNTKEIVQASSEDKLFGMTAAVRKKLLAGKSLTKQDRVSAYSSNPKVINKNIWNFTDHYMDEDQVITPICIDDPEVSLFSSSAAQSFLKKRSNRHGEKLGVEPVAIFSMNSKGKDIELLTEVGRRGYVISQGNQFRKKTDADIHFFEYLDGNTDNHGHWLNNTLFLYLTRQIDRWLEEMDDEDYLKLKHDFLYPVKHAFWELVEEYGLVNTETKCYFHMKNYNIVEDLGRRNWSILLHDEATLREITFTRDNPECMIPARVFPNKDNDINRYFAYLPASAEICKTFDSKGLTVKMANMDLWQGNHLLTERYEKETGIAAERFEMEKARVAAEVQGQIMGENIAPYLKKNAEMMDRMMKVTEQNARLLAEKEAQAEKQQQAEAEKKEQADQIQKLQDELAQAKEAAEAAKSEEKKPQGFFDRFFK"]}}, {"location": "[750724:751126](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDTQSMIAVQEKDNTVSSLILDHDGDLETAGRILEENYQDYEQVLALVNLGDLKRLGKTVEESRAYYRDEHEDQLVLENYADTEVFDRATEEQGDYLACCFLYCKYEGDFQWLVRDFSTGDKRFKPLKEALA"]}}, {"location": "[751401:752706](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.3.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG0165"], "gene": ["argH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9LAE5"], "locus_tag": ["MAAAAKME_08060"], "product": ["Argininosuccinate lyase"], "transl_table": ["11"], "translation": ["MYPEDIAGSIAHAKMLAKQGIIPEEASAKIIAGLEGILADLNSGKLEIDPAAEDIHMFIEETLTDRIGQDGKMLHTARSRNDQVALDIRLYMREENGQIKQLLKDLVAALCDQAEKYKASLMPGYTHLQRAQPVTFGHQLMAYAYMFMRDLERLGQMEERMNYSPIGSCALAGTTYPIDRVYEAELLGFKAPVANSLYGVSDRDHVVEDLSDLALVMMHLSRLSEELILWSSWEFHFVRLADAYTTGSSIMPQKKNPDMAELARGKTGRVYGDLMAILTTLKGLPLAYNKDMQEDKEALFDAIDNVELCLETFIPMIKTLEANEKAMHQAAQKGFINATDLADYLTKKGMPFRDAYHISGQLVALCIDQDTVLEDLPLETYKGYSDLFEEDLYQAIDLHNCLAKRTSLGGPTPESVQKQVDEVRGKLKIRINRC"]}}, {"location": "[752942:753146](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGESKEDKRMRAKWESLSGAEKSEFKKNYAMRRGITIDFIRRWAWNEGDLDNLEYHIAERRKKFREF"]}}, {"location": "[753289:753397](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MWFIWRYIDVIMFIVICGIISLFWLAFKVIDKILK"]}}, {"location": "[753809:753898](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08090"], "note": ["tRNA-Ser(cga)"], "product": ["tRNA-Ser"]}}, {"location": "[754687:757453](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["cas3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F2XG53"], "locus_tag": ["MAAAAKME_08100"], "product": ["CRISPR-associated nuclease/helicase Cas3"], "transl_table": ["11"], "translation": ["MKLSKEALSLWGKKSNQDGDEHWLPLVAHMVDTMNVGHWLYNSWLSEGQRSMLTTRICDAEMSKLVSFLCYIHDLGKATPAFQTKESYNHDHQLDEELIHRLVSHSFKKLNDLSLPSRSKSPHARAGEAILERAGLNETIAAIVGGHHGKPQNGDQEEQIDVFTSNYYQADNDEEIQQPWKDAQRELIDYGLELAGYEDISEVPPVNQPEAVILEGLLIMADWLASSTCLNNDPDKPMFNLIGLDQSFDDLDMKARYQNAISTWAINDAWIPEEVANVDYYYEQHFSFKPRQIQAAMEEHVKEAVDPGLVIIEAEMGIGKTEIALTAAEQLAYVTGRTGVYIGLPTQATTNAMFDRVNSWLTKIAGIEGINPDIKLLHGKAEWNSRYTDLPRAEDIEAEELDAGTVTVNSWFSGKKSILADFAVGTIDNLLLMGLKQKHLFLRHLGFSNKVVIIDEVHAYDMYMQSYLSKALKWLGAYHVPVVILSATLPKEKRNELIKSYIKGKYRRVKKVLQAQEGWESNRAYPLLSLLDGKELRQYSDFGPKAEPREMQVNYINDEPTEVLAKVNDKIKDGGIAGIIVNTVKRAQEFAGLVGQDCQCLVLHSAFLATDRSRLEKELQSLIGKKGKRPDKLIVIGTQVLEQSLDIDFDVMFTDIAPIDLLLQRAGRLHRHKISRPKGLEKRQLYVMKPDSDDYGPANEAVYEKYYLQKTEHFLPQKIQLPNDISRLVQLVYDEDTDDQVENLDEARDKLNVDRNREKSKAESFQINDPVYPAAKNDLYDDTWVEELTIHRWLDRDKGNLDDNQASAAVRDIRESIEVILLKEISGEYYLMNGDKVSEMMDKDLAKELIRLPNAVTPNIEQAINILEENTAQAFPDWQGSPWLKGSLAVVLDEHAKGSFNGYKLRYSTETGLSYEKEVDN"]}}, {"location": "[757455:759180](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MESYNLITEPWIKVLDGKTNSEHMVSIKELLQNASDYRQLAGEMHAQDLAVLRLLEAILTTVYTRVDQNDEEYEWVTLDEQMHVQSYDDEIEGSTLLQVLTKTWNALYKEGSFSEAVFDYLDKNKGLFDFFGDRPFYQVTAEQYDSFVPDNKKIAKGSGTVDLMQINRLISQSGNSVAIFSPKSANRKNKLTLDELVRWVITYQNFTGVTDKTKVKAKKKMSNSRGWLYTLNPVYAQGKNLFETLMLNLLLFNPNKPAYTQQRPVWEEDLGEYVKRRLSQVKPDNFAETYTVWSRLLHIEWQDGTPTIFSAGLPTFDSANAYDIEPMSTWRMNKKDENYYPATRQLSSIGIAMWRNFGQYVDIEGHTESREPLTVAWLNYLKTKNEFLNQQMINLHTSGIISNGGATSLMPAAEFDDNLRIEADVLFDETEDRKNAWPQRIEEMVDLNQEVGRKYYGFLMEVGRIRFGPQGAADFAGRNSQTFYDNLNEPFENWLANLSGGDDRDKQQELWKKQLRQIALRTLDDFLEIIAPRDISGIKADKSQSGTKSTESNIFIAANKYRAGINKALNKNEK"]}}, {"location": "[759189:759807](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVMAFEIEKATERIIRQLYNNGDTDKASLSALRSAATIDGYRAQKVWPVFLSNLDEQWLSKNGKATREEAAIFAAVRMYALHQQASDSCVFGRRNYSDKKDEETNSRELFEALNCLKQGTDSHEALDRRVQALLGTNNYNAVIDQLVHLMQIIKSKKTGIKIDYARLAGDLYKFQFGYRQANEVRLRWGEQYYRAFKKLDTNQQ"]}}, {"location": "[759824:760901](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["casC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46899"], "locus_tag": ["MAAAAKME_08130"], "product": ["CRISPR system Cascade subunit CasC"], "transl_table": ["11"], "translation": ["MTKNLYVDINVLQTVPSSNINRDDTGAPKTAFYGGVTRARVSSQSWKRAVRKAFAEDGANIGTRTKRVPQMLAAKLQDLDASLDEDAAMSKAIDALKEGGIKTNKDNETGALLMVSPGQVAKLASYVLENETLDKKEVKKILMEGNSLDLALFGRMVADNPELNVDASAQVAHAISTHEIIPEYDYFTALDDLQEKEKSGAALIQTTQYDSATLYRYANINMAELSYNLGDEDAIEGALTFVKDFALSMPTGKQNSFANKTLPNYLMVTVRDDTPVNLVSAFESPVVAKAGEGYVENSVKKLENEYKDALQFVDQPLATVTVGKYETTVGEQAGNLQDLLGKLQDVLKKAVENEDFNN"]}}, {"location": "[760881:761583](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTLTIKLTAPLQAYGNEASFERRTSWPAPSKSAVVGMIAAALGMRREDERIKSLNDLAYAVRVDQIGKTMTEFQTVEWKPGTRKLTYRDHYQDAVYVAAVGSEDEELIGKIEYALKHPRFQLYLGRRACPPAGVLRIESFADTDPVKVLENMPWQAEKWYQNKQKRKAEFTAEIIADANLLPDAAFTQTVKDRVESLDPQGRCFGFRLTAKERINLKNPCYEQKSQDIMDYL"]}}, {"location": "[761595:762219](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["cse3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q53WG9"], "locus_tag": ["MAAAAKME_08150"], "product": ["CRISPR-associated endoribonuclease Cse3"], "transl_table": ["11"], "translation": ["MYLSRVEIDTDNRQKIKDLSHLGAYHNWVERSFPAEIAEGERQRHLWRLDTLNGRNYLLLLSPEKPDLHEFERYGKPGTAISKDYEPFLSRLSEGQLLQFKLTANPVRRGGKSSSHPGSLIPCFAVDEQMKWLQGKAEKNGFELVAAEVVGHDRPLLRKKTHVALNRTVFEGRLKISNLDQFKAMLTSGIGREKAFGMGLMTVIPVD"]}}, {"location": "[762221:763172](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1518"], "gene": ["ygbT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46896"], "locus_tag": ["MAAAAKME_08160"], "product": ["CRISPR-associated endonuclease Cas1"], "transl_table": ["11"], "translation": ["MKVEASYKKPDLTELGRTEDRITFLYIEHAKLYRKDGAVEVRDEEGIVYVPAAIISVLLLGPGVDVTHRAMELMGDSGMAVVWVGEQGVRQYAHGRALNRSSRLLEAQAKLVSNVRSRVAVARKMYQLRFPDEDVTKLTMEEMRGKEGTRVRRVYREQAKKTGVKWSKREYKVDDFESETPINKALTAAHQALYGLSYSVIVALGASPGLGFIHTGHDLAFVYDFADLYKADISIPIAFETVAKYGDDDIASRIRHAMRDKFRETKLIKQMVVDLKHLLLGDADQDQDIDVMNLWDDKLGLQKFGVQYHEQQSDEE"]}}, {"location": "[763168:764041](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["dinG_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02206"], "locus_tag": ["MAAAAKME_08170"], "product": ["3'-5' exonuclease DinG"], "transl_table": ["11"], "translation": ["MIVITLTKTPPALRGDLTRWCQEIQTGVYVGDVSARVRDKLWERVQTNIGNGEATLVYNTNNEQGYAFKTTRKSKQVVDLDGMLFVKHVVNQETVEHGFSNAAKFHKAHKAEKMRASAAAAKPKGFVAVDIETTGLNTETDQILSIGAVKHDGTEFYRLIKQDIDVPKQIVELTGITSEMLSKEGVPLQDALEELTDFVGNVPIVGYNFRFDSAFLNRDYRKCGMQELKNEIKDLLPVVKRKEKFLDNYKLQTVLSNYGIENKVPHNAVSDARATKELAMKLIKNRILVI"]}}, {"location": "[764070:766562](+)", "type": "repeat_region", "id": "", "qualifiers": {"note": ["CRISPR with 41 repeat units"], "rpt_family": ["CRISPR"], "rpt_type": ["direct"], "rpt_unit_seq": ["gtattccccacgcaagtgggggtgatcc"]}}, {"location": "[766820:767435](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.5"], "codon_start": ["1"], "db_xref": ["COG:COG2357"], "gene": ["ywaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39583"], "locus_tag": ["MAAAAKME_08180"], "product": ["GTP pyrophosphokinase YwaC"], "transl_table": ["11"], "translation": ["MSIYGKYADYLPQILDSVLQQIQGIGQEYSAEHGQKLYGHLEGRVKGEESMAQKCERKGLPLMPESALIENRDAIGLRIVCNFIDDIYTCIDLLKKQDNFKIINEKDYITDAKPNGYRSYHLIMEVVTPFEDVHGNKPGIYYVEIQLRTIAMDTWASLEHEMKYKHDIKNPERISKELKRVADELASCDVSMQTIRQLIKEGEL"]}}, {"location": "[767431:768100](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["mprA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3I8"], "locus_tag": ["MAAAAKME_08190"], "product": ["Response regulator MprA"], "transl_table": ["11"], "translation": ["MKILLAEDEAQLNRVLTVAMQKSGYDVDSVFNGQEAVDAVKKHPYDVIIMDIMMPVKNGLDAVKEIRSTGDKTYIMMLTAKSEIDDKVTGLDVGADDYLTKPFSLKELLVRLRSKERRSEDYNSTQELNYDNLKLDLNSQELSSNNSISLSKQETGLMRYFLLNPGKAISTEELFNHVWKNEDESEDVVWVYISFLRSKLASIGANVQISGEKGGEFCLERA"]}}, {"location": "[768102:769362](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_08200"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MIKKIRRRFIWLATLSLFLVILFSFSSLIGISLFESSHEADQVLSIIVKNNGRLDEVQAKKRLGDQYNKEGMFKYRYFTANINTKKQTLTVIDADHIIGYSINSVSSRKKQISRRLSAGQLKGTIHSNGVRFRYLAKKISANKYYICFIDLSPLMQSALLLVRYALIFTFGGILFFVIIMTLLADKAIQPIKDAYYKQRRFITNAGHELKTPLAVISANAEMEELLGNDDEWSESTKEQVVRMTGLINQLITLTRMSEPGELVLSKVNFSEITKESADSFKSVLAKDNKKYVVSIDPDLYINAEQRSLLELVNILIDNAQKYCDPEGEVMVVLAKSRLNQNAVLTVTNSYKNGAGIDTNRFFERFYREDESHHYDQKQKNGFGIGLSMAQDLVAAFGGKINASWSDGVMNFTVTFKRVH"]}}, {"location": "[769517:770618](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0183"], "gene": ["thlA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P45359"], "locus_tag": ["MAAAAKME_08210"], "product": ["Acetyl-CoA acetyltransferase"], "transl_table": ["11"], "translation": ["MQDIYIVAAKRTPFGRYHKQLADFSAIDLGQIALRGALKEAGLDAEALDALFMGNVLSAGLGQNMARQIALNAGMRQDSVAVSINEVCGSSLKAARLAEAQMLIGDLGLVAVGGSESMTNASKEIMFSDGLVDSFSGKSMGITAENVAKRNHISRQDADAFSLSSHQKAVKAQAEGLFADEIIQIEDLKQDENVRPDTSLEALAGLKTSFLEDGTVTAGNASPISDGASMIILATAEKVAEYQLTPLAKLGAYAEVGYDPEFMGYGPYYAIRKLLNETGRQVADYDFFEINEAFAATTLAVARDLEIPLAKVNKQGGAIALGHPLGASGTRLLATAARQLQRGGQRAIASLCIGGGLAIAFEIEKA"]}}, {"location": "[770620:771847](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.88"], "codon_start": ["1"], "gene": ["mvaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P13702"], "locus_tag": ["MAAAAKME_08220"], "product": ["3-hydroxy-3-methylglutaryl-coenzyme A reductase"], "transl_table": ["11"], "translation": ["MKFYQLPPEERRQFLQEDGVALEDIPAADLARLDEMSENVVGEVKFPLSCLTSALVNGKNWRIPMTTEEASVVAAANHGMSVFAKAGGVKATSQRDGIYGQIVLEVTEAFSLAGFKKEFPAYIKEANKEFTSLIRHGGGLKDLTARQEADLVYLLALVDPAEAMGANKTNAILEFLAQKMLAFPGVEAKLFAILSNYPSQLTTAKVAIPVSLLSKKGDLAEGREVAKKMALLAKIGSSDPYRAVTNNKGIMNGVDAVMLATGNDYRAVEAACHAYAAKSGEYRSLSSWKIAGEKLLGQVTLPLALGVVGGSISSRPDIRQSYAILGKIKAAELAELTASVALANNFAALSAISTKGIQAGHMRLQSRNVVQTLPASAEEKAAVYQMMISQGKYGETAAKNFLKELRGQ"]}}, {"location": "[771850:773014](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.3.10"], "codon_start": ["1"], "db_xref": ["COG:COG3425"], "gene": ["mvaS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9FD71"], "locus_tag": ["MAAAAKME_08230"], "product": ["Hydroxymethylglutaryl-CoA synthase"], "transl_table": ["11"], "translation": ["MDIGIDQIGFYTPNKFVDMVDLANARNQDPNKFLIGIGQDRMAVADKTQDAVSMGINATAEYLDQVDLEQLGLLIFATESGIDQSKSASLFVKEALNLPARIRTFEIKEACFALTASLQVARDYVRAHPHHSAMIIGSDIARYGLATAGEVTQGAGAISMLIKENPAIIALEDGHTSHSENINDFWRPNNLATAVVDGHYSRDVYLDFFKSTFKPFLAEKQLQVSDFAGICYHLPYTKMGYKAHKIAIEGQDDETVKRLSDNFQLSAKYSRQVGNIYTASLYMSVLSLLENGDLEAGDRIGFFSYGSGAMAEFFSGKVVAGYQKRLRPALHARMLKERIRLGVGQYEDIFTEGLEALPENVEFTSDANHGTWYLAGQEGYVRQYKQK"]}}, {"location": "[773178:774537](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTESTEQEYQHHLSHHHHMRVQWEEFFQSDDETKIKEATLIEKGSIISRVGMMILSCGTGAWRVRDAMDTLARTLDLTCSTDIGLISIVCTYFDVDNQSYSQSLALPTTGVNMAKLNELEKFVRQFEAAGGDFEIKTVRRRLGEIEHMKGRYPLWGSSLAAALACGGFIFLLGGGLPEIICSFIGAGLGQFARGSLAKRRITVAATTAVGVAAACLSYYLAFMLGHLLFNVDMIHMRGYIGAMLFVIPGFPFITSGLDIAKLDMRSGLERMAYAILIILIATGTGCVMATALQIKPGDLPALHLSKAILTACRLLASFCGVFGFSLMFNSHRRMAAAAGLVGAIANTMRLSLVDFAHFPAPLAAFLAALLAGLLAGYVREKVGYPRIALTVPSIVIMVPGLYMYRGIFFLALTNVGAGATWMTEALMLVMSLPAGLLTARILNDKKWRRVD"]}}, {"location": "[774594:775101](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG2606"], "gene": ["ybaK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AAR3"], "locus_tag": ["MAAAAKME_08250"], "product": ["Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaK"], "transl_table": ["11"], "translation": ["MSKKKKNKDKLDKTLVEKILDQHKIAYEQHISEISEDHGVAQVGTGKPVLDGHPVYKTLAVNGNKTGPIVGVVPLSGHLDLKKIAKVSGNKKCEMIPLKQLEKTTGYVHGANTPIGIYHSKKFPIFLDESVLKEDGIWVSSGEVGRSVMVNPLDLQELVKATVADLQE"]}}, {"location": "[775181:776126](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "gene": ["prmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04AV7"], "locus_tag": ["MAAAAKME_08260"], "product": ["Ribosomal protein L11 methyltransferase"], "transl_table": ["11"], "translation": ["MKLLEIKIESSYDVEDALAYFATEDLKALGTEARRRSDFEQAGWLHDSTVVDMDDIPNLPDELEFIAYFDEETDPEEMVKCFKDKLAELAGYGLKTAPGEISVDYVADQDWNTVWKKYYHVINLSRHLAIVPEWEDYQPAFKDQEIIRLDPGLAFGTGNHQTTQLAMLGIERAMVKPLTVADVGTGSGILAIAAHKLGAKSVLATDISDESMTAAEENAALNGIHDIALQKTSLLADVDGKFDLIVANILAEILLDLIPQLDSHLNEDGQVIFSGIDYLQLPKIEQALAENSFQIDLKMRAGRWIGLAISRKHD"]}}, {"location": "[776266:778528](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.5"], "codon_start": ["1"], "db_xref": ["COG:COG0317"], "gene": ["relA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O54408"], "locus_tag": ["MAAAAKME_08270"], "product": ["GTP pyrophosphokinase"], "transl_table": ["11"], "translation": ["MSKYTEMTHEQVMAACKKYITADQLAFVESAYQFAARAHEGQTRASGQPYIVHPTQVAGILANLGLDPDTVAAGFLHDTVEDTSVTNDDIKEKFGADVAFIVDGVTKLNKYEYKSHKEFLAENHRKMLIAMAKDLRVILVKLADRLHNMHTLEHLRPDKQRRIAAETLDIYAPLADRLGIGTIKWKLEDMSFHYMNPEAYYKIVSMMDAKRSEREGYIKDAIDYLRGTLDSLGIKYDISGRPKHIYSIYKKMVNKHKNFNEIYDLLAVRVIVPTVKDCYAVLGAVHTKWKPMPGRFKDYIAMPKANGYQSLHTTIIGPGGKPLEIQIRTEEMHKVAEYGVAAHWAYKRGNFQGVDEKEGGALDIGREILELQKDSSDADEFMEAVHSDIFADKVYVFTPKGEVYELPKGSVTLDFAYAIHTQVGDHAIGAKVNDKLVPLDYKLKNGDVVDILTQSNARPSRDWAEMVKTSRAKNKIRRYFRDVDREESLARGKSELVDLLKENGLSAKDFLDKSHIDEVLDHFSFKTDEDMYAAIGFGNMSAVSIYNRLTADLRRQQEEEKQKQFEAQIMSAGQQAAASSVVKKPAPQKDDAKSKTKGKKPDSLVRVQGLEDLDMHFAKCCNPVPGDLIVGYVTKGRGVTVHRVDCRNVVSADPAAQGRMIDVEWNNIDEGKQASFNANFELFGYNRQKLLGDVINRLNALTKNITNVSASVNEENIAHFYITVEVRNAAQLNDIMAKLRDIPDVYDTKRTDN"]}}, {"location": "[778556:778994](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.96"], "codon_start": ["1"], "db_xref": ["COG:COG1490"], "gene": ["dtd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A023W421"], "locus_tag": ["MAAAAKME_08280"], "product": ["D-aminoacyl-tRNA deacylase"], "transl_table": ["11"], "translation": ["MRVVIQRVNHAAVRIDGETVGQIQKGLLLLVGLAEGDGEEQVVKAADKIAKMRIFEDEAGKTNLGIKDVGGQILSVSQFTLLADTKRGNRPSFVHAMRPPKSSQLWEEFNQELVKRGLTVETGEFGADMKVELENDGPFTIVLDL"]}}, {"location": "[779277:780564](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.21"], "codon_start": ["1"], "gene": ["hisS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P30053"], "locus_tag": ["MAAAAKME_08290"], "product": ["Histidine--tRNA ligase"], "transl_table": ["11"], "translation": ["MRVQRPKGTVDILPETSGQWEKVEQTARDLFKRANYHEIRTPSFENYELFSRSSGETSDVVEKEMYDFEDKGGRHIALRPEGTAGVVRAYVENKIYGPDYVKPFNVYYIAAMYRYERPQAGRQREFHQIGVESFGSNGYLADVETILLGHDLLAELGVKNYELHINTLGDSEVRQAYHDALVDYFTPVKDQLSEDSQRRLGKNPLRILDSKAEEDQQFLSEAPKIRDYLDEESKENFNKILASLDKLGVKYVIDDDLVRGLDYYTGVIFEFMVDDPTLWASPSTVLGGGRYNHLVEEFSGPETPAVGFGIGEERLMLVLSKQNPEMFEDQGIDFFITNIGEGTDIKAVEVARQLRSLGFSAQYDVDQKKLKAQFRKADRVGARYVVTLGAKELAEGKLTVKRLSDGQQFSLEFTDLEDKTNLLSKIEK"]}}, {"location": "[780579:782424](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.12"], "codon_start": ["1"], "gene": ["aspS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67015"], "locus_tag": ["MAAAAKME_08300"], "product": ["Aspartate--tRNA ligase"], "transl_table": ["11"], "translation": ["MMQMEKRTDYCGNITSQYLDQDVLLYGWVQRVRNLGQLIFIDLRDREGIVQVVVNHDSGQELMDVASSLGQEYVVEVKGHVNERSSKNPDMKTGDVEVIASEITVLNKAKTPPFEIKDDLVASEQTRLKYRYLDLRRPTLQNALIMRAQIMTATNAYLSGEGFINIETPDLGKSTPEGARDYLVPSRVYPGSFYALPQSPQIFKQLLMGAGFDKYYQIARCFRDEDLRGDRQPEFTQIDLETSFMDEEGVQEVTEGLLAKVMKDVKGIDLQLPLPRITWQESMDKYGCDKPDTRYEMLIHDLGNVFAKSGFKVFASALENGGFVRGIAVKGGAKFYSRKKIEAMQDYIKRYHAKGLAWVKYEDGDFSGPVSRFLSEEEKAGLVQEFSLEGGELLLFIADQWKVCCDSLDYLRRQTAKETGIIPKDTYKYLWVVDWPLFEYDEGDERWIAAHHPFTMPDDKGIELLETDPHKAHARSYDIVLNGYELGGGSIRIHKRDIQEKMFKALGFTKERAYEQFGFLMDALDMGFPPHAGLAIGLDRFAMLLAGKDNIRDVIAFPKNASASEPMMHAPAPVADQQLTDLGIEVAEAAKEGVEKYEASLEAEAAEDVNSHEE"]}}, {"location": "[782497:783133](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKPMLAGILAAELALVGAAVFYHQSQADKSSQCAGSSKTYKVYSKSEKAKADKEDEKSESSSKAKRKSKKSKKKSSSSSSSSEDMSQSSSSEESSSDSSSSSSEELSSSSYSYSSQAKSSKKKSAKSSNSSNSDSTWGSAYSNSTYSNSTYSYSYSSPSSSKSSTKSSTSTGSSSYTPKKSSTTTSKSTADDDVNTTEDLPEETIDNSDN"]}}, {"location": "[783359:783557](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_08320"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMVDELADITFHHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[783809:784112](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNNGQ"]}}, {"location": "[784101:784938](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_08340"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIVLRFPHPDIVLETKEADIIDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[785060:785996](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDLTSDQRADCFVFDDSLYSRTGYKKTEPAAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIAAKRRIMAQSKGTDVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKRGTEYHGLSYDALTAHIAFVFLCYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[786015:786324](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPLFDTENEPKIARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSVLSYIFSNVFPDRSMYMQQKYGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[786548:788324](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRKYLWVLALFLASFSAVFLPEKVFADYDLTKMDVTAIVNSDGSLSMTRKIVYDFDDSANGVYYTQNLASGQKVSGQSVEVKDLASGKTVKPALNNQADSGNVYHFNKDGNSYKFKVYHHVDDGKVQVVYRYKISGAVDSYEDASELNFKIVGDGWDKEISNVTATVRFQDKKLSFLKGWAHVNANGHLTVDKEKGLVKAEVATLPEATFLELHLLFPNSLVSQNKKQHSGEIAAKVVDQEKALAKETAAKKARHNVYELIGLALFALLPLLYLPVFIKSRKSGSPVKAKKEIGHNFEIPAFSPTTAQILVTKKGPDGKALAGEIALRAGRGEITIKAGKKGKNFTYAKTSKYKGDLPLLNRLFKKVGNGQSFSNKDLKQYRGSQGITSSFKSWKEDSQKALIKDGYIDQYLQDREKLLSLYTFGVMFVSVAAIVVCFFLYDKYTFWLFPAILWVLAIFGLACLRLHHFSDLTGKGARATEQALGFEAMLDDIGQFKLRDIGELTLWEQVMPYAIAFGLAKKVLKQLKLEFSEEIAADPYWTYYYAGASYGAFASSFDEAISSSAGSGGNFSASSASSGGFGGGSGGGAF"]}}, {"location": "[788398:789472](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A1W5X0D5"], "locus_tag": ["MAAAAKME_08380"], "product": ["Sodium-lithium/proton antiporter"], "transl_table": ["11"], "translation": ["MEASLWNRFKNNIHLRRATVLVMIILALYYVRAMMNTILLTFIFTYLILHLVRFVQGKFKHVSDKLIVALTYLLIVVLLYFALRYYVPVLVKQVTKMTKSVINYYQTNDVGWLMTQLHKHVSEKTISSQVKSSLTALTAALKGFGSVTMSFVMALVLSFFYTIELKEMQTFSQSFLKSDLFGWFFEDIAYFGRKFTNTFGVVLEAQFLIAICNTTLTIVCLAIMKMPQIFALGLMVFICSLVPVAGVIISLIPLSLVAYTVGGIQDVIYILIMIAVLHTLETYILNPKFMSSKTELPIFYTFVALLFGEHFFGTWGLIVSVPIFTFFLDILGVKNINSKQEKLQEARKRIEHKRLEK"]}}, {"location": "[789755:790715](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.180"], "codon_start": ["1"], "gene": ["fabH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C1CIR8"], "locus_tag": ["MAAAAKME_08390"], "product": ["3-oxoacyl-[acyl-carrier-protein] synthase 3"], "transl_table": ["11"], "translation": ["MTYARIAKSSRYLSEFAVSNDDLSQIMETSDEWIKTRTGISSRRISQQENTSDLAIQVAKQLLAGEDPAGVDLIIVATMSPDAYTPATAALVQAAVGAENAACFDLSAACSGFVYALDVAEKMLRRPGGMALVIGAETLSKLVDWQDRTTAVLFGDGAGGVLVKNDALEPHFLASQLKSYGHLAKFLSAGQTSPQPFPGPVTDLAPFKMNGREVYKFATHKVPEVITACLEEAGVGLAEVDLFLLHQANYRIVKQVARRLDLPEEKFPCNIAEYGNTSAASEAILLAELAEEGKAQAGDLVVLAGFGGGLTAAAQLVRL"]}}, {"location": "[790787:791033](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0236"], "gene": ["acpP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SL79"], "locus_tag": ["MAAAAKME_08400"], "product": ["Acyl carrier protein"], "transl_table": ["11"], "translation": ["MSEEEIFATVKKIAVEELDVEEDQVTMEANIKDDLEADSLDLFEIVNELEDEYDIELDADENTKTVADVVALVQKQLAEKD"]}}, {"location": "[791045:791990](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.39"], "codon_start": ["1"], "db_xref": ["COG:COG0331"], "gene": ["baeC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A7Z4X8"], "locus_tag": ["MAAAAKME_08410"], "product": ["Polyketide biosynthesis malonyl CoA-acyl carrier protein transacylase BaeC"], "transl_table": ["11"], "translation": ["MKFGILFAGQGAQQAGMGLDFLSDPLFKETIDQASQACGLDLPEIWKNDRGQLDETRYVQPALVAFEYGIWQMLVRDTDLPVCGLAGLSLGEYGALLASGCLTWPAGLALVADRGEYMQLDSEKTASGMLALTKPDLPGLEDFLRAKQAAGQAVYLANYNSPKQVVLAGEKQLLPELGQEIADRKLAKRAIPLDVAGAFHTPLYQTASRKMGQRLKGEVFNAGTYPVISNSTCQPFAKEDLAKILEVQLMVPTHFDACVKGLLDLGMTASLEIGPGHALSAFAKQADKGLQTWQIGSLVEYQQFVEEEQNGFTK"]}}, {"location": "[791973:792696](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.100"], "codon_start": ["1"], "gene": ["fabG_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99093"], "locus_tag": ["MAAAAKME_08420"], "product": ["3-oxoacyl-[acyl-carrier-protein] reductase FabG"], "transl_table": ["11"], "translation": ["MDLQNKRVLVTGSTQGIGAATALAFAQKGCQVLLNGRRPELPEEIADQLEEIGADYQYFSADVSDEGAVKQLFKEIGEIDILVNNAGITKDQIMIGMKLADFDQVIKVNLRSSFMLTQKALKKMLKKRSGAIINMASIVGQHGNAGQANYAASKAGVIALTQTAAKEAAGRGVRVNAIAPGMIASQMTAVLPDEVKEQALSQIPLARFGKAEEVAQAAVFLAENDYVTGQTLVVDGGMTI"]}}, {"location": "[792705:793926](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.179"], "codon_start": ["1"], "db_xref": ["COG:COG0304"], "gene": ["fabF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34340"], "locus_tag": ["MAAAAKME_08430"], "product": ["3-oxoacyl-[acyl-carrier-protein] synthase 2"], "transl_table": ["11"], "translation": ["MRVVVTGMGAVSPNGNGCQAFVENTLNGVVGIKPIKKFDASETGISVAGEIDDFDVSQVVGKKNGKRMDLYSQYAIQACQEAYEMAGLTPETVKAEELGVIFSSGIGGLTTIEEQVIKVHDKGPKRMSPFFVPMAIANMAAGNISIRFNAKNISTSIVTACASGTNSIGEAYRQIKEGRAEVMITGASEASVNETAISGFADLNALSTSTDPLKASLPFDQNRHGFVLGEGAGALILESLDHAQKRGAKILAEVVGYGATSDAYHITSPDPKGEGAARAMRLAVEEADIKPDQVGYINAHGTATKANDSGEAKAIKEVFGDQVLVSSTKGMTGHLLGAAGAVEAVITCASLEKGILPANVGCFAQDPECPVKLVKAGDQEQAVDYALSNSFGFGGHNAVLAFRKWA"]}}, {"location": "[793916:794399](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["accB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAE6"], "locus_tag": ["MAAAAKME_08440"], "product": ["Biotin carboxyl carrier protein of acetyl-CoA carboxylase"], "transl_table": ["11"], "translation": ["MGLILEITDVERLLDKFEKSSIREMKLNLDGSELFLSKNEYTQKTEAEAGPVLPAQKAESPLLPKEAAEAAPVVQAEKAVSGHAIKSPLVGTIYLQPAPDKPAFVKAGDQVKAGQTVCIVEAMKMMTEIKSDVSGTVKEVCVENEDLVECEQTLFLIKEA"]}}, {"location": "[794400:794844](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.59"], "codon_start": ["1"], "db_xref": ["COG:COG0764"], "gene": ["fabZ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A6Q6"], "locus_tag": ["MAAAAKME_08450"], "product": ["3-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZ"], "transl_table": ["11"], "translation": ["MTVLDSSQIQEIIPHRYPMLLIDKVIDLVPGESAVAIRNVTNNEAVFQGHFPGNPVLPGVLLVESLAQTGAVALLSADRFKGQTAYFGGIKNAKFRQIVKPGDQVKLEVTLEKVKGHIGLGQGIAWVDGKKACTAELTFMISGEKNV"]}}, {"location": "[794836:796219](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.14"], "codon_start": ["1"], "db_xref": ["COG:COG0439"], "gene": ["accC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37798"], "locus_tag": ["MAAAAKME_08460"], "product": ["Biotin carboxylase"], "transl_table": ["11"], "translation": ["MFDKVLVANRGEAAVRIIRALKEMGIKSVAIYSVADRDSLHVQLADEAVCVGASRPSDSYLNIKNIISAATGTGAQAIHPGYGFLSESAEFASLCAACGLTFIGPKAETIDQMGNKEHARQLMIKHKVPVTPGSRDFIKSPEEAKKVAAEVGYPVLLKAAAGGGGKGIRQVKEPGEMADAFSLAQNEARLDFGNDQMYLEKVLTNVKHIEVQVIRDSFGSCVYFPERDCSLQRRKQKVIEESPCELISESEREKLGQIAVRAAEAADYLNTGTIEFLMDQDHNFYFMEMNTRLQVEHTVTEMVTGVDLVKAQILVAAGEKLPFKQADLGFKGNAIECRINAEDSSRDFMPSTGQVDYLFLPVGNPGMRIDSALYQGMVVSPFYDSMLAKIIALGSSRQEAVARMQRLLNELVIRGVKTNKDFHLAILADSEFKQGTFTNTYLEREFLPRWKEQVDKHEAV"]}}, {"location": "[796205:797054](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.15"], "codon_start": ["1"], "db_xref": ["COG:COG0777"], "gene": ["accD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0CC08"], "locus_tag": ["MAAAAKME_08470"], "product": ["Acetyl-coenzyme A carboxylase carboxyl transferase subunit beta"], "transl_table": ["11"], "translation": ["MRLFKKRNTISERHVKANKRAEDLVPSGLMKRCPNCGLEFFARRLDKYKTCPDCDYGFRLTARERLAWLCEESEEWFKDIQPSDPLHFPNYEAKVAAGKKKTGLNEAVWTGLAKIGGQETALAIMDPFFIMGSLGQMTGEKLTRLIEAATEKRLPVVVFTASGGARMQEGIYSLMQMAKVVNAINRHKAAGLLYLVVLTDPTTGGVTASFASEGDITLAEAHAMVAFAGRRVIEQTIHEQLPKDAQRAETVLKHGFIDRIVLRQEEKETLAWLLKYGGMQDD"]}}, {"location": "[797046:797814](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.15"], "codon_start": ["1"], "db_xref": ["COG:COG0825"], "gene": ["accA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9FBB7"], "locus_tag": ["MAAAAKME_08480"], "product": ["Acetyl-coenzyme A carboxylase carboxyl transferase subunit alpha"], "transl_table": ["11"], "translation": ["MTDAMETVRAARASDKLSAHYLREHLFSDFVELHGDRQGADDPAIVGGIGLFAGQPVTVITTSRGYKLEERLAKHFGQPEPAGYRKAARLVKDAARFKRPVLLFIDTAGAFPGKEAEYAGQGQAIAQCLTDIGQAETPIISVIFGEGGSGGALALACGDELWMMENSMYSVLSPEGFASILWKDASRAAEAAELLGLTPESLLKGQVIEGVIKQEGSKSAQCREIARVLEEELAKLKKLPVSSLLNRRYERFRKF"]}}, {"location": "[797859:798588](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0623"], "gene": ["fabI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54616"], "locus_tag": ["MAAAAKME_08490"], "product": ["Enoyl-[acyl-carrier-protein] reductase [NADH] FabI"], "transl_table": ["11"], "translation": ["MGVANKRSIAWGCAEQIKAQGGEVVYSYQNDRLEKSLLKLGLAEEEMVECDVASDESIDAAFDQVKEKFGQIDGLVHAVAFAPKNELVGSILNSSREGYLTAQNISSYSLIAVAKAAQEKELLAPKASIVTLTFIGSERAITNYNTIGIAKAALESSVRYLARDLGKTGSRVNAISAGAMKTLAVTGIAGNKDLLEQSRSLTVDGVSVSLEEVGNCCAFLLSDLSTGLTGDIIYVDKGVHLS"]}}, {"location": "[798597:799263](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.15"], "codon_start": ["1"], "db_xref": ["COG:COG0340"], "gene": ["birA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P06709"], "locus_tag": ["MAAAAKME_08500"], "product": ["Bifunctional ligase/repressor BirA"], "transl_table": ["11"], "translation": ["MEIYCYPVLPSTQDLAKKLLEKKKPPFAVSALEQTQGYGKQGRTFYSPKNGLYLSVCLEKQENPLLTLAVGTAVADFLRARYGLEIGLKWANDLFYQGKKVAGILTEQVAGGIVVGLGLNLGAELPTSLPQATRLLEAGDFDPLLADDLACVICRAASWQDCLPRYRELSILTGRRVTLKIAGRTIFGTCAGFDDQGRLLLEKGGKISAWSSGEVIKTSFL"]}}, {"location": "[799317:799401](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08510"], "note": ["tRNA-Leu(cag)"], "product": ["tRNA-Leu"]}}, {"location": "[799510:800131](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bamE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00925"], "locus_tag": ["MAAAAKME_08520"], "product": ["Outer membrane protein assembly factor BamE"], "transl_table": ["11"], "translation": ["MKKKVLLIAFAALALTACSSKKATTDSESDKKAASSISSSNVVKQNSNKINLTNYKKIKVVEKTGSTPSQVTDLLGREADAKSKAKTSKLKATIYTWEGVQNGSAGANLAVEFANGVAIAKQISGLVVNRSKQITPKDYKSLKKGMTQEEVEAIVGKPNGYSESDYSNSEVVLWLYTSGLKSDDQANFYVTFQKNKLVAKKAQNFN"]}}, {"location": "[800396:800639](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKEARKRKKLDKIGWGIVTVVIVLALLSAGWLTYRAVQVARLSRQVDVKVDGTKELKSGRASAKLLAKYAAAEPADQGG"]}}, {"location": "[800850:801015](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08540"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPAIAPKKALIKAKSQASTFSSLAKNRQAVSRLRFSRGAIKGINLGYYEADQVR"]}}, {"location": "[801033:801201](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGQMVQDLLKNKLDAVAYHPRVKKIETASCYKLKTVSQFKSSKDCYSFNKQNILT"]}}, {"location": "[801443:802667](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_08560"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNRNRLHKAIQLTFPEIEHLMVNPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSSHIRGLKMAINNTLSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKVGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[802921:803053](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHSNTSRYGDNANVSSANAASLEKMFKLNVNREGFSYNNRKSL"]}}, {"location": "[803054:803762](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRLQPQAWWYTNHLLMRVKDDLPAKEQKQIKFLKGSQRRCKKWQLVKGAAEFKQNLIALTSESESNGLLTLKKAKVGDCKLNCEFLGNKIGQQTVYLKTQGTASGKHNFSSYLSLSLENNILYLWQKQGGAIKTLYKVDMFKLEDDKPVSVPEDKRAVLSSELNVRGRFAQNSTTAALYKLKAFKKKRQKAKSVKEEAKEYVPEIQLQDPGDVKAELTVKGSSLTLTVNGQKLC"]}}, {"location": "[803846:804233](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1012"], "gene": ["adhE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9Q7"], "locus_tag": ["MAAAAKME_08590"], "product": ["Aldehyde-alcohol dehydrogenase"], "transl_table": ["11"], "translation": ["MVKFHFVDKVYEQLALKDKQVDTAIYSEVLPDPPLSQAIKIAKQMKKFAPDTIIAIGGGSALDVSKIARYIYEYSLDQEDGWLDIYDNVSELIKELQQKFVDIRKRIVKFKHETRTSLVMTRSLTAPS"]}}, {"location": "[804184:805105](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1012"], "gene": ["adhE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9Q7"], "locus_tag": ["MAAAAKME_08600"], "product": ["Aldehyde-alcohol dehydrogenase"], "transl_table": ["11"], "translation": ["MVHAALQSGNPSMGVGAGNGAVYIDHTAFLDRAVEDILLSKRFDNSMVCATENSAVVEAPIYDKWLQMIQDKGAYLVPKKDYQKLADFVFNDKHGVNGPVAGMSARWICEHAGVTLSEGKDVLLFELDPKNIGEKLSSEKLSPLLSVYKAKDREDGIRIVKALLDYQGAGHNAAIQIGSQNDPFIDEYGKAVQASRVLVNQPDALGGIGDIYSDGLRPSLILGTGSWGKNSLSHNLSTSDLLNIKTIAKRRNRPQWIRLPEKIFTKKTSLPIFQMKMSRKSAGPLSSLTWAWSSSTSLTRSMNSWL"]}}, {"location": "[805542:805770](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVDVKKTQTTVTAAKELSADEKVEEAKRYTDELVNKALVAEEAYATYSQEQVDKRLSLPWLWPAVRPPSRLLMRQ"]}}, {"location": "[806389:807950](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_08620"], "product": ["16S ribosomal RNA"]}}, {"location": "[806653:807178](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[807980:808076](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[808169:811073](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_08650"], "product": ["23S ribosomal RNA"]}}, {"location": "[811149:811259](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_08660"], "product": ["5S ribosomal RNA"]}}, {"location": "[811350:812226](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.185"], "codon_start": ["1"], "gene": ["rlmB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01887"], "locus_tag": ["MAAAAKME_08670"], "product": ["23S rRNA (guanosine-2'-O-)-methyltransferase RlmB"], "transl_table": ["11"], "translation": ["MDRIDRENNLIRINAFDDPRLKLFTDYNEAQLFHYYEPEAGIFIAESPKVIERAIRAGYEPIAMLVEEKALERDLADFDRELAANDDHLLDFPIFVAQSDLLRQLPGYNLLRGAICAFRRKKRPSLREFAAALPKHARVGVLESVVNPTNVGAIFRSAAALGMDGVLITTDSSDPLYRRSGRVSMGTVFQVPWTYLDRKLWREKGVASLQELGFKTAAMALRDNTVDIDDPALKEADRLAVILGSEGPGLLPQTIAESDYTIKIPMAEGVDSLNVAAASALAFWEVKKGLD"]}}, {"location": "[812262:813432](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG0367"], "gene": ["asnB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22106"], "locus_tag": ["MAAAAKME_08680"], "product": ["Asparagine synthetase B [glutamine-hydrolyzing]"], "transl_table": ["11"], "translation": ["MFYGFTKKDAKIAFASTGKNLLDLCGEIHPFLPGHYYDGEKIVAYHEPDLTPKMSTDDFETATHKIHDLLVESVDQHLASDAPVGYLLSGCLDSSLVCSIAARLQPDTKIRTFAIGMDQNPIDLKYAREVADYLGTDHTEFIMTREDVLGVLREVIYTLETWDITTIRASIGMYILCKKIHETTDLKVILTGECSDELFGYKYTDFAPSPEEFQKEAAKRLRELYMYDVLRADRCISANSLEGRVPFADREFVDYVMSVDPDLKMNHYHKGKYLLRKAFEEGDWLPRDILMREKAAFSDAVGHSMVDDLKEYAESKYSDEDLAKAGEKYPYRMPFTKESLLYRDIFEEFYPGKADWIKDYWMPNRSWKSLESVTDPSARVLSNYGASGE"]}}, {"location": "[813484:813856](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG0367"], "gene": ["asnB_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54420"], "locus_tag": ["MAAAAKME_08690"], "product": ["Asparagine synthetase [glutamine-hydrolyzing] 1"], "transl_table": ["11"], "translation": ["MCGFLAIDSKEFDLKTFDEALAKCQDRGPDMTRVFDERGVTFGFNRLAIMDLTDSGMQPFETLDCTLVCNGEIYNYPELKKNLETDYEFTSSSDCEVLIPLYRKYGIETMVKMLDREIFLCPL"]}}, {"location": "[814369:814444](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08700"], "note": ["tRNA-Asn(gtt)"], "product": ["tRNA-Asn"]}}, {"location": "[814445:814521](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08710"], "note": ["tRNA-Pro(tgg)"], "product": ["tRNA-Pro"]}}, {"location": "[814544:814616](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08720"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[814645:814721](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08730"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[814721:814797](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08740"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[814797:814871](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08750"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[814912:815000](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08760"], "note": ["tRNA-Ser(tga)"], "product": ["tRNA-Ser"]}}, {"location": "[815008:815084](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08770"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[815085:815161](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08780"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[815165:815240](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08790"], "note": ["tRNA-Phe(gaa)"], "product": ["tRNA-Phe"]}}, {"location": "[815246:815330](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08800"], "note": ["tRNA-Tyr(gta)"], "product": ["tRNA-Tyr"]}}, {"location": "[815332:815405](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08810"], "note": ["tRNA-Trp(cca)"], "product": ["tRNA-Trp"]}}, {"location": "[815417:815491](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08820"], "note": ["tRNA-His(gtg)"], "product": ["tRNA-His"]}}, {"location": "[815519:815590](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08830"], "note": ["tRNA-Cys(gca)"], "product": ["tRNA-Cys"]}}, {"location": "[815617:815704](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08840"], "note": ["tRNA-Leu(caa)"], "product": ["tRNA-Leu"]}}, {"location": "[816064:816703](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_6"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23843"], "locus_tag": ["MAAAAKME_08850"], "product": ["Periplasmic oligopeptide-binding protein"], "transl_table": ["11"], "translation": ["MNKGKSLLAGAAVLFSGALLTACGQSTGASEKLVLNWMTSAEIITMDPSKATDATSFTQMENTMEGLYQLDKDNQAKEALATKAAQSKDGLTWTFDLRKDGKWSNGQAVTAKDFVYSWQRPVNPKTASQYSYIFSGIKNADAIVAGKKAPSSLGVKALGKYKLQVKLDHKLPYFKLLLAFPVFFPENQTAVEKYGSKFGTSSKTTVFNGPFV"]}}, {"location": "[816796:817432](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_7"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_08860"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MVEKSPSTAYNLYQDGKLDTVILSAQAAKNLQKQAGYVIRKNNGTTYMQFNTKLAKFKSTKLRQAVSMALDRKALAKTLGGGFTGATTFTAAYMTKVDGQDFTQLAQDKTTKQITSYHKTLAQKTFKEALKDLQLKKLSFTLLMADDDSSKAIGEYIQSALETAFGKQVSVKVQSLPTTSPSLPRWTAAILKPASAAGMLTSLTRFHSWTA"]}}, {"location": "[817771:818014](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDSNSFVYNVWLIILLVAAYIWPIFGLVPAIYLFIKRKDEQLEKMQGWITLALIWQIVLWLLMIIFLICFVALAGSAGK"]}}, {"location": "[818064:818742](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.52"], "codon_start": ["1"], "db_xref": ["COG:COG2199"], "gene": ["dosP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76129"], "locus_tag": ["MAAAAKME_08880"], "product": ["Oxygen sensor protein DosP"], "transl_table": ["11"], "translation": ["MKLAECEALSRWIDPRYGFLSPDKFIPALEANREVYKVDCHVLEGYGQDAEFLREKGKEIFPISFNISRTDLEACNIYQKIEDTIARYGLSRDQVHIEITESALNDSSQAMVEAVQHFHDLVGYQVWMDDFGSGYSSLNVLKDYHFDVIKIDMVFLRKFDDRSKTIVRNICRMAKELGIRTVCEGVETQEQFDFLKEAGCNLAQGSLFSPPVPLDELYKKMAPYL"]}}, {"location": "[818974:819268](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYIFFMKFNIFSVNRYESYLKKYDDDQLTGAKSLHYFMEHYEESLKQFGKSQSLSIFYSSLVNLHDYNLTNGYQDGSNLLKQLRPAALVKLYSSRLA"]}}, {"location": "[819465:819738](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVFLYQKLSPLVSLNALSAFFLATGLILLTLIPVIFLYQRLINKKPSVAVFTYCQFVIAAEISSLLANQTWQWDFFTIIYLNPLSLLSF"]}}, {"location": "[820305:821148](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0226"], "gene": ["pstS1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPB1"], "locus_tag": ["MAAAAKME_08910"], "product": ["Phosphate-binding protein PstS 1"], "transl_table": ["11"], "translation": ["MLAIVTVCVIGSCEADTKGVSGTVNIAGSSALLPLAQSAAKTFMDKNPDSVINTNGGGSGQGLQQVSDGTIDIGDSDLLADEKLDKKSASKLVDHQVAITAIAPIINKDAGVKILTTEQLIKVFTGKVTNWKQVGGNDRQIVLVSRPSSSGTRATFEQYALKKHASQSNQSLETDDSGTLIQMIQSVSGSIGYVALSYLTGDPQVGIVSINGVKPSLKNVYNGKYTVWSYEHMYTKGQPKGAAKAFLQQMLSEEYGKKIEAMGYGIASKLTAAAKATHTK"]}}, {"location": "[821167:822076](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKVVQKAIAKDKRWRAVYIACGLLIVALTLLMGAFLLYQGSQTVLKAHHSVWEFLFTSDWAPLDKTGMFGGKVGAAIYIVGSLETCLLGLLICLPFAIGSAVFMTEISPKIGEKFFRPATEIYVSIPSVVYGWFGLTKLVPIIRNAFHPKMGGFSVLAASIVLAIMIFPTITTVAADAIKSVPNSYREGAYGLGATRWQVIGKVVLPAASGGILTGVVLGLARAIGEALAVAMVIGKTRSFATSLLSPTSNLTSAIAADMGNTTQGGEYNLALWSMALLLFIISIVLIVLIHKLGNGKKEK"]}}, {"location": "[822078:822954](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSRAKRKDRLMTGIFYAIGWIMLAFLLYLTLTIIFDGLKGFQWDFLGAAGNGIFNQFFNTIYLVFLSLLVSVPIGIGAGVYLAEYAKEGKFLTIFEISIESLSSLPSIVIGLFGYLAFIIWTGMSWNILAGALTISILSIPLITTETNNAIRALPVEYKEGSLGLGATKSETIRKVLIPAAMPQILTGVIMAAGRGFGEAAALLYTSGQSTYINWQNFWKVTSPTSPLNPFRSGETLSLHIWVMRTEGALNPSATQIANFTSAVLVVLALLFTLVTRRISDRMRKRNNGGN"]}}, {"location": "[822953:823712](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.3.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG1117"], "gene": ["pstB3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A2V9"], "locus_tag": ["MAAAAKME_08940"], "product": ["Phosphate import ATP-binding protein PstB 3"], "transl_table": ["11"], "translation": ["MMEDKITIEKLNLYYSDFHALHDINMHIQKNEITAFIGPSGCGKSTLLRSLNRMNDLVEGCRIDGSIKLDGTDIYNGDLDVTVLRQRVGMVFQRPNPFPMSVYDNVAYGPRIHGITDKKELDEIVETSLKQAAIWDDLKDRLKKSALGLSGGQQQRLCIARALAVKPEVLLMDEPTSALDPISTSKIEELALELKKNYTIVIVTHNMQQAVRISDKTGFFLLGDLVEFGETDQLFSMPKDERTEKYITGRFG"]}}, {"location": "[823730:824369](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0704"], "gene": ["phoU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67053"], "locus_tag": ["MAAAAKME_08950"], "product": ["Phosphate-specific transport system accessory protein PhoU"], "transl_table": ["11"], "translation": ["MRTRFDKELYHLHEAMEEIGQLCKESIFESTDTLFTGNYHEAEDTINLHHRIHKAERDIEETCLRLLMEQQPVATDLRIISASLKAVYDLERIGEIGADIADLVLNEHLSVANDMLNLKSMSQIATSMVNDAVTALANQNVELAKAVIDRDDQVDEGFDKAKAFLIDNFNKDGNPEYLINLLMVAKYFEKIGDHAVNIAKWSLFVTTGKTGR"]}}, {"location": "[824450:824978](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["phoB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFJ5"], "locus_tag": ["MAAAAKME_08960"], "product": ["Phosphate regulon transcriptional regulatory protein PhoB"], "transl_table": ["11"], "translation": ["MTEIWCVEDDESIREIEMYTLESMNFKVRGFEDGQSFFKALDNSRPDLVILDLMLPDEDGSEILHRLRSTSATEDLPVIIASAKTAEYDKVKNLDSGADDYLTKPFGMMEMVSRVKAVLRRTNRKKEDKIEKDGIKILLKRHEVFENGHQVDLTLKEYGLLKLLITHPGTVFSRE"]}}, {"location": "[824981:825128](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["srrA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L524"], "locus_tag": ["MAAAAKME_08970"], "product": ["Transcriptional regulatory protein SrrA"], "transl_table": ["11"], "translation": ["MDQIWETGFYGETRTVDVHVRTLRQKLGEAGKHIETVRGVGYRYHEAD"]}}, {"location": "[825127:826786](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.13.3"], "codon_start": ["1"], "gene": ["rcsC"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00979"], "locus_tag": ["MAAAAKME_08980"], "product": ["Sensor histidine kinase RcsC"], "transl_table": ["11"], "translation": ["MFKKIFRASFLLTSLVLFFAVLLSAIVLSIDFDHTEMSALASQADLAASGVNTSGKKYIKNLKGENYRITWINSKGKVLYDNEENPKKMGNHSRREEVAEAMKKGTGTSERYSTTLSTVTMYYAERLNDGGVIRIAITRNSFWRILVRFLSPLLLIMLLSVLVSWFLAKTISQTIVKPLNEMDLDKPLESNAYDEIKPLLTRLDSQNKQIADQMEQLHHREKELKTVTDAMLEGLILIDLDDQILLSNPAVVSLLGLHDTDPLPDDVKEIIDKNSRLAHAEGIVERNGRNIQISASPITSRKILKGTSILVVDVTKEYHEEQVRREFTANVSHELKTPLQSIMGSAELLENHLVKEEDRDSFYKKIHESSAQLLTLIDDIIRLSHLDENQRFEEIKLNLKSPVTEALEALQSSADRHGIKLETNLSDTMILANFRLVYEIAYNLIDNSIRYNKEKGKTKITVKEHRGQAILQVADTGIGIPQEAQNRIFERFYRVDKSHSRKTGGTGLGLSIVKHAVQQCHGTIRLESELGKGSTFTVIFPALPAGADDNSK"]}}, {"location": "[826867:827014](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.24"], "codon_start": ["1"], "gene": ["cbh"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54965"], "locus_tag": ["MAAAAKME_08990"], "product": ["Choloylglycine hydrolase"], "transl_table": ["11"], "translation": ["MNQEKGIYYYTTYGNPEVHAVDMHKTDLDGKELTSYKLQKDLQFHFDN"]}}, {"location": "[827074:827305](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTAIQITHLSYTYPSQAEAIFTDLSLDLDSSWKMALVGNGRGKTTFLRLLAGQLGDQRAVKSPLTFTYYPRFFAKR"]}}, {"location": "[827324:828014](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_7"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_09010"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MDEAAFELWRLEKEMNRLNLSPDLLYQPFGQLSGGEQSKLLLALAFSQDGVFPLLDEPTNHLDGASRGIVALTGPNGSGKSSFLAWLLGNKDFTCQGDWDLQTGLKISYLPQDLSSYHGYLPAFAKEHDLDYEHFLNQLKKLGLEREAFKQKIEEMSQGQKKRVALAKSLTEEASLYLWDEPANYLDLFNQDQLIKLLAKEQPAMLLVDHDQAFIEAVAKERVNLRTVL"]}}, {"location": "[828122:828236](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARYVFCKPDKPKLTCWSIIAFIVLGIIATAYLGLTA"]}}, {"location": "[828347:829004](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQEPKILPDQSKTLAATKYVKLYDLAYENGVHYYDASRRDKDQLFAFKQDPELGSAQPDAVCAVIIVKQAGQKDKLLLFYEYRYPAGSYLLGLPAGLIDPADLASQDPIKTAMIREIKEETGLSIGEKDTVEVINPLVFMASGFSDESNAIVKAVIHVDDLSALNHKGAEGTEVFGDFKLVDKEEARRLLKEGRDDYGHYLPLVAWAALCYFVSDLWK"]}}, {"location": "[829058:830087](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pal"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02204"], "locus_tag": ["MAAAAKME_09040"], "product": ["Peptidoglycan-associated lipoprotein"], "transl_table": ["11"], "translation": ["MRKISKFLSIVALGLLVGGCSQGQKAKRTKAKTETKTSQNASGDLAKLSQSRDLFAWTVYWDVDKPWQTIQKESQNIDAVGTFAAFYDENKNYELFLADGSKKLDKEMRTTAKTSKIKRYMTVVNDTRTADKSTDLLETLLASKSKADKHAKEVVALAEKYNFTGVEIDYEQIRDNLSLWKKFLVFEKALYARTKKAGLDLRIVLEPPTPVSKINFPKGPEYVVMCYNLYGYGTNPGPKADYKFLKKTVKDFSSLGKISYALSNGGFDFNGDEVTSVTGSEALKIKKKYKAKAVRDKKSGALYLKYGSHTVWYADQTTLQLWAKTLDKASGKKVGISIWRME"]}}, {"location": "[830145:830697](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.3.2"], "codon_start": ["1"], "db_xref": ["COG:COG1443"], "gene": ["idi"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8ZM82"], "locus_tag": ["MAAAAKME_09050"], "product": ["Isopentenyl-diphosphate Delta-isomerase"], "transl_table": ["11"], "translation": ["MEILDIVDKEGRPTGQTIERNEAHRIGAWHRCASVWIIRQKAGKWQVLLQKRSANKDSYPGCFDTSSAGHIAAGDEPLATIIRELEEELGIKSQAADFTFIGTFHNCYDEVFHQTEFKNREVSFVHVYSKPVDENKLVLQKEEVSAVAWFDLDEVWEKAQAKDPDFCTPVGGLKLLREYLQKL"]}}, {"location": "[831273:831969](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVLIALGGTTFGLAEETMAFYPMPIPVFLEAGYDTMTVVATIFLGTTLGTLGSTINPFSTVIASNTAGVNFARALPLRIIMLLVSLGAGMLYTIIYAEKVRKDPSKSLVYDQYEENKKKFLAFDSQADKGDFTWRQKLTLLTFVAGFFVMIWGVQSLGWYFTEIAVVFLAVSYLLFLVSGLSEHRFMESFVSGAADLLGRGCLDGRPGPGGLQKATPATRSCTSSASRSPA"]}}, {"location": "[832156:832924](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q0TUN8"], "locus_tag": ["MAAAAKME_09070"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA3"], "transl_table": ["11"], "translation": ["MQIKIKSLHYRYPETNFSLDIPDLTLSPGLICLVGQNGSGKSTLLKLLADLLPAGDAIKADGQTLSEYLASGRLSKIAYAFQDPNDQLFNSSVEKELAWSMKQAKLPEDEIARRTEAALKEFGLAEFRDLNPYDLSLSGKKLLTIASALVLDPEVCLLDEPLMSLDYPGRCLVTRLLEKRLAQGKTVIMITHDMDWLAENCQEVYAMSQGHLVYHGPVHQLFSDQELLDRLGLLPAKTWQLSQLLGLKPEVLSLK"]}}, {"location": "[832913:833732](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA2_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8R7Y5"], "locus_tag": ["MAAAAKME_09080"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA2"], "transl_table": ["11"], "translation": ["MSNNFQLTISQLSLRYLGFENLALENISAQSRGKRIGIIGPSHAGKSSLLALLAGIAGKMIPAKFSGSVRINGEELEAWRSQHEIALLLQDPASQLSGLADTVYDELSFSLLNQGKSDEEIESAVKRVTDQLDLTNLLDQSPNQLSGGQTQRVAIATALVTEPDLLLLDDPTSQMDPLGRQHFFSWLEKLSCPFLLISNELDDLAALCDQIWVIKDGCLLMADSPQTVFNQLDDPAFDKPAAWKMAKKLELKLDGCYPVNARELKEAAENAN"]}}, {"location": "[833710:834487](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0619"], "gene": ["ecfT_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI03"], "locus_tag": ["MAAAAKME_09090"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MRNNAEDLALPAWQAAIDPISKLLLILLFTLAAFAAGNLPSALSILAASFILALSTKNLPALWGMCAFSLFLILTMLLIQGLFWPGNHTAAFSVASLTFYQEGLGHAALLACRILTIIFSSSFFIQTATISENARYLENSGLSYQQVYVLMSVCYILPQMQENLRKIQLAQKARGIAPAKSLLSRIKNLFPVLLPLIVKSFQQAMNRSIALQLRGYASPKRRAASLTNDYWKDKFCHRLLIASCLVLLGVKACLTIFN"]}}, {"location": "[834483:835119](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDSKEISSKNKEISSKNKASFWSFKLSAHAMTLIPAAVGINYVAKAFAEGLKLPVWLGSLGTFLASMLGGPVAGAISGFINHVIYSLTLSPLSAVYALTSIAIGLAVGWLNQRGFFKRPVTVLLAAILIALVSAVISTPLNVIFWGGQTGIAWGDALFASLVAKHVNIWIASFLDEFVLDLLDKTVVAYLAFLIYKQLPKRLVYFFKGTEK"]}}, {"location": "[835510:835618](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGIIKFTEQQRKDYEQLPTDMAIYQTIDGSLRPCW"]}}, {"location": "[835614:836106](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDELCRLLRISREDLIANLDKSMFGFVHPDDIGRMAYFGKNFAAHTDEKYDVFLRWKTPKMEDYHIFHSWANHVLVDGVSLGFFFYSDMEESGKNNQILDTHYQKYEMYQDRLTNLPNRRFLEIFGMEEVAKLPFSQEAAGLHDSQYCRHERLQQPLWLEKG"]}}, {"location": "[836044:837154](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2199"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9ABX9"], "locus_tag": ["MAAAAKME_09130"], "product": ["putative signaling protein"], "transl_table": ["11"], "translation": ["MTLNIAGMSVYSNLYGLKKGDQLLRELSELLVSEIKEGHVYYNKDDRFLILTVAEGIDEKIKEIHEKFVNLAKNKAVDLQFSLYQILDDDQNIMMITQRANQAMKEIGLDRRVYVKKYDPAVEEDLEESYFLNNFSRAMTEGWLTAYFQPICSAKDGKTASYEALARWQDPEKGLVSPAAFIPVIEKHYLTYYSDMYMLWEVVAKLRQWKERGLDLKPVSVNLAHEDFEMPNLVEKINDLVTGAGLSWSLIKIEITERDLSNNTSRLKEQIDQLRSYGFEVWMDDFGSGYSSLNALNDYSFDLVKIDMVFVRHLDDGQLNRLLIPEITKVAHKLGLKVLAEGVEKEEQRDFLREAGCDLLQGFFVQQAG"]}}, {"location": "[837355:838384](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGIVVSSLIAVIGFLGIFDLNSDYANISVLLVIASEWVYLFLLLANLPNLFLLLWLQKHPQAAELEIRICFANLAVNAILSGFTLYSTQEGSVYFFELVLMMMVICVFPYYKAGHGLSLVALSLLMISAIILVNHVQVAWQDTYDLFLFYVIGQACIVLRRYWFRQSSWYNYILHQANGTLFVSSRTDKLTGLYNRLALREYFPNYGKQEVGVAMIDLDDFKRFNANYGHAYGDLVLTRLGRYLQKDWMNEHLRCYRYGGDEILIIASGLEDGDFVKKLQIFQAEYAKLNQQLEEPATLSIGYATGAVANEEELRKMIQLADNYLYQAKRQGKNQVVGAEKK"]}}, {"location": "[838390:838972](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYSYIPKEQIKIYRYLTVDAVNAALADLRQKGISLELESTVGTAGNFVTQNDGVVDLDYQLKLVKAAEEDPAALLAKISVGLTAGLASKFEGGRENSQALTFLHRAKKSGKVNFKLDLTIIKEEDGDEYRLVKTDGGKWSEAFNTRFLTIQEETIKDWDQWEDLREDYLRLKNADPAGLSVDLYRQAVNQIYG"]}}, {"location": "[839089:839893](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.23"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ybiV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75792"], "locus_tag": ["MAAAAKME_09160"], "product": ["Sugar phosphatase YbiV"], "transl_table": ["11"], "translation": ["MEEKKKIKLIATDMDGTLVNDAKEVPDSFAPWVLSHPDQQMVIASGRPYYTNEELFKEIKDHLIFIGDNGGLIYQQGQVLAKAGITAEEAKFCLDLFKDEPLANPILCGASQAICHDPKGDRNFLKQLDTYYIKRRYVEDLEAEVNSDEIIKFTVYIEGGAAESIYRQLPEMPGNLSAVLAGPEWIDIVNKDANKGAAVKKIADLKGIKQDEILAFGDYLNDLTMLEAAGTSYAMVNGHPDLKKIADHIAPSNNDEGVMQILRKLFD"]}}, {"location": "[840082:840502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yusO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32181"], "locus_tag": ["MAAAAKME_09170"], "product": ["putative HTH-type transcriptional regulator YusO"], "transl_table": ["11"], "translation": ["MVMRYEKLHGGVRGQNRTLALLSKNEGMKQAELARFARVRPSSISEVVDRLERHGLIERRRDNSDHRVFRLYLTEKGREQNKRNHSSWLGFVGDLLSPLGDDEKAEYLNILKKLDKKALFLEKMPKKRVKTMLKIARKN"]}}, {"location": "[840498:840807](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_09180"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MTCWATCLASLFLLVQVACDLYLSTVTANLVDKGIIGKNLPYIWQTGGKMLLVSALGLLAAFGNIYFASHQAMQVGQRLRAMLFAKVLTLSDEESAALASPL"]}}, {"location": "[840803:840926](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITRTTNDVVQVQMTFMQLLRMLLQSPIMLVAWTVLAYIQ"]}}, {"location": "[841000:841270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_09200"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MHFAMPLFKSIQQKTDRINLIFREGLTGVRVIRAFRQDQREQDRFAGANLDYSKIGIKAYTIISLMQPAVTLVLSLTNVGIVFSGQPLN"]}}, {"location": "[841280:841622](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_09210"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MEIGSLLTFLTYATQILMSFMMLYMLFIVIPRASVSAKRINEVLDAENQLQDPVKSVSMPKGPAELEFDQVSFRYAGAEEAALEGINFKVNAGQTLALIGGNGSGQASPPWST"]}}, {"location": "[841657:842656](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ3"], "locus_tag": ["MAAAAKME_09220"], "product": ["Fatty acid ABC transporter ATP-binding/permease protein"], "transl_table": ["11"], "translation": ["MFTISWKLTLVALLTVPVSVLITGTIAPRAQKLFGRQQEHLGKINGQVEEIYAGVGIVRVFGQEENEEETFAKHNDSYFDASWKAEFLSIMIFPLMNFVKNVGYLLIAVFGVIDVINGAISLGNVQAFLQYSNQFSQPLTQLANMSSTIQQTIASAERIFAVLDAEDMDETVHPAEGLKTDTKLTFKDVSFSYTDAPLIENFSLEVPKGEMVAIVGPTGAGKTTIINLLERFYDVKGGQIYLDGQETRSMSREDLRSHIAMVLQDTWLFTGTIFANIKYGREDAGDEEVYRAQGRQLHPPAAGWLRDPVKRRRDKYFPGAKAALDDCPGLFS"]}}, {"location": "[842630:842960](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_8"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_09230"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MIARAFLADPEILILDEATSSVDTRTESLIQKVMADLKQERTSFVIAHRLSTIQDADKIIVINHGQIVESGNHQSLLAKGCFYADLYQSSFWARKSEKSHDSRESWLLL"]}}, {"location": "[843030:843669](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.275"], "codon_start": ["1"], "db_xref": ["COG:COG0344"], "gene": ["plsY_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45064"], "locus_tag": ["MAAAAKME_09240"], "product": ["Glycerol-3-phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MFAMKFALLLILAYLIGSFPTGVLVGKLFYHKDIRDYGSHNIGTTNTFRVLGPKAGTLVFLVDFFKGTLATCLPRIFHLGDHHLCLIFGAAAIFGHAFSIFLKFKGGKAVATTAGFLLGYNVQFFGLCAFYFILLLLITSMVSLSSLISVVLIFISSFFHDTFLTVMSGVLVVLIWWSHRANIKRIIAGNENLVPFGLYYHIKQKHDKDKKE"]}}, {"location": "[843765:845697](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0187"], "gene": ["parE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:H7C794"], "locus_tag": ["MAAAAKME_09250"], "product": ["DNA topoisomerase 4 subunit B"], "transl_table": ["11"], "translation": ["MPKNTYDDSSIQILHGLEAVRKRPGMYIGSTDIHGLNQLVYEIVDNSVDEAMAGFGQEINVTIHEDNSVTVQDFGRGMPTGMHASGRPTIEVILTVLHAGGKFTEQNYKTSGGLHGVGSSVVNALSSYMKVHVVRDGKAYEEEFQNGGHPIGTLRCLGATKEKTGTTITFKPDPMIFSTTKYNYETIQERIRESAFLLKGVKFTLTDERTPNHHDVFQYDDGIESFVAYLNEGKGTIGKVFYFEGSQDGMEIEFAGQYSDSYSENFVSFVNNVRTADGGSHEVGARSGFTRAFNDYAKKQGLLGKKDKNLEGSDYREGLSAVLSVKIPEELLEFEGQTKGKLGTPQARSAVDSIVYEKLSYYLLENGEWAQDLVKKAQRARDAREAAKKARDESRNGKKRHKKEVLSGKLTPAQSRNPKKNELFLVEGDSAGGSAKQGRDRRFQAILPLRGKVLNTQRAKLADIFKNEEINTMIHTIGAGVGTEFKVEDSNYDKIIIMTDADDDGAHIQILLLTFFYRYMRPMIEAGKVYIALPPLYRISKKQTNLYAWTDEERDEYEKKVGKGYALQRFKGLGEMNADQLWETTMNPESRMLIRVRIDDAQLAERRVTTLMGDQASARRKWIEENVKFRLGEEESILDKVND"]}}, {"location": "[845711:848195](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0188"], "gene": ["parC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P72525"], "locus_tag": ["MAAAAKME_09260"], "product": ["DNA topoisomerase 4 subunit A"], "transl_table": ["11"], "translation": ["MPETHERIREMPLEQVMGERFGRYSKYIIQERALPDIRDGLKPVQRRILYAMYRDGNTADKPFKKAAKAVGNIMGNYHPHGDSSIYGALVFLSQDWKMREPLIEMHGNNGSMDGDSPAAMRYTESRLAKISNVLLEDIDKETVPMVLNFDDTAYEPTVLPARFPNLLVNGSTGISSGYATEIPPHNLGEVLDATIHLLKHPDASLEDLMTFVKGPDFPTGGIVMGKKGLRDAYKTGKGRIQVRAKTHIEEIRGHRQQIVVTEIPYLVNKAQLVKKIDEIRVSRELDGISEVRDETDRHGLSIVIELKKDADAQNILNYLLKNTDLQVSYNFNMVAIAHMTPVQVGLKRILAAYLEHEEEVVTKRTQFDLKKASDRLEIIQGLIKAMSILDQVIKVIRASKNKADAKKNLVAEFAFTDRQAEAIVSLQLYRLTNTDVLALQAEEEELTGKIAAYEKILADSKVLQKEIIKELRAVKKEFGSDRRSEISDETARVEVDEKALITEESVRVLISRDGYIKRSSMRSFQSTEAGDNGLPETDRVVYEGSLSTLTNLYLFTNHGNLIYRPVHELVESKWKDVGQHLSQELGLAADESIIRVFALEALDDPDLAFLLATNDGFIKQVALADLQPTRTYKSRAIMAMKMKGEDSRVITVDLAKTSEKREITLFTNQAFALKYDIDEVPQVGARAAGVKSINLKEDDYVVACLVTDPQYEDLLKVGLVTQRGAFKQMPLKLIGKTSRAKRGVLVLRNLKTKPHRIVALKAYGQNHELILITSSLRKQVIRTSDHPVGDRQSNGSFVIDVKTDGEAKELLMGRPLPDQARDVGRLF"]}}, {"location": "[848309:849245](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG1227"], "gene": ["ppaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37487"], "locus_tag": ["MAAAAKME_09270"], "product": ["Manganese-dependent inorganic pyrophosphatase"], "transl_table": ["11"], "translation": ["MEKELIFGHRNPDTDAIGTAIAYSYFQNQHGYNTEAVALGEANDETSFALKKFGFEAPRVVKTVANEVKAIMLVDHNEPQQSVEDRDQVKVTHVIDHHRISNFATIDPLFYRAEPVGCTSTVLWEMFKEQNMEIPANIAGIMLSAIISDTLLLKSPTTTDIDKEAVEELAKIAGVDYKEYGLELLKAGTNIAAKSVEELIDLDAKSFELGSKTARIAQVNVVDVPEALERKDAFLAAMEKDAKANGYDLFMLVITNVLDSDSEVLFIGDDESKSVFAKAFGKELVDSEAHLPGVVSRKKQIVPPLTRAFEA"]}}, {"location": "[849450:850476](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.3.2"], "codon_start": ["1"], "gene": ["fni"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KWG2"], "locus_tag": ["MAAAAKME_09280"], "product": ["Isopentenyl-diphosphate delta-isomerase"], "transl_table": ["11"], "translation": ["MSQRSIRKEEHLALTQMFFNAQKTNSFDQVHLLRPALPESQVNLNAVKTTWFGKELAAPFFINAMTGGSEKSRQINRQLGEIANKQQIALALGSASILTKEEDQLESFYVAREANPDGLLFANVNPLTPAKAADKIVKDLQADALQIHLNVAQEIPMPEGDRDFVWLDRMLEIKEAAGVPVIVKEVGSGLDPVSLQKLQAAGFSWFDIGGAGGTNFAQIENSRNPHPMAYLNDCGLPTALAALLAAPLTKQLIVSGGVRNPLDVFKGLALGGKFVGVANHFLHTLLNEGPDGLDEEIGRWKEELAYLFALYGQSCLPVKQSYYLDLELKNQFDQLKQYAGK"]}}, {"location": "[850486:851569](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.2"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KWG3"], "locus_tag": ["MAAAAKME_09290"], "product": ["Phosphomevalonate kinase"], "transl_table": ["11"], "translation": ["MITEKAPGKLYIAGEYAVLEQDCPAILVALDQYVRVSIKPSSSDTGLIHSKQYSQDSIHWVRRGSKIVIDNRDNPFEYILSAISFTERYCLEQKVKMDVYDLFVNSDLDSADGKKYGLGSSAAVTVATVKAILRFYGVQASKDLIYKLSTISHYSVQGNGSAGDIAASVYGGWIAYQTFNKLWLKEELASKSLSAVVGEAWPGLKIQQLVPPKDMELLIGWSQQPASTSRLVDKTNANKNNLRTEYAKFLADSRKCVLQMIRGFEEANIALIQKQIGINRRLLQHFAAINNIAIEIPRLTELIEIANKFGGAAKTSGAGNGDCGIVIVNKDTDIDRLRKEWVKNDILPLEFHIHQSELTY"]}}, {"location": "[851645:852605](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.39"], "codon_start": ["1"], "gene": ["thrB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00384"], "locus_tag": ["MAAAAKME_09300"], "product": ["Homoserine kinase"], "transl_table": ["11"], "translation": ["MSKTARAHTNIALIKYWGKKDAKLRLPLMSSLSMTLDAFYSDTKISDSEQMSFKLNGQAVSGPAADRVFAYLRAMQDRFGVKGNLAVESVNQVPTAAGLASSSSAFAAMAAAFADHYQLGVDRQELSRMARMGSGSASRSVFGGFSVWQKGDSDQTSYAYPLDEEPDMDLRLLAVEINDQEKKISSTKGMEMSKSSPFYQVWLDRNDSEIKEMEEAIKQADFSKLGSLAELNASEMHTLTFTAVPGFTYFEPNTIKAIKLVQDLRQQGLECYYTIDAGPNVKVLCQGKNSKDIINCFESSFDRVKIIEAGFGPGVTLLD"]}}, {"location": "[852660:853572](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.6"], "codon_start": ["1"], "db_xref": ["COG:COG0153"], "gene": ["galK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A6T3"], "locus_tag": ["MAAAAKME_09310"], "product": ["Galactokinase"], "transl_table": ["11"], "translation": ["MQTSYTAHGKVILIGEHSVVYGYDALAIPIQTLHIKTTVSDYAGPVWMDTKLYQGPFFDAPADYNGLKYVVKELLTRSGKNPQIKLTYTGEIPMERGLGSSATVAYGTTVALSQYLGLKLSASEVMNITNQAETINHGKASGLDAATVNSDYLVFFNKQRGVKKLSSKLGASLLIMDTGDLGNTRKAVTMVAKLLNESPDAQVRMRKLGQLADEVKAAWLEQDPESVGKFFNEAQELLASFNLSTSKIDRICQIADKGGALGCKLSGGGLGGIVIALCKDAASCEEIAQACQAEISNYWIEEI"]}}, {"location": "[853705:857245](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG3857"], "gene": ["addB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23477"], "locus_tag": ["MAAAAKME_09320"], "product": ["ATP-dependent helicase/deoxyribonuclease subunit B"], "transl_table": ["11"], "translation": ["MIKIITGRQSDPLQTEIIGRAARNYLAQPGKDTFIIVPNHIKFNTEVAAIGKVAQLQGREETSVKNLHVLSFSRLAWFFFKKADLLMPESLDDAAATMILEQIIDKRRDELLLFKNSHANSGMIKQVYSTILQVHTGQLDLGNLLERAADPAVALDLDNETRDKLHDLDLIYQDFLEIVSEKHFATKDELNIQLNQLLASRPDLVSQASFYVTDFSHFSIQEKMTMQLLAAFASEMTFAFKTADGSVIEPAAGEYDYVVQKTIKDLTGYFSAHDFAWEREKIASPASPARDLNQAWQGQGQPDLNNLQLVKADSRYAEAYFVARTIYDEVALKGCQYRDFLVLAPNLQEYETYLAPILRQNQIPFFDDLQQQMKYHPLVLLLENLGKLLQQAGDTPALLSIMKTRLLIPDWYLEGDAEAGEAAYLRDIDQLENFALAHGIKYSLWQKPLKDFTKAQVIALDQEQYQKWLDRLDKLRDFFVSKISRLARQLKSEKDSMTAVKLFFDFLVKNGVSARLEAWRLKASESGDLQQAQQPEQCWNLLLSLLKDYLLVNPENFAWADFFKMLTAAFSQANFATIPASLDAVTLSEYGMVQTSGYKQVFIIGAANGSLPQINDQPNFLTTENLASLADFFDQDAYLEDSQQLRNLDQEYQFGNALALASDRVYISYPVINSNNDLLDPSIYYKRLLKLVNGREYRQRDLPDIAEKDRTEFARQLLLFLTSPRASLGYLAYAEENSAQSPLVAKLVELSRQYEEEKAEEIAEGMAYDNNPQDISEDLAERLYGKDLLSSVSQLESYYQNSFEYFLNYGLRLRPRAENELNAIQSGNYFHRTFELLLKEMQKKNIEIDKLSELDLELLLKQVRSEILQEPLYQQFLRDPFNEYLFKVFDKTTSKVAQSYRRKQQENKMRATYGELAFGPAEKLAGLVLPLKKFAGQRKISLRGKIDRVDLFNGDQHVLGQLIDYKSSDHSFNLARFASGVDLQMIAYLDVLEKNRDLLAGGRQFDLLGAFYQYVTRKLNSVNSSSTGALFDSKLQLKENLLGGEDKLKLSGVFVSEPAWYQEVDKALEKKATSSVYRGLKLNKSGGFGKKDNFFSQDEMRELLEYVEALIEDAASEILSGQIALNPFRQGNNTGLAFSDYKDIFYFDQQLPTNSYRDLPNLKKADLLALVEKRLRQRE"]}}, {"location": "[857271:860955](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1074"], "gene": ["addA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23478"], "locus_tag": ["MAAAAKME_09330"], "product": ["ATP-dependent helicase/nuclease subunit A"], "transl_table": ["11"], "translation": ["MAVKYTPDQARAIESRGQDLLVSASAGSGKTSVLVERVIREIMDDHLEVNQLLVITFTRAAASEMKQRIKQRLQDRLQEETDASQADFLRRQLAEIDTAIISTIDSFCLDVIRRFYFAIDIDPDFSILTDATQIELLKERALRDVENGYLQNEDQAKKDRFLALYDAFAGDSNANSARDLLLDLYQFAMARPNYRAWLQKLAAPYQLETSDVVDSALWQEKIKPYLEEEFSNLADKLTALMAEADFDHEKFAKYQPAFTAFATSLASYRESLATDDPFDRQRELLAACQFDGTLRTNKEIADFVEEAKEVKEAGKQLVFNVYTGFYASSNADQQALLAKGAEIASAAAEVELAFIDRFNELKRADRVLDFSDMEQLAYEILTQDSSNSDLARAYYQSRFKEIMVDEYQDTNALQDGLIQRLKKAGKNNLFMVGDVKQSIYGFRQAEPSLFIAKYDEYGQENSAGKQRIIFAENFRSSQPVTQAVNLIFDSLLTKDFGGIDYQKEGQLKFAAGYDPEAALPTETEVLYQEDSSATDDDGELNQGDLAMVISRIQKLIADQTPIFDPKTGQTRPVSYGDIAILTRSKTSNLDIKQEFDRYGVPLFVMDVQNYFQTFELTVIMSYLKIIDNPDQDIPLVAVLRSPIFNFSSSDLAEIRLVNKSVSFYAALRTYAKKDTDLAARCRDFLAQLQDLRDFSLSHRISELLWTIYERTSFLEIVTAMTNGQQRRLNLTALYERASAYESSGFKDLYQFINFIARMRKNQKDLAQPILSENAGNSVKLMTIHASKGLEFPVVFVLGLEHRYNYQQDITGSYVLDASGLGLSFAYPFDEAEYRADTLANVWLKIAKKQKLLEEEARLLYVALTRAKQKLILAANIKLPARTDLAGLEEKWAKEISAGRLTLLDKMKVAKPLDFLAPALARAKQVKRLGEKAVSDLATGQEGSLVFVHFDPKKDQAQLPDSEAVAASGADLTEDEAAVFKQAEKLYTFSQGGYPYLDASRTTAYQAVSEIKKVFGDPIEDELADSHISELQSANRYLQPIDTEPDFLFQNTVSSAELGTASHLVLQYYDYAKGDKNAIDSCIAGLVEKGRLSQTLASMLDREALSWFVKSDFAKDFYQQPDRLHREENFATILSPKTLFKDFSDFPGKILVHGTIDGYYEAENGIILFDYKTDHVNPRKQEEAIQKLKEKYQGQLRLYERALNESGRLPVLKKYLVLLSCREIVEVD"]}}, {"location": "[860983:863776](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["dinG_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5K4"], "locus_tag": ["MAAAAKME_09340"], "product": ["3'-5' exonuclease DinG"], "transl_table": ["11"], "translation": ["MADFFAGESFAVVDLETTGTRKEEGDRIIQFGCAIVKDGEVVKTYSFMMNPHRKIPLSVTNLTGIDQKMVAGQADFKHYAPKIREILQDTVFVAHNVNFDFPFLNYELTNAGFEALTCKAVDTVELAKIAFPTLPSYKLRDLTASLEIKHANPHKADSDAYGTAVLLLKIIDKLASLPQATLNVLGSLASGLIRDTGDVIKVIADQSRQSRRKLPKDKMQVRNLVLKRQEIPAVEHGENGHFPVKDTDKRKLFKGKINYRQAQVDLIDRLHDFVEDAGQRVILAEAPNGTGKTFAYLFAYAYQLYSGKKLVIATPTKVLQQQLLDQEIPQLLRVTGLGLNAEMVKSSSHYLDLDGFAQTLYQNSPNKATLLLQMQILVWLTETTTGDMDELQLTSQQLPIFNQLKHPGDARVASQFASVDFWNLARRRQEQANILVTNHAYLVNHYMDSIWGQNPYLVIDEAHRFSENLQTARMDSLHLEAIWGSISHLRNLLYFTDNNLLRQSEENVQLQFMLDLLDQESLDLIHSLNRMQKYLYQHKGQAISKVFLPKKSLQLTIQGQDLFPENSQFRPLLRQFQQQLEQVRIHTNQIRYLLEQEKDRFLTDEESLLEELNDQVDLLEFYTGKSYQLADLLNQPLLDHLGFVVNVTNPEDALSSNLHWLSLDSSEELHKIYDRFDHISMISATITNDGNFAFAKQLLALPNLGVSCYKGKASFPMADHLEILAMDEGQPEPDSPRFLEELKNILTKDLSGQKHVLCLFTNLDLIKQLYFELLNDPRVKDYELLAQGLTGSNERITRRFVIAERSILLGADSFWEGVDFHNCGIDLVIATRLPFESPDLPEVSLRQHYLAQRGWDVFQEDSLPRAVLRLRQGCGRLIRGEDDHGQFLILDPRIWTKSYGPAFRSSLPAPVQKVKASELKKKLKFERKNA"]}}, {"location": "[863768:864263](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLNERVKNVLQYLAWLVFFLFLLYAGTVAVVAKAAKPYSQQKEKVAKLVKQTSMKQIDKYYHLSRGVKSYSASGKTSKGKAAYFIYLPDKHKAYYYSASDGVSESTVKSSFQKSYPKKAIKEVNLGWYQKQAVWEVTAVNADGSYCYAIYKFKDGQLLSLVDKL"]}}, {"location": "[864324:865623](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.22"], "codon_start": ["1"], "gene": ["asnS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67572"], "locus_tag": ["MAAAAKME_09360"], "product": ["Asparagine--tRNA ligase"], "transl_table": ["11"], "translation": ["MTELISIRESSKHVDEEVRMHVWLTDKRSSGKIVFLQLRDGTAFFQGVVRKNDVSEEVFEAAKGLRQEASFYLTGTIHEDARSHFGYEIQISDLEVVSNNEGYPITNKEHGIDFLLDHRHLWLRSRRPFAIMQIRNRIFKATVDFFENEGFVKFDAPLLMHSAPEGTTELFHIDYFNHDAYLSQSGQLYGEVGAEAFGKIFTFGPTFRAEASKTRRHLTEFWMMEPEMAWMHQDESLDLQERFLSYVVGQVLEHCEYELSILGRDVDKLRPAAEGNYTRLSYDDAVKMLQEAGKDFKWGDDFGAPDEAFLSEQFDRPFFIVNYPVAIKPFYMKKNPENPLTYLCADVEAPEGYGEIMGGSEREADYDTLKAQIEEAGLNLDDYSWYLDLRKYGSVPHSGFGMGFERVIAWICKLDHVREAVPFPRMINRMQP"]}}, {"location": "[865714:866362](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3935"], "gene": ["dnaD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39787"], "locus_tag": ["MAAAAKME_09370"], "product": ["DNA replication protein DnaD"], "transl_table": ["11"], "translation": ["MASYNFYRQLGVTSISNGLIAYYARLGLTEAELALVLQLEAFFQRGNYFPSNEKIAANTNFSVSDVTLLIQSLLDKGCLSLRQAKDASGKISSRYSLDELYDKLDQYLDQHVQVKDMNGEVLEEAKDSLNNDPMSDLAREFEIEFGRYLTPIEREEIQDWLNLDHYAPEIIKLALREAVLSRAMSFKYVDRILLNWQRMNLKTASEVQQYLERNR"]}}, {"location": "[866383:867013](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pdg"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46303"], "locus_tag": ["MAAAAKME_09380"], "product": ["Ultraviolet N-glycosylase/AP lyase"], "transl_table": ["11"], "translation": ["MEKDEKLLSDEEARNVLKRIDAMFPEAKGELNWDNRFQLLCAVLLSAQTTDKMVNKVTPQLFADFPTPEAMAAASQEEIEADISHLGLYHSKAKHLKEMAQTLVAEYGGQVPGKKENLVKLAGVGNKTANVVLAEGWGVPAIAVDTHVSRIAKKFKIVPEKATPLQVEKRLEELLPKDEWIHTHHAMIFFGRYKMPARAKNPDPYSYLD"]}}, {"location": "[867047:867851](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.104"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ybjI_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75809"], "locus_tag": ["MAAAAKME_09390"], "product": ["5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjI"], "transl_table": ["11"], "translation": ["MIKLIAFDMDESFMPRKGFYERERWARDFDLLRAKGIRVLPISGDQYQQVADFFPMKDEMTIGGLNGSVIFEKGQLIKADEIDRSMVQKIMQIIAENGLAQRTMLCGINYCYFLEQADPAFRERMNFYFSHNQNVSSFLPLPDDKFTEIVIVPGTDRMDETEEKLKAVCAEKLQIFNSGVTSIDILQPEVSKGNSLKWLASRYDLSPEEIMAFGDGLNDIEMLKFAGQSYAMKNAREEVKEAAKFVTKLPAAENGVLDTIEKEVLGM"]}}, {"location": "[867945:868311](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTISTQMLTAKVSGVVDFYGSVSVMREDSNPTTINHLQADSPEGMEMGHVDLRENSDLRRKLSVECNISKDTDIPPVLIIHGTKDRTVNTIGSTDLYLKLKECGKEASYILINGADHDGG"]}}, {"location": "[868307:868637](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIKKWSYPDDLTYPIFVYVQGSAWMKQNVYRDLPQMAKIAALGYVVVVVEYRGSDVASSPKPILDAQNGRTLHEAARARIPGRPKAGYFSGQFFWRSHCRLRQLFPGR"]}}, {"location": "[868796:869798](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.28"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["ldhD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59642"], "locus_tag": ["MAAAAKME_09420"], "product": ["D-lactate/D-glycerate dehydrogenase"], "transl_table": ["11"], "translation": ["MTKIAMYNVSPIEVPYIEDWAKKNDVEIKTTDQALTSATVDLAEGCSSVSLKPLGPVDEEVVYQKLSEYGVKCIGLRIVGFNTINFDWTKKYNLLVTNVPVYSPRAIAEMTVTQAMYLLRKIGEFRYRMDHDHDFTWPSNLISNEIYNLTVGLIGVGHIGSAVAEIFSAMGAKVIAYDVAYNPEFEPFLTYTDFDTVLKEADIVSLHTPLFPSTENMIGEKQLKEMKKSAYLINCARGELVDTGALIKALQDGEIAGAGLDTLAGESSYFGHTGLTDSEIPEDYKTLAKMPNVVITPHSAFYTETSIRNMVQICLTDQLTIAKGGRPRSIVNL"]}}, {"location": "[869847:871776](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDAIKIEDFLHYANLGKLKAKGQNLVWVKGLPDASKKDKYLYTLETLQDGQVSPLSSFGQERDFVFLDENTVCFAGNRTKEKDKTFIYQLSLKGGEAREIAALEGEDFAVENVLADGSLLLSRRVDLREAEKKQDPDEKDYVVLDEFPAYFNGDGIISKFRDRLFLFDPAKKELTELLKDDPYFNFDLHYVDGTDLYFTGDSYTQSKARKSALYQLDLNSLEYSQLLPKEEWSIFDICVLKGQLYLVATDEKRYGSEENPQFYKYDPEFKTLSLAAAWEDCWGDCVDTDLCLLDVRTSRVFEDCLYFTTTKVDHTVLECFDGEKVTPVFEFPSIEFFDFTSDGTCWFTGPNANETQQLYSYKDGQLTKHSSYNEDALKGRYVASAVQVDYQDYAGNTQHGWVLYPKDFAKKQKYPAILDVHGGPKTVYGTPFFHEMQVWASQGYFVFFANIYGSDGQGNDYANMRGHWGREDYEDLLKFTDAVLAKIPQIDAGRLGITGGSYGGYMTNWVIGHTDRFKAAASQRSMSNWLSDAFMSDVGPWDDLYSIDANNLDEKLDYAWQQSPLKYAKNVTTPTLFIHSLEDYRCPLPEGMQMFRALLYYGVESRMCLFKGENHELSRSGQPKHRIRRLKEITAWFDQHLR"]}}, {"location": "[871922:874235](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0744"], "gene": ["ponA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04707"], "locus_tag": ["MAAAAKME_09440"], "product": ["Penicillin-binding protein 1A"], "transl_table": ["11"], "translation": ["MATNSPEQKNTRMARLHANDGAKKARPVLRVIKWLFLLFFLLIISGIGVFAYYAKDAPSISTSKLQSGGTSSFYTTDGKFLMSLDSQTRVYAKDSAIPQTLKDAVVSIEDKRFYSESLGIDPLRIVSSFLTNVKSSNTVAGGSTITQQLVKLTCFSTASSQRTLSRKAQEAWLAMKVEREHSKDQILEFYINKVYMNYGTYGMGTAANYYYGKSLKQLDLAQLALLAGMPNAPVAYNPYLYPKKAKYRRDLVLKAMYDNKKITKKQYLAAKAEDVQKGLKKHTTSTESKLRKVDDAYIKEAIAEVQADGYDPYNDNLKITININQAAQNKLYSLANSGSVAFTSKKMQIGATVINPKNGHVIAILGGRKLPSVQLGLDRAVQTGRSTGSTIKPVLDYAPAIQYLNWGTSHILQDTKYTYPGTNIQLYDWDNTYQGSMSMRYALVQSRNVPAVRTLNEVGISRASLFARKLGVNVSANAGLSTAIGADASSLQMAAAYGAFATMGVYRKPQFVSKIETADGQVRKYNSAGKRVMKKSTAYMITDMLKGVFTSGTGTTAKVSGIYEAGKTGTVKYSDSDLVKYPSYSSTPKDSWFVGYTKQYSIGIWTGYDNLKDGTISGVGQYSAQLIYKYMMSYLMADEDSTDWEKPATVVKKRIVKNTEDKVASPGQPYTWELFVKGHSPTDADYVSSSSDTSTASSSAVTSSVKSSSSSSFSKSSSSSSSSEKSSSSSSSSSSSAASSSSAASSSQSSEAPKTEENKRDNNNDDKQDN"]}}, {"location": "[874221:874854](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.22.4"], "codon_start": ["1"], "db_xref": ["COG:COG3331"], "gene": ["recU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5KXY4"], "locus_tag": ["MAAAAKME_09450"], "product": ["Holliday junction resolvase RecU"], "transl_table": ["11"], "translation": ["MVKYPTGSVMPLRAAQRQGKKALLKKASFSDRGMTLEQQINESNQYYLDAGIAVVHKKPTPIQIVKVDYPKRSRAVIREAYFRQASTTDYNGVYQGYYLDFEAKETRNKTSFPLKNFHEHQILHLEQCLDQEGICFALIGFMTLERYFVTPASFLIQAWQNWKAAGKSSMTLAEIEANSFEIKSGFCPALPYLEAVDRIIADRKQEHGNK"]}}, {"location": "[875014:875575](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50838"], "locus_tag": ["MAAAAKME_09460"], "note": ["UPF0398 protein YpsA"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQRIWISGYRGYELGTFGDKDPKITVIKYAIKQCLTNLLEEGQLDWVITGANLGVEQWSAEVALELRQDYNLRLAVMLPYLDFGSRWSENNQLKLQNLKNQADFWSATSKEPYQGGRQFREYQQFMFQHTDRALLVYDPEYPGKSKYDYEMIEKYLEKRDDYQLDLVDYYDLEQAARDYEENQREW"]}}, {"location": "[875650:876115](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["gpsB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02011"], "locus_tag": ["MAAAAKME_09470"], "product": ["Cell cycle protein GpsB"], "transl_table": ["11"], "translation": ["MADLNDIKLSAQDILKKKFRNKVKGYDPDEVDSYLDQIISDYETFQDIIEDLYGRIGELQGQVIDAEKQVKQEEQAVKEIPAAVPASATTESKEEDVKTYVPSSQRQRADFSLDNSSTSGEISTNMAIIQRLSTLERKVYNLEQRVYGIQDLQK"]}}, {"location": "[876631:877756](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.173"], "codon_start": ["1"], "db_xref": ["COG:COG0116"], "gene": ["rlmL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9K0V4"], "locus_tag": ["MAAAAKME_09480"], "product": ["Ribosomal RNA large subunit methyltransferase L"], "transl_table": ["11"], "translation": ["MEEYQLYTTMGAGFESVVAKELQSLGYETTTENGRVFFKGGQKDIVRCNLWLRTADRVKILLKEFTAKDFSTLYDETYAYDWAMLLPVDAAFPVKGRSVRSKLHSEPDVQSIVKKAIVDKMAAQYHRRGKLPESGSLYQLDVNIYKDTVRLSLDTTGSSLFKRGYRIEHGGAPLKENFAASLIKLTPYDGTHPFIDPMCGSGTLPIEAALIARNIAPGTWRKFAFDYFDWFDPSLHEELLEEAKSQVKPAEAPIWASDIDQSILEVAKLNAHNAGVLQDIRFKQVAVKDFTTDLENGVIVSNPPYGKRLKDKQGAEELYRQMGEVLRPLTSFSQYYLTADPDFEKCFGQKASKKRKLYNGNLRADYYQFWAKRK"]}}, {"location": "[877765:878740](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.53"], "codon_start": ["1"], "gene": ["cpdA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00905"], "locus_tag": ["MAAAAKME_09490"], "product": ["3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA"], "transl_table": ["11"], "translation": ["MLMKAITDSERPDFWLISDPHLIADDLHDFGARFKKMRQTSAGKDIAYQDLALRAFVRKVVRAKPAALIITGDLTFNGAKRSAERLGEIFAPLKEAGIALLVIPGNHDIYDGWARSFSGSEERRVAQISPADWKEIFSASYDLAASQEPGSLSYSVNLNPHWRLLLLDSNLYSSQFSYTHPMTSGGTDDGERRWLSQELVEAKRLGQDVLFFIHHNLYSHNSVVHDGFKLNNAGEIVQLLSQYPVRCAFSGHIHAQHIMSGWVPVPEVVSSCFAESDQGYGVVELTANSLSYRRHDFDIDNFLTAEEKKQPAFCGFSRLSEGSF"]}}, {"location": "[879154:879511](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKHLIFLGDLGVIYYSWLLLVLFLTVIFCLEGSQFINLPTVITGIIFLLLLVFTWKKSYISFDGQTRLRLPYRKEFVLDEKTELVTSWRGFEVYRARVSRHQSIDYLVFRRKRDRNG"]}}, {"location": "[879494:881183](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.3"], "codon_start": ["1"], "gene": ["fhs1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XC12"], "locus_tag": ["MAAAAKME_09510"], "product": ["Formate--tetrahydrofolate ligase 1"], "transl_table": ["11"], "translation": ["MTEMVKSDIEIAQAAEELPITDVAAKLGLTSQDLEPYGYDKAKVNWQAIKRSEENGHLGKLILVTSISPTPAGEGKSTMTIGIGDAINNQLGKKTVIALREPSMGPVFGMKGGAAGGGYAQVIPMEDINLHFTGDMHALTSAIDNLSALVDNYIYQGNELGLDPEKIVIKRGLDVNDRTLRKVTIGQGSKFNGVERPASFQLTVGHELMAILCLSKDIADLKERIGKVLVGYTYEDEPVFVKDLGFQGAIAALLSTALKPNLVQTLEHTPAFVHGGPFANIAHGNNSILSTNLALHLSDYVLSEAGFGSDLGGQKFLDFVSTKLEKKPDAAVVVATVRALKYQAEKSTDHLKEENLDSLKEGFANLDRHMNNVRSYNIPVLVVINKFPTDTEAELDLLKSLIEEQGFPCEIVTAHDEGSKGAKAAAEKIVELADKSDYEIKRSYDLDDDLETKIEKVAKRIYHAADVEYTDKAKDQLVKLKKMGKDKLPVIIAKTQYSFTDNVKELGAPTGFTLHVKGLSLRNGAGFVVVSTGHILDMPGLPKHPAALDIDVDETGKISGLF"]}}, {"location": "[881194:881647](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.23.36"], "codon_start": ["1"], "db_xref": ["COG:COG0597"], "gene": ["lspA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9HVM5"], "locus_tag": ["MAAAAKME_09520"], "product": ["Lipoprotein signal peptidase"], "transl_table": ["11"], "translation": ["MQIVGLVIAALIAAADQALKYYIVTNYRLGEVHDVMPGLFSFTYIQNNGAAWNILSGKMWFFYVVSAVAIAVVLYYYFNKNYSHWMFKSGLVLVLGGIIGNLIDRLHLKYVIDMIQLNFVQFNIFNLADAAITVGVILIFSYLLFIERED"]}}, {"location": "[881648:882560](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.23"], "codon_start": ["1"], "db_xref": ["COG:COG0564"], "gene": ["rluD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P33643"], "locus_tag": ["MAAAAKME_09530"], "product": ["Ribosomal large subunit pseudouridine synthase D"], "transl_table": ["11"], "translation": ["MNREYELTAEESGQRLDKYLAGEMTDLSRSRIKELVQAGEILVNGKKSKVSYKVQKDDLIQVIVLPLEPLKLEAENIPLDIVYEDKDVIVVNKPQGMVVHPAAGHPSHTLVNALLYHTRDLADSPEGFRPGIVHRIDKDTSGLLMVAKNAAARESLEKQLAAKSNKRQYLAIVHGNFAEEGTIDAPIGRNPKDRKQMAVVEKGKSAVTHFKVLEQYQGYSLVECQLETGRTHQIRVHMAYIGHPLAGDPLYGPRKTLPGHGQFLHAKTLGFEQPSTGEWLEFSVQPPEIFQQTVADLRKKRVK"]}}, {"location": "[882561:883617](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_09540"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MKRYLILEDGSSYAGDGIGAMITATGELAIQTSNYGYQEVLTDPSNAGKIIVFTTPMIGSNGINAVDYESIQPSVRGVIANDIALNITDNDTFQSLGDFLQEKKVPAIFNVDTRALVRKLQNLGPLKASIMDTNDEHAFDQIRALVLPKNKSSLVSTKNAYAAPNVGKTIAIIDLGLKHSMLRELSLRQVNANVLPYNATVRDIKTLRPDGIIISNGPSQAKEVLPYLRQILDEYLGKLPILGVGLGFLAISAYLDLSLVDLPQYQNGTNFPVIRQSSGQIWQTAMNIGQLVLPDDTAVTFNEEYFDLHNELLAGFSNDKLQLLAVAFNPEGAPGTEDAQVIFDDFLKLVK"]}}, {"location": "[883616:886808](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63740"], "locus_tag": ["MAAAAKME_09550"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPRENDLNKILIIGAGSALVGNVANTDLLTKSAIEALLEENIQVVLVNPNPASVSTDPLPGLTVYLEPMTLDFLKRILRMEEPDAIMTAFGSLMALDVTKKLQADGILHQMGIKLLTINERAISMSNPQKRTRFLEANHLPVGQTWFLDSLGLKYDEHLQEQLENKLSFPILLTKKYYFERDDHISFKSSRDLAQYLRQESQDRDFRPASYRMTEDLSNCEEVILDLLRDEDGNLCFVGATGSLEPVGIDSGDSVLIKPLLTMNNDQIQVLRAEAGKIADKLQLVGFLSVHFAISHRGTEMVYKLLAVKPRLTRTAVMDQKTSLYSIGYVLAKLAIGLRLNEVTDPATGLCAAIEPVSDTVSIKIPYWSFAKTGYNHYQLGKHTQSTGEAVGIGRNFESAFFKALISSNDLEVLWSAFIKERGKSDEVILDDLRHPNEMHLVQLLAALSQGIDYQAISSVLNIHPVYYQKLRYLVKIGRDIAHAGELDHDLLLKAKIRGFSSDLLAELTKMDVHDIFPLLNEKDVRPTFSAIDDSAGVYQPKVKVYYQSYGVESELEFAKDPEKKKVLLLGMPPFQVSVTSEFDYMLYHALAALKKEGYETVLLSNNAESASMDYHLADRVYFEPINLDSIITICEEEGITDVVTQFSGKQISALRLPLMSHGLKIFGQHEIDRLLPISHLDTAKISEVKRVPYLATTDYQAVLAFVARVGYPVLVGGYHQKSKQKSAVIYDQPALEKYFRENQVDNYTISQFISGVKYEITAITDGEDVTIPGIVEHLEQSGSHASDSIAVFGPQYLSKEQAEKLRVETIKLIRSFKIRGIFNLHFLLKGREIYLLQIKTYAGHNLAFLSKSMNKDLVEYAVKVLAGRKIADLGYPNEVWPVDEFIHVKMPVFSYLNYSSDNTFDSRMKSSDAVMGRDSRLAKALYKGYEASDLHIPSYGTIFFSVSDEEKQEVANLAKRFARLGFKITATEGTANILAEAGITTGVIAKIQEGSRNLLERIQTHRIVMVVNVVNLSDSAVEDSIKIKDQALNTHIPVFSSLETVQLILDVLESLALTTQPI"]}}, {"location": "[886901:887183](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67382"], "locus_tag": ["MAAAAKME_09560"], "note": ["UPF0237 protein SP_0238"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRAILTTVGQDKTGIIAGVSSFLAEKDINILDLSQTIMNGYFTMMMVVDVSDEADFSALSTELKELGKKLGVEINIRNEKMYAAMHEMSGGLE"]}}, {"location": "[887182:888526](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97ST4"], "locus_tag": ["MAAAAKME_09570"], "note": ["UPF0210 protein SP_0239"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLRRIMETVNMIDNENLDLRTTTMGISLLDCIDSDSDRACQKIYDKITTKAENLVKVARELETEYGIPIANKRITVTPISLIAAASGDSDYVKYAVTLDKAAKAVGVDLIGGFSALVHKGYQNGDRVLIKSIPQALKETERVCSSVNVGSTRSGINMDAVKEMGQIVIENEKINPLNNGNLVIFCNAVEDNPFMAGGFHGVGESDVALNVGVSGPGVVKTALEKVKGESMDVVAETIKQTAFKVTRMGQLVGQEASKRLGVDFGIVDLSLAPTPAQGDSVANILEEIGLESVGTHGTTAALAMLNDAVKKGGIMACSHVGGLSGAFIPESEDAGMIAAAEKGILTVDKLEAMTAVCSVGLDMIAVPGDTPAETISAMIADEAAIGMINNKTTAVRVIPVPGKEVGDSIEFGGLFGYAPIMPVHKESSAAMINRGGRIPAPVHSFKN"]}}, {"location": "[888592:890284](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1293"], "gene": ["rqcH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DQ36"], "locus_tag": ["MAAAAKME_09580"], "product": ["Rqc2 RqcH"], "transl_table": ["11"], "translation": ["MAFDGLFIHSLLNELQDEITAGRLHKIYQPFNNDLVLVFRKDRKNKQLLISANPEYPRLYLSKESFSNPNVAPLFVMVLRKYLEGSVLQEISQVGLSRIVNFSFSNRNELGDEIQLILSVELMGRHSNVILYDKQSGKIIDLLKRINPDENRARLLLPKAKYELPPLTPGINGFTLTESEFSSLKRDYPTPADLAKQMDGLDGDDRQELTGYLEDDYSFSSLKTFYNQFSSPKAYVLLTPKHKRRIYPYLPYHLEMTKESSSTNLNEALDEFYAYQANRDWVKQRSQQVTRVVTNETKKLQKKLKKLEKQLDSAENSENLRVSGELLTAYLSQVKPGMEKIDLPNYYEGNQPMTIKLDPALSPQRNAQKYFKRYKKMRDSIKHVTEQIEITEENLRYLDSVQTEIDNADPEDVEAIKEELINQGYLRAEQKKRQKPKLTEKSLNKFKLSSGKTVLVGKNNLQNDWLTLKKADKNHYWFHVKNIPGSHVILTDSQPSDSDIQESAEIAAYFSKAKNSAHVPVDYIQVKRIKKPNGAKPGFVIYTGQKSIEVTPEADKILAKRID"]}}, {"location": "[890483:890978](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0N2"], "locus_tag": ["MAAAAKME_09590"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MKIALVTDSTANLSAAEIEKYNIKVIPIPIYIDDKEYLEGINITSEELFESQRSGSSFPTTSQPKMGDLITTFDNFKDEGYEAIIYICLSSGISGSYSTLMGIAQSNPDYHLYPFDSQITVRLQGYQVLAAAKMIEKDSYSPEEIIAKLAKSGQLSTNSLSLMT"]}}, {"location": "[890974:891364](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "gene": ["degV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32436"], "locus_tag": ["MAAAAKME_09600"], "product": ["Protein DegV"], "transl_table": ["11"], "translation": ["MNNLCRGGRLSNASAFIGSLLNIKPLLTFNDEAKIVAYDKVRSMKRAVKKIEKESLEKIKSLDIPEDKLRILILQSNDAAQAEEVMNYLKAEVPKAVFEMDEFSPVIATYLGEKSIGITWMIDVEQMEF"]}}, {"location": "[891419:892490](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIKKWAVMALFCGIFLTGCSNQTASKEASNSSNKSSQSSKSSVKKTSKASSSSAKAVKLDAAKLTPQESGSLITLYCADRFGGEWSNLLQAGQNGSLTITLHKTSDYEFKQPGSGYAYEAAASGQTGTTYYTLSGSTFYFYQGVKVAGSGSSLGQATKQEMADYIVKKYQLAEFKQLAKKVEIVDKSGQTQRLSDGRSGYFTIPAEMQGTWYSASNYDGETTHSKYVFGQSTIFIQDDKYDTNGTTTTLYARSSDFKMPLPPTEKQMDQVKGWGLGHLYQQDGLNYMNVMGWYQTAGSGTSFAVHTENIAGNNVQILVCASGARPWVDGIAYRSQAMAEKMQDQHFDDLHYRDDE"]}}, {"location": "[892549:893461](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSNSKWAGLAAAACILWGISGLFAKGLFNLDPRITPIWVTQMRQVCSGLILLTVAQLTGKHPWQVWKDKKSAVQLLAYAVIGVLPFQYCFFLVVAQANAAIATVIQFIGPFFVLAYLTLTKQEALRLIDVAASLLAFGGVFLLSTHGNIHDLRIAPLTLLFGIMSAVGAAANSLLPQALVTRQSTISVTGWGLLISGLILTAIHPVWPSLPSSPTVYLNLSVVIVMGTIIPTLWQNHALGHISGMTVAFMDAFEPLASMIGSIIVFHFQPQMMDYAASVMIIFAVLVLNWTPRSKIKSRVEK"]}}, {"location": "[893708:894371](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.95"], "codon_start": ["1"], "db_xref": ["COG:COG0111"], "gene": ["serA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9T0"], "locus_tag": ["MAAAAKME_09630"], "product": ["D-3-phosphoglycerate dehydrogenase"], "transl_table": ["11"], "translation": ["MALVRPYIKRATSIADAVKDVDFVTAHVPKNEETTGLIADAKIAQMKPNTILLNFARLGIVDNKAVAEALAEHHLGKYYTDFSDATILHNDDIVLMPHIGGSTIEAEINCARMAAKQTIEFLETGNIINSVNLPNVSAPFESDHRITLIHKNIPNMIGQISTYLAGRGINIENLVNKAKDKYAYTMIDIDEIDQATQDKVVPNLEQIPAVTRVRILTHKK"]}}, {"location": "[894384:894888](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.290"], "codon_start": ["1"], "gene": ["pdxB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01825"], "locus_tag": ["MAAAAKME_09640"], "product": ["Erythronate-4-phosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MYQIKTYNAIAKEGLDEFGDNYRINQTDNPDAYLIRSVDLHDHEFPKNLKAIARCGAGYNNVPLDKALENGAVVFNTPGGNANAVTELVLASMIIASRNIVAAANWSANAKPGADITLRTEKEKTSFNGTELLGKTVAVIGLGHIGSLVANACLDLGMKVVGAMTHT"]}}, {"location": "[894906:895893](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.52"], "codon_start": ["1"], "db_xref": ["COG:COG1932"], "gene": ["serC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80862"], "locus_tag": ["MAAAAKME_09650"], "product": ["Phosphoserine aminotransferase"], "transl_table": ["11"], "translation": ["MSVMEISHRSALYKDLYAETKANLLELMKLDPAEYDVLFLSGGATQQFSTIPLNLARKYHRIVVVDSGHWAQRAAEDAAKVPGLTVDIVASAKDNNYTAVPKIPTEFDQDYDYLHITTNNTIMGTAYRDDQIPKTDIPLVADMSSNFLGQEYAYSKFAVIYAGAQKNLAPAGLTVLVIRKDLLVKHDDLPGLFDFATEAKKESALNTPPVFQVYVAGLALKWLKEKGGVAGIEAINQEKSKLIYDCLAESKNFESKVDPDSRSIMNVPFVSGDPDLDAEFVKEATTHQLLNLKGHRLFGGMRASIYNAMPLEGVQALCDFIKDFDAKH"]}}, {"location": "[896344:896968](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0406"], "gene": ["pspA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D3DFG8"], "locus_tag": ["MAAAAKME_09660"], "product": ["Phosphoserine phosphatase 1"], "transl_table": ["11"], "translation": ["MTTFYFIRHGQTFANMAGLKQGTINNPNTYLTDLGREQAQKLADQFDISNFDRLFVSPLVRTKQTAEILNKKAGLPVETDDRLLEISYGDWDGQKYSELMAEYPNYFSPLVNDVTEDYVQAAPKAESFAHVEMRTAEFVAEISQKYPEDQIVVVTHGFTVRSFAINATGGQGLQILEPDNCSVTKILVDPLSFKQHLVYYNRTVTAF"]}}, {"location": "[897026:897368](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSNINVEERIRELSTIKVLGFFDQETTLYIYRETIILSIIGILCGYLAGIGLHTFIITSLPPDNAMFDPAMKISNFLYSALILAGITALVALIMHKKIKSVNMLDALKSVD"]}}, {"location": "[897551:898070](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0778"], "gene": ["nfrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2G0Z5"], "locus_tag": ["MAAAAKME_09680"], "product": ["NADPH-dependent oxidoreductase"], "transl_table": ["11"], "translation": ["MKFTKLLKSRKSIRTYTGKPADKKQVKKIIEAAELAPVACGLYENYQLTIINDPKLLKEIDQEAAMIFGDLESHPLYGVPTLILVSAKKQDEMAYASAGIIAHNMVLAAENKGLGACYLFGAAAALAAHPETVMKLDLPAGFMPVCGVGIGETEEELTIRDQKLDRIGINEI"]}}, {"location": "[898519:899089](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.2"], "codon_start": ["1"], "gene": ["pyrB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65618"], "locus_tag": ["MAAAAKME_09690"], "product": ["Aspartate carbamoyltransferase"], "transl_table": ["11"], "translation": ["MGLVNAGDGSGQHPSQSMLDMMTIYNEFGRFDGLKIMIVGDLTNSRVARSNMEILNTLGAEVYFSGPEYWYDAEEFSKYGTYVKNIDDEIPELDVLMLLRVQHERHNGTEAKTEQLYNAAYGLNQRRYDMLKDDAIIMHPGPINRGVEWDGDLVEAPKSRYAVQMHNGVFVRMAMIEAVLRGRKLGGLE"]}}, {"location": "[899088:899229](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAILLKNGLVYQEGEFINEDVSQPSSLAWTLVSWLQARKPTWPSLT"]}}, {"location": "[899440:900517](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0582"], "gene": ["xerS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7ZAK7"], "locus_tag": ["MAAAAKME_09710"], "product": ["Tyrosine recombinase XerS"], "transl_table": ["11"], "translation": ["METKKYLSLIDREMAQMPDFVKEYQLETRHSLTTSYQYLTEIRRFFSWLIAENLTQAKSSSQVLPSDLEKLSRSDVMLYLDKLEHSKNKQGHLNSPTTVNRSLNALRSLYKYLTITADKNNGEPYFDRNVMLKINFLPYTSTLNYRAHALEAHMYTGNLKYQFMDFLDQKFAGLCSGRALSSFKQNKERDMAVIALILGTGIRVSECAGVDMKDLNLKEATLDITRKGGQRDSVPVADWTLPYLEKYLAIRADRYKAPATNKAFFLTRYHQECRRMTTNAIEKMVGKYSAAFGHPLTPHKLRHTVASELYQATKDQVMVAQQLGQKGTSATDLYTHVDQREQRAALNASAKQNKSSSD"]}}, {"location": "[900749:901898](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.165"], "codon_start": ["1"], "db_xref": ["COG:COG1929"], "gene": ["garK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23524"], "locus_tag": ["MAAAAKME_09720"], "product": ["Glycerate 2-kinase"], "transl_table": ["11"], "translation": ["MIKFITASDSFKESLSAKAACQAMTDGIKRVFPEAEVIQVPMADGGEGTVDAILSCIPGEKVEKMVTGPDGRRLLASYGLINDGECAVIETAAASGLGLLAKKGRDPMTATTFGTGELLLDALKRGVKKIIVGLGGSATNDGGAGLAQALGVRFLDKNGQELPFGGGSLDQLARIDASGLAPRLKEVEIILASDVTNPLTGLNGASAVFGPQKGADKEMVQKLDASLHHYAAVIKEQVGKDVENVPGSGAAGGLGAGFLAFSKCQMKAGAQIVIEESHLAEKMRDADYVFTGEGGIDFQTKFGKTPYAVAQVAKKLGIPVFALAGQVGDGIDSLYEAGFTGIFGILPGICSLPEALAGGGGNLARTSENVARVIKAARVNLQ"]}}, {"location": "[902037:903207](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEYYLDYREQVRNILDALDDSSTSLRLGAVAIENLLTLARVDLDDEDEEDSDDSDAIEEADSGGDLADAETEDKKQVKIIRHEEPTASSHYQLCRFSRALKGGSFYTEQGDLVSEINELAVRNLNVENGDLVELDLSSQPPRVVRIVEAGNLPSNIATMSYGIVERDPAGDLYVSRSAMGESLSECAGIDRYEVPAIIDAGQTETGFVHEGDIVDLAWYKNSPSNMIVRWVSQTKGEEVPKKEKPAEKKVKSEKEDKDKEESVTTLNFDLHGRSVAVVIGNELRSQEIQKMVGEHHGRCKVIDAFKFSDTESFYKHALKRADVTVMVQNLNKHSTSKALRKYAKRLAIADSADLSSIERAIYRAMHGLPAYETSTQPIAYPVKELALS"]}}, {"location": "[903231:903810](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFSDKDKFVEMDKNGATWLDRGAEAYRQGDYELALQCYKKAADYGNSQAMCNLGYIYAFGRVGEADQEQAFYYFTQASLAGNPNAFYKLGDAFRFGNFVKRNNEIAFQYYSMAESVLQEGDEDLIAEIDYRLALCYARGWGTGQRWDLALKYINEAQLYAYRNKQHGEYNWQKTSQRINKLHDEIVSEMFS"]}}, {"location": "[903968:904265](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFNQHAAVNLLDYYTTIEIIISLFIAGLLALVYKNIHYSKQRKRNSYWSLGLLLIINLIEWTSVMLDGFSGQYRIWLVINKFLNHSLIPFLGYFVIHI"]}}, {"location": "[904620:905079](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHQANRLQSLKDHYPDRVTLVDGDINNKQVVVDAAKGCDMIFSAVVDHDDAGNNRPTKNIIATAEANKISRVIETSLLGIYDEVPGKFGKWNRDFCFGGNLEGSSPVNADQLLEDSGLDYTTLRLPWLNDRPEVKYSITHRHDTYVGVSGSR"]}}, {"location": "[905511:908532](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.21.3"], "codon_start": ["1"], "gene": ["hsdR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A801"], "locus_tag": ["MAAAAKME_09770"], "product": ["Type-1 restriction enzyme R protein"], "transl_table": ["11"], "translation": ["MTLESQLEDDLIAQLTQDVHQWKFRYDLRTVDQLWDNFFRILESNNKDQLNDHPLTPNEKMTVRTAIVKPTFYRATEFMVGANRQVRYHLRREDSSIPDADLLILDNTNIAGGNSVYEVVHQVQLQKKTALNRDRRFDVSLLINGLPVIHIELKAPNVPYRKAFNQIQKYIDEGQFTDIYSFVEMFVVTNGTQTRYISAGQNLNAKFLTAWVDKNNKRVDNYLSFAEEVLSIPAAHHMIADYVVLDSENKSVILLRPYQIHAIQAIFKASRESKSGYIWHTTGSGKTLTSYKVARNLLQIPSIDKSIFLIDRKDLDMQTTTAFKIYANNDTISVNETNSSYDLADQLTDGDRTVVVTTRQKMQNMFKRIDELDQLPKRYENLKNMRLAFIVDECHRTITPSQKREIDKFFNRKPLWYGFTGTPIFNENARAKNGQDARTTEELYGPVLHKYTIGDAIRDKMVLGFSIDNQGGSNEDGNEEDTKKMDKIYRSKAHMHSVATAVIKAAYRKQGLISGKKYSAILTTSSIEKAQKYYRIFKKIIDGEDEEFKIPERIKKVAPDFPKIAITYSVSENEDDSESVQDEMKQSLADYNAVYGTNFSMAELDQYNQNVNARLARKKAQYQADNQRLDLVIVVNRLLTGFDSPSLSTLYIDRPPMSPQDMIQAFSRTNRIFDKDKTWGQIVTYQYPKTFSEKIDDAIVLYSNGGEKYAVAPSWEESKQSYVSARSKIDMYSFDADGPSIYDASKEEKKKFVKAFQEFDKALAAIKTYDELDTEEGLMQLGVSDITPDDWEAMRGVYEDILDDLRKDPDEDPDHNDDIDDEYELESFGQKEIDERYIMNLIQAFLPESSDNQEKASGNEISPETVKEINGYIDELAKTNELLAEIMRKLWQQILQDPAKYAGKQVDELLESLIDQELQSIMREFADKYKVDYDQFRYVMANYDPKLKGNKQKGMNDLLHKERFVDYLNDNPDSDLNKPYRWKSEVREQAKQYYVDKIGPLINREA"]}}, {"location": "[908545:910144](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.297"], "codon_start": ["1"], "gene": ["prmC_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02126"], "locus_tag": ["MAAAAKME_09780"], "product": ["Release factor glutamine methyltransferase"], "transl_table": ["11"], "translation": ["MAEENSTVSLQSGLFAAADVLRSKMDANEYKKYILGIVFYKYLSDQQLYKLAEDAGKDDVTLDVAQETYEDNLEEGDLLEEVKSELGYMIGPEYTYTKILANANNGSFQLNQLKDAFTQLESQGNSFEGLFEDFDLYSRQLGQNLQKQTDTIVGVIKAIGKLELVNTPGDTLGDAYEYLISQFASESGKKAGEFYTPQEVSELLARLTLVGKDYSNGMTVYDPAMGSGSLLLNFKKYVPNSSRITYYGQEINTSTFNLARMNMILHRVDLANQKLRNGDTLDEDWPAEEITNFDSVVMNPPYSQKWKADKGFLDDPRFSKYGVLPPKSKADYAFLLHGFYHLKHSGAMAIVLPHGILFRGAAEGKIRQKLLEEGAIDAVIGLPANLFHSTSIPTTIVVLKKDKQDRSVLFIDASKEFEKVKTQNKLRQEDIDKILKTYEERPADVEKYAHLASFDEIKENDFNLNIPRYVDTFEPEPEIDLRDVAKELRDIDQQINENEKELVGMLKELTSSDDDIMAGLQSIIEDFEEEIR"]}}, {"location": "[910143:911379](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDEKKAPKLRFKGFTDDWEQCKLGDVFSFLKNSTLSRSELNYESGKFKYIHYGDILTKFGDITDTRNFSVPFVTTPEKVIRLEKYFLQNGDVVIADTAEDSMVGKVTEIQNPDPFPTVSGLHTIPIRPNKEFAAGFLGHYMNAPFYHDQLFKLMQGVKVLSLSKSAVIQTKINSPSYCEQRLISRMINLIDGTITLHEEKKRQLERLKSALLQKMFADKSGYPPVRFEGFSDKWEQVKYGEIFQRRSKMGVSTPTLPSVEYDDINPGMGTLNKEPKSKGISKRGIYFNPGDVLFGKLRPYLKNWLFACFEGVAVGDFWVLTSSKIDHGFTYSLIQTPGFQYIANLSSGSKMPRSDWGLVSNARTFIPINHLEQERISSVLFGLDHAITLYEHKLEILNKIKSFLLQNMFI"]}}, {"location": "[911417:912335](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerC_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01808"], "locus_tag": ["MAAAAKME_09800"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MRKKQILLHDYFAQWIEVYKEGAVRERTLDKYWLSHRHLQEIAPNLKLVDTTRLEYQQILNTFAKTHEKATVMDFHHQLKAMLLDAYDEGYIHKDPTRKIVVKGKEPSEKKAKYLNEFELKLLLRHLDLSTFPNFDWMILLIAKTGLRFSEALGLTKEDIDLEQQTINVDKTWDYKSYTGSFKQTKNVSSVRKVPIDWKLAMQLNQVIQDLPNGEPIFAQKRVFNSTVNNFLKKHCEELNIPVISVHGLRHTHASLLLFAGVSIASVAKRLGHADMTTTQQTYLHIIQELENKDNTKIMQHLAAL"]}}, {"location": "[912376:913540](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGDVYGHLYSGNTPSRKKSANFGGDTPWIRTADLNNGLIKSATEFLTYEGIKQLKILPENTIVLAMYGGFNQIGRTGILGFPATINQALVALTPHKNINQFFAQSYLNRHIIDWRRVAASSRKDPNITKEDVEKSEFSFGSLEEQNRISKLISRLDHTITLHEEKKRQLERLKSALLQKMFADESGYPVVRFEGFSDEWEERKLGDIAPLRGGFAFKSSKFRNTGVPIVRISNILSSGEVGGDFAYYDEQDKDDKYILPDKSAVLAMSGATTGKVAILSQTDYDKVYQNQRVGYFQPVDYIDYGFISTIVRSELFMMQLESVLVSGAQPNVSSEEIDSFNFMIPILVQEQQKIGQFFKQLDDTIALHQQKINNINSVKKSLLQKMFI"]}}, {"location": "[913563:914127](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKAFHREYPNCKIFLEGFDHNQLKHHLIDHDSDVIFTTHDDITDLAEVKYYDLFCGHFVALVPTDHHLSYREELDLDDLAGEKILLMDNNWCPPEQLKLQETIRKKVDDLDISYVNDVEIVSLMVKAGLGITVMPSFVAIEKADVIKAVKLNYPAPLDYGLVCQKDEADPLVLAFCQVMQEQAEGM"]}}, {"location": "[914553:914826](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQNPHINWLRLTILLAERIVNGHLKDLTSDQRADCFVFDDSLYSRTGYKKTELAAKVFDHVSMTYRKGFRMMTMGWYAFYVTISSLYLTR"]}}, {"location": "[914822:914918](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNCTILKLKYEDGQFTLQDHFEPDFSELDH"]}}, {"location": "[915071:915773](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDZ5"], "locus_tag": ["MAAAAKME_09850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKYELSGGNTCPLATVTLDKGESIKVENGAMVYMKDVTIAGKMNSSKKGLGGLLGAIGRSLTSGESMFITQATGDADGGQIGVAPAIPGEIVKLSVGKQQYCLNTGAFLASDDSVSYKMRSQKLSKAAFGGTGGFFVMETEGEGDMLVNAFGDLVELTVTSDKPLSIDNEHVIAWDANLDYDIKVASGIFGFTSGEGLVNHFTGDGKVLIQTRNLHSLAEALQPFIVEKNSNS"]}}, {"location": "[915836:917459](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_8"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_09860"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MQKIKKFTLAAVSVSAAFLLAACGNSNSQPSSGKTSLNLMETDVVSSLDTSVTVSFPQWDTLVQTMAGLYRSDKNDQPVPAVATSYHKSSDGKTYTFNLRHNAKWSNGDTVTAKDFVTAWRKGVSPKAMSGYNYIFSNIKNADQISQGKKAVSSLGVKAVGKYKLVVQLENPEPTFIDKMVIPAFYPQNTRLVKKYGAKYGTAAKYTAFDGAFKVTKWTNTSEKWTAVKNPYYYAKSAVKLQKLNYQVVKDSNTAHQLFQQGSLDDAVVSGTTAQGLQNNKNLYHLYRSGNNFVKLNMAKGAVLANKQLRQALYLAVNRTQLSKKVLADGSKPSYTFSAPNAAKDPASGKDFATAAQPKETYNVAKAKKLWQAGLKQLGKSKLDLTLVASDITTDKNVSEFLQSQLESKLPGLKVTVKNLPSKSAYNLAANGKFDLYLSFWINDYADPYSELQTLEMTNSHNYGKYTSVAYNNELKQARKNAATRSVYFNHLLKAQEQMNQDYPVLPLYTMVEDHLVNANLKGVLWHKVGMVDYTQAYFK"]}}, {"location": "[917543:917648](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFAMQENQTMCVCCMSLMSYDCFVLPKLDLAQTK"]}}, {"location": "[917975:918488](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_09880"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMKAFNKLREYYGSKWNQIFKSITTDNGSEFADLFDLEQVSKTLVYLRSPLYIL"]}}, {"location": "[918503:918815](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_09890"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHG"]}}, {"location": "[919185:919695](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.163"], "codon_start": ["1"], "gene": ["COQ5_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01813"], "locus_tag": ["MAAAAKME_09900"], "product": ["2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial"], "transl_table": ["11"], "translation": ["MHSPGLYSDQQLESERLVAEREGYDIDIVKADMTQPLPFADESFDMIIQSVANSYVEKVKPIWKECYRVLKKGGVLLVGLDNGINYLFDSEDEKYVVNSLPFNPLKNPDQMQQLEKDDFGVQFSHTLEEQIGGQLEAGFTLTNLYEDTNGEGRLHELNIPTFIATRSVK"]}}, {"location": "[919756:919981](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_09910"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKWSDLWPMFGMDRLMQGRTAFVIAHSLSTIRDADSIIVLKDGDIVEVGNHDSFMAKKAFYADLYQSQFEHGEE"]}}, {"location": "[920096:921242](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_09920"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MEIALNDGDLKRFIDHITSQFNIEDHPILIDKYLAGKECEVDAICDDEGILIPGIMEHVERAGVHSGDSISIYPPQKISQEMKERIVEYSKRLAKALKVKGLMNIQFIVYENKVYVIEVNPRSSRTIPYISKVTGIPLVDVATNVIIGKSIKEQGYDYGLAPEKKTVAVKMPVFSFEKITGAEIALGPEMKSTGEVLGISEDVEEAMYKAFMGTGLDLPKHKKVICTVKDSAKAEFLPIAKEYHDFGYDLYATQGTYDFLQSHGIPARLVNRINDKENTIFDLILTETVDLVIDIPTRNNNLKDGFLIRRFAVEAGVPIYTSLDTARALIYALEAKHDNKLSLVDITKLYKLYSSILNSFKRQHLLAFFFEKVSRFPLVIT"]}}, {"location": "[921435:922749](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_09930"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MIEQSIAGWKEVEYEVMRDGAGNCITVCNMENMDPVGVHTGDSIVVAPSQTLSDKDYQMLRSSALNIITALNIKGGCNVQFALNPDSFEYCVIEVNPRVSRSSALASKATGYPIAKLATKIALGYNLDEIVNAVTGKTYASYEPTLDYIVCKIPKWPFDKFYDASRKLGTQMKATGEVMAICNNFEGAFMKALRSLEQDSYYLYNEEIAQLSADDLRKDLRKIDDKRAFRIAEALRKGVSIREIHAITKIDVWFIDKIKHLVEIEDRLKSEELTPDLLKLAKHCEFPDRVIASLTGKTADEVYYLRKGLKITAAFKTVDTCAAEFDAETPYFYSVYGGEHEIQPDRSKKKVIVFGSGPIRIGQGIEFDYCCVHSVWTLKEAGYETIIVNNNPETVSTDFDIADRLYFEPLTAEDVQSSQTGPSSNSADKPRLSSPRT"]}}, {"location": "[922792:923053](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carB_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63740"], "locus_tag": ["MAAAAKME_09940"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPKRDDIKKVLVIGSGPIIIGQAAEFDYAGTQACRALREEGIEVVLINSNPATIMTDGDMADHVYIEPLTVPVVKQLIEKEKPRTA"]}}, {"location": "[923045:924122](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_09950"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MKARLILEDGHVFEGESFGAVHDVISEFVFNTAMTGYVEVLTDPSYAGQSVVMTYPLIGNYGVPLDDQEAAHPFVEAFVVSELSRLGSNFRMNMSLNDYMIENNIPGIQGVDTRAITRILRKEGCMNGMITTKDYEVSEVIDQIKAFKIQGVVEKCSCLEPYHVGQGDYEVALYDFGAKRNIARELAKRGCHITVLPADTPAQYVIDHNFDGIMLSNGPGDPSECTEIIDQLKILASSGIPIFAICLGHQLLALAHGFETEKMVYGHHDSNHPVKDLTTGRVYISTQNHNYVIKEDTIDPKQAKVWFKNVNDKTIEGLEYLKENIKSVQFHPEACGGPHDTEYLFDSFIEMMGEHKNA"]}}, {"location": "[924560:924797](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cph2_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q55434"], "locus_tag": ["MAAAAKME_09960"], "product": ["Phytochrome-like protein cph2"], "transl_table": ["11"], "translation": ["MQAAQESVTYVFCDVNGLHETNSKFGHEAGDRMLIALASELAKSFGQDMSFRFGGDEFLAIALDERLDKVQAKRYFLT"]}}, {"location": "[924994:926281](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISELFVQQLYSVIDMAIIGRYLGARELGAVGNAANIIMLFLVVSGGFEMAVDVMVWLLGASKNKEKAAMARDTLFLSAISGLVLVVIAWISLPALYKAVSLPENMMGDALLYGRVYLFALPIIYIYDVGRTILISNERAKISFYLLATSSILNLLLNLLFILVLQLGVLGSALGTVLAQGITMLVTLYLLAKMDRQEEEPVSLKPDLSWTKIKSILHIALPTIFQQFVITFGATLVQAWVNPFGQEAILGYVAIVKVMNLARIVLVGFAQTLTLMTAQLLAVKTYSAVKAVYRYCSNVSLIYWLVSSALSVIFCQLLAGMFFDPGQNQAAYSFFRVYLYAFVGIQLFSIFKFLNEGLLRSMVLMKEYLYCNLGELALKLAATGLLLTLLQTNAFWSAELGARIICFLGSTILVIKEMQALEAIEKAG"]}}, {"location": "[926374:926806](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEELIKTGDFAKMCAVTKKALYVYEAKGLLKPAVVKDNGYRYYRLEQVDQVATIRLLEKLGSSLQEVGDFFALKDLNERQKYLGKQQEAVEREMAELGKIKSSLEFFDQRISDLKQTGLKKWRLRLARKNTWKSVLLGMVFR"]}}, {"location": "[927554:928040](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVHRTWDVNSQIKISMFDDRIEIVSPGGLSKEEYLLGQISILRNPILANLFYRLGLIEQFGMGIRRIISSYQGSVIQPKFKIFENSIVIILPLFQSVSVNLSEDEGKIYQAVQSGNETTSKINEVVGFGKTKSLRLINSLVKKGYLIKVGEGRGTKYMLPK"]}}, {"location": "[928449:929016](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YR40"], "locus_tag": ["MAAAAKME_10000"], "product": ["Tyrosine recombinase XerD"], "transl_table": ["11"], "translation": ["MKRALQFGTGTVTGQNRNGLRNAMIFVFGINTGLRISDIVKAKVSDIEDGEWYNLVETKTHKNRHAYIGNISQDLENYIDQMQLKPSDWLFPSRKGEGHIEGKSFYKDLKRAARQCEIDPSTVGTHTLRKTFGYHYIKSATTPAGDPDPRALYKLQKMLNHSSPTTTLRYIGLEDESMEEDLKSFRLG"]}}, {"location": "[929207:929555](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0454"], "gene": ["yjaB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P09163"], "locus_tag": ["MAAAAKME_10010"], "product": ["Peptidyl-lysine N-acetyltransferase YjaB"], "transl_table": ["11"], "translation": ["MEELTTIINDDQKAVFVAVDEDDQVLGYAFTQLQEQPFSTNMVQFKSLFIDDLCIDSTQRSQGVGRALLDYVKAEAKRLGYYEVTLNVWEGNDSAINFYKKNGLKVKETNMEFIL"]}}, {"location": "[930043:930298](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINDRENKAIKDFYSSPVSRRQVARGYIVTGFIIKHHHVHFYLNFWGNLPWSGRRGSTGYRDFTKAICCNCLIILCIIGDCFFT"]}}, {"location": "[930282:930585](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLYIISFLKTNSSYSAASTIVGTLIGFLVGAYIPIGSLPDNVQWLVKYFPCAHSAVLYRQLLMKPATKANFANQPASVLKEIREMFGIVFVYNGHIAPA"]}}, {"location": "[931028:931355](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMIMWPVAIILEMFVFEKPVVYLTQRLITPETPILLIILIRCSITICLMCPTMSLIATALFKNFQAAGFIGTWLQTAVINFPMAIGWQIFLCGPAVRFLFRTIFRKDN"]}}, {"location": "[931453:931888](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVCLENEALFDEVESELKKHASIQDFEEKYGKITGRMMITETEIPEELGIKINDTDVHSFKATFDFYNTAIGLALNVKTREAATKFWLTPQDDRNDVPTDSWFEFFAMILMEALDEGMDSIPTFSFVNDSSDLTISGLGLLEKK"]}}, {"location": "[931900:932299](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.20.4.4"], "codon_start": ["1"], "gene": ["arsC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A006"], "locus_tag": ["MAAAAKME_10060"], "product": ["Arsenate reductase"], "transl_table": ["11"], "translation": ["MTKAKVAFICTHNSCRSQIAEALGKKLAGDVFESYSAGTDLKDQVNPDAVRLIKEHYGIDMLANGQKPKTLVDLPAVDYVITMGCGVRCPYLPAKKRVDWGLEDPTGQDDETFMQVIKEIEDKVLKMKQELS"]}}, {"location": "[932530:932839](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEPVLADIPQIESWLLETDGEDIVGKSRQKHLEEVEVGQLLSLQLNPPYEQITVCPLEGDDLGKLNHPLQGQNPVYRPEKPRKLKTRQPLKQATAPVAFFV"]}}, {"location": "[933000:933753](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["yxdL_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42423"], "locus_tag": ["MAAAAKME_10080"], "product": ["ABC transporter ATP-binding protein YxdL"], "transl_table": ["11"], "translation": ["MEKVMTVNNVTKTYGKKGEKQFQALKGVSLSVAKGEFVAIMGTSGSGKTTLLNIMSTLDKPSSGEVTINGKNVAKLKKNQMADFRAKEIGFIFQDFNLLDNLTARENIALPLSLQGVKSSEIDSKVDKIAAKLNISEVLEKYPAAISGGQKQRVAAARALVHEPAILMADEPTGALDSKSSRALLDTMELLNEKDQVSILMVTHDPFSASFADRILFIRDGLIDEEIKRGDLKRQDFYKKLISQLSENTD"]}}, {"location": "[933775:935650](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yxdM_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42424"], "locus_tag": ["MAAAAKME_10090"], "product": ["ABC transporter permease protein YxdM"], "transl_table": ["11"], "translation": ["MIFKLSMTGLKSRLKDYLVLFSGLSAASMTFYMFLTLAANQSFLKSSVAGRLTMGATKFIFSFGIVLLAILTLVYLAYANSFLLSMRKRDYGMYMMLGAKSGKIGQLIFAETLVTGLLATGIGIILGVGLTELVSSLMVKQLGLTLAHFNPLYLPAVLWTLLFFVALFFLAASWNAVKLTKTTLINLLKEDQKPSKLKSRPVLRTIQAIAGVLLLATGYWAMWHVATLQLKAIPIALVTIVLGSFLIFDAFFVAVIDFLRKRHSFLYKGMRPYTLGQLKFRLHGYTRILSAISIMLALALGAITVGINFNNLKNAMTDVMYYDIVLVGKQKKLADKVEKIGTEEEVTYSYKADEKNGILYVKKSEIDQTPLKIQMYNAASSDKKKAIDKEGRIYHTVEVTSKTLTGKQTSATVRNSAQAASLFPEDSSKGFVALSDAAFAKKKLTTKVITFYKVKDFAKNNKKLLKLTEQEMQLFSKDSMAYGYLEFTKPFLYQQIAAMCSGFEFMGLFLGLSFLMMLASTLMFKILSAAASDKLRYKMLYKLGARNSVLKAAIRKEIAILFVAPAVLGSLDVLFGLKIFTILLPDPYYKIWIPFLAFFLLYLVYYLLTVKLYQGIVLEETKQD"]}}, {"location": "[935712:935859](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKAVPMLEINKTDSERRELLRPFEITPTDGFVYDLRQTPIFQKAFTF"]}}, {"location": "[937082:938552](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "gene": ["fccA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C278"], "locus_tag": ["MAAAAKME_10110"], "product": ["Fumarate reductase flavoprotein subunit"], "transl_table": ["11"], "translation": ["MNFDIVVVGAGASGISAALTASECGAKVALLEKGDKFGGAGMFGAQGLFAVESRAQKEAGVKYSLKDAYEEIINYTHHSSNALMVKAILEESAATIDWMAESGLETELVTNTQEVHQEHPRTYHQFIDKFNGFKRVMNNFLENGGVLMTETSAEKIVQEQGKVTAVKANRKGEEITLETKAVILADGGFVGNKDEIKRTLAIDPDDLYSMGERKATGDGLQMLKEAGGVSDYKRIFENHAATVYSKTDPKWHNASLFDLTNIPLLWVNREGKRFTNEDVVYDFALWGDSVYQIGGYYYFLFDQATVDYLRQQALDWTSSFERTFRLLDKKLMTYQVGPYPQLDQDLNEGISQGAVFKADNIQKLAEKITVDPANLTATVNRYNELVVEGKDMDLYKDDRFMTLSVKEGPFYAVRANSTTLGTVGGALVNEHFEALNVKRQVIDGIYAVGNDASSLYDSSYPTIEGLSNAFAWNSGRIAGRYASAYAAKN"]}}, {"location": "[939291:939450](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQISQFTMLNLMNVHLKWLDKRIATTWVSSRQQNSKNIGLKLVFLNAIWQN"]}}, {"location": "[939449:939626](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEVAEALTKLKFLVSHDRFKLVARQGTMKVPVSRMLAKTIIEQLSSEDFVKHSASSLW"]}}, {"location": "[940118:940247](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSPKAIFKATLDQPAIPIDTILVNDERYCVNVGCFGLDALIA"]}}, {"location": "[940743:941301](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1670"], "gene": ["ydaF_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96579"], "locus_tag": ["MAAAAKME_10150"], "product": ["Putative ribosomal N-acetyltransferase YdaF"], "transl_table": ["11"], "translation": ["MFSYKINDELELAVPRLTDGEALYDLIDRNRDNLSYYLPWVDHVHDVQAETDAIRRNLVRFAEGKALDLHIWYHGRLAGKVSLNSIDAMYSEADIGYFLGKEFRGRGIMTLATRAIIDIAFEEYGLHRIMLQCAVDNLPSNNVAKRLGMRFEGCHKGRLILRDGYHDSNEYAVLAEEWPDVQKKY"]}}, {"location": "[941526:942075](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITSAKAVNSALVKLIFVLAFAIILAPKAKTTTASDADKPFYKNAMVNTYVYDEKGKRTKDKKILAGKAVGCYSMINYVGDKPYIMIGQNKYVAYMNVVGLDCQLNHNSYIYSSSGKRIKNSGVLLKNGSVTVYGGKKKINGSKYWAIGVGLYVKASNVETPKGEVTSDPNTQNQTTEPQTS"]}}, {"location": "[942085:942655](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0436"], "gene": ["dapX_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16524"], "locus_tag": ["MAAAAKME_10170"], "product": ["putative N-acetyl-LL-diaminopimelate aminotransferase"], "transl_table": ["11"], "translation": ["MLAICDEIYSELTYDQEHFSLATLLPGQVILISGLSKSHAMTGYRLGYIAAPASLLPNVAKAHSFMVTCVDNIAQDAAIEALTKGLDDPKEFKAAYQRRRDFMVDNLTKLGFEMAVPQGAFYIFAKIPEKFGSGDFAFAKDVAKKARVGLIPGSVFGKGSAGYVRFSYAEADDKLTEVVKRLGEYVAQL"]}}, {"location": "[942753:943341](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.2.1.8"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6I1"], "locus_tag": ["MAAAAKME_10180"], "product": ["Putative peptidyl-prolyl cis-trans isomerase"], "transl_table": ["11"], "translation": ["MSEYPQLNLDQAKGPKATIKTNHGDIVIQLFPEEAPMTVENFVRLAQKGYYDGVTFHRVISDFMIQGGDPEGTGAGGQSIWGHNFEDEFSNELFNLRGALSMANAGPNTNGSQFFIVQNKNMPKRFIQQLRDAQYPEDVVKAYKQGGTPWLDHRHTVFGHVTEGMDVVDEIAKVAKDGNDKPLEDVVITTVEIAD"]}}, {"location": "[943372:943909](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLKRVWLVKLIFVLAFAIILAPKAKTTTASDADKPFYKNAMVNTYVYDEKGKRTKDKKILAGKAVGCYSMINYVGDKPYIMIGQNKYVAYMNVVGLDCQLNHNSYIYSSSGKRIKNSGVLLKNGSVTVYGGKKKINGSKYWAIGVGLYVKASNVETPKGEVTSDPNTQNQTTEPQTS"]}}, {"location": "[944134:944692](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1670"], "gene": ["ydaF_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96579"], "locus_tag": ["MAAAAKME_10200"], "product": ["Putative ribosomal N-acetyltransferase YdaF"], "transl_table": ["11"], "translation": ["MFSYKINDELELAVPRLTDGEALYDLIDRNRDNLSYYLPWVDHVHDVQAETDAIRRNLVRFAEGKALDLHIWYHGRLAGKVSLNSIDAMYSEADIGYFLGKEFRGRGIMTLATRAIIDIAFEEYGLHRIMLQCAVDNLPSNNVAKRLGMRFEGCHKGRLILRDGYHDSNEYAVLAEEWPDVQKKY"]}}, {"location": "[945188:945317](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSPKAIFKATLDQPAIPIDTILVNDERYCVNVGCFGLDALIA"]}}, {"location": "[945809:945986](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEVAEALTKLKFLVSHDRFKLVARQGTMKVPVSRMLAKTIIEQLSSEDFVKHSASSLW"]}}, {"location": "[945985:946144](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQISQFTMLNLMNVHLKWLDKRIATTWVSSRQQNSKNIGLKLVFLNAIWQN"]}}, {"location": "[946883:948353](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "gene": ["fccA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C278"], "locus_tag": ["MAAAAKME_10240"], "product": ["Fumarate reductase flavoprotein subunit"], "transl_table": ["11"], "translation": ["MNFDIVVVGAGASGISAALTASECGAKVALLEKGDKFGGAGMFGAQGLFAVESRAQKEAGVKYSLKDAYEEIINYTHHSSNALMVKAILEESAATIDWMAESGLETELVTNTQEVHQEHPRTYHQFIDKFNGFKRVMNNFLENGGVLMTETSAEKIVQEQGKVTAVKANRKGEEITLETKAVILADGGFVGNKDEIKRTLAIDPDDLYSMGERKATGDGLQMLKEAGGVSDYKRIFENHAATVYSKTDPKWHNASLFDLTNIPLLWVNREGKRFTNEDVVYDFALWGDSVYQIGGYYYFLFDQATVDYLRQQALDWTSSFERTFRLLDKKLMTYQVGPYPQLDQDLNEGISQGAVFKADNIQKLAEKITVDPANLTATVNRYNELVVEGKDMDLYKDDRFMTLSVKEGPFYAVRANSTTLGTVGGALVNEHFEALNVKRQVIDGIYAVGNDASSLYDSSYPTIEGLSNAFAWNSGRIAGRYASAYAAKN"]}}, {"location": "[949576:949723](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKAVPMLEINKTDSERRELLRPFEITPTDGFVYDLRQTPIFQKAFTF"]}}, {"location": "[949785:951660](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yxdM_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42424"], "locus_tag": ["MAAAAKME_10260"], "product": ["ABC transporter permease protein YxdM"], "transl_table": ["11"], "translation": ["MIFKLSMTGLKSRLKDYLVLFSGLSAASMTFYMFLTLAANQSFLKSSVAGRLTMGATKFIFSFGIVLLAILTLVYLAYANSFLLSMRKRDYGMYMMLGAKSGKIGQLIFAETLVTGLLATGIGIILGVGLTELVSSLMVKQLGLTLAHFNPLYLPAVLWTLLFFVALFFLAASWNAVKLTKTTLINLLKEDQKPSKLKSRPVLRTIQAIAGVLLLATGYWAMWHVATLQLKAIPIALVTIVLGSFLIFDAFFVAVIDFLRKRHSFLYKGMRPYTLGQLKFRLHGYTRILSAISIMLALALGAITVGINFNNLKNAMTDVMYYDIVLVGKQKKLADKVEKIGTEEEVTYSYKADEKNGILYVKKSEIDQTPLKIQMYNAASSDKKKAIDKEGRIYHTVEVTSKTLTGKQTSATVRNSAQAASLFPEDSSKGFVALSDAAFAKKKLTTKVITFYKVKDFAKNNKKLLKLTEQEMQLFSKDSMAYGYLEFTKPFLYQQIAAMCSGFEFMGLFLGLSFLMMLASTLMFKILSAAASDKLRYKMLYKLGARNSVLKAAIRKEIAILFVAPAVLGSLDVLFGLKIFTILLPDPYYKIWIPFLAFFLLYLVYYLLTVKLYQGIVLEETKQD"]}}, {"location": "[951682:952435](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["yxdL_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42423"], "locus_tag": ["MAAAAKME_10270"], "product": ["ABC transporter ATP-binding protein YxdL"], "transl_table": ["11"], "translation": ["MEKVMTVNNVTKTYGKKGEKQFQALKGVSLSVAKGEFVAIMGTSGSGKTTLLNIMSTLDKPSSGEVTINGKNVAKLKKNQMADFRAKEIGFIFQDFNLLDNLTARENIALPLSLQGVKSSEIDSKVDKIAAKLNISEVLEKYPAAISGGQKQRVAAARALVHEPAILMADEPTGALDSKSSRALLDTMELLNEKDQVSILMVTHDPFSASFADRILFIRDGLIDEEIKRGDLKRQDFYKKLISQLSENTD"]}}, {"location": "[952596:952905](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEPVLADIPQIESWLLETDGEDIVGKSRQKHLEEVEVGQLLSLQLNPPYEQITVCPLEGDDLGKLNHPLQGQNPVYRPEKPRKLKTRQPLKQATAPVAFFV"]}}, {"location": "[953136:953535](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.20.4.4"], "codon_start": ["1"], "gene": ["arsC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A006"], "locus_tag": ["MAAAAKME_10290"], "product": ["Arsenate reductase"], "transl_table": ["11"], "translation": ["MTKAKVAFICTHNSCRSQIAEALGKKLAGDVFESYSAGTDLKDQVNPDAVRLIKEHYGIDMLANGQKPKTLVDLPAVDYVITMGCGVRCPYLPAKKRVDWGLEDPTGQDDETFMQVIKEIEDKVLKMKQELS"]}}, {"location": "[953547:953982](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVCLENEALFDEVESELKKHASIQDFEEKYGKITGRMMITETEIPEELGIKINDTDVHSFKATFDFYNTAIGLALNVKTREAATKFWLTPQDDRNDVPTDSWFEFFAMILMEALDEGMDSIPTFSFVNDSSDLTISGLGLLEKK"]}}, {"location": "[954080:954407](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMIMWPVAIILEMFVFEKPVVYLTQRLITPETPILLIILIRCSITICLMCPTMSLIATALFKNFQAAGFIGTWLQTAVINFPMAIGWQIFLCGPAVRFLFRTIFRKDN"]}}, {"location": "[954850:955153](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLYIISFLKTNSSYSAASTIVGTLIGFLVGAYIPIGSLPDNVQWLVKYFPCAHSAVLYRQLLMKPATKANFANQPASVLKEIREMFGIVFVYNGHIAPA"]}}, {"location": "[955137:955392](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINDRENKAIKDFYSSPVSRRQVARGYIVTGFIIKHHHVHFYLNFWGNLPWSGRRGSTGYRDFTKAICCNCLIILCIIGDCFFT"]}}, {"location": "[955880:956228](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0454"], "gene": ["yjaB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P09163"], "locus_tag": ["MAAAAKME_10340"], "product": ["Peptidyl-lysine N-acetyltransferase YjaB"], "transl_table": ["11"], "translation": ["MEELTTIINDDQKAVFVAVDEDDQVLGYAFTQLQEQPFSTNMVQFKSLFIDDLCIDSTQRSQGVGRALLDYVKAEAKRLGYYEVTLNVWEGNDSAINFYKKNGLKVKETNMEFIL"]}}, {"location": "[956419:956986](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerD_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YR40"], "locus_tag": ["MAAAAKME_10350"], "product": ["Tyrosine recombinase XerD"], "transl_table": ["11"], "translation": ["MKRALQFGTGTVTGQNRNGLRNAMIFVFGINTGLRISDIVKAKVSDIEDGEWYNLVETKTHKNRHAYIGNISQDLENYIDQMQLKPSDWLFPSRKGEGHIEGKSFYKDLKRAARQCEIDPSTVGTHTLRKTFGYHYIKSATTPAGDPDPRALYKLQKMLNHSSPTTTLRYIGLEDESMEEDLKSFRLG"]}}, {"location": "[957395:957881](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVHRTWDVNSQIKISMFDDRIEIVSPGGLSKEEYLLGQISILRNPILANLFYRLGLIEQFGMGIRRIISSYQGSVIQPKFKIFENSIVIILPLFQSVSVNLSEDEGKIYQAVQSGNETTSKINEVVGFGKTKSLRLINSLVKKGYLIKVGEGRGTKYMLPK"]}}, {"location": "[958629:959061](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEELIKTGDFAKMCAVTKKALYVYEAKGLLKPAVVKDNGYRYYRLEQVDQVATIRLLEKLGSSLQEVGDFFALKDLNERQKYLGKQQEAVEREMAELGKIKSSLEFFDQRISDLKQTGLKKWRLRLARKNTWKSVLLGMVFR"]}}, {"location": "[959154:960441](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISELFVQQLYSVIDMAIIGRYLGARELGAVGNAANIIMLFLVVSGGFEMAVDVMVWLLGASKNKEKAAMARDTLFLSAISGLVLVVIAWISLPALYKAVSLPENMMGDALLYGRVYLFALPIIYIYDVGRTILISNERAKISFYLLATSSILNLLLNLLFILVLQLGVLGSALGTVLAQGITMLVTLYLLAKMDRQEEEPVSLKPDLSWTKIKSILHIALPTIFQQFVITFGATLVQAWVNPFGQEAILGYVAIVKVMNLARIVLVGFAQTLTLMTAQLLAVKTYSAVKAVYRYCSNVSLIYWLVSSALSVIFCQLLAGMFFDPGQNQAAYSFFRVYLYAFVGIQLFSIFKFLNEGLLRSMVLMKEYLYCNLGELALKLAATGLLLTLLQTNAFWSAELGARIICFLGSTILVIKEMQALEAIEKAG"]}}, {"location": "[960638:960875](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cph2_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q55434"], "locus_tag": ["MAAAAKME_10390"], "product": ["Phytochrome-like protein cph2"], "transl_table": ["11"], "translation": ["MQAAQESVTYVFCDVNGLHETNSKFGHEAGDRMLIALASELAKSFGQDMSFRFGGDEFLAIALDERLDKVQAKRYFLT"]}}, {"location": "[961313:962390](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_10400"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MKARLILEDGHVFEGESFGAVHDVISEFVFNTAMTGYVEVLTDPSYAGQSVVMTYPLIGNYGVPLDDQEAAHPFVEAFVVSELSRLGSNFRMNMSLNDYMIENNIPGIQGVDTRAITRILRKEGCMNGMITTKDYEVSEVIDQIKAFKIQGVVEKCSCLEPYHVGQGDYEVALYDFGAKRNIARELAKRGCHITVLPADTPAQYVIDHNFDGIMLSNGPGDPSECTEIIDQLKILASSGIPIFAICLGHQLLALAHGFETEKMVYGHHDSNHPVKDLTTGRVYISTQNHNYVIKEDTIDPKQAKVWFKNVNDKTIEGLEYLKENIKSVQFHPEACGGPHDTEYLFDSFIEMMGEHKNA"]}}, {"location": "[962382:962643](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carB_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63740"], "locus_tag": ["MAAAAKME_10410"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPKRDDIKKVLVIGSGPIIIGQAAEFDYAGTQACRALREEGIEVVLINSNPATIMTDGDMADHVYIEPLTVPVVKQLIEKEKPRTA"]}}, {"location": "[962686:964000](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_6"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_10420"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MIEQSIAGWKEVEYEVMRDGAGNCITVCNMENMDPVGVHTGDSIVVAPSQTLSDKDYQMLRSSALNIITALNIKGGCNVQFALNPDSFEYCVIEVNPRVSRSSALASKATGYPIAKLATKIALGYNLDEIVNAVTGKTYASYEPTLDYIVCKIPKWPFDKFYDASRKLGTQMKATGEVMAICNNFEGAFMKALRSLEQDSYYLYNEEIAQLSADDLRKDLRKIDDKRAFRIAEALRKGVSIREIHAITKIDVWFIDKIKHLVEIEDRLKSEELTPDLLKLAKHCEFPDRVIASLTGKTADEVYYLRKGLKITAAFKTVDTCAAEFDAETPYFYSVYGGEHEIQPDRSKKKVIVFGSGPIRIGQGIEFDYCCVHSVWTLKEAGYETIIVNNNPETVSTDFDIADRLYFEPLTAEDVQSSQTGPSSNSADKPRLSSPRT"]}}, {"location": "[964193:965339](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_7"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_10430"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MEIALNDGDLKRFIDHITSQFNIEDHPILIDKYLAGKECEVDAICDDEGILIPGIMEHVERAGVHSGDSISIYPPQKISQEMKERIVEYSKRLAKALKVKGLMNIQFIVYENKVYVIEVNPRSSRTIPYISKVTGIPLVDVATNVIIGKSIKEQGYDYGLAPEKKTVAVKMPVFSFEKITGAEIALGPEMKSTGEVLGISEDVEEAMYKAFMGTGLDLPKHKKVICTVKDSAKAEFLPIAKEYHDFGYDLYATQGTYDFLQSHGIPARLVNRINDKENTIFDLILTETVDLVIDIPTRNNNLKDGFLIRRFAVEAGVPIYTSLDTARALIYALEAKHDNKLSLVDITKLYKLYSSILNSFKRQHLLAFFFEKVSRFPLVIT"]}}, {"location": "[965454:965679](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_10440"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKWSDLWPMFGMDRLMQGRTAFVIAHSLSTIRDADSIIVLKDGDIVEVGNHDSFMAKKAFYADLYQSQFEHGEE"]}}, {"location": "[965740:966250](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.163"], "codon_start": ["1"], "gene": ["COQ5_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01813"], "locus_tag": ["MAAAAKME_10450"], "product": ["2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial"], "transl_table": ["11"], "translation": ["MHSPGLYSDQQLESERLVAEREGYDIDIVKADMTQPLPFADESFDMIIQSVANSYVEKVKPIWKECYRVLKKGGVLLVGLDNGINYLFDSEDEKYVVNSLPFNPLKNPDQMQQLEKDDFGVQFSHTLEEQIGGQLEAGFTLTNLYEDTNGEGRLHELNIPTFIATRSVK"]}}, {"location": "[966389:966578](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKISLVCQSKGKYNFYDGVYFHGWLKTIMNYQDINAETIDRWVKEGWEWGKAIDHFPSKLL"]}}, {"location": "[966736:968677](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MANKENLITTNELVGEVYLDKILADYDIFFMDCLDEDNKAAYPSKFLLNDLVESSKGKLLVCYQKVHIGDEWKSRIYVMTAKSNGLTEAKLRNYPVFKRSNLTPAAAVTGKEQISDITAIKLLTMNVPFATQLNQKGKIERCNLLGDLFFYIKDINQGKDRKGGQFSRRGQVVLFHLYFDEQSKTMYIANSLFTQVKLFKEKYGEEFKDKLAERNLLTGPFYWINLDDMTIRQCRKMTDDCYLKAPLYKNEKPKAIDGAMKNFALDKNTPFDHSKYGFAYQLLSSFNSCYEGTGYVSKLSFKEVKAKTISAEETSMKLNKRVTRAVADFFKDKKVHLVDQTRKELDLAPVAEYFADKTAEATCIEQVKEGFNIVVVLPPKDYNGKDPYQRSNSKCLIQHIYQDNCLKKNGQIKGKSALDNSLKELLVKYCVVNRTVKPLQVKGMPNAEFHYWEKGTGTCWSLKFKDEETFELAKSNQLLDPLSENNPFIEHGLLWEDKKGRMTSDYELLARIDGELYGIKQSELRTMPNKSLYYKTIEDPEFRYYRNKTGLDEYMSGIVYENHWLENGRVKYNVGKIGRGMQTTIDKGSVVRIINSFSGDILEEDAEKIYRMLKMTEVTFVKYKDLTVLPYPLKLLKEAARIEIEL"]}}, {"location": "[968680:972490](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MENSQTYFPCANGSQAAIEDITGQDKSALLSILQQSTGLGKTYGTVRAIVNRAVNDQQVTFYLTPLRKDRDEVYAGCRDLLLKLGKNPEEILVNVLSEQDQVTDFFEEHVFVRQEERVIGRLDRKKLYKAWREESIPDNYPNTRHIFGLLQSILLFSDLQSEEEIEDDRKNFSQIKSMIRTDAYAIVDEEEQDLSPAERKARMKATVFRDLPWYQIMFPDYDLANKKILVMAANKFIYRYKDLAGSNKYYWRLNFNQKKPAGKEKTLVNLILDESDKIHQNWLESMLGQKQEHFDLYTLAKKINSALEPSFNKANEIILAAGDNRGRIKSASKKFHDLSNKYHLEADLVIGESLSEDELAKKFLINDGESDYLNINDQLYIEYKPDPFSLAGAKGKLFVNVLEKKKSSKQAIRLDRMLEDLNQNISSFVRNSYSMAKNVQSRIKEINRHQEANGKKKYRDEMDLEDEQRFVLRSLLGIEDKDEALVNYLLETYMRDSPQRHQTGIAANLTSDNSIFGKGFTVHILESNRNKRTNAEVSRYAQKWTPELLLATLASQWRVILVSATAETESIFSNFGLDWVYNNIPYVYHLPKKIEQLLNQENEERNKAQRDKGKINVQWIKPAPGAKLRDVFKASFPDSQLSYPEISDLISEMPSALAGIRYDFNWQYKPESNEKITQKVTIRTACYYFGRNLKLLKALAAFCQKNRERPSRVAFIAYTNRNIREAEAKWYETALKKLGYLDQDKALVCISAKDDPEKQLERVKADWAQGKLKIILTSYSTMSRAVNLQYPAKALLAKYPEDYVVLDDRFFNKDNPFVDINGCYMEQPTHLIPKNNADRDRKQFEDEFIKGYLQLIYTCDGLINLGTPGFTYADSERLLTAYYQGYPLKREKNPFYQIQARDNAYTSQIDQTSGRMVRTVVKPESMFVILDKEIASCLNRSQVDRKRTNAVMEAIMASDPGLRLLPNQTEEKELKLKKLMASNAMGYLVQVALQLVSMPDDMQQLWIKLRTFIAKHPQLDSLVEVEDGKLAKIVPNYYWDFGHPVSGYYYYVEGDYKRLIAIGEDRDDVKRQMAEAGIKPSFQPQYMDYEEYKQALERIWKQQPWLKRELERAGYDLSFKPSRYLLTPGAFNNLYKGAIGEAIGEAVMKHLGFDYHDMADLPNSEMERFDGYLKADDGRIVYVDWKNYNTDAPSGDNDQTVRWIKRKLGMVEMGKSAIIINISKWSNKQMQAIQIAGGLADKKVYLYPYLFDEKGELNQKLVRDFRKVF"]}}, {"location": "[972693:973644](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.81"], "codon_start": ["1"], "db_xref": ["COG:COG0111"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9X1C1"], "locus_tag": ["MAAAAKME_10490"], "product": ["Hydroxypyruvate reductase"], "transl_table": ["11"], "translation": ["MKIVLLEPLGISQESLDKLAEKLTKQGHEFTAYDSFSTDTEELKKRSEDADALIIANHLLPGEVIRADKNLKFISVAFVGIDHVDLEACKEKKINISNTGGYCNDAVAELAIGLTLDCLRKISAGNEAVQAGEGKGGLQGHELAGKTVGIVGTGAIGCRTAEIFKAFGCKLIGYSRSQKAAALDLGLEYKSLDEVMGEADIVSIHTPLTPETKGLIGKKEIGEMKEGAILINTARGPVVDTEALAAALKEGRIKAGLDVFDQDPPLPADYPLLGVPNLVCSPHVGFDTKESIDRRAEMAFENVTAWLNGQQIRTML"]}}, {"location": "[973921:974293](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGITQYESLILYELFTHPRLSQKELVYRSGIPKQSISKGIHNLAELGYLEISSADQDKRVKYCSLTESGLAYAREKEDEILAIEKKVIDKLGFDRAALACQILAEWSDLLSKEIANLKEKKQK"]}}, {"location": "[974292:976020](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_10510"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKILLPYFKRYKKDVFLTLITIVFSAFATLYQPRLLQQVQNELLADQQQAVIRDTAILIGLGLLSIITGVLNVYYASRITQGVVSDLREDTYAKIQTFSLANVQQFSSESLSVRLINDMQQIMNMIMTIFMQLIRMPLILIGSIIMAIVTIPRYWWAVVVLLALIMGLGVVAVKQITTMFDKFQMYMDKISGRTGEFLQGVRVVKSFNQSPQEIAKLNKDSDELNEVNIKVGYWFSTILPGAQLISYLVISLVVYLIGTSILQHPQDVSVITPYVNYVLTMLFAILLVGMAVMQISRGNVSLRRIQEIMDTQPDVVFNEKAPEDALGGSIEFDDVSFTYPDGQQPVLKHISFAVAPGQMVGIVGATGSGKSTLAQLIARLYDPTTGKIKIGGSDLRQVNENALRKTVSYVLQKAVLFSGTIADNLRQGKKDATSYELERAAQMAQASEFIQRYDETFDHEVEERSANFSGGQKQRLSIARGIIAGSPILILDDSTSALDAESEKLIQEALEKQLPDTTTIMIAEKIVSVMHADKILVLDNGRLVAEGTHEELLKTSPVYQEIYKTQKAKERKEEL"]}}, {"location": "[976019:977777](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_10520"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MSDKQKSLTYLTKYLKNYKKPILISIAFYLIATIAQVIAPSLLGQAVTDLSAFVKGQGSLGVFYQALAWMAGFYAFNSVATYIAWMMMTRFNANANNDMRKGLFGKLQRMTFRYFDTHQDGQILSLFNSDLDNIFNALNNAFFEIISQSLLFVGTIIVMFVINWKLALSVVATTPLILLLSWIIIKKARVYLDNQQDRVGELNAYINEQLNGENVIITQGLRDQSVAGFKKENAKVREAMFKGQFYSGILNPLVTGFSLLNFAIVIATGAYMIMTKQVSKAAGLGLIVTFTEYSWTYFQPLTQVTSIYSMLQLALTGARRLETVEEQEEENTVPDGKTISGVNDAVRLEDVHFGYTPDKEILHGVSIEVPKGQSVAVVGPTGSGKTTIMNLINRFYDVNSGAVTFDGTDVRDLKLENLRSNVGIVLQDSVLFSGTVADNIRYGKPDATMDEVIAAAKEAQLHDFVMTLPEQYDTPIENGQANFSTGQKQLLSIARTILVDPAFLILDEATSNVDTVTEEKIQKAMDNVIAGRTSFVIAHRLKTILNSDKIVVLKDGQVIEEGPHADLIKKRGFYYKLYTSQMAFE"]}}, {"location": "[977859:978168](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.1"], "codon_start": ["1"], "gene": ["glpE_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01009"], "locus_tag": ["MAAAAKME_10530"], "product": ["Thiosulfate sulfurtransferase GlpE"], "transl_table": ["11"], "translation": ["MGLFQANDVNAGVEEYQKTLQAKLIDVREEDEYAAGHIPASINIPLSSIEAAREEITDLDTPLFVYCRSGNRSGHAVTWLKQAGYSKVQNIGGIANYSGKTE"]}}, {"location": "[978216:978612](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "db_xref": ["COG:COG0328"], "gene": ["rnhA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A7Y4"], "locus_tag": ["MAAAAKME_10540"], "product": ["Ribonuclease HI"], "transl_table": ["11"], "translation": ["MIEHDGKQLADSAGRLGATNNEMEMTAFLESLKKLEQLGLTQQPLLFVLNSQYVIKSVSYTKDGPAWMKSWKKRDWKTANGKPVANQELWQDIDRELDKFDSSKLKFAWLRSTVSDAGSDFVDSMLIKAHG"]}}, {"location": "[978608:979271](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSDIGSGLNFNRPEWNQLLQKVEDREVNKIYVTHKDRFVRLAFDWFANFCKRHGSEIVVINNPATSPSQELVDDLVSIINLFSSRLPGLRRYKAEIKNDQELEAAEQVADTEVKQAEKAKKTYAVRKGRQPGIYYSWPEAEKQVNGFPGAEYKSFSRESDALNYLKLDPADPQNAVKQEPEYDKKDYSAVIYTGGACRRQHRHAQGRPMSKTAIRLLGPT"]}}, {"location": "[979765:980137](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "db_xref": ["COG:COG0328"], "gene": ["rnhA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A7Y4"], "locus_tag": ["MAAAAKME_10560"], "product": ["Ribonuclease HI"], "transl_table": ["11"], "translation": ["MTATGGKVGATNNQMEMTAVLESLKALEDMGLSQKKLLLSLDSDYVRKALSDSSNGTAWIKGWKERGWRKSNGEAVANPDLWKEIDKEFSKFSDLTLQHVTGHANSDGNNLADALVNEQMDKM"]}}, {"location": "[980753:980885](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVMRRFVKLLPIKAVMKIWIYWFTIQIGKFVPSLLNVDAIKI"]}}, {"location": "[981146:981413](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEIKFEEEQKRAAVYDGGKLIGQCVYEDKGDHWIITTTKVDLAYGGQGLGRKLVDTVASAAREKGARLRATCSYAAKVLTKPGYEDLR"]}}, {"location": "[981414:982134](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.18"], "codon_start": ["1"], "db_xref": ["COG:COG0546"], "gene": ["gph_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67359"], "locus_tag": ["MAAAAKME_10590"], "product": ["Phosphoglycolate phosphatase"], "transl_table": ["11"], "translation": ["MKYKAAIFDMDGTILDTSADLTSALNYAFEQTGHRHDFTVEDIKNFFGSGVVVAVTRALAYEAGSSRESLVAFGTKDERIPEAVTQAEVNRVLEVFKPYYADHCQIKTCPFPGILDLMKNLRQKGVKLAVVSNKPNEAVQVLVEELFPGSFDFALGEKSGIRRKPAPDMTSECVKVLGVPRDKCVYIGDSEIDIQTARNSEMDEIAVNWGFRSVPFLQKHGATVIVDTAEKLEEAILGE"]}}, {"location": "[983204:983675](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3279"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HDJ2"], "locus_tag": ["MAAAAKME_10600"], "product": ["putative HTH-type transcriptional regulator"], "transl_table": ["11"], "translation": ["MKVKVKLNKDQDLPLAVIYTDKMTEEVERAVAFLESSASSGPLIAQQEDRLVIIKPSDAILVRVEGGDTVIYTGKGKYFSRKRLYEVYQQLGQDFMQISKQAVVNLTCLESVEASFNGTMFLRLEHGLSDYIKEAYRITPIKKKPYYGCVLGGRIL"]}}, {"location": "[984123:984909](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["dinG_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02206"], "locus_tag": ["MAAAAKME_10610"], "product": ["3'-5' exonuclease DinG"], "transl_table": ["11"], "translation": ["MDSKLHDYTVFDLETTGKKIIQIGALKVRDDQTVAKFSTYVNPLEKINDYVSHLTGISNYQTDAAPLIDEVMPDFLDFVGDDTLVGHNILSFDCNVLADNGYPVANPKLDTLLLANSYKKRGLFADPIPNVRLSTLKEYYGININFHIAISDCITNNIVYQKLLDGDLAKATEIIDFTPKQVDSRLAGQRFVITGQFRQATRYELTSLIQSHGGKVTGSVSGVTDYLLKGELDHVTGKCKKAAEKGTAVIGYEDLMLLLQK"]}}, {"location": "[984913:985507](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVMTIILEVPLKSDNFLAKIRIPSAGKVSGNVYDLDTGEEYLLLRVESNTGSFSAVVKAEYRAILQDIAGKCFVKAQADRIKDGIKTRYGDEPDFPFKKFPDYAVFRNPQNRKWYGLLMAVLLGKLTGDEKDQQEAAVLNLKLAEGKMPALLKKADFFPAYHMNKQNWLSVLLNNDLPDEEVLAMLDESRAFTERKK"]}}, {"location": "[985520:986294](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1434"], "gene": ["ydcF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P34209"], "locus_tag": ["MAAAAKME_10630"], "product": ["Protein YdcF"], "transl_table": ["11"], "translation": ["MINDINTLADYLGPRDLPALTPADLEGKYGIPQADAFVLFGGSILPGGDVFAAAKKAEIAKKYIIVGGHGHTTDGLRAQAKAVFPDLDVDSLSEADIFAAYVQRKYQITADLLECQSTNSGNNITYLLDLLNRHNIDLSSVILCQDATMQLRLSAVLHKYRPELTIINYAAYQVHVLEKDGQLAYDKEIHGMWPMDRYISLLMGEIPRLRDNKDGYGPLGKDYIAHVDLPASVERAFSRLLKEYGGSVRQANPAYKS"]}}, {"location": "[986286:986859](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.183"], "codon_start": ["1"], "gene": ["bar"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16426"], "locus_tag": ["MAAAAKME_10640"], "product": ["Phosphinothricin N-acetyltransferase"], "transl_table": ["11"], "translation": ["MTELELRRANVGDAERLLEIYAPYVEKTAITFEDKVPSIGEFQNRILKTLRIYPYLVALKDGKIVGYAYASAFKERAAYDHSVELSIYVDANVRHQHVGRFLYDAIEDCLKKQGFLNLNACIAAPIGEDPYLDDNSIRFHEHLGYKFVGRFHQCGYKFGRWYDMVWMEKMLGEHTVPAPAIIPFPEMKND"]}}, {"location": "[987050:987641](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.59"], "codon_start": ["1"], "gene": ["thi4_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00304"], "locus_tag": ["MAAAAKME_10650"], "product": ["Thiamine thiazole synthase"], "transl_table": ["11"], "translation": ["MTEYRAKAHGFNSEITAIVEVENGEILKISAEGEVPNTVGALGVDTWLEEANAEHSVEVDAISGASVSTGALRKATQMAYAEATSGDVDAISSASIHNQPNNYPLLKEKFYEGDIEFDDEYDVIVVGAGGAGLSAAATAAENDASVLAIEKQGITGGTTSLSGGVMQAAGAGSDPTTQAQVRKSTKAAELLNRFLA"]}}, {"location": "[987711:987939](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MANHVFVQNNAAMLAVPVEERENFWHKLVKFYETGQQDDLNDFLYKTSIGIMPGGLTMEKTREIEERNRKWLGLE"]}}, {"location": "[988016:988433](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEYEYRLVDRDLAVDGVKRLLPDVVWKIANTELVEGIGLPEVQMICDGEAAEGMTVKEVITVHNLKRAMQFMLANLDRPVDLDLVKEYNRIIFESLCDKPGEIRSYPVRITGTDYKLGMPAIGKIEEVLQLAKEIDHP"]}}, {"location": "[988500:988695](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMLSEKIIDLLVCFVAFVVFAIVVSIYPEEMFALLIATVLLIGIYAVAKELVKDWLKHNHRFGV"]}}, {"location": "[988741:989587](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.16.-"], "codon_start": ["1"], "db_xref": ["COG:COG1619"], "gene": ["ykfA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34851"], "locus_tag": ["MAAAAKME_10690"], "product": ["putative murein peptide carboxypeptidase"], "transl_table": ["11"], "translation": ["MKAALVGCSNPLKAAYRPVVDQLVKILEDRGLEVVVSQFLTDDTLIGRGEKRARELESFFLDPEMGHIFDISGGDLANTVLGHLDLEQIKDSQAVFYGYSDLTTILTALAKNGNQAVNFQLSNCLVNKDLLKSGYFDRLLAGKEKNKELDELEVTFVRGSKMAGPVYGGNLRCLLKLAGTPDWPDFTGSILLLEAYRGQPELVASLLEQCRETGIFNQISGVLLGTFSELDKLKESQLPEEILLDLLPTNLPIAKTEFIGHRPDAKAIRLGQECVFKEVGV"]}}, {"location": "[989634:991059](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0144"], "gene": ["rsmF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SII2"], "locus_tag": ["MAAAAKME_10700"], "product": ["Ribosomal RNA small subunit methyltransferase F"], "transl_table": ["11"], "translation": ["MIEIPDQFKEKFTGLLGQEEAGKLLDSLAEPSKKAYRINSLKEGAVVYSQEEAVPGIPNAYYGGVSGKDPEWTAGMVYSQDPAAMFPAQAIPVKPGDKVLDLCAAPGGKSTALAQKLQGEGLLVANEISPSRAKILRENLERWGVSNAVVTNCDSFALSARFPGFFDAILVDAPCSGEGMFRKSEDAIKYWSQENVDLCADRQREILTEAVKMLKPGGYLLYSTCTFSPEEDEEIVSWLLDEYGFKLLPIAAEKAAPGRPEWGNGDASLANCARFWPQDGVGEGQFVASLQKAAGEESFAAEAGEVFSPVRKNKDKKKKGKGKNKGNRSSLERPSKEESCYISEAIAGFNWPESLASWPSQMLKSQDHVFVPALEPEQLKGIKVLNNGLELGILKKKRFEPSHQLAEVLGQVDQERVVDLTEEEYDHYLHGESLQVNSSLKGFVLVSCRGMIFSFGKLSGKGQLKNYYPKGLRQ"]}}, {"location": "[991051:992026](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRYKLFVILSTFFLFIMIGIVCSNMQSQLADQILQAQGMSMEARIVKPKKTMTIASFLKWIKKEFPKESIQMQFKSKEDKNQVLIWSQNRDLNYFPVSSGRFFSEDDFKGRVTIAAVSPSSAASQIKTQGNTYLIANGQYYSVVGSLKAVPYQSSKAYYLTTGVKQETGQSRINHFTLYVDASSQTIGKIASHLKSETYWPDFVKQGRQRRLTLLMPEALLILFLLGVGVLLMGLIAWLTWKETDLSHVKGDLLPNLLLNRSGRFIVFMVLEAFVSYFLLVWKAYYSNQSILGLLLLGTVVVELVVYVGMMVYMYRKGKQADD"]}}, {"location": "[992025:992766](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTQFIEKISALAKEFADPELDRQVQEIKMIDECVSSQRMLLFAPDRLGISDDRFAELTWELPDSQIKDLRALNNLLNNVRQYLSLEYGIWSLPNMETAQLFKNELGIETALEVMAGNAYWSKALSEAGIQVWATDSLEWSKSSKTGKKPFYPVENLPADQAVMKYATCDMILCSWAPNFGQADLELIAAKQHYAPAARLFFIGEKGVTNSPEFWTRKHFAKSSELRKINRSFKSYDFIKEKFIEVS"]}}, {"location": "[992876:993074](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRSTEETMLMDTMIANGVSNKMTEQATGLAAPKPVQKKNAAKLETRDMLLANGVDEEMADLAADL"]}}, {"location": "[993222:993834](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.19.3"], "codon_start": ["1"], "gene": ["pcp"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDD4"], "locus_tag": ["MAAAAKME_10740"], "product": ["Pyrrolidone-carboxylate peptidase"], "transl_table": ["11"], "translation": ["MTKVLVTGFNPFNHEKINPAIEAVKSLPDEIAGCEIIKLQLPTSYQKSEKKLQAAVEREEPDFVLNVGQAGGRACLTPELVAINYDDCPVADNDGEKREGQAIDPEGPAAYFTQLPVKKMVKAIKAAGIPAEVSTTAGCFVCNHVMYYAQSLRKEHPGMQAGFIHIPFLPEQVVKRPNQPSMALETIVTGLTAAIAAFLSDGD"]}}, {"location": "[993912:994665](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG2339"], "gene": ["prsW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50738"], "locus_tag": ["MAAAAKME_10750"], "product": ["Protease PrsW"], "transl_table": ["11"], "translation": ["MFFFFLEPVLIYNWLLILAAVIPAIFLMIKVYQSDRLEPESPYLLWKMVTGGIWSAVVAGILEWIANGVLTSYVSQKDPIYNVIMYFGIVAYAEEGAKYFFLKRRSWFSREFNCQYDGVVYAVFVALGFALWENISYVMIYGFSTALVRAVTAVPGHACFGVFMGIFYGLARGCAYLGKNIRSKFFRVLAIVVPAALHGSYDYVASLNSAEGQWIFLAFIAVLFFISFHLVNKMSKNDKYFQIDRRNYRF"]}}, {"location": "[994829:995588](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG1897"], "gene": ["metAA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PM9"], "locus_tag": ["MAAAAKME_10760"], "product": ["Homoserine O-acetyltransferase"], "transl_table": ["11"], "translation": ["MDSQRARTQNIRFLKILVVNLMPKKANTEVQLLRHLANTPLQLEVEFLYMASHKSKNTSNEYLENYYRTFAYIKDKRYDIVGWLLLAPRLVEQLPFQEVDYWSELCQLKWSKTYDYSRLHLCWGAQAGLYYHFGIDKQPLEKKLSGIYEQEVVGTSPLLRGFDDSYRCPHSRYTTIYPDQLKKCSLQILAEGPEVGVAIAASDDLRQIYNFGHLEYSRDTLSEDTIETLMPVSIRFCRLTTSRITIRRKSPA"]}}, {"location": "[995831:997262](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG1012"], "gene": ["gapN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q3C1A6"], "locus_tag": ["MAAAAKME_10770"], "product": ["NADP-dependent glyceraldehyde-3-phosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MTEHYLNYVNGEWRDSADAIEIFEPATGKSLGTVPAMSHEDVDYVMNSAKKALPAWRALSYVERAAYLQKAADILYRDAEKIGSTLSKEIAKGLKSSIGEVTRTAEIVEYTAKVGVTLDGEVMEGGNFEAASKNKLAVVRREPVGLVLAISPFNYPVNLAGSKIAPALMGGNVVAFKPPTQGSISGLLLAKAFAEAGLPAGVFNTITGRGRVIGDYIVEHPAVNFINFTGSSAVGKNIGKLAGMRPIMLELGGKDAAIVLEDADLDLTAKNIVAGAFGYSGQRCTAVKRVLVMDSVADELVEKVTALAKDLTVGIPEEDADITPLIDTKSADYVQGLIEEAAEKGAKPLFDFKREGNLIYPMVMDQVTTDMRLAWEEPFGPVLPFIRVKSADEAVMIANESEYGLQSSVFSRNFEKAFAIAGKLEVGTVHINNKTQRGPDNFPFLGVKSSGAGVQGVKYSIQAMTRVKSVVFNIED"]}}, {"location": "[997362:998883](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSELINTISSHQGQIWQALGEHLLLSMEALLLSCLIAIPLGMLLAHSKRAGEVVFQITSIIQTIPSLALLGLLIPFVGIGMTPALIALTAYGIMPIYQNTYSALRNIDPNLEEAADAFGLSRWKKLSRLEFPMALPMTLSGVSISLVMIIGTATLAAMIGAGGLGTYIMIGIQQNNNTYLLIGAGLSAVLTLAMSGLLKFMASSKKHFRVTAAVLAIFAIGLGVSQLPKALAPKEEKVVIAGKLGSEPDILINMYKYLIERNNPHVKVTLKNNFGGTSFLFNALKTGKIDIYPEFTGTVLQGLAKKKVATLHDPAKTYQLAKKLMAEEDQLTYLPAMNYQNGYDLAVTKAFAKKNNIKSLSDLAKVDASLTAAFDPDFANQQDGYLGLKKEYGLNFKVKTMEPALRYKAIASGKVAVVDGYTTDPQIKQYDLVALKDDKSFFPPYQGAPLLKTSFAKKHPGVVKSLNKLAGKITEAEMQEMNYKVTVKHESASKVARQYLKQHGLL"]}}, {"location": "[998886:999810](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.9"], "codon_start": ["1"], "gene": ["gbuA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RR46"], "locus_tag": ["MAAAAKME_10790"], "product": ["Glycine betaine/carnitine transport ATP-binding protein GbuA"], "transl_table": ["11"], "translation": ["MIEYRDVGMTYGDNVILKQINLTINDGELFVLVGPSGSGKTTLLRMINRLTEPTHGDVYLDGKRVKDHDLRQLRLHMGYVPQTSSLFPNLTVGDNITIQLEEAGVKKVERKKRALALLAQVGLEGDKYISRLPKELSGGQQQRVAIARAMASQPKLILMDESFSALDPVLRRQQQELLLDLHRQSKTTVVFVTHDMQEALRLGDRIGVIQDSCLMQVGSPEEIVQKPANSFVADFFKSARPRLGTMLELLASPYVNRITETDLPEVEKVEEVAGLAEKAGFLQFAYQGAGYQIKSSDLLHYFGKWGD"]}}, {"location": "[1000140:1000602](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1959"], "gene": ["ywnA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71036"], "locus_tag": ["MAAAAKME_10800"], "product": ["Putative HTH-type transcriptional regulator YwnA"], "transl_table": ["11"], "translation": ["MKVSTRFSDSIHLLAFLVIYKGKTTLSSNIIASSLNTSPVVVRRLMSNLRDAGFIKTTHGSPDPELLREPKDISLLEIYLATEGKSPLFAIDHETNPDCIVGGNIQPTLTDYFSHAETAAEAVLGKISLQDVIDTILVKEAAKKQAENSKDKE"]}}, {"location": "[1000890:1001475](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.5.2"], "codon_start": ["1"], "db_xref": ["COG:COG0702"], "gene": ["qorB_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39315"], "locus_tag": ["MAAAAKME_10810"], "product": ["Quinone oxidoreductase 2"], "transl_table": ["11"], "translation": ["MKEAGVKHLVDVSFMADQANNPFQMAAGYYAYLPARLASSKLSYAVVKNSLYADPLVPYLPELIARGNVIYPVGDQAMSFISRKDSAEAIANVAVRPYLRDKGQIYLLTQEKNYNMVELSRIMTEVTGEKIGYQPVSLEEFANIYRAEGDGDELASMYKAAAMGLMDGVTDDFTRITGHTPQNMKDFLAENYKK"]}}, {"location": "[1001536:1002448](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG0501"], "gene": ["htpX_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O30795"], "locus_tag": ["MAAAAKME_10820"], "product": ["Protease HtpX"], "transl_table": ["11"], "translation": ["MLYQQIEQNKRNTWVVLGGFTALLLAIAGLLSVYLTFWAGMIFLAAGIIYMVYIYFYSTRHLMRITHAVEINQENVPQLYEMVEEMSLAAGIPMPKVYAIPSNIPNAFATGRDPEHASLAVTSGLVKVMNHDELLGVIGHEISHIRNYDLRVTTITSALSSFIYLAAVYLLALGWTLFKMDGGVITKFICWFFGSIALAVGAGLFIVALPIAKLLNLSMSRQREYLADIGSVDLTRNPKCIVGALKKLEAIEQQYQKQKENPMVSALAFNNFQVKHWWTNLISDHPTLDRRIDRLEHTADLPK"]}}, {"location": "[1002599:1003025](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKGNFRTRKSNASRIRRTYKTYFAFNFSFLTRDKRYNLDKNNNSIDKNVQAKLLEKIEKLSIEEISVVLGWAKEQGLEQLPNNVVSLSINPFFSSSGRLEEYGDVYWVFRLNDKGRVIGKINRNIFYILAIDTKFNLYKH"]}}, {"location": "[1003168:1004341](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.4.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG1168"], "gene": ["patB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q08432"], "locus_tag": ["MAAAAKME_10840"], "product": ["Cystathionine beta-lyase PatB"], "transl_table": ["11"], "translation": ["MAEKQYDFTHVPKRQGNSIKWGVLKEKELPMWIAEMDFKIAPEIMASMEEKLKVAAFGYESVPAEYYKAVADWEEIEHRARPKEDWCVFASGVVPAISAMVRQFTSPGDQILVQEPVYNMFYSVIEGNGRRVISSDLIYENSKYSVNWADLEEKLATPSVRMMVFCNPHNPIGYAWSEEEVKRIAELCAKHQVLLISDEIHGDLVLTDEDITPAFTVDWDAKNWVVSLISPSKTFNLAALHAACAIIPNPDLRARAGESFFLAGIGEPNLLAIPAAIAAYEEGHDWLRELKQVLRDNFAYAREFLAKEVPEVKVLDSNASYLAWVDISALGMNAEDFCKYLREKTGLIISAGNGYRGNGHEFVRINLACPKELVIDGMQRLKQGVLNLNN"]}}, {"location": "[1004610:1010451](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKKKSARHLNKVAELAAALLLSASPLAGTFQSAAFVQAASQETVSPRSASRAALTKYLQQEQRYNAKKSYSKFQEAAKEQRQASGQAVSKKNESSVRVIVSLNKSAAFDHTSKPTGSAASVKKIEQASDQVKDGQEKVIKQVEEITGNKVRRQFGYLVNAFSIDMDLDDIDKVKDLPQVKNVTPVKVYHPTDESADQMAQVQDVWQEQKLKGEGMVISIIDTGIDSSHQDLKLDSGVSTALSKSEVESDKSKLGHGKYYTEKVPYGYNYADKNDQIVDNGCGEMHGQHVAGIAGANGQVKGVAPDAQLLAMKVFSNNAKNSGAYDDDIISAIEDSVKLGADVINMSLGSVSSDVDPSDPQQQAVAKASEAGVINVISAGNSGVAGSTADGNPVNNTGTSELSTVGTPGVTPDALTVASAENSKVTTDTVKDELGGVTFSSNSELKGAAQVTTQLESNYSVLTKKLKLVDMGLGGADDYTAEKKAEVKGQLAVVKRGAYTFSAKVANAKAAGAAGIVIYNSEDDGLLSMSLDDKTFPTLGMSKADGEVLAKAAKEGKSIKLKFGTALIDNSSAGKMSDFTSWGPTPELDFKPEITAPGGKIYSLANDNKYQQMSGTSMASPFVAGSEALILQGIKKQGLNLSGEELVQFAKNSAMNTSHPVYDTEHTKEIISPRRQGSGEINVKDAINNTVEVKAANGNGAAALKEIGRQTTFKVTLTNHGKKAQTYAVDNYGGPYTQATEAKSGEIYDTKIVKGQLTTETPKVTVQPGESVDVSFTLTLPYSFQRQNFVEGYVGFEAKDQATPNLVLPYMGFFGSYSQASVSAPMLYEGGNSNLINTIHSLVGVMFSNNNDMLGHTGYEGDDYSKYTDPDLIAISPNGDGSRDYAYPVLFFDRNYKEYTETITDAQGNKVKSLGVGKEGTKDYYSSSSGEWTTHSLDKWDGTDADGQVVKDGQYIYKVEFTPAIGGSKQELNIPVKVDTQAPEVSDLQVTKDGKLRLKAKDSGSGLDMTMFVAAVNGEEQKLALAPVKGESNVYESTSALTGLKDGKNQVETVLADYAGNVGYAATFSSQNNDADNKLLLFNLADGQKITSQSPAYDQEKETYTVTGTYKKNAKLKFNDVEAESDKNGYFEVKLPVKDGQNQLLIKDGDQILEAVNFTVKAEGPKVSVDEERSGRILAKDDSYTLSGTVSGLGESGKLELTNLSDKSKTDKLTVDQDGKFSQKVDLNYGDNPFELTATDADGNVTKKDVTIFTARSYTYNKDMLTFDNIASDLTVIGKMTPGYDEKDHSFTVTGKLAYPVARFQLNGDDVKYDPDTLKFSYTIKDLKNGNHSLTALVQDPRLNDGKPVVEWGYKLWVDLAAPSLQLEGMSLGEDGQLAVYTNKDVYDLKATINDNLSGYSLQVGSDTAYQDKTYKVFNEDFFKNRDAVKVSYPIKAEKDGFRKVKVTLTDGSDNKTEQDFTLYNHQADLEAPEVSASESKKTNQAVQLKVGNLSDVQKSAGKFKAADLYYSVDGKTWTKLDKDTVQVAENGKVEFKYQDVYGNESKVTTYEVKNIVKEVAAQPELKLTPDGEGKVKAELAFDKKDVDKDFNHIKYSLDGGKSWTDYKDAFTLTHNGTVEFKSYDDAGNESQVYTSVVKVERKLPAPDLTGTVEADKSVEVKAGNVEQAEKDADGKVTLLYSTDGKDWSKVDGEVKLTDSGRAMFKYRDGDDNESAVVVYEVKKVVEEKTAEFKPENKDDSKSDSKSDSKSDNKAETKSDVKTDTKSDVKSDGNGEAKSDNKPSAKDDKKTDSKTTSKSSAKKTSAKKNKKASKKASKKTVKKTKTYKKVKLTKLTKVYNKKGKVVGKLKKKTSVKLLSKKQKLHGKYYYRVGKNRYILASSLPKKTKKVKQVRARKNAKVYNKKGKVVGHLKKKQKVKLLSKKQKLHGKYYYRIGKNRYVNANVL"]}}, {"location": "[1010903:1011242](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.193"], "codon_start": ["1"], "gene": ["tmcA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01886"], "locus_tag": ["MAAAAKME_10860"], "product": ["tRNA(Met) cytidine acetyltransferase TmcA"], "transl_table": ["11"], "translation": ["MGFITGPVVDSKYDYIEDWMYEKETESLAGPGGNQMVLTIAVHPDYRGRGIGSQLLDRFAETAKEMKRGRIALTCLEDRVPFYEKNGYVNHGQAESEHAGEIWYNMIKEIEG"]}}, {"location": "[1011487:1011841](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTPANTQVKKEGITIYEVSSWGQVTDFGKCKVTEWLKLDQIVAKKEWVALLGKQTSSNYASLRILAARLSEDAAVLKKLAQDKNQQVRSAVAENANTPALFLAKLGVAAEVNAMAI"]}}, {"location": "[1011779:1011992](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNVTIEQAVKGYLVFSAKEGKLFREGRSYLAGKTYHNRYLAIYEKLEDAVVNASQYPSEEGRHHHLRSK"]}}, {"location": "[1012112:1012727](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNETITQLIQNYGYVAVALLIAAENIFPPIPSELILTFTGFLTLSVPGAIIASTIGAFIGAVTLYWVGTFFDQDRLSRFAASKVGRRFGLSPEKITKTENYFNSHGRPATFFGRFIPVVRSLISLPAGMSRFTLARFSFYTILGTAIWNTVLIYAGRFASNAYQQVVQEFEGLSLIVLIAFCAIAAAVYLLKKKGLIFKKFFCL"]}}, {"location": "[1013077:1014094](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG2502"], "gene": ["asnA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P00963"], "locus_tag": ["MAAAAKME_10900"], "product": ["Aspartate--ammonia ligase"], "transl_table": ["11"], "translation": ["MAKLVIPSDYDPKMTIRETEKAIRYIRETFQTEFGTAMNLERISAPMFVKKSSGLNDNLSGWEKPVSFTLHDGNEGELQIVHSLAKWKRWALKHYGFSHGEGLFTNMNAIRKDEEVLDNLHSVYVDQWDWEKVIDKSERTEATLRQTVQRIFETIKGMEYHVRALYPQAAYHLPEEISFVTSEELEARWPSLTPSEREDKICQEKGAVFLEHIGGALPLSKKPHDLRAPDYDDWTLNGDLLFWYEPLQRAFEVSSMSIRVDEDRLQEQLKLAGAEDRLDLPFHQALLKGDLPYSIGGGIGQSRLCMLLLGKAHIGEVQASIWPDEIVEKCQAAKIQLL"]}}, {"location": "[1014169:1015468](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.22"], "codon_start": ["1"], "gene": ["asnS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67572"], "locus_tag": ["MAAAAKME_10910"], "product": ["Asparagine--tRNA ligase"], "transl_table": ["11"], "translation": ["MTELISIRESSKHVDEEVRMHVWLTDKRSSGKIVFLQLRDGTAFFQGVVRKNDVSEEVFEAAKGLRQEASFYLTGTIHEDARSHFGYEIQISDLEVVSNNEGYPITNKEHGIDFLLDHRHLWLRSRRPFAIMQIRNRIFKATVDFFENEGFVKFDAPLLMHSAPEGTTELFHIDYFNHDAYLSQSGQLYGEVGAEAFGKIFTFGPTFRAEASKTRRHLTEFWMMEPEMAWMHQDESLDLQERFLSYVVGQVLEHCEYELSILGRDVDKLRPAAEGNYTRLSYDDAVKMLQEAGKDFKWGDDFGAPDEAFLSEQFDRPFFIVNYPVAIKPFYMKKNPENPLTYLCADVEAPEGYGEIMGGSEREADYDTLKAQIEEAGLNLDDYSWYLDLRKYGSVPHSGFGMGFERVIAWICKLDHVREAVPFPRMINRMQP"]}}, {"location": "[1015520:1016720](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL3"], "locus_tag": ["MAAAAKME_10920"], "product": ["ISL3 family transposase ISL3"], "transl_table": ["11"], "translation": ["MCTAIAELDTCPNCKSADYYIYNGFKVVHIPYISADESNPVIIKVKKHGIFCKNCELYSYPSTQIVDKYCHISNAVKRKIIVGLTKDHSMTSIAEENGVSVTTVQRYLDNCSAQFTPSFDSLPEHLAFDEFRGVGRKLHFICQDGEKHTIVAILENRFKNTIIKYFLQFPEIVRKTVRTVSMDLNCYYGDIVRQIFPNAELVIDRFHMVQMVNRSFIGFRVQVMKQLDKKSREYKLLKRYWKLYMKKYKDLEGSKQFYDRCLKVPYTPAQIVDEGLKCNETLKNTYDFMQDFVYALADKDTKKINDLLDSNIGQYCERLKTTIRTLRKNRRAVINGAKMSYSNGCLEGVNRKIKQIERTAYGYSNFTHLLKRIRLEQNIICFKKALNRRVLFSAFIKHM"]}}, {"location": "[1017059:1017584](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1609"], "gene": ["melR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34829"], "locus_tag": ["MAAAAKME_10930"], "product": ["HTH-type transcriptional repressor MelR"], "transl_table": ["11"], "translation": ["MADFGQAMQEALEVFWGQGKERIALLDGDLDSNFDKNNLVDFRFRDYKKSLAARGQYDPDLVYVGNFTPQSGYEAIKDALKSGSFPEALIAANDAMAIGALEAFKEAGIKVPEEVSLISFNDTTAAEFANPALTSVHVETQQMGRASVKVMKDLLDDDEAGTYKVTFPTKLVYR"]}}, {"location": "[1017716:1018016](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLATVSRVLNYDQTLSVNEATRQKIFETAEAMHYHKSRKTRKSKQKRLAICLWCDQDQEIKETSITIQSEPARKHRPRSRDLKARSFIRLILCPIQLL"]}}, {"location": "[1018108:1021135](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.23"], "codon_start": ["1"], "db_xref": ["COG:COG3250"], "gene": ["lacZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C1Y0"], "locus_tag": ["MAAAAKME_10950"], "product": ["Beta-galactosidase"], "transl_table": ["11"], "translation": ["MSNKLVKEKRVDQADLAWLTDPEVYEVNTIPPHSDHESFQSQEELEEGKSSLVQSLDGDWLIDYAENGQGPVNFYAEDFDDSNFKSVKVPGNLELQGFGQPQYVNVQYPWDGSEEIFPPQIPSKNPLASYVRYFDLDEAFWDKEVSLKFDGAATAIYVWLNGHFVGYGEDSFTPSEFMVTKFLKKENNRLAVALYKYSSASWLEDQDFWRMSGLFRSVTLQAKPRLHLEDLKLTASLTDNYQKGKLEVEANIAYRLPNASFKLEVRDSEGDLVAEKLGPIRSEQLEFTLADLPVAAWSAEKPNLYQVRLYLYQAGSLLEVSRQEVGFRNFELKDGIMYLNGQRIVFKGANRHEFDSKLGRAITEEDMIWDIKTMKRSNINAVRCSHYPNQSLFYRLCDKYGLYVIDEANLESHGTWEKVGGHEDPSFNVPGDDQHWLGASLSRVKNMMARDKNHASILIWSLGNESYAGTVFAQMADYVRKADPTRVQHYEGVTHNRKFDDATQIESRMYAPAKVIEEYLTNKPAKPFISVEYAHAMGNSVGDLAAYTALEKYPHYQGGFIWDWIDQGLEKDGHLLYGGDFDDRPTDYEFCGNGLVFADRTESPKLANVKALYANLKLEVKDGQLFLKNDNLFTNSSSYYFLTSLLVDGKLTYQSRPLTFGLEPGESGTFALPWPEVADEKGEVVYRVTAHLKEDLPWADEGFTVAEAEEVAQKLPEFKPEGRPDLVDSDYNLGLKGNNFQILFSKVKGWPVSLKYAGREYLKRLPEFTFWRALTDNDRGAGYGYDLARWENAGKYARLKDISCEVKEDSVLVKTAFTLPVALKGDLTVTYEVDGRGKIAVTADFPGAEEAGLLPAFGLNLALPKELTDYRYYGLGPNESYPDRLEGNYLGIYQGAVKKNFSPYLRPQETGNRSKVRWYQLFDEKGGLEFTANGADLNLSALPYSAAQIEAADHAFELTNNYTWVRALSAQMGVGGDDSWGQKVHPEFCLDAQKARQLRLVIQPLLLK"]}}, {"location": "[1021138:1023022](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2190"], "gene": ["lacS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7WTB2"], "locus_tag": ["MAAAAKME_10960"], "product": ["Lactose permease"], "transl_table": ["11"], "translation": ["MKKKLVSRLSYAAGAFGNDVFYATLSTYFIVFVTTHLFNAGDHKMIFIITNLITAIRIGEVLLDPLIGNAIDRTESRWGKFKPWVVGGGIISSLALLALFTDFGGINQSKPVVYLVIFGIVYLIMDIFYSFKDTGFWAMIPALSLDSREREKTSTFARVGSTIGANLVGVVITPIILFFSASKANPNGDKQGWFFFALIVAIVGILTSITVGLGTHEVKSALRESNEKTTLKQVFKVLGQNDQLLWLAFAYWFYGLGINTLNALQLYYFSYILGDARGYSLLYTINTFVGLISASFFPSLAKKFNRNRLFYACIAVMLLGIGVFSVASGSLALSLVGAEFFFIPQPLAFLVVLMIISDAVEYGQLKTGHRDEALTLSVRPLVDKLGGALSNWFVSLIALTAGMTTGATASTITAHGQMVFKLAMFALPAVMLLIAVSIFAKKVFLTEEKHAEIVDQLETQFGQSHAQKPAQAESFTLASPVSGQLMNLDMVDDPVFADKKLGDGFALVPADGKVYAPFAGTVRQLAKTRHSIVLENEHGVLVLIHLGLGTAKLNGTGFVSYVEEGSQVEAGQQILEFWDPAIKQAKLDDTVIVTVINSETFANSQMLLPIGHSVQALDDVFKLEGKN"]}}, {"location": "[1023187:1023385](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_10970"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMVDELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[1023637:1024861](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_10980"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1025211:1025721](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_10990"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MSSKNDQNVIGTTKKINKRTIAAKRRIMAQSKGTGVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMMKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDLAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKR"]}}, {"location": "[1025931:1026240](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTKNEPKIARSVEKFFKDYKVMELLRICGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[1026470:1026782](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0110"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HCZ5"], "locus_tag": ["MAAAAKME_11010"], "product": ["Putative acetyltransferase"], "transl_table": ["11"], "translation": ["MTFGDNVFIGPDCSFYTSGHPLDAARRNTGLEYAYPITVGNNVWIGGGVRVVPGVTIGDNSVIGVGSVVVKDVPANSVAAGNPCRVIREITEADKNSDLNWKK"]}}, {"location": "[1026832:1027060](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPTEKEKTLAGQVYNPGQDEELVTELTACKAKCLRYNQLPSGAEKKELLKEILAKAGKTATSNPTSGATMAGILK"]}}, {"location": "[1027128:1027440](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYVSANHKNGKPIHMNDNYKRQLVLRKLYPHAKVLNVYGDLEDGSHSDGRVKNSSSKSLRYLVSPKVKSYKEKKFTGPMAQHSRLRENPQVLKTAISFLWPNS"]}}, {"location": "[1027619:1028456](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerC_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01808"], "locus_tag": ["MAAAAKME_11040"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MYPHQEGFENWCRGPQRLSPKSIENADYCLDHFFTYAEVNFPSSDVNEITASNVRDYLQQLATKENLQVTTVNKYVSYIKKYFYYLALAGITPSYRLLDLKGYSFERRKTYVIDWPEHLPALIPYVKQPVTLWLLQLFALGYQAKELLGIRYSDVKDNLGEMTDYLTGTLSFEKDPDPYIFASRSGEPYASTNNIMQLVKVDKDLLSPMPITLTNLRLSYVYSLISQQKYSDKELLKIFRCPPKRLAYYQYNAAQCNLIPFSEEMLKKAGPDAAPARK"]}}, {"location": "[1028498:1029065](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.89"], "codon_start": ["1"], "gene": ["spsB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A068"], "locus_tag": ["MAAAAKME_11050"], "product": ["Signal peptidase IB"], "transl_table": ["11"], "translation": ["MKKKNKQAAEEESWGKFFRDVLVMFLVFVSIYYVVFSFFLANEVVSGPSMQPTFEDGDRLIAVRHFTPKRNDVVIIKAPNQPGAMYIKRLIGLPGDTVQSKNDVLYINGKKVAQPYLNNKYQKADRLAGVNYTNNFKVKLKKNQYWVMGDHRDVSNDSRRFGPVSRSSILSKVVLRYWPVTQIGTNFY"]}}, {"location": "[1029134:1029320](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKPEELSDAIIEFQSKHAVSDTTLAFASHLSVEKVHAMKQGRGNFTSDEINQMLDYLQSYL"]}}, {"location": "[1029711:1030950](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.4"], "codon_start": ["1"], "db_xref": ["COG:COG2195"], "gene": ["pepT_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L4G1"], "locus_tag": ["MAAAAKME_11070"], "product": ["Peptidase T"], "transl_table": ["11"], "translation": ["MEYPTLLPRFLKYVKINSRSDEHADRFPSTQREVDYQMVIMKELEELGLSDVHYNEKAGTVIATIPSNVDWDVPVMGFLAHCDTADFNSENVKPQITENYDGESKIQLGDSEFYLDPAVFPNLKKYKGQTIISASGDTLLGGDDKCGDAELVTFAEYLLAHPEIKHGEIRLGFTPDEEIGTGAQHFDVEDFNAAFAFTVDGEGPGKLDWGTFSAAQFELDIQGVNVHPAVAKGQMINAIQVGIDFQNSLPQDEVPEKTEGEEGFYHLMDFSGTVDNAHLSYIIRDFKRDGLEARKNLVKEKVAELNAKYGDRIKLKMWDQYYNMADELAKHMEIIDLARDAYRACGLTEINEEPVRGGTDGSQLTYMGLPCPNLFAGEENMHGRYEYTVLESMWKAVDVMIKMAELQAERNK"]}}, {"location": "[1030993:1031791](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0327"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PK0"], "locus_tag": ["MAAAAKME_11080"], "product": ["GTP cyclohydrolase 1 type 2"], "transl_table": ["11"], "translation": ["MTKVKDIVAKLNEAFPESIASAGDPVGLQIGSLEAPVHKILVTLDIRPNVVDEAIRRGADLIVSHHPLIFRPVNNLDYSDPQKAMYAKIIANGITVYSIHTNSDKAQDGSSDWQAEELGLLDVTGFAPDEDGIAIGRKGRLPEAMKAIDFAHYVKEKMGVDMVRLICADQDKMVETVAFVCGDGNKFWKQALADKCDAYITGDVYYHTGHDMISSGLVVVDPGHYTEKLFKYEAAKRLSAWQKEEGWSVECLISAESTDPFQNIF"]}}, {"location": "[1031783:1032476](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.217"], "codon_start": ["1"], "db_xref": ["COG:COG2384"], "gene": ["trmK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54471"], "locus_tag": ["MAAAAKME_11090"], "product": ["tRNA (adenine(22)-N(1))-methyltransferase"], "transl_table": ["11"], "translation": ["MNLRLNRLADMVDPGSRLADIGTDHAYLPILLVKSGKISHAIASDVAAGPLENAKTDIAAAGLSDQIETRLGSGLETIKESDQIDTVVIAGMGGKLMVNLLSEAASRGVYYPSLVLEANIGENTVRRWLMANKYEIVAEDIVYEAGHIYELIKARLTDQVHELTVREQEFGPLLLKNKTDVFYKKWQGQEAYYQKLLANLNKAREKDLTRIKEVENLLAMIKTELGGEND"]}}, {"location": "[1032619:1033060](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDRTEPTTLTNMCMIVDKDRVLTIDREDPVWPGLAFPGGHIEKHESFHDSVIREVKEEANLDIVSPRLVGFKQFFDKLDRRYLVFFYRADQFSGSLHASREGKLEWVKINDLPKRQLAYNFDRDLEVFLKSDLDEHVLLDKKDFLY"]}}, {"location": "[1033059:1033908](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKKKNNKKSKRIWGGVVTVALFAALFAFAGVYIKNYPVEKDVKLVATQPKALKAKKTVAEKDIWGYPFAKCYTKKIKYLSGQRYGKTDVCRRVYPKKSYFHDGWDFGWSEVGNKAAVLAIHPGTVKKVAYYTGLGWYIWVVSPDCYVEVYQEGFANRSDITVKAGQKVKLGDKLGRLTDSHLHLGITKTSADYISKHGHPYKNYWRDNDTWLNPMKVITDSLQLQEDVKEYNAKAASYNAKAASYNAKAASYNEKLAAKKKKLKVEESKHPYHYLKSFIK"]}}, {"location": "[1033953:1034679](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.63"], "codon_start": ["1"], "gene": ["ogt"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00772"], "locus_tag": ["MAAAAKME_11120"], "product": ["Methylated-DNA--protein-cysteine methyltransferase"], "transl_table": ["11"], "translation": ["MSLVFKLYYDMKPAEYLIQVRIAAAKQALQAGASAFDAAADSGYTNFSSFYAHFRKLSGMPPAKYRQLFAQNISRAVMDTPIGPLRIVASQDAILCVEPANYLEKKTGQATYQVPADRIIPNDPSGDLVKACMMELKEYFAGQRQKFDLPLSPEGTNFQQKVWQQLQQIPYGETRSYQQLAEMTGDKNASRAIGLANNCNPILILIPCHRVIGADGSLTGYAAGLAAKKLLLDLEKGGTKK"]}}, {"location": "[1034679:1034817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDDNEMWQAVQTCDPAEASKVVFDHSFSDRQELNQQLKELGVTRK"]}}, {"location": "[1035242:1035782](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKEREDVIERELQLCGYFAIVTSEKMTASEALNLYKSRDISEKLFGSDKTFLGNRSFRVASSQAAEAKIFIQFIALIIRARIYTLLRKRKAEMPGKPNYLSVPSALKELEKIDLIRQPNGNYKLDHAVTATQKVILGAFGLDEEWIKAQARQIGKDIQNAAMPEEQKDDDEDAENEEY"]}}, {"location": "[1035908:1036241](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALKLIKTKNAAFVVDEVQDNVREKMGILFGRAIHLYAKRVPTAANPKGVMQYSDYFSNQAVQVCRKDNIVEDRPVNEAENKIYQELSTGQGLDKDDREYLRDNYSEDQE"]}}, {"location": "[1036414:1036909](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVDDITYNETEGRYDSSIFTLEKNHEFSKAYRAKKNVQDYVFADGSAEKSVERKFAEDMDLDDKVAVYAKLPRGFQIPTPVGNYAPDWAIAFKKGSVKHIYFIAETKGSLSSMDLRPIEQAKIKCAKKLFNEMSTTDVIYEQVDSFKSLLDMMNEIPDKENTK"]}}, {"location": "[1036954:1039228](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGACSLDVEMETGTGKTYVYIKTMFELNKRYGWNKFIVVVPSIAVREGVQKSFQMMEDHFKEKYEKKAHTCIYNSKNLTEIDDFSSRADLSVMIINVQAFNARGKDARRIRMELDEFASRRPIDVIKANRPIVILDEPQKMGGKKTQESLKEFNPLFTLNYSATHKEHHDLVYVLDALDAYKKKLVKKIEVKGFDIKNLRGTDGYLYLENIVISPNHPPRARLEFEIKYNKSINREVRILGVDDDLYALSKGLEQYQGYHINDIDPINGLVTFTNGVEIHTGEVQGDVSEKDIRRVQIRETIRSHFEKEKDLYNRGIKTLSLFFIDKVEHYRKYDEEGNEVNSEYGQMFEEEYNSILNEYLTLFDTPYEKYLKSIDVKKTHAGYFSIDKKGHKIDSKIKRGSDISDDESAYELILKDKEKLLSFDNPVRFIFSHSALREGWDNPNVFQICTLKHGGDSTTNKRQEVGRGLRICVNQDGDRMDEHILGAEVQDVNKLTVIASDGYKDFVSSLQKEIKDDLYERPTKITLDFFENKQIKHNDEVVKISKEQSNVIMHYLIKNDYIDDDDHVTDTYRTDVANNTLKPLPEKYGVRELTPEIHALVQSVYDDHALDDFVLDGRKTKIPENNLNDNFNKEEFQKLWQQINHKYSYTVHFDSKELIENSVNYINSKLYVAPLQYTVTKGTQGEEWSSDSVKAGSGFVSESRQTYTLTRGETSQVKYDLIGKISAGTHLTRRTVVKILKTIQPAKFKMYQYNPE"]}}, {"location": "[1039517:1041392](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKLKMHTPDIAEQNYKKLAELFPDAVTEIKDEDGNTVRAIDKNVLMQEINTKVIDDGQERYQFTWPDKRKSMVMANAPISKTLRLEKEKSVGRDGTPGGVDSENIYIEGDNLDALKLLQETYLGKVKMIYIDPPYNTGNDFIYEDDFAQSVDEYADNSGQTDEEGNRLVQNSESNGRFHTDWLNMIYPRLRLAKDLLAPDGLIFISIDDNEFGNLKKICDEIFGTQSFLATFVWKRRSSSQLDKSKCSTDHEYVLAYKREKFTALRGIDKDYKGYSNPDSDPRGPWTPGDLTVGMTADMRPNQYYDLVDPKTGKVYKPNYNRVWSYIPESMNQLIKENRIVFPEDTSKRPMRKRFASELNSATNPQSTWLSDVGMNIEGTKQMYDLFGKSFFPYTKPMSLIKSLILQATEKDSIIVDFFSGSATTAQAAMQLNAEDGGKRKYILVQLQEETGQKSEAYKSGFKNICDVGEERIRRAGKKIKDETGADIDYGFRCFKVDSSNMKDVYYAPADIEQLSLDGFEDNIKEDRTPEDLLIQVMLDLGILLSSDIETQEIAGKKVFSVADGYLLACFDKNVTEETVIEIAKKRPFYAVFRDNSMANDIVAANFEQIFETYSPETVRKVL"]}}, {"location": "[1041384:1042008](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIDFPESTKTNRRIPKEAFYKHLSLSTALKSKFVSDISRIVAENSLTKENLNLVKDSEIKEILLLSIELKKQDYDQRIIEAIAKGNPHKLVFLMSYEDQKQLAVYYQKLYMTEWMPEAKVELHLSGDSLEDIWSGLVRQIAIGPDTQISSKMSLDDQLMRQDEIVQLQQQIKKLEKAAWGETQPKKKFDLYQDLKKHKEQLEVLIRG"]}}, {"location": "[1042008:1045245](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "gene": ["rapA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01821"], "locus_tag": ["MAAAAKME_11200"], "product": ["RNA polymerase-associated protein RapA"], "transl_table": ["11"], "translation": ["MGVKNFNNTTEVVRDDLKKQITPNSKVSVAAACFSIYAYQALKEELEKCSEFRFIFTSPTFVPDQMPKERREFYIPRITRENSLYGTEFEVRLRNELKQKAIAKECANWIRHKARFLTNTTDESINQFLTVENYENTYTYMPFNEFTTVGLGCERGNTMTNMTMRFDNQASQALLDTFESIWQDKEKMVDVTDEIIDKISSVYQENSPELIYFMTLYNVFSEFLADVSEDVLPNEATGFKNSVIWNKLYNFQKDAALGIINKLEQYNGCILADSVGLGKTFTALAVIKYYEGRNKSVLVLCPKKLSENWMTYKGNLVNNPLYKDRFRYDVLYHTDLSRDHGKTATGLPIEQINWGNYDLVVIDESHNFRNGNGTNTHGGEKENRYMRLMNRIIRAGVNTKVLMLSATPVNNRFNDLRNQLALAYEGVPDEINEKLNTESNIDTIFRRAQSVYNAWCKRPEVERTTKNLLRELDFDFFEVLDAVTIARSRYHIQNYYDTTEIGTFPKRLKPISLYPKLTDKPGAINYKDVYECLNQLNLAIYTPTKYILPSRLSKYVSERETEKFRVGRESGIQRLMSINLLKRMESSVHSFLLTLQKIYAYMCDTSDAIDRFQKDGKGKLNELTDLSNAATDFDEDDQNTDIFTVGKKVQIDLRDMDYLSWQREIKADVDVLETLIHMTEDISPEYDFKLNQLFEVIRNKEEHPINPGNKKILIFTAFANTAEYLYENIAPRAKEIGLNTALVTGSIEGKTTIPNFRAEMNHVLTCFSPMSKDRNVVYPDDTEKNIDILIATDCISEGQNLQDCDFCINYDIHWNPVRIIQRFGRIDRIGSKNKVIQLVNFWPDLTLDEYINLKDRVETRMKISVMTSTGDDDLINPEEKGDLSYRKTQLKRLQEEVVDLEDMNEGISITDLGLNDFRMDLLAYMKEHKDLDRLPFGIHAIVHGDKPGVIFVLKNVNKKINIKDRNRFHPFYMVYVDMDGEILVNHLQPKDILDEMRHLAKGRNEPDKELCKEFNRVTKDGRQMQEVSKLLEDAIGSIIEAKNEEDIESFFSAGTTTFQSGGFSGLDDFELIDFLVVM"]}}, {"location": "[1045579:1046176](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRCLTAYNSSYSNKSFHEKKTAENGFDHSGFRLNDFVKGCDQWTEKELIERSELLKQTALKLWPMPSSNFQPKVVENEVYGLDDDNNYANVKIASYSLMNTPYKLPKRTWKEMYIGVVRALYELDPAPMRQLIAGDRTKLEKVLIDHPENGFSQVADGVYLYTSTDNWNKIHKLRDLFDFYGIDQSELQIEVVAGKKE"]}}, {"location": "[1046323:1046503](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDAKTRKALQDFGFRIEEDGKHYRLTFFGDDRYNTTVAKTPSDARAGKNIAHYIEQTMM"]}}, {"location": "[1046871:1047123](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_11230"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFMSVEKRDDEDDRTIGELFYYMVDELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRFPKYMQEAISPSLAA"]}}, {"location": "[1047822:1050111](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.8"], "codon_start": ["1"], "gene": ["copB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05425"], "locus_tag": ["MAAAAKME_11240"], "product": ["Copper-exporting P-type ATPase B"], "transl_table": ["11"], "translation": ["MANKEDHMNMKNMSAKNMENKEDHMNMKNMSAKNMENNESNMCHMDHDMTETDHNQMNMDHDMAETDHNQMNMDHDMAEMDHSQMNMNHGDMDMAGTDMMMHGGTMMHMGNLKVKFWVSVVLAIPVLLLAPIMGLNVSILSFSSPLIVGIIIVLFDTALYFYGGMPFLKGAKAEIQNKSPEMMTLVTLGISVSYFYSLYAFIANNFLNPANHVMDFSFELATLILIMLLGHWIEMNALMGAGDALQKMAALLPKTAHLVTDNGETKEVPVSDLKVGQAFQVRSGESIPADGVITAGESTVNEALVTGESAAVPKKVGDKVIGGATNNNGTLTVKISGTGDSGYLSQVMKMVKNAQQAKSKAEDKADLVAKYLFYAAFSVGIIAFFAWLPQGLATAMTIMVTVFVIACPHALGLAIPLVVSRSTTIGAQNGLLVRNRQAIEASQHVSHVLLDKTGTLTEGKFTVNALIPNDGIDETTLLSRLAALESNSTHPLAQAIITEAQAKGIEVVAAEKSQNIPGVGISGNVDGTDYMIVNGNYLKKQGIKFDEAAADKWAAKGNSVSFLLQGTQVQGMVAEGDTIKAGAKELISGLQKRGITPVMLTGDNPKAAEHVANLLGLTEFHAGLLPDDKQKIVADYQAKGNHVIMVGDGVNDAPSLAAADIGIAIGAGTDVAIDSADVVLVKSEPSDILHFLDLAKITNRKMVQNLWWGAGYNIVAIPLAAGVLSFIGIILDPAVGAVVMAMSTIIVAINAMGLTAEKIKNV"]}}, {"location": "[1051346:1051592](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFSYYQSTTVSSEKVSADELSDLEKAVAVNPTLERSNWGWEIDPVGLRLALNHLTDRYHLPSSSLKTAWRPTTRSKTARS"]}}, {"location": "[1051645:1051852](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.86"], "codon_start": ["1"], "db_xref": ["COG:COG2723"], "gene": ["bglA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46829"], "locus_tag": ["MAAAAKME_11260"], "product": ["6-phospho-beta-glucosidase BglA"], "transl_table": ["11"], "translation": ["MRSTALTLGYLPWGPIDLVSAGTGQMDKRYGFIYVNKNDQGVGDLSRTPKDSYFWYKKVIASNGTDLD"]}}, {"location": "[1052094:1053231](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0568"], "gene": ["sigA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0J0"], "locus_tag": ["MAAAAKME_11270"], "product": ["RNA polymerase sigma factor SigA"], "transl_table": ["11"], "translation": ["MAKENASNVNDFPLEKAVKMVITGLKKTKRIREKDLKARLLLPYGLNDAETAKLVEEFADNGISIVDDQGEPSALALKAEEEAEKKEQKELAASSDNDQVYDSVRMYLKEIGKVPLLSRDEEVEVAKRIKNGDESAKDELAAANLRLVVSIAKRYAKHNGKMGILDLIQEGNIGLMKAVDKFDYSKGFKFSTYATWWIRQAITRALADQDRMIRIPVHVVESINKMNRIQRTLQQDLDRNAKPEELAAEMNEPLQKVQEIITVAKNQETDSLDKSVGEEGDSQLGDLLEDNKAINPEEYTAFEMLKDQLSGMMGEFLTDREAKVLKLRFGLENYEPHTLEEVGRSLGVTRERVRQIEDKAVKKLKQHSDLLQDYFSAE"]}}, {"location": "[1053266:1054385](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0568"], "gene": ["sigA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P06224"], "locus_tag": ["MAAAAKME_11280"], "product": ["RNA polymerase sigma factor SigA"], "transl_table": ["11"], "translation": ["MTEEKQTKANEMSLEKAVKLVVEGVKASHQITEAAFEDRLIKPYKLEGKAVDQLVQEFEDNGISIVDEDGKPSKLALTKQKNVEKAELNNMAAPTGMKMNDPVRMYLKEIGRFNLLTSEEEVALAKRIEAGDEEAKQELAEANLRLVVSIAKRYVGRGMNFLDLIQEGNMGLMKAVDKFDYRLGFKFSTYATWWIRQAITRAIADQARTIRIPVHMVETINKLIRIQRQLLQDLGRDPEPEEIAAEMDLPVKKVREALKVAQEPVSLETPIGEEDDSHLGDFIEDKDTTSPEQHAASEMLRDQLAEVLDTLTDREENVLRLRFGLDDGNPRTLEEVGRVFGVTRERIRQIEAKALRKLRHPSRSNKLRDFLE"]}}, {"location": "[1054356:1056195](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.-"], "codon_start": ["1"], "db_xref": ["COG:COG0358"], "gene": ["dnaG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05096"], "locus_tag": ["MAAAAKME_11290"], "product": ["DNA primase"], "transl_table": ["11"], "translation": ["MAGRISEDFINEVRGSVNIVDVISQYVSLEKRGKDYVGLCPFHQEKTPSFSVNPDKQFFYCFGCHKGGNVYKFIMEKEEVTFPESVERVAEFANIPMPQEYQEQQVKLNPLMQMHKEAADFYQQVLMTTKIGERGLEYARKRGLDDDLLKHFKIGYAPGKSDLLLTYLRGEGYTDNQLAESGLFVKSQDGRLFDRFRDRLMFPMSDESGHLVAFSGRRISDDPEEPKYLNSPETSIFNKSDLLFHFSEAKKHARKEGHLVLFEGHMDVISAYKAGVKTGIASMGTSLTQQQVYMIRRITKQVVINYDGDDPGQHATERAVGLFKQAGNFDLGIVILPDKLDPDEYVKQYGPDSYQAAIRGAISTTDFSLQRLKKKYNINNEREQVAYLSEAVAEIAALPNPVEQELYVGRLAKETGVSLDALKVNLSRARRKQRRVDQHTSSEVLPELAPLAPAADPQPVTRALKAQQRLLYAYIYSDEARDYLIVNGFVFPNPEYERLAKLWLNYIETHENVSLSGFLDFIPEELQSIIVSTDMTGLPGEITLEELEAQVRVLNLCKIDDEIDRHMQAIADARRRNDQTAILLETQAILQLRQLKLQEEEAVSDRRKANQG"]}}, {"location": "[1056226:1058293](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0751"], "gene": ["glyS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P00961"], "locus_tag": ["MAAAAKME_11300"], "product": ["Glycine--tRNA ligase beta subunit"], "transl_table": ["11"], "translation": ["MTKDFLFEIGVEEMPAHVVSKSVKQLVDRTGKFLKENGLGFKEIKTYSTPRRLTVLVKELDEKQADVDEVKKGPAKKIAQDADGNWTKAAVGFARGQGMSADDIYFEELKGVEYAYVHVQKAGKEAKEILLGLDEVIKAMTFPTKMRWDSQDFEFVRPIHWLVALYGSEVVPVEFLDITAGRKTAGHRFLGDSVVLANADDYVEALRDQYVIVDADERKDMIVSQINDLVNSHNWQIKLDASLLEEVNKLVEYPTVFAGSFDQKYLEIPDEVLITSMKDNQRYFEVYDQEGKLINCFISVRNGNKDHLENVISGNEKVLVARLDDAVFFYDEDRKYPISHFVDRMDSVSFHDKIGSMAEKMTRVRIIGYYLAKRFGLSAEEVADFDRVSGLYKFDLVTQMVGEFAELQGVMGMHYACLAGENENVSVAIKEHYMPTTAEGDLPKTKVGALLSVADKLDTIIAFFGAGMIPSSSNDPYALRRYAYGIVRILLNEDWSLPFDQVVPEIVELLSGKTPAKMPQGAEEDKQLADFIRDRIKQFLQKNNYQYDVIDAVLASSEQDPSQILAAAKVLQQHHDDEAFKPVVESLTRIANILKKAKFSQASPVDPSLFEDRSEQDLYDGVEALANVKDHAELYEAFVALQGVIDRYFDVNMIMAKDEAVKNNRLSQLAAVNDLAKRLGDLSKLVIK"]}}, {"location": "[1058285:1059197](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0752"], "gene": ["glyQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67081"], "locus_tag": ["MAAAAKME_11310"], "product": ["Glycine--tRNA ligase alpha subunit"], "transl_table": ["11"], "translation": ["MAQKLDIQTMIFKLEQFWASKGCMIMPSYDENKGAGTMSPYTFLRAVGPEPWKACYVEPSRRPADGRYGDNPNRLFQHHQFQVVLKPAPLEIQQYYLDSLKVLGIEPLEHDIRFVEDNWENPSMGCAGVGWEVWLDGMEVSQFTYFQTVGELDVKPTMGEITYGVERLASYIQDVNSVFDLEWGDGVLYRDIFKEPEYEHSKYAFEESDQKQLLEFFDTYERIAKRLLGQNLVHPAYDYILKCSHTFNLLDARGAVSVTERAGYLHRIRNMAHEVAVKFVEEREKRGFPLLKSAQAKAEASND"]}}, {"location": "[1059461:1060211](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1381"], "gene": ["recO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42095"], "locus_tag": ["MAAAAKME_11320"], "product": ["DNA repair protein RecO"], "transl_table": ["11"], "translation": ["MAADLLDVHGLLFKRQQYKEADLLAKLWTKELGIVTVIAKGGMRPKSQLAAAVLPFTEGTFGILTRYKGISQLRTYKKLSQHDELFTDLDKNAYLSYLFDLADHAFSEYQKLGGYYDLLLVAFNRIVAGQDPEIIAQIVQLQLLDAFGVAPQLGACVICGKEKGIFDYSIAAGGVVCSDHFRSVSRLHLSPKATALIRTLALLPISRLGEIQIGEDLKKESRRAIAQIYQATVDLHLPSLRFLNEVRGS"]}}, {"location": "[1060210:1061116](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["era"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64085"], "locus_tag": ["MAAAAKME_11330"], "product": ["GTPase Era"], "transl_table": ["11"], "translation": ["MGQTSKHKSGFVALVGRPNVGKSTLMNRLIGQKVAITSAKPQTTRNKISGIYTEDDMQVVFVDTPGIFKSHSDLDEYMDKASLSSLKDVDLVMFMVDAKEAGKGEEYVAGLLKDLDIPVFLVINKIDQVHPNELLPIIDSYQAVGKFAEFLPISARQGNGVDDLLKTLKDYLPEGPQYYASDEITDRPEYFVVAEMIREQILRLTDQEVPHSTAVWVDQMNQRINGKLQIDATIFVEKDGQKRIIIGQRGSMIKQIGMRSRKEIENLLGEKVNLKLWVKVRRDWRQDPAFLKSIGYDKKEL"]}}, {"location": "[1061099:1061519](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.5"], "codon_start": ["1"], "db_xref": ["COG:COG0295"], "gene": ["cdd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19079"], "locus_tag": ["MAAAAKME_11340"], "product": ["Cytidine deaminase"], "transl_table": ["11"], "translation": ["MNELEEKLFLLAKDHLADAYSPYSHFHVASALVTDAGEIFTGVNIENSSFGLTNCAERTAIFSWVNAGRTGKIKCLLIIGNTDRPISPCGACRQVMSEFMAPETEVILTDSQGDYERFTVEQLIPYHFTEKDIQDGANK"]}}, {"location": "[1061520:1062045](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["ybeY"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00009"], "locus_tag": ["MAAAAKME_11350"], "product": ["Endoribonuclease YbeY"], "transl_table": ["11"], "translation": ["MQGIDVSYSDEVGFLTKGDRDWEDWIMQLLLMAKKEIGKDNAQEMSINFVDEDRSQAINRDYRDKDRPTDVISFAIEDGDDGLDLSMFTQDPDFTEDIGDLFMCPSVIERHSKEYGTGFDREFGYTIVHGYLHLNCYDHIEPDEAKEMFGIQGKVLEEYGLPLYPDQLDEGRGK"]}}, {"location": "[1062044:1063109](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1702"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIA3"], "locus_tag": ["MAAAAKME_11360"], "product": ["PhoH-like protein"], "transl_table": ["11"], "translation": ["MLIFRVLFWPESCIIGLEEYSLADRDVLARWFENEGVLLLEKKFLPHSSENVQKLVGVNDSNLKLIEEGYEVTVIDLGGQIKVAGPEEQVETVLRVLKALDGVASNGINLTPADVVSAMKMADRGTTEYFGDLYKQILIRDAKGRPVRVKNMIQKSYVEAINKSDVVFGIGPAGTGKTFLAVVCAVAAFKRGEVSKIILTRPAVEAGESLGFLPGDLKEKVDPYLRPIYDSLYAILGQGPTDRLMERGVIEIAPLAYMRGRTLEEAFVILDEAQNTTDAQMKMFLTRLGFNSKMVVNGDMTQIDLPGKANSGLITARNILQGIDQIKFVEFSAADVVRHPVVAKIIKAYEEEGE"]}}, {"location": "[1063145:1063322](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23829"], "locus_tag": ["MAAAAKME_11370"], "product": ["30S ribosomal protein S21"], "transl_table": ["11"], "translation": ["MAKTIVHENESIDDALRRFKRSVSRSGTLQEYRKREFYEKPSVRRKLKSEAARKRRHY"]}}, {"location": "[1063490:1064348](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.11.32"], "codon_start": ["1"], "db_xref": ["COG:COG1806"], "gene": ["yqfL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54470"], "locus_tag": ["MAAAAKME_11380"], "product": ["Putative pyruvate, phosphate dikinase regulatory protein"], "transl_table": ["11"], "translation": ["MTENKAENKQTEKTEKMEVNIIIISDSAGETAFNNAQAAAVQFPDAEVNYRRYPFIVNEKKLAATLEEIEQYPNLVIVYSMLDEKLQLPIIKFAREHKARYIDILSPIIEAISQTTHMKPTGLVGANHQLTNKYFNRISAMEFAVMYDDGKDPRGFLEADVVLLGVSRTSKTPLSLLLANKGLKVANLPLVPQTHIPNEIYQIDPTKIIGLTTDPQVLNRIRRQRMISYGMDPDTAYSNMDSINAELDSAMALYKKLGCFVINVAERSIEETAALIMNHLSYEED"]}}, {"location": "[1064407:1064623](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MATEIATTYAKQHGHHNVKLLMTKTSPDKRSEYFYVFSVTDSLRENGKKEYFILVDPVSGEVFKVDESPLK"]}}, {"location": "[1064745:1065630](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLFDLNRFSRNYGFLVKIGAAILYSVMIAVALNFFWRPGHIYSSGITGFAQIVNTVTSRYMPFTITTEVMYFALNVPLFILAWFKIGYEFTGYTIFAVAMSAIMMRFIQPTQVSLDPILCAIFGAAFNGIGTGMALKSGISTGGLDILGIVVRKKTGVNYGKFNILVNLIIVLIAGFLFDWSRALYTVLNIFINGRFIDSVYTQHNKLQVMIVTEHPNAIIEGIQEKMHRGITIFHDVEGAYGHTEKTVLLTIIDTYDLYDIRTTVEKCDPFAFMGVTEVQKVYGRFREQEVV"]}}, {"location": "[1066784:1066985](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["secY2_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01466"], "locus_tag": ["MAAAAKME_11410"], "product": ["Accessory Sec system protein translocase subunit SecY2"], "transl_table": ["11"], "translation": ["MTVIQAAVMLRKFQLTDNGFGSRLAARLFLMAGGFLLIWLSVENDKNVLGGISLILMANMFFYAWC"]}}, {"location": "[1066993:1067305](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["secY2_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01466"], "locus_tag": ["MAAAAKME_11420"], "product": ["Accessory Sec system protein translocase subunit SecY2"], "transl_table": ["11"], "translation": ["MGKKASLKDLGISTILAKAWWSMLYLGIFVFGKHISLPFAKLQTGQVNPLLVATGGDSSQASLFSLGISPWMSAMIIIGMLAQLRLPMMSKMTERKMGMAKRP"]}}, {"location": "[1067548:1068733](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0436"], "gene": ["dapX_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16524"], "locus_tag": ["MAAAAKME_11430"], "product": ["putative N-acetyl-LL-diaminopimelate aminotransferase"], "transl_table": ["11"], "translation": ["MPKLAQDLLPIINHKLDAVVPSDIRRFDKYVSQFDDVVKLTLGEPDLNTPEHIKQAAIRDIENNDSHYGPQSGKPELLQAISKYVKGVTGVDYDPASEITVTVGATEALNCSLSVLLNDGDKVIVPTPVWSMYMQLVCLTGATPVEVDTSDTGFILTPEKLEEVIEREGKGVKAVMLNDPTNPTGVTYPKEVIEGLAEVIKKHHMYAISDEIYSELIYGDAKHYSLATYIPDRTIFISGLSKSHAMTGWRLGYICGPAEIMASVRKMNDFMITVVTNNVQAAAIEALTNGLDDPKEFRDIYQRRVNFMEKGLKKLGFDMALPRGAFYIFAKIPEKYQGDDVGFAKSLAKDARVGVIPGSYFGAGGAGYVRMSYASSDEVLKEALKRITKFVEAE"]}}, {"location": "[1068914:1070111](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.20"], "codon_start": ["1"], "db_xref": ["COG:COG0019"], "gene": ["lysA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIU7"], "locus_tag": ["MAAAAKME_11440"], "product": ["Diaminopimelate decarboxylase"], "transl_table": ["11"], "translation": ["MGKIRQAIRAFKRVFEEEGVDYEVSYASKAFSCLAIYQVINEEGGHTDVVSGGELWTAMKAGFPMDKVSFHGNNKSRAELELAVDQGVGVIILDNFHEIDLLSQILEEKNASSKVMLRVTPGISAHTNEYIQTGQVDSKFGFDMESGQADRALELVLSNPRMKMAGIHAHIGSQIFDVRGFVGCADKLCQLASAWKEKYGYETDILNVGGGFGIHYTDQDQPLPAEEFVRAIVKEVKSKCQENNLKLPAIWIEPGRSIVGPAGFSLYTVGSRKDLPGYPSYVALDGGMGDNIRPALYQAEYSAVVADRPQAEDEERVNLVGKYCESGDILIKSCPLPKTEPGDVVALLSTGAYGYSMASNYNRNPRPAVVFAEDGVDQLVIKRESYDDLIANDLKYQK"]}}, {"location": "[1070381:1070455](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_11450"], "note": ["tRNA-Gln(ttg)"], "product": ["tRNA-Gln"]}}, {"location": "[1070580:1071276](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKIKCELCVQRDLLKEGSRFVCQTCGAAYSADQLRRQFDLADQAEIYAEAKQAYRAKRFKQARQLYLALAEEGDQQAAFYASLSSSQLGPAADFAPLLNQLRSALAASRDLGEVIVFALAVEEECEEDFQKQAQRLELNSRQTLEKAHQKMQKEAGRDWLLMSQAAHLCVGESDDLAAVSPYFWELVDAIIDDLSINQKRGTIALGNVKEERDYFEALKAEKKAKKLVNG"]}}, {"location": "[1071921:1072041](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKLYSVLTAAAIMPLCLLAGQESQASQADEYNPEVRNF"]}}, {"location": "[1072223:1073120](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["lacX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23496"], "locus_tag": ["MAAAAKME_11480"], "product": ["Protein LacX, plasmid"], "transl_table": ["11"], "translation": ["MDYTIENEILKVTVSSRGAELQSVIGKHIGNEYIWQADPEVWGRHAPVLFPIVGKLKNDEYSYQGQTYHMGQHGFARNMEFALEEQTKEKLTFLLTDTEETRAVYPFKFEFRVSYELLNNMIKESFHVTNKGEGDMIFGVGGHPGFALPVEDGVKKDDFYLQVNPAKPRVQVPLEGGLLNWEKRFLAPTESLITITDDLFKDDAMVLVMRHPDNKFSIKTETSRFHINVRTDSAPYVGIWSQYPKTADYVCIEPWWGIADLTDTDGDLEDKKGMNRLASGEDFEASFRMSFHSKVQSE"]}}, {"location": "[1073201:1074596](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1220"], "gene": ["clpY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39778"], "locus_tag": ["MAAAAKME_11490"], "product": ["ATP-dependent protease ATPase subunit ClpY"], "transl_table": ["11"], "translation": ["MREKTPKQIVDLLDKYIVGQNEAKKSVAIALYNRYRRTQLPEDVQKDITPKNILMAGPTGVGKTEIARRLADIVDAPFVKVEATKFTEVGYVGRDVESMVRDLANEAVRIVEKEEFVKVESQAIRQANKTLVRLLVPGVKRNNRQNQMQQMQEMMQSLLAGGGMPEETEEVTDEIRNQRLSVAEKLDRGLLENEEVTIEVEQAPKANPMGDMMGQMGMDMSSMLGDMLPKKKVKRTLPVGQARKLLVQEEEKKLVNYDDIYQKAMDRAGQSGIIFIDEIDKITAADKRNSAGVSREGVQRDILPIVEGSTVSTKYGPLSTDHILFIAAGAFAESKPSDLIPELQGRFPIRVELNALTKDDFVRILKDPQNSLLKQYIALLKADGVDLVFTAEAVDKIAEIAFEVNQGTDNIGARRLATILEKLLEEVLYEGPDMEMGQITITQAYVEQKLSDIVKNKDLTKFIL"]}}, {"location": "[1074598:1075132](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.25.2"], "codon_start": ["1"], "db_xref": ["COG:COG5405"], "gene": ["hslV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81WK5"], "locus_tag": ["MAAAAKME_11500"], "product": ["ATP-dependent protease subunit HslV"], "transl_table": ["11"], "translation": ["MTTICSVKYNGQTAIAGDGQVTLGKSIIAKTTAKKIRRIYHDQVVIGFAGGVADAVSLQEMLEGKLESYSGDLRRAAVEMAQSWRKDPALQKLEAMVIAFNDQDLLLISGNGEVLEPDESVVAIGSGGYYAQAAAVGMLRHASGMTASEIAKEAVNIAADIDVFTDHEIVTDEIEEK"]}}, {"location": "[1075241:1076129](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4974"], "gene": ["xerC_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39776"], "locus_tag": ["MAAAAKME_11510"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MTLEEQFLSYLKNERSYSPKTVLAYQKDLAAAKKFWQENGGFPGWDQISRRDLEIYLLATGQKLASSTLSRKLSSLKSFYRFLTRRGLVKADPTVAIQLRRGKKKLPEFFYQDEVGQVIRSLNDGKPLTVRNRAIVALFYATGMRLSELTDLKIKQLDLENGMILVHGKGNKDRYVFFDQESKKYLEEYLQAARPSLLKNEPDTGAVFLNKLGRPISSRGIAKAVQQIFQKAGLTAGAHPHELRHSFATAMLNNGADLRSVQELLGHEDLSTTQIYTHVSMQHLTVEYRQHFPRK"]}}, {"location": "[1076128:1077448](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.74"], "codon_start": ["1"], "db_xref": ["COG:COG1206"], "gene": ["trmFO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39815"], "locus_tag": ["MAAAAKME_11520"], "product": ["Methylenetetrahydrofolate--tRNA-(uracil-5-)- methyltransferase TrmFO"], "transl_table": ["11"], "translation": ["MTEKVTVIGAGLAGSEAAWQLAKRGIKVDLYEMRPKKMTPAHESGNFAELVCTNSMRSNQLSNAVGLLKEEMRQMDSLIMQAADACQVPAGGALAVDRELFSKYVTDKLTSLPEVIIHDEEITDLPSEGITVIATGPLTSDSLAEKIQDFEGAESLHFFDAAAPIIAADSIDMDIVYKKSRYDRGEAAYLNCPMTKEEYDRFANALVHAETAEIHGFENSEVFEGCMPIEVMAARGAKTLLFGPLKPVGLENPKDGKTPYAVVQLRQDNAAASMYNIVGFQTHLKYGEQKRVFQMIPGLENARFVRYGKMHRNTYMASPEVLKASYEAKKRPGLFFAGQMTGVEGYVESAGSGLVAGINAAREALGQETVEFPVTTALGSMAHYITTTDAKHFQPMNASFALIPGLEGKKIRNKRERHEKISERGLADLAAFKAEKLDD"]}}, {"location": "[1077579:1079763](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.1"], "codon_start": ["1"], "gene": ["topA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5Y5"], "locus_tag": ["MAAAAKME_11530"], "product": ["DNA topoisomerase 1"], "transl_table": ["11"], "translation": ["MPATAKEDKSKSSKKTTATTAAKKSSPKRKKSKVKKDLVIVESPAKAHTIEKYLGRKYRVIASKGHIRDLPKSQMGVDIDHDYQPKYISIRGKGDTIKELKAEAKKANKVYLASDPDREGEAIAWHVAHVLGLDEKEANRVTFNEVTKDAVKDAFNHARTIDMDTVNAQQARRVLDRLVGYSLSPILWSKVKKGLSAGRVQSVALKLVIDREKEIKAFKPVEYWTIDAEFAKGKDKFQASFYGEEGKKTELPNNEAVQKLLAKFDKKQPFTVSKVVKREVRRQPAAPFTTSTMQQEANRRLNFRTSKTMNIAQHLYEGISLGKEGTVGLITYMRTDSKRISPVARQEAAQFIVEEYGSDFAVKKERHFKNQGDAQDAHEAVRPTSVYRTPKSLEKVLTKDELRLYTLIWSRFVASEMTPAVFDTVRYDLTQNGVTFRASGSVMKFAGYTKVYDNRSEKNVALPALEEGDEVKLTKSDSKQHFTQPPARYTEASLVRALEENGVGRPSTYAPTIQNIQSRNYVKLEGRAIVPTELGEIVDGLVEQFFPDITSVDYTAKLEDELDEVEEGKKDWVSVVDQYYKPFSKELEKADREIQKIQIKDQPAGFDCEVCGAPMLVKMGRYGKFYGCSRFPDCRHTQTIVKKVGVTCPKCGEGEVLEKKSKRGRKFYGCSRYPDCDFVSWDKPISRVCPHDGHFLVEKKRKDGMVVLCPNGDYKEEPREEQGEAAE"]}}, {"location": "[1079889:1080729](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0758"], "gene": ["dprA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPI7"], "locus_tag": ["MAAAAKME_11540"], "product": ["DNA processing protein DprA"], "transl_table": ["11"], "translation": ["MNKTEFLLRLKLQKGLSYLKILQVMQQMPPDEDVDHEWLNCLELPDEILYRVERAFLSDRYESAIENLQRNFKIISFFDDAYPVRLREIYRPPILLFARGDLSLLEKEVTVIVGSRTPSQYSGKVIENLMPVFLKKKQVIASGLAKGVDALAHQNALNFGGKTIAVVANGLNYFYPRENTLLQQQIAARGLLLSEYLPDTPPRPFRFPERNRILAGICKNVIVTEAKAHSGSLITANLALQENRNVFAVPGAITSPLSAGTNQLISAGATPVIDKEIDL"]}}, {"location": "[1080826:1081597](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "db_xref": ["COG:COG0164"], "gene": ["rnhB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31744"], "locus_tag": ["MAAAAKME_11550"], "product": ["Ribonuclease HII"], "transl_table": ["11"], "translation": ["MKINEIKDLLQADSIDPAILAELAKDDRKGVQKLLVSYQRRQEKLAKQKEEFLGRFSYEKDFWAKGQLVGGVDEVGRGPLAGPVVAAAVILPEDFSLLEVNDSKKLSPQKRLALYPKILQEAVAVGVGVMDNKVIDQINIYEADRLAMKQAVEALSTRPDALLVDAMNVPVDLPQLELIKGDAKSNSIAAASIVAKVFRDSLMDDYARLYPDYAFDHNAGYGTKDHLEALRKYGPTPIHRLTFSPVSEMVGLKKAD"]}}, {"location": "[1081586:1082444](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1161"], "gene": ["rbgA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31743"], "locus_tag": ["MAAAAKME_11560"], "product": ["Ribosome biogenesis GTPase A"], "transl_table": ["11"], "translation": ["MTKIQWYPGHMNKARNQLEEKLNLIDVVIEVLDARIPSASRNPMISELVGDKPHLIILNKTDLADPVMTKLWQKKLQGPRTLVMAMDAQHNTNMQALITLIKKAASEKVKKLEERGASNPIIRVCLVGVPNCGKSTIINRLVGRNVTMTGDRPGVTKGQAWLKTPYGIQILDTPGILWPKFEDQEVGYKLAAFGAIKDTIFHADDVALFVIRQLRQYYPAYLAKFANCTKDKLENIGDTDLLLAMTQNNGMREDYDRFSLFMLQRLRKGKLGRISLDWPSANNEN"]}}, {"location": "[1082518:1082749](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31864"], "locus_tag": ["MAAAAKME_11570"], "note": ["UPF0346 protein YozE"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAYRQSFYQFLMTLRDPDSNGDLAQFANNAQFDSTFPRQEQDRTRLSEYLEENAAYLPSMTIFDDAYQAYEEKMQY"]}}, {"location": "[1082752:1083598](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97QT7"], "locus_tag": ["MAAAAKME_11580"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MSKIKIMTDSSVQLSPEEIEKYGITVVPLSVTIDGHTYTDGVDITRADFIQKMDEAEKLPKTSQPPVGLFVERMEELTADGSEVLGIFMAKTLSGTVDSARQAAEMVAGKITVIDCGYTDRSQGYYCIEAAKDAEAGKEMDEILAHLDQIGKNMYLEMMVPNLQNILAGGRLGKWAGRVVSALNFHVGLTMKEGSLNVPYRGRGKKFIKKFDDMLVDQLKELGDKVKYVGISYVDTRDKMEELAQRFKEVNPDLEILVQETSPIIITHAGHEAYAVMFYTE"]}}, {"location": "[1083732:1084395](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67153"], "locus_tag": ["MAAAAKME_11590"], "note": ["UPF0073 inner membrane protein YqfA"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFNPWQPVEDRPKSYYIIDNVLSAVVHGIGFGPSIAGLVILVVRAAHSHSALRVTTFAIYGACMILLYLFSTLYHSLVFTKANKVFQILDHSSIFIAIAGSYTPYTLVTIGGAKGWVMFGIIWALTVFGILYYIFNQGKHVIGDTILYIAMGWMVILAGSQLYFSLGPTGLWLLVSGGIAYTFGCLFFSMRGLPYSHVIWHFFVLLGSILIFFSVLFYV"]}}, {"location": "[1084420:1085611](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.72"], "codon_start": ["1"], "gene": ["cca"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7SIB1"], "locus_tag": ["MAAAAKME_11600"], "product": ["CCA-adding enzyme"], "transl_table": ["11"], "translation": ["MTNIRITEVFTQAMPVLEKLEEAGFEAYFVGGCVRDLLLERPIHDVDIATSAYPEEVKETFAKSIDTGIQHGTVTVLYGGSSYEITTFRTESGYQDFRRPDKVTFVQNLDEDLKRRDFTINALAMNRQGEIIDLFDGLGDLKRRVIKAVGVAEDRFHEDALRMMRAVRFMSQLSFSLEEKTRQAIINNHELLSKISVERIREEFVKLALGKDSRQAFKDFLATGLSEECPGLAGKKDQLSVLTDLKAGPDDEAVFWSLIAVLINLPADKISPFMRAWKNSNAMNQQVRQIVAAFDLLSRGEESDFDLFEIGQENLEAALKLAGLLGKPLSSQVLLDRYNRLPIKAAGELAIDGQWLIKEGIKPSPELGQLLRKALEGVVSGQVENSQAAIAEFLAI"]}}, {"location": "[1085691:1086591](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKPKFKWTTSDTINILMIALGSAIYAFSVDMVSIPNKLADGGLSGFILIIRHFWGVNPGLSTFIINIPLIFLGFKYMGKRAMIYTVWGTLCLSFFLSMWTLQSIIDQVPLHHDPFLATVTAGCLSGLGLGLVFHFNGTTGGSDIVARVLQEKYGITPSKGLLALDFLALACSLSYLDFFHVGYTMVSCFILSKVMALVTEGGTRAKGVFIISQNYRNIAKLIYLRLERGFTYINAEGGYSNEPRHMIYLVLSPREIPELKKIVKQEDPQAFIIFFDVNEALGEGFSYKTKSPSLFIRK"]}}, {"location": "[1086629:1086836](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLNKGISAPRMILTAILLVPVKNDFGEIQAYLLLTNVYDKGEINPVSLLQHLAPVFSKKLRDAALRIK"]}}, {"location": "[1087175:1087574](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTCCALWELVLRTVLVTRTAPGRVKTAFMPTARNMACESLEDPFKSGIVYYDDKLDQRHRLQEYVLSHIDEALEKGWIQVYFQPVIRTLTDKVCNLEALSRWIDPPGPAQLGQLLYQGLDHAKLRGDGLCPG"]}}, {"location": "[1087570:1087762](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHLCYITLININRNLLTGLLDLRSFQEVGQSRTRDWIKEGERVSIISFDLVGMKDYNNQYAGG"]}}, {"location": "[1087792:1088071](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIEKDDLTNFLRKSFTYIRKPFLVLEVKDNKTAIVYANKKLLDLFACKNMAELTDFAWEKLFPLTTGLSGDHAEFEHMTVADAKGQEHMLNA"]}}, {"location": "[1088237:1090010](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_11660"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKKQDKKMASWQAMKQLLPIIGRYRLLLFISIILAAVSVIFQLYVPIIFGRAIDQIVGPGKVDFPAIGQDLVQILILVIVSAAATWLMGLINNKLTYWTVQDIREKAIRQLQLLPLSYLDQHPSGDIVSRIIADTDQLSDGLLLGFSQLFSGLITIVATLAFMLSQSVEITLLVLVLTPLSFIVARFIASRSYQMFRKQSQTRGEQTSLIEEMVSGVKVVKAFGYEKTASSRFAEINHRLQEYSQQATFYSSLTNPATRFINSLIYALVALAGAFAIMGGRLTVGGLSVLLNYSNQYMKPFNDISSVITELQNAAACAGRVFELINEEPEADPVDLNKADGDLPEVKTGSVVFDHVNFSYQADKPLIRDFNLTAKPGMRVALVGPTGCGKTTTINLLMRFYDVDSGGIYLGGRNIKDMSRHALRKNFGMVLQDTWLEEGTVRDNLAYGKEDATDEEIIAAAKAAHSWCFIRRLPQGLDTPLSADSLSAGQKQLLCITRVMLLDPPMLILDEATSSIDTRTEMLIQAAFDKLMQGRTSFVVAHRLSTVVNADLILVMKDGQIIERDKHADLLARGGFYSQLYRSQFAKLPS"]}}, {"location": "[1090006:1091749](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_11670"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKYVFSYLKDYKKESVLAPLFKLLEALFDLFVPLVVARIIDYGIKERNQAYVFQQVGLLALLALFGITASITAQWFAAKASVGLASQLRQAAFDKVEKFSFANLDQLPPSTLITRLTSDINQVQTGFNMALRLLLRSPFIVFGSMIVAFTVNVKAALIFAVAIPLLALVVFGIMLVSIPLYRKVQKRLDEITRLSNENLAGVRVIRAFRKERAAVAKFDEKVSAMTKLNEFVGRLSAAMNPVTYVMINIAAIVLIQVGAVQVNTGAMAQGQVVALYNYLAQMIVELIKLASLIITINRAWACGDRVGQVLATENDLTYPKAGPKVTNSQVDFKNVSFTYPAASAPAVSNLTFTIKPAATVGIIGGTGSGKSTLLKLLTRFYDCGEGEIKLGGVSIKELTQEELLDQYALVPQKAQLFAGSIRDNLLMGRLEASDEELWQALSLAQAKDVVLAKPGQLDFQLEQEGRNLSGGQKQRLTIARALVKQAPLLILDDSDSALDLATGARLRQALASLKDVTKILVSQRVSSIMQADQILVLDDGKLVASGKHEELLANCQVYQEIYYSQFPKEKEAKEDKEGSR"]}}, {"location": "[1092142:1093045](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hcaR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47141"], "locus_tag": ["MAAAAKME_11680"], "product": ["Hca operon transcriptional activator HcaR"], "transl_table": ["11"], "translation": ["MRIEHLEIFVNAAQTQSFTKTAQNMNMSQPAVSLAISSIEKQLGYQLFSRSRRKMLLTPAGRSLYNSIKSELNNYRTAVSKAKRIAMSEGQITLKVGLIGILAEQLMLPGLIRQFRRSRDTVNIEFFVESSPVLFEKLASHELDLVLSTPEAMPKFPDFTAYTIGKLKWCTLVPNDHPLAEKDLLSEKDLDGKDLVFLDLSYSSPLITLMQDRIEKNCKQSRIFFANNVVAQTMMVYTQQGLAIQPYTGSLDDDNCEVNGLKRVPLDVKVSSDLTLFTCKDVLNEHVLDLMNWLKAQKLG"]}}, {"location": "[1093115:1093940](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRTRKKICDMNVAVVDRQNLPALLASGKIAAQADEDYQINQKTVAAYDFQMDLLLGKYRTIIYDADAGWVLLKKKTCRRLVHELRKKEPAHELTIKKQLCRQIGMSDQYVQSFGSHAYFSFFIMRHKPLDLVGLHQMKLFECLDNNGLFLTLDRQYCFSLEMPRQSGRGQQILQDCITHNAAFLHLASARAASWGCQLKPVSRKSLLNDPAYIRESRLAEIKAMDPRQILEEAEDNYLNYCSEEFLKEFRAWNWGKQDMRQLINYCNKSFNEIK"]}}, {"location": "[1094185:1094773](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQVDLISLTISGLVLLVLILNILYSPAFNRLDRKLHKKLVRTQKNIFWKIIAFINEPKLVIVWDVLIAGLLLNENNYRLGLWVLATLGVTDAAGFIVKHLVKRSRPHAHLSEEEGYSFPSGHVLGATTMCLILYALLRREFDQLFAVILLIYWLFVVISRLNLRAHYPSDVLGAVALSVFCFTVVQTIYAALFLK"]}}, {"location": "[1094868:1095705](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DQI6"], "locus_tag": ["MAAAAKME_11710"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MENVRLIVDSSANTLTDPSRGLEVVPLTLTIGQENWLDDEHLDMGAFLNKMEASQEAGKTAAPSIQRWLDSLEGCEKAVIGTITSGLSGTYSSALQARDIYLETHPHAQIVVVDSRSAGQELEVILEGIESILKDDKLRFADLKARIAEYRTKTHLLFVLQSLRNLSLNGRVSPAVAKIAGMLKINLIGTASVDGDLQPLTKARGMKKALRELVKQMKEEKYQGGRVVIDHCENEADAEKLKELLLAEYPEAEITIRPMRGLCSFYAERGGLMVGFHN"]}}, {"location": "[1096011:1097289](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0148"], "gene": ["eno"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37869"], "locus_tag": ["MAAAAKME_11720"], "product": ["Enolase"], "transl_table": ["11"], "translation": ["MTKVVIENVHAREIFDSRGNPTVEVEVTLSNGVVGRAEVPSGASTGENEAVELRDGGSRLGGKGVMKAVNNVNTAINNELQGADPFNQPAIDKAMIELDGTPNKGKLGANAILGTSMATAVAAAKATHQPLYRYLGGTDLSMPQTFHNVINGGEHADNGIDIQEFMITPVKKTSFRDGFEKIVNTYHTLKKVLEEKGYETGLGDEGGFAPNMKDSEEALKALHEAIERAGYVPGEDIAIACDCAASYYYNKEDGKYHLEGKVLDGDQLAEYYDKLLAEFPELISMEDPYDENDTEGMVKFTQSHKDRLQIVLDDFICTNPRLLEKAIKEGAGNASLIKLNQIGTVTETLETIRISRKHGYNTMISHRSGETGDTFIADFAVATNGGQLKTGAPARSERVEKYNQLLRIEEQLGDGERLDFFPAQD"]}}, {"location": "[1097248:1097785](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTANVSTSSQLKTNYYKISSKKIRICGSFFCTQNFPGELTAFPLLFILVQTNLPDEAVKKRAKAVFANGSIILAALSALLVSYHLTGHGLPCLFRALTGYLCPGCGMTRAAVAILGEDFAKAWQYTPLSLTLLPVFAFYLLYIYKTGRYIRKGEEDFKLGESVFLLLIAICFAIARNL"]}}, {"location": "[1097941:1099297](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQVDNSIDQMGEQIGQGIDDAAKDITSGLKKTGEKTGDFWENWRDYLTPNNAEKFVSVALLFPLFMTVVLWLLTRVSGWVYGQYFLPLYDFFFAIFQIAIFLVKALFLIGSGLGVAAAGYVLYKNESKRTVWGWLTGAATAATVLSFLGCLGINQSYPYNGLTQTFKILGWVAVVWGIDTCSRVLLQKLGIDVEPIISRDLAAYRDFYQTYRAKHEAEEKAEREEIAKAQNGQAGPVSYFDGTGAGLFGTYLLYALLTIITCGFAAPWLNCAIQRWRTKHMVVDGKRVTFNGTGASLLGHWILWEFLTVITCGLFAFFIPVGLQKWNMNHTYYEGEKGAEDSRFDGNTFQYIGYNIMQFLLLVVAFGLAYPWTHKMILRWQTKHQLINNDQLINNDRLIYDGTALGMLVRALVVILTLVIPFAFLASPWAYCWLWCYQYSHTHVDHSSAE"]}}, {"location": "[1099353:1099962](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKRTDKGSGRRTGFLQKLAALLIAVVFLAGGIMIGQHLPKKSREQVTVATVSAKLKAIGELATEQYTYTGIYKLSNGQIPFITKKGFTMVYTANFKAGVKVKDIKVQVNQDQVTVTLPQSQLLDKKIDPSSIKFYDQSYALFNWNQKEDITKAEQAALKKATGVAKKSGLLARSQENAKKLIRQLLQGTLDGRKLVIKTEE"]}}, {"location": "[1100470:1101211](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["artM_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54537"], "locus_tag": ["MAAAAKME_11760"], "product": ["Arginine transport ATP-binding protein ArtM"], "transl_table": ["11"], "translation": ["MNKIIEVKHLKKNYGDKEVLKDINAVIEKGKVITVIGPSGSGKSTFLRCLNLLEKPTSGQVIFEGTELTDLNEEELDQLRQKMGMVFQSFNLFPNMSVIENVKLAPMKVKGMSDQEAGDLAHELLAKVGLDDFADHSPASLSGGQQQRVAIARALAMQPDMMLFDEPTSALDPEMVGEVLKTMQDLAQTGMTMVVVTHEMGFARKVADEVWFMADGYLLEQGSPDQVFDHPQSDRAKDFLAKILEA"]}}, {"location": "[1101231:1102734](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.2.-"], "codon_start": ["1"], "gene": ["mltF_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02016"], "locus_tag": ["MAAAAKME_11770"], "product": ["Membrane-bound lytic murein transglycosylase F"], "transl_table": ["11"], "translation": ["MKKLIKIMTALLLLAGLFTAAIPAVDAASSRKVASGTVMKKIKKSGKLVVGISADYPPLEFTKNVNGKNKYVGVDVELAKQIAKDLGVKLEIKNMDFDSLLVALETGKIDVIISGMTPTAERKKSIDFSKIYYAEKSDYFVISKTNKAKYTSTASFKGKTVGAQTGSLQYTSLKKNAAKSGIKVKGLAKISNLLMALKSGKVDAVLLGELNAKTYTTNDTSLSLVKSSLSQAQMGNAVGVAKGQGDLVKAINKTINNCQKQDLFNKKYIPAAAKAMKQASSKTNNSMSKYASYFATGLGYTMIITICSITIGLVLGVIFALMRLSKNKLLHAIAVCYIEFLRGTPQMVQIMFVYFGVGMLIKNMPALAAGIIAIGLNSGAYVAEDIRSGINSVAKGQTEAARSLGLSQAKTYRYVVFPQALKNIWPALGNEFITLTKDSSLVSVIGVGELMYETGLVQTATYRGVMPLFITMCIYFVVTFIFTRLLNYFERRMNLTSSRA"]}}, {"location": "[1102781:1103636](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cynR_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27111"], "locus_tag": ["MAAAAKME_11780"], "product": ["HTH-type transcriptional regulator CynR"], "transl_table": ["11"], "translation": ["MNFKQLNYFLVVAEEGQITSAAKRLFVGQPALSYQLKQLEEELGAKLFIRQPYGIELTEAGKKLRDYAGQILTLAKNVQTEITELDRGGWGRVKLGSVSSSIGELPSAKLTAFARQHPGVSFDIYEDNTFGILDKLQGNLLDLAIVRTPYNRVNLNFVDISDEPMTAVTCQDFFPGKGKVGLQDLAGQPLVIYRRFEDMFKEAFAEKGLTPNFVVKCDDSRTAIRWSDSGLGIALVPESIAKTYAKGHIYPIDSAKWRTRLQLVWRKDRVVTPLMRQIIALYAK"]}}, {"location": "[1103813:1106072](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.6"], "codon_start": ["1"], "gene": ["kdpB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00285"], "locus_tag": ["MAAAAKME_11790"], "product": ["Potassium-transporting ATPase ATP-binding subunit"], "transl_table": ["11"], "translation": ["MKVKGLTQAEADLRLKKDGLNQVPEPEFSFWKEFAGKLWNLSAWILEAALLLECALGKWIQSLFVLLMLLFAAYNGATQKKKSRKVLSSISQQLTPVVAVLRDDRWQKIDSKYLVVGDIVNLQKGDILAADIDLLDGNLTLDESSITGEAKNVHKKAGATAFAGTTVMDGEALGRVSATGTNSRSGQTINLINTSAAPGHLQQLLTKIIYYLCLLDGVLTVILLIAAVIRGENILEMLPFLAMMFIASIPVAMPSTFTLSNSFEATRLSKEGVLTSDLTGIQDAANLNLLLLDKTGTITENKTAVASFANFSKLSDEEVLALTSLAIDQRNQSVIDLALMDFLQEKKIPVKEAEAFTPFTSSQGYSEGRGEGHDVKLGSVKQFSKIDPAISEQMAAVDLSLGRSVGILLDDRLAGIFITKDKVRADSKAALAELVKRGIKPVMLTGDNQKTAASVAEEVGLTGKVISISDFKEGVKAEDLAGIADVLPEDKLDMVKYFQKAGYIVGMTGDGVNDSPALKQAEVGIAVSNAADVAKKSSKMVLLDEGLSPIVKILDAGHRVYQRMTTWSLTKLARTAELTMLLTFSYLIFGYLPMALNAMVIYTIMNNMVTMMIGTDKTHITYKPENWDMGKLAKIAFSLAGAWTIIGFAFVSALTKAGVNHDQVGTMVYVFLVMSAMMIVLITRTKRFFWQSAPSKPVASVQIADILLTCLLALLGIAMPAIGIKELLTPLAVAFLAAILIDLVYQPVMKNK"]}}, {"location": "[1106131:1106581](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1316"], "gene": ["brpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DVR0"], "locus_tag": ["MAAAAKME_11800"], "product": ["Biofilm regulatory protein A"], "transl_table": ["11"], "translation": ["MRKRIFRIIMSLAILLLVILSGMLAYSYFNVERAVSRSYQKSGLKAAENESKEEVLKGKKPLVVLLLGTDTGALDRDYKGRTDSIMVLVLNPRTKKSTIVSIERDFQVNFPQYPQYSPSKINAAYTYGGVKLLSQTLDRYFKIPVILMP"]}}, {"location": "[1106586:1107078](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "db_xref": ["COG:COG1316"], "gene": ["tagU_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q02115"], "locus_tag": ["MAAAAKME_11810"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MGGMKSIIDQLGGVDITPLLSFDYEGYSYKKGVTTHMNGDKALEYCRMRYDDPEGDYGRQKRQRQVLTAIIKSGADVQSLLKPAFLNSVSSQVRTDLTFSDLTQMAKSYRASGDQLETDYTRGTGFNQDGGSYQHISLAERQIISDLVRQAAGLKKVQLANGQ"]}}, {"location": "[1107193:1108327](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKFWNHIDQKYFKIALYCLGTVFAGLFILLLAYESTGFWVRVGKILAAIAQPLTYGLVLTYLLLPLTNFFDRKFSKGSSRGAVATASRSAAVALTLLLLLLVILLAATAVFVTFSKQLSHFSLDSLESLYDQLKAQYSSFINEILAYLQKQGWSTSGLVSYMQKGVGRVTGFLSDFFFGVIFAIYFLYDGQRIAAYWKRNLGTLLNKKVIKGIKLFLADADRSFSGYIRGQIIDAFIVGLLVSLAMLIAKVPYGLLIGLVTGLGNLIPYFGPILGYGMVILACTLSQNMTALIVGMIILLLIQAIDGNILNPKLLSSAIHIHPLYVIACVIAGGAMGGFVGMLIAVPMGALLKTEFERLIAYRQKQLEKSKEASEE"]}}, {"location": "[1108444:1109470](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.42"], "codon_start": ["1"], "db_xref": ["COG:COG0115"], "gene": ["ilvE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQ75"], "locus_tag": ["MAAAAKME_11830"], "product": ["Branched-chain-amino-acid aminotransferase"], "transl_table": ["11"], "translation": ["MAKKDLDWANIGFGYHQTDKRYVDYFHDGAWEGGKLTDDPNVVLNECAETLQYAQQVFEGMKAYTWKDGSVVVFRPDQNAERMYNSAKRIEMQPYPKDKFVEAIDQVVKGNVDWVPPYGSGATLYLRPYEIGTTPIIGVAPATDYMFRIFATPVGPYYKGGATPVAVQVAQYDRAAPRGTGHVKAALNYAMSLKATVDAHQAGFAENMYLDPATQTYIEETGGSNIIFIDQNNHLVVPKSNSILPSITRRSIVYLAEHYLNLTVEERQVRFDEVPSFKECALVGTAAVLSPVGRIVNGDQVIDLPSGMDKPGKFMEELYNTLTGIQNGEVEAPEGWIHHVM"]}}, {"location": "[1109670:1110558](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1230"], "gene": ["czcD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07084"], "locus_tag": ["MAAAAKME_11840"], "product": ["Cadmium, cobalt and zinc/H(+)-K(+) antiporter"], "transl_table": ["11"], "translation": ["MKDQASKRYLWVTVFNITITAAEIAGGIISGSLALLSDALHNLSDVVSIVVAFAANLVAKRSKDQHKTFGYKRAETLAAYTNGLFLLAISIYLFISAIKRFSKPEPIEGGVMFIVSLIGLAGNLISMLILGRGSKENLNARALFLNMMSDTLSSVAVVVGSLLIYYQNWTLVDPVLTMAAAIFLLKEAFEVTRDSANVLMEANPDLDLEAIEEAGLAFKEVRQLHHLHVWRYSDDTIMLDAHIVVDSDLTAKRIEELDEEIAACLKEKFAINHVTLQAECSRGLDEDLLSTNKEN"]}}, {"location": "[1110669:1110972](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0640"], "gene": ["bigR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9PFB1"], "locus_tag": ["MAAAAKME_11850"], "product": ["Biofilm growth-associated repressor"], "transl_table": ["11"], "translation": ["MTHEELIDRAARLFKVLGNSLRIHILFYLRKHGESPVSAIVGHLGVSQPVISKQLGILKKYDFVQKRKAGTFVYYSINDQDIVQIIDAMTEHLDHLDRLQ"]}}, {"location": "[1111051:1111579](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.7"], "codon_start": ["1"], "gene": ["apt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P68779"], "locus_tag": ["MAAAAKME_11860"], "product": ["Adenine phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MSIDFKKYIASVKDFPNEGIIFRDITPILQDGEAFAAATHEIAEYAKSRQADVIVGPEARGFLVGTPVAIELGIGFVPARKPHKLPREVEAAAYDLEYGSNVLEMHKDAIKPGQRVVICDDLMATAGTMHATKELIERLGGKVVGAAFYIELTDLKGREKFPDVDIFSLVQYTGA"]}}, {"location": "[1111568:1113845](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWQERTAAPLASDLVEEFQLSPLTAKLFSLRGIDNEEKIDYWLHASENDLADPFLMHDMDKAVGRINQALDEGEKITIYGDYDADGITATAIMTEMLTIMGADVHYFIPDRFKDGYGPSLDRYKDIVADGTKLIITVDNGATGIEEVAYAQSHGVDVIVTDHHTFKEEKPDAYALVHCNYPGQAYPFDDYCGAGVAYTIARAVLEDTASEFLELAMIGTIGDMVKVSGEGHVIVKRGLEMLNESSRPGLEALIRNAGLTPGMIDEEDVGFSIAPRLNACGRLADASLAVRLLLAESPGEAQELADQIEKLNNERKDLTQATMQAAEAQIKRRGYQKEATLTLYDPAWHEGVMGLVANKIVEKYHKPTLMLTKNEAGLVKGSGRSSQGFNLFNALKPFEGKSITQFGGHDFACGLSTTEENLNQLRRDFNQSYKAGEKAPEKVQEYDGTISPLDVDLTSVYDLAQAGPFGTDNPQPVFLLDRPQISNFRPMRKGCSFMVGPVRAVDFDHGLNQTVLPYLRQMLVKLASNTFKGKTNVQFRIVDLHYGQSLYAPAARIVDFRGQENLLGFADKYLLFDERNLSQAMNHFGITKEQISLAKDNEDLSQQVVSVLDVPANEAQLNFVLAKPYRQLYLRFQLDQLPGETLPSRGNFGLVWQYFLAHPGLKPNDYMQAAGQLGMDPDSIKFILRVFFTLDFVKMEEDRLLPKPSPTKKSLDDSAYYRSVKAEYAFANKLRTISSDELIRYASGLANGGLQNVN"]}}, {"location": "[1113841:1114543](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "db_xref": ["COG:COG3764"], "gene": ["strA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8E5N2"], "locus_tag": ["MAAAAKME_11880"], "product": ["Sortase A"], "transl_table": ["11"], "translation": ["MTSTASKNTKDHPVRRIILRLVAVILFLLGLALVFNQQISAFLVKQNQTAALKGLTRDQVVQNQKKKGMYDFKKVKSIDFAQTTRSRVKNTAGAIGAISIPSVKLYLPVMQGLSDAALSTGGGTMRADQKMGKGNYPLAGHYMTDQGGLFSPLERVKLGSMVYLTDLKKVYAYKIYYKKVVDPSAVWLVANTKKKIVTLITCADGGVNRWSLRGKLTAVKPASKQNLEMFKLR"]}}, {"location": "[1114523:1116362](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.5.-"], "codon_start": ["1"], "gene": ["lepA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65272"], "locus_tag": ["MAAAAKME_11890"], "product": ["Elongation factor 4"], "transl_table": ["11"], "translation": ["MDLEKLKDYQKHIRNFSIVAHVDHGKSTIADRILELTDTVSKRQLKNQMLDDMPLERQRGITIKMNSVQVKYHANDGEDYIFHLIDTPGHVDFSYEVSRSLAACEGAVLVVDASQGVQAQTLSNTYLALENDLEILPVLNKIDLPSADPDMAKSEIGDMLGLDASDAVEVSGKTGAGIPELLERIVTDISAPTGDLTKPLKALIFDSKYDDYRGVVMSVRIEEGTVKPGDEIMIMNTGKKYEVTEVGVSSPHPVKEDILIAGDVGYITANIKSVRETRVGDTITSAENPTAEALPGYRQIPPMVYSGMYPTDNRDYDDLKEALQKLQLNDASLEFEPETSQALGFGFRCGFLGLLHMDVVQERLEQEFDLDLIMTAPSVDYHAIMPTGEVKLIDNPADLPDAGEYKELQEPYVKAEIMVPNDFVGAVMQLCEGKRGEFQTMDYLDKYRVNVIYEMPLAEIIYDFFDQLKSSTKGYASLDYEIIGYKATNLVKIDILLNKEPIDALSFIAHREEARDRAVQMCSLLKKLIPRQNFQVDIQGAIGSKIISRATIKPYRKDVTWKIHTGDPDRRAKLLEKQKRGKKRMKSVGRVEVPQDAFMAVLRMNDDDINGK"]}}, {"location": "[1116483:1117620](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0484"], "gene": ["dnaJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O87778"], "locus_tag": ["MAAAAKME_11900"], "product": ["Chaperone protein DnaJ"], "transl_table": ["11"], "translation": ["MAANRDYYDVLGVSRDASDAEISKAYRKLAKKYHPDLNHEAGAEEKYKEVNEAYEVLHDPQKRQQYDQFGQAGMNGQGGFGGQYGGQGFGGADFGDFGDIFSSFFGGARQQVDPTAPQRGADLDYTMTIDFMDAIKGKTSEISYSRSTTCEVCKGSGAEKGTHPITCDKCGGSGMMTITQRSVLGMIQRQTTCDKCTGSGVIIQHPCHNCHGKGVKTQKQTLQVKVPAGIDNGQQIRLAGQGEAGKNGGPYGDLYIVFRVRPSKDFTRRGQTIYTTVPISFAQATLGDEINVKTVYGDTKLKIPAGTQPNQKFTLKEKGVPSLRGGSTGDQVTTVEIVIPKSINEAQRKALLEFVKASGGSIAPQEKGFFERLKEKLS"]}}, {"location": "[1117702:1119547](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0443"], "gene": ["dnaK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O87777"], "locus_tag": ["MAAAAKME_11910"], "product": ["Chaperone protein DnaK"], "transl_table": ["11"], "translation": ["MSKVIGIDLGTTNSAVAVLEGKEPKIITNPEGARTTPSVVAFKDGEIQVGEVAKRQAITNPNTIVSIKRHMGESDYKVKVGDKAYTPQEISAMILQYIKKFSEDYLGEPVTDAVITVPAYFNDAQRQATKDAGKIAGLNVQRIINEPTASALAYGLDKDEDDETVLVYDLGGGTFDVSVLQLGDGVFQVLSTNGDTHLGGDDFDNKIIDWLVDGFKQENGIDLSKDKMAMQRLKDAAEKAKKDLSGVSSTHISLPFISAGEAGPLHLEVDLTRAKFNELTDDLVQRTKIPFDNALRDAGLSVGDIDKVILNGGSTRIPAVQEAVKQWAGKEPDHSINPDEAVALGAAIQGGVISGDVKDIVLLDVTPLSLGIETKGGVFTKLIDRNTTIPTSKSQIFSTAVDNQPAVDIHVLQGERPMAADNKTLGRFELTDIPAAPRGVPQIQVTFDIDKNGIVNVSAKDLGTGKEQKITIQSASGLSDEEIERMKKEAEEHAEEDAKKKEEVDLRNEVDGLIFQTEKTLKEVDGKLADSDIQPVKDALEDLKKAQKDNNLDEMKEKKDALSKVAQDLAVKLYQQNSQNQQGQGGQAGPTDDGSNGANGDTVDGDFTKVDPDK"]}}, {"location": "[1119606:1120194](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["grpE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01151"], "locus_tag": ["MAAAAKME_11920"], "product": ["Protein GrpE"], "transl_table": ["11"], "translation": ["MSKEEFPSEKDLPQEDQEKQAKAAEADKAGVKEAAKPADVELDQLKAEVAALTQKNKDLEDKYLRSQAEIQNAQRRYSKERADLVKYESQRLGKDILSSVDNLERALQVKADDEASRQLKKGIEMTLEGLVRALKDNGIEEIKADGEKFDPTLHQAVQSVPAENDDQKGHVVQVLQKGYVYKDRTLRPAMVVVAQ"]}}, {"location": "[1120205:1121252](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1420"], "gene": ["hrcA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P30727"], "locus_tag": ["MAAAAKME_11930"], "product": ["Heat-inducible transcription repressor HrcA"], "transl_table": ["11"], "translation": ["MLTKRQELILKTIIQDFTKTHEPVGSKTVMNQLSIKVSSATIRNEMAVLEEHGLIEKTHSSSGRVPSTEGYRYYLDNLVQPLQLPEEVYNQIGYQFDQPFNQVDEIVKEAAKILSDLTDYTAIAEGPEAKNVSITGFRIVPLAPRQVMAILVISDGSVKNQLYTLPRHISGDEVEQVARLINDQLVGKNLSEINKQTFEQLYRSQIVGKNAPEFLELLEAVIKDAASEQMYVDGQLNLLNNIENSDLKAIKSLYELINSSSLAGELISSYSDSPSHYPVHVRLGAELENDLLKDFSLVMAEYSVGRYGRGMIALLGPRHMPYSEMIGLMEYFRQELARKLLDYYGRFK"]}}, {"location": "[1121389:1122328](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0196"], "gene": ["ribF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AG40"], "locus_tag": ["MAAAAKME_11940"], "product": ["Bifunctional riboflavin kinase/FMN adenylyltransferase"], "transl_table": ["11"], "translation": ["MKVINLSYPFKKELTAGKVVLALGFFDGVHIGHQKLIKEARIIAVEKDLPLMVLTFDRHPKEVYAGVKDFEYLNPPEEKAYEMSKIGVDYLVILKFTPEFSHLAPQAFVDEIIMGLKADTVVAGFDYSYGPKDVANMENLPSFAKGRFDIKVVPKQIFAGEKIGSAEIRQAVKSGNLRLATELLGHPYLTSGKVVHGFRNGHKLGFPTANLELAWPKVLPKIGVYATMTQVGDSWYQSMTSVGYNVTFNDEKKIYIESNIFDFDQDIYGQQITIAWYKYLRGEEKFADMAALSEQLKLDQVASKNYFSSLIE"]}}, {"location": "[1122441:1122999](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["Int-Tn"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22886"], "locus_tag": ["MAAAAKME_11950"], "product": ["Transposase from transposon Tn916"], "transl_table": ["11"], "translation": ["MMKYTLFRLLAFSGMRIGELIALEWSDVDFASQSVSINKTLTLDKYGQATVGSPKTTNSNRTVLLDDVTMTILRQWRAEQARRIIYFGKPRNNLVFASEHGGHLSNGTIKGWNKKIAENKGLRAISLHGFRHTHASLCFEAGLTMQDVKERLEHSSISTTMDIYTHVTNDRKEESVQQLAKFMRA"]}}, {"location": "[1123203:1123500](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTKNEPQISRSVEKFFKDYKVMELLRRCGLRKSKGIPLWLVLSYIFSNVFPDRSMYMQQKSGKCTAGFSKNTYYRFMHRTHISTGFASLFC"]}}, {"location": "[1123523:1124459](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDLTSDQRADCFVFDDSLYSRTGYKKTEPAAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIAAKRRIMAQSKGTDVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKRGTEYHGLSYDALTAHIAFVFLCYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[1124581:1125805](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_11980"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAIQLTFPEIEHLLANPRGKNYWSIVLRFPHPDIVLETKEADITDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1126675:1126885](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLke1"], "locus_tag": ["MAAAAKME_11990"], "product": ["ISLre2 family transposase ISLke1"], "transl_table": ["11"], "translation": ["MTAFGEISYWRRRYACPGKKAQYPLDKLMGYDKYKRYSVLAVKDILQVSAVVTYRNTALAVNTLSCFNL"]}}, {"location": "[1126912:1127086](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MESIIADIVKIIKSENNVIAREKALMCCFFDLIRELIKLALEEVDAGLVEETKKQGY"]}}, {"location": "[1127886:1128798](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.47"], "codon_start": ["1"], "db_xref": ["COG:COG0031"], "gene": ["cysM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P56067"], "locus_tag": ["MAAAAKME_12010"], "product": ["Cysteine synthase"], "transl_table": ["11"], "translation": ["MLIHSISELIGHTPLIDLQINIPNHSHIYAKLEMFNPGGSIKDRLGQYMIQDAINRGQVTEGVTTIIEPTAGNTGIGVALAARQHHLPTILVVPEKFSFEKQQLMKALGAKLINTPSDQGIKGAIEKAEALHDQIPNSFVPMQFKNPANPDTYYHTLAPELLDDLNDPIDAFVAGAGSGGTFAGVARYLKEQNPATQTIVVEPEGSILNGGPAHPHRTEGIGVEFVPPFFKDVQIDKTLTISDADAFHQVKELAKKQGLFIGSSSGAALAASLKVAKALPENSTIVTIFPDSSERYMSENIYN"]}}, {"location": "[1128819:1130004](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.48"], "codon_start": ["1"], "db_xref": ["COG:COG0626"], "gene": ["metB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1M0P5"], "locus_tag": ["MAAAAKME_12020"], "product": ["Cystathionine gamma-synthase"], "transl_table": ["11"], "translation": ["MEFDTKLIHGGISEDKATGAVSVPIYMASTFHQQKIGENQYEYSRSGNPTREAVEKLIAELEVGTAGFAFASGSAAIDTVFSMFSAGDHFVIGNDVYGGTFRLIDAVLKRFGMTFTVVDTRDLAAVEEAITPNTKAIYLETPTNPLLRVTDIVAVAKIAKSHQILSIIDNTFSSPYVQRPLEQGVDIVLHSASKYLGGHSDVIAGLVVTKDDQLAEKIGYLQNAIGGILAPQESWLLQRGIKTLSLRMRAHLANAEAVFNYLSNQPLVSKIYYPGDPNNPDYEVAKKQMHGFGAMISFELQDGLDPKQFVEQLHVITLAESLGALESLIEIPALMTHGSIPRDIRLKNGIKDELIRLSVGVEDQKDLLADLERGFNELKRSEKNVSDSKVHSQA"]}}, {"location": "[1129969:1130302](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.30"], "codon_start": ["1"], "gene": ["cysE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67765"], "locus_tag": ["MAAAAKME_12030"], "product": ["Serine acetyltransferase"], "transl_table": ["11"], "translation": ["MFQTARSILKRDPAAHSLLEVLLTYPGIRALFWYRIAHFMAFHRLYTIAGFLSQHAAKVTGISISPEAQIGKRVFIDHGIGVVIDATAVIEDDVTILHGVTLGARRAVER"]}}, {"location": "[1132243:1133140](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.25"], "codon_start": ["1"], "db_xref": ["COG:COG0130"], "gene": ["truB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97QJ3"], "locus_tag": ["MAAAAKME_12040"], "product": ["tRNA pseudouridine synthase B"], "transl_table": ["11"], "translation": ["MFNGIIVIDKAAGMTSGDVVYKLRRLLKQKKIGHAGTLDPEVTGVLPIALGQATKLIELMHERPKAYVGEGMLGLATDSYDLEGKILAERALSQPVSDQAIKAAMEKLIGEIVQQPPIYSAVRVNGKRLYEYAREGIPVERPKRTVQVFLYDLTAPSQFDPEKGRQTFTYEVECSKGTYVRSLVNDLGEELGLPAVMTKLRRTASSGYKLQDAVTLEELADNLDHAEDYIQPIDSFFADYQQVDLDAALWQQVKNGAWIKLPLDADKVALRYNKTVKAIYRAKGQGLYCPDLMLLSNE"]}}, {"location": "[1133190:1133553](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rbfA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65967"], "locus_tag": ["MAAAAKME_12050"], "product": ["Ribosome-binding factor A"], "transl_table": ["11"], "translation": ["MKHRKGRVEGEILRELTKIIRKNIRDPRVSNVTFTAVECSNDFSYATVYYSLLTEDEQAQKEAEAGLEKAKGTMRHLLGQSLTMYKVPELIFKRDQSVIYGSKIDRLLADLKKQEQDRQN"]}}, {"location": "[1133565:1136043](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["infB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00100_B"], "locus_tag": ["MAAAAKME_12060"], "product": ["Translation initiation factor IF-2"], "transl_table": ["11"], "translation": ["MTKKQENETSKELGMDNKKTSGKSGKLKISVSAIRKGEKKTEGKRSNTRRRANNHSNDHSKRRRPAAQDLLKDLKQKQRADEARLDQESKAAKQEYKKSLNKAEASESKPVVKKVESVEKPAETAAEAPKVRGPKILKPSPARLKQNQANSEKPAAKPSSSRRPSSRPSFTEAPMPENKEGRRRKSGKPGRKGQNSYADQGRGANSNRSEQRKRKNKKHQSAPQVKKQVTQRKDRPLPESFEYEVGMNAQDLGKILHREPAEIVKKLFMLGIMINQNLSLDKDTIELLAADYGIEAVEKVHEDISDIDNIFAQEMEESKNSENQVVRPPVVTIMGHVDHGKTTLLDRLRHTRVSEHEAGGITQNIGAYQVRINDRLITFLDTPGHAAFSSMRARGAEITDIVVLIVAADDGVMPQTIEAIDHAKSAGVPIIVAINKMDRPGANPAHVTEQLMQYELIPENYGGSTIFVNISAKTGMGIDELLENIILEADMLELKADPKQKAIGTVVEARLSRGKGPVADVLIQQGTLRVGDPIVVGDTFGRVRTMTNDKGHQVKKATPSMPVEITGLNDVPESADKLVVFADEKTARAVGEARAQQSLQKQRENVQHVTLDNLFDTMKRESMKSVDIVLKADVQGSAEALAQSFQKIDVEGVRVNIIHSGVGAINESDVTLASASNALIIGFNVRPTATAKSQAAQEGVDIRLYSIIYKAIDDVKAAMQGMLEPTYEEKVIGNLTVRETWKVSKIGTIAGAFVDNGYVTRESGIRVIRDGVVKYDGKVASLRRFKDDVKEVKAGFDCGLTIENFNDIKEGDELEAYEMQEVKPS"]}}, {"location": "[1136047:1136332](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1358"], "gene": ["rplGA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32729"], "locus_tag": ["MAAAAKME_12070"], "product": ["putative ribosomal protein YlxQ"], "transl_table": ["11"], "translation": ["MLGLATRAGKTVSGTDIVLAKLKKGKLKCIIIANDLAENSRGKIEAAVKARPTPLVDVFTEAELSQAVGKKRKVLALTDRGFAKTLLDKIKEGV"]}}, {"location": "[1136358:1136637](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKDLLTDTMQPKKDLVRIVVDKEKNVSVDPSGKKPGRGAYVSLKPEKIAAARKSKVLERSLGVKVADEFYDELFAYVDHQKARKELFGDQK"]}}, {"location": "[1136667:1137888](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0195"], "gene": ["nusA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32727"], "locus_tag": ["MAAAAKME_12090"], "product": ["Transcription termination/antitermination protein NusA"], "transl_table": ["11"], "translation": ["MSKEMLEAFDVLEKTKGIKQDVIVEAMKAALAAAYKKNYGLAENVEIDFNEKKGDFKVMALKTVVDEVQDDRVEVSLKDALAINRAYEVGDTIKFEVTPKNFGRTAAATAKQVVMQRLREAENAHIVNEYSQYEDELVTGTVERTDNRFVYVNIGNVEAVMDIKCDTIPGEHYNPQDRVRVLVTKVGADGKGAQIRVSRTAPDVVKRFFEQEVPEIFDGTVEIMSIAREAGERTKIAVKSNDPNIDPVGTCVGPRGSRVQNVVNALGGENIDIVQYEEDPSDYIANALNPAEVIAVQFEDEDDERKAFVIVPDYQLSLAIGKKGQNVRLAARLTGYKIDIRPESEVEFVDESEVEDETEVAEDQDLQQAAVEEADDQAEAEATEADENTEAEEAEDAEDLDLDDEE"]}}, {"location": "[1137907:1138384](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0779"], "gene": ["rimP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97S61"], "locus_tag": ["MAAAAKME_12100"], "product": ["Ribosome maturation factor RimP"], "transl_table": ["11"], "translation": ["MPKNLTPILEAIEPVIIGHDCELVDLEYVKEKSQDYLRIYVDKQPNGIDIETIAELSELVGEKLDSMQPDPLPDPYILELSSPGLERPIKKEQDWEKAKGQYIHVGLYQKLEGEKVFEGHLLDLDDQEIKLEIKIKTRRKQLTIPRKQIASARFAIEF"]}}, {"location": "[1138493:1142831](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG2176"], "gene": ["polC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P13267"], "locus_tag": ["MAAAAKME_12110"], "product": ["DNA polymerase III PolC-type"], "transl_table": ["11"], "translation": ["MTDKNQLFLKLLKQVGFSAGGADEAVLQAGEIKNVDVYRKERRWDIHVFFTTPLRFESYNALNQAIKHEFNDFVDTRLIVETADGQQQYLPDYWQYAVENSEVLSANPAAQNFLVGQAPYEDSGRWVIPINGQLFDKMLEQRLLDSFSLELRDYGFFNVKLLTEVTDQGGQSDFESLAQLVEAHEKNMQEAFQQAPAKPKPAPRPSYQGRRGKKTSFGPGAISDKAEITQLKDLSEDQRSAVVEGHVFKAEMQELRSGSFIFYGEMTDYTGSISFKKFVRDSDKEEIEYLKGIKPGVWIRMQGSLKDDQYAHDLIFNIYSMELTEHVGRQEAYQGEEKHVELHVHTNMSQLDATSDVADIIKTAKKFGQPAVAITDHAGLQALPNAFEAGKKTGMKVIMGLEANMVEDHGLLVLNPASMKYEDQEFVIFDVETTGLSSVYDTIIEIGAVKMKNGEVIDRFDKFINPHHPLSETTINLTSITDEMVQAADDEAVVIKQFMDFYGNDPLCGHNVQFDVGFVDAALKRCGYPEISQPVVDTLEVSRLLHPEQSRHTLDSLCRKYNVPLEHHHRANQDAEATGYLMFKLLDAFNDKYQEDDLGKMNDYSNGEGYKRARPTHITVLAQNQKPGLRNLYELVSLAGIKYNFKGLRTPKSELRRLHAGLLYGSACSQGEVFIAMMQKGYEEAKKKAEFYDFLEIQPPSNYSSLIADGLIADEAQLEEILTNIYKLGRELNKPVVATSDAHYIDKHEAIYRDVLLAAQRGNPNRNKQHPDLHFYTTQEMLDEFSFMGEDIAKEVVISNPNKINAMIDEGVQPVQDESFPPKIPHTAERVRKLTYDKAHELYGDPLPDNIQARLDRELDAIIGNGYGVVYLISQMLVAKSVKDGYLVGSRGSVGSSLVATMMGITEINPMPPHYRCPKCKQSEFFENGEYASGFDLPDKKCPDCQVMMVKDGQNIPFETFLGFHGDKVPDIDLNFSGDYQPVAHNFIRVMFGPNHSFKAGTVGTLADKKAIGYVKHYQDEHPEIKMNNAEVDRLAIGVTGVKATTGQHPAGIVVLPDDKDIYELTPLQYPSDDISKEWKTTHFDFHQIHDNLLKFDILGHQDPTMIRMLQDLSGIDPLTIPTDDPKVMSLFSSPEALGVTPEQINSKTGTLGLPEFGTPFVRGMLEETKPSTFAELLQISGLSHGTDVWLGNAEELINNGTCKLKNVIGCRDNIMTDLIRWGVKEEVAFSTMETVRKGKGISDENMAVLKENKNIPDWYIPSCLKIKYMFPKAHAAAYILMALRVAWFKVYYPEIYYAAYFSVRADKVDLEAMSRGKNTVVALINRIKEKGTAATKLEKDLQTYMELVNEAIERGINFKMVDINESEATTYKIVDKHTILAPFNAVDGLGDSAAKQIVAARSEAPFLSKEDLQVRGKVSQKIMDFFENNNVLEGMPDQNQLSLF"]}}, {"location": "[1142843:1144541](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.15"], "codon_start": ["1"], "db_xref": ["COG:COG0442"], "gene": ["proS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831W7"], "locus_tag": ["MAAAAKME_12120"], "product": ["Proline--tRNA ligase"], "transl_table": ["11"], "translation": ["MRQSIFFMPTLKETPADAVAKSHQVMLRGGYIRQVTAGVYSYLPLGYKVLRKTEKIIEEEMANAGVVEMIMPHMLPASMWEESGRLPKYGPEMFRLKDRHGREMLLGPTHEETFTDVVAKSLKSYKQMPLQLYQIQTKFRDENRPRFGLLRGREFVMLDGYSFAASQEQLDKQFDDEKAAYLKIFKRTGVEVRPVIADSGTMGGKNSIEFQAPAAVGEDTIATNASGTYAANLEMAVSVDTFKQEPEELKAMEKVATPGCDSIDKLAEFLQVPATRIVKSVLYIVDEKKKVLVLIRADKEVNEVKLTHLLDCDSLRVAETSDLEELTGAGKGGVGPVNADWADEIVADKTVKGLYNVVVGAGESDAQFINANLDRDFRADRFADLRVANEGEPDPVDHEPLKFTTSIEVGHIFKLGTYYTETMGAKFLDQNGKSQPVIMGSYGIGVTRLLSAVVEQHATENGVAWPKEIAPFGIHIIQMKMKDEIQSKLAEDLEAKFAKYDVLYDDRNERPGVKFNDADLVGAPIRITVGRDAADGIVEVKRPGDDQAQKLAVADLEDFIANELD"]}}, {"location": "[1144580:1145828](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63333"], "locus_tag": ["MAAAAKME_12130"], "product": ["Putative zinc metalloprotease"], "transl_table": ["11"], "translation": ["MKSILAFIIVFGLVVFVHEFGHFFVAKKAGILVREFSIGMGPKLIQWRPGQTTYTIRWLPLGGYVRLAGPDEQSEIDPGTAVVLELNEAGIVTRIDASESDLPIEGRPLRVTKADLVDDLTIAGYENGDESQLVTYKVDHDATMIDDTGTELQIAPRDVQLPAAKPWKKLATSFAGPFMNVVLGFVVLTIYSFASVGPATTTVGQVAANSPAQHVLQKGDQIVAINGRKISTFDQVSQAIDSSKGKTLTVKVKRQGSEKSVQLTPKYSKKTKSYLVGIVAKADNSFSAKLKRGWDLSWQVTGMIFQALGNLFKHFSLNKLSGPVGIYSETSKATSMGLTYMLAFVGMLSINLGIVNLIPIPGLDGGKLFLELIELLRGKPIPEEHETVVDLIGVVFLLILIIAVTGNDIYRYFIK"]}}, {"location": "[1145837:1146635](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQRVITAVVALLIFIPVLVAGGMWIDWLAAFVAAVGISEVFLMKKQILVSVDFTLAALATLTWTVPNSFFGFLPKNWSKWGVFYALVMILLTWTVLSKNKTTFDDIGVYVLSSLYIGTGFHYLAAIRNSDPVYGLWRLLFAFVIVWTTDTAAYMVGRKFGKHKLWPVISPSKTWEGSIGAVIIAVIVTAIYVNLAPVGGDKTSLIIASFFLSIAGQMGDLVESAYKRFYGVKDSGKILPGHGGILDRFDSTLFVLPIVALIFGI"]}}, {"location": "[1146640:1147372](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG0020"], "gene": ["uppS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q88VJ8"], "locus_tag": ["MAAAAKME_12150"], "product": ["Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)"], "transl_table": ["11"], "translation": ["MDKNKQLNHLAIIMDGNGRWAKKRKMPRFMGHKAGMDNVEKIALAADELGIKVLTLYAFSTENWARPKDEVNYLMKLPVKFFDKFMPCLQAHNVKVNIMGYLDALPESTREVVERAMAETAANTGLVLNFAFNYGSRKEIVSAVQALAKEAASGEITPEEITEDMVSAKLMTAKFAPYSDPDLLIRTSGEQRISNFLLWQIAYSELAFTDKAWPDFDENDLAEMVKIYQHRDRRFGKLDETDS"]}}, {"location": "[1147374:1147932](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["frr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDH3"], "locus_tag": ["MAAAAKME_12160"], "product": ["Ribosome-recycling factor"], "transl_table": ["11"], "translation": ["MNNETIAKAKRNMNKSIEVYQSNLATVRAGVANASLLDRVMVEYYGVPTPLVQMAGITIPEPRVLMITPYDKTSLNDIEHAILASDLGLTPANDGNVIRLIIPQLTGERRQEIAKEVGKLAEEAKIAVRNVRQEAMKALKKQEKDGEITEDEERRLEKEVQKVTDESTKKIDQMADNKRKEIIQG"]}}, {"location": "[1147931:1148657](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.22"], "codon_start": ["1"], "db_xref": ["COG:COG0528"], "gene": ["pyrH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831V1"], "locus_tag": ["MAAAAKME_12170"], "product": ["Uridylate kinase"], "transl_table": ["11"], "translation": ["MSQVKYNRIILKISGEALAGEKGTGIDPTVIKKLAHEIKLVHDMGVQIGVVCGGGNMWRGETGAKLGMERAQADYMGMLATIMNGLALQDGLETAGVQTRLQTSISMRQVAEPYIRRVAISHMEKNRVVIFGGGTGNPYFSTDTTAALRAAEINADVILMAKNGVDGVYTADPNLDPSAKKFAELTQLDMISKGLQVMDRTASSLSMDTHIPLIVFNVNTPGNIKRVVEGENIGTIIRGDK"]}}, {"location": "[1148806:1149835](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0264"], "gene": ["tsf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A3B7"], "locus_tag": ["MAAAAKME_12180"], "product": ["Elongation factor Ts"], "transl_table": ["11"], "translation": ["MANITAKQVKELRETTGAGVMDAKKALVEAEGDMQRAIEIIHEKGEAKAAKKANRIAAEGLTGVYVDGNVAAIVEVNAETDFVAQNEQFKTLVNETAETIAKGKPANNEEALALTMPSGESLEEAYVNATATIGEKISFRRFAVLEKTDDQHFGAYQHNGGHIGVLTVVEGGDEALAKHIAMHIAAMSPKVLSYKELDPAFVREELAQLNHKIDQDNESRAMVNKPALPHLKYGSKAQLTDEVIAQAEEDIKAELKAEGKPEKIWDKIIPGKMARFMLDNTKVDQENTLLAQLYVMDDSKTVEQYLESVNASVVSFVRFEVGEGIEKKQEDFAAEVAAQMKN"]}}, {"location": "[1149897:1150659](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0052"], "gene": ["rpsB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNV0"], "locus_tag": ["MAAAAKME_12190"], "product": ["30S ribosomal protein S2"], "transl_table": ["11"], "translation": ["MSVVSMKQLLEAGVHFGHQTRRWDPKMKPYIFTQRNDIYIIDLQKTIKMLDDAYNYVKAVAQDDGVFLFVGTKKQAQEAIAEEATRAGQYYVNQRWLGGTLTNWTTIQSRVKRLKDLKKMAEDGTFDVLPKKEVSLLTKEMDKLQKFLGGIEDMPRIPDVMFVVDPKKEKIAVHEANKLGIPVVAMVDTNTDPTPIDVIIPSNDDAIRAIRLIAGTMADAVIEGKQGADNADVEKELSESVEENSAEEVDDAE"]}}, {"location": "[1150822:1151833](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.223"], "codon_start": ["1"], "gene": ["yfiC"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01872"], "locus_tag": ["MAAAAKME_12200"], "product": ["tRNA1(Val) (adenine(37)-N6)-methyltransferase"], "transl_table": ["11"], "translation": ["MIELKENERIDYMLGDQLKIIQDGQSFAFSLDTLLLAYWAKEAIKNRSKVVELCSGNAAASLYMAAFNKAHYDDVELQEDIVSKARRSVELNDMQDRITVHQGNVKDAGSFLRKDSYDVVVVNPPYFKAPAGHKLNPDRSKAIARHELEINLEEIIAVSAGLLKMKGKMFMVHRPERLGEIINYGFKHDLAVKTVQPFVSRRGQDANLVIVEAVRSGKGDGLVLRDAIEVHEADGSNTPAIKEILEAKLPEEKHYFYVLLCSDGSFYGGYTNDLKKRLGAHNSGKGAKYTKSRGPVEMIYLEEYADKRTAMQREYWFKHHDRAWKEKFLHEQGVKF"]}}, {"location": "[1151903:1152518](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0204"], "gene": ["plsC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DNY1"], "locus_tag": ["MAAAAKME_12210"], "product": ["1-acyl-sn-glycerol-3-phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MLYRIFRPIARFIVWVLNGHLHVHHKERLPEGTYILVAPHRNWWEPILFALAASPTEFMFMTKQELFKNPVLRWILNNAHAFPVNREHPSPSVIKIPVKGLKSEGLSLIMFPSGTRHSASLKSGALVIARMSGRPLLPAVYQGPLTFKGVLQRKGIEINFGNPIVIDRKTKLTPETEAAYNQQLEDAWKQIDQELDPDFHYEAK"]}}, {"location": "[1152599:1153586](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0136"], "gene": ["asd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04797"], "locus_tag": ["MAAAAKME_12220"], "product": ["Aspartate-semialdehyde dehydrogenase"], "transl_table": ["11"], "translation": ["MKIGILGATGAVGRQMLECIEERQLPVEELRVFASERSKGKKLPFAGQELTLEVVSQERLNGLDYVLGAVSNSLSKEYRPLVEKSGAVYIDNSSAFRQEDGVPLVVPEINGQDALDHHGVIANPNCSTAITLMALAPIAKLSPIKAINACTYQAVSGAGMGGISELKDEVTALTKGESVEAKVFPAQIAFNVIADIGSPLENGYTTEEMKMQNEGRKILHLPDLLVTCTCVRVPVYRSHSIAVTVVTEEPVSVEAAENAIAAFDGDLLVTDHTPTPLENSDKDIVQVGRLRRDLTNPNGLTLWCTGDQIRKGAATNAVQIMEYLENNK"]}}, {"location": "[1153586:1154927](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.4"], "codon_start": ["1"], "db_xref": ["COG:COG0527"], "gene": ["yclM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94417"], "locus_tag": ["MAAAAKME_12230"], "product": ["Aspartokinase 3"], "transl_table": ["11"], "translation": ["MSKVVKFGGSSVANSEQFKKVKQIILADPDRKYVVTSACGKSGQEDHKVTDLLYLCAAHITYDVSYESIFQSIVDKYMEIKRSLGLKIDLAGEFAKIRQNMAQNLNLDYLVSRGEYLTGLCLAEYLDADFRDASQVIRFHYDGSIDLDKSQELLKAQVDPGRRVVIPGFYGSLPNGVIKVMSRGGSDITGSIVANAFDVDVYENWTDVSGFYVADPRIIKDPVQIPRVTYSELRQMSYMGANVLHDDAVFPVRQKNIPINVRNTNHPENPGTMIMNDCSELDAQEPPHVITGITGKQDFTVITMVKSHVSAEAGFLRKVLAVFEKFQISIESVPVTVDTFSIVVQTKKIERYLYEIVAELQQDLHLDDIQVESQQAMLAVVGRVMRQMPGMSGKILSTLGDQQINIRTINQACDEQSIVIGVNNQDLVPAIKAIYQQFISEERVER"]}}, {"location": "[1154919:1156068](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.4.1.21"], "codon_start": ["1"], "gene": ["nadX"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01265"], "locus_tag": ["MAAAAKME_12240"], "product": ["L-aspartate dehydrogenase"], "transl_table": ["11"], "translation": ["MQIAIMGCGVVGGGIVKLVEEAETSLLQKIKIKKILVHRDEQILDDQYTTDFVEIVNDPEISVVCECIGGVEPAHSYVKRALEAGKHVVTANKKMLAVYAGELFDLARQKGLVLAYEASVGGGIPWIDNIKHIQRLEPVTAFQGIFNGTSNYILSQMAEKDLDFAACLKEAQELGYAEKDPSDDIDGGDVCYKVCLSALTAFGKIADPSQVDQWGIRHLTKEDFAWAKANGRTIKLLGRGRQAGEKLSLQVLPVMLKKTSLLAGVGLNFNALETDSASLGPATFVGQGAGSLPTAHAAVQDLLDLAEGKKEIMQSAEPGQLTDEEEQTFYLRTNRADFFQDVVAERISEKAFLTKKLTLAEISSLVKESGDPAAFLAGVADE"]}}, {"location": "[1156208:1156643](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADYFYVHKKILPDYLEKVLEAREMLDSREAATVTEATERVGISRNTYYRYKDYVFRAKDPARGQQAVLSLLLADLPGALSAVLTCVTDHRASVLTISQAIPLASHASVLMSLDLAGLKGDINTLLADLKSLPFVKNLQLAGLE"]}}, {"location": "[1156691:1158488](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["yheH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07549"], "locus_tag": ["MAAAAKME_12260"], "product": ["putative multidrug resistance ABC transporter ATP-binding/permease protein YheH"], "transl_table": ["11"], "translation": ["MTMNNEDFQSVWQQPISTKEQGQILKRLWTFVWLYKGELLTAVLGMVAVSAINMLLPTWLQYYMDHYLKAGKVDFSTVYYVALIYGIGVVFKAVCQFTYEYLYALAGEKALEKVRRVLYAKIHTLGMRYFDQTPAGSILSRVTNDTMTLGNFMKVFSAFLLGIVSMVTALIAMYMADPVAGGIVTAFIPLIVGAIWLYNRVNSKIYHEYRARNSLINTKLEESIAGISVIQQFRQEKRIDDDFEKINRQQMQTRFKLIRTNGLLLSPFTTLLYSLALTCVLVWFGYPLRATFVPAGMIYAFANYVQNFFNPLSDMMNSLTFFTDGIVAGKRIFKILDQEEYEPEQKELADAKITEGKIEFKHVSFSYDGKHDVLRDVSFTLNPGETLGIVGHTGSGKSSIINVMMRFYEFHSGQILLDGTDIRDFSKAELRQKMGLVLQEPFMFYGDVASNIRLYNDKITDEQIEEAAKTVQADRFIEKLPGKYHAKVIEGGSEFSSGERQLISFARTLVTNPKILILDEATANVDTETESLIQAGLKKLRQGRTTLAIAHRLSTIADADQIIVLDKGRIVEHGKHEDLLAQKGYYYDLYTLQQNREN"]}}, {"location": "[1158474:1160235](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["yheI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07550"], "locus_tag": ["MAAAAKME_12270"], "product": ["putative multidrug resistance ABC transporter ATP-binding/permease protein YheI"], "transl_table": ["11"], "translation": ["MDTFSKLGWFFKAHRKRYALGITALVLTSAANLVSPRILGMMADQLDTGKISWQQFFSYVLAILLAALALYVCRYFWRKQIYGGAAILEKELRGRLFWHFMQMDRTFFQRYRTGDLMARATNDVQAVQNVAGDGILTLIDAIFTGGTTLLAMMILVDWRLTLAAMLPLPLLAFCARYLGDRLHDAYMDSQAAFSRLNNKTQESLSGIKVLKTFGQGKEDAAAFNKMTYETVDINKKVFRIDSLYDPMITMIIGITYIITIIYGGRLVLSKSISLGQLISFLSYIGAMVWPMFAIGYLFNVLERGSASYDRIMSLLNEKSLIVDSDSMDKEQKLTGDLRYHVTSFAYPDEPDKAALGGVDFDLKNGQTIGLVGRVGSGKTTIIQLLMREFDNYKGRITFAGHDIRQIPLDVYLKEISYVPQNNFLFSMSVRDNIAFAKPDASQVEVEAAAKKSAIHDDILAFPNGYETMIGENGVSLSGGQKQRMSIARALLHDSEILILDDALSAVDAKTEKAILTKLRQEREKKITVIAAHRLSSVMDADLILVMQDGQVAERGTHEELLAKGGWYAQMWQRQELAQKVGEDDDE"]}}, {"location": "[1160344:1160569](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67291"], "locus_tag": ["MAAAAKME_12280"], "note": ["UPF0154 protein SA1178"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLGLAIFLIILAALLGAVAGFYGARTYMKNYFKKNPPITREMVETMMSQMGQKPSAKKVNQVMNMIKHQAAKN"]}}, {"location": "[1160681:1160918](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60076"], "locus_tag": ["MAAAAKME_12290"], "note": ["UPF0291 protein SA1176"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEADQVRKRINELYKKKQESGLTEAEEAERKELHKQFIANFRAGFKQQLDSLVIVDDQGKDVTPDKAKQIQKKKVLR"]}}, {"location": "[1161072:1161693](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.88"], "codon_start": ["1"], "db_xref": ["COG:COG1974"], "gene": ["lexA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31080"], "locus_tag": ["MAAAAKME_12300"], "product": ["LexA repressor"], "transl_table": ["11"], "translation": ["MATHDSKQLEILQYIYDTVENRGFPPTVREICAAVGLSSTSTVHGHLTRLERKGYLIKDATKPRALEITHAGLDALGIKPKDIPVIGVVTAGQPILAVQDVEDYFPLPPNLASDAGELFMLRVHGTSMINAGILNGDYVIVRKQTTAQNGEIVVAMTDDGEATVKRFFKEDLHYRLQPENDAMDPIILNHVQILGKVVGLYRTNID"]}}, {"location": "[1161892:1162741](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4975"], "gene": ["glcU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P40419"], "locus_tag": ["MAAAAKME_12310"], "product": ["putative glucose uptake protein GlcU"], "transl_table": ["11"], "translation": ["MNIIIALLPAIGWGVMPWIVNKVPNSKPANQIFGVGMGATIVGIIVTLIQHPAISMPVFFLSLLSGALSTIGQIGQFISFTRIGVSKTMPFSTGLQLVGNTIIGALIFGEWKTSNNFIFGIIALVIIMVGVILTAYTEKGNGFTQKTTNKDILFLVLTTIGYLAYSAFPKTITADAESMFLPQTLGILLGSVIYLAFSGNKAAFKEKASYLDLFAGISFGIAAYAYIISAQVNGVTNAFIYGQLSVIISTIGGMTLLGERKQGKELVATLAGLCLIVVGAIL"]}}, {"location": "[1162841:1163720](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_12320"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MKNMKNMKRQPQTIKRIIQALACSLLLLLATSLTACSSKQESSYARAKQSKQITWGVRPDTKLFGLTNIKTGKIEGFEIDLATAITKQILGPKSKAVFRPITEKTRITLLHNGSLDAVISTMTITKERMKVIDFSDVYFNANESMIVKKSSKIRSIADLNKKGVVVIAIKGTDVANQVAKLASKASVKQFDDYGSAFNALKAGQGDVMIDDNGILAGLIADTPEFTLTKASLAEEPYGIGVEKGQTEMRQAINQALKQLRANGKYDQLVKKWFGKVSGFDVKHAESQKVKIQ"]}}, {"location": "[1163915:1164449](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSVSKRPISSFQELETAADDSDEIHFKLNGQQWLLVDDGNPLTPASKTLINCDLPEEQQFFANTEEFLTCQIGGQSLADCWPQMSEVAVWSVQFDSLEEFVQAIKDGCDIKFSLAGRQYSLVQSSERKVYRQLTWRLEKSGQMKVEKFADLKQLLAFEIAGQSLGKQWSAMKNVDYG"]}}, {"location": "[1164505:1166740](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "gene": ["rhlE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00968"], "locus_tag": ["MAAAAKME_12340"], "product": ["ATP-dependent RNA helicase RhlE"], "transl_table": ["11"], "translation": ["MDTFSRYAPFIQDYIYSRGWETLRPLQTAAAQVIFDTDDNLLLSASTASGKTEAAFFPILTDLAENPADSIACLYIAPLKALINDQYDRLKDICEGSDVPVWRYHGDVSAAQKRKMFKRPQGVLQITPESLESLIINKHADIPRLFGDLRYVVIDELHSFLRSDRGGQTFCLLERLNRLAGVKPRRIGLSATIGDPKAAGQFLGDGSGHQTRIPKVKSRPQRWHLSMEHFYKSGDQAGDHSALLAQAVLDQASDQAPELADPGLAYIFDHTRGKKCLVFTNSREECEAVCQVLRQYCEYKHEPDRFMIHHGNLSAALRQGAEAIMKDEDANITTCATATLELGIDVGQLERAFQIEAPFTVSGFLQRMGRTGRRGNPAEMWFVMREEQAESRDMLPVLLPWSLLQGIALVELYLQECWVEPPRDHQLPYSLLYHQTMSTLMAGGEMSPAELASRVLTLSYFRWVSQDDYRVLLRHLIKTDQIQLTENGGLIVGLAGERVTNNFKFYAVFQENEEYSVHAESEELGTIVKPPPLGEKIAIAGHVWVVEEIDRRRRQVYVHQVKGQIPAYFGDVAGDIHPKVLQQMRQILAEKRQYPYLMKNAAARLSETRAMAEAAGLPDKQLINLGAKTYCLFPWTGSYAFLALERFLRLKCASRLGFKNIDSVRPYYIQFSMDVSEGDFYQILTEEAAKDFDPLDLLYPKEVPVFDKYDEYLPDDLVRKEFAYSVLDLTEMRRAIGEITRQMA"]}}, {"location": "[1166762:1168085](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEQKKRIPKRIAQTVISSLKGGVVPRIGLPYITVGRKAEIEALLHDVDLVKKGGASFRFVVGRYGSGKSFLLQTIRNYVMDRNFIVLDADLSPERRLQGSKGQGLATYRELIQNLATKTRPEGGALTLVLDRWINNVQTAVASEIPFDDPGFQTAVDQKIVRQISSLSEMVHGYDFAQLLERYYHAYLAGDEDTKGKVVKWFRGEYRLKTEAKQDLGVNIIISEEDWYEYLKLFAVFFRQAGYSGMFIMVDELVNLYKIPNAISRQYNYEKLLSMYNDAMQGKAKYLGIIMGATPQAVEDRRRGVYSYEALRSRLAEGKFAKEGQRDLYAPVIRLEPLTAEEMLVLTEKLADMHASLYGYERTISEKDLADFIKIEYARVGTSSMITPREIIRDFIELLDIVLQNPGQTVQSLLTDGDFAYTKSDAVSDEKTSDFAEFTI"]}}, {"location": "[1168084:1169983](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHLAEVADYIQSKYGIEASYVDLAGQTLAAVTVPGANESFALLLKKDGRETVELKAGSLAKFLVAQPAFGPAVFMQDLAWIRVDLDNPALNDRFFYKTLDSAYQSSRPLEAAKNTAEDRQEHEIYLLDDEGEDFQEEVIPKRPAFFKDSDFDRLLAEKGQPVIPEGIRQMQESYDYLAVPRRESNFYRQGMLMANYEDDFAQMVPINKQRPVYHDLTVDQLRSYFSWRTKFRQGKYKPAPAAYVYLLASELVCQIGVKDKADGLRQLRLLFAKCVEQKDISTSWQEKHILQNYLVYYGFALEEIRPDFADELMRGEVYHNLLSGEASGQELYQAICCLSSYLPKNNPLLKKEPEKFYELLAQVWQEVRLNPYQLLKLLVGEKTTLPVEMFADTVFFSLDPVKDAELILGPGLVYRCQGGQWSNEVYWPSGRQRQLLANFMHEFDRLSRQAFKQGRALKEKDLPPAFKQAIVQGIADYQEILIERARPKVKINLASLDQIRSDAAETKESLLTEEERQLEAEEAERITSESNKQVSESSATEEKMTKDIDETAASGLGLDENEEQLLLALFSGQPYQDFLLQRHLLLSVVVDQINEKIFDEIGDAVIDCDGQKAEIVEDYRSDLADLLGIEEK"]}}, {"location": "[1170115:1171957](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0737"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8YAJ5"], "locus_tag": ["MAAAAKME_12370"], "product": ["Cell wall protein"], "transl_table": ["11"], "translation": ["MARSIKKELAALLLAVAVLAPGQASASKLEVTSKADTAIKPAQSKDWKNPKKYSRDIPVQFLSINDLHGNLSTTGTATLGQKSYSNAGTVARLAAYLDQAQKDFKKKNKQGTTFRVESGDIVGASPANSSLLQDESTMHALKAMKFTIGTLGNHEFDEGLGEFNRILLGKKPTKKYNSAEMAYPHQKSGIKLIVANVVRKSTGKVPYGWKPYTIKAVKAGKKKAKVGFIGILTTEMPTLTTKKNYSAFKYLDEAKTIAKYEKVLRKKGVKAIVVLAHKGVETVADSKGKLTTSGDSVKILKKLNKIDPKNTVDLMIAGHSHQYANAKVGKTRLVQALKYGQAYTDSIGYISPKTKDFVKGSLVSHVYPVLSAADDPKTKDNKTVAKIVADADKRVSAITKQKIATAQKAETITGRENNNASNENAVGDLVVDAQLSEANRQGFKADFAMTNGGGVRSGLAVGSDKSITYGAAMAVQPFGNSLQVLTMTGKQILAALNQQYDHYYLLVSGLHYVYTKDAAGKVKIVKVYVGEGEKTELSLTKTYRVVANEFIAGGGDHFTQFTAGKKVGILTGTDTETFISYLKQQTASGKQIVSPALNRKVEISADQAAALEK"]}}, {"location": "[1172222:1172570](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0335"], "gene": ["rplS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31742"], "locus_tag": ["MAAAAKME_12380"], "product": ["50S ribosomal protein L19"], "transl_table": ["11"], "translation": ["MDPLIQELTKEQLRDDMPEFRAGDTVRVHVRVVEGTHERIQIFEGVVIKKRGTGIGATYTVRKIASGVGVERTFPVNTPRVAKVEVIRHGRVRRAKLYYLRTRSGKAARITERRR"]}}, {"location": "[1172691:1173384](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKEQRRLYDAEIARLKNKVMAEDDEGIKREQIEILAALTRIREICCDPGLLYEDYKGESEKRLACVDLIKSAIDEGHKVLLFSQFTSMLDLLEESLKAEEIGFLRIDGQTPKARRLTLVNVFNHKDSPAKVFLISLKAGGTGLNLTGADTVIHYDPWWNVAAQNQATDRAHRIGQEKKVTVYKLIAKDTVEEAILDLQEAKSLLAQGILTAESVSSASLQKEDLLKILD"]}}, {"location": "[1173335:1174565](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKRYTSFWKGWRNCFAAFDEVEVTPAFKKLKFKDRLNLAFGLSLSDGLLRLDLKSKLTPEELAEVFSQYKDRKKYIRLKNGSLLNPASQDLEKLALLAKNLDLTAKDFSKEQLEMPAYRALYVDQLLKEQEMGEIERYDHFQQLLADFDQKEAPLKLPTGLEKILRPYQKTGTAWMNRLAQHGFGGILADEMGLGKTLQVISLLASQKDQPSLIVAPASLVLNWEAEFKKFAPEMKTLVLSGSKKERSGQLADLTDIDVVITFYDLLKRDIANYEPHTFAYEVIDEAQMIKNPRTAAAKSVSVVKAKHRFALTGTPIENRLSELWSIFNFVMPGFLKSYREFKKDFESPIVKEDDQDCLNRLSQMVGPFILRRLKKTFSRTCRTSWRKSAMSAWARNREGSMTLKLPA"]}}, {"location": "[1174506:1174965](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVAVNLDDSQANDKQPLLTATGFSHFANRGNGNKVNVKVGLKQVSELKCNIAECKQHEITGPCRHEIALLQKLVLMIMRENLGEVTDYQADRALARAEMLEEFDQDALEDVKLLAQLENFFDLEDGDCRLDKVDDEAVYQLLEGMAKLLRRL"]}}, {"location": "[1174970:1175447](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12420"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLQWRKLFSNRILDRGRDYWKKDWVYAPSYSELPAGIHCRVGKPGQSYDVTIDFSDDWSEIKWMDCDCPYAAEGYNCKHEAACLYATELFIEGMQAIQEPLTSELPASDRKSGRKRSLKRSTALAENMSTIFLILARFLHRLTLTRSFGSGSGIIRP"]}}, {"location": "[1175461:1176199](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.228"], "codon_start": ["1"], "gene": ["trmD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q6GHJ5"], "locus_tag": ["MAAAAKME_12430"], "product": ["tRNA (guanine-N(1)-)-methyltransferase"], "transl_table": ["11"], "translation": ["MNINVLTLFPEMFTPLQVSLLGRGQEDGKWKLNLVNFRDFSDRPHKSVDDTPYGGGAGMVLQVKPIKDALDSLENKGKVIITAPQGKTFNEQMAQEWSKEENLTFICGHFEGFDQRVYDLADEMVSIGDYVLTGGELPTMSMIDATVRLLPGILGNALSTVEESFSDGLLEYPQYTRPADFEGQKVPEVLLSGNHGKIDEWRHYQALKATKLHRPDLLEKRDLTPEEVRMLRQIREDEQAEEDKL"]}}, {"location": "[1176198:1176702](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rimM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66656"], "locus_tag": ["MAAAAKME_12440"], "product": ["Ribosome maturation factor RimM"], "transl_table": ["11"], "translation": ["MNYYNVGKIIATHGLKGEVKVALTTDFPEDRFRAGSRLYLGDDSREVTVAAGRPFKQFWLVTFAEITDIDQAEKLKGTEILISEEDQGELPDGVYYYRELLGCKVLDDESGEEIGELTDIEAPGANDIWEVTDKNGKSFWLPYIPQVVKSVDIDKKEVRVELMEGLR"]}}, {"location": "[1176763:1177036](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0228"], "gene": ["rpsP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21474"], "locus_tag": ["MAAAAKME_12450"], "product": ["30S ribosomal protein S16"], "transl_table": ["11"], "translation": ["MSVKIRMRRMGAKRKPFYRIVVADSRAPRDGRFIEEVGYYNPVSQPKELKLDEDKIFEWLKKGAQPSDTVRSFLSSAGLMAKLHDEKYNK"]}}, {"location": "[1177130:1178561](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0541"], "gene": ["ffh"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37105"], "locus_tag": ["MAAAAKME_12460"], "product": ["Signal recognition particle protein"], "transl_table": ["11"], "translation": ["MAFENLSERLQKALRNLTGKGKISEEDINAASREIRLALLEADVNFKVVKDFIKTIKKRALGQEVQESLTPGQQVIKIVNEELTKMMGEEAVGLTKSPHIPTVIMMVGLQGTGKTTTVGKLAYRLMKEEKARPFLIAGDIYRPAAIDQLKQIGADLKVPVYSDPEEKSVAKIVEDGLAEAAVHRNDYVIIDTAGRLEIDEPLMKELEEVKAVSQPDNILLVVDAMTGQVAADVAKTFNERLDVTGVILTKLDGDTRGGAALSIRAITGKPILFTGQGEKLTDLEVFHPDRMASRILGMGDMLTLIEKAQQDYDAKQAEKVAQKMRENTFDFNDFIDQLEQVQKMGPLDEIMKMIPGMANNPQLKNFSIDEKQIAHTKAIVYSMTPAEREDESLLNPSRRRRIAAGSGVPIVEVNRMIKEFKTAKDMMSKVTKGNFKDLEKLPGMNSPMAKMAMRRMGKSFKKKKAKKMKKVKRFHS"]}}, {"location": "[1178562:1178904](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDELSKNEALGDLYAMYSALLTHGQQDYFEDYYYNDLSLGEIADNRHVSRQAVYDNLRRSAKSLEKYEDKLRLLASYSQLEEGISQALASLAAGDQETAKLQMEDLLQIIRGE"]}}, {"location": "[1178956:1179364](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_12480"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MWLCIGGPTFTPFVPFFTNMNDTDPSYNEASLEYRQSDAWWFYKSLAALVESHYSHFVQMDATYLTELNRYFRARVAEVTDQAQGLTGEELTAFLTKANQETVAHCRQESEKLWGQLFKEAIKLSKLTFNMDKNL"]}}, {"location": "[1179535:1180009](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_12490"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MVNVVLPYIDSARGGVKRLGALIAKYGSAAGNSVLFSDKDEIWYMEIVTGHHWVAQRIPDDAYAIAANRVSIQEVDFTSDDFMWSAGIQDFVAKNKLNPDLEGWNFRHIFGTFTEQDRHYNTSRVWYGQKILNPSIDQDPEDPDLPFIRRAEKKISK"]}}, {"location": "[1180035:1180197](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLPEDAYRYPAVPNVDYKKYGYYEESGINEKNVAMSATESTYGMNALWPLTP"]}}, {"location": "[1180277:1180376](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDDACTSILVGKKAAMDGNNLIARMTTPFLP"]}}, {"location": "[1180422:1181751](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsY"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00920"], "locus_tag": ["MAAAAKME_12520"], "product": ["Signal recognition particle receptor FtsY"], "transl_table": ["11"], "translation": ["MGLFDRIKKSLFGQKDEEKPEEVKADQEEATEENTETENEAVAETTETSEEAVAEKAEEQEETADEESTEAAEEESAEVTEETEESTEATEDVEEKTETTETAEETETTEEAEEKTEAEEETTEPVEESTEEKTTEIYEKGLEKSNKGFGARLNAFLAKFRTVDEDFFDDLEELLIESDVGYETSEELTDQLREEAKLQKAKSRDDLKRVIVQKLVEVYDENANSENEKLAYDPNAKPNVYLFVGVNGAGKTTTVGKLAKRFHDQGKKVLLVAADTFRAGAVEQLVEWGKRTGVPVVTGPDKADPAAVVYDGLERAIAEEADYLLVDTAGRLQNKVNLMNELEKIQRTIKKRLPDQPAETLLVLDGSTGQNALLQAKDFDKTTKLSGLVLTKLDGSSKGGVVLSIRHEMKLPVKLVGLGEKAEDLADFDAANYAVGLFHDLL"]}}, {"location": "[1181753:1185314](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1196"], "gene": ["smc_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P51834"], "locus_tag": ["MAAAAKME_12530"], "product": ["Chromosome partition protein Smc"], "transl_table": ["11"], "translation": ["MPLTSLILEGFKSFADKTVIDFTKGITGIVGPNGSGKSNITEAIRWVMGEGSAKSLRGRNMKDVIFAGSQFRKPLNRAEVTMVFDNRDRELDFSADQVSITRRILKSGDNEYLINQQPVRLRDVRALFLDSGISQNSLAIISQGRVDQILNSQARERRGIFEEAAGVLHFKQQKQQAQRQLETTNDNLIRINDLVNELEKRLEPLHEQSSLAQEYQFQKAALDEDLKTLLAFEIADLDQEEREVSQKLAKSQELLSRLDAEVKQSQAKLAAKRQEFQLESQKRDQVQAEVLKLTNRLSEINTSLQVSQQSRQFDQATRLEYQRQLADLKENLAATDAEISKLADQEAEYAGQLDQLKCKRQKLVDQLKEDPASLKLKVEDLRSQYIQTLQDQTSVNNQLVYLEGEIKRAKESKDQRYEDASSQLAKSQEELEGLRLKEQKLRAENDQLQAELKEASDQLGKLAAEQQVAQKQLQADLTNLQRLTARRDALVNIQKRHDGYYAGVKQVLNQPDRFPGIIGAVGELLTFPADLEAAMTTALGGNVQSLVAKDRMAAKDAIQQLKVRRLGRATFLPLDALRYRAIPASTRQALERFAGFQGLASELVEAKGDTDISEAIQYLLGSIIIVDNMDTALAVSRQIGHYRVVTLDGDVISPGGAMTGGARNQRNNSPLQTTAEINKTTAMLEELERQFHIKEEKLAGLDKQVKDKQENREQISRDLQSLQQDLSAAVLTFQSQEKEVKRLESAVQLYQAQQAEQAAYLADLTDKEKAQKIKKEELAALADQQKRDLASLQETIQNYTDLNQGVQEKLAELDPQLAVLANKQENLQARKAELGRQKAAIQKQIGQLEEKLAALDNSSQLSARKKEELGLEKDRLLAEQKDKQADLDAASQLLGQLNGQINQLEAVATRNYDLRKDAASEQEELSVKLATVKGQLKQHLDSLREDYSLTYEAALSQAKLENTEENQQNLRRSVKLHRMSLEDIGPVNLGAIDEYKEVKDRYDFLNGQQNDLLEARSNLQQSMDELDQEVKGRFGQTFQQISASFSRLFPVVFGGGNARFTLTDPDNLLESGVEIIAQPPGKKLQRLSLLSGGERSLTAITLLFAMLEVNPVPFCVLDEVEAALDDANVARFARFLRQYDSQTQFIVITHRRGTMEQADQLYGVVMQESGVSQILSVSLKDLKDEV"]}}, {"location": "[1185313:1186009](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.3"], "codon_start": ["1"], "db_xref": ["COG:COG0571"], "gene": ["rnc"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66670"], "locus_tag": ["MAAAAKME_12540"], "product": ["Ribonuclease 3"], "transl_table": ["11"], "translation": ["MVSTKFIKMLDEKYGIRFKDVRLLEEAFTHSSYVNENPGKTFGNYEKLEFLGDAVLEFTVSDYLYRHFQHLNEGELTRLRSNIVRTEGFSKVALDCGFKEEINLGVGEEKAGGRKRKALLEDVFEAFNGALFLDQGIEAVEKFLSQTVYPLIAAGYFTPSRDFKTDLQELLQQNGSVTIEYRVLNESQQPPHFEVEVLVDGKKLASGEGRNKKKAEQDAASHALEHLNGGK"]}}, {"location": "[1186133:1187912](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["appA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42061"], "locus_tag": ["MAAAAKME_12550"], "product": ["Oligopeptide-binding protein AppA"], "transl_table": ["11"], "translation": ["MKRLTKITLCLLVALSLAACGQKPEKSKQNGNSGAEDAMQFPVATSFAKTKKGGSIKVALETDTPFTGIFSDELADSTTDATLVQFGSEFLFDTDNSYNITDSGAASFSLDRQAKQITINIKKGVKWSDGKQIVAKDVEYAYEVIANKATKSSHYTSSLQDVVGLKEYHDGKAKTISGIEMPDGENGRKVVIHFKEMHPGMLKSGNGYFWESALPYHYLKNVPFSKLRTCIEIRKKPLYFGPYKVQSIEAGQKVVWTRNEYYWRGTPSLSKITISIISPKSVSTAIKERTYDIIEVVNSQWQQIRTTKNYKFVATIPLSYNYLGFKLGKWDEKTNSVKMNKNSKMANKSLRQAIGYAMNVTQIQRKYTSGLTFRIKSLIPLQFGDYYDDKSKGYPYNPAKAKKLLDKAGYKLRPGEKYRRDPQGHKLVIHLAAMTGDASQSKIINNYIKKWKEIGLNVKLTTGHLLEFNTFYNLLFQDDSQVDMFIAGWTLNNEPSQNGIYGAGTQYNLERFATKINTRLLEAMDSDAAFNINYRIKVFKKWQRYMKEQAFVIPLTSSYKITAINKQLVNLSYEPAEMNNSHPLWYKIGYKK"]}}, {"location": "[1188048:1189815](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["appA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42061"], "locus_tag": ["MAAAAKME_12560"], "product": ["Oligopeptide-binding protein AppA"], "transl_table": ["11"], "translation": ["MKRRMLGTFGVLLAGAALLAGCGKSSSSSSNSGAKDAKKFPEATATATAKKGGSITIAEESDTPVKGVFLNELSDGQYDSDFMQFGNEALFATDDQYKINNKGAATFKMDRKAKTVTIEVKKGVKWSDGKQVTAKDVEYSYEIIANKASQSSRYTSSLADIVGLAEYHDGKSKKISGIEMPDGENGRKVVLHFKEMKPGMTQYGNGFFWESAVPYHYLKDVPFSKLQSSDKVRKNPLFFGPYKLSKLVRGQSATWVRNPYYYRGKAKLDKITISVISPNSASQSIKSKKFDMINVVNSQWKEVKGTKGYNFVAQIPLSYSYMGFKVGKWDKKTGSVKMNKNSKMSNRYLRQAMGYAMNVDEVTQHYTQGLSFRVKTLVPEAFGDFYDKSVKGFPLNIKKANALLDKAGYKKKKGETYRRDPNGKKLTIHLAAMSGSTNQEAIVQNYIQQWKKIGLHVTLTTGRLIELNSFYDKVQNDDPSVDVFMAAWSLSSEPTQDDLYGPKAPYNFTRFATSENTKLLKEIGSDKAFNHSYRVQKFHEWQQYMQKEAFVIPLTNAYSITAVNSKLVNYSTKPSKAATLWYETGFKK"]}}, {"location": "[1189974:1190871](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKKKQDDRAQIPPSALKITFREIFKSKAATIAFCTIVVILLLTFGGSLFLDSSKVTEMHILESYAGWGQNGHLLGTDDGGRDILNLLIMGGRNSIMIGLLVTLFCELVGLIVGLVAGYYGGTTDSIIMRIVDFVQILPQMPILIVLVTVLPNYNAMTLVLLISMFGWTGEARYYRSFILSQRERDYVLASKTSGSSNTKIMFREILPNIASMIIIDVVLSVSGNIGIETALSFIGYGLPNKIPSLGTLIGFANDPVNIIDRPWLWLPATVLLLVICLSINYVGQALQKAGDARQREN"]}}, {"location": "[1190897:1191857](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0601"], "gene": ["gsiC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75798"], "locus_tag": ["MAAAAKME_12580"], "product": ["Glutathione transport system permease protein GsiC"], "transl_table": ["11"], "translation": ["MWKTVLRRVLIMIPQLILLSIIVFMLAKMMPGDPFTGLINPNSSPKEIARLKQAYGLNDPVPVQYVRWIKNLLHGDLGQSYIQHVPVASLIADRAQNTFWLSLLSTIILYGIAIPMGISAGKHEGEWQDRAISIFNYVTYAIPGFVFYLLGLWLFGFTLGWFPISGTVAANASGFWGVFFSRLQHMILPAILFAIIATTGTVQYLRTGIIDNKVEDYVKTARSKGVPEKVVFNKHILRNSFLPIAAFMGNTITGLLGGSLIIETVFSFPGMGKLFLDSISQRDYTTLTALIMIYGTLTLLGNLLSDIIMSLVDPRIRVK"]}}, {"location": "[1191860:1192817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4608"], "gene": ["oppF_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24137"], "locus_tag": ["MAAAAKME_12590"], "product": ["Oligopeptide transport ATP-binding protein OppF"], "transl_table": ["11"], "translation": ["MAEEIIQVKDLKVHYPVRSGFWNRITDYVRAVDGVSFSIKEGETYGLIGESGSGKSTTGKAIVGVEKVTSGQILYKGEDITKESVRRKMNYNKDVQMIFQDSMSSLNPRKRIEDIIAEPIRNFENLTTDQERDRVQELLSIVGMPSDAIYKFPHEFSGGQRQRIGIARAVATNPKLIVADEPTSALDLSVQAQVLNFMKHIQQQYNIAFLFISHDLGVVKHMSENLAIMHRGRLVEVGSQEEIYKNPEHIYTKRLLSAIPKIDVEHRAEHAARRREIEREFLQDQANWYDADGRVYPLTEVGPNHQVALPKEQIKGGE"]}}, {"location": "[1192826:1193828](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0444"], "gene": ["oppD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24136"], "locus_tag": ["MAAAAKME_12600"], "product": ["Oligopeptide transport ATP-binding protein OppD"], "transl_table": ["11"], "translation": ["MDNQQNVLLDVEKLHTGYRLQGEFYDAADGISFTLKRNEVLAIVGESGCGKSTIASSIVGLYDRKNTRVEGEIRYKNLNLVNLSEDLFNQVRGNNIGMIFQDPMASLNPLMKVGDQVAEALLYHTDMNKQQRRDRVIELFNQVGMPKPEAMYDMYPHELSGGLRQRVVIAMAVACKPEIIIADEPTTALDVTIQAQILDLLKKIQKESDSGIILITHDLGVVAETADEVAVMYAGQIVEKADVKTLFTHPLHPYTRSLLNSIPQSDDDKDELHVIQGTVPSLKNMPRTGDRFAARIPWIPAEAHEADPQLHEVEPNHFVRCTCWKTFHFQDEG"]}}, {"location": "[1194118:1194361](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0236"], "gene": ["acpP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SL79"], "locus_tag": ["MAAAAKME_12610"], "product": ["Acyl carrier protein"], "transl_table": ["11"], "translation": ["MTEAEIFDKIATLIADNFQLDKDKITMDTNFTKDLNADSIDLVEFIMQLEDEFGAEIPDEDAAKIITVADAVAYIKSHQG"]}}, {"location": "[1194422:1195415](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.274"], "codon_start": ["1"], "db_xref": ["COG:COG0416"], "gene": ["plsX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q82ZE8"], "locus_tag": ["MAAAAKME_12620"], "product": ["Phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MRKIAIDAMGGENAPEEIVEAVLKAKPELPEDKFIFFGDEGKMKELLPADDDQIEIVATTEVILDEDEPVKAMRTKKDSSMVVAANWVKEGKADALLSLGNTGALLTCGIFIVGRIKGVARPGLMPTMPVESSDDGFNIIDVGANATSKPEYLLQWAEMASYYAEKVRGVSKPRVALLNNGAEFDKGDDLHKEVYQLLQDSSLNFTGNIEGHELLQGKADVVVTDGFTGNAVLKSIEGTGSVIIHMLKDGLLNNGVKAKLGALLAKDALKSVASRFDKDKYGGAVLLGLNSPVVKQHGRSDARAVYYAVKQIDKILTEDLTNTFKQEFSK"]}}, {"location": "[1195445:1197485](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["recG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64325"], "locus_tag": ["MAAAAKME_12630"], "product": ["ATP-dependent DNA helicase RecG"], "transl_table": ["11"], "translation": ["MTLNEAIFRPVTALKGVGAKTAEALQSLGIYSIYDLLFYFPYRYDELENLPLDQLEDGQKVMLKGIVATNPYQNYFGYHKSRVSFKLRIDHDIIMVNFFNQPWLTKQLSVGQEIAVYGKYDLRKQSLSAYKLLANKNSDDGMAPIYSINRQIKQKKLQTMIDLAIAESMDEMGNAVPEDLRKHYRLMADQDLVIAMHHPKDLAEAKEARRSAVFREFFLFQMQLALMSSQNKSHSGYAKHYDLEEIGKLTKSLPFALSPDQKKVINEIFADMFVDQQMQRLLQGDVGSGKTVVAVFAIYGAVTAGYQAALMVPTEILANQHYHKISAMLEDFGVRVALLTGSTKTMERREIYKELADGSINVVIGTHALIQEQVAFKKLGLVIIDEQHRFGVVQRLALINKGDRPDILAMTATPIPRSLALTVYGDTALSEIRHLPAGRKPIKSYWKTSSQLDEVYSLMRQQLAEGFQIYAVTPLISESEMIDLENAEALHDRLAGEFPDQEVVLLHGKMAAADKEQIMDRFAAGEVDILVTTSVIEVGVDVANANLMVIFDADRFGLSQLHQLRGRIGRGQTQSYCVFLADPKTEAGKQRMKIVAETNDGFKLAEEDLKMRGEGDLFGKAQSGLPEFRTGSVVSDYQVMVVARDEAKRIVQADPDLKTEKLADLQAVIKYKKIVQARA"]}}, {"location": "[1197484:1199149](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5Z4"], "locus_tag": ["MAAAAKME_12640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVLSEISSKEFRDMVRIASHRMSKNVQFVNDLNVFPVPDGDTGTNMNLTMESGAKAVSENASSSVGDLTESLAKGMLMGARGNSGVITSQLFRGFYKATQGKTTLNAQELANAFSNGVATAYKAVMKPVEGTILTVARVGAQAGANKANETDDVEEVMQAIVEGAKEALKSTPDLLPVLKQVGVVDSGGQGLVFIYEGFLEGLLGENLDDKYVPDADDMNSLINATHHQAVQGQLATSDIANGYCTEIMVDLKADVPNKKPFDLEEFRSYLSELGDSLLAVSDGEIAKVHVHTEYPGKVFLYGSQFGQLGKIKIDNMRIQHETIVDNEQEQQESVDFAVIAVASGNGVRKLFESEGVNRIISGGQTMNPSTQDIMDAITKSGAKQAIILPNNGNIIMSAKQAAEVAEIPVGIVPSKTIQQGLTAMLAFNPEASVDANVEAMTDELGSVKSGEVTRATRDTEINGVEIHKGNFIGIVEGTIVVDDVDPIVATVAMIEKMLDEDSEIVTVMYGSDATEEEAQAVVDRLEAAHEDDDCEFEIYDGGQPVYNFLISVE"]}}, {"location": "[1199168:1199531](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA14"], "locus_tag": ["MAAAAKME_12650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAVKIKTKYGLIDISNGVIATVVGGAATSNYGVVGMASKNAIRDGVDSILSRANYKRGVVVKSDENQVTVDVYIIVGYGLKISEVSRNVQDSVKYNLRSQLGIDTKAVNVVVQGVKVLDD"]}}, {"location": "[1199706:1199892](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23374"], "locus_tag": ["MAAAAKME_12660"], "product": ["50S ribosomal protein L28"], "transl_table": ["11"], "translation": ["MAKDFVTGKKTTFGNTRSHALNSSSRSWKPNLQKVRILVNGKPKRVWVSTKTLKSGKVTRV"]}}, {"location": "[1200023:1201058](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_12670"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKQHQKGKRLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYGLKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALDKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKDKRNTKTRRARVNKRILGRRIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[1201219:1201537](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLYFLYFLSMLMHVVVYMFVFYSAVYILKALAPWLYLLTISDDALDNLISAAKKIAGENLKYVNSDVKKIELRSCYGFLDEGIIGAYKSLRALEKNGKNNISSHW"]}}, {"location": "[1201563:1201941](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIGNMWIAPLIKQQKIDGETQYLFQAGSKITGLTFPTYYTMDALISISELDLSDHKIEIRLDKETISVNNLSQNALTDANILDGSLTIVITLRNFLLKESGIKKFSLYVDGQEMSVFRLNFSSTK"]}}, {"location": "[1201986:1203210](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIRYGKQVKQKSPRWRAGKDNGMENDFDCVVSFDKNDNFWILRANGGKYLDDFIDDNYIGIQYNKVSVADLMDLDHNRITSVESVKDLYIEKYEFATGYKNDDELDTSQRQRLTTHAKQAYLFTFEMKPGDIVLVPSKKSRKFAVGIIEGEPYDESKDYIQSRFATSKPNGKQFLISNYIKRRHVTWHSFLLRSELPAFLSWIINSHHALTKIDCQTDDKRIQLFSLLTPLFQYNGKTYLKLHTGKGGDLSISDWRKITECTNDIDKISMKADVHSPGFFTFVVSNIDINALSKFVANIFGLDTAPVTLAGALSLVAILFYGGKDVFLHGVHGVHLQHQKINQEIQEQRIKNEIARLALEKQKDSYKTKTLAEKLEIQFTANGTAIENGRNTGEETDGPVAHSEKAK"]}}, {"location": "[1203610:1203832](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNVLQKYLDQNKMTRYQVAKKTGIANTTLANAVKDTKPLAGQTVKVISAVAKALGKTPGQVLDDLIKLENSEE"]}}, {"location": "[1203963:1204818](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerC_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01808"], "locus_tag": ["MAAAAKME_12720"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MLKGVDIANDPTFVQFFNEWYHTFKEKSVTSSTKKRYVTHGRIISEYFQNTKLKDIKRTDYQRFLNWFGESHAPGTVHKLDTMIRDCVSSAIADGLISMDFTAKTVIAGDDSRTRHVEYLNLDEIKRLISLCYENRQPRYTSPYMIITAIYTGMRLGEISALNWSDIDFSSKQISITKSWNQDRREMSKPKTESSIRTVPVNSWLLELITELKANDCDFVFGNPLTGFPPTSQAINQALRRFLKQGNMKKEISTFTVYGTVMLHSCLITESTSMQSVKGWGTQT"]}}, {"location": "[1205176:1206436](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.5.2.6"], "codon_start": ["1"], "gene": ["msbA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q14JW6"], "locus_tag": ["MAAAAKME_12730"], "product": ["Lipid A export ATP-binding/permease protein MsbA"], "transl_table": ["11"], "translation": ["MTNDLKQVESHRVEAELDIIFNGLQFIAASAAAMLSSWALSLIFLVASLAPGLLQNIFGPKIEAASSAWEGENSKYTEAMTDTINFAAFARLYDAEDSIYSRMLHYSQRMETALAKMKKAEMVTTEVITSFAYVCSVIIPFSLGIYFVTQGQITLGTFMMISQLANNFINPIVGIFSSVNDIKTSNPIWEKFTAVADFTAKESAADRDEFKELSLDDASVQRGDRKLLNDLDLTVKNGEKVLLEAPSGWGKSTLLNVLVGRIKLADGDYEINGEDANGDWSKDHEYFSFVQQKPYILDDTIEYNISLGREVSREDLLAVCQKAGLTSLIEEKGLDYQVGKEGKNLSGGQGQRLEIARALLAKRPVLLADEATSALDPRLSKQIHQTILQNFPGTVIEVAHKISDEEIAMFDRVVNLAEK"]}}, {"location": "[1206469:1206748](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLKYASKWKLLVFAVFAAAKALQAVFIAYVFQEFINFSGNPKGSLLQLTIKAVVGIVLFACLALIYQIMQANIIKDVNLKIKEQATKYLLY"]}}, {"location": "[1207395:1207971](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAELDAAVQTAQSKQADSAAAAKAKEAADLALTEAKKHLAILEALEEANEPSETPTTPSDNKPSETPTNPSDNEPSETLTTPSDNKPSETPTTPSEDEPSESPANSGETETIVIPAGKTETKATGKKQAAPASTVQKTAPATSAAKAPAKASATLPQTGESQNKSAFLAGIVALLASASLLAFGRRKKNKM"]}}, {"location": "[1208182:1208521](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSAQEAEKAAEDEASATEMTADSASQKAQAALADQEGKVSQAQDKVDQEKKAVDQVNGQVKELTDTDNEAKAASDAANKDLAAKKAAESEAEQEYQALPKVVANDALKRKN"]}}, {"location": "[1208959:1209643](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.2"], "codon_start": ["1"], "db_xref": ["COG:COG1564"], "gene": ["thiN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34664"], "locus_tag": ["MAAAAKME_12770"], "product": ["Thiamine pyrophosphokinase"], "transl_table": ["11"], "translation": ["MDASVLLGGPKEEWPADLKEQLKQAQAKGNLLIGVDRGALLLLELGFKPDLAIGDFDSLKADELAWVEGTVADIRYSVPKKDWTDSELMLGIAFGDYKIDQLKVYGATGGRLDHAAINAFGILNPDLRKYANQLTLIDKQNLIFYRQAGSYEIKQQDYSYFGVTCLLPVEDLTIEGALYDLAPYSGDYLRSFTSNEFLPDKDSCRLSLKKGLVAVVYSKDLDRYQMA"]}}, {"location": "[1209672:1210566](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1162"], "gene": ["rsgA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34530"], "locus_tag": ["MAAAAKME_12780"], "product": ["Small ribosomal subunit biogenesis GTPase RsgA"], "transl_table": ["11"], "translation": ["MAEIVQGTVVSLIAGYYDVQTPAGVVRTRARGVFRKNREKPQVGDSVQVKLDEQGLAYLVKILPRKNRIGRPAVANVDHVLLVISAVEPDFSTALLDRFLVFFAWQGVEVAIYLSKSDLLEKEKLAEIESQLAYYQKIGYRVYLDRESLAAELPKQIGESEIWTLAGQSGAGKSTLLNFIKEDAGQATGAISTSLNRGKHTTRTVTLFKLGEGFLADTPGFSAIDLTPIKLNELCTYFKEFKALSTGCKFRGCQHLHEPKCAVKDQMALGEIATFRYDDYLAMRTEIEEGRMPEYLK"]}}, {"location": "[1210566:1212573](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.11.1"], "codon_start": ["1"], "db_xref": ["COG:COG0515"], "gene": ["prkC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34507"], "locus_tag": ["MAAAAKME_12790"], "product": ["Serine/threonine-protein kinase PrkC"], "transl_table": ["11"], "translation": ["MINKGYLLGDRYRIVDTLGEGGMANVYLADDIILKRQVAVKIIRLDLQKDSQVLARFQREALATSELSHPNIVSVFDVGTDHGLPYMVMEYVKGPDLKEYIREKSPIPLPQVIKIMDQILSAMELAHKHNVIHRDLKPQNILMDEKGNIKIADFGIAVALNQSAITQTNSVLGSVHYMSPEQTRGGMVTKQSDIYSLGIILYEALTGHVPFNGETPVAIALKHAEDDIPSLRKQNKAIPQALENVVLKATAKDPRDRYASVAEMKADLDSSLDPSRAGEAIYRPSHGNNDETKILPALNGKVMQAEKAKEGKAEEPKKRSFWASIKKYKWWWIGSLFPVFAILLFMFLAVGHNNVRVPDVVNMTEKAAKTSLKSSGLAVGAVKRTYSSDVKKGKVISTTPKANSPVDKGGKVNLLVSKGSNLTKVPDVEGLYLSTAKKKLNKLGFKVKSREAPSNEYLPGLIISQSVKAGRKVDASKTTITLVVAVALEDQPKPSSSSSSKKATFKLADLTGKSLEDAQSYAKSKKLNVKVEKDHSDSVDSGDVIYTDPAAGSEVSEGDTLTITVSKGAEKKEVKKTFTVDYQAAESSSNSSESSSSSSSSQGNHVRIYIQDDDHSLGNIYRDLYITKDTDFTITFSVTKGDGKIKIVRDDQTVVDETISADDSESGN"]}}, {"location": "[1212562:1213318](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.16"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAP6"], "locus_tag": ["MAAAAKME_12800"], "product": ["Putative protein phosphatase 2C-type"], "transl_table": ["11"], "translation": ["MIKTAFASSIGRVRESNQDFVQIFQNRVGVTMAIVCDGMGGNQGGDVASTMAVSHLGHNFANTDLHDKNLARKWLDVQLRSENETILKAADRFPDLNGMGTTIVLAMFFDQEVLLAHLGDSRAYSYSEGNFRQITEDHSLVNELVKMGQITKEQAKTHPQKNIITQALGVSSTIDPEYNELEMKTDDVLLLCTDGLTNSLSDPLIQQVLATKGLNLQERCNKLVNEANRLGGGDNITVCLAVNEEDGASDQ"]}}, {"location": "[1213323:1214640](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.176"], "codon_start": ["1"], "db_xref": ["COG:COG0144"], "gene": ["rsmB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P36929"], "locus_tag": ["MAAAAKME_12810"], "product": ["Ribosomal RNA small subunit methyltransferase B"], "transl_table": ["11"], "translation": ["MKTNARTVALDTLMKVINQGSYSNISLNHALKAAKLPGEESRLATNLVYGTIQYQLYLEYQLKDLVKARLREPYIKPLLLMSAYQIFFLDKVPNRAVLDEANKLAKVYGRPKSSGYRLVNGILHSLLRRGEVLPEKDAPDYLSVKCSMPLWLSDYFVANWGKSRAEKIMASFNSKAKNEIRISALADEKRVVRDLDRAHFAPQESPLASRSYALSRGGIVMTDFFKDGEVTVQDEAASLVAEAFDFKGNEQALDACSAPGGKTIQIAEQLPDGQVTALDIHEKKLRLVKENAARMRVADRVKVKALDARKAREYFSGQEFDKILIDAPCSGLGLLRRKPEIRYTKTAEDISHLAEIQLDILNEVSGLLKKGGELVYSTCSISVEENEENVRKFLAAHPDFALKPFETAKISAPKGMLKILPDSYNSDGFFIAKFTTRG"]}}, {"location": "[1214629:1215577](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.2.9"], "codon_start": ["1"], "gene": ["fmt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99127"], "locus_tag": ["MAAAAKME_12820"], "product": ["Methionyl-tRNA formyltransferase"], "transl_table": ["11"], "translation": ["MNSVIFLGTPQFGATVLEGLIKAGYHILAVVTQPDKKVGRKQKVVYSPVKEVALANDLPLYQPVRLSKSDELDELLQLDADFIITAAFGQFLPTKFLKSAKIAAVNVHGSLLPKYRGGAPIQYAVRNGDAETGVTIMEMVKEMDAGDMYAQASLPIRPDETSGEVFEELAPLGRDLLLETLPKIASGEIVKKPQDPSQVVFSPTISKAEERISLKLTAKEAKNLIRALNPDPGAYLVIKGQRLKVWKAEVADDNTSLPAGHLLTNQGRFAISFAGNTVLNLLEVQPNGKKAMAIKDFLNGQGKKFAAGEKIVDED"]}}, {"location": "[1215594:1217976](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "db_xref": ["COG:COG1198"], "gene": ["priA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P17888"], "locus_tag": ["MAAAAKME_12830"], "product": ["Primosomal protein N'"], "transl_table": ["11"], "translation": ["MIAEVIVDVAAHQTDRVFEYHIPDDLEVEIGSRVVVPFGRRKVQGFVVAVKKSSDFTGQLKDLLLVVDEMPPLTPELVALSSDLARQIFAYRISILKTMLPGVMRANYRKILLPNSPRAEQMPLFAGDPVDLANLEEPRLIKLVKQLLNKGEARIEYLVENKAKKKMVSVYYPLLSAADCQEILLETRKTASQQRKLLADLAGDFAAYPKSREELTGLGISSATLKAAVSKKWLQEKDQEKYRRPTKPVAPSRPLDLNDEQAAALSRVSQDIKGRVSQTFLLEGVTGSGKTEVYLQAISQALALGRTALMLVPEISLTPQMVKQVQARFGQQVAVLHSALSEGERYDEWRRIRRGQAQVVVGARSAVFAPLDNLGLIIIDEEHEGSYKQDNNPRYHARDVAIWRSRYHHCPLILGSATPSLASRARAQKGVYQLLRLKKRAKSQPLPRVDLLDLKHVQFAGSQFDISCPLAEAIQKRLEKKEQVILLLNRRGFANFMLCRNCGFVLKCPNCDLSLTMHKDTWTMQCHYCGYQEAVPEICPNCRDRQIRFLGTGTQKVQEELAELFPQAKIIRMDVDTTRRKGSYDKILTSFGQGEADILLGTQMIAKGLDFPNVTLVGVINADTGLWLPDYNASERTFELITQVAGRAGRADKEGQVMIQTYNPDHYAIHLAQKQDYELFYAKEMRVRHAGDYPPYFYTVLVSVSAKNEQNAAREAFKIKRQLQRELRAPTIILGPAPATISRLKSQYYYQILVKYKREKHLNELLHQIQDQAQEVKKYGLTVEIDSEPERIM"]}}, {"location": "[1218038:1218260](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "gene": ["rpoZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAP2"], "locus_tag": ["MAAAAKME_12840"], "product": ["DNA-directed RNA polymerase subunit omega"], "transl_table": ["11"], "translation": ["MRITYPSIDKLLDEVDSRYSLSVLAAKRAGELEAGKPGALDNYHNLKPVGQALEEIAAGKVTIDADPHGEADE"]}}, {"location": "[1218261:1218876](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.8"], "codon_start": ["1"], "db_xref": ["COG:COG0194"], "gene": ["gmk_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y672"], "locus_tag": ["MAAAAKME_12850"], "product": ["Guanylate kinase"], "transl_table": ["11"], "translation": ["MADKGLLLVLSGPSGVGKGTVKSAIVEHKVFPFEYSVSMTTRKPREGEVNGKDYYFVTREEFKQAIADNQLLEYNEYVGNLYGTPLGPVKEMLAAGKDVLLEIDVNGARTVRQQMPEGVFIFLTPPDLHTLRDRLEHRGTESEDVIRGRIAQARKEILVMQDYDYAVVNDTVANAVNHIKAIVDAEHVSVRRVIDDYRKMVKED"]}}, {"location": "[1219049:1219355](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKFQNFASQAAQPLKKAFHYLFAYDEDRLTLRGDSLAVNLAKLQLAFLKRQYLLVTLNDGSWRVGKITKRISPSRFVFCDADNKIFYQLDINDILTVELP"]}}, {"location": "[1219416:1219641](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_9"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_12870"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MSNSEYDRLIADSKTTASSSQRVSDLQKAEAILLEDEGITPIYYISTAYLIRPEIKNVYNDNLGGWQFKYASVK"]}}, {"location": "[1219630:1219825](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKAEGDYKLVVTLDRRIPYFKTRMARREEGKFDVMVSTWIADFNDAISFLDLLTSNNSRNYGEQ"]}}, {"location": "[1219977:1220286](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRPIKIKAPLALAALSMIMLTACGKSNSQASKKQEFSWSTSAEISTIDMSKASDTVSFDQLRNTMEGLYRIGKNGKLMPALATSSTVSKDGKTYTFTLRKSK"]}}, {"location": "[1220498:1222187](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0497"], "gene": ["recN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05824"], "locus_tag": ["MAAAAKME_12900"], "product": ["DNA repair protein RecN"], "transl_table": ["11"], "translation": ["MLVELDIQNFAIIKSLKIKFQPQMTVLIGETGAGKSILIDALSLLLGHRAQKELVRSGQSKAVVTGLFTLQDEEMREVEQIAADYGLPMDGDDLIISREISSKGRNVIRINGQLTTITALAKIGEYLVDIHGQNDQQMLMDQSRQIDLVDEYAGKDFKSLLGKYQAEYQTWQSLNQRLEHLRRDSRELAQRQDILQFQVEELTQADLTDEQEDQNLEDEFNKLNNYQKIAESANFMIQLFDDDEHGLTSLLGDAQGTAEDLADLDKDFKNVAQSITDGVYSLSDARSELGDIMDSLEFDEERYQYVQNRLDLLNNLKKKYGPSLADVFDFYAKVSKELSQFETGGLDEEELVKQIAAVEEKMSVMAADLHQARESTALKLEEAIKHELADLYMDKARFSIRFAKTDNFTVKGIDDLAFYIAPNPGEELMPLVKIVSGGEQSRLILALKAIFSRVEPVGTMVFDEIDTGVSGRVAAAIGKKMHAIAGQKQVIAITHSPQVAASADHRFAIAKQVAAGETFTQVKELDEDSSINMIAQMMAGANVSEAAEQNAADLIASQRKQD"]}}, {"location": "[1222208:1223024](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1189"], "gene": ["tlyA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q06803"], "locus_tag": ["MAAAAKME_12910"], "product": ["Hemolysin A"], "transl_table": ["11"], "translation": ["MASKERADVLLAAKGNFNSRTQAQRAIMAGLVTDHNHQRIDKAGEKFPVDEEFFIKKDNLKYVSRGGFKLEKAVKVWNIDLKDKVCLDIGASTGGFTDVALQNGAKLVYALDVGYNQLAWQLRDDPRVVVMERQNFRYSVPADFTEGLPDFAMTDVSFISLDLIMPPMYEILKDQGDAVCLIKPQFEAGPENVGKHGIVRDHAVHQAVIEHTMAKALEIGFSILGVDYSPIKGGKGNIEFLLHLKKDQANPGQNLWSGSVSELVDRAAQGL"]}}, {"location": "[1223023:1223887](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.10"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q08291"], "locus_tag": ["MAAAAKME_12920"], "product": ["Farnesyl diphosphate synthase"], "transl_table": ["11"], "translation": ["MTTFKEFQAKYTPIINDFLEGQLAKESDDPRFAEIMAYSVMAGGKRLRPLLFLATLDALGVEITEKEVQAACGIELIHTYSLIHDDLPAMDNDDYRRGELTSHKKWGEAEAILAGDALQPLGIQWIAQAEHNWKLVEIITEAVGPKGMVAGQYLDIDTTNNEDSSEEVIDHMEWLKTGCLILASVQMATALAACPDQQAQKYLAFAKHFGRSYQLYDDLVDIVESQEEAGKATHKDQEVGKNNSLTMLGAEATRNELKQLIEKGKADLAGEKAEVLLGFLDLYQKVL"]}}, {"location": "[1223891:1224131](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.11.6"], "codon_start": ["1"], "db_xref": ["COG:COG1722"], "gene": ["xseB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7VV85"], "locus_tag": ["MAAAAKME_12930"], "product": ["Exodeoxyribonuclease 7 small subunit"], "transl_table": ["11"], "translation": ["MTEKNNFESQLKELQEIVGQLENGQLSLEESLAQFQTGVKLSRELKQELTKAENTVAKLIESDGSEKELDPTDASAPKE"]}}, {"location": "[1224123:1225494](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.11.6"], "codon_start": ["1"], "db_xref": ["COG:COG1570"], "gene": ["xseA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P04994"], "locus_tag": ["MAAAAKME_12940"], "product": ["Exodeoxyribonuclease 7 large subunit"], "transl_table": ["11"], "translation": ["MDSIKGTDEKYLTVSELNWYVKQKFDRDPYLRQIFLQGELSNFRFRRGGHQYFSLKDDKSKINVVMFRGDFDKVKFEPEEGMKVYVTGRLSTYEAQGSYQFYAKSMEPAGLGALYERFRQLQEKLAKEGLFAQEHKRPLPLFPDKIAVVTSASGAVIHDIMVTANRRFSHAEIDLFPAQVQGESAAGSLVSAMQQIQARADEYDVLIIGRGGGSLEDLWPFNEEEVVRQVYAMKMPVISSVGHETDTTLCDLAADCRAATPTAAAEMATPALPLVLAEIGQLQTRLLTDIRAVIQVRAQALAQLENSFIMKEPQRLYEQKMQQVDQLSQQLSRMMEVIVKDQGQKLSLLTQRLQHQAPDRRIKQLKQENSYLAKSLEMGIKRILEQKQAACRQAVQQLDDYSPLKTLARGYSYTTDASGNVVKSVQQLVPGDQVRLHLKDGQAIGRIEEIKEEKND"]}}, {"location": "[1225480:1226332](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["folD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A697"], "locus_tag": ["MAAAAKME_12950"], "product": ["Bifunctional protein FolD protein"], "transl_table": ["11"], "translation": ["MGEILDGKKLAWELGEKLGSEVDSLKEHGVSPKLCVINIGDDPASKVYVASKKRKAEKLGIKQVVYQLPADESEEDVLKLIDSLNADPEVSSLMVQLPVPPQINADRVIERIDPEKDVDCLTPANIGRLWQGKHFVEPATAAGIIALLDHYQIDLTGKNAVIVGRSNIVGKPLAALMLERNASVSILHSRSRNLADLTKQADILVCAVGKAEMIKADMVKEGAVVIDVGINRVDGHLVGDVDFAPVKEKASWITPVPGGVGPLTVEFLMEEVIKLTRRQHGLD"]}}, {"location": "[1226390:1226789](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["nusB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00073"], "locus_tag": ["MAAAAKME_12960"], "product": ["Transcription antitermination protein NusB"], "transl_table": ["11"], "translation": ["MNQHDSRRIALQAIYLYNQDPSFTASELENNVKSALDLDTLPAYSQELVSGVIDKQAELRDKLSANLKQGWRLERLSKTSLAILEVALYEMLYSPVIEDRSAINEALNLCDEFDDPKSKAFINGILANFVQE"]}}, {"location": "[1226788:1227223](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADNSTIVLSGNDEGDQIKIDLQVLEVILGISAQKVDGVAGMRGGLKSGLSRVFGREDRGKGVSVSVDEDGELTADVYVYLKYGVNVPAVAGKIQEALKQQLTQMTDMNLKSIDVHVVGLVFPEDEKNFEDAGQPLFPDQEEDK"]}}, {"location": "[1227239:1227809](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["efp_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99066"], "locus_tag": ["MAAAAKME_12980"], "product": ["Elongation factor P"], "transl_table": ["11"], "translation": ["MTMISVNEFKNGLTIEYNNDLWRIVEFQHVKPGKGGAFVRSKLKSLRTGAVQEYTFRSTAKVETADIQTRQMQYLYNDGSSYVFMDTATYEQLEVSNAQIDQEAKYLKENMIVNIISHNGETLGLDLPNTVDLEVVETEPGIRGDTSSGGGKPATMETGLVVTVPFFINVGDVLTINTSDGSYVSRSKQ"]}}, {"location": "[1227878:1228985](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["ypdF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76524"], "locus_tag": ["MAAAAKME_12990"], "product": ["Aminopeptidase YpdF"], "transl_table": ["11"], "translation": ["MSKNNELLSLLTRRIKGTADLIKDKDADALLVFNRANYRYLTNFTGEEAQLIITKNGDRVLLSDSRFAPQIEAQAVGELKVVMKHGHEAAEIAAEVKKLGVKKLLVEAEFVSAYEYDEIKSQLPDVDLVMAAEIVERVRNVKDDLELATLKKAVEISERAFEEVLPMLKPGAKERDVGAKLDYLFKLYGGDGPGYDSIIASGPRSSWAHGVASDRLMQEHELVVIDAAASYNGYTADITRTYALGSVEDELEKIYKIVLEAQKRGIAAAVAGATGKDVDQAARGYINDAGYGQYFGHGIGHGIGLEIHEMCQPEFLFSQTTLENGIVHTVEPGIYLPQGGVRIEDDILVNGDTPEVLSTLPKDELIHL"]}}, {"location": "[1229130:1229430](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0211"], "gene": ["rpmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05657"], "locus_tag": ["MAAAAKME_13000"], "product": ["50S ribosomal protein L27"], "transl_table": ["11"], "translation": ["MMMNILSNAKLLAHHKGGGSTTNGRNSAGRRLGAKSADGQEVHAGSIIYRQRGTKIHPGKNVGRGGDDTLFALTNGVVKFERLGKYKKQVSVLPVEDAE"]}}, {"location": "[1229445:1229757](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0261"], "gene": ["rplU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RLA4"], "locus_tag": ["MAAAAKME_13010"], "product": ["50S ribosomal protein L21"], "transl_table": ["11"], "translation": ["MYAVIKTGGKQYKVAEGESIFVEKLDVQAGEEVVFDQVILVANGDDVKVGTPLVEGAKVVASVDKQGKEKKVVTFKYKPKKHSHSKYGHRQPYTKVTVKSIEA"]}}, {"location": "[1229997:1230354](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1393"], "gene": ["mgsR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54503"], "locus_tag": ["MAAAAKME_13020"], "product": ["Regulatory protein MgsR"], "transl_table": ["11"], "translation": ["MPKFYGYKRCSTSRKAQKWFDDKGISYDFQDLVETPPEKDLLLSWLTKYQDRGLRYFFNTSGQHYRQMGLKDKLPNMTTEEAADLLSKDGKLIKRPLVVDDQHLTCGFKEEVYEQTWK"]}}, {"location": "[1230395:1230923](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0626"], "gene": ["metI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31631"], "locus_tag": ["MAAAAKME_13030"], "product": ["Cystathionine gamma-synthase/O-acetylhomoserine (thiol)-lyase"], "transl_table": ["11"], "translation": ["MVIHSATKYLGGHNDILGGVVVVKDPVLADFYFQYTITVGDTMSAFDSWLLNRSLKTLPLRMQQHTASAKKIVSFLEQAPYVEKVLYPGKAGMISFYLDSDEEVDRVLKSVKLITFAESLGGAESLLTIPYYQTHDDVAEDQRLRLGITPRLLRLSVGLENADDLIADLAQALGE"]}}, {"location": "[1231092:1231509](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0410"], "gene": ["livF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22731"], "locus_tag": ["MAAAAKME_13040"], "product": ["High-affinity branched-chain amino acid transport ATP-binding protein LivF"], "transl_table": ["11"], "translation": ["MQLGAYLRKDKDGVEKDMEAMFKRFPILKERQKQEAATLSGGEQQMLAMARALMERPKLLLLDEPSMGLAPIYIQEISDIIKSINKEGMTVLLIEQNARQALSIANQGYVLASGEVKMTGSGQDLLNDLAVQKAYLGG"]}}, {"location": "[1231560:1232826](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0151"], "gene": ["purD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O66949"], "locus_tag": ["MAAAAKME_13050"], "product": ["Phosphoribosylamine--glycine ligase"], "transl_table": ["11"], "translation": ["MKDKLKILVVGSGGREFAVARALKKSPHVAEVFCAPGNSGMAAIGVKATGIAEDDFKALKDFAIKEDIAWTFVGPEDALVAGIVDYFHAFDLKIFGPNARAAQLEGSKDYALQFMEKYQVPHPRYETFQSAETAISALPDFGLPVVLKEDGLAGGKGVVIAEDQETAESTLTEMFAKGQKQVVLEEFLTGPEYSVFAVMQGGNYRLLPLAQDHKRAYDGDKGPNTGGMGSYSPVPQLSQAEYQEIVDQLVEPTAKGLLAGGYDYHGVLYLGLMMTKQGPKMIEYNVRLGDPETEVVLPRLKSDFAELVAACVNDEEMPAVEEKDEAVLGVILAAEGYPKKPLKGQKLGQLPAEDGIFVDCANVTGPATDLVGSGGRILMVRAEAADLKEAQEHVYAYLAKLDIPQTFYRRDIGYRATGKRF"]}}, {"location": "[1232841:1234383](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["purH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67544"], "locus_tag": ["MAAAAKME_13060"], "product": ["Bifunctional purine biosynthesis protein PurH"], "transl_table": ["11"], "translation": ["MKRALVSVSDKNNLVPFVKGLVANDYEIVSTGGTKRVLDEAGIPTISVEDVTGFPEILDGRVKTLNPYIHGGLLARRELPEHVATLKEHKITPIDLVCVNLYPFKQTIEKPDVTLAEAIENIDIGGPSMVRSASKNYRDVTIVVDQADYDQVLAEIEKDGSTSLETRARLAAKAFRLTASYDALISQYLTEKAGETAPEKLTLTYDLKEAMRYGENSHQKAWLYEDALPKAFSVLQAEQLNGKELSYNNIKDADEALRCVREFSKPTVVAMKHMNPCGIGQGNTLEEAWDRAYVADPVSIFGGVIALNRKVDLATAEKMHKIFLEIIIAPDYDEDALAALKTKKKNLRILKLDFSKKDEATSKETVSVMGGLLVQDQDVLDEDFADWECVTEAKPTQEQLESLLFAWKAVKHTKSNAIVVANNERTLGVGAGQPNRIDSEKIAIDHAAEALDDRAVLASDAFFPFSDCVEYAGKHGIKAIVQPGGSVRDQESIDMANKYGIAMVFTGVRHFRH"]}}, {"location": "[1234383:1234965](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.2.2"], "codon_start": ["1"], "gene": ["purN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99162"], "locus_tag": ["MAAAAKME_13070"], "product": ["Phosphoribosylglycinamide formyltransferase"], "transl_table": ["11"], "translation": ["MKVAIFASGNGTNYEVLAEHFQKGDLPGDLALLFCDHPDAPVIKRAEKFHTPVVTFTVKSCGGKQKYEEKILRVLKDYQIDFIALAGYMRVIGPTILSEYEGRIVNLHPAYLPAYPGLHSIERAFADHPAETGVTVHYIDSGLDSGPAIAQRHVPIYDDDTVDTLEARIHECEHHLYPEALRKALLKFEEENK"]}}, {"location": "[1234964:1236014](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.3.1"], "codon_start": ["1"], "db_xref": ["COG:COG0150"], "gene": ["purM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97TA2"], "locus_tag": ["MAAAAKME_13080"], "product": ["Phosphoribosylformylglycinamidine cyclo-ligase"], "transl_table": ["11"], "translation": ["MIVNRYKDAGVDVNAGYELVRRIKGAVASTKRPGYVGNIGGFGGLFDLDSLGYDHPVLVSGTDGVGTKLIIAQKMDKNDTVGIDVVAMCVNDVLAQGAEPLFFLDYIACGHNDPALLASVVQGVAEGCKQAGASLIGGETAEMPDMYAPDEYDLAGFTVGVAEKDRLLSVDTPQAGDVLLGLASSGVHSNGFSLVRKILFKDHDVKLTDKPAELKGKSVGESLLAPTRIYIKSVLPLIKQGLVHGVAHITGGGLIENVPRMFNDGLRAEIAAGSWEVPDIFNYLKQVGNLSDDDCWQTFNMGLGMILAVPADKKEEAKKLLLASGEKVFEVGHLSERTDGEKIFIKLVE"]}}, {"location": "[1236010:1237489](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.14"], "codon_start": ["1"], "gene": ["purF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99164"], "locus_tag": ["MAAAAKME_13090"], "product": ["Amidophosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MPYEIKGLNEECGVFGIYNVPDAANVTYFGLHALQHRGQQGAGIVASDGKNLRQFRDRGLLSEVFSNPADLDFLKGNMAIGHVRYGTAGSDSLANVQPFLFHFQDGEIALCHNGNLTNAKTLKKRLEDSGSVFQSSSDTEVLIHLIRRKVRMPFIEALKASLNEVKGGFAFLLMTNDTLYAALDSNGFRPLVLGQMDNGSYVVASESCALDAVHAKLVRDVQPGELIIINKDGIKIDHYTTETQLAVCSMEYIYFARPDSIIHGVNVHTARKRMGILLAKEQPAPEEADMVIGVPNSSLSAAAGYAEAAGLPYEMGLIKNQYIARTFIQPTQALREQGVKMKLAPVRGVVSGKNIVVVDDSIVRGTTSRQIVQMLKEAGAKSVHMRIASPPFKYPHFYGIDISERKDLMAAKYSVSDMCKLIGADSLGFLSIPSLIKAVDIPDTGDAPNGGLTVAYFDGKYPTPLYDYEEQIKEPLNVEPVEEILKKQNRGE"]}}, {"location": "[1237464:1239687](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.3"], "codon_start": ["1"], "db_xref": ["COG:COG0046"], "gene": ["purL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12042"], "locus_tag": ["MAAAAKME_13100"], "product": ["Phosphoribosylformylglycinamidine synthase subunit PurL"], "transl_table": ["11"], "translation": ["MMQEMTPEEIKEKKPYLDWSLSEEEYDYICDKLLHRLPNYTETGLFAAMWSEHCSYKKSKSVLRLFPTKGPRILQGPGEGAGVVDIGDGQAVVFKAESHNHPTAVEPYQGAATGVGGILRDVFSMGARPVATLDSLHFGELDDAHTRWLLNETVAGIGGYGNCMGIPTVGGELTFDDIYKGNPVMNAMSVGLLDVKDMQKGLAQGEGNAVMYVGAKTGRDGIHGATFASHSFDSEHESQRSAVQVGDPFMEKLLLEACLELTQKHADWLVGIQDMGAAGIVSSSSEMASEGKSGMELNLDLVPQRESGMSAYEIMLSESQERMLLCVKKGHEEDVKKIFDFYDLDAVVIGRITSGHNYVLRHHGEVVCDIPVTSLTEDVLEEPSEEKQPQHMIDDAAKPAWEPEITDLAKTYKQMLAQPTIASKGMFTQTYDSMVRTSTVVGPGEDSGVLRVRGTHKGIAMTTDGNGRFIYLDPEIGGKRAVVEAAGNIIASGAEPLAITDCLNFGNPNEPEVFWELHHSVMGIAKACEVLETPVVSGNVSLYNETDGKSIYPTPMVGMVGLVKNLDHLVRDSFQEEGDDLYLVGQTGADYAGSELQKMLTGEIFGSLNDLDLDHIKDYQKRLLAQMEAGHVASAHDLSEGGLAVSLAESSFGHGIGAEVACDLTSAELFSETPGRFLVSVPSEYSAEFAAALAADAVKIGQTAGDSLKLTLKDQAADLPVAELKQIWEEALPCLMKSKD"]}}, {"location": "[1239686:1240361](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.3"], "codon_start": ["1"], "db_xref": ["COG:COG0047"], "gene": ["purQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12041"], "locus_tag": ["MAAAAKME_13110"], "product": ["Phosphoribosylformylglycinamidine synthase subunit PurQ"], "transl_table": ["11"], "translation": ["MKFAVIQFPGSNCDIDLYEALHTVCGADVAYVPSKESSLDGFDAVMLPGGFSYGDYLRAGAIARFTNIMPAIVEMAKAGKPVFGTCNGFQILTEAGLLPGALKRNDSLKFVCKTVELEVANNDTIFTSEYQKGEKINLPIAHADGSFYADPETLQKIEDNGQVVFRYSKENPNGSLNNIAGITNERGNVLGMMPHPERAVEALLGNTDGLRLFKSILNHAEVKA"]}}, {"location": "[1240360:1240609](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.3"], "codon_start": ["1"], "db_xref": ["COG:COG1828"], "gene": ["purS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12049"], "locus_tag": ["MAAAAKME_13120"], "product": ["Phosphoribosylformylglycinamidine synthase subunit PurS"], "transl_table": ["11"], "translation": ["MTTVRIYVTYKQSVFDPQGEAITNSIHSLGHDEVKGVKVGKFFDVTIEEGDKPVAETVKEISEELLVNFNMETYSYKILEEK"]}}, {"location": "[1240613:1241336](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.6"], "codon_start": ["1"], "db_xref": ["COG:COG0152"], "gene": ["purC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q0TTB4"], "locus_tag": ["MAAAAKME_13130"], "product": ["Phosphoribosylaminoimidazole-succinocarboxamide synthase"], "transl_table": ["11"], "translation": ["MAELLYQGKTKEMWTTDDPEVLRAVYKDDATALDGLKHDVFQNKGELDAEISSLVFEYLMKHGVKTHFIKRLSKNEQLVKKVKMIDLEVVTRNIAAGSFCKRYGLKEEGEKLDTPVEELFMKSDALHDPLMNESDAIAFHLLTHEEHEQIWEISRQVNQLLTKLFADAGMLLVDFKVEFGTLPNGEVVLADEFSPDNCRLWDMETKDHMDKDVYRRQIGNLIDVYERVLARLKDALAKED"]}}, {"location": "[1241659:1242955](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.3.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0015"], "gene": ["purB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12047"], "locus_tag": ["MAAAAKME_13140"], "product": ["Adenylosuccinate lyase"], "transl_table": ["11"], "translation": ["MIERYTRPEMGAIWTDEKKYECWLAVEIAADEAWSKLGHIPAEDVEKIKQNAKFSVDRINEIEAVTHHDVIAFTRTISESLGPEKKWVHYGLTSTDVVDTAQGYQLKQANDILRKDIQDFIDILAKRALEFKDTVCMGRTHGIHAEPTTFGLKFARWYSEMKRNQERFEHAARGVEAGKISGAVGTFAEVDPEVEAYVCKKLGLHAQEISTQVLPRDLHAEYIAAIALVATSLENIATEIRSLQRTEIHEVEEHFAKGQKGSSAMPHKRNPIGSENICGMARVLRGNVVTAYEDVTLWHERDISHSGAERVILPDSTIGLDYMLNRMGKILANLDVFPETMKKNMDKTLGLIYSGRVLLKLVESGMSREAAYDLIQPYTAKCWAEQVPFRPLLEADPTIQKQLTKADLDDAFDYHWHLRHVDDIYKRLGLE"]}}, {"location": "[1242998:1244123](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.18"], "codon_start": ["1"], "gene": ["purK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A695"], "locus_tag": ["MAAAAKME_13150"], "product": ["N5-carboxyaminoimidazole ribonucleotide synthase"], "transl_table": ["11"], "translation": ["MSIKIKPGQTIGIIGGGQLGQMLAFDAKASGMKVIILDPTPACPAGQAADDQIVAEYSDIDAIHELASRSDVLTYEFENVDLDALESVKDQVFIPQGTKLLYTTNNRIREKTFIQSAGCEVAKFRAVKNRADLEEAVSDLGLPAVLKTCEGGYDGKGQVVLKAAADLDKTADVLACGDCILEKFVDFRMEASVMIGRNSDGQVTVFPVSENINQGEILHESIVPARISPDLAQKAQEAAVKIAEAIDLKGILGVEMFVTKDDKIVINELAPRPHNSGHYSIEACNFSQFAVHNRAICNWPLPKIKLLSPVVMVNVLGQHVAGTEKLIAEKPQWSFHDYGKGEVRRDRKMGHVTILTDDVDKTLAEIVATKVWDV"]}}, {"location": "[1244112:1244604](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.18"], "codon_start": ["1"], "db_xref": ["COG:COG0041"], "gene": ["purE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYS7"], "locus_tag": ["MAAAAKME_13160"], "product": ["N5-carboxyaminoimidazole ribonucleotide mutase"], "transl_table": ["11"], "translation": ["MTSRISVVMGSKSDWGYMQEACKLLDKFGVDYDKQVISAHRMPEEMFAFAQKAAENGTKVIIAGAGGAAHLPGMIAANTPLPVIGCPAKTSALGGMDSLLSIVQMPAGIPVATTAIGPAGAKNAALLAMQILGIEDKELQQKIVDYRKEMHDQAKESSADLVY"]}}, {"location": "[1244762:1245017](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDITGSFKDSRLQVILRKQKAKEALFEALIDRFEFGRDYSEKEVNEVLAAVYNDYAILRRYLVDTGRLGRDPYGQHYWRAEKKD"]}}, {"location": "[1245017:1246232](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKYKYIFYYISILYTMGTSLWSGTIYLFMRHNGYSYSLINLFLEIFWLVTFFAEIPSGYIADKFGYLKTIMASGIIRALGLIILALSPMNLLWMTVSGVLTALGDSLQSGTMTSWIANKAVEHGEKDQLGAIFSGYSIIGTPLTMAATFVGANILGNIRLDLPLLIGAAFLLATSLTIIPLLKYDSQNLAEAEEGMPKLNLVADVKYTVEQEQKTFAWILLLLPVAIISAGPLDQWQMYFQSGKTVNSGTISVLMSLSGMLAISLYNRYVSKKPLSNRGQIRLIVVSTVMMAATLFGVVGLKNWYYGSLSLFMLHTMFGSLENMLGGIVLQTTIQTENRRATIMSVANALDAGAEVAILAINGFLSDRFGIGFAWVSLAALGLLIFLLAILGMQSKKLEVEEI"]}}, {"location": "[1246455:1247715](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLVKSVSLVNNELDTNGFVTTDAINYVTDKHGSVVDVNSVKRSTDRISEKTPGRYMVTYRYGKASGKVTVTVRNDANEGISKADAKLGKGGNVGKTWFPHELAFRGNYNAQVTPHTYVGTDKHGKKTAKLTTKFYEPNSFSLLEGSQETNVRGNVQGLDVYGQDMVTTNFYGGPESSMDGARGHMVLYQLNQVPKYALQYIPTNTLNFQLWKNYVKSIKISPYIKLGHSQSVGSTSRYIYELANWNHTKKPRSNELLQIDKKDMQVKRIWTFAVSNGKRENNCYFLNADVIDDNIMLALFHSKFNHRFEIWKITRTGNSFKVKEAATTDGDLISNSSQVQGFTYSVAHTHKCYYIAFNDYLFKIDAKGNLANYYHFNAKREVEGLASYKSKIYIAMNKRAEVFDSNMAKQPQEQALKK"]}}, {"location": "[1248107:1249919](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRFALGMMTSAALMAGLASQVQASSKDYSKSTKTDLVTKIMGNKSYQVYSSLKLEEVTKKVKTKTKEKKKYTVKKKVAVKKKSKKGKTKYKTVKQVKYKWVTKTAYKNVKKKWKFGKKLTVSADFRYAHVQSKSYKVKDGKRYYYIYVNGRPVGYVNEKAFALSKANVVSQVSLVNNPSDSVGFNAEDAINYVTDQHGSLVDNDSVEISCKSAELNISDTGYVSSRKAGTAVLTFKYGKAKATSKLTVRGDAKEGISSADVTPVKTDLPEITTWSARDGARLSSSSTITSKDAVSSSHKYWATKTMSGNAKGADIETIFYHPAVLSAPGSSNLEAKVSSAVQGIDFYDNDLVTSNLDLGQADNWEARGHMVYYNMRKVKKYNWQLIPSKMLSFNTWLSYIKNIKVSPYMKLGHGQSVGSTKKYVYVLANWNRSNNWSNSQELIRVKKSTMEIDKIWTFKVWNGSAKYPRIFLNADVIDDNTLLALFHNAYKHCYEYWKISRSGDSFKAKEVGATGSDLISNSAEVQGFVWNSAYDVYYIAFNDYLFKIGAGLDGKTDAGKLLNYYKFDTGRREFEGLSSYGPELYVNLNHPTETLKVNHITK"]}}, {"location": "[1250104:1251787](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.1"], "codon_start": ["1"], "gene": ["topB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00953"], "locus_tag": ["MAAAAKME_13210"], "product": ["DNA topoisomerase 3"], "transl_table": ["11"], "translation": ["MRPGWDYYYRYKEAQTRQISDWLVGMNGSPLFTLLLRKQGIKGTYSIGRVQTPTLYMVYKRDQEIANFKPEKYWLLMADFWQGRKKFTGRLLPETKFKSPAELERFLLAKGGSLGKQTGRVAKVDKEQKSQASPRLFSLSSLQTEANRRYHASASQVLQAVQNLYENKFLSYPRTDCNYITDNEYAYLAQNLDRYQGLLPNSAEVKEQMKPLKAEKRYVDSGKVQEHHAIIMTKTVPSQAQMGKMSKLEGQVYGLVLRRTLEMFLKAYVYEKTTALINVGQLTFKASGNVSVNLGWKILEGPVKDAQLPPLEVGQELTAKLKEQEEETKPPAKFTEGSLITAMKTAGKTLDDEDAQATLKDVEGIGTEATRASTIEILKKRGYMQSRQNKLSVTPEGTILCRAAEAEPLLVSAQMTAQWEKALKQVGAKERSQDNFLGQIKKFISKMITEVPGKIQVDQGLQEEAQTRQAKTAAIGPCPVCKQGEITDKGKFYGCSNYRGGCHFTLPKKFAGKNMGKRIVKTLISKGKTDKLDGFVSKKSGQRYSAKLQLEGDKLSLVFD"]}}, {"location": "[1251803:1252244](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG0550"], "gene": ["topB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14294"], "locus_tag": ["MAAAAKME_13220"], "product": ["DNA topoisomerase 3"], "transl_table": ["11"], "translation": ["MTTVILAEKPSQARAYAAAFTQSQKGEGQIKVADPILPADTVITYGFGHLVEMALPEAYDASYKRWSLKKLPIFPDQYKYLVPRDKKKQFNIVANLLKRADTIVIATDSDREGENIAWSIMRQAGIDLKQKHLFRLWINSLEKSRD"]}}, {"location": "[1252432:1252506](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_13230"], "note": ["tRNA-Arg(tct)"], "product": ["tRNA-Arg"]}}, {"location": "[1252728:1255107](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.14.11"], "codon_start": ["1"], "gene": ["pepX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P40334"], "locus_tag": ["MAAAAKME_13240"], "product": ["Xaa-Pro dipeptidyl-peptidase"], "transl_table": ["11"], "translation": ["MKYNQYAYVETSPEKATEELLAINFLPENYSSLSFSELLAVLTGNVLAEATTRQAKDAKLAEFAVDDQTDLAAFLLDTPTAITASQFANVALQLLGYHPNYDYSLTDPLTCGEKHALPAFKDLTSKEELIFAFYRLLNTRSKNGQILLDVMAGKGYFTQFWGEGKFMLFNGKSLPVFDTSQVIREVVYVQSDLDTDGDGKGDLLPVTVFRPVESQDQLKVPALYTASPYFGGIIDNVKTNHNVDENLTDATTWTNPKYVAKPLVKSPAPSGQDVPATELATGQSSYGLNEYLLARGFASVFSGAIGNRHGDGIRITGSPEETISQKEVIEWLTGDRVAYTDRTRRFETKAGWCSGNVGMTGRSYLGTLQIAIATTGVKGLKTVVSEAAISSWYDYYREHGLVIAPSECQGEDMDKLAEVCQSNLWDGGNFTAKKAYEAEQAELLAAQDRATGQYSDFWESRNYRHHADGIKCSWISVHGLNDWNVKPKNVYKIWQKVKQLPVESHLFLHQGPHYNMNNLVSIDFTDLMNLWFVHELLEVENGAYEQWPKVMIQDNLEADKWHAESDWANDLGQASLYSPTADGYLSTVENGTGQLTFTDLGGTEFKKAGISETDWEYQFISGEKKWAKASLRFESEEFLHPTTLVGRPKVQVRVAANKTVGQLSVALVDLGTRQRLTATPKIFARGNQPFGYRFEADSLQEFVPDKATKAKLITKAHMNLQNYQDMKQPSKLEAGQFVDLEFELQPTYYTLPAGAKLCLIIYSTDQGMTKRPLETEDYTVDLAGTALLLYRK"]}}, {"location": "[1255218:1256562](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hsrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31474"], "locus_tag": ["MAAAAKME_13250"], "product": ["putative transport protein HsrA"], "transl_table": ["11"], "translation": ["MEKSSKVNLAIFSAGLMTFIGILNETSMNVTYPLLVKEFHQPLATVQWITTAYLLKQVQARWLHLGAALSFICGCIICALTSSFPLMLAGRIIQGIATGFSTPIMFQLIFTQVTKQKLGLMTGFAGMIISFAPALGPTYGGLVVSAASWRMIFWLLLPLALVSLIGGQVYIRNQVSGQKKKFDAPSLLLLGLALFAIIYALSLIGTSSLSWLLLLAGAVLFTLFVFVNKRGNSHLLNLAIFKEKTVCLAALTYFFLQLVNIGLSVAVPVYAQYALAASSLISGLILLPGSCMGAVISPFAGKLADKRGFKFPLTLGGCLFLLGNCLLLVLQPLLTPVLIVVCHIVIRSGFNLSFANTISNTSTLVDRKNVADVNSSFNMLQQFAGSVGVSLATALISLAQKTGRGTLAQRSYQGGKYDFIMFSCLALVTLLAIWQNFRLQEQKNKEN"]}}, {"location": "[1256647:1256743](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFNKNLFNVNMTACCCGLCLKQSTIWLGLES"]}}, {"location": "[1256869:1257652](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.30"], "codon_start": ["1"], "gene": ["metA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A1D3PCK2"], "locus_tag": ["MAAAAKME_13270"], "product": ["Serine O-acetyltransferase"], "transl_table": ["11"], "translation": ["MSKKIGILNLMHDKIDTQKRFSHVIKEASPETEITYFYPQSHYLNRPRPQNWPAEPLNLKTVAKLDGFIVTGAPIELLPFSEVDYWEELTKLFDLLKAKNIPQLYVCWGAMAALYYFYGIGKHPMPEKIFGIYPQEILAPTPLLSGLITGFLAPHARYAEMNRSEIEQEKALTINAATPDGHLTLVTGPGQQVFLFSHLEYGPQAFSKEYQRELSARGGDDRKIAKPQRYFADEAAMSLPQFTWESSQQHFFKNWLQTIK"]}}, {"location": "[1257694:1258618](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.47"], "codon_start": ["1"], "gene": ["cysK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63871"], "locus_tag": ["MAAAAKME_13280"], "product": ["Cysteine synthase"], "transl_table": ["11"], "translation": ["MSTDRIYGNILETIGHTPIVKLNRVVPEGAADVYVKLEFFNPGGSIKDRIALAMIEKAEKEGKLKPGDTIVEPTSGNTGIGLAAVASAKGYHLIIAMPETMSEERKKIMRAYGAELLLTPGKDGMPGSIALAEKLVKEKGYFMPMQFENPANPEIHELTTGQEIVNAFAGDLPDAFVAGVGTGGSLTGIGRALKKAGDVKVYALEPAESPLLKEGKKGPHKIQGISAGFIPKTLDQSIYDGIVEVSSDDAFATAREVARLEGFLPGISAGANIHGAIELAKKLGAGKKVVTVAPDNGERYLSTALYQ"]}}, {"location": "[1258876:1259353](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKIARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFRDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLRFTILLAERIVNGHLKDLTSDQRADCFVFDDSLYSRTGYKKTELTAKDGAQIDARIVCVRNRSPVI"]}}, {"location": "[1259459:1259645](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_13300"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MVDELADITFNYSLQTLVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[1259757:1260939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.79"], "codon_start": ["1"], "db_xref": ["COG:COG2230"], "gene": ["cfa"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9H7"], "locus_tag": ["MAAAAKME_13310"], "product": ["Cyclopropane-fatty-acyl-phospholipid synthase"], "transl_table": ["11"], "translation": ["MLEKTFYKMMLSKSFPFPVKVTYWDGKSEVYGNGTPEIEIVFNEKIPMGDITRNASLALGEAYMDKKIEIHGSIQKLIDGVYESADSFMRSSKFRKFLPKTKHTEKQSEEDVQSHYDIGNDFYEQWLDPTLTYSCAYFTDDNKDDLEQAQIAKVHHILNKLHPQKGKTLLDIGCGWGTLMLTAAKEYGLKVTGITLSEEQYKLVQKKIYAENLQDVAEVKLEDYRELDDQQWDYVTSVGMFEHVGSENLGEYFNDVAKYLKNDGVALIHGITRQQGGATNAWINKYIFPGGYIPGLVEIISRIEEAHLQISDVEMLRRHYQRTLEIWDKNFNNARPEIEKKMGERFCRMWDMYLQACAASFESGNIDVVQYLLTKGLSGKNLPMTRDYMLNNK"]}}, {"location": "[1260997:1262110](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG3590"], "gene": ["pepO_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q07744"], "locus_tag": ["MAAAAKME_13320"], "product": ["Neutral endopeptidase"], "transl_table": ["11"], "translation": ["MGSASPEEQMERFTNAFISVHARGYIAITSSLIEYLLAKLLSFQGFIVLFGVGSLSNGAFDEVVGIFYGKKYFGEEAKHDVEDMIHNMLKVYEQRINDNNWLSEDTKKKAIIKLRALVLKIGYPEKIEKIYDLLQIDPERSLYENEAQMATVRTKYMLDKLTQPVDRSVWLMPGNFNNACYDPQRNDLTFPAGILQAPFYDIHQSRGANYGGIGATIGHEVSHAFDNSGAKFDEHGNMNNWWTDEDFAEFNKRVGQMVDIFDGLQYGPAKINGKQVVGENIADLAGLACAVQAGKNDNVDLKDLFENYARSWMQKQRPEAIKTEVQVDVHAPQPTRVNIPVQCQDDFYTAFDVKPDDGMWLDPEDRITIW"]}}, {"location": "[1262376:1263369](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.4"], "codon_start": ["1"], "db_xref": ["COG:COG1816"], "gene": ["add"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KNI7"], "locus_tag": ["MAAAAKME_13330"], "product": ["Adenosine deaminase"], "transl_table": ["11"], "translation": ["MKKLIDLHLHLDGSVPYQTVRELLAKEGRSLPEADLRKRLSVSPDCRNLDEYLDKFDFPLSLMQTAENLRLIVRELLAELRGQGLVYAEIRFAPQKHTETLTQAEVVQAVLDGRDDFYAWQKGQEGDDLHANFLLCLMRLVGQDEANWETLRVAKEFKDQGVAGLDLAGPENEEVANCKYASFFQQAREWGIPYTIHAGEAMGPESMRDALALGTKRIGHGIRCQEDPSLVKELAEEGITLECCASSNLNTKVFDQIAEYPLRSMLGQNLRVTLNTDNMTVSATNLPREYQLMEEQGLTKSEEKQLYLNSVRAAFASQEEKDRLLALLEK"]}}, {"location": "[1263590:1263932](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEDIFFTVTGCNHYFGTEAFKPRMKVTLYKEPDNKYDKEAIRVEARALGKIGYVANSPYTVLGESHSAGRLYDLIDDGATGRVLYVLPQGLVCELEETGFEKVKKIYKKHRHY"]}}, {"location": "[1264224:1265448](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKIARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLRLTILLAERIVNGHLKDLTSDQRADCFVFDDSLYSKTGYKKTELTAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIKGDHVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEEKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKLGTEYHGLSYDALTAHTAFVFLRYMFMSVEKLDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[1265570:1266794](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_13360"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYDKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1267331:1267703](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEIEKLKADYINWLAGQTVFKLWSDTVFQVENELVDAYGRKPFVLVEKSGDKYTVTDDGYLMFKYNPLEENEDLNEYAAGMIMDAGFDFDEDHAVIEQTVSEESLPGAINALMQLEIIISFIA"]}}, {"location": "[1267803:1269024](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yhhS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37621"], "locus_tag": ["MAAAAKME_13380"], "product": ["putative MFS-type transporter YhhS"], "transl_table": ["11"], "translation": ["MSSKSASVSPAKAGRMEKEKGKSIYSKDVILVMTASFLFLFGTMFNNPLINGYAESLGASSILAGVIVGIMSFAAMFLRPIAGNLTDKFSKYQLSFIGGVLIFIGILGYIISPNGELLLLFRIINGTGFVLCTVCMTTWIAFLVPRQHVGAAMGLYGLMNALAMSIAPAISINLYKVIGYRQTMMLPAAATLIMIIIIQFVGNRAVPSPRQKEKKQFKMISVNALPVALLTTCFGIPYFVTQADIVTYVAKMHMPVAVGSYFFIYAIVLLLIRTFFKNYFDTVRFGVWFWLSQVATAIYLVLLAYMSSNWMMALGAAGMAVGYGLIYSVLQSTALLLSPANEQGLGSSTFYLGLDIAMAFGPMLAGVVAKALPGRWFYLVQLIVVPLALIVYLIWRKRLNGAIDNH"]}}, {"location": "[1269273:1270611](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.2"], "codon_start": ["1"], "gene": ["glnA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99095"], "locus_tag": ["MAAAAKME_13390"], "product": ["Glutamine synthetase"], "transl_table": ["11"], "translation": ["MSKVITEEEIRKDVEEKNVRFLRLAFTDINGTLKNLEVPVSQLDDVLGNQTRFDGSSIDGFVRLEESDMVLYPDLATWLVLPWTTVEEGTIGRLVCSVHNVDGTPFEGDPRNNLKKVIAEMEEMGFSDFEIGFEAEFFLFKEGKNGEETTKVSDHSSYFDMASEDEGAKCRREIVETLEKLGFRVEAAHHEVGDGQQEIDFRFDNALATADKLQTFKMVVKTIARKYHLHASFMAKPVEGLAGNGMHTNMSLLKDGKNAFYDKDGQYNLSTTALTFLNGILEHARAITCVANPTVNSYKRLIPGFEAPVYISWASRNRSPMVRIPNANEVGTRLEMRSTDPTANPYLLLSACLKAGLTGIKEGKLPMAPVTSNLFEMTDDERKELGIKPLPSTLHNAIKAFKEDEVVKSAFSEHIVDSFLELKETEWALYTQSVSEWEVKRYFNY"]}}, {"location": "[1270748:1271723](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALDGNLLPGETLTYLTGMPYDTMQQVIGLAPKKRGTLIQKGINFSYVPLNEEGGVDYEEAEKVLKRDQPHIVVIQRSRGYDTRQSYTVDQIKKMTAFVKKVSPESLVFVDNCYGEFSEKHEPTEYGVDFTAGSLIKNAGGGIAQTGGYIVGKEELVENAAIRLTAPGIGKEEGATLTNMHEFYEGFFLAPHTTGEAIKGMIFSAALLEKMGCEVTPKWHEPRTDLIQTIIFNVPEKMINFTKEVQKNSPIDSFVEPIPSDMPGYEDKVIMAAGNFVSGSTMEFSADGPIRPPYALYMQCGLTYAHDRIAVTNAVNHLFFKENG"]}}, {"location": "[1271810:1271963](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRKLPPRLREIDDQVVYNQGKVLKAFVDHQVAEADLKGTNGYGDDDIGR"]}}, {"location": "[1272002:1272929](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.75"], "codon_start": ["1"], "db_xref": ["COG:COG0324"], "gene": ["miaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KAC3"], "locus_tag": ["MAAAAKME_13420"], "product": ["tRNA dimethylallyltransferase"], "transl_table": ["11"], "translation": ["MQKVVAIVGPTAVGKTSLAIEIAKKLDGEIVSGDSMQIYKEVAIGTAKASREEQAEVKHYLVDAHSVFEDFSVKNFVDEARSAIGEIAGKGKLPIIAGGTGFYVNALLNDMQLGDKEEEAASVDPEWEVFLAANGPQALWEELNKKDPEAAKKIPVANSRRSLRALSVISRTGGLFSKQQAEIKTRYDYLIIGLNSDREAIYQRINQRVDLMMEAGLLEEARFVYEHRAGEHQVLQAIGYKEFFPYFAGEASLETCVMALKTASRRYAKRQLTYFRNKLPVEWYDPLTDPNCANRIAVRIEEWMKEEK"]}}, {"location": "[1273009:1273411](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.1"], "codon_start": ["1"], "gene": ["glpE_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01009"], "locus_tag": ["MAAAAKME_13430"], "product": ["Thiosulfate sulfurtransferase GlpE"], "transl_table": ["11"], "translation": ["MTNFLIVLDVILGVILLGFLGFWAYNRIQAKRLGGELTNEEFKAGMRKAQIIDVREANEFKHEHIDGARNIPYTMFKYQYTELRPDLPVYLYSDSLTMTLRCASILRKHNFAKVFYLKDGFSQWDGRKKAAKN"]}}, {"location": "[1273473:1273701](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4483"], "gene": ["yqgQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54494"], "locus_tag": ["MAAAAKME_13440"], "product": ["putative protein YqgQ"], "transl_table": ["11"], "translation": ["MTVLKNLYDVQQLLKKYGILVHLGKRKWDIELMAIELDNLYKAGLLEKKIYLNAKLVLKHEHEYEERLEREKRLD"]}}, {"location": "[1273700:1274372](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.105"], "codon_start": ["1"], "db_xref": ["COG:COG0705"], "gene": ["gluP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54493"], "locus_tag": ["MAAAAKME_13450"], "product": ["Rhomboid protease GluP"], "transl_table": ["11"], "translation": ["MNNLRRNYMTTALVVVLFAVFLVETFMGGSESTSVLLKMGAMFNPAVVMEGQWWRLFTAQFLHIGIMHIASNAIMIYYIGQYAEPVFGHWRFLLIYLLSGVGGSLLTLAFGNDQAISAGASTALFGLFGAMTCAGFKDKDNTLLSFLGRQALALAVINLVLDVFMPDVDILGHVGGLITGALLAVILGDATYKGYGKGGRLLAAAGLIVYVVLILRLGMVVTV"]}}, {"location": "[1274364:1274586](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0212"], "gene": ["yqgN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54491"], "locus_tag": ["MAAAAKME_13460"], "product": ["putative protein YqgN"], "transl_table": ["11"], "translation": ["MDLLFVPGLAFSPAGKSRIGFGGGYYDRFLAQNSVQTLALVNSAMYFKTPVWPMEDHDQAMDDLIIVKEAGDE"]}}, {"location": "[1274593:1274926](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKKTFRSWQRQRLADFAKTPAKKRQDQELTSLALQHPLVQEAKKIGLTLPMLLEVDINGLIKELRGEGKELYLAKCHPGWQLDFLKWDEGAPLMQTKFGVWELAEEKRS"]}}, {"location": "[1274992:1275142](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmGA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23375"], "locus_tag": ["MAAAAKME_13480"], "product": ["50S ribosomal protein L33 1"], "transl_table": ["11"], "translation": ["MADNIILECTECGDRSYLSKKNKRKHPERLTLKKYCPVERQVTLHRETK"]}}, {"location": "[1275228:1277343](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0768"], "gene": ["penA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A3M6"], "locus_tag": ["MAAAAKME_13490"], "product": ["Penicillin-binding protein 2B"], "transl_table": ["11"], "translation": ["MSYFRKNSGTGNSSQTANTPLRMKVLVGVIVILFAALIGQLAYLQLFYGSRFSAEVNATDENTMTKSVPRGVMYDSQGRVLVGNKAENAITYMRSLSTTSKEMYKVANTLSNYIKITDEKPTKRQIADYYLAESSRAKKVLAALPKSQKKSSLSTSEINDNEVAYVENTLKPSLNSQEKTAALLYNMMSGATTLSTINLKSSGLSNKEIAQVGEHLSSMPGVGIGTDWNRYYPNGSSIKSIIGSVSTTKTGLPRDSLQYYLVNGYSRNDRVGISYLEKEYEALLKGTKASYKVTSNSSSEITKTKQVYKGQSGASLKLTIDAKYQAAVTKALKQQFNSALSAGAASLSSGAYAIAMNPNTGAILAMSGISYDPSTGKITDNALGNINQSFVMGSVVKGAQVAGGLINKVITPTNNTLPDTAIYLPGSPVKKSVYPTGTFSSLTAASALEVSSNIYMMQLTLRWVKASYVAKQYIHMPQTAFETLRNNFAMFGFGQKTGIDLPGESPGIQGASTDSNGIILSGSVLDESYGNYDAYTPIQLVQYISTIANGGYRMQPYVVQSIGRTSSDGKHFYTYYNKKPTVQFKIPWTADELAVIKRGLYQVVHGSNAWGTAHALKNVKPSISAKTGTAQTFYYNTKTKKSTDKELINETMVGWASSNHPQIAFAVVFAGIDPNKEGNYNKNMAKSMVTTYYKMYKGKFSSTN"]}}, {"location": "[1277511:1280010](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIFAGYFLSKKGNILTVDLGQQYVDFLAYYQQNLFKDPSKLIYSFASGLGGSMLGTDSYYLLSPFNLLLLFFPQKFLPQGILLVISCKIGAIGLSAYLVWGKKYQLAKEYVLAASFAFALCGFVVANNLNLMWLDSLALLPWLQEAIDRLLSGEKNHLVLITFLLWLTNFYTGYMTLLFGLLYLLVGLATNRKPKKRFWAYFKGSFFGSCLAGVSLWPTFLELLAGKTDADVSWKLNFQFPPYQLIAKFIDGAYSFHEMSDGLPNIFISSCFTLLALLFIFNSQFSKREKLARGLLLTFLVLSLSFTPLVLIWHLGQFPVWYPARFSFLVSFYALNLALENMDREPVFNLKQKVLAALLGASVSIYLSINPDKLEFIRQDGQVATGLFLLASLLFILFIYGQHYLAGHYALLLVVSEVTVNLIFSLNAISYQENKNYAKFEANVNQATSYLAKTDSSLYRTEKSFSRSDDDPFTGNYYGITTFNSISNSSTSNLLSRLGYVHNSNSYTNQGGTLLTDACLGVKYYLEPNYSYDGVSAAQRMPYDNLNHRADLNSYYPIKQFKQISILKNKQALPLIFASQSGQKKVKFLDNDPVHNQQKLWESLGLSGQLFKKVKNEIKLTNLKVNQSNPLVFKKANSAKPASVTFSLTPKSNDSYYLQLPDGFDFKNASLSVNDIFYNYESRDGQIRLVNIANQNKKSKIKVTFNLTNSTLDLTGLIFWHFNNSAFKAGIKQLKAPELKLKQTGLQISSQTFKSQKKLWITTIPYSKNWLVYYNGKRVKTSKYAASLLAFNLKGGKHQLTLVYFPVSLIAGSLISLVTLAVYLLLKKEQRI"]}}, {"location": "[1280061:1280550](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["greA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDQ7"], "locus_tag": ["MAAAAKME_13510"], "product": ["Transcription elongation factor GreA"], "transl_table": ["11"], "translation": ["MPEKTYEMTAEGKKQLEEELQTLKFVKRPQIVERLKIARSYGDLSENSEYDAAKDEQMRLEERINAISEQLKYAVIVDTAAVDPDEVSIGKTVTVTEVGEDEPETYEIVGSSQSDPFHGKVSNESPIGKALLGHKKGETVKINVDSANVSYDVVINDVKTTD"]}}, {"location": "[1280620:1283032](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.20"], "codon_start": ["1"], "gene": ["pheT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCX3"], "locus_tag": ["MAAAAKME_13520"], "product": ["Phenylalanine--tRNA ligase beta subunit"], "transl_table": ["11"], "translation": ["MLVSYNWLKDFLNMDGVDPYALAEKLSRSGVEIASTVHPEDGVSKLVVGHILTCEKIEGTHLNKTTVDVGEDEARQIVCGAPNVAAGQDVIVALPGARLPGGIKIKKGKLRGIESNGMICGLQELGFSDSVVPPKYADGIWVFHDPDLKPGDSVFAALGMDDYVLDFDITPNRADTSSMEGAAYEVGALIDQKPKIEDVVLKEDGADWTGDFTAVADEKIAPKYYLRKLTGVKIAESPLWMQARLWNAGIRPINNVVDATNYVMLLTGQPMHAYDAKLFDNTKKIEVRLAKEGEKLQLLNEKEINLDPQDIVITDGEQAVGLAGVMGGLNSEVTEETTDVILEAAVFDPALTRKAALRHDNRTDASALFEKGINWDNTQKALDICALILRANAGATVLSGEIKASDLDKEAVVITTTASRTNKILGTDLSMDEIVKILGKLNFPVAVNGDEYTVTVPNRRWDIFIDSDIFEEVGRIYGYDNIKSTHPATGELIGGYAADEVKARHLRQLLEGQGLSETINYSLTSEELATTFVKKALAPVKVNWPLNSARTTMRQNLICGLLDTVAYNFARKQTELQLFENGRVYDMEGGDYHEHEHLAAAYVGLAGESNWQHKDEVVDFYYVKGQLEDVFEMIGVKDVEYRAEAIKGMHPTRTAGIYVNDEYIGLIGQIAPVLAMTDKNFAGKEIYVYELNLDALLPLMAKGVKSKPAPKYPAVQRDLSILVDEDVTNAQVESCIKENAGKYLVSVEVIDVYQGAHLAAGKKSLAYRLTFLNEAETLTDAVVTKATDNVQAALEEKLEANIR"]}}, {"location": "[1283031:1284081](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.20"], "codon_start": ["1"], "db_xref": ["COG:COG0016"], "gene": ["pheS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q4L5E3"], "locus_tag": ["MAAAAKME_13530"], "product": ["Phenylalanine--tRNA ligase alpha subunit"], "transl_table": ["11"], "translation": ["MDLFDRLKELREQGLAEIKEAESEKSLNDVRVKLVGKKGELTQILHQMKDVAPEKRREVGQKVNELRDLFNENLASAKDNLIEKAIEARLEAEKIDVTLPGRRKHVGSKHPIRIIQDDLERFFIGMGYQVVQGPEIESEHYNFEMLNLPKDHPARDMQATFYVDADHLLRSQTSPVQARTMEKHDFDKGDLKMISPGKVYRRDDDDATHSHQFMQMEGLVVGKNISLSDLKGTLELVAKHEFGQDRETRLRPSYFPFTEPSVEMDVSCFECGGKGCAICKNTGWIEVLGAGIVHPNVLSAAGIDPSVYSGFAFGLGLDRFAILKYGIDDIRDFYSDDVRFLQQFRQEED"]}}, {"location": "[1284362:1284713](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1733"], "gene": ["yodB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34844"], "locus_tag": ["MAAAAKME_13540"], "product": ["HTH-type transcriptional regulator YodB"], "transl_table": ["11"], "translation": ["MTELAEQDTPCCKNAENYEMCARFVKAFEIIGKKWNGLIISSLCDTKAMRFRDLAHAVGACSDRVLVERLRELEANGIVKRSKDAEKKIVLYTLTPKGAKLKPVFSQVHIWADKWA"]}}, {"location": "[1284794:1285577](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.34"], "codon_start": ["1"], "gene": ["trmH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02060"], "locus_tag": ["MAAAAKME_13550"], "product": ["tRNA (guanosine(18)-2'-O)-methyltransferase"], "transl_table": ["11"], "translation": ["MQERTSVNNPQIKAIGKLQQKKYREESGYYLIEGFHLVEEALKASVKYREILATEAALSRLAQLGLAYDEGKLIKISQSVASHLSSTKNSQDIFMTVKINMTVKINRPKHFAFSYGKWVLLDDLADPGNVGTIIRTADAAGFDGVILSNKTVDLYNPKVQRSMQGSQFHLNLIKADLPDAIASLKAADIPVYASLLDPAAKQLGDFAPVAQVALIIGNEAHGVSPEIEALADEKLYIPIKGRAESLNAAVAAGIMIYHFS"]}}, {"location": "[1285642:1285915](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG1254"], "gene": ["acyP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O35031"], "locus_tag": ["MAAAAKME_13560"], "product": ["Acylphosphatase"], "transl_table": ["11"], "translation": ["MQTWELLAHGVVQGVGFRRGVQMLAQKMKLPGSVRNNPDGTVTIVIQGTPTDLVKFKAELPNAVPYAQISRLDTKVLPEMEQMHSFHVLY"]}}, {"location": "[1285948:1286911](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0706"], "gene": ["misCB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54544"], "locus_tag": ["MAAAAKME_13570"], "product": ["Membrane protein insertase MisCB"], "transl_table": ["11"], "translation": ["MKKNKKRLLPVSLLALLPLFLTACASQTSKNGSLKAPTSGPYYWIYEWIGLPLQHITVNIAHAIGGASGAGWAIVIITLVVRVILMPLMLSQQHKATLQQEKMHLLQPQMQLLQKAMKTPGMTPDQQMALTGLQREIYSKNNVSMTGGMGCLPLLIQMPIMIGIYQAVAYSNALAKSTFFGISLSSKSMVLAIIATVFALIQSYVAMIGIPEEQKKTMQATMLMNPIMTLFFSMSFSGTLALYWAVGNLVMVIQQLITTFIVQPRAKKRVSKELADSPIVEVVTQAKLNQILKPAPEQKPTSQPKSGDLRKRNQGKQKRK"]}}, {"location": "[1287004:1288597](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_13580"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MPKQKAASGKKGTRHVSLIVRWVSIVAMTIMVSFLVFSAVVYNTVKQEALSQQKYMSNEVVNVLRKRLIGIDDELEITNVVQQLSPNTRRILTGGPALSENDNSNSSVFGDSVLSTVTNPDMTVAIYNLRNEIVFHNGDSAPKLVKFTSESKSVTKEGKDGQSSLYVYRKVRNRKSHKLTGYIVVKNQMTGYNRLISRTLKAMLWLSILGISLAIVISYLVVRSVVRPINKMSKVAREVNADPNSTARIPELHRNDELEELALSFNMMLDRMQKYIEQQKQFVSDVSHELRTPVAVIEGHLSMLKRWGKDDPQVLEESIDASISEAERMKHLIQEMLDLTRAEQISVHYPNAIAEPMEVLTRVVGDIGMVHPDFKISLEVEDLDPDTKIQIYQGHLEQILIILIDNGIKYSTDRKEIAVAAGQSGQEMQIVVQDYGEGISDEDKKKIFNRFYRVDKARTREKGGNGLGLSIAQKLVESYHGTIDVESVLGQGSQFRITFPVLTDEEVKELESREEQKQAGTESPKQDPTI"]}}, {"location": "[1288589:1289303](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["arlR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KJN4"], "locus_tag": ["MAAAAKME_13590"], "product": ["Response regulator ArlR"], "transl_table": ["11"], "translation": ["MPKILIVEDEKNLARFVELELQHEGYETVVENNGRKALDRALSEDFDAILLDLMLPDLNGLEIARRVRQSKTTPIIMMTARDSVIDRVSGLDHGADDYIVKPFAIEELLARLRAVLRRVKIEKDASKNKLPRQKVVKFKDLTIETANRIVHRGDGKTVDLTKREYNLLMTLIENKNNVVGRDQLLNKIWGPESNIETNVVEVYVRYLRNKIDIPGQPSYIKTVRGTGYMVRDEEDNA"]}}, {"location": "[1289481:1290060](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLELSFFQIKNSREPLTQISADLTFADGFYQRAKDLVYEVKSAHVEGQLFYDEPFVTGNFQVEADLLVPSSRSLEAVPLKQKFSFVENYSDHEPTQEEKELGLMIIPLDDDRIDVQTAVEDNMLLNIPSTVLTKEEAEEDLYPEGQGWKVMSEQDFAGQKKDQVNPAFAQLRGLLDKMQAEEDKDKAEDEEK"]}}, {"location": "[1290059:1291214](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.-"], "codon_start": ["1"], "db_xref": ["COG:COG1323"], "gene": ["tmcAL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97P99"], "locus_tag": ["MAAAAKME_13610"], "product": ["tRNA(Met) cytidine acetate ligase"], "transl_table": ["11"], "translation": ["MSVVGIVAEYNPFHSGHEFLMNQARLIAGDDPIIAVMSGNYVQRGEMAILDKWSRARSAIEAGADLVFELPFSYAVQAADMFATGGVDLLTRLGAKNLVFGVEDANLNFEYFGDRISKIPRQRQEFADYSQTYSTQYNQMVAREIGHEVSEPNAILGLAYAVANANLGSPLKLSPVNRVGAGHDEILQREAVVQSASAIRNLLLNGAERSELEQWLPKGEIAAFDQEKVLPNWELLFPFLKYRLESASIKELQQIYQMSEGLEYKFKAEIHLAENFADFLRRVKSKRYTYSRLRRLSLYTLLNVTEADVLNSYDHVSTMLLAYSKRGRKYLKQQRKDFEIDIVSKVDRKNAQEGTLGLKVRVDRLFEQIVGADQNFGRRPLEVN"]}}, {"location": "[1291216:1291564](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0799"], "gene": ["rsfS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KD89"], "locus_tag": ["MAAAAKME_13620"], "product": ["Ribosomal silencing factor RsfS"], "transl_table": ["11"], "translation": ["MKSEELLDLVLNAISERHGEDTEAYDMRGISILADYFVATSATSSRQLHAIANSIIEACHEANFYDYRVEGNHDSEWLLVDLGDVVVNIFSEDARAFYNLEKLWADGKRVEIEED"]}}, {"location": "[1291605:1292199](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDPVFKETYSPLSSSELVAKEKSMMDENRFAHCVRVSETARTLAKLNGYDEDKAALAGFVHDYAKQIPVEEYIKVIKEEGFDPDLLNWNRAIWHGIVGSWFIKRDLGITDPEILTAVYRHTTGDVEMTTMDQIVFVADYIEPGRTFAGVEEARKTSYADLASGVGYELAHTLAFLVQKRSKIYPRTLAAYNVWAAE"]}}, {"location": "[1292191:1292830](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.18"], "codon_start": ["1"], "db_xref": ["COG:COG1057"], "gene": ["nadD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54455"], "locus_tag": ["MAAAAKME_13640"], "product": ["Nicotinate-nucleotide adenylyltransferase"], "transl_table": ["11"], "translation": ["MDSLVDFSKETQVKVQTAESQRKGKQIGIMGGTFNPVHMAHLVAAEQAMTKLHLDEVWFVPDNIPPHKDAPLNVSARDRATMLDLATRDNPRFRVKLLELFRGGVSYTIDTIHYLTKKAPENTYYLIMGSDQVNSLHKWKNAEELAKLATLVGIRRPGYPQDPQYSMIWVDAPDIRLSSTAIRRAVSTGISIRYLVPDKVREYIEEKGLYRD"]}}, {"location": "[1292840:1293950](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1161"], "gene": ["yqeH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54453"], "locus_tag": ["MAAAAKME_13650"], "product": ["putative protein YqeH"], "transl_table": ["11"], "translation": ["MSEEIRCIGCGAALQSQDKQLPGYLPASALAKVENGEREEVYCQRCFRLRHYNEIMPVSLDNDDFLALLNTMAEKKALIVNVVDLFDFSNSLISSLKRFVGTNDFILVGNKLDLFPKNSKESKIKDWMRQEANRMGLYPKDIFLISAAKKKKLDTLIDYLNKHSQDQDVYFVGTTNVGKSTLINAIIDEMGDVQDLITTSRFPGTTLDQIEIPLDNGHFLVDTPGILTDKQLASRLDPKDLDLASPKKPLKPATYQLLPGNTIFLAGLGRIDYLKGPSTSFTIYAARGMYIHRTKTEKADEFYQKHVGELLSPPGPNSDLPPLKGQEYSIKYRSDVLFAGVGFITVPEGCVIKAYTPGGIGLGTRRALI"]}}, {"location": "[1294058:1294415](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0292"], "gene": ["rplT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P55873"], "locus_tag": ["MAAAAKME_13660"], "product": ["50S ribosomal protein L20"], "transl_table": ["11"], "translation": ["MPRVKGGTVTRARRKKVLKLAKGYRGSKHVQFKAASTQLFVSYKYAFRDRKKRKSEFRRLWIARINAAARQNGLSYSKMMHGLKLAGVDMNRKMLADIAYNDEKTFAALAETAKKALA"]}}, {"location": "[1294459:1294660](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0291"], "gene": ["rpmI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RMR2"], "locus_tag": ["MAAAAKME_13670"], "product": ["50S ribosomal protein L35"], "transl_table": ["11"], "translation": ["MPKMKTHRASAKRFKRTGNGGLKRHHAFTGHRFHGKTKKQRRHLRKAAMVSRSDLKRIKQMLSQMR"]}}, {"location": "[1294680:1295202](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["infC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P03000"], "locus_tag": ["MAAAAKME_13680"], "product": ["Translation initiation factor IF-3"], "transl_table": ["11"], "translation": ["MILNESIRAREVRLINAEGEQVGVVSRNEALRQASDAGLDLTLISPNAKPPVAKILDYGKYRFEQQKKLKESRKNSKQVSVKEIRLSPAIEGNDFETKLKHARKFLEKEGAKVRVSIRFRGRAITHKELGQQVLEKMAEETSDIAVVTSRPKMEGRQMFLMLSPKSDKDKNKQ"]}}, {"location": "[1295754:1297155](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFIGRNQELTALNKLYQEDSFQFAVIYGRRRIGKTSLINQFLKGKRAIYFTGLEENALENLARFSDAIHAYEDPSYLDGPNFASFEQAFKYLVHLSEKNDRLILVIDEFPYLAKAYPPISSMLQSYIDHYFKQNKLFLILCGSSMPFMEKQVLGYKSPLYGRRTAQFKLKPFSLHDAEEFFPQLNKEEVFELNAITGGIPLYLSLMSPKKSLRENIKDNFLTTSAMLYAEPMSLLNQELREPASYSSIISAIAAGASRQSEISTKTGIASGALSPYLDNLIDLGIVEKRLPVTELDKARSRKTIYAIKDGMFRFWYTFVGKRVSFIERGITEPILDYIIKQLPHFMGPEFEKLSQEYLWSKLFDPDLVPEPFVNLGNWWGPDPKEKKQVEMDIVGFDDQKLNGYFGECKWKNEPISADILETLIYRSRLFPTPKKNYYLFSKTGFTDKCQQLAQQVDCHLITFDMM"]}}, {"location": "[1297235:1297487](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQIFMKVFSVTLILFIFAYIVEQLTNRNSNYWSIIPISVVGLGSYELLRSDSVSDRVKKVINIITVVAAVLLAIILVYVALL"]}}, {"location": "[1297491:1298115](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMKKCKRYLTVFFVAMITVTIFLPFSATSVSAKTNLNEAMSLPNKNIEIDKKYWSDERIDQLADILQKSHPEFSRNYIKELIRDELNDGQIPSVSVFKSQKTISSRSSWKGITVAQAAAAIDVIISLLVGRGIDKLTAAGIKAAVKKVGRKKLSRLIRQKIIKKFGTAGAVTSTFIDYALNYNSPGTIIAKYWDKHDAYPNNGRINL"]}}, {"location": "[1298298:1300230](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.3"], "codon_start": ["1"], "db_xref": ["COG:COG0441"], "gene": ["thrS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PI4"], "locus_tag": ["MAAAAKME_13720"], "product": ["Threonine--tRNA ligase"], "transl_table": ["11"], "translation": ["MSFALILPDGSKKEFDAAVSVADLASSISTSLAKNAVAGKVDGEIKPLDFQLDTDHEVAILTNKDAEGLSVLRATVAFVLEALVKDKYPEIKLGQAEVSEDGFFIETDKEDQIKVTELPDLEKALQKAIKNGEAIEHVQVAKSELAEAFKDDPYKSELLAKEGDVVDAYKLGDFVDFGFSALLPNTGKIKKFKLLSVAGAYWKGKSSNPMLQRIFGTAFFKEADLEADLKRRAEIKERDHRTIGRDLDLFFVDPKAGAGLPYWMPKGATIRRIIERYIVDKEVAAGYQHVYTPVLMNLDAYKTSGHWAHYREDMFPPMDMGEGEMLELRPMNCPSHIQIYKHHIRSYRELPIRIAELGMMHRYEKSGALSGLQRVREMTLNDGHTFVALDQVQEEFARTLQIIMDVYHDFDINDYYFRLSYRDPKNTDKYFANDEMWERSQSMLKAAMDDMGLDYVEAEGEAAFYGPKLDIQTKTALGNDETMSTIQLDFMLPERFELSYIGADGEEHRPVMIHRGIVGTMERFIAYLTEIYKGAFPTWLAPVQAEIIPVNLDAHSDYAKKVRDELVAKGFRAEIDFRNEKLGYKIRESQTQKVPYTLVLGDDEMNAGTVNVRPYGTEEQNSESLAEFMGKLSKDVANYSRED"]}}, {"location": "[1300530:1301454](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1484"], "gene": ["dnaI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P06567"], "locus_tag": ["MAAAAKME_13730"], "product": ["Primosomal protein DnaI"], "transl_table": ["11"], "translation": ["MRAIGDMLSDAAKAAAAKNGQDFSAESFEKMKRQVFADPDVRAFLTAHQDQLTKESVDASFASLYEYCRQKDSHDKVISGYLPQLFMEGPLIGIRYRASQDKQRRDKEAAAKRRIELIDLPEKLRRVKLADLDMADDRKQALFEVGAFLQAYQSNPHAKGLYLSGDFGVGKTYILAGLANRVAEMGGRVIFLHMPTFIAGLSSHFGDNSLQTEIQRLAACDVLILDDIGAETLSPWSRDDVLGVILQARMDNDLPTFFSSNFDMKTLESHFSATKNADDPVKAARLMQRVRYLAKEVVVYGNNRRLP"]}}, {"location": "[1301464:1302799](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3611"], "gene": ["dnaB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07908"], "locus_tag": ["MAAAAKME_13740"], "product": ["Replication initiation and membrane attachment protein"], "transl_table": ["11"], "translation": ["MYENSNPRLRYVVLNELADQLGQGQVLIKLYQPLIGALGVALYQTLVQDFDPYRSLSASNALYSLQEDLDCSLRQLWQALHKLEAVGLLKTYVSHNLRLGDILAFKLHAVPEASEFFNTSLLASLLKEKVGGVRFSQLSREFAKQAQVKERQLDNLEEVSASFFEVFRLPENEAINPSEDVQKAAEENTGQKTEEAQVNLKQIDWQYLKDRFATYQIPESEIDLQKDEIRSIMELYGLSEEEFINETLPTLHGSYQLDAAAIRNSLNYNYKANHRRKQVIKRQEEKQDRPSVDQQDQQLLDLVKSKSPVNFLDDMKREKGGFTTARERQIVYDLRENVGLEMDLINVLVYTCLNYQPVLTQDLAYRIANDWLQKGITTPEAAIKHLRAGKKQAQSGQKKNYPAYSGNRRLEQGTDWNKKQFVQPVNISDEDLRKMLQGPDKKDK"]}}, {"location": "[1302802:1303270](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1327"], "gene": ["nrdR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67318"], "locus_tag": ["MAAAAKME_13750"], "product": ["Transcriptional repressor NrdR"], "transl_table": ["11"], "translation": ["MLCPNCHQNASRVIDSRPTDEGRTIRRRRECENCGYRFTTFERVEQSPLLVIKNDGTREAFSREKILNGVAAACQKRPVTSEQLNKLVDNVENRIRAKGVSEIYSKEIGELVMDQLADIDDVAYIRFASIYRQFTDMSSFMKTMEDMMDRHSKAK"]}}, {"location": "[1303283:1303868](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.24"], "codon_start": ["1"], "db_xref": ["COG:COG0237"], "gene": ["coaE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67792"], "locus_tag": ["MAAAAKME_13760"], "product": ["Dephospho-CoA kinase"], "transl_table": ["11"], "translation": ["MTFYLGLTGGIATGKSTASRILKDLGCQVIDSDLIAHQQAKVGQVSWQRILEEFGPDFFNEDKSLNRKKLGQYVFANPKALAKLSEITQGEVLKEVQKQMKDSQASVCVIDVPLLFEAGWQDYFDAVLLIVAPEEVELDRLMKRDSLSQAEAKRRMQAQLPLGEKRLLASYVLENTGTIEELRDKLSNLLKTIA"]}}, {"location": "[1303876:1304698](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.23"], "codon_start": ["1"], "db_xref": ["COG:COG0266"], "gene": ["mutM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42371"], "locus_tag": ["MAAAAKME_13770"], "product": ["Formamidopyrimidine-DNA glycosylase"], "transl_table": ["11"], "translation": ["MPEMPEVETVRRTLRPLVVGKTIDHVDIWYDKVITGDPETFKRELKGKTFTAVDRYAKFLLFRLGDLTVVSHLRMEGKYHLTTWDAPVDKHEHLQFAFTDGSSLRYADVRKFGRLQLVETGTEFQVTGLKNLGVEANSPEFRLDYFEKGLKKRSMNIKSLLMSQTLVAGLGNIYVDEVLWQSRINPLTPANELTKDQVKQLHSAINETIEEATKYGGTTVHSFLNAEGGAGHYQEKLKVYGKEGQPCPRCGEDFVKIKISGRGTTYCLHCQKR"]}}, {"location": "[1304708:1307369](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "gene": ["polA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P52026"], "locus_tag": ["MAAAAKME_13780"], "product": ["DNA polymerase I"], "transl_table": ["11"], "translation": ["MNKKLLLIDGNSVAFRAFFAMYQQLDKFKNPEGLHTNALYAFKNMLDVVLKQEDPSHILVAFDAGKTTFRTAMYKDYKGGRDKTPAELSEQLPYLREMLKDMGIKSYELANYEADDIIGTMAKKGAEAGYEVAVVSGDKDLTQLASDHVTVYVTKSGVTKLEAFTPDHMKEVNGVTPTEFIDMKALMGDPSDNYPGVAKVGPKTASKLIQEYGSVENLYYHVDEMKKSKLKENLIAGKDNALLGKKLATIKCDSPVEVTLDDLSYEGSNVDDLRRFYEKMNFRRFLADLAQKGELTENKTEVKKQDYVVLSADNLDQLPKAAEVTFYLAMFGDNYHLADFAGFALKIGGETFVSRDVFLLQESPLKEMLEDSAVQKNVFDLKRTTYGLYRLGIKAEGLSFDLLLASYLVDNEKNSNDLGELVQGYDYYDLKTDLEVYGKGKNAKIPADDAVFFNHLAGKTAAIAALKDSLLKQLKDHEQDDLYDSIELPTARVLAKMEMNGIKVQPSRLKELENDFAVRLKELEEKIYKEAGEEFNLNSPKQLGVILFEKLGLPVIKKTKTGYSTSVEVLNQLKEQSPVVSDILEYRQISKIQSTYVKGLLDVIDERDGRIHTRYLQTLTATGRLSSVDPNLQNIPTRTEEGKQIRKAFVPSSPDGYIYSCDYSQIELRVLAHVSADPNMQEAFKTGYDIHAHTAMKIFHLSSVDEVTSLQRRRAKAVNFGIVYGISDYGLSKNLDISRKQAKEFINEYFDQYPGIQAYMDWAVKDAREKGYAETIMHRRRYLPDIHAKNFNVRSFAERTAINSPIQGSAADIMKIAMINMQKKLDELGLKTKMVVQVHDELIFDVPADELETIQKIVPSVMQAAVKLDVPLVADASWGHDWYEAK"]}}, {"location": "[1307440:1307890](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSVVGGRLYDDKGARFPIITGASLMAAELIAFVCLSQQMSDLVISLVYIIYMTGMGMSIGAIMTNALASLKPEFSAQGNAFLNTIQQFAGAIWTSLTSAIVGLSQAQYGSKGPRPTAIGTQHAFIFLAVIVVFLWLMFYKNVKTEGGSK"]}}, {"location": "[1307889:1308555](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mdtD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01577"], "locus_tag": ["MAAAAKME_13800"], "product": ["Putative multidrug resistance protein MdtD"], "transl_table": ["11"], "translation": ["MLDALAPNFVMILLLGRAIQGLGTGIALPLMFNIILEQVPADKIGLMMGFGNLITGVAPALGPTFGGLVINNLGWRYVFFFLMPLIILSLFLGLYDIQQKSNIVKIKPDFLSIVFIAVLFAGVIYDFSNLSSGKLLTNLFPIFIGLCSFGFLLGRSKKLAQPILHFEILKNKSFSVHLLGFLMIQLCSLGNAFLLPNYSWSTSLRLLLLVWLPCRLALSGP"]}}, {"location": "[1308539:1308854](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVSVQFILAIGGSKISKKVYAAILATGLMSFSGVLVETAMNVTFPILMKQFVLATNTVQWMTSIYLLVISVIVPLSAVLKSSFKTKQLFVTANLLFFAASCWTP"]}}, {"location": "[1308873:1309308](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_13820"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MLLTLCERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITADNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[1309424:1309901](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_13830"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHTYSNTKPHQKGKHLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNSERRSSAILRLVVPV"]}}, {"location": "[1310351:1310777](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.59"], "codon_start": ["1"], "gene": ["thi4_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00304"], "locus_tag": ["MAAAAKME_13840"], "product": ["Thiamine thiazole synthase"], "transl_table": ["11"], "translation": ["MSKEYTVDLAVAGCGGTGMAAADAGGSQGLKTLVIEKQAQPGGNTKISSGFFAIDTKEQREAGLQLSTEEATRQLNEYNHYLNNGPLTRRIVENAKPTLEEIESLGMEIKLNPTSQTTQFAHLDNPYAGGSYHMYQNKPES"]}}, {"location": "[1311045:1311678](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rhaR"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01533"], "locus_tag": ["MAAAAKME_13850"], "product": ["HTH-type transcriptional activator RhaR"], "transl_table": ["11"], "translation": ["MAYPDPLNQYLVADNALIHDLMNDKSSKYAYIVFQTLADGMTNGYINLLHILAKRDKDEYDDFQVQRLAGLLLTELLHQHRQKISKSRSNFPRKNVRHANRDAQSGAIMTYLTQKNGQVSLKEAAEYFGYQANYFSRLCRKLFATDFVHLRRNIRINLAEDQLLLTNKKLEEIADELGYQDLSSFSKAFAESTGFSPGKYRKKYGIKTSR"]}}, {"location": "[1311707:1313027](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.8"], "codon_start": ["1"], "gene": ["murC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65475"], "locus_tag": ["MAAAAKME_13860"], "product": ["UDP-N-acetylmuramate--L-alanine ligase"], "transl_table": ["11"], "translation": ["MLDKTKQIWFIGIKGTGMASLALILHDLGYKVAGSDIDKYTFTQDPLEAAGIEVASFSKDNIKESGQVIVKGNAFKSDNIEVAACEEKGVKWQSYPDTVEEIVQQYTSIGVAGSHGKTSTTGLLATVLGEAAPTSFLIGDGMGKGVKDSRFFVYEADEYRRHFLAYHPDYQIMTNVDFDHPDYFKDRDDYASAFQTAADQTKKGLFVWGDDERLQKIHPKTAKKYTYGLKDSDDFQAFDVVKTTEGAKFHVRANGEDLGEFTIHLFGDHNVMNATAVIAIAFTEGIDLDVVRKGLVKYTGAKRRFSEKDFGDTVVIDDYAHHPTELRATIQAARQKFPDRKLVTIFQPHTYSRTKEFEEEYVEILKGVDKAFLTPIYGSAREAAGDIKSEDIASQIPGAEVIDFDNLKDLLAYKGDCIVFMGAGDIPKYEVAFEEMLGK"]}}, {"location": "[1313146:1313794](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITSINKVSYPNTLIVILAQGDGESNFEEKADVTRVTDGKGELTGFNFFNVDQVLDYDKLPNGEVKLDEDQVAALNEKLASVGFSDKLTVAKPTLVYGYVKECAAHPDSDHLHVTQIDVGDGQDHQIVCGAPNIAQGQKVVVALPGTLMPTGAQIWPGALRGVESDGMICSARELGLAHAPQKRGIMVVPDSFKIGDEFEPTKCDELLASGAITL"]}}, {"location": "[1313816:1314137](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ytpP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34357"], "locus_tag": ["MAAAAKME_13880"], "product": ["Thioredoxin-like protein YtpP"], "transl_table": ["11"], "translation": ["MEEYKVVDRAKLADLVKSGRTVVEFSADWCSDCRFLEPAMPAIEADFADSKFIKIDRDGSIDLCKEMNIMGIPSFVVYQDGQEIGRLVNGDRKTKQEVEAFLRSLD"]}}, {"location": "[1314215:1314872](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.33"], "codon_start": ["1"], "db_xref": ["COG:COG0220"], "gene": ["trmB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67506"], "locus_tag": ["MAAAAKME_13890"], "product": ["tRNA (guanine-N(7)-)-methyltransferase"], "transl_table": ["11"], "translation": ["MRLKNKPWANELVEEHPESALDRPDPAEKIDWEARFGNDKPIEIEVGSGKGQFITTLAKQHPDRNFVAMEIQKTAAGIILKKKLDEGLDNLQILCADAANLVAYFGENSTSKIYLNFSDPWPKSRHEKRRLTYKDFLAKYQAVLTGDGLIEFKTDNSGLFAYSVKSMNNYGMHFDFMSVDLHHESEEIVEKNVETEYEHKFASKGQPIYCLHAGFLAK"]}}, {"location": "[1314948:1316166](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRELAKKRLQGNFQQSAKYLALVFNDFFVLALIFIFGAVMFWYAQVMKVLPVKAWYYPLVLSALLWLAYLPGKLVTLLQTADRQFLLATDDRLDDYLAPMRRYSLVLPALLLALAGGIMYPFASLKMGLSNLNYFSLVLALFFAKVFEQGAVSRSLTFDHRVKQVTWLIRLVLLALLLASLYFLPNALYLLLALAVIAVLALRAWKNSAFDWQYAIDYEARRKETVYAGFALFTDVKERQVNIKRRKYLDFLLPPFGKESPNSFLYRRTLLRNPEYLNLLARMTAFAVLLTAMIQDPVWSLLLSALVMYLTVWQLLPLGQKYDQNIMYRVYPIAQKERGQEVSRVLAWALLLQTGLIIIFWLAIMPGQFAWSLLFLVWCGLLAKGYLPYKTQQLAKKSRYKKRKK"]}}, {"location": "[1316158:1316920](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1131"], "gene": ["ecsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P55339"], "locus_tag": ["MAAAAKME_13910"], "product": ["ABC-type transporter ATP-binding protein EcsA"], "transl_table": ["11"], "translation": ["MKKDRENMTLEISHLTGGYSSIPVIKDVNLTIASGEAIGLIGLNGAGKSTTIKHLLGLLRPQAGKITLNGINLAEKPAEFKKLVAYIPETPVIYPELTLKEHLELTILAYQLDTDKAWEKAKELLTMFRLADKLDWLPVHFSKGMQQKVMIVAAFLTDAQLLVIDEPFTGLDPLAVANFIGLIKEAQESGKEILMTTHVLADAQKAIKTYAILNQGTIEFTGSLDEIRDHYGLEASDSFDKLYQLLYQEQKNA"]}}, {"location": "[1317002:1317440](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0537"], "gene": ["hit"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07513"], "locus_tag": ["MAAAAKME_13920"], "product": ["Protein hit"], "transl_table": ["11"], "translation": ["MTKAELIDDCLFCKIIRGEIPSYTVFENDDVKAFLDISQVNEGHVLMVPKKHLTNFFDYSAEDASRFMQCVPEIAKAIKASDPRIQAMNITSNNGEIAGQVVMHSHIHFIPRWEGDGIKFFTRNNADQYDEKKYQEVCDRIKAQF"]}}, {"location": "[1317456:1317807](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRNFKHFGLGFLLGAAAGAVFAFLPNENGKSTREYLKEDAKDFKESHKELQDGLSRAQEAGSRLASELPAAEQMVSDLNTDVERFKQEADEEIARLQAKIDRLSSELNQDLNESEN"]}}, {"location": "[1317886:1318816](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0167"], "gene": ["pyrDB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0DH74"], "locus_tag": ["MAAAAKME_13940"], "product": ["Dihydroorotate dehydrogenase B (NAD(+)), catalytic subunit"], "transl_table": ["11"], "translation": ["MTAEVNLAVELPGLKLKNPVMPASGTFAFGDLPENFNWDEMGAIVLKTATRHARTGNPQPQIDLLADGVMNAVGLTNPGAEVVASEKIPALREKHPDLPILASVGGESVEDYVEVAEILAAAKPDALELNLSCPNVSEGGMTFGIVPEMLEKITRLVKEKVDLPVYVKLTPNVTSIVEIAQAAEGGGADGLTLINTLLVLHLDLKTRRPVLGNDFGGLYGQAVKPVAVRMVAQVKQATSLPIIGVGGINSPEDAAEFILAGASAVQIGSMSFYDKLAIKHVIDGLPAVLAGMGASDVTSLVGQWQSNKQ"]}}, {"location": "[1319088:1319811](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.23"], "codon_start": ["1"], "db_xref": ["COG:COG0284"], "gene": ["pyrF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5FJB3"], "locus_tag": ["MAAAAKME_13950"], "product": ["Orotidine 5'-phosphate decarboxylase"], "transl_table": ["11"], "translation": ["MNKPLFIALDYDDQEKMWLFLNQLKDKQGLHVKLGMEMFYQYGPEIVRDLSAKGYQIFLDLKLHDIPNTVKRTAHQLAALGVYCTTVHALGGKQMIQAAKEGLIEGTPAGKPVPKLLAVTELTSISEEVLKNEQHCSLNLADEVKSLAHQAQEAEADGIICSPLEVKAMKSEFSDDFMFVTPGIRPKSYQKDDQARVATPGQARENGSTAIVVGRPITQAADPQKAYEEILKDWSKNDAK"]}}, {"location": "[1319800:1320424](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0461"], "gene": ["pyrE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTV2"], "locus_tag": ["MAAAAKME_13960"], "product": ["Orotate phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MQNNEIIRQLIDKKIVTISPDKDFVYASGMHSPIYTDLRQTISFPKLRQAIAENLAALIKQEFPEVTVIGGVATAGIPHAAWVAQVMNLPMVYVRSKPKDHGQGRQIEGRLSMDDHIVLIDDLISTGGSVLSAVQAVKETGAHVDGVSSIFTYLLPDADENFKKADTKFAPLLNYRELIEQEIAETVSEEQYKELLAWHQDPWNWKR"]}}, {"location": "[1320550:1321462](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.2.1.8"], "codon_start": ["1"], "gene": ["prsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C2B5"], "locus_tag": ["MAAAAKME_13970"], "product": ["Foldase protein PrsA"], "transl_table": ["11"], "translation": ["MKNHLKKIAVLAGAAAIGLSTAACSSSSATVVNYKGGKITQDEYYEAMKDTSAGQSTLVSLIIYRTLKAQYGDKVSSKKINAEYNKYKKQYGSSFSTVLSSSGLTTKSFKQNLATNLYLVAALKDLEKPTTTQEKNWWKSYHTKTTVQHIVVAKKSTAETVIKKLKSGTSFATLAKKYSTETATKKKAGKMAAFDSTDTSLSSTFKSAVWKLKEGEYTTTPVKTLSGYEVIKVLKTTEKGSYTKNKSFIDKQLYAKWAADSNTMTKIISKVLKKANVNIKDKDLKSKNLLANYLGTSSSSSSN"]}}, {"location": "[1321543:1322086](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.19"], "codon_start": ["1"], "db_xref": ["COG:COG0128"], "gene": ["aroA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S400"], "locus_tag": ["MAAAAKME_13980"], "product": ["3-phosphoshikimate 1-carboxyvinyltransferase"], "transl_table": ["11"], "translation": ["MDAKLAAAAVGVNAIGNSGTTNRLLLGILAGSSFASQLIGDASLSKRPMKRVSQPLAKFGAEIALSPAGTLPATVIGQKLHGAEIQLEVASAQVKSAAIFAALEAGSPSTIIEKLPTRNHTEIMLRQFGADITTEADNLTIHVQPGQELLGQEVEVPGDMSSAAFWLTAGRLRKSWPLMS"]}}, {"location": "[1322156:1322525](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.71"], "codon_start": ["1"], "gene": ["aroK"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00109"], "locus_tag": ["MAAAAKME_13990"], "product": ["Shikimate kinase"], "transl_table": ["11"], "translation": ["MRIVLVGFMSCGKTTFGDLLAKKLNKLQIDLDQAIVEREKLTIPEFFAKFGEDHFRLCEHRALLANIGKDAVITTGTGICAMSWNGPQPGKLPCGWLWAISLSSFCGSWISAWWLMWRKSGQ"]}}, {"location": "[1323062:1323866](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG3481"], "gene": ["yhaM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07521"], "locus_tag": ["MAAAAKME_14000"], "product": ["3'-5' exoribonuclease YhaM"], "transl_table": ["11"], "translation": ["MLKRLLDYNEGEEFDLVLMVKNSELRQDKRGKHYLLMQLADSSGSIRANYWQAKAEDASRFNAGTVVEASGMIEDYHNHDQIKLFSIHPVSPDDQADLSQLVATAPEKPAEMEKEIKDFVAQIDNKNWHDLVDFLLKKWSSRFFAYPAGKSNHHAYKGGLAFHTLTMLKDARGLADNYPAVNRSLLYAGCILHDMGKVLELSGPVATQYTAEGNLVGHLVLIDEQLMLAAQELKIDLASEDLLLLRHMVLSHHGRYEYGSPKLPALL"]}}, {"location": "[1323858:1326285](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["smc_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01894"], "locus_tag": ["MAAAAKME_14010"], "product": ["Chromosome partition protein Smc"], "transl_table": ["11"], "translation": ["MRLKQIQIYNFGQFSQETFDLPDGNLAAFFGGNEAGKSTTVAFIKQILFGFNLKNTSSVFFEDYEPLTKSYPMGGQLVFTSDEGEYVLERTWSRGDKSKTGAVKVLLNGQEVPVSLFYDQIQNIDGSFYAESFIFNEDLLRQVSSLSEGEILENIYYLGAAQSSQLLAIRADFDKEAKDLFKPSGKKAPVNQDLLKLAEQRDKVAADGQEFDAYQQLEGQRLAEEQAAKKLEKEVQEISSQLSKLEKQLEQVQNYQTYLDLKKQVSPVAFDQELYQRALELNAQIKALKAAIKEEKAAVDPALLAKRKDQVRAWRQELGQISQSLEMLKQQVKQLEEKQASLLELTPHLEQVADLSMDQFQQMQADWEESQKAEAAPKTLPPYVGLIVAVIGLALIGQNRILAILLILAGAALAAYAYFKKPAKGPDKAGAFKEKYGIDASVKVDSLLAPYRDLAINRRDLANSQAELAQKEKQAADLARQLGLDGSDLTAVSQQLGRLEAQVEAESAALRASQEVKAANLNYQKQISALTEQLLAIYQTAGVENLTAYQALAQKLQEQKALSAQITALKNNLGDQLAAFEENGLDLSKLLGQKQELEKELADKQRAVSVLQQEMANLLAEEKRYASSSQVAEDKQTLAEIADSFRRDSQDYLASLLAGEVIGRTLDLASNDRFPKMLKLAQDYLEILTGGRYREILLPAKLSKKTPLKVVRKDKKKIPLAYLSRGTQEQLYFALKLAFVMQIKDKIDLPVLIDDSFVNFDGPRTGYIVDMLKKMSEDKQILVFTAREDLAEAVSAAPIRYRKKEQDA"]}}, {"location": "[1326281:1327487](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.53"], "codon_start": ["1"], "gene": ["cpdA_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00905"], "locus_tag": ["MAAAAKME_14020"], "product": ["3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA"], "transl_table": ["11"], "translation": ["MKFIHLADAHLDSPFRGLSFLPKREYDEIRQSAAQSLTRIVDLALKEQVDLVLIAGDTFDSNKPSPASQLFLARQVKRLTDAQIQVVMIFGNHDYMTRQDLLVENSPYFCLLGDQEKVAREFFKTKTGFAYNVTGFSYSQNHIEADLLDQFPEKEGYTIGLMHAAQRAASGNVYAPFDLSQMKELNYDYFALGHIHARQILSEKPLIVYPGNIQGRDVGELGEKGCYLAEVDETSGQTSLTFVQTAPITWKQLTLELDQAIDKSSLHAKALELLQENIQGKTYFSLKISGSEYLTSEEIDLWQDQEAWAGLSAALAPSQLVDVRLSVRGLVSLNNSDREALAAAEAEVLTDEKIQQLAASWAKKDPYARRLLEDGEFRDQVRDLVAVKLASRLQAMTGGEK"]}}, {"location": "[1327489:1327843](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A4V3"], "locus_tag": ["MAAAAKME_14030"], "note": ["UPF0342 protein SA1663"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVNIYDTANQLANDLRETQQFLALKEAMDAVKADEGSLALFKELDAAQMEIMEAQQTGKELTEEQQDHFKSLNERVSQNTTLQSMLLAEQAVYTLLNDVQKNIGQPLSEAYEDLRKA"]}}, {"location": "[1327884:1329972](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0744"], "gene": ["pbpF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P38050"], "locus_tag": ["MAAAAKME_14040"], "product": ["Penicillin-binding protein 1F"], "transl_table": ["11"], "translation": ["MENRRKAHKQMNDSQPQKGLWGWLKRINYRFQLLRWLILIVLSLFLAVSSYYTFKVKIANLSNLQASLAKTTVIYDQNGKKAGSVSSGKGTYVSLSKISPNVQKAVVATEDRTFWTNIGISPKGILRAAVSYVIHGGNIAGGGSTITQQLVKNSILTQQQTLSRKVEEIFYAIQVTKVYSKKQIMAMYLNNAYFGNGVYGVQDASRKYFGKNASQLTVAEGATLAGILRNPSYYNPIDSLSHSVSRRNLILQRMVDNKSISQTTANKAKKEGMNLVDTYKATRGYKYPYYFDAVISEAISKYGLSENEIMSKGLKIYTTLDQNYQKSMQASFKNKYNFPVNPAGTARAQGASVAMDPKTGAVKALVGGRGKHVFRGYNRATQMQRQPGSAIKPLAVYAPALENGYHYDSDLSNKRQKFGNNGYEPVNVDNQYSTTIPMYQALAQSKNVPAVWLLNTIGVSTGVSYLKKFGITVSKSDQNLALALGGVSTGVSPLQMARAYSAFANSGKLPDSSYMITKITDASGNVIAENNNTGTSQIIFADTAKEMTQMLLSVFTSGTAVNAKPAGYSVAGKTGSTEVSFAYGTKDQWIVGYTPDVVVATWVGFDKTDKNHYMQGISETGITTLYKDEMTRILPYSKQTSFTVQSADSMAQSNGTSSSSSSSSDWSKKLKESISNGVKNAESTIQSWYNKITGK"]}}, {"location": "[1330112:1330961](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYHFSLIYPADRPPVSVSDLLRQLLIPRKWRHYLRTERQVLVNGQYRSFNQLIKGNEKVDLYLDQVESLQGDYPASGKMPKVVYEDENVLVIDKPKGQKTHPNQGENGTALNDCASYLGYSPYIVHRLDMLTGGLLLVAKNPAVVPILNQQLTSKTLRRDYLATVNLNKEIPDQGTIDLPIGQDPADQRKRQVRADGLRAVSHFQVLEKDEVKKKAKLLVTLETGRTHQIRVHLSASGWPIVGDPLYNPNFAGEDLALTGWQLTFVKPYSFNQVAVRLDKK"]}}, {"location": "[1331055:1331967](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.2.13"], "codon_start": ["1"], "gene": ["fba"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA12"], "locus_tag": ["MAAAAKME_14060"], "product": ["Fructose-bisphosphate aldolase"], "transl_table": ["11"], "translation": ["MAYFVNGNDIFKKARKEHYAVGAYNTNNLEWTRALLRGAEETRTPLLIQVSTGAAKYMGGYKLVKDLVEDSMDAMNISVPVILNLDHGDYDSAIECIKLGYSSVMFDGHALPTEENLAKTKEIIKLAHERGISVEAEIGKIGENQGAGELASVEDAKAFVAAGVDKLACGIGNIHGVYPEGWSGLNFDRLKEIAEAVPETPLVLHGGSGIPQDQIEKAISLGISKININTEFQLAFQEATRKYIEEGKDQDKSKKGYDPRKLLLPGTEAITDSMKEMISWMGTPSIDDKEADASFDRSSLNEE"]}}, {"location": "[1332092:1332605](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1376"], "gene": ["yciB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C0SP99"], "locus_tag": ["MAAAAKME_14070"], "product": ["Putative L,D-transpeptidase YciB"], "transl_table": ["11"], "translation": ["MTGHYYLYSSETKRKYPDLRKYKDVWIRVSILGARVYVMSGKKVIYTMYASPGAIKKNGESRTPVGNYRIQEEAGEVFYNNDGVGARYCVSYDQHGVYLFHSVPINNFNSGVKAGKYHYGYKGGAHLTTLGKKPDSHGCVRLSVNDAKWIYEQRLNGGLPVGSKVVLKMH"]}}, {"location": "[1333159:1333507](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALGAIFILLAGLLLAHNLIEDYRAGSSAKAIVRTIEQAPKTAKAKKSGKDAIKVNGTACSGYLNFPTLNLTLPVASKWRFSQLEVSPATYTGTAKDRDWIVAGHNFVNHFGRLN"]}}, {"location": "[1333921:1334314](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MACFLKRKLLGQLAVLFSLFLAITAVNPVQAADTGSLTVQMRDQETGKAISGGNLVVYQVAKLDSAKKFQYTSDFSKMSQDIAGMSQNEIMTVDFARSLANYVSSKSLSAQMAEISSSGDASISLESNAV"]}}, {"location": "[1334846:1335257](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKYTTHLVKEYDAICIEDLDVKGMLMSHVASKGVHRALFGRFRSYLEYKCKSAGVKLVIANRFYPSTQRCAACGNIKKDDEKITLSCNKKHGTKHNEYVCYNKKCPNYGKVVVRDMNAMMNLTFLIDHPRYNKAL"]}}, {"location": "[1335261:1335747](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQGVVLAKEGNHGKLTLPVPAPYKGEWHSIRFSEIPKNAEFGTISFYREHGHYYMAVPYKYETPPYIHKHTGKKTGIDVNVSHFNDAEGEHYFLHKGNNGAVKLARVYENIKHQQRIMARKLKENGQIRLPGSAQKALKKLSKSENQASEALRACSPHAG"]}}, {"location": "[1335930:1336188](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MATKRTHVYRLYPDATMAHVLDQWCDYRRYCYNKALELWNATYSEYRMLVSPEILAEFKKPKEERQFTEEQNLFISRYYPTAALI"]}}, {"location": "[1336384:1336609](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYRIELLIVAVLQDDIYNATRYTSHDEAVTDRGTGTHYALASELYRELTDKSQQSLTDGDKTYVLDQELLISNK"]}}, {"location": "[1336709:1338257](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSKYLTLLSVAALTLLTSGLGSQAVLADTDTAQTTNTSTNTTTDTSKTSTALNHQEAKGQKLTTPVGTLPNAQDAISNKAVLKRVHGYSWKTTPDVSAAGSQKATVVITYTDGTTSEVEVDLEVTGTGCASQNSPVAKTGLTVKVGKSLTARSAISNLSSLRNVASVTWKQAPSTAKAGTVKGTVLVTYTDKSTDTVDVTVKVSSVVTTKKSVKKSKKKQYVTKTRKIILDRPGKNKTITQKVKLSRTVTTTTTTTKTYTDGKLTKTSKKAKKSYGKWSKGTWKSYKVPAISGYKRSTTKVKAKTVTSKTKNITVKVSYKRVLHKPANAPYYDPADMRAKTGAYYFQSSEKRAYPNLAKYKNVWIRVSILGNRVYVMSGKKVIYTMYSSAGRFEMTNGKYQSDTPRGTFYLKAAYGPSFMSSDGVGARYYMAYYGSDYLFHSVPINNYGSGVYYKGYHYGYGGVGSTAHLTVQGTKPDSLGCIRLTLSDARWLYGQRTSGKLKVGTKVVIKYK"]}}, {"location": "[1338272:1339139](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.136"], "codon_start": ["1"], "db_xref": ["COG:COG0063"], "gene": ["nnrD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q833Y3"], "locus_tag": ["MAAAAKME_14150"], "product": ["ADP-dependent (S)-NAD(P)H-hydrate dehydratase"], "transl_table": ["11"], "translation": ["MAASKMKSIDEDLARQVVRPRPAESHKGNYGRVLLIGGNHQYGGAISMAAEAAVYSGAGLTTVATDPVNFAALHARLPEAAVLDYNLDLAEQISRSNVILCGPGLGLEEKAWEILEAVCQHAGSDQTIVFDASALDLLSQKPDLLRNLQAGLVILTPHQMEWQRLSGIKIADQEDQANQAALSRLFSGKMKSVILVLKAHRTRVYAFTGEIYRNSAGNPGMATGGMGDTLAGIIAAFLGQFGPKLTSVLAAVYCHSRAGDDLYQSSYLVRPTQISAYMPRLMKRLSTC"]}}, {"location": "[1339125:1340412](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.16.4"], "codon_start": ["1"], "db_xref": ["COG:COG1686"], "gene": ["dacA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P08750"], "locus_tag": ["MAAAAKME_14160"], "product": ["D-alanyl-D-alanine carboxypeptidase DacA"], "transl_table": ["11"], "translation": ["MLKKIKKALLSLAASGLLLTGISTWQAAPVAAATANYQQQDLNLDVKAAIAVDADSGQILYAKNATTPRQIASMTKLVTVYLTLQAIKQGKLSWTSTAKPTAAIAKISQNTEYSNVPLTSGHAYTIKELYRATLIESANGAALTLAQAVSGDQVTFIKKMRKLLTSWGIKDAKIYNACGLANGSLGSAAYPGVGKDVENEMSATDMAIVCQKLLKDFPEVLQTTSITSATFSSGSTQSQMTNWNWMLKGLSSYYSDLPVDGLKTGTTDKAGACFAGTVKKNGHRIITVVLGAKHANSQDPSRFVQTAKLMHYVYQNYTAITLKKGSSISGANTVKVPEGKETSSKVVLGKTVTIWAKQGSKLQTSLSKTAVSAPVKKGSKVASYKFSATSGKLPSLSGKTVTAPAVATQDNQEANFFVRLWRSIFGSK"]}}, {"location": "[1340509:1340595](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14170"], "note": ["tRNA-Leu(cag)"], "product": ["tRNA-Leu"]}}, {"location": "[1340799:1341318](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.7.1.22"], "codon_start": ["1"], "gene": ["iolD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01669"], "locus_tag": ["MAAAAKME_14180"], "product": ["3D-(3,5/4)-trihydroxycyclohexane-1,2-dione hydrolase"], "transl_table": ["11"], "translation": ["MMSEELLTLARYNMHVLTVVFTNETLGYIEAEQRDESNQPLSGVIIPDNDWAKVAEGMNMKAFTVHDKAEFQAAVEEWKKMDGPAFIDVKYTKHMAYSTELNTLDDPEFVKYYHAEALHPFSYFAEKFGLEIDAASGASGRSEDKADALQVQSTTSASSPETAPDTSSGASH"]}}, {"location": "[1341345:1341603](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0028"], "gene": ["pox5_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37063"], "locus_tag": ["MAAAAKME_14190"], "product": ["Pyruvate oxidase"], "transl_table": ["11"], "translation": ["MLRLADDHLKDEGRVRQEPIWDVINKEAADNAVFAIDVGNVNMDHVRLLNMNDKQRWTTSGLYASMGYGSPAAIAAATAMPDRGV"]}}, {"location": "[1341586:1342375](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0028"], "gene": ["pox5_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37063"], "locus_tag": ["MAAAAKME_14200"], "product": ["Pyruvate oxidase"], "transl_table": ["11"], "translation": ["MAKIKGANAVLDVMYKWGIDHLYGFPGGSLDSTMNAIYEMQDKIKFIEVRHEEAASLAASAEYKLTGKLGVCMGSAGPGAIHLMNGLYDAKYDKTPMVALVANVPTPRQDINFFQAFDEMPWFRDVAVWVHQAKTKEALPVLMDTAIRQAYAKKGPAVLVIPKDFGWQEIEDNYRVSASNHVADNYAAPTAESIEAATKLIKEAKNPVVYFGLGASAAADELKEFADKFKMPMMSSYLGKGIVEDSFKPYLGTIGRIGAKAC"]}}, {"location": "[1342606:1343470](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MREHKELRPDFVDEKNHNKKYWGPSAIQYINDHFGAEEAKAEEKTTQAEEKTTEVEGKVEAAEVVEAAKTEEKQEQASQVEDENKEETTAEEEVKEVVEEEKSAAEEVKEDDKPAGPRFIKKAPRPTTEKLAEHPQVELPFAFDDSEEAENKAEEADTEVKEEAKPAEKAEKSHEPANDQQFVVRKRTNDDKRGRGNYGKRRNNQRNGYQNQNRTNNYSKRRELFAGKMKLVTEKGTFYTDQFASLEELAEYVFSSKDGFMKVEKYNRGEFSPAYISTKSIIEFEEA"]}}, {"location": "[1343922:1344303](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "db_xref": ["COG:COG0574"], "gene": ["ppsA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23538"], "locus_tag": ["MAAAAKME_14220"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MADKFNKYVDGYSIGSNDLTMLIMGTDRNNDAVSALYDERNLAVKRAIRHLIKTAHKYGKTVSICGQAPSEYPDFTEFLVKSGIDYVSVNPDMVKETKFNVAHFEQRILLDKATGLGMQDTEDYGW"]}}, {"location": "[1344245:1344650](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "db_xref": ["COG:COG0574"], "gene": ["ppsA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23538"], "locus_tag": ["MAAAAKME_14230"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MNPRPVVLRFSDFKSSEYRNLKGGDKYEPHEPADLLGWRGASRYYDPKYIEAFKLELEAVKKVRNELGLKNLNVMIPFCRTVEEAEKVTKIMADEGLERNRDFKVFMMAEIHPTSFWLISSTSTLTATQSGQTT"]}}, {"location": "[1344683:1345145](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKGLPASPGVASGIVHVIDDPKDIGDFKEGEIQMQIPCIVGTASRGTFATRLLKPGQEVTVDAKNGVVYQGVADEVVKPKKAETAPMAAAEYFPPTATRVMMNLGDPDLAEKYATLPADGIGLMREEFLWTTYIHQHPLYLIETGHPERVVN"]}}, {"location": "[1345274:1345532](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "db_xref": ["COG:COG0574"], "gene": ["ppsA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9K0I2"], "locus_tag": ["MAAAAKME_14250"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MGEYIVQGTVPPDNFEVDKESMQIASKTINNKNIELIRLPGGGFEQRDVPEDVAKGPCLTDEEVIELAGYAKQIEKHYGCYMDME"]}}, {"location": "[1345544:1346066](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "gene": ["ppsA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q02KR1"], "locus_tag": ["MAAAAKME_14260"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MVSQRPHAGYRHFMEVNGLNEKVNALLATLKDPEDSEELHRVCSQIRKIMREAEDLAEDIGNSYDELAKMTGQNEPYVAVRSSATAEDLPDASFAGEQDTYLNVRSRKDVIRKVQDCYASLFTDRATYYRIKQKFPQEKVALSAAVQMMAFSKSAGVMFTVNVANGDDTKVMI"]}}, {"location": "[1346593:1348213](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["murJ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34674"], "locus_tag": ["MAAAAKME_14270"], "product": ["Lipid II flippase MurJ"], "transl_table": ["11"], "translation": ["MAKNKSQTNSQAQLLKGSAWMTIGSILSRILGAIYIIPWYAWMGKYGNLANSLTAKSYNIYSMFIIISTAGIPGAIAKQIAKYNALNEYGVGRKLFRHGLALMGVFGIISAACMYFLALPLSGFNPQEVPVIRCLALAVLIIPILSILRGYFQGFNDMMPSAISQFVEQLARVIWMLLTAYVIMRVQHGNYVDAVTQSNLAAAIGAVFGIGLLVIFYLRQKRTVDPLIAQSNNQVQVSTNSLLFEIIQQSIPFIIIDSGINIFQLVDQYTFHPMIASFMHVPYDAIEIWYALFGLNANKLIMIVVSLSTAMAVTAIPLLSGAHARRDYRDISRQIGNTLELFLFVLLPASLGMAAISDPLYTIFYGYDRLGAHVLYLSSFTAISLGMFTVLMAILQGLDENMYAIRYLIFGLVIKAIVQYPMIRLFKVYGPLLATNLGLLTVIAMSLKHLSVKYRWRVDRIMRRFIGIASFSIVMFAAVFVAVKLGGLFLSPYQRLSAMLLSGLAVAVGVLVYGVLSLKTGLAENILGSRVTRIMQKFR"]}}, {"location": "[1348307:1350722](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.4"], "codon_start": ["1"], "gene": ["leuS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:B8ZKS5"], "locus_tag": ["MAAAAKME_14280"], "product": ["Leucine--tRNA ligase"], "transl_table": ["11"], "translation": ["MYNHKVVEKKWQKYWLENKTFKTGTDPEKPKYYVLDMFPYPSGKGLHVGHPEGYTATDIMARMKRAQGYNVLHPMGWDAFGLPAEQYALQTGNDPATFTDENIAHFKKQLQALGFSYDWDREIKTTDPNYYKWTQWIFEQMYKMGLAYEAEVPVNWSPDLGTVVANEEVIDGKTERGGYPVYRRKMRQWMLKITAYADRLLDDLDDLDWPEPIKEMQRNWIGRSVGAQVTFKIKDSDKSFAVFTTRPDTLFGCSYTVLAPENELVKEITSPEQKEAVDAYIKSIESKSDLERTDLNKDKTGVFTGAYAINPVNGEEVPVWISDYVLATYGTGAVMAVPAHDERDYAFATKFDLPIKEVVEGGDISKEAFAGDGVHVNSDFLNGLHNEEAKAKMVDWLTEKGVGEKKVNYKMRDWNFSRQRYWGEPIPVIHWEDGETTLVPEDELPLRLPKESNIKPSGTPESPLANLTDWVNVVDENGRKGKRETNTMPQWAGSSWYFLRYIDPHNDKALADPELLKKWMPVDLYIGGAEHATLHLLYARFWHKVLYDLGVVPTKEPFQKLYNQGLILKNHEKMSKSRGNVVNPDDVVDEYGADSLRTYEMFMGPLNASIDWDDNGPSGVKKFLDRVWRTFVNDLDLDPIPSEKITDKNDGKLDKIYNETVKTVTEHFEELRFNTAISQMMVFMNACQKVDKIPREYAEGFVKLMAPVAPHMMEEIWHVFGHDESVQFAAWPTYDASKLVESTVEMAVTVNGKKRGNFQIAKDASREEAQAAATALTHVKEFLEGKEIKKVIVVPNKIVNIVAK"]}}, {"location": "[1351085:1351220](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKYRVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYGRR"]}}, {"location": "[1351281:1352109](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_14300"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDFGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRVESRKDFGHWECDLVLGHKTKDDDVLLTLCKRKTRQFFMIKIEDKTSAIVMKEFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVLLYIL"]}}, {"location": "[1352256:1352916](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTKENKVNYQPLLIFGGAFSLFFAFWVYLIASKNPFIKSFDTVVYNAIRNNNPVERQLAFYWTQLGNTLTITVFTVVLVLFLVYQRNYIHAVFASLTMIAANACNSIIKNIIQRQRPRMDKAVHADGFSFPSGHSVGSMTLALVLIALIVVLVKKKPVKTWLIVFCVFFTLSIGFTRMYLHVHWPSDVLGGWCEGLAFSSLASWLFFKALDKKNKLNP"]}}, {"location": "[1352970:1354419](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bmr3_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96712"], "locus_tag": ["MAAAAKME_14320"], "product": ["Multidrug resistance protein 3"], "transl_table": ["11"], "translation": ["MKKTNVKMVTLAVFITTFMSAIEGTIVSTAMPTIIADLDGLAIMSWVVSVFLLMTAVSTPIYGKLADSVGRKPVFLFGIGLFVIGSALCGFSHSMVELIIFRVLQGLGSGAIQTAGVTVLADMYDIDKRAKMLGLTSGFWGLASVIAPLLGGFIVQKLSWHWVFMINVPIGLLAFLLVAFYLHEDFAKNKLQIDLKGSFSLVIFLLSLMLLLQGLEKGFNWTLLLLAAIMLVSLWAFTKVEKTAADPIIPFSILKDKEFLAVNILQLLVSGVVIGFEFYIPTWLQGINGVSASIAGFAITPSSLLWVCGSFLAGDLMGRCRTQKYFDASLFLLIGADLAFILIPTYTPFWVFCLIAVFNGIGFGSIATASQVRAQMVVDKSQVGVATSFNTLMKYLGQTVMMVFYGMTFNVVVASGLKKQPSLTSEMMNKIVSPVQAKSLDPAVLAPLREILHSSMRGIYIVSLIALLLSLVFNHIYRQKKD"]}}, {"location": "[1354481:1355678](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.6"], "codon_start": ["1"], "gene": ["metK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66767"], "locus_tag": ["MAAAAKME_14330"], "product": ["S-adenosylmethionine synthase"], "transl_table": ["11"], "translation": ["MEKHLFTSESVSEGHPDKVADQISDAILDAVLAQDPQAHVACETSVTTGLVLLFGEISTTANVDYQQVARKTIREIGYNDPDLGFDADNCAVLVALDKQSPDIAGGVDEALEVRGEDDSDELDQIGAGDQGLMFGFAINETPELMPLPISLAHRLMRKVAQLRKEGTFPWLRPDAKAQVTVEYDDAGKPKRVDTVVISTQTSPDVTNEEIRVAMVNDVIKEVIPDKFLDDETKYLINPSGRFVIGGPKGDAGLTGRKIIVDTYGGYARHGGGAFSGKDATKVDRSASYAARYVAKNIVAAGLADRCEVQLAYAIGVAHPVSIMIDTAETGKVSDQLLTEAVRANFDLRPAGIIKMLDLRRPIYKQTAAYGHFGRTDVDLPWEKTDKAEALQAFVNGHK"]}}, {"location": "[1355838:1355913](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14340"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1355915:1355987](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14350"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1356124:1356200](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14360"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1356204:1356297](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14370"], "note": ["tRNA-Ser(gga)"], "product": ["tRNA-Ser"]}}, {"location": "[1356303:1356378](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14380"], "note": ["tRNA-Asn(gtt)"], "product": ["tRNA-Asn"]}}, {"location": "[1356388:1356498](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_14390"], "product": ["5S ribosomal RNA"]}}, {"location": "[1356574:1359478](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_14400"], "product": ["23S ribosomal RNA"]}}, {"location": "[1359607:1359680](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14410"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[1359748:1359824](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14420"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1359813:1359906](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNDKNLGL"]}}, {"location": "[1359936:1361498](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_14440"], "product": ["16S ribosomal RNA"]}}, {"location": "[1360709:1361234](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1361993:1362977](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.18.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG0492"], "gene": ["yumC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05268"], "locus_tag": ["MAAAAKME_14460"], "product": ["Ferredoxin--NADP reductase 2"], "transl_table": ["11"], "translation": ["MVLVYFRKEISLIKQYDLAVIGAGPVGLFAAYFAHLHGLKTVILESLNEPGGQPEMLYPFKKILDIPVFNEITAADLTKRLLANLTDQDLVTGHKVSQLEKTDEFVIDGEYQVRSIIVATGNGAFKAKKFPLKATPEAEDHIHYFFKNPDLFAGQKIGIFGGGDTALDWAQELSQIADVTLVHRRDQFRGMESSVENLKADQKVTLKTPYLPKSMQVEKGQLEISLKMVGGDEVTQETFDQILVAYGFRADNRFVSKWGVDLDQGLIAVDRSMQTSVPGIYAIGDSCGYPGRVPVIGIGFGEAQIAVNAIMQDLFPEKSLTIHSTSI"]}}, {"location": "[1363011:1363671](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0586"], "gene": ["dedA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0ABP6"], "locus_tag": ["MAAAAKME_14470"], "product": ["Protein DedA"], "transl_table": ["11"], "translation": ["MPLIDFILHIDDHLVTIVNNFGAGTYWIIFAIIFIETGLVIFPFLPGDSLIFAAAAMAANPKYGLNVWLLYIVAAAAAIIGDSINYEIGKWSVTSGAKHSWFNKLINENDRLAAEKFFERHGSITIVIGRFIPFIRTFVPFISGGSKMHYQTFVIYNILGGLLWTALFTSIGYFFGNFPVVKGHFSLIVIGIILVSVVPILVVALKKKLTMRREQHFND"]}}, {"location": "[1363742:1364348](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKFLSKLGQPLFHFFFAVSSAVVGAIVVSWPLLLLFTLLEKTYQTVNLTVGQVMSNYNQLLLYLVWPGQTKLQMSNLPTSALAAAHFADVKNLFILAELVFLLCLALSSYFRNYKKPLKLTQTQALLLMLLPIVVMPFALTDFGSFFRVFHTFFFRNDNWLFDPATDPVINVLTEGFFASCFAVGGAIYELYLARYLLKK"]}}, {"location": "[1364344:1365115](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG0647"], "gene": ["yutF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32125"], "locus_tag": ["MAAAAKME_14490"], "product": ["Acid sugar phosphatase"], "transl_table": ["11"], "translation": ["MKDYRLFLIDLDGTIYRGKDTIESGVRFVKRLDEAGLDYLFLTNNTTRTPQMVADKLAGHGVKTDVSKIYTPSMATASYILEKEAKRPIGVYIIGQIGLWKEILDRPEFYYDEENPDYVIVGMDTDLTYHKLMVATRCIHRGAVFIGTNSDQNLPVGKELRPGNGSICAALEVASGQKPLFIGKPEAIIVNRALDLAGVKAEEALIVGDNYPTDIMAGINSGVDTLLTLTGVTQKADLAGLTPPTYLVNDLDEFSL"]}}, {"location": "[1365111:1365657](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKEQKEPKKEQKTEAAEAKPLHPLAEVVVAGEKVVINQREYRLLVNQRDALDREVLKQKYDPYLDQYDYLVGDVSSDHLRLRGFYNDYVKTSIDRKKSTIVDYLTEYCNPGAPYFILESLQPSRKPWPTQRRRPARKRPKNKAAFSERKVKGGRPKKGSYAESCKKNRRHQAFVIRKKKP"]}}, {"location": "[1365604:1367035](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METLRILHTNDLHSHFEHFPKIRRYLKQVQETAAADQVLTFDAGDFMDRSHPLSDATEGQANIRLMNDFHYDAITIGNNEGISNPHAVLERLFDHANFPVLLSNLREEDESWPAWANDYKIIKTKKGTRLALVGLTAAYPMTYGPNHWQIKMLGETMDRVLPEIAGQYDCLILLTHVGLRMDQWLAKHYPEIDLIVGGHSHTLLEKGVKEGRTWITQTDKWGNYVGDISLEIGDDHKIISIKPTTVPVADLPSQAGDEAEIAALYEEGQKMLQSRHVADLPEKFKDDKLAAIDVSLEAIADFAGTDLAMLSTGLFLTPFKGGLINQFDLQHALPHTMHVVRTTLLGRDLWRLVMEVEKNRHFLENYPLVGMSFRGKIFGQVYYRGIKYDPMTRNVFVNGQLLDPAEEYRIAVLDHYVLIPFFPTLAIVGENEFLFPQFLREVVGDYLGRKYPMKKEGEFIEERAERAEKRAENRGS"]}}, {"location": "[1367045:1367378](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14520"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDHLYEQFDLIEEITRNDGSQYYEISNIDQNGFAELAVNNGLIKSVRILVINIPRTKALETYEQYINKAYQLHTLMNEEDWENPQWVEWDKPKGPVRDAYEMVLKANKIG"]}}, {"location": "[1367484:1368486](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1609"], "gene": ["ccpA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46828"], "locus_tag": ["MAAAAKME_14530"], "product": ["Catabolite control protein A"], "transl_table": ["11"], "translation": ["MNKQDVTIYDVAREAKVSMATVSRVVNGNNNVRKETRDRVMEVIKRLHYQPNAVAQGLASKRTTTVGLIVPDLTNLYFAELSKGIDDIAVLYKYNIIISSVENRLMKEDAVIQGLLNKQVDGVIYMSNKLSEEAAEAFKRTDTPVVLAGTVSDNLEFPSANIDYKKADTEALNLLLNDGKKKLALIVGDKEAPINRNHRIPAFEKFVADNELEGCEIFDNIKDYSDGYNLYPELAKKGINGVIITKDVSSVGLLNSALDRGAKVPEDFEIVTASATQIASVVRPALTTIKQPLYDLGAVAMRMLTKLMNDEGLEDKHIVLPYELIKKQSTLNK"]}}, {"location": "[1368638:1369745](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.9"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["pepQ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S6S1"], "locus_tag": ["MAAAAKME_14540"], "product": ["Xaa-Pro dipeptidase"], "transl_table": ["11"], "translation": ["MNLDKLQNWLQENGMDVAYVSSPTTINYFTGFITDPEERIFKLFAFKDAEPFLFCPALNYEEAKTSAWDGDVVGYLDSEDPWGKIAEEIKQRSKDYQNWAVEKNGLTVAHYQALHAQFPDSDFSKDLSDFIAHIRLFKTESELVKLRKAGEEADFAFQIGFEALRNGVTERAVVSQIEYQLKLQKGVMQTSFDTIVQAGKNAANPHQGPSMNTVQPNELVLFDLGTMHEGYASDSSRTVAYGEPTDKMREIYEVNRTAQQAAIDAAKPGMTASELDGVARKIITDAGYGEYFIHRLGHGIGMEVHEFPSIANGNDVVLEEGMCFSIEPGIYIPGFAGVRIEDCGVLTKDGFKPFTHTSKELKVLPVKE"]}}, {"location": "[1369809:1370055](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTTNMVLFLIYLMVTYFSFRKSDNPFVLKLRKYRGIILTILPAVFFAIFVMKEGYHDFQNVFLLLTLIGVYYLIRDLRKV"]}}, {"location": "[1370150:1370351](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.9"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["pepQ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S6S1"], "locus_tag": ["MAAAAKME_14560"], "product": ["Xaa-Pro dipeptidase"], "transl_table": ["11"], "translation": ["MEIQLFKIPNGNDVVLEEGMCFSIEPGIYIPGFAGVRIEDCGVLTKEGFKPFTHTSKELKVLPVKE"]}}, {"location": "[1370412:1370781](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKFGSFLLGAVFGAAAGVAAASLISDDKLKEVKDKIKSNPNVEDLKEKYDNGTEILKNQLASFPKNIEDDSELKDFDDIVIDDSANGAGEQDASDLDNAEKSEEGEEKPEEPSTPTSPDQE"]}}, {"location": "[1370803:1371223](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A531"], "locus_tag": ["MAAAAKME_14580"], "note": ["UPF0478 protein SA1560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTISFGALAGLIAAIAFLVLVLFTIPMLLNVSKTLKEAEKTVQLTNESMAKLTEDMDDLMKQTGGLLEKIDALLQDVNGKMETLQPVVQAAADLGQSVSDINESSKKMINKVSNAHFTRTGMITSVITSAFARHFRRKG"]}}, {"location": "[1371353:1372205](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0668"], "gene": ["ykuT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34897"], "locus_tag": ["MAAAAKME_14590"], "product": ["putative MscS family protein YkuT"], "transl_table": ["11"], "translation": ["MKNLDFKIAGISVDVDNLFTSGVTILWKLLISTLVFYLVSHFGRKIIKRYLDKHNDKLVLSKRSQTISALVNSLFHYTMVFFYVYSILTILGIPVGTLIASAGIFSLAIGLGAQGFMSDLVNGFFILSEGQYDVGDNVEIGTEAGTVTQLGLRTTQIVTTDGTLIFIPNRQISIVRNLTHGGIGLNLDLNLDANTDLKQLASLLDQADEDLLAWHDKLVSGPTQIGVVGQQGQTITYRVHFQVKPGFEGKIRQAYWQTYLQYLRVNQVKFGQEPVIINNSKKA"]}}, {"location": "[1372244:1372865](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.66"], "codon_start": ["1"], "db_xref": ["COG:COG0127"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P44598"], "locus_tag": ["MAAAAKME_14600"], "product": ["dITP/XTP pyrophosphatase"], "transl_table": ["11"], "translation": ["MTQVLLFATDNQNKVKELQEAFKQAGLDIELKSNADLDNPPYVNEKGTTFEANAKLKAHALADYSKLPTLADDSGLLVAKLNGAPGVHSARYGGEAHNDARNNAKLLAALGGVPQDERQAKFVTTLVLTMPGHEDKDLVVTGTCEGEVLAIPRGKDGFGYDPLFYVPSKGKTFAEMTTEEKNEVSHRGKAVKALIEELPAWLAQFN"]}}, {"location": "[1373103:1373499](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yslB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42955"], "locus_tag": ["MAAAAKME_14610"], "product": ["putative protein YslB"], "transl_table": ["11"], "translation": ["MSEHNEHVYFVNQLYRDFLLPTILGGDTPAILYWAGKRITRKYALSEFEDLSEFFKMAEFGNLTIVKERRSSVIFSLSGQPISDRLAAGSREFSLESGMIAEAVEQNRGRSAEAEIAIDDKKETVQITAFF"]}}, {"location": "[1373580:1373892](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0526"], "gene": ["trxA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0K6"], "locus_tag": ["MAAAAKME_14620"], "product": ["Thioredoxin"], "transl_table": ["11"], "translation": ["MVDEITDATFEEETKDGLVLVDFWATWCGPCRMQSPVIEALAEERQDVHFTKMDVDDNPETAKNFGIMSIPTLLIKKDGQVVDRLTGYTPKEKLNEILDQYAD"]}}, {"location": "[1373985:1376346](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["mutS2_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65496"], "locus_tag": ["MAAAAKME_14630"], "product": ["Endonuclease MutS2"], "transl_table": ["11"], "translation": ["MNHKILDILEYQEISSRLAEQAVTAPAKSKALNLQPASDRETVSRALSETKALVDLDRIKGQLPLTDFQDVAPSLKRLKVKADLNALELGNILLIFTLAQESSRFVEDAEENETLDLAAIETLLEDLELPDDLYRRLRTSLTYDGEVLDTASADLARLRHGRLATEAEIKEKMIAYTKGKNGQYLSEQIVTIRDDRYVIPVKQEYRYKFGGVVHDQSASGQTLFVEPAAILPLNNRLQNLLAEERQEIHRVLHELSLDAREEMETIKRVAAALSELDFLQAKAKLAKQMRASQPALSADQSFKLLGARHPLIDPDKVVANDIALGQDFDTILITGPNTGGKTITLKTAGLLQLMAQSGLFIPANEGSSVAVFDQIFADIGDEQSIEQSLSTFSSHINDIVAIMKRVSDQSLVLIDEIGAGTDPEEGASLAISILDFFRKKGAKIIVTTHYPELKLYGYNRERTTNASMEFDIKTLSPTYRLQMGIPGHSNAFAIARRLGMREDVVVGAEKLMSSDDSDINHMIDELNKQTKLATENKQKLQTSLDRAKQLEKKLQDALDIYNQRVQKQLDFALDRANEIVAKKRKKADKVIAELEEARKEGMQVKTNQLMDAKGEFNQLAKQEVNLAKNKVLQKEKKRHHVQVGDKVKVLSYGQTGTVTKQLGEHDYEVSLGRIKLKVTDRYIDKLAAGQKQQAQRRATSASRSSRARSSLDLRGQRYEEAMVNLDRYFDTILLSGLSTVTIIHGIGTGAIRQGVQQYLKRNKHVKTYSYAPANEGGTGATIVTLK"]}}, {"location": "[1376412:1376736](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SX0"], "locus_tag": ["MAAAAKME_14640"], "note": ["UPF0473 protein SP_0194"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFEVSAEDQDRQLTLIDEDGNEELFEVLFTFHSDDNDKSYILLYPAAVEDDDEIEVQAFSYDADEDGDVTSSDLHEITSDAEWDMVQGVLNTFLEDDRLSGDDSAE"]}}, {"location": "[1376738:1377167](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0816"], "gene": ["yrrK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34634"], "locus_tag": ["MAAAAKME_14650"], "product": ["Putative pre-16S rRNA nuclease"], "transl_table": ["11"], "translation": ["MRLLGLDVGSKTIGVAVSDPLGITAQSVMTIPIDEDRHNFGMRSLKKLVREYEANGFVLGLPKNMDGTAGRSVSRSKAMGERLEQKFGLPVYYDDERLTTVASERILVEEAGMHDRRQRKEVVDQMAAVLILQNYLDLQRKE"]}}, {"location": "[1377166:1377424](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q836B3"], "locus_tag": ["MAAAAKME_14660"], "note": ["UPF0297 protein EF_1202"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLDKTMHFDFNQNKGKNIRDTLEDVYKALEEKGYSPINQIVGYLLSGDPAYIPRHNDARNLILKHERDEIIEELVKSYLGKDK"]}}, {"location": "[1377489:1380123](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.7"], "codon_start": ["1"], "gene": ["alaS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67011"], "locus_tag": ["MAAAAKME_14670"], "product": ["Alanine--tRNA ligase"], "transl_table": ["11"], "translation": ["MKKLNSSEFRQMFLDFFAEHGHMVMQSASLIPKDDPTLLWINSGVATMKKYFDGSVVPKNRRITSSQKSIRTNDIENVGKTARHQTLFEMLGNFSVGDYFKEEAIPWAWEFLTSPDWLDLDKDKLYVTVYPKDTEAHRIWHEVVGLPESHIVQLEDNFWDIGEGPCGPDSEIFYDRGQENNDVPEDDPENYPGGENARYLEIWNIVFSEFNHLPDGSYVEQPHKNIDTGMGLERVLSILQDAPTNFETDLFLPIIHATEEMSAGKKYGANKADDISFKIIADHIRAISFAIGDGALPGNTGRGYVLRRLLRRAALNGRKLGIDGAFLYKLVPVVGDIMKSHYPEVSDQAEFISKVVKNEEDRFGATLEAGLTLLDDLIDKAENSEDKTISGKDAFKMFDTYGFPYELTVEAAEDKGLKVDKDGFDAEMEAQKERARKARGNLQSMGSQDETLMKIKDKSVFEYGVYEEESQLVDIIVDDKLVDKADGEKATLIFDKTPFYAERGGQVADHGDIYDQEGNLVARVVDVQHAPNDQNLHFVDVVLPLVKGQTYKLKIDRARREGLRHSHSATHLLHAALRQVLGEHTHQAGSVVEPDYLRFDFTSLDPITPRELKNVEKIVNEKIWEAIQVKTTETDPETGKKMGALALFDGKYTDKVRVVQMDDFSIEFCGGTHCDNTSQIGVFKIISEQAIGAGVRRIEAVTSKLAYEYLAGRSDILDQIQAQVKATKVDGIQSKIASLQEELRSAEKQNAAYEAQINASKAGKIFDQVKTVGDLTVIATIADVKGMNDLREIADQWKSEGKSDVLILGAKSEDKANMLISLGQKALDKGLKAGDLIKSVAAIFGGGGGGRPNMAQAGGKNPEGLQDAIDAAVSQLD"]}}, {"location": "[1380361:1381723](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0513"], "gene": ["cshB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y755"], "locus_tag": ["MAAAAKME_14680"], "product": ["DEAD-box ATP-dependent RNA helicase CshB"], "transl_table": ["11"], "translation": ["MNNIFTDTRLRSEIRQGLAKIGFTKPTPVQEKVIPAMLKGESVIVQAATGSGKTHAYLIPILNAIDEDARYVQAIVTAPSRELADQLYRVARQLRDNSGLNIAIAHLAGGSDRDRQIARFEQNEPQLVIATPGRLLDFADKKILLLDQVKNFVIDEADMTLDLGFLADVDKIAARLPKDVVMSAFSATIPVKLTNFLRKYMAKPEEIVIDNPAVIAPTIKNDLLDIGSKDRKKIVYKLLTMGQPYLALVFANTKQMVDELADYLTKQGLKVAKIHGSITERERKRTLREVRAGQYQYVVASDLAARGIDLPGVSLVINYEIPKDLEFIIHRIGRTGRNGLPGHAVTLVREEEMNRVGALEYMGVHFDFVEIKDGALAPRTHYRRRDNRTAANRQLDPHMKGVVKKIKSKRKPGYKKKIKQAIQEDNRKKRKIEARHEMRHQKHLRKRKREQKR"]}}, {"location": "[1381715:1382675](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0618"], "gene": ["nrnA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTN6"], "locus_tag": ["MAAAAKME_14690"], "product": ["putative bifunctional oligoribonuclease and PAP phosphatase NrnA"], "transl_table": ["11"], "translation": ["MNTFDEIFSKIKQYPTIILHRHTNPDPDAIGSQAALAKSLRLQFPDKKILCTGENDVGDLDWINTMDEVKDEDYQGALVITTDTANTPRISDQRYRLGDYLIKIDHHPDVDPYADMSYVDSKAAAACEIIADFIEAEGLPLTQEIALALYAGIVGDTGRFMYDATSAHTFEVVSRLMETGIDISQIARNESEVTFQQAKLQSLALEKMQLDESGLVAIAVISQADLKALGVTQPQASVTVSTPGRIKGILTWLVIVEKEDGTYRVHYRSKGPHINKLAEAHDGGGHELASGATAHDQVEIDQIFQELVEVTKKYKEDHE"]}}, {"location": "[1382737:1383853](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG0389"], "gene": ["dinB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47155"], "locus_tag": ["MAAAAKME_14700"], "product": ["DNA polymerase IV"], "transl_table": ["11"], "translation": ["MADIDLLPRNDFSRRIIHLDMDAFYASVEMRDRPELANKAVVIAQDPRKTGGHGVIATANYRARKYGVGSAMAAAQAVKLIPAEELVFVEPDFAKYHRVSGQVHGLMHELTDQIESVALDEAYMDVTRSKIPGKSALELASYLQEQIFRQLHLTSSFGVSYNKFLAKMGSEYAKPFGRTYLAPDRVQDFLDRQEIKRFPGIGKKTQERLKEAGVLTGRDIRNYGLSRLLKDYKKSGYYMALHAYGIDLSPVQASRQRKSLGKERTFEPVIYDPDRADAYLKDFSQTVAAELKGRNLLARVVVLKVRDRNFKTITRRQQIQPTSDPEVFYQLAKELLAREPEFLAEGIRLLGLSAGELEEKHYQEISLFADE"]}}, {"location": "[1383852:1385301](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.363"], "codon_start": ["1"], "gene": ["zwf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P11411"], "locus_tag": ["MAAAAKME_14710"], "product": ["Glucose-6-phosphate 1-dehydrogenase"], "transl_table": ["11"], "translation": ["MNNIPTVMILFGGSGDLAHRKIYPALFNLYRRNVIHDNFAVIGTARRPWSHEYLREQVAQAVHESWEEVDEAQLTEFASHFYYQSHDVTNVEHYVTLKQLAQELDERYECGGNRIFYMAMAPSFFGTITEHIADQHLTGTGFNRLVVEKPFGTDLASAEVLNQQIRNSFAEDQVFRIDHYLGKEMVQNILPLRFGNSLFKRIWNADAVKNVQVTLAERLGVEARGGYYNNSGALRDMVQNHIMQIITLLAMPEPKDLSDKAIHAAKEDLLASLVIPDEKAVSENIIRGQYLGTETTFEYVKEPNVAEDSKTETYVAGRLEFSKGPLAGVPVYFRTGKEMREKKTRVDVVFKDEAGLYGDKAKTNVLTIEIDPVNQVYFRLNGKIVAGGGLRLERFRYRYSEDEQAEVPDGYERLIHDVFVNDSTNFTKWEELKQYWRFVDAVEAAWQKQNAAGEKPVKYRPYGMGPDTSKIFADPEDGWIYK"]}}, {"location": "[1385393:1385789](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTFALAAANSGAGSNIFMLVMLAVLFGFTYFTMIKPQKKQQQQRQEMMNQLKKGDSVEMVDGLRGKIDSINDADKTIVLDADGIYLTFSRLAVRTVLKQADASEAEAAKPAEEKAEAAKTEEAEDKDSQE"]}}, {"location": "[1385877:1386888](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG2255"], "gene": ["ruvB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SR6"], "locus_tag": ["MAAAAKME_14730"], "product": ["Holliday junction ATP-dependent DNA helicase RuvB"], "transl_table": ["11"], "translation": ["MTEEHLTSQEAAEGEEAVELSLRPQLLSQYIGQGHVKKDMEVYIQAARQRDEALDHVLLYGPPGLGKTTLAFVIANELGVNLKSTSGPAIERAGDLVALLTDLEPGDVLFIDEIHRLAKPVEEVLYSAMEDFYIDIVVGEGQTTHAIHLPLPPFTLIGATTLAGQLSAPLRDRFGIVEHMQYYQVEDLEKIILRSSEVFHTKISPQAAHELARRSRGTPRVANRLLKRVRDFAEVKGEKEISLETTAMALKQLQVDSAGLDQTDRKLLRTMILSYGGGPVGIRTLASNIGEDRETIESLYEPYLLQNGFIVMTPRGRVVTQKAYQQLNLPLPGEEE"]}}, {"location": "[1386901:1387495](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["ruvA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00031"], "locus_tag": ["MAAAAKME_14740"], "product": ["Holliday junction ATP-dependent DNA helicase RuvA"], "transl_table": ["11"], "translation": ["MYEYFEGTITVVNPAYVVIEVAGIGYRILTPTPYAYKDGDKARIYVEQVVRENGMTLYGFKSQQDKVLFNKLNEVSGIGPKSALAIMAAEDNGALASAIESGEVSYLTRFPGIGKKTASQIVLDLRGKMGNYVAENLFTEDEPVKSVFPALEDALLALGALGYSQKEVDRIKPKLKKLPEMSADEYIKQGLGFLLKK"]}}, {"location": "[1387504:1389466](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mutL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65492"], "locus_tag": ["MAAAAKME_14750"], "product": ["DNA mismatch repair protein MutL"], "transl_table": ["11"], "translation": ["MAKIHELSENLTNQIAAGEVIERPASVVKELVENAIDAQASRIRVEVQHSGLKQISVQDNGSGIAPDQVDLAFMRHATSKIQDEHDLFNIATLGFRGEALASIAAVAHVEILTSTGGQTATRAAFAGGVKKFQEDAGSAKGTKITVGDIFYNTPARLKYLKSPKTELLKIVDIVNRIALGHPEISLTLASDGKVLLRTPGNGNLKQDVANIYGRKVAEKMLTVENEDPDFTLYGLVSEANLTRSSRNFISILLNGRYIKNYQLSSALLDGYGNKLGGKYPIAVLAIEADPLLVDVNVHPTKEEVRLSKEKELSRLITSAVTEALMDEDEASPLFQLTPFKDKTQLDQLEFNLKPNVVDTRRPDDFQLEVSQVAEPEGKTDITNKKETETKEKAEKKENKQEEKEEKTSAPEYVDLNQVREDDQYVLTKSWDQHVKEQTALPPFAGGEEAASPVTSKADQLLRQHLPALRLLGQMGGYLLAEHEGDLYLIDQVAARRRLEYDQILASLEKDENYQQGLLEPLVFDFSVYDYQKLKDQLPLLRQLGLEMEDFGQNTLLMHSYPTWLKGEVTVQVRELLDQLLSSRENDGKSLLKLVAAKAAESNVSRRVNLTGAEAADLLLRLQTASDPYRDASGQLAVVRLSQNDLSKLFKKGK"]}}, {"location": "[1389465:1392036](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0249"], "gene": ["mutS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A1Y0"], "locus_tag": ["MAAAAKME_14760"], "product": ["DNA mismatch repair protein MutS"], "transl_table": ["11"], "translation": ["MPRKATTPMMEQYYQIKDQYPDAFLFYRVGDFYELYEDDAIKGSQILELTLTHRSNKSENPIPMAGVPHMAVDSYVNTLVEKGYKVAICEQLEDPKKAKGMVKRGIIQLVTPGTKMAQGPDDSQESNYLTSVVEKAGGYGLAYSDLSTGEIFVTHVKHYAEVVNELLSLRTREVVFAGNLSASDRDRLQKANITVSEPAELEGEHAEISYVQQKLTDSMEKAAVRQLVVYLLATQKRSLAHLQVAESFEIGQYLQMANTVQRNLELTQSATTGRKQGSLFWVLDKTTTAMGGRLLKQWLSRPLLSLDRIKQRQQMVQALLDDYFTRENIVDSLKGVYDLERLSGRVAFGNVNPRELLQLAKSLEATKLIIQTLVESGNPDLEKYGQGIDPQSELAESITNCLVDQPPISAKDGGIIRAGVSEDLDKYREAMNGGKKWLAQMEMEERQRTGIDNLKIGYNRVFGYFIQVSKGNVAKVPQDRYTRKQTLTNADRYITPELKEHENLILEAESRSTDLEYELFSQLREAVKAHIPDLQELGRQLAALDVFVAFAQDAEEKNYCRPSFSSKNEIAVKNGRHPVVGAVLPAGSYIPNDLVMDEDTSIYLITGPNMSGKSTYMRQLALIAIMAQIGSFVPADSAKLPVFDQVFTRIGAADDLYSGKSTFMVEMSEANEALQHASSRSLVLFDEIGRGTATYDGMALAGAIIKYLHDKVGAKTLFATHYHELTELDETLLHLKNIHVGATEENGKLIFLHKILPGPADQSYGIHVAKLAGLPRVVLREASSMLKRLEAEGAREINPSRQQLDLFSPVEVVEENPLKAEQEELLDEISQVNLNEKTPLEVMQLVADWQQALKEE"]}}, {"location": "[1392353:1393967](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0459"], "gene": ["groL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A335"], "locus_tag": ["MAAAAKME_14770"], "product": ["60 kDa chaperonin"], "transl_table": ["11"], "translation": ["MAKDIKFSEDARRSLLNGVNKLANTVKTTLGPKGRNVVLEQSYGAPTITNDGVTIAKAIELEDHYENIGAKLVAEAASKTNDIAGDGTTTATVLTQAIVQEGMKNVVAGANPVGIRRGIEKATKAAVDQLHKNSHKVSSRDQIAQVASISSASKEIGDLIAEAMEKVGKDGVITIEDSRGIETELSVVEGMQFDRGYLSQYMVTDNDKMEADLENPYILITDKKISNIQDILPMLQEIVQQGRSLLIIADDVTGEALPTLVLNKIRGTFNVVAVKAPGFGDRRKEQLADIAALTGGTVISEDLGLELKDTQLSQLGQARRVTITKDSTTIVDGSGAKEAIQERVDTIRKQIEDTSSDFDKKKLQERLAKLTGGVAVIHVGAATETELKERRYRVEDALNATRAAVDEGYVAGGGTALVNVEEAVKATKGDTDDEQTGINIVARALTAPVRQIAENAGQEGSVVVDHLRKVDPEVGYNAAEDKYVNMIDEGIIDPTQVTRSALQNAASIAGLLLTTEAVVAEIPEDKPEAAPAQPGMM"]}}, {"location": "[1393993:1394278](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0234"], "gene": ["groS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O50304"], "locus_tag": ["MAAAAKME_14780"], "product": ["10 kDa chaperonin"], "transl_table": ["11"], "translation": ["MLQPIGDRVIVEVKEVEEQTVGGIVLASNAKEKPTQGKVVAVGGGLYAEDGSKLPMTVQEGDEVLYDKYSGTKVKYEDKEYLVLHEKDILAIVK"]}}, {"location": "[1394433:1395120](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2344"], "gene": ["rex"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05521"], "locus_tag": ["MAAAAKME_14790"], "product": ["Redox-sensing transcriptional repressor Rex"], "transl_table": ["11"], "translation": ["MNNKFRIPKATARRLPLYYRYLLLLNDEGKDKVSSTELAEAVQVDSASIRRDFSYFGALGKRGYGYDVKNLLSFFKKILNQDTLTNVALVGVGNLGHALLNYNFKRSNNIRISCAFDINPEITGKITQGVPVYSMDEMKQQIADQQIRIAILTVPQATAQNTADEMIEAGIKGIMNFTPIRLSAPNGVRIQNVDLATELQTLIYFLDSDELIKKQLEERKKAMNNTNK"]}}, {"location": "[1395424:1397317](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0488"], "gene": ["yheS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63389"], "locus_tag": ["MAAAAKME_14800"], "product": ["putative ABC transporter ATP-binding protein YheS"], "transl_table": ["11"], "translation": ["MEQRFGAAPIFSKVNFSIENNARIGLVGPNGAGKTTLLKIMTGRQEASQGEFTVNKGIELGYIAQEHDFDEEKSIWEEMLTVFQPLIDQGQQLEKLQYAIADHPEDEDLLRRLDQAQYNFEQAGGYTYQAEIKSMLNGFNFPEATWNKQIASLSGGEKTRLSFVKLLLKKPPLLLLDEPTNYLDLDTLDWLEAFLKNYPGAILTVSHDQYFLDHLATQIFELQHGELTVFKGNYSQYLAQRELRDQQQEAAYEKQQEEIKREEEFIQKNIVRASTTKQAQSRRKALEKMELVDPPKHKSKVRIKFDSARPSGKEVLILKDLAVGYPDKTMLKDISFQINKGDRVAIIGQNGIGKSTLLKTVMKQLPVKSGAIKYGASLDIGYYDQELQGIDYSKTVIDTIWDRHKDMNEKDIRSILASFLFTAKDIDKKVSQLSGGQRARLTLTVLSMEHNNFLLMDEPTNHLDLDAKEVLEKALADYDGTLLFVSHDRYFINELANKIVVAKDGQAKIYEGNYTYYLNEKAKEEAAAQETAAQEAPVVKAVSESKFSYQEQKKRDSEKRKLERQVAQAEKDLEELEAKEQEIQEAMADPAIAADFSKLGPLQEDLTAVQEKISQVSQAWEDASLALEEF"]}}, {"location": "[1397383:1398424](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.234"], "codon_start": ["1"], "db_xref": ["COG:COG0533"], "gene": ["tsaD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05518"], "locus_tag": ["MAAAAKME_14810"], "product": ["tRNA N6-adenosine threonylcarbamoyltransferase"], "transl_table": ["11"], "translation": ["MKEKKDIRILAFESSCDETSTAVVKNGSEIESLVVATQIKSHARFGGVVPEVASRHHIEVITQITREALEEAKVSWEDLDAIAVTHGPGLVGALLIGINAAKAASMATGLPLIGVDHIMGHISAAQLVEPVEYPALALQVSGGHTEIALLKDPTHFEIVGDTRDDAAGEAYDKIGRVLGVNYPAGKTIDQWAHQGKDTFGFPRAMIDEDNYDFSFSGLKSAFINTCHHADQIGEKLDKYDLAASFQAAVVDVLAEKTVRAIRQYQPKTFIMGGGVAANLGLRERMNKEIAALEKAPKVILPPLKLCGDNAAMIGAAAYNQYLAGNFADLTLDADPSMELPYAEDYK"]}}, {"location": "[1398426:1398957](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.189"], "codon_start": ["1"], "gene": ["mshD_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01698"], "locus_tag": ["MAAAAKME_14820"], "product": ["Mycothiol acetyltransferase"], "transl_table": ["11"], "translation": ["MGLFFKDDLVQFAPRAISISGHEYCLKKAEAGELARLLLLEKEVYAGRRPWDGEVFAEELRRRDSLYLLLLEGDFLVGAIGCRFSLSKAHITFLAVMPKEQGQGIGSYLVQTVLDLAKSADLKAVTLEVRVENKKAQELYRQLGFEDNFVRKNYYDNDDRPDSDGLNMICHLRKKN"]}}, {"location": "[1398961:1399684](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1214"], "gene": ["tsaB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05516"], "locus_tag": ["MAAAAKME_14830"], "product": ["tRNA threonylcarbamoyladenosine biosynthesis protein TsaB"], "transl_table": ["11"], "translation": ["MKILSISTATSDLSIALNEADHLVSEKIEENQRNHSVDLDPDIASLLAENGLSLKDIDRFAVAIGPGSYTGLRVGLTTAKMFASILNKELVGVSTLQALAQNFAGEDALIVAALDARNKNFFAGAYRGKEAVIADGHYHLSELLEQVGALPDQKVIFVGSDFRKYQEEIAAGLADKDLRLAEGEENLLHAGAIGRLAVSAPVLDPDQAVPNYLRRTQAEYDWAKKTGQEFEADSAYVEEV"]}}, {"location": "[1399701:1400232](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["folT_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q035X6"], "locus_tag": ["MAAAAKME_14840"], "product": ["Folate transporter FolT"], "transl_table": ["11"], "translation": ["MKSESKVSSKLELRELVLLAMVIAIKVVLGQFKVGDATLQVGLGFIGSVMLGYLFGPWWGFAGGALSDLVSSAIFGNLGGFFIGFTLTAALESMIYGFFLYKKPIQIWRVIASVICVTVICYIGLNTLWVSMLGGTNFMVALSSRILKEMITPWIHMVVVWFILEGLSRVKLSRKF"]}}, {"location": "[1400316:1400847](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["folT_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q035X6"], "locus_tag": ["MAAAAKME_14850"], "product": ["Folate transporter FolT"], "transl_table": ["11"], "translation": ["MKSESKVSSKLELRELVLLAMVIAIKVILGQFKVGNATLQVGLGFIGSVMLGYLFGPWWGFAGGALSDLVSSVIFGNLGGFFIGFTLTAALGPMIYGFFLYKQPIQIWRVIASVICVTVICNIGLNTLWVSMMYGINFMVALSSRILKEMITPWIQMVAVWFILEGLSRVKLSRKF"]}}, {"location": "[1400889:1401639](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRYYKDYQLEYADCGESGQLKLPRMIDLMMGSSEGQLAPTLGGASAMKERGRGWVVTQYEFEFTSLPRAGQKVRVWTEAVGYNRFLSYRDFGIEDEAGKDLVIAHSQWVLFDLKSRKLLPSDDKIAEELGAPFLAKIPRFKKLRPKDDYKDEKVYRAYYYDLDSNHHVNNAHYLDWIVDSLPRDFVNSHEPKDLAIKFDKEIKYGDEVVCQVMQETEDSAVKTCHAITRQGELMALCEVNWQKMCFNRD"]}}, {"location": "[1401635:1402499](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.198"], "codon_start": ["1"], "db_xref": ["COG:COG0313"], "gene": ["rsmI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67087"], "locus_tag": ["MAAAAKME_14870"], "product": ["Ribosomal RNA small subunit methyltransferase I"], "transl_table": ["11"], "translation": ["MQTQHSYADDQQGKLYLVPTPIGNLEDITIRAKRILEEADYIAAEDTRTSGIMLDRLGINNKMVAFHKFNSKEKAPELVKLMQEGATIAEISDAGMPVISDPGYILVQECIKSNVPVVPLPGPSAFATALIASGFDGQPFTYYGFLPRKASQQRPFLEEINASRATSIFYEAPHRLLKTLEQMVEVLPGGRQVVCARELTKIHEEFVRGSLEEVIQHFKEVDPRGEFVVLVSPNTEEKTLDWADLVKLVKEQVAQGVSKKDAIKQVAKSQGVSKNELYDRYHQEGAK"]}}, {"location": "[1402498:1402831](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4467"], "gene": ["yabA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37542"], "locus_tag": ["MAAAAKME_14880"], "product": ["Initiation-control protein YabA"], "transl_table": ["11"], "translation": ["MDPYTKLQQLQQQMERMLKSMGSLQQEVLESLKENTELKVENQLLREKLDKLTVKEHEGKSQSGMAMLKQIYQSGYHICNMYYGTHRDPSADCMFCLDILDNFGKKLVHK"]}}, {"location": "[1402845:1403718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLDLKQIGASEFRQLKQAQDRGQLSHAYLLLSSDEVEALNTAYWLICYVNCTGEKKPDGTCPACRRILAGNHPDVFLIDTEENKQSIAIDQIRPLKQELAKSPLEGDRRYFVINHAQKLTLPAANALLNLLEEPAAPVVTFLIANNGGQILPTIKSRTQIINFSQQAASSKDRLLLANGMSQEEVDQVKSSQEVDQAVKFFYQELREHDSLAIVSAHQLAGLVKKQKQGTKAWEKYVWILLKKWGEKDLEKGDCQEAANFLADLMRVDQMWQSNVGFLNNLDYLALKWQQ"]}}, {"location": "[1403717:1404044](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3870"], "gene": ["darA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37538"], "locus_tag": ["MAAAAKME_14900"], "product": ["Cyclic di-AMP receptor A"], "transl_table": ["11"], "translation": ["MKLIIAIVQSEYAKRLQSAFVDNNVGATKLASTGGFLREGNTTFLLGVEDEDVDGVLKLIEEHSQTREETINPGIHPGISFEQPIEPVNITVGGATVFVLPVDQSLHF"]}}, {"location": "[1404055:1404694](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.9"], "codon_start": ["1"], "db_xref": ["COG:COG0125"], "gene": ["tmk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97R91"], "locus_tag": ["MAAAAKME_14910"], "product": ["Thymidylate kinase"], "transl_table": ["11"], "translation": ["MQGYFITFEGPDGAGKTTVINEVVKAIQGQCKREILVTREPGGSKIAEKIRDIILDPANTEMNAKTEALLYAASRSQHVSEIINPALKRGDLVMSDRFVDSSLAYQGQGRGLGIDEVAQINAFATGHLEPDLTIFLDLDPAQGLARIAKVRSGSEDRLEQEKLAFHEEVYRGYQKVNQAHPDRVKVVDASQDLPQVVAASVKLVKSTFPELF"]}}, {"location": "[1404823:1405060](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKHSDKIKQAEDEKLMALVEKLQQEISLSKGLDNTTLDMSDDNIVAGKIFRAEYAFLYDEARYRHASYTGVTNAISQ"]}}, {"location": "[1405061:1405661](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0353"], "gene": ["recR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0CB76"], "locus_tag": ["MAAAAKME_14930"], "product": ["Recombination protein RecR"], "transl_table": ["11"], "translation": ["MQYPLPIARLIDSFMKLPGIGEKTATRLAFYAMDMPKEDVDEFAQALVDVKEKLRQCSVCGNITEQDPCAICSNPVRDRSTIMVVEEAKDVMAFENMGEYDGLYHVLHGVLSPMDGIGPEQINIKSLIVRLQKNDAAKEVILALNSTPEGESTAMYISRLIKPAGLKVTRLAAGLAVGSDIEYANLITLKRAVQGRTEL"]}}, {"location": "[1405662:1405992](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0718"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A3DHB8"], "locus_tag": ["MAAAAKME_14940"], "product": ["Nucleoid-associated protein"], "transl_table": ["11"], "translation": ["MSKRPAFPGMGGMNMQQMMKQAKKLQEQMAQEQENITTQEFTGKAADDMVVATFTGDRTLKSLFIKPEAIDPDDPDMLEDLVIDAVNKGLKQIDQATQQSLGKYTKGLM"]}}, {"location": "[1406073:1407897](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["ruvB_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00016"], "locus_tag": ["MAAAAKME_14950"], "product": ["Holliday junction ATP-dependent DNA helicase RuvB"], "transl_table": ["11"], "translation": ["MAYQALYRKWRPRTFDDVVGQEAITDTLKNSLIRGKVSHAFLFAGPRGTGKTSCAKIFAKALNCLNLQEGEPCNECSNCLAADQGAMPDIIEMDAASNNSVDEIRDLLDKVHYAPTEGKYKVYIIDEVHMLSISAFNALLKTLEEPPASVVFILATTELQKVPATIISRTQRYNFKRFSNEAMVQRMEYILGQEGVEYEDKALKVIAQVADGGMRDALSILDQLLSFEKSSVRYEDALEVTGFAAQEQVEKLLLALLNGDSQMALDLAKSAIQDGASAQNILNEIISLTVQAMLFTKTGQGEFLTDDFAQEIAQQSPDRFSQIIDQANDALGSLRFTNQQQIPLEVFLVQASQKRQNSQAGPQVASAASNPAIERQIKVLKEQVHQLTQQVQQLSQRPSQAFSPRHVFQLNQQLYTQKGGATEVAQQAAEKQQQAESLQAEITSSQEEIYAVLSQATKPGLAEARNLWDRDLPSMLEEPAKTVLGFLQPIAASDRAVLLSSQSRAWQLVTNPQEFLATLKADLDQLTKESWTIAIVDEKAWPKIRQEFIKEHASQLRAKAQPAEAQPAEEAAPEPPLPDQAPPEEAADDAIVTKAEELFGPLAQVKD"]}}, {"location": "[1408056:1408566](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.33"], "codon_start": ["1"], "db_xref": ["COG:COG0590"], "gene": ["tadA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21335"], "locus_tag": ["MAAAAKME_14960"], "product": ["tRNA-specific adenosine deaminase"], "transl_table": ["11"], "translation": ["MYSSEEKKTYMEAAFAEAEKARRQDEVPIGAVVVGPDGQIIGRGYNRRELDEDGTAHAEILAIKEACQKLDSWRLIDCNLFVTLEPCAMCAGAIINSRIKEVYFAAMDPKAGAAGSVVDLFSVEKFNHHPKVIRGLYKEQGAQLLKDFFREIRRKQKLAKKAQENCQKD"]}}, {"location": "[1408565:1409168](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.172"], "codon_start": ["1"], "db_xref": ["COG:COG2813"], "gene": ["rsmC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39406"], "locus_tag": ["MAAAAKME_14970"], "product": ["Ribosomal RNA small subunit methyltransferase C"], "transl_table": ["11"], "translation": ["MAEQYFTENPTVDHDEHHVNYHLNGINLNLTTDAGVFSKTRVDYGSGVLIEQMLDQELPGGNILDVGCGYGPIGLFAAKKWPGRQVDMVDVNERAMDLARRNAAANGAGNVNIFASDRYQEVFGQYAMIVTNPPIRAGKAIWSSILSEAKGHLTDGGILLVVIQKKQGAPSAKKLMAASLGNCEILTRDKGYYILKSVKK"]}}, {"location": "[1409169:1409700](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pyrR_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F2MMP6"], "locus_tag": ["MAAAAKME_14980"], "product": ["Bifunctional protein pyrR"], "transl_table": ["11"], "translation": ["MSKQIMDEAGIRRALTRMSYEIVERNKGTENLVLIGIKTRGWYLAQRIGDRLAKIEDSQLPVLSLDISAYRDDLSQEEKAKAIASFDTSFDLTGKTVILVDDVLYTGRTIRAALDAIMDQGRPDKIALAILIDRGHRELPIRPDFIGKNIPTAASEDVQVQVSEIDGTDAVKISEA"]}}, {"location": "[1409790:1412619](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNAFTLSCYRPDDQRVDIYYLVDDPALNDKDSLDFKKAAARRIREKNQNFKGEIYYYNLCSSAASARLAQTFGVSDAQYVNDPQAPSSFPGQFRPVCDTDQGYQEEEAPYLMGYNSSNYDLTMLAYYFTRAWQPVESGKRDRFSAVTAREMRDFNDELFIRYIGNMRLRLWQDKTMGLVAKNFQMSGRHIDVAQLNERQRRVGLKRLLGMLGWQILESDKLKPGQDYLTSPEELADLIAYNVSDVVNLKELFCHPYYQGQFILKKGLLGQYPDLIYQEDGDSYQAKIGPAFVRKDRLTIDSSSANFARRTICPYGRLKDDRAVSFLYPAASVAEKTGEKQRDILEESRDFFYKLFEDENLRKKFDRVYDYYKQFAGKNFNPSKEYREDYGDQALPVSDLSDVENEDTNLFYYQKDGQPSTCYITFSVGGLHGSEYNRDLYLKDHALWEKKQADLAYVQKLYPDPLDLRKAREVTLPDGRVEKYQTFLTAKATIKLMEQTDPADRGQFWRDFSQDEPTVFKKQGSRVRLDDRYAFTSSDLTNHEDFTSYYPNMLRRLNAFYNDRLGEDRYTAIFERKQELDKKRTDPQYSDEERRMFNIEREGTKLILNSATGAADPREGQVPSSIRMNNRIRSMRIIGQLFTYMIGQAQTYAGARIVSTNTDGLYSVLDADLNRKILAKEAAEIGVEIVPEELYLVSKDSNNRLEASPDLTKILSASGSLACRKDTSPTKSLAHPAIIDWALSRYLLEKRTDLAAPFDRDLGRQILAEAEEAFPDPAHRLRMFQNVLSANHSKERANCIFGRGDAGQLLILQRYNRVFIYQDGLPKTVHLYSAAAKKLTPAMLNKRKKSGEAVIQHDQEALSVLKANGLGNLAKGREATVQKIPNLSPDWFMHVENRAVNLLQAEEQEAILHSLDYDKYLDLVASAYEKNWRNLTTSGPVL"]}}, {"location": "[1412714:1412993](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKSKASKAYRRARRSRLLACSSGKRAFKTKFDADLFLYQEEVTFHLREINHEHWRQMPIRAYRCPYCKNYHVTSMSLERYEQLHGRTRERT"]}}, {"location": "[1413641:1413806](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKTEKAKRNKQIGTLTDKQKYEDKILEKDARIKELELELIIAKKVAARNFWP"]}}, {"location": "[1414082:1415201](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.103"], "codon_start": ["1"], "db_xref": ["COG:COG1680"], "gene": ["fmtA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HH27"], "locus_tag": ["MAAAAKME_15020"], "product": ["Teichoic acid D-alanine hydrolase"], "transl_table": ["11"], "translation": ["MFKKGKKLIVALLVLVAALAFWPEETAPDLATAADMHVFVEKLFKKKHVTGSVAIVQNGHVQVVNYGLANAKQKVKNGASQVVYPAASMQKEVTGAMIMQLMEEKKGSSSAFSQNTKISRWYPALRNAKKISVGNLLSHTSGVQIPEVEADRHINYSEDQAVNWIVTRANQLPQDKVGSYHYSDVNYVLLAGIIKKVSHKSYAWNFKKRVVQRLGLKSTYVSSQLPKNKMLAVSYAYKHGKNYQQAATLEKTRLSQLVGAGNMLTTASDYYLIQEALGTGQFLSPSAFHKLTHLKSKINQYSGGVYLKKGEKVKLAYGAIGSAHYAAYFQLTADNKNGIILLLNQRSFGKDKVKDVGYQILKKIRFATFSKT"]}}, {"location": "[1415300:1416428](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.103"], "codon_start": ["1"], "db_xref": ["COG:COG1680"], "gene": ["fmtA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HH27"], "locus_tag": ["MAAAAKME_15030"], "product": ["Teichoic acid D-alanine hydrolase"], "transl_table": ["11"], "translation": ["MNFKDFFLKKSAKTAGKLALAASLLLPALAPATVQAEATKSDVNRVMRDNHLAGAVLLVQNGSVKTVNYGYAWFGRRMKNGSYNVTYPAASLQKVVTGAMLVQIMNEKNHTKQQFSQYTKISRWYPKLKNARYVTVGNLLTHTSGYRTPGSESNRRKNLSENKAINWVIQKINGSWQYQTGSFNYNNSNYILLAGIIRKLTGHSYAYNFKHRIVQPLGLAHTSLRHDIPWTQSQEVSYAYLWQRKYQRPVSLPKSVASQIPGAGNMCTTPIEYYEIMLALQNGAILNQSDFKYLTHLKARKTTYSGGMYMKRDGKVKSAFGAIMDEHYGTYVQLTADNRNGIIMFVNERSQTEQQLKGLAFGLLQKIQPGTFSLN"]}}, {"location": "[1416584:1416857](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hup_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A3H0"], "locus_tag": ["MAAAAKME_15040"], "product": ["DNA-binding protein HU"], "transl_table": ["11"], "translation": ["MNKTELVSVVSEKTEFSKKESAQIVDALFASIEEALAKGEKVQLIGFGTFEVRERAARKGRNPQTGAEIEIPASKVPAFKPGKALKDAVK"]}}, {"location": "[1417215:1417392](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSLTSGPAMKSDLSDFVYPASLAVAKGECDRGIFVDGVGYGSALIANKINGIYAAVC"]}}, {"location": "[1417683:1417806](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSARKVITSVLAVGTTIAIAIDGYLLFLKADQASSAASTA"]}}, {"location": "[1418165:1418651](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAIITVTCLNQTVEAMTISFTVSVAVQGEASPNLTQAFTDACRKIYTELKRIEADFSAFLPDSLVSRFAEGDESILLDNAEFQEVYAAALLAKEETAGAFDPYFAGKFDPTGLVKGWAVKKIFASCLMPLAAFPEVTGLCINGGGDLQAWTRGDFRWEDRH"]}}, {"location": "[1418676:1418910](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLIAGGIGVVPLLSVIDGSPDLPTKVFYNAHTKESLIYEEKFYYWNSRDNFQSHCQVGRFKDEEIFPCLKTFPVSRF"]}}, {"location": "[1419073:1420072](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_10"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_15090"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MAHSCTRVDWLQPLLEAGQEQVLLGQEGCQLTKINYSVQKSPSTAYNLYQAGKLDGTILDAQPSKQLTKSKGYTIRKVANTQYLQFNLKKYSKFKSTNLRRGISMAINRSSLSKTLGATYKAATTLTSSGLTTVNGEDFTKLAASSEAKKYTSYNKQLAKQYFETGLKEEGLSKLFFTLLASDDDTSKKLAEFVQSQLETAFGDKTTVKVQSIPSKTKLNRVLAGNFECTLYGWIADYADPISFLDCETTGNSYNYGSWSNKEYDKLIAASKTSSGEAHMKLLAKAENILMVKPGGNSFNSSQQGLDDQEQGQGHYLQQCRRLLQLQVCLHR"]}}, {"location": "[1420192:1420693](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_11"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_15100"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MKKSKIILGGLAVMTSTLLAACGASFSKTAANQKLNWMEEAELSTIDVSKIMDDVSFNQVNQVMEGLYTLGNNAKVKNALATKATVSKDGKTWTFKIRKNAKWSNGQALTAKDFVYSWKRTVDPKTASEYSYLFSGIKNADAIVAGKKKASTLGIKPWASTSWLSA"]}}, {"location": "[1421352:1421718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0222"], "gene": ["rplL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A471"], "locus_tag": ["MAAAAKME_15110"], "product": ["50S ribosomal protein L7/L12"], "transl_table": ["11"], "translation": ["MALDTANIIEQLKGASILELNDLVHAIEEEFGVTAAAPVAAAGAAGGAEEAKSSFDVELTSAGTEKVKVIKIVKEATGASLLDAKKTVDGAPVVLKEGLSEDEANELKAKLEEVGATVTLK"]}}, {"location": "[1421770:1422280](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCB5"], "locus_tag": ["MAAAAKME_15120"], "product": ["50S ribosomal protein L10"], "transl_table": ["11"], "translation": ["MSQAIIAAKAKFVEEFAEELKSAKSIVVINYLGLTVDQVTAFRAELRESNAKMKVVKNTYLRRAAAQAGLDDLAPVFVGPSAVIYTDDEDNVTAPARIAADYAKKFDVVEIKGGALEGQVATKEQVEELAAIPGREGLLSMLLSVLQAPVRNFAYVVKAVAESKEESAE"]}}, {"location": "[1422882:1423158](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEQVKEAPAELIQTRVYELCPNKTMRRVLDEACDYRRYCWNQGLDLWNEMYKERQALKSSLASDSKKLTEEQKVLLKQSLRRVNEEFVIC"]}}, {"location": "[1423151:1424180](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISEfa4"], "locus_tag": ["MAAAAKME_15140"], "product": ["IS200/IS605 family transposase ISEfa4"], "transl_table": ["11"], "translation": ["MLVADKKYWQYTQSARILQLAISDLGKAWKNFFDKTQPSWGKPKFRSKREARQGFKSDRSKIKDGILYLEQARGSSVPKDQWRGFKLSEKPLSDEFGTVSYFKEKGRYYVAIPYKIKAEDVKLPDKTGKATAVDVNVGHFDYTGGRVNVLPKKLDRIYKKIKHYQRKLAKKQVENGEVACKIENYLKTKAKLQACYRKASNIQNDLIHKFTTELVNDYDKIVIENLSVKGMLMSHVASKGVHRSMFGKFKQILTYKCDWYGKELILANKLYPSTQRCAACGNVKKGDDKIPLYGNKKHGTKHNEYVCYNEKCPNYNKVVDRDKNAMLSLLALTEYPELNHAL"]}}, {"location": "[1424451:1424853](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSKLIDIFYFFLAGISGTLAVFSMFKDHSAASIAMDVLFLIISAYFIVRGFLDIESENKKLSKNWQILSWIAWCLLLLGVILTLTGYKLGINGLGWGGFVLFLLCSFVVPEQANDKNFHVKRRDETGFDDKN"]}}, {"location": "[1425076:1426327](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["amt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O66515"], "locus_tag": ["MAAAAKME_15160"], "product": ["Ammonia channel"], "transl_table": ["11"], "translation": ["MNTANTVFLIIAAVLVLMMTPGLAFFYGGLVSKKNVVNTMISVFIICALAIVLFVAFGYELCFNGNVAGIFGRVQHIFLSGSDLTKVVLKEQGITAASYLLFEMMFAIITPALFVGATVGRMRFNFLLVFVFFWSVLVYYPLVHMVWGTGGLLAGWGILDFAGGTVVHINAGITALVLSIFLGPRYQKQTRPYSLPWVLLGTAILWLGWYGFNAGSAFGMNQTALTACLTSTVAAAASMMTWLLLEEAFSGKASLDGICTGTLCGLVGITPGAGYETCAGALFTGILCSLASYFFISQVKGRLSFDDPLDAFGCHGISGIVGSLTVGLFASQKVDPGISTSGLFYGGSWELLGKQAAGTLFTIVFTLLMVSLITAVLKRFINMRVSARDEEVGLDLSEHGEFADCQISASQAIFGK"]}}, {"location": "[1426423:1427428](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.53"], "codon_start": ["1"], "gene": ["arnC_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01164"], "locus_tag": ["MAAAAKME_15170"], "product": ["Undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferase"], "transl_table": ["11"], "translation": ["MEKLLTLIVPCYNSAEYLNRCVDSLLPGGDRVQIILVDDGSTDETGRMLDDYQAKNLNLDLEVVHQENAGHGGAINNGLRLAKGKYVKIVDSDDWLDQEAYKEVLDYLESNPEVDLFLANYVYDKPAAGHQRVIKFPHLPVGRTFSWDEVKLRMGQYFMLHSVIYNRKVLDRAKVTLPTKVSYDDNIFVFEPMVQVQTMRYLPVNLYHYFIGRDDQSVNEKVMLKKIDQQILINKQLIVFYASQVNKRAPYAKYMKYFLEAVTGVTSVILIRGKKKEYIAKKDELWQFLKTYDLETYKSFKRRLVGHFVSRDVLPMRQMVSGAYLILQRLYSFN"]}}, {"location": "[1427590:1428286](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99W68"], "locus_tag": ["MAAAAKME_15180"], "product": ["50S ribosomal protein L1"], "transl_table": ["11"], "translation": ["MPKHGKKYVEAAKKVDSNKLYSVEDAIKLVKETSYANFDASVEVSYNLSVDPKQADQQIRGSIVLPNGTGKSVKVIVFAEGPQAEAAKAAGADEVGADDLVEKVQNGYLDFDVVIATPMMMAKVGRLGRVLGPKGLMPNPKTGTVTMDTAKAVQNVKAGQVEYRVDRQASIHTAIGKVSFTEEQLTENFRALQNAILRAKPASAKGQYIKSCAVAATFGPGIKLDPIALMA"]}}, {"location": "[1428369:1428795](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0F2"], "locus_tag": ["MAAAAKME_15190"], "product": ["50S ribosomal protein L11"], "transl_table": ["11"], "translation": ["MAKKVINVVKLQIPAGAATPAPPVGPALGQAGINIVGFTKDFNARTADQKGMIIPVVITVYEDRSFDFVTKTPPAPVLLKQAAGIQKASGEPNKNKVGSVTTAQVKEIAETKMKDLNAASIEAAMRMVEGTARSMGIEVKD"]}}, {"location": "[1428920:1429475](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["nusG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A096"], "locus_tag": ["MAAAAKME_15200"], "product": ["Transcription termination/antitermination protein NusG"], "transl_table": ["11"], "translation": ["MVESAKKQWYVLHTYSGFEDKVRSDLLSRAQSLGMQDYIFRVVVPQEPKIEDVRGKKEEVNEKVFPGYVLVEMVMTDESWFVVRNTPNVTGFVGSHGGGSKPSPLYEEEVRAILQMQEGEATEKVDYDYEVGESVMITEGAFNGMVGKIAEIQDDKKKIFLTIDMFGHATTAELDFDQVKKMED"]}}, {"location": "[1429566:1429737](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0690"], "gene": ["secE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D0VWU4"], "locus_tag": ["MAAAAKME_15210"], "product": ["Protein translocase subunit SecE"], "transl_table": ["11"], "translation": ["MIKFFKSVGQEMKLVHWPSAKENRRDTANVVVTSLFYAIFLGSLDWAFAKLIQLVL"]}}, {"location": "[1429743:1429893](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0267"], "gene": ["rpmG3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNR2"], "locus_tag": ["MAAAAKME_15220"], "product": ["50S ribosomal protein L33 3"], "transl_table": ["11"], "translation": ["MAVKKAALACSVCGSRNYSITANSNRTKRLELNKFCKHCGKKTLHKETR"]}}, {"location": "[1430067:1430388](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "gene": ["dxs_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00315"], "locus_tag": ["MAAAAKME_15230"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MNQHPEYLLNKIKSPADIKVLDLEEMKQLSSEIRHLIIEKDAAVGGHLSPDLGIVELTIAYHYVFDAPGDKIIWDVLPPDLPPQDADGPGLCLAGPGSLRQGDSLH"]}}, {"location": "[1430371:1430623](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG1154"], "gene": ["dxs_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KGU7"], "locus_tag": ["MAAAAKME_15240"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MTPYTNPDESPYDYYAVGHTSTSISLAAGMAKARDLLGGSERIMAIIGNGSLTGGMAYEGLNNAALEKGNLVIVINDNQWSAA"]}}, {"location": "[1430619:1431153](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG1154"], "gene": ["dxs_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77488"], "locus_tag": ["MAAAAKME_15250"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MTTALKKLRDSQGQDPENPFKAFGFDYRYVADGNDLESMINAFSEIRYVDHPLVLHINTLKGKGYQPAIEDEEKHHWVRPFNLSDDSSKSITEGSTPAEIAIKTVASAIDGGQENIMAITAVIPGVFGLDTFKESYPDHYLDVGIAEQDSVAFAAGFAKAGGQPVLFENSTFPAAGL"]}}, {"location": "[1431118:1431805](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "gene": ["dxs_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00315"], "locus_tag": ["MAAAAKME_15260"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MKTPPFLQRAFDQLSHDVAANNLPVVMIVAGGGIQANSKTHVGVFDQVMVSNLPNWKYLAPTSLTEEAAMINWVLKQKDGPVAIKLPVRPVPAGGAVLEGYRHIHYQKRRAGKKIAILALGDMQELGSQVAEELNAALYNPLSANILDTDCLDHLAWHYQAVITLENNILDGGFGQKVAGYLADRPVLVKAFGEKREYTDVDQSYDQILVRNQLTAEQIVASVKQLFN"]}}, {"location": "[1431907:1432183](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLAGYPTKDLHAANFSVLSIYGSKDGNAKMLQKNPQYLPNDYTKQVIKGVNHAQFGNYGLQKGDGQATISRKAQQQATAQAVRQYLLAHDK"]}}, {"location": "[1432142:1432631](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKKQKGLLALAVILAALLLAFGLYFGNYYHADKTAQQAMKSSRTVKVKQTAEGYLFDGPAKKNAIIFYPGAKVETTAYAPLLKQIASQEADVFLVAMPLHMAFFGLNKADKIRASYHYQNWYMSGHSLGAAMAAMYSADHLKDYRGLDHAGRLPNQGPARG"]}}, {"location": "[1432830:1433046](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSEIVKTALLDRSMKEVFDWSDSDTPVRDALWDYFMESNGHNTDKTEEAMLPFMSDSDDKIIAFVNENLKK"]}}, {"location": "[1433113:1433683](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sigI"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02064"], "locus_tag": ["MAAAAKME_15300"], "product": ["RNA polymerase sigma factor SigI"], "transl_table": ["11"], "translation": ["MGLTKERERLLISRIQKDDDEQALKELYYSCLPVIGGTIKQYFVELYDNQDWEQEALILCYKTAKRFDLKQGKPFVGFYKVSLHNRAINLIRRGKRKKRLAASDQVYWEDVATELEQASCLIASPPAPVLDWQDLVESLSMLELEELLLELGYKQAGEIKRQYQVNEMGLRRAKYRVKEKIKLKLRIGA"]}}, {"location": "[1433794:1434544](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A794"], "locus_tag": ["MAAAAKME_15310"], "product": ["Putative TrmH family tRNA/rRNA methyltransferase"], "transl_table": ["11"], "translation": ["MSSTNNDFVFGRHAGIDFLKTQDSEKINKVFLAEGVQEDFAREVYRYAKKKHLIIQRVPKNKLDKLTGGENHQGLVLAVASFEYADFDQLLDKLDQEEAPLLLMLDNIEDPHNLGSILRSADATGVSGVIIPKRRASGLTSVVAKTSTGAIDHVPVARVNNLVQTCQALKDRGYWIFGTAMEGDDYRKWNANGKTVLVIGNEGKGISPLLLKQMDQTLTIPMIGHVQSLNASVATGVLLYQAFNSRHPL"]}}, {"location": "[1434530:1434974](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.-"], "codon_start": ["1"], "db_xref": ["COG:COG1939"], "gene": ["mrnC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81J58"], "locus_tag": ["MAAAAKME_15320"], "product": ["Mini-ribonuclease 3"], "transl_table": ["11"], "translation": ["MNKAQKLTEKKIDPNTLSGQTLAYLGDGIYEAAIRRHLIKGGMLKPQNLQRAATHYVSAKAQAGLIAKMLDTGFLTEEEETAYRRGRNAKTHTKAKNTSLATYEMSTGFEAVFGYLDLAGEEGRVKELIAWCIDEVESEGTREYVFN"]}}, {"location": "[1434966:1436391](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.16"], "codon_start": ["1"], "db_xref": ["COG:COG0215"], "gene": ["cysS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q06752"], "locus_tag": ["MAAAAKME_15330"], "product": ["Cysteine--tRNA ligase"], "transl_table": ["11"], "translation": ["MKLFNTLTRQKEEFKPLVPGQVSMYVCGPTVYNYIHIGNARSAIAFDTIRRYFEYKGYKVNYVSNFTDVDDKMINEAGAEGTTVPELAERYIQAFLEDTRALNIEEATLHPRATHEIPAIIDFIQTLIDKGYAYEADGDVYYRTKKFADYGHLSDQNIDQLEEGASQHVNDEEQGRKEDPIDFALWKGQKAADEIAWDSPWGKGRPGWHIECSVMSTKYLGDTLDIHGGGQDLEFPHHENEIAQSEAKTGKKFVNYWLHNGFVTVGKDEEKMSKSLHNCVTVHDILKNVDPQVLRFFMASVQYRSQINYSEENLEQAANILGRFKNTLEGINYRLADATEGLPDPDLAKLVTETTAKFEAAMDDDFNVQNALTAIYEALPAVNSNANAEKADKESLRLFAKKLAAWLSVFGLDVDKLLAKEAGDDDAVIEELVAQRTEARKNKDWAKSDELRDQLKEMGVVLKDTPQGTRWSRE"]}}, {"location": "[1436532:1437099](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLLTDLKNYQPFNEQEAADVKEMIYRLETGEELFLRSNLAEHFTASAWVVNPARDKALMAYHRIYDSWAWLGGHADGDQDLLHVALKEVEEESGVKANPVTDQIYSVEILTVDGHEKKGKYVPSHLHLNVTYLLEADDSLPIRPKENENKAVAWFGLDEALEKSTEPWLVDRIYSKLNAKLKDYPAR"]}}, {"location": "[1437635:1438511](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0583"], "gene": ["cysL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39647"], "locus_tag": ["MAAAAKME_15350"], "product": ["HTH-type transcriptional regulator CysL"], "transl_table": ["11"], "translation": ["MLDFRVKTFLTVCETMNFTRAADRLHVTQPAVSQHIRYLEKEYQVKLFRYQGKKLTLTAAGEKLRQAMRQMQSDERLLKAEIKQADLPPVRFGVTMTIGEYALARPLSRFLKDHPQTNVEVVCGNTQFLTKKLDEGDLDFALVEGDPARGYASLRYQSEDFIAVCSPDLFFAKEPDQIADLFDQRLLVREPGSGTRKILEDSLGAQGQELSDFKQYVQVGNMQMITQLLLANCGVSFLYRTAVSDLLKAGKLRKLSLRDFQIRHDFTFIWEKNSLYADRHQQICAELKASR"]}}, {"location": "[1438629:1439655](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P62723"], "locus_tag": ["MAAAAKME_15360"], "note": ["UPF0324 inner membrane protein YeiH"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNWIKKNLPGILVCLAIATPAWLLGKALPVIGGAVFAILFGMVITLFWEEKKGSASGIKWTSKYILQTAVVLLGFGMDLQVVVKTGRQSLPIIICTISTSLLLAWLLHKSLNIPGKISTLIGVGSSICGGSAVAATAPVIDADDDEVAQAISVIFFFNVLAAILFPIFGKLLGFDQTSGTSFGIFAGTAINDTSSVTAAAATWDSMFHLGSQTLDKAVTVKLTRTLAIIPITLALGYFTAKKEQRGNSFSLKRAFPAFILYFVLASLITTFALANGVNANVFLPLKELSKFMIVMAMAAIGLNSNIVKLVKSGAKPLLLGASCWAGITAVSLLLQRLMGLW"]}}, {"location": "[1439736:1441239](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.17"], "codon_start": ["1"], "db_xref": ["COG:COG0008"], "gene": ["gltX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97NG1"], "locus_tag": ["MAAAAKME_15370"], "product": ["Glutamate--tRNA ligase"], "transl_table": ["11"], "translation": ["MANKKIRVRYAPSPTGHLHIGNARTALFNYLFARHNKGTLVLRIEDTDTARNVEGGAESQIENLHWLGIDWDEGPDIGGDYGPYKQSERKDIYQKYIDQLLEEGKAYYSFKTEEELEAQREEQRAMGIAPHYVYEYEGMTTDEIKQAQDEARAKGLKPVVRIHIPEGVTYEWDDIVKGHLSFESDTIGGDFVIQKRDGMPTYNFAVVIDDHLMEISHVLRGDDHISNTPKQLCVYEALGWEAPVFGHMTLIINSATGKKLSKRDESVLQFIEQYRELGFLPEAMFNFITLLGWSPVGESEIFSKREFIKQFDPARLSKSPAAFDQKKLDWVNNQYMKTADRDELLDLALHNLQEAGLVEANPAPGKMEWVRQLVNMYANQMSYTKQIVDLSKIFFTEAKYLTDEEVEEIKKDEARPAIEEFKKQLDKLDNFTAKKIMGAIMATRRETGIKGRKLFMPIRIATTRSMVGPGIGEAMELMGKDTVMKHLDLTLKQLSEAGIE"]}}, {"location": "[1441384:1442221](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIGFKQTFAAMFKEKSRTTWLSLGIEAIFILLISLYFGIRYGFGSDSAGIGIGIAATVIFYVGIWYQIDVIMAAYRVNRSQTWRQVPVTAGNFLTANVLTGLVTAVIFALANLLIFVITLLPFIFGGEMRIDSQAVATFQPYVSSISNWLLYMTLFALVSFAGGICFWLLITESASVLGDFLPLKGRTSKFAKAVILLALLALLSWGSSSILGAVIRMVSNSGFDFNFVIDNTGLHTSQTDLGLPVISWLYMLAELVYVAILWAAEYFVFKKGVEAKK"]}}, {"location": "[1442220:1442529](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "gene": ["ecfA2_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A471"], "locus_tag": ["MAAAAKME_15390"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA2"], "transl_table": ["11"], "translation": ["MKEKLIIALVFSRKAKLYLLDEPFSGVDAMSRKKIIKSMLLWKPEEATLVISDHVLDEIAPVIDEVVLIKKHSVLEQRSAEEIRAEQESIEEWYEGFYEGEE"]}}, {"location": "[1442525:1442918](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["albC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71009"], "locus_tag": ["MAAAAKME_15400"], "product": ["Putative ABC transporter ATP-binding protein AlbC"], "transl_table": ["11"], "translation": ["MKTLEIKDLSYHKNSKTILERVNLTLEAGKIVALVGANGAGKTSLMRVITGLAKQYKGSVEVCGEADEDRRKQYIAMTDSLSAFRDSRKIKDVADFYRLVYPDFDDKQFADILEFMNLNEDERLGSLSRG"]}}, {"location": "[1442919:1443288](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1725"], "gene": ["ytrA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34712"], "locus_tag": ["MAAAAKME_15410"], "product": ["HTH-type transcriptional repressor YtrA"], "transl_table": ["11"], "translation": ["MKFKDNLPIYLQIEDYIYLQIAQGKLQAGEKLPSVRALALELTVNANTVQRALREMTAKGYIFTKRGEGNFVTTDEGRLEEMKSKLLKQELAAFVSRMEKLGVERENLTGLLASYLDDTREE"]}}, {"location": "[1443683:1445270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_7"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_15420"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MAAGSILTAALALTACGGNSSSSSSNKKELNWEESAEIPTMDLSKATDSASFTQLINTMEGLYRAKSDGSQEKAMATSEKVSKDGKTYIFTLRKDNKWSNGDPVTAQDFVYSWRRTVDPKTASQYAYLFEGIKNATDIQNGKKKPETLGIKAVGKYKLVVTLDRRISYFNNLMAFGSFFPQNEKAVKKHGSKYGTASKYMVYNGPYVMSGWSGSNLSWKLKKNPYYWDKKKVKLVAVNYSVQKTPSTAYNLYQSNKLDAVSLDAEQSKQLKSVKGYALYPRGTTFYIQFNQAKNKYLQNANIRKALSMAINRESLTKVLGGSNTVAHTFTPAKLTTVNGKDYTSLISKSDEAYTYYNKKEAQKYLKQGMKELGVSKLSFKFLSDDTDGAKKSTEAMQSNIQETLPQVSIATQNLPFKTRLARTNALNFDMVVSDWGADFNDPISFLDLLTSTNAQNGGKWSNKEYDKLIAASTDSERWSDMSKAEGVLLKDVGISPLYSSTSAWIVRPEIKGLVNLRDHWDFKYAHVN"]}}, {"location": "[1445402:1445927](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "gene": ["rppH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00298"], "locus_tag": ["MAAAAKME_15430"], "product": ["RNA pyrophosphohydrolase"], "transl_table": ["11"], "translation": ["MYKVVQKETIKADRFTVIQEKVAKDGQIAPYSYVTIGFGISIIPFVDDDHVLLLKEYRHPVGSWQYEFPSGGIDGGEEPSQAARRELLEETGYEASELTELGFTYPSFGSTNEKITLFACRATKMAQPKREILEEIKMEIVSVDQLEDLIVKGEFAHGAGQAAWLKWRLLNERR"]}}, {"location": "[1445967:1447188](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKIVILAPISNNYINYFDAISGDKDNLYLIFAMERHRDNYPETLPENIKFVFLKIWNEEYIDYVISQTFGQQIDYVYAYSEEEIIFAAKLRKKYQVTLGQSLTSAEEFRNKLTMVKAAEQAHVAVPRYWPVDNVFDLIEAEKKLGFPFVLKPIAGMGSMDTFVVHDHVELERLAADKILRGYLAEEFIPWPLYHVDGFVKQGHFVYLISSKYFANTLEVKNGKSVGSVQISPTAAEQKLIRSYVTDLLKGMDTPENYLFHLEVFCDGREVKLCEIGSRLGGGRILQELEQGLGFSPIQELLKLDLGLPNKVDLDKEYKSAEIRGFVMVEPGRGILQKLPAADAVLAANPEVYDYYQYAKLGRTYNGAASSVEALAAISVCGKDSRTVEEKLNELDAWLKKAAVYS"]}}, {"location": "[1447184:1447379](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMESLEEKIPDLFTYEQNHPVGVQSQAAESIGDAFFLAQYTSKDAAASDMVSAKINKAFNEVCR"]}}, {"location": "[1447515:1447701](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKYFIWAYNPKVVGIRPSQGISFVVPETKTEAYLELERQRPELCLYRGWQAFWRSEDSKIG"]}}, {"location": "[1447697:1448555](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.24"], "codon_start": ["1"], "db_xref": ["COG:COG1209"], "gene": ["rmlA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QPF9"], "locus_tag": ["MAAAAKME_15470"], "product": ["Glucose-1-phosphate thymidylyltransferase"], "transl_table": ["11"], "translation": ["MKGVIIAAGFGKRMWPATEAYSKIFHQIYDKPTVFYNLTNLIAMGITDICIVGTPEMNRQFKKLFSDSLLLKYLTFVDEQEDDVQGTATSIKKAEKFVGTDSFALFMGDCLFVDLTNSIFNDLREEFEERGVSLTITVPVKDARAFSYFDGDYIIEKGSDPTRKNAVPGFYIFKSDVFSYIDKISKSERNEYEIVSAINLMVKDKQFINAGHKYSLVWMDTGSMDGLKNASTLIALLENTTGRIIGSPYLELLKRGILSKKEVLDNIEHRSGQYAEALKKEVSQQ"]}}, {"location": "[1448570:1449638](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTYKKFVRMLRGKWQVEELPESPLLRSDDGYFTFSPFQDTEENFDSLKSASSIFVKYQPTIRKLNALDLTNPLNLNYQTTYAVQKYQRSNQIDLIKQLIEVSREKLFPQIAASEVEITYPDILHDYFAQRKFEFKLNEVETTDRYLCELDIPGKHYYIKVRMKFKTGSINVVDFVLVDYDSSDFSSQRDSIWVENLIDLLTENKRFIFDEAKYQAEKAAVAKYTNEPRDQHVIINDVRTVLKVMSLGILPAAKGINSEVKRKIRHLYFYYVYYVNNDVDELVSVVEQIGKAENYSADIFTIFTDNLRATQKNYRTAVKTVEKKNLTREVAQSSLGLPDEYYGDYLHNWHSEYDF"]}}, {"location": "[1450482:1451685](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLNERELANTVKLVTSNGISKLGDILFDYVNSVWLSKLGNGSFWMAVYQSSETIVSVFVNFIGGILSDTKQRKSIIWICDIIAGLLCIALAVFVPSIWLLYAIIAVNIALSVLSSIRDPAYKAVFGEIVRKEQIGRVNSLLESCKQTIKVAGPVLAMVIAKFVGSKMALLLDGLTFIISGLLIRQLDILFETEPPVAKQSNFSKIKDAFKYLLAEKNILIVIVFASVINFILAGYELILPFASFAFSKNAYAFFLTAESVGGLLGAVASNLIQKELSSKYLFWIIAVAGLPLAVMSSLYQVSHWLFGPIICITLFNFCISFFNIQFMTYIQTNADMTYIGRVFSIVFTAAIIFVPLGSFFFQFVMDVKDSVDYLWLGGLLTFVAGLASVIYSLNQRRAE"]}}, {"location": "[1451969:1453091](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.9"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["pepQ_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S6S1"], "locus_tag": ["MAAAAKME_15500"], "product": ["Xaa-Pro dipeptidase"], "transl_table": ["11"], "translation": ["MKEERKLTWEEHLAALTSYLDEKGIDLAYVAEPVDIAYLTGYSSWTEERVFALLVSRTGQALLLAPAINEGEVKQTSWADRACFYQDGENPWEKAKKRMTAWPKGFWALEARAVTLSHYRAIKEVFPEANLAADISTWLARQRMIKSPAEIEKLQAAGRLADQALDLAFALLKAGQGMSESELALELDYQLKKKGMGDLSFPLIVQAGESAASISGLPSQKGVQAGDIVIFDLGIMKDGYASDVSRTVALGEISPAKWEIYETVRLAQETAARAARPGMTAGELDQVARGVIEEAGYGQYFTHRLGHGIGMQVHEPVNLEPGSKQKLEAGMCFSIEPGIYLPGVGGVRIEDCGWLGEDGFHPFTKTRKDLLLL"]}}, {"location": "[1453354:1453765](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEALYQFTDQERALYEKTPLPLLVMQVIDGEYHALLASDEYCKMVGSDRESMLEYLNHHSFGRVYPADVVRLATFSASAVKYPQCHLTYRLSIKGEYHTLFAHSKRIKTEDGTILFLVTYFDLGNDQSQQDQGTK"]}}, {"location": "[1453775:1454177](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15520"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLLTGMPNVSYFSKFGDDFLRKLLKQAGQVDVIYFDISSLHSYNDHFGFLQGNQLIKKCGKIIRASFQEGLTLRYVDNSILTITAPSQLKKLLPEIQKKVADFSLTRSRPSEPASTRSRKWNQPPAPSTRPT"]}}, {"location": "[1454137:1454368](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEPATSAVDKAYLTLRYMGDDRHKAYQVYNTSVKKPFEMQDYLMGHFEEARWQEPGKPALKASRFIPVLERSGLVY"]}}, {"location": "[1454536:1455154](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15540"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIQFDLMTQPVAVDQQQLKDTAANLRKQGFRICLDRYGGENNDLSTETLLEYNFDYLKVDVRSFNTNRQRAKIILASVINMSRLLKIVPVVKGVEDQAMLNFIRSLGIMLTQGRLLAKEMPEEELSQERDNFESVEERALFSGFNHINVLDPYLETRDRLDNNFENPRPNSIFIVQSQQAKLVYCNSAFRSWTGCAGMTKRSGNT"]}}, {"location": "[1455150:1455336](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQVKILDLKFDIHISAGYVYGQAQTPDEVYEMIREADRMLYQSKDNVQCPQPDQRRAFAL"]}}, {"location": "[1455431:1455935](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKSWSVKRTAVVAVLMAMNVALSSFSIPVPGGHLYFNDVVIVAAALLLSPSEAFVVGGVGAFLGDFLFYPAPMFVSLFSHGFEALIISYFAHKFAGEQKKVILGIFIGAAVMVTGYTLGRAFIYATPAISLVKFPFECLQAAVGAGLGYNLVYHAGIEKQLQHRLR"]}}, {"location": "[1456096:1457491](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["adhE_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P33744"], "locus_tag": ["MAAAAKME_15570"], "product": ["Aldehyde-alcohol dehydrogenase"], "transl_table": ["11"], "translation": ["MPKQSTTEVEKSVQTEDKIYHNIDILVNKSHEALAQMDDFSQEDVDKLCQVIEKVGEDNARYLAQMAVDETGRGKVEDKVTKNTYAAQTIWESMKDMKTVGVIEEDKQEGLMKIAEPIGAIAGVTPVTNPTSTVIFKAMIAMKSKNTIIFGFHPQAQKCCVETAKLIKEATVAAGAPENWIQWIEHPSLTATTALMNNPKVQIVLATGGPGMVKAAYSTGKPALGVGPGNGPSYIEKTADIEQSVNDIVLSKTFDNGMICASENSVVVDKEVYDQVKEAFLMCHCYFLKADEIKLFEEHFIDPRRGTVAGPMAGKSAVKIAEMCGVTVPADTQVIVAEYSGVGPKYPLSAEKLSPVFTLYKAENSAQAFKICTDLLNYGGRGHTAGIHTQNSKVIRKFAFAMSACRILVNSPAALGGIGGVYNNMMPSLTLGTGSYGANSVSHNITAKDLLNIKTVAMRRKPIL"]}}, {"location": "[1457919:1458747](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0619"], "gene": ["ecfT_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI03"], "locus_tag": ["MAAAAKME_15580"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MNDAVLGYTPGKTFVHRLSATTKLLLLIITSVACMATYDTRFLLIMCLLSLVLFKVSQVKWRQVSVVVNLIIIFAVLNLILVYVFQPSYGADLYGSKHVLLGSGFFALTAEETFYLFNLLLKYICAVPIAILFLLTTNPSQFASSLNQIGISYRFSYAFSLALRYIPDIQESYWAISHAQQARGNEISKKAKLADRAKGTVNIVMPLILSSLDRITVISTAMELRRFGSKKKRTWYTSQKLKASDWLSLGVAVLLVLLMLYFWHLNQGRFYNPFK"]}}, {"location": "[1458739:1460458](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ykoD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34362"], "locus_tag": ["MAAAAKME_15590"], "product": ["Putative HMP/thiamine import ATP-binding protein YkoD"], "transl_table": ["11"], "translation": ["MTSLIQFRDFSFQYDSQQESTLHNINLTIEQGEKVLLAGPSGSGKSTLGKCLNGLIPNLDKGTITGQCLIDGKDISQTGLFDLSFTTSTILQDTDAQFIGLTVGEDIAFSLENDCVPQDKMKQVVDRWAKELDLGDLLKQAPQSLSGGQKQRVALAGVLVDESPILLFDEPLANLDPASGYKTMRLIDQMQKKFGATVIIIEHRLEEVLAEEVDRIVLVDDGRILADQKPDDLLKADRLEAVGVRNPLYLDAMKTAGINLNKFEKLTPLEALPVERDAKDKLLAWQDSYQLPAEKAAVKELLTLKNVGFAYSADQKYPLKDVNAVIKEGDFISIVGQNGAGKTTLCRLICGFLQNTGEIAWQGEDMAGLSIKERADKIGYVMQDPNQMISQTMIFDEVALGLRLRKVPEDEVKERVGKVLKICGLYPFRNWPVSALSFGQKKRVTIAAILVLEPDLLILDEPTAGQDWKTYTEIMSFLQKLNAAGKTIMIITHDMHLMMEYTDRSLVFAKGRLIADTTPVALLTDEKLIEQASLRQVSLFDLAQHYGLPDPDGFARKFAAYERERLGENANE"]}}, {"location": "[1460469:1461030](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SA4"], "locus_tag": ["MAAAAKME_15600"], "note": ["UPF0397 protein SP_0482"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKDMWKLSPKNIAALGIGSAVFVIVGRFASIPSGLPNTNFELVYAFLAMIAMIYGPTVGFGVGFIGHVLLDLMMYGQTWWNWNFAAGFLGFFIGLYALRVNIDQGEFSAKEMVIFNVVQVVANAIVWFLLGSVGDMVLNSEPAAKVFAQAGLTTLMDGLTIAVLGTILLKLYAGSRVKKGSLHKD"]}}, {"location": "[1461053:1461905](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.94"], "codon_start": ["1"], "db_xref": ["COG:COG1912"], "gene": ["salL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A4X3Q0"], "locus_tag": ["MAAAAKME_15610"], "product": ["Adenosyl-chloride synthase"], "transl_table": ["11"], "translation": ["MAYNKMLVLQTDFGLVDGAVSAMHGVAHTVASDIQVSDLTHEIPPYDIWNASYRLYQTIKYWPADTVFVSVVDPGVGSARRSIAVKTKSGHYVITPDNGTLTHIYKYEGVEAVRVIDENKNRLPHSQESNTFHGRDVYAYNGALLASGQVAFEELGEDVPVDSLVTLPVIEPRLQGDTAVGTIDVLDVRFGSLWTNIPLEMVKELSIDRGDSLLVTILHQNVAVYQEQIPFVRSFAEVNLGQPLVYINSLVNIGIALNQESFAAVHHIGIGTDWQVKISKVNK"]}}, {"location": "[1462108:1463497](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["serP1_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI87"], "locus_tag": ["MAAAAKME_15620"], "product": ["Serine permease SerP1"], "transl_table": ["11"], "translation": ["MAKKHENADGTLRSLSNRHVQMIAIGGTIGTGLFLGSGSTISATGPSVILIYAFMGVFFFFMLRALGEMFYSDPNHHTFVSFITKYLGPAAGNFAGWSYWIGLLFACMAELTAVGTYFQYWFPHAPLWLVELIFLGALTLLNLTAARLFGETEFWFAMIKIIAIISMILTGVFLVATHAKTPVGYASLASLTKNFKLAPNGTYAFFTAFPMVFFSFAGIEFVTITIGEAEDPHQVIKKAVNETLLRILIFYIGTLTVIMCVVPWWSVSASSSPFVQVFQLAGFATAASVLNFVVLTSAASALNSTIFSAGRHFFQLAQEAKKGSWLKKKFAKIAPNGVPARGIAISVLFALIAPILSFSNTAIEVFSMVAGATSDIFILVYVLALLAHRKYRKSSDFMEDGFKMPFYQVTSPLTIAFFLVIFFSLFFVKANIFGASLATAWAVFFGSFCYFHQRVKDKRAGK"]}}, {"location": "[1463604:1465383](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRANLSLNKHGLPQKEILRHRKVPVVLAILVMAMFYIVGSILVLISNKDVETASLLHDARTYYIFQNTSMSAVMAGIFGIYLAFEGFRFLHVPRQVDYYESQPVSRKTRFIGITVNSLLIYSLLYLLFFLAGMLILAAGGANFLADGEIWRGFLADLFAFSAWYAIASLSMMITGNTFVAGLATIFFSCFEFGLIFLNSIFYSTLATTAGYDNHDWLAYTNPSTQVYNSNHWLGIGINLLWTVLYLALAYWAYQKRANEKAGRAVAFAWIEQMVKIIVVVYFAAIGGIIGYTMIGLNFACGIIGALIIGLITASLMEIIYKFDLAAWKHNFVQSLLLTVAGLAILAGMVWGAKRYDDWLPASKQVASVAISRDDGIYTNYYMGKKSAKGDASDYAAKYMYLPVNSDLINLVKAGSKFTQNRFHEREDSVQMRFVFRMKNGRVKTRVYDVDRKTLKKYFEPISKTKAYKQAYFQIYHDQMIMDNLDSVSFTYTNGKETIKRQDSQLYKDFRAAYKQDLAKWDYQQASLQKPIGQVAVSWTRANGKRAKIYYPVYSNYSQTIAFLKKNKLYSAKKVKLEYQQPLDFYLEDQFG"]}}, {"location": "[1465354:1466260](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1131"], "gene": ["ytrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34641"], "locus_tag": ["MAAAAKME_15640"], "product": ["ABC transporter ATP-binding protein YtrB"], "transl_table": ["11"], "translation": ["MIEIDALSKDYGQTEAIKNLNLTIEEDRVFGLIGTNGAGKSTLLRMIAGILRPTSGHITIDGLPVYDNPAAKKKFCFIPDDPYFFPNATAESMARDYAAVYQEFDQERFARLLADFRLEPKRRIHDYSKGMKRQLAILLGLCTNTKYLLLDEVFDGLDPVMRQSMKSLFAEDMDRRQLTPIIASHNLRELEDICDHIGFLHSGGLLLSEDLADMKLEIQKLQCVFKDDRDMEEVLGKLKLVDHSSRGRLHTLVVRGSRSEVEAVFDHVPMTFFEILPLTLEEIFIAEAEAVGYDTRKLILK"]}}, {"location": "[1466246:1466621](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1725"], "gene": ["ytrA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34712"], "locus_tag": ["MAAAAKME_15650"], "product": ["HTH-type transcriptional repressor YtrA"], "transl_table": ["11"], "translation": ["MDFIDYLDSRPIYQQIADRYRQLILTGVMLPDEQLPSVRKLAMELSTNPNTVQKAYAALEREGYVYSVKGRGNFVRANETLKSKQKEEMKGKMIDLIKEIQAVGLNSQELFAEAMEEAAEDDRD"]}}, {"location": "[1466781:1466943](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQRQKKQVDTCFSVTVHAGFEPAISSVTGRRDRPLLQWTKYSVLPSGNDPYGI"]}}, {"location": "[1466822:1466899](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15670"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[1466923:1466997](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15680"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1466997:1467073](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15690"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1467074:1467148](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15700"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[1467183:1467255](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15710"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1467295:1467405](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_15720"], "product": ["5S ribosomal RNA"]}}, {"location": "[1467481:1470385](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_15730"], "product": ["23S ribosomal RNA"]}}, {"location": "[1470478:1470574](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[1470604:1472165](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_15750"], "product": ["16S ribosomal RNA"]}}, {"location": "[1471376:1471901](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHATLLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1472677:1473553](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPVSINLSRADFQMMDPLTELNQAMRKNGLRWSLVRVEITESALSKDVAGLKRAIHNFRQAGYEVWMDDFGSGYSSLNYLKNFEFDEIKLDMIFMKDFDEASKKILTACVKMAKDLGIHTLAEGVETKQQLDFLQSIGCERIQGFYYSKPLPTGEFAKLVAEKGIEIENWQQSKFYQCVGLVDLASDKPTCLALDDGSLFRLLYVNEEFQKEVKRAPAVFKQIVNEWNKPESEIAKRLHAFAQKVDQGEASYFDFKQTEQYLRLSAQQIARHENYQMLLINVSDITVQYLK"]}}, {"location": "[1473589:1473841](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.52"], "codon_start": ["1"], "db_xref": ["COG:COG2199"], "gene": ["dosP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76129"], "locus_tag": ["MAAAAKME_15780"], "product": ["Oxygen sensor protein DosP"], "transl_table": ["11"], "translation": ["MQEKEELKQYLIEHLDEAIEKHYLQVYYQPVIRTLTGRLCGAEALIRWIDPVKGFLSPGDFIPLFEEMNLSYKVDRYVIQEVT"]}}, {"location": "[1474092:1475040](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVPVFYSISDDFTPYAAVSLHSLVKHADPKRDYTVTFLHQGLSRDHEKALAAYNRDNVHIKFYEMSDELLKPIQDRKENYLRGDFFAMSIFYRLFIPDLFPEYDKVVYIDSDTVLNDDIAKLYDHDLGNNLLGACTDTSIQFVEKMLRYIKEVLTLDPKEYINSGMLVMNAKAFREENFVDKFFSLLGRYHFDCIATDQDYLNEICSGRIKYLDGRWDAMPNENTAALENPGLIHYNLFFKPWRFSGIQYEDYFWTNAEETIFADELKAELAKTTDEERDTEYHKMDHMLGKLDTTLQDPHNWARVKENEQVTL"]}}, {"location": "[1475149:1476526](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "db_xref": ["COG:COG1066"], "gene": ["radA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37572"], "locus_tag": ["MAAAAKME_15800"], "product": ["DNA repair protein RadA"], "transl_table": ["11"], "translation": ["MARARTQYKCRSCGYISASYLGRCPNCGAWNQFEKESQEVRQTSTKATPSRLMASVGAKEAVKMSTVKAEKEERVLTKSSELNRVLGGGIVPGSLVLIGGDPGIGKSTLMLQIMSELAEKYKVLYVSGEESASQIKLRADRLGLGQSPMLLYPESNMEHIRDQIDDVKPDFVVIDSIQTMNEPSLDSMVGSASQVREVTAELMKIAKLDQVTVFVIGHVTKEGSIAGPKILEHMVDTVLYFEGDEHHAYRILHSVKNRFGAANEIGMFEMKTEGLAEVTNPSAVFLDERLPDSTGSAVVVSLEGTRPILGEIQALVTPTAFGYAKRTTSGLDYNRVSLLLAVLEKRGNLMLQNQDAYLSATGGIRLNEPAIDLAIAMAIASSYYDKEISATDCFVGEIGLTGEVRRVNQIQARVKEAGKVGFKRIFIPKYNMSPALQDLGIEVIPVSSVRQALHYLFS"]}}, {"location": "[1476525:1477080](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.23"], "codon_start": ["1"], "gene": ["dut"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YRG4"], "locus_tag": ["MAAAAKME_15810"], "product": ["Deoxyuridine 5'-triphosphate nucleotidohydrolase"], "transl_table": ["11"], "translation": ["MNRVRGFEVVKKYEGQGLTLPRRQTLASAGYDIEAARDITIPSIWSLNFVRIFCLIRNGHDLIESDFLQAEEVLKPILVPTGIKAYMPEDEVLILANRSSNTFKRNLSLPNGIGVIDSDYYNNPNNEGEIFVQVLNYGVRPLKIKKGERIAQGIFIKYLKTDDDQPIESQRLSGFGSTGKKGGK"]}}, {"location": "[1477186:1477474](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPEEREKVIEIKADGQLVAKSPLLLIERKSGPVWAMNQLFIAPGAPEGTLDQVMKQVEKLCQETGLKVWPLDPQVIAYCQKHGELTKIWAWKPTN"]}}, {"location": "[1477559:1478909](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.40"], "codon_start": ["1"], "db_xref": ["COG:COG3579"], "gene": ["pepC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04723"], "locus_tag": ["MAAAAKME_15830"], "product": ["Aminopeptidase C"], "transl_table": ["11"], "translation": ["MSKEISFDTIEDFTSNLSKHPAYGVAANAAQTNGIFKASQSTQSKVDLDPTFSVEIDTGSVTNQKQSGRCWMFSALNTMRHSIQKEFKLKGFELSQSYTFFWDKFEKSNFFFENVIGSADKPLGDRKVSFLFATPQSDGGQWDMLCGLIEKYGIVPKKVYPETANSENSRALDDTLNTMLRKGGLELRALVNEGKSAEEVEAHKAELLDAIFRMLATSLGLPPKSFNFEYTDDDGNYHIDKDITPQDFFKKYVGWDLENYISVINGPTADKPYNKVFSVEYLGNVVGGRQVRHLNLELSKFKDLIINQLKQGEVVWFGSDVSKGGDREAGLLDTKIYQRDQLFDYDFSMSKADRLDSGESMMNHAMVITAVDLVDDKPTKWKIENSWGDKPGFKGYFVMSDEWFDQFVYQAVLNKAFLPEDVKKAYDEGKENPIELLPWDPMGALAFDF"]}}, {"location": "[1479261:1480197](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKLFLLRGAPGSGKSSFIARHQLLPYSISGDAIRLLLANLTVYYDQKTDVLHQVIPRHVTEQTKRMKDNLVEHKMSYGETVIVDGTHIVASEIDHYKKWCEKYHYECYVVDFMQNQTLEGLLKRNQIRRQYDWVKPEVITMMYNSYKAHPELPKWVKGIKPNQMEQALQQRENNLDHYSHVIAIPDEVAEEDFPYVHISNFYFSFNDKFSEKYGTYRNVVTIGKTKEEVVDEFRLPYFAFKFHHKHFLISAYPIRNEMLDPVKKVKGTWSYTTGLYNVADFIREFPENKESHVHQFNLSNLDRTRLLYIW"]}}, {"location": "[1480309:1480771](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.59"], "codon_start": ["1"], "gene": ["fabZ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1CAM3"], "locus_tag": ["MAAAAKME_15850"], "product": ["3-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZ"], "transl_table": ["11"], "translation": ["MPVMTAQEVMDLIPNRYPICYIDRVEELEADKRIKAVKNVTINESFFQGHFPGNPVMPGVLIIETLAQVASILILKSPAFYKKTAYLGAIHQAKFRRIVRPGDVLEMEVKMLKVRAKTGSVAAVAKVNGDVVCETELVFIVGDRDGKDMQAKN"]}}, {"location": "[1480941:1481619](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "gene": ["gpmA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XB88"], "locus_tag": ["MAAAAKME_15860"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MAKLALLRHGESQANAANVYTGWNDVPLTDKGRRQAWAAGEKLKEVGDFHPTMIHTSLLSRAIETANIVAEAAGFLYLHVAKTWRLNERHYGALRGLDKDVSRKIFGKEQVLEWRRGCDAVPPAQGSPTIDRRYWGVDPQLLPRAESLHQTQLRLLPYYEDEVASRLVAGEDQLIVAHGSSLRALIKYLEDINNVDILKLEVPNAQAIVYDFDQELNIVDKMITN"]}}, {"location": "[1481631:1481817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNVHSWWVPYAILFFGIWDLITGITRLRRQKQGVKQKGLGGKAFVLLGILFIITGIWSFWL"]}}, {"location": "[1481818:1482004](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWDTHTFTLVLLVIVGLWEFARGYNSQRMGKKDSLPAKSYYLTGAGILAVAIYYAVKLWG"]}}, {"location": "[1482024:1482705](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "db_xref": ["COG:COG0588"], "gene": ["gpmA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O51602"], "locus_tag": ["MAAAAKME_15890"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MKTEVYLVRHGETLFNRLNKVQGWCDTPLTIKGIDDLKKTADALSQIHFDNMYSSDLKRAIDTVHLMKDANQVSKIGKIKKLPEFREVFYGSFEGGSIDDIWLGVSKAAGIPATTDVKKIIDTIGIYKFREVTKKADPLHLAESTEELETRMCRAIKVLRKETSGEGRVLLVSHGDFIKTLGIKYWKENDGLHDITFPDNGSVSQGILDEEGNFEIVDYNCKAEDL"]}}, {"location": "[1482764:1483205](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPFFVLFSAGLLLYSGRQKQPKQATKLGRIGAYFGLFVAGIYAGYFGAASGVLTLIFLTALSDSSFVVINAIKSVIGSLANLVALALFAFKGGVNCPVAFPLAIGLFIGGYFGQKMIKYLKPAWVRWITACFSVLLAIYLGWRAWG"]}}, {"location": "[1483750:1484332](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG0693"], "gene": ["yajL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46948"], "locus_tag": ["MAAAAKME_15910"], "product": ["Protein/nucleic acid deglycase 3"], "transl_table": ["11"], "translation": ["MPTAAIVFSDGCEEIEGLSQVDVLRRLGIPCDMVALDNLTITGGHDIRFTCDKLVDESLLDYDLVAFPGGAPNAKHLRASEKLAGLMKQRFAAGKWNAAMCASPIALSKYGFLKEAKWTSHPDFKEQVASENPASTYVDTPAVIDEDHKLVTSRGPATSWAFAYALAQVLGVDTSQLEDAMQYSYLRDHINEA"]}}, {"location": "[1484333:1484852](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEETLVRKAESRDLEDIVAIIKDAKALLKAQNSSQWQEGYPNRASIEEDLDNRQGWVLLKDGQVAAYMAATDFDPNYEVPIWAGSAPYWALHRFAIKKDFRGQGLIQLLLKKVIAFGQENGIKSFRLDTGKQNQAVQHLADKLGFVYRGIITVTNDSVDPERRAYELLFDK"]}}, {"location": "[1484912:1485971](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.20"], "codon_start": ["1"], "db_xref": ["COG:COG4948"], "gene": ["ykfB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34508"], "locus_tag": ["MAAAAKME_15930"], "product": ["L-Ala-D/L-Glu epimerase"], "transl_table": ["11"], "translation": ["MAEQLAIADLQVDIKQIPLKQPFVTALHRVDAVNAVRVTVRLANGVTGVGTCTPNEKVTGDSLSSARAVIEETIKPLVLGKNLTDWKELLNTVKTSIVHNAPAKAAVEIALYNTRANLFGLTLSQLLGGKGGSVETDYTISIGKAEQMIADAQKMVDQGFKTLKLKLGAGHLKRDIKLVEDLAYAAGPMVHLRLDMNQACDVRQTMQAAEYWHKQGLLIDFIEQPVPAWDLDSMAYLTRHSPYPIMADESVESYEDAQRVLAKNACDYINIKLMKTGGLSEAQKINDLAESRGVPTMVGSMIESIESLAAACAFYRANPNTIFADLDAIFMVDQDPDLNSYAECVGDNIVVR"]}}, {"location": "[1485972:1486182](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLDFKKIADILAPLPGKTALLIKDKTGVLYASPLAGEEFKSASLIKLLLLPGPPAGLKPDGPCPGRQDR"]}}, {"location": "[1486449:1487142](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRMTSDLTNVESLTINHLAEEAGTSLASVQRFCQKMGYSGFKEFKFQLLTYIKKQESQEAAVSSSEYLDDYHDAINRVWTANEKDAEELAEVLATSSTNFIFGIYYSELPARLLSMGMRDLGKSTYFGDNLAAGEHLFPLSDENSTAVFYSVSGISKLFGSSPLPKSISHFKHSYLVTMNPDTPLKKYFKKVIVLPGKNLAQGLPVDPQSIPVVFTERVIDIAATKYRR"]}}, {"location": "[1487287:1488700](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.-"], "codon_start": ["1"], "gene": ["pepV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P45494"], "locus_tag": ["MAAAAKME_15960"], "product": ["Beta-Ala-Xaa dipeptidase"], "transl_table": ["11"], "translation": ["MDLNFKELAEAKKDAILKDLEELIAIDSSEDLENATEEYPVGKGPVDAMTKFLSFAKRDGFDTENFANYAGRVNFGAGDKRLGIIGHMDVVPAGEGWTRDPFKMEIDEEGRIYGRGSADDKGPSLAAYYGMLLLKEAGFKPKKKIDFVLGTNEETNWVGIDYYLKHEPTPDIVFSPDAEYPIINGEQGIFTLEFSFKNDDTKGDYVLDKFKAGIATNVTPQVTRATISGPDLEAVKLAYESFLADKELDGSFEINDESADIVLIGQGAHASAPQVGKNSATFLALFLDQYAFAGRDKNFLHFLAEVEHEDFYGKKLGIFHHDDLMGDLASSPSMFDYEHAGKASLLNNVRYPQGTDPDTMIKQVMDKFSGILDVTYNGFEEPHYVPGSDPMVQTLLKVYEKQTGKPGHEVVIGGGTYGRLFERGVAFGAQPENGPMVMHAANEFMMLDDLILSIAIYAEAIYELTKDEEL"]}}, {"location": "[1488877:1489237](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["serP1_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI87"], "locus_tag": ["MAAAAKME_15970"], "product": ["Serine permease SerP1"], "transl_table": ["11"], "translation": ["MEDRSIENTDGTIRSLSNRHVQMIAIGCTIGTGLFLGAGTTISATGPSVIFIYAIMGLFFFFLLRALGEMLYFDSNSHTFVSFITRYLGEAAGRFAGWTYWIGILFACMAELTAVSTYV"]}}, {"location": "[1489291:1490266](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["serP2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI86"], "locus_tag": ["MAAAAKME_15980"], "product": ["DL-alanine permease SerP2"], "transl_table": ["11"], "translation": ["MTLLNLTAAKLFGETEFWFAMIKIIAIISLVVTGIIMVAANAKTPVGHASLSNFTGIFSLLPKGKYAFFTAFPMVFFSFAGIEFVTITIGEAKNPKKVIKKAVNETLLRILLFYIATLAVIMCVIPWGKITSGTSPFVQFFKIAGFNAVASVFNFVVLTAAASSLNYGIFSAGRHFFQLAEEAPKDSFLKKHFAKISANGVPAAGIVISVALMLIAPIMSFSSTAIEVFGTVAGATSDMYILVYVLALLAHRKYRESSDFIVAGFKMPFYKLSSPLTIAFFLIIFFSLFFIPADVFGASLAASWALLFGAGAGSAKSIEVPIRV"]}}, {"location": "[1490435:1490561](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLKRERLDQVMNMVTEQNYISVADLAKSLQVSEMTIRRDFY"]}}, {"location": "[1490757:1492125](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.3.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG1027"], "gene": ["aspA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AC38"], "locus_tag": ["MAAAAKME_16000"], "product": ["Aspartate ammonia-lyase"], "transl_table": ["11"], "translation": ["MKAASRLEADSIGSLEVPTAAYYGVQAERASRNFEITHLKMSPVFLSNLALIKKAAASVNFKIGLLTKPQADAIKTACDEVIAGKFAADFIVDPIQGGAGTSANMNMNEVIANRANELLGGKRGTYDLVHPNDQVNMAQSTNDTIPTAGKMTTILLSEKLVASLDKLEASLRIKADEFSDVIKMGRTQLQDAVPMTLGDSFAGYASMVSRLKKRLEKATMEMHEINLGATAIGTGINASQYYEDHIAGQLSKLFGFELKQADDLFDATGNLDSFVEVSGALKACAISLSKMSNDLRLLSSGPRCGFAEINLPAKQNGSSIMPGKVNPVIPEVVSQAAFLVCGHDTTITMAAEAGQLELNAFEPVVFYQLFESFTALTGAVDTLVENCITGITANKGRCKQLKEGSVGIATVLCPYLGYQLSAKIAKRALKEKRSVRELVLENHLMSEEKLDCLLG"]}}, {"location": "[1492423:1493317](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKFFVSVAAALAIGTAFAASQVRPVAASSRQAVFTLPKGYTKANMKKAYWYSNLSKSQQKKWLKNKKNAAWLKKWRKINVKGMPANTFDQSSWSESSKDNKTIVKLTNGHLNTSQSKTLATYSLRLINQARAKLGLKKWKYSKGTQKLALEISKEYVANKKTIATGHYVPGIVRATNRVGLKLPSNYNYVEDMAGFKDGSQVTMTAMKKDIYFGLKTMMFGYRYANQSKVKQLSQYTEWEHAGDLMNTQGGKYDGDWDYYGFNVSYTNGTYSLHYIGVPAHLKWAYGGAYWGSFKA"]}}, {"location": "[1493537:1494761](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_16020"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHKNKTDKLDALYLAKLQSEYPQRLAYVQSKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLEAKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKENSAHVRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1495109:1495991](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNIKSNVLKSVFAAGLALTGVAAIGLGTNGQADAATIGDSVTVDYIDGQSIATWSNYYTATVTGSVKDGSSWKVVKTARDASGEKWYKIGKRQWIMAKYTTEASTTSNSTYNANTTSTNTANSTYNANTTSTNTANSTYNANTTSTNTANSTTGTGYTTSYSSSANNYGYGSNYNYTYSANTGAANTSSYSASTTSSSTSASTSTASASTSSSTSTSSSSSEEAAKAWIASKESGGSYTASNGNYYGKYQLSLSYLNGDTSAANQEKVANSYVQSRYGSWTAAKAFWQANGWY"]}}, {"location": "[1496259:1496335](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16040"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496366:1496442](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16050"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496472:1496548](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16060"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496578:1496654](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16070"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496783:1497647](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.39"], "codon_start": ["1"], "db_xref": ["COG:COG0083"], "gene": ["thrB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y4A6"], "locus_tag": ["MAAAAKME_16080"], "product": ["Homoserine kinase"], "transl_table": ["11"], "translation": ["MKIKVPASSANLGPGFDSIGVAISLYLTIEVIGESDHWQVDHNLGDLPSGKDNMIVQAALSVKPDLTPQHLRVESDILLAHGLGSSSSAIVGGIELADQLGQLNLAPHEKIEIAAQLEGHPDNVAPTILGSLVVGCKVNGHFTAVKAPVPPFAMIAYIPAYNLKTSDARAALPKQLSFKEAVQASAVANTAVAALFAQDYEKAGELMEADLFHERYRSKLVPELEVIRNVGHEHGAVATYLSGAGPTIMSLVDPQRISDFVDAVREAGLKDEIRRLEVAPRGAFWQK"]}}, {"location": "[1497814:1499293](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.3.1"], "codon_start": ["1"], "db_xref": ["COG:COG0498"], "gene": ["thrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23669"], "locus_tag": ["MAAAAKME_16090"], "product": ["Threonine synthase"], "transl_table": ["11"], "translation": ["MIYRSTRSQGQEVTTAQAIVQGLAPDGGLFVPKEFPAPFSAAALKEIFALPYQDMAKKILALFLTDYSAEQLAEIVKGAYGQQWDDDRIAPLTDKKAGNYYLELFHGPTLAFKDVALQCLPRLMKTALENSDEHRGIVILTATSGDTGTAAMRGFQSLAKTRVIVFYPYQGVAPIQLKQMLSENSDNTVAVAVEGNFDQAQTRVKQIFNDPDMNSLLADHDLTFSSANSMNVGRLLPQVVYYFAAYKQLLDHEAIAFGDPVNFSVPTGNFGDILAGHYAQKLGLPVGRLICASNKNNVLTDFFKTGKYDKKRDFYVTNSPSMDILVSSNLERLLFDLCQNPDTVKSLMERLNTKGEYQLPEDMQKKLSGFWADYATPEEIEGEIKRVYEESGYVIDPHTAVASLAAKRFKEEDDKPTVVLSTASPYKFPETVYHAISGQTVKEKGLPALKELTDLAGPAPKAMEAFLGHSSQEIVIPADNMANEVKRQLDLD"]}}, {"location": "[1499399:1499474](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16100"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1499475:1499549](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16110"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1499699:1499788](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16120"], "note": ["tRNA-Leu(aag)"], "product": ["tRNA-Leu"]}}, {"location": "[1499901:1500432](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTELNCRLATEADLAALCQFYQDICAHQKDDQFGADWHWGIYPREKDIAEAIAQKRAVVGIKDGKIASAGILTVGNDPLYSKFAWPTPAEDNEIAVLHLYGVHPSFRRQGLSSVLLTFIRDQAKKLGCKSIRLDSMDGNVPARRLYEKNGWRFVSQETVYYDDIGDCKVDLLELAL"]}}, {"location": "[1500361:1501066](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKNRLEAFSDGVLAIIITITVLEIRAPEEASFQALKPLIPQLVIYLLSFFHMAIYWVNHHNITHALPSVNHKVIWTNMAWLFMTSLIPLATAWVGKNPLAGPPLFLYGLVLLLSSVSFLLLQHFAWQIAYDSQDLKENMGIKGCLTLAANLGIALSAFAWPILSWVFMALVMLMWFMPDQRAKEWREKMRIKNRKKSKEKIHKPGLWFFVVIRLIQAGRPCSRRCRRSRQFPG"]}}, {"location": "[1501210:1501393](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKKRVWLFILAFSLIGLLVYGAEIAYAFMKDRNKKMEYSFDEEEAEDPQEMGADYKNQE"]}}, {"location": "[1501512:1502259](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1609"], "gene": ["ccpA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46828"], "locus_tag": ["MAAAAKME_16160"], "product": ["Catabolite control protein A"], "transl_table": ["11"], "translation": ["MPSITNPFFAELVAAIEDKLEADGYKMLLCDAGQDSDKERRYLRMLEANQVDGIIAGSHNLGIEEYQRYGLPIVSFDRYLSDQVPIVTSDNYQGGCLATQALVDAGCGHVYFVGNPVKTGNPTSRRFDGYADTVAAAGLTVHTARSAFYESPAAKARELRELLTSGRKIDGVFCSDDLTAILLLKEARKLGIRVPEDLKIVGFDGTQPVPDLAGTLVKLLYERIADPEKKLAQNSYLLPVKLLRNQTV"]}}, {"location": "[1502209:1503079](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSDPQILEHDGKYYAILGAQDKEIKAGKISLYKADAVTSPWQDLGYVDLPDMGYMVECPNLVFVDGKPVFIFCPQGLDKNVTDYQNVYPNMYWVGESFDFETGHFETKQKSPINLDGGFDVYATQAFNAPDGYAYAISWVGLPDVTYPSDKEGWANCLSQVKRLALKYGRLLQKPVKAMKSLRGVEEDFTGDLAFDAGAQSELKLTIKQGQKGKLLLVADSEGKNCIKLRFKTGKHARLTVDRGECGHAGAELPAQHLGLVFAGQADQDDWGDHAQHHQSLLRGTGRGN"]}}, {"location": "[1503071:1503380](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.26"], "codon_start": ["1"], "gene": ["scrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04937"], "locus_tag": ["MAAAAKME_16180"], "product": ["Sucrose-6-phosphate hydrolase"], "transl_table": ["11"], "translation": ["MKSWVHLTSSDLVHWENLGEAVYPDTPLDSHGAYFGSAKAISAKAIGDKDKLFLMYMGNVRDENWVRHSYQVGAWMDEEGKVTKLETPLINSPEHVTEHFRE"]}}, {"location": "[1503383:1503833](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1263"], "gene": ["bglF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P08722"], "locus_tag": ["MAAAAKME_16190"], "product": ["PTS system beta-glucoside-specific EIIBCA component"], "transl_table": ["11"], "translation": ["MHFPKWVSLVEDLSAVNDEVFSQKLMGNGAAIVPSDGNVYSPVTGTVSVAYKTGHAYGLKSDDGAEVLIHIGLNTVNLNGQHFKSLVTQGQHIEKGDKIGEVDLDAVKAAGYDTTVMVVITNSPSYNEAARVEATDVKHGDNLISLTAH"]}}, {"location": "[1504019:1505099](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0205"], "gene": ["pfkA2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L1L8"], "locus_tag": ["MAAAAKME_16200"], "product": ["ATP-dependent 6-phosphofructokinase 2"], "transl_table": ["11"], "translation": ["MTLRVGILTSGGDCQALNATMRGLSKTLYNCVDDVEIIGFKRGYYGLMHEDYVKMKPRDFSGIINEGGTILGTSRQPFKEMRVIVDGFDKVAAMKKTYKKLNLDALAVLGGNGSLKSANMLAQEGLNVIGLPKTIDNDTWGTDYTFGFQSAIDIATRYLDDIHTTAQSHSRVFVVEVMGHKVGHITLAAGLAAGSDIILLPEIPYDINVVAKKVKERQKSGKGFTVIAAAEGAISKEDATLSKKKYKAKVAARNGASVVNEIAAQLQEVLPDAEIRTAVIGHAQRGGRPDAYDRQISTRFGIEGARLIMNRSFGRLVVLKQGEVDSIALEDTAGKLKYVDPNGKTVSNARLMGVTFGDK"]}}, {"location": "[1505180:1506902](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.2"], "codon_start": ["1"], "gene": ["pgcA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P18159"], "locus_tag": ["MAAAAKME_16210"], "product": ["Phosphoglucomutase"], "transl_table": ["11"], "translation": ["MDAKEIFEQWKQAALPEDLAEQMAELGGDEKWIEDAFGQDINFGTAGMRGLLEPGTNRINVFTVGRVTEGLARLIDENGEEAKKRGVVISFDSRYNSRELATHAARVLGAHGIHVYLFDDLRPTPELSFAVRYLHTFAGINITASHNAKQYNGYKAYGEDGAQMGPENADRLFAYAQKVEDIFSVKAAPVKKLRAEGTLQLIGEDVDEAYLAKLETVNVNKDMIKENADKLKIVYTPLHGTGKMLYDRAFRRGGFSNVVPVPSQAIVDPEFPTCKKPNPEFRDVFNPGVELANEIGADMIVATDPDADRMGACVRTDKGDFQVLTGNQIATLMSYYLLQNLKDSGKLTPDYEIVTSIVSSALPFKIAKDFGIKTKSVLTGFKYIGEEVDRMNKEGDGKFLMGFEESYGYLFQAFARDKDAMQGALMFAEVASYYASKGMTVFDGLQEIWKKYGVAYEITRAIEMPGIGGQKKMAELMSKLREERLSEINGAKVLKIEDYQEQVTVENGEETPLTGFPKSNVLKYFLDDETWVALRPSGTEPVIKAYVGVNKADIATAEKAAESYQDAISELLK"]}}, {"location": "[1506929:1508471](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0366"], "gene": ["apu"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P38939"], "locus_tag": ["MAAAAKME_16220"], "product": ["Amylopullulanase"], "transl_table": ["11"], "translation": ["MERSQDGFGDGEITQDGRDIRIFQLTCYDRAVPQAPWYTQGVVYQIFPDCFNNGNPHGEIQGRKKDSFIYATKEDSPYYIKDEHGDIARWDFFGGNLEGIRQKIPYLKDLGVTAIYLNPIFQASSNHRYDTQDFMKIDPMLGTEEDFKNLIKDLHKNRIALILDGVFNHVGADSKYFLSAVTDKTGPYYSWFNFINYPTKYQSWWGVTTLPEVNKNNAGYQNFICGPDGVLAKWTRMHIDGWRLDVADELPMPLLREIRERLQNEDCHVLIGEVWEDASHKFVNSEFRTYMAGDNLTGTMNYPVRNFIVSLLQANNETEKVAALNDLEKLVENYPKAFLENCLNNIGTHDTARIKTVLGGDEQLVALAFGLLFLFSVPGVPYIYYGDEAGLEGDKDPDNRRYFPWGKESDFLEKEVKELAHWRRENRVLVDGKVGYVKIDYGINALVRYNQRELVIYCYNKTDQDMILDAGEFQTYCLPEKIGELVSDILDQESVAQKAYLLKTFKLDRNEKE"]}}, {"location": "[1508501:1510607](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.17"], "codon_start": ["1"], "gene": ["odcI_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P43099"], "locus_tag": ["MAAAAKME_16230"], "product": ["Inducible ornithine decarboxylase"], "transl_table": ["11"], "translation": ["MHYLKIAARKDLLPYLPKNWPIVELKENLNGAYLAAVVVRKDDSRGKGMHHFWADKLKLDLPLIVYDEKQNMIQIIDQTASQYEQEVIPKFLLDLTKFADQDDLILSTPGHHNGHFYDRHPAGAIMKSFFGPNFFKADVSDSVSELGDMMTHEGGPLKAEEEAAKAYNADKVYFCTNGTTSANTICAAAVLRRNDLVLFDRNNHKSLYNSALVMTGARPVYLPTDRNADGLIGPLVADDLDEDKIRTEIAKIDPERAQAKRPFRMAVLQLETYDGVFYNAKYIIKKLGKLCDYILFDCAWGGYEQFVNVLRDLSPMQLTYGPDDPGILVTQSIHKQQVGVSQASQILKKDSHLKGQKRYVNHKHFNHAYLKYVTTSCSYPIYSSLVVNAKMANSPACQTWWNDTVKLSIEFRRKLLRHSKLFRPLVPKTVNNQKWEDIPTDVLARDINAWKLKPTDKWHGFEKIENDEVALSPLKLTIINPGVDLATAKFTKEGIPGVILETYLHEKHIIPEKADIYSTLYLITPGETEVDMETLYTALMDFEKAYLNNEPLKQVMPQLSNAFPDRYSNYTLHDLCQEMHEYYRSNHIFDLEKQLFIKNDFQKYVMTPAKADEEFNRNNSKLVEVDNLTDEIALEGALPYPPGVFIVAPGERWHKIDIDYFKVLLTAAKKFPGFEPEVQGVYEQNGRIVAEVLDDDKVRKD"]}}, {"location": "[1510838:1512083](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_16240"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MTEENNKKNYMGWVTLSMFVYITVISFEDPFYPYQEYGLFVLVLWIIMLLFYQLPYTLIATELGFAYSGKEDGGMSSWIRHGTGSDLLGYATGWMYWAQTIPYLIDCASSVVVSISWIILGDNSLGRRMSPMVFSLITFSIILLFLIFDNTVKNALDATSLWSGIAMVAMTIIFFAMIVWSLTHGGHIATKLTWDNIRPHLSLHYFSSASMLIFAMSGAELAAPYVSRLKKPQKGFPKAMWLLFFVTALMVILETLGLAVLFDAKHIPNDFKMNGDYYAFQLLGREAGMGNSLMLAYSIVCLVSLLAQIAALIDAASRFLASDTAVKYMPRLLLKKNKNNRPINSYIFTAATTLILILLGGTLPQINDFINWLLNINTIVSPYKTSVVFLCFLILRYNKKNFKKNEFVFIRNRK"]}}, {"location": "[1512802:1513483](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQHIKGKHLSFEERVIIQLRLKDGYSLRAIARELNCSPSTISYEVKRGTVELYHGKVKRYKATQGHDAYQAHRKNCGRKSDFLRKTQFMRYVHKHFFKDGWSLDVCSNRATAVGEFSSRDVVCTKTLYNYVDQGLLDIHNYDLPEKLKCNTKLHRIRKNKKKLGRSIEERPKEINKRNEFGHYTSVKLLLLITHFYLFICLLFHSKSDHHYYETKSKSNHIDQPT"]}}, {"location": "[1513393:1514608](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0LNN5"], "locus_tag": ["MAAAAKME_16260"], "product": ["L-lactate transporter"], "transl_table": ["11"], "translation": ["MTQKKTLFPWWIFIVCCFISMIGFGLIVNTIGLFFGPISNEFGVGRAQVALMTTFQNAAAAIALLFAGKIMAKSNLRWLLTACFALISISMMSLAFANNLLHFYLAWIIIGVCQPIAITLSIPVLLSKWFNEKLGTVMGISLGLSALGGTIFNPIIAEIIKQFGWRGGFVGEALLLGLILVPLALSIKPAPSKRFPAYGKETQIKRKNLSGLDLKQALKMPVFYALAFAMLALQFVSGSVQHISGHITNIGISPITAATVVSGVMIGAAIGKISIGYFLDRFNAKLVLLIYSLFGVIGWAGQAMLKESNLLILSAVILGLGQGVCLVALPYLIRQIFGERDYSNILSIINMIGAFAMAASVYLIGLFFDQTGSYSLGWLVNVIAFALSFIVMMVTFRVKEKTNE"]}}, {"location": "[1514741:1514996](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLhe6"], "locus_tag": ["MAAAAKME_16270"], "product": ["IS3 family transposase ISLhe6"], "transl_table": ["11"], "translation": ["MSKFNKEQKIEIYRKWKDEKISISQLSKAYKMNLANLDYMLRLIDMHGTNILNTRKRVYSKKFKEQTIEQAIFGTKSDVQLSLE"]}}, {"location": "[1515017:1516247](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0LNN5"], "locus_tag": ["MAAAAKME_16280"], "product": ["L-lactate transporter"], "transl_table": ["11"], "translation": ["MTHKKSFFPWWIFIVCCFISMIGFGLLVNTIGLFFGPISQEFNVGRANVALMMTFQNAAAAIALLFAGKIMEKVNLRWLLTACFALIAVSMLSLTFANSLVHFYLVWTIIGICQPIAITLSIPVLLSKWFNQKLGTVMGISLAFSALGGTIFNPIIAEVIKQFGWRGGFVREAMLIGLILVPLAISINPEPTTQYPAYGKVMRSSKKVALTGLSLKQALKMPVFYAVAFAMLALQFVSGSIYHISGHITNIGISPITAATVVSGVMIGSAIGKISIGYFLDKFNAKLVLAVYSLFGVIGWGGQAMFRESNLLILAAVILGSGQAVCVVALPYLIRQIFGEKDYSNILSVINMIGAFAMSASVYLIGLFFDQTGSYNLGWMINVSAVALSFIVIMITLGKKESANSDFRK"]}}, {"location": "[1516391:1517441](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLjo1"], "locus_tag": ["MAAAAKME_16290"], "product": ["IS30 family transposase ISLjo1"], "transl_table": ["11"], "translation": ["MDSLHSTMNQHIKGKHLSFEERVIIQLRLKDGYSLRAIARELNCSPSTISYEVKRGTVELYHGKVKRYKATQGHDAYQAHRKNCGRKSDFLRKTQFMRYVHKHFFKDGWSLDVCSNRATAVGAFSSRDVVCTKTLYKYVDQGLLDIHNYDLPEKLKRNTKLHRIRKNKKKLGRSIEERPKEINKRNEFGHWECDLVLGHKCKDDEVLLALSERMSREFLILRIPDKTSVSVMQAFKELQRQYSEHWNDIFKTITTDNGSEFADLSNLEKASNTLVYYAHPYTSCDKGTVERHNGLIRRFIPKGEAIANYSLQDIINIETWCNSLPRKILAYHTPDEIFERELDLIYQAA"]}}, {"location": "[1517701:1517776](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16300"], "note": ["tRNA-Thr(cgt)"], "product": ["tRNA-Thr"]}}, {"location": "[1517929:1518337](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVRAHGMIDDPAALRAMTAFIYFMKGAMLVYNGEEKGDAHHVTLFDKDPVDWNGDIDLTNLLKRMHEIKQLPIMAEGSYEAKEVRKGVLEAVHSLGEGEEEKQLIGSFNTTGKKQAIPTQLPEGIYKNLYDGSSV"]}}, {"location": "[1518399:1518921](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.99.16"], "codon_start": ["1"], "gene": ["glgE_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02124"], "locus_tag": ["MAAAAKME_16320"], "product": ["Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase"], "transl_table": ["11"], "translation": ["MEDFKRLCDDVYAKGMKIIIDCVYNHTSPDSVLAKEHPDWFYHKKDGSFGNKVGDWSDVIDLDYSHRDLWKYQAETLVMWAKYVDGFRCDVTPMVPVEFWKYAREEVAKVRPGAIWLAESGAPDFIRFLRSKGAVGGSDSELYQAFDMTYDYDIYPDLRAALLGKKDLTTWLA"]}}, {"location": "[1518872:1519163](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.99.16"], "codon_start": ["1"], "gene": ["glgE_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02124"], "locus_tag": ["MAAAAKME_16330"], "product": ["Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase"], "transl_table": ["11"], "translation": ["MASDTKIDLRKQMIYSIFVRNYSPEGNFEGVQKDLDRIKDLGTDIIWLLPIQPSGKEKRKGAWVHTTQFPTIGLSTRNTGLWRTSSACAMTFTPRG"]}}, {"location": "[1519473:1520709](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yhjX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37662"], "locus_tag": ["MAAAAKME_16340"], "product": ["putative MFS-type transporter YhjX"], "transl_table": ["11"], "translation": ["MKTNRYIVALAGIMLHLMIGSVYAWSVYTKPIVAQTGWSESSVAFAFSLAILFLGMSAAFMGRLVEKFGPTLTGTVSAILYGIGIALTGLAVQSQQLWLLYASYGVIAGLGLGAGYVTPISTIIKWFPDRRGLATGLAIMGFGFAALLTSPIAQFLMSSVGLSNTFYILGAGYFLIMIVSAQFIKRPTAEDLANFKSEDKKAVSLTGGLQMTANQALKTKTFYLLWFMLFISITCGISLVSAASPMAQELTGMSAATAAVMVGIIGLFNGFGRLVWATLSDYIGRPLTYSLIFVVDMAMFVILIFTHSPFIFAAALSLSMSCYGAGFSVIPAYLGDVFGTKELGAIHGSILTAWAAAGMVGPLLLSFTHEVLKSYYVTLAAFIILAGLGLCVSFLIKREFAKLTDLADELD"]}}, {"location": "[1520817:1520925](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMLPSKLRDLRKKHGLSQKELAEKLMTTQAKVASW"]}}, {"location": "[1520937:1521234](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPDISYIAKLAVLYDVSADYLLKDDKQEGQTIEPGEEMDRPNTKCLGRINSIYWTIVIAVYLLASIATGRWSTSWVLFILGGAIWLIGAGFHWINSTK"]}}, {"location": "[1521278:1521584](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNYMQHLKERAISAYPPKTSRRWSICIAAAVIIGLLMSHFGQAKFGASLADFALLCGIDLLGVTFVKHGVNIFLAYLLAAALCFAVSVLLTFYIMSSNNL"]}}, {"location": "[1521723:1524858](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "gene": ["srmB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00967"], "locus_tag": ["MAAAAKME_16380"], "product": ["ATP-dependent RNA helicase SrmB"], "transl_table": ["11"], "translation": ["MLKDGIYEQILNQEILDQLEKIDPKDYNLEQLNADDSRQLLTIYLSQVIRSGLHYLRDSFKSGEDKAALIAQIRLANSIVDQVALHTGEANYEDLQILEQGEVLTSIYHKLTQSQKITPIRPQTSIVENALFTGSKNEPSMLSEIKKEIASSDQVDLLVSFIKWSAIRPLLGDLEAFCQKAGHQLRVIATTYTQATDYKAILTLSQLPNTTVKINYETDHARLHAKSYLFKRETGFSTAYIGSSNLSSAALTTGLEWNVKVTEQESFDIVNKFAVSFESYWNDPSFETFDPDQEDCRKKLQTELNRHKANTFHLETSIRPYNYQQEILDRMQAEREVYSHYKNLLVAATGVGKTVIAAFDFKRYLAEHPHARLLFVAHRQEILEQSLQKFREVLNDFNFGHLLVGQYKTDDVSQLFVSIQSFNSEKIADLLPSDYYDFIIIDEFHHAAAKSYQKLLSHFKPKILLGLTATPDRMEGQDILQYFDGNIAVEMLLGEAIDRQLLCPFQYFGVTDNVDYSGMKWSRGQYEVSELENVYTANDARAKLILRSLDKYSNNLEDIKGLGFCVSVKHAEFMAAAFNQAGIPSAALSGQTTQADRQQAKEDLTSGKLKFIFVVDLYNEGVDIPAVNTILFLRPTQSPTIFLQQLGRGLRLSPGKDCLTVLDFIGQANRHYNYEAKFKALTGPGHALPYEIRDGFPHLPAACYLELEPVAKKYILANLGQNTANKKGLTQRVKTFSEDTGLELNLANFLKAYDISLYDFYHASGSRSLFRLKKWAGLITDDRDVENQVYQKFSSFFHIDSKRLLDYWLAYLKMPKKASNETERLMLGMLYYSFYKKKPAQLGFKDLHEGIKDFLKEDFVKEELMEVLRYRLSQLTVLPEANEYPFTCPLEVHCHYNVNQIMAAFDYFNQDQSPEFREGVKYFADKKTDIFLINLNKSEKDFSPSTMYEDYAINAQLFHWQSQSQDRPASPKIQRYIHQGETGNLISLFVREFKKQGNYTAAYTFLGNADYVSSAGERPVSFVWHLHQAIPASLLAKANKAIAL"]}}, {"location": "[1524938:1525928](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.3.2"], "codon_start": ["1"], "db_xref": ["COG:COG1087"], "gene": ["galE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7WTB1"], "locus_tag": ["MAAAAKME_16390"], "product": ["UDP-glucose 4-epimerase"], "transl_table": ["11"], "translation": ["MKILVVGGAGYIGSHAVRRLVADGNDVVVLDSLFTGHKEAIDPKAKFYQVDLLDKDAVADVLKKEKIEAVMHFAAYSLVGESVKKPLKYYKNNVSGMISLLEAMEETGVKYLVFSSSAATYGIPEKLPITEETPLNPINPYGETKMMMEKIMHWADKANGIKSIALRYFNVAGASLDGSIGEDHHPETHLIPNIMKAALAGGGDFTIFGDDYDTKDGTNVRDYVHVVDLIDAHVLALKHLMETNQSDVFNLGTATGFSNLEILKAAIKVTGVDIPYTIGPRRGGDPDSLVADSSKARKVLGWSPKYENVDDIIASAWNWHQKHPNGFSK"]}}, {"location": "[1525980:1526331](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGCSTKVGELLKRIRSDLGLSQKQMAGMTMSVTQYSRIESGDQRIIADDLFEILTAQQVSARCFVDAMTNFDFERAADFTYVLLCQLNKGESDNAYGIKRLIYLCGYGAVLEEYEL"]}}, {"location": "[1526406:1526610](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKFLDKAKSLGSFLVIFLILQYLFSKLALNIYLSNLLAGIASSIIFDWIAPKLGIEKHHADQVKER"]}}, {"location": "[1526789:1527632](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39043"], "locus_tag": ["MAAAAKME_16420"], "product": ["Dipeptidyl-peptidase 6"], "transl_table": ["11"], "translation": ["MYGLINQPAVFMTEDDLKSRSDELLYGWAVKATGEKEDFWYVTSHYGYKGYVPKAAVTPVSLEEIKAREVKLIRRPVIDVLAEPKVSADILLTVYKGSLLNVTDELVDGYYKVKLLYGRSGWVSKTALAKRLDEDDFLWSADLEYFLLQAKPDEESFRKQVTETAKEYLGYQYRWAGKSPLGIDCSGLVFMSYMLNGVLLWRDAEIKEAWPVHEIEFEDLRPGDLIYFPGHIAMYLGHGKYINSTGYKEHFGVAISSLRKEDPDYRADLFQMIEKCGSLF"]}}, {"location": "[1527824:1529195](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["cycA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AAE0"], "locus_tag": ["MAAAAKME_16430"], "product": ["D-serine/D-alanine/glycine transporter"], "transl_table": ["11"], "translation": ["MEEKKTQNTYKRTLTNAHIQLIALGGTIGTGLFLGVGNSIQKAGPAVILIYIIVGLFLFILMRALGELILSDLKKHTYIEFIEKHLGKDIGKVTGYLYWLSWLILAMAETTALGIYFKSWLPNLPTWLPGVLSVAVLLLINLISARFFGNLEFAFAIIKILMIVGFVIFAAFMLLSSGSTKYGQVSFSNLYTDGFFNNGAGGFLQGFQMVIFSFIGVELIGLTAAEAKDPHKTIRSAINELPLRIILFYVLAIIGILVILPWNKVSTFSSPFVQALMGAGFKGAGNLINFVVITAAISATNSFIYSAGRLLFSVTLGGESKWSKFFGQLNHRQLPMRGLVFSALLIICAPLITMIMGDEAFSFISSMATSMFLLIWIIMTLTHLRYRQVTPKDQLHEFQLPAYPYLDYLLLAFFGAMVILLLFLESYRVPMIMALITFAVLYGFSKAFNKKKEAAK"]}}, {"location": "[1529245:1529569](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLLLLMLVSQYETHIFLDHDLAKETYPDLLDRDLTELPVADLLEISKKLIVTDYYLGVNVLFRDKKHYSLLRIESGIDADLYKLSKKSKKLVNKLLKRNGLFLVKY"]}}, {"location": "[1529765:1530122](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKTVDLAVSGTWFRAMSTYGKVMIGDEAFEFYNEKNVEDYIQIPWDQITYVVADVHFKGKYIPRFEIRTKKDGKFIFITKDPKKTLRAIRKYVPADHMRQALGVWDTIKLFFTRKKK"]}}, {"location": "[1530143:1531058](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3716"], "gene": ["manZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P69805"], "locus_tag": ["MAAAAKME_16460"], "product": ["PTS system mannose-specific EIID component"], "transl_table": ["11"], "translation": ["MTEKKVTLSKRDRWYVMWHSQLLQGSWNYERMENGGWAYSMIPALRKLYPNKEDMAAALQRHLVFFNTQPYLASPIIGVTLALEEDKANGVEVDDEAIQGVKVGMMGPLAGVGDPVFWYTVRPILGALGASMAINGNILGPILFFILWNLIRIAFLWYTQELGYKAGAAISSDLSSGLLKKVTRGAAMMGMFVLGALIERWVRITFTLKVSEVPIQKGGYIDWNKLPSGAAGIKEALTQQADGRSLTNTKVTTLQDNLNMLVPGLAGLLLTFLCMWLLKKKVSPIVIILGIFVVGILFHVWGLM"]}}, {"location": "[1531086:1531899](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3715"], "gene": ["sorA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37082"], "locus_tag": ["MAAAAKME_16470"], "product": ["PTS system sorbose-specific EIIC component"], "transl_table": ["11"], "translation": ["MDLNAIQVILVIVVAFLAGMEGVLDEWQFHQPLVACTLIGLVTGNLTLGIMLGGSLQMIALGWANIGAAIAPDTALAAVASAIILIKGGQGTKGIGTATGLAITLAVAGLFLTMLVRTISTAIVHIMDKYAEEGNWRMISVWQWIAVCLQGLRIAIPAGLLLAIPTETVRSALAAMPAWLSDGMTIGGGMVVAVGYAMVIDMMVSREVWPFLAIGFALAGDKDLTLIALGAIGLSMALMYLALEEKVSKGSGDVAAAGTGDPLGDIIDDY"]}}, {"location": "[1531901:1532921](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.191"], "codon_start": ["1"], "gene": ["manX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAF5"], "locus_tag": ["MAAAAKME_16480"], "product": ["PTS system mannose-specific EIIAB component"], "transl_table": ["11"], "translation": ["MVGIVLASHGGFADGIAESAQMLFGPQDNFAHVILKPSEGPEDIKGKMNEAIASFADQEEVLFLVDLWGGTPFNQANGLLDGHDKWAIVSGLNLPMVVEALTQRMINDKATAQDIATAIIKPAKDGIKTKPESLMPAEEKAAAPAAAAGAPKEAIPEGTVLGDGHIKIVGARIDSRLLHGQVVTGWIPSLHPDRVIVVSDKIAKDDLRKSMIREAAPAGTVAHTVPLEKMKEIYEDPRFGTTHAFLLFENPEDALQTIKNGVDIKTLNVGSMSYSKGKVNANNVLSMDQTDVDTFRELEKMGIKFDVRKVPSDNPENMDSILKKAQSLLDEQSSSEKRS"]}}, {"location": "[1533119:1534373](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKISRSVEKFFKDYKVMELLRRCGLRKSKGFPLWSVLSYIFSNVFRDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLRFTILLVERIVNGHLKDLTSDQRADCFVFDDSLYSTTGYKKTELAAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIAAKRRIMAQSKGTDVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAIVKKSSKITYEFEEKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKLGTEYHGLSYDALTAHTAFVFLRYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[1534495:1535719](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_16500"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAIQLTFPEIEHLLANPRGKNYWSIVLRFPHPDIVLETKEADIIDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1535971:1536169](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_16510"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMADELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYIQEAISPSLAA"]}}, {"location": "[1536471:1536561](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16520"], "note": ["tRNA-Ser(gct)"], "product": ["tRNA-Ser"]}}, {"location": "[1537305:1537644](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKYTTHFVKEYDAICIEDLDVKGMLMSHVASKGVHRALFGRFRSYLEYKCKSAGVKLVIANRFYPSTQRCAACGNIKKDDEKITLSGNKKNGTKHNEYVCYNKNVRTTTRL"]}}, {"location": "[1538329:1539709](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1757"], "gene": ["nhaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07553"], "locus_tag": ["MAAAAKME_16540"], "product": ["Na(+)/H(+) antiporter NhaC"], "transl_table": ["11"], "translation": ["MNKQISFKEAVTILILMLVMLGWGVIGFGLSPQIPVLTVIALLIFWLQIRGFEWEEVMKGISQGISTAIVPIFIFLLIGTLIAVWIQAGIIPSLMVLGFHMISSHFFVPSVFLVCSLVGLAIGSGFTTVSTVGIALFGMGSTLGINPALTAGAIISGAVFGDKMSPLSDSTNLASAVAETDLFDHIKNMMWSTIPAFIGSLLFFFFLGQSNKATSLAGIAAVESSLRQNFSVSFWAALPIILMFACAWKKVPAIQTLFANIFLSVAMIFVQNPGFKMQKLATLIESGYVSNSGNKTIDALLTRGGISSMMGTVSLIIMTLALGGILMHLGIIDSAMKPLVERLKKPGRLILTTIMAGIGINLFVGEQYLSVILPANAFKPAYKRIGLDPLALSRALEDGGSVINYLIPWGVAGSFVASALGVPVLDFLPFTMFSLLSPVFSILSGFTGIGLKWEQEKVA"]}}, {"location": "[1539990:1540100](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_16550"], "product": ["5S ribosomal RNA"]}}, {"location": "[1540175:1543079](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_16560"], "product": ["23S ribosomal RNA"]}}, {"location": "[1543172:1543268](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[1543298:1544859](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_16580"], "product": ["16S ribosomal RNA"]}}, {"location": "[1544070:1544595](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1545554:1545710](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKTRLIKQLGSFSRYLSQFAYAFLAPLTLFAVLVKIDAPASIFLLCAVPV"]}}, {"location": "[1545706:1546201](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4988"], "gene": ["cydD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29018"], "locus_tag": ["MAAAAKME_16610"], "product": ["ATP-binding/permease protein CydD"], "transl_table": ["11"], "translation": ["MIPIVIMVVMLVAKKILSRYFAIYHHLADTFLEKMQGMTTLKVYQNDSAAEQELAEESELFRQITMKVLTMQLLSTVVMDTVAYGGAACGIVIALNNALNNLRQGQVSRQGAIILILLAASYFLPMRQLGSYFHIGMKASDHIFAFLDLPEKAAGQTSLPKKWP"]}}, {"location": "[1546588:1548016](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6L4"], "locus_tag": ["MAAAAKME_16620"], "note": ["UPF0051 protein SA0778"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVEKDETLQALDQDYQYGFKDEIEPIYTTGTGLSEEVVRQISAAKKEPDWMLDFRLKAYQTYLKMPLPAFGPDLTKIDFDHLNYFRRDAKKAVRDWDEVPDKIKETFEKLGVPQAERQYLAGSSAQYESEVVYEKIKEDLARQGVLFMSTDAAVQVVPDLVKKYFGKLVKPDDNKMSALNSAVWSGGTFIYVPKGVQAKVPIQSYFRINAGNSGQFERTLIIVDEGASVNYVEGCTAPNYSADSLHAAVVEVNVLKDAYCRYTTIQNWSDNVYSLETKRAQALENATMEWVDGNLGSKVTMKYPSVYLNGRRARGTMLSIAFAGCDSNGQGIDSDTGARMVHNAPQTTSSIVSKSLCKDGGRVDYRGQVRFNPDSDGSLAHVECDTIIMDDKSASNTIPYNEVLNGNVSMEHEAKVSKISEEQLYYLMSRGISEAKATEMIVMGFLEPFTKELPMEYAVELNRLIKYQMVGSIG"]}}, {"location": "[1548016:1548457](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0822"], "gene": ["iscU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9A1G2"], "locus_tag": ["MAAAAKME_16630"], "product": ["Iron-sulfur cluster assembly scaffold protein IscU"], "transl_table": ["11"], "translation": ["MALDDLKQVYQAVLLDYAASQKYRQPLASPTKAVSLVNESCGDRLTLQVKVKEGKIEQVACLAEGCTISQASAAIMAGLVDQAPLEKAAGLLPIFWRMLEGKEISQEEEKELGDAALLQGVSRFPARVKCAGLAWQGLSEAIERKN"]}}, {"location": "[1548443:1549658](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG0520"], "gene": ["sufS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32164"], "locus_tag": ["MAAAAKME_16640"], "product": ["Cysteine desulfurase SufS"], "transl_table": ["11"], "translation": ["MDKNWNKLRQDFPILAEKMNGEPLVYLDNAATSQKPKSVIEAITAFYQKENANIYRGTYALSAKATEAYEGVRQKAADFIGGEASEIVFTKGTTSAINLAAFGYFLRHLKAGDEIALTAAEHHSNLVPWQQVAALTGAKLVFLPLDKKGRVDLKEAEKVMSDRLRLLALAQVNNVLGTEQPVKELAALAKKRGALVLVDGAQAAGHLPVAVKKLGADFYAFSAHKMLGQTGTGVLYGRKELLDQTQPLEFGGEMIREVSKTTATFKPAPQKFEAGSQNVSGVVALGAAIDYLNAIGLDAIKDRETELGQAMAEGLRKAGARVYGQGGGIASFNLPGVHPHDLATALDAQGIAIRAGQHCAQPMMDWLGVKAVARASAAFYNNEADVEALIKGVQAAKEFFNGTR"]}}, {"location": "[1549638:1550802](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6L4"], "locus_tag": ["MAAAAKME_16650"], "note": ["UPF0051 protein SA0778"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTAQAWFAKMQAEAAAALPDLPRPDFAKVDYRAWPLSLTRPLQKRAAFSIEAGAEFWAKGCVACDWETALAEHGDLLEKYFGRAANFKENRLLGENVAKMEQGLFVYVPDNVALAEPLTVTYLQDSQKQEDFALHVLLVAGKNAAFSYFEKVASRGDKEATANLVVEICALAGSQVKYAAIDRLGKNTTAYLKRVAWVGRDAKLDWAMGMLSDGKILADYDSDLYGQGARAEMNVIAITIGDQVQGLNTVVNNYGKKSDGRILQHGVILQKSCLVFNGIGHVMKGAKGANAQQENRVLMLSRSARGDANPILLIDDNDVFAGHAASVGRVDDQQLYYLMSRGLPKPLAERLVIRGFLGPVLTKIPEASRQPLFEMVERKLIDGQELE"]}}, {"location": "[1550811:1551591](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0396"], "gene": ["sufC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80866"], "locus_tag": ["MAAAAKME_16660"], "product": ["Vegetative protein 296"], "transl_table": ["11"], "translation": ["MSELAITDLHVEIAGKEILKGVNLQLKTGEIHAIMGPNGTGKSTLSEAIMGNPAYKVTQGSVKLDGQELLDLPVDDRARAGLFLAMQYPAEIPGVSNAEFIRGALNARRPEGDPVPAREFLQELYEKMDFLDMKVEMAQRYLNHGFSGGEKKRNEILQMLMIKPKFAILDEIDSGLDIDALKVVSKGVNDLRGPGFGALMITHYQRLLDYVVPDKVHVMMGGRVVAEGGPDLAKRLEKEGYTKLRDELGLDIELTDEDV"]}}, {"location": "[1551777:1552299](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2153"], "gene": ["elaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEH3"], "locus_tag": ["MAAAAKME_16670"], "product": ["Protein ElaA"], "transl_table": ["11"], "translation": ["MTKHNQLVMERILSSTVKKRQKNDFSKEIQVKHFNELSAREVFCLSRIRDDVFVAEQEITVPELDDQDLSAYHVFILNEDQSNALAAARFFSEEGRFYIGRVAVQKTARHRGIASQLLGAIENYVLANSLTKELYLHAQANARDFYLANGYHDVGPVFMEAGIPHQMMAKSLA"]}}, {"location": "[1552472:1552961](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2190"], "gene": ["crr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A283"], "locus_tag": ["MAAAAKME_16680"], "product": ["PTS system glucose-specific EIIA component"], "transl_table": ["11"], "translation": ["MLNFFKKSKSKGNEVKAPIKGNLIPLSEVSDDVFSQKMLGDGFAVKPTGQEVVAPVSGTITTLFPTKHAIVIKTAEGLEVLIHLGIDTVELKGEPFKLFAEQGDSVKAGDKLAEMDIADVADHGLDNTVMVVYTNMDLLKEVKDVDPRPVEAGDDAQEIAFN"]}}, {"location": "[1552966:1553452](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNWLDRLTKSARLTPKRILKIYTFVLFFAPMAYLLLLQLRAGAAKQTITDFIAASPATTVSIIVAAGDFLLGYLCWIDGGALLADRRQYMKFMKLQLWTQLIVGNWFCLLFAIFALRRGEDLPEESKVKPSQLLSLTYLIASLFVICFVFYVVLAFRAVKG"]}}, {"location": "[1553466:1553643](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTIKESRLASLSDYSLFFQPSLFHESNSTKNWAFSPAYTMIDLLINGYCEWLRKDDE"]}}, {"location": "[1553602:1553794](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.122"], "codon_start": ["1"], "gene": ["simA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q03C44"], "locus_tag": ["MAAAAKME_16710"], "product": ["6-phospho-alpha-glucosidase 1"], "transl_table": ["11"], "translation": ["MSDKKFSVVIAGGGSTFTPGFVISLCANQDKLPLRKLKLYDIDADRQKKIGDDHQGEPAGQSV"]}}, {"location": "[1554058:1554226](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGFWIMLLSGLIGLALVIYAFKKELPKGQKIAFWLIGAALLVFAVALALPNGLQL"]}}, {"location": "[1554228:1554909](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["lolD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O66646"], "locus_tag": ["MAAAAKME_16730"], "product": ["Lipoprotein-releasing system ATP-binding protein LolD"], "transl_table": ["11"], "translation": ["MYSVRITELEKEFKNGRKIFSGLNLELEESSLTALVGASGEGKTTLLNVIGLLDTDYSGQVELFGQKVNELNQTEMARLRNQQIGFILQEPLLIKNMSVRDNILLPTVYLDKSLRKSKDYYLARAEQFADQLGVSQVFDQKPATLSGGQKQRVTAIRALINDPQLILADEPTGSLDEENAKIIMDLLKKLSREGKTVFTVTHDSHIASQHDRVLQLKNGNITVKEN"]}}, {"location": "[1554908:1556144](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYFEFIRNVFLKKLVLTLLTLLCLISFGFISYHLLRSNLYVLNNERSLQTLVKRKVYVGNDQSTGKQFSQNFKQKNLAKTNAHARKVFAYLDKNYHYSLRWSFDSNLNNGDSVSIDTVNSNFFKFYLLHIAAGRSFNSADYKSSSYYIPVLVGANVAKSQPLGSKFTAVNSSSGKKEYYQVVGVLQQNANVPSVYLLDNQNYLNNTIIRPLRRADKMNLTAAQLLAAAQDLIIFDSSRTELNKLTSKFNQGDFFKIRFISVEKNISDFYDSYRGTAIMFAIFSLAIMVIAVLIIVWNTWNCLSEEQSEIALRISLGMRQKDVLSAAIIYQLLIDILAIVPVLLYAGSYSKMLADSSVGSSSQIVLNGLLPRAETVSLLISFILMLLITVLAIALVAAHFNRKTLALRMGDE"]}}, {"location": "[1556155:1556632](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLTRNPFSFLALIGLLLVEYLNFLYLAIFSLVSQKAANARVNWAIKNLLEDSASSFSILAFASIASLLVIYHLCKKGQKERRIRIIVGSTCREQYSVGEVMIFLADLLTFALAFFGMRYLTGQNEGGALREFVLASMLHTVVLLLWWPLLVKVIDR"]}}, {"location": "[1556631:1557000](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSKKKMTTLFFTMLTALALVPTATVLAGTTKFGTAHRGAWSTETMQIHYSGGVFFYPHYATHTHVGYAKYTRNGKTVASKWTTYVKNNSKYSSKTKIEANVSCWDTLNPTAPKTKFHYGFN"]}}, {"location": "[1557165:1557627](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0691"], "gene": ["smpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32230"], "locus_tag": ["MAAAAKME_16770"], "product": ["SsrA-binding protein"], "transl_table": ["11"], "translation": ["MKQKAKDENVLAQNRQARHDYFIKDTYEAGIALTGTEIKSVRARHVTLRDGYVQIINGSAFLENVHIDEYKEGNRYNHDPLRSRRLLLHKKEIAKLADVKAQKGMTIVPLKVYLKHGFAKVLIGVAQGKKEYDKRETIKKRDQDRELRRKYRI"]}}, {"location": "[1557649:1560019](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.13.1"], "codon_start": ["1"], "db_xref": ["COG:COG0557"], "gene": ["rnr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32231"], "locus_tag": ["MAAAAKME_16780"], "product": ["Ribonuclease R"], "transl_table": ["11"], "translation": ["MAQNETVLAGVLEIFRHNPQKQFSVDQIERQARRDRLGNFTDLVKALAYLEQEKQIITDGNGRYQLAKENTEVEGVFRANDKGFGFVRLDDEEADDVFINSDATKLALDGDRVKVKITAGGNPWNGKGPEGQVEEILERGASSIVGEYTPLEDLQVKISHFAGYVIPTNKKFKKYRVYVSENGLIPQMGDMVKVSLKTYPTEDLPDQMTGAVVEIIGNKNDPGVDIMSIVAEHDIRTEWPEDALEQANAIPDHVTEEERHEAGRRDITDQPAVTIDGDDSKDFDDAVVLWKLDNGNYHLGVHIADVAHYVKEGTPLDREAFARGNSTYLVDRVIPMLPFRLSNGICSLNEGVDRLVLSCDMEITPEGERVSYDIYPAVMRSHGRLTYNKVNQALRADVPDSDLEDKYVKVRPMLKDMAALHEILYKQRHARGSIDFEEPEAKIIVDEKGKPVDIVLHSRGTAEKMIESFMLLANETVAEAYYRKKVPFLYRVHETPEADRISRFFEFCSAFGLNVKADPNDIKPLDLQKVVTKTLGTSEESVVQMMMLRSLKQAHYSEDPLGHFGIAAKYYTHFTSPIRRYSDTMVHRMIHAYLEEGMGDDVKEHFKEELSEAADQTSMQERRSIDTERATNDLKMTEYMADQVGNKFEAVVSSVTSFGMFVQLENTVEGLIHISNLKDDYYSYDEKSMTLTGRTTHKKYKVGMPIKVVLTNANVEQHQLDFEVYDPDAKKRPHNDRGMGRRSGDRNFKGRSNYGGRDKSGERRHKPSRSNRGQRLGQSEKGNRRRPNR"]}}, {"location": "[1560085:1560319](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1314"], "gene": ["secG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32233"], "locus_tag": ["MAAAAKME_16790"], "product": ["putative protein-export membrane protein SecG"], "transl_table": ["11"], "translation": ["MYNFIMTLLIIVSVLIIIATMMQPQKQQDALNALSGGAVFSGQTKKRGFEAFMEKVTSVLLVLFFAFSIILAILSSK"]}}, {"location": "[1560373:1562446](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1368"], "gene": ["ltaS1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q797B3"], "locus_tag": ["MAAAAKME_16800"], "product": ["Lipoteichoic acid synthase 1"], "transl_table": ["11"], "translation": ["MQKIKAFGTWLRTSKNGFFTLAVFGYWLKCYLIYLTKFTLGATGPMQGFLLLINPIPSGMLILGLGMLMKGRKSYWTMLVLDFLLATWLFANILYYREFSNFLSFSLLQNSGSASENLGKSIAGILKGSDFLAFVDPLILLGLLLGKFFKMDLYAQSWKRKVAIELTALLLMGGNLLLAQKDRSGLLTRTFDNNYIVKYLGINEYALYDGIKTAQTNAQMANAKVSDLSSVKKYLKANYVQPNSAYTGVAKGKNVIVIHLESFQQFLIGYKWKGKEVTPNLNKIYHSKHTLAFDNFFNQVGQGKTSDAELMLENSLFGVQSGSAMSTYGTSNTFESMPAILKQKGGYTSAVMHGGTGSFWNRNNAYKSFGYDYFASLNYYQYQNSWYLGYGLKDKIFFQQSAKYISELPQPFYLKMITVTNHYPYTLDKQNQSIKKTTTGDNTVDGYVQTAHYLDQAIGEFMTWLKKTGLDKKTLLVFYGDHYGISNNHNEAMAQLTGKKNYGEFDDQQQQRVPLMFYSSNLKGGIKHTYGGEIDVMPTLLNLLGIKSKGLILFGHDLLSKKNPQVVAQRNGNFITPTYTKVGSSYYYTRTGKKVTGTKEKKACRLIANQVLTQLTLSDRVVTGNLLRFYHPSWFTPVKTSDYDYNKTDSLKKLAEAGKSKTSLKSQLGKKDASSLYKTDAPELKKTKTK"]}}, {"location": "[1562464:1563478](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKKNLWGFLIVLLISSLVLYFDLRATPMATLKAAAGQIIPWRLVLVFLAMALSYVCEALILRLLAKRPGTAKRSFWSYLRIPLIQALFNGITPMATGGQPSQLAAMVEMGMAGGRATSILMMKFICYQLVVLFAYLTAFIFGFHFVAGKFSALAIFIFLGFALHVFSIILLLLAMFAHNWTVKAVKKVMKLLGRIFGQERAQAWEKSTLEQVESFYKESQALKAEKKKLWGVVLLTVGQLLCYYSAPYLALRALGQPVDYVQVTLMTILIIMFMAVIPLPGGSGGAEFSFQTLFASFISQPGVVVLAMFLWRFATYFFGMILGIFGWSFKPAKLRD"]}}, {"location": "[1563470:1564520](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["cpoA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPV9"], "locus_tag": ["MAAAAKME_16820"], "product": ["Alpha-galactosylglucosyldiacylglycerol synthase"], "transl_table": ["11"], "translation": ["MIRINMFSQADSVAGQGVGAAYLELIRLLRTHLVDDFYVTINKYGRSDLTHYHTINPTYFANSFSPARGRKIGYVHFLPDTLERSIKLPGVAKKVFYQYVIDFYKRMDQIVVVNPIFIDKLTEYGLDRNKIRYIPNFVAKSEFYEQTQAKKNATRQELGIPQDKFVVFGDGQVQARKGVDDFAKLAEANPDYQFIWAGGFSFGKITDGYDHFKQLVENPPKNLTFTGIIDREKLVDYLNMADLFLLPSFDELFPMSVLEAFSCGTPVLLRDLDLYRAIIDGYYLAGKDSAEINEQLRFAATHPEVLARQQELSRKASQQYSEDHLAEIWRDFYQEQYQLGRELGQISYE"]}}, {"location": "[1564512:1565682](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.337"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8CWR6"], "locus_tag": ["MAAAAKME_16830"], "product": ["Alpha-monoglucosyldiacylglycerol synthase"], "transl_table": ["11"], "translation": ["MNIGLFTDTYFPQNSGVATSIKTLKEALEAQGHNVFIFTTTDPNVDKDTVEANIFRFSSVPFIGFSERRIAFRGLFEAVKVAKEVNLDIVHTQTEFSMGLIGKYVARQLGIPAIHTYHTMYENYLHYVLNGHLLRPVHVQQFTKSYLKNMDGVIAPSQRVADLLARYGVEIPMRVIPTGVDLDAISGPDKADLREKLGIAPDAQVIITLGRVAAEKKIDRILQVMPDLLTEFPNLVFVIAGDGPDVDVLKAQVERLTLEDHVIFAGNIPHDQVASYYKMADFFVSASDTETQGLTYIEALGSGRKCVVYKTDYTDQVFNDPAYGLTFESLRQMKEEIAAYLRQGRQEIPPQLLAKKLEEISASHFASEVCKFYQYAIDNYQVKKEDSND"]}}, {"location": "[1565833:1565918](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16840"], "note": ["tRNA-Leu(caa)"], "product": ["tRNA-Leu"]}}, {"location": "[1565934:1566021](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16850"], "note": ["tRNA-Leu(caa)"], "product": ["tRNA-Leu"]}}, {"location": "[1566048:1566119](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16860"], "note": ["tRNA-Cys(gca)"], "product": ["tRNA-Cys"]}}, {"location": "[1566147:1566221](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16870"], "note": ["tRNA-His(gtg)"], "product": ["tRNA-His"]}}, {"location": "[1566233:1566306](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16880"], "note": ["tRNA-Trp(cca)"], "product": ["tRNA-Trp"]}}, {"location": "[1566308:1566392](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16890"], "note": ["tRNA-Tyr(gta)"], "product": ["tRNA-Tyr"]}}, {"location": "[1566398:1566473](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16900"], "note": ["tRNA-Phe(gaa)"], "product": ["tRNA-Phe"]}}, {"location": "[1566477:1566553](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16910"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[1566554:1566630](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16920"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1566638:1566726](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16930"], "note": ["tRNA-Ser(tga)"], "product": ["tRNA-Ser"]}}, {"location": "[1566768:1566840](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16940"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1567099:1567189](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16950"], "note": ["tRNA-Ser(gct)"], "product": ["tRNA-Ser"]}}, {"location": "[1567190:1567266](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16960"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1567268:1567339](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16970"], "note": ["tRNA-Gly(tcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1567352:1567427](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16980"], "note": ["tRNA-Phe(gaa)"], "product": ["tRNA-Phe"]}}, {"location": "[1567442:1567518](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16990"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1567527:1567603](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17000"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1567613:1567689](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17010"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1567724:1567798](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17020"], "note": ["tRNA-Pro(tgg)"], "product": ["tRNA-Pro"]}}, {"location": "[1567803:1567879](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17030"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[1567882:1567970](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17040"], "note": ["tRNA-Leu(taa)"], "product": ["tRNA-Leu"]}}, {"location": "[1567984:1568056](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17050"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1568059:1568134](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17060"], "note": ["tRNA-Thr(tgt)"], "product": ["tRNA-Thr"]}}, {"location": "[1568143:1568227](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17070"], "note": ["tRNA-Leu(tag)"], "product": ["tRNA-Leu"]}}, {"location": "[1568238:1568311](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17080"], "note": ["tRNA-Lys(ttt)"], "product": ["tRNA-Lys"]}}, {"location": "[1568311:1568387](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17090"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1568543:1568738](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MILAGWQSVLVVSLSYIPGLIVYYQGVREQGRKLNKNEKITFIFIAILCVLSIVLIANKKINIM"]}}, {"location": "[1568734:1569130](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["arcD1_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNI5"], "locus_tag": ["MAAAAKME_17110"], "product": ["Arginine/ornithine antiporter ArcD1"], "transl_table": ["11"], "translation": ["MIVGDWGMMIINIGLIISTIVSWLSWTMLPAETMLLIAEDGAAPKFWGKLNSKKAPTNALFTTAILQTIFLFSLLFTDKAYEFCYTLASSAILFSYLFVGLYQMKFSREHNTRNGLNGSTAYWQPSSNSCA"]}}, {"location": "[1569140:1569650](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLMSAIGTFIPVFKGGSNLPSIIVAIIFCWALTFLVNNGVESASFVNTIGTFCKVVPLIMFVIICIVSFKGGMFTADFWGRVANNLSKGTTTGGLWPQMKGTLMTLIWVFIGVEGASVMGSRAKSLNEAQQATIAWFRPAFGLLHDDFNPAMRLTYPGPIGQRCTTSFG"]}}, {"location": "[1569674:1569977](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["arcD1_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNI5"], "locus_tag": ["MAAAAKME_17130"], "product": ["Arginine/ornithine antiporter ArcD1"], "transl_table": ["11"], "translation": ["MEEKVNKNGIGLVGLTALIVSSSIGTGIFVITSSIAQSAAPGPAILSWLLVGFGFLMLVLSLNNLTEKRSDLKGDIFAYTGAGYGPLGEFISGWAYWLSA"]}}, {"location": "[1570257:1570437](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLDEDSTKGVIVIESVNADQAQRANEAMSDLKELLGEFFGIKRDKSVILPKDAPSVDVD"]}}, {"location": "[1570515:1571340](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.2"], "codon_start": ["1"], "gene": ["ade_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01518"], "locus_tag": ["MAAAAKME_17150"], "product": ["Adenine deaminase"], "transl_table": ["11"], "translation": ["MQEALRHTPEYGQGLDVWIEGWGFDESKLAEHRSPTRDDLDQVSTTQPIFLYRSDCHSSVGNSRALELAVIDEHTPDPAGGKIEKDASGRPTGFMREVAVRIEHASLLSDSMLKELKGPTIGLAVSTQPIFFFAEEDFYRQFLSADQLKMAYRIKSLDKENILFSLSSDAPCTPWAEPDSPFYGIYAAVTRHTAAGGFINEDEGIPVVRAILAYTRDAAKMGGFVNNGTLTPGKDADFVILDRDIFSQKAEDLAKVKPASTWIGGEKVWSQEKK"]}}, {"location": "[1571445:1571589](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNCRTFVNGKIFTGENETAFTDSITVEDGKIVAIGEKGWGEIIDLQG"]}}, {"location": "[1571970:1573194](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_17170"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHKNKTDKLDALYLAKLQSEYPQRLAYVQSKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLEAKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHVRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1573407:1573517](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_17180"], "product": ["5S ribosomal RNA"]}}, {"location": "[1573593:1576497](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_17190"], "product": ["23S ribosomal RNA"]}}, {"location": "[1576626:1576699](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17200"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[1576767:1576843](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17210"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1576832:1576925](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNDKNLGL"]}}, {"location": "[1576955:1578516](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_17230"], "product": ["16S ribosomal RNA"]}}, {"location": "[1577727:1578252](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVRLYPTN"]}}, {"location": "[1579096:1579963](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rsiV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05403"], "locus_tag": ["MAAAAKME_17250"], "product": ["Anti-sigma-V factor RsiV"], "transl_table": ["11"], "translation": ["MKNTDLMDAMGGIKTEYIVEAAASRGQKKVIPLSAKRKPWVRLVAGIAAAAAFSVALPNTSPQVANAMQNLLVVGNYFKLVTFRDYHYESRKHSADISVDKVAVSGVTGPATKEAKKSSQAVNREIVQETDRLTKKFKASLKKGGYGSLTVKTKQVTNNRYWYVVKLTAVQTQADSGESSRYYVFSKASGKQVKLGDLFKSGSNYQKAISQNIIKQMKQEMKADKNKSYFLKENGNPDGFSQIKKKQQFYINKKNQVVIVFNQGEVGPMSMGSQSFVLPNKLVAKLQR"]}}, {"location": "[1579976:1580540](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRETEIIGQFFARDEAALTSVQSEYGAYCSTIARNILRDKEDVEECLNDTWLKAWNTIPPKRPQSLLAYLGRVTRNGALNMVRDQNRQKRAGDQYTTSLDEIGELSGAVQGPAELEGIESSALTEIINDFLAGLPKEKRIIFVQRYFYMDAVSDIAAANGMTVSAVKVSLLRMRRKLGKKLQEEKYI"]}}, {"location": "[1580697:1582005](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.11"], "codon_start": ["1"], "gene": ["serS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99178"], "locus_tag": ["MAAAAKME_17270"], "product": ["Serine--tRNA ligase"], "transl_table": ["11"], "translation": ["MLDIKVIRENLDWAKEKLATRGIKPEQLDELVAIDAKRREAMVKCENLKAERNEVSKKIAAAKREKADASEAIANMREVGVKIKELDQEVDELQEKQEYILLRLPNFPADSDPIGPDESYNEEVRRWNEPTKFDYQPKAHWDLGTDLNILDWDAASKVSAARFVYYKGAGALLERAVYNFFLDENTSEGYTEVITPSLVNNDSMQGTGQFPKFTEDVYTIVDNDDPEVARNLTLIPTAEVPLVNYFRGDIIDGKNLPINVTALSPAFRSEAGSAGRDTRGLIRMHEFRKVEMVKVVKPEDSWKELENLTHNAEHLLQKLGLPYRVVALSTGDASFTSAKTYDLEVWMPAQDTYREISSCSNCTDFQARRAQIRYRDEDGKVKLTHTLNGSGLAVGRTVAAILENYQNEDGTVTVPEALRPYMHGMTKITPEVKWH"]}}, {"location": "[1582248:1582743](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MESERIYLRPVGPEDAELLLSWGQDPYYQETAGFAHYRNLPEAEEGALAYQQRPASYMICLKKGQAIGLLELYPRDGQSRELGFLLDKKYQGQGYMTESINCLLGEAFKDPEIKEIWAGCRANNLRPQHLLQKLGFRQMYEVDYRQIPPFLDFSAKYYLLKRSE"]}}, {"location": "[1582742:1583336](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSYEQSRKLINRLTIISTIVIIGLCIYWYQLGIFTSQAKMSAYLADKKILGPIIFVLIQIIQVVIPIIPGGVSLLAGVVFFGAGPGFIYNYIGIVIGSLINFFLARYYGKSFILHIVSEESLEKYTKWTKNQKKFNWLFAICILAPVAPDDLLCLLAGLTEMKPWTYFWIIVLCKPWTIAVYSLGLVYGARWIMRLM"]}}, {"location": "[1583542:1584346](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVVTVNNIAYDLKHGLKTDIYYPNDTDSQTKILIFWHGGGWFRRSKESIRDVAIDLANAGFMTFVPDYRLAPANHFPAAHEDALNFAAWLLASNYTDEGDENNIVQIGASSGGTLALKVAGMYGFPTVTWSAPVDFSSWLADHQEVKPSVNAKEELGLTKQQAINEAFYKYFVLTYVGSEDYDLLADLDAQSYDYSKLGRLLMLNSAAELTDLAGVTNFAGHLAGRGHQVDLEIIPGHGHAMDYGREYLRESMTYLNYALSLKTGSE"]}}, {"location": "[1584348:1585209](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINIEKFIKIRKSLKLSQNELCNGICTQSTLSKFENNGQIPSFKILKQLCERMNISLSDIVLTSTESEIAQKLFSADFYFITYDYDQVRKILKQVNEKKIRDKQDLLHYNYLCGQLALDGDHNDVSALFYFNNILTTDNLKADNIYRLLALKGCSQVYASQDMDKASHYFDQILGQIKKVEIKDSLRELQVMSILTAAGEFYGQNGQYKHADDLLNYAYELASSHHVVYFLARVVYQLALNDLAQKRSLNTALEHLHDSLAFARLNKNEVILKEGSKLLKELEEKA"]}}, {"location": "[1585249:1585747](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.6"], "codon_start": ["1"], "gene": ["ntd_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9R5V5"], "locus_tag": ["MAAAAKME_17320"], "product": ["Nucleoside deoxyribosyltransferase"], "transl_table": ["11"], "translation": ["MTATARIYLGSSFHRDHHQARAKQVREYLAANPTVEHVHFPFDQQVTDPAEDPNVGFGDERSLLWKQQTYQNDINGLSMANCGVFLYDMDELDDGCAFEIGFLRAQNKPVIIVPFTNQPEKKPIMNLMLSEGATAFIKGDQELELLKTYDFNNCPCRPLTGYGTI"]}}, {"location": "[1585755:1586427](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01209"], "locus_tag": ["MAAAAKME_17330"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MRINVLQHTPNEGPGAIKAWAEDRDNKVYVYHPETFGIFPKADETDMLVVLGGPMSPGDDLPWLEEERQLIKDCLKQHLPILGICLGAQQIAICLGSSVHPAAHKEVGWAPVYKQNDAIAGLPDKLLALHWHQDMFEMPAESHLLYSSDLLANQGFLVNGNVIGLQFHLETLADNVREIVINDGAYAESGNDLHQTPAEILAQPLPSANKRAIYTMLDYLSVH"]}}, {"location": "[1586590:1587448](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_17340"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MYRYKAVEGQSTYEPHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCKRKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYSVEDIAKIEVWCNSLHRKILNYKIPEEYFDTELDRIYRRR"]}}, {"location": "[1587958:1589047](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKCPNCGQALTGQEKACPNCGFNVEKYRRDYFTEEAVEENVEIREAKLEEADRSLEKEPVDKLSRSAYQQKQERNAFTGNPTAEKMLQWMRDNTTIAFLVGVGLLIIMSFSRPLGWTAFAVSMALLIWTGYRDSQGEYTADRNLTEYIRNWASKVFNAFDDKESEIEEKNEDFTQAHPKFEAKVEVEKVKKKTKKPRNFGIIQLSILLTSLITLVLLFLGTGFVTSSSKLTVASVFFEVANWQIAAGKIVPALILYLFLAIFLLLPVFIMLAVSQNTRVSRVRAFALSLVESLVLIYLFFQLAQTTSAASYLSQAVSSLKSYAVAIGISGYLLILVSCLTTVLAGINMFQPMVKPRQNSEE"]}}, {"location": "[1589159:1592342](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["smc_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01894"], "locus_tag": ["MAAAAKME_17360"], "product": ["Chromosome partition protein Smc"], "transl_table": ["11"], "translation": ["MKKLLKNHLGALIAGVLILVISLVALPNVDSLTRAHSEISLPSNVESEAAKLIKNEWGNKKKNTYEVAVVFNKKSGKLTETDQGNIEASIDRLTSNQKKYGIKDYLAPQNNIATKKLLKSKDGTTWVMQMNIAKSHGSISQVYDEINKVVKTSGVRTYVTGADVLNNDFTSSIQEGIKKTELITVVFIFIVLIIVFRSPVVPLVSLLTVGVSFLVSFSIVANLVNQVNFPFSNFTQVFMVIVLFGIGTDYNILLYNHFKEYLGNGLGVAEATKDSIKKASRTILYSGSSILIGFSALGLANFSVYRSASGVAVGVLVLLIVLLTLNPFFMATLGKKMFWPSKEFAGEKPSKMWHGISSATLKRPVVFLAAVAVVVAPFFVTYSNVFNYDDTAEISDSVPSKQGLNLVQKHFSEGMAMPSYLYIKSDHTLDNEKDLKLIDELTRKLRNSEGVDKVMSATEPYNEKIKLLYVKKQLKSVTDGIAKLEKGVGKLTKGSEQVTSGAKKLANGADQLDEGTGTLSDEAKDLYTGTQTLTNGAKDLTANMNTLVAGLDQLKSQLSENASSLNADQLDQLSSGLTDLNSGLQSLQGQVGSLQTGLTNAKTALTTARTGFGTASAAAGSLASSISKVSDPTLKAELQKELETLNSGLGTVGSGLTTARTAATNMNSAASGIQSATGSLGSGTSAVSTADLSTEVQQLQAAVDALATGAHKLYTGSNSLYSGLSKGMAGALALSQGADKLQSGTSQLSSGASKLAENTPAITSGLTAVNNGLVSAGSYLNGLRKSKASDTFYVPSYVLKHNADLQKSLKVFLSPDKKSAMIIIILDSNPSSESAAEHSQALSAMARKSLKGTDLGKAEVEMGGQSSTIEDTKNTASGDFTRTMAIMLIGIGIALIFVTRSLLQPIYILGTLLLAYISSLSITRWVVSGVMGRSTLAWNVPFFTFIMLIALGVDYSIFVMMRYRDSDPHALSSARILEACTVIGTVVISAAVILGGTFAALIPSGVPTLIEVAIGVIIGLAILVFLMPINLSASTKLTYEGFPWPKWAGRKKSLSFGKKS"]}}, {"location": "[1592385:1592970](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["betI_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00768"], "locus_tag": ["MAAAAKME_17370"], "product": ["HTH-type transcriptional regulator BetI"], "transl_table": ["11"], "translation": ["MVVIMTQKRTLDLDKVLAKATEMIESRGLSETTMPNLAKDLGVRSQSLYHYVKNRSQLLSLVAASRIRLLYQDLLKQLVGLSGHEALFKFADVVRDRLLEDQALATLLYHMDEFSDDSEVVKEVVKILDLGDQLQVDTEHVVSQHALVGAVLGYVFLDRFTDGQEKVESPREAEENYHEMVWRLVSPSVQQSNA"]}}, {"location": "[1593129:1593375](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIWWFANFYWFSLLIYLNVFMFNFHYADGSSINPFVVTFLLLAICIMVGEFQFAWYMWLATKTYKPRKRKKTQNDSTVWL"]}}, {"location": "[1593413:1594328](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNNIVVGALIASLLAFVVYTSTNKDAEMRKVTVVQVKKSGKVKKTVSSTDKEPNVNSIEYDNQVKSSKGSDKQLVKAIKKAMGQDVSYQVAAYDLNKSSHFAEVTNTKSGQDSQKIFYLYLLLALYAQEKSGKIGASTTIKVTKADKAGTSRAIAVGISYGPSYLREQMLKGNKTAANALLRTIRTKQVNKILKQLGASQTKLTGTFSKSVVGKTTASDLAKIMVSIYQGKLVGSYNQQVLTAMTGKTKLASKAKGTIYQYADGNLEVALISNNGHNYVVSAWSSKTDDFVSLGQAVKQVMEK"]}}, {"location": "[1594359:1595277](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0598"], "gene": ["corA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WZ31"], "locus_tag": ["MAAAAKME_17400"], "product": ["Cobalt/magnesium transport protein CorA"], "transl_table": ["11"], "translation": ["MIKQQIFPIETDFNWYDVNGLNEADSRRLQTEFYFTPEIISYVSDRHERPHYDYDQYTDTHLLVYDVPVWPTTTIKHFTSRPITFLLQGKNLFSFHTIETSYVFDEFNDPQVLRWLSHAQDVTELLATFLMYASQYFHLAITQLDAERNDLDVKLSDDIDNKDLVELSNIEKSLVYLSSSIQTDQMMLRSLQHSRLTFSKAAKERLDDVLIESSQSSEMVQISRQVTKTLSSTSNNMMNNNLNDTMKFLTVWSIVLTIPTILTGFYGMNVKLPVLGASYDWIVIILITVLLMVWLIFFMRKHHLF"]}}, {"location": "[1595371:1596259](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.5"], "codon_start": ["1"], "db_xref": ["COG:COG0596"], "gene": ["pepIP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46544"], "locus_tag": ["MAAAAKME_17410"], "product": ["Proline iminopeptidase"], "transl_table": ["11"], "translation": ["MMQITEKYLPFGNWQTYCRIVGEATDRAPLLLLHGGPGSSHNYFEVLDQVAEKSGRQVIMYDQLGCGNSSIPDDQAETAYTAQTWVKELENVREQLGLDQIHLLGQSWGGMLALIYLCDYQPEGVKSLILSSTLASAKLWSQELHRLIKYLPKGEQAAIKEAETTGNYDSLAYQAANAHFMDQHAIKLTPDLPEPVLRKKKGGSLAYLTGWGPNEYTPIGNLHGYEYTDRLKDLHLPALITSGTDDLCTPLVAKSMYDNLPNARWELFAGCGHMPFVQENAKYQELLSDWLISQD"]}}, {"location": "[1596255:1596759](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.57"], "codon_start": ["1"], "db_xref": ["COG:COG0454"], "gene": ["paiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21340"], "locus_tag": ["MAAAAKME_17420"], "product": ["Spermidine/spermine N(1)-acetyltransferase"], "transl_table": ["11"], "translation": ["MQVSEKDLPELIAISRETFADTFGKDNSPEDMAKFLDENYNEDKLGGEMATPGSFFYFLKADGEVAGYLKLDVDDAQNEEVDPNGLEIERIYLQKSFQHRGLGKQLFEFAEEKGREWGKSVLWLGVWEHNENAKNFYASRGLTRFSEHVFVLGDDRQTDFLLKKALV"]}}, {"location": "[1596813:1597401](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKEMTLISAKGKLKGIWGEAVNSIEGITPLVILAKIGDKDQAYWLSRYLNDAGILTFTFEAEDAASAISGYHLAFDELRNDDRVASEYIVFAGYGEAGNAAAVAASEIGRSVRGIFLMSPVIKDWDKIKGYQGRSYIVAGSDDDQAPLASLEMMAKQLKQGELLQMRGAGHDYREEDWERAGMLLRTWVLTGLN"]}}, {"location": "[1597573:1597840](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8G6Z9"], "locus_tag": ["MAAAAKME_17440"], "product": ["Dipeptidase"], "transl_table": ["11"], "translation": ["MARDEDYDQGFNEKRFVYCPAKNYDELFVSKGTGVEIPLKGEGCGFPAVRDAVEDYGRFDEQGINSYNVAMSSTESEASNRRVFDGSQ"]}}, {"location": "[1597919:1598765](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKKRRRKKRQNTSLLSVAIAAAAIIWGVYTKGGQGNLISSSSNTSTSSSAVSSAQTAKTVYGGLAKSDYQKLAQETFKSGGKGWRYVNNNHSTLVKSAWKVNRVIYSNLDSQNRTSSSNTAFLEKRNVANDSLRVRQYVQPTGWHSNRQNGTQIYNRGHLIAYSVSAGIDQDGNYNPKNQSGDQNNPKNLFTQSAFSNQKIQTIFESKVRSALRSGKKVIYQATPIFRGRELMARGINLQAVSTDGSLDFNVYIYNVQPGYQFDYETGRAKIDRGMQVSE"]}}, {"location": "[1598891:1599722](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.274"], "codon_start": ["1"], "gene": ["dkgB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15339"], "locus_tag": ["MAAAAKME_17460"], "product": ["2,5-diketo-D-gluconic acid reductase B"], "transl_table": ["11"], "translation": ["MEEFKLNDGNQIPRIGFGTYKIKGYQGALAISQAIESGYRLLDSAARYENEGALGKAIRSSSVARSQLFVTSKLPGAHHEYKAAINELEEGLLRSGLDYFDLYLIHWPNPLEDHYVEAWQALIDAQRFGLVRSIGVSNFEPGHIDRLIKETGVTPAVNQVELHPYWSSRAVRAYDDEHGIVTEAWSPLMRAGEVFQEDLIQKLAAKYGKSPAQVILRWEVQLGVVPIPKASSSQHQLSNLDIFDFSLTEEEVTALTDLDKADGRRPDRDPNQHQEF"]}}, {"location": "[1599845:1600295](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMTKTEKTFSTIIKTVNCLMFLSEAVLICLMGAELVGFQTKAKDLTIGWSLIIASVALVLAAILIWTSKFSVLFWITEVALLASFIILTIFRIMDVGTAFDILGSAAILALIRYGKFTKPYIGPIVVVAIDLAYLLLLIFYYDFFNFSY"]}}, {"location": "[1600389:1600773](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.59"], "codon_start": ["1"], "gene": ["nagK_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01271"], "locus_tag": ["MAAAAKME_17480"], "product": ["N-acetyl-D-glucosamine kinase"], "transl_table": ["11"], "translation": ["MPAAQLSEWWKGSNQELGNEDLADSLAAFAAIKSGNEEAGKIFRQYCLDVAVMIFNLQTVINGEKVVIGGGISAQEILIEEIRRQFGEILQDNPILGQQVIPPEIVAAKNDTNLYGALFALLQGMQK"]}}, {"location": "[1600714:1601080](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.59"], "codon_start": ["1"], "gene": ["nagK_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01271"], "locus_tag": ["MAAAAKME_17490"], "product": ["N-acetyl-D-glucosamine kinase"], "transl_table": ["11"], "translation": ["MNIHYGGALTFLDGLNLEETLGSRYGVAVSAENDAKAATLCEQWRGELKGVDTRAVMTLGTGVGGGIVVGSKLMHGSSFQAGELRWMITNQEAWLKEMADYTGARCSAVRMVERVKPGAGQ"]}}, {"location": "[1601140:1601326](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNPEEYLKEDFEATGHSRYTVDGLEKNDPDGWTRQLLEKGKRPSADNLDDFVAALYEVGDQ"]}}, {"location": "[1601553:1603149](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.5.2.6"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["msbA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KQW9"], "locus_tag": ["MAAAAKME_17510"], "product": ["Lipid A export ATP-binding/permease protein MsbA"], "transl_table": ["11"], "translation": ["MSLKYARKSQVALFSFLAAIKACNVLFVAYMLKVMLNIASSGKADYGRLVGFAALTAGGQLLFMASNFFYETTKMNIIRSVNMTLKEANLRYLIDQNSLDTKDGLSFMTNDLKQIETNRVTAQLDIIYQSLTFVGSLAFALYNSWEMTLVFIVATLAPAGVQMITSKIITKKSKIWTQKNAVYTQYVSDSLNGAQSARLYNVRTNIVKRAVGAAGDMETALRNMTLTQAWALELIYSAAELFCFIIPCTIGGIMMMQGRLAVGTLVMMVDLAINFISPVVTLFNEFNQVKSTVPMWQRTQRALNYVQKDDDYPVDHFDGMEIRDVAYVTKHSKRQIFEHVNIKIKPGEKILLMAPSGWGKTTLLRLMLGIYTPSHGEILINGEEVTGDWYKAHNFYSYVNQKPFMFDDTLRFNVTLGRQVDEEQLLMACHEAGLDDLIQENGLDYPVGENGNNLSGGQIQRVEIARALLSGRPILLADEATSALDPRLSLEIHETLLGNPKVAVIEVAHKISDVEKAMFDQIIVLDKVKPA"]}}, {"location": "[1603425:1604448](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_17520"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKRLKLNDRTTIQELHSKGCAIARELNCSPSTVGYELKRGTVSVYTGNVKRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSRKLGHWECDLVLGHKTKDDDMLLTLWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPEGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYLRR"]}}, {"location": "[1604586:1605654](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLVELHTKADQLSGSYYLGYLIYQSADAATLISLDDDANAGGVLVINNQDILTSVDESPSLAYCQRLIDEGKSTDPFALMPLNQELLKTPLTSLSAASQAALEKDLVVNITLTSGIVYTGIIALAGPTEIQLKQIGDDYELDPLCLVIPLSAISSLELNAPLNKLWTKYQAVKEQFAGQNPYGLVELYLDWLDDARFGSCLLGLVLDQSDQFLLFESLNDYGQLESICLVNREDVVHESVNSAAIDFSNFLVAYNQKNKIFDPGHLGKLAQSLNHVPTAREVIEKVGNQLVSVDDYELAEENLGYVTAVDEAGFTIEDPESGQEVSHLFENVCALDLASTELKKMREFLAAQNQ"]}}, {"location": "[1605722:1606637](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.5"], "codon_start": ["1"], "gene": ["fpaP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05420"], "locus_tag": ["MAAAAKME_17540"], "product": ["Proline iminopeptidase"], "transl_table": ["11"], "translation": ["MKQGTTILTLDNGYHLWTNTQGTGDIHLLCLHGGPGGNHEYWEDTAEQLKKQGLNVQVHMYDQLGSLYSDQPDYSDPKIADKYLTYEYFLDEVEEVRQKLGIDNFYLIGQSWGGLLVQEYAVKYGDHLKGAIISSMVDDIDEYVAAVNRRRQEVLPQTEIDFMHECEAKNDYANQRYQDDVQILNINFVDRKQPSKLYHLGNLGGTAVYNAFQGDNEFVITGKLKDWHFRSELPKIKVPTLLTFGEVETMPLETARTMQKLIPNSRLVTTPDGGHHHMVDNPDVYYKHLADFIREVEAGTFQGE"]}}, {"location": "[1606792:1607569](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTIGKELQKQRRAKQLSLEAVSQTLRVDQATLQKIEADDFQGLNPVMVRSCIRQYASLLGLDGAQLLDQFTEPAAAGKDIPAAKPTSPVKEASPAGKAKEILDKSKVPHGFKAIFKFFDAINLDKLLKIGIWVILGLAVVGSVGGGFGALASKATSISRSSSSSSSSSSSSSSSSKPAQDDSAKPDENKPSHDDQPSQPSQPSQSQSKEEQVSSSSEASSSSSVASSSSQEQSSQEQSSQASSSSSQSSTDTTTDTNE"]}}, {"location": "[1607624:1608182](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["efp_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA92"], "locus_tag": ["MAAAAKME_17560"], "product": ["Elongation factor P"], "transl_table": ["11"], "translation": ["MQAIELKKGMIFDDGGKLMLVVAANHHKPGKGNTVMQMDLRDVRAGSVIHKTMRPSEKIELVEVVKKKAQYLYAEGDSYNFMDTETYEQYAISGDQLGDDVKYLMPNIEVILEFTEDGELLAVQLPSTVNMKVVETQPGIKGATAASGGKPATMETGLVVTVPDFINEGDELVINTQEGTYKSRG"]}}, {"location": "[1608235:1609150](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.33"], "codon_start": ["1"], "db_xref": ["COG:COG1072"], "gene": ["coaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WPA7"], "locus_tag": ["MAAAAKME_17570"], "product": ["Pantothenate kinase"], "transl_table": ["11"], "translation": ["MRNYTEFSRQAWAALTPKTELAVTNEELAKVKSLGDQLDVKDVGEIYQTLLNYIHLAYQAKQATAAKKAEFLQLPESKVPYIIGISGSVAVGKSTTARLLQLLLTRYYPDLKTQMMTTDGFIYPNQELEKRKLMPRKGFPESYNMQMLRDFLQDVVSGKNDVVYPLYSQELSDIVPGRYGHVEKPDILIIEGINTLQLPESGQLVTSDFFDFSIYIDAEEDLIEKWYMQRFKKIMKMKKNDPSNFYYKLANGPEDEALRLAEETWQMVNLVNLRQYIAPTKERANLILHKVEGHLIDKIYLRSF"]}}, {"location": "[1609252:1609822](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG2755"], "gene": ["tesA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9HZY8"], "locus_tag": ["MAAAAKME_17580"], "product": ["Esterase TesA"], "transl_table": ["11"], "translation": ["MKKVVLFGDSIFNAYDGQKDTDRLTKALAKRLGDAYEVVNISVSGACAQDVLPRVSSLPACDILVVEYGTNDAASWGCSAYDYQEGLESLIKQAQKVTGASDTLVLAPSMPDLTNPEMAAAYSLEKLDEYVDIAQRDAGKTNSFFFDLTHKMEKLKDLPSFMIADGLHYSEKGISWLADVLADQINKMA"]}}, {"location": "[1609959:1610403](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQVEFKQDKQLKEDQLIIKAKKLTPEIEAALAFLEEKMAQKITVYQGSDVIILPLTSILFFETSDRHVWAHDREGSYLVKQTLRQLEANLPSDFDRASKSALVNCRQINAVKRSIMGCELGFTASYKKVFVSRRYYQTLISHLHEMR"]}}, {"location": "[1610408:1611158](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKNRKSAVRWGLILIAIAIPLILSQLFPDYFTLFKLFNLSWGQVFWVLLLAWIAWTSFKNRALFFGIFASGLIVKTISEASHFFKWTGYMYLALFLIALGCKLLAGGSQLEVKMNVKTGKKDDDGTSLSYSESIGENGEKVSIESVFSKCVRYVHSQALRKLSVSTVMSPVTIYLDQTQLKDGRGKLDLDAVFSKVDIYIPREWEVQADDSPVFSRFTALNPSGLTADSPLLKIDADLVFSQVTIHRV"]}}, {"location": "[1611219:1611828](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["artJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P30860"], "locus_tag": ["MAAAAKME_17610"], "product": ["ABC transporter arginine-binding protein 1"], "transl_table": ["11"], "translation": ["MCKKLGLKADFQTIDWSMKETELRNGTIDVLWSGYSVTSQRKKKVAFSRSYFRNRQVLVVKKSSGIKSFAQMKGQAIGAQSGSTAQIWLDGSQKVIKPKSKVLYDTIPSAFLDLNAGRIKGILLDETYAEYYIKHEADSKSYQVILNKEVPEDLFAVGMRKGDKNLKKKINQALAELQANGTLAKINQKWFGQKSNYLGKVD"]}}, {"location": "[1611805:1612051](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWFKRILLLGLVLSCFLTTACSNLTKEANQKDTWAKIKKRGSLVIGLDDTFVPMDFRQKRWPTGRLQRRLSQGRVQEAGP"]}}, {"location": "[1612053:1612326](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["glnQ_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P10346"], "locus_tag": ["MAAAAKME_17630"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MADKGGLYPYQLSGGQKQRVVAIARALAMLPKMLCYDELTSVLDSALRDQVADLILNLKESGLTQLIITHDMDFAKKVADQVLEVKPLEG"]}}, {"location": "[1612352:1614632](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG3973"], "gene": ["helD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32215"], "locus_tag": ["MAAAAKME_17640"], "product": ["DNA helicase IV"], "transl_table": ["11"], "translation": ["MVENSDRKAEQAHLDQVLQKIDQKGDQLKQAIAKDKSEARNISAHFYDDIRLDFDDYSTSMDTALSIQQQQQMLKERDNAWQVNARELATLKRLHVHPYFARVDFEEAGEEPESIYIGLASFMDENNELLIYDWRAPISSIYYDGKIGKVTYYSPEGPVEVDMSKKRQFMIEDGTIINMFDTDETIGDQMLMEVLSEKSSIQMKSIVKTIQKEQNKIIRDTTSDLLFVQGAAGSGKTSAILQRIAFLLYRYRGNLKSGNVIMFSPNQLFNDYIENVLPEMGEQNMVQMTYWQFIARRLPKMKVQNLFDQFEDRQADTAIGRFKDSLAFYKLATRYGQHLNQSGMIFRNIYFRTKKKPFFSKEEIKELYYSFNENYKLGNRIDATREELIRRLNKRVANEARKVWVSREIEGLSHEQMLDMYDRPDQEFSSEKAERAFLGKKIVIKHLSKLARRINHNGFLNLRGQYLAFLRAVPKMTDLAKYGISEEEWLTHVEEVKAKFKEQEIDLRDASAYLYLYDQIIARQTNLEMRYCFIDEIQDYSAFQLAYLRYNFPRAKFTMLGDLNQAIFTKDESSSLLKQISGLFDPEKTKLVQLTKSYRSTKQLTDYTKQILRHGEKIESFNRQGPLPQVWGRSDEAGALAALKAALAENDAQKLTTAIITKDLEAAKKLADQLEGVHLISSANQRLVEGNLVLPSYLAKGLEFDAVIMWDASKAAYHEEDETQLVYTIASRAMYKLDLVYAGEKSPLLPTNEATFAKK"]}}, {"location": "[1614827:1615490](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRFFNFIKNLLILAIMAAAVVNYHEQIQTFLLEAAGTASTYLEQKGLKSKTLDLSVGIVAESNEKVTKNTTGYRWPKATAKVYIGVKQTDLYNATVNAMAAWNQTGAFTFKQTKNKKNAQIVVVANSKNNGAACLTTYKYLSHTNRLYSAQVALNTYYLENDYYNYTQARIVNTVEHELGHAIGLDHRTGVTVMYPTGSIYTIQPKDIKLVKKIYKSKS"]}}, {"location": "[1615504:1616158](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.73"], "codon_start": ["1"], "db_xref": ["COG:COG0406"], "gene": ["cobC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39701"], "locus_tag": ["MAAAAKME_17660"], "product": ["Adenosylcobalamin/alpha-ribazole phosphatase"], "transl_table": ["11"], "translation": ["MKRIYLVRHGKTFINKYNKMQGWCDTPLTDEGREGAEKAAEALQELPLDIALSSNTLRASETCEIIMEKNCNRDLLQHLAYPYFREHFYGYFEGMDNDVAWRMVGAAHGFTNAADLAEHATCDQIADWTKEADPYHDAEDSKEFWARWQKGFDLIQQLDGAENILLVSHGFAIKTLAQKFAVDGIDTTVHPRNSSISTLVMDEAGNLQMTSYNKLQL"]}}, {"location": "[1616274:1616967](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.46"], "codon_start": ["1"], "db_xref": ["COG:COG0584"], "gene": ["ugpQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P10908"], "locus_tag": ["MAAAAKME_17670"], "product": ["Glycerophosphodiester phosphodiesterase, cytoplasmic"], "transl_table": ["11"], "translation": ["MRTKIFGHRGYPAKFPENSLEGFDYCMHHGAEGVEFDVHLTRDGVPVIMHDENIKRTTNGKGLIKDFSLAELDQFHLANGERIPRLKDLFQLTEESGYEGQLNLEMKTNKFDYPGLPEKIFALADQFKFKQEIIYSSFNLQTLIHAQKIRPEENYNFLTDKRIKDPAAFVKEHGFKGIHPKRLLDTDTPERIWTVDSPLRAKKIIEYGAAGFFTNKFEDMMDLRKRVANY"]}}, {"location": "[1617100:1617340](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEECHTLVFDKGIENGEFSGVRYDLQEYLEKYPDAKFEIITDTYNMTTTVMEGYIYRDGQEAVAGIISLWTLGEVIADF"]}}, {"location": "[1617379:1617514](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLIKKTISNIPFDLHDSRIVKMEVNDGDLTLHLDQVYEYHKDS"]}}, {"location": "[1617543:1618965](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKRKDIKKLLLASAVLLTFGIGQQLEPLQPVHAARQVKKSRKAKKGKKAKVSINKKKLSLLQGKTARLYLKNSKKKTTWRSSNKKVATVSSKGKVKAVKAGTAKITAKNGKKFYACMVKVTAAKGTLTFASNDGSGRRQKKIFTLGKKVTLPKTGFYRKGYKFLNYTVATNGKGKKYRLGKAYTFKKSTTLWAQYRKLENVDVKTQSTSGLVKAEVKFIAHRGYSTKYPENTTLAFEKAGEEAGVWGIETDVDNTSDNKLVIMHDNTLARTTNISADDPNYRKNINYIPFDQVENYKIKGVLDGVDKDKVYEDLRVPTLRQYLEICKKYGKEAFLELKYINNMEALKEVVKEINEAGMQKQTTLISFNIGELEEVRNVIPGGKEIAMMGIYSRHLTDNDYIFLSHLKAGADCYYNKTTLDDILAARKYGVDYGIWTVCKNDNAVADMIKNGADKVTLNDAGLIESMSAIVNN"]}}, {"location": "[1619107:1619275](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQQRHQSWSKDKTASKLMEQMDLADLQDYYEKVGQKHRELVEYVLQIDHFIDGLA"]}}, {"location": "[1619274:1619901](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKPCWPRPCLKLVAKNKQVILIPRTPHLMGLLPLEGIKIIKKVAGQQQLLSDSQILAEVSSSLGLDADQRAVKSRCVLLVEGQEDVRFVTKINQWMYEEKLVEATFAEKGLFILPVGGCGSLLAWLNFDLFSKLNEPWFILIDSDKGTDEAKQSQRHLHRIRAKYPWMQAHIHATFKREIENYLVFKEGKKTHVFAPYEDVKQHMYDF"]}}, {"location": "[1619857:1620097](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGEPAPQFVFQDPNLAELIKQREKVGVTGTAKVSRIILAFLLAQSENASIDNVVYAFEANDLSEEDEALLAQALLKTGR"]}}, {"location": "[1620172:1620634](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLRAVELHNFRGYRNFKLKFAPLTSLLGEGEVGKKTILRAMDIFFNGPLAKRPLKLQDLNEKALKAGDWQIAITCCFDDFAIKKSFDLKQYLEESDSFAEEGGDFQPVTDQNRGRYRQLSAGMPLYVFFDEESRAASPLNFVARSAIRDKAA"]}}, {"location": "[1620644:1621352](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYHELALQIRFVVIAVCVLAGYWAIRTGNSFLRLVVTVIYGCALIYYVFASRMLTVAVYYWQHPAQMAAGSEVLKDPAFWKWGLKKVFASSNYGGRYGFLMNVLLFVPLGYIIPSWSKWLHSIMITTFMVFCLSWFIEHFQRMTGLGTYDVNDMIANTMGAFLGAVAIMPTLWMRDIQARKLRKAREHAEAKAKGEAEAARLDRVSRQLANPTEKVPKVKMSRKDYRQRHGDQAD"]}}, {"location": "[1621539:1621968](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKEKINELWGKYKDIIPYVFWGVMTTLVNIFSYWLCNSVFKWDIMPATIMAQFLSIVFAYLTNRKWVFHSQASTFKEYASEIASFFAARIGTALLDMAIMFIFAEQMHLNSMVIKILANVVVVIVNYVASKFWIFKSKDSE"]}}, {"location": "[1622077:1622527](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKRNIILAFLGCLGSVLLISGLTFQNSGQSAQLTLKFVNLFEKVHFHLTGTMMAEYPIYHMMRKLAHTAEYFLLGTSACYFFSRWQKHYAWSALALSAAFSLFDQTSKLLVPGREFDPTDFPFDIAGYLLGIGLILLLQRSWAKRAVN"]}}, {"location": "[1622795:1623035](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTNKFTISWGDFSRYRSSMFGLSIIGIMVFHYFEHIRSAHLLLKSEQFWDYYIGSTGVDFFLFLSGMGLFYSLTANFP"]}}, {"location": "[1623399:1624623](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_17790"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1624894:1625359](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.39"], "codon_start": ["1"], "db_xref": ["COG:COG0615"], "gene": ["tarD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2G2X2"], "locus_tag": ["MAAAAKME_17800"], "product": ["Glycerol-3-phosphate cytidylyltransferase"], "transl_table": ["11"], "translation": ["MKRVITYGTFDLLHYGHINLLRRAKAQGDYLIVALSTDEFNWNSKHKKTYFSYEQRKQLLEAIRYVDLVIPENDWDQKRSDMHEYHIDTFVMGDDWKGKFDFLKEEGVNVVYLPRTPEISSSKIKHDLYDANEVTEESKLSHEDLDTDPDHDKK"]}}, {"location": "[1625376:1626288](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDNIKLKLSEDFLKEEVRNDYTVSPEMKKVWAVELDLLDQLDRVCQKYDIPWYLSGGSLLGAVRHQGYIPWDDDIDLMMYRKDFERLCEVASQEFTEPYFFQTEETDTGSIRGHAQLRNSATTAILKSEEYFHYQFNQGIFIDIFPLDNVPDDPEERQAFVKSVNQLKHRARQFYNYCNGYPNKNLSGLKQFLLYTKFFFEKKKSGGRNIYYDRFAKEITKYDDQATQEVMMVMLGTEKCCWKREYVANPVRVPFELLSLPIPKDYDPLLTKQYGKWNIFVRGGSLHGSVIFDPDKSYKEYLK"]}}, {"location": "[1626308:1627742](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["murJ_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02078"], "locus_tag": ["MAAAAKME_17820"], "product": ["lipid II flippase MurJ"], "transl_table": ["11"], "translation": ["MNNPSIKKNIFISTLYQVLSIITPLVTAPYVSRVIGTDGIGAYSWTSSIQTYFSLVAALGTLSYGMREIARNRNDVKKRSQIFWEIEMLSVFTSLAMLLLWGIYLGFQSHYRVMFLILTLNLFNTMLDISWFFDGLEQFQYTVTKNALVKVAGVILILLFVKTPKDTNLYVFIMTGTTLLGTMSMWLELHKFVVKVPIKLVNLKRHFHETLIYFIPTIATSIYTYMDKTLIGFMTQNNAENAYYEQATKIINLTKAVTFTAVNNVLGARISYLFAKKNEKEIKQRIQGSINYILFIGVGIGFGLLGIADTFVPVFFGHGWDKVALLLRLFSPQIVIIGISNCLGSQYYNPAGLRKQSAVYIIIGAVINFVLNLFLIPRFASAGATFASIIAELTISLLYLCHDNGYLELVYIGKVIWKKLIAGTLMMLVILALNPFGNPGIIKLGIQFVLGAGTYLATLFIMKDDSVGLLKKILGRG"]}}, {"location": "[1628223:1628550](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.-"], "codon_start": ["1"], "gene": ["gtf3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00841"], "locus_tag": ["MAAAAKME_17830"], "product": ["Glucosyltransferase 3"], "transl_table": ["11"], "translation": ["MLKYADCLIVHNDSMKNFFEDRGVDPKKLVTLKIFDYLIPNGEINHAKFERSVSVAGNLDVSKTQYLKDIGKIDAKFNLYGLNFTLDAYKNVEYHGAFPADEIPNQLN"]}}, {"location": "[1628710:1629919](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAYLIAISMSLLVAAFVPRLIEENQHGTFLLVKQPWYKDTKKWQLIGLVSLSALPILLISCFRYGVGTDYFHTYVPQFLSIVNGSYTHYYEPGFYLLNLLVASLTSDPQWLIALCALLTLGLVYVVTVFLSDNYFISILLFYLTYTYFVSINNIRQALASAILLPALYFLVRKKKIAFVLLTILAGTMHQSAYYFLIMAVLDLLPLSQLSYLLINLGFYIFIKLLGKRILALLALLIPRVQMYLNQGVYLGKTIGKLYLGVQIAISLIYLYLEYQQCFNRDLTQFSYNKSSFKSQLVGMLQLDDRQKLGNSAEEWAIAKLLQWMILIVCAMDGILPATYRVVRIFTYAQFIFIPNAISKFERDDKRRLILYILVIVIFGILFVHDFAMGFEQVYPYKSIFNH"]}}, {"location": "[1629960:1630719](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYIITHKRVKLPKLDKYLPLQVGSSLHEHLDYLTDDTGDNISEKNPNYCELTGLYWIWKNTKDDYKGLVHYRRYFGKSDFSSSFEQIYSYDELKGFLQDHDLVTSYVANFKQNAHDEIMIHCCTEEIFGKLRASVAKCSPEYLSDFDKFFNQNKAVLFNMMFCRGDLFDEYCQWLFTILFNLEPQVDLSSLNAYQQRLYGFLSERLLNIWISHKELKVKHLPIVNTEMPMKEKITNYRRQITNQIFYTLKK"]}}, {"location": "[1630739:1631858](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["epsF_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71055"], "locus_tag": ["MAAAAKME_17860"], "product": ["Putative glycosyltransferase EpsF"], "transl_table": ["11"], "translation": ["MTKRILEVNVDDNGYSGVYSLIKRVIENKPADYQIDLACLEPFESQQNIDYLNKLGTQVYYIGYPGNKIKKQLKYYEKLQKVVKDGNYDYVHIHGDVANKLYVTALAARKADSGVKIILQSHASDVDGSHRQLKRFIHKSLRGKLVKLADCYVSVSDLASNWMFPSIPKSQVIKIMNGVDLAAFRYDPIIRKRIRKELGLSRKHVLGHIGRFAYQKNHQYLIQVFAKVYAQDPQARLLLVGKGDLQDECKHQVHDLGLDKQVIFYGLSSNTSELFQAMDVFLLPSHFEGLPIVGVEAQAAGLPVIFSDQITSEAKMTNNVSFLPIDETSLSAWQSQVIKDLELGHRDDYDLLSRQKLDITDTVAAFMKLYNS"]}}, {"location": "[1631850:1632756](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.287"], "codon_start": ["1"], "db_xref": ["COG:COG1216"], "gene": ["glfT1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R5Z2"], "locus_tag": ["MAAAAKME_17870"], "product": ["Galactofuranosyltransferase GlfT1"], "transl_table": ["11"], "translation": ["MKSVAAVVVTYNRKELLKEAIDALLMQSAAEADVLVVDNASTDGTKDYIADYIDQGQIIYINTGENLGGAGGFNFGMRKACEAGYKYVWLMDDDAIVKRDALKELLKADQLLKGNYGYLSSTVFWTDGQPCVMNRPKLVKDWTSDLGYLSAGLVRTYYSTFVSFFVKTATVKELGLPIKDFFIWGDDVEYSNRLSKKYPCYVVGKSQVIHKTRDNNGSNIAKEQGDRIGLYKFAYRNECVIARENGMKGRLRQFAKVNYNMLRVIFTHNPHKLKKLGIILGGSVEGIFFRPEIEYIEEQHD"]}}, {"location": "[1632783:1633431](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["murJ_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02078"], "locus_tag": ["MAAAAKME_17880"], "product": ["lipid II flippase MurJ"], "transl_table": ["11"], "translation": ["MLPHVANAFAKHDMKKAHEMLYKSFDFVSALAYPMMFGIAGVSLTLAPLYYSAKYAPVGPAMLIESIVILMIGWSNVIGTQYLLPINRVKDFTTSVTIGAVVNIILNFPFISLWGLNGAMWATVLSEVAVTGYQLYVVRKDLDLSLMFQSSWKYLLASGVMFVAVFGMNTHLKASWLWLICEVAVGVVIYAGLVYFLKAPIIDQAKNLISKKLQK"]}}, {"location": "[1633463:1633646](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLPGVNLASLKPLRHFKPTIAMFIPQIATQLYVQLNRTMLGLMVDQKASGFTNIQTTWLS"]}}, {"location": "[1633629:1634133](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["rfbX_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37746"], "locus_tag": ["MAAAAKME_17900"], "product": ["Putative O-antigen transporter"], "transl_table": ["11"], "translation": ["MRVVKNYLYNVGYQVLAIIVPLITSYYVSRVLSPEGVGANAFTSSIIQYFMLLANIGIGYYGNREIAYVRDNKQKMAATFWEIQIVKTVMTVVAYLSFVVFMAFYSGNKTYMWVQSINLIAVAFDISWLYEGIEDFRRTVLRNTFVKIVSMVAIFVFIKSSSDVAWC"]}}, {"location": "[1634135:1635251](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.9"], "codon_start": ["1"], "db_xref": ["COG:COG0562"], "gene": ["glf_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37747"], "locus_tag": ["MAAAAKME_17910"], "product": ["UDP-galactopyranose mutase"], "transl_table": ["11"], "translation": ["MSKYLVVGAGLFGAVFAREAAKRGHEVTVIEKRDHIAGNIYTKEIDGIQVHQYGAHIFHTSNKEVWEYVQQFAEFNRYTNSPVANYKGKMYNLPFNMNTFTQMWGVRTPQEAIDKINEQRAEMAGKTPQNLEEQAISLIGRDIYEKLIKGYTEKQWGRKATELPAFIIKRVPVRLIYDNNYFNDDYQGIPKGGYTKLVENMLKDDKITVELDTDFFAKKDEYLQKFDRVVYTGPIDEFFDYKLGELEYRSLRFETEEKNVGNYQGNAVINYTDAETPYTRVIEHKHFEFGKGDPDKTIITREYPADWHKGDEPYYPVNNDRNNDLYAQYKEMADKEDAKVIFGGRLGQYKYYNMDQVIAAALEAVNEEFGK"]}}, {"location": "[1635271:1636048](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIKVLVAAHKQFPMPDDSVYLPVLVGAVKNYKAGIAYRRDDEGDNISARNPYYSELTGVYWAWKNLKDFDAIGLVHYRRYFYVSKPHNLDHVAKGADYEHFLVDHDVIVPKKRNYYIESNYDHYIHAHPAEPLDKTRDIIADAYPDYLPAFDMMMKRRSAHMFNMFVMKRPAFESYCEFVFGVLSKLEGQIDIYGYSVQDQRVYGYISERLLDVWLYTTKQDFVEMPWGQIGGEAVIKKGYNLIKRKLGIGKKQTHF"]}}, {"location": "[1636064:1636715](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.36"], "codon_start": ["1"], "db_xref": ["COG:COG2148"], "gene": ["pglC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q0P9D0"], "locus_tag": ["MAAAAKME_17930"], "product": ["Undecaprenyl phosphate N,N'-diacetylbacillosamine 1-phosphate transferase"], "transl_table": ["11"], "translation": ["MTDNNGFDGETRLGAYRYVKRFLDIVGSLLALIVFSPVFLVLSLLIKSRDGGSAFFAQERIGKGGKSFKMYKFRSMKMNAEEILKSDPELYQKYVANDYKLLADEDPRITPIGRWMRRTSVDELPQFVNILKGDMSIIGPRPVVEKELAEYGNRKDKFLSVRPGAMGLWQATGRSNISYPERCDVELEYIDNISFTYDVKIFFQTIFSIFKKEGAY"]}}, {"location": "[1636922:1637705](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTLLTLLDDSRNDIYLLVDRKSVGYPRDFQLNYATLFSVSPLVIDWGSYSQIEAEMRLFQGAAPGKYAYYHLLSGLDLPLANQDEIHAFFAAHPGKEFITYSSQKNGAQLLARVQKYHFTHNFRQPNKAMRLFRKIEKAEQRVFPVRKKFAGTLAFGSNWVSLENDLVQVLLREDDRIRTMFARGFLVDELLVPTMLNIYPEFKDRIYYDRPVHDRPEEFQGNLRYINWWDGIPYVWREKDYETLLAARRQGPPFFQEI"]}}, {"location": "[1637818:1639003](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_17950"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MKTVNNDMDKNTRVGKRKKRNKAMRIFWSVMAVILVAIGGFALYEYNTVKNAADTAYRSGGLGNAENGSKNSVISNSKPIAILLMGTDTGALGRTYKGRTDSIMVAVLNPKTKKTTLVSFERDQQVNLPDYPENSPSKLNAAYAYGNAKELAKVLKKYYNIPINAYVLINMGGLKTIVNKVGGVDIAPILSFSYEGYTFTKGKTTHMDGAKALAYSRMRYDDPEGDYGRQKRQRQVLSALLNKAESATTLLNSSFISSLSKQVQTDFTFSDMTSMAKRYLAATKDLKTDYTHGTSYMQDGVSYQKISVSERQRISNLIRKTLGLKTKTVSTDSIDTSTSSSSSSSSTTTDSDTTGGAGNTAGPSDNGAAAGNGADSGTTGGYSAGNDQNNSTGY"]}}, {"location": "[1639224:1639407](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKAMQKLTALLLASASFLVASPAKASSLADRNYQGQKVITVNQERPTFSKKALSTKKGA"]}}, {"location": "[1639428:1640118](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDSLNRAGEADALLNKRLMPAKARKPLYWNPTAWHNKKIAGGWLYNRSHLIGYQLTEQNNNPKNLITGTRQLNDPGMLKYENQVASYIKSSSRHYIRYRVKPIFRGRELLARGVEMEAQSTGSNAVRFHVYIFNVQDGVKLNYSKGTSVVTGAAKKSAKKTVVKKAAAKKSTSSKKKIKTSTTGRIVGNRRSKIYHVPDQAGYHMNSANAVYFRTETEAKRAGYRRALR"]}}, {"location": "[1640435:1640765](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSYFPVGGVKPRYFYRKKVAIGGTEGSLTGAYAGSDMVCLFADTSGVYWFKGNRGQIEKIGSQARFKKLLRQISLNKLEENPLPVKKMKTEKKKTSKKKRARRKKKKA"]}}, {"location": "[1640770:1641205](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cpoB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02066"], "locus_tag": ["MAAAAKME_17990"], "product": ["Cell division coordinator CpoB"], "transl_table": ["11"], "translation": ["MMKEKNWLTWLTVLALVVGFAAMGASVWLSAQAAKQTQRNSQLAGQLYQASRTKSQEASSIKKRLDKLASDNSSLKKKNSRLAKENQALKQANQDLPAASAAAGLNVWETEEKGGKLQLKIDNQTGQAVSDLLVLAVAANGRIL"]}}, {"location": "[1641308:1641668](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKNMIGKYLRDLRRRRGMSQQELALALGVSKQTISNWEVGRKVPRMKAVDKIANIFGVSRNSILAGLPVEMLEQADRRVVDLTDRDIRLTYLGQQVQREYIDIIEKLMRWDIAERDAQ"]}}, {"location": "[1641804:1642818](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.94"], "codon_start": ["1"], "gene": ["gpsA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64191"], "locus_tag": ["MAAAAKME_18010"], "product": ["Glycerol-3-phosphate dehydrogenase [NAD(P)+]"], "transl_table": ["11"], "translation": ["MAKIGVLGAGTWGMALARMLSNSGHEVTVWSALPQEVDELSRTRRQKNLPGMVIPDEIKFTKEIAEACQDKDIILFAVPSVFVRSIAKTAAAFIPDGQIIVDVAKGIEPDTLLTLTEVIADELNKDGKHGNVHYVAMSGPTHAEEVAKDLPTTIVSACEDQAVAKKVQDVFMNKNMRVYTNSDRLGVELCGALKNVIALASGICSGLGYGDNMRAALIIRGMAEIKRLGLKMGGKEDSFDGLAGMGDLIVTATSKESRNNNAGYLIGKGKSAEEAKKEVGMVVEGINAIPAALELADKYDVEMPIVFAVDAVVNRGADARETVDALMLREKKSEMTK"]}}, {"location": "[1643695:1643980](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTYPIRGPLCRYGISHQVTVSIDRLSNHRFLLGLVSGDRKNEFKAFGRDWNERSEIFREGWDLTKKSLTHPNRLHFSGNYYSKLTGSLSCRASA"]}}, {"location": "[1643993:1644377](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPLVAIGRCRQDLSWLANEPDSWIWHGIGEDETAPAVKKLNDLNEDGNWHPFGYQNFVELLDDPDAPCELFNKIYLRGGAKSMAQFWRKQREEGLNHVIINFKPTKRPIADCLADMEKYVFPEVNKD"]}}, {"location": "[1644432:1645275](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNKRLMKNLGKAAVAAALLTTSVSPVLAATENKTEVKSNKTAAESSSKKTSSSESSKASSSSEASKSSSSAASSSSKKAAEKSTKKAAKKSTKKVAKNTKKTTKKAAKTTKKSTKKAAKNTKKAAKDTKKVAKKAAKDTKKAAKTTKKSTKKAAKNTKKAAKTTKKSTKKAAKDTKKAAKTTKKSTKKAAKDTKKAAKTTKKSTKKAAKNTKKAAKTTKKSTKKAAKNTKKAAKTTKKSTKKAAKNTKKAAKTAKKSTKKAAKKGSAKSTSASSTSSAK"]}}, {"location": "[1645424:1645919](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_18050"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDFGHWECDLVLGHKTKDDDVLLTLWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRCYIPKGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[1646803:1646989](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQFTKQFEGTFAQVKEQIDKFVAEGGHIDAVITDHTSEKVTENHTFSYKMRVIAICSEEES"]}}, {"location": "[1647206:1647323](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNIKLPELPGVFVLFIVLFVVLVLLLLYNLVNPGKEIV"]}}, {"location": "[1647485:1648475](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEVKRIMVAAAAAVMALTAAGCSSSSSSSSSKSSSKVYKIGICQLVQHEALDAATKGFKEEVTKELGKSHVKFDTQNAQGDSSTATTICNNFASENEDLILGNATASLQAASAATKSIPILGTAVTNYQVALNLKKFNGTVGSNISGTSDLAPLDKQEKMIKDFVPNAKKLGILYCSAEPNSKYQADEVAKYAKKDGLKVTEYTLSDTNDVNSVTQQAASASDVIYIPTDNTAASCAKTINNVALKAKVPIITGEEGIMSKCGVATLSIDYYGLGKQTGKMAVQILTGKKKIAQMPVQYYKNPVKEYNPTICKKLGIKVPAGYKAYKN"]}}, {"location": "[1648521:1648833](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGYLSSLSFLDLAGRLPASVAQGLFWGIMALGVYITFRILDIADLTVDGTFATGGAVSAVLIMKGVNPWLAVLVALVAGLLAGGRFDLADGNSGQAESSPIG"]}}, {"location": "[1648792:1649107](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_9"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_18100"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MATLVKPKVLLLDEHTAALNQKTAEKVLKATDRIVEEGKLTTIMVTHNMRDAIAHGNHLIMMNDGKVVLDIKGEEKKKLTVEKLLHQFEVVSGEEFASDKAILG"]}}, {"location": "[1649159:1649585](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.4.12"], "codon_start": ["1"], "gene": ["msrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:E6ESW1"], "locus_tag": ["MAAAAKME_18110"], "product": ["Peptide methionine sulfoxide reductase MsrB"], "transl_table": ["11"], "translation": ["MNEKADLKDRLTPMQYDVTQNAATEPPYTGEYDDFFEKGIYVDVVSGEALFSSLDKYDSGCGWPAFTKPLVKLTQRRDQSFGMERTEVRSRQADSHLGHVFTDGPLDRGGLRYCINSAALKFIPYDQLEEAGYGEYRQLFE"]}}, {"location": "[1649766:1650003](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3093"], "gene": ["ybaQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9T6"], "locus_tag": ["MAAAAKME_18120"], "product": ["putative HTH-type transcriptional regulator YbaQ"], "transl_table": ["11"], "translation": ["MTESIKMPTVAETINDEYLQPLGLSAADLAQAIHVLAARIKDILHGSQEITADISLRLAKFFGVSDAYFLNLQSDINL"]}}, {"location": "[1650452:1651427](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.133"], "codon_start": ["1"], "db_xref": ["COG:COG1091"], "gene": ["rfbD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37778"], "locus_tag": ["MAAAAKME_18130"], "product": ["dTDP-4-dehydrorhamnose reductase"], "transl_table": ["11"], "translation": ["MKVFVTGVNGQLGHDVMNELAKRGYEGVGSDLAPEYSGIADGSAVTTAPYVSLDITNAEGVKQAITEVNPDVIVHCAAWTAVDLAEDDDKVAAVRKVNTDGTQNIANVAKELDVPMVYISTDYVFDGQGTTPWDPDFKGYKPMNVYGETKLGGELAVSETLDKYFIVRIAWVFGLNGKNFIKTMLNVGKTHDEVKVVSDQIGTPTYTLDLARLLVDMIETDKYGYYHATNAELPETASGYDENGTKTGYISWYDFTKEIYRQAGYKTKVTPVTTEEYGLSKAVRPFNSRLDKSKLEKNGFKPLPTWPDAVHRYLEALKADGFFD"]}}, {"location": "[1651440:1651815](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKAYPREALDRFFRSDSKTYGKWYGVELTAENKKQFLIPEGFAHGFLVLSDVAEFCYKVNDFWHPNDEGGMAWNDPEIGIEWPQLVGEYPGSADASGYALEDGTKLTLSDRDQKWLGLKDTFKF"]}}, {"location": "[1652085:1652961](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKKRIIFVAGAVALLFAVTSTKPVDSQNYPKITVKTKRVNKYKDKIEDYESDNLTLKAETDLIKDKTEEAKEKLAKKPGSKTSQTTSTKETASAKSKQTDLASLTYSGQLSTEVNNNQPDFSQSDLSTSRGAWQTYGNLDSLNRATMANAMLNQSLMPTAKREPLHWDPTGWHNKRISSGWLYNRSHLIGYQLTGQNNNPKNLITGTEEMNVSGMLPYENEVADYLKESSNNYVRYRVKPIFKGDELLARGVQMEAKSVGSNAVSFNVYVFNVQPGVVLNYSDGTSRVQN"]}}, {"location": "[1652960:1653350](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yttA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q795Q5"], "locus_tag": ["MAAAAKME_18160"], "product": ["putative membrane protein YttA"], "transl_table": ["11"], "translation": ["MAYAPLAKKVKKLEAQEKAEKEAAAKAKREQEKQAAEAKKEAEAARKAAEKQAAAASSASDSNTDDSADTSSNQRGDMNTADSQKIVGNVNSKIYHVPGQAGYPMNSSNAVYFNSEEEAQRAGYRRAKR"]}}, {"location": "[1653729:1654953](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_18170"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1655200:1655458](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIFMAVLWPILLVVSAAMTTISYRKKKAGKADKDYYSVRGWGCLAFMSLLGVMMSYLPLGILSVGGCFFIAAFVLMYFAYSKTY"]}}, {"location": "[1655783:1656572](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.99.33"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "gene": ["urdA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8CVD0"], "locus_tag": ["MAAAAKME_18190"], "product": ["Urocanate reductase"], "transl_table": ["11"], "translation": ["MPSNTGDGYKMAMAAGARDMLVESPEFMMNYIMALPHEGVHLYIDPINGFMSLPSGGPTFFVDQDGRRFVNENAKKYNLLYRRMAMQSVKNAYEVFNQDIYDRITAGIPDADKVLAQAVETNEGDSLYKEDSLEDLANHFDLPKDILTKTLNDYNKFARQGKDEEFAKDSDNLIPMEEGPYYIARLDPSNLIGVGGIGSNRKFEAIDPDFNTIPGLYVAGMDSTMQYRNVYTITLGGSACAHNVNSGRHAAMNAKDYIASLK"]}}, {"location": "[1656724:1657612](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hdfR_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01233"], "locus_tag": ["MAAAAKME_18200"], "product": ["HTH-type transcriptional regulator HdfR"], "transl_table": ["11"], "translation": ["MYLEHLTTFVNLVETLNFSKTAVNLNISQSSISQAIASIEKQLGVTLFYRSRKAVSLTPAGQEFYDRVKPWLNEYNKAVQHVQQVQNAQKMNLTIGYSGTPYEHTVVPELVRAFCQEHPQINVFLENYAHQELKGHLTHGNCDVIFTMPDIIAGMDNLAYHSLLIGYYCLIVPSEVKLGPPPISLEELSKNRLIFLDHRWCPPTQDQLQKEICRNNHSLDLAYVNNIATARAMVKARLGWGIWANFVSDPNDLDLKKLPLSTKIVPDYGVAILKQGSPQAARQFVSWLEKTGLPG"]}}, {"location": "[1657683:1661331](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGYYSKRIYCKMKQNNKKKLDDLAPNDNLKSDNEYLELLDEVLKKCDRLHNVALTGPYGSGKSSIIASYLKRHPDVEKISLNISLAAFSSKQDPDDGDTSLTEEEIQRGILKQIFYKVKPSEIPLSRYRKLHNPSVIKIFIILITLVLSFLIGLYIFDYGLWSKNRSLLDQAVKHAHAFGMLYYIILIVIVVVSGTLLNILVKAVAHILSRLSLSKINVGKVAEVDRQTSESFFDKNMDELAYFFETTNYRIVFFEDLDRWGNIDIFSHLRELNSLLNRDDAIKEPLVFVYALGDDMFQNEEERTKFFDYIIPVIPVMNATNAGEFLLEKVKHGKLEPKITKDFIFDVSPYIPNIRVLVNIWNEFEVYEPIIIKKQGLDLDVEKLLALIIFKNLYPKEFAELELEQGIVKDVFNGKEAYLQTIKRDLKEQISSLESKIESTKNEVLESHKELMTAFLLETTNYQGVTTSFYHGYGYSRQKFNSVNLLNGKQTLKDLKDVGIDNIEYISFEDTQERRIDCNIDELYNKYESRIELATSAKESKVKDLQSQLQNLKRRMTELDLVTLAELIENYPLDDYLPDEVKENNLLVFLLRRGYIDEQYASYINYFKGNSISREDQNFILAVKNRKKLPQSYKLTKVANVADRLRAIDFSQKEIYNNDLMDYMLREYSSTDQKLEAFIKQLKDETEDSWLFVSNYLALETDQAKKNRCKFIRILSYAWHNMFNYIQDRIDLSPETVDCYLELIFKFADTSDIKEMDTSKSISKYLSYTENSLQRFEDIRVSRMTEILDNALSVKFSKEDLSDVPKSMINHITAKRYYKINEKMLDEILGRLNPDLQKSFNKHAYTNLLKLDRDDNLQMQILEYIYEKDNLSIFMDEVVLADDNIFESIEAIRDLLDRLKENEDYQDRLLQHEEFVGVSLSEFTLDEPDQYIWNLVLKNSRVKATWSTVGEYWSSFKFSPELFQFIQNNIDSIIASDRLVCTQDFVDDLFINATWDDDTFSSLAPCFKGWKFSGTISDIPEQNLRVLIDQDFFKFTQEYYDQVKSVSDELATAYILKHQLEALDKLDISDINGLAINLLASPSISSELINRIVDNNLPQKMVDQEVAMNLANKFFDVNKQWFFAILENLSDVKRVPWMQRNIDLLDRDDFRQCFSKLPGTYHEFYEKYNSLKEVKLDNTKGNVALSERLRNVGYITSSRIKNDGKLAVKLKKQP"]}}, {"location": "[1661926:1663678](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYYNCLVNIPKNTGKISRNKRGKTTYIEYTYAREYLPEKKYNIARRTTIGKADPDHPGMMFPNPNFEKFFPDVEIPAEGTAAEPVNESRSSCIRIGAFSLVRRIIEDYKLAEHLKRWDDRGKGLLLDLAAYSVIAESNVAQHFPDYAYNHPLMTPQNKIYSDSTISRFIREIDDNDRVEFLNSWNATHDKNEKIYVSYDSTNKNCKAGDIEMAEYGHPKNEVGAPIINYSIAYDMTNEKPLLYESYPGSIVDVSQLKYMLEKIRGYGYKKIGFILDRGYFSKANIQFMDSCDYDFVMMVKGRASFVHGLIMEHMGEFESKRACSIKAYQTYGMTVKAKLYADDDTDRYFHIYYKAKKQASERARLEADLDRMEAEMDKIKGREYKLPKRYEHYFKLTYHKDKFYGYEEREDVIERELQLCGYFAIVTSEKMTASEALNLYKSRDISEKLFGSDKTFLGNRSFRVASSQAAEAKIFIQFIALIIRARIYTLLRKRKAEMPGKPNYLSVPSALKELEKIELIRQPNGNYKLDHAVTATQKVILGAFGLDEEWIKAQARQIGKDIQNAAMPEEQKDDDEDAENEEC"]}}, {"location": "[1664110:1665031](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTKSTLWYLNDNNLKYETVIKRLNEKKFSLNPEHYPDFSLVNKMQDQILDLSGSEIRYNLFDYSIASTTGKRIHNQLIVFDQNDQIGFIVDKSKIGLHFIRALLGYDSSQKGVVIPAKRDDSFFDGRLFFWIISRIYYDESQIDFDSDDKNSSLEDASISFNSLDAVKGKTVASLNTVSTEGSDVIKMLTTLSFLLESDRLTEVSLAMTYKEHRNLKVELRSGSDLVGVGVDLYSYDGPYREEKIDDPILRCELLLLTHLDLLPTIQILFKNDSADEDIKRDLAVDIVANMKRRLNKLLEELGAE"]}}, {"location": "[1665039:1665618](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKWLREYFEKYESSVWTLLVAVLCFIPVSKFLFHHESSNIDSAFWAVTCSLISFIIHRRSTIVVRFENGGRWDNNFNEIQLKLSEGKAVPFKIYIKLAGFKEETLVKHSLIFDYPNDIEVGFDFKLDQFVDSEKHRIVIPLSEIGNDEVEFRLLASPQNKITSAGYKTMNCSSDFKFKSVKIENKIIFYWE"]}}, {"location": "[1665619:1666111](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHSWEVSRLGRHSFKLFRNSAREFVAKPFDMADSYYTFLKRMNGEGLTQFLLTSDTMINLLLSFLQSKNNYLAGITLYDDDDVEAKERITNLFKAYMDGLLTDDDIHSRLDYLESAFSIDLDAISIRNNDHGVMTIRSNGVFDTYDVAWVNIVLCELTKAWNR"]}}, {"location": "[1666381:1666564](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEHAIVSLELPKDRIRPRNKLPKKRPVLNLKSNGVELSFYSDAPNELMLEVVDKFLSHD"]}}, {"location": "[1666958:1667411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDKEISALIETLKANNEELLKQVALLTEQVAYLTNKLYGKSSKRSLSTQDQLSLFEEDNASQETPLKMTRTCHRITETITYKRRKQVGKKQDILDSLPGEELHHRLDNLTCPDCQHELKEIGSFCARKKLLYIPAQVKRIDHIQHSYKC"]}}, {"location": "[1667597:1667930](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVSNWHIKVCEYYLSSLYELLRKELLKQDVFHADETPYRVLDSEIAKDYVLTFLLGKHAEKPIAMDHEKAPKHGISWQAAANTFIMINITIKPTGCDSCRLYGSCKTKIP"]}}, {"location": "[1667901:1668258](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAHARRKFHDSLPKGKAIESDATSVANQGINYCSQMFSLEHAWEDLSAEERYEKRQSELKPLLEKFSDWCSKKSISVLPSGKLGTAFQYCMKHMNKFMNVLKDGRLELSNNRAERAVK"]}}, {"location": "[1668564:1669647](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["epsF_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71055"], "locus_tag": ["MAAAAKME_18300"], "product": ["Putative glycosyltransferase EpsF"], "transl_table": ["11"], "translation": ["MKVLLVSTNNLSDNGVSTFIINNAKLLAKKQDIHVDVLAPNEVAEDITIDLKENKVNVFEIHDRNSNPKQYFKNLVSLLERKKYDVVHVNGSSNIMSIELAAAFFAGVKVRVAHSHNTVTEHEKLHKLLSIPFNMFVNCRVACNEAAGKWLFNKKNFTVIDNGVFLDKYRFNPVVRERMRKQLGISKKDILLGHVGGFNEQKNQAFLLDVMKKLDSKYKLILVGQGGMFDQVKKQTEEMDLGDRVIFTGSVHNVPDYLSAMDVFVLPSRFEGQPFVVVEASANGLPIILSDKISRESNLTGKLEFVSLDSKTWLEAIEKADLPSRGDESDDNIKRLAAKGYDAVKNADDLYNLYAEKLKR"]}}, {"location": "[1669659:1670382](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYWGGYTLTLAELQLFKEASNNGPYDYYHMMSGADLLLVNNKEFDSFFEKNQGKEFIEFKDEQNEHDPEIKRRTKLYHFLQNYCRRFQIQWLNNIFIFFERCSLLLQLILHVNRVKNLDWQIKLGSEWASVTNDFVIRMLQEEPKISKLFRWTNCSDELLIQTIAFNCGFMNRMYHNPNGADNLRFIDWVRSKNGSPHIFTIADKELLEDATAGALIARKFSLDKDSEIINYILKKTGNK"]}}, {"location": "[1670764:1672195](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["rfbX_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37746"], "locus_tag": ["MAAAAKME_18320"], "product": ["Putative O-antigen transporter"], "transl_table": ["11"], "translation": ["MRVVKNYLYNVGYQVLAIIVPLITSYYVSRVLSPDGVGANAFTNSIIQYFMLLANIGIGYYGNREIAYVRDNKQKMAATFWEIQIIKTVMTVVAYLSFVVFMAFYSGNKTYMWAQSINLLAVAFDISWLYQGLEDFKRTVLRNTFVKIVSMVAIFIFIKSPNDVTLYITVLALSTMLGNLTLWPHAVKNYGCVGHGVRLNPWHHFVPTVMMFVPQIATQLYVQLNRTMLGLMVDQKASGFYQYSDSIVKLILAFVTATGTVMLPHVANAFAKGDMKKVHEMLYKSFDFVSALAYPMMFGVAGVSLTLAPLYYSAKYAPVGPAMLIESIVILMIAWSNVIGAQYLIPVNRVKDYTTSVTFGAVINIIFDFPLIHFWGLQGAMWSTVMSEISVTTYQLFVVRNSLNVKQMFGSTWKYLLSGAVMFVPVFWLNTHMKSSWLWLLIEVIVGTVIYLCMIFLLRAPIINQLKDLLVRRRQR"]}}, {"location": "[1672197:1673313](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.9"], "codon_start": ["1"], "db_xref": ["COG:COG0562"], "gene": ["glf_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37747"], "locus_tag": ["MAAAAKME_18330"], "product": ["UDP-galactopyranose mutase"], "transl_table": ["11"], "translation": ["MSNYLVVGAGLFGAVFAREAAKRGHKVTVIEKRGHIAGNIYTKEIDGIQVHQYGAHIFHTSNKEVWNYVQQFAEFNRYTNSPVANYKGKMYNLPFNMNTFTQMWGVRTPQEAIDKINEQRAEMAGKTPQNLEEQAISLIGRDIYEKLIKGYTEKQWGRKATELPAFIIKRVPVRLIYDNNYFNDDYQGIPKGGYTKLVENMLKDDKITVELDTDFFAKKDEYLQKFDRVVYTGPIDEFFDYKLGELEYRSLRFETEEKNVGNYQGNAVINYTDAETPYTRVIEHKHFEFGKGDPDKTIITREYPADWHKGDEPYYPVNNDRNNDLYAQYKEMADKEDAKVIFGGRLGQYKYYNMDQVIAAALEAVSEEFGK"]}}, {"location": "[1673534:1674989](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLTIGTNGNATCTVNKKYLRFSGYNFLLVSLGLISLVTSLSTESWVAYALFVGGILFCLSLSMRNQQLFEFSIFTLLTYVFTLEVVVHYLGHPINIRLRDLSLIPISLLLLRYSTKIFKSFSWWACTLGLFFYTCLGVIIHSTPGIQALESAIPYIIGIEYFFVIRYSKSDLSFVDLYKFIYVVCFFFTIGQTIAGFNVDQRNGIFGVFGLGAYSAFVLLYPIYEYSKWSVNQGTLRSTLISIVISVAILIMAECKAQVVLLFIALLIIGLIQRKVNLRPVISIVLVSFLVCVAVNLLTEIYPRFKSAMTLNGAQGYIFGNSNWGIYQYGRFEALINVYSRQSTTLLKIIGNGLGSAASLDIVFLKEAGKVAYQPYFVRLYGLYYGYDLTGLSKLFLDGGIVLPICFLSVYVRTLLADIKSLRSTDKNVFVKAAVCLSFLINASYAFTYADGINDRDMAFAAIICALVIKQVDQLNTYHKQYQV"]}}, {"location": "[1675024:1675828](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKKIDKNELTMYMVTHKSVNFVPAGRTPIFVGGGDNKNNYLRDNTGDNIAEKNPHFCELTAMYWIWKNDKSSKYVSIEHYRRFFMDPAAIIPKVCTPEKIISFLEEEKIVLPDIVTNTISIKEYYQTYHSKEDYENTAQIIHNIYPEYSKDFQTVMLGKSSFGLNMMVVPKPVFDKYCEWLFTILFKLEDITDLSNRSKYQQRAYGFMSERLEYVWLLHNGFNLARIKQLPIYSVVEGKKIYSILKSMKHRLNKKPYDPTKYPVPK"]}}, {"location": "[1675884:1676388](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.227"], "codon_start": ["1"], "gene": ["murG_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00033"], "locus_tag": ["MAAAAKME_18360"], "product": ["UDP-N-acetylglucosamine--N-acetylmuramyl- (pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase"], "transl_table": ["11"], "translation": ["MIFVTVGTHEQPFNRLIEKMDELVEKGEIKEKVVVQYGFSTYEAKHCEMHKIMSFDEMQQTFKDARIVITHGGPSSFVEALQYGKVPIVVPRQLEFNEHVNDHQVDFTKLIAERMNNIIPIYDIDDLAATIANYDSIVKTKNSGESSNNKKFNEDLSEIVDNMIKIN"]}}, {"location": "[1676396:1676861](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.227"], "codon_start": ["1"], "gene": ["murG_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00033"], "locus_tag": ["MAAAAKME_18370"], "product": ["UDP-N-acetylglucosamine--N-acetylmuramyl- (pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase"], "transl_table": ["11"], "translation": ["MSKENIKVCLVGSSGGHLTHLYMLKPFWQNKDRFWVTFDKEDARSKLKGERFYPCYYPTNRNLKNLIKNTFLAIKVLRKEKPDLIISSGAAVAAPFFYIGKMMGAKLVYIEVFDRYDKPTVTGKLVYPITDKFIVEWEEMKQVYPKAINLGSIF"]}}, {"location": "[1676918:1677578](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.40"], "codon_start": ["1"], "gene": ["wecA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:B3FN88"], "locus_tag": ["MAAAAKME_18380"], "product": ["UDP-N-acetylgalactosamine-undecaprenyl-phosphate N-acetylgalactosaminephosphotransferase"], "transl_table": ["11"], "translation": ["MDMGYSSSPAYVKQSKVKGRPLYHGIKRLFDFLASLVALILLSPLFLWLAIKIHGEDGGPVFYSQIRIGKDEKPFRIYKFRSMVVNAEKLKKDLLEQNEVEGAMFKMHEDPRITKIGKFIRAHSLDELPQLWNVLIGNMSLVGPRPPLPDEVEQYTDYDKQRLLVKPGCSGLWQATSRNAADFADMVQLDIEYINRSGVFFDLWIIFKTIGVIFHPNGM"]}}, {"location": "[1677608:1678385](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "db_xref": ["COG:COG4464"], "gene": ["ywqE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96717"], "locus_tag": ["MAAAAKME_18390"], "product": ["Tyrosine-protein phosphatase YwqE"], "transl_table": ["11"], "translation": ["MPVVDLHCHILPGIDDGSKSWEASLKLARAAVADGVTHALCTPHTLNGRYTSHKQDVIKLTEEFQDRIDQAGIPLTVFPGHEVRLSGGLTEALDNDDILFCDEEGHYMLLELPSNEVPHYTKNMVYELTRRGITPIVVHPERNKEILGNPQKLQEFLEMGVLVQITASSYTGLFGKEIEDCSREFIKAGQCAFFASDAHDLPRRQYQLSEALDKLAKEFGEDKKQKYLDNAQAVINGDPVYLNWQSLPKKRKKFLGLF"]}}, {"location": "[1678388:1679162](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.10.2"], "codon_start": ["1"], "db_xref": ["COG:COG0489"], "gene": ["ywqD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96716"], "locus_tag": ["MAAAAKME_18400"], "product": ["Tyrosine-protein kinase YwqD"], "transl_table": ["11"], "translation": ["MAFGRKKHLNNDTMKNGVKLITLANPQSVISEQFRNIRTNINFMNVDREVKTIVFTSAMASAGKSTVSANVAITMAQAGKKTILVDADLRRPTMHSTFNVSNSNGLTTLLTSRSMEMDANSVIRESGVENLSILTAGPIPPNPSELLSSKHMLDLIEDLKQEYDMVVLDLAPILDAGETQQLTSFLNGTILVVRQAYSQKSAVKRAVELLKLTKSPILGYVMNDVDADGDDGYGYGYGYGYGYGEEKEKKGLFGRKK"]}}, {"location": "[1679171:1680011](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSAEQQNNEEVTIDLRRLFILIKKHIISILIWMIGLGLIAYGVSEYVLVPKYTASTQLLVNRKTADANQAYANQQADINAITTYKDIITSNVILKGASKYLANPVTLVKKATPAKKAVKAKPAVYKRESKSYSVSASELASAVSVTTTDSSQVFTLSATAETPAKAQAIANAVAKEFKEQIPKIMNVNNVTIVAEASKGTKSFPKVSMFTAIGVLAGLVISLLIIIIKDLSDTTVREDSFMTNELGLTNLGEIAHITMPKDWTFTAKTAEKRGSSRRRV"]}}, {"location": "[1680010:1681042](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_18420"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MNEPDQSRVHHHHHRRRKRHIGRWIAGIVGVLLLAVSLVIGYAYKNDRDAATTMYTPVSKSTKSNKNRSSLDKILDAKKPVNLLILGTYTGAEGRSVKNYHGLTDLMMFVTVNPSKKQTRVTTIARDSKVNLPDYPEVSPIKLNSAYSLGGVSETIKTLDKYYSVPIDGYVLVDWASTMKIITKMGGVDVISPLTFDNMGYSFKKGQMYHISGKKALAFVQLRHGDPRQDYGRQERERLVMMAAIKKSVSYKTILNSSFMQSLGDSMQTDLSLNDMIKLAMNYQGVTDNVKSDYAQGKSSSVNNQRFGNMEVEIMSTKERQRISNNIRQTLGIKNVDVYKEDN"]}}, {"location": "[1681367:1682648](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2262"], "gene": ["hflX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P25519"], "locus_tag": ["MAAAAKME_18430"], "product": ["GTPase HflX"], "transl_table": ["11"], "translation": ["MIDNQAHSVKAYLAGVNLDDPNFDYSMTELANLAEANNFTVVGSSQQKAENIVASSYLGKGKVAEIKDLAQGLGASVLIVNDELTPVQIRNLEHMTKLRVIDRTELILEIFSSRARTKQAKLQVQLARLQYELPRLHPSENNLDQQHGSGGSTGGGFANRGAGESKLEMNRRTIGKQISAIKHELKEISGQEEIKAARRNQSQLPKVALVGYTNAGKSTTMNGLLKAFGAGNEDKQVMAKDMLFATLDTSVRRIDLDGFSFILSDTVGFVSKLPHKLVDSFKATLQEAKDADLLINVVDAADPNMNQMIKTTLEVLDEIGVKDLPMITAYNKADLTDRNYPQIEGGDLLYSAVDSASIQALAKLITTRLFSNYQITGLRLPLTAGKDLAYLHQHSRVLKEDYQADGIEVSARLSPQDRARFSAYQI"]}}, {"location": "[1682696:1683476](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSNMIKFFAAALTFLGISATGVKPVKQPVQAASKRIKVISKQSVTVWTNYQKGRHVATHLKKGSSHFVYQTATDSMGNLWYRIGKKEWVMAKYFNQVKSAKKAVKAKKTKVKSKKTVKKARSAASLAASWSAPMGSKARAKAVVSLAKQQVGKAYVKGSKGPNAFDNASLVAYVYKQAAGVNTGSSTKSQVKKGIAVDPSSGFAEGDLLFWGSKNKPYNVAIYVGDGKYVTAAGDQQGVVQASLSTYFWPSRARRVL"]}}, {"location": "[1683521:1684124](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKTRVAYNKGNKVNTWTTYGAGKKLVGQVKSGYKFTATGQAQYKGRAWYRIKDNKWILGTNTVTTKKYASIKAKAAKAAKQKKVVALANAQVGKAYVWGATGPSSFDCSGLVQWVYKTAIGQTVSRTTYTQVKEGVAVPVSTASLQPGDLLFWGDVAAPYHVAIYVGNGQYVSAADEQQGVILATISSYFWPTTARRIL"]}}, {"location": "[1684377:1685160](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKSLLVKVLMALALVAPVAASAQAPAAQAATVKAVNRQVVVNYVSGYSVKAWKNYKVKLGAANDTGISFKHGTTLTVVGEVKYKKRTWYKIADNEWILASYTLSPKAWAKKAAAAKKAAAKAAKKAAAAKKVSKSKQTKQNKVVALAKAQVGKPYVWGATGPYSFDCSGLTSYVYSLALGKYITRTTYTQVHQGKTVAVSTATLKKGDLLFWGSKSSPYHVGIYVGGGKFVHAATPSQGVIKQSLSYYFWPSTAKRLI"]}}, {"location": "[1685454:1685724](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_18470"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDK"]}}, {"location": "[1685720:1686179](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_18480"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MYRYKAVEGQSTYEPHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWERDLVLGHKTKDDDVFANERRVSSS"]}}, {"location": "[1686582:1687056](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQFKQILVKLTLALALVVPIAVQENSHQAQAASVTTKRNKVVKLAKKQVGKRYVYGATGPNAFDCSGLTSYVYSHAIGKYISRTTYSQVYRGKTVKVSTASLKKGDLLFWGSKSSPYHVGIYVGGGQYVHAATPSQGVRKQYLSSYFWPSTAKRVI"]}}, {"location": "[1687226:1688273](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.399"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["hgdH_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D2RJU7"], "locus_tag": ["MAAAAKME_18500"], "product": ["(R)-2-hydroxyglutarate dehydrogenase"], "transl_table": ["11"], "translation": ["MRIACYGVRPLERSYFEKLNKYDYDLKLIPEYLNRENVVQAEDCDAVLVRGNCLCDRTNLEQFKNYGISWVFTRSVGVDHFDLEAAKDLGISVARVSNYSPYAVANLAFTLGLTLSRHVGEAAHHVHEHDFGMHPDYFATEFNRLKVGIYGAGKIGAVEGKMWQALGAEVYAYDPFPSDFAKQYCTFVTEDELLATCDIVSVHVPYFPGENDKLMNAEFIAKMKEGAVLVNTARGELADEAAIAAAVSSNHLSGYGADVVSNEKKIMGHNFDCESDVPDQEVQSLMDLYPRVLLTPHMGSFTEPALEDMISLSFNNFHNMATEGAVDARNEVVAAPESSTSASEKLRA"]}}, {"location": "[1688556:1689042](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKKSLAKVVAAVSLAFAGFVAVNTVNTQNNTVQAASKTSQRNKVVSLAKKQVGKPYVYGATGPNAFDCSGLTSYVYSHAIGKYISRTTYSQVYQGKTVKVSTVSLKKGDLLFWGSKSSPYHVGIYVGGGQYVHAATPSQGVRKQYLSSYFWPSAAKRVI"]}}, {"location": "[1689166:1689709](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.8"], "codon_start": ["1"], "db_xref": ["COG:COG0194"], "gene": ["gmk_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2GLF7"], "locus_tag": ["MAAAAKME_18520"], "product": ["Guanylate kinase"], "transl_table": ["11"], "translation": ["MAKKIILIAGPSGAGKTTISEYLTDRYQIPRVITHTTRPKRSGESGSAYYFEDDDSFAQLHFFEHVKYGDYQYGSSKEGLERAWAKNDLVSLIVDIKGARSYLEALGDQVYFLYVTCSLDTLAQRMADRGDASDQIKNRLTGSELNELPEDLASCAHVLVNDDLQATYASLDSLVRKLQN"]}}, {"location": "[1689815:1690151](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKADVELGAVVNAKSEEELKKQFQGTVEKIYENSALLAITSFDDVDAAAVSDLNYKLVVSFKNMKPARAAKKAKALSTNNVTIEKVAPTIKADDKDKDKKEKKAPAKKSK"]}}, {"location": "[1690214:1691753](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18540"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEKTKSLLYWFILLQPFLDLDFFYRGKLATILPFTIPTIIRIAGVIVLVGLLVWGQKQLPPAWLWAYLDLLTLYGIFHLWHMQNFKSLSPNDYGYSNFGEIFYLFRMLLPLALIWVTKKLEISQDFLLKAFAWVSGLFTGTIVLSNLFVVSLKSYETGVISGNIFTWFMGPLYGYSHSASKGFFYFTNTLSAILLMLAPVVFYLLLERFSWKTGLLALSQTLAMLEVGTKVALYGLAGTLAVSLIAWLVHLFCLKNVKFSKGGLVTLLALAGITGVCWQVSPAVQRYKYEIYLANSHDSKIDQENALLKAGLAKYKNDPDKLKEFEKYFLAKYYQKYALNKRFITKSYPYKYDPQFWIDLLKEPASVRLANRKVEEAMLKQVVKYDNDPLDKWLGIGYMRQTNISNLERDFTAQYYSLGLVGAFLYLAFYPAIILYGAFEWLKEKACRTLYLTSLLIASALLLGASYMSGNVLDFPTSNLLLAFLGGGLLAYIKEEKGRSTGLRIVRFEKK"]}}, {"location": "[1691808:1692435](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MWSWNVLGVALWVGAIVYLVFIVQNIRRRRLKMIIQRQHKFEWGNFMISLLEVASFCLLVGWLLAVSLFDDPNLTDTSRITSSVTYKPLVLQPSASQSYYVQVKSTKNRDLSQQYIFYLKGKKYTVPSYLATVSYEKDPINVTASALPFSRKELKKEDSRYQQAYVAIYTAKYKNTAANGIGLHAGRRAKRFYLIRVPDSSFIDKEIK"]}}, {"location": "[1692437:1692953](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQINLKDLTKAIEEQTYLSDMETIKYSEVSRSKKKLREHALTMVQEVATALNKDRLMQVQLVLEGKNPITFALETNIINLPLANYKKLINFFDEEEAQPVKVYFETASEYLNASHFRIDLFMDGDELVADVEGAADRLADAMSEKIKQVKEGEAAAKEAAKEAKAKTKKEA"]}}, {"location": "[1693540:1694032](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLGMQVSFNIWDVLINLVFSYIDTVGFALTVNIPHRVIHWSGICGCAGWMVYWLVTEASGGRMISNTLGAFAVGLVAVVLAKWKKCPVTLFSVPGLVPLVPGAPAYMVVRRLIDGKYIAAHQMMMRVAIVTVSIALGFLLSTLFQEAWNKYIKRLKLREKLKK"]}}, {"location": "[1694034:1694808](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2966"], "gene": ["yjjP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0ADD5"], "locus_tag": ["MAAAAKME_18580"], "product": ["Inner membrane protein YjjP"], "transl_table": ["11"], "translation": ["MSTDAYMKRVVHTCLKAGRLMLAGGSEMYRVEDTMRRIAVNAGIKEVNVFAMPTGLFVSLDDGECSTVTELETVKKRAINLELVDQVNEFSRKFADKRIDLEELEEKLREIEENAPTFPLWLQVIGAGILSATLMVLFLGVYDWIDFPVAGLIGASGYLMDSWLKGHTKIRFLAEMIAAMGMGLLTIIINGILPACNVNNILTGALMTLVPGLALTNALRDLFMGDWVSGIVRMCEAAMTAIALGGGVGIVIRFLGA"]}}, {"location": "[1694843:1696388](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0488"], "gene": ["yheS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63389"], "locus_tag": ["MAAAAKME_18590"], "product": ["putative ABC transporter ATP-binding protein YheS"], "transl_table": ["11"], "translation": ["MSLLTVSGLTQGFAEKTLYEDANFVLNKEDHMGVTGQNGVGKSTLIKILTGEIFPDEGSVKWQNKLSVGYLDQYAKLTPGLTMRDFLKTAFDQLYQDEARLNQLYIDYSESGDESLLTKAGRLQTYLEENNFYDLDTEIDRVASGLGLAELGFDRDVSQLSGGQRSKLILAKLLLEQPQVLVLDEPTNYLDVGHIDWLVDYLNDFTGAFIVVSHDYDFLGRITNCIIDIDFGTITRYTGTLKQAMRQKEANRQTYMKAYANQQRQIAKTEAYIRKNKAGTRAKSARSRQKQLDRMEVLTPPQNGKKAKFDFPYVETASNLLLQTQDLVIGYDQALVKEAFNFSVGNGEKVAITGFNGIGKTILLKTLLGQIPPIYGGFDLSATAKLAYFKQDLTWPNQNMTPLQYLESEFDQKKPKELRQALARMGLTAQLVMSPLKELSGGEQEKVKLAKMQFEPANLLFLDEPTNHLDNETKDSLRKSIVNFPGGVIIVSHEQDFFRGDWVDKVVDIEAMNN"]}}, {"location": "[1696402:1696780](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKRYYPYIYGGIAGVMTFIAMFYICRHSFALTNTQSLVWGIIGAILVFVSSSYTEYAIAEIQRISDKYHLDEEFLSGLTKLSPSYFRVADDHLHLTAPRYLWPRILKTLQKYDHERKQAENFHL"]}}, {"location": "[1696898:1698041](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_5"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_18610"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MEEQHSRRQQKIFRNVTLVQAGFLKKKSRRPLPTIIGLLVTFAVMIAATWGAHAYFSLHSALVSMNGNNGSTATSARIAAKKPISILVLGVDQGLEGRNDKGNSDTIILVTVNPTTKKATMTSIPRDTLTEILGETSNTSYYMFKVNSAYQFGGSSGSVKTVSAMLNVPINYYVEVNMKALESLVNALGGVDVNVPFSFSYDWCDFKKGKQHLDGRHAIAYARMRYDEPRGDYGRQLRQRQIIQAVVKKGLSVNGLVNYQKLLKVFAKYVKTNLTFGDMTSLAINYRSAASNISSGYIQGHDATISGTSLQIASTEELQKWSNKLRKSLGLSTQTLTNQETRQNSLNETYNGVDFSSNETITNYTIYEANSITPRSSDSW"]}}, {"location": "[1698381:1699680](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEQVKEAPAELIQTRVYELRPNKTMRKVLDEACDYRRYCWNQGLALWNEMYKARQTLKSSLSTDSKKLTEEQKVLLKDKPSPSERRVRNMLVADKKDWQYTQSARILQLAISDLGKAWNNFFDKAQPGWGKPKFRSKREARQGFKSDQSKIKDGILYLERAKESSVPKDQWRGFKLSEKPLSDEFGVVSYFKEKGRYYVAIPYKIKAEDIKLPDKTGKATAVDVNVGHFDYTGGRMNVLPKKLDKIYGKIKHYQRQLAKKQVKNGEAACESENYLKTKAKLQACYRKASNIQNDLMQKFTTELVNNYDKIVIENLSVKGMLMSHVASKGVHRSMFGKFKQFLTYKCDWYGKELILANKLYPSTQRCAACGNVKKGDDKITLYGNKKHGTKHNEYVCYNQKCPNYNKVVDRDKNAMLSLLALTEHPELNHAL"]}}, {"location": "[1700002:1701805](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "gene": ["pepF1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54124"], "locus_tag": ["MAAAAKME_18630"], "product": ["Oligoendopeptidase F, plasmid"], "transl_table": ["11"], "translation": ["MEIPYRSEVPKEQTWDLTRVFKTEADWEAAFKAVKQEVKALPALEDGFTESAAVLYDRLTQIFAVDRRLSKIYVYASMASDVDTSNQKKLALNSRGQSLAAEYQAAVAFIQPAVLALGKEALDAFFKEEPRLENYRHYLEQIVKQEEHVLPAEEEKLVSAAGDALSASANTFNVLTNSDLRFPYIEDEDGEAVELTEANYDILIQSQNREVREDAFDALYAGYGQFASTFASTLAGNVKAHNFDAQTHHYQDALAAALSENNIPVDVYNQLLTSVHKHLDLLHRYVNLREEILDLKGDLQMWDMYVPITGKPSLSYTFAEAKAQAREALQVLGEDYVKHVDYLFNNRCIDHVANMHKQSGAYSGGAYDTDAYVLLNWQGDLDSLYTLVHETGHSVHSMYTRENQPYVYGDYPIFVAEIASTTNENLLTNYFLDRVTDPKTRAFLLNYYLSSFKGTVYRQTQFAEFEKFIHESDQAGEALTADYLCGFYDRLNQQYYGPAISLGSDIDLEWARIPHFYYNFYVYQYATGFAAATALANKITYGSQEDKEKYLDFLKSGSSDYPINIMQKAGVNMTKSDYLEDAFKVFAERLDEFTDLIKKL"]}}, {"location": "[1701908:1702481](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.-.-"], "codon_start": ["1"], "gene": ["lldD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01559"], "locus_tag": ["MAAAAKME_18640"], "product": ["L-lactate dehydrogenase"], "transl_table": ["11"], "translation": ["MTDTYQNGIISQDSDGDYVLEKLGTPNAKGLPVIVKGVNCAEDVEVALTAGADGVYVTNHGGREIDGDPATIDVLPEVVEAVNGRCPVIFDGGVRRGSHVFKALALGADLVGIGRPYLYGLALGGPHGVASIINELNDELKIDMQLTGCKTIEDVKHARLTDFQYAGDISHPALTRGCAILSYRGQPNQV"]}}, {"location": "[1702773:1703328](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYCANCGAKNQANATFCVCANCGAKLVKPAQSSQLTQQVQPVKPAKTGKRRADLKQVRKWEDDLDDVFEDSVSLGEDGHYFFFFPKYKLMVKTYSPTVVTNHENSTIKMNGKNVGKLSASGDYYQKKLDPVIAGRYTFSVSANLSGKTISPSPVKLDLFSNHQVSLNITTGSFTVSSVSLHLR"]}}, {"location": "[1703464:1704262](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1108"], "gene": ["znuB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34610"], "locus_tag": ["MAAAAKME_18660"], "product": ["High-affinity zinc uptake system membrane protein ZnuB"], "transl_table": ["11"], "translation": ["MFAYEFMRNAFWAATFIAITCGVVGVYVVARNFSFLAHTLSEIGFAGAAFAILMGLKPLTGMLIFALLGSIGVGELSMQTEQKESSISAISAFFVGLGILFLSLSSSASSYATNILFGSIIGVSRSSVYQLVGLSVVVLLIIFAIQRPLNYDSFDHIGAAAHHINTGFVGVVFLVALAMAVSIGSQVVGSMLVFVLLTMPSSTARYLGKSIPSMLAWSVGLALLGVWAGLCLGYITNWPVTFFISVIEVTAYLLVYFTQARKKRA"]}}, {"location": "[1704261:1704915](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG1121"], "gene": ["znuC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8ZNV7"], "locus_tag": ["MAAAAKME_18670"], "product": ["Zinc import ATP-binding protein ZnuC"], "transl_table": ["11"], "translation": ["MSKALQVVDLSMKFDDQEIFKKLNFSLETGSMTALLGPNGAGKTTLVRILIGMLSPSHGYFELADDVKVGYVPQFRNIDPDYPLSIKSFIELNTPFWKSKKVKDQVNHILQETHLKGLADTRMGEASGGQKQRAYLAQALLDQPNFIILDEATASLDPKAKEELMSLIAHINHEHKMTVLFVTHDIPLAKRYMKDYLYLSDGTVSQGKMEDFKENFN"]}}, {"location": "[1704940:1705741](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.104"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ybjI_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75809"], "locus_tag": ["MAAAAKME_18680"], "product": ["5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjI"], "transl_table": ["11"], "translation": ["MIKLIATDMDGTWLNSKKEYDLDKFKQIMDLAREKGVKFVIASGNQYENLVTRFPKEYLSQLYFVAENGAYVLKGREILNIVDLNSDELATIHEIKEKYGQDHPTVLAGVNSAYTLQSYGEEFYNYLRLFYQELKAVDDYESVKDRIFKFTVVTGERESSAFAQQLKREFPSLDMVAGSDSAVDISKLGMNKAVGLKLLGKRYGIPADEMVAFGDGGNDVAMLQYVGQSYATATALPEAKRAANGIIGSSDESAVQDRVLDLLKKL"]}}, {"location": "[1706006:1707977](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1299"], "gene": ["fruA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71012"], "locus_tag": ["MAAAAKME_18690"], "product": ["PTS system fructose-specific EIIABC component"], "transl_table": ["11"], "translation": ["MRIKDILSPESMIMDLQATTKDEAINEMADLEVATGIVNNKEKFVESIWAREKESTTGIGGGIAMPHARNEYINKARVLFAKSEKGVDYDSLDQQPVHLFFMITAPAGADNTHLQALAKLSSLLINPDLVEKLKAAKTADEVIDLFSQAEADKDKEDAEREAKLAAKKEAEAKAASDEKPLIVGVTACINGIAHTYMAEEALIKAGEKRGVEVRIETNGSEGVKHELTADEIKRAKGVIIASDKQVKMARFDGKKLVKHPVVDGINKPDQLIDEILSGKGSVYHAEAGEASESSAASDGSVWSTIYRHLMSGISHMLPFVIGGGILMAISFLVEQYMGGAKSPAFIFLNSAGNLAFAFMVPVLAGYIAESIGDLPALMPGFVGGFMASITNSSLGGSYVVNANAKAASPAGFLGGIAIGFIAGYLILGLKKLFVKLPKNVEGMKPMLLYPIFGLLFVALIMYYIINPVFGALNGVITNFLNGMGTGNLVLLTTILAGMMSIDMGGPFNKAAYVFASGAFANDPTSKTSAILMASVMVGGMVAPLATAIATTFFKNKFTEDERRAGVSNWILGFSFITEGAIPFASADPLHVIVSSIVGSAVGGTLVGLWHVGVPAPHGGFWVIALSSNWLGYLGAVAVGSIVAALMMGFWKKPIEK"]}}, {"location": "[1708025:1708940](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.144"], "codon_start": ["1"], "db_xref": ["COG:COG1105"], "gene": ["lacC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q833W9"], "locus_tag": ["MAAAAKME_18700"], "product": ["Tagatose-6-phosphate kinase"], "transl_table": ["11"], "translation": ["MIYTVTVNPALDYVLQLLEVKDGETNRSSDTKFLAGGKGINVSQILNQLGVDNTAWGFVGGFTGEELIRQLNVKKISSDFVRISDDTRVNVKIHAQEETEINAAGPDITDQEVAAFKSRLDDLEAGDVVVLSGSLAPSLPTDFYESLLPLIREKGAEFVVDTTGEALLRTLKFNPLVIKPNHHELADLFDTSFSSTADMLEAAKKLQKLGAQNVMISMAGEGAYLVTADHVYHANAATGTAVNSVGAGDSMIAGFVGTWFEKHDAAEGLRVGSACGGATAFTEDIAIKSQIDAVLPQIKIDVVE"]}}, {"location": "[1708939:1709689](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1349"], "gene": ["glcR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94591"], "locus_tag": ["MAAAAKME_18710"], "product": ["HTH-type transcriptional repressor GlcR"], "transl_table": ["11"], "translation": ["MLAEERQQMIAHYVDEHQICRVTELCRLTSTSESTIRRDLSEMEDRGLLKRVHGGAQSLQTFGQDVAQQIRFNLNKDDKLAIARLAARKVHPHDYLFLDAGTTIYEMVPFLKEISGLHVVTNGLETALALTDAGIDCCLLGGHVKRQTHAAIGATTVSRLQELNFNAAFIGANALSPAGFLTTPDTEEAAVKRTAIQQSQQAFVLIDRSKFNAVTFAEFAKTDQVTIISRLEAGDREKLPVNIQLEEAE"]}}, {"location": "[1709850:1710600](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG1794"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29079"], "locus_tag": ["MAAAAKME_18720"], "product": ["Aspartate racemase"], "transl_table": ["11"], "translation": ["MKHFFSIIGGMGTIATESYVRLINHRVKISKDQDYLNYILVNDAQVPDRTAYIKDHSQPNFFNALKEDVLGQAKLGPDFMVMPCNTAHYFYDDLAALTDIPFLHMMRIAVHQYVDQFPNSPKIGLIATEGSIYDHLYEDEIHRVGREVEFGGPEIQPMVTELIYRDIKEKGIVDKELYHEILRKMHDEYGCDVILLGCTELSLAQEQAPDHPYQVIDPQSIIADVSIELALAIRNGQDPRQACQKYLYD"]}}, {"location": "[1710613:1712164](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.7"], "codon_start": ["1"], "db_xref": ["COG:COG0769"], "gene": ["murE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9A196"], "locus_tag": ["MAAAAKME_18730"], "product": ["UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--L- lysine ligase"], "transl_table": ["11"], "translation": ["MNISLNTCILILKEHHLLKSSAVQDTVQTIMEAVSYDSRDVQNNSLFFCKGAGFRPTYLTMAKENGAIAYVAEQPYPEGTGMHALIVRNVSKAMALLSAAFYSFPQDDLFLVGFTGTKGKTTSAYFLKGMLDQLNGGRTALLSSVDNILGPAPEDTFKSSLTTPESLDLFRDMRRAVDNGMTHMVMEVSSQAYKKSRVFGLTYDLGFFLNISPDHIGVNEHPNFEDYLHCKLQLLVNSRKCIINAETDRFADVYAAATTTTNPDSIYLFARDGFENPDLKKPIDFRYKSVETDLAETKFTLTTASSKAHKLPISGEYTLQMIGDFNETNATGAIIGAGLAGMSYEDCAKGIRHVTIPGRMETVTTQKHGLIVVDYAHNKASMLALMRFMRREFTTPRVIVVVGAPGDKGISRRPGFSESLTAEADKAYLTTDDPGFENAQDICEEIDAGIDHSKCETVIELDREKAIKEAISEAGPDDVVLLCGKGADAFQKIRGVDTPYAGDIVIARQVIQELEK"]}}, {"location": "[1712200:1713409](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_18740"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MKLEQDKEKQVVQGKRPRVKLTAAEKSELFAEGVVTVIIMLLLNMSVIILYHLAVLQDKSLVNGIYFLKKTMTIGPGYHIWSWERIGIILMGIADVIVLYWRLIRRYHQMQLRHIISELHYIANGHFDHRISFSVNNDMQKVIDSINSLVDSTVGAINEEKAIEQSKDELITNVSHDIRTPLTSIIGYLGLLKNGAVTSQEDMLKYINIAYDKAEQMKSLANDLFEYTTLKSTKTKLNVTPINIKGMMEQVAAGFELEAEKKGIAFSVKARPDDLIVNADVEKLVRVYNNLISNALKYAAGASRINLVANLINHEQVELRVENNGEPIPKDKLKKIFDRFYRVESSRNTKTGGTGLGLSIVQGGVELHGGTIRCESNKDWTSFIILLPRDPQANNFALRPVV"]}}, {"location": "[1713398:1714085](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["srrA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L524"], "locus_tag": ["MAAAAKME_18750"], "product": ["Transcriptional regulatory protein SrrA"], "transl_table": ["11"], "translation": ["MKILVVDDDHEIVELLSIYLKNEGYEPIAAYNGKEALTKLSTTPDIALMILDVMMPNMSGIDVVKEVRKDSDIPIIIVSAKTGDMDKIQGLITGADDYVSKPFNPLEVMARVRSLLRRSQKQVKGEEPDVLEVGPLIINKDSHEVKTVEGKEIQLTALEFGILYLLASHPNRVFSADEIFERVWQQESIVSAKTVMVHVSHLRDKIHKATDGEEVIKTVWGVGYKVEA"]}}, {"location": "[1714213:1716058](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_18760"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MTKKQAQQPSQMQTLTRLLKYVYRVSPAALIVSLASVIISAAASVVGSLFIEQVIDRYITPMLKQKSPDFGPLAHAVLLMAGVYAIGLVANYLFTLLMMVLSQQVQKQIRNEMFTHMQRLPIAFFDQNEYGDIMSRYTNDIDTLMQMISQALPMFANSVFSVVFVLAGMFYLSWQLTLVSLVVVLLSLGVVRYLTGKSSYYFDQQQKTVGTVNGYNEEMLNGLKVIKVFSHEPEAKADFDRYNDQLRIASGKANTYATILFPIMGNIGNLLYVLIALLGGAAILAGNIPLTLGALASFMQLSKAFIMPIAQISQQLNAIVLAIAGARRIFQVLDEKVEVDDGQVTIEEKPGVKNAWQWKLPTENGFKYVPVKGHIVFDHVSFGYVPGKQILHDISLEAKPGMKVALVGETGAGKTTISSMINRFYEINSGTITYDGIDIKDIKKDDLRKSVSIVLQETHMFTGNIMENIRFGRPDASDDDVYQAARLARADEFIHDRDDGYETVIDGGGSDLSQGQLQLLSIARAMIADNPVMILDEATSSIDTRTERLVQAGMDNLLAGRTSFVIAHRLSTIVNSDLIIVLDHGRVLEAGNHDQLLAKQGYYYELYTGKKEIQ"]}}, {"location": "[1716068:1717706](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_18770"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MYIPYIMGLLIDNGINKGDMDYVRKMGLFTILLTLVSLVLGASASYFSAHAAAGFTANLRQDMFYHIQDFSFENIDKFSSASLVTRLTTDTNNIQQAYQMSIRIAVRAPFMMIISLFMAVSISWRLTLVFLVPVPVLALAMILIIKNARPYFPRIFRAYDELNRKVRENIRGVREVKTYVHEEEQIENFEKSTSKIYKLFSRAMFIMAFNGPVMTMMIDAVMLALSWFGAKLIVGHQLATGQLVSVFSYTMSILMSLMILSMIFTQLMMARSSGHRVADVLTAKPTIVNPAKSPLTSVTNGEIVFDHVDFKYNKEDDHYALKDIDLRIKSGETLGIIGETGSSKSTLISMIPRLYDVTGGAVRVGGHNVRSYDLKTLRDNVAVILQKNVLFSGTIKDNLKWGNEKASDEEIVRAVKIAHADGFIREMTDGYNTMVEQGGNNVSGGQKQRITIARALLKKPKILILDDSTSAVDAKTEREIREALKRDLPETTKIIISQRIVSIKDADRIVVMNHGKIEDVGTHDELIKRNDLYSSIAKFQEENSK"]}}, {"location": "[1717931:1718702](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSEEKQVKNDSQAELQKQGQAEAKTESIKQENPEELRGKLSNKNKDYIYRLKKELVAGGMSEGDADAQIDGLLPEIYDAQIKGQPANVLFGAAPKMKASQILHPVVKPERVSDKLVALDGALFYTAMLTVLFGVLQLFTDNSKSTSSGSGILTLIVMGLSMGWYFTKYNTWMQPDPKTDKQAWGKVIWGLLGSLLIIMLIVFVLSIPALSVINPVLPGWADILVAAAAYGIRWLVRRHYGIEGTSLSPDKLTMKKK"]}}, {"location": "[1718716:1719817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0012"], "gene": ["ychF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37518"], "locus_tag": ["MAAAAKME_18790"], "product": ["Ribosome-binding ATPase YchF"], "transl_table": ["11"], "translation": ["MALTAGIVGLPNVGKSTLFNAITKAGAEMANYPFATIEPNVGMVEVPDKRLARIQELIPAKKVVHTTFEFTDIAGLVKGASKGEGLGNKFLENIRQTDAIVHVVRAFDDENITSVSGKVDPEEDIDTINLELIYADLDSVDRRIGKVQKMAQQKDKEAMAEYNVLQKIKPVLEAGDPVRSIKFTDDEAKIVKGLFLLTSKPVIYVANIAEESMADPESDKYYQIVKAHADKEGAGCLGISAAIEEEIAGLDDEEKEEMLAAEGVEESGLDRLIRAAYHLLGLRTFFTAGGKETRAWTFHQGMKAPQVAGVIHSDFERGFIRAEVVSFEDLDKYESMQKIKEAGRVRLEGKEYEVQDGDIIEFRFNV"]}}, {"location": "[1719893:1720157](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18800"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKNITFDLADTVEMKKPHACQTNNWEVLRLGADIRLKCMGCGHVIMMPRADFNKKVKKLLAKSNDPVNLKNDFYVAKEDIARPNFG"]}}, {"location": "[1720149:1721040](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1475"], "gene": ["spo0J"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26497"], "locus_tag": ["MAAAAKME_18810"], "product": ["Stage 0 sporulation protein J"], "transl_table": ["11"], "translation": ["MARDSRNKKQEKKKGGLGRGLGALFEEEPQVKPAEEIEDLPLAEVRPNPYQPRKNFDEKKLAELAESIKENGVLQPIIVRRSVGGYEIIAGERRCRASELAGQATIPAIIRQFDESQMMEVAILENLQREDLTPLEEAQAYEMLQKNLGLTQEEVSKKMGKSRPYITNYLRLLTLPQKTKGLLQRGELSMGQARTLLGLKDKDRIDELAKRVVKEGMPVRKVEALVAKMNERGQKKKNNAGKSAFVRASESQLAAKFGSPVSITENKTGKGHLSIDFASPDELNRILDLLGVNLDD"]}}, {"location": "[1721017:1721797](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1192"], "gene": ["soj"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37522"], "locus_tag": ["MAAAAKME_18820"], "product": ["Sporulation initiation inhibitor protein Soj"], "transl_table": ["11"], "translation": ["MGSVIAVANQKGGVGKTTTTINLAASIAKRGYKVLIVDIDPQGNATSGLGIEKSTIEYDIYNVLIDEIPIASAIKPTSSKKLDIVPATINLAGAETELISMMARETRLKGAIEDLGDKYDFVFIDCPPSLGQLSINAFTASQSILIPVQSEYYAMEGLSQLLNTIRLVQKHFNKDLGVEGVLLTMLDARTNLGADVVQQVKEYFGDRVYKTIIPRITKLAEAPSYGEAITEYAPSSRGAKVYDDLAKEVLKAHGKRLKK"]}}, {"location": "[1721798:1722623](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1475"], "gene": ["noc"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37524"], "locus_tag": ["MAAAAKME_18830"], "product": ["Nucleoid occlusion protein"], "transl_table": ["11"], "translation": ["MAFGFFHRNEIPQNKQVQDLPLAEIHPNRYQPRRTFSDDSIQQLAQTLQEEGLLQPIIVRQDQGGYEIIAGERRFRAAKSLGWEKIPAIVNNLDDQQTASLALIENLQRENLNPIDEAQAYEQLMQLNDLTQTQLAQDIGKSQSYVANKLRLLKLAEPVQEYLAKGGLSARHGRAILGLSEEDQVKLAEEIVEKGLSVKETEERAAKLANPKPAVKKKAVVRYGRDMQLQINTIKQAVKLAKESGVKVKVTEAKSPDEYQITIVMKNQRKKKED"]}}, {"location": "[1722641:1723361](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0357"], "gene": ["rsmG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97QD4"], "locus_tag": ["MAAAAKME_18840"], "product": ["Ribosomal RNA small subunit methyltransferase G"], "transl_table": ["11"], "translation": ["MNPELFAETLSKYNFKLSPVQEQQFKTYFKELVRVNEHVNLTRITDEDEVYLKHFYDSVTPLLLWPEVFAEGAKLCDVGAGAGFPSLPIKILRPDLEVTIVDSLGKRLNFLSDLLEKLGIEGVNLVHGRAEDVGQNPDYREKFDLVTARAVARMSVLSEYCLPLAKVGGKFLALKGPRADEELEDAKSALEKLGGEVVFTRVITLPGSTEVRTLVLVDKVEATPGKYPRQAGTPNRKPL"]}}, {"location": "[1723524:1724049](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLVIFVILYIAWQTYKGYHVGFFKRIVNLIFAGLVFMLAIMLQNPVGNLIYTQFIQGQAGDSSLVLHACRFGAFFALFFILKQIAKIFKAWLPAQETKTGFTATLDHMAGAIVSFVASYFFMYVVLSILNSVGVSQLSQLISDSQLLSFIVNDTPGLSTGVFKTLFSVSRTTA"]}}, {"location": "[1724094:1725054](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.180"], "codon_start": ["1"], "db_xref": ["COG:COG1477"], "gene": ["apbE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O83774"], "locus_tag": ["MAAAAKME_18860"], "product": ["FAD:protein FMN transferase"], "transl_table": ["11"], "translation": ["MGIIKYISTDQVLAQHKAMGTHISLQIYGAREDPEKILDQTKVLIDHFEDLLTVNRKPDHPRYGLSEVTRVNDQAGKEAVQVSSSVYGLIKLAVETSRENFGFNALIGPLVKLWSIGFQDARVPSDAEIQEKMKLIDPWMVELNDDDHTVFLKQEGMELDLGGIAKGWTADRIRDLWRAYGVEAGIINLGGNVLFVNPCPKRANGMWTVGVQDPLKPRGENITAMMIPECSVVTSGTYERFLEVDGHKYHHLIDSRTGYPVETNIAGVTTFTKNSVDAEIECKRCFFAGQPIANWVNDCRLGAIYVYNDERVEKVGLDY"]}}, {"location": "[1725065:1725848](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "gene": ["iphP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q05918"], "locus_tag": ["MAAAAKME_18870"], "product": ["Tyrosine-protein phosphatase"], "transl_table": ["11"], "translation": ["MAEELLPLKTVRNPRDLGGYTGFSGRKIKAGLLLRTGTVAAISEEDGNYLRARGVKTIIDLRSPQECRKRPDKKLAGIQNVNIPVNSRDQTKAEASLAELARQYGLDPLAGFRHMVESYRLMVTEEHAQAAFGQVLAYLAETEGGTIYHCSEGKDRTGLVTVFLLTVLGVDPETIRQDYLLSAPYLNGYRAKRDKEARENGESLVQRANLRSLGTVNNEYLDSALITIDQEYGGMEAFLTRQLGVTPVLRDQLRAKYLEE"]}}, {"location": "[1726000:1726549](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.5.1.36"], "codon_start": ["1"], "db_xref": ["COG:COG0431"], "gene": ["nfr2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HL8"], "locus_tag": ["MAAAAKME_18880"], "product": ["NADH-dependent flavin reductase subunit 2"], "transl_table": ["11"], "translation": ["MKLLAIVGTNADFSFNRLLCQFIAKRFGDKAEIEVAEIGDLPAFYKEGQADARVAAWREKVDQADGLIIATPEYDHAIPAALKSALEWLGSHAGSKVMAYKPVCVVGVSLGVQGSSRAQEDAREILLSPDMTANVLPGNELLIGQAYSSFDKESGDLVDEASIAQLDKVMEAFFAFVAQAKK"]}}, {"location": "[1726565:1727105](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.5.1.36"], "codon_start": ["1"], "db_xref": ["COG:COG0431"], "gene": ["nfr1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HL7"], "locus_tag": ["MAAAAKME_18890"], "product": ["NADH-dependent flavin reductase subunit 1"], "transl_table": ["11"], "translation": ["MKVLALNGSNADKSYNEMLLKFIAKHFADKYDFEFATVKGLPMFKEGQEDPADVAKLSDQVAAADLALIGSSEQQHSVTSALKSALEWLSTNTHPFNGKPVVIVSTSPLAQGGARSQTKLKTILASPGLHPVVFNDDEFMMGGAATAFDENGDLKIPGTVDFLEHFFDEVDAWYAQITK"]}}, {"location": "[1727232:1727778](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARRKEIDRERILDIAYKKALTDGIENLTARSIAQTGHFSTQPIYLEFKNMDGLRKEVLKRVSRTLRDEILQKKFIGEPLYDVDLSYLQFARDHRSLFSTIFVNGEFGDDLIRDTLMDLGHTKLREQYQRDLDPELEKWLIALNWIIVNGLAVMLVDGLIDYDQDNFVRIIKRQLESLFDR"]}}, {"location": "[1728055:1729456](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_18910"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MTTHGRSSCTSILIGKKASLDGSVIIGRNEDSRTAWPKHLAFHQRQAGAKTFKSHDNKFTIDLPEEAFAYSSTPEWTKKYGLFEEDGINEHHVAMSATESAYANERVLAIDPFDAEKGLLEEAMVTIVLPYVKTAQEGVKRLGEIVEKYGAAESNGILFADRDEAWYLEIGSGHHWVAQRIPDDSYTVVANQLSIQEIDFKDPANFLYSAGLQEFVYEHQLWPKEAKFNWREIFGTRSESDLHYNTPRVWYGQKLLTPSVKQEPQSFDLPFIQKADRPLSIQDAQTVLASHYSNTEYDLTNPKNAGQATFRPIGVATTQESHLLQLKGEDMYHWLAMGVTAQSVYIPFFPQGTKVPYMWGNGKVDYSPNSAYWIFKLAGVLVDRNWGKYGKELANAQTEAKEKVLRLRYEYDQKLHADPSQATAIADEANAKMAKTVTDIYNKLISNLITQQTGDSPLSFQMDPNL"]}}, {"location": "[1729632:1729857](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKSKLIKANEKITEKVTGAFGKVQDSVVGGYSKIEDKFVDQYLTKDGESIADAKARLKQEQADRKAKQDLHKQ"]}}, {"location": "[1729914:1730412](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFRIFDLLKSRARLSKVLAPVQGRLFPLEDVNDEIFASKGLGEGFAVQPSSDLIYAPLNGTVTSLFPTNHEIGIRTKEGLDLLIHLGLNTVELGGVGCDILVEAGQEVKKGQLLATMNRKLLRGLGYDDTVIVTYTNDQILKGVSAPVFFREINAKRAVQTISYH"]}}, {"location": "[1730526:1730817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTTAKLIYGYLIRPAQKRYKDEAGRVDEENDFLAKISQSCLINPKNVAAINLRKRTIVMLNGEILSFSRRFRHEMDKLVDEYNWKVETATKRLLR"]}}, {"location": "[1731207:1731600](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46604"], "locus_tag": ["MAAAAKME_18950"], "product": ["FMN-binding protein"], "transl_table": ["11"], "translation": ["MLEESTTLTQNFLEVISDPQPVTIVSYQASPAHVVNTWSSYIKVVDDSTFLVPAAGMRSIEADIAAQNSQLILTFGSMKFEGTEGPGRGYHVYATGEFVEAGEYFDLMKADLPWLRKVLVVHVQEVKQKI"]}}, {"location": "[1731691:1732618](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSERLNQELIFLSDKKRFNLQDLMDNFQISKRTALRDIASLEELGLALYAEAGRAGGYSLIQEDLLTKIYFNSDEVAAIFFALKAMEQLKETPFNESFQMISQKLLKNLAASRQQQVLASQAAVSFFNTPAVHHNPYLRLLMESILHDSLVRANFKGQQVLLQPCQLFFRDGNWLFAAYDLLGQAFWNYRCDQLQDCTEQAAVPNKLSLAELKQKQLEFEHDNSGQKFKILLNHRGQEHFLKNLYPNMQLEHEGGTTYLTGSYTPRTFEYLIDYLLTFGLNAKIITPEELRRSFKERLAAILDQYS"]}}, {"location": "[1732931:1733606](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["yxdL_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42423"], "locus_tag": ["MAAAAKME_18970"], "product": ["ABC transporter ATP-binding protein YxdL"], "transl_table": ["11"], "translation": ["MAAIEIKNVKKVYGQGDAATVALKGVDFSADTGNVVLLMGPSGAGKSTLLTIMGALQTATSGKVEIDGQDISRLKEKDRSRLRLNKLGFILQAYNLVPYLTVKEQFQLVDKVKKTGNLRQEELKDLLADLGIENLVKKYPENLSGGQKQRVAIARAMYANPKILLADEPTASLDSERVEEVGRLFKKLAKDDGKAIILVTHDPRLEKYADHIYDMMDGQLTQRK"]}}, {"location": "[1733607:1734666](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0577"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WG17"], "locus_tag": ["MAAAAKME_18980"], "product": ["putative ABC transporter permease"], "transl_table": ["11"], "translation": ["MFLALKEIKHEKMRYGLIVFMIFLIAYMILATWGLAYGLARENTVALEGWQTKSVVLNKNANLFMNSSILTKDDLKKIDLTDKEAVVGELQVVAKKKGKTGINAQYMGVKKGEFIYKDQDVIAGRRAKSKYEVTADSSFKDKGYKLGDKVTLNGSDHKYTIVGFVRDAKINIEPIMCGFLPAWKELKNVAPGIEASGIISQRKLSVKGKNFKTYGIKGFTQKLPGHSEQNLTFELMIAFMFIISLAIVAVFLYILTIQKLPNYAVLRAQGVPAKTLIWATVSQSLLLVTSALVLALLAIWGTAAAIPASVPMAFTPGIFLATIGGMLVMALLGGLNPVRTILKIDPVQAIGG"]}}, {"location": "[1734708:1735212](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKATFENLSKDKQDRVTEALLKEFSAHTLASAQVVRIVKEAGIARGAFYKYFEDLTDAYQYLFKLAMRDLHTGLTGRMGADELYQMTKDFVTKATGSQYYDLIRLHYAANEALLPSNKPKQMPACAWAAMVLSHEAIKEALLDPDKADFYLDREHEALEKLFSQHK"]}}, {"location": "[1735528:1736470](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0277"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIT1"], "locus_tag": ["MAAAAKME_19000"], "product": ["putative FAD-linked oxidoreductase"], "transl_table": ["11"], "translation": ["MKAIKYGVTREHIREVKVALTDGKVYKFGSKSVKSSSGYSLKDLIIGSEGTLGVITEAVLRLYPRPKHALNAIIPFPTLDDAIESVPAILASGVVPTTVEYMGRKVLNLWEKYYDATFPIKKGDGFIILGIDSFTASDAEAQLAQALEAVKPFHALKETVLNAESDEAKTIWDAREKLLLAIQKSTPKMDEVDVSVPINKIPLVLHRIEELEKEEDMRIPNFGHAGDGNLHIYLCSDDMTDEEFAKKGDNAISELYKTAKSVGGNMSGEHTGLATPARTTTKTSTARITPTCSERSRASSILRASLTQTRSSR"]}}, {"location": "[1736466:1736718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEYHKLTAEDIENLRPMIADPERFITEVTGHWDHDQFKTVRAMPDLDLVIQPTTADGRQAIYLHASTSHALVYCSRQHQPPAA"]}}, {"location": "[1736894:1737632](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3022"], "gene": ["yaaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A8I3"], "locus_tag": ["MAAAAKME_19020"], "product": ["Peroxide stress resistance protein YaaA"], "transl_table": ["11"], "translation": ["MKIVISPAKKMQTDGGFLPKSQPVFLDQAEELWSYLHSLDQAGLEKVWRANAKITEEARQMLAADLTQPQVPALFAYSGLQYQYLAADVLDQAGLDYLDQHLRVLSGLYGSLRPFDGIVPYRLEMKSPLPAFKYKSLYEFWGEKVYQELYQDDSVVLNLASKEYSHLLTPFLKEGDRLLEVVFQEEKNGKWRTQATHAKMARGRLVRWLAEGGRDLSDLPGFTDFGYAFAPDQSGEDRVVFRKKA"]}}, {"location": "[1737696:1738332](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINPDFAIILNFNPTGANVNADALVRRARDIGARAVSGREELKAACEKYTIAYLPDQAGQHYKADEVVDALLAARKAGQALVVDVDGEDEADQAALDALNAWMHKFGHAVNEGQESDLSADAAEAFVLTNRHAPYQAYLFLKAPYPAEVKVTGLTEAPNRIEWIDGREECEFVFENGVLTVQLKKQESPFAWQLVRIQGHRPEDDIAETKF"]}}, {"location": "[1738425:1739616](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSRKDYRKKNTQGSKYLIITGVAVIFLACAGIWGHNAYQQHQATVPAENKKHFNANVTIYGVKVGKLTVDQAVEKIQAKAVNKLVYKDGKISAVRDSKLTTISKEQVQKYFDKQYTQLPTDQSYNYENTALKKGKSKLKAITAASVDYSVAGKTFTLAAKDYLTQVSYYSGAVHYDDASKLTAKLNAMDKEVKTLGKSYKFKTPAGSTITVTNQSYGWGIWTASAKKAVLSAYETGKKTIDGKNHIYGEGYTTQGLGYGKSNNGLGNSYVVVSIARQDMWVVVNGKVVVTVSDVVTGTANKGDNATPTGVWYIMYKQQDATLRGQNDNGSNYASKVSYWMPFTMSGCGLHDASWRTDWSSTAYLEGGSHGCVNIRPSEIKSVWDAVKVHMPVIVY"]}}, {"location": "[1739857:1739992](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVEEKKVTPEARDAAVNTFLPLYEKADRQMLVEGAIVDASLVAM"]}}, {"location": "[1739995:1740193](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLVAREHGYETNLMAGYDASKAAAEFGLDPEQYIPVMAISIGKPDPSEVVPDTVRYDVKDVTEFA"]}}, {"location": "[1740263:1742795](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.2"], "codon_start": ["1"], "gene": ["pepN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37896"], "locus_tag": ["MAAAAKME_19070"], "product": ["Aminopeptidase N"], "transl_table": ["11"], "translation": ["MAVKRFYETFHPDHYDLYIDVDRAARSFSGTSTIHGEIQEETVLVHQKYMTISKVTVDGKEVPFTFGDDFEGIKIEAGKTGEAVIAIDYSAPLTDTMMGIYPSYYQVDGVKKELIGTQFETTFAREAFPCVDEPEAKATFSLALKFDEHEGETVLANMPEDRVENGVHYFKETVRMSSYLVAFAFGEMRSLTTHTKSGVLIGVYSTQAHTEKELTFSLDIAKRAIEFYEDFYQTPYPLPQSLQLALPDFSAGAMENWGLVTYREVYLLLDPDNTTLEMKKLVATVVTHELAHQWFGDLVTMEWWDNLWLNESFANMMEYLSVDHLEPNWHIWEMFQTSEAAAALTRDATDGVQSVHVEVNDPAEIDALFDGAIVYAKGSRMLVMVRSLLGDEALRKGLKRYFDEHKFGNAAGDDLWDALSTATDLNIGEIMHTWLDQPGYPVVNAFVEDGHLKLTQKQFFIGEGKEVGRKWEIPLNANFKAPKIMSDVELDLGDYQALRAEAGHALRLNVGNNSHFIVKYDQTLMDDIMKEAKDFDPVSQLQLLQDLRLLAEGKQASYADVVPVLELFKNSESHIVNDALYTTAAKLRQFAPAGSEADKNLRALYNDLSKDQVARLGWLPKAGESDEDIQTRPYVLSASLYGRNADSEKQAHEIYVEYADKLAELSADIRPYVLMNEVENYGSSELTDKLIGLYQATSDPSFKMDLKAAIVTSKDEGELKKIVSWFKNAEIVKPQDLRGWFSGVLSNPAGEQLAWNWIRDEWAWLEKTVGGDMEFATFITVISRVFKTQERYDEYNAFFTDKESNMLLNREIKMDRKVIANRVDLIASEQADVNAAVAAALQK"]}}, {"location": "[1743203:1744010](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMFKHNFKKVLSATAFAVALVVAPAANVSAATNDASSTQQSATATSQDQQASQDQAASQSSAANQSSATAVSASSSTSTSSATSTSTVKKTTKKAKKTTKKSKKKTSKKKAVKKVAKKTTKKRATKKAAEAAAKKAAAVKKAAAKKAAAAKKAAAKKAAAKKAAAKAAAKKKSAAKKKAAAKKKAAAKKKAAKKSAEKAAKYWIAMRESSGYYTARNGSCYGRYQLLISYLGGDLSKKNQERTADRYVYGRYGSWVNAKRFWLAHNWY"]}}, {"location": "[1744180:1745128](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2390"], "gene": ["lsrR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76141"], "locus_tag": ["MAAAAKME_19090"], "product": ["Transcriptional regulator LsrR"], "transl_table": ["11"], "translation": ["MQLSNDQLANIAHDYYISKLNIAEISAKYNLSRYLIDKALSDAEKTGIVQINIKEGAKQNPGLEKSFRQQFGLKEAFILKKLETKNQDSEKIVSFAAEQIQSYMQSSKNVGITWGTTMLDIINSFTEVKNDDLTFVQLVGYPLQGNDRKNPLESIAAAQCGGHFRALPAPLYSSNPDLVNLIKKEPFYEQLDELYDNMDLLVASLGTLQAFEEESFLHEKYESLLFKNIHQKSISGMIFGRPYDHEGHFFSSITDKIIGISDQQIVKTPVRFVVVNDRFKSEALLGALKSGIITHLVTSETIADRVLQLQKESGR"]}}, {"location": "[1745387:1746740](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8G6Z9"], "locus_tag": ["MAAAAKME_19100"], "product": ["Dipeptidase"], "transl_table": ["11"], "translation": ["MIGGNIIRKFIWAAGALGLAAAFTATSVKACTTVVVGKKATTDGSTLVARNEDVGAWSKHFYVHQATSNGPTTYVSEDNGLKTSLPKTALRYTSTPDGEQVNGQWIFGESGINSENVAMSATESGTTNKKGLKADNLVKNGISEASMLDVILPYIHSAKEGVQRLGQIVEKQGSAENNGVIFSDKNEIWYMEIGSGHTWAAVRVPDNKYAVIPNQMVIGKLNLKDSKNYMASTNLVKKVKAWSQNKKIKLAGYVKGTVNYSKAFGTNDKTDAIYNRPRMWDGQRILTPSKKQSITKKSYTLFLKPDKKVSPAKVGQVLSSHFTGTKYSSYGKWKAGYRPINVPTDVESHILQIRNNVPKEYAAIQWLAMASPANSVYMPFYTNISDTPSQYKVDGDYQDPTNTKSAYWTYKTTAMVVEAYKHKKFIDSSTGKKTDLIYKDVNPTKKAVTK"]}}, {"location": "[1745672:1767868]", "type": "protocluster", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "category": ["RiPP"], "contig_edge": ["False"], "core_location": ["[1755672:1757868]"], "cutoff": ["20000"], "detection_rule": ["(cds(LANC_like and Pkinase) and not micKC)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iv"], "protocluster_number": ["3"], "tool": ["antismash"]}}, {"location": "[1755672:1757868]", "type": "proto_core", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "tool": ["antismash"], "cutoff": ["20000"], "detection_rule": ["(cds(LANC_like and Pkinase) and not micKC)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iv"], "protocluster_number": ["3"]}}, {"location": "[1745672:1767868]", "type": "cand_cluster", "id": "", "qualifiers": {"candidate_cluster_number": ["3"], "contig_edge": ["False"], "detection_rules": ["(cds(LANC_like and Pkinase) and not micKC)"], "kind": ["single"], "product": ["lanthipeptide-class-iv"], "protoclusters": ["3"], "tool": ["antismash"]}}, {"location": "[1745672:1767868]", "type": "region", "id": "", "qualifiers": {"candidate_cluster_numbers": ["3"], "contig_edge": ["False"], "product": ["lanthipeptide-class-iv"], "region_number": ["3"], "rules": ["(cds(LANC_like and Pkinase) and not micKC)"], "subregion_numbers": [], "tool": ["antismash"]}}, {"location": "[1746782:1746938](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSGDKLTAYLTEQNQKNADYAQKKWQTMDNSLIVHSNKLAPVTKSKLTFNK"]}}, {"location": "[1747114:1748533](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0471"], "gene": ["yflS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34726"], "locus_tag": ["MAAAAKME_19120"], "product": ["Putative malate transporter YflS"], "transl_table": ["11"], "translation": ["MLAKVNYKGFIWPLIIGIGLFLLTPLRPATITVAGWHMFAIFLATIIACITKPLPIAGVSIIAYVTIIGLGLVQMKPALSAFADSTPWTIAMAYMIARSFTKTGLGRRIALIFVRAFGKKTLGLAYALSMIDLVVSPATPSNTARSGGIVLPIIESLSDTFGSKVSDGTEDKIGSYLVFNEFHANTISSSLFMTASAPNVAAVGLAAANGVKISWLGWVAAAIVPALISFILVPIIIYKMYPPKINETPNAKEWADGQLKEMGAIKASEKVMMAVFILALVLWMLSSFIGLDATWVAFMATALLLVTGVLTTKDMLSETGAWNVVVWFSILIFMANQLSLEGGVIPWLQTSIKSVIGGMSPVLVMAILVLVYFYSHYLFASGTAHVVAMYAPLLLIAKSAGVPVMFAAIMLGMTGAIFQSTTHYSCGPATALFAPGYVKQTDWWKMCFVLGLFYLVVYGGIGGLWMKLIGLW"]}}, {"location": "[1748557:1749961](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.2"], "codon_start": ["1"], "gene": ["fumC"], "gene_functions": ["biosynthetic-additional (smcogs) SMCOG1063:argininosuccinate lyase/adenylosuccinate lyase (Score: 82.3; E-value: 6.6e-25)"], "gene_kind": ["biosynthetic-additional"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64173"], "locus_tag": ["MAAAAKME_19130"], "product": ["Fumarate hydratase class II"], "transl_table": ["11"], "translation": ["MAEQEYRIESDTIGEVKIPKEALWGPQTERSRNNFQSGELMPLAIIRAFLHLKKAAAESNVEVGDEPAEKGQAIEEAIDQLLALSDEDLRKDFPLHVLQTGSGTQTNMNVNEVVANLANKLHPGLNILPNDDVNRGQSSNDTYPTAMNIVAVEAVDKLEPAIEHLIDELKVKQDKYWKTVKVGRTHLQDATPLTFGQEVSGYISALKHDLAYIQELKPSLYELAIGGTAVGTGLNAAPGMTEAIAGKLSEVYGHEFKVDTNKFWGLAHHSALSVMHGAFKTLANDMFKIAQDIRFLASGPRAGYGELNIPANEPGSSIMPGKVNPTQAEAVTMAVARVLGNDVTINFAASQGNFEMNVFKTVMIAAFLESADILAGTITGFADKMIHGLTVNEQRMDDLLENSLMTVTALSPKIGYHEAAVIAQTAQREGTTLKEAALKSGKVTEEQYDEWMDYMAMTNIDRTKPEE"]}}, {"location": "[1750405:1750645](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVVNTDEEPATKSAAKTPTLVTKLANTAPVAKAPAATAAQLPQTGEKDAKPGILAGILSLLAGVSLFGFSFEKRKQEK"]}}, {"location": "[1751402:1752311](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARMSRRQYQERQEQTAQKQTRQRNPNSVPRLDTDGASRSEQKVRLNFWQIFADRPYVTVIMISLALFCILAKWWIGLAIIIILTIAGIFVIGRSHHPNRVLSLEFKLKASRKLSMIKALQLLGSTIMFLAAYMRQIVSVDFSSAGATDSLTVIQNMLSNQGTFGQQGSYFLSLFNQLTGGSLWGTYRYATNSSQMMNSTAGTMIILWIFLLMIAPAFCVLSQFFREPYSRHVMTVASLISTISFTLTPTLMNRWVISYAVQNQMSQAAAENAVQVGGMVYPAIISAVFVFILAIYREIKKD"]}}, {"location": "[1752375:1752615](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLRKYYVTIVFTLLALLNLLSSWGTLQYRLVMLALNLVCGFSMEYLVNKKAPAEKYNLWKGCMAAVLLAVNLLWIFLTK"]}}, {"location": "[1752711:1753212](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.106"], "codon_start": ["1"], "db_xref": ["COG:COG2110"], "gene": ["ymdB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A8D6"], "locus_tag": ["MAAAAKME_19170"], "product": ["O-acetyl-ADP-ribose deacetylase"], "transl_table": ["11"], "translation": ["MNLEIWQGDITTLKVDAIVNAANRELRGGGGVDGAIHRAAGPKLNEACRALGSCETGEAKITPGFNLPAKYIIHTVGPVYSGSHSDPLLLAACYRNSLRVAKENGLHSVAFSAISTGVYGYPLDAASKVAFGEVRKWLREHKDYEMRVIMVAYDARTYALYQKLLG"]}}, {"location": "[1753211:1753994](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEMQRVIELDMPVNFRDLGGYQGLDGRQVKWRKIYRSAALNEMSARDRVKLANLRITVDCDLRSSREQRSYPDLLWPGVRFVNIGLYAEGDRFNQAHPFLRLFHHLPEFDDYLPKIYQQVLLNEHSEEGIKRVFEELLKLPEDQALVYHCAAGKDRTGIISILILMALGVDDKTIAEDYLLTDELYDFSIEKQHPTNEKLSQVIAKMNVTRGEGTAVKGITETIRQGWGSFDKFFTRKLGFKQADLEKFREMYLEEEEED"]}}, {"location": "[1754105:1755686](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_10"], "gene_functions": ["transport (smcogs) SMCOG1288:ABC transporter related protein (Score: 191.2; E-value: 5.2e-58)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_19190"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MKIGELVKQNRLRFTCAVALEVLVQLCVAVGNYIIGFILDLLVKRETSRFYLVLAVFFVLYIGGYVLISFAEYLYIVQVQEYVHQLRRKTVDYYYQNHETVAEMQSHLTNDFQMLFDNFTQPLFVFFDSALAVVFSAYALVTMHWILLVTTVLLSVMFLYLPSIFSKKYQERTLIFSNMNTAYLTSIKNWLGGLAEIQRYDARHKLVEVLEKRSKKLEGSLVTRQVSAIEINFINGFMSIFCQVVLDVVTGTLILAGTISIGKLVAVGQFSSTIFNSLVMLSNYLEQIKSTKPLNEKVAAALADPPKDVCTDEELTSFDHLQTTGLSFSYDHGETINYPDLKIKVGEKILLTGDSGTGKSTLLKVLAGELKATTGNIAFYDHDDRKIDISLKAMHYVPQDPVLFPVSIAENITMFKPKLDDKVGEYLQKVDLAKDIAKFPKGQDTVIDVEELNVSGGQRQKIVLARAELNQSDFILIDEATAAVDQDSTKRILKNLLKTNATIIFIGHNFTNEMVDMFDRQIVLSK"]}}, {"location": "[1755672:1757868](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene_functions": ["biosynthetic (rule-based-clusters) lanthipeptide-class-iv: Pkinase", "biosynthetic (rule-based-clusters) lanthipeptide-class-iv: LANC_like"], "gene_kind": ["biosynthetic"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19200"], "product": ["hypothetical protein"], "sec_met_domain": ["Pkinase (E-value: 1.6e-10, bitscore: 37.6, seeds: 54, tool: rule-based-clusters)", "LANC_like (E-value: 4.6e-09, bitscore: 32.3, seeds: 47, tool: rule-based-clusters)"], "transl_table": ["11"], "translation": ["MKYKLINGDFCVRQYNHVDVVPTNFLGLSREIISRDPHHVFLQINKSAASLPRQGFKIHVSATLQNYQVILDKVYDLSCENNFTFKYISNYSLLEQYLGGTGPLWMTGKYITIYPETESRFEKLIRTIYDLVGKEDGIPIFTDQAFRDSKNVYYRYGIINSDDDFIRDERNNKLYRDHELRTYQLPSFVKEPFESKNEHKLETIGKKYLLKGIISRKSSGGVYRAQDIYGRDVVIKRAKYRFKDSEETEIQKLQNERKNLINWEKYDFIPKVLDSFYEQKDFFLVESYIKGVLIDDLRAEFIGDKRNSFYFAKIRHIVLNYLRCLQRLHNDSFFLGDISASNIIVDFESEKVFLVDVSQSALLTNMDESFYYRTKGFYDRRVDNLSPELQDVHQSGYLVMSVFSRANDFLKIDQSGKQSWNFFIKQAAQEKIPAVFIKVMKVLINATAGSLDRAIEILQKDDMNVLSQITTTQQLPLKSLLQGLQRPVAIEQIEENSLDEKNSEDEVVKALLSVELGNNNCPVPAFEQSQLKIFEELSRTRPSMEKILRQLFLIVEYLRERVPTASVKFDNFDITIKKIESMFWVENNDFCGYRLFAKSKYISPYLKNGMAGMLIVLMNAKVIYQTKAYDRRIKQLANELSKMAYAKNGTFIEGLSGITWILIKYVEQSHDRDYMPLIERQLSFYQYFCVDCHGLMYLIDSRSEALDTSLFYGNRGMAFVLKEWEKLNENR"]}}, {"location": "[1758192:1758951](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "gene": ["iphP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q05918"], "locus_tag": ["MAAAAKME_19210"], "product": ["Tyrosine-protein phosphatase"], "transl_table": ["11"], "translation": ["MPKRIVKLEAGYNCRDLGGYVSQDGRTVKWGRLYRSGSLSHLTKADQSELVRRKIVVDCDLRSRHEQDNFPDKLWPGAKLVDAHFYSESGDEEEEAEAAWEKYSGKLPKLSYLAMVYQQNLVAPRTGLVMRKIFKEMLALEDDEALIYHCSMGKDRTGMVSVNVLMALGLEDREILRDYLLSREYSWDWDEADENDRLGQQIAKMNQTQVSQTAFYGITETIRQTWGGFDRYFASLGFGQGDLDRLRDKFLE"]}}, {"location": "[1758984:1759770](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.30"], "codon_start": ["1"], "db_xref": ["COG:COG0554"], "gene": ["glpK_1"], "gene_functions": ["biosynthetic-additional (smcogs) SMCOG1210:glycerol kinase (Score: 257.6; E-value: 3.4e-78)"], "gene_kind": ["biosynthetic-additional"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34154"], "locus_tag": ["MAAAAKME_19220"], "product": ["Glycerol kinase"], "transl_table": ["11"], "translation": ["MAGDQQAALFGQLAVKPGMVKNTYGTGSFIVMNTGEEPIESKNNLLTTIGYKLGDQVNYALEGSVFVAGSAIQWLRDSVKLLNSAPESEQAALESKDANEVYVVPAFTGLGAPYWDSEARGAIFGLTRGSSDKDLIKATLQSLGYQIRDVVDTMQKDSGIEIPVLRVDGGASNNNYLLQFQADLLGKKIERAADLETTGLGAAFLAGLAVGYWQDLDSLKEIAKTGAAFAPKMEEAERDRLYAGWQRAVLATRVFAHGKDF"]}}, {"location": "[1760058:1760334](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.30"], "codon_start": ["1"], "db_xref": ["COG:COG0554"], "gene": ["glpK_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34154"], "locus_tag": ["MAAAAKME_19230"], "product": ["Glycerol kinase"], "transl_table": ["11"], "translation": ["MSEQYILAIDEGTTSTRAIIFNYAGQQVASVAREFTQYFPKPGWVEHQAEEIWNAVQITTSTALINSAIRPDQLTGGHRDYQPKRNHGGLG"]}}, {"location": "[1760531:1761200](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.13"], "codon_start": ["1"], "db_xref": ["COG:COG3442"], "gene": ["gatD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DNZ8"], "locus_tag": ["MAAAAKME_19240"], "product": ["Lipid II isoglutaminyl synthase (glutamine-hydrolyzing) subunit GatD"], "transl_table": ["11"], "translation": ["MDDNLIRIAYLYEDLMNTYGDSGDVKILRYFLQKKGWQTQIDNISLGSQFNAADYDFVFFGGGQDYEQSIVAKDLQRFKETLNDYIQAGNPMLAICGGYELMGTHYNTISGTKIKGLGILPLHTEFDPDKRMIGDTKYETEWGPTIGFENHSGQTFLDDRKMLKPLAKVVEGYGNNHEEKEDGVRYKNFIGSWSHGPMLKNENVANALVDIILKRHAARVAQ"]}}, {"location": "[1761393:1761630](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIDILRYLDDKHLTIYRVAKESGYGYTTLHKSFNKQQSNATSINLRDLDAIARAKHLAMWQVLRELENDYLSDDDDD"]}}, {"location": "[1761753:1763844](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["clpC_2"], "gene_functions": ["other (smcogs) SMCOG1223:ATPase (Score: 972.8; E-value: 2.3e-294)"], "gene_kind": ["other"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCL7"], "locus_tag": ["MAAAAKME_19260"], "product": ["putative ATP-dependent Clp protease ATP-binding subunit"], "transl_table": ["11"], "translation": ["MDYNNFNDMDDLFRELMNGLGGFNSENRRYLINGRQVTPEEFAEYQKTGQLPGHGQAKNFQGKQKKANGILEKLGRNLTAEAREGKLDPVIGRNKEIQETAEILSRRIKNNPVLVGDAGVGKTAVVEGLAQAIVHGDVPEAIKNKEIISIDISSLEAGTQYRGSFEQNIQDLVKEVKDRGNVILFFDEIHQILGAGGMGDGNGSKGMSDILKPALSRGEITVIGATTQDEYRNTIMKDAALARRFNEVTVNAPSQADTFKILMGIRSLYEKHHNVELPDDVLKAAIDYSVQYIPQRSLPDKAIDLLDMTAAHLAAQHPVTDAKTIEKQIKEEKQAQKKAAEKEDYQAALDHKAKAEKLEKQLSENHEERKTVATPADVAAAVERLTGIPVSKMGASDIERLKGLSSRLKGKIIGQDEAVEAVAKAIRRNRAGFDEGNRPIGSFLFVGPTGVGKTELAKQLALDMFGSKDAIIRLDMSEYSDRTAVSKLIGTTAGYVGYDDNSNTLTEKVRRNPYSIILLDEIEKADPQVITLLLQVLDDGRLTDGQGNTVNFKNTIIIATSNAGFGNEQLMGDAKKDEKLMDRLAPYFRPEFLNRFNAVIEFSHLTKEDLKEIVNLMLADVNKTLAKKGISLTVSESAKDYLIEQGYDEAMGARPLRRVIEQEIRDKVTDYYLDHLDVKKLKADMVDGALVISEDK"]}}, {"location": "[1764199:1764772](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLPEVIGLNVHPENFQESEMQLLEDGVPVKERGKTRSRGQIREIMILKAPVYDQDQIVGLIGFFMDITNTSKQINRLENEAARDDLTSLKNRHNFARDFNYLTGKPILAMMLDVDHFKKFNDNFGHRYGDEVLKKISQALLKIYGIGHCYRYGGTNSWCSATLLILTRLRKKTGSSGKNWNMPGSWIFT"]}}, {"location": "[1764868:1765477](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGAGSLHYFKLSENGGIAFAQIAHHYLGTFGEALLATLATITYMSTAIGLVVAFAQDFHKRFPKISYRTFLTFNCLFSFAIANFGLTTIIAWSTPVLMFLYPLAIALIFCGLTSKFFNNDPAVYKFAVYFTIIPAIFDGLNAAPSIISNTAFAKAALAFAGRYLPQKIQRESKLSFHAVSFYSYSKNSAGKGCRRCPCGRSF"]}}, {"location": "[1767472:1768513](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_8"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_19290"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MEIVYSKDELEEYLHDHADIAEDHPILVDDYLDGRECDVDAISDGKTVLLPGIMEHIEHAGVHSGDSMAVYPPQTFSDEVEEKIMDVTKKLALALNCKGIMNIQFIVRDGDVYVIEVNPRASRTVPFLSKITGIEMAQVATRVIMGESLEQQGYADGLAPEPEMISVKAPVFSFSKLADVDSYLGPEMKSTGEVMGSDHTFAKALYKAFAGAKMQLPENGNVLLTIEDRDKEKILPIAKRFARIGYRIFATKGTANFLKKNDLHVELVTKVHEDEQADDNILNELRDGKIDLVINTMGHDIEKNSDGFIIRQMAIQQNVPLLTALDTADALLKSLENRSFATDALK"]}}, {"location": "[1768786:1770661](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_9"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_19300"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPKRTDIHKIMVIGSGPIIIGQAAEFDYSGTQACLALRDEGYEVVLVNSNPATIMTDTTIADKVYIEPLTVDSVSRIIRQEYPDAILPTLGGQVGLNMALALAKTGILDELHIELLGTKLASIEQAEDREKFKELCQKLGEPVPPSKTVKIVEDALSFGDEIGYPIIVRPAFTMGGTGGGICHNHDELAEIAKNGLELSPVTECLIEKSIAGYKEIELEVMRDSSDNAMIVCCMENFDPVGIHTGDSIVFSPSQTLSDKEYQMLRDCSLKLIRALKIEGGCNVQLALDPNSLDYDVIEVNPRVSRSSALASKATGYPIAKMAAKIAIGMTLDEIKNPVTGTTYAEFEPALDYVVCKIPRFPFDKFPKADRVLGTQMKATGEVMAIGRTAEEAMQKAVQSLEIDEKDLYSAKAHKASDDEIEQKLVRPQDDRLFYLAEAFRRGYSLEDVHELTKINFYFLDVVKHMVEMEKEIEANPDDLDVLRLAKKYGFSDQTIAKLWHEYPDQVRDLRKANGIVPVYKMVDTCAAEFESTTPYFYSTYDGENESRKSGKKSVIVIGSGPIRIGQGVEFDYATVHSVKALQKMGYEAIVINSNPETVSTDFSVSDKLYFEPLTLEDVLNVCDL"]}}, {"location": "[1770653:1771739](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_19310"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MRYLILEDGSIYAGEGFGSDRETTGEVVFTTGMTGYQEAITDQSYADQILVFTNPLIGNYGITLADYESLQPQIKGVICHQIARHPDNWRMQTTLPEFLKQLHIPGIQGIDTRELVKKLRVHGTLRGKIANSKENAEKIVQELKHKNVTQGVISRVSTKSAYPVPGSKRNIVVIDFGIKHSILRELAERDCNCIVLPYTATAEEVLNLHPDGVLLSNGPGDPEEMIEATKMVQEVEKHVPLFGICMGHQVFALANGAKTYKMKFGHRGFNHPVREIATGHIGFTSQNHGYAVDAKSIDKDNLMITHEEVNDGTVEGLRHKKYPAFSVQFHPDATPGPHDEDSLFDDFMSMIDQRKEEERHA"]}}, {"location": "[1771738:1773016](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.2.3"], "codon_start": ["1"], "gene": ["pyrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65906"], "locus_tag": ["MAAAAKME_19320"], "product": ["Dihydroorotase"], "transl_table": ["11"], "translation": ["MQTVIKNGTVYQNGRLIHADVLIEDQKIKAIGTDLTGDKVIDATGKLVSPGLVDVHVHYRDPGQTYKEDIETGSKAAAHGGFTTVGAMPNVTPVPDTPDLMKKMVQENKQKGIVHIFQYGPITKNETTDELPDYAALKKAGAFALSNDGHGVQTAQTMYLAMQEAKKNDLIVAAHAQDDSLFNHGIVNEGEKAKELNLPPVTELAETTQIARDLLLAEKTGVHYHICHVSTKTSVELVRMAKACGINVTCEAAPHHLLLTEDDIPKDNGYYKMNPPLRSKEDQAALLVGLLDGTIDLIATDHAPHAKQEKQGGMQNAAFGITGSETAFSTLYTKFVKEDKVFTLEQLLSWLSDQPAKVFGLKKAGVLEPGCPADVAIFDLEHETELKEKNYQSKGINTPFTGQKIYGATVMTMVDGEVVYQRGEK"]}}, {"location": "[1773015:1773972](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.2"], "codon_start": ["1"], "gene": ["pyrB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65618"], "locus_tag": ["MAAAAKME_19330"], "product": ["Aspartate carbamoyltransferase"], "transl_table": ["11"], "translation": ["MKNLNLVALPHFVSVENLKNDEVKALIKRAEYFKKGGAVARLTSPVYVTNMFFEDSSRTHTSFEMAERKLGLTVIPFDPAHSSVNKGETLYDTSLVMNALGIDLEVIRHSQNEYYEDLINLKQHQKLNIGVINAGDGSGQHPSQCMLDMMTIHEHFGHFKGLKVAIVGDITNSRVAKSDMELLTKLGAEVYFSGPECWYSEEFDQYGKHEELDKLIPKMDVMMLLRVQHERHSGDPNEKKFDAHRYHEKYGINHKRYEAMKKDAIIMHPGPINHNVELSGDLVESDKCMFVRQMENGVFMRMAMLEAVLRGRKLGGLE"]}}, {"location": "[1774116:1774659](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pyrR_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F2MMP6"], "locus_tag": ["MAAAAKME_19340"], "product": ["Bifunctional protein pyrR"], "transl_table": ["11"], "translation": ["MAKEIWDALAIKRALTRITYEIIEQNKGTDDLVLVGIKTRGVHLANRIHDRIQKLEGVDVPVGELDITLYRDDRHDALLKQDPVVNSDNVGVDINNKRVVLIDDVIYTGRTIRAAMDALMHVGRPSLIKVAVLVDRGHRELPIRADFVGKNIPTSADEQVAVNVVEKDGKDSVELKALPK"]}}, {"location": "[1774818:1775742](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0167"], "gene": ["pyrDB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0DH74"], "locus_tag": ["MAAAAKME_19350"], "product": ["Dihydroorotate dehydrogenase B (NAD(+)), catalytic subunit"], "transl_table": ["11"], "translation": ["MVNTHVNLPGLDLKNPVMPASGTFGFGDVPAAQKFDLNDLGAMVIKTTTPHATTGNPQPQIAILEDGVLNSVGLTNPGVDQVISEKLTKLRHQYLDLPIMASVGGDSEDDYVEVAKKLSASGLVNALEINVSCPNVAQGGMSFGVHAGVVEELTKKIKMAVALPIYVKLTPNVTDIVEIAKAAESGGADGISMINTVLGMRIDVKTRKPLLGHNMGGLSGEAVKPIAIRMISQVRQVTQLPIIGMGGISTAQDVIEFILAGANAVAVGSAHFEDELAAKHIAENLPAELEKLGIEDINDLVGQVKFN"]}}, {"location": "[1776126:1776312](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_19360"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MVDELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[1776418:1776775](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_19370"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MAQSKGTDAVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEEKRMNVKQIFNACKKRRGRSRYLLSVPVKFGGPAKDGAQIDARIVCVRNRSPVI"]}}, {"location": "[1777176:1777407](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSNLRHELFEKLSKFFYQYFLTKSHKKELLHQKQFFIVLDKLLWNNISRLRSSIALFNIVTNFLPFLKTLKTVSFN"]}}, {"location": "[1777721:1778024](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bin3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20384"], "locus_tag": ["MAAAAKME_19390"], "product": ["Putative transposon Tn552 DNA-invertase bin3"], "transl_table": ["11"], "translation": ["MAKIGYARVSSKEQHLDRQLAALKDVDKLFTDKLSGANTNRPELQKMLAYIREGDIVMVTELDRLGRNNQDLTNSLANKYSIKLLVMALMPPACTSGGGK"]}}, {"location": "[1778573:1779485](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0697"], "gene": ["yicL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31437"], "locus_tag": ["MAAAAKME_19400"], "product": ["putative inner membrane transporter YicL"], "transl_table": ["11"], "translation": ["MKDKHLGILLAITGAALWGTSGTAAEMLYQSPNINTFWLVDVRSWLAGASLLLISLVHKGKGTFAIFKNHRDLLYAALFSMLGITGAQFTYFYTVAASNAPTATVLVFLAPVLIICFMAAKTRQMPRRIDLIAVLLAVVGTVVLVTNGNFSHLAVTPKTLVWGFFSALTQALAIAMPAKLFKKYGTITILAWGMLLGGIILSPALAVMPATGVTVKEWSLVIYIVIAGTVFAYSLYLSSVMYISAGLVSMLEAFEPLVATILSVTLLGSDFGIMKMAGGVLIILATCLQVVPSPRRGKLQRKL"]}}, {"location": "[1779638:1780388](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG2071"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O33341"], "locus_tag": ["MAAAAKME_19410"], "product": ["Putative glutamine amidotransferase"], "transl_table": ["11"], "translation": ["MVKAVIGISASEVTIQSGPFMGEPRTYVNAAYVDSVLKNGGIPLVIPFTAGGEEMAFKQLDLVDGLILSGGHDLNPHLYGEEIDQKSGETWPDRDAFDMALLKRAEETGKPVLGICRGAQIINVAHGGSMWQDLSLRPGNTLKHMQAIRPDVGTHVVKIKSGTTLKKIMGESSLMTNSFHHQLIKEVAPDLTESASASDGVTEALESTDGKVIAVQWHPEEMHANPAPEAAIMNRLFKYLIDKAEEEKQ"]}}, {"location": "[1780392:1781199](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.23"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["yidA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A8Y5"], "locus_tag": ["MAAAAKME_19420"], "product": ["Sugar phosphatase YidA"], "transl_table": ["11"], "translation": ["MKIKLIAVDLDGTLLTSRKKVSPKTLATLKKAREKGILVVPLSGRPLPGVLKVFEPFKLDPADNFAICYNGGLVQRMDGEVLSASPLTDENVEHMLALKQTGIFGPYFMDTKDFYVAPKGSSFGVGFLAKARNMGVKRMVPGQHYEFIKGEFVSLPSKIKKFRAGFSPATEQEFEISASGGQCLEFNTPGTSKGQALTTLLDLLNIQPEEAMVFGDNNNDLSDFQLPGVFKVAMGNAIDEIKAAADYVTASNNQDGIALAVEKFVDMG"]}}, {"location": "[1781263:1782142](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFKSRNWKLIVVALTIIILLAVPGYSWMKKTNKEHAERQRSQLSPLIMVPGSSATVNRFNELVDLLNENTPYKHSLLKVEISEDGTLTYSGSMKKEDNEPFIVIGFQNNHDGYSNIKKQAGWLDDAFYEIAKTYMFNNFKAFGHSNGGLIWTYWLEHYYSNNYSDEITIKSLMTLGSPYNFSEKSIKYKTQMMTDFIKYRKRLPKNMIVYSLSGGENYESDGIVPESSVEAGKYIFQNQVKSYTTMTVTGAEAQHSSLPQNKQVVRIIQEYLLKQQVKPGPNNSQNSKHKEN"]}}, {"location": "[1782134:1783451](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1455"], "gene": ["chbC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P17334"], "locus_tag": ["MAAAAKME_19440"], "product": ["PTS system N,N'-diacetylchitobiose-specific EIIC component"], "transl_table": ["11"], "translation": ["MDKLAKWCIWLRRRSFFRVAQRTFAVLMPIATVGAFFQVLQYSVFAPESFIYNLFDFDKIMSDRFWDIGTRLSQCVVEVIFGLFCLFTVYFSASFTAKIYRKDATMAGISALTSLLVMIYLFQLGLTGRISLLTGGYLGFQYTSFALLLGYGVGQVFHWLGADYESVNYENTKLVQDRAIKALKPTLVTVIGGIAIGGILYVVISKVKANFSLTSIVSPVENSNNLLLTVPATALASFLSWLGLEAPILDLSMSNVAGSAAATANLTYVLRRGSVWKVPYPYLGGSMISIYGVMGGCGAILALAVAILIGGRRKERETVAKMNLWPLLFSSSRGFLVGLPVILNPIYALQLVLVPVVNMLIAALAIFLHIVPTPVYTVLTGTPGPLVPFFSTNGNWPTLIFTIFLFCLDVVMMIPAVKLDNRTKILLKDYEMEDDRHV"]}}, {"location": "[1783753:1783863](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19450"], "product": ["5S ribosomal RNA"]}}, {"location": "[1783938:1786842](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19460"], "product": ["23S ribosomal RNA"]}}, {"location": "[1786935:1787031](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[1787061:1788622](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19480"], "product": ["16S ribosomal RNA"]}}, {"location": "[1787833:1788358](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1789062:1789608](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFSGLVSGKARIQRLEQEGKTIVLTVKTFPENLAGVKIGDSIAVNGCCLTVEAFSKDSFTVTMMPQTFAKTTFKNLQAGDQVNMERSVPVGGRFDAGFLRVGLPVDFDLLSWPGSYAVRYWLCFKQGLVEAERDHRCDFQCYLAGWRFAVDQVHWILVKNEEFADTRVLHSSVFSCLKQKK"]}}, {"location": "[1789600:1790083](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0117"], "gene": ["ribD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P17618"], "locus_tag": ["MAAAAKME_19510"], "product": ["Riboflavin biosynthesis protein RibD"], "transl_table": ["11"], "translation": ["MIGSETAIIDDPLLLTSEDLVHPPVRVVLDRRGRLLEHLDLRLFFDKRAETWILRENPAFLEQDMQKQVKIFALPDGKISTSIKILADQGVQSIYAEGGAHLQESLMAAGLVNDVISYVAPRFLGRGTEAVVAAEAPDLKDVQTEQVGDDVRIYGRIKDV"]}}, {"location": "[1790079:1790484](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.33"], "codon_start": ["1"], "gene": ["tadA_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00972"], "locus_tag": ["MAAAAKME_19520"], "product": ["tRNA-specific adenosine deaminase"], "transl_table": ["11"], "translation": ["MTPEQLSNSTIYVTLEPCCHYGKQPPCTQLIIDSGIKRVVVGATDPHSLVTGKGIAALRQAGLEVSTGLLAKEASQLNDHYNYFYQTGLPYVTLKQAMTLDHMLAKKGERTAITVAEAWTRVHHTRNGLVTRLS"]}}, {"location": "[1790585:1790661](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19530"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[1790663:1790736](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19540"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1790738:1790812](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19550"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[1790847:1790919](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19560"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1790938:1791012](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19570"], "note": ["tRNA-Pro(tgg)"], "product": ["tRNA-Pro"]}}, {"location": "[1791014:1791089](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19580"], "note": ["tRNA-Asn(gtt)"], "product": ["tRNA-Asn"]}}, {"location": "[1791099:1791209](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19590"], "product": ["5S ribosomal RNA"]}}, {"location": "[1791285:1794189](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19600"], "product": ["23S ribosomal RNA"]}}, {"location": "[1794047:1794524](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSAHAGFPHSETSGSKPTYGSPKTFAVSRVLHRLPVPRHSPCALLHLTLQVCSFELSRSLCNVFIDLNDSRFFLGIKIFSFQRTNLAFPANGGKRDRTDDLLLAKQVLSQLSYAPVKYQLLRCYSISAEMQRLFFAFQWAWMDLNHRPHAYQACALTS"]}}, {"location": "[1794319:1794392](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19620"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[1794460:1794536](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19630"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1794525:1794618](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNNKNLGL"]}}, {"location": "[1794648:1796209](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19650"], "product": ["16S ribosomal RNA"]}}, {"location": "[1795420:1795945](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1796717:1797344](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSQTFFNLPKEKQDRIMAAAREEFFTHSFDEASINRLIKAAGIPRGSFYQYFADKEDVYFYLGDQISQRMIEGARKELAACGYDPFALARKVLPQWLDEIFYGENAAFFYRKIDMLHSQQVPRPKRAEDPLACLSAQEIAGLTAKVALQDRTDLKFLLHSLLLAFISCLIEGAEDYEAGRPVDTAKLAQVLDRRLSYLENGFKKKAD"]}}, {"location": "[1797347:1799345](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "gene": ["macB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2EHL8"], "locus_tag": ["MAAAAKME_19680"], "product": ["Macrolide export ATP-binding/permease protein MacB"], "transl_table": ["11"], "translation": ["MTVLELKDVKKYYKMPSGGQYEALRGVNAKFAAGEMVAIVGESGSGKSTLMNTIGGLDSDFEGAILYEGKNLRDFSQKEMVNYHKKSIGFIFQNFNLIPHLDLIDNVSIAMTLSNADEKTRRGRAEELLTQVGLKDHMHKKPDQLSGGQKQRVAIARALANDPDVIIADEPTGALDADTTDVILNMIRDIAASGKLVLMVTHSDKVASHCSRVLRIDQGQIVSDQEQKPLDHHLEQRTEVKIQQMILFKAISLAFKNMKAKFGRNALVSTGMGIGIMSVILMLSLGKGVTSYFSGQMNTYSNPLVAEIQKTSSQKMRQQGMQAQQTGDKAALAKQQNNMASLSGTSSASAFSKQDLKKLEKIAHVKKLQKGYSAISLGTNQLKYGKKTASMIYLKTVNDGIAKSDVKKGHLPKAGRDEVMIDSGSADNLGKKILGKKVKASLQIGTKTITKTVKVVGIYEASGSGQVSTLLLPYSDLAKIFKDNGLTLKANVVYLTATDKQYTSSIKQAAKDKGFAGSMQEQMTEMFDSILSVLTYVLTAIAAVSLLVSAIMILVVLNISVVERTQEIGVMKALGARRKDIRRIFSSEAFLLGLASGIVGIALTWLLAQGINSLTKSAFKAAVVSLTPQYALTGLLISIVISMIAGILPANHASKLDPVEALRKE"]}}, {"location": "[1799481:1799871](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKMTFSPEARDFLQKKLGNKAVLLLALNDGSNKYSLQGGTCTIGANFQFVALDQADADYQIKIDNDLGLDLYTGQAEMGFLDDSLSVGEQYGMLSLSDGSGLIDSAVGVNVYEPSKLTAEQIQNGASC"]}}, {"location": "[1800429:1801716](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3966"], "gene": ["dltD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2FZW3"], "locus_tag": ["MAAAAKME_19700"], "product": ["Protein DltD"], "transl_table": ["11"], "translation": ["MKNKTKLWLIFGPVICAVLLLMGILSLPWERTFSKGSLFQAAASQTTTVFKGKAMRQKDYKQGYVPFYGSSELSRFDNMHPTVLATKYQRSYTPFLLGGPGSQSLAQYLGMQEAPSKKAVVIISPQWFTPQGQNPDAFSLYYSPLHASDFILNAKDTEADRYAARRLLQMPSVKSEHVIHHALLEIAAEVGISKKERYYLRWRRQTYSTEDKFFTSLQLRDRLPKIEQQGAKLPDTYSYEGLKKASEKEAKKDTKGNRFGIRTSFYKKRLNAKLLKKLKGSQKKFNYVESPEYSDFELLLNQFAKDKTQVLFIIPPVNAKWQKYTGLSQKMYDTATTKIKHQLISQGFDNIYDLSKDGKKKYFMEDTIHLGWNGWLAVDQAVKPFMEQKYAEPEYAINDYYLTKTWREKKKLPTVDLTNKDVLAKLKK"]}}, {"location": "[1801705:1801948](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["dltC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5M0A6"], "locus_tag": ["MAAAAKME_19710"], "product": ["D-alanyl carrier protein"], "transl_table": ["11"], "translation": ["MDIQKQIVDILAEATGEDFSDNMDQELYESGIMDSMTTVQMLLTLQETFDITVPVSEFNRDDWNTPNKLVEQVKKLQDEE"]}}, {"location": "[1802029:1803262](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINLQPYENPQYFVYLVIALLPLIIGLYFGKRYKWYEALVSLAFIFLIFDADKWQQGVTLICYIVYQFLVTFAYQHYRKKTGKANKTWVFCLAVILAILPLVGVKIWPIVPHKQGIDFGFLGISYLTFKTVQVVMELRDGTIKQVDPVIYARFLLFFPTISSGPIDRYRRFVKDYDKAPSREDYIKDLSYAVRYLFQGFLYKFLLGWFFGTYCLPYLEQQAILAGRMYPLHLSWWLLGVMYCYSMYLFFDFAGYSLFAVSISYFMGIHTPMNFNKPFAAHNIKEFWNLWHMTLSSWFRDFIFMRFTFFAMKKRLIKNRNRLSQVTYLVNFMVMGVWHGLTWYYIVYGLYHALAIIINDIWLRFKKKHKLVKHNKFTEAVAIFVTFNVVCLSFLIFSGFLNNLWFNVPLGK"]}}, {"location": "[1803258:1804761](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.2.1.54"], "codon_start": ["1"], "db_xref": ["COG:COG1020"], "gene": ["dltA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P35854"], "locus_tag": ["MAAAAKME_19730"], "product": ["D-alanine--D-alanyl carrier protein ligase"], "transl_table": ["11"], "translation": ["MRNIVKTIDEIAQREPDRVVYDYLGQKNTYADLIKRANSWAALLKEKAPAKVPVMIWGGQTFDMLACFLGCVKSGHCYVPIADYSNAERIDLVREVSASPVLIAISDLPEVDLGDLTLLKPDDVPEEGTADEADYVKGDENFYIICTSGTTGKPKGVQISHDNLVSFVDWELKDFDLPDHPRFLAQAPYSFDLSVMSIYPALLSGGELVVLPHEVTENFAQLFKALPETDVNVWVSTPSFAQMCFLDRTFDADHHASLSHFLFCGEELPRKEVEMLKKRFPDSRIFNTYGPTEATVAVTQVEITPEILEKYDRLPIGYVKEDTEITIDLSQGDDGKSGEMIIAGPSVSKAYINNPEKTEEAFYQEDGVQHYRTGDVGYFDGDLLFYKGRIGFQIKFNGYRIELEEINFYMNQNPLVRHAVAAPIYKPDHTIKQLVAVVELNDGVSRKFDEGTITKQIRDGLTKDVMPYMIPQRYLYQDALPISQNGKVDIKAVIKEVNQA"]}}, {"location": "[1804776:1804926](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MENKTPVSRGKVIRSFILRTLLYSLILLGLIYLYEYCGLGSTGFIYNEF"]}}, {"location": "[1805121:1805424](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDSQLAKKIIIDVQISGWSCLIPASGLLYLYQITHYASFLWGLALVVLYAAYVLATAKLDKWQSPSYVLRMSLIAMFFVGFLPSIPLLFCYSQERKAGLK"]}}, {"location": "[1805460:1806669](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKKDRKSGKKLVSRKKHHFHRKLRLLIFNLILLAGLSACGYYWAYPAYSQWQMKQAMLAARPKLTKAKDGTSTSPAWHKLTAYRKAIRDNYSFVYQAAYHTPKRTTVGQDVVIPGLISMRSYDYQAKKITSASAMTPQGIAVVYNYLLITAYDGQHRHASVIYVLDKKTGKFLKTVRLPGRQHLGGIAYDPKGMQIWLTGSKDGQSALMSFSLAKLIEYVASAKTSDQLVYDHEIPINSIAKASALTYYDDQLFVGYFNENGHGKVASYKLARSGQYKNTITTSEISSINESVSWSDPDGTTSMNKQIQGLAIYGDKIFLSQSYGSQDSKLYISPITAVNNLDESNAEQVVRMPPYLEQITVYRGQLLCLFESASSQYARQDITVMDRTLSVNINALLDNN"]}}, {"location": "[1807588:1808812](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_19770"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHKNKTDKLDALYLAKLQSEYPQRLAYVQSKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLEAKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHVRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1809059:1809710](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLh1"], "locus_tag": ["MAAAAKME_19780"], "product": ["IS982 family transposase ISLh1"], "transl_table": ["11"], "translation": ["MSKICKKLYYKYAPSRLTHRRNASLVKVPDYEIIALLVWQSEEGISSQRRFARCWGLCGLSRSRFNRRARALLGITAQIVNDLKSRVDLSDQYMIIDSLPMPLCQPIRNRRAKVFEGTANIGYNSTKKFYYYGFKGHFAVSKDGYVLGYVITKASIHDAKEAEELILSTRPEGHFILGDEGYIGERLHDALKIDGYILWTPYRKNMKGAKQHNKTY"]}}, {"location": "[1809807:1810305](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0517"], "gene": ["ykuL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31698"], "locus_tag": ["MAAAAKME_19790"], "product": ["CBS domain-containing protein YkuL"], "transl_table": ["11"], "translation": ["MISAAIQRVLAEKSGSFLIPASKIAIVEEDNPLYHAFLILTKVKYAKILVLNKQGQITGLLSLAMITDKMLDLDGISVKPLNKYQVKDVMETDFVSINFTEKDIETQLHLLVDNNFLPVVDDQGGFQGMITRREWFKAFNYLARTFDDHYVTVDKKQVLKLEAEN"]}}, {"location": "[1810437:1812252](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG2217"], "gene": ["zosA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31688"], "locus_tag": ["MAAAAKME_19800"], "product": ["Zinc-transporting ATPase"], "transl_table": ["11"], "translation": ["MKRQWKFIVVLVLGAIGLITDNVLHIPGIAEVLFDIAGAYISFSLGKEMFGDLKEGHWGIDVLALIAVISMMITRDYWAEWMILVMSTGGESLEDYATGQANRELRALLDKNPRVAGKLVDGKVVEVKVDDLQIGDQVLIKPGQQVPVDGTIIEGSSVFDQSSLTGESVPVDKTVGDDLMSGSLNGETAVTMEVKKLAKDSEYQTIVELVKSSAAQPAKFVKMADRYAVPFTIISLIIGIAAWVTTGNFTRFAEVMVVASPCPLLIAAPVALVAGMSSMSKHHIIVKSGSTLEQLAKAKTFAFDKTGTLTQNQLVIQDVLPENGFDKETIQSYAASLEQQSDHIIANSLVQGTDKNLIQAVSNLQESTGNGVSGTVDGKNVMVGKLSYVAPDANVNKAKTTAVYVSVDGKYAGCITFKDRLRPETPQTLARLRKQGAKHIMMLTGDNKDVAQAIADVAGVDDVRASLLPAQKIEAIKNVAPENRPVVMTGDGINDAPSLTAADVGIAMGAKGASAASESADAVIMVNDLSKINDAVAIAKHTMKVAEIDIITAIVVVIILELVAFTGLIPAFWGAVLQEVVDMITICLALLAKTEPKNPKQTGL"]}}, {"location": "[1812413:1813574](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["napA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26235"], "locus_tag": ["MAAAAKME_19810"], "product": ["Na(+)/H(+) antiporter"], "transl_table": ["11"], "translation": ["MKFIGQLILVLLMTTLLGQVFARFNWPPVIGQLLSGILLGPALLGWIHPNETMTLFSDIGVIMLMFLAGMESDLDLLKKYFKISFTVATVGVILPILFIGGASLLFGMQFLEALFIGIVFAATSVSISVEVLRATGKLQTKAGTAILGAAVVDDILAVIVLSLFTTFSHEGGKSGLTNNFFLNLLFEALYFVFVWLVSKFIAPKFMQLAEKINVSYSVVIASLILSLGMAYIAELVGLSAVVGAFFGGLAIRQTKQEAEVNSSVSAIGYSVFIPTFFVNIGLSMTFASIGQDFLFIVVMTVLGVLSKYWAGKYSSKIFGLKPLEGSIVGAGMVSRGEVALIVAQIGIAHHLFPKYIYSSLILVIILTTVLSPIMLNHYIRKDEAQN"]}}, {"location": "[1813667:1814333](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNVKKIGHYLFYLIEIAIVFALYTTLQEFYFYPDIFGFGSAEAFILALSTVLVFWFSFWLYKGQLDDDNDWGFSQDFHWDWRKLATAVGGFFLMQLLYILLMNLIGGGVSVNQQKLDDLQHTAGPTYNIMVVLVAPVMEEIIFRGMFFNLLFNHAGKVAKWAGILVSGFFFAFAHNPFWSPYLLVYWMMGSVLAWVYMTTKDLRYSMATHIMWNMLSILG"]}}, {"location": "[1814416:1815517](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSGLNTLLFLFSQNRAFSYFTILVAIAAVTFIFSWLSDPRHLINGVFFTFFIASLGAWFTFLVYATNLPSFRKVYLWALAILAVTVAVIVSFSWILLLWNSYVVLKHESHTLPNLLTLILAGAMLGLWVFIFIGHFTRSTPTGLRLILDIFPTVAVYLAAVMYNFLVNLLLYQIVPRRYQQNYLIVLGAGLIHGDQISNIQAARINRAIQFAYHQQEKGQPLPKFIMSGGQGPNEKISEAAAMAAYAIKRGVPKELILLEDQSRNTEQNMEFSQIVAYNDYGNDNFKACFFTSNYHVFRSAIYAKRAGLDANGIGSYTRPYYLPNAVLREFAGMFVMNRLRHFTVIALIVAGYIALAICKLLNVF"]}}, {"location": "[1815722:1816817](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1744"], "gene": ["tmpC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29724"], "locus_tag": ["MAAAAKME_19840"], "product": ["Membrane lipoprotein TmpC"], "transl_table": ["11"], "translation": ["MKKIKFKKVLATGTVLAAGIAMTACSGAKQNGGGSNKKSSASVALITDTAGVDDHSFNQSGWEGMVAYGKSQGLKRGTNGYQYFASSSASDFTPNINQAVAAGYKTIFGVGYSLKGAIASAAKKHTDKNFVIIDDVIKGQKNVASANFKSQDASYMAGVVAARTTKTNVVGFIGGVHGDIVDLFDAGFAKGVQDTAKKMGKKITILNQYVGSFTAADKEKSIAKAMFAKKADVIFHASGSAGQGLFSEAKSVNEGLAANSSKKVWVIGVDSDQSNLGKYKSKDGKKSNLCLTSVMTGVNVAVKDIATKAAKGKFPGGKQLVYGLKNNGVYLTRGYVADSIWKQAQTARSQILSGKISVPSHPSK"]}}, {"location": "[1816736:1817300](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNSLFLVNLLIGCGMLLSGFKQLPVTFSWRKLTVIFLASGSLLLVEGMLVRKVFETALVLFVIAVLYLLLGLAGLVMMFVKKDWQAFTSEDWHDFAAVLIISALMAFYFLRDAAFDLSSMLLPEAMFLAGLLLVSWAVKAEKTPDTQKISELLLRDFCFVYLFAWVAWYGNLAGQNLAAGSLCLLPN"]}}, {"location": "[1817342:1817753](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METEKLLAALKADHISNVLDQVADYNFAGYLNKLIEDKGGKKSELFNEAMIERSYGYQILKGRRLPARNKVLSLALSLKLSLAETNRLLSLSDNGALYANVKRDAVLIYCLVRGMSVIDTDQQLANYGYQSLNEEE"]}}, {"location": "[1817795:1818194](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQGKISDYVNPVPIKITDDKAIFKVEKLVPTPYIERVLPLEYAPLYEQLAELDTAIPKIVCLEKSDRLTVIEEYIDSPRLDQYLETHKLTSAQINDLICQLLDILAVLHQQTPPIIHRDIKPENFFMMAKS"]}}, {"location": "[1818223:1818835](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQEDADRDTRILGSVGYAAPEQFGFSQSGPASDFYAVGVLMNVLYTGYLPSVRLYKGPEREIIEKATHINSQKRYQSAQEFKDAITGLGRSSWLLPGFRSHQPARMLTAGCGYLLMLFSSFSMDAKSDSAADSFLLRLSFFMVLFLIVLFACNYRNIKSMCLFHSSKSKFTRACGIIISYLLVATVLTTALAALSVAISSFGH"]}}, {"location": "[1819021:1819192](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKVVGILLIILGVIGIAIGLMMFGDIGVACIVGALAALLSGFGFLSVNNKLNSSES"]}}, {"location": "[1819210:1819414](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSNKKPFYKQWWAVTIAFIFVFFVGYIFGSAASSSDDSNDEASVASSSKSSSKSTTDDKSSGKKQC"]}}, {"location": "[1819421:1819919](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19910"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDDKSSGKNNAKKTLTVSYKNYEISSEKTFKPNYTNNSWAGGSVSVDSITLYKTAKAYNYDSANDGKFTIQGFMQIHYVIKTKADVSVYPTQGTYIYSNGEQHGADSTESWDGDISKNVTKQGTVTVPVEKISSVNSVRVKFDASGQDFSDDSLDHDFDFTITLS"]}}, {"location": "[1820225:1821323](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1744"], "gene": ["tmpC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29724"], "locus_tag": ["MAAAAKME_19920"], "product": ["Membrane lipoprotein TmpC"], "transl_table": ["11"], "translation": ["MSVSKFKKLATIATAAVSVSVLLTACQGKKSSSSTSTKTTKHSIALITDNNAIDDHSFNEAAWNGFKAFGKKHGLKQGKGGYQYFESSSAADFTPNANEAASSGFETIFGVGYQLTSAIKSAAKKNPKKNFVIIDDVISGQKNVASVTFESNQASYLAGIAAAYTTKTNHVGYIGGAKSATLELFEAGFKQGVEAGAKALGKKIKIDDQYIGNFTSTDKAKSIAQSMYASGADIIYHAAGNAGNGVFTEAKDINKNRKASKKVWVIGVDVDQSSLGSYTSKDGKKSNFVLTSVLKGLDVAVERIAEKAYQGKFPGGKHFVYTLEGNGVSVTKGNIDSKTWSKVQAARKQILNDKVKVAESVSDLK"]}}, {"location": "[1821363:1822011](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGAFFLRLSVITILRQRFYKKAIIMLKKLRNSLFALTALLSFTALAATPNTVSTASSAKYTPKYVKRQVVLQLNCNSYVYDRYGNRMPWFNGLYGPLGYLKEDSYVYTTRNRIVRTNKDVRYFTLFTKYHATKYNYDFVGKKYWLPYKKINGHYFYYIGYGAYIKARNVFSVNGLLQYSNGEKAMLTMSGYPFTFDSKTKKIKDMTKNTPIVKSN"]}}, {"location": "[1822299:1822860](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_19940"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MYRYKAVEGQSTYELHRSECGRKSLFRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTMWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKC"]}}, {"location": "[1823118:1823874](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVKAKLYADDDTDRYFHIYYKAKKQASERARLEADLDRMEAEMDKIKGREYKLPKRYEHYFKLTYHKDKFYGYEEREDVIERELQLCGYFAIVTSEKMTASDALNLYKSRDISEKLFGSDKTFLGNRSFRVASSQAAEAKIFIQFIALIIRARIYTLLRKRKAEMPGKPNYLSVPSALKELEKIELIRQPNGNYKLDHAVTATQKVMLGAFGLDEEWIKAQARQIGKDIQNAAMPEEQKDDDEDAENEEY"]}}, {"location": "[1823863:1824538](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRRIIEDYKLAEHLKRWDDRGKGLLLDLAAYSVIAESNVAQHFPDYAYNHPLMTPQNKIYSDSTISRFIREIDDNDRVDFLNSWNATHDKNCKAGDIEMAEYGHPKNDVGAPIINYSIAYDMTNEKPLLYESYPGSIVDVSQLKYMLEKIRGYGYEKIGFILDRGYFSKANIQFMDSCDYDFVMMVKGRASFVHGLIMEHMGEFESKRACSIKEGLPDLWHDG"]}}, {"location": "[1824518:1824851](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYYNCLVNIPKNTGKISRNKRGKTTYIEYTYAREYLPEKKYNVARRTTIGKADPDHPGMIFPNPNFEKFFPDVEIPAEGTAAEPVNESRSSCIRIGAFSVVRRIIEEKNY"]}}, {"location": "[1825345:1826176](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKKSAVYLLLPAFLAVLVFTFYPLIQIAIPTLNSKQGFLRLYTQFLRSTYNWEVIQRTFIIAIITMLIVLILGLPVSLWIARQKRSFRQVLSVLILFPMLTNAVVRNFAWIIILGKNGVINQTLMALHIVKSPVSILYTDTSIIVGSAYLFLPIIITSLVGSVSELNIETEEAAAVLGANPWTSLFKIIIPQLTTGIFTGSILVFAGTMTAYTTPQILGGNRHLVMSTLIYQQAMTLSNWDNASAIAIVLILISALSMTILRLIGKKLDRRPGLA"]}}, {"location": "[1826168:1826957](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ydcV_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFR9"], "locus_tag": ["MAAAAKME_19990"], "product": ["Inner membrane ABC transporter permease protein YdcV"], "transl_table": ["11"], "translation": ["MLNGKNKLLTAISIIIILMIMLPLMMVVITSFNDQSTISFPIKGFTFRWYHNIFEQPDFVSGFGNSLIVALIASLLALVLGIPAVYALTRFNLHHASWFQSFFLSPTLIPEIVIGFALYQAAVVSMGLPVMPSLIIGHFLLCLPYVIRLITASMLLLDPHVEEAAWVSGCSRKKSFFIIVLPNIKSSIIAAFMMCFINSFNNIPISLFMNGPDLTMLPAAILNYLQNNYDPTVSAISVLLMTFTAALMFLVEKVVGINQLTE"]}}, {"location": "[1826966:1828001](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.11"], "codon_start": ["1"], "db_xref": ["COG:COG3842"], "gene": ["potA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P69874"], "locus_tag": ["MAAAAKME_20000"], "product": ["Spermidine/putrescine import ATP-binding protein PotA"], "transl_table": ["11"], "translation": ["MANLEVKNLAKSYDGKNNVLKDISFSVKNGDFVSILGPSGCGKTTTLRIIAGLIDKTSGEINIDGTDISTVPVYKRNFGMVFQSYALFPHMTVFNNVAFGLKMRELSKNEIKDRVDAMLELTGLTDFANQFPDNLSGGQQQRVSLARALVINPQLLLMDEPLSNLDAKLRLKMREEIRNLQQKMKMTVLFVTHDQQECFAISDKVLVMKEGRIEQYDTPQNIFHHPRTKYVAQFIGYENFINIDKKLDDHKSVSAGIQFDTADTDQDAVAMTIRPENIKVAEEGDDNLISGMIISREYLGQSFQYTVQTVLGNLKFEEVRRAMRDLNEQVTLSLPKEHLHLLSE"]}}, {"location": "[1828033:1829095](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFNKKKIGLIAASVLVAGSAILSTACSSSNSNGSSKLVVSTFGMSTKQMQRDVLKPFAKKFNVKVSTQFGDSSARLTQIEHNKNTSVDVAEFAQNNAVTANKKGLAKKLDTSKIKNFKYLSKEQQKLAKQINAVPYTLNSCGIIYNSKKVKITSWDQLWSKSLKGKIAIPDITTTFGPAMLYIAGDHAGTAVTSDNGVAAFKALKALKPNVVKTYTSSSDLVNMFKNGEVEAAVVGDYSVAMISAASSSIKYFVPSSGTYANYNTVSILKNSKNTAAAYKYIDYRLSTAVQKKVASAKSLNNAPVNTSVTLSAKDAENKAYGAIAKRSKTIDYSYVNSHLSGWITKWNKLMNK"]}}, {"location": "[1829156:1830854](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.2"], "codon_start": ["1"], "db_xref": ["COG:COG1001"], "gene": ["ade_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q72EX7"], "locus_tag": ["MAAAAKME_20020"], "product": ["Adenine deaminase"], "transl_table": ["11"], "translation": ["MTKIDLLVKNAHVFNVYLRKFEDVNITIKDGKFYWINKELPGIEAAKVIDLQGKYVIPGFVDAHMHIDSSMTTPKVMGQTIGKYGTTTIIADDHEITNVAGVKGLKDFIDEKAPIDIFFGIPSSVPSTNPNMETTGGLIGVKETEELLKDPRFVCLGEVMNFKDMTSDHDTLIKKIIAACRKARPTMPLEGHVPAYHSEDLAKVIYAGITTDHTQQTSSLVDEKIRSGMFVEIQLKSMHQEVIDTVIEHGYFEHVALVTDDSMPDTLLKGHLNLLVKKAIDMGMRPEDAIYISTYTPARHMGLWDRGAIAPGRVADFIVLNNLEDLSIAQVYKNGLPFAAKDEKDNNVYPEELLHSVKAPKLSEADFDLKTDLVQNGKVVANIIQINEVGTFTNHIQKCLEVKDGHVQWKKAGLALMLCQERYGKNEGRYAFALIDRGIVGDGAIGATWAHDHHNLIILGTNIAGMVSVQNLLVEEQGGYIAAKGSQIVANAPLPLGGVVSLEPMSVLGKQISKVRETMVDLGYKNTNEIMSFSTLSLLVSPTLKISDKGIFEVKTQRHIPLFEC"]}}, {"location": "[1831448:1832534](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1744"], "gene": ["tmpC_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29724"], "locus_tag": ["MAAAAKME_20030"], "product": ["Membrane lipoprotein TmpC"], "transl_table": ["11"], "translation": ["MRFNFKKLVAAGAATLSIAAVLTACSGKKSNTSVNKDTKHGIALITDSNGVDDHSFNQAAWSGFKDYGKEHGLKQGKGGYQYFQSSSAADFTPNFTQAAQAGYQTIYGVGYMLNDSVKAASKKYPKKNFVLVDSVITGRKNVASVTFKSNEASYLGGLAAAYTTKTNKVGFIGGAKVSILELFEAGFKQGVKDGAKALGKKITVYDQYIGNFTSTDKAKSIAQSMYTDGADIIYQAAGNAGNGVFTEAKTRNKATTAAKKVWVIGVDVDQTNLGNYTSKDGKKANFTLTSVLKGLRFACKDIADKAYKGKFPGGKVISYGLAHDGVSVTKGNLDAKTWKAVQAARKQILAGKIKVATAPSK"]}}, {"location": "[1832621:1834166](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.5.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG1129"], "gene": ["xylG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37388"], "locus_tag": ["MAAAAKME_20040"], "product": ["Xylose import ATP-binding protein XylG"], "transl_table": ["11"], "translation": ["MEKEIKNIIEMRHIVKDFNGFKANNDINLTLRKGEILALLGENGAGKSTLMSILSGLLEPTSGEIYVRGEKVNISGPNVATSLGIGMVHQHFMLAQAFTVLENIILGHETTKGLALDFKTAREKILALSKQYGLAIDPDAKISDITVAQQQRVEILKVLYRGADILIFDEPTAVLTPQEITEFIKIMKNLAKEGKSIILITHKLKEIKESADRVTVIRAGKSIQTVSVADANDEQLAEMMVGHHVNFKLDKAPLNLGKNILEVKDLHVNEDRGTDAVKGLSFNIRGGEILGLAGIDGNGQDELVEAITGLRHVEGGQVVINGQDLTNKPVRQITEAGVGHIPADRQKYGLILQLPLSENIASQTYYKEPYSKHGIMNEQTIREHARELIKKFDVRTTSEQLPASDLSGGNQQKAIISRELDRDADLIIAFQPTRGLDVGAIEYIHSQLLKQRDAGKAVLLVSYELDEILQLSDRIVVLHDGAESGEVKPDQTSETELGLLMTGKNTKKEAAAND"]}}, {"location": "[1834158:1835298](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKVSPKAKRLLVPIVSVIAGFLVGAIIMLVWSYDPFQAYSSMFESALGSANGIGETIRNATPLIFIAIGFQISSAAGFFNIGLPGQAQAGWLTAIWIGLALKGLPVYILLPFEIIAGILAGALVAGIAGWLRAYFGTNEVISTIMLNYTVLYLCQYLHQDVMSKSLRVDTDTTKTIGASGSLRIPWLSEMFGDSRISGGIFLAIIALVIFWFLMKKTTVGFEIKAVGLNPFASRYAGMSDKKNIIISMLLSGAFCGLGGVVQGLGTYQNYFTQTTTLDIGWDGMSVALLGGISAIGILLASLLFSILKIGGLGMQTAAGIPFEIVSIVIAAIIFFVAISWAVGLLFKEKKSDKTATYIATAETASRQAANDQQKGGEA"]}}, {"location": "[1835297:1836254](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1079"], "gene": ["rfuD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O83324"], "locus_tag": ["MAAAAKME_20060"], "product": ["putative riboflavin import permease protein RfuD"], "transl_table": ["11"], "translation": ["MNFVTVLALIVSSTLVYSAPLIFTALGGTFSENSGIVNVGLEGIMTMGAFTSIVFNLSFASTFGTATPWLGALLGGIVGIIFSLLHAVATVNCRADHVISGTVLNLMAPPLAVFLVKAIYNKGQTENINQNFGYFSFPGLANIPVIGPIFFKNTSAPAWVAIILSIFLYWVLYKTRFGLRLRSSGENPQAADTLGINVYKMRYAGVLISGFLGGIGGAVFAEAIAGNFSVSTIAGQGFMALAAMIFGRYNPIGAMLSSLFFGFAQSLSIIGDQIPGISSLPSVYLQIAPYVLTIIVLVVFFGKTVGPAADGQNYIKSK"]}}, {"location": "[1836489:1836687](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIWSIIGTAGVSVIIAIAGSPYQGQSKQVVMGSQAAFIVLFVFTLLIFACVLRLIKRDKQGLVKN"]}}, {"location": "[1836727:1837099](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGKEAVLILLASCWEGQVLARLFLPEDLAGIEPLLLTRHLSRKQFTLLRLKWSWPYLACLFVIHLIYWPGSWLAAISLILLFAAAAGMTLYQRRYLGGIKDSIWVFAVFALLRLLTTLLFKI"]}}, {"location": "[1837191:1838034](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0667"], "gene": ["iolS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46336"], "locus_tag": ["MAAAAKME_20090"], "product": ["Aldo-keto reductase IolS"], "transl_table": ["11"], "translation": ["MKYMTVKGEKLSQLGLGTWGMGEKASKREEEIAALRCGLSSGVNVIDTAEMYGEGQAESLVGEAIKDLDRSQLFLISKFYPWHASPREQKKSLAASLKRLGTDYLDLYLLHWKSDYPLAETVKGLQDLQAAGLIRHWGVSNFDTADMQELVDIAGEGAVFANEDLYNLDKRGVEYDLLPWQKQHGIAFIGYSPFNSGNGQSIPVKASLKQIADKRGVSVHQVLLAWTMRTGQVLTIPKASSVDHMRANLAAADLVLTAGELAALDRDYLPPKSKQPLESI"]}}, {"location": "[1838233:1838938](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.99.6"], "codon_start": ["1"], "db_xref": ["COG:COG0363"], "gene": ["nagB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DV70"], "locus_tag": ["MAAAAKME_20100"], "product": ["Glucosamine-6-phosphate deaminase"], "transl_table": ["11"], "translation": ["MKIIVVKNASELGKQAFDLLAKAVDEGAKTLGLATGSSPVELYQEIVASQLDFSQMTSVNLDEYVGLSPENPQSYHYFMNQHLFQYKPFKRSYLPDGQTKDIQAECGRYNQILAENPVDLQVLGIGQNGHIAFNEPGTPFDSVTHEVALTESTIKANARFFNSIDEVPKSAICMGIANIMAAKEIVLLAKGESKAKAIKDMVEGPVTTDVPASVLQKHPNVTVIADQAAASLLK"]}}, {"location": "[1839089:1839194](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPWFTIMTVIVVILAVFGLITLAKYLINYSKKGS"]}}, {"location": "[1839234:1839444](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2801"], "gene": ["insK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19769"], "locus_tag": ["MAAAAKME_20120"], "product": ["Putative transposase InsK for insertion sequence element IS150"], "transl_table": ["11"], "translation": ["MTPEIRTLISGVIFMTKYTKEIKLAIYLNELEQAIHKYIDYYNNVRIKTGRKNMTPIEYRNHVLTTLTA"]}}, {"location": "[1839752:1840328](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDTTESITFTSKLTFWDKFKCFYLLHLYSLIFLIRFQKKWQKILIYLWYTSVCGFSLAILVVSYPFVTIKMFIDVFLTLSCFSWVPAITAFLISLKCPSIINLKLSPDNNLGRAPIVKIGDSNSQIVYLKSSLLLDTKNFYLIMCPNYLPKHKSRVFYSFISKSQNTTALSKVNFIASVKPHFKKFIKLHI"]}}, {"location": "[1840361:1841279](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRGIIDALKLSPYEPGIYGTRNVFLHGEEVGMKYSFVADMSYGWSGNLGFRMPTNWAFDQFTEYPIGSTDIDQVAASGKDAGVNKFVPQLYGTISYREVAADVLKGFGKSVSAEFNKKIELVDIPSLKISVELVNSLSVADESPAITISNGKLDSISFANWLQTSGHIKGNGVDAVVNEANKVISSASITNGNVAIEASINNSGESKLKFIYHILEAKDKQLDNELSVVITVTSKPTDLFTGTKIPNVDVPKLVTQSQTDQKSWETLIGFSTVVAIAGVSIFISGGTLSVLLDLIPQLFTGLLVG"]}}, {"location": "[1841319:1841574](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTYVEIGGIFASAMNGYLKFADQKTRERYTNKALLARFNLSDNKPNFVSVSSYIDRLQKSLWQTVIMFGAALAILVVLLLCSGR"]}}, {"location": "[1841770:1842433](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.76"], "codon_start": ["1"], "db_xref": ["COG:COG1428"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HC3"], "locus_tag": ["MAAAAKME_20160"], "product": ["Deoxyadenosine kinase"], "transl_table": ["11"], "translation": ["MNRKSVITVIVLSGPIGAGKSSLTSILAKHLGSTAYYEEVNNNPVLPLYYKDMKRYTFLLNTYFLNKRLEEINAAAGNHNDVLDRSIYEDLLFFNMNVDNGVADPTEYQIYHDLMDNMMEDVPGNPRKKPDLLIYIHVSLDTMLKRIGKRGREFEQLDSNPGLKEYYQNLLRYYEPWYEQYDVSPKIAIDGDKFDFVDNQDDQDFVLDTIDSKLREIGNL"]}}, {"location": "[1842450:1843149](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.113"], "codon_start": ["1"], "db_xref": ["COG:COG1428"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HC2"], "locus_tag": ["MAAAAKME_20170"], "product": ["Deoxyguanosine kinase"], "transl_table": ["11"], "translation": ["MTVIVLSGPVGAGKSSLTAILSKYLGTKPFYESVDDNPVLPLFYKDPLKYTYLLQLFFLNTRFHSIKKALSDDNNVLDRSIYEDSLFFHMNADIGRANDLEVQTYEELLENMMKELERMPKRHPDLLVHINVSYETMIRRIQKRGRSYEQLSFDPTLEDYYKRMLRYYEKWYDDYDYSPKMMIDGDHYDFMASESDRTEVLDQITQKLKQVGKLPKNWQAGEIARKAIEIGQ"]}}, {"location": "[1843440:1844901](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.2.-"], "codon_start": ["1"], "gene": ["mltF_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02016"], "locus_tag": ["MAAAAKME_20180"], "product": ["Membrane-bound lytic murein transglycosylase F"], "transl_table": ["11"], "translation": ["MRFAKIKQMLLIPFAALLMLVALAMPGQAQAASKKTYIIGTDQTFKPFEIQDKDGTYNGKNPGIDIEILREIAKHENFKYELKIMSFNADVQALQSGQIDGMIAGMSVTEERKKTIDFSNSYYTDGVCLAVAEDSKITSMKDLKGKTVNVKTGTTSAIYAKSIQKKYGFKLKYYTNSNTSWADVKAGNADACFDDGPSLRYGIANGTGLRIVGKQVSNAPLAFAVKKGENQELLKMFNDGLAWLKKTGRLKKIVNKYTSKKVVKSQVVADTSILGLIKDNAGALLQGLWMTIELSIVGILAALVFGLILGIMGIAEHKFWHGLANVIIYIFRGIPMMVLAFFIYIGMPTLLGHKLPLFTAGILTLMLDEGAYIGAIVRGGFESVDVGQWEAARSLGLPYYKALWKVVAPQGFKLMIPSLVNQFIITLKDTSILSAIGVMDLTQTGANLIAQNFQGFKMWLIIAVMYLIIITLLTWLSNYIQKKMQH"]}}, {"location": "[1844920:1845667](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["glnQ_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34677"], "locus_tag": ["MAAAAKME_20190"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MEEKYKVQVTDLHKSYDDVHEVIKGASLDVAPSEVICIIGPSGSGKSTFLRCINKLEDFQDGHIYLDGVDLADPKVDINKMREKIGMVFQHFNLFPNMTVLENITLAPVELGKEDKETAIKEAHKYLQMVNMDDKADVKPTTLSGGQQQRVAIARALAMKPDVMLFDEPTSALDPEMVGDVLNVMKKLAQEGMTMIVVTHEMGFAKQVADKVAFFYGGVIKELGTPEEIFDHPQEEETKNFLNKVLNI"]}}, {"location": "[1845885:1847196](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2252"], "gene": ["pbuG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34987"], "locus_tag": ["MAAAAKME_20200"], "product": ["Guanine/hypoxanthine permease PbuG"], "transl_table": ["11"], "translation": ["MEFINKYFELDKLDSNPKREFIAGLTTFFAMCYILFVNPSVLGASGMDKGAVFTATALASALGCLIMGIFANYPIATAPSLGLNAFFAYTVCIGMKVKWQTALAAVFVASIIFILITVFKLRELIVDSIPNDLKFAISAGIGIFIAFLGLQNGKLVVNSASTLVTIGSFKDPAAWVTIFGLLVTIFLMIRRVPGAILTGIVLSSIFSILVGQSKMPTSVVSLAPSLKPSFGQAILHLGDINTVQMWTVVLTFLLVAFFDTTGTLIGLAHQAGLVDKDGKMPRIGKAMAADSTAMMAGSIIGTSPVGAYVESSSGIAAGGRSGLTAVWVGIFFLLSMFFSPLLSVVTTTVTAPALIIVGVLMAANLAKISWDKLEIAVPAFLIVIGMGLTYSIADGMALGLIVYPISMTAAKRTKEVSPMMWILAVVFVIYFLILNV"]}}, {"location": "[1847272:1848811](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0038"], "gene": ["clcA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8ZRP8"], "locus_tag": ["MAAAAKME_20210"], "product": ["H(+)/Cl(-) exchange transporter ClcA"], "transl_table": ["11"], "translation": ["MESEDRQTRKSNLRLLFEALVVGLVAGIVVGSFRWLIGQTLAMWQKGYQAAHANPALLWLLAGGVLASVIVAGFLVKQQPHAGGSGIPEVELQLQGKLQLAWWPVFWRKFIGGVLSIGSGLFLGREGPSIQLGSTVGQGVAQGFKASKSDSRVLLETGAASGLSAAFGAPLGGAMFIVEEVFHNFSPRVWLNALAGAIMANFVVSNVFGQTPVLAIDYKHSFPILQYWQLLLLGAFLGLIGRFYQWGLLNFSHVYQKIPVLPRWLHGIIPALILVPVMYYFPGYVGGGNNLILSLNQIHAVNVLVLIFLLRISFSIVSYDSGLPGGIFLPILTMGALLGAVYGQFMVDLGLLDQKLVVNLIIFSMAGLFSAIVRSPFTAIMLIAEMVGSLLHLMPLAVVSVAAYVVNELLGGVPIYESLAGRMQTKEDNDYVGEADQLTISIYEGSQLADHQVKDIAWPDRTLVRVIHRGQKDIIPNGNTKLLAGDLLVLEIDENQRGLVYDKMARLQEAKE"]}}, {"location": "[1848880:1849357](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3760"], "gene": ["proX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L4Q7"], "locus_tag": ["MAAAAKME_20220"], "product": ["Prolyl-tRNA editing protein ProX"], "transl_table": ["11"], "translation": ["MFEEVKDKLAELGIDYQLVEHAPALTTEQADEFIEGIPGVRTKTLFLTNKKKRNFYLVIMDDAKRLNMDKFKEIAGKKQIKMASEKSLFEKMGLPSRVVSPFGLLNNADHDIQVYFDKEIVDEDRMSFHPNTNEKTIFIKTEDLFKFLKNLGYEAFTR"]}}, {"location": "[1849886:1850459](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDGQAYLLNTQTKKVELFYHLQDQHLIGEFFWFETQADDEYFKATDQYNGFLKASEVKKAKLPTIISKKAAKTSDQPASASQLAALKKEITKAEAVQKKTIYKLSSSYRRDYLDYALSNAQKALSGNKGEVTFAKWLLANSETYLNGKKAPVTNINKLSKAEYERVRRIVSDVAPNGYMTAIYYKRADGT"]}}, {"location": "[1850631:1851180](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEFIRSHKRLLAIFGLIVVLLLGTLLLLKHVDNSASAILEARITADDDSGTSFATIYDNGKVEKSRSSQNKKFVKPIEVDPQVFVEHTDKKNNIYLTVNEKALRKNKQVSSDENWVKLTKLVAKRSKHAIAMLSLFKLGDDYYAFLKYNAGLSDEGSLYQYKSNLTKVATLDSGKISGLKEK"]}}, {"location": "[1851628:1852297](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYIIRQQWLQDNAIRKWYFLAAILILFGGCSTAILVSDAPQNQWLIQTIFSRFLVFSLLVPVQILLLLSTFRVRLQDIYVTGSRRIIWKQLEYRLAIALLVTLVPWAVGCLIGMCLNGWGTRLGTIVAEALIRYLYLALSCLAILLLVSLCLLASKRIWAFLAGFVLSGISYFLNVNHHFSLFYDFLIDDLGTLLLSRLPILLSIVLFLAVGVQMEIARKDW"]}}, {"location": "[1852298:1853009](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRLFKDQFLYFWQLIKVRFLSWLLLTCLFLLVAGGFMRNGRSANIMVFQGLGLAEIRAGIRDFPVSWFGYFFFPLMISLNIFKELWISRVMQLRGQQIKPSHFSWVNVILQLLLAAVYVLASNACLWLKDLLCGNSPLVLGPWQGGAAELHWMLIAWLGVSSLLLIQASCSELTPALGLIMPIVLLVSTSLTAWSGNPLNALMLSRWTSGAELFMFVWTLIWALLYVLVDSKHGWV"]}}, {"location": "[1853019:1853649](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bcrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5WNX0"], "locus_tag": ["MAAAAKME_20270"], "product": ["Bacitracin transport ATP-binding protein BcrA"], "transl_table": ["11"], "translation": ["MFIELKNVNKVISGRQLLSQVNCEIEAGQIAVFEGINGSGKTLTLKTILGLMKVDGEVLVAGTQVKPQDAYPVKAGILIENPSLITDFTATQNMELLAKLDEHISATEIAELLKYFDLSRFPNEKVKKFSLGMKQKLGIAEAFLGSYPLIVLDEPTNALDSDSIDKLVDLIKLRQSKGCTFVIASHDRDFVEQVATKRFKVEEGVVHEA"]}}, {"location": "[1853638:1854148](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRKVWLAAAIVLCVLAGLRYWQVNANPVCRGVDKEIFVKKGQEVHAPGIDFKILSAKMVKGKENVYLTVKVDLKDRGYYADGKHGIIAAVSNMYFNMPYSISNHSDLYVVDGNGHKVAIGYLTSKTPQPLTLKFDNVRSWYDTENTPARFSFLVGDGNGYKKYSILLE"]}}, {"location": "[1854159:1854942](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLLWSRLNKRWFVAAIAVGMAVGLGQIIVNCYTGMANIDSPYTRWLSINTDSSATTIFFILLPFLASIPAGNMLKEDLDSGLFNKFKLQVPVARLIMQYAAMAFMTGFVTIMIPLLLNLLGYLLILPNFKPDNLLNINIGVFNFNTMLVSLYYSHPFVHACLNILLASVWGGLFSVFVLVNSVWIRNRFASLSTALVLELILMELDTVLPIDDMPSISPTDFLPELGDRPLLWLTALMTIALAAYCMGMYKLACRRAVL"]}}, {"location": "[1854971:1855640](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKVIKQQWLLDTTVHKWFLLTAALLFFGGCSNAFLVSNTQQSLWLEQTLFSRFLIFSLLIPSQILLLLCTFRIRFQDIYIVGGRWIIWKQLKYRLIEILLSSLLPWACGSLTGMLVNGWSPTLGAVATEALIRCLYLILSCLALLLLTSFCFLISNRITAFLAGFVINGLSFFLNVNHHLSIIYDFVVPEFATLLFSCLPIMLGLLLFLIFIVQQEISRKDL"]}}, {"location": "[1855697:1856111](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLHKKFIVLIASILMTIGVVTIVSPVLAGNTSQTYWHNVYRIWSPYDHTPARRKETKSAYYNKTNHIKISGNYIVIWAALYDGRDVSGGHRYKSYKGQVTNLWNNAVERYKKGVQVRIDSKRVANGWADGVWSPDTK"]}}, {"location": "[1856365:1857751](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.44"], "codon_start": ["1"], "db_xref": ["COG:COG0362"], "gene": ["gndA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80859"], "locus_tag": ["MAAAAKME_20320"], "product": ["6-phosphogluconate dehydrogenase, NADP(+)-dependent, decarboxylating"], "transl_table": ["11"], "translation": ["MQQFGVIGLSVMGKNLALNVRNHGFSVSGFSIDKPEVDALAKYEDDKLKPCYTWEEFVDSLEKPRKILVQIMAGDPVDQTIQKLIPLLDKGDIIIDGGNSNFHDTNRRYHELKKHGLHFIGMGVSGGEEGALNGPALMPGGDKEAYEEAAPILTAMAAKTEDGRACVSYIGPEGAGHYVKMVHNGMEYAIMQEISEVYDIMRKVAHKSNKEMADIFAEWDKGDLNAYLIEIASQVLRQKDDLTDDDVIDHILNVASYKGTGNWMLEDAIKLGTPITVVAEAVLARFMSKATTREGKEVVYDGEVASDLIDNLGKAMYLAQIVAYAQGFQQLTMAAKAYDWELNYPAIAQNWEAGCIIHAKTLYHIEDAYADGKQLDNLFQDPYFAGVMEKNLPALRAVVKLAAEAGVPTPSFSAALNYLESIFNPSLPANMIQAQRDYFGAHTYYRNDREGVYHTEWYEEK"]}}, {"location": "[1857849:1859700](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0028"], "gene": ["pox5_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37063"], "locus_tag": ["MAAAAKME_20330"], "product": ["Pyruvate oxidase"], "transl_table": ["11"], "translation": ["MAKIKGANAVLDVMYKWGIDHLYGFPGGSFDSTMNAIYEMQDKVKFIEVRNEEAASLAASAEYKLTGKLGVCMGSAGPGAIHLMNGLYDAKYDKTPMVALVANVPTPRQDINFFQAFDEMPWFRDVAVWVHQAKTKEALPVLMDTAIRQAYAKKGPAVLVIPKDFGWQEIEDNYRVSASNHVADNYAAPTAESIEAATKLIKEAKNPVVYFGLGASAAAEELKEFADKFKMPMMSSYLGKGIVEDSFKPYLGTIGRIGAKAPNEVQGHTDLVVWVGNNSPFSVLWSPKNAKVIQIDVDPEKQGKRHSVDVSILADAKKSLRALIDAGEAREESPLYKAALADREEWDAWIASFADDHLKDEDRVRQEPIWDVINKEAADNAVFAIDVGNVNMDHVRLLNMNGKQRWTTSGLYATMGYGSPAAIAAATAMPDREVWHLAGDGGFAMMSEELLTLARYNMHVLTVVFTNETLGYIEAEQRDESNQPLSGVIIPDNDWAKVAEGMNMKAFTVHDKAEFQAAVEEWKKMDGPAFIDVKYTKHMAYSTELNTLDDPEFVKYYHAEALHPFSYFAEKFGLEIDAASGASGHSEDKADALQVQSTTSASSPETAPDASSGASY"]}}, {"location": "[1860006:1861902](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mnmG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64230"], "locus_tag": ["MAAAAKME_20340"], "product": ["tRNA uridine 5-carboxymethylaminomethyl modification enzyme MnmG"], "transl_table": ["11"], "translation": ["MKTYVSNEYDVIVVGAGHAGCEAALASARMGEKTLLLTISLDMVAFMPCNPSVGGPAKGTVVREIDALGGEMGKNIDKTYIQMRMLNTGKGPAVRALRAQADKWDYHEEMKRTIENTPNLTLRQAVVDDLIVEDGECRGVVTNTGARYRAKSVVLTTGTAARGRIFIGELNYSSGPNNTIPAIKLSESLERLGFKLRRFKTGTPPRVNRHTIDYSKTEEEPGDKEPRHFSFTSRDEDYLTDQTSCWMTYTNPKTHEIINENLDRSPMFSGDIVGVGPRYCPSIETKVVRFADKDRHQIFLEPEGRKTEEIYVGDFSTSMPEEVQLEMLHTVAGLEKVEMMRPGYAIEYDVVDPWQLTHTLETKRIKHLYMAGQMNGTSGYEEAAGQGLIAGINAALSAEGKPAFTLGRDEAYIGVLIDDLVTKGTEEPYRLLTSRAEYRLLLRHDNADLRLTEKGHDLGLIDDDRYAEFLAKKELIQEDLDRLGEITVHPTIAVNEYLAGLGQTDLNGGVKADVFLRRPRVTVEDVERLTGQKLAGDRYVKEQVEIDIKYAGYIKKQEIQVARLRRQEAKKIPKDIDYDQIEGLATEAREKLAKIRPETLAQAERISGVNPADLAILSVYVQNGKYAKVQK"]}}, {"location": "[1861928:1863314](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0486"], "gene": ["mnmE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8YN91"], "locus_tag": ["MAAAAKME_20350"], "product": ["tRNA modification GTPase MnmE"], "transl_table": ["11"], "translation": ["MVQRLTEFDTIAAISTPLGEGGISIVRVSGEDAVAIVNRLFKGKDLEKVPSHTINYGHIVDPATGQVIDEVMASVMLAPKTFTKEDIVEINCHGGIVVTNDILQLLLANGARMADPGEFTKRAFVNGRIDLTQAESVMDIIRAKTDKARQVAVKQLSGGLLTEIRALRQEILDVLANVEVNIDYPEYDEEEVTAQKLLACAEAVSGKIDRLLETAQEGQILRNGLKTAIVGRPNVGKSSLLNYLTQSDKAIVTDVAGTTRDTLEEFVSVKGVPLELIDTAGIHHTEDQVEKIGVERSKKAIAQADLILLLLDGSQELTEEDRQLLELTAGKKRIIVLNKTDLGQKLTAAEIAKESGSEVISTSIMMKENLDELEALIKKLFFKGIENSNDQVLVTNQRQAGLLAKAKQQLADVASGLEAGMPVDLVQIDFTGAWESLGEITGDSAPDELINDLFSQFCLGK"]}}, {"location": "[1863421:1864291](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0706"], "gene": ["misCA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q01625"], "locus_tag": ["MAAAAKME_20360"], "product": ["Membrane protein insertase MisCA"], "transl_table": ["11"], "translation": ["MKDILSKKSTKRLLAVLALVTVFALVLSGCATQTTQKPTQISHNSSNWWDAWVVYYLSQFVLWIAKVCGGSYGWAIIIFTVIIRVILLPLNAVQINSTRKMQEIQPELKALQEKYSSKDLETRNKLNEETQKLYKEAGVNPYAGCLPMVIQLPVMWALYQAIWRTPEMQNGKFLWMDLGKPDPYYILPILATVFTFLSSYIATLSVPKSSQTTMTKMMSYVMAIMVGIWAIVFQSAISLYWVISNLFQVGQTLVLQNPFKYRKEQEAKEEAERERQRKIRRAYKRIKRK"]}}, {"location": "[1864290:1864656](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.5"], "codon_start": ["1"], "db_xref": ["COG:COG0594"], "gene": ["rnpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P25814"], "locus_tag": ["MAAAAKME_20370"], "product": ["Ribonuclease P protein component"], "transl_table": ["11"], "translation": ["MRKSYRIKSEQDFQTVFENGESVANRAFVIYVLPRKQNKHFRVGISVGKKVGHTAVVRNRLKRYIRAVLTENRDRIAPDLDFLVIARPYAHDFDWEKTRENLLHALNLAHVIEEMPNKEEK"]}}, {"location": "[1864704:1864845](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YZB6"], "locus_tag": ["MAAAAKME_20380"], "product": ["50S ribosomal protein L34"], "transl_table": ["11"], "translation": ["MSTKRTYQPKKRHRSRVHGFMKRMATSNGRKVLARRRAKGRKVLSA"]}}], "name": "CR954253.1", "description": "Lactobacillus delbrueckii strain ATCC 11842", "dbxrefs": [], "annotations": {"molecule_type": "DNA", "topology": "linear", "data_file_division": "UNK", "date": "06-JUL-2023", "accessions": ["CR954253"], "sequence_version": 1, "keywords": [""], "source": "Lactobacillus delbrueckii", "organism": "Lactobacillus delbrueckii", "taxonomy": ["Bacteria", "Bacillota", "Bacilli", "Lactobacillales", "Lactobacillaceae", "Lactobacillus", "Lactobacillus delbrueckii"], "comment": "Annotated using prokka 1.14.6 from\nhttps://github.com/tseemann/prokka.", "structured_comment": {"BGCflow-Data": {"Version": "0.7.0-alpha-ecb0716(changed)", "Run date": "2023-07-06 08:24:44"}}, "references": []}, "letter_annotations": {}, "areas": [{"start": 17407, "end": 39909, 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"WP_043895056.1", "WP_043895057.1", "WP_111712851.1", "WP_020916913.1", "WP_111712852.1", "WP_111712853.1", "WP_111712854.1", "WP_111712855.1", "WP_111712856.1", "WP_061407966.1", "WP_020916920.1", "WP_020916921.1", "WP_020916922.1", "WP_020916923.1", "WP_020916924.1", "WP_111712857.1"], "description": "Streptococcus lutetiensis strain NCTC13774 chromosome 1", "cluster_type": "T3PKS", "tags": ["DQN23_RS04955", "DQN23_RS04960", "DQN23_RS04965", "DQN23_RS04970", "DQN23_RS04975", "DQN23_RS04980", "DQN23_RS04985", "DQN23_RS04990", "DQN23_RS04995", "DQN23_RS05000", "DQN23_RS05010", "DQN23_RS05015", "DQN23_RS05020", "DQN23_RS05025", "DQN23_RS05030", "DQN23_RS05035", "DQN23_RS05040", "DQN23_RS05050", "DQN23_RS05055", "DQN23_RS05060", "DQN23_RS05065", "DQN23_RS05070", "DQN23_RS05075", "DQN23_RS05080", "DQN23_RS05085", "DQN23_RS05090", "DQN23_RS05095", "DQN23_RS05100", "DQN23_RS05105", "DQN23_RS05110", "DQN23_RS05115", "DQN23_RS05120", "DQN23_RS05130", "DQN23_RS05135", "DQN23_RS05140", "DQN23_RS05145", "DQN23_RS05150", "DQN23_RS05155", "DQN23_RS05160", "DQN23_RS05165"]}, {"hits": 2, "core_gene_hits": 0, "blast_score": 1125.0, "synteny_score": 0, "core_bonus": 0, "pairings": [["input|c3|1754105-1755686|-|MAAAAKME_19190|Vitamin", 8, {"name": "DQN23_RS05160", "genecluster": "NZ_LS483403_c970612-1011788", "start": 1009222, "end": 1011036, "strand": "-", "annotation": "ABC_transporter_ATP-binding_protein", "perc_ident": 31, "blastscore": 82, "perc_coverage": 44.866920152091254, "evalue": 1.4e-13, "locus_tag": "WP_020916924.1"}], ["input|c3|1761753-1763844|+|MAAAAKME_19260|putative", 15, {"name": "DQN23_RS05015", "genecluster": "NZ_LS483403_c970612-1011788", "start": 981326, "end": 983434, "strand": "+", "annotation": "ATP-dependent_Clp_protease_ATP-binding_subunit", "perc_ident": 77, "blastscore": 1043, "perc_coverage": 99.13793103448276, "evalue": 1.2e-302, "locus_tag": "WP_111712846.1"}]]}], [{"accession": "NZ_LR594046", "cluster_label": "c889567-930749", "proteins": 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"copper-translocating_P-type_ATPase"}, {"name": "WP_108101999.1", "locus_tag": "C7376_RS04300", "location": "75475-77262", "strand": "+", "annotations": "type_II/IV_secretion_system_protein"}, {"name": "C7376_RS21395", "locus_tag": "C7376_RS21395", "location": "77331-77488", "strand": "+", "annotations": "hypothetical_protein"}, {"name": "C7376_RS21400", "locus_tag": "C7376_RS21400", "location": "77589-77702", "strand": "+", "annotations": "ABC_transporter_ATP-binding_protein"}, {"name": "WP_108102000.1", "locus_tag": "C7376_RS04305", "location": "77699-80290", "strand": "+", "annotations": "FtsX-like_permease_family_protein"}, {"name": "WP_108102001.1", "locus_tag": "C7376_RS04310", "location": "80327-81703", "strand": "-", "annotations": "hypothetical_protein"}, {"name": "WP_108102002.1", "locus_tag": "C7376_RS04315", "location": "81945-82634", "strand": "+", "annotations": "ABC_transporter_ATP-binding_protein"}, {"name": "WP_108102003.1", "locus_tag": "C7376_RS04320", "location": "82631-85222", "strand": "+", "annotations": "FtsX-like_permease_family_protein"}, {"name": "WP_108102004.1", "locus_tag": "C7376_RS04325", "location": "85215-85991", "strand": "+", "annotations": "outer_membrane_lipoprotein-sorting_protein"}, {"name": "WP_108102005.1", "locus_tag": "C7376_RS04330", "location": "86061-87422", "strand": "+", "annotations": "hypothetical_protein"}, {"name": "WP_108102006.1", "locus_tag": "C7376_RS04335", "location": "87465-88607", "strand": "+", "annotations": "glycosyltransferase"}, {"name": "WP_158270960.1", "locus_tag": "C7376_RS04340", "location": "88704-89993", "strand": "-", "annotations": "GMC_family_oxidoreductase"}, {"name": "WP_108102008.1", "locus_tag": "C7376_RS04345", "location": "90107-91321", "strand": "-", "annotations": "glycosyltransferase"}, {"name": "WP_108102009.1", "locus_tag": "C7376_RS04350", "location": "91318-92463", "strand": "-", "annotations": "NAD-dependent_epimerase/dehydratase_family_protein"}, {"name": "WP_108102142.1", 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"annotations": "MarR_family_transcriptional_regulator"}, {"name": "DQN23_RS04955", "locus_tag": "DQN23_RS04955", "location": "971172-972889", "strand": "-", "annotations": "aminodeoxychorismate_synthase_component_I"}, {"name": "WP_111712842.1", "locus_tag": "DQN23_RS04960", "location": "972902-973786", "strand": "-", "annotations": "EamA_family_transporter_RarD"}, {"name": "WP_111713082.1", "locus_tag": "DQN23_RS04965", "location": "973773-974639", "strand": "-", "annotations": "homoserine_kinase"}, {"name": "WP_020916886.1", "locus_tag": "DQN23_RS04970", "location": "974695-975981", "strand": "-", "annotations": "homoserine_dehydrogenase"}, {"name": "WP_111712843.1", "locus_tag": "DQN23_RS04975", "location": "976202-977143", "strand": "+", "annotations": "polysaccharide_deacetylase_family_protein"}, {"name": "WP_020916888.1", "locus_tag": "DQN23_RS04980", "location": "977186-977374", "strand": "-", "annotations": "hypothetical_protein"}, {"name": "WP_111712844.1", "locus_tag": 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"annotations": "ABC_transporter_ATP-binding_protein"}, {"name": "WP_111716180.1", "locus_tag": "DQM53_RS04830", "location": "931419-932297", "strand": "+", "annotations": "mevalonate_kinase"}, {"name": "WP_111716182.1", "locus_tag": "DQM53_RS04835", "location": "932279-933223", "strand": "+", "annotations": "diphosphomevalonate_decarboxylase"}, {"name": "WP_111716185.1", "locus_tag": "DQM53_RS04840", "location": "933216-934229", "strand": "+", "annotations": "phosphomevalonate_kinase"}, {"name": "WP_111716188.1", "locus_tag": "DQM53_RS04845", "location": "934216-935208", "strand": "+", "annotations": "type_2_isopentenyl-diphosphate_Delta-isomerase"}, {"name": "WP_111716190.1", "locus_tag": "DQM53_RS04850", "location": "935354-936880", "strand": "-", "annotations": "helix-turn-helix_domain-containing_protein"}, {"name": "WP_111715596.1", "locus_tag": "DQM53_RS04855", "location": "937161-938114", "strand": "-", "annotations": "IS30_family_transposase"}, {"name": "WP_111716192.1", 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"NRP", 26.0, 84.0, 93.20388349514563, 3.2e-16], ["EKJ70675.1", "hypothetical_protein", "BGC0002188", 1, "NRP+Polyketide", 28.0, 84.0, 77.66990291262135, 4.2e-16], ["AZH29358.1", "ABC_transporter_ATP-binding_protein", "BGC0001843", 1, "NRP", 32.0, 84.0, 60.84142394822006, 5.5e-16], ["ACC84962.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 29.0, 84.0, 65.0485436893204, 5.5e-16], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 29.0, 83.0, 75.08090614886731, 7.1e-16], ["EFI65097.1", "lantibiotic_transport_protein", "BGC0001407", 1, "RiPP", 25.0, 83.0, 93.85113268608414, 9.3e-16], ["WP_002130748.1", "peptidase_domain-containing_ABC_transporter", "BGC0001863", 1, "Terpene+RiPP:Glycocin", 31.0, 82.0, 56.957928802588995, 1.2e-15], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 29.0, 82.0, 64.40129449838187, 1.2e-15], ["AVX51096.1", "nysH", "BGC0001709", 1, "Polyketide", 28.0, 82.0, 92.23300970873787, 1.6e-15], ["AAF71764.1", "nysH", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 31.0, 82.0, 64.40129449838187, 2.1e-15], ["BAD02214.1", "ATP-binding_protein", "BGC0002682", 1, "Other", 31.0, 81.0, 69.57928802588997, 2.7e-15], ["CUX79063.1", "Putative_multidrug_export_ATP-binding/permease_protein", "BGC0001715", 1, "NRP", 28.0, 81.0, 93.52750809061489, 3.5e-15], ["BAE46918.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 32.0, 81.0, 57.28155339805825, 4.6e-15], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 26.0, 80.0, 100.0, 7.9e-15], ["ACB01054.1", "ABC-type_nitrate/sulfonate/bicarbonate_transport_system,_ATP-binding_protein", "BGC0002470", 1, "Other", 31.0, 80.0, 63.75404530744336, 7.9e-15], ["BAH43767.1", "ABC_transporter_ATP_binding/permease_protein", "BGC0000452", 1, "NRP", 27.0, 79.0, 92.88025889967638, 1e-14], ["EHQ60564.1", "ABC_transporter", "BGC0001356", 1, "RiPP", 31.0, 79.0, 65.37216828478964, 1e-14], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 29.0, 79.0, 62.13592233009708, 1.3e-14], ["BAL90289.1", "putative_ABC_transporter_ATPase_and_permease_protein", "BGC0002021", 1, "Polyketide", 32.0, 79.0, 57.92880258899677, 1.3e-14], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 34.0, 78.0, 58.57605177993528, 2.3e-14], ["BAL15734.1", "ABC_transporter", "BGC0000432", 1, "NRP", 27.0, 78.0, 88.3495145631068, 3e-14], ["DAB41657.1", "ABC_transporter", "BGC0001585", 1, "Alkaloid", 24.0, 78.0, 86.08414239482201, 3e-14], ["QIZ24092.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 26.0, 78.0, 89.96763754045307, 3e-14], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 24.0, 77.0, 98.05825242718447, 3.9e-14], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 29.0, 77.0, 61.81229773462783, 5.1e-14], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 24.0, 77.0, 98.38187702265373, 6.7e-14], ["AQT01390.1", "SgnA", "BGC0001690", 1, "Polyketide", 24.0, 77.0, 90.29126213592234, 6.7e-14], ["AXM42912.1", "ABC_transporter_ATP-binding_protein", "BGC0001940", 1, "Polyketide", 32.0, 76.0, 58.89967637540453, 8.7e-14], ["MCF2150409.1", "DevA-like,_part_of_ABC_transporter", "BGC0002625", 1, "NRP+Polyketide", 28.0, 76.0, 70.55016181229773, 8.7e-14], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 24.0, 76.0, 88.67313915857605, 1.1e-13], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 24.0, 76.0, 88.67313915857605, 1.1e-13], ["AFO89690.1", "ABC_transporter,_transmembrane_ATP-binding_protein", "BGC0002694", 1, "Other", 26.0, 76.0, 97.41100323624595, 1.1e-13], ["ABV83219.1", "CppH", "BGC0000116", 1, "Polyketide", 30.0, 76.0, 51.1326860841424, 1.5e-13], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 24.0, 76.0, 98.05825242718447, 1.5e-13], ["MAA_10048", "multidrug_resistance_protein", "BGC0000337", 1, "NRP", 31.0, 75.0, 59.22330097087378, 1.9e-13], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 29.0, 75.0, 55.016181229773466, 1.9e-13], ["MBE3200464.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 31.0, 75.0, 58.89967637540453, 1.9e-13], ["CAC20924.1", "PimA_protein", "BGC0000125", 1, "Polyketide", 24.0, 75.0, 90.29126213592234, 2.5e-13], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 24.0, 75.0, 98.05825242718447, 2.5e-13], ["AHZ20760.1", "ABC_transporter_transmembrane_domain/ATP-binding_domain_protein", "BGC0000369", 1, "NRP+Saccharide:Hybrid/tailoring saccharide", 29.0, 74.0, 59.54692556634305, 3.3e-13], ["AHF21226.1", "TriB", "BGC0000449", 1, "NRP", 31.0, 74.0, 60.19417475728155, 3.3e-13], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 29.0, 74.0, 55.016181229773466, 3.3e-13], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 29.0, 74.0, 55.016181229773466, 3.3e-13], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 24.0, 74.0, 88.67313915857605, 4.3e-13], ["XP_011392729.1", "ABC_transporter", "BGC0001281", 1, "Polyketide", 31.0, 74.0, 64.07766990291263, 4.3e-13], ["QQZ01651.1", "ABC_transporter", "BGC0002497", 1, "Other", 28.0, 74.0, 62.7831715210356, 4.3e-13], ["AAY93430.1", "cation_ABC_transporter,_MZT_family,_ATP-binding_protein", "BGC0000413", 1, "NRP", 33.0, 74.0, 59.54692556634305, 5.7e-13], ["CBF87872.1", "ABC_multidrug_transporter_(Eurofung)", "BGC0001699", 1, "NRP", 28.0, 74.0, 52.75080906148867, 5.7e-13], ["AGK15450.1", "ABC_transporter,_transmembrane_region,_ATP_binding_component", "BGC0002529", 1, "NRP", 29.0, 74.0, 61.48867313915858, 5.7e-13], ["ADX66464.1", "ScnA", "BGC0000108", 1, "Polyketide", 28.0, 73.0, 56.310679611650485, 7.4e-13], ["ATQ39429.1", "ABC_transporter", "BGC0001565", 1, "NRP", 26.0, 73.0, 85.11326860841424, 7.4e-13], ["QIZ86016.1", "NHLP_family_bacteriocin_export_ABC_transporter", "BGC0002330", 1, "RiPP", 29.0, 73.0, 61.48867313915858, 9.7e-13], ["OUH62398.1", "hypothetical_protein", "BGC0001639", 1, "RiPP", 32.0, 72.0, 47.896440129449836, 1.3e-12], ["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 28.0, 72.0, 65.0485436893204, 1.6e-12], ["CAD15510.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 28.0, 72.0, 71.84466019417476, 2.2e-12], ["AFP87531.1", "ABC_transporter", "BGC0001159", 1, "NRP+Polyketide:Modular type I polyketide", 30.0, 71.0, 70.22653721682848, 2.8e-12], ["QCC62989.1", "hypothetical_protein", "BGC0001966", 1, "NRP+Polyketide", 25.0, 71.0, 78.31715210355988, 2.8e-12], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 31.0, 71.0, 62.45954692556634, 3.7e-12], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 25.0, 71.0, 88.3495145631068, 4.8e-12], ["QQZ01652.1", "ABC_transporter", "BGC0002497", 1, "Other", 25.0, 71.0, 84.14239482200647, 4.8e-12], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 31.0, 70.0, 68.6084142394822, 6.3e-12], ["ctg1_orf26", "", "BGC0001767", 1, "NRP", 32.0, 70.0, 58.252427184466015, 6.3e-12], ["WP_232292338.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001999", 1, "NRP", 28.0, 70.0, 72.81553398058253, 6.3e-12], ["AAO56108.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 26.0, 70.0, 60.19417475728155, 6.3e-12], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 27.0, 70.0, 65.69579288025889, 8.2e-12], ["EPE34342.1", "ABC-transporter", "BGC0001035", 1, "Polyketide+NRP", 30.0, 69.0, 51.45631067961165, 1.1e-11], ["BBC83962.1", "P-loop_containing_nucleoside_triphosphate_hydrolase_protein", "BGC0001636", 1, "NRP", 29.0, 69.0, 60.517799352750814, 1.1e-11], ["AGL93176.1", "ABC_transporter_ATP-binding_protein", "BGC0000560", 1, "RiPP:Lanthipeptide", 31.0, 69.0, 54.0453074433657, 1.4e-11], ["WP_042799412.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001283", 1, "Polyketide", 30.0, 69.0, 65.69579288025889, 1.8e-11], ["QVK45109.1", "ABC_transporter", "BGC0002438", 1, "Alkaloid", 28.0, 69.0, 57.60517799352751, 1.8e-11], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 29.0, 68.0, 63.43042071197411, 3.1e-11], ["AAD48883.1", "ATPase", "BGC0002494", 1, "NRP", 30.0, 68.0, 67.31391585760518, 3.1e-11], ["ABS50189.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 26.0, 67.0, 66.99029126213593, 4.1e-11], ["AQZ37089.1", "ABC_transporter_transmembrane_region_protein", "BGC0001511", 1, "Polyketide", 29.0, 67.0, 55.33980582524271, 4.1e-11], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 28.0, 67.0, 69.57928802588997, 4.1e-11], ["MCC5036774.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 24.0, 67.0, 90.93851132686083, 4.1e-11], ["CCA53800.1", "putative_ABC_transporter", "BGC0001801", 1, "NRP", 26.0, 67.0, 74.11003236245955, 5.3e-11], ["NKI69290.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002408", 1, "NRP", 33.0, 67.0, 66.34304207119742, 5.3e-11], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 28.0, 67.0, 63.43042071197411, 6.9e-11], ["CCT75968.1", "related_to_multidrug_resistance_protein", "BGC0001606", 1, "Polyketide", 28.0, 67.0, 52.42718446601942, 6.9e-11], ["WP_014929841.1", "ABC_transporter_transmembrane_domain-containing_protein", "BGC0001864", 1, "RiPP:Glycocin", 28.0, 67.0, 55.33980582524271, 6.9e-11], ["QWP75302.1", "ABC_transporter_ATP-binding_protein", "BGC0002126", 1, "NRP:Cyclic depsipeptide", 29.0, 67.0, 66.66666666666666, 6.9e-11], ["CBA63688.1", "ATPase_of_griseobactin_uptake_ABC_transporter", "BGC0000368", 1, "NRP", 26.0, 66.0, 69.90291262135922, 9e-11], ["AAN85545.1", "antibiotic_resistance_protein", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 29.0, 66.0, 56.63430420711975, 9e-11], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 29.0, 66.0, 55.33980582524271, 1.2e-10], ["APZ78695.1", "ABC_transporter_ATP-binding_protein", "BGC0001418", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 24.0, 66.0, 67.31391585760518, 1.2e-10], ["APZ78707.1", "ABC_transporter_ATP-binding_protein", "BGC0001419", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 24.0, 66.0, 67.31391585760518, 1.2e-10], ["AGE11895.1", "ABC_transporter", "BGC0000366", 1, "NRP", 30.0, 66.0, 70.22653721682848, 1.5e-10], ["EYT83450.1", "ABC_transporter", "BGC0001213", 1, "Polyketide", 28.0, 66.0, 66.66666666666666, 1.5e-10], ["ATW47202.1", "ABC_transporter", "BGC0002466", 1, "NRP", 30.0, 66.0, 57.92880258899677, 1.5e-10], ["QYA99270.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002676", 1, "NRP", 28.0, 66.0, 59.8705501618123, 1.5e-10], ["CAP20370.1", "ABC_transporter,_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 28.0, 65.0, 58.252427184466015, 2e-10], ["CAJ87587.1", "putative_ABC_transporter_protein", "BGC0001055", 1, "NRP+Polyketide", 24.0, 65.0, 94.8220064724919, 2e-10], ["AQZ71346.1", "ABC_transporter", "BGC0001635", 1, "NRP+Polyketide", 27.0, 65.0, 64.72491909385113, 2e-10], ["AKU20512.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 25.0, 65.0, 66.99029126213593, 2.6e-10], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 29.0, 64.0, 53.398058252427184, 3.4e-10], ["ABI87090.1", "ABC_transporter_related_protein", "BGC0002531", 1, "NRP", 27.0, 64.0, 73.7864077669903, 3.4e-10], ["AAQ59906.1", "enterobactin-iron_transport_system_ATP-binding_protein", "BGC0002680", 1, "NRP", 30.0, 64.0, 60.84142394822006, 3.4e-10], ["BAB72347.1", "ATP-binding_protein_of_iron(III)_ABC_transporter", "BGC0002683", 1, "Other", 28.0, 64.0, 71.84466019417476, 3.4e-10], ["AUD11999.1", "OrbC", "BGC0001721", 1, "NRP", 27.0, 64.0, 73.46278317152104, 4.5e-10], ["QDQ83030.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002564", 1, "NRP", 27.0, 64.0, 72.49190938511327, 4.5e-10], ["AAS92552.1", "SirA", "BGC0001044", 1, "NRP", 30.0, 64.0, 55.663430420711975, 5.9e-10], ["OLZ52458.1", "ABC_transporter", "BGC0001462", 1, "NRP:Glycopeptide", 27.0, 63.0, 69.90291262135922, 7.7e-10], ["AAK89711.1", "ABC_transporter,_nucleotide_binding/ATPase_protein_(iron_(III)_dicitrate)", "BGC0002107", 1, "NRP+Polyketide", 27.0, 63.0, 67.63754045307444, 7.7e-10], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 29.0, 63.0, 45.307443365695796, 7.7e-10], ["AXF14777.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002563", 1, "NRP", 28.0, 63.0, 67.31391585760518, 7.7e-10], ["AAO56107.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 28.0, 63.0, 62.13592233009708, 7.7e-10], ["QEV63710.1", "dipeptide_ABC_transporter_ATP-binding_protein", "BGC0002657", 1, "Polyketide+NRP", 29.0, 63.0, 58.252427184466015, 7.7e-10], ["AMQ70215.1", "bacitracin_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 28.0, 63.0, 55.016181229773466, 7.7e-10], ["WP_010369407.1", "ABC_transporter_ATP-binding_protein", "BGC0000314", 1, "Polyketide+NRP:Cyclic depsipeptide+Other:Aminocoumarin", 26.0, 63.0, 53.398058252427184, 1e-09], ["BAP05577.1", "calU", "BGC0000967", 1, "NRP+Polyketide:Trans-AT type I polyketide", 25.0, 63.0, 91.2621359223301, 1e-09], ["CDL83408.1", "Iron(3+)-hydroxamate_import_ATP-binding_protein_FhuC", "BGC0001498", 1, "Other", 29.0, 63.0, 66.99029126213593, 1e-09], ["AXG47409.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 24.0, 63.0, 97.0873786407767, 1e-09], ["CAA90021.1", "PepT", "BGC0000543", 1, "RiPP:Lanthipeptide", 26.0, 62.0, 94.8220064724919, 1.3e-09], ["ABM30208.1", "PvuE", "BGC0000947", 1, "Other", 26.0, 62.0, 71.84466019417476, 1.3e-09], ["CBF73441.1", "ABC_transporter_(Eurofung)", "BGC0001515", 1, "NRP", 26.0, 62.0, 71.84466019417476, 1.3e-09], ["WP_081238292.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 28.0, 62.0, 49.19093851132686, 1.3e-09], ["CAP20371.1", "ABC_transporter_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 25.0, 62.0, 64.40129449838187, 1.7e-09], ["ALE27499.1", "ABC_transporter", "BGC0001292", 1, "Other", 25.0, 62.0, 90.29126213592234, 2.2e-09], ["RSO11557.1", "ABC_transporter", "BGC0002637", 1, "NRP", 26.0, 62.0, 64.72491909385113, 2.2e-09], ["CAA11793.1", "PCZA363.2", "BGC0000322", 1, "NRP", 27.0, 61.0, 59.22330097087378, 2.9e-09], ["OKA09422.1", "ABC_transporter", "BGC0001459", 1, "NRP:Glycopeptide", 26.0, 61.0, 59.54692556634305, 2.9e-09], ["CAR51989.1", "putative_iron_transport-related_ATP-binding_protein", "BGC0002569", 1, "NRP", 27.0, 61.0, 68.93203883495146, 2.9e-09], ["WP_037568401.1", "ABC_transporter_ATP-binding_protein", "BGC0002656", 1, "Polyketide", 27.0, 61.0, 65.0485436893204, 2.9e-09], ["FNF07_04290", "ATP-binding_cassette_domain-containing_protein", "BGC0002329", 1, "NRP", 30.0, 61.0, 70.87378640776699, 3.8e-09], ["QPP19365.1", "Pen6", "BGC0002501", 1, "Alkaloid", 25.0, 61.0, 67.96116504854369, 5e-09], ["AAM80540.1", "StaU", "BGC0000290", 1, "NRP:Glycopeptide", 27.0, 60.0, 64.72491909385113, 6.5e-09], ["QTT77479.1", "ABC_transporter_ATP-binding_protein", "BGC0002350", 1, "NRP+Polyketide+Saccharide", 24.0, 60.0, 87.37864077669903, 6.5e-09], ["MBE3202948.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 29.0, 60.0, 55.663430420711975, 6.5e-09], ["KJY94245.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002691", 1, "NRP", 28.0, 60.0, 72.168284789644, 6.5e-09], ["NAO96303.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002117", 1, "NRP", 29.0, 60.0, 72.49190938511327, 8.5e-09], ["QSE03592.1", "Lcm8", "BGC0002333", 1, "Polyketide", 27.0, 60.0, 49.19093851132686, 8.5e-09], ["EME52991.1", "ABC_transporter", "BGC0001460", 1, "NRP:Glycopeptide", 27.0, 59.0, 59.22330097087378, 1.1e-08], ["KGA48642.1", "ABC_transporter_family_protein", "BGC0002413", 1, "NRP", 30.0, 59.0, 57.60517799352751, 1.1e-08], ["ABW91161.1", "exporter/resistance_protein", "BGC0000019", 1, "Polyketide", 27.0, 59.0, 60.517799352750814, 1.4e-08], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 26.0, 59.0, 63.75404530744336, 1.4e-08], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 28.0, 59.0, 60.517799352750814, 1.4e-08], ["SDF67574.1", "putative_ATP-binding_cassette_transporter", "BGC0002422", 1, "NRP", 29.0, 59.0, 60.517799352750814, 1.4e-08], ["ACY56719.1", "ThnT", "BGC0000600", 1, "RiPP", 24.0, 59.0, 91.58576051779936, 1.9e-08], ["MBV7329448.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002131", 1, "Polyketide+NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 25.0, 59.0, 90.61488673139159, 1.9e-08], ["ARD70884.1", "ABC_transporter", "BGC0001693", 1, "Polyketide", 23.0, 58.0, 85.43689320388349, 2.5e-08], ["MBX9445648.1", "ABC_transporter_ATP-binding_protein", "BGC0002414", 1, "NRP", 30.0, 58.0, 58.252427184466015, 2.5e-08], ["CAG25756.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000311", 1, "NRP", 27.0, 58.0, 59.22330097087378, 3.2e-08], ["ALK27913.1", "putative_ABC_transporter", "BGC0001233", 1, "NRP", 28.0, 58.0, 57.28155339805825, 3.2e-08], ["AEI58864.1", "ABC_transporter", "BGC0000455", 1, "NRP", 27.0, 57.0, 59.22330097087378, 4.2e-08], ["MBA0053734.1", "ABC_transporter_ATP-binding_protein", "BGC0002096", 1, "Polyketide", 26.0, 57.0, 73.46278317152104, 5.5e-08], ["EET76299.1", "ABC_transporter,_ATP-binding_protein", "BGC0002685", 1, "NRP", 29.0, 57.0, 67.96116504854369, 5.5e-08], ["BAF50716.2", "ABC-transporter_protein", "BGC0001116", 1, "NRP+Polyketide", 30.0, 57.0, 48.54368932038835, 7.2e-08], ["AJK49764.1", "ABC_transporter,_ATP-binding_protein", "BGC0002565", 1, "NRP", 25.0, 57.0, 69.90291262135922, 7.2e-08], ["CAD91219.1", "putative_ABC_transporter,_Dbv24", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 56.0, 59.54692556634305, 9.4e-08], ["ACU36655.1", "ABC_transporter_related", "BGC0000392", 1, "NRP", 25.0, 56.0, 72.49190938511327, 9.4e-08], ["AAP11941.1", "ABC_transporter_ATP-binding_protein", "BGC0000612", 1, "RiPP:Thiopeptide", 25.0, 56.0, 67.63754045307444, 9.4e-08], ["AZM57021.1", "ABC_transporter", "BGC0002314", 1, "NRP", 27.0, 56.0, 63.10679611650486, 9.4e-08], ["AFO89680.1", "putative_ferrichrome_transport_ATP-binding_protein", "BGC0002694", 1, "Other", 26.0, 56.0, 66.01941747572816, 9.4e-08], ["CAB53321.1", "putative_ABC_transporter_transmembrane_protein", "BGC0000325", 1, "NRP", 25.0, 56.0, 94.1747572815534, 1.2e-07], ["ABC39054.1", "iron_compound_ABC_transporter,_ATP-binding_protein", "BGC0000386", 1, "NRP:NRP siderophore", 26.0, 56.0, 63.43042071197411, 1.2e-07], ["OLZ50884.1", "ABC_transporter", "BGC0001461", 1, "NRP:Glycopeptide", 26.0, 56.0, 58.89967637540453, 1.6e-07], ["AYA22337.1", "Tri", "BGC0001955", 1, "NRP", 26.0, 56.0, 58.89967637540453, 1.6e-07], ["QYC40286.1", "Multidrug_export_ATP-binding/permease_protein", "BGC0002344", 1, "NRP", 27.0, 56.0, 59.54692556634305, 1.6e-07], ["AHZ61877.1", "ABC-transporter-like_protein", "BGC0000240", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 24.0, 55.0, 56.957928802588995, 2.7e-07], ["ABP54659.1", "ABC_transporter_related", "BGC0000241", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 24.0, 55.0, 56.957928802588995, 2.7e-07], ["AAK81823.1", "ABC_transporter", "BGC0000326", 1, "NRP", 25.0, 55.0, 65.69579288025889, 2.7e-07], ["AIG79244.1", "Conserved_putative_membrane_protein", "BGC0000419", 1, "Saccharide+NRP:Glycopeptide", 25.0, 55.0, 61.48867313915858, 2.7e-07], ["CCC55903.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 26.0, 55.0, 61.81229773462783, 2.7e-07], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 29.0, 55.0, 55.663430420711975, 2.7e-07], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 28.0, 54.0, 56.957928802588995, 3.6e-07], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 28.0, 54.0, 56.957928802588995, 3.6e-07], ["SPE99799.1", "Glutathione_import_ATP-binding_protein_GsiA", "BGC0002567", 1, "Other", 26.0, 54.0, 66.66666666666666, 3.6e-07], ["AAN85547.1", "ABC_transporter", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 27.0, 54.0, 63.10679611650486, 4.6e-07], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 24.0, 54.0, 78.64077669902912, 4.6e-07], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 28.0, 54.0, 63.43042071197411, 6.1e-07], ["AAC73689.1", "ferric_enterobactin_ABC_transporter_ATP_binding_subunit", "BGC0002476", 1, "NRP", 26.0, 54.0, 77.66990291262135, 6.1e-07], ["CAE53357.1", "ABC_transporter", "BGC0000440", 1, "NRP:Glycopeptide", 25.0, 53.0, 65.0485436893204, 1e-06], ["CAG15016.1", "ABC_transporter", "BGC0000441", 1, "NRP", 25.0, 53.0, 65.0485436893204, 1e-06], ["AAK95839.1", "ABC-transport_protein_PhuC", "BGC0002495", 1, "NRP", 27.0, 53.0, 57.60517799352751, 1e-06], ["AIE77056.1", "ABC-transporter", "BGC0000418", 1, "NRP", 25.0, 52.0, 61.48867313915858, 1.8e-06], ["ABE35427.1", "ABC_cobalamin/Fe3+-siderophores_transporter,_ATPase_subunit", "BGC0002421", 1, "NRP", 28.0, 52.0, 59.22330097087378, 1.8e-06], ["AZM50109.1", "ABC_transporter", "BGC0002702", 1, "NRP", 25.0, 51.0, 64.72491909385113, 3e-06], ["ABX00624.1", "LmrC", "BGC0000907", 1, "Other", 27.0, 51.0, 57.60517799352751, 3.9e-06], ["AFD30962.1", "CrmT3", "BGC0000966", 1, "NRP+Polyketide", 24.0, 51.0, 59.22330097087378, 3.9e-06], ["MCC5036782.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 24.0, 51.0, 61.81229773462783, 3.9e-06]], "MAAAAKME_00210": [["MBX4265669.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002667", 1, "RiPP", 25.0, 56.0, 82.91139240506328, 1.2e-07]], "MAAAAKME_00260": [["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 33.0, 311.0, 97.71528998242532, 5.1e-84], ["AGL93176.1", "ABC_transporter_ATP-binding_protein", "BGC0000560", 1, "RiPP:Lanthipeptide", 34.0, 307.0, 100.17574692442884, 4.3e-83], ["AEP18658.1", "efflux_transporter", "BGC0000461", 1, "NRP", 35.0, 306.0, 97.01230228471002, 9.6e-83], ["WP_087443883.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002701", 1, "RiPP", 34.0, 306.0, 98.59402460456941, 9.6e-83], ["AFS60105.1", "PaenT", "BGC0000540", 1, "RiPP:Lanthipeptide", 34.0, 306.0, 101.23022847100177, 1.2e-82], ["CAA90021.1", "PepT", "BGC0000543", 1, "RiPP:Lanthipeptide", 33.0, 304.0, 97.01230228471002, 3.6e-82], ["QWM97318.1", "ABC_transporter_ATP-binding_protein", "BGC0002384", 1, "NRP", 34.0, 282.0, 98.41827768014059, 1.5e-75], ["BAV56269.1", "hypothetical_protein", "BGC0001657", 1, "NRP", 34.0, 280.0, 96.8365553602812, 9.6e-75], ["QWP75302.1", "ABC_transporter_ATP-binding_protein", "BGC0002126", 1, "NRP:Cyclic depsipeptide", 34.0, 277.0, 97.71528998242532, 8.1e-74], ["AJF34465.1", "ABC_transporter", "BGC0001207", 1, "NRP", 33.0, 275.0, 99.82425307557118, 1.8e-73], ["AEH59102.1", "ABC_transporter/permease/ATP-binding_protein", "BGC0000385", 1, "NRP", 33.0, 264.0, 98.06678383128296, 7.1e-70], ["QBF29317.1", "ABC_transporter_ATP-binding_protein", "BGC0002294", 1, "Other", 30.0, 231.0, 92.61862917398945, 3.9e-60], ["EWC60873.1", "hypothetical_protein", "BGC0001496", 1, "RiPP", 30.0, 225.0, 101.75746924428823, 3.7e-58], ["CAB38879.1", "putative_ABC_transporter", "BGC0000315", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 30.0, 216.0, 99.29701230228471, 1.3e-55], ["QKI29071.1", "ABC_transporter_ATP-binding_protein", "BGC0002130", 1, "RiPP:Lanthipeptide", 30.0, 215.0, 100.35149384885764, 2.2e-55], ["ALV82355.1", "ABC_transporter", "BGC0001370", 1, "NRP", 30.0, 215.0, 101.05448154657293, 2.9e-55], ["CUX79063.1", "Putative_multidrug_export_ATP-binding/permease_protein", "BGC0001715", 1, "NRP", 28.0, 213.0, 97.89103690685414, 8.4e-55], ["WP_052414171.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001551", 1, "RiPP", 30.0, 213.0, 96.8365553602812, 1.4e-54], ["BAI23327.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 31.0, 210.0, 101.58172231985941, 1.2e-53], ["AFJ14797.1", "PlpH", "BGC0000403", 1, "NRP", 29.0, 207.0, 95.2548330404218, 6e-53], ["AFJ14796.1", "PlpG", "BGC0000403", 1, "NRP", 28.0, 206.0, 98.41827768014059, 1.8e-52], ["BAH43767.1", "ABC_transporter_ATP_binding/permease_protein", "BGC0000452", 1, "NRP", 26.0, 205.0, 97.71528998242532, 2.3e-52], ["APO47824.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 27.0, 205.0, 99.12126537785588, 2.3e-52], ["ACA97578.1", "PmxC", "BGC0000408", 1, "NRP", 28.0, 205.0, 99.64850615114236, 3.9e-52], ["AEZ51518.1", "pmxC", "BGC0001153", 1, "NRP:Lipopeptide", 27.0, 205.0, 99.64850615114236, 3.9e-52], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 29.0, 204.0, 94.02460456942003, 6.7e-52], ["BAJ19058.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 30.0, 201.0, 107.55711775043937, 3.3e-51], ["BAC73398.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001552", 1, "RiPP", 28.0, 201.0, 99.47275922671353, 5.7e-51], ["AJM89736.1", "PmxC", "BGC0001192", 1, "NRP", 27.0, 199.0, 100.35149384885764, 1.6e-50], ["CUX79064.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001715", 1, "NRP", 28.0, 197.0, 96.30931458699473, 8.2e-50], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 30.0, 196.0, 92.44288224956063, 1.8e-49], ["WP_052230046.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001188", 1, "RiPP", 27.0, 195.0, 99.47275922671353, 3.1e-49], ["WP_081238293.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 29.0, 195.0, 88.40070298769771, 4.1e-49], ["AGM16415.1", "paenibacterin_ABC-transporter_D", "BGC0000400", 1, "NRP", 26.0, 193.0, 98.76977152899823, 9e-49], ["BAL72550.1", "lariatin_biosynthetic_protein", "BGC0000575", 1, "RiPP:Lassopeptide", 28.0, 192.0, 91.03690685413005, 2.6e-48], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 30.0, 191.0, 100.17574692442884, 3.4e-48], ["ADX66465.1", "ScnB", "BGC0000108", 1, "Polyketide", 29.0, 190.0, 92.97012302284709, 1e-47], ["AIG26886.1", "putative_multidrug_export_ATP-binding/permease_protein", "BGC0002432", 1, "NRP", 26.0, 190.0, 97.53954305799648, 1e-47], ["AHH99931.1", "ABC_transporter_protein", "BGC0000002", 1, "Polyketide", 28.0, 189.0, 98.59402460456941, 1.7e-47], ["AHF21226.1", "TriB", "BGC0000449", 1, "NRP", 27.0, 189.0, 104.92091388400704, 1.7e-47], ["WP_078620925.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001549", 1, "RiPP", 27.0, 189.0, 100.0, 2.2e-47], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 27.0, 188.0, 92.44288224956063, 5e-47], ["BBC83962.1", "P-loop_containing_nucleoside_triphosphate_hydrolase_protein", "BGC0001636", 1, "NRP", 30.0, 187.0, 94.5518453427065, 6.5e-47], ["ATY37606.1", "BreA", "BGC0001536", 1, "NRP", 26.0, 186.0, 98.41827768014059, 1.1e-46], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 27.0, 186.0, 95.78207381370825, 1.4e-46], ["CAC20925.1", "PimB_protein", "BGC0000125", 1, "Polyketide", 28.0, 185.0, 89.98242530755711, 2.5e-46], ["AQT01389.1", "SgnB", "BGC0001690", 1, "Polyketide", 28.0, 185.0, 89.98242530755711, 2.5e-46], ["AZH29358.1", "ABC_transporter_ATP-binding_protein", "BGC0001843", 1, "NRP", 27.0, 185.0, 99.64850615114236, 3.2e-46], ["WP_003071800.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 29.0, 185.0, 86.11599297012302, 3.2e-46], ["CAD89782.1", "hypothetical_protein", "BGC0001010", 1, "NRP+Polyketide:Modular type I polyketide", 30.0, 185.0, 98.76977152899823, 4.2e-46], ["OJF16281.1", "AceT2", "BGC0001491", 1, "Polyketide", 27.0, 185.0, 90.86115992970123, 4.2e-46], ["ATQ39429.1", "ABC_transporter", "BGC0001565", 1, "NRP", 29.0, 185.0, 94.20035149384886, 4.2e-46], ["AHZ61877.1", "ABC-transporter-like_protein", "BGC0000240", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 184.0, 98.59402460456941, 5.5e-46], ["AZH29359.1", "ABC_transporter_ATP-binding_protein", "BGC0001843", 1, "NRP", 27.0, 184.0, 107.0298769771529, 5.5e-46], ["AHF21227.1", "TriC", "BGC0000449", 1, "NRP", 27.0, 184.0, 103.69068541300528, 7.2e-46], ["ABL74935.1", "ABC_multi-drug_transport", "BGC0001048", 1, "NRP:Glycopeptide+Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 184.0, 98.59402460456941, 7.2e-46], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 26.0, 182.0, 97.18804920913884, 2.1e-45], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 26.0, 182.0, 95.78207381370825, 2.7e-45], ["QUQ72367.1", "ABC_transporter", "BGC0002349", 1, "Polyketide+Saccharide", 27.0, 182.0, 98.41827768014059, 2.7e-45], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 26.0, 181.0, 95.78207381370825, 6.1e-45], ["CAG34716.1", "putative_ABC_transporter", "BGC0000713", 1, "Saccharide", 28.0, 180.0, 91.73989455184535, 7.9e-45], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 28.0, 180.0, 98.59402460456941, 7.9e-45], ["QTT77479.1", "ABC_transporter_ATP-binding_protein", "BGC0002350", 1, "NRP+Polyketide+Saccharide", 29.0, 180.0, 90.86115992970123, 7.9e-45], ["ACR43772.1", "ABC-transporter", "BGC0002577", 1, "RiPP", 29.0, 180.0, 98.94551845342706, 7.9e-45], ["ABP54659.1", "ABC_transporter_related", "BGC0000241", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 28.0, 180.0, 99.64850615114236, 1.3e-44], ["AIS24845.1", "dst21", "BGC0001147", 1, "NRP", 30.0, 179.0, 95.95782073813707, 1.8e-44], ["ARD70884.1", "ABC_transporter", "BGC0001693", 1, "Polyketide", 28.0, 179.0, 99.64850615114236, 1.8e-44], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 28.0, 177.0, 99.47275922671353, 6.7e-44], ["ATW47206.1", "multidrug_ABC_transporter_permease", "BGC0002466", 1, "NRP", 31.0, 177.0, 82.60105448154658, 8.7e-44], ["CAG34715.1", "putative_ABC_transporter", "BGC0000713", 1, "Saccharide", 28.0, 176.0, 85.06151142355009, 1.5e-43], ["WP_009985592.1", "peptidase_domain-containing_ABC_transporter", "BGC0001311", 1, "RiPP:Lanthipeptide", 30.0, 176.0, 82.77680140597539, 1.5e-43], ["CAM02315.1", "putative_ABC_transporter_transmembrane", "BGC0000349", 1, "NRP", 28.0, 176.0, 87.5219683655536, 1.9e-43], ["QIZ24091.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 28.0, 175.0, 90.15817223198594, 2.5e-43], ["CAI47638.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 28.0, 175.0, 98.59402460456941, 3.3e-43], ["MAA_10048", "multidrug_resistance_protein", "BGC0000337", 1, "NRP", 29.0, 174.0, 89.63093145869946, 5.7e-43], ["CAF32377.1", "putative_ABC_transporter,_ATP-binding_protein", "BGC0000712", 1, "Saccharide", 30.0, 174.0, 82.95254833040421, 5.7e-43], ["QSE03593.1", "Lcm9", "BGC0002333", 1, "Polyketide", 33.0, 174.0, 60.105448154657296, 5.7e-43], ["AAO56108.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 28.0, 174.0, 90.86115992970123, 5.7e-43], ["CAF32376.1", "putative_ABC_transporter,_ATP-binding_protein", "BGC0000712", 1, "Saccharide", 28.0, 174.0, 97.71528998242532, 7.4e-43], ["ACC84962.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 28.0, 173.0, 104.39367311072057, 1.3e-42], ["EEM14530.1", "hypothetical_protein", "BGC0001210", 1, "RiPP", 27.0, 172.0, 97.18804920913884, 2.8e-42], ["BAE07080.1", "possible_ABC_transporter", "BGC0000693", 1, "Saccharide", 29.0, 171.0, 86.11599297012302, 3.7e-42], ["ACQ63630.1", "ABC_multidrug_resistance_transporter", "BGC0000875", 1, "Saccharide:Hybrid/tailoring saccharide+Other:Nucleoside", 29.0, 171.0, 86.11599297012302, 4.8e-42], ["DAB41657.1", "ABC_transporter", "BGC0001585", 1, "Alkaloid", 28.0, 171.0, 88.75219683655537, 4.8e-42], ["EYT83450.1", "ABC_transporter", "BGC0001213", 1, "Polyketide", 30.0, 171.0, 84.00702987697716, 6.3e-42], ["CAB60262.1", "MrsT_protein", "BGC0000527", 1, "RiPP:Lanthipeptide", 26.0, 170.0, 97.53954305799648, 8.2e-42], ["CAG38700.1", "putative_ABC-transporter,_ATP-binding_protein", "BGC0000708", 1, "Saccharide", 28.0, 170.0, 96.1335676625659, 1.1e-41], ["ADC96668.1", "ABC_transporter", "BGC0001076", 1, "Other:Nucleoside", 29.0, 170.0, 85.76449912126537, 1.1e-41], ["CAF33315.1", "putative_ABC_transporter,_ATP-binding_protein,_NeoU", "BGC0000709", 1, "Saccharide", 29.0, 169.0, 84.53427065026362, 2.4e-41], ["CAH58693.1", "putative_exporter", "BGC0000711", 1, "Saccharide", 29.0, 169.0, 84.53427065026362, 2.4e-41], ["CCA53800.1", "putative_ABC_transporter", "BGC0001801", 1, "NRP", 28.0, 168.0, 88.92794376098419, 3.1e-41], ["WP_051767685.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 27.0, 168.0, 97.71528998242532, 4.1e-41], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 28.0, 168.0, 101.05448154657293, 5.3e-41], ["AAY93395.1", "2-phenylethylamine_uptake_protein_PeaH", "BGC0000413", 1, "NRP", 29.0, 167.0, 92.44288224956063, 6.9e-41], ["BAJ05895.1", "putative_ABC_multidrug_resistance_transporter", "BGC0000872", 1, "Other", 29.0, 167.0, 84.88576449912127, 9e-41], ["BAL90289.1", "putative_ABC_transporter_ATPase_and_permease_protein", "BGC0002021", 1, "Polyketide", 29.0, 167.0, 88.04920913884007, 9e-41], ["CAF31838.1", "putative_hygromycin_B_exporter", "BGC0000699", 1, "Saccharide", 29.0, 166.0, 95.43057996485061, 1.2e-40], ["WP_027239422.1", "NHLP_family_bacteriocin_export_ABC_transporter_peptidase/permease/ATPase_subunit", "BGC0002698", 1, "RiPP", 28.0, 166.0, 91.91564147627417, 1.5e-40], ["AAM80540.1", "StaU", "BGC0000290", 1, "NRP:Glycopeptide", 28.0, 165.0, 103.1634446397188, 2.6e-40], ["BCB17017.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002523", 1, "NRP", 26.0, 165.0, 99.82425307557118, 2.6e-40], ["CAJ88629.1", "putative_netropsin_resistance_protein_subunit_2", "BGC0000327", 1, "NRP", 32.0, 165.0, 69.24428822495607, 3.4e-40], ["WP_028847743.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002467", 1, "NRP", 28.0, 165.0, 87.87346221441125, 3.4e-40], ["MBN3579118.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 34.0, 165.0, 49.56063268892794, 3.4e-40], ["KIH99790.1", "hypothetical_protein", "BGC0001176", 1, "RiPP:Lassopeptide", 27.0, 164.0, 102.81195079086116, 7.7e-40], ["CAF31837.1", "putative_hygromycin_B_exporter", "BGC0000699", 1, "Saccharide", 29.0, 163.0, 84.3585237258348, 1.7e-39], ["WP_020635023.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001211", 1, "NRP", 28.0, 163.0, 98.59402460456941, 1.7e-39], ["QYI86758.1", "putative_ABC_transporter", "BGC0002424", 1, "NRP", 30.0, 163.0, 97.71528998242532, 1.7e-39], ["QQZ01651.1", "ABC_transporter", "BGC0002497", 1, "Other", 28.0, 163.0, 85.58875219683657, 1.7e-39], ["QSE03592.1", "Lcm8", "BGC0002333", 1, "Polyketide", 25.0, 162.0, 97.71528998242532, 2.9e-39], ["CAJ88628.1", "putative_netropsin_resistance_protein_subunit_1", "BGC0000327", 1, "NRP", 27.0, 161.0, 88.40070298769771, 5e-39], ["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 26.0, 161.0, 94.90333919156416, 5e-39], ["ABD65953.1", "ABC_transporter", "BGC0000341", 1, "NRP", 27.0, 161.0, 100.52724077328648, 6.5e-39], ["AHF21240.1", "CrnT", "BGC0000500", 1, "RiPP:Lanthipeptide", 24.0, 161.0, 93.84885764499121, 6.5e-39], ["AAF71764.1", "nysH", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 26.0, 160.0, 99.12126537785588, 8.5e-39], ["AAK81823.1", "ABC_transporter", "BGC0000326", 1, "NRP", 27.0, 160.0, 101.58172231985941, 1.1e-38], ["MCC5036782.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 26.0, 160.0, 102.63620386643233, 1.1e-38], ["AQZ37089.1", "ABC_transporter_transmembrane_region_protein", "BGC0001511", 1, "Polyketide", 27.0, 159.0, 85.23725834797891, 1.9e-38], ["AAO56107.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 27.0, 159.0, 98.76977152899823, 1.9e-38], ["ABV83218.1", "CppG", "BGC0000116", 1, "Polyketide", 25.0, 159.0, 89.98242530755711, 2.5e-38], ["WP_081238292.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 24.0, 158.0, 97.53954305799648, 3.2e-38], ["QIZ86016.1", "NHLP_family_bacteriocin_export_ABC_transporter", "BGC0002330", 1, "RiPP", 27.0, 158.0, 102.81195079086116, 3.2e-38], ["ABS50189.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 30.0, 158.0, 88.22495606326889, 4.2e-38], ["AHJ59536.1", "ABC_transporter_protein", "BGC0000502", 1, "RiPP:Lanthipeptide", 26.0, 158.0, 90.33391915641477, 4.2e-38], ["RSO11557.1", "ABC_transporter", "BGC0002637", 1, "NRP", 27.0, 158.0, 103.33919156414764, 4.2e-38], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 27.0, 158.0, 84.88576449912127, 5.5e-38], ["AAC82548.1", "unknown", "BGC0000351", 1, "NRP", 27.0, 158.0, 91.3884007029877, 5.5e-38], ["ANP43732.1", "ThsT", "BGC0001391", 1, "RiPP", 27.0, 158.0, 97.36379613356766, 5.5e-38], ["CAP20371.1", "ABC_transporter_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 26.0, 157.0, 99.82425307557118, 7.2e-38], ["QEG98936.1", "ant21", "BGC0002042", 1, "NRP", 31.0, 157.0, 69.24428822495607, 7.2e-38], ["QVK45109.1", "ABC_transporter", "BGC0002438", 1, "Alkaloid", 27.0, 157.0, 86.8189806678383, 7.2e-38], ["ADI10107.1", "type_II_lanthionine_synthetase_and_transporter", "BGC0001229", 1, "RiPP:Lanthipeptide", 27.0, 157.0, 95.60632688927943, 9.4e-38], ["ABV83219.1", "CppH", "BGC0000116", 1, "Polyketide", 25.0, 156.0, 92.09138840070298, 1.2e-37], ["ALK27913.1", "putative_ABC_transporter", "BGC0001233", 1, "NRP", 28.0, 156.0, 102.81195079086116, 1.2e-37], ["AQZ71346.1", "ABC_transporter", "BGC0001635", 1, "NRP+Polyketide", 26.0, 156.0, 102.63620386643233, 1.2e-37], ["CAD15510.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 28.0, 156.0, 99.64850615114236, 1.6e-37], ["BAL15734.1", "ABC_transporter", "BGC0000432", 1, "NRP", 26.0, 155.0, 98.06678383128296, 3.6e-37], ["CBG75489.1", "putative_ABC-transport_system_ATP-binding_component", "BGC0000423", 1, "NRP", 27.0, 155.0, 98.76977152899823, 4.6e-37], ["CAG38699.1", "putative_ABC-transporter,_ATP-binding_protein", "BGC0000708", 1, "Saccharide", 28.0, 154.0, 96.66080843585237, 6.1e-37], ["CAD91219.1", "putative_ABC_transporter,_Dbv24", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 154.0, 102.63620386643233, 7.9e-37], ["ALE27499.1", "ABC_transporter", "BGC0001292", 1, "Other", 27.0, 154.0, 83.83128295254832, 7.9e-37], ["BAJ19059.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 28.0, 152.0, 86.46748681898066, 2.3e-36], ["CAA11793.1", "PCZA363.2", "BGC0000322", 1, "NRP", 26.0, 152.0, 103.51493848857645, 2.3e-36], ["BAI23328.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 28.0, 152.0, 86.64323374340948, 2.3e-36], ["BAP05577.1", "calU", "BGC0000967", 1, "NRP+Polyketide:Trans-AT type I polyketide", 26.0, 152.0, 100.0, 3e-36], ["MBE3200462.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 28.0, 152.0, 87.87346221441125, 3e-36], ["AGS77319.1", "ABC_transporter", "BGC0001178", 1, "NRP:Glycopeptide", 26.0, 151.0, 102.46045694200352, 3.9e-36], ["QKV49895.1", "BrtT", "BGC0002110", 1, "RiPP:Lanthipeptide", 27.0, 151.0, 97.89103690685414, 3.9e-36], ["CAI47637.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 26.0, 151.0, 85.23725834797891, 5.1e-36], ["AKQ52537.1", "ABC_transporter_ATP-binding_protein", "BGC0002533", 1, "NRP+Polyketide", 32.0, 151.0, 49.38488576449912, 6.7e-36], ["CAJ87587.1", "putative_ABC_transporter_protein", "BGC0001055", 1, "NRP+Polyketide", 28.0, 150.0, 83.6555360281195, 8.8e-36], ["AAB81307.1", "ATP-dependent_translocator", "BGC0002579", 1, "RiPP", 26.0, 150.0, 95.43057996485061, 8.8e-36], ["AZM57021.1", "ABC_transporter", "BGC0002314", 1, "NRP", 27.0, 150.0, 89.80667838312829, 1.1e-35], ["AKU20512.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 28.0, 150.0, 86.46748681898066, 1.1e-35], ["XP_011392729.1", "ABC_transporter", "BGC0001281", 1, "Polyketide", 27.0, 149.0, 92.09138840070298, 2.5e-35], ["BAB04170.1", "lantibiotic_haloduracin_protease_and_transporter", "BGC0000517", 1, "RiPP:Lanthipeptide", 27.0, 148.0, 101.40597539543057, 3.3e-35], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 26.0, 148.0, 79.61335676625659, 3.3e-35], ["AMQ71643.1", "hypothetical_protein", "BGC0002663", 1, "RiPP", 26.0, 148.0, 98.94551845342706, 3.3e-35], ["CBL93714.1", "ABC_multidrug_transporter", "BGC0000360", 1, "NRP", 26.0, 148.0, 98.76977152899823, 4.3e-35], ["CCC55903.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 27.0, 148.0, 99.29701230228471, 4.3e-35], ["OLZ50884.1", "ABC_transporter", "BGC0001461", 1, "NRP:Glycopeptide", 26.0, 148.0, 102.63620386643233, 4.3e-35], ["AYA22337.1", "Tri", "BGC0001955", 1, "NRP", 26.0, 148.0, 102.63620386643233, 4.3e-35], ["AEI58864.1", "ABC_transporter", "BGC0000455", 1, "NRP", 26.0, 148.0, 102.98769771528997, 5.7e-35], ["CAD15511.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 29.0, 147.0, 85.76449912126537, 7.4e-35], ["AVX51095.1", "nysG", "BGC0001709", 1, "Polyketide", 25.0, 147.0, 89.45518453427064, 7.4e-35], ["AFD30963.1", "CrmT2", "BGC0000966", 1, "NRP+Polyketide", 27.0, 147.0, 92.61862917398945, 9.7e-35], ["AIE77056.1", "ABC-transporter", "BGC0000418", 1, "NRP", 26.0, 146.0, 101.93321616871704, 1.7e-34], ["EDY04298.1", "ABC_transporter-related_protein", "BGC0000516", 1, "RiPP:Lanthipeptide", 27.0, 146.0, 102.10896309314587, 2.2e-34], ["ALE27500.1", "ABC_transporter", "BGC0001292", 1, "Other", 27.0, 145.0, 99.29701230228471, 2.8e-34], ["QYA95652.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002676", 1, "NRP", 26.0, 145.0, 96.1335676625659, 3.7e-34], ["AAS92552.1", "SirA", "BGC0001044", 1, "NRP", 27.0, 144.0, 90.15817223198594, 6.3e-34], ["AIG79244.1", "Conserved_putative_membrane_protein", "BGC0000419", 1, "Saccharide+NRP:Glycopeptide", 25.0, 144.0, 101.93321616871704, 8.2e-34], ["MCC5036771.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 27.0, 143.0, 84.3585237258348, 1.4e-33], ["CAG25756.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000311", 1, "NRP", 26.0, 142.0, 103.86643233743409, 2.4e-33], ["AAF71763.1", "nysG", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 24.0, 142.0, 90.33391915641477, 3.1e-33], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 25.0, 141.0, 80.14059753954305, 4.1e-33], ["AIS24846.1", "dst20", "BGC0001147", 1, "NRP", 27.0, 141.0, 86.46748681898066, 4.1e-33], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 25.0, 141.0, 95.43057996485061, 6.9e-33], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 25.0, 140.0, 94.37609841827768, 9.1e-33], ["AXG47409.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 28.0, 140.0, 81.195079086116, 9.1e-33], ["QYC40286.1", "Multidrug_export_ATP-binding/permease_protein", "BGC0002344", 1, "NRP", 27.0, 140.0, 102.10896309314587, 1.2e-32], ["QEG98937.1", "ant20", "BGC0002042", 1, "NRP", 27.0, 139.0, 90.15817223198594, 1.5e-32], ["MBE3200463.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 27.0, 139.0, 91.91564147627417, 1.5e-32], ["WP_010071703.1", "peptidase_domain-containing_ABC_transporter", "BGC0000554", 1, "RiPP:Lanthipeptide", 28.0, 139.0, 81.01933216168717, 2e-32], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 25.0, 139.0, 94.37609841827768, 2.6e-32], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 25.0, 139.0, 102.81195079086116, 2.6e-32], ["CAJ87588.1", "putative_inner_membrane_ABC-transporter", "BGC0001055", 1, "NRP+Polyketide", 28.0, 138.0, 88.40070298769771, 4.5e-32], ["OKA09422.1", "ABC_transporter", "BGC0001459", 1, "NRP:Glycopeptide", 26.0, 138.0, 104.04217926186293, 5.9e-32], ["CAE53357.1", "ABC_transporter", "BGC0000440", 1, "NRP:Glycopeptide", 26.0, 137.0, 90.68541300527241, 7.7e-32], ["CAG15016.1", "ABC_transporter", "BGC0000441", 1, "NRP", 26.0, 137.0, 90.68541300527241, 7.7e-32], ["WP_245193312.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002011", 1, "Polyketide", 26.0, 137.0, 97.01230228471002, 7.7e-32], ["QGJ79656.1", "ABC_transporter", "BGC0002552", 1, "Polyketide", 26.0, 137.0, 97.01230228471002, 7.7e-32], ["OLZ52458.1", "ABC_transporter", "BGC0001462", 1, "NRP:Glycopeptide", 26.0, 137.0, 102.98769771528997, 1e-31], ["CCC55904.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 28.0, 136.0, 86.8189806678383, 1.3e-31], ["AQZ42156.1", "putative_ABC_multidrug_transporter", "BGC0001820", 1, "NRP", 25.0, 136.0, 94.02460456942003, 1.3e-31], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 32.0, 136.0, 66.78383128295255, 1.7e-31], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 28.0, 136.0, 55.18453427065027, 2.2e-31], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 24.0, 135.0, 92.97012302284709, 2.9e-31], ["AKU24610.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 25.0, 133.0, 99.12126537785588, 1.1e-30], ["CAB53323.1", "putative_ABC-transporter_transmembrane_protein", "BGC0000325", 1, "NRP", 26.0, 133.0, 100.17574692442884, 1.4e-30], ["ABW70811.1", "PchH", "BGC0002475", 1, "NRP", 29.0, 133.0, 98.24253075571178, 1.4e-30], ["CAA12529.1", "ExsA_protein", "BGC0000802", 1, "Saccharide", 24.0, 133.0, 101.40597539543057, 1.9e-30], ["EKJ70675.1", "hypothetical_protein", "BGC0002188", 1, "NRP+Polyketide", 25.0, 132.0, 105.79964850615113, 2.5e-30], ["ALN78925.1", "ABC_transporter_family_protein", "BGC0002630", 1, "RiPP", 25.0, 132.0, 92.61862917398945, 2.5e-30], ["EHQ60564.1", "ABC_transporter", "BGC0001356", 1, "RiPP", 26.0, 132.0, 85.76449912126537, 3.2e-30], ["BAU50927.1", "ABC_transporter", "BGC0001379", 1, "NRP", 24.0, 131.0, 97.53954305799648, 4.2e-30], ["AGI92082.1", "HlyB/MsbA_family_ABC_transporter", "BGC0002115", 1, "RiPP:Other", 36.0, 131.0, 41.65202108963093, 4.2e-30], ["CAX48974.1", "ABC-transporter", "BGC0000519", 1, "RiPP:Lanthipeptide", 27.0, 131.0, 84.71001757469244, 7.2e-30], ["AZM50109.1", "ABC_transporter", "BGC0002702", 1, "NRP", 25.0, 129.0, 100.70298769771529, 2.1e-29], ["BAG22745.1", "putative_ABC-type_multidrug_transport_system_ATPase_and_permease_component", "BGC0000724", 1, "Saccharide", 27.0, 128.0, 96.30931458699473, 4.7e-29], ["CBW73574.1", "Multidrug_resistance_ABC_transporter_ATP-binding_and_permease_protein", "BGC0002325", 1, "RiPP", 37.0, 128.0, 37.08260105448154, 4.7e-29], ["CCA53801.1", "Transport_ATP-binding_protein_CydC", "BGC0001801", 1, "NRP", 28.0, 127.0, 84.18277680140598, 7.9e-29], ["AAK27372.1", "ABC_transporter", "BGC0000623", 1, "RiPP", 26.0, 127.0, 100.0, 1e-28], ["CAA07371.1", "StrW", "BGC0000690", 1, "Saccharide", 25.0, 127.0, 96.1335676625659, 1e-28], ["AFY23032.1", "TamA", "BGC0000274", 1, "Polyketide:Type II polyketide", 35.0, 126.0, 44.81546572934973, 1.4e-28], ["EME52991.1", "ABC_transporter", "BGC0001460", 1, "NRP:Glycopeptide", 25.0, 123.0, 89.80667838312829, 1.1e-27], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 23.0, 119.0, 98.76977152899823, 2.8e-26], ["KAH7877381.1", "multidrug_resistance-associated_ABC_transporter", "BGC0002747", 1, "RiPP", 26.0, 118.0, 82.60105448154658, 3.7e-26], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 25.0, 118.0, 88.40070298769771, 4.8e-26], ["AAB92603.1", "ScnT", "BGC0000557", 1, "RiPP:Lanthipeptide", 24.0, 118.0, 91.73989455184535, 6.3e-26], ["AYJ71715.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001942", 1, "NRP+Polyketide", 22.0, 117.0, 98.76977152899823, 1.1e-25], ["BAP82652.1", "ABC_transporter", "BGC0001148", 1, "NRP+RiPP", 27.0, 116.0, 89.98242530755711, 2.4e-25], ["AHX39584.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 21.0, 115.0, 93.49736379613357, 4.1e-25], ["AXG47408.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 26.0, 114.0, 92.97012302284709, 5.3e-25], ["QFU91020.1", "Lipid_A_export_ATP-binding/permease_protein_MsbA", "BGC0002064", 1, "RiPP", 27.0, 114.0, 85.41300527240774, 9.1e-25], ["AGI92083.1", "ABC_efflux_pump", "BGC0002115", 1, "RiPP:Other", 27.0, 113.0, 86.11599297012302, 1.2e-24], ["AHW81481.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 24.0, 113.0, 93.84885764499121, 1.6e-24], ["CBW74823.1", "Multidrug_resistance_ABC_transporter_ATP-binding_and_permease_protein", "BGC0000571", 1, "RiPP:Lassopeptide", 25.0, 113.0, 97.01230228471002, 2e-24], ["ABK59359.1", "MukT", "BGC0000534", 1, "RiPP:Lanthipeptide", 24.0, 111.0, 86.29173989455184, 4.5e-24], ["AAL15565.1", "putative_SpaT", "BGC0000511", 1, "RiPP:Lanthipeptide", 24.0, 111.0, 91.73989455184535, 5.9e-24], ["ADM69295.1", "paenilan_transporter", "BGC0001727", 1, "RiPP", 24.0, 110.0, 103.86643233743409, 1e-23], ["simD", "", "BGC0000334", 1, "NRP", 25.0, 110.0, 78.03163444639719, 1.3e-23], ["CRG85577.1", "hypothetical_protein", "BGC0001402", 1, "NRP", 35.0, 109.0, 39.015817223198596, 1.7e-23], ["ACX68645.1", "putative_ABC_transporter", "BGC0000547", 1, "RiPP:Lanthipeptide", 23.0, 108.0, 98.24253075571178, 3.8e-23], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 25.0, 107.0, 100.70298769771529, 8.5e-23], ["ABO65651.1", "Putative_SpaT", "BGC0000515", 1, "RiPP:Lanthipeptide", 25.0, 107.0, 94.02460456942003, 1.1e-22], ["XP_020058106.1", "uncharacterized_protein", "BGC0001220", 1, "NRP", 25.0, 107.0, 84.18277680140598, 1.1e-22], ["AHW81482.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 35.0, 106.0, 33.91915641476274, 1.5e-22], ["AAC72259.1", "LctT", "BGC0000521", 1, "RiPP:Lanthipeptide", 24.0, 106.0, 97.18804920913884, 1.9e-22], ["BAG19224.1", "membrane_translocator", "BGC0000496", 1, "RiPP:Lanthipeptide", 27.0, 105.0, 61.511423550087876, 4.2e-22], ["MBE3202945.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 26.0, 104.0, 95.2548330404218, 7.2e-22], ["AEK64492.1", "EtnT", "BGC0000506", 1, "RiPP:Lanthipeptide", 24.0, 103.0, 91.73989455184535, 1.2e-21], ["ASY03219.1", "NsoT", "BGC0001701", 1, "RiPP:Lanthipeptide", 24.0, 103.0, 100.35149384885764, 1.2e-21], ["QIW91876.1", "TRT", "BGC0002543", 1, "NRP", 26.0, 103.0, 82.42530755711776, 1.2e-21], ["AKJ70948.1", "multidrug_transporter_(ABC)", "BGC0002611", 1, "NRP", 24.0, 103.0, 82.95254833040421, 1.6e-21], ["BAC87910.1", "probable_ABC_transporter", "BGC0000294", 1, "NRP", 27.0, 102.0, 55.711775043936726, 3.6e-21], ["BAC98761.2", "NukT", "BGC0000539", 1, "RiPP:Lanthipeptide", 24.0, 101.0, 84.53427065026362, 6.1e-21], ["ALK21573.1", "glycosyl_transferase_family_2", "BGC0002678", 1, "NRP", 26.0, 101.0, 102.81195079086116, 8e-21], ["QYI86759.1", "putative_ABC_transporter", "BGC0002424", 1, "NRP", 23.0, 100.0, 94.5518453427065, 1e-20], ["AAB91587.1", "SpaT", "BGC0000559", 1, "RiPP:Lanthipeptide", 23.0, 100.0, 91.73989455184535, 1.4e-20], ["AMM63163.1", "AniL", "BGC0001371", 1, "NRP", 25.0, 100.0, 83.83128295254832, 1.4e-20], ["QWT72283.1", "ABC_transporter_ATP-binding_protein", "BGC0002430", 1, "NRP+Saccharide", 26.0, 99.0, 80.14059753954305, 3e-20], ["WP_014929841.1", "ABC_transporter_transmembrane_domain-containing_protein", "BGC0001864", 1, "RiPP:Glycocin", 22.0, 97.0, 96.66080843585237, 6.7e-20], ["MBX4267533.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002668", 1, "RiPP", 27.0, 97.0, 55.008787346221446, 1.1e-19], ["AEX55160.1", "putative_ABC_transporter_SlvT", "BGC0000549", 1, "RiPP:Lanthipeptide", 23.0, 95.0, 100.70298769771529, 3.3e-19], ["ABI30230.1", "McdT", "BGC0000526", 1, "RiPP:Lanthipeptide", 23.0, 95.0, 94.72759226713534, 4.4e-19], ["ALK21572.1", "multidrug_ABC_transporter_permease", "BGC0002678", 1, "NRP", 25.0, 91.0, 86.99472759226714, 4.8e-18], ["CAX48975.1", "ABC-transporter", "BGC0000519", 1, "RiPP:Lanthipeptide", 26.0, 89.0, 67.48681898066783, 2.4e-17], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 22.0, 88.0, 84.88576449912127, 5.3e-17], ["BAG71481.1", "ATP-binding_cassette_transporter", "BGC0000536", 1, "RiPP:Lanthipeptide", 21.0, 87.0, 101.05448154657293, 7e-17], ["AAG32539.1", "SalX", "BGC0000548", 1, "RiPP:Lanthipeptide", 30.0, 87.0, 35.50087873462214, 1.2e-16], ["AFJ23828.1", "MacB-like_ABC_transporter_protein", "BGC0001838", 1, "NRP", 30.0, 86.0, 42.70650263620387, 1.6e-16], ["CAA79469.1", "NisT_protein", "BGC0000538", 1, "RiPP:Lanthipeptide", 22.0, 86.0, 95.07908611599298, 2e-16], ["CQR60039.1", "Lactococcin_transport/processing_ATP-binding_protein_LcnC-like", "BGC0002289", 1, "RiPP", 31.0, 85.0, 38.664323374340945, 3.5e-16], ["EPF88078.1", "hypothetical_protein", "BGC0001494", 1, "RiPP", 22.0, 84.0, 95.2548330404218, 5.9e-16], ["AAO56331.1", "syringafactin_efflux_protein_SyfD", "BGC0000435", 1, "NRP", 28.0, 84.0, 42.35500878734622, 1e-15], ["BAB08163.1", "SrtT", "BGC0000556", 1, "RiPP:Lanthipeptide", 25.0, 81.0, 76.09841827768014, 8.5e-15], ["CBF73441.1", "ABC_transporter_(Eurofung)", "BGC0001515", 1, "NRP", 23.0, 81.0, 86.64323374340948, 8.5e-15], ["QGQ63522.1", "permease_protein_MacB", "BGC0002548", 1, "NRP", 29.0, 81.0, 41.82776801405975, 8.5e-15], ["QDF82252.1", "macrolide_export_ATP-binding/permease_protein", "BGC0001980", 1, "NRP", 27.0, 80.0, 45.16695957820738, 1.1e-14], ["AHZ34236.1", "MacB", "BGC0000323", 1, "NRP:Lipopeptide", 27.0, 80.0, 42.70650263620387, 1.5e-14], ["WP_064118557.1", "MacB_family_efflux_pump_subunit", "BGC0001509", 1, "NRP", 30.0, 80.0, 37.258347978910365, 1.5e-14], ["AUD08667.1", "ABC_transporter_ATP-binding_protein", "BGC0001553", 1, "NRP+Polyketide", 30.0, 80.0, 37.258347978910365, 1.5e-14], ["QNL34620.1", "MacB2", "BGC0002092", 1, "NRP:Cyclic depsipeptide", 30.0, 80.0, 37.258347978910365, 1.5e-14], ["ARE67845.1", "AbsF4", "BGC0001492", 1, "Polyketide", 29.0, 79.0, 42.88224956063269, 2.5e-14], ["CAK15812.1", "macrolide_ABC_efflux_protein_MacB", "BGC0000344", 1, "NRP", 28.0, 78.0, 41.12478031634446, 5.5e-14], ["ABA73958.1", "macrolide-specific_ABC-type_efflux_carrier", "BGC0001842", 1, "NRP:Lipopeptide", 29.0, 78.0, 44.63971880492091, 5.5e-14], ["AOA33125.1", "ABC_transporter_ATP-binding_protein", "BGC0001346", 1, "NRP:Cyclic depsipeptide", 28.0, 77.0, 40.77328646748682, 9.4e-14], ["AVI57415.1", "AbmF4", "BGC0001694", 1, "Polyketide", 31.0, 76.0, 43.7609841827768, 1.6e-13], ["QBQ12454.1", "MacB_family_efflux_pump_subunit", "BGC0002693", 1, "NRP", 31.0, 76.0, 37.434094903339194, 2.1e-13], ["ABW17379.1", "MacB", "BGC0000411", 1, "NRP", 30.0, 76.0, 41.65202108963093, 2.7e-13], ["CCM44327.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 30.0, 76.0, 37.258347978910365, 2.7e-13], ["QMN69936.1", "PsoE", "BGC0002521", 1, "NRP", 27.0, 74.0, 43.58523725834798, 8e-13], ["AAY93343.1", "efflux_ABC_transporter,_ATP-binding/permease_protein", "BGC0000413", 1, "NRP", 32.0, 74.0, 39.54305799648506, 1e-12], ["KKP00962.1", "hypothetical_protein", "BGC0001854", 1, "Polyketide:Iterative type I polyketide", 22.0, 74.0, 99.47275922671353, 1e-12], ["BCJ07527.1", "macrolide_export_ATP-binding/permease_protein_MacB_2", "BGC0002379", 1, "NRP", 28.0, 73.0, 40.070298769771526, 1.4e-12], ["CAY48791.1", "macrolide-specific_ABC-type_efflux_carrier", "BGC0001312", 1, "NRP", 28.0, 72.0, 38.488576449912124, 2.3e-12], ["BDA39144.1", "ABC_transporter", "BGC0001398", 1, "RiPP", 31.0, 72.0, 37.434094903339194, 2.3e-12], ["AHZ34249.1", "MacB", "BGC0001389", 1, "NRP", 29.0, 71.0, 37.08260105448154, 6.8e-12], ["AHY06375.1", "phosphonate_ABC_transporter_ATP-binding_protein", "BGC0002496", 1, "NRP", 24.0, 67.0, 40.77328646748682, 1.3e-10], ["AAC18099.1", "ATPase_component_of_putative_ABC_transporter", "BGC0000225", 1, "Polyketide", 28.0, 64.0, 37.434094903339194, 1.1e-09], ["WP_141576250.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 30.0, 62.0, 33.04042179261863, 3.1e-09], ["BAU50928.1", "ABC_transporter", "BGC0001379", 1, "NRP", 23.0, 62.0, 73.81370826010544, 4.1e-09], ["ctg1_orf169", "", "BGC0001638", 1, "RiPP", 23.0, 61.0, 69.77152899824253, 7e-09], ["ABC50111.1", "unknown", "BGC0000643", 1, "Terpene", 28.0, 59.0, 38.3128295254833, 2e-08], ["AOT85881.1", "ABC_transporter", "BGC0001787", 1, "RiPP", 22.0, 59.0, 95.43057996485061, 3.5e-08], ["CAF31834.1", "hypotheticl_protein", "BGC0000699", 1, "Saccharide", 27.0, 58.0, 41.12478031634446, 5.9e-08], ["CCQ18690.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 28.0, 56.0, 29.876977152899826, 2.2e-07], ["QOE88887.1", "ABC_transporter", "BGC0002260", 1, "Terpene", 21.0, 56.0, 90.86115992970123, 2.9e-07], ["CZT62789.1", "ABC-type_uncharacterized_transport_system,_permease_and_ATPase_components,_involved_in_Hassallidin_biosynthesis", "BGC0001614", 1, "NRP", 28.0, 55.0, 29.349736379613354, 3.8e-07], ["AFO93372.1", "ABC_transporter,_ATP-binding_protein", "BGC0000932", 1, "Other", 25.0, 54.0, 43.05799648506151, 8.5e-07], ["OAQ83754.1", "ABC_multidrug_transporter", "BGC0001358", 1, "NRP+Polyketide", 24.0, 52.0, 42.70650263620387, 3.2e-06], ["MBE3200461.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002409", 1, "NRP", 32.0, 51.0, 29.349736379613354, 5.5e-06], ["ACN29728.1", "putative_ABC_transporter", "BGC0000814", 1, "Alkaloid", 26.0, 51.0, 42.70650263620387, 7.2e-06]], "MAAAAKME_00270": [["QIW19940.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002111", 1, "RiPP:Lanthipeptide", 32.0, 379.0, 101.32052821128453, 2.2e-104], ["WP_164776400.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002701", 1, "RiPP", 31.0, 374.0, 98.67947178871549, 5.5e-103], ["KXZ21037.1", "hypothetical_protein", "BGC0002700", 1, "RiPP", 31.0, 372.0, 103.24129651860746, 2.7e-102], ["CAM03499.1", "serine/threonine_protein_kinase", "BGC0000513", 1, "RiPP:Lanthipeptide", 30.0, 290.0, 100.12004801920769, 7.9e-78], ["SSHG_03588", "serine/threonine_protein_kinase", "BGC0000546", 1, "RiPP:Lanthipeptide", 30.0, 285.0, 101.20048019207684, 2.6e-76], ["WP_037629851.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000546", 1, "RiPP:Lanthipeptide", 30.0, 285.0, 101.20048019207684, 2.6e-76], ["ACU73103.1", "serine/threonine_protein_kinase", "BGC0000501", 1, "RiPP:Lanthipeptide", 30.0, 269.0, 99.39975990396158, 1.9e-71], ["CAX48971.1", "serine/threonine_kinase", "BGC0000519", 1, "RiPP:Lanthipeptide", 28.0, 267.0, 99.75990396158463, 1.2e-70], ["CAA19960.1", "putative_serine/threonine_protein_kinase", "BGC0000551", 1, "RiPP:Lanthipeptide", 28.0, 242.0, 101.68067226890756, 2.5e-63], ["BAG19226.1", "AmfT_protein", "BGC0000496", 1, "RiPP:Lanthipeptide", 28.0, 228.0, 100.6002400960384, 6.3e-59], ["WP_205382163.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000553", 1, "RiPP:Lanthipeptide", 36.0, 221.0, 49.69987995198079, 5.9e-57], ["AIW58891.1", "putative_serine/threonine_protein_kinase", "BGC0001582", 1, "NRP", 32.0, 148.0, 45.01800720288116, 8.3e-35], ["AAP03109.1", "putative_serine/threonine_protein_kinase", "BGC0000874", 1, "Other", 29.0, 147.0, 49.57983193277311, 1.1e-34], ["AFO59873.1", "hypothetical_protein", "BGC0000175", 1, "Polyketide:Trans-AT type I polyketide", 29.0, 119.0, 46.818727490996395, 4.1e-26]], "MAAAAKME_00300": [["CAK15811.1", "putative_polyamine_ABC_transporter,_ATP_binding_protein", "BGC0000344", 1, "NRP", 38.0, 135.0, 93.86792452830188, 1.4e-31], ["AAU39356.1", "putative_spermidine/putrescine_ABC_transporter_ATP-binding_protein", "BGC0000381", 1, "NRP", 39.0, 121.0, 93.86792452830188, 2.8e-27], ["AAM97297.1", "lipoprotein_releasing_system_ATP-binding_protein_LolD", "BGC0001591", 1, "Other", 35.0, 113.0, 101.41509433962264, 4.4e-25], ["DAB41657.1", "ABC_transporter", "BGC0001585", 1, "Alkaloid", 35.0, 113.0, 97.16981132075472, 7.5e-25], ["EKJ70675.1", "hypothetical_protein", "BGC0002188", 1, "NRP+Polyketide", 33.0, 113.0, 104.24528301886792, 7.5e-25], ["QYB25771.1", "ABC_transporter_ATP-binding_protein", "BGC0002425", 1, "RiPP", 37.0, 113.0, 101.88679245283019, 7.5e-25], ["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 31.0, 109.0, 102.35849056603774, 6.4e-24], ["MCF2150409.1", "DevA-like,_part_of_ABC_transporter", "BGC0002625", 1, "NRP+Polyketide", 35.0, 109.0, 103.30188679245282, 8.3e-24], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 33.0, 109.0, 103.30188679245282, 1.1e-23], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 33.0, 109.0, 103.30188679245282, 1.1e-23], ["AWR88426.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001522", 1, "Polyketide", 37.0, 109.0, 93.39622641509435, 1.1e-23], ["AAZ23072.1", "hypothetical_protein", "BGC0000291", 1, "NRP", 36.0, 108.0, 102.8301886792453, 1.4e-23], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 33.0, 108.0, 103.30188679245282, 1.9e-23], ["EEM14530.1", "hypothetical_protein", "BGC0001210", 1, "RiPP", 31.0, 108.0, 95.75471698113208, 1.9e-23], ["BCK51660.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002520", 1, "Polyketide", 36.0, 108.0, 93.86792452830188, 1.9e-23], ["BAK64654.1", "putative_transporter", "BGC0000135", 1, "Polyketide", 37.0, 108.0, 95.75471698113208, 2.4e-23], ["AHF21240.1", "CrnT", "BGC0000500", 1, "RiPP:Lanthipeptide", 29.0, 107.0, 103.77358490566037, 3.2e-23], ["QBF51773.1", "ABC_transporter_permease_component", "BGC0001856", 1, "Polyketide:Modular type I polyketide", 35.0, 107.0, 89.62264150943396, 3.2e-23], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 32.0, 107.0, 105.18867924528301, 3.2e-23], ["TXC99997.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001877", 1, "Polyketide", 34.0, 107.0, 96.22641509433963, 4.1e-23], ["MBN3579118.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 31.0, 106.0, 97.64150943396226, 5.4e-23], ["AFJ14797.1", "PlpH", "BGC0000403", 1, "NRP", 32.0, 106.0, 103.30188679245282, 7.1e-23], ["QED93126.1", "ABC_transporter_ATP-binding_protein", "BGC0002556", 1, "Alkaloid", 36.0, 106.0, 100.47169811320755, 7.1e-23], ["ADI10107.1", "type_II_lanthionine_synthetase_and_transporter", "BGC0001229", 1, "RiPP:Lanthipeptide", 31.0, 106.0, 100.0, 9.2e-23], ["QTH19310.1", "ABC_transporter_ATP-binding_protein", "BGC0002442", 1, "RiPP", 35.0, 106.0, 94.33962264150944, 9.2e-23], ["BAC87910.1", "probable_ABC_transporter", "BGC0000294", 1, "NRP", 32.0, 105.0, 93.39622641509435, 1.2e-22], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 33.0, 105.0, 99.52830188679245, 1.6e-22], ["EDU38312.1", "ABC_transporter,_ATP-binding_protein", "BGC0001170", 1, "RiPP:LAP", 31.0, 104.0, 94.33962264150944, 2.1e-22], ["CAD91242.1", "hypothetical_protein", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 36.0, 104.0, 93.86792452830188, 2.7e-22], ["CUX79064.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001715", 1, "NRP", 31.0, 104.0, 102.8301886792453, 2.7e-22], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 31.0, 103.0, 97.64150943396226, 4.6e-22], ["CAA90021.1", "PepT", "BGC0000543", 1, "RiPP:Lanthipeptide", 31.0, 103.0, 98.58490566037736, 4.6e-22], ["QBY34564.1", "CycF", "BGC0002447", 1, "RiPP", 32.0, 103.0, 95.28301886792453, 4.6e-22], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 31.0, 103.0, 96.69811320754717, 4.6e-22], ["EWC60873.1", "hypothetical_protein", "BGC0001496", 1, "RiPP", 34.0, 103.0, 96.22641509433963, 6e-22], ["ACZ21385.1", "ABC-type_multidrug_transport_system,_ATPase_and_permease_component", "BGC0002298", 1, "RiPP", 34.0, 103.0, 99.52830188679245, 6e-22], ["CAL82046.1", "putative_cytolysin_ABC_transporter,_ATP-binding_protein", "BGC0000564", 1, "RiPP:LAP", 30.0, 102.0, 94.33962264150944, 7.8e-22], ["AKQ99290.1", "ABC_transporter,partial", "BGC0001484", 1, "Other", 31.0, 102.0, 101.41509433962264, 7.8e-22], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 31.0, 102.0, 102.8301886792453, 1e-21], ["AAG32538.1", "SalT", "BGC0000548", 1, "RiPP:Lanthipeptide", 28.0, 102.0, 103.77358490566037, 1e-21], ["AAP85350.1", "ATP-binding_protein", "BGC0000233", 1, "Polyketide", 35.0, 101.0, 90.09433962264151, 2.3e-21], ["CAD97586.1", "ATP_binding_protein", "BGC0000488", 1, "RiPP:Head-to-tailcyclized peptide", 32.0, 101.0, 104.71698113207549, 2.3e-21], ["MBA0053734.1", "ABC_transporter_ATP-binding_protein", "BGC0002096", 1, "Polyketide", 31.0, 101.0, 100.47169811320755, 2.3e-21], ["AAS92552.1", "SirA", "BGC0001044", 1, "NRP", 29.0, 101.0, 107.54716981132076, 3e-21], ["WP_152962146.1", "darobactin_export_ABC_transporter_ATP-binding_protein", "BGC0002116", 1, "RiPP:Other", 32.0, 101.0, 94.81132075471697, 3e-21], ["ACI07020.1", "ABC_transporter,_ATP-binding_protein", "BGC0001684", 1, "Other", 28.0, 100.0, 98.58490566037736, 5.1e-21], ["MBE3202945.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 35.0, 100.0, 94.33962264150944, 5.1e-21], ["EMC15128.1", "ABC_transporter,_ATP-binding_and_permease_protein", "BGC0000530", 1, "RiPP:Lanthipeptide", 32.0, 99.0, 94.81132075471697, 8.6e-21], ["BAF98636.1", "putative_ABC_transporter", "BGC0000651", 1, "Terpene", 32.0, 99.0, 101.41509433962264, 1.1e-20], ["CCM44327.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 33.0, 99.0, 96.69811320754717, 1.1e-20], ["CBJ82069.1", "ABC_Transporter,_ATP-binding_protein", "BGC0001872", 1, "Polyketide", 31.0, 98.0, 99.52830188679245, 1.9e-20], ["AKQ52537.1", "ABC_transporter_ATP-binding_protein", "BGC0002533", 1, "NRP+Polyketide", 33.0, 98.0, 101.41509433962264, 1.9e-20], ["CAJ88181.1", "putative_ABC_transporter,_ATP-binding_subunit", "BGC0000151", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 36.0, 97.0, 93.86792452830188, 2.5e-20], ["AXG47409.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 34.0, 97.0, 96.69811320754717, 3.3e-20], ["AAY59067.1", "ATP-binding_protein", "BGC0000128", 1, "Polyketide", 31.0, 97.0, 100.47169811320755, 4.3e-20], ["AEK64496.1", "EtnF", "BGC0000506", 1, "RiPP:Lanthipeptide", 33.0, 97.0, 92.45283018867924, 4.3e-20], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 31.0, 97.0, 101.41509433962264, 4.3e-20], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 32.0, 97.0, 100.47169811320755, 4.3e-20], ["ACC84963.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 29.0, 97.0, 93.86792452830188, 4.3e-20], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 33.0, 96.0, 92.9245283018868, 7.3e-20], ["DAC80066.1", "ABC_transporter_ATP-binding_protein", "BGC0001836", 1, "Polyketide:Trans-AT type I polyketide", 34.0, 96.0, 90.56603773584906, 7.3e-20], ["CAB01940.1", "ExpD1", "BGC0000801", 1, "Saccharide", 28.0, 96.0, 97.16981132075472, 9.5e-20], ["CYV09559.1", "ABC_transporter_NBP/MSD_fusion_protein", "BGC0002575", 1, "RiPP", 32.0, 96.0, 97.64150943396226, 9.5e-20], ["AAV66099.1", "PltJ", "BGC0000127", 1, "Polyketide", 31.0, 95.0, 100.0, 1.2e-19], ["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 26.0, 95.0, 102.35849056603774, 1.2e-19], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 32.0, 95.0, 98.11320754716981, 1.6e-19], ["ARK19492.1", "transporter", "BGC0001540", 1, "Other", 29.0, 94.0, 98.11320754716981, 2.1e-19], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 31.0, 94.0, 100.0, 2.1e-19], ["MBX4265669.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002667", 1, "RiPP", 27.0, 94.0, 101.88679245283019, 2.8e-19], ["AAB91597.1", "SpaF", "BGC0000559", 1, "RiPP:Lanthipeptide", 32.0, 94.0, 91.98113207547169, 3.6e-19], ["PHM26616.1", "daunorubicin-DIM-transport_ATP-binding_protein_ABC_transporter_DrrA", "BGC0001130", 1, "NRP+Polyketide", 30.0, 93.0, 99.52830188679245, 4.7e-19], ["AQZ37089.1", "ABC_transporter_transmembrane_region_protein", "BGC0001511", 1, "Polyketide", 30.0, 93.0, 101.88679245283019, 4.7e-19], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 32.0, 93.0, 103.30188679245282, 6.2e-19], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 30.0, 92.0, 101.88679245283019, 8.1e-19], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 34.0, 92.0, 93.39622641509435, 8.1e-19], ["QDJ74277.1", "ATP-binding_protein", "BGC0002109", 1, "NRP", 34.0, 92.0, 93.39622641509435, 8.1e-19], ["AHI77484.1", "ABC_transporter_family_protein", "BGC0000572", 1, "RiPP:Lassopeptide", 28.0, 92.0, 100.0, 1.1e-18], ["AFU82624.1", "ABC_transporter,_ATPase_component", "BGC0000998", 1, "NRP+Polyketide", 32.0, 92.0, 94.33962264150944, 1.1e-18], ["ABS75252.1", "putative_ABC-transporter_ATP-binding_protein", "BGC0000616", 1, "RiPP:Head-to-tailcyclized peptide", 30.0, 92.0, 91.0377358490566, 1.4e-18], ["ATY37593.1", "BogF", "BGC0001532", 1, "NRP", 32.0, 92.0, 100.47169811320755, 1.4e-18], ["QTC09991.1", "ABC_transporter_ATP-binding_protein", "BGC0002372", 1, "Polyketide+Terpene+Alkaloid", 31.0, 92.0, 105.66037735849056, 1.4e-18], ["AAL15571.1", "putative_SpaF", "BGC0000511", 1, "RiPP:Lanthipeptide", 31.0, 91.0, 91.98113207547169, 1.8e-18], ["CAI47638.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 29.0, 91.0, 102.35849056603774, 1.8e-18], ["AKP45406.1", "ABC_transporter_ATP-binding_protein", "BGC0001413", 1, "NRP", 31.0, 91.0, 104.71698113207549, 1.8e-18], ["CBL93714.1", "ABC_multidrug_transporter", "BGC0000360", 1, "NRP", 31.0, 91.0, 97.64150943396226, 2.4e-18], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 26.0, 91.0, 99.52830188679245, 2.4e-18], ["AAK27372.1", "ABC_transporter", "BGC0000623", 1, "RiPP", 27.0, 91.0, 99.05660377358491, 2.4e-18], ["RMI87912.1", "sulfate_ABC_transporter_ATP-binding_protein", "BGC0002285", 1, "RiPP", 35.0, 91.0, 97.16981132075472, 2.4e-18], ["ACR33057.1", "ABC_transporter", "BGC0000495", 1, "RiPP:Lanthipeptide", 34.0, 91.0, 94.33962264150944, 3.1e-18], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 26.0, 91.0, 101.88679245283019, 3.1e-18], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 26.0, 91.0, 101.88679245283019, 3.1e-18], ["CUX79067.1", "Bicarbonate_transport_ATP-binding_protein_CmpC", "BGC0001715", 1, "NRP", 35.0, 91.0, 101.88679245283019, 3.1e-18], ["AGS66994.1", "daunorubicin_resistance_ABC_transporter_ATPase_subunit", "BGC0001226", 1, "RiPP:Lanthipeptide", 37.0, 90.0, 87.73584905660378, 5.2e-18], ["WP_030684648.1", "ABC_transporter_ATP-binding_protein", "BGC0001607", 1, "Other", 29.0, 90.0, 92.9245283018868, 5.2e-18], ["WP_078613549.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001550", 1, "RiPP", 32.0, 89.0, 95.28301886792453, 6.8e-18], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 28.0, 89.0, 98.58490566037736, 8.9e-18], ["AXM42912.1", "ABC_transporter_ATP-binding_protein", "BGC0001940", 1, "Polyketide", 37.0, 89.0, 89.62264150943396, 1.2e-17], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 28.0, 88.0, 98.58490566037736, 1.5e-17], ["CCM44340.1", "ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 31.0, 88.0, 91.50943396226415, 1.5e-17], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 28.0, 88.0, 98.58490566037736, 1.5e-17], ["QKV49895.1", "BrtT", "BGC0002110", 1, "RiPP:Lanthipeptide", 30.0, 88.0, 95.75471698113208, 2e-17], ["ABP54659.1", "ABC_transporter_related", "BGC0000241", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 87.0, 102.35849056603774, 2.6e-17], ["BAL72550.1", "lariatin_biosynthetic_protein", "BGC0000575", 1, "RiPP:Lassopeptide", 25.0, 87.0, 101.88679245283019, 2.6e-17], ["BAX64249.1", "ABC_transporter", "BGC0001623", 1, "NRP+Polyketide", 32.0, 87.0, 85.37735849056604, 2.6e-17], ["AFJ20779.1", "putative_ABC_transporter", "BGC0002300", 1, "NRP", 35.0, 87.0, 82.0754716981132, 3.4e-17], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 33.0, 87.0, 86.32075471698113, 4.4e-17], ["AGI92082.1", "HlyB/MsbA_family_ABC_transporter", "BGC0002115", 1, "RiPP:Other", 35.0, 87.0, 93.86792452830188, 4.4e-17], ["AMQ70217.1", "lantibiotic_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 31.0, 87.0, 95.28301886792453, 4.4e-17], ["AKJ15831.1", "ABC_transporter", "BGC0002735", 1, "Polyketide+NRP", 31.0, 87.0, 88.20754716981132, 4.4e-17], ["BAI63276.1", "putative_ABC_transporter", "BGC0000434", 1, "NRP", 32.0, 86.0, 96.69811320754717, 5.8e-17], ["AAC72253.1", "LctF", "BGC0000521", 1, "RiPP:Lanthipeptide", 28.0, 86.0, 99.52830188679245, 5.8e-17], ["AAD28497.1", "McjD", "BGC0000581", 1, "RiPP:Linaridin", 28.0, 86.0, 102.8301886792453, 7.6e-17], ["AEM00615.1", "ABC_transport_associated_protein", "BGC0000605", 1, "RiPP:Thiopeptide", 32.0, 86.0, 87.73584905660378, 7.6e-17], ["CYV09544.1", "ABC_transporter_ATP-binding_protein", "BGC0002575", 1, "RiPP", 30.0, 86.0, 104.71698113207549, 7.6e-17], ["AAK01464.1", "ABC_transporter", "BGC0000412", 1, "NRP", 32.0, 86.0, 94.81132075471697, 9.9e-17], ["AIS24846.1", "dst20", "BGC0001147", 1, "NRP", 29.0, 86.0, 95.75471698113208, 9.9e-17], ["ARD24450.1", "HyiF", "BGC0001618", 1, "RiPP", 27.0, 86.0, 100.47169811320755, 9.9e-17], ["AOT85882.1", "immunity_protein", "BGC0001787", 1, "RiPP", 29.0, 86.0, 99.05660377358491, 9.9e-17], ["WP_030193605.1", "ABC_transporter_ATP-binding_protein", "BGC0002669", 1, "RiPP", 32.0, 86.0, 96.22641509433963, 9.9e-17], ["BAC87909.1", "probable_ABC_transporter", "BGC0000294", 1, "NRP", 31.0, 85.0, 89.62264150943396, 1.3e-16], ["CAF31838.1", "putative_hygromycin_B_exporter", "BGC0000699", 1, "Saccharide", 29.0, 85.0, 100.9433962264151, 1.3e-16], ["EPH46600.1", "putative_Daunorubicin/doxorubicin_resistance_ATP-binding_protein_DrrA", "BGC0001519", 1, "NRP+Polyketide", 29.0, 85.0, 86.79245283018868, 1.3e-16], ["AEK75511.1", "ATP-binding_ABC_peptide_transporter", "BGC0000001", 1, "Polyketide:Modular type I polyketide", 33.0, 85.0, 83.49056603773585, 1.7e-16], ["AHZ61877.1", "ABC-transporter-like_protein", "BGC0000240", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 85.0, 102.35849056603774, 1.7e-16], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 27.0, 85.0, 98.58490566037736, 1.7e-16], ["AHX39585.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 30.0, 85.0, 102.8301886792453, 1.7e-16], ["AJV88390.1", "MfnR", "BGC0001214", 1, "NRP", 35.0, 85.0, 101.41509433962264, 1.7e-16], ["AGI89796.1", "ABC_transporter_ATP-binding_protein", "BGC0001792", 1, "NRP", 31.0, 85.0, 91.50943396226415, 1.7e-16], ["AAC18099.1", "ATPase_component_of_putative_ABC_transporter", "BGC0000225", 1, "Polyketide", 33.0, 84.0, 91.0377358490566, 2.2e-16], ["BAJ19058.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 30.0, 84.0, 91.0377358490566, 2.2e-16], ["ASY03219.1", "NsoT", "BGC0001701", 1, "RiPP:Lanthipeptide", 27.0, 84.0, 104.71698113207549, 2.2e-16], ["AXA91311.1", "peptidase_domain-containing_ABC_transporter", "BGC0002044", 1, "NRP", 29.0, 84.0, 99.05660377358491, 2.2e-16], ["QBA57757.1", "ABC_transporter", "BGC0002377", 1, "NRP", 30.0, 84.0, 101.41509433962264, 2.2e-16], ["MBN3579119.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 27.0, 84.0, 101.88679245283019, 2.9e-16], ["AHX39584.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 27.0, 84.0, 95.75471698113208, 3.8e-16], ["EPF88078.1", "hypothetical_protein", "BGC0001494", 1, "RiPP", 31.0, 84.0, 94.33962264150944, 3.8e-16], ["ASY03206.1", "NsoF", "BGC0001701", 1, "RiPP:Lanthipeptide", 30.0, 84.0, 91.98113207547169, 3.8e-16], ["AOT85881.1", "ABC_transporter", "BGC0001787", 1, "RiPP", 31.0, 84.0, 102.35849056603774, 3.8e-16], ["AAR12534.1", "putative_ABC_transporter", "BGC0002468", 1, "NRP", 30.0, 84.0, 100.0, 3.8e-16], ["CAB60255.1", "MrsF_protein", "BGC0000527", 1, "RiPP:Lanthipeptide", 31.0, 83.0, 83.49056603773585, 4.9e-16], ["CAF31834.1", "hypotheticl_protein", "BGC0000699", 1, "Saccharide", 31.0, 83.0, 90.56603773584906, 4.9e-16], ["AZF85928.1", "ABC_transporter", "BGC0001963", 1, "NRP+Polyketide", 30.0, 83.0, 90.56603773584906, 4.9e-16], ["AKJ70948.1", "multidrug_transporter_(ABC)", "BGC0002611", 1, "NRP", 26.0, 83.0, 100.9433962264151, 4.9e-16], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 34.0, 83.0, 83.01886792452831, 6.4e-16], ["CAJ88628.1", "putative_netropsin_resistance_protein_subunit_1", "BGC0000327", 1, "NRP", 30.0, 82.0, 96.69811320754717, 8.4e-16], ["AAY93430.1", "cation_ABC_transporter,_MZT_family,_ATP-binding_protein", "BGC0000413", 1, "NRP", 33.0, 82.0, 92.45283018867924, 8.4e-16], ["ALD83705.1", "ATP_binding_protein", "BGC0001299", 1, "Polyketide", 32.0, 82.0, 85.37735849056604, 8.4e-16], ["ASX95232.1", "IlaJ", "BGC0001620", 1, "NRP+Polyketide", 31.0, 82.0, 87.26415094339622, 8.4e-16], ["BBA20958.1", "ABC-transporter", "BGC0001763", 1, "NRP+Polyketide", 31.0, 82.0, 87.26415094339622, 8.4e-16], ["UEF20586.1", "ABC_transporter", "BGC0002360", 1, "NRP", 30.0, 82.0, 97.16981132075472, 8.4e-16], ["ADU86007.1", "putative_ABC_transporter-related_protein", "BGC0000165", 1, "Polyketide:Modular type I polyketide", 31.0, 82.0, 101.41509433962264, 1.1e-15], ["AMM63163.1", "AniL", "BGC0001371", 1, "NRP", 26.0, 82.0, 100.9433962264151, 1.1e-15], ["MCC5026016.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002118", 1, "NRP+Polyketide", 30.0, 82.0, 91.98113207547169, 1.1e-15], ["MCC5025972.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002119", 1, "NRP+Polyketide", 30.0, 82.0, 91.98113207547169, 1.1e-15], ["AAN85531.1", "ABC_transporter_component,_ATP_hydrolase", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 32.0, 82.0, 97.16981132075472, 1.4e-15], ["BAV57055.1", "methionine_ABC_transporter_ATP-binding_protein", "BGC0001514", 1, "Other", 31.0, 82.0, 99.05660377358491, 1.4e-15], ["CAD23201.1", "ywhQ_protein", "BGC0000602", 1, "RiPP:Thiopeptide", 30.0, 81.0, 95.28301886792453, 1.9e-15], ["EHK80174.1", "ABC_transporter_ATP-binding_protein", "BGC0001447", 1, "Polyketide", 32.0, 81.0, 88.20754716981132, 1.9e-15], ["ABW70810.1", "PchI", "BGC0002475", 1, "NRP", 32.0, 81.0, 101.41509433962264, 1.9e-15], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 33.0, 81.0, 100.9433962264151, 2.4e-15], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 33.0, 81.0, 100.47169811320755, 2.4e-15], ["AXI91561.1", "FunT3", "BGC0001944", 1, "Polyketide", 32.0, 81.0, 84.43396226415094, 2.4e-15], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 33.0, 81.0, 100.9433962264151, 2.4e-15], ["EDN75903.1", "ABC_transporter,_ATP-binding_protein", "BGC0002302", 1, "Saccharide", 31.0, 81.0, 97.64150943396226, 2.4e-15], ["AAM70341.1", "CalT5", "BGC0000033", 1, "Polyketide", 28.0, 81.0, 91.98113207547169, 3.2e-15], ["ALG65297.1", "Cal39", "BGC0001297", 1, "NRP", 29.0, 81.0, 101.41509433962264, 3.2e-15], ["AFV25467.1", "hypothetical_protein", "BGC0000469", 1, "RiPP:Bottromycin", 31.0, 80.0, 86.32075471698113, 4.1e-15], ["EEM14533.1", "ABC_transporter,_ATP-binding_protein", "BGC0001210", 1, "RiPP", 34.0, 80.0, 82.54716981132076, 4.1e-15], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 29.0, 80.0, 116.03773584905662, 4.1e-15], ["MCC5036771.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 32.0, 80.0, 85.37735849056604, 4.1e-15], ["AAQ82562.1", "FscTI", "BGC0000034", 1, "NRP+Polyketide", 31.0, 80.0, 92.45283018867924, 5.4e-15], ["AAG32539.1", "SalX", "BGC0000548", 1, "RiPP:Lanthipeptide", 26.0, 80.0, 93.39622641509435, 5.4e-15], ["AGI92076.1", "Iron(III)_dicitrate_transport_system_permease", "BGC0002115", 1, "RiPP:Other", 33.0, 80.0, 89.62264150943396, 5.4e-15], ["BAE46918.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 31.0, 79.0, 103.30188679245282, 7.1e-15], ["BAI23327.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 30.0, 79.0, 91.98113207547169, 7.1e-15], ["AAF81232.1", "ABC_transporter_ATP_binding_protein", "BGC0000243", 1, "Polyketide", 28.0, 79.0, 100.0, 9.2e-15], ["ABD14713.1", "CesC", "BGC0000320", 1, "NRP:Cyclic depsipeptide", 28.0, 79.0, 97.64150943396226, 9.2e-15], ["CCC55907.1", "putative_ABC_tarnsporter,_ATP-binding_protein", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 29.0, 79.0, 98.11320754716981, 9.2e-15], ["AIW82276.1", "ORF1", "BGC0001125", 1, "NRP+Polyketide", 32.0, 79.0, 87.73584905660378, 9.2e-15], ["AEA30278.1", "putative_ABC_transporter", "BGC0000429", 1, "Polyketide+NRP:Cyclic depsipeptide", 30.0, 79.0, 93.39622641509435, 1.2e-14], ["ACB47076.1", "DynT5", "BGC0001060", 1, "Polyketide", 31.0, 79.0, 84.90566037735849, 1.2e-14], ["QBF29318.1", "ABC_transporter_ATP-binding_protein", "BGC0002294", 1, "Other", 28.0, 79.0, 97.64150943396226, 1.2e-14], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 33.0, 79.0, 108.96226415094338, 1.2e-14], ["AMQ70215.1", "bacitracin_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 31.0, 79.0, 90.09433962264151, 1.2e-14], ["QYA95677.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002676", 1, "NRP", 30.0, 79.0, 93.39622641509435, 1.2e-14], ["AAF17285.1", "nosG", "BGC0001028", 1, "Polyketide+NRP:Cyclic depsipeptide", 31.0, 78.0, 87.26415094339622, 1.6e-14], ["ARU08083.1", "mlcO", "BGC0001448", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 29.0, 78.0, 92.45283018867924, 1.6e-14], ["ACC81026.1", "ABC_Transporter", "BGC0001479", 1, "NRP", 31.0, 78.0, 87.26415094339622, 1.6e-14], ["KKP00962.1", "hypothetical_protein", "BGC0001854", 1, "Polyketide:Iterative type I polyketide", 29.0, 78.0, 98.11320754716981, 1.6e-14], ["WP_012408790.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002061", 1, "NRP:Cyclic depsipeptide+Polyketide:Modular type I polyketide", 31.0, 78.0, 87.26415094339622, 1.6e-14], ["QCQ67878.1", "ABC_transporter", "BGC0002297", 1, "NRP+Polyketide", 31.0, 78.0, 86.32075471698113, 2.1e-14], ["QQZ01563.1", "ABC_transporter_ATP-binding_protein", "BGC0002498", 1, "Other", 27.0, 78.0, 94.81132075471697, 2.1e-14], ["CAP20370.1", "ABC_transporter,_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 27.0, 77.0, 88.20754716981132, 2.7e-14], ["AXN93574.1", "ORF1", "BGC0001950", 1, "NRP", 31.0, 77.0, 93.39622641509435, 2.7e-14], ["AXN93583.1", "ORF1", "BGC0001951", 1, "NRP", 31.0, 77.0, 93.39622641509435, 2.7e-14], ["QNL14926.1", "AptE", "BGC0002512", 1, "NRP", 32.0, 77.0, 87.26415094339622, 2.7e-14], ["ABI26076.1", "ABC_transporter", "BGC0000331", 1, "NRP", 31.0, 77.0, 87.26415094339622, 3.5e-14], ["AAZ03549.1", "McnF", "BGC0000332", 1, "NRP", 30.0, 77.0, 87.26415094339622, 3.5e-14], ["BAP05577.1", "calU", "BGC0000967", 1, "NRP+Polyketide:Trans-AT type I polyketide", 25.0, 77.0, 101.88679245283019, 3.5e-14], ["BAH22761.1", "putative_ABC_transporter", "BGC0001018", 1, "NRP", 30.0, 77.0, 87.26415094339622, 3.5e-14], ["WP_078620925.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001549", 1, "RiPP", 31.0, 77.0, 93.86792452830188, 3.5e-14], ["ARD70884.1", "ABC_transporter", "BGC0001693", 1, "Polyketide", 28.0, 77.0, 98.58490566037736, 3.5e-14], ["QKG20142.1", "ABC_transporter_ATP-binding_protein", "BGC0002124", 1, "Polyketide", 28.0, 77.0, 92.45283018867924, 3.5e-14], ["MBU7585868.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002626", 1, "RiPP", 30.0, 77.0, 87.26415094339622, 3.5e-14], ["UKO95766.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002632", 1, "NRP", 31.0, 77.0, 87.26415094339622, 3.5e-14], ["BAB72059.1", "AcrV", "BGC0000191", 1, "Polyketide", 29.0, 77.0, 87.26415094339622, 4.6e-14], ["ACZ55948.1", "ABC_transporter", "BGC0000302", 1, "NRP", 31.0, 77.0, 87.26415094339622, 4.6e-14], ["WP_012408795.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002049", 1, "RiPP:Microviridin", 30.0, 77.0, 87.26415094339622, 4.6e-14], ["ADX66464.1", "ScnA", "BGC0000108", 1, "Polyketide", 27.0, 76.0, 97.16981132075472, 6e-14], ["BAC98762.1", "NukF", "BGC0000539", 1, "RiPP:Lanthipeptide", 29.0, 76.0, 92.45283018867924, 7.8e-14], ["BAG22745.1", "putative_ABC-type_multidrug_transport_system_ATPase_and_permease_component", "BGC0000724", 1, "Saccharide", 31.0, 76.0, 98.58490566037736, 7.8e-14], ["CAD29796.1", "ABC_transporter", "BGC0001015", 1, "NRP+Polyketide", 30.0, 76.0, 92.45283018867924, 7.8e-14], ["QBC75016.1", "daunorubicin/doxorubicin_resistance_ABC_transporter", "BGC0001968", 1, "NRP", 32.0, 76.0, 87.26415094339622, 7.8e-14], ["WP_051767685.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 28.0, 76.0, 97.16981132075472, 7.8e-14], ["MCF2150417.1", "ABC-type_transport_system", "BGC0002625", 1, "NRP+Polyketide", 32.0, 76.0, 87.26415094339622, 7.8e-14], ["AAO62579.1", "ABC_transporter_ATP-binding-like_protein", "BGC0001016", 1, "NRP+Polyketide", 29.0, 76.0, 87.26415094339622, 1e-13], ["XP_020058106.1", "uncharacterized_protein", "BGC0001220", 1, "NRP", 24.0, 76.0, 96.69811320754717, 1e-13], ["KYC42617.1", "ABC_transporter", "BGC0002484", 1, "NRP+Polyketide", 30.0, 76.0, 87.26415094339622, 1e-13], ["CAC20924.1", "PimA_protein", "BGC0000125", 1, "Polyketide", 30.0, 75.0, 75.94339622641509, 1.3e-13], ["EDY42517.2", "daunorubicin_resistance_ATP-binding_protein_DrrA", "BGC0000212", 1, "Polyketide:Type II polyketide", 29.0, 75.0, 87.26415094339622, 1.3e-13], ["ctg1_orf247", "", "BGC0001200", 1, "Polyketide", 29.0, 75.0, 95.75471698113208, 1.3e-13], ["AQH32478.1", "ABC_transporter", "BGC0001667", 1, "NRP+Polyketide", 29.0, 75.0, 87.26415094339622, 1.3e-13], ["AQT01390.1", "SgnA", "BGC0001690", 1, "Polyketide", 30.0, 75.0, 75.94339622641509, 1.3e-13], ["QGZ36667.1", "cyclic_peptide_export_ABC_transporter", "BGC0002082", 1, "NRP+Polyketide", 31.0, 75.0, 87.73584905660378, 1.3e-13], ["CAA07371.1", "StrW", "BGC0000690", 1, "Saccharide", 29.0, 75.0, 97.16981132075472, 1.7e-13], ["ANQ31721.1", "ABC_transporter_ATPase", "BGC0001395", 1, "Other", 28.0, 75.0, 96.22641509433963, 1.7e-13], ["ATP76236.1", "NdaI", "BGC0001705", 1, "NRP+Polyketide", 28.0, 75.0, 97.16981132075472, 1.7e-13], ["WP_228773449.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002104", 1, "NRP+Polyketide", 29.0, 75.0, 95.75471698113208, 1.7e-13], ["SPE99799.1", "Glutathione_import_ATP-binding_protein_GsiA", "BGC0002567", 1, "Other", 34.0, 75.0, 83.49056603773585, 1.7e-13], ["AYM52853.1", "molybdate_ABC_transporter_ATP-binding_protein", "BGC0001964", 1, "Polyketide", 36.0, 74.0, 88.67924528301887, 2.3e-13], ["WP_245193312.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002011", 1, "Polyketide", 26.0, 74.0, 84.90566037735849, 2.3e-13], ["QGJ79656.1", "ABC_transporter", "BGC0002552", 1, "Polyketide", 26.0, 74.0, 84.90566037735849, 2.3e-13], ["ACC54547.1", "MvdA", "BGC0000594", 1, "RiPP", 29.0, 74.0, 87.26415094339622, 3e-13], ["CAJ81021.1", "ABC_transporter_ATP-binding_protein_AcbW", "BGC0000691", 1, "Saccharide", 29.0, 74.0, 95.75471698113208, 3e-13], ["EPE34342.1", "ABC-transporter", "BGC0001035", 1, "Polyketide+NRP", 28.0, 74.0, 97.64150943396226, 3e-13], ["AGN74890.1", "ABC_transporter", "BGC0000459", 1, "NRP:Cyclic depsipeptide+Polyketide:Trans-AT type I polyketide", 29.0, 74.0, 101.41509433962264, 3.9e-13], ["CAA19963.1", "putative_ABC_transporter", "BGC0000551", 1, "RiPP:Lanthipeptide", 30.0, 73.0, 98.58490566037736, 5.1e-13], ["AAC83135.1", "ModC", "BGC0000916", 1, "Other", 32.0, 73.0, 91.98113207547169, 5.1e-13], ["WP_028847744.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002467", 1, "NRP", 30.0, 73.0, 100.9433962264151, 5.1e-13], ["AAF00956.1", "mcyH", "BGC0001017", 1, "NRP+Polyketide:Modular type I polyketide", 30.0, 73.0, 92.45283018867924, 6.6e-13], ["EEM79978.1", "ABC_transporter", "BGC0001887", 1, "RiPP", 29.0, 73.0, 94.81132075471697, 6.6e-13], ["AET51851.1", "ABC_transporter", "BGC0001138", 1, "Other:Nucleoside", 29.0, 72.0, 101.88679245283019, 8.7e-13], ["ANY10583.1", "ABC_transporter", "BGC0001773", 1, "Polyketide", 27.0, 72.0, 92.45283018867924, 8.7e-13], ["QNN81306.1", "IonTII", "BGC0002446", 1, "Polyketide", 26.0, 72.0, 92.45283018867924, 8.7e-13], ["WP_141576250.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 28.0, 72.0, 102.35849056603774, 8.7e-13], ["AHJ31211.1", "ABC_transporter_ATP-binding_protein", "BGC0000430", 1, "NRP+Polyketide:Modular type I polyketide", 29.0, 72.0, 87.26415094339622, 1.1e-12], ["ACB01054.1", "ABC-type_nitrate/sulfonate/bicarbonate_transport_system,_ATP-binding_protein", "BGC0002470", 1, "Other", 31.0, 72.0, 92.9245283018868, 1.1e-12], ["MBE8994633.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002623", 1, "NRP+Polyketide", 30.0, 72.0, 87.73584905660378, 1.1e-12], ["BAO66521.1", "ABC_transporter", "BGC0000042", 1, "Polyketide", 28.0, 72.0, 94.33962264150944, 1.5e-12], ["AAO23332.1", "NcpC", "BGC0000397", 1, "NRP", 30.0, 72.0, 87.26415094339622, 1.5e-12], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 28.0, 72.0, 116.98113207547169, 1.5e-12], ["QKV49801.1", "ABC_transporter_ATP-binding_protein", "BGC0002526", 1, "Polyketide", 27.0, 72.0, 87.26415094339622, 1.5e-12], ["AAD21213.1", "BcrA", "BGC0000310", 1, "NRP", 29.0, 71.0, 85.37735849056604, 2.5e-12], ["CAJ96467.1", "ABC-type_transporter,_ATPase_and_permease_components:_Pep3E_family", "BGC0000330", 1, "NRP:NRP siderophore", 29.0, 71.0, 100.0, 2.5e-12], ["QCC62989.1", "hypothetical_protein", "BGC0001966", 1, "NRP+Polyketide", 26.0, 71.0, 94.33962264150944, 2.5e-12], ["QOE88887.1", "ABC_transporter", "BGC0002260", 1, "Terpene", 25.0, 71.0, 99.52830188679245, 2.5e-12], ["AKQ52538.1", "Hypothetical_protein", "BGC0002533", 1, "NRP+Polyketide", 31.0, 71.0, 84.90566037735849, 2.5e-12], ["QIZ24092.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 26.0, 71.0, 107.0754716981132, 2.5e-12], ["AQP25578.1", "ABC_transporter", "BGC0001590", 1, "Polyketide", 28.0, 71.0, 95.75471698113208, 3.3e-12], ["WP_029025941.1", "ABC_transporter", "BGC0000198", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 28.0, 70.0, 93.39622641509435, 4.3e-12], ["ACY56716.1", "ThnD", "BGC0000600", 1, "RiPP", 27.0, 70.0, 91.98113207547169, 4.3e-12], ["BAP82652.1", "ABC_transporter", "BGC0001148", 1, "NRP+RiPP", 29.0, 70.0, 97.16981132075472, 4.3e-12], ["ATP76247.1", "SpuF", "BGC0001748", 1, "NRP+Polyketide", 29.0, 70.0, 87.26415094339622, 4.3e-12], ["AJP07151.1", "AciT", "BGC0001222", 1, "RiPP", 27.0, 70.0, 99.05660377358491, 5.6e-12], ["CCT75968.1", "related_to_multidrug_resistance_protein", "BGC0001606", 1, "Polyketide", 31.0, 70.0, 78.77358490566037, 5.6e-12], ["ADM69287.1", "ABC_transporter_ATP-binding_protein", "BGC0001727", 1, "RiPP", 27.0, 70.0, 92.45283018867924, 5.6e-12], ["BAG66056.1", "putative_ATP_binding_protein", "BGC0000491", 1, "RiPP:Head-to-tailcyclized peptide", 27.0, 69.0, 99.05660377358491, 7.3e-12], ["AIW58900.1", "hypothetical_protein", "BGC0001582", 1, "NRP", 33.0, 69.0, 78.77358490566037, 7.3e-12], ["CAQ16120.1", "ABC_transporter", "BGC0000592", 1, "RiPP:Microviridin", 28.0, 69.0, 87.26415094339622, 9.6e-12], ["WP_014929841.1", "ABC_transporter_transmembrane_domain-containing_protein", "BGC0001864", 1, "RiPP:Glycocin", 22.0, 69.0, 94.81132075471697, 1.2e-11], ["QFU19820.1", "ABC_transporter_ATP-binding_protein", "BGC0002431", 1, "Polyketide+Saccharide", 28.0, 68.0, 93.39622641509435, 1.6e-11], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 27.0, 67.0, 103.30188679245282, 2.8e-11], ["QBK15045.1", "hypothetical_protein_ClaG", "BGC0002196", 1, "Polyketide", 27.0, 67.0, 93.39622641509435, 2.8e-11], ["ABI30230.1", "McdT", "BGC0000526", 1, "RiPP:Lanthipeptide", 27.0, 66.0, 90.09433962264151, 6.2e-11], ["ABK59359.1", "MukT", "BGC0000534", 1, "RiPP:Lanthipeptide", 28.0, 66.0, 82.54716981132076, 6.2e-11], ["AED99781.1", "ABC-transporter", "BGC0000599", 1, "RiPP:Sactipeptide", 24.0, 66.0, 100.47169811320755, 6.2e-11], ["BAF50716.2", "ABC-transporter_protein", "BGC0001116", 1, "NRP+Polyketide", 30.0, 66.0, 87.26415094339622, 6.2e-11], ["AAC35926.1", "ABC_transporter_ATP-binding_protein", "BGC0000792", 1, "Saccharide", 26.0, 66.0, 82.0754716981132, 8.1e-11], ["AHZ20760.1", "ABC_transporter_transmembrane_domain/ATP-binding_domain_protein", "BGC0000369", 1, "NRP+Saccharide:Hybrid/tailoring saccharide", 28.0, 66.0, 87.26415094339622, 1.1e-10], ["ctg1_orf169", "", "BGC0001638", 1, "RiPP", 25.0, 66.0, 104.24528301886792, 1.1e-10], ["ESU05150.1", "hypothetical_protein", "BGC0002178", 1, "NRP", 27.0, 66.0, 92.45283018867924, 1.1e-10], ["ACX68645.1", "putative_ABC_transporter", "BGC0000547", 1, "RiPP:Lanthipeptide", 24.0, 65.0, 102.35849056603774, 1.4e-10], ["QDG75038.1", "cyclic_peptide_export_ABC_transporter", "BGC0002068", 1, "NRP+Polyketide", 26.0, 65.0, 89.62264150943396, 1.8e-10], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 27.0, 64.0, 108.49056603773586, 4e-10], ["AAN74822.1", "Fum19p", "BGC0000062", 1, "Polyketide", 25.0, 63.0, 79.71698113207547, 6.9e-10], ["CAM02316.1", "ABC_transporter_protein,_ATP-binding_component", "BGC0000349", 1, "NRP", 27.0, 63.0, 96.69811320754717, 6.9e-10], ["CAA59109.1", "Ard1_protein", "BGC0000873", 1, "Other", 30.0, 63.0, 102.35849056603774, 6.9e-10], ["ADD45300.1", "ABC_transporter_related_protein", "BGC0000807", 1, "Saccharide", 25.0, 62.0, 85.84905660377359, 9e-10], ["ACN29728.1", "putative_ABC_transporter", "BGC0000814", 1, "Alkaloid", 29.0, 62.0, 104.71698113207549, 9e-10], ["ABC42565.1", "putative_ABC_transporter", "BGC0000698", 1, "Saccharide", 28.0, 62.0, 104.24528301886792, 1.2e-09], ["QBA31009.1", "SinT", "BGC0002319", 1, "RiPP", 27.0, 62.0, 90.09433962264151, 1.2e-09], ["QYI86759.1", "putative_ABC_transporter", "BGC0002424", 1, "NRP", 26.0, 62.0, 91.50943396226415, 1.2e-09], ["WP_141576290.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 26.0, 62.0, 87.26415094339622, 1.2e-09], ["ACR50788.1", "putative_ABC_transporter,_ATP_binding_component", "BGC0000163", 1, "Polyketide", 26.0, 62.0, 84.43396226415094, 1.5e-09], ["AEA35029.1", "hypothetical_protein", "BGC0002502", 1, "Polyketide", 28.0, 61.0, 83.01886792452831, 2.6e-09], ["PCL98050.1", "plantaricyclin_A_ATP-binding_protein", "BGC0001743", 1, "RiPP", 26.0, 61.0, 92.9245283018868, 3.4e-09], ["ACB12564.1", "Fum19", "BGC0000063", 1, "Polyketide", 25.0, 60.0, 101.41509433962264, 4.4e-09], ["BAC76468.1", "putative_ABC_transporter_protein", "BGC0001100", 1, "NRP+Polyketide", 27.0, 59.0, 86.79245283018868, 7.6e-09], ["WP_020635024.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001211", 1, "NRP", 26.0, 58.0, 95.75471698113208, 2.2e-08], ["QWM97334.1", "ABC_transporter_ATP-binding_protein", "BGC0002384", 1, "NRP", 29.0, 57.0, 90.09433962264151, 4.9e-08], ["BDA39144.1", "ABC_transporter", "BGC0001398", 1, "RiPP", 27.0, 56.0, 103.30188679245282, 8.4e-08], ["ATW47205.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0002466", 1, "NRP", 24.0, 56.0, 92.9245283018868, 1.1e-07], ["MCC5036772.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 30.0, 54.0, 68.39622641509435, 3.2e-07], ["ADG29288.1", "putative_ATP-binding_protein", "BGC0000796", 1, "Saccharide", 27.0, 53.0, 66.50943396226415, 7.1e-07], ["AAP85339.1", "UvrA-like_drug_resistance_protein", "BGC0000233", 1, "Polyketide", 34.0, 52.0, 43.86792452830189, 9.3e-07], ["SSGG_RS34700", "ATP-binding_cassette_domain-containing_protein", "BGC0000553", 1, "RiPP:Lanthipeptide", 33.0, 52.0, 44.81132075471698, 1.2e-06], ["ABW71839.1", "drug-resistance_pump", "BGC0000303", 1, "NRP", 32.0, 51.0, 52.83018867924528, 2.1e-06], ["CBG75488.1", "putative_ABC_transport_system_integral_membrane_component", "BGC0000423", 1, "NRP", 28.0, 51.0, 94.33962264150944, 2.1e-06], ["AET98908.1", "UvrA-like_protein", "BGC0000415", 1, "NRP", 33.0, 50.0, 38.67924528301887, 4.6e-06], ["AEA29626.1", "Por3", "BGC0000409", 1, "NRP", 33.0, 50.0, 55.188679245283026, 6e-06], ["AFV52154.1", "efflux_pump", "BGC0000081", 1, "NRP+Polyketide:Iterative type I polyketide+Polyketide:Enediyne type I polyketide", 29.0, 49.0, 58.9622641509434, 7.8e-06]]}, "2": {"MAAAAKME_01360": [["CAJ81021.1", "ABC_transporter_ATP-binding_protein_AcbW", "BGC0000691", 1, "Saccharide", 41.0, 212.0, 79.6774193548387, 1.7e-54], ["AFV25467.1", "hypothetical_protein", "BGC0000469", 1, "RiPP:Bottromycin", 43.0, 197.0, 66.45161290322581, 4.4e-50], ["BAV57055.1", "methionine_ABC_transporter_ATP-binding_protein", "BGC0001514", 1, "Other", 44.0, 197.0, 68.70967741935485, 4.4e-50], ["EHN79455.1", "ABC_transporter_ATP-binding_protein_ScatW", "BGC0000804", 1, "Saccharide", 40.0, 193.0, 80.0, 8.4e-49], ["BBD82044.1", "ABC_transporter", "BGC0001920", 1, "RiPP", 37.0, 139.0, 65.48387096774194, 8.4e-33], ["SFF02515.1", "ABC-2_type_transport_system_ATP-binding_protein", "BGC0001674", 1, "RiPP", 37.0, 139.0, 65.48387096774194, 1.4e-32], ["QBF51773.1", "ABC_transporter_permease_component", "BGC0001856", 1, "Polyketide:Modular type I polyketide", 36.0, 134.0, 72.25806451612902, 3.5e-31], ["CBJ82069.1", "ABC_Transporter,_ATP-binding_protein", "BGC0001872", 1, "Polyketide", 39.0, 134.0, 69.35483870967742, 3.5e-31], ["ABQ04129.1", "ABC_transporter_related,_ATPase_component", "BGC0000838", 1, "Polyketide", 37.0, 133.0, 63.54838709677419, 1e-30], ["TXC99997.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001877", 1, "Polyketide", 36.0, 131.0, 72.25806451612902, 3.9e-30], ["CAI05930.1", "putative_ATP-binding_protein", "BGC0000696", 1, "Saccharide", 34.0, 130.0, 69.35483870967742, 6.7e-30], ["ARW80053.1", "putative_ABC_transporter", "BGC0001660", 1, "RiPP", 34.0, 130.0, 68.70967741935485, 6.7e-30], ["PHM26616.1", "daunorubicin-DIM-transport_ATP-binding_protein_ABC_transporter_DrrA", "BGC0001130", 1, "NRP+Polyketide", 39.0, 128.0, 67.0967741935484, 1.9e-29], ["QVQ68816.1", "mmrAII", "BGC0002129", 1, "Polyketide", 32.0, 127.0, 71.93548387096774, 5.7e-29], ["CCM44340.1", "ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 35.0, 126.0, 70.3225806451613, 7.4e-29], ["CAL82046.1", "putative_cytolysin_ABC_transporter,_ATP-binding_protein", "BGC0000564", 1, "RiPP:LAP", 30.0, 124.0, 68.70967741935485, 3.7e-28], ["ADG27347.1", "ABC_transporter_ATPase_subunit", "BGC0000296", 1, "NRP", 32.0, 124.0, 69.35483870967742, 4.8e-28], ["WP_029025941.1", "ABC_transporter", "BGC0000198", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 123.0, 75.80645161290323, 6.2e-28], ["AEA30278.1", "putative_ABC_transporter", "BGC0000429", 1, "Polyketide+NRP:Cyclic depsipeptide", 34.0, 123.0, 66.45161290322581, 6.2e-28], ["AXI91561.1", "FunT3", "BGC0001944", 1, "Polyketide", 31.0, 123.0, 89.03225806451613, 6.2e-28], ["QYA95677.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002676", 1, "NRP", 34.0, 123.0, 66.45161290322581, 6.2e-28], ["BAH04156.1", "putative_ABC_transporter", "BGC0000450", 1, "NRP", 32.0, 123.0, 70.64516129032258, 1.1e-27], ["ADG27368.1", "ABC_transporter_ATPase_subunit", "BGC0000296", 1, "NRP", 31.0, 122.0, 69.35483870967742, 1.4e-27], ["QNH67555.1", "Cip27", "BGC0002108", 1, "NRP", 32.0, 122.0, 70.0, 1.4e-27], ["EDU38312.1", "ABC_transporter,_ATP-binding_protein", "BGC0001170", 1, "RiPP:LAP", 29.0, 122.0, 68.70967741935485, 1.8e-27], ["CAI94676.1", "putative_ABC_transporter", "BGC0000141", 1, "Polyketide", 35.0, 121.0, 67.0967741935484, 2.4e-27], ["CAM56766.1", "ExpB", "BGC0000354", 1, "NRP", 33.0, 121.0, 70.96774193548387, 2.4e-27], ["ANY10583.1", "ABC_transporter", "BGC0001773", 1, "Polyketide", 32.0, 121.0, 70.64516129032258, 3.1e-27], ["ASX95232.1", "IlaJ", "BGC0001620", 1, "NRP+Polyketide", 30.0, 120.0, 76.45161290322581, 5.3e-27], ["BBA20958.1", "ABC-transporter", "BGC0001763", 1, "NRP+Polyketide", 30.0, 120.0, 76.45161290322581, 5.3e-27], ["QDJ74277.1", "ATP-binding_protein", "BGC0002109", 1, "NRP", 31.0, 120.0, 70.0, 6.9e-27], ["QRG35011.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002378", 1, "NRP", 30.0, 120.0, 70.0, 6.9e-27], ["BAI63276.1", "putative_ABC_transporter", "BGC0000434", 1, "NRP", 31.0, 119.0, 70.0, 1.2e-26], ["WP_202421642.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001655", 1, "RiPP", 33.0, 119.0, 67.74193548387096, 1.2e-26], ["QVQ68814.1", "mmrAI", "BGC0002129", 1, "Polyketide", 32.0, 119.0, 77.74193548387098, 1.5e-26], ["AAQ82562.1", "FscTI", "BGC0000034", 1, "NRP+Polyketide", 35.0, 118.0, 66.45161290322581, 2e-26], ["CAE17540.1", "ATP-binding_protein", "BGC0000210", 1, "Polyketide:Type II polyketide+Saccharide:Oligosaccharide", 32.0, 118.0, 67.0967741935484, 2e-26], ["CAK50797.1", "", "BGC0000247", 1, "Polyketide:Type II polyketide+Saccharide:Oligosaccharide", 32.0, 118.0, 71.93548387096774, 2e-26], ["QBG38790.1", "Atr29", "BGC0001975", 1, "NRP", 30.0, 118.0, 70.0, 2e-26], ["QDF63361.1", "KyaT", "BGC0002346", 1, "RiPP", 32.0, 118.0, 66.45161290322581, 2e-26], ["AAZ23084.1", "possible_ABC_transporter", "BGC0000291", 1, "NRP", 31.0, 117.0, 78.06451612903226, 4.5e-26], ["AHX24693.1", "ABC_transporter_ATP-binding_protein", "BGC0000200", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 32.0, 116.0, 70.0, 7.6e-26], ["QBA57757.1", "ABC_transporter", "BGC0002377", 1, "NRP", 30.0, 116.0, 69.03225806451613, 7.6e-26], ["AAP85350.1", "ATP-binding_protein", "BGC0000233", 1, "Polyketide", 31.0, 116.0, 70.0, 1e-25], ["AAX31553.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000336", 1, "NRP", 34.0, 116.0, 66.45161290322581, 1.3e-25], ["ACA51937.2", "BovF", "BGC0000498", 1, "RiPP:Lanthipeptide", 31.0, 115.0, 90.32258064516128, 2.2e-25], ["WP_028678143.1", "daunorubicin_resistance_protein_DrrA_family_ABC_transporter_ATP-binding_protein", "BGC0001228", 1, "NRP:Cyclic depsipeptide", 30.0, 115.0, 70.0, 2.2e-25], ["WP_054234621.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002014", 1, "NRP+Polyketide", 30.0, 114.0, 71.61290322580646, 2.9e-25], ["ABC00731.1", "CosI", "BGC0000214", 1, "Polyketide", 32.0, 114.0, 70.96774193548387, 3.8e-25], ["AHH53501.1", "ABC_transporter_ATP-binding_subunit", "BGC0000439", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 32.0, 114.0, 73.87096774193549, 3.8e-25], ["KDN80071.1", "ABC_transporter", "BGC0001074", 1, "Saccharide+Polyketide", 32.0, 114.0, 70.96774193548387, 3.8e-25], ["BAJ10688.1", "hypothetical_bacteriocin_immunity_protein", "BGC0000561", 1, "RiPP:Lanthipeptide", 30.0, 114.0, 90.32258064516128, 5e-25], ["WP_017947388.1", "daunorubicin_resistance_protein_DrrA_family_ABC_transporter_ATP-binding_protein", "BGC0001558", 1, "Polyketide", 31.0, 113.0, 70.96774193548387, 8.4e-25], ["ATJ00748.1", "ABC_transporter", "BGC0001568", 1, "Polyketide", 31.0, 113.0, 70.96774193548387, 8.4e-25], ["CTQ34884.1", "AtcG;_putative_ABC_transporter", "BGC0001301", 1, "Polyketide", 29.0, 113.0, 89.6774193548387, 1.1e-24], ["ALG65297.1", "Cal39", "BGC0001297", 1, "NRP", 29.0, 112.0, 69.03225806451613, 1.9e-24], ["QGN18861.1", "nsjF_lantibiotic_protection_ABC_transporter_ATP-binding", "BGC0002323", 1, "RiPP:Lanthipeptide", 34.0, 112.0, 68.70967741935485, 1.9e-24], ["WP_245240025.1", "ABC_transporter_ATP-binding_protein", "BGC0001851", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 30.0, 111.0, 70.64516129032258, 2.5e-24], ["WP_107056739.1", "ABC_transporter_ATP-binding_protein", "BGC0001852", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 30.0, 111.0, 70.64516129032258, 2.5e-24], ["CAJ34360.1", "ABC_transporter_(ATPase_subunit)", "BGC0000445", 1, "NRP:Cyclic depsipeptide", 29.0, 111.0, 70.96774193548387, 3.2e-24], ["ADJ56360.1", "NisF", "BGC0000535", 1, "RiPP:Lanthipeptide", 31.0, 111.0, 68.38709677419355, 4.2e-24], ["AAK33690.1", "ABC_transporter_", "BGC0000566", 1, "RiPP:LAP", 30.0, 110.0, 64.83870967741936, 5.5e-24], ["CBZ42151.1", "putative_ABC-2_transporter", "BGC0001117", 1, "NRP", 31.0, 110.0, 73.22580645161291, 7.2e-24], ["AMQ70217.1", "lantibiotic_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 29.0, 110.0, 68.70967741935485, 7.2e-24], ["MBX4267536.1", "lantibiotic_protection_ABC_transporter_ATP-binding_protein", "BGC0002668", 1, "RiPP", 33.0, 110.0, 66.12903225806451, 7.2e-24], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 30.0, 109.0, 75.16129032258064, 1.2e-23], ["AAL15571.1", "putative_SpaF", "BGC0000511", 1, "RiPP:Lanthipeptide", 33.0, 109.0, 68.70967741935485, 1.6e-23], ["sipT2", "ABC_transporter_ATP-binding_protein", "BGC0001452", 1, "Polyketide", 31.0, 109.0, 68.06451612903226, 1.6e-23], ["AWR88401.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001522", 1, "Polyketide", 31.0, 109.0, 68.06451612903226, 1.6e-23], ["BCK51660.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002520", 1, "Polyketide", 31.0, 109.0, 68.70967741935485, 1.6e-23], ["AAM70341.1", "CalT5", "BGC0000033", 1, "Polyketide", 32.0, 108.0, 63.87096774193548, 2.1e-23], ["QBC75016.1", "daunorubicin/doxorubicin_resistance_ABC_transporter", "BGC0001968", 1, "NRP", 28.0, 108.0, 71.93548387096774, 2.1e-23], ["QKI29078.1", "ABC_transporter_ATP-binding_protein", "BGC0002130", 1, "RiPP:Lanthipeptide", 32.0, 108.0, 71.29032258064515, 2.1e-23], ["CAJ88181.1", "putative_ABC_transporter,_ATP-binding_subunit", "BGC0000151", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 31.0, 108.0, 67.74193548387096, 2.7e-23], ["ABW00319.1", "daunorubicin_resistance_ABC_transporter_ATPase_subunit", "BGC0000333", 1, "NRP", 31.0, 108.0, 75.16129032258064, 2.7e-23], ["BAG71487.1", "immunity_protein", "BGC0000536", 1, "RiPP:Lanthipeptide", 29.0, 108.0, 68.38709677419355, 2.7e-23], ["BAX64249.1", "ABC_transporter", "BGC0001623", 1, "NRP+Polyketide", 30.0, 108.0, 70.0, 2.7e-23], ["AAV66099.1", "PltJ", "BGC0000127", 1, "Polyketide", 34.0, 108.0, 66.12903225806451, 3.5e-23], ["AAD21213.1", "BcrA", "BGC0000310", 1, "NRP", 30.0, 108.0, 79.6774193548387, 3.5e-23], ["ABO65658.1", "Putative_ABC_transporter_ATP-binding_protein", "BGC0000515", 1, "RiPP:Lanthipeptide", 33.0, 108.0, 65.80645161290323, 3.5e-23], ["AFJ52716.1", "ABC_transporter", "BGC0001073", 1, "NRP+Polyketide", 30.0, 108.0, 67.74193548387096, 3.5e-23], ["PVC99846.1", "ABC_transporter_ATP_binding", "BGC0002100", 1, "NRP+Other", 29.0, 108.0, 70.64516129032258, 3.5e-23], ["AMQ70215.1", "bacitracin_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 30.0, 108.0, 72.25806451612902, 3.5e-23], ["BAH43868.1", "probable_ABC_transporter_ATP_binding_protein", "BGC0000367", 1, "NRP", 32.0, 107.0, 63.54838709677419, 4.6e-23], ["ADK32562.1", "putative_lantibiotic_ABC_transporter_ATP-binding_protein", "BGC0000529", 1, "RiPP:Lanthipeptide", 32.0, 107.0, 72.25806451612902, 4.6e-23], ["BAB08166.1", "SrtF", "BGC0000556", 1, "RiPP:Lanthipeptide", 33.0, 107.0, 63.54838709677419, 4.6e-23], ["CBG67536.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002367", 1, "NRP", 33.0, 107.0, 66.45161290322581, 6.1e-23], ["AAB91597.1", "SpaF", "BGC0000559", 1, "RiPP:Lanthipeptide", 32.0, 106.0, 68.70967741935485, 7.9e-23], ["QIQ28642.1", "Nbc46", "BGC0002541", 1, "Other", 30.0, 106.0, 67.0967741935484, 7.9e-23], ["EDY42517.2", "daunorubicin_resistance_ATP-binding_protein_DrrA", "BGC0000212", 1, "Polyketide:Type II polyketide", 31.0, 106.0, 66.45161290322581, 1e-22], ["AEK64496.1", "EtnF", "BGC0000506", 1, "RiPP:Lanthipeptide", 32.0, 106.0, 68.70967741935485, 1.3e-22], ["ANP43737.1", "ThsF", "BGC0001391", 1, "RiPP", 31.0, 106.0, 63.54838709677419, 1.3e-22], ["QGA70155.1", "ABC_transporter_ATP-binding_protein", "BGC0002293", 1, "NRP", 30.0, 105.0, 73.87096774193549, 2.3e-22], ["BAB72059.1", "AcrV", "BGC0000191", 1, "Polyketide", 30.0, 104.0, 67.74193548387096, 3e-22], ["QLQ36620.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002097", 1, "NRP+Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 27.0, 104.0, 90.96774193548387, 3.9e-22], ["ORC16572.1", "hypothetical_protein", "BGC0001341", 1, "NRP", 27.0, 104.0, 75.48387096774194, 5.1e-22], ["AZF85928.1", "ABC_transporter", "BGC0001963", 1, "NRP+Polyketide", 32.0, 104.0, 66.45161290322581, 5.1e-22], ["QIJ31507.1", "SgdT5", "BGC0002545", 1, "Polyketide", 29.0, 103.0, 66.45161290322581, 6.7e-22], ["AAY59067.1", "ATP-binding_protein", "BGC0000128", 1, "Polyketide", 33.0, 103.0, 66.12903225806451, 8.7e-22], ["ADP94229.1", "TunI", "BGC0000880", 1, "Other:Nucleoside", 30.0, 103.0, 83.54838709677419, 8.7e-22], ["WP_009985599.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001311", 1, "RiPP:Lanthipeptide", 32.0, 103.0, 66.12903225806451, 8.7e-22], ["EHK80174.1", "ABC_transporter_ATP-binding_protein", "BGC0001447", 1, "Polyketide", 30.0, 103.0, 63.87096774193548, 8.7e-22], ["AKA59084.1", "ABC_transporter", "BGC0001619", 1, "Polyketide", 28.0, 103.0, 70.64516129032258, 8.7e-22], ["CCB53259.1", "ABC_transporter_family_protein", "BGC0001393", 1, "NRP", 29.0, 102.0, 76.12903225806451, 1.1e-21], ["ALA09343.1", "hypothetical_protein", "BGC0001303", 1, "Polyketide", 30.0, 102.0, 68.38709677419355, 1.5e-21], ["ARU08083.1", "mlcO", "BGC0001448", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 31.0, 102.0, 66.77419354838709, 1.5e-21], ["AOT85876.1", "immunity_protein", "BGC0001789", 1, "RiPP", 32.0, 101.0, 69.6774193548387, 3.3e-21], ["QEO74990.1", "omn15", "BGC0002078", 1, "NRP:Cyclic depsipeptide", 30.0, 101.0, 66.45161290322581, 3.3e-21], ["WP_010369407.1", "ABC_transporter_ATP-binding_protein", "BGC0000314", 1, "Polyketide+NRP:Cyclic depsipeptide+Other:Aminocoumarin", 31.0, 100.0, 63.87096774193548, 7.4e-21], ["AOT85893.1", "immunity_protein", "BGC0001788", 1, "RiPP", 33.0, 100.0, 65.16129032258064, 7.4e-21], ["AFW17839.1", "PaeF", "BGC0000541", 1, "RiPP:Lanthipeptide", 26.0, 99.0, 66.12903225806451, 9.7e-21], ["CCQ18698.1", "ABC_transporter_ATP-binding_domain", "BGC0000544", 1, "RiPP:Lanthipeptide", 30.0, 99.0, 69.35483870967742, 1.3e-20], ["AAU34217.1", "ABC_transporter_MppX", "BGC0000388", 1, "NRP", 32.0, 98.0, 63.54838709677419, 2.2e-20], ["BCK51650.1", "putative_ABC_transporter", "BGC0002520", 1, "Polyketide", 31.0, 98.0, 73.54838709677419, 2.2e-20], ["ASY03206.1", "NsoF", "BGC0001701", 1, "RiPP:Lanthipeptide", 29.0, 97.0, 68.38709677419355, 3.7e-20], ["BCB17025.1", "putative_ABC_transporter_protein", "BGC0002523", 1, "NRP", 31.0, 97.0, 65.16129032258064, 3.7e-20], ["AAD44229.1", "DrrA", "BGC0000362", 1, "NRP", 30.0, 97.0, 70.0, 4.8e-20], ["ACN64822.1", "PokABC1", "BGC0001061", 1, "Polyketide:Iterative type I polyketide+Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 27.0, 97.0, 66.12903225806451, 4.8e-20], ["AHF21231.1", "PabF", "BGC0000542", 1, "RiPP:Lanthipeptide", 25.0, 97.0, 66.12903225806451, 6.3e-20], ["AJP07151.1", "AciT", "BGC0001222", 1, "RiPP", 31.0, 97.0, 66.45161290322581, 6.3e-20], ["QEO75084.1", "ABC_transporter_ATP-binding_protein", "BGC0002079", 1, "NRP:Cyclic depsipeptide", 29.0, 97.0, 66.45161290322581, 6.3e-20], ["ABD14713.1", "CesC", "BGC0000320", 1, "NRP:Cyclic depsipeptide", 26.0, 96.0, 72.58064516129032, 8.2e-20], ["BAG66056.1", "putative_ATP_binding_protein", "BGC0000491", 1, "RiPP:Head-to-tailcyclized peptide", 31.0, 96.0, 66.45161290322581, 8.2e-20], ["AEX55154.1", "putative_lantibiotic_transport_ATP-binding_protein_SlvF", "BGC0000549", 1, "RiPP:Lanthipeptide", 29.0, 96.0, 71.93548387096774, 8.2e-20], ["AJO72722.1", "Antibiotic_ABC_transporter_ATPase", "BGC0001381", 1, "Polyketide", 30.0, 96.0, 72.58064516129032, 8.2e-20], ["APZ78695.1", "ABC_transporter_ATP-binding_protein", "BGC0001418", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 29.0, 96.0, 71.61290322580646, 1.1e-19], ["AHA81996.1", "ANC_transporter_A_TP-binding_protein", "BGC0000199", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 27.0, 96.0, 67.74193548387096, 1.4e-19], ["ABI30231.1", "McdF", "BGC0000526", 1, "RiPP:Lanthipeptide", 33.0, 96.0, 64.51612903225806, 1.4e-19], ["AHX39585.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 31.0, 96.0, 67.0967741935484, 1.4e-19], ["BAB78444.1", "", "BGC0000555", 1, "RiPP:Lanthipeptide", 29.0, 95.0, 66.12903225806451, 2.4e-19], ["MBA0053734.1", "ABC_transporter_ATP-binding_protein", "BGC0002096", 1, "Polyketide", 32.0, 95.0, 65.16129032258064, 2.4e-19], ["QBG82543.1", "sugar_ABC_transporter", "BGC0002587", 1, "Polyketide", 34.0, 95.0, 66.77419354838709, 2.4e-19], ["AAC35926.1", "ABC_transporter_ATP-binding_protein", "BGC0000792", 1, "Saccharide", 29.0, 94.0, 72.25806451612902, 4.1e-19], ["BAD72772.1", "", "BGC0000552", 1, "RiPP:Lanthipeptide", 27.0, 94.0, 89.35483870967742, 5.3e-19], ["AIW58900.1", "hypothetical_protein", "BGC0001582", 1, "NRP", 30.0, 94.0, 60.322580645161295, 5.3e-19], ["WP_030684648.1", "ABC_transporter_ATP-binding_protein", "BGC0001607", 1, "Other", 29.0, 93.0, 68.06451612903226, 6.9e-19], ["ctg1_orf15", "", "BGC0000053", 1, "Polyketide", 27.0, 93.0, 71.29032258064515, 9e-19], ["AAZ76598.1", "BhtF", "BGC0000497", 1, "RiPP:Lanthipeptide", 27.0, 93.0, 89.35483870967742, 9e-19], ["ARD24450.1", "HyiF", "BGC0001618", 1, "RiPP", 31.0, 93.0, 68.38709677419355, 9e-19], ["ABA00875.1", "NsuF", "BGC0000537", 1, "RiPP:Lanthipeptide", 31.0, 92.0, 68.38709677419355, 1.2e-18], ["ADG29288.1", "putative_ATP-binding_protein", "BGC0000796", 1, "Saccharide", 26.0, 92.0, 69.6774193548387, 1.5e-18], ["PCL98050.1", "plantaricyclin_A_ATP-binding_protein", "BGC0001743", 1, "RiPP", 29.0, 92.0, 66.12903225806451, 1.5e-18], ["AFJ20783.1", "ABC_transporter", "BGC0002300", 1, "NRP", 29.0, 92.0, 65.48387096774194, 1.5e-18], ["AAP03101.1", "putative_ATP-binding_protein", "BGC0000874", 1, "Other", 33.0, 91.0, 66.45161290322581, 2.6e-18], ["AKD43524.1", "ABC_transporter", "BGC0001409", 1, "Polyketide", 27.0, 91.0, 63.87096774193548, 3.4e-18], ["AUA09459.1", "Daunorubicin/doxorubicin_resistance_ATP-binding_protein_DrrA", "BGC0002291", 1, "Polyketide", 27.0, 91.0, 71.29032258064515, 3.4e-18], ["AAB92604.1", "ScnF", "BGC0000557", 1, "RiPP:Lanthipeptide", 30.0, 91.0, 69.03225806451613, 4.5e-18], ["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 33.0, 90.0, 66.77419354838709, 5.9e-18], ["CAC33840.1", "hypothetical_protein", "BGC0000523", 1, "RiPP:Lanthipeptide", 28.0, 90.0, 66.45161290322581, 7.7e-18], ["CCQ18687.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 31.0, 90.0, 68.06451612903226, 7.7e-18], ["CAB11989.1", "sporulation_killing_factor_biosynthesis_and_export;_ABC_transporter_(binding_protein)", "BGC0000601", 1, "RiPP:Head-to-tailcyclized peptide", 28.0, 90.0, 66.12903225806451, 7.7e-18], ["ACB47083.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001060", 1, "Polyketide", 33.0, 90.0, 62.58064516129033, 7.7e-18], ["AAS55714.1", "ATP-binding_protein", "BGC0000795", 1, "Saccharide", 29.0, 89.0, 66.12903225806451, 1e-17], ["EHK80158.1", "ABC_transporter", "BGC0001447", 1, "Polyketide", 29.0, 89.0, 70.3225806451613, 1e-17], ["ARK19492.1", "transporter", "BGC0001540", 1, "Other", 32.0, 89.0, 65.48387096774194, 1.3e-17], ["QYZ85382.1", "DisT", "BGC0002635", 1, "RiPP", 28.0, 89.0, 65.80645161290323, 1.3e-17], ["AFJ20779.1", "putative_ABC_transporter", "BGC0002300", 1, "NRP", 29.0, 89.0, 60.322580645161295, 1.7e-17], ["AHJ59534.1", "putative_cerecidin_immunity_protein", "BGC0000502", 1, "RiPP:Lanthipeptide", 26.0, 88.0, 70.96774193548387, 2.2e-17], ["CCQ18690.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 32.0, 88.0, 71.29032258064515, 2.2e-17], ["CAH10182.1", "ChaT3_protein", "BGC0000207", 1, "Polyketide", 29.0, 87.0, 70.3225806451613, 3.8e-17], ["QFF92407.1", "ABC-type_multidrug_transport_system_ATPase", "BGC0002553", 1, "Other", 29.0, 87.0, 64.83870967741936, 3.8e-17], ["AAC69557.2", "ATP_binding_protein_BviB", "BGC0000486", 1, "RiPP:Head-to-tailcyclized peptide", 32.0, 87.0, 64.51612903225806, 6.5e-17], ["CCM44327.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 31.0, 86.0, 66.12903225806451, 8.5e-17], ["BBG91913.1", "ABC_transporter_ATP-binding_subunit", "BGC0001927", 1, "Other", 27.0, 86.0, 64.19354838709678, 1.1e-16], ["CAR51993.1", "ornibactin_biosynthesis_ABC_transport_protein", "BGC0002569", 1, "NRP", 29.0, 86.0, 74.83870967741936, 1.1e-16], ["ADK32558.1", "ABC_transporter_ATP-binding_domain", "BGC0000529", 1, "RiPP:Lanthipeptide", 28.0, 86.0, 70.64516129032258, 1.4e-16], ["QWT72283.1", "ABC_transporter_ATP-binding_protein", "BGC0002430", 1, "NRP+Saccharide", 28.0, 86.0, 70.3225806451613, 1.4e-16], ["QWT72286.1", "ABC_transporter_ATP-binding_protein", "BGC0002430", 1, "NRP+Saccharide", 26.0, 86.0, 68.70967741935485, 1.4e-16], ["BAI23338.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 30.0, 85.0, 64.83870967741936, 1.9e-16], ["AAN85531.1", "ABC_transporter_component,_ATP_hydrolase", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 30.0, 85.0, 66.45161290322581, 1.9e-16], ["AEK75511.1", "ATP-binding_ABC_peptide_transporter", "BGC0000001", 1, "Polyketide:Modular type I polyketide", 29.0, 85.0, 64.51612903225806, 2.5e-16], ["AAO20847.1", "putative_ATP_binding_protein", "BGC0000783", 1, "Saccharide", 27.0, 85.0, 64.83870967741936, 2.5e-16], ["ADD45300.1", "ABC_transporter_related_protein", "BGC0000807", 1, "Saccharide", 26.0, 84.0, 80.0, 4.2e-16], ["ACR50788.1", "putative_ABC_transporter,_ATP_binding_component", "BGC0000163", 1, "Polyketide", 29.0, 82.0, 67.0967741935484, 1.2e-15], ["ABI87094.1", "cyclic_peptide_transporter", "BGC0002531", 1, "NRP", 29.0, 82.0, 72.90322580645162, 1.6e-15], ["BAC76467.1", "putative_ABC_transporter_protein", "BGC0001100", 1, "NRP+Polyketide", 31.0, 81.0, 67.74193548387096, 2.7e-15], ["CAQ64719.1", "sugar_uptake_ABC_transporter,_ATP-binding_protein", "BGC0000087", 1, "Polyketide", 28.0, 81.0, 71.61290322580646, 4.6e-15], ["ABC39037.1", "cyclic_peptide_ABC_transporter,_ATP-binding_protein", "BGC0000386", 1, "NRP:NRP siderophore", 29.0, 81.0, 71.61290322580646, 4.6e-15], ["BAB04170.1", "lantibiotic_haloduracin_protease_and_transporter", "BGC0000517", 1, "RiPP:Lanthipeptide", 27.0, 80.0, 86.12903225806451, 6.1e-15], ["QFU19844.1", "ABC_transporter_ATP-binding_protein", "BGC0002431", 1, "Polyketide+Saccharide", 28.0, 80.0, 66.77419354838709, 6.1e-15], ["ABD65952.1", "ABC_transporter", "BGC0000341", 1, "NRP", 31.0, 79.0, 62.58064516129033, 1.4e-14], ["CAB01940.1", "ExpD1", "BGC0000801", 1, "Saccharide", 32.0, 79.0, 67.74193548387096, 1.4e-14], ["WP_037568390.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002656", 1, "Polyketide", 27.0, 79.0, 66.77419354838709, 1.4e-14], ["AAK53481.1", "ATP-binding_component_of_an_ABC-type_polysaccharide_exporter", "BGC0000774", 1, "Saccharide:Lipopolysaccharide", 28.0, 78.0, 63.2258064516129, 2.3e-14], ["ABX00624.1", "LmrC", "BGC0000907", 1, "Other", 31.0, 78.0, 56.774193548387096, 2.3e-14], ["AGS77319.1", "ABC_transporter", "BGC0001178", 1, "NRP:Glycopeptide", 28.0, 78.0, 78.70967741935485, 2.3e-14], ["QYC40286.1", "Multidrug_export_ATP-binding/permease_protein", "BGC0002344", 1, "NRP", 27.0, 78.0, 79.03225806451613, 2.3e-14], ["BAB78441.1", "", "BGC0000555", 1, "RiPP:Lanthipeptide", 30.0, 78.0, 68.70967741935485, 3e-14], ["AAF08240.1", "CpxA", "BGC0000736", 1, "Saccharide", 27.0, 78.0, 66.12903225806451, 3e-14], ["CAD91219.1", "putative_ABC_transporter,_Dbv24", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 76.0, 79.03225806451613, 8.8e-14], ["CAG25756.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000311", 1, "NRP", 27.0, 76.0, 96.12903225806451, 8.8e-14], ["MBE3200461.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002409", 1, "NRP", 30.0, 76.0, 64.51612903225806, 1.1e-13], ["CAK15812.1", "macrolide_ABC_efflux_protein_MacB", "BGC0000344", 1, "NRP", 29.0, 76.0, 65.48387096774194, 1.5e-13], ["WP_037568401.1", "ABC_transporter_ATP-binding_protein", "BGC0002656", 1, "Polyketide", 30.0, 76.0, 64.83870967741936, 1.5e-13], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 26.0, 75.0, 70.64516129032258, 2e-13], ["ctg1_orf247", "", "BGC0001200", 1, "Polyketide", 30.0, 75.0, 66.77419354838709, 2e-13], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 28.0, 75.0, 66.12903225806451, 2e-13], ["QXJ21800.1", "ABC_transporter_ATP-binding_protein", "BGC0002370", 1, "NRP", 27.0, 75.0, 80.0, 2e-13], ["BAJ19059.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 28.0, 75.0, 68.38709677419355, 2.5e-13], ["CAD97586.1", "ATP_binding_protein", "BGC0000488", 1, "RiPP:Head-to-tailcyclized peptide", 25.0, 75.0, 71.61290322580646, 2.5e-13], ["ABM30208.1", "PvuE", "BGC0000947", 1, "Other", 26.0, 75.0, 69.6774193548387, 2.5e-13], ["ACR33047.1", "ABC_transport_protein_ATP-binding", "BGC0000495", 1, "RiPP:Lanthipeptide", 27.0, 74.0, 72.90322580645162, 3.3e-13], ["CAA72921.1", "AS-48D_protein", "BGC0000489", 1, "RiPP:Head-to-tailcyclized peptide", 27.0, 74.0, 61.935483870967744, 5.7e-13], ["AAL15565.1", "putative_SpaT", "BGC0000511", 1, "RiPP:Lanthipeptide", 26.0, 74.0, 77.09677419354838, 5.7e-13], ["NSC23519.1", "ABC_transporter_ATP-binding_protein", "BGC0002359", 1, "NRP", 26.0, 74.0, 66.77419354838709, 5.7e-13], ["ALK21572.1", "multidrug_ABC_transporter_permease", "BGC0002678", 1, "NRP", 28.0, 73.0, 68.70967741935485, 7.4e-13], ["WP_141576251.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 28.0, 73.0, 70.0, 7.4e-13], ["AAC67257.1", "HexA", "BGC0000734", 1, "Saccharide", 28.0, 72.0, 63.2258064516129, 1.3e-12], ["QMN69936.1", "PsoE", "BGC0002521", 1, "NRP", 28.0, 72.0, 66.77419354838709, 1.3e-12], ["CAP20369.1", "putative_ABC_transporter_ATP-binding_component", "BGC0000347", 1, "NRP", 29.0, 72.0, 64.19354838709678, 1.7e-12], ["BAI23327.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 30.0, 72.0, 65.80645161290323, 1.7e-12], ["WP_003071800.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 27.0, 72.0, 67.74193548387096, 1.7e-12], ["BAJ19058.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 28.0, 72.0, 66.12903225806451, 2.2e-12], ["AQZ71346.1", "ABC_transporter", "BGC0001635", 1, "NRP+Polyketide", 27.0, 72.0, 66.45161290322581, 2.2e-12], ["AGN74890.1", "ABC_transporter", "BGC0000459", 1, "NRP:Cyclic depsipeptide+Polyketide:Trans-AT type I polyketide", 27.0, 71.0, 70.96774193548387, 2.8e-12], ["AET51851.1", "ABC_transporter", "BGC0001138", 1, "Other:Nucleoside", 32.0, 71.0, 60.322580645161295, 2.8e-12], ["AZM57021.1", "ABC_transporter", "BGC0002314", 1, "NRP", 27.0, 71.0, 66.77419354838709, 2.8e-12], ["AEK64492.1", "EtnT", "BGC0000506", 1, "RiPP:Lanthipeptide", 25.0, 71.0, 76.45161290322581, 3.7e-12], ["AAB91587.1", "SpaT", "BGC0000559", 1, "RiPP:Lanthipeptide", 26.0, 71.0, 77.09677419354838, 3.7e-12], ["ABC42565.1", "putative_ABC_transporter", "BGC0000698", 1, "Saccharide", 29.0, 71.0, 59.354838709677416, 3.7e-12], ["BAI23328.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 26.0, 71.0, 78.70967741935485, 3.7e-12], ["AJK49764.1", "ABC_transporter,_ATP-binding_protein", "BGC0002565", 1, "NRP", 27.0, 71.0, 72.90322580645162, 3.7e-12], ["ABQ84449.1", "salivaricin_ABC-transporter", "BGC0000624", 1, "RiPP", 29.0, 71.0, 65.80645161290323, 4.8e-12], ["CCA89322.1", "hypothetical_protein", "BGC0001111", 1, "NRP+Polyketide:Trans-AT type I polyketide", 29.0, 71.0, 60.0, 4.8e-12], ["CZF83999.1", "Toxin_RTX-I_translocation_ATP-binding_protein", "BGC0002382", 1, "RiPP", 32.0, 71.0, 56.12903225806451, 4.8e-12], ["CAL19997.1", "putative_transport_ATP-binding_protein", "BGC0002490", 1, "Other", 26.0, 71.0, 68.06451612903226, 4.8e-12], ["BAC87901.1", "probable_ferric_acinetobactin_transport_system_ATP-binding_protein", "BGC0000294", 1, "NRP", 23.0, 70.0, 74.83870967741936, 6.3e-12], ["CBG75489.1", "putative_ABC-transport_system_ATP-binding_component", "BGC0000423", 1, "NRP", 28.0, 70.0, 71.29032258064515, 6.3e-12], ["CAD23201.1", "ywhQ_protein", "BGC0000602", 1, "RiPP:Thiopeptide", 27.0, 70.0, 65.48387096774194, 6.3e-12], ["ATY72532.1", "ABC_transporter_ATP-binding_protein", "BGC0001574", 1, "NRP", 27.0, 70.0, 65.48387096774194, 6.3e-12], ["CAA11793.1", "PCZA363.2", "BGC0000322", 1, "NRP", 27.0, 70.0, 78.38709677419354, 8.2e-12], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 25.0, 70.0, 72.58064516129032, 8.2e-12], ["CAE53357.1", "ABC_transporter", "BGC0000440", 1, "NRP:Glycopeptide", 27.0, 69.0, 79.35483870967742, 1.1e-11], ["CAG15016.1", "ABC_transporter", "BGC0000441", 1, "NRP", 27.0, 69.0, 79.35483870967742, 1.1e-11], ["CEG06583.1", "ABC_transporter", "BGC0001928", 1, "Other", 28.0, 69.0, 71.93548387096774, 1.1e-11], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 26.0, 69.0, 76.45161290322581, 1.4e-11], ["ABD65953.1", "ABC_transporter", "BGC0000341", 1, "NRP", 28.0, 69.0, 80.96774193548387, 1.8e-11], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 25.0, 69.0, 75.80645161290323, 1.8e-11], ["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 27.0, 69.0, 79.35483870967742, 1.8e-11], ["ALK27913.1", "putative_ABC_transporter", "BGC0001233", 1, "NRP", 27.0, 69.0, 66.77419354838709, 1.8e-11], ["WP_009985592.1", "peptidase_domain-containing_ABC_transporter", "BGC0001311", 1, "RiPP:Lanthipeptide", 27.0, 69.0, 67.0967741935484, 1.8e-11], ["OKA09422.1", "ABC_transporter", "BGC0001459", 1, "NRP:Glycopeptide", 27.0, 69.0, 76.12903225806451, 1.8e-11], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 33.0, 69.0, 61.935483870967744, 1.8e-11], ["BCB17010.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002523", 1, "NRP", 28.0, 69.0, 67.0967741935484, 1.8e-11], ["CYV09559.1", "ABC_transporter_NBP/MSD_fusion_protein", "BGC0002575", 1, "RiPP", 28.0, 69.0, 68.06451612903226, 1.8e-11], ["ABS50192.1", "putative_ferric_siderophore_ABC_transporter_ATP-binding_protein", "BGC0000410", 1, "NRP", 24.0, 68.0, 75.16129032258064, 2.4e-11], ["WP_003950018.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000546", 1, "RiPP:Lanthipeptide", 29.0, 68.0, 63.87096774193548, 2.4e-11], ["AJV88390.1", "MfnR", "BGC0001214", 1, "NRP", 31.0, 68.0, 53.5483870967742, 2.4e-11], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 29.0, 68.0, 66.77419354838709, 2.4e-11], ["ALN78925.1", "ABC_transporter_family_protein", "BGC0002630", 1, "RiPP", 28.0, 68.0, 76.45161290322581, 2.4e-11], ["ABC94899.1", "GdmF", "BGC0000514", 1, "RiPP:Lanthipeptide", 31.0, 68.0, 55.80645161290323, 3.1e-11], ["CAF60513.1", "putative_sugar_ABC-transproter_ATP-binding_protein", "BGC0000704", 1, "Saccharide", 28.0, 68.0, 69.35483870967742, 3.1e-11], ["CAF31568.1", "putative_sugar_ABC_transporter", "BGC0000705", 1, "Saccharide", 28.0, 68.0, 69.35483870967742, 3.1e-11], ["CCC55907.1", "putative_ABC_tarnsporter,_ATP-binding_protein", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 24.0, 68.0, 65.48387096774194, 3.1e-11], ["ADC96668.1", "ABC_transporter", "BGC0001076", 1, "Other:Nucleoside", 27.0, 68.0, 66.77419354838709, 3.1e-11], ["APZ78724.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001421", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 28.0, 68.0, 60.322580645161295, 3.1e-11], ["APZ78737.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001422", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 27.0, 68.0, 60.322580645161295, 3.1e-11], ["APZ78751.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001423", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 27.0, 67.0, 60.322580645161295, 4.1e-11], ["OLZ52458.1", "ABC_transporter", "BGC0001462", 1, "NRP:Glycopeptide", 28.0, 67.0, 65.16129032258064, 4.1e-11], ["WP_020636821.1", "dipeptide/oligopeptide/nickel_ABC_transporter_permease/ATP-binding_protein", "BGC0002011", 1, "Polyketide", 26.0, 67.0, 67.41935483870968, 4.1e-11], ["QGJ79648.1", "Peptide_ABC_superfamily_ATP-binding_protein", "BGC0002552", 1, "Polyketide", 26.0, 67.0, 67.41935483870968, 4.1e-11], ["QGN18865.1", "nsjT_ABC_transporter_ATP-binding_protein", "BGC0002323", 1, "RiPP:Lanthipeptide", 25.0, 67.0, 68.06451612903226, 5.3e-11], ["EME52991.1", "ABC_transporter", "BGC0001460", 1, "NRP:Glycopeptide", 29.0, 67.0, 65.16129032258064, 6.9e-11], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 28.0, 66.0, 68.70967741935485, 9.1e-11], ["AAM80540.1", "StaU", "BGC0000290", 1, "NRP:Glycopeptide", 26.0, 66.0, 66.12903225806451, 1.2e-10], ["BAJ05895.1", "putative_ABC_multidrug_resistance_transporter", "BGC0000872", 1, "Other", 27.0, 66.0, 66.77419354838709, 1.2e-10], ["AIG79244.1", "Conserved_putative_membrane_protein", "BGC0000419", 1, "Saccharide+NRP:Glycopeptide", 27.0, 66.0, 77.09677419354838, 1.5e-10], ["QTT77479.1", "ABC_transporter_ATP-binding_protein", "BGC0002350", 1, "NRP+Polyketide+Saccharide", 30.0, 66.0, 66.77419354838709, 1.5e-10], ["ACN29728.1", "putative_ABC_transporter", "BGC0000814", 1, "Alkaloid", 28.0, 65.0, 67.74193548387096, 2e-10], ["AHW81481.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 30.0, 65.0, 68.38709677419355, 2e-10], ["AEG64672.1", "ABC_transporter-like_protein", "BGC0000379", 1, "NRP", 28.0, 65.0, 70.96774193548387, 2.6e-10], ["AAY93352.1", "pyoverdine_ABC_transporter,_permease/ATP-binding_protein_PvdE", "BGC0000413", 1, "NRP", 30.0, 65.0, 63.54838709677419, 2.6e-10], ["CAA59109.1", "Ard1_protein", "BGC0000873", 1, "Other", 25.0, 64.0, 67.74193548387096, 3.4e-10], ["NAO96331.1", "multidrug_ABC_transporter_permease/ATP-binding_protein", "BGC0002117", 1, "NRP", 32.0, 64.0, 64.83870967741936, 3.4e-10], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 30.0, 64.0, 54.19354838709678, 3.4e-10], ["QXJ26483.1", "ABC_transporter_ATP-binding_protein", "BGC0002370", 1, "NRP", 25.0, 64.0, 72.90322580645162, 3.4e-10], ["AIE77056.1", "ABC-transporter", "BGC0000418", 1, "NRP", 26.0, 64.0, 77.41935483870968, 4.5e-10], ["AEI58864.1", "ABC_transporter", "BGC0000455", 1, "NRP", 27.0, 64.0, 64.83870967741936, 4.5e-10], ["AJW76720.1", "ATP-binding_protein", "BGC0001196", 1, "NRP", 25.0, 64.0, 66.45161290322581, 4.5e-10], ["QYA95652.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002676", 1, "NRP", 26.0, 64.0, 65.48387096774194, 4.5e-10], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 27.0, 64.0, 71.29032258064515, 5.9e-10], ["AGI92082.1", "HlyB/MsbA_family_ABC_transporter", "BGC0002115", 1, "RiPP:Other", 30.0, 64.0, 66.77419354838709, 5.9e-10], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 28.0, 63.0, 79.6774193548387, 7.7e-10], ["AAY28215.1", "unknown", "BGC0000074", 1, "Polyketide", 28.0, 63.0, 65.80645161290323, 1e-09], ["CCC55904.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 24.0, 63.0, 67.74193548387096, 1e-09], ["AQZ42156.1", "putative_ABC_multidrug_transporter", "BGC0001820", 1, "NRP", 29.0, 63.0, 68.06451612903226, 1e-09], ["AZM50109.1", "ABC_transporter", "BGC0002702", 1, "NRP", 25.0, 63.0, 66.77419354838709, 1e-09], ["AHH99931.1", "ABC_transporter_protein", "BGC0000002", 1, "Polyketide", 28.0, 62.0, 70.3225806451613, 1.3e-09], ["CAQ71835.1", "ABC_transporter_ATP-binding_protein,_putative_ABC-type_siderophore_export_system", "BGC0001189", 1, "NRP", 27.0, 62.0, 70.64516129032258, 1.3e-09], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 27.0, 62.0, 68.70967741935485, 1.3e-09], ["WP_039806835.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002001", 1, "NRP+Polyketide", 27.0, 62.0, 69.35483870967742, 1.3e-09], ["WP_081238293.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 24.0, 62.0, 67.0967741935484, 1.3e-09], ["QQZ01651.1", "ABC_transporter", "BGC0002497", 1, "Other", 26.0, 62.0, 68.38709677419355, 1.3e-09], ["AAK81823.1", "ABC_transporter", "BGC0000326", 1, "NRP", 25.0, 62.0, 66.77419354838709, 1.7e-09], ["ACQ63630.1", "ABC_multidrug_resistance_transporter", "BGC0000875", 1, "Saccharide:Hybrid/tailoring saccharide+Other:Nucleoside", 25.0, 62.0, 66.77419354838709, 1.7e-09], ["OLZ50884.1", "ABC_transporter", "BGC0001461", 1, "NRP:Glycopeptide", 27.0, 62.0, 65.16129032258064, 1.7e-09], ["AYA22337.1", "Tri", "BGC0001955", 1, "NRP", 27.0, 62.0, 65.16129032258064, 1.7e-09], ["QSE03593.1", "Lcm9", "BGC0002333", 1, "Polyketide", 22.0, 62.0, 70.3225806451613, 1.7e-09], ["AFO89680.1", "putative_ferrichrome_transport_ATP-binding_protein", "BGC0002694", 1, "Other", 25.0, 62.0, 67.41935483870968, 1.7e-09], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 27.0, 61.0, 69.35483870967742, 2.9e-09], ["ALV82355.1", "ABC_transporter", "BGC0001370", 1, "NRP", 26.0, 61.0, 67.41935483870968, 2.9e-09], ["CAF32376.1", "putative_ABC_transporter,_ATP-binding_protein", "BGC0000712", 1, "Saccharide", 26.0, 61.0, 75.48387096774194, 5e-09], ["BAF50716.2", "ABC-transporter_protein", "BGC0001116", 1, "NRP+Polyketide", 36.0, 61.0, 49.03225806451613, 5e-09], ["BAL90289.1", "putative_ABC_transporter_ATPase_and_permease_protein", "BGC0002021", 1, "Polyketide", 27.0, 61.0, 66.12903225806451, 5e-09], ["AGI92083.1", "ABC_efflux_pump", "BGC0002115", 1, "RiPP:Other", 28.0, 61.0, 70.64516129032258, 5e-09], ["AKU20512.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 24.0, 61.0, 82.25806451612904, 5e-09], ["CAT00694.1", "protein_mcbF", "BGC0000568", 1, "RiPP:LAP", 26.0, 60.0, 61.935483870967744, 6.5e-09], ["ATY72535.1", "iron_complex_transport_ATP-binding_protein", "BGC0001574", 1, "NRP", 25.0, 60.0, 66.45161290322581, 6.5e-09], ["AVX51095.1", "nysG", "BGC0001709", 1, "Polyketide", 23.0, 60.0, 70.3225806451613, 6.5e-09], ["ATW47206.1", "multidrug_ABC_transporter_permease", "BGC0002466", 1, "NRP", 27.0, 60.0, 65.80645161290323, 6.5e-09], ["CCA53801.1", "Transport_ATP-binding_protein_CydC", "BGC0001801", 1, "NRP", 27.0, 60.0, 71.29032258064515, 8.5e-09], ["QUQ72367.1", "ABC_transporter", "BGC0002349", 1, "Polyketide+Saccharide", 27.0, 59.0, 66.45161290322581, 1.1e-08], ["ABW91161.1", "exporter/resistance_protein", "BGC0000019", 1, "Polyketide", 29.0, 59.0, 62.25806451612903, 1.4e-08], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 27.0, 59.0, 68.70967741935485, 1.4e-08], ["AFD30963.1", "CrmT2", "BGC0000966", 1, "NRP+Polyketide", 25.0, 59.0, 64.83870967741936, 1.4e-08], ["ACM79808.1", "ZmaM", "BGC0001059", 1, "NRP+Polyketide", 27.0, 59.0, 65.16129032258064, 1.4e-08], ["ABM34271.1", "cyclic_peptide_transporter", "BGC0002419", 1, "NRP+Polyketide", 28.0, 59.0, 64.51612903225806, 1.4e-08], ["CAC20925.1", "PimB_protein", "BGC0000125", 1, "Polyketide", 24.0, 59.0, 67.41935483870968, 1.9e-08], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 25.0, 59.0, 77.41935483870968, 1.9e-08], ["CAD15511.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 22.0, 59.0, 79.03225806451613, 1.9e-08], ["AQT01389.1", "SgnB", "BGC0001690", 1, "Polyketide", 24.0, 59.0, 67.41935483870968, 1.9e-08], ["ADX66465.1", "ScnB", "BGC0000108", 1, "Polyketide", 24.0, 58.0, 67.41935483870968, 2.5e-08], ["BAP82652.1", "ABC_transporter", "BGC0001148", 1, "NRP+RiPP", 26.0, 58.0, 65.48387096774194, 2.5e-08], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 34.0, 58.0, 45.16129032258064, 2.5e-08], ["QLH55577.1", "ferric_siderophore_ABC_transporter_ATP-binding_protein", "BGC0002043", 1, "RiPP", 22.0, 58.0, 67.0967741935484, 2.5e-08], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 34.0, 58.0, 45.16129032258064, 2.5e-08], ["QIZ24091.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 25.0, 58.0, 66.77419354838709, 3.2e-08], ["AAF71763.1", "nysG", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 23.0, 57.0, 70.96774193548387, 4.2e-08], ["MBX4267533.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002668", 1, "RiPP", 25.0, 57.0, 77.09677419354838, 4.2e-08], ["CBL93714.1", "ABC_multidrug_transporter", "BGC0000360", 1, "NRP", 24.0, 57.0, 77.41935483870968, 7.2e-08], ["AHI77484.1", "ABC_transporter_family_protein", "BGC0000572", 1, "RiPP:Lassopeptide", 25.0, 57.0, 72.25806451612902, 7.2e-08], ["CAB38879.1", "putative_ABC_transporter", "BGC0000315", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 25.0, 56.0, 68.70967741935485, 9.4e-08], ["AKU24610.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 23.0, 56.0, 68.70967741935485, 9.4e-08], ["CAJ87588.1", "putative_inner_membrane_ABC-transporter", "BGC0001055", 1, "NRP+Polyketide", 26.0, 56.0, 61.935483870967744, 1.2e-07], ["BAE46917.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 26.0, 55.0, 69.6774193548387, 2.1e-07], ["OJF16281.1", "AceT2", "BGC0001491", 1, "Polyketide", 24.0, 55.0, 55.483870967741936, 2.1e-07], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 28.0, 55.0, 61.29032258064516, 2.7e-07], ["MBV7329450.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002131", 1, "Polyketide+NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 28.0, 55.0, 67.41935483870968, 2.7e-07], ["ACS20352.1", "cyclic_peptide_transporter", "BGC0002420", 1, "NRP+Polyketide", 28.0, 55.0, 63.2258064516129, 2.7e-07], ["QBF29317.1", "ABC_transporter_ATP-binding_protein", "BGC0002294", 1, "Other", 24.0, 54.0, 66.45161290322581, 3.6e-07], ["AGU50943.1", "cyclic_peptide_transporter", "BGC0002417", 1, "NRP+Polyketide", 28.0, 54.0, 63.2258064516129, 3.6e-07], ["AAK01462.1", "ABC_transporter", "BGC0000412", 1, "NRP", 28.0, 54.0, 66.45161290322581, 6.1e-07], ["AAP11941.1", "ABC_transporter_ATP-binding_protein", "BGC0000612", 1, "RiPP:Thiopeptide", 26.0, 53.0, 67.74193548387096, 7.9e-07], ["AAO56107.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 24.0, 53.0, 68.06451612903226, 7.9e-07], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 28.0, 53.0, 53.87096774193548, 1e-06], ["AAN85545.1", "antibiotic_resistance_protein", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 30.0, 53.0, 56.774193548387096, 1e-06], ["CAC20924.1", "PimA_protein", "BGC0000125", 1, "Polyketide", 25.0, 52.0, 65.80645161290323, 1.8e-06], ["AFO93372.1", "ABC_transporter,_ATP-binding_protein", "BGC0000932", 1, "Other", 27.0, 52.0, 71.93548387096774, 1.8e-06], ["KIH99790.1", "hypothetical_protein", "BGC0001176", 1, "RiPP:Lassopeptide", 25.0, 52.0, 70.96774193548387, 1.8e-06], ["AQT01390.1", "SgnA", "BGC0001690", 1, "Polyketide", 25.0, 52.0, 65.80645161290323, 1.8e-06], ["CAI47638.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 24.0, 51.0, 66.12903225806451, 3e-06], ["AYJ71715.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001942", 1, "NRP+Polyketide", 23.0, 51.0, 65.16129032258064, 3e-06], ["CAD15510.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 22.0, 51.0, 66.12903225806451, 3.9e-06], ["CQR60039.1", "Lactococcin_transport/processing_ATP-binding_protein_LcnC-like", "BGC0002289", 1, "RiPP", 26.0, 51.0, 67.0967741935484, 3.9e-06], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 30.0, 50.0, 55.80645161290323, 5.1e-06], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 26.0, 50.0, 66.77419354838709, 5.1e-06]], "MAAAAKME_01400": [["AFU90402.1", "YcaO_protein", "BGC0000470", 1, "RiPP:Bottromycin", 25.0, 79.0, 94.70404984423676, 1.8e-14], ["CBG72692.1", "YcaO_domain_protein", "BGC0001157", 1, "RiPP:Bottromycin", 26.0, 74.0, 87.85046728971963, 3.4e-13], ["AFV25483.1", "BotCD", "BGC0000469", 1, "RiPP:Bottromycin", 25.0, 74.0, 80.06230529595015, 4.5e-13], ["CCM09445.1", "", "BGC0000468", 1, "RiPP:Bottromycin", 26.0, 74.0, 86.6043613707165, 5.9e-13]], "MAAAAKME_01420": [["AHL24459.1", "peptidase_M48_Ste24P_precursor", "BGC0000806", 1, "Saccharide", 38.0, 164.0, 98.99665551839465, 3.1e-40]]}, "3": {"MAAAAKME_19170": [["AAF81228.1", "unknown", "BGC0000243", 1, "Polyketide", 49.0, 147.0, 99.3975903614458, 2.8e-35], ["AIZ66883.1", "pRNase_III_regulator_YmdB_like_protein", "BGC0002666", 1, "NRP+Alkaloid", 50.0, 144.0, 96.98795180722891, 1.4e-34], ["ADH04651.1", "unknown", "BGC0001342", 1, "NRP+Polyketide", 44.0, 133.0, 100.60240963855422, 3.2e-31], ["AAG42849.1", "unknown", "BGC0000249", 1, "Polyketide", 52.0, 131.0, 81.32530120481928, 1.2e-30], ["AJQ95686.1", "putative_phosphatase,_C-terminal_domain_of_histone_macroH2A1-like_protein", "BGC0002046", 1, "NRP+Polyketide:Trans-AT type I polyketide", 40.0, 118.0, 103.6144578313253, 1.8e-26]], "MAAAAKME_19190": [["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 27.0, 129.0, 90.49429657794677, 1.9e-29], ["ANP43732.1", "ThsT", "BGC0001391", 1, "RiPP", 30.0, 124.0, 76.42585551330798, 8.1e-28], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 31.0, 118.0, 54.372623574144484, 3.4e-26], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 31.0, 118.0, 54.372623574144484, 3.4e-26], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 32.0, 118.0, 54.94296577946768, 5.8e-26], ["AAZ76601.1", "BhtT", "BGC0000497", 1, "RiPP:Lanthipeptide", 30.0, 116.0, 51.14068441064639, 1.3e-25], ["BAD72775.1", "", "BGC0000552", 1, "RiPP:Lanthipeptide", 30.0, 115.0, 52.28136882129277, 3.8e-25], ["EOO99818.1", "hypothetical_protein", "BGC0001861", 1, "RiPP:Glycocin", 24.0, 114.0, 77.18631178707224, 4.9e-25], ["EDY04298.1", "ABC_transporter-related_protein", "BGC0000516", 1, "RiPP:Lanthipeptide", 24.0, 112.0, 98.66920152091255, 2.4e-24], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 30.0, 111.0, 54.372623574144484, 4.2e-24], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 30.0, 111.0, 54.372623574144484, 4.2e-24], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 30.0, 109.0, 54.372623574144484, 1.6e-23], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 27.0, 109.0, 89.92395437262357, 1.6e-23], ["AHF21240.1", "CrnT", "BGC0000500", 1, "RiPP:Lanthipeptide", 24.0, 108.0, 103.23193916349811, 6e-23], ["ABQ84449.1", "salivaricin_ABC-transporter", "BGC0000624", 1, "RiPP", 23.0, 107.0, 101.14068441064639, 7.9e-23], ["WP_027239422.1", "NHLP_family_bacteriocin_export_ABC_transporter_peptidase/permease/ATPase_subunit", "BGC0002698", 1, "RiPP", 28.0, 106.0, 55.32319391634981, 2.3e-22], ["WP_019688963.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002306", 1, "RiPP", 25.0, 105.0, 101.33079847908746, 3.9e-22], ["ALX37944.1", "GaeT", "BGC0001388", 1, "RiPP", 22.0, 101.0, 102.85171102661596, 5.6e-21], ["BAM09402.1", "putative_ABC-transporter", "BGC0000619", 1, "RiPP", 22.0, 101.0, 102.85171102661596, 7.4e-21], ["BBE52944.1", "putative_ABC-transporter", "BGC0001602", 1, "RiPP", 22.0, 101.0, 102.85171102661596, 7.4e-21], ["AVX51096.1", "nysH", "BGC0001709", 1, "Polyketide", 28.0, 100.0, 53.42205323193916, 9.6e-21], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 26.0, 99.0, 84.60076045627376, 1.6e-20], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 24.0, 99.0, 101.33079847908746, 2.1e-20], ["AAC56012.1", "cytolysin_B_transport_protein", "BGC0000520", 1, "RiPP:Lanthipeptide", 26.0, 99.0, 64.82889733840305, 2.1e-20], ["ABS50189.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 26.0, 99.0, 62.3574144486692, 2.8e-20], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 24.0, 99.0, 101.33079847908746, 2.8e-20], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 24.0, 99.0, 100.76045627376426, 2.8e-20], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 27.0, 98.0, 54.562737642585546, 3.7e-20], ["ACC84963.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 26.0, 98.0, 64.82889733840305, 4.8e-20], ["ADI10107.1", "type_II_lanthionine_synthetase_and_transporter", "BGC0001229", 1, "RiPP:Lanthipeptide", 25.0, 97.0, 77.9467680608365, 6.2e-20], ["AMQ71643.1", "hypothetical_protein", "BGC0002663", 1, "RiPP", 24.0, 97.0, 100.38022813688212, 6.2e-20], ["WP_009985592.1", "peptidase_domain-containing_ABC_transporter", "BGC0001311", 1, "RiPP:Lanthipeptide", 23.0, 97.0, 85.93155893536122, 1.1e-19], ["WP_027239423.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002698", 1, "RiPP", 32.0, 96.0, 58.55513307984791, 1.4e-19], ["BAH43767.1", "ABC_transporter_ATP_binding/permease_protein", "BGC0000452", 1, "NRP", 23.0, 96.0, 101.52091254752851, 1.8e-19], ["ABW74893.1", "ABC_transporter", "BGC0000759", 1, "Saccharide", 27.0, 96.0, 53.61216730038023, 1.8e-19], ["AAP57696.1", "putative_secretion_protein", "BGC0000768", 1, "Saccharide", 27.0, 96.0, 53.61216730038023, 1.8e-19], ["AAC44070.1", "unknown", "BGC0000797", 1, "Saccharide", 27.0, 96.0, 53.61216730038023, 1.8e-19], ["EFI65097.1", "lantibiotic_transport_protein", "BGC0001407", 1, "RiPP", 23.0, 96.0, 102.6615969581749, 1.8e-19], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 25.0, 96.0, 92.77566539923954, 2.4e-19], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 25.0, 96.0, 101.71102661596959, 2.4e-19], ["AAK01464.1", "ABC_transporter", "BGC0000412", 1, "NRP", 31.0, 94.0, 39.92395437262358, 6.9e-19], ["ACR43772.1", "ABC-transporter", "BGC0002577", 1, "RiPP", 23.0, 94.0, 76.61596958174906, 9e-19], ["AHJ59536.1", "ABC_transporter_protein", "BGC0000502", 1, "RiPP:Lanthipeptide", 23.0, 92.0, 104.18250950570342, 2e-18], ["CAB60262.1", "MrsT_protein", "BGC0000527", 1, "RiPP:Lanthipeptide", 21.0, 92.0, 105.32319391634981, 2e-18], ["BAE56595.1", "", "BGC0001123", 1, "NRP", 28.0, 92.0, 50.950570342205324, 2.6e-18], ["QKV49895.1", "BrtT", "BGC0002110", 1, "RiPP:Lanthipeptide", 24.0, 92.0, 74.7148288973384, 2.6e-18], ["QQZ01652.1", "ABC_transporter", "BGC0002497", 1, "Other", 26.0, 92.0, 55.70342205323195, 3.4e-18], ["AFJ14797.1", "PlpH", "BGC0000403", 1, "NRP", 23.0, 91.0, 104.18250950570342, 4.5e-18], ["AAG28766.1", "CoaD", "BGC0000617", 1, "RiPP", 24.0, 90.0, 104.18250950570342, 9.9e-18], ["BAB04170.1", "lantibiotic_haloduracin_protease_and_transporter", "BGC0000517", 1, "RiPP:Lanthipeptide", 22.0, 90.0, 100.38022813688212, 1.3e-17], ["WP_002130748.1", "peptidase_domain-containing_ABC_transporter", "BGC0001863", 1, "Terpene+RiPP:Glycocin", 22.0, 89.0, 102.28136882129277, 1.7e-17], ["WP_010071703.1", "peptidase_domain-containing_ABC_transporter", "BGC0000554", 1, "RiPP:Lanthipeptide", 23.0, 89.0, 89.54372623574145, 2.2e-17], ["AXA91311.1", "peptidase_domain-containing_ABC_transporter", "BGC0002044", 1, "NRP", 27.0, 89.0, 75.09505703422053, 2.9e-17], ["CAA07371.1", "StrW", "BGC0000690", 1, "Saccharide", 28.0, 88.0, 50.950570342205324, 3.8e-17], ["QIZ86016.1", "NHLP_family_bacteriocin_export_ABC_transporter", "BGC0002330", 1, "RiPP", 23.0, 88.0, 77.75665399239544, 4.9e-17], ["AAB81307.1", "ATP-dependent_translocator", "BGC0002579", 1, "RiPP", 24.0, 88.0, 90.49429657794677, 4.9e-17], ["AAR12535.1", "putative_ABC_transporter", "BGC0002468", 1, "NRP", 30.0, 87.0, 32.69961977186312, 8.4e-17], ["EEM14530.1", "hypothetical_protein", "BGC0001210", 1, "RiPP", 24.0, 87.0, 101.71102661596959, 1.1e-16], ["EHQ60564.1", "ABC_transporter", "BGC0001356", 1, "RiPP", 24.0, 87.0, 95.24714828897338, 1.1e-16], ["KAH7877381.1", "multidrug_resistance-associated_ABC_transporter", "BGC0002747", 1, "RiPP", 32.0, 86.0, 35.551330798479086, 1.9e-16], ["AAY93395.1", "2-phenylethylamine_uptake_protein_PeaH", "BGC0000413", 1, "NRP", 23.0, 85.0, 99.80988593155894, 3.2e-16], ["CAJ87588.1", "putative_inner_membrane_ABC-transporter", "BGC0001055", 1, "NRP+Polyketide", 28.0, 84.0, 46.00760456273764, 5.5e-16], ["BAJ10687.1", "hypothetical_bacteriocin_transporter", "BGC0000561", 1, "RiPP:Lanthipeptide", 24.0, 84.0, 64.63878326996198, 7.1e-16], ["CUX79064.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001715", 1, "NRP", 22.0, 84.0, 97.52851711026615, 7.1e-16], ["ABC94901.1", "GdmT", "BGC0000514", 1, "RiPP:Lanthipeptide", 25.0, 83.0, 51.33079847908745, 1.2e-15], ["MBE3200464.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 23.0, 83.0, 78.51711026615969, 1.2e-15], ["QIW91876.1", "TRT", "BGC0002543", 1, "NRP", 33.0, 83.0, 39.543726235741445, 1.2e-15], ["BAE46917.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 28.0, 83.0, 39.543726235741445, 1.6e-15], ["AFD30962.1", "CrmT3", "BGC0000966", 1, "NRP+Polyketide", 26.0, 82.0, 60.45627376425855, 2.1e-15], ["ACM68694.1", "AerN", "BGC0000298", 1, "NRP", 24.0, 82.0, 72.81368821292776, 3.5e-15], ["QVK45109.1", "ABC_transporter", "BGC0002438", 1, "Alkaloid", 25.0, 82.0, 79.84790874524715, 3.5e-15], ["EYT83450.1", "ABC_transporter", "BGC0001213", 1, "Polyketide", 27.0, 81.0, 61.026615969581755, 6e-15], ["ADV57362.1", "bacteriocin_ABC_transporter_of_glycocin_F", "BGC0000484", 1, "RiPP:Head-to-tailcyclized peptide", 25.0, 81.0, 71.67300380228137, 7.9e-15], ["WP_128623601.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002144", 1, "RiPP:LAP", 24.0, 81.0, 86.12167300380229, 7.9e-15], ["CZT62789.1", "ABC-type_uncharacterized_transport_system,_permease_and_ATPase_components,_involved_in_Hassallidin_biosynthesis", "BGC0001614", 1, "NRP", 23.0, 80.0, 96.7680608365019, 1e-14], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 22.0, 80.0, 99.04942965779468, 1.3e-14], ["MBE3202945.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 23.0, 80.0, 76.42585551330798, 1.3e-14], ["AOT85881.1", "ABC_transporter", "BGC0001787", 1, "RiPP", 23.0, 78.0, 72.6235741444867, 3.9e-14], ["ABS50188.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 27.0, 77.0, 43.536121673003805, 6.7e-14], ["BAB78441.1", "", "BGC0000555", 1, "RiPP:Lanthipeptide", 22.0, 77.0, 100.0, 6.7e-14], ["ACU62760.1", "ABC_transporter_related", "BGC0001392", 1, "RiPP", 21.0, 77.0, 100.76045627376426, 6.7e-14], ["BCB17017.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002523", 1, "NRP", 24.0, 77.0, 65.20912547528516, 6.7e-14], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 25.0, 77.0, 77.3764258555133, 8.7e-14], ["CRG85577.1", "hypothetical_protein", "BGC0001402", 1, "NRP", 30.0, 77.0, 30.988593155893536, 8.7e-14], ["WP_082829620.1", "pallidocin_leader_peptidase/ABC_transporter", "BGC0001862", 1, "RiPP:Glycocin", 21.0, 77.0, 101.52091254752851, 1.1e-13], ["WP_051767685.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 25.0, 77.0, 49.23954372623574, 1.1e-13], ["ACC84962.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 24.0, 77.0, 101.90114068441065, 1.1e-13], ["XP_011392729.1", "ABC_transporter", "BGC0001281", 1, "Polyketide", 25.0, 76.0, 53.99239543726235, 1.5e-13], ["CAC60277.1", "RumT_protein", "BGC0000545", 1, "RiPP:Lanthipeptide", 23.0, 76.0, 76.80608365019012, 1.9e-13], ["ACA51936.2", "BovT", "BGC0000498", 1, "RiPP:Lanthipeptide", 23.0, 76.0, 79.27756653992395, 2.5e-13], ["BAG22745.1", "putative_ABC-type_multidrug_transport_system_ATPase_and_permease_component", "BGC0000724", 1, "Saccharide", 25.0, 75.0, 50.950570342205324, 4.3e-13], ["ctg1_orf1268", "", "BGC0001752", 1, "NRP", 27.0, 75.0, 55.13307984790875, 4.3e-13], ["AAF00956.1", "mcyH", "BGC0001017", 1, "NRP+Polyketide:Modular type I polyketide", 23.0, 74.0, 98.85931558935361, 5.6e-13], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 26.0, 74.0, 43.91634980988593, 9.6e-13], ["EPE34342.1", "ABC-transporter", "BGC0001035", 1, "Polyketide+NRP", 27.0, 74.0, 31.1787072243346, 9.6e-13], ["AXN93617.1", "ORF1", "BGC0001953", 1, "NRP", 21.0, 74.0, 100.38022813688212, 9.6e-13], ["AHW81482.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 27.0, 73.0, 36.12167300380228, 1.3e-12], ["AXN93604.1", "ORF1", "BGC0001952", 1, "NRP", 21.0, 73.0, 100.38022813688212, 1.3e-12], ["QCC62989.1", "hypothetical_protein", "BGC0001966", 1, "NRP+Polyketide", 30.0, 73.0, 35.741444866920155, 1.3e-12], ["QPP19365.1", "Pen6", "BGC0002501", 1, "Alkaloid", 24.0, 73.0, 103.61216730038024, 1.6e-12], ["QCQ67878.1", "ABC_transporter", "BGC0002297", 1, "NRP+Polyketide", 21.0, 72.0, 96.95817490494296, 3.7e-12], ["ABI30230.1", "McdT", "BGC0000526", 1, "RiPP:Lanthipeptide", 26.0, 71.0, 58.935361216730044, 4.8e-12], ["ACY56719.1", "ThnT", "BGC0000600", 1, "RiPP", 22.0, 71.0, 96.95817490494296, 6.2e-12], ["MBE3202944.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 27.0, 71.0, 40.3041825095057, 6.2e-12], ["AKU24610.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 22.0, 70.0, 76.23574144486692, 1.1e-11], ["AAZ23072.1", "hypothetical_protein", "BGC0000291", 1, "NRP", 25.0, 70.0, 38.40304182509506, 1.4e-11], ["CCA65705.1", "predicted_ABC_transporter_ATP-binding_protein", "BGC0001343", 1, "Polyketide", 30.0, 70.0, 40.49429657794677, 1.4e-11], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 21.0, 70.0, 101.90114068441065, 1.4e-11], ["CAD29796.1", "ABC_transporter", "BGC0001015", 1, "NRP+Polyketide", 22.0, 69.0, 96.7680608365019, 1.8e-11], ["QWM97334.1", "ABC_transporter_ATP-binding_protein", "BGC0002384", 1, "NRP", 23.0, 69.0, 91.06463878326996, 1.8e-11], ["CCT75968.1", "related_to_multidrug_resistance_protein", "BGC0001606", 1, "Polyketide", 25.0, 69.0, 42.01520912547528, 2.4e-11], ["MBV7329448.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002131", 1, "Polyketide+NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 69.0, 40.68441064638783, 3.1e-11], ["AAR12534.1", "putative_ABC_transporter", "BGC0002468", 1, "NRP", 22.0, 69.0, 84.60076045627376, 3.1e-11], ["AKV71854.1", "DevA_family_protein", "BGC0001525", 1, "Other", 26.0, 68.0, 36.69201520912547, 4e-11], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 23.0, 68.0, 86.69201520912547, 4e-11], ["CAB11989.1", "sporulation_killing_factor_biosynthesis_and_export;_ABC_transporter_(binding_protein)", "BGC0000601", 1, "RiPP:Head-to-tailcyclized peptide", 26.0, 68.0, 39.73384030418251, 5.3e-11], ["MCF2150409.1", "DevA-like,_part_of_ABC_transporter", "BGC0002625", 1, "NRP+Polyketide", 26.0, 67.0, 41.254752851711025, 6.9e-11], ["ABQ04129.1", "ABC_transporter_related,_ATPase_component", "BGC0000838", 1, "Polyketide", 29.0, 67.0, 37.832699619771866, 9e-11], ["AAD28497.1", "McjD", "BGC0000581", 1, "RiPP:Linaridin", 23.0, 66.0, 100.57034220532319, 1.5e-10], ["QBK15045.1", "hypothetical_protein_ClaG", "BGC0002196", 1, "Polyketide", 26.0, 66.0, 38.40304182509506, 1.5e-10], ["CAP20369.1", "putative_ABC_transporter_ATP-binding_component", "BGC0000347", 1, "NRP", 27.0, 66.0, 41.06463878326996, 2.6e-10], ["AYM52853.1", "molybdate_ABC_transporter_ATP-binding_protein", "BGC0001964", 1, "Polyketide", 27.0, 66.0, 33.07984790874524, 2.6e-10], ["AHZ20760.1", "ABC_transporter_transmembrane_domain/ATP-binding_domain_protein", "BGC0000369", 1, "NRP+Saccharide:Hybrid/tailoring saccharide", 21.0, 65.0, 96.7680608365019, 4.5e-10], ["AOH72612.1", "DevA_family_protein", "BGC0001526", 1, "Other", 26.0, 65.0, 36.69201520912547, 4.5e-10], ["EEM79978.1", "ABC_transporter", "BGC0001887", 1, "RiPP", 25.0, 64.0, 36.31178707224335, 5.8e-10], ["AXF14777.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002563", 1, "NRP", 28.0, 64.0, 33.65019011406844, 5.8e-10], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 26.0, 64.0, 37.452471482889734, 1e-09], ["AMM63163.1", "AniL", "BGC0001371", 1, "NRP", 25.0, 64.0, 34.4106463878327, 1e-09], ["AKJ70948.1", "multidrug_transporter_(ABC)", "BGC0002611", 1, "NRP", 26.0, 63.0, 30.228136882129274, 1.3e-09], ["ALD83698.1", "ABC_transporter_ATP_binding_protein", "BGC0001299", 1, "Polyketide", 29.0, 63.0, 33.26996197718631, 1.7e-09], ["ADU86007.1", "putative_ABC_transporter-related_protein", "BGC0000165", 1, "Polyketide:Modular type I polyketide", 29.0, 62.0, 36.69201520912547, 2.2e-09], ["QED93126.1", "ABC_transporter_ATP-binding_protein", "BGC0002556", 1, "Alkaloid", 25.0, 62.0, 34.79087452471482, 2.2e-09], ["WP_037568401.1", "ABC_transporter_ATP-binding_protein", "BGC0002656", 1, "Polyketide", 25.0, 62.0, 37.6425855513308, 2.2e-09], ["BAL15734.1", "ABC_transporter", "BGC0000432", 1, "NRP", 23.0, 62.0, 101.14068441064639, 3.8e-09], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 28.0, 61.0, 33.65019011406844, 6.5e-09], ["MBE3200465.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 25.0, 61.0, 51.33079847908745, 8.4e-09], ["CCM44340.1", "ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 24.0, 60.0, 42.96577946768061, 1.1e-08], ["AAN85545.1", "antibiotic_resistance_protein", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 28.0, 60.0, 32.31939163498099, 1.1e-08], ["AAY28215.1", "unknown", "BGC0000074", 1, "Polyketide", 31.0, 59.0, 34.98098859315589, 2.5e-08], ["UEF20586.1", "ABC_transporter", "BGC0002360", 1, "NRP", 28.0, 58.0, 31.368821292775667, 5.5e-08], ["ALN78925.1", "ABC_transporter_family_protein", "BGC0002630", 1, "RiPP", 24.0, 58.0, 98.47908745247148, 5.5e-08], ["PHM26616.1", "daunorubicin-DIM-transport_ATP-binding_protein_ABC_transporter_DrrA", "BGC0001130", 1, "NRP+Polyketide", 23.0, 57.0, 36.69201520912547, 7.1e-08], ["AAC18099.1", "ATPase_component_of_putative_ABC_transporter", "BGC0000225", 1, "Polyketide", 26.0, 57.0, 42.585551330798474, 1.2e-07], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 24.0, 57.0, 33.460076045627375, 1.2e-07], ["EDN75903.1", "ABC_transporter,_ATP-binding_protein", "BGC0002302", 1, "Saccharide", 26.0, 57.0, 36.12167300380228, 1.2e-07], ["BAR87968.1", "ABC_transporter", "BGC0002674", 1, "RiPP", 22.0, 57.0, 104.18250950570342, 1.2e-07], ["AAP11941.1", "ABC_transporter_ATP-binding_protein", "BGC0000612", 1, "RiPP:Thiopeptide", 24.0, 56.0, 40.49429657794677, 1.6e-07], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 30.0, 56.0, 28.89733840304182, 1.6e-07], ["BAL15733.1", "ABC_transporter", "BGC0000432", 1, "NRP", 30.0, 56.0, 20.15209125475285, 2.1e-07], ["BAE46918.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 25.0, 56.0, 50.19011406844106, 2.1e-07], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 29.0, 56.0, 29.087452471482887, 2.1e-07], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 29.0, 56.0, 29.087452471482887, 2.1e-07], ["FNF07_04290", "ATP-binding_cassette_domain-containing_protein", "BGC0002329", 1, "NRP", 27.0, 56.0, 33.07984790874524, 2.1e-07], ["AKQ52538.1", "Hypothetical_protein", "BGC0002533", 1, "NRP+Polyketide", 23.0, 56.0, 96.00760456273764, 2.1e-07], ["ABW91161.1", "exporter/resistance_protein", "BGC0000019", 1, "Polyketide", 27.0, 56.0, 32.69961977186312, 2.7e-07], ["AAY59067.1", "ATP-binding_protein", "BGC0000128", 1, "Polyketide", 26.0, 56.0, 35.17110266159696, 2.7e-07], ["WP_030684648.1", "ABC_transporter_ATP-binding_protein", "BGC0001607", 1, "Other", 25.0, 56.0, 35.361216730038024, 2.7e-07], ["KJY94245.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002691", 1, "NRP", 25.0, 56.0, 38.02281368821293, 2.7e-07], ["MBN3579119.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 21.0, 55.0, 95.81749049429658, 3.5e-07], ["WP_232292338.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001999", 1, "NRP", 26.0, 55.0, 31.93916349809886, 4.6e-07], ["QDQ83030.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002564", 1, "NRP", 26.0, 55.0, 31.93916349809886, 4.6e-07], ["AAN85547.1", "ABC_transporter", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 24.0, 54.0, 38.97338403041825, 6e-07], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 24.0, 54.0, 40.49429657794677, 6e-07], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 26.0, 54.0, 35.741444866920155, 6e-07], ["CAJ96467.1", "ABC-type_transporter,_ATPase_and_permease_components:_Pep3E_family", "BGC0000330", 1, "NRP:NRP siderophore", 25.0, 54.0, 35.361216730038024, 7.9e-07], ["ABX00624.1", "LmrC", "BGC0000907", 1, "Other", 27.0, 54.0, 33.65019011406844, 1e-06], ["NAO96303.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002117", 1, "NRP", 26.0, 54.0, 33.07984790874524, 1e-06], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 25.0, 53.0, 33.840304182509506, 1.3e-06], ["CAF31834.1", "hypotheticl_protein", "BGC0000699", 1, "Saccharide", 26.0, 53.0, 31.749049429657795, 1.3e-06], ["AAM97297.1", "lipoprotein_releasing_system_ATP-binding_protein_LolD", "BGC0001591", 1, "Other", 28.0, 53.0, 33.07984790874524, 1.3e-06], ["ADO17957.1", "CclT", "BGC0000487", 1, "RiPP:Head-to-tailcyclized peptide", 25.0, 53.0, 40.68441064638783, 1.8e-06], ["AAV66099.1", "PltJ", "BGC0000127", 1, "Polyketide", 26.0, 52.0, 35.17110266159696, 2.3e-06], ["CCC55907.1", "putative_ABC_tarnsporter,_ATP-binding_protein", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 24.0, 52.0, 35.17110266159696, 2.3e-06], ["CCQ18690.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 27.0, 52.0, 28.707224334600763, 3e-06], ["AAB92603.1", "ScnT", "BGC0000557", 1, "RiPP:Lanthipeptide", 24.0, 52.0, 100.0, 3.9e-06], ["ACN29733.1", "putative_peptide_transport_ATP-binding_protein", "BGC0000814", 1, "Alkaloid", 27.0, 51.0, 34.030418250950575, 5.1e-06], ["ACG70837.1", "ATP-binding_phosphonate_ABC_transporter_PhnC", "BGC0000938", 1, "Other:Aminocoumarin", 28.0, 51.0, 33.840304182509506, 6.7e-06], ["QEV63710.1", "dipeptide_ABC_transporter_ATP-binding_protein", "BGC0002657", 1, "Polyketide+NRP", 28.0, 51.0, 36.12167300380228, 6.7e-06]], "MAAAAKME_19200": [["WP_164776400.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002701", 1, "RiPP", 29.0, 119.0, 51.162790697674424, 2.1e-26], ["QIW19940.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002111", 1, "RiPP:Lanthipeptide", 27.0, 110.0, 49.658002735978116, 1.7e-23], ["CAA19960.1", "putative_serine/threonine_protein_kinase", "BGC0000551", 1, "RiPP:Lanthipeptide", 26.0, 91.0, 46.238030095759235, 6.2e-18], ["WP_205382163.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000553", 1, "RiPP:Lanthipeptide", 26.0, 89.0, 46.238030095759235, 4e-17], ["CAX48971.1", "serine/threonine_kinase", "BGC0000519", 1, "RiPP:Lanthipeptide", 25.0, 88.0, 47.46922024623803, 6.9e-17], ["BAG19226.1", "AmfT_protein", "BGC0000496", 1, "RiPP:Lanthipeptide", 25.0, 87.0, 46.238030095759235, 9e-17], ["SSHG_03588", "serine/threonine_protein_kinase", "BGC0000546", 1, "RiPP:Lanthipeptide", 23.0, 55.0, 46.10123119015048, 4.9e-07], ["WP_037629851.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000546", 1, "RiPP:Lanthipeptide", 23.0, 55.0, 46.10123119015048, 4.9e-07]], "MAAAAKME_19210": [["BAL15735.1", "Tyr/Ser_phosphatase", "BGC0000432", 1, "NRP", 27.0, 71.0, 71.42857142857143, 3.9e-12]], "MAAAAKME_19220": [["BBA21054.1", "putative_glycerol_kinase", "BGC0001740", 1, "NRP+Polyketide", 48.0, 235.0, 95.01915708812261, 9.5e-62]], "MAAAAKME_19230": [["BBA21054.1", "putative_glycerol_kinase", "BGC0001740", 1, "NRP+Polyketide", 49.0, 81.0, 81.31868131868131, 1.4e-15]], "MAAAAKME_19260": [["CAH60133.1", "putative_Clp-family_ATP-binding_protease", "BGC0000700", 1, "Saccharide", 44.0, 510.0, 89.9425287356322, 7e-144], ["AJW65403.1", "ATPase", "BGC0001195", 1, "NRP+Polyketide", 44.0, 508.0, 89.22413793103449, 1.6e-143], ["AAM94782.1", "CalR4", "BGC0000033", 1, "Polyketide", 43.0, 507.0, 93.10344827586206, 5.9e-143], ["QZS07503.1", "hypothetical_protein", "BGC0002362", 1, "Polyketide", 43.0, 507.0, 93.10344827586206, 5.9e-143], ["ABX02680.1", "ATPase_AAA-2_domain_protein", "BGC0001521", 1, "NRP", 45.0, 489.0, 88.64942528735632, 1.3e-137], ["EAU38966.1", "heat_shock_protein_78,_mitochondrial_precursor", "BGC0001122", 1, "NRP+Polyketide:Iterative type I 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"CCGCGGAAAAAATTTTTCCCGGCAATCAACAGGCTTTTTTGCAGGATTATCCACAATCCACACCCTGTCAAAAACTTTTTCAACACCATGTGGATATGTCTGGTCAAAACCAGGCTCTCCTTTTGCCACTATAAGAAAAGTTACCCACAAGACTTATCCACTTTTGACCAATTTTGATAAAATTATCAGCAGAGTTAACAGGCTTCTTTTTATTCCTTGTCCACAGCCTGTGGATTCTGGATTTATTTCTTCCACCTGTGGAAAACCTGGTCAGTAAATGCTAAAATAATTTTGCTAAACGATTTTTTGGAGGGAATGTTTTTTGTTCGATTTAGAAAAATTCTGGGATAGCTTCAACGCTGAAATGCGGTCCGAATTTAACGAAGTATCCTATAATGCCTGGTTCAAAAACACCAAGCCCGTCTCCTTCAACAAGGACACCCATGAATTGGTAATCTCCGTCCAAACCCCCGTGGCAAAGGGGTATTGGGAGCAAAACATCTCCGCTAACCTGATCCAGTCGGCTTATGCCTACGCGGGAATCGATATCTACCCGGTTTTCGTCGTTAAAAACGGCCCGACGCCCAGCAGCGAAAGAATGCTGGAGCCCCAGCCGCAGGCCAAGCCCGAGAAAGCCCGGCCGCAAGGCCGCGAATTCACCAAGGACCTGCGCTTAAACGAGAAGTACACCTTCGAGAACTTCATTCAAGGCGAGGGCAACAAACTGGCTGCCGGAGCCGCTTTGGCGGTTGCCGACAACCCGGGGACCTTCTACAACCCCTTGTTCATCTTCGGGGGCGTGGGGCTTGGTAAAACCCACTTGATGCAGGCGATCGGCCACCAGATGCTGGCGGAAAGACCAGATGCCAAGGTTGTCTACATTCAAAGTGAGACTTTTGTCAACGACTTCATCAATTCCATCAAGAACAAGACCCAGGACAAGTTCCGGGAGAAATACCGGACAGCTGACCTGCTCTTGGTCGACGACATCCAGTTCTTCGCCAAGAAGGAAGGGATTCAGGAAGAATTCTTCCATACTTTTGAGACTCTCTATAATGATCAAAAGCAGATCGTCATGACCAGTGACCGGCTGCCAACGGAAATTCCCGACCTGTCCGAACGGCTGGTCTCGCGTTTTGCCTGGGGACTGCAAGTTGAAATCACCCCGCCAGACCTGGAAACCCGGATCGCCATCCTGCGCAAGAAGGCTGAATCCGAAGGACTGGAGATCGATGAAAGCACCCTGGACTATGTGGCCAGCCAGGTCGATACTAATATCCGGGAGCTGGAAGGGGCCCTGGTCAAAGTCCAGGCCCAGGCCACCATTCAAAAGCAGGACATCAACATTGGCTTAGCCCGGTCGGCTTTAGCCGACCTCAAGCTGGTCCAGAAGAGCAGGGGACTGCAGATTTCCAAGATCCAGGAGGTCGTGGCCAACTACTTCCAGACCTCAGTGCCGGACCTTAAAGGAAAGAAGCGGGTAAGGCAGATCGTCATCCCGCGTCAGATTGCCATGTACCTGTCCCGCGAGCTCACCGATGCCAGCCTGCCAAAAATCGGCCAGGAATTCGGGGGCAAGGACCACACGACCGTGATGCATGCCTGCGACAAAATCGCCCGGCAGATCAAAACGGACACTGAAATCAAGTCCGCTGTTTCCGACCTGCGGCAGATGCTGGAAAGATAGGTCCGTTGATAACTTGAGGACAAGTCCGTGATTTATCCACATTTTTTCAACTGGCAAAAGTCCGGATTACCGGGCTTCCGGTTAGTTATCAACAGAATTAACAGGACCTACTACTACAACTATCTATATATAAATAAATAATTAAATAAAGAGAGCAGCAAACTAACCAAGGAGGACCAAATGAAATTTACTGTACAGCGCAATCTTTTTATCAATGACTTGAATTCAGTTTTAAAGGCAGTTTCTTCAAGAGCCCAGATTCCGATTTTGAGCGGGATCAAGCTGGAATTGACGGAAGCTGAACTGATCATGACTGGCAGCAATGCCGATATTTCCATTGAACTGAGCCAACCGGTTTCTGATGACTTACGGGTTGAATCAACTGGCTCCATTGTCGTGACCGCCCACTTGTTCAGCGAAATCGTCCGCAAATTGCCAGGCAGGGAATTCACTTTTGAAGTCAAGGAAGGCAACCAGATCCAGATCACCTCTGACAAGGCGGACTACGTAATCAACGGCTTGGACGCCAGTGCCTACCCGCGCCTGCCGGAAATTGCCGGAACTTCCTTCAGCCTGCCATCTAAGACCCTGCGGGAACTGATCACCCAGACTGTTTTCGCCGTATCCACCGAAGAAAGCCGGCCAACTCTGACCGGGGTCAACTTCAGCTTCAAGAACGGGCAGATCAAGGCCGTGGCTACTGACTCCCACCGCCTGTCCCAAAGAATCGTCGACATCGCGGCCGGTCCAAGCGAAGACCTGTCCCTGATTATCCCGGGCAAGAACCTGCAGGAACTAGCCCAGATCATCGGCGACGCTGACCAGGACATCAAGGTTTACCTTGGCGACAGCCAGATCCGCTTTGAATTTGAAAACCTGTCCTTCTACACCCGTCTTTTGGAAGGGGTCTACCCGGACGTTGACCGCCTTTTGCCAACTGAGTCAACGACCAGCGTGCAGTTCACCGTTTCTGACTTTATGCAGACTTTGAGCCGGGCCAGCCTCTTGACCCACGCCAACCGGACCAACGCCGTCCAAATGACTTTGAACGTGGCTGACCAAACCGTCCTGGTTTCAGGTAATTCCCCGGAAGTCGGAAAGATTGAGGAAGAAGTCGGCTTCAGCAGCTTAACTGGCCGGGACCTGACCATTTCCTTCAACCCGGACTACATGGCCGCTGCCCTGCGGGCCTCAGTAACTGACTCCGTCATCATCAACTTCACGGAAAGCTTGCGGCCATTCACGGTCGTGCCAAATGACCAGTCAGTTGAATTCGTGCAGCTGATCACCCCAATCCGAACTTTCTAAAACAGACTGCCAATAATTCACAAAAGCCACTCTCCGGAGTGGCTTTTTTTCGGCTATTTTTTCATACAAGCGTTTTTTACGGCTTTAAGCCCAAAATACCTGCTTTATGTACCACGATACTAAATTGGTAAATAAGCGCTCTGAGGCCCTAAAAAAGGCCTTCTTGATTGAGTTTCCCTGGAAAAAAGACTATAATTTATAAGTGGAATATTAGTTTTACATTGGTGAAGGTGAAGACTATCGAAACTTTTGCGATTAATGGTGAATTCATCACCCTCGGACAATTTTTGAAAGATGAATGTATCGTTTCCTCGGGCGGGCAGGCCAAATGGTACCTCAAGGACAGTCCAGTTCTGGTCAATGGGGACAAGGAAGACCGCCGGGGCAGGAAGCTCTATCCTGGTGACCGTTTGACCGTTGCCGGCAAGGAATATGAGCTGGTTCAGGGACTTTAATGTACCTGAGCCGGTTTAAGCAGAGCGGTTTCCGCAACCTGGCTCCCCTTAACCTGGAATTTGACCCGCACGTGAACGTTTTTCTGGGTGAAAATGCCCAGGGCAAGACCAACCTGCTGGAAGCGATCTACTTTCTGGCCATTAGCCGGTCCCACCGGACCAGCAATGACCGGGAGATGATTGCCTTCGGCCAGGACTTTGCCAGCCTGGCTGGCCGGGTGCACAAGCGCCAGCTGGACCTTGACCTGCGCATCGTCATCAGCAAGAAGGGCAAGAGCGCCTGGGTCAACCGGGTAGAGCAGGCCCGGCTGTCCAAGTATGTGGGCCACCTTAACGCCATCCTCTTTTCTCCGGAAGATATGGAATTGGTGAAGGGGGCCCCTTCTTTGCGCCGGCGCTTCATGGACCTGGAATTCGGCCAGATCAATCCGGAATATCTCTATTTCGCCAGCCAGTACCGGCAGCTGCTCCAGCAGAGAAACAACTATCTCAAGCAGCTGGCCCGCCGGCAGGCCAGTGATCAGGTCCTGCTCGGGGTCTTAACTGAGCAGGTGGCCACGGCGGCCAGTGAACTGATCTGGCGGCGCTACCGCTATTTGGCTGACCTCAACCGCTACGCGGCCGAGGCCTACCGGGCCATCAGCGGGCAAAGAGAAGAGCTGCGGGTCCTTTACCGGCCTTCAGCCAAGGAGATTACGGCTGCAGACCAGCCGGCCCAGATCAAGCAGAAGCTGCTGGACCGCTTTGCGGAGATCGCTGACGATGAGCTCAGACGGGCCACGACCCAGCTGGGTCCCCACCGCGACGACCTGGAATTCCAGCTGGACGGCAAGAATGCCCACCTGTTTGCCTCCCAAGGGCAGCAGCGGACCATTGCCCTCAGCTTGAAACTGGCGGAAATCCAGCTGATCAAGCAGCTGACGGGAGAAGAGCCGATCCTGCTTTTGGACGACGTGATGAGCGAACTGGACCAGAACCGCCAGGCAGCACTGCTCAATTTCATCCATGGTCAAACCCAGACTTTTATTACGACAACCGATCTGGATAGTATTTCCCAGGAAATAGTCAAACAGCCGCGAATTTTTTACATCCATTCCGGCCAAATTATAGAAAAAGAGGAAGGATTAAATGGCAGACGAAGATAACAAATTGAAGAAGGCCAAGCAGTTTGAACAAGAAGCTGACAAGTACAATGCCAGCCAGATTCAAGTCCTTGGCGGCCTGGAAGCCGTACGCAAGCGTCCGGGGATGTACATTGGCTCAACCAGCTCCCAGGGCTTGCACCACCTGGTCTGGGAAATCATCGACAACGGGATCGACGAAGCCCTGGCAGGTTTCGCGACCAAGATCGAAGTCACCGTCAACGAAGACAACAGCGTGACTGTCCAAGACGACGGGCGGGGGATCCCGGTCGACATCGAAAAGAAGACCGGCCGGCCAGCCGTTGAAACTGTTTATACGGTTCTGCACGCCGGTGGTAAGTTTGGCGGTGGCGGATACAAGGTTTCCGGCGGTCTGCACGGGGTCGGGGCTTCCGTTGTCAACGCCCTGTCCACCAAGCTGAACGTCACTGTCATGCGGGATGGCAAGAAGTACTACATCGCCTTTGACCACGGCCGGGTCGTTGAAGAGCTGAAGGAAGTCGGCACGGTGCCTTTGACTGAACACGGGACCATCGTCCACTTCTGGCCGGACCCGAACATCTTCACGGAAACCACGGTTTTTGACGACAAGATCTTGAAGAACCGGATCCGGGAACTGGCCTTCTTGAACAAGGGGCTGAAGCTGACCTTCACTGACAAGCGTAATGACACGGCGGAAACCTACGTCTACCACTTCGAAGGCGGGATCAAGGAATACGTCTCCTTCCTCAACCGGGGCCAGGAGGTACTTTTTGACGAGCCAATCTACGTGGAAGGCAAGTACGAGGGCATCGACGTTGAAGTATCTTTGCAGTACACGACCGGCTACAAGACAACCTTGATGACTTTTGCCAACAACATCCACACTTATGAAGGCGGGATGCACGAGGCGGGCTTCAAGACAGCCTTGACCCGGGTGATCAACGACTACGCCCACAAGGCCAAGATCTTGAAGGAAAACGACGACAACCTGTCCGGGGAAGACATCAGGGAAGGGATGACGGCCGTGATTTCCGTCAAGCACCCGAGCCCGCAGTTTGAAGGGCAGACCAAGACCAAGCTGGGCAACTCCGACGCCAGAACTGCCGTTGACCGGGCCTTCTCAGAAACCTTCTCCACTTTCTTGATGGAAAACCCGCAGGTGGCCCGCAAGATCGTGGAAAAGGGGCAACTGGCTGAAAGAGCCAGAGTTGCCGCCAAGCGCGCCCGGGAAGTTACCCGGAAGAAGTCCGGCCTGGAAATCGCCAACCTTCCAGGCAAATTGGCCGACAACACTTCAAATGACCCGAACATCTCAGAACTCTTCATCGTCGAAGGGGACTCCGCCGGCGGCAGCGCCAAGCAAGGGCGGAGCCGGCTGACCCAGGCCATCCTGCCCATCCGGGGGAAGATCCTGAACGTGGAAAAGGCCTCAATGGACCGGATCCTGGCCAACCAGGAAATCCGGACTCTGTTTACGGCCCTGGGGGCCGGCTTTGGGGCAGACTTTGACGTCTCCAAGGCCCGCTATCACAAGCTGATCATCATGACTGACGCCGACGTCGACGGGGCCCACATCCGGACCCTGCTCTTGACCCTCTTCTACCGCTACATGCGGCCGATGATCGACAAGGGCTATGTTTACATCGCCCGTCCGCCTCTGTACCAAGTGCGCCAGGGCAAGCTGATCAAGTACCTGGACACTGATGAAGAACTCCACGACTACCTGGGGTCATTGCAACCAAGCCCGAAGCCAATCGTGCAGCGCTACAAGGGACTGGGGGAAATGGACGCTGAGCAATTGTGGGAGACGACCATGGACCCTGAAAACCGCCGCCTGGACCGGGTGGACCCGGAATACGCCAAGGACGCGGATGAAGTCTTTGAAATGCTGATGGGCAACGAAGTTGGCCCGCGGCGCAAGTTCATCGAAGACAATGCCCAATATGTTGAAAACTTGGATGCTTAATGGGAGGTAGGAATGGATAACGAAAATCAAGGACAAGACCGGCGGATCAGAAATGTCGATCTGACGCAAATGATGCGGAGCTCCTTCTTGGACTACGCCATGTCCGTCATCGTGGCCCGGGCTTTGCCGGACGTCCGCGACGGCTTGAAGCCGGTTCAGCGGCGGATCCTGTACGGGATGAACGAGCTGGGCGTGACTCCAGACAAGCCTTACAAGAAGAGTGCCAGAATCGTCGGGGACGTCATGGGTAAGTACCACCCGCACGGCGACTCCTCCATCTACCTGGCCATGGCCCACATGGCCCAGGACTTTGCCTACCGCTACATGCTGGTAGACGGGCACGGTAACTTCGGTTCCGTCGACGGCGACCGACCGGCCGCCATGCGTTATACTGAAGCCAGAATGAGCAAAATTGCCGTGGAAATGCTCCGCGACATCAACAAGAACACGGTTGACTGGCAGAGAAACTACGACGACACGGAAAATGAACCGACCGTCCTGCCAGCAAGAATTCCTAACCTCCTGGTCAACGGTTCCAGCGGTATCGCGGTCGGGATGACTACCAACATTCCGCCGCACAACCTGTCTGAAGTCATTTCCGGCATTCACATGCTGATGAAGAACCCGGACGTGACGACCAAGGAACTGATGAAGGCCATCCCAGGGCCGGACTTCCCAACCGGCGGGATCTTGATGGGCCGGGGCGGGGTTCTGCACGCTTATGAAAGCGGCAAGGGCAATATCGTCGTCCGGGCCAAGACCGAAATCGAAACGGAAAAGAGCGGGCGGGAAAGAATCATCGTCAGCGAGATTCCTTACCTGGTCAACAAGGCCGAACTGGTCCAGAAGATCGCTGAACTGGCCCGCGACAAGGTGATCGACGGCATTACCGGGGTGCGGGATGAATCCGACCAGAGCGGGATGCGGATCACGATTGACGTGCGCCGGGATGCCAGCGCCAGCGTGGTTTTGAATAACCTCTTCAAGGAAACTCAGATGCAGACCAACTTCGCCATGAACATGGTGGCGATCGTGGACGGGGCACCGAAGTTCCTGACCTTGAAGCAGATGCTGCAGTACTACCTGGCCCACCAGGAAGACGTCATCACCCGCCGGACCAAGTTTGACTTGGAAAAGGCTGAAGCCAGAGCCCACATCCTGGAAGGTTTGCGGGTAGCGCTGGATCATATCGACGAAATCGTCAGCTTGATCCGGAACTCTGAATCAAGCGACATCGCCAAGGCGGGCTTGATCAGCCGCTTTGACCTGGACGACCGCCAGGCCCAGGCTATCCTGGACATGCGTCTGGTCCGCCTAACCGGTTTGGAAAGAGACAAGGTCGAAGGCGAATACCAGGAGCTTTTGGTCAAGATTGCCGACTACAAGGACATTCTGGCCAAGCCTGAAAGAATCGACCAGATTATCTACGACGAGCTGCTGGACATCCAGAAGCGCTTCGGTGACAAGCGCCGGACCCAGATTACGGCCAGCGAAGTGGTCACGATCGAAGACGAAGACTTGATCGAAGAACAAGACGCCCTGTTGACTTTGAGCCACCAGGGCTATGTCAAGAGGATGCTGATCGACGACTTCAAGACCCAAAACCGCGGCGGCAGGGGGATCAAGGGGATGGGCGTCCAAAAGGGCGACTTCATCGAGCACCTGCTCTACTCAAGTACCCACGACTACCTCTTCTTCTACACCAACAAGGGCAAGGTCTACATGAAGAAGGCCTACGAAATCCCAGAATACGGCAGAAGTGCCAAGGGCCTGCCGATCGTCAACCTCCTGCAGCTGGACAAGGGCGAGCACATCCAGACCGTGGTCAACCTGCCGCAAGGGCATGACGACGACTACGCCTTCTTCATCACCAAGCTGGGGACGGTCAAGCGGACCAAGATCCGGGAATTTGAAAATATCCGGACCAACGGTTTGATAGCCTTGACCTTGAAGGATGGCGACGAACTATCCAACGTCCTGACCACTGACGGCCAGCAGAACATCTTGATCGCTACCCACCAGGGCTACGCCGTGACCTTCAATGAAGATGACGTCCGGGCCATGGGGAGAAGCGCTGCCGGCGTCCGGGGGATCAACCTCCGCGAAGGCGACTACGTGGTTGGCTCAGGGATTCTGAAGCCGGAAGACGAAGTTCTGACTATCTCGGAAAAGGGCTACGGCAAGCGGACCGCGGCTAGCGAATACCCGGTCAAGGGCCGGGGCGGCAAGGGGATCCAGACCGCCAAGATCGGCGAAAAGAACGGTCCTCTGGCTGGCGTAGCCGTGGTTGACGGGCAAAGCGACATCATGCTGATCACCACTGACGGGATCATGATCCGCTTCAAGACCAGCGATGTCTCCCAGACTGGCCGGTCAACTATGGGCGTCCGCCTGATCAAGGTGGCTGACGGCAATGCCGTGGCAAGCATGGCAGTCGTGCCGGCTGAAGCTGAAGGCGAAAGCGAGCCGGAAACGGAAGTTTAGCGGCAAAGAAGCAGAAAAAAGTAAGATAAAATAAAAAATTACCAGCATTTTTGGCGTAATAGTTAGTGGGAAGAAAATCCCGGATCACGTGTAGAAAATGTTTGGTAATTTTTTTATTTTGTGCTAAAATTAGACATTGCGAGTAATTAGATCAATTACTCCTTGTTCTTGATTTTAGCAAGAACCATTTAGTCCAAAAGGAGGTGCAATAGTCTATGACAACCAAGTACGAAATTACTTACATCATCAAGCCAGACGTTGACGATGAAGCAAAGAAGGCCATTATTGACAAGTACACTAAGGTGATCGCTGACAATGGTGGTGAAATGGTTGAAGCTAAGGACTGGGGCAAGCGTCGTTTCGCATACGAAATCGAAAAGTATCGTGAAGGTAGTTACTACATCATGACCTTCACTGCTGAAGACGCTGCAGCTGTCAACGAATTTGCCCGTTTGAGCAAGATCGACGACTCAGTTCTGCGTTCAATGACTGTCAAGTTAGACAAGTAATTGTAGTTTCCCGTAATACAGGAATAGGAAGGAAATAAGTATGATCAATAACGTTGTACTTGTTGGCCGTTTAACACGTGATCCTGAATTACGTACTACTGGGAGCGGCATCTCGGTTGCTACGTTCACTTTGGCCGTTGACCGGCAGTTTACCAATGCATCAGGCCAGAGAGAAGCGGACTTCATCAGCTGCGTGATTTGGCGCAAGGCTGCGGAGAACTTCTGCAACTTCACCAGCAAGGGCAGTTTGGTGGGCATCCAGGGCCGGATCCAGACCAGAAACTATGATAACAAGGACGGCCAGCGAGTTTACGTGACAGAAGTCCTCGTGGACAACTTCTCACTGCTCGAATCACGCCGCGAGCGTGAAAGCCGTCAGCAAAACAGCGGATTTGGCGGCCAAGGTCAAAGCCAAAACACCGGCTTCAACACCGGATTTGGCGGCGGCAGCGGCTACGCCAACAACGCCTTCGGCAGCCCGGCCCAGTCAAACGGGCCAGCTAATGCCGGATTCAATGAAGATAACAAGAAAGATGCCGGCGGAGACACGAACACCAACCCGTTCGACAGCTCTGACGATGCAATCAACGTCTCAAATGACGATCTTCCATTTTAAAATTACACAAGAAAGGATCTGAAGACATGCCTCAACAAAGAAAAGGTGGTCGTCGTCGCCGCAAGGTTGACTTAATCGCAGCCAACCACATCGACTACGTAGACTACAAGGATGTTGATCTGTTGAAACATTTTATCTCAGAAAGAGGTAAAATCTTGCCACGTAGTGTCACTGGTACTAGCGCTAAGAACCAACGCAAGGTTGCTAACGCTATCAAGAGAGCCCGGATTATGGGCCTCCTGCCATTCGTAGCTGAAGACTAAGCAGCAGGATCAATAAGCAAATAAAGAGACCGAAAGGAGCTGGACTCCTCCCGGTCTCTTTTTCTTTTCTGTTTTGTGGCGGGCGGCAATAGGTTATAATGGGAGTAGTTTAATCTGCTTTAAAGATGTGGAAGAATTTTATGAAAAACTTTTTACGCAAACTTGAATTGCCAGAATTCGTCCGGGATTCCAGATTAATCATTGCCTTCTCCAGCATCGTCTTCTTGACGGTGCTGAGCACGGTTGTGGCTTTCTTCATCAACCGGATCTTCGGGGTGGCGCTTTTGCTGGTCCTGATCGTGGATGTCTTTTGGGTCGTTTTCGGCGTTTACATTCTCGCGAAAAATACCAACAATTACGCGGCCAACCTCTCCTACCGGATTAAACGGGGGGAGCAGGAGGCCATGATCAAGATGCCGCTGGGGATCCTCCTTTACGACGAGTCCCGGCACATTCAATGGGTCAACCCTTACTTGCAGCTCTATCTGGGCGACAAGGACGCCATCGGCAAGACGATTACGGCGGTCGACCGGAAACTGGGCAAGCTGGTTGAAGAAGCCCTTGAGGCCCAGACTTCGGAAAGCAAGGTGGTCAAGTGGGGGGATCACCAATTTGAAATGGTTGTCCAAGACAGCATCGGGGTCATCTACCTGATCGACATTACCCGTTATGCCGACCTGGCCGACAAGTACCGGGCTGAGCGCCTGGCTATCGGGCAGATTTTTGTCGACAACTACGACGAGCTCAGCGAGCGGATGCACGACCAGGAACTGGCCAGAACCAGCACCTACCTGCAGACGACTTTGAACGACTATGCCGAGAAGTTCAAGGCCTACTTGAAGCGGATTGATGAGGATCACTTTTTGCTTCTGGCCCACTTGCAGGACCTGGAAGCCATGGAAGAAGACAAGTTCTCAGTTTTGGACAAGATCCGCCTGGAAACCAGCCGGAACAACACTCCTTTGACCTTGTCGGTCGGGATTGCCTACGGGGGCGAGTCGCTGAGAAAGATCGCCAACCAGGCCCAGGCCAACTTGGACCTGGCCCTTGGCCGGGGCGGGGACCAGGTGGTCCTCAGGGAACTGGGCCAGGTAGCCCGCTTCTACGGGGGCAAGTCCAACCCAATGGAGAAGCGCACCCGGGTCCGGGCCAGAATGGTTTCCCAGGCCTTGGGCGAGCTCTTCAAGGATGTTGACCAGGTCTTCGTCCAGGGGCACCAGCGGCCCGATATGGACTCTGTCGGTAGCGGGATCGGGGTCGTCAAGATCGCCCGCCTGCACGGGGTCAAGGCCCACTTTTTGCTAGACACGGCCCACTGCAACTATGACGTTGACCGTCTGGTCAAGAAGATGCAAGCGGAAGACCCCCAGCTGGACCTTTTTGTTAGTCCGGATGAGGCCAACGCGGTCGCGACGGACAACTCCCTTTTGGTCATGGTAGACCACTCCAAGTACTCCATCACTTATGACCAGCGCCTCTATGACCGCTTGAGGAACCGGATCGTGGTGATCGACCACCACCGGCGGGGGGAAGAATTCCCGGAGAACCCGATGCTGACTTATGTGGAGCCATATGCTTCCTCAGCCAGCGAACTGGTGACGGAAATGGTCGAATACCAGCAGCCGGCTGAGGACAACCGTGTTTTGACCAACCTGGAAGCCACGGCCATGCTGGCCGGGATCACGGTCGACTCCAAGGAATTCTCCTTGCGCACGGGGACGAGAACCTTTGACGCGGCCAGCTACCTGCGGTCGATCGGGGCGGACTCCTCGGTGGTCAGTGAGCTTTTGAAGGAAGACATTTCCAGCTTCCTGGTCAAGAGCCACCTGGTGGCCAGCCTGCAGATGCTGCGGCCGAAGATGGCGGTCATGCAGGGGCCGGAGGACAAGGTGATCGACCCGATCTTGACGGCCCAGGCAGCCGATATGGCGCTTGATTTGGAAGGGGTGTCGGCATCTTTTGCCATCACCAGAAGAAGCGGGGACAAGGTCGGGATTTCAGCCCGGTCGATGGGCCACATTAACGTCCAGGTGATTATGGAGAAGCTGGGCGGGGGCGGCCACTTGTCCAACGCGGCGACCCAGATCAAGGATATTACGGTCAAAGAAGCCAGTCAGCGCTTGCTGGCGGCAATTGACGAATATCTGGAAGAAAACAGTTAAAGAAGAAAAGGAGCAATGAACGATGAAAGTTATTTTTATGCAAGACGTTAAGGGCAGAGGCAAGCTAGGCCAGGTCAAGGACGTGCCTAACGGCTACGCCCAAAACTACCTGATCAAGCAGGGCCTGGCCAAGGAAGCCAACAAGGGCAACCTAAACACCCTGAAGCGGGTGGAAGCCAATGAAAAGGCTGAATACGAAGCTCAAAAGGCAGCTGCCCAAGAGATCAAGAAGCAGCTGGAAGCTGACGAAACTGTGGTTGAACTGAAGGCCAAGGCCGGCAGCGACTCCCGCCTCTTCGGTTCAATCTCCAGCAAGAAGATCATCGAAGGCCTGGACAAGCAGTTCGGCATCAAGCTGGACAAGCACAAGCTGGAACTGCGGGAACCAATCAAGGTTCTGGGCTACACTAATGTCCCAGTCAAGCTCTTCAAGGGCGTTGAATCAAAGGTCCGGGTCCACGTTACCCAAGAAAATTAAGAAGCTGAAAGAAGCCGTGGTTGATGGATAATCTTGTCACGCAGCAGATCCCGCATGATTCTGCTGCTGAAAAAGCCGTTTTAGGGGCGATTTTCATTGATCCCGAAGTCATCAACGAAGTCAGCTCGGTCTTAGAGCCGGCTGACTTTTATGAACATGCCAACCGCCTGGTCTATAGCGCCCTTTTGGCCCTCTATGACGAGAGCAGGTCAATCGACCTGGTTACCTTGCAAGAGGAGCTCAAGCGGCGGGGACAATTGGAAGAACTGGGCGACATGGCCTACGTGTCAGAGCTTTTGCTGGCAACGCCAACTGCCTTTCACGCCAAGGACTATGCTCGCATCGTCCACCAGAAGGCCCAGCTGCGCAATTTGATCAATGCCAGCCAGAAGATTATCTCCAGTGCCATTCAAGGGTCCGACAGCGTGGATGAGATCCTCAGTAACGCTGAAAATGAGATCATGAACGTCTCCAATGAAAAGGGGAGCGGGGGATTTCATAAGATTGAGGACCTGGTTGCCGGAGCCTTTGAGCAGATTTCAAATAATGCCCAGAACCAGGACGTGGTCACGGGTTTACGGACGGGTTTTGCCTATCTGGACGAGATGACGACGGGGCTGCATGATGACGAATTGATCATTTTGGCGGCCCGGCCGGGTGTCGGTAAGACCTCTTTTGCCATGAACATTGCCAAGAATGTGGGCATTACTGAGAAAAAGCCGGTAGCGGTCTTCTCCCTGGAAATGTCTGGTGAGCAGCTGGTCCAGCGGATGCTGGCGTCAACGGGCTTGATCGACTCCCAGCACCTCAGAACGGGGATCCTGGACAGGGATGAGTGGAACCAGCTGGACATGGCAGCGAGTGTCTTGCGGCAGGCTCCGATCTATATCGATGACACGCCGGGGATCAAGATCAGCGAAATCCGGGCCGAGTGCCTGGCCCTGCAAAAGGAGCTGGGCGACCTGGGCTTGGTCGTGATCGACTACCTGCAGCTGATTGAAGGGCCAAAGACTGAGTCCCGCCAGCAGGAAGTTTCCGCGATCTCCCGCCAGCTCAAGAAGATGGCCAAGGAATTGCACGTGCCGGTAATCTCCCTGTCGCAGTTGTCGCGGTCAGTTGAGCAGCGGCAGGACAAGCGGCCAATTTTGTCAGACTTGCGGGAATCAGGGTCAATCGAACAGGACGCCGACATCGTTGGCTTCCTCTACCGGGACGACTACTACCGGGATGAGGATGCTGACGGCGAGGAACCGAAGGAAGATCCGGAAAACGTTGAAGTTGAAGTTATTATTGAAAAGAACCGGTCAGGCCGGCGGGGATCAGCCAAGCTGATGTTCTCCAAGCCTTACAACCGCTTCTCCAACCTGGACACAGGCCATGAGGCCCAGGGGTAGGGGAAAGACAGCAAAAAAGCGCGAATCGTTGCTGATTCGCGCTTTTTGTTATTCTTGCTTGATGTCGTAGGCATCAAAGAAGATTGGCCCTTTCTTTGAGTCATTGAAATTCGGCCGGTTCTTGTAAGGATCATCGCTCATGTTGAAGGGCAGGGTAAGGCTCTGCCGGGCCGTTTCAATGATGTTGTTAAAAATCTGCCTGAAGATAGCCCGCATTTCCGGATCCATGGCAAAGTATGCCCGGCTAAAGCGGTAGGTGCCGGTAAAACCACTGATCTGTTTGATCTTAGTGATGTCCAGGCTGTCAAAAGCCTCAAAAAGGGCGGACCACATCTGCCCTCTTTTTTCCGCGGGAATCTGGTGGTTGAAGGCGATTAGGGAGTGGCGGATCACCCGGGCTGTAGTCGTGAGGCCCTCTTGCGCCAAAACATAGCTATCCCGGCCAACGCTCCAGGTTCTTGGGTCGTGCTGGCTGAGGACTGGTTGGTTGCACTTGACGACCAAGACGCGCTCAGTATGGTCCAGCATGCAGCCGACAATGGAGCTTTCCGGGATGTAGGTCTTCATCTTTTTGATATTGTCTTGGAAGCCGCTGGTTCCGTAAATTTGGTGCCGGTAGCCAGGTCCGTCAAAGCTGTAGGACTTGATGACCCGGGCTTGAATCTGCGGATCAGCAAAGGCCAAAGCGTAGTGGGCGTAGTTGCCCCCCTTGGAGTGGCCGGTGATATAGATCCGGTCATTTGGGTAAGCTTGGCCGATCTGGTTAAGATACTTAGCGGCCAGCCTATGTCCGGTAATTTCCGGTGTATAATCCATGACCATGTCCTCGCTCCAGCCGATCATGGACTGGTCGGTGCCCCGGTAGGCGACCAGGATGGTCCGATCGTCCAGGCGGAAGGCGCCAGCGTTGAACTGGATGGGTTCAGGCTCAATCTCCATCTTGTTGACCCAGTCCAGAACGGTCAAGTCAGCCAGACGGGGAGACTTGGGCAAGAGCAGGAGTTCAGTTTTGTCCAGATTTTGCCAGCGGTCAGGCTCACGTTGGTAGATGGACTGGCAGACCTCGCCTAGGCTGTGGCCAACCGTACTGCCGTCAAAGGGAAGGTAGGCCAGGGATGCCATTAAGGAAGCATCCAGGCTGTTGAAAGGGCAAGCTTGAAAAGGCAGATCGCCTCGCCAGCGCAGATAGTCTAATGTTGATGCCATGGCAAAAACCTCCTTAGCTAACATTGTACATTATTGCGCAAAAAGCGGGGCGGGGAAGGCTTTTTATAAAAATACGGCACTCTAATGAGTTCCGTAAAATAATTGTTTTATAGGTCTGCAGTTCTGCTTTCGGTAATAACATCAATTGGATCAATTTTTGCTATTTTGGCAAAAGTAGGCAAAACCGCTAAGAAAGTAAGTACATAGCAAAGCAGAACAAGTCTCAACAGTGCCTCAAAGAATATAGGTATACCGATGGCCGTATTCTTTGAGATTAACATGAAGTAGCTTACTACTGTGATGATCGTACCGAGAAGGGCATATAGAGTGCCGATCTTTACAGAGTACGCTGTGATGATCTTAAAGACATCTTTGTTTGAGAAGCCGATGCACTTAAGAATCCCGAATTCATAAGTCCGCTGCTTGTAGATAATATTAAAGATAACGTAGAGAACCAGAAAAACAAGCAGAACAATGAAAAATGTAAACTTGTATGTCGCGCGCTTAGTTTGTTCAAGCTGCTGTTTGACATTATCTACGTTTTGCAACGTAGAGTATGTACGGATATCTTTAGAAATAGAGGACAGCTTTTTAGGTGCGCTTTTCAGTTGATTGATATTTTTCATGGCCAGAACATAAGCACTCGGAGCCCAAGCCTTTTGACTGAAAGACTTAAACACTCGCTTATGAATATCAGACTTGGAAATCACCTTATCTTGAATGTCTTTCATCGCTTTGTAGTCCATGAAAAATACATTCCCCTGCTCAGAACGGTGATAAGGGTAGTTGCTCTTATATACTCCGGAAATCTTAGCTTTAATGGTTACGACTTTATAGACATCGCCATCAATAGATATGCTCTTTGTATTATCGTTAGGAAGCTCAGTTTCAGTTATATACAGCAAGTAGGGAACGTAGGCCTTTAACGTTATGACTTTGTTCATCACGCTTTTTACTGAAAGTCCATTTTGTGATAGAAAATCTTGTGATACGACAAAATTCTTGGAATTTTTTAAAGGCTTACCAAACTCGTAGAAATATTTTTTATTGAGATCTTCAGGATAGATAGGCTGAATGGAAAAATCGTTACTGATTGTCCGCTGCTTGTTTCCTAAATAGATCGAATAGCTTTTTGGGACTGCAGTTCGCACATTTGTTGGGGTGATTCCGTAAGAAGTAAAATTGATAAAGGGATATACTTTTGCGCCTAAGAAGGCATTCTTGATTTTACTGGTAGTCTTGCTGCTAAACGCGCGATATGAATCAAGGTCTTGTGGACTGTTAACTTTCGCAACATCGTTAACCACAAAGATGTTTTTATCCATAACAGCTGAGAATGAACTTTCCTGCTTGTTTACAAGAATCGTTGGCAGTGCTGGCAGATACGAAGAAAGTAACATGAGGAGTACGACAACGACAGATAGAATACAGGAAAGAGAAGATATATGGTTCTTGAGCTTTGAATTATAACTAAAAGATTGTTTAAGCGTTAAGTCGTTTGTCTTTTTTATTGGCTCTTCATCTTTGGTAAAGGAATGGGTATCATCTTTTACCATAAGCAAGGATTGGTTTCTTATTTCTAATATACTGTCCGCGTATTTGGAAGGCAGGCTTTCGTGTGAAACGACAATGACAATTTTGCCAAAATCATGTGCTAGCTTGGACAAAAAGCCGTATATATTGTCAGCATTTGTTTCGTCTAGTGAACTTGTTGGTTCGTCAGCTAAGATTATTTTTGATTGAGAGATAAGAGCCCGGGCGATAGCAACTCTTTGTTCCTCTCCCCCTGACAAATCTTTTGGAAATTTGCCTAGCAAGTCTTCAATCTTGAGCAATCGCGTAATTTCAGATAATTTTTTTATAGCATGATCACTATTGTAGTCAGAAGACGTTGCTAATGGAAGCAAGATGTTGTTCTTAACAGACATATTTTCCACTAGATTATTTTTTTGGAAAACAAAACTAATATATGAGTGTCTAAAATCGGCACGGTCGTTATCAGACAATTCCCATAAATTCTTCTCTCCCCAGAAGACAGAACCGCTAGACGGCTTTTTTAATAATCCAAGGCAATTTATTAAGCTAGTTTTACCGATCCCTGAAGGTCCCTTAATTAAATAAAAATTGCCAGGCAAAAATGAAAAACTAATTTTTGATAAAATAGTTTTTTCGCTATATTTAACGGAAAGTCCCTCAATTTTTAATAGATCCATTGTAATATATCCTTTTATACACAAATTTACTTTCAATATTTATCTTAACAATTTATCGGCAGAGTAATATAATGACATTGTACACTAAGCGAAAGCAAAGTGTATAGTAAGTTATCTCTCTTTATTTGATGATTTTAGGAGTGTATTTTATGAGAAGAAAAGCAAAAGGGCTAATTAGTTTAGCCGCGGCTATGTCAGTCTTTGCAGTCTTTGCAAACTTAAATGAACAGAAAGCTGATGCAGCATTTGTTTCTAGACAAGCGACATGTACGTGGAAGTCAAGAGCAAATATTACGACCGGTTGGTTCACTTTGCACGGAAAAGGATATTCATATCCAAACAGTGGGAAGGTTACTTCAGCTTGGATCACATCCGGTAGTGCAATGTTTAACACGATTGTTAATAAGAAGCACTGGACGTATAAGACCCCTCGCGGGATGCACTTGATGGGGCAGGCTACTGACAAGTGTGCAGTTGGGACGCAATGGGCATACGTTCCTATTTCTAGCGATACTAGAACTGTCGGCGTCCAATTCTAAGGAGTGAGCGTAATGAAAATCGAAACGATTAAGCCGATTTGGCTGACTCTGCTTTTGGTTTTAAGCTTCATCTTGCCGTTGTTGGGCTGGTTGCCACTGGTGTACTTGTACAGCCAACGGCAGGATCCGGCCATGCAGGGGATGGAAAAGACGCTTAAGCTCGCGGCTGGCGTGCAAGTAGGGTGCTTGGTGATTTTGGCGGCAATCTTCTACTTCTTTGCCCCGATTCACGATTAAAAACACATGATTTCAATTTTTTTAGTACAAGATCTTGTTAATGCCTCCTTGTCAGCTAAGTCTTTATAGAGAAATATTTTATCACTCTGTCAGTTTTTTTCACGTGAGGGCTACTTGCTGCCGGGCGAGTAAGTGATGCGCTTGATATCCGGGTATTTGCGCAGGTTCATGATGATCTGGTTTTCATCGATCCGGCTGGCGATTTCGCCATCGCAGCTGAAAAGGACATGGTCGTCAGAGACGCTGATGATCTTGATGCTGAGCTGGTGGACCTCGTTTTTTTCCAGTTCGCTTTGAATGGTTTCCAGGATATGGGGCGTGTTGCTGGCTTCGATCAAGAGGCTGATGCTGACCTTGCGGAGCAGGTTGAGGACCGTTTCTTCCCGCAAAAAGCGCTGCACGAGCAGGAGCAGGACGGCGGCCACGATTCCAACCCAGTAAAGGCCGACCCCAATCGCGATTCCGATGGCTGAAGTGGCCCAGAGTCCCGCGGCGGTCGTCAATCCGGAAATCTGCTCTTTATGGACCATGATGGTCCCGGCACCGATAAAGGAGATTCCCGTGACCGTCAAAGAGGCGATTCGCGATGGATCGTAAGAAACGTTGCTGAAAGTGAGCATGTCGTAGAACCCATACTTGGAGACGATAGAAAACAGGGTGGAGGCAATGGCTACCACGACGTGAGTATGCAGGCCCGCGCTCTTTCTCTGTGTTGCCCGCTCAAAGCCAATCAGGCCGCCGCAAAAGGCGGACAGCAGGATCCGCAGAAGCCAGACCAGTTGAAAGCTGACAGGTATGCCGGTAAATTTTTCCATATTTTTCCTCCTTGCTGATTTTAGTTCTTTCGGCGCAAATAAGCCGAAAAAATAAAAAAATTCCAAAAAGACTTGCAAAAGTCTGCAATTAATGATTAAATTAATAACTGTGTTAAGGCACAAGAGTTGCTGACTTAGCTCAGTTGGCAGAGCACTTCACTAGTAATGAAGGGGTCGGAGGTTCGAATCCTCTAGTCAGCATTATACAGATTCTTGTTTACGATTAAACTTTATTTATCAGCGTTTTGCAAAGATAAATAAAGTTTTTTTGTAATATCGATCTATTGACAGTTTATCAGAATGATAAGTCAGCAGCAGAAAATATGGAATCGTTTAATAAAGGGACTGTTAACTAGCTAGCTAACAGTCCTTTTTTTGACGAAAGGGAAGATTTGATGAAAATTGGCGAAGCACTGCGTAAAAAAGATTGGAACTAGGGTTGACCCAGCAAGAAATGTGCGAAGGAATCCTTAGCCGACCTTTTTATGCAAAGGTTGAAAGTGGAAAAAATCGAATTAACGCGGAAAGCTTGTTCAAAATATTATTCGCGCGGCAAATCGACCTTGTCGAATTTGGCAAGCTGGTTCAAGGAACGTACGATTCGGCAGAAAATAAGGCTGAGAAGCGGTATCAAAGCCAGATGAACGTGGCAGTAAGTACCAAAGATCTTAAATTAATGGAAAAATACTGTCAGGACATAATTGAGTCGTCGAATGATGAAATCTTACAATTGCGTGCTTTGGTAGCTTTGGCTTACTTTAAAGGTGAATTGGGAGGCCTTAGCAAGGAAATTCGCGTGAAAATAAAAGAAAAATTCGATGAGGGGCGCAATTGGACCAAACGGACAGAATTGCTGGGATTGCTTGCGAATACCATGCTTTTATGGGACCAAGATGACTTGAACTATTCTCGAAAGATATCTCAGACTGTTTGAAAATTATTTGGTTATTTGCTATGAACGGAAAGCAGATGGAAAAGAGTATCAAAAAAATCGCGTTGATGAAGTGATCAAATACATCATTAGCGTTACGGCGCCCTTTCAGCTGATGATATATAGGAACTGCGGCATTTTTCTTTAAAATAAGGTATTGTGCCGGCAGCTTGGTGAGGAAAGCCAAAAATTGGAGGACGCCCGGATCAAGCGGCAAGCTTGCCTGTCAGTCGCGGAATTCACGCAAGAAATAGTCGACAATATCGGGATTGTGGGAGTCCCTTTTCTGGCGGGAATACTGTACTTCAGGGGCCAGGTGGCTTTCGGGGCAATCATCGCTGCTGGCTATTTAGCCAATGGCGTTTTCAGTTCCCTGCAAGAGTCTTTTTCGGCTTACATTTCGGCAAAATCAACGACTAAGTTGAACGAAACCATGCTCCAGCATTTGCAAGTTCAAGCGGCCGCGAAGACTGAAGATCCCCAAACGATTATCGGCCGGGGGATAGAAGTGAACTTGGGCGGGCAAGTGATTAAATATCCAGATTTTACGATCAAGGCAGGAGAGAAGGTCTTACTTACCGGGCCAAGTGGCTGCGGGAAAAGCAGCTTGTTTAAACTTCTGCTTGGCCAAATTGAGCCGAGCAAAGGCCAGCTGACATATTTGGATTCTGAAGGGAAGGAAATCCAAAATCCGGCCCGGTCCTTTGAATATCTGCCGCAGGCTGGCTGGATTTTCCCCGGAACAGTCGCTGACAATATCACCATGTATGATGCCAAAAAGCAGACCAAATTGGCGGAGGTACTGAAAAAGGTTGGCTTAGACCGGGACTTCTCTAAGGCAGTTGACCTCGACCGTGAGGTCAGTCCCCAGCAGGCAGACCTGTCTGGCGGGCAGAAGCAGAAGATTTTCCTGGCCCGCGGTCTCCTGCGTCATAAAAAGTTCTCCTTGATGGATGAACCGCTGAGCGCGCTTGACCAGGCCAGCCGGCAGAAAATTTTGCCACTTCTGCTGGGGCGGAAACAGACTTTGATTTTTGTTGGGCATAATTTACCGCTCGAAGAGCGGGAGCGATTTGATCAAGTGATCAATTTGAAAGAAGGGGAAAATTTTGCAAATTAAGGATTTGTTTCGGCTAAACCCCGGCCGCTTTCTGGCATTACTGCTGGCCCGGGCATTGACGGCCCTGCTGACGGCGTGGGCAGCTTTTGCCTTGACCTGGGAGTTCAGCGCGATAAAAGACCGACATTTTTCAGCAATTTCTGCTGTTTGCGGTTCTGCAGCTTTTCTTGCTCTTGCTTGGCAGCCTGCTGGATCAAGTGACCGATTATTTTTGGGAACTGCACCTTGAAAAGTATTTTCACCAGATCCGGCAGGAGGTTCTTGCCCACGCTTATGCTGAAGCGGCTGGGACAAAGGAAAATCTTCAAAGTGAATTGACCAATGACCTGGAAATGCTGAAGGACCAGTATGCTGATTCTATTGGTGGCATCGTGCACTCGGCCGTCCTACTGGCCTTGGTTGCCGGTTCTCTGGCGTCTTTCCGCTGGAGTCTGCTCTTACTGGTTATTGCCGTAAGCGTCTTGCAGATGTACTTGCCACGCGTACTTGATGAGCCACTGCAAAAAGCTACTGACAAAATTTCGGCCAGCAACCGGAAATATCTGCAGACTCTGGCCGACTGGCTCAATGGCATTGATACTTTGCGCCGCTACGCGGTCGGGGAAAAATTCCTAAGCATTATTCACGCTGATGCCCGTGAGTTAGAGTCTGCTTATGTAAAGCAGCAGAAAGCTGACCAGGAACTGGACTACCTTAATCAAGCTATTTATTCTTTGGGGAACATGCTGATTTTCCTGCTGACTGCTTATCTGGTAGCGCGTGGGCAGCTCGAATTCGGCTTGATTGCCTCGGTAAATGACTTCAGCTTGTACCTGTTTGGCTCTCTGATGAATATTGCCAATTACCGGGGACAGCTGGTTGTCAGCCGCGGCTTGCAGGAAAAGATTCTGGACTTGCGGCAGCCACTGACTAAAGCAGAAGAAGGGGGGACAGCGCCAGCTGCCTTCTCTGTAAAGGATCTGCGGCTGGCTTTTGCCAATGGACATGAAATCAAGTACCCAGACATCCAAGTCAAGCCGGGTGAAAAAGTACTTTTGACTGGGGCCAACGGGACTGGCAAGTCGACTCTGTTTAAGCTCCTGGTAGGGGAAGCAGCGGCCAGCGGAGGACATTTTTGACCAAGCTGGAAAAAAGGTGAAGCCTGACCGGACCAAAATCGGCTATCTGCCTCAGCAGGCGGTCTTATTGCCAAGCAGCGTCATGAACAATATCACCATGTTTGATCCAGATCTTGAGTCAAAGGCAAAGGCCAGCGTGGTCGATGCCCAGCTGGCTGAGGCAGTCGATAGTTGGCCTCAAGGCCTGGAAACGCCGGTTGACTTGGCAGGGGAGCCCGCGCGGAAGTTCGTGACAGCCAGCTTCTCTTGGTTGATGAAGGGACCAGCGCGATCGACCAAGCAGCTGGCCGGAAAATCCTGGACAAATTGCTCCAGTCTAAACAGACAGTGGTTTTGATCGCGCACAATCTGACTAAAGAAGAGCGGGACCTGTTTGACCGGGAAGTAGCCTTGCGAGCATAGATCAGCATACATAAAGAAAATGACCTTGTTTAAGCAAGGTCATTTTTTGTTGCATTCAGTTTCAACATGACAGACCGCCGGCGACGGACGGCAACGGAATGGGCAATGCCTTGATCAAAATAGGCGATGCCCTTTTTTTCGTCGTAATTTTGTACTGCATCCAGGTTTATCAAGCTTTGCCGGTCAGCTGGGACCAAGCTAGGATACCTTTTTTCATAATCCTTGAGGGTGCCCAGGCAATCGAAGACCTTGTTTTTGGCGTAAACGCGTAAAGTCTTGTACTTCTTCGGCTGAATGCTGATGTAATAGAGGTCAGCAAGTGGAATCTTCTCAACAAAATTGCGGATCTTGCTGTAGGTAAAATAGCTTGTCTGCTTTGCCGAAGTCATGGTCAGCCGGTAGCGCTTATACGCGGTATCAACTGTTTCATAGATTCTGTGCTGGATTTCTAAGGGAGCCGCGTCTTTGGTGATATAGTCCAATGGCTCAACGTGCCGCTCAATGGTTAGCCGTAAGGCCGTCGCGTCGGCGGTGACAAAGACAATTTGGCTCAAAATGCCGATGTTTTTGATCCGGCTGGCGACTTCAATGCCGTCCAGACTGGTCTTCAGGTCAATATCCAAAAAAGCCAGGTAGTTCAAATCTTGATGCTCCGCGATATAAGCCAATACGCTGTGAGGATCGCCGGTACTCAAGACGACACGGGCATCATAAGCAGCAGGCGTCTCGTTGATCTGAATTCTGTTTTCAATCATTTGCTGAATGATTTCACGTTCAGCAGTATTGTCTTCCAAAATGATGATGGCTAGCATTTTTTCTATCCCTTCTGAATAACTAATTCAAATGAAATTTCGCTGACGCTTTGCTCAATTTCCAAGGACAAATATGGGTCGCTGTTAACGATTTCGTTGACGTTATCAAGCCCCAGTCCATCATGATTCTGCTTGCTCGTTACCCTTGGCTTCAGAACTTGGGCAAGATTGACTGGCTGGGAAATCGTATTTTGCACGATCAGGGAATAGTTATTGCCCGAGTATTTGGTCAGCAGAACGCTGATCTGCCCATCTGCCTGTGACTGGCAGGCTTCAATCGCGTTGTCAAAAAAATGCCAACGCAGCGGATGATGCTTACGATATTTACGGGCAGAGTAGCAATTGGCTTGTTGATCTCAACCTTGGTCTTGATGCCTTGGTCTTGGGCCTGCTGCAGCTTGTCGATGATCAAGTACTTCAGTTCTTTGATCTGCAAATTGGCCAGTTCCAAAGTCATTGAGTTGGCCGCTTCTTGCAGGCGGTTGCTGTCAGCGACCAGTTCTTCAAGGTACTTGCTGGCCCCGGCGACATCGGCGGTCAGCAGGTAGCCGTTTAGCGCCAGGAGGCTGTTTTTGTAATCATGCCGCGCCTTGCGCAGGGAGATATTTGCCTCTTCCAAGCGGGAGGAATACTCCTGGATCTGCTGGATTTCCGCTTTTTGAATCCGTGTGGCCATAATTTCCTGGTTTTTTTGAATCGCCTGGTAGAGATTGAAAAAGAGGACCGTGATCAGCAAAAGCACGATAGTCATCAAGCCCAGTTCCACCAAGGGGGCGATGCTGAAGACCTCGATCATGGACCAAATCACGTGGGTGACCAGCAGGAAGGACCAAACGATCCAAACCAGCAAGTTTAAAAACTGGGGGTTGCCCTTGACGTCAGCGGCAATTTTTTCCAGATTTATGGCAAAGTGCTTTTTCAAAAAGCAAAAGAGCAGGCAGATCAAGATTTCCGGAAGGAAACAAACTAAATTAATGGCCACGTGATCAAGCAGGTGGTGAGTAAAAAAGTAGAAGAGCAGCTGGACGATCCAGCCGAAGAGCTCACCCAGGATAGGGTAAAGGATCAAGACTAAATAGTAGAAAAAGAGCCTGCTTAAGCTTTTTGCCTGCCCGCGCGCGAAAAGCTGGGAGATTAATTGCAAAGCGATGATGGCCGCCAGGACATATTGGTAGCCAAAGAGTACCGGGAGCAACAAGAGAGGATAGAGGAGCAGGTCAGACCGTTTTACACCGGCAAGGGTAAAGGCCAGGAGGACCGAGAAAAGGTAAGGGTTGAAAGCTAGATTGTTGAACAGGCTGTTGATCATTTTTTTATTTCCTTGAAAATACACGTGCTACAGAATAGTTGTTATTTATGTTAAAGCAGTGCCCGGCAAAGTGCAACGCCAGCAACGCTCAAGGCCAGAAATTCAACGTTCAAAAATTATTTTTTCGCGGGAGGCTGGAAAGGCATATAACAGGAAGCATAGATCTTAAGGGAGGAAATAACTATGAATACAGATACTCAAAATTTTCAAACAGAAAATAATCCAGCATTGAAGAACTTACAAGGAACTGCTACAAGTATCCGGGCTAAAAAGCATAGAAGAAAAACGAGAGTAAGCAACAGCAATATCAGCATTCTGTGCAATCACATCAACTTTAACATTTTGGGCTAATTCTTTAAGGGAGGCAATCTCATGGGAAATTACATTTTGATGATTGAAAAAGAACTGAGCCAAGCCTTCAAGGAATTGGAGCAGCCAAGAAGCAAGCATTGGAATTGGCGAAATGCCCATAGCCATATCAGCATCATGTGCCCAAACAGCGACAGCCACTTTTCGATCTTTTCGATTAAAATCCGTTAAGCCATGAAGCTGCTAAAGATCACGCCCCGCTTGCTGTGGGGGATCCTGCTGAGCATGATTGCCAGTTTGCTGAACTTGTATTTGCCTCTGCTGGTTCGCCATTTTATCAACCTTAAGCAGTTCGCCTGGTCCGGCCTTTCTAAAAAAGTCTTGCTGCTGGGCGGGCTGATCCTGATCGGCAACCTCCTGGTCAGCAGCCTAAGCGACTACTTGATCAGCAGTGAAGGCGACCGCCAAGTCCGCCAGCTGCGCCTGCGTCTTCAAAAGCAGGTCCTGCGCCTGCCGCAGAAATATTTTGACCAGCAGATCAGCGGCAATTTGACTAGCCGGATCATCAATGATGTCAACGTGCTGAGAAGCTTTTTGACCGAAACGATCCCGGCGGTGGTTACCGGCTGCTTGACTATCTTGGGCACGATGCTTATCACCTTCTCTTTGGACTGGAAGCTGACTCTGCTCATGCTGCTGGTCTTTCCCATTGACGGACTAGTGACCGTTCCTTTAGGAAAAATCAGCGAAGTGATCGCTGACCAAACCCAAAGCAGCTTGGCTGCTCTGACCGGGGTCACCAGTGAGAGCATCAAGCAGATCAAGACTGTTAAATTGAATAAGACGGAAGAGGACGTTTTTGCCAAAAATGCCAGGGAGATCAACAAGCTCTACCGCCTGTCCCTGAAAGGTGACCGGATCGCGGCGATGATTGGGCCCTTGCAGTCAATGCTGTCTTTTTGTCTGATTATGGCCGTCGTTCTTTATGGGACACTGAGGGTAAAAAGCGGCTCTCTATCGACTGGAACCCTGGGGGCCTTTATGATGTACTTCTTTCAAATTATTGGCCCAATCAACAATGTCGCGCTTTTTTATTCTGACAGAAAGCAAATGCTGGGTGCCACGCGCAAGATAAGCGAAATCATTAACGAAACCGCTGAAGAAACGGCTGGCAAGGAGCAGCTGGCCGTCGCGCCAGGCAGCAGTCTGCTGAGGCTTGACCAGGTCAGTTTTGCCTACCAGGATCTGCCAGTCTTGGAAAAGGTCTATTTGGAAGCCAGGAGTGGTGAAAAAATCGCCCTGGTTGGGGCGACGGGGGCTGGGAAGACCACCTTGGCCAACGTCATCACCCGCTTGTATCCAGTTGCCGCGGGCCGGATCAGTTTAAACGGCCAGGCCAGCACGGATTTTTCCCTAGAGCAATGGCGGGGCTTTTTCAGCGTCGTGCTGCAGGAAAACACGATTATCTCGGGGAGCATTCGTGATAATTTGACCCTGGGCTTAAACAGAAAAGTGACAGACCAGGAGCTTTGGGATGCTTTGGCTCTGGTGCGTTTGGAGGAATACGCGAAAAAATTGCCGAAAGGGTTAGACAGTCTGCTGGGAGAGAGCGGAAAGCAGCTGTCAGGCGGGCAAAGGCAGAGGATGCAGATTGCCCGGGCCTGCCTGCGCGACTTTAAATTTTTGCTTTTAGATGAAGCAACGTCAAATTTAGACGCGGATACTGAAAAAATCATCATGACCGCCTTGGACCGGTTGAAGCGGACCAAGAACTGCGGCCAGATCACGATCGCGCACCGGCTGGCCACGATCGCCAACAGCGACCGGATCTATTTCATCAAGAATAAAACAGTTGTTGCCAGCGGCAGTCATGAGGAACTGCTGGAAAAAGTTCCCGACTATCGCCGCTATGTTCATGAACAGCAGCTCAAGGAAAAGAGGTAGGCATGCATGCTGGAGGAGCAGATAAAGTATTTGGAGGCGGCCAGGAACAGCGGCAGCCTCTTTTACACCCGGCAAAAAGGAGAGGAAGAGCACTTTTTTACGCTTAAAGACCGGCCGGATGCGGCCTGGCTGGAGAAAAAGACTGCTAATTGGCATTACATCCTGTATGAGCCAGATGAATTGCCGGTCCAGGGCTGGAAGATTCACTTGAGTGCCACTGTTAAGCAGGCCCAGGGGATGCTGGATGAGGTGGCGCCGTGCCTGATCAAGCAGAAAGTTTCTTTCAAGTTTCAAAGCAGCCTGGAGCAATACGTTGAATCGAATTCCAAGTACGCTGACCGCGGCGAAAGCGGGAAGTTTATCACGGTTTACCCACGCGGCGAGGAGGAATTTGCTTGCCTGCTGGCAGAATTGCAAAAGCTAACGGAAACTTTTGCTCTGGGACCGTATATTTTGAGCGACCAAAATTGGCAGGAAAGCAACGTTTATTTCCGTTACGGCGGTTTTAAGCCGCTTTATCTGGTCAACGCGGCTGGCGAGCGGGTTCCGGCAATATATGACCCGGCTGGAAACAAAGTAGCAGACCAGCGGCTGCCTTATTACCAGCAAGCCGATTTTGTCAAAGACCTGCCAATTTTTGGTAAAAACACTTTTCCAAAGCAGGAGGCTTTCGCTCCTTTAGAGGAGTATCAAGTCAAAGAAGCCCTGCACTTCAGCAATGCTGGCGGGGTGTATTTGGCCTTGCATGAGGGGAAAAAAGTAGTTTTAAAGGAAGGACGCCAGCAGGCAGGACTGGATGCCAATCTGAAGGACGGCTTTGCCAGAGTTGAAAATGAAGCGGAAATCTTGCGGCAGTTGGCGGACCTGACAGGCGTGGTGAATTATCTGGACGATTTTACCTCATGGCGGCACCACTTTTTGGTAGAGGAATATATTGCTGGACAAAGCCTGGAAGAGCTTCTGGCCACGGAATTTCCCTTTGTCGTTGGGGATCTTGAAAAAAAGGCCCGCTATAAGGCCAAGGCGATCAAAATTTTAGAGCAGCTGAAGGAGCTGCTAAAGCAGATTCACGCCCGCGGTCTCGCCGTTGGCGACCTGTCCTTAAGCAATATCCTGGTTACAGAAGACGGGGATGTCCGTTTGATTGACCTTGAAAACGCGGGCAAGGCTACGGAGAAGTATGTCCCGGGTTTGACGACGGTTGGCTTTGTTTCGCGGGCGGCCAAGACTTACGCGGAAGCTGACGATTTTGCCTTGGCGCGGATTGCCTACTATCTTTTCCTGCCGGTCATTCCAGTCGCTGATTTGGCGCCGGATATAATTGCCAAGCAGGAAAAATGGATTGGGGGCTATTTTGGCCAGGACCTGGTCCAGTTTTTACGGAAAATTGCAGGAAACATGCAGGCGTCCGAACCGATTTTTCTGAAAAAGCCCCTGGCTATCCCCGAGAAAGATCTGAGCCGGCAGACCGTGGACTTTTTTACAGATGGCTTAACTAGGGGGATCTTGCGGCATTCGCGCTTTGACCAGGTAGGATTAGTGCCAAATTTGCATGAGAAAAATGCTGATCCTATGGAACTGCTGAACTTAGCTCGCGGTGCCGCGGGCATTTTATGGGCAGTTGGCCAGAATGCGGACTTGCAGGCCTGGGTAGCAAGAAATCAAGGGAAGATAATCAAGATTGCGGAAGAGTCTGAGGCAACCGGCTTGTTCAACGGTCTGGCTGGACTGGCAAGTGTCTTGGAAAAGCGGGATTTTCCGGCCTTGGCCAAGCAACTTCGGCAAATCCTGCGGCAAAAAGTTGATCTGAATATGGCGGACAATTCGCTGGCCACGGGTTTGACTGGGATTGCCCTGGCCTTGCGGGAAGAGAAGCCGGAAGTAAGCGAAAAAATCGCGGAAGAGCTGGCCGGCAGATGGAAACAGGTGGATTTTGCCAATTTCGCGGATGAGGATGTTGGCCTGCTGACAGGATGGGGCGGCGTGAGCTGGCTTTTTTGGCAATTAGGGCAAAAAGAAGTGGCGGAAGAAATCGTTTCGCGGATTTTGCGGGACCATGCTGAAGAAGCAGAGACTTTGACCATTAGCGATCAATCGCGCGGCTTTGAAAGGCTGCTTCCATATTTGGAAAACGGGAACTTCGGCCTGGCCCTGCTGATGCATAAATTCATGAGGGAGGACCCGGCCTTTAAGCAGAGATATCAGCTCCCGTTCGATAAGCTGAAAAAGTCCTGTTTGACTTATTGCACTTACATGGAGACGCTGGTATCGGGCTACAGCGGGGTACTTCCGCTGGCTAAGAGTCTGGCTGGTGATGGTGACTATGCGCTGCTGGATTACGCTTTAGCTGCTTTGAACCAGTATTTGGTCGCTAACAATGACGAAATTTTGGCGCCTGGAAAATACGGCTACAAGCTGAGCTTGGACTTTTCAACCGGGAGCGCGGGATTGTTGACCCTGCTGAAAGACCTGCGGCAGCGCGATGAGTTCAGCTGGCTGCCGCTTTGACAGGCAAGGAGGGAGAAGCATGAACAATGTAATTTTAGATTTTGAAAAAATGGTTGAAAGAAAGGCTGAGCAATTGTCCCGTAAGGAGATTACGCCGGCCAGCAGTCTCAGCATTCTTTGCACGGGGCATGACGTCAGCAGTTTTGGGATCGGCAGTCTGCTTTTCAAACTGTTTAAGTAGTTGTCCGACTAAAAAAATCAACTTTTTTCGCGAAAGCTCTTGTCAAGGACACGTTTTTATGGTTTAATTAATAACTGTGTTAAGGCACAAGAGTCGCTGACTTAGCTCAGTTGGCAGAGCACTTCACTAGTAATGAAGGGGTCGGAGGTTCGAATCCTCTAGTCAGCATATTTTAACCGTCACCTGCAGGGTGGCGGTTTTTTCTTGCCCAAAATTCTTCGATCTTTTATAAAATTTGCTTCATCCGGTTTGGACTATAATGTAACTGCAGTATAAAAATTGCAGAAATCAGGAGGAAGAAAATGGCACTCATTGAACTCAAGCAGGTGTCCTACCGGGCAGGTGACCAGGAAATCCTGCAAGACGTCTCCTTTGCCGTGGAGGAGGGGGACTACCTTACCTTGACCGGACCGTCGGGCAGCGGGAAAAGCACGACTTTGAAGCTAATCGCGGGCTTGATCTCACCTAATAAGGGGGAGATTTTTTACAAGGGGCAAAATCTTGATAGCCTGGATCTGGTCCAGTACCGCCGGCAGGTGTCCTACTGCTTCCAGCAGCCAACCTTGTTCGACGAAACGGTTAAGGACAACCTGGCCCTGCCTTTTGCCATCCGCAAGCAGGACTTTGCTGAAAAGCGGGCCCAGGAAGCTTTGAAGCAGGTAGATTTGCCAGCTGACTATTTGGATAAAAAGATTACCACCCTGTCTGGCGGGGAGAAGCAGCGGGTGGCTTTGATCCGTAATCTGCTTTTCCGGCCGGAGCTCCTCCTGTTGGACGAAGTGACGACCGGGCTGGATGAAGAGAGCAAGCAAATCGTCTATCAGCTGATCGCCCGGGTGCACCAGGAGGGAACCACGATCGTGCAGGTGACCCATGACCAAGAGGAGCTGGCCGCTTCCAAGCAGCTCCTGCACATGGAAAAAGGAGGAGTTTTGAAATGAAAGCAATAGCTGTCAGCGATCTGTCATTAATCTTGTCTTTTGCCCTGGTCCTGGTACCCGTGGCGATTTCCTGGAAGGAAAAGCTGGGCTTGACCAGGGACATTTTTTACAGCGTGGGCCGGGCTATCGTCCAGCTGGTCATTGTCGGCTACGTCTTGAAGTTCATCATGCAGGTCAACAATGCCCTTTTGACCCTCTTGATGACCTTATTTATCATTTTTAACGCGGCTTGGAACGCCAATAAGCGGGATCCCAACCCGAACCGCCAGCTCTGGCAGTCAATCATGGCCCTTTTGATCGGGACTTACATCACCTTGGGCGTATTGCTGCTGACTCAGACGGTGAAGCTGAAGCCGATGCAGATCATTCCGATTACGGGGATGATCGCCGGCAATGAGATGGTGGCTATGGGTCTGTGCTATAAGGTTTTAGCCACGGGTTTCCATGACCAGCGCCAGCAGGTTTTGGAAAAAATCGCCCTCGGGGCTGACGTGAAGACGGCCAGCATGACCATCCTGCGGCGGAGCATCAAGACTGCCATGCAGCCGACGATCGACTCAGCTAAGACGGTGGGGCTGGTCAACCTGCCGGGGATGATGTCCGGGTTGATTTTTGCCGGCGTGGATCCAGTTTATGCAATCAAGTACCAGATCATGGTCACTTTCATGCTTTTGTCAGCGACTGGCCTGGGCGCCGTGATCGCGGGCTACCTGTCCTACCGCAACTACTTCAACAAGCGGAGCCAGCTGCGGGAAGAGCAGTAGCGATGTTAGAAAAATATTTTACCTGGCTGGCAGAAGTACTGTTAATCATAGTAGTAGGCGTAGGCTTGGTCTTCATAACTCTCCATTCGCTCTACTATAGTTATGGCATGATGATTTTTGGTGAGCATTCCGCGGCAGCAACTGAAATGTTTTGGGAAAGCGAAAAGATTTGGAGTAGCATTTACACTGTCGCGGTGATAGTCATTGCTGTAAGCACGCAAATCGTCAGATCTTTTAAAAGTAGTAAGAAGTAACTGGAGGATGCCTAAGTTATGAGTAGCGATGAGTGCATGGCTTGATGCAATCGAAGCGCGATGATTATCAGAAAGTGATGCAATCGAAGCAATGCGATTGTCGAATTATTCCTCCTTTTGCTGACCAAGTATTACCGCTAATTTTTTTATGAAAAAAGCTCTAACTGCCTCTGTAGCAATTAGAGCTTTGTTTGTTTCTAAAATTAATTCGCGATCCGGCTTACTTAACGTTGCCTGCCTTGATGTAACGGCCGACGTTGATCCGGTAGTAAGTCTTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGGTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCACTGTGAACCAGCTTGCGGGCAGTACCATCAACGTTGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGTTGCTGCCGATCTTGACGATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTCTCTTACCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGCTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCATTGTGAACCAGCTTGCGGGCAGTACCATCAACGTGGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGCTGCTGCCGATCTTGACAATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTTTTTTGCCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTACCGATCTTCCGCTTGCCGCCGTAAGTGAAGACCTGCTTGCCCTTCTTTAAGGTAGCAACTGACTTCACCCGCTTGCCCTTGCTATTGTAAGTCCAAGCACTGTGAACCAGCTTGCGGGCAGTACCATCAACGTTGTTGACCTTGATGTACTGGTTGGTCCCGATCTTGTAGTAGTTGTTGCTGCCGATCTTGACGATCCCGCCGATCACGTAAACGTAAGTGTACGCGCTCTTGTAAGCACCGGTTCTCTTACCGGCGGAAGTGTAGACGTAAGACTTAGACATGATCTTCTTCTTAGTCTTGCTTACAGGAGCTTGACTGGCTGGCGTCTTAGATGGTCTTGATGAAGAACTGGATGATAAGCTGGAGCTGATTGACAGAGGCAGAATTGAGATGTTCCCGTCAACATTCAGCCCCTTCCAGTTTTCAGTGAACTGCCAGATGATGACCCCGTTCATTGACGGGAAGTATGAAAAGTCTGGCGCGTCGATCCGGCCTGAGCTGGTGTAGTAGGCTACCCACAATGAGTTAGGGTAGGTTGACGTAACCGTGCTCATGTTGATCGCGTTGTTCAAAAGGTAGGAACCAGAGTAGAGCAATGGCTGGTAGCCAGCTGCCTTAACCTTCTTCATGAAGGCCATGATGGCGCTGGTATTAGCACTTCTGCTCCCGCTGGTTGAGTTGCCGCTGCTGGTTTCCCAGTCACAAGCCAGGTATGAGCCTGCTGGCAGGCTGACTGCCTTGGCGCTGGCGATAGCGTAGTCTGCTTCGCTCTTCGCTCTGGATGAGCTGGAACCGAAGTTGGCGAAGTGGTAGGCCATTGGCAACAGTTTGTTGGCCTTGGCGCTGGCTACTTGTGCCTTGGCGTTTGGATTCCGGTAGCTGGTGCCTTCGCTGACCTTGACAATGACGAACTGAGCGCCCGCCTTGCTGTACTCGGTCGTGCTGGTTGGCTGGTAGCTTGACACGTCGACCCCATAAGAACGGCTGCTGGCGCTGGTCGTGCTGGCCTGTGTTAGGCCGGCGAAGCTCATGCTTACAGCTGCCGTCAATGTGGAGACTAAGGCAAGCAGTTTAAGGCGTTTAAACTTCATGTATCTGGTACTCCCATTAAAAAAGTGTGTGATTGAAAATGCTCAAAATAAGTGGTTTGTTTTGCGACAATCCTCATTATATAACTGCAATGTTACAAAACCTTGACACAACCTTTTCTAATTCTTAAATAATATTACAGTTTTTAGCACTTTCCCTTTAAGCAGATCGTTTGAGCTTGCCTGCCGACTTATGTAAAATACCCTTTGTCGTTGTCATTGAACCAGTAATATAAATAAGGAAGCGAATAGGAAATGCAGATTAGAAAAGCAGAATTGAAAGATTTTGACCAGGTGATGGCGATCCTGCAGGACGGGCGCAACCAGCTGGCAGAAAGCGGGATTGACCAGTGGCAGGGGGGACTACCCGAATCCTGACCACGTCCGCCAGGACATCGAGAATGGCTATGCCTACCTGGCCAAGGCCGACGACGGGGAAAACGTCGGGACCTTGACCATTATTCCAGCGCCGGACCACGCTTATGATCAATTGGACGGGCACTGGCAGGTAGATACCAATGACTACGTTACCATCCACCGGGTGGCCATCCACTCCGACCACACTGGTCAACGGCTATGCTTCTCAACTCTACCAGGCAGTGATCAACTACTTCACCAGTGGCTTCAATGACATCAAGTCCGTCAGAGTCGACACCCATGAGGATAACCTGCCCATGCAGCACTTGATCGAAAAGAGCGGCTTTAAGCGGGTCGGCACCCTGCACGGGGTCTACCGGGGGAAAACGAGACCAGCTACGTTTACGAACTTCTGACTGCTTAAATTATGCTTACTAAGTAATAAGTAAGATGTATAAGTAAATAATTAAAAAAATAGCTGTTTTGAAATTCGCAAGGAAAAGATCATATTTTCATCACAACTATCTTGTATATTAGGTTCGTAGCTTGAGGTTGTGGAGAGCCGCAAGTTGCAACATCCAAATTTCTTTTATTTTTCTTTCCTCAATGTAACATTGCATTGAATTTTATACATACACAACACATTCCTAACCAAAGTCAGTTGTTCTTCTAAGCAACTGGCTTTTCTTGTGCTCTGAAAATGAAAATGCCCGTGTTATACTAGTTATTACCAGATTAGAAAAAAGTTTCGTAGCAATCACTTTCATATTTTTTTAAGCAAGTATATAATAGAGCTACTGAGCAATAAGGAGGGGCCAAAGTGAAATCAGTCTTGATCAGTCAAGATCTATCCTGTGTTGGTCAAGTCTCGCTGGCGGTCGCCTTGCCCGTGTTAGGGGCCAGCGGCCTGCAGACCGCGGCTTTGCCAACGGCAATTTTGTCAACGCATACGGGCGGGTTCGGGGAGAACACCTTCCTGGACCTGTCGGCCAGTCTGCCAGATATTTGGGCGCACTGGGATAAGGAAAATATCTCTTTTGACGCCATCTATTTGGGCTACCTGGGCCAGGCGGCCAGCCGGGTCTGGGAGAAGGGGCTGGAAGAATACAGCCGGCAGGGGAAACTCATCCTGCTGGACCCGGCTATGGCTGACCACGGCCGTCTCTACCGCGGCTTTGATGACAGCTATGTTGTCCAGATGCAGCTCTTGGCCCGGCAGGCGACGATTTTGACGCCCAACTTGACCGAAGCCCTGCTGCTCTTGAATGAGCCGGTGGACTTTACTGAAGTTGACAGCCACCGGGCCTGCGTGATCACCCAGCGCCTGGCCCAGAAGTTTGCCCTGTCCCAGGTAGTTTTGACCGGGGTGTCCCTAGCCGACAACCGGATCGGGGTTTACGGGCTCAGCCGGGGTGGCCGGGTTTGGGAAAGGACCCAGTCCGGATTCCGCACAGCTATTTTGGCACGGGGGACCTTTTTGCCAGCAGCCTCTTGGCCGGCCTGCTTCACGGGCTGGACTTGGAACAGGCGGCTGGCGTGGCCGGGGACTTCGTGGCCAAGGCAATCCTGGCAACTGATTTGGACCAGGACCAGCGCTTTGGCCCTAATTACGCGGCGGCCCTGCCTTGGCTTTTGCAGCAATTGCACAATTAGTGCATTGATCATCTATCTTAAGGAGGAGAAATAATGCGCGATGAACAGAATTCTTTAAGAGCAGTCGTGATGACCGGCTTGTTCGCGGCCATGATTTATATCGGCATCTGGGTCCTGCGGATCCCGCTGCCGGCAGTCGTTGGCCGGCCTTTCATCCACTTCGGCAACACCTTGACGGCCGTGGCCATTCTTTACCTGGGCTTCCGTAACGGGACCCTGGCGGGGATCATCGGCCTGGGCGGCTTTGACATCCTCAACGGCTACGCGGCTACCAGCTGGCTGACTATGCTGGAAGTCGTAGTCGTGGCTGCCATTTTGTCCGCGGTCTACAAGGGCATGAAGTACAACGACAGCAAGAAGAACATCATTATTTTGGCGGTCATCGCCGGGGTAACCAAGATTTTTACCTCTTACGCGACGATGGTCGTGGCTGCCTTGATGGCCGGGACGGCATTGCAGCCAGCCCTGGTCGCGGCCTTCCTGAGCCTGCTGGCCACGGTGATCAACTCCTGTTCAACCGCGGTCTGCACGCCGATCCTCTACTTTGCCTTGAAAGATATTACCGTACGCGTCATGAAGCGGGCACACTAAAAGGCTTCCCGGCTGGGAAGCCTTTTTTAATTGCTGAAAAGTTGGTCGGCGATTTTGGCTGGCAGGGGATCAGGCAGAACCAAATCCAGGCCGACCGCGCTCTTGCCCTTGAGATTTACCTCGCGGACCGTGGCAGGGTCGATTTTCGCTGAGCCCAGGTAGTAAAACTTTGGGCCGTAGGCATCCGCCCGCTTGACGAAGACCGGAATCCGGGTGACTTGCTGGCCAGATTCCGTCCCCCGCAAAAGCTGCTGGACTTCCGGGGAAGACAGGTGGCGGGGAGTTCTGGTATACCAGGCCAGGCGCTGGCCGCGTGCCTGGTTGTCATAGCGGGCATTTCTTTGCTCCTGGTCAGTTTTTTGATAAGTGATAAAAACCGGGCAGACATTGCCACTCAGCCGGTAGCCATACATGGGCCGGCTGACGTCTAGTGGCCAGTTGAGCAGGCGGCAGACCTCCTTGCGGTCGTAAGCCGCGTAGAGGGTGAAGTCTTGCGCTGGGTCTTTTTCTTTGGCGAGGAAGAGGCCGGTTTCGACCGCGTCTTTAAACAGACGGAGGAAGTCGGGACTAGCTTGGACGATCTGAGGATTTAAGGACCAGCAGCCGTCCTTTAAGCAGGCGACAGGCTCGCCGCCGTACTTGGCCTTTTGGCTAGTTGATCCGCTTTTGACATCATAGAAGTCCAAGGAGAGGATGGCTTCCAGAGATTTTTCCAAGGCGGGTGAGTCGTAGGCCCCGTAATTTTTTAACAGAGCTTGGAAGTCTGTCTGACTGATTTGGCCTTTTGGCAAAAGGGCCTGCAAAAGCAAAAGTTCATGTGGCCGCTGGCCTGGGGCCAGTTCCTTAGTAACGAAGGAGAGGACCTGGCTTTCGTAAGAGGACAGCTGGTAGGGCTGGCCCATTTGTTCCAGGAAGGCTCCGTAGTGGGGCAGGGACTTGTTGTCCAGCCAGAGGCGGGGTGAGACCTGGCCTTTTTTGGCGAAAATCCAGCAAAAGGGGCGCCCGGCCCAGCTGCTGGCCAGGTCCGCGTAGGCTTCCCGCAGCTGCTTGAGCGAGTCCAGCTTGACCTTGTCCAGGGAGGCCAGGATTTCCTGGCTGGCGATCCGGCTGAAGTTGATGGTGGATAGGCCGGCAAAGCTGACGGTTTGCAGCTGGTACTTCAGCTGGTCGCGGGAGAGCTTTTTCCAGGCTAAGGCCAGGGGGATCAGGTAGTTGTTCTGGTAGTTGCCGATGAAGTCCAGGACGGTGACGAAGTCCTGGCCCGGGTAGAGGCGCAGGCCCCGGCCCAGTTGCTGGATAAAGACCGTGGCTGACTGGGTGGCCCGGAGCATGACGATCTGGTTGAGGGCGGGAATGTCCACGCCTTCGTTGAAAAGGTCGACCGTCACCAAGTAGTGAAGGCGGCCGCTTTCCAGATCCTTGACCGCCTGCCGGCGGACAGCTGGGGAATCCTGGTTGGTCAAGGCCTGGGCCGGCTGGCCCTGTTGAGTAAAAGCTTCCGCCAATTGCCGGGCTTCTTCCTGCCGGCTGCAGAAGACCAGGCCGCAGGGGCGGGTACCGCTGTAGCCGTAATAATCCAGTTCTTTAAGGAGGTAGCTGACCCGCTTTTTCGCGCCCAGCCAGCGGAGGTCGCTGAAGTCATCAGAAGTCTGGCCGTCAATTTCATAGTCGCGGATACCGATATAGTGGAAGGGCGTGAGCATTTTGCTTTCCAGGGCATCGGCCAGGCGGATCTCGTAGGCTAAATTGTAGTCAAAGAGGGCAAAAATATCCTGCTGGTCCATCCGCTCTGGCGTGGCTGTCAGACCCAGGCAAAAGGCCGGGCTGAAGTGGTTGAGGACTTTTTGATAGCTGGGCGCGGCGGACCGGTGGGCTTCATCGATCAAGATGTAGTCATAAAAATCAGCTGCCTGGCTGGCCAGGAACTGGTCCTGGGAAACGGTCTGGATGGTCGCGAAGGTGTAGCGGGCCTGCTGGTGGCTGGTCCCGGTCAAAAGGGCGAAGTCGCTGTCCTTGCCACCGATAACCTTTTTGAAGGTCTCAAGGGCCTTGCGGGCGATCTCTTCCCGGTGGACTAGGTAGAGGAAGCGGCGGGGGGCAAAGTCTTTGACCGCCAAAGCCGCCAGGTAGGTTTTCCCCGTCCCGGTAGCAGAAACGACAAGGGCCCGGCGGGCGCCGCTTTTGACTAAGGCTTGGAGATTTTCCAGGGCGGCTGCCTGCATCTGGTTGGGAACGATCTTTTCTTGTTTCACGTGTAACACAGGCTTGGCTGGCGGCTGCCAGCTTTTTTCATAGTCAGCCAGCCAGGTGTAAGTCAGGGGCTGGCTTTTGCCCGTCAAGTCCGCTAAAGCCGCGGCTAGTTGCCGGGGCAAGGTCGAATCGGTTTGGGAATCGACCTTGAGGCACCATTCCTGGTTGGCCAGGAGGGCGGACCGGGTGAAGTTGGCGCTGCCGATAATGGCGGTCTGCCAGTCCCCATGGTCAAAAAGATAGCCCTTGGCATGGAAGGGACCGTCCGCGATCCGGACGGTAAGATTGGAAATTTTTAAGAGCTCGGCGAAAACCCGGGGCTGGTTGAAGGCCAGGTAGGTTCCGGTGATGATGGTCCCGCGGATTCCGCTGGCTTGCAGGTCTTCCATGACCAGCTTGAAAGGGGGCAGCATGTCGGCGGTGATGAAGGCCACGGCCCAGGTAAAGGACTGGCAGGTCAGAAGCTGCCGGCGCAGGGTTTGCCAGATGTTTTCTTGCTGATTGCTGACGAGCCGGGGCGGGCTCAATGGGGAAAGTTCCATGGATTTTACCTCACTGTGGAAAGATTTTTTACCATCATAACACAAGGGAGCAGCGGGGAAGATAGGAAAAGAATTATGTTACATGTGAAACAATCAGTGCTATAATAATGGTAAAAATAATAAAAGCTTTTTACAGAGGAGAGAACAATGAAAGCGAAGGAAATCCGGGCCCTGGCCCAGGAAAACCTGAAGCAGATCCCGAAGAAGATCTACATGCCGATGGGCCTGCTCTTGGTCTTGGCAAATATCATACCGAATGTCGTTGACCAGGCCACTGATTCCAAGTCGGGGGTTGGAGCTAATATCATCTTCTTTCTCTTGGAAATCGCGGCCGCGCTTTTGACGGCTAACGGCTACATCTTCTTTGATCGCTGGCGGAATAAGATCCAAAAGGGCGGGGAAGAGCCAAATGCCTGGTGCGGCCTAACCGGCCAGCACATTGCCCGCTTGCTCATTTATGGGGTGATTGAAGCCTTGATCATCGGGACCGTGGCCGTGGCGATCGCGGCCGCGGTGGTTGGGTTAGCCATTCCGCAAGTATCGGTAGCTGTAAGCATCATTCTTTTGATCTTGCTGGTCGTTTTGCTGGTCTGGATTGAGCTGCGGCTGACCTATGTCGTTTACGTGATCGACGATGATGTGCGGACCGGGCAGAAGCGGTCAGTCTGGGCATAAATCGGGGCTGGCTGGAAGCTGACCAAGGGCCGGGTCTGGAAGCTGCTTTGCCTTAATTTATCCTTCTTAGGCTGGTACATTTTGACCGCCTTTACCCTGGGAATTTTGGGTATCTGGCTGATGCCATACTACAATTTGGCAATCGCCGAAACTTATGAAAAGAGCAAGGAAGACAAGTATTAGTATTATTAGACGCGCGATGGCGCGTCTTTTTTTTACGGGCAGGGAAGAATAGCTTATAATTTTTAATAGAAAGGACGTGAGGCAGATGGCACATGCCTTATATATCAGCGAGATTCACATGGACTTGAACGAGTACACCAGGATGGCCATGAAGGTGACGGAAAAGAGCCGGCGGCGGATCATCATGATCGCGGAAGCAATCTGGATCGCGGCCGGAGCGGTGGCTTTCGCCTTGAAGCAGTATGACTTCACTGTCATGTTTGCCCTGGTGATTGCTTTTTACCCGGCGGCAATCGTCTACCTCTACAAGCGGCGGCTGAAGAAGATTTACGCGGGCATGCCAGCCATCAAGGATGACTACGTGCGCTACGAATTCTACCCGGATCACTTCCTGGTTTTGACCAACCGGGGGGACGGGGAATACCACTATGACCAGATCACCCGCTATGTTGAAACTGACGAGGAAATCATCATGATGCCGGCTCCGGACCAGGGCATGCTGCTTTTGAAGAAAAACTGCAGCCCGGACTTGATCAAGTTTTTACGGGAGAAATGCCAGCGGTAGTTTCACGTGGAACACAGCGGAAGTGGCAAATTGCCGGAAAAGCTGTTAAGATTAAGGAAACAGGCTTTTTTAAAAATGATCTGGTAAAAAATGAAATTTTCCCATAAATTGAGTGACGCGGTCCACCTGCTGGCCTACATCGAGATTTTTCCCGATGATGACCTGTCCAGCCGGGCGATCGCGCGTAGCATCGTGACCAATCCCAGCATGGTGCGGAGTCTGATGATGGACCTGCGCAAGGCAGGGTTTTTGAAGACCAAGCAGGGGAGCGCTGAGCCGGAACTGGCCAAGAAGCCGGAAGAGATCAGCCTCTACGATATCTTCGCGGCAGTCGGTATGGAGCACCACTTGCTGCACGTTGATGAAGACACGGAGCAAAAGTGTCCGGTTGGCGGCAACATTCAAGGGCCGCTGGCCAAGGCCTACGCGGAAGTGGAAGAGGCGGCTTTTGCCAAGATGCGGGAGATCAGCCTGCGGGAAATTGTCGATCAGATAAAAGAAGAAGGGCAGCTTGCCTAATTACGTCAGCGAAAGCTGGCGTTTTTTTATGGAAATAGATGTTGACTTTAAAAATACACGTGCTGGAATTGGTGTAGATTTAAAAATAACAAGCGAATGAAATAGAAAAAAGAGAAAAAGAAACTAACGGAGGCAATTATGAAGTACGCTATTTCAGCGGCTACTGGCAACTTCGGCCAGACCGCGGTCAAGAATTTGGTTGATGCAGTTGGGGCAGAAAATGTAGTGTCGATCGTCCGCAACAAAGAAAAGGGGAAGCAGCTTTTGCCAGCTGGAATTGAAATCCGCCAGGCTGACTACGGCGATGAAGCAGCTGTAGAAAAGGCCCTGGCTGGCGTAGACAAGTTGCGCCAGGCGGGGCAGTAACTAGAGCTGACCAGCACAAGAATGTGGTTGAAGCTGCTAAGAATGCCGGCGTTGGCTACGTGGCTTACACCAGTTTCCCGAAGGCCAGTGAAAGCGACAACTGGCTGGCAGCTGACCACAAGCTGACGGAAAAGCTGCTTAAGGAGAGCGGCCTCAAGCACTCCTTCCTGCGCAACAACTGGTACCTGGAAAACGAAATGACTTTCCTGGCTCCAGGTCCGGCCAACCGGATCTACTGGGCTAACAACTTTGCCGGCTGGGCACCGGAAAGTGAATATGCCGCGGCAGCGGTTAAGGTTTTGACCAGTGATGATCCAAAGGAAGTTTACGAATTTGCCGGCCCGAAGTGGAGCTACCAGGACCTGGCAGCGGCTTTGAACGTGGCAACTGGTGAAGAAGCAGCAGCCAAGTAGGTCAGCCAGGACGAATATGTGAAGGTCTTGTAAGGCCTGGGCTTGGATCATGACACGGCGGCAATGTACGCTGCCTTCCAACAGCCAATTGATGATGGTTCATTGACGGAAGAAAGCAGCGACCTGGAAGAAGTTCTGGGCGGCTTGGCCCCGCTGGACCAGGCAATTAAGGAACTTTTGGCAAAATAGCTTTGGCAGGTACTTTTTTCTAAAAAAGCAGGTATAATGTAGGAAAAGTTACTTGTTTTTAAAAAAAGGAGCAAAACAATGCCATTTGTACACATTGAACTCTTGGCTGGCCGGACGCCAGAACAACTGGAAAAGATGATGAAGGACGTGACCCGGGTGATCTCAGAAGACACTGGCGCACCAAAGGAACACATCTCCGTGATCATTAATGAACTTGGCAAGCAGCAGCTAGCTCAAGGCGGCGAATGGAGAGAACCACAAGCTTAAAGATTTTGACTCACCCAAGGCGGGTGGGTCTTTTTTTCGGGAAAATAACAGGTGGGAAATAATGTTCAAAGTGAATCAAAAGGGAAGGAGGGCTAGAGAAGCAAAGGATGAGGGGGCTTTCTTAAAAGAAAAAATCTTAGCAAAATTAGCATAGGAATTTGCTAAGCTTTGTATAAATTTTATGATAAGATAATGGGTGAAAAGTGAGTAGAACACAGCGACTGAGGCGAAAGCGGAAGATAAAACGCAACAACACAGCACTAGAAAGCCAGCACTGACAAGGAAGGGTCAGGGCTGGCTTTTGTTTTCGGAAAGAAAAGGGGGCTGGCGGCTGCTGCGCTGCCGTTTTTTCATTATGAATAAATCGTAATAAAGTCGAAATCGCGCCAGACCATGCTTTTACCGCTGCCGGCTGCAAAAAAAGTTCCTGGCACAGATAATGTGTCACGAACGGAGGTAGTAAAAATGATTACAAGTATCAAACTTTTGGAAGCTAATCAGATCCTGGCCCAGGTCTTGGACAGCGAGAGGGGCAGTGAGATCAACGTCAAGAAGTTCTGCAAGCTAGCTGCCTGCTCACGGCCAACCTTTTACGCCCACTATGGCAGCATGCGGCAGCTCAGTGCGGAATTACTATTAAAGAAGCTAGACCAGCACTTGCACTTTGCCACCAGTGATTATAGCAATGGCCTTAAGAGGCTATTGACTTATATGGAAAAAGACCGCTGTTTCATTTTGAACCTGCTGGCCTTGATTGATGCGGAGAAGGGGAAAATCAAGGGCAAAGAGTTTGCGGCCCGGTTTCCGCAGAAGGTTGAATGGCTGCTGCGAAAGAAGACAGTTTGCTATGTTGATGCTCATTCCGTAAGCGGGGATTATTCGATTAAGACCTTGAACAATGCTGCCCACATCATCTACGCGATCCTGTACGAGTGGCTGGCTGAAGGCCTGCAGCTAAGTGCGCGGGATGTTTATGACCGCTGCCAATTGGCGATTGAGATTGTCGAGGAGCAAACAAGTAAGAAAGCGCTTTTGTAATTCAAAAAGAAAAAAGCAAAAAACTTTTAGAAAAAATATCAGTTAAAAATCCATCTTTTCCGAACAAAGAAAGCAGAAATAAAGTGAAAATGACTACTAGTCTTGATATTACCGAACGAGACCAGGCCCCGCCCTATCACAACTCTGCCGGCTGTATCTATGATAAAGCGAATGAAAAGGCTGATTTGACCTTTCAAAAATAACGAGTATACTAATATTTGTTGTCGCGGCGAAGAAGGAATTTGCCGGAGACACGGAAAAGAAAATATCAAAAACTTGTTGACAAGAAGTTAACAAGCGAGTAAGATATAAAACGTTGCGTCACTAAGACGCAAGTTGGTACTTTGAAAACTGAACAAAGTTTCGCAGTGTGCGGGTCAAACATTGTTTGATCCAAACAAATAAGCGAAGTCAATTCGCAAGCAAATAATCTGGAGCAGATTAAAAAGACTCAATTTTCAAATTGAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAGCTGAATTCAAAGATTCCTTCGGGATGATTTGTTGGACGCTAGCGGCGGATGGGTGAGTAACACGTGGGCAATCTGCCCTAAAGACTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAACAACATGAATCGCATGATTCAAGTTTGAAAGGCGGCGTAAGCTGTCACTTTAGGATGAGCCCGCGGCGCATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCAATGATGCGTAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGCAGTAACTGGTCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAATGATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAACTGCATCGGAAACTGTCATTCTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGTAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGCGCTAGGTGTTGGGGACTTTCCGGTCCTCAGTGCCGCAGCAAACGCATTAAGCGCTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGTGCTACACCTAGAGATAGGTGGTTCCCTTCGGGGACGCAGAGACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGTACAACGAGAAGCGAACCCGCGAGGGTAAGCGGATCTCTTAAAGCTGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGCTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGTCTGCAATGCCCAAAGTCGGTGGGATAACCTTTATAGGAGTCAGCCGCCTAAGGCAGGGCAGATGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGAGAACCTGCGGCTGGATCACCTCCTTTCTAAGGAAAACAGATGGATGGAGAGCAGAAATGCTAAGAGAAATCCATCAGTTACGGAAGCACACTGCAAAAGAAACTTTGTTCAGTTTTGAGAGTATTAGCTCTCACTTGTACGTTGAAAACTGAATATCTTAATTCCAAGAAAAAACCGAGAATCATTGAGATCAATGAAAACATTGCAAAGCGACCGAGAGAGTTCGAAAGAACAAACTTGCAAGGTCAAGTGAAGAAGGGCGCACGGTGAATGCCTTGGCACTGGAAGCCGATGAAGGACGCGACTAACCGCGAAAGTCTTCGGGGAGCCGTAAGTAGGCTTTGATCCGGAGGTCTCCGAATGGGGGAACCCAGCATGTGCAGACATGCTATCCTTAAGTGAATACATAGCTTAAGGAGGGAACACGCAGTGAACTGAAACATCTAAGTAGCTGCAGGAAGAGAAAGAAATATCGATTTCCCAAGTAGCGGCGAGCGAACAGGAAAGAGCCCAAACCGGCAGATTTATCTGCCGGGGTTGTAGGACTGAGACATGGCACTTCAGAGGATAGCAGAAGCGTTTGGGAAAGCGCGCCAGAGAGGGTGAGAGCCCCGTAAGCGAAATCCAAAGAAGGCCTATCAGTATCCTGAGTAGGGCGGGACACGTGAAATCCCGTTTGAATCCGCGAGGACCATCTCGCAAGGCTAAATACTAACCAGTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAAGAGAACCTGAAACCGTGTGCCTACAAGTAGTCAGAGCCCGTTAACGGTTAATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTGCGTTAGTCAGCAAGGTTAAGTCAGAAAAGACGGAGCCGTAGCGAAAGCGAGTCTGAAGAGGGCGAGCAGTTGGCTGACGCAGACCAGAAACCAAGTGACCTACCCATGACCAGGTTGAAGGCGCGGTAAAACGCGCTGGAGGACCGAACCCACGTAAGTTGAAAATTGCGGGGATGAGTTGTGGGTAGCGGTGAAATTCCAAACGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGCAAAGAGGATGCTGGAGGTAGAGCTCTGTTTGGACTAGGGGCCCGTCAAGGGTTACTGAATTCAGATAAACTGCGAATTCCAGACATTTATGTGCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGATCACCAGTTAAGGTCCCAAAATTCATGCTAAGTGGAAAAGGATGTGGAGTTGCGCAGACAACTAGGACGTTGGCTCAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTAGTCGAGTGACGCCGCGCCGAAAATTTACCGGGGCTAAGCATGATACCGAAACTGTGGATGTGCATTTATGCACGTGGTAGGAGAGCGTTCTAGCGGCGGTGAAGCATGACCGAGAGGACATGTGGAGCTTCTAGAAGTGAGAATGCCGGTATGAGTAACGAAAGACAGGTGAGAATCCTGTCCGCCGCAAGACTAAGGTTTCCTGGGGCAGGCTCGTCCGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAGAGGCGTAGTCGATGGACAACAGGTTGAAATTCCTGTACTGCACCGAATCGTTATGAGCGATGGAGGGACGCAGGAGGCTAGCAGCGCGTGGTGCTGGATACCACGTTCAAGCGTCAAGTCTGAGAGCGAGTCAAATGCTTGCTCTCATAATGACAAGGCGTGATGAGGAGCGAAATTAAAGTAGCGAAGGCTGCGACGTCACACTGCCGAGAAAAGCTTCTAGCCAGAGACGGTGCACCCGTACCGCAAACCGACACAGGTAGTCGAGGAGAGTATCCTCAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGGCCCCGTAACTTCGGGAGAAGGGGCGCTGGTCGCAAGATCAGCCGCAGTGAAAAGGCCCAAGCAACTGTTTATCAAAAACACAGGCATCTGCAAAATCGTAAGATGAAGTATAGGTGCTGACACCTGCCCGGTGCTGGAAGGTTAAGAGGAGAGCTTAGCGCAAGCGAAGGTTTGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGTGTAATGATTTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAATACCCGTGAAGATGCGGGTTACCCGCGACAGGACGGAAAGACCCCATGGAGCTTTACTGCAGTTTAATATTGGGTATCTGTCAAGCATGTACAGGATAGGTAGGAGCCGGAGAAGATAGGACGCCAGTCTTATCTGAGGCGCTGTTGGGATACTACCCTTGCTTGACGGATGCTCTAACTCAGGCCTGTGATCCAGGCCGAGGACAGTGTTTGACGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGTGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGTAAAAGGGAGCTTGACTGCGAGAGAGACAACTCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTACCGCATGGAAGGGCCATCACTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGTGGGCACAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGCACCGCTGGTGTACCAGTTGTCTTGCCAAAGGCATCGCTGGGTAGCTATGTGCGGACGGGATAAGCGCTGAAAGCATCTAAGTGCGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCAAGAAAGTAAGACACCTCAGAGACGATGAGGTAGATAGGCCGGGAGTGGAAGAGCCGTGAGGCTTGGAGCGGACCGGTACTAATCAGTCGAGGACTTGACCAAAAGAGCGAAGCAATGAGGTTTTGACTTGGTAAAAGATATTCAGTTTTGAGCGTGCAAGCTCAAGCAAAGAGTGCGGTGGCAATGGCAATAAGGATACACCTGTTCCCATGCCGAACACAGTAGTTAAGCTTCTTAACGCCGAAAGTAGTTGGTGGGAAACTGCCTGCGAGGATAGGAAGCTGCCGCGCGAGACAAGAGTCAGACGGAAGTCTGGCTCTTTTCTTTTGCTTGGATACTTAAGAAATGCCTTGACATTAGCAAATAAATATTATAAAGTTAAACTAACAATTAAATCACGTGTTATATCAAGAGCTAGTGAGTGGTTACACACTTTGACCTAGCAGCAACCTACCGACCGGTAAGGTGCTCCACTGTAAACGGATATACGTCACTTAACCGTGTTCGTATATCGAGCACGGTTTTTTTGTGGCAAAGTCCCAGTGACGTTAAACAGGAGAAACAGATGTCAAGTATACTAGATGATCAACTACGATTAATGGCTTTAAAGCAATACGGGTTAATTAAATCAATTAAAACACCCGACATTTCTTATGCGGATTTAATATTAATACTGAAAAATACAGAAAATGAAACTATTAAACAATTAGCAGCTGAAAAGCTACTTAAAGAAACCAACATTTATGACATTTATAAAGCGGATTTAAAATTAATACTGAAAAATACAGAAAATGAAACTATTAAACAATTAGCAACTGAAAAGCTACAATATCTTAATTCGCATCCCAGATTAGGTTGGGCAGGTTCCCTAGCGAGAGCAAATAGGTTGGGCAGCTTCCATAGCGAGAGCACAAAGGATTAATGGCCTGAAATACAGATATAAGGTCCTGATGAAAAAGTTAAAATTCGGGATATTTTACATAATGCTAATTAATCTGATGGGACACTCAAAATGGTCCTGGATGAATGCCTACCGGAACCGCTACGGGCTGATCCGCGACGACATTCACACCCAGAAGAAGACCTTGAAGAAGTCAGCCTACTGGTACCGGAAGCTGAGCGACAGCAATGAGCTGGACGCGGATTGATTTTTGTTGTTTTTTGCAAGAACTTTCGCTGTTTTTTCCCAATCCGACCGCAAAATAGCTTATGATGTTAATGGAGTAAATAAGTAAGCGGAAACACAATCGAAGGTGCAAAGGAGACTAAATGCAAATGGCAGAACCATTATTTTTGGCACCAGTTTTTCATGAAAAAATCTGGGGCGGCACTGGCTTAAAAGACGAGTTTGGCTACCAGATTCCCAGCGACCACACCGGTGAAGCTTGGGCAATTTCCGCCCACCCGCATGGCCCGGCAACTATCAAGAACGATCTTTACAAGGGGATGAAGCTGAACGAGCTCTGGGACCAGCACCGGGAACTTTTCGGTAATGCCAAGGGGGACGTCTTCCCGCTTCTGACCAAGATTTTGGATGCCAACCAGGACCTGTCCGTCCAAGTGCACCCGGACAATGAATACGCCAGAATTCACGAAGGAGAACTGGGCAAGACCGAATCCTGGTACGTGATCAAGGCCAAGCCAGGCGCCAAGCTCTACTACGGCCACAATGCCCAGACCCGGGAAGAATTCGCTGAAATGGTGAAAAACGGGGAATGGAAGAAGCTCTTACGGACTGTCCCGGTGCATGAAGGGGACTTCTTCTACGTGCCACATGGCATGGTGCACGCTGTCGGCAGCGGCATCATGGTTTTGGAAACTCAGCAGTCCAGCGACACCACCTACCGGATGTACGACTTTGACCGGGTTGACAAGAAGACCGGCAAGCTGCGCCAGCTCCACTTGCAGCAGTCAATCGACACGGCGCAAGTGCCGTTTGAAATGCCAAAGCTCAACCATGAAGAATGGGATGTTGGCGACGTTCACGTGACCCAGTTCGTGATGGCGGAATACTTCGGCGTCTTCAAGCTGGACGTTCGCGGCAAGGGTGACTTTGAGATCAAGGATGGCAAGTACCGCTTGCTGTCAGTCTTGGATGGATCTTGCGACTTGACGGTCGACGGGCAGACTTATCCGCTGAAAAAAGGTGATCATCTGATTTTGCCATCGACGATTTCCTGTTATACTTTAGATGGTCAAGCTACGATCATCGCTTCCAAACCGGGCGATGAAGCTTAAAAGACAAAATTTAGAGTTAACAGAAGTATAGGTGAGAACATGACATATACTTTTGTAGGCAGTATTGAAGCCGGCGGCACCAAGTTTATCTTGGGCGTGCAAAACGTGGAAACTGGGGAAACCACTGCAACTAAGCGGGTGCCGACCACGACTCCGGCGGAAACCCTGGCAGCCTGCCGGGACTTCTTCAAGGAGAGGAACCCAGTCAAGGCCATCGGGATCGGTTCTTTTGGCCCGATATGAAATGGCCAAGGACCTGCTTAAGTAATAAGCGGAAAAAACAAGATAATAGCACTAAAAAACCAGCTCAAGCGACAGCTTGAGCTGGTTTTGTTATGTTTTTTATTCTTGATAATGTTCCGACGTAACGATATACACGAATGAGCTCTTTTTCTGACTGGCCAGCCAGCGCATTCTGATCTTGAATTCCAGACCGCCGGCTTCATAACTGGCCGAAATTGCCTGGTCCTTCCCCTGGCAGCGGTCCATCTGCTCTAACAGAAATTTATCCACGGCTGGTGTCTGAGCAATCTTCTCAGCCAGCGACTGCTGGTTGCCTCCCGTTGCCTCCAAGACGCGCTTAAGAGCGTGATTGAAGTAAAAATAGTTTATGTTATCTCCATCTTTTTTCAACGATGGCCATCGGCACGTCGATATTTTCCCCCAGGCTGGAATTCTGTTCCGCCTGGCTGTGGGTCGGATAAAACGTTGACCCGGTCGATCTGGCTGTAGTAGTCACTTAAGCTGATATCTTCCAGCTGGTCGCCGACTTTGCCCAGGAACTGCCGCAATTCATCCGGCTGCATGGAAGCCGCGAAGAGGTAGCCCTGCTGGTACTGGCAGCCGATCTCCTTGAGGAAGTCTGACTGGCTCCGGTTCTCGATCCCCTCGCATAAAGTCTCGATGCCCAGCCGCTTGGACATGTCGTTCAATAAAGCCGAAGACCGTCATCAAGACCGGATAGAAGCTCAAGACCAGGTAGTAGTGGCCTAAGCCGTTCTTCCGGTTGATTAAGGCATTGTAGGCCGTAACCCCGAAGACAAAGGTGGAGTAGCCAATTGGCAAAAGCAGGAAGAGGGTGGAAAAGAAGGGAGTAAAGGCATTGATGTCGTTAGCGGAAAAAATCAGATTTGGCGCGAAGAGGGCGCAAACAATGTCAAAAATAGAGATCGCGATCGGCAGGCCCAGAACAATCCGGTTCTGCCGCTTGTCTTCAGCCAGGGGCAGCTCGATCTTGCAGGCAATGAACATCAAGGTAGTATAGCTGAGGATGTTCAGAGTGATCGCCAAACAAAGACTGGCGAAATTGACCAGAGCTTCATTGCTAGGCAGGATGCGGTTCATCATAAGAGTCCGGGTCCCGTCTAAAAAGAGGTAGGTGGCCTGGATGATCAAACTGACGTTGAACCAGTAGTGCTGACGGTTGTGGCGCTTGATCTGCAGTTATGAGCGTAATAACAATAATATCATAATTACTTGGAAATGTTCTGAGACATCGTAGGCAAATGCTCTAGTAAGTTGCATGGCTTTCTCCCTATAAAATACGACATGTTCCTTAATTAAATAATAACTCGTTTGCCTTAACAATAGGGCTGAGCGGATTAAAAGGGATTGATTAAAAAAGGATGTTAGCGCTTTTAATTCACGCGGGAGTATGTTATATTTTTAACTTGGAATGGATGGCCTCAATTCTTCATAATATAAGGGCTATCCACAGTTAAGCAGAATGTATTGAATACAGGGAAAGGCAAAATGGAAGAAGTTGAAGCGGTACTTAAGCGGCTGCTGGCTGGCAGGGTCTGGCCGGCCAGTTTGGGCCGGGAGCTGGAGAGCAAGAGAATCTGTTTGAGCGATTTGCTCTTGGACAAGCAAAGAAAGAACGTGATCAAGCCAGCTGACGTCCCTTTAATCCGCCAGGCCCTGGGTGAATTGCGAAAGAATTTACAGGAAGAAGTCAAAAAGGTCCTGCAGACTGAGCAGGAGATGGCTTCTGATACTGCCCGGCTGGCCTGGCTGCTCCTGCAGCTTTTTGCCAAGAAAAGGAAAAGGGTCCGGGACTTGACGGCTGACCAGCTGGCTCTCCTGCAGACTGAAGAGGCTAAGAAATACGTCCTTTTTCACGGGCCGCGGGTCTATTTCCGCAACAACGCCTGCTTTTTGACCAATACTTTCCCGGCAGAACTGGTCCACATCAACGACCTTGCCGGGCTTAAAGGACAGCCGGCAGCTTTTTCTGTCTTGCTGCAGGGAGAAGAAGTGGATGGGGAAGAACTCAGAAGCTGGCTTGACCTCTTCGGTCCCTTGTATGAAGAGAAATATTTCGGCAAACACTACGGACCAGGCGTGGAACTGGCGGGGTTTCAAATCTCTAGCGGGAAAAGAGATCCCCGGATCTACTATGTCCTGCGCTACCTGCTTAAGGATAAAGAGCCAGAAGCAAGATCGAAAAATTTGGCCGCGCTTCCTTTAAAGACGATCCTAAGGCGGAATTTAGTCTGCCACGAGGCCTTCAAATGATGACGGTCTACAGCCGGGAGTATTACCAGGCAGGATTAGCCGAAGGAAAAATCAAGGCCAAAAAGCTGGACAAGTACCGGCTGGGACCGGACTTTATTCTGGCTTATGACCTGGGGCCAGCTGCTTCTTACCGGACCTTGCTAGTCGACCGGAAGCAGGGGGAGATCGTCTTAAGAGTCACGACCAAGACCCTGCTGGCCCACTTCGTCAACGAGGACCTGCCCGGCGGCTACCCCTTGCAGGACAAGCTCTACAAGCTCCTGGGGATCCGGGAGCAGCACGTGATTTCGGCGGGGCATGTGGCAATTTTTTCCCCGGAATCCTTCCACGCCGGCCTGGTGGACCTGGTGGCCCTGCAGCGGATGCGGGGGATGGAAGCCTGCCAGGGAGGGCTGCTCATGACCGACTTGGCCGGGGTCAACTGCTATTTCTTTCAGGTGAAGCGCGGCTATGCCAATGCCAGCCGGCAAGTGAAAGAAGCGGTTGAGCACAACGCCCTTTACTGCAGCCTTTTTCATGGCCTGGCTGGGCAGGTGGGCTGCCCGGTTTGCAGACAGGGTGACTGGAACCTGCTCTATGGACCCAGCTACCAGCAGGCGGTTGAGGCCGACCTGGCTGGCCGGATCCCCTCTTTAAGGCAGCTTTTGGCTGAGATCAAGGCAGAGGAGAAGGCAGTCTTAAAGCAGATCCTGCTGGATGAACTCGGCCTGCCTCTTTTACCAGATGATTTAGACTATGCCTTAAAGCAGGCTGAGAAAAAGCTCTTATTCAGAATATAACGAAAAGCCCCCGCGGTCGCGGGGGCTTTGCTTTGTTTATTTATAATAATTCAGGCTAACTGCCGGCGGAGTTTCTCCAGGGCCTGCTTCTTAATCCGGCTGGCCGTCCGGTAGGGAATATTCATTAAGTCGGCCGTTTCCTTGATGCTGCGGTCAGCCAGGAGGTTCTGGCCTAAAAGCAGCTTTTCGCTAGTCGACAGCTTCTTCCAGGCTTCCTTAAGAAGCAGATTGTGCTGGTCGGCCTGACCAACAAAGGCGGCAGCCAGCAGTGGTTCGTCGTGGTCTCTTTGCCGCTTTTTCTGCCGGAGCAGGTCAAGGATCCGCCAGTAGACCTTGCGGAAGGCCAGCTTGTCAGCTTCTTCTTGCGGCTTGTCAGCCATTTCTTGCAGGCATTGGGCGTAGACGATCAGGCCTTCTTGAAAAAGGTCCTCGTAATCGGCACACTTCCGGTAGACATGGGCCGTTTTCAAGGCTCCGGCGACTAATTTCCGCCTTTCCCAGGCTTGGTCCATTGCTTGATTGATTTGCATGTTCATTTTTTCGCACTCCTTAATTTTTTCTTGCTCGGCACCTTGCAAGTATTAGCTTAAGGGTTTTGCCAAAGGAGTGCTGACCAGGAGCAAGGAGGCAGCAAGTCCGTTTTTCCGCCCTTTACACTTTGAAGAAAATGTAAGAACGGCTATTTAAGGGCAGATTTAGGGAGTCAATCAAGGTAAAAAATAAAAGTTTTCCTAGGAGAAAAGCAAGAAAGTCGTCATAGATCATTCATACTTCCCCCGTATCATTTAAGCCATAGATCAAGAGATCTTGATCTATTGATTCCATACCTTTTTTATTCTTTCCAAGACAAGCAAATTACGCGGTCTCCGGGCCGCATCTATATTTATTTTTTTACTATAAAAAGCGCTGGACGTCGCGGTCCAGCGCTTTTTTCTTTTATGTTTACGTTCAATATTTCTTGAATTAGAAGGTCAGCTTCAAGAAGTACTTGACGAACATGGCAGCCAGTACGGCACCGGCAAATGGCGCGGTACCTGGTACGATCAGGCCGTATTGCCAGTCGTTGTTGGCCTTGTTCTTGATTGGCAGGATTTGGTAAGCCAGACGAGGGCCCAAGTCCCGGGCTTGGTTCATGGCGAAGCCAGTAGTACCACCCAGGCCCATACCGATAGCCCAAACCAGCAGACCAACCAAAAGTGGAGTAAAGCCGAACTTTTCAAACTTGGCCACGATAGCCAGGATACCACTAAAGAAGATGGTAGTGGCGATCATTTCGACCATCCAGTTCCGTGGCAGGTTACGCAGGTTAGGGTTGGTGGAGAAGATGTTCCGGCTAGCCACGCCGTCGATGGTGTCTTCGGAAGCCTTGAAGTGGTCAGCATACATGAAGTAGGCCAGAAGAGCACCGGCAAAGGCACCGGCGAATTCAGCCAGAGTGTAAGGGATGAAGCTGGACCATGGGATGATCCCCAGGATAGCCTGGCAGAGAGCCATGGCTGGGTTCATGCAGACGCCGCCGAAGATGAAGAGGCAGGCGGTAATCCCGAATGACCAGGTCGTAATGGCGAAAATGTGGCCTGAGCCGTGGTATTTGGTCTTGTTCAAAACGTCATCGCAGTGCACGCCAACACCGAAAAGAATCATGAGTCCGGTAGACAGGAACTCATTTAACAAGTTGTGTATCAAAATCCTATTCTCCTTGCAATAGATAATTTTTTAGGTACATAACAGCAAATAATTATATACCTATAGCCGGCAAAAAGATATAGGGAATCGTGATTTTTTGAGTATGAATGCGCTTTTATCGCTAGATTTAACAAAATTTCTAGGGAAAAGTAAGTGAATCGCTCACAAATCTAGCAAAGTGACCGGCAATTCCTGTTTATGGCCGCTGGGGAAATGGCCCCGGCGCAGGCGCTGGTTGAGCAACTGGCAGGTCAGGGCCGCCAGGTCCTTAATCGGCTGCTTAACGGTCAGCAGGTCCGGAAAAAATTGCGGACAAAATTGGAGCCGTCAAAACGAGAAAATGTGGAATACTTTTGGCCCCGACCAGATCGACCTGGACGTGCGGACCGAAGTTACCAAGCGTTTTGTCAAGGAAACCCTCCAGCAGCTGGTCAAGCACCAGGCCAGCTTGATCCGGCTGGATGCCTTTGCTTACGCGGTTAAGAAACTGGACACGAGCGACTTCTTCGTTGAACCTGAAATCTGGGACCTGCTGGATGGAGTCCGCCAGGACCTGGCTGGAACAGACGCGCAAATTTTACCGGAAATCCATGAACACTATAGCTTGCCGCGCAAGGTCAGCGAGCATGGCTACTTTATCTATGACTTTGCCCTGCCGATGGTCCTGCTCTATTCCCTGTATACTGGCAAGAGCCAAAGGCTGGCCGCCTGGCTGAAGCAGTGCCCGATGAAGCAGTTTACTATCCTGGACACCCATGACGGCTTGGGGGTGGTTGACTCCAAGGACATTTTGACTGATGAGGAAATTGACTACACGACCCAGGAACTGTACAAGATCGGGGCTAACGTCAAGCGGAAATACTCTTCAGCTGAGTACAACAATTTGGACATTTACCAAAGCAATACGACCTATTACTCAGCCCTGGGCAATGATGACCAAAAGTACTTCCTGGCCCGGCTGCTGCAAGTTTTTGCCCCGGGGATTCCGCAAATCTACTATGTTGGCCTGCTGGCCGGGGAAAACGACCTGGACCTGCTGGAACGGACCAAGGAAGGCCGGAACATCAACCGCCACTACTACAGCCTGGAAGAAATTGACCAGGAAGTTAAGCGGCCAGTCGTTGCCAAGCTTTTGAAATTGCTGGAATCTAGAAATACTGAAGCGGCATTTGACCTGGATGGCCGGCTGGAAGTTGCTGCTCCAAGCGATCATGAGATTGTCTTAAAGCGGGTCAACCAGGCTGGGGACCGGGAAGCGGTTCTCCGGGTGGACCTGACTGCCTTGACTTACCAGATCAGCGTCAACGGTGAGGAAATTTCCCTGTAATGGCAGCTGGAAAATTCACTGAAGAGCAACGTTAGTATCATAGTTTGTTCAAATTTACTGTGTAGTATAAAAAGCATAGACGAGCTGAAAGAACTTGTCTATAATTCATATTTCTTATATTTTTCTTTCCCTGATATACACAACATACATATACACTACCTAAGAAGCAGCTAGTCAGTAACAGCTGCTTTTTTGGTATCCAGAGATATTTTTTCATTGTACAAAATAGCCGTTATGGATTTTTATAATATATATGCGTAAAGCTTTTGAAAAATGACATTAAAAGATGTTGAAAAGGATTGCACGTGAAAATGAAAATATTTATCCTTAGAGTTAGTGGTGATTGTATTAGTTGGATATTGGAATGGGTGAAGTGTAAACATAAAGCCTGTTTTTAACGACGAAAGGGAAAGAAAAAGAAATGCAAGAAGAAAATAAAAAGCGCAAGCTTGGATATATGCTTATTTGGCACGCCCTGCCATCGGATCAGTCGAAGAAAGGGAAAAGACTATAAATATGAAAAAGCTCAAAAAGATCAACTATGCGGCCTGTTGGCCGTATTTGGCGGTCGTTCTTTTTGCCGCCTATTTGGCCTACCGGCAGATGCGAACAGGGAACATCATTATCGGTTCCGATACGATTTTCCACTTCAACCGCTTCTATGAAACCGAGGAGCAAATTAGAAACGGCAACCTTAGCTGGTTCATGACCCTGTACGGGTTTAACCAGTCAGGCCGGGTAATCAACGCGTTTTACGGCCCGGCCTTTGCCTACTTGAACGGGCTGTTGCTGCTGGCGGTCGGGACCTGGTACCGATATCAAATTATCACCAGCTTCCTGGTCTTCGCGGTCGGGGGCGTGGGGGGGATGTACAGGGCCGTGCACCGCTTTAAGGTACGCGGCAGCATTGCCGTTTTGGTGACGATCATCTACATGACTATCGGCTGGCTGCCGCGCTGGCAGTCTGGCTCCAACTTCACCGGCATCGGCGCGGCCTTGATGCCTTACGGGATTTTGGTCGCTTGCGACATGTTCTATGATAAAGAGAAGCCAATCCACTGGATTAAGCTGACCATCCTGATGACGGTCGCTTTGGAATGCCACCTGCTCACGGCGCTGATGTACATGGCCTTCCTGGTGCCAGCCTGGCTTTATGCCATCATCAAGCGCGAAAACAAGCGGGGGATTTTGCTGAACACCTTGAAGGCGGTGCTCTTAACCATCTTCTTGACGGTCAACACCCTCTTGCCTCTGTACTGGATGTCCAAGACCAATAACTTGGCGCCAACGGCAACAATGAGGATGCTGGAAAACGCGGTCCACTTGAAACACACCACGGTGGCCTTTCACCCGTTCAGAATTCTGACCCACAACCTGCGAGCCAGCTTGACTTTCTGGCTGGCCTACGCCTTTATCGTCTAGGTTATCTACGCGATCTGGACGCGCGAGGAAAGCAAGGCCAACGTCGTCGTCTCGCTTTATGGCGGCTTTTGGCTACTTCTGGCCTCCCGCTTGGTTGAATGGGACCGGATCACTAACCACTTGCCGGCCTTGGCCCGCTTCATTCAGTTCCCATCCCGTTTCGTCTGCATCGCTTACCCCTTGCTGATCGTCGGGCTGGGTCTTTCGTTTGAGCACATCCTGCATCACAAGCAAAAGTGGGTCCAAATCGCGGCCTATGCCTCGCTCGGTATGCTGACTTTCGCGGCAGCCGACTGTCTGGTCATCACCTTGACCTCCAATGCCTGGGCTGGCTACCAAAACAACGTTGGCCGCAGCCGGAACACCAAATTCGGCGAAGAGACCCAAAAGACCAGCTCCCGCAAGAAGAAAGGCAAGAAGAAAAAGAAGGCGATGGAAGACTACGGTGTCTATCACCCAGTCAAGCTGGATGACCGGCGCAAGCAGGCGCTGGTGGACACTAACGCGGCCACCCACGCCCATGACCTGCAAGCCTTCCTGGACATGACCAAGAAGGCCATTCCGGACTACCTGCCGGTCTACAAGTGGGATCCAGAGCCTGACGTGCCAAGCCACTTGTACACTTACAAGTGGAAGCAGTATTATACGATAGAGAACTCCAAGATTACCGCCGCTTACCGCAAGTCCGTCATGAACCACAACCGCAATGTCAAGGTAAAGACGGTCAAGCACGGCTTGAAATTGACCTGGAAGGCCAAGAAGGGCAAGCACAAGCAGCAATTGCCAGTCATTATCTACAAGCAGTCCAAGCTTACCGTCAACGGGCGGGTCTTGACCAAGTACAAGCGTAACCGGGTTGGCGCCCCAACGGTTCCCGAAAAGACCAAGGGCACCAACACCGCCTACTTGGAATTCCAGACGTCGTTCTGGATCAAGTTGGCCATCGCAGTCTCTTTGCTGGGGCAATTTGCCGCAGTCGTTTGGGGCCTGCTTTGGCGCGGCGGTTCTTTCAAGAAGAGAGAAGAAAAGAAGGCATAGCAGCAATGAAAAAGATTTCAATTATCGTGCCTTGCTACAATGAAGAAGAGGCCTTGCCCTTTTTTTATCCGGTAGCGCATGAGGTGCTGGAAAAACTGCCCGACGACTACGAGCTGATTTTTGTCAACGACGGGTCCAAGGACAAGACTTTGGAAATCCTGCGCGACTTGGCCGCCAAGGATCCCCATGTCTTTTACATTTCATTTTCAAGAAACTTCGGCAAGGAAGCCGCCATGTACGCGGGCTTCGTCAATGCCAGCGGGGACTATGTGGCCGTGATGGACGCCGACTTGCAGGACCCGCCGGCCCTTCTGCCGGAAATGATCAAGATCCTGGACTCCGGTGAATATGACAGCGTGGCCACCCGGCGGGAGGACCGGAAGGGTGAGCCGCCGGTCAGAAGCTGGTTTGCCCGCAAGTTCTACCAGATCATCAACAAGATCTCTGATGCTGACGTGGTCGACGGGGCCCGGGACTTCCGCTTGATGAAGCGGGACATGGTCGACGCGATCGTGGAGATGAGCGAATACAACCGGTTCTCCAAGGGGATTTTTGGCTGGGTTGGCTTCAAGACCTACTGGCTCCCTTATGAGAACGTGGAAAGAGTAGCCGGGGAAAGCAAGTGGAACTTTTGGAAGCTGCTCAAGTACGCCATTGACGGGATCATCAACTTCTCCTTGGTGCCTTTGAACCTGTCTTCCTGGATGGGTTTCTTCATGACCGGGGTGTCCTTTATCATGCTGATCGTGATCGTTCTACGCAAGTTGATCAAAGGGGACCCGGTAGCCGGCTGGGCTTCCTTGATCTGCGTGGTGATCTTCATCGGGGGCCTGGTCATGCTCAGCCTGGGCGTGATGGGGCAATACCTGGCCAAGATCTACATGGAAAGCAAGCGCCGGCCCCACTACATTTCCAGTGAATCAAATATTAAAGACGTTAAAAAGATCGACTAAGGCCGGTCTTTTTATTTTTCTACTTTTTTACTCTTCTTCTTGGCCGGTAAACTGGGCAAAGTACTTGTCCAGGTAGACCTTGTAGCTGACGGTCATGATGACGTTGCGGAGCATGGTTTTGTATTCGCCATACTCGTATTCGCCATGCTCGTGGCCGACGTCGGTCAGCTCGCCTTTAAAGCCGAAGACGTAGGCCAGAACGTTTTCCAGTTCATCAACCATGTAGTTGTAGGCTGTCTCAGTGTCGTAGTTGGACCGTTGCAGCTTCAGGGCCTCGCACAGGTCAGCCAGGGAGAGGACGTTTTTGGATACGGCGATAAAGACCAGCTCAGCGATCTGCTGGCGGCTGTAGAGCTTCTTTTTAGGTGAGGCGATCAGGTCATGCTTGACATAGTTGCTGACCATGGAACTGGTCAGGTGGACGTTTTCCAAGGGGGCCAGGGCTTCATTGATATAAGTAGCGGTCTGCTCCAGGTACAGGCCCATCTGGGGCAGTTCCTGGTAGCGGGGCAGGTGCAGGCCGGCCAGGGAACGGGCAATTTTTTTCATAAAAACCTCATGTCAGCTGATACAAAAAATAAGGATAAAACAAAATTCGATCATCCACATTATAGCAAAGCAGCTTAGCGGTTTTTGAAAAACTTGACACGAGGACTTTCCTGCTATAGACTTAATCAAAAGTTTTTAAGAAACCGATGACGAGGATTATGAAATATGTCAATTAAGATAGTAACTGATTCCGGAGCTAACATGACAGCGGGCAACTTGGGGAGCTGCCAGTTGGAAGTAGCGGCCTTGAGCCTGATTCAAGGGGACAAGACATGGCTGGACGACGCCAGCTTTGACCAGGCGGAATTCAATCAAAGAGCCAAAGACGGGATCGCGGCGTCTTCAGCCTGCCCCAGTATTTCATCCTGGCTGGACGCTTACGCCGGGGGCAGCGAGATCTATGTCGTGACCATCTCATCGGTCTTGTCCGGCAGCTACAATTCAGCCGTGCAGGCGGCAAAGATTTACCAGGAAGAATACCCGGATGCCTTGATTCACGTTTTTGACAGTAAAGGCGCGGGTCCGGCCCAGTTTTTGGCGGCGGAGAAGATAGCGGAACTGAAGGAAAAGGGGATGCAGTTCCCGGACCTGGTGGAAGCAGTGAGCGACTACCTGGAAAACCATGTCCGCGTCTTTTTTGCCTTAAAGTCGATGACCAATCTGGCCAACAATGGCCGGGTCAGCCCGGCGGTGGCCAAGATCGCCGGACTTTTGAAAATCTGGGTCTATGGCTGGGCAGAGGAAGGCGAAATCAAGCTCCTGGGCAAGGCCAGAGGGGAGAAGAAGACCCTGGCAGCTCTGCTGAGAACTTTGGAAGAGAAGGGCTACAGGGGCGGCCGGGTCAAGATCGACCACGCTGACAACTTCGACAGCGCGGCTGAGCTCCACGACTTGATCAAGAAAAAGCGTCCAGAGGCCAGGGTTGACCTGGGCACCTGCCGCGCCCTATGCAGCTTCTACGCTGAAGCGGGCGGGTTGATGATTGGAGTAGAAATTTAGCATGTAAAAAATCAGCACCGGTCCGGGTGCTGATTTTTTTACTTCTCGTCTTCTCGTCTTGTCTAAGTAATGACCAAAATTGTTGATCGAGCAGACATACATGTCCCGGTCCTGGTAGCTGGCCAGGTGGCGGCGGGTCAATTCGTCCTTGTAGGCAAAATTGGTGAAGTAGTAGACCAGCTGGTCGCCCGTCCGCCGCTCGATCAAGGTCAGAGGCATTTCCAGGTGTTTTATTCCCTGGGAAATATGACTGACCATGGGGTTGACTAAAATGTTGGTTTCACCGATCGTGTCGTAGTAGTCGTTCATCTCTTGCGGCTCGTAGTGGTCCAGGCCGTTCTTTTCGATCAAGGCCAGCATCTCTTCTTGTGGTAGGGGCTTGGAGAAGTAGAAGCCCTGCAGGCGGTCGCAGCCGATGGCTCTGAGGAAGTCGGCCTGCTCCTTGGTTTCGACTCCTTCGCAGAGGGTGTGGATGACCAGGTGCTTGTTCATGTCGACGATTTCCCCAAAAATAATATGGCTGCGGGAATTAGTCTTGAAGTTTTTTCGCCGATTGTAAAATTAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACTTAAACTTCCCACTTACAAAAGTGGGAAGTTTAAGTTAGTCTAAAAAATAACTAATTCTTTTCTGGCATAGAAAGGTACAAATGCGAATTTTATTACTCGGCGACAGCATCTTTGCCCGCAAGGAAGGGCTGGATCAGCCTAGAATCAATTGGACCTTGAAAGAGAAAAAGCTTGACCTGGAAATCGACAATACGGCGGTGTCCGGTATCAATTCCGGCGCCCTTTTAGCCCTGTTAGGAGACCTGGCCTTAAAGCGGCCCCGGGCTGGCCAGCTTTTCTTAATGGTCGGAGTCAATGACGCGGCCAGCCATAAGCAAGTGCCACTAGACCAGTACCGGAAGAACCTCCAGGCTATTGTCTCCGCCCTGGTCTGCTTTTATCCGGGGACCCAAACCGTCCTGGTCTCCGGGCCGGCGGTGGATGAAGATAAGCAGCGGGGGCGGACCAACGCAAAACTGGCAAAGTATGCTAAAGTAATGGAGGAAGTCGCGGCTGAATACCAGGTTGCCTATGCCGACTTTTTCACGGCCATGCTGAAGGAGGGAAACCTGAAAGCCCTGTGCCGGGGAGAACTTGACGACGGCCTGCATTTTGGCCCGCGCGGTTATCAATTGCTGGCAGCGGAAATGATGAAGCAGCTGCCCAAGGAAGAGGTTGAACAATGAAGAAGATCTACGTGGTTCGCCATGGCCGGACCTATTTGAACAAGTACCAGCGCCTGCAGGGCTGGTCTGACGCCCCTTTGACTGAAGAAGGGATCGAGGGTGCCCACCGGATGGGGAAGGCCTTGAAGGACCAGCATTTTGACCTGGTGGCCTCCAGCGACTTGAAGCGGGCGGCTGACACCCGGAAGATCATCGTTTCGGAAAATGACAACTGGGAGTCAACCAAGATGACCCAGACCGCTGACTTGCGGGAGCTCTTTTTTGGCTACTACGAGGCCTTCCATGATACGGAAGGGGTAGCGGCGGCCTTCAAGTCCACCAAGTACCCCCGCCTGGTCGACGCGGTCAAGGACGGCTACACTTGGCAGGAAATCGGGAACTTGTTTCACGCGGCTGACCCGGAGGGGGATGCTGAAAGCGGGAGCGAGTTTGAAAGCCGCTTGAAGCGGGGGATCGATTACCTGGTCAACTATGATGAGTCAGAGCGGATCCTTTTGGTTGGCCATGCCTGCGTCATCCATTGCCTGGCCTGCATCTACGGTGGCAAGCACCTCAGAACCGACTTGCCTAAGCACAACGAGATGACGGTCTTGAATGTCGATGATAACGGCCAGGTCAGCCTGGAAGAATTTGGCCGGCCGATGTACTGACTTTTGCCCAGCTGGTCTATAATAGCTTGTAGGGAGAAGTAGGGAGAGATCTATCGAAAATGGTAGGTGAGACAGATGATTAGTAAAGAAGACAAGTTGCTGATCCGGCGCTGTCTTTACGCCATGATCAACATGTACGGCATTATTCCGCTGAGACACGCGTACCATATTTTTAGCCACCAGAACCCCCTTGCTCAACGATGAGGATGAGGAATTCTACCTTTACGGCGACTGGGTCTTGATGGACCTGCCGCAATATTTCAAGCGGATCAAAAAGCTCCAGCACAACCGCCTCTATTACGTGCCGGAGAGGGATTAATTTTTGCGCCGGGAAAACGAATGGTATTATGAACGGACCACGGCGACGGAAGAGTACCGCCAGTATCTGAAAGACAGCAATCCAGGCCTCGGCGACGACCGGCTGGAGGAAGCCTTCTTTGAGGCGCTGACCCAGCTGCACTCGGTCAGCTACGGCAAGACGGTGGAAGAGACCATCAACGCCGTGCCCCGGTCTCTGCGCCTGATCGGCTTCACTGTAACGGACGAGCAGGAAGATGAACTGCGGGACTTGCTCAGACGGATGCTGGACGGAACCCGGCAGGAGGCTTTGCGGGGAAAGATGTACAAGTACCACAAGCTGTCGACCACTTTGGAAATCATCGAGACGGAAGGCTTGACGCCGGAAAACATCTCCCGGATCCACAGCGGGAAGATCGACGCCATGGAACTGGTGCCCCAGATCGAGCTCAAGCAGCCCAACCTGGCCCAGCAACTGGCCACGATTTACCAGCAGTAAGGCAAAAGTCAATGGTAACACCTTACTGAAGTAAGAGACCTGAAGCGCAAGCTTCAGGTCTCTTATCTTTAGCAGGGAAGCTGGGGAAATCCAGCTTTCATTGTCTAGACTAAGCAATCCAGTCGGCTTCGGCCAACAGGATTGCTACGTTATCCATGTATCACACCCAAGGATGATGCCCAAGTCTTTGGCTCTGTGGCAGCTCTATAAACAGTCATGAGGTTAACGTGACAGTCAACTGCGTTGGCAAGCATGGATAACATTGTCGATGGGCATCAACGCAAATCCAGATTGTGGGTCTCCTGGTTTGGACAAGCGGCAGGAATCACGGTTTCCTGCATTACGGAAAAGGAGAAAAAATGGAGCATGAAAATGCCAATCGGGTGTTTCTGCTCAACAGGGACGGCAAGCCGCTGATGCCGTGCTGTCCAAGAAAGGCCAGGCTGCTTCTGAAAAGCGGCAAGGCTTTTGTGGTCAAGAAATATCCGTGGCTTTGCTGTGGTCAGTTAACGAAAATGATTAGAATGAGATGCCAAAAAAGTACAGGTTAATTAAACTAAAAATTCAAATTATTATTGATTTTTATTTTTTATCACTGTAATATTATGTTCAACAAAAAATAATAACGGCTTTGATAAGGAAAGTAAGTTTTACTGAAGTACTACAGAGAGTTTCTGGTTGGTGCAAAGAAACAACGAAAGTTTAGCTGAAAATCACCTTTGAGCAGAAATTACGAATTGAGTAGTTTCAGGGCACGCCCTTTATAGCGTCGACGTATCGCTCTTTTTTGAGCCGCACGTGTAACGAGGCTGGGTTTATGCTCAGCGAACAAATTGGAGGAAATTATTATGGACAGATTTAGTAAGTTAGCAGTATCAACTAAAAAAGTTTTAAAGTGGGTATTAGGATTATTAATAATTAATTTTATCGGGTTAATGCTAATTACACTTTATTCAGCTTATTATAGTTTTGGTACTATGATTTTCGGTGTCCATACTGAATCTGCAATTAAAGATTTTTGGAGTACAGAATTTATTACTGCAATTCCATTTGTTATTGGTATAAATTTACTTGCAATTATTACTGCAAGTGTTCGAATCTATAAGAACAAGAAAAAAGAAAACAACTCTTAGTCTGACAATGTTAATTTCATCGATAAAGTCAGTAATTAATCAATTTATATGAGTCTTATCTTATTCCTTGGTAAGTCTTAATAATTATTTTCAAATATGGAGGTCATAAAAATGAAAAAACTTTCTAAATTGACAGCTTAAGCAGCTGTAGCCGTATCATTATTATCCGTAGCTGCGCCTACATTGACGTCTACTGTTCAAGCATCAACTACTGAGGGTAGTCAAACACAACCCAAGTTAAGTTTGTCTGCTCAAAAGAAGCTAGATCCATATGTAACAGTTAAAAATAATCATTATGTTTTGGGCGAAAATGCGAAAAGAGTTGTTTCAGAAGAATACAACGTTGCAAAACAAGTAATTGCTCAAACTAATGTTACTGTTGAAAATTCAGGATCTGTAATTAACAAAGATATAAACCTGAGGGGAAGGCATTTAATTGGTTGGGGTTGCTAAATCGTCTGATATCTCCAAGCTCACTAATAATTCTCAAGGCAGTATTTTCGGCGATGCCAGGAATGCTTTTAAGGATCTCCAGATCACGCTTGGGAGCGAGCTTGGCCAGCCGGATAAGCCTCTGTTGCCAGATCATTGGCACGTTTTTTACCAATACCAGATAAGCTCTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAATACGATATTAGGGTGTGGGAATCTGAGAACAATACTCAGCCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCAGTTTTGTTTACGACATCATGTGTCCAAAAGACGCACGGTATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGATTAGTATTTTTTAATAGCCGCGGTTGACCTTGCCGGCGTAAACGGCAAAAATCGCCCGCAAGCGTGGGGCCAAGGCAACGACCAGGGCCAGCTTGGCTAAGGTTGTGGGCAAAAAAGGCCAGATGGCAGCGTTAGCCGCGGCCGCGAATGGCAAGTGGCTGATCCAGGCTAGCCAAGCAGCGCCCAGCAGCAGTTGCAAGAAGAGGGCAATCCCGGCCGCCAGGGTCAAATAAAATCTGTTTCCTTTATCCAGGCCCGTGATCAGGGCCAGGGGCAAGAAAGCCCAGAGAAAGCCTCCGTTAGGCCCGAAAAGGACGGCGATGCCACCACTGGCGCCGCTGAAGACGGGGAGACCGGCGGCCCCTAAGAGCAGGTAGAGGGCGACGGCGCCGGTTCCCAGCTGCCAGCCAAAGGCAGCCGCGATTAGGGGGATTATCAGGGTCTGCAGGGTAAAAGGGACCCCGCCCGGCAAGGGGACCGCCAACTGGCTGCCGACAATGATCAAGGCTATGGAGAGGGCCAAAAGACAGAGCTGAAAAGTATTTTTTCTGGACATTTTTCTCCTCCAATCCAGTAAAACTATTGCTTGCTTGATTAATATAGTTTTACTGGGGATTTTTGTCAATAAGATGCTTTATCAAGTACATGTATAGCAATTGCTGGAGGGAAAAGTAACAAAGATAAAGGTTAGGTAAAAAGATGCAAAAATATGGGGAAAAGCAGGTCTAGTGGCTAAGCCCCGGGGATGCTACTAGATATGCACAACTTCCACAGGAGTTATCCACAATATATCGTAGCTACTTGCCGGAGTAAGGCCCAATATGTGGAAAAGGAGAAAATGGGGGTAAGATAAGCTGAAAGTAATTTTTTGCACTGCTATAGCTTTTTGTCTATAATGGAAACTTAACGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATCCATATTCTAACACTAAACCACACCAAAAGGGCAAGCACCTTAAGCTGAAGGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTACTCTAATCGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAAGCGAATGCGGCCGCAAGAGCTGTTTCTTCGCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCAAGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTTCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGTACGAAGCATCGATGAACGTAGTCCTAGAATCGAAAGCCGTAAGGACTTTGGTCACTGGGAATGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATGTGTTGCTTACTCTGTGCGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATCGAGGATAAGACCTCAGCTAGCGTTATGGAGGCATTTGATAAGCTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGAGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCATCCTTATATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCAAGGGAGACCGTATGGATAAGTACCGTGTGGAAGATATTGCTAAGATCGAGGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGATTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCGGCGTAGATAGTCAAAATCTACCAGATGTGATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGAATGGAAACTTAATACGCCTAATAGAAACAAGCAATGTAACGGAAAATAAGGAGGCCACATGCGCTATCAGCAAATTATCCTGGACGTTGACGACACCTTGCTCGACACTGAAGCAACGATCCACGACTCCCTGGTTCAGCTCTTCAAATCCCATGGCTGGGAGATCAGTGACGAATTTGAAAAAGAATTCCACGCTTACAACCAGGGTCTCTGGCGGCGGCTAGAAAAGGGTGAGCTGACCTTGAACCAGCTCTACGAGATCATGTTCCCGGATATTATCAAGAAGTACTGCGGGGTTGAAGTCGACGGGATGGAGACGGCTGACGAATTCCATAGCTACTTCCACACCGGCCACAAGCTCCTGCCCGGGGTCAAGGAAACCCTCCGCTATGCCAAAAGACTGGGCTACAGCCTGGCGGTTTTGAGCAACGGGGAGCAATTTGGCCAGGAGCACCGGCTGGAATTAGCCGGGATAAGACACTACTTTGACCTGGTCGTGACCAGCCAGGAAGCCGGGGTGCAGAAGCCAAACGCGGAAATTTTTGACTACTTTTTCGCCAGAAGCGGCTACAGCCCCAACCAAACTGTCTTCTTCGGCGACGGCCTGTCCTCTGACATCATGGGAGCGGAAAACTACGGCTTTGCCAGCATCTGGTTCAACCACCGCCACCGGCAGAAGACCCTGTCAGTCCACCCCCTCTTTGAGGTGGACAACTATGCCCAGTTCCAGCGGATCTTGAAAAAAGACTTCGCCCCGACCGCTCTGCGTTAGTTTCCGTTATACTTAAAGCAAACAGACTTTAAGAAGGATTTGGGTAAAAATGGGAAATTACTTTTTTGATTTCGACGACACGATCTGCGAATCGCGCCACATCTACGCGGCCAGCGTGCAGAAGACCTTCGAGGCCCGGGGGGTCAAGGTGCCGAGTACTGAAGATATTTACCAGGCCATGGGGATTCCGATCGACGTCTCAATTGCCCGCTGGGCCCAGTAGGGACACCGAAGCGACCTGGCCCAGACCATGTTTGCGGAAAGCATGGCGGAATATGTCCTGCTGGAGGACGACCAGGTCCGCCTTTTTCCAGGGATCGTGAAGACCTTGACCCAGCTGAAATTGGCTGGCAAGCAGCTCTTCGTCTGCTCCAGCAAGACCGACCCGGAAATTGCCCATAATCTGGAAAATCTGGGTCTGCTGGATCTGTTCGTTGATTTTGTGGGGGCCGATGAAGTGGTTAACTACAAGCCGGCCAGCGATGAAATCGACCTTTTGGTCAAGCGGCATGGTTTGAACTTAAGCGAGTCGGTCATGCTGGGGGATGCCAAGTACGATATCCGGATGGGGAAGAATGCTGGCTGCGCGACCTGCGCCTGAACTTGGGGCGCCTTTGACCCGGCCAGCCTGAAGAAGGAAAAGGCTGACTACACGGTCGACTATCCCCTGGAAATTTTGGCGATCTAGAAAAAAGCAAAGAGTAAAAACGACAGAGAGTAAAGAAAAACAGAAAGTGAAGATAAAATGCGACTGATTTCTTGGAACATTGACTCATTGAACGCGGCCTTGACGGGGACTTCCCCGCGGGCGGAAATGACCCGGGGGGTCTTGAAAAACTTGCATGACCTGGACCCAGATGTCCTGGCCCTGCAGGAAACCAAGCTGCCGGCCAGCGGACCAAGCAAAAAGCATCAAGCGGCTCTGGCTGACCTTTTTCCGGAATACGATTTCGTTTGGCGGTCCAGCATGGAGCCAGCTCGGAAGGGTTACGCGGGCACGATGTTTTTGTATAAGAAGGGCCTGGAACCGGTAGTGACCCGGCCGGAAATCGGGGCCCCGGAGCCGATGGACTTTGAAGGGAGGATTTTGACTCTGGAATTCCCGGACTTTTACGTGACCCAGGTCTACACGCCAAATGCCGGCAACGGTCTGGTCCGCTTGGGTGACCGGCAGGAATGGGACAAGTGCTACCGGGCCTACCTGGAAGAATTGGACAAGAAGAAGCCGGTCCTGGCCAGCGGGGACTTCAACGCCGCCTACCAGGAAATCGACTTGAAGCACCCGGAAAACAACCACCATTCCGCCGGCTTTACGGATGAAGAAAGAGCGGGCTTTGGCCAGCTTTTGGCGGCGGGCTTCACGGATACCTTCCGCCAGATCCACGGCCAGGTGGAGGGCGTCTACTCCTGGTGGGCCCAGCGGGTACGGACGGCCAAGGCCAATAATTCCGGCTGGAGAATCGACTACTGGCTGGTTTCCAACCGCCTGGCTGACCAGGTGGAGAAGTCGGAAATGATCGAGACTGGAGAAAGAGCGGATCATTGTCCAATTTTATTGGAAGTTAAGCTGTGATTCGGTTACAGTTAGAAGTTAGAGGTTGAAGAAACAAAGAAGTTTTAGTTAATTTTTAGTATATTAGGCGTATGTGTATATGAAGAGATTAGAAAAAGGGGTCATCGGCTTGATCCTGGTCATTTTTGCCGGCACGGTGATTATGGCCGTCTCGAGCGGTGGCCAGAAAGCAGAAAGCAGTTCAGATGCCTTCGATACTTCAGAGTACCGGAAGGCAGTCAAGTCAACCGACAACCACCACTTCAAGAACATGAAGGTGGAATTGTCCGGCAAGAAGAGCAAGAGGGTTGACCTGGATTTTACGGCCAGCAAGAAGGACAGCGTGCTGATCAGCAAGCAGACAGTTAAGCTGCTGACCCCTAAGGGGCAGGAATTGACTCATGCCACGGTTGGTGAAATCGGCTATGACCCGGACAGTGACAAGGTCTTGATTTTTGCCAGTGACAAGAACTACAGCCGGGGGTTCTATCCTTTAGGTAATTTGAAGCGGAACGAACCGAGCCCGGCTAGTTTGAGTGCTGACCAGGATCCGCTGGAATTCAGTTTTAAAGATTAAGCAGAAGGACTTTCGCTTTAAGCGGCAGTCCTTTTTTCTTTCTTGTTACTTTTGCCTTGTTTCCTGAATTTTTAACCGGCTTGAAACTTTTTTAATTAAGTAAGGCTTGCACTTTGGACAAAATTGTTTTATTGTTGATTATTAGAAAATAATTGATAACATATTAAAAATAAGGAGGAATCTTTGATGAGAAAAGTAGCAGTGATCGGCATGGGACACGTTGGGGCCACGGCGGCCTTTATTCTTTTTACCCACGGGGTAGCGGACGAATTGGTCTTGCTGGACAAGAATGAGACCAAGTGCCGGGCTGAATGGGGCGACTTGCGCGACACCCTGGGCAGAAACGACTTCTACGTCAACGTCAAGTGGGGCGACTGGAAAGAGCTGGCGGACGCTGACTTGATCATCACCGCTTTTGGTGACGTGGCGGCCTCAATCACGACAGGCGACCGGTTCGCGGAATTCCCGATCAACACCAAGAACGCGGTTGAAGTTGGCCAGAAGATCAAGGACAGCGGCTTCAAGGGCGTCATCATCAACATCTCCAACCCTTGTGACGTGGTAACCTCCATCTTGCAAAAGGTGACAGGCCTGCCAAAGAGCCAGGTCTTCGGGACCGGGACCTTCCTGGACACTTCCAGAATGCAGCGGGTTGTCGGGGAAAAGCTGGGCCAGGACCCGAGAAACGTGTCCGGCTTCAACCTGGGCGAGCACGGGTCCAGCCAGTTCACGGCCTGGTCAACTGTTTGGGTCAACAACCGGCCAGCCAAGGACCTCTTCAATGAAGCAGAGAAAGAAGAAATGGACCGCTTGAGCAAGGACAATGCCTTCATGGTCGGCAAGGGCAAGGGCTACACCTGCTACGCTGTCGCTACCTGCGCGGTCCGTTTGGCCAGAGCCGTCTTCTCTGACGCCAAGTTCTACGGCCCGACCAGCTGCTACGTTGAATCTCTGGGGACCTACATCGGCTACCCGTCAATCGTTGGCAAGCATGGGGTAGAAGAAGTGCCAGTTCTGGACTTGCCAGCTGACGAACAAGCCAAGCTGGAAGCTTCCGCTAAGAAGCTGAAGGACAGCCTGGCCAGCTTGGAATAATTAAAACGATTCTGACAAGTCAAAAGAATTTTAGCGTAAGAAAATCCTCCCGGGTGGGAGGATTTTTGTTATAATGATCCTAATTACAAAAAGTAAGTAAAATGACAGGAGGCAAAAAATGACTTTGCACGGTTTGGAAGATACTTACGAATTAGCCAATGGGGTCAAGATCCCGGTAATCGGTTTCGGGACCTGGCAGACGCCAGACGGCGACGTAGCCCAAGAAGCAGTTGAGACAGCCTTGAATGCCGGCTACCGGCACATCGACACGGCCGCAGCTTATGGCAATGAAGCCAGCGTGGGCCGGGCCATCAAGCGCAGCGGTGTCAAGCGGAGCGACTTGTTCGTGACCAGCAAGCTTTGGAACGGGTCCCACAGCTATGAAGGGGCCAAGGCGGCTATTGACGACAGCCTGCTCAAGCTGGACACGGACTACCTGGACCTGTACTTAATTCACTGGCCAAATCCAGTTGCCATCCGGGACCACTGGGCAGAAGGCAACGCGGAAGCCTGGCGGGCCATGGAAGAAGCCGTTCAAGCTGGCAAGATCCGGGCAATCGGGGTCTCCAACTTCCGCCGCCACCACCTGGAAGCTCTCTTAAAAACGGCAGAAATCAAGCCCGTGGTCAACCAGATCTGCCTCAACCCAAATGACTTGCAAGCGGAAGTAACGGCCGCTAACAAGGAATACGGCCTTTTGAGCGAGGCTTACAGTCCTTTGGGCACGGGCGGTCTTTTGGGCAATGAGACCATCAAGGCAGTTGGGGCCAAGTACGGCAAGTCCAGCGCCCAGGTTTTGATCCGCTGGTCCCTGCAGCATAACTTTTTACCAATACCGAAGTCAGTTCACCCGGACTACATCAAGGCCAACGCTGAGGTCTTTGACTTTGCGCTTACTGCAGATGACATGGCCAAGCTGGATGGCCTGCAAGGGATCGGCCAGCCAGTCCTGGATCCGGACCAAGCCGAATTTTAAAGACAAAAGCAAAAAGAAGTAAAAAAATTATAAGAAAGACTATATAATATGCCGAAAAGCGAATTGGTGGTTATATAGTCTTTTTGTATATATCCGGAAAAACCGAACAAAAATTGCTAAAAATTTTTTCAAAAAATTTGGCAGCGGGTGAAGGCTTACGGGGCTTGAATTGAGCCAACACACAGTTTCTCGTGTTCGCCTAGTTACACAACACTACATCTTGTGTTTCACAGGAAGAGTGCTAATATCATAGAGTACTTAAAAATAATGCGACAAGCAGAAAGGACCTGAGAAGATGAGTGAAGGAATATCTCTCTCGGCGGAATTTATCGACCGGGTGAAAGCGAGTGTAAAACCTCACTGGGGCAAGCTGGGCTGGGTCACCTACAAGCGGACCTATGCCCGCTGGCTGCCGGAAAAGGGACGGAGTGAAAACTGGGATGAAACCGTCAAGCGGGTGGTTGAAGGCAACATTAACCTGGATCCCCGCCTTCAAGACTCCCCAAGTTTGGAACTGAAGCAGAGCTTGACTGAAGAAGCAGAGCGGCTCTACAAGCTGATCTACGGCCTGGGCGCGACGCCATCTGGCCGGAACTTGTGGATTTCCGGGACTGACTACCAGAGACGGACCGGGGATTCCTTGAACAACTGCTGGTTTGTGGCCATCCGTCCGCAAAAGTACGGGGACAGCAAGATCGTGCCCAGCTACCTTGGCAAGCAGGAAAAGGCCGTTTCCATGCCTTTCTCTTTCCTCTTTGACGAACTGATGAAGGGGGGCGGGGTTGGCTTCTCAGTTGCCAGATCCAACATCAGCCAGATTCCCCGGGTCGACTTTGCCATCGACCTGCAGGTGGTGGTCGATGAGAGCAGTGAATCCTACGACGCTTCCGTCAAGGTCGGGGCCGTCGGCAAGAATGAATTAGTTCAAGATGCTGACAGCATCTACTACCGCCTGCCGGACACCCGGGAGGGCTGGGTTTTGGCCAATGCCCTCTTGATTGACCTCCACTTTGCCCAGACCAACCCGGACCGTAAGCAAAAGCTGATCCTGGACTTGTCCGACATCCGTCCTTACGGGGCAGAAATCCATGGCTTCGGCGGCACGGCTTCCGGCCCAATGCCCTTGATCTCCATGCTGCTGGACATTAATGAAGTCTTGAATAATAAGGCTGGCGGCCGCCTTACGTCTGTTGATGCCGCCGACATCTGCAACTTGATCGGCAAGGCAGTCGTGGCCGGCAATGTCCGCCGGTCAGCGGAACTGGCCCTGGGCTCAAATGATGACCAGGACTTCATTTCTATGAAGCAGGACCAAGAGAAGCTGATGCACCACCGCTGGGCATCCAACAACAGCGTGGCAGTTGATTCAGCCTTCAGCGGCTACCAGCCGATCGCTGCCGGGATCCGGGAAAACGGGGAGCCAGGGATCGTGAACCTGGACCTGTCCAAGAACTATGGCCGGATTGTTGATGGCTACCAGGCTGGAATTGACGGGGACGTGGAAGGGACCAACCCTTGCGGGGAGATCTCCCTGGCCAACGGGGAACCTTGCAACCTCTTTGAAGTCTTCCCGCTGATCGCGGAAGAACAGGGCTGGGATTTGCAGGAAGTTTTTGCCTTAGCGGCCCGCTACGCCAAGCGGGTAACCTTCAGTCCTTATGACTGGGAAATTTCCCGGGAAATAATTCAAAAGAACCGCCGGATCGGGATCTCCATGTCCGGGATCCAGGACTGGCTTTTGACCAGACTGGGCAACCGGGTGGTTACCGGCTTCAAGGATGACTTTGACCCGGAAACCCATGAAGCTATCAAGGTGCCAGTCTACGACAAGCGGGCCATTAAGATGGTTGACCAGCTTTACAAGGCCGTGGTCAAGGCTGACCAGGACTACAGCAAGACTTTGGGCTGCAATGAATCAATCAAGCATACCACGGTCAAGCCATCAGGCACGGTGGCCAAGTTGGCCGGTGCCAGTGAAGGCATGCACTTCCACTACGGGGCTTACTTGATCCAGCGGATCCGTTTCCAGAATTCTGACCCGCTTTTGCCAGCCTTGAAGGCCTGCGGCTACCGGACGGAAGCCGACATCTACACGGAAAACACGACCTGCGTGGAATTCCCGGTCAAGGCGGTAGGGGCGGACAACCCTAACTTTGCCTCAGCTGGCACGGTTTCAATCGCGGAACAGTTTGCCACCCAGGCCTTCTTGCAGACTTATTGGTCGGACAACGCGGTTTCCTGCACGATTACTTTCCAGGATTCCGAAGGTGACCAGGTTGAATCCTTGCTCCGCCAGTACCGCTTTATCATCAAGTCAACCTCGCTTCTGCCATACTTTGGCGGTTCCCTGCAGCAAGCGCCAAAGGAACCGATCGATAAGGAGACTTACGAAAAGCGCAGCCAGGAAATTACCGGCAACGTGGAAGAAGTCTTCAGCCAGCTGAACAGCGACGTCAAGGACCTGGAACTGGTCGACCAGACCGACTGTGAAGGCGGCGCCTGCCCAATTAAGTAAGGCAGGCAAAATAGTGTTAAAATACATAAGAAAAAACTAAAATAAAAAACGGGAGGAACAAAAGATGAAAAAGAAGATTTTAGCAGTCGTAGTTGCCTCGGCAGCCTTCATGGGCCTTTTTGCCAGCCAGCCAGTCCAAAAGCAATATGTGCAAGCAGCCAAAAACACTAAAACGGCTAAGAAGACTACTAAGAAGGCCAAGGCTAAGCAAATCAGCGTGACCTACACTTTGAAGGACACGACCAAGGCCAAGAACAATCAAACCCTGGCTAAGAAGACCTTCAAGGTCAAGAAGGGGACGAGCGTCTTCACTGTTTTGAAGAAGGCCTGGAAAGTCAACTACACTAAGTCTTCATATGGTGTCTTCATTACCAAGATCAAAGGACTGGGCAATGAAAAGAAGAAGCTCTACTGGACTTACACCGTTGACGGCAAGATGGCCAAGGTGGCAGCTGACAAGCAAAAGCTGACTAAGAACAAGTCCAAGGTTGTCTTCACTTTGAAGCAATATGTGCAAGCAGCCAAAAACACTAAAACGGCTAAGAAGACTACTAAGAAGGCCAAGGCTAAGCAAATCAGCGTGACCTACACTTTGAAGGACACGACCAAGGCCAAGAACAAGCAAACCCTGGCTAAGAAGACCTTCAAGGTCAAGAAGGGGACGAGCGTCTTCACTGTTTTGAAGAAGGCCTGGAAAGTCAACTACACTAAGTCTTCTAAATATGGTGTCTTCATTACCAAGATCAAAGGCCTGGGCGATGAAAAGAAGAAGCTCTACTGGACTTACACCGTTGACGGCAAGATGGCCGAGGTGGCAGTTGACAAGCAAAAGCTGACTAAGAACAAATCCAAGGTTGTCTTCACTTTGAAGCAATACTAAAATGCAGACCAAGGAACGCTACCAGCTGCAAAGGCTGACCCTGCTGGCCTTGCTGACTGCGATGTGCGTGGTTTTGCGGATCTTTAAAATCATCGATATCCCCAATGTCCAGCCGGTGACCGACATTATCATGCTGACGACGCTGGAACTGGGGGCAGGGACGGGGATTCTCCTGGCCATTTTGGTCATGGTGATCTCCAATATCTTCCTGGGGTTTGGCATTTGGACCTTGCCGCAGATCTTTGCCTACGCGGCCTGTGCTTTGACCGTGGCGTTATTTGCCAGGCTTTTGCCGCTGAAAAGCCGGAAATTCTTCTGGCTGCAGGAGCTCCTGGCCGGCTTTCTGGGCCTGGAATACGGCTTCTTCGTCAGCCTGGGCATGGCTGGCTGGGGCGGCTGGGCAGCCTTCATTGCCTACTGGGTCAGTGGCCTGACCTTTGACTTGTATCATGCTGCCGGTAACCTGGCCTTTTATCCTATCTTTTATCTGCCATTGGTTTTGGGCCTGGACCGGTTTAAAAAGAAAGCAGGGTGGAAGCAAAATGCTTAAAGTCTACACTAAAGTCGGTGACCAGGGGAAAACCAAGCAAGTGACCGGCAAGATGGTCGCCAAATACGACCCGCAGATCCAGACACTGGGAGCTCTCGATGAGCTGCAGTCCTGGCTGGGTGTTACGGTGGCCAACCTTTCTCCGGCCTGCCAGGGCCTGGAAGAAAAGCTGATCAAGCTGGAGCGGGAAATGTATGAATTGCAGGCTGACCTGGTGGTTAAGCGGCACCATACGATTACCTTGGCTGAAGTGACTTACATGGAAGAGCAAATCGATGCCTGGACGGAAGAATTGCCGGAAATGAAGGGATTCATCCTGCCGGGCGGGTCAAAGACCAGCGCCAACCTCCAGTATGCCCGGGCACTGGCCCGGACCAGCGAGCGGGTCTGCGTGCTGTACGCGGACGAAAGCGGGGAGGTCAAGAGCGACAGCCTCAAGTACCTGAACCGCCTGTCAGACTACCTGTTCGTCATGGCCCGCTACGCCAACCTTTTGGAAGGCGTGGCTGATGTCAAGAGCAAGCCCGCCCGGCCGCGGCGGCGTCCGAAAAAATAAGCTAGCAAATAAAAAAGTGTTGGATGATCTCGAGAGCAAGTATCCAACACTTTTTCTTTTACAGTTACTTTCAGTCGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACACTAAACCACACCAAAAGGGCAAGCACCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTGAGGGCTACTCTAATCGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAGCTACATAGAAGCGAATGCGGTCGCAAGAGCTTGTTTCTTCGCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCATGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTTCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGGACGAAGCATCGATGAACGTAGTCCTAGAATCGAAAGCCGTAAGGACTTTGGTCACTGGGAACGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATGTGTTGCTTACTCTGTGCGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATTGAGGATAAGACCTCAGCTAGCGTTATGAAGGCATTTGATAAGTTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGGGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCACCCTTATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCAAAGGAGATCAGTACAGTGTGGAAGATATTGCTAAGATCGAAGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGACTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCGGCGTAGATAGTCATCAAAATCTACGAGATGTTATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGAACACTTTTTCTTTTACAGTTACTTTCAGTATATTCTACTCCAAAAATAAGCAAGCAAAAACCCGCGGGTGAGAAGGCCCCGCGGGTTTTCGTTTTAGATTTTAATGGATAAGTTTAAAAGTATGTATTTGTAAAGTAATGTAAGTAATTTTTAAGTAGATTGTTGTAAGAAAATCTGTAGGTTTTAAAAAAGGGATTTCTAAGCGGCTAGATTAGCCAACCTTAACTGGAGTTTCAGCTTCCTTGCCTTCAACCAATTCAAGGTTGTTGTCGAAGGCCTTAACTACCATGTTGCGAACAGCGTGAGTAGTGTAGAAAGCAGTGTGTGGAGTTACCAGAACGTTTGGACGAGCGATTAAGTCAGCTAAACGTGCGTCTGGGAATTCCTTGCCTTCCCAGTCTTCGTTGAAGATGCCAACTTCACCTTCGTAAACGTCCATTGCGTAACCGAAGATCTTGCCTGAGTCCAAACCACGGATAACCGCGTCAGTGTCAACCAATGGACCACGTGATACGTTAACGATAACTACGTCTTGCTTCATTTTAGCGATTGACTCGTCGTTGATCATGTGAACGTTAGCTGGAACGTCAGGAACGTGCAGGGAAATAACGTCAGCTTGCTTGTACAGGTCGTCAAGTGAGTCTACGTAGTAGCCCTTCTTTTCCAATTCTGGGTTGCGGAAGATGTCGTAAGCGATAACCTTAGCGCCGAAGCCTTCCATGATTTGCATGAAGACTTGACCGATGTGGCCAGTACCTATAACACCAACAACTTGGTCGCGAACTTCACGGCCGATAGTTGGTGCCCAACGCAAGTCGTGACGGGCAACCTTTTCGTCCATAGCCTTGTCTTGACGCAGGATGCGGGCAGCTTGGATAGCAGCGTGTTCTGCGATGGCGTTTGGTGAGTAAACTGGAACGTTGGTGATTTGGAAGCCAAGTTCCTTAGCCTTAGCCATGTCGATGTTGTCAACACCAACGTTACGCAGGCTCATCTTAGTGATGCCGTTGTCTGCCAAAGCTTGCAGAGTTTCAGCGGTGTAGTCAAGTTGTTGGTAAACAACAACACCGTCAGCACCCTTTGCCAAAGCAACAGTTTCTGGGGTCAAAAGCTTGTCAGTGTATTCAACTTCGACGTCCTTGTGAGCGTCTTCCCATTCCTTCAAGAATGGCTTTTCATCTTCACGAATTGCGTAAGCAAAAATTTTAGTCATTAATTGTCCCTCCGTTATTCTTGCTCTTACATTGATAATAGTAACACAAAAAGGTGAAAGATAACACTAAAAAACAGTCACGTGAACAATATAATTTGGATGAAAGCGCTAAATATCAATATGGACAAGATGATTTTTGAAGTGAAAAAAATATCTTTCACAAAGTTGAAAATGTTTTGACTGCAGCTAGTTTATAGTAACGGATTTTTTAAGCAAAAAGCGGCATAATATCCTCTCTTACAAGAATGTTATGCCACTTTTCTTCTATGTTATTTGCTGATTGCTGCCGCTTAATCGATCTTGCGCTTTGGATTGAGCAGGTTCATTGGGTCAAACAAGCTCTTGATCTGGTGTTGGATCCAGTCAACGTCTTCACCCAATTCAACATTGTTCCATTGGTTCTTCAACATCCCTACGGCATGTTCGCCAGAGATGGTTCCACCCAGTTCTAAGGCCTTGGTAAACATTTCGTGCAAGACGATATTGACACTTTCAGGCATTTCCTTGGCATCCTTGGACCAGGTAACGGTTGGGTGCAGGTTGCCGTCGCCAGCATGTCCGGCGGTGAAGATTTCCAGTTCCGGGTACTTGTCGCTAAAAGCTTGGATCGTGTCAACCAACTCAGCCATGCGTGAAGTTGGCACGGCCATGTCTTCCATAACTGCGCTGCGACCAGTGAAGATGGCTGGTAACATGTCCTGGCGGACGCTGATAATCTTGTCTTGCTCAGCTGGGTCAGTAGCCAGCTGGACGTCGGTCACATGATACTTGTCCATAATGTTCTTGACGATCTGTTTGCCTTCATCAGAAATGGAGTCGACGCGGAAAATTAAAGCTGCGCCGCGGCCGGCCATCTCCTTGTTATCACGGAATTCGCTGACTGCCTGCAGGGTGTGGGAATCCATGGCTTCTAACATGGCAGGGTAGATCCCTGACATCCGCAGATCTTTGGTGGCTTCAGCCAAAGTGTGCATATCCTTGAAGTAGGCCAAGCCCATCAAGGATTCGCCCAAAGGCAGCGGCAGCAACTTGACCGTAATTTCCACGATCGTACCCAGCGTCCCTTCTGAGCCGACAAACAATTGAGTTAAGTCGTAGCCAAAGGCTTGCTTGCTGGTTTTGCCGCCCAGGTCAAGGAGGCGACCATCAGCTAGGACGACCTTCAAGCCTAGGACGTTGTCGCGGGTTGATCCGTAGCGAACGCCACTCAAGCCGCCGGCGTTGGTCGCGACGTTGCCGCCGATGCCTGACATTTTCTTTGAAGCTGGATCTGGAGCGTAGAAGAGCCCTTGCTTTCTCGCGGCTTGGTCAAGGTCATTGTTGATGACGCCTGGCTGAACGACGGCATAGGCATCCTCAGCGTTCAATTCCAGAATCTTGTTCATCTTGGCGGTTGAAAGAATGATGGCGTGGTCAACAGCATCAGCGCCAACAACGGTGCTGGTGAAGCGGTTCTGGGAAACAACTGGCAGGTGGAAGCGGCGGGCAGCCCGCATGACTCCCTGGACGTCAGCGATTGAGCCTGCTTCGACCAGGGCTAGAGCCAGACCGTGCTGGCCAGGCAGGTTTTGGCTATAGGATACGGTTTGTAAGCTGTCTTTATCAGTTTTGACGATCCCATCCTTTACTTGTTCCTGCAAAAAATCAATTATTTCGTCTGTGTTGTAGGCTGAAAAATTCAATCCTATGGTAAATTCTCCTTTTAAGCAATAGTGATTTTCACGGCCACGAATGAGTGTCTTATTTTTTACTAACAATTAGTAAGTTAGTTTAGTATACACTAATGCTCAGCAATTGCAAATAAATAGTTTTTTGTTCCAAAATATCTTTAACCTGGTAAACTTTAGGTAAAAAGCAAAATCGAGGAAACGATAATGACAGTGCAAAAAATCATCCACGATCCCCTCAGTTTAAGCCAGCCGGCAGCTAAAGCGGCGGCCAGTGACCGGCAAGCGGCCCAGGACCTGCTAGACACCCTGCTGGCCCACCGGGAAAGCATTGACGGCCTGCCGCCCGCCGCTGGCCTGGCCGCCAACATGATTGGGGTAAACAAGGCGATTATCGCGGTCAACGCCGGCTTTTTACCTATAGTTATGCTCAACCCCACGATCGTTAAAAGATCCGGTCACTACCTGGCAGAAGAAGGCTGCCTGTCTTTGCCTGGAGAGCGGCCGGCTGACCGCTATGAAGAAATCACGGTCAAGTACCAGGACATGGATTTAGAAGAGCATGAGCAGGCCTTTACGGGCTTTGTGGCGGAAACTATCCAGCATGAGGTCGATCACTGCAAGGGCAAATTAATTTAATAAGGTAGGAAAGCAAAAAGCTGGGCCAAACGGCTCAGCTTTTTAATCGGTCAGGTAGGAGACCGGCTTGTTGACTTCGACTTTGGTGCCGGAGTATTTCTTGGCGATCCACTTCTGGATCTGCTTGTTATGGTAGAGCTTGCCCAGCTTCTTGTAAGCGGCATTGTTCTTGTTCTTCTTGGCAGTGGCCAGGACATTGATGTTGTTCTTGGTGCTCTGGTTGATCTTTTCGTGGTAAAGAGAGTCCTTGAGCACGTTCAAGTTGCCGGCCAGGGCGATGGTGTTGCCGATGAGGACGGCGTCGACGGACTTGATGATCCGCGGGCCAGTGGTGTCATCGATCAGCTTGAACTTGAACTTCTTCGTGTTGGAAACAATGTCGTTGGTGTTGCCGCTGGCTGAGTCAAAGTTCTTCTTCAGCTTGATCAGGCCGGCGCTTTGCAAAAGCAGGAGCCCTCTGGCTTCGTTGGCGGCATTGTTGGCCAGGGCGATGGTCGCGCCTTTAGGCAGGTCAGAGAGCTTCTTGTACTTGGATGAGTAGATCCCCATTGGTTCCAGGTAGGTCGTGGCCAGGGCTACTTGCTGGCCGGTGTTGCTCTTGGACTTGTTGTAGGCTTCCAGGTAGGCCCAGGAAGCGAAAGCACTGACGTTGATGCTGCCGTCAGAGGTTGCCCGCAGGATGCTTGGCCCGTCGGTAAAAGCCTTCACCTTGATCTTGAGGCCCAGCTTTTTGGCCTGGCTGCTCTTGGCGATGTGCTGCCAGACTTGGACGTCGGGGCCGATAGAGCCGACAGTGACGGTAGTCGTCTGGCTCTTGGCCGTTTGCCGGGAAGAAGTCAAGCGCAGGGCGAAGAAGGCGGCAATGATGACGATGAGGGCGATGGTGGCGGCGATGAGCCGTTGATGCTTTTTCTTTCTTCTCATGATTTTTGCCCCTAAAAGTTTAAAAAACTAGTCTTCAACCACGTGGCGGTCAAATGGGTCGTCGCTGATGCCCTTCTTCAAGATATCGTTGCACCATTCCTGGGCGCTGAAGAGGGAGTGGTCGCGGTAGTTGCCGCAGCTTTCGATGGTGGTACCAGGCACGTCTTCCCAAGTGATGTCGTCTCTGATTGCCTTGAGGGAGTCGCGCAGGGCCTTGGCTACTTCAGTGGTGCTGTGTTCACCCCAGGTAATCAAGTGGAAACCGGTCCGGCAGCCGAATGGGGAGCAGTCGATGACGCCGTCTAAGCGGTCGCGCAGGAGGCTGGCCAGGAGGTGTTCAATGGTGTGCAGGCCGCCAGTTGGGATGGCGTTTTCGTTAGGCTGCACCAGGCGGAGGTCGAAGTTGGAGATCTTGTCGCCCTTAGGGCCTTCTTCAACGGTGATCAGGCGGACGTAAGGTGCCTTAACTTTAGTGTGGTCCAATTCAAAACTTTCTACTTTAGCCATGATGATAATTCTCCTTATTTCTAAAAATACTGCTTAACTAAATTACTTGCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAGTTGACATAGTTTTTTCCTCCTGAAATTATTCGCTAAAAAATTCTAAATCTTATTTGATAGTTTGCAGCCAGTTTTTAAAAAAGTGCTGCTGGCTGCTTTCCCAGGTAAACTGGGGCAGGGACATGGCGGCTTCATCCGCGAAATACCGCTGCGGTTTCGCTATCTTCCGGTCATCACCTCCTCTAGCGGATAATTCCCGCTGGTATTCCTTGCTAAAAGCCTGGGGGCCGTATTCCAGGTGGCTGAAGAGAAAGACCTGCTGGCCAGGCCCAGTGACCAGAGTAAGGTGGCCATCTGGTGTGGCCGCGTTGATGGTTAAAGCTTTTTCTTGCTCAATCTCGCTCCTGTTCATCTCAGCGTAGCGGGCATGCGGGGCCAGAAAGCCTGTGATCAGGCCACTTAACAGGGGGGTGGGAGCCAGGATCTCCTGGGGGTAGATGCCGAAAATCTTCTCCGGCATGGGATGCTTGCCGATCCCGTAGAAATAGTAGAGAGCCGCCATGGCGCCCCAACAGACATAGAGCTGGGGAATGTTTTTTGCCTTTAAGAGGTCAAAGAGCTTGGTCAATTCCTCCCAGTAGTCGACTTCGCTAAAGGGTAGGAGCTCGATCGGGGCGCCGGTGACGATGAAGCCGTCCAGCTTGGCAACTGTCTTGAGATTTAGCGGCTCAGCCGGCCAGTTTTGGGGTCGGGGCCGGTTTAGATAGTGGCTTTGGGGGTAAAAATAAGTGATTTCAGTTTCCGGGCTGGCTTCTTTGATCACATGGCTGAACCGTTTCTGGGTGTCGATCTTGTCATGCATCAAATTGAGAATGCCGATTTTCTTGCTCATCTTGTTTGTCAGTCCTTTTTTAAAAAAATAGCAGGTAAGTCTGGGAAAACAAAAAGACGCGCGAGACAAGCTCTACGCGGCTTAAACAATCAAAGTTATTTGGATATTGGGAATTCTGGTCTGCTCCTAGCTTTCCAGTCCAAGCCAAATAGTGGATTGCTTAAGACACAATCCACAACAACAAGCAGTCATGTTTACGTTGAACAGGTTCTTGTTGAACATTTGGCTTACCTCCTAAATTAGTTACTTGAAGTATAACCGCTATTTTTTGCTTTGGCAAGAGAAATTAGAAAAAAAGTTACAGAAAACTAATTTTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCTTTGGGAATATAGCGTCTGATAAGCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCCCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGACTCTAGGACTACGTTCATCGATTCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTATTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGCTTCACATTGCCGGTATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGCGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATAAGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTAAAATGGATTTTTTGTGCTCTAATCCAGTAAAAACGATTTTTTCTTACTGGATCGGAACAGTGTTCAGTTTGATTTTACAATCGGCGACTAAATTACTTGAAAAAACGTGACAAAAAAAGTCCCTGAACGAAAATGCTTTCGCTCAGGGACGTATTAGCGTGTTACCACCCATCTTCACGGCCAAAAGAGGCCGCCTTTAAGTACGCTCCGCCTAGGCGTAGTTATACTCGGGCGCGGTATCGGGCGCCTCCCGCGGGAAGCTTGCTGGAGCTCGCCTCCCGTATGACTCAAAGACCATGTTCGCCGGGGCCTCTTCAGCGCTTTTCAGCCACCGCGCCTCTCTGAAAGAAGATTTGACCAGCTACTTATCTTTTCTTTGTCAACGTGTTTTCATTTTTTAATCATAATATAATAACGATAGCCACTTGTCAACCTTTCGCGAAAAAAATTATCCAAGCCGGCTAATTGCCCTGCTTTTGCTTGCCGGAATTAAATTTCCGATCCCGCAGATAGTCGGCAATCGTCGCGCCAATGAGGATCAAGTCAAAGGGGCCTAGAAGGGCCAGGCCGGCGGTTTGAGCGGAAACGTCCAGTCCGCCATATTCCTTAGGAATTTTTGCCCGCAAAAGGCCCAGGTCAACGATCTTTTGGAAAAGTCCGTTTGGCAGCTTGGCCTGGCGGTCGATCTGCAGGTCAAAAGGCGCTACGTCCTTGTCTGCCAATTGCTGAACGGCTTGTAAAAGTTCGGTTTCGTTAGTCATGCCAGTATCCTCATCATTCTTTTATTATATAGAGAAGCAACGCTTTTTATTTTGCACAGCCGAAATAAAGAAAGCGCTTTTATAATTAATATACTATTATGAACTAGTGGTAATGTGCAATAGGGGGAATAAAAAAGGCTCACTTGTGTGAACCTTTATAGTTTAATCAAGTTGAATTTCGCGGTCAAAAAGCTGGCGGCTATCCGCGGTCAGATTATGGGCGACAAACATGATCGTTTTATCCGTCTTGAGCAAGCGGACAATAATCTCCCGCGTGGCGGCCTGGTCAATGGCACTGGTTCCTTCATCGATCAAAAGCAGCTGGCTGTGGTAAAGATAGCTGCGGGCCAGAACGATTTTTTGCCGCTGACCGCCAGAGATATTGCTGTCTTCTACGGCAACCCTTGTATCAAGCCCAGCCGGCCACAGGCGCAGGTCCTCACTTAAGTTCACCTGGTCTGCTGTTTGGCGGAGCAAGTCTTGATCGTTTAAAGCCGGATTGAACATGGTCATGTTTTCAGCAACGCTGCCGGGGAAAAGCTGGGGATCTTGGGGGAGATAGCCGATTTGACTCAAGTTGGGCTGAATGACCTGTCCCTTCTGGTCCAGATAGTGAATTTCTCCACTGGCTGCCTTGACTTCACCCAAGAGCAGCTTGAAAAAAGTACTTTTCCCCCGGCCGCTGGCGCCGGTCAGCAGAACTTTTTCTCTGGGCTGCAGCTTGATGGCCGGGTAAGCCAGGCTGAGGCCGTTAAATTCAACGGTTAAAGGACTGCTGGCAAAAGCCGCTGGCGCTTGGCCAGCCTCTTTTTGCTCCGGGACGGCTTCTCTTTGCTTAAGCAGGTCTTGCCGCAGCTGGCGGCTGCCGGAAATTTCGCCTAAGTAGTCAGCCGCGTTTTGCAGATTGCCAAAAAAGTCACTGTTAAAAGAAGCGATGCTGCTGAGCAGGCCAAAAGCCGTCCAGTGCTGGATGACCAGAAAGGCAGTCAAGAGCAGGATCAGGCTGCTGCCAAGAGAATATGCCAGCTGATTGAGGTAATCCAAGCGAGCAGAGACGGCGCTTTTGTGCACATGGGCATCTTCCAGTTCTTTGGCGGCCAGGCCGGCTTTTTCCTTAAACCAGGCCAAGGACAGGCAGCGGTGCAAGTCGCCAAGGCCGAGCAGCCAGTCGCCAAGAACCTTGAGATAGGCCTGGTTCTGCGTGGCCAGTCTTTGATTGGCGTGGTTGAGCTGGCGGTCCAGCAGGCGGGGAAGGTAGATCTGCACCAAGGCAAAGATGAGGCAGGCGATGAAGAGGCTCCAGTGAAAACTGAGCAGGGCACCTCCAGAAGCCAGGACAGTCATGCCGGCCTTAAAGCTGCTGTAAATATTGCGCAGGTAGCTGACAGTCAGCAAGTCCCCTTCCTTAAGCAGCTGGTTTTGCGCCTGGGCTGGATCGTGTGCTTGGCCATCATTGAATATATGCAGGGCAAGCTCTTGCCGGATCTGCTGCAGGTAGCTTTGGATCAGCTGTTCCAGGGCCAGGTTGCCATAGTAGGTGAGCAGGGCACTGAAGACCAGGCAGGCCAGCTGCAAGGCCAGCATTTGGGCAAAAAGCACGGGCTGCCGGTTTCTTAAAGCATTGAATTCCAAAGTTAAGGCGTAAGAAGACCCGACCAGCAGCAAGGAACTTAAAGCCGCGGCCAGGAAGAGCAGGCTGCTTTTGACTGGCTTGCGGAGGTAAAATTCTTTAAAAGTCATACATGCTCCTTCTTAGCTAAGCTGATTTCCCGGTCAAAGCGGGCTTTTTGTTCAGGGCTTAAATTGTGGGCAACGAAAATGACGGTTGCTGGCAATTGGCAAAGGGTCCGCAAAATCTGGTCCTGGCCGGCCCGGTCAACCGCGCTCAGTGACTCATCCAGCAAGAGCAGGGGGAAGCCATGGCTTAAAGTCCGGGCAAGAGCCAGTTTTTGCTTTTGACCGCCGGACAGAGTCAAATCGTCTGGGGTAATCTGGCGCTGGGGATCAAGCTGGAGGCCGACTGTTTTCAGGTAATCTTTTGGATCAGCACTTAGGCCAGGGGTATGCATGGTCACGTTTTCCGCCAAAGTCGCGGGGAACAGGACCAGGTCCTGGGCCTGGTAGCCGATTGAGTAAGGGTCCGGCTGGAAAGCCTGGCCAGCAGCGTCTTTAAAGATGATCTGGCCTTTTTCAGATTGTAAATTGCCTAAAAGCAGTTTTAAAAGGGTGCTTTTACCGCTGCCGCTGTCGCCAGTGATAAGGATTTTTTCACCAGCATGGATGGTCAAATCGGGGTAGGACAAAAGCTGCTTGCCGTGGGTCAGGGAGACTTGTTTGATCTCGATTTGGGCCATCCGGTTGACCGGCTGCAGATTGTCATTTTTCTTGCTTTCCTGCAGGCGGCTAAGCTGCTGGCGCAGGCTTTTGGTCGAATTTAGATAAGAATAGCTGCCGGCGATGTTTTCCAGGACGGAAAAAATACTGCTGGCGAAATAACCAGACGTGATAACGCCACCTAAGGACATTTGTCCTTTAAAGAAGAGGAAGCCGGCGATGAGGGGGATGCTGACTGTGCCTAAGGCGTTGCTAAGGCTTTGCAGGCACTGGATCTGGCTGTTGATCTTGCGGCGGCTGACTTGCCGGTCGGCCAGCTCTTGGCCGGACTTAAGCAGGGCTTTTTGATAAGGGCCTTTGGCAAAGTAGCGGCGAAGTTCTGCCAGGCCGGCAGTCCATTGGGCGATAGTCGCTAAAAAGTGCTGACTAGCGGCAGACAATTGATCGGTGGCCTGGTTGCTGTATTTTTCCAGTAAGCGGGCAATCGCGAAGGAAGTCACGGTAGTTAAGATGCTGGCCAGGAGCAGGAGCCAGTGAAAAGACAAGAGGCTGGCGGCAACCATAAGCGCGTTGATAACGTCACAGATCAAGTAAAAGAGAACAGTCGCGTAATCGTAAGTCAAAGTGTCAAGGTCTTGGCTAAAATGGTTGGTCATCTCGGAGAGGCCGGCAGGCTGTTGGTAATAGTGGTCAGCCATTCTGTCTCTGACGCCGTGCAGATACTGCTGGGTCTGCTTGCTGAAGAGGTAGTTGGCCCCGTTGAAAGCCAAGTTCAGTACTAAGGCCAGGGCAAACTGGATCAGAAGCAGGCTGCAAAAAATGTTAAAACGGCCGGCGGAAACTTGGTTAACCATTGGCGAGAACAGGTAAGTTGAAGCAACGTCGATGACCTGGGTCATGACCAGCAGGGCAAAGATGATGGCGAAACGGCCCCGGTTGCTGTTGATTAGTTTACGTAAAGTCATGGGCAAAAATCGTGTAGTCTTTTTCTCCTAAAGGATCTTGGGCTTGTAAATAGTATCTTTGTTGTGTAACTTTTATAATCTTAATTTAATATAAAAAACTTAAACAACTGGTATAAGCAGAAAACATTAACTATTTTTACTGCTATTGCTTTTTACTTTTTGCTTCTTGCTCATACTTTACTAATTTCTTATAAGCTTTTTTGCTCCCGCGGTTCAAGTCCTTGTTAAATTTATATTCTTGCCAGTCGCTTATGAAGAGCAGGTCCAGGTTATAGCCCTCTGGATAAAGGTCGGCAGCTTTTCGCCGTAATTTCAGCCGTTTAACGGGAACGACAGAAAATTGTTTGTTGACGAAAATTTTTGCCAAGGTTTGGTTTGCTTCTAAGGCGTAGAAAATACCCTCTTTTTCCAGGTTGCCCGCGTAGACCACGTCTCCTTTGCAAAAATGTGTTTTGACTATTTTGCTAGTAGCTTTTTCTTTCAAAACGACTGTACTGCTGCTGAGTGGCAATTGACCGGCTAAAACTTTTTGCGCCTGGTCGATAATTTCTTTTGGCATCCCTACTTTTTGAGCAATCCAAAAAGCCCGGCTCTGCCCGACTTGGTCTAAGAGCAGACGGTAGGTTGGGGTGAGGGTGTCGGCATTGAAGTCCATTGACGCGGTCCGGTAATTAGGATGCTTAACAGCATAATCTTTAATTCTGCTGTAGTGGGTCGTGGCTAAAACTAAGCAGCCCTTAAGTTGCGGGGCTTGCAAGACGGAAATAGCAATAGCAGCTCCTTCATCGGGGTCAGTGCCACTACCCAGTTCATCGAGCAAAACTAGACTGCGGCTTTGAGCGTGAGTGACAATTTTGGCAATATTGGTCATTTCTGCTGAGAAGGTCGACAGGGAAGTTATCTAGGTCCTGTTGGTCACCAATTTGGCTGAAAATCTGCTGGCTGACAGGGATGTCACAGATTTCCCGGCTGGGCAGAAAAAGCCCAATCTCTGTCATCATGATAGCCAGGCCGCAGGTTTTTAAAGTGGCGGTTTTGCCACCGGCATTTGGTCCAGTAATGATCAAGCCACGAACTGGTGGCTTGATTTCCAGGTCAAGTGGAACGGGATTTCTAAGCAGGGGATGCCGCATCCCCCGTAAAAGCAGCTGATTTGTCTGATTTAATCTGGCCCGCTTGCCATTCAGCTCCCGGCTATATCGCGCCCGGGCCATAATTTGATCAATTGCCGCGACGACATCAATGTTACGTAATAGGCCGGGGCTTTCTTCATAGACGGCAGCGGTCAGCTGTCCGAGGATCATCGCTTCAATAGCTTCAATTTGTCCCTTGACAGCAATCTTTTCGCTGCTCAGCTGGTCCAGTTTGCGTGGAAGAATGAAGGCAGTCTGTCCATTGGCTGAATAAGCGATGATTCGTCCAGCGATTGCCTTTTTAAAGCTGCTTTTGACGGGCAGAGTCAAGTGACCATCTTTTTCTACCAGCCGCTGTTCTTGCAAACTTTGGCTGACTTTCTTGCTTTGCAGCAGCTTACCAGCCGTATCTTTTATTTCCTGGCTTAGTTCCTGTTCTTGCCGCCGCAGCCGCCTTAAGTCGCGGTCAGCGCTGTCGGCAACTTGACCATGTTCTATTGACTGATAGATCTGTTCAACCAGTTTTGGAAAAAGCTGGAGTTCTTCACCATAGGAATTAAGGATTGGAACCAGATCTTTTTCTCTGTACAAAAAGCGTTGCAGCAATTCACAGACCCGGAGATAATCAGCAACTTTTTCCAAATCATCTGCTGATAGAAGGAGCCCCTTCTGAGCGCGATTGATCAATGGCAAAAGGGAATCTGAAGAAACAAACGGCAGCTGCAAGCTCCGCTCTAAGAGCCGCGTACCTTCTTCTGTTTCATCGAGCAAGTGGGTAACAGCTGCCGGTTTGGTCAATGGCTGGGCCTGCAGAAGCAAGTTTCTAGCTTCGGGGGACTTGGCGTAAGACGCTACTTGGGTAAGGACTTGTGCAAATTGCAATTGGTTGTTTTCAAAAATTTCAGTCATCTAATTTTCCTTTAATCTGATATGCGTAAAAAAACGGTCTCCAAATAAGTTGGAGACCGGTTGATAATATTCTGCTTTAATTAAGCGAAGTTTTCCTGCAGGTCCTTCACGCCGGCTTCTGACAGGGTGGTGTAGATTGAATACTTAACGCCCTTGAAGGTTTCCAGGCTAAGTTCGACGCTCTTTTCACCATTGCTGCCATCGCTGACTGCCACGCCCAAAAGCTTGTAGGCAGTTGAAGTCGGGTCTGGTGAGAAGTACAGGCGCTTCTTGCCGTCAGTTACTGACTTTTCAGTGTAGAAGTAAACCTTGGCCGGGAAGGACTTGACTGCCAGGTTGAGGTCGCTGGAGTCAACCTTGTTCAAGGTCAGCAATTCGTAGTGCTGAGCCAGATGACCGCCAACGCTTTGGAAGATAGCCAGGAACTTTTCGGTTGCTTCAGGGTCAACTTCACCAAAGTCGATGTTGTCGTTTTCTTGTACCAATGACAAGATCAACAAGTGCTTAGTATCCTTGTCGTAGTATACGCTGAAGTTTTCAACGCCACCTGGCCAAGGAGCCTTGCCCTTTTCATATTGGGTAAAGTAGACGCTTGAGTCGTTCTTGACGACCAGCTTGCTTGCGCCATCAACGGTCTCCAGAATGATGATCGGCATTGGCGGAACATAGCTGTCCTTTTGACGCTGTGCCCACAGCTGGGATTGCTTCTTCTTTTCATTGCGGAAGTTGATGTAAGTACCGACGCAGATGATGATGACCAATAATAAAAGTATCCAACCCATAGTTGTCTAAACCTCCAGTATAGGCATTTCTTCCGAGCTGAAAAAATGCTTGATTAATGCTAAGTTAAAATTTATCTGGCTCAAAGCTAAGTGCTAAGCCCGTTTATATCTTTTAATTTTACTACAAAATAGCCGTTTGGCAAACCTTGTATAAACCTTGTATAGATTAAGCGGAGACGGGGGTTTTAAGAAAAAAGCAGCTGATCATTATTAGAAATAAATTAAGTTAGCGCTTGGCATTCTTTTCAATACTTTCCCTTAAGTAGCCCAGGTACTTTTGCCCAATGGAAGAAAGCTGGTGCAGGCGGTTGGTCAGGTAGCCGATTTCAATGTATTCGTCGCTGATCAAAGGCCGGGCGATGATGTCGTCCCCGTTTAAGTCAGCGTTGATGATCCCTGAAGAGATGGTATAGCCTTTTAAGCCGATTGCTAGGTTAAACAGGGTAGCCCGGTCACTGACAATAATGGATTTTGGGGAATGCTGGTCAGCCAGGGTTTCTTCGCAGTAATAGAAGGAATTGTGTTGGCCCTGGTCGTAGCTGAGCTTGGGGTAGGGAAAGAGGTCTGCTAAGGAGATAGATTTTTTGCCGGCTAGGGGATGGTTTCTGTATAAAAAGACGTGGGGGTGGGCCTTAAATAGGGGCGTAAAGCTGAGTTCCTTTTCCTGGAAGCTGTTTTCCATGACCTGGCGGTTGTAGCGGCTGAGGTAGACAATGCCGATCTCGCTGTGGAGGTTGGCCACGTCTTCGATGACTTCATAGGTCCGCATCTCTTTGAGGCTGGCTTGGTAGTCGCTCTGGCCGATTTCTTTTAACAGCTGGACGAAGGCGTCAACGGCGAAAGCATAGTGCTGGGCCGCCACGGAAAAAATCTTCGGCGCGCTGGACTGGTCGCCATAGCGGCGCTCAAGCAGCTGGACCTGGTCCAGGATCTGCTGGGCGTATTGCATGAACTCCCGGCCATCTTCGGTCAAGCTAACCCCTTTTTTGCCTCGGATCAGGATGGTGATCCCCATTTCTTTTTCCAGCTGCTTGATGGCACTGGACAGGGTGGGCTGGGCGATGAAAAGTTCTTTGGCTGCCTCGGTCATGTTGCCGAGGGCGACGACTTTTTGCAGATAGAGCAGTTGTTGGATGCGCATGGTTGAACCGCCATAGTTTAAATCTATCGATACACGATAAAAATAGCTATTTTCAATCATAACGAGATCTGGCTAAACAAGCATTAAGAGCAAATTAAAAATGCAATTTAAAAACTTCGGAGGTAATTCAGATGCCATTTCCACGTTATGATATTGTCGGCAGTTTCTTGCGTCCAGCAGCATTAAAGGAAGCCCGGGAAAAATTTGCCCGCGGTGAAATCAGCCAGGCCGAGCTTACGGCCGTAGAAGATCAGGAAATCAAGAACCTGGTGCAAAAAGAAGTCGCTGCCGGCTTAAAGGTAGTTTCTGATGGGGAATTCCGCCGCAGCTATTGGCACTTGGATACTTTCTGGGGCTTTGGCTGGGTAGAACATGTACGGGCTGATCATGGCTACTTCTTCCATGATGAAGAAACCCGCCCAGACGCGGCCAAGTTGGTTGGCAAATTGACTTATGAAGCCGGCCACCCGGACGTGGCAGCTTTCGACTTCCTCAAGCCTTTGGCGGATTCTGCTGGCGTTGAAGCCCGGCAGAGTATCCCTGCCCCGGCTCAGCTCTACTGTGAATTGATTTGCCGCAACGATGAATTGATCGCGGCTACTGATGCCGTTTACCCAGACCGGGCAGAACTGGCCAAGGACGTTTCCAAGGTCTACCGGGAGTTGATTTTGGACTTGTACAAGCACGGTGCCCGCGACATCAAGCTGGACGACTGTACTTGGGGCGTTTTGGTCAACGACAGCTTCTGGCATGCTTTTGACGAAGGCCACCTCAAGCGTGAAGAAATCCTGCAGCTTTACAAGGAAATCAATGAAAATGCTTTGGTTGACCTGCCAGAAGACTTGCGGATCACGACCCACATCTGCCGGGGGAACTACGACTCAACTTGGGCTTCAGAAGGCGGCTACGGCCCAGCTGCTCCTTACGTCTGCAAGGAAAAAGGGGTGGAGGCCTTCTACCTGGAATTTGACGACGACCGGTCAGGCGACTTCGCTCCTTTAGCTGAAGTGCCAGCTGACAAGGTAGTTGTTTTGGGCCTGGTAACCAGCAAGAAGCCGGAATTGGAAGACCCGGAAGCTTTGAAGGCCTGGATCAAGGAAGCTGGCCAGTACCACCCATTGGCTACTACCGCTCTCAGCATTCAGTGCGGCTTTGCCTCAACTGAAGAAGGCAACCACTTGACTGACGAAGAACAATGGGTTAAGATCATGCTGGTCATCGACACGGCTAAGGAAGTTTGGCCAGACGCTGAATAATCAATAGGGATGCCTCCTCGCGCGGGGCTTTTTTTGATATTATAAACAAAGTTATTTGTCCAAATATATGAACGTCTTCTAACAGACATCGTAATACGTTTATGAGCTTGGATATAGATATGATGAAAAGCTTGCTGTGTATATGATATATAAATCTTTTAAAAAAGTAATGACATACATGGACTGTGATGATATTATAACATATGAACAAAAATATATACTTATGGAGGACGTAAAAATGAAAAGATGATAAAAAATGTTGTTTGCTGTTAGTATGTGTTTAATATTCCCTCTTATTGCGGGATCAGTAGAGGCAAGTACTAATAAATCACTATCAGCCAACCGCTTGAATAGTATTAACACAGAATATAAAATTGACTCTACCAAATGGTCTGATGAAAAAATTGATCAGCTTGTAAAAGCATTAAGTGAGCTACATCCAGAGCTATCGAATGAATACTTAAGAGAGTTAGTCGAAAGTCAACTGAATGACGAAGCTATTCCAAACTTGACAAATCGGGATATATCGCCGTCGTTAGCTCTTAGAGCAAATTTAGCTCGCTCAACCAAGTCCTCATGGAAAGGAATCACTGTTGCCCAAATGGGTGCGGTTATTGATACAATAATTGGCACTGTTATAGGTGGTGGACTTAGTTCAATTACTAAGGCAGGACTTAAAGCTGCTGTTAAAAAGATGGGAAGAAAAAAGCTATCTCGATTGGTCAGACAACATTTGCTCAGGAAATTTAGTGCGGCGTATATAATTAGTTCAAAGGTAATAGAAACAGCACTAAACTATACTTCACCAGGCACATGGGTTGCAAAATATTGGGATAAGCATGATGCATACCCGAACAATGGGAGAATTAACTTTTAGTGAAAATGAAAAATAAATCTGTTACGATTCTGTTGAACATGTTGCTAATCGTCGCTGCCTGATTGCTGATTGACAAATTAGCCCACAGACAGAGCACTTTTTGGGGGATTCTTTCTTTCCTGGCCTTCTACGGGGCCTATGAGTTCCAAATGAGCGAATCCGTGCCAAAGAAGGTCCACACAATTGTTAACGTGGTCTTGGGAGTGGCCGCTTTAGCTATCGTCTGCGTGCTCATATATATCAGCTTTCATAACTAAACAAACAAGATTAGATGCCTCCTCGCGCGGGGCAGCTTTTTGATATTTGGAAAGAATGTCACAAGTCTGATAATTTTCTCAAAAAAGTCAGCCGAAGCGCTTTCGCAAAGCTGAATTTTTCTTTATAATAGGACTGGCAAAAAGAGAACATTGAAGAAATGAGGCAACTACTTTGAAGAAATATGCATTTGGTGTTGACATCGGTGGTACCACTGTAAAGATTGGTTTGTTTGAAACCAACGGTGAATTGTCCCAAAAGTGGGAAATCCCAACTAGAAAAGAAGGCAACGGGTCCAAGATCCTGCCTGATATCGCTGCTTCTCTGAACGACAAGCTGAAGGAACTGGACATTCCTAAGGAAGAAGTAGCCGGGGTCGGCATCGACGTGCCAGGTCCAATCCTGGACGACGAAATCGTTAACCGCTGCGTCAACCTGGGTTGGGGCGTCTTCAACGTGGCTGAAAAGGTCCGCAAGCTGACTGGCCTGGACAAAGTCAAGGTAGCCAACGACGCCAACGCTGCTGCTTTGGGTGAAATGTGGCAAGGTGGTGGTGAAAGCCACCAAAACGTTGTCATGGTTACCCTAGGTACCGGTGTCGGCGGCGGGATCATCTCTGAAGGCAAGATCGTCGCTGGTGCCTTTGGGGCTTCCGGGGAAATCGGCCACATGCTGGTCAACAAGGATGAAACCCAGCTCTGCGGCTGCGGCAAGAAGAGCCACCTGGAACAATACGCTTCCGCTACTGGCATTGCCCGCAAGGCCAAGGAACTTCTGGCTGAAAGCAGCGAAGAATCAAGCCTGCGCGGGGTAGATCAGCTTGACGCCAAGGCAGTCTTTGACGCGGCTAAGGAAGGCGACAAGCTGGCTCTGGAAATCGTCGACTTTGTCGGCGAAACTTTGGGCACTGCCCTGGCTTCCATCTCCTGCGTCTTTGACCCAGAAGTCTACGTTATCGGCGGCGGGGTCTCCAAGGCTGGCCAAATCTTGCTCGACACTGTGCAAAAGCACTTCGTTGACGCGGCCTTCCACGCTTCTGGAGGTACTGAATTCGCCCTGGCTCAACTGGGCAACGATGCCGGTATGTACGGTGCCGTTAAGATGGTTCTGTAATTTTGAATGTAAAAAAGCACCAGGCTTTTAAAGTCTGGTGCTTTTTTTGTTTATCCTAAAGAGTCCAGGGTTGCCTTTATCGTCGCGGCTGAGGCCCGCATCTTGGCCAATTCGCTGTCATTTAACGGCAATTCCAGTACGTGGCTGATCCCTTGTCCGTTGATGATGGCCAGGGTGCCCAGGTAGATCTCATCCTTGATCCCGTATTCCCCGTGCAATGGTGCGGAAAGAGGCAGGGCCAGGTCGTTGTTTTCCAAAATGGCCGTCACGATCTTGGCCAGCATCATGGCCACGCCATAGTAGGTTGCGCCCTTTTTGACGATAATCTCGCTGCCCTTTTCCCGGACGTGGGCTTCAATCTCATCTAAGGCTGCTTCTGTCATGCCCGGATAGTCAAGCAAGGGCTTGCCGTTGACCACGGCACTTGAGAAGTTCTCAAAGCTGCTGTCGCCATGTTCACCCAGAACCCAGGCGTTGACTGATTCAATTGGCACTTGCAGCCGCTTGGCCAGTTCTACCCGCAAACTAGCTGAGTCCAGGGAAGTCCCGGTCCCGATGACCCGCTTCTTTGGGAAGCCGGACAGCTTCTGGGTCAAAGTGGTCAAGATGTCAACCGGGTTGGCGGAAACGACGAAGATGCCGCTGAAGCCGGAAGCTACGACTGGATCAACGATGCTCCGCAAGATGGCTTCATTCTTCTTGATCAGGTCAAGCCGGCTTTCACCTGGCTTGCGGGGCACGCCGGCCGTGATAACTACCACGTCGGCGTCAGCCGCGTCGCTGTAGTCACCAGCTCTCAGCTTGGTCTGGCCCGTAAAGTAGGTCATGTCTTCCAGGTCCAGGCAGTCGCCCGCGGCCCGGTCTTTATTCAAGTCGCAGATGACCAGTTCATCCACCCGCGTTGTTTGCAATAAATCGTTGGCAAAGTTGGAACCGACAGCACCGTCGCCAACCAGCAGGACTTTTCTACTCATTATTTAATCCTCCTTCAAGGAAATCAGCTAACCATATTATAACTGAATTAGCTGAAAAATTTCCCGGAAAATAAAAAACGCGGCCCAGAGGACTGCGTTTCTTAGAAATGAGATGTGATGTGATGAAACTTAAGCTTGCTACGACAAAGTAGTTTGCTTGGCGGCGCCTGTTAGTGATAGGAGTAGAGGCGCCGCATGTGATGAGTAAGGGAAAAATAAGTTTGTCTGTAAGAGACAGGAACCGAAAAATGTTGAAATACATATCTGAGTTCAGAGCCGGCCCTTGCCTATAAAAAGCAAGTAACATAATAGAAAAGCAAAAGCATGGCAACTGGGCTGATCATGAACCTGTTAAGAGCTACACCAACCGGTGGCATGCTCGGATCGCCACCTGTCAGTAGTACCGAAAATTATAACGACTGAAGGAGAAAAAATGAGAAAAATAACTAGCCGCATAACTTTCGAAAAATATAGTACTACGGTTTATGCTAATAATCAAAAAAATAGCTCACTTTTTTGATTATTAAAAAAGTGAGCTGTTTGTAAGCGGTTGGAGGAAAATGAAAACTGCAAAAAATTAAGCTTGTGACTTGGTCAACTTTCAGAAAAAATAGCTAGCCAAAGAAAAACGGCTCCAGCAGAGCTGAAGCCGTGACATGGTAAATATTTAAATCTTGTTTTTTAGTTTGCTTGTTTTCTTGCTTTTGTCTTTCCAGCCTTAAGCTGCCCGCTTCTTGGTCTGGATTTCCCTAAGGCCTGGCAGGCTGATCATGACCAGGAAGCTGATGATGTAGAGGGCGGACAAGAAGCCCATAACCACGTACAGGTTGTAGTGGTCCATCAAGGCGCCGATGATGACGGAAGAGAAGCCCCCGATGGCCCGGCCGGTGTTCATGATCAAGTTGTTAGCCGTGGACCGGATTTCAGTCGGGTAGAGCTGGCTGATTACCGCCCCGTAGCCGCCAAACATCCCGTTGGAGAAGAAGCCGGTCAAGGCTCCGGCCAAAAGCATGGTCCAGTAGCTGGTCACGTTGACGATGGCAAAGACCACGACCGCGCTGCCCAAAAGGAAGATGCCGAAGGCCCAGCGGGGACAGATCTTGTCCATGATCGTCCCGAAGACCATTATCCCAATGCTCATCCCGATGATAGTAGCGATCATCCAGTAAGAAGAGCCGGAAACTGACAGGCCCTGCTTCTTCTGCACGATTGACGGCAGCCAGTTCATCAAGCCAAAGTAGCCGGCAATCTGCACGATCGTCATCAGCATCAAGCCCAGGGTTTGCAAAGCCAGGCGGGGCGTCTCAAACAAGCGGCCGAAGGAGATCTTTTCACCCGTTTCTTCCGCCTTCTTGTGAGCGGCCAAAAATTCGTCGCTTTCCTTGACGTGGCGGCGGACAAAGTAGGTCAAGACAACCGGCACTACCCCAAAGAGGAAGAGGGTGTTCCAGCCGTAAGTCGGAATGATCCAGGCGGCCAGAAGAGAGGCCACGATAGAGCCGATTTGGCCACCCACGGCCGCCACCGAGCTGGCCCGGCCGATTTGATTAGCCTGGAAGTTTTCCGCGATCAAGGCAATCCCGACCCCGTATTCACCGCCGGCCCCGATCCCGGCTAAGAAGCGGAGAGCGTAAAGGGCGGTGATGTTGTGGGCAAAGTAGGTTAAGCCAGTCGCGATGGCAAAAAGAAAGATCGTATAGCTGAAAGTCTTGACCCGGCCGATACGATCTCCTAGCAGCCCAAAGAGCGCGCCACCGAAGAACATTCCGAGGTTGGTAAAGGTTCCGATCCAGCCGCCGGCCGTGGAGCTGACGTGCATCTGCGCGATGATTTCCGACAGGGAGAAAGACAGGAACATGACGTCCATGTTTTCCAGCAGGAAGCCGGAAGACATGGAGGCTAAAACCCACTTTTGGTTAGTGGACATTGGGCTGGTATTATCCATTATTAACTTGTACCTCCAAAATTAATGCTCACGGACATTACTTATTTTGTATCGGTAACAATTATTTACGTTTTTCTTAAGATTGTCAAGGGCTATTGCAAAACAATCGTTATTTAATTACTCAGCCCGGTCGCTGATGGCCTTCGGCAGGGCAATATTGTGGTGGAGATTATGCCAAAGATGCTGGTCAGCCAGGGCAATCATCGGCCGTTGACCAGGAGGCAAAGGAGGGTGCCAATATTGACGGCATAGACTTTGCCCGTTGCCAGCCAGCAGATGCCGGTAAGCAAAAGCGGAACGCTGAAGTTGATCAGCTGGGCCCGGACCACCTTGTTCTTGCAGTACATGAAGCGGAGGATGTTGGTCGTGTCGTCATTCGGGTGCATGAGCAAATTTGCCCTTTGGCAAAAGGAAATGGAGCAGCCCAGGGTCATGATGCCCAAAAGCCCGGCTACCAGCCGCCAAGGCAAAGGCAGGTCCGGCAGGCCAAGGGCGGAAAAGAGGCTGGTGAACAAGTTGATGAAGTAGCTGAAGCAGGCGATAAAGACGACTTCGTCCAGGAAACGGGGCAGGTCAAAGCGCCGCATAAGCAGCTGGTTGATGACGGCTACCAAAAAGCCGGTCAAAAACATGGCCAGGGCAATGCTGGTATGGAAAATATGGGCCAGGTTGACCTCCGACGCCCCCCAGGGAGCCGTGCCGATATTGCTGGAAATGGTGATCCCGTTGCCAAAAGCATTCAAGACCAGGCCAGAGAATTACTGATATCCAAGAGATGCCTTGCATAAAAACTTGTCTGCTGTTTAAGTATCACAATTTTACTCTATTGATCACCAACATTCCAATAGATTTTCTCTAATCATAATTTGCCGGCGATAAACTGCTTTTTAATCAGACAAATCTATTAATAAAAACGAGCATTCTATTATAAAATGTAAGCGATTTACTGCATACTGAAATTAAGTGAGAAAAATAACAAAAGGAGTGAAAGCAATGTCGGTCAAGAAGCACCGGTATGCCGCTACGGCCAGCACGGTCTACTTTTCATACTTTATGATGGGGATCGGGATGTCTCTTTTGGCCCAGTTCAAGCCCCAGTTTGCCAGCCTCTGGCATTCCTCAATTTCCGAAGTCTTGAGCGTGGTCAGCGCGGTTGGGATCGGGGGGATCGTCTCCATCTTGATCACTGGCCCTATTTCAGACCACTTTGGCCGCCGGGCCTCAGCCGTCATCGGCCACTTATTGTGGGCTATCTACTATATCGGCCTGCTTTACGCCCCGAATTTTGCGGTTGCCTACATTATCGGGATCCTGGGCGGGATCGCCAATTCCTTCTTGAACGCGTCCAACTTCCCGGCCTTGATGGAAATCTTTTCAGAAAGTGCCTCAGTAGCAGGCCTCATGTCTAAGTTTGCCATCAATATCGGCCAATTCTGCCTGCCTTTAGCTATTTTGCTGGGGACGGCCCTGGATTCAGGCTACCGGACCGTCTTCATGCTGGCCGAAATTTTGTACATCGTCATGGCCTTGATTCTGGCCTTTTCACCTTACCCAGACCAGGTCACTGGCCCGAAAAAGCAGGAAAAAGCCAAGCACGACTTTAAGCCAGTTGCCAACTTCTACGCTGCCGGTGAACTGGTTGGCGGGGCCAACGGCAAGGACTCAATGCCGTCAATGATGAACTCCTGGTCCTACGCTTCCGGTTTCGTGGCTGGTACGGCAGCTGCTGACAATGCCAACAACTACGCCGTTGACGTTATTACCAGCGCCAGTCATGCTCCGGCTCCTAAGCCAGAAGCAACTTCCGGCGCCATCCACTATCATTGCTAACAATTCACAAATTTTCTCCCGGGCACAAAATAAGCTATGTGAAAATATACACTTTTCCTTTTTTGGCCGCGGGAACCTTCTTCCTTACAAAAACTTGCTAAAAAAGCCCAAGCTGATGCTTGGGCTTTTTCTTCTTAAACTAGCTTATGTTCGTTATTGCAATGCTTTCGGCAGTATGATTTGATAAATCGTTCGAATCTGGTTACGGCCGGGGTTAGGAAGTGGTCGGACTTTTTCACGACAAAAATCGGGTGTACGCCGAGATTTTCATCAATGTGCAAGAGCTTGACCGTCCGCGGATCCAGCTGGGGCAGGTGGGGCACGATAGCTACCCCGTAGCCCCAGTGAACGAAGCCAATGATGGTATGGTCCTCCATGGACTCCATGATGATCTTCGGCTTGACGACGGCTTCAGCGAACATCTTGTCCAGGAGGGGGCGCAGGCGGCTGCTTTTGCTATAGTAGATCATCGGGTACTTGGCCAAATCAGCCAGGGAGACAGAGTCCTTTTGGGCTAAAGGATTGGAAAAGGGAACGACTGCCAGCATTTCCTGGTCAACCAGGTGGGAGATGTCGACCTTGTCTTCCAGGCCAGGCAGGTCAGGAGCTGGGGAGACGACTAAATCCAGGTTGTCATTGACCAGCTGGTCCACCAAATCGTCAGTGGTTCCCTGCACGAAGGAGAAAGTGATGTCTTTGGTGTCTTTTTCCTGCTTGAACTTGTAGATCAGCTGGGGAATCAGGTCCTGGCCCATGGTGAAGCCGACCCTGATATGGCCCCGGTTGACGTCCAGCAATTCAGCAATGTACTCGCCGCCCCGGTCCAGGTCGCTCAAGCCGCTCTTGACGTATTCCAGGTAGATCTTGCCATAGTTGGTCAAGCGGATGTTCCGGCCCTCTTTTTCAAACAGGGGCACGCCGAGCTCTTCCTCAATGCTGCTGATGGCGTAGGAGAGGGAAGGCTGGGAGATGCCCAGCTTTTCGGCCGTCTTGGCCATGTGTTCCGTTTTCGCCAGTTCGACGAAGAAACGCAAATGTCGAATGTTCATATTTGCCTCCAAATCATGCACAACAGGTTTCCATACCTACATTGTACCGTTAATCTAGAATTAATAAAATGCTTTTATCGATAATTTTACTTTGCTCTATTCATCACGAAGGTTGAAAACGATAACATAATAGTGAATTGAGAAAAATGTAACTTGTTGTAAAAGCTTAAAGGAGATTCCAGAAATGGCAGACGAAAGAAACAACGAGATCGAAGAAACGAAGATTCAAGGAGTTAACGGGCCAATCACCGGCTGGCTTGACGGGCACACGATTTTGGTCGGTTTGATGGCTTACCCAATCCGCCACACCATGTCACCAACCATGCACAACAACGCTTTTGCCAAGTTGGGCTTGAACGGGGCTTACCTTTGCGTTGAAATCGACAACGAAAAGCTTCCAGGCGCTATCGACGCTATCCGGCCCCTGGACATGCGGGGCTCAAATGTTTCAATGCCTAACAAGAAGAAGGTCATCCCTTACCTTGACAAGCTGGACAAGACTTCACAAATGTGTGACGCGGTAAACACTATCGTCAACGAACACGGCATTTTGTCCGGCTACACCACTGACGGCATGGGCTGGGTGCGGGCCTTGAAGAAAGACGGCCAAGACGTTAAGGGCAAGATCATTACTTTGGCCGGTGCCGGCGGGGCTGGTTTAGCCGCTGCTACCCGGTCTCTGCAGCATGATAAGAAAGTTGTTATTCTGGAAAAGTTCCCGCAACTGGGTGGTAACACTGCCCGGGCCTGCGGTCCAATGAACGCGGCTGAACCAGACTGGCAAAAGGGCTTCAAGGCCCTGCCAGGTGAAAAGGGAACCTTGCAGGAACTGGCTGAAACGCCAACCAGCGAAATCGACCCGGAATACGTGGCAGACTTCGAAAAGCTGCGTGACCAGATCAAGGCCTACCTTGACTTAGGTGAAGACTACCTCTTCGACTCAGTCCTGCTGCACGAAATTCAAACCTACCTCGGCGGCAAGCGGGTGGACCTCAAGGGCAACGAAATCCATGGCAAGTATGAACTGGTAACGACCTTGGTTAACAACGTTTTGGACTCAGTCAACTGGCTGACCGACTTGGGCGTGAAGTTTGACCGCAGCGACGTGACCATGCCAGTTGGTGCCTTATGGCGCAGAGGCCACAAGCCGGTTGAACCAATGGGCTTTGCCTTCATCCACGTTTTGGGTGACTGGGTTAAGGAACATGGGGCAACCGTTTTGACTGAAACCCGGGCCAAGCACTTGATCATTGAAGGCGGCAAGGTGACCGGTGTGATCGCGGAAAAGACTGACGACTCAAAGGTAACTGTCCATGCCAAGAGCGTGATTTTGATGGCCGGCGGTTTCGGGGCCAACACCAAGATGGTGCAAAAGTACAACACTTACTGGAGCGAAATTGCTGACGACATCGCCACGACCAACTCACCAGCCATTACCGGTGACGGGATTGTCTTGGGCCAGGGAGCCGGCGCCGCTTTGACGGGGATGGGCTTCATCCAACTCATGCCAGTTTCTGACCCGGTAACCGGGGAACTTTTCACCGGCTTGCAAACTCCGCCTGAAAACTTCATCATGGTCAACCAAAAGGGTGAACGTTTCGTCAACGAATTTGCTGAACGTGACACTCTGGCAAAGGCAGCGATCGACAACGGCGGCCTCTTCTACCTGATCGCCGACGACAAGATCAAGGAAACTGCCTACAACACCACGCAAGAATCAATTGATGCCCAAGTGGAAGCCGGCACCTTGTTCAGAGCTGACACTTTGGAAGAACTGGCTGAAAAGGTGGGCATGGACCCGGCAGTTTTGACCGACACCATCAAAGAAGTACAACTCTTACGTTGACGCCGGCCACGACCCGGAATTCGGCAAGAGCGCCTTCCACTTGAAGTGTGAAGTAGCACCATTCTACGCAACTCCGCGTAAGCCAGCCATCCACCACACCATGGGTGGTCTGGTTATCGACACTAAGGGCCACGTTTTGGACGAAGCAGGCTACGTGATCGCCGGCCTGTACTCAGCTGGTGAAAAACGCGGGCGGCCTGCACGCCGGCAACCGTTTGGGCGGGAACTCCTTGGCTGACATCTTCACCTTCGGCCGTTTTGAACACGCTCAACACCTTTATCTGTACCGGCGCAAGCATCTTCTACAACGAATCCATCCCTAAGGCAGCGCGGATGACCGCCTACCTTAACGGCTGCAAGGAAGCCTGGATCCCATGCTTAAATACGTCAAGTAATTTTTTATAAAAAAGATCATGAAGGAGAATTTTACCTTCATGATCTTTTTGCTTTGAAAAATTATTCTCCCCGCCAGCCGGCAATGTCCCAGCTGGTGAAGTCGTAGTCCAGTTTCTTCTTGTAGACTCTCTCATAAGCCTGGACCTTCAGCTTGTAGTCTTCTTCCATCAAGCGGCTGGCGTTCTCGCTGGCCGTCTTGGTCGGGTCCGGGTAGAGGACGTCCAGAACATGTACGGTGTAGCGGGTCTGGTAGAAGTGCTCGTTCTGCTTTTCCAGTTTTGGCAGGTCCTGGATTTCCACAAAAGTCGAAATCACCGGGACGTTGCACTTGGCCGCGAAGTAGTAGGCCCCGCGTTGCGGCTTGCGGGGCTTGCGGTAGTTCCACCACATTTCCTGTTCAGGGAAGATCAAGACCCAGTGGTTTTGGTTAAAGGCCTGGTTCAAGTGCTGGATGAATTCCCGGCCCAGGTAGTTGGGACTCTGGGTCAGAGGAATTGACCCCATATTGTTCATGATGTAGGAGAAAAAGCCCGGCAGCATCAAGTTGGTATCTTCAATCACTATGTCCATCCGCCGGTGGGCCTTCTGGGCCAGGCGGTTGACGGCCAGGGCATCAACTTGGTTAAAGTGGTTGGCCGTCACGATTGCCCCGCCCTTTGGCAGGCCTTTTAGCTTGCCCAGGCCATTCACCTTGGTTGACCCGGAGATGGTCTTGGTCAACAGCTGTAAAAGCTCGTGGCCCACGGTCCCGTCAAATTTCGTCTTGGCCTGGTCCTGCTTTTGCCAAAAGCCTTCCACCAGGGCCAGCTTTTCCTCGCTGGACATTACCGGGTCGCCGATTTCCGTTTTGGCGGTAAAGTTTCTTTCATTCGCGGCCTGTTTGATATTGTGGATCACGTCCAGGCGCTTATCTCCGATAATCATATCTTTCTCCTTGCCCTATAGGGTAACTTTTATTTCCCGTTTCCCGTGGAACCAGTTTTGCGGATCATGCAAATTTTTGCAGACCATGTCGACCATGCTCTGCATCTTGGCCAGTTCTTCCTTCCGGTCCTGGTCGCTGAAAGCAGCCAGCTGTTTTTGCAGGTCTTTATAAAAAGGCGTCTCTTTAGCGACCTGCCAGAAGTAGCTGCCATACTTGACTTCCTCGAAGTGCCAAGGCTTGTAGGAGAGGTTGTAGTGGATCAAGTACGGACCGGTCATTTCCGGGTCAAAGTCGTTAGGCATGGCGTCCCAGCGGGGGTCCAGCAATTTGATCCGGCCAGAGCAGATCTCGTTTAAGTAGTCCTGGTCCGGCGCGATTGAGTTGAACTGGTAGGTCGAAAGGAGCTGCAGGAACTTGTCCACGAAGCCTTCATCCCGCATGGCCAGGCAGTTCATGACCAAAACGCCGGAGTTAACGTATTTGTCCGGATCGATCCCCAGGCAGTCTCGGATGTAGGTCTGCAAGGGCTCGATATAGTGGACCGACTGGTCATGGCAGGCAGCGACCAGATTGTTTCCCAGTTCCGTCTGGTAGAGGCCGGCGATGTCGGCGTTCACGACCGTGTCAGCGTCGATATAAACAGCCTTGTCGTATTCCGGGAAGAGTTCCGTGATAAAGAGACGGTAGAAGATCGACAGGGTGAAGAAGTCGGCCCGGAGATAGTTGCCCTTCTTATTTTGGATTTGGGCAAAAGCTGGTCATCCAGCTGGCGGAATTCGATCTTAACCTTGTCTTTTTCATAAGCGGCCAGGGCCTGCTGGTTGGCCGGGCTCAGCCCCTGGTGCAGGATGATGATCGTATAGTCCTTTTCCGGACTGGCATGCTTGACCAGGGAGCTCACGAAAACAGCCAGGTAAGGGGTGAAGTCGTCACTGATGGTGTAAAAATTGGAATCGTCATCTTCCTATCCTCCACAAAGCAGTTTTGTATTTGCCTTACAGCTGGTCTTTCAGTTGCAGGTACTCATTAAGCAAGTCATCGTATTCGTGCAGGTTGAGCACGCTGTGGACCCGTTTCACGTCCCAAGGCTTGACCGTCTGGGTGCGGAAATAAGGGAAGAAGCGGAAGCTGGTGGTGAAGTGCTGGATGACCGTATCGTCCTGGAGGGCGTATTGCTCATTGTACTTACGCGGGGCAATCCGCTTTTCTTTGGCTAATTTATTGATGGCCGTCTGGTCAGGCAGGAACATCTTCTTGACCTGCATCAAGTGGCGGACCCGTTTAAAGAGGCCAGTCCGCTTGATTTCCGGCATGTTCAAAAGGAGAACCCCGGAATTCAAGTAGTCAAAAATCTTCTTTTGATTGTGGAAGAAGAAGCGGCCAAAGTAGTCCAGGACCCCGACCAGTTCCGTCCCGGTCAAGTCCTGTGTGTAAAACTGGTCAACCGGCCGGCGGATGATCACGTCATCGTCCAGGTAGAGGATGCGGTCGGGAATTTGCGGCAGTTCGTCGGCAAAAAGCCGGAGCATGGCGTAGGGGGTGAAGCGGGTGCCCATGTTGGCCGTCGGCGGTTCCTTGATGAAGTTTTCGGTGCAGTCGATCAGCTCCAGGCTGCTGTTGGGGTTGTCAGCCACGATGAGCGAGCGGATGAAGTCGGCCGCGTGCTGGCTGAAGGGTTTGAAGGACCTGGATTTGCTCTTGGCCCTCATGGTCAGGATGTAGACGTGAACCTCTTCGCCGCGTTCGGCTTTGAGCAGGGATAAGACGGCAATCAGCACGCCTCTTTCAGCGTTGTGGTCACCGCAAAAAAGAAAGTTCATGGTTTTGCCTCCCTAGTAGAAAAAGTCCTAGTTCTTACTGTCAATTTTAACATACGAGCAATACTCGCAAGTGCTCAGTTTTGCCCGCTCCTGCATGCTTTTGGCGATTTCACCGTGCAGCTTTTCCTGAGCCGCCTTCTTGCCCAGCTTCTCGTCCGGGTAAAAGGGGCCATCGATGTAGACCGTTATTTTCGGCCGCTTGCGCCAGCGGCAGGGCTGGTAGGTGGTCGTCATGGCAAAAGCCGGGGCTTTCAGGCTGACCGGGAAGTTGAAGCTGGTCGCCGGGAAAGGGCGGATCTTGGTGTAGTAGGGCCAAAGATGGGCTTCCGGGTAGATGACGATGGCCGCCTGCTTTTCTTCATAGGCGTATTTAACTTCCTTGAGTAGGCGGATGGACTGCTTGATGTTTTTCCCAACCGGCAGGCCAGCTGCCGGAATCACGTACTTGCCTAAAAAAGGAATCCCCCAGTTGGCCTGGGCGGCCAGGGCATAGTAGTGGTAGGGGTTGACGATGGTCATGGGGTTGAAGGGGTCACCCAGCATCTGGGTGTGGTTGCCATAGACAAAATAGCCCTGCTTTTTAAAAGGGCGCAGCTTTTCCTTGCCTTTGACTTTAACTAGTAAGAAGAGGCGGGAGTAGAGCCAGGCAAAGGCGCAGGCCAGGCTGCGGACCAGGCCGTTCCAGAATTGCCAAGCCGCCCCTTCCCGGAAGAACTGGTAGTCATCTGGGAGCTGGAAGTCCTGCTGGGCGGAACTGACCAGGTCCTCGCTTTCGCTGTGGTAGTAGTAAGTCTTTTTGCTCATCAAAAGTCCCCGCTTGCTGTAAAATAAAAAAGCACTGCGAGCGCAGTGCTTAGAGATGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCGTGTCAACCAATACTTTTATTATGCCATAAATTTCAGTAAAAGCAATCTCCTTTTTTACATTAATTGTAATTTTTTTAATTTCGTGGGCAAATCAAGTATAATAGTCACAGTGAAGGAGGTTCATAATGCCTAAAAAAATTCTCGTCGTTGACGACGAAAAGCCGATTTCCGATATCATCAAGTTCAACTTGATCAAAGAGGGTTTTGATGTAGAGACCGCTTATGACGGCGAGGAAGCTGTCGAGAAGGTTGAAGAATACAACCCTGACTTATTGATTTTAGACTTAATGCTTCCGAAGAAAGACGGGCTGGAAGTAGCCCGGGAAGTCCGCCAGACCCATGACATGCCGATCATCATGGTTACTGCCAAGGGCGGTGAGATCGACAAGGTCCTCGGCCTGGAAATGGGGGCGGACGACTACGTAACCAAGCCTTTCTCCAACCGTGAGCTGGTGGCCCGGGTCAAGGCCAATTTGCGCCGCCGGGACATCGTCAAGAAGGCAGTGGAAGTCAACCAACAGAAGGAAAAAGAACAGGAAAGCAATGACATCCAGATCGGCAACCTGCTGATCAAGCCGGATGCCTACCTGGTTGAAAAGAACGGGGAAAAGATCGAACTGACCCACCGGGAATTCGAGCTGCTCTACTACATGGCCCAGCACATGGACCAGGTTATGACCAGAGAGCACCTCTTGCAGACGGTCTGGGGCTACGACTACTTTGGCGACGTCCGGACGGTTGACGTTACGGTTCACCGCTTGCGGGAAAAGATCGAGGACAACCCGGTCCGGCCGAAGATTTTGGTTACCCGGCGGGGAGTCGGCTACTTTGTCAAGCAGCAAACAGAAGAATAATTTGGGAGCCACTGTTTGAGGTGGCTTTCTTTATGTGGATGGATTAATGAAGAAAGATAAAAAAGCACGCAAAGAGAAAGTGAAGAAAGAGAAGACCTACCTGCTTAAGCGCGCGGTCAGCTCGATCCAGACCAAGATCGCCCTTATCTTCATGCTCCTTTTGCTGGCCACGATTGAAATCATCGGGGCCTACTTTACCCGGCAGATGGAACAGACCAGCATCAACAACTTTCAAACCACGATTCAGCTGCAGTCGATCGTGACCGACCAGCTGACTACCCAGCTGGTCAAGAACGGCAAGAGTGCTGACCGGAAGATGAACCAGATTATCACTGACTACAGCAATGACGCGATTTCTGAAATCCAGGTCGTGGACAGCAAGAACGTGATCCGGGCCGTGTCCAACTTAAGCGACAAGAACCGGGTGGGGCAATTGTCTAACAACGGCGATATCCGGGAAGTGATCAACTCCGGCCAGCAGAAGACCCAGGTTACCAGTGACCAGAAGGGCAGCTTCATGGTTCAGATCGTGCCTCTGACCAGCGGAACCAACATCGTCGGGGCGGTTTACGTCCGGGCCAGCATGGCTGACGTCTTCAATAACTTGCGAAATATTTCGATGATGTTCTTGACGGCCTCACTTTTGGCCGTAGTCGTGGCGGCTATTGCCTCCATGTTTATTTCCCGGGCAATAACCCGGCCGATTGAAGAGCTCCGCCAGCAGGCCATCCAGGTGGCTGACGGGGACTACTCAACCCAGGTTAAGATCTACTCTAATGACGAACTGGGCCAGCTGGGGGCGGCCTTTAACACCCTCTCAACCAAGATCGAGCGGTCCAATGAGCAGTCAGAATCTGAGCGCCGCCGGCTGGACAGCGTACTGTCCCACATGACTGACGGGGTGATCGCGACCGACCGGCACGGGAATGTGTCGATCATGAACCAGATGGCCCAGGACTTCCTGGACGTCAAGGCCGAAGACGCGATCAAGAAGCCGATTTCTCAAGTTTTAGGCCTGGGGGAGGACTACACTTCCCAGGACTTGATCTCCAACCAAAGCGACATGCAGGTCACGGTCAATGCCGGCACGGATGATGAAATGATCCTGCACGCCAGCTTTACCTTGATCAAGCGGGTCACGGGCTTTGTTTCCGGGGCCGTCTGTGTTTTGCACGACGTGACTGAGCAGATCAAGAACGAAGACGAGCAGCGGCAGTTCGTTTCCAATGTTTCCCATGAATTGCGGACTCCTTTGACCAGTGTCCGGGCTTATATTGAAGCCTTGAATGAAGGGGCCTGGAAGGATCCGGAGATTGCCCCCCAGTTTTTGGATGTGACGCAAAAGGAAACTGAGCGGATGATCCGGATGGTCAACGACCTCCTGGTTCTGTCCAGAATGGACCGGGGAGCCACCAAGCTGGAACCGGAATGGGTTAACTTTACTGACTTTGTCTCCCACCTGCTCAACCGCTTCGACATGATTGTCGAACATGACCAGGGCGAGGCCCAGAGCGATACCAAGGAATACGTGATCAAGCGGGACCTGGGCAACCAGGCCCTTTGGGTGGAAATCGACACTGACCAGATGATGCGGGTGATCGACAACATCATGAACAACGCTATCAAGTACTCCCCTGACGGGGGGACCATCACGGTCCGCCTGACCCAGAACCAGAACCAGATACTGCTCAGCATCAGCGACCAGGGCCTGGGGATTCCAAGGAAGGACCTGGGTAAGATCTTTGACCGCTTCTACCGGGCAGACAAGGCCCGGTCCCGGGCCCAAGGCGGGACCGGTTTGGGCCTGGCCATCGCCAAGGAAATCGTGACGGCCCATGGCGGCCGGATCTGGGCGGACAGCCGGGAAGGGCACGGGTCAACCTTCTATATTGCCCTGCCTTACGAACCAATGGATGAGGAGGATGAATGGGATGAAGTTTAAATTCAAGTTCAAATTCAATGATTTTCTCCTCCACCTGGCGACTTTGGCCGTGATTTTGATTTCGATCGGCCTCTGGGTCACGGTGATGACCAGTGACCAGCGCTTCAGCCGGATCAGCAATGAATCATCCTCCCAGAGCTCGGCTTCTTTGTCGACCCACTACCGGAATGTCCAGTCTTTTTACGCCCCGGGCCAGACCTATGTCTTTCAAAACGGGGTCCGCTACCAGGTCCATGACGCCAAGCGGAACCTGCCTTTGAAGTTTGTCCAGTACCTGGAAAAGGTCAAGCTGGGGACGATCGAGAAAATGTCAACCACGGCCAGTGATTATGAGAAACTGCTGGCTGACCAGAACTATATTATGTTTGCCTACCCGGACCAGATCAATTTCACGGTCCTTTTAGGCAAAAAACAAGCTAATTCCAGCCTGCAGTTCAACCGGGTCTTTGTCCCGGTCAAGAGCAAGACCCGCTACCTCTATTTCGGCAACGACAAGGGCAGCCGGGTCTACCGGGTAAAGATCAAGTCCGGCTCCTTCCGGCAGCTGGCCAAGTACGTCAAGAGCGCCCAAGACCGGCAGGAGGTCAGCTTCCTGCACTTAAAGAAGCTCTACGTGCCTTTTTATGCCAAGGAAATCAAGGCCAAGGAATACAGCTACCTGATCAGCTACCAGTCCAGCAGCTACTATGCTTCCCGGCTCTTGGGCAGCAGCTACCGGAAGTCAGTGGCTAAGAACGGCCGCACTGTCTACACGGCTGGTTATTCCAAGCGCCTGCAGATTCCTAAGGAAGGCAAGAGCAATGACCACCAGTATCTGTACCAGAACTACTTGACCAGCCAGGAGCGGACGGCCACCCAGGAGATGCTGGAAAGTGCCGCCTATGTCAAGCAGCTGGGCCTGGCTGAACAGGACCTGCGCTTTTTTGAAAGAAGCGGCAAGACGGTGTCCTACATCAAATATATTGAAGGCTATCCGATTTTTGCCAACGACGCTTTGGCTCAGACCCAGGTAACCATGGGGACGGAGTCGGTCAGCGTGGCTTTCAGCAGCATGAACCTGCAGATCCCGATCCCGTATGACGGCCGTGTCAAGACCTTGCCGAAAACCGCGACCCTGCTGAAGGAGCTGAATAGCATCGGCATCAAGGAAAGCGAAATTGAAAAAATAACCATCGGCTACCATATCCAGGCCGACAAGAAACGCAGCGACTTGATTACCCTGGTGCCGACCTACTTCATCAAGGTTGGCGGCAGCTGGAACAGCCTGGCCGGCTGGAAGAAGATCAAGGCGGAAAACACGGATCTGTTAATGGAGGGGGCAAGTTCCAGCTCCAGCAGCTACTCGTCTTCCAGCTCTTCCAGCAATGAGTCGAGCAGTGAAGCCAGCTCAAGCGCAAGTTCCAGCGTCAGCCAGGCACCGGCCAGCAGACAGGAAGCATATTCCAGCAGCCGCAGCCAGCCGGCGGCTGAATCAAGCTCCAGCTCAAGTTCCGCCGTATCAGCAAGCTCTGCCAGCTCAAAGGAAGGAGAAAAGTAAATGGATCATCGCAAAATTGAATGGCTTTTTCTGATCCTCTTCTGCTTAGTCGACATCTATCTCTTGATTGAGCTTTGGCGGGCCCCGGTTACCTTGACCTCATCGACCAATTCGGTGACGACCTCAACCAGCTTGAAGGCTGAAATGAAGTCAGACAATATTACGGTTCCTTCCCTATCCATAAAGGGGGACTCGGGCTACTACCTGGCCACTAGAAGTAAGAGCGACTTGAAGGAAGCCGCCAAGAAGCTCAGCAGCGACGTCTTCACCAGCTACGCTGAAGGGGACAAGACCCTGTACGCGACCATGAAGACCGCGATTCCGCTGGAGCGGATGACGGTGGGCGAGTTCAAGAATGACAGCAATTACGTCCCGCATGGCAAGCAGTATGTCTTTGCCAAGAACCTCTCCAGCAACAGCAGCTACGTTTACGTGCAGAAGTCCCAGTACGGCCTGGTTTACAGCAGCCTGGCCCAGCTGGTGGTCAATGTCAGGAACAAGAAGATCACGGGCTACTACCAGACCTACTTGACTGACTTGTCCAGCGTCCGCGAGCTGCAGGCAACTATCAGCCCCTTGCGGGCGGTCACCAACCTCTACACCACCCGGGAACTGGCCGACAACTCCCGGGTAATGCAGGTCAAGCTGGGCTACACCAAATTGACCGAGGTCCGGGGCAGCGTGATTTTCGTCCCGACCTGGCTGGTCTGGATCGAAAACAAAAGCAGCAAGAGCAGCTGCTTGAAGCGGGTCAACGCCTTCAGCGGCCAGCTTTTGCAAAACAGTACATTGGACGATTAAGGGCAGGAAGGAAAAAATTTGCAATTCGCGGTATTATCGAGCGGATCAGCGGGCAACTGCAGCCTGCTGATGACTGACCAGCACAAGATTTTGATGGACGCCGGCCTTTCAGGCAAGAAGACCAAGGAGCTTTTAGCCAAGGTAGGCGTGGCGATCGAGGACCTGGACATGGTCTTTTTAAGCCATGACCACGGCGATCACAGCGGGGGGATGGGGGTCCTTATGCGCCGCTATCCCCAGCTGAATGCCTTCAGCAACACGGTCACCTGGAAGTACTTGGAGGAGACCGGGAAGATCGGCTGCCTGCCGAAAGACCAGATCAATGTGATTGAGCCGGGCCAGACCAAGTGCTATGGGGACTTGGAAGTGACGGCTTTTGCCACTAGCCATGACGCGGCCCAGCCCCAGTACTACGTTTTTTCCAGCGGGGGCAAGCGCCTGGCCTGCTTGACGGACACGGGCTACGTGTCTGAAGAAGTCGAATATGAGATTCAAGATGCGGATGCTTATTTGCTCGAGTTCAACTATGACGACCTGATGCTGAGAAGCGGCCCCTATCCCTGGAGCCTGCAGCAGCGGGTCCGGTCAGACCACGGCCACCTGTCAAACGAGCAGGCGGCTGAGACTCTGGCCAGGGTTATCAGTTCTAAAACCAAGCATGTTTTCATGGCCCACCGCAGCCAGCAGAACAATTTAAACTATTTGGCCCGGGACGTGGCGGAAGAGGTTTTGGCGGCCAGAGACGCCGACGTGGCCAGTGACCTGGAATTGCACGATACCGAGCCGATGACGCCGAGTTCTTTAATTAATTTATAATACATAGGATTTAAAGCTTTTAATTAATACGTTTTGTTCATATATACTTCAAAAAGCTGGGATATGATAATGGCAACGATAAGGAGTGATAACCATGTCTGAAGAACAAGATAAGCAAAGAAACACGCGCAAGAAGGAAAATAACCGTTTGCTAACTAAAGCGGCCATCATTGGGGTCGTTGCCGGTATTTTGGGAGGGGGGATTGCTTACGGCGGCTTGTCAGCAGCCAATTTGAACAGCAATACTTCATCATCCACGGCCAGCTCAAGCAGTAGCAACACTGGTGAAAACGGGTCAGTGACGACTTCATCCAGTGGCACGACCAAGGTCAACAAGTCCAAGACTACCAGCGGGACGATGACTTCCGCCTACAAGAAGGTGCAGAACGCGGTTGTTTCAGTCTTGAACTACAAGTACACTTCCAGTTCATCATCAAGCTCTGACATCTACAGCATGTTTGGCTACGGTGACTCGGACAGTTCAGACTCATCCAGCTCCAAGAAGTCTTTGACTTTGTACTCTGAAGGTTCCGGGGTCATCTACACGACGGCAAACGGCAAGGGCTACATCGTCACTAACAACCACGTTATTTCCGGGGCAGCCAAGGTGAAGGTCATCCTGGCTTCCGGGAAGACGATTGCTGCTAAGGTTGTCGGCAAGGACTCAACCAGTGACCTGGCAGTTCTGTCAATCGACTCCAAGTACGTGACCCAGACCGCTTCATTTGGTGACTCCAGAAGCCTGCTGTCCGGGCAGACGGTAATTGCCATCGGTTCACCGGAAGGGTCTGAATACGCGTCTACGGTAACGCAAGGGATCATTTCCTCACCAAGCCGGACGATCACTTACAACTCCAACCAGATGACGGTCATCCAGACTGACGCGGCTATCAACTCCGGTAACTCCGGTGGGCCCCTGGTCAACTCTGACGGCCAGGTTATCGGGATCAACTCCATGAAGCTGTCCAGCTCCAGCAGCGGCGACTCCGTTGAAGGGATGGGCTTCGCGATCCCGTCAAACGAAGTTGTGACGATCGTCAACCAATTGGTCAAGAAGGGGAAGATCACCCGGCCGCAACTGGGCATCAAGGTAGCAGCGATTGCTGACCTAAACAGCTACTACAAGAAGCAGCTGGGCATTTCAACCAGTCTGAAGAAGGGCCTGTACGTGGCCAGCGTAACTTCAGGCAGCGCGGCAGCCAGTGCTGGGATCAAGAAGGGCGACGTGATTACGGCGGCTGACGGCAAGACGGTCAACGACGTAGCCACCCTGCACAGCATCCTGTACAGCCACAATGTTGGTGACAAGGTCAAGATTACGGTCAACCGGAATGGCAAGACCATGACCTTCACGGTAACCCTGCAGGCAAGCAACTAATTTAAGAACAAATAATCCAGTGGATCAGCAGATCTGCTGGATTTTTTTGCTTCTTTTCAAAACAAAAACAGGGTGAAAGGAAGGAAAAGTTCGGATATATTTCTTGTCAAGGAAAAATTTTAAGGAGACTTTATCCCCAATCCTGTGGAAAAGACTATGAATTGTGCAAAAAACGGGGTAAAAAGCGCTAAAAAAGTTGTGGATAATCTGTGGATTGTGTGTAAGTTCCACGGGTAAAAGTCATGTTAAAACGTCTGTTCAAGGCGACAGGCCGGGCTTTTTTGGTGATTGTTTGTGAAAAGGTCCAGTTCACAGTTGCTTTGTGGAATGGTTACACGGGATTTTAGAAATTTTTTGCAAAAAGCTAGACCTAGATAGAATTCGGCTCTAGTCCACTAGATCTAGAAAAGGACTTTCCACAGCTGTGGAAAAAGGCGGTTGATAAACTGTTAATTGTGGGGATAGAAGTAAAAATGGTAAAATAGGGGCATTATGAATATCAAAATTGTTTGCGTTGGAAAATTAAAAGAGAAGTATTTTAAGGACGGGATCGCGGAGTACCAGAAGCGGCTGAGCCGTTTTGCCAAGGTGGAGATCGTGCAGGTGCCGGATGAAAAGGCGCCGGAAAGCCTCAGCCCGGCCCAGATGGAAGAGGTCAAGAAGCGGGAAGGCGAGCGGATCCTGAGCAAGATCAAGGACAAGGAATATGTTTACGTTCTGGCCATTAAGGGCAAAGAGCGGGCTAGTGAAGAGTTCGCCAAGGAACTGAAGAACCTGGGGACCTACGGGCATTCCGACATTACTTTCGTGATCGGGGGAAGCTTGGGGACCAGTGACGCGGTCAACAAGCGGGCCAACGACCTCTTCAGTTTCGGCAAGCTGACCATGCCCCACCAATTGATGCGGCTGGTTTTGATTGAGCAGATCTACCGGGCCTTTATGATCAACTCCGGCAGTCCTTACCACAAGTAGAATAGAAAGTATAAGCCTCTCCGGGGAAATCAGCAGGAGGGGCTTTTTGTATACGAATCAGTCTAGTGCTAGAATCTAGGGTGAAAGTGTTTGAATAAAGTATTTTAGTCATGAAAGGGATGATTTAAATGACTAAAACAGAGCGTTACATGTGGCTGGCCAATGACCTGCTTTTGACGGCAGCGGCAGTGTCGCTGATCATCAATTTAGTTGGCCAGACGGCTTCGGGTTATGCCTTTAGCGGCAGTCATGGGCAGGCAACTGCTTTATGATGCTTTTATTTTGCTTGTTGCCGCGGCTGCTTTGGGGGTCTGGCTGAGTAAGTGGCTGGCTCCTGCAGCAGCTTGGGTAATTGGCGCCTGTCTTTTGCTGGGCCTTGTAATTGACCGGGTGGTAGGCCTGTATTTTGGCTTGACCTGGTACTGGACTTTGGCTGTTGTCGCTTTGGAGGTCAGTCTGGTTCTGGCCAGCTACCGCTGGCGGGGGAAGGCAGTCTCTAACTATTGGCTGGCCGGCATCCTCTTGGCCGTCAGCCTGGTCAGCTGCGTGATGGCCTGGCTTGGGTGAAAACGAAGGTGATAGAGATGAAATTATTAAAGATTTTAGTCAAAGTGGTTGATGTAATCTTACTATGCTTTTTGACTGTGGTAGTTTGCTCAAATCTAAAGGATTACATCAATGCTTTGAGAACGATCAAAGGGAACGATTTAAAAGTAACTGTTTTTGGCCATGTGGTTTTAATTTTGGTCTTACTGACAGAATTAGCCTTAGCTGTATTTAGCCAAAAAAATCCCCGTAAGCCGTTCTTGATTATTGGCCTAGTTTGCATTGCCTTGACGTTGATAGGACTGATTACGCCAATCGCTTTTGGTCCGGGCAATTTGCCACTTAACTTCTTGGCCTTAGTGTTATTGGCTGTTAGCCGCTTTTTGCAAGAAAACGTAGCTCAGAAGAGAACGTTGTAAAATGCAAAAGTTATTAAGCTTAGCAAGAATCACTGCTCAAAAGTTAAAATTGAGCTTGCAATATAAGTGAATAGCCTTTAAAAAATAGGAGCGTGATTATGATGAAAAACTTTGCAACTAAGCCAGCCGTTAAAACCGTCTTCTTGCTGGCTGGCCTCTGTTTGGCCTTGTTTATGGCAGTTCAGTGGATCTTTGCCTTGGGCAACCCAGGTCCGGTTTCATGGGCGATTGCCGGCATGATCGCGATCACTCTGCTGACCCTATTTCTGGGAATCGCGCCTTTGACTAAGCTCAGTCCGGTAGCTGGCTACGTAACTGCTGCAGTATTAGCGTTTGTCGTCTTGATCTTCGTCTTCAATATCCATGAATACATCTCAATCGGCATTTTATACCTAATTTACGCTGCCCTGGCCTGTGGCCTTTTATGGGCGAAAAAATAGAACAGTAAACAAAAATGGCTTCCAGGATTTTCTCCTAGAAGCCATTTTCATTATGCTATGCTGATTTGATTAAGCGAAGATTTCTTCAACTTCAACTACTACGGCAGGAGCAGTTTCCGGCTTGCCAACCTTAGCAGCGTATTCCTTAGCGAAGTCGTCGCCTTCGTGGATAGTCACGCTGCCGACCACGCGCACGCTAGTGTGGCTTGGCACGTCAGCAACTACAACAGCAACCTGCTGCCGTTCTTGATGTTTTCCCACAAGTGGGAGGAGGTAACTTCACTCCAGACCAGGTGCTTGTCGTCCAAAGCAGTCAATGAACCCTTAGGACCAACTTGTGGGTTGCCGTCCTTGTCAACGGAAGCAACGAAGGCCAAAGCGTCGTTAAAGAACTTTTGTTGGTCAGCAGTCAAAGTAGTAGCGTCTAATTTCTTCATAATGGTAATTTCCCTCTTTTTACTTAAGTAGCAATTCTTTCACTTGATACTTAGTATTATAGGACCTCCCCAGGCAAAAGAAATTGATTTAGGTCAATTTTATAACTTTTTCGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACACTAAACAACACCAAAAGGGCAAGCGCCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTACTCTAATCGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGAGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCACCCTTATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCAAGGGAGACCGTATGGATAAGTACCGTGTGGAAGATATTGCTAAGATCGAGGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGACTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCGGCGTAGATAGTCAAAATCTGCCAGATGTTATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGTTTATAACTTTTTAATAATTTTTTTGCAATTTCTACGGGAGTAAAAAAGCGCCCAGATTCAAAAGAAGAACCGCAATAATAAAGAGCAGCCAATCTTTGTTAGTTAGCGGCACCTCAACGATCACGGACCGCGGAGCGCCTTCGCGGTAGCCGTGGGACTCCATCCCCTGGGCCAGGTTGTCGGCACTGTTTAAAGCCACCAAAATCGCCTTAAAGTAGAGGACCGGGGACCAAAAGGAGAGGTAGACTCCCCGCATCATCCCTGCCACCCGGATCTGCTTGACCGCGGCTTGCATGCGGGGAATGATGTTCAAAGCCGCCAAAGTTCCATAAGCAAACTTGCTCGGCAAGTGCAGGTTCTGCTCTAGCGACCGGGCCATCTCTTCTGCCGTGGTTGAAATGGTCAGGCAGGCCGTGGCGAAGGTATATACGAAGGCCCGGCTGGAGATGTCCAAAGCATACCAGAGGTCGAGGTGGTCACTGAAGATGTAGCCTGAAGAAAAGACGGTAATTGCCGCTAAGCCCGTTGCCAAAAGCATCCCGCCCAGGGTCTTAGGCTTGATCCGCCGGTATAAGAGATAGGCTAATGATAAAACAATAACGATGACATTGCTGAAAAGGCTGACCTTAAAAGATAACTCCAGTGAAATAATCAAGATCAGCAGGAATTTCAAGCTGGGATTCATTTTGCTTTTAGTCATTTTCTCCTCCTAATCCTGGACAAAAGCCAGCTCTCTGCCGGCCAGACGCAGGTGGTAGTCGCACCAAGTGCTGATTCCGTAGAAATGGTGGCTGATCAGCAGGATCGTCTGCCCGCTCTTTTCCTGGCACTTTTGCAAAAGCTGCACGACCTGCTCAATTGACTTCTGGTCTAGGCCACTCAAAGGCTCATCGATTAAGAGCACTTCCTGGCCCGACAAAAGCATCAAGAGGATCTCCAGCTTCTTTTTTTGCCCGCCCGACAAGGAGTAGACCACCTGGTCCATGTGGTCGGCCAAATCCAGGTCAGCCAAGGCCTGGTCTAAGACTTCCGGAGTGAAGTAGGGGGAAGCGTGCTTTTGGCTCAAAGCCAGCTCCTCTTTGACGGTGATGGCCATGAACTGGTCACTTGCATTTTGAAAAATCTGGGCTACATGCTGGAAGTAGGTCCGCTCCTTGAGCTTGGCCACTTCCTTGCCCTTCCAGGTCAAAGACCCCTGGTAGTCCAGCAACTTGGTCATGGCCTTAAACAGGGAGCTCTTCCCGCTACCGTTTGGCCCCGTGATCAAGGTCACCTTCCCCTTGGGGATGGATAATTCTTTTTGCTCAAGCAAAGGCCGGCCTTGCTTGATGGCGAAATTTTTCATGACAAAAGCCGCTGGCTCGTTCTCTGGTAGGGGGAAGTGCAGGCCGATTGGCTCAGTAGCCAGGAGAAGCGCTTGTTCATCCTTAGTCAATAAGTCCACTTGCTCGCCTTTGAAGCGGTAGACCCCGTCCACCTTGCCCTGGTAGTCGTCAAAAAGGTGGTCAGTGATGATGATGGTCTTGCCCTGCTCTTTCAGCTTGGCCAAGAGGCCAATCAAGAAGCGGCGGGCCGCCGGATCCACGCTGGCAAAAGGCTCATCTAGTAAGAAAAGATCCACGTCCATGGCGACCAGGACGGCCAAGGCTACCCGCTGCTTTTCCCCGCCTGACATGGTTACGATCTTCTGGTCTAAAAGAGAGTCGATTTCCGCGAATTCGCTGGCCAGCTTCAGCCGGTCCGCAAATTCTGTCTTGCTTTTGCCCAGGTTTTCCATTGCAAAAATAATCTCTTCTCTAGGCGTGGCCATGGTAAACTGCTCGCCGGCTTCCTGGAACATCATGGCCTGGCTCCGCCAGCCCAAAGAGACCTGCCCGCTGGTCAGCTGGCCCCCGTATTTCGGGTAGAGGCCGGCCATGATCTTCAACAGGGTCGACTTGCCGCAGCCGGTCGGCCCGATCAAGAGGGAAAAAGTCCCCGCCGGCAGGGTTAAGGACAGGTCGCGGATGACCTCCCGGTCCCCGTAGGAAAAAGTTAAGTGGTCAATTGTCAGTTCTGCTTGCAAAATAAAAAGTCACCTCAAAACTGGGGTGACCATAAGCAGCAGCATTTTCCCTTGCCAGCATTACCTGGCCAGGTTCCATGGGTATCATCTCAGCCTTCCGGCACCCCGTTGATTCGTCAAATTGATTCTTATTTTAGTATATTGGATTTGCTAATGCCTGTCTAATTCAAACTTTGTCCAAACTGATTGAAAATGCCGATTTATAGCACTTTTCTTAAAATAATCTGTGAAGTAGCTTTAACGAAAAATTTTTTAGCTGTATCCTAAAATTACAGACTTTTAGACTTTAGTGGGAGAGAAAAATGTCAGATCAACGAAGACGAGTAATTACCGTGGCCTTGATGTTGTCAAACGTCATGTCCGGCCTGGACAACACGATCATCAACACCGCCTTGCCGCGGATCATTGCCGATTTGCACGGGATTGAGTATACCGGCTGGCTGGTGGCCATCTTCTTATTGGGGACGGCTGTTTCCACGCCTCTTTGGAGTAAATTGGGCGAGCGGCGGGGGAACAAGCTGGCCTACCAGCTCGCGGCTGCCTGCTTCTTGCTGGGGGCGCTGCTTCAGGGCTGCGCCCAGCAGATGTCCTTTCTTTTAACCTTCCGCCTGTTGGCCGGGATCGGCAACGGGGGGATGGTGTCGCTCCCTTATATTATCTACTCTGACCTTTATCCAAACGCCCACAAGCGCCTAAAGGTGCTGGGGATGGTCTCTGCCTTCTTCACCACGGCCACCATCTTAGGACCGCTCTTTGGGGGCTGGATCGTTGATGCCCTGTCCTGGCGCTGGGTCTTTTATATCAACATCCCGGTGGCCTTGATTTCCATCGTTTTGATCCAGATCTTTTTCCTGGATGAGAAAAAAGACCGGCCAGTTCGCAGGGTCGACTTAGGCGGGGCCATCTTCCTGTCCTTTGGGGTGGTGGACCTCTTATTGGGGACCCAGCTGGTGGGTTCAGCCAGTCTGGCCACGGCGCTTTTGATCTTCGCGGCGGCCTTGATTTTCATCGGACTTTTGGTCATTATTGAGCGCCGGGCGGAGGACCCGATTATTCCAGGCCGCTTGTTCAAAAATATCCCCCTGGTGGTCGACTTTACTTTGTTCGTTTTGATCTGGGCCGCCATGTCGGCTTACAGCGTCTACGCGCCAATGTGGGCTGAAGGCTTGATGGCCACGACTGCCCTGGTCGGGGGGATGACCCAGATTCCCGGAGCCTTTACCGACATGCTGGGCTCCTTGTCCGTGGAAAAAATGCGCCGGCGCTGGTCAGCCTACCAGGTTATGCTGGCCACCTGCTGGCTTTTGGCGGCAGGCTACCTGGCCATGGCCGTGGCCCCGCGCTATTTCCCTTACTGGGGGATTTTGCTGGCCGGGATGCTGCAGGGCTGGGGCCACGGGGTCATGTTCAACCAGCTTCAGGTTAAGGTGCAAGAAGACGCGGAAAGCCAGGACGTGCCGGTTGCTACTTCCTTCTCCTACCTGATCCGGATGCTGGCCATGGCGATTTCTTCCAGCGTCTTCGGGGTCATCTTGAATGAGCACTTGGCTAAAGGGGTCAAGGCTAGCGGAGGCAAGATCACTTTGTCCATGCTCAACCACTTATCAGACGCCAAGACCCGGGCCAGCCTGCCCAAGCAGGATTTGGTCCAGATGGAGAATATCCTCTACGGGGCTATTCACGCGATTTTCTGGGCGGCCTTTATCCTGGTCTTCCTGTCTCTGCTTTTGGCCATCTGGGCCCGCTGGCGGGAGAAAAAATTGGCCGGCAAGCGGTAAAATCTGGTAAGATCCAGTATAGGATAAAAAGAAGATAAGTTTTTGCTGGAAAGGAGAGAGCTGATGACTGAAATTGCCAAGCTGCAGAAAAAATTGCAGGAAGCGGGGGATGCCACCCTGCCGCTGAGCAAGGGGAAGGGGCAGACCGCGGCCTGTACGTTTGTTTTACTAGGCGATAAGGCTGAAGGCTGGAAGAATGACTCTTTGACTGCCTTGCTGCTTTTAGCGGGGACGGGGCGCTTCCGGGCTGGCCAGCAAAAGTGGCAGGTTAAGCCCGGTGACTGGTTCCTCCTGGCAGCTGGCCAGGACTGCAAGGCCAGTCTGAAAGAGGGGCTCCTAGTCCAGCTTGTCTTGCCAGAAGCTTTTTCAGTGAAAGACTTGAAAAAGGATCTCATGCTGGGAGAAGCTGAAGAAGTAGGGACCCACGGCCGGGTGGCGGTTGACGGGCCAGCTGGGGCGGCTTTCCTGGCGGCCTTGAATGAGTACCAGACTAGCGATTCTGTGTCTTCAGTCTTGCTCAAAAGCCAGCTGCTAACTGCCCTGGCTCTGGCCTTGCGGGCACTAAATGAAGTGGGCAGCTTGAGTGAGCGGGAGATCCGCCGCTATATTAGTGAAAACTATGTCTCGACCAGCGTGAAGGATGCCGCGGCTTACTACCAGCTCAGTCCCAACTATTTTTCCGACCTGGTCAAAAAGAAGACCGGGCAGAGCTTTATTGAGCTGGTTGACGAGCAGAAGATGGAGACAGCCGTCCGCCTTTTGGCCCGGCCAGACCTGTCGATCAAGCAGATCATCGGCCTGGTTGGCTACCGGGGCAAGTCCTTCTTTTATGAAAAATTTGGAAAGTACTACGGGATGTCGCCGGCGGCCAAGCGCAAGGAGCTCTTCCGCCAGCAGGGCATCAATTTATGAAAATAGAAAACCGCTGAACTGTAAGTTCAGCGGTTTTTGCATGAAAAAACAGGAATTTTCAAATATGAAAAGTAAGGATGCAGGAACAGTTTGAACGCTAGAATGTTAAACAATTATTAACGACATATGAGGGGGAGAAAAGTGATTGAAATCGACCAGCTTTCTTTTGATTATCGGACTTTTAGCAAGGAACCGGGATTAAAGGGAGCTTTGCAGGATATCTTCCACCGGAAATACCAGCTGGTGCCTGCTCTGAAAGATCTGAATTTGACTATAAAAGATGGTGAAATTATTGGCCTGATTGGCCCAAATGGAGCAGGAAAGACGACATTGACCAAACTGCTGACAGGGATTATTCAGCCAACCAGTGGCAGCGTGAAAGTAGCGGGACTCATTCCGGGAAGTCGTCAAAAGAAGCTGTTGCGGCAAATTGGGGTCATGTTTGGGCAAAAGTCGCAGCTGTCCTGGAACTTACCTGCTGTTGATACTTTGAATATGCTGGCGGCTATTTATCAATTAAAGCCAGACCATTATCAAGCCAGATTGCGGGAGTTGTGCGATTTACTGGATATTGGCGAGATCGTAAAAACGCCGGTCCGCAAATTGTCTTTGGGCCAGCGGATCCGCTGTGAACTTGCTTGTTCCTTGATCCATGAACCAAGCTACCTGTTTCTGGATGAACCAACCATTGGCCTGGACCTATTAACGCAGGAAAAAATCTACAATTTTTTAAAAACTGAAAACAGACTGCATCAGACGACGATTATTTTAACTTCGCACAATGTCCGTGATATTGAGGCCTTAGCCCAGCGTTTGCTGATTTTGAGCAAAGGAGAGTTGATTTTTAATGACAGCTTGAATAAGTTGCCTCTTCAGATCGATCAATCCGATAGCTATTGCTTGAAGTATTGGATCAATGACCAGACTGACGTGCGGGAAGAAATCATTCATGATCCTCAGCAGCTTTTTGTGAAGATGGAAAAATTCCAGCCGGAACAGATCATTTCTTTAAGCAAAAGTGGAATATCAGCCGAAGAGGTTATCTTGAAAATATATCAAAGAGAGAAACAATGAAAAGATATCTGCCTGTTTATTATCTTGGTTTGAAGAACAGTTTGATCTACCGGGCTAATATGATCATGAAGCTGGTCCTGCAATTGGCGAGTCTGCTGGTTACAGTTTTAATGTGGAAGTTTATCTTGGCAGAGTCCGGCAACTTTCAGCAAATGGCCCGTTATCTGCTGGCAACCAATTTGATCAGTTTAATTTTTACAACCGGGCCGGTTTTCCAATTCGCGGACATGGTCGAATCTGGGAATCTTTCCCTCTATTTAACGAGACCTTTATCCTTGTACTGGTACCTGTTCAATTACAATTTAGGCCTGCAGACGCCACTATTGCTGTTGTATTTGATCTTGCTTCTGTTCTTGGTAAAAAGCGCTGGACCAGTGTTTTTGCTCTTGATTTACCTTCTTTTGAGCAGTCTGATGTTTTTCAGTTTGATGATGGTCCTGGCTATGCTCAGCTTTTGGTTGATCAATATGTGGCCGCTTAGAAGCGGAATTAACGCAGTTTACCTCTTGCTAGGAGGATTATATTTTCCTTTGAATTTATTGGGCCCGGTTTACCAGTATTTGAAATACAACCCTTTTTCCTTGGTGACGGATTTTCCAGCGCGCTTGTTGACGGGAACAACAGACCAGCGAGATTTTTTCACAAATTGCCTGGCCGTTTGCTGCTGGCTGCTTCTTAGCGTGCTGCTGGGAAAAGCGTTGTTCAAAAAAGGTATTAAAACTTTTGAGGGGGCAGGAGCATGAGAAAGATCAAGGCTATTTGGCGGCAAAGCTTAGCTGAGTTTATGATTTACCGTGGTACTAGCATTATTACTTTTCTTTTGGCAACTGTCTTTCTGTTGATTGAGCTGCTTGCGGGGCAAGTTTATTTTAGTCAGCGTGAGAACTTGGCTGGCTGGACAGCGAACCGCTACTACGTCATGATCAGTTTCATGAATAGCGCGACCTATCTTTACAATTTGTTTTTCATTTTAGGCCATGAAGGACTGGGTGAAGACATCCTTGAAGGTAATCTCGACTATCTGTTGGTTAGGCCCAGTTCGAGTTACTGGCTGGCAGTTGGCAGAAGTTTGGATATTCCAAGTTTTTTTAACTTGCTGCTTTCGCTTGGATTACTGGCTTATTACCTTACTCGTGAAGGGGCTAGTTTTGGCCAGATTATGTTGATCAATTGCATGATCGTCTTACCCGCAGCCTTGATTTTCATTTTGAACCAATTGTGCCTAACCTTGCTCTTTTGGTTTGAAGGACTGACGGCTTTGGGAGGGATTGTAGAAGATTTGGTTAGCTTAGCCGGACGGCCGAAACAGATTTTTCCGCGAGTCATTCAACAGCTTTTTACCTGGATCATTCCACTTTTGCTAGTCAGCAATTTGCCAGTGGACTGGCTGCTAGGACGGGGGAAAAGCCTGCTCATATATCTTCTGGCTTTTCTGCCCATCCTTTACTGGATCTCGGCCAAGTTTTGGCAATGGGGGCTGAGGCGTTATTCATCGGCTAATTGAGAAATGGCTATCTAGAAAGGAGGTGTTGCGATATGGGACGTACTAGAACTGAATTAACGAAAGGCGGACCAATTCTTGTGGAAGGCTTAAATGATGAAGAATTAAACTTCTTCGACGCTTTAATGAGCAGTCCGAAAGACTTATCTGACCAAGTAAACAATGTTAAAACAGAAGTAGTTAAGTAGAGTAAAAAGATCACGGTTAATGGCATCTTTTAGGAAAGCCAATATTGCGTGATCTTTTATTTTATGGAGGGAAAGATTTGCAAATTGAGAGAGAAATGCCAGATGCTGATGCACATACTAATTGGCTTGAGTTAATCAATCGACTGCATTTAACTGCTGACTATAGAATGTGGGTTTCTGCTAATCTAGCCTTGCAAACCGTTCAGTGTATTTTAAGTGACTCAAAAAAGCAACAAGTTTCCGTTGGAATGGGCAAAGGGATGAATCATATGCCCGTATTAGGAGCTGAATTCGAGAGTATAGAGCATTTATTTTATAACTCGCAGACACATTCGGCTAAGCAGCGAGTGCTTGTGTCGCAGATTATGGAACAAGATCTCGATTTTTTGGATGATCCAGCTTTAAATCAACTTTCAAAAAACACAAAGCTGACAGTAGATTCTTTTGTCGATATCGAAAGTTCAAAAGAAGTCTATTATCCATCCTTTTTAAGCGACGTTAATTTCATAGACGATGGTGTTTCGATAAACAATCATGCCTACCAGTATGCTTCTGATAGTGGCTATGCAAGTGGATCAACTGTAAATGAAGCTTTGCTTCATTCCATTAACGAATTGATTGAAAGAGACAGTATTTCAAGATTCATTATCAAGTATGGATTAGGTATTAAGGAAAACTCGGTAACTGCATTTAAGATAATTCCTAAATCCTTGCCTAAGGATTTGTACAAAATCTATCTAGGACTAAAAGATACGGTAGATACAGAAGTAATACTGGTAAAAGTAATTAATAACTATCAAATACCGACCTATTTTACCGCTGTTCTGTCTCAAGGTAGCGATATTCTCCCAATTTACGGTTCAGGGAGCTCAGTAGATGAGCGATACGCTGTAATGAGATCGCTCACGGAGGCATACCAATTAGTATCCGTGAAAAAGGGAAGTGAAAGTCAACAATTGCGGAAACGCTTAAACTTGATATGGTCTGAAATCTCTCCTATTGAAGAAGATGATGTCTCTAACTTTTACAAAAAAGTTGGCTAGCATAAGATATCATCAACATGATATATATGTAAAAGAAGTTTACCGGATGATCAGCTATGAGAGGGAGAGGCTTAGACAAGAAGGCAGGAAAATTTATTATCGAGTGGTGAAAGAAGATCCGGGCTTTGTACTCGTTCAGTCGTTAATACCTCATTTTGAACGTTTCAATCTGGTTTTTGAAGGTCAAATTGTAACGCCTAGGCTGAGTAGAAATGGCCATCAGTAAACGCTATCCCAATAATCCAAAAGTTCACTTACCAAATTGCTTAGCCCAATTTCAGTTAGAGATTTTAAATAAGCATTGATTTCCCGGTCATCGCCGCTTTCCCGGTAAGCCAGCAATTTTTTTAAAAAAACGATTCTGATTTTAAAAGCGGCCATTTGCTGTGGCAAATCAATTGTCAGCAACTGATTCAAAATGTGGCTTGCGACAGAGTTTTGTTTTTGTTGGATCAGGCTGAAAACAATATTGGTCAGAGCCGTCCAGGCATTCAAATACAGTTCATAATCTACCTGTTCCAAGTGACTAAGCTGATGGATGACTTTGCTGTTATATGAAATGAGCAGGTCGCAGTCAATCAAATAAACAGAATTTTCAAGAAAACGCAGGCTTTTGAAATCTAAGTACTCGCTATCAAGCAGTAAATCTTTAAAACTCTTTAGGTCAGCGTCTGTTAAACAGTTTATTTTAGTCAAACTGAAATAGCTGTTGGCCGCGGCGACTGCCTTTCCTAAAATATCTGGATCTTTTGTTTGATGAAAGCTGCTGATTTGACGTAAAAAGATCTGATGAAGCCTCTGGCCGTCTTTTTGCTGGACGAGCAATTGCAGTTCATCATAGTAGGAGTTGTCTAGATTCCCTTGGACTTCCGTATATGCGAAAAACTCCCTGGGGGTGATATCAACCCGGTCTAAGAGGGCTAAAAACTTTTTGAGCCGAATATCGTCGACACCATTTTCCCAGCGTGACAAGGCGGGGCTTGAAGTAATATCTTTTGCTGCTTCACCTAGCGTCATCTTCTTATAATTCCGCAGTCTTTTAAAATATTGTCCGTACATTTTTCTTCCCTCTAATACACTTTTTTGAAAAAGCAGCAATTTAATGCGTACATTATAGCAAATAGAAGCCGGGAGATAAATATAATTTAAATTTAGGCAGAGCTAAAAAGCTTCCAGAAAAAATCTGGAAGCTTTTTGCATAATTACATTTTTTCCAAGCGCTTGATCCGGTCAGCCGTAGCTGGGTGGGTGTCAAACAAGTGGCTTAAGCTGTGCCGTCTGATCGGGTCCTCAATATACAAGGACGCGCTGGCGCTGCTGGCCGCCTGCATAGGCTGGCTGTTTTCAATCTTGGTTAAGGCACTGATCAAGCCGTGCGGGTTCCGGGTCAGCTCAACTGAACTGGCGTCGGCCAGGTATTCCCGGTTTCTGGACAGGGCCATCTGGGCCAGGCTGGCCGCCAAAGGACCCAGGATCAGAACGAAAATAACCCCGATCACGCCGATGATCATCCCAATCGTTCCGCCTTCTCGGTCGTCATCATCGTCCCGGTCAAGGCCAAAGCCGAACCAGACACAGCGCTGGGCAAAGTCGGCGATAAAGCTGATGGCGCTGACTAAAACCAGGGCCACCATGGACAGGCGGATGTCATAGTTGCGGATATGGGAAATCTCGTGGCCCAGGACCCCTTCCAGCTCTTCTCTGTTCATCATGTCCAGCAGGCCCTGGGTAACAGCAATGGCTGACTTGTCCGGCGACAGGCCGGTCGCGAAAGCGTTGGGGCTCTTGTCCGGAATCAAGTAGACTTCGGGCATGGGAATATTGGCCACTAAGGCCATGTCTTCCACGATATGAAAAAGCTGGGGATTGTCCTCTTTATTTAAATGCTGGGCATGGTTCATGCTCATGACGACATTGACCGGATCCTGGAAGACCAGGAAAGAGTAAATCAAGGCAATGACGCCGGCGGTCAATACGCCCGGCAGGGGCTTGCCCCACATCAGCTGGCCCAGGCCCGCGCCCACCAGGGCAAAGATCAAAACGAAAACGCCCAGGACTCCGGCCGTCTTCCGCTTGTTTTGGGCAATTTGTTGGTATAGCATGGCGATCCCTTAGCCTTTAAAAGGATACCTTTGGTACTTTGGTTTCTTCTTCAGGGATTTCCAGGTAGTCAACCTTAGTGAAGTGGTGGATGTTAGCCACGATGTTGGATGGGAAGACCAGGAGCATCTTGTTGTAGACAGCCGCGCTGGAGTTGAAGAGCTGCCGTGAGTAGGCAATCTTGTTTTCCGTGTTGGTCAGTTCTTCCTGCAGGTTGGCGAAGTTAGTGTTGGCCTTCAGGTCTGGGTAGCTTTCAGACAGGGCGAAGATGGTCTTCAAGCTGTCAGTGATTTGGTTGGACAGGTGCATGGCCCCTTCGTGGTCGTCAGCTGGCAACTGGGTCAGCTGGTTTCTGAGTTCAACCACCTTGCTCAGGGTTTCCTTTTCGTGCTTGGCATATCCCTTGACGGTTTCCACCAGGTTAGGGATCAAGTCGTTCCGCCGCTTGAGCTGAACGCTGATCTGACTCCAGGCCTCTTCAGTGTTAACCTTGGCCTTTTGCAGGCCGTTGTAGGCTGAAATGTAAAAAATAACGATTAATACGACTAAAATAGCAATAATCCAGACTGCCATTTTTTGCCTCCCTTTCTGGGCCCCAGAGGGGCGAAATCAACTTTGACCAGATGCTTCCGGCCATTTTAGTAAATTATATATTAAAAGGCAACTGAGCGCTAGTTTTTAAGCAAAAAGCGCCTCCAATAAGGAGATGCGCGAGAGATTTAATATCTTACTACAGGTTCAGCTTGACGATGACCCAGCCGATAAGGGACAGGATGATCAAGCCGGCGATCTGGTAGCCCAGCCACTTCGGGAAGAACTTCTTCTTGGCATCCTTGGAAGCGTGGGCGTAGAAGGTCCGCATGACCAGCATGTTGGCCATGGACCCGATTGGTGACCCGAAGCCGCCGATGTTGGAACCAAGGGTCAAGGCTTCAGCGTACTTGGAGAACTTGCCGACCAGGATGGTTGATGGCACGTTGCTCATGACCTGGCTGGACAGGATGGATGTCCAGTAAGTGCTCATTTCAGTGCCGACCAGGCCGTGGATCAGGGCCACGACAAAAGGAATCTGCTGGATGTCGCTGATGAAGAGGAAGAAGAGGGTGAAGGTCAGCAAAAGGGAGTAGTCAATGTGGAGCAGGATCTTCCAGTTGACGATCAAGGCCCAGATGATGGAGGCCAGCATCGGCATCCAGATTGGAACGAACTTGAAGACGCCAACGAAGAAGAAGCAGAAGATGACCGTTGTGATCATCGTCATTGGCCAGCTGACGTTGATTTCAACGACTTCCTGGGTCGGGATGTTCTTCTTCGGGATAAAGAAGAAGAAGCAGAGAAAGACGACCATGGCCACGATTAGGTAAGGCAGGGTCCACTTAAAGAAGATAGCGGGCGCTAAGTGGTAGTTGGAGACCACGAAGATGTTGTGGGGGTTGCCCCATGGGGTGAAGGCCGCCCCGATGTTGGCCCCCATCCCGATCAAAGTGGCCGGCAGGATTTCCGGCAGCTTGTACTTCTTGGCGATGTTCAAGTACAGGGGGATCATGGTCAAGCAGGTAATGTCGTTACCCAGGAACATGCCCGAGAAGACGGACAAGAGAGTAAAGAGGAGGATCAGCTTCCGGGTTGAGTCAGCGATCGCTGCCAGTTTATAGGCAATGATGTCCAGAACGTGCAGGTAGCTGTAGACCTGGATCAAGACCAGCATGGTCGTGACAGACTCGATCGTGTGCCAGTTCATGTCGGCGCTGAGCGGCCGGGCAAAGAAAAGACTGATGATGGTGATCACGATGGTGATCTGCAGAATTCGGTCGCTAAAAATTTTCTTTAAGGTGGTCAAAAAATTATTTGAACTTTTGCTTTTGGCGGCTTCCATATAAAATCCTCTACTCAGCTAGAATGGTGTTTACAAAATTTACGTAAAGTTAACGAAAAGCGAAAATGGAACTTTACTTTCGTGTAGTTCCATTTTCAACCATTTTTCCCTAAATCTCAACAGTTCAAAATTAACGAACAGATGTTATTGAAAAGATATTGGCGAAACGCGGCAGGTCAAAAACCCGACTTTTTTAGCTTGCTGAAAAAATAGAAAAGACTTTAGAAAGCGGTTTATATGGCTAAAATAAGGGATTTATTCCGGAAGACAAAAAACGGACTTTGCTACCTTTTTTAAGCGATTAAAACGTGTTGACTTTTTACACGGCCACAAAAAAGTCAAAAGCCTGCTTTTGATTTCTGAAATAATGCAAGCGCTACCGGAAGTAAAAAACAGAAGTGACAAATTGGCAAAAATCTCCCTTGGACATTTTGCTAAATTCATTTAACATTTCTGACAGAAGATATTTGCCCTTGCTTTTAGCTAAAAAGGGGCTGGAGGGGCAAAGAAATGCCGAAAAGGCTTGCCTAACATGGGGAAAGAGGGGTATAATGACTACTGATTTTCGAAAATCGATGAAAGGATGAAGAGACATGTCAAGAAATATCCACACGGGTATCAACCCACACCGTCGTCCACGTAACGCTTCTAACGCTAAGGAACGCGTTGCTCACGTTGCTGCTACTATCAGCTTCCTGAACCAAGCAGCTAAGGACGAAAACAAGTAATTTGTTTTTAAACAGACAATAAAGACTCTGGCTTTTGGCCAGGGTCTTTTTTTCGCTTGCTTTTTGCCTTATGATAGGAAAAAGCTAAGAGACGAGTAAGAAAGAAAACAAGGAGGCAAAAATGAAGTTTCAGTGCAGCAGCTGCGGTTTAAGACTGGAATCCCTGCATTTCAAGCTGCCCGGCCTGGTCAATGACCGCTTGGCCAGCCTGTGTGACATCTGCCGGCAGCGGGGGCTGGATCCGGCAGCTTCCCCCAATCCCGTGGTCAAGCTGTTCGCGGCCAACCTCCTCTATGCCTTTGTGGGCAAGGACGGGGAAGCAAGCGGGGACTTTTCTCTGCCGGACTTAAAAATCCGCCGGTCCTACGAGGCCCTCATGCAGGACTATGATGGAAATGTCCTGGCCAGGCAGCAGCTGCCAAGAGCAGACTTCAACCAGGCCGTGATCAAGGCTGAGGATGATCCCAGCTTCTTTTTGCCAGGAAAACTCCCTTTCGCGGAAAAACTCCAGGCCTTAGGCCTCAGCGTTGACTTTCAGTTAAACGAGGTTGACTATATCGACCGGGAGCGGATCCGGGCCAAGTACAAGTACCGCTGCCAGTACTGCGGCCGGCGGGGGCGGAGCGTGGACCACAAGGACCCGGTCTCCGTCTCGCACGATAACAGCCTGGACAATCTGATTTTGTCCTGCAGCGAGTGTAACCGGATCAAGTCTAATATGCCTTATGACCTTTTCGTCAAGCTCAACGAGGAATTGCAGCCTTTAAACAAAAAGCTGGTCAAGTACGAGAACGCCCTGGGCCCCTTGGAAAAAGAATTCCAAGACCGGCGGAACATGCTGGCCGCCAAGGTTCATTTAAAGGGCGTGGTGAATGACCCGGAACTGGCCGCCATCCGCAAGGAAAACAAGCGCCTGCGGGATGCCATCGACAGTTTAGAGAGTGACTATGACGCGGTTCGCCGCTTGCGCGAGGACCACTTCAAGTTGGGATGGAAGCTCTACCTGGCCCAGCAGGACAAGGAAATCATCTAGCTTTGATAATTTAAAGCTTATGGAGCGAGTATTAAAAGTTAGACCAGGAAACTTCTTACAGAAAAAATCTCCAGAATGTACAGGCTTACAAAGCTTTAAAAAGCGCTACAGGACAACTTGCAGCGCTTTTTAGTTTTGTAATCAGACCGATATATTCCTGTAACAATTGAAAGATATACTATAGACTGTTATCAAATCAAACCACATGTTAAAGGAGAAAAGACGTTTCATGAAGAAAAAGAACCTGTTGATGACTACTTTGGCAACTCTGAGTGCATCTGGCGCCCTTTTAACTACTGGGGCCAGCGCTTTGGCTGACAGCTACACTGTTGTTAAGAACGATACCCTGTGGGGCCTGTCAAAGAAGTACGGCGTTTCAGTAAGCGACTTGAAGAAGGCTAACGGCGTTTCCGGCCACTTGATCTACGTGGGCCAGAAGCTGCAAATCCCAACTAAGTCAACCAAGGCAACCAAGACTGCTAAGACTAGCACTTCAACCAGTACCGTTGACACTACTTCAACGACCCACACGGTCGTAAAGGGTGACACTTTGTGGAGTTTGGCTAAGAAGTACGGCGTTTCAGTAAGTGCTTTGATGAAGGCCAACAACTTGTCAAGCAGCACCATCTTGATCGGCCAAAGTTTAAACTTGCGGGCTGGCATGACTACTTACGGGGTAAACGGCGTAACTACTGGCTCAAGCTCAACTGCAGCAAGCGCTAACACTGCTTCATCAACCAGCACGACTGCTTCCAGCCAGGCGCCAAAGGACAAGAAGACTGCTACTAAGGCGAAGAGCACTACTATTAACACTAGCAGCAATTCCAACACCAGCACTAGCGCCAACACTCAAAGCCAGTCAACTGCATCTAACAGCAGTGCGTCCACTACGACCAACACTAATACTGTAGCATCAAATGCTAACACTACTTCAAGCACCAACACTGCAGCAAGCAGCAGTCAAGCAGTCAGCCAGGCACCAACTGCTTCAACTGCAACTACAACTGCCTCAGCCAGTGCCAGCGCGATTACTTCATACGCTTTGACCTTCCTGGGCGTGCCTTACGTTTGGGGCGGGACCACGCCAAGCGGCTTTGACTGCTCCGGCTTGGTACAATACGTTTACAGCCACTTCGGCATCAACCTGGGCCGGACTACTTACACCCAGCAATACGCCGGCACTAAGATCAGCGTGGCCAGCGCCCAAGCTGGTGACCTCTACTTCTGGGGTTCATACGGCTCAGCCTACCACGTAGCCATCGCCTTGGGCGGCGGCCAATACGTCATGGCTCCAGCCCCAGGCCAAAACGTGATGACTGGCAGCGTGTCATCATACACGCCAAGCTTTGCCGTTCGCGTTTTAGGCTAAAAATTTCCCATCGATATCAAACAGTTTAAGCAGCGTCAGCCAGCCGGCTGGCGCTGTCTTCTTTTGCCTGGCTATAATTAAAGGTGTACTATTTTATTTATAATCGCTTTATTTAGGAAAAATGTGTAGTCTTTAACAAGTTTTTGTTTTACAGCTGATTGCTAATGGCTACTTTGCTACCTGGCCTTTGTGCTTGATTGTAGACAATTCTCCCAAGTGGCGCTTGTCCGGACCAGCCAATGGCTTTTTGGGCTTCATGGACCGGGTGGCCAAAAGTGTTTCCTGGCCGCTCTTCCTGGCCTACCTGCTTTTGCTAGTGATGATCGTGGTCGCCGCTCTTTGGACTTACTTCTTTGAATTCAAGCAAGACAAGGTAAAACAAGCCTGGTAGAAGGTTGTCTGGTTTTTGCAGCTGATCATTAATGAATTCGCTTGTCTGGGCTTGGCCTCGTCACTGACTATGCAGGTTTATGATAGTCAGCAAACATGGACAATTATTTTTGACCTGTTCATGCTGTTTATCGTAGTTATTTTTGCTTTTGCCTTGACGGAAAAATTTACTAACCGCGGGGGAAACAACTAAATCGCAAACGAAAAAGCAGCCGTGAGGCTGCTTTTTGCGTGTAATTAAATTTGCGGGCCACGGAAGTTGGCTAAGAACTTCTGTGTCTTCTCGCTTTGCGGATGGTTGAAGATTTCATCCGGGCTGCCTTGCTCAGCCACGTAACCGTCGCTCATGAAGAGGACCTGGTCGGAAACTTCCTTGGAGAAGGCCATTTCGTGGGTAACCACGATCATGGTCAAACCAGTCTTGGCCAGCTTCTTCATGGTTTCCAAAACTTCCCCGACCATTTCCGGGTCAAGGGCACTGGTCGGTTCGTCGAAGAGGAGGATTTCCGGGTTCATGGAGATGGCTCTGGCAATCGCTACTCTCTGCTTCTGCCCGCCGGACAATTGGCGGGGCTTAGCATCAATGTATGGGTCCATCCCAACGGTCTTCAGGTTCTCCAGGGCAATCTTCTTGGCTTCTGCCTTTGACCGCTTCAGAACCAGTTCCTGGCCGATCATGCAGTTTTGCAAGACGTTCTTGTTTTCAAAAAGCTCAAACTGCTGGAAAACCATGCCGACTTTGGACCGGTAGCGGGGGATGTTGTAGTTTTCATCCAGGATGTTCTGGTCATGGAAAAGAATTTCCCCGCCAGTTGGATCTTCCAGCAAGTTGATGCAGCGGAGCATGGTTGACTTACCGCCACCGGAAGGACCGATGACCGTCATAACCTTGCCCTTGTGGACTTCAAAGGAAATATCCTTCAAAACTTGGTGTTCACCGTAAGCCTTTTGCAGGTGCTGAACGTTTAAAATAATTTCATTATCCTTGTAATCAGCCATTTTTTACTTGTCTCCTTCCTGCTTGCCGACTTGAACTTGGTTGGCCATCATGTTGTAGTTTTCAGGACCTTCGATGTGCTTTTCAATCAAGTTGAAGATCCGGGTGATCGTAAAGGTCAAGAAGAGGTAGATGACCGAGATGACCAGGTAGGTTTGGAAGAACTGGAAGCTCTGGCTGGCAATCGTTGAACCAACGAAGAACAGTTCTGATACTGAGATGATGCTCAATACGGAAGTGTCCTTGATGTTGACGATAAATTCGTTGGTGATTGACGGCAGGCAGTTCCGGATAGCCTGTGGCAGGATGATGTTCCACATTCTCTGGTTGTGGGTCATCCCCAAAGCACTGGCGGCTTCAAACTGCCCCTTCGGCGTGGAGATGATCCCCCCGCGGATAACTTCGGCCAGGTAGGCCCCGGTGTTGATGGAGACGATGATCAAAGCGGCAACCGTTCTGTTCAGGTTGATGTGCCAGAACTGGGCGATCCCGTAGTAGATAACCGCGGCTTGTACCATCATTGGCGTGCCACGGAAGATTTCAACGTAGACGGACAAGAGCCACTTGCAGAAGGCTAACAGGCCCTTCTTGAACTTGTTCTTTGGTTCTGGAATAGTCCGGACGATGCTGACCAGCAAACCGATGAAGATACCGGCGATGGTGCTGACCAGGGAGATCAAGAGAGTCATCCCGATCCCTTCTAGGATCATCTGCCCGTAGTTCTTCAGCATGGAAACCAGCCAGTTTTCCTTCTTGGTGCTGGTCTGTGGCTGCTGCTGCACGGCTTCCTTCATCAGCTTGTTTCTTTCTGAAGTGGAAATGCCGGCCAAAACCTTGTTAACCTGGCTGAGCAGCTGGGCGTTGCCCTTCTTGACCCCGATGGAAACTTCCGCGTCAGAAGAGGAGACCTTGAATCCCTTCATCTTAGACAGGTTGACCCCGGTAATGTTGGAGTCCACCATCTGGAAGGAAGTCAGTTCCGTGTCTTCAGCCACGTAGCCGTCGATCGTGCCGGCTTCCAGGGATTCCCGCATGGCGGCAAAGTCCTTGGAGGCTGGTTCCCGCTTGGCCCCTGGCAGCTGCTTGATCAGGTCGTAGTGCAGGGTCCCTTGCTGGGCAGTCAGCTTGGCCCCCTTGAAGTTAGTCAGGTACTTGGCCTTGGCGTACTTGCTCTGCTTGTTGACGATGACCACGAAGTTGGTGGTCCGGTATGGGCTGGTAAAGTTGATGGCCTTCCGTCTTTCCGCCGTCGGGCTCATCCCGGCAATGATCAAGTCGATCTTGCCACTGGTCAGGGCTGGCAAAAGCCCGTCCCATTGGGTCTTTTCCACGATAACCTTCTTGCCCAGCTTCTTAGCGATGATCTTGGCGATCTTGACGTCGTAACCATTGGCGTAAGAGCTGGTCCCGTCGATCTTGACCGCGCCGTTGGCGGACGTGGTCTGGGTCCAGTTGTACGGAGCGTAGTTGGCTTCCATACCAATCTTCAAGGTGCCGCTGGCTTGCGCCGGCTGGCTCCAACTGACAGCTAGGACAAGCGTCAGGACCGCCGCCATTAAGGCGCTGATCCAGCTGCTGTGCTTCTTCATCTGAATAAACCTCCGATATGCTTTTAGTAGTTATGAAATACAATAAAAAGCGGGAAAAAAGCCCCATTGCGGTATGCAATGAGGCTTGCTTTGATTCTGTAAAATTCAGTATGAATACCAAAAATTATAGCGCTCCCTAGAAAACTAGGACAGTCTGCAGAATTTTCTCCTGCAGCCCAACCAACAGCGCGCACGACCCCACTGCTGATTTCGGCGATGTCCCTTAATAACAAGGCTCAACACTGTCAGTGAGCTCCCCTTGCTTTTGTGAACGATCGCGACCTCTATTGTATTGGATAATTTTTAACTACATTTAGGCTAAATTACTTTTAAGAAAAAGTCAAGAAAAATTAGTTTCCTGAATTTTTGTGATTGCCCTTTTCTTATTTACAGCCAGCCGTGATCATCCGCCCAGTCCCGTTTCTTCATGCCAGAGACGTAGGGGTTGCCGGCCACATAATAGCGCAGAGGCGCCTGGGCCCAGGCCGGGTCAGCCTGGACGATCCCGATTCTGGGCGAAGCAACGATTTCTTTAGCCGGCTTTTTCTCAGTCAAGTCAATAACGAAAGGGGAGTCCGCCAAAGGGGCCAGGTCCCAGTTTCTTGACTTGATCCCCATGGCCTGCATTAATTTGGCCGGTCCATTGGTCAAAAGGACCCCGTCTTTGCCGCCCCGGTTTTTAAGCATTTGGTCTAGGCCCCAGACCGGCTCAATGGCCCGGATTAAGACCCCTTGGGGGTTGCCTTCTTCCTGGCAGGCGATGTCAAAAAAGACGTACTGCCGCTGGGAGTAGATGTAGATGGTCCCGCCGGCCCGCCACAGGCCCTCGTTAGCATGGCTTCTTCTGCCCCCGTAGGAGTGGGCGGCCCGGTCGTATATGCCCAGGTAGGCTTCGGACTCAACGATATAGCCGCCAATTTTTTCCCCGCCGGCTTGATAATAAAAGGGGCGGCCGATCAAATCCCGGCAGATCTCGCTGGTGGGCCGGCCGGTGAAAAAATTCCTGTAGTCCATTGCTTAATTAATCTTTCTAACTAAAATAGGGAATGTAGTAAAAGCTGTAATAAAAACTGTTTTTAAGAGAAAGCGTGCGCCTATGTCAACGATCAAAACTGTCCGTATCTACGCCAAAGAGCAGCCCGCCGGCTACCGGATCTTAGTCGACCGGCTCTGGCCCCGGGGAATCAAAAAAGAAGCCGCCAATTTAGACGAGTGGGAGAAAGAGCTGGCTCCCAGCCGGGACTTGCGGATCTGGTTTAAGCATGACCCGGCCCGGTACCCGGACTTCCGCCAAGATTACCTAGAAGAATTGGCAGACAATCCGGAATGGCCGCCTTTCGTGGAGCATTTGCAAGAGCTTTTGCAAAAAGGGGACGTCCTCTTTTTGTACGGGGCTAAAGATGAAGAACACAACCAGGCCGTAGTTTTAAAGGAGGCAGCTAAGGAAGCTCTGGCTAAACTTCCTTAAAGACCTCCAAGGCGTCACCGGTCAGCTGCTTGATCCCTTGTGCCGGGATCTCAGTCAAGTTGACGGCCCAGATTTTGGCGTCTTTTGCCGCGTAGCCTAAGAGACCGGCGAAGGGGTAGACAACGAAGCTGGTGCCGACGATCACGACCAGGTCGCTTTGCCGCATTTCCAGGATGGACTGGTTGACATTGGCCGGGTTGATACCTTCCCCGTAAAGGACGATGCCGGGCCGGATGATCCCGCCGCACTCGTGCTTGTAGCCCTTGGCGTAGTCCTCATAGCTGACCTTTTGCTTGCACTTGGAGCAGTAGATATCGTAGAGATTGCCGTGAAATTCGGTCACGTGCTGGTTGCCGGCTTGCCGGTCCAGGGTGTCGATGTTCTGGGTGACGAGGGCCCCTTTTTCATTGCAGATGGCCGCGATCTTTTCGTGGATCAGATTTGGCTTGGCGTCCGGGAAGTACATGTTTTGCATGACGAAGTCATAAAAAAGCTGAGGCCGGTCATAAAGGGTCTCCTCGCTCAAGATGACTTCCGGGGGCTCACTGACCCCGTTGTAGATGCCAGTCTTAGACCGGTAGTCGGGGATGCCGGAGTGGGTTGACACGCCTGCCCCGGTCAAAAAGATAGGGTGCTTGGCCTTTTTTAAGTCTGCTTTAAATTCCGCAAGTTTTGCTTGGTCCATTTTTTGCCTCTTTCTTAAAAAAACAGCTGATGCCTTTTGATTCCATTATAAGCGCTTGGTTTGCTATAATTAAGCTACTAGTTGCAGAAGATATTATATTTGAGGTGAATCCATGGACACGTTATTTTACTTGGTCGCCGACACCCTGCTGGCGGCCTATGCCGGCTACAGCTGGTACAGCCAGGCCACAGTGATCCTGCGGGCCCGCTGGCGGATGACGGCGGTGGTCATGCCGATCCTATTGGTCTGGCTGGGGGCCAGCTGGGGCTACCTGGAACTGGGAACTCCCGGCTTCATCGTCTTCCTGGCCCTCTTCATTTTGACGGGGATCCTGGAAGCCACGTCGGGCTTTGCTGACAAGCGGGTGATTTTGAGCGGCTACTTCCGCCGGACTTTGAAATACAGCGAAATCAGCCAGGTGATCCTGACCGCGGCGCCGCCGGAAGTGGGCGACCTGTCGATCGCGGCCCTGGAAACCAGCCGCCACCAGATCTACTACCTCCGCTTCAACAAACAGGTCAGCGATGTGGTCTCTTTCTTGATGCAGCGCCTGGAACGCGGGGTAAATATTGACGTAAGAAAAATGGGTTAGTCGCGTGACTAACCCATTTTTATCTGCTCTAAATTTCTGCTTTCTTGTTTTATTCTCTCTTGTTCTTTTTTATAAAATCGGGGACAAGAGGCGGGAGAAGTTCTGCAGGGACCGCAGCCAGCGGGACTGCTTCTTGATCATCTCCGGCGTGAGGAGGGTTGACTGCTCCATGTCCTTTTCAAACTGGTCGGACATCTCCTTGTTAAAGGCCCGGTCGTAGACGAAGACATTGTCTTCAAAGTTCAAGTCATAAGACCGGTAGTCCTGGTTGACGCTGCCAACAGTCGCGTACTTGTCGTCGACGATAATGGTCTTGGCGTGCATGAAGCCGTTGTTGTAGGTGTAGACCTTGACCCCGATCTTGACCAGCTGGTTGGCGTACCACTGGGTTGCCCGGTAGATGAAGGGGTGGTCCGGCATGCAGGGGATCATGATCCGCAGGTCAACCCCCGAGCTGGCCAGGATCTGCCAGGCGGCAATCATGGCCTCATCTGGAATCAAGTAAGGAGTCTGGATCCAGACCCGCTTTCTGGCCAGCATCATCAAGCGGACCAGGCCGTTTCGCATGTAAGGCTCGTCGTTGTCGGGGCCGTCAGAAACAACCTGTACGGCCATGTCGCCCTTGGAGATGTCGTTTTCATCCAGGTCAGGGAAGAGCTTCTCGTCAAAGCTGATCAGTTCTTCTTCCTTGACGGCGGAAGCGTTCCAGTCCATCACGAATCTTTCCTGCAAAAGCAGGGAGGCTGACCCGACCAGGCGGAGGTGGGTGTCCCGCCAGTAGCCGAATTTTTTCTTTCTGCCTAAGTACTGGTCGCCGACATTGAAGCCCCCGGTCCAGGAGGTAACCCCGTCGATGACCACGATCTTCCGGTGGAGGTGGTAGTTGATCCGGTTCCGGGAAATCATGTTTCTTGAGGTGATGAAAGGCAAAACGTCCCCGCCGGCTTCAGTCAGCTGGTTGAACCAGCTCTTGGAGGCCCCGAATGACCCCCAGGCATCGTAGAGGACCCGGACCTGGACCCCCTCCCTGGCTTTTTGGATCAAAAGCTTGAGGAATTCGTTGCCGATGGCGTCGTTATAGATGGTGTAGTATTCGACGTTGATGCTGGACTTGGCCTGGCGGATATCGGCGAAAAGGTCCCGGAACTTGTCGTGCCCGTCGGTGTAAAGCTTGAGCTTGTTGTTTTTGGTAATGGGCGACTCCTGGTCCTTGTCCAGGTACTTGATCAAGATGTGGGCGCTGGGGGAGGTGTCGCTTTGGTCAATTTTCGCCGGGGCCTCGGTGATCATTTTTTGCACGTTGGAGAGGCCGTTGTGCTTTTGCCGGTTGATGGCAAAAAGTTTTTCCTGGGAAATCCCCCGGCCGACGAAGCCGTAGATGATGAAGCCGACTACGGGCAGGATTATCAAGACGATCAGCCAGGCCCAGGAGGCGGCCACGGACCGCTTTCTGTGGAAGACGGTCCAGAGGGCCAGGATGGCGTTGGCGAAGAAGATGATGTGCCAAATATCGATCCAAGAGATGGCAGTCACTTTAAAGTCCTTTCTTGATTTTATCTAAGCCTAAAAAGCGGTTTAGGATGCCGATGACGAAGGGCTCGTCATGCATCTGCGAGTGCTCGGCGTTGTCGCCGAGGACCTCGACTTCCTGGTAGTAGACCGCGTCCGGGGCCAGGATATAGCGGATGCTTTTGGCGGAAACCACGGAGATAAAGCGGTCGGAATTGGTCGTGTCCAGGACGTTGCCGTAGATGTTCAAAACCCGGATGCTGGGGCTGAAGTCCCGCCGGTGGCGGAGCATGTAGGAATAGTGCGGGGTCATCATGCTGGGCCGGCCACTTTCCGTCAGGCGGTTGACATTGGGGATGTCGCCCAGGTACATGACTCCGTTGAAGGGGCCGGCGATCAAAGCGCAGCTGGCCAGGTGGGGGAAGTTTTTCCGCTTGGCATAGCGCATTTCTGTAGCGACCACGCAGGGCGAGCCCAGGGAGTGGGCCACGGCGCTGTAGCGCGTAAAGACGTATTTTTTGCTCAGAAAAGGTAGGATGAAGCTGAGATAGTAGTTGATGGCCTGGTAGCCGGCAATCCGGTCCTTGAAGGTCAGCTGGATGATGGGCTGCTTGTCGCCGGTATAGCATCCGGTCAGCTTGATCCGGCCGGTTAAGTCAGCCTCGACTTTCAAAAAGCGGGCGTCCCCTTTTTGCTTGAGGGCGTCTTCAACCATCATCCTGGTGGTGTAGTCCCCGCCGCGGAAGCCATGGACGTAGATGATCGGAACCTGGTCAGAGCCGCTGGCCTGGTTTTCAGCCAGGTCGCTGACCCGCTTGCCCCGCAGCTTCAGAAAGATCCGGAAAGGCGGAAAGGTTGCCAGGATGCCCAAGAAGAACATCATGGCCAGGGAGTGGTCCCGGGGATCGGGATTTTTGCCGCGCTTTTTTTCAGTTTCTTCAGCATACTTTTTAGAATTAAAAAAGAGCACAGTCGCCTCTCCTTTCTCTGATACAATTGCTTTGTAAACATCATACCATTTTAGCAGAAGAGAGGGAGCAGATGAAAGTTTATGTTGTTAAAAAAGGCTACCGGCCAGGAATCTACCACAGCTGGCCTGAAGCTGAAGAGCAGGTCAAGGGCTTTCCCGGGGCAGAATACAAGTCCTTCAGTAATATAATGGAGGCTCTGGACTACCAGCAAATGGACCCGGAAGACGCCCTCAAGGCCTTGCAGGGAGCAGAGGACAAGCTGCAGGCCGCGATCGCCAAGGTCAGACAGGGCGGAAGCAAGAAAAAGCAGGCTGAAAGCCAAAAAGAATTTGCGGCAAGTTCGAAGTATGCCGCCCACATTTTTACCGACGGGGGCTGCCGGAACAACGGGACCCACAAGGGCGGGCACGTGCAGGCAGACGATAAGGCAGCCTGGGCTTATTTGATCGAATATGGCGGCCAGAAGCTGTCCGCCAGCGGCGGCCGCTTTGGGGCCACCAACAACGAAATGGAAATGACCGCTTTTTTGGAAAGCCTGAAGAAGCTGGAAGAACTGGGCTTAAATGACCAGCCCCTCTTGTTCTCTTTAGACTCCCAGTATGTCATCAAGGCCGTCAGCGACAATGACCAGGGTCCGGCCTGGATCAAGGGCTGGCAGAGACGGGGCTGGAAGAAGGCGGACGGGTCACCCGTTGCCAACCGCGAGCTCTGGCAGGAGATTGCCAAGGAAATGGCCAAGTTTGCCCAGCCGGAATTTGAATGGGTCAAGGGGCACGCCAACAGTGCCGGCAACAACTTTGTCGACGGCCTGCTCAACAAGTACATGGACCAGATGTAAGGCAGAGACAGAAAAAGCCCGCGCCAAGCGCGGGCTTTTTGCATGAATATTTAATTTTTCAGATATCGTCCAGCTTCAATTGCTTCATTACTTGCTCAAACTGGAGAAGAGGCTGGTAAAGAAGTTGACGATGGCGTCCCAGAGCTTCTGCAGGGCGTTGCGGTTTTCGCTGGTGTTCAGCTTGGCAAAGATCCCCTTGGCGCTCTTCTGGATGGCGCTCATGGCCTGGCTGGCCTGCTGCTTGAAAGAAGAGGAGTTGAGGGCGCCGGAGTCCCGGATCTCAACCAGGATGTTGACGATCTGCTGCTTCTGTTTGTTGGTGATCACGTTGGTCAGATTGTTGTTTTCGATCTGGTTGTTGACGATCGTGATGATCTGGTTCTTGGTGATGTTTGAGCCTTTTTGGGCCATTTCCTTCTTGGCCCCGGCCACGGCATTGTTGAGCTGGGCGTCAGAGTAGCCGTCCTTGCCCTTGTTTTCCTTGGTGATCCCGCTTAAGGTGTTCAATTCGTTCTGGGCCGCGGTGATCTGCTTCTGGTTCAGCTTCTCCCCGCTCTTGGCGTAGGCCTTGTAGATCCCGGCCAGGGCGCCGGAACCATCGATCGGGATCGCGGAAGTGACGTAGATGTTGGCGTCAGTGATCCCGGCCGTTATCGCCGCGTTTCGGTACTGGTTGGCGGTGATGGTAGTGATGTTGTTTTGCCCGTTGTAGTTGAGGATGCGGACGTTGATCCCGCTGCCGGAGCTGGTTTTTTCAATGGCAGCACTGGACCAGACCCCGGAAGAAGAGGTAAAGGAGCTGCCGGACGGGTTCAGGTAGGTAACCAGGTCGCTGCCCGTTACTGTCAAGGTGTTGTAGCTGCTGGAGTCGCTGAGGGCCCCCTTTAAAACGTCCAGGGTGCCTTGCTTCTGGCTGGCAGTTAATGACGTCCCCAGGGTAATAACCGGGGTGGTGTCTTCGGCGGCAGAGACCCTGCCAGCCGTCAAGCCCAGGCCCAGGAAGAGGGCGCAGGCCGTAATGATTTTCTTGATTTTCGTGTTCATTTTGATAAGTCTCCTTGCTTTCTGTTTTCATGCTCAGCCTATAATTATACTAGAGTTTGTTTTGGGGGTATCTCCCTTAGCAAAAATTTAAGCTGGCCCCGGCTGGCGGCAGATTCCTGGCGAAGATGATATAATGAAAAAGATAGATTTGGAGAGGGGGGATGCGGCTTTGCGAGCGAATGCCGATTTGAAGCTGACGGTCATCATGACTGTTTACAACCAAGAGAAATACCTGGCCAGAGCCTTGGACTGTTTGCTTGAGCAGAAGAACCAGCAGTTCAAGCTGCTGGTCATTGACGACGGCTCAACTGACTCAACCGCGGAAATCGCGGCCAGCTACCAGGACCGCTTCCAAGCCTTCGACCTGGTCAGCAAGGCCAATGAAGGGGTGGCCGCTGCCCGGAACTTAGGCCTGGACATGGTTGACACGCCGTATTGTATTTTTCACGATGGAGACGACTGGGTTGAGCCAGACTACACGGACTACTTTATCAAGGCTTTTGACCGCCACCCGGACGATGACATGGTAACCTGCGGCTATTATGTCGACCAGGCAGGGAAGCCGTCCGTGCCGATTACTAAACCGGTTGAGGGGGAATTGACCCGGCTTGAGGCCGTGTTAAAGGTCTTGGGCAGTGCCCATTCGCCGGTTAAGGGCTATACCTGGAACAAGTGCTACAAGACCCAGCTGGTCCGCTCCCTGCACCTGCGTTTTAACGAGGACCTGGACTTGATGGAAGACCAGGTTTTCAATATTGACTATCTGATGCAGACGGAAGGCTGCTACTACAGCTCCGTGCCGCTCTACCACTACTGGCAAAGAGCCGACAGCGCGGTGCACACGGTCAGCTGGGACCACTTCTGGAGCATCGTGGGGGCCAATATTTCGATTTACAAGAGCATTTTTTCTCATTTGTGGCAGAAAAGTCCTCAGCAAGCGGCCGCAAACCCAGGAATACCAAGGCAGTTATGTAAGGGAAAGGATCAAAGATGATCATCAAAGTTAATGGAGTCGATCTTTACTACCAAAAGCTCGGTCAGGGCCAGCCCCTGATCCTGCTGCACGGCCACCACTTGGACGGTGGAATGTACAGCAAGGTGATCGCGCCTTTGTCACTGTATTACACGGTCTATACCCTGGACATGCGGGGGCACGGCTTAAGCGGCGGCGACGGGGCTGAGCACTACCAGACTGAAGTGGAAGACCTGGCTGTCTTCATCAAGGAGCTGGGCCTGGAGCAGCCTTACGTCTTTGGCTATGACTCCGGCGGTCTGGTGACCCTGATGCTGGCCAGCCAGCAGCCCGATATCCTGGGCAAGGCGGTCGTGGCCGGGGTCTTCATCGACGGCCGGGGGATCCACAAGTACCACTACTTGACTGAAGGGGTCCGGCGCTTTCTCCGCTTTGACCACGACAGCCGGGTGGAACTTACCGAATCCTACATGGAGCCGGAAAGCCTGGAGCAGATCAAGATTCCCGTTCTCTGCGTGGTCGGGGAAAATGACTGGGTCAAAGTCGAACATGTCCGCTGGTACAGCAGTTTGATTCCAAATGGCCGCCTGGCCTTGATGCCGCGGCAGACCCACGATTCCTACGTGGTAGACAGCTTGAAGATTTTGGACTTGATCAAAGATTTTTGCAAGGAATAATGAGAAAAAGGCCGATCAAAGCCGAACCTTTGCTATAATGTTACTGTAGATACAATAGATTCTGTTAATGAGAGTGTTTCTAAGGGGCTCATGATGACATCAATTACAAAAGAAGAAATTCATAAGTTGCTCAACCCGATGAAGGTGATCGGGCTCGGCGGCAATCCGCAATTGAACGAAAAGGTAGCCAGCACGCTGGGCGTTCCTTTGATCGAAACGACGGTTCACCACTTCAGCGACGGTGAAATCCAGGTCAACGTCGCGGAAAGCGTCCGGGGCTGTGACGTCTTCGTCATCCAGTCAATTCAAGATCCGGTCAATGAAAACTTTATGGAACTGGAAATTGTCCTGGATGCCCTCCACCGGGCTTCAGCCCACACGGTCAACTGCGTGATCCCGTACCTGGCCTACTCTCGTTCCGACACCAAGACCCGGTCCCGGGAACCAATCACGGCCAAGCTGATTGCCAACCTGCTCCAGCTGACTGGGATCGACCGGGTATTGACCATTGACTTGCACGCTTCCCAAATCCAGGGCTTCTACAACGTGCCGGTTGACCACCTGCACGCGATTCCGCTTTTGGCCCAATACTTCTTGGACAACGGGATTGCGGCCAAGGATGACGACGACGTGGTCGTTGTTTCACCAGACCACAGCGGGACCAAGTTGGCCCGGGTCTTCGGCCAGTATTTCAACGCGCCGATCGCCATCGTTGACCAGCGCGGGGCCCGCTACGATGACAGCGTCCACGACATGATCGGTGACGTTAAGGGCAAGAAGTGCATCATCGTTGACGACTTGATCGACACTGGCACCCGCCTGGCTTCATCAACCCGGTCAGTCTTCGCTGCCGGCGCGACCAAGGTTTACGTGGCTGCTACTCACGCCTTGCTTTCACAAGACGCGATCAAGATCTTGAATGGCTTGCCGCTGGAACAAATTGTGGTTACGGATACCATCAAGCATGAAAAGTATCCTGACCGGATGGTCCGGATCTCAGTTGACCGCTTGCTGGCCAAGGGGATTGACCATATTTACAACGATCGCTCAATTCACGATATTTTTGATGAACAAAACCGCTTCACCAAAGACTAAAGCGCGATAAACCGGGAGACCGCTAGCGGTCTCCTGTTTTTGTTTATTTTGTTTTTTGGAATGTGACTTAATAAAACAAGAAAAATAACAGATTTGGGTAAAAGCGAGTGTTATTGCTGTAATTAGGCAAGGAAACCTTGCTATAATTTTATTAACTTTTACAGAGAGGATGAGATGATCGATGGCAAGAAGAAAGAACATGCAGAGACGGCGGGAGATCTTGTACAACACCTTCCGTTTGATCAGAGCCAATGGCTTTGACAATGTTTCCTTGCAGATGATCGCGGAGAACTCAGGAATTTCCAAGTCTCTACTGCAGTCTTACTACCCCCACAAGGCAAGACTGATGACTGACATTGTCAGAAACTTTTTCAATACTATGTGGGACCAGGTAGAAATAAACTATCACGCGCCAAAGAAGAACCCCTTCACCCGGGTGGACGCTTTAATCTACACGATCGCGACTTTGGGGATGGCGGACAAGGGCCTGGACCGGGTAATTACGGAGGCTTTTACTGACCAGACTTCTTTGGACAACTGGAGCCGGATGCTGGACGAATGGATGAAGTCCCACAATGCTTTTTCCGAATACAGCAACTACCAGGAAATCCGGACCGGGATTGCCTTTATCATTACGGGGGTTGGCCGTTTGTATCGTGACCGGGGAAAGAACGGTCTTAACGCCGAACAAATGGCGGACTACTCAACCAGTTCCCTGATGTACGGCTTTTTGCACGCGGATCCTGCGGAAATCGACGTCGTATTGGAAGAAGGTCACAGGATTATTGACGACATCAACATCGGTGAGGTCCACCACGCGATCGACACCATGTTTGACGAAGGCAAGGTAATTTACAGTTAGGAGCAAGCGCATGGCAGAAAGTTCCGGAACGCACAGACGAAGGAACAACTATGAAATCGTGGACAACGCGTTAGAATACAAGCGTCCCTTGGCCTTTATAGCTTTCTTATTGCTCAGCTTGCTGCTGGCCACGGGAACTTTCCTGAATCCTGCTTTTATGAAGGAGACCATCAAGACCGACAGCAACACGGTCGTGATCAGCCAGCAGGTCAACAGCCACTTCAACCGCCTGGCCACAATCGTCAACGGGTCCAGCGATGAAAAGAACTTGATCTCTGATGACCAGGCCAGGGAAGTTGCCGACTTGATCATCGACTACAAGTATGGCTGGCACTTTATCCATACCAGCAATCTAGACCTGGCTAAAGACATCAAGGCCGTGATCTTGAAGAAAGAGCAGACCGATACCGACCAGGTGACCGCTATCCGCAAGAAGCTGAAGAAGCAGAGCGATTCTTCAGTCTACATCGTCAGCAATGCCTTTGACCTGGCCACGGTCATGTTAGAGGCCAACTTGATCACGATCATCCGGATCGTCAACCTGCTGGTGATCCCGCTCTGTCTGGTGGCCGTAGTCTCGATTTTGCGGGAGGCTTTTGCCAGTCACACCAAGCGGGCAGTGGTTCACGACATGACAGCCGGGCTGATGTGGACCGCCTTTTGGTTCATCCTGGTTTACGGGCTCTTGGCCATGGTGCCGATCTTTATGGACACTTCGGTGATTACCGTGGCGGACCTGGGCTACTGGCTGGAAATCGCCAGCGGGGTCTTCCTGGACTTCGTGATCGCCGGCGTTATTTTATACGTGGTCAGTGCCATTCCATGGCAGGCGACTTCAAGATAGCAAAAAGGCAAAGCCGTTGGGCTTTGCCTTTTTAGTTTGCTATTTAAGGATGGTGATCTGCTTGCCTTTGGCGGCGATGTAGCCATCCTTTTTTAATTTGGAGAACTCCCGGCTGAGAGTTTCAGGGGTGATGCCCAGCAGGCTGGCCAGGTCCTTCTTCTTCAAGGGAAGGGTGAAGGTGGCGGAGCCGGCTTCGTCAGCGTAGTCTTTCAAGCTGGCGTAGAGGCGGGGGCCAGCTTCCAGGCTGTTGCGGCGCATGGCGTTCTTTTGCGCGCTGACCAGGCGCTTGCCGAATTCATTTAAGAGGTACAGGGAAAGCTCCGGGGACTTGAGCAGAAGGTCCTGGAAGTCGAAATAGTTGATGGAGCAGACCGTGCTGTCTTCCAGGGCTTCGATGAAGAGGTCATCGTTTTCCGTGTCAAAGAGGTTTTCCTCCCCGTTGATGTCGCCTTCCTGCATCAAGCTGAGGACCTGCTCATGGCCGTCGGGGCTGAGGCTGTAGACCTTGGCCCGACCTGAGTCCAGGGACATGACTGACAGGCGGCCGTCGCCCGGGGCGTGGATCAAGCTCCCTTTTTTAAAAAACTGCTGGTGGGTCGAAATGTGAACCAAGTCCTGGCGCAGGTCCAGGGGGAGGTTCTTAAAAAACGGCACGTGGCTGATACAATTTAATTCGTCGTGTTGGTGCATGGTTGTCTGCTTTGCTTTAACGTATACTTTTACTTGTTTACTTCTTCTTGCTAGATTTCTTATTAGACTTTTTGGCAGCTTTCTTACTGGTCTTTTTAGATTTAGCCTTAGCTTTATTACTAGATTTTTTTCTAGACTTCTTACTAGACTTTTTCGCGGACTTTTTACTAGACTTCTTGCTAGATTTCTTACTAGTCTTCTTAGTTTTGCTGGTCGTCTTGACTGCCTTGGCATTGGTGATCTTCTTACTCTTGACGGTGGAGATGTTCTTGCCGACCTTGTAGAGGTACTTGGCCAGGCCCTTGTTTTGCAGGTCCTTCTGGCTGACCTTGTTCTTGCTCTGGGTGCTGGAAGAGGAGACCTTGCTTGAATAAGTCTGGCTGCTGCTCTGCTTGAAGAGCTTGAAGCTGTAAGTGGCCAGGTTACCGGCTCTGACCGTATACTTGTGGCCGGCCGTCAGCTGCAGCTTGCTTGGGTAGTAGGTGATCACGGTCTGGAAGTTGCCAAAGCCGTACTCGCTGTAGTTGGCCACTTGGCTGGCGGTGACCGTCTTGCCGGTGTCATCGTCAGTAACGGTGATCTTCGGGGTTGAGGTCACGACCTTGTTTGAAAAGTATAAAGACCAGGCGATGTTTTGTCCATTTAAAAGCTCCAAGGGGAAGACCCCGGCATTTGGATAGGCTACCATTTCCCGGCTGGCAGTTCTTGCGCTGTCGCCCACATTCAAGACCTGGTTGACTGAGTAGCGGTAGCCGTTGGTCCCGTAAGCTGCCCCGACTGAAATCTTGCTTAAGCGGGTGGAAAGCGGCCAGGCCCGGTGGCCGGTGTCAGAACCCGACAGATTATAGCGGTCGGTCAAGAGGTCGGTCACGACGTCTCCAGCCGTCTGCGGGCTGGCATTGAAGTTGAGGTTGGCCGAGTTGGAAACGTCCTGGGCCAAAAGCCAGTTCTTCTTGGAAATGTAGCTTGGCTTCTTCTCATTTGGCAGCCCGTGCTGGTTGACGAACGGGTTGGCATTGATGGCGGCCATGACGGCAGCCGTCGTCTGGGCATTCTTGTTGCCCTGGCTGCTTGTTTTGACGGCAGTTAAGCCGAAGAGGTCACGGTAGTAGTTGATGTAGGCTACTTGCTCGTTGATGTAGCTGGACTTTAAGCTGCCCGCCTTGAACTTATTCTTCAAGGAAGGCTTGCTGGCATAGATATTCTGCTGGGGGTAGACGGTCTTGCTCAAGGCCTGGTATTCTCTTTGAAAACGGAGAACCTCTGCCTGTTCCTGCGGCGTGAATTCCGCCGCCTGGACAGCCGTGGGCCCTACTGCCAGAAGGATTGCCGGCAGTAAAAGCAGTACTGGTTTATGACGCATCTTCATCAACCCCTTTCTAGTTTATATTATAGCTGATTTTTTGCTTTTTTCGCCATTAAGCGCTTGCACTAAAAAAACTTAAAATTTGCCCGGAAAGTGCGCCAAAAGCCCGAGTTTTCGGTATAATACAGATTGATAAAAGGAGACGAAACAATGACGAAAAAAACACAAGTTGGTTTGATTTTTGGTGGGAACTCCTCCGAATACGAAGTCTCAATCACTTCAGCCGGCAACATCTACAAGGCAATCGACAAGGACAAGTTTGACGTGCACCCGATCTGGATCACGAACTCCGGCTACGTGGCCAGTGAAGCTGATTCATACAAGGTTCTGGAAGAGCCGGGCTACATGGTGGAAAAAAATGACAAGACGGCCAACCTTTCTAACTTGATCGAGCTGGCTTCCCGGCCGGAACTGGACGTGCTCTTCCCAATCGTCCACGGCAACCTGGGTGAAGACGGGGTCCTGCAGGGCCTCTTCCGCTTGATCGACAAGCCTTTCGTCGGGGTTGACGTTTTAGCGGCAGCCGTAACCATGGACAAGGAATTCACCAAGATCCTGGCCCAAAGAGCCGGCGTGCCGGTAGCCAAGTGGGTATCTATCAAGCGCTACGAATATGAGGACGCCAAGAACCAAAAGCTCAGCTACGACTGGGTCAGCGGCCAGCTGGGCACCAGCAACCTCTTCGTCAAGCCGTCCAACCAGGGTTCTTCCGTCGGCATCACTCACGTAACTGACGACAGCAACTACGCTGAAGCTTTGGCCGAAGCCTTTAAGTACGATGACAAGGTTTTGGTTGAAGAAGGAATCGTAGGCACTGAAGTTGAAACCGCCGTTTTGGGTAACGACCACCCGGTAGTTTCCGGGGTCGGCCAGATCATCAACGCCGACAATACTTGGTACAGCTACGAAAACAAGTACAGCACAGAATCAACCACGACCCTGCAGATTCCAGCCCAGATTCCGGCAGAAACCGCGGAAAAGGTCCAGGAAAACGCCTTGAAGATCTACCAGATCACTGAGTGCAGCGGCATGGCCCGGGTTGACTCCATGCTTAGAGAAAGCGACGGGGAAGTCATCTTCAACGAATTGAACGCCCTGCCAGGCTTTACCAACATCAGCATGTACCCGAAGCTGTTTGAAGAAGCCGGGATTTCTTACCCAGACTTGATCACCCGCTTGATCAGGCTGGCTGAAGAGCGCTACGCCCACAAGAAGACCCTCCTGCGCAAGCACGACTAAGAAAAAAGTACTTTGAAAATTTAGTTTTTTTGCGAAAGAAAGTCAGAACATGAGTGAGAAAAGTGAGCAGATGAAGACCAGTGAAGCCGCCCAGGCCCTTGGGGTCAGCGAGAACACCCTGCGCAAGTATTCGCAGGCGGTGGAGAAGGCTGCTTCACCAGCTTACTTTCCCCGGGTCAAGAATACCCGCCGCTACCGGCCGGAAGACTTGACAGTTTTGAAGCAAATGCAGGACTTGGTCAAGGCAGGGCAGAAGATCGACCAGGCGGCCCAGGAACTTTTTGCTGGTGAAAAGGAAGAAGCACCGGTCAAGACAGCCAGGTAAGACCAGCTGGAAGCTGCCCTGGCCGCCAAGGACCAGGAAATTGCTGAACTGAAAGAGCAGCTGGCCCAGCTGACAGCGGCTAAGGCAGCGGAAAAGCCGGAAGCTTCCCTTGATCCAGCGGCTGATGTCCTGGACCTGCCGGATTTTGATGACGGCTTTTTAGAAGATGAGCCAGTCACTCCGGAGCAGAAAAGGGCCCAGGTCGTGGCTGACATGGCCAAGAGTGACCAGGAAGTTCACAAGGAATTGCTCAGCCGGACCCAGGAGAACGCGGCCAAGGGGGCGCCAACCTACCGGACCCTGGCTGACATGCAGCTGGCGCCCAAGAAGACTCCCTGGTGGAATAAGATTTTCAAATAATGGCGTGATTTGCTAAATTATACTTAAAAATCAAAAAGGACCGCGAAAGCGGTCCTTTTTTTGCTTAAAATAATAAGGGACTGACTGTCACTTAAAAATAAGCAAAAAATGGAAAGGCAAATACAAAGAGGATGGAAACGAAAAAGCAGAGCATCCTGGCCGCCCTGGTCCTGCTGGCCCTGGGTCTGGGCCTGGCCGCGCTGACCTATTTTAAGACGACCGGCTACAAGAACCCGGTGGCGGTGATCACGGACACGAAGATCAAGGACCGCCTGCTGAAAAAAGAAACTGATATTTACGGCAACAAGGATGAAGAACGCCGGCAGTACCTGCACGTTCAAGTCTTGATCGGCAAGTACAAAGGGCAGACCTTTGAAACGGTCAACACCTACTACCCTTCCCAGCTGGTCACCCAGAAGTACCGGGCAGGCGAGCGGGTCTTCGTGACAGTGACTGACGGCAGCCTGGCCCTAGTTTCACCAAAAAGAGACTGGATCCTGGTCATGACCTTGGCTATTACCCTGGCCTTGATGGTGGCGGTAGTCGGCCGGCGGAGCTGGCACTTGATCGTTTCCATGGCTATCATCTGGATCCTGTTTTACTGCCTGATCTTGTGGGACGTGGCGGTCAACGGGGCCGGGATCATCTGGATGTTCTCCCTGGCTGACATCGTCTTCTCCTTCTTCAGCCTGGCTATCGTGCAGGGGGTGAACAAAAAGATGCTGGTCACCTGGCTGGCAACCCTGCTCGGGGTCTTTGTCTCTTTTGCCCTCTGCTATGCCGTTATCAAACTGACCGGGGAGACCTACCTCAACTATGAAATGGGCGACTATGCCACCCAGGACACGCGGGGGATCTTCATGGCCCAGGCCCTGCTGGGGGTACTTGGGGCAGTTATGGACGAGGCGACGGACATCGTTTCCAGCCTGTATGAACTGATCCAGCACAAGCCCGAGATCACCGTTAAGGAGCTTTTGGCCAGCGGACGGACGATGGGGCAGGAGATCATGGGGCCTTTGATCAATGTTTTGGTCTTGATCTTCATTTCTGAAGCCCTGCCGGAAACAATCCTGTACTTCCGGGACAATAACACTATCGCGACGACTTTTAACTTCACCATGTCCTTAGGGGCGACGCAGAGCGCGGTTTCAGCAATCGGGATCGTTTTGACCATCGTTTTTGCCAGCCTCTGCAGCCTCCTCTTTTTAAAAAAGCCGCAGAAAGGGGGTAAGCAAGAATGAGCAGCCTTGGCGCTTTAATCATCGTTTTGGCCATCTTGATGAACCATCATCGGCGGGGAAACCGGGATCCGCAGCTTCTTCAGCGTCTTGATCAACAGCCTCTTGCTGGTCCTGGTGGCCATGCTTATCTCCTGGGGCTTGAGCATTCCCATCATCACCGCGATTTTCGTGCCTCTTAAGCTGATCACGATTATCTTCCTGGGCACCCATGACTATACCGTGGCTAAAAATTCCTTCTATGCCTCTTTGATCGTCTTATCCCTCGTCAGCGTCTTGATCTTAGGCATCCAATACCTGGCCCAAGCCGCCGGTTTGGGGCCGGAAGCCGGGGAAATCCTCCTGGGTCACTCCCAGATGCCGGGGATCAGCTACGGGCAGATCGCCGTTACCGTGGCCATTTTCTCCGCCCTTGGGGCGGTGGCGGAAGCCGCCGTGTCGATGAGTTCGGGGATTTTGGAACTGAAGAAGGCCAAGCCGGATATTACGGAAGAGCAGCTGATGAAGAGCGGGGCAGCCATCGGCTACGACGTTTTGGGCACGGCCATGAACACCATCATTTACGGGATGTTTGGCAGCTTTTTGTCCCTCTTTTTATGGTATTACCGGCTCCACTATTCCTTTAGTGAGGTAATTAATGATAAACTTTTTGTAAACGAAGCACTGATCATCATGTATTCTCTGCTCGGTGTGCTGCTGACGGTTCCTTTGGCGACCTTTTTGCTGGCCAAGGGGATGAGCCGGCAAAGTGAGGCAAAAAATGGAAACGAAAAAACTAGAGATCAAGAACTTTAACGGCCGGACCTACCAGCTGCAGACCTACACGGTTAAAAGCAGCCACGCTCCCTTAAACAAGCTCCGCCCCCTGGCCATCGTCGTGCCGGGCGGCTCCTTCACCCACCTCTCCGTCAAGGAAGGTGAGCCGGTGGCCCTGGCCTATGTCAGCCGGGGCTTCAACGCCTGCGTGGTCAGCTACAATCTTTTGCAAGATGAAGGGATGATCTATCCTGATGCCGGTCTGGACGTTCTCAGCACGGTCAACTACTACCACGAACGCGCTGCTGAATACCAGATTGACCCAAACAAGATCATGACCATTGGCTTTTCCGCCGGCGGCCATATTGTCAGCGCGGCCAACTACCTGGCTGATGAAGCTGAATACCAGGAAAGGTATGGCTATGAAGGGGACCAGGTCCGGCCAAATGCCACGATTCTGGGTTATCCTTTGACTGACGTCCACAAGGTGGCCTTTGAAATCGGCGGCCGGGCTGACGGGGCCCTGCCGCCTGACCCCAAGCTGGTCGACACGGCCCTGGGGGTAAGTCCGAAGACGCCGCCAACCTTCATCTTCCAGTCCTGGAACGACCCGATCTGCCTGCCGACCAATGCCATGGCCTATGAAGAAGCCTTGTTCAAAAACAAGGTCAAGTGCGAGGCCCACATGTTTGACATCGGCTACCACGGCTACTCTTTGGCCACTCCGGAACTGTCCACGGAAGACATCTTCTGGCAGGGCAACCCTCACACGGCCCGCTGGTTCAATTTGAGCCTGTAGTGGCTGGACCACCTTTTCTCCGGGATCAACTACGATGAAAACAAGTACAAGCTGACCCAGCTTTACCAATAGACGAAAAATGGATTTATTATTTACGAGAGCTGCCCGGGCAGCTCTTTTTTGATTTGGTTAGCGATAACTGCTTGCATCCGCGCTTGTTTTTCCTATACTAAACTTGTAGAAAAAAATGGTAGCGCTTCAGCTGAATTTAGATGAGAGTGGAAGCAGGCCGTGATCTACCAGATCTATCCCAAGTCCTTCCAGGACACAAACGGCGACGGGGTCGGCGCGACCTGCGGGGGATCATCAAGCGGCTGGACTACCTGCAAGACCTGGGCATCGACGCCATCTGGCTCTACCCGGTCTACAAGTCACCAGGCGTGGACAACGGCTATGACATCGCCGACTACGAAGCCATCGACACCCCCCCAGTACGGGACCATGGCGGACATGGAAGAATTAATCAGTGAGGCCAAGAAGCGGGGGATCCGGATCGTGATGGACCTGGTGGTCAACCACACCTCTGACCAGCACCATTGGTTTATCGAAGCCCGGAAAAATCCTTCCTCTCCGGAACACGACTACTATGTCTGGGCAGACAAGGCCAATGAGCTCAAGTCGGCTTTTTCCGGCAGCGCCTGGGAATATGACGGCCAGGTTGTCCAGTACTACCTCCACCTTTTTGCCAAAGAGCAGCCGGACCTCAACTGGAAGAACCCGGCCCTAAGGCAGAAGGTCTACGATCTGATGAACTTCTAGATTGACAAGGGGATCAAGCACCGGAAAGTATGGCGGACGATCTTCATCGTGGCTTACGCTGTACCGCAATTCGTTTCCTTGCTGCTGATCGCGCAATTCCTGGACGCGCAGGGGCCTTTGAACACTCTGTTGCAAAACTGGGGCTGGATCTTAGGGCCGCTTCACTTCATCGACAATGAAGATGCCCCTTGGGTAGCCCGGCTGACGGTTATCATCGTCAATATGTGGATTGGTATTCCGGTTTCCATGCTGGTTTCCATGGCGATTATCCAAAACCTGCCACAAGACCAGATTGAAGCCGCGAGAATCGACGGGGCTAACGTCTTCCAGATTTTCCACAACATTACCTTCCCGCAGATCCTCTTTGTCATGGGTCCGTCCTTGATCCAGCAATTCATCGGCAATATCAACAACTTCAACGTTATCTTCCTGTTGACTGGTGGTAAGCCAATGAACAACGACTACAACGGTGCCGGCTCAACCGACCTTCTGGTCAACTGGCTCTACAACCTGACCTTCGGTCAGCAGCAGCGCTACAACGCCTCAGCCGTTCTGGGCATCTTGATCTTCATCTTGAGTGCGACGATTTCCTTGATCGCTTACCGTCACACCACTGCGTTTAAGGAGGGATAAAATTGAAGTCTTACTCTAACCAGAGAAAAGTATCCCTTTTCTTCAGATATTTATTGCTGACGATTTTAGCAATTTTGTGGCTGATCCCCATCTTCTGGATCGTTTTGGCCAGCTTCTCATACAACGACACTGGCTTTATCTCAACTTTCTTCCCTGAAAAATGGACCTTCCAGAACTATATCGGGATCTTTACCAACTCCCAGTTCCCATATCTGCACTGGATTATCAACACTTTGCTTGTGGCCATCATTTCCGCCACTCTGTCAACCTTCTTCCAAATCTCGGTTGCTTACGTCCTGTCCCGCTTACGCTTCAGACTCCGCAAGCCATTCCTGCAGATTGCCCTGGTTTTGGGCATGTTCCCTGGTTTTATGTCTATGATCGCCCTTTACTACATCTTGAAGGGGCTGAATATGCTGAACCTGGGCGGCTTGATCCTGGTCTACGTCGGTGGTGCCGGCCTTGGCTTCTACGTTGCCAAGGGTTTCTTCGACACTATCCCGCGGTCACTGGATGAAGCAGCTGAACTGGATGGTGCAACCAAATGGCAGGTCTTCACTAAGATCGGCCTGCCGCTCTCCAAGCCAATGATCGTCTACACAGCTTTAACGACTTTCATGGCACCATGGGTAGACTTCATCTTCTCCGGGATCATCCTCTCAACTTCAGGTGACCCAAAGACCTACACGATCGCGTATGGTCTGTACAACATGCTTTCTTCTTCAAAGGGGAGCGCGACGACCTATTTCGCCCAATTCGTGGCCGGCTGTGTCATCACCGCTATCCCAATCACGATCCTCTTCGTCATCATGCAGAAGTTCTACGTCAGTGGGATTACTGCAGGTGCTGACAACGGTTAACACACAAACCCGAACAACATTTCATTCAATTCTTGCCTTCTCAGCGAAAAGAATCTGAGAATATCTCGGATTCGATTAAAGAAAAACAGTGGAAGCTTCCTTACGAAGCTTTCCACTGTTTTTTTGTCTAAAAATATCAAAAAATTACGGCTTATTTAAGGGGCCGGTAGAAGTCGATGCCACTGGCGGTAGCGTAATCGCCGGTCGTTTCCAGAATGCTGAGGCGGACAGCCTTGGCGCTGCCCCCTCTGAGGCCGATAACCTTGTTCTTGCAGTCGCTCTTAAACTGGTAGTCAGTCCCGTAGCTGGTGAAGTTTTCCCCATCGGTGGAGATTTCCACCCGCATCCGCAAAGGCCGACCATCCCGGCTGCTGGCTCTTGGCACGTAGATCAGCTTGTTTAATTCTGTTTGGTCCGGGAAGCTGAAGGTCAAAGTCAGCGGCTGGTCTTCGCTTGGTTTGCCCGTGCTTTGCCAGTCGGTTGCCATTCTCCGGTCCAGGAGGTTTTTCAGCTGGTGGCCGCTTGCGCTTTCCTGGTTGGAAGTGACTTTGACATTGGAGATGATAAAGTCCCGCGGGTCCCGCTTGGTCTTGACCTGCAAGAGGTCGGACCATTCGGATACCTTGTAGCCAGCTTCATAGCGCAGGCGCAACCGGTAGCCAGTGTTGGCGGCCAGGTCGGTAAAGGTGAAGATGTTCCCGCTGATCCCGGTGTAGAGCAGTCCGTTCAATTCAATCTGGACACTAGGCGTCCGCTGGGCCCACTTGACCGTCAAAGAGTGGGCACTGATCTTGTCCAGGTCGACTTCAACCTTGCCCGGCAGGGGCAGGGCGGCGTCGGTTATCTGGTGAATCAGCTGCTCATTGGCGAAGCGGAAGTTGTTTACCAGGATTTCCAGCTTTTCCTGCTTGATGTCCCGCTCCTGCAATTTGATGATCAAAGCCGGGCGAGGCGTTGCGCCCAAGTCCTTGAAGCCTTCCGGCCAGCAGAACTTGTTGTCGTAGTAGAAGCCTTCCTTGGCTCTTTGCAGGGTTTCCGGCGTGCCGTATTCAGTCAAGGTAACGACTTCCTCGTCGCCGGCCCGGAGCTGGATTTCATCTGGGTGCTGGTCACAGTATATATATAAGAAGGTTTGCTCTTTAATGGCCATGTTCGGGTAGTAGCCGGTGGTCGGTTCGATGATCACGCGCAGCTTGCTGTCGGCCACATGGGTGCGGATGACGGTTTGGGCGCTGTTGTGCTTGTAGTCGCTTTGGTCGTTGTCGCTGTAGGTGCTGATGGTGGCGTCGCCTTGCGGGTAGAGAACGAAGCGCCGGCTGCCCAGGTCGAAGATGCTGCCGCCTCTGACGAAGACGGGCAATTGCCAAAGGGGGTACTTGCGCCGGTTGTAGACCCGGCCGCCCATCAAGCGGTCGCCGGTAAAGAGGTCGATCCAGACAGTCTGCTTGTCGGGCAGGTAGATCCGGTCGCGGACGCTTAGGCCTCGATTGTCAGACTTGCCGTTGACGATTGGCGCGACAAGCAATTGGTCGCCCAGCATGAATTCATCGGCAAAGTCCCGGCCGTAGCCAACCTGTTCATGCGGAAAGGACATAAGCAGGGGCCGGACCAGGGGCAGGCCGTCCTGGGCCTGGCGGCTGAGAGCGTAAAGGTAAGGCTTCAGCTGCTCACGCAGGCCGAGGTAGGCCTTCATGATCCGGGAGACCTTGTTGTTGAAGGCGAAAGGCGTCTTGCTGAGGGGGCTTTGGTCGTCAATAGCGAAGAAAAGCGGGGTAAAGGTCTTCCATTCCAGGTCGCGGACGGCAACTTGGGCATTTTCCTGGCCGTGCTTGCCGCCGGCAGCGGCCCCGATGAAGGGCAGGCCAGACAGACCAGCACCTAATAAGGTAGAGATTTGCGTTTTGATGCTGGACCAGTCACCGCTGACATCGCCGAAGGCCAGGGCAGCCTGGCTTTGGTAAGGAAGGAGGCTGTCGCGGACCAGGGTAAGGGGCTTGGCTTTCGGATTTTCCTTAGCCAGGTCGGAATTGACGGCGGTCAAGTCGCTGCTTGGGTCGTCGACCGCGGCAAATTCGCTGTGGTGGGCTAAAGGCTGGCCCTTTTCACTCCAGAAGCCTGGATGGCAGTTGCGGCTTTGAGCATAGCTGGCAAAGGCGGCAAAGTCATCGGGCTTAGCGGCAGTTTGGCTTTCGTAGTTAGGGATGATCCAGGATAATGGGAAGCCCCAGCGCTGGTAGCGGTCCAGCATGGCCCGGGCGGAGAACTGGTAGTCCTGTTCCCCGTTTAGGCTTGGCAAGCGGCCACTGTTTTCCGTCTTTCTTGAGTAGTAGCGGTTGTCTTCAAAGCGGACTGCTTCATGACCCTTGCCGTCAGCTTCTTGCCAGGAGCCGTCAAGGAAGTTGCCGATGTGGCCGAAGGAGAGGGCGTAGCTGGGCAGCATGAAGGGCTTGCCGGTCAAATAATAGAAGCTGGACAGCAATTCTTGCGGAGAGTTTCCTATTATATAGTAGCTGTCAAAGACCGGGGTCCGGTGACTGAGGATGGTGAGCTGGGAATTTTGCCGGCCGAAGTCATAGTGGCCAGTCGCGGTCGTGTTGCGCAGTTCGGCAAAGCCAGCGTTGGTCCAGAAGAAAGGCACGGCAGCTAGAACGCCGTCAGCCCCGGTGATACCGTCGGTCTTGATGGTGATTTTTTCACCCTTGTGGCTGAAGTGGCCGTTTTGGACCCCGCCACCGTAGTAGTATTCGTTTTTCCCTTGCTTCAAGATTTCGATGCTGTGCTTGCCGCTCAGTTCGAGGGCGGAAGCTTGGACCATCCGCGGCCGGTGGACAGACTCGTCAAAGATGCTGAAGCTGCCGGTTTTCTGCTGGAAAATCAACTTGCAGCTGCCAGTGGTGATGATGAACATGTCGCTGGTCGCGTGGGCCGTGGCCCGGGCGAAACATTGCGGGTCGGGCTCAATGCCTTTGACCAGCATGTCGTTAGTTTCGGCAAATTCTTGACTTGGATCCAGCCAGTAGCGGAAGATGCCATTAGCGATCAAGTAGACGCGGGCGATCTCGCCGGTCGCGTAATGAAGCTCATAGTAATTTTCACGCTTATTGACGCCAACCAGTCTTCCTAATTGATGTCTTGAATTTTGCAGGTCTGCAGTCATAATCTTTTTCCTTTATGTCATGAAATATCTAATCTAATTATAGCCAAAAAGCCGGTAAATTGGAAAAAATAGCCTATACCAGTTTGGGTAACCAGGAGACAGACAATTACCTTGTAGAAAAGAAGGAGTTTATTGCTCCTTAAATTATCTGGCTAACAAATATTATGAAGTCTTAAATTGTGACGACTTTCAAAAATTATATTATAGTAATGCTAAAAAACGTGCTGGATTACTACTGGTGTAAACAAAAATGTGATACAAATGGTGTAATGGCACGATATAAATGGTGTAACTAACTACGGAAGAGCTGGCTGATCATCCTGCTTTTGATTTTGATTCGACTGGGCTTTTGCCTATGCTTATCTTTGGGTTAGATGAAGACCTGGTCCGGTCGCAGGGCTTTTTCTTCAAAGAATCCAATAGCTGATCTTTAACTGCCTGAAACGGGCAGTTTTATTTTTGCTCATTTTTTAGCAAAGCATTGACTAAACGGCCTACAGAGTTAAGAATACTCATTTTTTAGCAAAGCATTGACTAAACGGCCTACAGAGTTAAGAATAATAGAAGGAAAAAGATTGTTTTACTAAGGAGAAAAAATGCGCTATTACATTCATGCTGATCAGTTTTACCTGCCAAATGGCCGGGAAAAAGGCGGCTATTTAGAGATTGTTGATGGTAAATTCGGGGCCTACCTGCCAGAAGGCAGCCAAGTGCCGGATGCGGTGGACTACACTGGCTTTAGCGTGGCACCGGGCTATGTCGACACCCACATCCACGGTTCTGTTAAGGAAGACGTGATGAAGAGCGACTGGGAGGGAATCAACCGCCTGTCTGAAGCCTTGCTGAGTGCCGGGGTAACCAGCTGGCTGCCAACGACAGTGACCGCGTCCAGTGAGCAATTGGGTGAAGTCTGTCGGATGCTGGCTGCTCACCAAGGAGAAGAGAGTGGGGCTAAGATTCAAGGGATCCATTTTGAAGGCCCATTTTTCACGGAAGAACACGCGGGGGCGGAAAATCCAAAATACATGATGGATCCAAGCCCGGCAGAACTGGACAAGTGGCTGGAAGCGTCAAAGGGGATGCTGAAGAAGATCTCTCTTGCCCCAGAACGTCCAGGAACGCCAGCCTTCGTAAGCTATGCTGTCAGCCGGGGAGTCAAGGTAGCCCTGGGCCACTCTAGTGCCAGCTACGACCAGACTAAGGCGGCTGCACAGGCTGGGGCAACGATTTTTACCCACACCTTTAACGGGATGCCGGACTTCTCCCACAACCGGCCAAACATCGCCAACGCGGCCATGACACTGGAGAACATGGACAACGAACTGATTGCTGATGGTCACCACGTCACGCCTAGCGCCATCAAGGCCCTGCTGGCGGCTAAAGGCAAGGAGCATATCGTTTTGATCACTGACTGCATGGAAGCTGGGATGATGCCGGATGGCGACTACATGCTGGGGGAACTGCCGGTATACGTCAAGGACGGAATGGCGCGACTGAAGGAGGGCGACAACCTGGCCGGCAGCGTCTTGCAGCTGAAGGACGGGGTGAAGAACCTGGTTGACTGGGGATTGGCTGGTAAGGAAGAGGCTGTTTTGATGGCCAGCTATAACCCGGCCCGCAGCCAAGGCCTGCTGGACAAGTGCGGGGCGATTCGTCCGGGCCTGCCAGCTGACTTTTTGATTTTGAAGGATGATATGTCTTTGGCAAAGACATACTTGAATGGGGAAATTCGCTGGGAAGAATAATAAGTATAAAGAGAAAAAGTCTGTCTTCCAAAATTGCGGAAGGCAGGCTTTTTGTTAGATATAGTTGTTTTTAGTATACGGCACCTTCGTAGAAGTCAAAGCGCAGCTTGTTGAAGTTGAAGTCCTTCAGCTGGCTCATCTTGATTACGTTGTCGCTGACGCCCCAGCTCATGAGGTTGATCGGCTTGCCGTAGTCTTCGTCCGGGATGACCAAAAGGACGTACTTGCCTTGGCTCAAGGCGTAACCCAGTTCCATGCCCAGGCCGACGTCTTCTTCGTCAGGGATGTAGACGCCCAGCATGACGTCGTTGGTCTTGATCCCGTTCAAGTCGTTGTTGTAGGTGGCCGTAGCCCAAACCTTGTCGTGCAGGTATTCCGGGTGTTCGTCAACCCGGATGCCCTTGTACTGGTTGTCCAGGGGAACGTAGCTGTTTTCCAGGTCAACCGTTGGGTTTTCTTTGAGGGCTTCCATGGCTTCCTTATAGGCTTTGTTTTGGCGGTCAGTGAACCAGCCGGCACCGAAGTAGATCGTCTTTTTTGGCATATCTTGTATTCCTTTCATGCCCGTTGCGAGATATTGTGTTTCTTTTTCTAGAATAACTTTACCATTTTCCGCCCCGGCTGACTAGTCAAAAATTAAGCATCAGCCAAGTTGCCCAGCGGCAGAAAGCTTATAATAAAAGTAGTTGTATTTTTGAAAAAAGGGGTGGACTAAAAATGACTGAAGAACTCTTAAAAGCGGAAAGCTGTTTTGTTTTGCGGGCCGAAGACCGGGCTGACATGTTTGCCCAAGTCTACAAAAAGCTGCTGGAGCAGGGGCTGGTAGCGGCCGGCTTTTTAGACCAGGTGGTGGACAGAGAAGAGGACTTTCCGACCGGCCTGGCCAGCTGCAATCTGGCCCCGGATCTCCCCAACCTGGCTTTTCCGCACACGGAAGGCTGCTTCGTCAAAGAGCAGCGGGTCGTTCCCATTAAGCTGCTGGCCCCGGTCAGCTTCAAGAGCATGGTCGATCCCAGCCGCGAATTGCCAGTTGGCTTTTGCTTCATGCTGCTGGACCAAAAGGCGGATGGCCAGGCTGAACTTTTAGCCAGAACCATGACCTTCCTCAGCCAGGCTGAACCAGCAGCCCTCAGCCGGATTTTTGCCCAGACTGATCCTGCCGGCTTGTACTCTGCCCTGCGGGAAGAGGGATTTTAATTCTGGCGCTTATTTCTCCAAGTATATCGTCCGCAAATCCAACAGGTCAGCATTAGAGAGGCCGATCTGCTGGTGAAGGTAGGCGTTGATGCTGCCGTAGTCCCGGTTGATGACATCCAGCAGGTACTTGAAGTAGGCCGGCTGTACAGTCTGCAAATCGCGGAAGGTCGCCAGGAGGCTGTCATCAGCTCCGGCGGCCTTTTCCTTGGCCAAAAGCTGGCTGACGAAGTCCTTGATTACTTCATTAGTGAAGAGGTAGTCTTTTTCAATGGTTTTCATCGGTACGCCCAAGGCCGTCAGAATCAAGATTGCCCCGAAACCGGTCCGGTCTTTCCCGGCCGTGCAGTGGAAAAGCACGCTCTCGCTGTCTTTCTCATTAGCCAGGAGAACTTCAAACAGGTGCTGGTAGGCCTTGTTGGCGTTCTTCCCGGTTGCCATATTCTTGTAGGCCCACAGCATCCGCTGGTAGCCCCAGCCTGGATCCTGGCTTTCTCTCGCCATGTCGGAAATGCTCATGGTGGAGTTGGTCAAGTCCTCATCGAAAACCGGGTCGGCGAAGTACTCAACGCCCGAGATCTTCCGGTCTGGCTGTTTGTTTCTTTCGAAACTGGTCCGGAGGTCGATATCATACTTGAGCCCGTAGCGGCGCAGGTATTCCTGGTCTTCCTTGAGCAGGTCGGCCAAGTGCCCGCTCCGGATCAGCTTGTGCATTTTGATCTTTTTGCCGGAAACGGTCTGGTAGCCGCCCAGTTCACGGAAGTTCCGGCCGCCTTTAACGTCCAGCAATTGCTGTTTTAATGAAGTCATTTGTCGAATCCTTTCTTATTTATATGTCTGTATTTTCTTTTTATTGTTGTCTAGCGGTTGATTTTTTCATCCTGCTTAAAAAATGCTTCCCTGCAAGTTTAAGATGTAACAATTTTGCGAAAGCGCATTACTAAACCGTGACTTATGTTAAAATATAGATAAGCGAAATACGTAGATAGTACGGGAGATGAGCACTATGACTGAAGAAAAAATCAAAATTTTGGTACCTGTCGATGGATCTGAATCCGCTGAACGTGCTTTTGACAAGGCCGTGAAGATTGCCGCCAACAACGGCTACCACGCTGATTTTTTGAACGTGATCGACACCCGGCAGTTCATGGGCGAAATGCAGGACACCTTGATCTCAGGCGACACGATCTACCAAATGACCCAAGACTCAGAGGAATACCTCAAGAGCCTCAAGCAATGGGCCCACGACAACCTGGCCTTTGACGACATTGACTACCACATCCGTTATGGCAGCCCGAAGAGAATCATCTCTTACGACTTCGTCAAGGACCACGGCAACAACCTGATCGTGATGGGCGCCACCGGTTTGAACGCCGTTGAGCGGATGCTGATGGGGTCAGTTACCGAATACGTCAACCAGCACGCCATGGCCGATGTCTTGATCGTCAGAACTGACGTCAACAACATGCCTGCCAAGTAAGCTGGCTGATAAAAGTATATCTTAAAAAGAGGACGCTTGGAACAATTTCCAAACGTTCTCTTATTTCCCGTTTATTTAACTAGAATTTTACTTTTGTTCGGATTTTGCCAATTAAGTTAGTGGTTTGTGTAATTTTTCGTTATCTCATTAACCTTTTGCTGGCAAAATTTGACCGGATCAATTAGTTTGGGTAAAAAACCGAAAAACGCTTGCTAAAACCCGAATATTTCTGGTAGAATTGTTCCAGAACACAGAAGCGAGATTCGCCTTGCTGTCGTTCCGATGAGATGTATGAGCGTGAGCGCCGGCCCATTGTGGAGGCTTTTGTGTGGACTTTTCTCTGGCTGCTTTCAAGCTCATCCCTTATGCTGCTGTTGTACTATTTTAACTTTCATTAACCATTTTTCAGGGGGAAATAATGAAAAAGTTCAAGAAAGCATTGTTTGGTGCTTTAACTGTTGCTGCTGCCGTGCTGGCAACTGCTTGCTCTTCAAGCAAGTCATCTTCTTCATCAAAGGGCTACACTCCATCAAAGTCACACCCTTTGACAATCCAGTTTGTTCCTAGTCAAGCTGCTCCCACTTTGGAAGCCAAGGCTAAGCCGCTTGAAAAGATCCTTTCCAAGAAGCTTGGCGTTCCGGTTAAGATCTCAATGTCAACTGACTACAACACGGTTGTCGAAGCCATGAAGTCAAAGAAGGTTGACGTCGGCTTCCTGCCACCGGATGGTTACGTTATGGCCCACAAGGAAAAGGCTGCTGACGTTCTGCTTCAAGCTCTCCGTTACGGGATAAAGCAACCAGGCGGTAAGGAAACCAACAAGCTGGTTAAGGCCTACCGGTCAGAAATCCTGGTTAAGAAGGGGTCAAAGATCAAGAGCTGGAAGGACTTGAAGGGCAAGAAGATTGCCGTTCAAAACGCTACTTCTTCAGCCGGCTACATTTTCCCAATCGCTGAATTGAAGGAAAAAGGACTGGACTTGACTAAGAAGGGCAACGCCAACCTGGTAACTGTAACTGGCCACGACCAAGCTGTGCTTGACGTGCTTAACGGGGACGTTGATGCTGCCTTCACTTTCGAAGACGCACGTAACACTGTTTTGGCCGACCAACCAAACATCATGAAGAAGGTTGTTCCAATCTACTTCACTAAGAGCATCCCTAACGACACTATCTCAGTTCGTTCAGACATGAGCAGCTCCTTCCGCAAGAAGCTGTCCAAGGCCTTCGAATCTCTGCGCAAGGACAAGAAGAGTTTGAAGATCATTGAAAGCATCTACAGACACGAAGGCTACACCCCTTCAAAGGACTCAGACTTCAACATCGTCCGCAAGTACGACAAGATGGCTGCTACCAAGTAGTCATTGATATCACAAAGATTATCAACTGAATACTAATAGTGAAATCGTGCCCCGCTTTAATGTAGGACACGATTTTCAATGAAAAAGCAAATTTAGTTATTTAAGGAGTTATTATTTATGGCAGATCAGCCGATGATCGAAATGAAGAACGTTACCAAGGTCTACGACAATGGTACCGTTGGTTTGAAGAACATCAACCTGAAAATCAACAAGGGTGAGTTCGTGGTAATCGTTGGTCTTTCCGGTGCCGGCAAGTCCACTCTGCTCCGGGCAATCAACCGCCTGCACGACATTTCTGAAGGCGACATCTTGATTGCCGGTGAGTCAATCACCAAGACCAAGGGCAAGAACCTGCGCCTCATGCGGCGCAAGATCGGGATGATCTTCCAAAGCTTCAACCTGGTCAAGCGCTCCAGCGTTTTGCGGAACGTTTCGGCTGGCCGCCTGGCTTACTACCCAACCTGGAAGACTACTTTCAACCTCTTCACTGACGAAGACAAGCAAAGAGCTTATGAAGCCCTGCAAAGCGTCGGCATGGCTGAAAAGGTCTACTCCCGGGCTGACGAATTGTCTGGTGGTCAGCAGCAGCGGGTGGCTATCGCCCGGGTGCTGACTCAAAGACCGGAAATTATTCTGGCCGACGAACCAACTGCTTCTTTGGACCCGAAGACTTCCCGCCAGGTTATGGAAGACTTGAAGATGCTGAACGAAAAGTTCGACATGACGGTCGTGGCCAACCTGCACTCAATTGAACTGGCCAAGGAATTCGGCCACCGGGTCATCGGTGTCCGGGCCGGGGAAATCGTTTATGACGGCAAGATGGAAGACACGCCGCAAAGCGTCTTCGACAACATCTACAACGGCGGCAAAGGTAAGGAGGAAGACTAACAATGTCAGCAACTGACCGCGACATGTTAAAACTTCCAAAAAAGAAGTTTAAGATGTGGAACTGGGTCTGGGTCATCTTGATGGTCCTGGGTCTGGTTTTATCTGTTAACAACACGCAGACCAGTCTGCCAGAATTTTTCGCCAACTTTGACCAGTTCGCGGAAATCTTCGTGCAGATGGCTCAGCCTGACTGGTCATATGCCGGCACTGCTATTCCTTACCTGGTGGAAACGATCAAGATGGCCATCATCAGTACGGTTATCGGGTCCCTCTTGGCCTTCGTTTACTCACTTTTGATTGCCAGAAACATTGTCCATAACCGGGCAATTACCGGCGTTCTGCGCTTCATCATGAACATCATCAGAACGATTCCTGACCTACTCTTGGCTTCAATCTTCGTTGCTGTCGTTGGTATCGGCCCGGTTGCCGGTATCCTGGCCTTGACTGTCTTCACCTTCGGTGTTGTGGTCAAGCTCTTATACGAAGCCATCGAAACTATTGATCCAGGTCCAAGTGAAGCCATCAAGGCAGTCGGGGGCAACGGGATGAACAATATCATGTTTGCCGTTATGCCGCAGATTCTGCCTTACTTCATCAGCTACGCCCTGTACGCTTTTGAAATCAACGTCCGGGCATCCACGATCCTCGGTTACATCGGTGCCGGTGGTATCGGTCTGCAGCTGAAGAACACTTTGGACATGTTCAACTACAACCAAACGGGGATGATCATCCTGGTTGTCTTCCTGGTTGTTTTGGTCATCGACTTTGTTTCAACTAAAGCAAGGGAGGCTTTGATGCGCTAATGGATACGACAATGAAGAAATTACCACCAAAACCAGTGACGACCAAGTCCAGAGCTATTAAGTGGGGCGGCTGGATTATTTCCATTGCCATCATTATTTGGTCCTGCACGGGTATCAACTTCGGCGGGATCAAGCCAACTGCCGTCCAGATTACCGGGGCGATCTTCAATGGTCTTTTCCACCCGGACTGGTCATACGTTTATAACGGCAGCGGGGAAGACCTGGTTTCCCAATTGTGGCAGACCTTGTGTATTGCCTTCCTGGGGACTTTTATCTCCGCCATCATTTCAGTTCCTTTTGCCTTCTGGGCAGCCAACACCCGGCACAAGAAGTTCTGGGTATCTGAAAGCGGGAAGATCGTTTTGACTTTCATTAGATCCTTCCCGGAAATCGTTCTGGCCTTGATGTTCATTAAGGCCGTTGGTCCGGGCGCTCCAGCTGGTGCCCTGGCCTTGGGTCTGCACTCAGTCGGGATGCTGGCCATGCTGTTCTCAGAAGCGATTGAAAGTTTGGATGATGGTCCAGCTGAAGCGATTACGGCGGCCGGCGGGTCTAAGTTCAACGTTGCTGTTTTCGCGACCATGCCTGACTTGATGCCAGCCATCGTTTCCAACACCCTTTACCGTTTTGACGTGTCCGTCCGGTCCGCTTCTGTTTTGGGTCTGGTTGGGGCCGGTGGTATCGGCTATCCTTTGATCATCGCCTTGAACTACCGGCAATGGAGCCGGGTTGGGATCATCCTTTTGGGGATCATCGTTATGGTTGTGGTCATCGACTGGATCTCTGGTGCCATCCGGAAGAAGTTGGTCTAAAAATATATTTGAATAATAACTCTTTGAAAAGCTGTGGCGGTTGCCACGGCTTTTTTCTTTTTTAAGAGAGGTCAACAATCAAGCCATCGACTTTAATCATGGCGCTATTACTTTGACAGTGACAATCATCATTACTTGCTTCTTACTATTGTTGCCTTCCTTAGGCAAAAGAAAGAGGCTCGCGTACCGCGAGCCTCTTTTCTTTATTCTAGTCTGTTGTCTATTGTTTGTTGTCTGTCGCTATTGCTGCTTGTTACTTCAAGTAAGCGTACTTGAAGCTGTAGTTTGCCCCGGCGCCGTTGTAGATCACGCCCTTAACGCTTGGCTTGACCATCCAGGCTTCAACTGGGTGGTAGAGTGGGGTAACCCCTTGTTCTTCCAGCAGGATCTGTTCAGCCTTGGCCAGTTCCTTGAAGCGGGTGCTGGTTGAGCCAGTCGTCTTGGAAGCAGCCACGTACTTGTCGTAAGTCTTGTTTGACCATTTGCCGTAGTTGTATGAAGCGCCAGTAGTCTGCAGGTCAAGGAAGGAAATTGGGTCAGCGAAGTCAGCGTTCCAGCGAGTTGAAACAACATCAAAGTTGCCGCTCATCATTTTGTTCATCCGGGTCTTCTTCGGGATGCTTTGCACTTGCACATCGATGCCCAAGTTGTCTTCCAGCTGGCTTTGAACGAATTCAGATGCCTTCTTGGCCGTGTCGTCGTCATCGCCAAGGAGAGTGAAGGAGATCTTCTTCTTGCCGGTTTCCTTCAGAGCTTGCTTGTAAAGCTTCTTGGCTTCCTTGACATTGTAAGTTGCGGCCTTTTCAGTAGCGGCGTTCTTGACCGTGTCGGTGTAGTCCTTGCCGTTAACCGTCGTCATGCCTTCCGGGTCAAAAGTCGTGGCTGGAGTAGCCGCCCCGCCCAGAGTTGAAGCCAGTTCCTTCCGGTTGATAGCCATGGAGATGGCCAGCCGGAGATTCTTGTTCTTGAATTCCGGGTGCTTCTTGAGGTTGTAGGCCAGGTATTGGGTCGTGGACATCTTCCGCTGGGTGTAGCCGGTCTTGCCCTTCAAAGACTTGGTGGCTTGGGCGTCCAGGAAGGCAGCGTCAAGCTTGCCGCTTTGGTAAAGGTTGTAGTCAGTTGCCGGAGTCTTTTGCACGCTGAACTTGACCGTGTCGAGCTTGACGTTCTTCTTGTCCCAATACTTGCCGTTCTTAACCAGTTTCCAGCTCAAGTTGGACCCGGTCCAGCCGACTTGCTTGTATGGGCCGTTGTAGATCATATACTTGGACGCGGTCGCGTACTTAGAGCCCATCTTTTCAATGAACTTCTGGTTCTGCGGGAAGAAGAGCGGGAAGGCCATCAGCAACTTGAAGTAAGGGATCCGCTTTTCCAGAGTAACCGTCAGCTTGTACTTGCCGTCTGCCTTGATCCCCAGGGTAGCTGGCTTCTTCTTGCCGGCAACGATGGCATCAGCGTTCTTGATGCCGGAGAACAAATAGGCATATTCAGACGCGGTCTTCGGGTCGATGGTTCTGCGCCAGGAATAGACGAAGTCCTGGGCCGTAACTGGGTCCCCGTTGGACCACTTGGCGTTCTTCCTCAAAGTAAAGGTCCAGGTCTTGCTGTCAGCGCTGTTCTTGGTGGAAGTGGCCAAGGCGTTTTGCACTTTGGCGTTCTTGCCCAAAAGGTAAAGCCCTTCTTCCACGTTGTTGATTTGTTCAACGGAGGCTTGGTCGGTTGCCTTGGAAGCGTCCAAAGTGGCAATTTCCGCGGTGTTCATCCAGGTAAGGGGCTGCTTCTTGGCACTGCTTTGTGAGCTGTTTGACCCGCAGGCGGCTAAAGTGGCCGCGCTAGCTAAGATTACGGTTGAGCTGGCTAAAAGTTTCTTGCTTCTCATATTTTTTGCCTTCTTTTTCTTGTAAAACTCATATATTACGACACAGCTTGATAGATAGCTAAACTGCTGATCTGAGAGATATTAATAATTATAGCAAATAAATTAAAAATGCCAGGTGTGCTTTAATCTTTTCGCCATTAACTGTGAACTTTCCCCATTATATGGAAAAAGCGCTTTGCCCAAGTAAAAAAAGCTATTCCAGACCGACTTTTTGCTATAATTAGGGTAAGATTGCAAGGAGGACAACATGGAAAAATTAACTACCATGGAGCTGGCTGACGAGTTAGCTGAAGCTCAAGACAAGATTCTTAACGGTGAAGCAAAGCTGGATACCGGCCGGGTTTACCAGGCCATCGATGATTTGGGCGTCTTGAACGATCCCATCAGCAATTACTTCGACCGGACCGAAGATGAATACTATGAAACTGAAAGTGACCACTACCTGGCCTTGACTAATCTGACTGGCAAGCTGGGCGACCTGCACGACCGCGTCTTGATCAACCACGTGGACGGTTTCGTTGACAAGGACGAAATCAACTTGACCTACAACCACGAAAATGCCTACGTGGAAGACAATTACGTGCCAAGAACCGACCTGCACGTTTTGGTCTACGGGCTTAAGGTGATCGGGGCGGTTGAAGCCATCGCCGCTGCCGACCTGCGCAACGTCTTGTCCAAGGATGCCGTGCTTTCCTTGGGCCTGGCAGCACACGCATTAGCAGAAAATCTATAATTGAGAGCCGGGGGAGGCCCGGCTTTTTGTGATTTTAGGCTTTTTGGAAGGGTAGAAATGGACCTGTTTAAATACACAAAGGGAATTATTGACAAGGCAGTTGGGGCTTTCAAGCTGCACGCCGTGCAAAAGAATGCCGGCGAGCTCCTGGATCCCATGCAGAAGTATCTGACGGTAGGGGAGTACCATGTCGATGCTCGCGACGCCACGCCTGACGGCCGGCCGTTTACCTTGACGGTCTACCAAGATGACCAGGGCATCCTGCACCAGGCGCTCAGTCCGGAAAGCACCGACAGCCTGGCCGCTGAATACGACCGGAAATTCGTGCCGGAACTGAACCGCTTCAAGGCTTTCCGCAACCGGGAAACGGGCCGGCGCTATGTCGTGGAAGACTACCTGGCCCGCTTTGTCAGCGACGTGAAAAAGGAAATCCGGGAAGGAGACGACTCTGTCAATATCGGGGTCATTACCGACACCCACTTCAAGAACGTTGACAGCCTGGACTTCTATGGCTGGAACGGCTTGATGCATGTCAAAGAGTTTTCCTACCTGGACCAGCTGGATATTTTGGACCTCAAATGCCACTTGGGCGACTGGATCGACGGCTCTGACGCCGGCCTCATCAGCGAAAGCGAACTGATGAAGCTGCGGGACTCCTTTAAGTCCAGCAAGGTGCCTTACCTCATGATCAAGGGCAACCATGACGAAAATGACAAGTTTGACGAGCACCATGACTTGAAGGCCAGCTTCCCGGAGCGGGAGTTTGAGAAGATCATGTGGCCGGAGATGTACCGGCAACGGGAATTGGGCTATGTTTCCCGCCAGCACGGGGTGGCCTGGTTTGACCAGGGACATGTCCGGGTGATCAGTCTGAATACGTCAGACATTCCCTACATTTTGGATGAAAAAGGGCAGAAAAAGTACGATGTTAAATTGACCCTGGGGGTACGGGAAGACCAGGTGCAGGAACTGATCGAAATCCTGCAGCAGTCAAGCGGCAAGCAGGTTATCCTGCTCAGCCACGCCAACCCGATCAACCGGAAGGGCGGCAATGCCTTGAAGTACAACGGGCGGTCCCTGCATGAACTCTTGGTGGCCTTCAACCAGAAGGAAAAGGGCCGGATGCACTCCAGCAAGGACGTGCCGGCGGAATTCCGCTTGAGCAACGACTTTGACTTCACCAAGGTCAAGGACGCCCGGATCATCGCCTACTTCTGCGGCCACCGGCATGTGGAAGACCAGTACCGGATCAACGGCATCCAGTACGTTCTGTTCAACTGCTCAGCCTTGATGGGACCCAACCACCAGCTGACGACCAAGTATAACAAGAACTTAAACCGGAAGATGGACCACCAGAATGAATTTGCCGGCTATGTCGTCAACGTGGACCTTTTCCGGCGGCGGATCAAGGTCTTTGGCTATGGGGCCGCGACCAGACGGAGAATTTTTTTCATTTAAGTAAAGATTGACAAGGACTCTGTAAACATTAGAGCCCTTGTTTTATAATAAGAAGTTGACTTTATAGAAACTAACTAGAATTAAGGAAGAGAAAACATGTGCGGAATTGTCGCCTTTTACGATCCAGAAATCAATGACAAGCAGGCGGCCATCGGCAAGATGATGGCTACCATCCAACACCGGGGACCAAACAGTGACGGGATGTACACCAACGACAAGGTGGCCCTTGGTTTCAGAAGACTGTCGATTATCGACCTGCGGGGCGGTAGTCAGCCAATCTACAACGAAGACCGCAGCCGGGCGATCATTTTCAACGGGGAAATCTACAACTTCAAGCCCTTAAGAGAGGAACTGATCAAGGCGGGCCACACCTTCTCCACCAAGGCCGACACTGAAGTCATCCTGCACGGCTATGAAGAATGGGGGATGGACGGGATCCTTAAGCGGGTCCGGGGGATGTTCGCCTTCATCATCTGGGACGACAATACCCAGACCATGTACGGGGCCCGGGACTTCTTCGGTATCAAGCCGATGTACTACCAGGACGTGGACGGTCACCTTTTGGTCGGCTCAGAATTGAAGAGCTTTTTGGCCTTTCCTCATTTTAAAAAGGAACTGAATACCGAAGCCGTCAAGCCATACCTAATGAACCAGTACAACGACCTTAAGGAAACCTTCTTCAAGGGCGTCTACCGCTTCCAGCCAGGTCACTGGTTTGAATACAAGGACGGCAAGATGAAGACGCACCAGTACTGGGATGCCGAATACAAGGACAACAACCTTTCCTTTGAAGAAACAGTCAAGAAGATCAACGAAGACTTGAAGGAAACGGTTGACCTTTACCGCAACGCCGACGTTAAGGTCGGGGCCTTCCTTAGTGAAGGGGTTGACTCCAGCTTCCTGACGGCCCTTTTGGACCCGGATGAAGTCTTCTCCATCGGCTTTGACGACAACACCTACGATGAAGCTTCCAAGGCCAAGGCCCTGGCCGACATCAACGGCTGGCACTTCTACGCTGACAAGGTCTACTCAGAAGAAGCTATGCGGGACTTCCCGGAAATGCAGTACCACATGGACGAACCAGACGCCAACCCGTCAATCATTCCTTTGTGGTACCTGTGCAAATTGGCCAGAAAGCACGTGACTGTTGCCCTGTCCGGGGAAGGGGCCGATGAGCTTTTTGCCGGCTATGTCAACTACGGGATGCACACCCACAACAATGTCATCAAGGTCTTTACCGACAAGCTGAAGAAGCTGCCAAAGGGCAAGCGGGTTAAGCTGGCTCATAAGATCAAGAAGATGCCAAACTTCCCGGGCAAGGTGCACCTTTACACCAACCTGGCTGAACCAAGCGAATTCTACGTGGGCCAGTCAGTCATCTACGACATGGATTACCCGACCATTTTCACTTCCAAGGACGCTAACGCTGTCTTGCAGCCGAGCTACCGGAACAAGCTGACGGTTAACGGCAACTACCAGGAAGACTTCAAGAAGGTCAAGGACCTGGACAATGTCAAGCAGATGCAGTACATCGACCTGCACCACTTTATGCTCAACGACATCGAGCAGAAGGCTGACAAGATTTCCATGGCCCACTCCCTGGAACTCCGGGTGCCTTACCTGGACGTGAAGATCGCCAAACTGGCCAACTCTATTCCAAGCAAGTACCTGGTCAACAAATACGACACCAAGTACGCCCTGCGCAAGGCTTCAGAACAGGTCCTGCCGGATGAATGGGCCAAGCGGCCGAAGCTGGGCTTCCCGACGCCAATTAAGCAATGGCTGCAGGAAGAGCGTTTCTACAAGCAGGTCAGAGACCTCTTCAGCGAAGACTTCGTCAATGATATTTTTGAACAAAAGAAGATCCTGGACCTGCTGGATGAGAACTACAATGGGGACGGTTCTCACCGCCGACAGATCTGGGTAATCTATACCTTCCTGGTTTGGTACAAGCTCTTCTTCGTTGACTACGAGGAAACCGTGCGCAAGTACCAGCGCGTGCAGCCGGAAGTGGCCAGCTTGATCGCCCAGGGCAAGCTGCTCTAATCCAAAAAGAAGAGAAAGAGAATTTAATTACTAATGGCTAAATTTACACCAATTTTGCTTGGCAGCGACATCAATGTCTACGGGATGGCGCGGTCTTTTAACGAAGCATACGGCATCAAGGTCCAGGCTTGGGCGGCAACGCAATTGGCGGCCACCCGCTATTCTAAGATCGTGGACGTTGAAGTGCACCCTGGTTTTTCCGAAGACCCGGGCTTCATGGAAGTCATGCAGAAAAAAATCAAGGAATACCAGAATCATGAAGAGCCAGTCATTCTGATCGCTTGTGGGGACGGCTATGCAGAACTTTTGGCTAAGCACAAGCAAGAACTGGAAGGGACCTTCGTCGTTCCTTACATCGACTACCAGCTTTTGGAAAAGCTGATCTCTAAGGAAGGCTTCTACGAAGTCTGTGAAGAATACGGCCTGCCTTACCCGAAGACCAAGATCATCAAGCTGGCTGACTACCATGATGGGTCATACGCCGACGTGCCTTTTGCCTTCCCGGTTGCCTTGAAGCCGGAAGACCCGGTTTCCTGGCTGGATGTCCAGTTTGAAGGGCGGAAGAAGGCTTTTGTCATCAAGGACCTGGCTGAATTCAAGGACATTGTGGGCAAGATCTACACCAATGGCTACAAGGAAGACTTGATTCTGCAGGACTTCATCCCGGGAGACGACTCCAACATGCGGGTCTTGAACGCTTATGTGGACAAGAACCACCAGGTCAAGATGATGTGCCTGGGCCACCCGCTTTTGGAAGACCCGACTCCGCAGTCAATCGGGAACTACATGGCTATTTTGCCGGCCTATGATGAAAAGCTTTACGAGACCGTCCAGACCTTCCTGGAGAAGATCAACTATGTCGGCATGGCCAACTTCGACATCAAGTACGATGCCCGCGACGGCCAGTACAAGTTCTTTGAAATCAACCTCCGCCAAGGCCGGTCCAGCTTCTACGTGACCTTGAACGGCTACAACCTGGCCAAGTGGTACGTTGACGACTACGCTGAAGACTCCTTGGCCGGCCAGGAGACCGTCTATGCCAACAAGCTGGAGAGCAGCCACATGCTCTGGCTGGGCGTGCCGGAGAAGATCTTCAAGGAATACGCGGTCGACAACGAGGCCAAGCAGGCGGCCTTGAAACTGATCGATGCCGGCCAGGTGGGGACGACCGTCTTCTACGACCAAGACAGCTCCTTTAAGCGCTGGCTCTTGATGAAGTACATGTTCCACAACTACTACAAGCGCTTCAAGACCTACTTCCAGGTCAACAAGGGCCAGTACTTCGATAAATAGCCAATACTTTTATAAGCTCTTGACGAAAATCAAGGGCTTTTTTCATCTTTTTTAAATTTTTGAAGGACTTTGGCAAAAGGCTAAAAATATTTGCTCAAGCAAAATATTCTTTTTTTAAAAATATACGGGCTCCAAGTCCCGTGACAACTGAATTCTCTCCTGTCATTTAATAGAAATGGGTCTTTGTATAGACCACAATATCTGGTATTTTGTGCTATGCTTATCTCATGAACTAAACAAGATGTAGTGGTTATCCACACTTAATCCACAAGATAGTCTAGTTCTTGTGGGTAACTCGCTTAAACAGCCCCAGAGGCTGGATGTAAAAAGGCAAGGTATTTTTGAGAGATAAGAGGTTGATTGTCATGTTAAAGCCAGCAGCAGAAACTGTGAGCCTGAATTTCGCTAACGCGCCAAAGAAGTTCATCAAGCGCGACGGCGCCCCATTTAAATTTGAACAATTCAAGCTGGAAATGGTTCTGGATGAACTTGGCCTGGAAGACAGCGAAATCAAGGCTGCCGTTTTGAGCAAGGTTTACGCCAAGCTGGCCACCTACACGGTTGACGCCGTTCAAGTCCACGCTGCCTTCAGAGCCAGCTTGAACGAATTGGGCTATCTGAATGAAGCCAAGGAATACGAAGCCAAGCGGCGGGAAGACGAAGCCGACTGGCGGGCAGAAACTGACACCAAGCAGCGTCTGGCCAAGCTGGTCGACAAGGACCCAAGCATCGTCCACGAAAATGCCAACAAGGACTCTGACGTCTTTGCCACCCAGAGGGACTTGACTGCCGGGACTGTGGGCAAGACGGTTGGTCTGACCTTGATGCCTCAGCACATCGCCAAGGCCCACCTGCGGGGGGACATCCACTGGCACGACCTGGACTACACTCCTCTTTCACCAATGTCCAACTGCTGCCTGATTGACTTTGACTACATGCTCAACCACGGCTTCAAGATCGGCAACGCCTTCGTGGAAGTACCGAACTCCATCCGGGTGGCCACCAGCCAGGTAGCCCAGATCATCACCAGCGTGGCTTCCAGCCAATACGGCGGCTGCTCTTTTGACCGTTGCGACGAAGTCTTGGCGCCTTTTGCCGAAAAGGACTACAAAAAGCACCTGGAAGAAGGGCGTGAGTTCATCGACGACGAAGACAAGGTAAAGGCTTTTGCCAAGAAGCGGACCCAAAAGGACATCTACGACGCTATGCAGAGCCTGGAATACGAGATCAACACCATGTTCTCCAGCCAGGGGCAGACTCCTTTCACCACCTTGGGCTTCGGCTTAGGGACCAACTGGATTGAAAGAGAAATCCAAAAGGACATCCTGCAGGTCCGGATCGAAGGCCTGGGCCGGGAACACCGGACGGCCATCTTCCCGAAGCTGGTCTTCAGCTTGAAGAAGGGGTTTAACCTCCACCCAGGCGACCCGAACTACGACATCAAGAAGCTGGCCCTGGAATGTGCTACCAAGCGGATGTACCCAGACGTTTTGAGCTACGACAAGATCATTGACATCACTGGCTCCTTCAAGGCCCCGATGGGCTGCCGGTCCTTCCTGCAAGGCTGGAAGGATGAACAGGGCCGGGAAGTCAACTCCGGGCGAATGAACCTGGGCGTGGTTACCTTAAACTTGCCAAGAATCGCCATGGAAAGCCAGGGCGACATGGACCGCTTCTGGGAAATCTTCAATGACCGCCTGGAACTGGGCCGGCAAGCCTGCGAATACAAGGCCAAGAGGGTCACTGAAGCTAAGCCGGTCAACGCTCCAACCCTGTATGAATACGGCGCCTTTGGCCAAGGGGTTGGCGATGACGGCGACGTCAACGACTTCTTCAAGAACGGCCGGGCCACGGTTTCCCTGGGCTACATCGGCCTTTACGAAGTCGGCACGGTCTTCTACGGGCCAGACTGGGAAAAGGACCCGGAAGCCAAGGCCTTCACTTTGGAAGTGGTCAAGAAGATGCATGATGCCTGCGCCAAGTGGGAAAAGGAAGACCCGAACCACTACCACTACAGCGTCTACTCCACCCCAAGTGAAAGTCTGACCGACCGCTTCTGCCGCCTGGACACGGAGAAGTTCGGCAAGGTCAAGGACATCACGGACAAGGAATACTACACCAACTCCTTCCACTACGATGTCCGCAAGCACCCGACCCCATTTGAAAAGCTGGACTTTGAAAAGGACTACCCATACTACGCTGCCGGTGGTTTCATCCACTACTGCGAATACCCGAACCTGAAGCAAAACCCGGCCGCCCTGGAAGCTGTCTGGGACTGGGCTTACGACAGAGTCGGCTACCTGGGTACCAACACCCCGATCGACAAGTGCTACGAATGCGGATTTGCCGGCGAGTTCAAGTCAACCGCCAAGGGCTTTGAATGTCCGCAATGCGGCAACCACAACCCGGAAACCTGCGACTGCGTCAAGCGGACTTGCGGCTACCTGGGCAACCCGCTGAAGCGGCCAATGGTCCACGGCCGGCATGAAGAAATCGTCCACCGGGCCAAGCACATGAGCTTGGGCATGGTCAGCGAGGAAGCCAGCCTGGAAAAGCAGAAGAACAGCCAATACTAAACGAAAAGAATTATACTAATAGGCAGGAATCATTCCTGCCTATTTTTTATCGAAAGCAAAGGAGAAGCGAGATGCCAGAGAAAGACAAGAATCAGCAAGAAGGCCCTGACGTCCGGGACAACCTGATCCGGATCAGCGTCGGCGGGGAAACGGTCTTTGTGGACGCCAACCAGTACAAGGCTAAAAATGCCGGCCAGACGGCCAAGCCCCGGAAGATGAAGCGCCAGCCCAAGAATCCCAAGCCAGGCGAATGGATCTCAGAAGACTACAGCAAGCATAAGATTGCCGACTACAAGCCCTTCAACTTCGTTGACGGGGAAGGGGTCCGCTGCTCCTTATACGTGTCCGGCTGCCTCTTTGACTGCCCGGGCTGCTACAACCTGGCCGCCCAGAACTTCAACTACGGCCGTCCCTACACCCAGGAATTGGAAGACCAGATTATCGCGGATATCGGCCAGTCCTATGTTCAAGGGCTGACCTTGCTTGGCGGGGAACCCTTTTTGAACACCTGGGTCTGCAACCGGATCATCGACCGGGTCCGGGCCGAATACGGCCACAGCAAGGACATCTGGTCCTGGTCCGGCTATACCTGGGAGGAACTCTTAAGGGAGACCCCGGACAAGGTGGAAATGCTCAAGAAGCTAGACATCCTGGTTGACGGCCGCTTTATGGACAACTTGAAGGACCTGACCCTGCAGTTCAGAGGGTCCAGCAACCAGCGGATCATTGACGTGCAGAAGTCCCTCAAGACCCCGGACCTGCACCCGGTCATCTGGGACAAGCTGCAGAGATAGTTTTTTAGCGAGGAAAAAATTAACGAAGAAAAACGCGCCTTGGTTAACCAGGTCATCGGTCAGCTGCAGACCGTCATCGACCCAGAGCTCCTGGTCAATGTGGTCGACCTTGGGCCTCATCTACGGAGTCTACATCGATGATGAGGGCAACTGCCTGGTGACCATGACCTTGACCACAGCCGGCTGCCCCTTAAACGACTACCTCAACCGGGAAATACGCCAGGCGGTGAGCCAGCTGGCGGCCATCCGCGGACGAACTGTCTGAGAAAAAGGCAGCCGACCCGTCGGCGATTGCCAAGTGGAATGACCAGATCGGGGATTTTGCCGGCCAGCTGGGCGGCAATGAAGCCGAAAACTACCAAAAGCTGGTGGAAGTCGAGCAGGCGGAGGAAAAAGCCCGGCCGGCCCTGACGGACTCCTTTATTGAGTTCGCGGAAGGCAGCCTCAGCTATGAGCAGCTCTCGGCCGTCCTGGACCTTTTGCCCCTGGACCTGATCTTTGTGGACAAGGACGACGTCATCCGCTACTTTGGCGGCAGCTGCGGCTTTTATCCCCATTCGAAAAACGACCTGAGCATGAACCTGTTTAGCATTCACATGCCAAAAAGCGTGTCCAAGGTCAAGGCCATCGTGGATGACCTGAGAAGCGGGAGAAAGGACAAGCATGCCTTCTGGTTTGAAGTCCGGGGCCGCTTCGTCTATATCCAATACCTAGCGGTCAGAAACAAGGCCGGGGAATATCTGGGCGTTTTGGAAGTCTTGCAGGATATTACCGACCTGCGCGCCTTGCAAGGAAAGAAGAAAGAGTTGTAGAATTATAATAAAGTGAGGAGCCATGACTTGCTGAGTCGTGGTTTTCTTATTGCGTGGAGTATTTTTAGCAATTAAATTTAGAAAAGGAGGAATGGAGAAATGAAAACTAAACACGGACAGAGCCAGTTGCCGGAAATCGCGCTGCCCTGGCTGGTCGTGGCCCAACTGGCTACTTGGATCGGGGCCAGCTTCATTTGGCCACTGACTTCCGTTTACCTAAACAAGCGGTTGGGGATCAGCCTGTCGGTAATCGGGATCGTCCTCTTCTGCAACTGCGCGGCCAACATGCTGGGGTCAACCATCAGCGGCCGGCTTTTTGACCGGCTCAATCCTTATCCTTTGATTACGGGCGGGATGCTGCTGAATGCTTTGGTCCTGTTGGCCATGGCCTTCTTCCACGGCTGGCCGGTTTACTGGGTCTGGCTGGTCTGTATGGGCTTTTTAGGGGGCTGGAACGGGGCCCTGGTCAATTCCATTGCCACCAGCCTGCGCAAGTATCCGGGCCGGTATGTCTTCAATATTCTCTACTTCTCCCAGAACCTGGGGGTGGTAATCGGGACCTTGATTGTCGGCTACCTTTACGACTACTCAATTGAGCTGCTCTTTATCATTGCCAGCTGCCTTTTCTTGATCGGGACTTTAGTTGCCTTCTGCAAGTTTAAGCCGATCGTGGCCTACCATGCCCGCCGGCAGGAGCAGAAGAAGACTGGCCAAACCCCGCTGAAGGCGGAAAAGATGCCAAAGGCCAACTTCTGGATGACCATGGGCTTTTTCATCACCCTGGGGGTGACCTGGCTGATGTACATGAACTGGGAGTCCAACCTGTCCGTTTACATGGTCAGCCTGGGGATTCCTTTCCACCTTTACTCAACTTTATGGACGATCAACGCCGGCATCATCGTGGTCGTGCAGCTGATTTTGGCCCGCTTCCCGCGGATCTTCAAGAGCATCTACCTGCAGATCTACTTCGGGATCTTCATGTTTGCCGTGTCCTGGCTGACCTTGATTTTCGCCAAGACCTACCCGGGCTTCGTCTTGTCCATGTCGATCCTAACCTTGGGTGAATCGACGGCCTTTTCCGCCATTCCGGCCTATGTCAACGACATGTCGCCGTACTCCAGCAAGGGCAAGTACCAGGGGATGACCCTGGTGGCCAGCGGGGTCGGCCGGGCCTTCGGGCCGCTTTTCGGCGGGACCTTGATCGACCTCTTCGGCTACGAGATCATGTTTGTGGTCGCCAGCTGCGGCATCCTCCTTTGCCTTTTGGCCCTCTTGCCGCTGAGAGCCAAGCTGAAGGACCAGGTGCAGTTCTTCAAGTAGGAATTTTTTATCATTTTTTCGCACTTTGATTGAACAGGGAAGCAGTTAAAGGGTAAAATAAGAGGATAGTGAGAAAAGGAGGAAAACATGCTTAAGGTTTACGGGACAAAAATCTGTCCGGACTGCATCGCCTGTGAGGCCAGTTTTAAAAAGTACGGTATCGGCTACGAATTCGTTAATATTTTCGCCACCATGCCGGATTTCAAGGAATTTTTGCGCTTGCGGGATGCCAGTCCCGCCTTTGCTCACGCTAAGGAGCAGGGCAGCGCGGGGATTCCGGCCTGCGTCAAGGAAGACGGGGAAATTTTTACCGACTGGGAAGGCTTCTTAAAGGACCAGGGCTTAGAGCCAATCTGGCCCGAAGCAGCTGACCAGGCCAAGGCTGAAATCGCGGCCCAGTGCGACCTGCGCCAGCACAACTGCTAGTTGAAAAACAAGGAGGAAGAAATATTGAACAATAAATTTGCCGTCCGCGGCGGCAGCGGCGACACGACTGTCGTTGACAAGACTGCCCGCCCGCAGGACAACCTGTATTTGGCCGTTAACTCTGACTACCTGGATCAGCTGGAAATCCCGGCTGACCGGTCCCGGATGGGGAGCTTTGACCAAATCGCTGAAAACGTTGAAAAGACCCTGATGGCTGACTTTGCGGCTTTTGCCAGCGGGGAAAAGGAAGTTCCGGCCCTGCCGAACCTGGCCAAGGCCGTTGAACTATACAAGCTGGCCAAGGACTTTGACAAGCGGAACGCTGACGGGGCAGAACCAATCCAGGCTGACTTGAAGAAACTGGAAGGCTTGAACAGCTGGAATGACCTGCAAGGCGCGGCAGCTGCTTTGGCCAAGGAAGGCTTTGACCTCCCATTCTCCTTCTCCGTTGACGCGGACATGAAGAACACCAAGGTCAACACGGTTTACTTCGGCGGTCCCCACATCTTTTTGCCAGATACGACCACTTACGAAAGCCCGGACTCGGAAAAACTCTTGGGCGTGTTAAAAGAACAGACCCTCAAGCTCTTCCAAATGGCCGGGGTAAGTGAAGAAAAAGCCGCTGAATATGTAGACGGGGCCCTGGCTTACGACCAGCGCCTGGCCAAGGTAGTCAAGTCCAGCGAAGAATGGGCTGACTACCCGGCCATGTACAACCCGATTTCATTGGCGGACTTCAAGAGCAAGTTCACTAGCTTTGACATGGGCCAGTTCCTAGCAGGCTTCCTTGGTGAAGAACCAGAAGTTTTGATCAACACGGAACCCCGCTACCTGGACCAGGCAGAAGGTCTTTTAAATGAAGCCAGCTTCAGTGAAATCAAGGGCTGGATGCTGGTTAAGTTTATCAATGACGTGGCCTCATCTCTGTCGCAAGAATTCAGAGAAGCCGCCTTCCCGTTCAGCCAGGCTTTGACCGGCCAGCCGCAACTGGCCAGCGGGATCAAGCAGGCCTACCGGATTGCCAACAGCACTTTCAGCGAAGTTGTCGGCATCTACTACGGGCAGACCTATTTCGGGGCTGCTGCCAAGGAAGACGTTTTGGGCATGATCAAGCGGATGCTGAAGGTCTACGAGGACCGGCTGGCCAAGAACGACTGGCTCTCCCAGGCAACTAAGGAGAAGGCTATCACCAAGCTGCAGGCCTTGATCTTGAAGGTCGGCTACCCGGACAAGATTGAAGACATCTACAACCGCCTCCAGGTTACCCCGGCAGAAGAGGGCGGCAGCCTTTACAGCAACCTGCAGGCCGCCAGCCAGGAAAGCATCAAGTACAGCCTGGAGAAGCTCCACCAGCCGGTTGACCGGACTGTTTGGATGATGCCAGGCAACCTGGTTAACGCCTGCTACGACCCGCAGAGAAACGACATCACCTTCCCAGCGGCCATCTTGCAGGCACCGTTCTACAGTGCTGACCAGAGCCGGGCAGCCAACTACGGCGGGATCGGGGCCGTGATCGCCCACGAAGTTTCCCATGCCTTCGACAACAACGGGGCCCAGTTCGATGAATTCGGCAACATGAAGAACTGGTGGACCGAAGCTGACTACAAGGAATTTGCTGACCGGACCAAGGCGGAAATCGCCCTCTTTGATGGGCTCAAGTTCGGCCCGACTACTTTGAACGGCAAGCAGATTGTGTCCGAAAACATCGCTGACCAGGGCGGCTTGGCCGCGGCCATGACCGCCTGCAAGGAAGAAGGTCAAGGCCTGGAAGACTTCTACGCCAACTGGGCTAGAGTCTGGGCACAAAAGTCCCTGGAAGCAGCCATCAAGATGATCGTTTCCGTTGACGTGCACGCGCCAGGCCCTCTGCGGGCGAATGTCCAGGCCCAGTGCCAGGACGAATTCTACGAGACCTTTGACGTCAAGCCGGGCGACGGGATGTACCTGGCTCCGGAAGACCGGGTCAAGATCTGGTAGTTTTTCATAAAATTTCATAAGCAACAAAAAAGCAGTCATTCCATCGATGACTGCTTTTCTGCTGCTGTGTGTTTGTCTAATATATGTGTGTAAAAGAGGAAAAGAAAAATTAATTCCTATAGGAGAAGCAATTTCTTGCTTCTGACTATGGTTATATAATAACGGCCCTTTGTAAAAAAGCTGTGATCAATCTGCTTTGCTTCAATGAAAAAAAGTTTGTAATTTTCTAGAGTATTTAAGACTTTCTAAAAGCAAAAACGGCAAGCATTCAATCGCTTGCCGTTTCTTTATTTGCTAATTACATCTTTTTGTCCTTTTACTTCTTGTTCAGCGAGGTCTTACTGTAGTCAACCGGAGCAACCCGCTTGATTCTTTCATGCTCTTGCTTACCAAGGATCAAAGGCACGCGTTCGATGACCATGTCCGCGAATTCCAGGCCGAACCATTGAGCCGGGTTAAGCGACAGGTTCTGCAGCTGGACGCGGGCCTTGACCAGCCACTTCTTGTAAGAAGACAGGGTGGTCGAAGGTGAGATGACGTCGTTGACGATGACGAACTTGAAGTCGCCGACGTCCCGGCCAGGAGTAGTCGTGTATTCCTGTGGCTGGGCCTCGATCGTGTTGTCCTTGATCAAGTCGTGGACGATCTGGCGCAGGTAAACGTTAACGCTGGTTTGCTTCTTGAAACCAAGGTAGAGCTGGATGTTGATCACATTCTTGGTGCCAAAAGTGTTGACCGCGTATTCAGCGGTAAACGGCTCGTTGGTCACGTTGACCGTGACGAACCAGTAAGCCCGGGCCCGCTTTGGCCGCTTGTCCAGAATTGAGTAGAGGATTTCGCGCTTGATGAACTTGTTGTACTTGACGTTGGCCATGTAAACCAGGTTGTCAGAGTAGGTCGGGTAGTTGTCGTCGTGGCTGAGGTTAGTTAGCATGTCCGTGTATTCATCCAAGCGGACATAGGCATTGCCGGCTCCGTTTTGATCCCGGACCTTGTTGCCGAAGTACCAAACGACCATGACTGAAGCGATCAAGAGGGTGATCAACAGTGACACGTAACCGCCGTGAGTGAACTTGCTCAGACTTGAACCCATGAAGAGGATGTTGATAGTACTGAAGAAGATCACGAAGAGCAGGTTGGCCAGGTTGTGGCCCTGCTTGAGCACCAGCCATTCGTAGAGCAGGATGGTGGTTGTCAGCATGGAAATCGTGATTGACAGACCGTAGGCTGCTTCCATGTGGGCTGAGGTTCTGAAGAAAAGAACCAGGGCAATAGTAGTAATGCCTAGCATCTTGTTAACGGCCGGGATGTAGATCTGCCCTCTTTCATCAGATGGGTAGAGGATGTTCATCCGCGGCAGGAACTTCAGGTTGATGGATTCAGCCACCAGGGTGAAGGAACCCGTGATCAAGGCCTGGGAAGCGATGATCGCTGCCAGGGTGGCCAGAACGATTGATGCCAGCCGGATATTTTCCGGAATCATGGCATAGAAGGGGTTGATTTCAGTGGCTGAGTGCATGTTGGTGTTGTTTAAGATCCAAACCCCTTGCCCGAAGTAGTTCAGGGAGAGGCAGACAAAAACAAATGGCCAGGAGCCAATGATGTTACCCTTGCCGACGTGGCCGACGTCGGAGTAAAGGGCTTCAGCCCCCGTGGTGGCCAGGAAGATGGACCCTAAGATCGCGAAGCCCGCCTTGTTGTAAGGGCTAAAGAGCAATTTGATCGCGTAGTAAGGGTTCAAGGCCTGCAGGATCCACCAGTTGCCGCCGATGTTGATCAAGCCCATGACGCCCAGGAAGGCGAACCAGACAAGCATGATTGGACCGAAAGCCTTTCCGATGATTCTGGTCCCCATCCGCTGGATGGAGAAAAGCACCAGCAAAATAACAATAGTAATGACTAAGACCGTGGTCTGGTTGCTGACCGGGACATTGCCCTTGCCAAATTCCAGACCCTTCAGTCCTTCAATGGCGGTGGTAACCGTCACGGCCGGGGTCAGGGTCCCGTCGGCCAGGATGGCAGCCCCGCCGATCAAGGCCGGCCAGACCAGCCAGGCTGCTTTCTTTCTGATCAAGGCGTAGAGGGCGAAGATACCGCCTTCGCCGTGGTTGGTTGCCCTCAAGGCGATAATCACGGTCTGCACCGTCGTGAGCAGGGTCACGGTCCACAGGATCAAGGAAATGGTCCCGATGATCAAGTCACGGCCGACCGTATTGATGCCGCCGTTGCCGGCGATTACGGATTTCATGACATACAGGGGACTGGTCCCGATGTCGCCGTAGACAATCCCAATCGCGATCAAGAGGCCGGCGGCCGTCATGCGATTGAGTTTATTTTCTACTTCCATAGCACTTATATACTCCTCAGCACTTATATACTCCTCAAACTAAAAAGTTTGTGATACACAAAAACAACTGTAAAGCTTTTGTTTAGATTTAACAAGTAAAAAAAGAATGCCAGGAGACATTCTCTTTACTGTAATTTTCTTATATTTGGAGTAAAGTTTCAAGCCCTTTAGGACAAACTGCTTTTAATCTTCGCGCGAACGCCTTCGTACCAGTTGCTCCAGTCTTCGTAAGTAGTCATCGCTTCCGGGTCAACGCCGGTTTCTGCGGTCATCTTGTCGAGGATGGCTTGGAAATTGTGGGCGTGGTCGATCAGCACATGCTTGACCAGGTTCTTGCGGGAGAATGGCTGGTTGAGCAGGAGGTAGTGGTTGATGTTGACCATGTTGTGGTCTTCGTCAAATTCACTGATGATTTCCAGGTCGTCGCGTTCGAAAGAAGAAACGTAGAAGTTGGCGAAGTTGACCAGGTAAGCCGGCTGGTCGGCAACTTCGCGTGCTGGCATGGTTACGCGTTCTGGTTCAGGCATCACGATCTTGAACATGTCTTCATTGCTGCGGATTTTCTTTTCTTCTTCTTCTGCCAAAGTTGTAGCTCCTTTTTAAATAAAAGTCTATAGAGTCAATAGTAATTTTAACGGCTTTAAGGCCAGAAAGCAAGCGCCAGCCCCCCATAAATCAAGGCCTGGCGCTGAATTATTTCTTATTTGCCCGACTTTAGGTAGCCCTCGACGTCATCCTTGGTGATGGAGTCGATGGTGGTGTGGCCCTGCTGGTAGGCGTAGTTGAACAGGTTGATCAGGTCCTGCGGGCTCCAGCCGGCAGTGCTTTCGCCCAGGTTGTCAAGCTGGGTGCGGATCTGCTGGACGTCCCGGCTGGTCACGGTGCTGCCGCCGACCTTGTCATTGTAGCTGGTCCCGGACCCTTCAGCCTGGTTGCTGGAAGAGCTGGCTGAGCTGGAAGCGTCAGAAGATGAGCTGGAACTGGATTCCTTGCTGCTGGACTTGCTGGAAGAGTCTGAAGAGGATGAGCTGGAGCTTTCAGAACTGGAGCTGGAGTCTTCCTGCTTGCTCTTGGCTTCCTTGAGCAGGTCCTTGACGTTAGACCGGACCTTGGCGTAGTAAGCCCCGTTGATGTAAGGCAGGTCTAAGATGCTGCTGTAGGTGGAAGCGGCGCTGTCGTAGTAGCCGTCTTCCATGGCCTTGGCTGCCTTGTTTAAGAGCGGCTTGATTTCACTGTCGTAGTTGTCCTTGACGGCCTTGAGCTGTTTAACCAGCTTTTTGGCCTGGCTGGTCATGACACTGTAGCCGCCATTTTGCTCCTGGGCCTTTTGGGCCAGGTTCAAGGCGCTGGCGTACTTGACGGTCGTCTTGGCCAGTTTCACGGAGTCGGCCAGGTTTTCGGCCTGGGCCTGGTAGTTTTTGGCTTGGGCAGTTGCCTTAGCCTGGTAGGCCTGGTCAAATTCGTCAGCGGCCTGGCTGTACTTCTTGGCTTTTACGGCCTCTTTGCCGGCCTGCATGTGGCTGGAGTAGCTGGAACTTACCGTCTGCTCCTGGCTCTGCTTTTGCTGGCTGGAGTAGAAGTAGGCGCCAGCCCCGCCCAAGGCGAGTACGGCCACCACAACGATGGACCAGATAGTCGATTTTTTCATAAATAACCTCCTCGTTAATTTTCCCAAGTATACCAGATCAGCCACCTGCTTTAGGCAGCCAGTCCAACTTGTAATTGTTCCTTAACAAAAAGTGGCCGACATTTGCTTCTTGAAACGTTAGTATCAGTGCAGGCCCAAGGCGCCGGGGCCGGCCGGAGCGAAGCCCGTTGCTTCGCGGCAAGATTGATTTTTTACAGAAACAGGAGAGAAAAAATGAACTTCACTTTAGCTGACCAAAGCATTCAATACACCTTCAAGGCCGAAAAGTATGACAAGGGGCAGATGCAGCGCAGCCTGCAAAACGTCAAGCTGGATGCCAGCCCGGAAAGCCTGGTCAAGGTGGGCCAGGCCATCAGCAAGCTGCAAGGCGATGAACTGGCTGCCTTGACCCTGGTCCAAAAGCACAATTTGACCTTGGCCTAACTCTTTGACGCGGAAACTTCAGATAAAGAATTTTTGAGTAAGAAACAGGAGAAAAAATCATGACTACGACTACCGAATTGCAATTAACCTTTAAGTCCAGTGCCGGCAAAAAGAAGAGCCTGAACCTGCCATACGCGGTCAAGGGCTTGAGCGCGGACGTGGTCCGGGAGGCCGCGGCCGCCATCGCCGGCGAGGGCGTGTTCGTCAAGGAAGGGGAGGTCCTCTATGCTGAGCCGCTGGCTGCAAACTATATTGAACGTACTGTTACGGGTGTGTTTGACGATAGTAATCATTAGACAGATCTGGCCGCTTTAGCCGGATGCGAAATTTATACCCAAGAGGCGGCCTGGCCGCCTCTTTTTTTATGTTTTATGCAGCTTTGCCCCCGCCTTTTGGTATTTTCTTTCTTAGCTTGGAAAGGGGGAAAAAGCAGTTTTTTCCTATAAAAATTGTAATTGCTTAAGAAAATTGTTACTTTTACTTTACAGAATGCGCGTTCGATTGTAACTAGAGCGCTGAGCACATACAATAGAGGCTACGATTGAATTATTAGGAGGAAATTAATGAAGAGAAGATTTTTGACTGGACTTGCTACCGCAGCGATGCTGACTTCCGTCGCCGTTCCAGTGACCAACAACATGTTTCTCTCAAATCAGGCAGTTGAGGCATCAGCTACCAGCGATGCCTTTTTAAGCAAGGTCAGCCTGCAGGCGCAGAAGACGTCCAAGAAGTACGGCGTCTACGCCTCTTTGATGCTGGCCCAGGCCGCCTTGGAATCTGGCTGGGGGACTTCAACTCTGTCTACCCAGGCCAACAACTTCTTTGGGATGAAGGCTACTGGCTGGACCGGGGCAACCTATAGCGTCAAGACGGCCGAACAGACTTCCAGCGGCAAGACTTACTACATCACGGCTGCCTTCAGAAAGTACAGCAGCTACCAGGCATCTTTTGACGACTACGGCTTGAAGATGCGGACGACCCTGGGCAATTACGGCAGCTTGTGCTACAGCAAGACCTGGTTGGAAAATGCCTCAAGCGCCTCAGCTGCCGCTAAAGCCATCAAGGCTGCCGGCTACGCGACTGACACCAACTACGCGACCAAGCTGATCAGCCACATCGGGACCTACAACTTGACCAAGTATGACCCGGTTTACTCCGGCACTAATTACACGGCCAAGGTAGCCAAGTCCGGGGCAACCTACCTCTACCCGACTGACCACTCTGTTTCACCAAAGAAGTCTTACGTGACTGCTGGCCAAACCGTAACGGTTACCAAGACCTACACTTACTACAATGGCAAGAAGCGGATGTACCTCAAGGGCCTGGGCTGGATCAACGGCGAAAGCCTGAACACTGGTAGCTCCCAAGCGCCAAGTGCTGCTGACAATGCCGCCAGCGTTTCCGGGCAAATGAAGGTGCTGATGCACTCAGCAGCTATCTACACCAGTACTGGTGCCAAGAGCACGGCTAAGTCGGTCAAGGCTGGCAAGAGCGTGACGACTTACGGGTCAGTCACGATCAACGGGGCCAAGTACTACCGGGTCAACTCCGCCAGCGCTGACCAGTTCATCAAGGCAAGCAACTTTGATGGGACCAGCCGCAAGCTCAAGCGCAATGCCTACATCTACAACAATGCGGGCAAGCGGGTTGGCAAGACCAAGTGGCTCAAGGGCAGCACCCACACTGTCTACGGCGGCAGCGTGAAGATCAAGGGCAAGCAGTACTGCATCGTTGGTCTTAACCAATATGTTAAGAAGGCCAACTTTTAAGCAGACAGGGAAGAAACTGAATGAGATTTAACAAAATTTTGACGGCAGCAGCCGTGGCCAGCCTTGGCTTGACGTTTGTTTTCAGTCAAGGGAAGGCCGCGGAGGCCTCAATCAACAGTGAAGCCAAGACCAAGACTTACAGCGGTACCAAGTCCCTGGAGACCCTGCTTAAAGCCGTGGGGCTGACTTACAACCAATTCAACAGCGTGGCTAATGGCAACAAGTACGGCAGCCGTTTTGGCTACCGCAATGGGGTTGGGAAGCCTGAAGGGGTGGTCGTGCACGAAACGGCGACCCCAGGTGCAACGGCCTGGGATGAAGGCCGCTATTTCAACAACAACTGGATGGCGGCCTACACCTATGTTCACGCCGTGGTCGACAATAACCAGACCATCCAGCTGATGTCACCGGACTATGGGGTCTGGGGCGCTGGCCCAATTGCCAACGTCCGCTACATTCAAGTTGAGCTTTGCGAAGTTTCGACCCGGTCCCAGTTCGTGCAAAGCGTGGCTAACGATGCCTACTATATCGCCAGCCTTTTGCACAGCTACAATTTGACTCCTTCCCGGGCCAGCCAAGATGGGTCAGGGACGATCTGGTCCCACAATGAAGTCTCCCATTACCTGGGCGGGACTGACCACGGGGACCCAGACGGCTACTTTGCTAAATGGGGCTACTCCATGAGTGACTTCTACAGCTTGATCAGCTACTTCTACAACAAGCAGGGAGCAAGTACCGGCACCAACACTGGCAGCACTAATACTGGCTCTGGTTCAAATACTGGGAATACCAATACTGGCAGCAATACCAGTTCAAGCACTGCTAGTTCCGGCCAAGCTCCAGCTACCCAGCCGGTAACGACCAAGAAGCTGCGCTTGATGTGGAATGCCTACAGCTATGATGCCTCCGGCAAGAAGCTGGCAGTCAAGGCTTTGAAGGCCGGGCAATACCTCAAGGTCTACGGGTCAGCTGTAACGATTGGAAGCAGCAAGTACTACAAGTACGCTGATGGCAAGTATGTCAAGGCTGGAAACATTGATGGGACCAGCCGGACTTTGACTGGCAATGCCTGGACCTACACTATTTCCGGCAGCCGGGAATGGTCCACGACTAAGCTCTTAAAGGGGAGCAAGGTCACGACCTACGGCAGCCAGGTTAATATCAAGGGCAAGGCCTACTACATGACTGGCTTTACTAGCAATAACGTTGCTAAGTACGTTAAGGCAAGCAACTTCCAAGTCAAGACAGTAGAAACCACCACGACCAAGCGCTTGATGCGGAATTCTTACAGTTACAGCGCTGCTGGCAAAAAGTTGCCAGACAGCATGCTGAAGGCTGGGCAATACCTCAAGGTCTACGGGTCAGCTGTAACGATTCGCAAGGCCAAGTACTACAAGTACGCTAACGGCAAGTATGTCAATGCTGGCAATATCGACGGGACCAGCCGGCCTTTGAAGCACAATGCTTACGTCTACACGGTCAAGGGGACCCGGAACTGGAGTGAAGCCAAGCGTCTGAAGGGCAGCACGGTTACTACTTACGGCAGCCGGGTCAAGCTGGCTGGCAAGTACTACTACATGGTCGGCTTCTCCGGCCAAACCGCCCTGTACATCAAGGCCGGCAACTTTTAATCGAAGATAAGGAACGGATCCAGGCTTAGCTCGGGTCCGTTTTTCTGTCTTAATTTGGCGATTATTATATAATTAGAAAAACTGTAATTAGTGAGGAGATACTTTTTAGCATGGAAGGACTATCACTGTTTTTAACGGTCTTCTTGGCCCTGGTGATTCCGATCGTCATGGCCCGCTTGCGGGTGACCACGGTGCCGACCGCCGTGGCCGAGATCATCGTCGGGATCTTGATGGGCAAGAGCTGTTTGAACCTGATTACTCAGACTTCCCAGCTGACTTTTTTGTCCGACCTGGGGGTCATCGTCTTGATGTTTTTGTCAGGGATGGAAATCGATTTTGACTTGCTGAGCCCGAAAAAGCACACCCGAGCCCGGAAGTCAGAGAGCGGCAAGCAGGTCAAGCCCATGGTCGTGGCTGCCTTCGCCTTTGGCGGGGTAGCGGTGGCCTCAGTTTTGCTGGCTTTGGGGATGAAGGCCCTGGGTCTCTTTAGCGACGTGGCCCTGGCTTCGATCATCTTTATGACTGTGGCCTTAGGCGTGGTCATCGCGACTTTAAAGGAAAAAGAAATCCTGGGCCGGCCGATCGGACAGACGATCTTGCTGACGGCGGTCATGGGGGAAGTTATTCCCTTGTTGCTTTTGACCATCTATTCCACCGTTAACGGCGGGGATGCCCGCAAGCTCTGGCTGATCATCCTCTTGTTTGTAGCCGCGATTATTCTTCTGCGCCGCTTTAAGCGGCCTTACCTGTGGTTTGCCAAGGTGACCAAGGCCACAACCCAGTTGGACGTCCGCCTGGCCTTCTTCCTGACTTTTGCCCTGGTGACGGTGGCAGAGCAGGTTGGGGCGGAAAACATCCTGGGTGCCTTTTTGGCCGGGATGGTCATGAAGCTGCTGGAGCCAACCCAGGCGACCAAGGACAAGCTGACTTCCATCGGCTACGGCTTCTTTATCCCGATCTTCTTCATCCGGACCGGGGTCAACCTCAACTTGAAGCTGCTCTTCGCCAACCCGCAAGCCTTGATGCTACTGCCGGTTTTGGTCATCTGCTTCTTCTTAGCCAAGCTGCCGGTTACTTTGACCTACATGCGGGCCTTTAACAAGCGGAATGCTTTTGCTGGGGGCTTCTTAACGGCAACGACGATCACGATCGTTCTGCCGACCTTGCAGGTAGCCCGGAAGCTGAACGCCATCACGGCGACTCAGTCCAGTGCCTTCATTTTGGCGGCGGTCATCGTCTGCATCGCCTGCCCGATCGTCTTCAACTCAACTTTTGCCTTGACGCCGGAAGACAAGATCAAGGAAAAGGTCGTGATCTTCGGCCTCAATGCCGTGACCATGACCGTCTACCAGGACCTGCACGACTCCTGGTATTCAGTTCAGGTTCTGACCTGCCGGAAGGAAAAATACGACACCTACAAGAGCAAGGTCAAGAATTTGAAGCTTTTGCCTGACCGGAAGCTGGATACTTTAGAATCAGCCGGGGCCTTTGACACCGATATCTTCGTGGCCACCTTCATTGACGACCAGGCCAATTTGGAAGTGGGCCGGGCAGCCAAGCAGGCCGGAGTCAAGCGGGTCATCGTCAGCCAGGGCAAGATCGTGGCTGATACGGTCGACCAGCTCAGAGAGGAAGGCATCGAGCTTTTTGCCTTCAACAACCTGCATGGGGCCATGCTCCGGGCCTTGATTGAATCACCAGCCGTCTACCGGATCATCACGGACACCAACAATGCCCTGTATGACGTGGTGGTCAGAAACTCGGCCTACACCGGCCGCCAGCTGATGGACTGGGACTTCGTCGACCAGATCACCGTTTCCCGGATCCGGCGGGGGGACAAGTGGATTTCCCCGCACGGGTCAACCGTGATCGAGCCGGGCGACGAACTGATCTACAGCGGCCCTTGGCGGGAAGCCGACCGGATTCACCAGCTTTTGAGCCGGGAATAGAAAACGACTATATCAAAAAATCGCTCTGCCAGCCGGCAAAGCGATTTTTCTTGTTTATTTCCCTAGTTCTTTAATTCTTTATTTTTCTGTTTTGCTTTTTCTGCTTTTTCCTTAAGGCATGCAGTCCCTGGCTGCTTCCAGGACGGCGATGACACGCAGGCTGTGGGCAAAGGCCTGGGAGTCCTATGGCCGCGGTCAAGCTGGCCTGTTTGTCGTCATAAGCCAGGACTAAAACGCCGGAAGTGTCGACGCCCTTTTGCAGGTTAGGGAAGTAGTGGACGTCCAAAGGCGCCCCAAATAGGCTGACGGCTAAGTGGATGTTGTAGACGTTCAAGTCCAAGAGGGCTCCGCCGCCCAGACGTGGGTTGAAGGCCGGGGAGATGTCACCGGCCAGGAAGCGGTCGTAGCGGGAAGAGTACTGGGTGTAGTTGAGGCTGACCACGTGAACCGGGCCTAAAAGCTGCAAGTCACTGGCCAAGGACTTAAAGGCTGGCAGGTAGCGGTTGGTGATGGCCTCGGTAATGAGGCAGCCCTTCTGGTCGGCCAGCTGCTTGAGCTCTAAGGCTTCTTCAGTCGTGAAGACGAAGGGCTTTTCACAGATCACGTTCTTGCCGGCTGCCAAAGAGTCCAGGCACATTTGGTAGTGCATGGAGGAAGGGGTAGCCACGTAAACCGTGTCAACTTGGTCGTCTTTGAGCATTTCCAGGTAGTCGTCGTAGACCCGGCTGATGCCGTATTGGTCAGCCAGTTCTTGGCAGGTGGCTGCTGACCGCTTGGTCGTGGCGATAGCACTAATTTTAAGCCGGGCAGGGGAAGGGCAGTGAGGAAGTCTCTAACGATCTTGCCGCTGCCGATAATACCGAGTTGCATTTTTTTGCTTCCTTACTTGCACCTCATATTTTGTATTTTATGTTTTCTATTTATTCAGCCGGCTGACGTCGACGGAATTTTTGCTGACCGTCTTGGGGATGGCCAGCTTTTTCTGCTGGTTGACCTTGAGCATGGACAGCTTGGTTGAGCTGGTTTGCCCCTTGACCTTGTACTTGGCATAGATGGCCAGGCCGGTCAGCTGCTTTTTCTGGCTGAAGTCTATGGTCATCTTGATCTGCTGGAGCTTAGCTTTGGCTATTTGGCTGTCGCTAGACAGGCTGGCCAGGCCGTTGGTTTCCGTGATCTCTTGCCAGAGGCGCTGGCTCTTGCCCGTGTAGTTGAGCCGCCAGCCATTTTTTGTCCGGCTGACGGAAAAAAGCTTGGCGCTCTTTTGGCTGAGGGTCAGGGTGTCCATGTCCTTGACCAGCTGCTGGAAGTGGGAGATGGTCGTGAACTGGTTGAGCTTGGCCTTGTACCAGGCTTCCTGCTGGTCTTTATAGTATTTGACGTAGGCATAGCGCTGGCCCACCCACATCTTGACGTTCTGGTCCCCGCTCTGGGTTAAGTCCGCCTGCATGACGAAGGGAGACCGCTGGTAGTTGATCTGGCCGTAAAAACGGACTGGTTTATTTCCCGTGTAATAATGTTCGTCGGTCTTCAGCTGGAAGTTAGCAATCTTGCTCTGCTGGGCCTTTTTGACCAGGCTCTGGGGGCTGGGCTTGGCGCAGGCTGTTAAAAAGAGGCTGGCCAGGGCTAGAAGGGTGAGCAGGTGAATTTTCTTTTTCTTTGACGGCATAGTATGAATCACATCCTTATTCTTCAATTCTAACAAATCACTGACTAATTGTTAGCGATTCCAGTCAGAAAAAGTGTTTTTTTTTCCTTTAGGACTTTGAAAAGGCCGCGAGAGGCCGTATAATAATTAGTGAAACGTTTAATTTGCTAAAGGAGATTTTTTAATGTCTAAATTAGTTTTAATCCGTCACGGTCAAAGTGAATGGAACCTTTCAAACCAATTCACTGGTTGGGTTGACGTTAACTTGTCAGACAAGGGTGTTGAAGAAGCTAAGAAGGCTGGTCGTTTGATCAAGGAAGCCGGCTTGGAATTTGACCAAGCTTACACTTCAGTTTTGACCCGTGCGATCAAGACTTTGCACTTTGCTTTGGAAGAAAGCGGCCAACTCTGGGTTCCAGAAACTAAGTCCTGGAGACTGAACGAACGTCACTACGGCGCTTTGCAAGGCTTGAACAAGGCTGAAACTGCTGAAAAGTACGGCGACGAACAAGTTCACATTTGGCGTCGTTCATACGACGTTTTGCCACCAGTTTTGGCTGACGACTCAGAATTCAGCCAAGCTAACGACCGTCGTTACGCAAACTTGGACCCACACATCGTTCCTAAGGCAGAAAACTTGAAGGTTACTCTGGACAGAGTTATGCCATTCTGGGAAGACCACATTGCTCCAGACCTTTTGGCTGGCAAGAACGTGATCATCGCTGCTCATGGTAACTCACTGCGTGCCTTGACTAAGTACATCGAAAACATCTCTGACGAAGACATCATGGATGTTGAAATGAAGACTGGTGAACCAGTCGTTTACACTTTCGACGACAAGTTGAACGTTGTAAGCAAGGAAAAGCTGGACTAAGTCCTCTTTCCCTAATTAAAGCGAAGCTCCGGCTTCGCTTTTTTTGTTGGACTGATTAAGGATTGACAGATGGCTTGCTAAGATGATAGCTTAGATAGGAAAGTTGTGCACAGGGATACTTACGGGAAAATATCGCGCGCCCGCTTTGACTGTTTTTTACAATTTCAATAAGAAAAGGCCGCAGGCAAAAGTTGGCGGTGCTTTTTTGCTATAATACGGACTAATGTCATTTTTTAAGTAGGTATCAATTTATGAAGAAAGAAGACAAGCTGGGCATTCCGGAGACCAGGCAGCATGCCAGGAAGCGCAAGCAGAAGCAGATCCGCAACTGGATCATCGGCATTTTGGCGGTTGTCTGCGCCATTGCGGCCGGAGTGGGCCTGTATGCCGCTCATTTGTACAAGACGGCTGAGCAGGCGGCCAACAAGGCTTATGACTCAGAAAACGCGGTTAAGACGACCTATGGCGAATTCAACGGCAAGAAGCCTTTTGCCGTCATGCTCTTAGGGACCGACACCGGGGCCTTGGACAGAACGGAAAAACGCGGCAATACTGACACGATCATCGTCGTCGTGGTCAATCCGAAGAAGAAGAACTACACGATGATCTCGATTCCGCGGGATACCATGGCTGACATGGTTGGCGATGATTCAAACGACGTGCAGAAGATCAACGCGGCCTATTCGATCGGCGGAGCCAAGATGGCCATGAAGACTGTCTCTAACCTCTTGAACATTCCGGTCAAGTACTACGCCTTAGTCAACATGGGCGGGCTGATGAAGCTGGTCGATTATGTCGGCGGGATTTACGTGACGCCGCCTCTGACCTTTACCTACAGCGGCTTTCCTTTCAAGAAGCGGGTCCGCCAGCACTTAAACGGGCAGGCGGCTCTGGCTTACAGCCGGATGCGCTATGATGACCCGCAGGGTGACTACGGCCGGCAAAAGCGGCAAAGAGAAGTCATCACCAAGCTGGTCCAGAAGCTGGCCACGGCAGACTCACTGACGAACTTCAGCAAGATCGCCAATAACCTGTCATCAAACGTGAAGACCAACTTAAGCTTCCAGGCTTTGAAGTCGATCTTGGCCAACTACTCAGACTGCACTTCTTCCAGCGACAGCGACTACCTGCACGGCTACAGTACTTATGTTAACGACGCGGCCTACCAAATCGCGCCAACCAGTGAACTGCAGCGGATTTCCAACAAGATCAGAAAACTGCTGGGCTTGAAGACGGCGACCGTCTCCAACCGGGAAACCGAGCTGAATACCTTAAACGAGACCGCCGGCTTTAAGTTTGGCAGCGGTGAGACCCAGAACTACACGATCTATGATCCGGGCACGACGGCTGACAGCGTCAAGAGCGGCAAGAAAAGTTCAAAGTCCAGCTCTAAATCCAGCAGCCAGGCTTCCAGCAGTAGTTCCAGCAGTACAGATTACTCTGGCAATACTGCTTATTCTGGTAGCACAAATTACGATACGACTTATAGCTACAGTTATAATTACAACTACAATATCAATCCGTTTTCAGGGGGCTATTAAAGGTGCTTAGCAAATTTTTGGCAGTAATTATCGGCTATTTGTTTGGCAACTTCATCAGCGCCATGTTCGTGGGCAAGTACTACCTGCACAAGGATCCGACCAAGTACGGGTCATGCAACCCGGGAACGGCCAACATGGGGGCGGTTTTCGGCAAGAAGGCGGGGATTCTGACCTGCATCGGCGACTTGCTTAAGACCCTGCTGGCCATTTGTCTGGTCTATGCCATCTACCACCAGCACTTGCTCACGGCTTATACGGTCCTGGGCGTGGTCTTAGGCCACTGCTTCCCGGTCTTTAACCACTTTAAAGGGGGCAAGGCGGTGGCCGTGACGGCCATGGTTACGGTTCTCTACGACTGGCGGGCGGGGCTTATTACTCTTTTAATAGCCTTGGTCTTGACCGCAATCATGCAGAACCTGACTATCCCGCCTTTGGTTTTCATGCTGTCTTTCAGTATTTACCAGCTGACCAAGTCTCTTGAACCTGGCCTGGCCTTCTTGATCATGACGGCGGTCATGGCCTTCAAGTTCCGCTACGATATACGGGACTTTTTCACGGGCCATGGCAAGCGGGTCGATATTTTATATACGATCAAGAAGAAGTTAGGAATATTGAAATAATTTCTTGGTTTTTTAAAGAAAAACTGAGTATAATGGATAATGAATTTGCAAAAGAAAAGAATAATTCCGATATTGATGAGTGAACAAACACAATCCAGAAAAATTCATAACCTGCTGAAGTACGGCTTCCTGCTGTTGGCAGCTCTGGTGCTTTTGCTGCAAATGTTTAATTTCAAGAGCAGCATGCTGAAAAGCTCAATTACCTACCTGCGCCACCTGCCACTAATCGTGGAAAGCGCGACCTATTGGTTTATTCCAATGGTCTTCGGGGCCGTTTACAGCAAGCGCAAGCTGCGCTTTAACGAAGGCTTTAGGGCCTGGGCTATCATGGAAGTAACCCTCTTGGCCTACTATCTTGCCTTCTTTATCTCCAAGCCATGGCACTTAAATGCCTGGCGCTTCTGGGGTATCCTCTTCCCGATTCTGACCTCGATTTCCGTCTTGATGACGGGCCTGGTCTTCGGCCTGCTGGTGCAGCCGGTCATTTATGACTGGCAGGAGAAGTTCAGCAAGAAGCAGAGCTTGATCATTTTGATCGCCTTGACCTTGCTGGGCTTTACCCTGTCGGCCGGGACTTTCGAGATGAATTACTCCATCTATGGTCTCTACCTGGCTCTGCCATTTGCCTGGGGAATGTTCTTAGGGAAGGCTGACTTTTCCGTCAAGCAAACGGTCATCTTTATTGTTGCCGGTATCCTTTCCCTTGGCCTGGTAATCGTCGGGGTAGCCGGCTTTAACGCCGTTTACTGGTCACAGATCATGTCCTGGCGGGCCAACCCGTCATCATGGAACTACCAGTTCCTGCTCAACGTGACCTCACCCTTCATCTTTATTATTGCCTTGGCTGCTTTTACTTTTGCCCGGCCGGCCATCAAGGCTTTGGAAGCAAAGGACCTGGACTTCCTGGTTCTGCTGATCATCTTCATGCAGGCACCAGATGCCAACTCCTTTATGTCTTCCTTTAAGTACGGTACCGGCAGCCGGCAATTGAACCGGATGATCACGATTTTGATCATGCTGGTCATTGCTATTGCCTGGCACTGGCTGATTGAACGCTACTTGTGGCGCTTCAAGCCAGTTAAGCGGATCAACCGCTTCTTGTATGAAAGCAAGAGCTTCGGGGCAGCGGCTGAAGAGGCCTTTAACCGCCTTTGGGGCTGGATGAAGTACCACCGGATCAACCTTTTGACTTGGACCTTCTTCTTTATCCTGTCCTTTGCTTCCTTCCTGGTTGAATCCGACAATATTCGGATCCAGATCACGACTGCTTCCAACGTCAACGCCGTAGTCTGGCTGGTTGGGACCAAGCTGGGGGCCTTGATTTTGACGACAATCTTTATTGACGCCTTCTTCACCATCCTTTACTTCGTCACGACCAGATACTGGGTTTCCCTCATCACGACTTCCACGGTCGTGATCGCTTGGGCGGTTGCCAACAAGATCAAGCTTGACCTCCGGGGCGAGCCAATTTACCCAAGTGAACTGTCTGAAGTAACCAACGCTGACAGTTTGCTGAGCATGATCGGGGGGCAGAAGACATTGAGCATGATCCTGCTGGCTTTGGCTGCCGTTATTGCCTTGATGGTCTTCTGCGAAGTCAAGTTCAAGGTCAAGAAGCGCGGCAACTGGAAGCAGCGGGGGATGTGGGCCCTGGCCAGCCTGGCCCTCTTCATGACGCCGAAGTGGTTTAACCACCAAGGCTCAGCTATTTACCGCTTGAATCGGGCCTTTGACAACAAGCAGTCCTTCCGGAACCCGGAAAGAGATATCCAGGTTAACGGGCCAATTTTGAACTTCCTCAACTACATCGACTTGCAGATCATGGACAAGCCAAGCAACTATTCCAAGAGCCAGATTCAGAAGCTCTATGAGAAGTACCAAAAGGTGGCTGACCAGATCAACAAGACCCGGACTAACGATTTGTCCAAGCAGACCGTGATCTTTAACTTGAGTGAAAGTTTCATCGATCCATATACCTTCCCGACGATCAAGTTCGCCAAGGGGACCAAGGATCCGATTTCTTACATCCACTCACTGAAGAAGACGACCACTTACGGCAGCATGCTTAGTGCCGGCTACGGTGGTGGTACGGCCAACATGGAATGGGAATCACTGACTGGCTTTAACATGGGCTCCTTCAGCACAACTTTGACTCCTTACGTCCAAGTCGTGCCGCAGTACCAGTACTACCCAACCATTGGGGCCAACTCCAACTACTCTTCAGCAGTTCACCCATTCATCGGGACTTACTACTCAAGAATTGAAGACTACAAGCGCTTCAAGTTCAACAAGTTTGTTTACCTTGGTTCCAAGTACAAGATCGTGGAACAAAAGAAGCTGGGGACCAGTTCCTACAACTCCGACTTCACGACTTATGCCAACGGCTTGCGGCAGATCAATTCCCGCAAGGGCGGCCAGTTCATCAACCTGATTTCTATTCAGAACCACATGCCGTACAACAACTGGTACCCGAAGAACTACTATGCCGGCAAGATTTCCGGTGATCTTTTTGACGACGGCAGCATCAGAACGCAAGTGGCGACCTACATCATGGGGACCCACTACACTGACCAGGCGGTCAAGAAGTTCATCAAGCAGATTGACAAGATCAAGAAGCCAATTACCCTGGTCTTCTACGGTGACCACTACCCGTCAATCGTTTCCCAGTCATACACGTCTAAGTACCCTGTCCAAATGCACTCGACCCGCTACTTCATCTACTCCAACAAGTACGCCCGTCAGCACGGGGCTAAGGCTAAACTGACTTCCAAGACCAACTACGTCAACACCAGTGACTTCATCGCCATGATGCTGGAACAAACCAACAGCAAGGTTACGGCTTACCAGGCACTTTTAACTGAAGTGCACAAGAAGCTGCCTGCCTTGACGATCAGCTACAGCGATGACACCGGCTTTACCCTGGTTGACCAGAAGGGCAAGGAAGTTGACCCGAAGACCTTGACCAACTCACAACAAGCCCTGCTCAAGGACTACGAAATGATCCAATACGACATGACGGCTGGTTCAGCCTATGCCTTGAAGATCAAGGGTTTCTACACTATGAAGAAATAATTTGATTTATTGCAATAAAAGGGACTAAGGAGGATTAGTCCCTTTTTTTGTCTTTTGAAATAAAAAAAGGGGGCAATTATGGCTCATAAGCAGCGCGTCGCCTATCTCGTCGCCTATCTCGATTACCTCCGCCTTGTGGCAATCTTGGGGGTAATCACTATCCATGTGGCCACGTCTCTCAACTTCTACCGGCAGGATTACGCGAGCTTAAACTGGCAGATCCTCAACTTCTGGGACGGCTTGAGCCGCTTTTGCGTGCCGTTTTTTATCATGATTTCCGGGGCTATTTTTCTGAATCCGGATTTTGACTTGAGCTGGGAAAAGCTTTTTAACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGCGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATGGCCCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCCAGACAGAAGCATGTACATGCAACAGAAGCCTGGCAAGTGTACTGCTGGCTTCTCAAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCAACTGGCTTCGCTTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACCTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTAGATACAAGAAGACTGAGCTGACTGCCAAAGTATTCGACCACGTTTCGATGACCACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCGTCCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCGCGGCCAAGAGGCGGATTATGGCCCAATCAAAGGGGACCGATGTAGTATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCCGTCAACGTGGTTTGAACGTAATTGCCATGGTGAAGAAAAGCTCCAAGATCACATACGAGTTCGAAGGAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGCGGTCGTTCAAGATATCTCCTGTCCGTCCCTGTAAAGGTTGGCGGCCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCCAACCGCAAAGACTGGATCGCTCTTATTTGCACGGACATGACGATCGATGAAAATGAGATCATCAGAATTTACGGCAAAAGATGGGACATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTGAAGCTTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCTCATACAGCTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCATTTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCACTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAGGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCACAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACCGCTGGGCATGCGACTTTAGCCAAACGAATAAGGTTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTCCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTGCCTTCACCCAATTCAATTAGATCTAATTTTCTTAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTGCATGGTAGACGAGCTTGCGGACATCGCTTTCAATTACTCCCTACAAACCCTGGTGGAAGCCATGTTCGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGGAAGGTTCACCAACGCTTTCATTTCACGCCTCCCGAAGTACATGCAAGAGGCTATATCGCCATCATTGGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTTTGAATTAAAACTGTCGACCAAATCACCTCCCAATCAGAGCGGCCAGGCCACCAGCCATTTGGATCAAGATGGTAATACATGATGTCATAAAGCTGATTTAAAGTGATTTCTTTCATGGTAAACCTCATCTTATTAGATAATTTTTATTAGATAATTTGACTACTTCTATTGTATTGCAAATTTAAGAAAAGTGGTTAAAATATGAAGTAAGCTATATGAAGTATATACGGTCTCTTTTTCTATCAGCAGAAGATTACGTGGACCCGAGTGATCGTTTCGTAACTAATTATTGCAGTGTTTGTTAACACGGTTTTAAACACGCTTTGGTTGAGTTTAATGTATAAGATGACATTTATTGGCTATTTACCTGCTCGGTTGTCAAAAGAAGCGATTGCAACACCACTTCAAATCTTAATTATTTATTTTTGGCTCAACTCAACGCAATTTGAACGCATTAAAAATAAATTACTGGGTTAATTTTTAGCGGTGCGTCTGGCAATAATCGTTTGCTGCGAACCGCTTTTTGTTGTATTTAGAAATACGAGGAGTTTTTGTTATGTATACGATCAGAGTTCAAAATATGCAGTTTCATGGGCACATTGGCGTCCTGCCGGAAGAAAAGAAGGTTGGCCAAACCCTTCAAGTTGATTTGGAAGTGGTCATTAATGCAGTGCCGGTTGCCGATCAATTAGCAAGCACGGTTAGTTATGGAGACTTCTATCCGATTGTTGAAAAAATTATTGATGAAAATCACGTCAATCTGGTTGAAACACTGGCTCAGAAAATTTTAACTGCTATTAAGCAATTGGATAGTCGGATTCAGACGGTCACTGTTCGAATCCGTAAATTAAACTTACCGGTTGACGGCGTCTTTAATAATGTGGAAATCGAGATGAAACAATCATGATGGAAAATGTCATTTTAAGTTTAGGTAGTAATATCGGTAATCGTGAAGCCTATATTAACAAAGCCGTTGCGCTGTTGGGAAACGACCCGGCTATTTTGATTGATAAAGCTTCAAGTTTTTATGAAACTTCACCGGTTGGTAATGTGAACCAGCGGGCCTTTATAAATATTGCGCTTAAAATCGCAACAACTGATTCACCGGAAGACTTGTTAACCAAAATCCACCAAATCGAATTGCATTTGCACCGGACCCGTGATGTACATTGGGGACCGCGGACATTGGATGTTGATATTATTTTTTGGGGTGATCAAAAGATTAAGACTGAGTCGCTGATTATTCCGCATCCGGAAGCATTCAACCGTTTATTTGTGCTGGTACCAACACTGGGAATCGTGACACCTGAATTTCCATTTTATAATCAAATTAAGGCTCAAATTCAAAAACTTCAAAAAGCAGATCAAACAATTCAACTTGTACAAAAGCAGACGCAATCTAAACAAGTCGTTGAAAGCGCAATTCGTCAAATCCTGAATGCGATCGGAGATGATCCGGATCGACCAGGACTGGTGGAGACACCGGATCGCGTCGCCCGGATGTATAATGAAATTTTTTCGTCTGAGGGGTTGGATAATTTTGAAGACTATAAATTGTTTAATACCAAAGAGACTGATAATTCAAAAATGGTGATGGTGAAAAACATTACGTTTTATTCAATGTGTGAGCACCACATGATGCCGTTTTGGGGGAAAGCCCACATTGCTTACGTACCTGATCACGGGAAAATTATTGGCTTAAGTAAAATCCCGAGACTGGTTGATTTTGTATCACACAAGTTGGGCCTTCAAGAGAAGCTGACTGATGATATTGTTGCCCAAATGAACCGAATTCTGGCACCCAAGGGAGTGGCGGTTATTGTTGACTCCCGGCACATGTGTGTTGAAATGCGGGGAGTTAAAAAGGCTGATTCATTAACTCGGACGATTCGTTTTTCTGGTGTTTTTGAGACCGACCAGGCGTTAAGAATGGCATTTTTAAACTCGATAGGTGATGTTAATGGGAAAACAATCTGAACTTAATGCTGCCGAGTTTCCAACGTTTCTGTATGATCAGGGCGATCGGATTGGTTTGCTCAAACGGATTTTAAAAGCACTTGGCAGTCCCGATCAGAAATTTAAAATTATTCATATTTGCGGTACTAACGGAAAAGGTTCTACGGCAATGATGATTACCGCAATTCTTAAACAAATGGGTCACCGGGTTGGGCTATTTACTAGTCCCTATATTGGCGAAATTTACAATGGCATTCAAATTGACTTTAAAAATATTCCCAGTCGAATCTTCGAAGAAAAGATCTCGGTGATTAAAAAATTACTGAGAACAGCAGCTTTTGCAAACGTTAAAGTTTCCGAATTCGAAGCGCAATTTTTAATTTCAATGTTGTATTTTGCCGAACAGCGGGTTGATTACGTTGTTTTGGAATGTGGCCTTGGTGGTGAACTTGATGCAACAAATGCCGTGGCCACAACAATGTACTCAATTTTTACCAAGATTAGCTTGGATCATGTTGGCATTTTGGGAAATAATATTACAGAAATTGCAACTACTAAATCTAAAATTATCAGGCACCATAACGTTACGATTACGGCTCAGAATCAGTCGCTTGAAGCGTTGAAGGTATTAGAAAATGAAGCTGTGTCAAAACAGGCTGTTTTTTTGAACGCTGATCGGGTCACAATAACTACCTCGCAACAATCAAAGCGTAGCAAACAGGTTCATTATCGCGCTTTGCTCGAGCACAGTGAGCAAAGCGGCACTTTTCGCTTTGGCTTGGCCGGGACCTATCAGCTTGAAAACTTGGCAACGGTATTGACTTGGTTTTTCGATTTTGTGAAACGAACGTCATTTCAACAGCGACTGGATGATATCTTGGCTCATTCTTTGGCTGAATTGGTTGTACCGGGACGTTTTGAAACGGTTCAGCAAAAGCCAAAAATCGTTTTGGACGGTGGCCATAATCCTGACGGCATCAGCGCATTTGTTGAGACGGTTCAGAAGCTGTATCCAAATGCCCCCAAGCTGATTGTTAATGGTTTTTTAAAGGATAAATCTTATGAAATAGCGGTTCAAAAACTGCTTACTCTCAAAAACAGCTCGTTTATTATCACGCAGCCGGAAAATCAGCAGCGCGAACTTTCACCGGTTAAATTGGCGGATGTTTATCAAAAATATACCAACCGGCAATTTCCAGAATTTACTTCTCCGGTTAAAGCAATTAAGCAAGCTATTATGACGGCTTCACCAACTACTGTTATCTTAGTTGTTGGTTCATTTTATCTATTAAATCCGATTCGAACATATCTACTATCTAGGAGTGAGCATAATGGAAATTAAAAAAATAAACAATCGTCAACAAACATTTAGCGGCAACGTCACCATTTCTTTTAATGCGAATACAGAAGAATTACCCAAATTAATTAATCTGTTAGCTGACCAGACTGCCAATCTTTCGATTTCGTCATCGCTAGTCATCGCGACATTTACGCAAACGGAATTGGCAGCTGTAATTAAAAGTTGGCCAGAAGTGTTTGGCGCTGAAAACGGTACGCTGCAGCAAATCCAGGCAGCTTCTCAAATCCATTTTAAGGGTCGGGGATTTGACTTTGATATTACGACCAAACCAATTATTTATTCGATTTTAAACTTGACGCCGGATTCATTTTACGATGGTGGGAGAAACGCTTCAGTCGATGGGGTTCTGAAACGAATTGAAGCAGACCTGGCAGCCGGAACTGCCATCTTTGAAGTCGGTGGCAAATCTTCCAAGCCACACTTTGATGATATTAGTGCTGAAGAGGAGTGGGGGCGAATTAAACCGTTTTTGGACGCTATTCACAAGCGTTTTCCAAATATTGTTTTGGCAATTGATTCCAATACAAACGCGGTTATTGAAGAAGCACTAAAAAATGGTATTCAAATTATTAACGACATCGATGGCTTTAATTCTCAAGCAAAACTGAATTTAGTTGCTAAATACAAACCTGCTGTTGTAACGATGTTTAATGGTCGGAACTTCAATGAGCAAACGGAAACCTTATCAAAAACAATGATGGATTTCTTTACACATACAATTAGCGATTTAACAGGCGTTGGGCTTGAAAAAGAAAACATTGTGATTGACCCGGGCGTTGGCTTTTCTGATCATAATACGTTAGCTTTTGATCTGATTAAGATGAAATTAACGAAATTAATGGCAGAATTTCAAACACCGATTATGATTGCAATTTCGCGAAAAAGTTTTGCTAAACGGCTGTTTAATTTGGAATCAGCGGATGATCGATTGATTCCAACGCTGCTATTTGAAGCATTTATGACGGTTCTTGGCGGTCGGGTTATTCGGGTACATGATGCAAAAGAAACTCGTCAGCTAATCGATGCTTTTGAGTTGCTAAAAGATCAGCTATTGCTAAAGTAAAGGTGATAAGAATGCCTCAAGATCCTTATTTGTCAGTGCTTATTAAGGCGATCGACCAACTTGCTGAGTTGCCGGTTTCATGGTTACCAGATAAAAAGTTGGTTCAAATTAAAGGAATTTTGACCGATCAGCAACCGGCTGAACTTCGAAATCGAAAATCCAAGGTCCACTTGTCTGCCAGTGCGATGGTCTTTTCAAAAAATGCCGGCTTTTTTATTCGTCATCCGTATCTACGAACAACACTGCTGCCGGCCGGCCACGTTGAACCGGGTGAGCTGCCGATTAACTGTGCAGTTAGGGAATTTCATGAAGAAACCGGCTATCAGGTGAAGCCTGAAAGTGGTCAGCTGATTGATGTTAACCTGATTGCAATTCCAGCTAATCCGGTTAAGGGTGAGAGTGCGCATCAACACGTCGACTTTCGCTTTCACTTTTTAATTGAACCTGGTACTCGAAGCAATCCCGAATTACCGGTTTCTTTATTAACGCAAGCCCAAGCACCGACAGAGTTTGCAAAGTATTTTGCACTTATCAAATCAGGTGATTAAGTTATGTCAAATTACTAAGTTTATAATGCCGAATTGAATCGTTTCCCAGTTGTATTTGATTTGCCGCACAGTGGGACAACGATTATTGCCGAAATGGCTGATGCACTATTACCAACGGCTGTTTTAGCTAATACCGACTGGTTTTTAAGGGAGTTGTATGATTTTTTTGCCAGGGCTTGGGTTTACAGTTTTAGAAAATAACTTGAACCGGTATTTAATTGATCCCAATCGTGATCCGAATGAGGGACTAACTGGTGATTACTATCATCTTGTATATGCCAAGAATACATTTGGCCATGCTTTGTATCAAACGCCACCGTCAAGTTGGAAAATTAATCGACGACGTGACCAATTGTTTAAAACATCTAATTCTTCTTTAGTCCAATCTTTCATTTTTTTTGCTCCTAATCATCTAAAATCTTATATTCTTCAAAATAACTTTTACCTTGCTTGATTTCTCCGCTTTCATAAAGAAAAAATTTATGCTCTAAACGTTTAATTGAACGATTCAAATTTTTCTTTTTAGTTTCAAGTAAAGCTTTATAAAAATCAATTGACAATAAGTAAGCATGGGTTTACACTAATAGTCAACAAGAGTTACTAAAAGTCAGAAATGAGTACTAACATGTTGAATTTACAAGCTGTATGTCAAAACTGTGCATGTTGTCCAAAAGACAATACTTTTTTGCATACGCTAATTCAGCATGACGTACTTCGATATAATCTATAGTTAACTTGATTTTTTAATTTAGCTATTTAAGGATCTACGAACTGAATTGGTTCGTGGATCCTTTTTTGTTTGGTCTTTGGGAGGTAAGATCTTATGAATTGGTCAATCATACAACAAGCGTTGCCATTATTTGCCCATGCATTTGGAATCACGATCTGGTTATCGCTAATAGGGATAATAGGTTCGATTATTGTTGGAATAATCGCTAGCTTAACACAATATTTTAAAATACCGGTAATTAGTCAGATCATGACAGCATATGTTGAACTAGCACGAAATACGCCACTTTTAATTCAATTATTTTTCTTGTACTACGCTTTTCCTGTTATCGGAATAAAAATGTCCGCTGAAGTTTGCGGTATTATCGGTTTAATTTTCCTAGGTGGAGCATACATGGCTGAGGGATTTACTGGTGGTTTCAATGGTATCTCTACTAGCCAAATTAACAGCGGAAAAGCATTAGGAATGAGCCGTTTTCAATTAGCGCGCTATGTTGTTTTCCCACAAGGCTTTGCATTAAGCTTGCCTGCTTTAACAGCTAATATTATCTTTTTAATTAAAGAAACATCCATTTTTTCAGTAATTGCAATCCCTGAATTAACCAATACAGCTTTAGATTTAATCGGCATGTACTACCGTTCCAATGAATACTTACTGATGTTGGTTATTGCTTATGCAATTATCTTGATCCCAGTAATTCTTTTATTAACTTGGCTTGAAAGGAGAGTTCGTTATGGTGCATTCGGGAATTAACGTTTTATTTGAAGGGAGCAATTTTGCTCGTTTAATGGCAGGTCTTTGGACTTCCATTTGGATTGCAGCTATTTCCTTAATAATTGGTTTAGCTATTGGAACTATTTTTGGTATTCTTAGAACTTTGACTAATAAAATCATTCGATTTGTTTTACGAATTTATCTAGAATTCTTCAGAATAGTACCTACAATCGTTTTACTTTACTTGGTCTATTATATTTTGCCACGAACTTTTCATGTTAACTGGCCAGCAACTTGGATGGCAGTTCTGGCATTTTCACTATGGGTAGCAGCAGAATTCAGCGATATTGTTCGCGGAGCAATCGAATCAGTACCTAAGAGCCAGCGTGAATCGGGACTGGCATTAGGCTTAAGCAAAATCCAATTATTTAGATATGTATTATTGCCACAAGCAGTTAAGTTAGAGCTTCCTGCAACAATCAACTTAGCAACCAGAGTAATTAAAACCACTTCACTTTTACTTGTCATCAGCATTATGGAAGTAATTAACGTTGGCCAGCAAATTATCGAAGCAAATAATCAGCAATATCCAACTGGTGTTTTCTGGGTTTATGGACTGATATTTATCTTATATTTTGTCCTCGACTATCCATTATCAGCTTGGGCTAAGAAATTAACTAAGGAAAGCAAATAGGTGAGCACAATGACAGAAGAAATTTTAAAAGTTGAGCATTTAGATAAGTTTTATGACGACCGTCAAGTTTTACATGACATCAATTTTTCGTTGAAAAAAGGTGAGGTATTAACATTACTTGGACCATCAGGTTCTGGTAAAAGTACTTTGCTTAGAACTTTGAATGGGTTAGAGGATTATAAAAATGGAGCTATCTATTTCCATGGAAAGAAAATTAATCCTAGTCCAAAAGAATGGCAAATGCTGCGACAAAAAATCGGTATGGTTTTTCAAAGCTATGATCTTTTTCCAAATCTTACTGTGATAGAAAATGTTTTGCTTGCCCCAGTGAAAGTACAAAAACGAAATGAAAACGAGGTTAAAGAAGAAGCAATTAAACTGCTAAAACAAGTGGGATTAGATCAATATCTAAATGCTTATCCTAGAGAATTATCAGGCGGTCAAAAGCAGCGAGTAGCCATCGTTCGTGCATTAGCAATGAGGCCGGAAGTAATGCTTTTGGATGAAATCACTGCATCCCTTGACCCAGAAATGGTACGCGGTATTGAAGAAATCGTTGAACGCCTTTCTAAACGTGACCATATGACGATGATTATTGTTACCCACCAAATGAACTTTGCTTCTAGAATTGCGGACGAAGTACTTTTCTTAGAAAATGGACATATTTTAGAAGATACTCCAGGAAAAGACTTCTTTGATCATCCTCAGACGCAAAGAGCTAAAGAATTCTTAGACAGCATGGATTATTAAGGATAAAGCCAATGAAAAAGAAAAATATTTTTAACATTATTATGGGTATTGTTGCTCTAATAGTCGTGGTAAGTGCCGCTTATTTTGGTTTTACACAACCTAACTTAAACAGCGGTACTGCTGGCAGCCGTTGGAGCAATGAGAATGGCGTCTCAGAAATCAAACGTCGTGGTTATATCAGAGTTGCAGTTTTTGGTGATTTACCACCATATGGCTGGGTAAATGAGCAAGGCAAGAGAGTAGGTTATGATGTTTACTTGGCTCGCAGAATTGCCAAAGATTTAAACGTTAAAATTCGTTTTATACAAGTCAATGCCAACAATCGTGTAGATACTTTAAATTCAAATAAAGCGGATATCGTTTTAGCTAACTTTACAGTAACTCCTGAACGTAAAGATGTAGTTGATTTTGCAAAACCATATATGAAAGTATCAGTTGGAGTAATTTCACCTAAAAATGCTCCAATTAACAGTGCGCAAAAATTGAAGGGCAAGAAGTTAATCGTTACCAAGGGAACAACTGCCGAAAACTATTTTGCAAAGCAATCTGGAGTTAATTTATTAAAGTTTGATTCTAAGACGCAGCAATTCAATGCATTGAAGAATGGTCGTGGTGCAGCTTTAGCTGATGACAATTCTTACCTTTATGCTTGGGTTAAGAAAAATCCTAAGTATGTAGTTGGCATTAAGAGTATTGGACCTCGTCAGTATGTGGCCCCAGCCGTAAAGAAGGGCAATCGTTCACTGCTTAAATGGACAAATCATGAGATTACTAAACTAACGAAGGAAGGCTTCTTTGTACAGGATTATCAAAAAGAATTAGCGCCTTACTTTGGTAAGGATATTAAGCCAACTGATATTGTGTTGAGATAAACATTTGAAAAAATCTATTTTTAACAGGTTCTAGACTTCTACTCAAAAACAAAATCCTATTAGATTAAGGTTTGGCAACACCGAGATTTAGTAGGATTTTTTAATTTCTAATTTTTCCTAGTCACTTATTTATTTTTATATATTTTACGATAATTTTCAGGACTTAACTCTAAACTATTTTTAAAAGAACGTGTGAAATTAAATTGATTTAAAAATTCTACTTCTTTAGCAATTTGTCCAATAGAAGCCTCTTGCTGGCCCTGCTCTTTGCTTGGCTTTTGCCGACCGGCCTGGACTTAATCCGCCTTTGGCCAAACCCGCCCAAGCATATGGCTGACGCGCTTGCCGCTTTTAAGCGCCTGCTGGGCAAGCTGGACCTGCAAACGGTAATGGGCTTTGGGGGGCTACTACATGGCTGGCTACTACTTTAGCCAGGCCCACATGAGCAAGCGCAACCTGTATTTTGTCCAGGCCCTGGGCCTGCTGGGGGCTGGAGCGACAATCGGCTTGTCTGGATGACGGCGAAGGCCGGCCATTTGCGCCTGACCTTGTACAGCTATAATTCTTTTTTGTCCTGCTGGAGAGCAGCGCGGTTTTTCTCAGCATTCAGACGCTCAAGCCCCGGATTTGGTCAGAAGAAGTTTTAGGGGAATTGGCCGGGTCTGTCATGGGCATTTACCTGCTGCCCCCGTTATTGATTTACTACTGGGGTAAGACGCCGGTCTGGCAGCTGGCGGCAAGTAATTCTGCCTGGCTTGGTAATTTTGATTTTTGCCAGCAGTCTGGCTATCGTCTGGCTCTTGCGCAGGAGCAGATTTTTGGCCCGCTGGCTTTTATAGGCTTGACCCTAAGGCGAATTCATGTTATTTTTATAAAAACGCGACAATGAAGTAGCTGCTTGGTTCAGCGTTCAGAGAACTAGCGGTTGGTGCGAGCTAGACAGGCTAGGCAGACGAAATACAGCGCGGGGAAGGAGAACCCCGTTAAGAAGCTCCCAAGAGGCACTTTGTGCGAACGTGGGTGGTACCACGGCTAAGACAGAATTTAGTCGTCCCTGGATCTTTTGATCCGGGGACTTTTTTATTTGGAGGCAGAAATGGCTAATTTTGACATTTTGGAAGATTTGAAATGGCGCGGCGCCATCAACCAGGAAACTGACGAGGAAGGCTTGCGGGATTACCTGGCCAAGCATGACGACCTGGCCCTTTACTGCGGGACTGACCCGACGGGTGACTCCCTGCACATCGGTCACTTGATTCCCTTCATGATCTTGAAGAGATTCCAGCTGGCCGGCTACAAGCCAGTCATCGTTATCGGCGGGGGCACGGGGTCAATCGGTGACCCATCCGGCCGGTCAACTGAACGGGTCCTGCAGTCTGAAGAAACGATCAAGCACAATGAAGAAGCTTTGACGGCGCAGATGGTGAAGCTTTTTGGCACGGAAAACTTCCGCATCGTCAACAACCGTGACTGGCTGGGCAAGATGAACCTGCTGGAATTCCTCCGCGACTACGGCAAGCTCTTCCAGGTCAACAACATGCTGAACAAGGAAGTCGTGGCCAGCCGGCTGAAAAACGGGATCTCCTTCACTGAATTCTCCTACCAAATCCTGCAAGCCATCGACTTCTATATCCTGAACCGGGACCACTGCGTCCAGATGCAGATCGGCGGGGCTGACCAATGGGGCAACATCACGGCCGGGATCGACTTGATCCACCGCCTGGAAGGGGCAGACCGGCCAGCCTTTGGTTTGACCATCCCATTGATGCTGAAGGCCGACGGGACCAAGTTCGGCAAGTCCGCCGGCGGTGCTGTCTGGCTGGACCCGGAAAAGACCAGTCCTTACGAATTCTACCAATTCTGGATCAACCAGGACGACCGGGACGTGATCAAGTACCTCAAGTACTTCACCTTCCTCAAGCACGAAGAAATCGACGCCTTGGAAGAAAAGGTCAAGACTGAACCTTGGAAGCGGGAAGCCCAAAAGCGCCTGGCTGAAGAAGTAACCAAGTTCGTTCACGGCGAAGAAGGCTTGAAGGAAGCCCAAACGGTCACTGAGGCCCTCTTCTCCGGCAACGTGAAGGACTTGACCACCAAGCAGGTAGAAATCGCCCTGGCCAAGGCGCCAAGCGCTGAGAGCGGGGCAGAAAAGAAGAACCTGGTTGACTTCCTGGTTGACACCAAGATTGAATCATCCAAGCGGCAGGCACGAGAAGATGTTAACAACGGCGCCATCTATGTCAACGGCGACCGGATCCAGGACACCGACTTTGAAGTTGACCCGGCGGCTGCTTTTGACGGCAAGTTCGTCATCATCCGTAAGGGCAAGAAGAAGTACACCCTGGTGCACATCAAGGGCTAAAAAAGATTTTTAGAAAGTTTCCAGTTGGAAGCTTTCTTTTTTGTTTACTTTTTATCCTTTTGCCGAAAAGAAGCCGGCATGTTACAATTAAGGCGCTGCTGTAGCTCAGGAGGTAGAGCACCGCCGTGGTAAGGAGGAGGTCGCCAGTTCAAATCTGGCTAGCAGCTTAAAAAAGCAACTAATTGATCAGTAAAAGTGATGAAGCGATTGGGACAAAGGAGGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTGGTCATCGAAACGTGGTCGAATACTTTGGCAGTCAGCTCAGTCTTCTTGTATCCAGTTCTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGATCAGAAGTCAGATCTTTCAGGTGCCCATTGACGATCCTCTCAGCTAGCAGAATAGTGAAGCGAAGCCAGTTGAAGCCAGTTGATATGTGGGTTCTGCATGAATCGATAGTAGGTGTTTTTTGAGAAGCCAGCAGTACACTTGCCAGGCTTCTGTTGCATGTACATGCTTCTGTCTGGAAACACATTACTGAAGATGTATGAAAGGATCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGGGCCATTTTAGGTTCGTTTTCAGTATCGAATGATGGTAAACTAGACATAGCGCAAGCCTTTCGTTTGATATTGATGATGTTTTGATCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTTATTAAAGTTTCAAGATCAGCTTGAGCAGGTTGAAAGCCATCGGCATCTCTTTTGGCGAAATCTTTAGCTAATTTATAAACTTCGATTGCCTTGTCAAAGTTAGGAATATCAGGCAAAGCTTTTTTATCAGAAGCAAAATCAGCTAAGTCGTTCATCAATTCTTTTTCGATTTTTAAATCAATTTCACTGAAACTACTGATTAATGGACGATCGGCAGGGATCTTGGCTTTAGAAATTCAGTCAGAGTTAACGGCTAAGTATAAGTTATCTTGAATGCGGGCATTGAGATCGGGCTTGGTGATATCACCAGCACCGCCGCGGATTTTTGCTAAATTCATATGTTTTCTCCTTTGTTTTTTAGTTGGTTAAATCATAGCATTTTTTAAAATAAAATGAAAATTTAATTTTGCTTATTTATAGTAATAAAAGTATTTTGTTAAATAAAAATAAGGATGTAAGCACATCCCTAACATCTGCTATTAAATTGATGTATACTTATAGTGTATCGACAAAACAGAAAGGATGTATTGTCTATGAAGAAATTAAATACTAACAAGCTTACTGAAGAACAAGTAAATCTTTTCAAGAATAACTTAGTTTACTTAGCAACTGTTGATGCTGAAGGCAACCCACAAGTTGGTCCTAAGGGCTCAATGACTGTCTTAGATCCAAGTCACTTACAATACCTTGAAAAGACCAAGGGTGAAGCTTACGAAAACATTAAGCGCGGTTCAAAGGTTGCTCTTGTTGCAGCTGATGTTCCATCACATACTGCAGTTAGGGTACTTGCTACTGCAGAAGTTCACGAAGATGATGACTACGCAAAGAAAGTTTTAGCTAAGACTGAATTTCCAAATGCATTCGTAGTTAACTTAAACATCGAAGAAGTATTTGCATAAAAACTTAATTAAAATAGCAATCAAGCTGGGACATTTTCCCCAGCTTTTTTGTTTAAAAATATCTTGCCATATTAAAAAGCTCATGATATTCTAATAAAAAATGAATTGAAAGAGGAAAAAATCATGTTTTATCTTAACGCCAATGTAGCTTCAACTTCATCTAGCTCAAGTTCTTCCCGTTGAACTTGAGTAGTTTTGGCATACAGATAATTCATAGCCTGAACCTACTCATGATAATTAAGTAGGCTCAGGTGATAATTAAGTAGGCTCAGGCTTTTTTCATGGAGGAAATAATTATGGCAGATAAACACCCCAACAATAACCTAAAACGTTCAATCGGTTTTGGTTCAGCCATTTCAATCGTAATCGGTACAATCATTGGTTCAGGCATATTTTTTAAGCAAGTTTCCGTAGTGATCTATACACTAGTAACAATCGGGATTTTTCGCTTTTTGCCAGTAGGTTTAATCCATCGTTTGGGTGAAAATACGACCGCATATTTAGCAACTAAGGTCTTCGGCACAATCGGAGGGAAATTGCTTTCTGCTGGAATTATCATCTCAATGATGGGAACCTTGAATGGCAAGATGCTGACATTTCCTTGAATTGTCTACGCAATGGCTAGACGTGGCGACCTTCCATTTTCAAAATATTTGTCATATGTCACTCCTAAAGGTAAATCACCAGTGGTTGCAACCTTATTCATCATAGTATTGGCTGCTATCATGATGATGTTCTTTGAACCAGATCATTTGTCAGACTTGTGCGTATTTACTGTCTATTGTTTTTACTTATTAGCATTCTTCGGCATCTTTATCTTGCGTAAGAAAAACAAAACGCGTCCATTCAGCACACCGCTTTATCCACTTGTTCCAATCGTAGCTATCCTAGGTGGCTTATTTGTACTTATTAGTGAATTGATCAACGATCCTGCTGGAGTTTTATTATTCATTGGCATCGTAATTGTAGGTTTGCCAATATTTTATGTAGTAACGAATGGACAGAAAAAGATTGAAATAATATAGTTGATAAACATAATGGTGGATTTGTTATGAATGCAAATTTTGAAACAAAATTAATGCAGCTTTTAGATCAAAACAAAGATGAGATTATTAAAATTCGTCGTTATCTACACGAGCATCCAGAGTTATCTTTTCATGAGAAAAAGACGTCTGAATTCATCGAAAATTACTATCGTGATTTGGATTGCCAGGTGCGCCATTGTGGAGATGACTATGGCATTGTAGTAGATATTAATCCAGATAAGCCGGGTAAAAAATTAGCTTGGCGTGCTGACTTTGATGCATTGCCAATTCAAGAAAACAACGAATTGCCTTTTAAATCTCAAAATCCCGGTGTCATGCATGCGTGCGGTCATGATGGTCATACTGCCTATCTTTTGGTATTAGGCAAATGCTTAATTCAATTAAAAGATCAAATTAATGGAAGCATTCGCTTAATTCATCAGCCAGCTGAGGAAGTTACCCCAGGCGGAGCTTTATCGATGATTAAAGACGGAGCGCTAGATGGTGTTGACGATGTGATCGGTATTCACGTAATGAGCACGATGCCAACGGGAACGGTTCAGCTTCATGCAGGAGCAACGCAGACCGGACGTGCAAATTTTGATCTGACTTTTACTGGTAAAGGTGGTCATGCTTCAATGCCACAACTTAGCAATGATGCAATTGTGGCTGGATCTTATTTTGTCACTCAGTTGCAAACCGTTGTTTCTAGAAGGTTAAATCCATTTGATGTTGGCAGCGTAACTATTGGCTCATTTGATGGGGCAGGTAGCTATAATGCCATCCAAGAACAGGTAAAACTTAAGGGCGATGTCCGGGTGATGAATGAAGCTACTCGTAAATTAATGAAGAAAAATATTAAACAAATCATCAAGGGAATCGATGTAACTTTCGGCGTTAAATCTGAACTTAATTATGACGATAATTATCCAGTTTTAGTTAACAATCAAGATTTGACTAAAAAAGTGGAAAATTGGATTAAAGAGAGTAAAATTCCTGAAGTTACTGCTGTAAAGGATAGCGGAGTAGTAAATGCTTCGGAGGATTTTGCCTACTATGCTCAGAAGAAGCCAGCTTGTTTCTTTTATGTTGGGTGTCAGCCTGAAGATGGCGGAATATATCCGCATCACAGTCCTAAATTCATGATGAATGAAGATTGTTTAATCATTTGTGCTAGAAGTGCGGCTAGTGTAATCAGTCATTATTTTGCTTAAATAAAAAAGCATTTGACAATTTTTTGGGGATCGTTTTATTATTAATAATAAATTAAAAGAATTTGAAAAGCAGAGTAATTATTGCTTAATTGTTACAGAGAATTATCGGTTGGTGAGAGATAAGCAATTGAAGGTAATGAAGATGGGCTTGGATATCAGTGTTAGCGATAAGTAGCTAACAACGGCGTTGTGAACCGTTAGCTGTCACAAACTATGTTGGTAGTTAATAAGATTCATTGCGCGAGTAATGGATAAATTAAAGGTGGTAACGCGAAGCACTCGTCCTTTTTGGGATGGGTGCTTTTTGTTTTTATTAAAAAATGAGAAAGAAGTGTTGATGATTAATTTAATTAGTAGAGCTAGAAATCGTATTAGATGGTGCAATGTCTGATGAGTTAGAACGACAGGGAGTTAAAACTAACAATAAATTATGGACAGCAACGGCCTTGATCAATGAATTGGATAAAGTTTATCAGGCACATTGGGATTACTTTACTGCTGGAGCTGAACTGGTTATTACCGATACCTATCAGGCTAATGTACAAGTGTTTACTCAAGCAGGTTATAGTGAGCAGATCTAATTGCATTAGAAACGCAACCTAAATTAGATGAACCATTAGCTGTTTTGAACTGGCTTAAAGAAAATGCATCAGATTACCCAGTTTATGTAAGTTTCACTTTGAAAGATGCAACTCATATTAGTGATGGCACTACATTGGAGCAGGCAGTTAGTGCAGTAGATAAATTTGAACAAGTTTTTGCAATTGGAATTAATTGCATATCACCCGATTTGGTTGCACCAGCATTTAAAGAAATTGGTAAATACACGTTTAAACCATTAGTAGTTTATCCAAATTTGGGTGCAAGCTATGATCCTAAGATCAAACAATGGCGTGAATTCAAAGAAAAATTTGATTTTAATAAATTAACCAAGAAATGGTATCAAGAAGGTGCACGTCTAATTGGTTGCTGTTGTACTACAGGACCAACTGAAATTAAGCAGATGATAGTCTAAATCAATTGCGTTAGGGGGATTATGAATGGCTCATCAAACACATTTACAAAGAAAAATGACGACACGACATATTAGGATGATTTCGCTAGGCGGAGTGATTGGAACAGGGCTTTTTCTTAGTTCTGGCTATACGATTCATGAAGCAGGACCTTTAGGAACAGTAATTGCTTATTTGGTAGGTGGATTAATTGTTTTTGCAGTCATGCTGTGTTTAGGTGAGCTATCTGTTGCCATGCCATACAAAGGGGCATTTCACGTTTATGTTAAAAAATATATCGGTCCTTAGACTGGTTTTGTAGTAGCTATTCTATATTGGCTAACATGGACGATTGCTTTAGGATCAGAATTTACCGCAGCAGGATTGATTATGCAAAAGTGGTTCCCTCAAGTTTCAGTTTGGATTTGGAGTTTGACCTGTATGATATTAATCTTTTTAAGCAATTTCTTTTCAGTTAAAGCTTTTGCGGAAAGTGAATTTTGGTTTGCGGCAATTAAAGTTTTTGCCATAGTTGCATTCATTGTCCTGGGCGGATTAGCTATTGCCGGCTTTTTACCTGTTGAGGGTTATCATGCTGCACCGGGATTGGCTAATTTTTATCGTAATGGTTGGTTTCCTAATGGATTCAGCGGTGTATTTACAACAATGTTGACAGTAAACTTCTCAGGTACTGAATTAATTGGGGTTACTGCAGGTGAAGCAGAAAATCCTCAAAAGGCTATTCCTAGTGCAATCAAGACAACGCTTTGGCGGTTGCTTATTTTCTTCATTGGTAGTATTGCTGTAATGTCTGCGTTGATTCCATATAAGGTTGCCGGCGTTACGCAAAGTCCATTTGTTTACGTCTTAGATTCAATTCATGTGCCTTTTGCGGCTAATATCATGAATTTTGTTGTGCTGACTGCAATTATTTCAGCTGCCAATTCTGGCTTGTATGCATCTACTAGAATGTTATGGTCTCTGAGCAATGAGGGAACTATTCCAGCTATTTTTAAGAAAACCAATAAAAACGGCATTCCTGTTTTAGCATTAATCTTCAGCATGCTTGGCGGTGTATTTGCATTAGTATCAAAAGTAAGATCACAGCTGACACAGTTTGCTTAGTCATAGTTTCAATTTCAGGACTAGCAGTAGTTTTAGTTTGGATGGCAATCGCTTGGGCAGAATTGAATTTTAGAAAGCAATTTTTAAAAGATGGGCATCAATTATCTGAATTAACATATAAAACTCCTTGGTATCCTGTTGTGCCATACTTTGCTTTTATTGCTAGTTTATTATCATGCGTTTTGATCTGGTTTGATCCTACGCAAAGAGTGGCACTGTATTACACGATTCCGTTTGTGCTTGTTTGTTACTTAGGACACCGTTTTTGGTTGAGGCGTAAAGACAATGAAGTAGTCAAAGGGGCAGAATAGTAGTGGTAAAATATTTCTAGCTAATGTTAGGGGAGTTAGAAATGCAAAATACAATTATCAATAGTGCAACAGAAAAACTGTCGCCGTTTAAAACTTTAACTGCAGAACAAGAGAATCTAGTTAATGATATTTTGTCTTTTACTACAAAACACATTAAGCAAGATTATCCTGCTATTTTTACGGTTTATGGGGATGCAGGAACAGGAAAAAGTGTTGTATTAGCACACTTATTCAATGAAATCCAAGTTGCAGCAAGAACTAAGGAAGATTCACCACTTTATCAAACGACCAATTATTTTGTGGTCAATCACCCAGAAATTTTAAAAGTATATAAAGAAATTGCAGGTGATTTGCCCCATCTTTACAAAAAAGACTTTACTCGTCCCACTTCTTTAATCAATCAACTCGATAAAAAAGATGAAACAGTAGATGTCGTTGTAATTGATGAGGCTCACTTATTATTGTCAAGATCAGATCCATATAATAACTTTACTTACAATAATCAATTAGTAGAGCTCATCAAGCGAGCTAAAGTTGTAATTCTTGTATTTGATCAATATCAAGTTTTACGCACTAAGACTTTTTGGACCAACAAGCAATTAGAAAAAATTACTCATCAATGTCCTCATGAAGATTATCATTTAACTCACCAATTTAGAGTCAATGCCAGTGATGATCTACTTAATTGGTTTAATTATTTTACTGATGAAGAGGAAATCCTGCCATTCCCTGAGGATGCGCGACACAATTATGATTTTCGCATTTTTGATGATGCAGAAAAGATGCGGCAGGAGATAGTTAAACGAAACAATGAGGTAGGATTATCTAGAATTTTATCTACTACCGGATATCCTTCGACTCTTGATGGTGGTAAACACTATATCACAGAAGGCAAGTTCAAAATGCCGTGGGATCAGTATAATTACACATCTAAACCTTGGGCTGAAATACCAGAAACTATTAATGAAGTTGGTTCTATTTATACTTGTCAGGGTTTTGATTTAAACTACACCGGAATCATTTTAAGTCCGCCAATTACGCAAATTCCGGGTACCAATAAACTGAAGGTAGATCCAAGCAAGTTTACAGATATTGAAGCCTTCAAAAAACGTAAAGATCTATTCAATGATCAAGAACTAAATGAAGCTAAGAAGCGGTTATTCATGAACATGATCAACGTTTTATTAAAGCGCGGTGTTTATGGTACCTATATCTATGCCCATGATCCATTATTGCGACAGACTTTATACCAAAATTATCAAAAATTAATTTCTAAGCATAATAGGTGACACGAATAGTTTTTATCAGTATTATTTTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTAATTACAGCATACATGGAGGTAAAAATGGAACGGAAACTGATCGCGGATTTTGTCAAAGAAAACCTGGCTGAAGAAAGAACGGGGCATGACTATTACCACGGCAAGCGGGTGGCAGTCTTGGCTGAAAGAATGCTGCTGGCGGATCACCCGGAGGCTGGGCAAAAGAGCCGGGATATTGCTTATACGGCGGGCTTTGTCCACGACACGATCGATGAGAAGGTTTGCCCAAACCCAAGTAAAGTTTTAGCCAAATTGCGGGAAGTCTTTACGGCTGCCGGCTTAAGCGCAAGCGACCAGGACAATGTCTTTTTCGCGATCGAGCACATGTCTTTTTCCAAAAATATTGACCGCCACTACCGGCTTTCTTTAGAAGGAGAGTACGTCCAGGATGCCGATCGGCTGGAGTCTTTGGGGGCCATGGGGATTGCCCGGGCCTTCGTTTACAGTGGCAAGCACGATGACAAGATCTACGATCCGGAAATCCCGCCGATGGAACTGGTCAGCCATGATCAATACCGGAATCATGAAGAAACTACGATCAATCATTTTTATGAAAAGCTTTTTAAGCTGGAAGGGCTGATGAACAGCCGGGCGGCCCAAAAAGAAGCCCGCCGGCGGACAGAATACATGCGGGATTTTGTCCGTGAATTTAGACATGAATGGTATTTAGATTAAATTTAAAGAAGTTTACCTCTTCTTAATAAAATACAGAAATATTTAAATAATGCCGAGAATCCTTGCTATACCAATTGATCCGGGAAATAACAGATGGATTTCAAATGAAACTATCCTCGCTTTTCTCTAACACGAACATTAAACTTTTGGTTAGACATGTGAGTCAATCATCAGTATAGACAAGTAAGGAGAAAGCACAATGAAAGTTTCCAAATTTTTAGGAGCTGGAGCAGCGGTAACATTATCTGCTTTAATGCTGGCGGCCTGCGGCTCAAGTTCCTCATCTTCCAAGTCGACCACCAGAAAGACCTTGAACTGGACGGTCGCGTCAGAAATCCCGACCATGGACTTGTCCAAGGCCACGGACGCTACTTCCTTCAACCAGATCTCCAACACCATGGAAGGGCTCTACCGGCTGGGCAAGAACTCTAAATTGGAAAAGGGGCTGGCAACCAGCGAGAAGGTCTCTAAAGACGGCTTGACTTACACTTATACCCTGCGCAAGTCCAAGTGGAGCGACGGTACGGAGTTACGGCCAAGGACTTCGTCTACTCCTGGCGAAGAACGGTTAACCCGAAGACGGCTTCCCGGTATTCTTACCCTTTCTCCGGGATTAAAAATGCCGATGCCATCGTAGCTGGCAAGAAGTCAGTCAACAGCTTGGGGATCAAGGCTGTCGGCAAGTACAAGCTGGTTATCACTTTGGAACGGCGGATTCCTTACTTTGACAAGCTGATGGGCTTTGCGGTCTTCTTCCCGCAGTCTGAAAAGGTGGTCAAGAAGTACGGCTCTAAATACGGTACGGCTTCCAAGTACATGATCTACAACGGTCCATTCGTGCAAAAGGGCTGGACCGTGTCCAATCTTTCCTAGAAGATGGTTAAGAACAAGTACTACTGGGACAAGAAGAGCGTCAAGCTGAACACGATCACTTGGAGTGTGCAAAAGACGCCATCAACTTCTTACAACCTTTACCAAAGCGGCAAGCTTGACTACACTAGCCTGGACTCTTCACAAACCAAGCAGCTGAAGTCAACCAAGGGCTACACCACCTTGAACAAGGGGGCAACCTTCTACATGCAGTTCAACATTGCCAAGAACAAGTACCTGGCCAACACCAACATCCGGAAAGCCATCTCTTTGGCCGTCAATCGGAAGGGGCTGGTTTCATCACTTGGTGGCAACAACGTGGCGGCCAATACTCTGACCACGCCAGGCTTAACCGATGTCAACGGCAAGGACTACACCAAGCTGCTTTCATCATCAGCTGAAAGCCTCTACCCGTCCTCAACCAAGAAGAGCGAGGCGGTTAAGTACATGAACAAGGGCTTGAAGCAATTGGGCGTAAGCAAGTTCAGCTTCAAGATCCTGGCTGACGACACTGACTCCGGCAAGAAGACAGCGGAACTGCTGCAGTCCAACATCGAAGCCACCTTCGGCAGCAAGGTCAGCGTCAGCGTCCAGAACCTGCCGTTCAAGACCCGTCTGTCCCGGTCAACTGCCGGCAACTTCGACATCGTTGTCTCCGGCTGGAGCGCCGACTTTGCCGACCCGATCTCCTTCCTGGACCTGTTCACTTCCACCAATTCTGAAAACAACGGGAAGTGGAAGAACGCAACTTATGACAAGCTGATCGCTGACTCCAAGACCACGTCTTCAACCAGCAAGCGCTGGAGCGACCTGACTAAGGAAGAAAACATCCTGCTTAAGGATGCCGGTGTAGCTCCGCTTTACTACAGCACGACTGCGTCTTTAATCCGGCCGAGCGTCAAGGGCGTCATCCAGAACCGGGGGACTTGGAACTTCAAGAACGCCTACATCACCAGCAGCAAGTAGCGGTATAACAGCAAAATTAAAAGAATTTGACAAGAAGCGACCGTACGGCCGCTCTTTTTTTACCTTTTTCTTGTCATTTTTCGCTTATTTTTCGGCAAAAATTTATTTCTCTTTAAGTTAGCCCTTGAAAAGAGTCTAACTTAGAATTATAATCAATCTATCATGTTGGCTGAGGGGACGGCTTTAAGCTGTGTTGGCCATCTTTTCAGCCCAAACAAATATGTGTTATAAGGAGAAAAAGATGAAGTTATCTAAGACTTTTAGCGTTGGTGCAACTGTGCTGGCATCAGCTGCTCTCTTGGCTGCCTGTGGCAGCAACAGCAGTAAGGAATCCTCTTCTTCAAAGAAGACTTTGAACTGGACGGTTGCTTCTGAAATCCCAACCATGGACATGTCCAAGGCCACTGACACAACTTCCTTCAACCAGTTGTCAAACACTATGGAAGGTTTGTACCGTTTGGGCAAGAACTCCAAGCTGGAAAAGGCTTTGGCAACCAGCGAAAAGGTTTCTAAGGACGGTAAGACTTACACTTACACCCTGCGCAAGTCCAAGTGGAGCGACGGCAGCGAACTGACTGCCAAGGACTTCGTCTACTCATGGCGCAGAACTGTTGACCCAAAGACTGCTTCTCAATATTCCTACCTCTTCTCCGGGATCAAGAACGCTGACGCGATCGTAGCCGGCAAGAAGAAGCCTGAAACTCTGGGGATCAAGGCCGTTGGCAAGTACAAGCTGGTTATCACCCTGGAACGCCGGATCGCTTACTTCGACAAGCTGATGGGCTTTGCTGTCTTCTTACCGCAATCAGAAAAGGCCGTAACCAAGTACGGCTCTAAATACGGTACTGCGTCCAAGTACATGCTCTACAACGGTCCGTTCAAGCAAACCGGCTGGACTGGCTCAAACCTGTCTTGGAAGATGGTTAAGAACCCATATTACTGGGACAAGAAGAACGTCAAGCTTGACACGATCACTTGGAGCGTACAAAAGACTCCATCAACTTCTTACAACTTGTACCAGTCAAACAAGCTGGACTACACTGGCCTAGACGCTTCACAAACCAAGCAATTGAAGAACCAGAAGGGCTACGTAACCTTGAACCAAGGTGCTACCTTCTACCTGCAATTCAACATTGCCAAGAACAAGTACCTGGCTAACACCAACATCCGCAAGGCCTTGTCACTTGCTGTTGACCGGAAGGGCTTGACTTCATCCCTGGGCGGCAACAGTGTTCCAGCCAACACTTTGACTCCAACTCAATTGACTGACGTTAACGGTGAAGACTACACTAAGCGGATCTCCAAGTCTGCTGAAAGCTTCTACCCAGCTTCAACCAACAAGAAGGAAGCCGTTAAGTACTTGAACAGGGGCTTGAAGGAACTGGGCGTAAGCAAGTTCAGCTTCAAGATCTTGTCCGACGACACTGACTCAGGCAAGAAGACTACTGAGTTCCTGCAATCAACCTTCGAATCAACCTTCGGCAACAAGGTTAGCGTTTCAGTTCAAAACCTGCCATTCAAGACCCGTCTTTCCCGGTCAACTTCCGGCAACTTCGATGTCGTAGTCTCCGGCTGGAGTGCCGACTTCGCTGACCCGATCTCCTTCCTGGACCTGTTCACTTCAACTAACCCAGAAAACAACGGTAAGTGGAAGAACACTTCCTACGACAAGCTGATCGCTGACTCCAAGACTACTGCTTCAACCAGCAAGCGTTGGGACGACCTGACTAAGGCAGAAGACATCCTGCTGAACAATGTCGGTGTTGCTCCGCTTTACTACAGCACTAGCGCTGCTTTGATCCGTCCAACTGTTAAGGACGTATACCAAAACCGTGGTACTTGGAACTTCAAGGACACTTACATCAAGTAATCAAGCAAAAAGAAGAGGCTCAGCCTCTTCTTTTTTGTGCTATAAGTATTTTTAGATTGACTTGTATCTGTTTTTGGATATTTAGATTGTTGAAATAAGATAGCGCTTTTTCTTAAAAATACTTGAAGAAGCATAAGCAGAGAACTATAATGAAAATATCATTAAGGGTGGCTGTAGAGCTTTAATTTGTGTAGGCGCTGGAACAGTCAGTAAAAGCAAGGAGAAAAAGATGAAATTATCTAAGACTTTAAGCCTGGGAGCCACAGTTCTGGCTTCAGCAATAGCAGTTCTTCTTCATCCAGCAGCAAGAAGACCTTGACCTGGATGGACTCAGCCGAAATTCCAACGATGGACCTCTCAAAGGCCACCGATGCGGCTTCCTTCAACCAGATTTCCAACACCATGGAAGGTCTCTACCGCTTAGGCAAGAATTCCAAGCTGGAAAAGGGACTGGCTACCAGCGAAAAGGTTTCTAAGGACGGGAAGACCTATACTTACACCTTGCGTAAGTCCAAGTGGAGCGACGGCAGTGATTGACCGCCAAGGACTTTGTCTACTCTTGGCGCCGGACCGTCAACCCGAAGACTGCTTCTCAATATTCTTAGCTCTTCTCCGGGATCAAGAACGCTGACGCTATCGTTGCCGGTAAGAAGCCAGTCAGCTCTCTGGGGATCAAGGTTGTTGGCAAGTACAAGCTGGTTATCACCCTGGAACGGCGGATCTCATACTTTTACAAGCTGATGGGCTTTGCTGTCTTCTTCCCGCAGTCAGAAAAGGCTGTTACCAAGTACGGTTCTAAGTACGGCACGGCTTCTAAGTACATGCTCTACAACGGGCCATTCAAGCACGTTGGCTGGACCGGGTCCAACCTGTCCTGGAAGATGGTCAAGAACCCATACTACTGGGACAAGAAGAGCGTCAAGCTCGACACCATCAAGTGGACTGTTCAAAAGACTCCATCAACTGCCTACAACCTCTACCAGTCAAACAAGCTGGACGCGACTGCTTTGGACTCTTCACAAACCAAGCAATTGAAGAACCAAAAGGGCTACACCGAACTTAACCAAGGTGCTACCTTCTACCTGCAATTCAACATTGCCAAGAACAAGTACCTGGCTAATGCTAACGTCCGCAAGGCTCTGTCACTGGCTGTCAACCGGAAGGGCCTACCACCATTCTGGGCGGCAACAACCAGCCAGCCGACACTTTGACTCCAACCCAATTGACCAACGTCAACGGGGAAGACTACACCAAGTTGATCCCAAGCTCAGCTGAAAGCCTGTACCTGGCTAACCCGAACAAGAAGGAAGCCGTTAAGTACATGAACAAGGGCTTGAAGGAACTGGGCGTAAGCAAGTTCAGCTTCAAGATCCTGTCTGACGACACTGACGCCGGCAACAAGACCACTGAAGCCCTGCAGTCTAACTTCGAATCAACCTTTGGCGACAAGGTCAGCGTCAGCGTGCAAAACCTGCTGTTCAAGACCCGTCTGTCCCGGTCAACTGCCGGCAACTTCGACATCGTTGTCTCCGGCTGGAGCGCCGACTTCGCCGACCCAATCTCCTTCCTGGACCTTTTGACCAAGAGCAACGCCTACAACTACGGCAAGTGGGAATCAACTGCCTACAACAAGAACGTTTCCCTGTCCAAGACCACTGGGTCAACCGCAACATGCTGGAAGGCAATGGTGGCCGCTGAACGGGCCCTGCTGGAAGACCAAGGGGTTATTACGGTTACCCCGCTGTACTACACCAACGAAGCTCCCCCAGCGTCAAGGGCGTTGAATTCTGGCTATTTCTCTTTGCTGGTGAATTTATAATTGTCAAAAGCCTGGAAATCTTCTATAATGAAAAAAAAAGATTAGATGCTGATGAACTGCTAAAAATGTGTTTTACAAAAAAGTTTTTTTGACCAAGAGAGGACAAAACAGCGAGTAATTTTAAAAAGCTTCTGACGGCAACTGTCGCCGTATCCGGCGCCTTCTTGCTGGCAGCCTGCAGCAAGACCGCGACCAAGTCAGCCAAGCCTGTGTCCAGCAGCGGCTATGAGAAGTCAATCAACTGGATGACCACTTCTGAACTGGAAAGCCTGGACCCGGCCAAGGCCGACGATACAGCCAGTGAGGAACAGATCGCCAATACCTATGAAGGCCTCTACCGGCTGGGCGAAAACTCCGAAACCGTTCCGGGCGTGGCTATCAAGAGCACGACCTCTAAAGACAGCTTGACCTGGACCTTTTACTTGAGAAAGGACGCCAAGTGGTCAAACGGGGACCCGGTAACGGCGGAAGATTTCGTTTATGCCTGGCGCCGGCAGGTTGACCCCAAGACTGCTTCCAGCCAGGTCAACAACTACGAAGGCATCAAGAATGCTATCAAGATCTCTGAAGGCAAGAAGAAGCCGTCCAGCCTGGGTGTCAAGGCCGAAGGCAAATACAAGCTGGTTGTGACTTTTGAAAAGAAGATTCCTTATTTTAAGGTCGTTACGGCCATCAGCTTGAAGCCGCTGGACTCCAAAGCTGTCAAGAAGTACGGCAAGCGCTACGGTACCAAATCCGCCTATGCCGTCTACAACGGGCCTTTCAAGTCCGTGGGCTGGACTGGGTCCAACCTGACCTGGAAGCTGGCTAAGAACCCGTATTATTGGGATAAGAAGGCAGTTAAGCTGGAGACGATCAACTACAGTGTCCAGAAGACCCCGTCAACTGACTACAACCTCTACCAGACCGGGAAGCTGGACGCGGCTATCCTGGACACCCAGGCAGCCAAGAGCATGAAGGGCAAGAAGGGCTACCGGGTTCTGACCTTGGGCAACACCACCTACCTCTGCTACAACTACAAGAAGAAAAAGATCTTCCGTAATGCCAACTTGCGCCGGGCCATCTCCATGGCTATCAACCGCAAGCAGCTCTTGTCCACGATCGGTACCTACAACACCCAGGCCAAGACCTTCTCAGCCACCAACGTGGTTTTAGACGGGAAGAATTTTGCCCAGGAAGCGGAAAGTGCCAACTCCAGCGTGAACAAGTACGTGGAATACGACCTCAAGTCCGCCCGCAGTTACTTCAAGAAGGCCTTGAAGGAACTGGGCGTCAAGAAGGTTTCCTTTACTCTGATGGCTGACGACGACGACAGCTACAAGAAGCAGACGGAATTCATCCAGAGTGCCTTGACTGAGGCTTTTGGCGGCAAGATGACCGTTTCCGTCAACAACCTGCCAAAGACAACCCGGGTTTCCCGCCAAATTGCCAATAACTTTGATGTCGTTCTGGGCGGCTTGACCAGCGACTTCCCGGACCCATATCACTTCCTGGCTTACATGCAGTCAGGACAGACTTACAACTTCGGCAAGTGGTCTAATAAGGAATACGATAAGGCTGTCAAGGCTTCCTTGACCATGGACAAGACCAAGCGCCGCAAGGCCTTGCTCAAGGCGGAAAAGATCCTAATCGACCAGGAAGCTATCAGCCCGCTTTACCACATGGGTCAGGCCTGGATGATCAGACCAAATATCAAGAACCTGGTCTTCAACGGCGAATACCCAGACTTTAAGACAACTTACGCGGTTAAAAATTAAAATTTAACCGTGGTATAATTGAAAGTTGAGACGTTAGCAATAACGCTCAACTTTTTCTTTATTCCGGGGTTTATGTCCGGGAATAGGATATTTTTTGGGCTAAAGGAGGGAGGCCACTAAAGATGTCTGCTGGCTGAAAGTTAAGAAAATTAGTTTTTACAGGAAAAAAGACTAATATTTTTATCTTAGCCGAACACTTATTTAAAAAGGGTCAGTCTAAGTTCCAGATAGACTAAAAAAGAAAAAATCAAAGTTTAAGTTAGTTGCCAAATGATGGGAAAAACGGACAAAAAGCCCGTAGTGCTTGACTTTTAGGGGCACAGTTTTATATTATCGTATGGTAATTTCTTTATTTTTTGGTATAATAAGAAAATATTAAAAATGTAATGCTGATTAAAGCGAAAAAGTGTAAGGAGCAATACTATGGCTAAATACTTACTAAAACGTATTTTCTACATGATCCTCACTTTGTTCCTCGTTGCGACGATTACCTTCTTCTTAATGAAGATGATGCCAGGTTCTCCGTACGCCAACGAAGCAAAGATGACGGCTACCCAAAAGGCAATTATGAACAAGCAATACGGCTTGGACAAACCTGTTATTGAACAATACATCACTTACCTGGCTGGAGCTGCGCATGGTGACTTTGGGATTTCCTTCCAATACAGCAACCAGCCTGTTTCTAGCTTGATCGGGGCGCGTTTGGGCGCTTCTGCTCAATTGGGTCTGCAAGCTCTGGTTGTCGGGATTATCCTGGGGATCATCATCGGCTCAATCGCGGCTGTGAACCAAGGTACCTGGATCGACTCCACCGCGACGATCGTTTCTATCATCGGTAAGTCAGTTCCTAACTTCGTTCTGGCGGTATTGCTTCAATACTACATCGGCCTGAAGCTGGGCTGGTTCCCAATCGCTGGCTGGGGTGAAGCAGCACAGACGATAATGCCGACTATCGCCCTCTCGGTAGGGCCGCTGGCCGAAACAGCCAGATTTATCAGAACGGAAATGGTCGACACCTTGAGTTCCGACTACGTTGAACTGGGCAAGGCCAAGGGTCTTAGCCGGATCGAAGTCATCAGAAAGCACACCCTGCGTAACTCAATGATTCCATTGGTTACCTTGATCGGGCCATACGCCGTTGCTTTGATGACTGGTTCAATGGTTATCGAAAACATCTTCAACATTCCTGGGATCGGGGAACAGTTCACCAAGTCAATCCTGACTAACGACTACCCGACCATCATGGGTGTAAGTATGGTTTACTGCTTCGGTTTGGTGGTAATCCTGCTGCTCACTGACATCGTGTACAGTCTGATCGACCCACGGATCAGACTGACTGACTAACGGAAAGCGAGGTTAAAATCAATGGATCAAGACGCAAGTAACGTAAAGATCACACCTGAATCCTTTGAACACGTGGAAAAGGGTGACATGCAAAGCGCGGAACACATTTCTGGTCCCTCACTTTCTTTCATGCAGAACGTGTGGATCAGATTCAAGAGCAACAAGGCAGCCATGATTTCCGCTGTGATCATCATCGTGATGGTGGTTATCGCTTTTGGTTCCAGCTTCTGGATCAACAACTCCAGCTTGGTTAAGTCAGCTCCGCAATACGCCAACCTCCCGGCCAAGTGGAAGGGCTTTGACTGGCTCAACGGCTTGAACGGGAAGATCAAGCAAAACGGCGTTTGGACTGATGCTTACTCTTCAGTGCCAGCTGGCAAGTACTTCGTTGCCGGGACCGACTACCTGGGCCGGTCATTGGCCCAAAGAATCATCTACGGTACCAAGATCTCCTTGATCGTTGCCGTGGTTGCGGCCTTCTTCGACCTGGCCATCGGGGTTACCTACGGGATCATCTCCGGTTGGAAGGGCGGCATGACTGACAACATCATGCAACGGATTATCGAAATCATTTCTTCAGTTCCTACCCTGGTTATCGTGGTGCTGATGCTGGTTGTCTTGAAGCCCGGCATCACTTCCATCATCTTGGCCCTGGCCATTTCCTCATGGACGACCATGGCTCGGCAGATTCGGGCCGAGACCTTGTCGCTGAAGAATGAAGAATACGTTCTGGCAGCCCGGTCCTTGGGTGAATCAACCTTTAAGATCGCTACCAAGCATCTGATTCCAAACCTGTCCAGTATCATCATCATTCAAACCATGTACACCATCCCGGGCGCCATCTTCTTCGAAGCCTTCCTGAGTTTCATCGGTATCGGTATTTCCGCGCCTGAAACTTCCCTGGGTGTGCTTTTGAACGAAGGGCAGAAGAACTTCCAGTTCCTGCCATACCAAATGTGGTACCCAGCAGCAGCCCTCTGTGTTTTGATGATTGCCTTTAACCTGCTCGGCGACGGTCTGCGTGATGCCTTCGACCCTAAGGGCCAAAGATAAGGGAGACGAACATATGGCAAATAGAATTTTAGACGTTAAAAACTTAAAGATTGACTTCCACACTTACGCTGGTGAAGTTAAGGCCATTCGTGACGTTTCATTCCACCTTGATGAAGGTGAAACTTTAGCGATCGTTGGTGAATCCGGTTCAGGCAAGTCCGTTACCACCCGGAGCATCATCGGCCTTTTGGCCAAGAACTCCCAGATCATGGGTGGGCAAATCCTTTTCCACGGCAAGGACCTGCTGAAGATTTCCGAAAAGGAATGGCAGCAGATCCGTGGTAACCAGATCGCCATGATCTTCCAGGACCCAATGACTTCTTTGGACCCGACCATGAAGATCGGCCAGCAGATTGCTGAACCATTGATCAAGCACAAGGGCGCTTCGAAGAAGGAAGCCTGGGCTAAGGCCTTGGAAATGATGAAGGCCGTTGGTATTTCGAACGCTGAAGAAAGAATCAACCAATACCCGCACCAATTCTCTGGTGGTATGCGGCAAAGAATCGTTATCGCCATTGCCTTGATCTGTGAACCGGAAATTCTTTTGGCTGACGAACCAACTACTGCCTTGGACGTTACTGTGCAAGCTGAAATCCTGGACTTGATGAAGGACTTGCAAAAGAGGGTCAAGACTTCCATCATCTTCATCACCCACGACTTGGGTGTCGTTGCCGGGATGGCTGACCGCGTTAATGTTATGTACGCCGGGGAATTTTTGGAAAAGGGGACGGTTGACGAAATCTTCTACAACCCGCAACACCCTTACACTTGGGGCTTGATCAACTCCATGCCGACCCTGACCAGTGAAAAGCTGGAATCAATTCCAGGGACCCCGCCAGACTTGCTTGATCCGCCAAAGGGCGACCCATTTGCCCCGAGAAACAAGTACGCGATGAAGATCGACGCGCAAATGAAGCCGCCGTTCTTCAAGGTTTCAGAAACCCACCAAGCTGCTACCTGGCTCCTGCACCCAGACGCGCCAAAGGTTACTCCGCCTGATGAAATCGTGCGTCGCTGGGAACACTACAAGGAACTGCAAGCAGCTGACGAGGATTAAAGGAGAAGCAGAATATGCCAGAAGAAAGAAAAAAGATTTTAGAGGTCAAGCACTTGAAGCAATACTTCAAGAACGGACGCACCGTCACCAAGGGTGTCGACGACGTCAGCTTCGACATCTATGAAGGTGAAGTCTTCGGCCTGGTTGGTGAATCAGGTTCTGGTAAGACCACCACTGGCCGGTCAATTTTGCAGCTGTACAAGCCAACGGCCGGTGAAGTCCTCTTTGAAGGCAAGGATGTGGCCAAGCTACATGGCCGCGACGAACAATTGGCTTTCCGCCGCGACGCGAAGATGATCTTCCAGGACCCATACGCTTCCCTTAACCCAAGAATGACGGTTGAAGACATTATCGCGGAAGGGCTGGACATCCACCACTTGGTTAAGGACAAGGCAGAACGGCGCAAGCGGGTCGAAGACCTGCTGGAAACGGTTGGTTTGAACCGTAACCACGCTTCCCGTTTCCCACACGAATTCTCCGGTGGTCAGCGGCAAAGAATCGGGATCGCCCGGGCCTTGGCCGTTGAACCGAAATTCATCGTGGCCGACGAACCTATTTCAGCCTTGGACGTGTCCATTCAAGCCCAGGTTGTCAACTTGATGATCGACTTGAAGAAGCAGCATGACTTGACTTACCTCTTCATCGCCCACGACTTGTCCATGGTTAAGTTCATCTCTGACCGGATCGGGGTTATGCACTACGGTAAGCTGCTGGAAGTCGGCAGTGCTGACGAAGTTTACGACCACCCGCTGCACGACTACACCAAGAGTTTGATCTCTGCCGTGCCGCAACCAGACCCGGAAATCGAACGGTCCCGGAAGCGGATCGATTACGAATACGGCAAGTTCGAAGGCGACGGTAAGGACGATCAACGGTCCATGCACGAAATCCGTCCAGGCCACTTTGTTAAGTGTACTGACGATGAAGTTGCCTACTACGAAAAGGTTGCCCAAAGCTACGAGAAGTAGTTTGATAAAGCAAATCAAATAAAGAAAGAGAGCTCCAGAGAGCTCTCTTTTTTGTGTTTCGTCTATTTTTGGTTCTTCTAATTGAGATTTATCGGCTGGAACATTCTGGCCGGCCTGTCCTTGGGGATCGGCTTCCTCTGGCTGGTGCCTTACTACAACGAGGCTCACGCTGAGTTCTACCGGACTTTAGCCGGCGACCAGTTTAAGAGCAAGGATTAAGTCCAAAGTAAAAACCGCTCAGTTCTCTAACAGAACTTGAGCGGTTTTTTCGTGCTTAATCCCGGTGAAGGGCGGCGATGACCAGGCCCAGTATGACGAGCGAGATCAAGCCGACGATAATCAGCGTACCCATTAGGCTAATGAGTCCCAAGGAGCAAGTTCAACAGGAGTTGAAGAGAGCAACTCTTGCTGGTCCTTGGTCAAGTATTTCTTGTGGACAACGACTTCGTAGACGTATTCCTTGAACCAGTTGTGGCTCATGACGAAGAAGCCCTTTTCCCCGGACTTGTCGCCCCAGGAGTTTTCCACCTTCCATTGGCGGATGTCGCCCTTATCTTCATCAACCCCGACCAGGGTCATGGCGTGGGAAACTTCACCAACGCCGGTTGCCAGGCGGTCAGCCTTGGACAAGCTGAGGTCAACGGCAAAGAGGTCTTCCAGCTTGTAGAGGTCAGTGTCCAGGTAGCCGGTCTTGTGGTCCATCTGCCGGCCAACATCATTGCCGAACCAGACAGCTTCCCCGTCCTTTAATTGGGCAACAGCGGCTTGCTCCAGGTATTCCATCGGCACGTTCAAGAAGAGGATCGGGCTGCCGCCTTCAACGTTGTCTTCAGCGCCCAGGTGGTAGAGCTTGCCGTATTCGTGGTCTGGGGCGTTGGTCAAGACCACGTAGTCGTCCAGGTCGACGTCAAAGTACTTGTTGAAGAAGGAGACTGGGGTCAAGTTCTTTTCCAGGTGGTAGTTCTTGTCGTCGTCTCTGTATTCCAGGTCAAAAGTCTTTGGCGGTTCACCAACGGCGATGGCAACCATCCGGTAGATTTCGTTTAAGAAGGTCTTGCGGGCCTTTTCCAGCCCTTCCTGGTCACCTGCTTGAGCCAGGCGGCGCAAGGCCAGGGCGTCTTTTCTTTCCTTGTCAGCCAGGGCGCTGGCCAAACCGTTAGTAGCGGAAGTGTTGAAGCTTTCAGGCATAACGTAGCTTGGCACGACACCATACTTCTTGACCAAAGAGACGGCCATGTGCCATTGGCCGCCGTCGTGGCCGGCGAAGTCGAAGTAGCTGCGGACTTCCCGGTCGTCTAATGGTTTATCAGCGGTTTCGATCACTTTTTCATAGAAAAGGTTGGCTCTTTCCAGCTTGTCCCAGAAGAAGTTGTAGCTTTGGGACAGGGTAAAGTTCTTGGCCTTATGCTTGGCGCCGAAGTCGTGGCGCAAGACGTTCAAGGTTGAGAAAAGCCAGCAGCGGCCGGACTGCTTTTGGTTGGTGACGTTGTCCGTTGGCAATTCAGTTGAAAAGACCCGGGTCAGGCGGCCAGCCACGCGTTCATTGTAGGAAGCTTCCAGAACACCGCTTCTGGCGGCAGCGCGGGCGATGACTTGGTTCTTCGGGTCAGCATTGAAATTAGCGCTGAATTCCGCCAATTCCTGCAGAGTTAATTCATGACTCATATTTTTTCTCCTTTTGTTTTAATATTAATAAGTCAATGTTAACATACCTGCTTAAATTAAGGAATCCCAAGGATCAAGTTCGATCGGCTGATTCTTGAGCAGGTCCAGGATTTCAGCCGGCACGTGCTTCTTTTGCACGGCGACCTCGTAGGTGTATTCTCTGAACCAGTCAGCGCTCATGGTGAAGTAGCCCTTTTCCCCGGACTTGTCGCCCCATGAGTTTTCCACCTTCCATTGCCGGACTTGCCCGCCGTCCACGTCAACGCCGACCAGGGCCATGTCGTGGGAAGATTCCCCGATCCCGGTCGCTAGGCGGTCAGCCTTGGATAAGTGGCTGTCGATGTCCAAAAGCTGGTCCAGCTGGTAGAGATCCAGGTCCATGAAGCCGGTCTTGCGGTCCATCTGCCGGCCAACATCATTGCCGAACCAAACAGCTTCTCCGTCCTTCAGCTGGGCAATCGCCGCGTCTTCCAGATATTCCATCGGCACGTTGATGAAGAGGTTAGGGTAGCCGCCCTTAATGTTGTCTTCAAAGCCTAGGTGCAAGACCCGGTTCATTTCATGGTCTGGGGCATTCGCCAAAACCACATAGTCGTCCAGGTCGGTCGCGCAGTACTTTTTGTAGAACTGGACCGGAGTCAAGCCCTTATCCAAGTGGTAGTTCTTGTCGTCGTCTCTGAATTCCAGGTCAAAAGTCTTTGGCGGTTCACCCAAGGCCGTAGCCATGATCCGGTAGATCTGGCTTAAAAAGTCGGTCCGGGCCGCCTCCAACTTTTCCTGGTCGCCTGCTTGCGCCAGCCGGCGCAGGGTCAAGGCGTCTTTTCTTTCCTTGTCGGCCAAAACCATGTCCAAAGCCTGGCTGTGGTTGCTGTTGAAGCTTTCCGGCATGGAATAAGCCGGCACCACCCCGTATTTGGCGATGAGGGAAGCCGCCATGTGCCACTGGCCGCCATCGGTCTGGCACCAGTCAAAGTAGCCGCGGACCGTCCGGTCAGTCAAAGGCCGGTCAGCCGTCGCAATGATCCGGTCGTAGAAGTAGTTGGCCCGTTCAATCTTGTCCCAGAAAAAGTTGTAGCTCTGGGAGAAGGTGAAGTTCTTAGCCTTGTTGGCCTTGCCAAAATTGTGCCGGACCACGTTCAAGGTTGAAAAGAGCCAGCAGCGGCCGGATTGCTGCTGGTTGGTGACATTGTCAGTGTCCAGCTCGATAGAAAAAGTCCGGTTCAGCCGATGGCTGACGGCCGGGTTGTAGGCGGCTTCCAAGAGGCCGCTTCTTCTGGCGGCCCGGGAAATTACTTGATTTTTAGGATCAGCGTTGAAGTCCCGGCTGAAGGATTCCAGCAGCTGGGGGCTTAATTCGTGTGACATGAAAAATCTCCTTTAGCAATAGATGATTATAGAATAATCTTACGCTAAAGAGGACAAAAAAAGAAGCCCTCGCGGGCTTCTCTAAGCACTCTGGGCTTATTCGATAGTAATCGTGTCTTCGTTTTCTTCTGGAGCTGCCTTTGGCAGGGTAACCGTCAAAACGCCCCCGTCAAGCTTGGCGCTAATGCCTTTCTTGTCAACGTTCGGCAGGCTGAAGCTTCTGGAAACTGACCCTTCGCTGCGTTCCTGGCGCAAGATGTTCTTCTTCTTGTCGCTGTCATCCTTGAAAGTGCTACGGTGGGCGGAAATCGTCAAAATCCCGTCAGTGTAGGAGAGGTGGATGTCATCCTTGCTCATCCCCGGCACGTCGATCTTGACGGTGTATTCGTGCTCATCTTCAGCAACGTCTGACTGCAAAATGTTTCTGAAAGCGTGGCTGTCCAATAAGTCCTTGGAGTTGTCAAGCCAGCCGCCTATCTGATCGAACAAGTCGTTGTAACGGTTCATTAAATCATTAGTCATAATCTAAAACTCCCCTTCAACAAATTATTAAAATTGCCTTTTATAAACAGAGGCGGGGAGGGAAGCGGTGGAGCTACTTTCTTTCCCGACAACTATATTATAGTCCCTTTTGGGAAAAATGGCGTAATTAGCACTCAACTTTTTTGACTGCTAAATAAAATTTTTGGCAAAAAGACCTGGGCGGGCTATAATGATTTAAAAATGGAAGTGAAAGGCGACTGGCAAGCATGGTATATTATCAGAAAATGACCCCCGAGGGCTACAAGCAGATTGAAGACGAGATCGCGGCCTTGAAGGCTGACCGGCCCCGCCGGGTGCAGAACCTGAAGGAGGCCCGGGCCCTGGGCGACTTGTCCGAAAACACTGAATATTCAACCGCTAAAAGAGAACTCCGCCACCTGGACAGCCGGGTCCGCTATTTGAACAAGCAGCTGAAATACGCGGAAGTCATCGAAACGGTCAACGACGGCAAGGTCAACCTGGGCAAGCAGGTGGAAATCCGCTATGAAGACGACCAGGAGGTTGAAGAATACCGGATCGTCGGCCGGATGGAAGAGGCCGTAGGGGATGGAAAACTGCCCTTTGACTCGCCTTTGGGCCACGCCCTGATGAAGCACAAGGCCGGAGACCGGGTGAAGGTTAAAGCCCCAATGGGGGACTATGAAGTGACCATTTTGTCGGTCAAGTAGCAAACAGCAGAAGAAAATATAAAGACAAGAAAAACCGTTTCGCCTGGCGAAACGGTTTTTGTGTTGATAGCTTTTTTACCGTCTTACAGAGTCCATGGGTCTTGCAAAACGATGGTTTGTTCCCGGTCTGGGCCGACAGAAACAGTCACGACAGGGATGCCAGTGATTTCACTGATCCGCTTGACGAAGGCCTGGGCCTTTTCTGGCAGGTCTTCCCAGCTCTTGGCGCCGGTGATGTCTTCTTCCCAGGCTGGCAGTTCTTCGTAAATTGGCTGGCAGGCTTCAACTTCCTTCAAGCTGGCTGGGTAGTAGTCAATTTGCTTGCCGTTTAAGTCGTAGGCCACGCAGATCTTGATCTTGTCAAAGCCGCTGAAGACGTCCAGCAGGTTCAAGCTCAAGGCGTTGATGCCGGCTACGCGTTTGGCGTGACGGAGGGCAACTGAGTCAAACCAGCCAACCCGGCGCGGACGGCCAGTAACAGTACCGTATTCGTGGGCGATGTCCCGGATCTTGTCGCCGGTTTCATCGTGCAGTTCAGTTGGGAACGGGCCGGCACCAACTCTGGTAGTGTAGGCCTTGCAGATGCCCAGGACAGTCTTGATCCGGTTAGCCCCGATCCCGCTGCCGGAAGCGATCCCGCCGGAAACTGAGTTAGAAGAACTTACGAATGGGTAGGTACCCTGGTCGATGTCCAGCATGATCCCTTGGGCACCTTCAAAGAGGACCTTTTCGTTCCTGTCCAGGGCGTCGTTGACGTAGAGGGAAGTGTCGCAAACGTATTTGGCGATCCGTTTGCCATATTCAACGTACTCGTTGTAGATTTCGTCAAAGTCCATGGCTGGCTTGCCGTAAACCTTGGTGAAGAGGGCGTTCTTTCTTTCCAGGTTGAAGCGGAGCTTTTCCGCAAAAGTTTCCGGATCGATCAGGTCGCAGACCCGGATGCCGATTCTGGAAGCCTTGTCCATGTAAGTTGGCCCGATCCCGTTCTTGGTGGTGCCGACCTTCAGGTTGCCCTTGGCTTCTTCTTCATAAGTGTCTTGCATTATGTGGTAAGGCATGATGATGTGAGCGCGGTTGGAGATCTTCAAATTGCTTGTGTCGATCCCGCTCTTTTCCAAGTTGTTCAGTTCGCCCAGGAGGACTTTAGGGTTGATAACCACCCCGTTGCTGATCACGGCGCCCAATTTAGCCGCGAAGATACCAGATGGAATCAAGCGCATCTTGAATTCCTTGCCGTCAAAGTCGATCGTGTGGCCAGCGTTGTTACCGCCGTTAGCGCGAACTGACAGGTCTGCCGTCGTCCCTAAAAAGTCTGTAATCTTACCCTTGCCTTCGTCGCCCCATTGGCTGCCGACAACTGCGATTGATGTCATTTTTTCACCTCAAAAAATATTTCGTAGAACTTACGTTAGAAAGGTTAGCATTTACCGGGCAATTAGTCAACATGAAATCCGAATAATATTTTCAGAACGTTCGTGAATAGTTCGAATAAATCTTGACTTTTATGGGAAATGTCAGTAAAGTATCAAAGGTACTTTAAAAAAGGAGCTGGCAAAAAATGAACAATTATTTCAGCATGGAAGCTTTTGACTATGATGATATCCAACTGGTACCCAACAAGGCCATCGTGAAGAGCCGGAAGGAATGTGTCACGAGCGTCAAGTTTGGAAACCGAACTTTCAAGATCCCAGTCGTTCCCGCCAATATGGAAAGCGTCATTGACGAAAAGCTGGCGGTCTGGCTGGCCCAAAATGGCTATTACTATGTTATGCACCGCTTCCAGCCCGAAAAGCGGGCTGACTTCATCAAGATGATGCATGAGAAGGGACTTTTTGCATCGATTTCCGTCGGCATCAAAGATGATGAATATGACTTCATCGACGAACTGGTGGAAAAGGACTTGATCCCGGAATACACCACGATCGACGTGGCCCACGGGCACTCAGTCTACGTGATCGACATGATCAAGTATATTAAGGAAAAAATGCCGGACACCTTCTTGACGGCCGGCAACGTGGCAACGCCGGAAGCCGTCCGGGAACTGGAAAATGCCGGCGCGGACGCTACCAAGGTGGGGGTTGGCCCGGGCAAGGCCTGCATCACCAAGCTCAAGACCGGTTTCGGGACTGGCGGCTGGCAGCTGGCTGCCCTCAGAATGTGCAGCAAGGTGGCCAGAAAGCCTTTGATCGCTGACGGGGGGATTCGCCACAACGGTGACATCGCCAAGTCTGTCCGCTTCGGGGCCAGCATGGTCATGATCGGGTCAATGCTGGCCGGGCATGAAGAGTCCCCGGGCAACGTGATTAAGATCGACGGCAAGACCTACAAGCAATACTGGGGTTCAGCCAGTGAAGTGCAAAAGGGCGCCTACCGCAACGTTGAAGGCAAGCAGATGCTGGTCCCTTACCGGGGCAGCATCGCTAACACTTTGGAAGAAATGAAGGAAGACCTGCAGTCTTCCATCTCTTACGCCGGTGGCCGGGACCTGGAATCAATCAAGCGGGTCGACTACGTGATCGTTAAGAACACGATCATGAACGGCGACTATTAAACTGAATTTTGTAAAAAGAGGCTGAGGCCTCTTTTTATTTTTGCCTTTATTTTCTGTTCGCTTGCTTTTTAGAACAAAAGTTCGATATAATTTATTAGAACAAACGTTCAAGAAAGAAGTGGATTTTGATGTACGATTACCGCTATGAGCCCCACCGGGTTATTTTCATGATCGACAACAAATCTTTCTATGCCTCCTGCGAGGCCCTGCGCCTGGGCCTGAACCCAATGGAAGTCGCTTTAGCCGTCGTGTCCCAGCAGCCGGGGACTGACTGGGGGTCGGGCTTGATTATGGCTGCCTCGCCTTTGGCCAAGAAAAAGTACGGCCTGAGCAATGTCATGCGGGCCAGAGACTTGCCGCCTAAAGACCAGGCCCCGGACCTGATGCTGGTTGAGCCGCATATGAATCTTTACATCAAGCGCAGCATGGAGGTTTTGCAGATTTTCCGCAAGTACGCGGCGGATGAGGATATCCATGTCTATTCGATTGATGAAAGCATGATCGATATGACTGAGTCCTGGCACCTGTTTGGGGATGATCCTTATCTGGTGGCCCGGAAGATTCAAAAAGATATTCACGACAGCCTGGGCCTGTACACGACTTGCGGGATTGGGGAGAACCCCCTTTTGGCCAAGCTGGCCATGGACATTTCCGCCAAGCACCGGACTTCGATGATTGCTTGCTGGCACTATATTGACGTGCCCGATACTATCTGGAAGATTCCCAAGCTGGAAGACGTCTGGGGGATCAATGTCAAGACGGCCGACCACCTGCGCCGGCTGGGGATCAACAATATGTATGACCTGGCCCACAGCGATCCGGCTATTTTGAAGAAGGAGTTCGGAGTGATCGGCGACCAGCTTTTTGCCATGAGCTGGGGAGTGGACCGGAGCATCATCAAGCAGAAGTACCGGCCCAAAAGCAAAAGCTACGGAAACTCCCAAATCTTAAGCCGGGACTATGAAGACCAGCGGGAAATTGAGATCGTTATTCAGGAAATCGGCGACCAGGTCGCGTCCAGAATCCGGGCCCAGCATTTGCTGGCTGGCCGGGTCAGTCTTTATATCGGTTACGCTGACTACGAGGCAGATCCAGCTGGCTTCAGCATTCAAGAGAAGATCACGCCGACTGATATTTCCAGCGATTTGGTGGCCAAGCTCAGGGCCCTTTTCAGAAGAAAGTGGCGGGGGCAGGCGGTCAGACGGCTGGGAGTGACCTACAGCAATTTAGCGTCGGCCGGCTGCCAGCAGCTGACCTTCTTCCTGCCTCCAGCCGAGCAGATCAAGCAGCAGAAGCGGGATCAGGTGGTCGACAAATTACGGAAGAAGTATGGTTTTGCCAGTGTCGTCAGAGCCTCCAGCCTTTTGTCAGGGGCCACGGCAATTGCCAGAAGCCGCTTGGTCGGCGGCCACAATGGGGGCAACGCCTATGAGTAAGGAGTTTGACCAGCGGGTGACGGATTTTTTCGCCCATTATCAAGACCGGGGGATGAAGAAGTGGGCGGGCTTTTTCCTAAGCGACCACACGGCCATGATCAATAAAGAGACAAGGCAGAAAAGCGTGCCCGACCGGGCGGAAATGAGCCGGGAAGAGTGCGGGAAAGTGCTGGGAGAAGCTTTTGGCAACCAGCGGTCGGTGGCCGTCCAGCTGAAGGAAGTGGATGAAAACGGAGACCGGCCGGAGGAAATAGTTGACTTTGTCCAGGGCTACGCGGAAGACAAGGTGGTGATTGGCGAACACGTCATTGCGCTAGACGACTTGCGCTGCGTCCTGCTTTTAAGTGATTAAGGACAAAAAAGAAGCCCCGCTTCATGGTAAAGGAGGCTTCTGAGATTTATCTGTGTTTAATTGCAAAAGTTATTTTTCGTCCAGTCCTTTTTTGCCCTTGAAGATCAAGTTCAAAAGGACGGAAGAGATAGAGGCGATGACGATCCCGTTTTCTAGGAAAAGCTGCAGTTCACTTGGCAGAGCCTGAAAGATGGTTGGGTAGACGGAAACGCCTAAGCCCAGGCCCAGGGAGATGGCCACGATCAAGAGGTTATGGTTGTCGCTGAAGTCGACCTTGAGCAGCATCTTGATCCCTTGTACGGAGATGGAGGAGAACATGACCACCATGGCCCCGCCTAAAACGGCCGTTGGTATGATGGTGACCAGGGCACCGACTTTTGGCAGAAGGCCCATGGCCATCAAGAGGCCGGCTGTCCAGTAGATCGGCCTCTTGGACCGGATGCCGGACAATTGCAGGAGGCCGACGTTCTGGGAGAATGTGGTGTAAGGGAAGGTGTTGAAGAGACCACCGAAAATCTGGGCCAGCCCTTCAGCCCGGTAGCCCCGCTTGAGGTCATCTTCCGTGATGTCCTTGCCCAAGAGGTCGCCTAAGGCGAAGAAGACGCCGGTTGATTCAACCATGGAGACCAGGGCGATGATCATCATAGTCAAGCTGGATGACCATTCAAACTTTGGCAAGCCGAAGTAGAAGAATTGCGGGAAGTGCAGCCAGGCAGCTTCAGAAACTGGGGTCAAAGAAACCATGCCCAGGCAGGCGGCCAGGAGAGTGCCGACGATGAGGCCGATCAAGATGGAGATTGAGGCGATAAAGCCCTTGGCGAAGGCTTGCAGAGCCACGATCACCAAGATAGTGACGCAGCCGACCAGGAGGTTCTTCGGGTCACCGAAGTCCTTGGCAGTGGCTGACCCGCCGCCCAGGTTCTGGATGCCGACCGGGATCAAGGTCAAGCCGATAGTGGTGATCAAGGTCCCGGTGACAACTGGCGGGAAGAGCCTTTTGATTTTGGAAAAGACTCCGGCGATGAGGAAGACGAAGCCCCCGGCCACGATGATTGATCCGTACATGGTGCCGATGGAGTACTTCTGCCCGATCATTTCCAAAGGAGCAACAGCCTGGATGGCGCAGCCTAAAACGACTGGCAAGCCGATCCCGAAGTAGCGGTTGCGCAATAGCTGCAAGAGGGTGGCCAGGCCGCACATGAAGATGTCGATGGAGATCAGGTAGGTCAATTGCTCTGAGTTAAAGTGCAGGGCATTGCCGATCAAGATCGGGACCGCCACGGCCCCGGAGTACATGGCCAAAAGGTGCTGCAGGCCCAGGACAAAAGAGCGGCCTTGTGAAGGTTCTTGTGTTTGATCCATTTTTAGTAAATAACTCTCACTGTCAAAGATTAATTGAAGATAACTTGCCCGTCGGCGAATTCCTTGATGCTGGCCAAAGCTTCCAGGTGGTAGCCATGGTTAACCAGCCAGTCGTGGCCGCCCTGGAAGGCCTTCTCCACGACAACGCCCACGCCGACTACTTCAGCGCCGGCTTGTTCAGCCAGGGAGATCAGGCCCTTGGCTGCTTCGCCGTTGGCCAGGAAGTCATCGATGACTAAGATGCGGTCATTGGCATCAAGGAACTTGGCTTCAACAGAAATGGTGTTGGTCACTTGCTTGGTGTAGGAGAAGACTTCCGCGGTGTAGACGGCGTCAGTGACGGTTGAAGGCTTCTTCTTTCTGGCAAAGACCATCGGCACGCCCAGGCAGTAGGCGGCCATGATGCCGGGAGCGATCCCGCTGGCTTCAGCGGTAAGGACCCGGGTGACGCCTGCATCCTTGAAGAGGCGGGCGAATTCCTGGCCCAGGGTCATCATCAATTGGGGATCGATCTGGTGGTTCAAGAATGAGTTGACCTTCAAGACGTTGCCTGGTAAAACGACGCCATCCTTCTTAATGCGTTCTTCTAAAAGTTCCATGTGACTCCTTCCGAGAAAAGAAAAGGGCTCCTTTTACCAAACTAGGCAAAAGAAGCCGCGCAGGCAATACCGGCCCTTCTTTACCTATAGTCCGGAGTTTACGGCTCCGGGTAGAGACTGCTACCCGTATCGCAGCGATATATAAGCAGAAACATTTGTTAAGTTATTGGTAAATCTTACAGCAAAAACCGAATTAATTCAATAAGATTCGCTGAAAAATTTCTAATCTGGCGCAAAAAGTTCTAAAAGATTAAAAAAACCAGTGAATAATTCGCTTTTTGTTGACCTGGCGGCGAAAAACGTGTAAAGTTGATTAATTAAAAAGTATCAACGATTGTTTGAAAGGATAAAATCATGTCTTTGTGGGAAACCAAATTTGCTAAAGAAGGTATTACTTTTGACGACGTGCTCTTGATTCCAGCTGAAAGTCACGTTCTGCCGAACGAAGTCGACTTGTCAACCCAGCTGGCACCAAACTTGAAGCTGAACATTCCTTTGATCTCCGCTGGGATGGACACGGTGACCGAAGGCAGAATGGCAGCAGCCATGGCCAAGATGGGCGGCCTTGGGGTAGTCCACAAGAACCTTTCAATTCAAGCGCAAGCTGACGAAGTCCGTCTGGCTAAGAACACTCCGGTAACTGCCGAAGACACCTACGCTGCCGTTGACAAGGATGGCAAGCTCTTGGTAGCTGCTGCTGTCGGCGTGACCAGCGACACTTTTGAAAGAGCTAAAGCCCTGTTTGAAGCCGGTGCTGACGCGATCGTTATCGACACGGCTCACGGTCACTCAGCCGGCGTTTTGCGCAAGATCAAGGAAATCCGCGACCACTTCCCGCACAACACTTTGATTGGCGGCAACGTGGCTACTGCTGAAGGTACCCGGGCCTTGTTTGAAGCCGGCGTTGACGTAGTCAAGGTTGGTATCGGGCCTGGCTCAATCTGCACCACCAGAGTGGTTGCCGGTGTCGGCGTGCCGCAATTGACTGCTATTTACGACGCGGCTGACGTAGCTCGGGAATTTGGCAAGCCGATCATCGCTGACGGCGGGATCAAGTACTCAGGTGACGTGGTTAAGGCTTTGGCTGCTGGCGGCAACGCTGTTATGCTGGGCTCCATGCTGTCAGGTACTGAAGAAGCTCCAGGGGACGTGCAGCAAGGTTCTGACGGCCGTCTGGTTAAGTCCTACCGGGGGATGGGGTCAGTTGGCGCCATGTCCCAGCAGCACGGCTCAAGCGACCGATACTTCCAAGGCGGCGTGAACGAAGCCAACAAGCTGGTGCCAGAAGGCATCGAAGCTGTTGTTTCCTACAAGGGTACGGTAAGCAACGTTGTTTACCAGATCCTTGGGGGCCTGCGGTCCGGTATGGGCTACTGCGGGGCTGAAAACATCGACAAGCTGATTGAAACCGCCCAATTCGTCCGCATTTCAAACGCCGGCCTGCGTGAATCCCACCCGCACGACGTGATGATGAGCAAGGCCGCACCTAACTACGGAGGCATCGACTTCTAATGGCAAAAATCGACTTAAGCAATTTTGACAAGATTATCGTCCTGGACTTCGGCAGCCAGTACAACCAATTGATTACCCGCCGGATCCGTGACTTTGGCATCTACTCAGAACTTTTGCCGCACACGATTACGGCAGAAGAAGTGAAGAAGATCGCTCCTAAGGGGATCATCTTCTCCGGCGGCCCGAACTCAGTTTACGATGAAAACGCCCTGGACGTTGACCCGGAAATTTTTGAACTGGGGATTCCAATCTTGGGTATCTGCTACGGGATGCAACTGATGACCCAGAAGCTGGGCGGGACGGTTGAAAAGGCCGGGGAAGCTGAATACGGCTCAGCCCACATTGAAGTCAAGGAAGCTGACAGCCCGCTTTACAAGGGCCTGCCAGAAAAGCAGGTTGTCTGGATGAGCCACGGGGACCTGGTAACCAAGGTGCCAGAAGGCTTTGAAGTTCTGGCTTCAAGCAAGAACTGCCCGATCGCTTCCATGGCTGACCCAGACCGGAAGTTCTACGCAGTCCAGTTCCACGCTGAAGTCCGCAACTCAGAATATGGCCTGGACATCTTGCGCCGTTTTGCCTTTGACGTCTGCGGAGCCAAGGACAACTGGACCATGGATGACTTTATTAAGCTGTCTGTTGACTCAATCAGAGAAGAAGTCGGCAACGCCAATGTGATCCTGGGGATCTCCGGCGGGGTTGACTCCAGCGTTACGGCTACCCTTTTGCACAAGGCAATCGGTAGCCAGCTGACGGCGATTTTTGTCGACCACGGCCTGCTTAGAAAGAACGAAAGCGATGAAGTTATGGCCGCACTTAAGGAAGGGCTGGGCGTGAACATCGTCAGAGTTGATGCTAAGGACCGCTTCATGTCCAAGCTGGCTGGGGTAACCGACCCAGAAAAGAAGCGGAAGATCATCGGCAACGAATTCGTGCAGGTCTTCAACGATGAAGCCAAGAAGATCAAGGACGCCAAGTTCCTGGCCCAAGGGACCTTGTACACTGACGTAATTGAATCAGGGACCGACACGGCCCACACGATCAAGAGCCACCACAATGTCGGGGGCTTGCCGGAAGACATGCAGTTCAAGCTGATTGAACCGCTGCGGCAATTGTTCAAGGACGAAGTTCGGGTCTTGGGTGAAAAGCTGGGTCTGCCACACGACTTGGTATGGCGGCAGCCGTTCCCAGGTCCTGGCCTGGCTATCCGGGTAATCGGGGAGATCACTGAAGAGAAGCTGCGGATCGTCCGGGACGCGGACGCGATCTTGCGGGAAGAAGTCAAGAATGCAGGCTTGCAGGAAAGCATTTGGCAATACTTTGTTGCTTTGCCAGGGATGCGGAGCGTCGGGGTTATGGGAGACGGCCGGACTTACGACTATGCTGTCTGCATCCGGGCCGTTACGTCAATTGACGGGATGACGGCTGACTTTGCCCAGATTCCATGGGATGTTCTGCAGAAGATCTCCGTGCGGATCGTCAACGAAGTCAAGCAGGTTAACCGCGTACTGTACGACGTGACGAGCAAGCCGCCGGCAACGATTGAATATGAATAAAATAAGCGGAATTTTTCTCCGCTGGGGAAACTACCTGGTTATTGCCGGGTAGTTTTTTTGTGGAAAAATGCAGGAAGTTGGAGCCTTAAAAGCAAAGTAATTACTGCTAGCAAAAGTATAGTCCAGAAATAATTTGACTCAATTATAAAGGGCTATCTCGACGTACGCATCAGTTTGGATAATCTGCGAGGTAAAAGCAAAATAGCTATAGTAAGTAATTTGCACAAGAATATGTTAAATCGCAGATAGTCAATATTTTGGTTTAAAGGCTGTATCTTTTGACACCGAATATGACACCATATATAATGATACTAGGAGTTTATAATGTCGAAATGGGATAAACTGTTACAGCGCATCCTTTCATTATCAAAAGGCATGCGTTTTGTTGAATTGAAGAAGGTTCTAGAAAGTTATGGTTATGTAATGACGGCACCAAGAAGTGGAAGTAGTCATTATACGTTTCGCAAACCGGGTAAAACTCCCATTACGATCCCTAAACATGAACCGATTAAGAAAATATACGTTGAAATGGTACGCAAAGTTGTTGAGGAGGAAACGAAGCATGAAGACAATTGATGATTATCTGGCTCTTCCATACAGACTTGAACTTGTACCTGATCCAGATGAAGGCGGTTATGTTGCCAGCTATCCAGAATTGCCTGGATGCATTACTATCGGGGAAAGTCTAGAAGCTGCCGCGAAAAACGCGGAGGATGCTAAAAAAGCGTGGCTGGAAGCCGCGCTGGAGGATGGTATTGAGATAGCAGAGCCGGCATCTCTGGATGACTATTCCGGGCAATTTAAGCTGCGGATTCCCAAGAGCCTGCACCGCTCACTTGCTGAACACTCTAAACGCGAAGGTGTCAGCATGAACCAGTATTGTGTCTATTTGCTGTCTAAGAATGATGCGCTGGAAGAAAGAAATAGAGCTTGATGTTGGAAACTACCTGGTTATTGCCGGGTAGTTTTTTATTGCAAAAATAGGGTAGAAATGCCTATCGAATGCTGAGTAATGTCTTGATTATAAAGAAGAGCAAAGCGATTTAATAAAATGCTTTGCTCTTCCTGTATATATAAGTGAATCTTTTTAACAGCGACGTATTACTTAACGCAGCTGATTGTATTTGTCTTGCAATAAAAAGTTAATCGTCTAACATCAGAATGAACTTTCTTTTGCGCTAACATTTGTAACTTATGTAATTCTTTCATTTTGTTACCTCCTAAAAATTGTTTACCACAGTATACCTCCAACAAAATTAAAATACAAGGGTTTACTTTATATTTTTTTAATGTAAAATTTACCGTATAATATGGTGGATAAATTTGGAAGTGTAGGAAGAAAACACAAAAATATGAGGAGAAAAAACATGATAAATTTGAACTACCAGTCAAGTGACACATCACTTCTTCCGAGTGATTTTCAATTAGAAGATTATAAAAAAATTGCAAGAGATAGCAAAAAACGCTTTCTTCAATTTTGCTTTTCCAATGCTGAAATTCCCGATCAAGGATTCAAAATTCATATATCTGCAACACAAATCAATTATCAAGTGATTCTTGATGAAGTGTTTGATCTCTGTAAGTCAAATTTGATAGATTTCAAATATATATCTAATAGAGAACAACTTCTTGACAATTTGGCAGGAAAAGATGATTTATGGGCTAGTGGGAAATTTATTACTATCTATCCTTCAAGCTTGGATGACTTCAAAAAAGTTATAGTTAAACTCTACGAAAATAATGTATTGAAAGTTCAAGATGGTATAGCAATATTTTCAGACAGGCGATATAGAGATTCAAACGTAATTTTTTATAGGTATGGTAGGCTTAAGGGACCGGATAAATGGATTTATAATCCTATTACGAAATTAAAGGAATATAGGGACTATGAGAGTATGGAGTACCGCTTACCAGCTTGGGTTGATGAGCCATTTCCAGATAACTCAGATGATAGTAAAACATGTAAATACTTTTTTAAGAAAATTATTCCAACGGAAGGGCTAAATTCTAAGCCTTCAGGAGCTACGTTTTTAGCCCATGTTGCCGGTAGTGAAGAGGAATTTGTCCTAAAAAATGCGCATCCAGGATATATGAACTTGGGGGTAGCATGTACAGATTCGCTGAAGAATGAAGCGGTAAATATAAAGAGAATGATGAAATTCGATTTTATTCCTAATTATATTGCTGATTTTTCAGAAGACGAAGATTATTTTTTATGTGAAGAAAAAAAGTGCGGCCTAAGTGTTGATGACTATCGTGCGGATTCGCACCATAATTTTATTGATAAAAAGTTACGTAAGAAAACAATCAATGACTACAGAAAATCGATTACAGATCTATTGAAAAATGTACAGATACTTCATGATGAAAGGATTTTTTTAGGAGATATATCATCGGAAAATGTTTTAGTAGATCCAGAAACTAACCTTGTAAGTTTTGTAGATTTAGAGCAAAGCGTATTTTTAGAAGATCATTCGAAAATAGCTTTTTTTGCACGTACTGAAGGCTTCTTTGATGAAAATACACCATTTTTAGCCCCAATTGCTCAAGATAATCAACAATTAGCATATTTATTGATATCATTTTTCTGTCGAGGAAATATGTTCTTGTTGATCGATCATAGTGGCGCTATGACAATTAATTTTTTTAAGCAGTATGCGTCAACTCATAATCTTCCAAAAGTTTTTGTCGATGTCATCATGGACTTATTAGAAGATCCAAATCAGCGGTTAGATAATTTGGTTGAAGTGTTAGATAAGATGGATTGTGAGAACCTCTATAATTCCGAAGATTTGGTTTCTTTAGATGACTTTCAATACGAACTTGTTAAATCTGTATATCTGGCCATGATTGATGGAATACAAATTGATGATAAGAAAACTCTTTTCTTTGAGGAAGATACGGATTTAATATTCAATGAGAATATGGTGTCTATCTACAAGGAGTATCTCCAAAAGCCAACGATCTTTAATGATATATTTTTTGAAAAAAAGATGCATAACCATGTTATTTCAGAAGGCAAGAGATTGGTGGAGATGCTTAAGGATGGGGATGAGCGATTAGCGGAAACCTCATTAGTTCAAGTATATGCATTACTCTTGTGTACTATAAAAATTGCGAGTCCTAGTGAAAAAATTATTATAGATAGTTTGATAAACTATACACAAGAAAAATATATGGAATCTACAATAAATGGAAGATTCTTTAGGATAACGGAATATTCAACATATTTATCACCATATTTTGCTGACGGCACGGCAGGTATGATCAACATTTTGCTGGAATACAGGGAAAAATTTCATGATACCAAATATGATGCGTCGATTCTAGATTTAGTTAATTCTATTTCTCAAGAACATATGCCTAAAAATAGTTCTCTGTATAGAGGATTAGGAAGTTTCATATACGTCCTTCAGAAATTCAAAAAAATATTTAAATCAAGCAAACGAGATAATGATATAAGGGAAATGTTTAGGAATCTTCCGTTGTACTCAATTGTTTCTAATGGTAATAGATACATGGTTGATGAGTCGTTTAGGCGCATAAGCTTAGACTTTGCGGATGGAAATGCTGGAATTATATTTTTGATAGAACAAGCTAAGCAAATGGGAATTTTATAGATTTAAAAAGGTTGTGAGTGTTTTGTATTATTCAGATTTTATCAAGGGCAACCGAGTTAGGTTTATCGCGATCATTCTTTTAGTTATTGGCGGCAGCGCGCTTCTGGCCGGCAACAACGCCTTGCTGACACTGCTGGGGGACAGCTTGCGCAAAGGAAACCTGCTGCTTTTCGTGACAATTATCGGGATTAATTTTGTGGTTAATTCCATCGGCAGCAGCTTGTCTTATAGAGCCAATTACTTGTATGACAAACAGACTCAAGAGTATTTCCACAAGCTTCGGTCTGCTGAAGTGGAAAAAATCTACAACAGTGGTAACAAGGCACCAAAAGTTTCCAGCGTTCAGAACAGTTTGACCCAAGATTTAAACATGCTGGGTGAAAATTTCCTGGCTCCATGGCTGAAAATTGCCGCTTGTGGATTGGATGTAGTCCTTTCCTCAATCATCGTCTTTACCTACAGCTGGCTTTTATTGCTGGTAATTCTGCTTCTTGCAGTGTTGATGTTTTTCATGCCTCGATTTTTATCTCCAGCTTTGCAAAAGGCTACGGATGATATTTCTAATGAAAACAAGCACTATCTCGATATGCTGGAAAAATGGTTTAGCGGTTTGAGCGTTTTGCAGAGATACCACGTCAAGCAGAAGCTTTTGGCGGTGACGACTGCTCAAGGAAAGCGACTTGAAGATGCCAATGTCAGACGGTCCGGCCGGATGCAAGTTGCCAGCGGCGTCAACAATGCCGCAAACGTGTTGTCCCAGGCCTTGATTTTGCTCGTTTCAGGTGTCTTGATTATTACTGGCCGGATGAATTTCGGTGTTTTCTTTAGCATTGGCAACTTTGCCAGCACGATTTTTACTGAACTGGGGGTTGTGGTCAACCAATATACTATTTTGCAGTCAAGCAAGACTTTAAACGCCAAGCTCAGAAAGCAGCTTGCAGTTCAGACCGACCACTTAGAAAAGACTGAAAGTTTGGACCATTTTCAGTCATTGTCAGTTCAAGCCTTGTCTGTAGCTTTTAGTAATGAGGAAAAAATCACTTATCCGGATTTTCAAATCAAGCGGGGAGAAAAAATCTTATTGTCAGGTGACAGCGGGACTGGAAAATCTACGCTTTTTAAGCTGATCCTGCAGGAGTTGCCATTGGCGACTGGAAAGATTTGTTTTAAAAACGAAGCCGGGCAAGAAATTGAGCGGCCAGACCTGTCTCAAATTGGTTATGTTCCGCAAGATCCGGTTCTCTTTCCAGGTACAATCAAGGAAAACATTACAATGTTTAACTCCAAGCTGAATGACCGGGTAATGCATTTTGTTAAGCAGGTGAATTTGGAAAAAGATCTGGCTAAATTCCCGGCAGGAGTAGATACGGAACTCGATCAAGGCAAGCATGTCCTGTCTGGCGGCCAGCGGCAAAAAGTGGTTTTGGCAAGAGCACAGATCCATGACAGTCAGCTGATTTTCATTGATGAAGGCACTTCAGCCATCGATGCACACAATGGCTTGGAAATTCTGCAGAATCTGTTGCAAACCGATGCAACGATTGTTTTTATCGCGCACAACTTGACTGAAGAGATGCGGCAGTTATTTGACCGGGAGATTCATTTGAGCAATACTGCAGGTTAAACGAAAAAAGCGGGCAAGTTTGGCTTGTCCGTTTTTTTTATTCATTGAAATATTTGCTAAAAGCTTTGCGATATTGGCTGGGGGTCATTTTTTCCAGGCTTTAAAATTACGTTCTAAAACTTTGGCTGAAGAAAAGCCGCAGTAATTGGCAATGTAGGCGACGGAATAGTTTGTACTCAGCAAGAGGTATCTGGCATGCATGAGCCGGACTTGTTTTAAGTATTTGCCTAAAGGAAGTTTAGTCACTTGGCTCAATTCTTTATTTAAAGTCACTTGTGAAATTCTAAAATGTTCAGCAATGCTTTGTGCCGTGATATTGGTGGAAGAGTTGTTGGCGATGTAGGTGATAACCGTGTCAGCCAAAGATTGGTTTGGCGGCGTTGTGACGGCAGTTTTTTCAGTATATTCGCTGTCGATCAGGGCAATCATTTGAAAAAATTCGCTCAAAATTAAAAAGCGGATACTGTCACTGATCGGCTGGTCGACGAGTTCAGCGATAGTAATCAGATTTTTTCTTAACTGCCGGTAGCTGGCTGTATCGCGGCTGATATGGTCCATCTTGATCCGCCAATTTTTACTGGAAGTATATTCTTTTTCTAAAAAATTATTGTCAATAATCAGCCCCATCACATAATAAGACCGGTCTTTGTGCCCCGTCGCGGCATGAATTTGTGTGCGGTCAATAGCCCAGATATCGCCGGAATTGTAATGGTGGGTCTGGCCAGCAATGACAACCTTGAAGTCTTCCCCAGATACCAAATAATCAATTTCGATTCCGGTATGCCAGTGGGTGGGGGCTTTAGGAACGTAATTTGATCTTTTGAAAAATTTGAAGGGGAGGCGGGCGAGATTGTTGACCTCTTCGTAAGCAATGGGCATGTTCTTTTCTCCTTTATGAATTGTCCCTGAGTGCTTTAAGAAATGGAGAGTAATCGCTTTCCCATATAATACCATACTGTTTGTAAGAGCAAATAGCTTGCTGCTACAACTGATTTAGACTAATAAACCTGAACTTACAATTTAGGAGGAAAAATAATGGCTCATTTTAGAAAAGACTTTTTGTGGGGCGGCGCCATAGCTGCTAACTAAGTTGAAGGTGGATACAACGAAGGCGGCAAGGGCTTGTCAGTGACTGACATTACCACGGCCGGCTCTTTGGAAAGTCCGCGTTACCTGACTTACACTTTGGATGGCAAGGATGGCAAAGTAGCTGGGATGTTCGCCAGCTCCTTGCCAAAGGGCGCTAAGGGGAAGATTTTTGACAATGAATACTACCCGAACCATGTAGCGATCGATTTTTACCATTACTACAAGGAAGACATCAAGATGTTCGCGGACATGGGCTTTAAGGTATTCAGAACTTCCATTGCCTGGACGCGGATTTTCCCAACCGGTGAAGAAGACAAGCCAAACCAGGAAGGGCTGGACTTTTACCGCAGAGTCTTTGAAGAACTGAAGAAGAACGGGATTGAACCATTAGTTACGATTTCCCACTATGAAGACCCATTGGCTTTAGGCGAAAAGTACAACTACTGGCAAGACCGCAAGATGATTGACCTCTACGTTAAGTACGCGACGACCTTGTTCAAGGAATACAAGGACCTGGTTAAATACTGGCTGACCTTCAACGAAATCAACTCATTCTTGATGTTCTTGAAGCTGGTGGGTGATGGCAAGGTATCTGATGCAGATTACCAAAAGGCTTACCAAAAGCTGCACCACCAATTCGTTGCTTCTGCTAAGGCAGTTGTTGCAGGCCACAAGATCAACCCAGACTTCATGATCGGGAACATGATTGCCGGTTCTGTTTACTACCCAGGCACCCCTGATCCAAAGGATGCTTTGGCTGCCCGCTATGAAGAAGAATTGAGCCAGCTTTACTGTGCTGACGCGCAAGCTAAGGGTGAGTATCCAAGTTTTGCCAAGCGCTTATGGGATGAACACAATGTTCATTTGAAGATTGAAGATGGCGACCTTGAAGTCATGAAGGAAGGTAAGGCTGCCGGAAAAATGCCTTTTTGCCTTCTTAGGGGACGAAGTCGATAAGTATGCCGAGCAGGTTAAGGCAACTGTGGCAGACCACTTTATTACGATTGACCGCCTGCGTCCGATCTATATTATTGAGAACCAAGGTGAGCAGCTGTGCTTATGCCGGGCACCATTAGGTGGTCCCGCTGCCGCCCAGTTTATGGATGCCTTGATCGCCCTTGGCTGCCGGAAGTTTCTGGCTGTTGGCTCCTGCGGGACCTTGGTGGACATCAAGGAAAACGACTTCTTGATCCCGGCTCGGGCTTTAAGAGATGAAGGCACTTCCTACAAGTACCTGCCGGCCAGCCGCTATGTGGACCTTGACCCAGCAGCTGTTGAAAAAATTGGCCAAGGCTTAAAAGAGCAGGGACTGCCGTTTGAGCCCTGCACGACCTGGACGACTGACGGCTTTTTCCGGGAAACCCAGGACATGGTTGAATACCGGCGCGGGGAAGGCTGCCAGGTGGTAGAGATGGAATGCGCCTCAATGGCTGCTGTTGCCGCTAAACGGGGCGCTGAATTCGGCCAGCTCCTCTACACGGCTGATTCCCTGGCTAACGTGGAGGCGCATGATGACCGCGACTGGGGTCAGGCCTCCCAGGCCAAAGCCCTGCACATCTGCCTGCGGATTATCCACAATTTTTAAACAGGACAGAAAAATAGTACGCAAAAAAGAGGAATCTTCCACAAGATTCCTCTTTTTGCTGTGCATAAGTGTATGTTTCTTACTTTTTCTCGAAGTACTGCTCCTTATTGACCTTGAAGTACTTCTGGTAATCCTTGTAGTAGTTGTGGTACATGTGCTTCATCAAGAGCCAGCGCTTGACGTTCATGTCCGGCTTATAGAAGACCGTGGTGCCCACCTTGCCGGCCCGCAGAAGTGCCAAGGCTTCCTTTTTGGCCAGGGAGTCGACCGCGTATTGTTCAAAAATCTTGTCCGGTACACCCAACCAGAGCTTGTGCTTGGCCGGATCCTGGTTGCCGTAAACAACCGGCTGGTCCTTAAGCGAGTCTTCCACATAGTCGTCCACATACCACTTGGCCAGGTTGTAGCCGTTCAAAGTGACGTAGAAGCTGGACCGGCCTTGGCGGAGGTTGATCTCAAAGAACTTGTACTGGCCGTCGCGGACGTCGTACTTGATGTCAAAGTTGGCCATGCCCGTGTAGTTGATCTTTTCCAAAAAGGCCTGGACAGTCTGGTAGAGCTTCTCGTCATAGTCCGGCGCGATTACCATGTATTTGCCGATGGCAATCGGGTCCGGGTCTTCCAAGAGGGGGTGGCCCAGGCACATCATCTTGACCTGGTGATTCTTGTCCACATAAGCGTTCAAGACCCGCATGTTGGAGTCATCGCCCGGGATGAAGTCCTGCAAAATCAAGTCTTCCTTGTAGCCATTGGTGTAGATCTTGCCCACAATATCCTTGAATTCGTCCAGGTCCTTGATGACAAAAGCCTTCTTCCGTCCTTCAAACTGCACGTCCAGCCAGGAAACCGGGTCTTCCGGCTTTAAAGCGACCGGGAAGGGGAAGGGTACATCGGCGTAAGAACCATCCTTGTAAGCGGACATAGTGATGATCTTGGTCTTCGGGTAAGGCAGGCCGTATTCTTCACAGACCTCGTAGAAGCCCTCCTTAGAGATCAGTTTTTCCAAGAGGGCGTAGTCGATATAAGGAACGATGAAGGCCTCTTCCAGCTCCTGCTTGTGCTTGGCCAAAAGCTCTGAGTAACCGTCCCCGCAGGAGATCAAGATCACCGGTTCCGGGTGCTTCTTGTATTCCTTGATCTTCTCGCGCATAACCTTGATGAATTCCGGGTCTTCAGTAAAGCCCGGGTGAACCTCGATGTCAACGATCTTTGAATACCGGGTCGGGGCTAAAGTGGACGCGCCCCAGGCCTGGACCTTGATCCCGTAAGCCTCGTGGAAGGACCGGGCCATCCCGTAAACATTGATGTCGCTGCCTAAAAGAATCGGAGTAAATTGTTGCATGATTGTTGCCAGATTTCTATTGGATTGTAATTTTTTGGATGAAAAAAGTCCCTACCTATGTTAGCACGTTTAGGCAGGAACTGAACTGTTTGCTTATGAATTTTCGCTGATCCGGTAGCGGATGGCCTTGGCCTTGCCCCGCTTGAGAACCAAGCCGCTGTTTTCCATCTGCCGCAAGAGCCGGGTCGCCGTAGCTGGGCTGACCCCTAAGAGCTCTTCAATATCGCTTCTGATAAATTCCCCATGCTCTTTGCCAAAAGCCAAAACGGTTTCTTCATTGCCAGTTGCCCGGGCCTTTGGCTTGGGGGCTGGGCTAGGGGAAGGAGCAGGTGTTACCGCCTTTTTGACTGGTTTAGAAGTCGCTTTAACAGCTGCCTGGTAATGGGGCAGGACCACCTTAAAAGAGCTGGGAGCGGCTAAAATCTGGGGCGCAAGGCGGCTGCCCTTGTAGGCACTCTTGATTCTGGCTAACCCCGTTCCGTAGGATTCCACCAGCTTCAGCTGGTAAAAGAGGTCAGCCAAGCGCTTGTTTCGGCAAACTGACAGGCCCAGCTGGATGTCTTCCAGGGTAATCCCGGGCATGAGGCCGCCAAAAGAAATGAATTCCACCCGGTCTGTGTATAAGTTGATCAAGCTGCTGGCCGGGTTGCTGTAGTCCCTGTGGATAATCGCGTTCATCAAGGCTTCCCTTAAGGCCTGCTTGGGGTAGGCTGGCCGGTCTTCCCGGTAAAGGCCCTTAATCTGGCTCTCTACTGGGTTGTGCTTTTCCAAAAAAGCGTAGACCTGCTGGAATTGAGCGGCCAGGGACCCGGTAAACTCCTGCCGGTCCAGGAATTCATCCTGGTCTGTCCCCTTAAAAACAGCGCACTTGATCGTGTAAGGGCACTGGTCAGAGACCAGGAGGTCGAAATTACTGAACTGGAGGATGCCGAACTGGCTGGACGGCGGGCTAAAGGGGAGACCCTGCTGGTCAAAAAGGGCCTGCAGGGAGTTGAAGGTCAAGTCCTGGCGGGGAGAAAGCTGGTTTTCAAAGCTGCTGGAATCATTTGGCGTAAGCATGGCGCGCCTCCTTTTTACTGCTTGCAATCTAATCATATTTTAGCGAATCGCGTCAATGTCGTCAATGATTTGATTTGATTAGATTTGATTGGATTTACTTGATTTGATTCGATTCCCAGGCAAAAAGAAAAGCGCCCGAAGGCGCTCTTGTTAAAGGCTGGTCTGCTTTTTCTCCTGGTGTTTGGCATAGAAATGGTGGGCGACGTAGCAGAAGATCACGAATGGAATCGTCGCGTACAAGGCTACCCTCTGGGAAGGGTCAAACCAGATCAAAAGGCAGGAGGCCAGGCTGGCGATAAAGGCAAACCAAGGCGTGAAAGGATAGAGGGGGGTCTTGAACTTGAGCTCGTCCTCCGTATTCCCTTCTTTCAGCCACTTCTGCCGGAACTTGAGCTGGCACAGGGCGATCGCCATCCAGACGAAGACCACCGCCAAGCCGGAGATGGAAACCAGGACCAGGTAGATCGTGTCAGCCGCGTAGACACTGGTCAAGAGGGAGAAGACCCCACCCAGCATGCTTATCAGCAAGGAGATGGCCGGAATCCCTCTTTTGTTGGTTTTGGCAAAAACAACTGGAATAGTCCCCTCATTGCCCAGGGACCAGAGCATCTGGTTGAGGCATAGAGGCCGGAATTGCCGGCAGAGATTATGGCCGTCAAAACGACGAAGTTCATCAAGTCGCTGGCAAAAGGAATCCCCATCATGTTAAAGATGTGGACGAAGGGGCTTTCGGTAACGCCGGCTTGCTTGTAGGGGATGAGGCAGGCCATGAAGAAGATGGAGCCGATGAAGAAGATGATCAGCCGCCATAAGGTGGTGTGGATGGCCTTAGGCAGGGTCTTTTCCGGTTCCTTGGCTTCCCCGGCCGTGATCCCGATCAGCTCCGTCCCCGAGAAGGCAAAGTTGATCGTGAGCATAGTGGTAAAAACCCCGCCAAAACCAGTCGGGAACCAGCCGTCCTTGGTCAGGTTGGTCAAACCTGGTGCCCCCTGGCTGCCTTTTAAAGGAATAACTCCGACCACCGCCAGTCCCCCTAAGATGATGAAGGCGACGATTGCCGCTACCTTGACGGCCGCGAACCAAAACTCGCTTTCCGCGAAAATCTTGACCGAGAAGAAATTGGAGAGGAAAATCAAAATCATGAAGACCAGGCTCCAGATCCAGACGGGGACAGAGGGAAACCAGTGCCGCATGATAATCCCCGCCGCGGTAAACTCGCTGCCCAGGGCAATAGTCCAGGTCAGCCAGTAGAGAATGGCGACCGTAAAGCCGGTGGCCGGATTAAGCAGGTTCTTAGCGTAAACGTGGAAGGAACCCGTGTAGGGCATGGCCACCGACAATTCGCCCAGGCAGAGCATGACGGCGTAAACCAGGATCGCCCCGAAGAAATAGGCGATAATCGTGCCGATGGGTCCGGCCTGGCTGATGGTATAGCCTGTTTTTTTATTAAAATAAGCAGTAACATGATAACACATGATGGAGGAAAAACGATGGCAGATTTACCAACCCTTCTGGCCCAAGGCCCGGTGACTTTGGACGGGTCCATGTCCACGCCGCTTGAAGCCTGGGGCGAAGACACCAATTCCGACCTCTGGACGGCCAAGGCCCTCGCGGATAACCCAGACCTGGTCTATCGGGTCCACCAGGAGTACTTCAAGGCCGGCGCCCGGGTCACGATCACCGACAGCTACCAGGCCAGCCTGCCGGCCTTCATGAAGCACGGATTAAGTGAGGACGCGGCTCGAGCCTTAATCAGAGAGTCAGCTGCCGTGGCCATTAAGGCCAGAGACGACTTTGAAAAAGAGACCGGCATCCACAACTTCGTGGCTGGTTCAGTTGGCCCTTACGGGGCCTACCTGGCTGACGGCAGTGAATACCGGGGCGACTATGCTTTAAGTCATGAAGAATACGTGGACTTTCACGCCCCGCGGATTGAAGAATTAGTTGCCGGCGGGGTGGACTGCCTGGCGGTTGAGACTCAGCCTAAGCTGAGCGAAGTCAGAGCTATTCTGGACTACCTCAAGGCCAAGTACCCGGACCTGCCGGTTTACGTCAGCTTTTCCTTAAAGGATCCGGCTACTATCAGCGAGGGCCTGCCTTTAACTGAAGCGGTCGAGGAAGTCAGCGCCTATGCCCAGGTCTTCGCGGCCGGGGCCAACTGCTTCAAGCTGGCCTGGACTGTCGATGTGGTGAAAAATCTCCGCGCTTCTAAATTGCCAATCGTCGTTTACCCTAATTCCGGGGCCGAATACGATCCTTCAGTTAAAAAGTGGGTCTACCCCCCAGAAGCCGCGGACTTTGGCCAGGCGGGGGCTGCCTGGCTGGCGGCCGGGGCAAAACTGGTCGGGGGCTGCTGCACAACGATGCCGGAAGATATCGCCGGACTTGCCGCCGCAGTCAAAAAGGTTTATACTGCTTTTTAAAATATTTCTAATCTTAGATTAATAAGCTTCTTGAGCAGAGAAAGCAGGTTAAACAATGGCAGTTGAACGAGTAAAAGATTCTTTCAAAGATACTGACGTTAACGTAATTGAACTTCCTGAGTCTTCAGCCACCGTGGCCTTGGCCGCCCAGGCTCTGAACACCGAGCCGGACCAGATCGCCAAGACCCTGTCCTTTTTGGTCGACGATGCCCCGATCCTAGACGTTATGGCGGGGGAAGCCAGTACTGACAACCACAAGTACAAGGCCACCTTCCACAAGAAGGCCAAGATGATTCCTGTTGACCAGGTGGAAGACTATATCGGCGGGGTTTGCCCCTTTGCCGTCAAGCCGGGCGTCAAGGTCTATTTAGACGAGTCCCTCAAGCGCCACACTGAGGTCTACCCGGCAGCTGGCTCAAGCAACAGCGCTGTCCGCTTGACCATCCCGGCTCTGGAAAAATACTCTGACTATACGGCCTGGGTGGACGTGACCAAGACAGCTTAAGCAAAATAAAGAGAAACAAAAAACGCGAACCGGCTGGTTCGCGTTCTCTGTGATGTGAAAAATTACACTGATAACAATAACAATTTGCCACAGATAAAGTTCAGCGTTTGGTGTTACGCTCAACCTAATCGTAATTTCCTCATCTTAATGATAATACTTTCATTTTATCTCGTAAAGTACTAAGGGTGCTTTTTTTAAAAATACTTGGAAAATAGGGGACTTTTGAGGAAAAACAATGGCAGATTTAAGCAAGTTGCGGGAGCAAATCGACCAGGCCGACCAGGACCTGGTCAAGGCCCTGGTTAAAAGATACGACCTGGTCATGGAAGTTGGCCGGGTTAAGCGGGAAAAGGGACAGGCGGTCTTTGACCCGAAAAGGGAAGAGCGGGTGTTAGACAAGGTAACGAATTTAGCTCAGCGGCCGGAAGAGGACTTTTAACCGGCAAAAATGGTAAAATAGGCTCTTAGGTATTGTTGGTAGATTAGGAGCCGAGGAAATGATGGATTTAGGGTTAAGAGTCAAGAAGATCAATGATTTGATGGCCAAAAGGGGCAACTATGAGCTCAAGAAATTGGACCTGACCTTTTCACAGTTTCACTGCCTGGTTTATCTGGAGAAATGCGCGGGCCAGCAGGCGCCTTTAAAGCAGCTGGAAAAACACTTTGAAGTGGCCCAGACCACCATGGCCGGGATTGTCGGCCGCCTGGAAGGCAAGGGCTATGTCAGAAGCCACCTGGCGGAAAGCGACAAGCGGGTGAAGATCGTCTGCCTGACGGATGAGGGCCGGCAGATTTGCGCCAGCGCTAAAAAGGGGATGCACAAGCTGCAGGAAAAGGTGGAGCTGCTCTACAGCCGGCAAGAACTAAGCCAGCTGGAAAAGTACCTGGACCGTTTGTATGAGCTTTTGGCTGAGGAAAATCGGGAAGCATGCGAGGAAAAAAGATGACCAATAAGAAAATATTGCTGCTGTCGACTGGGGGGACGATCGCGTCCGTGGCTTCAGAAGAGGGCTTGATCCCGGGCCAGTCCGGGGCGGAATTGCTCCATACCCTGGGCGGCCTGCCTTATGAAGTCGAGGTCAAGGACATTTTGTCTTTGGACTCTTCCAACATCCAGCCGGAAGAGTGGGCTTTTATCGCCGAACAGATTTATAAATTGCGCCGGGGCTTTGACGGTATCGTCGTCTCCCACGGGACTGACACCATGGCTTACACGGCGTCTATGCTCACCTTTATGCTACAGGGGATTGACCTGCCCGTTGTTTTAACCGGGAGCCAGGTGCCCATGCAGGCCATCTTAAGCGATGCTCCAGATAACCTCCGGGTTGCTTTTGCCGCGGCCGCAACCTGCAAGCCGGGGATCTATATCGCTTTTAACCGGCAGATCATGCGGGGCTGCCGCTGCGTTAAGATCCGGACGACCGGTTTTGACGCCTTCAAGAGCATCAACGTTGACCCGGTGGCCATGGTGACTTCAGACGGCATTGACATCAAGCACAAAGACTTTGAATACGTGCCAAGCGAGCACGCCATCTGCACTTTGAACACCAAGGTGGAGCCCCAGGTGGCCATGATCAAGCTTTTCCCAGGCTTTGACCCGGCGGTTTTGTCCGCCATGGTCGACAGCGGGGTCAAGGGGATCGTCATCGAAGCCTATGGCCTTGGCGGCATGAACTACATGCGGCGGAACATGGTTAAGGCGATCGGGGAGATCATCAAGCGGGGAGTACCCGTGGTGGCCTGCAGCCAGTGTTTGTATGAACGAACTGACTTGACCAAGTATGAGGTTGGCCGGGCGGCTATGCTGGAAGGGGCGATCAGCGGCCGGGACATGACCAGTGAAAGTGCTGTAACCAAGCTGATGTGGGCCCTAGGCCAGGGGATGGACTTGGAGGACGTCCGGGCCTTTTTCAACAAGGATATTGCCGGTGAGGTAACCATCACCGATTAAGCTGCGGTAAGGCAGCTTTTTTATTTTTTCTTTCCATTTTCTTTTTCATTTTCATTTTTGTTTTCTTTTTGCTCCTAAAAGCGCTATCATGGTGGTAGAAAAATGATGAGCAAGGAGGAAAAATGATGATCAAACTGATTGCCAGCGACTTAGATGAGACCTTGCTGGGGCCGGGCAGCCGGGTAGTAGAGGAAAATCTGCGGGCTATTAAAAAATGTCAGGAACTGGGCATCAAATTCGTGCCCGCTACAGGGCGCGACTTTTACTCTTTAAGGCAGACGCTAGAAGAACTGGGCCAGGCGGACCAGGCCGGCCAGTACACGATTTGTTACAACGGCGGGGCGGTTTTTGAAAACAAGGGGCCGCGCCTGATCTCCTTTACCGGGATGGACGGGGAACCTGGTTGAGGAAATCTTCAAACGGGGGCAGGAATTAGGTCTGGGGATGCATATCTACACTGAGGACCAGGTTTACGGCTACCAACTTACGCAAGAAGAGATCGATTTTTGCCAAGGCCGGGCCGACTTCGCGGCTTTGCCAGGCGGGGACTTAACGGCCTTGCGGGCCAGCGGAGCTCGCTTTGCCAAGATTATTTACGTCGATACTGATTTCCCCCGCTTGAAAAAATTGCGGAAGGACCTGGCAGATTTTGAAAAAGTCAGTGAGATGAGCTTTTCATCCAACCGCTACCTGGAATTCAACCCGCCCAAGGTGAACAAGGGGACAGGCCTAAAGAAACTGTGCCAGGAGCTGGGCTATCAGCTGGATGAGACCATGGCGATCGGGGACAGCTTCAATGACCTGGCCATGATCAAGGCAGCCGGCACCGGCGTCGGGGTGGCCAATGTCAGCCCGGAAATGCGGGCTGACTGCGATAAGATTACGGAGAAGACCTTTGACCAGGGGGCGGTGGCGGAAGCGATCGGCCGCTGGGTTTTGCCAGATTATGAGTAAGAAAAAAATGTTAATTTTTCCCTTAGAATGATATAATTGATTCGCTAATTTATATAAGTGCTAAATTATGTTTGGGAGTATCCTATGCCAAAGCGAATTAATCTGCCAGACGGCCAGCAGGCTGTCGAATCTACTAAGGGCTTCTTCGGGGAGTTCAAGGCCTTCATCTCTAAGGGCAACGTGATGGATATGGCCGTCGGTATCATCATCGGCGGTGCCTTCACCACCATCGTCAAGTCCCTGGTCAGCGACATTATCAGTCCGCTTTTAGGTCTGGTCGGTGGGATGAATTTTGACCAGTTCTCACTGAAATTTGCCGGGGTGACCCTGGCATATGGGAAGTTCTTGACCGCGGTCATCAACTTCTTGATGATGGCCTTTGTCCTGTTTTTCATCGTCAAGGCCTTCAACCGGGCCGGGTCCTTGATCAAGAAGGAAGAAGAGGTTGAAGAAGAAGCAACGACCAAGGTCTGCCCTTACTGCAAGAGCGAGATCGACATCGAAGCCAGCCGCTGCCCGATGTGTACGTCACAATTGGAAGAAAAAATGGCTGAACAATAAAATAGCAGGCAAAAGAAAACGAAGCTGCTCTACTTGAGCAACTTCGTTTTTTGTTTATGCAATTAAAGCGATGACTTACTTAAAGCTTGTGGTCCTTGATCATCTTGGCTTGCAGGTCAGCCAGGGCAGGAGTCAGGTAGACCGGGTAGCGGTCCGGGTTAAGCAGTCTTTGGGTTTCTTCTGGCAGTTCAGCCAGCTTTTCGTACATGTGCTTTTGGATCTTGAAGGTGTCGGTTTCGATGGACTTGGCCTTTGGGCCGACAACGACCTGGGTCAAGAGGACGGCATCGAAGTCCTTCAAGTTGGCTTCAGTTTCAGTCATCATCGGGTCCATGTTAATGCCGACGAATTCTTCTGGCAAGCTTTCATCAGCCAGGGCGATGACGTCCGCGAAGGCATTCTTGGTCCCCTTGTGGTAGAGGCGGTAAGCCTTCTTTTCACCAGGCAGGGTGACCTTTTCCTTGGAGTTGGACAGCTTGATCTTTGGCTGCCATTCCCCGTCGCCAATCTTCAAAGCAGCCAGCTTGAAGACCCCGCTCAGAACCGGTGAGCTGGAGCTGGTGATCAATTGTTCACCAACGCCGAAGCTGTCAAGCGGCGCGCCTTCTTGGAGAAGGGAGTCGATGACGTTTTCGTTCAAGGCATTGGAAGCAGTGATGGTTGCTTCCGGGAAGCCGGCGTCGTCCATCATCTTGCGGGCCTTGCGGGACAATTTGGCGATGTCGCCGGAGTCGATCCGGATGCCGAACTTCTTGTGGCCCTTGGCGCGGAGCTCCTTGAAGACTTTGATAGCGTTAGGCACGCCGCTAGTTAAGACATCGTAAGTGTCGACCAAAAGCAGGGCGTTGTCCGGGTAGATTTCCGCCCACTTTTCAAAGGCTTCGAGTTCGGTTGGGTAGCTTTGAACCCAGGCGTGGGCCATGGTGCCGGCAACCGGGATATTGTACTTGGCTGCTGACAAGACGTTGCTGGTTGACCCGCAGCCGCCGATAACGGCAGCTCTGGCGCCCAGAACGGAAGCGTCCGGACCTTGGGCCCGGCGGGCACCAAATTCCATGACTGGCCGGCCAGCCGCGGCCAGGTTGATCCGGCGGGACTTGGTGGCGATCAAGGACTGGTGGTTGATTAGGTTAAGGACGAAGGTTTCCAGCAATTGACATTGAATCAAAGGCCCCTTGACCGTCAGGATTGGCACCCGCGGGAAGACCGGGGTGCCTTCTGGAATCGCGTATACGACGCAGTCGAAGGTCATGGTTTCCAGGTAGGAAATGAATTCAGCGCTGAAGAGCTTGAGGGACTTCAGGTAGTCGATGTCTTCCTTGGTGTAGTGGAAGCCCCGCAGCTGTTCAACGACTTGTTCCAGGCCGGCGGAGACGACGAAGCTGCCGTTGTCTGGAACAGTCCGGTAAAAGACGTCGAAGACGGCTTCGGTATCTCTTGGCAGGGTTTCAAAGTAGCCGTTAGCCATTGAGAATTCGTACAGGTCAGTAATTAACGCGTGTGATAAAGACATAGTGTAAAAATCTGCTTTCTCAAAAATATAACTGTTAAAAGTAAAAATAAAAACTTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGACGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACGGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATTGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATTCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGAAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACTAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCCTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAACCCAGTGAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGAAAATAAAAACTTAAACGGTAAAGGTTAGTCGACGACTTCAGCGCCCAGGCAGGACTTGAAGTGGTTCAGTGCCCATTCCTGTCCCGCGTCGTTTAAAGCGGCAACTGCCTTTTCGTGCACCGTGATGTCGTAGCCATGGTTGTAGGCGTCCATGGCGGTGTGCAGGACGCAGATGTCCGTGCAGACCCCGGCCAGGTGAACCCGGCTGACCTTGCGTTCACGCAAGAAGAGGTCCAGGCCGGTAGCGCAGAAGGCAGAGTAGCGTGACTTGTCCAAGACAAGGACGTGCTCGTCGTCTTGATGTTTATTATACCAAGTTTGCAGGGGTCCGTAGAACTCCCGGCCCCAAGTATTTGGCAGGTTGTGGGGCGGGAAGAGCTTGGTTTCCGGGTGGTAGGGGTTGCCCTTAAAGTGCTTGTCGGTTGGCAGGATAACCCACTTGCCGGCGGCCAAAAACTGGTCGGCCAAGCTGACGATCTGGCCAGCCAATGCCTGGGCAGGTGCCCCGCAGGTCAGAGCGCCTTTGTCATCTACGAAGTCATTGGTATAGTCAATGATCAAGAGTGCTTCATTTTTCATCTTTTTCTTCCTCTTTTTGTTAAAAGTATAACTTACCTAAAATAGGATAAAAACAAAAAGTAAAATAAACTTTTACTCGCTTGACGTAAACTTTACTCCAGAAAAGATTATTTTGCAAGTTTTTTCAGACAAAGAAGGTAAATTAAGCGATTTTTTATCAACAAAAACGGAACTTTCTTTATAAAAGATCCGGCAAGATCTATAATTAGGGGTGGAAAGTAGGAATAATTATTGACAAAGAAAGAGTGTAAAAAATGAAGAAGAACAGGAAAAATTTGGCCCTGCTTCTGCTGGCGGCCAGCTTGCTTGCCGGTTGCGCGGGTCAAAGCAATAGTCAGTCCAGTCAATCCAACCAGGCTAAGAGCGAGAAGAAGGAGGAAAGTAAGGCCAGCTCTAAGTCGGCGGCTAAATCCGCGGCCAGTTCTGCCGTTAGTTCGACAAAATCCTCCTCAAGCCGGGCCAGCTCTAAGTCCGCGGCTTCCAGCAGCCAAAGGGCAGATGCAAACCGGATGGGGACTTTAACTAGTCAATTAAGGGTCAAGCTGCCGGGGATGCTTTTGCCGGCGGCTGACGGCTTAGGCCAGGGCAGCAGCAACTTGAATATCCGCTACACCAGCTCAAGCAGCCAGAATGTTGTTTACTACAGCGTCGGAAATAGCCCGCTGGCCTTAAATGACAGCCGGATTGCCAGTGAGAAGCCATATGCCGTTTTAACGGAAAACAAGAATGTGGCTGACGCCAGCAGCTTGATTAATTACCAAGAGCCCAAGACTGGTCTGCCAGCGGTTAAGATTGCCGGCAATGTGACTGGGACAGAAGAAGGGGCGGCTGGGTCGACTTATCTGCAGTTCAATCAAGGCCAGTGGTCCTTTGTCGTCCGGGCAAGCAATGTCCAGGGGCAAAAGCCGCTGCCAACGGCGCAAAAGCTGCTGGCGCTCTACCAGCAATATGGTCTGCCGGATACGGCGGCAAAGTCCAGCGTGCAGGTTGATGTTGGCGAAAGCCTGGGTTCTTTGAACACGGTGATCACCTGGGCCAAAGGGTCCAGCGTTTATCAGCTTAAGGCCCACAGTACGGAGACCGCCTTTAAGATGCTCAAGAGCCTTAACTAAAGCTGAGAATAAGGTAATCAATCGCGGACCAGAGGATAAAGCCGGCGAAGATTGCTAAATAGAAGTAGGCCTTGCGGACCTTGTGGTGAAAGGCCAGCATGCCTAGGCCGGACCCGACAGGGGCCAGCAGGCCGCAGGTAAGCAGCAGCCGTTCGGGGATGCGCCAGGCGTGCATCCGGGCTTTAGCCTTGTCGATGCCATAGAGGGCAAAGGCGATTAAGTTGATAAGCAGCAGGCTGCTTTGCCAAAAGTTGTTCATGTCGTCTCCTGGTTATTTCCTAGTTAGTTTTAATAGAATTACAGGCCACCCTGCTCAGGCAGGGTGGTTTTTTGCAAAAGAAAAGCAAGGCAGTTTTAGCCTTGCTTGTTGTTAGCCTTTCTCCAGAGGATATTGCTCTGCGTTTCCTTAAGGCAATAGAGCTTTGGCGGCCGTCCGCTCTTGTGGTAATTCTTCTGCACGCCCAGCTCGGTAAAGAGGGAACCGTGGGTCTTGCGGAAGTTGGAGTTGTCGATCTCATCGACTGTGGTCTGGAAGAAGGGGGCGTAGACCTCGCGGGCTTCGCGGAGGGTGAATTCGGGGCCAAGGATCTGCAGGATGCTGGGCTGGTAGTCCAGTTTGTTACGGATGCGCTGGATGGCCACGGCGATGATTTCGTCATGGTCAAAGGCCAGGGCGTGGGAATTTTCCGCTAATTCAAAGGTCAGGTCCTTGTCAGCGGAAAAAAGCTCATACTTGTGGCCGAAGTTTTCAAAGGCGAACCAGGCAACATCGCTGGCTCCGTAGCCGGGCCGCAGATTTGGCATGGCGGGCAGGTAGGTCATGTAGGTTAGGGCCAGGGCCCGCTCACCGGGCGTCCGGTGGGGGGAGGTAAAGGTGGCCAGCTGTTCGGTGGAAGTTTCCGGCAGGTCAAGGCCGATTTTTTCTTTGATCAAGCGCACGGCAGCCTGGTCGGCACTTTCGTTTTCCCGAAGGAGAAGGAGAGTTTCCGGCAGGGCCCAGCGGTCCGCGAAAGGTTCGTCCTTGCGCTTGACTAAAAGCAGCTGAACCCGGTGGGTTTCCTTGTTAAAGCTCCAGATCAGGTTGGTGATGGTGATCAAGGGGCGTTCGACTATCTTTTCTAATTCAGGCATCAAAACGTCTCCTTTCAAATTTTCTGCTACTAGTATATCATTATTGCGAAGGTGGATTGCTCGTGGAAGAGGGATGAAAAAACGTGAGAGTTTTTGAAAGAATAATCAATTTTCCTTCCTCGAAAAAAGATTGAGACGATATGGTTCTGAAAGGCGGTGAAATTAAATGGCGGAACAGATAGAAGAAGTACCGGCGGAATTAATTCAGACAAGAGTCTATGAATTACATCCCAACAAGACTATGAGAAGAGTTTTGGATGAAGCTTGTGACTATCGCCGCTATTGCTGGAATCAAGGCCTTGCCTTGTGGAATAAAATGTACAAGGCAAGACAAGCACTTAAATCTTCTTTGGCCTCCGACTCCAAAAAGCTGACTGAAGAGCAGAAAGTGTTGCTTAAAGAAAAGCCTTCGCCGAGTGAGCGAAGAGTTCGTAATATGTTAGTTACCGATAAAAAAGACTGGCAGTATACACAGTCAGCCCGGATTCTGCAACTGGCAATTTCTGACTTGGGCAAGGCTTGGAACAATTTCTTTGACAAGGCCCAACCAGGCTGGGGCAAACCAAAATTTCGGTCAAAGCGGGAAGCCAGACAAGGCTTTAAAAGCGACCGAAGCAAGATCAAAGATGGAATTCTTTATTTGGAACGGGCAAAAGAAAGCAGCGTTCCAAAAGACCAATGGCGGGGCTTTAAGCTGAGCGAAGAGCCTTTGTCAGATGAATTTGGCGTTGTCAGCTACTTCAAAGAAAAAGGCCGTTATTACGTTGCCATTCCGTATAAGATCAAGGCTGAAGATGTTAAGTTGCCAGACAAAACAGGTAAGGCTACCGCGGTTGACGTCAATGTTGGTCACTTTGATTACACGGGTGGCCGGGTGAACGTACTGCCTAAGAAGCTTGATAGAATTTATAAAAAAATCAAGCACTATCAAAGGCAGCTTGCCAAAAAGCAAGTTAAAAATGGAGAAGCTGCTTGCGAAAGCGAGAACTACTTGAAGACGAAAGCCAAGCTTCAAGCATGCTATCGCAAGGCAAGCAATATCCAAAATGACTTTATGCACAAGTTTACGACCGAACTGGTTAATGACTACGACAAGATCGTGATCGAAAATCTGTCAGTCAAGGGTATGCTGATGAGCCACGTAGCTTCAAAGGGTGTTCATCGGTCGATGTTTGGCAAGTTTAAGCAGATCTTGACCTACAAGTGCGATTGGTATGGTAAGGAACTTATTCTGGCAAATAAGCTGTATCCGTCTACTCAGCGTTGTGCGGCTTGTGGCAATGTCAAAAAAGGTGATGACAAGATCACCCTTTACGGAAACAAGAAGCATGGTACTAAACACAACGAGTACGTCTGCTATAACGAAAAATGTCCGAACTACAATAAAGTCGTAGATCGGGACAAGAATGCGATGCTTAGTCTTTTAGCGCTGACTGAGCATCCAGAATTAAATCATGCTCTATAAATATTAAAGAAAGGAAAGTTAATGGCTAAGGCCCTGGCCTTAGCCATGCGGGTTGGCTGTACCCGAGGATTGGCGAGAGCCTTTCCATGAAGTTGCAAGAGTGGTGCTTCGGTACCTGCGCTGGTCAATGCGGTTACCCCCTTGTTGGGATGTCGGAATACCGGTGATGACGGCAATAAGAAAAATGTCTGTATTTATGTCTTCGGACATACGTAGTCAAAGATTACTATTTGGCTACATTGCACACGTTTTTTGCAGCAGGCTGTACGATGTTTTTTAACAAGAAAGAAAACGAAGCAGAAGAAGCGTTCAAGAAGCAATTGGAAACTGTCGCAAATGACCCGGCAGTCAAGGCAAACGCTGCTTTGAGCAATCTGATTGAAGCAGCTGTTAAGAAGGTAGAAAAGTCAGAATCAATCCGCTCAATCGCGTCTAACCTGGATACTCAATTGCGGTCCAACTTCGCTGAAAACGAACTGCCAAAGGCCGTTATCAGCTTGCAACTGGACTTGGCCCGCTACTCTGCAGTTGGTGCTAATGGCGTAGTTCTGAAGTAATCTACTGAAAACTTAATCATATTAAAATAAGTGCTGCTGAAGCTTGGTATTCCTTCTTCAACAGCACTTATTAATTTATTTTGAACAAAAAGTGAAAAAAGCGCTACGCTTCGCTCATGATTGGTGCTATAATTATCGCAACTAAAGCAGAATAGGTATGATATTTGATCTCTAAGGAGGAGTCGTTATGTACCAAGCTTCGCGTCTTCCACTTTGGGAACGTGTTTTCCACATTGTCGGTGACAGCATGATTATCTGGCTGTGGCACCACCTCTTAATCGTGGCTCTAGGCCTTTTAACCTTGCTTGGCTTGGTGATCTATCTGGTTGTCAGCGGCATCCGGCAAAAAAACGTCGCTAAAGCTGTCTGGCCAGTCGTCATTTTCTGTTCCTGCCTGGGCCTGGTCTACTTTGCCATGAGCTGCGCGATTATGGACTAAAATAGAAAAAGCAAAGTGCTACTTAAGCCAGATATTCCGGCTTTGGCGGCACTTTTTCTGCTATCTATAGTTTGTTTAGGCATAAATATACCCCCAAAATTGAAATATGATTTTGGGGGTATATCTATTTAGTTTACAATTCTTGTTTGATTAACGAGACAACATATTCAAGCCTCGTCCTGCTTTCTCTGTGAGTAAATCCAGGTAGTATATTAACTTTGAATTTCTTCATGAATGGTAGCACTAAAAATTGTTGATAGGGAACTCTTGAATCTCTAGAGCCGTTTATAAAAATAGTTCGAGTATTTACCTTATTGTCCCGACATAGAGTGTAAAAATCAAGCGCATTTTCTGAAAGATAGTCCTTAAGCCAAGATCGCTCAGATGAAAACAACTCTTGATAAGCAATACTGGTGAACGCGCTTATTGCTATAATTTTTCTGAATATATATTCGGCTGCAAACAGACTGGCTAGGTATCCGCCGTAGCTTTCTCCTAGTAAAACCATTTCTGTATTTGGATTTTGTCTTTTATACTCCCAAAAATATTCTTTTAAAAATTGGTAGTCACTAATTCCACCGTTGCCATAAACAATGGGGTAGTTCAGCAAAATAAAATTCCGCTGCTCATTGTAGAGCATTGTTGCGAAAGGGTATTCTTGCCAATTTCTAAGGGTAAATAAGGGACCTCCATGCAAGTAAAAATAGACTTTCTTACAGTCGCGACAGAAAATATATTCAACTATTTTATGCATACTATCTTTCAGCCAGACTTAATGGCATTCTACGTAAAATTATCTGGGCAAAAATAATCATTATAATTGTAAGTACTAGAGCAATTAACAAATCGTTAATGTTAAATATGCCAAAGGCTACAGTTCTGAGCGCCTTTAATTGGTAGGATAGCGGATTGATATAGGCCAACACTTTAATGATCAGTGGAGAATTATTGCTGAAGACATAAAGCGTTGGCGCAGCATATGCAACTGGTGAGAAAATCAAGGTCATGATAATGTCTCGTTGCTGGTAAGAAGAAATCCGTGTGCTAAGAACGATTCCCAACGTGGACCAGAATTCAAGTGAGATGATTAATACAAGCAGAGATAGTAACAATAACCCTAAATTGTACACACCACCTGTAGCAAGTCCAAGAACAATCAATACCGCGCTTTGAAATAAGAGACCGGCAATTGGGAAGAAGCTCATTCCAGTTAGGTAGTGCCATGGTTGAACACCATTCGTAAATTTAATAGCCAGTAAACCATATTCTTTATCAACTGTCGCCCGGTACATTGCTTGCGACATCTGGGTGGTCATGAAAAAACTCAAAACACCGGTCAATGCGTACTGCTTGTAGGGCAAAATTAGTGATTCGTAGTGAACGGAAGCTAAATTTTGATTCAAAGCCATTACCAACAAGCCGTAAGTAATAAGCGGCTGCATGAACATTGATAAGAGCAAGCCTTTATTATGCACGAAAGCCCGCCACTCATTGTTGGCAACAATTCTGATCGACCGTAATCCCAAAGATATATTTCTAAAATGTTGCGGATTCATTTTTCTATCGCCTTCCGTTCGTTAAGGTATTTTTCTCGCAAGCTCGTACCACTGTCCAAAAAATCAGTAAGCGGACCAAAGTATTTTTGTTCATGATCGTCTAAGAAAAGAACGTGACTCGCGTAGCTTTCCAGCAGAGTTAAGTCATGTGAAGAAGTTAATACAATACTTCCAGCATCAACTTTTTGCTTTAAGTAGGTAAATAGTTTTTCCGAAGTTTCCACATCGAGCCCGGTTGTGGGCTCATCTAGTATGTAGACTTGTGGCTCACGGGCAATTTCTCTGGCGATTTGTACTCGTTGCTGCTGGCCACCAGAAATATGATCAACCGGCTTAGCACTTAAATCACTGATATCCAATAGTTTTAAAGCCTGTTTGGTTGTTTTTTGGGCTTCTTTAGTCTTGAAGCCAGCGAGAAGCGGTCCTTGATACACATTGTCATAGACACTGGTATACCAATCAATCAGCTGGCTTTGGGGACTGAAGCCAACATCATTGAAAGGATTAACCCGGTCAGTTTTCAATTTCCATGAAATCTGACCCGACACTGGTGGAATGACGCCAATCAAGCTGTTAATCAAGGTGGATTTCCCAGCACCATTAGCTCCGATTAAAGCGATAAACATTCCTTTATCCAGGGAGAAAGATAAATCGTGAACAACGACTTTATCTTTATAGCCAATATTCAAATTATTAGTGCTAATCATCGTTATTTTTTCCTTAAAATTAGACCAACTTTATGCAAAGTTAGATTGATTACATTTTTAATAAATGATGAAGTTATTTCATGAGAATTTAATGCAAAACATATTTTATAGAGGAGACATACTTATGTCAATAGAATTCCAAAAATTAATTCAAAAACTTCAAAGTGATCCAATTACCATTGGTAATTTTTTAGCAGATCCAGAGGAATTTTTAAAGTCCACAAAGTTAACAAATCAAGAAAAGAAGACCCTCCTTGCTAGAGATGTAGAGGCACTAAATGACTTAGGTCTTACAATAGATCAAGCAGTAGGTGCCTTGTCTGGAGCCCACAGCCAACGATGCTCAACTAATCATCCTACAAGAGGTTAAGAAATAGATTGTATCAAGAGATTGCCTGCCGCAAGAATAGAAAAATGTTTTACCGATTTCATTGAAAGCTACACTAATGAAAATAACATCTATATCGGATCAGCTACTTATTTTTTGTACTCAAAATTTATAATAGAGTCATATGGCTTACCAGTTGAAAATAGATATAGTGTTTCTGAAATCGCTAGTAAGTTAAAACAGGCAGGTTTGGATAAAGTAATAGTTAACTATCTGATTGTTCGCTATTTAGATGGAATGTACTTGTTGGCTCAGCTTCAATCTAAGGAAGAAACATTTTGGCCATGAATAAAGAAGATATTGCAATTCAATTTGAATTGTTGCTCAAAGAATACTCAGTTGCTAGGTATGAAGATAGTATATGGGCCTTTCCTGATTATCCGCACCACATAAAGAGTAACTACGGATGGAAAATTCATATTAGTGCTATCCTAACGAATGCTATCCAAATTGCCCGAAAGTTTTTAACTCTTAACCAAAAGTATCACTTTGATTTTAAAATTATTTCTTCCATACCGTATTTAGAGCAAATGAATATGGGATATTTTGGAAATAGTCAAGTTGGTAAGTTTATAACAATATACCCAGATCAAAGTGCAGTAACAGAGACTCTAGAACTTCTATATTATTATTTTCATGATGATGTGGGAATTCGAGTGGGATCAGATATTTCATATAAACAAGGGCTTAATGTCTATTATAGATATGGAACTTTGCTTGATGATGTTGAGAATATTGACAAAAGAGATAAAAAATTAAAACCTAGCTCGAACGTGGAAAAAATTTATGATTATCGTCTCGAGCGTTACAATAGTCTTCCCACCAGATATCTTATCTTAGAGGCAATAAAGCAAAAAGGTCCTTCAGGAGTACTTTTAGCACTTGATTTACAAACTAAGGTGAAGGTAATTATTAGGTATGCAGAGAAATACTATAATATTGAGAGCGCCGGAATTGATGAACGAGATCGGTTGATAAGTGCCAGTAGTTTGCTAGAAAAGGATTTTGTGTGAAACAGTAACTTTTTTGAAACAGTAGTAGATGCTTTTTACGTGAGCGATGCTTTCTTTGTTGTTACGGAGTACGCTTCGGGCTATAATCTTGATGAGCTAGCGAAAAATGGGCAACTTGGCTTATATTCATTGTCAGAACGTCTTGAGATTTTTAGAAATGTTTTAAGAGGGATCTATGTATTAAATGATAATCTGATAATCTTCAGAGACTTATCATTTAGTAATGTGATTTTATGCCCAAATCATACTATAAAAATTATCGACTTTGGGTATGCAATCTCTCTTTCTGGACTTTCCAGTTTTGCCGGTCTAACTCTTAATTCTGCAGGTACTTATGGATTTTTTGACCCAGAAATGACAATTGGTAAAAAAAACAGTTAGATCTGTATAGCTTAGGAAAAATCTTATATTACATTGTTTTTCCGCAGTCATATTTAAACTATACGAGCAAAATAAATAGCGATTCAACGTACTGGCAAATAAAAGAATATGTATCTGATTCTGAACAGTATCAACTGCCTGAAAGGATTGCTGAACTTTATCGCTTGTTAATTAAAGGTGAAAAGATACAGGAGTCGGACCTTAATTATTTAATACAGTACTTTCAATAATTTTTTGCTGGATATAAAAGGTTACTACAGGAAAAATATATCGTAGCATCAGACTAAATTCAGATGCAACCAAAAGCAGAGTGCTGCTTGAGCCAGATATTCCGGCTTTGGCGGCACTTTTTTCATTCCTCCACGTAAAAAGCATGAAACATTGTAAGGCAAAAGTAACCAAAAATATTCATACAAAGGCCAAAAAGGGACCGATTCCTTTGGTATAATAAGATAATTACAAATGTTTCACGGAGGAGTGAGTGGAATAAGATGAATACGCCACGATCACGCAAAGGTAACCTTGTCCGTTACCTCGTCTATTTTGTAGTTTTTGTTTTCACGGCCCTGGCCGACAACCTGGCGATCAAGAGCCCGTCCATCAGCATCTGGAACGTGATCCTGTTCCTGGTTCTGGCGGCCATGTGCCTGCTTTTTTACATTTACCGCTACAACCGTGAACAGCGCTTCTTCGATTCACGCTTCAACATCCCCTGGCTGAGCAGCTTCAACTTCACCTTGCTCTTAAGCTTCGTGGTTGCCGCCGGCCGGATCGGGATTTCCTACCTGCAGCTCTACAAAGGCATGCCTGCCTCGGGTCTGCAGCTGGCCTATGCCTCTCATTCCACCAGCTCCTTATACTGGTTCATGATGCTGGCCAATGGGGTAGTCCTGCCGATCCTGGAAGAGTATCTCTGCACCGGCTTCTTGTTCAACTACTGGTTCAGAACTGAGAAAAAGGGCGTGGCCTACGTCGGCATAATCTGCTCGGGTCTCTTTTACGCTATCTTGACCTTCCAGTTCACTCCGGCAATCTTTGCCTTCAACTTTGCCTTTGGCATGCTTTTCGCTTGGAGCTACCTCAGCACCCAGACCATCTGGCTGCCTCTTTACCTGGTAGCCTTAAACGGGGTCTTGACGGTTGTGACCATCGCCGTTTAACTGAAGAGAGTAAAAAATAAGCGGGGCCGTTTGGCCTCGCTTATTTTTTGTTAATTTATGGTATAAAAAAGCGGATAGAGTGAATCGAACCCTCATCTCTAGCTTGGGAAGCTAGCGTTCTACCATTGAACTATACCCGCAAGATGTTTTAAGTATAGCATGAAAAAAAACTTTCGCCAAGTCTTTTTGGCAACTTTTTTCAAAAAGATTCTTCCGGCCCGGCGGGAGTGGTTTAATCTATTTGTTATTTTTGCTAAAATGATAATAATAACGCCCGATAGAAACAATTTAACAAAGAATTTAGCAAAGGAAAGCGAAGAATGACGAAAGAAATTATTTTGACTGGCGACCGGCCAACCGGCAAGCTGCACATCGGCCACTACATCGGTTCCTTGAAGAACCGGGTCATGCTCCAAAACACCGGCAAGTATGACTCTTACATTATGATTGCTGACACCCAGGCCTTGACTGACAACGCCCGCAACCCGGAAAAGATCCGCAACTCCCTGATCGAAGTTGCCCTGGACTACCTGGCTGTTGGCTTGGATCCGGAAAAGTCAACCATCTTTGTCCAGTCCCAAATCCCGGCCTTGTTTGAACTGACCACTGACTACATGGACCTGGTAACCCTGTCCCGGCTGGAAAGAAACCCTACTGTTAAGACGGAAATCAAGCAAAAGGGCTTCGGTGACTCCCTGCCAGTCGGCTTCTTGACCTACCCGGTTGCCCAAGCCGCTGACATCACTGCCTTCAAGGCGACCTTAGTCCCAGTCGGTGATGACCAGGAACCAATGCTGGAACAAACCCGGGAAATCGTCCGCAGCTTTAACCGGACCTACAATGTCGACGTCCTGGTTGAACCAAAGGGCTACTTCCCGCCTAAGGGCCAGGGCCGCCTGCCAGGCCTGGACGGCAATGCCAAGATGTCCAAGTCCCTGGGCAACGCCATCTACCTGTCTGATGATGCGGAAACGGTTAAGAAGAAGGTTATGTCCATGTACACCGACCCTAACCACATCCACGTGGAAGACCCCGGTCAGGTTGAAGGCAACACCGTCTTCACTTACCTGGACGTCTTTGACCCGGACAAGGACACTGTTGCCCAACTTAAGGAAGACTACCAAAAGGGCGGGTTAGGTGACGTCAAGATCAAGCGCTACTTAAACAAGGTCCTGGAAGCTGAACTGGCCCCAATCAGAGAACGCCGGCAAAAGTACGCTGAAAACCTGGATGCCGTTTACGACATGCTCTACCAAGGGTCACAAAAGGCCAACCAGGTGGCTGACCAAACCTTGCAGGAAGTCCGTGACGCGATCGGCTTCAACTACTTCAAGAACCGAGGCTAATATGACGCGCAAACGAATTCCCTGGAAACAGTACTTTATGATGCAGGCCCTAGTGATCGCCCAGCGGTCAACCTGTGACCGGGCTCTGGTCGGCAGCGTCCTGGTCAAGGACAAGCGGATCCTCAGCACTGGCTACAACGGGTCAGTTTCCGGCCAGGACCACTGCGATGACGTGGGCCACCAGCTGGTCGATGGCCACTGCGTGCGGACGATTCACTCTGAAATGAACAGTCTGATTTCCTGCGCGAAAAACGGGGTCTCAACCGACGACACGGAAATCTACGTGACTCACTTCCCATGCTACAACTGCACCAAGCACCTGCTGCAGGCCGGGGTGATCAAGATCAACTATTATTATGATTATCACGACAGTCCTTTGGCCATTCAACTGCTGCGTGATAGTGGAGTACCTTATGAACAAATTAAGCTTGACCGCCAATTCGTCGAAGAACTGGCACACAAACTTGAAGACGGCAGCGACTAGGCTGGCCTGGCTCCTGGCCTTAGTCTGCCTTTTTCCCCTGGTGACCGGGGCCAGCAGCTTTTTCGTCCAGGACAATGCCGGCATCATCAATTCCGATACCTGGAAAATGGTTGACCAAAATAATGCCAAGTACCAGAAGTCTGACCAGCACCCGATCGTGATCGTCGAGACCCTGCAAAATGCCAAAAAGACCCAGCCGGCCGGCTTGAGCAAGGCAAGCAGAACCTTCTATATTGTGATCAACGTGCAAAAGGACGGGACTAAGAAGGCCTATCTTTACAGCAGCAGCGACCTGCACAGCCAGTTTACCGCCCAGGTCCGGGCCAACATCCTCAGCCACACGGCTTCCAAAATCACGGATGATGACCCGATCGCCTTCAATGAAGGGGTGCAGGAGCTGTTCAAGATTTCCGTGACCTTGATCGACCAAAGCCTCGGCTTTAAAAAGGACTCCCTTGACCTGTCCAGCGAGGAAGTGAACCGGGTGATCAAGCCAGCTGATCTCAGAATTCCGATCATGCTGGCCCTGTTGGTCTTGATCGCGGCCGTGATCATCTTCCTGCGCTTTACGATAAGACGTCAGGATAGAAAATAAAGCTTTTTCACAGAAAAACTAAATAAAAATGCTAACTTTACATATAAGTGGTTTACAAGCCTGCTTTAAGCGTGTATAGTCTTCTATGTAAAGTTAAAAAGAGAGCAAATGAACTGTTAGGTGAGACTCCTACGTGAACACACGCTATCGCCCAGAAACATCCAGAGATGCCAACGGGTTAAATAGAAATTGTCGAAATAAGGCACTTTCCAGGTAGCTAGCATGTGCTTACGTCACGTAGTGTTAAAGCTGAGCGATTGGTCAATAGCGCGGCCCTATTTGGCAAGGTCCCCCTTACGGTTTGTAAGGGGGATTTTTTAGTTCGTTTGCGAAGTTGTCATAGAGGGGGAGAACTATTATGCTCAACAAGACAATGAACAAAGCTGCCAGCGATGACGCAAAGCGGGTTGCAAGAATTGCCCTGGAAAAGCGGAGCGTGACTTTGGCCCAATTGCATACCAACAGCAACGGCCTCAGCACTGAAGAAGCAGCCAATATCCGGGAAAAGACCGGAACCAACGAGATCGCGAGCAGCAACCAAGCAAGCAAGCTACACTTCCTGGCCGAAGCTTTCCTGACTCCGTTTACCCTGGTCCTGCTCATTTTGGCGACGATGTCCTTGTTCACCAACTACATCTTCGTCCCGCAAAGGGAAAAGAACCTCAGCACCGTTATCATCATGGTGGTCATGGTCCTGGTTTCCGGGATTACGTCCTTCATCCAGAACGTCCGCACTTCCAACGCCGTCCAGTCCCTTTTGAAGATGGTTTCTGTCACGACCAACGTGCGCCGAGACGGCAAGGACCAGGAAATCCCGACCAAGGACGTGGTGGTCGGCGACATCATCAACGTTTCAGCCGGGGACATGGTTCCAGCTGACATGAAGCTTTTGTCCAGCACTGACCTGTTCTGCTCAGCCAGTTCCTTGAACGGGGAATCAACGCCGACGGAAAAGAATGCCAACTTTGTCCCAACCCCGGACAAGATGGAAAACTACCTGGACTACCCAAACATCCTTTTTAAAGGCACGACTATTGTCTCCGGCTCCGGCCGCGGGGTGGTCTTCGCCACTGGCGAGCACACCGTGTTCGGCAAGATTGCAGCCCAGATCGCCGACACCGAAATGAAGGAGACGACTTTTGACACCGGGATCAAGAACATCTCCAAGCTGCTCTTGACCATGACGGCCATCATCGCGCCTCTGGTTCTCGTGGTCAACGGCTTGACCAAGGGCAACTGGACTGATGCCTTGATCTTCGCCATCGCTACGGCGGTGGGCCTGACGCCGGAAATGTTGCCAGTCATCGTGACCACCAACCTGGTCCGGGGCAGCCTGGAAATGAGCAAGCACCAGACCATCGTCAAGAAGATGAACTCCATCCAGAACTTCGGTTCAGCCGACATCCTCTGCACCGACAAGACCGGGACCTTGACCCAGGGCCAGGTCATCCTGGAAAAGCACTACAACCTGGAAATGCGGGAAACCGACCGGGTTTTGAAGATGGCCTACCTGAACTCTTACTACCAGACCGGGATGAAGGACCTGATCGACCAGGCAGTCATTGACGTGGCTGATGACGAACTGGACACCAGCGAAATCCAGCGGGACTACCACAAGATCGACGAAATTCCTTTTGACTTCCAGCGCCGGCGGATGAGCGTGGTGGTTGCCAACTCTGACCAAAAGCACGGCGAGCACCTCCTGATTACCAAGGGGGCAGCTGAAGAAATGCTGGCCGTCTCCAGCCAGGTGGAAATCGGCGGCCAGATCCTGCCTTTGACTGAAGAAAGAAAAAAGCAGATTTTTAAAGATATCGACGACTTGAACAGTGACGGGATGCGGGTTATCGTCTTGGCCTACAAGGTTGACCCGTCTCCAGTCGGTGAATTCACGGTTGATGATGAAAGCGACTTGATCGTGATCGGCTTCCTGACCTTCCTGGATCCGCCGAAGGAAAGCGCCAAAAATGCCCTGGCCAGCCTCAACCGGGACGGCATTACCGTTAAGATTTTAACCGGGGACAATGAAGCTGTTACCCGGGCCGTGGCCTTGAAGGTCGGCCTTAACATCGATACGGTTTACGGGCAAAAGGACCTGATCGGCAAGAGCGATGAGGAACTGGCCAAGATCGTTGAAGAATGCGACATCTTCGTCAAGCTGTCACCGGAATGGAAGACCAAGATCATCAATGCCCTGCAGAAAAACGGCCACACGGTCGGTTACATGGGTGACGGGATCAACGATGCCCCGGCCATGAAGCAGGCGGACGTCTCTATCTCAGTTGACTCAGCTGTCGACGTGGCCAAGGAATCAGCGGACATCATCCTTTTGCAAAAGGACTTGAGCGTCCTGGAACACGCGGTCCGGATCGGTCGCAAGACCTTGACCAACACCATGAAGTACATCAAGATCACCCTGTCTTCCAACTTCGGGAACATCTTGTCCATCATGGTTGCCTCAGTCTTCCTGCCATTCTTGCCAATGCTGCCGCTGCAGCTCTTGATTTTGGACCTGCTCTACGGAACCAGCTGCCTTGCTTTGCCCTTTGACAGCGTGTCTGAAGACTACCTGCACGTGCCGCGGGAATGGTCAACCAAGAACATGCCGAAGTTCATGTCCTACTTTGGGCCGACGTCATCAATTTTTGACGTCATCACCTTTGCCGTCCTCTTCTTTGTAATCTGCCCGGCCCTTACTGGCGGCAGCTACGCTTCCTTAGGACCAGCAGGGCAGCTGGCCTTCATGACCATCTTCCACACCGGCTGGTTCGTGGAATCCCTCTGGACCCAGGAAATGGTCATCCACGCCTTGCGCGACGAACGTCTGCCACTTATCCAGCAGCGGGCATCAAGCCCAGTCATGCTTGCTACTTTCGGGGCTGCTATCTTCGGGACCTTCCTGCCATTTTCAAAATTGGCCGGAGCCATGAAGTTCGTCCACTTGAACGAAGAATTCCTGTGGATCGTGGCTGGCCTCCTGGTCTGCTACCTGCTTTTGACGACAGTCGTCAAGCACTTCTACATGAAGAAGGAAAAATTCTTGATTTAACTGAAAAAGAACGGTCTTTAGTAAAAAGGCCGTTCTTTTTTGCCCGAAAGCCCGTTAAATCGCCGATTGACTTTATAAGGTAAGGCTTTTTGTTGTATGATAGAGAGTATAGAATTTTTGAGGAGATCAAGCACTATGGCAGATAACAAGAAAACTTTTTACATTACCACGCCAATCTACTATCCGTCTGGCCGTTTGACCATCGGCAACGCCTACACGACGATAGCAGCGGACACCATGACCCGCTACAAGAAGGCTCGCGGCTATGACACCTTCTTCTTGACCGGGACCGACGAACACGGCTTGAAGATCGAACAAAAGGCCGAAAAGCTGGGCATGAAGCCAAAGGCTTACCTGGACGGCATGGTCAAGGACATCAAGGAACTGTGGAAGAAGCTGGACATCAACTACGACAAGTTCATCCGGACCACTGATGAAGAACATGTCAAGGCTGTCCAGAAGATTTTTGAAAAGCTGAAGGCCTCAGGTGACATCTACCTGGGTGAATACACCGGCTGGTACTCAGTTGAAGACGAAGAATACTTCACTGAATCCCAGCTGAAGGAAGTCTTCAAAGACGACCAGGGCAACGTTGTCGGCGGGATCGCCCCATCTGGCCACGAAGTTCAATTGGTCAAGGAACCATCCTACTTCTTCAAGATGAGCAAGTACGCTGACCGGCTTCTCCAGTACTACAAGGACCACCCGGAATTCATCCAACCAAACTCCCGGGAAAAGGAAATGGTGAACAACTTCATCAAGCCGGGCCTGGAAGACTTGTCAGTTACCCGGACCACGGTTGACTGGGGGATCCCGGTGCCAAGCGACCCGAAGCACGTTGTTTACGTTTGGATCGACGCCTTGGCCAACTATATCACTGCCTTGGGCTATGGGTCAGAAGATGACTCCCTCTTCAAGAAGTACTGGCCAGCTGACGTCCACCTGGTCGGCAAGGAAATCGTCCGTTTCCACACCATTTACTGGCCAATCATGCTGATGGCCCTGGACTTGCCGCTGCCTAAGCAGGTCTTCGGCCACGGCTGGGTCTTGATCTACAAGGACAAGATGTCCAAGTCCAAGGGTAACGCCGTTTACCCGGAATCCTTGATTTCCCGCTACGGCCTGGACCCGGTCCGCTACTACCTGATGCGGGCCATCCCATTTGGGGCTGACGGTTCCTTTACCCCGGAAGACTTCGTTGAACGGACCAATTTTGACCTGGCCAACGACCTGGGCAACCTCTTGAACCGGACTGTTTCCATGATCAACCAGTACCAAAAGGGCCTGGTTGCCCCGGTTGACCAGGAACAGGACAAGTACGGCCAAGACCTGGCTGCCGTTGCTGCCAAGGCCATCAGCGACTACTACGGCAACATGGACAAGATGCACTTCTCCAACGCTTTGGAAAATGTCTGGCAGCTGATTTCCCGGGCCAACAAGTACATCGATGAAACTACCCCATGGGTTTTGAACAAGGAAGGCAAGACTGAAGAACTTTCCAGAGTCATGAGCAACCTGGCGGAAAGCCTGCGCCTGGTAGCCATCATGATCGCTCCGGTTATGACCGAAACTCCAGGCAAGATGTTTGCCCAGCTGGGCCTGGACTGGGAAGACGAAAGCCAGAAGGACTTGCAGTTCGGCGGCTTTGCCTGGGACGTAAACGTCGTTGCCAAGCCAACTCCAATCTTCCCACGCTTGAAGAATGACGAAGAAGTGGCCTACATCAAGGAAGAAATGAAGAAGGCCAAGCCAAAGAAACAGTCAAGAAGAGAACAAAAGCAGGAAGAAAAGCAGATCACGATCGACGACTTTGCCAAGGTCAAGATCCAGGTCGGCAAGATCCTGTCCGTTGAACCAGTCAAGGGATCAAGCAAGCTCTTGATGTTCAAGCTAGACTTCGGCAAGACCGGCGAGCGGCAGATCTTGAGCGGGATCCGCAAGTTCTACCCAGATGAAAGCATCCTTTTGGGCAAGAAGGTTCTGGCTGTAACCAACTTGAAGCCGCGCAAGATGCTGGGCCACGAAAGCCAGGGCATGCTTTTGTCCAGCGAAGCTGACGGCGATGTCAAGCTGGCCCTGGTCGGCGACGAACACCCGGTAGGGGCTGAACTGGGCTAATGAAGATCTACGACAACCATACCCACTTAAACGACAAGCCTTTTGCCGGCAAAGAAGCCGATTATATCCAAAAAGCCAGGGACTTGGACGTGGTTGGGATGAACTGCGTGGGCCAGGACCCGGAAATGAACCTGGGCGCCCTGGAATTAGCTAAGCGCTTTGCCAATGTCAAGGCCATCATCGGCTACTGCCCGGACGTGGCTAAAGACTATGACCAGGCAGCTGAAGACCTGCTGGTTGAGCAAGTTAAAGGCGGCCAGGTAGTCGCTATCGGGGAAATCGGCCTGGACTACTACTGGGATGAGTCTCCCCGGGATGTGCAAAGGAAAGTTTTTGCCCGGCAGATTGAAGTTGCCCGCGATTTGCAATTGCCGGTAAATATCCATACCAGGGACGCCTTCGCGGACTGCTGGCAGATCTTGAAAGAAGCAGACCTGGAATACGGGGCAGTTTTGCACAGCTACAACGGGGGGGCGGAATGGACGGAAAAGTTCCTGGACTTGAACGTGAACTTTTCTTTCTCCGGGGTCGTTTCCTTCAAGAAGGCCGCGGAAGTGCATGAGTCAGCCAAGCTGGTTCCTTTGGACCGGCTTTTGGTTGAAACTGACGCGCCGTTTTTGACTCCGGTGCCTTACCGGGGCCGGCAAAACGAGCCTGGCTATGTCCGCTACGTTGCCCAAGCGGTCGCGGACTTGAAGGGGCTGGATCTGGCCGAAGTTGCGGAAGCAACTTATGCTAATACAATGAGGATTTACGGATTAAATGCAGAAGAATTTTAACGCCGTCGTTGTCGTGGAAGGCAAGGACGATACGATTCGCTTAAAGCAGTTTTTTCCAGGAATTGAGACGGTCGAGACAAATGGCTCGGCCGTTTCTGATGCGGTCCTGGCCAAGCTGAAGAAGCTGGCCCAAAGCCGCGAGATTATTGTTCTTACCGATCCTGACGTTAATGGCGAGCGGATCCGCCGGATAGTGACCGAAGCCGTGCCAACGGCCAAGCAGGCCTTTATTACCCGCAAAGAAGGTGAACCGCAAAAAAAGGGGAGCCTGGGGGTAGAGCACGCTTCAAAGGAAGCTTTAGAGCGGGCCTTGAGCGACTTACGCGAGGTCCAAGCCCAAAAGGCTGACTTTGACTACGGGGACTATGTTGACTTGAGCCTGGCCATGGGCCGCCAGTCCCGGCAATTACGGGAGGCAGTCGGGATCAAGCTGGGGATCGGCTATGCCAATTCCAAGCGTTTTTACCAGCGCCTGCAGACTTTTGGCATCAGTTTGGCTGAACTCAAGCAGGCAGTAGAGGAGGCGGAAAATGACCAACAGAATTCCAATCGCTAGTCCGGTAAGGACGGCGGCTATCGTCAATCGTTACTTTGTGCACGCCAAGAAGAACCTGGGCCAGAACTTCCTGGTTGACCTGGATGCCGTCCAGGGGATCGTCCGGGCAGCCGGGATTGAGCCCGGCGACCAGGTAGTGGAAGTCGGCCCGGGGATCGGCTCTTTGACTGAACAGCTGCTTTTAGCCGGAGGCAAGGTGGCGGCTTATGAAGTCGACCAGAGCCTGCCGGAAATCCTGGCCAACGAACTGCCGGAAAAGGTGGACGGCCAAGACCTGGACCAGCGCTTCAAGCTGATCATGAAGGACGTTTTGAAGGCGGACTTTGCAACTGACCTGGCGGGCTTTTTTGACTTAAGCAAGCCCGTCAAGGTTGTGGCCAACTTGCCTTACTACATCACCACGCCGATAATTTTCAACCTGCTGGAATCCAGCCTGGACTTTACCAGCCTGACCTTGATGATGCAAAAGGAAGTGGCTGAGCGTCTGGCTGCCCAGCCGGGCTCTAAGGCCTATGGCCCCCTGTCCATTGCCGTGCAGACTCAAATGAGCGTGGACCTGGCCTTGGAAGTTGGGCACGCTTCCTTCATGCCCCAGCCAAAGGTTGACTCAGCCGTAGTGGTTTTAACGCCTTTGGAAAAGCCAGCTGACGTTGGCGACCGCAAGCAGTTCAACCGGGTGGTTAAGCTCTGCTTTGCCCAGCGGCGCAAGACCCTGGCCAACAACTTGAAGACCTTGCTTCCAGACAAGGAAGACCGGGAAAAGCTGCTGGCCGACCTGGACCTGGACCCGCGCCAGCGGCCGGAACAACTGGCCATCAGCGATTTCATCAGAATCAGCCAGGCTATAGCGGAAATGAATAAATAATTCAGTCTTGATTTGAATAGCAAATTATGTTATAATATTCCGATAAAGGAGTGTCATAATTGCTAATCAATATTCAAGACATTAAGCAGAAGTTAGATGCCCACCTAGGCGAAGAGCTGACAATCGTTGCCCAAGCGGGCCGCAAGAAGGTAACCAGACGCCGCGGCATTTTGAAGAACACGTTTCCTGCCGTGTTTGTAGTGGCTCTGGACCAGGACAGTAATAATTTTGAACACGCATCATACAGCTACACTGATGTTTTGACCAAGAACATCCTGCTGGAATTTGATGATGAAAGCGATGCAGAGTGAAAGCACGAATTTTTGCACTAACATTTCTTGAAAATGTTAGTGATTTTTTTACCCTTTAGAGTATATTAGTATAAGTACAAAAACAGACATTGGGAAGGAAAGAGAATGAAACGTTCTGAAAGATTAGTAGATATGACCAAGTTTTTGATGGAGCGCCCGCATACTTTGATTGCTCTGCCCTTTTTTGCCAAGCGCTACGGGGCAGCGAAGTCATCAATCTCTGAAGACTTGGCCATTTTGAAGCACACCCTGGCCAGCAACGAGGATGGGATCCTGGAGACCGTTGCCGGGGCAGCCGGCGGGGTCCGCTATATCCCGTTCTTAGGCCAGAAGCCGGCTGAGAAGTACCTCAAGGACCTGGCAGGCCGCATCCAGGACTCCAGCCGGATTCTGCCGGGCGGCTTTCTCTACCTGTCAGATATTTTGGGCGGGCCATATGACCTGGAGATGATCGGCAAGCTGATCGCCACCCGCTATGCTTACGCCAATATCGAAGCCGTCATGACGGTGGAAACCAGGGGGATTTCTTTGGCTAATGCCGTGGCCAGCTACTTGAACGTCCCAGCGGTAACCGCCCGCAAGCGGTCCAAGGTGACTGAAGGGGCTACTGTGTCCGTTAACTACATGTCTTCTTCAACTTCCCGGGTAGCCAAGATGGAGTTGCCGACACGGGCCCTGGACAAGGATACGAGCGTTCTGATTGTGGACGACTTCATGAAGGGCGGCGGTACTCTGGACGGGATGCGGCAACTGGTCAAGGAATTTGACTGCCAGGTGGCCGGCGTCTGTGTTCTTTGCGAAACTGAATATGAAGAGGAACGTAAGATCAAGGACTACGTTTCCTTGGTCAACATTGACCAGATCGACAGCGAAAAGGAAATCGTCCTGGCTCAACCGGGCAACTTTTTGACTAGAACTAACTTCGACCGTTTCTAAATGTTACAATATAAGCTAGTCATGAAGGCTAGCTTATTTTGATTTAGAAGGTTACAAACAGATGGAAAAATATGTCGTAGTTTTGGCTGCCGGCAAGGGCACCAGAATGAAATCCAAGCTTTACAAGGTTTTGCACCAGGTTTGCGGCAAGGCCATGGTTGAACATGTCGTTGATGCCGCCAGAGCGGTCAAGCCAAGCAAGATCGTGACCATTGTCGGCCACGGGGCAGAAGACGTGGAGAAAGTCTTGGCGGGCAAGTCTGAATTTGTCATGCAGGAAGAGCAGCTGGGCACCGGCCACGCGGTTATGCAGGCGGAAGGCCAGCTGGCTGCTTTGGAAGGGGCAACGCTGGTCGTAACCGGGGATACCCCGCTTTTTACCAGTGAAACTTTCGAAAAGCTCTTCGCCTACCATGAAGAAGAAGGCAACGCGGCCACGGTTTTGACGGCTGAAGCTCCGGATCCTTTTGGCTACGGGCGGATCATCAGAGATGACCAGGGCAATGTTTTGCGGATCGTGGAACAAAAGGACGGCAAGCCGGAAGAACTGAAGGTCAAGGAAATCAACACCGGGGTCTTCTGCTTTGACAACCAGGACTTGTGGGCTGCTTTGAAGCAAGTCGGCAACGACAACTCTCAAGGCGAGTACTACTTGACTGACGTTTTGGAAATTTTACGCAAGGCCGGCAAGAAGGTCGGGGCTTACAAGATGCCGGACTTCAGCGAAAGCCTGGGCGTAAACGACCGGATCGCCCTGGCTGAAGCCACCCGGATCATGCAAAGAAGAATCAATGAAGGGCACATGCGGGACGGGGTTACCTTTATCGACCCCGCCACGGCTTACATTGACGCTGACGTGGAAATCGGTAATGACACGGTGATTGAAGGCGGCGTGACAATTAAAGTCCACACCGTGATCGGGTCAGACTGCTTGATCACTTCCGGGTCAAGAATCGTTGACAGCCAGATCGGCAACGGCGTGACGGTAACTTCTTCTACGATTGAAGAATCAATCATGGAAGACAACACGGACATCGGGCCAAACTCCCACTTGCGGCCAAAGTCTTTGATTAAGCGGGGAGCCCACCTGGGCAACTTCGTGGAAGTCAAGAAGGCGGAAATTGGCGAAAACACCAAGGTCGGGCACCTGACTTACGTTGGGGATGCTACTTTGGGCAAGGACATCAATGTCGGCTGCGGGGTCATCTTCTCCAACTTTGACGGGGTCAAGAAGTTCCACACGACGGTTGGTGATAAGTCCTTCATCGGGGCCGGGTCAACCCTGGTTTCTCCGATTAATGTGGCCGACCATGCCTTTATCGCGGCTGACTCAACCATTACCAAGGACGTTGGCAAGTATGAAATGGCAATCGCCCGGGGCCGGCAGGTCAACAAGAAAGACTACTGGCACAAGCTGCCTTTGTCTGAAGACGAAGAATGGAAATAATCTCGAAAAGGAGCTCCGGCTCCTTTTTTTAATAAGTAAAATGCATCCGTTTACAGTAGCTTTTAAGAAAAAATTTCCTTTCTTTTGAGAACTTTAATAAGCAATTTTTAAACAGAGGGTGTATAATCTAGGCAATGTACAAAAAGAAGCAAGAAAGGTTTGCATATCGATGAAGTTTACTAAGAAAATTGCTTTTGCATCAGCATCATTGGCTTTGACCCTGGCTACTCCAGCCGCCCTGCTTACTCAAAACGTGGCTTTTGCCAAGACCACCACGGTTAAGCAAGCAACCAAGGTTAAGGTAACTAAGAAGACCACTCCTTTTTACCACAAGGACGGTTCTAAGTTCACCAAGAAGAAGCCTTACGTTTACGGCGGCTGGAAGAGCACTGTAGCTTACAAGAACACCAGCTACAACGTGGTTAAGACTGTAACCATCAAGGGTGCTAAGTACTACTACATCGGCAACGACGCTTACCTGAAGGCCAGCGACGTCAAGGTAACTGCAACTAAGACGGTTAAGTCCAGCTCAACTTCAAGCGCAAAGAAGGCAAGCACTAGTTCAAGCAAGTCCAGCTCCAAGAAGACTAGTTCAACTTCCAGCTCAACTTCAAGCAGCTCTTCTTCCAAGAAGACTGTAACTCAAATTCAAGTAACTAAGAAGACCACTCCTTTCTACCACAAGGACGGTTCAAAGTTCACTAAGAAGAGCCCATACGTTTACCAAGGTTGGAAGAGTACTGTAGCTTACAAGGGGACCAAGTACAAGGTTTCCAAGACTATCACCATCAAGGGAAGCAAGTACTACTACATCGGCAACAGCGCCTACCTGAAGGCCAGCGCCGTTAAGGTAATCGCATCTAAGTAATCCAGAAGAAGCTTTGACAATTGTCAGAGCTTTTTTCTTTGCCCGAAAACAGACGATTTTTTCTATCCGCTTGAAAAACAAAAGGCTTTCTTTCCCTTTTTTCAGGTCAAAACAGGAGTAAGAGGGATTTTTTGCTTAAAAACTGAACACAAATCCCTTTTTTCCAACAAAAGAATGCTGGATTTTGTTAGAATAGATCTGGTAAATGCTGTTTTTTTCGGAGGAAATTATGTCTTACAAGGACAACATCAAGCTTTTTGCGCTTAACTCAAACAAACCGTTGGCAGAAAAGATTGCTAAGCGGATGGGGTTAAAGCTTTCAACCTCAAGCGTCGTTCGCTTCAGCGACGGTGAAATTCAAGTCGACATCGACGATTCTGTCCGTGGCAAGGACGTCTTCTTGATCCAATCCACCAGCGCGCCGGTCAACGACAACCTTATGGAACTTTTGATCATGATCGACGCTGTCCGCCGGGCCAGTGCCGCTTCCGTAAACATCGTCCTGCCTTACTACGGCTACGCTCGTCAAGACCGGAAGACCCGGTCCAGAGAACCAATCACTGCTAAACTGGTCGCAGACATGATTCAAGCTGCCGGGGCTGACCGCGTCCTCTCACTGGACCTGCACGCTCCGCAAATCCAAGGTTTCTTCGACATCCCTGTCGACAACTTGATGGGCGCTCCTTTATTGGCTGACTACTTCCTGAGCAACCACCTGGAAGAAGACGCTGTTGTCGTTTCTCCAGACCACGGTGGCGTTACCCGGGCAAGAAAATTAGCTGAATTCCTGGGCACTTCAATCGCCATCGTCGACAAGCGCCGGCCAAAGGCCAACGTTGCCGAAGTCATGAACATCATCGGTGACGTCAAGGGCAAGCGGGCCATCTTGATTGACGACATGATCGACACTGCCGGCACTATCACCCTGGCTGCCCAGGCCTTGAAGGACGCCGGTGCTACCGAAGTTTACGCCTGCGCGACCCACGCCGTTTTGTCCGGCCCAGCCGCAGACCGCTTGAACAATTCCGTAATCAAGAGCCTGGTCTTGACCGACTCAATCCAACAGCCAGCCGAAAAGAACCTCGACAAGATGATTCTCGTTTCCGTTGGGCCTTTGATGGGTGACGCTATCAAGCTGATCATGGAACACAAGCCAATGAGTCCGCTCTTTGACACTCGTTACGACGCTAACAAGTACAAGGACAAGTAAGGACCTGTATGCAAAAACAACCGCTGCAAATTCTGCAACGGTTGTTTTCTTTTGGAAATTATTCTTTTGCCTTATTTTTTCGTAAGCGATTCCCCGTTTTTCAGGTACTGCTGAAAATCTGCCTGCTTGAGCATGGCAACCGGGAAGAAGAAGCGCTCATCGCCCTGCAGGGTTCCGTTTAAGGCCTTGACCAGGGGGCTGAGCTGGGACAACTCAATCAAGCTGCCGTCTTCCTGCATGATCTCGATCTGGCTGTTGGCGTTCTTGCCACTTGGCTTATAAGCGTCATATGGCTCGTCAAAGGCTGACCCTACTCCGGTATAGTAGTCCGGGTCAAAGCCGGCCTTCTTGATCAAGTCCTTTAATTGCGGCAAAAGCTGCTTGCTTTCTTCGTTGATCTTCGCGCTGGCTAAAGGCCGCCGGAAGAGGTAGCGCTTGGTCAGGTCCACTAAAACCGGGTCGCTGGACTCAGTCCACATGCTGAAGTTGGTCTCCATGACCCCGTCATCCATCTTCAAGTAGTCTTGCAAGTCCCAGGTACCGGCCAAAAATCTGGCTAAACTTGGCGTAACCGGCAGTTCTTTTTCCTGGTAGAGGTACTGGGCCCGCTTCAAAAGGTGGTGAAGGATGACCTCCATGGACCGGTTGACCCGGTGGTAGTAGATCTGCTGGTACATCTGGTAGCGGGAGACGATATAGTCTTCAACGGCGTGCATCCCGTTAGCCGTAAAGCAAACCCCTTTTTCATAAGGGCGGATGACCCGCAAGATCCGGGACAGGTCGAATTCCCCATAAGAAGCCCCCGTGAAGTAGGCATCCCGCAAAAGGTAGTCCATCCGGTCGGCGTCCGCCTGGCTGGAGATGAGCTTGACCACCTGGGGATTAGGGTAGGTCTTGGCGATCACGCTGGCCACCGCCTTTGGGAAGTCCGGGTCGACCTTGCTCAAAGCTTGGTTGACCTCAGTGGAAGGATCCAGAATGATCTGCTGGCCGATCTGCTCATGGTTGGTGCCGAAAAGGTGCTCAAAGGTGTGCGAGTATGGGCCATGGCCGATGTCATGCAAAAGGCCGGCCATCTGCACCAGCAGGTTTTCGCTGGGGTCCCAGAGTCCGTCGCCGGTACTTTGACTAGGGTATTTGTCAGTAAAAAGGTTGCTGATCCGTCGGGCCAGTTCGTAGACGCCCAGGTTGTGCTCAAAGCGGGTGTGGGTGGCGCCGGGGAAGACGAAGGCCGTCGGGCCCAGCTGCTTGATCCGCCGCATCCGCTGGAATTCTTGGGAGCGGACGACTTCCAGGGCCACTTGGGTGTCCAGGTGGATATAGCCGTGGACCGGGTCACGGACGACGACTTCGCGGGCCAGTTTAGGACTGTCAAATTTTGTCAAAAGTAAATTCTCCATTCTTAATTGTTTTATATTTTTGCCAAAACATAGTAAGATATACTTGACTAGCTATAGAAATTATAGCAAAAGTTGCCAGAGGCCGCTGCTTGCGGCTGTTAAAGGAGAAGAATTTTTTATAAAGATGAGCAAGATTAAGATCGATTTGACGAGCAAGATTACCCAGGGCGAGCAAACGGAAACCATCCGCCAGCAGGCAGAAGGCGAATTGCGGGAAGACGGCGCGGTGAAAAGAATTTTTTACGAGGCGGAAAAGGTGCCGGTCAAGATGCTCGTAAAAGAGCAGGAGCTCTTAATCCGGCGGGGGACTGACCACAGCAACTTCTCCCAAATGCATTTTATTTTAGGCGAGAAGGGGCAGTGCAAGTACGTGGTTGAGGGCCGGCAGCTGGATCTCTTGTCGGAAACCAAGCGCCTGGAATTGAAAGAAAATGCCGCTGGTCAGCAACTTGAAGTTGAATATGACCTCTTTAGTGGTGTAGACTTAATTGGTAGTTATGCCGTCTCGTTGATTTTTGCTTAAATGACGTGTAAAATAGACAAGATTGAATAGAGAGGACGTTCAACTGTGGGATTAGCTGATTTTAAAGACGTGGATCGCAACGAATTGTCAATGATTGAAGTTGCACACGCAATTTTGGAAGACCGTGGCGAAAGAATGGCTTTTGCCGATATCGTTAACGAAGTGCAAAAGTACCTGAACAAGAGCGACGAAGAAATTCGCCAGCGCTTGCCGCAATTTTACACGGACATGAACACCGATGGCCGCTTCATTTCCATGGGTGAAAATGTCTGGGCCCTGCGGACCTGGTTCAAGTTCGAAGCTGTCGATGAAGAAGTCGACCACCCAGAAGACGACGGCGACGAAGAATCAACTCGCAAGCACCACAAGAAGGTCAACGCCTTCCTGGCCACGACTGAAGGCGACGACGTGATCGACTACGAAAACGATGACCCAGAAGACGAAGACTTGTCCGACGACAGTGACGCTGACGAAGATGACGCTGACGACAACTCCGGCGACGATTACGACGACAATGAAGACGACGACGATGACGACTCATTGCTAGACGGGATCGAAGATCAGCTGTCACAAATGGATGACGACGACCTTGATGACGATGAAGACGAAGAATAGGATTTTGTCCTTGACTTGCGGCTGAAAAGTCGTTATTATTTTGTTTGGGCACCCTATGTGCGTTTAGCTCCCTAATTGCTAGGGAGCTTTTTTATTATTTTTCAAAGGAGAGCTCAATGACCAAATATATCTTTGTGACTGGCGGCGTTGTTTCATCATTGGGGAAAGGGATTACTGCATCAAGCATTGGTCGCTTGCTGAAGAACCGCGGCTTAAAAGTTACCATGCAGAAGTTCGATCCATACATCAACATCGACCCCGGTACGATGAACCCTTACCAACACGGTGAAGTTTTCGTGACTGACGACGGTACGGAAGCTGACCTTGACTTGGGCCACTATGAAAGATTGGTCGACGTTAGAACCAGCAAGTACTCTAACGTGACGACTGGCAAGATCTACCAGGAAGTCCTGCAGCGCGAACGGCGCGGCGACTACCACGGCGGCACTGTACAGGTGATCCCGCACGTAACTAACATGATCAAGGAAAAGGTCATGCGGGCAGCGCAAATGACCGACACTGACGTGGTTATTTCCGAAATCGGCGGTACGGTCGGTGACATGGAATCAACTCCGTTCATGGAAGCCATCCGGCAAATGCGGCGGGAAGTCGGCTCAGAAAACGTCATGTACGTGCACGTTACCTTCGTTCCTTACCTGCGGGCAGCCAAGGAACTGAAGAGCAAGCCGACCCAGCAGTCAGTTTCCATGCTGCGGTCAATCGGGATCCAGCCAAACATGCTGGTTCTTCGCTCAGAAATGCCAGTTCCGCAGGAAATGAAGGACAAGATCTCCACTTTCACCGACGTTCCAGTCGACTACATCGTGGAATCTTTGGACGCGCCATCTCTGTTTGACGTGCCGTTGTCCTACCAGGAACAAGGCGTTGACCAGAAGGTCGTTGACTTCCTCCACATCGACAGCCCGAAGCCGGTTGCCGACATGGACGAATGGCGCCGGATGGACGAACGGGCCAAGAACTTGAAGTACAAGACCAAGATCACCCTGGTCGGCAAGTACGTCGAACTGGAAGATGCCTACATTTCCGTAACTGACGCTTTGCATCACGCCGGCTACCTGTACAACAGCAAGATCGAAGTTGAAAAGATCCAGGCTGAAGACATTACTGAAGACAATGTAGCCGAACTTTTGAAGGACACTCAGGGCTTGATCGTGCCAGGCGGTTTCGGCACCCGGGGTCTGGACGGGATGATCACTTCTATCAAGTACGCCCGCGAACACGACATTCCATTCCTGGGGATCTGCCTGGGGATGCAGATGGCCAGCGTGGAATTCGCCCGCAATGTTTTGCACCTGGAAGACGCCAACTCAGCTGAAGCAGAACCAAACTGCAAGAACAACATCATTGACTTGATGGCTGACCAGCGCGACCAGGAAAAGATCGGCGGCACCTTGCGTCTGGGCTTGTACCCAGCCATGCTGAAGGCCGGCACTAAGACCCGGGAATGCTACGACGGCCAGGAAGTCATCCAGGAACGTCACCGTCACCGCTACGAATTCAACAACAAGTACCGGGAAGACTTTGAAAAGGCCGGTATGACCTTCTCAGGCATTTCTCCAGACAACCACCTGGTGGAAATCGTTGAAATCACGGACAAGAAGTTCTTTGTTGCCGCTCAATACCACCCGGAATTCCTGAGCCGGCCAAACCGGCCAGAAGGGCTCTTCAAGGGCTTTATTGGGGCAGCCAGCGGTTTGCAGGTCGACAAGTTCTAAATTTTGTACGATAATAATAGATAGTGACAAGAGAAGAGAAACCTCTTCTCTTGTTTTTTTGACGAAGATCTATTAACATTATTATGATAATTTGACAAAAGAAAAGGAATACTCTCCCAATGAAGAAAATGATAATTCACGGAGGGAAACCCCTGCAAGGCGACATCTGGATTGGCGGCGCGAAGAACTCAACGGTAGCGCTGATTCCGGCCTCAATCCTGTCGAGAACGCCGGTGACCCTGGAATCAGTTCCGCGAATTGCCGACGTTGACAATTTGATGGACTTGTTGAGCGAAATGGACGTGCACTGCGACTTCCGCGAAACGACCCTGCAAATTGACCCGACTGAAATCAAGATGAGTCCCCTGCCAGCTGGGAAGATTAAGAGCTTGCGCGCGTCTTACTACTTTATGGGCGCTTTGCTCGGTCGTTTTGGCAAGGCGGTTGTAGGTTTTCCTGGTGGCGATGACATTGGCCCGCGGCCGATTGACCAGCACATTATGGGCTTCCAATCCCTCGGCGCCGACGTTAGATGTGAAAATGAGCAGATTGTAATTACCGCGCCTGATGAAGGGTTGAAAGGGGCCAAGATTCACCTGAAGATGGCTTCTGTTGGGGCAACGATGAACATCATCATGGCCTCAGTCACGGCCAGCGGCCGGACGGTGATCGAAAACGCGGCCAAGGAGCCGGAAATCATCGACCTGGCAACTTTCTTGAACAACATGGGGGCCAAGATCCGCGGGGCGGGGACTGACACCATCAGAATCGACGGGGTTGACCGCCTGGAGGCCAAGGTGCCGCACACGATCATCCCTGACCGGATTGAAGCCGGGACTTACATTTCCATGGCAGCCTGCATCGGTAACGGGATCCGGATCCACAACATCATCGCTGAACACCTTGACGCCTTTTTGGCCAAGGTGGAAGAAATGGGCGTGGTGATCGACACTGATGAAGACTCCCTCTTCGTTTACCCGGCCGGGGACCTGCGCATGGTCCAGGTCAAGACCGGGACCTACCCGGGATTCGCGACTGACTTGCAGCAGCCAATTACGCCGCTCTTGCTGACGGCTAAGACCGGGGAAGGGGTCATCATCGACCCGATCTACCCGAAGCGGACCCGGCACGTGCCGGAACTGCAGAAGATGGGGGCTCCCATCACGGTCGTTAACAACATCATTCTGGTTCAACCGGGCAGCCGCCTGCACGGAGCGGTGGTTCACGCTGACGAAATCCGGGCCGGGGCCTGCTTGATGCTTACGGGCTTGATGGTTGACGGCGAAACGGTGATCAACAATGCTGGCAACATCTTGCGCGGCTATGACCGGGTGGAAGAAAAGCTGCGCCAGCTGGGCGCTGACGTGGTCATCCGGGACGTGGAAGATTAACTTGAGCCCTTGTCAAACGGGCTGGATAGTGGTACTATATTAGAGTTAATCGATTAATCTATGGCCTGCAGAAGGCTATGGCAAAGGAGTTTTAGAATTATGAAAAAAGGTATTCACCCAGATTATCAAGAAGTTTGCTTCATGGACGCAGCAACTGGTTTTAAGTTTGTTGCCGGCTCAACTTTGAAGTCATCAGAAACTGTTGAATTCGAAGGCAACACTTACCCATTGATCCGTGTTGAAATTTCATCAGATTCCCACCCATTCTACACTGGCAAGCAAAAGTTTGCCGCAGCCGATGGGCGAATCGAACGTTTCAACAAGAAGTACGGCTTCAACAAGAAGAACTAATCGTTCTCTTTACTTTAAAAGCAGCCCTCTTGGGTTGCTTTTTTATTGCGAAGAGCGCTAAACAACGTATAATATACTAAGTGTTATTCTCAAGGAGCAGTATTGGAATGAAAATGCAGTTGGCAGAAATCGCCCAAGCCTTAAATACCAGTTGTGAAGGGGACGCAGAAACGGTCATTACCTCAGTGGCCTTTGACTCAAGAAAGATCAGCCAGGGCGCCCTCTTTATCCCGATCAAGGGGGAAAGAGACGGCCACGATTTTGTGGGTTCAGCCATTGAAGCCGGCGCCAGCGCCACTTTGTGGGAAGCTGGCAACCCAAACAAGCCGGAAGGCATCGCGGTTTTAGAAGTTGCCGACACCTTGAAGGCCATGCAGGATCTGGCCCGCTACTACCTGCAGAAGGTCAACCCAACCGTGGTCAGCATCACCGGCTCAAACGGCAAGACCACGACCAAGGACATGGTGGCGGCGGTTTTGGCCAAGCGCTTCAACGTTTACAAGACCCAGGCCAACTTCAACAATGAAATCGGCGTGCCGATGACCATTTTGGAAATGAAGCCGATCACTGAAATCCTGGTTTTGGAAATGGGGATGGACCGAGCTGGCCAACTGCATGAACTGAGCCAGCTGGCCCGGCCGGATGTGGCGGTCATCACCATGATCGGGGAAGCCCATATCGAATTCTTCGGCAGCCGGGACAAGATCGCCGACGCCAAGATGGAAATCACGGACTTTTTGCAAGAAGACGGCGAATTTATCTACAACGGTGATGAACCCCTCCTGGCGGAAAGAGCCGCAAAGCTTCCCCAGGACAAGTCCACCTTCGGTTTCGCGGACTCTGACAGCATTCATGCCAGTGACCTCCGCAGCACCATGCACCATTCCTTCTTCAAGATTAACGGGACTGACCGGGAATTCTCAATTCCAATGATCGGCCGCCACAATGTGGCTAACGCCATGGCCGCTATTCTGGTTGGCCGCCACTTCGGGGAAAGCGACGAGGAAATCGCCGCTGGCCTGGCCAACTTCGTGCCAACGGCCAACCGGATGGAATGGGAAAAGGGTGACTGCGGTGAAGACATCATGAGCGATATCTACAACTCCAACCCAACGGCAGTTAAGGCCGTGACTGCCTCCTTTGGCCAGGTTCCAGTCAGTGAAGACGGCCGCCGGATCGCGGTTTTGGCCGACATGCTGGAACTGGGCAGCCGGTCAGCCGACCTGCACAAGGGTCTGGCTGCCTGCCTGGACCCGGACAAGATCAACGTCCTTTACCTTTACGGGCCGGAGATGAACCACCTTTACCAGGCCCTGCTGGACAAGTACGGCCAGCAGAATCTGCACTACTACCCAGAAGACGAGATGAGCCATTTAATCGATGATTTAAAGAGCGACATCCACAGCCAGGACATCGTTTTGCTGAAGGGGTCCCACGGGATGCACCTGGAACGAGTCCTCGACAGACTGAAATAGGAGAACAATTTGAAATTTACTGAACTAGGATTGAACGACAATATCTTAAAGGCAATTAAGCGGTCAGGCTTTGAAGAAGCCACCCCGATCCAGGCCCAGACCATTCCTTTGGCTCTGGCAGGCCAGGACGTGATCGGCCAGGCCCAAACCGGGACGGGGAAGACAGCTGCCTTTGGTCTGCCAATCCTGCAAAAGCTGGACCTGGACAAGCAGGAGCAAGCCATCCAGGCCATCGTAATTGAACCAACCAGAGAACTGGCCATCCAGACCCAGGAAGAACTTTTCCGCCTGGGCAGAGACGAAAAGGCCAAGGTCCAGGTCGTTTACGGCGGGGCGGACATTGGCCGGCAGATCCGGGACTTGAAGAAGGTGCCGGAAATCCTGGTCGGGACTCCTGGCCGGCTTTTGGACCACTTGAAGCGCAAGACCATCAAGCTGGACGGCGTCAAGACAGTTGTTTTGGACGAAGCCGACGAAATGCTGGACATGGGCTTCATCCAGGATATCGAAAGCATCTTAACCTATGCTGAAAACCGGGACCAGACCCTCTTGTTCAGCGCGACCATGCCAAAGCCAATCCAGGCTTTGGGCGAAAAGTTCATGCATGACCCGCAAGTCGTGAAGATCCAGGCCAAGCAACTGACGGCTGATTTGATCGACCAGTACTTCGTCCGCGTCCGGGAAAACGAAAAGTTCGACACCATGTGCCGGCTGATCGACGTGGAAAATCCGGACCTGGCCGTGGTCTTTGGCCGGACCAAGCGCCGGGTTGACGAACTGACCCGGGGCCTGGTTGCCCGGGGCTACAACGCGGCCGGCATCCACGGCGACCTGACCCAGGCCCGGCGGATGCAGGTGCTCAAGCGCTTCAAGGAAGGAGAGCTTGACATTCTGGTGGCTACTGACGTGGCTGCCCGGGGCCTGGACATTTCCGGGGTTACCCATGTTTACAACTACGACATTCCGCAAGACCCGGACTCCTACGTCCACAGAATCGGTCGGACCGGCCGGGCCGGCAAGAGCGGGATGAGCGTGACCTTCGTGACGCCAAACGAGATCGGCTACATGCGGACTATCGAGGACTTGACCAAGAAGAAGATGTCTCCTCTGCGTCCGCCGACAGACGCCCAGGCCTTTGCCGGGCAGATGAAGCAGGCGGTCTTGAAGGTGGACGACCTGTTGAGCGGGGATTTGAGCAAGTATGACGACGCGGCGGAAAAGCTGCTGGAAAATTACTCAGCTGAAGACATCGCCGCTGCTTTGCTGAAGGAACTCTCTAACGACAGCGAGGTCAAGGTTACCATCACCCCTGAAAACCCTCACCCTTACCGGGGCAAGCACTCAGGCGGCCGCGGCCGGGGTAGCCGCAGCCGGAGCGGTAACAAGAACTTCAAGGGCAAGCGCAATTTTGACAGAAAGAAGCGCAAGCCAGGCTTTAAGATCCACGGCCGGAAGGGCTAAATTTTTAAAAAAGTAAAAAGGACCGGGCTTTTGTCCCGGCCTTTTTCTCTTTGTGCTATTATTTAAACAGCGTGAGGTGGAAAGATGATCAAAAATATCGGTGTGGACCAGATTGAGGTGGACCGGATCGCCAAGGTCGTTGACCGGGGAGACGGCTTTGCCCGAAAGGTTCTGACCGACCGGGAATTTGCTCAGTACCAGGACTTGACTCATAAGCGGAAGATTGAGTACCTGGGCGGCCGCTTCGCCATCAAGGAGGCCTTCTCCAAGGCCTGGGGAACCGGGATTGGCCAGGCAGTTTCCTTTGAAGACGTGGAAACCTTGAGGACCGAGTCCGGAGCGCCCGTAACGACGTCGCGGATTTTTACGGGGCGGATTTTTTCCAGCATCGCGCATGATGATCACGAGATCGTCGCCGTGGTCGTGCTTGAAGAGCCGGCCGGCTGGCGCCGCGCGATCGGCAAACTATTGCACCTGTTATCTGGGAGGAAAAAATGATCACAGCAGTTAATCGACCAGCAGCCCTGCATATCAACCTGGCTGCTATCAAGGAAAACACCCGGCAGGCCAAGGCCCACTTGAAGCCGGGCCAGAAGCTCTTTTGCGTGGTTAAGGCCAATGCCTACGGGCATGGGGCAGCGCGCCTGGCGCCGGTGATGGAAGAAGCCGGAGCAGACGGCTTCTGCGTGGCCATGCTGGATGAAGGGCTGGAACTGCGCCGGGCTCAGATCGTCAAGCCAATCCTGGTCTTGGGCCTGCAACCGGCTGAAGAAGCCGCCCTGGCTGCCGCCAACGACATTTCTTTGCCGGTGTCCAGCCTGGACTGGCTCAAGAAAGCTGAAAAGGTCCTCCGCAAGGAAGGCCTGCAGTTGAAGATCCACCTGGCCATCGACTCCGGCATGGGCCGGATCGGCTTTAGCGAAGACGAAGACTTCAAGGCAGTCAACGAATATCTGCAAGGCAATGATGCCTTCTTTGTGGAAGGGATGTTCACCCACTTTGCTTCCGCTGACTCTGCTGATGCCAGCTACTTTGACTACCAGGTCAAGCGCTTCAAGCACATGGAAAGCCTGCTGACGGTCAAGCCAAAGTGGATCCACGTGGACAATACCGCGGCCATCCTCTTTGACAAGGACGTAGCCAGCGACATTGTCCGCTTCGGGATTGGCCTCTACGGGCTCAACCCTTCATCAGCCCCAGGCAGCCGGGACTTAGAGCCTGCTTTTGCCCTTAAGCCGGCCATGTCTTTTGTCAGTGAACTGACCTATGTCAAGCAGATCCACAAGGGCTACGGGGTCGGCTACGGGTCAACCCACATAGCAGAAGAAGACGAATGGATCGGGACCGTGCCGGTTGGCTACGCTGACGGCTGGATCCGGAAGTTCCAGGGCTTCAAGGTCAAGGTCGGGGATACTTACTGCCCGATCGTCGGCCGGGTCTGCATGGACCAGTTCATGGTTCTTTTGCCCAAGGAAGTGCCGGCTGGCACGCCAGTTGAACTGATCTCAGCTGATCCGGCAGCGCCAAACAGCCTGCGCCGGGCAGCTGACTGGCTGGATACCATCCACTATGAAGTGGCCTGCCAGTTTAACGACCGTCTGGACCGGATTTACGATAACGAATAAGATCAGGAAAAAACCTCCGAATTTTGCTTCGGAGGTTTTTAATATGCTTTTGCTTATTCTTCGTTCAAGAAGACGCCTGGCTTTTCTTCGCTCATGATGTTCATGCCGGCAGCCAGGTCTTCAACGGCAACGACTGGGAAGCCCTTGGCCTTGAGCTTCTTGCAGATGGCCTTCAGTTCAGTTTCCGTGGTCCCTTGCGGCAGGGTGAAGAGGGTCCGGCGGACGTACTTTCCGTCAAATTCGCTGGCTGGCGCGTCCAGAGTCATGGCCCCGGCCAGGTTGACAAACTTGGCGATGATCTTGGTCATCTTGGTCAAGTTGCCGCTGTCGTTGGTTGACAAGACAGTCAAGACGTAAGCCCCGGTCTTGATGTTCCAGGCTGAGGACAGCATGTCCAGCAGGCGGGCGTGGGTCAAGATGCCGTAGAAGGTGTTGTCAGTGTCCAAAACAGCAATGTAAGGCAAGTCCTTGATGGTAAAGAAGACTTGGAAGAATGGCGCGTTGATCTTGATGGTCTTGGTGGCGTTCTTCAAGAGGTAGGTTACCGGCAGGCTCATGTCCCCGCCTTGGGACTTGTGGCGGTAAATGTGCATCTTGTAGATGTTGCCGCGGAAGATCTTACCGCTGTCATCCAGGATCGGCACGCAACGGTAGCCGGAGCTTTCCAGTACCTTCAAGGCTTCTTCCAGGGTAGCATGTTCGTTGACAGTCGTCAGGTAGTCTTTCTTGATTACCAGTGATTTGATTAACATAGGATAACCTCCGTTATGTGGATTTACATGTAAATGTTTTCTTATCTCATACTTTGGATAACCTCCGTTATGTGGATTTACATGTAAATGTTTTCTTATCTCATACTTTCACATTATAGCATGCAGAAAACAGAAATTAAAGACAGGTTAAAAGACAGGAAAGCGTAAGATTTTTGCCAGTTGTGCTAAAATTATTAAGATACAGCAAGTGAGGAGACTTTTGATGAAATTAATCGTTGCTTTGGGCAATCCTGGCCTTAAATATGAAAAAACCAAGCATAATACCGGCTTCATGGCCCTGGACCACTATTTAGATGAAAAAGGCCTGCGCCTGGACCGCGACAAGTTCACGGCCCTCTACGCCAAGGAGAAAGTGGCGGGCGAGGACGTGATCTTCATGGAGCCACAGACCTACATGAACGAATCCGGCAGAGCCGTGGGCGCGGCGGCCAAGTTCTTCAAGATCGACCCCAGCGACATCCTGGTTATCCACGACGACATGGACATGCCAATCGCCAAGCTGCGGATCCGGGCCGGCGGCAAGTCGGGCGGCCACAACGGGATCAAGAGCATCATTGCCTGCCTGGGGACTGAGAAATTCAACCGCCTGAAGATTGGCATCCGGCACCCGGACAAGCAGAGCGTGGTTTCCTGGGTCCTGACTCCTTTTAATCCCGACCAGCAAAAGGAGCTGGAAGCCAGCTTTGCCAAGGTTGACCAGATCATTGACGACTTTATCGCTGGCAAAGACGCCCAGTACTTAATGAACCGTTACAATTAAAGACAAGCACACGAACATGCAAGTAATTGATTTTTTGAAAAAAGATCAAGGAGTGACTGCTTTTATCGCGAAAACGTCCCGGATCAAGAACTCCCTGCTTACAGGAGTCGAACGGGGCGCTTTTGCTGTCCTCATCCAGGCTTATTTAGCCCAGGTGGGCCAGCCCCTACTTTTGATCGAAGAGAATGAATACAAGGCCCAGGAACGCCACAACGACTTGAGCCGGCTTTTGGCCGATGATGACCTGGAGCTTTTTGTCCTGGACGGGAACCTGGCCACGCAAACGGCGGTCAGTTCACCGGATGAACTCAGCAGCCGGATTCAGTGCTTGAACTTGCTCTTAAGCGGCCGGCCTGGTGTCGTGATCGCGACACCGCAGGGCCTGCAGTATCCGTTAAGTGCCCCGGCCCTGTTTAAAAAGGGACAGAAGCATTTTGCAGTTGGGGATGAAATTGCCCTACCCGACCTGGCCCAGTGGCTGAACCAGGCTGGCTACCACCGGGAAAACCTGGTAGTTAAGCCGGGCGAGTTCGCTATGCGGGGGGACATCGTCGACCTTTATCCTTTGGACCGGGAAAGCCCCCTGCGCCTGGAATTTTTCGGCGACGAAATCGACACGATCAAGACTTTTGACCTGACCAGCCAGCGCAGCCTGGAGGAATTGCCGGAAGCGACCGTACCAGCGGCCAGTGACCACGTCTTTACGGCAGAAGACTTGGACCGAGCGGGCCGGGAACTGGCCGGCGACCTGCCAAAGGAAGCAGCCGCCAGCCTGGAAATCGCCCAGGAAGCCTTAGCTAACGGGCAATTGCCGGATGACTGCAACCGCTATCTGGACTACCTTTTGTCTAAGTCTTTCAGTCTGCTGGACTACCTGCCGGCTAAAGGATTGCTTTTGTTTAACGACTGGCAGCTGATCGCCGAAAGCGTCAAGAATATGGGCGCTATCAATGATGACTACCTGGCCAGCCAGATCGCCAGCAAGATGATGACCAGCCGGCAGAAGCTGCGCCTGGATTTTGACGCGGTGCTAAAGGCAGATTGCCACCACCGCCTCTATGTCAGTCTGATGGCCCACTCCATGGGCCGGCTCCGTTTTGGCCAGCATTTGGCCTGGGACAGCCGGGAGCCGCAGCAGTTTTTCAGCCAGATGGAGCTTTTGAAAACTGAGCTGGACTCTTATGCCAAAAAGGGGCAGACGGTGGTCTTGCAGGTGTCCAGCCGCCGGCAGGCGGAGGAATTCAACCGGAGCTGCCATGACTATGACATCTACCTGCCTTTGGCAGAAGCAGACGGCTTAAAAGAAGGCCGGGCCCAGCTGGTTATCGGCGGCTATGCTAGCGGCTTTGTCCTGCCGGACAGCGACCTGGTCTATCTGACGGAAAAGGAGCTTTTTAACCAAAACAAGCGGTCGAAGAAGCGGATCAAGACCCTGGAAAATGCCCAGCGCCTGCGCAGCTATACAGAGCTCAAGCCTGGCGACTATGTGGTCCACGTCAACCATGGTATCGGCCGCTTTGAAGGCATCCAGACCTTGGAAACCGACGGGAAAAAGCGGGACTACATCACCATCACCTACCAAAAGGGTGACCAGCTGTTTGTCCCGGATGACCAATTGAGCCTGGTGCAAAAGTACGTGGCTTCAGAAGGCAAGCAGCCCCACATCAACAAGCTAGGCGGCAGCGAGTGGGCCAAGACCAAGAAGCGGGTTGCGGCCAGAGTTGAGGACATCGCTGACGACTTGATCGAACTGTATGCAAAAAGAGAGGCGGAGAAGGGCTTTGCCTTTTCCCCGGATGGATCAGACCAGGCGGCCTTTGAAGCTGCCTTTCCTTATGAGCCAACCCCTGACCAATTGCGGGCTACTGCGGAAATCAAGGCTGACATGGAAAAGGCCAAGCCGATGGACCGGCTTTTGGTCGGGGATGTCGGCTTCGGGAAAACCGAAGTAGCCATGCGGGCAGCCTTTAAGGCCATCTGTGACGGCAAGCAGGTCGCCTTCTTGGTGCCCACGACCATCCTGGCCCAGCAGCACTACCAGACCATCAAGGACCGCTTTAAGGGCTTCCCGGTGGAAATTGCCAGCTTCTCCCGTTTCCAGGGCCAGGCCGAAAGCAAGAAGATCGTGGCCGGCCTGAAAGACGGCAGTATTGACTTGGTAGTCGGCACCCACCGGATTTTGTCCAAGGACGTCCAGTTAAAGGACCTGGGCCTGCTCATTATCGATGAAGAGCAGCGCTTTGGGGTGGCCCACAAGGAAAAGCTCAAGCAGCTGAAGACAAATATTGATGTTTTGACCCTAACGGCCACTCCGATCCCGCGGACTCTGCACATGTCCATGATCGGGATCAGAGACCTGTCAGTCATGGAAACGCCGCCGCAAAACCGGTATCCAATCCAGACTTATGTCCTGGAACAGTTGCCAGGCACGGTCAAGGAGGCCTGCCAAAGGGAAATGCAGCGGGGCGGCCAGGTCTTTTACCTGCACAACCGGGTCGGGGACATCGAAGAAACGGTTGCCCGCTTGGAGCAGCTTTTGCCAGAGGCTCGGATCGCCTATGCCCATGGGCAGATGAGTGAAAACCAATTGGAAGACATCTTGAGCCGCTTTTTGGACCGGGAATTCGACATTTTGGTCACCACGACCATCATTGAAACCGGGATCGACATGCCTAATGTCAACACCATGATCATTGAAGATGCCGACCACTACGGCCTCAGCCAGCTCTACCAATTGCGGGGCCGGATCGGCCGGTCAGCCCGCCTGGCCTATGCCTACTTCCTCTACCAGCCAAACAAGGTTCTGACGGAAGTGGGGGAAAAGCGGCTGGACGCCATCCGGGACTTTACCGAGCTGGGGGCAGGCTTCAAGATCGCCATGCGGGACTTGTCCATCCGCGGGGCCGGCAACATGCTGGGGGCCCAGCAGCACGGCTTTATCGACAGCGTCGGCTACGACCTCTACTCACAGATGCTGGCTGACGCCATCAAGGAGCGGCAGGGGAAGAAGCCAGTCAAAAAGAGCAATGCCGAGGTCGACCTGGGCCTGGAAGCTTATATTCCAGAAGACTACATCGCCGACCAGGAGCAGAAAATCGAATTTTACAAGAAGATCAAGGGGATCGGCAGCCTGCAGAACCGGGAAGACATCGAAGATGAGCTCCTGGACCGCTTTGGTGACTATCCGGCAGCTGTTGAGAACCTGCTCAACGTGGCCAGCCTGAAGGCCAGCTGCGACTTGGCCCAGATCTTGACTCTGGTCAAGGAAAAGGCCCAGATCCGGGTCATTTTCAGTGATTCCGGCAGCCGGGAAATGGAAGGGCCAAACATCTTCAAGGCACTGGAACATGTTTCCTGGAAGGCCCGGATCGCACTTGGCGCCCAAAATCGCCTGGTGGTTACCCTGCTTTTGCCAGACAAGCTGACCCGGCGGGCCATGTTCACGGAACTGGGCACTTTTGCCAAGGACGCGGCGGAGATCATCCAGCGGTAATTTTTTAAGAGCAAAAAGTTAAAGTAGGAAAAGCTAAAAAAGCAAAAATTAACAGACAGGAGACAAGCATGAGAATCGACAAATTTTTGAAAATTTCCCGCCTGGTCAAGCGCAGAACGGTGGCCAAGGAAATGGCTGACCAGGGCCGGGTAAGCGTGAACGGCAAGACCGTCAAGTCCAGCTACAACGTGGTTGTCGGCGATGTAATCGCCGTCGCTTACGGAACCAGGGTAATTAAGGCCAGGGTCCTGGACTTGCGGGAAACGACCAAAAAGGCGGAAGCCGGGGACTTATACGAATTAGTCGACTAATGACTTTTTTTACCAAAGCTGATATACTGAATCTGTTATATGATTTTAGGATAGGGTAGACAGTGATGGGGAACAACAGAGGAAATCAGCAAAATGTAACGCCGCTGCGGCCGGACCAGGATGTCCGCCGCCTGAAGAAGCGGCAGATCAAATTCAGGGAAGTCCACCGGGTCCGGCGCAACCGGCTGCTGGCCTTGATCTTGCTGGTCTTTGCTGTCTTGGGCTTCCAGCTGGCCATGACCAAGGCCCGGACGGCCAAGATCCAGAAGCAGGTCAGCCAGAACCAGGCAACCTTGACCAAGATCAAGAAGAATAAGGAAAAGCTGACCAACGAGCGCGACGATATGAAGGACAGCGACTACGTGGCTAAGGTGATCCGCTACAAGTACAAGTACACTAAAGACGGTGAGCGGGTCTACAACATCAAGGAAAAGGGCGATAACTGATGAATTACAAAGTTGGCCAGCGCCTTGACGGAGTAATCAACAACGTGACAGACCTGGGCATCTTCGTGACCCTGCCCAAGCATAAGAGCGGCCTTGTTCACCGCAATGACTTTGGCAGCGACTGGCCAAGAAAGCGGCAGCACTGGCAGGCAGGCGACCAGGTCAGAGTAGTGGTCCAGAACCTGCGCAAGGGCCGGCTGGACTTGTCCATCCGCCGGGTCAACGATCCGGATCTGATCGACCCGACCAACCAGTTCAGCCAGTTGCGGGCCGGCGACTTTGCCCGGGTCCTCAACCAGGTTGACCAGGAGGCGCGAGCAGAAATAGAGCAGCTGGAAGCTGCCTTGAAATAAAAACGGCCCGAGGGGCTGTTTTTTTGTATGGACGAGGGAGTAAAGCATGGACATTAAAAAAAGACTATCGGCCTTTTTCGCCGAAGAAGGCCTGCCTTTGGAAGGAAATTTCCTGGTCGCGGCCAGCGGCGGTCCGGATTCCATGGCGCTTTTGGATTTAATGCGGCGCTTGCCAGGCGGCTTTCAGCTCTACGCGGCCCACTTAGACCACCAGCTGCGGGCTGACAGCCAAAAAGAGAGCCAGGTGCTGCGGGCCTACTGCCATAAGTACCAGCTTCCCCTGTATGAAAGCGTCTGGCCCAAGTCCCTTCATCCGGAAAGCGGCCTGGAAGCAGCGGCCAGGGACTACCGCTATAACTTCTTGTTTGAAGTGGCCCGGCAGGTCAAGGCAGACTACCTGCTGACAGCCCACCACGGGGACGACTTGCTGGAAAATATCCTGCTCAAGCTGGTCCGGTCAGGTATTCCCCGGGAAATGAACAGCCTCAAACCTGTCAGCCAGCGGGGGCAGGTCAAGCTGGTCCGGCCGCTTCTGGCGGTTGGCAAGGCGGACCTTTTGGCTTACGCGAAAAAGCAGGGGCTGGAATATGTCGAAGACGAGACCAACTTTACAGGCATCACGGCCCGCAACCGCCTGCGCCAGGAGGTCGTCCCGCTTTTGAAAAAGGAGAGTCCGGACCTCTTGGAAAATGCCTGGCGCTTCAGCCAGGAAATGACGGCGGAAGAAGACTACTTTGCCCAGGCAGCTGGCAAGTTGCCGGAGCCGGAGCCCTTCTTTGGCGGCTGGCGGATTCCTAAAGCGGCCGGGCAGGCGGAAAGCGAGCTGGTCAAGGCCTACCTGGAAAATTTTATCCAAAAAAAGTACAATAAAAGAGTCCAGCTGGACCGGATTCTGTTAGCCAACCGGCAAAGCCAGGAAAAAGGGGGGCTCCATCTCAGCTTTTACCAGGGCCACTACTGGCTTTATCCGGTCAAGCAGCCGGCTCCCAGCCCCCTGGAAGAAGTTGTGGCCGGCCAGCCCTTCTTTTTCAGAGGAAATTGTTATCTGTTAAGTGAGGAAAAGCGAGAGGAAAGTCCCCTGGCGGAAATATCATTTCCCGGAAAATTATCTGCCGGGAGCTTGCCAAACGGCCAGCGTCTGCTTTTAAAAGACGGCCGCCGGACTAAGAGCAAGAAGCTTTTCGCTGCGGCTGGAATTCCGCTTGCCTTGCGGGGCAACTGCCTCAGCCTTTTTGCTGGCCAAGAAGCAGTTTATGTTGCAGGCTGCTACCAGCAGGCAGTTAAAGAAGGAAAAAGGCCGCTGTATTTGTACCAAGTGAAAACATGCAAGAAAGGCAGGTAAAAACTTCGATAGTTGTCGGCTTTTATGTTAAAATTCGAGGAGTAATTCTTCGATCTGACGGAGGTCATTTATGAAAAATAATCGGAATCGACTATTTAGCAATGGTCTATTCTACATAGTCGTATTTTTGCTTCTCCTCTGGGGAATAAATTGGGTCCTTGGCGGCAGCAGCAATTCCGGTGCAACTGAAACCATCAGTTACTCGGAATTCGTGAAGAAGCTGCGCAATGGCGAAATCAAGGACTTTAACGTGCAGCCGTCCAACGGGGTCTACTCCGTAACCGGTAGCTACAAGTCAAGTCAAACCAAGTCATCCTCAAGCTCAGATATCTTTGGCGGAAACACTTCCTCCAAGGTGACTGGCTTCTCAACCACGATGCTGGAAAACGACCCCAGCGTCAAGAAGGTCCAGGACCTGGCCCAGTCTGAGAACGTCAAGATGAGCACCCAGGGTGAATCACAATCCAGCAACTGGATCTCAACGATTATCATGCTGGTGCCAACTGTCCTCTTCATCGTCTTGATGGTCATGATGATGAACCAAGGTGGCAGCCGCGGCCAGGGCGGCGGCATCATGAACTTCGGCCGCTCCAACGTCAAGCCGCAGGACCCGAAGAAGAACAAGGTCCGCTTTGACGACGTGGCCGGTGAAGAAGAAGAAAAGCAGGAACTGGTGGAAGTTGTCGAATTCTTGAAGAACCCGGCAAGATATACCAAGCTGGGGGCAAGAATCCCGTCCGGTGTCCTGCTTGAGGGGCCTCCGGGTACTGGTAAGACCTTGCTGGCCAAGGCCGTAGCCGGTGAAGCGGGCGTACCTTTCTTCTACATCTCTGGTTCAGACTTCGTTGAAATGTTCGTCGGGGTCGGGGCCAGCCGTGTCCGTGACCTGTTCACCAACGCCAAGAAGAACGCGCCAAGCATCATCTTCATCGACGAAATCGACGCCATCGGCCGCAAGCGTGGCAATGGCCAGGGCGGCAGCAACGATGAACGTGAACAAACCTTGAACCAGATGCTGGTTGAAATGGACGGCTTTGAAGGCGACGAAGGCGTTATCGTCATGGCCGCGACCAACCGGTCTGACGTGCTTGACCCGGCCTTGACCCGGCCAGGCCGGTTTGACCGGAAGGTCCTGGTTGGTCCTCCGGACGTCAAGGGCCGGGAAGCCATCCTGCGCGTTCACGCCAAGAACAAGCCGCTGGCTGACGACGTCGACTTGAAGGAAGTTGCCCGTCAGACTCCTGGCTTTGTCGGGGCTGACCTGGAAAACGTCCTTAACGAAGCTGCCTTAGTCGCAGCCCGCCGGAACGGGACCAAGATCACCGCGGCCGACATCGATGAAGCTGAAGACCGGGTAATCGCTGGTCCAGCCAAGAAGGACCGGATGATTTCCAAGAAGGAACGCGAACGCGTGGCCTTCCACGAAGCCGGTCACTCAATCTGTGGTCTGGTCTTGAGCGACTCAAGAACTGTCCGCAAGGTGACCATCGTGCCTCGTGGCCGGGCAGGCGGCTACAACATCATGCTGCCGAAGGACGACCAGTTCATCTTGACCAAGAAGCAGCTCTTTGAGCAAATCGTTGGTTTGATGGGTGGCCGGGCCGGTGAAGAAGTCGTGGTCGGCGACCAGTCAACTGGGGCTTCAAACGACTTTGAACAAGCCACGACAATCGCCCGCAGCATGGTGGTCAACTACGGGATGACCGATGAACTGGGCATGGTTGAACTGGAAAAGGAAGGCGAAGGCACTCCTTACGGCTTCAAGCCTTACAGTGAAGCAACCGCGGCCAAGATCGATGAAGCAGTCAAGAAGATCCTGGACGAAGCCCACGCCAAGGCGGTTGAAATTGTTGAAAACAACCGGGAAAAGCACCGGATCATTGCTGAAGCCCTGCTGAAGTACGAAACTCTGGATGAAAAGCAAATCTACTCACTCTACAAGACTGGGAAGATGCCTGAAAAGTCCAGCGAAGAGTTCCCATCTGAAGCCAAGGCTTTGAGCTATGAAGAAGCCAAGGAAGCTGCGCAGAAGCGGGCAGAAGAGAAGGCGGAAGAAGATACTGCTGAAAAGCAAGCTCTGGCAACGCCAAGCGAAGACGCGGTCAAGCCGGAAACCGACGCCGCCAAGCTCGCTGAGCCAGATGCTTCAGCAAGTCAAGAAGACCCTGTTGATTCTCTGCCGACGCCAAGCGAAAGCGACCTGTCAAAGGATCCTGAAAAGGACGACAATGACGCTCCTAGTCAGAAGACTGAACAAACAGACGATTCAGACAAGGATGAATAGAAGAAATAGAGCCGGCAACGGCTCTATTTTTATGGAGGAAAATCATGAACGACTACTTAATCAAAGCAATCAATGCCAGCAAGGACCTGCGCCTTTTGACCATTAACGGCAAGGACCTGGTCGCTGAAGCGCAAAAGCGGCACGACACCTGGTCAGCTTCTTCAGCTGTATTGGGCCGGAGCCTTTTGGGCACGCTTCTCTTAGCTGGGGCAGAATTAAAGGGTGACCAGGAACTGACTTTGCGCCTCTTGGGCGATGGACCGGTTGGGGCAGCCGTGGTTACGGCCAAGTCAGATTTGACTGTTAAGGGCTATGTCCAAAATAACCACGTGGCCTTGCCGGCCAGAGAAGACGGTCACATCGACGTTAAGAAGGCTGTCGGCAAGGGCTGGTTGCAGGTAACCAAGGACCTGGGCTTAAAGCAGCCTTACACCGGTGAAGTGCCGATCGTGTCCGGGGAAATCGCTGAAGACTTGACCTACTACCTGGCCAAGTCAGAACAGATCCCGTCAGCTGTTGGTCTGTCAGTTTTCGTCAACCCGAACGACACCATCGGGGCCGCGGGTGGCTTTTTGCTCCAGGCACTGCCAGGGGCCAGCGAAGAACTCCTGCAGGAAACTGAAGACCGGATCAAGGCCCTGCCGCAGCTCTCATCCGCCTTTTTGGACGGGATGACGCCGGAAGACTTGGCCAAGAAGATCCTGGGCGATGACTGCAAGATCCTGGAAAAGGACGAGGTCTCCTACCACTGCGACTGCTCCAAGGAAAAGTACGCCGGCATGCTGGAGACTTTGAAGGGCAGCCAGCTCAAGGAAATGATCGACGAAGACCACGGAGCTGAACTGGTCTGCAACTTCTGCGGGAACAAGTACAATTTTACGGAAGCAGAACTGCAAGCCATTTTGGACAAAAAGCTGGGAAAATAACTTTATGCTCTAATTATAGTTAAATTAAGCAAAGCTTAAGAAGATGAGTAGTCAGGGGAAGCCTCTACAGAGAACTGTTGGTGCTGAGAAACAGGAGGCGGAAGCTGGCGAAGATGGTCTTGTGTTGGCATGGTCCCGGCGAGTCGCTGATAAGCCGGACCCGCTTAACGCCCGTTAGCGCGTTCAGATCTTCTGACTGGAAGACTTTAAGGGCCCTGGCCGTGAGGCGGGGCTGAATAAAGGGTGGTAACGCGCGAAGACGACCCTTGGCCTCTGGGCCAAGAGGCGTCTCTTTTTCTGGCAGAGCATCTGTTGAGGAAGCTTTTTTGCTTTGAATGATGGGTGGTAACACGCTACTAGCGTCCCTGAGAGTTGATCTCAGGGGCGTTTTTCTTTTTAAGCTGCGATGTGTTTGTTAATAGTTGTTGTTTCTAGTAAAAAACGGAGGAAATCATGACCTTGAAGAAAATTACCGCTGCCGGTCTTTTGACCGCCTCAGCCCTCGTTTTAGCCGCCTGCGGCCAGCAAAAGAGTTCCCAGTCCCAAACCAAGCAAGTCCTTAATTGGATCGAAAGTGCCCAGATCTCAACCCAGGACCCGTCACTGACGACTGACTCCACTTCCTTCCAAGCTCTTTTGAACACCCAGGAAGGGCTCTACCGCCTGGACAAAAAGCAAAAGCCCCAGCTGGCCCTGGCCAAGAGCGCCAAGGTTACTGACGGGGGCAAGACATATACTTTTGTCTTGCGAGACGCCAAGTGGTCCAACGGCCAGGCGATCACGGCCAATGACTTTGTCTACTCCTACCGAAGAAGCTTGAACCCGAAGACCAAGTCTTCCATGGCCTTCTACCTCTACCAGATCGTAAACGCCGAAGCCATCAATGCCGGCAAGAAGCCTGTCAGCAGCCTGGGCGTCAAGGCCTTGAGCAAAAACAAGCTGCAGATCAAGCTGGTCCGGCCGGTTTCTTACTTTAAGCTCCTGCTGGCCTTCCCGCTTTTCTTCCCGGAAAACCAGCAGTTTATTGAAAAAGTCGGCAGCAAGTACGGGACGGCGGCCAAGTACACCATTTCCTCCGGTCCTTTCAAGCTGACCAAGTGGACCGGGTCCAACAAGCAATTTACCCTGGTTAAAAACCAAAACTACTGGGACAAGAAGAACGTGAAGCTGGATAAGGTCAACGAAACCATCAGCGAAACTTCTTCAACTGCCTACAACCTTTACCAGGCTGGCAAGCTGGATGAAACTTACCTGACCGGGGAACAAGTCAAGGCCAACAAGGGCAAGTCCACCTTCTACGACCAGCCGGCTTCCGCTATCCAGCGCCTGGAATTAAACCGCAAGAAGGTCAAAGCCTTTAACAACTTCAACATCCGCCGGGCCCTGTCCTTGGCTATCGACAGAGAGAGCCTGGCCAAGGTCTTGAGTGACGGGTCAGTGGCGGCCAAGGGTTTCGTTCCATCCGGCATGGGGAACAACCCGACGACCGGGGAAGCTTTTTACAAGGAAGCCTATGTCAAGGAAGCAGTCAGCTACAACCTGAAGGAAGCCAAGAAGTACCTGGCCAAGGGCTACAAGGAACTGGGCATCAAGTCCCTTAACCTCAACCTGACGGTCAGCGATACTGACTCCGCCAAGCAGGTGGGCGAATTCCTGCAAAGCAAGCTGGGCGAACTGCCAGGGGTGAAGATCACCGTGACGATCCTGCCATACACGACCTTGATCTCCCGGCAAAGCGCTGGCAACTACCAGCTGACCATCAAGAACTGGCAGGCTATCTTAGGTGACCCGATCAACTTCCTAGATGTTTTTGAAAAGGACTCCAGCTACAACACCAGCGGCTTTGCCAGCAGCAAGTACGACCAGCTGCTCAATGAAGCCGAAAACGTCTACGGCAACAAGCCGGTTCAGCGTTGGAAGCGGCTGGTGGCAGCTGAAAAGCTGTTGATGAATGAACAGGGGACTATCCCGCTGATCCAGACGGCCAAGCCGCAGCTGGTGCAAAGCTACGTCAAGAACGTGTCCTACAACCCGCTGGGCATCCCTTACGACTTCAAGCTTGTTTACATCAAGAAATAGGAGGCAGGCATGGCTTTTTCCGACTTTGATTTTTTAGAAAAAAACTTCATCCACTACGCCAAGGAAGACACCCAGTCCAAATACGCCAATAAAGACCAGGTTCCGACCACGCCTAATCAGGTCAAGATGATGAAGGAACTGGCTGACCAGGTCAAAGACTATGACCTTGAGTCTTATTACAATGAAAAAACTGCCTTCGCGATCGGCCACCTGGCCGCTAATACGGCAGGTGTTGCCCCAATCGGTTTTTTCGCCCATGTGGACACGGTTGAATTTGACGACCGCTTCCCCATCCGCCCCCAAGTCCACCGGGACTACCAGGGGCAAAAGCTGGCCCTGGATGAAGCGAACGGCATTTTCCTGGACCCGGAAGAATTTCCTGACCTGCTGACCTTAAAGGGGCAGACACTGATCACCAGCGACGGGAAAACGGTTCTGGGGACTGACGACAAGGCCGGGGTGGCAGGCCTGCTGGCAGCTCTCAAGTATCTCCATGAGCACCCGGAAGTTGAACATGGCGACATCTATGTGGCTTTTGGCCCGGATGAAGAAATTGGCCTGGGCGGGCAGCGCTTTGACCCGGCTGATTTTCCGGGAGTAGAATTTGCCTATACCTTGGACAATGGCCGGCCAGGCGACTTTGAATACGAGACCTTCAATGCTTCAGCCGCTGATTTGACGATCAAGGGAACCGTGGTCCACCCGGGTGAAGCTTACGGGCTGCTGGTCAACGCCACGACGATCATGACGGAATTTTTGGCGGCCTTGCCCCAAGACCAAGTGCCGGAAAAGTCCCGGGGCCACGAGGGCTTTATTATGGTTACGGACGCCCAGAGCAGTGTCGATTCAGCCCATGTCGGCTTGATCATCCGCGACTTTGACTGGGATGAATTTTTGGCTAAAGAAGATTTGGTCAAAAAGCTCGTCGCTTCCTTAGGGGAAAAATACGGGCCAGACCGCTTCCAGCTGGACCTGCGCCGGCAGTACGAGAATATCTACAACGGGGTCAAGGACCGGCCTTATGTGGTCAACCTGGCCTTAGACAGCTATGAAAAAGCAGGCCTGGCGCCAAATGTACAGACCTTTAGAGGGGGAACCGACGGTAACTTCATCACCAAAAAGGGAATCCCGACCCCCAACCTCTTCAATGGCGGGGGCAACTACCACGGCCGCTACGAATACGTGACGGTCGAGCAGATGGACAAGCTGGCCGAGGTCTTGGTGACGATCGCGGATGAGCATGCCCGCCAGAGCAAGGAGGGGCAAGACAAGCGGCCTCTGGAAAAATACTGGTAAAGATAAGAAGAGCATCCTCTTTTAACGGGGGATGCTCTTTTAGCGGACTTTTGATTTGTCCTTCAGGCCTATTCTTGTTATGATATAAAGTTGTAGTTATTGAAAGGAAAAAGATGGCAATGGACACTACTTGGAAGATACGTGAAATCGAAATCCCCAACCGGGTGATGGTGGCGCCGATGGCTGGCGTTTCCAACATGGCTTTTAGAAAAGTCTGCAAGGAATTCGGCGCCGGCATGGTTGTCTGCGAAATGATTTCCGACCACGGGATCATCTACGGCAACAAGAAAACCTTGAGCATGCTGGACGTCGACCCGGGCGAGCACCCGATGAGCATCCAGATCTTCGGGGGGGCGGAAGACAGCCTTTTGCAGGCGGCCCAGTACATCGACCAGCACACCGATGCCGACATCATCGACATCAACATGGGCTGCCCGGTGCCGAAGGTAACGAAGACTGACGCGGGTTCCAAGTGGCTTTTGGACTCAAACAAGATATACCAAATGATCCACAAGGTTGTCCATAACGTGGAAAAGCCGGTGTCCGTCAAGATGCGGATCGGCTGGGACCGCAAGCACATTTTTGCCGTGGAAAACGCCCTGGCCGCCCAGGAAGCCGGTGCTTCCATGCTGGCCATGCACGGCCGGACCAGAAAGCAGATGTACCAAGGCGAAGCTGACTGGGAAACCCTGCATGAAGTAGCCCAGGTCATGGACATTCCTTTCGTGGCCAACGGGGACATCACGACCCCACAGCTGGCCAAGAAGGCCCTGGATGAGATCGGCTGCACGGCTGTCATGGTTGGCCGGGCTGCCTTGGGCAATCCTTGGATATTAAAGGAAATGACCCACTACCTGGCAACGGGCGAAGAACTGCCGAAGCAGTCCGTCCGGGAAAAGGTGGAAACCGCCAAGCACCAGCTCGACGGCCTGGTCCAACTGCATGGGGAAAAGCGGGCCGTGCCGGAATTTCGCCAGCAGGCAGCATATTATTTGAAGGGAATTCCCCGTTCAGCCCGGACTCGTGCTAAAATAAATGAAGTCTGGACGCGTCAGGAGGTTTTTGACCTGCTTGACGAATTCGTCGAAATTTGCGAAAAAAGGGCGCGGCAGAAGCAAGACCGCGTCGCTGATACCCAATCTATGTAAATGGAGGAAAAACACGTTGGCAAAGAACGAAATTAACGACCAATTGCTTGTTCGTCGGCAAAAGCTTGAAGAACTTAAGGAGATGGGGATTGAACCCTTCGGCCGCAAATATGATCGGGAAGCCCTGGCCCGCGACCTGGACGAAAAGTACTTGGGTCTTGACAAGGACGAACTGAACGCAAATATGCCGAAGACCAAGATCGCTGGCCGGATGCTGGCCAAGCGGGGCAAGGGCAAGGTTGGCTTTGCGGACCTCTATGACCGTAGCGGCAAGATCCAGATCTACGTCCGCAAGGACATGGTCGGTGAAGAAAACTACCAGATTTTCAAGAAGGCCGACCTTGGTGACTTCCTGGGCGTTGAAGGCGAAGTCTTTAAGACTGACTCAGGCGAATTGTCTGTCCGGGCCCAGCACGTGACCTTCCTGTCCAAGGCTTTGCGGCCACTGCCTGACAAGTACCACGGTCTTAAGGACGTTGAATCCATTTATCGCCAACGCTACCTGGACTTGATCACCAACCACGAAAGCTACCAGCGCTTCGTTAACCGGACCAAGATCATCCAGGCCATCCGTGACTACTTGAACGGGCAGGACTTCCTGGAAGTTGAAACGCCAGTTTTGCACAACATCCCAGGCGGGGCTGAAGCACGTCCGTTCATCACCCACCACAACGCTTTGGACATCAACCTCTACATGCGGATTGCCCTGGAATTGCCGCTGAAGCGTCTGATCGTCGGTGACATGGAACGGGTTTACGAAATCGGCCGGGTCTTCAGAAATGAAGGGATGGACCTCAAGCACAACCCTGAATTTACTGAACTGGAAACCTACGCTGCTTACTACGACTTCCACGATGTCATGGATGAAGCTGAAGGCATCATCCGGGCAGCGGCCAAGGTTGTTTCAGAAGACGGCAAGATCAACTACCAGGGCACTGACCTGGACTTGGGCAAGCCATTCCGCCGGGTGCACATGGTTGACCTGATCAAGGAACTGACTGGCGTTGATTTCTGGCAGCCAATGACTCTGGAAGAAGCCCGGAAGGTTGCCGCTGAACACCATGTTGAAGTTGAACCTTACTGGCAAGTTGGCCACATCATCAACGCCTTCTTTGAAAAATTTGGTGAAAAGACAATCGTTGACCCAACCTTCGTTTACGGCCACCCAGTTGAAGTTTCACCGCTGGCCAAGAAGAACGCGGATGACCCGCGCTTCACTGACCGTTTCGAAATCTTCATCATGGGCAATGAATACGGCAACGCCTTCTCAGAACTGAACGACCCGCTTGACCAGCGGGAACGGTTCGAAGCCCAAATGGCTGAACGTGACGCCGGTAACGACGAAGCCGACATCATCGACGAAGACTACCTGCGGGCCATGGAATACGGTATGCCACCTACGGGTGGTCTGGGCATCGGGATCGACCGTCTGGTCATGCTTTTGACCAACGCGGCTTCAATCCGCGACGTCCTCCTCTTCCCAACCATGCGGCCGGAAAAGAACATTAACCTGGACAAGTAGTTCAGATCGCTAAATTTAACTCTCCAGCTTTGCCTGGAGAGTTTTTTGTTTAAAAAAATAAAACGAATCGTTTTCAAGATATGAATATTAGAGCTTTTTTGCTAGAATATAGGCAATCAAATTGCGAGCTGCTATTAGAAAAGGTGAATTTTTGCCAATCTACAAATACTTATTGTCGATCTTAACCACCATCTCCGCCTTGGCTGGGGCCTTTTTGGCTGCCAGCAGCGGCTTACCGGCTTATTTGGCCGGCCATCCCTTAAAGGCGGGGATTTTTGCCGTCCTCTGCCTCTTAGAGGGGCTTAGCGCCTACCTTCTCTGGCGGCCGGGGAAGCGGGCATTAGGTGTTTTGAATGGCGGCCTGCTGGCGGCAGCTTTGCTTTTGTTTTGGCAGGGAGAAGGCCTGGCAGCTGGAAGTGCCCTGGCTTTATTGGCAATCAACTATTTGCTGAAAAGGGAAGAGACCTGGGCCTGGACTCTGGCTTTAGTTTTGAACCTGGTCTTTGCCGCTTTGACCATGCTGCCCCACCAGTTTATGTCTTTCCCGGCTGCCTAGTTTTTTCACGAAAGAAAATGAATTTGGATAAAATCAATTATTACGGGGTCAGCCGGGCTGACTACCAGGCCTGCCAGGAGCAGATTGACCGCCACGCCACAACCTATCTGGTCTTCGTCGTTTTAGTTGCGGTCTTATTGACGGACAAGTTTTGGACAACCGGGGCCTTTTACCTGGCCATGCTGCTGGTCTTCAGCTTTTGCTCCTACTACTTCAAGGGGCCAATCATGTGGGAGCTGGACAGCTTTAACGGCTTGACCTTCACCTTGGTGGCTCTGGCCTTGAACTATATCGTGCAAAGAGAGCGGATCGCCTCTTTCCTGCTTTTTAACAAGTACAAGGAGAACCAGCGCGAGCTCCGGGTCCAGGCTAATTTTGACTACTTGAGCGGGGTGATACTCCGGTCGACCTTCATGGACCTTTCGCAAAAAGCAATCGAGCAGCCGGAGTGCACTGACTTCTTCATCGGCTTGGTTGACATCGACTACTTCAAGCAAATCAACGACAATTACGGCCGCCGGATGGGGGACCTGGCCATTCAAAGGCTGAGCCAGTGCCTGGAAAAAGGGCTGGAAGTCGATTACCGGGACCTGGCTGACTTTGTGGAAAAGTTTGACCCGGCCAAGGACAATGTTTTGGCGCGGCTGGGGAGCGACGAGTTCGTTTTTGCCTGCCACTGCCCGTCGGAAGCGGCTTGCCTTGAGAAAATGCAGGGCCTGCAGGCGGCTTTTGCCAAGGAGGAGATCGCATTAGACGGCCAGCGGCTCAGCTAGCTGCTTTTTTCCTGCGGGGTCATCCACTACCTAAACAACTTGTCTAATGTCGATCAGCTCTACCAAAAGGCCGACCAATTGATGTACGAGGTGAAAAAGCAGGGCGGGGGCAATGTTTTGCTGGCCCGGTCCTAATTTTTTCCGGAAAAGAGATTGACTTTGGATAAAAAGCTCGTATACTTTAAATACAGATTAAGTTTAGCTGGGAAAGTGCTTTCAGCGGCTTAATTTGGTGAATAGGACGATCAACCAGGAAATCACTGCCATGATTTCCTGGTTTTTGTTTGCCCTTTTTTCTAAAAAACGGATTGACATTTTCCCTAAGGCTAGTATACTTAAAACTAAATTAAAAACTGATGAAGAAAGGAGAACTGAGATGGAATTCGCAGCTAAGAATTGCCAAATGCAAGTCATGCCAATGAACATGCTGATGTCCAGCATGCCTTTTAGCGTAGAAGCGAATACCTGTGGTTCACCATCCTAAGCTCGTTACTGTATTGAAGATAGTAACGGCCGCCTGAACTACTGGTTAGTTGGGCGGCTTTTTTACGAGGTAAGGTTCATGTGCAGGAAACGGTATCAACAGACGAAACGCTGGCTGATCCTCTGGCGGGGAGCAGCGATTGGGGCCAGCTGCATGTGTCGCTTGTGTTTGTAACAGCAATATTTCAGCAATCTAATCATTTCCAACAACTAACAACTAAAAAATAAATATTACACAGCAACAACACAAGCGAGGTAAAAAACATGAGTAAAGAAGCTATCAGCAACGAAGGTTTGTCATTTGAAACTTTGCAGGTCCACGCCGGCCAGCCAATCGACGAAACTGGCGCCCGGGCAGTGCCGATCTACCAGACCACGTCCTATGTCTTTGACGACGCTGACCAGGCAGCTGGCCCTTTGCCTTGACCGACGCCTGCAACATCTACAGCCGTTTGACAACCCAACCACGGCTGTTTTTGAAAGCCGGGTGGCTGCCCTGGAAGGCGGCACTGGCGGTGTATCTTTGGCAACTGGGGCGGCAGCGATCACCGCGGCTATCTTGAACGTAGCCGGGGCGGGCGACGAAATCGTAGCTGCTTCCACCATTTGCGGCGGGACCTACGACCTGTTTGCCCAGACCTTGCCGCCATTGGGCATCAAGACCCACTTCGTTGACCCAAGCGACCCGGCCAATTTTGAAAAAGAAATCAACGACCATACCAAGGTGGGTTACGCTGAAACCATCGGCAACCCGAATGCCAACTTGATCGACATTGACGCGGTAGCAGCAGTGGCCCATAAGCACGGGGTTTTGGTCATTATCGACAACACCTTTGCTACCCCTTACCTCTACCGGCCATTTGAACATGGGGCTGACGTGGTTGTCCACTCAGCGACCAAGTTCTTCGGCGGCCACGGGACGACTATGGGCGGGGTAGTCGTGGAAAGCGGCAAGTTTGACTATGAAAAGTCCGGCCGCTACCCGACTTTCACTAACCCTGACCCGTCCTACAAGGACGTGACTTGGGCCAAGCTGGGGGCTGGGGCCTTCACGACCAAGATCCGGGCAACAGTTCTGCGCGACACCGGGGCCAGCCTTAGTCCTTTCAACGCCTTCCTTCTTTTGCAGGGCTTGGAAAGCTTGTCCTTGCGGGTTGAACGCCACGTCTACAACGCGCAAAGAGTATCTGAATACCTTAGCAAGCACCCAAAGGTTGCCTGGGTCCGCTACCCGGGCCTGGCCGACAGCCCGGACCATGCCATGGCTGAACGGGACTTCCCGAAGGGGGTCGGCTCAATCTTCCCCTTTGGCCTGAAGGGCGGGGAAGAAGCCGGCAAACAGCTGATTGACAACTTGAAGCTCTTCTCCCTTTTGGCCAATGTAGCTGACGCTAAGTCCTTGATCATCCAGCCAGCTTCAACCACCCACGCCCAGCTGAACGGCGAAGAACTGGCCAGCGTCGGGATTACTCCGGACTTGATCAGAATTTCCGTTGGGGTGGAAAATATCGACGACCTTTTGGCCGACCTGGACCAGGCCCTGGCCAAGCTGTAATTTTTGAAAAATACTCCTTAATACTAAAAAACGTTTCCTGCTTGAGGAAACGTTTTTTGCGTCTACATCTTCTTGATAGTCTCCATGTCATAGATGGAGTAGTCGCAGCGGTAGATAAAGAGCCGGTGGCCGTCGACATTGATCTGGGTGGTTGATGGCATGTCAGTGGCACTGACCCGGACCTTGTTACCGGCATAAACGGCGATCGGCTTGCCGGCTTGGGACCGGATCATGATGACCTTGCCCTTGGAGAGCCAGTCGTTTCTGAAATTGTTGTACATTATTGACAGAACCGGAATGGACCGCTGCTTGTCGGTAATGGTGACCTTTTTGGAAAAAGTATCTTCGTAATTGCGCAGGCCTTCGTTGGCGATCAAGCTGGAGCCGACATGGATCATCTGCTGGCCGCCGAATTCCACGTCGATGACTTTGGACTGCTCGTCGCCGCTGGAATTTTCCTTGCTCATCGGCTTGTAGGTCTCAATGTAGACTGACTTACCCTTGATCTGGTCGATCTTCTGCCCGTCGTAGTCATAGGTGGAGACGGTAAAGGGGATGCCGACCAGCTTGGACTTGAGGTCCAGGGTGTAGTCGCTGATCATGGAGCAGGAGGACAGGAGAGGCAGGAGGGCCAAGGCCAGGCAGGCCGCCAGGAGTCTTTTCTTTTTCATTTTTTCTCTTCCTTTCATTTAGACAAACGTTTTCTTACTCTTAGTTTAATCGAACTTGCCCCCGAGAAAAATACTATTTTTTATAAAAAAGCCCTTGCCAAGACACGGTTTTTAGATTATCCTAATAGATATGTTGCGGAAGTAGTTCAGTGGTAGAACATCACCTTGCCATGGTGGGGGTCGCGGGTTCGAATCCCGTCTTCCGCTTCTTCGGGAATTAGCTCAGTTTGGTAGAGCGCTACGTTCGGGACGTAGAGGTCACAGGTTCAAATCCTGCATTCCCGATTAGCCAATGTGTGATCAAAGCGTTACTTTATAGCTGCGCTTTTTTCTCATTTATGGGCAAAAAAGACTTGCAAAAGAGAAATTTTTTGGTAAACTAATAAATGTATCGCGGAAGTAGTTCAGTGGTAGAACATCACCTTGCCATGGTGGGGGTCGCGGGTTCGAATCCCGTCTTCCGCTTCATCAAAGACTCGCTAATTTAGCGGGCCTTTTCTTTTTGCCTTATAGTAGATCTGCAGGGCGCCTGGCTTGTCGAAAAGATCGGGAAATGTTATGCTTGCAAGCATAGCAATTTTTGCCTTTTTACCTATTTACTGGCAGACGTGAAGGAGGAAATCATGGCAGCAGCAAGTCAGGCAGAGTACGAGTTATTGCTTGAGCAGGCCAAGGCCTTGACGGCCGGGGAGAGCGACTGGATCGCCAATGCCGGCAATGTTTCGGCCCTTTTGAAGGCGGGGATGAGAAACGTTAATTTTGCCGGGGTATACCGCTTTGAAAAGGGGGAATTGATCCTGGGACCCTTCCAGGGGATGCCGGCCTGCGTGCACATCCAGCTGGGTAAGGGGGTCTGCGGGAAAGCCGCCCTGGAAAAGAAGACGCAGATCGTGGCCAATGTCCATGACTTCCCAGGCCACATAGCCTGCGACAGTGCCTCCAATTCAGAAATCGTCGTGCCGGTTTTTAACCGGGATGGCAGCCTTTGGGGCGTGTACGACTTTGACTCGACTAATTTAGACAATTTTGATGATTTGGACCAGAAGTACTTAGAGCAGATCGCGGCAGTAGCTTTAGGCAACTAGGTCCAGTGTGAGGCGATTTTTATATGCAAAATTCATACAGTAAGAGCAGCAGACAGGTCTTGGAAATTGCCCAGGAACAAGCCAAGGAGTTTCACCACCGCCTGGTCGGGACAGAGCACGTCCTTTTGGCCCTGGTAATCGAAGCTGACGGCAAAGCCGGCAAGATCCTGCGGACCATGAACGTGACGCCGACCGGAGTCAGGGAAGAAATCGAGCGCTACACGGACTACGGCTCAGCGGCCCCGACCAGCTACATGGAATTTTCTCCCCGCCTGACTTTGGCGCTGGATTATGCCAAGCGGAATTCTGAACTCCGGTCCAGCAAGGAAATCGAAACGACTGACATTCTCCAGGCTTTGGTCTCCAGTGAGCAGATCCTGTCAGCCATGATCCTGCGCAACCTGGACGTGGACCTGGAAAACTTGAAAGACGAACTGGACGACGCCAACCAGGTGACCGGGGAAAGCAGCCAGACCAGCCGGCCAGACGCGGCAGGCAGCAGCCAGTCGCAGACGCCGATTTTGGACCGCTTCGGGATCGACTTGAACCGGCGGGCTAAAGAAGGCGACATTGACCCGGTGATCGGCCGCCAGCGGGAACTGGACCGGGTGATTCATATCCTGTCCCGGCGGACCAAGAACAACCCCCTTTTGGTCGGTGAGCCTGGGGTCGGCAAGACCGCGGTCGCTGAAGCTTTGGCCAGCGCGATCGTTGCTAAAAAGGTTCCCCGGGACCTGGCTGACAAGCGGGTGGTTTCACTGGATGTCAACAGCATGGTGGCCGGTACCCGCTACCGGGGTGAATTTGAAGAGCGGATGGACCGCTTAATTAAGGAAGTTACTGCCAGCAAGAATGTCATTCTTTTTGTCGACGAAATCCACTCTTTGGTCAAGGCCGGGGACGCGGAAGGGGCGATGAGCGCCTCCAACACCTTGAAGCCGGCATTGGCCCGCGGGGACATTCAATTGATCGGGGCCACGACTTTTGAAGAATACCGCAAGCACATGGAAAAAGACTCTGCCTTTGTCCGCCGCTTCCAGCTGGTCCGCCTGGCTGAGCCAAATGAAGAGGAAACCCTGCAAATTTTGCATGGGATCAAGGACAAGTATGAAGACTACCACCGGGTAGCTTTGTCAGAAGAAGCCTTGCAGGCAGCAGTTGATTTGTCCAGCCACTACATTGCCGACCGCTACCAGCCGGACAAGGCCATCGACTTGATCGATGAAGCCAGCGCGGCGGTTAAACTGGCTAATGACACTGGCGAAGACAAGGACCTGGCTGAAATCGATTTGGAAATCAGCCGGACTCTCAAGCAGAAGAACGATGAAGCAGCCAAGCAGAACTTTGCCCAAGCGGCCAAGCTGCGCGACCAGGAAATCGCCTTGCGGCAAAAGCGGAATGAGATTGCCAAGAAGCTGGCCGGCAAGGATGAGAAGCGGTCAGTCGTTGGGGCTGAAGACGTGGCCAAGGTGGTCTCCATCTGGACCGGGGTTCCGGTAACCCAGCTTAAGACCAGCGAAAATAAGCGCCTGGCCCACCTGGAAGGGATCCTGCATGAAAGAGTCATCGGCCAAGACGATGCCGTCAAGGCCGTGGCCAATGCCATCCGCCGGTCCAGAAGCGGCTTGAAGGACGAGAACCGGCCGATCGGTTCCTTCCTCTTCCTAGGCCCAACCGGGGTCGGCAAGACTGAACTGGCTAAGGCTGTGGCTGAGGCAGTTTTTGGCTCAGAAGACAATATCATCAGAGTCGACATGTCAGAGTACATGGACCGGGAATCTTCCTCCAAGCTGATCGGGTCAGCGCCTGGCTACGTTGGCTACGAAGAAGGGGGCCAGCTCTCCAACAAAGTCCGGGAACATCCTTACTCAGTGGTTCTTTTTGACGAAGTGGAAAAGGCAAACCCGGAAATTTTCAACGTCTTGCTACGGGTCCTGGATGAAGGCTTCATGACTGATTCTCTGGGCCGGAAGGTCGACTTCAGAAACACGATTATCATCATGACTTCCAACCTTGGTTCCAGAAGCTTGGAAGCTGACAGCCATGTGGGCTTCTCAGCCAGCCAGGAAGACCAGGGCAAGCTGATCGCGGAAAAGGTAACCAGGGCCACCAAGGACTTCTTCCGGCCGGAATTTTTGAACCGGATCGACGAAAAGATCGTCTTCAAGCCCCTGGAAGCCAAGCAGCTGCGGAAAATCGTGACGCTTCTGACCCGGAAACTGGTCAAGCGGCTGGCGGAAAAAGATATTACTTTGCGCCTGTCGCCAGCTGCCTTGGACCAACTGGCCAAGGACGGCTACAATCCGGAAATGGGGGCCCGGCCATTGCGGCGGACCATCCAGGATGAAGTTGAAGACGAATTGGCCCAGGACCTGGTCAGCGAAAAGCTGCAGGCCGGCGATACGGTCAAGATCGGTGCCCGGGGCGGCAAGCTGCGCTTTGAAATCGTCAAGGCCAAGACTGGTGAAAAGATCAAGGGATAATCAATAGATTTTTGGAGGCAGATTATGTTTGGCAAGAAGAATAAAGCTGAAGCTGCTAAGGCAGAAAAAGAAGCAAGCAAGAAGACTGACGGGCGGATCCTGCTTTACAGCGACATCATCGACGCGCTTTACGACGAAATGCCAAGAGAAAGCGGGAGGCCCTGCTGGAAGCTAAGCAGCAGCTGGAACAGAAGGTCTACCTGGGCAAGGTGATGCGGGACTTGCGGATCGCTTTAGAGCCGGTCGCGATCAAATCCCAGCTCAGCCCGCAAGGCAAGCAGATTTTTTGGAATATCACGGCTGGCGGCTACCAGCTCACCGGTGTTGGTCTGGCCAGCCAGGCAGCCATGCTTTTTAGCGGCCGCTAGGGCTTGCTTTCCTTTAAAATTAGTGGTATAATATTGGACGATTTAAAAGGCTGAAGTTCAGGATTTTACTGATATATTGTCCAGTAAAATGATACAGACAAAAACGACTTGTTCGTTTTTGTCTTTTTTATGCCCAAAATCCCGGCCTTTTTAAAATGTAACACAAATGTAATATTTGCTTTCTTCAACAGGATAGAAAGGGTGTTTTCCTTGCTAAACGGACACGTAGTAAATTACGGACAACACCGGACAAGACGCAGCTTCTCACGGATTAAGGAAATCCTGCCGCTGCCAAACTTGACCGACGTACAGACTGAATCATACAAGTGGTTCCTTGACGAAGGCGTTAAGGAAGTTTTCGACGACATTCTGCCAATCAGCGACACTTCTGGCCGCCTGACTCTGGAATACGTCGACTACAAGCTGCAAGAACCTAAGTATACTGTCGATGAATCACGCAAGCACGACGCGACTTACTCCGCTCCAATGCACGTGACTCTGAAGCTGACCAACCACGAAACTGGCGAAATCAAGACCCAAGACGTCTTCTTCGGCGACTTGCCGCTGATGACCAAGTCCGGCTCCTTCATCGTTAACGGGGCGGAAAGAGTTATCGTTTCCCAGTTGGTTAGATCACCTGGTGTCTACTACAGTGGCGAATTCGACAAGAACGGCCGGCAAATCTTCGGCACGACTGTCATCCCTAACCGCGGGGCTTGGCTGGAATTCGAAACTGACGCCAAGAACATTTCCTACGTCCGGGTTGACCGGACCCGGAAGCTTCCTTTATCTGTCCTGGTCCGGGCCCTGGGCTTTGGCTCTGACAGCGAAATCAAGGAAATCTTCGGCGACAGCGACACTTTGGACCTGACTTTGGACAAGGATGTTCACAAGAACCCAGCAGACAGCCGGGTAGCAGAAGCCTTGAAGGACATCTACGACCGCCTGCGTCCAGGTGAACCAAAGACTACCGACTCATCCCGGAGCCTCCTGGTTTCCCGCTTCTTTGACCCACGCCGTTACGACCTGGCTGCTGTTGGCCGCTACAAGGTCAACAAGAAGCTGAGCTTGAAGAACCGGCTTTTGGGCTACACTTTGGCTGAAACCCTGGCTGACCCTGGCACTGGAGAAGTTCTGGCTGCCAAGGGGACGGTTGTCAACAACGAAGTCATGGACGTTCTGAAGGACTACCTGGACCGCGACGACTTCAAGACTGTTACCTACACCCCATCTGATGAAGGTGTAATCCCAGAACCTGTAACTGTTCAGGAAATCAAGGTCTTCTCCCGTGAAATTCCTGACCGGGAAATCAAGCTGATCTCCAACGGACACATTGCTGAAGATGTTAAGTGCATCACTCCAGCCGACATCATCGCTTCTGTCAACTACTTCCTAGAACTCCAAGAAGGCGTCGGCAACATCGACGACATCGACCACTTGGGTAACCGTCGCATTCGCCGGGTTGGTGAATTGCTGCAAAACCAGATGCGGATCGGTTTGGCCCGGATGGAACGGGTTGTCCGCGAACGTATGTCAATTCAAGACGCGGCTACGGTTACTCCGCAGCAATTGATCAACATCCGGCCAATCGTTGGTTCAATCAAGGAATTCTTCGGTTCATCCCAGCTTTCCCAATTCATGGACCAAAACAACCCGCTGGGTGAATTGACCCACAAGCGGCGTATGTCCGCCTTGGGGCCTGGCGGTCTGTCCCGTGACCGGGCCGGCTACGAAGTCCGGGACGTTCACTACACCCACTACGGCCGTCTGTGCCCAATCGAAACGCCAGAAGGCCCTAACATCGGTTTGATCAACTCCATGGCCACTTACGCCATCATCAACAAGTACGGCTTCCTGGAAACCCCATACCGGCGCGTTTCCTGGGCAACCCACAAGGTTACCGACAAGATCGACTACTTGACTGCCGATGAAGAAGACAACTACATCATCGCCGGGGCCAATACTCCTTTGAACGAAGACGGCTCCTTCGTTGATGACGTGATCCTTTGCCGGCACCGGGAAGACAACGTCGAAGTAAGTCCAGACCGGATCGACTACATAGACGTTATTCCAAAGCAGGTTGTTTCCGTAACTTCCGCATGTATTCCATTCCTGGAAAACGACGACTCCAACCGGGCCTTGATGGGGGCCAACCACCAACGTCAGGCTGTTCCTTTGATCAACCCGCACGGTCCGCTTGTGGCTACTGGTATGGAATACCGGGCAGGTCACGACTCCGGTGACGCCTTGCTGGCTGAAGCAGACGGTGAAGTTGAATACGTGGACGCAAACGAAATCCGCGTCCGCCGCGAAGACCAGACACTGGACACTTACACCCTTGAAAAGTACCGCCGGTCAAACGCGACTAAGAACTACAACCAGACGCCAAACGTCAAGCGCGGCGACAAGGTTGTTGACGGCCAGGTAATTGCCAACGGTCCGTCAATGGCTGATGGCGAACTTGCCCTGGGTCAAAACCCGGTTATCGCCTTCACCACTTGGAACATGTACAACTTCGAAGACGCCATCATGCTGAGCGAACGCCTGGTTAAGGAAGACGTCTACACTTCAATCCACATTGAAGACTACGACTCAGAAGCCCGTGACACCAAGCTGGGGCCGGAAGAAATTACCCGGGAAATCCCTAACGTTGGTGAAGACGCCTTGAAGGACCTGGACGAAAACGGGATCATCCGGATCGGTGCCGAAGTTCACGACGGCGACATCCTGGTCGGCAAGGTTACCCCTAAGGGGATAACTGAACTGAGCGCTGAAGAAAGACTGCTGCACGCCATCTTTGGTGAAAAGGCCCGTGAAGTCCGTGATACTTCATTGAGGGTACCTCACGGCGGTGGCGGTGTGGTTCAAGACGTTCAAGTCTTCACCCGTGAAGCCGGCGACGAACTGGCACCAGGCGTTAACACCCTGGTCCGGGTTTACATCGTACAGAAGAGAAAGATCCAAGTCGGGGACAAGATGTCCGGTCGTCACGGTAACAAGGGTACGGTTGCCCTGATTGCTCCAGTTGAAGACATGCCTTACCTGCCAGACGGTACTCCAGTCGACATCTGCTTGAACCCAATGGGTGTGCCATCACGTATGAACATCGGGCAGCTGCTTGAAATCCACTTGGGCCGGGCAGCCCGGGCCTTGGGTATCCACGTGGCTACTCCGGTATTCGACGGGGCCAGCGAAGACGACGTTTGGGACTTTGTCCGCGAAGCCGGCGTTGACTCAGACGGTAAGACTGTCCTTTACGACGGCCGGACCGGTGAACCATTCCACAACCGGGTTTCAGTCGGGGTTATGTACTACCTAAAGCTGACTCACATGGTTGACGACAAGATCCACGCGCGGTCAATCGGGCCTTACTCACTTGTTACCCAACAGCCTTTGGGTGGTAAGGCGCAATTCGGTGGCCAGCGTTTCGGTGAAATGGAAGTCTGGGCTTTGGAAGCCTACGGTGCAGCCTACACCCTGCAAGAAATCCTGACCTACAAGTCTGACGACGTTGTCGGCCGTGTCAAGGCCTACGAAGCAATCGTCAAGGGCGAAAGAATTACTAAGCCAGGCGTGCCTGAATCATTCCGCGTTTTGGTCAAGGAACTGCAATCATTGGGTCTGGACCTGCGCGTTTTGGATAGCGACGAAAACGAAGTTGAACTGCGCGACATGGACGAAGACTCAAATGAACATGTAAACATCGATGCTTTATCTCGCCTTGCGGAAGCGCAAGAAAAGAAGAAGTTGGCCGAAGAAGAGGCCGAAATCGCCGCGGAAGCTGAAGCAGAAGGCAGCGCGGAAGGAGACGCAGCTGAAGCAGATGCTGATGCAAATGAAGCTGAAACTGCTGACGACGACAAGGCTTCAAAGTAATTGGGAGGTTAAACTTTGATCGACGTAAATAAGTTTGAAAGCATGCAGATTGGTTTGGCTTCACCAAACAAGATCAGAAGCTGGTCTTACGGGGAAGTTAAGAAGCCGGAAACCATCAACTACCGGACTTTGAAGCCAGAAAAAGACGGTCTGTTCGATGAACGGATCTTCGGGCCGACCAAGGACTACGCTTGTGCCTGTGGCAAGTACAAGGGCGTTCGCTACAAGGGGATCGTCTGTGACCGGTGCGGGGTTGAAGTAACGACCTCTCACGTGCGCCGGGAACGGATGGGCCACATCGAACTGGCCGCTCCTGTAACCCACATCTGGTACTTCAAGGGTATCCCATCAAGAATGGGTCTGGTTTTGGACGTGTCTCCAAAGCAATTGGAAGAAGTTATCTACTTCGCTGCCTACATTGTCATCGATCCAGGTGACACTGGCCTGGAAGCCAAGCAGCTATTGACTGAAGCTGAATACCGGGAAGAAAAGGCCAAGTACGGCAACCGCTTCGTGGCTAAGATGGGTGCCGAAGCTATCCGCGACCTGCTTAAGCAGGTTGACCTGGACAAGGAAGTTACTGCCCTTAAGGCAGAACTGCAAACCTTGAAGGGGCAAAAGCGTACCCGGGCCATCCGCCGGCTGGACATCCTTGATGCCTTCAGAAACAGCGGCAACAAGCCTGAATGGATGGTTATGGAAACTGTTCCGGTTATTCCGCCGGACTTGCGGCCAATGGTTCAGCTGGAAGGTGGCCGTTTCGCCACTTCCGACTTGAACGACCTTTACCGCCGGGTTATCAACCGTAACAACCGGTTGAAGAAGCTGCTGGACATGCACGCTCCTGGCTTGATCGTGCAAAACGAAGAGCGGATGCTGCAAGAAGCAGTTGACGCCTTGATCGACAACGGCCGCCGGGGCCGCCCAGTTGTTGGGCCAGGCAACCGGCCACTGAAGTCTATCTCACACATGCTGAAGGGTAAGCAAGGGCGTTTCCGTCAAAACTTGCTTGGTAAGCGTGTTGACTACTCCGGCCGTTCAGTTATCGACGTTTCTCCAGAGCTGAAGTTTTACCAATGTGGTGTTCCGCGTCCAATGGCTCTGGAATTGTTCAGGCCATTCGTTATGCGGGAACTTGTCCGCCGGGGCATTGCTTCCAACATCAAGAACGCCAAGCGCAAGATCGACCGGGAAGACGACGACATCTGGGACGTATTGGAATACGTCATTAAGGAACGTCCAGTTCTTTTGAACCGGGCACCTACCCTGCACCGGCTGTCAATCCAGGCCTTTGAACCAGTTTTGGTCCCTGGCAAGGCCCTGCGTTTGCACCCGCTGGCTTGTGAAGCCTACAACGCCGACTTCGACGGTGACCAGATGGCCATCCACGTGCCGTTGTCAGACGAAGCTGTAGCTGAATCCCGCCTCTTGATGCTGGCTGCCCACCACATCTTGACTCCTAAGGACGGTACGCCAATCGTTACTCCGTCCCAGGACATCGTTTTGGGTAACTACTGGCTGACCCAGGCTGAAATCGGCCGGGAAGGCGAAGGCATGATCTTTGCTACTCCAGAAGAAGCAACCATCGCCTACAACAACGGTGATATTCACTACCACACCATCATCGGTGTGTCAGCCGCTTCAATGCCGAAGAAGGACTGGGGCGCGGGCCACGAAGACAGCGTTTTCGTAACTACTTACGGCCGCTTGGTCTTCAACTCCCTCTTCCCAGACGACTACTTCTACATCAACGAACCAACCCAGGACAACTTAAAGCAGCCAATGGCTGACAAGTACTTCCTGGAAGATGGCCAGGACATCCAGGACAAGATCGCTGAAATTGGCCAGGACCTGGTGGCTACGCCATTCAAGAAGGGCTTCCTGGGTGATACTATTTCTGAAATCTACAAGCGCTACCGGGTACAAAGAACTTCTGAATACCTGGACGACTTGAAGGAAATGGGCTACTCAGCTTCAACTATTTCCGGCTTGACCATCGGTATGGCTGACATTCCGGAAACCAAGACCAAGGATGCCTTGGTTGCTGAAGCCCGCAAGCAGGTTAAGCAAGTATCCAAGATGTTCCGCCGGGGCAAGCTGTCCGACAAGGAACGTCACGACAACATCATCAAGATCTGGACTGACTGTAAGGATGCCGTTCAACAGGAAATTGCTGAATTCAAGGACCAAAAGAACCCAATCTCCGTCATGCAGCAGTCCGGTGCCCGTGGTAACATCTCCAACTTTACTCAGCTGGCTGGTATGCGTGGTTTGATGGCCACTCCAAGTGGTGAGTTGTTCGAAATCCCGGTTATCTCCAACTTCAAGGAAGGTCTGACCGTTCTGGAACTGTTCATGTCCACTCACGGCGCCCGGAAGGGGATGACTGACACGGCCTTGAAGACTGCCCAGTCTGGTTACCTGACCCGTCGTTTGGTCGACGTTGCCCAGGACGTTATCATTCGTGAAGACGACTGTGGCACTGACCGCGGCATTACTGCCAAGGCCATCGTTGATAAGGATGCCGGCTTGATTGAATCACTTTACGACCGTCTGGTCGGCCGCTTTACCAACCGGACTATCCGTGACCCGCAAACTGGTGAAGTCATCTGCTCTAAGGGTGTCCTGATGGACGAACAAATGGCGCAGAAGATTGTTGACGCTGGCGTGCAGGAAGTTCAAATCCGGTCAATCCTGACTTGCAACACTTCCCACGGTATCTGCCGGAAGTGCTACGGCCGGAACCTGGCCACTGCCGAAGAAGTTGAAATCGGTGAAGCAGTTGGTACGGTTGCCGCTCAGTCAATCGGTGAACCAGGTACCCAGCTGACCCTGCGTACTTTCCACACCGGTGGTGTTGCCGGCGCAGAAGACATCACTCAAGGTCTGCCTCGTGTGCAAGAACTGTTCGAAGCCCGCAACCCTAAGGGTCGCGCGGTTATCTCTGAAGTTGACGGTGTTGTTGACAAGATCGAAAGCAACGCGGCTGAACACTTGCAGGAAATCACCGTTAAGGGCAAGATCGACACCAGAGTCTACACCATTCCTTACACTGCTAAGCCAGCAGTTCAGGAAGGCGATGAAATCCACCGTGGTGACAAGCTGATCCCTGGTTCTATCGACCCTAAGGAATTGATCAAGGTAACTGACACCTTGACGACTGAAGAATACATCCTGGCTGAAGTCCAGAAGTCATACCGGACTCAGGGGGTTGACCTGGCCGACAAGCACGCCGAAGTCTTGACCAGACAGATGCTGCAGAAGGTCCGGGTTCTTGACCCAGGTGAAACCGACATCTTGCCAGGTGAAGTCATGGACATCGCTGAATTCCGCGACAGAAACCGTGACGTCATCATCAGCGGCGGGATACCGGCTACTGCCCAGGCTTACATTCTGGGTATCACCAAGGCTGCCTTGGAAACCAACAGTTTCCTGTCAGCTGCTTCCTTCCAGGAAACTACCCGGGTTCTTACCGACGCGTCAATCCGCGGCAAGAACGACCCGCTTCTTGGTTTGAAGGAAAACGTCATCATCGGGAAGATCATCCCAGCTGGTACTGGTATGCCAATTTACCGCGACCAAGTGCCAAAGGCAGATGTTCAACAACCAGACTCAGTTTACTCAATCGCTGACTTGGAAAAGAAGATGGAAGACGAAAACAAGGAAACTGAAAGCAAGTAATCCAGTTTAATTAACAAGAAAAAACGCTCGAATGGCTCAAAGTCATCCGAACGTTTTTTCTTTTACTCTAAAGGAAAAATTGGAGGTTGAGGCCCCAGAATAAGTAGGGCAGGAAGGCAAAGGGGTCTTTACCCGGCCGCTTATGCCAAAGCGCGTGGGCGATGGCCAGCAGGGAGGCCAGCAGGAAACTCTTCACAGCAACGGGACATGAAAAATTTAAAGACAGGAGTAAAAAATGCCAAACGTCCCCGCTGCCCATTTTCCCTGTAAAAGCGAGCCAGACCAGGACTGCCAGAAAAATTGCAGCCTGCCCCAGGCCTTCCGTGTTTGATGCCTGGAAAAAATGCATCAGCCCGGTGGCCAGCGGTACGACGAGCAGGCAAGTATCAAAAGACTGTTCATGCAGGTCGCTGACAACCATTAAAAAGAAGTTGATTATAAAGAGCAAAGAAATAGCACTGCTCCTAGAATTGGAGATTAAATAAACTAACAAATTTCCGGTCAGGATGATGTAAGGGATATCATCCGCCAGCCGGCTTTTACACTCAAGAAAGGTATTATAACGATAACGGTCGGCGATGAGAGCTGCCAAAAGACCGCAGAGTAAAGAAATCATTTCGCTGAGCATTTTTTCCCTCCACTTACTATTACACCTTTTTTGCCAATATTTTTTAAAAAGGCAAAAAATGTCAGTTTAGGGATAAACCATCGGGTCGATGTCATGGTTCGGCGTAATGATCCGGAATTCAAAGTCCACGATGTTGAAGGGGAGCTTTAAAGAGAGGGCGTAGGCGGTCAGCTGCCGGTAAACTTAATTAGCGATCAAGTCGCTGGTCATGATTTCCCCGCTGGCCTTGCGGCTGATTGCCCCGTTTAAGGTTACGGCATACTGGTCCTCGCCCTTTATGCCAAGTTCATTCATGTAAGGGGCCAGGGCCCGCGATTGGCCGGCCGGAACAGAGGACGAACTTTAACGCCGCGGTCAAGTGCCTTAGAGATGGCTTCCTTTGTGCTGTCCTGGATTTCTCCTTGGGAGTTGAGCAGGGTGCCGTCAGTGTCGATAGCAACTAATTTGATCATTTTTTCACCTCATTTTTTCTTTTCTACTAACAACAAATTAATATTTTTCGCCTAAAATCAATCTTAGCATAGATAGAAAGCGCTGTCATCGAGTGAAAAAGCGCAGCTTTTTCCAGGCTGGAAATTCTTGAAAAAAAGCTTTGCATTAGCTGGCAAATGGAGTATACTAACAGATGTATGTTTTGAAGATTACTCCGCGAGGCAAAAAAGAAACTCCCGGATATGTGAACAAAATGATATATAAATTTAGGAGGAACTAGTTAATGCCAACCATTAATCAATTGGTTAGAAAAGGCCGTCACTCAAAGACTACTAAGTCAAAGTCACCAGCCTTGAACTACAGCTACAACAGCATGAAGAAGGAACAAGTCTTCAACCCAGCACCACAAATGCGTGGGGTTGCGACTCGTGTCGGTACTATGACACCAAAGAAGCCTAACTCAGCTTTGCGTAAGTACGCCCGTGTACGTCTTTCAAACTTGACTGAAGTTACTGCCTACATCCCAGGTGAAGGCCACAACTTGCAAGAACACTCAGTTGTCCTGATCCGTGGGGGCCGTGTAAAGGACCTTCCTGGTGTACGTTACCACATCGTTCGTGGTGCCCTTGACACTGCTGGTGTTGACGGCAGAAAGCAAGCTCGTTCCAAGTACGGCGCTAAGAAGGGTTAAAGGAGGACTTAAATAATGCCAAGAAAAGGTCATGTTTCAAAGAGAGACGTTTTAGCAGACCCAGTTTACAACTCAAAGCTGGTTACTAAGCTGATCAACCACTTGATGAAGGATGGTAAGAGAGCTCAAGCTTCATCAATCTTGTACGATGCTTTTGACATCATCAAGGACAAGACTGGCAGGGAACCAATGGACGTCTTTGAAGAAGCCATGAACAACGTTAAGCCAGTTTTGGAAGTTAAGGCTCGCCGTATCGGTGGTTCTAACTACCAAGTTCCTGTAGAAGTTCGTCCAGAAAGACAAACTACTTTGGCATTGCGTTGGCTGGTTTCATACTCCCGCTTGCGTAACGAACACACTATGGATGAACGTCTGGCAAACGAATTGATCGATGCCTCAAACAACACTGGTTCAGCTGTTAAGAAGCGTGAAGACGTGCACCGTATGGCAGAAGCTAACCGTGCCTTCGCTCACTACCGTTTCTAATCCAGTGCTCGTTATCTAAGGAGATAGAAAATTATGGCTAACAAACGTGAATTCTCATTAGAGAAGACTCGCAACATCGGTATCATGGCCCACATCGACGCCGGTAAGACTACTACTACTGAACGTATCCTTTACTACACTGGTAAGATCCACAAGATTGGTGAAACTCACGAAGGTGACTCCCAAATGGACTGGATGGAAGAAGAAAAGGAACGTGGGATCACGATCACTTCCGCAGCCACTACTGCGCAATGGAAGGACCACCGGATCAACATCATCGACACCCCAGGACACGTCGACTTCACTATCGAAGTTGAACGTTCCCTGCGTGTCCTTGACGGTGCCGTAACTGTTCTGGACGCACAATCAGGTGTTGAACCACAAACTGAAAACGTTTGGCGTCAAGCTGAAAACTACGGTGTTCCGCGGATCGTCTTCGTTAACAAGATGGACAAGATCGGTGCCAACTTCGACTTCTCAGTTAAGAGTCTGCACGAACGTTTGAACGCTAACGCTATCGCCGTTCAAATGCCTATCGGTGCTGAAGACCAATTCGAAGGCGTTATCGACTTGTTCGACATGGTTGCCGACGTCTACGACGAAGACAAGCTGGGCGCAAAATGGGAAACTATTCCAGTTCCAGACGAATACAAGGAAGAAGCCGAAAGCCGTCGTGAAGAAATGATCGAAGAGATCGCTGAAGTTGACGACGACATTATGGAAAAGTTCCTTGGCGGTGAAGAAATCTCCAACGAAGAACTTAAGGCGGCCTTGCGCCGGGCAACTTTGGACTTGAAGGCCTTCCCAGTATTTGCTGGTTCAGCCTTCAAGAACAAGGGTGTGCAAATGATGCTTGACGGTGTTGTTGACTACCTGCCATCACCACTTGACGTTAAGCCTTACATCGCCCACGACAAGGAAGGCAACGAAGTTGAATTGCTGGCTGACGACAACAAGCCATTTGCAGCTTTGGCCTTCAAGATCGCCACTGACCCATTCGTTGGTCGTTTGACTTTCATCCGTGTCTACACTGGTTCATTGAAATCAGGTTCTTACGTTTTGAACGCTTCAAAGAACCAACGTGAACGTGTTGGTCGTTTGCTGCAAATGCACGCCAACTCACGTACTGAAATCCCAGAAGTCTTCTCAGGTGACATCGCTGGTGCCATCGGTTTGAAGGACACCACTACTGGTGACTCTTTGACTGACCCAGCTCATCCATTGATTCTGGAAAGCCTGGACATCCCAGCTCCAGTTATCCAAGTTTCAGTTGAACCTAAGTCAAAGGCTGACCGGGACAAGATGGATGTCGCTTTGCAAAAGCTGACTGAAGAAGACCCAACTTTCCGGGCTGAAACTAACCCAGAAACTGGTGAAACTTTGATCTCCGGGATGGGTGAGCTTCACCTGGACATCATGGTTGAACGTATGAAGCGTGAATTCAACGTTGAAGCAACCATCGGTGAACCACAAGTTGCCTACCGTGAAACCTTCACTGTACCGACTCAAGCTCAAGGTAAGTTTGTTCGTCAGTCCGGTGGTAAGGGTCAATACGGTGACGTTTGGATCGAATTTACTCCAAACGAAGGCAAGGGCTACGAATTCGAAGACGCCATTGTCGGTGGTGTAGTTCCTCGTGAATACATCCCATCAGTTGACGCTGGTTTGCAAGAAGCCATGAAGAACGGTGTTCTGGCTGGCTACCCATTGATCGACGTTAAGGCTAAGCTGTACGACGGTTCATACCACGAAGTCGACTCAAGTGAAGCTGCCTTCAAGGTTGCCGCATCATTGGCTTTGAAGAACGCTGCTTCAAAGGCCGGCGCTGTTATCCTTGAACCAATCATGAAGGTTCAAGTCATCGCTCCAGAAGAATACCTTGGTGACGTTATGGGCTCAATCACTGCTCGTCGTGGCCAAATGGAAGGTATGGAAGACCGAGCAGGTGCCAAGGTCATCAACGCGATGGTTCCGTTGTCAGAAATGTTTGGTTACGCAACTACCTTGCGTTCATCCACTCAAGGCCGTGGTACCTTCACGATGGTTATGGACCACTACTCACCATGTCCTAAGTCAATCCAAGCTGAAATCATCAAGAAGCGCGGCGGCAACGCTTAATGCTTCCTAGTATGATCTAAGCCTTGATTTAGACCAAAACATAAATCCTAGTAAAGACATTACTTGTCCTTGCTAGGATTTTTTGTATTTTTAAGAAAAAACTGGCTTCTGGAAATATGTTAAAAAGGAAAGGAAAATTTCCCCACCAAGGGAAAGCAATTCCAGGAAACTTTTTCGAAAAAATAGGGCTAAACCCTTGCTATTTAAGGCTTAAGGCCTTATACTAGATGGAGTGCTTTTGAGAGAAAAATGCCCTCTGAGTACAAATTGTAGTTAGCTTAGACGCGGAAGGTTGCGGCACACTAGGCTGCATTGCCACAGTGGTTGTGCAGGGAATTTTCGCCGAGCTAGTCATCTTTTAAAGAAGACGTATAGGAGGTAATTAGATGGCAAATGAAAAGATTCGTATTAGACTAAAGTCTTACGAACACAGCATTCTCGATGAATCAGGTGCTAAGATTGTGGACACTGCGAAGAGAACTGGTGCTGAAATCTCAGGTCCAGTTCCGCTTCCAACTGAAAGAACTTTGTTCACTGTTCTGCGTTCACCACACAAGAACAAGGACTCACGCGAACAATTCGAAATGCGGACCCACAAGCGCCTGATCGACATCTTGAACCCAACCCCTAAGACGGTTGACTCATTGATGAAGCTCGATCTGCCAAGCGGCGTAGACATCGAAATCAAGCTTTAATTTTTAGATAGAAAGAGGTGTAATCATGACCAAAGGAATCTTAGGAAGAAAAGTTGGCATGACTCAAATCTTCACTAAAGATGGTGTTCTTGTGCCAGTAACTGTTATTGAAGCAACTCCAAACGTTGTTATGCAAGTTAAGACTGTAGAAAACGACGGTTACGAAGCTGTACAATTGGGCTACCAAGACAAGCGTGAAGTTTTGAGCAACAAGCCAGAAAAAGGTCATGCTGATAAGGCAAAGACTTCACCTAAGCGCTTCATTCGTGAACTCCGCGGAGTAGAGCTTAGTGACTACGAAGTCGGCTCAGAAGTTACCGTGGAGACGTTCAAGGAAGGTGACGTTGTCAACGTTACTGGTACTTCAAGAGGTCATGGCTACCAAGGTAACATCAAGCGCCACCACCAATCACGTGGTCCTGAAACTCACGGTTCCCGTTACCACAGAATTCCGGGTTCAATGGGTTCAATCATCAACCGCGTGCCAAAGGGCAAGAAGTTGCCAGGTCACATGGGTGTGAAGACTGTTACTATTGAAAACTTAGTAGTAGAAAAAGTTGTTGCAGACAAGAACGTTTTGATGATCAAGGGTAACGTGCCAGGTGCCAAGAACTCATTGATCGTTGTTAAGTCATCTGCAAAGGCTAGCAAGTAGGAAGGAGGACTCAAATGGCTAATTTCAAACTTATGGATCAAAACGGCAACAACGCTGGTGAAGTAACTTTAAACGACAACGTGTTTAGCGTTGAACCAAACGAAGCTGTTGTCTTTGATGCAATCATCAGACAAAGAGCTGGCAAGCGTCAGGGTACCTCTAAGGTGAAGAACAGATCTGCCGTTCGCGGTGGTGGTAAGAAGCCTTGGAGACAAAAGGGTACTGGTCGTGCTCGCCAAGGTTCAATCCGTGCTCCGCAATGGCGCGGCGGTGGTGTTGTCTTTGGGCCTACTCCACGTTCCTACGCTTACAGCATGCCAAGAAAGCAACGCCGGCTGGCTATCAAGTCTGTCTTGTCACAAAAGCTCCTTGACCAAAACTTGGTAGTTCTGGACAAGCTGACTATGGACGCTCCTAAGACTAGGGACTTCGTTGCAATCTTGAACGGCTTGAAGCTTGAAGGCAAGGTTCTGGTTGTTTCAGACGACAAGAACGTACAACTTTCAGCCAAGAACCTGCCAAAGGTTAAGGTTGTTCCAGTTAACGGCTTGAACGTTGAAGACGCCGTTAACTACGACAAGCTCGTTTTGACTCAAGACGACGTTAAGAAGATTGAGGAGGTATTGGCTTAATGGACGCACGCGACATTATCTTAAGACCTGTTATCACTGAAAAGTCAGCCGACTTGATGGACAGCAAGAAGTACACTTTCGACGTGGCCTTAACTGCTACCAAGCTTCAAGTTCGCGACGCTATTGAAGAAATCTTCGATGTTAAGGTTAAGAGCGTGAACATCATGAATGTTCGCGGCAAGGAAAAGCGCGTAGGCCGCTACACTGGCAAGATTGCCCGTCGCAGAAAGGCTATCGTTGCTTTAACTGAAGATTCAAACGACATCAAGATTTTCAAAGACGAAAACAACGAATAAATCAAGTAATTAGGAGGTCAGTCAATTGGCTATTAAAGTTTACAAGCCAACATCAAACGGTCGTCGTAATATGACTTCTTCTGACTTTGCAGAAATCACTAAGTCAAAGCCTGAAAAGACTTTGCTTGCTTCTAAGTCAAAGACTGCAGGTCGTAACTCATACGGTCACATTACTGTAAGACACCGTGGCGGCGGTCACAAGCAACAATACCGTATCATCGATTTCAAGCGTACTAAGGACAACGTTAAGGCTAAGATTGTCGCAATCGAATACGATCCAAACCGTTCAGCAAACATCGCCTTGTTGCACTACACTGATGGTACTAAGGCTTACATCTTGGCTCCTAAGGGCTTGACTGTAGGTTCATGGGTAGAATCAGGCGTAGATGCCGACATCAAGGTTGGTAACGCATTGCCACTGAAGAATATCCCAACTGGTACTGAAGTTCACAACATCGAACTTAAGCCAGGCAAGGGTGGCCAAATCGCACGTAGTGCTGGTACTTCAGCTCAAGTTTTGGGTGTTGACGGCAAGTACACTCAAGTTCGTCTGCAATCCGGCGAAGTTCGTGAAATCCTTTCAGAATGCCGCGCTACTATCGGTGCTGTCGGTAACGAACAACACTCACTGATCAACATCGGTAAGGCTGGTCGTTCACGTTGGATGGGCAAGCGCCCACAATCCCGTGGTTCTGTAATGAACCCTAACGATCACCCACACGGTGGTGGTGAAGGTAAGGCACCTGTCGGCCGTCCACAGCCAATGACTCCATGGGGCAAGAAGTCACGTGGTATTAAGACTAGAGACAGCAAGAAGGCTAGTGAAAAGTTAATCATCCGTCACCGTAAGGGTCGTAAGTAAGAGAAGGGGGTAATTAAATGAGCCGTAGTATTAAAAAGGGTCCTTTTGCAGATGCCCATCTTTTGAAGAAGGTTGACGAGCAACAAGCCGCGGAAAAGAAGCAAGTTATCAAGACTTGGTCACGTCGTTCAACTATTTTCCCTTCTTTCGTAGGGTTGACTATCGCTGTTTACGACGGTAGAAAGCACGTTCCAGTTTTCGTAACTGAAGACATGGTTGGTCACAAGCTGGGTGAATTCGTGCCTACTAGAACCTTCCGCGGCCACAAGGCTGACGACAAGGCATCCAAGTAATAAGGAAGGAGAAACAATTAAATGGCAGAACAAATTAGTTCAGCTAGAGCTGAAGCAAGAACTGTTCGTATCGCCCCAAGAAAAGCTCGTCTCGTTGTAGACTTGATCCGGGGTAAGAGCGTTGCTGAAGCATTGGCAATTTTGAAGTTTACGCCAAAAGCTGCTTCCCCAATCGTTGAAAAGGTTTTGCGTTCAGCAGTTGCTAACGCAGAACACAACTATGATCTTGAAAGTGCAAACCTTTACGTATCAGAAGCATATGTTAACGAAGGTGCTACTTTGAAGAGATTCCGTCCACGTGCCAAGGGTTCAGCTTCTCCAATCATGAAGAGAACCAGCCACGTAGTTGTTGTTGTTTCAGAATTGAACGATTAAGGGAGGTATTTGAATGGGTTCAAAGATTAACCCAATTGGTTTCCGTCTTGGTGTTAACCGCGACTGGGAAGCTAAATGGTACGCTGCTAGAGGCTACAAGGAAACTTTAAACGAAGACCTTCGGATCAGAAAGTTCCTCGATGAAAAGTTGAAGGATGCCTCCGTATCTACCGTTGAAATTGAACGTGCTGCTAACCGTGTAAACATTGCTATCCACACTGCTCGTCCAGGTATGGTTATCGGTAAGGGCGGCGCTGAAGTTGAAGCCTTGAACAAGGAAATCAACGCTTTGACTAACAAGCAAGTTCACATTAACATTGTTGAAATCAAGAAGCCGGATCTCGAAGCCAAGCTTGTTGCTGACGGCATTGCTCGTCAACTTGAAGCTCGTATCGCTTTCCGTCGTGCCAGCCGTCAAGCTGCACAACGTTCAATGCGTGCCGGCGCCAAGGGTATCAAGGTACAAATTGCAGGCCGTTTGAACGGTGCTGACATAGCTCGCCGTGAATGGCACACTGAAGGCAGTGTTCCACTTCATACTTTAAGAGCTGACATCGACTACGCATGGGTAAACGCATTTACTACCTACGGCGAAATCGGTGTTAAGGTTTGGATCAACCGTGGCGAAATTTTGCCAGGTCGCAAGAATCAACCTGCAAAGCGTTCAAAGGGAGGTAAGAAGTAATGCCTTTAGTACCAAAGCGTGTAAAACACCGTCGTGAATTCCGTGGTAAGATGCGTGGTGCTGCCAAGGGTGGCAAGACTGTAGCATTTGGTGAATACGGTCTTGAAGCACTTGAATCCCACTGGATTACTAACCGCCAAATCGAAGCTGCCCGTGTTGCGATGACTCGTTACATGAAGCGTGGTGGTAAGGTTTGGATCAGAATCTTCCCTCAAAAGTCCTACACTGCTAAGGGTGTTGGTGTACGTATGGGTTCCGGTAAGGGTGCACCAGCAGGTTGGGTAGCTGTAGTTAAGAGAGAAAAGATCATGTTCGAAATTGGGGGCGTTTCAGAAGAAACTGCTCGTGAAGCAATGCGACTCGCAGCAAGCAAGCTTCCAATTAAGTGCAAGTTCGTGAAGAGAGAAGACCAGGAAGCAGGTGGCGCAACTAATGAAGACTAAGGAAATCAGATCATTATCAACTGATGAATTGTTGGCAAAGGAAAAGCAATACAAGGAAGAATTGTTCAACTTGCGTTTCCAACAAGCTACCGGTCAATTAGAAAACACCGCTCGCTTGAGCCAAGTCCGTAAGAACATCGCTCGGATCAAGACTATCTTGAGCGAAAAAGAATTAGAACAAAACTAGTGGAAGGGAGATACTAACTTGAGCGAATCAATCGAAAGAAACCGCCGCCATGTTTACCAAGGCCGTGTCGTTTCCGACAAGATGGATAAGACTATCGTTGTTGTAGTTGATACTTACAAGAACCACCCAGTTTACAGCAAGCGTACTCGTTACTCAAAGAAGTACTACGCTATGGATGAAAATAACGAAGCCAAGGTAGGCGACATCGTTCGTATCATGGAAACCCGTCCATTATCACGTACTAAGCGTTTCCGTTTAGTTGACATTGTTAAGAAATCTGTTTAATTTACGGATTAGCTAAGGGAGGATTTAATAGTGATTCAAACTGAAACTCGTTTGAAGGTAGCTGACAACTCCGGTGCACGTGAATTGCTTGTTATCCGCGTTATGGGCGGGTCAAAGCGTAAGACCGGTAACATCGGTGACATCGTTGTCGCGGCTGTTAAACAAGCAACGCCAGGTGGTGTTGTAAAGAAGGGTGACGTCGTTAAGGCTGTTATCGTAAGAACCAAGTCAGGCGCTCGTCGTGAAGACGGTTCATACATCAAGTTTGACGAAAACGCAGCAGTTATTATCAACGCTGACAAGAGCCCTCGTGGTACTCGTATTTTCGGGCCAGTTGCACGTGAACTTCGTGAAGGGGACTTCATGAAGATCGTTTCACTTGCCCATGAAGTATTGTAAAAGGAGAGTTGCGCGAATGTTCGTTAAAACTGGTGACAAGGTAAAAGTTATTGCCGGCTCAGAAAAAGGCAAGGAAGGCACTGTCCTTTCCGTAAACGTTAAGGAGAACCGCGTGGTTGTTAAGGGCGTTAACATGATCAAGAAGGCTACCAAGGCTTCAGCTTCTAACGCTAACGGCGGTGTGGTTGAAACTGAAGGTTCAATCCACGCTTCTAACGTTAAGGTTATTGCCAAAGCTGAAAGCAACAAAGATTAATTAGGGAAGGAGGACACTAATGGCTAATAGTTTTGCAACTAAGTACAACGAAGAAATCGTTCCTGCATTGACCAAGAAGTTTAACTACACTTCAAGCATGCAAGTACCAAAGATCGACAAGATCGTTTTGAACATGGGTGTTGGTGACGCCGTTGCCAACGCAAAGAACCTGGACGAAGCTGTTGAAGAATTGACTCTGATCTCTGGCCAAAAGCCAATGATTACCAAGGCCAAGAAGTCAATCGCCAACTTCCGTTTGCGTGAAGGTATGTCTATCGGTGCTAAGGTTACCCTTAGAGGCGACAGAATGTACGACTTCCTGAGCAAGCTGATCAACGTATCTCTTCCACGTGTTCGTGACTTCCGTGGTGTTTCAACTCGTTCATTTGACGGCCGGGGCAACTACACTCTGGGTGTTAAGGAACAATTGATCTTCCCAGAAATTGACTTCGATAAGGTTAACCGCACTAGAGGTTTAGATATCGTTATCGTAACTACTGCGCAAACTGATGAAGAAGCTCGTGAACTTTTGACTCAATTTGGCATGCCATTTGCTAAGTAATTTGGAGGACATACATGGCTAAGACATCACAAAAGGTAAGAAATCACCGTCCTGCAAAGTTTTCTTCACGTGAATACACTCGCTGCGAACGTTGTGGGCGTCCACACTCTGTTTACCGCAAGTTTGGTTTGTGCCGCATTTGCCTGAAGGAATTGGGACACAAAGGTCAAATTCCTGGTCTTAAGAAGGCCAGCTGGTAAATCGGTAAGGAGGATAGCATAGATGGTATTGACTGACCCAATCGCAGACTTTTTGACTAGAATCAGAAACGCCAACATGGCTAAGCACGATTCAGTAGAAATTCCTGCATCAAACATTAAGAAGTCACTTACAGAAATCTTGAAGCAAGAAGGTTTCATCCGTGACTACGAAGTAACTGAAGATGGTAAGCAAGGCGTAATCAAGATTACCTTGAAGTACGGTCCAAACGGTGAACGTGTTATCTCCGGTTTGAAGCGTATCTCCAAGCCAGGCTTGAGAAACTACGTTTCGGCTGACAACCTGCCAAAGGTTTTGAACGGTTTAGGTATCGCCATTGTTTCTACTTCAGCTGGTATCCTTACCGACAAGGAAGCTAGAGAAAAGAACGTCGGCGGCGAAGTTATCGCTTACGTTTGGTAATTCTGACAGGAAGGAGAACAATTAATGAGCCGTATTGGTTTAAAGGTAATTAACGTCCCTGAAAGTGTCACTGTTACCAAGAATGGTAATGAAATTACTGTTAAGGGCCCAAAGGGTGAATTGACTAGGGAATTCGACCCACGCATCAAGTTCGAACAAGAAGACGGAGTAATCCGCTTCAGCCGTTCAAACGAAAATGACAAGGCTATCCACGGCACTATGAGAGCCAACTTGGCTAACATGATCGAAGGTGTCGTAAATGGCTACAAAAAGGAATTGAAGCTGATCGGTGTTGGTTACCGTGCAGTTGCCAAGAACAATGTCTTGACTCTGAACGTTGGCTACTCACACCCAGTTGAAATGAAGGCCCCAGAAGGCGTTACTGTGACTACCTCATCAGCAACTGACGTTACTATTGAAGGTATCTCAAAGCAAGTAGTCGGCCAATTTGCTGCGGAAATTCGCGCCGTACGTTCACCTGAACCTTACAAGGGCAAGGGTATCCGTTACGCTGATGAAGTCGTTCGCCGCAAGGAAGGTAAGACTGGTAAGTAATAGAAAATAAATTTTGAGGTGAAATTGTGATTTCAAAACCAGATAAAAACAAGTTGCGCTTAAAGCGCCACAGACGTGTTCGCGGTAAGATTTCTGGTACTGCTGAGCGCCCACGCTTGAGTGTTTTCCGTTCAAACACTAACATCTACGCTCAATTGATTGATGACGTAGCGGGTGTCACGCTTGCAAGTGCCTCAACTTTAGATAAGTCCGTTTCAAAGGATGCTACCAAGGTGGAACAAGCTCAAGCAGTTGGCAAGGCCATTGCTGAAGCTGGTAAAGCCAAGGGCATCACTGAAGTTGTCTTCGACAGAGGTGGTTACATCTACCACGGTCGTGTAAAAGCTTTGGCTGACGCAGCTCGTGAAAACGGCTTAGAATTCTAGGAAAGGAGATTAACATATGGCAAACCGAAACGATTCAAAAAATCGTAGAAACAAGGACGACATCGAAGATCAATTGGTCGCTATCAACCGGATTACCAAGGTTGTTAAGGGTGGTCGCCGTCAAAGATTTGCTGCCTTAGTTGTCGTTGGTGACAAGAAGGGTCACGTTGGCTTTGGTACTGGTAAGGCAACTGAAGTTCCAGAAGCTATCCGTAAAGCAGTCGAAGCCGGCAAGAAGAACATGATCTCAGTTCCAACTGTTGGTACTACTATTCCTCACGAAGTACTTGGCCACTACGGCTCAGGTAACGTTCTGCTTAAGCCAGCTGAAGCCGGTTCAGGTATTGCAGCTGGTGGTGCCGTACGTATCGTTATGGACATGGCTGGTATCGGCGACGTTACTTCCAAGTCTTTGGGTTCAAACACTCCAATCAACGTTATCCGGGCCACTATCGATGGCCTGCAAAAGTTGAAGACTCGCGAAGACGTTCTGAAGCTTCGTGAATCAGCTAAGAGCTTGCAAGATTAGGGAGATTATAGATGACAGATTTAAAGATTACTTTAATTAGAAGTGTTGCCCACCGTCTGCCTGAACAAAGAAAAGTTGTTAAAGCTCTCGGCTTAGGCAAGATCAACAGTACTGTTGTCCAACCAGACAACGCTGCAACTCGTGGCGCGCTGATGAAAATCGCTCACTTAATTTCTGTTGAAGAAGTTAATAAATAAATCAAGGAGGGTCCAATTTAATGAAACTTAATGAATTACACCCATCCGAAGGTTCACGCCACGCTAGAAAGCGTGTCGGCCGTGGTACTTCAAGTGGCTTCGGTAAGACTTCAGGTCGTGGTCAAAAGGGTCAACACGCACGTTCCGGCGGTAACACCCGTTTAGGTTTTGAAGGTGGTCAAATGCCATTGTTCAGAACTATGCCTAAGCGTGGTTTCAAGAACATCAACCGCAAGGAATACGCAATTGTTAACCTTGCAGATTTGAACAAGTTCGAAGAAGGCAGCGTAGTTGACTTCGAAGCTTTGAAGGCTAAGGGCTTGGTTAAGAAGCAATTGTCAGGTGTCAAGGTACTTGGCAACGGCGACTTGAACGTTAAGTTGACTGTAAAGGTTAACAAGGTTTCTGAAGCTGCTAAGAGCGCGATCGAAGCAGCTGGCGGCACTGTAGAGGTGATCTAATGTTTTCAACCTTGAAGAACGCCTTCAAGGATAAGGAAATTAGAAATAAGCTTTTCTATACTTTGTTTATCCTTGTAATTTACCGACTTGGTGCAAATATTACAGTTCCGGGGATAAATGCGAAGGCTCTGACAACAGTTGCTAATACGGGACTTGTTTCCGTGTTAGATACGGTTTCCGGTGGTGGCTTGGACAACTACTCCATCTTCTCATTGGGGGTATCACCATATATCACTGCGCAAATTGTTATCCAACTGTTGCAGATGGACATCGTACCAACGCTTGTCGAATGGGGCAAGCAAGGGGAAGTTGGCCGGCGCAAAACCAACCAGGTTACCCGGTATTTAACGCTGTTTGTTGCTTTTGTCCAGAGTGTGGGGATTACATTAGGTTTTAACGCCTTGTCTTCCTTCGGTCTGGTTAAGACTCAAACTTGGCAAACCTACTTCGAAATCGGTATGATCATGACAGCTGGTACCTTCCTGTTAACTTGGCTGGGTGATGAAATTACCGATAAGGGTTTAGGCAATGGGGTTTCAGTAATTATCTTTGCTGGGATCATTGCCCGTCTGCCAGGCGGACTTTACCAAGTCTTCCAAGATCAGGTGATCAACAACAGTGCAAGTGATCGCTGGCAAGGAGTTGCGTTCTTCGTTGCGCTTATTGTCGCAATTTTATTGGTAACGAAATTCGTTACCTGGGTTGAACAAGCTGATCGTCGTATTCCGATTCAATATACGAGAAGAGCGACGACCAGTGGATCAGAAAGTTTTCTACCATTAAAGGTTAACGTCTCCGGCGTTATTCCAGTTATCTTCGCCAGTTCGTTCATCGTTACGCCAGCCACGATTTTGATGGCTTTCCAAGGCAAGTACGGCGACACGACTTGGTATCAGGTCTTATCGAATATCTTTAGCTTGCAGACGACCCCTGGTGCAATTATCTACACCCTTTTGATCATTCTATTTACTTTCTTCTATGCCTTCGTTCAGGTAAATCCTGAGAAGCTGGCGGAAAACTTACAAAAGCAGGGTGCATATATTCCTAGCGTGTGGCCAGGTAAGGACACTGAGAAATATATGAGTTCAATGTTGCTGAAGCTTTCAACGGTCGGGTCCGTATATCTGGGTTTGGTTGCTTTGCTTCCACAGCTTGCAACCAACATCTGGGACCTGCCAAGTTCAATTGGCTTGGGTGGGACCAGCTTGTTGATTGTTATCGGGGTTGTTCTGGAATTGTCACGGCAAATCAACGGTTTGTTGATGAAGCGTGAATATGCCGGATTTATTAGATAGGTGAAAAAATATGATTAATTTGATTCTTCTTGGTCTGCCAGGCGCAGGCAAGGGTACTGCATCTGAACAAATCGTTGACAAGTATCACTTGGCTCACATTTCAACCGGTGATATGTTTAGAGAAGCTATGGCTAACAAGACTCCAGTAGGCTTGGAAGCCAAGTCTTACATCGACAAGGGCGATTTGGTTCCAGACGAAGTAACTGCTAAGTTGGTTGAAGAACGTCTCGGTCAAGACGACGTTAAGAATGGTTTCATTCTTGACGGTTTCCCGAGAACGACTAACCAGGCAGAATTGCTCGACGAAATCACTACCCGCTTGAACAAGCAGCTGACCAACGTCATCGCAATCGATGTCAAGGAAGAGACTTTAATCGATCGTTTATCTGCACGGTTCATGTGCAAGAATTGCGGCGCAACTTACAACAAGTTTTCAAAGAAACCTAAGGTCGAAGGGACTTGCGACCGCTGCGGCGGCCACGAGTTCTATCAACGTGAAGACGACAAGCCTGAAGTTGTCAAGAACCGGCTGGAAGTTAACGAAAAGATGAACGCTCCATTGAAGGAGTACTATGACAAGAAGGGCTTGCTCGCTACTGTAAACGGCGAACAAGTACCTGAAAAAGTTTTTGCAGATATCGACGCTATCCTGAGCAAGGATTAGCCAAAAGAATTTGCAAATTTTTTCGAACATGTTATAATTTCGAAGTATGACTGTTTTGATTGCGGAGGGGCAACTTTGGCAAAAGATGATGTCATTGAAGTAGAAGGTAAGGTAGTTGATACCTTACCTAATGCTATGTTTAAAGTCGAATTGGAAAACGGTGCCACTATTTTGGCTCACGTTTCCGGCAAGATCAGAATGCACTACATTCGGATCCTGCCTGGCGACCGGGTCACTGTGGAGCTGTCTCCATATGACTTGACTAAAGGTAGAATTACGTATCGGTTTATTAAATAAAAACGGAGGCAAACATGAAGGTTAGACCATCTGTTAAGCCAATGTGCGAACATTGCAAGGTCATTAAGAGACATGGTCGTGTTATGGTTATTTGCCCTGCAAATCCAAAGCACAAGCAACGTCAAGGTTAATTTTAGAAAGTAGGAGGTGCATTCTATGGCACGTATTGCTGGTGTTGACTTACCAAGAGATAAAAGAATTGTTATCGCTTTAACTTACATTTACGGTATCGGTGAACACACTGCACAAGAGATCTGTGCAGCAGCCGGTGTATCTGAAGACGTTCGTTCAAAGGACTTGACCCCAGAACAACAAGAAAAGCTTCGTGCAGAAGTCGACAAGTACCGTGTTGAAGGTGACTTGCGTCGTGAAGTAAGCATGAACATTAAGCGTCTTGTTGATATCGGTTCATACCGTGGTATCCGTCATCGTCGCGGTCTTCCAGTTCGTGGTCAAAACACCAAGAACAACGCACGTACTCGTAAGGGTGCTAAGAGAAGCCGTTAATCCAAAAATAATATAAGGAGGTTTATTGATGCCTGCAAAGAAAACTGCTCATAAGCGTCGTGTGAAGAAGCACGTTGAAAGTGGCGTGGCTCACATTCACTCAACGTTTAACAACACTTTAGTTATGATTACTGACGTTCAAGGTAACGCCGTGGCCTGGTCTTCAGCTGGTGCTTTGGGTTTCAAGGGTAGCCGTAAGTCTACTCCATTTGCTGCGCAAATGGCTGCTGAAGCTGCTGCTAAGAGCGCAATTGACCAAGGTATGAAGCACATCGAAGTATCAGTTAAGGGCCCAGGTTCTGGTCGTGAATCAGCAATCCGTGCTCTGCAAGCTGCTGGTCTGGAAATTACTTCAATCCGTGACGTTACTCCAGTACCTCACAACGGTTCTAGACCACCAAAGCGTCGTCGTGTTTAATAAAATCTTACTTTGAGACGTGCGTTTTGAAAGGGGCCCAGTAATGATTGAATTTAAAAAACCAAATATTACCGTCGTGGATCAAGAAGACAGTTACGGTAAGTTTGTCGTTGAACCGCTGGAGCGTGGGTTTGGTACTACCTTAGGTAATTCACTGCGTCGGGTTTTGCTGACTTCTGTCCCAGGGACCGGTTTGGTGAAGGTGAAGATCGATGGTATCTTGCACGAATTCACTACTGTTCCCGGTGTTAAAGAAGACGTAACCAAGATCATCTTGAACCTGAAGAAGCTTGAACTCCGGGCCTACACTGAAGAAGTAAAGACGATCGAACTCGATGTTGAAGGTCCAGCTACGGTAACTGCTGAAGATTTGAAGGCTGATGCTGATGTTGAAGTCTTGAATCCTGACCAATACATTTGTACCATCGCTCAAGGTGGCCACCTGCACATGTGGATTGATGTCTGCAACGGCCGGGGCTACGTACCAGCCAGCGAAAACAAGACTGCTGAAATGTCCATCGGCGACATTCCAGTTGACTCACTTTTCTCACCAATCGAAAAGGTCAACTACCAAGTTGAATCAACCCGGGTTGGTAAGAGAGAAGACTTTGACAAGCTTACCCTGGAAATTTGGACAAATGGTTCAATCGCTCCGAATGACGCCCTCAACTTTGCCGCCCGTGTTCTGGTCGAACACTTCAAGGCCTTCGAATCAGCTGACGCTGCTGCCGAAATCGGCGAAGTTATGGTAGAACAGGAGAACGACCAAAAGGAAAAGAAACTCGAAATGACTATCGAGGACCTGGACCTTTCAGTTCGTTCATACAACTGCTTGAAGCGGGCTGGCATCAACACCCTGCAAGACTTGACTGTTAAGTCAGAAGCAGAAATGATGCGGGTACGCAACCTGGGACGTAAATCATTGGAAGAAGTTAAGAATAAATTGGCAGACCTGGGTCTTTCACTTCGTCAAGAAGACTAGTCTGCAATAAAGGAGGCACATTAATGTCATACCGTAAATTAGGTTGGGACAGTAGTCAAAGAAAAGCTATGCTCCGTGAAATGACTACCCAATTGATCATTAACGAACGCATCGTCACTACTGAAGCTCGCGCTAAGGAAGTACGTCGCACTGCTGAAAAGATGATCACTTTGGGCAAGCGCGGTGACTTGGCTGCAAGAAGAAAGGCTGCTGCTTTTGTACGTAACGAAATCGCTGATATCCACGAAGAAGGCGACGAAGTAGTTGTTAAGTCAGCACTTCAAAAGCTCTTCAGCGACGTAGCTCCTCGTTACAAGGACCGTAACGGTGGTTACACCCGGATCATGAAGCTGGCAGTTCCTCGTAAGGGTGACGCAGCTCCTATGGTAGTTTTGGAATTGGTTTAATTCTCAAGCTGCAAATTTAATACTTTTTGAAATTATTCATGAAAGCGAGAATAAGCGCGATGATGATGGGGAAACCTTAGTCTAGCTTAGATGGTTCGATATCATCCCTCTTCATGGATGATTTTTTTTTGCGCTTTTTTACCCTGGCTTGATACAATAGAAGGAAATGAGCAAATAGGTGGTGACGCGATGAGCGACAATATTATTTCTTTTGACCATGTGACTTTTACTTACCCGGACAGCCCGCGGCCAGCTTTGTCTGACCTCTCTTTTGCGATTGAGCGGGGAAGCTGGACGGCGCTGATCGGGCATAACGGCAGCGGCAAGTCAACGGTCTCTAAATTGATCAATGGTCTGCTGGCCCCAGATGATTTGGATAAGTCCTCTATTACAGTTGACGGGGTCAAGCTGGGGGCTGACACGGTTTGGGAAGTCAGAGAGAAGGTCGGCATTGTCTTCCAGAATCCTGACAACCAGTTTGTCGGGGCCACGGTCAGTGACGATGTTGCTTTTGGCTTGGAGAACCGGGCAGTGCCCCGGCCGGAAATGCTTAAAATCGTCGCTCAGGCGGTCGCTGACGTTGGTATGGCTGATTATGCTGACAGCGAGCCCAGCAACCTCTCAGGGGGGCAGAAACAGCGCGTAGCGATCGCCGGCATCCTAGCAGTCAAGCCCCAGGTCATCATCCTGGATGAATCGACCTCCATGCTGGACCCGGAAGGCAAGGAGCAGATCTTGGACCTGGTTCGGAAGATCAAGGAAGACAATAACTTGACAGTTATTTCCATCACCCACGACCTGGAAGAAGCCGCGGGGGCTGACCAGGTTTTGGTCTTAGACGACGGCCAGCTGCTAGACCAAGGTAAGCCGGAGGAAATTTTTCCCAAGGTGGAGATGCTGAAGCGGATCGGCCTGGATATTCCCTTTGTCTACCGGCTCAAGCAGCTCTTGAAGGAACGGGGGATTGTGCTCCCGGATGAAATTGATGATGATGAAAAGTTGGTTCAGAGCTTATGGCAATTAAATTCGAAAATGTAAGTTATGTCTACAGCCCTGGCTCACCACTGGAGGCGATCGGCCTGGACCAGCTGAATTTCAGCCTGGAAGAGGGGAAGTTCATCGCTCTGGTTGGCCATACGGGCAGCGGCAAGTCGACCCTAATGCAGCACTTTAACGCGCTGTTAAAGCCCACCAGTGGCAAGATCGAAATCGCGGGCTACACCATCACCCCGGAGACTGGCAACAAGGGCTTGAAGGACCTGCGCCGCAAGGTGAGCCTGGCCTTTCAGTTTTCAGAGGCCCAGCTCTTCGAAAACACGGTTCTAAAGGACGTTGAGTATGGGCCAAGGAACTTTGGCTTCAGTGAAGATGAGGCCCGTGAGGCGGCCTTAAAATGGCTTAAAAAGGTGGGTCTGAAAGATGACTTGATTGAGCATTCGCCATTCGACCTGTCCGGCGGGCAGATGCGGCGGGTGGCCCTGGCTGGGGTTTTGGCCTATGAGCCGGAGATCATCTGTTTAGATGAGCCGGCAGCTGGCCTGGACCCAATGGGGCGGCTGGAAATGATGCAGCTGTTTAAGGACTATCAGGCAGCCGGGCATACGGTGATTTTGGTAACCCACAACATGGATGACGTGGCAGATTACGCCGACGACGTCCTGGCTTTGGAGCATGGCCGCTTGATCAAGCATGCCAGCCCTAAGGAAGTCTTCAAAGACAGTGAATGGCTGCAAAAACACCACCTGGCTGAACCCCGCAGCGCCCGTTTTGCCGCAAAACTTGAGGCGGCTGGCTTAAAGCTGCCGGGCCAGCCTTTAACCATGCCGGAGCTGGCGGATGCGATCAAGCAAAGCTTGAAGGGGGGAGAGCATGAGTAAGATTATTATCGGCCGCTACCTGCCGGGGACGACCTTTGTCTACCGGGTAGACCCGCGGGCCAAGCTGCTGACGACTTTTTACTTTATCATCATGATCTTCCTGGCCAACAACTGGGTCAGCTATCTGGTGATCAGCATCTTCGGCCTGGCCTACGTTTTCGCGACGGGACTGAAGGCCAGAGTTTTTTGGGACGGGGTCAAGCCAATGATTTGGATGATTGTTTTCACCTCCCTTCTGCAGACCTTCTTCATGGCCGGTGGAAAAGTCTACTGGCACTGGTGGATATTTACCCTGTCCAGCGAGGGCTTGATCAATGGTTTGTACGTTTTCATCCGTTTTGCCATGATCATTCTGGTGTCAACAGTGATGACGGTGACGACCAAGCCCCTGGAAATCGCGGATGCCATGGAATGGATGCTGACGCCGCTCAAGCTCTTCAAGGTCAACGTGGGCATGATTAGTTTGGTGATTTCGATCGCCCTGCGCTTCGTGCCGACCTTGTTTGATCAGACGGTCAAGATCATGAATGCCCAGCGGTCCCGGGGTGCCGACTTTAACGACGGCGGCCTGGTCAAGCGGGCCAAGTCAGTTGTCCCGATGCTGGTGCCGCTTTTTATCGATTCTCTGGAAGTGGCCCTGGACTTGTCCACAGCCATGGAATCCCGGGGCTACAAGGGCAGTGAGGGCCGGACCCGCTACCGGATCCTGGAATGGAGTAAGGTGGACTTGATTCCAGTAGCCTACTGCCTGCTGTTGACAATTTTGATGATCACGACAAGGAAGCATTGATGACGAGCAGATACAAATTGACATTGTCCTATGACGGCCATGACTTTCATGGCTTCCAGTCCCAGCCGGGGCAAAGAACGATTCAAGGGACGGTAGAGGAGATTCTCAAGCAGATGACTAAGGGCCAGGAGGTCCGGGTCTTCGGGTCAGGCCGGACTGATGCCGGAGTCCACTCAGTCGGGCAGGTAATCCACTTTGACTATCCAGGCAGGGAAATTCCGGCAGCCAACATGATCAAGGCCCTAAATTCCCAGCTGCCGATGGATATGGTTTTTACTGACTGTGAAATTGTGGATAAAGATTTCCACTCCCGTTTTTCCGTCAAGGGGAAGTGGTACCGCTACCGGGTCAGCCTGGACGGCTTCGTAAACCCCTTTAAGCGTTTTTACACAGGACACTACCCATATCCGGTAGATGTGGAAAAGATGCAAGAAGCCGCCAAGGACCTCCTGGGCCGGCATGATTTTACCAGTTTCGCGGCCAGCGGCGGGCAGATTGAGGATAAAGTCCGGGACATGTACTATGTCAACGTGGCCCTGGATGAAGAAAACAACGAAGTGATCATGGACTTTATCGCGACCGGCTTTTTGTACAACATGGTCCGGATCCTGGTGGCCACTTTGCTGGAGATCGGCAATGGCCGCCGGCCGGTGCACGACTTAAAGCGGGTGATCGCGGCCAAGAACCGACTGGAGGTCCAGCAGACCGCCCAGGCCTGCGGCTTGTACCTCTACCATGTCTTTTACGAGGAAGTGCCAAGAAAATATCGGCTCGACCTTGATTTATAATTGACATTTTGGTATTTAGGACATATGATATAAAAGTATGTTTGTCCACGGTAGGCCCCGGAAACTTATTGTATTCAAACTACGAATTAAACGGAGGAATTTACATTGCGTACTACACCATTAGCAAAGACTAGTGAAATTGAACGTAAGTGGTACTTGATTGACGCTACTGATGTTTCATTGGGTCGTCTTTCAACTGCTGTTGCTACTATCCTTAGAGGTAAGAACAAGCCTCAATTTACCCCAAACGTTGACACTGGTGACAACGTCATCATCGTTAACGCTTCTAAGTTAAAGCTGACTGGTAAGAAGGCAACTGACAAGATCTACTACCACCACTCAGAATACCGTGGCGGCTTGAAGTCTGTATCAGCTGGCGAATTGCTTGCCAAGAACCCTGTTAAATTGGTTGAATTGTCAGTTAAGGGTATGCTTCCAAAGAACACTCTTGGCCACCAAGAATTCTTGAAGATGCACGTTTATGCTGGTGAAGAACACAAGCACGAAGCGCAAAAGCCTGAAAAGTTAGACATTAACAATTTGATCTAGGAGGTAGTTTAGATGGCACAACAAGTTGCATATGCAGGTACTGGTCGTCGTAAGGACGCCGTAGCTCGCGTTCGTTTAGTACCAGGCGATGGTAAGATCACTGTTAACAACAAGGATGTTGCTGACTACATTCCATTGCCAATCTTGGTTAAGGACCTTAAGCAACCTTTGACTTTGACTGAAACTGAAGGCCAATACGACGTTATCGTTAACGTTAACGGTGGTGGTTTCTCAGGTCAAGCCGGTGCGATCCGTCATGGTATCGCCCGTGCCCTTCTTGAAGTAGACCCAGACTTCCGTGGTCCACTGAAGAAGGCCGGCTTCTTGACTCGTGACCCAAGAATGAAGGAAAGAAAGAAGCCAGGTCTGAAGAAGGCCCGCAAGGCTTCACAATTCTCAAAGCGTTAATCTGGATCGTCAAGAACGGCATCAGATCAGCGGTTTCGAGACTTCAAATGGTCACATATGGTCACAACAGATCATATCGAATCCAAGAGATTTAAAGCATCAGCATCTTGCTGGTGCTTTTTTTCTGCATAAAAAATCTTGACTAGTAAAGTTGCCAGAAGCATATTAGCGTTTATATTTATATTTTTTACGGGGTGGTCTGCCGCAAGATTAACGGTACGGACAGAAAGCTCTAATTCGACATATGACTACTTGATTTTAGGAGGGTTTAGTCTGCTTTTAGGTGTTTTGGAACTCTGTAGATTAATGAATAGTAAGTAATCTATAGATCAAAATATAATGTAATGAACAGTGGAGTTTTGCCCATGAATTATGACAATGCCGTTGATCTTATTGACCACTTGATTGACTAGCAATCAGACAAGTATTTTGCTGATTTTGTTCCGTTTACTTTTCAAAATGAAGATTATGCAGAACTAGAGATGTATTTAAACGTACACTTTAAGCCGCGATTTGCAGAAAAAATAAAATTTATTGCCTTCGCGCTGATGTACCAGCACGAGTCATATGTCTACTTAGATGAAGCAGTGTCTAATGCCCTTTACCCCGATCTGAAAAACAAGAACCTACGAAACATTGGCTTAGAGCGGCTGGGAGAAATTCATCGATACTATGGTGATTGACAATTACGGCAGCTTAAATATCTTGCTTAAGCAGGAGAATGATTTTTCGCTTATGCGGATTGAAGATGGTTTTAGTACAATTTTCTTTAACCTTAAGGGGCAGTTGCGGGAAGAAGTAGAGAGTCTGGTTGAGCACCAAGGATTGTATTTCAAGGAATTGACTGAGCAGACCAATTTTTCTCCCCAGCTTATCCACATAAGAAAATTAAGCATAAGTCTAGACCAACTGAATAAAGTAAATCCGTGTCGGACAGAAAACTTCCAAAATTAAGAGTTTCCCGGAAAAAAGGACAAGTCCTTGCATATGCTGCAAAATGAAAATGAAATTAGTACAAGCTTAAAAACAACTAGTGATTACAAAGATGTGAAAGCAGGGGACAAGACAATGAGAATTCCGAAAAACTTAGGTCAAGCACAGTCTGCGTCTGCCTGGCGGCACTCGCGTTAACGGCATGTGGCTCTTCAAAGGCAAGTTCATCTGCCAAAAAACTCTGAACTGGTCAGCTGGTGCTGAAATTCCGACCATGGACCTGTCAAAAGCGACCGACTCAGTTTCCTTTACCCAGATCTCCAACACCTTTGAAGGCCTGTACCGACTGGGCAAGGACTCAAAGATCACTCCCGGCCTGGCAACCTCTGAAAAAGTTTCCAAAGACGGTAAAACTTACACCTTTACCTTGAGAAAGAACGACAAGTTGTCCAACGGGGATCCGGTGACGGCCCAGGACTTTGTCTACTCCTGGCGGCGGACAGTCAACCCGAAGACTGAATCAGAATACTCATACCTCTTCTCTGGCATCAAGAGTGCTGACAAGATCGTAGCTGGCAAGAAGCCGGCAACGAGCCTGGGGATCAAAGTGGTTGGCAAGTACAAGCTGGTCGTGACCCTGGAACGGCGGATCCCTTACTTCAACAATCTGATGTGCTTCGCGGTCTCCTTCCCGCAAAATGAAAAAGCTGTTAAGAACTATGGCTCCAAGTACGGGACAGCTTCCAAGTACCTGGTCTACAACGGCCCTTACATCCAAAAGGGCTGGACCGGGTCCAACCTGTCTTGGAAGATGATCAAGAACAAGTACTACTGGGACAAGAGCAAGGTCAAGCTGAACCAGATCAACTGGAGCGTACAAAAATCAACCACGACCTCCTACAACCTCTACCAGGCTAAGAAGCTGGACGCTACTTCCCTTGATTCTTCACAAATCAAGCAGCTGAAGAGCGATAAGGCCTTCAGCTTGCTGCCGCAAGGCGGGACCTACTACATGACATTCGGCCAGGGCAAGAGCGGCAACGAATACGTCAAGAACGCCAACATCCGCAAGGCCCTGTCACTGGCAATTGACCGCGGGGGCCTGCGGGGGCCTGGTTTCTACCATCTACGGCGGGGCCAGACAGCCAACACCTTGACCTCCAAGGACTTGACCAAGGTCAACGGTAAAGATTACACTAGCTTGATCTCCAGCAGCGCAAAGAGCCTCTACCCGAAGGACGGTAATAAGAAGCTGACCAAGCAGTACCTGGCCAAGGGCCTGGCTGAACTGGGCAAGAGCAAGATTAAGCTGACCTTGATCTCCAGTGACACGGACAGTGCCGAGAAGACGGCAGAATCAATCCAGTCCAACATTGAAGCGACCCTGCCGCAGGTTAAGGTGGAAGTTAACAGCGTGCCATTCAAGACCCTGCTGAACCGCCTGGCCAGCCACAATTTCCAGCTGGGCCTGATCGACTGTATCGCCGACTTCGCTGACCCAATTTCCTGGACCTTTTTACGACTGGCAACAGCCAAAACGACGGGCAATGGTCAAACAGCGAATACGACAAGCTGATTGCTGACTCCAAGACCACCACGTCTGCCAGCCAGCGCTGGAGCGACATGAGCAAGGCTGAAGACATCCTCTTAAACGATGCCGGCATTTGCCCGCTCTACTACTCAACCAGCGTCATGTTGGTCCGGACCAGTGTCAAGAACGCGGTCTACAACCGGGGCAACTGGGACTTCAAGGAAGCCTACGTCAAATAATTGAGATTAAAGATAGTCAAGAAAGCAGATCTCCGGATCTGCTTTCTTGCGCAAAAAAATTTTCCCTTTGACTATAATTAAGGCAGGAACAATTACAGCAGAAGGAAGAGAGGGCATGATGAAAAAAGGCGACAAATTGATTGACTGGGCCATGGAAATCCAAGCGATCGGGCAGACCGGCCTGGCCTACAGCAAGGACGTTTTTGACACGGAGCGCTACAGCCGCCTGCGGGAAATAGCCGCGGAAATGCTGGCGGAAAAAAGCGCGGTCAGTTATGACAAGGTCAAAGAGCTCTTTTGCAATGAAATTGGCTACCAGACTCCGAAAATCGCGACCAGGGCAGCCATCTTTAAAGATGACCAGATTCTCCTGGTCCAGGAAAAAGAAGGGCGCTGGTCCCTGCCCGGCGGCTGGTGTGACGTCGACCAGTCTCCGACTGACAACTGCGTCAAGGAGTGCCGGGAAGAGTCAGGCTTAACTGTCAAACCGGTCAAAATTATCGCAGTTCAAGACCACTTTAAGCACCATGGGTCGATCCACCCTTATGGGATTACCGATATCTATTATCTCTGCCAGTCCTTAGGCGGGGAATTCCAGGCCAACTCCGAAACCAGCCAGGCGGCCTGGTTTAAGGAAGATGATCTGCCACCTTTGGCAGAAAACAAGAACTCAACTGAACAGGTGAAGATGTGCTTTGCCGCGCACCGGGATGCCAACTGGCAAACTTTATTCGACTAAAAAAACTCGCCGTGCGGCGAATTTTTACTATCTATTCATTTTTTCAGCTTTTGCCTATTTTTACTTCTTAGCAGCTAATTGCCGGCAGACCAGGACCATCAGAAGGCAGCTGAGCAAGCTGTAGACCCCGCCAAAGTAGGGGATGCTGGCGATCCCGGTCAAGCCTGCCGCTTGCGCTGCCGTAAAGGAGCCCAGGGAGATGCCGACATTGGCAAAAATCGAGTTGAAGCTGGAGGCAAAGTCGATTGACTCGGGATATTCAGCCGCGGCCAGGTCCAGGAAATAAACCTGGGTGGAAGACCACCCGTACATGCTGTTGACGCAGCAGATGCCGACGATGCACAGGAAGGCCAGCCAGGACAGAGGCAAAAGGGGAGCCAAGAGGAAGAGCAGAACAGTCTGGATGCCAAAGACCAAAGGCAGGCGCTTGATCCCGCCATGGTCGGCCAGAAAGCCCCCAGTCTTGTTGCCGGCAATAAAGGCCAAGCCTAGCAGCAAGAGCAGGACATTCAGCCAGCTCTTCGGGAAATGCATGTAGTCGGTGATCAAGGTCCGGATGTAGGTATAGTAGGTATACTGAGCCGCGCAGACCAGGATGATGGCCAGGAGGGTCAGCTGGATGTGCCAGTTGCCCAGGATGGCAAACTGCTTATTGCCCTTGCTGGACTGGCTCTGCGGAGTGTCCCGGGGCACGAAGGCCAGTAAAAGGATAAAGGTTACGAGTGTCAGAAGCGAGATCATCCAGAAACTAGCATGCTAGGAAAAAAGTCGTTGAGATCAAGGTCCCGATTGGCAGGCCGATGATGGAAGCAATCGAGAAGCCGGCAAAAATCCAGGAGAGAAGCGAGGCTCTTTTTTTCCAAGGGAGCCACGAAGTTGGCGATAACCAGGATCAGGGAAATAATCGCTCCAGCTGTCGTGGCTGACAGGATTCTGGACAAAAGCAGGCTGACATAGCTGTAAGACAGGGCCGTCCAGGTATTGCTGATAAAGAAGATCCCCATCAAAAAGAAGAGGAGCTGGTGGCGCTTGAAATACTTGGTCAGGGAAGTGACCAGGGGAGTGGCGACAGCATAAACCAGGGCAAATACGGTAACCAGGTAGCCCAAGCTGCTGAGGGAGGCATTTATTTCCCGGGAAATATCCGGCAAAACGCTGACGATCATATATTCATTGCAGCCCAACATGAAGGCTACGAAAACGAAGAGAAAGGCTTGAATTTTGTAACGTGATATGAGAAAACTCCTATAAAATACACCGTTAATTAGTTTAACAGAAAAAATGTTAAAATGAAGATGATGTATAGTAAGTCTTGAGTAAAGAAAGCAGGTTTAACCATGCAGATTCAAGTTAAATTGGATAAGGGCTATTTGTCCGATGAATATGCCAAGTATGCCAGCGTTAAAGAAGCCGGCAACCCGGTAGTGTCTTTTCCTTTTACCCTGACGGACCTGCCGGAAGGGACCAAGTACCTGGCCTGGTCCTTGGTCGACTATGATTCCATTCCGGTCTGCGGCTTTGCCTGGATCCACTGGCTGGCTAGCGACGTGCCAGCAGTCAGCGAAATTCCAGCTGACTTCAGCCGGACGACGGATACGCCCCAGGGTTACAATAGTACTGTTTCCCGCTTTTTAACCGATCCAGAAGAAGTGCATACGGGCTATATCGGGCCGACTCCGCCGGACAAGGATCACGACTACCGCTTCCGGGTTTACGCTTTAAGCGAGAAACTGGACCTGGAGCAGCCTTATTACTACAATGAATTCTTGCGTGCCTTAAAGGGCAAGGTTTTGGCTGAAAGCCAGGTCGACCTGCCGGCCCGGGTTTAAGGGAAAAGATTTTTAGAAAAAGTTGCCGAAAACTGTTGACCAAAGCTGGGAAATTAGGTACTATATTATTTGTTGAGCGATCAGCTCACAAGTAAGATTGCGTTATAGCCAAGTGGTAAGGCAACGGTTTTTGGTACCGTCATGCGCTGGTTCGAATCCAGCTAACGCAATAAGCAAGGCCAGGCTGGAAGGCTTGGCCTTTTTTGCGCGCCAAAAAAGCAGGCCAAAAATCTGGTAAAATGGAAAAGAACTTTTGTCGTCAGATTGATTTTAAGAAAAGAGGCAGCAGATGGCTGGAAAAGAACAAGAAGCGGAGAAAATTCAAAAGCTGCTGGGTCAGCTGGAAGAAGAAATTTCCTTGAGCTACTTCCTTAAGCCTGGAACAATCACAGTCGGCCGTGACCTCCTGCAGGCCATGCAGGACCTGTTGGCTAATCCTGAAAATTGGGAAGAAAATTAACAAATTGCGCTTGACTTTAATTTGTTCTTAAGGTATAGTTGAAGCATCAAATGTTGAGAGAGGACAAGAATCATGAACGCTTTAATCAGCAAGAACGCGAAATTCTTTAGCTTTTATTACTGGAACTAGCTTGCATCTGCGGATGCAAGTTTTCAAGCAAGAACATGCATCTGCAGTTTCAATAATAAGAGTTTTCTCAGCATTTTTTGAAACGGCAGGAATTAGGATCCGGTGGTTTCAAGAACACGCGCATTAGCAGACTTTGGTAATCGTGGATCATCTGATCCGCGATTTTTTGTTTTTACGGTAGCCAAGGAGGACACCATGGTTGATTTAACTAAGCACTTTAAGCAGGGCGTAGCGGAAGTAAAGTCTTCAGCTATTCTGAATTTTGCCAAGTATACGAGCCAGTACCCGGACATCGTCAAGTTCACGGTTGGCGAGCCGGACTTCAATACCCCGGACCATATCAAGACGGCTGCCATCAAGGGGATCGTGGACAACCACTCCCACTACGCTCTTTCAAACGGGACGCCAGGCCTCAGAAAAGCCGCGGCAGACTTCCTGGCCCGGCATTACGACATGCACTATGAGCCAAGCGAAATCATCGCTACCAACGGGGCAACGGAAGCCATCTACACGGTCATGTCTGCCATCATCAACCCAGGCGACGTGATGGTCCTGCCAACCCCGATCTTCCCTTTATATATTGCTGACGCGGCCCTGGAAAAAGCTGAAGTTGTCCAGATCGACACTTCCCAGACCGGCTTAAAATTAACGCCAGACCAGCTGCAAGCAGCCGTTGACGAATACGGCGACCGCATCCGGATTCTGGTCATGAACTACCCGACCAACCCGACTGGAGTCATGTACAGCCAGGAAGAGCTGGATGCTTTGGCGGCAGTAATCAAGGACCGGCCAACTTTTGTCCTCTGCGACGAAATCTACAGTGAACTGAACTACGAGCAAGAGCACGCCTCAATGGCCAAGTCCCTCAGAAGCCAGGCCATCGTTTTAAACGGGGTCTCCAAGTCCTGGGCCATGACCGGCTACCGGATCGGGATCATGGCGGCTCCCCAGGAAATCACTGACCAGCTGGCCAAGGTCCACCAGTTCATCACCACGACTGAACCGACCCCAATGCAGGACGCGGCCGAGGAAGCTTTTAAAAACGGGGACAGGGATGCCCGGGAAATGAAGGCCGCCTTCAAAGAGCGCCGGGACTACCTCTACCAGGCTTTGACGGAAACCGGCTTTGAAGTGATCAAACCGCAGGGGGCCTTCTATATCTGGGCCAAGATTCCAGCCGGTCTTAACCAAAAAGACACGGAATTCGTTTATGAGCTGGCTGACCAGGCCTATGTCGGGGTTTGTGCCGGTTCCTGGTTCGCCAAGGGCGGGCAGGGCTGGCTCCGCTTCTCCTACGCGACGGCACTGGACGAAATTAAAGAAGGCGTAAGCAGAATCAAGAAATTTGTCGAGGAAAATAAGAATGACGGAAAGTAAAGAAACAAACGGCCTTAAGCAAGGCACGCTGAACATTTTAAACGGGATCGGACTCGGGGTCATTGCTGCCCTGGTGCCGGCCGCGATTTTAGGCCAGCTGATGAAGGCCCTCTTGGGTGTAGCTCCGGCTTTTGCCCAGACGGTCATCAACATCACTACTTTTACCCAGAGCCTGCTGGCGGCCATGGCCGGCTTCTGCGCGGCCTACCTCTTCCAGATGAACATGATCCAGATGTGTTCGGTCGCAGCCGCGGCCATGATCGGGTCTGGCGCGGTTACTTTTAAAAACGGCTTGATCATGGTCGCCGGGACTGGTGACGTTATCAACATCGGCTTGACGATCACCCTAGCCATCCTCTTGATCAAATTGATTGGCAACAAGCTTGGTTCCTACACGACCATTCTCTTGCCAATCATCGTCTTGGTCGTTGGCGGCGGGATCGGCCTCTTGATATTGCCATACGTTAAAACCGTGACCACTTTTATCGGCATGATCGTCATGGCCTTTACCAAGCTGCAGCCGCTCTTGATGGGTGTCTTGATCGGGATGTCCTTCGCGGCTATGATCGTGTCCCCGATTTCTTCAGTTGGGATCGCGGTGGCGATCGGCTTGACCGGGGTTGCCTCCGGGGCCGCCAACCTGGGCATCACTGGGGCGGCCTACACTTTGGGGATTATGAGCTACAGCGTCAACGGGATGGGGACCACCTTGGCCCACTTCATCGGGACGCCAAAGATCCAGATGACCAATATGCTGGAGAAGCCGAAGCTTTTTGTCCCGGTCCTGCTTTCGTCTGCTTTGTCCGGTCTTCTGGCCGCCATCTTCAACCTGCAGGGGACGCCTAATTCCGCTGGCTTTGGCTTCAGCGGCCTGATCGGCCCCCTGGCGGCTTACGCCAAGATGACGCCAGGCTGGGGGAGCATCATCCTGTTGACGGTTCTCTACGTCGTTTACCCAGTTGCCTTGGGCTTCTTCATGCGCTGGCTCTTCATCGACCGCTTGAGCTTTGCCCAGGCAGAGGACTTGCGCCTGGAAGTTTAAGCCAAAAAGTAAAAAAATTGCCAAAAAACCTTGCACTTGCCCTGTTTTTTTGTTAATATAATGGAGTACTTCAACGGAGGAATAGCGAAGTGGCTAAACGCGGCGGTCTGTAAAACCGCTCTCTCTGAGTTCGGTGGTTCGAATCCACTTTCCTCCATTGATTGCGTTATAGCCAAGTGGTAAGGCAACGGTTTTTGGTACCGTCATGCGCTGGTTCGAATCCAGCTAACGCAATTGTTCTAAAGAACACCCAACCCGAAAGAAGAGCTTCTGACTGAGTCAGGAGCTCTTTTTTTGCCCAAGGTTTAGTAGCCAGCGACTTCATCTACGATGAAAACGGCAAGGACTACCGGACCAGTGCCGGCAAGCTGATGACCTACAATCTGAAGCAGGCCCAAAAGGAATGGGCTTTGGCTAAAAAGCGGCTGGGCAAGTCCAAGATCACCATCGAACTGTTAACCAGTGACATGGACGCTCCCAAGCGGGTAGGCGAATACCTGCAGAGCAACTTGATGAAGAACCTGCCGGGCTTGACCGTTAAGTTGCGGTCAATTCCGCTGAAGTCCCGTTTGGCGGACACGAGCAAGCACAACTTTGACATGGTTTACGGGACTTGGCAGCCAAGCTTCCAGGATCCGATCGACTACTTGACCATCGGTGGCCTCTTCAACCTGGAAAGTGACTACAAGAATAGCACTTTCTGAAAGGAAATCAACCAGGCAAAGAGCACTTACGCCACCCAGCCAAGCGGCAGGCCAGCTTGATCGCCGCCGAAAAGCAATTGATCCAAAAGGATGCTTTCGCAGCACCGCTCTACCAAGCCGGGTTTTCCTACCTGCTTAAGTCCAAGGTGACCAGCTTCCGCCTGTCTCCTTACGGGACTGTTGCCTACTACTGGGACATCAAGATTAAGTAAAACAAGTTTTAAACCGGTAAAAGCTGCCAGTTTCTTTCAATAAGGAAGAAATTGACGGCTTTTTTGCGAAAAAAGAAGCATTCTTCAACTATTTTGCCCGTATAGCGGGTACAATAGTATTTAGTTTTTTGACCAGGAGGCGTACATGAGCAAATACATCAAAGTTGGCAGCGGCGGCGGTGAAGTGACCTGGCACCGGGCCATGCTCGACATGAAGCCGGGGGACTATCTGCTGCTGGAGCCCGGCTATTACGTTTGGCCCCGGGGCCGGCTATTAGAAGACGTGACCATCAAGGGCCTGGGGGCCAGTCCGGAAGACACCCGGATCCGCAGCTTTTTCTCCATCGGTGAAAACAGCTCCCGGGTGGTTTTTGAAAACTTGACCCTGGAACCTTACGGGGACGTAAACACCCTGGATTTGCCGGAAGAGACCAACAGCTACCTGATCCTGCGCGGCTGTGTCTTGACCGGGACCGGCAGCAAGACGACCACGATTTCCGTCAACGGCCAGGACACGGTGGAGATGTACTCCTGCCGCCTGCTCAACGGGACCTTGTCCTTTTTTGAAAAAGCCAATTTCCGCCTGGAAATGGCGGACTGCCTGCTGGACTATGAATCAGAAAAATTCGGCACCATCTCTTTGGAAGGGACCGGGACGGCCATCATTAATAACTCTGAGATCCGGGGGACGGTCAACAGCTTTGACTCCAGCAACATCGAATTAAACATCAATAACTCCGCCATCGGCAACCTTAACTTAGGCGGCAAGAGCTGGGTTAATGTCTACGCTTGCCGTTTTCTTAACCGGGACTACAGCCTTTATGCCCGGGGCGAATGCTGGCTGAACATCCTGGAGAGTCAAATGCCCAGTCAATTGGCCATCGAAGACCACTGCCACTTGCTAATGCAGAACAGCCAGCTCTACAATTTCCAGGCCCGGGGGGAGAGCCAGAGCTTTTTGTCCAATGTGCAGATCGCGGCCGCGGCCAGCCTGGAAGGCAAAAGCTTTATGGACGGCAGCCTAGTGACTTTCTCCGGCAATGGCGACTACCCTTACTTCATCTTCCTGGTCGACCAGGCGGTATTGAAGGGGCGGAACCTGCAATTTGACCCGCAAAACTGGCCGGTTCTGGTCGACAATGATGCCCGCTTAGTGGCCAACGCCCTTTACTACCAGGGGGCGCCACTGGAAATCAAGTGCGAGCATCCAGAAAACATCTCTTTGATGGGAATCAAGTGGACTGAACGGAAGGAATAGAAAGGAGCCAGACCATGCGCTTAATCAAAGTAAGCCAAGACCCCCGGGACTTGTCCTGGGAGCAGGCTTTAGACCAGTTGGAAGACGATGACGTGCTCATGCTGGCTCCCGGCTTTTATGAAATTCCTTTTGGGCAAAAGCTGAAGAATATCGTGATCAAGGGGACGGGGACATCAGCGGATATGACGGTCCTGGTTGGCACGGTCATCCTGGATGGCCGCTATTTGACCTTGGAAAATCTGGCCGTCAAGACTACCGCAATTGCTGGAGCCCTGGTCAGAGTCTATGAAGGAGAAAATGCTCCTTACTTGACCCTGCGCGGCTGCCGGCTGGAAGCAGCAGAAGGGGAGAGGGGCACGGCCCTCTTGACTTTGGGGCCGGTCTGGCTGGAACTTTACTCTTGCCAGCTTAAAGGGGGAATCCGCCTGGTTGGCGATGAGGAGCAGCATGTCCAGATCTCTTCCAGTGAAATCGCGGCAACTCCAGTTGCTTTTACCGGCAATGGCTTTGGCCCATTAGCCATCAGCCAGTCCCAGATCAAGGGGAATTTTGTCCTGGAGGAAAGTTCGGCTTATGAAGGGCACTTTGACCAGACGGCTTTTGACCAGGTGACCAGCTTGAGCGAAGGAAATGACCTTTACTTCACTGAGTCTGCCCTGTCTTTAACTCTGAAAAATGGCCAGGCTGACCTTTTGAACTGCGACTTGCCGGGGACAACCCTTTTGGAAAAAGCTAATTCAGCCGCTTTCCAAAACTGCACTTTTAAGCAATTCAAGCAGGTCAGCGGAAGCAGCAATTTAACTAACTGCCACTTGGAGGCAGGGGAAATCATGGGCCAGGGCAAGGCTGTTTTTTGCCGGCCGCACTTTTCCTGCAGCGAAGGCACTTGGCTTAGTTTAAGGGATGCAAGCCAGGTCCGCCTGCAGAATACCCTCTTAAACGTGGCTGGCAGCCACTTGCGCCTGGCTGACAAAGCCGGGATCTTAGGCAATGTTTTGGAGAGCGACCAGGACCAGCTGCTGGTCAAGCAGACTGGCCAGGGCAAGGTAAAATTGACGGGAATAAAATGTAAACTTGTCTAAAGGCCGCCTTTTGCTATAGAATTTAATTAAGATCCAAGCTTGATGATTCTGTGGGGGGAAAGACCGATGCAAGAACCAATGTATATCAAAATTCACAATCAGCTGCGCCGGGACATTGAAAACCATGTCTACCAGGTGGGGGACCGGATTCCAGCTGAACGGCAGCTGGCTGAACAGTTCAAGGTGTCGCGGATGACCCTGCGCCAGGCCATTAAGACCCTGGAGGAAGAAGGGATTCTGGAAAGGCGGCTGGGTAGCGGGACCTACGTGGCCAGCCAGAAGGTCCAGGAGAAGATGTCCGGGATCATGTCCTTTACCGAAATCACCCGGGCCAACGGGCAGACCCCGTCCAGCAAGCTGGTTTCTTACAAGATCACCCAACCGTCCCTGTCGGAAAAAGAACGCCTGGGCCTGGAGGGCAGCGACAAGGTCCTGCGCATGGAGCGGATCCGTTATGCCGACCAGGTGCCGATCTGCCACGAAATCGTGACGGTGCCGGAAGATTTGATCGCGCCTTTTGCCAAAGATGACGTGTCAAGCCACCTCTACCAGACCTTGGAGAAGCAGGGGGGCTACCAGATCGGGGATGCAACTGAGTACATCTCAGCCGCTGTCGCCAATGAACAGGAGGCCCGCCTGCTCAACTGCCGCCGCGGGGAAGCCTTGATTACCCGCCGGCAGGTTACCAAGCTGGCCGATGGCCGGCCTTTTGAATACACGCGGGCTTCATACGTGGGCGAGCGCTTCGAATTTACTTTCAGCAAATAGCCAGCTGACTAGCTAAAGATGAAAATGACAAAGAGACAGGTTCAGTCCTGCCTCTTTTTGCTTCCTTTAAAAAAGTACAAAAGATGGAACTTGCTTTTGGCGGCAGGGGGCGAATTTGCTAAAATGGACTTGATACTATTAGCTAATGATTAACGAGGCACTATGAAAAGCATACTATTCCGCTTATATCTGGCAGTCATGAAATTTTTGGCCCGCTGGCAAAAAGAAGACCCCAACACATACGTGATCTTGAATGGGTCCGGCCGGTCGGGGTCCAATGGCTACCTCTTTTATAAATACCTGTGCCGCGAGCACCCGGAAGTCACGGCCTACTTGATCGAGCCCTGGCCTTCTTCCCACCTGCCCTGGTCAGACTGGCAAAAAATCGGCCGGGCCAAGTACGTCTTGACCACCCACCAGCCCTTCAAGGTCCGGAAAAGCCAGGTCAACCTGGCCCTCTGGCACGGGATTCCCCTAAAGCGGATGGGGACCATGGCCAACAATACCCAGCGCCGAGATAACCAGAGAAACGAAAAGCTCTGGCACAAGACGGCCGACCTGGTCACCTCCAGTTCGGAACTCTATGAAAGCTTGATGAGCGCCTGCATGGGAATTGAAGGTCCCCGCTATGTCCAGCTGGGTTTCCCCAGAATTGATTCCTTGCTCAAGTCTCCTTATAAAAAGGCCCAGCTCCTGGCTGACTTTTTCTCCTGCCAGGACCCGGAAGCCCAAGTAGGGATCTATGTGCCAACCTTCCGCTATGAATTGGAAGAGCCGGAAGTGATGGAGCGGATTAAAGAAGGGAACTTTTTTGCCTTCAGCGACTTTGACCTGGCCGCTTTAGACCAGGCTCTGGCTGCTAGAAAGCAGTACCTCCTGGTCAAGCTTCACCCATGGGAAATGAAGCTCTTCAGCGACTTCCACTTGGAGGCCAAGCATGTGGCCTTTTTGAACAATTCCGACCTTTTGGCGAAAAAGCTGGACCTCTACGAAATCCTGGGAGCCACCGACTTCCTCATGACCGACTTCTCCTCGATCTACTTTGACTACCTCCACTTGGACAAGCCACTGATTTTCATTACCAACTACCTGGCCCAGTATGAAAAGACCCGGGGCTTTTTGCTGGGGCCTTATGAAAAAATCGTCCCTGGTCCCTGTGTGGCCAGCCAGGCTGACCTGGTCAAGCAGCTGGGTGAAAAAGACGGGTATGGCCTTGAGCGGAAAAAGTGGCTGGAACTGAGCGACCAGGCCGACCACGGCCAGGCCTGCCAGACAATTTTTGATTACTTAAGCGGGGTCTGATCCTTGAAAAGAACTTTTCTGAACATCTTCTATAACGCGGTCTACCAGGTCTTTCTGGTCCTGGTGCCCTTGATCACGGTTCCTTACCTGTCCAGAGTCCTGGGCCCGACGACCTACGGGATCTATTCCAGCGTCAACAACACGGTCCAGTTTCTGATGATCTTCTGCGTCCTGTCTTTATCCAATATCGGGGTCAGAAGCATCTCTAAAGCCCGGGCCAAAAGCAAGAGCGGGGAACTGACCGAGGCCTTCTGGGGCCTGTGGTACTTCCAGTTTATCGGCGGCTTGGTAACCATCGCTTTGACTGTCTTGACCTGCCTGGTCCTCAAGGTCCGTTACTGGAACTACTTCCTGCTGATGCTGCCATACTTGATTGCCGCCCAGTTTGATATCTCCTGGTTCTTCCAGGGTCTGGCTGATTTTGGCCGGGTGGTCTTAAGAAACACTATCGTCAAGATCGTCAGCGTGGTCTTTATCTTGCTTTTGATCAAAAGTCCGGCTGACCTGTGGAAGTATTTCCTGATCATGTCCGTGTCTACCATGCTGGGTTCCTTTGTCTTCTGGTCCAGCATCGGCAAATATGTCGGCCGGCCAGTCAAGCATTTCTACCATTTCGCGGAAACCCGCCGGGCCATCATGACCTTGATGATTCCCCAGATCGCGACCCAGATTTACACTTCCTTGGACAAGCCCCTTTTGGGCCTCTTCCAAAATACGGCCCAGGTCTCTTACTATGACAACTCCCAGCGGATTTCCAACATGATCCTGGGGGTTATCACCAGTATTTCCCTGGTAATCATGCCGCAGATGGCGGTCCAGGGGAAGGAAACCCAGAAGAAGGTCTTGAAGAAGTCCCTGGAAGTCACGACTATGCTGGGAACTATGTTTGCCATGGTGGTCATGGCCAATACCAAGGAATTCGTGCCCTTTTTCTTCGGGAAAAAATATATCCCGATGACCCCCTTGATGTTCTTCTTTACCTTGACCATCATCTTGATTCCCATGGGCGGGGTCTTTGCCAACCAGTTTGCCCTAGCCAACAAGCGGGACAAGGACTATGCCATTCCAGTTACGATTGGGGCGGTCCTGGAGCTGGTCTTCAGCTACTTTTTAGACCGGCCTTTCGGGGCAGCAGGGGCCATGGTGGCGATTCTCTTGACCGAAGTCGTCGTTTTCTTTCTGCGCTGCTGGATCGTGCGGGACGGTTACGACTTCAAGGAAACTTTCAGCGACGTGCCCAAGTGCTTTTTGGCTATGGGGATCAGCCTGGCGGCAGGGATGCTGTGGCCTTGGCAGATTCCAAGTGCTTTTATCAACATGATGGTCAAGTCCCTGGTTATTATGGCCTTGTACCTGGCCATCCTCTGGCTCTTGAAGTTTGACTTGAACGAAGACTTGGTCACGATCGTCAAAAAGCGCTTAAAAAAATAGCTGTTAATAAGGAAGAAATCAGCAAAAATTAAACAAAGAAAGCGTGTAAGCATGGTAAAAATCAACATTTTGGGCGTTGGCTTCGACAAGTACAGCCTGGCGGAATTTGAAGCCCGCTTTTTGGACCGCTTGCGGAAAAAAGAATCCACCCTGGTGGTCACGGCCAACCCGGAAATTGTCATGGCCGCTAAGGAAGACCCGGAATACCGGGAAATCATCAACAATGTGGCTGACTACGTGACGGCTGACGGGATCGGCATCATCAAGGGGGCCAAGATGCTGGGGCTGAAGCTGCCGGAGAGAGTAACCGGCTACGACCTCTTCTGCTGGTACCTGCAAATCGCCAATGAAGACCACTTGCGGGTCTACCTGATTGGGGCCAAGCCAGCCGTGATCGCTGCCGTTAAGGAAAAAATCGCCAAGGACTACCCGGGCATCGACTTAGTCGGCGCTGAGGACGGCTACTCCAAAGAAGCCCTGCCGGAAATTGCCAGCCGGATCGCCCAAAGCAGGCCCGACCTGGTCTTCGCGGCCCTGGGCTTTCCCAAGCAGGAGAAGCTCCTGGCCATCTTGCGCAAGCAAAACTTGCCAGCCAGCATGATGGGGGTGGGCGGCAGCTTTGACGTCTTCGCTGGCGCGGTCAAGCGGGCACCGAAGCTCTTCCAGGATGCCCACCTGGAATGGTTCTACCGGCTTTTGAAGGAACCAAGCCGGATTGGCCGGATGATGGTTTTGCCCAAATTCGTCGTGGAAGTTAAAAAGAGCAAGAAGCAGGACCAGCAATAATGAAAGTACTGCACATCAACGCCGGCCTGGAAAGCGGGGGCGGGCTGACTCATATCGTGAACCTGCTCTCCCAGGCCAAAAAGGCGGGGCAGGACTTTGACCTCTTGACCTTCGCGGAAGGACCGGTTGCCCAGGCTGCCCGGGAAAAGGGAATCAAGACTATCGTTTTGGGCGGCTCCAGCCGTTACGACCTGGCCCTGCTCAAGCGGCTGAAAAAGACAATCAAGGATGGACGTTACGATCTGGTCCACAGCCATGGAGCTCGGGCCAACCTTTTTGTCAGCTTGATCAAGTCATCCTTGCCTTGTCCCTGGTTGATCACGGTCCACTCGGATCCTGCGATCGACTTTGAAGGGCGGGGAATCGCGGGGAAGATTTTTACCAAGCTGAACCTGCGGGCGATCAAGCAGGCCGATGGTGTCTTCGCCATCACTCCCCGTTTTGAAAAAATCCTGCTGAATTATGGAGTAAAGCCCAGCCGGATTCACGTTATCTACAACGGGATCGACTTTAGGGACAATAGAAATATAGCAGGCAAGGAAGACCATGCCGGCTTCAACATCATCAATGTTGGCCGCTTGGAAAAGGTCAAGGGGCAAGATCTTTTGCTCAAGGCATTTAAAGCAGCCAATTTGCCGCAAGCTCACCTCTATATCGCCGGCAGCGGCAGCCAGGAAGCAGATTTGAAAAAATTACGGCAGGACTTGGCCTTAACAGACCAAGTAACTTTCACCGGCTTTTTGACCCAAGAAGAATTAAGGCAGCTCTACCGGAAGATGGACCTGGCCGTCTTGTCTTCTTACTCAGAAAGCTTCCCCCTAGTCTTGCTGGAAGCAGCTGACAACCTGCTCCCGCTTTTGGCAACTGACGTGGGCGGGGCCAGGGAACTGATTCCAGAAGGAAAAGGTTGGGGCGTGCCGGTCAACGAGGAAAAAGCCATGGCTGACCAGTTAAGAGCAATCGCCGCTTTGCCAAAAGAAGAATTAGCAGCAATTGCCCAAACGGAAAAAGCCTATGCCCGCCAGCACTTTTCCCTGGACCGGCAACTGGCTGACGTTCTGGCCGGCTACCAGGCCTGTCTGCAAGGAGAAAAAGCATGATTCCCAAAATTATCCACTATGTCTGGGTGGGCGGCAATCCCAAGTCCAAGACCATCCAGACCTGTCTGGCCTCTTGGCAAAAGCGCCTGCCGGACTACGAAATCATCGAATGGAATGAAGACAAGCTGGACCTGAATGCCAACAAATATGTCAAGCAGGCCTACCAGGCCAAGAAGTGGGCCTTCGTTTCCGACTATGTCCGGGCCAAGGCCCTCTATGAAATGGGCGGGATCTACCTGGACACCGATGTCATGGTCTTAAAAGATTTTGCCGGCTTGCTAAATGACCGGGCCTTTATCGGCTTTGAAAACAATGACTACTTGTCAGCGGCCATCATCGCGGCAGAGAAGGGGCATCCTTTTATGGCTGACATCCTGCACTACTATGACGACCTGGATTTTGCCTTTGACCAAAAGGACCAGCTGGCCGGGGTCAACTCCCTATCCGTCACGGAAATTCTCAAAGAAAAGTATGGCCTTAAGACTGGCAACCAAGAGCAAGTGTTAAAGGAGGGAATCCATGTTTATCCAGACGGGATCCTCTGCAACCCTTCCCCTCAGTCCCGGTCCATTCACCTTTTTACTGGGACCTGGCTGGAAGGAAAAAATTCCTGGAAGCACGACCTGGTCACCTTTCTGAAATTACATATCCGCAGTCAAAAAAATGCGAAAATTTACTACCAGCTCTTCAGACGCTAATTTTTTTAAGAATCTCGTGAAAATACATTTCTGAAAACAGGGACTGCATTTTTTGAGTATAATTAAAGGTAGAAAACACAAAGTAGAAGATTGCGAGGCAGCAAATGAGAGAGTTGCAAAAGAAAATTGTCGAATATGAGCACGTTTTGCCGGAAATCGATCCCCAGGAAGAAATCCGCAAGACGGTTGACTTCTTGAAGGACTACCTAAAGGCTAACCCCTTCTTGAAGTCATATGTTTTGGGGATTTCCGGGGGCCAGGACTCAACCTTGACCGGGAAGCTGACTCAGATGGCAATTTCCGAAATGCGGGAAGAAACTGGCGATGACAGCTATAAGTTCATCGCCGTCCGTATGCCATACGGCGTCCAGGCCGATGCCGCTGATGCCGCTGACGCGGTAGCCTTCATCCAGCCGGACGTGGACTTGATTGAAAACATCAAGCCAGCCACTGACGCCATGGTGGCGACCTTGAAGGAAACGGGCGTGGAAATGACCGACTTTAACAAGGGCAACATCAAGGCCCGGCAAAGAATGGTCATGCAGTATGCCATTGCCGGGGCCAATCAGGGCGCGGTTGTGGGGACTGACCACGCGGCCGAAAACTTCTCTGGCTTCTACACCAAGTACGGCGATGGCGCGGCTGACTTAACCCCGCTCTTCCGTTTGGACAAGCGGCAGGGCAAGCAGCTCCTGGCTGCTTTGGGCTGCCCGAAACACCTTTATTTGAAGGCCCCGACGGCCGACCTGGAAGAAGAAAAGCCATCCTTGCCAGATGAAGTTGCCTTGGGCGTGACCTACGAGGAAATCGATGACTACCTGGAAGGCCGGGAAGTCAGCGAGAAGGCAGCGGAAAGAATCGAAGAATTGTGGACCAAGAGCGAGCACAAACGCCACCTGCCGGTTACAATTTTTGATGATTATTACAAAAAATAGGGGCAGATTTGGTAAAAAACTTGTTTCAAGCGCCAATTTTTGCTATATTAATCATGTCATAAGGGAGTAACGGCAAGCATAGCTTGCGACAAGCCCAACAGCCGGGAGCCGTGTTGGTTTCCTGGGCTTGTCTTAATTAGTGAGACTTATGTGCTTTTGTTAAGGGGCACGTAAGTCTCTTTTCTTTTTAAAGGAGGAAAATACTGTGGCTAAGAAGTATTACAGCCAGGACATCCCGGGCACTTTAGCCGAGTTTGGCTCGGATGCCAACCACGGGATCAGTTCGGCTGAAGCCAAGAAGCGCCTGGACCAATACGGCCCGAACGCTTTGGCCGGCAAGAAGAAACGTTCAATGTTTGCCCGCTTCATGGACCAGTTCAAGGACTTGATGATCATCGTCCTGCTGGTTGCCGCTGTTTTGTCCGGGGTAGTTGCCCAGGAATGGACAGACGCGGGGATTATTTTAGTAGTTGTGCTTTTGAACGCGGTCCTGGGCGTGATCCAGGAAGCCCGGTCAGAAGCAGCAATTGAAGCCTTGAAGGACATGTCCACGCCAAGCGCCAGGGTGCGCCGGGATGGAGCGGTAATTGAAGTTCCGTCAACGGATATCGTGCCAGGTGACGTGGTCTTGCTGGAAGCCGGTGACGTAGTCCCGGCCGACCTGCGTCTTTTGGTAGCAGAAAGCTTGAAGATTGAAGAAGCTGCCTTGACCGGGGAATCAGTTCCGGTGGAAAAGAGTAATGAAACCCTGCAAGGGGAGGACATTGCCCTGGGTGACCGGATCAACATGGCTTACTCCAGCACCAACGTGACCTACGGGCGCGGGGAAGGTGTGGTTGTCGCTACGGGGATGAACACGGAAGTCGGCAACATCGCCAAGATGCTGAACGAAGCTGATGAAACTGATACTCCTCTTAAGCAGAACTTGAACCAGCTGGGCAAGACCCTGACTTACATGATCCTGGCCATCTGTGTGGTCGTCTTCATTATCGGGGTTATCCGGAACCCGCAGCATGAACCGATGAATGCCCTGCTGATCGACATGTTCTTGACGGCGGTTTCCCTGGCGGTTGCCGCTATTCCGGAAGGGCTGCCAGCGATCGTGACGATCATTTTGGCCCTGGGTACCCAGACTATGGCTGACCACAAGGCCATTGTCAGAAAGCTGCCAGCCGTTGAAACCTTGGGGGCAACGGATATCATTGCTTCTGACAAGACTGGTACTTTGACCCAGAACCGGATGACGGTGGAAAAGGTCTACTACGACGGGATCCTGCATAATGCCAGCGATGACATCGACTTGAACAACAAGGCCTTGATTACCATGCTTTTGGCCAACGACACCAAGATTCAAGGCGGCGGGGAGCTCTTGGGTGACCCGACTGAAACTGCCCTTGTGCAATTCGGTTTCCACAAGGATCTGCCAGTTAACGACTTTTTGGCAGAACACCCACGGGTACAGGAAGTACCATTTGACTCTGACCGGAAGTTGATGAGTACGGTCAACAGGTATGACGGCCAGTTTATGGTTGCCGTCAAGGGCGCGCCGGACATGCTTTTGGAAAGAGTCAAGTATGTCAACATCAACGGCGAGCTGAGCGAAATCAGCGCTGAACAAAAGAAAGCCATTTTGGCAAGCAACAATGAAATGGCCAAGCAAGCCCTCAGGGTCTTGGCGATGGCTTACAAGGTTGTTGCTGAGCCATACGCTGACCCGACGACTGACAATGTTGAACAAGATCTGATCTTTGCCGGTTTGGTCGGCATGATCGACCCAGAGCGGCCGGAAGCCAAGGACGCGATCGCGGAAGCTCACCGGGCCGGGATCAGAACGATCATGATTACTGGTGACCACCAAGTTACGGCGCAGGCGATTGCCGAACGGCTGGGCCTGGTTGAAAAGGGCCGCGGCGATGCCGTGATTACCGGGGCGCAATTGGATAAGCTGAGCGACGACTACTTCACCAAGCATGTCGGTGACTACAGCGTTTATGCCCGGGTTTCACCAGAACACAAGGTTAGAATCGTGAAGGCCTGGCAGGCAAATGGCAAGATCGTGGCCATGACCGGTGACGGGGTCAACGACGCGCCGAGTCTGAAGCAGGCCGACATCGGGGTCGGCATGGGGATTACCGGTACGGAAGTCTCCAAGGGCGCGGCCGACATGGTTCTGGCTGACGACAACTTCGCGACGATCGTGGAAGCGGTCAAGCAAGGGCGAAAGGTCTTTGCCAACATTCAGAAGGCGATTCTGTACTTGATGAGCTGCAACGTCGGCGAAGTATTGACGGTCTTCTTGATGACTTTGCTGGGCTGGGATGTTTTGAAGCCAGTGCAGCTTTTGTGGATCAACCTGGTAACTGACACCCTGCCGGCGATTGCCTTGGGTGTTGAACCGATTGAAAAGTGGATCATGAACAAGAAGCCGCGGGGGAAGAATTCCAACTTCTTCTCAGGTGGCGTGGCCAGCTCAATTGTTTACCAGGGGATCCTGGAAGGTGCTTTGGTCTTGACCGCTTATGGTTTGGGTCTGCACGTTTTACCGCGGGGGACTAACCCGCATGAAGACGCGTTGACCATGGCCTTCTTGACTTTGGGTCTGATCCAGCTTTTCCACGCGGTCAACTCTAAGTACGTGAAGCAGTCTATCTTCCAAAAGAGAACTTTTGCCAACAAGTGGTTCAATGGCGCGATTGTTCTGTCAGCCTTGATTATGGCGGCAGTTGAATTGCCATTCTTGACCAGAGTCTTCTCAGTTTCAGAATTGCACCTGGACCAATGGCTGATTGTTCTGGGGATGGGCGTTTTGATTATCGTGATCGTCGAAATCGTCAAGTTCTTTGAGAGAAAAGCTGATCAACGGAATAATTAAAGATAATAATTCACAAAAATGCCTGGACGTAAGTCCGGGCATTTTTTGCTGCGTGAAAAGAGGTACGGTGAAATCGTAAGGACTTGAGTCGGCTGTAATTCCCCTCATATTATGTTAATAATAACGAGAGAGTTGGAGTAAATAATAATATAAAACGCTTTTCTTGGAAAAAGTATGTTGACTAGGACGAGAAAAATATATGTGGGAGCAGTAGTGATCTACTTGCTAGTTATCATAGGGCAAATGGCGTATGCAATCTATGACAACGCTTTAATTTCTAAAAACAATGCATTTGCTTTTGAGTATTTATTTAATACAGTGCAACCTTTCGGCGTAGACGAAACTATGATTGGTGCTATTGCAATATTTTTATTTGTTCCAATCGTGGGTGCTGCATTGGCAATCTATATCAAAAATAATCACGAACTATACAATGTTGTTAGTAGAACAGGATGGAATAACTTTCTAACTAAAAGCACAGCTTATGCGTTTTTGGGGGCAGTGGGGCTATACTGGCCTAGGATACTACCAATATCATAAACCCCATAGAGAATGCCATGGTGCAAGATCCCTCCCCGGCAATCTACTAGCTAAATTATGCAACGACCGCGATTTTCTATATTACGCTGACTGCGGTTCTGTTAAGAATTTGGTACATGAAGAATATAGAGAAAGGCTAAATTATGCTAAAAACGCGTTATCAGCGCCTAATTGCCATAACCCTCTTTTTGGATTTTGCGGTCAGCCTGAGATGCGGCCTGCAGTTTGCGATGATTGGCGGAGAAGGCGAGATGCCAATGTATTATCTGAATGCCAACTTGATCAGCTTATATATCCAGCCGGGTCTAACCGTCATGGCAGCCGTCCAAATCCTCTCTTTCCGCTCAGTCCGGCCGCTTCTGGCTCCCCGCGGCAAAATGGATTACTTTGACCAGCGCCTGGCCTAGCTTCTTTTCTCCACCGTGCCCTATCTCTTTGGCAAGAATCCTGCTTCCGCTATGGCCCGGCCTGGAAGGGCACCCTCTTGCTCTTGATGCATTACCTGCTGTTCATTGCCTGTTTCATGCTGATCTTGCTCTGCATCAAGATCAAATATCCTTTCTTTATCATTGTTTTTGCCAGCACAGTACCTATTCTTTACCATTACTGGCTGGAGAAGACCTGGCTTTTACCGAAATACGCTAATATTTATGACCCTCTCTGGCGGGCCATCCACCACATGTATATACTCTAAGTCGAGGAGGAGTTTGTATGTTGAAAGTGTCACATGTTAAGAAGTGCTTTAAAAAACTGGCCGTATTAAAGGACATCTCTTTAGAAAACCAAGCGGGTGAACTGGTCCACATCTCCGGTGTCAACGGCTGCGGCAAGTACACCCTGTTCAAAATCATCGTCGGCCTCTTAAAAGCTGACAGCGGGGAGATCCACACTGACAAGGATGACTACCTTGGCGCCCTGATCGAAAACCCTGGCTTTATCGAATATGAAACTGCCTGGGACAACTTGATCTTTTTAGGTCACTTCAACTACCGCTTCCAGCCCGAAAAGACCCGGGACCTGCTCAAGGCCTTTGACCTGGATCCGGATAACCCGCAATCCGTCGGCAACTACTCAGTCGGGATGCGGCAGAAGCTCGGGATCACCCAGGCCGTGATGGAAGAGCAGAATATTATCCTGCTGGATGAGCCAACCCGGGGGATCGATAAGGAAGGGGTTGACCAGTTCGTTAACCTTATGAAAGACTTGCGCAGTGAAAACAAGACCGTCATTGTGGCCAGCCACGACGAAATTCCCGGCCTGGTCTACGACCGCCGTTTAAGAATGAAAGACGGGATCTTGCTGGCCGAAGAGTAAAAGTTGGCATTTCCCGCCCTGACTAGCTACAATAATACCATGATTAGTGAACAAGAACTGCAGCAGCTGGTCGAAAGCATCTCCCTTGAATCCTTCAGCCGTCCCTTTCTCCACCAAGCGAAAATCAACCGCCGCCTGAAGACTACTGGCGGCCGCTACCAATTATCCGACCATCACCTGGAATTTAACCCGCTCTTTCTTAAGGAAGAAAATCTCCATTATCTGCCGGGCATCATCAAACATGAACTGGTCCACTACCACCTCCACCTGGCCGGCTTGGGCTACCAGCATAAAGACCGGGACTTCAAGCTTTTACTGCAAAAGGTAGGCGGCAGCCGCTATGCGCCAAGACTAGAAGGGAACAAAAGAAGCCGCTGGCACTACCGCTGCCGGCAATGCGGGCAGGACTACTGGCGCCAGCGGCAGGTCAACGTCAAGAAGTATTTCTGCGGCCGCTGCCGGGGAAAATTGAAAAAAATTGCCGGCCCTCTTGCCAAATGAGGGCAGCTTTGCTAAAATATTAATGTATTTGCGGGCGTGGCGGAATTGGCAGACGCGCAAGACTAAGGATCTTGTGACCGCTTTTGGTCGTGGAAGTTCAAGTCTTCTCGTCCGCACTAAGATAAGGAGTCGTTGTAAAACGGCTCCTTTTTTGTTGATTCTTTAAACTTGCTTTTCCTCCAATCTGTTATAATTGATAGAACACAATGCAAGATGAATAGAAGGTGTGCTAAATGTACGATTCTGAAGCCAGACAGAAGACCTTGAACCTGACGGTCAGCGCGGTCTTTGTGGCCATTCTGCTGCTGGAAGCTTTTATTCCTAATGTGGGTTACATCACGATTTTGCCGGGCCTGCCGGCCATCACCACGATTCCGCTGACAGTCGCGGTCTTTGCCTCTTTAAGAGGGCCGAAAGCCGGCGCGGCCTTTGGCTTGGTCTGGGGCCTGACTAGTTTGCTTAGGGCCTATGTTGCTCCAAATGGCCTGGTTACCATTCTCCTTTTCCAGAACCCCTTGATTGCCTTATTGCCCCGGCTTGCTGCTGGCTGGGCAGCGGGCCTGGCTGGGCAATTGGCTGATAAATGGGAGAAGGAGAGCAGAAAGCCTCTGGCTTACGCCTTAAGCGGCCTTTTAGCTTCAGCGGTCAACACGCTCATTGTGATCCTCTTGTCTGACCTGGTCTACTTCATTCATCCCCAGAAGCTGGCTTTAGCCCTGGGGGCCAAGAGCGGGCAGTCTTTGCTGGTCATCCTCTTTACGGCCCTGGCCGTCAACGGCATTTTGGAAGCAGTCTTCAGCGGCTTGATCACGCCGCTCATTACCGCGCCCCTCAAGAAGCGCCTTAAGCGGCGCTAGAAAGCAGATAAGTATGGCTGGACACAGAAAAACACGCAAGGGAAAGCAGACGACCACCATCCTCGTGGTCCGCGTTTTTGCCATCATCCTCTTGTGCCTGGGCTTCTTCGTGGCCTTCCGCTACTACCGCCGCCAGGCCTTGCAGCAAGAACAGATCCGCCAGGCTGAACTGGCCAAGCAGGAAGCAGCCGCTAAGCTTTTGCGGCAAAAGAAGGCCTTTATCCAAAAGGTGGGGCCGATCTCGCAAAATGTTGACAAGGGGACCGGTCTTTTGCCAAGCATCACTATCGCCCAGGCCTGCCTGGAAAGCAACTACGGGCAAAGCGCCTTGTCCCAGAAGTACAACAATCTCTTCGGGGTTAAGGGGACCAACCCTAACACTTCAGCCGTGATGACGACCAAGGAGTACAGCAACGGCAAGTGGGTGACCGTCAAGGCCCGCTTCCAAATTTATGATTCTTATGAAGCCTCGATCCGGGCCCATGTCCGCCTCTTCCAGCAGGGAACCAGCTGGAACAAGGACCAGTACAAGGACGTTTTGGCGGCCAAGGACTATAAGAGCCAGGCCAAGGCCCTGGTCACTGACGGCTATGCCACCGACCCGGACTACTCAACCAAACTCATCAATTTAATTGAACAATACAACCTGAATAAGTACGATAATTAAGCAGGTTTGACAGGGCTGCCAGAGCTTTTTGGCAGTTTTTTTGCTATAATGGATAAGCTAAGTTTTTTGATTTTTGAAGGGGTAAAGCATGTCTGAAGCAACGATTTTACAAGGTTTGAATCCGCAACAGGTCCAGGCAGTCAAGACGACTGAAGGGCCCCTTTTGGTAATCGCCGGGGCCGGCAGTGGGAAGACCTCAGTTTTGACCAGGCGGATTGCCTACTTGGTGGAAGAAAAGCGGGTTGCTCCCTGGAACATCCTGGCCATCACCTTCACCAACAAGGCCGCTAAAGAAATGAAGGAAAGAGAAGTCAAGCTCCTGGGCGACCAGGCTGAAAGCATCTGGATGTCCACCTTCCACGCCCTCTGCGTCCGCATCCTCCGCCGGGACGGCCACTTGATCGGCTATGACCGGGACTTCTCCATCGCTGACCCTTCAGAGCAGGTGACCCTGGTCAAGCGCATCCTCCGCCAGCTGGACCTGGATCCCAAGCAATACCTGCCCCGCAACATCTTGAGCCAGATCTCCAATGCCAAGAACTGCCTGCAGACCCCGAAGCAGTATGAGGCCAGCGCGGTCGGTCCTTTTGAAAAAGTTGTCGCCGACGTCTACAAGAAATACCAGGCCAGCCTGGAAAGAGACCAGATCCTGGACTTTGACGACTTGATCATGCAGACGCTGACCCTTTTTAAGGCCAGTCCTGATACCCTGGCTTACTACCAGCAGAAGTTCCGCTATCTGCTGGTTGACGAATACCAGGACACCAACGAGGCCCAGTACGAGCTCTGCCGCTTGCTGGCTGACGGCTACCACAATATCTGCGTTGTCGGGGATGCTGACCAGTCAATCTACGGCTGGCGGGGAGCCAACATGGAAAACATCCTCAACTTTGAGCATGACTACAAGAATGCCCAAACTGTCAAACTGGAGCAGAACTACCGGTCAACCGGCCACATCTTGAAGGCGGCCAACTCGGTCATTGACCACAATGAAAACCGGAAGGCCAAGAAGCTGTGGACTGACAAGGGCGACGGGGAAAAGGTCCACTACTACCAGGCCCAGAGCGACCGGGACGAAACCCGCTTCGTCCTTGCCAAGATCAAGGAAGAAGTTGACAAAAAGAAGCGCCGCTACCAGGACTTTGCCGTCCTTTACCGGACCAATGCCCAGTCCCGGGGGATGGAAGAAACTTTGGTTGAAGCCAATGTCCCTTACCAGATCGTCGGCGGGCACAAGTTCTACGACCGTAAGGAAATCAAGGACATCATGGCCTACCTCAAGCTGGTGGCCAACCCCAGCGATTCCATGAGCTTCAACCGGATCATCAACGTTCCAAAGCGAGGGATCGGCCAGGCTACGACTACTAAATTGGCTGCCTTCGCCGACGAAATGGGGGGCGGGATCTACGAAGCCATGCGCAATGTCGAATTGGCTCCGATTTCTTCCGCCGCTGCCAAAAAGCTCCTGGCCTTCAGCGACCAGCTGACTGCCGCCATTGCTTACGCCCAAGACCACACGGTCAGTGAACTGACCGACAAGATCCTGGAAGACTTCGGCTACATCAAAGCCTTGAAGGAGGAAGAAGCCCAAGGATCCCTGGAAGCTGCTGCCCGCCTGGAAAACCTGCAGGAATTCGCCACGGTTACCAAGCGCTTTGACGACAATTACAATGAAGAAGAAAACCCGGACAGCAGCCGCTTGAGTGACTTTTTAGCGGAAGTATCCCTCTTAAGCGACCAGGATGACCTGGAAGAAAGCGATGACCGGGTAACTTTGATGACCCTGCACGCGGCTAAGGGTTTGGAATTCCCAGTCGTCTTCTTGATCGGGATGGAAGAAAACATCTTCCCGCTTTCCCGGGCCATCAAGGACGAAGACCCGAACCAGCTGGAAGAAGAACGTCGCCTGGCTTACGTGGGCATTACCCGGGCCAGAGAAGAGCTTTACCTGACTTCGGCTTACACCCGGATGATGTACGGCAGCAAGCAGTATAATTCCCAGTCCCGCTTTATCGGTGAGATCAAGGATGAGGACCTGGACATCGTGGCTTCAACTGCCCCGAAGTCCAGCACTTCCTTCATAGACCTGGACCGGCTGCCTTTTGCTAAAAAGTCCCAAGCCAAAGCTGCTCAGCCGGCTAAGATCCACCGGGCCAGCAAGGCAGCCGGGGCCGTCGGCGCTGAAAAGAAGGGCTGGCACCCTGGCGACCAGGTAGAGCACAAGAGCTGGGGCAAGGGCGTGGTCATCAAGGTCACCGGCTCTGGCGAAGACATGGAACTGGACATTGCTTTTGCAAGCAAGGGCAACAAGCGCCTGCTGGCGGCTTTTGCCCCGATCAAGAAAATTTAGGTGAAGAAGCATGGCTGAAAGTTTAGAAGAAGCAAAACAGGAAGTCCGCCAATTGCGGGCCCAGCTGGACCAGTGGGCCAAGGCCTACTATGAGCAGGACGCTCCGGTGGTTGAAGACCACGTTTATGATGAAAAATACGCCCGCCTGCTGGAACTGGAAGCTGCCTATCCGGAATTAAAGTCAGCTGACTCCATCACCCAGAGGGTCGGCGGCGAGGTCAACAGCGACCTGCCCAAGGTTGAGCACCCAGTGCCTATGCTGTCGATGGGGGACGTTTTTTCCAAAGAAGAGCTGGCGGAATTTGACCAGCGGGTGCAAAAAGCCATCGGCCACCCTGTGGCCTACAATGTCGAATTGAAAATCGACGGCCTGTCCCTGTCTTTGGAATATGAAGAAGGGTGCTTAAAGCGAGCCTCAACCCGGGGCAATGGCCAGGTTGGCGAAGATGTGACCAAGAATGTCAAGTATATCAAGGACGTGCCTCAGAAATTGCCGAAAGCCATTACCACCGAAGTGCGGGGGGAATGCTACATGAGCAAGGAGGCTTTCGCCAAATTGAACCAGGAGCGGGACGAGGCCGGGGAGAGCATCTTTGCCAATCCGAGAAACGCCGCGGCTGGTTCTCTGCGCCAGCTGGATCCGAAGGTGACAAAAAAGCGGCAGCTGAGCACCTTTATCTATACCTGGATCAACCCACCAGCCGGTATCGACTCCCAGCACCAGGCGATCTGTGAGATGGCCAAGCTAGGCTTTCACACCAATGAAAACGGCCGCCGGCTGGAAAATCTGGCAGACGTCTACGACTATATCGACGAATTTACCAAAAAGCGCGACAGCCTGCCTTACGTGATCGACGGCATTGTCTTGAAAGTCGATGACCTGGCCCTGCAGGCGGACTTGGGCAACACCGTCAAGGTGCCCCGCTGGGAAATTGCCTACAAGTTCCCGCCGGAAGAAGAAGAAACAGTAGTCCGGGAGATTGAATGGACCGTGGGAAGAACCGGGGTCGTGACCCCGACTGCCGTGATGGATCCGGTGCGGTTAGCCGGGTCCACGGTAGCCCGGGCCTCTTTGCACAATCCGGACCTTTTGGCCAAACTGGACGTTCGCTTGGGCGACACGGTCAAGCTGCACAAGGCCGGCGACATCATTCCGGAAATTTCCGAAGTTGTCTTAAGCAAGCGGCCAGAAGACTCTGTTCCTTATGAAGTGCCAACTAAGTGTCCATCCTGCGGGGAAGACCTGGTTCACCTGGATGAAGAAGTAGCCCTGCGCTGCATTAACCCGTCCTGTCCGGCCCAAGTTGAAGAAGGGATTACCCACTTCGCTTCCCGGCAGGCCATGAACATCGCCGGCCTTGGCCCAAAGATCGTCAAGCAGCTGATCGCCAAGGACCTGGTGCACAATGTAGCTGACCTTTACTATCTGACAGCCGACGACTTGAGCCAACTGGACCACTTTAAGGAGAAGTCGATCAACAATCTCCTGGTGGCCATTGACCAAAGCCGGAAGAATTCCGTTGAGCTGGTCCTCTTTGGCCTGGGGATCGACAATGTCGGCGGGAAAGCCGCCCAATTGATTGCTCGGAAATTTAAAAATATGTCTAAAATCGCTTCAGCAAGCGTGCAAGAACTGACGGCAATCGATACAATAGGAATGACGATTGCTGAGTCTTTGACGGCTTACTTCCAGCAGGAAGAAGCCAAGAAGCTGCTGGCCCGGCTGGAAGAGGCCGGGGTCAACATGGACTACTTAGGCGAAGACGGGGAAGCCGCAGACAACTTCTTCAAGGGCAAGACGGTGGTCTTGACCGGGAAACTGGCCCACTATAGCCGGGCGGAGTTTACCAAGAAGCTGCAGGCCTTGGGAGCCAAGGTGACCGGGTCAGTCTCCAAGAAGACCAACTGCCTGGTTTACGGGGAAGATGCCGGCAGCAAACTGGCCAAGGCAGAAGCCCTGGATATTCCGCGCTTAACGGAGGCAGAAGCAATCTCTAAGATCGAAGAGAAGGACACGGAAAAGTGAAGAGATTTTTACAGGCAATAACTTTGGCAAGCTGCAGCCTCCTGCTGGCGGCTTGCGGCAACTTGAAGAATTCCGACCTGGCCAGCAACTCAACGACTACGACCAGCGAGGCGAAGAAGTACGAGACGACTTCCAGCACTGACGGCGGCTACTCCGTCCTTTTGAAAAAGGGGGTCTACAAGACCAGCCCGATCTCCGGCCTGGAAGCCACCAACTATGACAACAGCGTGGACGAGTCGGCCATGGAACGGGGCTTGATCCGGGTCTCCAAGAAGGTCTTCTCAACCAAGGACTATGTCATCCAGGAAGGCCAGCAGCTCGACGAAGCGACGGTCACCAACTGGCTGGGCCGGTATTCAAAGAGCAACAAAGAGGGGCTGAACCTCAAGAACAACGGCAAGACCGGGTCAACGACCAGAAACCCGATCATCTTGCAGCAGATCATGGAAGAAGACTTCTATGTCAAGAGCGGGTCCAGCTACAAGCTGGCCGGCATCAGCATCAGCCTGGGCCTCAACTCAGTCGACTACTACACCAAGACGACTGACGGGGCCGAATACAGCACTAAGATTTCTCCGGCCAAGCGGCGGGCCTTCGGGCAGAAGACGGCCAACACGATCGTCTCCCGCTTGCACGCAAAGACGAAGCTTAAGAATATCCCGATCATGGTTGGCCTTTTCTCTAAGACCGACACCGACTCATTAGTTGGGGGAACTTACTTCTCATATGGGACAGCTAGCGCAAATAGTAGTAAAATATCTAAATGGAGTTCCGTGAACGAAAAGACCCAGGTGTTGCCGACAGTCGATGGAGCCAGCGCGGTCAGTGCCAGTGACAAATCCAAATTCACCAGCTTTAAGGATGAAATTGAGGATTACTTCCCGAACGTTTCCGGGGTCACGGCCACTCTGCGCTACTACGATGGCAAGCTGGCTTACGAAAGCATCGCCATCACCACGCAGTTCTACGGCTATCTGCAGGTACAAAGCTTTGCCCAGACGGTTATGAGCCGGGCAAAGAAGTATCTGGGAACCAGCTCACCGGTTGAAATCACCATTTCCTCGGTCAACGACACCCAAGCGGTCGTCGCCAAGGAAACGGCCACCGGGTCTTATCGGATGCACATCTATGGCGGTAATTAGGAGGTACATAAGTGGAAAAGGTAACAAATGATACCATCAAGCACGTTGCGGCATTAGCCCAGCTTGAATTCAGCGAAGAAGAACTGGCCAAGTTCACCCCGCAAATGGGGAAGATTCTGGAAATGGCAGAAGAACTTCAAGCTGTTGACACGACTGGCGTTGAAGAAACGGTGCAAGTAGTTGATCGCGACACTGTCTTCAGAGAAGACGTTCCTGAAAAGTGGCAGACCCGCGAAGAAATGATGAAGAACGTTCCTGACAAGAGCAATGGTTTTGTCAAGGTACCTGTAATTATCGATAAGGATGATAACCAATAATGAACTACTTAAACGAAACGATCGATTCTTTAAACGACAAGTTGAAGAGCGGCGCTGTTTCTGCTGACCAATTGGTCAAGGACACCATCGCCAACATCAAGAAGACTGACGAAAAGATCAACGCCTTCATCACTGTAGATGAAGACGCCAAGCCAGCAGAAGACCTTGACTTTAACAATAAATTGGCCGGCGTGCCGATTGCCATCAAGGACAACATCATCACCAATGGCTTGAAGACGACGGCAGCCAGCCACATTTTGTACAACTTTGAACCAGTTTACGAATCAACTGTTGTTGCAAAGCTGAAGGCAGCCCAAGCTACCATCATCGGCAAGACTAACATGGACGAATTCGCCATGGGGTCATCCACTGAAACTTCTTACTTCGGTGACACCAAGAACCCATGGAACTTAAACAAGGTGCCAGGCGGTTCATCCGGTGGTTCTGCAGCGGCTGTTGCCAGCGGTGAAGTGGTTGCTGCCCTGGGTAGTGACACCGGTGGTTCAATCCGCCAGCCAGCATCTTTCAACGGTATCTTCGGGATCAAGCCGACTTACGGCCGGGTATCCCGCTGGGGCTTGATCGCTTTTGCCTCATCACTGGACCAAATCGGGGTGATGAGCAAGCGGGTCAAGGACTCAGCTGAAGTTCTGAACGTGATCGCCGGGGCTGATGACCGCGACGCTACTGTTTCAGAAAAGGAAGTCCCAGACTACACCAGCTTCCTGGGCAAGGACGTCAAGGGCCTGCGGGTTGCCGTTCCTAAGGAATACATGAGCGACGCCGTTGAAGAAGGCGTCCGCAAGGAAGTTGAAGCCCAAATCGAACTTCTGCGGGCAAACGGGGCTATCATCAACGAAGTTTCCCTGCCGCACACCAAGTATGTGGTGCCAACTTACTACATCATCGCTTCCAGTGAAGCTTCAGCCAACCTGGAACGTTACGACGGGATCCGTTACGGTTACCGGGCAGAAGCCAAGAACCTGGACGAAGTCTTCCTCAAGTCCCGGTCAGAAGGCTTTGGCGACGAAGTAAAGCGGAGAATCATGCTGGGTTCCTTCGCCCTGTCCGCCGGCGCTTACGACAAGTTCTTCCTGCAGGCGGCCAAGGTAAGAACTTTGATTTGTCAAGACTTCGACAAGATCTTCGAAGACAACGATGTTATTGTCGGGCCGGTTTCTACCGAAACTGCTTTTGACTTGAACTCAGAAATTTCTGACCAGATCAAGATGTACAACAACGACATCTTGACGATTTCCGCCAACATGGCCGGGATTCCGGCAGCCAGCGTGCCAGCCGGCTTGAGCGAAACGACGGGGATGCCGGTCGGCTTCCAAATCATGGCCAAGCGCTTTGACGAAGGCCATGTCTTCCAAGTAGCTGACTTCATCGAACGCAGCAACAAGTTCTACGAACAAACACCAGCTGGATTGGAGGATTAATTTAAATGAATTTTACGTCAACTATCGGTCTGGAAGTCCACTTTGAGTTGAAGACCAAGAGCAAGATCTTTTCACCTTCACCAGTAACTTACGGGGCCAAGCCAAACACCGAAACCAACGTTATTGACTGGGGTTACCCAGGTACCTTGCCAATGGTTAACAAGGAAGTCTACCGCCTGGGCTTGATGGTCGCTTTGGCCACCCACTCTCACGTTAACCCGGTAACCCACTTTGACCGGAAGAACTACTTCTACCCGGACAACCCAAAGGCTTACCAAATCACTCAATTCTTCAAGCCACTGGCTGAAAACGGCTATGTTGAAGTCGAAGTTCACGGCAAGAAGAAGAAGATCCATATCCACGAAATGCACATCGAAGAAGACGCCGGTAAGAACACTCACGGGACCAACGGCTTCTCCTACGTTGACTACAACCGGCAAGGGGTACCGCTTTTGGAAGTTGTTTCTGAACCAGAAATGACTGACCCGGACGAAGCTGTTGCCTACCTGGAAAAGTTGCGGGAAATCGTGCAATTTACCGGGGCTTCTGACGTTAAGATGGAAGAAGGGTCAATGAGAATTGACACCAACATCTCCATCCGCCCAGCTGGCCAGAAGGAATTAGGGACCAAGGTTGAAATGAAGAACCTGAACTCCTTTGAACACGTCCGTATGTCCCTGGCTTACGAACAAAAGCGCCAGCAGGAAATCCTCCTGTCCGGTGGCCGGGTTCGCCTGTCCACCCGCCGTTTTGACACCAACACGGGCAAGACTGTCCTGGAACGTGTCAAGGAAGGGGACGCGGACTACCGTTACTTCCCAGAACCAGACCTGCCTCCATACCACATCAAGCAGGAATGGGTTGATGAAATCGCGGCCAACTTGCCAAAGACGGCTGACGAACGGCGGAAGATCTACGTTGATGAATACGGCCTTAAGCCATACGACGCGAATGTTTTGCTGCAAAACAAGGAAAGCTCAGACTTCTTTGACGCTACTGTAGCAGCTGGTGCTGACCCGCAACAAGCAGCCAACTGGATGAACACCCAGGTTAACGGCTACTTGAACGAAAAGCATGCTGAACTCAAGGACATTGCCTTGACTCCAGAAAACCTGGCAGCCATGATCAAGCTGATTTCTGACGGGACGATCTCATCCAAGATCGCCAAGAAGGTCTTCGCGGAAACTGTTGCCAACGGCACTGACCCAAAGAAGTACGTTGAAGAAAACGGCATGGCGCAATTGTCAGACGAAAGCGTCCTGGCACCAATGGTCAAGGAAGTTGTTGACGCCAACCCGCAGTCTGTTGAAGACTACAAGAACGGTAAGGATCGGGCTATCGGCTTCCTGGTTGGGCAAATCATGAAGCAGACCCGGGGCAAGGCCAACCCTAAGGTGATCAACAAGCTCCTATTGGCCGACCTGGCCAGCCGTTAAGGCAGGAGAAAATTTTTTAGAAAAAGGTGAAGCAGATGACTAAGCGAGCGCGCTTGATTTACAATCCGGTCTCAGGGCATGAACAGATGCCGAAGAACGTTTCTGATATTTTGGATATTTTGGAACAAGCGGGTTATGAAGCCAGTGCATTCAGAACCACGCAAGCTCCGCTTAGTGCTCAAAATGAAGCAACCCGGGTAGCCAAGGACGGTTTTTCACTGGTCGTGGCCGCCGGTGGGGACGGCACGATCAACGAAGTTGTGAGCGGGATCGCCTTTTTGCCTAAGGAAGAGCGCCCGCGCATGGCCATCATCCCGGCGGGGACGACCAACGACTACGCCAGAGCCTTGAAGATTCCGCGCGACGACGTGGTTGCGGCGGCTAAAGTGATTCTTAAGGACAAGGTGCAGAAGATGGACGTGGGCCGGGCCGACTTCGGCGACGGCAGCCAGAAGTACTTCGTCAACATCGCTGCTGCTGGCTCTTTGGCGGAACTGACCTACGGGGTTTCTTCAGACGTCAAGTCCGCCCTGGGCTACGCTGCCTACCTGATCAAGGGGGCGGAAATGCTGCCAAACCTCAGCGAATGCGAAATGCGGCTGACTTTTGACAAGGGCGTTTACGAAGGCAAGCTGTCTCTGCTTTTATTGGGGATGACTAACTCCATTGGCGGTTTTGAAAAGATCATGCCAAACGCGGAACTTTCAGACGGTCTCTTCCAGCTGATCGTGGTCAAGCCAAGCGACCCGGGCAACCTGCTCCGGCTGATGGCTTTGGCTTTGAACGGCAAGCACGTGGACGACCCGAACATCATCTACACCAAGACGACCAGTCTGAAGGCGGAATTGATCGGCCACAACCGCGATGACAAGCTTTCCGTCAACCTGGACGGGGAAGAAGGCGGCATGTTCCCGGTAACTTTTGAAAACTTGCGGGAACGGATCGAATTCTACGTCGGTTAAAACTGTTATAATAGAGTTTGACCTTCTGTCAGACTCTATTTTTGTGTTTAGAGGAAAAGCATGATAACCAATAAAAAGAAAGAATTAGCAAGAAAGCGGGCCGAGCGGTCTCTGCAGCCTCTGTCGCCAGAAGAGCAGAGCGAGTGGGATCAGCTGAGCCAGTACCGGGAAAAGGCCATTAAGGAGTCCGGAACCAAATTGGCCGAACACGTGATGACGTTTAACGACGGGGTAATTGCCATTATCATCACCATTGTGTTGGTGGAGATCGCGGATCCCTTGTCCAAGAGTGCCTACCAGGACTTTTTCAGCCAGATTTTTATATACTTGATTTCATTTTTCGTAGTAGCCAATTTCTGGTATGAAATCCACTATACCTTCAGTTTCCATATCATGCGGGCCGGCAAGATGACCATGGTCTGTGACTTTGCCTTTTTGGCCAATCTATCTCTGATTCCCGTCATGACAAAGTGGATCATGGGGGATTTATCGGTCTTGAGCGTGGTTTGTTATGGGATCGTCTATTTTTTGGTCCAGATTTTTGAACTGGCAACGGAAATTGTGGGGATGCGGAGCTCACTGCCGCATATCAAGACCTTCCGGAAGTTCTGGGGGCGGTTTTCCTGGCTGCGCTTCATCTGGCTCTTCCTGCTCAATTTGGTCTTTATTTTGATATCTTTCGTCCAGCCAAGGTTGGGGATGATTTTGTATCTGGCCTTCCCAATCATCAACTTTGTCATGCCAGATAACCGGAGCCAGCGGACCCGCAAAGGAGATAAATAATCATGAAGAAAAATGAAATTGTCGAAGTCGAAATCACCGACTTGTCATATGAAGCCATGGGGGTCGGCCATGTTAATGGCGAAACGGTCTTTGTCAACAACGCCCTGCCGGGTGAAGTGGTCAAGGCGCAGATTTTGAAGGACAAGAAGAGCTATGCTTTTGCCAGAATTTCTGAGATCGTCAAGGAAAGCCCGGACCGGGTCAAGGTGCCTCTCCGCCAGTACGTGCAAACCGGCCTGGCCAGCCTGGCTCATTTGAAGTACGACAAGCAGCTGGAATTCAAGCAAAAGCAGGTTAAGGAGCTTTTGAGCAAGGCCCACTTGGACCAGATCAAGGTAGCGGAAATTTTGCCAAGTCCCTTGGAAACTGGTTACAGAAACAAGGCCCAGGTACCGGTCAGAATGGTTAAGGGGCAGCTGGAGATTGGCTTTTTCCGCCGGCACTCACATGACCTAGTGCCGCTGGAGGACTTTTTCACCAATGATCCGGAAATTGACCGGGTATTGCTGGCAGTCAGAGATATCTTGCGGGAAAAGCGGATCCCGGCCTATGACGAAGAAAAGCATCAAGGACAGGTAAGATATCTGGAAGTCCGCCGGGGGACGGCTACGGGCGACATGATGGTCGTCCTGGTTTGTCTGGACCGGGACTTCCCAGGCCTGCACGCGGTAGTAGATGAAATTAAGGAAATCGCCGGGGTGAAGTCGATCTTCCTCAACCATAACCCGAAGAGAACCAACGTCATCTTGGGTGAACACGACTACCATTTGTGGGGGAAGAGATACATTGATGACAAGATTGGCGATTTGACTTTTGAAATCTCGCCGCAGTCCTTCTTCCAGATTAATTCTTTGCAGACGCCGCGTTTGTACAAGCTGGCTATTGACCAGGCAGGTCTGACTAAGGACGATTTGATTGTTGATGCCTACTCCGGGATCGGGACGATCGGTCTGTCCGCAGCCAAGTACGTTAAGGAAGTCCGCGGGGTTGAAGTGGTTAAGGCAGCGGTTAAGGACGCCAAGAACAACGCCCGGCTCAACCAGATCCACAATGCCAAGTACTATGTCGGCAAGGCGGAAGAACTGATGCCAAAGTGGGCAGCTGAAGGCTTGAAGACGGATGTGATTTTTGTCGACCCGCCGAGAAAAGGCTTGACCAAGGAATTTATCGATGCCGCAGTTAAGACTGGTCCAAAGAAGGTTGTCTACATCTCCTGCAACCCGGCAACGCTGGTACGGGACATGCAGCTCTTGATGGAGGCTGGTTACACGACTGACCTGGTTTCCCCGGTCGACATGTTCCCGCAGACGCCACATGTTGAGTCCGTAACCGTCCTAGAACGTACACAAATCGATTAAAATTTGCTGAAGGGTTGGCTAGCCCGCTGTAACGTAGGTCCCATTAACGCCGACGTTAAGGCATAATGACGCTTGGATGAAATTGTCTATTGTGAAAAAATTTTAATGAATTGAGAAGATTGGGGTAAAGTTTTGTACACTTAAAAAGTAAGAGTGCAACTTTTTAGGAAGGGGGGACTGGGAATGGCCATAAATAGAATGGAAGAATTTGAAAACCTGATTATGATTGAAGTGCTAAAAGCGATGCAAGCACTTGGCGGTCGGGTAACACGCAAGGAAGTTAAACGTGAGATTTGCGACCACTCTGAAGCAATTTCAGAGGATAAGGTCGATGAAGTTAAGCATTCAAAGAAAACAGGCACTCCATACCGTCCGTTTGATTATCGTTTTAACTTTGCGGTTAAACATTTGATTACGACTGGTTTCATCATCACTGAAGATAATCGAAATCTTGAACTACCAGAAAAGGGACGGACAACTAAGTTAGAAGATTTTGATCCAATTCGTGATGTGCGGGCCGTGCTATCCGAAAATTCAGCCGATGATACTGATGTAGAGGAAGAGACTGAGATTGAAGAAGAACCCTGGAAAGCTGAACTGTTAGCAGCCTTAGCTAAGATGCCGCCACAGAAATTTGAAATATTTAGTCGAGGTTTGCTGATCCATATGGGGGTTGACCTTGACGACAATATCGGTGTCCGCTATGTCGGCGACGGTGGCTTAGATGGTTTTGGCTATATCACTTCAGATGATTTTCGAACAACCCGGGTCGCCTTACAAACTAAGCGGTGGGACGGTAAAGTTTCTGCCCCAGAAATTGATAAGTTCCGTGGGGCAATGGATAAGTATAATGCCGAGTACGGAATCTTCATCACGACCTCTAACTTTACCCGCGAAGCAATGAAAACCGCAAAAGCAGGCACGCGGATAATTACCCTTATCAATGGGGACAAGCTTTGCGATCTAGTGGCTAAGTACCACTATTATGTAGAACCTGTGACAACCTACAAGCTGAAGAGCTTTTTTACGGATAACGAATAAAGCCCCGATAATAGCTGAGCTACTACCAGGGCAGTATGGTAAAATTTATTTACAGGTTAATTTTTACAGAATCGCCATTTTTGAATTCTACGATGACGACCATCGAGAAGCCCTGATCAAAAAGTGGGTGTCGTAAGGGGCCGGTGCTTAGCTAACACTGGACAAGTTAATTTTCTTCCGGCCTCCCCCAATTCCCTAGAAAGCGATTGTATAACCCGCTATAATAAGGTTAATTATTTGGAGGTATCTTTTTATGGAATACATCAATTACCAGACCCAGGACCAGTGGCAAGGTCCCGCTAGCCAACAGTCACCCATCGACATCGTTTTAGAGCAAACTACCCCACGCCCCCTCGCCGATCAGCCCTTAACCGTCTCCTTTGTCGGCGACCAGGCGCTGACCCGCGACCCCCGTTCGTCTGGGGACCAGTTTATCGGCGCTGGCACTTTAACGCTAGGGAACCACCACTACCACTTCTTGCGCCTCCACTTCCACGACCACAGCGAGCACCTGTTTGATGGCCAGCGGCAAGACGCCGAGGTACACTTTGTCTACCAAGACGACCAGGGGCAAACCCTGGTCTTAGCCATGCTGGGGATAAGGGCCGCCGATGGTGAAGCCGGCTTTGACTTCGCTCCCGTCATTAACGGTCAGGCCGGTTCCGCCTACTTAAACCAGTTCTTCGCTAACAACCAGGGCTACTTTAATTACACCGGTTCTTTGACGACCCCACCACTGTCGCCGGACGTGACTTGGGTGGTGCTTGACGCCGTGCACCCCTTTTCTTCCGGTTCACTGGCACTAATTCACGACTTGTTTGCTGACAACTACCGGGCACCACAACCCATCACGGTCCCGGTTTACCATTACTACGAGAGTGGGAAATAACCTTCTCGGCAGGTCGTATGACTAAGCTAGGACGCACCGTTCTTCGGCCTGCTTAGACACTAGACCTGCGGTTATTTACCACGTTTTCTGTCTAACCCTCGTGAATACAACAAGGGGTCGGGAAAACAGAGTTTTTCCCGACCCCTTTTGGTTTGGTAATGTGTGCGAGAGGGTTATTGTTCACTCCCTTTGTTGGCGCGTTCAATCTGCGCTCCGATCACGGTGGCCGGCACCGACTTTTGGTTGGTTAAGTGGTAATCGGCGTAGGGGAAGTGGGCTCGGTATATGGCGTCGTGGTAGGTGGTTCCCTCGTGACTAGCCTTGACCAAGGCCTGGCCGGAGAAGCGCCCAATCATTAAGCGGACCCAAATGGCAGTCAGGTTCATTCCCAAGACCTTGGTCATAAAGGCGATGTCTGGGGCCGTCAGGGGTGAGACGTCTTCGTGGCCCCCCTCGGCGTCCCCATCGACTTGGTAGAGGACCTGATACAAACCGGGCGTGTCCTGTTGGCTTCGCGCAGGTCCGCCACCTTTTGCGGGCTGATCGCCCAGGACTGGGCAATTTGGTCGTCGGACAGCCCCCAGGACCTGGCCCTGGACAAGCGGGTGGTCTACATCCACGGCGTGCCAGCTGACCTGGAATTGCCAGAAAGCGTTGGCGGCAAGATCAACGACCATTACGACCAACACGTCACTCTTCCAATCGCGGCTGGTAAAATCAACCGCGTCGACTAAAACTAAGCCATTCAGAGGATCAAATTCCCCTGGATGGCTTTTTTCGTAAAAAAATTTTGCAAAAATCCCGATCTTGATAGAAATCAATTGGGGAATCCTGCTTTCCCGGTATATTAAAAGCATCAAAGCAAGGAGGTCAAAAGATCAATGCAAAAATGGTTAATGAAAAATCGCAACCGGCTGACGGAAATTACGGGCATCTTAATCGTCCTGGCCTTTGCCGCAAAATGGTTATTTAGAAGTGAAACAGCAGAGTCCGGCCTGCTCCTGGCCGCCTCCCTCATCGGTGGCTTCCCGATCGCCGAATCCGCTTGGCAGGCCTTGAAAGTCAAAGTCATCAGTATCGACTTGCTGGTGACCCTGGCCATCTTAGGTGCCTTCGTCATCCAGGAATTCGAAGAATCCGCCATCGTGGCCTTCCTCTTCTTGTTTGGGGCCTACCTTGAACAAAAGACCCTGGCCAAGACCCGGTCAGCCATCAAGGAACTGGTGGAAATGGTGCCAGAAACCGCCCTCCGGCAGACGGCAGACGGCGACTTTGAAGAAGTTGACTTAGACGACCTGGACGAAGGGGACATCCTTTTGGTCAAGACCGGCGGCAAGATCCCGGTTGACGGGGAAGTCGTCTCCGGTTCCGGGACGGCCAACGAAGCCAGCATTACCGGTGAATCCATGCCTTTAGGCAAAAAGCCCGGCGACCCGGTCTATGCCGGTACTATTTTGGAAAACGGGACCATCCGGATCAAGGCGGGAAAAGTCGGGGATGAAACGACTTTTGGCAAAATCATCGAACTGGTCGAAGAAGCCCAGGACTCCAAGTCCCAGGCTGAGCGTCTAATTGACCGCTTCTCCAAGTACTACACCCCAGTCGTCCTGCTCCTGGCCATTATTGTTGGCCTCATCAGCCAAGACCTGGAACTGGCTGTAACCATCCTGGTTCTCGGCTGCCCGGGTGCCTTGGTTATCGGGGTTCCGGTCTCCAACGTGGCCGGAATCGGCAATGGGGCCAAGCAGGGGATCCTTTTTAAAGGCAGTGAAGTCATCACCAAGTTCAGCAAGGTCGACACGATCATGTTCGACAAGACCGGGACCTTGACTTACGGCGACCCCCGGGTCAGCCAGGTGAAAAAGTACGGCCAGGGCCAGCTGGCTGAACAGCTTTTGGTCAGCGTGGAAAAAGAATCTGCCCACCCTTTGGCGAAAGCCATCACTGGCTACTATGAAGACCTGGAAGCTAAAGAAGTTGAAGCTTCCCGGGTCCTCCAGGGCGGCGGGATCGTTGCTCAAGTAGCTGGCCAGCAGGTCTTGGTCGGCAACCGCTACTTGCTTGACCAGTACCATGTCCTAGTTAGTTACAAAAGAAATGGAAAGGGACATGGAAGAGCTGGCAAGTGCTGGTAATTCCCTGGTTCTGGTGGCTGTTAACGGGCAGCTGGAACTTGCTTTAGGCTTAAAGGATGAGATCCGGGCCGGGGTCAAGGAAGACCTGGCTGCTTTAAAGAAGCAGGGCGTCAAGAACCTGCTCCTCTTGTCCGGTGACAACCAGAAGACGGTTGACCTGGTAGCGGAAGAACTGGGCCTCACTGAGGCATATGGTCAGCTTTTGCCAGAAGACAAGGCCGAATTTGTCAAAAAGCGGCAGGCAGCCGGTGAAATCGTGGCCTTTGTCGGCGACGGGATCAACGACAGTCCGTCACTGGCCCGGGCAGACATCGGGATTGCCATGGGCAGCGGGACTGATGTGGCAATTGAGACTTCAAACGTGGTCCTCATGAACGGAAGCTTTGACCGGATTCCGCGGGCCCTGGCCCTGGCTAAGGCAACCCGGCGGAACATGATTGAGAACATCACCATCGCCCTGGTTGTCGTAGCCGTCCTGCTGATCAGCGTGTTAGCCAGCTCATGGATGAACATGGCCATCGGGATGTTTGCCCATGAAGGCAGTATCCTGGTTGTAATCTTAAACGCCATGCGCCTTCTGGCCTACCGGTCAAAATTACAAAAATCGCGAAAGTTGATAGAAAACAATTTTTCTTAAGCAGCAGGCCCTTATACTAAGGGCATCGAAAGTATCCAATAGAAAAAAGAAAGGACAAGAAATCATGAAAAAAGCAATTTTACAACTTGAAACATTAGCCTGCCCGACCTGCATGCAGAAGATCGCGGGGGCCATCGCCAATGTTGACGGGGTTGAAAAGACCAGCGTCAAGGTCCTCTTCAACGCAAGCAAGGCCAAGGCCAACTTCGACCCGGAAAAAACCAATTTGGACACGATCACTCAAGCCGTGAAGAATATCGGCTATGACGTCTTGAAGGCCAGCGCTAAATAAGAGAAAAAAGCAAAAACAAGAAAAAAGGAGAAAAATGATGATCAAGGAATTTTTTGACAAGAACGATGAAATGTTAGACTTATGTACGCAAGCAATTACCAAGGCCCACGGCGCTCACCACCCGGAAGTCTTTGAAGTCCGCAAGGTTTACGAAGACATCCAAAAGAAGGTGAAAGCCGGCCAGGAAGACTTAACTGCCGACTTCAGCAAGCTGCGGTCCTTGACCGCGGATTACAACATTCCGGCCGATGCCTGCGGGGCGATGACTAAGACCTACCAGACCCTGGAAGAATTCGACCACTTGGTCCAGGGCTAATTTTTACCAGCAGAGGAGAGCAAAATGCAGCATATATGTGTCAGCCTGGTTCCCTTATTCGTGGACCTGCCAGAAAAAGACCAGCTTAAGATCAATTCCCTGGCCAGCCACCGGCGCTATCAAGAAGGTGAGACGATTTTTCAGCCAGGAGATGAAAAGCTGCAGATCGTGGCCCGGGGAAACATTAAGGTTTACCAGCTGTCCGCCAGCGGCCGCGAGCAGCTGCTCCGGGTTGCCCAGCCGGGTGACTATGAAGGGGAAAAGCAGCTTTTTGGCCTGGAAAACGACAGCTTCTTCGGCCAGGCCATGGAGAATACGGAAATCTGCAGCTTGAGCAAGGCCGACTTCAACCGGGTCCTCATGGAAAATCCCCAGCTCTCTCTCAAACTGCTGGAACTCATCACTCAGAAGCTGCTGGCCACCGAAAGACAGACCCAGTTCCTGGCCATGGAGCGGGTTGAAGAAAGGCTGGCCAGCTACCTGCTCGACTTGGCTAAGGCGGCTGGAAGCGACCAGGTCCAGCTGTCCATGAAGATGAAAGATATCGCCCTCTACCTGGGAACTACTCCCGAAACCCTCTCCCGCAAATTCAAACTCCTCGAAAAAATGGGCTATCTGAAAAGGACAGGCAAGCAGGTGAAAATCCTTGATGAAGACGGCTTGCTGGACTTGTAATAGGCAAGCAAAAAACAGAGTTTCCTCTATAGCTTAGGAAACTCTGTTTTCGCGTTAGGCGCGTTTTTTGCTGATAGCAGCCTTAATGGCTAAAATAACGAAGGTAACAGCGACTGGAACCAGCCAGCCCAGGCCATCCTGGTAAAGGGGCAGGACGCGGCCGTAAAGGCCGGTAACCGCCTTGACCTGCATCCCTGCCGGCAGGGCCTTGAAGAAGTCGCCCAGGGCGCAAAGGAAGGTAACAGCCGTCATAATCTGGTAGTCGACCTGCTTAAAGTCAAAGAGATTGCTGGTTAAGGCCAGCAGGATCAAAGAGATGGCCAGCGGGTAGAGTAGCATCAAGACTGGCAGGGAGAAGGAAATGATGGTGGTCAAGCCCACGTTGGCAATCCCAAAGGCCAGGAGGCTGAAGATAATGGCCCACTTGTTGTAAGACAGGGTCTTCGGGAACATTTCCACGAAGGTCTCGCTGCAGGCCGTGATAAGGCCGATGGCCGTCTTAAGGCAGGCCACGAAGATCATCAAGGCAAAAATTACTGCCCCCAGACCTGGGAAGTAGTGGCGGGCAATCTGAGACAGGGCTTCCCCGCCGTTAGCAGCTAAGCCCAAGGCAGTCCGGCTCTGGGCTCCGACCAGAGCAGTAATGGCGTAGATCACCGCCATCAAAAGGCAAGTGAGGACCCCGGTCTTTAAAGTCGCGGAAGCAACTTTTTCCGGCTTGGTCACTCCAAAGGTCCGGATGCTGGAGATGACGATGATGCCAAAAGCCAGGCCTGCCAAAGCATCCATGGTGTTGTAGCCGGCCAAGACCCCGCTGATTAGTGGGGCGCTGGCGTATTCGCCGACCGGCTTAACTGCATGATAGTTGCCCAAGGGATGCAGCAGCGCCGTGATCATGATAAAGAAGAAAAAGAGCAAGAAGGCCGGAGTCAGAAACTTGCCGATCCAGTCCATGATCCGTCCTGGTCTTAAAGAGAAGAAAAGCATGATCGTGAAGAAGATCAGTGAGAAAATAAAGAGGCCGGTGCTTTTTGCCATCCCGCTGGGCAAAAGAGCTGAGATCCCGGTCTCAAAAGGAACCGTGAAGCAGCGGGGAATGGCGAAGAAGGGCCCGATGGTCAAGTACAAAAGGCAGGTAAAGAAGTAGCTGTACTTGTGGCTGACCCGGCCACTGAGGTCTAAAAGACCTTCTGACCTGGTCATCCCTAATGAGGCGATGGCCAAAAGGGGCAGGCCCACCCCGGTGATCAGGAAGCCCAAGAGGGAGATCCAGAGGTTGGCTCCGCTGGCTTCCCCCAGGTAGGCAGGAAAAATCAGGTTTCCAGCCCCGAAGAAGAGGCCAAAGAGCATGCTGGAAATCGTCAGCGACTCAGCATGCGTCAGCTTTTCTTTCATGTTGATCCTCCATAAACCAAGTTAAAATAACAATACATAGAAATTAAAAACTAGAAAATATAAATTTGAAAACTATTGTGCTAAAGCACACAATAGCTTATATTTTACCATACAACTGACAGAAAGATGAAAACATGGTGGAATGATGCCCCCTTTTGAAAAGTACCAGGCGGTTAAAAAGGCTTATGCGGCCGGGGCTAACAAAGAAAATGCCCAAGCCATGGACAAGTACATGCGAAATCTTTTTCCCTTCTATGGGCTCAAGACGCCAACGCGGCGGGAATTATCCAAGCCCTTTTTAAAGGGCGTGACTAAGGAAGAAATCGCCTGGGACCTGGTTGACCTCTGCTTTAAAGATGACTACCGGGAAATGCAGTACTTTGCCCTGGACTACTTGAAGAAAGTCCAAAAGCAGCTGACTTTTAAGGACTTACCAAAAATCAAGCAGCTGGCGGAGACCAAGTCCTGGTGGGACAGCGTCGACAGCCTGGTCAAACTGGCCGGGCAGATTTTTATCAAAGATGAGGAAAACAAGGAAAAGACGGCAGCCCTCATGCTGGCCTGGGCTCAAGATCCCGACTTCTGGGTTAGGTGGACGGCGATTGAATTCCAGCTGGAAGCGACTGATCCGGACCTGTTAGGCAAGATCATCGACCGCAACCTGGGCAGCCAGGAATTTTCCATTAACAAGGCCATCTGCTGGGCCCTAAGGTACTACTCCAAGACAAACCCGGCCTGGGTCAGGGATTATATGGCTTCCCGCGATCTCTCTGCCTTAAGCCGGCGGGAGGGCAGCAAGTATATCTAGTTGCTGCAGGTAATGATAAGTAAGCAGATAAGAGTGACAAAAAATGTTTGAACTGAACTACTGCCCTCAATGCGGGCAAAAATTGACTAAAAAGGAATTGCCTCTGGACGGCTTGATCCCTTATTGCGAGCAATGCGGGGACTTCCGCTTTCCAGTTTTTTCCGTCGCCGTCAGCATGATCGTCATGAATGAAGGAGGCGACCAGGTTCTCTTGATCAAGCAGTACGGGAAGGACTCCTATATCCTGGTAGCTGGCTACGTTAACAAAGGGGAGAACACCGAAGACAGCTGCCGCAGAGAACTAATGGAGGAACTCCATCTAACGGCCAAAAGCCTCCACTTTAACCGCAGCCAGTATTTTGCTCCCTCAAATACCTTGATGCTCAACTATACGGTGACCGTTGACCAGGCTGAAAAGGTTAGTCCAAATGAGGAAATCGACGCCTGGAATTGGCTAAGCATAGACGAAGCCCGCCGGCAGATCCGGCCAAATTCCTTAGCCCGGACTTTTTTGTTGGAATACCTCAATAAATGCAAGTTGCATAGATAACCGAAAACTTATCGCATTAGCGATATATCCTTGATTTATTAAGGCTTACCTAATAAGAGTGATAAGCGCTTTATTATTTTGCGCTAATAACTTGATTTTATTAATCGAATGCTTTATAGTATTTTTTGCTTTAAAAGGTAGACACTCTCGGCCTAGCCGCGGGTGTTTTATTATGTTAACGGTATTTTGGCTAGGAAATTTGTATTTTGCTTGGTGAGGTAAAGCTTGGAAAAATACGGCGCTTTTAATAAGGAATTTTGATTTCAGCGGTCTTTCTCCCCTGGAAGCTCAGAAAATGCTGGGCTATGTAGAATTGATGAACCAGTGCATGGACTGGGCCATGCAGGATGGAGACCCTAGTGACGCGATTATGATTCTCCTCAGTGAAATTGATGAAGAGCTGGGGGCTGCCCGGGCCTTTAGGGAAAATTCTGGTTACTATATCAGCGATATGGCAGCTTTCAAAGAGACTGATCCTATGTTATATGAGGTATTTTCCCGCCAGGAGCTCAGCAGTCTGGTCTTGTGCCCGTTTTACTTTGAAACCGACCTGGTTGGCTTTGTCGGGGTGGATGAACCAAAAGACATGAGTCTGGCCCTCCCGGTCATGCAGATTGCTTCCAGCCACATGTCAGGGCTTTTGCAAAAGTCCTTTTACGTGGAAAAGGGAGCTTCGGATGACAGCGTGACCAATTTGTGCAGCGTGACCGCCTTCCGTCACCATGTTGCTTATGAATTGGAGGAAATCCAGGCTAATCCTGGCTTGAAGCTGGACCTGGTCCACTTCGACATCAGAAATTTTTAATAAAGAACACGGCTTAAAGGCCGGCGATGAGCTGTTAAAGCGCCTGGCCCAGGTGATTGTCCAAGAGGTAGGCAGCCCCTGGCTGGTCCGGCCGGTTGCTGACCACTTTTATGCCTTGATTCCTGATAGCAAGGTGGGCCAGGCCATTCGAAACGTTCATGATGCCATTATTGGGGATGAGGCCTTCGGGGTCTCAATTAGGGCCGGGATCTACCCCTTGTCCGCCAGCGACCAGCAGGTCTCCTTTGCCATGGACCGGGCCAGAATCGCGGCCAACAATGCCGTGAGCAACTACCAGAACTACTACTGCCGCTATGAGCAAAAGATGGAGGCTGACTTGACTTTGGCCAACTACCTGCTGGGCCATATCGACGAGGCAGTGGCTAAGGGCTGGATCAATGTCTTGAATGCCCTCTATCCTTTCAGCGGGAGCAATCACCAGGAGCTGGTGGAAAATCGTTTCGGTCATGGTCTTTTTAGACAAGGGCGGGGACGTTGACATTATCTATGCCAACAAGGCCTCTAAAAGCTGGACTGAGTCCCTCCGTCTCAAGGGTGAAGATTACGCGGTAGCCATCAAGGAAGAGTTTTGTGCCCTTTTAAGGCAGCTGGTCAGCCAGACCGATGGTGAAATCATTGAAAAGAGTTTCCGGATCAAAGACTATGCCGGCCGCCTGCGCCTGCAGCTGGTGGCAGAGATGTCGGGCCAGCGGGCATATGTAATCAGCACGAATATGGTTTGATTTTTTCAAAGTCTTTTTCTTTCAAACGCTTTTCGCTTATAATTTAACTAGTTTGAAAAAATCGAGGAAAAAGACGATGAATGAACTAGACAAAATGCGCTCCGGTGATTTCTACCAGCTGACGGCACCGGAGGTGGAGCCTTACCAGGAAGCGGGAATCATCTGGAACGACGAGTTCAGGCAGGGCAATAACCTGGACCGGCCAGCCCAGCTCCTGCGCTTGAAGATGCACCTGGGTGCTTTAGGGGACCAGGCCAGCTTTGGGACCAGCTTCAGCTGCCTAAACGGGCCGAATATCTATATTGGCCATCACTTTCTGGCCGCTGGGGTTTGACCATCGAAGACGCCGGTGAGGTCCATATCGGCGACTACGTGACCATGGGGCCAATTGCCTGCTGACGACAATCGCCCACCCCCGGTCAACCAGGCAGCGCCGCCAGCGCCTGGCCCAGGCCAAGGGGGGTGAAATCGGCAATGACGTTTGCCTGGGGGCGGGGGTCACGGTTTTAGCCGGGGTCAAAATCGGCGACAACGTGGTCGTGGAAGCCGGGGCCGTGGTAGCCCAGGATCTGCCCGCCAACGGGGTCTTTGCCGGCATCCCGGCCAGGAAAATCGCTGATCTGGCCAATGATTGCGGATAAGTGTCAACTTATGGTTTGACTTTATCATTATGTCTTAAGTAAAATATCACTATCAGCTTGCACTGAAGTGAAAAGTTGAGGAGTTAACAATGAAAATAGCTTTGCAAGTTTTAGCCTGCCTGGTGGCAGTTGAGTTCTTCTATATCATGTATTTGGAAACTTTTGCAACAACTTCCAAGAAGACGGCAGAAGTTTTCCAAATGGACCAGGAAGAATTAAGCCGGCCGTCAGTCAATACGCTGTTTAAGAACCAGGGTATCTACAACGGACTGCTGGCCGTTTTGACCTTGATCGCGGCCTTTGCCCTAGGCAAGATCGTCCTGCAGCTGGTCTTGGCCTACATGATCCTGGTAGCGGCCTACGGGGCCGTGACCAGCCAGCCGAAGATCCTCTTGATGCAGGGGGGCTTGCCTATCTTGACCTTGATCGTCAGCTTCTTTGCTTGATGCAAGATATAACTCTTTTTTCAGAAAAGCCTTGCGCTGAATTCTTGTAGGAATATAATATTTTTAATAAAAGGATCAAAATAGCCAGCGCAGCTGTTGAATAGGTGGGAGAAAGAAATGGTTGAATACAAAATCGACAAAACCGACCGACGCATTTTACAAATGTTGGAAGAGAACGCCCGCATTTCCGTCAAGGATATCGCGGAAGCCAACTTCATGTCTTCTCCGGCCGTAGCCAACCGCATCAGACGGATGGAAGACAACAACCTCATCAAGCACTACTATGCTGACATTGACTACTCGTCCATGGGCTACGTGGTTAAGGCCTTCATTAATCTGGAAGTCAAGCCGGAAGACAAGAGCGAGTTTTACCCCTTCATCGAGAAGGTTCCTAATGTTATCCAGTGCGACTGCGTGACAGGGGACTACTCCATGCTGATTCAGGCTGCCTACCGGCGGCCTGAAGAACTGGACCACTTAGTCAACGAGCTGCAGAAATTCGGCCGGACCAGGACCGAAATTGCCTTTTCCACCCCGATCGAGCACCGGCCAATCCCGGTCAAGACCGAGAGTGATGACGAAGAAGACAAGAAAGAAGACTGACTTTAAGCCTCCGTCTGCCAAGACGGGGGCTTTTTTTGACCTTTTTGCAAAGAAATAGTTAAGCTTGCCACTTTACCGCTTACAATTATACCAATTTGCGAGCAAAGACTTGACCCGGGCTAAAAAAACGGCTATGATTCCTATTACAAACGCAAAAATACAAATTAGTCCAATAGCTTAAATTGAACTAGACCAAAGGAGAAGACATATGTGCGGAATTGTCGGTGTAGTTGGCAAGCCAGCTAGAGAAGTTGTTTTAAACGGTTTGAAGAACTTGGAATACCGCGGCTACGACTCAGCTGGTATCTACCTCAATGACTTACAAGGGCATGAATACTTGACCAAGGCGGTTGGCCGGATTGCCAACCTGGAAGAAAAGCTGGCGCCAGAAGAAGAAGGGACGACCGGGATCGGCCACACCCGCTGGGCAACCCACGGCCACCCAACGGTGGAAAACGCCCACCCACAATACTCAGAAGACGGCCGCTTCTACCTGGTCCACAACGGGGTGATCGAAAACTACCTGGAACTGAAGGAAAAGTACCTGGCAGGCGCTCACTTCAAGTCTGAAACTGATACTGAAGTTGTAGTGCAATTGGTAGCCAAGCTGGCCAAGGAAGAAAACCTGGATGCTTTTTCAGCCTTCAAGCAGGCTTTGAAGCTGGTTAAGGGTTCATACGCCTTCTTGCTGGTGGACAACACCAAGCCAGACCACATTTACATTGCTAAGAACAAGAGCCCGATGATGCTGGGCTTGGGTGACGGCTTTAACATTATCGCTTCAGACGCGATTTCTGTTTTGGACCAAACCAAGACCTTCATCGCCTTGAACGACGGCGACTGTGCTGACGTAACCAAGGACTCAATCGAAATCCAGGACTGCGACGGCAACAAGGCGGAAAGAGAAGCTAAAGTTTTGGACATCGACCCGAACGCTGCTTCCAAGGGCACTTACGAATTCTACATGCTCAAGGAAATCGACGAACAGCCAGCAGTTATGCGCCGCCTGTCAACTGACTACTTAGACGAAGCAGGCAAGCCAGTTGTTGACGAAAAGATCATTGACGCTGTCAGCCAGGCTGACCGGATCTACATCTTCGCGGCTGGTACTTCCTACCACGCTGGTCTGGTCGGCAAGGAAATTTTTGAGAAGTTCACCGGGATTCCAACTGAAGTTGGCTATGCTTCCGAAGCTGGCTACCATTTCCCAATGATGTCCAAGCACCCATTCTTCATCTTCCTGACCCAGTCCGGTGAAACTGCCGACTCCCGCGTGGTCTTGACTGAAGCCAACAAGCGGGGGATCCCAAGCTTGACCATGACCAACGTTGAAGGGTCAACCTTGTCAAGAGAAGCAACTTACACCATGCTTTTGAACGCTGGTCCGGAAATCGCCGTTGCTTCAACCAAGGCTTACACTGCCCAAGTTGCCCTGCAGGCAATTTTGGCCAAGGCCGTTGGTGAAAAGCTGGGCGACCAGGCTGCCAAGGACTGGAACTTGAAGCAAGGCTTGAGCCTGGCCGCTGAAGGCATCCAGGAAATCGTTGATGGTAAGGAAAAGATCGAAGAACTGGCTAAGAAGTACCTGATACCATCTAGAAACGCCTTCTACATCGGCCGGGGGATCGACCACGCCGTTTCCTTGGAAAGTGCCTTGAAGCTGAAGGAAGTTTCCTACATCCAAACTGAAGGTTTCGCCGCTGCTGAACTGAAGCACGGGACCATTTCCCTGATCGAAGACGGCACGCCTGTAATTGCCTTGATCAACGACCCGGTAACGGCTGACCTGACCCGGGGCAACATCCAGGAAGTGGCTTCCCGCGGGGCCAACGTGATCACTATCGTTGGCAAGCAATTTGCTAAGGAAGGCGACAACATCGTCTTACCGGAAATCGACTACTACCTGTCAGCTTTGCTGTCAGTAGTGCCGACGCAATTGCTGGCTTACTTCGCGTCCAAGAACAAGGGCTTGGACGTTGACAAGCCACGTAACCTGGCTAAAAGCGTTACGGTTGAATAATTTTTGCAGAATATTTAAAACAGGCAGGTGCGGCGGCATCTGCCTGTTTCTGTATCTGAAACTTGCTTTGACTTTTGGCCAAAAATTTATTCTTCTGGTACAATGATAGCGTTTTCTTGATGAAGGAGACTGAGCAATGATTGTGACCGACCGGCAGCAGAGAATTCTGCAGATCCTGCTGGAAAATGAAGACGGAATCAGTTTAGCGGAAGTGGAAAAAAGGCTGGAAACCAGCCGGAGGACCCTTTACCGGGAATTTGGCTTGTTGCGCCCGGAACTGGCCAAATCAGACTTGACCTTGACCAATAAGAAGGGCTATCTGCAGCTAACTGGACCGGATGAGTCGATTGCCGACCTGCGCGGCGAACTCGAAGAGAGCCAGGGGCAAGGTGAGATGAAGGCCGAAGACCGGGGAAATGCCCTGGCCGCTCTGCTTCTGTTAAATTGGATGTCATTGCCTGTGAAAACATGATCGGCGGTTCCCAGTTCTTGAAGGAAGAAGGCTACAAGCACTTGAATGACGAAGACAAGGCCGAAGTTGACAAGTACGTTGGCTTTCCCGAACGCCGCTGTTGACCGATCGTGCCAATTCAGCACAATGAAGACCCGCTCTTTGTTTCAGTTGAAGACTTCAAGGAATGGGTTATCGACGAAAGCCAGATGAAGAACCCCGAAGATCCGCTTGGAAGGCGTTCACTACGCTCCAGACCTTGAACCATACATCGAAAGAAAGCTGTTCTCAGTCAATACTGGTCACGCCACTGTTGCTTACACCGGCAAGGCTCTGGGCTATGAAACGATTGGGGAAGCCGTTAAGGATGACCGTGTCGTTGACCAGGTAACCCGCGTTTTGGCTGAAACGTTCCCTCCTTTTGGCCAAGTGGGACTTTAGCAAGGAAGAACTTGAAGAATACCATGCTCAAGTCATCAACCGCTTCAAGAACCCATACATCTCTGACGATATCTGGCCGGACACCAATTCGTAAGCTGGGCTATGATGAACGTTTCATCCGGCCAATCAGAGAACTGAAGGCCCGGGGTCTTGACTACACGGCCTTGCTTGAAACGGTCGGCAAGATCTACCACTTTGACGAGCCAGTAGACGCTGAAAGCCAAAAAGCTGCAACAGATGCTCAAGGATGAACCGCTGAAGGAAGTCGTTTTGGAAACGACCGGTCTCAAGGATGACCCTGACCTGGTTGAAGAAATCATCGCTTCAATTAAGGCAGCTGATTAAGTAAAACAATTTTGCAATAAATTCCAAATCAAAAACTAAAACAATACGAAGCAAAAGCAAGAAGAAAAAGCATGTTTGAAAAAACATGCTTTTTTGCTTCTTATTGAAATATAAATCCGTGGCATTAGCCCGAATTACGCAGGCCGGAAGCGACCCCGTTGATGGTGATGTGGATGATCGATTCGTAGATGCCGCTGAGCTTTTCTTGCCGGCCCCGCTTGATCATTTCCAGCTGGACGTAGTTCAAGACGTTGAAGTAAGGCAGGCGGTAGTCCAAGCTTCTTTCCAAAGACGGGTTGTCTTCCAAAAGCTTGCTGTGGCCTTCGATCTGCAGGATGACTTCCTTGGTCAGTTCCCATTCCTTCTTGATGATGTCAAAGACTGACCGGGTAGCTTCGTCTTCACAAAGATCAGCGTACTTTTCCGCGATTTCCATGTTGGACTTGGACAAAACCATGTCGACGTTGGACAGCAGGGAGTGGAAGAATGGCCAGCCCTGGTACATTTCCTGCAGTTCCTTCAAGTTATTCGGATCAGCATCAATGAAGTGCTTGAAGGCTGAACCAACCCCGTACCAGCCTGGGAACATGACCCGGCTTTGTGACCAGGAGAAGACCCAAGGAATGGCCCGCAAGCCGGACAGTTCAGTAATCTTCTTTCTGGCTGCCGGCCGGGAGCCGATGTTCAAGCTAGAAACTTCCTTAATCGGCGTAGCCTGGAAGAAGTAGTCATGGAAGTGCGGGTTGTCAAAAACAAGTTCCCGGTAAACCCGGTTGCTGTCTTCCACAATGCCGTCCATTGAAGCCGTAAAGTCCTGGATGTGGTCCTGGCTGACTTTTTGCTTGGAGACCATCCGGTCAACCGCGGCGGAAACCAGCATTTCCAAGTTGTAGTAGGCAGCGTCCTTGTTACCGTACTTGTTCTGGATGATTTCCCCTTGTTCAGTGGTCCGGATCCGGTCCTTGATGGAGCCGAATGGCTGGGAAGTGATGGCTTCATATGATGGGCCGCCGCCCCGGCCAACCGTGCCGCCCCGGCCGTGCATGAAGGTAATCTTGATGCCCTGTTCCTCGCCGATGGCTGTCAGTTCCGTTTGGGCCTTGTACAGGTTCCAGCAGGAGGCCAGGTAGCCGCCGTCCTTGTTGGAGTCGGAGTAGCCCAGCATGATTTCCTGGTAGTTGCCCTTAGAAGCAACCCAGCGCTTGACGATGTCGAAGCTGAGGTAGCGCTTCATGATTTCCCGGGAGTTCTGCAGGTCTTCCACCGTTTCAAACAAAGGCACCACTTGCACCCGGGCCTTTTCGGAATCGAGCAGGCCGTATTCCTTCAGCATGATGGCTTGTTCCAGCATGTCAGAGATGCTTTCGGTGTGGGAAATGATGTGCTGCTTGATCACATTCTCGCCCAAGGTGTCCTTAAGCAGGCGGGCAGTGTGGTAGATCTTCAGTTCCCTTTGCAAAAGCTCTGACTTCGGTGAGTTGGATGAGTGCAGGCTGCGGGGATCATTGTTTAATTCACTGAGCAGGATCTGGATCTTTTCTTCTTCGTCCAAATCGCTGTAGTTGTCACAAATCCGGGCACTCTTTAAGAGCTCTGCCACGCAGGCTTCGTTGACGCTGGAGTCTTGCCGCATGTCGATCGTAGCCAGGTGGAAGCCAAAGACATCAATAGCTTCCAGGAGGGCGTCAAAGTGGCCGCCGGTAACTGCCCGGTCATGGTTTTGGATTAATGACCGCTTGATGGCTTCCAGGTCTTTCTTGAACTCGTAAGCATCCTTGTAGACCGGAGCCTTGAGGGCAGCTTCTTTCTTAACGACGGCTTCCTTGGAGAAGACGTCCAAAAGCTCCATTTCCGTGTGGGCCAGGCGGCTTTCCAGGTAGTAGAAGGCCCGGCGGTAAGGTTCGTTTTCTCGGAATGGGGAGTTGTCGGCTGACAATTTGGCCAGTTCGGCAACTTCCGGCGTTGGCTGCACGTAAGAAGTTGAAACAGACACTGTCCGGTAAAGGTCGTTGAGAGCCTTGACGTAGTATTCAAAAATGACTTCACTTTGAATCGTCGCGCTCAAGCGGAGGGTTTCAGCCGTAACGTAAGGGTTGCCGTCCCGGTCCCCGCCGATCCACATGCCCATGGTGATCGGCGTTGCCCCGTCAACGTTGAGGCCCTTTTCCCGGGCAAGTTCCTTGTAGCGGGCAGTCAGCTTAGTGATGGCCGGAATCAGGGAGCCAGGGTAGTAGACCATGACGTTCTTAATTTCATTGGAGACCTTCAGTTTCTTTTCCCGGATGATGTCCGTTTGCATGATGATTTCAATGTAGCGGCGGAGCTGGTTGGTCCACTCTTTCCGGTTGATGGTGCTGGCCTTGACGTCCCGGTGGCGGCGGAGCTGGTCGTGGATCTTGTTAGTCAATTCCAGAATGGTCTTGCGCTGCACCTGGGTTGGGTGGGCGGTCAGAACTGGCACGACATTGACATGACTCAGAATTTCAGCGGCATTGTCCTTTTCCGCTACCAGGTCAACCGTTGATTCCAGCTTGCCCAGGTAATCCTTGTCCGTGTTGTTGAGCAGGTTGACTTCGGTGGCCAGGTCAACGTCTTCAGTAATGTTGATCAAAAGCGGCAGGGTCGCGAAGTAGCGGGCGACAATGATCATCTCTTGATTGCTTAAGCAGGCAATCTGACTTTCCAGCTGGCTGTGGTCGCTGCTGGCAGCAATTTTAACCAGGCCCTTGATCTTGGCGAATTCTTCGTCGCCAACCAAATGGCGGGTGCTTTCGTCAAGCAAGTCGGTCAAAATCTTGACCTCTTCAGCAGTAACCGCGTGGTTACTGTTGTTCTCTAATTTCTTAGCAGTCACGCTTAACTTCCTCTTTCTTTTAAAATAAACTTTGTTTGCTAATGCTTTTTCTCTATCATACGCCTTTTTTGTCCAAAATTGAATTAGTTTGGGCTTGCTTTCAGCAACTTTTTCTAAAAAACGAACAATCGTCTTGACAAAAAATGCCTTTTTGCTTAATGGGGAACTATACAAGCTGCTTGAGCCAGCTGGCCAGCATAATAATCAAAGGCACGCTGACCACAGACATTAAAGTCGACAGGCACAGACAGCGCATTGGGAAGGCAACCGGGCGGTTGGCCAGGAGGCTGAGCATGACGATAAAGCCGGCAACCGGGGCAGCCGCCATGATGACTACGGCCAGGTAAGCGGTCGTTGACAGGGGAAACAGTAGCAGGATTACGCTCATGCAGGCCGGCATAAGGAAGTTCCGCAAGAAGCAGATCAGCCAGGCCTTGCTGTCTTTATAGAAGTCACCCGAAATAGTCCCCAGGTTAGAGCCGATGACGATCATGCTTAAGGGGGTGTTAAGCGAGGCCACGTAGCTGACCGACCGGTCTATCACGGCTGGGAATTTGAGGCTGGAGCCAGTGATAAAAAGGGCAAAGCCGATGGCGGTGGCAATAATATTGGGATTGAAGAGGACGGTTCTGAGGGTGTCGGCCAAAGGCTGCCGCTTTTTAAAAGTACCGATGCCGTGGGACCAGACGAAGATGTTGTTTAAGACTAAGATGGGTACGGCGAAAAAGGTCCCCTTGCTGCCTAAGAGGGCTTGGATTAAAGGGATGCCGATAAAGCCACAGTTGTTGTAGACGGCCCCGAAGGCGATCAGCTGCTTGTCGGGGTCATTTTTTAAGCGGGGCAGGCGGAGGAAAAGGCTGCTGAAGGCGATGGGGAAGAGGTAGTTGAGAGAGCCAGCCAGGAAGGTCAAGTCGAAGTCCTTGATTAAGCTGGCGCTGGCCGGGCGCTCAAAGGCGTTGATGATCAGGCAGGGGCCGACGATGTAGACCAGGATGGCGGTCAGGTCCTTGCCGGTTTCTTCATGGATCATGCCCTTTTTCCGGCAGAGAAAGCCGATGGCCATGAGTATGAACATGATGCAGATCTGCTCCAGTGAGATGAAAAATGCCATAAGAATGCTCCTAGCAATCAGTTCTTATTAAAAGATTATAAGCCAATTTTTCCTTAAAAAGAAGGAAGTTGAAAAAAGGGAGGAGAAAATGGTTGAAAAGCTTGGAGGCAAAAGGCCAAACCTGTTATACTGATTTAGTCATAATTGCAGTAGAAAATTTAAGAAACAGAGGAAAATCTATTGATCACAGTAACAGATTTAAGTTTGCAAATCGGCAGTCGCACCCTTTACAGCGACGTCAACCTTAAGTTCACGCCGGGCAACTGCTATGGCATCATTGGGGCCAACGGGGCCGGCAAGTCGACTTTCTTAAAGCTGCTGGAAGGAAAAATGGAACCAACCACTGGCTCAATCAGCATGGGCCCTAACGAAAGAATGTCCAGCTTGAACCAGGACCACTTTGCCTTTGAAGATTTTTCCGTTATGGAAACTGTGATTCAAGGCCACCAAAAGCTCTACCAGGTCATGAAGGAGCGTGACGCCCTTTACGCCAAGGCCGACTTCAGTGAAGAAGACGGGGTCAAGGCGGCTGAACTGGAAACGGAATTTGCGGAACTGGACGGCTGGAACGCGGAAGCTGATGCTGCCCAGCTTCTCCAGTCCATGAGCATTCCAGAAGACATGCACCAAAAGCAGATGAGCGAGCTGGCGGAAAGCGACAAGGTTAAGGTCCTTTTGGCCCAGGCCCTTTTTGGCAACCCGGACACCCTTCTTTTGGACGAACCGACCAACGGTCTGGACGTGCACACCACGGCCTGGCTGGAAAACTTCCTGGCTGACTACGAAAACATCGTCCTGGTCGTTTCCCACGACCGTCACTTCTTGAACCAGGTCTGCACCCAGATGTGTGACGTTGACCGCGGGCAGATCAAGCTCTACGTCGGCAACTACGACTTCTGGTACGAATCAAGTAAGCTGGCTACGGAACTGGCCCGCCAGCAAAATGCCAAGAAGGAAGAACAGATCAAGCAACTGCAGGAATTCATCGCCCGTTTCTCAGCCAACGCTTCCAAGTCCAAGCAGGCTACTTCTAGAAAGAAGCAGCTGGACAAGATCAGCTTGGACGACATCAAGCCATCCAGCCGCAAGTACCCGTACATCAAGTTTGAGATGAACCGGGACCTGGGCAACGACTTGCTGAGAGTGGACAATGTGTCCTACAAGTCCGGCGACGAGCAGCTTTTGGACAATGTTTCCTTTATCATCCGGCCAGGTGACAAGGTTGCCTTCTTGTCCAGAAACACCCGGGCAACCACGGCCTTGATGGAAATCATCGCCGGCCGCCTGGAACCAGACTCCGGGACTGTTACCTGGGGGCAGACGACTTCCTTTAACTACATGTCCAGAGACCTTAACGCCAACTTCGACAATGACGAATTGACGATTTTGGACTGGCTGCGCCAATACGCTGACAAGGAACACGACGACAACACCTTCCTGCGGGGCTTCTTGGGCAGAATGCTCTTCAGCGGCGACGAGATCAACAAGCAGATCAAGGTCCTGTCCGGGGGTGAAAAGGTCCGCTGCCAGCTGTCCAGAATGATGCTGGAAGCAGCCAACGTGCTGGTCATGGACGATCCAACCAACCACTTGGACCTGGAATCCATCACCGCCTTGAACGAAGCCATGGAAAACTACCCTGGCTCAATTCTCTTTACTTCCCACGACCACGAGTTCATCCAGACCATTGCCAACCACATTATTGAAGTTGGTCCAAAGGGTGTGGTGGCCCGGGCCGACATCAGCTACGACGACTTCCTGGCTCACCCGACTGTTCAGGAACAAGTTGCAAAGATTTACTAAAAGCAGAAAATGCCAAAGAAAAAGCTTATCCGTCCTGGATAAGCTTTTTTGCATCTGCCTTATGCGTCATCGTCAAGTGCTGACCGGTGACCTTTTAAGGTAAAGATGTAGAGCATAAGAGAAATGAAGACCGCGAAGGAGACGTAGTAAAAGAAGAGACTTTCGTGGCCGATTGACCGCATGCACAAGGCGACGTATTGGGAAGTGCCGCCAAAAAGAGCGACAGTCAAACCGTATGGCAGGCCAACGCCTAAGGCCCGGATTTCACTTGGAAAGAGCTCTGCTTTGACTATGGCATTGATTGAGGTGTAGCCAGAGACAATGACTACCCCCGTCAGCATTAAAAGAAATGCTTGCAAGGCGGTAGAGACATGAGCGAGCAGGGTGAAGAGCGGGACGGTCAAAAGGGTTCCGCCGATGCCAAAGAAGATCAAGAGAGGCCGGCGGCCGATTTTATCAGACAAGTGGCTAAAGAGGGGCTGCAGGGCAACCATGACTAAGAGAACCAAGAAGTTGATCATGGCGACCGTTTCCTTGTCCATGCCGGCTGAGTTGATCATGAACTGTTGCATGTAGGTGGTGTAGGAGTAGAAGCTGATTGTGCCGCCCAGGCTCATGCCGACGACGATGGCCACCTGCTTAGGGTATTTCATCAAAAGGGCGAAGCTGCCGGCCTGCTTGTTTTGCTTGTTTTTAGCAGTGAACTGGGCGGATTCATCCATGGACAAGCGCAGCCAGAGGCCGGCTACGGCGCCGAGAGCACCAATGATGAAGGGAAGGGGATGCGCCGACCAAAAGCGTAAAGCTGGGCGTCAGTCAAGACCTGCTGCAGGATGATTTGGACCAGCAAGGAAAAGAGCTGGCCAGCGATCAGGGTCACGTATTGGAAAGATGAGTAGAAGCCCCACCGGCCCCGGCTGGCCATTTCTGACATGTAGGTGGCGCTGGTGCCATATTCCCCGCCCAGGGAGAGGCCTTGCACCATCCGGGTGATGACCAGGATGAGGGGGCTGATGATCCCGACTTGGGCGTAGGTTGGGGCAAAGGCGATGATCAAGGAGCCAGCGGCCATGATTTATTGTGACTGACGGGGTCAAGGCAGCCTTGCGGCCTTTTTTGTCGGCAAACGGGCCCATGATCAGGGAACCCAGGGGCCGCATCAAGAAGCCGATCGCGAAGACGGCAGCCGTTGAAAGCAGTTCAGCGGTCTGGTTGCTGGCCGGGAAAAAGCGGCTGAGAAGTAGATTGAGAATGAGGCGTAAACGTACCGGTCGAACCACTCAATCATGTTCCCCAGTGAGCCTTTGAAGATATTTGAGGCGATCTGCCATTCACCAGATAAGATGCCGATTTTTTTGCTTTGTAAAGGGTTGACAAGGGGTAGATTATAACAAGATTGAAAATAAGAGATAAAGGGGAGGGGGCTGTCGAAAAACAGAAAAAAGGCTTTGGCTCCTAATATTATTAAGCTGTGCATCTATCTTTTGGCTGATTATAGGAGTATCTGCTAACTAAATTAAGTTTTTGGTGGATACTGCAGACTGTGCTGCACTTTTTTAGTAAAAAATCCTTTTCTTATAGGCTATAAGAAGTAAGCGTGTTAAACTAAAATGTATGAGTGTGGTTATATAGGGATTGTCTTTTATTCCCAGGAGATTTCCAGCAGGAAGGACAAGGCTTACCAGATTGCTGAAGCTTATGCCGTTGAATTGAAAAGGGATTTCCAATAATAACTTTGTTTATCCGGCAGACTTTGTGGAGGCGCAGAAGGCCATCAAGCTGCAGCTGAAGAGCAGGGATACGGATCCGGACAAGAGCTTGTTCTTGAACTACCGGGTCAAGGCTAAGAGTGGGAAGATTCTGCATTTGAGCACTTTGGGCCGGTATGTGGAAGACAGTTACTACGGGGATGTCTTTGTGATCTTTGTCTTGCCGGATGACTTGTCCATGAAACGAAAAAAATAAAATGGTGAAGCTCGAGAATGAGTTTCACCATTTTTGGTATGTGTAATTTTGGGCCACTATTCATGAAAATCGATGGAAAAGCGGGCCAGAAGGACCAGCAAGAGTTGCAAGAGGTTCAGCCAGAGAAAGCCAGAGCCTAAAGCAACAGGGGCGACCATTTCGCCGGCTGTTAAAAGCAGGAGGGCGGCCAGGAAGAAGAAGATTCCCCGGTCGTCCAGCTTGTTTATCCGCAGGCCGAGCCAGGCTTCGCAGATGAGCATGACAATGAAGACCAGGCCGGCGACAATTGAAGGGATGAAAGAGGACCAGCCCATTAGTCTGGCAGAGTTGCAGACGTCAAGCAAGCTGGCCAGGCCGGCCCAAAGAAGAAAGAGGCTGAGCAGAAAGCTGACAGCTTGCAAAATTTTGGTAATGACTTTCAAAAGAACACCTCGATTCTCAAAGAATATTTTTCCTTCAGTATAATGCGAAGAATTTTTTGAGCAAACGCATAGATTTTGTTAAAATTTGCTATTTTCGCTTAAGGACATCCTTATTTTTTGTGAAAAATAGGTAAAATCGGCCCAAACACAGATAAAACAGTGCTTGCTCTTTAGGATAGTCAAGAATAATCTCCAAGCAAAAAGCCCCAAGAATGAATCTTGGAGCTTTTTTTGCGCCTAAGCTAGGCAATGTTTTTCAAAATATTAGTCCGGTAAAGAAGCAGGTTGATCACGACAATCCCGCTGGTTACCAGGAAGACGGCGCTGTAGCTGAAGTGGGCGGAAACCGTTGAACCTAGCAGAGGGCCAAAAATATTGCCGACGTACATGGCACTTTGGTTCCAGCTGAAGACCCGGCTGGTCAGTTCCTTTGGACTGTGCTTGGTCAGCAAGGTCTGGACCTGCGGGAAGAGGCAGGCGTCAGTAAAACCAACCAGGAAGCGGCAGACGCCAAGCTCAACCGTGTTGCGGACGAAAGCCGTCAAGAAGAAGAGGATGATCGACCCAATCAAGCCGCCTAAGATGATCTTGTGGGTCCCGATCCGGTCACCTAAGCCACCAAAGTAAGAAGCCGCGGCCACCGTGGCAATCCCTGGCAAAGCTGCGATCACCCCGCTGACGAGGACAACCTGCCTGGAATTGTGCATCAAGCTTCTGACATACAAGGAAACGATCGGGTTGATGGAGTTGTTGGCCGCTTGAATGATCAAGGTCGTCAGCAGCAGCCCCAGAATCAATTGCCCGCTCTTAAACTGCTTCATCGTGTCCTTAAAGCTGCCCCGCTGTTTGCTCTCAACTGGCACGAAGTCATCTTCATGGATAAAGAAGACAGACAAGATAAAGCAGGTGAAAAGCAGAGCCCCGGTAATAAAGGAGGTTACCCGATAGCTAAAAGCCTGCGATAAGGCCCCGCCGGCAAAGGGCCCCAGCAATTGCCCCCCGGTCTGGGCAGAAATCATGATCCCCAGCGCCTTGCCCGACTTGTTCTTCGGCGTTTCTGACGCGATAAGGGCGTTAGAGTTAGAGATGAAGCCGGCAAAAACCCCCTGCATCCCTCTAAGGAACAGCAGCTGCCAGACATTCTGGGCCAGGCCCATGCAGGTAAAGACGACCGCCATCCCTAAAGAGGCCCGCAGAATCATCGGCTTGCGCCCCTTCTTGTCAGCCAGCTTGCCCCAAATCGGGGAAACCAGGGCCGCCACCACGTAGACCGCTGAAAAGACGATCCCTGACCAAAAGCTCAGCTGCTGGTGGCTGAACTTGCCCAGGGTGTCAATGTACAAGGACAAAAAAGGGGTAATTTCCGAAAAGGCAATCCCCGCCAAAAAGACGCTGACCGTCGAGACTTGCAGATTTCTTTTCCATACCGGCTGCTTTTGCAAAGTGTGACCTTCCTTTTATTTCAGCTTCGCTAATAAATACTTTACATATCTTTTACCTTACTCTTGGAGGAAAAATAGTCAAGGAAAAAAGGCCCTCTAAATAGGAAGAGAGCCTTTTCAAAAAAGAAAATCTTAAATTTTAGTTGTCATTGTCAGCGATCCCGAAGATCCGCAAAAATTGCAGGAAGAGGTTGATGAAGTCCAGGTACAGCATCAAAGCCCCGTTAACGGCCAGGCCAAGTTCTGGCAGCTGGTCGCCGTAACTGGCGTAGATGGACTTCATCTTCTGGGCATCCCAGGCAGTCAAGATCGTGAAAATGATGACCCCGATGATGGAGAAAATGAAGCTGGCTGGCGTGCTCTTCAAGAACATGTTGACCAGGCTGGCCACGATCAAGCCCCAGATGGCGGCTGAAGCGTAAGCCCCGATGGTGTCCAGATTCTTCTTAGTCACGCTGCCGTAAGCCGCCATCCCGATGAAGACGGCTGAAGCGGAGATGAAGGCCCCGCCGATTTGGGCACCCGTGTAGGCAAAAGCCAAAAGGGAGAATTCCAGCCCGTAGACAACCGCGATAGCCATCAACATGAAGAAGGCCGTTGTCGGCTTGCGGGTAGCCTTAAAGCTGATGCCCACGCTCAAAATCAGCGGCAATAGCAGCAGGACCCAGAGGAAGACCCGGTTGGTGAGTAGCGGCAGCAGGCTGCCAGAGAAGACCGTCAAGGTCAAGTAGGCAGTCAAGGATGAGACCAGAACCGCCAGGCCCATGATGGAATACATTTTCGTTAAAAAGCCATTGAGTGCTGAGTCGTCAACGATGTGGCGGTGCTCTTGTTCAGGCGAAACGTTAAACATAATTTCTTTTGCTCTTTCTAAAAAACTAAAAAAACTGTGGACAGAATTTATTCCCAGATTGCCGTTTTATTCCGGTAATCAACGTGATATCCAGGGTTTAGATATAACAATAACATAGCCCCTAAAAAAAGCAAGCCGGACGGTTTTTCCGCTAAAAAAACTAAAGAAAAAATCAAGAAAGTCCGGCTTGCAGGAAAAATATCGGAGTCAATAGATTGAAGAAAGCGGATAAAAGGTTCAAAATTAATAGCTAGAGGAGGTCGAAATATGTCAAAAGAATATGTTGATCGGCCAATCGGCGTTTTTGATTCCGGCCAGGGGGGCCTCACGGTCCTCAGCCGACTGGTTGATCTGATGCCAAACGAAGACTATGTCTTCTATGGCGACTCAGCCAATGCTCCTTACGGGGTAAAGAGCAAGGAAGAAGTCTACCAGCTGGCCAAGCGGGTAGTTGATGAACTGATTGACAAACACCAGGTCAAGGCCGTCATGATTGCCTGCAACACGGCAACCAGCGCGGCGGCTGACCGCCTGCGCCGGGAATACTCCCTGCCGATCATCGGGATCGAACCGGCTGTCAAGCCGGCAGCTGAAGAAAATCCCGGCCGGCAGGTTGTTGCCATGGCCACTCCCTTGACCCTGGAGCAGGATAAGTTCAACCAGCTGGTTGCCGAATGTGCTGAGCCTGGTCAGGTGGTCAAAGTGCCAGCCCCGAAACTGGTCGAATTGATCGAAAAAGGGCAAACTGACAGCCCGGCCATTTACCAGTACCTGGAAGAATTGCTGGCCCCATATGTCGGCAAGGCGGCAGGAGTGGTCCTGGGCTGCACCCACTTTCCTTTTGCCAAGCAGGCCATCCAGGAGATCTTAGGGCCCCAGGCCAAGGTCTATGACGGAGCCATCGGGGCCGCTGCTGAAGTCAAGCGGCAACTGGCCAGCCAGGATGAACTGAATGCCAGCAGCCAGCCTGGCCAGATACTGTTTGAAAACAGTGCCCCAGCCGGCGCCGATTTGAGCAAGCGCCTCTATGCCCTTTACCGGCAAAAGCAGTAGCTGGCAAAAGGCGTTTTTTCAGCTAGAATAAATAGTAAGAAAGCAAACAATTAGTTTTAGATTATTAGAGGAGGACTTATGCAAAAGCCAGCAGAATGCACGACCATTTTAGTCGGCAAGGACGCCACCATTGATGGCTCCACGATGATTGCCCGCAGTGAAGACGGCGGCAGCACCATTATCCCTGAAGCCTTTATCGCGGTTAACCCGAAAGAGCAGCCAAAGCACTACAAGGCAGTGATCAGCGGCCAGGAAATCGATGATGAAGACCTGCTGCCAAACCCGCTGCGCTACACCAGCGTTCCAGACGCTTCCGGCAAGAACGGGATCTGGGCCGCTGCCGGGATCAACGACGCTACGGTAGCCATGACGGCCACGGAAACCATCACCACCAACAGCCGGATCCAAGGGATCGATCCCTTAGTTGAAGAAGGGGGCCTGGGCAAAGAAGACTTTGTCACTTTGACTTTGCCATACATCCATTCAGCCAGAGAAGGGGTCAAGCGCCTGGGCTACCTGGTGGAAAAGTACGGGACCTACGAAATGAACGGGTCAGCCTTTGCCGACCATGACGAAGTCTGGTACATCGAAACCATCGGCGGACACCACTGGGCTGCCCGCCGGATTCCGGACGATGCCTATGTGGCAGCGCCAAATCGCTTGAACATCGACTTCTTTGACTTTAACGACGAAGAAAACTTCATGTGCTCAAGTGACTTGCTGGACATCATCAACGAATACCACTTGAACCCGGACTACCAAGGCTACAACCTCCGTCACATCTTTGGTTCATCCACCATCAAGGATGCTCACTACAACAACCCGCGGGCCTGGTACATCCACCGCTACTTCGACCCTGAATGGGAAGGCGAGCCAGGGGACCAGGACCAGCCTTTCATCACTTACGCCAAGAAGAAGATCAGCCCGGAAGACATCAAGTTCCTGGAAAGCTCCCACTACCAGGACACCAAGTACGATGTCTACAGCACGACCAACACTGAAGCGGAAAAGAAGCTCTTCCGCCCAATCGGGATCAACCGGAACTTCGAAACCCACATCCTACAGATCAGAAATGACGTTGAAGAAGGTATCGCCGGCGTGCAATGGCTGGCCTTTGGCCCGAACACTTTTAACTGCTTCGTGCCTTTCTACACCAACGTTACGACTACTCCGGCCAGCTTCCAGACCGGTCCGGACTTTGACTTGACCAAGATCTTCTGGCTCAACAAGCTGAACGCCCAGCTCGGCGACACCAACTACAAGGTTTACAGCGCTTTGGAGCAGGCTTTTGAAGAAAAGACCATGGCTAAATTGCGCCAGATCGAAAACGAAACTGACCGGGCTGTTAAGGGCTTGACTGGCCGCGACTTGCAAGAGAAGCTGGAAGAAGCCAACCAGAAGATGGCTGACCTGACTTACAAGCAGACCGCAGCCTTGACCGGGGAAATGGTCAAGGACGGCCACAGCTTGATGAAGCTGAAGTACGACCTGCTGGATTAATTGGAGATTATTGATGGAAAAAGCCGCTGAAATTCAAATGCTGAAGGACTTTTCAAATGCCAACGCCACTTCCGGCTTTGAAAATGAATTCGTTGACCTTTTTACCAAGACGGTCAAGGACTACGCCGACCTTGAAGTCGACGGGATGCTGAACGTCTACGCTTCCAAGAAGCAGAACACTGGCAAGCGGCCGGTGATCCAGCTGGACGCCCACTCAGACGCCGTGGGCTTCTTGACCCAGGCTATCCGGCCAAACGGCTTGATCAAGTTCGTGACCCTGGGCGGCTGGAACAATGTGGTTCTGCCGGCCCTCAAGGTCAAGGTCAGAAACCGGGACGGGGAATACATCCCCGGCGTCGTGGCTTTAAAGCCGCCCCACTTCATGTCGGAAGCTGAAAGAACGTCTGTCCCGCAGGTCGCTGATTTGTCTATTGACGTCGGCTCCTCCAGCCGGGAAGAAACGATCAATGACTACAAGATCGACACTGGCTGCCCGATTTTCGTTGACGTGGACTGTGAATACAATGAAAAGACTGGCCTCTTCTTCGGCAAGGACTTTGACGACCGCTTCGGCGCCGCTGCCATGGCTGACATCCTGGAAAACTTGAAGGATGAAGAAGTCAACTTTGACCTGGTTGCCGCCTTGTCCAGCCAGGAAGAAGTCGGCCTGCGGGGTGCCTATGTCACGGCCCGCAAGATCAAGCCGGACCTCTGCCTGGTTCTGGAAAGCTGCCCGGCTGATGATACTTTTGAACCGGACTGGCTGTCTCAGACTGGCCTTAAGCGGGGACCAATGTTGCGGGACATGGACGTCACCTTCCTGCCAAACCCCAAGTTCCAGCAATACGCCTGCGACTTGGCTGATAAAAACGGGATTCCTTACACCCGGTCAGTCAGAACTGGTGGCGGGCAAGACGGGGCGGCCATCTACTACGAAAACGGGGCCCCGACCATCGTGATCGGGATTCCGGTCCGCTATGAGCACTCCCCATACTGCTTCAGCAGCTACAAGGACTACAAGGCTGCTGTTGATCTGGCCTTGGCGATTATTAGAGATATCGATAAGGAAAAGCTGGAATCCTTTAAAAGCTTTAATTAATTAAGGGAACTTTTTACCTTGTTAACGCTTTAAGGATCTGCTAGACTAAATTAAGTCAAATTGAATAAAAGCCACTAGGGGAGCGAAAGCTGAGATGACGAAAGTCGACCCTTTGAACCTGACCAAGGTAATTCTTGCGCAAGGGAAGTGTTTCTTAAACATGATTTCAAACTCCTAGCCGGCAATTGTTGGATAGGAGTTTTTTTAATGCTTAGAAGAGAGAGCGAGTGGAATGTGAAGGCTATTATCTTGATGGCCTTGATTGGGATTATTATGGGGGTTATCTACACTTACGTCGTCAACCCCATCTACAATTCAGTTGAATTAGCCTTGAACCTTGTCGGCCTGGGGCCTTTAGCCGGGCAGATCTGCGCCGGTCTTTGGTACATGGCTGCGCCTTTGGCCATGTACTTCGTGCCAACCTTTGGCTCCGGGATTGTCGGGGAAACCCTGGCTGCTACGGTTGAAATGACCTTCGGTGGCCAGTGGGGGGCAATGACCATCCTGCAAGGGCTGGTGCAGGGGGCCTGCAACGAAATCGGCTTCTTCCCGAAGAAGGAAAACTATGACCGCTTCGGCTGGGGCAGCTTGATTACCGGGGCAGTCTGCTGCGCGGTGGCCGGCTATGTAATGTCTTACTTAACTTACGGCTGGAGTGCCTACAAGTCAGCCCTCTTGATTGAAATGTTCATCGCCTGCATCATTTCTTCCATCGTTTTTGACGCGGTTTTGGTCAAGCTGATCACCAAGCTCTTTGACCGGGTCATGGCCAAGTAGTTTCGTAAAGTTATCATTTTTTTGATAAAAATAATCAAAAATGCGTGACAAGCCCTCCTTAAAGTTGTATGATGAAAAACATTGTTAGTTATCTTTCAAGGGGGGAGCAAAATGACGCATTTAATTTTAAGCAGACCAAAGAAGATGAACCGGGCATACTGGAGCATGGTTGGCCTATTGCTGGCCTTGATGCTGCTGACTGCCTGGATTGGCCTGCATACCTTTGCTTACCTGAATCTCTAAAATCAAAATTTGCCAGAAAAAACGCGTGAACTTGCAAGTTCACGCGTTTTTGTTTTCTTCAAAATATTGAGGTTATTTTGTTCCTCTTAGCCGTTGATAATAGACAAGAGCTTTGAGGAGACCATGTCGATGGCCACTTGGTTTTCCCCACCCTGGGGGATGATGATGTCGGCATACTTCTTGCTTGGCTCAACGAACTGGTTGTAGCTTGGTTTAACCGTAGCCAAGTACTGGGAGATGATCCAGTCGATTGACCGGCCCCGTTCCTGGGTGTCCCGCTGCAAGCGGCGGATGAAGCGGATGTCGTCGTCAGAGTCGACAAAAAGCTTGATGTCCATGAACTCCCGCAATTCTTCTGTAGCCAAAACCAGGATCCCTTCCAGGATGATGATGTCGGCTGGCTCAACATGAATAGTGTCCTTGGCCCGGGAGAGGATGTTGAAGTTGTAGGTCGGCATTTCAATTGCCTTGCCATCCAGCAGGTCCTGCAGCTGCTCAATCAAGAGGTCAGTGTCGTAAGCATTGGGATGGTCGTAGTTGATCTTCTTGCGTTCATCCATGCTGAGGGCTGAATTGTCGTTGTAGTAAGCATCTTCAGTCAGAATGAGTACCCGGTCAGCTGGCAGGCGCTTGCTGATTTCTTTGGAGACTGTCGTCTTTCCTGAGCCTGACCCCCCGGCAATCCCAATGACGAGTGGTTTCTGCTTAGCCATTATTATGCCTCTTTTTCTGCTAAATCATTGCGGCGGAGGATGTCGCGGACTTTCGTGATCAGCATGTCCAAAGCGACATCGTTGGCCCCGCCTTCTGGCACGATGATGTTGGCGTAGCGCTTGCTTGGCTCAACAAACTGGTGGTAGCTTGGCTTAACCGTGGCCAAGTACTGGTCGATGATTGAGTCAAAGGACCGGCCCCGTTCAGCCATGTCCCGGCGCTGGCGGCGGATCAAGCGGATGTCGTCGTCAGTGTCGACGAAGATCTTGATGTCCATCAAGTTCCGTAATTCTTCTGAGGCCAGAACCAGGATCCCTTCCAGGATGATGATATCAGCTGGCTCAACGTGGACCGTTTCCGGGCTGCGCAGGTGGGTGGTGAAGTCATAGATCGGCATCTCGATGGCTTTTCCATTCAGCAGGTCCTGCAGCTGGCTGATCAAGAGCTCGGTATCAAAAGCATCCGGATGGTCGAAATTAATTTTATTTCTTTCAGCCATGGACATTTCCGGGTGGTTCTTATAATAAGAGTCTTCCGTGATGATCCGGATCCGGTCGGTTTTGAACTGGTCATATAATTCGTGGGCAATGGTCGTCTTCCCCGACCCGCTGCCGCCGGCGATACCAATAATGATGGGGTGTTGCTTTTTTGACATTGTAAAACTCCTTTAGTTATTAATTATAGAGGCCAGCCGGGGCCGGGTCTAGTCAAACTGTGAAAAAACGGGCTTTAAAGCGGTTGCACGTTTCTAAAGTAGAAACAGTTGTTGCTAAACTAGGTAAAATCTAATATAATTTAAGAATATCTCAGAAGAGGCAAAATAAAATTAAGAATATTTGGGAAAGAAGTTAAGATAAGTAAGCAAGTTTCCTGGCCTTTTATTAAAAAAAGATAAAAATATGAAGCGGAACTGACAAAAGACTTGCACGAAAGCCAACTTTATGGTAAACTTAAATTAATAAAAATTAAACATGCTTAAATAAAAATAGCCGCTTACGAAAGCAGAAGGGCAAGCTTACATCCCAGATGATTTGGCTCTTGCTTTAAAAAAGGACCGAAAGATCTGGCTGCTTTGCTAAAACAGAGCAAATAAACGAACTTTTACCAAAGGAGCCGCCTGTTTGATCAATACGGCTTAAGCCAAGAAAGCTGAGCCAAACTAACGGTGATTTAATTAAGCGTTAATAAAACGAGGAGGACAACTATGGCAGCAATTATCGAATTCAAGAAAGTCAACAAGTTCTACGGTGACTACCATGCCTTAAAAGACGTCAACTTAAGCATTGACGAAGGCGAAGTCGTTTCCATCATCGGCCCCTCTGGCGCGGGCAAGAGTACCTTGATAAGAACCATGAACGGCTTGGAAGGCATTTCTTCCGGCGTCTTGAAAGTGGACGGCTATGACCTGGGAGACAAGAAGACTGACTTGAACAAGATCCGACGGAATGTCGGCATGGTTTTCCAGCACTTTAACCTCTACGAAAACCACACCGTCCTGGAAAATGTCATGCTAGCCCCAAGAATCGTTTTGCACCGGGACGAAAAGGAAAACCGGGAAATCGCTGAAAAGCTGCTCAAGCAAGTTGGCCTTTTGGGCAAGGAAGACTCTTACCCAAGACAGCTGTCCGGCGGGCAAAAGCAGCGGGTGGCCATTGCCAGATCTTTGGCCATGAAGCCCAAGGTGCTCTTGTTTGACGAACCAACCAGTGCCCTTGACCCGGAAATGATCCAGGGCGTTTTGGATGTCATGCAGTCCATCGCCGCTGAAGGGATGACCATGGTGGTCGTGACCCACGAAATGGGCTTTGCCAGAGAAGTGAGCGACCGGGTCATCTTCTTTGACCAGGGGCAAGTCTTGGAAGACTCCCACAACCCGAAGGACTTCTTTAAACACCCGCGCAACCTGCGGGCTCAGGAATTCCTCAGCAGGGTAATTGACCACTAATAAAAGGAAGGTAGCGGTTACATGAAACACACGAAACTATTCCGCAAAGTTGCCGCCTTGCTTTTTCTGTTGCTGACCACTGTTTCACTTTCCGCCTGCGCTGTTGAAAGTGACAACTCAGTGCGTGTCTACAACCACGTCAAGAGCAGCAAGACGATTACTTGGGGCGTCAAATTTGATATGGCTTTGTTTGGGATCAAGAGCGTCAAGACCAACAAGCTGGAAGGTTTTGAAATCGACCTGGCTCGCCTTTTGACCAAGGAGATCCTGGGCAAGGACGGCAAGGCAAAATTCATTGAAGTTACGGCCCAAACCAAGATCCCGCAGCTTAAGAACAACAACCTGGACGCGGTTCTGGCCACCATGACCATCACGAATGAGAGAAAGAAGTCGGTTGACTTCTCCACTCCTTACTTCAAGGCGGGGACATCCCTCATGACCAAAACCAGCAGTCCAATCAAGTCGATCAAGGATTTAAACCACAAGGGCCGGGTGGTTATCGTGGCTAAGGGGACAACGGCCGCGGACGATATTGCCCGCCTGGCCCCCAAGGCCACGATCCGCCAGCACAATGACTACGGTGCCTGCACCAATGCCCTCTTAGCCGGGCAAGGCGACGCGGTCGCCACTGATAACGGGATTTTGGCCGGGATTGCCAAGCAGCACAAGAGCCTGCACCTGGTTGGCGGCACAGTTGCCGTTGAACCTTACGGGATTGCCGTTGAAAAGGGGCAGACCAAGATGCTGGAAGCCATCAACAAGGCTTTGAAGGAAGCTAAGGCAGACGGCAGCTACCACAAGCTTGTCAAGAAATGGTTTGGCAACATCCCAGGATTCAGTGCTAAGGAGGTTGAATATTAATGTTGAGTTTACTTGGAGCAAACTGGTCCACCTTTTTGCTCGGTTTTTGGAATACGATTCTCTGCAGTCTGATTTCCTTGTTTTTCAGTTTGATCGTCGGATCCGGCTTTGCCATCCTGGAAACCGTGCCTAGCAAGTTCTGGCGCGTGGTAGCCAAGGTCTATGTTGAAATCTTCCTGAACATTCCCTTGCTGGTTGTCACCATGGTCTTTTACCTGGTTTTGCCAACTTACACGCCGCTGAAGCTGACTGGCTTCCAGGCAGGGACAATTGGCTTGTCCATTTACTCATCAGCTTTTATCGCTGAAACTGTCCGCTCCGGGATCCAGTCCGTCGGGACCGGCCAGATGGAAGGGGCCCGGTCAAACGGGATGACCTACTGGCAGGCCATGCGCTACGTTATCCTGCCCCAGGCCTTCAGAATCGTGATTCCGTCATTGGGCAACCAGTTTGTCAACTTGATCAAGAACTCCAGCATCCTGGCTTTCGTAGCCGGCTTTGACTTGATGTACCAAGGGGACATCGTGGCATCCAATACTTTCCAGACCATCCCAAGCTATGTCTTGGTCAGCCTGTTCTACCTGGTTTTGACCCTGCCGCTCAGCTACTACATGCAGTATCTGGAAAAGAAGGGTGTTTAGGAGGCACATAAATGGAAAATCTTACAGAAGCATTATCCTGGATCAACCTCCGCTTTTTGCTGCAGGGTTTCTGGGTCACGATCGAAGTTTCAGTGATTTCAATCATCTTGAGCTTTGTGATCGGCCTGGCCCTGGGTCTGATCCGCTTTACCAGAATCGACGCCAAGACCACCCGGATTTCCAAAGTGGTCGGGGTGATCATCGACATCATCAGAAACCTGCCGCTTTTGCTGATCATCTTCTTCTCCTACTTTGGCCTGCCGGTCATGGGGATCAGAGTTGATGCCTTCCAGGCTTCAGTAATTGCCATGGTGGTCTTTGAATCAGCCATGATCGCGGAAGTTGTCCGCTCAGGGATCATGGCCGTCGACCCTGGCCAGATGGAAGGGGCCCGGTCAAACGGGATGACCTACATGCAGGCCATGACCCACGTGGTTTTGCCCCAGGCCCTGAGCAAAATGATTCCGGCCCTTTTGTCCCAGTTCGTGTCCTTGATCAAAGATACTTCCCTGGCCACGATCATCGTTTTGCCGGAACTGCTCTACCACGCTGAAATTATTTACAACCAAAACACCAATTACATGATTCCGATGTACCTAGCCGTGGCAGTAATGTACTTTATCATCTGCTTTGCCCTGTCCAGCTTTGCCAACTACTTGAGCAAGCGCATCAAGTACTAAGCACGAAGGAACCAAACCGCGTTTATTGCCTAGGAGAAAAAATGGCACGTAAACTGAGGGAGCTGACCGCCATTATGGCGGTCTTGCTGTTATCATTAGTTTTTACCGCTTGTTCACACAGTCAATCTAGCAGCACCTATGACCGGGTTAAGCAAACAAACACCATCACCTGGGGGATGCGGGCCGACACCCGCCTGTTCAGCATGATGGACGTGGACAGCGGCAAGGCCACCGGCTTTGAAGTCGACCTGGCCCGGGCTATTACCAAGCAGATCCTTGGCCCTAAAGGCAAGATGAAAATTGAATACATCAGTGAAAAGTCCCGGATCATGGATCTCAAGATCGGCAACGTCGATGCTGTCATGGCTACCATGACCAACACACCCGATCGGCGCAAGATCATCAATTTTTCCGACACTTACTTCATGGCTGGGGAAACCTTGATCGTGCCGAAAAAGAGCAAGCTGAACTCCATCAAGGATTTCAACAACTCCAAGTACTCCATTGCCGCCGTTAAGGGGTCAACCGCTGACAGCGACGTCCACAAGTACGCCCCGAAGGCCCGGGTCATCTTCTATGATGACTATGGTTCTTGCTACAATGCCTTAAAGACCGGCAAGGCCAGCGCCATGGTCAGCGACAACGCCGTTTTGGCCGGCTTGATTTCTGATGACAAGGACAAGTTCAAGATGCTGCCTGATACCTTTACGGTTGAACCATACGGGATCGGCATCAAGAGGGGGGAAGACAAGTTTACGGCTGAGGTCAACCAGGCCTTGAAAGTACTCCGGAAGAACGGGACTTACGCCTGCTTGATGAAGAAGTGGTTCAATGGCGTGCCTGGCTTCAACATCAAGTCCTCTTCCCGCTTGAAGGCAAGCGAATAATTTTTACCAACTTAAGCAGTGTGTTCGACTTTGAACCCGCTGCTTTTTTAGTTCCAGGTAAAATTATGTTAAAAAATAGATTTTTGCCTAGAAAAAGAAGCCGAAGGGGCAGATCTTTTGTACAATTGAAATAGGTGACTTAGCGCTTACAGCTGAGCTTTTAAGCTCATTTGAAATTATTCGAAAGCAATCAGAGGAGAGACATATGAGTAAAAGACAATTTGGTCTAATTTACATATCATCATACCAGGCGCGCCTGTTCATCGTTGACTTGAAGAAACTGGCCATCATTGAACAGTTGAGTTCGGTCCAGTTCGTCCAAGGGGGGAAGAAGTTTGAAGTTTATGAAAACGAACTGCCCCGCTTGACTGATGCCTTGATCGGCTTCAAGCGAAAAATCGCGGAATACGGGATCGACAACTACAAGGTTTACGGTAACCGGCAGCTTTTGGACAAGATTTCTGCCCGCTACCTGGCCGACCAGATCAAGGTCAGAACCGGCCTGGAAATCGAATGGCTGAACGGGGCCCAGATCGCCTACTACAAGATCATTGCCGGAATGGCCCTGCCGCAGTTCTCAGAACTTGCGGATGATGAATTTACTTACCTGCTCAGCATGGGCAGTGCCATACTCAACCTCACCTTGTTCAAGGGCCAGCACTACCTGTCAACCTGGAACTTTGCCCTGGGCCCGGAAGAAATTGAAGAAATGGCCGCTATGACTCGGGACACGCCAAGCGACCCGATCGACATCATCGGCGACTACATCTCCCGCAAGCTGGTCAGCTTCAAGACCATTGAGAAGCCGACTGGCAAGGCCCGGATCATCATCCAGCACGTCTTTGGCCGAGGCGAGCAGAGCCTGCGGCCCCAAGAAAAGGCCCGGGTCATCGACCTCAAGCAGTTTGCCGGCGTTTACTCTGACTTCAGAGAAGCCCCGGACCAGTACCTTATGGAAAAATACGAGCTTGATACCGACTCTTTGGCCCGGATGAAGCCGACCATTGTTTTGATCAACCAGCTGGTTAAGATTATCAAGCCGCACATGATGACTTTGACCCAGTCTTCAGCTATCACCGGTTTGATGATCCAGGAAGCCGCCAGATTGAAGTACCGGCCAGATGAATACTCAACCATCGTTTTGACGGCGACCAAAAATATTGCCCGCCGCTACGAATCAGGCGGCCAGCACGTCAACCTGTCCAACAAGTTTGCCCTGCATATTTTTGACCGCCTGGCCCATGCCGGCATGGTTGACCGCCGCGACCGGCAATTACTGGAAATCGCGGCCCGCCTGCACGACATCGGCAACTTCGTCAATTTCCACAACCACTACGAGCACGCTGCCTACATCGTGGGGGCCAACCAGATCATCGGCCTGTCTGACTGGGAAAACGAAATGCTCTTGAGCATTTTGAAGCACCAGGACATCACCAACTTGAACGCTGATGAACGTGAATACCGCCACCTTGACCCGGCCCTGCAGGTCCGGGTAGCTAAGTTGGCTGCCATCCTGCGCCTGGCCAACAGCCTGGATGCTTCCCGCAAGCAGAAGATCAGCAAGATCGTGGTTTCCATCAAGGATGAGAAAATGCTGATCGTGGTGACCAGCAAGCGGGACTTGACCTTGGAACGCTGGGTTTTTGAAAAGAATGTCAATTTGGCTGAAGCCGTCTTCGGCATGAAGATTGCCATGAAGCAGAAGAGGGGAAAGTAAAAAATGACAATTGCCAAGAACAAAAACAAGTTTACCGATCCTAGTTATTACGCCAACCGGGAACTGAGCTGGCTGGACTTCAATGACCGCTGCCTGGACGAAGCCAGAAACCCGGATGAGCCGCTTTTGGAAAGAGCCAACTTCCTGGGGATCACCCAGTCCAACGTTGACGAATTCTACATGGTCCGGGTGGCTTCCTTGAGCAAGCTGGTAGCCGCCGGGGTCAAAAGCCACGATGCCAGTGGCCTTACGCCACTTGAACAATTGACGGCCATCAACCATAAGGAACACGAAGTGGTTGAAAAGCGCTACTCAACTTACTCCCGGTCATTGCTGCCGCTTTTGCGCAAGAACGGGATCAACATTTTGGAAAGTGACGAACTGTCTGAAGACCAGGAAGAATACATCCGCCGCTACTTCTCTAACGAACTCTACCCGGTTTTGACCCCGATGGCTGACGACCATTCCCGGCCATTCCCGTTCATCAACAACGACTCCTTGAACATCGCCCTGCGCCTTAAGGACCGGGAAAGCGGTGAGCACAAGTTTGCCACGGTCAGAGTGCCGAACATCTTCCCGCGCCTGGTTAAATTGCCAGATGGCGATAATGACTTCATCATGCTGGAAGACATTATCAAGGTCTTTGCCGACCGCCTCTTTGATGGCTACGAAATCCGCCAGGCAGCCTGCTACCGGGTAACCCGGGACATGGACTTGGACGTTTCTGAAAGCGACACTTCCGACTTCCTTTTGGCGGTTAAAAAGCAGCTGGAAGACCGGGAACACGGGCACGTGACCCGGCTGGAAGTGGAAAGCAGCATGAACATCAAGCTGCTCAAGCACTTGATGAAGCGGCTGAACGTCGATGAAGGCAGCGTCTTCAGCATCAACGGCCCAATCGACTTGACCTTCCTCAAGAAGCTGCCAGGGATGGTGGAAGGCCATGAAGACCTCCGCTACAAGCCCATGCAGGCCTTTGTTGACCCGGCTTTAAGAAGTGACCACAATATTTTTGACTCAATCCGGGAAAAGGACTACCTGGTTCAGCACCCATATGACAGCTTCGACTCTGTTTTGAACTTCGTCAAGCAGGCAGCCAAGGACCCAGATGTTCTGGCCATCAAGATGACCCTGTACCGGGTTTCCGGCAACTCCCCAATCATCAAGTACCTGGGCCAGGCGGCTAAGGCCGGCAAGCAGGTGACGGTTCTGGTGGAAGTCAAGGCCCGCTTTGACGAATCAAACAACGTGCACTGGGCCAGAACCCTGGAACAGATGGGCTGCCACGTTATCTACGGGCTGGTGGGCTTGAAGACCCACACCAAGGTAACCCTGGTTATCCGCCGCGATGAAGACGGGATCCGCCGCTACCTGCACCTGGGGACTGGTAACTATAACGACGTTACCGCCCACTTCTACACTGACTTAGGCTTCTTTACCTGCGACCGGGACCTGGGCGTTGACGTGACTAACCTCTTCAACATGCTGTCCGGCTACTCCAAGCCGCCATACTTCAGCAAGCTGCGGATTTCACCAAAATTGATCCGCCAGTTCATCTATGAAAAGATCAACAACGAAATTGCCATTGCCAAGGCTGGCCGGCATGCCGAGATCCACATGAAGATGAACTCCCTGTCTGACCCGGACGTGATCGCCAAGCTCTATGAAGCTTCCGTGGCTGGGGTTAAGATCCACTTGATCGTCCGGGGGATCTGCTGCTTGAAGACGGAAATCCCAGGCGTCAGCGACAATATCGAAGTACACTCAATCGTTGGCCGCTTCCTGGAACACAGCCGGATCTACTACTTCTACAATGACGGCAAGGAAGAAGTCTACCTGGCCAGCGCCGACATGATGCGGCGGAACTTGAACCGGCGGGTGGAAACCCTCTTCCCGGTTCTGCAGGAAGACTTGCGGGAAAGAGTTTTGGACATTTTTGCCAAGATGTGGCAGGACAATGTCCAGGCCCGGATCCTGCACAAGACCGAATGGGTGCACGTTGACCGGCGGGGACAGACCCCATTCAACAGCCAGGAATACTTCATCGCTGAAGCCGCTGAAAAGGTGCGGATCGTTAAAGAAGAGGAAGAAGAAGAGAAGGCGAAGAAGAAGGACGCTTTTGAGGCGATGAAGCCGCAGGAAAGCGAATTGGAAGACGACGAAAGGTAGGCTGAAAGGACGAAAGGTAGGCTGAAAGATGGAAAAAGACCGCCACGAAATCGAAATTTTTAAAATCGATCAAATGTTTATCGGTGACAGCCAGGAAGAACTGATCAAGCAGGGAGAAGGCCGCCGTAAGGAACATCCAATTGCGGCGATCAGCACTTTCAACCCGGTCAAGCGGGACGTGTTTCAATTGATCAAGCTGACTGAGGAGAAAATGATTCCCGAGCTTTTGGGGATGCGGCACAAGCGGATGATGCAGAATCCCTTTTCCTACTTCCGGGCCACGGCTGGGATCATGGAAAAGGACCTGCGCCAGTTTCCAGACGGCCAGTCCCATATCCCGGTAATCATTTGCGGGGACTCCCACCTGACCAATTTCGGCTTCTTCGCTTCCCCGGAGCGCCATCTTTTGTTTGGCTTGAACGATTTTGACGAGGCCCGGATTGGCAACTGGGAATTTGACCTTAAGCGCCTTTTGACCAGCGTGGTTTTGATCGGCCGGATCAATGGCTATCCTAAAGAGCAGCTGGACGGGATTCTGGCAGAAAGCGTCCACTCTTACCGGCGGGGAATCAAGTACGCCAATTCCTTGCCCCTGCTTGACCGCTTTAATTTGTCTTATAGCGTTGATGACCTTTTAGGTCAAATGACGGACAATGAACAAATGAAGCGGGTTCTCTTGAAGGTAGCGGACCGGGCACCGAAGAAAAATTCTGATGCCGTGGTCAAGAAGTTTACGGAAAAGACCGAAGACGGGCGCTTGCGCTTTAAGAAAAAACCGCCCCGGGCCCGGCGTGTTTCCCAGAAGGTTTATGCCGAGCTTATGGCAGGCCTGGAAGATTACCAGAAGAGCGTAGCTGACGACATCCGGGTCCTCTTGATCAATTATGAAGTGACCGACATCATCCGCTACAGCGTGGGCGTCGGCAGCTGGGGAACCCGCTGCTATCTGGCCCTGCTCACTGGCAAGGACGGCAGCCACCTGGTCTTGCAGATCAAGGAGGCATTGCCGCTTCGCTACAACTTGTCTGCTTTGACGGTTGAGGAAAGCCAGGCCCAAGGCAAGGGGGAAGGCAAGCGGATCATTACCGCCCAGCGAGTTTTGCAGACCTACCATGATCCTTTCTTAGGGGCCATAGAAGCTGGCGGCAGAAGCTTTTACGTCCGTCAGTTCCGGGACATGAAGGACTCGATTGACCCGCTCAATCTGGACCAGGAAAGCTTCTCTGCCTACTGCAACATGTGTGCCTTCATATTTTGGCCATTGCCCACTACCAAAGCCCGACAGCGCCGATGATTTACGGCTATGTCCACAAGCAAAAAGAGCTGGACACGGGCCTGGCTCATTGGGCCGTCAAGTATGCCGACCAGATGGACGCCGACTATACCTGCTTTGCCAAATACCTGCAAGGCGAGGGAGATGAAGAATGATCAATGAAGAAATTGACCGACCTGGACCGGGTGGAACTGACCAAGCTGTCTTATGAGGCGCTGAATGTGGGCGAGACAGTTGTAGTCGCCGGCAAAAAGATCGGGCAACTGACCCGGGACGTTTACGCCAAGGACGGGATGCAGGCTTTTTTGAGCCGGACCGGGCGGATGGCCAATTACTTGAGGTATCGCCGGAATCTGCAGGCTGACTGGCAGAAGGAGTCTGACCAGCGGGCCGAACAGATCGGAGAAGAATTGTTCAACCACAGCTTTTTGCAAGATTTCAATGACCGAGATAAAAATGCAAAAGATGGTAAAGAACAATAAGACAGTTGGGCAAAAAGGCGCGTCAGTTGACGCGCTTTTTTGTTAAGAAATTGGAACTACAATTTTGTAACTAAAGGGTTGACGCTCTCACATCTTGTTGTTATTATTTTTTGATAAAAATAATATAGAGGAGCTACAATAAAAACGTCAAAATATATCTCAGTAGCACTTTTTTCAGCAACATTACTAAGCATCACTGCACCAGTAGTAACTGAGACTGTTGATGCTGCTACATTCGTACGGTATTTGAAAAATCTAAACAAAGTTCAATTAGCCAAGATGAGACTGTGGAAAATAAGTTAGCAGCTGAAGATGTTGATGCAGTGGTAGAGGTACTGAAGAGTGAATATCCTGATTTAAGTGAGGATTATCTTCGAGAGATTGTAAATAATCAACGTCATGGAAACTATAGTTTGCCATCAGAACCGCAGCCTTCGTCTACTAGAGCGCGTAGTGCTATGCTTCCCAAAAGTAGTTGGGAAAGCATTAGACTATGCAGGAAGTCCAGGATATTATATTGCTAAGTACTGGGACGCACATGACAAATACCCTAAGAATGGTCGTATTAATTTTTAATTAGGGAGAGATTTGAATGAGTAAAAAGTTGACTTTGTACCTGCTACCACCGGTACTTTTAGCAGCAATATTCATGATTGTTGATTTTGCGAGCGGCCAGCACAATTTGTGGATGTCAGCCGTTGCGACATTAGCTTGGTGGCTGTTTTCCTTTGCAAGTGACCACTTGGCTAAAGGCTGGCAAAAGGCGGTTTTTCTGGCCTGTGTTGGCTTTTTGCTCTTGGTTGCGGGCTTATGCATCTACATTAAGTTAAATTCATAAAACAGTTGTTCAAAAAGACGCGTCAGTTGACGCGCTTTTTTTGTTAAGAAATTGGAACTACATTTCAAGCAGCAGCCCAGGTATAATTTTCTTAGACGACTATAAACGTAATAGGAACAAGAGAAAAAATAGACGAGGAGCATGTAATGAAGATTGAAGAAGTGCTGGCAAAGCAGCTGCTGGCAAAAGACCCGAGCATCGAACGCTTTGAGGAAGATTTTTACGGGGACTTTTACGACTATTTTGTCAACTTTCTGAAGTTTAAGTGTCTCAGTCAAGGTAAGGACCTGGCCAGCCTGGAAAAGCAGAAACTGGTTTTGTACCTGGATTTGTTTAACTCCCAGGACTTCCCGGGCCGGAAGGCTTACCGTTACAAGTTAGTCTTTGACAGCCAGCTGAACTTTTTAGCGGCGGAGTCAGACTTCACCCTCAGCGCTCTTTGCCGGGACTTGCGGGGGCGGGTGGATCAGCTGAGCGACTACGAGGCTGTCAGAAGCCAGGCCTTAGCTTCTTTGGCAGAACGTTTTGATTCCAAGAATCCAGACCCAAATACCAGGATCCAGAACTTTAACGTTGTCCTGGCCGACCTTTACGACCGCTATAATCTCAGCCGCTTCAAGACGGCCTACCAGTTGGTCGGCTAAAACGCTTTTTTAAAAGGACGGGAATAGTTATAATTGACTTAGGAATTAAAGTTAAGGAGAAAATGCTATGCAAAAGATCGTAGTAATCGGGTCCAGCAACGTGGACACGACACTGCATGTAGAAAACTTCCCCAAGCCAGGCGAAACCATCAACGCCCACAAGGTCAGCGAGGCTGGCGGCGGCAAGGGGGGCAACCAGGCAGTCGCGGCTGCTAAGAGCGCGGCTGAGACCATCTTCATCTCTAGAGTCGGCGAAGACTCCTATGGGAGCTGGATGAAAGAGCAACTGGCCGGCTACGGGGTCAAGACTGACTATGTCTTGCCAACCGCTGGCGTTAAGACTGGCCATGCCTACATTACCTTGAACGCGGAAGGGCAAAACGACATTATCATCGACCATGGGGCCAACTACAGCTTGACTGAAGCCGACGTTTTGGCGGCTAAAGACGTCATTGAAGCTGCTGACTGCGTCATCGCCCAGCTGGAAACCCCGCTGGAAGCAACAACAGCCGCCTTCAAGCTGGCTAAGGCGGCCGGCAAGGTAACTATCTTGAACCCAGCTCCCGCGATCAAGGACCTGCCAGCTGACCTTTTGGCCGTAACTGATTTGATCACGCCAAACGAAACGGAAAGTGCCCTGTTGACTTCACTGCCAGTTGCAGAAGAGGCTGACCTGGAAAAGAACGCGGCCAAGCTGCATGAACTGGGCGTTAAACATGTGATCATCACCTACGGCAGCAAGGGGGCCTACCTGTCTTCCCCAGTCTTTACTGGTCTTGTACCAGCCTTTAAGGTCAAGGCGGTGGACACGACGGCGGCTGGCGATACCTTCTTAGGCTTTTTGGCCGGATCCTTGGCCAGCGACTTCAGCAACCTGCATGAGGCTGCCCGCTTTGCCAACCGGGCGTCGTCTTTAGCCGTGCAGAAGATGGGGGCCCAGCCTTCTATCCCGGACCGGGCCAGCGTTGCGTCTGCTTTAGCTGAGTAAAGGATGGGTGACTAGATGATTATTGCACCCTCAATTCTCAACGCGGACAACCTGCACTTAGGCCAGCAGATCCAGGAAGCAGCTGACAGCGGGATCCGCCGCTTCCATATCGACGTGATGGACGGACATTTCGTGCCCAACCTGTCATATGGTCCCCAGCTGGTCAGTGATTTTAAAAAGCAGTTCCCGGACCTGACCGCGGAAGTCCACCTCATGAGCAACAACCTGCCTGACCTTTTGCCAGCCTTTGTTAAAGCGGGCAGCGACTTTATTGAAATTCACTATGAAGCCGACTACCCAAACCTAATTGCCCACTGGTTGGACTACTTAAAGGAAAATGGCGTCTCCTGCGGGTTAGTCCTTAGTCCAGATACTGACATTAAGGTGCTGGAGCGCTACAAGGACAAGCTTGACCAGGTTCTCTTGATGACGGTCTATCCGGGCTTTGGCGGGCAGAAGTTCATGGAAGAAGCGGCAGCCCGGATCAAGGCCGCCCGGGCAATTCTGCCAGATCTTCCGATCGAAGTAGACGGCGGGATCAATGCTCAGACGGCGGAAATCGCCAAAGAGGCCGGAGCTGATGTTTTTGTGGCGGGCTCTTATATCTTCGGCCGTGACTCAGTGGCTAAGCAGGTAGCTGAGCTGACAAGCATTTTGGAAAAATAGCGGAGGCAAAAAATGGACCAAGCAAAGCAAGATGAATTGAAAAAGGCAGCTGCCAAGAAAGCAGCTGCCTTGGTGGAAGACGGGATGGTTTTAGGCGTCGGCACCGGGTCAACGGTGAAGTTCTTCATCGATGAACTGGGCAAGAAGAAAGCAGCAGGCTTGACTCTTAAGGCAGTCGTGACCACCTCCAGCCGCAGTCAAAAGCAGCTGGAAGGCTATGGCTTTACTGTCAGCCCCCTCAGTGAAGTTGACCAGGTTGATTTAACGGTTGACGGGGCCGACAGAGTGGACAAGCAGTTAAACGGGATCAAGGGAGGCGGGGCCGCCTTGACCTTGGAAAAGAACGTGGCCGTCAACTCCAAGAAGAATGTCTGGATCGTAGACGAAAGCAAGGTGGTTGACCACCTCAGCGGCTTTGCCCTGCCAGTGGAAGTTTTGCCGATCTCCTGCATGCAGGTGGAAAAGCGCCTGGCAGATGAAGGGCTTAAGCCGGAATTCCGTTTAACGGAAGATGGTCAGCGCCTTAAGACCCACTATGGCAACTACATTCTGGACCTCAAGCTGGACCGGATTCCGGTGCCAAGTGGTCTGGCTGACTACCTGGACCATACGGTCGGGGTAGTTGAGCACGGCCTCTTTTTAAACATCTGCGACCAGGTCATCATCGCCCGCGACAACGGGGAGATTGAAGTCCGCAGCCGCTAAAGAAATTTTTTGGAAAAGAAGCAACCACTTCTTTTCTTTTTATTTGCCGGGTGAAATGATAGAATAAAGCTATTCTGAATAATGGAGAACGATTAATGAACAAGAAACCTTTAATTATTTCAACTGATCCCGGGATCGATGACGCGGTCTGCCTAACGATCGCCCTGTTCGCCAAGGAACTGGACGTGAAGCTGATCGTGCCAACCTGGGGCAACGTTTCTTTGGAGAAGACTTTGAACAACACCCTGCGCTTGCAGGCCTTCCTGGGCACTAAGGTCCCAGTTGTGGCCGGGGCCAAGCTGCCTTTGGTCAAGGAAGCCATCGATGCTTCTGAAGTCCACGGGGCCAGCGGGATGGACGGCTTTGACTTCCCGGAAGCTGACCAGAGCCTTTTGGTAGAAGGCTTAGCCGCGACCAAGATCCACGAAGTAGTCAGCCAAAGCCCGGAAAAGGTGACCTTGATGCAGATCGGGCCAGCCACGGACTTTGCCCTTTACTTCCGCCAATACCCGGAAGACCTGGACAAGATCGACCGCCTTTACATCATGGGTGGGGCCCTGGGCCGGGGCAACTACGGTCCTTACGACGAATATAACGTTTCCGGGGACCCGGAAGCAGCCAAGATCGTCTTTGACTTGGGCGCCAAGGGCCTGGACATCTACGTGGCTCCTTTGGAAGTCGGCAACCAGGCCTTCGTTGACGCGGCCAGCCTTGAAGAAATCAAGGCTTTGGGCCGGGTCGGGGAAATGATCTACGGGCTCAACTCCCAATATGAATTAAACGACGCTGACGCCGATGCTGGCAAGCGGATCTATGACGCCTTGACGGCTGCCATGCTGCTGGAGCCGGACCTGTTTGAAGTCAAGGAAGCTTACGTGGCGGTAGACACCAAGGGTCCTTACACTTACGGGGCTTCAGTCATGGACTTTGAAGGCTTCTTTGGCAAAAAGGCCAACGCCAAGATCGCGGTCAAGGTTGACCGCCAGCCCTTCAAGAACTGGCTCTTGGCCGCAATCGCGCAAGCAAAGTAGGTGGCTGAATGGCTGATTATGTTTACCGGACGGTCATGCATGACATCAAACGCCGGATTTTAGCGGGCGAATATGAGGGGATGCGGCTGCCCGACGAGTGCAGCCTGGCCGAACAGTATCAGGTCAGCCGGTCGTCGATGAAGCGGGCTCTGGAACTTCTTGCCCAGCATGGCATCGTTTTTAAGAAGCGGGGCAGCGGGACTTTTATCAACCCCTTGTACTTGAAGAACCAGGCCATGTTCCGTTATGAAGGGTCCAACCTGGGTCTGACGGACAGCTTTTTAGCGCCAGGCAAGAAGCAGGGGATTAAGCTGCTGGAATTCAAGGTGGTCAAGGCCAGCCCGGAAACGGCCCAGGACCTCTTCTTGAGTGAAAATGACTTTGTCTACCAGTTCAAGCGCCTCCGCCTTTTGGACGGCCAGCCTTTCTTGATTGAAGAAGGCTTCGTGCCGATCAAGATCCTGCCGGAGCTTAAAGAAGAGATTCTGCAGGGGTCCTTGTTCAATTACCTGGAAGACGCGCAAAACAAGGCGGTCACCCGGTCTTATTTGACCATTACGGTTTCCCCTTCAAGCGCAGAAGACCAAGAAGCGCTGCAGCTCAAGGCCACTGAGCCGGTTGGCGTGATGGACGGGATCTTCTTTTTGGATGACGGCACGCCATTTGAAGTCTCCAGCATGCGGGTTCACTACAAGTACATGCGCTTCAACAGCTTTGTCAATTTGAATTAAGAGTAAATAAAACGGACAGGCATACCTGTCCGTTTTACTTTTCACTTTTTCTATCTTTTCTATCTTTTGTCTTTTCTTCTTTGCAAAGTATTTTAAGGATTTGTAAAATTGGTAGGATCCAATTACCATATTGATTGACTTGCTTTTTGTAAATTGTATGATTGAAACAAGTAAAACAGAGAGTTCCTCAAAGGAGTACAAAGATGACAGCAGATTACGATTCAAAAGAATACTTAAAGAGCGTCGACGCTTGGTGGCGGGCCGCCAACTACTTGTCAGTCGGCCAGTTGTTCCTGCTCAAGAACCCCTTGCTTAAGGAAGAACTGACGGCAGACGACGTCAAGATCAAGCCGGTTGGCCACTGGGGCACGATCGCGCCGCAGAACTTTATCTACGCCCACTTAAACCGGGTTATCAAGAAGTATGACTTGAACATGTTCTACATCGAAGGTTCCGGTCACGGCGGCCAGGTGATGGTTTCCAACTCATACCTGGACGGGTCTTACTCTGAAATCTACCCGGAAATCAGCCAAGACGAAGCCGGGATGACCAAGCTCTTCAAGCGCTTCAGCTTCCCGGGCGGGGTAGCTTCCCACGCGGCTCCGGAAACCCCGGGTTCAATCCATGAAGGCGGGGAACTGGGCTACACTTTGTCGCACGCGACTGGCGCGATTCTGGACAACCCGGACGTGATTGCCGCCGCTGAAATTGGTGACGGGGAAGCTGAAACCGGCCCGCTGGCTGCTGGCTGGTTCTCCAACCGCTTCATCGACCCGGTCAAGGACGGGGCTGTCTTGCCAATCCTGCAGGTTAACGGCTTTAAGATTTCCAACCCAACCATTACTGCCCGCATGAGCGATGAAGAACTGACTAAGTACTTTGAAGGCATGGGCTGGAAGCCTTACTTTGTTTCAACTTTCAAGGGCGGCCGCTTTGACGGGATGAAGGATATTGACCAGATCCATGAGGAAATGGCCAAGACCCTGGATGCCATCATTGAAGACATCAAGGCTATTCAAAAGAATGCCCGTGAAAACGGCGATAAATCATTTGCCCACTGGCCGCTCTTGATCTTCCAATGCCCGAAGGGTTGGACTGGTCCTAAGACCGATTTGGACGGCAACCCAATTGAAAACTCCTTCCGGGCCCACCAGATTCCGCTTCCGGTTGACCAGAAGCACATGGACCACAAGGAACTGTTGCTGGACTGGCTGAAGAGCTACAAGCCGGAAGAACTGTTTGACGAAACCGGCTACCCGACTGACTTAGTCCTGCAAAACGCGGTTCATGGTGACCAAAGAATGGCTATGAACCCAGTAACTAACGGGGGGATCAATCCTAAGCGCTTGAATCTGCCAGACTGGCGCGACTTTGCCTTTGAAGTTGGCAAGCCGGGCTCCAAGGACGCCCAGGATATGGTGGAATGGGCCAAGTACCTGACCAAGGTGGCAGAACTGAACCCGACTACTTTCCGGGGCTTTGGCCCGGACGAATCCAAGTCCAACCGCTTGTTTGACTTCCTGGACAGCGAAAAGCGGCAATGGGAAAGTGAAATCCACGAACCAAACGATGAAAACCTGGCCGCGCAAGGCCGTTTGATTGACTCACAATTGTCAGAGCACCAAGATGAAGGGATGCTGGAAGGCTACGTTTTGACTGGCCGCCACGGCTTCTTCGCTACTTACGAAGCCTTTGGCCGGGTGGTTGACTCCATGCTGACCCAGCACATGAAGTGGCTGCGGAAGGCTAAGGAACAATACTGGCGCCGCGATTACCCATCATTGAACTTTGTAGCTACGTCAACTGTCTTCCAGCAGGACCACAACGGCTACACCCACCAGGATCCAGGTCTTTTGACCCATTTGTTTGAAAAGAACCGGCCGGACATGATTCATGAATACCTGCCAGCTGACACCAACACTTTGTTGGCTGTAGCTGATAAGGCCTTCCGTGACCGGGAAGGGATCAACCTGCTGGTAACTTCCAAGCAGGAACGGCCGCAATGGTTCACTCCTGAAGAAGCTGCCAAGCTGGTTGACAAGGGCCTGGGCTACATCGACTGGGCTTCAACTGACAAGGATGCCAAGCCGGACGTGGTCTTCGCTTCAACTGAAACTGAACCGACCATGGAAACCCTGGCAGCGATCGACATCCTGCACCAGAACTTCCCAGACTTGAAGATCCGCTACATCAATGTGGTTGACGTGATGAAGCTGATGGCGCCAAAGGATAACCCAGCTGCTATTTCCCAAGAGGAATTCGACCGCCTCTTCCCAACTGACGTGCCAACCATTTTTGCATGGCATGGCTACAAGACCATGATGGAATCCATCTGGTTTGCCCGCAAGCGTTACAACGTTTCAATTCACTGCTATGAAGAAAATGGTGACATTACCACGGCATTTGACATGCGGGTCTTGAACCACCTTGACCGTTTCGACCTGGCCAAGGACGCGGTTGAACAAATCCCAGCCTTGAAGGACAAGAGTGCTGCCTTCATCGACAAGATGGACAGCCTGCTGTCTAAGCACCACGCTTACATCCGGGACCACGGTGAAGACATTCCAGAAGTAACTTCTTGGAAGTGGACTGGCCTGGACAAGTAAGAGTATATATAATTCCAAAAAAAAATATTAAATTGTCGTTCCGCGAGGGACGGCATTTTTCTTTTGGCTAGCTAAAAAAGCGAAAACATGGTAAAATAGGTTCTGAACAAGATAGCTATATTCTTATTTAAAGCTTTGAATAAGGAGTAGCAGCGGATCTGGCATCTCGATGGAAGGATGCAATTACATAGTAGCTATTGGTGCGGAAAATATTAAATTGCAACGGGAGAACCTAACATGATGCAGATTATAAAAAAATCCAGAGTTTTTTGATGGCTGCAGTGTTGATCCTGCAGTTTATTCTGCTTCCGCTGGCAGAGGTGGGCCGGGCGTCCGCCAGTGAGGTCAGCGACCAGCTTGTCTCTCCATGCAAGGGCAGACAGAGCTTACTGGTAAAGATAAGAATGAGTCCTTGAATATTTGAAGCTGGGCGGACAGGAAACGCTCACGCTCAAGCGGACGAAAGACGAGGCCGACCTGGATGTGAAAATCAGCCTGCCAGACCTGGTGAACTTGGATAAAACCGCCACGGACAAGGCCAATGAAGAATTGAAGATTGACAAGGCCGAGGAGGCCGTCAAGGAAGTTGCCGCTTCTGAAAAAGAAGGCCGGCATCTTTTGCTGCACTTTGCCAAGGGCCAGAGCCAGCTGAAGCTTTCCCTGGATCCCGGCCGCTACTACATCAGAGAACTGACCAAGCCGGGAGTGACGGTCCAGCCGCTGTTATTGTCTTTGCCTAGAAACGGCAGCAACCAGCTGACGGTCTACTTAAAGACTGAAGCAGTAACTGGCCAGGTCCAGCTGACCAAACTGGGCTACGCCAGTGCCTCAGCTAAGGGGAAAGCCTTAGCTGGAGTCAGTTTCTACCTTTATCTAGAAGGCAACAGCCTTCCCTTAAGAGTGGATGCCCTAGGCAAGCTGTCAACGGATTACCGGGATTCCCGTCTCCTTTTCACTGACCTGCCCTGAAAAAAGGGGGACGTCTTCTACGTCCACAATCTGGGTCAGACCCTGGCCTACAAGGTGGACCAGATTAAGGTTATCAAGCCAACCCAGGTCGACCAGCTCAAGATTGTCAAGGGCAGGGACCTCTGCACCTTGATGACCTGCAACTCCTTACATGATCAACACCTACCGCCTGCTGGTCACCGGATTCCTTACAATCCAAAGGCCGAAGCCAAGGCTAAGGAGAGAAGTCGGAACCGCCTAATTTGGATTATCATAGCCATCCTTTTACCGGTCTTGGCGATCATCATCTTCATCTGGCACAAGAAGCGGAAGAAGAAGACGGCTAAGGCAGACAAGGAAAAAGAACAAGAATAAGCAGGCAAAACGGTCCGTCCGGATTTTCCCGGACAGCCCGTTTAATATTTTTCGGGATTAATGTAGTTTATGAAAAAAACTCTGCAAATGATGATAGAATAAAGGTAGATAGTTCAATTGGAGTAATAGGTGAATTACAGTGATGACAACACAAATCTGGATTAATTTACTAGCAATCGGTGTGATCTTTGTTTTTGCCTCCTTCTTTGTCGCGGCGGAGTTTGCCTTGGTGCAAGTCCGGCCCAGCCAGTTGGAGGACATGATCGCCAACGGGCAGGGGAACGTGAAGAAACTTAAGCGGGCCCTGCACATGTCGCATAATTTAAATGAGTACCTGTCAACCACCCAGGTCGGGATCACCTTGGTCGGGGTTATCCTGGGCTGGTTCGGGGCGGACACCATCGCCAACATTTTTGAAAGGCTGCTGGCCTTGACCCCCATGTCCAAAAATCTGGTCAACTCAGTCGGAGCCTTGATCGGGGTCATTACCTTGACCTACTTGGAAGTGGTTTTGACGGAAGTCGTGCCGAAAAATATCGCCATCGATGCTCCGGTTAAGATACTGATGTGGATCGTCAATCCCCTCCAGCTCTTCCACACCTTGGTTTATCCCTTTGTCTGGCTTTTGAACGTCAGCTCCTCTGGCATCATAAAGATGCTGGGCTTTAACCCGGCCGATGAAGAAAACCAGGTCTATTCCCAGTCAGAGATCATCCGCTTGAGCAAGAACGCGGTGCATGGCGGGGCTCTGGACAAGGAAGACTTGACCTATATGGAAAGAGCCTTCCAGCTGAACGACAAGACGGCTAAGGACATCATGACTGACCGGACCCGGCTGACAGTTTTAGATGCCAGCGAAAACATCAAGACTGCCCTGGACAAGTATCTGGAAGACGGCTACAGCCGCTTCCCGGTCGTGCGGGAAAATGACAAAGATGATGTGGTCGGCTATGTCTACGCTTATGACATTGTTCAGCAGAGCCGGATTGACGACCGGGTACCAGTAACCAGGATCAACCGGACCATCATTACCGTGCCGGAATCTATGCCTATCCAGGACATCCTCCGCTTGATGATCAGCAAGCACACTCCAATCGTGTTGGTTGTCGACGAATACGGCGGCACCAGCGGGATCGTGACTGACAAGGATATTTACGAAGAGCTCTTCGGGTCAGTTAAGGATGAAATCGACGACGTTTCTGATGACTACATTATCAAGGACGCCGAAGGCAATATCCGGGTTTCCGGCAAGACCACCCTTTATGACTTTGAGCGCTACTTCCACCAGAACCTCAAGAGCTTCCAGAACAGTGACATCATCACTATCGGCGGGTATATGATGGAACGGTATCCCGACTTGAAGAAGGAAGAGTCAATAGAACTGGAAGGCTTCCGCTTCACCTTGGACGATATCCAGCAAGGTTTCATGCGCTGGTTCATCGTTGAAGGGCCAAAGACAAACGATCAAGCCAAAAAAGAAGAATAAGATTCAGAAAAAAAGAACGTTTTTTAGGCAAAAGCCGTTCTTTTTTGTTAAAATAATGGTATAATCTTGATGTATCATTTTGAAAGCAATTAGTAATCGAGGAAACCTAATGAAAAGTATTCATGACGCTGTTGATCACAAGTTGTACAGCGAAGAAGACATCGCGGAAATGACCAAGCGGCTTGGCCAGCAATTGACCAAGGACTACGCTGGCAAGCGGGTCCTGGTTGTCGGTGCCTTGAAGGGGGCTATCTTCTTCCTGACTGACCTCCTGCGGGAAATGGACCTGGCTTGCGATATTGACTTCATCGATGTTTCCAGCTACGGTAACGGGACTGAATCCAGCGGCAAGATCACGGTAACCCATGACCTGGAAGCTGACGTGACTGGCCGGGACGTTTTGATCGTCGAAGACATCGTGGACACTGGTTTGACTTTGAAGTTCATGAAGGACGAACTGCTCAGCCGCGGCGCCAACTCAGTTAAGTGCTGCGTCTTGCTGAACAAGACGGCCCGCCGGACGACTGAAGTAGATGTTGAATACTACGGCACCCACGTGGGCAACGAATTCGTCATCGGCTACGGGATGGACTTTGCGGGTCTTTACCGGAACCTGCCTTACATCGGCGTCATCAAGCCAGAAGTCGTTGAAGAATTCAGCAAGCACGAACACGACTAATTTTTCCTAAAAGAAAATGGATCATCCAGACGGATGGTCCATTTTTGCTTGATTTTCTTTTGTCTGTTATTTTCTTTTGCCCTAATGAAGCTTTTTCCAGTAGTAGACCGGCAGGCCCAGGAGGGTGATGCCCAGGCCAATCATGGAGAGGGCAAACTGGTTGATGACGGTCATCACGATGATGAAGAGACCCACGATGATGGAAATCAAGGGAATGACCGGGTAAGCCGGCGTCATGAAAGGCCGGGCCAGGTCCGGCTCTCTTTTTCTCAGCAAAATGACGGCCACTGACAGGAGGGTGGTGAAGGTCCACATGACGAAAACCAGCATGTCGGTCAAGATTTCGAAGTTACCTAGGGAGATCATGATCAAAGCGATGGCATTGACCAAAAGGGCGGAGAAGACCGGGACTCCGCTTCTGACAGAAGTCTTGGCCAATTTCTCAGAGCCGGGCAGGCGGTTGGCCTGGGCCAGGATATATGGCGTCCGCATCCCCGTCAGCATAAAGCCGTTGCAGGCTCCGTAAACCGACAAGAGAATGCCGACCGTGACGTTTTTTCCCCCGGCCTGGCCAAAGAGCTTAAGAGAAGCGTAGTAGGCGGTATTGTCGTTGCCGATGATCTTGTCAAAAGGCAAAACCGCCATAAAGGCGTAATTGACCAGGACGTAAACGACCGTGACCAAGGAGAGGCCAAGGATGATGGCCCGAGCCAGGTCCTTTTTCGGATTCTTCATTTCCTTAGCCAGGTTGGTCACCACGATCCAGCCTTCAAAGGCAAAGAGGGCAGACAAGAGCCCCTGGCTGATCCCGGCCAGCCAGCCGCCACTGCTATCCACCGTAACTGGCCAGAGACTGACGGAGACTTGCGGGCGGATGATTGCAAAGACGATGATCAAAAAGAGGGGGATGAGCTTGATGACCGTGATCACCGACTGCATCCAGGCTGAAGCCTTGGTCCCCAGCATATTGATCAAAAAGAGCAAAAGAACCACGCCGGCAGCGATCCACTTGCTGCTGGAGGCCGGCAGGCCCGCCAGGACCACGAACTGCTGGCCGAAAATTGAAGCTAAAGCCGCGATCTGAGCGGGGAAGTAGACAGTCATTTCCGCCCAGCCGAAGAGAAAGCCCCAGATACTGCCATAGCTGTAGTCCAGGTATTCAATGGCCCCGTTGACATTCAAGGCGGCCGCGATTTCTGACACGGTCAAGCCCGAGCAGATCGAGATGACTCCGGCTAAAAGCCAAACTAAGATGGTGGCTGAGGCCGACCCGGTGCTTTGGGAGATGCTGCCGATCTTAAAGAAGACCCCGGCCCCGATGACTGAGCCGATAACGGTTGCCAGCGCATGGCCAAAAGAAATCTGTTTTTTCACTAAACCCTCCAGTAAAACAAATCTAACCCTTAAATTATACAATAAATCTTTCTGCTTGGTCTAGGCGGATTTCTCGGCTAAAATGGTAGAAGGAGGTTTTGGGAGATGGGGCAAAAAAAGCATTTCCAGCATCCGGCGACACTGCCGGCCCTTTTGATTCTGCTGGCCGCGATTATCAGCCTTTTGGCATATGGCCTGTACAATTATACCAGCCAGACGACCCTGCCAAAAGGAGCCAGCCAAAGCGCGGTCGGCCTGAAGGTCAGCCAGGCAGATTTTGACCTCAGCCGCCTGGAAAAGGGCGGCTTGTCTTTCGTTTATCTGCCGGTTGACCAGAATTTTGCCGCCAGGCGCGAGCAGGTGGCCAAGACCAAATTGGCCTATGGCAGCATCATTGAGGTGCAAGGGGAGAAAAATGCGGCAAAGCAATTATCCCGGGCGAAGCGCCTGGCGGCTGGGCATTGGGGGGCCTTGCCCATCCTGCTGGACAGCGGGCAAGATGACCCCAGCGCCGCTAATTTAACGGCGATGAGCAAGATGGCCTATTCCCTGGTCAAGAGTCATGAGATTATGGTCAACGCTCCGGTCAAGTACAAGAAGCTTTTTCCAGCGGGATGCAAGTTCCTGGCTACCTCGGCGTCAGCGCCAAGCAAGCTGGACTACTGCTTCTGGCGCTATACGGAAAAGGGCCACGTGGCCGGAGTCAGCGGGATCGGCTGCAAGAATGTCATGTATGCCTATATCGGGACCAGCCAGCAATATAAAGAAAAGTATGGACAATTAGCACAATGATTTACACAGAACAAATTCAAGCAGTTTTGCAAAAGGAAGGCAAGAGCCAGCCAACCTTGATCCAGAGAGAGACTTATGAGGCCATTAAGAATGGAGCCAGCCTGGTCGCTTTGGCCAAGACAGGGACAGGCAAGACCCTAGCCTATGCCCTGCCGGCTTTAGAGCGGGTCATCCCGGGGGAGAAAAATTCCCTGGTGATTTTGGCCCCAACGACTGAACTGGCCGTCCAGATCAGAAATGCCATCCTGCCTTTTGCCAAGGCCCTGGGTCTGAAGACTTTAGCCTTGGTTGGGGCCGGCAACCGGCAAAGACAGGACGAACGGCTGAAGAAGGACAATTGTGAGGTCCTGGTCTGCACTCCGGGCCGCTTCTTTGACTTCTTCTCCTCGGGCCGGATTAAACTGGTTCAGATTAAGACCCTGGTAATCGATGAAGCTGACGACATTTTGGAATTCGCCAAGCTGGAGCTTTTGAGTTCTTTAGGGCAGAACCTGCCTTCTTCCAGCCAGATCCTCCTCTTTGGGGCCACTGAATCCCAGATTACCCAAGAGGCGGAAGAAATTTTTGCCCGCCACTTCCTTTTAGTCGACGTCCGCCCCGACCAGGGCAGCCAGACTGAACACGTCTTTTTGCAGGTGGACAATAAGCACAAGCTGGAATACCTGCAGCGCTTGTGCAAGCTGGACGGCTTCCGGGGCCTGCTCTTCTTTGACTCAAATGAGGGAATGCTGCGCTTTGCCAGAATTTTTGCCCACAGCAAGACCCGCTTTGAAGTTTTGGCCAATAATTTCTCAAAAGACAAGCGCCAGCAGGCCATCCGGGACCTGGCCAAGGGGAAGGTCAAGCTGCTCTTGGCCACTGACCTGGCGGCCCGGGGCTTGGACATTCCAAAACTAACCTATGTGGTTAACTACGAAATCCCGACTGATGCCAACACCTACATGCACCGGGCAGGCCGGACCGGCCGGATGCAGCAGGAAGGCAAGGTGGTGTCTCTGGGTAACGACCACGACCTGCGCAAGCTGAAGAAGCTTTTGGAAGGGGAAGTGACCGTCGACCGGGTCTACTTTGCCGGCTACCACTTGAGTAAAGAAAAGCCGGTCAAGAAGGAAAAGGCTGAAGACAAAGACAAGCCAGCTGTAATTGAGCAGCCAGTTAAGAAGAAAAAGAAGTCCAAGAAGAAAAATAAGAACAAGGGTTATCACCCGCATTATCTGAAGAGGAAGAAGCAAAGTGAATAGCGTGATTGACTGGCTGGAGCGGCACCTGATGCCCTTGGCCAATAATCTGGCCTCGGTCCGCTGGCTGGTGGCCCTCAGGGATGCTTTTATTTCCACCCTGCCGATCAGTTTGACCGGGTCGGTGGCGGTTTTAATCAAGAGCCTCATCATTACCGCCAACCGCAACTGGGGCTGGCATGTTTTTTGCCAGCTCATGCAGCCATCGATCTCCATCTGCAACTTCGTCTGGCGGGGGAGCGTGGCCATGTTTGCCCTCTTCTTCGTCCTCAGCTGGGGCTACCAATTGGCCAAGGCCCGTGAGGTGGACCCCTTGGCCGGGGCGATGACGGCTCTTTGTTCTTTCATGATGAGCATTGCCAACTATTCCTACCTCATGCAGGGGAATAAGCGGATTAAGCTGGACCAGGCTTTTAACATCAAGCAGCTGTCAACGACAGGGATGTTTACGGCCATTCTTTTTGGCGGCCTGGGCGTGGCCCTGTACATCCTGGGGGTCAAGGCTCGGCTGGGCCTGCATATCCAGACGGCCATGCCCCCGGCCCAGATCGCGGCCTTTGAAGCAGCGATCCCGGTCATGCTGGCCCTCTTTATCGTGGGCGGGCTGAACTATCTCTTCCAGACCATTACCGGCCAGTATTTTGGCGACTGGCTCTTAGAGATCATCCAGCTGCCACTTTTGAAACTGGGCCAGGGCTTTATCATGGTGATTGCTATTACGGCTTTGACCCAGCTCTTCTGGTTCTTCGGGATCAATGGGGCCAGTGCCTTAGCTCCGGTTGTCGGGTCGATCTGGGCTACGGCCCAAAACGCCAACCTTTTGGCGGCGGCTAACGGCCACAAGATCCCGTATTTGTGGACCAATACTTCTTTTGTGGTCTTTGGCGTCAATGGGGTCTGCCTGCCTTTAGTCATCGCGATTTTGCTGACCTCCAAGCGGGGGGACCATCGGACTTTGGCCAAGGTGGCCCTAGCTCCGGCTGTCTTCAACGTCAATGAGCCCATGCTCTACGGGCTGCCGATCATCTTGAACCCGGTCTGCTTTTTGCCCTTTACCCTGGCTCCTTTAGCCAATGTTTCCTTGGCTTATCTGGCGACCAAGCTGGGCTGGATCAACCGGGTCCAGGCTTCGGTGCCTAATATCATGCCCCCGGTCATCGGCCCTTATCTGGCCACTAACTATGACTGGCGGGCCCTGGTCTTGTTCTTGGTCAACCTGGTCATCGCGGTCTTGATTTGGCTGCCCTTTGTCAAGGCTGCTGACCAGATTGGGCAGACGGATGAACCCCGCCGCTTTTTCATGCCGCAATACTAATGATTTAAGCGAAAGCACTAGCTTTTTCAACACATTTTTTGTAGAATAAAATGTGTTGTATGGCCCGGTAGCTCAGTTGGATAGAGCACTGGTTTCCTAAACCAGGTTGTCGCGAGTTCAAATCTCGCCCGGGTCATATCTGCCCCTCACGGAAGTGGGGGGGTTTCTTTTTGCCTTTTGCTGCTTTTTTATACTTTTTTCCGCCTTAGCTTATTGCTCTTTGCTTTTAATTTTGGTAAAAAAGGCTGGTTTTTAACAAAAATTTAAAGAAAATAAAGTATCCAGAAAAAGAAAGCGGATTTTTGCTTTTTCAATAAGAAAATTATGAAAGTGTTGACAAAAAAGCATTGCAAAGTCCGGGAGCTTCCTCTATGATTCAAGGCATCAGTTTATGAGAGATACATTAAATGTTATTAGATACCTCATAATCTGTGTCAATGTAATTATAATTTTCTACCGTTAGGAGGCGGAGACTATATGTCTGAAACAACTCAAACAAAAGAAACAGTTGGATCATTTACGATGAAAGTCCTTAATGGTTCAGCGACTGCCATTATCGTGTCACTTTTACCAAGTGCCATTTTGTCAACCTTCTTGACTCCCTTTGCAGGAAGCAACGCGATTGTGGCCAATCTTTTGCACATTGTGACCGTCTTCCAATACTTCTTTGCCGTAATGTGCGGCTTCTCAACCGCCAAGCAGTTCAACCTGGGCTATACTGAAGCAGCCTGTGTGGGCGGGGCAGCCTTCCTGGGCTCCGGCTGTATGACCGCGGTAACTACCACGGTTAAGGGCGTAACTACCACCAGCTTCCAATTAGCTGGGATGGGGGACGTTATCAACACCATGCTGACGGCAGCCGTTGCTGTTCTCTTCATCAAGTGGGTCGGCAACCGTTTCGGCTCACTGGGGATCGTCTTCTTCCCAATCCTGGCCGGGACTGGCGTCGGTTTCCTGGGCAGCTTGATCAAGCCTTACGTATCCCTGGTAACCACGGCCATCGGTGACGTGATCAACACCTTCACCAAGCTGGCTCCATACTCAATGTGTATCTTGATCGCCATGTCCTTCGCGATCATCATCGTTACCCCGCTGTCAACTGTAGCCATCTCCGTGGCCATCGGCCTGGCCGGCATGGGTTCTGCCGCAGCTGGTTTCGGTCTGGCAAGTACCGCTGCCTTCCTTTTCTGGGCAACCCTGAAGGTTGACAAGCCAGGTGTGCAAGTTGCCATCTTCTTAGGCGTTATCAAGATGATGATGCCAAACTTCCTGAGATACCCAGTGATCGGGATTCCGATCGCTTTAACAGCGGCTATCTCAACTCTCTCCGTGCCAATCCTTGGCATGCAGGGGACCCCGGCTTCCGGTGGTTTCGGCCTGATCGGGGCGGTTTCTCCTTTAGCAGCCTACAATGCCGGCTTCTACAACGTGCTGGTGCTGGTCATCGTCTGGGTAGTCGTGCCATTCGCGGTTGGCTACCTGATGAAGAAGATCTTCGTTGACTGGACCAAGATCTACAAGCCGGAATACTTCATCAGTCCGGCCCGTTAATTGTCATTAAAATACTCCTTAATCTATTCCAATAAACCATATTTTTCCTCAGATAGTTCAAGTCCGCGGCTGAAGCTTTGTCAGCCGCGGCTTTTTCGTCTTCCTTGACAAAAAATAATATTATTAGTAGGCTAAAGTAGTCAATTGTTAAGGAACCTTTAAATTCAGTCCCGTGAGGCTGACAAGGACATTTCTGTTCCGGGTTCCAGTATTTGAAAAGGAAGATTTCTTTTGAAAGAAGACAAGACATTCCGGAACCCTGAAGCGGTTTTGGACGTCCAGGACAAGCCGAAGTTCGGTCCCTGGCTGCTGCTCTCAATCCAGCACCTCTTTACCATGTTCGGTTCGACCGTTCTGGTTCCGCTTTTAATCGGCTTAAAGCCAAGCATCGCCCTCTTCTGTTCAGGGGTGGGGACCTTGGTCTACATCCTCTGCACCCAGGCGAAGATCCCAGCCTACCTGGGCTCATCTTTTGCCTTTATCGCTACTATGCAGGCCTTGATGAAAAATTACGGCTACCCGGCCGTAGGGCAGGGGGCCATCGCGGCTGGTCTGGTCTACGTCATCGTGGCCCTCTTGATTGCCCGCTTCGGTTCCCGCTGGCTGGACAAGATCCTGCCGCCAATCGTGGTTGGCCCGATCATCATCGTTATTGGCCTGTCACTAGCGACGACCGCGGCTAACGACGCCATGTTCAACGCCAGCGGCAAGTACAGCTTGACTTACTTCGGGGTAGCGATTTTTACCCTGGTTATTACCATTATCTTCAACATGTTTTTGAAGGGCTTCCCGAGCATGATCCCGGTTTTGCTGGGGATCATCTGCGGCTACCTCATGGCCCTCTTCTGCGGGATCGTTGACCTGTCCGGCGTTGAAAGCGCCAAGTGGTTCTCTTTGCCCGCCTTTGATGTTTTAGGCGTCAGTTACAAGTTCAAGTGGTATCCGGCCGCCATCATCACTATGGCGCCAATTGCTTTTGTTACTATGACTGAGCACATGGGCCACATCATGGTCTTAAACAAATTGACCAAGCGGAACTTCTTTGAAGACCCGGGCCTGCACCGGACCCTGCTGGGCGACGGTCTTTCTAGCATCATTGCCGGCTTTTTAGGCGGCCCGCCAACCACCTCCTACGGGGAAAACATCGGCGTTTTGGCCATGACCAAGGTTCACAGCGTCTTCGTCTTGGGTGGGGCAGCCTTTTTTGCCATCGTCTTCTCCTTCGTCGGAAAGGTGTCAGCGGTGATCGAATCCATCCCAACTCCGGTTATCGGGGGGATCTCCTTCCTACTCTTCGGGATGATCGCGGCCAACGGCCTGCGGATCCTGGTTGACAACAAGGTCGACTTTGAAAAGAAGCGGAACCTGGTCATCGCTTCCGTCATCCTGGTTATCGGGATTGGGGGCACCTACCTCAAGATCGGCTCATTCCAGCTGACTAGCATCGCTTTGGCTACGGTCTTCGGGATTCTCTTGAACCCGATCTTGCCGGAAAAGGCAGCCAGCGAACAATAGAACTTTTGCAAATAGCTTTCCATAATTGCATGGAAGGCTATTTTTTATTTAAAAAGCTGCCTTTTGGGTTTAAGATAGGTAAGTAACAAAGAACAAACAGAGGGATTTTTTGATGAACAATTTACCAGAAGAATTAGCAAAAATTGTTAAGGAAGTCGACGAGCAGATCGCCGGCCGCCTGCATGAAATCGACGAACAGGTTATTTACAACCAGGCCAAGGTCCTGGAAGCCTTCGTGGACAATGCGGTCGCTGAATCTGACTTGAAGGGGACCAACGGCTACGGGGACGACGATGAAGGCCGGGACAAGCTGGAGCGGGTCTACGCCCAGGTCTTCCACACTGAAGACGCCCTGGTGCGGCCGCAATTCGTTTCCGGGACCCACACCCTGGCAACCGCCCTTGACGGCAACCTGGTGCCAGGCGACACTTTGACTTACCTGACGGGGATGCCTTACGACACCCTGCAGCACGCTATCGGCCTTACCCCAGACAAGGCCGGCACCTTGATTGAAAAGGGGGTCAAGTTCTCCTATGTGCCGCTAAAAGAAGACGGCAGCGTCGACTTTGAAGATGGGGAAAAGATCTTAAAGCGGGACCAGCCGAAGATCGTGGCTATTCAGCGGTCCCGGGGTTACGACACCCGGGAAAGCTTCCCGGTTGCCAAGGTCAAGGAAATGATCGACTTTATCAAGGAAGTCAGTCCCCAGTCTTTGATCTTCGTTGACAACTGCTACGGAGAGTTTTCGGAAAAGCATGAGCCGACTGAATATGGGGCCGACTTCATGGCCGGTTCTTTGATCAAGAATGCCGGGGGCGGGATTGCCCAGACTGGTGGCTACATCGTCGGCAGAAAAGACTTGATCCACCGGGCAGCCAGCCGGCTTTTTGCCCCGGGGATCAGCGACTCAGAAGGGCCAACCTTAAACAGCCTGCATGAGTTCTACGAAGGCTTCTTCCTGGCGCCAAACGTGACCGGGGAAGCCATCAAGGGGATGATCTACTCAGCCGCCTTGATGGAAAAGCTGGGCTTCGACGTGTCTCCTAAGTGGGATGCCCCGCGGACTGACCTGATCGAACTGATCACCTTCAACGACAAGGAAAAGATGATCAAGTTCTGCCAGGAAGTGCAGAAGAACTCACCGGTTGACTCCTTTGTTACCCCAATTCCAAGCCACATGCGGGGCTACGAAGATGAAGTCATTATGGCCGGGGGGACCTTTGTCTCCGGGTCAACGGTTGAATTCTCAGCTGACGGCCCGATCCGTCCGCCTTACGCTGTCTACATGCAGGGCGGTTTGACCTACGCCCATGACAAGATCGCCGTGACCAACGCGGTCAAGTCAGTTCTCTTTGGCGACTAAGGGAAAAAGAAAAAATAAAGAAAATAGTTCAGAAGATATAGAAAAAACGTTGACACAATCTCGTGTCAACGTTTTTTGTCAGCTTAAGATTCTTTAAGGACTTCAGCCCAGACTTCGCCGTCCTCTTGGTAGACACCTTGGATTTCCGGATCAAGTCCCGGGAACTTTCGGGCAGCGCCGATCAAGACTTGGAAGTAGGCAACGTCCAGGTCCTGCCAGCGTTCACCAGGTGCCACGATGAAGACACCAGGCGGGTAAGGGAGGGCGCCTTCCAAGGCCATCCGGCCCTTGGCGTCGGCCAGTTTGACCAGTTCGCTGTTGCCGTGGACGAATTCGCGGTCAGCTTCTTTTGGCGTCAGCTCGTAATTTTGGAAGCTGTCCTTTAGGAAAAGAGCTTGCTGGAGCTTAAAGATCTCATGCTCTTGGTAGTAGTGGTGGAGCTCCTGGCAGAGCTGGTAGAGGGTATAACCCTCGTAGCGGTTAGGGTACTGGGCTACTAATTCCGGCATGATGGCAGACAGGGGCGCCTTAGTCAAGTAGGCTTCTTCAAAGGCCATTAAGGTCGAGAAAAGGCCGTTCATATCGACTTGCCCCTCGCCTGGCGTGAGCAGGTAGAGGGTGGAGTAGCTGTCGGACTTTTCCGGGATGATGTGCTTTTCATGCAGGTAGAGAGAAACGATGGCGCCAGGGATGCCTTCTTCGGTGAAGGCAGCTTTTGCCAGGTCAATGCCGGGCGTCATCAAGGTGACTTTTACCGGGCTTAGGGCAACTTCACCCGGAGCAAGCAATTTGAAGCCGTGCCAGTCATCATCTGGGGACAGTTTCCAGGCTTCCGGGTCCTGGGACAAGACATCAGTTGGCAGGTTCTCCCACTTTTGCCCGTGGACAGTTGGGGGAACGAGGGGCTTAAAGAGCTTGCTTTCCTTTAAAAGGCGCTTGCGGAAGTCTATGCCTAATTTAACCGTATCGTTCCACCAGCTGTTAACGGCCGGTGAAGCAGCCATGGCGCTGTTAGCGACAAGAGAAGCGTAGACCGGGTAGGAGTAGCTGGTCGTAACGTACTTCATGTAGGCATGGTTAAAGTGCTTGTGGTCGACGTAGCGCTTTTGTCCCTTGATGTGGCTGTCTTTTTTCAAAATCTGGGAGGCCTGGCCCACGCCGGCTTGCTGCTTGTGGACGGACTGGGTGACCAGGATGCCTGGGTCATCGGGGCCGTAGGTCTGCTGGAAAGGAGAGAAGTCTCTGAGGACGTCGACAAATTGTTCATAGCCGCCCCAGGCGCAGTCAAAGAGGATGTAGTCACAGAGGCGGCCGAGCTTTTTCAAGATAAGCTTGGCGTCATAGAAGATGCCGTCGTAGGTTTCCAGCTGCAGAACCGCCAGGCGGAAAGGCCGGTCAGCCTTGGCGCGGCCAGGGGCGACCTTGGCGATTTCCCGGCGGATCAAGTCTTCATCAAGACTGGCGGCGGTCAAAGGCCCGATCAAGCCGTCAGCGTTCCGGTCAGTTGGCAGGTAGACCGGCTTGGCCCCCGTCATGACCAGGGCGCTGTTGTAGATGGACTTGTGGTTGTTGCGGTCAAAAAGGACCAGGTCGTCTTCATCTAAAAGGGCGGTGGTGCAGATAGTGTTGGCGCTGGTTGTGCCGTTGGTGCAGAAGTAGACCTTGTCGGCGTTGAAGGCTTTAGCTGCTTCTTGCTGGGCTTCTAAGGGCCCGCCAGTGTGGTTCATCATATCGCCGAGTTCTGAGACGCAGTCAGAAGTATCGGCTCTGAAGTAGTTGTCACCGAAGAAGTTGCGCAAGACTGCTCCAGCTGGGTGGCGGTCATAGAAGCGGCCGTTGTGGTGGCCAGGAGTATCGAAGACCAGGTCGTCTTGGTCAGAAAAAGCCGTCAGCTCCCGGATGAAGCGGGGAACGTTGGCTTCTTCGTAGGTCTGGGCCAAGCGGCTGATTTCAGCTGGAGAGGTCTCAGGAGTAAATTCGATCAAGGGCAAGTCCAGACCCAGCTTTTCCTTCATGGTCTGGTAGATGCCCCGGGACCGGCTGTCTTTTTCATCGATGACTACGGCAGCCAGGCTTGCGGGGTTGACCAGCTCGGTCAGTTCAGTTTTGGGCCAGTCGATTGGCAGATAGGGCAGAAGCTCTTTTTTAGCAGCGATTGCTAGATAATGCATTGAAAAATTCCTTTCTGTTTCATGGGTTGATGGAAGTTGCTACTTGTACTTGCGGTCACGTTCATCGCGGAGAAAATGATCAAAGAACCAGTCATATTGAGAGAGAAGCAAGAGGATACCGGCGATGACCGCGATTTGAAGCCAGCCGGGGATGCCATTACCGCCGGTCAGCTTAAGAAAGGCAACCCGCAAGTAGGAATGGCCAACAAAGAGCCAATACAAAGAGTCGAGAATAGCTGCAGCGGACAAAAGTGTCGCGGTTACTCGCAAAAACTTTTTCATATCTGTTCCTTTCTGTTACTTGGCATTTTTCATAAAAGCGCGTACCACTCAATTCAGTATCTTTATAAAAAATTGTAGTATGCATAGGTAAATTATACACTTTCAAGCTTTTTTGCCAAAAAGCATTCTTAATTGACGCATTGAGTGATGTTTACTTTTTGCGCATTTACTTGCACGAAAAAGGCCTGCTTTTCTTGCCAAGAGCAAATTAACCAAATATTTTTACTAAAAGCTGGCTAATGACCGGTATGCGGATAACTTTCACTTAACGATTGAAAGAATTTTTATCAAATTGAAAAAATGAAAACGACACTTTTTTGATTGGAGACGGTGCAGTGACCAGCTTTTTAAAGCGCCAAAATAAGCCCCCGTCCAGGCAAATTGCCGCTTAAGACAATTTGACCAATAAGGAGCTCGATTTACAGAATGATTGAAGAAACCCCCAAAAAACACTACATGGCCTGGATGACCTTGGCGATGCTCGACTTCGTCACCATCATCCGCTTTGAAGATGTTTTCTACCCATACCAAAACCAAGGTCTGTCCGTAATCTTTTCATGGATTTTCCTTTTGATTTGCTACCAATTGCCATATACCTTGATCGCCACCCAATTGGGCCTGGCCTACAAGGATACTGAAGAAGGGGGCCTGGCCTCTTGGATCCGGCGGGGGACGGGCAGCGACGTATTAGGCTACGCTACCAGCTGGATGTACTGGGCCCAAACCGTGCCCTACCTGGTGGACGTGTCCAACTCCATCATCGCATCATCGTTTCCATTTCCTGGATGATCCTGGGCAACAACACTTTAGGCAAGCACATGTCACCTTTCATGTTCGGCCTTTTGACCTTTGTCATCATCTTGATCTTTATCTTGTGCGAAAGTGCATATAAAAACTCCCTGGACCTTCTGTCCTTGATCGGGGGGATTGCCATGTTCGCCATGTCCGTGATCTTCGTGATCCTGATCATCTGGGCTCTCATGCACGGCGGCCACATCGCCACCAAGATGGAATGGTCCAGCTTTAAGCCGAACTTCAGCGTCCACTACTTCTCCACGACTGGCCTTTTGATCTTTGCCATGTCCGGGGCGGAACTGGCCGCGCCTTACGTTACCCGGCTGAAGAACCCCCGCAAGGAATTCCCGAGTCAATGTGGATGCTTTTTGGCATGACGGTCTTCATGACATTGACCGAAACTCTTGGTCTGGCCGTCCTCTTTGACGCTAAACACATCCCGCACGACTTTAAGATGAACGGGGCCTTCTACGCCTTCCAGCTTCTGGGTGAAGAAGCCGGCATGGGTAAGAGCCTCATGTACATGTACGCCATCGTCTGCCTCTTGAACTTCATGGCCGACCTGGCCGCCTTGATCGACGCCGCCAGCCGGGTCTTTGCCTCTGACACTTCTGAAAAGTACATGCCAAGCTGGCTCAGAAAGAAGAACAAGGATGGGCTGCCTGTTAACAGTTACGTGCTGACTTGCAGCATCACTTTCTTCCTTTTGCTTTTGTCAGGGACCTTGCCGGAAATAAACGATATCTTTAACTGGCTCTTGAACTTGAACGGGATCGTATCCCCGTACAAGACTTCCGTAGTCTTCCTGGCCTTCTTAGCCTTCCGCTACCGGCACAAGACTTTTGCCAAGGACGACTTCGTCTTCATCAGAAACAACAAGGGGGCCTTGGCGGTCGGCTGGTGGTGCTTCATCTTCACCTTCATCTGCGCGACGATGGGCTTCCTGCCGCAAGACGTTACTTTTGAAAGTCCGCAATGGACCAAGCAGCTCTGGATGAACATCATCACCGTTATCGTCCTCTTCGGGACTGGCTTCCTCTTGCCATGGCTCAGAAAGCTGGAATTAAAGCACTAAGCCAAGGCGAACAGCTAATAATGCAGTAAAAAGAGTAAAGAAATAAGGGATCAGCTGGACTGATTCCTTATTTTTTTGTGCTATTCAGTTTTTTTCCGCCTCATCAATTGATAAGCAGGGGATGCTGCAGGATCCAAATGGTCAAGGGGATGATGGCCAGGAGCAAAAGGAGGCTGGTAATTCTTAAAATCCGCCGCGTCTTTTGCCCCAAGGATCCGTCAAAGGAGTAGACCAGGCTGAAGCCGACCAGGATGATCAAGAGGCTGTCACCCAGGAGGGGAAAAATATTGACTGTCATAGTGCACCTCAAAAATGATTTATCGATTATTTTATGAAAAATGCGCCGCTTTCGCGCCTTTTTGCTATGATTAAGTTAGCAATTTACTAAGGAGATTAAGTATGCAGAAAATTAAAGTAATGACCGTTTTCGGTACCAGGCCAGAAGCCATCAAGATGGCTCCCCTGGTGCTCAAGCTGATCAGTGACGACCGCTTCCGGCCGGTTACGGTAGTCACGGCCCAGCACCGGGAAATGCTGGACCAGGTCCTGGAGATTTTTAAAATCCAGCCGGACTACGACTTAAACATCATGCAGCCCCAGCAAACCCTGGCTGACATCACCACCCGGGTTTTGACTGCTTTAAGCCAGATCATCCAGGAAGAAAAGCCGGACATCGTCCTGGTCCACGGGGACACGACGACTTCCTTTGCCGCCAGCCTGGCTGCCTTTTACCAGCAGACTCCCCTGGGCCACGTTGAAGCGGGCCTCAGAACCTGGAATAAGTATTCTCCTTTCCCGGAAGAGATGAACCGGAAACTGACCGATGTCTTGTCCGACCTCTACTTTGCCCCGACCTCTGTCAGCCGGGCCAACCTTTTAAAAGAAGGGCACCCGGAAGAAAATATTTTTGTCACGGGCAATACGGCCATCGATGCTCTGGCCCCAACCTTCCAGGCCGACTACCAGCATGAAGTCTTAGACAAGATCGGCCAGGGCAAGCGGATCATCTTGGTCACCATGCACCGGCGGGAAAACCAGGGCGAGCCAATGCGGCGGGTCTTCAAGGCGATGAAGGACGTGGTCGACCAAACTGACGACGTTGAAATTGTCTACCCGGTTCACCTCTCGCCAAGAGTCCAGGAAGCGGCCAAGGAAGTTTTAGGCGGCGACCCCCGGATTCACTTGATCAAGCCTTTAGACGTGGTCGATTTCCACAACCTGGCCAAGCGCAGCTACTTCATCATGACCGACTCTGGCGGCGTTCAGGAAGAAGCCCCGTCTTTGGGCAAGCCGGTTTTGGTCTTGCGGGACACGACCGAGCGGCCGGAAGGGGTCAAGGCCGGAACCTTGAAACTGCTTGGCACTGAAGAAGACGCGGTTAAGGCAGCCATGCTGGAGCTGCTGACTGACCCAGCTGCCTACCAGCAGATGGCTGAAGCTAAGAACCCATACGGGGACGGGCAGGCCAGCGACCGGATTTTAGATGATATTGCCTGGTATTTTGCCGGCAAAAAAGGCCCCAAGCCAGCCGACTTTTCTTGATTGGCCAACTTGCATGAATAAAAAAGCAGTGAAGCTCAGCTTCACCGCTTTTTTATTTTCTTCTCCAGCCGCTTCTTCAGGTTCTTTTCCTGCTTCTCGAAGACTGATTTGGTGGTCAGGTAGTTGAAGATGCCGACCAGGATCTGGTCGATGACCTTGACGATCAAGGCTGGCCAACCCAGGACAGTCATTCCCAGCCACATGATCAAGGTGTCCGGCAGCAGGCTGATGATCCGGTAGGCCAAAAAGGACAGTAGCTTCTGCCACAATTTGTGTTCATGGTCCACGTTCTTGGTGAAGACCGCCTTGTGGTTGAACCAGAAGGAGGCCAGGTTGGACACGATAAAGGCAATCGTGTTGTCGATGACCAAGACGGTGTGCAAAAAGTCATGCATGAACATGAAGACAACCGTGTTGATCAAGGCCGCGATAAAGCCAAAGAACATGTAGACCCATAAATTGCGGTGGCGCTTGAAGTTCCGCTCGCCTAAAGCCCGCCGCCGGTTAAAATCTTTATCCATTTAATTTATCCGCCAACTCCTCAGCAGCTTGATCGATGCGCGCGATATCGTCATCGTCAGGGGCGTTTTCAACCGTGAGCGGGGGAATCAGTTCCTTGGCCCCGCAGGCCAGGAAGGCCTTCTCAAAGTCAAAAACGTTCTCGCAGTAGTGTTCCTTGTAGGTCTTGTCGCCAGAACCCATGACGGCAAAAGACTTGCCGGTCAAGTCCAACTCCTTGAGCTGGTCGTAAAAGTCGGCAATTTCGTCAGTCATGGCGCCTTCCCCGTAAGTGTAGGTGATAAAGACGCACAGGTCGCTGTCTAAATAATCGTTGGCGTCAGTGAAGCTGACGTCAGAAGAATCTACTTCCAGGCCTTGGTCCAGCAGGTCTTCCTCCAGGATTTCGGCCATGTCCTCGTCGTTGCCGGTCATGCTGGCAAAAACAATCTTTGCTCTCATAAGTTAAGCTCCCAAAAAACAATTTCTAGAGTATTATACACGATTTGTCCCGGCTTGGCGAATCGGGCGCATTGCTACTTTAGCAAACTTTTAAAAAAGGTTATAATGGTGAAGACAAACTACTTCATTATGAAAGGAAAAACAAATTGATTACTATTAAATCTGTTCGTGAATTGAAGGGCATGCAGGCTTCCGGCCACTTGCTGGCGACCATGTTTGAGGCCCTGCGTGACGTGATCAAGCCAGGCATCTCCACCTGGGACATTGAAGAATTCTGCCAGGAATTCGTTTCCAGCCGGGGCGGCCGCTTGTCAGAACAAGGTTTTGAAGGCTATAAGTACGGCACTTGCATCTCTGTTAACGACGAAATTGCCCACAACATTCCCCGCAAAAATGTCTTTTTAAAGGAAGGCGACTTGGTCAAGGTTGACGTAACCTGCAACTTGAACGGCTATGAATCCGACTCTTGCACCACTTACGGTGTCGGCCAAATCTCAGAAGAAGACCAGCACTTGATAGACGTGACCAAGAAGGCCATGTACATGGGGATCGACCAAGCCGTAGTTGGCAACCGGATCGGGGACATCGGAGCTGTCATCCAGCACTATGTGGAGGATGAAGAAGGCTACGGCGACGTCCGGGAACTGATCGGCCACGGCATCCAGCCATCTATCCACGAAGACCCGGAAGTTCCTCACTGGGGCAAGGCCGGCCACGGCCTGCGCCTGCGGGAAGGGATGACCATCACCGTTGAACCAATGGTGGAAGCCGGCGGGGACTGGCGGATTTTGCAAAAGACGGTTGACGACCCGAATGACGACTGGGTCTTCTACGCAACCCCGGACGGGTCCAAGTCAGCCCAGTTCGAGCATACTTTTGCCATCACCAAGGACGGTCCGAAGATCTTGACTTTGCAAAAGCCATACGACGGCCTGGAAAAGTACATTCCGCACTTTGACGAAATGGAAGACTAGGCATGGCGGAAAAAGTTGAGCCAGGACAAAAGGGGGTCCGGCGCTTTCTTACAACTCTTTCTTCGGTCGTTTCCCAGGGGGAGATTTTTCAAAGTTCCATCGTGATTGCCTACTACATCCTGTTTTCAATTTTTCCCATCGTTATCATTGTCGGTAACGCCCTGCCCTGGTTTCACCTGGATACGGGACCGATTGCTGATTATTTGGAAATGATCTTTCCAAGTGACGTGGCCCGCTATATCATCCCGATCGTCGATACCCTGCTCAAGTCGAATTCGACCAGCTACATCTCCTTCGGTGCGATCATGGCCCTGTGGTCCATGTCCTGTATGGTGAACGCGGTCAGAATCGGGATGAACCGCCTCTATGGCGTCCACAATAAGGAACTGAAGCTGGGCTTCTGGCACTTTATCTGGAACCGGACATTGACCGTGATCTTCAGTGCCTTGATGGTCACTATGTTCATTCTTTTAGCCCTGATCGTGGTCTTTGGCCAGGAGGTCCTGCATTTCCTGGCTCCTTACTTTAACCTGCCCCTGGCCTGGATTGACAAGCTCTCCAGCTACCGCTGGCTGGTTTTGCTGGTCTTGATATTGATCGGGGTCTACTATTTAAACGCTGTAGCGCCCAATGTCCACTTCAAGAAGGCTCTTTTTCCCGGGACCATCGTGACGGTGGCCGGCTGGGAAGCCCTGTCTTATCTCTTTTCCTTCTACTTGAAAAATTTTCCGGTTAAGTGGGAAAATTATGGTATAGTTGGAAATTTTATCATTTTTATGCTCTGGCTCAATCTCCTGGCCATCCTGTTACTTTTTGGCACGGCGGTCAATGTCAGTTTGGACCAGCTGCGCTATGGGCCAGCGACCTATTCTAACGGCCCTTTGGCCGAGTTTATCGCCAAGCGGCGGAAAAAATAATTTTCCTTTTTCAAGAAGATTGGTCTAGGTTTACTAGATTCTTTTATAGAAATATGTTATTATACGCTTACATTTAAAATACTTTCATTAATGTGCGAAGTTAAGAAAAGAGGATGTAAATACATGAAAGTCAGAAAAGCGATCATCCCAGCTGCCGGTTTGGGAACCAGATTTTTGCCAGCAACCAAGGCCATGCCTAAGGAAATGCTGCCAATCGTTGACAAGCCAACTATTCAATTTATCGTTGAAGAAGCCATGGCTTCAGGGATTGAAGACATTCTGATCATTACTGGCAGAAGCAAGCGGGCAATCGAAGACCACTTCGACTCAAACACGGAACTAGAAGACAACTTGACTGAAAAGCACAAGGACGCGCTTTTGAAGCTGGCCCGGGAAACCACCATGTCCAACATAAAGGTTAACCTTTACTTCACCCGGCAGCCGCATCCAAATGGCTTGGGGGATGCCGTCAACCGGGCTCGCAGCTTTATCGCCGGTGAACCTTTCGTGGTTATGCTAGGCGACGACTTGATGAGAGACAAGACGCCATTGACCAAGCAATTGATCGACTGCTACCATGAAACTCACGCTTCAACCATCGCGGTTATGAAGGTACCGAATGAAGAAGTCAACAAGTACGGTGTCATCGACCCAATCGGCGAAACTGCTCCGGACCTGTACAACGTTAAGGCCTTTGTGGAAAAGCCAGACGTTGACAAGGCCCCAAGTGACCTGGCCATCATCGGCCGCTACCTGCTGACTCCGGAAATTTTTGACATGCTGGACAAGCAAAAGGCCGGTGCCGGCGGTGAAATCCAATTGACTGACGCCATCGACGCCTTGAACAAGACCCAGCGGGTCTTCGCCCACGAATTCAAGGGCCAGCGTTTTGACGTCGGCAACAAGGAAGGCTACATGGAAACTTCCATCCAATACGGTCTCCGTCACCCGGAAACCAAGGATGCTTTGCGCAAGTACATCATTGACTTGGGCAAGAAGCTGGAAAGCGAAGGCAAGAAGAAGCCAGCCGGCAAGTGAAATACGCAAAGAAAGAAGCTGTCTGAAGACCAGACAACTTCTTTTTTCTACGCTTTTTTGTTACTTGCAGATGATCTTGCCCTCAGCTGGCAGGATCTGGACCCCGTAGACGGGAATTTCTTTTTCCTGCCAGCAGAAGCTGAGGGGGATGGACTTGCTCCCCTTGCCGGTCAGCTGGCGGAATTTAGCCAGGGTCATTGCCTGCCCGCCGCACAATAGCTGGCAGTCTTCCCGGGCCAAGACAAACTTACTGAGGGGGAGGGTCTGGTTTTGTACCTGCAGGTAGAGGACATTTTGCCCGCCCAGGCCAGCCAGGAGCTGTAAAAAATCTTCAAGCAGCATGGATAAACCTTTCTTTTTTTATTGTGGTATACTGTTCATATTGCTTAAAATAAAGGAACAAAGCGATAAAAAAGACAGAAACTATAGATAAAGAGGGAAAGAGGAGAGGAAACTGGTGAAAAAGAAGAATAAAAAGAGAAGCAATTACCGCCTGGTCAAAATTTTAGGGGGCCTATTAGCCGTCTTAGCCCTGGCCTTGGCCGGGGCCGGCTACTACTTTTTCAACATGGCCGTGGTGCCGGGCAAGAAAAGCTTCGTGACCAACGGGACGGTGCAGTTGACCAAGTCCACCCCCCAGTACAAGCAGAAACTCTGGTACAAGCAGGTGACAAAGCAGCACTGGCAGCTGCGTTCGGCTAATAACAATTATCTCTTGCGGGCCAATTATATTCCAGCTAAAAACTCGGCTAAAACCGTGATTATCCTGCACGGCTACATGTCCAACAAGGAAAATATGGGGGCCTATGCCCAGCTTTTCCACTCCCTGGGCTACAACACCCTTTTGCCAGACGCGGAAGCTCATGGGCAAAGCCAGGGCAAGTATGTCGGTTACGGCTGGCTGGAGAAAAATGATGTCAAGAAGTGGGCCGAGCAGGTGATCAAGAAAAATGGCCAAAAGAGCAAGATCGTGATTTTCGGGGTCTCCATGGGCGGGGCCACGACCATGATGACCTCCGGCTTAAACTTGCCTAAGCAGGTCAAATGCTTTATTGAAGACTGCGGCTACACCAGTGCTAAAGATGAAATCGATCACGAAGCCCAAGCCCTTTACAATATGCCGGCCTTTCCCCGTTTTCCCCTGGTGGAAATCTTGAGCGGGATTACCAAGTTAAAAGCCGGCTACTTTTTGGCCCAGGCCTCAAGCCTTGCCCAGCTGAAGAAGAATACCCGGCCCATGCTCTTTATCCATGGCAGCAAGGATACCTTTGTCCCAACTAAAATGGTTTATAAAAATTACCGGGCCAGCCGGGGGCCAAAGCAGCTCTTGATCGTCAAAGGGGCCCAGCATGCCAAGTCCTATGAGCACAATCCGGCTTTATATGCACGCACGGTCAAGCAATTTTTAGCAAAATACGCAAAATAATTCCTTGCAATCGTTTGCATATCATGCTATACTGAAGGCGTGGAAGAGGTAGAAAACAACTGAACAGAAGTTTTTATCTCCAGATTGTAATTATTATTCTTTGTCTCTCTTAATTGAGACCATAATAAAGGCTTGAAGCTTTTAACCAAGTGGCGATTACACAACAGTCTAATTCATTTCATACGCTAGCACGTAAAACTCGAACAAGTGACTGTTTTATCTTAGCCGGTATTAGCCATTGGTGAATTCTTAAAATTGAATATCGTGACTATTAATTTGATGAGCTACCTCATCCACTTGTAAAGACTGCCGAGGGCAGTTTAAAGGCGAGAAGATTTGATCTTCTCGCCTTTTCTAATGCTTATTTTCTTTTTGTGCTTCCTACTTGCGCAAGGTCAGCTTGGCGATGCACTCGCAGCGCGGGGTCTGCGGTAGCATGTCGACGTTTTCGATGACCCGGACGTCGTAAGCCTCGCCCAAAAGGACCAGGTCCTGGGCCAGGGTGGATGGGTTGCAGGAAATGTAGACGAAGCTGGCCGGCTTGACTCTGAGCAGGGTCTTGATCAAGGACTTGGCCAGGCCGGTCCGCGGCGGGTCGACGATCAAGGCATCGATTGGCAGGCCGTCTTCCTTCAAGCGGGGAAGGAGCTTTTCCACGCTGCCATGCAGGTATTCTGCGTTTCTGACATGGTTGAGCTCAACATTGTGCTGGGCGTCCAAAACAGCTTCAGGGATGCTTTCGATCCCGACCACCTGCTTGACCTGGTCAGCCGCCAGGATCCCCAGGGTGCCGACCCCGGAGTAAGCATCGATCAAGGTCATGTCCGGCGTTAAGCTGAGCAGCTTCAAGGCTTCAGAATACAGGGTAGCCGTCTGGACCGGGTTCAGCTGGAAGAAGGCTCGGGGACTCAAGGCAAACTTCTTGCCCATGATCTCTTCCGTGACCTGGTTCTTGCCCCGGAGCTTGCTGGTCTTGTTCCCCCAGACTTGCGGGTTCTGCCAGTCGGTTTCGTTTTGGTAGACGGAAACGACCTTTGGCAGGCGCATGATCTCGTCAGCCAGCTGCAGCAGATTGTTCAGCTTGTGGCCAACAGTGATCAAGGTAACCTGCATCTCCTGGCTGGCTTCCGCCTGCCGGACCACAATAGTCTTAACGCCTGGCAAGTTCCGCCGGCGGTTGGCGATCGGGACGCGGAGCTTGATAATCAGATCCCGGATGGCCCGTTCAGTTGCCTGGGTGTCCTCGCTTTGGGTCGGCATTTCCGGCAGGTCGATCAATTGGTGGGAGTTAGGCGCGTACAGACCCAGGGAAACATGGTGGTTTTCCCGTTCGATCTGGTACTGGGCCTTGGCCCGGTAGTGCCACTGGTCTGGGGCCGGGATGGTGTTCTTGATCTTGTAGTTCTTGTAGCCGCGCGGGTGGTACTTTTCAAGGGCAGAGACCAGATTGTCCTTCTTGAACTTGAGCTGACCCGCGTAAGACAGGTGGGCCAGTTCAAGGCCCCCGATTCTCGGGTCAACGCCGGATGGGAAGGGAACCCGGTCCGGGCTGGCTTCCTTGATCCGGACTAATTCACCTTCCAGGTATTGGGGGTGGTCCTTGACGATCTTGGCCACCACGACTTCGTCTGGCAGGGCGCCGGGGATGAAGATGATCTTGCGCTTGTAGTAGCCGATCCCTTCACCGTTGATACCCAGCCGCTTGATGGTGATGATGACGTGCCGCTCTTTAGAAGCGTTTTTTGAAAAATGTTTTTTCTGCATGTGAGCCTTCTTCTTTGTCTATTCTTTCTACAATAAAGATAACTGGAAACTTCGCAACATACTATTATACAGGGCTTTTTAAAAGGGGCGCAAGTTTTTCGCAGCTTTTGCGGCAATTTGCTAAGATAGAGTTGCCAGATTTGCCAAAAAGGAGGAAAAAATGGCCATTATCACGAAAGTTAGTGCACAAAAGCGGCAGGGGCGCTACAATATTTTTTTGGACCAGGAATACGCCTTTTCCGTCAGCGAGAAGACACTGGCGGAATTTGTCCTGCTCAAGGGCCAGGAGCTTAGCCCCCAGAAGATCAATGAAATCCTGGACTATGAAGCCAGCGCCAAGGCCAGCGACCTGGCGGCCAGATACCTGTCCTACCAGCCACGGACGATCAAGGAAGTGACTGACTACCTCAGCCAGCATGAAATTTCCCGGTCAGCGGCCAAGCGGGCCGTTAACGAGCTGACCCACCTGGGCTACCTGGACGACGCGGCTTATGCCCGCCTTTTTGTCAAAAATAACCTCCAGGTCGGCAAGAATGGACCAGGGGCTGTCCGCCGGGACTTAAAGAAAAAGGGCGTTGACGATGACTTAATCGAAGCTGCCCTGGCAGACGTGACTGATGAGGAATGGGCCGGGGTTGGCAAGCGCCTGGTCAAGTCACTTTTGGGCCAGCAGGGGAAGATTGCCAAGCGGGAAGTCGACCGCAAGATGCAGACTAAACTGCTCAGCCACGGCTTCTCCGGCTCCCTGGCCCAGGCCGTGACCCAGGATTTAGTCCCGGAAGCAGATGAGGACCAGGAAAGAGCGGCTCTGGTCAAGCAGGTCCTTAAGGCCTACAAGCGCTTCAAGCGCTATGAGCCAGGCGTAAGGGAGCAGAAGATGCGGCAGTATCTGTACAGCCACGGCTTTTCCGGGGATGAAATCAGCGCCTTTTTGGTTGGGGAAATCATTCCTTTAGAAGAACTGGAAGAATACTAGAAAATAGAAAGAAGTAAAGAGATGCAGACAGAAATCAACGAACTTACTTTTATCGGCAAGGCCTTTCCTGACCGGATGATGGATGCAAACGGGACCTTCGCGGCCGCCAACCAGGAACTGGAAGCTGACCCGGCCTTTCAAGCCTTTGTCAAAGAGGCCGGCCTTGCCGGGCAGCGGGCGTCCTTGATCGTTTTTGGCCCGGAAAACTTCATGTACTGGTACGGGGTGATCGCGCCTAAGGATAGCGAAGTTAGCGGCCTGCTCAAGTTTTCCCTGCCAAGCGCCCGGGTTTTCCAAAAAGAAGAGACGGCCAATGCGGCCTACTTCGACCTGCCCTTGAACTTTGAACTGCCCCGCTTTTTGGATGAAGCCGGCGACTTAGGCAGCGACTTCCAGGCTCAGCTGGAGGAGAATCCTAACCCTTATATCCTCCGCCAGCTGGATTTAGGCAGTAAAAAACTGACCAAGAGCCTTTACCTCCCGGTCAGTCAGAATTAGGATTGCTTGATTTCAGCGTCAATGGACAAGTTGTCGTATTCGATATAGGCCCCCAGGCAAGTTGAAATGAACATGACTAAGATGACGAAGCCCATGGAGGTGCCGACGATCCATTTCAGGGGCAAAAGCAGGCGGATCACGATCGTGGCCAGGGTGCAGAGGACAAAGTCCAGGATAAAGTTGGCTACCTGCAAGAGCGGCCGGCGGCGGATGCTGAAGAAGCGGAGAATCTGCTGCAGGAAGCTGTCATAGATGTCTCCGGCCAGCAAATTCAAGGGCCGCTGGATCGTGGCCTTGACGGCCAGCATGATGATGGCCCCGACAAAGGCCCCTACAGCCGTGCGGAAGTGGGAAGTCGAGTGCAGGACCAGGGCGTTAAAGCCGATCCCGATGATGGCCAGGCTGCAGATGTAGGGGATCAAGAGCAGGAAGACGAAAACTAACATAATGCGGCGCATTTTCATGGTAAAACACCTCTTTCTACTGGGCTATTTTAACATATTCCCGTAAGGTCATATGCTATAATGTAAATATTTAAGGATTTTACGAAAGAGAGTTAAGAAAATGACAAGCGACCCTGCGACCGGCAGCCTGTTTGACAAACTGAGAAGCCGTTTTTCCAGCAATGAAGAAAGCGGCAAGGACCAGCTGCAGGCAGAAATTGACCAGCTGCATGCCGGCAATGTTTTGACTGATACTGAATATTCGATGATTGAGGGCAGTATGGCTTTCCACGACAAGGTAGCACGGGAAGTCATGGTGCCGCGGACTGACGCCTTCATGATCGACATCGAGGACGACTTGGAGGAAAATTTGGATGACATCCTCCGCCAGCCTTATTCAAGAATTCCCGTCTACCACCAGGACAAGGACCAGATCGTGGGTGTCATCCACATCCGTACCATTCTTAGAGAGGCCCGCCAGCACGGCTTTGACCAGCTGACTTATGACCGCTTGATTTCCCCGCCCCTTTTTGCCCCGGAAACGATCGAGCTGGACGACTTGCTGGTGCAGATGCAGACCAGCCAGCAGCAATTGGCCATCCTAACTGATGAATATGGCGGGGTGACCGGCCTGGCCAGCATCGAGGACTTGCTGGAAGAAATCGTTGGCGACATTGACGACGAGGTCGACAAGGCAGAAGTTTTGGTCCGGCAGCTGAATGACCGGCAATTTGTCATTTACGGCAAGATGCCTTTGACCGACTTCAACGACCGCTTTGGCACCGAACTCGAAATGGAAGACGTTGACACCCTGGCCGGCTATATGATCACCAAACTTGGCGTGATCCCGGGCAGAGGCGAGCAGCTGGAAGTGCCCCTGGACAACGGCATGGTTTTGACGACCAGAAGAATGCGGGGGGTCGCGGCTCTTAACGGTCTTATTGACCCTGCCAGAAGAAAATTACGAGGAAGAAACTGAAGAATAATGAACAAAGAACTTTTAGACAAAGTAAACAAGCGGCGGACTTTCGCGATCATTTCCCACCCCGACGCCGGTAAGACGACGATTACGGAACAAATGCTGCTCTTGGGTGGGGTGATCCGCAGCGCCGGGACCGTTAAGGCCCGCAAGACCGGGAACTACGCCACCAGTGACTGGATGGAAATCGAAAAGAAGCGTGGGATTTCTGTTACCTCATCCGTTATGCAGTTTGAATACCAGGGCAAGCGGATCAACATCCTGGACACCCCAGGCCACCAGGACTTCTCAGAAGACACCTACCGGACTTTGATGGCGGTTGACGCCGCGGTCATGGTTATCGACTCCGCCCGCGGGATCGAGCCGCAGACCAAGAAGCTCTTCAAGGTCGTGCGGCAAAGGGGAATCCCGGTCTTTACCTTCATGAACAAGCTGGACCGGGACGGCCGGGAACCCCTGGACCTGGTCGCTGAACTGGAAGAAGTCCTGGGCATTGAAGGTGTGGCCATGAACTGGCCGATCGGGATGGGGCAGAGCCTGCTGGGCCTTTACGACCTGGCCAACCAGCGGGTTGAACTCTACCACCCGGAAGAAGGGCAGGACCGCTTTATCGCTTTAGCAGACGGAAAGGCGCCAGCCGGCAGTCCTTTGGCAGATGACCCGCAGTTTGAAGAAACCTTGGGTGAAATCGAGCTTTTGGAAGGGGCCGGGGCCAGCTTTGACCGGGCAAAAGTTTTGGCCGGCCAGCAGACTCCAGTCTTCTTCGGGTCAGCCTTGACCAACTTCGGGGTGGAAACTTTCCTGGAACAATTCGTTGACCTGGCACCAGCGCCAGGCGAGCACGAAGTCAACGGGGATGAAGAACTGAAGCCAGATGATGACGAATTCTCCGGCTTCATCTTCAAGATCCAGGCCAACATGAATCCCCAGCACAGAGACCGGATCGCTTTTGTCCGGGTCTGCAGCGGGGAATTCAGCAAGGGCCTGGACGTAACCCTGGCCAGAACCGGCAAGCAGGTCCGCTTGAACAATGCCGTTGAATTTGAATCCAGTGCCCGGGTCCAGGTTTCTGAAGCCGTGGCCGGGGATATTGTCGGCCTCTACGACACTGGCAACTTCCAGATCGGGGACTCTGTCTACGCTGGCAAGCGCAAGCTGGAATTCCCGCCGCTGCCGGAATTTACCCCGGAACTCTTCATGCGGGTTTCACCAAAGAACGTCATGAAGCAGAAGTCCTTCCACAAGGGGATGAACCAGCTGGTTCAAGAAGGGGCTGTCCAGCTCTACCGCAACTACCAGACCGACGACTACATTTTGGGGGCGGTTGGTCAGCTTCAGTTTGAAGTCTTCCAGTACCGGATGAAGAACGAATACAACTCTGAAGTTGAAATGACTTCCATCGGCCACCGGGTAGCCCGTTGGATCAACCCGGACCAGCTGGACCCGAAGATGTCTTCCAGCCGGAACCTCCTGGTCAAGGACCGCTTTGGCAATCCTCTCTTCCTCTTTGAGAACGCCTTTGCTGAACGCTGGTTCCACGACAAGTACCCGGATGTGGAACTGACGGAAAAGCTGTAATGCAAAGAAGCAAGTAAAAACAAATCAGCAAAAGAAGATAGCAAACAAGAAAAAACGATGCCGCGAGGCATCGTTTTTTTGCGCATGATTGGTTTGACTGACTAGCATTCAGTCATTTCTGTTTTGCTCTTTGGCAAAAAGTAGTAAACGAGGTCAAGGACCGCTTGGGTAAACATTACCCCGGCCATCCAGTACATGGCCATCATCATCTTGTCGGTAAAGGTGTAGAAGGCGACGATGCCGTACAGTAAGACCCATAAAATCTTCAAGTAAAGGTTGTTGTTCATCATAATTCTGATCCTCCAAGTTTTTTAGTGGTGGCTGGCCCCGCTGGTCGCGTCGTGGTGGCTGGCGCCAGAAGCGGCGTCGTGGTGGCCTTCATGACCGGCTCTTGAAGCGGCAGTAACGGCTTCGACCAAGCGGCGGCTGGTTTCGGCTTCAGCCGCGTGGAAGCAGGCACCCATGTCCATGTTTTCAACGTCCATCCCTGGCATGAAGACTTCGCCTGGTTCAACGCCCATTTCTTCTACAAAGGCGTTGGTGATGGTTTCCATGTCCATCAGCTTGTAGGTCTTGTCTGGATCCTTCGGGTCAACGATTTGGATCTAGGCCATCATGCCGGCATCTTCGTGTTCGATGATGTGGCAGTGGTACATGAAGACCCCGGCGTTTTGGAAGTAGACCTTCAGGCGGACAGTTTCGCCTGGGCCGACTTCAATAGTGTCCTTGTAGACATTTATTTCGTTCGGGTTAGGCTTTTGCCCGTTGCGGGAAACAACCAGGAAGTGGGTCCCGTGGATGTGGAAGGGGTGCAGCATCCTTGACGCAGAGTTGTTGGTGTTGGTTACGTCCCAGTATTCAACTGAGTTCAAGGTCTGCTTCATGTCGATTCTTTCCATGGAGAAGCGGAGACCGTTGATCTTGTCGTTGTCGTCCATGGTTACGTGGCGGACTGGCACTTAGCTGTTCACAGCCGGGTCGTCCGGAGTGAAGATGTTGAATGGCAGTTCACGGTCGTCTTTTTCAAAGGCGTGGATGCGGAATTTAACCAGCTTGAAGTCGTCAGTGTAGAGGCTGACAACGTCGCCTTCCTTGTAGCCGGCAAAGTCAACGATGACTTGTTGTCTTTCCCCTGGCCCGATCAAAAGCTTCTTAACGTCAATCGGGTGTCTGAGGAAGGAGTCGTCCCCGCCGATTTGCGTCATGGTCAAGTCGTTTTCAAAGTGCAGTCGCCATTCCCGGCGGTTAGAACCGCCCAAGAAGAGCAGGCGGACCTTTTGGGTCGTCACGTCAACGTAAGGACGGATCACGCCGTTGATCAGAGGCACTTCACCAAAAGACGCCCATCGGGTCGTAGTCAGCCCGGTAGTCGAGCTGGTTGTCGTGGAAGGTCCGGTCTTGCAGGATGATCGGGAATTCGTCAACCCCGTAGTTCTTTGGAATCGGCAGGCGGGCTTCGTTGTCGTCAGTAACCACACCCCACATGGCCAGGCCCATCCAGACCTGCATGGCCGTTGACCGTTGACGGACATGGGTGGGCGTGCAGCCAGGTCAGAGCGGCTGGCTGCTTGACCGTAAATTCGATGTCTTTTTCTTCGCCAGGGTAAACTGGGGCGTGGCAGCCGCCGTCAGTAATTGGTCCCGGAACTTCCATGCCGTGCCAGTGGAATGAAGTGAGGACAGGCAGGCTGTTCTTCAAACGCACGTGGACTCTTTGCCCGGTCTTGACTACCAGGGTCTGGCCCAAAAGGGGAGCGTTGTAGCCCCAGGTCTCGGTCTTCTTGCCTGGCAGGATCTGGCTTTCGCCTTCCTGGGCCTCGATGGTGTAGTAGATGTCATTGGCGTCAACCTTGTCCGGCGCTAAAAGCGGGGGAACGGCCAAAGGCTGGGCCTCAACGCCAGCTGGAATGGTCAGCGGCTTGTAGCCCATGTGGCTCGTATCGAAGTCTTTTTCAGCATAAAAGTAATCCGGATAAACTGTCATGATCAGTGCCTCTTTATTTTTACTAAATCAACAGTTTAAAATTGCTGCTTTTTACACATTCACTTTCTTTTCTAAAAGCGCTTTCCAGTGTTCAAAGCAGATTGTAGAACTATTTTTTAATAAAAATTGATATAGGTCAATTTTTACATTTTTTTAAAAAAGCCTGTTTTTCGCAAGTTAATCTGTAATTTTGCTAAAAAACAAGTATTTTTTGAATTTTGCTGAAAAGAATAAGGGAAGAAGACAGGGAAGAAAAAAGAGCCCAGTGGGCTCTTTTTGCAGGGATTACTTGTCAACGTGGATTTCGACGACCCGGCGGTGCTTGTCAACCGTAAGCTGATAGCTGGTATGGTCGGGAATCAGCCGCTTGATTACAAATTCGAGTTCTTCCTCGCGGATCTTGCGGTGGTGGTTTTCCAAAACGATCCCGATGGCGATTGGGCTTTCGGTATAAACTACGGTAGTGTTGCCTAAGGAGTAAACTTTCACGTAGTTCACGCTCGTAGTATTTAGCTGACTGTGAACTAATTCGGCATAACTATTAGTAACATCAATTAAGTGCATAAAACTTCACCCGTTTTTACTTGTCTCCGATATTCCCCTCACTTTCATTATAACGCATTCAAGAAAAAACAAGGATCCTTTTTGGATAATCCTTGTTTTTTCTGCTCAGAGATAGTTATTTTTCTTTGCTCGCTTCAGTGGCTGGCAGGGCGGGAACTTCTTCGGAAATCGTGATTTCCCCGTCCCTTAAGTCCACCACTAATTGCTTGGCTTCAGTGTGGTCCAGCTTGTAGTCGGCCACCTTGTCTTCAATTTCTTCCTGGATGACCCGGCGAAGCGGACGAGCGCCCATTTCCGGATCGTAGCCTTCCTCAACCAGCTTGTCCTTGGCCGCGTCGGTAACCTTGATGTGTAGGCCCTGGTCGCTGACCATGGCGTTGGTCTTGTCCAAAAGGAGGTTGACGATCTGCAGGAGGTTGTCCTTGCTCAATGGGTGGAACTGGATGATGTCGTCAAAGCGGTTCAGGAATTCCGGCTTGAAGTACTGGCTCATCACCTTGCGGGTTTCTTCAGCTTCATTCTTGTTGTTTTCTGCCGTGAAGCCTACGCTGGCCGTCTTGATTCCCTGGCCGGCGTTTGAGGTCATGATGATGATCGTGTCCTTGAAGGAAACAGTCCGCCCTTGTGAGTCGGTCAAGCGGCCGTCGTCAAGAATCTGCAAGAAGAGGTTCAAAACATCTGGGTGGGCCTTTTCAACTTCGTCCAAAAGGATCAAGCTGTATGGGTTGTGGCGGACCCGTTCGGTCAATTGGCCGGCTTCTTCATAGCCGACATAGCCCGGGGCAGACCCGATCAATTTGGAGACGGAGTATTGCTCCATGAATTCGGACATGTCGAAGCGGATCATGGCGTCTTCGCTGCCGAACATCTTCAAGGCCAGCTGCTTGGCCAGCTCGGTCTTGCCGACCCCGGTCGGGCCAACAAAGAGGAAGGAGCCGATTGGCCGGCCGGACTTGTTGAAGCCGATCCGGTTTCTTCTGATGGCCCGGGCCACCTTGTCAACGGCCTCGTCCTGGCCGATAACCTTAGCCTTGAGGTCGCTGGCCAGGTTGGCCAGCTGTTTTTCTTCTTGTGCCTGGATGTCGCCGACCGGGATGTTGGTCTTTTCTTCCACGATCTTGTCCATGACTTTGGCCGTAATGGTCGGGGCCTTGTCCGGGTCGACGTTTTGGTCCTTCAGCTTCTCGTATTTTTCGATCTGGTCACGGTAGTAGGCAGCTTTTTCGTAGTCTTCGTTCTTCAAGGCATCCTGCTTGAGCTTCTCAGCCGCGTCGATTCTTTCCTGGATCTTTTCCTTATCGATGTAAGGGATGGTCAGGTTCATTCTTGACCCGGCTTCGTCCAGCAGGTCGATGGCCTTGTCTGGCAGGAAGCGGTCTTGGATGTAGCGGGCAGACAGCTTGACGGCGGCTTCGATGGCGTTGTCAGTGTATTTGACGTGGTGGTAGTCCTCGTAGCGCTTCTGGATCCCCTTGAGGATCTTGATTGTCTCGTCGATGCTTGGTTCCTTGACTTCAACTGGCTGGAAGCGCCGGGCCAGGGCGGAGTCCTTTTCGATTTCCCGGAATTCCTTGATAGTCGTAGCCCCGACTAACTGCAGCTCACCTCTGGCCAGAGCCGGCTTGATGATGTTGCCGGCGTCCATGCCGCCTTCAGAATTGCCGACGCCGACGATTTCATGGATTTCGTCGATAAAGAGGATGATGTCCGGCTGGCTCTGCAGTTCCTTGACCAGCTGCTGCATCCTTTGCTCAAACTGGCCCCGGATCCCGGTACCTTGGACCATGGAAACCATGTTGAGGGAGATGATCCGCTTGTTTTGTAACTTGGCTGGAACTGACCCGTCCACGATGTCCTGGGCCAGGCCTTCAACGACCGCGGTCTTGCCGACCCCGGCTTCCCCGATCAGGACCGGGTTGTTCTTGGTCCGCCGGTTGAGGATTTCAATTACTCGGGCGATTTCTCGGTCTCGGCCGATAACTGGGTCGATCTTGCCCTTCTTGGCCAGAGCTGTTAAGTCGGTCCCGAACTGGTCAAGCAGGGACTGGCCGCCGCCATTGCCGCCCCGGCCAGGGGTCGGGCCGGATGGATTTTGGTTGTTGTCACGGTTTGCGCCATTTGACCGCCCGTTCAAAGCGTTGAAGAGTTCGTCAAAGTCGCCGAAAAAGTTGTCATTATTCATTTGATTGCCTTGTTGATTCCTTAACTCTTGGTAGCATTGCTGACATAAGTCGATTTCTTTGTTTTGGCCGTTGATCTTCGTGTAAAGATGTATCGAGGCCTGCCGTTGGTGGCAGTTTTGACAGAACATGTTAAAATACCGCCTTTCATAAAAGCTCTGCCTAAATTATAGGGCTTAGCACTCTAGTTAGTCAAGTGCTAAGACTCGGGGGAGAAAATAGCCGGCTTTTGAGACTTCTTCCTTTAATTTTGACAAAAAATTGCGCTAAAATAATGGATAGGAGGTTGTGACATTAATATGGACTATACTGATATTTTGGAGAAATTGGTCTTAGGCGACTTGCTGGAGTACCAGATCGACCCGCAGAAGGACCCAGAAGATGCGTTCGCTTTCCAGCAAAGCCTGCGCAATTACGGAAAAAACAAGAAAATCACCGGCCGGGCCGGCCGAGGCGGGGTTATTACCTATACTTCGATAGAGAATAAGCCAAAGTATTAATGAAAACATTTACAAATTAAGTTGTATTGACCTCGAAAACATGTTATTCTTTAAGAGAAACGGTACTTTGGTACCCAATTCTTGATTTTTAAAGGAGATAATTTACGATGGAAAAGAAAGAATTTCACATTATCGCTGAAACTGGTATTCACGCTCGTCCAGCTACCTTGTTGGTACAAGCTGCTTCAAAGTTTGGTTCAGACATCAACCTTGAATACAACGGCAAGTCAGTTAACCTTAAGTCAATCATGGGCGTAATGTCATTGGGTGTTGGCCAAGGTGCAGACGTAACTATCAGCGCTGAAGGCGATGACGAAAAGGAAGCTATCGCAACTGTTGCTGAAACTATGTCAAAAGAAGGTTTGGCTGAATAATGACTGAAACTTTGAAGGGTATCGCAGCCAGTGACGGCATTGCTGTTGCTCCAGCCTATCTCCTGGTCGAACCGGACCTTTCTTTTGAAAAGAAGTCTATTGCTGACGCGGAAGCTGAAGTAGCCCGCTTTGACAAGGCAGTTGCCGAATCACAAGCTGAATTGGAAAGTATCCGCAAGGTTGCCGCAGAAAGCTTGGGTGAAGAAGAAGCGCAAGTCTTTGACGCCCACTTGATGTTCCTGTCAGACCCTGAATTCACTGGCCAGATCAGCGCTAAGATCAAGAGCGACGCTGTCAACAGTGAAGCAGCTTTGGACGAAGTTGCCCAAAACTTCATCACTATCTTCCAAAACATGACTGACAATGCCTACATGAAAGAACGTGCAGCTGACGTCCGCGACGTTTCAAAGCGGATCATGGCGCACTTGCTGGGCAAGGAACTGCCTAACTTGGCAAGCATCGACCACGAAGTAGTTCTGGTGGCTGAAGACTTGACGCCAAGTGACACGGCACAATTGAACAAGAAGTACGTTAAGGGCTTCGTAACTGACCTGGGCGGCCGGACTGCCCACTCAGCCATCATGGCCCGGTCTTTGGAAATCCCAGCTGTTGTCGGGACTGAAAAGATCACCACTTCTGTAGAAAACGGCCAAATGCTGATCGCTGACGGTTTGGATGGGGTGGCCATCGTTGAACCAAGCGAAGAACAAGTGGCTGACTACCGCAAGAAGGGCGACGACTTCGCTAAGCAAAAGGCTGAATGGCGGAAGTTGAAGGACGAACCATCAGTAACTGCTGACGGCAAGCACTTCACGGTCGCTGCCAACATCGGTACTCCAGACGACCTGGCTGGCGTTTTGGAAAACGGTGCTGAAGCAGTCGGCTTGTTCAGAACTGAATTCTTGTACATGAACTCAAACGACTTCCCAACTGAAGAAGACCAGTTTGAAGCCTACAAGAAGGTTCTGGAAGGCATGAACGGCAAGCAGGTTATCATCAGAACCATGGACATCGGTGGCGACAAGCACCTGTCCTACTGGGACCTGCCAGAAGAAATGAACCCATTCCTGGGTATCCGGGCCATTCGTCTGTCCTTGAAAAACAAGGAAATCTTCCGCACCCAGCTGCGGGCCTTGCTGAGAGCATCAGCTTACGGCAAGCTGGGGATCATGTTCCCAATGATCGGTACTTTGGACGAACTTCACCAAGCCAAGGCTGTTTTGGCTGAAGAAAAGGACAAGCTGGTCAAGGAAGGCGTCAAGGTTGGCGACGACCTGCAAGTCGGCATGATGATCGAAGTTCCGGCAGCTGCCGTTCTGGCAGACCAATTTGCCAAGGAAGTCGACTTCTTCGCAATCGGGACCAACGACTTGATCCAATACACTATGGCTGCTGACCGGGGCAACGAAAACGTTTCTTACCTCTACCAGCCATACAACCCGTCAGTTCTCCGCCTCATCAAGCACACGATCGACTCAGCTCACAAAGCTGGTATCTGGTGCGGGATGTGTGGTGAAGCAGCTGGTGACTCAATCATGTTCCCAATCCTGCTTTCCATGGGCCTGGACGAATACTCAATGAGCGCAACTTCAATTCTGCGGATCAGAAACGAAATGAAGAAGCTCTCAACTGAAGAACTCGCTAGCTTGGCTGACAAGGCAACCAAGGAATCATTGACCAACGAAGACAACATCGAACTGGTTAAGAACTTGATGGCTGACAAGTAAAGAGCAAATTAAAAGCGATTAGCGTGAGCTGACCGCTTTTTTGCTTGATTAATTAAGAAATTTAAAAGAAAGCCAATTACCCCCTTCCTTTTTGTAAGTATCCATGCTAAACTATATACTATATAGTAAGTAACGAATGTGTGTTCATGCAATCTCATTTTAAAGGAGCGTGGTAACAATGGTAGATTTATATGTTTCTCCAAGCTGCACCTCATGCCGCAAGGCAAAGCAATGGCTTGAACAACACAATATTCCCTACAAGGAAAGAAACATTATTTCAGATCCTTTGAACCGGGAAGAAATCATTCATGTTCTGAGAATGACTGAAGAAGGCACGGAAGAAATCGTGTCAACACGGTCGAAGGCTTTCCAAGAGCTGAATATCGACCTGGACGACATTTCAATGAATGAACTGATCGATTTGATTGAAAAGAACCCAAGCCTGCTGAGACGGCCAATTATTTTGGATGACCGCCGGATGCAGGTTGGCTACAATGAAGATGAAATTCGCCGTTTCCTGCCGCACAGCGTGCGCCGGCTGGAAATAGCCCGGGCTAAGCGCCTGGCAGACCAGTATTTTTAATTTCAGAATAGAAAGTTGCAGGCGTTGGCTTCTAGAAGCTAACGCTTTTGCTTTGTTGGCTTTTTAGGTTACAATAACAGTACACATATAAGGAGGGATGAAGATGCGAGTTGAAAAGGTGAATGAGAACACGCTCCGCGTAAGCATGACCCGGGAGGATCTGAACCAGCGGGGCTTGAAGATCTTGGACTTACTCGGCAACCGGGAAAGAGTCCAGGAATTTTTCCTGTCAGTTCTGCGCGAAGTGGACGAGGACAATGACTTTGCCAGCGATGCGCCGGTGACTTTCCAGGTCATGCCCAACGATGGCGGGATCGATCTCCTGATTACCAAGATGAATGCAGGCAGCGACCTGCCGGAAGAAATGCGGCGCTTCTTTGATCCTGAAGCCAATGGGGTCGGAGACGATATGGCGGAAGCGGTTGAGGAAGATGACTGGGCCTTTTCCGACTTGAACCCGGCTGATGACGCCAACACTGAGATGGACCCGGTGGTCATGCAGGACCTGGGCAACACCGATGATGAAGACTACGAGGACTACTGGAGTTACCAGGAGACCCATGTTTTAGTCTTTGACGATATCGATGACCTCCTGGCTTTGGCTGACAGCCTCAAGGTCAGTGACCTGGCGTCCAGCGTCTACTACTACAAGCAGCAGTTTTACCTCAAGCTGGCTTTTATGGACGAGAATTACGCGGAAATCAAGCCAGCTGATGCCTGGGCGATCGCCAATGAATTTGGCCGCCAGGTGTCCGCTGACGAATTCCAGCAGGCCCAAGCCCACGGCCAGTGCCTCTTCCAGCAGGACGCGCTGGGGGCTTTGCGCCGGCAGTTTGCCAGCAAGCGGGCTTAAGAATCCAGATGATGATTTAAGGACTCCTTCGGGGGGCCTTTTATTTTGCCTATTTTAAAAAAATCTCCCCTTTTTGGCGTACTAGTTAATGGGGGATTATTTTGTACGCAGCTTTATTAAATAAAGAATTGGTCCTGGCCGTCAGTGAGGCCGGCAAGGTCCGGGAGAACCCGGCCTATCTCAACCAGGAAGTCTACCGCTGCCCGCGCTGCCAGAAACCGGTCATCCTGGTTTTATCGCAGAAGGCAGAGCCTTTTTTCAAGCACTACCAGGCTTACCGGGGGCTAGGAGAACAATAGGAGCACCGGCAGGGGAAAATGCTCCTCAAAGCCGCTTTGACCGCGGCGGGGCTAAATGCGAAAGCTGAAGTGCCGCTGGCTGACGGTGCCTTGCGGGCTGACGTTTTGGCCACACCGCTCTTGGCCTTTGAGGTCCAGTGCGCGCCCTTAAGCAAGGGGGAGTTTGCCCACCGGCATGCCCTTTACCAGGCGATTGGGATTAAGGATGTCTGGTTGGTCGGCCGCCGGCATTTTTTAGGGGAAAAGCTAAAGCAGACCCAGCTGATCTTTTTCCGGGAAAACCGGTGCTGGGGAAGCTATTATCTGGAAATCCACCAAGAGGCAGGCTTGATTAGATTGAAGTACCAAATAAGGCAGGCCCCTGTCAGTCAGACCCTGCTGTACCGGCAGGTGGACTTCGCCTTGGACGCGGAAGGAATTGCCGCTTTATGGCACTTTAGGCCCCTTTTGCCCCCGCCTTTGGCCGATGACTGGGTCAAGGAGCGGGACTATCTGGACCAGCAGCTGAAGGAAAAGAGCAAGCTGGGTCAGAAGCTGGGGGAATTGATGTACCTGGCCGGCTACACTGTCTTTACTTTGCCCAAGGAAGCTTTTTCCACTTGGCGCAGGCCGGGGGAAAAAAGCTGGCTCTTGAAATTTTTGCAGCAAAAAACCAGCCCCTAAAGGAGAGGCTGGCTATAAGAGATGAAGGTGGCTGACCGGATAATAAAGTGGAGCATTCTCCGTCAGCTGCATCAAGGGTTCAAGGCAGCTGTCCGCGCTGTTTTGGAAAACTTGCAGGAGGTCGTCGTCGCTTAATTCACCATCAAGCAAGAGACCGCTGTTATCGATCTGGTCGTCAAAAACCACGGTTGAAGGCAGGACCGTGATTTGGAATTTCCTGGCCAGCTGCTGGTCCCGGGCAATGACGTCTTTAAGGCAGGCATCATTCAAAGTAGATGAAATTTTCTCTGGCTTGATATTGAGGCTTTCCAGCAATTCTTCAGCCAAGGCCGGGGAATAAGACCGCTGGCCGTCACTCAAACTTTCCTGCAACTTGAACAAAAAGCTCCTGGCCTTCTTCTTGCCATAAGCGATTTGCACGGCATAGTAAAAGCTCTGGGCGCTGACTGAGGCATTGTGATAATTGGCTAAATTGATGGAAGTGTTGAAGTTCCAGTTCCGCTTGACCATGTCGGCCTTCATGGCTTCCATGGTTACCAGGGGAATGTAATTGACGGAAATTTCAAGCTGCAGTTCTGCCGCCAATAGCCGGATGCGTTTTTCAAGCTGGTAGCAGGATAAACCTAACGGATTGATAAACAGAAAAAGTTCGAACATGGTCGACCTCCAATTTTTGCTTCATCTGCTACTTTAACAAAGCTTTTACTTGAAAACAAAAGAAAAGCTTTCGCCTATTTTTACTTGGCATGCTGGCTGGCCCGGGCAATCTTGCTCTGGTTGTTGGCTGACTTGACCGGCAGGGCAAAGCGGGTCTTAATTTCTGCCAGGGCTTCCTTGATAGCGGCCGGGGAGTCATTTTCAATTTCCATTTCCCAGTCCTGGTAGCCGTCCGGGTAGCTGGTCTGGTCTAAAGTCAGCTCGCAGCCCTTTGGCCCGTCTAAAAGGATCCGCCGGGTCTTGCTCCAGGAAAAAAGGGTCAGCTGGCTGGCTTTGTCCGGGTAATGCTCTAAAAGGTACTGGCCGACATTGCCAGTCAGACTTGGCCGGCCCTTTTTTAAAAAGTCCTCGGCTTCAGGCAGGGTTAAATCATCATTGATTTCCAGGCTTTCATGGTAGGTCTCCTGCAGCTTCTTGACCGGAACCTTGATGGTTTCCTCGGCCCGGTCTTGGAAGCAGCGGATTCTGAGGGCACTGTGGTCTTCTTTTAGCTGCTTGTCCGGGGTGTCAAAATAGTGGTTGCTCTGTTTGAAGTCGCTCTTGACCGGGTAGGCAGCGACGATAGCCTCATAGCTGGCCTGGTCCAGGGCGACTTTGGCTTCAATTTCGCGGTTTTTGCTCATTTTTTTAGACTCCTTTGTTAGATAAAAATTAAAAAGTTTGCGTTGGTGCTTTTGCTAACATCTATGTTAAAATGAATTTGTTTGAGATGGAAGGGAAATGTCTGTGATTACTGATTGGGATACTTTTTTATGGCCATACAATGAAGCCGCAAATGAACTAAAAGTTAAATTCAGAGCTCTCCGGCAGAGTTTCTTGACCAAGGGAGAGCATTCGCCAATAGAATTCGTGGTTGGCCGGGTGAAAACGGTCGACTCCATTAAAGAGAAAATGCAGCGGCGGGTCATCAGCCCGGACGTGATCGAAACCGACATGCAGGACATTGCCGGTATCCGGATCATGTGCCAGTTTGTCGATGACATCTACCGGGTCGTTGACCTGCTCCATGCCCGCGATGACCTGGAAGTCGTCGAAGAGCGCGACTATATCCAAAATGCCAAGCCGTCCGGCTACCGGTCCTACCACATGGTGGTGGCCTACACGGTTTATCTGTCCGAGGGGGACAAGCGCCTTTTGGCGGAAATCCAGATCAGGACTCTGGCCATGAACTTCTGGGCCACGGTTGAGCATACCTTGAACTACAAGTACCAGGGGGCCTACCCGGAAGATATTTCTGAGCGGCTCAAGCGGACGGCGGAAGCTGCCTACCAGCTGGATGAAGAGATGTCCTCGATCAGAAATGAGGTCAAGGAAGCGCAGAAGATCTTCACCAAGAACAAGGGCAAGGAAAAGTCATGAAAGTAGCTATCGTTCACAATGACCGCGTGACCACCCAGGTGGCGGTCCGGCACCTGCAGGTGCTGCTCGCGGAAAAGGGCATTTTGCAGGACCAGCAGCATCCCGACCTGGTAATTTCTGTCGGCGGTGACGGGACCTTGATCTCTGCCTTTCACAAGTATAAGCAGCAGCTGGACAAGGTCTGCTTTGCCGGTATCCACACCGGACACCTGGGCTTTTACACCGACTGGCGGAACTACGACATGGAGAAGCTGGTTGACGCCCTGGCCAGCCATCCCGTTGAAGAAAACGAGGTGGGCTACCCGCTTTTGGACATGAAGGTAACCACCAGCTGCGGGGAGAAGCGCTTTTTGGCCTTAAATGAAGCCTCAATCAAGCGGATTTCCAAGACCATGGAAGCTGAGGTCTGGCTCGGGGGTGAGCGCTTTGAGAATTTCCGGGGCGACGGGCTCTGCGTGTCAACCCCGACCGGGTCAACGGCCTACAGCAAGTCCCTGGGCGGAGCGGTAATCCACCCCCGCCTCAAGACCCTGCAGCTGACCGAAATTGCCTCGATCAACAACCTGGTCTTCCGGACGGTGGGCTCGCCCATCGTTATTGCCCCGGATGAGTGGATCACCATCGTGCCGAAGATTTCCGACCGGGTGGTAGTGATCGTTGACGGGGAAAGGATCAGCTTGACCGACGTGCAGAAAGTAGATTATAAAATTGCGGCGGAAGAGATTCGCTTTTACCAGTATGGCCACCACCATTTTTGGGAGCGGGTCAACGACGCCTTCATTGGTGACAGATAGTGCAAGTATACAAAATGATTGTTGCGAAGAATGACCCAGGCCAGCTGAGTCATTTTTTGCTGAAAAAAGGTTTTTCCCGGCGGGCAGTCAACAACTGCAAGAACCACGGCGGGATGATGCTGGTCAACCACCACCGCCGGAATGGCAGCTACCGGCTAAAAGAAGGGGACGTGGTCCACTTTTTGATGGGCCAAGAGCCGGTCAACCCCTGGCTCAAGGTCTCCCGCCGGCCCCTGGACATTGTTGAAGAAACGGCTGACTATTTGGTGATCAACAAGCCGGCCGGCCTTTTGTCGATTCCTTCCGGCTTTCATGCGGAAGACGCGGTAATCAACCGGGTGCTGGCTTACTTTGAAAAGCAGGGGGTCAACCCGGCTTACGTCAAGCCCCACATCGTGACCCGGCTGGACCAGGACACTTCCGGCCTGGTTCTCTTGGGCAAGAACGCCATCGCCCATGACCGCTTCAGCAAGCTGGGCAAGGATGCTTTTATCAAAAAGTACCACGCTATCGTGCATGGCAACTTCGCCGAAGGAGATTTAAGCGGCCTGATCGACAAGCCCCTGGCCCGGGTGGGGGACACGGTCAAGCGGGAGGTCAATCCAAAGGGGCAAAGGGCCTTGACTGAATACCGGGTCCTTAACCAGGTCCCGGGGGCCAGTTTAGTTGAACTCCGCCTGTTGACCGGCCGGACCCACCAGATCCGGATCCACATGGCTTCTATCGGCCATGTCCTTTACGGAGACGACCTATACGGGGCCAGGGATGCTTTTGCCCGCCAGGCCTTGAACTGCTTCTACCTGGCCTTCCCCAACCCCTTCAGCGGGGAAGAGCGGGAGATTGAGATTCCCGACCCAGGCGACATGCAGGGCTTGTGGCGGCAGCTGAAGCAAGAAGCAGGGAAATAAATTAGCAGCAAAATAACAAAACAATAAAGTCAAAAAAGGAGACAGGCTGGCCTGTCTCCTTTTCTTATTCATCTGTTATCTATTTTTACGCGTTTGAGATTACTGCCCAAGCCAGGCCCCCGAGGGCACAGATGGCTAGCAGCGGCAAAACTACTGAGCTGAGCAAGGCAAAGGCCAGGCCGACCCCGATCAAAAAGATCAGAACCCGCCAGAGGGCCACGCCCATCTTCCAGCAGAGCCATAAAATAAAAAGTAAGCAAAGCAAACTTAACATGTTTATTCACCGTCCTCTAGCTTGCTATCCTTAAGCAATAATAATAGCATATTTTCGCGTGAATACAAGGATTACGCAAATACCAGACCGCAGATGGTGACGATGATCCCCAAAACAATCCGGTACCAGCCGAATGGCTTGAAGTCGTGGGTCTGCACGTACTTCAGCAGGAACTTGATTGACAGGTAGGCCACGATGAAGGAAACGACCATGCCAACCAAGAGGATAGCCAGCTGGTTGCCGACAAAGACGTGGCCGGCCTTGAAGAACTTGACCAGCTTCAAAAGCGATGCCCCGAACATGGTCGGGATAGCCAGGAAGAAGGAGAACTCAGTTGCCACGTAGCGGCTTGACCCGATCAGCATGGCCCCCAGAATAGTTGCCCCAGACCGGGAAGTCCCCGGGATCATGGACAAAACCTGGAAGCAGCCGATCAAGAGGGCGGTCTTATTGCTCATCTTGTTTAAATCAGTCAAGCTCGGCTGCCGCTTGGCGTAGTAGTTTTCCAAGACGATGAAGAGGATACCGTAGATGATCAAGGTGGCGGAAATTACCTGCCAGGAGGTCATGTTTTCTTCCAGCCAGTCATTCAGCGGCAGGCCGATGATGATTGACGGCAGGACAGCCGCGATGACCTTGAACCAGATCTGCCAGGTCTGTCCTTTTTCCCGCTTGCTCTTTGACGGGGCAAAAGGATTCAGCTTGTTAAAGTAGATCACGATGACGCTCAAGATGGCCCCCAGCTGGATGACAACCATGAACATGTTGATGAAGCTGGTTGGCTGGTCTAACTTGATGATGTAGTCGGCCAGGTAGAGGTGGCCAGTTGAGGAGATCGGTAGAAATTCCGTAACCCCTTCGATGATGCCGAGAATGATGGCTTTGAAAATGTCTAGCATGTTACTAAAAAAATACTCCTAACTTAATCAGTGAATAAAACTCTGGTGCCTTCTGGAACCGCGATGTCCTTTTCCAGCGGGGTCAAGGTCCCGTCGCTTTGCCGCTGGTAGAGGGTAGCGTTGTTGCTGTTTTGGTTGGCGGCAACGACGTACTTTTCCTCAGCGTCCCAGTTGAAGTCCCGCGGGAATTCGCCAAAAGTTGACACCCGCTGGACCAGCTTCAGGGCCTGGTCCGGCAAAACGGCAAAGACGGCGATTGAATCGTGGCCGCGGTTGGATACGTAAAGGAACTTGCCGTCACTTGACAGGCGGATGGCCGCTGCCCCGTTGTGCTGGTCCCAGCTTTCCGGAATGGTTGAGTAGGTGGCCAGGGACCGGAACATCCAGTTTTCTTCGTCAAACTTGACCACGTTGACCTGGCTGGAAAGTTCACCGGCCACGTAGAAGTACTTGCCGTCCGGTGAGAAGGCCAGGTGGCGGCTGCCGAAGCCGTCTTCGTTTTGGTAGCTGGCCAGGTGGGTCAGCTTTTGCCCGTCAAAGCCGTAGAAGTCGACTCTGTCTTGGCCCAGGTCGCAGGAAACCAGGTGCCCGCCCGGAGTTTCATCAAAGTAGTGCGGGTGAGCGCCGGCTTGTTCAGGCCGCGGCCCTAAAGCCTTGTTTTCGTGCTTGACCTGGTCAAGCAGGGTCAGCTGCCCCTGGTCATCATAGCTGATGACGGCCAGGACCCCAGTGTGGTAGTTGGCCGTGTAGAGCAGCTTCTTTTCCTTGTTGATGCCGATGTAGGCCGGAGAAGACCCCTCGTGCAGCAGCTGGCTGACCAGCTTGCCGTTTGCAAAGGCCGCGATGCCCCCCTGGCCGTTTTCATTCTTAATGGTAAAAATGAACTGGCCGTCTTTTTGGAAATAGGTTGGCCCGCCGACTTCAACGACGTTTCTTCTTTGTTCCAGATGGGCCTGGTCACCGGAGCCGATAAAGTCAAACTGGTATATGCCGGCTGACTCGTGCTTGGTGTAGCCGCCAATTAAAATATGCAATTTAAGCCTCCTTATTTACTCCACAATAACTCTAGTTTAAATATTAAGCTTATCTTTAGCAAATGTCGATAAGAGATAGTCGTCCGTAAAGAATAATTAACAATTCTTTTCTTCTTAGCTTTAAGTTCCCGGTGAGTATGTTAGAATTTAACCAGGTGGTAAAAATGAAATGGATATCTACAATTAAAGCAATCGGACCAAACGCAATCAGTGAAAAGGACCGCGTCGTAATTTTGTTTGGCCAGACGGCCAAAGATGAACTGCAGGACGTTTCCGTCATCCAGACCTTTGATGATGAACAGGCTGCCCAGGCAGTCGTTCTTAAGAAGGGCGATACGGTGACCATTGACGGGACGACCTTTTTGATCAACTATGTTGGCCCTATGGCGGTCAGCAACTTGCGGGCCTTGCAGCACGCCAGCCTCTTTTTCACTGACAAAGTGCCAAAGAAGCCGATGTCCAACGCCCTCTACCTGGACTTGCCAGAAGACCAGGAAATGCCGAAGTTCAGAGTCGACGACAAAATCGTTTACGAACACCTGTAGGCTGGATTAATGAAGAAAAGAGACACGAGCCTCTTTACGGACTGGGTGCTTAACAACCGCTTCAGCGTCGGCTTGATCAATGTGCTCTTGGTCCTGGTGATCGTGCTGGTCTTTAACAAGATTTCCTTTATCTTGAATCCGGTCAACACCTTCATCAGCGCCATCCTGCCGCCCCTTTTGGTGGCCATGGTCCAGTACTATCTGATGGAGCCGGTGGTTGATAAGCTGGAAGAGAAGTTCAAGGTGCCGCGGACGGTCACCATCATGGTGATTTTTGCCATAGTCACGGTCTTCTTGATCTGGGCCATCAATTCCTTGATTCCGGTCGTCCAGAGCCAGATTGACTCCTTAGTCAAGAACTGGCCCACGATCTGGAAGAATTCGACCAACGCGGTTGATGAGCTCCTGCACAGTCCGAAATTCAGTGGCCTGCGCGATTCTCTGCAAAAGCAGATGACTTCTTTGCAGAAGAATTTCAGCAAGAGCATGGGGTCAACCGTCTCCAGCGCCCTGGGGAATTTAACCAGCGCGGTCACCGTGGCGACAGCCGTCTTCACGACCCTGGCCACAGCTCCGTTTTTGCTCTTCTTTATGCTGAAAGACGGGCACAAACTGCGGCCTTTTCTGGTCAAGTTCGCTCCCCAGCGCTGGGAGCAGGCGACCAGCAAGCTGCTGCATGAAGTCAACCAGGCTGTGTCTTCTTACGTGATCGGCCAGGTTTCCGTGGCCATCTGCGTGGGGATCATGTTCTTCATTGGCTATACGATTATCGGCGAGCCTTACGGGGCAGCCCTGGCGATCTGTGCTGGCTTTTTGAACCTGATCCCTTACTTTGGGGCCTTCATCGGTTTGATTCCAGCCTTAATCATCGCTTTAGTGACTGATTTGCCGATGGTGGCCAAGGTCTTAGTGGTTTTCTTTATTGAGCAGATCATTGAAACCCGTGTCATCAGCCCGCTGGTTGTCGGCAACCGCTTGAAGATGCACCCGGCGACGACGATTATCGTCATGCTGGGGGCCGGCTCAGTCTGGGGCCTGTGGGGCGTGATCGGCGGGATTCCGATCTACGCGGTGATGAAAATCCTTTTGACCCATGTCTACCGGTACTACCGGAAGGTTTCCCACCTTTATGACGACAGTTTCTAGGATGAAGCAGACCAGGCTGGACAAGAAGAAAAGGAAAGGAAATAAATGACCAACCATATTGTTTTGTTTGAGCCGGAAATTCCCGACAACACGGGCAACATTGCCAGAACCTGCGCGGGAACCAACACGGTGTTGGACTTGATCGAGCCCTTGGGCTTTCGCCTGGACGACAAGCATCTCAAGCGGGCCGTTTTAGACTACGGCGGTGAAGTTGAAATCCGCCGCCATGACGACCTGCGGGCCTTTCTGGCTACTTTGCCGGACAATGCCGAGATGTACTTGATCTCCAAGTTCTCTAGCAAGGTTTATACTGACGTCGACTACACGGACGAAAGCAAGGACTACTACTTTGTTTTTGGCCGGGAAACGACCGGTTTGCCGGAAACCTTCATGCGGCAATACGCGGACCGCAATCTCCGCATTCCCATGTCCGACAAGATCCGGGCCTTCAACCTGTCCAATTCGGCAGCGATTGTAATTTTTGAAGCCCTGCGCCAGCAAGGCTTTCCCCACATGGAAAAGTCCCACCACTATGAAAACGACAAGCTCAAGGACGACTACAACCGTCCTGGCCGCTACCAGCGGAACCTGCCCAAGCATTAGTGGCTAATAAAGAAATTTATGAGGTAAAATCATGGAATTTAACAAGCAGACCCCAATCATCGTTCGTGCCTTTCACTATGACCTGCTCGATGAGCCAGAAGAAAAGAACGAAGTCAACGTAGCCATCCGCCAGGTTGTCGCTACGGGCGAAGACGGCGTTGAAGATGCCGGTGAGGCAGGCGGCTACTACGAAGTAGCCGTTGTCTACGACGTTACGCCAGACGAAGACAACATCATCGAAATCAGCGGGGTCAACACCCAAGTCGTTCAGCTTTTGGGCTACCACGGCGACGGCCAGGACCTGGACCAGGAAACCTACCGTTTGCTCAGCCGGCCGCTGGTTGAATACATCGAAACCTTGACTTACGAAGTTAGCCAGGTTGCCTTGGATGAACCGATCAACTTGGACTTTGAACCTAATTTCTAAGGATTGAGCAGGTGAAGAAATGCCTCGAAAGAAAAGGCAGGCTAATCGTAAAAACAAAAATAAAAAGAAAACAGAAGAATCTTTGAGCTGGGTGGTTACCGGGATCGTCTCGATCCTGGTAGCCATTTTGGCGTTATTGCGCTTTGGCTGGCTGGGCAAGGAACTGGCCAATCTTTTGCGGCTCTTGATTGGGGACAGCTATCTTTTAGGCGGGGCCTTCCTGGCCATTTTGGGCCTGGTCATGCTGATTTACGGGCAGCCGCCCCGCTTTGGCTTTAAGCGGACAAGCGGCTTGATTTTGGCTTACCTGGGCCTTCTGTACATTTTGGCCAGCCGCTTTTTCAATGTCAGAAGCGTCCACAGCGAATTTTTGACCGCCTTCAAGAACGTGATCTTTGAAGAACTGGCCCGGGCCAATGTCACCGTCAGCGTCGGCGGGGGCTGGATCGGGAGCTTCCTGTACGGGATCCTCTACCAGCTTTTAGGCCAGATTGGCGGCCTGTGCCTGGCTGTTTTGAACATAATCAGCGGGATCTTGATGTTCTTTGACGTCAAATTCCGCTCCCTGGTCGCTGCTTTTCAAAAAATCAGCCGCTCCTTTATCCAGCAAAGCAAGGATGGAGCCGGTCAGCTAAAGGAAAAGTACTCTGAATACAGGGAGCAGCAAAGAAAAGATCCCAACAACCGGGAGAAGCTGACCGACCCTTGGCGGGATAGCGAAGAAGCCAAGCCTTCCCTGCCGGAAATCCAGGTGGCAGAGCAGCACCCTGACCCGCCGGTCACTAATTCACTGGAACTGGATGACCTGCTCAAGCCCCGCAGCCAGGCTGAAGATGACCAGAAGATGATTTTGGCCGACCAGCAGGTTGACCATGGTCTGGACAAGAGCACGGTCAGCTATGATGACAACTACCAGTTCCCGCCCCTGTCTCTGTTAAAGGCCGTCCATGCCAGTGACCAGTCCAGCGACAAGGATAAAACCAGGCAGAACACGGCTATTTTGGAGGAAACCTTCAAGAGCTTCGGGGTGGAAGTCAATGTTAAAAGGGCTATCTTAGGCCCGACCATCACCCGCTACGAAGTCCAGCCAGCCGTCGGGGTCAAGGTCTCCCGGATTGTCAACCTGGCCGATGACTTAGCCCTGGCCCTGGCGGCAAAGGACATCAGAATTGAAGCCCCGATTCCGGGCAAGCCTTATATCGGGATTGAAGTGCCTAACCAGAAGGCCCAGTCTGTGGCTTTTAAAGATGCCATGGAGCACCAGGACCAAAAGGCCAAGGACCATCCTTTGATGGTGCCTCTGGGCAAGGACGTGACCGGGCAGATCATCAGCGCTGACTTGACCAAGATGCCCCACCTGCTGGTGGCCGGGTCAACCGGGTCCGGTAAGTCCGTGGCCATCAACACGATCTTGACCAGCATCTTGATGAAGGCCCGGCCGGATGAAGTCAAGCTGGTTTTGATCGATCCGAAGATGGTCGAATTGTCAGTCTACAGCGGGGTTCCGCACTTGATGATCCCGGTTGTCACTGACTCCCGCCTGGCTTCCAAGGCCCTGAAAAAAGTCGTCGACGAAATGGAGCGGCGCTACAAGCTTTTTGCTGCCGGCAGCGTCCGCAATATGGGCGAATATAACCGCAAGGTGGCTGAGAACAATAAGGATACCAGCCGGCCGGTAATGGAGCCTTTGCCTTATATTCTGGTCGTTGTTGACGAATTGAGCGACTTGATGATGGTTGGCGGCCACGACGTGGAAAACTCCATCGTCCGCCTGGGCCAGATGGCCCGGGCCGCCGGCATCCACATGATCCTGGCTACCCAAAGGCCGAGCGTGGACGTCATCACCGGTTTGATCAAGGCCAATGTGCCGTCAAGAATTTCCTTTGCCGTTTCCAGCGGGGTCGACTCCCGGACTATTTTGGACCAGGTCGGCGCTGAAAAGCTGCTGGGCAGGGGGGACATGCTCTACCTGCCGATCGGGGCCTCCAAGCCTGACCGGATTCAAGGGGGCTACATCGATGTCGATGAGGTCGAAGCCGTCGTTGACTGGGTCAAGGGCCAGCAAAGCGCTGAATACGACGAGAAAATGATTCCCCAGGCCGGGGATGATGACGAAAGCAGCGATGACGACGTTGACGACGAGTACTACCAGCAGGCAGTGGACCTGGTCCGCCGCCAGCAATCAGCCAGCACCTCCATGCTGCAGCGGCGGTTCAGAATCGGCTACAACCGGGCTGCCCGCCTGATTGACGAGCTGGAGGAGCACGGGGTAGTCGGCCCGCCGGAAGGCTCCAAGCCGCGCAAGGTGCTTTTGCCGCCTGAAGGACAAGAAGAATAAAAATAATGAACGAAGAAAATATCAGCATTCAAAGCAATCAAAAATTTACCAGCGGCAACCTGGGCCTGTTCGTCCGCCTGCCGCTGACCAAGCACAACATGTCTATGGCCAGCCTGCTCTGCCGCATGCAGATGAACGAAAGCGAACTCTTTCCGGATCCCGGCCTCCAGCAGGTCGAATTGCAGCAGCGCTACTCCTTCCAGTTTGAAGCAGTCGTGCAGCTTTTTGGCAAGGAAATGGTCATTTCTTACCTGGCCAATTTCGTTGAGCCCCAGGAAATCCTGGACCCGGACTACAACTACCGGCAGATAGCAGAAACTTTTGCTGGCCTGGCCACCCGGCCCTTGATTACGCCCAGCTCTGTCCAGCTGGCCCAAAGACAGCTGGAAGAAGAATACCAGGAGCTCATGGCTGAGCCGAGCAACGCGGCTTTAAGCGCCTTTTTCAACAACTGGTACGCGGACCAGCCCGATTACGCTGCCAGCTTCATCGGCACGATTGAAGATATTACGAAAGCGACCAGCCAAGAAGTCCGCTGCTTTGCCGATGCCATCAAGACCCAGGCCAGCTGCGTATTTGGCCATGTCTATGATGCCCGCCAGGTTAAGCGCCTTTTGCAAAAGAAGCTGCAAGAAGAAGGCTGGCCGGGCCTGGCCTTGGACTTTGGCAGCCGGGACTTATTGATTTCGGCCCCGGACTTGCGGATTGAGAAAACAGACGAGCAGGGCAAGCAGCAGGCCCAGCTTTTCCTGGGCTATGCCTACAAGGGCCAGCCCAGCCTGCAGGATTTGGCCACGGCGACGGTCTTGCGCCAATACTTGACCGGAGACCAGTCCTCCCGGCTCTTCAGCAAGGTCAGGGAGGAAAACGGGGCGGCTTACGCGGTGGAAAGCAACTGGTATGCTGACAATGCCCTCTTCCTGGTCAACGCCGGCCTGGATCCGGACAAGTTGGACTTAGCCCGGCAGATCATCGGCAAGGAGATGCAGATGGTGGCTGACGGCCGGATCGATCCGGGCCTGCTCAAGCAGAGCCGGCAGGCGCTGGCCAACCGCCACTTACTCAACCAGGACCATGCCAGCTGGCTTTTAGCCAAAGACCTCCGCTACAAGCTCCATGCCGACTACGAGGACTTTGATATGATGGCCGCGGTCAGCCGGGTGACCAGCGGCCGGCTGGCTGACTTTGCCCAAAAGCTGTATCTGAATGAAAGCTATGTATTAAAATGATCAAACCAGAAATTATCAGAAAAGATTTCCCTTCCGGCTTCAAGGCCCAGGTGATCCGGCGCAAGGGTTTTAACCAGCGCTTTTTCGGCATTATCGTCGATTTCGGCAGCGCTGATCCCCAGCCCGTGCCCGGCCTGGCCCACTTTTTGGAGCACAAGCTTTTTGCCGCGGAAGAAGGCGACTTGTCCCTGGAATTTGAAAAAATGGGGGCTAGCGTCAATGCCTTTACCTCTTTCAATGAAACCATGTATTACGCCAGCGGGGTCAAGAATGTCGGCCCCATGATCGACCTGCTCTTCAAGCTGGTTGGCCAGCCCTACTTCACCGATGAGAATGTGGCCAAGGAGATCCCCATCATCCAGCAGGAATTAGCCATGTACCAGGATGAGCCTGACTGGATCCTGGGCGACCGGCTCCTGCGGGGCATCTATGGGGACTGCAACTTGGCCATCGACGTGGCCGGGACCAGGGAATCGATTGCCAGCGTGACTAAGGAAAAGCTCCAGGCGGCTTATGATGAAAACTACGTGGCCGCCCGCATGTCCTTTGTTGCCTGCGGGGACTTTACCGACAACCAGGTCAAGACCATTCTTAGACAGGCCAGGAAATTGTCAGACCAATACCTGCGCCCGGGCAAGCCGCAAAAAGAAGCGGACTTGGTGCCCTTTTTGCCAAGCGGGCAGGACTGGAACCTGATCGGCGGGGAAGTGCCCCTGTTTACGGCGGCTATCCCTTTGCCAAACTTTAAGAAAGTTTTAGCAAGTCGAGATATGAGTCAAATTTTGCTGGAAATCATGCTAGAATCAAAGTTAGGTGCCGCCAGCCACTGGTTCGCCAGAGCCAGACAAGCTGGCCTGATCAGCCAGCCCCTCCAGATCAGCGTGACTTATACCCGGCAGGGGGCCTACGCGGTCTTGCTGGGGATGAGCTCGGAAGCAGAAGTGCTGCTGGACCAGATCAAGGCTGAACTGGCGCCAGACAAGCTTTTTTCCAAAAAGCAGGAAATGGAAATGCGCCAGCTCTTTGAGATTCACAAAAGAAGCTGGCTGGCCCAAACCGTGCGCAGCCTGGACAATTTGTCGGGTTTTGCCGTGGAAATGGCTGAAGAAAGCCTGGATGAGGAAGACTTGTTTGCCAATGTTGAGCAGATGCAGGCCATGAATTTTGCCGACTACCGGGCCTACTGCCAGGAGCTTTGCGAGGGCGCCAGCATCAACACGGCCCGTCTGCTTGAGGAGGATGACCAATGAAGCGAGCACTGATTTTCGGGGCAACCGGCGGTATTGGCCAGGCCATTGCGGCCCGCCTGGCTGAGTCTGGCTGGTCCATGTACCTGCACTGCAACAGCAACTGGGAAGAGGCCAGCGATTTGGCCAGGACTCTGGCGGAAAAGCATCCCTTGCAGGATTTCATGCCGATCAAGCTGAACTTTTTAGCAGGCGACGACCAGCTCAAGAATTTTGCCAGCAGTCTTTTGCCCGTCAACGCGGTCGTTTTTGCCCAAGGAATTACCAACTATGACTTCCTGGGCAGCCAGAGTTCCCAGGTCATTGACCAGATCATCAAGGTCAATTTGGAGAACCCGATCAAGCTGACCAAGCTTTTGGAAAGCCAGCTTTTAAAGCAAGAGCACAGCCGGATCGTCTACCTGGGCTCAGTTTACGGGGGGCAGGGCAGCGCTATGGAAGCAGTCTACAGCGCGACTAAAGGCGGGATCAGCCGCTTTGCCCAGGCCTATGCCCGGGAAGTTGCCGCCAGCCGCTTCACGGTTAATGTCGTTGCCCCAGGGGCGGTCAACACGGCCATGAATGCCATGTTTTCCCCGGAAACCTTAAAAGAGCTGGCAGAAGAAATTCCGGCCGGCCACCTGGCCAAGCCCAAGGAAATTGCCTACTGGGTTGACTGTCTACTTAACCCTGAGAGCGACTACCTGACCGGGCAGACGATTTATGTCAGTGGCGGCTGGCTGGAATAGGGCGACACATCCGCGGCCATTGTGCTATAATTTATAAACGAATTTTAAAGTGATTGAAGAGGTTAATAATGTCAGGCATTGGAGAACAACTACGTAAGGCAAGAGAGGCCAAGGGCCTTTCAATTTCCGATATTGAGAAGGCTACGAAGATCCAGAGCCGCTACCTGGAAGCAATCGAAAACAACGATTTTGACAAGTTGCCAGGCGACTTTTACGTCCGGGCTTTCATCCGCCAGTACGCGCAAATCGTCGGCTTGGACGGCAAGGAATTGCTGAGCCAGTACCAAGGCGAAGTTGCAAATGAAGTCACGAGCGAAGTCAGCCAGCCGGCAGCAAGCAGTCCGGCTCAAGAAGTTCATGAGGAAGCTCATGAAGAAGAAGCAGCTCCAGTAGAGCCGGTAGAAAATAAGCCGGCCAGAATCAGTGCCAGCCGGCCAGCCAAGCGGGAAGTTGCCGAGGAAGCTCCTAAGGACGCCAAGTGGCGCAAGCTTGTGCCACGCCTGGCCCTGGGCTACGGGATCGCCCTTTTGCTTTTGATCGGGGGGATGGTCTTTGCCAACATGAAGAAGGCCGGGTCAAGCAGCCAGAAGGAAAATGCTGGCTCCAGCGTCACGATTACTTCCAAGAAGTCTTCCAGCAAGAAGAGCTCATCAGCTTCTTCTTCATCCAAGAAAAAGAAGACCAGCTCAATCAAGGTTGCTTCACTTGGCGGCTCAAGCTACCGGGTAACTGGCATCAAGTCCAGAACGCCATTGGTAGTCCGGTCAAGCAAGCAAAGCATCTACTACTACGTTTCCGTTGACAACGTGATCACCAACCAGGGGACCCTGCAAAGCAGTGAAAAGCACACGGAAACTGTCAAGAAGGGGCAAACTTTGATCGTTTACCTGGGGACTGATACTGGCGTGACTGTAACTGTTGGCGGCAAGAAGATTCCGTTCACTCCAATCAACGGCACGACCCGTTTGACTATCTACCTGGGTGACAGCTCTGCTTCAGCAAGCAGCTCCGCGGCAAGCCGCACGACTAGCACCAACACTAACACCAATACTAGCACGAGCTACAGCAGCCGGGCAAGTTCCAGCGTGCAAAGCTCAGCTTCCAGCCGGCCAGCTGCTTCTAGCTCCAGCGTTCAATCAAGCTCACAAGCTTCATCCAGCGCTGCCCCAAGCAGCCAGTCATCAGCTGCTCCATCATCATCTGCCGCTTCCAGCAGCAAGCAACAAGAGAAGAATGGCCATTAATTCTTAAAAGTGAGGAATTTAAAGCAATGAATTTACCAAATAAACTGACTGTTTTCCGAATCTTTTTGATTCCTGTCTTCATGATCCTGCTGATTGCCCAATGGCCAGCCGGCTCATTCACCCTGGCAGGGACTGAAATTCTGTGGAGCCGGGTTGTGGCCATGATCGTCTTTGCCGTTGCTTCCGCAACCGACTGGTTTGACGGCCACATCGCTCGCTCCCGGGGACTGGTAACCAACTTTGGTAAGTTTGCTGACCCGCTGGCGGACAAGATGCTGACCATGACGGCCTTCATCTTCATGGTTGCATTGAATCTGGCTCCAGCCTGGGTTGTAGCCATCATTGTCTGCCGGGAACTGGCTGTGACCGGCCTGCGCCTGATCGTGGTCGAAAACAACGGCAAGGTCATGGCGGCTGCCATGCCTGGCAAGATCAAGACCACCTGCCAGATGCTGTCAATCATCTTCCTGCTCTTTGGCGACATCTTCCACCTGGGCACCATCCTGCTCTACCTGGCTCTGATCTTCACGATCTACTCCGGCTACGACTACTTCCATTCTTCATGGGATGTCTTCAAGGGTTCAATGTAAGCATTTAGAAAATCACTATTCTTTAAAAATGAGTATCAGCAAGGTACTCATTTTTTATTTTTTAAGTCAGATTGGGGAAAAAGGGCTTTTTTCTTGTACTAGTAAGTGGAGGGGAAATAATTTGAACGTTAGTTCGGATTTTTCTTGCTTTTTACCAGGCCTTCAAAGTATAATGTTTATTAGTAAGTTTCCAGGAGGGAAAAATTTGGCTAAAGATGAAAAAAAAGCGGCTCTTGAAGCGGCTTTAAAGAAAATTGAAAAGAACTTCGGTAAAGGCGCGGTCATGCGGATGGGCGAGAAGGTCGACACCCAGATCTCGACTGTTCCGTCAGGCTCACTGGCACTGGACGCGGCCTTGGGCGTGGGCGGCTACCCGCGGGGCCGGATCGTGGAAATCTACGGGCCGGAATCTTCCGGTAAGACGACCGTTGCCCTGCACGCCGTAGCTGAAGTGCAGAAGCGGGGCGGAACGGCGGCCTACATCGACGCGGAAAACGCCATGGACCCGGCTTACGCTGAAGCCTTGGGCGTGGACATCGACCAATTGATCCTGTCTCAGCCAAACACTGGGGAAGAAGGGCTGCAAATCGCGGACACCTTGATCTCCAGCGGGGCCATCGACATCGTCGTGGTCGACTCCGTTGCCGCCCTGGTGCCGCGGGCCGAAATCGAAGGTGAAATGGGTGACTCCCACGTTGGACTCCAGGCCCGCCTGATGAGCCAGGCCTTGCGCAAGCTCTCCGGGACGATTGCCAAGACCAAGACCATTGCCATCTTCATCAACCAGATCCGGGAAAAGGTCGGCGTCATGTTTGGTAATCCCGAAACCACCCCAGGTGGTCGGGCGCTGAAGTTCTACTCAACCATCCGGCTGGAAGTCCGCCGGGCAGAACAGATCAAGCAGTCCACCAACGTTATCGGTAACCGGGTCAAGATCAAAGTGGTCAAGAACAAGGTTGCTCCGCCATTTAAGGTAGCTGAAGTCGACATCATGTACGGGCAGGGGATCTCCCAGTCCGGCGAACTGCTGGACATGGCTGCTGACCAGGACATCGTCGACAAGGCCGGGGCCTGGTACTCCTACCACGGTGAAAAGATCGGCCAGGGCCGGGAAAACGCCAAGAAGTACCTGGAGGAACACCCGGACGTTTCCGAGGACATCCAGACCCAGGTCCGCAAGGGCTTACGGAATCGATGCTGAATCTCTGGAAGAAAAGGAAGATCCGGAGAAGGTCAAGGAGCAGCGGGCTAAGAAGGCAGCTCCTGGCGAAGAGAAGCCAGCAGAGCCGGCAAGTCCGGAAAAGACTGATAAATAGGCAGTTTTTGGCCAATAAAAAGATTGCCAGCAGAATTCTGGCAACTTTTTTGTTTACGCAAATGCAGCTAAGGAATTGACTTTACCAAAAATGTAACATATGATTAGTAATGTGTGAATAATTCTAAATAAAAAGGCGACGTAACTCATGATGAATAATACTGTATTTCCTCTCGCAACAGTCGCTGTAATTTTTCTTATTTCACTTGTCGTGGGATGCCTGATTGGTTATGCCATCCGGAAGAATGTCTGGGAAACCAGGGCGGAAAACGCCCGGCAGAGCGTGGAGGCAATTTTGGCCAAGGCGAAAGCCGAAGTCGAAGTAGCCAAGGCCGAGATCCAGGCGCAGAAGCAGGCCGCTGAAGCCGTTAAGCGGGATGCTGAGACGGAGAAGAAGGCCAAGATCCTGGAAGCCCAGGAAGAAATCAGGGATTACCGGCAGAAGGTTGAAGACGAGCTGAACAGGCGCCGCGATGAAGCGGCCCGCAAGGAAAACCGCCTTCAGCAGAAAGAAGATACCCTGGATCACCGCAGCAGCCTGCTCGATGACCGGGAGAAACAACTCACACAAAGGAAAGCCCAAATCAAACAGCAGGAAGAAAAAGTCGCTGGTTTGCTGGAAGAAGCGCACGGGCTGGTCGAGAAGCAGAATGACAAGCTGCTGGAAATCTCCCGCTTAGACGAAGAAGAGGCCAAGAAGATTGTCCTGGCCCAGGTCTCCGACCACCTGACCAAGGAGAAGGCGGAGCTGATTCGGGCTAACGAGGAAGAAATCAGTGCCAGAGCCGACCGCTTTGCCCACCAAATCATCGTGGATGCCATCCAGAGCAGCGCGGCGGATACGGTCGCGGAAACGACCGTGTCAGTCGTGGACCTGCCAAACGATGACATGAAGGGGCGGATCATCGGCCGCGAAGGCCGGAACATCCGCTCTTTTGAAGCCATGACTGGGGTGGACTTGATCATTGACGATACGCCAAATACGGTCACCTTGAGCGGTTTTGACTCCATCAGACGGGAAGTTGCCAAGCGGGCCCTGCAGAAACTGATCAAGGACGGGCGGATTCATCCGGCCCGGATCGAAGAGATGGTTGACAAGGCGCGCAAGGAAGTCAACGACGATATTTACGAGGCTGGTGAAAGTGCCTTGATGGAACTGGGCATCCATCGGATGAACCCGGAACTGGTCAAGATCCTGGGCCGGCTGAAGTACCGGACTTCCTATGGCCAGAACGTGCTGGCGCACTCGATTGAAGTCGGGAAGCTGGCCGGGACCATGGCAGCTGAACTTGGTTTGGATGAAAAATTAGCGGTTCGCGCGGGATTATTACACGATATTGGCAAGGCAATCGACCATGATATCGAAGGCTCCCACGTAGAAATCGGTGTTGAATTGACCCGGAAATACCATGAACCGGACCTGGTGGTCAACGCGATTGCTGCCCACCACGGTGACGTGCCGAAGCTCTCCTTCATCGCTGACCTGGTCGTGGCGGCGGACACGATTTCCTCCGCCCGGCCTGGGGCAAGAAGCGAAAGCTTGGAGAACTACATCCGCCGTTTGACGGAACTGGAAGACATTGCCGGCAGCTATGACGGCGTCAAGCAGGCATATGCCATCCAGGCCGGCCGGGAAGTCCGCGTAATGGTTGAGCCAGGCAAGATCTCAGATGATGAGATCACGGTTTTGGCCCACGAAATTCGGGACAGGGTCGAGAAAGAACTCGATTACCCGGGCAATATCAAGATCACCGTAATACGGGAGAAACGTGCCGTGGCAGTTGCCAAATAAAACAGAAAGTCCAGATTGAATTCTGGACTTTTTTGTTAGCATTTGGCAAATCGCCTTAAAGCCCGGTATAATTAACTCAACTAGACTCAGAAAGCAGAATTTCATGTTTAAGATTATCGTTGACCTTTTTTTACTGGTGATCATCCAAGTAGCGATCACGCCTTTCATCCGGCGCCTGGCCTTTGTCCTGGGGGCGGTGGACAATCCTAACGCCCGCCGGGTCAACAAGAAACCCATGCCGACTATCGGGGGGCTGGGGATTTTCGTGACTTACAATATCGGGACCTTCATCTTGCTCAGAGAGCAGTTTCCGACCCACGAGCTCTTTGCCCTTTTGCTGGCGTCCAGCGTGATCGTCTTGACCGGGATGATCGATGATATTTTAGAACTCAAGCCCGGGCAAAAAATGGGCGGGATCTTCATCGCGGCCATGATTACCTACTTTTTGGCCGAAATCCGGATGACCGAGCTGAATATTCCTTTTACCGGCCAGACCATCAATTTGCCCTGGTATCTCAGCCTGCCGATTACCATCTTCTGGATCCTGGCCTTGACCAACGCGGTCAACTTGATTGACGGCTTAGACGGCCTGGCGGCCGGTGTGTCCTGCATCTCGCTTTTGACCATGGGGATTGTCGGCTACTTCTTCTTGCGTAACCAGGGCCTGTACGTGCCGATCGCTTGCCTTATGCTGGCGGCCTGCCTCCTGGGCTTTTTGCCTTACAACTTCAACCCGGCCAAGATCTTTTTAGGGGACACCGGGGCCCTCTACCTGGGCTTCATGATCTCGGTTTTAGCCTTAAAGGGCTTGAAGAACGTGACCTTTATTTCTTTGCTAGTACCGGTGATCATCTTGGGCGTGCCGATCTCTGATACGGTCTATGCCATGATCCGCCGCAAGCTGAACAAGAAGCCGATTTCCCAGGCGGACAAGCACCACCTCCACCACCAGCTGATGAACTTGGGCCTGACCCAAAGGCAGACGGTACTGGTGATTTACGCCCTGTCCTTGATCTTCTCCTTCGTGTCCATGCTCTTCCTCTTGTCGCCGATCTGGGCCATGGTCCTCTTGCTGGTCGGCCTCTTGATCGCCGTTGAGCTCTTCGTGGAATCAATCGGCCTTTTAGGGGAAAAATACAAGCCCCTCAGCCACTTGATTAACCGCCTGGTTTTACATAGCACCCACACTAAGGAGCCGGACGTTGAAGTCTGGCACCAGGGCGAGGCCAAGCCCCGGAAGTGGCAGGAGCGGTCCAAGGGGGGGCATAAGCCTGCTGAGAAAAATAGCGGTAAAAAACAATAAAGCTGAACAGACAAAAGAAAATGACCAAGCAGAAATGCTTGGTCATTTTTGGTTAGAATCTTTTTTCTCCGCTTTTAACGGGAATTTCGTTATAGCGCTGGTCCCCCTTGATCAGGTCGGGTTCCCCGTTTAAGAGCTCGGTTAGATCGCTGATAAAGGGGTCAATCTGGTCCAGGTCCAGGTAGATGGAAATGGTGATGTTTACGCCATATTCAGTGCCGTCAACGAAGACCTCTTTTTCCTTAAGGAAGTGGTCGACCTTGTCATAGCGGTTGTAGGGGATGGAAAAAATCAATTCCTGCTGCTTAACCCGCTTGACGATGCCAATGGCTTCAGCTGCCTCGCTGACGCTGGAAGAGTATGCCCGGATGAGGCCGCCGGCCCCTAATTTGATTCCGCCGAAGTACCGGGTCACGACGACGGCGACATTCTTCAGGCCCATTAATTGCAGGGTCTTTAATTCCGGCACCCCGGCCGTACCGGCTGGTTCGCCGTTGTCGCTGCTTTTGACCCGGTCGTCATTAATGCCCAAGGTGTAGGCATAGGTGTTGTGGGTGGCGTCATGGTACTTTTTGCTGGTCGCGGCAATAAAGTCCCGGGCCTCTTCCTCATCCTGGACCCGGGCAAGGGTCGCGATGAAGCGGCTCTTCTTGATGACCAGCTCATGCTGGCCGTTTTCTTTGATTGTTAAAAAATCTGCTTCTTTTGACAAAAAATCATCCCTTTTTGGTGTATTAGTTAGTGGAGGCGAAAAAATGACAGAAGAAAAAGAATCTCTGGCCGGCCGCCAATGGCTGGTTGACAAAGTGGATAATAGCATAAAAGAGGGGCAGACGGCAATTCCCGCCATCGAAAATGGCATCTGCCAGCGCTGCGGCAGCTCCTGCTGGGTCCGCCTGCCGTCGGGCTTTTTGTATTGCCGTGCTTGCGTGGGCCTGGGCCGGCTGGATGAGGGCAAGCTTTTGGTCCGCCAGGCGGCTGGCAGTCATTACCCGGCCAGGGCGGGGATGACCTGGACAGGGCAGCTGCAAGAGCGGCAGGAGGGTGTGAGCCGCTTTTTATTGGAGAAATTTGCCGCTAAAGAGGACTGCCTGGTTGAGGCCGTGACCGGGGCGGGGAAGACGGAGATGATTTTTCCCTTATTGGCTGAGGCTTTCAGCTGCGGCTGCCGGGTAGCCATTGCCACGCCCAGAATCGACGTGGTCAATGAGCTTTACCCCCGCCTAGTAGCAGCCTTCGGGGAGGTGGAGATCGGCAAGTACCATGGCCGGGAGGAAAAGGAAGCGGCCAATGAGCAGCTGGTCATCTGTACGACCCACCAGCTGCTGAAGTACTACCAGGCCTTTGACCTTTTGATCATCGATGAGATCGACTCCTTCCCATATGCCGGCAATCCCCAGTTGCATTTTGCCGCGGGCAATGCTGTTAAAAAAACGGGCAGCCAGGTCTTTTTGACGGCCACTCCGCCTGAGGACCTGCTAAAAGCGGCCAGGCAGGGGAAACTGGCCATCGTTAGGCTCAACCGCCGCTTTCACTGCTATCCCTTGCCTGTGCCCCGGCTGGACCTGTACGTCAAGCCTTTTTTGACCAAGGGCCGCCTGCATCCGAAATTAGCCCGGCGGATCAAAATGGCGGCCAAAAGCGGCCACCCCCTCCTGGTCTTTTTGCCCAGAATTGCCCAGATGCCCCAGTATTTTGCCGCTGTCAAAAGGCTCCTGCCCGACTTGCGCCTGGCAACCGTCTATGCCCAGGACCCGGACCGGCTGGAGAAGGTGGAAAAATTCCGCAAAGGCGACCTGGACCTGCTTTTGACGACCACAATCTTGGAGCGGGGGGTGACCTTTAAGCATGTCTGGGTGATCATCGTGGCCGCTGATGATGAGATTTATTCCGCTGCCAGCATGGTCCAGATTGCCGGCCGGGTGGGCAGAGACAAGCAGGATCCGGACGGGCTGGTGCTTTTTTGCTACCGGCGCTACAGCCGGCAGATCAGAAGCGCGGTCAAGCAGATCAAGGAGATGAACCGGGGATGAGTCTTTGCCTTTTTTGCGACCAGCCTTTTACCGGGGATTTGGACATGAGGCGCCTGCTTTTGCCGGGCAAAAGCAAGACTTCCTGCCTGTGTCCATCCTGCCGCCAGCTGTTTGCGCAGATCGGCACCGCCTTTTGCCCCCAGTGCGGCCGCCAGCAGGATAGCGGGGAAATCTGCCAGGACTGCCAGAAGTGGCGGCGGATCTACCAGGGGAATTTTTTGAACAACCAGGCCGTCTACTGCTACAACCAGGCCTTTCATGACCTGATGGTCCGCTACAAGCGCTACGGGGACTACCTGCTCTGCAAAGTTTTGCAGGAATTGGCCGCCCCTGCTGTCCAAAAATTAGCGGCCGACTACTACGTCCCGGTCCCGACTTCACCTGAGCACCGGAAAAAGCGGGGCTATGACACGGTCTGGGAAATTTTTACCCCCCCTTTTGCCCTTAACGCCACTTTTAGCCAAGAAGGCTGGAGCTGGGGCCCAGGGGGAAAAGGACAAAAAAGCCAGGATGCAGGCCAAGCAAAATTTCTTTTTAAATCCGGAATTTAGGGGTACGATAACAGGCAAGATCATCCTTTTGGATGACATTTACACCACAGGCCGAACACTTTACCATGCGCGCGACGCGATTGAAAAGGCTTTTCCTAAATGCCAGGTCGAAAGTTTTTCAATTAGTCGCTAAATATTTTTACAAAGCGCTTTCAAGTTTGGTATAATATGAGTGTAAAGAAACTGCGCAAGCGGGAAAGGAGATAATTATTATGTTAAAGTACAATGTTCGTGGCGAAAATATTGAAGTCACTGAAGCTTTGAGAGACTATGTTGAAAAGCGCTTGACCAAGTTGGAAAAGTACTTTGATCTGAGCCAGGACGTAATCGCTCATGTAAATCTGAAGGTATACCGTGACCACTCAGCTAAGGTTGAAGTAACCATTCCGCTTCCATACCTGGTTTTGAGAGCTGAAGAAACTACGGATGACATGTACCGCAGCATTGACTTTGTTTCCGAAAAGCTTGAACGCCAAATCAGAAAGTACAAGACCCGCGTCAACCGCAAGAGCCGTGAAAAGGGCGTTGAAGAATTCTTCATCCCTGAAGATGCTCCGGTTGAAGAGGAGAAGGTAGAAAAGGCTCCAATGTTCAAGATTGTCCGCAACAAGCGGGTTAACTTGAAGCCAATGGACCCAGAAGAAGCCATCTTGCAAATGGACATGCTGGAACACGACTTCTTCGTCTTCCAAGACGCTGAAACCAACGGCACCAGCGTGGTTTACCGCCGCAACGACGGCAGCTACGGTTTGATTGAAACTAACGAATAGTTTCGTCGCTTATCCAACTGAATACTAAGGCTGCAAGCCGGGCAGGGCACGATAATTATTGTGCCCTGCTTATTTTTGTAGATTATTTTAATTTTTGGCATTTACATGTTAAAATTATTCTGTGATTTTAGACTAAATATCAGAATTAAGGACGATTAGATGGCAAACATTTTAAAGAAGTTATACAACGCTGATAAAAGAGAACTTAAGCGTTTTGAAAAAATTGCTGACCAAGTAGAGTCATACGCTGACCAAATGGCCGCTCTCTCTGACGAAGAATTGCAGGCCAAGACGCCGGAATTCAGGAGCCGGATTGAAAAGGGCGAAAGCTTAGACGACCTGCTGCCGGAAGCCTTTGCCGTATCCCGGGAAGCTTCCAAGCGGGTTCTGGGCCTGTACCCATTCCGCGTGCAGATCCTCGGCGGGATTGCCCTGCACCGGGGCAACATTGCCGAAATGATGACCGGGGAAGGTAAGACCTTGACGGCCACCATGCCGGTTTACCTCAACGCTTTGTCTGGCAAGGGCGTGCACGTTGTTACTGTCAACGAATACCTGTCCAGCCGTGACGAAACTGAAATGGGCCAGCTTTACCGCTGGCTGGGCCTGACGGTCGGCTTGAACGTCAGCACCATGTCCCCGGAAGAAAAGCGGAAAGCTTACGCCTGCGACGTAACTTACTCAACCAACTCTGAACTGGGCTTTGACTACCTCCGGGACAACATGGTTGTCTACAAGGAACAAATGGTGCAGCGGCCACTTAACTACGCCATCATCGACGAAGTTGACTCCATCTTGATCGACGAAGCGCGGACGCCTTTGATCATTTCCGGTGAAGCTGAACAAGCCAACGCTGACTACGTCCGGGCTGACCGCTTTGTCAAGAAGCTGGTGGAAGACAAGAGCGACAATGACGCCGATGACGATGAAGACCACGGCGACTACAAGATCGACTGGCCAACCAAGACTATTTCCTTGACCAGAACCGGGATCCAGAAGGCCTGCGACCACTTTGGCCTCAAGAACCTTTACGACGTTGAAAACCAGAAGCTGGTCCACCACATCGACCAAGCTCTGCGGGCCAACTACATCATGCTCAAGGACATCGACTACGTTGTCCAAGACGGTGAAGTCCTGATCGTTGACTCCTTTACCGGCCGTGTTATGGAAGGCCGCCGCTTCTCAGACGGCCTGCACCAGGCTATCGAAGCCAAGGAGGGGGTCAAGATCCAGGAAGAATCCCAGACCCAGGCCACAATTACTTACCAGAACTACTTCAGAATGTACCAGAAGCTGTCCGGGATGACCGGTACGGCCAAGACTGAAGAAGAAGAATTCCGTGAAATCTACAACATGGAAGTCATCACCATCCCGACCAACCGGCCAGTTATCAGACAGGACATGCCAGACCTGCTCTACCCGACCCTGGACTCCAAGTTCAAGGCCGTGGTTGACGAAATCAAGGAGCGGCACGCCAAGGGCCAGCCAATCCTGGTCGGCACGGTGTCCATTGAATCTTCTGAACGCTTGAGCCACATGCTGGACAAGGAACACATCCCGCATGCTGTCTTGAACGCCAAGAACCACGCCAAGGAAGCAGCCATCATCATGAATGCCGGCCAAAGAGGGGCAGTTACGATTGCCACCAACATGGCCGGGCGTGGGACTGACATCAAGCTGGGGCCTGGCGTCAAGGAACTGGGCGGTTTGGCCGTAATCGGGACTGAAAGACACGAATCCCGCCGTATCGACAACCAGCTGCGGGGCCGGTCCGGCCGGCAGGGTGACCCGGGTTACACCCGCTTCTACCTGTCCTTGGAAGATGACTTGATGAAGCGCTTCGGGGGCGACCGGGTCAAGGACTTCCTTGACCGCCTGTCCGACAATGACGACGACAAGGTCATCGAAAGCCGCCTGATCACCCGCCAGGTTGAATCAGCCCAGAAGCGGGTTGAAGGGAACAACTACGACACCCGGAAGCAGACCCTGCAATACGACGACGTTATGCGGATCCAGCGTGAAATCATCTACAAGGAACGGATGCAGGTTATCGATGAGCAGCAGTCCTTGAAGAGTGTCTTGATGCCGATGATCCACCGGACTATCGACCACCAAGTGGACATGTTCACCCAAGGCGACCGGTCGACTTGGCGCCTGGACTCCTTGCGCGACTTTATCGTTTCCAGCCTGGCCAGTGAAGAATACGTTGATTCAGAAATCGACTTCAAGACCTTCACGCCAGATGCTCTTAAGCAGCAGCTTTACCAGCTGGTTGAAGACAACTACCAGGAAAAGGAAGCTGCCCTGGCTGATCCGGAACAAATGCTGGAATTTGAAAAGGTGGTTATCCTCCGCGTGGTTGACGAACACTGGACCAACCACATTGACGCCATGGACCAATTGCGGCAGTCAATCGGCCTGCGGGGCTACGGCCAGCTGAACCCGCTGGTTGAATACCAGGACTCCGGCTACAACATGTTTGAAGAAATGATCAGCGACATCGAGTTTGACGTGACTCGCCTCTTCATGAAGGCTCAGATCAGAAACAACTTGAGTCGGTAATAAATCAGCAAAGAGGGGGCGGGAGCCTCCTCTTTTTGGGTATAATTGTAGTAAACAAAAAGAGTATTTTTAGCAAAGGAAAAAGACAATGGAAATCAGTGAAATTCAAAATGCTTTAGACGAGTTGCGGACCCGGCTTAACCACTTCAGGGGGTCTCTTTGACTTCGATAATATTAGCGAAAGCATTGAAATCAACGAAGCCAAGATGGCGGAACCGGGCTTTTGGGACAATCAGGAAAAGGCACAGAAATTGATCAGTGAGACCAACCTGCTCAAGGAAAAGCGGGACTCCTTCCTGGCTCTGAAAAAAGACCTGACCGATGAAGAAACGGCCCTGGAATTGCTGCGCCTGGAAGCAGACGCGGACCTGCAAAAGGACACCGAAGACCAGCTGGCCAAGCTGCAGGAAGAGTTCCATCAGTATGAATTGAACCTGCTCTTGTCGGGCGAGTACGATGACCATAACGCCTTGATGGAAATCCACCCGGGGGCCGGCGGCACTGAAGCCATGGACTGGGGGAACATGCTGCTCCGGATGTACCAGCGCTATTGCGACTCCCGTGGCCTTAAGTTTGAAGTCAACAACTTTGAACCAGGTGATGAAGCCGGTTTAAAGAGCGTCAGCGTCCGGATTTCCGGCAAGAATGCCTACGGGCTGCTGAAGTCTGAACACGGCGTTCACCGCCTGGTCCGGATTTCGCCTTTTGACTCAGCCAAAAGACGGCACACTTCTTTTGCCTCGGTTGAAGTTATCCCCGAAGTCGATGACTCCATTGAAATCGACATTGATCCTAAGGACCTAAGAATTGACGTCTACCGGTCATCCGGGGCGGGCGGCCAGCACATTAACAAGACTTCCAGTGCCGTCCGGATTACCCACATCCCAACCGGGATCGTGACGACTTCCCAGGCCCAGCGGTCCCAGTTCCAGAACCGGGACACGGCCATGAATGAAATGCGGGCCAAGCTTTTCCACCTGGAAGAAGAGAAGAAGCGCAAGGAAAAGGCGGCCTTGAAGGGTGAGCAATTGGACATTGCCTGGGGCTCGCAGATCCGGTCTTACGTCTTCCACCCATACAGCATGGTCAAAGACCACCGGACCGGCTATGAAACCGCCGATGTGGGCGGGGTGATGGACGGGAAGCTGGATCCCTTCATCTACGCCTACCTGCAGTGGCGTTTGAGCCAGGAAAATCCAGAATAAGAGGAAAAATATGTCATTTACCACGATAGTACTGCTGGTTTTGGCGGCGGTAGTCGCCCTGGCCCTGCTCTCGGTTTTCTTCAAGGCCTTGATTGCCTTGCTGCCGGTGGGCCTGGTCGTAATTTTGCTATTATGGCTCTACTACCGCTTTTACTGGCGGAAGAAATACAAGCTGCCCAGCCGGCCGGAGCCCGACAGGTTCAAGCCAGGCCAGGCAGATCCGGAGCGGCCGCGGAAACAGGCGCAAGATGTGACAGTGCGAGATGTTGATGATAGTGAGGTACATGATGACGAACACGGTAAAACTAACTGAGTTCATTAATGACAATTCCAACCTGCGGGTTCTGCAGGGACAGGAATGCGTGGCTGGCAAGGAGATTACGGTTTCCGACGTTTACCGGCCGGGACTGGAATTGAGCGGCTACTTTGACTTTTACCCGGCTGACCGGGTCCAGCTTCTGGGCAGAACGGAAATTTCCTACGCTGCCCGGCTGGACCACGACCTGCGCCGGAAAGTTTTTGAAAAAATCTGCCAGAAAGAAACTCCCTGCCTGCTGGTTTCCCGCAACCTGCCGGTGCCGGTTGAACTGAAGGAAGCGGCAGAAGCAGCCGGGACCCCGATCTTGATTTCCAATGACGCCACGACCTACTTGATGAGCATGATCACCCAGTACCTGGCCGTCAAGCTGGCGGAAAGAAGCAGCGTTCACGGGGTCCTGGTCGAAGTTTTCGGGATGGGGGTCCTCTTGACCGGGGAATCCGGGGTCGGCAAGTCCGAAACCGCCCTGGCCCTGGTGCAGCACGGCCACCGCTTGATCGCTGACGACCGGGTGGATGTCTACCAAAGAGACCACGAGACCGTGGTTGGGGAAGCTCCTCGTATTTTGAAACACTTGATGGAAATCCGGGGGATCGGGATCATTGACGTCCTCAAGCTCTTCGGGATTGGGGCCATCAAGGATGAAACCGAGATCTCCCTGGTCATCAACTTGACCAACTGGGACTCCAAGGCCAACTATGACCGCTTGGGCTTCCAGGAAAACACCCGGATCATCTGCGGGATCGCGGTTACCCAGGTCACTATTCCGGTCAAGGTCGGCCGGAACATGGAAAACATCGTGGAAGTGGCCGTCATGAACTTCAGAGCCAAGGCCATGGGCTTTGACGCGGCCAAGACTTTTGATGAAAACCTGACTAGCCTGATCGCGGAAAACAGCGAGGAAGAAAAAAGGGGGTAAAGCAGACTAATGACTTTAGCACTGAATCCAATCGCCTTCAGTATCGGGGACATTCACGTCCGCTGGTACGGAATCATCATCGCCTGCGGGATCCTGCTGGCTACCTTCATGTCGATCAGAGAAGGGCAAAGACGGCAGATCATGAGCGATGACTTCATCGACTTGCTCTTGTGGGGCGTGCCGATCGGCTTTATCGGGGCCCGGATCTACTATGTCATTTTTGAATGGGGCTACTTCTCCCAGCACCCGGATGAAATTATCGCCATCTGGAACGGGGGGATTGCCATTTACGGGGGCTTGATCGCCGGGGCGATCGTCCTTTTGGTCTTCTGCTACCGGCGCTTCTTGCCGCCATTTCTAGTCCTGGACATCGTGGCGCCGGGCGTGATGGCGGCCCAGGTCCTGGGCCGGTGGGGCAATTTTATGAACCAGGAGGCCCACGGGGCCAAGTGCAGCCTGCAGTATCTGCAAAACCTCCACTTGCCCCAGTTCATCATCGACCAGATGTACATTAATGGCAGCTACTACAAGCCGACTTTTTTGTATGAATCTTTCTTTAACCTGATCGGTCTGATCATCATCCTCTCCCTGCGCCACAAGAAGCATCTTTTTAAGCAGGGGGAAGTCTTCATGCTTTACCTGGCCTGGTACTCCGTGGTCCGCTTTTTCGTGGAAGGGATGCGGACGGACAGCCTCTATATCTTTGGTGTCATCCGGGTTTCCCAGGCCCTCAGCCTCCTGCTTTTAATCGCTGTGGTTATTTTATTTGTCTACCGGCGTGTCAAAGTCAAGCCAAAGTGGTATCTTGAAGGAAGCGGTTTAAAATATCCATACGAGAGGTAGAAAAAATGACAAAAATTTCCGCTTTAGGCGCCGGTTCCTGGGGGTCAGTCCTGGCCTCCATGCTGGCTGACAACGGCCACGAGGTGGCCCTTTATGCCCACCGGCAAGTTATTGCTGATGAGATCAACCAAGATCACACTAACCTGCACTACATGAAGGACTGGACCTTGAACCCCAGCGTTTGGGCCAGCACCGACATGGGGCAGGTTCTGAAAGACTGTGACGTTATCCTGTTCGCCGTGCCGACCAGCGCGATCCGGTCAGTGGCTAAAGCGGTCCGGCAGGTCTTGGACGAGAATGGCCGCCAGCCTTACCTGGTTTCGGCCACCAAGGGGATTGAATCGGGGACTAAAAAGCTGGTTTTGCAGATTTTTAAAGACGAAATCTACCCGGACGGATTTGACAAGATGATCGTCCTGTCCGGTCCCAGCCACGCGGAAAATACCGCCCAAAAGGACCTGACGGCCATTACCCTGGCTTCAACCAGTCTGGACAACGCGGCCAAGATGCAGAAGATTTTTTCAAATGACTATGTCCGCTTCTACACCAGCAACGACCCAATCGGGGTCCAGGTCGGCGGGGCTGTTAAAAACGTCATCGCCATCGCGGCTGGGATCCTGGCGGGCCTGGGCTACGGGGACAATGCCAAGGCAGCCTTGATGACCCGGGGCCTGGCGGAAATCACCCGCCTGGGCGTGGCCTTTGGCGGCCAGCCTTGGACCTTCAGTGGCCTGTCCGGGATCGGCGACTTGATCGTTACTTGTACCTCAGTCAACTCCCGGAACTGGCGCTGCGGCTACCAGCTGGGCCAGGGCAAGCCTCTGGACGAAGTCTTGGCCAACATGGGCCAGGTTGTTGAAGGGGCCACGACCGTCAAGGCCGTGTACGAAATATGCGACAAGTATTCTTTGGACATGCCGATCTCAGCTTCCATCTACAAGGTCCTCTATGAGGGGGCCAAGATCGACGATGAGATCAAGCTGATGATGAGCCGGCAGCTGGGACCGGAAATCAGAATTTAAAAGAGGCTTGCAATCTTTTGAAAATCCTGTATGATATTACTTATAAAAAGTAAGTGGCAAGGAGACTGTTTATGACCAAAGAAGTTGACGTAGTAATCATTGGTGCCGGTCCAGCCGGCATGACGGCAGCAGTTTACGCGGCCCGGGCCAACCTGAAGACGGTTCTCTTAGACCGGGGGATTTACGGGGGGCAGATGAACAATACTGCCGACATCGACAATTACCCGGGCTTTGTGGAAGTTCAGGGGCCGGAACTGGGCGAAAAGATGTACCAGACCGTGCAAAACGCCGGGGCCAGCTATGAATATGGCGACGTCCAGGCCGTCAAGCTGGAAGGCGACTATAAGCGGGTGATTACGGACAGCGAGGAATACCTGGCTCCAGCCGTGATCATCGCGACTGGATCAGAGCACAAGCACTTGAACGTGCCGGGAGAGGAAATTTATTCCGGCCATGGTGTTTCTTACTGCGCCGTCTGCGATGCAGCTTTCTTCAGAGATGAAGACGTGACGGTGATCGGCGGGGGCGACTCGGCCATCCAGGAAGGGCTCTACCTGGCTCAGTCAGCCAAGTCAGTCACGGTCGTTCACAGAAGAGACCAGCTGCGGGCCAAGCCTGAACTGCAGGAGAAGGCCTTCAAGCACCCGAAGATCAAGTTTGTCTGGAACGCCTTGACTGAAGAAATCATCGGCGAAGACGGCAAGGTCAGCGGGATCCGTTACAAGGACAAGGTCAGCGGGGAAGAAAAGGAATTTGCCACCAAGGGCGTCTTTATTTACGTTGGCGTTCTGCCAGTGACTAAGGCCCTGGATGGCCTGGACATCCTGGACGAAAACGGCTGGATTCCTACTGACGAATTGATGAGGACCCGGCAGGAAGGGATCTTTGCGGCCGGCGACGTGCGGCCAAAGGATTTACGCCAGGTAACGACCGCCGTGGGCGAAGGCAGCGTGGCCGGGCAGGAAGCTTACAACTACCTGCAAGCCAAGGGCTTTTTGAAATAGATATTAAAAGCAGCGGACAAGTGGTCTGCTGCTTTTTTCTTTGAGCAAAATATTGTTAGAATCTATGTTCGGGCAGTAAAATAGATTACGACTGATTATTGCAAGTTTAAGGGGGAAAAAGTGATTAAGCGGCAAGACAATAACAAATTTGAACTCGTCTCACCATATAAGCCGGCCGGTGACCAGCAGCAGGCCATCGACCAGCTGACGGCCGGTTTTCAGGCCGGCGATAAAGAGCAGATCCTCAAGGGGGCAACGGGGACGGGGAAGACCTATACCATGGCCAATGTAATTGCCAAAATGAACAAGCCGACCCTGGTCATTACCCACAACAAGACCCTGGTTGGCCAGCTCTACAATGAATTTAAGGAATTTTTCCCGAACAACGCCGTGGAATACTTCGTTTCCTACTATGACTACTACCAGCCGGAAGCCTACGTGCCCCAGTCAGACACTTACATTGAAAAAGACTCCTCGATCAACGACGAAATCGACCAGCTGCGGCACGCCGCCACCAGCGCCTTGATGTCCAGAAATGACGTCATCGTGGTGGCTTCCGTTTCCTGTATATACGGCTTGGGTGACCCAAGAGAATACGAGGCCAGCGTGTTAAACGTCTATACTGGCCAGGAATACGAAAGAAACACCCTGCTCAGAGACTTGGTCAACATCCAGTACGACAGAAACGACATCGACTTACAGCGGGGCCGCTTCCGGGTCCGGGGCGACGTCGTGGAAGTTTTCCCGGCCGGCTATTCTGACCGGGCCTACCGGATTGAATTTTTTGGCGACGAAATCGACCGGATTGTCGAAGTTGACCCCTTGACCGGGGAAGTGCACGGGGTCAGAGACAGCATCTCCCTTTTCCCGGCCACCCACTTCATGACCAACGATGACCAGCTGGCCGGGGCTATCGACCGGATCAAGGCTGAGATGGACGACCAGGTCAAGAAGTTTGAAAAAGAAGGCAAGCTGCTGGAGGCAGAAAGAATCAAGCAGCGGACCACCTACGACTTGGAAATGCTGAGAGAAGTCGGCTACACCAACGGGATTGAAAACTACTCCCGGCAGATGGAAAACCGCAAAGCCGGTGAGCCGCCATACACCCTTTTGGACTTCTTCCCCAAGGATTCCCTGATTTTAATCGACGAATCCCACGCCACCATGCCGGAAATCCGGGCCATGTACAACGGGGACAGAAACAGAAAGCAGACCTTGATTGACTATGGCTTCCGCCTGCCATCAGCCTTGGACAACCGGCCCCTAAAGCTGGAAGAATTTGAGCAGCATGTCAACCAGATCATGTATGTGTCAGCCACCCCGGGTGACTATGAATTAAACCGGACTAGCCGGATCGTGGAACAGGTCATCCGGCCGACCGGCCTTTTGGACCCGAAGATCGAGGTCCGGCCAATTGAAGGGCAGATCGACGACCTGGTTGCTGAAATCAATCTGCGGATTGAAAGAAGGGAACGGGTTTTTGTCACTACTTTGACCAAAAAGATGGCTGAAGACTTGACCGACTACTTGAAAGACCTGGGTATCAAGGTCCGCTACCTGCACTCGGACATTAAAACCCTGGAAAGAATGCAGATCATCCGCGACCTCCGCTTGGGCAAGTTTGACGTTTTGATCGGGATCAACCTGCTTAGGGAAGGGATCGACGTACCGGAAGTTTCCCTGGTGGCCATTCTGGACGCGGACAAGGAAGGCTTCCTGCGGGCCTACCGGCCGCTGATCCAGACCATGGGCCGGGCGGCCCGGAACGCCAACGGTGAAGTTATCATGTATGCTGACCGGATCACCGATTCCATGAAGATGGCGATTGATGAAACGAACCGCCGCCGGGCCATCCAGATGAAGTACAATGAAGAGCATGGGATCGTGCCAAAGACCATCATCAAGCCGGTCCGGGACATGATCTCCGTGGTCAAGGCCGACAAGGAAGCCGAAAAGTCAGACTCCTTCGCCGACCTCAACTTCGACGAGCTGACGGCCAAGCAGAAGAAGCAGATGATCGCCAACTTGAAAGAGCAGATGCAAGACGCGGCCAAGCGCTTGGACTTTGAAAGCGCGGCTAACCTCCGCGACGCGATTATCGAATTGGAAGGCTCTGTAAGAAAACCGATTAAGAAGAAAGGCAAGGACTTCAATGGCAGATAGAAAGATTGTCATCCGCGGTGCCCGTGAGCACAATTTAAAAGACATCGACGTAACCATTCCTAAAGATCAGCTGGTCGTTATTACTGGCTTATCGGGTTCTGGCAAGAGCTCACTGGCTTTTGACACCCTGTACGCTGAAGGCCGGCGCCGCTACGTCGAATCTCTGTCTAGCTATGCCCGCCAGTTTTTAGGGCAAATGGACAAGGCCGACGTCGACTCAATCGACGGCCTTAACCCGGCCATTTCCATCGACCAGAAGACGACCTCCCACAATCCCCGCTCAACGGTCGGCACGGTTACTGAAATCAACGACTACCTCCGCTTGCTCTGGGCCAGGGTCGGCCACCCTTACTGCCCAAACGACGGCACCTTGATCCAGCGGCAGTCGGTTGACCAGATGGTGACCCGGATCCTGGATTTGCCGGAAAGAAGCAAGATCCAGCTTTTGTCCCCGGTCATCCGGGGCAAGCGGGGCGAGCACAAGGAGGTTTTCGCCCGAATCCGCCGGGCCGGCTATGTCCGGGTGATCGTTGACGGCGAGCTGCACGAAGCCAGTGAGGAATTTGCTTTAGAGAAAAACAAGCGCCATGATATCGAAATCGTGGTTGACCGCCTGGTCATCAAAGACGGGATCCGGTCCCGCCTCTTTGACTCGGCTGAAGCAGCCCTGCGCCTGTCTGAGGGCTACATGGACGTTGACGTGATCGGGGGCGAGAAGCTCAGTTTTTCTGAATACTACGCCTGTCCTCTTTGCGGCTTTACAGTCGGGGAAATGGAGCCCCGCCTTTTCTCCTTCAACGCGCCTTTCGGGGCCTGCCCGGCCTGCGATGGCCTGGGGATGAAGCTGGCGGTTGACCCGGACTTAGTGGTCCCGGACAAGGACAAGAGCTTGGCTGAAGGGGCCCTGGCTCCTTGGGCAGGGTCAAAGTACTACATGGGGATGCTGGAGCAGGCCTGCGCGGCTTTGAAGATCCCGATGGACAAGCCTTTTAAAAAGCTGACCAAGCGGCAAAGAGACATTATCTTAAATGGGTCAGACAAGGAAATCCACTTCCACCTGGAAGGGGACTTCGGGGTCAACGACACCAAGCAGCCCTTTGAAGGGGTGATCAACAATGTCGACCGCCGCTACGCCAAGCCAATGTCCAAGTTCATGCAGGAAGTCATGGGCGAGTACATGACTGAATTGCCTTGTGAGGTCTGCGGCGGCAAGCGGCTTAATGAGAAGGCCCTGGCCGTTAAGGTCAATGGCAAGAACCTGGCTGAAGCCAGTGACTTGTCAATCAAGGACGGCCTGGCCTTTTTCAAGGCAGTTGACTTAAGTGAGCAGGAAGCTGCTATCGCCAAGCCGATCCTAAAAGAAGTCTGCGACTGCTTGAATTTCCTGGTCAGCGTCGGCCTGGACTACCTGACCCTGTCCAGATCAGCCGGGACTTTATCCGGCGGGGAAGCCCAGCGGATCCGCCTGGCCACCCAGATCGGGTCCAACCTGTCCGGGGTTATGTATGTCTTGGATGAACCGTCTATCGGCCTGCACCAGCGGGACAACGACCGCTTGATCGCTTCTTTGAAGCGGATGCGGGATCTGGGCAACTCCTTGATTGTCGTTGAGCACGACGATGAAACTATGCGGGCTGCTGACTACTTGATCGACATGGGGCCAGGGGCCGGCAGCCAGGGCGGGGAGGTTATGGCGGCCGGAACGCCGGAAGAAGTCATGGCCAATCCGAAGTCTTTGACTGGCCAGTACCTGCGGGGAGAAAAGTTCATCCCGGTACCATTGAAGCGGCGCAAGGGCAGCGGCAAGAAGCTGAAGCTGACCGGGGCGGCGGAAAACAATCTGAAGAATATCAGCGTCGAATTCCCTTTGAGTGAATTCGTGGTCGTGACCGGGGTTTCCGGGTCCGGCAAGTCCACCCTGGTCAACCAGATTTTAAAGCTGGTTCTGGCCCAGAAGCTCAACCACAATTCCGCCAAGCCGGGCAAGTATGACAAGCTGACCGGCTGGAAGAATATTGAAAAAGTGATCGACATCGACCAAAGCCCGATCGGCCGTACCCCGCGGAGCAACCCGGCGACCTACACCAGCGTCTTTGACGATATCCGGACCCTTTTTGCCCAGACCAATGAAGCCAAGATGCGGGGCTACACCAAGGCCCGCTTCTCCTTCAACGTCAAGGGCGGGCGCTGCGAAACCTGCCACGGGGACGGGATCCTCAAGATCGAAATGAACTTCCTGCCGGACGTCTACGTTCCTTGTGAAGTCTGCCATGGCCAGCGCTATAATTCTGAAACTTTGGAAGTGACTTACCGGGAAAAGAATATCGCCCAGGTCCTGGACATGACGATCAGTGAAGCTTGTGACTTCTTCGTTAATATTCCCAAGATCCACCGCAAGCTGCAGACCATCGTCGACGTTGGTCTGGGCTATGTCAAGCTGGGCCAGCCAGCCACCACGTTGTCCGGCGGGGAAGCCCAGCGGATGAAACTGGCCAGCGAACTGCAGAAGTTATCGACTGGGAAGAACTTCTACATCCTGGATGAACCAACTACTGGCCTGCACACCGACGACATCAAGCACCTTTTGGAAGTCCTCCAGCGCCTGGTAGACCAGGGCAACACGGTTTTGGTGATCGAACACAACCTGGACGTGATCAAGACGGCTGACTGGCTGATCGACCTGGGTCCTAACGGGGGCGAGCGGGGCGGCCAGGTGGTCTGCACGGGGACGCCGGAAGAAGTGGCAGACTGCCCAGAGTCCTGGACTGGCAAGTATCTCAAGCCAGTTTTGGACCGGGACAAGGCTTTGACTGAAAGCAGTCTTGCAAATAAAAAAGAATCTTAATCACGCCCTAAACCTTTTTTAGCAAAATATTGTAAAATGAAAGCTGAAGCCAAATAATTGTCAGAATTTTTACTTCAGTGTGAAGGGGTGATTTTTATGTTTGATTCCGGCTACAACGAAAAACGCGGCTTTGACTGGGGCGTCTTCAGCGCTGGGGTCATCTCCGTCGTTTTAAGCATTTTTCTCTTTGCCAACCCTGGCAAGGGCTTGCGGGGCCTGGTCATCATTCTGGCCGTCTTGTTGATCATGCAGGGGATCGCTTGGATTTCCATGTATGCCGGCTTTCACGGTATCTTTGGCCCATCTTGGACGACCCTTTTATCGGGGATCTTTGACATTTTGATCGGGATCTTCTTCCTGTGGGATAACAAGGTCGGGGCATACATGATCGCGATCTTGGTGGCTATCTGGTTCATCGTCGACTCGGTGATCGGGATCGTCTTTGCCTGGCACCTGCGTTTCTTTGAGACCGGCTGGTATTTCTTCTTCAACCTGCTCTTGAACATCTTGGGCCTGGTTGTCGGGGTTATGCTTCTGTTCAGACCGGTTATCGCGGTGATGAGCACGGTCTACTTGATCGCGATCTACTTGATGATCTTCGGGATAAATGAGATTGCTTTGGCCTTTATGCACCGTTAAGCATTTTAAACTGCCGATACTTAACAGATTGTTTAAGTGTTGGCAGTTTTTTTGATGGTAAAATGAAAGTAAGTAGTAAAAAAGTGTAAGGAAAAAGCAAAAGCAGGGAGGCAAGGGAAAATAGAGAAAAAGATTTATATTTCCTGCGACATGGAGGGCTGCGCCGGCGTTACCAGCTGGGAGCAGACCCATTATGGCCACAAGGGCTATGACCTGGCTTTAAAAGAGATGACCCGGGAAACCGTGGCCGCGGTCAAGGCCTGCCAGCAGGCCGGCTATCAGGTGACCGTCAAAGACGGGCATGAGGACGGGATCAACCTGGATCCGGCCCTGTTGCCGGCGGGCACGGAACTGATCCAGGGCTGGGACTCTTCACCAGAAGAAATGATGGCGGGAATTTCAGCCGACTATGCTGGGGCAATCCATATCGGCAGCCACTCTCCGGCCGGCTCCAGCGAAACGCCCTTAGACCATACGGTGGAACATGGCTGGTATTCCTGGGTCAAGCTGAACGGAGAATTGGCCTCGGAATTCACCTTCAACAGCCTCTGCGCGGCCCAGTACGGGGTACCCTCACTTTTCCTGGCCGGGGATGCCGGAATTTGCCGGCGGGCTGAGGACTTTTGCCCGGGCATCGTGACCTGTGCCACTAAAAAAGGGGTGGGCAGCGCGACTGTCAATAAGAGCCCCCAGGAAGTCGCAGCGGGCATCGCGACCGGGATCAAGGAAGCCTTGGCGGGGCCCGGTGGTCTGCCGCTTTTAGCTGACGAATACCTGCTGGAATTCTGCTTTTCTTCAGCAGGCCGGGCCAGAGCCGCTTCTTTTTACCCGGGAGCTGAGCGAGCAGGCGAGCGGATCGTTTCCTACCGGGCCAAGAGCATTATGGAACTCTTGACGGCGAAAATGTTCATGACGGAAATCTGAGGTGGAAGATGGGCTTAAAAAGAGAACTGTTTTTGCCCCGGGCTTATCAAACCGGAGAGAAAAACGACATAACCGATGTTCCGGGGGTCAAGGTGGGGCCAGGTGACCCTGCGAAAGGGCGGGGTTAATACCGGCGTCACGGCAATCTTGCCCGGGAGTGACATTTTTAAGCAAAAAATGCTGGCCAGCGGCCAGGTCATTAACGGCTTCGGCAAAACTACCGGCCTAGTTCAGATCAATGAGCTGGGTACTTTGGAGACTCCGATTCTCATGACCAACACCCTGGCCGTGGGGACCTGCTGGACAGCCTTGACCCGCTACATGCTGGACCGGAACCCGGAGATCGGCCTCACAACCGGGACGGTTAACCCGGTCGTGATGGAGTGTAACGACGGGGATTTGAATGATATTAGGTCCCTGCCGGTTAAAGAGAGCGATGCTCTGACGGTTTTAGCTTTAGCTGAGGGTAATCCGCCCCTGCTGGAAGGTAATGTCGGTGCCGGAACCGGTATGCGCTGTTTAGGCTTTAAGGGCGGCATCGGGTCAGCTTCGCGGCTTTTGGAACTGGGCGGGAAAAATAAAAAAATATCACGTAGCCAGCCTGGTCTGCGCCAATTTCGGGGCTTTTGGCAAGTTGCGGGCTGGCAGCCGCCTTTTGGGCCAGCAACTAAAAGACGCCGTTTTGGCCCGGGCGAAAGCAGAAAATAACCAGCTTTATGCCCGCTATCAAAAAGACCAGGGGTCAATCGTGATGGTGATCGCACCGACCTGCCCCTCTCCAGCCGGCAACTAGGCCGCCTGGCCCGCCGGAGCGCGGTTGGCTTAGCCAGAACCGGGTCGTATATCGGCGATGGTTTTGGCGACATTGCCCTGGCTTTTTCCACGGCGCAAAGGGTCAGCCATTTCGCTAAAGAAGCGGAAAGCTTTAGCTTTTTGCCGGACAGCCAGCTGGACCCGGTCTTTGAAGCCGGGACGGAGACAATCGAAGAAGCGGTCTTGAGTGCCCTGGTCCACGCTGAGACCTTGACCGGTTTTCAAGGGAGAAGGGTCTACGGCTTAGGGGATTTTTTATAAAAATAGTGGAGAATAGGAATGCAGCTAGGGCGAAATAATTGCCAAGACGCGGCACGCCCGGTATGATAGAGTTTAACGTTTTATGGGAGCAATACGGAATCATGCATGAAAAATACAAGAAACAGCTGTTGATTTTGACGGGGATGAGCGGGGCCGGCAAGACGGTCGCCGCCCACTCATTAGAAGATGTCGGCTACTTCGTGGTTGACAACCTGCCCCCGGAATTGCTGGGCAATTTCTGGGACTTGATGAACACTTCGGAAGACTTTGAAAAAGTTGCCGTGGTGATCGACCTCAGGGTCAAGTCCTTCTACAAGGACCTAATCGACGAAATCAACTCCCTGGAAGACAGCGGCCAGACCCAGGCCACGATTGTCTTTTTGGAAGCTTCTGACGACACCTTGGTGGCCCGCTACAAGGAAACCCGCCGCCTGCCGCCTTTAGCGGAAAACGGCCGCCTTTTAGACGGGATCCGGGATGAACGCCGCATTTTGACTCCGGTCAGAAACCGGTCCAACTACATTTTGGATACCTCCAAGATGACGACGAAGGAACTGAAGCAGAAGCTGCAGAGCAAATTCGGGGAACTCCACAAGCCAAAATTCGGGATTGAGGTCATGTCCTTCGGCTTTAAGTACGGGATGCCGATTGATGCCGACATCGTCATGGATGTCCGCTTTCTGCCTAATCCCTTCTACATTCCGGAACTGCGTCCCTTCACGGGGCTGGACAAGCGGGTCTTCAACTATGTCATGGACAAGGATGAAACCAAGGTCTTTTATGGCAAGCTGCTGGACCTCTTGTTGACAGCAATTCCCGGCTACATTGACGAAGGCAAGGAAAAACTGACGATCGCCATCGGCTGTACGGGCGGTCAGCACCGCAGCGTTTCGATCGCCCAGCAGCTGGCGCGCGACTTGTCTGAAAAATATCCGGTTGACATTACCCACCGGGAAATCAGCCGTTATCTTAGAAAGTAGGAATTCAGCATGTCTTTTGGCGAAAACAAGATCATCCGCATCATCAAGCGCCGCCGGCCCCGGGTGGTCGTCATCGGCGGGGGGACCGGCCTGCCAGTCATTTTGCAGGCCTTGAAAAAGCAGGACGCGGAGATCACGGCGATCGTGACCGTCTCTGACGACGGCGGGTCATCCGGGATCATCCGCAACTACATCAACGTCGTTCCCCCGGGCGACATCCGCAATGTCCTGGTTTCCTTGAGCGACCTCTCGCAAGAAAAAAAGCAGATCTTCCAGTACCGCTTTGAATCAAAGGACTCCTTTTTCTCCGGCCACGCCATCGGCAACTTGATCATCGCGGCCTTAAGCGAGATGCAGGGGAATATTTTTGACGCTGTCCAGAACTTATCAGCCATGATGGAGGTTGATGGTCACATTTATCCTTCTGCTAACGAACCTTTGACCTTGAACGCGGAATTCATGGACGGCAGCCAGAGCAGCGGGGAAGTGGAAATTACCAGCCAGCACAAGCAGATCAAGCGGGTCTGGGTAACAACAGCTGATGACGGTGAGCCGGCATCTCCCAGTCCGGTGATCGAGGCCATTATGCAGGCCGATGCTATTGTCCTGGGGCCGGGGTCCTTGTTTACCTCGATTCTGCCGAACCTGATGATCCCGAATGTTGGCCAGGCAGTCCGGGAGACTAAGGCTGAAGTGGTTTACGTCTGCAACATCATGACCCAGGCGGGGGAAACGGTGGGCTTAAGCGATGCCGATCACGTCCGGGTCATCAACCAGCACCTGGGCGGCAATTATATCGACACCGCCCTGGTCAACGGGGCCCAGATCGACATGACCAAGTTCCATCCGGAAGACTATGATGAGTATTTAAAGCCGGTCGCCAACGACTTTGCCGGCCTGCAGGAACAGAACTGCCGGGTGATTACGGACGACTTTATCGACCAGCGAAGCGGCCTGGTCTTCCATGACGGCGACAAGGTGGCCAGGGAAATCATTGACCTGGCCCTGCAGGAAATGTTTAAGAGAAAGTAGGAAGTTAATGGCGAGTTATGCCAGTGAGGTAAAAAAAGAACTGACATCAATCGAGGTCCATCCCGAGCATGCCAAGGCGGAACTGGCGGCCTTTTTGCGGATGAACGCGGTTTTGAGCCGGCATGACGGGCAGATGAGCCTGGACATCGTGACGGAAAACCCGGCCATTGCCCGGCGGATTTTTTCCCTGATCAAGACGGCATACGGCTTTGATCCCCAGCTGATCGTGACCCGGAAGATGAAGCTGAAGAAGAACCACCAGTACCTGGTCAGAGTGGCCCAGATGGTCAGCGAGATTATGGCGGATTTAGAGATCTATTCCCCGAAAAAAGGCTTCATCACCGGGGTGCCGGACAAGATCAAGTATTCAGAGCAACGGTCAATGTCCTACCTGCGGGGGGGCTTTTTGGCCAGCGGCAGCGTCAACAATCCGGAAACCAGCCGCTACCACCTGGAAATCTATTGCACCTATGCCAACCACAGCCAGGATCTGCAGGAGATCATGAACAAGTACTTTGATCTCAATGCCAAGGTGACGGCCCGCAGAAGCGGCAGCATAGTCTACTTGAAAGAAGCGGAAAAAATCGGCGACTTCCTCCATGTGGTCGGGGCGGTCAATGCCATGCTGGCCTTTGAGGACCTGCGGATCATGCGGGACATGCGCAATTCCGTCAACCGCCTGGTCAACTGCGACACGGCCAACCTCCGCAAGACGGCCGGCGCGGCCGCCAAGCAGGTGGAAGACATTGAATTGATTGACAAAAAGCAGGGCCTGGAGCCTTTGCCGGAAAAGCTGGCCAGCCTGGCCCGCTTCCGCCTGCAGCACCCGGAACTTTCCCTCAAGGAACTGGCTGAGCAGGTTCCCGACGGGCCGATTTCCAAGTCCGGGGTTAACCACCGCTTGAAGAAATTGCATGAGATCGCGGAAAACCTCCGCTAATAATAAGACAACAAAAAATCCAGACGGCTATTTCAGTCGTCTGGATTTTCTTTTCCCGATAAGCGGATTACTTGTTTTGGTTGACCATGATGTTGTCAATCAAGCCGTAGTCCTTGGCTTCCTGAGCGGTCATGTAGTGGTCGCGTTCAGTGTCGCGCTTGATGGTTTCGATGTCCTGGCCGGAGTCCTTGGCCAAGATTTCATTGATCATCTTTCTGGTCTTCAAGATTTCTTCAGCGGCAATTTGGATTTCCGTGGCTTGCCCTTGCGCCCCGCCCAAAGGCTGGTGGATGAGGACAGTAGCGTGCGGCAGGGCAAAACGCTTGCCCTTTTCGCCTTCAGCCAAAATGATTGAGGCCATGGAAGCTGCCATACCGGTGGCAATGGTGGAAACTGGTGACTTGATGAAGTTCATGGTGTCCACGATAGCCATGCCGGAAGTGATCACACCGCCTGGTGAGTTGATGTACATGTAAATGTCTTTAGTATTGTCTTGCGCGTCAAGGAAAAGCAACTGGGCAATGATGGAGTTGGCCATTTGGTCGTTAACGTCACCGCTCAGCATGATGATCCGGTCCTTCAGCAAGCGGGAGTAAATGTCATAAGCGCGTTCGCCGCGGGCCGTTTGTTCAATAACTGTAGGTACTAACATAATTTTCCTCCTAGTGATTGGATTAGCACTCATTTAGATACAGTGCTAATTAAAACACTCCTGGCCGGGTCTGTCAAACTTGGCGCACTCTTTTTTTAAAAATAAACTGGTGCTATAATGACCTTGTGTGAAAAGACTTTTTTAGCTGGAAAGAATCTAATTTATATAAAAAGTGGAAAAGAAATGGATAAGAAACTGCTCTGCTCGCTCCTGCTGGCGGCGGCCTTTATTGGCCAGGCCCAAACGGCCCAGGCGGCCACGGTAAGCAAGATGCCGGGCACGAAAAACATGGGGATCTATGCCAAAGTAACCAAGAAGGGCGCCAGCAAGAAAGTGACGACCACTAAGTACTTTAAGTACAGCAAGATCCAGTCAACGGCCAGCAAGAAGACCAAGAAGGGGACTTATGCCTATATCTATGCCAACGGCCGCCCTTTAGGCTAGGTTAGTGAAAAGTGGTTTGTCAGAAACAAGATTTCCGCGGCCAAGCAAATCTACCTGGTCGAAGATGACAACCGCTTTGACTACAAGGACGCCATCAGCTATGTGAACGACGCTCACGGGACCATGGTGGACCCGGCAAATGGCGCGGTTAAGGCCAGTCTGTCCGGGGACAAGCTGAATTTTACTTATGGCAAGGCCAAGACGACCGTTGAATTGGTGAAGACGGCTAACCCGAACCGGAACCTTAAGCCGGCTGTTAGCGCGAAGAAGGGCCCTAAGGAAGTGGCCAGCACGAGAAAGCACTCCGGCAGCTCCAAGAACTGGAACGCCGTCCACCGCTATGGCACAGAGACCAGCAGCAACCGCTGGACCAGCGGCGGCTTGACCCTGGCCACCCAGCTTTGGGAGCCACGCAACTTGAGCCTGGAGACCAATGACTGGCAGCAGGTCGGTCCGGTTATGGAAGGCTTGGCCGTAAATGGCGGCTGGGCTTACAGCAGCTGGTATCGGTCAGCCGCGGCCAGCGACCAGCTTAAGGGCAACATCGTGGCCTTCAACATGAAGAAGCTGAACAAGTACCAGGCCCAGTATCTGTCACCGCGCAGCTACCTCTACAAGAAGCTGAGTTTTGGCAAGTTTAAGAGCTACTCCCAAAATGTCAAAGTGAGTCCTTACCTGCGCCTGGGCCACGGCCAGTCACTGGGGGCAAGTTCAAAGTACATCTATGTCCTGGCCAACGAAAACAAGCTGCCAGGCGGGGCAAGCAACGGTTTTTACTCGGAAGAAATCCTGCAGCTGAAGAAGAGCGGCTTGACCATCAACAAGGTCTGGAGCATCCGGGTAGACGTCGGCAGCTCTGGCCGCTACTTCTACAACGCCGCTTTTGCCGGCGACAATACCATGTACGGGGTCTTCCACAACGCTGCCTTTGGCCGCTATGAATTCTGGCGCCTTAACCTGGTCAACAACCGCTGGCAGGTCAGTCAGGTAACGGTGACCCAAAGCCACTTCGTCAAGCAGCAGGCCGGCAGTTCTCCGGTCCAGGGCTTCAGCGTAAGCGGCAGCAACATGTACCTGGCCTTTAACAACTTGATCTTAAAATTGCAGACTGATGGGACTTACCAGAAGACCTGGAAGCATGTCTCCAACCGGGAAATCGAAGGTCTGGCCAGTGACGGCAGCCAGCTATATGCTCAATTGGCCCAAAGAGGGGAAATCCTTTCCGGCCGCTGGTAAAAAGCTGAAAAATAGCTTTGACAGGGGAAAGGCTTTCCAGTAAGATTGGTTAAAAATAAATTAAATGTTAACCGAGAGGTAAAAAAGATGAACTTTCAAGCAATGGTAAAAGAAAGCTGGCAATTCAAGTAGAGATTGTTTCGCGGGGCGATTCAATCTGTTTTGGCTTGAATTGTTGTCTGAATTGCTGAAAGTTGATTAGGGTCCGGATAGTAAATAAATCTATCCGGATTTTTCTTTTAGAGACAGAAAAGGAGGATCCAGGCGGATCCTCCTTTTTATTTTGCTTTCGGTTAGTTTGTTATTTTTTCTGTATTTACAGTACTTTAGTTTTTGCTTTAATTTGCTAGGTAACAGAATGAAAAAGGTGCTCGCGGCCTTTGCCGCAATTTATCTTTTTTGGCAGCCACCCTGTTTATCAATATCAAGCCGGCGGCCCAAAAGAGCAAGGAAGTCAGAGTGGGGGGCTTGACCTTGATGCGCCACCCGGCCCTGGACGAAATCTACCGGGGCTACAAGGCCGGCCTGGCCAAGTCGGGCTACAAGGTCAAGATCGACTACCAAAATGCCAACAATGACCAGAGCAATCTGAAGACCATGGCGTAAAAACTAGTCAACAGCCAGAACCAGGTCCTCTTCGGGATCACCACCCCGTCTTCCCAGGCCCTGGCCAACGCGACCAAAAAGAAGCCGATTGTCTTAGGGGCAGTGACTGACCCTAAGGGGGCGGGCCTGGTGAAGAACAACAAGCGTCCCGGAGGCAACATCACCGGGGTCAGCGACCGGGCGCCGATCAAGCAGCAGCTCAAGTTGATCCAGCGCTTTTTTGCCCAGGCTGAAGACCCTGGGGATCATCCACACCTCAAGCGACAGCTCAGCCGTGTCCGGCTACAAGCAGATCGTTAGCTACTGCAAGCAGATGGGGATCAACTACAAGGCCTACTCCATTTCCAACAGCAATGACTTAAACCAGGTCTCCCAGCAAATGCTGACCCAGGTCGACGCGGTGATCGTGCCGACTGACAACACGATTGCCGGGGCCATGCAGACCCTGGTCAAAAACGCCAACGCGGCTAAAAAGCCGGTCTTCCCGGCTGCCGGCACCATGGTTAAAGACGGGGGCCTGGCCACCTACAGCGTGGACCAGTACCAGCTGGGCTTGATCGGGGCCAAGATGACCGTCCAGATCTTGCAGGGCAAAAAGCCAGGCAACAATGGCCATCCACTATGTTGAACACGGCACCCCGTATCTTAACCTCAAGGAGGCTAAGAAGCTGGGCACCAAGGTTCCGGCCAGCTTCTTGAAAGAAGCCAAGTCTAAGGGAACCATCTACAAGTAGTTTACAAGGAGGATTTTTATGAATTTGATCGTATCGGCAATCGGCCAGGGCTTCTTATGGGGGCTCCTGGGCCTGGGCCTCTTTCTCAGCTTCAGAATCATGAATACGACGGATATGACCGTGGAAGGGACCTTCCCTTTAGGCGCGGCCGTTTCCGTCAGCCTGATCGTGCAAGGGACCAACCCCTTTTTAGCTACTTTGGCCGCCTTTGTGGCGGGGGTTTTAGCCGGCCTGGTCACGGCCCTTTTGATCACCAAGGGTAAGATTCCCAGCCTTTTAGCCGGGATTTTGACCATGACCGGGATCTACTCTATCGACTTGATGGTTATGGGCAAGTCTAATGTCTCCCTTTTAGGCAAAAAGACCATCTACTCCCTGGCCTTTTTGCAAAAACTGCCCCAGTACTTTGACAGCGTCGTTGCTGGCACCATCTTGATGGTTCTGGTCACCTGCGACTTGATCTGGTTCTTGTCAACCGACTTTGGCCAGGCCTTTATTGCCACGGGTGACAACCCGCAGATGGCCAAGTCTCAGGGGATCAGCCCCCAGCAGATGACGGTGGCGGGCCTCATGATTTCCAACGGCCTGGTTGGCCTCTGCGGGGCGGTGGTCGCCCAAAGCAACGGCTACGCAGATGTGAACATGGGGATGGGGACGAGGACGATCGTTATTGCCCTGGCCTCCATCATCATCAGTGAGGTCGTCTTCAGAAACCTTGGCCTAGCCAGCCGGTTATTCGCGGTCGGCCTGGGCAGCATTATCTACCGCCTGCTCTTATTGGCAGTTCTCCAGGTGGGCCTGTCTTCAAGCAACTTGAATTTGATTTCTTCACTAGTTCTGGCCGCCTGCATGATGCTGCCGCAAGTTGAAGAAAAACTCCGCCTCAAGCAGACATTTATGAAAGGACTTAAGCATGACTAGTCAAAATTTACTGGAACTGACCGATTTGGAAGTGGTCGTAGGCCGCGGTACTAGCGAGGAAAACAAGATCCTGGGCAAGCTCAGCTTAAAGATCAAGCCAGGGGACTTCATCTGCCTTCTAGGCGGCAACGGGGCCGGCAAGAGCACCCTGCTCAATGTTTTGGCCGGGGCCATCCAGCCGACCAGCGGAAAAATTCTCCACGCCGGCAAAGACATCAGCAAGGAAAGCGAGGTCAAGCGCAGCAGCTACATCGCCCGGGTCTTCCAGGATCCCAAGCTGGGGACGGCCCCTCGGATGACGGTGGCTGAAAATCTGCTTTTGGCCGCAAAAAGAGGGCAGAAGCGGGGGCTGAAGCTGCGCCGGCTGAAGGAAAACATTCCGGCCTTCAAAGAAGCCCTGGAGAAGGTCAACCCCGACCTGGCCGGCAAGCTGGACCTGCCGGTCGACCAGCTCTCAGGCGGCCAGCGGCAGGCCTTGAGCTTCGTCATGGCTACCTATAATAAGCCGGAGCTTCTGCTTTTAGACGAGCATACCGCGGCGCTTGACCCCAGATCCAGCCGCAAGCTGATGGAGGCAACCGATGAACAGATCCGGGCCAAGAAGATCACCGCGGTGATGATCACCCACCATATGGAAGACGCCTTAAAGTATGGCAACCGCCTTTTGGTTTTAGACCATGGTCAAATCAGCCACGACTATCAAGGCCAGGCCAAGCAGGACTTGACCCTGCAGGACTTAGCCGCCTTGTTTGACTGATAAAGAAGAGGCAGAGCAGACAGAAAAACAGAACGAAAAAAGACAAAATGAAAACCGCTGCTGAAAAGCAGCGGTTTTCATATGATGGACCCCCTGGGAGTCGAACCCAGATTTCAAGAACCGGAATCTTGCGTGCGATCCATTACACTAAGGGTCCCAATCACAGTTATTAATTATAGCAGAGATTCAGAGAATGGGAAGGGGTTAAAGCAAAAAAATTGTAAAAACTTGTAAAGTATCTGCGAAAAAGGTCAAGAAAGTTATAAAACAGGCTTTTTGCCCGGGCAGGGTTAGAAAAAAAACTTGCATACGGAGCGAATTCTGTTATACTAAGAGTGTCGAGAGAGAAATGGAGATTGAAGCGAAGTCTTGTTTCTCTTATTTTTTTAAGCAATGCGGGACAGAAAACGACAACAGCGTGGTCGGGGAGTGTCCCACTAGAAGGATGGTTATTTTGAACACGGATTTATCCCTGCTCGAACTGCTTGTTCCCGATGCTTTAAAGATCTTTCGACAAAGATATCTCATCCTTGAACAGATCAGCTTGCATGCTCCAATCGGCCGCCGGACGGTGGCCAGGCAGTTGGGGCTGAGCGAGCGGAACATCCGGACCGAAACTGATTACCTGCGTGACCAGGGTCTGATCGAAATCAAGAATTTCGGGATGTTCTTGACTGAAAAAGGAGAGAGTGTTGTAAAAGATGCAGCACCAATTGTTGATCGACTTTTTAATGCCAGCCAAGCAGAAGTATGGTTGGCCCAGGCTTTAGGAATAGATCGGACAATTATCGTAGCTGGCGACGCGGACCTGCAGAGCCGGGTTTATGACCTGGCTGGCGAAGAGCTGAATTCAGCCTTGAGTCTGCTCTTGCCCCTGGCAGACTGCATTGTCACCGTTATGGGCGGCAAGACAATAGCCAAAGTGGCCAAGAAGCTGAACCGCAGCTTGAGTGAGAACCGGAGCTTGATCTTCGTCCCTGGCAGAGGGGCATTGGGCGGCCGGGTCAACACGGAAAGCAACGCGGTCGTTCAAGAAATGGCCCGGGCGACCGGCGGCAGCTATGAATCCCTCTTTTTACCGGAACATGTTTCCAAGGACGCTTACCGGTCTTTGGTCCGGGATCCGGAAATCAGCGGGGTGTTGCAGGATATCTCCCAAAGCGATGTCGTGATTCACGGCATTGGCCTGGCTAGTGAAATGGCCAGGAGGCGGGGCTACGATTCAGTTGCCCTGGCACGTCTGCGGGAGAACAAGGCCGTCACCGAATGTTTTGGATGTTTCTTCGATGAAGAAGGCCACGTTGTCGAACGCATCAGACAGGTTGGATTGCAGTTCGAGAACCTAACGAATGTCCCGCATATTCTGGCAATTGCCCTTGGCACGAGAAAGGCCAAGGCCATCAAGGCCTATATGCGCAACGCTCCTCATCAAACCTGGCTGATTACTGATGAGGCAGCCGCAAATCAGATTTTAAACGGGTCATCCCGCTTAAAATAAAATGTTTTTTATAGTTCTTAAGGAGGACTTTTCGAATATGACAGTTAAGATTGGTATTAACGGTTTTGGCCGTATTGGTCGTTTGGCATTCCGTCGCATCATGGACTTGGGTGAAGAAACCAAGGACATCGAAGTTGTTGCTATCAACGACTTGACTACTCCAGCTATGTTGGCTCACCTGTTGAAGTATGACTCAACTCACGGCACTTTCGACCACGAAGTTTCAGCTACTGAAGACTCACTGGTTGTAGACGGCAAGAAGTACCGCGTATACGCTGAACCACAAGCTCAAAACATTCCGTGGGTTAAGAACGACGGCGTTGACTTCGTTCTTGAATGTACTGGTTTCTACACTAGCAAGGCTAAGTCACAAGCCCACCTTGACGCTGGTGCAAAGCGTGTCCTGATCTCAGCTCCAGCCGGCAACGACTTGAAGACTATCGTTTACTCAGTAAACCAAGACACTTTGACTGCTGACGACACTATCGTTTCAGCTGGCTCATGCACTACCAACTCACTTGCTCCAATGGCTAACGCTTTGAACAAGGAATTCGGTATCCAAGTTGGTACTATGACTACTATCCACGCTTACACTGCAACTCAAAAGGTTTTGGATGGTCCTGACAGAGGCAACAACTTCCGCAACGCCCGTGCCGCTGCTGAAAACATCATTCCTCACTCAACTGGTGCTGCTAAGGCCATCGGCCTGGTATTGCCAGAATTGAACGGCAAGCTTGATGGTCACGCACAACGTGTCCCAGTTAAGGACGGTTCAGAAACTGAACTTGTTACTATCTTGGACAAGAAGGTAACTGCTGAAGAAGTTAACGCAGCTATGAAGAAGTACGAAAGCCCATCATTTGCTTACAACGCAGACCAAATCGTTTCTACTGACGTATTGGGCATGACTGCTGGTTCAATCTTCGACCCAACTCAAACCCAAGTTATCACTGCAGGCGACAAGCAACTTGTTAAGACTGTTGCTTGGTACGACAACGAATACTCATTCACTTGCCAAATGGTTCGTACTTTGTTGCACTTTGCTACTCTTTAATTTAAAGTTTTCTAAATTGAATTAGTAGTGTGAAAGAAGGCGGAGGGAAATTTCTTCCTTCCGCCTTTTTTTGATGAATATTAGGAGATTTTTTCAATGGCTAAATTGATTGTTTCTGACGTAGACGTTAAGGACAAGAAGGTTTTGGTTCGCGTTGACTTCAACGTGCCGATTAAGGACGGCGTTATCGGCGACGACAACCGTATCGTGGCTGCTTTGCCAACTATCAAGTACATCATCGAAAACGGCGGCAAGGCTATCTTGCTTTCCCACCTTGGCCGGATCAAGAGCGATGAAGACAAGAAGAGCTTGAGCTTGGCTCCAGTTGCCAAACGTTTGGGCGAATTGCTTGAAAAGCCTGTAACTTTCGTACCTTCAAACGAAGGCAAGGAAGTTGAAGACGCCATCAACAACATGAAGGACGGCGACGTAGTTGTTTTGGAAAACACCCGTTTCCAAGACATCGACAACGACTTCGGCAAGCGTGAATCAAAGAACGACCCTAAGCTGGGCGAATACTGGGCATCATTGGGTGACGTTTTCGTAAACGACGCCTTCGGTACTGCTCACAGAAGCCACGCTTCAAACGTTGGTATCGCTACGGCCATGAAGGCTGCCGGCAAGCCAGCAGCTGCTGGTTTCCTGCTTGAAAAGGAAATCAAGTTCCTGGGCAACGCTGTTGCTAACCCAGTTCACCCATTCGTAACTATTCTTGGCGGGGCTAAGGTTTCTGACAAGATCGGCGTTATCACCAACTTGATTCCAAAGGCTGACCACATCATCATCGGTGGTGGTATGGCTTACACCTTCCTTAAGGCTCAAGGCCACAATATCGGCAAGTCCCTGGTTGAAGACGACAAGGTTGAATTTGCCAAGGAATTGTTGGAAAAGGCTGGCGACAAGCTGGTTCTGCCAATCGACAACGTAGCCGCAACTGAATTCAACAACGATGCTGCTTCAGAAGTTGTTGGCCAAGACATCCCAGACAACGAAATGGGCTTGGACATCGGTCCTAAGACTATTGAACTCTTCAAGAAGACTCTTGAAGGTGCCAAGACTGTTGTTTGGAACGGGCCAATGGGCGTCTTCGAAATGCCAAACTTCGCCAAGGGTACTTTGGAAGTTGGCCGTGCTTTGGCTGACTTGCCAGACGCTACTACTATTGTCGGCGGTGGTGACTCAACTGCTGCTGCTAAGCAATTGGGGATCGCTCCTAAGTTGACTCACATCTCAACTGGTGGTGGTGCATCTCTTGAATACCTTGAAGGTAAGGAATTGCCAGGTATCGCTTGCGTTTCAGACAAGTAGTTTAGGAGGATTTTTCAAATGTCACGTACCCCAATTATTGCTGGTAACTGGAAGCTGAACATGAACCCAAAGGAAACTGTTGAGTTCGTAAACGCTGTTAAGGACCAATTGCCAGACCCATCAAAGGTTGAATCAGTGATTTGTGCACCAGCAGTTGACTTGGACGCCTTGCTGAAGGCTGCCGAAGGCTCAAACCTGCACGTCGGTGCAGAAAACTGCTACTGGGAAAACTCCGGTGCCTTCACTGGTGAAACTTCTCCAGCAGTTTTGAAGGAAATGGGCGTGCAATACGTCATCATCGGCCACTCAGAACGCCGTGACTACTTCCACGAAACTGACGAAGACATCAACAAGAAGGCCAAGGCTATCTTTGCCAACGGCTTGACTCCAATCCTTTGCTGCGGTGAATCACTGGAAACCCGGGAAGCCGGCAAGGAAAACGAATGGGTTGTCAGCCAAATCAAGGCTGGCCTGGAAGGCTTGACTAGTGAACAAGTTTCCAAGCTGGTGATCGCTTACGAACCAATCTGGGCGATCGGCACTGGCAAGACTGCTTCAAGCGACCAAGCTGAAGAAATGTGCAAGACTATCCGGGAAACTGTTAAGGACTTGTACAACGAAGAAACTGCTGAAAACGTCCGCATCCAATACGGCGGTTCAGTAAAGCCAGCCAACGTCAAGGAATTGATGGCTAAGCCAAACATCGACGGTGGCTTGGTTGGTGGTGCATCATTGGTACCAGACTCATACCTGGCTTTGGTAAACTACCAAGACTAATTTTTGACTGTCATATCAAAAAACGCTCCTTCGGGAGCGTTTTTTCTTTGTCTGCTATTCGATACTTTTCTGTCTTCTTTTGTACTTTTCGCTTTTTTGCTTTTTAAAACTATTTTCCCAAAAATCTCAGCCTATTTGCTGATAACGCTTACAAAGGTGGTATTATATAAGTGTAAACAAAAGAAAAGAGTTAATATTCAAGGAGGATACTCCACTAGAAAGTTTAGCTTAAATTCGCAGAGCATAACTAAATTAGGCTCGGGAAAGGACTGAGACCACCATAAAATGCAGTCGACAATTGAAGATAGAAGAAGTTCCTAACGGTTAAGTACGTGAGTAGATTAACTGTTAGGAACTTTTTGTTTGCCCGGAAAGGGCGCTTAATTGTCTTTTTTCTCCTGACTATAGTAACATGAATTGTAGGAAAACAATTTATATAGAAAAATAACAAGGAAAAGGAGAAAAAAGACGAAATGATCCGTAAGGCAAGAAAAAGCGACTTTGAAGCGGTTTACCCGATTTTAAACCAGATTTTTGACGGATACCATCAACCGCCTACAGAAGAGCCAGTTCTACGACTTGATACGGCTGGGTTTCATCTCGGAAAACTACCGTTATTCCTACAACCGGATCTGGGTCGATACTGACGAAAACGACCGGGTCTGGGGGATGATCTGCATGTACCCGGACAAGGCCCAGGGCATTATTGACGTGGTGCTCAGAAAAGAATGGCCAAGGTCGGCCTGCCAATGACCACCGATATCTTTACCGATAAGGAAGCCCAGAAGGGGGAATGGTATATCGATGCCTTAGCTGTCTCTCCGCGGGACTGGGGGAAGGGGATTGCCAGCCGCTTAATGGAACTGGCCCCGAAACTGGCCAAGAAGCACGGCTACAAGAAGGTCAGTTTAAACGTGGATCTAGAAAAAACTCGCGCTCAGCAATTATACTTGCGCAAGGGTTTCAAAACGACTAATTCAATGACTATTGGCGACCGCGTTTACGACCATATGGTAAAAGAAGTTTAAAGAAGCTGGCCGTGCTGGTCGGCCGCTGGTTGAGATTTGGAAAAAGGTCCGGCAGGTTGAGCGGGGTGACGTGCCACTGGGTGAAAAGGACCGCGATCAGCAGAATAAAGGGGGTATCTTCCTCCCGGCTGATCTGGCAGGTCAAGGTCACCCCCTTGTCGGCTACTGCCGTGTCAACGGAAGCCACCTTCTTAAAACCGTCCCGGAAGTAATAGCTGCCCTGCTTGATGCTGCCATTGACCCAGTAGTTGAGCCGGGTAATGTAGAACAAGTTGGTCAGGGGGCTGTTGACCTTCTTGACGTGGACCAGGGAGTGGTGAACCACATCCAGGGTGAAAGATGCGATCAAGCCGGTGCCATCGCTGAACAGGCGGCCGATCTCATTACCGCTGGTGTCCAGCAGGTAAAGGGTGTGGTTGGGATTGTCCAGCCGGCCGCGGATGGAGCCAAAGGGCTTGCCCTCCTCATCGGTGATTGGAATCTGGCCCGTTCGGCCTTCCTGGGTCAGGTAAAGGGTGTAAATCATTGGTCCTGCTCTTTTTGATTGTCGGCAATGATCTTGTCGATAGCCCAGGCTACCCCGTCTTCATTGTTGCTCTTGGTGACGAAGCTGGCAATCGTCTTGATCTGCGGAACGGCATTGCCCATGGCCACGCCGGTGCCGGCAGCCTGGATCATGCTTTCATCGTTCAGGTTGTCGCCGATGGCCGCGATTTCTTCGCGCTTGATGCCCTTGGCCGCCGCGTAGTCCAGCAGGGACTGGCCCTTTTGGGCGTCGGCGGCGTTGATTTCGATATTGTCGGCCGCGCTTGAAGTGATGGAAAGCTTGTCGATCTCTTCAATTTTCTTGATGACGTCGGTGAAGGCGTATTGGCCCCGGGAGTCAAAGACCAAGATCTTCATTACTTCCGTGCCAGGTTCGTCCATCAAGTCCTCATAGCTTGGCACCTGCTGGATGCTGACGATGGCCGGCTTGCTGGCTGAAACCAAAACAGCCTCCTTGAAGGTCAGCATTGGGTTCAGTTCCACCATTAAGTGAGCCACGTTGGTAATCCGCTGGCTCAAGTCTTCTGAGTAGACGTGGTTGCTGGTAACCAGTTCGAAGTAAAAGCCTTCCTTCTTGAGCAGGCGGCAGATCTTCTTGGCCGTTTCCAGCTTCAAGGGATTCTTGACGATCAAGTTGCCGGCCGTGTCAAATACCAGGCCCCCGTTTAAGTTGATAAAGCTACAGTCGATCCCGTATTCTTTAAGCATTGGCTGGGATTCATGGGGTGCCCGGCCGCTGGCCACCATGAATTCGATGCCGTTTTCTTGGGCGCGTTTAATGGCCTGAACATTGGCGTCAGAAATTTCCATAGAAGAGTTCAGCAGGGTCCCGTCCAAGTCACAGGTGATCAGTTTAATCATGTTATTTCCTCCTTGTTGTTATCGATTTCATAATAACATAAAGGAGGAAGTTTGATTACTGCAAAGTGTTTCTTTATTTGAAAAAAGTTGTCGTGAATTATTTCACTAGTCCCTTTAAATCAAGAGGCAATCATGGTAAGATTGACTAAGGTGAATTACAGATGAAACATTTTATTGGAAATGATTGGGACCATGTGCTTGCCCCGGTTTTTGAAAGTGGTGAATATCACAAGCTGCATGTTTTTTTGAAAAAAGAATACCAGACCAGGCAGATCTACCCGGACATGTACCATATCTTTACTGCCTTCAAGCTGACCCCTTTTAAAGACACCAAGGTTGTCATTTTGGGTCAGGACCCCTACCACAATCCCAGCCAGGCTAACGGCATGAGTTTTTCTGTCATGCCGGGCACGCCCCTGCCACCGTCCTTGCGCAATATCTATAAGGAGCTCTATGACGATGTTGGGGCCCAGCCGGTCAACCACGGCTACCTTAAACGCTGGGCCGACCAGGGCGTTCTCTTGCTCAACGCCGTTTTGACCGTGCCATATGGCCAGGCTAACGGCCACCAGGGCAAGGGCTGGGAAATGGTGACAGACGCCGCTATTAAGGCCTTGAGCGAGCGGGGGCAGGTAGTCTTTATCCTGTGGGGCCGCTTTGCCCAAAATAAGATACCCCTGATCGACCAGGACAAGAATGTCATTATCAAGTCAGCCCACCCGAGTCCTTTTTCGGCCAACCGCGGCTTCTTTGGCTCCCGGCCCTTTTCAAGATGCAACGCGGCCTTAAAGGAGTTTGGCCGGGCTCCGGTCGACTGGCAATTGCCGCCTAACCCGGAAGCATGATTTTTTTGAGGAGATTATTGATGGAAGTTTTTGAACAATTAAAGCAATTGATTAAGCAAAAAGACAAGCAGCGGATCGTTTTCCCGGAAGGGGAGGACCCGCGGATCCTGACGGCGGTCAGCCGCTTAAAGCAAGATGACCTGGTTGAACCGATCGTCCTGGGGCAAAAGGACCAGGTCCTGGCTTTGGCGGAAAAAGCTGGCTTGGACATGACCGGGATCGAAATCGTGGACTACCAAAACAGCCCGGACTTTGGCGAGATGGTGGAAAAGTTCCACGAACGGATGGCCGGGGGCAAGCACTTCCAGACCATGGAAGAAGCGGAAGCTGCCTTGCGCGACGCCAACTTCTACGGGACCATGCTGGTTTACACCGGCCAGGCCGACGGGATGGTGTCCGGGGCGGCTCACTCAACGGCCGACACGGTCCGGCCAGCCCTCTTCATTTTGAAGACCAAGCCGGGGATGCACCGGATTTCCGGTTCCTTCATCATGGAAAGAGGGGAAGAAAAGTATGTCTTTGCTGACTGCGCGATTTCCATCGACCCGACCAGCGACCAGCTGGTTGAATTCGCGGCCCAGTCAGCTGCTACGGCCAAGATGATCGGGATTGACCCCAAGGTGGCCTTCCTCAGCTTCTCAACCCACGGCTCAGCCAAGGGCCCGCAGGTAGACAAGGTGGCAGAAGCGGCCAAGCTGTTCAAGGAAAAGTACCCGGACATCCCGGCAGACGGCGATTTGCAGTTTGACGCGGCCTTCGTGCCGGCAGTTGCTGAACTTAAGGCACCTGGTTCAGCCGTTGGCGGCAGGGCTAATGTCTTTATCTTCCCGGAACTGCAGTCAGGCAACATTGCCTACAAGATTACCCAGCGCCTGGGCAACTTTACGGCCATCGGGCCGGTTTTGCAGGGGATTGCCAAGCCGGTCAACGACCTCTCCCGGGGCTGCAGCGCTGATGACGTCTACAAGATCGGGATTTTGACGGCGGCTCAAGCCGTTATGGAAGGGTAGAAAGAAAGCGATGACAGAATTAGCAATCAATTCCGCTTCTGACATGCAGGCCTTTGGCGCCGCCTTGGCCCAAAGCGCCCAGCCCCATGACCTTTTGCTCTTAAAAGGGGACCTGGGGGCCGGCAAGACCACGCTGACCCAGGGCTTCGGCCGGGCTCTGGGGATTAAGCGGCCAGTCAAGAGCCCGACCTTTACCCTGGTCCGGGAATACCGGGAAGGGAAGCTGCCCCTTTTTCACATGGACTTTTACCGGCTGGAAGGCGATGACCTGGCTTCAATCGACTTAAATGATTACCTGGCTGAAGAAGGCGTGGTCATCATCGAATGGCCCCAGGTGATCCAGGCTGACCTGCCCAGTAACTTTTTAGAGCTGGTTTTGACCCGGGTGGACGATTCCTGGGATTCAACCAAGCGCTTGCTTGAGCTCGTCCCGCATGGGCAAAGAGCAGCTGCCTGGGCAGAAAACGCCTGCCGCCTCTACCAGGAAAAGCAGTAAAGCAAAAACAAAAGCAGAAGTAAAAGTAAAAACAAAAGAAAAATGGATCAGCTTGCTGCTGATCCATTTTTTGCCTAGACTTGGTAGACAAACTTTTTCAAAAGCTCGCTGCCCCGCTTCTCCTCTTCTTTTAAGAGGATACCGGCGCAGGCTTCGCTGTCGCTTAAGGCATTGTGGTGGTGCCAAAGCTCCACGCCCAAAAGGTCAGAGACAGTGTTGAGCTGGTAGTTATCCAGGCCCGGCTCCAATTCCCGGCTGACCTTGAGGCTGTCTAAAACCAGGTAGTGGGGCTCGGCAATCCCGTAGCGGGCCAGGGACTGCTTCATTACATTGCAGTCAAAGCGGGCATTGTGGGCCGCCACCAGCATCCCCGGCTGAAAAAGGGGCTGGATCTTGGGCCAGACCTCGGCCATGGTCGGGGCTCCCGCCACGTCTTCAGCCGTAATGTCGTGGACCTTGACCTGCTGGGCGTCAAAAGCCATCTGGGGGTTGATGACCGTGTAAAAGCGGTCGATAATCTTGCTCTCCCGCACTAAAACCAAGGCCAAAGAGCAGGCGCTGGCCGGGTGCTGGTTGGCAGTTTCAAAGTCCATGGCGACGAAATTCATCATAAGCAAAAGCCTCCGTTTGCGCGTAAGTCAAATTAAGCCAAGCAAACTTGATCTAAGCTAGTATAACACAGCGTGAATGCGGTAAAATATCAAAAGGAAGATTTAGAGGAGGCAATTTTAATTGAAGCTGTATGACTTAAAAGCGCAAGGACTTGATTTGCAAGAAAACATTCCTTTGAGCCGCTATACTTTTACCCAAACCGGGGGACCGGCAGAATACCTGGCTTTCCCCAAGACTTTGGCAGAATTGAAAGAACTCTTGGCCGCGGCCAAGGAGGACCAGCTGCCAATTACGGTGATCGGCAACGCGTCCAACTTGATTATCCGCGACAAGGGGATCAAGGGCCTGGTGATCATTTTAACGGAAATGAAAGAGATCAAGGTTGAAGCTGACAAGGTCCACGCCCAAGCCGGGGCTAGAATCATCGATACTTCCTTCGCGGCTGGGGAAGCCGGCCTGTCCGGCCTGGAATTTGCCGCGGGCATCCCCGGCTCAGTCGGCGGGGCGGTCTTCATGAATGCCGGGGCTTACGGCGGTGAAACTAAAGACTGCCTGGAAAGCGCCACGGTCGTCACCAGAGACGGTGAGGTCAAGACCTACACGAACGCTGAGCTGCATTTTTCCTACCGGCATTCCCTTTTGCAGGAAAATGACGAGATCGTCATCGCGGCAACTTTTGCCTTAAAGGCCGGTGATAAGGCAACTATTTTGGACCAGATGAACTACTTGAACGCGCTCAGAAGCTACAAGCAGCCCCTGGAATACCCGTCCTGCGGTTCAGTCTTCAAGCGGCCGACCGGCCACTTTGTCGGCCCGATGCTCATCAAGGCCGGCCTGCAGGGCAAGCAGATCGGCGGGGCCCAGGTGTCAACCAAGCACGCAGGCTTTATTGTCAACAAGGGCGGGGCCACGGCAACCGACTACCTCAATTTGATCCACTATATCCAAAAGACGATCAAGGAAAAGGATGGTATTGCTTTGCAGACGGAAGTCCGCATAATTGGCGAAGAATAATGGCTTAGGATTAAGAGAAAAAGAAAAATGGGAACGGCAAATGGAAATTATTAAGTTAGATCACATCACCAAGCAGTATGATGATGGCTTTGTAGCCTTGAAGGACATCAACCTTGAGCTTGAGTCCGGCAAGTTTTACTCTTTGCTGGGGCCATCAGGCTCGGGTAAAACAACGATTTTGCGGATCATTGCCGGCTTTACGGAAGCGTCAGCTGGCAAGGTTTATTTTGACGGTCAGGACATCACCAATCTTGACGCCTCAAAACGGCATATCAATACGGTTTTTCAGAATTACGCTCTTTTTCCGCACTTGAATGTCTATGAAAATGTTGCTTTTGCCTTGAAGCTGCGCCAGCGGCCGGAAAGCGAAATCCGGGAAAAGGTCAAGGATGCCCTCCACACCGTCCGCCTGGACGGTTACGCCAACCGGGAAATTTCCGAACTCTCCGGGGGCCAGCAGCAGCGGGTGGCGATCGCCCGGGCGATCATCAATGAACCTAAGGTGCTGCTTTTGGATGAATGCCTGTCAGCTTTGGACAAGCGCCTGCGAAAAGAAATGCAGTTTGAACTCCGGGCCATCCAGAAGAAGCTGGGCATCACCTTTATTTTTGTCACCCACGATCAGGAAGAAGCCCTGGCCATGAGTGACGAAATTTTCGTCTTAAACGACGGGGAGATCAAGCAGAGCGGGTCACCGGTAGACATTTACGATGAGCCGGTCAACGACTTCGTTGCCCGCTTTATCGGGGACTCCAACATTTTATCCGGCAGGATGATCCGGGACTTTGCCGTGGAATTTGCCGGCAAGGACTTTGAATGTGCCGACGCCGGGATCACCCCGGGGGAAAAAGTCGAAGTCGTTTTGCGGCCAGAGGATTTGGATATTACGGCTCCAGCTGCTGGCAAGCTCCTGGTAACGGTGCAGAGCCAGCTTTTCCTGGGCGACCACTTTGAAATCAAGGCCATCGGCCAGGACGGCTTTGAATGGCTGATTCATTCCACCAACGGGGTCCAGATCGGCCAGGAAGTCGGCATCTTCTTTGACCCGGAAGACATCCACGTCATGCGGCTAGGCGAAACCGAAGAAGAATTCGACGCCCGCCTGGAAACTTATGAAGGTGAGGACTAGCCATGAAAAAGAACCGGCTTTTATTTCTTTTGCCTTACCTGCTGTGGATCGGCCTCTTCGTCATCGCCCCCCTGGTCTTGATTCTGGGCTATTCACTGACTGATGCCCACAGTCATCTGACCCTGCAAAACTTCGCCGCCTTTTTCTCGGGCGGCACCTTTTTGCGGATGATGGCCAATTCCTTTTGGTATGCCCTCTTGATCACCTTTTTCTGCCTGCTGGTCTCTTATCCGGCAGCCCTGGCTTTGACCAGGCTGAAAAACCAGCAGTTCTGGCTGATGCTGATCATTTTGCCGACCTGGATCAACCTTTTGCTTAAGGCTTACGCCTTCATTGGGATTTTTTCCCGGAGCGGGATGGTCAACCAGTTCCTGGGCCTCTTCGGCATCGGCCCGGTTGGGATCATGTTTACCGACTTCGCCTTTATTTTCGTGGCGATTTATATCGAAATTCCCTTCATGGTCATGCCCATCTACAACTCGCTGAAGGAAATTGACCCGGCTCTTTTAAGTGCCAGCTCAGACCTGGGGGCCAGCTTCTGGCAGACCTTCCGCTACGTGATCTGGCCCTTGTCCTGGCCAGGCGTTGAATCGGGCATCCAGGCTATCTTCATCCCGTCTCTGTCTCTCTTCATGTTGACCCGCTTGATCGGGGGCAACCGGGTGATCACCCTGGGGACGGCGGTTGAAGAGTATTTCTTGACGACGATGAACTGGAATATGGGGGCAACGATCGGGGTTATCCTGATCGCCTTGATGTCGATTGTAATGCTGCTGACTTCACGCAAGCAGCACAAGAAGGAATTTGAATTATGAAAAAGACCATTTGGGGCAGGGTTTACTTTGGCCTGGTGCTGCTGATCATCTACCTGCCAATTTTCTACCTGATCTACTTTTCTTTCTCCAGCGGCTCCAGCATGGACCACTTCCGCCATTTTACCTGGGAGCACTACCAGACCTTGTTTGCTGACAAGCGCCTTTTGGCTATCTTGCTGGAGACGATCATGCTGGCTCTTTTGTCCAGCCTGGCGGCAACCGTCCTGGGGACTTTTGGGGCCATTGCCATCCAGCGCAGTAAGGAGGCCTACCGCAAGATCCTGCTCTCTTTTAACAATATCTTGATCGTGTCGCCCGACGTTATTATCGGGGCCAGCTTCTTGATTCTTTTTACCGCCCTGGGCTTCAGCCTGGGCTTTGCCTCCGTCTTGCTTAGCCACATCGCCTTTTCAGTGCCGATCGTGGTCTTGATGGTCCTGCCTAAGCTGAAGGAAATGGACAACTCCCTGATCGACGCGGCCCGGGACCTGGGGGCTAACAACTACCAGGTCTTCAGCCAGGTCCTCCTGCCGGCCCTTACGCCGGGGATCCTGTCAGGCTTCTTCATGGCCCTAACTTACTCTTTGGACGACTTCGCGGTTACCTTCTTCGTGACCGGGAACGGCTTCACCACCTTGTCCGTTGAGATCTATTCCCGGGCCCGGCAGGGGATCGACCTGGAAGTGAATGCTTTAAGCACAATCATCTTCTTCTTTGTCCTCCTTTTGGTCGGGGTCTACTACTTCTTGACCAAGCGGCAGGGCAAGAAGGCTAATAGGCTGGGAGGGCTTCTGCGATGAAAAAAATTCTCTCCGCGGCCCTGGCCATCCTTTTGGTCAGCTTGGGCCTTTACCTGGGCGCCCAGCAGCTGGACAGCTCCAGCGGCGGCTCTGCCTCAAGTAAGAAAGACTTGATCATTTACAACTGGGGGGACTATATCGACCCGGATTTGATTACCAAGTTTGAAAAGCAGACGGGCTACCATGTCATCTATGAGACTTTTGACTCAAACGAAGCCATGTATACTAAGATCAAGCAGGGCGGGACAGCCTATGATTTAGCCGTGCCGTCGGATTACATGATCACCAAGCTGCGCCGGGACAATCTTTTGGATAAGATCGATACCAGCCGCTTGAGTAATTTCAAGTACATCGACAAGGAATTTTTGCACAAGTCCTTTGATGAGAAAAACGAGTACTCAGTGCCTTACTTCTGGGGAACCCTGGGGATTGTCTACAACGACCGCTATGTCAAAAAGGGCGAGATCAAGAGCTGGAATGACCTCTGGAAGAAAAAGTACCAAGGGCAGATCCTGCTGGTTGACTCAGCCCGCGATATCATGGGCATGTCCCTGGTTTCCATGGGCTACTCCATGAACGACACCAACTCTGCCCACCTTAAGGCCGCCAAGGCCAAGCTAGACAAGATCGGCAAGAACGTCAAGGCAATCGTGGCTGACGAGCTGAAGATGTACATGGTGCAAAATGAGGCCTGGATCGGGGTTACCTATTCCGGGGAAGCCGCGATGATGATGGACCAGGACTCCCACATCCATTACGTGGTGCCGGCCCAAGGGTCCAACTTGTGGTTTGACAATATCGTTATCCCGAAGACTTGCAAGAACAAGGAAGCCGCTTATAAGTTCATCAACTTCATGCTAGAGCCCAAGAACGCGGCCCAAAACGCCGAATACATCGGCTACTCGACCCCGAATACCGCGGCGCAAAAGCTCCTGCCTAAGTCCGTCCGGGAAGACAAGCAGTTTTACCCGCCAATGTCGACGGTCAAGAATTTGGAAGTTTATCGGGATCTGCCAAGCAGCAAGGTGCAGGAATACAATGACCTCTTCCTGGAGTTTAAGATGTATGCCCGTAACTAAGCTGACAGAAAATTTTAGAAAGGGAAAATTTCATGCAGTTTGATTTTGCAAGTCTGTGGACCTGGCATACCTTGTCGGTGGTCCTGGACGTCTTGATCACCTGGTATTTCATCTACCACCTGACCCATTTGATCAAGGGGACCAAGGCTGTCCAGCTGGCCAACGGGATCATTTTGATCATGGTGGCCCGGGTCTTGGCCGGCTGGGCCCAGCTGACGACCGTTACTTTTATTTTGGACCAGATCGTTTCCTGGTCAGTCATCGGGATTATCGTCATCTTCCAGCCGGAAATCCGCCGGGGGCTGGAGCGCCTGGGCCGGGTCTCCTTGTTTTCTGATTCAGAAAACAGCAAGCGCGAGCAGCAGGAAAAGCTGGTCAAGGAGCTGGACAAGGCGATCCAATACATGTCCAAGCGCCGGATCGGGGCCTTGATTACTTTGGAACAAAAGACCGGTCTGGAAGAATACGTGGAAACCGGGATCAAGCTCGATGCCCTGGTTACCGGGGAATTGCTGATCAATATCTTCATCCCCAACACTCCTTTGCACGACGGGGCGGTCATCATCAAGAACAACCGGGTCCAGGTGGCTTCCGCCTACCTGCCCCTGTCTGACAATGCCATGATTCCCAAGAGCCTGGGGACCAGACACCGGGCAGCCGTCGGGATCTCTGAAGTAACCGACGCCATCACCGTGGTCGTTTCTGAAGAAACGGGCGGGGTGACTATCACCAGAAACGGCCAGTTCATGGTTGACCTCAGCCAGCAGGAATACCTCAAGTACTTGCGGGCTGAACTGGTCACTGAAGAAAAGAAGAAGCAGCCATGGCCAATCCGCCTGGCCCGGGGCATCTGGAACTGGGGGGATAAATAATGCACAAATTGTTTGAGCAAAAATGGTTCTACAAGCTTTTTTCCCTGCTCTTAGCCATCGTCTTGGTTGCCTTCGTTGATAACACCCAGGTTAATACAAACAACCAGACCAAGGTGCAAGAAACGGCAAGCACTGAGCAGAGCTTGAAGATGGCCTTGCAAGTGTCAGTGGACACTGACAAGTACTACGTCACCGGCTACCCATCCAAGGTCAAGGTGACTCTAGAAGGACCGAATGCCCTGGTTACTTCCGCCGTTAACACCCAGAACTTCCGGGTCTACATTGACTTGAGCAAGCAGGGTGTTGGAAGCCACCAGGTGCCAATTAAGGTTAGCGGCCTACCCAACCAGGTTTCCTGTAAACTTTCGCAGAAAAGCGTGAAAGTCAACATCCAAAAGCGAAAGTCCCGCACCTTGCCGGTCCAAATAGGTTATAATAAGAATGCTGTTGCTCAAGGCTATGACATCGGCATGCCGACAGTCAGCCCGGAGACGGTTGAAGTCACCGGGGCCCAGAGCGAAGTAAAAGCGATCGACCGCGTGCAGGCCCAGCTAGTCGTGCCAAACGGCAGCACCGAGACAGTGCGGCGGAACGTTCTTCTAGCCGCATACGATGCCAAGGGCCACCAGCTCAACGTGGTGATCAGTCCGGCAACGGCCCGGGTAACCCTGCCTTTGTCGGTCTCTAAGAAGAAGGTTAAACTGAAGCTGAATGCCAGCCATGGCTCAAGCAAGAAAGTTTACTCCTTGACTGCCAAAGAGGAAAAAGTTACCCTCTATGGGCAAAAAGGAAGCCTTGAAAAAGATCAGTTCCCTGACTTTGGATGTTGATCTGACTGATATCAAGTCTTCGGTCACCAAGTCCTTCCGCCTGCCAGTTCCAAGCGGGGTTGCCTGGATTTCACCAGGCAGCGTGGATGTCCAGATCGAAGTCAGCGATTCGAACAACTAGAAAAAAAGAAAGGTTCTTTGCAACATGCTTAAATATTTTGGTACTGATGGTGTCCGCGGTGAAGCGAACAAGGTTTTGACCCCGGAAATGGCCTTTAAACTGGGCCGGATGGGCGGCTACGTGCTGACCAAGGAAAAGGAAGACGGCGGCCAGGCCCGGGTTCTGGTTTCAAGAGACACCCGGATTTCTGGTGAAATGCTGGAACACGCCTTGATTTCAGGCCTTTTGTCAGTCGGCATTGAAGTTTTGGAATGCGGGGTCATGACCACACCTGGCCTGTCCTACCTGGTCCAGGCCCAAGGGGCAGATGCCGGCGTGCAGATTTCTGCTTCCCACAACCCGGTTGAAGACAACGGGATCAAGTTCTTTGGCAGCAATGGCTTGAAGCTGTCTGACGCCAAGGAAGAAGAAATCGAAGAGCTGATCGACACTAAGCAGGACATGCTGCCGCGGCCATCAGCAGAGGGCCTGGGCACGGTAACCGACTTCCGCGATGGCAGCAACAAGTACATCCAATTCTTGGAAAACACTATTCCGGAAGACTTGAGCGGGATCAAAGTGGTAATCGACGGGGCTAACGGGGCAGCCAGCGCCTTCATCTCCCGTTTGTTTGCCGACCTGGATGTTGACTTTACCACTATTTCAACCCACCTGAACGGGCTCAACATCAACGACCACTGCGGGGCCACCCACACTGCCCGCCTGCAAGAAGAAGTTGTCAAGCAAGGTGCCCAACTGGGCCTGGCCTTTGACGGGGATGCCGACCGCTGCATCGCGGTTGACGAAAACGGCAATGAAGTCGACGGCGACCACATCATGTACGTGATCGGCTCCTACCTGGCTGACCATGGCCGCTTGAAGAAGGACACGATCGTGACGACCGTCATGAGTAATCTGGGCTTCACCAAGGCTCTTGAGCGCCGGGGCATCAAGAATGTCCGCACCCAAGTCGGTGACCGCTACGTATCTGAAGAAATGCGGGCCAACGGCTACAGCCTGGGCGGGGAACAATCCGGCCACGTGATCATCAGCGACTACCACAACACTGGTGACGGGATGCTGACCGGGCTCCACCTGATGCTGGTCATGAAGAAGACTGGCAAGTCTTTAACTGAACTTTTGGCTGACTTCAAGGAATACCCGCAAGTTTTGGTCAACGTTCCAGTTAAGGACAAGAACAGCTGGAAGAACCACCAGGCAGTAGTTGACGCGATTGACTCCGTTGAAAAGGACATGGCTGGCAACGGCCGGGTCCTGGTCCGTCCTTCAGGTACCCAGGAGCTGCTCCGGGTTATGGCTGAAGGCCCGACCCAGGAAATCACCCAGGAATACGTTGACCGGATCGTCAAGGTCGTTACGACGGAAATGGGCGAATAAAAAAGCAAGTTAAAAAGCTGTAAAGCTGAGAAGAAGGAAAGTTCAAATTGAGCTTTCCTTTTCTTTTGGCTGATTTTTTCCTTTTTTTGCGGAAAAAATTTTGCAATAATTAAGTAAGAACAGGCTTTGGACTACATAGGAGGAAAATATGGCGATTAAAATGCTGGCCATCGACTTAGATGGCACCCTGCTAACTGACAGCAAGACGATTCTGCCCGGGACCTACAAGGCCCTGCAGGAAGCGAAAGCAGCCGGGATCAAGATTGTGCTGACTTCTGGCCGGCCCTTGTCGGGTATCAAGGGCTACGCGGAAGAATTAGGCTTAAGCGGCAGTGAAGAGTACGCGATCCTCTTCAACGGGGCGGTAGTGCAGAACTTAGACGGCCGGGTCCTGATCAGTCATGATCTGGACTTTGGCGACTTCAACACCCTCCTGCATATGCAGCGGCTCAGCGACGTCAACCTGGACTTTGAAACCCCGGACCGTTTTTACACTTTGGACAAGAGGATTTCCATCCGCCTGCAGATTGACGGGGCGGAAACCAAGAACCAGCTCTGGATTCAAGACAGAAGCGACTTCAAGAAGGACTTTACCTTTGCCAAGGCAGTCTACCAGTGCGATGACCCGGACCAGGTCGACCGCCTCTGGAACCGGCTGCCGGATTGGTTCTTCCAGTCCTACGCGGTTGTCCGCAGCTGGCCGGAAGTCGTTGAAGTCGGGTCACTGGCCGCTTCAAAGGGCTACGCGGTTAGCGAACTGGCCTCAAGACTGGGCCTGTCGAACAGTGAAGTCATGATCTTCGGTGACCAGGGCAATGACCGGTCCATGTTTGAAATCCTTGACTTCAAGCGGGTGGCCATGGGCAATGCCATCGACGAGATCAAGGACCTGGCTGACTACGTCACCGACACCAACGAGCGCGACGGGATCGCCAAGGCCCTGCGGAAATTAGTTCTATAAGCGAAGAGGACAGATCTGCGGATTTGCCTTTTTTCTTTTTCAGGAGTAAAAATGACTACGGCAGAAATTGAAGAAAAAATCACCGGAATTTTTGAGGAGGCAATCCGGCAAAAGACCGTAAATGGCATCTCTTATGCCCTGGTTGACCAGGGAAGGGGCAGCCGGCACTACCTGGGCCAGGCTGAGCCGGGGCAATTCTATGACCTGGCCTCCTTGACCAAGGTGGTGGGGACGGCCAGCGGGATTTTTAAGGAAATGGCTGCAGGGAAAATCAGCTTGAAGGACCGGGTGGGAGACTTTTTCCCGGCGGCTTGTTCAGCTGTTACAGTAAGGGACCTGCTCCTGCACACCAGCGGCCTGCCGGCGGACTTGGATGATGTCTGGCAATAACAAAGCCCGGGGGAAGTCTGGGAGGCGGTTTTAGCCACTAAGCCCCTTTATTTACCTGGCCAGGAGTCAATCTATTCCGACCTCAACTTCATTATCTTGGGCAAAATTTTAGAGCAGGTCAGCGGGCAGGACTTGAGCATCTTTTTGCGGGAGGAGATTTTTGCCCCTTTGGGGATGCGGGAGACTGGTTTCTTGCTTAAGGTCAAAAGGGACAACTTTGTCAAAACAGAAATAACTAAGGAGAGAGGGCAGGTCTGGGGGAACGTCCATGACGAAACCGCCTGGCAAATGGGCGGATTGGCCGGCCATGCCGGTCTCTTTTCCACTCTAGATGACCTGGCCCACTTCAGCTCTTTTTACCTAACGACAGCTAGTCCGCTTGTGGCTGGCCTGTTTGACTATGACTGCTTTGAACGGACCCTGGCCTGGATCCGCTGGCAAAAGGGCCGCCGCTTTCTCTGGCATAGCGGCTTTACCGGTCCGGGATTAGGCCTGGACCTTGAAAATGGGCGCGCCCTGGTCATTTTGGCCAGCTCCGTTTACCCCAAGCGGGGTAACGAGGCCTGGCTGCTGGCCCGCCGGCAGGCGGCCAATACTTTTTTCGGCGGCGGCTACCGGGAAAAAAAACAAGAATATATTGTTGACAAATGTAAACCATACTGTAAAATAGTCTTTGCAAAGGTTACAGATGTAAACGAGGAGGAAGGAAATGAACGAAGATTGCCGGATTTCAGACGCGGAATGGCAGGTTATGCGGGTCGTCTGGACCCTGGGCCAGGCAAATAGCAGCGAGATTATTGAGCAATTAGTGGCAAAATGTGCCTGGAGCCCGTCAACTGTCAAGACCCTGCTGCGGCGCTTGGAAAAGAAGGGCTTTTTACTGGTTGACCGGCAAGTTCACCGCTTCGTATACCGGGCGGCTAAAGATGAAAGCGAAGCGATGCAGGAGAGCTTGACGGCCAAGTTTGCCGCAATGTGCGATATGCACAAGGGGGAGATGCTCCTCCGGCTGCTGGATGACCTGTCTTTAAGCAGAAGCGACCTTGAAGCGATTGCCAAAAAGGCGGCCGAAAAGGCGAAGACGGCTCCGGAAAAAGTTGGTTGCAATTGTTTAAGTACTTGTGAGCATATGGAAGGTGAATGGGAATGTTAGTTAATGGATTAGTAATTTTGGCCGCGGCCGCTTTGATCGGCTTGATCATCTGGTGGTTTTTCGGCAATTTCCAAAAGAGCAGCCAGCAGGCGGACCTGGCCAATGGCCGCCAGGAAGGGCAGGTAGTCGTCAAGGGCGGCTATGAGCCGGAAGTGCTCTACTTAAAGCAGGGCGTGCCGGCAGAAGTAACTTTTAAGATGGAAGACAAGACGGCCTGCCTCAGCCATGTGGTCTTTTCTTCTTTAGGCGTTGACAAGGACCTAAGCAAGGAAAAGCTGGCCAAGATCCAGATCCCGACCGACAAGGCCGGGGAGATCGACTATGCCTGCGGCATGGGCATGTTTCATGGGAAGATCGTGGTTAGATAATGAAATTGACTAATTGGCGCCGCTTTTGGCTGTCCCTGTTTTTGGCCCTGCCCATGCTGGCCCAGATGCTGTTGATGATCTGGGGAATCATGCTGCCGGGGATTAAGACTTATTCACTGATCGCCACCAGCTTGATCATGCTAATTGGGGCAGGACCTTACATTCAAAGCGCCTGGGCAGCTTTGAAACGCCACCAGGCCAACATGAACAGCCTAATCGCCATCGGCACCAGCGTGACTTATGTCTACAGTCTTTTTGCCTACTTCACTGGCCGGCCGGTCTACTTTGAAAGCGCGGCTTTTATCTTGATTTCTGTCTTGCTAGGGGATGCCCTGGAAGAAAAAATGCATGACCGGGCAGCAGCTTCTTTGAATAAGTTACTGGAACTCCAGGCCAGTGAAGCTGAGGTCAAGCGGGGAGAAGACTTTGTTAAGCTTCCCTTGGACCAAGTCAAGGCCGGCGACGTAATCAAAGTGCGGCCGGGCGGCAAGGTGCCGGTTGACGGCCGGCTTGTATCCGGGCAAAGCAACGTCAATGAAGCCATGGTGACTGGGGAGAGCATGCCAGTCGCGAAAAAGCCCGGTGACAGGGTGATCGGGGCAACCATCAACGGCAGCGGCAGCTTTTTGATGGTGGCTGAGCAGGTCGGGGAAGAGACCATGCTGTCCCAGATCGTCCAAGTGGTCAAGCAGGCCCAGAACTCCCGGGCCCCGATCCAAAAACTGACTGATAAGGTGGCTAACTACTTCGTGCCGGCGGTATTGATCGTCAGTATCCTGGCCTTTGCTATTTGGGATGTCTTCAGTTCCGTGGGCCCGGTTAAAGCCATGCTCTACGCAGTTTCCGTCATCGTGATCGCCTGCCCGTGTGCCTTGGGTTTAGCTACCCCGACAGCCTTGATGGTGGCCAGCGGCCGCAGCGCCCGGATGGGGGTTTTGATCAAGGACGGGGAAATCCTGGAAGCAGCCGCGAAAATCAAGACTATTGTTTTTGACAAGACCGGGACGTTAACGGTCGGCCAGCCCCAGCTGGTGGACCAGGTGGGGGATAAAGCAAGCCTTAGCCTGGCGGCCAGTCTGGAAGCCAATTCAGAACACCCTTTGGCCCAGGCCATCGTGACCAGCGCTAAAGAAGGCGGCCAGCCTCTCTTGCCAGTCAGCGATTTTTCGGCTGAAGAAGGCAAGGGGGTAGAAGGCAAGGTAGCTGGTCACTTAGTTAAGGTGGGCCGGGCTGACTACGTCAGCGCCCCAGACGCTTGGCGCCAGCAGGCAGAAGGCTTGGCGGAAGCCGGCAAGACGGTGGCTTATGTCCAAAAAGATTCCGCCGTCATTGGCCTCTTGGCCCTGCAGGATGCTCCCCGCCCAGAAGCAAAGGCCGTCCTCAGCGAGCTTAAAAGCCGGGGGATCAAGACGGTCATGTTAACTGGCGACAACCAGCAGCTAGCGGAAAAAATCGGCCGCCAGCTGGGCATTGACCAGGTCGAAGCGGGACTTTTGCCCGGGGAAAAAGCTGACCGCTTGGCCAAATTGCAAGAAGCAGGGCCGGTGGCCTTTGTCGGCGACGGCATTAATGACGCTCCGGCCTTGTCACTAGCTGATGTTGGCATTGCCATGGGCAGCGGGACCGACGTGGCCAAGGAAGCCGGCGGCATCGTCTTGATGACTAGCAGCTTGACCGGGGTTTTGCGGGCGCTTGACTTGTCCAAGCAGACCTTCACGCGGATCAAGCTGAATCTTTTCTGGGCCTTGATCTACAATTTGATCGGGATTCCGGTCGCGGCTGGTCTCTTCTCCTTTATCGGAGTCAGCCTCAGCCCGGAACTGGCGGCTTTGGCCATGGCTTTCAGCTCCGTCTCAGTCTTGCTGTCATCATTAATGTTGAACTGGACTAAGATCGCCGGGGCGGGCAAAAGCTGATAGAGCAATTATGAAATAATGGAATATGGCTTTAAATAGAAGTACCAGGCTGGTGCTTCTATTTTTTGCTTTCTTTTGAAACGCTTTCTGATGTAACCTTATAATTAGTGCGTTAATTAACGATCTAGGAAGAGACAAAAAGAGGCAAATAATGGATACAGTAAAAAATTATCTCAGCGTGGCTTTTTTCGCCTTTTGGGGCGGCCTGGCCCGCTATGGCTTAACGGAAGCATTTTCCTTTTACGGGACGGTGATTGCCAACCTTTTGGGCTGCTTTCTCCTGGCCTTCCTAACCTACTTTTTCCTGAGAAAGTCCAATAGCCGGGCCTGGCTGACCACAGGCCTGGGGACGGGCTTCGTGGGAGCCTTTACGACTTTCTCCAGCTTCAACCTGGATGCCTTCAAGTTGCTGCTTGGCGGGCAAAATTTCGGAGCATTGCTTTACTTTACCGGCACGATCGCGGCTGGCTTCCTCTTTGCCTGGGCAGGCAAGCAGGCGGCCAACTTCGCCGCGGGCAAACTTTTGGAAAGGGGGTAACAAGATGATTTTTGCGGTTGGATTCGGCGCCAGCCTGGGGGCTGTAGCCCGCTATGCTTTGACCAGTTATGGCAAGAAGCACTGGATGCAGGGGACGGCCTGTCCTCGGCCGACTCTTTTGATCAATCTGACAGGGGCCTTTTTCCTGGGCCTGGCCTTTGCCTTGCGGCTGCCGGCTAGCGTCTATGCCTTCTTGGGCACCGGCGTCTTGGGCGGCTACACGACTTTTTCCACTTTGAACACGGAAATGGTCTCTTTGGCTGAAAACGGGCAAAAGCACGTCCTCAAGCACTATTTGCTGGCCAGCTATTTGGGCGGGGCGGTCCTTTTAACTTGCGGATATTATCTTGGAAGCCTGCTATGAAAAAAGCCAACTGATTCTGCGCAAGAGCCTGTGCAGCCTGGCAGCCATAATTTCCCTGGTCGCTCTTTTGAGCAGCCCTGTCACCTTTAAAATGTATGAGGTCAAGGACTATGCGTCCAGTTTGATCGACACTTTTGCCAACCAAAGCGATGGCAGCGCCATGTCGATCGCGGTCAAAGCCGCGGTAGAATCGGGCCTGAAGCAGGACCTGGTTGACCAATTGCCAGACAAGGTGGAGATTAGCGAGTCCCATCTCAGCCTCTACCGGCTAGTTTCCCGCTACCGGCAAAACAAGCGCCTGCAGTCCAGTAATTTAAAGCTGCCAGCCAAGAACAAGGTCCAGCTTTTTATGGATGACTTGATCCTCTATTTGGTCAACAGTGAACTGAATGTGCATGAAGGGGAATTGCAGCAGATTACGCAAATCTACCAGCTCTCCTTGTGGATCATCTGCGTCCTTTACTTGCTGGGCGTGGCCCTGCTCCTCTTCAACCGTTACTGGTCCTGGCTGCCTTTTGTGCTGGGAGCGGCCAGTGCCTCTGGCTTCCAGGTCTTTATTACCCATACCTTGACGGAAATGGTCCAAAAGGAAGTTTACTCCAAGATGCTGTTCACCTATTCTTGGGGCAGCTGGGCCGGCTTTCTTCTGGCCCTGGCCGGCCACCTTTTTTATCTGGATGTTTGCCGTTATCGGGCGAAGGGAAAGGCTAATAAGAATAAAGAAGCGAATAATAATTTAAAAAAACTATGTTAAGAGTCAAGGCGGCTAGTCTTGGCTTTTTTCATGCTGGGAAAAGCCCCGCATTTTCTTATAGGAAAGCAGTCCCAGCTTGCTATGTTATAATAACTTTTATATAATATAAAGAATGGGTTAACACCAACTTGCTTCTGCAGATTTAAATACAAATTAATTTATGCTTAAAGCTTTTTGCCAGTTTGCAGGCAAACCGTGTTTATTAGGAGTGGTTTTATGAAAAAAAGAGCGAAGCAGGCTGAGCTGGCTAAAATCGCGCAGAGTGAAGCACCAATAGCACTTTATCAATCAAAAAAATAAGCAGATTAAAGCCATAGCCGTGTCTAAGGGCCTGTGTGAGCTCTATGGCTTGCCGGCGGCTGAGCTTAAACAGCTGCTGGACCAGGACCTGTTTGCGGGTCTGCATCCTGACGACCAGCCAGGCGTGCAAGCCGACCTGACCTCTTTCATGAACCGGGACAGCAGCGACTACCAGAGCATCTACCGGATCAAGCTGCTCGGCCAGGAAGACTATGTTTTGTTGCAGGCCCAGGGGAAGTTCTTAGAAGATACAGACTGCTTCCTGGTCTGGTATACGGAAATGTCGACCAGCCGCCTGCAGGACCTGACCACGGCTGACCGGCGGACCAAGCATCTGCTTGACGATCTGACCGGCCTGCCTAAAGCAGTCTACTTTTACGAACTGGCCGAGCTTGGCTGCCGGAAGCTTTTTAAAGCGGGCAAGCAGCCAGTCGTGCTGGCCTTCAACTTGATCGGCTTCAGTCACTTCAACCACCGCTATTCCTATATTGAAGGCAACCGTCTCCTGGTGGCCTTCGCTGACCTGCTCAAGCGGCATTTTAGCGGCGATGCCTGCGGCCACTTCACGAAAGACAACTTTTATGCTTATACGGCCCATGACCATTTAGAAGAGCGGCTGAAAGATATCCTCAAAGAGAGCCGGCAGATCAATGAAGGCCGCAACCTGGCCATCCGTATCGGGGTTTATGACGCCGGCAGCCTGGTTTATGAAGACATCAAGAAGGTCTGCGAATACGCCATGGTGGCCTGCATAACAACCGCAAGGACGTTAAGGCCCACATCACTTACTTCACCAGCCAGAACCGGCAGAGTCTGGAACTAGAAAACTACATTTTATCTAATTTTGACCAGGCTTTAAGAGAGGACTGGATCGAGCCCTTCTACCAGCCAATTGTCCGCATTTTGAACGGGCAGAGCGGGAACTGGGAGGCCCTGGCCCGCTGGCGCAAGCCAGATAACGGGATGCTGCTGGATGAGCAGTTTATCCCGACTTTGGACCGGGCCGGGATCCTTTACCGGCTGGACTTGTACATGGCTGACAAGGTGATTGCCGATCTTAAGAAAATGCAGGAGAGGGGCCATCTTGAGCTTGCTGTCTCCCTCAACCTTTTCAGCTCAGAATTTGACCAGTGCAATATGGCTGAAGAGATTACCAGGAAGGTAAAAGAGAGCGGATTGTCGCCGGAATTCATCGTAATTGAAATCAGCAACGACACCCGTAATCTCAATGCCGACAAGATTCGGGAACAGATCGCCCTCTTTAAGCAAAACGGCTTCTACGTCTGGGTGGACAATTTTGGCGAAGGATATTCCTCAATTGGTTTGATCAAGGACAATGCCCCGGTTTCCTGCATTAAGTTTGATGCCAGCTTTATCAAGGGCCCTGACCAAAAGCGGTCAAGGATTGTCTTGAAGAAGATGGTGGAACTGGCGGAAGAATTGGGAATCGACACAATCGTTGAAGGGGTAGAAAATGCCGATCAGCTTCTGGCCCTAAGGGAAATTGGCTGCGCGGCGGCTCAAGGCTACTACTTCGGCCAGCCCCTGCCTTTTGACCAAGCCTGGAAGAAGTGGGTCGAGGGTCCGGAAGCCAACCTGGAGCGTTTCAGCGAGTCAGACTACTACAACAGCGTGGGGATGATGAGCCTGGAGCGGCCCCACTTCATCCAGGAAACTTACAACAATGACTTGACCTTTGACGATCCAGACCCGGTTTTGGACCGCTACTTCAAGGGGACCCCGCTGGGCTTTTTGGAATACAGGGACGGCAAGCTTTACTACTTGCGGGGAAACGAGGGCTATACCCGCTACTTGCTCAGTTGCGGGTCGGTCACCAAAGAATAGATGGAAGAGCATCCCTTCGCCACTGAGCTCAAATCCGTCGGCTCGCAGTTTTTCAAGGACCTCAAGGGCTGGATTGCTGAAGAATACTGGAAGAATCACAAGACTGAGCGGCATTACAATGTTCACAGCTATCCCAACAACCTTTACGTTGAGGGCTACTAGCGGATCCTGTCCTACAATCCGCATACGGATACCTATGCCTTGATTGACGTTTTGACTTCCTACAATGCCAACCAAGTTTACCAGGACCAGGCGCGGGATGACCTGGGGGTAACAGTCAATTTCAGCTTGAGCGCTGACCAGTACCGGGATATGCCCCTGCCATTTATCATCGCGGCTTCGGTTTACCAGGAAAAGCGGGTGGTCGACATGCAGTACATCTATGTCAACCAGGCTTATGCCGAAATCATGGGACAGAGCCGGGAGAAGCTGCTGGGTAACAGAATGTCGAGTTTTGTCAAGCACAAGCTGGCTTTCTGGATTAAGGTGATTTGTGGCGCTAGTGACGGCGAAATCCGTCAAGGCACCTTCCATTCAAGGACGGGCCACTGGTATGAATACATTACGGCCAAGTCTTCAGTGCCGGAGACCCGGTCTTTAGTCATGATCAACATTGACGAGCAAAAGAGAAGCCAACATGAGATCAAGCAGAAACAGAATACGACCAATGAAATTGTCCAGCTGTCAGAAATCCTGAACGTTGAAAATGACAAACTGGAAACAGCGATCAGCAAGGGCCTGGCCAAGCTCGGCACAGACCTTGCTGCTGACCGGGTCGTCGTGATGGAAGGCGAGGGGCAGTATGCTAAAAATACTTACAGCTGGACCCTGCCTGGTTTAGCATCGGCACAAAAGGAGCAGCAAAAGATCGACGTAGCCACGCTAAAAGTCAAGCTGCAGGAGCAGCTGAACCATGACAGCCTCTTTTTGACTGATCAAGCCGAAATTGCCAAGCGCTTCCCGGAAATTGTCGCTACTTATGACTCTGACTACCAACTGGAAAATGTCCTTTTGGCTCCATTTTATGAAAGTGGCCGGGTTAGCGGGGCAGTTGTAGTTGAAGACCTTGATGCCAGCTTAAATATGGACTTTAACAATTTGATTGAACTGACAGCTGACTTCGTTGGTGCTAAAGTAATGGGCCGGAAATTGGAGCAGCAAAGAGATACTGACGTCTTGACCAAGCTGAATGATCGCCACCCTTACCTGGCCAAGCTGAACTACTATAAGAAAGTCAAAGCCTCAAGGTCAATTGGCGTGGCCTTCATGGACTTGAATGGCTTAAAAGAGGCCAATGATGAATTGGGCCATGATGCCGGAGATGAACTCTTGATTTCTGCCGGCCAGATCATCAGCCAGGCTTTTGGCCGCGACTATGTCTACCGGGTCGGTGGGGATGAGTTCGTGGTTTTGGATGACCAGAGCAGCCGGACGGAATTCGAAAGTCATTGTGCTGCGTTTGAGAAAGCTTTAACCCAGCCGGCCAGCCCATCGATCTTAATTGGGGCTGAATGGTGCCCGGACTCCCATTATTTGCGGGAAGCAGTTGAGAGAGCCGACCGGAAGATGCGGCGGCAGAAAAACGACTTTTACAAATCGCACAAGCGCTACCGTTGATGCTGGAGCAAAGAGGAAGAGGTTTAGTGATGAAAAAAATAACCGTACCATGTTTTATTCGCTGATCATGGCCTTAATTATGCTTGCTTTAGGCATCGTCAGCTTCTGGGGCCGGAACCAGGACAGCTTTGACGGGATTTACGCGACTGCTCCTTTGACCAGCGCGAAAACAAACTGGACTGACAAGAAGGGCAAGGCAGTTGATTTAACAGAGCTGAAGCCGGATAAACAGGGAACGCTGACGATCTACTACCGCCTGCCTGAGAAATTGAACAGGCAGGACAAGCTCATCTTTTTCTCCAGATATATCAAGCAGATTGACGCCTATATCGGGAAAAAGAAAATTTACCACAGCCATCCGGAAATCGCGGCTGACTGGCTGAGCCTGACTGAGCACTATGAGAGTTTTACCAACAGCATTGAGCTGCCGGCAAAACGGTCCGCTTAACCTTGAAGGGCTTTTACCAGCTGGCTGGCAAGCTTACCGCCTGCAGCCTGGGCAATGACGGGGCCTTTCTGGCCAACTATGTCAGAAAGAATGCCCTCCGGGTAGGGCTGGGCATCGTTTCTGTCGTCATGGGCTTGACCCTGCTGCTTTTTTCCATCTTCGCGCCTTTGACCAGCGCGTTCAAGCGCAGCCTGGGTTACTACTCAGTGGCCTTGATTTTATTTGCCGTCTTGCAGATGCAGGAAGAGATGCAGCTGACGGTGCTTTTTGGCCACTACCATGTCTGGCGCCTGTTTACCTACCCGGTCATGGTGCTCTTGCCATTTTTACTGATTATGACCATCAACGCGCAGCTGGACCAAGCTTTAAATGAGCGGAAATCCGAGCTCTACGCGGCTGCTAAGCAAGATTAAGAAGGAGACGCCAAGGCGTCTCTTTTTTCTTTAAAAAAGCTGCATGCTATAATATTTCTTACACTTTAGGGAAAGGTGATAAAAATGCAAAAAATTTTGTTTTTATGCCATGGCAACATTTGCCGGTCGCCAATGGCCGAATTCATCATGAAGCAGCTCCTGGCTGAAGCCGGCAAGGCTGACCAGGTCGAAGTTGCTTCCGCGGCCGTGACCGGCGATGAAATCATTGGTGGAGTTGGCAATCCAATGGACCCCCGGGCCCAGCGGGAACTGGCCAAAAACGGGGTGCCATTTAGCCAGCACCGGGCCCGGCTTTTGACCCGGGAAGACTATGACAAGTATGACTACTTGATCGCCATGGACAGTGAAAACTTCATGGCCATGAACCAGATCTGCGGGGGTGACCCGGAAAGAAAGCAGTACAAGCTGCTCCAATTTGCTGGTAGCTATGCTGACATTGATGATCCCTGGTATACAAATGACTTTGACCTGGCCTTCCAAGAGATCAGCCGGGGCTGCCGGGGCCTGTTAGGCCAGCTTTAGGCGAGGAATTTACGAAAACGCTTAAAGCGAGTACAATTAAGGGTGTAAGTTGTAAGAAAATTTTTAATTGTTTATGGCAATAATAAGGATTTGTTTATGAAAAAGTATGTCATTTTGCACCCGACCGGCCGGATCTCCCGCCTGGTCATCAAGCACTTGCTGGCTGACCCCCAGTTCAGCGATGTGGAGCTGGAGCTTTTGACCCAGCGGCCTGAACTTTTGGTCGACCTGGCAAAGGGCGACCGGATCAAGCTGACTGAAGGAGCGGCAACTGACCTGGACTACACCTTGATCAGAATGCCTGCCTTGACCGACTGGCCAGATGTCAAGTACTCCTTGACTGGCCGCTATGACGAGTTCGTCGGCACCTCTGTTTCAAGAGCCAGCGTGGCTGACCTAGTCTTAAAGATCATGGCTGATCCAAGCCGGTACTCCCGGGCCAGCGTTGGCATCTCCCAGCCGGAAACGGCGGGTTACGTCCGGCCAGTTTACTAAAATAAGTCAGAGAAAAAGGCCTGCACGCGCGTGCAGGCCTTTTTGGTTTAAAAAATATTGTATATTGTTTTTTAGCCGTTATTGCCTTTACTTGCTGGCTTTTGCCCCTTTTGGCAGGCGGCGGCCAATCAGCCAGACAGCCAAGAGGGCAATGACTGATTCAATGACAATGTAGAGGGCACGCAGCTTGATAGTGGTCCCGCCCAGCCAGACATTGAAGACGATTGAGCCCAAAACCAGGGCACTCATCCAGGTCCATTGCTGCTTGTCAAAGGCCAGGCCGTATTCTTCTTCTCTTCTGCGGATGCCTGGGAAGATCCCGCCCAGGCCGATCAAGACCAGGCAGGCCACGATGTTGATGGAGAGTTCATACCACCAAACCCAGCTGCCTTCCTTGACGTCTTGCGGCATGAAGCCTAAGACCGTAGCGACAGCCGTGACGGCCAGGAGGGCAAAGCCGACCCACCAGGCGAAGGTGTCGTTTTTAATGTAGCGGTAAACTGACGGGTACTTGGAGGAGTTTTTGCCTCGGACCTTCATGAAGGAGTAGAAAATCCAGCAGGTAACGGCAGGAGAGATGATCCCGTTCAAGTTCAAAAGCCAGTTGAAGATGTCGTTCATGTCTGGCAGGAAAATCCCCAGAACCATGATGAAGCCGCTCAAAAAGACAGTCAGAATGTAGCCGTTGATCGGCAGGCCGTCCTTGTTGGTCTTCTTGAGGAACTTCGGCATGTACTTGTCCCCGGTGTCGGAGATCAGCATTCTGGTCATGGCGTCCAAAAGGACGGACAAGAGGGCCGCATTGTAGAAGAAGGAGGCCCAGGCGTAGATGTAGACAAAGAGCTTGCCCACGCCGAATTGCTTGCCCATGGCGCCGAAGACGTAGTATTCACCGTTCATCTTCAAGTCGTTTGGCATGTGGTTGGCATCGATGTAGATGCCCAGGGCAATTGAGCCGAAGATGGTCAAAAAGCAGGTCATGAGGGCCAGGGCGATCATGGCCTTAGGGAATTCCCGCTTGGGGTCCTTCATCCGGGTCACGTATGGGGCGACCAGCTCAGATCCGTTGACGGCATAGATCAGCATTCCCACGGTTGAGAAGTATTTAAGGTCAAACTTGGGGATGATGGTCTTCCAGGTAAATGGCGTCGCGGTCTTGCCGCCGGACTTGGCCAGGCCGGCAAAGGCCAGAAGCACGAAGAGGATGGTCATGATGAATATGGCCCAGCCCCCGATGTTGGACAAGACTTCCATTGATTTGGAGAATTTGTGTTCCAGCAGGGTCAAAAGGATAAAAATGACAAAGGTGATGGCCGTAAACATGGCCGTTGAGAGGAATTTCGGGTCCTCAAACTCGTCAGTTCCAGTCAACCCCCAGCCAACGTCAACCAAGAGGCAGTTGGCCGTGTCGACCACGTAAGGAATCGAAGCGGCCCAGTAGGTCCAGGCCGTGAAGTAGCCTAAAAATTCACCGTCAGTGGCTCTGACCCAAGAGGAGAGTCCGCCACCTTCATGGTTGAAAACTGAACCTAAGTGGCCAACGATCAAAGCGTAAGGAACCACGTAAAGGAACATCATCAAAACCCAGGAGGTGATGACCGCAATCCCTTGGTTTTGGAAGTTGTACATGATGTCTTCCAGCCCGATGACCGTGACAAAGGCCATCATGGCTAAAGTCTGCCAGGAAATATAATTTCCCTTTTTATCTAATTCGTCCATAAAAAATCCTTCCTGTTAAACAAAGTGTACTAACAAGAAGCCAGGCCCGGGGACTTGTTTAGCGATACCATTTCCATCTCCAATCTAGCAATTATTAAGCTTTTTTAAAGCAAAATCTATTTTACAGTGCTTATAAGGGGAAAAACAGCCTTTTAACCATAATAGCGGTTCCTGGGCGAATATTTTCTGAGCAGAAGATTTCCTATCTGTTTCCTTTGGAGTACAATGAAAGACAAGTTAAATTTGACGAGGTGATTTTATGAAGGAAAAATTAGACAGCGCAATTTTCGCGGGCGGCTGCTTCTGGTGTATGGTGGCCCCTTTTGATACTTTGCCAGGTATTGAGAGCGTCACGGCGGGCTACACGGGCGGGCACGTGCCTAATCCGACTTATGAACAAGTTTGCAGCCATACGACTGGCCACACGGAGGCGGTCAAGATCGTCTTTGACCCGGATCTCATGTCTTATGAGGACTTGCTAGGCTACTACTGGCAGGTAACGGACCCGACTGACGCCAGCGGCCAGTTCCAGGACCGGGGGGACAACTACCGGCCGGTGATTTTTTACAATTCACCAGAGCAGAAGGAAGCAGCGGAAAAGTCCAAGCAGGAACTGGCGGAAAGCGGCCGCTTTGATGATCCGATCGTGACCAAGATTGAACCGGCAGCGCCTTTTTACGAGGCTGAAGACTACCACCAGCAGTTCTATTTAAAGCATCCAGACCGCTACGCGGCTGAAGAAGCCGGCGGACGGGCCCAGTTTATCAAGGAGCACTGGGGCAAGTAGGCATAAGGGGGATGCATGAAGAAAGGTTTAGTGATGGAGGGCGGCGCCATGCGGGGCCTGTACACGGCCGGGGTGACGGACGTCCTCATGAAATATGGAATCAAGTTTGACGGGGCAGTTGGCGTTTCAGCCGGAGTGACCTTTGGCTGCAACTACAAGTCTCTGCAGCCCGGGAGGGTTTTACGCTATAACCTCCGCTATGGCAGCCGGCCCCAGTTTAAGAGCTGGCGGTCCTGGATTAAAACCGGGGATCTCTACGGGGCGGACTTTTGCTACTATACTTTGCCGGAAGTACTGGATCCTTTTGACACGGCAGCCTTTGCCAGAAACCCCATGGACTTTTGGTGCGTGGCAACGGATGTGGAAACGGCCCAGCCGGCCTACCACAAATTGACCACCGGCAAGGGGCGGGACGTGGCCTGGATCCGGGCTTCGGCCTCGATTCCCGTTTTCGCCCGGCCGGTTAAAATCGGGGGCCACGCTTACTGGGACGGGGGCGTCAGCGACTCCATCCCGGTCCGTTTTCTTTTGGACAAGGACTATGACAAGGCAGTGGTCATTTTGACCCAGCCGGCTGGCTATCAAAAAGAGCCATCGCGTTTGCAACCAGTCATTGACCGGGTCTTGAAAAAGTACCCGGCTGTCGTGGCGCGCCTAAGGCAGCGGCATTTGGAATATAATGCCTGCCTGGCTTATATTGCTAAAGAGGAAGCAGCCGGCCACCTCTTTGTCTTCCGGCCCAGCCAGGGGATCGACGTCAGCGCCATGGAAAAGGATCCCAACCGCCTTAAGGCGGTCTACCAAGTCGGCGTGAGGGATGCCAAGCGGCAATTGGCGGCCTTGAAGGAATTTTTACAAGATTAAGCACAAAAAACGGTGACTGAGCTAAGGCTCAACCCCCGTTTTAATTTGCACTTGTTAAGTGTTTTTTCTTTATTCTCTTTTTCTTTTAGTCGCCGAACTTAGCCAGCTTCTGGTAGTTGTCTAGCATCCAGTCAGCATAGCTGACCTTGTTTGGCATGGTTTCGCGGATTTCCACGATCGGGATGCCCTGCTTCTTGGCCTTCTTGACGAAGTACTTGACCGTGTCGGAGCTGGCCTGGGTGTTGTTGACGAAGAAGGGAATCTGCTTTTTCTTGATGGCTTCATTCATCTGGGCGATCACGGCCGCGCTCGGGTCGGTTTCCTTTTCAGTAGCTTCTTCAAAGTTCTTGTTGCCGATCTTGAAACCGGTCCGCTCTAAAGCGTAGTCAAAAACCGGCTCGCTGACGAAGACCGGCTTGGCCTTGCTGCCCTTGATTCCGTCAGCAACTTTTTCGATCTTGGCGATCTTCTGCAAATACTTCTTGCCTTGGGCCTGGTAGTAGCTGGCGTGCTTTTTGTCAAGCTTGCTGAGCTTCTTGACCAGGTAGGCGACGTACTTTTTCGGCATATTTAAGTTGTACCAAATGTGGGGGTTGGCTCTGGAATCCAGCTGCATCAAGTCTTCCCCAACCTTGACAGCCTTCTTGCCATTAGAGGCGGCCAGGTTGCCCATCCAGCTGTCATAGCCCATCCCGTTGGCAACGATGATGTCGGCGTCAGCCACCGTCTTGGCCGCATTGGTCGTCGGCTCATAGTCATGGGGGTTAGAGTTGCCGTTAGCGATCAAGGCGGTAGCCTTACCATACTTGCCGACGATATTTTGCGCGATGTCGGCGTAAATGTTGGTCGAAGTTACAATCTTGATCTGGCTCTTGGAAGTTTGTTCATCCTTGGCGCAGCCGGCTAAAAATAGAGTGGCCAAAAGTAAAATTGGCCAGATGATTAACTGTCTGTGTGTTTTCTTCATGAATCTTTTCCTTTCAAGATCTGCAGCTTGCCTGCAAATCATATTAGAATACGGGAAAAATAGCCAAAAGTCAATAAGAATGACGAAAATAATGGTAAAATAAACGACATGAATAATTTTAAGTTTAGCAAAAGAGAAAAGATTTACCTCCTCCTGGCCCTGGCTGTCTTGGTCATGCTCTTCATCTCAAGCTCGATGACCTACCATGAGCAGAAGATGAAGGCTGGTTTTATCCATACCTACCTGGGCTGGCTGGAAGATTTGATCCACCGGCTCAATATCTATTACGGCGGGGTCTGGCACAATGTCAAGACTGACGGGGCAGCCGGCTTCACCCAGTTCGTGGTCCGGAAGCTGGCCCACTTTACCAGCTACTTCTTCTATGGCCTCTTTGCCTATCTGGGCCTAAGAAGGGTTTTCGTTATCAAATGGACCGGCCCCTTCTTTGTCTGGTCCAGCGCCTTTGCCTTCGCGGCCATGGATGAGTTCCACCAGTTCCTAACCGGGGACCGGACCCCCAGCGTGCATGACGTGATGCTGGATGCCAGCGGGGCTTTGCTGGCCATTGTTTTGGCGGTGATTTTTTATCAAGTCAAGCAGGGCAGGGAGCAAAAAAGTCGGCCATTTAGGGGCTGAAACCGTTGAATTTCTGCCCTACCTGAGTTATTATAAAAAAGCTGATTATATTAATTACAGAAAGAAGGATCCTAAAATGTCAGGACATTCAAAATGGCACAATATTCAAGGCCGCAAGAATGCGCAAGACGCTAAGAGAGGGAAGGTTTTCCAAAAGCTCTCCCGTGAAATTTACATGGCTGCAAAGAGTGGTGGTCCTGACCCTTTAGGTAATCCACGCTTGCGTTTGGCCGTGGACAAGGCACGGGCTGCCAACATGCCAAAGGACAACATCCAACGGGCCATCAAGAAGGCTGAAGGCAACTCAGACGAACACTACGATGAAGTAACTTACGAAGGTTACGCACCGGGTGGTGTTGCCATCCTTGTTGAAGCCTTGACTGACAACAAGAACCGGACTGCCTCATCCGTACGCGTGGCCTTCACCCGCAACGGCGGCAGCCTTGGTGCTACTGGGTCAGTTGCCTACATGTTCGACCGCAAGGGCTACATTGTAATCGACCGGTCAACTACTGACGCGGATGAAGACCAAATGCTGATGGACGTCATGGAAGCCGGCGGCGACGACCTGCAAACCAGCGACGACGCTTACGAAATCTACACTGACGCCAAGAGCTTCACTGCTGTCCGCGATGCTTTGGAAAAGGCCGGCTACCAGCTGGCAGTTTCTGAACTGACTATGGTGCCGCAAAACACCACTCCAGTTCCAGCAGACAAGAAGGAACAATTCGAAAAGCTGGTTGACGCTTTGGAAGACGACGATGACGTTTCCAACGTTTACACCGCTGCAGCTGACGAAGAAGAATAATTAAGCTGTAAATAAGCTATACAAAACGCGACTTTCTGAGGAAAGCCGCGTTTTTTTATGCTTTTTTACGATTTTTGGGAAAATTTTGCCTTCTCAGAAAAAAATCGCCACTTTTGGCGTACTAGTAAGTGGAGGAGGAAAAAAGAAAGGAGGACCTTGTGGAAGTTGTAGACAAAGCCCGGCAAATGCTGGAAGAAGCAGTTAGGATCCGGGCCAGTGACATCTTTTTCCTGCCGAAAAAGGGCGGCTATAAACTTCGTCTGCGGGCCGGGGATCTGGAGGAAAGGCCGTCCCTGACCCGGGAGGCGGGAAATGAACTGATCAACTGGTTTAAGTACCAAGCCGAAATGGATATCGCAGAACACCGCCGCCCCCAGGTCGGCAGCATGGCTGTCAATTTGGCGGGGCAGGACTACTGGCTCCGCCTCTCCAGCGTGGGTGATTACCGGGGGGAGGACTCATTGGTCATCCGGATCATCTATGCTTTGGGGGAGAGCCGGTACTTTTTCCCGGACCAGTTCAGGGACCTGGTGGACCTTTGCTGGCTGCGGGGGATGATCGTGACCAGCGGGCCGACGGGGTCGGGTAAGACCACGACTATGTATGAACTGGCCAGAAAGCTCAGCCAGACGAAAATGGTGATGACGATTGAAGACCCGGTGGAAGTGTATGAGGAGAGCTTTTTTCAAGCCCAGGTCAATGCCGGGGCCAGGATCAGCTATGCCAGCCTTTTAAAGGCGGCTCTTCGTCACCGGCCGGATGTCTTGATCATCGGTGAAATCCGTGATGAAGAGACGGCCCATTTAGCGGTTGACGCGGCATTAAGCGGCCACCTGGTTTTAGCCACAGTGCATGCCAAAAGTACCTACCAAACCATTTCCCGCCTGGAGAGCCTGGGGGTTAAAAATAATGAACTGGTCAACTGCTTGACGGCGGTTTCCTACCAGCGCCTGCTGCCAGGGAAAAAGGGGCCAGCCTGCCTGCTGGACTTGGCCAGCCGGGAGGACTTGCTGGCGGCTCTGGGGCAATCCGTCAGAGGAAATTTCGCGGCTTGGGAGGAAAACTTAAGCAGGCTGGTGGAGAAAGGAGAGATAAGCGCGGATGTGGCAAGGCAATATAAAGGCGGCTAAGCTGAAGCAGAGTGAGCAGGTGGAGCTTTTGGCCTTTTTGGCCAACTGTTTAAAAAACGGCTTTTCCTTGACCAAGAGCTTGCAGCTCTTGCCCCTGCTTTGGCCCCAGCGGAAAAAAGCAGCTGGCCCGGCTGGATGAAAAAATGCGGCAGGGAGAAGAACTGGGTCAGCTTTTGGCGGGCCTGGGCTTTAATAAGACGACGGTGACTCAGCTGGACATGGCACTTAGCCAAGGGCGGCTGGATGAATCCCTGGCCCAGCTGGCCCTTTTGGGGCGGATGAAGAATGAACAGGTCAAGAAGCTGGAGGGGGAACTGGCCTACCCGGTCGTTTTGGCAGGGATGATGACCTTGATTTTGATCTTTATGCAGAACTTTTTGTCGGTAGAATTTGCTGGCAGTTCCGCTAAGCAGGGGGACCTGATCTTGCTGATTTTAGTCTTTTTGCTGGTTTTGGTCATCATGTTAGTCGTTATCGCGGCAGCTTACATGAAGAAGCAGGACTACCAGTCTTTTAAAAAGCTCCTGGTCTGGCCGGTTTTCGGGCCAGTGGTGGCCTTGTATGGCCAGTATTTGATCTCTTATGACCTGGGCATGCTTTTGGCCAGCGGCTTTTCCCTGCAGCAGATGTGTGACTTTGCCTGCCGGCAGGCGCCGGGGTCACTGCAAGAAGAAGTGGGCCGTCGGACAAGATACGCGATCCTACGGGGCAAGAAAGTGGAAGAGGTTATTCAGAAGGAGCCATTTTTGAGCCAGGACCTCTTGATGCTGCTGCAGGCGGGCAGTGAACGGGAGGAACTGAGCCGGCAGTGCCTGCTTTTGTCCCGGCTTTTGTTCAACCGCCTGCGCCAGAAGCTGTCCAAGCTAATTGTCAACGTGCAGCCGGTCTGCTTTATCTTGATCGGCCTGTGCATTATTGGAATGTATTTAAAGCTGCTTTTGCCGATTTACGACAGCATGCAGCAGCTTTAGATTTGCGGAGGAAAAAAGGAAATGAAGCATTTAAGACGGTTCTGGCCAAAGCGCCAGCGAGCTTTTACTTTAATTGAAATGTTGATCGTGGTGGCAATTATCGCGACTTTGGTTCTTTTGATCTCGCCAAATTTGCTGGCCCAAAAGGACCATGCCGACAAGCGGACTAATGATGCTTTTACCACGACCATTCAGACCCAGGTGGAGCTATATGAAGAAAATACGGGCAAGAAGCCGGCCTCTTTCCAGGAAATGGTGGATGCCCACTACTTGACGCAAAAGCAGGAGAAGCAGGCTGAGGATAAGAAGCTGGCGATCGGCGACTTCGCTAAGGGCGGAGAATGAGGCAGAAGGCCTTCAGCCTGCTGGAGACGGTGATAGCCTTGGCTATCGCGGGGATGCTGTTGGGCATCGGGGAGATGAGCTTTCAAGGCTTTGAGGACAAGATCAATTTTGACCGCTTCTGCCGGCAGGCGGTAGGACTTTTTCAAGAGAAAATCAGAAGTGCCGCCATTACGGGAAAAAGGGTCGTGATCTACAACCAAAGCAGCCAGGGCAAGCTGGAAGTCATTCAAGACGGCCAGCATGAAAGCCTTAAGATTCCAGATGGAGTTACGGTTTATACCAACTTTAACAATACATCAGGCTGGACAATCAGCAGCGACGGAACCACCAGCCAGGCCTTCACGCTGAGAATCATAAAAAATGATCAGGGGAAAAAAGAGTATGAGAAAGCATATACCTTTTTGCTGTCGTGGGGGAAGATCAATGAAAAGTAAACAGGAAGGCTTTTTGGCCCTGGAGGCGGTAGTCGCTTTGGCCATCGTCTGTATTGCACTAACCGCCATGGTGACCTGCCTCAGCGGGCTAAAGAAACTAGAGCAAGAGTCAAGCCAGCGGGCCAACCAGGCTCTGGCCTACCGGATGCTGAAGGAGTGCCCGGTCAAGCGGGTCAAGGTCAGGGACCATGAGTATGTCTTGACCGGCAAAGGAGACCTGTATGATGAAACCCAGCAGAAGATTTGCCAGAAGTAAGGCTTTCAGCTTGCTGGAGACCATGGTCGCCCTCTTGGTGACGGTGATTTGCCTGTCTCTTTTGTCCTCTAGCCTTAAGCTGTTTACCCTCTTTGAAAAAGACCGACACGATCCTAATGAACTGGTCTTCTCTTATGTCCAGTTCGCCAAGTTTTTGAAAAAGGACAGCCAGCGGACCTATATTGATCTGGAGAATTCCAATCCTTTGAAGATCATGTTTATCAAAGAAGAGAAAAAGAAAGACAAGAAGGGGGAAGAGAAGATAGACAAAGCTGGCTACGTTCTGGAAATGGACAATGGTGGAAATAATCTTCGGGTCAGAAGATCCGGACCAGACGGCGGCAACATGACCCTGCTGCCAATCTGGGGGGCAACGTTCGCGGCCAGGGATGGCTTGATGGAGGTCCATATCAATGAAAAGGGGAAAAGGTCAATTTTGTATTTTAAAGTCGACAAGGCACCGGAAAAAGAAAAGGAGGCTGAGAAAAAGACTGAAGATCAGAAAACAGACCAGGCTAAACCAGCAAAGGGGGAGCGCCCTGCTGACCAGCGTGCTGCTGCTAGCCACGACAATTCTGCTGATTGACAGTTACCTGGATGCTTATCAGCATGTTATTAAGATCAACCAGCTGCTGGCAAATTACCTCTGGGGCGGGTGAAATTCCTTGCACCCTTCCTTGTAAATCATTAGAATTGGTATGTATTGCAAAGAAGGGTGGACTAAGTCATGAATAGAATTGAAGAACTGTTTGGGCAGACTCTGGAAGCAGTCGAATGCCTGCAAGAAGCCTTGAACGTGTCCCTGGCTGATGCCTTGGTGGAAACTTTTGACAACCTGGAAAGCGGGGAAATCCGGGTGGAAATGGGAGCCCCGGACCAAAAGACGGTGGCTGAGCTTGAAGAACGCTACGCGGCTTTAGACTACAAGAACTGGTCCAAGGCCCAGAAAGAGCAGGTCTATGGCCTCCTGGTCCTTAAGGCCGTCAACGATGACGGCCGGGATGCCAACCAGATGCCGACTCCGCCGCTTTTAGCCACGGTCTTGACCCTGTTTATGGACAAGCTCCTGCCTAAGAGAAAGCAAGTCCTGCTGGACCCGGCAGTGGGAAGCGGCAACCTGCTCTTTTCTGTTGACCAGCAGCTGGCTGCCCAGAATCATTCAGAAGACCGCTTTGACCTGGTTGGCCTGGATAATGATGAAGAAATGCTCAACTTGGCCGACGTGGCCGCCCACTTGGCGGGGTTAAAGGCCGACTTCTACTGCCAGGATGCCTTGACCGGCTGGCCTGTCAAGCCAGACGTAGTGGTCAGCGACCTGCCGATCGGCTTTTACGCTAACGACGACAATGCCAAGAACTTTGACCTCCGGACCAAGGAGGGGCACGCCTACGCGCACGTCCTCTTCGTTGAGCAGATCGTCAAGAACCTGGCTGAAGACGGCTTTGCCTTCCTTTTGCTCCCGCAGAACATGCTGACTGGTACGGTTGGGGCTGACTTTATGCCCTGGCTGGCCAGCAAGGTCTACCTGCAGGCGATCGTGCAATTGCCAAGCAGCTTATTCCAAAGCAAGATAAGTCAAAAAAGTATCCTTATCTTCCAAAACCACGGCCAAAGCAAGCCGCCGAAGGAAGTTTTGCTGACAAAGCTTGAAAATCTGAAGAAGGAAGAATCTTTGGTAGCCCTTAATATTAAACTGAACGAGTGGTATACTAAGGAAGATAATTGAGTTTGTGAAGTGTGTGTAAAAGGAGTTTTTTAATAATGGACAAGATTTTAGCAATCAACTCTGGTTCATCTTCATTTAAGTATAAGCTGTTCTCATTAGCTGATGAGAGTGTCTTAGCTTCCGGGCTGGGCGACCGTATTGGTATCGATGGTTCAACCTTTTCAATGAAGTTGGCTGATGGGACCAAGCATGAAGTTGAAGTTGACTTGCCAAATCAGGAAGTAGCCGTGCAAACCCTGCTTGACTGGCTGAAAGAATATGGCGTTATTGCAGACCTCAAGGAAATTGTCGGCGTTGGCCACCGGATCGTGAACGGCGGGGAATTGTTCCCAGACTCAGCAATCATCGACAAGGACAACATCCACAAGGTTTTTGACTTGACTAACTACGCTCCTCTGCACAACCCGGCAGAAGGCCGCGAAATTCAAGCCTTCATGAACATCCTGCCGGACGTGCCGCAAGTCGGCGTCTTTGACACTTCCTTCCACCAGTCAATGGATGAAGTACACTACATCTACTCCTTGCCATACGAATATTACGAGAAGTACAAGGCCCGCAAGTACGGCGCCCACGGCACTTCTGTCCGCTACGTTTCCGGCAAGGCGGCTGAATTGCTTGGCAAGGACCTCAAGGACCTTAAGCTGGTTGTCTGCCACCTGGGTTCAGGCGCTTCAGTTACTGCGGTTAAGGATGGCAAGTGCTACGACACTTCCATGGGCTTCTCACCTTTGGCTGGGGTAACCATGGGGACCCGGTCAGGTGACGTTGATCCGTCAGTTCTGCAGTACATCATGAAGAAGGAAGGCATCACTGACTTCAATGAAATGATCGACATTTTGAACCACAAATCAGGCCTTTTGGGCCTCTCCGGTATCTCCAGCGACATGCGGGACATCAGAAACAGTGATGACAAGCGCGCCAGGCTGGCTGAGGCTGTCTTCATCAACCGGGTAGTCCGCTACGTTGGCTCTTACATTGCTGAAATGGGCGGGGCAGACGCGGTTGTCTTCACTGCCGGGATCGGCGAACACGATGATGTAGTCCGTGAAGGGGTCATGAAGTCACTGTCCTTCATGGGCGTTGACTTTGACGACGCAGCTAACAAGGCTGCTAATGAAGGCTTTATCACCAAGGAAGATTCCAAGCTGGCTGGTTTGATTATTCCAACTGACGAAGAATTGATGATCGAACGTGACGTTGTCCGTTTGGCCAAGCTTAAGTAAAAGTTTTTAAGCAGAATATTTGAGGACATGGTCATTTTTTGCTAAAATTATCATGTTCTCTATTTTGGGGATGTTTTGGGATTCGACAGGCGCAGACCCGCGCTGGTTGCGATTCGTAGGTTACGTCTACGTTAAAACGTTAAACAGTTTAAATTAACTGCAAACGAAAACTCATACGCTGTAGCTGCTTAGTTCAGCCCAGCTGCCAATAGACTGCCTGCCCGTGGCGGTCTTGCGGTATCAACATTACGGGATACGCTTGCCTATCACACCTGAATAAGCGAGAAGAGACTAACAGGTTAGCCGTGGCTGTTTGGCCCTGTCATATGGCGTTTTGCCCCGGTGAAGTTTAAATAATATGACTATGATCGTAGAGATTAGTGACGGGATGCGTTTGGACAGGGGTTCAATTCCCCTCATCTCCATCTGTCTAAAGAAGGCGCGTGTGATTGATGCACGCGTCTTTTTTGTGGAATTTTTATCTTCCAAAATGAAAGAATTCTCCAATATATGCAACGATAAGCTGGAAAGAGCGGTATAGTATAAGAGATAAGTGTTTATAAGGCGTAACTAAAGGGGAAGAAATGAAAATGATTTTCCGAAGATGGTCACTGGAATAAAATAACAAATGCAATAAATCGCAAAGGAATCAAGAGTATAATTAAAAGAATAGAAGCTATTGTTTTGACTGTAAGTACACTTTTTAGTGCGGGAGGTCAACTATGAAACTCAAAGAATTTTTGCTAGGAGCTTATAGCTGCCAAAAAGTCAATGACAAGGGCAGGACCAAGCTCAAGGTCGACCTTTCCCCAGGCCTGCTGCCAACAGCACTTTTTGCCTGGGCGGTTTACAAATTCTTGACTAGCGGCGATGATTAAAAGCAAACTTTTTTCTTGTAGAAATTAAGTGAAAAAACTATATAATTTAGTCAATTAGCCCCAAACTTGTGAGTTAAGTTTCAAGCTTCTTTCACAGAATGATTGGCGGCTTTTGATACTTTTTTGCTACGATTATAATATAGTGCGGATTGCACAATTTTTCGGTAAGGGGTTAAAACATGAAGATCTTAATGGTAGAAGATGACAAGTCAGTTTCACAAATGATGGAATTGTTCTTCAAGAAGGAAGGCTGGGAACAAGTTTCCGCCTACGACGGTGAAGAAGCAGTCGAAATTTTCCAAACTCACCCGCGGGATTTTGACATCATCACTTTGGACTTGAACCTGCCAAAGAAGGACGGGATTCAAGTGGCCAAGGAGATCCGCCGGATTTCTGAGACTGTGCCGATTATTATGCTGACGGCCCGCGACAGCGAATCTGACCAGGTTCTCGGCCTGGGTGTCGGGGCTGATGACTACGTAACCAAGCCATTCAGCCCGATCGCCTTGATCGCCAGAATCAAGGCCCTGCACCGGCGGGTAATGCTGGAAGGGCAGCCAAGAAACCTGCCGAAGAACATCCCAAGCAACGACTTCGACTTGGAAACCAACCACATCCGGATCTCCAAGAGCCGGCGGGAAGTTTACTTTGACGAAAACCGGGTTGAAGGCTTGACGCCAAAGGAATTCGACCTGCTCTACACTATGGCCCAGAAGCCAAAGCAGGTCTTCTCCCGGGAACAGCTCCTGGAACTTGTCTGGGGCTATGAATACTTCGGTGAAGAAAGAACTGTTGACGCCCACATCAAGAAGCTGCGCCAGAAGCTGGAAAAGTCTGGCCCGCAGATTATTCAAACCGTCTGGGGCGTGGGCTACAAGTTTGACGATTCACAGGTTAACGCATGAAACTGATTTATCAGCATATTCTGAGTTTTTTGATAGTCATTTTAACCTCGGTCATGATCATTGGCTTTTCAACGATCAACTACCAGAAGGAACAGGCCTATCAAAGCAACTATACGCGCTTGGAAAGTTATGCCGAGAATCTTTCGACCCTGCAGCTGTATTCTAAAAAGACGCAGAGCAAGAATTCACCGCCGTTTTTTTCCGCGGATTTCCTGCAGAAGTTTTCCTTCGTCATGCGGGATGAAAATCTTAAACTGTTTTTGATGGACAAGAACTTTAAGACGACTTATCCCCTTGGCGGCTACGACATCTTGAAGAAGTCAGCCAAATCGATGCTGAAAAAGGGGCAGGTGGTCCGGATCAAGGACGACCACAGCAGCGAGCAGCAGGACCTTGCCCCGAAAGTCCAGGGCCGGGTAAAGCGCGATGGCTTAAGAAAGCGGATCAACCGCCTTTTTGCCGCTGAAAGCTATACCTGGGTCGTGGTTCCCCAGGTCCAAGGATCCGGGTCAAATAAGAAGGTCGTCGGGGCCATCATGATCGGTTCCCGGGTCAAGGATGTCCTGCAGACCGTGAGTCAGGCCAAGGCAAACCTGGCCAGAGCCCTGGTGATCACCTTCGTGGTCAGCTTGATCTTGAACTTTATTCTGGCCTACTACCAAACTGGCCGGATCAAGAAGCTCTCCCTGGCTGCCCGCAAGGTTGCTGACGGTGACCTGGACGTCCAGGTTGACCACCGCCATGCCGATGAAATCGACGACCTGGCCGAAAACTTCAATGAAATGGTCCGGTCTCTGAAGGCCTCAAATGAAGAAGTCAAGGCCCAGGAAGAGCGGCGGGACCAGTTCATGCAGGATGTGGCCCACGAAATGCGGACGCCTCTGACGACGATTAATGGCCTTTTGGAAGGGATGAAGTATGATGCCATCCCAGAAGAATCAATTCCAGAGTCCATTGACCTCATGAGTCGGGAAACCAAGCGCTTGATCCGCCTGGTCAACGAAAACCTGGACTACGAAAAGATCAGAAGCGGGAAGATCCAGATGATGAAGTCCCAGTTCAATGCCTGGACGATCATGAACGACGTTCAGCAGCAGCTGACCCAGAACGCGGCTAAGAACGGGGACAAGATTATCCTTGACGCTCCGGAAGATTTGCCGGTTTATGCTGACCAGGACCGCTTCAAGCAGATGCTGGTCAACTTGACCCAGAACGCCATCCAGTTTACCAATAACGGGACGATTACGCTCAGGGGCCGGCGCTTCCAGCATGGGGCGACCTTCAGCGTCCAGGATACCGGGATCGGGATGACCCAGGAGCAGAGCAAGTATATCTTCGAACGCTTCTACAAGGCTGACCCGGCCCGGGCCCGCTACGGTGGTACCGGTGAATCCGGCCTGGGCTTGTCGATTGTCCTCTCTTTGGTCCGCCAGCACGGCGGGGAAATCAAGGTTATTTCCAAGCCGCATGAAGGCTCAACCTTCATGATCACCCTCTTTGACCAGGGGCATGAGAAGCACTATGACAAGAAGGACAAGAAAGAGTACAAAGATAAAGAATAGCGACTAAAAAAGCTTACCGGCTGCTGCCGGTAAGCTTTTGCTTCTTCTATTTAGTTTTCTTGCTGCTGGCTTTACTTGAGCTGGAACTTGCACTAGAGCTGGATGAACTTGAAGTCATGCTCTCATTCATGGAGCTGGATGAGGACAGGATGCTTTCCGGGATCTGGGTGATCTCGCTTTGCCGCTTGGCCAGCTGGCTGGCATCGGTCTTGTAAAGCTTGCTGGTGTCGCCCTTTTGGCTGATGAGGGCGGTTGACTGCTTGCCTAACTGCTCAATCAGGTCCATCATCTGCTGGTAGTTGGTGCTGTAATTGTAATCGCTCGGGATGACCGGGCTGAAGCCCTTTGGCGTGTAATAGCGGAGCAGGTTCTTATTGTTGAGGGTGTCTGAGTAGGCCAGGGAGTTTTTGCCATAAGCAGCCAGCTTCTTGACTTCGGCTTTTTGCTTTTTGGTCAGCTTGGTCAAAAGTTTGCCGCTGGCGTCATAGACATTGCCCTTGCTGGTCTTGCCCCCGATCAAGACGTATTTTGGACTGATTACCGTCCCATTTCTGAAGACGACAATTTGCTTGTGCTTAGCTGACAGCATGTCCGTGCCAAACTGGACATATTGCTTGCTGGAGATGCCCAGCAGGTGGAGGATGGTCGGCAGGACGTCGATTTCACCAGCCAGGGTTGACTTGATCCCGCCCTTTAAATTGGAAGCGTGGATCATGAAAGGTACCTTTTGCATCTGGGCGGTGTTGTAGCTGGACCAGTCATTCGGGTTCTTGCCGATCAAAGGCGCTAGGGTGGTGTACTCTTCATTGCTCAAGCCGTAGTGGTCACCGTAAATGACGATCATCGACTTCTCATAGAGACCGGATTTTTTCAAGTAAGTGAAAAATTCCTTCAAGGCCTGGTCCAGGTAGTGGGCGGTCAAAAAGTAATTATTAATCGTCACGTCACTGGTTGAGCTGGTCTTGAAGTTTGGATCCTGGTCAGCCGTGGCCAGTTCAAAAGGCGTGTGGTTGGTGACTGTGATGAACTTGGCATAGAAGGGCTGCTGCATTCTTTCCAGGTACTTGACGCTTTCGGCAAAAAAGAGCTTGTCCTTAAGCCCGTAGCCGGAGCTGTCCCCGCTTTCCTGACTGAAGTAGTTCTTGTCAAAGAAGTAGTTGTAGCCCATATTCTTGTAAACGTCATTCCGGTTCCAGAAGCTGCCGACATTGCCGTGGAAGACGGCAGAGGTGTAGTTGCTGTTTGCCCGCAAGATTTGCGGGGAAGCCTGGAAGGTGTTGCTGGAGCCTAATGAAGTGAAGAGTGACCCGTCAGAGATCCCGTAGGTGCTGGTTTCCAGCATATTTTCCGCGTCACTGGTTCTGCCCAGGCCAACCTGGTGGTAGAAGTTGCTGTAAGACAGGGTGTGCTTGTTTTTGTAGAGGGAATTAAGGAAGGGAGTAACCTCCTTGCCGTTGACCTTCATCCCGATCAAAAACTGCTGGAAGCTCTCCAGGTGGATGATGATCACGTTTTCCCCTTTTTCCGCCCCGAAGTATTCGGAATTAGCCGGGGCGTAATTCTGCTGGGTAAAGTTGATGATCTTGTTCAATTCACTGGTCGAAGCATTCTTGGTTACGGTCGAGCTGGATTCGTTCTTAATAGCGTCATAAACCGTGAAGGTGTCAATGCCCAGGTACTTGACCACGTAAGTCCGGTCAAAAGTGTTCTTGAGCAGGCGGGGCCGGTTGCATTCAGCCACCATCATGTTGAGGCCCAAAACGAAGAAGCCGAAGGACGTAATGGCAAAAGTCCTGGAAAAGCCGTATGACCGCTGGTCGATCTTGATTACTTTTACCGCCAGCAGGATGACGATGACGATCAGGTCCAGCCAGATAAAAATGTCGCTAGGCGCTAAAAGGGCCGCGCTGGATTTGCCCAGACCCTGGGAAACCTTGCTGAGGTTGGCCATGGTCTTGACGGTAATGAAGTCGGTGAACTGCCGGTAGTAAAGGACGTTGGCAAATAAAAGCGCCGTGTTGGCGAAATCGAGGGCCAGCATGGCAATGTAGGAGGCCAGAGGCTTGGAAAAGTAAAAGCCCAGGCTGATCAAAATGATGCTCGTGCCCAGGGGGCTGAACCACATGATGATGTGCTGGAGGGGATTGGCCAGGCCTAGATTGAAGTCGCAGTAGGCGACAAAGAGGTATTTCAGCCAGTAGCAGATGACCAGGAGGGTCAAAAAGCCAGTCCGGCTTTGAAATTTGCCGAGAAATTTGCTGTGTTTCAATGTCTTTCTCCTTTTATTACTGTCTTAATTTTAAAGGTTGTGGCAAAAATAGACAAATATTTCACCAGAGTTATTGCTTTCTTAAAATTCTTCCCCCAAAAAAGCTTGTATAATGTAAGCAGACCTTAGTAGATTGGACCCAGCGAGCATGTTGTTTTTAGCACCTTTATACAATTATTTAGCCAGCCAGTACGCCACCCGGATAAATCACTTTGCCTTGATCAAGTTAACCTTGCAGGGCCTGGACAAGACAATTTTTTACTTCCTGCTCTTCGCCCTGGTCCGGGTCATCTGGCTTTTGGCTGTCCGTAAAAGACGCGGGCTCTGGTCAGAATTCGGCCTCTGGCTCTTCGTCTTTTACTTTCTCCTGGTGCTGATGCTAACGACCTTCAGGTCATCCTACTTCCCTTGGGAACTGAATTTCCATTGGACGCGGCCGCTCAGCAATATCAACCTGGTCTTCATGAAGAATACCTGGAAATTAGTCTATGCCCAGAGCAAGGTCGACTTTTACTATAACTCTATGGGCAATATCTTAGCCTTCGTGCCCTTCGGGGCCCTGCTGCCCAATCTGCTGCAAGTCAAGCGTTGCTTTGGCCGGGTCTTTTTCCTGGGGGTCTTGTCATCGGTGACGATCGAGATCCTGCAGTTTTTGCTCATGACAGGGGTCAGCGACATTGACGACGTCTTCTTCAATGCTTGCGGGGTCCTGCTAGGCTACGGGCTCTACTTTTTGCTAGGTCAAATTTGTGTAAAAAAACCCAATAAAGACTAGCAATGAAAGGGCAACAATGATATTATTATCTTGTGAATGATTTATTTAACATTTTCTAGTGAGGAAGCATAAATCAATGAATAGTGTAGTAAGTTTTGACAGTAGTAAATTGACTCCTTTTGTTCACGAAAACGAACTGAAGGAAATGCAAGCAATGGTTAACGCCGCTGACAAGGAATTGCGTGAAGGCACTGGTGCCGGCAACGACTTCCGAGGCTGGCTGGACCTGCCAGTTGACTATGACAAGGACGAATTCGCCCGCATCAAGAAGGCTGCCAAGAAGATCCAAAGCGACTCTGACGTTTTGATCGGGATCGGGATCGGCGGCTCATACTTGGGTGCCCAAGCAGCCATTGAATTCTTGAACTCATCATTCTACATGGCTGAAAAGAGCGATTATCCTAAGGTTGTCTTCTGCGGTAACAGTCTGTCAGGCACTTACTTGTCAGACTTGATCAACTGGCTGGGCGACAAGGACTTCTCCTTGAACATCATCTCCAAGTCCGGTACCACCACTGAACCTTCAGTTGCCTTCCGGGTTTTGAAGGCCAAGTTGATTGAAAAGTACGGCAAGGAAGAAGCAGCCAAGCGTATTTACGCAACCACTGACCGCCAAAAGGGTGCCTTGAAGATCGAAGCTGACGCTGAAGGCTACGAAGAATTTGTAGTTCCAGATGACGTCGGCGGCCGTTTCAGCGTGTTGTCAGCTGTTGGCCTTTTGCCAATCGCTGCTGCCGGCTGCGACATCGACGCCTTGATGCAAGGTGCCGCTGACGCCCGGGCTGCTTACACTGACCCTGACGTAAGCAAGGACTCACCTTACCAATACGCTGCCTTGAGAAACATCCTTTACCGCAAGGGCTACACCACTGAACTTTTGGAAAACTACGAACCAAGCATCAGAATGTTTGGCGAATGGTGGAAGCAATTGATGGGTGAATCAGAAGGCAAGGACCAAAAGGGCATCTACCCGTCAAGTGCTAACTTCACCACTGACCTGCACTCACTTGGCCAATACATCCAAGAAGGCCGCCGGAACTTGATGGAAACTGTTGTCCGCGTTGCTGGCCCACGGGCTGACGTAGAAATTCCAAACGACGAAAGCAACCTTGACCAACTGAACTTCCTGGCCGGCAAGAAAATGAACTATGTCAACGACCGGGCTTACGAAGGCGTTGTTTTGGCCCACACTGACGGCGGGGTTCCAGTTATGACTGTCAACATCGCTGACCAAAGCGAACACACTTTGGGCTACTTGATCTACTGGTTCGAACTGTCAGTTGCTATCTCCGGCTACTTGAACGGGATCAACCCATTCAACCAGCCAGGGGTTGAAGCTTACAAGCGCAACATGTTCGGCCTTTTGAACAAGCCGGGCTACGAAGACTTGCACGACGAACTGGCAAGCCGCCTGTAATCTTTCGTAAATGAAACTAAGAAGAACAAGATCCGCGGATCTTGTTCTTTTTTTGTTCAATTTGATACTTTTTTGGCCAAAGATGATAAAAGAATTACATTAAGTGCTACAATTTAAGGGAATCAAAAAGAGTATTGCTTATGTTACCGCTTTAGTAAGAGGGGGTAAAGGAAGATGTCATCAAGAAAAATTGCCTTGACCGGACTTGCTTTAGCTGCTGTAACGTTAACAGCCTGCAGCAAGCAGGAGAGCAGTCAAAAGGAGCAGGATTTGAACTGGTCAGTCGGCGGGGAAATCACCACGATGGACCCGTCCAAGGCCACGGACGTGGTCAGCTTCAGCCAGATGATCAATTCAATGGAAGGGCTCTACAGAAACAGCAAGGACGGGCAAAGTCCGGGCCTGGCCACTAGCGCCCAGGTTTCCAAGGACGGGCTGACTTATACTTTCAACTTGCGCAAGTCCAAGTGGAATGACGGCACGCCAGTAACTGCCCAGGACTTTGTCTACTCCTGGCGGCGGACCGTCAATCCCAAGACTGAGGCCGAGTACTCGTATCTTTTTTCCGGGATCAAGAACGCCGATGCCATCCAAAACGGCAAAAAGCCGGTTTCCAGCCTGGGGATCAAGGCCGAGGGCAAAAGTATAAGCTGGTCGTCACTTTAGAGAAGCGGATGGCCTATTTTAAGGACCTTATGGCCTTCCCAGTCTTTTTCCCGCAGGAGGAAAAAGACGTCAAGAAATACGGGGACAAGCAGAGCGTCAAGCTTGACCAGATCAGCTTCACGGTCAACAAGACGGCGACTACCGCCTACAACCTCTACCAGTCAAACAAAATAGATGTTCTGGGCCTGGACTCCAATTTGAGCAAGCAGTTCAAGGGCAAGAAGAACTACTACAGCCTCTCCAACGGGGGGACCTACTACCTGGAACTTAACGAAAAGAACCCGAACCTGGCCAACAGCAACATCCGCAAGGCCATCTCCCTGGCCATCAACCGGGAGAACCTGATCCGGATTTTAGGCGGCAACAACCAGGTGGCCAATACTTACACAGCCAAGGGCTTGACTGAATATTACGGGGAAAACTACACCAGCATGATTTCTTCCTCGGCCAAAGACCTCTACAAGTACCAGCCAAGCAAGGCCAAGGAGTACTGGCAAAAGGGCCTGAGTGAACTCGGCAAGTCCAGCTTGACCTTGAACCTGCTGACCAGTGACAGCGACGGGGGTAAGAAGACCGGCGAGACCCTGCAGAGCATGCTGGAAACCCAGCTGCCAGGGCTGAAATTGACGGTCACCAGTGTTCCCTTCAAGACCCGCCTGGCCCGGCGGGAAAACGGCCAGTTCCAGATCTGCGGGTCAGACTGGATCGCTGACTTCGGTGACCCGATTTCCTTCCTGGAACTTCTGACCAGCAAGAACAGCTCCAACTATGGCTCCTGGAAAAACAGCCAGTATGACAAGCTGATTGCTGCTTCCAAGAACACCAATGACCAGGAAAAGCGGCTCAAGGATATGAGTAAGGCGGAAAGCATCCTGCTTGACGATGTCGGGGTTTACTATGAGGACGATGCCTGGCTGATCCGGTCAAATGCCAAAGGCTGGATCTGCAAGCGGAGCGAGTGGAACTTTAAGGAAGCCTATGTGACTAAGTAATGTGATTTGAAAAGAAGAAAAAAGGCAAGCTCCAGAGGAACTTGCCTTTCGGTATTATTGCGATGTCCGGGCTCGAACCGGAACATTATGGATTCAGAGTCCACTGCCTTACCAATTTGGCTACATCGCAGTAAATCACCCGTACGAGAATTGAACTCATGACTCCACCTTGAGAGGGTAGCGTCTTAACCACTTGACCAACGGGTGAAGTTCGTGTTCGAATTACCGACATTCATTATTATGCTTTCTTTGCAAGAAAAAGTCAAGGCTCCCGGCAAAAAAAGTCTAAAATTTTTTCAGGCTAGCTTGGAAAGGCTGAAAACTGCCGTATAATAGAGCTAATTGCCCGCACGGGCCTTTTAGAAAGGAGTCACCGCTTGCTTAATTTTCCTAAAACCCAGCTGCTAATTGAAAGCCTGGTTTCTGAAAGAATTGTTCCCGGAGTCAACTACGCCCTCTTAAAAGGTGACCAGGTCTTTGCCTCGACTTTGGGCTTTGCCAGCATTTATCCGGCTAAAAGCCAGCTGAGCCCTTTTGCTTACTATGACTTGGCCAGCTGCAGCAAGGTTTTGGCCACGACGGCTGCTTTCTTGCAGCTGAGGGAAGAGGGAAAGGTTGACTTTGCTGACCCCTTGCAAAAATACGTGCCGGAATTTAAGGACGGCCGGGTCCGCCTCAGCCACCTTTTGACCCACACATCTGGCATCCGGGGCTGGATCGAAAACCGGAATGCCTTGTCCGGCCCGGAATTAATGAGGGCGATCGTGGGCTTGCCAGTGACCAGCGAGTTTAACCGGGTGGTCCGCTATGCAGACACCAACTTCGTCCTTTTAGGCCTGGTTTTAGAGCGGATCACGGGCAAAGCAGTCCAGGACCTGGCCAGCGAGCGGATCTTCCGGCCAGCTGGCTTGACTGAAACGACTTTTGCTCCGCCAAAAGAGGAGTGCGTGCCAACGGAACTAGTTGACGGCCAGGTCATTCAAGGCTTCGTTCATGACCCCAAGGGCCAGCAATTAGGCCGGCGGTGCGGGTCAGCTGGCCTGTTTAGTACCGTCAGTGACCTGGTCAAAATGGGCCAGGGCTATATGGGGGTCAGTGACCTTTTGCCATTAAAGGAAGAAACAATCCAAGATCTCTACCAGGTCAAGACTCCGGCGGGTTTAAAAGCCCGGTCCTGGGGCTGGAACCTGGTCTTTGACCCTAAGGAAAACTATCCCATCATCTACCACACCGGTTTTACCGGCACTTTGGTCTTGTTTGACCAGGTCAAGCAGTCCGGCTTGATTCTTTTGACCAACCGGGTTCACCCTTCTCGGCACAATCAGATCTTTTTGACTATGCGCAGCCGGATCATCAACGCTTTTTTGCAGGAAAACCGCTAGCTAGAAAGAGGAGCAAAATCACATGAAATTAAGCAATAAGCAAAAGGGCTGGCTGCTTTTAGCCGTCTACGGCCTGGTCATCATCATCCTGGGCTGTTTTAACAGCCGGATGTCGCCTTATTATGCCATCACCGCTATCGCGGCATTTGCCGTGGCCCTAATCGAGGGCCTGCTTTTTGCCTTTAGCAAGAACGCGACATACAAGGCGGTTGCCTTTTTTGCCGGCTTGGTTGCCTTGATCAACGTAGTCGCCGTCTTAACTACGGCAATTTAAAAAATCCCGCGGCTGACCGCGGGATTTTTATTTACTCTTTTACTTACTTGCTTTGCGTATGCTAGTTGATTCTTCTCTTCAAGACGCCCTTGTCGGCAAAGACCTGCCGCAGGTGCAGCATGGCCGTGTAGGTTGAGAGAATGTAGATCTTGTCAGTCGGCGTCTTTGCAAAAGCGGCCAACAGCTGGTCAAAGTCGCTTTCAATGATCATCTTGTCCGGGTCAAAACCGGCAACTTCCAGGCGGAAGGCCATGTCCTTGTGCCGCTCGCCGCCGACGATTACCTGATCGATCTTGTCCCGGTCCAGGCTTTCAAAGTTCCCGTCCCAGATCCAGCTGGTGTCGATGCCGTCAGCGTGGTGGGCGTTTAAGAGGGCAGCCAGGCTGTAGTGGTCCTTTTCCGTGTCCAGGAGGCTGAGGACTTCGTTTAAGCCAACCGGGTTCTTGACCAAGATGATGTTGATCTGCTTGCCCTGGTAGTGAATCAGTTCCTGGCGACCGAAGATCCGCTTGTTTTTGGCAAAAGCCGCCGCGATTTCATTGGCGGAAACGCCGAATTCTCTGGCGCAGGCAAAGGCGGCCAGGGCATTGTAGATATTGTAGGTGCCGCCGATGTTGACGGCGAATTCCTTGCCTTCAATGGTAAACTTGATCCGGCTCGGGGTCTGCTCGCTGATTTCTTCCAGCTTGTAGGTCAAATCCGGCCGCTTGTAGCCGCAGTTCGGGCAGAAGAAGTCACCCAGGTTGGCATAGGAAATTGCGTGGTAGTGCAGGATATGCTCGCACTTAGGGCAGAGGACCCCGTCAGTGTTGACGTCAGCCTTGAGGTCATTTTGCGGTTTGTCCTGGTCAGTTTCAAAGCCAAAAAAGACTTTTGGATTCGGCAGGTCGACTGAAGAGAAGATGCTGGCGTCCCCGTTAGCGATGATGGTTGCATCTGGCGCCAGCTTGATGCCGGCGACGATCTTTTCATAGGTCGTGTAGATCTCCCCGTAGCGGTCCATCTGGTCTCTGAAAATGTTGGTCAGAACAAAGGCCTTGGGGTGGACCAACTGGGTTACGGCCTTGACGTTGGCTTCATCGACTTCCAAAACGGCCAGTTTCCGGCTGCTTTTTTTCTGGTCATGAGCCAAAAAGGCAGTTACGATCCCCTGGGCCATGTTGGACCCGGACGGGTTGGTCAAAATATCGCCGTATTTTTCTTTCAAGGTCTGGGTGATGAGGGCCGTGGTCATGGTCTTGCCGTTGGTCCCCGTAACGATAATGGTCTCGTAGTCCTTGCCCAGCTGCTCAAGGACATCTGGGTCAAGCTTCATGGCCAGCTTGCCGGGAAAGCTGGTCCCGCCCTTTAAGACATTGTGCAAGAACCAGTAAGAGGACTTGCCGGCAAAAGTTGCGATGTTGGATTTAAAACTCATGATTAACTTCCTATTCTGCATTAAAACTATGATAAATCTTACCATAAGACGGAAAGTTTAGCGGCTAAAATGCGGAGCTTTTAAACTTTTGCAAAATACACTATACTTATTTGAGCGAGATTAATACAAAGGTGGAGAATATGGCACAGTTTTTTTTCGAATACGGAGCGATGGGCAGCGGCAAGACGATTGAAATCTTGAAGGTTGCCCACAACTACGAGATTCAAGGACGCAAGGTGGCTTTATTGACCAGCAGCGTTGACACCCGGGCCGGCCGCGGCGTGGTGGCTTCCCGAATCGGGCTCAGCCGCAGCGCCCAGCCGATTGAGCCGGACCTGGACCTCTTTGACTACATCACGGCTTTGAACCAGCAAGAGCAGGAGTCTGACGGCCACCCCTTAGCGGCGGTCTTGATCGATGAGGCCCAGTTCTTAAAAAAGGACCAGGTCATCCAGTGTGCCCGGGTCGTGGACGACTTGCACATTCCGGTGATGGCCTTTGGCCTAAAGAATGATTTTCAGAACCATCTTTTTGAAGGCAGTGAGTATCTTTTGCTTTATGCTGATAAAATAGAAGAGATGAAGACAATTTGCCACTTTTGCGGGCACAAGGCAACCATGGCCCTGCGCTACAAGGACGGTTTGCCCGTCTATGAGGGCGAGCAGGTGCAGATTGGCGGCGACGAGGCCTACTACCCGGTCTGCCGCTTCCACTATTTCCACCCCGATCAGGCAAGAGACTAGTTTTTATTGGAAGGATTGATTAAATGGATAATGTAATGGCACAGCTGGAAAGCTTGGAAGTACGCTATGAAGAAATTCAGGAAATGATGGCCGACCCGGAAGTCATCGCTGATACCAAGCGCTACATGGAAATTACCAAGGAAGAAGCTGACATGCGGGAAGTCGTGCAGAAGTTCCGCAAGTTCAAGGCCGACAAAGAAGAAATTGCCGGCAACAAGGAAATCATCGCTGACGGTTCAGACCCTGAGCTGGTTGAAATGGCCAAGATGGAAAACTCTGAGCTGGAAGATGAAATCAGCCAGCTGGAAGATGAAATCAAGATCTTGATGCTGCCAAAGGACCCTAACGATGACAAGGACATCATCATGGAAATCCGGGGGGCAGCCGGCGGGGATGAAGCTTCCCTGTTCGCGGGCGACTTGCTGCGGATGTATGAAAAGTACGCGGAAAACCAGGGCTGGAACGTTTCTATCGTCGACAGCGAACAAACTGAAGTTGGCGGCTACAAGCGGGCAGCCATCATGATTACTGGTAACAAGGTCTACTCCAAGCTGAAATATGAAAACGGGGCCCACCGGGTGCAGCGGATCCCAGTAACTGAATCAGCCGGCCGGGTGCACACTTCAACTGCTACCGTTGCCGTCATGCCAGAATATGAACAGGTTGACATTGACCTTGATCCAAAGGAAATCCGGGTGGACGTCTACCGGTCATCCGGTGCGGGCGGTCAGCACATCAACAAGACTTCCAGTGCCGTCAGAATGACCCACTTGCCAACCGGTATCGTGGTTGCCATGCAGGACCAGCGGTCCCAGCAGCAAAACCGGGCCAAGGCCATGGAAATTTTGAAGTCCCGGGTTTACGACTACTACGAAAGCCAGAACCGGGACAAGTACGACGCCAAGCGGAAGAACGCGGTCGGCACTGGTGACCGGTCAGAAAGAATCAGAACCTACAACTACCCGCAAAACCGGGTGACTGACCACCGGATCGGCCTCACTTTGAACAAATTGGACCGGATCATGAACGGGGAACTGGACGAAGTCATCGATGCTTTGACGGTTTACTACCAAACCAAGCAATTAGAGGAGCTGGCAGAAAATGCATAAGAGTTTACGAGAAATGCGGATTGAGGCCAGTGAACTGGCTGAAAGCGCACGGAGCGAGGAAATCGACTTCCTTTTGGCTGAGCGGCTGGGCCTGACGCCAAGCCAGTTTCAGCTTAAGCAAGACATGGAATTGTCTGACGCTGAAGTCAAGCAGGCCAGAAAGGACATGAAGCGCCTGGCTAAAGGGGACTCACCCCAGTATATCCTGGGCTATGCCTGGTTTTTAGGCTACCGCTTGCGGGTGGCCAAAGGCGTGCTTATTCCCCGCTTTGAAACTGAGGAACTGGTTGAATGGGCCCTAGCGCACTTACAAGACGGCGACACTGTCCTTGACCTGGGGACTGGGTCAGGCAATATTACGGTGGCCCTGGCCAAGGAAGCTGAAAGCAAGGGGATCAAGGACCTGCATTTTTACGCCAGTGACGTTAAGGACACCCCGCTCAGAATCAGTGAAGAGAACTTTTTGGACTACGGCCTGGACGTAACCACCCGCAAGGCCAATGTTTTGCTGGGCCTGGGCAAGTTTGACTTGATCATTTCCAACCCGCCTTATATCAAGCCCAGCGAGAAGAACGTGATGGACAAGGGCGTTCTGGCCAATGAGCCGGAAGAAGCCCTGTTTGGCGGCCAGGATGGCCTGGCCTTTTACCGGAAGTTCGCTGAAGAAGTTAGAGACCACTTAAACTCGGGCGGCCGCTTCTTCATGGAATTCGGCTTTAGCGAGGAAGATGAGCTGAAGGCCATGTTTGCCGAAAAATTGCCGGACTTTAAGGTGGAATTCCGCCGGGACATGGCCGGCAAGCCGCGGATGCTGTTTGGGGAGTGGAAGAAATAATGGAAACCAAGATTTTTAAACGGGAACAATTGGATGAAGCAGTCAGCCTGCTTAGGGAAGGGGGATTAGTTGCCTTTCCGACTGAAACTGTCTATGGCCTGGGGGCTTTGGCCACCCGAGACGATTCAGTTAAAAAGGTCTACGCGGCCAAAGGCCGGCCTAGCGACAACCCCTTGATCGTGACCGTGGCTGACGAAGCTATGATGCGCCCTTACGCTAAGGAAGTGCCGGAGCGGGCGGAGAAGTTGATCAAGCACTTTTGGCCAGGTCCCTTGACCATCCTGCTTTTAGCTAAAGAAGGGGCCCTGCCGGAATCTGTAACCGGGGGCCTGCCAACGGTTGCCTTCCGCTGCCCGGATGACCAGCTGACTCATGACTTGATCGCCAAGCTTGGCTACCCGATCGTCGGGCCTTCCGCCAATACCTCGACTAAGCCGAGCCCAACCACGGCCCAGCACGTCTACCACGACTTAAAGGGCAAGATCGCTGGAATCGTTGATGGCGGCGAGACTGAAGTGGGCCTGGAATCAACCATCGTTGACCTGTCGGTTAACCCAGCAGTTGTTTTGCGGCCGGGCAAGATTACGCCAGAAGAGATCAGCCAGGTCTTGGGCGAAGAAGTTTTGATCAACCGGGGCCAGGTAAGTGACAAGGACGTGCCGAAGGCGCCAGGGATGAAATACCGCCACTACGCGCCAAGTGCCCAGGTTTACGTGGTCGACCAGGCGGAAACTTTTGATAAGCTGGACCTGGATGCTTCCTGCGGGGTCATGGCAACTAGTGACCTTTTGGAAAACTTACCTGTACCTGAGGAAAATAAGTTCAATTTAGGCAAAAATCTGACGGAGGCTGACCACAACCTGTTTGCCGGCCTGCGCTATTTTGACGACCGGCCAGAAATTAAAAGTATTTATGTAGAGGGCTTTGACCAGGGTGAGGAAAGTCTGGCCTACATGAACCGTTTAAACAAGGCTGCCGGCGGTCATCATGTATAATCTGGACGATTTAATGTTTTAAAAAAAGAAATTGCTTTAAACAATTTCCTTTTTTATTTATAATAGAGACGACATGGTATTTTTGAATGGAGGAACTATATGGGAAAGTTCACTGTGTTAAACCATCCATTGATTCAGCACAAGCTGACGATCATTCGCCGCAAGGAAACTGGATCAAATGAATTTCGGAGAATCGTTGGCGAAATCGCCGGTTTGATGACCTACGAAATCACCCGCGACCTGCCTTTGCAAGACGTTGAAATCGAAACGCCAATGGGCAAGACGGTGCAAAAGGAACTGGCCGGCAAGAAATTGACTATCGTGCCGATCCTGCGTGCCGGCATGGGCATGGTCAACGGGGTTTTGGAAATGATTCCGTCAGCCAAGGTCGGCGTCGTTGGCATGTACCGCGACGAAGAAACCCTGAAGCCGGTAGAATACTTCTTCAAGGTTCCTAAGGATGTTACTGAACGTGAATGCCTGGTCGTTGACCCGATGCTGGCTACTGGCGGTTCCGCCAACCTGGCCATCGAAGCTTTGAAGAAGCGGGGCGTGACCGACATTAAGCTGGCCGTCCTGGTTGCTGCGCCGGAAGGCGTCAAGGCGGTGCAAGATGAACACCCGGACGTTGACATTTACGCTGCTGCCCTTGACGACAAGCTGCTGCCAAACGGCTACATCTTCCCAGGTTTAGGGGATGCAGGTGACCGGATCTTTGGGACTAAATAATTAAAAAAGTCGCTATAAAAGCGATTGCAAAAGTTCCAATTGATTTTTATTGGTGTACAATAAATGACGTGTTCGAAGAATTCAACACAAGAAGGGAGGTCACGAAGAATTGGAGAAATCACTTGTCTTCAATATTAACGGTACCGGACTGAATGTCGACTTGGTCGGCATTATCGGTTCGACCTTGATGGCAATTGTGGTTTTTGCCATTTGTTACGCTCTTTCACGTAAAGTTGAAATGAAACCGAACAAGAAACAAAATGTCCTGGAATACCTAATCGATTTTACCGACGGGATTGTCAAGGATAACGTCGAAGACCCGGCTGCGCAAAAACATCTGTCTCTTTACGCCTTTGTTTTGTTTCTTTTCATCTTCTGCATGAATCAACTAGGGTTGTTCTTGGAAGTGAAAGTCGGTGACTATATGGTCATCAAATCACCAACTGCTGATCCAGTGACGACGATGTCGTTCGCGATGATGACCTTGCTTCTGTCATTTACCTTCGGGATTCAGAAATTTGGCACGAAGGGCTACCTGCAGAACTATGCACGTCCTGTCGGTTTTCTTTTGCCGATTAACATCATTGAAGAATTTACCAACTTCTTGACGTTATCGCTGCGTCTCTACGGTAATATCTTTGCGGGTGAAGTCCTGCTGACCCTGATCGGGAACCAGCTGGGGCCAAGCATGGGGATTGTAACCAGAATCCTGGCTGCGCCGCTCGCAATGATCTGGCAAGGTTTCTCTGTCTTCATTGGCTCTATCCAGGCGTATGTTTTTGTAACCCTTTCTATGGTTTATATTGGCAAGAAGGTTACACAAGAATAATTTTTCGGAGGTTTTATTATGACTACAGGTTTAAAGGATTTAGCTGCTGCACTTGTTGCTGGTATTGCTGCTTTGGCTGCTTCATGGGGGAATGGTAAGGTTATCTCAAAGACGATCGAAAGCATCGCCCGCCAACCAGAAAGTGCTGGTAACTTGAGAGCAACTATGTTCATCGGTGTTGGTTTGATCGAAGCCGTTCCAATCCTGGCTATCGTTATCGCTTTCTTGATTTTGTTCATGTAATTAACCAGTCGATAAATTACATTAGTTACTAAATTGAGAGAGAAGGATTGTTGATGGAATTTCAACCAGTATTCGCCGGCGCTGAAATCTCAATCATTAATACCCTTTGGTATTTAATAGTATTCAGTATCCTTTTGCTGGCCGTCAAGCATTATGCCTGGGGTCCGGTAAAGGACATGATGGAGAAGCGCCGTCAGAAAGTCATTGATGACTTGGATCAAGCTGCTAGCGACCGCAAGAAGGCTGAAACTTTGGCCAATGAACGGGAAGCAGCCTTGAAGAATTCAAGACAAGAAGCAACCCAGATCCTCTCTGATGCCAAGAGTAATGCGCAAAAGACCGGCAAGCAAATCGTCAGCGAAGCCATGGCTGAAGCTTCCGCTATCCGGGAAAAGGCCAAGGCTGATGCAGCGCAAGCTGAGACTGACGCCTTGAACGAAGCCCGCGAAGAGGTTGCTGATCTTTCTGTGACGATTGCGGAAAAGGTAATTGCTAAGAACTTATCTGCTGCTGATCAAAAAGATTTAGTTGATCAGTTCATTAAGGGGTTGAACGATTAATGGCCTTAAGTAGAGAAGAAACGGCAAGACGCTACGGAACAGCGATCTTTGATTTTGCCAAAGACAGCGGCAAGACTGAGCTCATGTACAGCGAACTGACTGAATTGAAGAAGGCAGTTCAAGCAGAGCCCCGTTTTGTTCAGGTTCTGAGCAATCCTGTTTTGGACGCCAAGCAAAAGAAAAGTCTTTTGACGGCGGTTGAACAGGGCTTTTCTGCAGAGCTTCAAGAAGTTTTAAACTTCTTGCTTAGCTATGATCGTTTTGACAACTTAGTTGACATCATTGACTACTACATTCACCTGTACAATGCTGCCAACCACATCGGAACGGGTGTCGCTAAGACTGTATTGAAGCTAGATGAAGATCAGCTACAGCGCCTTGCGGACAGCTATGCCAAGAAATATGGCTTGCAGGCACTTCATCTTGAAAATGAAGTTGATCCAGAAATTATCGGCGGCGTGGTCCTTGAGGTTGAAGGCCGCGTGATCGATGGCTCAGTAAAGCATCGATTGGAGAAAATCCGCGCCATGTTAACAAAGTAAGTATTATAAAGAGGTGAAACCATTGAGCATTAAAGCGGAAGAAATCAGCTCTTTAATCAAGCAGCAACTTGAACACTACGACGATAAGCTGGACATCGAGGAAGTCGGTGTCGTAACTTACGTCGGCGATGGTATCGCCCGCGCTCACGGCTTGAACAATGTCTTGTCAAGTGAGCTTTTGCAGTTCGACAATGGTGCCTACGGTATCGCCCAAAACTTGGAAAGCAATGATGTCGGTATCATCATTCTGGGCAAGTTTGACGACATCCGTGAAGGCGACCGCGTGAAGCGAACTGGCCGGATTATGGAAGTTCCAGTTGGGGATGCTTTGATTGGCCGGGTTGTGAATCCACTTGGCCAGCCAGTTGACGGCTTAGGCGAAATCAAGACTGACAAGACTCGGCCAATCGAGTCAAAGGCGCCAGGCGTTATGCAGCGTCAGTCAGTTAACCAGCCTTTGCAAACGGGTATTAAGGCCATTGATGCGCTGGTGCCAATTGGCCGTGGTCAGCGTGAGCTGGTCATCGGTGACCGTAAGACTGGTAAGACCAGTTTAGCGATCGACACCATTTTGAACCAAAAAGGGCAGGACGTAATTTGTATTTACGTCTCAATTGGTCAAAAGGAATCAACTGTCAGAGCACAAGTTGAAACCTTGAAGAAGCTTGGGGCGATGGACTACACCATCGTGGTTGAAGCTGGTCCTTCAGAACCGGCACCAATGCTTTACATCGCGCCATATTCCGGGATCGCGATGGGGGAAGAATTCATGTACGCCGGCAAGGACGTCCTGGTTGTCTTTGACGACTTGTCCAAGCAGGCGGTTGCCTACCGTGAACTTTCCCTGCTGCTTCGCCGGCCACCTGGCCGTGAAGCCTACCCAGGTGACGTCTTCTACCTGCACTCACGTTTGTTGGAACGGAGTGCCAAGCTGAGCAAGGAACTGGGCGGCGGCTCATTGACTGCCCTGCCAGTTATTCAGACTGAAGCCGGGGACATCTCCGCCTACATTCCAACCAACGTTATTTCCATCACTGACGGACAGATCTTCTTGCAAAGTGACATGTTCTTCTCCGGTACGCGCCCAGCTATCGATGCCGGGGCTTCTGTTTCCCGTGTCGGCGGGGCCGCGCAGATCCCAGCCATGAAGAAGGTTGCCGGTACTTTGCGGACCGACCTGGCTTCATATCGGGAACTGGAAAGCTTTGCCCAGTTCGGCAGTGACCTGGACCAGGCAACGCAAGCCAAGCTGGCCCGCGGCCGGCGGACCGTCGAAGTATTGAAGCAGCCGCTGCACAAGCCGGTTGCCGTTGAAAAGCAGGTTGTCCTGCTTTACGCTTTGACCCATGGCTTTATGGACGCTGTGCCAGTCGATGATATTGCTCGCTTTGAACAAGAACTTTACACCGACTTTGACGCCAACCATGCTGATCTGTTAGCTGAAATCAAGTCAACTGGCAAATTGCCAGATGAAAACAAGCTTCAAGAAGCTCTTCAACAATTTGCATCCAGCTTTTCATCAAGTAACAAATAGGAGGTAGACTATGCCTGCATCTTTACTTGAATTGAAGAAGAGAATTGCTTCTGTCAAGCAAACGAGTAAGATTACTGAAGCCATGCACATGGTTTCAGCAGCTAAACTGAATCAGACTGAAAAAAGAGACAAGGGCTACCAGGAATATAACCGGCTGCTGCACCAAACCGTGTCCCGGCTGATGAGTGCCAGCGTAATCAACCACTTGAACAAGGCTAATTACCGCCTGACGCAAGACAACATTGACTCCATCGACTACGATGATGTCTTTGGGATGGGGATCATTTCTGACATGATCAAGCCCCGTGAGGAAGTTCACTCCGTGGGCTACCTGGTAGTTACTGGTGACCGTGGTCTGGTCGGCTCCTACAACAGCTCAGTCATCAAGCAGATGATGAGCCTGGTAGCTGACGACAAGCTGCAGGGCAGAGAGTCCAAGATCCTGTCAGTCGGCAGCGTTGGCTCCCAGTTCTTCAAGAAGAACAACCTGAACGTTGTCTACGAAAAAGACGGCGTTTCAGACGTGCCAACCTTCAAGGAAACCCTGCCAATCGTCTCAACGGCGATCAAGATGTACTTGAACGGCGTTTATGACGAACTGTATGTTTGCTACACCCACCACGTGAATTCTTTGTCCTCAGCCTTCCGGGCCGAAAAGATGCTGCCGATAGTCGACCTTGACATCGGGACCATGGAAGCCAAGGAAAGCAAGAAGATTGAATTCGAAGTTGCCCCTGACATTGACAGCGTTTTGGCAACCTTACTGCCGCAATTCGCGCGGGCGGAAATCTATGGCGCCATTTTGGACGCCAAGACCGCCGAACACGCAAGTTCAATGACGGCCATGAAGAGTGCCACGGACAATGCTAAGGACCTTGTTTCTAGTCTTAGTTTGCAAATGAACCGTGCAAGACAAGCACAAATCACTACTGAATTGACTGAAATCGTCAGTGGTGCGAATGCACTTGAATAAGAGAAAAGGAGGTAGAAGTTTGAGTCAAGGTGAAATCGTTCAAGTAATCGGCCTTGTTGTTGACGTCAAGTTTTCAATTGGCAAAGACCTGCCAGACATCAACAATGCCTTGAAGGTCATCAAGTCAGACGACGACTCGATTATCCTTGAAGTTATTCTTGAACAAGGCGATGGCGTTTTGCGCTGCATCGCGATGGAATCTACCGATGGCCTTCGTCGTGGGATGAAGGTTGAAGATACTGGGAGCTCAATTTCCGTGCCAGTTGGTCCGGATACCTTGGGCCGGGTCTTCAACGTTTTAGGTCAACCGATTGATGGTGGTCCAGAATTTCCAGCTGACCACCCTCGCTCCGGGATCCACAAAGAAGCACCTAAGTATGATGAATTAACTACTAGCCGTGAAATCCTGGAAACTGGGATCAAAGTTATCGACTTGTTGGAACCATATCTTCGTGGTGGTAAGGTCGGTCTGTTCGGTGGTGCCGGGGTCGGCAAGACCACGATCATCCAGGAACTGATTCACAACATTGCCCAGGAACACAACGGTATTTCCGTCTTCACCGGTGTCGGGGAAAGAACCCGTGAAGGTAACGACCTTTACTTCGAAATGAAGGCATCTGGCGTTTTAGACAAGACCGCCATGGTCTTCGGGCAGATGAACGAGCCGCCTGGTGCCAGAATGCGGGTCGCTTTGACCGGTTTGACGATCGCTGAATACTTCAGAGACGTTGAAGGCCAGGACGTGCTGCTCTTCATCGACAACATCTTCCGGTTTACCCAGGCCGGTTCTGAAGTTTCCGCCTTGCTGGGTCGGATTCCTAGTGCCGTTGGTTACCAGCCAACTTTGGCAACGGAAATGGGTCAATTGCAAGAAAGAATCACTTCCACTAAGAAGGGGTCAATCACCTCTATCCAAGCCGTTTACGTTCCAGCCGACGACTACACTGACCCTGCGCCAGCGACTACTTTCGCCTACCTGGACGCGACGACCAACTTGGAACGTAGCCTGGTAGAACAAGGTATCTACCCGGCCGTTGACCCACTTGAATCAACTTCCAGTGCCCTGGACCCTGAAATTGTCGGCCAGGAACACTACGACGTTGCGACCCGGGTTCAGCATATCCTGCAACGTTACCGCGAACTGCAAAACATCATCTCCGTTTTGGGTATGGATGAATTGTCAGATGAAGAAAAGCTGATCGTTGCCCGGGCACGTAGGATTCAGTTCTTCCTGTCACAAAACTTCTTCGTTGCCGAAGTCTTTACCAGCGTTCCAGGCTCATACGTTCCAATCAAGGAAACGATCAAGGGTTTCAAGATGATCCTCGACGGCCATCTTGACGACTTGCCTGAAGATGCCTTCAGAGGCGTTGGCCCGATCGAAGACGTTTTGAAGAAGGCGCTAAAGATGGGGGTTACCCCAAGCGATCCGGAAGCAAAAGCCTTATTAGAAAAGTAGGTTGATGCATCATGGCAGAAGCAGAGAAACTGTTTAAGATCAATATCGTTACGCCAAACGGGTTAATCTATTCTCACCGTGGCAGCTCCGTCTCAATGCGGGCTATTGACGGCGACCGGCAGATTTTGTACAACCACCTGCCGATTTTAACTCCGCTGACAATTGGTGAAGTCCGGGTTCAACGCGGCGCCGATGTCGACCACAAGGTTGATCACATCGCCGTTAGCGGGGGGATCATCGAATTTGCCAACAATGTGGCAACGATTATTGCCGACAACGCAGAACGCGCGCGCAACATTGACCTCAGTCGGGCTGAAGCTGCCAAGCAGCGGGCCGAGGCGCACATCACGGAAGCCAAGGAAAAGCACGACGAGCAGTTATTGGAACGGGCTCAAATTGCTTTGCGGCGGGCTGTAAACCGGATTCACGTTTACGGCGCGTTGCACAAATAAGGGAAAAGAGCGGATTTATTCCGCTCTTTTTTTATGGTAGATTTTATTATGAGACAACTTGGAATTCACGCAATCATCAGCTTGGTGATCTACTTTGTTTGCATTGCCTTAGCCTTTCAGGCGATCAAAGCCGTCAGAATTGAGAAAATCATTCGGACCAGCCGGGTATTTGAAGTCCAGGTCTTCTTGATTTTTACGGCGATTGCCCTGGGCTATACGGTCGGCCAATTTTTGATCGCCTTGATAGATACTTCATTACAATTGTCTAACCTGTTTTAAAGAATAGGTTAAAGCTAAGCGGAAGCCGCTATACAGAGCGCTTTTATGGTACAATTAAAATTAATATGTTATGGAGGAAATAGATGTGTCAAAAGATATTGGTATTGATTTGGGGACCGCGAACGTTTTGATCAACGTTTCCGGCAAGGGCATTGTGATCGACGAGCCATCTGTTGTTGCCGTGGATACGAACACCAACAAGGTGGTCGCTGTCGGCACTGAAGCTTATGAAATGGTTGGCCGTACTCCTGGCAACATCCGCGTTATCCGGCCTTTGAAGGACGGGGTAATTGCTGATTTTGACATTACTGAAGCCATGCTGAGCTACTTTATTGAGAAGCTGAACGTCAAGGGCTTCATGAGCAAGCCGAACGTTCTTGTCTGCACCCCGACTGGCGTAACTTCAATTGAGCAAAAGGCCATCATCCAAGCCGCGGAAAAGTCAGGCGGCGGCAAGGTCTACCTGGACTATGAGCCAAAGGTAGCTGCCGTTGGTGCCGGCCTGGACATTTTCAAGCCGCAAGGTAACATGGTCATCGACATCGGCGGGGGGACGACTGACATCGCCATCCTGTCCATGGGCGAAATCGTGACTTCCAAGTCCCTGCGCTATGCCGGGGACCGGATGAACCAGGCCATCGTCAACTACATCAAGGCTAACCACCAGCTCTTGATCGGGATGCGGACGGCGGAAGCCATCAAGATTGAAATTGGTGCCGCTACTGATCCAGACCCGGACGCAAGCATGAATGTCCGCGGCCGTGACACGATTGACGGCCTGCCAAAGCAGATCAAGGTAAACAGCTCTGAAGTAACTGAGGCCCTGCAAGAAGGCCTGCAAAGCATCATTGACACTACCAAGCAGGTTCTGCAGGAAACGCCGCCGGAATTGTCCGCTGACATCATCGACCGCGGGATTATGATCACCGGTGGTGGCGCCTTGCTGAAGAACATCGACAAGCTGATTGCCGACAGCCTGCTGGTTCCGGTTTTGATCGCTGAATCACCGCTTGAATCAGTTGCTTTGGGCACTGGCATCCTGCTGCAGCATATTGAAAAGCACGAACGTCACTAATAATGCGTCAAATAATGATTCTTCTAGTCCGCTTTTACCAGCGGGCAATCTCACCAATTTTGCCGGACAGCTGCTGTTTCTACCCGACCTGCTCCAGCTATATGATCACTGCTTTGGAAAAGCAAGGTCCGCTTTTGGGACTGCTGATGGGCCTGGCAAGGATCCTGCGTTGCAATCCATTTAACCGAGGCGGGGTGGATCCAGTACCGGACAAGTTTACCCTTTTGCGCAATCCCCACCCAGAAGAATATGAGGACGAAATTATTGCCAGAAAATTCCACAGTCACTAACGAGGAGGGAATATGTCAAGAAATCAAGAAAACATCGGGATCGAGGTCAACGAACTGTCTGGCCGTCGGGTACCGACTTGGGAAGTAGTTATTCCAAAGAAGCGCCAGATCGGCTTGATCGAGCAGGTTGACGGCAAGTTCCGGGTAACCAGCAGCAAGTCCAAGAATGTGATGTTTGCCAAGAGCCTTGATGCCGGCATCAACGATCTGCTGGCCTACTTCACCTTGCACGAAAAATAATTTTTACGAATAAAGTGATAGTTAATGGCAAAAGTTCAAGAAGAAAGCAAATGGTATGACCGCATCGCCTGGGGAGTTATCATTCCCGTGGTCTTGCTGTCATTCGTCAGTTTCTATTCAATTTACAACGCGTCAGTCAACGACTCGACCTATGGGACGCCAACCAGAACAGTTGCCATGCAGATTGTCTGGTACACGGTTTCCTGGCTGATGGTGGCCTTCATCGTCCGCTTTGACGCCGAGCAGATCTTTAAGCTGGCCCCCTATCTGTATGGCTTGGGGATCATCATGCTGGTCGCGGTCCTCTTCCTGTATGACCGGACAACGGCTGCCAGCAGCGGGGCCAAGAGCTGGTTCGTCGTCGGACCTGTCAGCTTCCAGCCCTCAGAAGTCATGAAGCCGGCCTTTATCTTGCAGCTGGCCCGGGTCGTCAGAGAGCACAATGCGCGCTATGCCCACAATCTCAGAAATGACTGGCTCTTGATCGGCAAGGTCATGTCCTGGTTCCTGCCGGTGGCCATGCTGCTTATGCTGCAGCCTGACTTTGGGACCACCCTGGTCTTTGTCGCGATTACCGCGGGGATTCTCCTGGTTTCAGGGATTTCCTGGAAGATCATCATCCCGGTCTTTCTGCTCATGGTGGTCATGGGCGTCGCTGTCATCCTCCTGGTCTTTACCAGTGAAGGGCAGACGATTCTGCGCCACTACTTCAAGACCTATCAGCTGGAAAGAATCAAGTCCTGGAGTGACCCGTCAGGGGACAACTCCAACAGCGCCTACCAGCTTTGGCAGAGCATGAAGGCGATCGGGTCCGGGCAGATTTTTGGCAATGGCTTTAACAATATCAAAGTCTACGTGCCAGTCCGGAACTCAGACATGATCTTCTCCGTGGTCGGCGAAAGCTTCGGCTTTGTCGGCGGGGTGGCCTTGATCGGAATTTACTTCGTCTTGATCGTGCAGATGGTCAAGATCACTTTCTCGACCAAGAACGCCTTCTATTCATACGTGTCCACAGGGATTATTATGATGATTTTGTTCCACGCCTTTGAAAATATCGGCATGAGCATTGATTTACTGCCCCTTACCGGGGTGCCCCTACCATTTGTTTCACAGGGTGGGTCAGCCTTGATCGGGAATATGATCGGGGTTGGCTTGATCCTCTCGATGAAGTGGCACAATAAGGACTACATGTTTAGCACGGCTGGCGACTTTTAACTGAATTTTTGAGAGCATACGAAAACCGCCTCGGTCAATCGACCGGGGCGGTTTTATTTATTTTACTGGACTTAGTCCAAGCCAGCCTTGTTGTGCCGAACGACCAGGATGTCGCAGTCAGCAGTTCTGGTGACGTATTCAGTCACGCTGCCGATGAGCAGGCGTTCAACGGCGTTCAAGCCGGTCGCGCCGACGACGATCAAGTCGATGTCATGCTTCTTCGGGAATTCCCGGCTGATGATGGTCTTTGGTGAGCCGAATTCGATGGAGTAGTGGACTTCCTTGACGCCGCTGTCTTGGGCAGACTGGTAGTACTTTTCCATCTTCTTCTTGGCGTCGTTGGAAACCTGCTCAACCATGGCTGAGTCAAAGCTGGAAACGTTCTGGAAGGACCGCGTGTCGATAACGTGGAGAATTTCCAGGCTGGCGTTCATGTGCTTGGCAACCGTTACGGCCTTCTTGAAAGCCAGGTCAGCTTCCTTGGAACCGTCAACGGCAACTTGGATATGTTTGTATTGGTATTGTTTAGTCATTTTTGCCACCTCTTCTTGTCTCTATTTTACCAAAAAAATGAAAGCATTTTAATAAATTTACTGATTGTTTTGCGAAAGCAGGAGGGCGAAGATAAAAATCGTCGCTGAGCCTAAAAAGAGGGTGATCAAGTTGAGATACTTGTTGTCAAAGAAGAGCAGGACGATTCCCAAGAAGCTGATCGCCAGGAGCGTCCACGAGCAGATGGTCATCAAGCTATGGAGCTCCGGGGAGCTGGAGACGTCGAAGACCAGGAAGGAGCCGTTTTTCCGGTGCCAGAGGTACCAGGCGGTCAGCAGCAGGCAGGCGATAAAAATAATCATGAAAATACGGATGTAGAGCATCGGTTAAACTTTCTAGTTTTCACAGGAAGTGAAAACACACTGAGTAAGCTAGTGGCAGGAATAAACAAAAAAGCGGCCCGAAGGACCGCTGTTATTGTCTAAGAAAATCCGAGTTGACCAAAGCATAAATGGCGCTGTTGATCCCGTAAAGAATTTACAAAATCCGGCCCGTCGCGCAGTGAATATGGATTCTGCGTGAGCAGCATTCCGATTCAGTAGTTACTGACAGGCCACCACGTCCTTAAGTTTGATCGGTCAACTAATTACAAATAAGCTTTATGACGATCAACTCAGATCACTTATTATAATATAGAACCCAGCAGCCTTTGTCAAGTTAAATTACAGCGCTTTCATTTACCCTTAAGGCCTGCTTTCTGCAGGTCATGCAGGCGCTGGTACTGGCTCTTAAAAGCCGCTTCAAATTTGCTCTCGCCCTTAGGGGCAAAATACTGCTTGCCTTGCATGCGGTCAGGCAGATAAGCCTGGGCCACCCAGTCGCCCGGATAGTCGTGGGGGTAGAGGTAGCCAGTCCCGTGGCCCAGCTTGCTGGCCCCCTTGTAGTGGGCGTCTTTCAACTGGTCGGGAATCTGGCCGACATTGCTCTGGCGGATGTCGGCTAGAGCCGCGTCAATGGCCGTCATCGCAGAATTGCTCTTAGGAGACAAGCAGAGCTCGATAACAGCGTTGGCCAGGGGGATCCGGGCTTCCGGCAGGCCCAGCTGCTGGGCCGCCTGTACGGCCAAAATAACCCGCTCACAGGCCGGGGGATTGGCCAGGCCGATGTCTTCGTAGGCAATCACGCTGAGGCGGCGGCAGATTGAGACCAGGTCACCTGATTCCAGCAGCCGGCCCAGGTAGTGCAGGCCCGCGTCAGTATCTGAGCCCCGGATGGACTTTTGAAAGGCGGATAAGAGGTCGTAGTGGCCGTCCCCGTCAGCGTCAAAGTTCTGGATCTTCATTTGCAAGGAATCCGCCATGTCATCCAGGGTGACCGTTAAGGAGGAGGCATCTTTGCCCTCAGCTTCCAGTTCCTGCTTGGTCGACAGGACTGCCAGCTCCAGGCTGTTTAAAGTGGCCCGCAGGTCTCCGTTGCCCTTTTGCGCCAAAAATTCTCCTGCTTCTTTCGTCAGCTTGGCATGGTACTTGCCCAGACCTCTTTCTTCATCGGTTAGGGCCCGGTCAACAGCTGTCAGGATCTCTTCCTCAGTCAACGGCTTCAGTTCAAAAATCTGGCAGCGGGACCGGATGGCCGGGGAGATGGCCAGGTAGGGATTTTCCGTGGTTGCCCCGATCATAATCACCTGGCCGGATTCAAGCAGCGGCAAAAGAAAGTCCTGCTTGACCTTGTTGAGCCGGTGAATTTCATCCAGCAGCAGAACGACCGTCCCGCTCATCTTGCCTTCAGCGGCGACCTGGGAGAGTTCCTTTTGCCCGTCAGTCGCCGCGTTGAGCTGGCGGAAGGCATACTTGCTGCTGCCAGCAATCGCGCTGGCAATGCTAGTCTTGCCAATGCCGGGCGGGCCGTACAGGATCATGGACGAGAGCTGCCGGGCCTCAACCATCCGGCGGATGATCTTCTTAGGACCGACCAGGTGCTGCTGGCCGACGACCTGGTCGATGGACTGGGGCCGCATCCGGTAGGCTAAGGGCTTCATTTATTGCCCCCGAAGAATCTGGCCAAAAAGCCCTTTTTCTTTGGAGCAGGCAATTTCTCAGCCGGCAGGGGCGGGGCGTAGACCTGGGTCAATTCGATCCGCATCCGGTTGATGGCCTCCTTGCTGACGACCAGGATGGCGGAATCATCATCGCCTTTTCTGGCACTTTCGTCATTGACCATGCAGAAGGGAACCTGCTCCTTGCTGGCCCGGCTTTCAATCTGGCCGACAAAGGTCGGGTTGGGGGTGTTGGCGTTGATCAAAATGGTGTAGCCCTTGTAGTCGGCAAAGTGGTCCATGAAGAGTTTGGTCAACTTGGCGTCTTCACAGTCCTTGATGGTCATGCGCACGAAAACCCGCTCCCTTAAAGAACCCAAAAAGCTCCGCCGCTCGTCGGGCCTGGTCTGCGGAGTAATGTCATTCGCGGCGTTTTCGACTCTTTTGGTTAAATTTTCAGTCATGGCTTGATCCTTTCTAAAAATTAATACTGTCTTTTTCTGGCTCTAAAGCATATTATAACTGAACTTTTTGGGCAAGAAAAAAGCCTTTCCCAAAACTGGGAAAGACTTTGAAGCCGAATTGATATTACAGCAACTTGTTGTAGTATTCAACAACCAGGGCTTCGTCAATTTCTGGTTCCATTTCGTCACGTTCTGGGAAACGAACCAATTGACCTTCCATCTTGTCTTCGTCAAATGAAACAAATGATGGACGTGAAGCAACAGCTTCCAAAGCGTCCTTAACTTGTTGCAGGTTCTTTGACTTTTCCTTCAAGCTAATGGTTTGACCAACCTTAACTTCGTATGAAGGAATGTCAACGCGCTTGCCATCAACAGTGATGTGGCCGTGGTTTACCAATTGACGGGCTTGTTCACGGGTAGTAGCCAAGCCGAGACGGTAAACAACGTTGTCCAAACGACGTTCAAGCAAGATCATGAAGTTGGTACCGTGTTGGCCTTCACGGATCTTACCAGCGCGGGCAAACAAAGTACGGAATTGGCGTTCGTTCAAACCGAACATCCAGCGCAGCTTTTGCTTTTCTTGCAATTGCATGCCGTATTCTGAAAGACGGCCGCGGTGGTTAGGACCGTGTTGACCTGGAATGTATGAACGACGAGCAAGTTCCTTGCCAGTGCCTGACAAAGAAATACCCAATCTTCTTGACCGCTTCCAACTTGGACCAGTGTATCTTGACATATTAAAATTCCTCCAATAAAAACAATAAAAATTGTTGGAGTAAAATAATCACAATATAAGCTCAACATTCGTGCATCCCGAGTTTACATTTTCGCCCGTGCAGCGTGGGTTACTCGTTCACTAAACGTCCCGGGATGTTGACGTTCTTGTCGCTTATGGCTGCAAATATTTTACACGTTGACCATTATAAGGGCTTTAGGCCCGGAAAGCAAGAAAAAACGCAGAAAGTCTGGCAAAGTAGAAATATTTCGGGGGCTAGTTTGGTATAATTAACTTTAGTTCGGAGGAGAAAGATATGTCATCAACACAATCTCTACTACTCATCACTTTAATTATCACGATCATCGTAGTGGTCATGGCCATGCTTTTGATCAACCGCCGGCAATTGCGCGATATTGAAGAGCTCGACAATGAGCTGGGCAATATGGAAGACCTGCACCTGGAGCGGGCGATTGGCAAGCTGGACCAAATGGAACTGGCTGGGGAAAGCCTGGCTACCCTCAATACCTGGAAGAAGAGCTACCAGAAGGCGGCTGAGCTTTTTCCGGAAATCCAGCGCTTGATTGAAGACGGGGCGGACGAAAATGCCCGCTACCACCTGGTCAAGTCCCACCAAAGCATTAAGCAGGCCAGAGAACTGGTTGACTCTGTTTCTGAAGATGTCAAGAATTCATCTGACGTCTTCACCCAGCTTTTGGAATCAAACCGGGAAAACAAGGCCCAATATGACGAATTGATGCAGAGCTACTGGGAAATCCGCAAGGAAATTCTGGCCGATTCCTTTGACTACAGCGTGGCCCTGGAAGAAATCGAAAACCGCTTGTCAGCCATGGAGGAAGATTTTGCCCAGGCCAAGAACCTGTCAGCCCAGGGCGACCATGTAGAGGCTAAGCGGGTCTTGTCAAAGATCCGGGCGGACCTCACGGCCTTAAAGACCAAGCTACCAGAAGTTAAAGAGGATCAGCACGACCTGCAGACCGTTTTTGCTGACCAGCTGGATGAAATCGCGGCTGGCTATAAGGAAATGCGGGATGCCAAGTACGGCTTCGGCAGCCTGGACGTTCTGCTGGAAATCAGGCAAAGCAACGACCAGATCGACCGGTCCCTGGCGGCTTTGGCCCAGCTGGACTTAGAAGAGACCAGCAAGGGGATGAAGAAGGTCGAAAAGGAAATCAAGACCCTCTACGGAATCCTGGAGAAAGAATACAAGGCCCGGCCTTTTGTGGAAAAGAACCAGGACAAGCTGCAGCGGCTCTTGACCCACCAGCAGACCGTCAGCCAGCAGCTGATCAAGAAACTGCGCCATATCGACGAAAGCTATGAACTGACCCACGGGGAACTGGACGAAAGCCGGGAGCTTGAAAGAGAAGTCCACAAGATGGATTCTGACTACATCCGGGCCAGCCAGCGGATCGCTGACGGCCGGGCCGTCTACTCTGAAGTCCAGGACGACTGGATCAAGATCCTGGGCCGCCTGCAGGAGATTGGCAAGCGCCAGCAGGAATTGTCGGAAGCAGTTGACGGCCTCTATGAGGCGGAAGAAGTGGCTCAGCGGTCAATCAAGGAATTCAAGCAGCAGGTCTCTTTGGTTTACCGCCACCTCAGCCGGCAGAATCTGCCGGGGATTCCGGAAGGCTTTTTGCAAATGTACACCCTGGTCGTTAATGAAATCAGCAAGACCAGCGGGGAGCTCAACCAGGTCCGGATCAACATGGAGAAGATCTCTGAAGAACTGGTGCAAATCTCAGATGACGTTGATCGCCTGCAAAGAGAAGCGGAAGACATTATCAGTTCAGCCAATCTTTTTGAACTGACCATGCAGTATTCCAACAAGTTCCTGGACAATGAAACTGTCGTCCGGGCCCGCAGAAATGCCATGAAGCTGTATGACCGGGACTACAACTACAAGGATGCCCTGGACACGATCGCCACGGCGGTGGAGCGGGCTGAGCCAGGCAGCTACCAGCGGATTGAAAATGCCTATTATCAAGAGCAAAAAGAACTTATTGATTGAAGTCAAGCGGATTTTGGACTAAAATAGAATATCATTTGTAATTAAGCGGTCATTAAAATGGCCGCTTTTTTAAGGAGCAAGAAGCGTGATTTATTTTGACAACAGTGCCACGACCAAGATGGCGCCTAAAGCATTAGAGACCTACAGCCAGGTGGTGACCAAGATTTGGGGCAACCCTTCCAGCCTGCACAAGCTGGGTGATCGGGCCCATGGCCTGCTGGAAGCTTCCCGCAAGCAGGTTGCAGACTTGCTGGGAGTAAATACCGACGAGATCTACTTTACTTCCGGCGGGACGGAATCCAACAACACGGCCATCAAGGGGACGGCCTGGGCCAAGCGGGAATTTGGCAAGCACATCATTACCTCATCCGTTGAGCATGCCTCAGTGGCTAATACTTTTACCGAACTGGAAAACCTGGGCTTCCGGGTTACCCGCCTGCCAGTTGACAAGGAAGGCCGGGTTAATCCGGAAGACTTGAAAGCGGCCCTGGACAAGGATACGACCTTGGTCTCCATTATGGGCGTCAATAACGAAATCGGGACCATCCAGCCGATCAAGGAAATTTCTGAAATCCTGGCAGACTACCCGAACATCCACTTCCATGTTGATAATGTCCAGGCTCTGGGCAAGGGGATTTGGGACCAGGTCTTCACCTCCCGGGTCGACATGATGAGCTTTTCTTCCCACAAGTTCCATGGCCCGCGCGGTATCGGCATTTTGTACAAAAAGCGCGGCCGGATGCTGATGCCTTTGTGTGAAGGCGGCGGCCAGGAGAAGGGCTTGAGAAGCGGGACGGAAAACCTGGCAGCCATCGCGGCCATGGCCAAGGCAGCCCGCTTGCTTTTGACGGACGAAAAGGAAAAGGCGGACAGAGAATACGCCATTAAGGAAAAGATCAGCAAGTACCTGGCAGGTAAGCCGGGCATCCATATCTTCTCTCCTTTGAAGGCGGACTTTGCCCCCCACATCCTCTGCTTTGCTTTAGAGGGGATCCGGGGCGAGACCCTGGTCCACACTTTGGAAGACCAGGACATCTACATTTCCACCACTTCTGCCTGCGCCTCAAAGAAGGCGGACGAAGCCAGCACTTTGGTGGCGATGAAGACGCCAGACGCGATCGCCACCAGTGCCGTCCGGCTAAGCTTTGACGAAAGCAATACTTTAGAAGAAGCAGACGAATTCATCGCGGCTTTTGACGAGATTTACCAGCACTTTTCCAAGATCAACCACTTAGGAGAATAAATTTGCAATACACAGAAATCATGATTCGCTACGGCGAACTGTCCACCAAGGGCAAGAACCGGAAGGACTTCATCAACCGTCTTGCCAGCAATGTCCAGAAGGTTTTGCACGACTTCCCGGATCTGAAGATCCAGACCCACCACGACCGGATGCACATCCTTTTGAACGGGACCCCTTTTGAGCCGGTCAATGACCGCTTAAAGGTCGTTTTCGGGATCCAGACCTATTCCCCAGTCATCAAGACTGAAAAGAGCCTGGAAGCCATTGAAAAAACTGCCCTAGAACTGATGCAGGCAACTTACAAGGCCGGCATGACCTTCAAGGTCAATACCAGAAGAAGCGACCACAAGTTTATCTACGACACTAACCAATTGAACCAAATGGTGGCTGACTACCTTTATAACCACATGGAAGGCCTGCAGGCGGAAATGAAGCACCCGGACATGGTCCTGCTTTTGGAAATCCGCCAGGACGGAGCCTACATCTCCAACCAGCTTCTGCATGGGGCAGGCGGGATGCCAGTTGGCACGGCCGGCAAGGCAGTGATGATGCTGTCCGGCGGGATCGACTCTCCGGTAGCTTCCTACCTGGCCATGAAGCGAGGCGTGAACATCGAAATGGTCCACTTCTTCTCACCGCCATACACTTCTGAAAAGGCCCTGGCCAAGGCCAAGGAACTGACCAGCATTCTGGCCAAGTACAGCGGCCGGATCAACTTCATCGAAGTACCTTTTGCTGAAATCCAGGAAACGATCAAGGAAAAGCTGCCTGAGGGCTACTTGATGACTGTTCAGCGCCGCTTCATGCTGCGTTTGGCCGATATTATCAGGGAAAAGCGGCACGCTTTGGCCATCTTCAACGGGGAATCAGTTGGCCAGGTGGCTTCCCAAACCTTGGAATCCATGGCAGCCATCAATAACGTGACGACCACTCCAGTATTGCGGCCAGTTGCCACCATGGACAAGACTGAAATCATCGCCAAGGCCGAAGAAATCGGAACCTTTGACCTGTCCATCCAGCCATTTGAAGACTGCTGCACCATCTTTGCCCCGCCGCGGCCAAAGACCAAGCCAAAGATCGACAAGGCCCGGGAATATGAAAGCCGCCTGGACGTTGACGGCTTGATTGAGCGGGCCTTAGCCGGGGTCAAGGTTACTCCGATCTACCCGGGCCAGAGCTTCCTTGACGACCTGGATGAAGAAGACGCGGACCTGCTTTAATGCTGCGCCTGGACAAATTTTTGGCCAACATGAAGGTGGGCTCCAGGTCCCAGGTTCATGAGATCATTAAGGCCGGCCAGGTGACGGTCAACGGGAAGGTCTGCCGGTCAGCCAAGCAGAAGGTGAAAGAGGATGCGGAAGTTCTGGTTAATGGCCAGGCAGTTGTCTACCAGCAATACCACTACTTTTTGCTCAATAAGCCAGCTGGCGTCTTATCGGCAACAGAAGACTCCCGGCAAAAGACCGTCCTGGACCTGCTAAAAGACCAGGACCGTTATCAAAAAATCGCTCCAGTGGGCCGCCTGGACAAGGACACGACCGGCCTCTTGCTTTTGACCAATGACGGCCAATTGGCCCACCAGCTCCTGGCTCCGGAATACCATGTGCCTAAGACCTATTACGCGCTTTTGGCCGGAGTAGCCGACGAAGAAACGGCCAAGGCAATTGCGGCAGGCCTCACTTTAAAAGATGGAACGGAATTAAAGCCGGGCCAGCTGAATATCTTGCGGCAAGACAAGGACCAGGAGCAGTCAGAAATCGAGATCACCATTACTGAAGGCAAATACCACCAGGTCAAGCGGATGTTTGCCTCCCAGGGGATGAAGGTCTTAAAGCTTAAGCGGCTGAGCATGGGGCCTTTGACTTTGCCGGCTGATTTAGCTCCTGGCTCTTACCGGCCTTTGACAGAAGAAGAGCTAGCGGCCTTAAAGCAAGTTGCCCTTTAATGGCTGAAAAAATTATGCTATACTTTGTGACAAAGCCAAGATCAAGAGGTGGCGCTTCATGACAGAGAAAGGTCATTTAAGCTGAGAGACCGGAAGGCGCCTGGTAGCTTGATTCGCTGGCCGGCTGAACCAGGAGTAAGCCGGTCCGGTACCCGCACCGTTACCGCGTTTAAGCGGAGCATTATGCTCAATTTAGGTGGTACCGCGGTTATATATCGTCCTAGACATTTACTTGTCTGGGACTTTTTTTGGAGGAATTTATGACAGAATTAGCACCAAAATACAACCCGCAAGAGGTTGAAGCTGGCCGCTATCAAGAATGGCTGGACGAGGACTTGTTCAAGCCGTCCGGTGACAAGAAGGCCAAGCCTTACTCAATCGTTATCCCGCCGCCAAACGTTACTGGCAAGCTGCACCTGGGCCACGCCTGGGACACGGCAATTCAAGACACCTTGATCCGCTACAAGCGGATGCAGGGCTACGACACCCTTTACCTGCCAGGCATGGACCACGCCGGCATCGCCACCCAGGCCAAGGTTGAAGCCCGCCTGCGTGAACAAGGGGTCAGCCGCTATGACCTGGGCCGGGAAAAGTTCGTGGAAAAGGTCTGGGAATGGAAGGACGAATACGCCAACATCATCAAGAGCCAGTGGCAAAAGCTGGGTCTGTCCCTGGACTACAGCCGGGAACGCTTCACTCTTGACAAGGGCCTGTCCAAGGCTGTCCGCCGGGTTTTCGTTCAGCTCTATAATGAAGGCTTGATCTACCGGGGCGAATATATCATCAACTGGGACCCGAAGCTGCGGACGGCTTTGTCTGACATCGAAGTTGTCCACCAGGATGACCAGGGGGCCTTCTACCACATCAACTACCCGCTGGCTGACGGCTCTGGCAGCGTGGAAATTGCTACTACCCGGCCGGAAACCATGTTTGGTGACACGGCCGTGGCTGTTGCCCCAGGGGATGAACGCTACAAGGACCTGGTGGGCAAGAAGCTGATTCTGCCGCTGGTTGGCCGGGAAATCCCGATCATTGAAGACCAACACGTCGACCCGGAATTCGGGACCGGTTTGGTGAAGATCACTCCCGCCCACGACCCGAACGACTTTGAAGTTGGCAACCGGCATGACCTGCCGCGGATCAACGTGATGAACGATGACGGGACCATGAACGACAAGGCGGGTAAGTACGCCGGCATGGACCGCTTTGACTGCCGTAAGCAGCTGGTTGAAGACCTCAAGGCTGAAGGCTACTTGATCAAGGTTGAACCAATCGTTCACTCAGTTGGCCACTCTGAACGCTCCGGCGTGCAAGTTGAACCCCGCCTGTCCACCCAATGGTTCGTCAAGATGAAGCCACTGGCTGACAAGGTTTTGGAAAACCAAAAGGGTGAAGGCAGAGTTAACTTCGTGCCTGACCGCTTTGAAGGCACTTTGGAGCGGTGGATGGAAAACGTCCACGACTGGGTCATCTCCCGCCAGCTCTGGTGGGGCCACCGGATTCCTGCCTGGTACAACAAGCAGACCGGGGAAATGTACGTCGGTGAAGAAGCGCCAGCAGACATTGAAAACTGGGACCAGGACCAGGACGTTTTGGACACCTGGTTCTCCAGTGCCCTCTGGCCATTCTCAACTTTGGGCTGGCCGGATGAAGATTCAGCTGACTTCAAGCGCTACTTCCCAACCAACGCCCTGGTAACTGGCTACGACATCATCTTCTTCTGGGTTTCCCGGATGATCTTCCAAAGCTTGCACTTCATCGGCGAGCGGCCATTTGACAATGTCGTTTTGCACGGTTTGATCAGAGACGAGCAGGGGCGGAAGATGTCCAAGTCCCTGGGCAACGGGATCGACCCAATGGACGTCATCGACAAGTACGGCGCTGACGCTTTGCGCTGGTTCCTGTTGAACGGGACCGCGCCTGGCCAGGACACCCGCTTCAGCTACACCAAGATGGACGCTGCCTGGAACTTTATCAACAAGCTCTGGAATGCCAGCCGTTTCGTCATCATGAACCTGCCGGAAGATGCCAAGCCAGCCCAAAAGCCGGATATCAGCAAGTTTGACCTGGCTGACGCCTGGATTTTTGACCGCTTGAACCACACCGTTAAGGAAACTAACCGCCTCTTTGACGAATTCCAATTCGGGGAAGCCGGCCGGGAAATGTACAACTTCATCTGGAACGACTTCTGTGACTGGTACATCGAAATCTCCAAGGTTGCCCTCTACGGCGACGACGCAGAACTGAAGGCCAGAAAGCAGGCCAACTTGACCTGGATTCTGGACCAGATTCTCCGCCTGATCCACCCAATCATGCCATTCGTGACGGAAAAGCTCTGGCTGTCCATGCCGCATGAAGGCAAGTCCATCATGACCGCTGCTTACCCGGAAGCCCACGCTGAATTTGACAATGCCAAGGCTGACGAAGACATGGCCTTCTTGATCGAAATCATCAAGGCTGTCCGGACCATCCGGATGGAAGTGAACGCTCCAATGTCTAGCGCCATCGACATCTTGATCCAGCTGGATGACGAAAAGAATGAAGCAATTCTGCGGGACAACATGGAATACGTGGAAAACTTCCTGCACCCGAAGAAGCTGGAAATCTCCGGCAAGATCAAGGCGCCGAAGTTAGCCAAGACGGCTGTGATCGCCGGGGCCCAGATCTTCGTTCCACTGTCAGAACTGGTTGACCTGGACGAAGAAATCGCCAAGATGGGCAAGGAAGAAGCCCGCCTGGAAGCTGAAGTTGACCGGGCAAGCAAGAAGCTGGCCAACAAGGGCTTTGTTGGCCACGCGCCAGCTGCCGTAGTTGAAAAGGAAAAGGGCAAGCTGGCCGAATATGAAAACCAGCTGGCCGGCGTGCGCGACCGCATCAAGGAATTGAAAGAAAGTCGTTAAAGACGTGAAATTTAGGACAGTTAATGAACTTACCGCTTACCTCTATCATTTGCCGCGCTTGCACGAAAAGAGCGACCTGACCTATGTCAAAAGGGTGCTCAAGGCTCTGGGGGATCCCCAGGACAAGGTCAAGTGCTGCCACATTACTGGAACCAACGGCAAGGGCTCAACTGCATATTACCTGAACAATCTGCTCCAAAAGGCCGGTCAGCAGACTGGCCTTTTTGTTTCGCCCTTTATCATCCGCTTTAACGAGCGGATCCAGCTGAACGGGCAGGCAATCGCGGATGAGGACCTGCTGGAAGTGGCAAATGAAGTTGAAGCCGCAGTCGGCCACTTGCGGGAAGAAGAGGCAGATTTTGCCCTGGTGACCTTTGAATATGAAGTTGCCATGGCCTTCCTCTTTTTTGCCAAGCAAAAATGTGATTACGCGGTTATTGAAGTCGGCATCGGGGCCGAGCATGACAAGACCAATGTGATGACGCCAGTAGTCAGCTTGATTACCACTATCGGCCTTGACCATGAGCAGATCATCGGACCGACTTTGGCTGATATTGCCAAAGAAAAGAGTGGGATCATCAAGCCGGCTGTCCCGGTCATCCTCGGTGACATCCCAGCCAGCGTAAAGGGAATCGTTGAAGAAAAAATAACTAAATCAGCTAGTCCTTCTTACTGGCTGGGCCGGGACTTCCAGGTCAAGGAAGAAAAAGCAGGCTATAAGCTTGCAGTTGCCGGGCAAAATTACCAGTTGCCGGCCTGGCCCCGGCCAGAAGCTAAAGACGCGGCCATGGCCTTGGCAGCTTTTGCCCTTTTGCCGCTTACTTTAAGTGAAAAGGCAGCTGAAGCCGCCTTAACCCAGACCACGGTTCCTGGCCGCTACCAACGCCTGGAAAAGGCGGGATGCAGCTTTTTATTGGACGGGGCCCACAATGTCCAGGCTGGAAGCGAACTTTTGCCATATGCCCGCCGCCTGGCCAAGGATAAAGACGGCCGGCTTTTGGTCTTAGCTGGCATGATGAAGGACAAGGACTTGAGTGATTTTCTGACTCTGCTGAAAAATGAAAAAGTCACCTTGACCAGCCTGGCTTATCCGCGGGCAGCTAAAAAAGCTGACTTCCCGGCCTGGGTCCAGGAAAAATTTGCCTATGAGGGCGATTTGGGCCAGGCATTAAATCAAGTGATGGCGGAAGCTGGAGACCGGGACTTGATCTTGGTTACGGGTTCATTTTACTTGGTCAGCGCGGTCTTGCAGTTTCTGCAGAGTGCCTGAGCATGAAGGGGGAAAATATGCGTGTTGCAGGTTTAAAGACGGACAAGCAGGGGGTCATTTTTGATATGGACGGCCTCCTGGTCAACTCCGAAGAGTTCTACTGGCAGGCCAATATCCAGGCCGCCCGGGAATACAAGCTGGGCATCAGCGATGATGCTTACCTGGACCTGGTTGGAGCCAGCGTCAAGGCCATGGATGCCTTTTATGAAAAATATTTTCCAAGCGATGAGGTCCGCCAGGCTTTTGTCAAGCGGACCGACGACCTGGTCTGGGAATGGACCGACCAGGGCAAGCTGAAGCTGAAGGCCGGGGTCAAGGAGGCTCTGGAGTACTTTAATGACCTGGGCTTAACCGTTGGGATCGCCAGCAACAACTATAAGAGCGTGGTTGACCACAATCTCTGGGTGACCGGCTGCCGGAACAGCTTTGACTTTATCGTCACCCATGACGAAGTTGCTGAGAAAAAGCTCCGGTCCAAGCCTTTCCCGTACCTCTATCTGGCTGCCCAAGAGCGCAGCGGCCTGGGTAAAGACCAGCTCTTGATCTTTGAAGACTCCAGCATGGGGGTCGAAGCGGCGGAAAATGCCGGGATTGACTGCGTCATGATTCCCGACATCAAGCCCGCTTCAGCCGAAGACCGGGCCAGAGCCCAGCTGATTTGCCCGGACTTTTTTGACTTTTTGAAAAAAATTTCTTAGTTTTTGGCGTAATTAGTAGTAGAGCGTAAAAATAAGGAGGAAATGCAAATGACCGAAACTACGCAAAACTACTATTATGTTGAAAGTGACCGTGACCTGCTCAAGCTGCTCTTTGACCAGCTGCCCTGCCAGAGTCTGGAAGACCTGTTGCAGCTACTGGATCAAAAGCACATTGCCAGCTTCAAGGACATCTTGGACTACGCGTCAGGACCGGACTGCCCCAATGACCTGTCCTTGACCATCGAGGTGGCCATGGACCGGTTGCGGCGGACTGACATGCGGCGCAGCTCTGACTGGGCCGGCAGCTCTAAGATTGGCAACTACCTGGCTAATAAACTGCTGGGGCAAAAGCAGGAGCAGTTCTGGGTCCTCTATTTTGACCAGCAGCAGAATCTCCTGGGGGAAAAAATGCTTTTCCAAGGCACCCTGGACCGGTCCTGGGTTCACCCCAGAGAAATCTTCCGCTGGGCGGTGGTCTACGGCTGCGCCAGCATCATCGTGGCCCACAACCATCCCAGCGGGGCGCTGACCCCGTCAGACAATGACCTGGAATTGACCAAGGGCTTGAAAAAAGCCAGCAAGATCATGAAGATCACCTTTTTGGACCACTTCATCATCGGCGGGGGTGAATATTTGAGCCTGCGGGAGCGGGAATTGTTTTAAAATTAGCTTAATTTTCCGCCAATCCATGACTTTCACGGGCATTATGCTATAATTAAGCAAGATTAAGCGAGTAAATAAGGAGAGATATCCGTGTTTGGATTAGGTTCAAAGAATATCGGTATTGACCTGGGCACCGCCAACACCCTGGTCTACGTTGAAGGCAAAGGCATCGTTTTGCGTGAACCTTCAGTTGTTGCCAAGAATACCAAGACTGGCGAAGTTATTGCAGTAGGTTCAGAAGCCAAGGAAATGATCGGCAGAACTCCAGGCTCAATCGTGGCTATCCGCCCGATGAAGGACGGGGTTATCGCTGACTATGACACGACCGCGGCCATGCTTAAGTACTTTATGGGCAAGACGGTCGGCAATTCCAAGCCTTCAGTCATGATCTGCGTGCCTTCAGGCGTTACTGAAGTTGAAAAGCGCGCTGTTATCGAAGCTGCCCGGGTGGCAGGGGCCAGAGAAGCTTACGTGATTGAAGAACCATTCGCCGCAGCTGTTGGTGCCGGTTTGCCGGTTATGGAACCAACTGGTTCCATGGTCGTTGACATTGGTGGTGGTACGACTGACGTAGCCACTATTTCCCTGGGCGGGATCGTTTCTTCAACTTCCATTCGCCAGGCTGGTGACAAGTTCAACCAAGCAATCACCAACTTTGTGCATAGCAAGTACAACCTGCTGATCGGTGAAAGAACCGCTGAAGACATTAAGATCCAAATTAGTTCAGCTTCTGTTGAGGCAGCCAAGGAAATCGAATCAAAGACCATCCGCGGCCGGGACCTGGTGTCAGGCTTGCCGAAGTCATTGGAAATCAGTGCCGTTGACGTTGCAACTGCTATTCAAGACGTTGTTCAAGACATCATTGTTGCGATCAAGGAAACCTTGGAATTGACTTCTCCTGAAATTGCCGCAGACGTAATTGACCATGGTATCGTCCTGACCGGTGGTGGTGCCCTGCTCAAGAACTTGCCAGAAGTCATCTCTGACGCGACCAAGGTGCCTGTCTTCATCGCTCAAGATCCGCTTGACTGTGTAGCAATCGGTACCGGTGAATCTTTGAAGCACCTGGACGTAATGCGGAAGACTAGCAGATAAGAAATAAGAAAACCGGCCTCCGGGCCGGTTTTTATATTGGATGGGTGTTTATGAAGAAATTTTTTCAAAACAGAAAAATGCTGGCGGCTTTCGGGACCGTGGCGGTTTTGGCATCCCTGCTGGGCTCAACGGTGATGCTGAGAAACAACCTGAGCGAGCCGCTTTTGATCCAGCGCCTGGGCAATGACATCGTCTCCGTGGGCTCAAGAATCGTGAGCGTGCCGGTTTCCTGGTTTACTTACGGAATCGACAGCGTCAAGGACTTGCAGAACGCGGCTGATGAAAACAGTCACTTAAAAAAGAAGGTGGCTGAGCTGGCCCAGGTCGAAGCCAGAAATGCTGCCCTGGAAAAGGAAAACAAGCAGCTGAAAGCTGCCGCTGGAATTAAAAAGACCTTGACCGGCTACACGACCACGACTGCTTCAGTAATTTCCCGCTCCAGCGACAGCTGGTCAGAAGTCTTGACCATTGACAAGGGCAAGAGCTCCGGCTTGAAGAAGGACATGGCGGTCATGTCCGGCGGCGGCGTGATTGGCCGGATCCTGGAAGTCGACGCGGTCACCAGCAAGGTAGAACTGATCACCACGACTGACAGCTCAGCCAACCGTTTTGCCGTGCAAGCCACGACAGACACGGGCAAGGTTTTGCACGGGATCATCAGCGTCCAGTCAAACGGCGCTTTGACCTTTACCCAGGCCTCCAGCTCAAGCAAGCTGAAGAAGGGAACCAAGGTCTACACCAGCGGCCTTGGCGGGACTTCACCGAAGGGGCTTTTGATCGGGACGGTGGCGGAAACCACCAAGGACAGCTTTGGCCTGTCTGACTTGATCAAGATCAAGCCGGCCGGTAATTTGAGCGACGCGTCCGTGGTAACGGTCGTCAAAAGGAGCGTGGCTGGCTAATGCGGATTTTCAAGCAATGGGTTTTGGCCATCGCCCTTTACCTGGCTCTAGTTGTGGAGGGGACCCTGTCCGTTTACCTGCAGCCTGCCTTGACTTACCAGCACGGCCGGGCGGGGCTCTTGCTCCTGCCAATCGCCGTTTTGATCATCGCCTATGAAGACGAAAGAAACGAGAAGGAAATCTGGCTGGCCCTGGCGGCCGGGGTAGTTGCCGACCTCTACTTCTGGGGGATCATCGGGATCTACACCTTTATCCTGCCAGCCCTGTCGGCTTTTGGCCGCTGGTATGCCCGGGTCTTTCCAGAACTCTTCGTTTTCCGCCTGCTGGGCAACATCGTGGCCATTACCGTCAGCTGCCTTTACACCTGGCTGGTTTTCCGTTTGATCGGCTGGACTGATTTGACCTTGAAGGCCATCGGCTTCAGCCTCTTATACACGGCCGGCTGGACGACCGGGATCAGCCTGGCAACTTACTGGCTTTGGGCCAAGCTGGCCAGATCTTATCCTTTCCTGGTTGACCTGGACAATTACCGGTATTAATGAGCAATAAAAAAGCGGCCAGCATGAAGCTGACCGCTTTTGAGCGTATTGCAGATTTATTGGGCAGTTAAGTAGTAAAGAACAGAGGCTGCCACGCCAAAGAGCGTGATCAAAGCCATCAAGACTACCATGAAATTCTCAATCTTTTGAAATGTTGACTTTTTCTTTTTACGTGCCATAGAAGCCTCCTATATGAGAATGATTATAACCTTTTTGGCGGCGATTTGCAATTTCCTTGCTGCACTTTAAGAGAAAAATAAAAATGTGCTAAACTAGCTAGCAGATGGAGGAAAATTATGCTGATGATATTCTTATTGCCGGTCTTTGGCCTGGCTTGCGCCTACCTAGTCAACCTGATCTGGCCTAAAGCCGCCTTTAAAGGCTATGACGTCATGCCTTTCTTTTTGATCTACGCCTGCCAGCTGATGACCAACTTAAAGGGCGTGCCATCCTTTTTACCGGCCGGCTTTTTGCTTTACTTCATATTGATATTGCTGGCCGCCATCAGATGGGCCATGATCAACAAGAACATTTCCTTAGGGAAGATGTTCCGCCAGTTCTGGTCCTACCTGGATGCCTGCAGTTTCTTTTGGTATTGCGGATTGCTTTTGGTCGTTATGATCTGACAAATTACTGTCAGCCGCTTAGCGCGGCTGGCAGTTTTTTAATTTTTTTGGAAATCTGCTTGTGCTTTTCAGATATTGTGGTTTAAAGTGGGGATTTGTGGTAAATTGTTAACAGTAAGGGAGGAGCCTGCCATGTTCATGGGCGAATACCAGCACAATTTGGACGCCAAAGGCCGTTTGATTATCCCGGCCAAGCTGCGTGAACAGATTGGGCCAGCCATGGTTTTGACCCGGGGCATGGAAGGCTGCATTTTTGGCTATCCTTTGACGGAATGGGCCAAGATCGAGGCCAAACTGGCCAAGCTTCCCTTGACGAAGAAGAACGCGCGGAGTTTTACCCGGATGTTTTATTCCGGCGCTATGGAAGGCGAATTCGACAAGCAGGGGAGAATCAACTTGTCCCCCACCTTGAAGAAGCACGCCGGCCTGGTCAAGGAATGCGTCATTGTCGGCGTCTCCAACCGGATTGAAATCTGGGCTAAGGAGCGCTGGGAAGAGTATTCTGACGAAGCCAACGAAAGTTATGATGAAATTGCGGAAGATTTGGACGATATCGAGTTATAAAGATGGAATTTAAGCATACTAGCGTGTTATTGCACGAAACAATCGACAACCTGGCCCCACAAAGCGGCGGCACATATGTGGATGCCACCTTCGGCGGGGGCGGGCATGCAAGATACCTGCTTAGGAAGCTGGACAAAGGGAATCTAATCGGTTTCGACCAGGACCAGTACGCGATTGACACCGCCCAGAGCAATTTTGCTGCCTTTTTAAAAGAAGACAGCCAGCCCCGCCTGCAGCTGGTCCACAACAACTTCAGCCACTTAAAAGAGGAGCTGGCCAAGCTGGGGATTAGCGGCATTGACGGTATCTACTACGACTTGGGTGTTTCATCTCCGCAATTGGACCAGGCTGAACGCGGTTTTTCCTACCGTTTTGACGCAAGGCTGGACATGCGGATGGACCAGAGCCAGGACTTTGATGCTTACCAGCTGGTCAACCAGTATGACCAAAAGCAGCTGGCTGACGTCCTTTACCGCTACGGCGATGAGAAGTTTTCCCGGCAGATCGCCAGAAAGATCGTTGAAAGAAGACGGGGCAAGCCGATTGAAACTACTTTTGAGTTAGTGGAGATCATTAAGGAAGCAATTCCGGCAGCAGCCCGCCGCAGGGGCGGCCACCCGGCCAAGAAGAGCTTCCAGGCCATCCGGGTGGAAGTCAACCACGAGCTGGACGTTTTGCGGGCATCTTTGGAAGAAGCCATCAGCCTGCTCAATCCCGGCGGCCGGATCTCCGTCATCACCTTCCAGTCTTTGGAAGACAAGATCGTCAAGCAGACCTTCAAGAAGTATTCAGAAGTTGAAATTCCCCGCGGGATGCCGGTTGTGCCCGAGGGGATCAAGCCAACTTTACGCCTGGTCAACCGCAAGTCGATTACGGCCAGCGAGGAAGAACTGGCGGAAAACAACCGATCACATAGTGCAAAGTTAAGAGTAGCAGAGAAGTTATAAAGAGGACCACAATGGCTGGAAACACAGTTAGAAAATACAATTACGAACCAGAAGAGGAAGCCCGGAAAAGTCCTCGTTTGGTGGTTGACCCGCAGAAGGTGCCATACTCAACTTTTGAAAAGCTGCTGGCAGTCTTGGGCCTGCTTGGGGCAGTTGCCTTGATTACCTTGAACGTGTCGGCTAGCGTTTCGGCGACTTACGCCCAGTGGCAGCTGACCAACGTCAAGGAATCAATTACCAAGCAAAAGAACGCAACAGCTGACTTGCAGCAGGAAATCGGTGAGCTGTCATCAAATACCCGCTTGAACAAGATCGCCCAAAGTCAAGGACTGAAGTTGCGTGAAAATAACATTAGGACAATTCGCTAATGAAGAAGACCACTAATTTAGGAAAAATAAAATCCAGAGCACACGGCTATCGCTTTACAGTTGGGAGAATTCTAGAGCTAGTCGTTGCTTTGGTTTTTCTTTTTTTGGCCGGCCGCATGCTTTATTTGTCGATTTCAAAAACGATTGATGGCCAGGACATCAGCAAGAGAACTGCCGCGATCTACCGCCGCAACACCGTATTGACCGCTAACCGGGGCACGATTTATGACAAGAACGGCTTGATCATTGCCCAGGACTCCCACACCTACACGGTCTACGCGATTTTGGACAAGACTTATGTTGACTCCAATAAGAAACCGCTCTATGTTCAGGACAAGGAGAAAACGGCTGAGAAGCTGGCCACGGTTTTGCCCCTTTCCAAGGCAAAAATCCTCAAGTATCTGAACCCGAAAAATAAAAACACTTTCCAGGTCCAGTTCGGGACAGCCGGGTCCGGTTTAACCTTGACTGAGAAAAAGAAGATCCAGGCCATGCACCTGACCGGGATCAAGTTCATGGAAACGCCGTCGCGCTTGTATCCAAACGGGGTTTTCGCCTCTAACGTGGTCGGCTATACGGTTTCTCAAAACAATTCCAAGACGCAGACGACGGAACTGGAAGGGGTGACCGGGCTTGAAGCATACTTCAACAAGATCCTCAAGGGGACAAACGGCTATGAGACCAGCATGGTTGACTCTTCAGAAAACCAGCTGCCAAGCGGATTCCACTCCTATAAGGCGGCTAAAGACGGGGACAATCTATATTTGACGATTGACTCTCAGCTCCAAAGCGCCCTGGAAACCTATATGAGCAAGGTGCAGAAGAACTACAAGCCGAAAGCTATGACAGTGGTCATTGAGAACTTGAAGACAGGGAAGATCCTGGCAGCCTCCCAGCGGCCGACCTTCAACTCCCAGACCAAGGCCGGAATCAGCAAGGCCGGCAGCAACCTCCTGGTCCAGTCCAGCTATGAGCCGGGTTCTGTTTTCAAGATCCTGTCTCTGGCCGCCGCGGTCAACAGCGGCAACTACAACCCTAAGTCCTACTACCGGTCAGGGTCAATCACCGTTTCCGGCTCCACTATCTATGACTGGCAGAAGTCCGGCTGGGGGACGATCCCGTTCTCCCAGGCCTTCCCGCGCTCCAGCAATGTCGGGATGGTCTACCTGGAAAAGAAGATCGGGGCCAAGCTCTGGCGCAAGTACCTCAATATGTTCCGCATCACCCACAAGACCGGGATTACCCTGCCAGGTGAAGTTTCCGGCAGCTTGTCCTTCTCAAGTCCGGTTGACCAGGCGGTAACTTCCTTTGGACAAGGGGTCACGGTCAATGTCATGCAGATGATGCAGGTTTACAGTGCCCTGGCCAACAACGGGCAGATGGTTAAGCCGCAACTGGTGGAAAAAATCACTGATTCTTCGGGCAAGACAATCAAGAGCTACAGGGTCCAGAAGGTTGGCAAGAAGATTTTTACTGCCCAGACCAGAAAAGTAGTCATGCAGAACATGAAGAAGGTTTTGGACAAGGAAATCGGGACCGGCCACATCTACTACATGAAGGGCAAGGACTTCGGGATCAAGACCGGGACGGCTCAGATTGCCAAGTCAACCGGCGGCTACATGACCGGGGACCGGGACTATGTCTTCTCAGTCGTGGGGATTACCCCAACTGCCAATCCCCGCTACTGCATCTATTTGACCATGAAGCAGCCTAGCAAGCTGGGCAGCGGGGCCGAAACCATCCTGGCCCAGATCTTTAAGCCGATGATGAGCCGGCTGGTTCTTTTGAACAAGGGGGACAAGTCAGCTTCGGCCGTGGTCAAGGTGCCGAAGTTTACCGGCATGACCTATGCCAAGGCGAAAAAGACCGCGACCTCAAATGGTCTTTCCCTGGTCCGCCTGGGGACTGGTTCCAAGGTCCTCAGCCAAAAGGCAGGGGCCGGTGAAACGGTATCCGTTGGCAGCACCGTCTTTGTCTTGACTAGCCGCAAGATCAGCCTGCCGGATTTGACCGGCTGGAGTGAAAGCCAGATTGAGGCCTACGCCTCCCTGGCCGGCATCAAGCTGCAGCTGTCAGGCAGCGGCAAGGTCAAGTCACAGAGCCTGGCCCAGGGGACGGTAGTTAAATCAGGGACGAAATTGAAAGTAGAGTTAAAGGAGTAATAGATCGATGCAAGCAAGTTTGATCGCTTTTATGATTTCACTGGTATTGAGCGCCTTGCTTTTTCCATGGCTGATCATCTGGATGAGAAGCCACGACGAAGGCCAGCAGATCCGGGATGAAGGGCCGAAATGGCATGAAAAGAAGTCGGGGACCCCGACCATGGGGGGCACGGTCTTCGTGCTTTCAGCCGCGGTCGCAACGGTTGCCATCTGTGCTTATAAGGGCCAGCTGTCTAAGACAGTCTGGATTTTGTTAGTTGCCCTTTTGGGCTACGGGATCATCGGCTTTTTGGATGACGGCTTGAAGCTCTTTTTCAAGCGGAACCTGGGCCTGAGAGCCTGGCAAAAAATGGACCTGCAGCTGCTCGTCGCTGCTGGTATCGTTTTGCTGGCGGCCAGTGACAACTTTGACTTCGCTCTTTACCTGCCTTTTGCCGGGGTGGTCAAGAACGTGGTCCTCTTTACCTTGTTTGAAGTCTTCTGGCTGGTTGGCTTTTCAAATGCCGTCAACCTGTCTGATGGTCTGGACGGCCTGGCAACCGGTCTGTCCTTTATCGCTTACGGCACTTACGCCTGGCTGGCCTTTAAGAGCCAGAACTTCGGCGTTCTGGTCTTCTGTATGGCGGTAATGGGGGGCCTGGCAGCCTTCTTCATGTTCAACCACAAGCCGGCCAAGATTTTCATGGGGGATGCCGGTTCCCTGGCCCTCGGGGGCGGTTTGGCGGCAGTCAGCATCTTTTTGGGCCGGCCATGGTCCTTGCTGTTGGTCGGGATCGTCTTTGTCTGCGAAACGGCCAGCGTTATCTTGCAGGTTGCCTCATTTAAGACGACTGGCAAGCGGATTTTTAAGATGACGCCGATCCACCACCACTTTGAAATGCTGGGCTGGTCTGAATGGAAGGTCGACCTGGTCTTCTGGCTGGTCGGGCTGGTTGGCAGCGGAATTTACTTGATGATTTGGGGATAATTAACGATGAAAGAAATCGATAAATATGCTGGTAAAAACATTCTTGTTTTAGGTCTGGGCCGGAGCGGCTTCGCGGTCAGCAAGCTGCTCCTTAAGCTGGGCGCGCGTTTGACTTTAAATGACAAGGCCGACCTGGCTGCTGACCCGAAGGCTAAGCAGTTAGCTGACCTGGGCGTCAGAGTAATTGGCGGCAGCCACCCGGTTGACCTGTTTGACCAGGAAAAGTTTGACTACCTGGTTAAAAACCCCGGCATCCCTTACGAGAACCCGATGGTGGCTAAGGCCAGCGAAAAAGGGGTTCCGATCATCACTGAACCTGAAGTTGCTTTAAGCGCCAGTGAGTCGCCTTATGTCTGCGTCACTGGTTCAAACGGCAAGACCACCACGGTCATGCTGACCCAGCAGATCATGGATCACTACCTGCAAAAGCAGGGCCACCACGCTCACGCGGTCGGCAACATCGGCTGTCCGATTTCTGAAGTAGTTTTAAACCAGGCCGGCCCAGACGACCTGCTGGTCGTGGAAATGTCCAGCTTCCAGCTGATGGGGGTAACCGACATTGAGCCAAAGGTAGCCGCCATCGTTGACATCTATAACAATGTCCACCTGGACTACCACAAGACTTTTGATAACTATGTTGACGCCAAGCTGAACGTTGGCCGCTTCCAAAAGGCCAGCGACTACTTCCTGGCCAACTTTGACCAAAAGGATATCCTGGCTAGAGAAGAAAAGGCAACTAAGGCCAAGATTCTGACCTTCAGTGAAAATGATCCAGTTGCAGACTTCTACATTGGCCAGGACTACTTGATGCATGGCGAAGAAAAGATGATGAAGATTGCCGACATCAAGCTGCCGGGGATCCACAATTTGCAAAACTCCCTGGTTGCCATCGGCATCAGCAGCCTGATGGGGGCGGGCAAGGACGACATCGCGGCCGTTTTGTCCACCTTCACCGGAGCTGAACACCGCCTGCAGTACGTGACCACCCTTGACGGGGTCAAGGTCTACAATGACTCCAAGTCAACCAACATTGAAGCAGCCACCGTGGCCATCCAGTCCTTCAAACAGCCGGAAGTCCTTTTGGCCGGGGGCCTGGACCGGGGCTTTGTCTTTGACTCCCTGGTTGATCTGTTTAAAAAGCACGTCAAGGCCATCGTAACTTACGGGGAAACCCGTTACCTGCTGGCGGACGCGGCCAGAAAGGCCGGAATCAAGACCATCGTGGTCGTTGACAACCTGCACGAAGGGGTTAAGGCAGCATCTAAGCTGGCTGAAGCCGGCGACGTCCTGCTCTTTTCACCGGCCTGCGCTTCCTGGGACCAGTTCAAGACCTTTGAAGAACGCGGCGAATATTTTGTCAAGTATGTAAAAGAATTGGAAGAGAAATAAAATGAGAGTTATTTTTTCTGGTGGCGGCACTGGCGGCCACATTTATCCCATCATGGCCTTGATTGAACGCCTGAAGGAAGAAGGCATTTGCCAAGACGATGAGATTTTGTTCGTCGGCACCAAGAAGGGGCTGGAATCCAAGATCGTGCCTGCCGCAGGGGTCAACTTTAAGACCATCGACATCCAAGGCTTTGACAGAAAGCACCTGTTGAACAATGTTAAGACCATCCAGCTCTTTTTAAAGGCGACTAAGCGGGCCAAGGAAATTTTGGCTGACTTTCAGCCGGACGTTGTCCTAGGCACTGGCGGCTACGTCAGCGGGGCGATTGTCTACGAAGCCAGCAAGATGAAGATTCCGACCATGATCCACGAGTCCAACTCCGTGGTCGGGGTGGCCAACAAGTTCTTAGGCCACTACGTGGACAAGATCTGCTATACTTTTGACGACGCGGCCAAGGAATTTCCGGAAAAAAAGAAGCTGGTCAAGACCGGCAACCCGCGTTCCCAGCAGGTTTTGAGCTTAAATGCCAAGCCAGTTGATTTGGCAGGCGACTTGGGCCTTAACCCCAAGATTCCGACTGTCCTGGTCTTCGGGGGTTCACGGGGCGCCTTGGCCATCAACCGGGTCATGCTCAAGTCTTTGATGGAGCTGAAGAAGAAGCCTTACCAAGTGATCTGGGCAACCGGGACTTACTACTATGACGCGATTGAGAAAAAGCTGGCTGATGTTGACTACGACGACTCCATCAAGGTCGTGCCGTATATCGACAACATGCCGGGCCTTTTGCCGGAAATGACCTGCGTTGTTTCCCGGTCCGGGGCAACCAGCCTGGCTGAGTTCACGGCCTTGGGCGTGCCAGTCATCTTGATTCCCAGTCCTAACGTGACCCACAACCACCAGATGAAGAATGCCATGGACCTGGAAAAGGCCGGGGCGGCTTTGGTGATTGCGGAAGATGATCTGAACGAAAACACCTTCGTGTCCTCCATTGACCACCTGCTTTTGGACCAGAGCTATGACGAAAAAATGCGGCAGGCTTCCAAGGCCTTGGGCGTGCCCGATGCATCTGACCAGGTCATCAAGGTCATGAAGGAAATTGCCAAGAAGAACTGATAATAAACGATTAGGAGGAAGCAATGGCTCGCAAACGGATAACCCGCAGAGACCCAGAAGAGGAGCTCTCTAAATTCTTACGCCACGAACCTGGCCAGGGGCAGGAAACACGCAAATTGTCGAGCCAGCTTACTTCGCTTAAGAAAGAACGCCGGCGGGGCCTGCTTACCCGGCTGGGTTCGATCATGGCCGTCTGCCTTTTGGCTATCGCTTTTTTAACCTACTACGTCTCGCCTTTAGCCGACGTATCAACGGTCAGGGTGCTCGGAGCTGATGACCTGGATGGCAAAAGCATGGTTGAAGTAGCCCAGATCAAGGCTTCTGACAAGGTCGTTGATGCCTTGCGGGGGCAAAAGAAGATCAGCAAGAAGCTGGCCGCTAAATACCCTGAAGTGGCTTCAGTCACTTTATCGGTCAAGGGGCTGAACACCTTGAACATGCAGGTGCATGAGCGGAAAGTGAGCGGCTATATTAAAGACGGGTCCAGCTACCGGGAAATTCTCGCCAACGGGGAACTGGGCACCAAGAGCCTAGCCTGGAGAGAGTTCGACCATGACAAGCCGCTTTTTATCAGCTACAGCAAGCAGGTGGCCTTGAAGACCAACCTTAAAATTTTTAACTCTTTTCCTGAATATTTCAAAAAGCAGGTCAAGATGCTGTCTGGCAATACCAGGCGCAAAACCCAGATGATTCTGGTCATGAAAGATGGCAATGTGATAATCGGCAACACTGAAACGATAAAATCCAAGGTTAAGTACTATAACTCGATTAAACAGGATTTGACAACCAACAGTGTCATTGACATGGAAGTCGGTGCCTTCACCCGCCCTTTGACTAGCGCGGAAAAAAAGGCTTACGGCTTGTCTTAATTTTGTATCTTTAAAGAATTATGATATTATCTATATATTAGAATTGGTGGAAGGAAACTTGGATAATTCAACTTTGTTAGTTGGTTTGGACATTGGGACCACGAGCATCAAAGTCGTTGTTGCCGACGCCGCTCATCAAGAGCTGCAGGTTTACGGGGCAGTTGCCGCTCCTACGCGGGGGATGCGGCATGGCAAGATCGTTGATATCGATCAAGTTGCTGAATCTGTCAAAAACGCTATCCAGCAGGTCAGCGAGAAGACCAATAGCAAGATCAACCGGGTAGTGACTGCCTTGCCAGTCAGCATGCTGCAGCTGGAAAGTACAACCGGCCTGGTTAATATTTCTGATTCCGGCAAGGAAGTCGCTAATGAAGAAGTCCAGCGGGTCATGTACGCGGCTATCAAGGCTGCCAAGAAAAAGGACCGGCAGGCAGTGGCCTTCTTCCCCAGCCGCTTTTTGATCGACGGGGAAAAGGACGTTGACGACCCGCGGACCATGATTGCCCGCTCCCTTCTCGTCCAGGGGCTGGTAATGACGGCGCCGTCAGCGGAGATTCACAACATCAACACGGTCTTAAAGCACGCTGACATCCAGAACAACTTCTTTGTTCCGGCACCGATGGCTTTTTCCAGCGTAGCCCTGGATGAGGCAGAGAGAACCTTCGGGGCAATTCTGCTGGACATGGGCGGCGGCAGCACGACCGCCACGGTCATCCGCGATGGCCAGATCAAGTACGCTACCGTCGACTTGAAGGGGGCGGCCGACATTACCCACGACATTTCCGTGGTTTTGTCAACAACAATGAGCGATGCTGAAGCTTTGAAGCGGGATTATGGCTATGCCGACCCGGACCTGGCTTCAGAAAATGAAAAATTCGCGGTCAAGGCTGTAGGCAAGGACGAAAACAACCTGGTCAGCGAGAAGTATCTCAGTGAGATCATCAATGCCCGTCTGCAGCAGATCCTGCGCCGGGTGGGCTGGGGCCTTTACAACCATGATGCCCTGTCTTTGCCGGCCGGGGTTATTATTACCGGGGGCAGCGCTCTTTTGGCCGGGATTGATGACCTGGTAGCGGCTGACTATGACGTTAAGGCCAAGATCTACCAGCCAGCCCAGATTGGCCTGCGCAATCCGGTTTATTCAGTGGCCTACGGGATCGTCAACTATGCCAACAACCTGAGCGATATCGGCTACCTGGCCAACACCGTGATTTATCATGATTCAGCTCTTGTTTCAAATGAGCGGCCGACCAGTGCCGGAAATAGTCAAAAAAATGCTAAAAGAGTGACGAAGAAAGCTGAAAATGACACTGAATTAGCTTATAATAAGGCTAAGCTTGATGGGGAAGTAGACACTGAAACCCGGCATGAAGAAAAGACTAATAATAACGAAAATAAAAACAAGGGCTTAGCTGCATTTCTCAGAAAGTTCTTTGATTAAGGGTGGTAAACGTAGATGGCTTTGGATTTTACTTTTGATTCAGATGACAACAACAACGCAGTTATCAAAGTAATTGGCGTTGGCGGGGCAGGCGGCAATGCCGTCAACCGGATGATTGAAGACGGCGTTCAAGGCGTCTCTTTTATCGCGGCCAACACTGATGTACAGGCTTTGAACAGCAACAACGCTGAAGTTAAGATTCAGCTGGGGCCGAAACTGACCAGGGGCTTGGGGGCAGGTTCACATCCTGAAACCGGGCAAAAGGCCGCTGAAGAAAGCGAAGAAACGATTGAAGATGCACTTAAGGGTGCTGACATGATTTTCATCACTGCCGGCATGGGCGGTGGTACTGGTACCGGGGCAGCCCCGGTAATCGCCCAAATTGCCCGGGAAACCGGTGCTTTGACGGTTGGGGTGGTTACCCGTCCATTCAGCTTTGAAGGCCCTAAGCGGTCCAAGAACGCCGCTGAGGGGATTGACAAGCTGAAGGAATACGTTGACACCCTGGTCATCGTTGCCAACAACCGGCTTTTGGAAATCGTTGACAAGAAGACACCGATGATGGAAGCCTTAAAGGAAGCCGACAACGTCCTCAAGCAGGGTGTCCAGGGCATTTCCGACTTGATCACTTCAACTGACTACGTGAACCTGGACTTTGCTGACGTCAAGACGGTCATGGAGAACCAGGGGGCAGCCTTGATGGGGATCGGCCGGGCCAGCGGCGAAAACCGGACGGTGGAAGCAACCAAGATGGCGATTTCCTCACCGCTTTTGGAAGTTTCCATCGACGGGGCCAAGCAGGTCCTCTTGAACATCACTGGCGGTCCGGACTTGACCCTGTTTGAAGCCCAGGATGCTTCAGAAATCGTTTCAACGGCTGCCGGCGAAGATGTCAACATCATCTTCGGTACGGCCATCAACCCTAACCTGGGCGATGAAGTCGTGGTTACGGTGATCGCTACCGGGATTGATGACGAAGCTGAAGCAGCTGCTTCCAAGCAATTTCCAGGCCGCGGCCACCAAGTGAGTGCGCCTAGAGAAAAGCCAGCTGCGCCTAAGATCTTGACTCCGGAAGAAGCCGCTCCAGCTGCTCCAGTACAAGAAGCGCCAGTTCAAGCTGAAGCAGCTAAGCCGACCAGCCCGGTCAAGGAAGAGAAGCCAGCCATGATGGACCCGATCAGCGTTTGGGGCCTCAACGACGATGACTACTCAAGACGGAAAAAACCGGAAGAACAAAAGCGGCGGGCTGAAGAAAAGGAAGCGGTTTCGGATGCTGACCCAAGCAGCGCCATTTCCCAAATTGACATCAACACCGATTACGACGACGATGATGACGACGATATTCCGTTCTTCAAGCACCGCCGGGACCGGTAAGGGAGGCAGAGTAAATGAACAACAAATTTAAGGACTTTTTCGGCTTCGGCGACAACGATTCCTATGAGGAAAGAGACGCCTACGAGGAACATTACGACGAACAAGAAGAAATGCAAAACAGCAACCGGCCAACTAACAGCCGTGACAGCAATGTCGTGTCCATTAAGGCCGGCCAGGCTGGCAGCGGGCCAAGCAAGATCGTCCTTTACGAACCGCGGGTATATTCTGACGCTAAGGAAGTAGCCCAGAACCTGCTCAACCAAAGGGCGATCATCATCAACTTCAGCCGGATGGACGACGCTTCTGCCCGCCGGGTAGTCGACTTCATCACCGGGACAGTTTATGCCCTCAATGGTGAAATACAGCGCATCGGCGACAAGATCTTCCTGGCTACTCCGCCGAAGTTTGAAACTGACGGCAAGATCACTTAACTGCTTGATAAGAAAGATACTTTAGGTTAATGCAAACATTTTTGGTTTTTTTGTACCGGCTGCTCTACTTCATCTGTGAAGCTTACAGCCTCTTGATCATTATTGATGCCTTTATGTCTTGGATTCCGGCCATCAGCGAATCAGCGGCCGGCCGCTGGATCGACCGGATCGTCAACCTCTTCGTCAACCTTTTCCGGCAGGGGCCGATCCTGCGCTTGATCTACGCGACTGGCATCGACATTTCACCAATGATTGCACTGTTTGTGATCTACTTTGTCCAAAGCGTTGCCTTGGGCTGGCTCTTTAGCATTTTAGGGAGGATCTTCCTGTGATGGACAAGCGCCAGGCCAGCAGCTTTTACCCACATTTTGCAATTGAAGAAAGACCAACAATTGACCAATTTGTTGGTCTTTTTAATCGCCTCTTGTTTACCGGCCAGTCCTTTTTAACGGACTTCCTGGACCCCCGGCAAAGGCAGATCATGGAGACGATCGCCGGCGGGGAAGCCATCGTGCAGGCTTTTGGCGGCTATGAAGAAGCGGAAAAGTGCCGGCTCTACATCAGCCTGGAATGGGAGAACCTGCGCCCAGATGACTACCAGGTTCAGCTTTTTGAAATTGAATACCCGCAAAAATTTGCCAGTCTCCGCCACAGCCAGATTCTGGGCAGCCTGGCCAATTCCGGGGTAAAAACAGATACTTTTGGCGACATCATCACGGACGGGCAAGGCCGGTGGCAGTTTTTCGCGGAAAAAGAACTGGCTGGCTTTTTTGCCAGTCAAATCGACCGGATGGGGCCAGTCAAGGTCCGCCTGGAAGAGAAGCCCTTAAAAGACAGCCTGGAAGCAGAAGACAATTCCGAGATCATTAGCGCTGTAGCTTCCTCCATGCGCCTGGACGCGGTTTTAGCGGCTCTAAGCAATAAGTCCCGCAGCCAGGTTAAAGAGGCCCTGGAGGCCGGCGAGGTCCGCTTAAACTGGCATGAAGAAGAAAAAGGTGAAAGCCTGCTGAAAGTTGGCGACATCTTGAGCCTGCGCCGCTTTGGCCGGGTCAAGCTCTTGTCTGTCCAGCCCAGCAAAAAAGGCCGCCTGCGGGTGGAAGGCCAGTTTTGGCCAGCAAAAAGGCAATAAATATTTGACAAAGGGCTGGTTGATGTCTTAAACTCTTTTACTGTAGATAGAAAATTTTTTCATTGTTTTTTATCTCTTACATAATTACGATTAATAAATCAGACTGACAGTCCTGCTTAAAGGCGACCTAGCGAGTTAATGATGGTGGAAGATTAACACAAGCCGGCGAGCGATCAGCTGCCGATTGGTCTGAGCGGGGGCCGGCACGATAAGCCGGCAGGAGTGGGGCCCTTCGAGGCTCAATTTAGGTGGTACCACGATAGTCTCGTCCTATTTTAGGATGAGGCTTTTTATTTTAGCGAAAGGATTTTTTTAGCGAAAGGATTTTTTTAGCGAAAGGATTTTTTATATGCGAGTTAAGGATACGCTGAACCTGGGCAAGACCAAGTTCCCAATGCGGGGCAACCTGCCCAAGCGGGAAGCAGAATGGGAAAAGAACTGGGAAGACCAGAAGTTTTATGAAAGACGCTTGAAGCTTAACGAAGGACATGAAAGATTTGACCTTCACGACGGACCTCCATTTGCCAACGGCAACATTCACATGGGCCACGCCTTGAACAAGATCACCAAGGACATCATCGTCCGGAGCAAGAACATGGAAGGCTACTACGCTCCTTACGTTCCGGGCTGGGATACCCACGGCCTGCCAATTGAGCAGCAATTGACTAAGCAGGGCGTTGACCGCAAGACCATGGACCGGGCTGCTTACCGGGAATTGTGCCGGAAGTTTGCCATGGAGCAGGTTGAAAAGCAGCGGACCGACTTCAAGCGCCTGGGCGTTATGGGCGACTGGGACCACCCTTACATCACCCTTTTGCCGGAATTTGAAGCCGCAGAAATCCGGGTCTTCGGCAAGATGTACGAAAATGGCTACATCTACCAAGGCAAGAAGCCGGTTTATTGGTCCTGGTCCAGTGAATCAACTTTGGCGGAAGCCGAAGTCGAATACCACGACGTGGAATCACCATCAATTTACATTTCCTTCCCGGTCAAGGACGGCAAGGGCAAGCTGAGTGAAGAAAACACCTACTTCCTGATCTGGACGACCACTCCATGGACTATTCCTTCCAACCAAGGGATTGCCGTTAACCCGAAGTTTGACTACTCAGTTGTTGAAGTTGGCGACCGCCGCTACGTTGTCGGTACTGACCGCTTGAGCGCCGTAGCCGAAATCTTGGGCTGGGACAGCTACAAGACTGTTCAGCACCTTAAGGGGACGGACATGGAATACATGGTGGCCAAGCACCCTTACATCGAAGGCCGCGACAGCCTTTTGATGGAAGCTGTCTACGTTACTGACGATGATGGTACCGGCCTGGTCCACACCGCTTCCGGCTTTGGTGAAGACGACTACAACACTGCCATGCGCTACGGCTTTGACGTTTTGTCCCCAATGGACAACAAGGGCTGCTTCACTGAAGAAATCCCTGACCCGGACCTGGTGGGCAAGTTCTACACTGACACCAACGAAATCGTCAAGGACAAGCTGTCGGCTGCTGGCAACCTTTTGCACTACAGCACCTTTGTCCACTCCGCCGCTCACGACTGGCGGACCAAGAAGCCGGTAGTCTACCGGGCAACCACGCAATGGTTTGCCTCAATCTCTAAGTTCAGAGACCAGATTTTGGACCAGATTGAAAAGACCACCTTCTACCCGGCCTGGGGCAAGACCCGCCTTTACAACATGATCAAGGACCGGGGCGACTGGGTAATTTCCCGCCAACGTGCCTGGGGCGTGCCTTTGCCAATCTTCTACGCTGAAGACGGCACCGCCATCGTGACGCATGAAACCATCGAACACGTGGCTGACCTCTTTGCCAAGGAAGGCTCCAACGCCTGGTTCACCCATCCGGTTGAAGAACTTTTGCCAGAAGGCTTTACTTCAGAACACTCACCAAATGGCAAGTTCACCAAGGAAACTGACATCCTGGACGTTTGGTTTGACTCCGGGTCATCCTGGAGCGGGGTCCAGGCTCTGGGCAGAGCCGTTCACTACCCGACTTCCATGTACCTGGAAGGCAGTGACCAATACCGGGGCTGGTTCAACTCCAGTTTGATCACCAGCGTGGCTACCAACGGGGTAGCTCCTTACAAGTCAGTACTGTCTCAAGGCTTTACTTTGGACGGGCAAGGGCGGAAGATGTCCAAGTCATTGGGCAACACGATCGCTCCTAACGATGTCATCAAGCAAATGGGGGCCGAAATCATCCGCCTCTGGGTTGCTTCCGTTGACGCTTCCGGCGACGTCGGCGTGTCAATGGACATCCTGCGCCAGGTTTCAGAAGGCTACCGGAAGATCAGAAACACCTTCCGCTACATGCTGGCCAACACGGCTGACTTTGATCCGGAAAAGGACCGGGTAGCTTACAAGGACCTGTGCAAGATCGACCAGTACCTGGAAGTCAAGCTTAACGACTTAGTTGCCGAAAGCATTGTCAACTACGACAAGTATGACTTCGCTGACGTCTACAAGCTGGTCTTCAAGTTCATCACCAACGACCTGTCCGCCTTCTACCTGGACTTTGCCAAGGATGTCCTTTACATCGAAGGCAAGGACAGCCACGCCCGCCGGTCAATGCAGACGGTGATCTACGATGCCGCTGTCAAGCTGGCCAAGATCCTGGCACCAATTTTGCCGCACACCATGGGCGAAGTTTGGGGCTACTTGAAGGAAAAGGAAGAAGACGTCTACCTGTCCAACTTCCCTGAAATCGAAGACTACGCTGACGCTGACGACTTGAAGGAAAGCTGGGGCGAATTCATGAAGCTCCGCGACGATGTTTTGAAGGCTCTGGAAGAAGCCCGGGACCAAAAGCTGATCGGGAAGTCCTTTGAAGCCAGCGTAACGGTTTACCCAGGCGAAGCAGCCAAGGCTGCCTTGGACAAGCTGGCTGGGGAAGACTTCCGGGAAATCTTGATCGTGTCCAACCTGGTCATGGGCCAAGGGGAAGTACCGGCTGAAGCCAAGCAATTTGACCAGGCCAGCGTACTTGTCCGCCGGGCCGAAGGCGAGGTCTGCCCACGCTGCCGGATGTACCGGACTGACCTGGGCGCTGACAGCCGTTTGCCGCAACTGTGCGGCCGCTGCGCATCTATCGTGGCCGGCGACCACCCAGAAATACTTGAAGAAGGCCTGGAAGACTAATGCGGACCGGACTTGTAAAACAATTTGCCGAAAAAGCAAGTTTCGGCTTTATCGAAGACGACCAAAATCACAAATCATATTTTGTCTTTTATACTGCCATCAAGGAGGAGGGCTATAAGAGGCTTGAAGTCGGCCAGCGGGTGAGATACCAGCTTGCCCAGGGTAAACACGGACTGCAGTGCATCAACGTTTACTTGGCCAAAGACTAAGCAAAGGAATGACATATGGATTTAAAGGAAACTGAAATTTCAACGAAGGAGGCTTTCCACGGCGGCTTCATCAACCTGCATGTTGAAACCGTGATGCTGCCAAACGGGAAAACCGCCTCCAGAGAGCTGGTCGACCACCGGCCTGCTGCCGCGGCCATCTGCATCAACGATGAAAAGAAGATGCTCCTGGTTACGCAATGGCGGGAAGCGATCAAGCAACTGACTCTCGAAATTCCAGCTGGAATGATTGATGCTAGCGACGTGAGTCCCTTGGATGCAATGAAGCGGGAGTTAAATGAAGAAGGCGGCCTGAAAGCCGAATACTGGGAAAAGGTTGCCGAATTCTACACTTCACCAGGATTTTCCAATGAAAAGCTGCACCTTTTCTACTGTGACACGCTCAGCCCAGTGGCTAACAAACTGGACCTGGACGAGGATGAATTTTTGACGGCAGAATGGTACAGCCTTGAAGAGTTAAAGAACCTGTTGACAGAGGGCAAAATTGTCGACGCAAAGACCATTTATGCTATTTCCGTATGGGAAAACATGCTGCTGACCGGTTCAGAAGGTTAGACTATGACAGAAAAACGTTCCGATTACCGCCGCCGCCAGGCAGAGCAAGCAGAAAAGGCAAATAGACAGGAAGCAGCTGATTCAGCTGCTTTTCCTGCTTTTAAGCAGGACCAGGACCAGAAGCCCTTAAAGGCAGAAAGGCTGAATTTTGCTATCCTGGTCGTGTGCCTCTTGATCATCCTGGTTTGGGTGATTTTATTGAAATTTTAAACTGAATTGAGGATTACCGATGAAAATTGCAATCGTTGTTCCAATGGCTGAAGAAGCTGAATTTTATCATCAATACTTTTCCTCAGGTAAAAAAGAAATGTTCGGTTCAACGGAATTCGAACATTTTTCCGTTGCCGGCAACGATCTTTACCTGGGCTTGACCGGGATCGGCAAGGTCCAGGCGGCTATGAACCTGACCAGCCTCCTGGCCAAGGAAAAGATCGACCTGGTCATCATGACCGGGTCGGCAGGGTCCTTGCAAAAAGAAGTTCAGCGGATGGACCTGGTTTTACCAAGCGAATTCGCCTACCACGATGCCCACAACACTTCAGCGGGTAACTATGTCGAAGGACAGATCCCGCAGGAACCGGCCCGCTTTAAGCTGGACTGCGCGGAAAGAGACAAGTTCAAGGACTTTTTGGGCAAAAAGGGCGTGGCCTACAAGGAAGGCTTGGTCGTGACCGGGGATTCCTTCATCTCCTCCCAGGCACAAAAAGACGAAATTCTGGGCAATTTCCCAACCGCCCTGTGCGTGGAAATGGAGGGGGCAGCCTTTGCCCAAGTGGCCTACCACTTTAACGTTCCGCTGATCGCCTTGCGGGCCATCTCCGACAATGGGGATGAAGATGCTGACAACGACTTTGCAGCCTTTGTCAGAAAGGTCGGTGCCCAGGCGGCAGAACTGATCGTGGAATACTTAAGGGAGAATGATTTTTAATGAAGCAGGTATATCTTGACAACGCGGCAACCACGCCGATGTCACCGACCGTCATTGACGTGATCACGGATGAAATGGCCAATGACTTCGGCAATGCCTCCAGCACCCACACCCTGGGCCGGAAGGCCCGCAACAGCGTGGAAACGGCCCGGCACACCATCGCCCAGGCAATCAATGCCAAAGACCAGGAGATTATTTTTACCTCCGGCGGTTCTGAAAGCAACAATACGGTAATTTTTGGCGTGGCGGAAATGCAAAAAGCAGTTGGCCGGCACTTGATTACGACCAAGATCGAACATGAATCAGTTTTAAAGTCCATGCAGCACCTGGAAGAGCTGGGCTATGAGGTGACCTACCTGGACGTGGACAGAGACGGGCATATTTCCCTTGACCAGCTCCGCGAGGCCATCAGACCAGACACGATTCTGGTCTCAGTCATGGCTGTCAACAACGAAGTCGGCAGCATCAACCCCCTCAAGGATATCGGCCAAATCGTCAAAGACAGCCAGGCCTTCTTCCATGTTGACGCTGTCCAGGGACTGGGCAACATTGACCTGGACGTGGAAGAAATGGGAATCGACTTTATGTCGACTTCAGCCCACAAGATCAACGGGCCGAAATTCCTGGGCTTCCTGTATGAAAGAGACGGGATCCGTCTGCCAAACCGGATTTACGGCGGCGACCAGGAACTGAAGCGGCGGGCTGGTACGGAAAACGTGCCGGGGATTGCCGGCTTTGGCCAGGCTGTAGCGGAAGTTCAGGCAGAAAGCAAGGCTGACCTGCAGGCCAAATATACTGATTTCCAGAAGATCATCTTGAGCCGGCTGGATGAGAGCGGGGTGGCCTATGAGGTCAACAGCCCCTTGACCGGTCTGGTTTCCCACCATGTCTTGAATCTCCGTTTAAACGGTTTGTCCACTTATGTCCTTTTGGCCAACCTGGACCTGGCTGGCTTCGCTGTTTCAGGCGGGTCGGCCTGCACGGCCGGCAGCCTGACCCCGTCCCACGTTTTGACGGCCATGTTTGGCCAGGATTCACCAAAGGTCAGCGAATCGATCAGGATTTCTTTTGGCCGCTACAACACGGTTGAAGAAGTGGAAGCTTTCGCGGCTGCCCTGGTGAAGGTGGCCCGCAAGCTGCAAGACCGGAAGCGGGAAGACTAAATAGTTGCTTTTTCAAGGGAATGTACTTACAATTAATAAGCGAGGTTTTACTTTATGGCTAATACTGTGATGATCAATGGCGACAAGCGGAAGTTTATGCTTAACACAGACGTGAAGCTGTATGCGTTGATTGACGCCGGCTTCCAGAAGACTCCCCGGGGCAACTTTGTCTATGAGCACCCGCTTTACAACGAATCGCCTTACAACGCGACGACCAAGCTGAAGATGACCATCAAGAGCGACTTGACCAGCTTGACTATGGTCGTTACGGATCCAAGCGGCCTGAAGAAGGTAAACATTTTTAAAAACAAGCAGCTGGCTCCGACGGTTGAACTTTTGGACTACATCTTGAAGGACCTGGAGGAGCGGAAGATTTTAAGCGAAGTGAAGGATTGATTTAATGGTTGACAATAGCAAGATCAGAGTCGTTGTCGGCATGAGCGGCGGGGTTGACTCCTCAGTTTCGGCCCTCTTGCTCAAGCAGCAGGGCTACGACGTCGTCGGCGTTTTTATGAAGAACTGGGACGACACCAATGATGATGGTGTCTGCACGGCAACTGAAGACTACGAAGACGTCAAAAAGGTAGCCGACAAGATCGGCATCCCTTACTATTCGATCAACTTCGAAAAAGAATACTGGGAGCGGGTCTTCCAGTACTTTTTGAAGGAATACAAGGCTGGGCGCACGCCTAACCCCGACATCATGTGCAACACCGAAGTCAAGTTCAAGTCCTTCCTGGAATATGCCCTGGACCTGGACGCGGACTACCTGGCCATGGGCCACTATGCCAAGACCATGGTCGATGAAAACGGGGTAACCCACATGATGCGGCCAAAGGACGGCAACAAGGACCAGACTTACTTCCTGAGTCAATTGACCCAAGAGCAGATCAAGCGGGTCATGTTCCCCCTGCAAGACCTGACCAAGCCGGAAGTGCGGCGGATTGCCGAAGAAGCCGGCCTGGTCAACGCCAAGAAGAAGGACTCAACTGGCATCTGCTTCATTGGGGAAAGAAACTTCAAGCACTTCCTCAGCGAATTCCTGCCAGCCCAAGGCGGGGACATGGTAACCCCGGACGGGAAGGTTGTCGGTCATCATGCCGGTCTCATGTACTATACGATCGGTCAGCGGCAGGGCCTGGGCCTGGGTTCAACCAAGGAGTCAACCGCTCCCTGGTTTGTCGTGGGCAAGGACCTGGAAAAGAACCAGCTGATCGTGGAGCAGGGCTATGACAGCCCCCGCCTTTACGCTGACCGCCTGCAGGCTTCCGGCATGACTTTCTTTACCGGCAACCCTGAGGAGGACACGGAATTCAAGGCAACCGCCAAGTTCCGCTACCGGCAGTGCGATGTTGGCGTTACGGTCAAGTACCACGCAGCCAGCAAGACTGCTGATGTCTACTTTGACGAGCCAGCCCGGGCAGTTACCCCGGGCCAGGCTTTGGTTTTATATAATGGCGAGGAATGCCTGGGCGGCGGAAACATTGACGCTGCCTTCAAGGATGACAAAAAGCTCCAATTAGTTTAACGGCAAGGCCAAGTCCCGGCGGACTTGGCCTTGTTCGTGTTTAGCGGGGCCGTCTTTTGCTATAATAAATAGCGATAGTTACGAGAGGCGATAAAAATCATGGAAATATATTTTGTAAGACATGGCAAGACACAGTGGAACCTGGAGCAGCGTTTCCAGGGCGGGCAAGGCGATTCAAAATTATTGCCGGAAAGTTTGGCCGACATTGAGAAGCTGGGACGTTATTTACAAGGGAAGCATTTTAAGGCGGTTTACGCCAGCCCCCTGGACCGGGCGAGAATGACTGCCCAAGGTCTGATTGGTGCGGCCGGGATCCGCCTGCCCTTGCACATCGATGAACGTTTGCGGGAAATGAACCTGGGCAAGCTGGAAGGAATGAAGTACGCTGAGGCGGAAAAGCTCTATCCCCAGGAAATCGACAATTTTTGGCATCACCCGGACAAATACGACAATACTGTCGTAGAGGGGGAAAGCTATGAGCATGCCATGGCCAGGGGGCTGGATTTCGGCCGGGAAATGGCCGAAAAATACCCCAAAGACAGCGACAAGGTCCTGGTGGTCAGCCACGGGGCAGTTCTATCAGCCATCATGGGGGCGCTTTTAGGCTATGACCTGGCCAATCTCAGACAAAATGGGGTTATCTACAATACCAGTGTTTCAGTCTTGGCAAGCCAGGAAAAGGGCCCTGCCTTCAAGCTGGTCAAGTGGTCAGACGTTACTCCTTTAGAGCACAAGATGTCAGAAACGGATGGTTTGTAATGGATCAGAAGATCAATCAGCTTTATGAAGAAGGAAAAGTCGACCAGGAGATTCATGCCTTGATTGAGAAAATCGACCATAATCCCCGGGAAACTGCCAACTACCTGCAGCTGGCCACTTACCTCCTGGACCAGGGTAGCGCTGAGCAAGCCCGGGAGCTCTTGACCAAGGCCCGGGGGATCGCGGAAGATCCCCAGGCCTTGGTCTATGACCTGGCGGTTTGTGACTACGCCCTGGGCGACTTTGATCAGGCCCTGGCCCGCTTGGCCCAGATTCCTGATGATGACATGACCATGTACCAAAAGGCCCTGGTCTACCTCAAGCTGGGCCAGAGCCAGAAGGCCCTGGCTTATGCCCTGTCGATCAAAGAAAGTGATGACCGGGTAAAAGAGCTCATCGGGGACATCTGGCTGGCTTTAGGAGAGTTGGAAGCAGCCCGGGCCAGCTACCTGGAAATTGCTGAAGGGCAGAGAAGTAGCAAGCTGAACTTTTTGCTGGGCCTCACTTATTTCAGCCAGGACCGGGAGCAGGCGGAAGAATTTTTTGCCAAGTCCAAAAAGCAGGATCCCAAATATTACCAAAAAGCCAAAGACCAGTATGAGTCCCTGCTGAAGCTGCTGAGCCAGGGAAAGGCAGGGGCTGGGAAAGAATAATAAGGAGCGGGAAATGACCGAGTTTAGCGGTGAAGTAAAGAGCGTTATTTATGAAAATGCGCAAAACATGTACAAGATCTTGCTGGTCGCCGTAAGTCAGCCTCTGGCCGGCTATGACGATGATGAAATCAAGGTGACGGGGACCTTCGGGGACCTGGAGCTTGGCCAGGAATACAACTTTACCGGTGACTTGGTCACCCACCCCAAGTACGGCTTGCAGTTTCAAGCGACTGGCTGCCAGCCGGCCCTGCCGAAAGAGACTGGCGGGGTGGTCAAGTACCTGTCTTCTGAGAAGTTCCCTGGCATCGGGCCCAAGACGGCGGAAAAGATCGTTGACCAGCTGGGCAGCGGGGGCTTAAAGAGCTTGCAGGCTGATCCAACCTTGATCGCCAAGCTGGATCTTTCCCAAAAGCAAAAAGACAGCCTCTTGTCCGGCCTGGCTCAGATGGATTCCTTTGACGACCTGGGTATGACTTTGGCCAGTTACGGGATTCCCCGCAAGGTGGCCGGCCGACTTTACCAGAAGTACCATGACCAGACCTTGAAAAAGCTGCAGGCCGATCCCTACCTGCCTTTAGGCGAAGTGACCGGCTATTCCTTCAAGCAGGCCGATCACTTGGGAATTGGCTTTGGAATTGCCCTTGACAGTCTGGAGCGGGCTGATGGCAGTATCCTGGCGGTTTTGCTCCAGGCCTTGACCATGGAGGGGGAAACCTACCTGGAACTGGAAGAACTTTTGCCAGCCGCCAAGGAACTGACAAATATAAATTTTGACCTCCTGGCAGAAGCAGTTAACGACCTGCAGGACAAGAAGAAGGTCGTCGTGGAAGAAGGCCGGGCCAGCCTGCTGGCCCCATTTCAAGTGGAAAGCGAGATCGTGACCGACCTGGAAGACCTTTTAGCCAAGGGCAAGGAAGCGGACTACCGGGAAAAGGACTTGGACCAGGCCATCAAGCGGGCCGAAAGGAAGCTGGGGATCAGCTATGACCCTGAGCAAAAGCAGGCCATCAAAAACGCGGTAACCAGTCCGGTCTCCATCCTGACTGGGGGACCCGGGAGCGGGAAGACGACCATCATTGACGGGATCTTGCTGGTCTTAAAGGACCTGGCCGACATGGACGAAGAAGAAGCTGAAGAAGCGATTCTCCTGGCCGCGCCAACCGGCCGGGCAGCCAAGCGGATGGAGGAAGTCACCGGCTATCCGGCCAAGACCATCCACCGCCTCTTGGGCCTGGGGATCGACAACAGCGAGGAAATGGAGCTGAATGATTTGGAAGGGGAGATCTTGATCGTCGACGAAATGTCCATGGTCGATATCTACCTCTTTGAAAAGCTGCTCAGCGCCATCAGCAATGTTCACCACCTGGTCTTTGTCGGTGACAAGGACCAATTGCCATCCGTCGGGGCGGGGAAGGTTTTCGCTGACTTAATCGAGGCGGACTTCATTCCGACCTGCCAGTTGCAGGTGGTCCACCGGCAAAAGGACGATTCAACGATCATTCCCCTGGCCCACGCGGTCAACGAAGGAGCCAACCCGGCTGTTCTCTTGCAAAAGACGGCCAGCTACTCCTTTATTCCTTGCCGGCCCCATGCCGTGCCTAGCGCCGTCGAGCAGATCACCCAGGCAGCCTTAAAGAGTGGCTTTGCGGCTGACGACATCCAGGTTCTGGGGGCCATGTACCGAGGCGACGGTGGGATCAACAGTCTGAATGACACCCTCCAGCGGGTGATCAACCCGGAAAAGGGCAATGATAAAGCAGTTGAGGCCCATGGTGAGAACTTTCGCCTGCATGACCGGGTCCTGCAGCTGCAAAATGACCCGGAGCGGGGGATCTACAACGGCGAGATTGGAAAGGTCGTGGCCGTTGACCCGGAAATGCTGGAAGACGAGGATGACGAAGTCAAGCTTTTGGTCAATTTTGACGGCAATGAAGTGGCTTACACGCAGGCGGACTTGAATAACCTGACCCGGGCCTATGCCATCACCATCCACAAGTCCCAGGGGTCAGAATTTCCTTTGGTCATTCTCTGCTTAACCATGCAGAACTATATCATGCTCAAGCGCAATCTTTTGTATACGGCCATCACCCGGGCTTCCCAGAAGCTGGTCATGGTCGGAGAAGAGCAGGCTTTTGCCCAGGCCATGCGGGTCAAGGGCAATGAGCGGCGGACCAACCTGGTCTGGCTCTTGAAGGACCGCTTTAAGCCAGAAGAACAAAGTAAGCAAGAGAGTAGTGACTCTACAGAGAATACTCTGGATAAAGAAGAAAAAGTCGAAGACTACATCTTGACCGGGGCCCGGATCAGCCGGGCGGAGATTTCTCCCATGGTTGGCATGGAGGGCCTGGTTCAGGGATGCAAGAATTTGGTGGAAATCGTCCGGACCAAGGGACCAGGAGCCTAACTTAATAAAGTTTTTGACAGAAAGACCACTTAGCTTGGTCTTTTTTTTGCCAAAAAATTAAGAAAGTTACTTTTGTAAGTAAAGTGCTGACAAGAGGAAGGCGATGGGGTATACTAAAGGAAACTTACAAAAAGTTAGTTATCCTTTGAGAAAGTTGGGTAAAAAATGACAGAAAAAGAAACAAAGAAGACAGTCAAAAACATCATCATCGGTTTTGGCAAGGGTGGCAAGACCCTGGCCAAGTTCCTGGGCCAGCAGGGCGAAGAAGTCCTCCTGGTGGAAAAGTCAGCCAAGATGTACGGGGGCACCTGCATCAATATCGCCTGCCTGCCGTCCAAGCGCTTGATTTTGGAAGGGGCAGCCGGTAGCGATTTTTCGGAAGCAGTCGCTGGCAAAAATGAGATGACAGCCCAGTTGCGGGAGAAAAACTACCAGATGTTGGCGCAAGAAGAGACGGTGACCGTCCTTGACGGCCAGGCCCGCTTTATTGGCGAAAAAGAAATCGAAGTCACGGGGCCGGCTGGCAAACAGATTTTTAAGGGCGACCGGATCTTTATCAACACCGGGGCCAGCCCTGTCTTGCCGCCTGTTCCTGGTTTAAAAGAGAGCAAGAAGCGGCTGGATTCCACCCAGGCCATGAACTTGACCAGCCTGCCAAAAGAGCTCTTGATCCTGGGGGCCGGCTACATCGGCCTGGAATTTGCAGGCATGTTTGCCAATTATGGCAGCCAGGTGACTGTTTTGGACCACAGCCCGGAATTTTTGCCAAGAGAAGATGACGATATTAAAGCCGCCGTCAAGGCTGACCTGGAAAGAGCCGGGGTTAAGTTCATCTTAGGTGCAGATGCCGAAAAAGTCAGCGACGAAGCTGACCAGGTCGTAATTGACTACAAATTAGGCGAAGAAAAATTGACGGCTGCTGCTGACAAAGTCTTGGTCGCTGCCGGCCGGCGGGCCAACACGGCTGATCTTAATTTGCCAGCAGCCGGGATTGAAACTGACGACCGGGGCAATATCAGGGTTGATGACCGCTTAAGAACAAGTGCTGACCAGGTCTGGGCCCTGGGCGATGTCAAGGGCGGACCGCAATTTACCTATGTCTCCCTGGATGACTTCAGAATTGTCAAGGACCAGCTTTTTGGCGAAGGCAAGCGGAGAGTCAGTGACCGGCAAATCCTGCCGACCAGCGTCTTCATCACCCCGCCTCTGTCAGCTGTTGGCCTTAATGAAAAAGCCGCCCAAAAGGCCGGGCTTGACTACCAGCTCTTCAAGCTGCCAGTTGCCGCCATTCCCAAGGCCAAAGTCGCCAAGGACAGCCGGGGCTTGTTCAAGGCCCTGGTTGACCCGGCAAGCGGGCAGATCCTGGGGGCCAGCCTGTACGGCCTGGAATCCCATGAACTGATCAACCAGATCGCCCTGGCCATGAAGGCCAAGCTGCCTTACAGCTTCCTGCGTGACCAGATCTACACCCACCCGACCATGAGCGAGGCCTTTAATGACCTCTTCAAGCAATAAAAAAGAACTCCGGAAGGAGTTCTTTTTTGCTATCAAGCTTTATTTCTTTTCGACCAGCATTGGCAGAATCATTGGCCGCCTTTCAGTCCGGGAGTATAGGAAGTCCTGCAGGTTCTCGATGATCGCCTTGCGGATTTCGCTGTCCTTAGGCTTGTCGCTCTTGGCCATTTCCGTCTTCAAGACATGGTAGACGTGCTTCTGGGCCGCGTTGATCAAGTCCTGGGATTCACGCATGTAGACAAAGCCCCGGCTTAGGATGTCAGGGCCTGCCAAAACCCGCTTGTGCTTGTAGTCAACCGTGGCTACGGCTACTACCAGCCCTTCTTCAGACAGGATCTGTCGGTCGCGGACCACGATGTTGCCGACATCATCAGCACCGGAAGTGTCGACGAAGACGTCCTTGACGTGGATGTCGCCGGCGATTCTGGCCCCTTCAGGGCTGAAGCAGACCACTTCACCGTTCTTCAAGACGAAGGTGTTCTCTGCCGGCACGCCTGCTTGCTGGGCCAGGTGGGCGTGGACAACCTGCATCCGGTATTCACCGTGCACCGGGATCATGTACTTCGGCTTGGCCAGTTCGACCATCAGCTTCAGTTCTTCCTGGCCGCCGTGGCCGGAAGTGTGGACATTGTTGACCCGGCCGTGGACCACGTTGGCCCCGCCTTCCATCAGCTTGTTGATCAGCTGGTTAACGCTCAAGGTGTTGCCTGGAATCGGGTTGGAAGAGAAGATCACAGTGTCATGCGGCTTCAACTTGATCTGCCGATGGGTGCCGTTGGCAATCCGGGAGAGGGCAGCCAGGGGCTCACCCTGGGAACCGGTACAGAGGAGCATGACCTTTTCCGGCGGCAGGGAGTTGATTGTTTCAGCATCGACAATCAAGCCTTCCGGCACATCCAGATAGCCCAGGTCGATCCCGTTTTGGATCCCGTTTTCCATGCTCCGGCCAAAAATCGCCACCTTGCGGCCGGTGTCGATCGCGGCTTGAATGGCGGTTGACACCCGGTAAAGGTTGGAAGCGAAAGTGGCAAAGATGATCCGGCCTTCAATGCCGGTGATGATGTTGTGCAAAGAGCCGGCAACGAAGCGTTCAGACTTGGTAAACTGTGGCACTTCGGCGTTGGTTGAGTCACTCAAGAGGGCCAAAACGCCTTCTTCGCCCAGCTGGGCCATTCTCTGGAAGTTAGGGGCCGGCTGGTTCATGACCGGGGTCAAGTCGAACTTAAAGTCGCCAGTAAAGACGACCGCGCCCAGAGGAGTGTGGACGGCAATCCCCAAAGTGTCGGGGATTGAGTGGGTGGTTCTGAAGAAGGTCACCTTCAGCTTGTCAAAAGTCAAAACCGTGTCTTCGTGCTCTTCATGCAGCTCGGTCCGGTCCAGGATTCCGTGTTCTTCACACTTGCTCTTGATCAAGGCCAGGGCAAAAGGCGTGGCGTAGACTGGAATTTCCGGAATCTTTTCCAGCAGGAAGGGAATTCCGCCGATGTGGTCTTCGTGGCCGTGGCTGACAACCAGGGCCTTGATCTTCTCCCGGTTCTTGACCAGGTAAGAGTAGTCGGAGATAACATAGTTGATCCCCAGCAGATCATCTTCCGGGAACTTGATGCCGCAGTCCATTATGACGATTTCGTCTTGGTACTGGACACAGTACATGTTACGGCCGATTTCGTGTAATCCCCCGATCGCGAAAACGGCTACTTCGTTTTGCTTAATCTTCACTGTTAGTTTGGCCAAAGGCAGTCAGCTTGAAGTCAGCGTGTTCTTGTTCGTACTTCAAGGAGTTGCCGGTTAATTCTTGGATGAGCTCGATGTTGTAGGGGGTGTTTTGTTCAACGAGGGCTCTGGCTTGGACAATGTTGTCGGCTTCCATGTAGAGAGTCTGGGTCGTTTCTCTGCGTGGGTTAACGATCTTGTCCTTTTGATATAAAACTTTGTAGATCATAAAAAATCTCCTTATTGTTTAATTGTAATTTGATCTCTGTTTGAGAAATTTTGCCAAAAATACTCAATAGCTAATTAAAGTTTAGCATAATTAGAAAAGCAAGTATAGAAACATACTTGATCTAAGGAGGCAAAAAAGCCCAAGCCAGGACGAAGCGGGCTGGCTTGGACTATTGAGCCTAGTAGATGACGATGGTGTCTTCATCCAGGGCAAATGGGTTTTCCTTGTTGATCCGGTCGTAGAAGAGGTGGCCGTTCAAGTGGTCGATTTCGTGGCCGGAGACGATGGCTGGGTAGCCCTTGAGGCGGATGGTCTTTTCCTCGCCGTCAACGGTCCAGTAGTGAACCGTAACCTTGTTTGGCCGCGGAACGTAGCCGTCGATGACCTTGTCAACGCTCAGGCAGCCTTCGCCTTCGCTCAGGCAGGTCTTGCGGACGGATTCAGAGATGATTTCCGGGTTAACGTAAACTTCCTTAAAGATGATTTCCCCCTTGTCGTCTGGCACAAGCAGGGCAGCCATAGACACGCCCTCACCAACCTGCGGGGCAGCCAGACCGACCCCGGCCCGGAGCTGGTGCTTGGCGGCAATCTTTGGATCTTGTGAGTTTACCAGGTATTCCATCATGTCATCGGCCAGCTTGCGGTAGTGGTCTGACAAGGGAAAAGTCAATTTTTGCGCAACTTGCCGCAAAACGGGATCCCCGTCGCGGACAATATCTTTCATTAAGATCAATGTGGGTTCTCCTTTTAAAATAATCGCTAATATATTTTTACCACAAAAAGGCCTGCTATGGTTAAACATTCTCTGAAAAGCATATGTAAACTAAAGCAAATTTGTTGACCAGGCCCAAGAGTGGTTGTACAATAGATGATTGTAAAAAAAATATAAACATTACTTCGGCCAGCCTGCTATCTAAGGCTAAAGGGAACTGTGCTTTTGTCACAGTTCTTTTTATGAGGAACGGGGAGGAAACATTTTTGGCAGATCAAAAGAGAAGAGAAAACATCAGAAACATCGCGATCATCGCGCACGTCGACCACGGTAAGACTACCCTGGTTAACCAGCTGCTTAAGCAGTCAGACACTTTACCAGAACACATGAACCTGGAAGACCGGGCAATGGACTCCAACGCCATTGAACGTGAACGTGGGATCACGATTCTGTCAAAGAACACCGCGGTCAGCTACAAGGGCACGACCATCAACATCCTGGACACTCCAGGCCACGCCGACTTCGGTGGGGAAGTTGAACGGATCATGCACATGGTTGACGGTGCCCTGCTTCTGGTCGACGCGTATGAAGGCCCAATGCCTCAGACCCGCTTTGTTTTGCAAAAGGCCCTGGAAGCCGGCGTTAAGCCAGTTGTTGTCGTGAACAAGATCGACCGTCCTGGTGCCCGTCCAGCTGAAGTTCTGGATGAAGTTCTGGAACTCTTCATCGAACTTGGCGCCAACGACGAACAACTTGAATTCCCAGTTGTTTACGCTTCTGCCTTGAACGGTACTTCTAGCTGCTCAGACGACCCGGCTGACCAGGAAGAAACCATGGACCCGGTCTTCGACACGGTAATCAAGGCCATTCCGGCTCCGCTTGACAACGAAGACGAACCTTTGCAGTTCCAAATCACCATGCTTGACTGGGACGACTACGTTGGCCGGATCGGCGTCGGCCGCGTTTACCGGGGCAAGATCAAGGTCGGCGACGAAGTTACTGTCATGAAGCTTGACGGCTCCAAGCAAAACTTCCGCGTGACCAAGCTTTTTGGTTACTTCGGTTTGAAGAGAAACGAAATCAAGGAAGCCAAGGCAGGCGACATTATCGCCATCAGTGGGATCAACGACATCTTCGTCGGTGAAACCATTGCTTCCAAGGAAAACCCAGAAGCCTTGCCAATTCTGCGGATTGACCCGCCGACTCTGCAAATGGACTTCGTGGCCAACGACTCACCATTTGCTGGCCGGGAAGGCAGCCAGGTTACTCCAGCCAAGCTGGAAGAACGGCTTTTGCGGCAAACCCGGACTGACGTTTCCCTGAAGGTTGAACCAACTGACCAATTGAATGCCTGGACTGTTTCAGGCCGTGGGGAACTGCACTTGTCCATCCTGGTTGAAGAAATGCGCCGGGAAGGCTTCGAACTGCAACTGTCCCGGCCAAAGGTTATCTACCGGGAAGTTGACGGGCAAATGTGCGAACCATATGAAGCTGTCCAAGTTGACGTGCCGGACGAATATGTCGGCTCGGTTATCGACGGCTTGTCCCAACGCAAGGGTGAAATGCAGAACATGGTTTCCAAGGGCAACGGCCAGACCCGGTTGGAATTCTCAGTTCCTTCCCGTGGCTTGATCGGCTACAACAACGAATTCATGTCCGCAACTGGTGGTTACGGGATCATGAACCACACTTTCAGCGAATACAAGCCAGTCGTTAAGAACTGGAACCCAGGCCGGCGCAACGGTGCTTTGGTTTCCATCAACCAGGGGCAGTCAACTACTTACTCCCTGCAGTCAGTTGAACAACGCGGCCAGCTCTTCATCGGTGCCGGCGTGCAAGTTTACGAAGGGATGATCGTTGGTGTATCTTCCCGTGACCGTGACATCGCTGTTAACGTAACCAAGGGCAAGAACCTAACCAACACCCGTGCTTCCGGTAAGGACCACGCTGCGGCCATCAGAACGCCAAAGACTTTGACTTTGGAAGAATCAATCGAATTCTTGAACGATGACGAATACTGTGAAGTAACTCCAGAAAGCCTGCGCCTGCGGAAGAAGATCTTGAACACTTCAGAACGGCAAAAGTTTGACAAGAAGAAGGCCAAGACCAACTAATTGTTAGTTTTTTGGTAAGTCTCTCCCCCTATTTATAGGAGGAGGGGCTTTTTTGTTTTATAATGAAAAGCGATGATTATTTTTAGAAGGGGAAAAACGTGAAGAAAAATAAAGTTGCTGCCACGGCCGCCAAAATAAAAGAGACATTCCAATATTTCGACTACCGGATCTTCATCGTCTACTTGCTTTTGATGACGATCGGGGTGATCGCGGTCTATTCGGCCAGTTCAGAAATCCTGCTGATCAACGGTTTCAAGGCTACGGTTTACGGGCAAAAGCAGCTGCTTTACGCCTTTTTCGGGGTATTGATCTGCCTTGCCTGCTACAGCATCAATCTGGACTACTTAAGGCGGGGCAAGCTGCTCTTGTGGCTGCTGGTAATTGTGGCCGGTTTATTGGTCTATGTCCTCTTCTTTGGCCAGGCGGTCAACGGGGCCAAGGGCTGGATCAACCTGGGCCCAATCAACATCCAGCCCTTGGAATTAGCCAAGCTGGTCCTGACTTTGTATCTGGCCCGGATGCTGGCTAAGGCCGACGGGCGGTTAGTGCGCGGACATATCATCTCCCAGCTTTTGCCTACGGCAATCATCGCGGGTTTACTAATGATCCTGGTTTTGATCGAACCTGATTTCGGGGGGACAGCCATCATTTTTTGCCTGGTCCTGATCATGTATTCAGTTTCCGGGATCCCGACCGGCTACATCCTCTTGAGTATCATCGGCATCACCGTTCTGGTGGTCGGGGGCTTCAGCTTGATCGTGGCCTGGAACCCGAGCTTCTTGCAGGATATTTACGTCTACAAGCGTTTTATCGCCTTCCTGCACCCATTTAAGACGGCTGCCAATGAAGGGGCCCAGCTGGTCAATTCATATTATGCTATCCATAACGGGGGCCTTTTTGGCTTAGGCCTGGGCAACAGTATCCAGAAGCGGGGCTATCTGCCGGAACCTTACACCGACTTTATTTTGTCGATCATTGCCGAAGAAGTTGGCTCTCTTGGCGCATTAGTAGTCTTGGGCCTGCTTTTCTACCTGGTGATTTTGATCATGGAGCGGGGGGTCAAGGCCCAGTCCCAGTACTCCACCTTGATCTGCTTCGGGGTGACCGCGATTATCTTTTTCCAGACTTTATTTAACGTTGGCGCGGTCTTAGGCCTCATGCCGATCACCGGGGTGACCCTGCCTTTTATCTCTTACGGGGGTTCCTCACTCTGGGTCTTGTCGGCAGCGATCGGCCTGGTATTAAATGTTACCGCGGAAGAAAAAATCAGACAGGAGGTGCAAGCAGAGGATGAGTATTAACCAAGAATTAGCTGACCAGGAGATTGCCAGCCGGACCAGCTTGATCGTTTACTTGCGTAACGTCAACGATGATCAGTTCAAGCTGCGCCGGTTCGGGGACATCGTTTATTTTTCCAAAAAGCTGCACTATTTGATTCTCTACGTTAACCAGGCAGAGGCGGAAGAAACGGCAAGCAAGCTGCGGACCTTCAGCTTTGTTAAGAAGGTTGAATTCTCCCAAAATGATGCCCTGGACCTGGACAACCAGAAGATTGAGCAGCAGATCAGTGACATGGCCAAGGAGGCCGAAGAGAAGTTAAATCAGACAGATAAAGAGGACTGGATTAAGTGAGAATTATTTCTGGAAAATACGCCAAACGGAACTTGTTTACCCTCAAGAGCCAGAAGACCCGGCCGACTAGCGACAAGGTCAAGGAATCCTTGTTCAATTCCCTGGGCCAGTTTTTTGCTGGAGGAGAGGTCCTGGACCTGTACGCGGGCAGCGGGGCTTTGGGGATTGAGGCAGTTTCCAGAGGCTGCGAGCATGCGGTGCTGAACGACGTCAGCCGGCCGGCCTGCCAGATCATCAGGAAAAACGTGGACTTGACCAAGGAGCCGGACCGCTTTGAGGTCTTCACCATGCCGGCGAAAGTGGCCTTGAAGGTCTTCGCTGACCAGGAAAGGAAGTTTGACCTGGTCTTTTTGGACCCGCCATATGCCAAGCAGCAGATGGTCAAGGACATGACGGCTCTGGCTTCCCTGGACCTGCTTAAGCCGGGGGCAAAAATTGTCGTTGAAACTGATGAGCAGACAGACTTGCCGCCGGTTGCCGGCTTTGACCTTTTGAAAGACCACCATATGGGCAAGACGATCGTAAGAATTTACCAGAGGGCAGAATAGATGATGACAGCGTTGTTTCCGGGGAGTTTTGACCCCATTACCAACGGGCATATGGATACAATTGAGCAGGCGGCGAAGGTCTTTGACCGCCTCTTGGTCGTAGTGATGACCAACAGCTCAAAAAAGGCGCTTTTTACGCCGGATGAGCGGGTGGACTTGATCAAGGACGCAGTAAAAGAGCATGGCCTGGCCAATGTCGAGGTCCTGGCCCGGCCGGGCCAGCTGACGGTGGACCTGGCCAGGGAATTAGGGGCCGGGATTTTAGTCCGCGGGGTCCGCAACAGCAGCGATTTTCTCTATGAGCAGCAGATCGCCCAGTTGAACCGGGACTTGGCCCCGGACCTGCCGACTGTTTTGTTTATGGCTGAGGCGGCCAACAGTGCTTTGGCATCGAGCATGCTGAAGGAAATCGCCATGTTTGGCGGCGAGCTGGACCGCTTTTTGCCCAAAAAAGCTGCCAGAGCCTTGAAGGAGAAGCTGCAAAGTGAAAGTTAAGAAAGACGGACAAAGCAAGAAGTGGCGCCGGGCCCTGGTCGGCTTGTTTGCGGTTATCCTGCTGGCCCTGGTCCTGCTCTTGCCAACCAAATACGTGATTGAGGCGCCCGGGGATGCCCTGCCGGTCGGCAATTATTTAAAGACGACAGGGGTTAAGGCTAAAAATAACCTCTACTTCGTGACCGTGAGTGAGCGGAGGGCGGTTTTGGGCGATTATTTATGGTCCTTTACCCAGCCTTATGAAGACCGCCTGACCATGGATGAAGTGACCGGGGGATCAAGCACGGAGCAATATGAACAGCTGCAGGAATGGTACATGCAGACCAGCCAGCAGACGGCCATCTATTACGCGGCCAAGAAGGCCGGGCTTAAACCCAAGCTGAAATACCAGGGCGTATATGTGATGGACCTGCAGTCCAGCTCCAGTTTTAAAAAGAAGCTCTTGATCGGGGACACGATCGTAGCGGCTAATGGGCACAAGTTCAAGTCTGTCCAGGGCTTTATGTGCTACCTGCAGAAGCAGAAGATCGGGCAGAAGGTGTCGATTACGGTTTTGCGGTCCGGGAAGAAGCAGACTTTTACCGGGAAAATCGTCAAGGTGAAAGGCACCGGCAAGCCGGGGATCGGGATCAGCATGGTGGAAAGGGTCAAGGTGGAAGTCAGCCCGAAGACGACGATTAGCACGGGCGACATTGGCGGCCCGTCAGCTGGTCTGATGTTCTCCCTGGCCTGCTACCAAAACTATACTGGCAAGGACTTGACCAAGGGCCACAAGGTAGCCGGGACGGGGACGATCGATGCAAACGGCAAGGTCGGCATTATCGGCGGCGTGGACAAGAAGGTCGTGGCCGCGGATAAAGAAGGGGCAGAAGTATTTTTCGCCCCAACTGACCAGACCGGGGTCAAGAAGTCCCAGACCAACTACGCGGTGGCCAAAAGAACGGCCAAGAAGCTGGGCACGAAGATGAAGATCGTGCCGGTGGCAACTTTTGATGATGCCTTGAAATACCTGCAAAAGCATTACAAGTAGAAAACTGAATAGTTAAGAAGAGAACCGGAGCCAGCCTCCGGTTCTTTTTTGCCTCAGTAAATTTTGTCTTTTTCTTTTTTCTTTTATTTAGGAAAAAAGACCATTTTTGGCGTATTAGTTATTGAGGTGATAAAAATGAATCAGTCAAACGAAAGAACGGAAGGCAAGCAAAAGCTGCAGGACCTGCTTGCCTGGCTTATGGATAAGAAAATGTACATCGTAGTCGTCTTGCTGGCGGCCGGGGGCTTTTATTATGCCAACCGGCAGCCGGCTGCTGACAATTCTGCTCTTTTGTCCAGCAGCCAGAGCATGAGTGAAAACAGCGGGCAAAGTCTGCAAAGCTCCAGTGTCAGTTCAGTGGCTGCCAGCGCCAGCTCAGCGGCTTCTGCGGCAAACGCTGAAGTAGTCTGCGATATTTCAGGAGCGGTCAAGCACCAGGGGGTCTACCGGCTGAAAAACGGAGCCCGGCTGGAAGACTTGATTGAAAAGGCCGGGGGCTTGACCAAGGATGCCCAATTGCAGGCCATCAACCGCAGCCAGCTTTTAAAAGACCAAGACAAGGTCTACATCCTCGGCAAGGGGGACAAGACGGAAGCGGCCCAGACCGCTAACTCTGCTGCAGCTTCTTCTCCTTCTGCATCAGCCTCAGCCTCATCAGTCTCTTCTTCAGCTTCCGGGGCAGCTTCTGGTGACTTGATCAATTTGAACACGGCTACAGCCAGCGATCTGCAGAAGCTGAACGGGATCGGGGAGAAGAAGGCCGAGCAGATCATTGCCTACCGGCAGGAAAAAGGGTCTTTTAAGAGTATTGACGAGTTGAAAGAGGTGTCGGGAATTGGCGACAAGACCTTCGCGGCAATTAAGGACCAGCTTACAATCTAGCCTGCAAGCCGGCTTTTACTTTCTTTTGGCCTTGGCCAGCGTCAGCTTGTGCGGGATCTTCCAGTCGCAAAAATGGGGGAAGCTTTTTGCCCTGGCCGCCTTGATCTACCTGCTCTTTTTGCTCAAGGATAAATATGGCGGTTTGGTTAAACTCGCCATGGCCTTCTTGCTCTTATTGACTTTGGTCCTGGCTAAGGACCAGGTTAAGCCGGGTGAGCCGGCAGGCGACATCCGCCTGTACCCCGACCAGGTGAAAATTACCGACGGCTGGCTGAGTGGGCGGGGGCAGACGGCCACGCAGAAAGTGCAAGTTTACGGGCCGGCAAGCCGGGAGGCACTAGCCTTGCTGGAAAACGGGCAAAGTATCGACTTAACTGAAGTTAGCGGCGCGGTCAGTGAAATAGAGCCATCGACCAATCCCGGCCAGTTCGACTACCGCCGATATTTGGCCAGCCAGCATGTCTACCGGCAGGTCAAGCTGGCTCATTATCAGTTCAAGTTGGCTCCGGCTAGTCTTCTTACCCGCTTGCATGGCCTCCGCTGGAAAATTCAAGCTTATCTGAAGCGCCTGCCCCGCCTATTGGCCTTTTTTGCCAGTGAACTGCTGCTAGCGGAAAATCCGGCTGGGGACAACCAAGCCAACTTGAATACCTACCGGGACCTGGGGGTTATCCATATCTTGAGCATTTCGGGGATGCATGTGGGCATTTACGTCTTTGCTCTGGCGGTTTTCGGCAGCTACCTGCACATGACCAAGGAGGAAGTTTTTGCCGTTTCCTGCGCTCTATTGACCTTTGAGGTCTTCTTGAGCGCGGGCCGGCCAGGTTTTATCCGGGCGACTCTTAGCTATGTTTTTTCAGCCGGATTAGCCTTTAAGAGCCGGAGGATCGGCCGGGCTGACCTGTTGGGCTTGACTTATTGCTGCCAGCAGCTTTTTACTCCCCGCCTTTTGCTGGAAACCGGCGGGATCTTGACTTATGTATTAGCCCTGGGCCTGGTCTTGACGGCGAAATTGCCAGACTGCAAGCAGGCTTTTTGGCTGAACGGCCTGCTGACGCCTTTTTTGCTCTACTTTTTCTACCAGGTCAATGTCTGCACGATTTTTTACAATATTTTAGTCGTGCCCTATTTCAACTATATCGTCATGCCCATGACCGGCCTGGCCTTGCTGGCTCCGCCGGGTCTAGCGGCTTTTTTTGAAAAAATCCTGGAGGCGGCGGAAGGGATGCTGGCTAATGTGGCGAAAACCGGCTTTGGCCAGCTGATCTATGGCCAGGTCAAGGCCTGGCAGCTGGCCCTGCTTTTTGCCTTAACCTTCCTGTATCTCATCACGCGGAAAAAGAAATACCGCCATATTCTGGCGGCGGTCTATCTCTTAATTTTTGTCAGCATCCACTTTCCCTTGGAAGGGCAGGTCTCTTTTATCGATGTGGGTCAGGGTGACAGCATTCTTTTAACGACGCCCATCCGCCGCCGGGTCTACTTGATCGATACCGGGAGCAAGCTGACTTTTGGTAAAAAGAAACAGAGCCAGCCCCAGATCGACCGGATTACCATTCCTTTGCTTAAAGCCCAGGGAATCAGCCAGATCGACGGGGTCTTCGTCAGCCACCAGGATGCTGACCATGTTGGTGACCTGGGCCCCCTGCTCGAGGAAATGCCGGTTAAGCGCCTCTATATGGGAGCAGGTCTTATTCAAAATCCGAGCTTTAGGGCCAGGATAGCCGGCCGAGTAGAGAAGACCAAGTTGGTTGAGCTGAAGGCAGGGATGGAGGTGAAAGAAGCGATCAACTTCCAGGTTCTTCACCCGGAAGTAGCGGGAAAAGGGGAAAACAAGGACTCCTTGTCGCTTACCTGCCGTCTGGCTGGGAAAAGCTGGGCTTTTACCGGGGACCTGGACCAGGCAGGTGAGGAGGCAATCATTAAGAAGTTTCCCGATTTGAAAATTGACTACTTCAAACTTGGCCACCACGGCAGCGATACTTCTTCTTCAACTGTCTTTTTGCGGGCAATCCAGCCAAAATTAGTCTTTATCTCCGCTGGCCGGAACAACCGCTACCACCACCCCAAGCCGGAAACCTTAGCCAAATTGCACCAGCTGGGGATTCCCTATCTCAATACCCAAACGGAAGGGATGATCAGCTGGCATTACGGCATCAGGGAATACTTCAGCAGTTTTCTGGAAGGGCGGCGGGTGTGTTATCATTATTAAAGAGTTTACTTTTAGAGGGAGGAAAGCGGCTTGCCAAATTTGATATCCCTGTTTCCTAACAGCCAGGCGGGAAACCCGAATGTCCTGCTGCAGGGACCGGACGCTTTTTTAAATGACTATCTGGCCCATAACTATGTCCAGCAGTCAGCCTTTCAAGGCCTGGAGAAGGTGACGGTTGACTGTGAGAGCGACCCGCTGGACGACTTGATCGCGGCCTTGGCGGAAGCCAGCCTTTTCAGCCAGCAAAAATTAGTCTTAGTCAAGAACCCAATCTTTTTGACGGGAAAGTTCCCGGCCAAGTACAAGCAGCAAGGGGACCGGCTGCTGGAAATCTTCAGTCACCTAGACCAGATCGACGACGTGATCGTTTTAGTCGCCAGCTATGAGAAGCTGGACCGGCGCAAGAAACTGACCAAGCAGGTGGAAAGGAGCTTCAATACGGTCTCAACCGCGGTCAAAAGCTATGAAAGCGGCCGGGTTATGCAGGCCTTGGTCAAGGCTGAAGGCTACCGCTTTGCCGGCGGGGCCCTGGACTTGCTCATGGAGAGAAGCGACCAGGTCCTGGACGCGGCCCTGGGCAATTACAACAAGCTGAAGGCGATCAGCGACGGCCAGGAAATCAGCTGGGACCTGGTGGACCGGAATATCGATCTCAGCTTAGACCAGAACGTTTTTGCTATTCTAGAGGCTGCCTTAAGAGGGGACTACCAAGAGGCAATCGACCGCCTGGACGGGCAGCTGCGGGAGGGGACTTATCCCTTGCAGATGGTCGCGGTCTTTTTCAGCCAGGTTGAATTTTTGCTCTGCGTGAAGGTGATGGGACAGAGAAGGCGGAGTGAAAGCGAGATTGCCAAGGAATTGTCCGCCCACCCTTACCGGGTCAAGACAGCCTTGAAGTCCAGGGCGAAGGTCGGCCAGCTGAAGAAAATGCTGGGCCAGCTGATCCAGCTGGACTACCGCTACAAGAGCGGGGTCTACCAGGGCAGCCGCTTTTTGAAGGCTTTTATCCTGACCTGCTAGGCAAAAAGAGAAAAAACAGGGAATAGAAAAAGACAAAAGAAAAAGAGCGGGAAACGGATTGTTTCTCGCTCTTTTGTTGATTGCTAGTTTAATTACTTAGCAAGCTTAGCTAAACGACTCTTGTCACGGGTAGCCTTGTTCTTGTGGATCAAGCCCTTTGAAGCAGCCTTGTCCAATTCACGGATAGCAGCAACGTATAATTCGGAGGCGTTGTCCGCACCAGCAGCTTGAGCAGCCTTAAACTTTTTAACGGCAGTTCTCATAGTGCTGAGTTGAGCAGCATTGCGTTCGTTAGCAACAGCTTGAGTCTTAACACGCTTGATAGCAGATTTGATTTGTGGCATTAGGTTCACCTCCAATAACTGATTGAAATTCACTAAATTATTATACTGAAAGCCAGCGCCAGATGCAAGAAGAAATTTTACTTGCTTTTTCCAAAAAATCGGGTATGATTATATTTGTTATGTGAACCCCGGACGTTGTCTTTACGTTTCACCTAACGGCTGACGCTGTCCGGGGCAATTTTTCAAAAGAAAGGTGCAGAAACATGGCAGTTTCAAAAGAAAGAAAGAACGAAATCATCAAGGAATATGCAACTCACGAAGGCGACACTGGTTCCGTAGAAGTACAAGTTGCTGTTTTGACTGAAGACATCAACAACTTGACTCAACACATGCGTGAACACTCACACGACCACCACTCATACGTTGGTCTGTTGAAGAAGATCGGTCACCGTCGTAACTTGCTCCGCTACTTGCAAGAAAATGACTTGGAACGTTACCGTGCTTTGATCGCTCGTTTGGGTTTGCGTCGTTAATCAAAGACCTACCAAGAGGCTGGGATTTCCCGGCCTCTTTTCTATTTTCAGTTTTCTTTTCCTTTGCGGGCTTAGTGACTATCATGCTCATGCCCTTTATGTTAAAATTAAAAAGATTATAAGCGTTTTGATCGACAGATCCATATAAAGCATCTATCAGACAAAGAATTGATTTAACATGATTACGAAAAGGAGAGCTTTATGTCAGACAAGTTAAAAATAATGGTTCTAGGCGGGGTCCGCGAGCAGGGCAAGAACATGTTTGCCGTTCAGGTGAACGATGAAATCTTTGTTTTGGACGCCGGCCTCAAGTACCCGGACAGTTCATTGTTCGGGATCGATGTGGTAATTCCGGACATGGAATTCTTCAAGCAATACGGCGACCAAGTGGTGGGGATCTTTTTGACTCACGGCCATGCTGACTCCATCGGGGCCCTGCCATACATTTTGCGGGACTGGGATATTCCGGTTTTTGGTTCAAAACTCACCATTGAACTGGCCAAGATCGACGTGCAAAGAGAAAACAAGCGGCGGAACAACCAGCTGTTCAACGTCATCGACGCCGATACGGAAATCGACTTCAAGAATGCCAGCGTGTCCTTCTTCCACACCACTCACTCAGTGCCAGACTCTTTGGGGATCGTCATCCATGCTCCCCAAGGGCAGATCGTCTATACCGGTGACTTTAAGTTTGATCCGTCAGCCCGGCCAGCTTACCGCACTGACATGGCCCGGCTCGCTGAAATCGCGGGAAACGGCGTTTTGGCCCTTTTGCCGGACTCATCCAATGCTGAGGCTGTTTTACCGAATGCCAGCGAAAATGAAGTCGGCACTTACATCACCAATGTCTTCAGAAACGCCAAGGGCCGGATCATCGTGGCCGGCAAGGCTTCCAACCTAAACCGGGTCCAGCAGGTCTTTAACGCCGCTGCTGCTACCGGCCGCCGGGTCCTTTTGACTGGCCGGGACGTGGCTAAGATAGTCCACACGGCCATGAAGCTGGGCTATCTGGAAGTGCCAGACGGGCTTTTGATGAAGGCCAAGGAACTCAAGGACGTGCCGGATGAAAAGACGGTCATCCTGGAAACCGGCCGGATGGGTGAACCGCTCCAGTCCCTGCAGAAGATGGCCAATAACCGCCACCGGATGATTACCATCCACGAAGGGGACCTGGTCTTTATTGCCACGACTCCGTCTCACGCCGTTGAAACCACGGTGGCTATCACCAGTGACATGGTTTACCGGGCAGGCGGCACGGTTATCGAACTTGGCCGCAACATGCACACTTCCGGCCACGCGACTGGCCGGGACCTGCAGACCTTGATTGACCTCTTGAAGCCGCGGATTCTGGTACCGGTCATCGGGGACTACCGGCTTTTAGAAGCAGTCAAGGACTTAGCCGTTGAAACTGGGATGGACCCGGACGATGTCTATATTACCCAAAACGGGGACTGCCTAGAATACGACACTAAGCGCGGCCAGTTCTTTCGTGGGGATGCCGTGCCGGGTGAAGACACGATGATCGATGGCTCCGGGGTAGGCGACGTGGGCAACATTGTTTTGCGCGACCGGGAAGTTTTGTCAGATGACGGGATCTTCATCGCGGTAGTGACGATTGACCGCAAGAAGAAGAAGATCGTGTCTGAACCGCAAGTCACCAGCCGGGGCTTTGTATACATCAATGCCAACCACAAGCTGATGAATGACTCTATCCAGGTCATCAAGGACGCTATCCAGGCCAACTTTGAGCACAAGAAGTTTGACTGGACTGAACTCAAGCAGGACATGCGCTCCAGCCTGGGGAAGTTCCTTTACAAGCAGACCAACCGTCGGCCGGTCGTTTTGCCAGTTGTCATGGAAGTCAACCAGAACCGGCATCGGGCAATGCAGAAGAAGGCCGAAGACGCGGCTGAAGGCAACAAGGAAAAGCCGGTTAAGAAGAACAACCGCAAGAAGCAGACCAGGCCGGCAAACAAGTACGCTAAGGGCAAGAAGCCGGTAAACAAGAATAAGAAGAAGGACAGCAAGGCAGATGACAAGCGTTAGCCAAGAGAACCTGCGGAAATTGGCCATAGAGGCTGAAGCAGGAGGGGACTACCAGGCTGCCTGCGGGCACTTGGAGGAGGCCTTGAGGCTGGGCTTTGACGAGGACCTGGCCCTGGACTTGTCCCGACTTTTGCGCTTAAACAAGGAAGAAGATCAGGCTTATGCCCTTATCAAGGCACTGCCTGATCTTTTTTCCCGGGATAAAGTGCTGGAGGAGTATGGACAAGTCCTGGCGGCCAATAATTTTTTGATCGAGGCTCTCCAGGTCAAGCATTTGACTGAGGGAGAGGTCGACTTCCCGGTTTTGCCAGCAGACAAAAAGGAACAAGAGAAAATCCTGCTTGCTTTTAGAAAAAAGCAGGCAGTCAGCCAAAGCCAGTACGAGCAGCTCTTGAAGCTGGATTTGCCGACCTACCTGGCCTTTGCCAGAAGCCTTTTGCTGGATCCCCTGGCTAACTACGCCTTGCGCCTGGCGGTGTGCGAGGACCTGGTCAAGCTGGGGGTTAAAGAAGAGATGCAGGTTATGATCCTGGGGGACTTGAAGAGTTTTGTGCCCGCTGAAACGGATTTGCTCAAGCAGGATCCGGTTTACCGGGAATTTATCACTTCTCTGGCCAGCCGCTACCAAAACCGCCCAAGCGAACTGCCCTTGATCTTGGCTGAAGGAAATTTCGCTTTTGGCCAGCTTTATCCCTGCCAGGGAGATTACGTGACTAATCCCGATGCTTTTGCCCGGAACTTGACCGGCTTTTTACGGCAAAAGCGGGGCGGGGAGAGCCAGGATTTGCTGGAAAAAATCTATCAGAAAAAATAGTGATTAATCTTTTTGCAAATCACTTTACTTTTTGCCGGCATTTAGTATAATCATTTTTGGATATTTTCAAGAAGTTGCGCTATTGCTACTAGCGTACTTCTTAGGAAAGTAGTACAATATTCAACAGAGAATCATCCGTTAGGTTTGTCTCAACGGACTTCTTGCAAAATTTCAGGAGGGTCATTTTAATGGCAGAAAAAGAACATTACGTTAGAACTAAGCCACACGTTAACATTGGTACTATTGGTCACGTTGACCACGGTAAGACTACTTTGACCGCAGCTATCACTACTGTGTTGGCTAAGAAGGGTTTGGCACAAGCTGAAGATTACTCACAAATCGACGCAGCTCCAGAAGAAAAGGAACGTGGTATCACTATCAACACTGCCCACGTTGAATACGAAACTGAAAAGCGTCACTACGCCCACATGGACGCCCCAGGCCACGCCGACTACATCAAGAACATGATCACTGGTGCCGCTCAAATGGACGGTGCTATCTTGGTTGTTGCCGCAACTGACGGTCCTATGCCACAAACTCGTGAACACATCTTGTTGGCTCGTCAGGTTGGTGTTAACTCCATCGTAGTCTTCTTGAACAAGTGCGACTTGGTTGACGACCCAGAATTGATCGACTTGGTTGAAATGGAAGTAAGAGACTTGCTTTCAGAATACGGTTACCCAGGTGACGATGTTCCTGTAGTTCGTGGTTCAGCTTTGAAGGCTCTTGAAGGCGACGAAGAAGCTCAAAAGAAGATCGAAGAACTGATGGACGTTGTTGACGAATACATTCCAACTCCAGAACGTGAAACTGACAAGCCATTCTTGATGCCAGTTGAAGACGTCTTCACTATCACTGGTCGTGGTACTGTTGCTTCAGGCCGTATCGACCGTGGTACTGTTAAGGTTGGCGACAGCGTTGAAATCGTTGGTTTGGTAGAAAAAGTCTTGACTTCAGTTGTAACTGGTTTGGAAATGTTCCACAAGACTCTTGACTTGGGTGAAGCCGGCGACAACGTTGGTGTATTGCTCCGTGGTGTCGACCGTGACCAAATCGTTCGTGGTCAAGTTTTGGCAGCTCCAGGCTCAATCAAGACCCACAAAACTTTCAAGGGCCAAGTCTACATCTTGAGCAAGGACGAAGGTGGCCGTCACACTCCATTCTTCTCAGACTACCGTCCACAATTCTACTTCCACACCACTGACATCACTGGTGAAATTGAATTGCCAGAAGGTACTGAAATGGTTATGCCTGGTGACAACACTGAATTCTCAGTTACTTTGATTAAGCCAGCTGCTATCGAAGTTGGTACTAAGTTCACTATCCGTGAAGGTGGTAGAACTGTTGGTGCCGGCCAAGTTACTGAAATTGACGACTAATTTTTAGTTTTTGAATTTTAGTTCTAACAGTGTAAAAAGGCGTTCTTTTCAGAAGAACGCCTTTTTTTTATCCAAAAAAGCCCTATTTTGTAGTACTTTGATTGTTTTTTGACCGTCTTTAAGGTAAGATATTTAAGTATGCAAAGTAGCAAACCCAAAATAGACATTGGAGGTATTTAATTAATGTCTGCTAACTGGAAAACTACCGGTAAGACTACTGGTGAACTTTCTTTTGAAATTTCTCAAGATGAAATCAAGAAGAGCCTGGACAAGGCTTTTGGCCGCGTAAAGAAGAGCTTGCGTGTACCTGGCTTCCGTAAGGGGCACGTTTCCCGTGTAATCTTCAACCAATACTACGGTGAAGAAGCTCTTTACGAAGACGCTTTGAACTTTGCTTTGCCAGAAGCTTACAGCGCTGCTGTCAAGGAAACTGGCATCAAGGCAGTTGGCCAACCTCAAATCGTTCCTGTATCAATGGGCAAGAACAAGGCCTGGGAAATGAAGGCAATCGTAACGGTTGAACCAGAAGTTGAACTTGGCCAATACACTGAAATTGAAGTACCAAAGCAAAACACTCGCGTTTACCAAAAGGACATCGACGCTGAATTGACTAAGCGTCAAGAACAAAACGCTGAAATGGTTTTGAAGAACGACAAGGCTGAAAACGGCGACACTGTAACCATCGACTACGTTGGTACTGTTGACGGCGTTGAATTTGACGGCGGCTCAGCACAAAACTACTCCCTGGAACTGGGCTCAAACACCTTCATCCCTGGCTTTGAAGACCAACTGGTTGGTCACGGCGCCGGCGAAGAAGTTGACGTTGTCGTAACCTTCCCAGAAGACTACGGCGCAAAGGACCTGGCTGGCAAGGAAGCTCACTTCGCAACCAAGATCCACGAAGTTAAGGCAAAGCAATTGCCAGAACTTGACGATGAATTTGCCAAGGATGTTGACGACTCAGTTGAAACCCTTGACGAATTGAAGGAAAAGATCAAGGCTGAACTGAAGTCCGAAAAGGAAGAAGCAGCCAAGGCAGCTATCCAAGAAGCAGCGATCACTACTGCAGTAAAGAACGCTACTGTTGAAGAAATTCCTGACGTGATGATCCAAGAAGACGTTGACAACCAACTCAACCAATACTTGGGCGACATGCAACGTCAAGGGATTGACCCGCAAACTTACTTCAAGTTGACTAACACGACTGAAGACCAACTGCGCAGCCAATTGTCAGCAAACGCTGCTGAACGCGTTAAGACTAACCTTGTTTTGGAAGCAATCGTTGCCAAGGAAGGCTTCGAAGCAAGCAAGGAAGAAATCGACGCTGAAATCAAGGACCTGGCTGACAACTACAACATGAGCGAAAAGGCAGTTCGCAACGCTTTGAGCGACGAAATGTTGGCTCATGACATCAACGTCCGCAAGGCAATGGACTTGATCACTGACAGCGCTAAGCAAGTAGCTAAGGCTAAGCTTGAAGAAGGCAGCGAAGAAGACAAGTAATCGCCAGTCTATAGACTGAATCCCCCAGAAGTGGCAACTGCCCCTTTTGGGGTTTTCTTTTGCCAAGGCTGATGAAAAATACAAGGCTAATTTCGCGCAAGTTGCCCGTATTTATGCTAATCTAGTCTTTAGCAAATAGAGGAGGGAATACATGGCTACTAAGTTTACAGATCCAGAAGAAGTGAAATGCTCATTCTGCGGCAAGTCTGCCAGCCAAGTAAAGAAAATGATTGCCGGCAACGGCGTATACATCTGCAACGAGGACATTGAACTCGCCAAGCGGATCATTGATGATGAGCTGCGTCTGGATTCACTGAAGGAAACGCGCGAGCTTCCCAAGCCAATGCAAATTAAAGAAGAACTGGACCAGTACGTGATTGGCCAGGACCGGGCCAAGCGGGTTCTGTCCGTAGCGGTTTACAATCACTACAAGCGGATCAGTCAAATTGATGTTGATTCTTCAACCGAATTGCAGAAGTCAAATATTGCCTTGATCGGGCCAACTGGGTCCGGCAAGACCTACCTGGCTCAGACTTTGGCAAGGATTTTGAACGTGCCGTTCGCGATCGCGGACGCAACTACTTTGACTGAAGCCGGTTATGTCGGTGAAGACGTCGAGAATATCCTGCTTAAGCTGCTCCAGAATGCCGATTACGACTTGGAGAGAGCCCAGCGGGGGATCATTTATATCGACGAAATTGACAAGATCTCCAAGAAGTCAGAGAATGTGTCGATTACCCGGGACGTGTCCGGTGAAGGGGTCCAGCAGGCCCTTTTGAAGATCCTGGAAGGGACCATTGCTTCTATTCCGCCGCAGGGCGGCCGCAAGCACCCGCAGCAGGAAATGATCCGGATGGACACCACCAACATCCTATTCATTGTCGGCGGGGCTTTTGACGGTATCGAAGAAATCGTTAAGAACCGGCTGGGCAAGAAGACCATCGGTTTTGGGGCAGAACAAGAATCTGGCAAGGTTGACGATGACAACTGGAACCGTTTCTTGACGACCGGGGACTTGGTCAAGTTTGGCTTGATCCCTGAATTCATTGGCCGGATTCCGATTATCACTACCTTGGACCGGCTGGACAGTGCTGATTTGGTCCGGATCTTGACTGAACCAAAGAATGCCTTGATCAAGCAATACCAGAAGCTGCTTTCCCTTGACGGGGTTGACCTGGAATTTGAACCTGCCGCCGTCAAGCAGATTGCTGACCTGGCTATTGAACGGAAGATGGGAGCCAGAGGCCTTAGAACCATCATTGAAAATGCCATGATGGACATCATGTACCGGACGCCGAGCGAAAGCGACATCAGCAAGATCATCATCACGCCGGAAACAATTACCGGGATGGGCGAGCCAAAGGTGGTCCGCCGCGAACTGGAAGAGGTTGTCGATGATCATTAACCAATCAGAATTTTCCGTCAGCGCGGTTAAAGCCAGCCAGTACCCCGAAGGCGGCCTGGATGAAATCGCCCTGGCTGGCCGGTCAAACGTGGGCAAGTCCAGCTTCATCAACACCCTTTTGCAAAGAAAGAACCTGGCCCGGACCTCCTCGTCGCCGGGCAAGACCCAGACCTTGAACTTCTACCGGGTGGACAGCGACCAAGCTGACTTTTACCTGGTCGATGTGCCGGGCTACGGCTATGCCAAGGTCTCCAAGAAGCAGAGGGAAGAGTTCGGGGAAATGATCCAGGATTACCTGGAAACCCGGGCCTACCTCAAGGGCTTGATCCTGATGATCGACGGCCGCCACGAACCAACCGTCGACGACATTGCCATGTATGACTATGCCCAGTATCTCAACCTGCCGATTTTACTAGTGGCCACGAAGATGGACAAGATCAAGAAGAATGCTTTTAACAAGACTGAAGCAGCCTTCAGAAAGCACTTGAACTTGAATAAGGACAATGTGACTTTCCTGCCATTTTCATCAGTGACTAAGCTGAACGTTGACCAGGTCAAGGACTGGATCCAAGCCAGATTGTACGAAGAATAGCAGACAAAACAAAAATGCTCAAAGGATTTTCCTTTGGGAATTTTGCGTTTACCGGTGCTTTTTCGGCATTTGCGGCCGGTGGTTGAAGAGCTCAGCCACCAGCTTGAAGGCTCCGTAGATGATCAAGAGGATCCCGATTTCGATGATCGACTGGTGGTTGAAGTATTCTGGGTTGATGATCACGATGATTCCCAGGGCAAAAGAAATAACGGCTTCCGCCCCGGTGATGATCATGCGGAAGACCCCGGTCTGCCGCCTTAAGATAATCTTGTGGCTGCGGCCATAGGCGTAAAAGAGCAGGAAGTAGTGAGCCAAAAAGACCAGGAGCTGGTTGCTCGATAAAAGGGCTATAGAGACCGCGAACAAGACCAGGTAGGTAATTAGGAAGAAGCGTTTCTGCTGCGGTTTAAAGGCTGAAACTGAGACCGTGAGGATATGGCTGACGCTGAAAATGATCCCCCGACAGCAGCTAGCACCCCGAAGGCCTTGAAGGCATAGTTAGGTGCTGTCAGACTGATGATGCCGAGCAGAACCAGGAGCCAGCCGGCCATGGTGTCCCGGCTGAACAAGGCCGCTCCGATCTGCTGGTTCTTGATCAACTGCCAGATCGAGGAAAAGAGATTGCCCAAAATGAATTTGGTCCGCCTTGAGGAGTTAGTCACCGACAAAAGGATGGCCCCGAAGCCCCCGAAGCCGTTCTTGGCCAGCTGGTTGATCTTGCTCGAGCCGCTAGCCGCCAGGGCATCAAAGAGGTCCTGGGTCAGGGCTTCTCGCTCTTCCAGGCTGGCTGACCCGATCCATTGGTTGATCAGCTGGTTGTAGACCCGGGACTCAGGATTGGGCCGCTTGCGGGTCACGAAATGGCTGCCTTTGATCTGCCAGGAATAGGTATCGTGCTGGGCGATATTGCCATTGGTTGAGTAGACGATGACCGGGTCGACCTCTCTTGGTTCAAAGAGGCGGCCGATAATCGAAAAGTCGGGTACGTAGCGGCGGAGGACCCTTTGCAAAAAGTCCTCGTTGTAGTCGACTCCGGCTTCGCTGGCCAGGCCGGGGCTGTCAAAGGTGTAGACGGCCTTGATCCGGGCCCGGTAGTCTTCTGGGAGATTCAAGGCGGCGTATTCAGCCAGGTTGCCCCCCTTTGAGTGGCCGCCCAGGATGTAGTCAGCTGAGTCGCCGGCCAGGAGGTCCTTGAGGTAGCGGGCACCTAAGATCTGGGCCTTGGTTTCTTTAAAAGAAATCTCAAAGTCTTCCCGCCAGCCAACCAGGGTATCGTCGGTCCCTCTAAAGGCCACATAGTGGGTGCCGTCTTCAAGGATGATTTTCAAGGCGCTGAACTGGCACTGGTCAGTCAAAACGGTGTTGAAGTGGGACAAGCGGGCATCCTTAAAGCGGTCGGCTTCGCTCATCAAGTGGAAGAGCTCCTGGTACTGGCTGGCGTCCAGGCCGGTGAAGGAAGAGGCGAAGTATTTCTCGGCGATTTCGCTAACTGTCACTTCTTTGTTGCCGGAAGGGATGTACTTTTCCAGGTTAAGATAAGAAAAAATTGCTAAGACTAAAGCGTCGATTTCGTTGAAAGGAGACTTTTCCAAGGGAATGTCGCCGCGCCATTCCAGGTAGGTCAGCAAATTGCTGTTGTCCAAGATGCTCACATCCTTAAGGAAAATAATTGCAAATGCTTACAAACTCATTTTAGCCTAAATAGGGCAGGGATGGGCAGATATACCGGAAAATTTAGCGACTTCTATAAAATATAAAAAGCCGCCAACAAGCGGCTTACTTTGCCTCTTTGCCGGCAGCTTTGTCGTCTTCCTTTTCCTTGCCCTTGCCAGAAGCGGCTTTCTTCGGGTCGGGAACGCTGGCGAATTTGTCGAAGAGCTTGTCTAAGTCGTCTTGTCTTTTAAAGGTTAAACCCATTTGTCCATATCCTGCTTTCCATTGAAATAAAAGTTCTGCTTTTGAGTCAATTATAACGATATTTTTGCTATTCAGTCAATTTTGAACTATACTTAGCAAAAACTAGCAAAAGAAAGTAGCTTCAAGAGAGGTGTAAAATGACTGACGCGATTGATACAATTAAGAGCCGCCACAGCACGCGCTATTTTGACCAAGGCAAGGAGCCCAGCCGGGCAGACCTGGAAGAAGTAATCCGCTTGGCCGGCCTGGCTCCGTCTTGGGTAGATTCCCAGCCCTGGCGGGTTTATCTGGCTATGGGGGAAACAGCCAAAAAGATCCATGCCCGCCACCTGGCTTTGGCTGAAGCAGGGACGGCGTCATCCCCAGACTGGGAGGCCTGGCACCGGGAGGACTGGGATCCTTATCCAAGAGAAAACATGGCCCGGCACAACCAGGCCAGCCAGGAATATCTGAACACGCCGGAATTGCTGGACCTTAGGACTAATATTTTGCAGAAAAATCTCTACTATGCCCCAGCGATTGCCTATTTAACTATTCCCAAGCGGTCCAATCTTTGGTCAGTCTATGACCTGGGAGCCTTTGCCCAGACTCTGGCGCTTGCCGCCAAGGCCAAGGGGATTGACAGCATGCCGGCCTATGAATTGGTCAAATACCCGGCCAGTGTCCGGGAAATTATGGGGATTCCAGAAGACCAGACCCTGGCCATGGGAATCGGCCTGGGCTATGGCAAAGATGAGTACGTCAACGGCTACCAGGCTCCCCGCCGGGATCTGCCTGACTTCTTGACAATTAAGGATTAGGAAAAAAGTTATATAAAATCGTTGACTTATAGTAAGCGAGTCTGTAAGATTAAATTAAATCAAATTGAGAGAGGAGCTAAATCATGTTTGCAATGCAAGAAAACCAAACTATGTGCGTTTGTTGTATGTCACTTATGTCATACGACTGTTTTGTGTTGCCTAAACTGGATTTAGCTCAGACCAAGTGATTTGCCAAGTAATTGTTAGCTTAGCGGCAAATGAAGCAGCTGTTTCCTTTAGGGAGCAGCTGCTTTTTGTCTCAGGAGGAAAAAATGCAAAAGATCAAGAAATTCACCCTTGCCGCCGTTAGCGTCAGTGCCGCCTTCCTGCTGGCCGCTTGCGGCAGTCAGCAGAGCTCAAGCTCAGCAAGTAAGGACAAGCAGGTTTTAAAGCTCAGCGCGACTGCTCCGCTGGATACGATCGACATCAGTAAGGCGACCGGCTACGGGCAGACGGGGAACGTTTTTGAAAGCTTCTACCGTTTGGGCAAGAACGGGCAGCCAGCCGCCGGCTTAGCCAAGTCCGGCACTGTATCCAAGGACGGCAAGACCTGGACCTTCAAGCTGCGGTCTAACGCCAAGTGGTCCAACGGGGAAAAGATTACCGCCCAGGACTTCGTCTACTCCTGGCGGCGGACGATCAACCCCAAGACTGCTTCGCCTTACGCCTACATTTTCTCCGGCATCAAGAACGCCGATGAAATTATTGCCGGCAAGAAGTCTCCGTCCAGCCTGGGCATCAAGGCTTTGAACCAGGAAACCGTGCAAGTTAAGCTCAACCGGCCGATTGCCTACTTCAAGGTTTTGATGGCTTACCCGCTCTTTGGGCCGCAAAACGAAGCCTTTATCAAGAAGACGGGCAAGAAGTACGCGACCAGCTCCAAGTACATGCTTTACTCCGGCCCATTTAAGATCACCGGCTGGAAGGGGACCAATGATACTTGGTCTTTTGTCAAAAACAACCAGTACTGGGACAAGCAGGCAGTCAAGTTGAGCAAGATCAGCTACCAGGTCGTTAAGACTACCAACACCGGCTACCAGCTCTACCAGCAGGGCAAGCTGGACCTCACCCCACTGTCCAGTGAACAGGTTAAGCAGCTGAAGAAGAACAAGGACTTCAAGACCTACCCATACTCCTACGTTGCCTTCTTGGCCTACAACTTCCAGGCCAAGGACGCGACGGTTAAGAAGGCTTTGAACAACAAGAACATCCGCCTGGCTCTGTCTCTGTCACTTGACCGGAAGATTCTGACCAGCAAGGTCTTCGGTGACGGGTCAAGCGTGCCAACTGGCTTCGTGGCTTCTGGTCTGGCCTATGACCCGGCTAACAAGGAAGACTTTGCCAAGGAGCAAAAGGTGGCTAATACCGTTGACTACAATGAAAAGCTGGCTGAAAAGTACTGGAAGACCGGGTTGAAGGAACTGGGCTTAAAGAAACTGAACCTGACCTTGCTGGCTTCAAACGAAAGCACCAACGCCGACGCTCTGACCCAGTACCTGCAGTCCCAATGGACTAAGGTTTTGTCCGGCATCAACGTGAAGGTTAACTCCATTCCAAACAAGAACGCTCACACCAAGGCTTTAAGCGGGGACTTTGACATCTACGTTTCCGGCTGGGGCGGGGACTTCAGCGACCCGATGACCTTCATGCAGATCTTGCAGAAGGGAACTTCCTACAACTACGGCAAGTGGAACAATGCGGAATACAACAGCTTGATCAAGAAGGCTTTGACGACTGATGCCAACGACGTTAACAAGCGCTGGCAGGACCTGGTCAAGGCAGCCCAAGTGGCCAACGCCGACCAGGCAGTCAGCCCGATCTACCAGCAGACGACCGCCTACCTGCAAAACAGCAAGGTCAAGGGGATCATCCACAACAATGCTGGTACCCAGTGGAGCTACAAGTACGCCTACATTAAGTAGCTGGTAGTTAGCAAATTTAAGATATGCAAATAAAAACGAGACCGCTTAGTCTCGTTTTTTTAATGCCGGCTGGCCCGGTGGCTGGAGCTGGCCTTGATTTTGTGGGGATGCCGCTTGAATTTGACCTGGCCGCCCTCTGGCAGGAAGCGGAAGTGGCGCATTTTGGCGTTAAAGGGCCGGCCAGAGAGGCGGATGGCGGTCCAGTCCTTCATCAGCTTGATCATCCGGTCCAGTTCCTGGACTCTTTTGGCCTGGCCTTCTGCTTCAGCCGCCTGGTGGATGTCGCCTTCCAGGCGTTCGATTAGGTTCTGGTGGTAGGCAAGAAGTTCGGGAGTCAAGGGAGCCCGCCGGTACTGGTTGAAGAGTTTTTGGATCAGTTCCATGGCCTCCAGGCTGTCATGTGGCTGGATATAGCGGGAACCATTATCTTCATTCATGGATTTTGTCCTTTCTATTATTTCTGCTTCTATTTCTTTATCAAGCTTTTTGCCTTTTTCTGGCTTTTTAGTTAAAAATTACAGGAGTGTTAAAAAATGCGATATCTAGAAAATGCTCTAGCCATCTTTTAATTTTTTGCCATAATATATAAAAAGCATGAGGCTTTTAACCTAGGATACCAGAATCAGCATAAACGAGAAGATGTTTGACGAAATTTGTTAGTTATTGAGGAGAAAAAAGATGTACCTCTTGCGCAAGTGGGGTTACTACCACCGGAAGATGCGGCGGGGAGACTTCACCCGGCCAACGGAACTGATGAGCGATGAGATCTTCAACCAGACGGTCGGCATCGTCGGCCTGGGCCGGATCGGGGCAGCTGCGGCGGAAATGTACCATGCCCTGGGGGCCAGAGTTATCGGCTATGACCCGGTTTACAATGCTTCTTTAGAGCCCTTTTTGGACTTCGTCGATTTTGAGACCTTGATCAAGGAAAGCGACATCGTCCAGGTGCACATTCCGCTGACTCCGGAAAACAAGGGCATGTTCAGCGCCAATGAATTTGCCAAGATGAAGGACGACGCGATCCTGGTCAACCAGTCAAGAGGCGAACTGGTCGATACCGCGGCCTTGATCGTGGCCTTGAAGTACCATGAAATCGGCGGGGCCGCCCTGGACGTTTTGGAAGGGGAAGAAAAAATCTTCGGCTGCAAGTTTGAGGATGTGGGTTCCCTGCCGGACGAGTACACGGAGCTGATCAACCTGCCAAACGTGGTCATGTCCCCGCACTCTGCCTACTATACCAAGATGGCGGTCAAGAATATGTTCCTCCAGAGCATGACAGATATCGAGCGGACCCTGTCCGGGAAAAAAGGCCTTTTTCAAGGTGAATTAGCGAAAAAGCAGTAAAATAAAGCGAAAAATGAAGAACATAGACAAGCCCTGGCAGGCTAATCCTGCCGGGGCTTTTTCCATCTGTTAAGCTTTTTGTAAAGATTAACACCCGGTAAAAAAATCTGTTAGACTTAAGGTGAACTGAAGTAAAAAGTTTTTGCAAAGGACAAGGAAATGGCAAATCAAGACCAAGCATATTTAGATTTACTGAAAAAGATCATGACGGAAGGCAATGACAAAAATGACCGGACCGGGACGGGGACCAGAAGCCTCTTTGGGGCCCAGATGCGCTTTGACTTAAGCCAGGGCTTCCCGATCTTGACGACCAAGAGGGTGCCTTTCGGCCTGATCAAGAGCGAGCTTTTGTGGTTCTTGCGGGGGGACACCAACATCCGTTTCTTGCTTGAACATAAAAACCACATTTGGGACGAATGGGCCTTTAAAAATTGGGTGACCAGCCCGGAATACCAGGGCCCGGACATGACTGATTTTGGCCTTAGGAGTCAAAAGGACCCAGGGTTTAAGGCAGTCTATGACGAAGAAATGCAAAAGTTCTGCCAGCGGATTTTGGATGATGAAGCTTTTGCCCAAAAATACGGCAACCTGGGCGATGTCTATGGGGCCCAGTGGCGGCACTGGGGTAAGCGGGACGGCGGCTTTATCGACCAGATCGCGGACGTGATTGAGCAGATCAAGACCAATCCCGACTCCCGCCGCTTGATCGTAACGGCCTGGAACCCGGAAGACGTTCCTTCCAGCGCCCTGCCGCCGTGCCATGTCCTCTTCCAGTTTTACGTGGCTGACGGCAAGCTCAGCTTGCAGCTTTACCAGCGCTCAGGCGACATGTTCTTAGGCGTGCCCTTCAACATTGCCAGCTACTCTTTGCTCTTGTCCTTGATTGCCCGGGAGACCGGCCTGGAAGTGGGCGAGTTTGTGCATACTATTGGGGATGCCCACATTTACAAGAACCACTTTGCCCAAGTGGAAGAGCAGCTGAAAAGAAAGCCGTTTGACGCGCCAACTTTGTGGCTGAATCCAGGGAAGAAAAAAGTAGCTGATTTTGAAATGGCTGATATTAAATTGGTCAACTACCAGCACGGGTCTACAATCAAGGCCCCGGTTGCCGTTTAGAAAGGGTGAAGAAATGCTTAGCTACGTTTGGGCAGAAGATGAAAAAGGCGCCATTGGCTACCAGGGCCGCCTGCCCTGGCACCTGCCGGCAGATTTAGCCCATTTTAAGGCAAAAACCATGGGCCACCCCATGCTGATGGGAAGAAAGACTTTTGAGTCCTTGCCGGGCCTGTTGCCTGGCCGGCAGCATGTCGTCCTTTCCACCAGGAAATTAGACCTGCCAGCTGGGGTTCTGCAGCTGAAAAGCGAAGAAGAAGTTTCCGCCTGGCTGAAGGAGCAGGCGGGGGAAGTCTGCGTTATTGGCGGCTCCAGCCTCTTTGCCCTGCTGGCTGACCAGGTTGACAAGCTGGAAGTGACCCGGATCAAGGGAATTTTTTCCGCTGACACCTACATGCCAAACCTTGACTGGGCGGCTTTTGCCCTGGTAAAGAGTGAAGCCCACCGGGCAGACGGCAAGAATAAGTATGACTATGTCTTTGAGACTTACCTGCGTAAAAAATAGCAGTCAAGCAGTGAAAAGTGAGATGTGAGTGTTATGAAAACAAATTTGGAGACGGGCTTGACCGAGGAGGAGGTCGCGCAGAAAAGCGCGGCCGGCAAGGTCAACACCACCATTGATGATGAGTTCAAGACCAACCGGCAGATCATCGTTGAAAACACCTTTACCTACTTCAACTTGATCTTCCTAGTTTTGACCATCCTGCTTTTGATTGCCGGGGATATCCGGGATTTGACCTTTTTGCCGGTGATCATTTTGAACACGATCGTGGGGATCGTCCAGGAAATCCGGGCAAAATCTGTTTTAAGCAAGCTGTAGGTCTTAAACCAGACCAAGCTTTTAGCCCTGAGAGGCGGAAAAAGGCGGAAGGTGCCAATCGACCAGCTGGTTGAAGGAGACCTAGTCCTCTTGAAAGCTGGTGACCAGATCCCGGCCGACGCCAAGGTGGTCGACGGCGGCGTCCGGGTAAATGAATCCCTTTTAACCGGGGAAAGCGATGAAATTGCCAAGGAAGTTGGCGACGAGCTCTTATCCGGTTCTTTCGTCGTTTCCGGCGAAGTCATGGCCCAGCTGGTCAAGGTGGGCAGCGAATCCTACATCGCAAAATTGACGGCGGAAGCCAAGGCCATGGGCGGGGGAGAAGAGTCAAAGATGATCCGGGCCATCAACCGCTTGATCAAGTGGGTTGGCATCATCATTATTCCAATGGGGCTAGCCCTTTTTGCCCAGGCCTACTTCCTCAACCACCGGTCTTTTGCTGAATCCATCAGTTCCATGGAAGCAGCCATTATCGGCATGATCCCGGAAGGGCTCTACCTGCTGACAACGGTTGCCCTGGCCCTGGCCGCCATGCGCCTGGCCCGCAACCAGGTCATGCTGCACGACATGAAGAGCGTGGAAACCCTGGCCCGGGTCAATGTCCTCTGCGTTGATAAGACAGGGACGATTACTGAGCCGAAGATGGCGGTGGAAAAAGTCGTCCCGGCCAAAAATTACCCGGGAAATGATTTGGAAGACCGGCTTGCCACCTACGTTTCCAACATGCCTGTCGACAATATCACCGCTGAAGCCTTGAGCCAGAAGTTTGGCCAGGACCAGCCCATGGTCAATGCCAAAAGGATTATCCCTTTTACCTCAGTCAACAAGTACAGCGGGGCGGTTTTCGCAGGCTACACCCTTTTGCTGGGGGCGCCGGAAATGATCCTGCGCTCGCAGCTGAAAGCCTGCCAGGAAGAATTTGCTCGCTACCCGGAAGGAAGGCTACCGGGTCCTGGCCTTTGCCAAGTATCCGGCAGAACTGGCAGATGATAAAGAGCGCCTGACCCAGGAGGTCGAAGTCCTGGGCTACGTCCTTTTGTCCAATCCGATCCGGAAAGAGGCCAAGGAGACTTTTGCATACTTTGCCAAGCAAGGGGTGGAAATCAAGGTTATTTCCGGGGACAACCCGGTCACCGTTTCCCGGGTGGCCGGCCAGGCCGGGATTGCCGGGGCAGAGAAGTACATCGATGCCCAGACGATCAAGCCAGGCGAATATGAGCAGGCCATGGCTGAATACAATGTCTTTGGCCGGGTTAAGCCGGAGCAGAAGAAAGAATTCGTCCAGGCCCTGCAGAAGATCGGGAAGACCGTGGCCATGACCGGGGACGGGGTTAACGACATCCTGGCTATGAAGGAAGCTGATTGCAGCATTGCCATGGCTTCAGGCAACAGCGCGGCTGTTCAGGCTTCCCAAGTGGTCTTGCTGGACTCAAACTTTGCCAAAATGCCCCAGGTGGTCAATGAAGGCCGGCAGGTGGTCAACAATATTGAACGCTCAGCTGGCCTCTTTTTAGTCAAAAACATCTTCTCCTTGCTGATTGCGGTCTTTTCCTTGATCTTGACGATCAACTACCCGATCAAGCCGGCCCAGATCACCTTGATCTCCAGCTTTACGATCGGCCTGCCGTCCTTCCTTTTGGCCCTAGAAAAGAACCATTCCCGGATTCGGGGCAATTTCACGGTCAATATTCTGACCAAGTCGATTCCAGGCGGGATTACCGACTGGCTGGCCGTCAGCATCCTGGTCTTGACCAACAAGTTTACCAATATCGGGGACAATGAAGTCGCTACCGCGTCAACAGCTCTCCTGGTCCTGGTGGGCTTGATGGTCCTCTTCTGGATCTCCCGGCCACTTAACAAGTACAAGCTGGGCGTTTTGGCCCTGTCGGTGGTCTGCATCATCTTGTCAATCATCTTCATCCCTGGCTTCTTCAAGTTGAGTCCTTTGTCAGGCCGGGCTGTCTTCACGGTTGTCGTCCTTTTCTTTGCCGGCATGACCCTCTTCAGAATCATGTCGCGGATCTGTGACGGAATCAAAGAAGTCAGCAACGTGCTGAAGGAGAAGGGGAAAGACGCCAAGCTGCGGGACCTTTTAGCCGCTTATGGCAAGGACCGGGACGAGCTTTAACAATTTTTTAGAAAAAGGCTTGACTTGCTTAAAAAATAATGATAAATTTAGAGCATCAAGTTAAGAAAAGTTATCTCGAAAAGCAGAGTAGTCGGGTGACGATCCTTTACAGAGAGGCGGCAGATGGTGAAAGCCGCCAGGAGAGTTCCGGTGAACATGTGCTTGGAATGATATGCCGCGGTGATATTTAGCCGCTACCGGGGTTGCTCTCGTTAAACAAGCAAGCTGTTTCTATTTATCAGAGACAGCTGGTGAGATTTATTACGCAAGTAATGAATGAACTAAAGGTGGTACCACGAGCGCTCGTCCTTTATCAAGGACGGGCGCTTTTTCTTTTCTGTTCGAATTTGACTGCCGCTTTTTCGGGATTGCTGCTGTGTTTCTGGAGGTATTAATCATGAGAAAAAAGAAACAAAGAAACAAAGAAACATTATTATCGCTATCGTGGCCGTTGTGGTCCTTGCCGTTATCGCCTTCTTCTCCTTTGGCAAGAAGGGCAGCCAGCAAAGCGCCAAGACGGTGACGGTAACCGTCGGGACTGTCGGGGCAACCAAGGCTGAACGGGCTATCTGGAAGAGTGTGGCGGCAACTGCCAAGAAGAAGTATGGTATCATTGTCAAGACCAAGAACTTCTCTGACTACAACCAGCCAAACAGCGCCTTGAAGTCAGGGGACCTGGACCTTAACGCCTTCCAGCACTACAACTTCCTCAACAACTGGAACAAGGCCAACAAGAGCAACCTGGTTGCCATCGGCAAGACCTACATCGCTCCAATCCGCCTTTACTCACTGAAGTACAAGTCACTGAAGTCCCTGCCTAAGGGGGCAACGATCGCCATTCCAAACGACACGACCAACGAAGCCCGGGCGCTTCTGGTTCTGAAGAACGCCGGCCTGATCACCCTGAAGGGGACCAGCGCTACCAAGCTGTACTCAGTTGCTGACATCAAGAACAACCCGAAGAACTTCAAGATCAAGGAAGTTGCGACTGAACAAGCTGCCAGAGTTCTGAAGTCGGTTGACGCTGCTGTTGTCAACAACGACTACGCTAACCCAGCCGGCCTGGGCGACAAGCAAACCATCTACGTTGAACCAATCAACAAGGACTCATACCAATGGATCAACGTCATCGTTGCCCGCAAGAAGGACAAGAACAAGAAGGCTTACAAGGAAGTCGTTAAGGCTTACCAGACTGAAAAGACCAAGCAGCTGTACAAGAAGTACTACGGCATCAAGCAAGTTGCGGCTTGGGACGCCAAGTTCTAAGATTTTTAACTTAACCTAGAAAGAAGCTTTGATCATATGAGCATTGTTCAACTGGACCACGTCAGTGTGACTTTTAAGCGGAAAAAGGCTGCCGATGTGCAGGCCGTGCAGGATGTGACTTTGCACATCGAAAAAGGCGACATCTACGGGATCGTCGGCTTTTCCGGGGCCGGGAAATCAACCCTGGTCAGAACCATCAACCTTTTGCAAAAGCCAACGGCCGGAGACGTCGTGGTTGGGGGTGTTGACTTTGTCAAAGACGGCAAACAGGTGATCAGCGGCAAGGACCTGCAGGCCCGCCGACGGAAGATCGGGATGATTTTCCAGCAGTTCAACCTGCTTAATGAAACGACCGTTATTGAAAATATTGCCTTTGCCCTCAAGCACTCAGACCTGTCTGACGATGAGCTGGAAGAAAAATGCCACAAGCTTCTGAAGCTGGTTGACCTGGAAGACAAAGCCAATGCCTACCCGGCCCAGCTCTCCGGCGGCCAGCAGCAGCGGGTGGCGATCGCCCGGGCCCTGGCTAACGATCCGGAAATCCTTTTGTCAGACGAAGCAACCAGTGCCCTGGATCCGCAGACGACTATCCAGATCCTGGACCTGTTGAAGAAACTGAACCGGGAACTGGGCTTGACCATCGTTTTGATCACCCACGAAATGGCCGCGGTCAAGAAGATCGCCAATAAGGTGGCGGTCATGGAAAACGGCCGGGTTGTCGAAAACGGCAACTTGCGGGATGTCTTCCTGGCGCCAAAGGCTGAATTGACCCAGAAATTCGTCGGCGGTTCTTTGGCTGTAGTTGACACCTTGAAGAGCCTCAACATCAGCCTGGCTGAAAACGAAGCCCTCTACCAGCTGGTCTACAGCTTGAACAATGTGGCCAAGTCAATCATCATCGAGCTTTACCGGGAAGTCGGCGTGGAAGCTTCGATGCTCTACGGCAATGTGGAAGTCCTGGCTGACGAACCGGTCGGGACCCTGTTGGTCATGGTCAAGGGGGATGCTGACAAGCAAAAGGCAACCTTGAAGTTCTTAAGCGATGAGGGTGTCACGGTAACGGAATTAGACGAAAGAGGTAACCGCTTATGATTAATGGTTTGGTACACTGGATCGCGCAGAACTTCCCGAATATTTACAACTTGGGCTGGACCGGGGACACCGGGTGGGGCACCTCCGTTCTGCAGATCATCTACATGACCTTCTGGCCGTCAATCTTCGGCGGGGTCCTGGGCCTCTTCTTCGGGGTCATCCTGGTTTTGACCGAGCCAGGTGGGATCTTGGAAAACAAGTTCTGGTTCAACTTCTGCGACAAGCTGATTTCCATTTTGCGGGCTATCCCTTTCATTATCCTTTTGGCCTTCATTTCACCTTTGACCCGCTTGATTGTCGGGACGGAAATCGGGGACACGGCTGCCTTGGTCCCGCTGACTTTAGGGATCTTCCCATTTTATGCCCGCCAGGTCCAGGTCGCTTTGGAAAGCTTGGATCCGGGCAAGGTTGAAGCAGCACAGAGCTTGGGCGCAAGCAACTGGGACATTATTTTTGACGTCTACCTCAAGGAAACGCGGTCAGAAATCATCCGGGTGTCAACTGTCTCCATCATCAGTTTGATCGGCTTGACTGCCATGGCCGGGGCCGTTGGGGCCGGTGGTCTGGGTACGACCGCCATCCAGTACGGCTACCGCGACTTCGCTAACGACGTGACCTTCCTGGCCACTGTCCTGGTCGTCATCATGATCTTTATCGTGCAAGTGGTTGGCGACTTCCTGGCCAAGAAGCTGAACCACCAGCACCGGTAAGAAATTTTTGAAAGTAAGAAAAGAATTTACATTTTTGAAAAATAGCCTTTTCAATTTTAAAAAGTTAAAAAATGGTTTATAATGTGGAGGTAAGTAATAAATAATTGAGTAGAGGAACTATCATGGCGAAATACGAATTTAAGTCCAGTCCAATCGATTTAGTCAACCCAAGCTACGACTTGGTAGTTATCGGGGCCGGTGGTACCGGTTTGTCTGCTGCCTTGCAGGCACATGAACTCGGCGCCAGCGTGGCTGTTTTTGAAAAGAACGAAGTTTTGGGCGGGAACACCAGCAAGGCTTCATCAGGGATGAACGCGGCTGAATCCCTGGTTCAATTCAAGCATGGCATCATCGACAACAAGGCAGACTTTTACCAGGAAACCCTTAAGGGCGGCGGCAACTTGAACGATGAAGCAATGCTGAGCTACTTCGTTGACCACGCTGCTTTGGCAATCGACTGGCTGAAGCAATATGGCGTTGAGCTGGATGACTTGACGATTACCGGGGGGATGAGCAAGAAGCGGGCCCACCGGCCAGCATCTATGGCGCCAGTTGGCGGTTACTTGATCACTGGCCTTTTGAAGAGCATTGAAGCAGCCCGGATTCCAGTCTTCAACAAGACCAAGGTTGTTAAGGTTTTGCAAGACGAAAAGGGCAAGGTAACTGGCATCGACATCGTTGGCCCAGACGGCCGCCGGAAAGTTATGGCCAAGGCTGTTATCCTGGCAACTGGTGGTTTCGGCGCTTCTAAGGAAATCATCAAGAAGTACCGGCCAGACCTGGAAGGCTACAAGACGACCAACCAAGCCGGCGCTACTGGTGACGGCCTGATCCTGGGTGAAGAAGCAGGGGCAGAATTGGTGCAAATGGACTTCATCCAAGTTCACCCAACCGCGCAAACTGATGGTGAAAAGACTTTCTTGATCGGGGAAGCTGTCCGGGGCGAAGGCGCTATTTTGGTCAACAAGGCCGGCCAGCGTTTCATCAACGAACTGGACACCCGGAAGGTTGTTTCAGCAGCCATCACTGGCTTGAATGAAGACGGTGCCTACCTCATCTTTGACCAAGGCGTCCGTGACCACGTTAAGGCAGTTGAATTTTACGACCACATCGGCCTGGTAGAACATGGTGCTACTTTGGAAGAACTGGCTGGCAAGATCGGCGTTGACGCTGCTGGTCTTGAAGCAACTGTTGCCAGCTGGAACGAAGCAGTCAAGGGCCAAGACGACCAAGCCTTTGGCCGGACTACCGGGATGGACCGCGACATTTCAGTTGCGCCGTACTTTGCTATCCACATTCACCCAGCCATCCACTACACGATGGGTGGTCTGCACATCAACCCTGAAACCCAGGTTTTGGGCAAGGACGACAAGGTGATTGAAGGCCTCTACGCCGCTGGTGAAGTTTCCGGGGGCCTGCACGGCAACAACCGGATCGGCGGTAACTCAGTTGCTGAAACTGTAGTCTTTGGCCGGCAAGCTGGTATTCAAGCAAGCAAGTTCGTGCGCGGCGAAAACTAAGCTGAAAAGAACAAGTTACAAAAGAATACTATTTTAGGCAGCAGCTCTCAGGCTGCTGTCTTTTTTTACCAAAAATCAGCAAATTAAAGTTCACTCTTTCACATGCCTGGGCTGTCATAAAGGAAAACGATTGAAATCGCTTTATGATAATTGATGTGATGATGAAAGGAAGAGATCATGAGTACACGGGAACGCTATCAGCAGAGTGAACTGGTCAAGGCGAACAGCAAGTTCAGCCGGGTCCGGGCGACTATTGAATCAGCTTTTTACGGCAACAATGTCCATGAAGTCAAGAGTGTAGCGGAAGCATATGAACTGGCCAAGCGCCAGCCTGGAGTAATTGAGACTGACCTGCCGATCCTGCACACCAGTGATTTTGGTCTGCCGGTCGGGGCCAAGCAATTGGTTTACAACCACGGCAAGATTTTGGGCCGGACGGCATCAGCCCGGCACTTTGTCGATGATCCAGAGGAAGACGCGGCTGCTTTAACCAACAGTTTGTATGAAGACATTTATGCCGGCCATGAGCAGAAGTATTTGAAGACGACGGTACTGGTTGGGCTGGACGCGTCCTTTAGCTTAAAGGCCCACTTGATGCTACAGGAGGACCAGGCCTTCAACCTGCTCAGCTACATGCTCAACTTCCGCTTTTTTGATGAAAAGGCGGCTGAGATGTACGGGAAATCCAAGCTTTATGATGAAGGGGACTTGTACTTCTACTTTGATCCGAACGTGACAGATCCGGCTTATCCAAACGGACTGGCAATTTTTGACGCTCCGCACAACTGCGCCTCGGTGTTTGGCCTGCTCTACTTTGGTGAGCTGAAGAAGGGAACCTTGACCTTGGCCTGGGCCCTGGCCCACCGGCACGGCTATGCAGCCTGCCACGGGGGCGAGCAAGCCTTCCACTTTGAAGACAAGAAAGACAAGGTATTTGCCTTTTACGGCTTGTCGGGCTCAGGCAAGTCAACCTTGAACCACGCTGACCATGACGGCAAGTATGATATTACTGTTTTGCACGACGACGCCTATATTATTTCAAGAGAAGACGGCAGCTCGGTAGCCTTGGAGCCGGCCTACTTTGACAAGACTCACGACTATCCAGCCGGTCACCACGAGACCAAGTACTACACGACTGTGATGAACTGCGCGGTTACCCTGGATGAAGCAAGGGCGGAATGTTTTGGTTACGGAAGACCTCCGGAACAGTAACGGGCGGGTGATCAAGAGCCGGTATACTTCAGCCAACCGGGTTGATGTGGAAGAAAATCCGATCACAGCCCTCTTCTGGATCATGAAGGACAACTCTTTGCCGCCGGTATTGAAGGTGACTGATCCGGTTTTGGCTACAACCCTGGGCTTGACATTAGCCACCAAGCGGACGTCAGCTGAGAACCTGCCAAAGGGTTTTGACATGAACACTTTGGGCATCGAACCATTTGCTGATCTCTTCAGAGCTTACCCAGTTGGGGGCGACTATAGCGACTTCAAGGATCTTTTTACCAAGCGGGGAGCGGAATGCTACGTTTTAAACACGGATGCCTTCTGCGGGAAAAACATTCCTAAGGAACTGACTTTAGAGATCATTGAAAAGCTGGTGGATGATACTGACCAGTGGCAGGCCTTTGGCGATTTTGCCGGAGTCAGCTACATGCCGCTTGCTGACTATCCGGTTGACCTGGAATACAAGCAGAATCTCAGAGCCTGGATACAGGACCGGATGGACTGGCTGAACATGTACAACGGTGAGCATCCAAAGACGCCGCTGCCAGAAGAAGCCAAGGAATGCTTAGAGAAAATCGTTAGTGAACTGAAGTAAGCGTCTATCTATATTAGGCAAATAGCAGCCAATCTTTTAACAGACCTTAGGGTCTGTTTTTATTTTGAAAAAGAAAATAGAAAAAAGTTTTATCTTTTTTGCCAGCAGAAATAGAGATAATCCGAACTATCTATTCTTTAAAAAACAATTCCTGCGGAAAGAAAAAAACAAAAGAAAGAGTAAGCGAGTTTGCTTTTATTACAACGGTCCCTGGTGAACCGGGAATAAACCGAATGAAAAAGAAAATTTGACGAATCAGAAAAAGCTAGTATACTAATGTTTGTTGCCGCGTGAGACAAGCAAGTCTCGCGGAGGCCAAAAAGAAAATATCAGGAAGCTGTTGACAAGAAGTCAACAAGCGAGTAAGATATAAAACGTTGCGTCACTAAGACGTAAGTTGGTACTTTGAAAACTGAACAAAGTTTCGCAGTGTGCGGGTCAAACATTGTTTGATCCAAACAAATAAGCGAAGTCAATTCGCAAGCAAATAATCTGGAGCAGATTAAAAAGGCTCAATTTTCAAATTGAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAGCTGAATTCAAAGATTCCTTCGGGATGATTTGTTGGACGCTAGCGGCGGATGGGTGAGTAACACGTGGGCAATCTGCCCTAAAGACTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAACAACATGAATCGCATGATTCAAGTTTGAAAGGCGGCGTAAGCTGTCACTTTAGGATGAGCCCGCGGCGCATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCAATGATGCGTAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGCAGTAACTGGTCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAATGATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAACTGCATCGGAAACTGTCATTCTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGCGCTAGGTGTTGGGGACTTTCCGGTCCTCAGTGCCGCAGCAAACGCATTAAGCGCTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGTGCTACACCTAGAGATAGGTGGTTCCCTTCGGGGACGCAGAGACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGTACAACGAGAAGCGAACCCGCGAGGGTAAGCGGATCTCTTAAAGCTGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGCTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGTCTGCAATGCCCAAAGTCGGTGGGATAACCTTTATAGGAGTCAGCCGCCTAAGGCAGGGCAGATGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGAGAACCTGCGGCTGGATCACCTCCTTTCTAAGGAAAACAGATGGATGGAGAGCAGAAATGCTAAGAGAAATCCATCAGTTACGGAAGCACACTGCAAAAGAAACTTTGTTCAGTTTTGAGAGTACCAACAATAAGAACTTGGGCCTGTAGCTCAGCTGGTTAGAGCGCACGCTTGATAAGCGTGAGGTCGATGGTTCAAGTCCATCCAGGCCCATTGAAATGCAAAGAAAAGTCTTTACATTTCAGCCGAGATGGAGTAACATCTTAAAAGTTGATATTTTACGGGGGCATAGCTCAGCTGGGAGAGCACCTGCTTTGCAAGCAGGAGGTCATCGGTTCGATCCCGTTTGCCTCCATTGGCCGGAAGGCCAAGTTTGTACGTTGAAAACTGAATATCTTAATTCCAAGAAAAAACCGAGAATCATTGAGATCAATGAAAACATTGCAAAGCGACCGAGAGAGTTCGAAAGAACAAACTTGCAAGGTCAAGTGAAGAAGGGCGCACGGTGAATGCCTTGGCACTGGAAGCCGATGAAGGACGCGACTAACCGCGAAAGTCTTCGGGGAGCCGTAAGTAGGCTTTGATCCGGAGGTCTCCGAATGGGGGAACCCAGCATGTGCAGACATGCTATCCTTAAGTGAATACATAGCTTAAGGAGGGAACACGCAGTGAACTGAAACATCTAAGTAGCTGCAGGAAGAGAAAGAAATATCGATTTCCCAAGTAGCGGCGAGCGAACAGGAAAGAGCCCAAACCGGCAGATTTATCTGCCGGGGTTGTAGGACTGAGACATGGCACTTCAGAGGATAGCAGAAGCGTTTGGGAAAGCGCGCCAGAGAGGGTGAGAGCCCCGTAAGCGAAATCCAAAGAAGGCCTATCAGTATCCTGAGTAGGGCGGGACACGTGAAATCCCGTTTGAATCCGCGAGGACCATCTCGCAAGGCTAAATACTAACCAGTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAAGAGAACCTGAAACCGTGTGCCTACAAGTAGTCAGAGCCCGTTAACGGGTAATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTGCGTTAGTCAGCAAGGTTAAGTCAGAAAAGACGGAGCCGTAGCGAAAGCGAGTCTGAAGAGGGCGAGCAGTTGGCTGACGCAGACCCGAAACCAAGTGACCTACCCATGACCAGGTTGAAGGCGCGGTAAAACGCGCTGGAGGACCGAACCCACGTAAGTTGAAAATTGCGGGGATGAGTTGTGGGTAGCGGTGAAATTCCAAACGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGCAAAGAGGATGCTGGAGGTAGAGCTCTGTTTGGACTAGGGGCCCGTCAAGGGTTACTGAATTCAGATAAACTGCGAATTCCAGACATTTATGTGCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGATCACCAGTTAAGGTCCCAAAATTCATGCTAAGTGGAAAAGGATGTGGAGTTGCGCAGACAACTAGGACGTTGGCTCAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTAGTCGAGTGACGCCGCGCCGAAAATTTACCGGGGCTAAGCATGATACCGAAACTGTGGATGTGCATTTATGCACGTGGTAGGAGAGCGTTCTAGCGGCGGTGAAGCATGACCGAGAGGACATGTGGAGCTTCTAGAAGTGAGAATGCCGGTATGAGTAACGAAAGACAGGTGAGAATCCTGTCCGCCGCAAGACTAAGGTTTCCTGGGGCAGGCTCGTCCGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAGAGGCGTAGTCGATGGACAACAGGTTGAAATTCCTGTACTGCACCGAATCGTTATGAGCGATGGAAGGACGCAGGAGGCTAGCAGCGCGTGGTGCTGGATACCACGTTCAAGCGTCAAGTCTGAGAGCGAGTCAAATGCTTGCTCTCATAAGGACAAGGCGTGATGAGGAGCGAAATTAAAGTAGCGAAGGCTGCGACGTCACACTGCCGAGAAAAGCTTCTAGCCAGAGACGGTGCACCCGTACCGCAAACCGACACAGGTAGTCGAGGAGAGTATCCTCAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGGCCCCGTAACTTCGGGAGAAGGGGCGCTGGTCGCAAGATCAGCCGCAGTGAAAAGGCCCAAGCAACTGTTTATCAAAAACACAGGCATCTGCAAAATCGTAAGATGAAGTATAGGTGCTGACACCTGCCCGGTGCTGGAAGGTTAAGAGGAGAGCTTAGCGCAAGCGAAGGTTTGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGTGTAATGATTTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAATACCCGTGAAGATGCGGGTTACCCGCGACAGGACGGAAAGACCCCATGGAGCTTTACTGCAGTTTAATATTGGGTATCTGTCAAGCATGTACAGGATAGGTAGGAGCCGGAGAAGATAGGACGCCAGTCTTATCTGAGGCGCTGTTGGGATACTACCCTTGCTTGACGGATGCTCTAACTCAGGCCTGTGATCCAGGCCGAGGACAGTGTTTGACGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGTGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGTAAAAGGGAGCTTGACTGCGAGAGAGACAACTCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTACCGCATGGAAGGGCCATCACTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGTGGGCGCAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGCACCGCTGGTGTACCAGTTGTCTTGCCAAAGGCATCGCTGGGTAGCTATGTGCGGACGGGATAAGCGCTGAAAGCATCTAAGTGCGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCAAGAAAGTAAGACACCTCAGAGACGATGAGGTAGATAGGCCGGGAGTGGAAGAGCCGTGAGGCTTGGAGCGGACCGGTACTAATCAGTCGAGGACTTGACCAAAAGAGCAAAGCAATGAGGTTTTGACTTGGTAAAAGATATTCAGTTTTGAGCGTGCAAGCTCAAGCAGAGAGTGCGGTGGCAATGGCAAGAAGGATACACCTGTTCCCATGCCGAACACAGTAGTTAAGCTTCTTAACGCCGAAAGTAGTTGGTGGGAAACTGCCTGCGAGGATAGGAAGCTGCCGCGCGAGACAAGAGTCAGACGGAAGTCTGGCTCTTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCACTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCCGTCCCACGCTTTGAAATTGACAGGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGAACTGTTCTTTTTGACCGCTGGGCATGCGACTTTAGCCAAACGAATAAGGTTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAACCATTAAGTGCTCAATCTCTGGGAAAGTGAGCTGAATGGCTTTGTGCAGTCTATTCCTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATTCAATTAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTGCCTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTGTTTTCTCTTTTTCTTCTTCTTACCAAGTAAAAAGCCCTCCATTTAGGAGGGCTTGAGAGCATATTAGGCATTAAGACTTTCGGCCAGTTCATGAACCAGGTCGAGCTTACGCCACTGTCCTTCTTCGCTGATTAAATTTCCGGCTTCTGTTGAGGCAAAACCGCATTGGGTAGCAATGCAGATCTGCTTTGGATCAACGTGCTTATTGGCTTCCTCCAGGCGCTTAAGCAAGACTTCCTTGTCTTCCAACTCGTCTGACTGGGTGTTGACCAAGCCAAGCACGATCTTTTGCCCCTGCCGCTTTTCTAAAAGTGAGAAGTTACAGTATTTTTCATCATCGAATTCCATGAAGAAGCCGCTGAAGGGTAGCTGGAAGATGGTGTCGACCAGGCCATCATATTTGGCGTCATAGAATTTCTTTGACCGCAGGTTGCCCTGGCAGAAATGCAGGGTGATGTCCATGTCAGCTGGCTTAGAGGCCAGGATTTCCTTGGCAGTTTCAAAGAAAAACTGCCGTACTTCTTCCGAATCAAAGCCGGCCTGGCGGATCTTATTTTCTAAATGAAAATTAGGGGAAGATTAAAAGAATAGAAATTGCTTTTTAGCCAGAAAATAGCCTACAATAGATTGACAGATAGTTAGCCGCAAAAAACCGCCCAAGTCTTGGACGGTTGCAAATAGTATTTACTTTATCTAGATTGACATTTTCAGCTGGGCCGGGCTGAGGATTCTGCCTAAGCGCTCAGCTCCTTCATCGATCTTGCTGAGGCTAGAGCCGGTGAAGTTGACCCGGAGGCCGTTTGGGCCGGGCTGAGGATTCTACCTAAGCGCTCAGCTCCTTCATCGATCTGACTGAGGCTAGAGCCGGTGAAGTTGACCCGGAGGCCGTTATTCTTGTCCCAGTTAGGATAGAAGCTAGCCGAAGGCACGTAGATGAGGTGCTCTTTTGGCACGGCTTCATTAAGCAAAAGCTGTCTGGTATCAATTTCATCGTCCAGTTCAACCCAGAAGAAGAAGCCGCCTTCCGGCTGGCTGATCTTGGCATCAGCTGGCAGGTAAGTCTTTAAGGCTTTAGCCATAGCATCCAGCTTGACCCGGTAGACCTGCTTCAACTGATCAATATGCTGGTCCAGATCATTGTCTGCAAGGTAGGCAGCTACGGTACCAGCAGCTAAGTATGGCACTTCCAGGTCAGCTGACAATTTCAAGTTGACCAGCTGTTCCTTGATTTCCGGACTAGCTACCAGCCAGCCTAAACGGAAGGCTGGGGAAAGGATCTTAGAGAAGCTGGACAGGAAAATCACTCTGCCTTCCGTGTCAAAGCTCTTGATGCTTGGCAGGCTTTCCCCATGGTAGCGGAGGTCCCGGTAAGGGGTATCTTCCAAGATGACGAAGTCGTAGCGGTTGGCCAGGTCAACCAGGCGCTGGCGCTTAGCCAGGGATATGGTGATCCCGGTTGGATTGTGGAAGTCTGGCACCGTGTAGAAGAGCTTGATTGCCGGGTGCTCTTTCAGCACTTCTTCAAAGTAGTCCAGGTTGACCCCGTCGTCTTCCAAAGGAATTTCATGGTAGACTGGTTCGTAATTGTCAAAAGCAGACAGGGCGCCGACATAGCTTGGTGCTTCAACGGCCATTTCGTCGCCTGCCCCCAGGAAAAGCTTGGCTACCAGGTCGAGCCCTTGCTGGCCGCCAGCCGTCAGCAGGATGTCGTCAGCATTAGCCTTGATTCCCTGCTGCCTTGCCCGGCTTGCCAGGTAGTCGCGCAAGGTGCCCGGCCCCTTAACGTCGTGGTATTGGAAGGAGTGGGCCTGTTCCTGGTCAACGGCCTTCTGGTAAGCAGCTTGCAAAGCCTGGCTTGGGAAGAGGCTTTCGTCCGGGCAGCCGCCCCCAAAGGAGATGTTGTCGGAAAAATTGCTTTCCGGGAAGAGCCCTTGCAGGCGGGATGGATTTTGAGTTTTGATTCTTTTGGCAAAAAGCTTGCTTAACATTTTTCTTTGTTCCTAATTTCTTTGTTCCTAAATTAATATTGTCAGTTCCGCGTTGACTATATTATAATTGCTGGAGTAAGAATAATAAAACTCAACTTTTTTGATTTTAAGTGAAATATTTTCATGTTAGGAGGGGCAAATGCTGCCATTTCCATATCTAGTCTTCCAGACAGTGATCGACCAGGGAACCTTCAACAAGGCTGCCGCAGTCTTGAACGTGACCCCGTCGGCCATCAGCCACTCGGTCAACCAGCTGGAAACCGAACTAGGCTTTCCGGTCTTTGTCAGGTCAAGAAACGGGGTTAGACTGACCCCGGATGGGGAGAAAATCCTTCCCTTGATCCAGGAAATCATCAATGACCAGAGCCGGCTGGAGCAGGTCGCCCAGCAGATCCAGGGCCTGGACACCGGTTTGATCCGGATCGGGGCTTTCTCTTCGGTCTGCATCAACTGGCTGCCGCCTTTAATCCGGAATTTTGCTAAAAATTACCCCCAGGTCAAGATTTCCGTCCGCCAGGCTGGCTTCAGTGAAATTACCCAGGCTGTGAAAAGCGGCCAGCTGGACCTGGGCCTGACCATGCTGCCGGAAAATGAGCAGGGGATCAGCTGCGAAAAAATCCTGGAAGACGAAATCTACTGCATTGCCCCCAAAGACTTCCAGGTCAAAAACGGCCACAGCATCAGTGAGGAAGACCTGGTCAACTGCAACTTCATCCTCCAGCAAAGCGACTACGACCTGGATACCAAGGCCGCGCTTGACCACTACTCAATTAAGTCAACGGCTATTAGCTTTTCCATCGACGACCAGTCAATCGTGGCTATGGTGGAAGCGGGCCTGGGGCTGGGGATCCTGCCGGCTTTGGCCCTGCAGAAGATGCAGGGGGAAGTCAGAATCCTGCCTTTCAGCACTCCCTTTTACCGGAAGATCGCCCTGGTAACCTCAAACCAGCAACGGCTGGCTCCTTCAAGCAGGCAGATGATCAAGAACGTGCATGAACTGATCAGACGCCAGTATCCGGGCGGGCGCTTGACGATGGAAGCGGAAAGCGCATAGAATGCATGCAGTCTGTATAAATAGTATAATGAAATTGTTAAAATCTGTTGTCATATCCTCTAATCTCTTGCTATAATATACAGAGTAAAAATATAATGAGACTACAAAGCGTTTTGTCACACTCCATGAGATTAATAGGAAGCATAAACTAAAATTTGCATCAGCGATGGGGCAAGCGGGCGCTGAGTAATTTTTATTCAATTTTTTAGACATAGGAAATAAAGAAGGTATTTTATGAACGGTAAACAACTTGTTGCAGAAGCTTTACAGGCGGTTTTGCCTGACTGGTCACTGGATGACATTGATGTCAAGATTGAACGGCCAAAGGACGAAAAGCTGGGGGATTACGCTTTTCCAACCTTTACTTTAGCCAAGACCATGCGCAAGGCGCCAAACCTGATCGCGGCTGAACTGGCTGAGAAGATCGACCAAGGCAGCTTTGAAAAGGTGGAAGCAGTTGGCCCATACATCAACTTCTTCCTGGACAAGAGCCAGACCGGGGCGGCCATCTTGCAGGAAATCCTGGCTGACCCTGAAAACTACGGTGCCCGTGACCTGGGCCACGGCCGGAACGTTTTAACTGAATACTCATCACCTAACATTGCCAAGCCAATGGGGATGGGTCACCTGCGGTCAACCATGATCGGTGAAGCTATTGCCCGCATTCTGGCCAAGGAAGGCTTCAAGCCTATTAGAATCGACTACCTGGGTGACTGGGGCACCCAATTCGGGAAGATGATGGCTGCCTACAAGATGTGGGGCAACGACGCCGACATCGAAAAGGACCCAATCAACACCCTTTTGTCTTACTATGTCCGAATCAACCGGGAAGCTGAAGAACACCCGGAATACGATGAAGACGGCCGGGAATGGTTTTCCAAGCTGGAACACGGCGATGAAGAAGCCAAGCGCTTGTGGAGCTGGTTCAGAGAAGTTTCCCTGGAACGCTTCAAGAAGGTTTATGACATGCTGGACGTTCACTTCGACTCCTTCACTGGTGAAGCCTTCAGTGCCCAAATGATGGATAAACCAATCCAAATACTGCGGGAAAAGGGTCTCTTGGTTAAGAGCCAAGGTGCTGAAATCGTCGACCTTGAAAAGTACAACCTGCCGCCTTTGATGGTTATCAAGAGTAACGGGACTTCAACTTACATCACCCGTGACCTAGCAACTGCCATGTACCGGAAGAAGACTTATGGCTTCTACAAGTCCATCTACGTTGTCGGCCAGGAACAGGAAGTCTACTTCCAGCAGCTGCGTGCCTGCTTGAAGGAAATGGGCTTTGACTGGGCTGACGACATTGTTCACATCAGCTTCGGTCTGATGAGCATCAACGGCCAGAAGATGTCTACCAGAAAGGGTAACGTCGTTAACCTGGAAGACGTTTTGAACGAATCAGTTGACCTGGCCCGCAAGCAGATTTCTGAAAAGAACGTCGGCTTGAAGAACGCTGACGAAGTTGCCAAGCAAGTCGGTATCGGCGCGGTTGTCTTCCACGATTTGAAGAACTACCGCCGCAACCCAATCGACTTCAACCTGGAAGAAGTCGTTAAGTTCGAAGGTGAAACCGGCCCTTACGTGCAATACGCCCGGGCCCGTGGCGAAAGCCTCTTGAGAAAGAGCGGCATTACCGACTTCTCAGACGCTGACCTGACCAAGATCGGCGCTGAAGAATGGGACCTGGTCTCCTTCATGGCCCGCTACGCTGACACCATCCAAAAGGCCATGGAAACCTACGACCCAAGCGCGATTGCCAAGTACGCCCTGGAACTGGCCAAGCGCTTCAACAAGTACTACGCTCACACCAGAATTTTGGTTGATGACGTTGACGAAGATGTCAAGAAGGCTCGTTTGGCCGTTGTCCAAGCGGTCAGCCATGTCATCAAGTCAGCCCTGGACTTGCTGGATGTCAAGGCACCAGACGAAATGTAGTTTTTTCATTTTACATGAATGATATTAAATGCCTTGAACTTGCTTCAAGGCATTTTTTATTGGCTAATGTCAATGTTGTTGGGGATAATTGCAGAAAAATTGATCGAAGAAAGTCGGATAATTCAAGAAGAATTAAATAACAGCTTTATTGAAATATAAAAGTGCGTTAAAATTAAAGGTATCTAAAACGCTTAAATATAATATTAAGGGGCAATAATTATGAACTACAAAGAAAGAAGACAGCTGATTTACGAACTGATTCAGACCAACAAGATTGAAACCCAGGAACAATTGCTGCTCTTGTTGCAAGCCCATGGCGCGAACGCGACCCAGGCTACTATTTCCCGGGACATTCGCGCCTTGCACATCAGCAAGGTGCCAGATGATGACGGCCGCAGCTACTACGTTAAGGCGCCATCAGCTGCTGTTAACCGGGAAAGGCAGCTGAAAGACGCGATCCGCGAACGGGTGGCAACTGTAACTGCCGTTCAGTTTACCGTTGTCATTCAAACCAGCATGAAATTGACTTACGCGCCAATTTTGGCAGGATTAATTGACGATATTGACAACGATGACGTGGTCGGCACGATCGCCGGGACTGATACTCTTTTGGTTATCTTGAAGGATGCTGAAGCAGCTGCCAGCTTCGCGGACTGGGCACAAGCCATCGTTAAGGAACGCAAAATATACTAAGGAGAGCGATAATGGCAAGAATTTCGGTCTATATGACTGGCGGAATAGCTGCCTATAAGGCCGTGAGCGTTGTCCGGGGCCTGCAGAAGGCGGGCCATGAAGTCCGGGTAGCGATGACGGCCAAGAGTGAACGTTTTGTTGGTCCGGCAACTTTGGCGGCCTTAACGAAATGGCCGGTTTTAGACGACTTGTTCAGTCCAGGCCGGCAGGCGGAAATCGCCCATATCGACTTGGCTGACTGGAGCCAGCTGGCCCTGGTCGTGCCGGCTGATGCCAATATCTTGGCCAAGCTGGCTCAGGGGATCGGGGATGATGCCGTTTCAACCACCCTTTTGGCATTGCACTGCCCGCGCTTGATCGTGCCGTCAATGAATAGCCATATGTGGGAAAATCCTGCTGTACAGCGCAATCTCCGCTTGTTAAAGGAGGGCGGCGACTGGATCATGGAACCGGCCGTGGGCCGACTGGCTGAAGGCTATGCCGGCAAGGGCCGGATGCCGGAAGCTGAAGAGATCCTGGCCTGGGTTAATGACCAGCTTGACTTGCCAGCCAAAGGCAAGCGAATCGTCGTCACTGCGGGGGGCAATCTGGAAGCTATTGACCCGGTCCGCTTTATCGGCAACCGGTCAAGCGGCAAGATGGGCTTCCGCTTGGCAGAAGCCGCGGCCAAAAGAGGGGCCGAGGTGGACTTGATTTACGGCAACGTCTCAGTTCCCCTGCCAAGGGATGCCCGGATTCACCTCCATCCCGCCCTGTCGGCCCAGGCCATGCTGGAGAAGCTGGAAGAACTTTTCCCGGCTGCTGATGCCCTGTTGATGGCGGCAGCCGTCAGCGACTGGCGGCCAAAGGAAGCCGCTGACCACAAGCTGAAGAAGCAGGACGGGGTAGAGGAAATGACCCTGCAGCTGGTCAAGAATCCGGACCTGTTAAAGACAATGGCCCAAAAGAAAAGGCCGGACCAAGTGGTCATCGGCTTTGCGGCTGAAACTAATGACCTTCTGGCCAATGCCAGCCGGAAGCTGGCAGAGAAAGGCGCTGACTTGATCGTGGCCAATGACGTCAGCGGGGATGCCTTTGGCGGCGACGAGGACCAGGTAACGATCCTGGAACAAGGCAAGGAGCTGGACCCTTGGCCGTGGATGAGCAAGCAGGCCGTGGCTGACCGCTTGCTCGAAATGACTTTGGCTAGGCTGGCAGAAAAGAAGAATTAAAAGAAATGAAGTGAGAGGCCTTTTACCTGGTGAAAGACCTTTTATTTTTTTCTGAAGCTTTTGCTGAAATGAACCGCTTTCACTATAATAAGGGTAAGAGCTTCGCGAAAAAGATTGGAAGACGAATAATGAAGAAAATTGATGCCCACCTGCACCTGGTGCGGGACCTGGCCAGCTACAAGGGCAATGGCCGAAGCAATGCCTTGGGAAATGGCCTGGTTGTCTGGGACAGCGGCTTTAAGACCCGCCTCTTTCCCGCTGGCTGGGGTGATGACGCTTTTCGAGCAGACGCCGCCAGGAAAGTAATGGAAGACCATGATGTGGCCAAGGCCGTCCTTTTGCAGGGAAGCCTGTATGGCTTTCAAAATTATTACAGCTGGCAGGTAGCCAAGGCCGCCCCGGACCGCTTTGCCCCAGCTTTTTCCATTGATCCCTTTGCCAGTGAAGCGGAAAAAATCGTCAAGCGCCATGTTGAAGACCTGGGCTTTCGGGCTTTGAAACTGGAAGTCAGCCAGGCCGGCGGCCTTATGGACTACCATTTGCCTTTTGACTTGGCAGAAGACGACCGCTTGGGCAAAATTTTGGACTATCTCAGTTCTTACCCAGGCTTCGCGGTGGCCGTGGACTACGGCGACAGCAGCCAGGCCAGCCACCAGCCCCGGTCCTTGGCCCGGCTGGCTAAGCGTTATCCAGATTTGGACTTTGTCCTCTACCATTTGTCCTTCCCAAAGCCTGGCAAGTTGGACTTGCTGGAAAAAGAACTGGCTCTTTTTGCTCCTTTGCCGAATATCAGCTTTGACCTGGCCGCCCTGCAAGACATCGCGGGTGAGCAGACTTATCCTTACCCATTCTGCCAGGAAGCGGTGGGCCTGGCCAAGGAAATCGTGGGGGCCAAAAGGCTCTTATGGGGCATCGACGCGCCCTGGTCAGCCACTTTCAATGATTACGGCCAGCTTTATTCCTGGCTGGAAGACGCAGGGATTTTTTCAGAAGCGGAACTGGCTGATGTTTATTATGGCAACGCGGAAAGAATTTATTTCAAGGCAGACCACGTGGCGGCTTTAAAGGCCAGCCGCGATCCGCTGTTTGAGGGAGATGCTTAAGATGGAAAATGCGAAAGTTTTGGTGGCGGGCCTGGCGGTCAGGCAGCTGCCCGAATTGGAAAAAGTATGTGAAGTGACCTTTGCTCCGGCAGGTGCCGGCAAGGACTGGTACCTGGCTAACCTAGGGGATTTTGATGCCTTGATCACCGGCAAGCTGCCAGTTGACCAGGAACTTTTGGACGCGGGCAAAAAGCTCAAGATCGTTTCCGCGACCGGAGTTGGCTATGACCATATCGACGTGGACTATGCCAGCAGCCAGGGGATCATCGTCTCCAACTGCCCGGCCAGCGTCATGCAGCCGACGGCGGAAATGGCCTTTACCCTCCTTTTGGCTCTCAGCCGGAAATTGGCCCTCTACAATCAAGAGATGCGGCAAGAGAACTTTTTGGACACAGGCTTGCTCGAAAACCAGGGGCAGAGCCCGGTCGGCAAGACCCTGGGGATCTTCGGCATGGGGAGAATCGGCAAGACCCTGGCCAGCTATGCCCGGACCTTCGGGATGAACATTCTCTACCACAACCGCCACCAATTGCCGGAAGATGAAGAGCGGGCTCTGGGAGTCAGCTACGTGCCCTTGGCCGACCTGCTCAGCCAGGCCGACTATGTCAGCTTGAACGCTCCGGCCACGGCGGAAACCTACCACGTGATTGATGAAGCAGCCTTGAGCATGATGCAGCCGACGGCCTTTTTGATCAATACTTCCCGGGGCAGCCAGGTCGATGAAGCGGCGCTTTTGCGGGCCTTAAAGGGCAAGCGGATTGCCGGGGCGGGCCTGGACGTGTTTGAAGAAGAGCCGGACTTCAACAAGGAATTCTGCCAGCTGGACAATGTGATTTTGACCCCGCATGCCGGCAGCGCCACCCGGGAGTCCCGGCGCAGCGTCTTGAAAGAAGCCAGCCACAATATTGTCTCCTTCCTAGTCGACGGAGTGCCGGTCAACCGGGTCAACTAAAAGATGCTTTTGCATCTTTTTTTGTTATCATTAAGTGTTAGCTACTATAAAGCGAATTAAAGGGGGTAGAGAGCTTGCTTGATCCACAGCAGGTCTTAAAGAAGTATTTTGGCTATGACAGTTTCCGGCCGGGCCAAAGAGAAATTATTGAAAAAGTTTTCCAGGGAAAAAATGTCCTAGCAGTCATGCCGACCGGGGGCGGGAAGTCGCTTTGCTACCAGATCCCGGCCTTGATGATTCCCGGTGCGACTGTGGTGATCTCACCCTTGATCTCCTTGATGAAGGACCAGGTTGACAGCATGCGCGAGTACGGGATACCGGCCGCGGCACTTAACAGCTCCACAGCCCAGGAAGACGTCAATCCCATCTTAAGAGCCTGCTATGAAGGGAAAATCAAGCTGCTCTACGTGACGCCGGAACGGATGGAGATGGACTATTTCCGCTACCAGCTCAACTTTTTGGAGGTTAACCTGGTCGCCATCGATGAAGCCCACTGCATTTCCCAGTGGGGGCATGACTTCCGGCCGGCCTACCGGAAGCTAAAGGACGGGATCAATGCCCTTCATACCCATCCCAATGTTCTGGCCCTTACAGCTACGGCCACTAAGGCGGTCAGAGAAGACATCGGCCAGCAGCTGGACATTTCCGAGGAGAATTTCGTCATCACCAGTTTTGAAAGAAAAAATCTCCACTTCAAGCTGGTCAACGCGCCGAAAAACAGCCGGGCCTATATCGTCAACTACTTGAAGCAGCACCGGGGTGAGGCGGGCATTATTTATTCCAACACCCGGAAAAAGGTGGAGGGGCTGACCGAATTTTTGCGCCGGGAGGGCTTTAACGTTGCCGCCTACCACGCCGGGATGTCCAATGAGGAACGGGCCCAGGTCCAAGACGACTTCCAGTATGACCGGATTCCCTTGATCGTGGCTACGAATGCTTTTGGCATGGGGATCGACAAGAGCAATGTCCGCTTTGTCCTGCACGCAAACAGCGCCAAAAACCTGGAGGCCTATTACCAGGAAGCCGGCCGGGCGGGCCGTGACGGTCTGGAGAGTGAGGCCGTGATGCTTTTTCACCCCAGTGATCTTCGCCAGTTCCGCTGGTTTATCGACAATTCTGAAGCTGATGAGTCCTACCGGCAGGTCCAGTACCAAAAGCTGCAGACGATCAGCGATTATGCCAATACAGACGAGTGCCTGCAGCAATTTATCGTCCGCTACTTTGGCCAGGACTGCCCGCCCTGCGGCAAGTGCAGCAACTGCTTAAACAGCGGCGACTTCCAGGACGTGACGGCCGAAGCCCAGGCTATTATCGGCATGGTCTATGACTTAGACGGCCGCTATGGCAAAAGAATCGTTGCCCAGGCCGTGACTGGGTCCAAAGTCAAGAAGATCAGTGAGATCGGGGCTGATGAGTGTGTCCACTACGGCCTACTCAAGGGAAAAAAGCAGGCTGATGTAAGCAGCCTGGTCGACTACTTGGTTTCAAAGGGCTACCTGCAGCTGGTGGGGGACTGCTATCCCTTGGTCCATGTAACCAACCGGGGCTGGGACGTTTTGGACGGCAAGGCCAGAGTCAAAAGGCGCCAGGAAGTCAAAAGAGAGCAGCTTGCTGAAACAGGTGGTGACCAGGTCCTCTTTGAAGAGCTCAGAAAGGCCCGCCGGATCCTGGCCCAAAAGCGGGGAGTGCCGCCATTTGTCATCTTTTCCGACTTGTCTTTGCGGGATATGGCAGCCAGGAAGCCGCAAACGCCGGAAGAGCTGCTCCAGTGCAGCGGGGTCGGGGATGCCAAACTGGCCAACTATGGAAAGGCCATGCTGGCCGTAATCAAAAAATATGGATAAAAAACCTTCAGAATGAAATCTTCTGAAGGTTTTAATCGTTATTACTGCTTTATTTTTTAGAAAAGCTTGGCCTTTTCGCACAGGTCGTCAAAGCGTTCCCAGAACTTGTCGTAGTTAGCGGAAGTAACCAGGGTCATTGGCCGGCCATTTTCAGTTTCAAAGAAGCGGGCAGCCCGGTCGCCGTCAGTGTAGACATCAGACTTGGTGTCACGGGTCGTGGCGATTTCCGGGTAAAGGGCGCTCATGGTGGTCAGAACGTCCCAGAGGTAGTAAGTTGAGTCGACTTCAAAGGAGTTGACCAGGGCGTAGACATAGCCCAGGAATTCAAAGGCCGGGTACTTGCGGTTGGATGCAAAGTGCTGGCGCATCTCGTCGGTCAGAGGCAGTTCTTCGGTTGATTCCAGGCCGACCTGCTGGATCTTGATCTTGGAGTCCCAGACCGTCTTGCAGGCTTCCGGGTCCCACCAGGCATTCCATTCCTGGGTCCCGTCAGCGCATGGTGCATAAACGTTACCGTGGGCGTTCAAAGACCCGCCCATCCAGTAAAGTTCCTCGATCTTGTCTTGGATGCTTGGGTCAATTTCCAGGGCCCGGGCCAAGTCAGTAAGCGGACCGGTAAAGACCAGGGTAACCGGGCCGTCAGCAGCATGGATCTTGTCGATCATGTCCAGGTGGGCCGGCTTTGCGGCAACTGGCGTTTCAACCGTGCCTTTTTCATTCAAGATCGGGAAGTGGTCCACGGAAAAAGCTGACACTCTCCAGGCTTCCGGGAACTGGTGGACTGCCCGGGAGTCGGACTTGGCCACTTCCAGCTTGTCGCCGCGCTGGTTGAAGCGGTCGATCAGCTTCCGGGAAGCGGAAACGCCTGGTTCAACGTAGCCGTCGGCGTCGGTTACCCCTACCCCGATCAGCTTGATGTCTGGTACCAAAAGCATGAGCAAAAGTGAAGTAAAGTCATCCATGTTGCTGTCATGGTTCAAGTAGAAGTTCTTCATGAAATCTTACCTTCCTAAATCCTATAGTCTTAACAATATTATTATACGTGATGCAGGGACAAAAAAACGGCCGTTTTCCGAGAAAAAAGTTTATTTTGGACTAAAAGTAGAACAATACTAGCTATAAAAGGATTATTGTTAAAAGACCCTTATTTTGCCCTGGTTTGGTCATGGAAAATCATTAAAATATTTTTGCGATTATAGGCGGATCGGTGTTAGAATAACACTTTTCGTGATAAAATCGTACGGTAAATGAATCGCGGGGAGGCAGACATGGCGAGTCAATTGATTGAAAACAAATTGAAATTGCTGCCGGAAAAGGCCGGCTGTTATCTGATGAAGGACGTCAACGGCAAGGTCATCTATGTTGGCAAGTCCAAAAACTTGAAGAACCGGGTCCGGTCCTACTTCAAGAGCAGCCAGGAGGGCCGCCGGGCCGAGCTGGTCAAGAATATTGCCGATTATGACATCATCGTGGTGGATTCTGACAAGGAAGCCTTTTTGCTGGAAGTCACCCTAATCAAAAAGTACCAGCCTTATTACAATGTGGCTCTGAAGTCGGGGACGGGCTATCCCTATATCGAAATCACGAATGAGAAAAATCCCCAGACCCGCCTAACCTCGATCGTCTACAAGGACAAGGGCTACTATTTTGGCCCTTACCCCAACGTCTACGCGGCCAGCGCGACTTTAAAATTCATCCAGAAGGTCTTCCCTTTACGCCGCTGCAGCGGCTATACCGGCCGGCCCTGCCTTTACTACCATATGGGCCAGTGCCTGGGCAGCTGCTTTAAGGAGGTGCCGCAAAGCGAATATGACGAGCAGATCAAGAAGATCAAGCGCTTTTTGAACGGGGACATCCAGGAGGTCAAGAAAGACTTGACCAATAAGATGCTGCAAGCTTCAGCTGACCTAGAATTTGAAAGAGCCGGGGAACTCCGGGACCAGCTCAAGTATATTGAAGAAACGGTTGAAAAGCAGAAGATCATCTCTAATGATCATACCCAAAGAGACATCTTCAACTATTACGTGGACCGGTCCTGGATTTCCATCCAGGTCTTCTTTTTGCGGCAGGCCAAGCTCTTGCGGCGGGAGTCGCACATGTTCCCTTTGACTGATGAAACTGACCCAGAAGACGAATTCATGTCCTTTATTGCCCAGTTCTACGCCCAAAAGAACCGGGTCAACCCCCGGGAAGTCCTGGTGCCAAAAGGCATCGACCAGGATGAACTGGCCGCGGCCATCGGCATTAAGGTCCGGACCCCGCAAAGGGGGCAGAAGGCTTCTTTGATGGAGATGGCCCGGGAAAATGCCCAGCTGAAGCTGGATGACAAATTCCGCCTGCTGGAGCTCGGCCAGCGCAAGACTAAAGGGGCCCAGGAAGAAATTTTCAAGGCCCTGGGTCTGCCTTACGGGTCATACATTGAAAGTTTTGACCACTCCCATATTCAAGGGGCAGACCCGGTTTCGGCCCTGGTTGTCTTTAAAGACGGAGAACCCTTTAAGACCGGCTACCGGAAGTTCAAGCTGAAGGGGGAAGTTGAGCACCAAAACAGCGCCGATGAAGTCGGCAACACCCGGGAAGTCGTCCGCCGCCGCTACAGCCGGCTGTTAAAAGAGCATGAAAGAATGCCGGACCTGATCTTGATGGACGGGGGACAGATCCAGGTGGAAGCCTGTGAGGATGTCTTAAGAAACGAGCTGAACCTGGATATTCCGGTAGCGGGGATGGTTAAAGATGACAAGCACCGGACCAACCACCTCTTGTACGGTGACCCGTTTAAGGGCCAGCCTTTCAAGCTGATTCCAATGGATCCGAAGTCAGAAGGCTTTTACTTAATGACCCGGATTCAAGATGAGGTCCACCGCTTTGCCATCACCTTCCACCGGCAGACCCATGCGAAAAACTCCCTGGTCAGCCGGCTGGACTCGATCAAAGGTATCGGGCCGAAGAGCCGGACCAAGCTTTTGCGGGAATTTGGCTCTTTAAAGAAGATCAAGGAAGCTTCTATTGATGATCTGCGCAAGGCGGGACTGACTTTAACCCAGGCGCAGGCAGTCAAAATTTCCCTTTAGCTATTGGGCAAAATAGCTTATGATTAAATGGTAACAATTAACGAAAGAAAGAAAAGGTAAAAACAAGAATGCCAACTCCTTCAACATTTGTTGATCAAACTAAAATTGAAGTCCAAGCCGGAAAAGGCGGGGACGGCATGGTGGCCTTCCGCCATGAAAAATTCATGCCTAACGGTGGACCAGCTGGCGGTGACGGCGGCCGGGGCGGGTCCATTATCTTCGTGGCCGATAACGGCCTCAGAACCTTGATGGATTTCCGCTACCGGCGCAAGTTCAAGGCTGAGCCGGGCGAAAACGGCCGCATCAAGGCCCAATACGGCAAGGCAGCCAAAGACCTGTACCTGAAGGTGCCGGTTGGCACGACCGTTTATGACTTTTTCACCGGTGAAGAAATCGGTGACTTGGTTGAAAACGGCCAGGAACTGGTCGTCGCTAAAGGCGGCCGGGGCGGCCGGGGCAACATCCACTTTGCCACCAGCGTCAACACGGCGCCGGAAATCGCTGAAAACGGGGAACCGGGTGAATTCCGGACCCTGCGTTTGGAATTAAAGGTCCTGGCTGACGTCGGTTTAGTCGGCTTCCCGTCTGTCGGCAAGTCAACCCTTTTGTCAGTCGTCACCAGTGCCAAGCCAAAGATCGCGGCTTATCAGTTTACGACTTTGAAGCCAAACCTAGGCATGGTCCTTTTGCCAGACGGCCGGGACTTCTCCATGGCCGACCTGCCGGGCCTGATCAAGGGGGCCAGCCAGGGGGTAGGGCTGGGGATCCAGTTCCTGCGCCACGTGGAGAGAACCAAGGTTATCCTGCATATGGTGTCCATGGACCCGAACAACGGCCGGGATGCCTACGAGGACTATGAGACCATCTTGCACGAACTGGCCTCATACACGGAAGATGACCTTTCCAGCAAGCGGGAAATCATCGTGGCCAGCCAGATGGATATTCCAGGCGCCGATGAGAAACTGGCCCAGTTTAAGAAGGACCTGGCCGCGCATGGGGTTGACCAGGAAGTTTACGAACTCTCCAGCGTTACCCACCAGGGCGTTGACCGCTTGATGAGCCGGGCGGCTGACCTGGTCAGCGAGGTTGAAGCCCAAGAGGCTGAAGCTGCCGTTAAGCCCAAGGAAGAGGTCAAGACTAAGACCTACAAGTACCACCGGCCAGAAAAGATGGAATTCACGGTTGAAAAGCTGGCTGACCACGAATTTGAAATTCACGGTGAGCAGCTTGAACGCCTGGTAGCCATGACCAACCTGGACCACCAGGACGGGATCATGCGCCTGGCCCGCCGCTTGAAGAGGATGGGTGTCGATGATGAACTGCGGGCGCAAGGCGCTGTCGATGGAGACGACGTTTACATTGGCGACTTCAGCTTTGAATTCGTACAATAAGGGATAGATTGCAAAAATAGAATAGAGAAACGAAAGTTAGAGAATTGAAAAATGAAGAAACGATACATTACTGGCTATGCTGGCTTGCGGGCCCTGGCCGTAATCGGGGTAATTTTGTATCACCTGGATCCCGACCACTTTGGCGGAGGTTACCTGGGCGTGCCGGTCTTTCTGGTTTTGACCGGTTATCTGGTAACCGACCAGATTATGGCTGCCTACCGCAATCAGGGCTATTTTGACATCAAGTCCTTTTACCAGCGCCGCTTCAAGCGTCTTTATCCCCCGCTGATCGCCATGCTCTGGCTGACCAGCGCATATATCGTTCTCTTTCAGCGCAATCTTTTAAACAAGCTTTACCAGATTGTCGCCAGCAACTTGCTGGGGGTATATAACTGGTGGCAGATATTCAACGGGCAGAGTTACTTTGAGCGTTTTGACAATAATGAATCGCCTTTTACCCACTTGTGGACGATGGCGATTGACTGGCAGTTCTACCTGCTCTGGCCGCTGGTGATGGTCCTCTTGGTCAAATTTGCCAAAAAGCGGCGGAATATCTTCTGGGTCCTGGTTGGCCTGTCGGTCTTGTCCGCTCTGGAAATGGCCCTGCTTTTCCGGCCGGGCCAGGATACCAGCCGGATTTACTACGGGACTGACACCCGCTTCTTCTCTTTGGGCCTGGGCAGCGCCATGGCAGTTCGCTGGCCTTTTGAAGAGCTGGACAACCGCTTTACACAAAAAGACGGGGTGATTTTCAACTGGACGGGGCTGGCGACCCTGTTTGGGATGCTTTTGATCATATTCTCGCCTTTGATGAACGCTCAGACCGCTTTCCCATATTATGGTGGGATGTTCATCTTCAGCTTCTTCGTGACGGTTTTCGCGGCGGTAATCGCGGCTCCGGTCGGAATCTGGAACCGGCTGATGACCAACCCGGTCTTTAACTGGCTGGGGTCAAGAAGTTATGAAATCTACCTCTACCAGTTCCCGGTCATGATCTTTTTCGAAAGCCGGGTCAGCGACCTGGCCGACCATGTGACTCTTTACCGGGTGACCGAGATTGTCTTGATCCTCTTGATCAGTGAAATTACTTACCGTCTTTTTGAAAAAAGACGCTACACCAGCGAAGGCATCCGCTACAGCTTGACCAAGCTTTTTCACTGGCCAGTCAAGTTGTCCAAAAACTGGCTGAAGACGGCGGCCTTCTTCCTGGTCTTTTTGATCGGCAGCAGCGGGATCATCTTCTCCCCGCTGGCCAAGGCTGACAACAAGGATGGGGCTTTGATCAAGACGATCAATGACAACTCCAAGCAGCAGGCTGAGATGAACAAGAAGGCCCTGGAATCGATCAAGAGCTCGCGAAAAGCGGCTAAGAAGTCATCCAGCAAGAAGAGCAAGCAGACTTCCAAGGCCAAGACCAAGTCAAAAACGACTAAGTCTAAGAGCGGCGGAAAAAAGGTCAACCAGGAATTTGAGAAGTACGGGATCAGCCAGGCTGACTTGCAAGCCGCGCAAAAGCTGCAGGTGACGGCCATTGGCGACTCGGTCATGGCTTCTTCAAGTGACATCTTGCACCAGCTTTTGCCGCACGCCGTGATCGACGCCACGGTTTCCCGGCAGGCCGACGTGGCCCCCCCAGCTGCTGCAGTCTTATGCCCAAAAAGGTGAGCTGCAGGACAATGTCTTGATTGGCCTGGGGACCAACGGGCCTTTTACTGATGACGAAGTCAAGCAAATCATGCAGATTGTCGGGCCGAAGCGCCAGCTCTTTTGGATCAACGTCGTCGTGCCAACCCGGTCCTGGCAAAACCAGGTCAACCAGCAGCTGCAGGCCTTGACCAAGAAGTACAAGAACTTGACCGTCATTGACTGGTACGGCTACGCCCACAGCCAGTCCAGCTGGTTTTACGACGACAAGGCCCACCCGAATAATGTGGGGCAAAACTACTACAGCACTTATATCGTCAAAGAAATGGTCCGCACCAGCGGATCGAATTAGCCTTTTTATATTTGCTTGGAAAAGAATGGGAGTTAAATGGAACTGGAATTTCTTGGCACCTGCTCGGGCCAGCCGTCAAAGCTGCGGAACGTCTCGAGCCTGGCTTTAAAACTATTGGATGAGCTGAACGAGATTTGGCTCTTTGACTGCGGGGAAGCAACCCAGCACCAGATTCTGCGCACCAATATCCGCCTGCGCAAAATCACGAAGATTTTTATCTCGCACAATCACGGCGACCACATTTTCGGTCTGCCGGGCCTCTTGTCAACCCGGTCCTTTCAAGGCGACGTCGGCCCCTTGACCATTTACGGGCCAGCAGGGATTGAACAGTTCGTCAAGACCTCTCTCAGGATTTCAAAAACGAAGATTTCTTATCCAATCAAATTCGTCACCCTGGAAGAAGGCGGCAAGATCGTCAGTGAGCGGGGCTTTGAGGTTTATACTGAAAAGCTGGACCACCGGATCGACAGCTGGGGCTTCCGGATGGTTGAAGCTGACAAGGCCGGTGAGCTTTTGATGGACAAATTGGCGGAATTTAAAGTGCCAAACGGCCCGCTCCTTGGTAAACTAAAGAGGGGTGAGCAGGTTGAACTGGCTGACGGCACGGTGTTGAACGGCAAGGATTTCTTAGGCCCGGCCAAGAAGGGGCGGGTAGTGACCGTGATTTACGACACCCGGTCAACGCCGTCAATCCGCCGCCTGGCTGACCATGCTGATGTCTTGGTCCATGAAGCGACCTTTGACGCCAGCGAAGGTAAGCTGGCCAGGGACTATTACCACTCAACGTGCACACAAGCCGCTGAGACGGCTAGCGCCTGCCATGTCGGGCATTTATACCTGACTCATGTTTCGGCCCGCTACGTGGGCTCTCTGGCCAGCCAGATGGTCAAACAGGCGCGGGAGATCTTCCCGGCCACGACCTTGGCCAAGGACCTGGACAAGTTCGTAGTTCCAATGAAAGGTTAACGTGATAAAGATGAGTGATTCATTACGCAATAAAGTTGTAGTTATTACCGGGGCCAGCAGCGGGATCGGCCGGTCAATTGCCTTGGAAAGCGCCAGCCGGGGCGCCACGGTTGTTTTGCTGGCCCGCCGCCTGGACAAGCTGGAGGAAATCGCTGCTGAAGCCCGGGAATTGTCTGCTTCAGCAGCTTTCGCCGTCAAGGCTGACCTGAGCCTGGCCAGCGACATCGAAGCGGCTTTTGCCGAAGTTAAGGAAAAGGTCAAGCGCATCGACTACCTGGTCAACGCGGCTGGTTTCGGCAAGTTTGAGGAATTCATGGAGGCTGACATGCAAGACGCCACGGAAATGTTCCAAGTTGACGTCCTGGGCTTGATGTACATGACCCGGCTTTTTGGCCGCTTGATGCTGGACCAGGGCAGCGGGCAGATCATCAACTTTGGCTCCATGGCCGGCAAGGTGCCGACGACCAAGTCAGCGGCTTACAGCGCCGCCAAGGCAGCCGTAATCCAGTTCTCCAACGTTCTGCGCCTTGAACTCAAGCCTTTTGGCGTCAAGGTCATGACCGTCAACCCGGGTCCGGTTTACACCAACTTCTTCAACATTGCCGACGCAAGCGGCCAGTACGTCAAGAATGTCCAGGCCTTCATGCTTGACCCGGACGACGTTGCCTGGGAAGTAGTCCACTACTTCGGTTCAAACAAGCGTGAGCTCAACCTACCGGTCAGCCTGGCGGCTTTGGCCAAATTGTACAACTTGTTCCCGGGGATCGGGGACAAATTGTCGCTTGAATTTGCCTCCCGCAAATAAATAAAGTAAGGTTTTTCTTGATTTATTTGCCAGGCAATAGTATTATTTAATTACTTGAGTATTTAGGTCACCGACTTGATACTGTGATATTACAATAAAGGAGATCAGTTATAAATGGCAGTTCCTGCAAGACATACTTCTAAGCAAAAGAAACGTTCACGTCGCGCTCACTTGAAGCTCAGCGTGCCAGCAATGCACTACGACGCAACTACTGGTGAATACCGTTTGAGCCACCGTGTTTCCCCTAAGGGTTACTACAAGGGTCGTCAAGTAGTCAGCGAAAACAGCGCTAGCGATAACGACTAGTTTAAAAGGCACCTGTTTTTCTGGTGTCTTTTTTTTATGCCAAAAATTAGGATTGAGGAATTCGAAGAATGAAACTGGTTTTTTTACATTCAAGCGACACCCACGGCTACTTGCTGCCAACTGACTACCAGAGCACGGGCGACTACGACGCTCCTTACGGCCTTAGCCGGGTAGCCAGCGCTATCAAGGTGGAGAAGGCCAAGTGGGGGGCAGACCACGTCATCGTGACTGATGCCGGCGACTGCCTGCAGGGGTCTCCTTTGGCTGCTTACACCCATGGCAGCAAGAATCTGGACAACCTGGCCCGCTTTACTGCTGCTTACAACGCGGTCGGCTACGACGTCCGCTGCTTGGGCAACCATGACTTTAACTTTGGCCAGGAATACATGGCCTACTATGTGGACAACAACAAGGCTCCATTCGTTAACTGCAATATTTTGGATGCCGAAACCCAGGTGCCGACTCTGGGCCGGGACTACGTGATCCTGGAAAGAAGTGGGGTCAAGGTTGGCGTTTTGGGGATTACCACCCAGTACATCCCTCACTGGGAAGCAGCTGACCGGATCAAGGGCCTGGCCTTTAAGTCTGCTTACGAACAGATCGCTCATTTTGCCAAGATCATCAAGCCGCAAGTCGATGTCCTGGCCGTCCTTTACCACGGCGGCTTTGAAAGTGACATCGCCAGCGGGGAAGCAACTGAACCGCACAACGGGGAAAACGAAGGCTACCGGATTCTGACTGAGATTTCGGAAGTCGACGTCATGCTGACGGGCCACCAGCACCGGAGACTGAACATGATCAGCCCGTCCGGTAAGCCTTGCGTGCAGCCGGGCTACCGGGGCGAGGCGATTGCGGAAGTCGTTTTGGACCTGGAAAAGACGGAAGCAGGCTACAAGGTCAAAGAAGCAACCAGCGAATTGATCGACACCAAGGACTTTGCATCAGACCCGGAAGTTGAAGAAATCGTTAAGCCGCTTGATCTAGCCACCCAGAAATGGCTTGACCAACCAATTGCCCACCTGGACCAGCCAGCCCAGATTGAAGATGCCAACAAGGGCCGGATTGAAGGGGCACCTTTCATCAACCTACTCCAGCAGATGCAGCTCTACTTCACCCACGCTGACCTTTCAGCTACGGCCGTGATGAATGACGTGGCCAAGGGTTTTGGCAAGACGGTAACCATGCGGGACATTCTTTTGAACTACCCATATGCCAACCAATTGGTCAGCATCAAATTGACCGGTAAGCAGCTCCGCCACATTGTAGAGCACACGGCCAGCTTTTTGGAAAAAGACGAAAACGGCAAGATCCACTTTATCGACCGCTACCTAAAGCCAAAGCCGGAACTTTACCACTTTGACGTCTTTTACCCACTGGAATACGAGGCTGACCTCTCCAAGCCGGTCGGCCAGCGTTTGACCAAGCTGAAGCTCAAGGGCCAGGACATTCAAGATGACCAGGTCTACCACCTGGCCGTCAACAACTACCGGGCCAACGGGGGCGGTTTCTACCCGGAATACAGCTTGGACAAGATCGAATTCTCCTTGGACAAGGACTATGTCCAGATGTTCAGCGAATACCTGACTCAAGGAGAGGTCAAGGTCGACACGAAGAAGTATTACCGCTTCTATTAGTAACGAATAACGAAGAAAAAGGCCGCCAGGCCTTTTTTTCATGCCCTTGTGGCATAATAAAAGCAGCGATTTAAGGAGGTGGAGTATGCCAGGAGAAAATGTGCGCGTGCAAGGGAAAGTGGTTAAGAGCCATTTAACTTCCTTCGTTTCAGCCGAAGAATTGCGGCAGGTGCAGGCAGCGGAAGAATTAGCCGGCCTGCCTGTCCACCAAAAGCCCTATGCTTTCGTGACCTTGAAAGACTGGGAGCTGGTTGCCGGCCATTTAGAAAAGAATTTGCCGGGAGCAATTGTTTCTTTTGAGGCGGCCGAAGGGGTCCTGCCCTGGCTGGCCAAAGAAGAAGGCGGCAGGCTCAAGCAGATTTTTGGCCAGGAAGTCCCGGCCGGGAAAGTGGTGACCTTGACTCTCAGCCAAGCCGGGAGAAATGGCAATTGGCAATTGCAGCTGGATGGGGTGATCATGGCTGCCCAAAAGCCAAATGACGCAAAAGCAAATAAAGCAGCAGAAGTAAAGGGAGTTAAAGAAGCTAAGAAAGCTAAAAAAGCAAAAGAAGTAAAAGAAAAGACTGAGTCTTTTGCCGGGAAAATGGTTGATGCTCAGGTTAAATTGGGCGGGCAGACTTTGCCCCTGCATGACTATCAGCTCTACAGCATGAACTTTATTATGGACCACCCTTACTGCGGGATTTTCCTGGATATCGGCTTGGGCAAGACCTTGACGACTCTGGCTGCCCTGGCTAAATTGCGGGAAGAGGGGATGAAGGGGCATATTTTGGTGATCGCCCCAAAGACCGTGGCTAAGTCGACCTGGCAAGATGAGATTGATAAGTGGAACTTGCCCTTTAAGACCCAGTCCTTTTTGACCGATGAAAAAGGCCGCCAGCTGACTCCAGCCGGCCGGCAAGAGCTCTATGAAGCTGCCGCGGCCAAGGCCGCCAAGGGTGACTGGCAGCTGTATTTTGCCAGCCGGGACCTGGTCAGCAAGCTGGTTGACCTGGGTCCCTGGCTTTTTAAAAACGTGGTAATCGATGAGTCCCAGTCCTTCAAGTCACCGGCTTCCCAGCGCTTCAAGGCCTTAAAGAGCGTGCGGGGGAGGATCCAGCGCTTGATTGAACTGACCGGGACCCCGGCGCCTAATTCCTTCCAGGACCTATGGTCACAAATCTACCTCTTGGACCAGGGAGAGCGGCTGGGCAGGAGCATCACGGCCTACCGGCAGCAGTACTTTGAGCCGACCTTGCTGGTCAACAACCACCCGGTCAAGTGGCGGCTTTTGCCAGGAAGTGAGGAAAAAATCTACCAGGCCATCGACGATATCGTCATCTCCATGAAAAATACCCGGCTGAAATTGCCGGAACTGACAGAGAGCCTGGACTGGGTGGAAATGCCTCCAAGGGCCAAAAAGAGCTACCAGCAGCTGAAAAAAGACCAGGTCCTGGACTTACCCGGCCAGGAGATTAGCGCCGAAAACGCGGCTGTTTTAGCCGGCCGCTTGCGGCAACTAGCCAGCGGTGCCATCTATGAAGAAGACGGGGAGCATTACCAGGAGATTTTTGCTGAAAAAATAGAAAGTTGCTTCTACTTAACCAGTAATACGGCTACGCCCAGCCTGGTCGCTTATTATTTCAAGTCAGACGCCTCCCGCCTTTTAGCCTTTTACCGGAAAAACGGGGTTAAGGCTGAGCTTTTTGACAGCTCACCTGGCATGATCCGCCGCTGGAACAAGGGCAAGATCCCGGTCATGCTGGTTCAGCCGGCCAGCGCCGGGGCGGGCCTTAACCTGCAAGAAGGGGGCCACACTCTGATCTGGTTTACCCTGCCCTGGAGCCTGGAGCAGTACCAGCAGATGAATGGCCGCCTTTACCGGCAGGGACAGAAAAAGCCGGTCATCATTCACCATCTTTTGACGAAGGGAACGATTGACCGGCATGTATTAGACAGTTTGAAAAAGAAAGACCTCTCCCAGCAGGCCTTGCTGGCGGCGGTCAGGCGGACGCTTGCCTAGTCGTCCGGGCTGTATTTCTTGAAAAAGAAGGTCTTGAGCCAGGAGCGGTCGTTTTTCAGCCGCCAGTAGCTCCAGCAGCTGAAGAGGAGGCTGCCGGCCAGGCCGGCGATCAAGTCACCCATGGTGTCCAGTAAGGCCGCCCGGCCGGCAAGAGCCCGGCCCGCTGACAGGTAGCGCTGCAGGTTCATGGCGAAAAGACTGTCACAGGTAAACTTCATAGCATCCCAGAGGACCCCGCAGAAGATGGCAAAGGGCCACCCCGTACAGCTCTTCCTTAAACTTGAAGCAGCCTAGGATGGCCCAGGCCAGGCCGAAGAGCAGGGCCTGTAGTAGAAGTGGTAGGCATCTCCCAGGTAAATGGCGCAATAGATAAAGGCCAGGAAGAAAAAGTATAAAAAAGCCGGCAGGTAAAAGCGAAGCTACTTGCTCAAAAGGGCCGGCAAAAGGACTAAGAGCAGGCCAGCCCCGGTCTCAAGGACCAGGAGCAGGCTACCGGACTTGCCTTGCGCTAATTGCCGGGCAGCAGTGAGCAGGGAAATAGCCATTGAAAGAACGACAAAGACAAAAGAAAATTTGAGGGCCAGACTTTGTTTGTGCATGGTAATGAACACCTCACTAATTATGAACAGAAATTTTTATTATTTTTTCTACATTTTAACAGATTTGCTTATGCTCGCAGCAGAATCTGCTGACTGAGTTACAATAAAGGCAGCAAGCAAAGCAAGAAATAAGATTGGAGGAAAAAGATGGATTTAGCAGAAATTCAAAAGCAGGCCAAGCAGGCCGTCAGTGAAATTGTCGAGGCATCCGGGATCAAGGCCGGTCAGTTTTTCGTGGTTGGCTGCTCTTCAAGCGAGGTCTTAGGTGAGGCGATAGGCACCAATACCAGCACTGATGTTGCTGAAGCCCTTTACCAGGGGATCAATGAAGTTTTGGCGGAAAAGCGGATCTTCCTGGCCGCCCAGTGCTGCGAGCACTTGAACCGGGCCCTGGTGGTCAGCCGGGAAGCGATGGAAAAGTATGACTTAGAGCAGGTCAACGCGATTCCCCAGCCAAACCATGCCGGCGGGGCTTTCGCGACCGTAGCCTACCAGAAAATGCCAAATGCGGTACTTGTAGAAGACATTGCTGCCCGGGGGGAAGCCGGGATTGACATTGGCGGTACCTTGATTGGGATGCACCTGCATCCGGTGGTCGTTCCCCTGAGAATTTCCCTGGACAAGATCGGGGAGGCCAGAATCATCTGTGCCCGCCGCCGGCCAAAGTATGTCGGCGGCCAGCGGGCCATCTACGATCAGGCTTTGATGTAAGAAAATATTTAATTTTTTCTAAAAATAATAGACGCCATACTATTAATACATAGGCTTAGGAGTTTTCGGTTAGCAAGATTACGGTCAAGAGCGCTTTGGACTTGCTGGAGCAGGAAGGCTTTGTCTATAAGGAGTCAGGCCTGGGAACCAAGGTCTTGTCCAACTTGACCCTTTTGGGCCAACATGACTCCCCCGTCAATTCTTTTGCCGGCCTGTCGGCTGAAAACGGCAGTGACCGAGTGAGCAGCAAGATTATCAAGCTTGAAGTAGCCTTTCCGTCAGCTGACTTGTGCGAGAAAATGACCCGGTTTATGAGATCATCCGCTTGCGCCTTTTGAACGACGAGCCCCTGGTGATTGAGCATACCTATATGCCGGTCAGCCAGGTGCCGGCCCTGTCCAAAAGGATCTTGGAAGGGTCGATCTACTCTTACCTGCACAAGAAGCTGCATATCAAGTTTGGCGGGGTCTTCCGCCGGATCAAGGCTGATCTGCCAGATAAATATGACCGGCAGTACCTTGGGGCCAACGAAAGCACGCCGATTCTGGAAATCGAGCAGATCGTTTGGACCAATTCCGGGGTCAACCTCGAATATTCTCGGTCAAGAAACCTCTAGAACAACCGGTCTTATATCATGGTCGAAACCAGCCATTAAACTTACGAAAAAATACCCACTGAAGGAAAGCAAATCTTCAGTGGGTATTTCTTTGTTATCATATTTATTAGCTCTTTAACCCAATTCCTGGTTCCGCTTAAGAGCCGCGTTAACTGCGCTGATGGCCGCGTAGCGGAAACCATTCTTCTCCAGTTCAACGACGCCGGACTTGGTCGCCATGTCAGTGGCTTTGATCTTGGTGGCCATGCCGCCGGCCATTGCAAAAATTTGCGGGGTAATCTCGTTGATGACCGGGATCGGCCGGGCATCAGGGTTCTTTCTGGGGTTGTCGCTGTACAGGCCAGGCACATCTGTCAAAAGGACCAGGAGGTCAGCCTTTAAAAGGGAGGCTACCTGGGCTGACAGGGTGTCGTTGTCACCGACTTTCAGTTCATCGATGGCGATGGTGTCATTTTCGTTGATGATGGGGATGACCCGCCGGCTCAAAAGAACGTTCAAGGCGTCTGGGCATTTTGGTAGCGGCGCTGGTCAGCGAAGTCGTCCTGGGTCAGGAGGATTTGGGCGGAAACCATGCCCTGGACCAAAAGGCTGCGGGTGTATTCCTCGATCAAGAGCCCCTGGCCGACAGCGGCCGCAGCCTGCTTGTCGGCCACCTTCCTGGGGCGTTTGTCAAAGCCGAGCCGGCGGAAGCCAGCCGCGATGGATCCTGAAGTTACCAGGACCAGCTTGTAGCCGGCCTAGTGCAGCTGGGCCAGCTGCCGGGTAATTTTTTGATCTTCTCCGGATCCAGGTCGCCGGCCGGGCTGGTCAGCGAGGAGGTTCCTACTTTAAAAACGATTAGGTTATCTTTCATTAGTCAACTTCCTTAATAAAATTAGACTAGGTAAATCATAGCATCTTTTGCCCGTGGATAGAAAAAATCACAACAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGTGAATCTCGTCTAAGTATGTTGACTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGCACCCGCAACGGCTGGCCTACGTTCAAAACAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAACCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAACACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTATCTGGTATTGGTAAAAAGCGCGCTAATGACATAACGCAAAGCCTTATTCGTTTGGCTAAAGTCGCATGCCCAGCGGTCAAAAAGAACAGTGCTCATATTCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAAACCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCCTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAAGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAAGGGCTAGCCGGTTAGGCTAGCCACTGTGGTCTTCTGTTTTATTTGTTGTACGCGGAGTCGTCATTGTATGACTTGGCCGTGATCTTTGGAATAGTCAAAGAGAACAGTAGGCCAAATACGGCACCGATGATCAACAAGGTAACAGGGTTATACGTGCTCTGGGTCAGAGGGGCTCCGATGAAGCCGATGATGAAAGTAAAAATCATCCCCCAGACGATGCAAACAATGTAACGTCCCATAGTATCTTCCTTCTTTCGCTATGCATTTTACCAGAATCGGCAATCAAATTCAATTGGAGGAAAAAGGACTTTGCTATAATTAAAATAACTAGCAAAAAGCGAAAGGCAGGGCGAGCAAGGTGAACATAGCAGCATTGCAGACGATTTCGGCCAATACCATTCTGGCCAGCCCAATGAAAACGGCTGACCTGGTCCAGGGGGCAAAAGAGCGGGGTTATAGCGCCGTGGCACTGACGGACATCAATGTAACTTTTGGCCTGGCCGACTTTTACCAGGAAGCCGTAAAAGCAGGGATCAAGCCCCTTTTGGGCCTGCAGGGCCGCTTTAAGGGAATCGAATTGGAAGAAGCAGAATATGACCTGGTCTTTTTGGCTCAAAGTCAAAAAGGCTACAAGTCCTTGATGCGCCTGTCCAGCTTTTTAAATATCGCTTCTGGCGACCTTGCCGGCCCGGCGCCTAGCCTGGCTGACCTGCCCGAATTGTCTGACTTGACCGTGATCGTGCCGGCCGGGCTGACCAGCGAACTGCGCCAGCTTAATAAACTGAGGAACAGTGGTGAGGAATATGTTAAAAAGCTCCAGGCCTTTTTGCCAAAAGGCCTGCCCTTATACTTAGGCGTTTACCCGGCTGAATCCGCGGCCGCTTATGATGCCTATGTCAAAAAGCTGGCAGAAATTTCAGCCTTGCCCATCACGGTTGTTGAGGACGTCCGCTACTTAGACCCGGGTGACCAGTTTCTTTGCAAGGTCCTGCAGGCCATTAAGGAAAGACGGGTCCTGGATGAGCATGAACTGACCTTGATGGCGCAGGGGCAGGGGTCACATTGGCTGCGGCCCGCGCCTGTCCTGGAAGATGCCTGCCGGGAAATGGGCTTAGAAGAAGCTTTGGCCAACAGCGGCAAGATCGCGGCCAGCTGCCAGGCTAAGATTCCTTTTAAGGAGCCCCAGCTGCCGGTCTTTCCGCAAGCAACAGGACTTTCTTCCGACCAATATTTGGAAAAGCTGGCTTTTGCCGGCATGGAAAAATTAGGCCTTAGGCAGGGAATTTACCACGCCCGCTTGCAAAAGGAACTGGCCGTCATCCAGCAGATGGGCTTTGCTGACTACTTTTTGATCGTCGGCGACATCGTCAATTACTGCCGGCAAAAAGGCGCCCTGGTCGGCCCGGGCCGGGGGTCAGCTGCCGGGTCCTTGGTAGCCTATGCTTTAGGCATTACCCAAATTGACCCCTTAAAATACGACCTGCTCTTTGAGCGCTTCTTAAACCCCGCCCGGGCCGACATGCCCGACATCGACTTGGACTTTACCACGAGCGGACGAAAGCTGGCTTTTGCTTACGTGCAGGAAAAATACGGTGTTAAAGCCCGCTTTGGCGAGGGCTCTGACCTGGTGGCTCGGATTTTGGCCTTGACGACCATGAAGGCCAAAAGCGTCCTTGAGCGGACCGGCCAGGTCTTTGGCTTAACCCTGCCGGCTATCGCCCGCCTCAAGCAGGCCATGGGGGCAGCCAAAACTTTGGCCGAAGCTGGCCAGCAGGCTGAATTTAAGGCCCTGGTCGCTGCCAGTCCCTTGACCCGCCTTCTTTATCAAACCGCCGCAAGGCTGGAAGGGCTGCCGGAAGACACGGGCACCCACGCTCCCGGCCTGGTCATCAGTGAAGAGCCCCTATCCAGGCAGATCGGCTTGATGACTGGGAAAGAAGCCCCTCTGTGGACGGTTGAGCAGACCAAAAAGTACGTTGAAAAGTATGGTCTCTTAAAGATCGACTTTCTGACCCTGGACAATTTGGAACTTTTGGAAGGCGTTTTAGCAGAGATTCAAAAGTCCAGCGGCCCCCTGGATTTGACCCGGCTGCCCCTGGATGATCCGGATACCTTGCGCCTTTTTGCCCGCGGGGAGACCCAGCAGATCTTCCAGTTTAATTCTAGCGGGATGCAGGAGGTCTTAAGAAAAATCCAGCCCCGGACTTTTGACGACTTGTCTGTCGCCGTGGCCCTTTACCGGCCGGGCCCGATCGCCAGCATCCCCTTGTACGTCGCCCGGAAAAACGGGACCAGCCCGGTTCAGTATCCTGACCCCAGCTTAAAAGAAGTCCTGGGACCGACCTATGGTATTTTCGTCTACCAGGAGCAGGTCATGCAGACGGCCCGGATTTTCGCGGGCTTCAGCCTGGCGGAGGCTGACATCTTCCGGAACGCGATTTCCAAAAAGCAGGCTGGCCTCTTAGCCGAAGAAAAGGACAAGTTTGTCGCTGGCGCTGTCAGAAAGGGACACAGCCGGCAAGCCGCCGAGGCAGTCTACGCCTTAATCGAGCCTTTCGCCAACTACGGCTTCAACCACTCCCACGCCGTCGCCTATGCCCTTTTGGCCTACTGGCAGGCCTTCTTGTCTGTCCATTTCCCTAGGGAGTTCTACTTGGAAAAGCTCCGGGCCAGCCGGGGCAAGGAAAAAGGGGCCATTATCCGCCAGGCCAGAAAGGCCGGCGTTGAGATCCTGGGGCCCGACATCAACTTGAGCCGGGCAGAGGCCCGTTTGTTTGAAGGCCGGATCTACCTGGGCTTAAAGGACATTATGGGGATTACGCCGGCCTTTTTGGACCAGCTTCTGGCCCTAAAACGGCCAGTAACCAGCTTCACGGCTTTTTTGCGGCAGCTGGATACCAAGGAATTGAAAGAAAAGCAGCTGGTCCCCTTGATCGAAGCCGGCCTCTTTGACCAGGTCAGTCCCAACCGGGCCAGTCTTTTGGTCAACTGCGGCAACATGCTCAATACTGCCCGCTTGTCGCAAAAAAGCCTGGTCTTGCAGGACTTTTTGGCCGCCAAGGAAGAAAACGTGCCAATGCCGACGGCAGCAGAAAAGGTGGCTATGGAAGAAAGAGCCATGGGCTTTGCCGTAACGGCATCTCCCCTGGAAATTGCCGGCAAGGCCCTGGCCAAGCGTTATGGGGCCAAGCCTTTTGCTGGTCTTGCCTTAAACGAGACCGGGCAGGTGCTTGCCCAGTTCATTAAGAAAAACGACTGGCGGGTCAAGCGGGGAGCCCGGGCCGGTGAGTTAGGCAGCAACGCCGTCTTTAGCGATGGACAGACCAGCGAGAAGGTGACCATTTTTACCAGCCAGTACCGCCGCTTTGCCCAAATTCTGAAAGAAAACGCCGTCTACCTCCTGCAAGTTGACAAAAAAGAAGACCAAAAGGACAGCCGGGGCTACCAGCTGATCTTGCAGGATTTGCGCCTTTTGGACTTAAAGCAGCTCGAGCAGGCTGAAGAAGTCAAGCCGGTTACCGTCAAGCCTAAGGACCTGGCTCTTGAGCGTTATTTTGACCAGTACTACCGGACCAAGCGCTTAGGCGACTTCCAGGTTAAAGAAAGGGGCCAGGCCCTGGCCAAGCTTTTGGCTGTCCGCTACCAGGAAGACAAGCGGGGACGGAAGATGGCGACCTTGATTCTGGCTGATTCTTCCGGCCGTTACAGGTGCTGGCTTTTTGCCGGGGAACTGGCCAAATTAACTTTGAATTTACAGGTAAATGACTACTACCTGCTCAAGCTGGAAGCTTTAGGCCAAAGAAAGAGCCTGGACTTCAAAATTTGGGACATGAAGCAGGTAAATTTGCGCTGAAAACGACTTGACCAATTTGCTTTTTTGAAAAAAATCTCTCCTAGTGAAATAAATAATAAACGCCAGGCTGGGATTTGTAAGCCCTAACAGGTTGAAAGTCTAAAAAATCGAATTTAAACCAAATTTTACAAGACTTTATGCGGGAAAAATGTTATGATTTACATGATGTGAGATATTACACAATTTAAATCATGATGAGGTGAATTCATGAAACGGATTGGTATTTTGACTAGCGGCGGTGACGCCCCTGGTATGAATGCAGCCGTAAGAGCCGTAACCAGAGTCGCGATCGCGAACGGTTTGGAAGTTTTCGGTATCAGATACGGTTTTGCAGGTTTGGTTGCGGGCGACATTTTCCCATTGGAAAGTGAAGACGTAGCCCACTTGATCAATGTTTCCGGTACCTTCCTCTACTCTGCGCGTTATCCTGAATTTGCAGAAGAAGAAGGACAGCTGGCTGGTATTGAGCAATTGAAGAAGCACGGCATCGATGCTGTTGTCGTTATTGGTGGGGATGGTTCCTACCATGGCGCCCTGCAGCTGACCCGCCACGGCTTCAACTCAATTGGCCTGCCAGGCACGATCGACAACGATATCCCTTACACGGATGCCACGATCGGCTATGACACGGCCTGCATGACGGCAATGGACGCGATCGACAAGATCCGTGACACTGCTTCTAGCCACCACCGCGTCTTCATTGTCAACGTAATGGGCCGCAACTGTGGTGACATCGCTATGCGCGTCGGCGTAGCCTGCGGGGCGGACGCGATCGTCATTCCTGAAAGACCATATGATGTCGAAGAAATCGCCAACCGGCTCAAGCAAGCCCAGGAAAGCGGCAAGGACCACGGTTTGGTAGTTGTTGCTGAAGGCGTAATGACCGCTGACCAATTCATGGCTGAACTGAAGAAGTATGGTGACTTCGACGTCCGGGCCAATGTTTTGGGTCACATGCAGCGGGGCGGCACGCCAACTGTTTCTGACCGGGTGCTGGCTTCCAAGCTGGGCAGCGAAGCCGTTCACCTTCTTTTGGAAGGCAAGGGCGGCCTGGCTGTCGGCATTGAAAACGGCAAGGTTACTTCACACGACATCCTTGATTTATTTGATGAGTCTCACAGGGGTGACTATGACTTGTTAAAGCTCAACGCAGATTTATCAAGATAGTTGTTTCTATAGTTTTTGATTTAGGGAGATTTTTTCAAGATGAAAAAAACGAAGATTGTTAGTACTTTAGGGCCAGCTTCAGACGATATTGAAACTATTACCAAGTTAGCCGAAGCAGGCGCAAACGTATTCCGTTTCAACTTCTCACACGGTAACCACGAAGAACACTTGGCAAGAATGAACATGGTTCGTGAAGTTGAAAAGAAGACTGGCAAGCTTTTGGGCATCGCTTTGGACACCAAGGGTGCTGAAATCAGAACCACTGACCAAGAAGGCGGCAAGTTCACTATCAACACTGGTGACGAAATCCGCGTGTCAATGGACGCAACCAAGGCCGGCAACAAGGACATGATCCACGTTACCTACCCAGGTCTGTTCGACGACACTCACGTAGGCGGCACTGTATTGATCGACGACGGTGCTGTTGGTTTGACTATCAAGGCCAAGGACGAAGAAAAGCGCGAATTGGTTTGTGAAGCTCAAAACACTGGTGTCATCGGCTCAAAGAAGGGTGTTAACGCTCCAGGTGTTGAAATCCGCCTCCCAGGGATTACTGAAAAGGACACTGACGACATCCGCTTTGGTTTGAAGCACGGTATTAACTTCATCTTTGCTTCATTTGTACGTAAGGCTCAAGACGTTCTTGACATTCGCGCACTTTGCGAAGAAGCTAACGCATCATACGTTAAGATCTTCCCAAAGATTGAATCACAAGAAGGTATTGACAACATCGACGAAATCTTGCAAGTTTCAGATGGTTTGATGGTTGCCCGTGGTGACATGGGTGTTGAAATCCCATTCATCAACGTGCCATTTGTTCAAAAGACTTTGATCAAGAAGTGCAACGCTTTGGGCAAGCCAGTTATCACTGCTACTCAAATGCTGGACTCAATGCAAGAAAACCCACGTCCAACCCGTGCCGAAGTAACTGACGTTGCTAACGCCGTTCTTGACGGTACTGACGCAACTATGCTGTCAGGTGAATCAGCAAACGGTTTGTACCCAGTACAATCAGTTCAAGCTATGCACGACATCGATGTTCGGACTGAAAAGGAATTGGACACCCGGAACACTCTGGCTCTGCAACGCTTTGAAGAATACAAGGGCTCAAACGTTACTGAAGCTATCGGTGAATCAGTTGTCCGCACTGCTCAAGAACTGGGCGTTAAGACTATCATCGCTGCTACTAGCTCCGGCTACACAGCTCGTATGATCTCCAAGTACCGTCCAGACGCAACCATCGTTGCCTTGACTTTCGACGAAAAGATCCAACACTCATTGGGTATCGTTTGGGGCGTTGAACCAGTTTTGGCAAAGAAACCTTCAAACACTGACGAAATGTTCGAAGAAGCTGCCCGCGTAGCTAAGGAACACGGTTTCGTTAAGGATGGCGACCTGGTAATCATCGTTGCCGGCGTACCATTCGGCCAATCAGGTACTACTAACTTGATGAAGCTGCAAATCATCGGCAACCAACTTGCTCAAGGTTTGGGCGTAGGCACTGGCTCAGTTATCGGCAAGGCTGTTGTTGCGAACAGCGCTGAAGAAGCCAACGCTAAGGTTCACGAAGGCGACATCCTGGTAGCTAAGACTACTGACAAGGACTACATGCCAGCTATCAAGAAGGCCAGCGGTATGATCGTTGAAGCTTCCGGCTTGACCAGCCACGCAGCTGTTGTCGGCGTATCACTCGGCATTCCAGTTGTTGTCGGTGTTGCTGACGCAACTTCAAAGATCGCTGACGGCTCAACTTTGACTGTTGACGCACGTCGCGGCGCAATTTACCAAGGTGAAGTTTCAAACCTGTAATCTAGGATTGCAAGTCTGACAACCACAGAAGAAAGAGTTCAATCAATCGATTGAGCTCTTTTCCTTTGCCAATTTTTTCTCTGCTTTCTTTAATGATTGCCTTGAATATAGCTAAGGCAGAAGAGGTATTTTAAACTGCTGAGCCGCTTTAAATCACCTGCAAACTTAATCTACCCAAAAAGCATAGCCGACCTTAGAAGACCGATATGGGCTGTTTAGCAGGGAGGAAAAAGCGCATTAAAAAACTCCAGCTGAGCTAGAGTTAAATTATCACTTTTTTAATTGTTAAGCTGCAAGGTCATCTTCACCTAAGATGATCTGCAAGGTGTCGTGGACGATCTTGTCCTTGGCCAGTTGGGCCTGGTCATCGTCTTGGTCGCGGAAGTCGTTGATCATTTCTGCCGCGATCCCTTGGTTTTTGATGACCCAGATCTTGTTGGCCATGATGGTGGCTTCCCGGACGTCGTGGGTAACGAGCACTGTGGTGATGCCCTCTTCCTTGCAGACTTGGAGGATGAGCTCCTGCATCTTGGATCTGGTCAAGGCATCAAGGGCTCCGAGGGGTTTGTCAAAAAGCAGGAGCTGGGGAGAGGACAGGAGGGCTCTGGCTGAGATGCAGGACCTGGACATTAAACTGGTAAAGGACCAGAGTGCCGGCCGCTGCAAGCGCGGTTACCGTGAAAACCAGCTTCTTTTTTGCAAAAGCCACTTGGTTAACGGCTCGTAGTTGATCCAGGCCCAGCCCCCTAAAATAAAGTAGAACTGGTAGAACAAGATGTTGTTGCCGTAGTACTTGAAAAGGTAAGGCCAGGAATCATGGCTGACGGCCGGATAGTAGTACTTGGCCCAGATAACCAATACTGCTAAGCGCCAGGAGCAGGTTGAGATGCTTTTTAAATAATTCAAAAAGCTTGAGCACCAGCGGGAAGATCAAGTAAAGCTGGAACATCAAGAAGATGTAGTAGAAGTAGAACTGGTTGCCCTTGCTGATGGCTTCCAGCCAGCCGGTCAGCCACTTGTTCCAGCTAAAAGAGCCGCTGGTCAGCAAGAGAAAGGCCAAAAAGAGGCCGTTCCAGAAGAGGTAGGAAATACCGCTGCCGATATAGCGCTTTTTCCAGAAGACCGGCCAGTTTTGTTTTTCAGGCCGGCCCCAGTAGCCTAAAAAGAGAACCAGGACGGTGATGAACATAAAGCCGAAGCGGGGAAAGTGCAGGATCAAGTGGGTTGATACTAAAAAGCGGCCGGCAGGGGTCGCCTTGTTGCCTAAAGCTGCGGCAAATGTGCTGGTCACGTGGTTGAGCACGACGCCGAACATAAAGAAGCAGCGCATCAGGTCAACTTCGTAAAGGTGTTTTTTCTTGGTCATGTAAGCCTCCTTTTCGTTGATTACCTAGATTAATTAAAGAACTTGGTCAAAACTTGCTTTAAAATAGAAAAAACTATGCGTGAATTGAAAAAATCAGCGAACTGGCGGAAAAACTATTGTTAATTGCTTTATTTTCTTTCTTTGTTCCCGTATACTAGCATTAGAATTATGTAAAGTTGGAGGCAGACTATGCTTGGAGAAATCCGGACCGGTAAAATCACTGACAGCAACGCTGAAGCCTATTTCGTGCAGATTGACGGCTTAACGTTCAAATTGAAGAAAGAAGAAATCACCCAGGAAGAGACGCCGGAAATTGGCGGGCAAATCACGGGATTTATTTATGATAACCAAAAACATGAACGGGAAATGACCCAGTTCCTGCCTTTTGCCCAGGCTGACCAATACGGCTGGGCCACGGTTACCAGGGTCCAGCGGGGGTTGGGGGTCTTTTTGGACATTGGCTTGCCTGATAAGGATATAGTTATGTCCCTGGACGACCTGCCACTTGACCCGGCCCGCTGGCCGCAAAAAGATGACCGCCTTTTGGTGCGGCTGGAAACTGATGAAAAGGACCGGATCTGGGCCAAGGCCGCTGACGAAAACGTCTTTGACCAAATCGCTGTCCGTTTCCCCAACAACCTGGTCAACAAGAACCTGCTGGCCCGGGTATACTCCAGCAAGTCCCTGGGTTGCTTTGTTTTGACCAATGACTACTATTTGGGCTTCATCCATGAATCTCAAATGCAGCAGCCGCTGCGGCTGGGTGAGGAAGTCAAGGCCCGGGTAATCGGGGTCAGCCAGTATGGCCGCTTGAACATGAGCGTTTTGCCCCGGTCTTTTGAAGAAATTGACGATGACGCGGCTATGATCATGATGTCTTTGCGCCGCAAGGGCGACAAGACCCTGCCATTTAGCGACAAGAGCGAGGCCCAGGCCATCAAGGACTATTTCGGCATCTCCAAGTCTGCCTTTAAGCGGGCCTTAGGCAACTTGATCAAGCGGGGCCTGGTCAGCCAGGACAAGGAAGCCGGCACGATCAAGCTGATTAAGGATGAGGCGGATGAATAAGCTCGCTGAGCAGATAAACGATTATCTGCGCTACAGCCAGATTGAGCGGGGACTCAGTCCGAATACCATCGCGGCCTACCAGCAGGATTTGCTGGAGTTTCTGGCCTTTGTCAAAGAAGAGCAGATGCCCGCTTGGCCGCTGGAAGCCGTGGAAATTGATGCTTTTTTAGCTAAAGAGCGGGACTTGGGCAAGGCTAACAGCTCTATCAGCCGGCTGGTGTCGACCTTGAGCCGTTTTTACCAGTGGCTGGTCCGCCAGCAGCTGATCGCCCTGGACCCCATGAGCCAGATTGATGCTCCCAAGCGGGAGAAGCGGATGCCCTTGGCTTTGACTGAGGCTGAAGTGGGCAAGCTCTTAGAGCAGCCAGATCTGACTACGGATTTAGGAATCCGCGACCGGGCCCTTTTGGAACTGCTTTACGCGACGGGGATGCGGGTCAGCGAAGCGGTCAACTTGCAATTAGCCGATGTCCATGCCAACCTGCAGCTGATCAAAGTCCTGGGCAAGGGGAGCAAGGAACGGCTTATTCCGGTGAGCGCCCTGGCCTTAGACTGGATTAAGCGCTACCTGCCTGTCAGGGACCAGCAGCTTTTAAAGCGGGGCAAGAGTAGCGATTACCTGTTCTTGAACAGCCGGGGCGGGCAGTTGACCCGGCAGGCCGTCTGGCAGAAGATCAAGAAGTACTGCCAGCAGGCCGGCATTGCCAAGGATGTGACTCCCCACACCCTCCGCCACAGCTTCGCGACCCATTTGCTGGAGCATGGGGCGGATTTGCGGGTGGTCCAGGAAATTCTGGGCCATACTGACATTTCCACGACCCAAATCTATACTAATCTGACCCAGAAGCATATCCTGGACGTCTACCAAAAGACCCATCCCCGCATTTAGAGGCGATCATATGCTAGTACCATATAAGAAAGATTATGAAAAAGTCGCCATGGGCCTCTTGTCCTATCTGCCGGATTTCAAGAACCTGCAGAATTTGAAGGAAGAGATGCAGCTTTACGCTGAAGACCCGGCCAACCATCTCTACCTTTACCGGGACGAGGACCAAAACATCGTCGGCCTGGCGGGCTGCGAGACCGGGGCCGGCTGCCTGGTCCTGCGCTATTTGTCTTTAGCACCGGGTTTCCGGGATGATGAGCATTTTTCGGAAATCATGCGGGAACTGGCCCAGGAAGCTGGCAAGCAAAAAGTAATGACGGTTCCGGAATATACCTATTTGATGAAATACTTGAACAATGATGAATGAAGGCATGACCATTGAGCTGCCGAATTTTGAAGGCCCCCTGGACCTTTTGCTCCACCTGATTCGGTTGCAGGAATTAGACATCTATGACATCCCGATTGCCCGGATTACCCAGCAGTACCTGGACTACCTTCAGCAGATGCAGCGGCTGAACCTGCAACTAGTCGGGGAATATTTCGTGATGGCGGCAACCTTGCTGCGGATCAAGTCCCAGTATCTGCTGCCGAAAAACGACTTTGTCGAGACAGAAGAAGAATTTGCCGACCCCCGGGAAGAACTGGTTGAGCAACTGGTTCAGTATTCCGTCTTTAAAAAGATTTCCGCCTACTTCAAGGTCAGAAATGACGAGGTACCAGTTTTGGCCGCCAAGGAGCCCAGCGTGGCTGTAGGGGCCAAGGTTCAGCCCCTGCCTTTAGGGCAAATCAGCCAGCAGGACCTGACGGCCAGCTTTATTTTGGCTATGCGCCGCTTTAAGAAAAGAAACGACCATGCCCAGGTGACCTTGACCGGCCGGCCGATCCAGGAAATGATTGCCTGGCTGAAGGAAGTTTTAGAGCAGCAGGGCCGGGTCAGCTTTTTTGCCTTGACTGACCAGGTGGAAAGCCTGGCCGACCTGGTTGGCCTTTTTTTGGCAATTTTGGAACTGGCCAAGGACCAGTACTTGAAAGTTAGGCAAAAGCGCCGCTTTGGCGACTTGGAAATAGAAAGAAGCAAGCATGACGAGTAAAATAGCCCAGCTGCAAGCCCTCCTTTATGTGGCCGGCGACGGCGGGATCAAGAAAGAGCAGCTGCGGGACCTGCTGCAGCTGGCGGACCCGGAAATTGAGAGTCTGGCCAAAAGGCTGCAGGAAAAACTGGCCAGTGATCTGGACTGCGGCCTGCAGCTTTTGGAAATCAACGACGAATATAAATTAACGACCAGCGGGGAAGTCAGCGACCTGGTGGAAGCCTATTTCAACAAGGACCTGACCAAGAATATCAGCCAGTCAGCCTTGGAAATTCTGGCGATCGTGGCCTACCGGCAGCCGATTACCAGAATTGAGATCGATGAAATCCGGGGGGTCAACTCTTCTGGTGCCCTGCAGACCCTGGTTTGGCGGGGCCTGGTCAAGGCCCAGGGGGTTAAGGACGCCCCGGGCCACCCCAAGCTGTACGTGACGACCGATTATTTCCTCCAGTACTTTGGCTACAAGTCCCTGGCGGATCTGCCGGTAATTGAGAATTTTGAAGACAGCAGCTTTGATGCCGACGGCCAGGTAGACCTGTTTGCCGAAAACGGCACGGCTGATGAAGCATTTCATAAGATGGAGGATTTATAATGGCGGAAGAACGTTTGCAAAAAGTGATCGCCCAGGCGGGGATCGCTTCCAGAAGAGAAGCGGAAAAAATGATCCTGGCCGGCCGGGTCAGAGTCGACGGGCAAGTGGTAACCAAGCTGGGGACCAAGGTCAGCTCGATTGAACAAGTTGTTGTTGACAACCAGCCGATTGAAAGAGAAAGCCACCATACTTATCTTTTTTACAAACCCCGGGGCGTGATCTCCGCGGTTAAGGATAACAAGGGCCGCAAGACGGTGGCAGACTACTTTACTGATTTGCCATACCGCCTTTACCCGGTTGGCCGCTTGGACTACGACACTTCCGGCCTGCTCTTGATGACCAATGACGGGGAACTGGCCAACCTGCTCATGCACCCGAGAAACGAAGTTGACAAGGTCTACGTGGCTAAGATCAAGGGCATTCTGCAGCCAGATGAAATCAAGGCCTTGAAGAAGGGGGTCCAGATCGGCCGCTACAAGACCAAGCCGGCCCAAGTCAAGGTTTTGAAGACCAATCCCCGGGCCCAGACCCAGATCGTCCAGCTGACCATCCATGAAGGCCACTACCACCAGGTCAAGGAAATGTTTAAAGCTGTCAATCACCTGGTTGACAAATTGTCCAGAGAACGCTACTCCTTCCTGGACTTGCAAGGCCTTACATCCGGACAGTACCGGGAATTAAACCACAAAGAAGTTGACAGACTCAAGCAAGTGGATTAGAATGTAAACGTAATCAAAAATAATACAAGTTGTCTTCGGGGCAGGGTGAAAATCCCGACCGGCGGTGCAAGTCCGCGAGCCACGCGAGTGGTTGAATGCTGTAAAGCTACCGATAGTTATAGTCTAGATGGGAGAAGGCAGACGTTGGAATAATAAGCATGCTTACTAAGAAAGGTCTGTTGCTCTTCGAGGCAACGGACTTTTTTTAATGGAGGTATGTTAATATGGAAGCTGCTAACAAACGGACAGCTAAATCAGTCAGCAACTGGCTCGCTTATGCCATGATCGGGGCCATCGCCTTTGTGGTGATGAAGTTTGAATTCCCGATCATGCCGGGTGTCAGCTTTTTGAAGATGGACTTCTCAGACGTCATCGTGGTCATTACCACCTTTATCTTCGGCATCGGCGGCGGGGTGGCCGTAGCCGCGATCAAGTGCCTCTTGTCCTTGATCTTTGCCGCCTTTGCCCTCCCGTCACTGGTCGGTGAACTGGCTGCCTTCCTGGCTTCAATGGCCTTTGCCCTGCCATTTTACTTCCTGGCTGGCTCAGTCAAGGAAGAAGACAGAAAGAGCATGAAGGGCTACCTGCTGCCGGCCCTGGGCCTGCTTTTGGACGTTTTGTCATTGACGGTGGTCATGGCTTTGACCAACCAGTTCCTCTTGACTCCGGTTTACGCCTACACTTCAGTGCCGCAGGCAGCGGGGATGCACATGAGCTACGCTCAGCTGCTCACTTTTACTGAACAGAGTTACCTGGGCAAGATGCTGCACATTCCAAGCATGTCCAGCTACATCATGGGCATCATCGTCCCATTCAACTTGATCAAGGGGGCCATCAACTCAGTTGTGGTCTACATCCTCTTTGAATCTGTCTTAAAGACGATCAAGCCATTCGTGATCAAGCATTTCAGCGTTTCCAGCAAGTACTAATGCGAAAAGACAAATAAAATATTAGATGAGGCTTTCCTTAAGGAAGGCCTTTTCTTTTCGATTAGCACCTGGTTTTATGTTAAAATGTAAGCTTAAAGGGGGAAGCTAGATGGATCAAAATGCCCAAAAGCCCTTGTCACGTCTGGCCCGCCAGCAAGCGGTCAGAGAAGAGCGCAAGAACAAGCAGGCGCCGTGGTGGGCGGCCCTCTTGATCGCGGTTATGATGGCCTTGGCAGTCGTGCCGCTGATCACCAGTCAAAACAGTGACTACGCCGTCCCGCAAGCAAAGAAAGAGCAGGCCAAGCCCAAGTCGGCCGCTGAAAAGACTAGCAAGGCCAAGCCTGCTCCTAAGGTCAAGACTTACGTGGTCAAGTCCGGCGACAGCTGGGCCGCGATCGCCCAGAAGTACGGCATAAGCGCCGAAGAGCTGGCTGAGCAAAATGGTCTGGATACCAGCTCAACCCTGGCAGTTGGTCAGAAACTGAAGATCAAGCAAGTCAAATAGCTGAATTTATTGGAAAGGATTGAAGCGATACGAGTCGCTTCATTTTTGATGTTATGCAAGTAGCAATTGATGGACCTGCTTCAGCAGGTAAGAGCACGGTGGCCAAGATTGTGGCCAATAAGCTGTCGTTCGTTTATATCGACACGGGTGCTATGTACCGGGCATGTACTTTTATCGCCCGCAAGCACGGCCTGGATTATGGGGATGAATCCGGGATTTTAAAGGCGATCGACGAAGACGGCATCGTTTTAGAGCCCGGCGAAAACGGCCAGAAGGTTCTGGTAGCCGGGGAAGACGTGTCTTTGGAAATCCGGACCCCGGAAATCACGGCTAATGTCTCCCAGGTCTCAGCCCTGCCGGGGGTCAGAAGCAAGATGGTTGACCTGCAAAGAAAACTTGCCGGGTCAACCAACGTGATCATGGACGGCCGCGACATCGGGACCACGGTTTTGCCTGAGGCTGAAGTCAAGATCTTCCTGGTTGCCAGCGCCCGGTCTAGAGCAGAAAGACGGCTTTTGGACTGGCAGGAAAAGGGGATTGAGGCCAAGCAGACGCTTGAGGAAATCGAAGCTGATATCGCCAAGCGGGACTACCTTGACTCCCACCGTGAAGTTTCACCTTTGAAGAAGGCAGCGGATGCAATCGAAATCGATTCAACTAATTTAATGATTGACCAGGTTGTTGCCGCTATCTTGGCCGAAATTGCTAAAAAAACAAATACTAGCAAGTAAAGTCAAAAAAGTCTGGTAAAATAGTAGCAAATTCATCTATTTTTTGGTAAAATAGAGAACGAATAAACAGGGAGGCATTTTGTATTTATGTCAGAAAACAATCAATTTTTAGATGCTCTTGCTCAAATGAAAGAGGTTAAGGAGGGCGACATCGTTGACGTTAACGTTTTGAGCGTTGAAGATGGCCAAATTAACGTTGGTGTTCAAGGCGCCGGCGTTGAAGGTGTAATCACTCGCCGTGATTTCACCAACGACCGTAGTGTTAACTTGCGTGACGAAGTTAAGCTAGGTGATACCTTCAAGGTTTACGTAGTTCGTCGTGCAGGCGGTGACAAGGAAAACGGTGATTTTTTCTTCTCAGTAACCCGCGTTAAGGAACGTGAAGCTTACGACAAGCTACAAAAGGACTTCGAAGAAGGCAAGACTATCGAAGGTAAGGTTACTTCATCAGTTCGCGGTGGTTTGCTCGTTGATGTCGGCACCCGCGGCTTCTTGCCAGCAAGCTTGATCTCAAACCGCTTCGTTTCAGACCTTAAGCCTTACATCGGCAAGACTATCAAGGTTAAGATTACTGAAATCGACCCGGCTAAGAACCGTCTGATCCTTTCCCACAAGGAACTGATCGAAGAAGAACGCGAACAAGCCTTTGAAAACGTTGCTTCACAACTGGTTGTCGGCGACGTAGTTGAAGGCCGGGTATCACGCTTGACCGACTTTGGTTCATTCGTTGATATCGGCGGCGTTGACGGTTTGGTACACATCTCCGAAATTTCATACAAGCACGTTGACAAGCCAAGCGACGTATTGAAGGTTGGCCAAGATGTTAAGGTTAAGGTTATTGGCATCGACAATGACCGTCACCGTATCTCCCTGTCAATCAAGCAAACTGAACCATCCCCATTCGAACAAGCTACTTCAAGCTTGAACGAAGGCGATGTAATTGAAGGCGAAGTTAAGTCTTTGACCAACTTCGGTGCCTTTGTTGAAGTTGCTGACGGCATCCAAGGCTTGGTACACGTTTCAGAAATTGCATACAAGCACGTTGACAAGCCAAGCGACGTATTGAAGGTTGGCCAAGATGTTAAGGTTAAGGTTCTTAACATTGACCCAAGTAAAAGAAGAATCTCCCTGTCAATTAAGCAAGTTGATCCAGAGAACGCTTCTTCATCAAACGACAGACCTCGCGCACGTCGTTCATCAAACAACAACGCATTTGCTCGCAAGTACATGAACAACGACGACAACGGCTTCTCACTTGGTGACATGATCGGTGACCAACTTAAGAACTCTTAATCAGCACTAAAAAGACCGACCGTTGGTCGGTCTTTTTGTTTGACAATAATCAATAGAAAGCAAAAGAGGTGAAAAGATGCCATTACCAATTGTTGCCATCGTAGGGCAGCCAAACGTGGGCAAGTCAACCCTGTTCAACCGGATTATCAATGAACGGGTGGCGATCGTGGAAGACCGGCCAGGCGTGACCCGGGACCGGAACTATGCCCGGGCCAGCTGGATGGGCCACCAGTTCAGCATCATCGACACCGGGGGGATTACCTGGGAAGACAGTACGATTGACGAAGAAATCCGGGCCCAGGCGGAAATCGCTATTGAAGAGGCCGACGTCATCGTTATGCTGGCCGATGCCAGCCAGGGGGTGACCAGTCTGGACGAACGGATCGCCCACCTGCTCTACCGGGCCGATAAGCCAGTCCTTTTAGCCGTTAACAAGGCAGACAACCCTGAGCAGCGGACCGATATCTATGACTTCTACAGCTTGGGTTTGGGCGACCCAATCCCGGTTTCCGGTTCCCACGGGACGGGGATCGGTGACCTGCTGGACGAAGTAGTCAAGAACTTCTCGCCCGATGCCGAAAAGACCGAAGAAGGGGTTATCTCCTTCAGCGTGATCGGCCGGCCAAACGTGGGCAAGTCATCCATCGTCAACCGCCTGTTGGGCGAAGAACGGGTGATTGTGGCCAACGAAGAAGGGACGACCAGAGACGCCATTGACACGCCATTCGTCAAGGATGGAACCAAGTTCCGGGTTGTTGACACAGCCGGGATTAGACGGCGGGGCAAGGTTTATGAGAAGACTGAAAAGTACTCCGTCATGCGGGCGATGAGCGCCATGGAACGGTCAGACGTGGCCATCCTGGTCCTGGATGCCAGCACCGGGATCAGAGAGCAGGACAAGCACGTGGCCGGCTACGCCCATGAAGCGGGCCTGGGGATGATTATCGCCGTCAACAAGTGGGACTTGCCGAAGAAGGACTCTTCATCCGGCAAGGACTTTGAAGCGGTGATCCGGGAAGAATTCTCCTACCTGGACTATGCCCCAATTGTCTTTGTTTCGGCCAAGACCGGCAAGAACATCGACCAATTGCCAAAGATGGTCAAGGAAGTTTACGAGAACAAGAACCAGCGGATCCAGTCATCCGTCTTAAACGACCTGCTCTTGGAAGCCAGCCGCTTGGTGCCGGCGCCGATGGTCAAGGGCAAGCGGCTCCGGGTCTACTACATGACCCAGGTCAAGACCAATCCGCCGACTTTCGTTGTTTTCTGCAACGATCCAGAACTGATGCACTTCTCCTACCAGCGCTTTTTGATCAACCAGCTGCGGGAGAATTTCGACTTCACCGGGACCCCGATCAAGATCCTGCCGCGTAAGCGGAAGTAGGACCGGGCTTTTCTTTTTCAATTTGTGACATTCTCTTGAAAAAGTGCTAAGCCGCGGGCTAAAAGCCTTGTAGGGACAACGTTCTTGTGATATTTTAGAGAGCAGGGAATTAATTGAATGCAGCAAGCGCTCAGTGTCCCTCATTTCTACAAGAGAAATGAAGTGATTAGACGCGAGTCTAATTTATAGGAGGTGAATTCCACATGGCAAATAAGGCAGAATTAGTTTCCGAAGTAGCTGCAAAGACTAAGTTGACTAAGAAGGACGTTTCAGAAGCTGTTGACGCGGTTTTCGAAGCAATCCAAGAAGACTTGGCTAAGGGCGAAAAGGTGCAACTGATTGGCTTCGGCACTTTCGAAGTACGTGACCGTGCAGCTCGCAAGGGCCGAAACCCACAAACTGGTGCTGAAATCGAAATTCCAGCAAGCAAGGTTCCTGCATTTAAGCCAGGTAAGGCTCTTAAAGACGCTGTTAAGTAATTGACGCGCTTTAAAATAAAGAAACGCCGGTATTTCTGGCGTTTTTTTGTTTGGGCAAAAAACTTATTTAGCTGACTAGTTACGGTACAATAGTAAGCAGAAAGTGAGGACAAAGATGACATATTCTGAACAATTGTTGGACGCGATTCAAGGTCACCGCTTCAGCGAGAGCCGCGCCCTCTTGAAGCAGGCCCTGGAAAACGATGATCCGGAGATCCTGGCGTCTCTGGCGGAAAACCTGACCGACCTGGGCTTTACCGACCTGGCCAAGGAAGTCTACCGCAGCTTGATCGCTGATTTTCCCAATGAAGACCTCTTCAAGGTCTACCTGGCCGAAATCCTCCTCAATGACGGAGCAGAGGACGATGGCTTGACCCTGCTTTACAATGTGCCGGCTGATTCAGATGCCTATCTGGAAAGCCTCCTGGTCCAGGCTGACTACTACCAAAGCGAGGGCCTGATCGAAACGGCACGGGCCAAGATGGAGCAGGCCCGGCAGCTGGCCCCGGATGAAGATGCCATTACTTTTGGCCTGGCGGAACTGGACTACATGAGCGACTTGAACGACCAGGCCCTGACTCTGTACCAGGACTTGCGGCAAAGACAGACCATGTTCGGGGAAGTCAATCTTAACCAGCGGGTCTTCCAGACCCTGGCTAAACTGGGCCGGTATGAAGAAGCAGCTGCTTTTATCAATGACCATAAAGAAGACCTCCTGGACATCGACGCCAAGTACCAAGCCGGGGTAATCATGGAAGAGGCCGGCCAGTTTGACAAGGCCATTTCCTTCCTTGATGATGTCATTAAGCAAAGCCCTGACTACGTCAACGCTTATACTTTCCTGGCCAAGGCCTACCAGGAAGAAGACAACCCAGAAGAAGCCCTCTTTGCCGCTCAGACGGGCCTGGGCTACAATGAGCTAGATGAAGAGCTTTACCTGATTGGGGCTAAGGCAGCTGCCAAATTAGGCAAGGCTGAGGATGCTGAGGACCTCTTGCAGCGGGGTCTTGAGGTCAACCCGGACAATTCCAGCCTCCGCCTCTTGCTGAGCGACCTCTACTTAGCCCAGGGGCGGGCAGAGGACTCCTTGGCCTTGTTTACTGCTCTGGCTGACAGCGACCTGGAGCCCCAGGCCCACTGGAACATGGCCCGGTCCTACCAGGAAATGGAAAAATATGACCAGGCCCTGCAGGAATATCTCTTGGCCTACCAGAGCCTGCAGACCAGTCCTGCCTTCTTGCGGGGAATGATCTCCTTTGCTCAAGAGAGCGCCCAGGGCGATCTGGACCGGCAATTGCTGGAAAAGTACTTGAAGCTTGTGCCAGATGACCAGGAAATGCAGGATCTTTACGAACAGCTGAGAAATTAGAATTTTGGATGATGACCAGCTTTTGCTGGTCATTTTTCTTTTTTAATATTTTCTAGCCTTTTAGCGGGCAGGGAAGAAAAGCTGTAGAATAAGAAGATAGACCATTAAACATTTTGGAGGGATGATTTTGCAATTCAGCTTTAACAAAAAGCGTGACCGGGCCGTTTACTGGAAGTACTCTGTCTTCTTCCTCTTTTTGGCGGCCTGTGTTTTTGGACCTTACTTGGTTACGGGCCATAGCCTGATCTGGAACACTGACGCGGCCAACCAGCACCTGCCCTTGCTTGTCAAGTACCGGGAGTACGTGCTCAGTTTCCTGCGCCACTTAAGCCAGGGGCCAGCTGAATGGTCCTGGACCATGGGCCTGGGCAGTGACCTGTTTTCAGTCTTTTCTTACTATACGATTGGTGACGTCTTTGCCTATCTGGCCCTTTTATTTCCGACCAGCCACCTGGTCTTTGCCTACCAGCTGATCCTGCTGTTGCGCCTTTACTGCGTGGGCTTGGCCTTTGTTTATTTTGCCCGCCATTTTGACTTTAAAGACAGTGTTGTCTTGATTGGCATCGGTGTCTACATGGTCAATGCCTACCTGCTGTACGCGGCCCTTGCCCAGCCGATGTTCACCACGACCTTTATTCTTTTTCCCTTGATCGTGGTTCAGCTGGAGCGACTCTTGCAGGGGGGCAGCGCCTGGCCCTTATTTGGGGTCTTTGTCTGGATGCTGGTCAGCAACTATTACCTGGCCTTTGTCCTGGGCCTGGGGGCAATCATTTACCTGTTTTTGCGCTGGGGCCTGGCTTATTGGAAAAAGATTCCTTTCTGGCCAACAATTAAGAAGCTCTTCTTTGCCAGTTTAGGAGCGGTCCTTCTGTCAGCCGGCCTGCTTTTGCCGGAACTTTTGGCCGTGGTCAACTCCACCCGGACCGGATCGCAGTTTGCCAATGGCTTGACCTTTTATCCGGCTTACTACTACTTGCTTTTGCCAAAGGAACTGATTGACGGGGACAACTGGAAGTTGATGTTCTGGTCAGCCTTGGGACTGGCCAGCATTATCCTGCCGGCCCTGGTCTACCTCTTCCGTAACTGGCGCAAGTACCGGCTGGTCGCTGCTTCTCTGTTATTAGGGGCAGTCATGCTCTTGATCCCGGCAGTCGGGGCAGTCTTTAACGGGGGGATGTCAGCGTCAAACCGCTGGACTCTGCTCTTGTACCTGCCTTTTGCCTTCAGCGTGATGGTCTTTGTCAAGGCAATCAGTGAGCAGGCGGTCAGTCAAAAGGAGATGCGGCTGATTTTTACCACCAGCGGGATCTACCTGGTCTACCTGGTCGCCATGTTCTTTTTGGAAAATGACTACAAGCTCTTCTTGCCAGTCATCTTCCTCTTGCTCAGTCTGGGGGCCAGCTACCTGGTCAACGAAGGACGGGCTTTAAAGCGGGCGTTATTGCTTACTGTAGCGGCTAACCTGGCCTTTAACGCCCTGTACGCGGCTCTTCCATACAATGGCAACTTTGCGGCCAACATGCTGGTCAGGGGGGAATATGAGCAAATCGCGGAAGACCGCTATGGCGGCTTGAACCATATCCTGCCGGCCGGCTTTTACCGGGTCAACACGGTGTCAAATAACCAGTTTGTCAGCCAGAAGAAGCTGTTTAACGACTTGACCAGCGGCCTGGCCAACGTGTCATCTTACTATTCCATCCAGAACCAGTACCTGGGTCAGTTCTCGACCGACCTGGGCAACCTGCAGTATGACAACAACATTCCCTTCCACCAGCTGGATGACCGGACTATACTAAACAATTTCCTGGGCGTCCGCTATATTTTTAACCAAAAATACTCAGTAAACGGCAGCAAGGTGCCCGGGACTTACGACCTGATCGCTGCTGGCAAGGAGAAAAAAGATCAAAACCAGGAGTCTGTCTACCAGGCTGAGCTCTACAAGACCACAGAGGCCTTCCCGCTGCTTTGGCTAAGCTATAAGGCAATTAGCCCCAGCCGCTACCAAAAACTGTCAGCGAGCCAAAAAGAGCGGGCTCTGGCCAGCGGGGTGGTGGTCAAGGAGGGTGGCCTTAAAGCCGCGAAATTGACCGGGGTCAAGACCATCAAGGCCAGCCTGGTCGATGCCAGTGGCAAGAAGCTGAGCAAGAATAAATTGACCTATACGGGCTCTGATGCCAGCTACAAGTTGAAGCTGCACTTGTCAGATAAAGAAAAGGCCAAACTGGGCAAAAGCGAGCTGCATGTCGAGATCAGCCAGATTTCCTACCAGCCTTTCACTTTAAGCCAGCAGCTGGACTTGGAGCTGAAGAAGGCCAAGCAGGAGGCCGACCTGGCCGGGCAGACCCTTAATGAGCGGGCGACCCGCTACAAGTACTGGCGCTACCACCTTCTGGCCGGTTCACCAGACCCCAGCTACAAGCTGACGGTAACGGGGAAGAAGGCCAGTGAAACAATTGTGCAGAGAAGCCAGGATATGACTTCTTTTTACCGCCTGGTCGACAGCGCGGTAATGAATATGGGCACTTACCAGACTCTGCCCAATAGTCTGACCTTCCAGCCTTCAAAACTGGGGACCTACCGCTTCAAGATCAAAGTTGTAGCAATTCCTTTGAATCAAGAATACACGAAAGAAGTGCGGCAGATTCAAAAGCAGGGGGTCAAGCAGCTGAAACTCGCGCAAAACCAGCTGACCGGCCTCTTTACTAGCAAGAAAGCCGGTGTCGTTACTTCGACCATCCCTTATTCAAACGGCTGGACGGCTACGGTTGACGGCAAGGCAGTCAAGGTAATTAAGACCAACACGGCCTTTGTCGGCTTCAAAATGCCAGCAGGCAAGCACCGCGTCCGCCTGGTTTACCGGACGCCGGGATTGCGAAGCAGCCTGCTGATTTCACTCTTGACGGCTTTAGCCATCTTGGTTTATGCCGCGTTTAGTCACAAAGAATGGCGGCGGGAATTCCGGGCCAAGAAGAAAGAAAAATAGTTTTTAATAGTCAAATGCCAATAAAAAAACGAGCCAGCTGGCTCGTTTTTTGTCTGCATATTTTTAAATTGCTGCTCTTATTCCTTGGTCAGCTTGCGGGCAACCAGGTCATCCTTCATCAGTCTGGTCATCACCTGGGCAACTTCCTTGTCCCGGTCGTTAGAGTCCATGTGGATGGTCAAACCGTTGTCTGACTGGATCAAGTTGTGAGGAAGTTCAACCTGGTTGTACTTAAGGTCTGGGTCCAGGTTCGGCAGCATGTATTCCAAAGTTGCCGTCCAGCCCAAACCGCCGACTGCCATTTGCAGGGCGACTTCGTAGTCGTTGACCTTGATACTCTTGTTAACGGAGAGGTTCTGGTCTTCAAGCAGGTGGTCAACGGTCTTTTGGAAGCCGGAGTCATCGCTTAAGGAAACCATCTTTTCTTTGCTGAGGTCCATCAAGAGCTGCTGGCTGAACGGAACGTCCCGCTTGCCTTCTTGGTAAAGTTTGCTGGTTTCAGGGATGATCAAGAAGATCCGCGGCTGGAAGAGGAAGAAGTTCTTCAAGTTTTCCCCCCGCAGGAGCGGCCCCAGGTAGATGTCAACCATCCGGTTGTCGATCAAACGCTTGGCAGAGTTGATAGAGAAGGTCTTGATCAGTTCAAAGCGGGTGGTTTCAAACTGCTTTTGCAGAACGGGGATGATCTTCCTGCTTTCGCTTGATGCCCAGATCGGGGAGAAACCGATCTTGATGTAGGACTGCTCTTCTTCAGTGAAGCGGCGCAGGTCCTGTTCGATCTTCATCTGGTCGCTGTGCAGCTTGGCTAAGCCGTCGCAAAGGGTCCGGCCGGCTTCAGTCAGTTCGATCGGCAGGGTTCTTCTTTCCAGGAGAACGACATTGTATTTCTTTTCTGCCTTGCTCAAAACCTGGCTGACATATGGCTGGCTCAGGAAAAGCTTCTTAGCGATATCGCTGACTGTCTGGCAGTCTTCAGCAGTGGTCAAGATTTGGTAAAGTACGTCTTGTTTCATCTTAATGCTCTCTTTTAAGTGAATGAATTTACAAAATAATTTTTACAATACAATTATTATAGCGCCTTTTTCTTATTAGTCAACGCCAATCATTCTTACTCAATTTTGACATAATATTCGGTGAAATTCAAATAATTACTGCTGATTTTTCGGATAAATGCGACTTTTCCGATCAAGAAAGAGGAATGAAAGCGGTATATGAAATCTAAATCATATATTTTCGAACTTATGTTGGCGGTTTTTAGCAGGAAATTTTGGCAAAAAAGTTTGAAAATTACTAAAAAACGTTTTAAAAAATGCTAAATTCTTGCTAAAAACTAAAATTTTGGCAAAAATAAGAGGTAAGACTTAACGATGAGGAAAAAGGCATGAACTTTCAACACTTGGAATACTTCAACGAGCTGGCTGAGACCCAGTATATGGCCTAGGCAGCGGAAAAACTGGGGATTTCCCAGCCAACCTTGAGCTACGCGGTCAAGAAACTGGAAGAGGAACTGGGCGTTCCCCTTTTTGAAAGCGAAGGCCGCAACATCCGCCTGACGGTTTACGGCAAGGTCTTCAAAGAATACGGTGAAGCCGGGGTCCAGCAGATCTAGGAAGGACGGCGGCAGTTGTCTGAGATGGCCCTGAGCGAAAGCGGCAAGCTGTCAATCGGGGTGGCTGAAATCGTGGCCCATAAATTCATTACCGATGTGATCAAGGACTACCGGCAGGTCAATCCGGAATACCGGGTCGACTTCAATTTAAAGCGGGCCGTGACCGGCAAGCTCCTGGACATGCTGCAAAGCGGGGAACTGGACCTGGCCATTGTCACTCCCCGGCCGGGTGAAAAGATTGCCGGCTTTGACTTAGTAACAATGATGCACAGAAAGCTGGAGCTGCTCTTGCCGGCGGGTCATGAACTGGCCAAGCAGAAGTCGGTCAGCTTGAAGCAGATCGAGCAGTATCCTTACCTGGCTTTTGGGAAAGAACATGCCTTGGCCGGGATCATCGCTGACGTTTTTGCTAAAAATGACATCCATCTCCAGATCAGCAGCGTGACTGACGATGTGCGGACCCTGTTGGCGATCGGTGAAGGGGTGGCTCTCTTGCCTAAGTCCAAGTACAACGAATCTGCTGGTGACATTGCCGTGCCGGTAACGGAAGATACTTCTTACACCATCAGCCTGGCCAGCCGGAATCTGGCCCAAGAGCCGAAGGTTGCCCAGAAGATGGCTTCCTTTATCGTGGACTTCTGCCAGACCCGGGGTTTAACGTGGTCCTAATTCACTAGCGGCCTGGTCGTACTTTTCTTTAGCCCGGCTGACCTGTTTTTGGTACTGGGCCAAAGTCAGGCCATTGATGCTGACGACGGCGTTGTAGTAGGCCAGTTCAGTCTTTTGGACCGCTTTATAGCTGGCATATTTGATTTTGGAATTTTTATACTGATACTGCTTGAGAAGGGCCATTAGACGGGGAGAGGGGAGCTTTCTTGCTCTGGCTCTTGCTCTTTTTCTTTTGGCAAAAATCCGCAGAATCTTGCCAGTAAAGCGGGTAAACGCTGCCGAAAACTGGCCGGATAGTGCTATAATCTTGTTAAAGGTCTGTAATATGGCAGGCAAAAAGTCATGAATGGGAAATAAGACAGATGGCAAGGATTATTGATACTCAGCGAAAGTTACTGATCCAGCACGGCTTGCTGGAAGATATCAAGGAAGCAGGGGAGGAATGCGGGAGTCTGACGGCCGCCCTGGCCGCTCCTGACTGGACCCTGCTGGACCGGGAGCTCAGCCCTTTATTTAAGCAGGTAAAGTTTTGCCTGCTTTTTGGGGAGGAAGAAGTTCCCGAACTTGCCGCGGCAAATGAACTGTCCCGGCTTTTTCCGCTCTTATCTAGCGACTGCCCGGACTTAAAGGAAAAACTGGCTGCTGGCCGGCTGGCGGTTAGTTTTTCATCGCAGAAAGAAAGCAACTTCTTTCTGCTGACCGGGAAAGACCAGTACCGCTTCTACTGGGGGCAGGGGGCGACCTACTTCTTAAGCAGCGGGGAAAAGACCGGTGACGACTGGGCCATGGTCCAGCAGCTGGTCAAAGAGCTGACGGCCAAGGCCAGAGATATTTTAGACAAGGAGATCTACCAGGGCTATTTGGACCTGGCAGAAGACAAGCGATCCCAGTACCTGCTGGAAGTCAGCGGCTTGGCAGATAAAATGGCTGAAGCACCTTTAAAGGATTTCAAAGAAGCGACCCGGCTGGGGCAATTAGGCCAAAGTCAGGCCGGCGTGTCCTTTAAGAAGACGGCCAAGCTCCTCCGCTTTAAAATCGGGATTGACAAGGAGAACTTGACGGGAAAAAAGATCCTGGCTGATGAGGAATTGAGTAAGCGGCTCAGCCAGATCGTCTTTGGTGAAGGCAATGAAAATGGCGAGGCCATTGTTTTGCCGGATGAAAAGGCCCACTACCCGCGCCCCCTTTACCTGCAAGACCCGGTAACGGGGACGATTCTGGAGAAGCCGGCAATCGACTCCTACCAGGAAGAACCAGTCGCGATCCAAAAGCCGACCCGGCAGGACGTGTCAGCAATTTTTGACATTATCCGCTTCTACCGGGATCGCAAGCAGGATAATGAATCCCAGGCTGCCTTCTCCTTCTTGATGTATGTCCTGGAAAGCGGCAGCATCTGGAAGATCCGCCAGGCCATCGATGAGCGAAACGGGATCGTGGAAGACGTCCCGATCGTGGCCGGCCTGGTCGGTCAGGGGGAAACTGGCAAGTCGACCCTGCTTAAAATTGCCTCCAACTTGACCATCGGCAATACCAAGGAGATCGTCCAGGCCAGTTCAGAAGACAAGCTCTTCGGGATGACGGCAGCGGTCAGAAAGAAGTTGCTGGCCGGCAAGAGCTTGACCAAGCAGGACCGGGTCAGCGCCTACAGCTCCAACCCCAAGGTCATCAACAAGAATATCTGGAACTTTACCGACCACTACATGGATGAAGACCAGGTCATCACCCCGATCTGCATCGATGACCCGGAAGTATCCCTCTTTTCTTCCAGCGCCGCCCAGAGCTTTTTGAAAAAGCGGAGCAACCGGCATGGCGAGAAACTGGGAGTGGAACCGGTGGCCATTTTCAGCATGAACAGCAAGGGCAAGGATATCGAACTTTTGACCGAAGTTGGCCGCAGGGGCTACGTAATTAGCCAGGGCAACCAGTTCCGCAAGAAGACGGACGCGGACATCCACTTTTTTGAATACCTGGATGGCAATACCGACAACCACGGCCACTGGCTGAACAACACCCTCTTTCTTTACCTAACCCGGCAGATCGACCGCTGGCTGGAAGAGATGGATGACGAAGACTACTTGAAGCTCAAGCACGACTTCCTCTACCCGGTTAAGCACGCCTTCTGGGAGCTAGTTGAAGAATACGGCCTGGTCAACACGGAAACCAAGTGCTACTTCCACATGAAGAACTACAATATTGTTGAGGACTTGGGCCGGCGGAACTGGAGCATTCTCTTGCACGATGAGGCGACCTTGCGGGAAATTACCTTTACCCGGGACAATCCGGAATGCATGATTCCGGCCCGGGTCTTCCCCAACAAGGACAACGACATCAACCGCTACTTCGCCTACCTGCCGGCTTCAGCTGAGATTTGCAAGACTTTTGACAGCAAGGGGCTGACGGTCAAGATGGCCAATATGGACCTCTGGCAGGGCAACCACTTGCTGACTGAGCGCTATGAGAAGGAAACCGGGATTGCGGCTGAGCGCTTTGAAATGGAAAAGGCCAGAGTCGCCGCGGAAGTTCAGGGGCAGATAATGGGCGAAAACATTGCTCCATACTTGAAGAAGAATGCTGAAATGATGGACCGGATGATGAAGGTCACTGAACAGAATGCCCGGCTTTTGGCGGAAAAGGAAGCCCAGGCCGAAAAGCAGCAGCAGGCAGAAGCTGAGAAGAAGGAGCAGGCCGACCAGATCCAGAAGCTGCAGGATGAACTGGCCCAGGCCAAGGAGGCCGCGGAAGCCGCCAAGAGCGAGGAAAAGAAGCCGCAGGGCTTCTTTGACCGCTTTTTCAAGTAATTTTTTTAGAAAGAGGGATAAAATGACCGACACGCAAAGCATGATTGCCGTTCAAGAAAAAGACAATACCGTTTCCAGCCTGATCCTGGACCATGACGGGGACTTGGAAACCGCAGGCCGGATTCTGGAGGAAAACTACCAGGATTATGAGCAAGTCCTGGCCCTGGTCAATTTAGGTGACTTAAAGAGGCTGGGGAAGACGGTGGAAGAAAGCCGGGCCTACTACCGGGACGAGCATGAAGACCAATTGGTCTTGGAAAATTACGCGGACACGGAAGTTTTTGACCGGGCTACTGAAGAGCAGGGGGATTACCTGGCCTGCTGCTTTTTGTACTGCAAGTATGAAGGTGACTTCCAGTGGCTGGTCAGAGATTTTTCCACGGGCGACAAGCGCTTTAAGCCGCTGAAGGAAGCTCTGGCTTAAGAAAAGAGGGACGGCAATGACGGATTTGGCCCAGCTGGGCGGGGATGAACTAAAGGAGATTTTGGACGAGAAGCGGAGAAGCCGCTGGCTTTATCAACCTCTTCGGGCTGCCGATCCAGGTGCAAGCCAAGCTGGACGCCAAGAAGAAGTAAGACGGGACAAGTTTTTTAGATTAGGTGATTGTGATATGAAAAAATGTGGGCCGGCAGAACTTCCGGTAAGACACTGACCAAATCGCGGACGACTTCAACTAATCCATCCGTTTTGACCAAAGAATGTATCCAGAAGACATAGCCGGCTCCATTGCCCATGCCAAGATGCTGGCCAAGCAGGGGATTATTCCTGAAGAAGCAAGTGCGAAAATCATTGCCGGCCTGGAGGGCATCTTGGCTGACTTAAATAGCGGCAAGTTGGAAATCGATCCGGCTGCTGAAGACATTCATATGTTCATTGAAGAGACCCTGACTGACCGGATCGGCCAGGACGGGAAGATGCTGCACACGGCCCGGTCAAGAAACGACCAGGTGGCCCTGGATATCCGCTTGTACATGCGGGAAGAAAACGGGCAGATCAAGCAGCTTTTAAAAGATTTGGTGGCGGCTCTTTGCGACCAGGCAGAAAAGTACAAGGCCAGTCTCATGCCGGGTTATACCCACCTGCAGCGGGCCCAGCCGGTCACTTTTGGCCACCAGCTGATGGCTTATGCTTACATGTTCATGCGGGATCTGGAACGTCTCGGGCAGATGGAAGAGCGGATGAACTATTCGCCAATCGGCAGCTGCGCCCTGGCCGGGACGACTTACCCGATCGACCGGGTTTATGAAGCGGAACTTTTGGGCTTTAAGGCTCCGGTAGCCAACAGTTTATACGGGGTTAGCGACCGGGACCATGTGGTGGAAGATTTAAGTGATTTGGCGCTGGTGATGATGCACCTCTCCCGCTTAAGCGAAGAGCTGATCTTGTGGTCATCTTGGGAATTTCACTTTGTCCGCCTGGCGGATGCTTATACGACTGGGTCATCCATCATGCCGCAGAAGAAAAATCCTGATATGGCTGAACTGGCCCGGGGGAAGACCGGCCGGGTCTACGGGGACTTGATGGCGATTTTGACGACTTTGAAGGGACTGCCTCTGGCCTACAACAAGGATATGCAGGAAGACAAGGAAGCCTTGTTTGACGCCATCGACAATGTTGAGCTGTGCCTGGAGACTTTTATCCCGATGATCAAGACATTGGAAGCTAATGAAAAGGCCATGCACCAGGCGGCGCAGAAGGGCTTTATTAACGCGACGGACTTGGCGGACTATTTGACTAAGAAGGGGATGCCATTTAGAGATGCCTACCATATTTCCGGGCAATTGGTGGCCTTGTGCATCGACCAGGACACGGTTTTAGAAGACTTGCCGCTTGAAACTTACAAGGGCTACAGCGACTTGTTTGAGGAAGACTTGTACCAGGCAATTGACCTGCATAACTGCCTGGCCAAGCGGACTTCTTTGGGAGGACCGACGCCGGAGTCAGTCCAAAAGCAGGTTGATGAGGTTAGAGGCAAGCTGAAAATTAGGATTAATCGCTGTTAAGCCAGGGCAAATTTGTCCTGGCTTTTTTGCACCTTTTGACAGAATTCCTTCCTACGGGCTTTTACCATTTGGAAGGGCGTCAGCGAATACAGAAAGCAGATCGCGGAAGAAGAAAATTAGAACAGACGCAAAAGGCGGACCAGGTTGCAAGGCTTGATCCGCTTTTTAGGTAGAGGAAGAGGGCGGGGAGATGGCATAATTTGGAGGAAGAAAACGTATTATTAGGAGGCAATGGAATGGGCGAATCTAAAGAAGACAAAAGGATGAGGGCAAAGTGGGAAAGTTTAAGCGGCGCAGAAAAATCAGAGTTTAAAAAGAACTATGCTATGAGGCGGGGGATTACGATAGATTTTATCCGCCGTTGGGCTTGGAACGAAGGAGATTTGGACAATTTGGAATATCACATTGCGGAACGTAGAAAAAAGTTTAGGGAGTTTTGAGGAGTAAAGGGGAATTTCTAGTCGGGGGGCGACGGGCGGCCTCTTTAAGTTAGCTGGAGGAATGTGGTGGTGTTAGGGTGAAAGAATGGTGGCACGAGTGGGGATGCTCTGTGATTATAGGAGTTATCCTGTCGGGATTGCTTATGTGGTTTATATGGCGCTACATTGATGTGATCATGTTTATTGTGATTTGCGGTATTATCTCCCTATTTTGGCTGGCTTTTAAGGTGATTGACAAGATACTTAAATAATGGTTTGACACAGAATTTTGAGGAGCTAAAAAAGCCGCTTAGAGATCTTCTAAGCGACTTTTTGCATGGAAAACTAGATAAGAAATGGTTACTTTGAATTATCCTCATCAAGTTCAATCAGATCATCAAGAACTTGGCCTGGCGTCTTACCCAGGGTCTGTGCGACTGCGCTAATAACTTTGACGGTTTGCCCGGATAATGGCTTAGTTTCTTTAACGGCGTTGGCTAAGGTCGTATTAGCAATCCCAGTTTGTTTAGCTACTTGGTAGCGCGTTCATTTGATTTAGATGTCCTTTCCATTTATTTACTATAGATGTAGATAATTTTTGGGCCAAGGATAGAAAAAAGCCAGTAGTTAAAACTACTGGCTACTTTGAAATACTTCCTATAGGGATACCATTTGACCTTATTAAGGAGAGTACAGGATTTGAACCTGCGCACCAATTCAACATTGGTTCGGCGGATTTCGAGTCCGCTGCATTACCGCTCTGCCAACTCTCCAGAACATTTATTATTATACTGTAAAGTTGAGCAAAGTAAAAGAGCAGGGGAAGAAATTCGCGGAAAAAACTGCAGTGAGGTTGGATGTGTTGGATACCTTGGATGGTAGATCCAAAGTTATATTTTTTTCGACGAACTAATACGATGGCAGCTTTCTTTTGGCTTATAGCCATAGAAGGCTGTTTTCGTTTTATTGTCAAAGTTGATCCCTTGCTTTCTATGCTATACTTACTTTAGTCCTCATGTAAATGGGGGTGACCCTGAGGATACTGTGTGTCTAGATGGGGATCAATAATATTTCCTCACGTAAGTGGGGGGCTTTGTCACTTTTGGCAAGGCATTTTTATTTTAGCTTGCACAATAGAATATTACGTGATAGAATTCAAATTGTGAACAGATGATTTTCTGAATGAGGAAACTGTAAATTTAGTTAACTGAAATATTGGATGTGCATGTGCAACTGTTAAAGGCTCACATATGGGCTAAAAGTTGTGTGTTATAAAATAGGAACGAGGATATTGTGTGAAGAATCATGCAAGGGATGCAGATTTGTGGGAATTAGCAAGGTTGACTTGTTATCTTCACGATCTCAGTAAGATAAGGCCAGAGTTTCAATTCAAGAAGCCACTTAATGGCGGCTAACATGGAGAAAAAACAGTTCACAAATTGTGGAAAATTTTACTTGAAAAGTGGGCAAAACGCTCTCATCCATGAAAGCTATTATATGGCAAAATTAGCTAGTACAATTTGAATTGTGAATGAAAGTTTTTACATGTTGAAGGAATTGTAATGAAACTAAGCAAAGAGGCCCTATCTTTATGGGGAAAGAAATCAAATCAAGATGGTGATGAGCACTGGCTGCCATTAGTGGCACACATGGTGGACACCATGAATGTTGGACATTGGCTCTATAATTCCTGGCTAAGTGAAGGGCAAAGAAGCATGCTGACTACTCGGATCTGCGATGCTGAAATGTCAAAATTGGTGTCATTCCTGTGCTATATTCACGACCTTGGCAAGGCGACTCCAGCTTTTCAAACCAAGGAATCATATAACCATGATCATCAGCTGGATGAAGAACTGATCCACCGATTGGTTAGTCATTCCTTTAAGAAGCTAAATGATTTGAGTTTGCCAAGTCGCAGCAAGTCACCGCATGCTCGTGCCGGTGAGGCGATACTTGAGAGGGCAGGGTTGAATGAAACGATAGCTGCTATTGTTGGCGGGCACCACGGCAAACCACAAAACGGTGACCAAGAGGAACAGATAGATGTTTTTACATCAAACTACTACCAAGCTGATAACGATGAAGAAATTCAGCAGCCTTGGAAAGATGCTCAAAGGGAACTGATTGATTATGGGCTCGAACTGGCTGGATATGAGGATATCAGTGAAGTGCCACCGGTTAACCAGCCGGAAGCAGTTATCTTGGAGGGGTTACTGATCATGGCCGACTGGTTAGCCTCCAGTACTTGTTTGAACAATGACCCTGATAAACCGATGTTTAATCTGATCGGATTAGACCAAAGCTTTGACGATTTGGATATGAAGGCCCGCTACCAAAATGCCATTTCTACATGGGCAATCAATGACGCGTGGATTCCAGAAGAGGTAGCAAATGTTGATTATTATTATGAGCAACATTTCTCTTTTAAGCCGCGGCAAATACAAGCAGCTATGGAAGAGCATGTTAAGGAGGCAGTTGACCCAGGTCTGGTAATCATCGAAGCAGAGATGGGGATCGGTAAGACCGAGATTGCGCTCACTGCTGCGGAGCAATTAGCTTATGTAACTGGCAGAACGGGCGTGTACATTGGCCTGCCAACCCAAGCAACTACAAATGCAATGTTTGACCGGGTTAACTCCTGGCTGACGAAAATTGCTGGCATTGAGGGCATCAATCCGGATATCAAGCTGCTCCATGGTAAAGCAGAATGGAATTCCAGGTATACTGATCTGCCACGAGCAGAAGACATTGAAGCTGAAGAATTAGATGCAGGAACTGTTACTGTAAACTCCTGGTTTTCAGGTAAGAAGTCAATCTTAGCGGATTTTGCGGTTGGGACGATCGACAACTTGCTTTTGATGGGGCTTAAACAAAAGCACCTTTTCTTACGACACCTTGGCTTTAGCAACAAGGTTGTGATCATTGACGAAGTTCATGCCTACGATATGTACATGCAAAGCTATTTGTCAAAGGCGTTGAAGTGGTTAGGCGCATATCATGTTCCGGTGGTTATTCTGTCGGCTACTTTACCGAAAGAAAAGCGAAATGAATTGATCAAGTCTTACATTAAAGGAAAGTATCGCCGGGTGAAAAAAGTCCTTCAAGCACAAGAAGGCTGGGAGAGCAATCGTGCATATCCGCTCTTGAGCCTTCTTGATGGCAAAGAGTTGCGGCAGTACAGCGACTTCGGACCAAAAGCAGAGCCCAGAGAAATGCAGGTCAATTATATTAACGATGAGCCGACAGAAGTCTTAGCAAAGGTTAACGATAAAATTAAAGATGGCGGTATCGCTGGAATTATCGTTAACACGGTAAAGAGGGCACAAGAATTTGCCGGCTTAGTTGGGCAAGATTGCCAGTGCTTGGTTTTACATTCGGCTTTTCTGGCAACTGACCGGTCCAGGCTGGAAAAAGAGTTGCAGAGCTTGATTGGCAAGAAAGGAAAGCGGCCAGATAAACTAATCGTAATCGGTACTCAAGTCCTTGAACAATCATTGGATATTGACTTTGATGTCATGTTTACCGATATTGCTCCGATTGACCTGCTTTTGCAAAGAGCCGGCCGGCTGCACCGGCATAAAATTTCCCGTCCTAAAGGATTGGAAAAACGGCAGTTGTATGTAATGAAGCCAGACTCGGATGATTATGGACCAGCCAATGAAGCTGTTTATGAGAAGTATTATCTGCAAAAGACCGAACACTTTTTGCCGCAAAAAATTCAGCTTCCTAATGATATTTCTCGCTTGGTTCAATTGGTTTACGATGAAGATACTGACGACCAAGTCGAAAATTTGGATGAGGCACGTGACAAATTGAATGTGGACCGTAATCGCGAGAAGAGCAAGGCAGAAAGCTTCCAGATCAATGATCCTGTTTACCCCGCAGCCAAGAACGATCTTTACGATGATACGTGGGTTGAAGAGCTAACTATTCATCGCTGGTTGGACCGTGATAAAGGAAATCTCGACGATAATCAAGCTTCCGCGGCTGTTCGTGATATTCGGGAAAGCATTGAAGTTATCTTACTTAAAGAAATTTCGGGCGAATATTACCTAATGAATGGCGATAAGGTTTCTGAAATGATGGATAAGGATTTAGCTAAAGAATTGATCCGTTTGCCTAATGCGGTAACTCCAAATATTGAACAGGCAATCAATATTTTGGAAGAAAATACTGCCCAGGCATTTCCAGATTGGCAGGGCAGTCCATGGCTGAAGGGGTCCTTGGCAGTTGTGCTTGATGAGCATGCAAAGGGAAGCTTTAACGGCTATAAGCTAAGGTATTCGACTGAGACTGGCTTGAGTTATGAAAAGGAGGTTGATAATTAACCATGGAAAGCTATAACTTAATAACTGAACCTTGGATTAAGGTATTGGATGGTAAGACCAACTCTGAGCATATGGTTTCCATTAAAGAACTTTTGCAAAATGCAAGTGATTACCGGCAATTAGCTGGTGAAATGCATGCACAGGATTTAGCAGTTTTGCGCTTGCTGGAAGCAATCTTGACAACTGTTTATACCAGGGTTGATCAAAATGATGAAGAGTATGAGTGGGTGACGCTTGACGAGCAGATGCACGTTCAGTCCTATGACGATGAAATCGAAGGCTCAACGTTATTACAGGTTCTTACGAAGACATGGAATGCGCTTTATAAGGAAGGCAGTTTTTCTGAAGCTGTGTTTGATTATTTAGACAAGAACAAAGGACTTTTCGACTTCTTTGGTGACCGGCCATTTTATCAAGTGACTGCTGAACAATACGACAGTTTTGTTCCGGATAATAAAAAAATTGCTAAAGGATCCGGGACGGTTGATTTAATGCAGATCAATCGCTTGATTTCTCAAAGTGGCAACTCCGTGGCAATTTTTTCACCAAAAAGCGCAAATCGGAAGAATAAGCTCACTTTGGATGAACTGGTTCGCTGGGTAATTACTTATCAGAACTTTACTGGCGTAACTGACAAGACCAAAGTCAAGGCAAAGAAAAAAATGTCTAATTCCCGGGGCTGGCTGTATACTCTTAATCCTGTTTATGCACAAGGGAAGAATCTGTTTGAGACTTTGATGTTGAATCTGTTGCTGTTTAACCCAAATAAGCCAGCCTACACTCAACAACGGCCCGTATGGGAAGAAGATTTGGGAGAATACGTCAAGAGACGTTTGTCGCAAGTTAAGCCGGACAACTTTGCTGAAACTTATACTGTTTGGTCAAGATTGCTGCATATCGAATGGCAGGATGGTACACCAACAATTTTCAGTGCTGGCTTGCCTACTTTTGATAGCGCCAATGCGTACGATATTGAACCAATGAGTACCTGGCGGATGAATAAAAAAGATGAGAATTATTATCCAGCAACCAGGCAGTTAAGCAGTATCGGCATTGCCATGTGGCGGAATTTCGGCCAATATGTTGATATCGAAGGCCATACCGAATCTAGAGAGCCACTGACTGTAGCTTGGCTGAATTACTTGAAAACCAAGAATGAATTCTTGAATCAGCAAATGATCAACCTGCATACTTCTGGAATTATCAGCAATGGTGGGGCAACTTCGCTAATGCCGGCGGCTGAATTCGATGACAATTTACGGATTGAAGCCGATGTTTTGTTCGATGAAACTGAGGACCGTAAAAATGCCTGGCCGCAGAGAATCGAAGAAATGGTTGACTTAAACCAGGAAGTTGGCCGGAAGTATTACGGCTTTTTGATGGAAGTCGGCAGAATTCGCTTTGGCCCACAAGGTGCTGCTGATTTTGCTGGCAGAAATAGTCAAACTTTCTACGACAATTTGAACGAGCCTTTTGAAAATTGGCTGGCCAACTTGTCTGGTGGAGATGACCGTGATAAGCAGCAGGAGCTTTGGAAAAAGCAACTGAGGCAAATTGCCTTGAGGACTCTGGATGACTTCTTGGAAATTATCGCTCCGCGCGATATTTCCGGGATTAAGGCCGATAAGAGCCAAAGTGGAACAAAGAGTACTGAAAGTAACATCTTTATCGCGGCTAACAAGTATCGGGCCGGAATTAACAAAGCATTGAACAAGAACGAAAAATAGAAGGGAAAGGTGATCGTGATGGCATTTGAGATTGAGAAGGCTACCGAACGGATCATCCGCCAGCTGTACAACAATGGCGATACTGACAAAGCGTCATTGTCAGCTTTGCGGTCAGCTGCAACAATTGACGGCTACCGGGCCCAAAAAGTCTGGCCAGTCTTTTTGAGCAATCTTGATGAGCAGTGGTTAAGCAAAAATGGCAAAGCGACTAGAGAGGAAGCAGCAATCTTCGCGGCGGTAAGAATGTATGCCCTGCATCAGCAAGCTTCAGACTCTTGCGTTTTTGGCCGGAGAAACTATTCTGATAAGAAGGATGAGGAGACAAACAGCCGTGAATTGTTTGAAGCCTTGAATTGTCTCAAGCAAGGGACTGATTCTCATGAAGCCCTGGACCGGCGGGTACAGGCTTTGCTGGGGACGAATAATTACAATGCAGTAATTGATCAGTTGGTCCACTTAATGCAAATCATTAAGAGTAAAAAGACCGGGATTAAGATTGACTACGCCCGTTTAGCTGGTGACTTGTACAAGTTCCAGTTTGGTTACCGTCAGGCAAACGAAGTCCGCTTGCGTTGGGGTGAGCAGTACTATCGTGCTTTTAAAAAGTTAGACACTAATCAGCAATAATTTAAGGAGAAAAAATCATGACTAAGAATTTATACGTCGACATCAACGTTTTGCAAACTGTTCCATCTTCAAACATTAACCGTGACGACACTGGTGCACCAAAGACTGCCTTTTACGGCGGCGTTACCCGGGCCCGGGTGTCATCCCAGTCCTGGAAGCGGGCAGTAAGAAAGGCTTTCGCTGAAGATGGAGCAAACATTGGCACCCGGACCAAGCGGGTACCGCAAATGCTTGCTGCTAAGCTGCAAGATCTCGATGCAAGTCTTGATGAGGATGCTGCTATGAGCAAGGCAATTGATGCTTTGAAGGAAGGCGGAATCAAGACAAACAAGGATAATGAAACTGGTGCTTTGCTGATGGTCAGCCCGGGTCAAGTTGCCAAGCTTGCCAGCTACGTTTTAGAGAATGAAACGCTTGACAAGAAAGAAGTTAAGAAGATCTTAATGGAAGGCAATTCACTTGACCTGGCATTGTTTGGCCGGATGGTTGCCGACAACCCGGAACTTAACGTTGACGCGTCTGCACAAGTAGCCCACGCAATCTCCACTCATGAAATCATTCCAGAGTATGACTACTTCACTGCCTTGGACGACCTGCAAGAAAAGGAGAAGAGCGGCGCTGCTTTGATTCAGACCACTCAATATGACTCAGCAACTCTGTACCGTTACGCCAACATCAATATGGCTGAGCTGAGCTACAACTTGGGTGATGAAGACGCAATCGAAGGTGCTTTGACCTTTGTTAAGGACTTTGCCCTGTCCATGCCAACTGGCAAGCAAAATTCCTTTGCCAACAAGACTTTGCCTAACTATTTGATGGTAACTGTCCGTGACGACACTCCAGTTAACTTAGTTTCTGCTTTTGAAAGTCCAGTAGTTGCCAAGGCAGGCGAAGGTTACGTGGAGAATTCTGTCAAGAAGTTGGAAAATGAATACAAAGACGCACTGCAGTTTGTTGACCAACCGCTGGCGACCGTAACTGTTGGCAAGTACGAAACGACTGTCGGAGAACAAGCCGGAAACTTGCAAGATTTGCTGGGTAAGCTGCAGGACGTCTTAAAGAAGGCGGTTGAAAATGAAGACTTTAACAATTAAGCTGACGGCACCACTGCAGGCTTATGGGAATGAAGCGAGCTTTGAGCGGCGGACCAGCTGGCCTGCACCATCAAAAAGCGCGGTAGTTGGTATGATTGCTGCTGCTTTAGGGATGCGGCGTGAAGATGAACGGATCAAGTCTCTGAATGACTTGGCATACGCGGTTAGAGTTGACCAGATTGGCAAGACAATGACGGAATTCCAGACTGTCGAGTGGAAGCCGGGAACCCGCAAGCTGACTTACCGTGACCATTATCAAGACGCAGTTTACGTGGCAGCGGTCGGCAGTGAAGATGAAGAGCTGATCGGGAAAATCGAGTATGCCTTGAAACACCCTCGCTTCCAGCTTTATCTTGGCCGCCGGGCTTGTCCGCCGGCCGGTGTTTTGCGGATTGAAAGTTTTGCGGATACGGATCCAGTTAAAGTGCTGGAAAATATGCCTTGGCAGGCAGAAAAGTGGTATCAAAATAAGCAAAAGCGGAAGGCAGAATTTACGGCTGAAATTATTGCTGACGCGAATTTATTGCCAGATGCTGCTTTTACACAAACCGTAAAAGACCGGGTGGAGAGCCTTGATCCGCAAGGCCGGTGCTTCGGTTTTCGTTTGACGGCTAAGGAAAGAATCAATTTGAAAAATCCGTGTTACGAGCAGAAATCTCAAGACATTATGGACTATCTGTAAAGGAGGAACGGGATGTATTTATCAAGAGTTGAGATCGATACTGACAATCGGCAGAAAATCAAAGACTTGTCCCATCTCGGAGCTTACCATAACTGGGTTGAGCGGTCCTTTCCAGCAGAAATTGCCGAAGGTGAACGGCAGCGGCACTTGTGGCGGCTTGATACGTTAAATGGCAGAAATTACCTGCTTCTGTTGAGTCCGGAAAAGCCAGACTTGCATGAGTTTGAAAGATATGGCAAGCCAGGCACGGCTATCAGCAAAGACTATGAACCGTTTTTGAGCAGGTTGAGTGAGGGGCAGTTGCTGCAGTTCAAATTGACAGCTAATCCTGTCCGCCGCGGCGGCAAGAGCAGTTCCCATCCGGGAAGCTTGATTCCCTGCTTTGCTGTTGATGAACAGATGAAGTGGCTGCAAGGCAAAGCAGAGAAAAACGGTTTTGAGCTTGTAGCAGCAGAAGTGGTCGGGCATGACCGGCCACTTCTGCGCAAAAAGACCCATGTGGCATTGAACAGAACTGTTTTTGAAGGCCGGCTGAAAATCAGTAACTTAGATCAATTCAAAGCAATGCTGACTTCTGGCATTGGCCGGGAAAAGGCTTTTGGCATGGGTTTGATGACCGTCATTCCGGTTGACTAAAAATGAAAGTAGAAGCAAGCTACAAGAAGCCTGATTTGACAGAATTAGGCCGGACTGAGGACAGAATCACATTTCTATACATAGAACATGCCAAGCTTTACCGCAAAGATGGTGCAGTAGAAGTTAGAGATGAAGAAGGCATTGTTTATGTTCCAGCGGCTATCATCAGCGTCTTATTGCTAGGACCTGGTGTTGATGTGACACACCGGGCGATGGAACTGATGGGAGATTCTGGCATGGCGGTGGTCTGGGTTGGTGAGCAGGGAGTAAGGCAATATGCTCATGGTCGGGCACTTAACCGGTCGTCAAGGCTCTTGGAAGCACAAGCTAAATTGGTGTCCAATGTCCGTTCACGGGTTGCAGTAGCTAGAAAAATGTATCAACTGCGCTTTCCTGATGAAGACGTCACTAAGCTGACAATGGAAGAGATGCGCGGGAAAGAAGGCACTAGAGTTCGCCGCGTTTATCGTGAACAAGCCAAGAAGACCGGGGTAAAGTGGTCAAAGAGAGAATATAAAGTAGATGATTTTGAATCGGAAACTCCGATTAACAAAGCATTGACTGCTGCCCACCAAGCTTTATACGGCTTGAGCTATAGTGTAATCGTTGCATTGGGTGCCTCTCCAGGATTGGGATTTATTCATACGGGGCACGACTTGGCCTTTGTCTATGACTTTGCGGATTTGTACAAAGCTGACATTTCTATTCCGATTGCTTTTGAAACGGTAGCAAAGTACGGAGATGATGACATCGCCAGCCGGATCAGGCATGCGATGCGGGACAAGTTTCGGGAGACCAAGCTGATCAAGCAGATGGTTGTGGATCTGAAGCACTTACTGTTAGGGGATGCTGACCAAGATCAAGACATAGATGTCATGAATCTTTGGGATGATAAATTAGGGCTGCAAAAATTTGGTGTGCAGTACCATGAGCAACAAAGTGATGAAGAATGATAGTCATAACCTTAACCAAAACACCTCCCGCTCTTAGGGGGGATTTGACTAGATGGTGCCAGGAAATTCAGACTGGAGTCTATGTTGGCGATGTCAGTGCTAGAGTTAGAGATAAATTGTGGGAGAGAGTGCAAACCAACATCGGCAATGGTGAAGCAACTCTCGTATATAACACCAATAACGAGCAGGGGTATGCTTTTAAGACAACCCGCAAGTCCAAGCAGGTAGTTGACTTGGACGGGATGCTTTTTGTCAAGCATGTTGTCAACCAGGAAACTGTAGAACACGGTTTTAGCAATGCGGCTAAGTTCCATAAGGCGCATAAAGCAGAAAAAATGAGAGCTTCTGCAGCTGCTGCAAAGCCAAAGGGGTTTGTTGCGGTCGATATTGAAACGACAGGACTGAATACCGAAACTGATCAGATTTTGTCTATTGGCGCGGTGAAACACGATGGTACAGAATTCTACCGACTGATCAAGCAAGATATTGATGTGCCAAAACAGATAGTGGAGCTGACCGGGATCACTTCTGAAATGCTAAGTAAGGAAGGCGTTCCATTGCAAGATGCATTGGAAGAACTGACTGACTTTGTTGGAAATGTACCAATTGTTGGGTACAATTTTAGATTTGATTCTGCATTTTTGAATAGGGATTATCGGAAATGCGGGATGCAAGAATTGAAAAATGAGATCAAGGATTTACTGCCAGTTGTAAAAAGAAAAGAAAAATTTCTGGACAACTATAAGCTACAGACTGTATTATCAAACTACGGGATCGAAAATAAGGTGCCGCATAACGCTGTGTCTGATGCAAGGGCTACGAAGGAGCTGGCGATGAAACTAATCAAAAATCGCATTCTGGTGATTTGAGAATGGCGTCGCTAAAGGGATCCATTACTGTATTCCCCACGCAAGTGGGGGTGATCCAAAATCGTGTGCCCGTCAAGCCAGCCGGTGATTGTATTCCCCACGCAAGTGGGGGTGATCCTCACACAAAAAGCCCGCTAGATTGAATGTCTAGGTATTCCCCACGCAAGTGGGGGTGATCCTGTATTCAGTTTCGTTTGTTTGATCCTTGCCATGTATTCCCCACGCAAGTGGGGGTGATCCTCAATTTGCTGTGAGTGTAATAATTGATGGTGAGTATTCCCCACGCAAGTGGGGGTGATCCTTAAACCCAAACTATAAGCGTATGGTTCGCTCAGTATTCCCCACGCAAGTGGGGGTGATCCTGAGACTCATTGCGCCGCTACTTCAGCGGGCTAGTATTCCCCACGCAAGTGGGGGTGATCCTCTTCGATACTAATCGAAATCGATTCAAACCCTGTATTCCCCACGCAAGTGGGGGTGATCCTATGGACTAGAGGGATGCACCAGCAAGACAAGAGTATTCCCCACGCAAGTGGGGGTGATCCCCCACGCAAGTGGGGGTGATCCCATAAGCCCGGCCGGCTGCCTTTTTTGACGTGAGTATTCCCCACGCAAGTGGGGGTGATCCTAATTCGTTTTTGGGCGTGTCAGAACCTTATAAGTATTCCCCACGCAAGTGGGGGTGATCCTAGGGCTTTGAGTTACTACGGCTATGAAATGGAGTATTCCCCACGCAAGTGGGGGTGATCCGAAATGTACAAAACAGGCTTGTCTCAAGCCAAGGTATTCCCCACGCAAGTGGGGGTGATCCTAACTTAATTTGGATTGCTACCAAAAAGCCGGGGTATTCCCCACGCAAGTGGGGGTGATCCTATCAGCCTTTTCGAGGTAATCACGGTAGATTGGTATTCCCCACGCAAGTGGGGGTGATCCCCACGGGGACGACTTCGGCCAATGGACCTCCGAGTATTCCCCACGCAAGTGGGGGTGATCCCTTTACAAGTTGGCCCAAAAGTTCAGCGGGTACGTATTCCCCACGCAAGTGGGGGTGATCCCGATACTGCTGCTAATCTGTTAGCGGAGGAAAAGTATTCCCCACGCAAGTGGGGGTGATCCTCATTTTGTTAAATTTGTTTACTGAATAATTTTGTATTCCCCACGCAAGTGGGGGTGATCCTAATCAAACTTGACTAATTCATTTTCAAAAGTGGTATTCCCCACGCAAGTGGGGGTGATCCTCAGATTGTCCATATCTGCTCTCTGGCGCCTGCGTATTCCCCACGCAAGTGGGGGTGATCCTATGTTTGAACTACTTGACGGGGCGGCCTTTGCGTATTCCCCACGCAAGTGGGGGTGATCCCTGAAGTATGTTGCCGTTGCATGCACTTCAGCAGTATTCCCCACGCAAGTGGGGGTGATCCTTAAATCGAGGTGGTCAAACGTTGTACTTTAGTGTATTCCCCACGCAAGTGGGGGTGATCCTATGCACATTTGCAATCTTTATCTTAAAAGGAGGTATTCCCCACGCAAGTGGGGGTGATCCCACAGCGAGCGTTATTGCCCAAAACATAGTGTTGTATTCCCCACGCAAGTGGGGGTGATCCTACTACAGCTTAAAACAAATTTTAAAGCGAAAAGTATTCCCCACGCAAGTGGGGGTGATCCCATCCCGCAACTCCTTGACGGGGCGGCCTTGGCGTATTCCCCACGCAAGTGGGGGTGATCCTCCGTCTTTATACTCTTTATAGGCCTTTTTCGGGTATTCCCCACGCAAGTGGGGGTGATCCCTTAACCATGCAAGAAGATGAAACCGGGCTCAAGTATTCCCCACGCAAGTGGGGGTGATCCCTTTATAACTCTTGGTTTCGTGCCCACTACAAGGTATTCCCCACGCAAGTGGGGGTGATCCGAAAAAAGCCCGCTCAGGTCAAAAGCGAGCACAGTATTCCCCACGCAAGTGGGGGGTGATCCTGTTAGTGCAGGCATTTATAGAGAAGAAAAGAAGTATTCCCCACGCAAGTGGGGATGATCCTTATAAGGAATTCAACGGGAACAAATTAACTAGGTATTCCCCACGCAAGTGGGGGTGATCCTTATTGTAATTGCTGCCGGGGCTTATGCCCTCGGTATTCCCCACGCAAGTGGGGGTGATCCTGTTAGAATGGGCCAGTACGCTATCTTTTTGTGGTATTCCCCACGCAAGTGGGGGTGATCCTCATAGTTAAGGGGGATGCAGAAAATGACCAATGTATTCCCCACGCAAGTGGGGGTGATCCTATCCTTAGTCATTTTTTCCTCCTTATTTTTTTCGTATTCCCCACGCAAGTGGGGGTGATCCCTTACGGTAGATCAGACGATACTGACAGCCAGGGTATTCCCCACGCAAGTGAGGGTGATCCTGTTCTTGCCCAGAATGATAAACTCCTGCCCGAGTATTCCCCACGCAAGTGGGGGTGATCCTTTGCTGTCAGTGTAGTGATCGACGGGGAACCAGTATTCCCCACGCAAGTGGGGGTGATCCTGGGGGGCGTAGTACACCACACTGTTATAGATCTATTTTACTTAATCGGCTGTGATCTCACTGCCATTAGTGAGTAACATGGGGCGAAACAATATTCCTCACGTATGTGAGGAGAATTCTTTCTTTATGCTATTGTGTTTTTCGTACTGTGTATTCTCCCACATATGCGGGGATGATCATAAGTTTCAGTTAAAGCACCAGCAAATTTCAAGGATCTTTGGTAGAATAGAGGTAATAGAGAAGGAGTGAGGAACAAGCATGAGCATTTACGGTAAGTACGCCGATTATCTTCCACAGATCCTGGATTCTGTTTTGCAGCAAATCCAAGGCATCGGTCAGGAGTATAGTGCAGAACACGGGCAAAAGCTATATGGGCACCTGGAAGGTCGCGTCAAAGGCGAAGAAAGCATGGCGCAAAAGTGCGAGAGAAAAGGTTTGCCGCTGATGCCAGAGTCTGCATTGATCGAAAACCGGGATGCGATCGGCCTCAGAATCGTCTGCAACTTTATTGACGATATCTACACTTGCATTGACTTGTTGAAGAAGCAGGACAACTTCAAGATCATTAATGAAAAAGACTACATTACCGATGCCAAGCCAAACGGCTACCGGTCATACCACTTGATCATGGAAGTAGTCACTCCCTTTGAAGACGTCCATGGCAACAAGCCTGGCATCTACTACGTTGAAATCCAGCTGCGGACAATTGCCATGGACACTTGGGCCAGTCTTGAACACGAAATGAAGTATAAGCATGACATCAAGAATCCTGAACGTATCAGCAAGGAACTCAAGCGGGTTGCTGACGAACTGGCATCTTGCGATGTAAGCATGCAAACAATTCGCCAACTGATCAAGGAAGGGGAACTATGAAAATTCTTCTAGCTGAAGACGAAGCACAATTGAACAGAGTTTTGACGGTCGCCATGCAAAAAAGTGGCTATGATGTCGACTCAGTTTTTAACGGACAAGAAGCCGTCGATGCAGTCAAAAAGCATCCCTACGACGTCATCATCATGGACATCATGATGCCCGTCAAAAATGGCCTGGACGCGGTCAAGGAAATTCGCTCTACTGGCGACAAAACCTACATTATGATGTTGACGGCCAAGTCTGAAATCGACGACAAGGTAACGGGCCTGGATGTTGGTGCTGACGACTACTTGACTAAGCCGTTCTCCTTAAAGGAACTGCTGGTCCGCCTGCGGTCAAAAGAGCGCCGAAGCGAGGATTACAACAGCACTCAAGAACTGAACTACGACAACCTCAAGCTGGACCTCAACTCCCAAGAGCTGTCCAGCAACAACTCCATCAGTCTGTCCAAGCAGGAAACCGGCTTGATGCGCTACTTCTTGCTCAATCCTGGCAAGGCCATCAGCACGGAAGAGCTGTTCAACCATGTTTGGAAGAATGAAGATGAAAGCGAAGACGTGGTTTGGGTATACATCTCCTTCCTTCGGTCCAAGCTGGCCTCAATCGGGGCAAATGTCCAGATTTCCGGCGAGAAGGGCGGCGAGTTCTGCCTTGAGAGGGCCTGATCATGATCAAAAAAATCAGGCGGCGCTTTATCTGGCTGGCGACGCTATCGCTTTTTTTGGTCATTCTTTTCTCTTTCTCCAGCTTGATCGGCATCAGCCTTTTTGAATCCAGCCATGAAGCTGACCAAGTCCTATCCATTATTGTTAAAAATAACGGCCGACTGGACGAGGTTCAAGCCAAAAAGCGGCTAGGCGATCAGTACAATAAGGAAGGGATGTTCAAGTACCGCTACTTCACGGCTAACATCAATACGAAAAAACAGACTTTGACCGTAATTGACGCGGACCACATCATCGGCTATTCGATCAACTCGGTTTCCAGCCGGAAAAAGCAGATCTCCAGGCGCCTGTCAGCTGGCCAGTTGAAGGGGACGATCCACTCTAATGGAGTCCGCTTCCGCTACTTGGCTAAAAAGATTTCCGCCAACAAGTACTATATCTGCTTTATTGACTTGAGTCCTTTGATGCAGTCAGCGCTTTTGCTGGTGAGATATGCCTTGATTTTCACCTTCGGTGGGATTTTGTTTTTTGTCATCATTATGACCCTGCTTGCTGACAAGGCAATCCAGCCAATCAAGGATGCCTACTACAAACAGCGGCGTTTTATCACCAATGCCGGTCACGAGCTGAAGACACCTCTGGCCGTAATCAGCGCTAACGCTGAAATGGAAGAGCTGCTGGGTAATGATGATGAATGGAGTGAAAGCACCAAAGAGCAGGTGGTGCGGATGACCGGTTTGATCAACCAGCTGATCACTTTGACCCGGATGAGCGAGCCGGGAGAACTGGTCTTGTCAAAGGTCAATTTCTCAGAAATTACCAAGGAATCAGCAGATTCATTTAAATCGGTTCTGGCTAAGGATAATAAAAAGTATGTGGTCAGCATCGATCCGGATCTCTACATCAACGCCGAACAGCGCAGCCTGCTGGAACTGGTCAACATCTTGATCGACAACGCCCAGAAGTATTGCGATCCAGAAGGCGAAGTCATGGTTGTCCTGGCCAAGAGCCGGCTTAATCAGAATGCGGTTTTGACGGTCACCAATTCATATAAGAATGGGGCTGGGATCGATACTAATCGTTTCTTTGAACGTTTCTACCGGGAAGACGAATCCCACCATTATGATCAGAAGCAAAAGAATGGTTTTGGGATTGGCTTGTCTATGGCCCAGGATCTGGTCGCTGCTTTTGGCGGCAAAATCAATGCCAGCTGGTCGGATGGCGTGATGAATTTCACGGTAACTTTCAAGCGGGTCCACTAAAAGCACTCCCTCGCGGGGTGCTTTTTAATATTTCGTTAAATCAAACGCTTCACCAAGCAAGCAGGAAAAGATTATAGTAAAATACACTGGTTATAAAAAAAGCTGAGCCAAGCTCAGCATCCCCAAAACAAAACTTAGTTAAGGAGAATAAACACATGCAAGATATTTATATTGTTGCGGCCAAGCGAACTCCATTTGGCCGTTACCACAAGCAATTGGCTGACTTTTCTGCTATCGACCTGGGCCAAATCGCCCTGCGCGGCGCATTAAAAGAAGCCGGCCTTGACGCCGAAGCCCTGGATGCCCTCTTCATGGGCAATGTCCTGTCTGCCGGCTTAGGCCAGAACATGGCCCGGCAAATTGCTTTAAACGCCGGGATGCGGCAGGACTCAGTCGCCGTGTCCATCAACGAAGTCTGTGGCTCCAGCCTCAAGGCTGCCCGGCTGGCTGAAGCCCAAATGTTAATCGGTGACCTGGGGCTGGTTGCTGTCGGCGGCAGCGAGAGCATGACCAACGCCTCAAAGGAAATCATGTTCAGCGATGGTCTCGTTGACTCCTTCTCCGGTAAATCCATGGGCATTACTGCCGAAAACGTGGCTAAGCGCAACCACATCAGCCGCCAAGACGCTGACGCCTTCAGCTTGTCCTCCCACCAAAAAGCTGTCAAAGCACAAGCTGAAGGACTTTTTGCCGATGAAATCATTCAAATTGAAGATCTCAAGCAAGATGAAAACGTTCGCCCGGATACCAGCCTGGAAGCCCTGGCCGGTCTTAAAACTTCCTTCCTTGAAGACGGGACCGTCACTGCCGGTAACGCCTCCCCAATCTCCGACGGGGCCAGCATGATCATCCTGGCTACCGCGGAAAAAGTCGCTGAATACCAGCTGACGCCTTTAGCCAAGCTGGGTGCTTACGCCGAAGTAGGCTATGACCCGGAATTCATGGGCTATGGTCCATACTATGCTATCCGTAAGCTGCTTAATGAAACTGGCCGGCAGGTAGCCGATTACGACTTCTTTGAAATCAATGAAGCCTTTGCCGCAACTACTTTGGCTGTTGCCCGCGACCTGGAAATTCCTTTAGCCAAGGTCAACAAGCAGGGCGGGGCGATTGCTTTAGGCCACCCGCTCGGCGCTTCCGGCACCCGCCTTCTGGCTACCGCTGCCCGCCAGCTGCAAAGAGGCGGCCAGCGCGCTATCGCCAGCCTTTGCATCGGAGGCGGCCTGGCCATCGCTTTTGAAATTGAGAAGGCATAAGAGTGAAATTCTATCAGTTGCCGCCCGAAGAGAGGCGGCAGTTTTTGCAAGAAGATGGGGTCGCCCTGGAAGATATCCCTGCAGCTGATTTAGCCCGCCTGGATGAGATGAGCGAAAACGTGGTCGGTGAGGTCAAGTTCCCCTTGAGCTGTTTGACCAGCGCCCTGGTCAATGGCAAAAATTGGCGGATTCCCATGACGACTGAAGAAGCCTCCGTCGTCGCCGCTGCCAACCATGGCATGTCCGTCTTCGCTAAAGCCGGCGGCGTAAAAGCGACCAGCCAGCGCGACGGCATCTACGGGCAAATCGTCTTAGAAGTCACGGAAGCTTTTTCCCTGGCTGGCTTTAAAAAGGAATTCCCGGCCTATATTAAGGAAGCTAACAAGGAATTTACCAGCTTGATCCGGCACGGGGGCGGCTTAAAAGACCTGACTGCCCGCCAGGAAGCTGACCTGGTCTACCTCCTGGCCCTGGTTGATCCGGCTGAAGCCATGGGGGCCAACAAGACCAATGCTATCCTGGAATTCCTGGCCCAGAAGATGCTGGCCTTTCCTGGTGTTGAAGCTAAGCTCTTCGCCATCCTGTCCAACTATCCCAGCCAGCTGACTACAGCTAAGGTGGCAATTCCTGTTAGCCTCCTCAGTAAAAAAGGGGACTTGGCAGAAGGCAGGGAGGTGGCCAAAAAGATGGCTCTGCTGGCTAAAATCGGGAGTAGCGACCCTTACCGGGCTGTAACCAATAACAAAGGGATCATGAATGGGGTAGACGCTGTTATGCTGGCGACCGGCAATGACTACCGGGCAGTTGAAGCAGCCTGCCACGCCTACGCCGCCAAAAGCGGCGAGTATCGCAGCCTCAGCTCCTGGAAAATTGCAGGGGAAAAGCTCCTTGGCCAAGTCACCCTGCCCCTGGCCTTAGGGGTAGTCGGCGGCTCCATTTCATCGCGGCCTGATATTAGACAAAGCTATGCCATTTTAGGTAAAATAAAAGCAGCTGAATTGGCAGAACTGACCGCCAGCGTTGCCCTAGCCAACAACTTCGCGGCCTTAAGCGCCATCTCCACCAAGGGGATCCAGGCTGGCCACATGCGCCTGCAGAGCCGCAACGTGGTTCAGACCCTGCCGGCATCAGCGGAAGAAAAAGCAGCTGTTTATCAAATGATGATTAGCCAGGGAAAGTATGGCGAAACAGCAGCTAAGAATTTTTTGAAAGAATTGCGAGGACAATAATTAATGGACATCGGTATTGATCAGATAGGTTTTTATACTCCTAATAAGTTTGTGGACATGGTTGATCTGGCCAACGCCAGAAACCAGGATCCCAACAAATTTTTGATCGGCATCGGCCAGGACCGGATGGCGGTCGCTGACAAGACCCAGGACGCTGTTTCCATGGGGATCAACGCGACGGCTGAATACCTTGACCAGGTTGATCTGGAGCAATTAGGCTTATTGATCTTTGCGACCGAAAGCGGGATTGATCAGTCAAAGTCAGCCTCCCTTTTTGTCAAGGAAGCACTTAACCTGCCAGCCCGGATCAGAACTTTTGAAATCAAGGAAGCCTGCTTTGCCTTGACTGCCAGCCTGCAGGTTGCCCGCGACTACGTCCGGGCCCACCCGCACCACTCGGCCATGATTATCGGCAGCGACATCGCCCGCTATGGTCTGGCCACGGCCGGCGAAGTTACCCAAGGCGCCGGGGCCATCAGCATGCTGATCAAGGAGAATCCGGCAATTATCGCCCTGGAAGACGGGCACACTTCCCACTCTGAAAACATCAATGACTTCTGGCGGCCGAACAACTTGGCCACTGCCGTTGTTGACGGCCACTACAGCCGGGATGTCTACCTGGACTTCTTCAAGAGCACTTTCAAGCCTTTCCTTGCAGAAAAGCAGCTACAAGTTTCTGACTTTGCTGGTATCTGCTACCACCTGCCTTACACCAAGATGGGTTACAAGGCCCACAAGATTGCCATTGAAGGCCAGGATGACGAAACTGTCAAGCGCCTCAGCGACAACTTCCAGCTTTCAGCCAAGTACAGCCGGCAGGTCGGCAACATCTACACGGCCAGCCTCTACATGTCTGTCTTGAGTTTGCTGGAAAACGGCGACCTTGAGGCCGGCGACCGGATCGGCTTCTTCTCTTACGGGTCTGGCGCCATGGCTGAATTCTTTAGCGGCAAGGTGGTTGCCGGCTACCAAAAGCGCCTGCGCCCAGCCTTGCACGCCCGCATGCTCAAGGAAAGAATCCGCCTTGGCGTTGGCCAATACGAAGACATCTTCACCGAAGGCTTGGAAGCCTTGCCGGAAAATGTCGAATTTACCAGCGACGCCAACCACGGTACCTGGTACTTGGCCGGCCAGGAAGGCTATGTCCGTCAATACAAGCAAAAGTAAATATGAAGCTAACCGTCTCAGCTCGCTGGGGCGGTTTTTTGATAAAAACAATCTGTATAGCAAGCGCTTAACTAGGGAGGGCGGGAAATTGCAGTCTCTTTTTATGCTAAAATGAAAAAGTTGAGAAATGCAAAGAAAAATGAAAGAAGGCAAACACGGTCAACATGAAAACCGAAAGTACTGAGCAAGAGTACCAACACCACCTCTCTCACCACCACCATATGCGGGTGCAGTGGGAAGAGTTCTTCCAAAGCGATGACGAGACCAAGATCAAGGAAGCAACCTTGATTGAAAAAGGGTCGATCATCTCCCGGGTCGGCATGATGATTCTGAGCTGCGGGACTGGGGCCTGGCGGGTCCGCGACGCCATGGACACCCTGGCCAGAACCCTGGACTTGACCTGCAGCACCGACATCGGTCTGATCTCCATCGTCTGCACCTACTTTGATGTCGACAACCAGTCATATTCCCAAAGCCTGGCCCTGCCAACCACCGGGGTCAACATGGCCAAGCTGAACGAATTGGAAAAGTTTGTCCGCCAGTTCGAAGCAGCCGGCGGTGACTTTGAAATCAAGACAGTCCGCCGCCGCTTAGGGGAAATCGAACACATGAAAGGCCGCTACCCCCTCTGGGGATCCAGCCTGGCCGCGGCTTTGGCCTGCGGCGGCTTCATTTTCCTTCTGGGCGGGGGGCTTCCTGAAATCATCTGCTCCTTTATCGGGGCGGGACTGGGCCAGTTTGCCCGGGGCAGCTTAGCCAAAAGACGGATCACGGTTGCCGCTACGACTGCCGTGGGGGTGGCAGCGGCTTGCTTGTCCTACTACCTGGCTTTCATGCTGGGCCACTTGCTCTTTAACGTCGACATGATCCATATGCGCGGCTACATTGGGGCCATGCTCTTCGTTATTCCAGGTTTTCCCTTTATTACTTCCGGTCTGGACATCGCCAAGCTGGACATGCGGTCAGGCCTGGAGCGGATGGCTTACGCCATCCTCATTATCTTGATCGCGACTGGCACTGGCTGTGTGATGGCTACGGCTCTGCAGATCAAGCCTGGCGACCTGCCGGCCTTGCACCTGTCTAAAGCAATTTTGACGGCTTGCCGCCTGTTGGCCAGCTTTTGCGGGGTCTTCGGCTTCTCCTTGATGTTCAACTCCCACCGGCGGATGGCCGCCGCGGCCGGGCTAGTGGGGGCGATTGCCAATACCATGCGCTTGTCCCTGGTTGACTTCGCCCATTTCCCGGCTCCCTTGGCCGCCTTTTTAGCCGCCCTGCTGGCTGGCCTTTTGGCCGGCTATGTCCGGGAAAAGGTTGGCTACCCGCGGATCGCCTTGACCGTGCCTTCCATTGTCATCATGGTGCCCGGCCTCTACATGTACCGGGGGATCTTCTTCTTGGCCTTGACCAATGTCGGGGCCGGGGCCACCTGGATGACTGAAGCCTTGATGCTGGTCATGTCCCTGCCTGCCGGCCTCTTGACCGCCAGAATCTTGAACGACAAGAAGTGGCGCCGGGTCGATTAACATAGAAAGAAAAAACAGCTTTTGCCCAAAAATAAGGGTAAAAGCTGTTTTTGCGTATTATTCCTGCAGGTCAGCCACCGTGGCCTTGACCAGTTCCTGCAAATCAAGCGGGTTGACCATGACGCTGCGGCCCACTTCGCCGCTGGACACCCAAATCCCGTCTTCTTTTAAGACGCTCTCATCCAAAAAGATCGGGAACTTCTTGCTGTGGTAAATGCCAATCGGCGTGTTGGCCCCGTGCACGTAGCCAGTGGTCTTTTCCAGCTGCTTGAGGGGAATCATTTCACACTTCTTGTTGCCGGAAACCTTTGCAATCTTCTTGAGGTCCAAGTGGCCGCTCAAAGGCACCACGCCGACAATCGGGCCGGTCTTGTTGCCATTGACCGCCAGGGTTTTGTAAACCGGGTGGCCGTCTAAAACCGGCTTGCCGGTCCCAACCTGGGCTACCCCGTGGTCTTCGGAAATTTCGCTGATATGCTGCTCATAGGCAATTTTATGCTGGTCGAGAATCTTTTCCACCAGGGTCTTGTCTAATTTGTCTTTATTCTTTTTCTTTTTTGACATTGTTATCACCGCTTTCCATGATACCATTTTAAGAGAAGAAGCTAAAGAAAGAAGATATAATAAAGAAAGAAGATATAATCATGAAATTACTTGAGATCAAGATTGAAAGCAGCTACGACGTTGAAGACGCCCTGGCATATTTTGCCACGGAAGACTTAAAGGCCCTGGGGACCGAAGCCCGGCGCAGAAGCGACTTTGAACAAGCCGGCTGGCTGCACGACTCAACGGTTGTTGACATGGATGACATCCCAAACCTGCCCGATGAGCTGGAATTCATTGCCTACTTTGATGAAGAAACCGACCCTGAAGAAATGGTCAAGTGCTTCAAGGACAAGCTGGCTGAGCTGGCGGGCTATGGCTTAAAGACCGCTCCTGGTGAAATCTCCGTTGACTATGTTGCTGACCAGGACTGGAACACTGTCTGGAAAAAGTACTACCACGTCATCAACTTGTCCCGCCACCTGGCCATTGTGCCGGAATGGGAAGACTACCAGCCGGCCTTTAAGGACCAGGAAATCATCCGCCTGGACCCAGGCCTGGCCTTTGGGACGGGCAACCACCAGACCACTCAGCTGGCCATGCTGGGCATTGAACGGGCCATGGTCAAGCCGCTTACTGTCGCTGACGTGGGGACGGGGTCCGGCATTTTGGCCATTGCTGCCCATAAGCTGGGGGCCAAGAGCGTTTTGGCCACGGACATTTCTGATGAATCAATGACGGCAGCTGAAGAAAACGCGGCCTTAAACGGCATCCACGACATCGCCTTGCAAAAGACCAGTTTGCTAGCTGACGTTGACGGCAAGTTTGACTTGATCGTAGCCAACATCCTGGCTGAAATCCTTTTGGACCTGATCCCGCAGCTGGACAGCCACTTAAACGAAGACGGCCAGGTCATCTTCTCCGGGATCGACTACCTGCAGCTGCCAAAAATTGAACAGGCCCTGGCAGAGAATTCCTTCCAAATCGACCTTAAGATGCGGGCTGGCCGCTGGATCGGCCTGGCAATTTCCCGCAAGCATGACTAAAATGCGTTAAAATAAAAGCAAAAGAAACTCTCATTTTTTAATAAGTAAGCCCGGTCAAGCATTCAGGCTTGTTTTCAAGGAACTTTTTGCGCTAAAATAACAGGTACTGATTAGTTAAATGTTAGAAATTGGTGATCTAGATGTCAAAGTATACTGAAATGACTCACGAGCAGGTCATGGCCGCTTGCAAGAAATACATAACGGCCGACCAATTGGCCTTTGTCGAAAGTGCCTATCAATTCGCGGCCCGGGCCCATGAGGGACAAACCAGGGCCTCTGGCCAGCCTTACATCGTCCACCCGACCCAGGTAGCAGGGATCCTGGCTAATTTAGGCCTGGACCCGGACACGGTGGCTGCCGGCTTTTTGCATGACACGGTTGAAGACACCTCGGTCACCAACGACGACATTAAGGAAAAGTTCGGCGCCGACGTGGCCTTCATCGTTGACGGGGTCACCAAGCTGAACAAGTACGAATACAAGTCCCACAAGGAATTCCTGGCGGAAAACCACCGCAAGATGCTGATCGCCATGGCGAAAGACCTCCGGGTCATCCTGGTCAAGCTGGCTGACCGCCTGCACAACATGCATACCCTGGAGCATTTACGCCCGGACAAGCAGCGCCGCATTGCCGCTGAAACCCTGGACATCTACGCACCATTGGCTGACCGACTGGGGATCGGGACCATCAAGTGGAAACTGGAAGACATGTCCTTCCACTACATGAACCCGGAAGCGTACTACAAGATTGTCTCCATGATGGACGCCAAGCGCAGTGAGCGGGAAGGCTACATCAAGGACGCCATCGACTACTTGCGGGGGACCCTGGATTCTTTAGGGATCAAGTACGACATCAGCGGCCGGCCAAAGCACATCTATTCCATCTATAAGAAGATGGTCAACAAGCACAAGAACTTCAACGAAATCTATGACTTGCTGGCTGTCCGGGTGATCGTGCCAACGGTCAAGGACTGCTACGCCGTTTTAGGGGCGGTTCACACCAAGTGGAAGCCGATGCCTGGCCGCTTTAAGGACTACATTGCCATGCCTAAGGCCAACGGCTATCAGTCCCTGCACACGACCATCATCGGCCCTGGCGGCAAGCCTTTGGAAATCCAGATCAGAACTGAAGAAATGCACAAGGTTGCTGAGTACGGTGTGGCAGCCCACTGGGCCTACAAGCGGGGCAACTTCCAAGGCGTTGATGAAAAAGAAGGCGGGGCCCTGGATATCGGCCGGGAAATCCTGGAGTTGCAGAAGGATTCCAGCGACGCTGACGAGTTCATGGAAGCCGTTCATTCGGATATTTTTGCCGACAAGGTCTATGTCTTTACGCCAAAAGGGGAAGTCTACGAACTGCCTAAAGGATCAGTCACCTTGGACTTTGCCTACGCCATCCACACCCAAGTCGGTGACCACGCCATCGGGGCTAAGGTCAACGACAAGCTGGTTCCTTTGGACTACAAGCTGAAGAACGGGGACGTGGTCGACATCTTGACCCAAAGCAATGCCCGGCCGTCAAGAGACTGGGCGGAAATGGTCAAGACCTCCCGGGCTAAGAACAAGATCCGCCGCTACTTCAGAGATGTTGACCGGGAAGAGAGCTTGGCCCGGGGCAAGAGTGAGCTGGTTGACCTGCTCAAGGAAAATGGCTTAAGCGCCAAGGACTTTTTGGACAAGAGCCACATTGACGAAGTCCTGGACCACTTCAGCTTCAAGACCGACGAAGACATGTACGCTGCTATCGGCTTTGGCAATATGTCTGCCGTATCCATCTACAACCGCTTGACGGCCGATCTGCGCCGGCAGCAGGAAGAAGAAAAGCAGAAGCAGTTTGAAGCCCAGATCATGTCCGCCGGCCAGCAGGCAGCAGCTTCCAGCGTGGTTAAAAAGCCCGCTCCGCAAAAAGACGATGCCAAGTCCAAAACCAAGGGCAAAAAGCCGGACAGCTTGGTCAGAGTCCAGGGGCTGGAAGATTTGGACATGCACTTTGCCAAGTGCTGCAACCCGGTCCCAGGCGACCTAATCGTCGGCTACGTGACCAAGGGCCGGGGGGTCACTGTCCACCGGGTTGACTGCCGGAACGTGGTCAGCGCGGACCCGGCTGCCCAAGGGCGGATGATCGATGTTGAATGGAATAACATTGACGAAGGCAAGCAGGCCAGCTTCAACGCCAACTTCGAGCTCTTTGGCTACAACCGGCAGAAGCTGCTGGGCGATGTCATCAACCGCTTGAATGCCTTGACCAAGAACATTACCAATGTTTCAGCCAGCGTCAACGAAGAAAACATTGCCCACTTCTACATCACGGTCGAAGTTAGGAATGCCGCCCAGCTGAATGACATCATGGCCAAGCTGCGGGATATTCCAGATGTTTATGACACCAAGCGAACGGACAACTAAGATAGAAGCAGGGAGATTTTTAGAAAAAATGCGCGTAGTAATTCAAAGAGTCAACCATGCCGCCGTCAGAATCGACGGCGAAACCGTCGGCCAGATCCAAAAGGGCCTGCTCTTATTAGTCGGCCTGGCTGAAGGCGATGGGGAAGAACAGGTGGTTAAGGCTGCTGATAAGATCGCCAAGATGCGGATCTTTGAAGATGAAGCAGGCAAGACTAACCTGGGTATCAAGGATGTCGGCGGCCAGATCCTGTCCGTCAGCCAGTTTACCCTCCTGGCTGATACCAAGAGGGGAAACCGGCCAAGTTTTGTCCACGCCATGCGGCCGCCTAAGTCCAGCCAGCTCTGGGAAGAATTTAACCAGGAGCTGGTTAAGCGGGGCCTGACCGTGGAAACTGGTGAATTCGGGGCAGACATGAAGGTCGAACTGGAAAACGATGGTCCTTTTACCATTGTCTTAGACCTGTAATTTTTTTCCCTCAGCCCTTGATTAGGAGGGCAAAACAGGATAAACTTAATGAGAATTATCAATGACAAAGAATGAAGATAGCCCGGCCTTTTTAGAGACTGCCCGTTTGGTGAAAGAGCAGATGGCTGCTAGCTGTGACCCTTTAGCAGATAATGGTTCGTTTCGTCAGCGTTAATGAAAGCAAGCAAAAGGTGGTACCGTGCTGTTTTCAAGCGCCCTTGATTATTAAATTCAAGGGTGCTTTTTGTTATCTTAGTCAAAACAAGGAAACAAAGGTGAAATTATGAGAGTTCAAAGACCAAAAGGCACAGTCGACATTCTCCCGGAAACGTCCGGCCAGTGGGAAAAGGTGGAACAAACCGCCCGTGACCTCTTCAAGCGGGCCAACTACCATGAAATCAGAACGCCAAGTTTTGAAAATTACGAACTCTTTTCCCGGTCATCTGGTGAAACCAGTGACGTGGTTGAAAAGGAAATGTACGATTTTGAAGACAAGGGCGGCCGCCACATCGCCCTCCGGCCAGAAGGCACGGCTGGGGTAGTGCGGGCCTACGTTGAAAACAAGATCTACGGGCCGGACTATGTCAAGCCCTTCAATGTCTACTACATTGCCGCAATGTACCGGTATGAACGCCCGCAAGCCGGCCGGCAAAGAGAATTCCACCAGATCGGGGTGGAAAGCTTTGGTTCAAACGGCTACCTGGCTGATGTTGAAACTATCCTGCTAGGCCACGACCTCCTGGCGGAACTGGGGGTCAAGAACTACGAACTGCACATCAACACTTTGGGTGACAGCGAAGTCCGCCAGGCCTACCACGATGCCCTGGTAGACTACTTTACTCCGGTTAAGGACCAGCTCTCAGAAGATTCTCAAAGACGGCTGGGCAAGAACCCCCTCCGGATCCTGGACTCCAAGGCCGAAGAAGACCAGCAGTTTTTGTCGGAAGCCCCTAAAATCAGGGACTACCTGGACGAGGAATCAAAGGAAAACTTCAACAAGATCCTGGCCAGCCTGGACAAGTTGGGCGTTAAGTACGTCATCGACGACGACCTGGTCCGGGGCCTGGACTACTACACCGGCGTGATCTTTGAATTCATGGTTGACGACCCAACTCTTTGGGCCAGCCCGTCAACTGTCCTGGGCGGTGGCCGCTACAACCACCTGGTTGAAGAATTCTCCGGCCCGGAAACCCCAGCCGTCGGCTTCGGGATCGGGGAAGAAAGACTGATGCTGGTTCTATCCAAGCAGAATCCGGAAATGTTTGAAGATCAAGGGATCGACTTCTTCATCACCAATATCGGTGAAGGCACGGACATTAAGGCCGTGGAAGTTGCCCGCCAGCTCCGCTCTCTTGGCTTCAGCGCCCAATACGACGTTGACCAGAAGAAGCTCAAGGCCCAGTTCAGAAAGGCTGACCGGGTCGGGGCCCGCTATGTCGTGACTCTGGGGGCCAAGGAACTGGCTGAAGGGAAATTAACCGTCAAGCGCTTGAGCGATGGGCAGCAGTTCAGCCTGGAATTTACTGACTTGGAAGACAAGACCAACCTGCTTTCTAAGATCGAAAAATAGGAGATTTTTAGCAAAATGATGCAAATGGAAAAAAGAACTGATTATTGTGGAAACATTACCAGCCAGTACCTGGACCAAGACGTCCTTCTTTACGGCTGGGTGCAAAGAGTCCGGAACCTGGGCCAGCTGATCTTTATCGACCTGCGCGACCGGGAAGGGATCGTTCAAGTCGTGGTCAACCATGACTCCGGTCAGGAACTGATGGATGTCGCTTCTTCTCTGGGCCAGGAATACGTGGTCGAAGTCAAGGGGCACGTTAACGAACGTTCCAGCAAGAACCCGGACATGAAGACCGGGGACGTGGAAGTCATTGCCAGCGAAATCACTGTTTTGAACAAGGCTAAGACTCCGCCATTTGAAATCAAGGATGACCTGGTTGCCAGCGAACAGACCCGGCTGAAGTACCGCTACCTGGACTTGCGCCGGCCAACCCTGCAAAACGCCTTGATCATGCGGGCCCAGATCATGACCGCTACCAATGCCTACCTGTCAGGGGAAGGTTTCATTAACATTGAAACCCCGGACCTGGGCAAGTCAACGCCGGAAGGTGCCCGGGACTACCTGGTTCCTTCCCGGGTTTACCCAGGCTCCTTCTACGCCTTGCCGCAGTCACCGCAAATCTTCAAGCAGCTCTTGATGGGGGCCGGCTTTGACAAGTACTACCAGATCGCCCGCTGCTTCAGAGACGAAGACTTGCGTGGGGACCGGCAGCCGGAATTCACCCAGATCGACCTGGAAACTTCCTTCATGGATGAAGAAGGCGTCCAGGAAGTAACTGAAGGCCTCTTGGCTAAGGTTATGAAGGATGTTAAGGGGATCGACCTACAGCTGCCGCTGCCGCGGATCACTTGGCAGGAATCCATGGACAAGTACGGCTGCGACAAGCCGGACACCCGTTACGAAATGCTGATCCATGACTTGGGCAATGTTTTTGCCAAGTCTGGCTTCAAGGTCTTCGCTTCTGCCCTGGAAAACGGCGGCTTTGTCCGCGGGATTGCAGTTAAGGGCGGGGCTAAGTTCTACTCCCGCAAGAAGATCGAAGCCATGCAGGACTACATCAAGCGTTACCACGCCAAGGGCCTGGCCTGGGTTAAGTATGAAGACGGCGACTTCTCCGGTCCTGTTTCCCGCTTCTTGAGCGAGGAAGAAAAGGCCGGCCTGGTTCAGGAATTCAGCCTGGAAGGCGGGGAACTCCTCCTCTTCATCGCTGACCAATGGAAGGTCTGCTGTGACTCCCTGGACTACCTGCGCCGGCAAACTGCCAAGGAAACTGGCATCATTCCAAAGGACACTTACAAGTACCTCTGGGTTGTTGACTGGCCGCTCTTTGAATACGACGAAGGCGACGAGCGCTGGATTGCTGCGCACCACCCATTCACCATGCCAGACGACAAGGGGATTGAACTCCTGGAAACTGATCCGCACAAGGCTCACGCCCGCAGCTACGACATCGTTTTGAACGGCTACGAACTGGGCGGCGGCTCCATCCGGATCCACAAACGGGACATCCAGGAAAAGATGTTCAAGGCCCTGGGCTTCACCAAAGAACGGGCCTACGAACAATTCGGCTTCTTGATGGACGCTCTGGACATGGGCTTCCCGCCGCACGCCGGCCTGGCTATCGGCTTGGACCGCTTTGCCATGCTTTTGGCTGGCAAGGACAACATTCGTGACGTCATTGCCTTCCCGAAGAACGCTAGCGCCAGCGAACCAATGATGCACGCCCCGGCTCCAGTTGCTGACCAGCAATTGACCGACCTAGGCATCGAAGTAGCTGAAGCAGCCAAGGAAGGCGTTGAAAAGTACGAAGCTTCCTTGGAAGCTGAAGCAGCTGAAGACGTTAACTCCCACGAAGAATAAAAAAGCTGAAAAAGCGCAAAAAAATAGTTCAAGATCCGAAAAAAGATCTTGAACTATTTTTCTTTGCCAACATTTAATTATCTGAATTATCGATAGTTTCTTCTGGCAGGTCTTCAGTCGTGTTGACATCATCGTCAGCCGTAGACTTGCTGGTGGTCGTGCTGCTCTTCTTAGGCGTATAGCTGGAAGAGCCAGTTGAAGTAGATGACTTAGTGGAGCTCTTGGAGCTGCTTGGGCTGGAGTAGCTGTAGCTATAAGTTGAGTTGCTGTAAGTTGAGTTGCTGTAAGCTGACCCCCAAGTAGAGTCAGAGTTTGAACTGTTTGAGCTCTTCGCCGACTTCTTCTTGCTGGACTTGGCCTGGCTGGAATAGCTGTAGCTTGAGCTGGATAATTCTTCACTTGAAGAGCTTGAAGAATCACTTGAGGACTCTTCACTCGAAGATGATTGGCTCATGTCTTCTGAAGAGCTGGATGAACTGGATGATTTCTTTTTGCTCTTCTTGCTCTTGCGTTTAGCCTTGCTTGATGATTCAGACTTTTCGTCTTCCTTGTCGGCCTTGGCCTTTTCCGACTTGCTGTAGACCTTGTAGGTCTTGCTGCTGCCAGCGCACTGACTGCTCTTGTCAGCCTGGCTTTGGTGATAAAAGACAGCTGCCCCGACTAAAGCGAGTTCAGCGGCAAGGATGCCGGCCAGCATTGGTTTGCGCATTGCATTTCCTTCCAACACAATTTGGCCGAATTAGACCAACTTAGTAAATATAGTATACCACGCCTGGCGGCTGTAAGCATAAGAAAGGCTTGTTTTCTATCAATAAATGCTGATGTTTTCTGCGTTGCCAAGCAATTACCGCTTGAATTATAATGACTTAAACTTCCCATACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAATGATGGCGATATAGCCTCTTGCATGTACTTCGGGAGGCGTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGTCGGTTGGAAGATCTCTTTCACACTCTCAAACATGGCTTCCACCAGGATCTGAAGGGAGTGATGGAAAGTGATGTCCGCAAGCTCGTCTACCATGCAATAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAGTAAAACGGGCAGCTTCACCATTCAATTGAGAATCTCGTCTAAGTATGTTGGCTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAACGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAAGCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAGCACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGTCCTCAGATTCCCACACCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAGGGCTTAACCGGTATTGGTAAAAAACGCGCTAACGACATAGCGCAAAGTCTTATTCGGTTGGCTAAAGTCGCATGCCCAGCTGTCAAAAAGAACAGTGCTCATATTCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAACCCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATAATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAGAGCTCGCCTATTGTCCTGTCATCTTCATCATCTCGCTTCTCAACTGACATGAACATGTAGCACAGAAAGACGAAAGCTATATGGGCAGTCAATGCATCATATGACAGGCCATGGTATTCAGTGCCACGCTTTAAGAAACTCTTGCAGGTCTTGAAGAAGACCTCGATGTCCCATCTTTTGCCGTAAATTCTGATGATCTCATTTTCATCGATCGTCATGTCTGTGCAAATAAGAGCGATCCAGTCTTTGCGGTTGGAACGATTTCTTACGCAGACTATTCTGGCATCAATCTGGGCACCATCTTTGGCAGGATCTCCAACCTTTACAGGGACGGACAGGAGATATCTTGAACGACCTCGACGCTTCTTGCATGCGTTGAAGATCTGCTTGACGTTCATCCGCTTTCCTTCGAACTCGTATGTGATCTTGGAGCTTTTCTTCACCATGGCAATTACGTTCAAACCACGTTGACTGATTTGGACAATCTGATGAGGATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCAGCTGGATAACTACATCGGTCCCCTTTGATTGGGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTCGATCTTCTTGGTCGTCCCGATGACATTCTGATCGTTCTTTGAGGACAAGAGTGATGAAGCGATTGGAACGAAGGAGGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTAGGTCATCGAAACGTGGTCGAATACTTTGGCAGCCGGCTCAGTCTTCTTGTATCCAGTTCTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGATCAGAAGTCAGATCTTTCAAGTGCCCATTGACGATCCTCTCAGCTAGCAGAATAGTGAAGCGAAGCCAGTTGAAGCCAGTTGATATGTGGGTTCTGCATGAATCTATAGTAGGTGTTTTTGGAGAAGCCAGCAGTACACTTGCCATACTTCTGTTGCATGTACATGCTTCTGTCTGGAAACACATTACTGAAGATGTATGAAAGGACCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGGGCAATTTTAGGTTCGTTTTCAGTATCGAATAATGGTAAACTAGACATAGCACAAGCCTTTCGCTTGATACTGATGATGTTTTGGTCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTAATGATTTTAAGAAAAAATATTCTCAAATTGCGTCAGTCAGCCTAGCTTGTCCGAACAATAGAAAAATGAAAGGGAGAAAAAGATGAAACGGAAGTATCTTTGGGTCCTGGCTTTATTTTTGGCCAGCTTTTCGGCTGTTTTTTTACCGGAAAAAGTTTTTGCCGATTATGACCTGACCAAGATGGATGTCACGGCAATTGTTAATTCTGACGGGTCTTTGTCAATGACCCGGAAGATCGTCTATGACTTTGACGATTCAGCTAACGGGGTTTATTACACCCAGAACTTAGCCAGCGGGCAGAAGGTTAGCGGGCAGAGCGTCGAGGTCAAAGACTTGGCCAGCGGAAAGACGGTCAAGCCGGCCTTGAACAACCAGGCGGACAGCGGCAATGTCTACCACTTCAATAAAGACGGCAATTCCTATAAGTTCAAGGTTTACCACCATGTTGACGATGGAAAGGTCCAGGTGGTTTACCGCTACAAGATTTCTGGAGCAGTTGACAGCTACGAAGACGCTTCTGAACTGAACTTCAAGATTGTCGGGGACGGCTGGGATAAAGAGATTTCCAATGTCACGGCGACTGTCCGCTTCCAGGATAAAAAGCTGTCCTTCTTGAAAGGCTGGGCCCATGTCAATGCTAACGGCCATTTGACCGTTGACAAGGAAAAGGGCCTGGTTAAAGCGGAAGTAGCCACTTTGCCGGAGGCGACTTTTCTGGAGCTGCACCTGCTTTTTCCAAACAGTTTAGTCAGCCAGAATAAAAAACAGCATTCCGGAGAAATCGCGGCTAAAGTCGTGGACCAGGAAAAAGCGCTGGCTAAGGAAACTGCCGCAAAAAAGGCCCGCCACAACGTTTATGAATTGATCGGCCTGGCTCTTTTTGCTTTATTACCGCTCCTTTATCTGCCGGTCTTTATCAAGAGCAGAAAGTCAGGCAGCCCGGTCAAGGCCAAGAAAGAAATCGGCCACAATTTTGAAATTCCCGCCTTCAGCCCGACCACGGCCCAGATCCTGGTGACCAAAAAAGGCCCGGACGGCAAGGCCTTGGCCGGAGAAATCGCCCTCCGGGCCGGCCGGGGTGAAATTACCATCAAGGCAGGCAAGAAGGGAAAGAACTTCACCTATGCCAAGACTAGCAAGTACAAGGGAGACCTGCCGCTTTTAAACAGGCTTTTCAAAAAGGTTGGCAACGGGCAAAGTTTCAGCAACAAGGACTTAAAGCAATATAGAGGCAGCCAGGGGATTACTTCCAGCTTCAAAAGCTGGAAGGAGGACAGCCAAAAGGCCTTGATCAAGGATGGCTACATTGACCAGTACTTGCAGGACCGGGAGAAGCTTTTGTCCCTCTATACTTTTGGCGTGATGTTTGTGTCAGTGGCAGCCATCGTCGTCTGCTTCTTCCTTTATGACAAATATACCTTCTGGCTCTTTCCGGCCATCCTCTGGGTTCTGGCAATTTTTGGTCTGGCCTGCCTGCGCCTGCACCACTTCTCCGACTTGACGGGAAAGGGGGCAAGGGCAACTGAACAGGCTTTAGGCTTTGAAGCCATGCTGGATGACATCGGCCAGTTCAAGCTGCGCGACATCGGGGAACTGACCCTCTGGGAGCAGGTCATGCCTTATGCCATTGCTTTTGGCCTGGCCAAGAAGGTCCTCAAGCAGCTGAAGCTGGAATTCTCGGAAGAGATCGCGGCCGACCCTTACTGGACCTACTACTATGCCGGTGCCAGCTACGGAGCCTTTGCCTCCAGCTTTGATGAGGCGATTTCTTCTTCAGCTGGCTCAGGCGGCAACTTCTCGGCCTCCAGCGCCTCCAGCGGCGGTTTTGGGGGCGGCAGCGGCGGCGGTGCCTTCTGATTTGTTTTTTCTGGTGAAAAAGTTTACAATGAACAAAATAGTTTTCCGGAAATTAATTAGTTGGGGAAGGCACTATGGAAGCCAGTTTATGGAACAGATTTAAAAACAACATTCACTTGCGCCGAGCAACGGTCCTGGTCATGATCATTCTGGCCCTGTACTATGTGCGGGCGATGATGAACACGATCCTGCTCACCTTTATCTTTACCTACTTGATCCTTCACCTGGTCAGGTTCGTCCAGGGGAAATTCAAGCATGTTTCTGACAAATTGATTGTCGCTTTGACCTATCTTTTGATTGTCGTCCTGCTTTACTTTGCCCTGCGCTACTATGTCCCGGTTTTGGTCAAGCAGGTGACCAAGATGACCAAGTCGGTGATCAACTATTACCAGACCAATGACGTGGGTTGGCTGATGACCCAGCTGCACAAGCATGTCTCTGAAAAAACGATTTCCAGCCAGGTCAAGAGCAGCTTAACGGCGCTGACGGCGGCCTTGAAGGGCTTCGGGTCAGTCACCATGTCCTTTGTCATGGCCCTGGTCTTGAGCTTCTTTTACACGATTGAGTTAAAAGAAATGCAGACCTTCAGCCAGTCTTTTTTGAAGTCCGACCTCTTTGGCTGGTTTTTTGAAGACATTGCCTACTTTGGCCGCAAGTTTACCAATACCTTCGGGGTGGTGCTGGAAGCCCAGTTCTTGATTGCCATCTGCAACACGACTTTGACCATTGTCTGCCTGGCCATCATGAAGATGCCGCAGATTTTTGCCCTGGGCCTCATGGTCTTCATCTGCAGCCTGGTCCCGGTGGCCGGGGTGATCATTTCCTTGATCCCTCTGTCTCTGGTGGCTTATACGGTCGGCGGGATCCAGGATGTGATCTACATTTTGATCATGATCGCTGTCCTGCACACCCTGGAAACCTATATCTTGAATCCGAAATTCATGTCCAGCAAGACGGAATTGCCGATCTTCTACACCTTCGTGGCCCTGCTCTTTGGCGAGCACTTCTTCGGCACCTGGGGCTTGATCGTCAGTGTCCCGATCTTTACTTTCTTTTTGGATATCCTGGGGGTCAAAAACATCAACAGCAAGCAGGAGAAGCTGCAGGAGGCCAGGAAGCGGATAGAGCACAAGCGGCTGGAAAAATAGCATAAGATTTTTAAAAAATAATAACTTAGTCGACAGACTCGGAGCAAATGCCTCCGGGTCTTTTCTTTTTGCCAGCAAAAAAATAAAAAAGAAAAAAGCTATACATGGGCCAGGTACGCAAAAAAATAAAATTTTTTTGCTATCTAAAAACCCTTATGAATACTGGCTTTATAAGGATTTTGTACACTATACAGTACGTGAATAGCATTGACATTTTTTAGGCGAGGACTATACTTTGTACATATCGATAAAATTATAGTTTTGAACAGGAAAGGGGTTTGCCTTGACTTACGCCAGAATTGCAAAAAGCAGCCGTTACCTGTCCGAATTCGCGGTCAGTAATGACGACTTAAGCCAGATCATGGAGACCAGTGACGAGTGGATTAAGACCCGGACCGGGATTTCCAGCCGGCGGATCAGTCAACAGGAAAACACCTCGGACCTGGCCATCCAGGTGGCCAAGCAGCTCCTGGCTGGCGAGGATCCGGCAGGGGTTGACTTGATCATTGTCGCGACCATGTCGCCAGACGCCTACACCCCGGCCACGGCGGCCCTGGTTCAAGCAGCGGTTGGGGCGGAAAACGCGGCCTGCTTTGACCTGTCAGCTGCCTGCTCCGGTTTCGTCTATGCTTTAGACGTGGCGGAAAAAATGCTGCGGCGGCCGGGCGGGATGGCCCTGGTAATCGGGGCAGAAACCCTGTCCAAGCTGGTTGACTGGCAGGATAGAACGACGGCTGTCCTCTTCGGGGATGGCGCCGGCGGGGTCTTGGTCAAAAATGACGCGCTTGAGCCGCATTTCTTGGCCAGCCAGCTGAAAAGCTACGGCCACTTGGCAAAATTCCTGTCAGCTGGCCAGACCAGCCCGCAGCCCTTTCCCGGTCCGGTAACGGACCTGGCCCCCTTCAAGATGAACGGGCGGGAGGTTTACAAATTTGCCACCCACAAGGTGCCCGAAGTAATCACCGCCTGTTTAGAAGAAGCAGGCGTGGGTTTAGCGGAAGTCGACCTTTTCCTTTTGCATCAGGCCAACTACCGGATCGTCAAGCAGGTAGCCAGGAGGCTGGATTTGCCAGAGGAAAAGTTCCCCTGCAATATTGCCGAATACGGCAATACCTCAGCCGCCAGTGAAGCCATTCTCTTGGCCGAGCTGGCCGAAGAGGGGAAGGCGCAGGCGGGCGACCTGGTCGTGTTGGCCGGCTTTGGCGGGGGCTTAACCGCGGCCGCCCAGCTGGTCAGACTATAAGAATATTGGTGTTTTAGATAAGTTAGATTTGATTTTACTTTTAGTTTTTATTTTTTAAAAAGGAGTAGACACATGTCAGAAGAAGAAATTTTCGCAACTGTAAAGAAGATCGCCGTTGAAGAATTGGACGTTGAAGAAGACCAAGTGACTATGGAAGCCAACATCAAGGATGACTTGGAAGCGGACAGCCTGGACTTGTTTGAAATCGTCAACGAACTGGAAGACGAATATGACATCGAACTGGACGCTGATGAAAACACCAAGACGGTTGCCGACGTGGTAGCTTTGGTGCAAAAGCAGCTAGCTGAAAAGGACTAACAGGACCAGACCATGAAATTCGGAATTCTCTTTGCCGGCCAAGGGGCCCAGCAGGCCGGGATGGGCCTGGATTTTCTAAGTGATCCCTTGTTTAAGGAGACAATTGACCAGGCCAGCCAGGCATGCGGCTTAGACTTGCCGGAAATCTGGAAAAACGACCGCGGCCAGCTGGATGAAACCAGGTATGTGCAGCCGGCTTTGGTGGCCTTTGAATACGGAATCTGGCAAATGCTGGTCCGGGACACTGACCTGCCAGTATGCGGTCTGGCCGGCCTCTCCTTAGGCGAATACGGGGCCCTTTTAGCCAGCGGCTGTTTAACCTGGCCAGCCGGCCTGGCCCTGGTTGCCGACCGGGGTGAATACATGCAGCTTGATTCAGAAAAGACGGCCAGCGGGATGCTGGCCTTGACCAAGCCGGATCTTCCGGGCCTGGAAGACTTTTTGCGAGCAAAGCAGGCAGCTGGCCAAGCAGTCTACCTGGCCAACTACAATTCACCTAAGCAGGTTGTTCTTGCCGGAGAAAAGCAGCTTTTGCCAGAACTGGGCCAAGAAATTGCTGACCGCAAGCTGGCCAAAAGAGCAATTCCCTTGGATGTTGCCGGAGCTTTCCACACTCCCCTTTACCAGACAGCCAGCCGGAAAATGGGCCAGCGGCTGAAGGGTGAAGTTTTCAATGCGGGAACTTACCCAGTCATCAGCAATAGCACTTGCCAGCCTTTTGCCAAAGAAGATCTGGCCAAAATCCTGGAAGTTCAGCTGATGGTGCCAACTCACTTTGACGCTTGCGTCAAAGGCCTGCTGGACTTAGGCATGACGGCCAGCCTGGAAATCGGCCCTGGCCACGCCCTGTCAGCTTTTGCCAAGCAGGCGGACAAGGGCTTGCAGACCTGGCAGATCGGGAGTCTGGTTGAATACCAGCAGTTTGTAGAAGAGGAGCAGAATGGATTTACAAAATAAGCGGGTCCTGGTGACCGGGTCAACGCAAGGAATCGGGGCAGCAACTGCCTTGGCTTTTGCGCAAAAGGGCTGCCAGGTGCTCTTAAATGGTCGGCGGCCGGAATTGCCGGAGGAAATCGCTGACCAGCTGGAAGAAATTGGGGCAGACTACCAGTATTTTTCCGCTGACGTCAGCGACGAAGGCGCGGTCAAGCAGCTTTTTAAAGAAATTGGCGAGATTGACATCCTGGTCAACAATGCCGGCATTACCAAAGACCAGATTATGATCGGGATGAAGCTGGCTGACTTTGACCAGGTGATCAAGGTCAACTTGCGGTCAAGCTTTATGCTGACCCAGAAGGCCTTGAAGAAAATGCTGAAAAAGCGGTCCGGAGCCATCATCAATATGGCCAGCATCGTCGGCCAGCACGGCAACGCCGGCCAGGCAAACTACGCGGCTTCAAAGGCCGGCGTAATCGCCTTGACCCAGACCGCGGCTAAGGAAGCTGCCGGACGCGGCGTCCGCGTGAACGCGATCGCGCCGGGGATGATTGCCAGCCAAATGACTGCTGTCCTGCCAGATGAGGTCAAAGAGCAGGCACTTAGCCAAATTCCTTTGGCCCGCTTTGGCAAGGCAGAAGAAGTTGCCCAGGCGGCAGTCTTTTTGGCAGAAAACGACTATGTTACAGGCCAGACCCTGGTTGTTGACGGGGGAATGACCATTTAAGGAGAAGATATGCGAGTAGTAGTTACAGGCATGGGGGCAGTCAGCCCGAACGGCAATGGCTGCCAGGCTTTTGTTGAAAATACTTTAAATGGCGTGGTCGGCATCAAGCCGATCAAGAAGTTTGATGCCAGTGAGACCGGCATCAGCGTGGCCGGGGAAATCGATGATTTTGACGTCAGCCAGGTTGTCGGCAAGAAAAACGGCAAGCGGATGGATCTGTATTCCCAATACGCCATCCAGGCCTGCCAGGAAGCCTACGAGATGGCTGGCTTGACTCCGGAAACAGTGAAGGCGGAAGAGCTGGGCGTGATTTTCAGCTCCGGGATCGGGGGCCTGACCACGATTGAAGAGCAGGTCATCAAGGTACATGACAAGGGGCCAAAGCGGATGTCACCTTTCTTTGTCCCGATGGCCATTGCCAACATGGCGGCGGGCAATATTTCCATCCGCTTTAATGCTAAAAATATTTCTACCTCCATTGTTACCGCCTGCGCCAGTGGGACCAACTCCATCGGGGAAGCCTATCGGCAGATCAAGGAAGGCCGGGCTGAGGTCATGATTACCGGGGCTAGCGAAGCCAGCGTCAATGAAACGGCTATTTCCGGTTTCGCGGACTTGAATGCCCTGTCAACCAGCACTGACCCCCTCAAGGCGTCTTTGCCCTTTGACCAAAACCGGCACGGCTTCGTCTTAGGCGAAGGGGCTGGGGCCTTGATCCTGGAAAGCTTGGACCATGCCCAAAAGCGGGGGGCTAAGATTCTGGCTGAAGTAGTCGGCTACGGGGCAACCAGCGATGCCTACCATATCACCAGTCCTGATCCTAAAGGTGAAGGAGCAGCCAGAGCCATGCGGCTGGCGGTTGAAGAAGCTGACATCAAGCCGGACCAAGTCGGCTATATCAATGCCCATGGGACGGCGACTAAGGCTAATGACAGCGGGGAAGCCAAGGCAATTAAGGAAGTCTTTGGCGACCAGGTTCTGGTTTCCTCAACCAAGGGAATGACCGGCCACCTCTTAGGGGCCGCCGGAGCGGTTGAAGCCGTCATTACCTGCGCCAGCCTGGAAAAAGGTATCTTGCCGGCCAATGTCGGCTGCTTTGCCCAGGATCCGGAATGCCCGGTCAAATTGGTAAAGGCGGGTGACCAGGAACAAGCTGTTGACTATGCTTTGAGTAATTCCTTCGGCTTTGGCGGCCACAATGCCGTGTTAGCTTTTAGAAAGTGGGCCTGATTTTGGAAATAACAGATGTTGAAAGACTGCTGGACAAGTTTGAAAAGTCCAGCATCCGGGAAATGAAGCTGAATTTGGACGGTTCAGAGCTTTTTCTGAGCAAGAACGAATACACGCAAAAGACAGAGGCAGAAGCAGGCCCGGTTTTGCCAGCCCAAAAAGCTGAGAGTCCGCTTTTGCCAAAAGAAGCAGCTGAAGCCGCGCCGGTTGTTCAAGCAGAAAAAGCTGTATCCGGTCATGCCATCAAGTCGCCCCTGGTTGGGACGATCTATCTGCAGCCGGCCCCGGACAAGCCAGCTTTTGTGAAGGCCGGCGACCAGGTCAAGGCCGGGCAGACCGTCTGCATCGTGGAAGCCATGAAGATGATGACGGAGATCAAGAGTGATGTTTCCGGCACTGTCAAGGAGGTCTGCGTGGAAAACGAAGACCTGGTTGAATGCGAGCAAACGCTCTTTTTGATTAAGGAGGCCTAGCATGACTGTATTGGATTCCAGCCAAATACAAGAAATTATCCCCCACCGCTATCCCATGCTTTTGATTGACAAGGTCATCGACCTGGTTCCCGGCGAAAGCGCCGTGGCCATCCGCAACGTGACCAATAATGAGGCGGTTTTCCAGGGACATTTCCCGGGAAATCCTGTCTTGCCCGGGGTCTTGCTCGTGGAATCCCTGGCCCAAACCGGGGCCGTGGCCCTGTTAAGCGCCGACCGCTTCAAGGGGCAGACGGCCTATTTTGGCGGTATCAAAAACGCTAAGTTCCGCCAGATAGTTAAGCCCGGCGACCAGGTCAAGCTGGAAGTGACTTTGGAAAAGGTCAAGGGCCATATCGGCCTGGGGCAGGGAATTGCCTGGGTCGACGGGAAGAAGGCCTGCACGGCGGAATTGACCTTCATGATTTCAGGTGAGAAAAATGTTTGACAAAGTTTTAGTTGCCAACCGGGGCGAAGCCGCGGTCCGGATCATCCGGGCCCTTAAGGAAATGGGCATCAAGTCCGTCGCTATCTACTCAGTAGCTGACCGGGACAGCCTGCATGTTCAGCTGGCCGATGAAGCGGTCTGTGTGGGCGCTAGCCGCCCCAGCGACTCCTACTTGAACATTAAAAATATCATCTCAGCGGCCACCGGGACCGGGGCCCAGGCCATCCACCCGGGCTATGGCTTTTTGTCAGAAAGCGCGGAATTTGCCAGTCTTTGCGCGGCCTGCGGTTTGACCTTTATCGGGCCAAAGGCGGAAACCATCGACCAGATGGGCAATAAGGAACACGCCCGCCAGCTGATGATCAAGCACAAGGTGCCGGTTACCCCAGGCAGCCGGGACTTTATCAAGTCACCGGAAGAAGCTAAAAAGGTTGCTGCTGAAGTCGGCTACCCGGTCTTATTGAAGGCCGCGGCCGGCGGAGGCGGGAAGGGGATCCGGCAGGTTAAAGAGCCTGGTGAAATGGCTGACGCTTTCAGCCTGGCCCAAAATGAAGCCCGTCTGGATTTTGGAAATGACCAGATGTATCTGGAAAAGGTCTTGACCAATGTCAAGCACATTGAAGTCCAGGTCATCCGGGACAGCTTTGGCAGCTGCGTCTACTTCCCGGAAAGAGACTGCAGCCTGCAGCGGCGCAAGCAAAAGGTGATCGAGGAGAGCCCTTGTGAACTGATCAGTGAAAGCGAGCGGGAAAAACTGGGCCAGATTGCTGTCCGGGCCGCCGAAGCAGCTGATTATCTGAATACGGGGACGATTGAATTTTTGATGGATCAGGACCATAATTTCTACTTTATGGAAATGAACACCCGCCTGCAGGTAGAACACACGGTAACGGAAATGGTTACCGGCGTTGACCTGGTTAAGGCCCAGATCCTGGTCGCGGCTGGGGAAAAGCTGCCTTTTAAGCAGGCAGACTTAGGTTTTAAAGGCAATGCTATCGAATGCCGGATCAACGCTGAAGATTCCAGCCGGGACTTCATGCCGTCAACCGGCCAGGTCGACTACCTCTTTTTGCCAGTCGGCAACCCGGGCATGCGGATTGATTCCGCCCTTTACCAGGGCATGGTGGTTTCGCCATTTTACGATTCCATGCTGGCTAAAATCATCGCCTTGGGCAGCAGCCGGCAAGAAGCAGTTGCCCGGATGCAGCGGCTTTTAAATGAGCTGGTGATCCGGGGGGTCAAGACCAACAAGGACTTTCACCTGGCCATTCTGGCTGATTCGGAATTTAAGCAAGGGACTTTCACCAATACTTATTTAGAGAGGGAATTTTTGCCCCGCTGGAAGGAGCAGGTAGACAAGCATGAGGCTGTTTAAAAAAAGAAACACGATCTCTGAGCGGCATGTCAAGGCTAATAAAAGGGCGGAAGACCTGGTGCCGAGCGGTTTGATGAAGCGGTGCCCGAATTGCGGGCTGGAATTTTTCGCCAGACGCCTGGATAAGTACAAGACCTGCCCGGACTGCGATTACGGATTCCGCTTGACCGCCAGGGAACGCCTGGCCTGGCTCTGCGAGGAAAGCGAGGAGTGGTTTAAAGATATTCAGCCCAGTGACCCCCTCCATTTTCCCAATTATGAGGCGAAAGTTGCCGCTGGAAAGAAAAAGACTGGCTTAAATGAAGCGGTTTGGACCGGCCTGGCCAAAATTGGCGGGCAGGAGACAGCCCTGGCCATCATGGATCCCTTTTTTATCATGGGTTCTTTAGGCCAGATGACCGGGGAAAAGCTGACCCGGCTCATTGAGGCAGCTACTGAAAAACGGCTGCCGGTCGTGGTCTTTACAGCCAGCGGCGGGGCCCGGATGCAGGAAGGAATCTACTCTTTGATGCAGATGGCTAAAGTGGTTAATGCGATTAACCGGCATAAGGCAGCCGGTCTCTTATACCTGGTTGTTTTGACCGACCCGACTACCGGCGGGGTGACGGCCAGCTTTGCCAGTGAAGGTGACATTACTCTGGCTGAAGCTCACGCCATGGTGGCCTTTGCCGGCCGCCGGGTGATTGAGCAGACCATCCATGAGCAGCTGCCAAAAGATGCCCAGCGGGCAGAAACGGTCTTAAAGCACGGCTTTATCGACCGGATCGTTTTGCGGCAGGAGGAAAAAGAGACCCTGGCCTGGCTGTTAAAGTACGGAGGGATGCAGGATGACTGATGCTATGGAAACGGTCCGGGCCGCCCGGGCCAGTGATAAATTGTCGGCTCACTATCTGCGGGAGCACTTGTTCAGCGACTTTGTGGAGCTGCATGGGGACCGGCAGGGGGCAGATGACCCGGCCATCGTTGGGGGGATCGGCCTGTTTGCCGGTCAGCCAGTGACCGTGATCACCACCAGCCGGGGATATAAGCTGGAAGAGCGCCTGGCCAAGCACTTTGGCCAGCCGGAACCAGCCGGCTACCGGAAGGCGGCCCGCTTGGTCAAAGATGCGGCCCGCTTTAAGCGGCCGGTTCTCCTTTTTATCGATACGGCAGGGGCCTTTCCCGGTAAAGAGGCCGAATATGCCGGCCAGGGGCAGGCGATTGCCCAGTGCTTGACGGATATTGGCCAGGCGGAAACGCCAATTATCAGCGTGATTTTCGGCGAAGGCGGATCTGGCGGGGCCCTGGCTTTGGCTTGCGGGGATGAGCTTTGGATGATGGAAAATTCCATGTATTCAGTCCTGTCTCCGGAAGGTTTTGCTTCCATCCTGTGGAAGGACGCCAGCCGGGCGGCTGAAGCAGCAGAGCTTTTGGGCTTGACGCCGGAATCCCTGCTCAAGGGGCAGGTGATCGAAGGCGTGATCAAGCAAGAAGGCAGCAAGTCTGCCCAGTGCCGAGAAATTGCCCGGGTCTTGGAAGAAGAATTAGCAAAATTGAAAAAGCTACCGGTCAGCAGTCTGCTTAACCGGCGCTATGAACGTTTCAGAAAGTTTTAGGTGAAGAAGATGGCAGGAATTTTATCTGGAAAAAAGTTTTTGGTAATGGGCGTGGCCAACAAGCGGTCCATTGCCTGGGGCTGCGCTGAGCAAATCAAGGCTCAGGGCGGGGAAGTGGTCTACAGTTACCAAAATGACCGCCTGGAAAAGAGCCTGCTCAAGCTGGGCCTGGCGGAAGAAGAAATGGTTGAATGTGATGTGGCCAGCGATGAGAGCATTGACGCGGCTTTTGACCAAGTGAAGGAAAAGTTCGGCCAGATCGACGGCCTGGTTCACGCGGTAGCTTTTGCCCCGAAAAATGAACTGGTAGGGTCCATCCTCAATTCCAGCCGGGAAGGCTACTTGACTGCCCAAAATATTTCCAGCTACTCCTTGATCGCCGTGGCTAAGGCTGCCCAGGAAAAGGAACTTTTGGCCCCTAAGGCTTCAATCGTTACCTTGACCTTCATCGGGTCGGAAAGAGCCATCACCAATTACAACACGATTGGGATTGCCAAGGCGGCTTTGGAAAGTTCTGTCCGCTACCTGGCCCGGGATCTGGGCAAGACTGGCAGCCGGGTCAACGCAATTTCTGCCGGGGCCATGAAGACTTTGGCCGTTACGGGGATTGCCGGAAACAAGGATCTCTTGGAGCAGTCCCGGTCCTTGACGGTTGATGGGGTCAGTGTCAGCCTGGAAGAAGTGGGTAACTGCTGCGCCTTCCTGCTCAGTGACCTGTCAACCGGCCTGACTGGCGACATCATCTACGTTGACAAGGGCGTTCACCTCTCCTAGGAGGCCGCGATGGAGATTTACTGCTACCCGGTCCTGCCTTCAACGCAAGATCTGGCTAAAAAGCTGCTGGAAAAGAAAAAGCCGCCTTTTGCCGTTAGTGCTTTAGAGCAGACGCAGGGCTACGGCAAGCAGGGGCGGACCTTTTATTCACCGAAAAATGGCCTTTACCTGTCAGTTTGCCTGGAAAAGCAAGAGAATCCCTTGCTGACCTTGGCGGTTGGGACAGCGGTAGCTGACTTCCTGCGGGCCAGGTACGGCTTAGAGATTGGCCTCAAGTGGGCCAATGATCTTTTTTATCAAGGGAAAAAAGTTGCCGGCATCTTGACTGAGCAGGTGGCAGGCGGGATAGTAGTTGGCCTGGGCCTCAACTTAGGCGCGGAACTCCCGACCAGCCTGCCCCAAGCGACCCGCTTGCTGGAAGCGGGGGATTTTGATCCGCTTTTGGCAGATGATTTGGCCTGTGTGATCTGCCGGGCTGCCAGCTGGCAGGATTGCCTGCCCCGCTACCGGGAATTGAGCATCTTGACTGGCAGGAGGGTTACTTTGAAAATTGCTGGGCGGACCATCTTCGGCACTTGCGCCGGCTTTGATGACCAGGGCCGGCTTTTGCTGGAAAAAGGCGGGAAGATTAGTGCCTGGTCCAGCGGGGAAGTAATTAAGACAAGTTTTTTGTAAAAAGCCCTTCCCTTTTCCGAAAACTTTTGCTATTATAAATATTGTTATCGGAAAGCCCACTTGGCGGAATTGGCAGACGCGCAGCGTTCAGGTCGCTGTTCTGGCAACAGAGTGAAGGTTCGACTCCTTTAGTGGGCATGACGCGAGCAAGTAGAAAAAATGCTTGCTTTTTTTATTTTTTATTTTCTATCTCCAGCTTATTTTTCAGATCAAAAAAGAGCTCCCGGAATCCGGGAGCTCTTTTGCTTTAGTTAAAGTTCTGGGCTTTTTTGGCGACCAGCTTGTTCTTCTGGAAGGTAACGTAGAAGTTGGCCTGGTCGTCGCTCTTCAGGCCGCTGGTGTAGAGCCAGAGGACCACTTCAGAATTGGAATAGTCAGATTCTGAGTAGCCGTTGGGCTTGCCGACAATGGCTTCGACTTCCTCTTGGGTCATCCCCTTTTTGAGGGACTTGTAGTCTTTGGGTGTAATTTGCTTGGACCGGTTGACGACCAGGCCGGAAATCTGCTTGGCGATAGCCACCCCGTTGGCGAATTCAACGGCCAGGTTGGCGCCGGCACTGCCGTTTTGGACCCCTTCCCAAGTGTAGATGGTGGCTTTGAGCTTGCTGGTTTTGGCCTTGCTCTTGGCGTCAGCTTCCCGGCCCAGGAGGTCAGTTACCTGGCTGGGAGTAGACCCGGTCTTTTCAACGACCTTGATCTTCTTGTAATTAGTGAGATTGATCTTGTTGCTGTTCTGCTTGACGACATTGGAGCTGGAAATTGAGCTCGCGGCCTTCTTGTCGCTTTCGCTGTCAGTCGTGGCCTTTTTGCTGGAGCAGGCAGTCAGAGCCAGGGCCGCAAAAGCAATCAAGAGAACTTTCTTTTTCATGACATCCTCCATTTTTTCGTTCTAGAATTTTCATCCCTTTTATTTTAGGCATTAAGAGCGGTCTTGTCCACGCCGGCAAGTAATTCTTAAGAGACCTTTTTGATAACTCGAAGGAAATAAATATATTTTGAACGCAAATGACGTTTTACCTGTTAGCGCTTTGTCAATAATCCAAGCTGGATTAAAATAAAGTTAGATAAGTGCAAATTACTTATAAGATGACGCAATTGCAATTTTTCCAAAAAATAAAAGGGGAGATTGAAAAATGCGCAAGGAAGCAAGAAAAAGGAAAAAGCTGGACAAGATCGGCTGGGGGATCGTGACTGTCGTCATTGTCCTTGCCTTGCTTTCAGCCGGCTGGCTGACCTACCGGGCAGTGCAAGTAGCCCGCCTTAGCCGGCAGGTTGACGTGAAAGTTGATGGCACAAAAGAATTGAAGAGCGGGAGGGCTTCAGCTAAGCTGCTGGCCAAATATGCCGCGGCTGAGCCAGCTGACCAAGGGGGCTAAGCAAAGGTCAGTGGCTTTAGTCTTCGCTGGTTTAACCGACAGCCAGGAAAGCATGAAAAGATCCTGGGCTACCTCAAAAAAGCTGGCCTTTCTGCATCTTTCGCTCTGCCAGCCGCCCGGGCCCGGGAAAACGACGTGCTGATCAAAGACCTGGTGAAAAGCCGCCAGTAGCTGATCGGAAGCGGTATCTTGGGAACAGAAGGCAGCCAGCTTGCCGGCAATTGCCCCTAAAAAGGCCCTGATCAAGGCCAAAAGCCAGGCCAGCACTTTTTCCAGCCTGGCTAAAAACAGGCAGGCCGTCTCCAGACTCCGCTTTAGCCGGGGAGCAATTAAGGGAATCAACCTGGGCTACTATGAGGCGGACCAGGTCCGGTAAAAAGGGGAGAAAACCGTCATGGGGCAGATGGTGCAAGACCTGCTTAAAAACAAGCTGGATGCTGTTGCCTATCATCCCCGGGTGAAAAAGATAGAAACTGCAAGTTGCTACAAATTGAAAACGGTCAGCCAGTTTAAGTCCTCTAAAGACTGCTATAGCTTTAACAAACAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGAGAATCTCGTCTAAGTATGTTGACTGTTAAAGTACTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGGAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGCACCCGCAACGGCTGGCCTACGTTCAAAACAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAACCAACAGGAATAGACTGCACAAAGCCATTCAGCTCACTTTCCCAGAGATTGAGCACTTAATGGTTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTATCTGGTATTGGTAAAAAGCGCGCTAATGACATAACGCAAAACCTTATTCGTTTGGCTAAAGTCGCATGCCCAGCGGTCAAAAAGAACAGTTCTCATATTCGTGGCCTCAAAATGGCTATTAACAACACTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGAGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACCTGTCAATTTCAAAGCGTGGGACGGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGTGGGAAACCCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAGAGCGAGCTGATAGAGGCCGGCAAGCGGAACTTGACCAAGCTTAAGCCCTACTGGCGGGAGTTTGCTTATGCATCATGCACTCCAACACCAGCCGCTACGGGGACAATGCTAATGTCTCAAGCGCTAACGCGGCCAGTCTGGAAAAGATGTTCAAGCTGAACGTCAACCGGGAAGGCTTTTCCTACAATAATCGGAAGTCCTTATGACTTGACCCGCCTTCAGCCTCAAGCCTGGTGGTACACCAACCACCTTTTGATGCGGGTTAAAGACGACTTGCCGGCTAAAGAGCAGAAGCAGATCAAGTTCCTCAAGGGCAGCCAGCGCCGCTGCAAAAAATGGCAGCTGGTCAAAGGGGCGGCGGAATTCAAACAGAATTTGATTGCCTTGACTTCTGAATCGGAGAGCAATGGCCTTTTGACTTTAAAAAAGGCGAAAGTGGGCGACTGCAAGCTGAACTGCGAATTTTTGGGCAACAAGATCGGCCAGCAGACGGTCTACTTGAAAACCCAGGGAACCGCATCTGGCAAGCATAATTTTTCCAGCTACTTGTCTCTGTCTTTAGAAAACAACATTCTCTACCTGTGGCAAAAACAGGGCGGGGCAATCAAGACCCTGTACAAGGTTGACATGTTCAAGCTGGAGGACGACAAGCCGGTCTCCGTGCCTGAGGACAAGCGGGCGGTTTTAAGTTCAGAACTGAATGTCCGCGGCCGCTTTGCCCAAAACAGCACAACAGCTGCTTTATACAAGCTCAAGGCTTTTAAAAAGAAACGGCAGAAGGCCAAGAGCGTCAAAGAAGAGGCAAAGGAGTATGTCCCGGAAATCCAGCTCCAGGATCCAGGCGATGTTAAAGCTGAGCTGACTGTTAAAGGGAGCAGCTTAACTTTAACGGTTAATGGCCAAAAGCTCTGCTAGCGGCAGATCAAGGAGCAAGCAGCCGGCGGGGTGGCCCTGGAGAGTGGGCTTTGGCCAAAGCCAGCGCAATATCGCTGACGACGTTTATGACGGAGCCGTCAAAGACCTTGTCATCACCAGACTGGTCCGGGTCTCATGCTTGAATTTGACGATCCGCTTTCTGATATCGACAAACTTCTGCTGCAGTTCCTTGATGAGCTCGCTCACATTGTCGTAGATGTCCAGCCAGCCATCTTCCTGGTCCAGGCTGTATTCGTAGATGTAGCGGGCGATCTTGGAGACGTCCAGGGCGCTGCCGCCGCCGATGGCGATAATGGTATCTGGTGCAAACTTCTTCATCTGCTTGGCAATCTTGATCGCCTGGCTCAGCGGCGGGTCAGGCAAGACTTCACTGTAGATGGCCGTGTCGACCTGCTTGTCTTTTAAAGCCAGCTGTTCATAGACCTTGTCAACGAAGTGGAACTTGACCATGCCCAGGTCAGCGACGATAAAGGCCCGGCTGATTTCCTGCTCATTTTCATCTGAAAGATAGGTAATGAAGTCTTTTTCGTAAAAATCTTCTCCGGCAGGCGGATCCATTGCGGCCGGTTCCGCCGCTTGGCAATGGTCTTGATGTTCAAGAGGTCGCTGGTCGACAGGTTGTGAGACAGGGAGTTCTTCCCCCATGAACCAGTCCCCAAAATCAAGCTTGGCCGCAGGCCATCACTATAGATATCGCCGATCCCGCCCAAAGCGTCCGGCTGGTTAACCAGGACTCTGGAAGCTTGGACTGCCTTGCCGTATTCATCGATGAACGGATCGTTTTGGGAGCCGATTTGGATGGCGGCATTGTGGCCAGCACCTTGGTAGTCAAGCAGGGCTTTGACGATTCTGATCCCGTCTTCCCGATCCTTGGCCTTGTAAACTGACAGAAGCGGGGAGAGTTTTTCGGATGACAGCTTTTCGCCAATATTCTTTGGATCCAGTTCAAAGAGGAGGACATCCTTGCCTTCAGACAGGGTAACGCCGGCGTGTTCACAAATCCAGCGGGCGCTCATCCCGGCTACTGGCCCATTGACCCCATGCTTGTCATTGAAGACGAAGTCGGCCAGCTTTTGGTAGTCTTTCTTTGGAACCAGGTAGGCACCCTTGTCCTGTATCATTTGCAGCCACTTGTCGTAGATCGGTGCTTCAACTACGGCTGAGTTTTCAGTCGCGCAAACCATGCTGTTGTCAAAACGCTTGGACAAAAGTATGTCTTCAACAGCCCGGTCCAAAAAGGCGGTGTGGTCGATGTAAACAGCACCGTTGCCGGCCCCGACCCCCATTGACGGGTTGCCAGACTGCAGCGCGGCGTGCACCATGCCGGTACCACCAGTTGCCAAAAATAGAAGCGATCTTTGGGTTGCGGATCAAGGCAGTGGTGTTTTTCCAGGCTGGCCTTGTGGATCCATTGAATGATGTTCTTTGGGGCACCGGCCTTTAAAGCAGCGTCATACAAGATCTGGGCAGCATGGATTGAACACTTCTGGGCCTTCGGGTGGAAGGAGAAGATGATGGCGTTTCTGGTCTTCAAAGCTACCAGGATCTTGAACATGGTCGTTGAGGTCGGGTTGGTGGTTGGCACGATCCCGGCTAAAACGCCAAGAGGAGCAGCAACTTTGATATAGCCTTCAACCTGGTTTCTTTCGATAATGCTAACAGTCTTTTCGTGCTTAATTGAGTTGTAGACATTTTCGGTAGCGAAGCGGTTCTTGGTATCCTTGTCTTCTACCATCTACCACGCCGCGGCCAGTTTCGTCTACTGCCTCATGAGCAAGCGCGAGGGAGGCCTCACTGCCGGCCAAAGCCATGGCAGCGACAATCTCTTGTCAACTTGTTCCTGGCTGTAGGTCGCGTAGGCTTCTTCAGCGACCAAGGCTTTGTTAACTAATTCATCTGTATAGCGCTTGGCTTCTTCCACCTTTTCATCAGCTGACAATTCCTTGGCAGCAGTAACAGTGGTCTGAGTTTTCTTTACATCAACCATTTTTTCTCTCCTAAAAATTACTACATTTTTTCTCAGGTCCAAGTATTTACTGTGAACCTTTTAACCTAGAGTGATAGTCCGTTTGTTTTCTTTGTCAAGCCGAAAAAGGCCATAAATTTCAATTAATCTGAAGTGTGTAGACGCTTGCAATCATGCTAGAGTAGAATGATGAAAGCGCAGAAAAAAACAAAAATAGTGAATAATTTCACTTTTTTAATAAGCTGGGCTAGACCTGGGAAAGGGAAGTGGCGAAAAACAGAGCAGGGATGAATTGCAAAAAGCTGGCAAATGAAAGCTTAGAAAAATTAGAAGAAAATTGAAAATAAAGATTGACGAAAACAAAAGATGGAGGTAAAGTAGTAAATGTCTTCGGGCAAAACACAAAGCGCTTTCTTAACGAAAGATAATTGAAGACAAAATAAATATCAAAAACTTGTTGACAAGAAGTCAACAAGCGAGTAAGATATAAAACGTTGCGTCACTAAGACGCAAGTTGGTACTTTGAAAACTGAACAAAGTTTCGCAGTGTGCGGGTCAAACATTGTTTGATCCAAACAAATAAGCGAAGTCAATTCGCAAGCAAATAATCTGGAGCAGATTAAAAAGACTCAATTTTCAAATTGAGAGTTTGATCCTGGCTCAGGACGAACGCTGGCGGCGTGCCTAATACATGCAAGTCGAGCGAGCTGAATTCAAAGATTCCTTCGGGATGATTTGTTGGACGCTAGCGGCGGATGGGTGAGTAACACGTGGGCAATCTGCCCTAAAGACTGGGATACCACTTGGAAACAGGTGCTAATACCGGATAACAACATGAATCGCATGATTCAAGTTTGAAAGGCGGCGTAAGCTGTCACTTTAGGATGAGCCCGCGGCGCATTAGCTAGTTGGTGGGGTAAAGGCCTACCAAGGCAATGATGCGTAGCCGAGTTGAGAGACTGATCGGCCACATTGGGACTGAGACACGGCCCAAACTCCTACGGGAGGCAGCAGTAGGGAATCTTCCACAATGGACGCAAGTCTGATGGAGCAACGCCGCGTGAGTGAAGAAGGTTTTCGGATCGTAAAGCTCTGTTGTTGGTGAAGAAGGATAGAGGCAGTAACTGGTCTTTATTTGACGGTAATCAACCAGAAAGTCACGGCTAACTACGTGCCAGCAGCCGCGGTAATACGTAGGTGGCAAGCGTTGTCCGGATTTATTGGGCGTAAAGCGAGCGCAGGCGGAATGATAAGTCTGATGTGAAAGCCCACGGCTCAACCGTGGAACTGCATCGGAAACTGTCATTCTTGAGTGCAGAAGAGGAGAGTGGAATTCCATGTGTAGCGGTGGAATGCGTAGATATATGGAAGAACACCAGTGGCGAAGGCGGCTCTCTGGTCTGCAACTGACGCTGAGGCTCGAAAGCATGGGTAGCGAACAGGATTAGATACCCTGGTAGTCCATGCCGTAAACGATGAGCGCTAGGTGTTGGGGACTTTCCGGTCCTCAGTGCCGCAGCAAACGCATTAAGCGCTCCGCCTGGGGAGTACGACCGCAAGGTTGAAACTCAAAGGAATTGACGGGGGCCCGCACAAGCGGTGGAGCATGTGGTTTAATTCGAAGCAACGCGAAGAACCTTACCAGGTCTTGACATCCTGCGCTACACCTAGAGATAGGTGGTTCCCTTCGGGGACGCAGAGACAGGTGGTGCATGGCTGTCGTCAGCTCGTGTCGTGAGATGTTGGGTTAAGTCCCGCAACGAGCGCAACCCTTGTCTTTAGTTGCCATCATTAAGTTGGGCACTCTAAAGAGACTGCCGGTGACAAACCGGAGGAAGGTGGGGATGACGTCAAGTCATCATGCCCCTTATGACCTGGGCTACACACGTGCTACAATGGGCAGTACAACGAGAAGCGAACCCGCGAGGGTAAGCGGATCTCTTAAATCTGTTCTCAGTTCGGACTGCAGGCTGCAACTCGCCTGCACGAAGCTGGAATCGCTAGTAATCGCGGATCAGCACGCCGCGGTGAATACGTTCCCGGGCCTTGTACACACCGCCCGTCACACCATGGAAGTCTGCAATGCCCAAAGTCGGTGGGATAACCTTTATAGGAGTCAGCCGCCTAAGGCAGGGCAGATGACTGGGGTGAAGTCGTAACAAGGTAGCCGTAGGAGAACCTGCGGCTGGATCACCTCCTTTCTAAGGAAAACAGATGGATGGAGAGCAGAAATGCTAAGAGAAATCCATCAGTTACGGAAGCACACTGCAAAAGAAACTTTGTTCAGTTTTGAGAGTATTAGCTCTCACTTGTACGTTGAAAACTGAATATCTTAATTCCAAGAAAAAACCGAGAATCATTGAGATCAATGAAAACATTGCAAAGCGACCGAGAGAGTTCGAAAGAACAAACTTGCAAGGTCAAGTGAAGAAGGGCGCACGGTGAATGCCTTGGCACTGGAAGCCGATGAAGGACGCGACTAACCGCGAAAGTCTTCGGGGAGCCGTAAGTAGGCTTTGATCCGGAGGTCTCCGAATGGGGGAACCCAGCATGTGCAGACATGCTATCCTTAAGTGAATACATAGCTTAAGGAGGGAACACGCAGTGAACTGAAACATCTAAGTAGCTGCAGGAAGAGAAAGAAATATCGATTTCCCAAGTAGCGGCGAGCGAACAGGAAAGAGCCCAAACCGGCAGATTTATCTGCCGGGGTTGTAGGACTGAGACATGGCACTTCAGAGGATAGCAGAAGCGTTTGGGAAAGCGCGCCAGAGAGGGTGAGAGCCCCGTAAGCGAAATCCAAAGAAGGCCTATCAGTATCCTGAGTAGGGCGGGACACGTGAAATCCCGTTTGAATCCGCGAGGACCATCTCGCAAGGCTAAATACTAACCAGTGACCGATAGTGAACCAGTACCGTGAGGGAAAGGTGAAAAGAACCCCGGGAGGGGAGTGAAAGAGAACCTGAAACCGTGTGCCTACAAGTAGTCAGAGCCCGTTAACGGGTAATGGCGTGCCTTTTGTAGAATGAACCGGCGAGTTGCGTTAGTCAGCAAGGTTAAGTCAGAAAAGACGGAGCCGTAGCGAAAGCGAGTCTGAATAGGGCGAGCAGTTGGCTGACGCAGACCCGAAACCAAGTGACCTACCCATGACCAGGTTGAAGGCGCGGTAAAACGCGCTGGAGGACCGAACCCACGTAAGTTGAAAATTGCGGGGATGAGTTGTGGGTAGCGGTGAAATTCCAAACGAACTTGGAGATAGCTGGTTCTCTCCGAAATAGCTTTAGGGCTAGCCTCGCAAAGAGGATGCTGGAGGTAGAGCTCTGTTTGGACTAGGGGCCCGTCAAGGGTTACTGAATTCAGATAAACTACGAATTCCAGACATTTATGTGCGGGAGTCAGACTGCGAGTGATAAGATCCGTAGTCGAAAGGGAAACAGCCCAGATCACCAGTTAAGGTCCCAAAATTCATGCTAAGTGGAAAAGGATGTGGAGTTGCGCAGACAACTAGGACGTTGGCTCAGAAGCAGCCATCATTCAAAGAGTGCGTAATAGCTCACTAGTCGAGTGACGCCGCGCCGAAAATTTACCGGGGCTAAGCATGATACCGAAACTGTGGATGTGCATTTATGCACGTGGTAGGAGAGCGTTCTAGCGGCGGTGAAGCATGACCGAGAGGACATGTGGAGCTTCTAGAAGTGAGAATGCCGGTATGAGTAACGAAAGACAGGTGAGAATCCTGTCCGCCGCAAGACTAAGGTTTCCTGGGGCAGGCTCGTCCGCCCAGGGTAAGTCGGGACCTAAGGCGAGGCCGAGAGGCGTAGTCGATGGACAACAGGTTGAAATTCCTGTACTGCACCGAATCGTTATGAGCGATGGAGGGACGCAGGAGGCTAGCAGCGCGTGGTGCTGGATACCACGTTCAAGCGTCAAGTCTGAGAGCGAGTCAAATGCTTGCTCTCATAAGGACAAGGCGTGATGAGGAGCGAAATTAAAGTAGCGAAGGCTGCGACGTCACACTGCCGAGAAAAGCTTCTAGCCAGAGACGGTGCACCCGTACCGCAAACCGACACAGGTAGTCGAGGAGAGTATCCTCAGGTGAGCGAGAGAACTCTCGTTAAGGAACTCGGCAAAATGGCCCCGTAACTTCGGGAGAAGGGGCGCTGGTCGCAAGATCAGCCGCAGTGAAAAGGCCCAAGCAACTGTTTATCAAAAACACAGGCATCTGCAAAATCGTAAGATGAAGTATAGGTGCTGACACCTGCCCGGTGCTGGAAGGTTAAGAGGAGAGCTTAGCGCAAGCGAAGGTTTGAATTGAAGCCCCAGTAAACGGCGGCCGTAACTATAACGGTCCTAAGGTAGCGAAATTCCTTGTCGGGTAAGTTCCGACCTGCACGAAAGGTGTAATGATTTGGGCACTGTCTCAACGAGAGACTCGGTGAAATTATAATACCCGTGAAGATGCGGGTTACCCGCGACAGGACGGAAAGACCCCATGGAGCTTTACTGCAGTTTAATATTGGGTATCTGTCAAGCATGTACAGGATAGGTAGGAGCCGGAGAAGATAGGACGCCAGTCTTATCTGAGGCGCTGTTGGGATACTACCCTTGCTTGACGGATGCTCTAACTCAGGCCTGTGATCCAGGCCGAGGACAGTGTTTGACGGGCAGTTTGACTGGGGCGGTCGCCTCCTAAAGTGTAACGGAGGCGCCCAAAGGTTCCCTCAGAATGGTTGGAAATCATTCGCAGAGTGTAAAGGTAAAAGGGAGCTTGACTGCGAGAGAGACAACTCGAGCAGGTACGAAAGTAGGGCTTAGTGATCTGGTGGTACCGCATGGAAGGGCCATCACTCAACGGATAAAAGCTACCCTGGGGATAACAGGCTTATCTCCCCCAAGAGTTCACATCGACGGGGAGGTTTGGCACCTCGATGTCGGCTCGTCGCATCCTGGGGCTGAAGTCGGTCCCAAGGGTTGGGCTGTTCGCCCATTAAAGCGGCACGCGAGCTGGGTTCAGAACGTCGTGAGACAGTTCGGTCCCTATCCGTCGTGGGCGCAGGAAATTTGAGAGGAGCTGTCCTTAGTACGAGAGGACCGGGATGGACGCACCGCTGGTGTACCAGTTGTCTTGCCAAAGGCATCGCTGGGTAGCTATGTGCGGACGGGATAAGCGCTGAAAGCATCTAAGTGCGAAGCCCCCCTCAAGATGAGATTTCCCATTTCTTCAAGAAAGTAAGACACCTCAGAGACGATGAGGTAGATAGGCCGGGAGTGGAAGAGCCGTGAGGCTTGGAGCGGACCGGTACTAATCAGTCGAGGACTTGACCAAAAGAGCGAAGCAATGAGGTTTTGACTTGGTAAAAGATATTCAGTTTTGAGCGTGCAAGCTCAAGCAAAGAGTGCGGTGGCAATGGCAATAAGGATACACCTGTTCCCATGCCGAACACAGTAGTTAAGCTTCTTAACGCCGAAAGTAGTTGGTGGGAAACTGCCTGCGAGGATAGGAAGCTGCCGCGCGAGACAAGAGTCAGACGGAAGTCTGGCTCTTTTTGGTTACTATAGTAAAATAGGTAAGAGTCTAGAGAATAAGAAAGATATAAAGACATGGACAGAATCGACAGAGAAAACAATCTGATCAGAATTAACGCTTTTGATGATCCTAGACTAAAGCTATTTACTGATTACAATGAAGCTCAGCTCTTTCATTACTATGAGCCAGAAGCCGGTATTTTCATCGCTGAGAGTCCGAAAGTAATCGAGCGGGCAATTAGGGCCGGCTATGAGCCAATCGCCATGTTGGTGGAGGAAAAGGCCTTAGAACGTGATTTAGCGGACTTTGACCGGGAGCTGGCTGCTAACGACGATCACTTGCTTGATTTTCCCATCTTTGTCGCTCAGTCTGACCTTTTGCGCCAGCTGCCAGGCTATAATCTGCTTCGGGGCGCCATTTGTGCCTTTCGAAGAAAAAAGCGGCCAAGTCTGCGTGAATTTGCGGCTGCCTTGCCCAAGCATGCCAGAGTCGGGGTCTTAGAGAGCGTCGTCAATCCAACCAATGTTGGCGCTATTTTCCGCTCAGCCGCGGCCTTAGGCATGGACGGGGTCTTGATTACAACCGACTCCAGTGATCCCTTATACCGGAGAAGCGGCCGGGTCAGCATGGGGACGGTTTTCCAGGTGCCTTGGACTTATCTGGATCGAAAACTTTGGCGGGAAAAAGGTGTGGCCAGCCTGCAGGAATTGGGCTTTAAGACCGCGGCCATGGCTTTAAGGGACAACACGGTTGACATCGACGACCCGGCCTTAAAAGAAGCAGACCGTCTGGCTGTCATTTTAGGTTCTGAAGGACCAGGCCTGTTGCCGCAAACGATCGCGGAGAGCGACTATACGATCAAGATACCGATGGCTGAAGGAGTGGACTCCTTGAATGTTGCCGCCGCTAGCGCTTTAGCCTTTTGGGAAGTCAAAAAAGGACTGGATTAAGTTCCGGTCCTTTTAATTTTGTATTTTCTTTTTTACTTATTCACCGCTAGCCCCGTAGTTGCTCAATACCCGGGCACTTGGGTCGGTGACGCTTTCCAGGCTCTTCCAGCTTCTGTTTGGCATCCAGTAGTCCTTGATCCAGTCAGCCTTGCCAGGGTAGAATTCTTCAAAAATATCTCGGTAAAGAAGTGATTCCTTGGTAAATGGCATCCGGTATGGGTACTTTTCGCCTGCTTTAGCCAGGTCTTCATCGCTGTACTTGCTTTCAGCGTATTCCTTAAGGTCATCAACCATGGAGTGGCCCACGGCGTCGCTGAAGGCTGCTTTTTCCCGCATAAGGATGTCGCGGGGCAGCCAGTCGCCTTCTTCAAAGGCCTTCCGGAGCAAGTACTTGCCCTTGTGGTAGTGGTTCATCTTCAAGTCCGGATCCACGCTCATGACGTAGTCGACGAATTCCCGGTCAGCGAAAGGCACTCTGCCTTCCAAAGAGTTGGCGGAAATGCAGCGGTCTGCCCGCAAGACGTCGTACATGTAGAGCTCTCTGAGCCGCTTGGCTGCTTCTTTTTGGAATTCTTCCGGGCTTGGAGCGAAGTCGGTGTATTTGTAGCCAAAAAGTTCATCAGAGCATTCACCAGTCAAGATGACCTTCAAGTCAGTTGTTTCATGGATCTTCTTGCAGAGAATGTACATCCCGATTGAAGCCCGGATAGTCGTGATGTCCCAGGTTTCCAAAGTATAGATGACTTCTCTTAAAACGCCCAGCACGTCTTCTCTGGTCATGATGAACTCGGTGTGGTCAGTTCCCAGGTAGTCAGCCACTTCCCGGGCATATTTAAGGTCGATCGGGTTTTGGTCCATCCCAATGGCAAAAGTTCTGATCTTCGTATCTGGCTGCAGGCGGGCGGCGATCGAGCAGACTAGGGAAGAGTCAAGGCAGCCTGAAAGGAGGTAGCCGACCGGGGCGTCTGAGGCCAGGTGCTGGTCAACTGATTCAACCAGAAGGTCATGAATCTTGTGAGTCGCAGTCTCAAAATCGTCAGTACTCATCTTGGGGGTGAGGTCTGGTTCATGGTAGGCCACGATCTTTTCCCCGTCATAGTAGTGGCCAGGCAGGAAGGGGTGGATTTCGCCGCAGAGGTCAAGCAGGTTCTTGCCAGTTGAGGCAAAAGCAATCTTGGCGTCTTTTTTGGTAAAGCCGTAGAACATTGGCCGGATACCGATGATGTCTCTGGCCGCGTAAATCGTCTTTGAGAGGTGATCATAGAGGGCAAAGGAAAATTTCCCGATCCAGCATCTTAACCATCGTCTCAATCCCGTATTTGCGGTAAAGGGGGATCAGAACTTCACAGTCACTGCTGGAAGTAAATTCGTAGTCGGTTTCCAGGTTCTTTTTCAGTTCCGGGTAGTTGTAGATTTCCCCGTTGCAGACCAGGGTGCAGTCCAGGGTTTCAAAAGGCTGCATCCCGCTGTCCGTCAAGTCCATGATAGCCAAGCGGTTGAAGCCAAAAGTAACTCCCCGCTCGTCAAAGACCCTGGTCATGTCCGGTCCCCGGTCCTGGCATTTGGCCAGGGCTTCGTCAAAGGTCTTCAAGTCAAATTCTTTGGAGTCGATCGCTAAAAATCCGCACATATTCGCTGCCTCTTTCTTTTTTAAGCAAAAAATAATTTAAGTGAGTAAAAATTGCTCTTTAATGAAAAAAGGGTCGCCAAGCAAAGAAAAAGCCCTTCGCTCCCCGGTAAGGGACGAAAGGCTTTGTTCCGCGCTCTGATAATAGAGTCTGCTTCTTGAGCACAAATATGCTCATCCGGCGGTAACGGACCAGAACCGGCCAAGCCTACTGGAGCTAAGTCTTTCGGTTGGCAGCTGAAAAAGTGTTTTTCAAGGGGGGCAGAGCCTGCTGAATTTCCACTCTCATCAGCTCACTGGAGGTTGCCCGCCTTTACTCGTCTTTTTATGGCTTACTTTTTTAATTAAGAACTATTGTGATCAAAATGATAAATAAATCAAACCTAAATTAAAATAAATTTAAAAAGAAGAGAAAGCTTGCTAATAAAGTTTTTGATTTTTTCGCCGAAAAGTGTTGACATTTTCCCTAAACCCTGTAAAATAATAATTGTTGCGTCGCCGAGGCGTGGCAGAAAATTCCGCCTTAGCTCAGTTGGTAGAGCGCTTGACTGTTAATCAGGATGTCGTCAGTTCGAGTCTGACAGGCGGAGTATCGGGAAGTGGCTCAGTTTGGTAGAGCACCTGGTTTGGGACCAGGGGGTCGCAGGTTCAAATCCTGTCTTCCCGATGTCTTCCCGATCAAACGAAATATGCGGAAGTAGTTCAGTGGTAGAACATCACCTTGCCATGGTGGGGGTCGCGGGTTCGAATCCCGTCTTCCGCTTAGCATCAAGCGATGCTTAATTGAATAGATGCACCCATAGCGCAACTGGATAGAGTGTCTGACTACGAATCAGAAGGTTGTAGGTTCAAGTCCTACTGGGTGCATTGGAGGATTAGCTCAGCTGGGAGAGCATCTGCCTTACAAGCAGAGGGTCACAGGTTCGAGCCCTGTATCCTCCATCTGGCCCGTTGGTCAAGTGGTTAAGACACCGCCCTTTCACGGCGGTAACATGGGTTCAAATCCCGTACGGGTCATTGCCGGAAGGCAAGAATTGAATATTTTTCTATCCATCAAATGGAGGATTACCCAAGTGGCTTAAGGGGACGGTTTTGAAAACCGTTAGACGGGGCGACTCGTGCGTGGGTTCAAATCCCACATCCTCCTTTTTATTATCGCGGGATGGAGCAGTCTGGTAGCTCGTCGGGCTCATAACCCGAAGGTCGTTGGTTCAAATCCAGCTCCCGCAATATGGTCCATTGGAGCAGTGGTTTATCTCGCCTCCCTGTCACGGAGGAGATCGCGGGTTCAAATCCCGCATGGACCGTTTGATGGCTCGGTAGCTCAGTTGGTAGAGCAATGGATTGAAGCTCCATGTGTCGGCGGTTCGATTCCGTCCCGCGCCATTGAAAATGGAGGAATAGCGAAGTGGCTAAACGCGGCGGTCTGTAAAACCGCTCTCTCTGAGTTCAGTGGTTCGAATCCACTTTCCTCCATAATAGGGATATAGTTTAAAGGTAGAACTACGGTCTCCAAAACCGTCGGTGTGGGTTCAATTCCTACTATCCCTGTTAACAGAATATGGCGGTATTGGTGAAGTGGTTAACACACTGGTTTGTGGATCCAGCATTCGTGGGTTCGATTCCCACATACCGCCCTAGCCGAAGGGCAGAAAAGAATAATCGTGGCGGTGTAGCCAAGTGGTAAGGCAGAGGTCTGCAAAACCTTAATCGTCGGTTCGACTCCGATCGCCGCCTTAGGCTTAACGGCCAAGTAGAATAGCATGGCGGTGTGGCGGAATTGGCAGACGCGTCAGACTCAAAATCTGGTGTCCATTACGGACGTATCGGTTCGACCCCGATCACCGCTATAATTTAGAGCGACTCTGAGGAGCCGCTCTTTTTTGCTTTCATTTGCAGAAAAGTAATGAAAAAAGCTGACTTTTATCCTTTTTTGCCAAAAAGGCTTGCATAAAGGTGAAAGTGTGCTAGCATAGTAAGCATATTAGGAAGAACGATTTAATTAGAAAGGAGCAAAGAGCATGACTCAAGCTAGAGTAAATACTTGCAGGCTTGACGGGGTCGTTGGTAAGGCGATCCGATATTTGTCATGCTTTTTCTCTTAAGCAAAATTATTGAATAATCTGTAAGCAGCATGGCTGTAAGATTTTCTGTTCGCGCCAATGGCATCGTTAACTGGAAGCTGTTAATTGTTTATGCGAGGTATTGGAATTGAACAAGGGAAAATCTTTATTGGCTGGTGCTGCTGTTTTGTTTTCTGGGGCACTTTTGACGGCTTGCGGGCAAAGCACGGGAGCAAGTGAGAAGCTGGTATTGAACTGGATGACATCGGCAGAAATCATCACTATGGATCCATCGAAGGCGACGGACGCAACTTCTTTCACCCAGATGGAAAACACCATGGAAGGCCTGTATCAATTAGACAAGGACAACCAGGCCAAGGAAGCCCTGGCGACTAAGGCTGCCCAAAGCAAGGACGGTCTGACCTGGACTTTTGATTTACGGAAAGACGGCAAGTGGTCCAACGGGCAGGCAGTTACTGCTAAAGACTTCGTCTACTCCTGGCAGCGGCCGGTTAATCCCAAGACCGCGTCTCAATACAGCTATATCTTCTCCGGCATTAAGAACGCGGATGCGATCGTGGCAGGCAAGAAAGCCCCGTCCAGCCTGGGCGTCAAAGCTCTTGGCAAGTACAAGCTGCAGGTTAAATTAGACCACAAGCTGCCTTATTTCAAGCTCTTGCTGGCCTTCCCGGTATTTTTTCCAGAAAACCAAACTGCAGTTGAAAAATATGGCAGCAAGTTCGGTACTTCTTCTAAGACCACGGTCTTCAATGGGCCCTTTGTCTAAAAAGGCTGGACCGGAGCCAACCTGTCCTGGAAGATGGTCAAGAACAAGAACTACTGGAACAAATCAGCCGTCAAACTGGCCTAGATTAATTTCATGGTTGAAAAGTCACCGTCAACGGCCTACAACCTTTACCAGGACGGCAAGCTGGATACGGTAATTTTGAGCGCCCAGGCAGCCAAGAACCTGCAAAAGCAGGCCGGCTACGTGATCAGAAAGAACAACGGCACGACTTACATGCAGTTCAACACCAAGCTGGCTAAATTTAAGAGCACTAAGCTCCGTCAAGCAGTTTCCATGGCTTTGGACCGGAAGGCCCTGGCCAAGACCCTGGGCGGCGGCTTTACCGGTGCGACGACCTTTACCGCGGCTTATATGACCAAGGTGGACGGGCAGGACTTTACCCAGCTGGCCCAGGACAAGACGACCAAGCAAATTACCAGCTACCACAAGACATTGGCTCAGAAGACCTTTAAGGAGGCCCTCAAGGACTTGCAGCTGAAGAAATTATCTTTTACTTTGCTGATGGCTGATGACGACAGCTCAAAGGCGATTGGTGAATACATCCAGAGTGCCTTGGAAACGGCTTTTGGCAAGCAAGTCTCCGTCAAGGTGCAGAGCCTGCCGACCACAAGTCCCAGTTTGCCAAGATGGACAGCGGCAATTTTGAAGCCTGCGTCAGCGGCTGGAATGCTGACTTCGCTGACCCGATTTCATTCCTGGACTGCATGACCTCAACTAACGGCTACAACTCCGGTAAGTGGTCAAACAAGCAGTATGACCAGCTGATCGTCAAATCCAAGACCGTTACTTCATCTAGCCAGCGGATGCAGTTTTTGGCCAAGGCAGAAAACATCTTGATGACCGACCAGGGGGGTAACGCCGCTGGTTCAGTCCGGCAGTGCCTGGATGCTGAATACAAAGGTCAAGGGCTTGATCTACAACGGCAGCTACTACTTCGAATATGCCTACTTACAGTAAAAGAACAAGTAGAACGATTGTCAAAAGGGCTCGCTTTTGCTAAACTGAAGGCAGATTTAAGAGCTTTTTGCAAAGAGGGGGGAGCAAAAAATGAAGGACTCAAATTCTTTTGTCTACAATGTCTGGCTGATCATTCTGCTGGTTGCTGCCTACATTTGGCCAATCTTCGGTCTGGTGCCGGCAATTTACCTTTTTATCAAGCGTAAAGATGAACAGTTAGAGAAGATGCAAGGCTGGATTACTCTGGCCTTGATCTGGCAGATCGTGCTCTGGCTCCTAATGATCATTTTCTTAATCTGCTTTGTAGCTCTTGCTGGCTCAGCTGGCAAGTAAAAATTGACAAACTAAAACCGCTAGCCCTGTGACTAGCGGTTTTCTTCTGCCTATAAATAAGGTGCCATTTTTTTGTAAAGTTCGTCTAAAGGAACGGGCGGACTGAAGAGGGAGCCCTGGGCCAGGTTGCAGCCGGCTTCTTTAAGGAAGTCAAACTGTTCCTGAGTCTCAACCCCTTCACAGACGGTTCTGATCCCTAATTCCTTGGCCATCCGGCAGATATTGCGGACGATCGTCTTGGACCGGTCATCAAATTTTCTGAGGAAGACCATGTCGATCTTGATGACGTCAAAGTGGTAGTCCTTTAAGACGTTCAAGCTGGAATAGCCGCTGCCAAAGTCATCCATCCAGACCTGGTAGCCCACCAGGTCATGGAAGTGCTGGACGGCTTCGACCATGGCCTGGCTGCTGTCATTAAGGGCACTTTCCGTAATCTCAATATGAACTTGATCGCGGCTGAGCCCGTAGCGGGCGATGGTGTCTTCGATCTTTTGGTAAATATTGCAGGCTTCCAGGTCTGTTCTGGAAATGTTAAAGCTGATGGGGAAGATTTCTTTTCCCTTTTCTCGTAAAAACTCAGCGTCTTGCCCATAGCCCTCTAAAACGTGGCAGTCAACCTTGTAGACTTCCCGGTTGGCCTCCAGGGCAGGGATAAACTTGTCTGGAGACAGGAAGCCGTATCTGGGGTCAATCCAGCGCGACAAGGCCTCACATTCAGCCAGCTTCATGTTTTGGATGTCGATCAAGGGCTGGTAGTAGATCTTGAGCCAGTTGTCGCGGCAGGCTTGGTCGATCTGGCTCAGAACATGAACCCGGATTTCATCCGCCTTGGCCAGCTGGTCATCATAGTAGCCGATAGAGGCATTTTTCAGCTTGATTGAATTAAGGGCACGTCGAGTCCATGCATCAGCTCAGTATTGCGCTGGCGGTGCAAAATATGCCGGCTGGGCTTAAAGGGAGCTAAGCCAGCCTTGAAGAGTAAAGTTTCACCAGTGCTGCGGGCCGCAACTGTTTTAATAGATTGCTGCCGTCCTGGTAGCCGTTAGTTAAGTTGTAGTCATGCAGGTTGACTAGGGAGCTGTAAAAAATACTTAAACTTTGGCTTTTACCGAACTGCTTGAGGCTCTCTTCATAATGCTCCATGAAATAGTGGAGGCTTTTGGCCCCAGTCAGCTGATCATCATCATATTTCTTCAAGTAGCTTTCATAGCGGTTAACGCTGAAGATATTGAATTTCATGAAGAAAATGTACATGATGCAGGAAATAATAGCTAAAAAGGCTGACCACGTAGGCGATTGGCGTTGGGACCGCCGAATTGTTGCCATCAAGGAACATGCGGGGAAATTCTGCCTAGGCTACGACCAGGATCATGCAGAGTATGGTGGACCAGAAGAAGCGGCCGTCTTCCGTGATGACGGTCTGCTCCTGGCTGATGTAGCGGATTTCTTTTTTAAAAAGAAAGTAGAGACAGAGGGTTAAGATAGATAATGGTGAAAAAGTCCCATTGCCAGGTTTGATTGGCCAAGAGGGATGAAATTTCAGCGGCGATGACAAATTGACAGTAAGTGAAGACGGCTACGGACGGCTTCTTGTTAATTAGGCGCTGATAAAGGAAAATGACTGGGATCAGGGTCAAGAGGATCAATCCAGTTGCCAGAAAAAAGGCGCTTAAGGCATTAAGGCTGACCAGGGGGCTTAGCTTCTGGTAAAGGAAGACGGTCATGATCATGGATGTGCTTAAAGAGAGCAGGAAGGCTCCCAGGCTTTTGCCAATCCGTTTTGGGATGCTTTCCTCTTAAAAAAATAACTGATCAGTAATTAACGCGATAAAGAATACCTGCGGGAGAAAAGTGTGGTTGCGGGCATAAAAGGTTGTAAACTAGGCTATCATGTGTCCTTCCTCGATATAATCTCGTTATTAACAGAACTGCTTATATATAGATTTTAGCATATATTTCTGTCCAAAGCGGATGTTAAATCGGCATTTTCCGGTAAGGTAAAATTAGCGTAAAGAAGACTGAACAAAAAGTGAAAGCGCTATATTTTACAAATATAAAAAACAGATAAATTAAGCAAAATAAACTGAAAAAGCAAAGGGGAGCCTTGCGAAAACTTTGTAATTCTGTTAAGAAAGCGGCTTGTCTTAAACAAAATTAAGCATTTTACATTGATTTAACAATTATCACTGAATGCATTTAACTTGCCTCCATTAAGATTGAATCAGTAAGAATTCAAGGAGGAATTAACATGTCACGCAAAAAAAAACAAAGTCGCCATCGTTGCACTTGTTTTGCTGGCAATCGTCACTGTCTGCGTCATCGGCAGCTGCGAAGCCGATACCAAGGGAGTTTCCGGGACAGTTAACATCGCCGGGTCATCTGCCCTTCTGCCTTTAGCGCAGAGCGCGGCCAAGACTTTTATGGACAAGAACCCGGACAGTGTCATCAACACTAACGGGGGTGGGTCAGGCCAAGGCCTGCAGCAGGTTTCTGACGGCACCATCGACATCGGGGACTCAGACTTGCTCGCGGATGAAAAGCTGGACAAGAAGTCAGCCAGCAAGCTGGTTGACCACCAAGTGGCCATTACCGCCATCGCTCCGATCATCAACAAGGATGCCGGGGTTAAGATCCTGACCACTGAACAATTGATCAAAGTTTTCACCGGCAAGGTGACCAACTGGAAGCAGGTTGGCGGCAATGACCGACAGATCGTCCTGGTTTCCAGACCATCTTCATCAGGTACCCGGGCAACTTTTGAGCAATACGCTTTGAAGAAGCACGCTAGTCAGTCAAACCAGTCTCTGGAAACTGACGACTCAGGTACTTTGATCCAAATGATCCAAAGTGTTTCCGGCTCAATCGGCTACGTTGCCCTGTCCTACTTGACTGGTGACCCGCAAGTCGGCATCGTGTCAATCAACGGTGTTAAGCCAAGCCTGAAGAATGTCTACAATGGCAAGTATACGGTTTGGAGCTATGAGCACATGTACACTAAAGGCCAGCCAAAGGGTGCGGCCAAGGCATTCTTGCAGCAGATGCTCAGCGAGGAATATGGCAAGAAGATCGAAGCCATGGGCTACGGCATAGCCTCCAAGCTGACGGCTGCCGCTAAAGCCACCCATACTAAGTAAGAAGGAGAAATAAGGCATTATGGACAAAGTAGTTCAAAAAGCAATTGCCAAAGACAAGCGCTGGCGCGCGGTCTACATCGCCTGCGGCCTCTTGATCGTTGCTTTGACCCTTTTGATGGGGGCCTTCCTGCTCTACCAAGGCAGCCAGACCGTCCTTAAGGCGCACCACAGCGTTTGGGAGTTCCTGTTTACCAGTGACTGGGCACCGCTTGACAAGACCGGCATGTTCGGGGGAAAAGTCGGGGCTGCCATTTACATCGTTGGTTCCCTGGAAACCTGCTTGCTGGGTTTGCTCATCTGCCTGCCGTTCGCGATCGGTTCAGCCGTTTTCATGACGGAAATTTCACCAAAAATCGGTGAAAAGTTCTTCCGGCCGGCAACCGAAATCTACGTCAGCATCCCATCCGTTGTTTACGGCTGGTTTGGCTTGACCAAGCTGGTTCCTATAATCAGAAACGCCTTCCACCCAAAGATGGGCGGTTTCTCAGTCCTGGCCGCCTCAATCGTTCTGGCCATCATGATTTTCCCAACGATCACTACTGTCGCCGCCGACGCCATCAAGTCAGTCCCGAATAGCTACAGAGAAGGGGCTTACGGTTTAGGGGCGACCCGCTGGCAAGTTATCGGCAAGGTTGTTTTGCCAGCCGCTTCCGGCGGTATCTTGACCGGGGTGGTCTTGGGTCTGGCCCGGGCCATCGGTGAAGCTTTAGCCGTAGCCATGGTTATCGGTAAGACCCGGTCCTTCGCGACCAGTCTCTTGTCACCAACCAGCAACTTGACCAGTGCAATTGCCGCTGACATGGGTAACACGACCCAGGGCGGGGAATACAATCTGGCTTTGTGGTCAATGGCCCTCTTACTCTTCATCATCTCAATCGTTTTGATCGTCTTGATTCACAAGCTTGGCAATGGAAAGAAGGAAAAATAAATATGAGCCGTGCTAAAAGAAAAGACCGGCTGATGACGGGAATCTTCTACGCCATCGGTTGGATTATGCTGGCCTTCCTGCTCTACTTAACGCTGACCATAATCTTTGACGGCTTGAAAGGCTTCCAGTGGGACTTCTTGGGAGCAGCCGGCAACGGGATTTTCAACCAGTTTTTCAACACTATATACTTAGTTTTCCTCTCACTGCTGGTCTCAGTGCCAATCGGCATCGGGGCCGGGGTTTACCTGGCTGAATACGCTAAGGAAGGCAAGTTCCTGACAATCTTTGAAATCAGTATCGAATCCTTGTCATCCCTGCCATCTATCGTTATCGGCTTGTTTGGCTACTTGGCCTTCATCATATGGACCGGGATGTCCTGGAATATCCTGGCCGGTGCCTTGACGATTTCAATTCTTTCAATTCCTCTGATCACTACTGAAACCAACAACGCCATCCGGGCCTTGCCGGTGGAATACAAGGAAGGTTCCCTGGGCCTGGGCGCGACCAAGTCAGAAACCATCCGCAAGGTCTTGATTCCGGCGGCCATGCCGCAGATCTTGACCGGGGTAATCATGGCTGCCGGGCGCGGTTTCGGTGAAGCCGCTGCGCTTTTGTATACTTCCGGCCAGTCAACTTACATCAACTGGCAGAACTTCTGGAAGGTTACCTCACCAACTTCACCGCTGAACCCGTTCCGAAGCGGTGAAACTCTGTCCCTGCACATCTGGGTCATGAGAACTGAAGGGGCCTTGAACCCGTCAGCCACTCAGATCGCCAACTTTACTTCAGCAGTCCTGGTCGTTTTGGCCCTGCTCTTCACTTTGGTTACGCGCCGTATCTCTGACAGAATGCGCAAGCGCAATAACGGAGGAAATTAATGATGGAAGATAAAATTACAATTGAAAAGCTGAACCTGTACTACAGTGATTTTCATGCCTTGCATGACATCAATATGCACATCCAAAAGAACGAAATCACTGCCTTCATCGGCCCGTCAGGCTGCGGGAAATCAACTCTTTTGCGGTCACTTAACAGAATGAACGACCTGGTTGAAGGCTGCCGGATTGATGGCTCGATCAAGCTGGACGGCACTGACATCTATAACGGTGACCTGGATGTGACCGTCTTGCGGCAAAGAGTCGGCATGGTCTTTCAAAGACCAAACCCGTTCCCGATGAGCGTTTACGACAATGTTGCCTACGGCCCGCGGATTCACGGGATTACTGACAAGAAGGAACTGGACGAAATCGTGGAAACTTCCCTCAAGCAGGCAGCTATCTGGGACGACTTGAAGGACCGGCTGAAGAAATCAGCCCTGGGCCTGTCCGGCGGTCAGCAGCAAAGGCTCTGCATCGCCCGGGCCCTGGCTGTCAAGCCGGAAGTATTGTTGATGGACGAACCGACCAGTGCCCTGGACCCGATTTCAACCTCTAAAATTGAAGAATTAGCTTTGGAACTGAAGAAGAACTATACGATCGTCATCGTTACGCACAACATGCAGCAAGCCGTGCGGATCTCTGACAAGACTGGCTTCTTCCTCTTGGGTGACCTGGTTGAATTCGGTGAAACTGACCAGCTCTTCTCCATGCCGAAGGATGAAAGAACTGAAAAATACATCACCGGCCGGTTCGGTTAAGGCTAGAGGAGGCCAAAAATGAGAACAAGATTTGACAAGGAACTGTATCACTTGCATGAAGCAATGGAAGAAATTGGCCAGCTATGCAAGGAAAGCATTTTTGAATCAACCGACACCCTGTTTACGGGCAACTACCATGAAGCAGAGGACACGATTAACCTGCACCACCGGATTCACAAGGCAGAGCGTGACATTGAAGAAACCTGCCTGCGCCTTTTGATGGAGCAGCAACCGGTTGCCACTGACCTGCGGATAATCAGTGCATCTTTGAAGGCGGTCTACGACCTTGAAAGAATCGGTGAAATTGGCGCAGACATTGCCGACCTGGTCCTTAACGAACACCTCTCAGTCGCAAATGACATGCTGAACTTGAAGAGCATGTCCCAAATTGCTACGAGCATGGTCAACGACGCGGTAACGGCTTTAGCCAACCAGAATGTAGAACTGGCCAAGGCCGTAATTGACCGCGATGACCAGGTCGACGAAGGCTTTGACAAAGCGAAGGCATTTTTGATCGATAACTTTAACAAGGATGGTAATCCGGAATACTTGATCAATTTGTTGATGGTCGCGAAGTACTTTGAAAAAATTGGCGATCACGCCGTCAATATTGCTAAATGGTCCTTATTTGTAACTACCGGCAAGACTGGCAGATAAGTCCAATTCCCCTTACCACTCTTGTGCATGATTATGGTCGTAAACTATAATTAAGTTTAAGAAAGGTTAAGGGGATTTTTTATGACTGAAATTTGGTGCGTGGAAGACGACGAAAGCATCCGCGAAATCGAAATGTACACGCTGGAATCAATGAACTTCAAGGTCCGCGGCTTTGAAGACGGACAATCTTTTTTCAAGGCCCTGGACAATAGCCGGCCGGATTTAGTGATTTTGGACTTGATGCTGCCTGATGAAGACGGCAGCGAAATTCTCCACCGGCTCAGGTCTACTTCCGCGACCGAGGACTTGCCGGTGATTATCGCCAGTGCTAAGACGGCAGAATATGACAAGGTCAAGAACCTGGATTCCGGGGCGGATGACTACTTAACCAAGCCATTTGGAATGATGGAAATGGTTTCCCGGGTCAAGGCTGTTTTGCGCCGGACCAACCGCAAGAAGGAGGACAAGATCGAAAAAGACGGGATCAAGATTCTCTTGAAGCGGCATGAAGTTTTCGAAAACGGCCATCAGGTCGATTTGACTTTGAAAGAATACGGACTCCTGAAGCTCTTGATTACTCATCCGGGAACTGTCTTTTCCCGGGAATAAATCATGGATCAGATCTGGGAGACTGGTTTTTACGGGGAAACGCGCACAGTAGACGTTCACGTGAGAACCTTGAGACAGAAGTTGGGTGAGGCTGGTAAGCATATCGAAACGGTGCGCGGGGTCGGTTATCGCTACCATGAAGCAGACTAATGTTTAAGAAGATATTTCGGGCAAGTTTTTTACTGACTTCTCTGGTTCTCTTCTTTGCCGTACTCTTAAGCGCGATTGTCTTGAGCATTGACTTCGACCATACAGAAATGTCCGCCCTGGCTTCCCAGGCTGACCTGGCAGCCAGCGGGGTAAATACCAGCGGCAAGAAGTACATCAAGAACTTAAAAGGGGAGAACTACCGGATTACTTGGATCAATTCCAAGGGCAAGGTTCTCTACGACAATGAAGAGAATCCCAAAAAGATGGGCAACCACTCCCGCCGCGAGGAAGTCGCCGAAGCCATGAAAAAGGGGACAGGAACCAGCGAGCGCTACAGCACGACCTTGTCGACCGTAACCATGTATTATGCCGAGCGGCTCAATGACGGCGGGGTCATCCGCATCGCGATCACCAGAAACTCCTTCTGGCGGATTCTGGTCAGATTTTTGTCGCCGCTTTTGTTAATCATGCTTTTATCGGTCCTGGTGTCCTGGTTCCTGGCCAAGACAATCTCGCAAACGATCGTCAAGCCGCTGAATGAAATGGACCTGGACAAACCCCTGGAAAGCAATGCCTATGACGAAATCAAGCCGCTTTTGACCAGACTGGACAGCCAGAACAAGCAGATCGCTGACCAGATGGAGCAGCTCCACCACCGGGAAAAAGAATTAAAGACGGTGACAGATGCCATGCTGGAAGGCTTGATCTTGATTGACCTGGATGACCAGATCCTCTTGTCCAACCCGGCGGTTGTCTCCCTTTTGGGCTTGCATGATACTGACCCCTTGCCAGATGATGTTAAGGAAATCATCGATAAGAACAGCCGCTTGGCCCATGCTGAGGGGATTGTGGAAAGAAACGGCCGCAATATTCAAATCAGTGCCAGCCCGATTACCAGCCGCAAGATTCTGAAGGGGACTTCGATCCTGGTGGTTGACGTGACGAAAGAATACCATGAAGAGCAGGTCCGGCGGGAATTCACGGCCAATGTGTCGCATGAACTTAAGACGCCCCTGCAGTCCATCATGGGGTCAGCTGAACTTTTGGAAAACCACCTGGTTAAAGAAGAGGACCGGGACAGCTTTTACAAGAAGATCCACGAATCTTCTGCCCAGCTTTTGACCTTGATTGACGACATCATCCGTTTGTCCCACCTAGATGAAAATCAACGCTTTGAAGAAATCAAGCTGAACTTGAAGAGTCCGGTGACCGAGGCCCTGGAAGCCCTGCAGAGTTCGGCTGACCGGCATGGAATCAAGCTGGAGACTAATTTGTCAGACACTATGATCCTGGCCAACTTCCGCCTGGTTTACGAAATTGCCTACAACTTGATTGATAACAGCATCCGCTACAACAAGGAAAAGGGCAAGACCAAGATTACGGTCAAAGAGCACCGGGGCCAGGCGATCCTGCAGGTGGCGGATACTGGCATCGGGATTCCCCAGGAAGCCCAGAACCGGATTTTTGAACGCTTCTATCGGGTGGATAAGAGCCACAGCCGCAAGACCGGGGGGACTGGCCTGGGCCTGTCCATTGTCAAGCATGCTGTTCAGCAGTGTCACGGGACCATCCGCCTGGAAAGCGAATTAGGCAAGGGGTCAACCTTCACGGTTATTTTCCCGGCCCTGCCAGCAGGAGCAGATGATAATAGCAAATAAAGTAAAAATGACAAATGAAAACCAGTTCACTTTAAACAGTGAACTGGTTTTGCTGTATATTGGCTAATTTCTGTTATTGCACTAGTTGTCGAAGTGGAATTGTAGGTCCTTTTGCAGCTTGTAGCTAGTCAGTTCCTTGCCATCCAGGTCAGTCTTGTGCATGTCAACGGCGTGAACTTCCGGGTTGCCGTAGGTGGTGTAGTAGTAGATCCCCTTTTCCTGGTTCATGCAGGATGAGTAGATAGTGTACTCGTAGTCACCCGGAAAAAACTTTTCGAGGTATAAATTATGACAGCAATTCAGATTACGCACCTTTCCTACACTTATCCCAGCCAGGCAGAAGCAATCTTTACCGACCTCTCTTTGGACCTGGATTCCAGCTGGAAAATGGCCCTGGTGGGCAACGGCCGGGGGAAAACGACCTTTCTCCGCCTTTTGGCCGGGCAATTGGGCGACCAGCGGGCAGTCAAGTCTCCTTTAACCTTCACCTATTACCCCCGCTTTTTTGCCAAAAGATGAGCCAGCTTACTTTAGTTTAATGGATGAGGCGGCTTTTGAGCTCTGGCGCCTGGAAAAAGAAATGAACCGGTTGAACTTGAGTCCGGACTTGCTCTACCAGCCCTTTGGCCAGCTCAGCGGGGGAGAGCAGAGCAAGCTGCTCTTGGCCCTGGCCTTCAGCCAAGATGGCGTTTTTCCCTTGCTGGATGAACCGACCAACCACCTAGACGGCGCCAGCCGCGGGATTGTGGCTTTGACCGGGCCAAACGGCAGCGGCAAGAGCAGTTTTTTGGCCTGGCTCTTGGGTAATAAAGATTTTACCTGCCAGGGAGACTGGGACTTGCAGACTGGGCTAAAAATCAGCTACCTGCCCCAAGATTTGTCAAGTTACCATGGCTATCTGCCAGCTTTTGCCAAAGAGCATGACCTGGACTACGAGCACTTTTTAAATCAGCTGAAAAAATTAGGCCTGGAGCGGGAGGCCTTTAAGCAAAAGATTGAGGAGATGAGCCAGGGGCAAAAGAAGCGGGTAGCCCTGGCCAAGTCTCTGACTGAAGAAGCCAGCCTCTACCTTTGGGATGAACCGGCCAACTACCTAGATCTTTTCAACCAGGACCAGCTGATCAAGCTGCTGGCAAAAGAGCAGCCGGCCATGCTTTTAGTTGATCACGACCAGGCTTTCATCGAAGCCGTCGCCAAAGAAAGAGTCAACTTGCGGACGGTCTTATAATTTGCAAAAGCGACCGTCTTGCCCTAAAATTTACATAAAATAATGATAGCCTTTTACTTGATTTTACTTCTTTAGCTTATTCTAATAACTAAAGGGGGGCTGAAAAGGATGGCACGGTACGTCTTTTGCAAGCCGGACAAGCCCAAATTGACCTGCTGGAGCATTATTGCTTTTATTGTGCTAGGGATCATCGCCACGGCATACTTAGGCTTGACGGCATAGCTTACTTATTGATAAACTCTTCTTCAAAAAATACAACTGCGCTAAAAAGCCACGGCATTTTCTGCCGCGGCTTTTGTCTTGTAATATCTATGTAACATCCGCTTGCTACAATTATTTCCAGAGGTCACTGACAAAGTAGCACAGGGCTGCCCAGGCAACCAGGGGCAGGTAGTGGCCATAGTCGTCTCTGCCTTCCTTGAGCAGGCGGCGGGCCTCTTCCTTGTCAACTAATTTGAAGTCGCCAAAAACTTCGGTGCCTTCAGCTCCTTTGTGGTTAAGGGCTGACAAGTCATCAACGTGGATGACGGCTTTGACAATGGCGTTGCTTTCGTCGCTGAAGCCGGAAGCCATGAAGACCAGGGGGTTGATGACTTCAACCGTGTCCTTTTCACCGATGCTGAGTCCGGTTTCTTCCTTGATTTCACGGATCATAGCTGTTTTGATTGGGTCCTGGCTGGCTAGGTCAGCTGGGTCAATCAAGCCTGCCGGCAGGCCGAGCAGGTAGCTGCCAGCCGGGTACCGGTACTCGTAAAAGAGCAGGAGCTTGTCTTTCTGACCGGCTTGCTTAACGATGATGACCGCGCAGACGGCATCAGGCTGGGCGCTTCCCAGCTCTGGATCCTGCTTGAAGGCAAAGAGCTGGTCTTTGTCCCGCCTTGAAGCATCATAGTAGTGGACCCCGTTTTCATATGCCAGGTCGTAGAGTTTGACATATTTGGTAGCGGCCAGGGTTTTGCTCTGGTCAGGTAAAATTTTAGGTTCTTGCATTTAGTGTCGGTCCTCCTTGTATCACCTTTATTGTACGATAAGAATGGAACAGTCATGAGGAAAATCAGCAAATTTTTGAGTATTGTGGCCCTGGGTCTGTTAGTCGGGGGATGCAGCCAGGGGCAAAAGGCCAAGCGGACTAAGGCGAAAACTGAGACCAAGACCAGCCAGAATGCAAGCGGGGATTTGGCGAAACTCAGCCAGAGCCGGGATTTGTTTGCCTGGACGGTCTACTGGGACGTGGACAAGCCCTGGCAGACCATTCAAAAGGAAAGTCAGAACATCGATGCCGTCGGAACCTTCGCTGCTTTTTACGATGAAAACAAGAATTACGAACTTTTTTTAGCAGATGGCAGCAAGAAGCTGGACAAGGAAATGCGGACTACAGCCAAAACCAGCAAGATCAAGCGTTACATGACCGTGGTCAACGACACCCGGACGGCAGACAAGAGCACCGACCTTTTGGAGACCCTCCTGGCCAGCAAGTCAAAGGCGGACAAGCATGCTAAGGAAGTCGTGGCTCTGGCTGAAAAGTACAATTTTACCGGGGTGGAAATCGACTATGAACAGATCCGGGACAATCTCAGCCTTTGGAAGAAGTTCTTAGTTTTTGAAAAAGCCCTCTACGCCCGCACTAAGAAGGCAGGTCTGGACTTACGGATCGTCCTTGAGCCGCCAACGCCGGTAAGCAAGATCAACTTCCCCAAGGGACCGGAATATGTCGTAATGTGCTACAACCTTTATGGTTACGGGACAAATCCCGGGCCAAAGGCAGATTACAAGTTCTTGAAGAAGACGGTCAAGGACTTCTCCAGCTTGGGCAAGATTTCTTATGCCCTGTCAAATGGGGGCTTTGACTTTAACGGGGATGAAGTGACTTCCGTAACTGGGTCTGAAGCACTGAAAATCAAGAAGAAATACAAGGCCAAGGCTGTCCGGGATAAAAAGAGCGGCGCCCTTTACTTAAAATATGGCAGCCATACTGTCTGGTATGCAGACCAAACCACCCTGCAGCTCTGGGCCAAGACCCTGGACAAGGCCAGCGGGAAAAAGGTTGGCATCAGCATTTGGCGGATGGAATAAAGGCAAATAGCAAAGAAAAAACTAGCTGAAAAATCAGCTAGTTTTTTCTTTTTCCCGTCTATAATTTTTGCAGGTATTCCCGCAAAAGCTTTAATCCGCCCACTGGGGTGCAGAAGTCCGGGTCTTTGGCCTGGGCCTTCTCCCAGACCTCATCAAGGTCAAACCAGGCAACGGCTGAAACTTCTTCTTTCTGCAGGACTAATTTATTTTCGTCTACGGGCTTAGAGTAGACATGCACAAAGGAGACCTCCCGGTTTTTGAATTCTGTCTGGTGGAAGACCTCGTCGTAGCAGTTATGGAAGGTACCGATAAAGGTAAAGTCAGCGGCCTGGCTCTTGATGCCCAGTTCTTCTTCCAGCTCTCTGATGATGGTTGCCAGGGGCTCATCTCCGGCAGCGATGTGGCCGGCAGAAGAGGTGTCAAAGCAACCTGGGTAGGAGTCCTTATTGGCGGACCTTTTCTGCAGGAGGACTTGCCATTTGCCGGCTTTTTGCCGGATGATCCAAACTGAGGCGCAGCGGTGCCAGGCCCCAATCCGGTGGGCTTCATTCCGCTCAATGGTCTGCCCGGTAGGCCGGCCCTCTTTATCCACAATATCAAGAATTTCCATAATTTACCTCGAATTTTCAACGCTTTTAGAGCGATTTTACCAGCAAAAGGTCTTTTTGTCATGGCCCCGTGAAACTAAAACGCCATTTTAACCGGTTACAAGGCAAGGGGCGTAATCCATTAATAACAAGATTTTTCTCTTAAAAGATGGTCAAAAAGCATTTGTGCACCAAGGCTATTAAATACAGAAAATTAACGACAAAGCTAGATATACCAAGCAATTAAAGGACCTTAAAAAAGGAAGATGAGAAAATCGCGACAACGTGAAACGGTAAAAGTGGAAAAAGGCAAATATTGACCAAAAAAAGCAAGGCAAAAGGAAGTTCCTTTACCTTGCTTCTTTAAGGAGCGATAAATGTGTTTAGTAGACCCGGAGGCCGATTCCCAGGAAGATCAGGCAGATCACGAACTGGATGACCAGTTGCTTCCATATAAACTTAAACCAGCGGTCAAAGCCGATATTGACCATAGCCAGGGACATCAAGATCAGGCCAACTGGGGCGATCAAGCCGATGTAGCCCTGCCCCCAGTTGGACGATGTAGATCAAGAAGAGGACCCAGACGAAAGCCAGCTTGTTCATGCCGGTGATCTGCTTGCTGAAGAAGTACATGATCGTGTCGCTGGTGTGGCTTTCTGGAGACCGCCCGGGCCAGGCCGACCGTCAAGGCAACCCCTACCTAAAAGGTCAGCCGCGCCGCTGACAAAGCTTTCCATGAAGCGGTGTTCACTTAAGCCGGAAACCAGGAAGAGAAGGTAGGAAACGGCCAGGAAGACAACCGCGATTTCCGTGAAGTACCAGCCCAGGCTCTGGACACCCCAGATCATGACAAAAAAGCCAGCCACGAAGGTGAGCAGAGTCAGTTTTTGCCGCCAGGTGAAGTCGCCCTTGTCAGCTTGTGAGTCAAAAGCAAGAAACTTTTTCTTGTTTTCTTCATATTGGTCGTAGACCAGGGACTTGCTTGGGTCCTTGCGGACTTTTTCTGCATAGATGATGGTGTAGAGCATCCCGGCCCCTAGGGAAACCAGGAGCATGATGATTCTCAAAGGCAGGGCCCGGGCGAAGTTGACTCCGGCCGTGTTTGAAGCAATAACCGTTGAGAAGGGGTTGATGGTTGAACCCAAAGTCCCTAAAGTGGTGCCCAGGAAGATGGTGGCGACCACGGTCATCGTGTCATAGCCGGCCTCCAAGAAGACCGGGATCGGCATCGGGTAGAAGGCCATGGTTTCTTCGGCCAGGCCAAAAGTAGTCCCGCCCAGGGCAATCAGGACCATGACGATGACGATCAAGAGGATTTGCTTGCCCTTAATATGTTTTACCTGCCTTTAAGAGTATTTTTAGGTAAAAAATCAGCTAAAGTAAACTAAAAGTTATAGTACCGGGCTTAGTAGCGAGGCAGTAAGATGAGAACGAGATGAAGCGCATACAAAATATTTACGATATTTTTGCCAAGGGATCGGTTTATTTTAACGAAAGGACCTCCGGCTTAAGCCCCAGCAGCTGGCTGAGCTGCCAGGTCTTGGCCGGCAAAAGGCCCAGGCGGTCCAAAAGCTCCTGGTCACTAAAGAGCTGGTGAACCGGGCCGTGGTAGACCAGATGGCCCTGGCTCATGGCATAAACCTCCTGGCAATTTTCAGCCAGCCAGTCCATGTCGTGGGTGATCATGATCACGGTCTTGCCCTGGGCCAGCCGTTTTTCAAGCAGGCGGGTGACCAGGCAGCGGCCAGGATAATCCAGGCTCATCAAGGGCTCGTCCAGCAGGCAGACCTCCGGGTCAAGGACTAAGGCGGAGGCGATAGTCAATAATTTCTTTCCGGAAAGAGACAGGTCGTAAGGGTTTAAGTCACGGAATTCTGCCAGGCCGAATTCTTTAAGGGCGGCTTCCGTTCTTCTGGCGATTTCGTCTTCCGGCAGTTTAGCCTGCTTCATGGACCAGGCCAGTTCTTTTTCCACGCTGGAGTTAAAAAGTTGGTCATTGGGATCCTGAAAGGCATAGGCGATCTTGCTCAAGCGGCCGGAGGCCAGATACTCAGACAAAGTCTGGCCGTCCGCTTTAATGGCATCCCCAGCTGGCAGGAGGTCAGCCAAAAGTTTCAAGAGAGTGGATTTGCCGGACCCGTTTTGTCCGACCAGGCAGATCAAGCCGGGAGAAAGAGTCAAGTCCGGGATGTCCAGGGAAAAATTCGTTTCCGGGTATCTATAATGAAGGCTTTTAATCTTAATTTGCATTTTCGGCAGCTTCCTTTAGTTCACGGGCATTGACCGGGTAGCAGCCATCGAGTTTAAGCTCCAGCTTTTTGGCCATTTTCCAGGCAGCAGGCTTGTCGAAAGCCGGGTCATCCAGCTGGTTGAAGACCGTTTGCGGAGAGTCCGCCATCAAGAGGCAGCCGTCTTTTATGACCCAGATTTGGTCGCAGAGGGCAGCTAAGTCATCCAGTTCATTGGAGATGAGCAAGAATGGACAGGAAAGTTTTTCCAGCCAGCTGAAAAAGTGCTGGCGGCCCAAGGGATCCATCTGGCTGGTCGGGTCGTCGAGCAAAAGCAGGTCGGGCTCAGTGACCAGGGCAGTGGCAATGGCTACCCGCTGGGTCTGGCCGCCAGACAGCTGGTTTGGCGACTGGTCCAGCAAATTGGTCAAGTCCAGCTGGTCAGTTACCCGCTTAACTGCACTTTCTATTTCCTCATCGCTTTTGCCCTGGTTGAGCAGGGAAAAGGATAATTCATCATAAACGGTGTCGGCTAAACCAGACAGCTGACTGGCCGGGTCTTGCAAAAGGAGGGCAATTTCATGCTGGCTTCGCCAAGCTTCTAGCTCTTCTCCGTTGATCCGGACTGAACCGGAAAACTTGGCGGGAATCATTTTTCCCGCAATTCCGGCTAAAAGGGCCAAAAGGCTGCTTTTGCCGGCATGGCTGGGCCCGATAATGCCGATCCGTTTACCGCGGCTTTGGGCAGAAATATTTTCTAAAGCCAGATTTTCAAAGCCCAGGTAGCGGAGGCTGAGCTGGCTGATGGTCAGTTGAAAATTGTTAGACATGCTTTTACTCCTAAAAGGACCAGGCAGCTGGCAATGAGCAGGCGGTGGCAGAATTTGTCTTTCCAGTAGTCATTTGTCAAGCTGGCCGCCCGCCGCTTAGGGCTGGCATAGCCCCGCAGTTGCAGGGCGATCGACCGGTTCATGGCCTGCTGGAAGCTCTTGACGATCAAGGGCAAAAGGACGGGAAAGAGATTTTTGATCCGGGAGAGCAGGGACTTGGCTGGCGCGATCCCCCGGGCCTTCTGGGCTAGCTGGATCTTGCGCAGGTTTTCCTGCATTTGCGGCAGGATATAGCAGACTGACATGAGGACGTAGACCTGCTGGTAGGACAAACCGGAATTTTCCAGGTAGCGGGCATTCTCTGAAATGGTGGCTGTCTGGATGAAAAAGCTGCTGGAAAAAATAATGGTCAAAATCCGGCAGGCTAAGAGAGCCGCGTGGCCCAGTCCTTCCTGGTAAAAGGTCAAAGAGGCAACGGAAAAGGCGGCGGTATGGTTGCCCGGCCAAAAGAGCCCCTGGATCAAGAGCATGGTCAGGATGAGGAAGAGGCTGAAGGCACACATTCCCCAAAGGGCAGGGAGATTTTTGGTCGAAAGTGCCAGGATAAAGCTGGCAGCGAGGATGCTCAGCGCACTGGGCAGATTGCCGGCGGCGAAAGCAGCGAGCGTAAAGAGCAGGATCAAGAGCAGCTTGCTGATGGGGTCAATGGCTGCCTGCCAGGCGGGCAGGGCCAGGTCTTCCGCGTTATTTCTCATTTTTCAGTCCCCTTGAAAAAGTAGACCAGGCGCTTTGGCAGCTGCTTGTAGATCAAAAAGGCCAGGTAGGCGACGACCGTCTTGTCCAAAAGGTCAAGAACAAATTCATCAAGGAATGAAGCAATCCAGATGTTCACGTGCTTGGCAACCAGGGAGGCAAAGAGGGCATCCCCCCAAGCGATCCCGGTCTGTCCGCCCCAGAAAATGACGTTGAGCGGGGTGGAGATCACGGCGGAAACCAGGGCAATCAAAATAGCTGCTAGCAAGACGGTAACCGGCCGCTTGAAAAAGCCCCGCTGGTTCAGCCAGCCAACTGCCAGGCCGATCGCGATGCTGGTCAAAGCGTAAACGGCGGAAAGGGGTGACAGGGTCAAACTGTAGATGACATGGTTGATAAAGCCGCTGATGGCCCCAGCGACAGGACCACCCAGCATGCTGGCCAGGAAAGTCCCAAGTGACCCCAGCCAGACCGGCAATTTCAACCCTTCAGCAAAGGCCTTGGCAACATAGTTGATCCCGACAGCGGCCGGAATTAGGGTCATGGCGTGGGCGGAAAGCTTGAAGGACCAGAAGCTGGCCTTGTTTTTAGAACTGATTTCTTTGTTTTTAGAACTGATTTCTTTAGAATCCATTTTGCAACCTCGTGAAAAATATAAACAAAAATAAAATGACATAAAAACAGACGATCGTCAAACTAGATCATAAGAGTAAAGGTAACCTATACTTTTATGAAAATAATTTACTGTAAGCTTACCACCAGACTAAAGCCTGGGCAAGAGCTTTTTTTCGAAGAAGATAATGAAAACCCTTTAATTGTGACTTGCAGAAAATATAATATAAACAAGAAATAATAACCGATAAATTATATTCCGTGCTTCTTTTTTTAAGAATCAATTAAGATATTTTCAGTTTTTATTTGAAATGTGCTTTTAGAATTTTAAGAAAAAACATTCTTACTTTATAATGAATGTAAGCGCACAAAATCTAGTTTGCTGGATGGCGGAAAAACAGGAGTGAAAGACCATGGGAATAATCAAATTCACGGAGCAGCAAAGAAAAGACTATGAGCAGCTGCCGACTGACATGGCAATTTACCAAACAATTGACGGCAGCCTAAGACCTTGCTGGTGACAGATGAATTGTGCAGATTGCTGCGGATCAGCCGGGAAGACTTGATCGCTAACCTGGACAAGAGCATGTTTGGTTTTGTCCATCCCGATGATATCGGCCGGATGGCTTATTTTGGCAAGAATTTCGCGGCTCACACAGATGAGAAATACGATGTTTTCTTACGCTGGAAGACACCAAAGATGGAGGATTACCATATTTTCCACTCCTGGGCCAACCATGTGCTGGTTGATGGCGTCAGCCTGGGCTTCTTCTTTTACAGCGACATGGAAGAATCCGGCAAGAACAACCAGATTTTAGATACCCACTACCAGAAGTATGAGATGTACCAGGACCGGTTGACCAACCTGCCCAACCGCCGTTTCCTGGAGATTTTCGGCATGGAAGAAGTGGCCAAGCTGCCGTTTAGCCAAGAAGCAGCCGGTCTGCATGACTCTCAATATTGCCGGCATGAGCGTCTACAGCAACCTTTATGGCTTGAAAAAGGGTGACCAGCTCTTACGGGAATTAAGCGAGCTTTTGGTTAGCGAAATCAAAGAAGGGCATGTTTACTACAACAAGGATGACCGTTTCTTGATATTAACGGTAGCTGAGGGTATCGATGAAAAGATCAAGGAAATCCACGAAAAATTTGTCAACCTGGCCAAGAATAAAGCCGTTGACCTGCAGTTTAGCCTTTACCAGATTTTGGATGATGACCAGAACATCATGATGATTACCCAACGGGCTAACCAGGCCATGAAGGAGATCGGCCTCGACCGCCGGGTCTACGTGAAGAAATACGACCCGGCAGTGGAAGAAGACCTGGAAGAGAGCTACTTTTTGAACAACTTCAGCCGAGCCATGACTGAAGGCTGGCTGACGGCCTACTTCCAGCCAATCTGCTCGGCCAAAGACGGCAAAACGGCCTCATATGAAGCCTTGGCCCGCTGGCAGGATCCGGAAAAGGGCCTGGTTTCTCCAGCTGCCTTTATCCCGGTGATTGAAAAGCACTACCTGACCTATTATTCGGACATGTACATGCTCTGGGAAGTGGTTGCCAAATTGCGGCAGTGGAAGGAGCGGGGGCTGGATCTGAAGCCAGTCTCCGTTAACCTGGCCCATGAAGACTTTGAAATGCCTAATCTGGTTGAAAAAATCAACGACCTGGTTACCGGAGCAGGTCTCTCCTGGTCTTTGATCAAGATTGAAATTACGGAGCGGGACCTGTCAAACAACACTAGCCGCTTGAAAGAGCAGATCGATCAGCTGCGCTCCTACGGCTTTGAAGTTTGGATGGATGACTTCGGCAGCGGCTATTCCTCTCTCAACGCCTTAAACGACTATAGCTTTGACCTGGTCAAAATCGACATGGTCTTTGTCCGCCACCTGGATGACGGACAGTTAAACCGGCTTTTGATTCCGGAAATCACCAAAGTTGCCCATAAACTGGGTTTGAAAGTACTGGCTGAAGGGGTCGAAAAGGAAGAGCAGAGAGACTTCCTGCGAGAAGCAGGCTGCGACTTGCTGCAAGGCTTTTTTGTTCAGCAAGCCGGTTGAATTGGATGAAAATCAGCAGGTTATTTCCTAAACAGGGTTGGAATGTAAAGTTTAATGTGATGTGATAGTGATGAAAGAGAAAGGAAATAAAAAATTGTTCATGGCCTCAGCTGGCAATTTGCCGATGAAAAAGAAGCAGTTTACGCTGACTACCTGGCTTCAGAGGCGTTTGCCAGGGAAGTAGCCAGCAATAATTTAACCATGGGAATTGTCGTTTCCAGTTTGATCGCGGTCATTGGCTTTTTAGGCATATTTGACCTCAATTCAGATTATGCAAATATCTCGGTGCTTCTAGTAATTGCCAGTGAATGGGTCTATCTTTTCCTGCTATTAGCCAACCTACCCAACCTGTTTTTGCTCCTTTGGCTGCAAAAACACCCGCAGGCTGCCGAGCTTGAAATCCGGATCTGCTTTGCCAACCTGGCGGTCAATGCCATCTTGTCTGGTTTTACCTTGTACAGTACCCAGGAGGGGAGCGTCTACTTTTTTGAACTGGTCTTGATGATGATGGTCATCTGCGTCTTTCCCTACTATAAAGCCGGGCATGGCTTATCTTTAGTGGCTTTGAGCCTGCTCATGATCTCAGCAATCATTCTTGTCAACCATGTCCAGGTTGCCTGGCAGGATACCTATGACCTCTTCCTCTTTTACGTTATCGGCCAGGCCTGTATTGTCCTGCGCCGGTACTGGTTTAGGCAGAGCTCTTGGTACAATTACATCCTGCACCAGGCCAACGGGACGCTTTTTGTCAGCAGCCGGACCGATAAATTGACCGGCCTGTATAACCGCCTGGCCTTGCGGGAATACTTCCCCAACTACGGCAAGCAAGAGGTTGGCGTGGCCATGATTGATTTAGACGACTTCAAGCGCTTTAATGCCAATTACGGCCATGCTTACGGGGATCTGGTCTTGACTAGACTGGGCCGGTATTTGCAAAAGGACTGGATGAATGAGCATTTGCGCTGCTACCGCTATGGCGGGGATGAAATCTTGATTATTGCTTCTGGCTTAGAAGATGGTGATTTTGTTAAAAAATTGCAGATTTTTCAAGCTGAATATGCTAAACTAAACCAGCAATTAGAAGAGCCAGCCACCTTGAGCATCGGCTATGCTACCGGCGCGGTTGCCAATGAAGAAGAGTTGCGGAAAATGATTCAGCTGGCTGATAACTATCTTTACCAAGCCAAAAGACAAGGCAAGAACCAGGTGGTTGGCGCAGAGAAGAAATGAGGCATTATGTACAGCTACATCCCGAAAGAACAAATCAAGATCTACCGCTACTTGACGGTTGACGCGGTCAACGCCGCTTTGGCGGACTTGCGGCAAAAAGGCATCAGCCTGGAACTGGAGAGCACGGTCGGGACGGCCGGCAACTTCGTGACCCAAAACGACGGGGTGGTGGACCTGGACTACCAGTTAAAGCTGGTCAAGGCGGCCGAAGAAGATCCGGCGGCCCTTCTGGCTAAAATCAGCGTCGGCTTAACTGCCGGTCTGGCCAGCAAGTTCGAAGGCGGCCGGGAAAACAGCCAGGCTTTAACCTTCCTGCACCGGGCTAAGAAGAGCGGCAAGGTCAACTTTAAGTTAGACTTGACCATCATCAAGGAAGAAGACGGGGATGAATACCGCCTGGTCAAAACTGACGGGGGCAAGTGGAGTGAAGCCTTTAATACTCGCTTTTTGACCATCCAGGAAGAAACGATTAAGGACTGGGACCAGTGGGAAGACTTGCGCGAGGATTATCTTCGCCTTAAGAACGCAGATCCGGCTGGTCTGTCAGTCGACCTCTACCGGCAGGCAGTCAACCAGATCTACGGTTAAGAAGTGTGAAGCAAAGCAGGCATTTGCCTGCTTTTTTCATGCAGAAAGCATTGAAATCTCTTACAAAAAATGAAATAATGGTCTAAGAAGCTAGCAAAAATGAGTTTGGAGAAAAAGATGGAAGAAAAGAAAAAAATCAAATTAATCGCGACTGACATGGATGGCACCCTGGTCAATGACGCCAAAGAGGTGCCCGATTCATTTGCCCCTTGGGTCTTAAGCCACCCGGACCAGCAGATGGTGATCGCCAGTGGTCGGCCATATTACACCAATGAAGAGCTTTTCAAGGAGATCAAAGACCACTTGATCTTCATTGGCGACAATGGCGGATTGATCTACCAGCAGGGGCAAGTCTTGGCCAAGGCCGGCATTACAGCGGAAGAAGCAAAATTCTGCCTGGACCTCTTTAAAGATGAGCCCCTGGCCAATCCGATTCTCTGCGGAGCCAGCCAGGCAATCTGCCACGACCCTAAAGGTGACCGGAACTTTTTAAAGCAGCTGGATACTTACTATATCAAGCGCCGCTATGTTGAAGACCTTGAAGCTGAAGTAAACAGCGATGAAATTATCAAATTCACTGTTTATATCGAAGGCGGGGCCGCTGAAAGCATCTACCGGCAACTGCCGGAAATGCCGGGCAACTTAAGCGCGGTTTTGGCCGGGCCGGAATGGATCGACATCGTTAACAAGGACGCCAATAAGGGAGCAGCGGTAAAGAAGATCGCTGACCTTAAAGGAATCAAGCAAGATGAAATTCTGGCTTTTGGCGACTACTTAAATGACCTGACCATGTTAGAAGCGGCCGGGACCAGCTACGCCATGGTCAACGGCCACCCGGACTTGAAAAAGATCGCTGACCACATTGCCCCAAGCAACAATGATGAAGGAGTAATGCAAATTCTGCGAAAATTGTTTGATTAATTGCTGACAGCTGCCTTTTGGTGGCTGTTTTGCTTTACATTGTGCATGATCCAGGCATACTAGATAGTTAGGTACCGAATCTTAATTTCTTGATTATTTTTTGCAGAAAGGACAAGCAGGATGGCAGAAGAAGAACTCAATGAAGAATTGTTTCACCGGAGCATGCGTTTGCAGCGGTAATTGGCCCAAATGGTAATGCGGTATGAGAAGCTGCACGGCGGCGTCCGGGGGCAGAACCGGACTTTGGCCCTGCTCAGCAAGAATGAGGGGATGAAGCAGGCGGAACTGGCCCGCTTTGCCAGAGTAAGGCCATCCTCAATCAGTGAAGTCGTGGACCGTTTGGAGCGGCATGGCTTGATTGAACGGCGCCGGGATAACAGCGACCACCGGGTTTTCCGCCTCTACTTGACTGAAAAGGGCAGAGAGCAAAACAAACGCAACCACTCCAGCTGGCTGGGCTTTGTTGGCGACTTGCTGAGTCCTTTAGGTGACGATGAAAAGGCGGAATACCTGAACATCTTGAAGAAACTGGACAAAAAGGCATTATTCTTAGAGAAGATGCCAAAAAAGAGGGTGAAAACCATGCTTAAAATTGCTAGAAAAAATTGACTTGCTGGGCGACTTGCCTGGCAAGTCTTTTTTTATTAGTACAAGTTGCATGTGATTTGTACTTGTCGACGGTGACGGCCAACCTGGTTGACAAGGGGATCATTGGCAAGAACCTGCCCTATATCTGGCAAACAGGGGGCAAGATGCTTTTGGTTTCTGCCTTGGGCCTGCTGGCGGCTTTTGGCAACATTTACTTTGCCTCCCACCAGGCCATGCAGGTCGGCCAGCGGCTTAGAGCCATGCTCTTTGCTAAGGTCTTGACCTTATCTGATGAGGAATCAGCCGCTTTGGCCAGTCCTCTTTGATCACCAGAACGACTAATGACGTCGTCCAGGTACAGATGACCTTCATGCAGCTCTTGCGGATGCTGCTCCAGTCCCCGATCATGCTGGTGGCCTGGACCGTTTTGGCTTATATCCAGTAGCCCCGCCTGGCAAAGTTTTTTGCTATCGCCCTGCCAGTTTTGGCGGCCATCATTCTTTTATTGATCTTTTATTGATGCACTTTGCCATGCCGCTCTTTAAGAGCATCCAGCAGAAAACCGACCGGATCAACTTGATTTTCAGAGAAGGACTGACCGGGGTCCGGGTTATCCGGGCCTTTAGGCAAGACCAGCGCGAGCAGGACCGCTTTGCCGGGGCCAATTTAGACTACTCGAAGATTGGCATCAAGGCCTATACGATCATTTCTCTCATGCAGCCCGCCGTGACCCTGGTCCTTAGCTTGACCAATGTGGGCATCGTTTTTTCTGGGCAGCCGCTTAATTAGTGGCAGAATCATGGAAATCGGCAGTCTTTTGACTTTCCTGACCTATGCCACCCAGATTCTGATGAGTTTCATGATGCTATACATGCTCTTTATCGTGATTCCCCGGGCTTCTGTTTCAGCCAAAAGAATCAATGAAGTATTAGATGCCGAAAATCAGCTCCAGGACCCGGTTAAGTCAGTATCTATGCCCAAGGGTCCGGCAGAGCTGGAATTTGACCAGGTTAGCTTCCGCTATGCCGGTGCTGAAGAGGCCGCCTTAGAAGGAATTAATTTCAAGGTAAATGCGGGCCAGACCCTGGCCTTGATCGGAGGGAATGGGTCAGGTCAGGCAAGTCCACCCTGGTCAACCTGATTCCCCGCCTTTTGGACGTGGAAAAAGGGGCCGTCATGTTCACGATCTCCTGGAAGCTGACTTTAGTGGCTCTTTTGACCGTGCCAGTCAGCGTCTTGATCACGGGCACGATTGCCCCCAGGGCTCAGAAGCTGTTTGGCCGCCAGCAAGAGCATCTGGGCAAGATCAACGGGCAGGTGGAAGAAATCTATGCCGGGGTCGGCATCGTCCGCGTTTTTGGACAGGAAGAAAATGAAGAGGAGACTTTTGCAAAGCATAATGACTCCTACTTTGACGCTTCCTGGAAGGCGGAATTTCTCTCGATCATGATTTTTCCCTTGATGAACTTTGTTAAAAATGTCGGCTATCTCTTGATTGCCGTCTTTGGGGTAATCGACGTGATCAACGGCGCCATCAGCCTGGGCAATGTCCAGGCTTTTCTCCAGTATTCTAACCAGTTCTCCCAGCCCTTGACCCAGCTGGCCAACATGTCCAGCACGATCCAGCAGACCATTGCTTCTGCCGAAAGAATCTTTGCCGTTCTGGATGCTGAAGACATGGATGAAACAGTCCACCCGGCGGAAGGATTAAAGACAGATACTAAACTGACCTTTAAGGATGTTTCTTTCAGCTACACTGATGCTCCTTTGATCGAAAATTTCAGCCTGGAAGTACCAAAAGGGGAGATGGTGGCCATTGTCGGGCCAACCGGGGCCGGCAAGACTACGATCATCAACCTGCTGGAGCGCTTCTATGACGTAAAAGGCGGGCAAATTTACTTGGACGGCCAGGAAACCAGGTCAATGAGCCGGGAAGACTTGCGCAGCCATATCGCCATGGTTTTGCAGGATACCTGGCTCTTTACCGGGACAATTTTTGCCAATATCAAGTACGGCCGGGAAGATGCCGGTGATGAAGAGGTTTACCGGGCACAGGGCCGACAGCTTCATCCGCCAGCTGCCGGATGGCTACGAGACCCTGTTAAACGAAGAAGGGACAAATATTTCCCAGGGGCAAAGGCAGCTCTTGATGATTGCCCGGGCCTTTTTAGCTGATCCGGAAATTCTCATCCTGGATGAGGCGACCAGCTCGGTTGACACCCGGACGGAAAGCTTGATCCAGAAGGTGATGGCCGATCTGAAGCAGGAAAGAACCAGCTTCGTGATTGCCCACCGCCTGTCAACCATCCAGGATGCCGACAAGATCATCGTGATCAACCACGGCCAAATCGTCGAAAGTGGCAACCACCAAAGTCTCTTGGCCAAGGGATGCTTTTACGCTGACCTCTATCAGAGCAGTTTTTGGGCCAGGAAATCTGAAAAAAGCCATGATTCTCGCGAATCATGGCTTTTGCTTTAGCAATATTTAAAAAATAGCCCTTTGCATTTTGAACATGTGTTCCGTATAATTAGGATTGGTTCAAAAATTACTACTCCTTCTTGTCCTTGTCATGCTTTTGCTTAATATGATAGTAAAGGCCGAAGGGAACCAGGTTCTCATTTCCGGCGATAATCCGCTTGATGTTGGCCCGGTGGCTCCACCAGATGAGGACAACCAGGACTCCTGACATGACTGTCAAGAAGGTATCATGGAAGAAGCTGGAAATAAAGATCAAGACGACTGAAATCAAGCTGCTCAAGGACACCATGCTGGTGATTAAGAGCAGGAGGATGAAGTAGAAGGCGCAGAGGCCGAAGAACTGGACATTGTAGCCCAGAAGAAAGCCCGCCGTGGTGGCCACGGCTTTGCCGCCCTTGAACTTGAGGAAGATTGAGAAGGCGTGGCCGAAAATAGCCGCTGCCCCGAAAATCAGGCACAAGTGGTGGTCACCCAAGTGAAAGATCCGGGGCAGGCAGGTGGCCAGGGTCCCCTTGAAGAAGTCAACCAGGAAGACCAGGGTGCCGGCCTTGGGGCCCAGGACCCGGAAGGTGTTGGTGGTCCCGATATTGTGCGACCCGTAATCCCGGATATCCTTGTGGTAGAAGAGCTTGCCGACCAAAACACCGGTCGGAAAAGAACCAATTAAGTATGCTAAAATTAATAGTAATGCAAATTTCATTGCAAACATCAAATCAACTCCGTTTATCTTATTACCTGCTATTTTAACAAATAACGGACTGAATTGATACGAAGTTTATAATCTAAAGCTTGGAGATGTTTTATTTTGCCAAAGAACACATATGATGATTCTTCAATTCAAATTCTGCACGGGCTGGAGGCAGTCCGCAAGCGGCCGGGGATGTATATCGGGTCAACCGACATCCACGGCTTGAACCAGCTGGTCTACGAAATCGTCGACAACTCCGTCGACGAAGCCATGGCTGGTTTTGGCCAGGAAATCAACGTGACCATCCACGAGGACAATTCCGTGACCGTGCAGGACTTCGGCCGGGGGATGCCGACAGGGATGCATGCCTCAGGCCGGCCAACCATTGAAGTCATCCTTACTGTCCTGCATGCCGGCGGCAAGTTCACGGAGCAGAACTACAAGACCTCCGGCGGTCTGCACGGGGTCGGCTCTTCTGTGGTCAACGCCCTGTCCAGCTACATGAAGGTGCACGTGGTGCGTGACGGCAAGGCCTACGAGGAAGAATTCCAAAATGGCGGTCACCCAATCGGCACCCTCCGCTGCCTGGGGGCGACCAAGGAAAAGACCGGGACCACGATCACTTTCAAGCCGGACCCGATGATTTTTTCAACGACTAAGTACAACTACGAGACCATCCAGGAAAGAATCCGGGAATCGGCCTTCCTGCTTAAAGGAGTCAAGTTTACTTTGACGGACGAGCGGACGCCAAACCACCACGACGTCTTCCAGTATGACGACGGAATTGAAAGTTTCGTTGCCTACCTCAACGAAGGCAAGGGGACGATCGGCAAGGTCTTCTACTTTGAAGGCAGCCAGGACGGGATGGAAATCGAATTTGCCGGCCAGTACAGCGATTCATACTCAGAGAACTTTGTTTCCTTCGTCAACAATGTCCGGACTGCTGACGGCGGCTCCCACGAAGTCGGGGCCAGAAGCGGCTTTACCCGAGCCTTTAACGACTATGCCAAGAAGCAGGGGCTTTTGGGCAAGAAGGACAAGAACCTGGAAGGGTCCGACTACCGGGAAGGGCTCAGCGCCGTTTTGAGCGTCAAGATCCCGGAAGAACTGCTGGAATTTGAAGGGCAGACCAAGGGTAAGCTGGGGACTCCCCAGGCCAGAAGCGCGGTCGACAGCATAGTTTACGAGAAATTGTCTTACTATCTGCTGGAAAACGGGGAATGGGCCCAGGACCTGGTCAAGAAGGCCCAAAGGGCCCGGGATGCCAGAGAGGCGGCCAAGAAGGCCAGAGATGAGTCCAGAAACGGGAAGAAACGGCACAAGAAGGAAGTCCTGTCCGGGAAATTAACCCCGGCCCAGTCCAGAAACCCTAAGAAAAACGAGCTTTTCTTAGTCGAAGGGGACTCAGCCGGCGGCAGCGCCAAGCAAGGCCGGGACCGCCGCTTCCAGGCCATCCTGCCTTTGCGGGGGAAGGTTTTGAATACCCAGCGGGCCAAGCTGGCGGATATTTTCAAGAACGAAGAAATCAACACGATGATCCATACGATCGGAGCCGGGGTCGGGACTGAATTCAAGGTTGAAGACTCCAACTACGACAAGATCATCATTATGACTGACGCCGACGACGACGGGGCCCACATTCAGATCCTGCTTTTGACCTTCTTCTACCGCTACATGCGGCCGATGATCGAAGCAGGCAAGGTCTACATTGCCCTGCCGCCGCTTTACAGAATCAGCAAGAAGCAGACCAACCTTTACGCCTGGACCGATGAAGAACGGGATGAGTATGAAAAGAAGGTGGGCAAGGGCTATGCCCTGCAGCGCTTCAAGGGGCTGGGGGAAATGAATGCTGACCAGCTCTGGGAGACGACCATGAATCCAGAAAGCCGGATGCTGATCCGGGTCAGAATCGACGATGCCCAGTTGGCCGAACGCCGGGTAACCACCTTGATGGGTGACCAGGCTTCCGCCAGAAGAAAGTGGATTGAAGAAAACGTCAAGTTCCGCCTGGGCGAGGAAGAGTCGATCTTAGACAAAGTAAATGATTAGGAAGGAAGCAGTATATGCCAGAAACTCACGAGCGGATTCGTGAAATGCCTTTGGAACAGGTCATGGGCGAACGCTTTGGCCGCTATTCCAAATATATTATTCAAGAACGGGCCTTGCCGGACATCCGCGACGGGCTCAAGCCCGTGCAAAGACGGATTCTTTACGCTATGTACCGGGACGGCAATACGGCTGACAAGCCTTTTAAGAAGGCAGCCAAGGCCGTCGGTAATATCATGGGTAACTATCACCCGCACGGCGACAGCTCTATCTACGGGGCTCTGGTCTTCCTGTCTCAAGACTGGAAGATGAGAGAGCCATTGATAGAAATGCACGGCAACAACGGGTCCATGGACGGCGACAGTCCCGCCGCCATGCGTTATACGGAATCCCGCCTGGCCAAGATTTCCAATGTCCTGCTGGAGGATATCGACAAGGAAACCGTGCCAATGGTGCTCAACTTCGACGACACCGCCTATGAACCAACGGTTTTGCCAGCCCGCTTCCCTAATCTTCTGGTCAATGGGTCAACTGGGATTTCTTCTGGTTACGCCACGGAAATTCCGCCCCACAACCTGGGCGAGGTTTTAGACGCCACTATCCACTTGCTCAAGCACCCGGATGCCAGCCTGGAAGACCTGATGACCTTTGTCAAAGGGCCAGACTTCCCGACTGGCGGGATCGTCATGGGCAAAAAAGGCTTGCGGGATGCCTACAAGACCGGTAAGGGCCGGATCCAGGTCCGGGCTAAGACCCATATTGAAGAGATCCGGGGCCACCGCCAGCAGATCGTGGTGACGGAAATTCCTTACCTGGTCAACAAGGCCCAGCTGGTTAAGAAGATCGATGAAATCCGGGTCAGCCGGGAACTGGACGGGATCAGCGAAGTCAGAGATGAAACTGACCGCCACGGTCTCTCTATTGTCATCGAACTTAAGAAAGACGCTGACGCCCAGAACATCCTCAACTACCTCTTGAAGAATACTGACCTCCAGGTTTCCTACAACTTCAACATGGTGGCCATTGCCCACATGACTCCAGTCCAAGTGGGCCTTAAGCGGATCCTGGCCGCCTACCTGGAGCACGAAGAAGAAGTCGTAACCAAGCGGACCCAGTTTGACTTGAAGAAGGCCTCAGACCGGCTGGAAATCATCCAGGGTTTGATCAAGGCCATGAGTATCTTGGACCAGGTGATCAAGGTCATCCGGGCTTCTAAGAACAAGGCTGACGCCAAGAAGAACCTGGTAGCGGAATTTGCCTTCACTGACCGGCAAGCCGAAGCCATCGTCTCCTTGCAGCTTTACCGCTTGACCAATACTGACGTTTTGGCCCTGCAGGCTGAAGAAGAAGAACTGACGGGCAAGATCGCAGCTTACGAGAAGATTTTGGCGGACTCGAAAGTTTTGCAAAAGGAAATCATCAAGGAACTCCGGGCCGTCAAGAAGGAATTTGGCTCAGACCGGCGCAGTGAAATCAGCGATGAAACGGCCAGAGTCGAAGTTGATGAAAAGGCTTTGATCACGGAAGAATCAGTCCGGGTCTTGATCAGTCGCGACGGCTACATCAAACGGTCCTCAATGCGGTCCTTCCAGTCAACTGAAGCCGGTGACAATGGCTTGCCGGAAACTGACCGGGTGGTTTATGAAGGGAGCCTGTCGACTTTGACCAACCTCTACCTCTTCACCAACCACGGCAATTTGATCTACCGGCCGGTGCATGAGCTGGTTGAAAGCAAGTGGAAGGATGTTGGCCAGCACTTGTCCCAGGAACTGGGCCTGGCGGCTGACGAGAGCATCATCCGGGTCTTTGCCTTGGAAGCTTTGGATGATCCAGACCTGGCCTTCCTGCTGGCCACAAACGACGGCTTTATCAAGCAGGTGGCCCTGGCTGACCTGCAGCCAACCAGAACCTACAAGTCTCGGGCAATTATGGCCATGAAGATGAAGGGGGAAGACTCCCGCGTCATTACTGTGGACCTGGCCAAGACAAGTGAAAAGCGGGAAATCACCCTCTTTACCAACCAGGCCTTTGCCCTTAAATATGACATTGATGAAGTTCCGCAAGTCGGGGCCCGGGCAGCTGGGGTCAAGTCAATCAACTTGAAGGAAGACGACTATGTCGTTGCCTGCCTGGTCACTGACCCGCAATATGAAGACCTGCTCAAGGTGGGTCTGGTAACCCAAAGAGGGGCCTTCAAGCAGATGCCGCTGAAGCTGATCGGCAAGACCAGCCGGGCCAAGCGGGGCGTATTGGTTTTGCGGAACCTGAAGACCAAGCCGCACCGGATTGTGGCCTTGAAGGCTTACGGGCAAAACCATGAGCTGATCTTGATCACTTCCAGCCTGCGCAAGCAGGTCATCCGGACCAGCGACCACCCAGTCGGCGACCGGCAGAGCAACGGTTCCTTCGTCATTGATGTTAAGACAGACGGAGAGGCTAAGGAACTGCTCATGGGCCGGCCTTTACCGGACCAGGCCAGGGATGTCGGCCGCTTGTTCTAAAAAAATCAAAAAGATTACGAAAAGATCGCGAAAAGATTGAACAAAGCGCTGATTTTCTAGTAGACTTAATTAGAGAGAATAATTTTAGCTAAATCTAGAAGGGAAAATTCCAAGATGGAAAAAGAACTGATTTTTGGTCACAGAAACCCAGATACTGACGCAATTGGCACGGCGATTGCCTACTCATACTTCCAAAACCAACATGGCTACAACACTGAAGCCGTTGCTTTGGGTGAAGCCAACGACGAAACTTCTTTTGCCTTGAAGAAGTTCGGCTTTGAAGCACCACGCGTGGTTAAGACTGTCGCAAATGAAGTCAAGGCCATCATGCTGGTTGACCACAACGAACCGCAACAAAGCGTTGAAGACCGGGACCAAGTCAAGGTTACCCACGTCATTGACCACCACCGGATCAGCAACTTCGCGACGATCGACCCCTTGTTCTACCGGGCTGAACCAGTAGGCTGCACTTCCACTGTTTTATGGGAAATGTTCAAGGAACAAAACATGGAAATTCCAGCCAACATTGCTGGTATCATGCTCAGTGCCATTATTTCCGACACCTTGCTTTTGAAGTCACCAACCACTACTGACATCGACAAGGAAGCAGTTGAAGAACTGGCTAAGATTGCCGGCGTTGACTACAAGGAATACGGTTTGGAACTGCTTAAGGCCGGCACCAACATCGCCGCTAAGTCAGTTGAAGAACTGATCGACCTGGACGCCAAGAGCTTCGAACTGGGCTCAAAGACTGCCCGGATCGCTCAAGTCAACGTTGTTGACGTCCCAGAAGCCCTGGAACGCAAGGATGCCTTCCTGGCAGCCATGGAAAAGGATGCTAAGGCTAACGGCTACGACTTGTTCATGCTGGTAATTACCAACGTTTTGGACTCTGACTCAGAAGTTCTCTTCATCGGGGATGACGAAAGCAAGTCTGTCTTTGCCAAGGCCTTCGGCAAGGAACTGGTTGACTCAGAAGCCCACCTGCCAGGCGTTGTTTCCCGGAAGAAGCAAATCGTTCCGCCATTGACCCGGGCATTTGAAGCTTAATCAGCTAAATAACAAGGAAAAAGAATCCAGGTTGCCTGGATTCTTTTTTTACTGCTTTTTAAACATCCTACTTGTTACTACAATTTTTCTCAAAAAAGAAAAAGCGCGGCCAAGCCGCGCCAAAAAAATACTGTTAACAAATAAATACAAGGGTAAATTTTGTCAACAGTTATTTTTTTAGCTCTTTATTTTTTACTCGCTTGCTTTATTTGCCAGCATATTGCTTAAGCTGGTCAAACTGATTCTTCAGTTCCAAGTCTAAGTAATATGACTGCTTGACTGGCAGACAGCTTTGCCCATATAAGGCAAAAAGGTAGGCCAGTTCTTCCTTCCAGCGGCCGATTTCTTCATCCAGGCCATCTGGGCCCTCATTTAAAAGGGTGTGGAGGAAGTGGTTGGCCACGCCTACAAATTTGCCGCCCAAGGCCAGGCCCTTGAAGACGTCCAGCGGATTTCTGACCCCGCCAGAGACGATCAGCTGCTTGGTTAAAGGCGCTGCCAAAAGGGCAGCCAGGGCCGTTGGCAGGCCACAGTCGTTCAAATACGCCATAGGGTGGGGGTTGCGGGAATTTTCGATTTGGGCAAAATTGGTGCCGCCAGCTCCCCCGATATCGAACCAGCTAAAGCCAGCTGCCTGCAATTTTTGCAGGCTGACTGGATCCAGGCCGCTGCCGACTTCCTTGACGATGACCGGCACGCCAGCTGCTTCTTTAATCTCCAGCATCCGGTCCAGCCAGACAAAGTCCCGGTCGCCTTCAGGCATGGGGATCTCCTGGGCCACGTTAAGGTGGATCTGCAGGGCATCTGCTTGCAGATCCTTGACGATCTTGTCAGCCGCTTTAGCTGGAGTTAAAGGATTAACATTAGCAAACAAGAGGCCGTCTGGATTGGCTTCTCTAGCTACGTAAAAAGACTCCAGCTGGTCTTCTTCCTTGGTCAAGATGCTGGCTGAACCCAAGGCCAGGGCAATTTGCTGCTTATTGGCAATTTCACCCAGCTGCCGGTTGATCTGCCTGGATTTTTCCGACCCGCCAGTCATCGCGTTGATGAAGAAGGGGGCGGCTAACTCTTTGCCAAACCAGGTCGTCTTGACGGCGTTCAGGTTAACCTGGCTTTCAGGCAAGGCCGGGCGGAGCAGGTGGACCTGGTCAAAGGAATTCGTTTTTTGGGCATTAAAAAACATCTGTGTCAAAGCCAGATGTTCTTCTTTTCTTATAGATCTTTGTGACATCGCAATGCTCTTAGTAAGTTAATTCAGATTGGTGAATGTGAAATTCCAGGGGCAGGATGTCGTTCTTGACCCATTCCTTGCGGAGGCGGTCAATATCGGTGTCCTTGTTGACGATGACGATGCCGCAGTCGCCGTTGCCCGCGCCGCTGGTCTTGGCCGCGCCGCCAAACTTGTTGGCGATTTCGATCAGCTCAGTCAAGCGGGGAATTTCGATAGCAATATTGTTGATAGCGGCAAAATGCTGCAGCAAACGGCGGTTGATGCCGATCTGCTTTTGAATCAAAGCGATGTTGGCTTCTTCAAAACCGCGGATCATCTGCAAAACGCACTTGCGTGAGTCTGCCAAAAACTTGGCGTATTCAGTCCGCAGGTTGTTCTTGTTAGCGTTAGTCTTGTCAACCAGGCGGGAAGTTGAAGCCGGCTGCTGGCTCCAGCCAATCAAGAGCTCCATGTCCTTCGGCGGAACCAGCTGCTGGATCTTCAGACCTGGCCAGGCTTCACCGACAACCGCTGACAGGGACTTGCTTGCCAGTTCTTCTTTCAGCCAGAGCTTGTTGAAGGTCTGGTAGGCGATCCAGCCGCCGTAGACGCTGGCCGCGATATCGCCGGCGCTGCCGTTGCCTTGGACTGAGTAGTGAGAAATTGTGGAGAGCTTGTAAATCAGGTCCTTGCTTGCCTGGACACCGTAAAAGCGCAAGATTGCCTTGACCGTCGCGACCGTGACCGCGGCTGAAGAACCCAGGCCATACTTCTTGCCATCTGCGGAATCCAGGTCAGAATTGACAAACAAGTCGTAAACGTCCATCTTGACCTTCTGTTCCAGGCAGTATCTTTCAGTGAAAGAAATTGCGGACAGAATGTATTCAAATGGATTGTCCCGGTTGTCGATCACTATCTTTGACCCCCGTCTGACCCAGTGAATGGAGTCCTGGGAGTATTGCTTGGAGTGAATCAAACCGGTGTCGCTGCTGCTTGGCTTGATTGAGACCCTGACGTATTGGTCAAGGGCGACCAGAATGGCTGGACAATCTTGTTCCAAGACAGCGTATTCCCCGGCAATGTAAAGTTTGCCTGGCGCTTTTTCAGTAATCACAAAAACTCTTCCTCTTATTCTTTTAATTTATTCTTTTATATTACGTCCTAAGACATTATAGACAATTAAATAAGCTTTAGTCCAACAGAGTGACTCCTGGACCAAAACCTGCCTCAATGATCTTAACACGATCAAAGGAGGACTCAAAGCAATTAATAATATCTTTAGAATTTTTCCCCTGGCAGAGGACCTTGACGTTCGGGCCGGCGTCAATGGTGTAGTAGCACTCCAGCCCTTGCTGGCGCAGGTCCTGGACCAGCTTGATGGCCTTGATGGTATTCGGTTCAAAATAGGTAAAGCCGGGGACAGCGGTGAAGGTTAAAGTATGCATCTCACTGGCATTTAATTCAGCCAGAGAACCCAATTTGCTAAAGTCAGCCTGCTTAATCGCTTCTTCCATCTCCTTGATCTCACTGTCATTTCTGTCCAGCCAGACCTGGTAGAAGGGGGAGCTCTTGCTCATTTCCATCCCCTTGGTTGAAGAAATCTTCTTTTCCTGGTCGTTGATTTCAACAGCCAAAAGGCGCAGGTCCATGTCCGGCTCTTCGTCCAACGGGTAGGCGTAAGAAGTCTGGTCACTATCGCCTTTTTGCCAGACGGAAAAACCGCCGAAAACAGATCTTGAAGCTGAGCCCGATCCCATCCTGGCCATTCTGGACAATTCCTGCCGGTCAACGCCTAACTGGTAGTGGTCGGCAAAAGCCGCTGCCATGGCGGCGAAGGCAGAGCTGGAAGAGGCCAGGCCAGCCGCGGTTGGCACCTGGTTGACCGATTCAACCGCCAAATTTCCCTTGACTCCGAAGCGGTCCTGCATGGCCCGGAGGTAGGCGAAAACGCGGTCAGCGGCTGGACCGGAAACGGCTTGGCCGTTTAATTTAAAAGACATTTGCTCGCTGTCTGAGATTTTGGTGTCGCTATAGAAGGCATCCAGGGTCATGGACAGGCTGGACATGAGCGGCAGGCGCAATTTGGCGTCCTTCTTGCCCCAGTACTTGATCAAGGCGATATTGGTATGGGCGCGGGCAGTTTTACTCATCTGTTTCACATTCCTTTATTGTGTAATTCTGTTTTTAATAATTTTTGGGCAAAAATTAAATCTCTTCAATCCAGTAGTTACTGATTTCTGCTTGGCAAGCCTGGGCAATCTCTTCGCAGGAAGCGGCATCCTTGCAAAGGGCGATGACGATTCCGCCCAGGCCGCCGCCAGACAACTTGCAGCCTAAAGCCCCGCCTTTATCAGCAATCTGGCAGATCCGGTCGATCTTGCTTGTCGACAAGTTAAAGGAAGCTAAAAGCTCCTGGGCCTCATTGAAGAATTTACCAACGCTCTCCGGGTCTTGCTCAAGCCAGGCAGCTTTGACTTCGTCAGCCAGTTGTCCCAGCTTGCGCATTCTAACTTGCGCGTCAGGTGACTCATTTAAAAGCTTGGCGACCATAGTGACGGCTTTTCTGGTATTGCCCAAATCGCCCGTGTCCATGATCAAAAGGCTGGCACCTAATTTTGAGGAGAGCTTTTTTACGCCCCTTTGCTTATTAAAAAAGACCAGGTAATCGGAATTGACTGTGGCCGCGTCCAGGCCGGAAGCCTTGCCGTGGTTGATCGTTTCTGCCTGGTTGGTGATGTTCATAACTTCACTTGCACTTAACTTCAAGCCCAGGTATTGGCTCAAGGCCACGGTAGTACCGTAAGCGACGGTAGCTGAGGAGCCAAGTCCGCGCTCCATGGGAATTTCCCCTGTATAGGTAAGCTTGATCTGGGGATTTTTCCCGCTTCTAGTCAAAAGCTCCTTGACGACATACTTAAGGCCGTTATAGTCAGCAGGCGCGTCAAAAAAAGGACCCTGGTAGAGCTTGGTGTCCATCCAGACCGGGCCGGCATAATCACTGACGGTCGTCTTGATGTGTAGGGTCTGAATTGGTATAGCCAGGGCGTCATAGCCGTAAACAACGGAATGCTCGCCGATCAAAATTACTTTTCCATGAGCAGTATATGAAGTCTGCAAAAAGAATCACCTCAAAAAATTAATTTGTTAGTTCGGTTAACGTTTGCTTAGAATCAATGGCAATCAGTTCCCAAAAAGGAAAGAGATTGATAAAATTTAGATTGACCGATCAGTCAACAAAGGAGTGGAAGCAATGATCAAAATTATAACCGGCAGACAGTCCGATCCCCTGCAAACTGAGATCATCGGCCGGGCGGCCCGCAATTATCTGGCCCAGCCCGGCAAAGATACCTTTATTATTGTACCAAACCATATCAAGTTTAACACAGAAGTTGCCGCAATAGGCAAAGTCGCCCAACTTCAAGGGCGGGAAGAGACCAGCGTCAAGAACCTGCACGTCCTGTCCTTTTCCCGTCTGGCCTGGTTTTTCTTTAAAAAGGCCGACCTGCTCATGCCTGAAAGCCTGGATGACGCTGCCGCGACCATGATTTTGGAGCAGATCATCGACAAGCGCAGAGATGAACTGCTGCTTTTCAAAAATTCCCACGCCAATTCCGGCATGATTAAGCAGGTCTACAGCACGATCCTGCAGGTTCATACCGGCCAGCTGGACCTGGGCAATCTTTTGGAGCGGGCAGCCGACCCGGCGGTGGCCTTGGACCTGGATAATGAGACCAGGGACAAGCTGCACGACCTGGACTTGATCTACCAGGACTTTTTAGAAATCGTCAGTGAAAAGCACTTCGCCACCAAGGATGAACTGAACATCCAGCTGAACCAGCTTTTGGCCAGCCGGCCGGACCTGGTCAGCCAGGCCAGCTTCTACGTGACTGATTTCTCCCATTTTTCCATTCAGGAAAAAATGACCATGCAGCTGCTGGCGGCTTTTGCCAGCGAGATGACTTTCGCCTTCAAGACGGCTGACGGCAGCGTGATTGAGCCGGCCGCCGGGGAATACGACTATGTGGTTCAGAAGACGATCAAGGACTTGACCGGTTACTTTTCCGCCCATGACTTTGCCTGGGAGAGAGAAAAAATCGCCAGTCCAGCCAGTCCGGCCAGGGACTTGAACCAGGCCTGGCAGGGACAGGGCCAGCCGGATTTAAATAACCTCCAGCTGGTTAAGGCAGATTCCCGCTACGCTGAAGCATATTTCGTGGCCCGGACCATCTATGACGAGGTGGCTTTAAAGGGCTGCCAGTACCGGGACTTTTTGGTCCTGGCCCCGAATTTGCAGGAGTATGAAACTTACCTGGCTCCGATTTTGCGGCAAAACCAGATTCCCTTCTTTGACGACCTGCAGCAGCAGATGAAGTACCACCCCTTGGTGCTTTTGCTGGAAAATTTGGGCAAGCTCCTCCAGCAGGCAGGAGACACGCCAGCTCTTTTGAGCATCATGAAGACCCGCCTCTTGATCCCTGACTGGTATTTAGAAGGGGATGCAGAAGCCGGGGAAGCCGCGTATTTGCGCGACATCGACCAGCTGGAAAACTTTGCCCTGGCCCACGGAATCAAGTACAGCCTTTGGCAAAAGCCCCTCAAGGACTTTACCAAAGCCCAGGTCATCGCCCTGGACCAAGAACAGTACCAAAAGTGGCTGGACCGCTTGGACAAGTTGCGGGACTTCTTTGTCAGCAAGATCTCCCGGCTTGCCCGCCAGCTGAAGAGTGAAAAAGACAGCATGACCGCCGTCAAGCTCTTTTTTGACTTCTTGGTCAAAAACGGGGTCAGCGCCCGTCTGGAAGCCTGGCGCTTAAAGGCCAGCGAGAGCGGAGACCTGCAGCAGGCCCAGCAGCCGGAGCAGTGCTGGAATCTGCTTTTGTCTTTGCTCAAAGACTACCTCTTGGTCAACCCGGAAAACTTTGCCTGGGCTGACTTCTTTAAGATGCTGACGGCAGCCTTTTCCCAGGCCAATTTCGCGACGATTCCGGCCAGTCTGGACGCCGTCACCTTGTCAGAATACGGGATGGTGCAGACCAGCGGCTACAAGCAGGTCTTCATCATCGGAGCAGCCAATGGCAGCCTGCCGCAAATCAACGACCAGCCCAACTTTTTGACTACGGAAAACCTGGCCAGCCTGGCAGACTTTTTTGACCAGGATGCCTACCTGGAAGACAGTCAGCAGCTGCGCAACCTGGACCAGGAATACCAATTCGGCAATGCCCTGGCCCTGGCCTCTGACCGGGTCTACATCTCCTATCCGGTGATCAATTCCAATAATGACCTGCTGGATCCTTCCATTTACTACAAGCGCCTGCTGAAGCTGGTTAACGGCCGGGAATACCGGCAAAGGGACCTGCCAGATATCGCTGAAAAAGACCGGACCGAATTTGCCCGCCAGCTTTTGCTCTTTTTGACCAGTCCAAGGGCCAGTTTAGGCTACCTGGCCTATGCTGAGGAAAATTCCGCCCAAAGCCCGCTGGTGGCCAAGCTGGTCGAACTCAGCCGGCAGTATGAGGAAGAAAAGGCTGAAGAAATCGCGGAAGGGATGGCCTATGACAATAACCCGCAAGACATCTCAGAAGACCTGGCTGAGCGCCTGTACGGCAAGGACCTGTTGTCTTCAGTCTCCCAGCTGGAAAGCTACTACCAGAATTCTTTTGAATACTTCCTTAACTATGGCCTCCGCCTGCGGCCCCGGGCAGAAAATGAGCTGAATGCCATCCAGTCCGGTAACTACTTCCACCGGACCTTTGAGCTTTTGCTCAAGGAAATGCAAAAGAAGAATATCGAAATTGACAAGCTCAGCGAGCTGGACCTGGAGCTTTTGCTCAAGCAAGTCAGAAGCGAGATCCTGCAAGAACCCCTCTACCAGCAGTTCTTGCGTGACCCTTTCAATGAATATCTTTTCAAGGTCTTTGACAAGACGACCAGTAAGGTGGCCCAAAGCTATCGGCGCAAGCAGCAGGAAAACAAGATGCGGGCTACTTACGGGGAACTGGCCTTTGGCCCGGCTGAAAAGCTGGCCGGCCTGGTCTTGCCTTTGAAGAAGTTTGCCGGCCAGCGGAAGATCAGCCTCCGGGGCAAGATCGACCGGGTCGACCTCTTTAACGGGGACCAGCATGTTCTAGGCCAGCTGATCGACTACAAGTCTTCCGACCACAGCTTCAACCTGGCCCGTTTTGCCAGCGGGGTGGACCTGCAGATGATCGCCTATTTGGACGTTCTGGAGAAGAACCGGGACCTCCTGGCCGGCGGGCGGCAGTTTGACCTCCTGGGGGCCTTTTACCAATATGTCACCCGGAAGCTGAATTCCGTCAACTCCTCATCAACCGGGGCCTTGTTTGACAGCAAGCTGCAGCTGAAAGAGAACCTTTTGGGCGGGGAAGACAAGTTGAAATTGTCCGGGGTCTTTGTCAGTGAGCCAGCCTGGTACCAGGAAGTCGACAAAGCCCTTGAGAAAAAGGCAACCAGTTCGGTTTACCGGGGCCTCAAACTGAACAAGAGCGGCGGCTTTGGCAAAAAAGACAACTTCTTCAGCCAAGATGAGATGCGGGAGCTGCTGGAATACGTCGAAGCCTTGATTGAGGACGCGGCCAGCGAGATTTTGAGCGGGCAGATTGCCTTGAATCCTTTCCGGCAAGGCAACAATACCGGCCTGGCATTTAGCGATTACAAGGATATCTTCTACTTTGACCAGCAGCTGCCAACTAACTCCTACCGGGATCTGCCAAACCTTAAAAAGGCAGATCTGCTGGCTTTGGTAGAAAAGCGGCTGCGGCAGAGGGAATAAGAAATAGTACATAGAAAGGAAATAGCATGGCTGTAAAATATACACCAGACCAGGCCAGGGCTATTGAAAGTCGGGGGCAGGACCTTTTGGTTTCAGCCTCTGCCGGCTCAGGCAAAACCAGTGTTTTGGTTGAAAGGGTCATCCGGGAAATCATGGACGACCACTTGGAGGTTAACCAGCTCCTGGTCATCACCTTCACCCGGGCGGCGGCCAGTGAAATGAAGCAGCGGATCAAGCAGCGCCTGCAGGACCGCCTGCAAGAAGAAACAGACGCCAGCCAGGCCGACTTTTTGCGCCGGCAGCTGGCTGAAATCGATACCGCGATTATTTCCACGATCGACTCTTTCTGTTTGGACGTCATCCGCCGCTTTTACTTCGCGATCGACATCGACCCGGACTTCAGCATTTTGACTGACGCCACCCAGATTGAGCTTTTAAAGGAAAGAGCCTTGAGGGATGTCGAAAACGGCTACCTGCAAAATGAGGACCAAGCGAAAAAAGACCGTTTCCTGGCCCTCTATGATGCCTTTGCCGGCGACAGCAATGCCAATTCAGCCAGAGACTTGCTTTTGGATTTATACCAGTTTGCCATGGCCCGGCCCAACTACCGGGCTTGGCTGCAAAAGCTGGCTGCCCCTTACCAGCTGGAGACCAGCGACGTCGTTGACAGCGCCCTCTGGCAGGAGAAAATCAAGCCTTACCTGGAGGAAGAATTTTCCAACCTGGCGGACAAGCTGACGGCTTTGATGGCCGAAGCAGACTTTGACCATGAAAAGTTTGCCAAGTACCAGCCAGCTTTTACGGCTTTTGCCACCAGTCTGGCCAGCTACCGGGAGAGCCTGGCCACAGATGATCCCTTTGACCGGCAAAGAGAGCTGCTGGCGGCCTGCCAGTTTGACGGGACCCTGCGGACTAACAAGGAGATCGCCGACTTTGTCGAGGAGGCAAAGGAGGTTAAAGAAGCTGGCAAGCAGCTGGTCTTCAATGTCTATACCGGTTTTTACGCAAGCAGCAATGCTGACCAGCAGGCCCTCTTAGCCAAGGGGGCAGAAATCGCCTCCGCGGCAGCGGAAGTTGAACTGGCCTTTATTGACCGCTTTAACGAATTGAAGCGGGCTGACCGGGTCCTGGACTTCAGCGACATGGAGCAGTTGGCCTATGAAATTCTGACCCAGGACAGTTCAAACTCTGACCTGGCCCGGGCCTACTACCAAAGCCGCTTCAAGGAAATCATGGTCGATGAATACCAGGACACCAACGCCCTGCAAGACGGCTTGATCCAGCGGCTGAAAAAAGCGGGGAAGAACAACCTCTTCATGGTCGGGGACGTCAAGCAGTCAATCTACGGCTTCCGCCAGGCGGAACCCAGCCTGTTTATCGCCAAATATGATGAATATGGCCAGGAAAATTCGGCTGGCAAGCAGCGGATTATTTTTGCCGAAAACTTCCGCTCCAGCCAGCCGGTCACCCAAGCTGTCAACTTGATCTTTGACAGCCTCTTAACCAAGGACTTCGGGGGGATTGACTACCAAAAAGAAGGGCAGCTGAAATTCGCGGCTGGCTATGACCCAGAGGCGGCCCTGCCGACTGAAACAGAAGTCCTCTACCAGGAAGATTCATCTGCAACAGATGATGACGGGGAATTGAACCAGGGCGATTTAGCCATGGTCATCAGCCGGATTCAGAAGCTGATCGCTGACCAGACGCCAATTTTTGACCCGAAGACCGGGCAGACCCGGCCGGTCAGCTATGGGGACATCGCCATCTTAACCCGGTCCAAGACCAGCAACCTGGACATCAAGCAGGAATTTGACCGCTACGGGGTTCCGCTCTTTGTCATGGATGTCCAGAACTACTTCCAGACCTTTGAATTGACGGTCATCATGTCCTACTTGAAGATCATCGACAACCCGGACCAGGATATTCCCCTGGTGGCGGTTTTGCGGTCTCCGATTTTTAACTTCTCCAGTTCAGATCTGGCCGAAATCCGCCTGGTCAACAAGAGCGTCAGCTTCTACGCGGCTTTAAGAACTTATGCTAAAAAAGATACAGATCTGGCTGCCCGCTGCCGGGACTTTTTGGCCCAATTGCAGGACCTTCGCGACTTTTCCTTGAGCCACCGGATTTCAGAACTGCTCTGGACCATTTACGAGCGGACCAGCTTTTTGGAAATCGTGACGGCCATGACCAACGGCCAGCAGCGCCGGCTCAACTTGACTGCCTTGTACGAAAGAGCCAGCGCCTACGAAAGTTCGGGCTTCAAGGACCTTTACCAGTTCATCAACTTTATTGCCAGAATGCGGAAGAACCAGAAGGACCTGGCCCAGCCGATCCTGAGCGAAAATGCTGGCAACTCAGTCAAGCTGATGACCATCCATGCCTCAAAGGGGCTGGAATTCCCGGTCGTCTTTGTCTTGGGCCTGGAGCACCGCTACAATTACCAGCAAGACATTACCGGCAGCTATGTCTTAGATGCCAGCGGCCTGGGCCTGTCCTTTGCCTATCCCTTTGATGAAGCGGAATACCGGGCAGATACTTTGGCTAATGTCTGGCTGAAGATTGCCAAAAAGCAGAAGTTGCTGGAAGAAGAAGCCCGCCTGCTTTACGTAGCTTTGACCCGGGCCAAGCAGAAGCTGATTTTGGCGGCAAATATCAAGCTGCCAGCCAGAACCGACCTGGCGGGCTTGGAAGAGAAGTGGGCTAAGGAAATTTCTGCTGGCCGCCTGACCCTTTTGGATAAGATGAAGGTAGCCAAGCCCCTGGACTTTTTGGCCCCGGCTTTAGCCCGCGCCAAGCAGGTGAAGCGGCTGGGTGAAAAAGCCGTTAGCGACCTGGCGACAGGTCAAGAAGGCAGTCTGGTCTTTGTCCACTTTGACCCCAAGAAAGACCAGGCCCAATTGCCGGATAGTGAGGCCGTGGCGGCCAGCGGGGCAGACTTGACGGAAGATGAAGCAGCCGTCTTTAAGCAGGCAGAAAAGCTCTATACCTTCAGCCAGGGCGGCTATCCTTACTTGGATGCCAGCCGGACCACGGCCTACCAGGCGGTGTCTGAAATCAAGAAGGTTTTTGGCGACCCGATCGAAGACGAACTGGCTGACTCCCACATTTCGGAACTGCAGTCAGCCAACCGCTACCTGCAGCCGATCGATACTGAACCTGACTTCCTCTTCCAAAATACGGTCAGCTCAGCTGAACTGGGGACAGCCAGCCACCTGGTCTTGCAGTATTATGACTATGCCAAAGGCGACAAGAATGCCATTGACAGCTGCATTGCCGGCCTGGTGGAAAAGGGCCGGCTGAGCCAGACCTTGGCCAGCATGCTGGACCGGGAAGCCTTGTCCTGGTTTGTCAAGAGCGACTTTGCCAAAGACTTTTACCAGCAGCCTGACCGCCTCCACCGGGAGGAAAATTTTGCCACCATCCTGTCGCCGAAGACTTTATTTAAGGATTTTAGCGATTTTCCAGGAAAAATTTTGGTTCACGGGACAATCGATGGCTATTATGAAGCGGAGAATGGTATCATTTTATTTGACTACAAGACTGACCACGTGAACCCGCGTAAGCAAGAGGAAGCAATTCAGAAGCTGAAAGAGAAGTACCAGGGCCAGTTGCGCCTTTATGAGCGGGCCTTGAATGAATCTGGCCGGCTGCCTGTTTTGAAAAAGTACCTGGTGCTTTTGAGCTGCCGGGAAATTGTTGAAGTTGATTAGAAGTTTTTAGGAGTGAAAGGAGCGGAAAATGGCGGATTTTTTTGCCGGCGAAAGCTTCGCGGTCGTTGACTTGGAAACGACCGGGACGCGCAAGGAAGAGGGGGACCGGATCATCCAGTTTGGCTGCGCCATAGTCAAAGATGGTGAAGTGGTTAAAACTTATTCCTTCATGATGAACCCCCACCGGAAAATTCCCCTGTCCGTGACCAATTTGACCGGGATCGACCAGAAGATGGTGGCCGGCCAGGCTGATTTCAAGCACTATGCCCCGAAGATCCGCGAGATCCTGCAAGATACGGTTTTCGTGGCCCATAACGTCAATTTCGACTTTCCTTTCTTGAACTACGAATTGACCAATGCCGGCTTTGAGGCCTTGACCTGCAAGGCGGTTGACACGGTTGAACTGGCCAAGATCGCCTTTCCGACCCTGCCTTCTTACAAGTTGCGGGACTTGACGGCCAGTCTGGAGATCAAGCACGCCAACCCCCACAAGGCGGATTCTGACGCCTATGGGACAGCCGTCTTGCTCTTGAAGATCATCGACAAGCTGGCTTCTTTGCCCCAGGCAACTTTGAATGTTCTGGGCTCTTTGGCCAGTGGCCTTATCCGGGACACGGGGGACGTGATCAAGGTGATTGCTGACCAGTCCCGGCAAAGCAGGCGCAAACTGCCCAAAGACAAGATGCAGGTCCGCAACCTGGTCTTAAAGAGGCAGGAGATTCCGGCGGTTGAACATGGGGAAAATGGGCATTTTCCAGTTAAAGACACGGACAAACGCAAGCTTTTTAAAGGCAAGATCAATTACCGGCAAGCCCAAGTGGACTTAATCGACCGCTTGCACGACTTTGTCGAAGATGCCGGGCAAAGGGTCATACTGGCTGAAGCGCCAAACGGGACAGGGAAGACTTTTGCCTACCTTTTCGCCTACGCATACCAGCTCTATTCCGGCAAAAAATTAGTAATTGCTACACCGACCAAGGTCCTCCAGCAGCAGCTCCTAGACCAGGAAATTCCCCAGCTCCTGCGGGTTACGGGTCTTGGCTTAAACGCGGAAATGGTCAAGTCCAGCAGCCACTACCTGGATTTAGACGGTTTTGCCCAGACTCTCTACCAGAATTCGCCCAACAAGGCGACCTTGCTCTTGCAGATGCAGATCCTGGTCTGGCTGACAGAAACGACGACTGGGGACATGGATGAATTGCAGCTGACCAGCCAGCAGCTGCCGATTTTTAACCAGCTCAAGCACCCGGGGGATGCCCGGGTGGCCAGCCAGTTTGCCAGCGTTGACTTCTGGAACCTGGCCCGCCGCCGGCAGGAGCAGGCCAACATTTTGGTGACTAACCACGCCTACCTGGTCAACCACTACATGGACTCCATCTGGGGGCAGAATCCTTACCTGGTAATTGACGAAGCCCACCGCTTCAGCGAAAACCTGCAGACGGCCCGGATGGACTCCCTGCACCTGGAAGCAATTTGGGGCAGCATCAGCCACCTGCGCAATTTGCTCTACTTTACGGACAATAACCTGCTCAGACAAAGCGAGGAAAATGTCCAGCTGCAGTTCATGCTGGACCTCTTGGACCAGGAAAGCCTGGACTTGATTCACAGCTTGAACCGGATGCAAAAGTACCTCTACCAGCACAAGGGGCAGGCGATCAGCAAGGTTTTTTTGCCCAAGAAGAGCCTGCAGCTGACCATCCAGGGCCAGGATCTCTTCCCGGAAAACTCTCAGTTCCGGCCACTTCTTAGACAGTTCCAGCAGCAATTGGAGCAGGTCCGGATCCATACCAACCAGATTCGCTACTTGCTGGAGCAGGAAAAGGACCGCTTTTTAACTGATGAGGAATCTTTGCTGGAAGAATTGAATGACCAGGTCGACCTGCTGGAATTCTACACGGGAAAGAGCTACCAGCTGGCTGATCTCTTGAACCAGCCGCTCTTGGATCATTTGGGCTTCGTGGTCAACGTGACCAACCCCGAAGATGCTCTCAGCAGCAACCTCCACTGGCTCAGCCTGGACAGTTCTGAAGAATTGCATAAAATTTACGACCGCTTTGACCATATCAGCATGATCAGTGCGACAATAACTAATGACGGCAATTTTGCCTTTGCCAAGCAGCTCCTGGCCCTGCCAAATTTGGGTGTCTCCTGCTACAAGGGCAAGGCCAGCTTCCCCATGGCTGACCATCTGGAGATTCTGGCCATGGACGAGGGGCAGCCGGAACCAGATAGCCCGCGTTTTTTGGAAGAATTGAAAAATATCCTGACCAAGGACTTAAGCGGGCAAAAGCACGTTTTGTGCCTGTTTACCAATCTGGACTTGATCAAGCAGCTCTACTTTGAACTGCTGAATGATCCCCGGGTTAAGGACTATGAGCTCCTGGCCCAGGGCTTGACGGGGTCAAATGAGCGGATCACCCGCCGCTTTGTCATCGCTGAACGGTCAATCTTGCTGGGGGCGGATAGCTTCTGGGAAGGGGTGGACTTCCACAATTGCGGGATTGACCTGGTTATCGCGACCCGCCTGCCATTTGAGTCCCCGGACCTGCCGGAGGTTAGCCTCAGGCAGCACTACCTGGCCCAAAGAGGCTGGGATGTCTTTCAAGAGGACTCTTTGCCCCGGGCGGTTCTCCGCCTGCGGCAGGGATGCGGCCGCTTGATCCGGGGCGAGGATGATCATGGGCAGTTTTTGATCTTGGATCCCCGGATCTGGACCAAGAGCTATGGCCCGGCCTTTAGGTCCAGCCTGCCGGCTCCGGTGCAAAAGGTTAAAGCGAGTGAGTTAAAAAAGAAGTTGAAGTTCGAGAGGAAAAATGCTTAACGAAAGAGTCAAAAATGTCTTGCAGTATCTGGCCTGGCTGGTCTTCTTCCTGTTTTTGCTTTACGCGGGAACAGTGGCGGTTGTTGCTAAGGCAGCCAAGCCGTACAGTCAGCAGAAAGAGAAAGTCGCCAAGCTGGTCAAGCAGACTTCCATGAAGCAAATTGACAAGTACTACCATTTGAGCCGGGGCGTCAAGTCATATTCAGCCAGCGGGAAAACCAGTAAGGGTAAGGCGGCTTACTTCATCTACCTGCCGGATAAACATAAGGCCTACTATTATTCAGCTAGTGACGGCGTCAGCGAAAGCACGGTCAAATCCAGCTTTCAGAAGTCTTACCCAAAAAAGGCCATCAAGGAAGTCAACCTGGGCTGGTATCAAAAGCAGGCCGTCTGGGAAGTCACGGCAGTCAACGCAGACGGCAGCTACTGCTATGCCATCTACAAGTTCAAGGATGGCCAGCTCCTGTCTCTGGTCGATAAGTTATAGAAGATTAGGCAAAAATCTGCTATCATGGATAGAGTTATAAAAATAAGGTGGAATTAAAAGAATGACAGAATTGATTTCAATCAGAGAATCAAGCAAGCACGTAGATGAAGAAGTCAGAATGCACGTCTGGCTGACCGACAAGCGGTCCAGCGGGAAGATCGTCTTCCTGCAATTAAGAGACGGCACGGCCTTCTTCCAAGGCGTTGTCCGCAAGAACGATGTCAGTGAGGAAGTTTTTGAAGCAGCCAAGGGCCTGCGCCAGGAAGCAAGCTTCTACCTCACCGGGACCATCCATGAAGACGCCCGGTCTCACTTCGGCTACGAAATCCAGATCAGCGACCTGGAAGTCGTCTCAAACAATGAAGGCTACCCTATCACCAACAAGGAACACGGGATCGACTTCCTTTTGGACCACCGTCACCTCTGGCTGAGAAGCAGGCGGCCATTCGCCATCATGCAGATCAGAAACCGGATCTTCAAGGCCACGGTCGACTTCTTTGAAAACGAAGGCTTCGTGAAGTTTGACGCCCCGCTTCTGATGCACTCAGCGCCAGAAGGGACCACGGAACTCTTCCACATCGACTACTTCAACCACGACGCTTACCTGTCACAATCCGGCCAGCTTTACGGGGAAGTCGGGGCAGAAGCCTTCGGCAAGATCTTTACCTTCGGGCCAACCTTCCGGGCGGAAGCTTCCAAGACCCGCCGACACTTGACTGAATTCTGGATGATGGAACCGGAAATGGCCTGGATGCACCAAGATGAATCCCTGGACTTGCAGGAACGCTTCCTGTCTTACGTGGTTGGCCAGGTTTTGGAACACTGCGAATACGAATTAAGCATCCTGGGCCGGGACGTAGACAAATTGCGTCCAGCCGCTGAAGGCAATTACACCCGCCTGTCCTACGATGACGCGGTTAAGATGCTGCAAGAAGCTGGCAAGGACTTCAAGTGGGGCGACGACTTTGGCGCGCCAGATGAAGCCTTCCTGTCAGAACAATTTGACCGGCCATTCTTCATCGTTAACTACCCAGTAGCAATCAAGCCATTCTACATGAAGAAGAACCCGGAAAACCCATTGACTTACCTCTGCGCCGACGTGGAAGCGCCAGAAGGCTACGGGGAAATCATGGGCGGGTCAGAACGTGAAGCTGACTACGACACCTTGAAGGCGCAAATCGAAGAAGCGGGCCTCAACCTGGACGACTACTCCTGGTACCTGGACCTGAGAAAGTACGGCAGCGTGCCGCACTCCGGCTTCGGGATGGGCTTTGAACGGGTTATTGCCTGGATCTGCAAGCTGGACCACGTTCGTGAAGCTGTCCCATTCCCAAGAATGATCAACAGAATGCAGCCATAAGCGCATTAGCTGTTTTTTAACAAGAATAAAAGCTAAAATAAAAGAGTGGGTTAGCTCACTCTTTTATTTTTTTGTGAAAGAACGTGAGAAAATGGCAAGTTACAATTTTTACCGGCAGCTGGGTGTGACCAGCATCAGCAATGGCTTGATTGCCTACTATGCCCGCCTGGGCTTGACTGAAGCGGAACTGGCCCTGGTCTTGCAGCTAGAAGCTTTTTTTCAAAGGGGAAATTACTTCCCCAGCAATGAAAAAATCGCGGCCAATACCAACTTCAGCGTCAGTGACGTCACCCTCTTGATCCAGAGCCTGCTGGACAAGGGCTGCCTGTCTCTTAGGCAGGCCAAGGACGCCAGCGGGAAGATCAGCAGCCGCTACAGTCTGGATGAGCTCTATGACAAGCTGGACCAGTATTTAGACCAGCATGTCCAGGTCAAGGACATGAACGGGGAAGTGTTAGAAGAAGCTAAAGACAGCTTGAATAACGATCCAATGAGTGACCTGGCCCGGGAGTTTGAGATTGAATTTGGCCGCTACCTAACCCCGATTGAGCGGGAGGAAATCCAGGACTGGCTGAATTTGGACCACTACGCCCCGGAGATTATCAAGTTGGCCCTGCGGGAAGCAGTCTTGTCCCGGGCGATGAGCTTCAAGTATGTTGACCGGATCCTGCTGAACTGGCAGAGAATGAATTTGAAGACCGCCAGCGAGGTCCAGCAGTATCTGGAGAGAAACCGTTAGTAAATTTTTGGGAGGATTTTAATGGAAAAAGACGAAAAGCTCTTGAGTGATGAAGAAGCAAGAAATGTTTTGAAGCGGATTGACGCCATGTTTCCGGAAGCAAAAGGGGAGCTGAACTGGGACAACCGCTTCCAGCTTTTGTGCGCGGTCCTGCTCAGCGCGCAGACGACAGACAAGATGGTCAACAAGGTGACCCCCCAGCTCTTCGCGGATTTTCCGACCCCGGAAGCCATGGCGGCGGCCAGCCAGGAGGAGATCGAGGCAGATATTTCCCACCTGGGCCTCTATCATTCTAAAGCCAAGCACCTCAAGGAAATGGCCCAGACCCTGGTCGCTGAATATGGCGGCCAGGTGCCGGGCAAGAAGGAAAACCTGGTCAAATTAGCCGGGGTTGGCAACAAGACGGCCAATGTCGTTTTGGCTGAAGGCTGGGGAGTTCCGGCAATCGCGGTCGACACCCACGTGTCCCGGATCGCCAAGAAGTTCAAGATCGTGCCGGAGAAGGCAACGCCTTTGCAGGTGGAAAAGCGGCTGGAGGAGCTGCTGCCAAAGGATGAGTGGATCCATACCCACCATGCCATGATCTTCTTTGGCCGCTACAAGATGCCCGCCCGGGCCAAGAACCCGGATCCTTACAGTTATTTAGATTAAGCTGAGAAAAGCAAAAATTTTGCAGGAGATAGCCATGATAAAATTGATTGCCTTTGATATGGATGAAAGCTTCATGCCGCGGAAGGGATTTTATGAACGTGAGCGCTGGGCACGCGATTTTGACCTGCTGCGCGCAAAAGGCATCCGCGTCTTGCCTATTTCGGGAGACCAGTACCAGCAAGTAGCGGACTTCTTCCCGATGAAGGATGAAATGACGATTGGCGGCTTGAATGGTTCGGTGATTTTTGAAAAGGGCCAGCTGATTAAAGCAGACGAGATTGACCGGTCCATGGTTCAAAAAATAATGCAAATAATTGCGGAAAACGGCCTGGCACAACGGACCATGCTCTGCGGGATCAACTATTGTTATTTTTTGGAACAGGCTGATCCGGCTTTTCGTGAAAGAATGAATTTTTATTTCTCACATAATCAGAATGTATCTAGCTTCCTGCCTTTGCCTGATGACAAATTCACAGAAATCGTGATAGTGCCAGGCACTGACCGCATGGACGAAACTGAGGAGAAGCTTAAGGCAGTCTGCGCGGAAAAACTGCAGATTTTTAACTCGGGAGTAACCAGCATCGACATTCTGCAGCCCGAAGTGTCAAAAGGTAATTCGCTTAAATGGCTGGCAAGCCGCTATGATCTTTCGCCTGAGGAAATCATGGCTTTTGGTGATGGCCTTAACGACATTGAAATGCTGAAATTCGCGGGCCAGTCCTACGCGATGAAAAATGCCCGCGAAGAGGTCAAGGAAGCAGCCAAGTTCGTAACAAAACTGCCGGCTGCGGAGAATGGCGTCCTGGATACGATTGAAAAAGAAGTTTTGGGAATGTAAAAAGACCGCCGGAGAAGGCGGCCTTTTTTATATACTAGGCTAAAACATGTTTAATGAAAGCATCCAGTTCCTTTAAAACAGCTGGGGAGGTGAATTATCCGCCGTCGTGGTCAGCACCATTGATCAAGATGTAGGAGGCTTCTTTGCCGCACTCCTTTAATTTCAGATAAAGGTCAGTGCTGCCGATTGTGTTGACCGTCCGGTCTTTCGTGCCGTGAATGATCAATACTGGCGGAATGTCGGTATCCTTGCTGATATTGCACTCAACTGACAGTTTCCGGCGCAGGTCAGAATTCTCTCTTAAGTCAACATGGCCCATTTCCATCCCTTCCGGACTGTCAGCCTGCAAGTGGTTGATAGTTGTTGGGTTGCTGTCTTCACGCATGACGGAGACAGAGCCGTAAAAGTCGACCACGCCACTTACTTTGGCGGTTAACATCTGGGTAGAGATTGTCTTCACCTTCCGGGAAAAAGCTGGCGTAAACGGCAGTGTGATCGCCAGAAGAATTGCCCGCTAAAATAACCCGCTTTGGGTCGCCCTGGTATTCGGGCCCGTGCAGCTTCATGAAGCGTACGGCCGTTTTGGGCATCAAGAATCGGCTTCGGGGAGGAAGCCACGTCGCTGCCCCGGTATTCAACAACCACAACAACATAGCCAAGAGCGGCGATTTTTGCCATCTGGGGCAGGTCGCGGTAAACATTTTGCTTCATCCAGGCTGAGCCTTGGACGTAAACAAAGATCGGGTAAGTCAAGTCATCCGGATAAGACCATTTCTTAATTTTCATAATTTTTTCTCCTTTTCACATGTTACTTCCATTGTGATGGTAGGAAAAAGGATTGTTCCAGCAAAAAAAGTTAGCGTTTTCAATAAAGATATAATATACCAAAAAACACCGGCAGAAATTAAACTGCCGGTGTTTTCGCGTTGATCAATTCAGTAAAAATTACAGGTTAACGATGCTTCTTGGCCGGCCGCCCTTGGCGATGGTCAATTGGTCAGTCAAGCAGATCTGCACCATGTTGCGGATGGAAGTTTCCGTGTAGAAGGCTGAGTGCGGAGTAATGACAACGTTTGGCATCTTGGCCAGGGTCTTGTAGTCTTCTGGGATTTCGCTGTCCGTCAGGCCAGTGTGGCCAAAGTAGCTGGATTCCCCAGCCAAAGTGTCCAGGCCGGCACCGGCGATTTCGCCATCTTGCAAGGCCTTGATCAAGGCTCCAGTGTCGACTAATTCGCCCCGGGCACAGTTGATCAAGTAGGCAGACTTCTTCATTTCCTTCAGCTGCTTTTCCCCGATCATGTTTTCCGTTGATGGGAAGAGGGGAGTGTGGAGGGAGACGATGTCAGCTTCTTTCAAGACCGTGTCAAAGTCGGTGTAGGTCAAAAATGGTTCAAATTCCGGGTTGTAAGCCACGTCATAGGCGATGACCTTGGCCCCCATGGCTGAGAAGATTTCTGCCACGGCGCTGCCGATGTGGCCGACCCCGATCAAGCCGACAGTCAGGTTGTAGATTTCATTGCTGATCAAGTTACTTGGCCAAGTAAAGTCATGGTCATGGTCCATACGGTAGCGGAATTCCCCGATCTTGCGCAGGAGGTACATGGCCTGGGTAACCGTCATTTCAGCGATCGCCCGCGGGGAGTAGACCGGAACGTTGGTGACCAGCAAGTTGTACTTCTTGGTCCAGTCGAAGTTGATGGTGTTGAAGCCAACGATTCTGAGGCCGATGCACTTGACCCCGTATTCGCTCAATTTTTGGTAAACAACTTCTTCGTCAACCGGGCCAAGTGGCTTAAGGGAAACGCTGCTGCAGCCTTCAGCTAAATCTACAGTCGCGCTGGTCAAGGCCTGGTCGGTCGTCTTAATTTCGACATCGTTTTTCTTAGCCCAGTCTTCAATGTAAGGCACTTCGATCGGGCTGACATTATACATGGCAATTTTAGTCATAAAAAAACTCCTTTGTTACATAACCTTTTGTTTTCTTGCCTCTTATATTTTACCGCAAATGCTGGTCAAACCAGGCAGTAATTTCTTTTAAGCGGCGGATCCGGTGTTTTGGCTGCCCGCTTCTGGAGAGCTCGTGGTTTTCGCCTTTAAAGAGGCACATTCTGCTTTCCACCCCGTAGTAGAGTAGGGCCCGGAACATCTGCATTCCTTCCGGCAAAGGACATCTGTAGTCTTCCAAAGAGTGGATGAACAAGGTCGGCGTGGTCACGTTTTTGGCATATTTCAAAGGAGACTGCTGCCAGGCATAGTCCAGCTTCTCGTCCAAGTTATTTGCGTCAATGGAGTAAAGGTCATCCCAAGGACCCACGTCTGACATAAAGGCATCGCTCAGCCAGTTGGACATGGACCGCTGGCTGGCGGCAGCCTTGAAGCGGTCAGTATGGCCGATCACCCAGTTGGTCATGTAGCCGCCATATGAACCGCCAGTGATGCCCAGACGGCCGGCGTCAATTTGCGGGATTTTTGCCAAAACAGCGTCCGTGAACTTCAGCAAGTCCTCGTAGTCTTCCCGGCCCCAGTGCCCCCGCATGTTGGCGTAGTCGTTGCCCTGGCCGTCAGAGCCGTAGATGTTGGCAAAGAAGACAAAGTAGCCCTGGCTTGCCCAGACCTGCATCTCGTGGAAAAAGGGGGTCCCGTAAACTGTCTTTGGCCCGCCGTGGACATCGAGGATGGCCGGATATTTTTGCTTTTTAGCAAAGTCTTTCGGGTAAAGAACCCAGCCATGCTGGGTATTGCCGGCATAGTCTTGATAGTCAACTTGAACGGCGGAAGCAACATAGCGGCCCTTTAAGGCATCTTCGTTATAGCTAGAGTGCTTGGTCAGCTGGCCGTCCTTGTAGCTGTAAAGCTGCTGGGTCTCGTTGGCATTTGGACCAGTAAACCAGCAAGTGCCGTCACTGGTAAAGTCGAAGAATTCGATGGAAGGAAATTCAAAGACAGGAGTAACTTTTTCGCCGTCAAAGCATTCCAATACCGTGTGGTCGACCTTAGTCGTGGTGAAGTAGAGGCAGTCCTCAAAGACCCGGCTGGTCCGCACGTCCAACAGGCAAAGGTCGGTGTCTACGCAGTCGCCCCAGCAGTCTTCCCAAGCCGCGGCCAAAGAAAGAGTTTTGAATTCCGGGTCATACTTGTAAAACTGGGGATTTTCTTCCGAGCCATAGCGCTTTTCATCAGTGGCCACCAGGTAGAGCTGGCCCTTTAAGACGCAGATGTCAAAAATTGACCACTCTTCTTTTGGCAAAAGCTGAGAGTATTCCAGGCTGTTTAAGTCCAGCTGGTAGAGGGCGGACTTGCGGGCCTTGGATTGAGTGTAAGAATCCCCGGTGAAGTAGAGGTCAGTGCCATCGACATAGTGGAGGTCAAAGTTGAAGTATGGGTCATCTTTTAAGAGTTCGGTCAACTCCTTTTTGGCGGGGTCAAAAAGAAAGAGGCGGTCGCGGAACTTGGAAATAATGCCGTCGCCATTGAAGTAGGCCGGGAACTCATCTAAGACCACATAGTCTTTTTCATCCGGATCCTGCTTTTTCTCAGCTTCGCGCAGGTCAACCCGCCGGCTGAGGAGCAGGCTGCCGTCTGCTAAGACATTTTCAACCGCGAAATCTTCTCCCTCTAAAGCAGCGATTTCCCTTGCTTCACCGCCCTTTAAAGAAAGCTGGTAGATAAAGGTCTTGTCCTTTTCCTTGGTCCGGTTGCCGGCAAAGCAAACCGTGTTTTCATCGAGAAAGACGAAGTCTCTTTCCTGGCCAAAGGAGCTAAGGGGGCTGACTTGCCCGTCTTGCAAGGTCTCTAATGTGTAGAGGTATTTGTCTTTTTTGCTGGCATCTGGCAGGCCCTTGACCCAGACAAGGTTCTGACCCTTGGCCTTGAGCTTGCCCAGGTTGGCATAGTGCAAAAAGTCCTCAATTTTAATTGCGTCCATGATTTCCTCTTTTCTATTTCTGTAAGTCTTGTTGACAGATATTCTTGTTTTTTATCCTGTTGCCATATATTTTAGCAGATAAAAAAGCCAGGGCCTTGAAGAAATCAGTTGCTCTGGCTTTTTCGATAAATTATTAATTCAGCAGCTTAGTTATCCTGCTTGTCATCATTATTGTTGTCTCGCTTATTTTCTTCAGTCTTCGGCGCCTCGCTGCTCTGGCTGGAAGAAGCTGCCGAGCTTGATGAAGCCGCGCTTGAACTTGAAGAGCTGGATGAAGACGAGGACTTCTCGCTTGAACTGGAACTCGAGCTGCTCTTCGAGAAGCTGGAACTTGAGCTTGATTTGACGCTGGAAGTCACGGCTGAACTGGAAGCAGTAGAAGTATCGCTGCTTGAGGAGACATAGTCAGCGTCAGTCGGCGAATGCCCCTTGACAAAGAGTTCCCAAGTGTAGGGCTGGCCAGGGGAGGCTACTTTGTCTTCAGTATTCTTGACAATCCGCTTCTTGACGACGGTTGCTGGTTTTTCCCAGTCTGTGCTGTCTTCGTCAGCCATCAAGTAGGACATCATGTACTTGTAGATCAGCTGGGCTGAGTACTGGCCGACTCCGGAGATCGTCCCGTCCTTCAAATTGTCATAGCCCGTCCAGATCCCGATTGAATACTGCTTGGTGTAGCCAACGAACCAGGAATCCTTTGGCGTTGAGCTGTAGCTTGGGTACTTAACCAGGTCCGAGTCAGAGTACTTAACCGTACCAGTCTTACCGGCCTCGTAGATCCCGCTGACCTTGGCCGTGGTCCCTGTCCCGCTGGTGAAGACGCCCTTGAGCATGTCGGTGATCATGTAGGCAGTTGACTTCTTCATGACCCGCTTGCCAGCAGAGTTATACTTGCGGACCTGCCCGTCAGCCGTTTCGATCTTGGAGACGAATTGCGGCTTTCTGTAAACGCCCATCGTCGCGAATGCTCCATAAGCAGCCGCCATCTGCAAGCTGGAGGCGTCAGCCCCGATCGCTGTTGAAAGACCAGCATTGGCACTGACGTTAACACCTAATTTTCTGGCAAAAAGCGAGGCCCGGGAAATCCCGACTTCATTCAAGGTTCTGACGGCCGGCACGTTTCTGGACTGAACCAGGGCATAGCGCATGCTCATTGACCCCTGGTAAGTGTTGTCCCAGTCATAAAGCTGGATATTAGTGCCCGGGTAGGTGTACTTGGTATCCTGCAGGATGTGGCTGGTTCCCCAGTTGAGGTATTGAATTGCCGGAGCGTAGTCTAAGACCGGCTTGATCGTTGACCCGGTTGACCGGCCTGTCTGGACTGCCCGGTCAAGACCCAGCTGGACTGACGGCAACTTCCGGCCCCCGAGGATGGCGATAACATGTCCGTTCTTCGGGTTGATGACCGTGGCCCCGATCTGCATCTTCTTGCTGGTAAAAGCAACGCTACCGCTGTTAGCCAGGGAGTAAAGTTTGTTTTGGGCAGCCTGGTTGATGTTGATGGTGATCTTCAGGTTGTCATTGTATGGGTCGTAGCCGTCAGCCTGCACTTCAGCAATTGCTTCCTTGATGTAGGCGTCGTCGACCTTGCGCAGCTTGGATTCAGTGCTGGTCGTGTGCTTCTTAAGGCCCTTCTGTACGTCTTCAGCCTTGGCTGCCAGGTACTGCTTCTTAGTAATCTTCTTGTTGTCATACATGGCCTTAAGAACCAGGTCCCGCCGGTACTTAGCCTTCTTTGGGTAAAGGTAAGGGTTGTAGGCCACCGGGGCGTTAGGCATCCCGGCCAAAAGGGCCAGCTGGGCCAGGTCCAGCTGCTTGAGGGACTTGCCATAGTAGTAGTTGGCTGCAGTCCCCATCCCGTAGGTCCCATAGTTCATGTAAACCTTGTTGATGTAAAATTCCAGGATCTGGTCCTTGCTGTGTTCTCTTTCCACCTTCATGGCCAGCCAGGCTTCCTGGGCCTTTCTGGACAGGGTCCGCTGGGAGCTGGCAGTTGAGAAGCAGGTCAATTTGACCAGCTGCTGGGTGATGGTGGACCCGCCGGCCACGGTGTTGGAGCTCTTGACGTTGGTCAAGAAAGACGACACGATCCGGAGGGGGTCGATCCCCAGGCTTTCAGAGTAGAAGCGCTTGTCTTCGATAGAGACGACCGCGTCTTTCAAAGTCTGGGGAATGGCCGAGTCTTTAGCATAGACCCGGGTCTGTGAATCCAGTGACATTAAAAACTTGCCGTCGGTAGTGTAAAAACTTGATGTGCCGCCGCTTTGCAGCTTGGAGGTGCTGATGCTCGGCGCGTCTTTGGCGTAGTAGGCGAAGACACCGATGCCGGAGATGATCAGCAAGAAAAAGAGCAGAAAAAGCCATTTAATTACCCGCAGAACGGGCCGGGCCTTCTTGGCGCCGTCATTGGCGTGTAGGCGGGCCATCCGCGTGTTCTTTTGCTCTGGACTATTTGTTGCCATGTTCTTGTTTCCTATCCGCAATGATCCGGTCGACCGCCTCTAAATAGGGCAGGGCTGGACAGAATCCGCTTTTAATTTCAAAGGAGTTAGCTTCGATTTCAGCAAGAGTCATGGAACTCTTGCCGGCAGCCTTCCAGTTTTGCCAAGCTTGAATCAAAAAAGATGCCGGGGTGACAAAGTAGCGCTCCAGGGTCATGAAGCCGATAAGGGCAAAGCAAATCCCCTCCTGATCCAAACACTGCTCAAGGTGCAGGATCTGGTGCTCATGAAAGTTCTTTAAAGGAAAAGAAGTTTTGTTGCGCGTCTCCTTGGCTTCAAAATCAAGGTAGTAGCCTTGATAGACGCCGTTGTAGTCAGTCGTTGAGGCCTGACGAAAGTAGGCCTCACGGATGACGGCCCGCGATCTTTTTGGGTAGTCGACCTTGACGATCTGAATCGGGGTCGGCTTCTTGTGAACGACTGCGATGCCCGCGTCAAGGTAGTACTGGTTTGATTCATTGATCTGCTGCTCCAGGGTCATCCCGCGGTCAGAAAAGCTGGCCTTTTTAAGCAGGGCCTTTTTTCCTTGCCGCTGGGCTGCCCTGAGGGGCATGACAGATCCAGTTGGGTATTTGACCATAAAGCTCACTCCTGGAAGTCATTATAACAATAAAAACTTGAGAAACCTAATCAGATTATTTGCAAACTGACTCTGAAGCTAGATCATTCCTGCTTTTGCGGTTAATGTTACAATGTTTTTAAGGAACTGGCAAAGCAAAAAGTTTAAGGGAGGAATTTGCATGCAGCGAATTTGGATCAGCGGCTACCGGGGCTATGAACTGGGAACTTTTGGCGACAAGGATCCAAAAATCACGGTGATCAAGTATGCCATCAAGCAGTGCCTGACCAACCTGCTGGAAGAAGGGCAATTGGACTGGGTTATCACTGGCGCTAACCTGGGCGTTGAGCAGTGGAGCGCGGAAGTGGCCCTGGAACTAAGGCAGGACTATAACCTGCGCCTGGCAGTGATGCTGCCTTATCTGGACTTTGGCAGCCGCTGGAGCGAAAACAACCAGCTCAAGCTGCAGAATTTGAAAAATCAAGCTGACTTCTGGTCTGCAACTTCAAAAGAACCCTACCAGGGCGGCCGGCAATTCCGGGAATACCAGCAGTTTATGTTCCAGCACACCGACCGGGCCCTTCTGGTCTATGACCCGGAATACCCGGGCAAGAGCAAGTATGACTACGAGATGATCGAAAAATACCTGGAAAAGCGGGATGACTACCAGCTGGACCTGGTCGATTATTATGACCTGGAACAGGCCGCCAGGGATTATGAAGAAAATCAAAGGGAATGGTAAATTTTAACTCTTTCTTTCTTTTTTATGGGGGCGCTTTTTGATAAAATGACTTTAGTATAAAGGAGTCAAGAGTTAATGGCAGATTTAAACGATATTAAGTTGTCCGCACAGGACATTTTGAAGAAGAAGTTCAGAAACAAGGTCAAGGGCTATGATCCGGATGAGGTTGATTCTTACCTGGACCAAATCATTTCCGACTATGAAACCTTCCAGGACATTATTGAAGACCTTTACGGCAGGATTGGTGAACTGCAGGGGCAGGTAATCGACGCTGAGAAGCAAGTCAAGCAGGAAGAACAGGCCGTCAAGGAAATTCCGGCAGCCGTCCCGGCATCAGCAACTACTGAAAGCAAGGAAGAAGACGTTAAGACCTACGTGCCAAGCTCACAAAGGCAGCGGGCCGACTTCAGCCTGGATAACAGCAGCACTAGCGGCGAAATCTCAACTAACATGGCAATCATTCAAAGACTTTCAACCTTGGAGCGGAAGGTCTACAATCTGGAACAAAGAGTTTACGGAATTCAGGATTTACAAAAGTAAAGAAAGTTTGCTATAATAGTAATGTCGCAAATTTCGAGCAGTCGCGGCCGGCCTTGAGCCGGCTGAGGAAAGTCCACGCACGCACGGGCTGCGATGCCCGTAGTGATCGTATTCAGCCCAATAAGCTGGAGGAGGCCCCAGGCCTCACGGCAGAGAAAGCGCTAAAGCCTAGCCATGCGTGAATATCTTGAAAGTGCCACAGTGACGGAGCAAGCCGGGAAACCGGTTTGGTGGAACGAGGTAAACCCTGCGAGCGTGTAACCCAAAATTTGGTAGGGGCGTCTCAACTTAGGTAAATGAACCAAAAGTTGGACTACATCATGTAGAGATAGATGGCTGCTGAAACCAGCCGCGGCCGGCGGTTGGTGGAACAGAACGTGGCTTATAGAAATTTGCAAGGCAGAGAGTTGGACTTCGTTTGAAGTCCAACTTTTTTTCTTTTAGGAATAAGTCTGCAAATATAAAATCAGAATAGTAATTAGAATAAGGATCAGAAGGAAAAGAACGGAGATAGCGATGGAAGAATACCAATTGTACACGACCATGGGGGCGGGTTTTGAAAGCGTCGTGGCCAAGGAACTGCAGTCCTTGGGCTATGAAACGACGACGGAAAACGGCAGGGTCTTTTTTAAAGGCGGCCAGAAAGACATCGTCAGATGCAATTTGTGGCTCAGAACAGCTGACCGGGTCAAGATCCTGTTAAAGGAATTTACGGCTAAAGATTTCTCAACCTTGTATGATGAAACTTACGCTTATGACTGGGCCATGCTTTTGCCAGTCGACGCGGCCTTCCCAGTCAAGGGGCGCAGTGTCCGCTCAAAGCTGCACTCTGAACCGGATGTGCAGTCCATTGTAAAAAAAGCCATCGTTGACAAGATGGCGGCCCAATACCACCGGCGGGGCAAGCTGCCAGAAAGCGGCAGCCTCTACCAGCTGGACGTGAACATTTACAAGGACACTGTCCGCCTGTCGCTGGACACGACCGGGTCAAGTCTTTTCAAGCGGGGCTACCGGATTGAGCACGGGGGAGCGCCTTTAAAAGAAAACTTCGCGGCATCTTTGATCAAGCTGACGCCATATGACGGGACCCATCCATTTATTGACCCGATGTGCGGGTCAGGGACCCTGCCAATTGAAGCAGCCTTGATTGCCCGCAATATTGCCCCGGGCACTTGGCGGAAGTTTGCCTTTGACTACTTTGACTGGTTTGACCCGAGCCTGCACGAAGAGCTGCTGGAAGAAGCAAAGAGCCAGGTTAAGCCAGCTGAAGCGCCAATTTGGGCCAGTGATATCGACCAGTCGATTCTGGAAGTAGCCAAGCTGAATGCCCACAATGCCGGGGTCTTGCAGGACATCCGCTTTAAGCAGGTCGCGGTCAAGGACTTTACCACCGATCTGGAAAACGGGGTCATCGTTTCCAACCCGCCATACGGCAAGCGTTTGAAAGACAAGCAAGGGGCAGAAGAGCTTTACCGGCAGATGGGGGAAGTCTTGCGGCCGCTGACTTCTTTCAGCCAGTACTATTTGACGGCGGACCCGGATTTTGAAAAGTGCTTCGGGCAAAAGGCCAGCAAGAAGCGCAAGCTCTACAATGGTAACCTCCGGGCTGACTACTACCAGTTCTGGGCCAAGCGCAAGTAAAGAAGAGATATGCTGATGAAGGCGATTACGGATAGTGAACGGCCAGACTTCTGGCTGATCTCAGATCCCCACTTAATTGCCGATGACCTGCATGACTTTGGCGCCAGGTTTAAAAAGATGCGGCAAACCAGCGCTGGCAAGGACATTGCCTACCAGGACCTGGCTCTCAGGGCTTTTGTCAGAAAAGTTGTCAGGGCCAAGCCGGCAGCCTTGATCATTACCGGAGACTTGACCTTTAATGGAGCCAAGCGGTCAGCTGAAAGGCTGGGGGAGATTTTTGCCCCCTTAAAAGAAGCGGGGATTGCCTTGCTGGTTATTCCGGGCAACCATGACATTTATGACGGCTGGGCCAGAAGTTTTAGTGGCAGTGAGGAAAGACGGGTTGCGCAAATTTCACCGGCTGACTGGAAGGAAATTTTTTCCGCCAGCTATGACTTAGCCGCAAGCCAGGAGCCAGGCTCTTTATCATATTCAGTCAACTTGAACCCGCACTGGCGGCTGCTTTTGCTGGACTCCAACCTGTACAGCAGCCAGTTTTCCTACACCCATCCTATGACCAGCGGGGGCACCGATGATGGGGAAAGGCGGTGGCTGAGCCAGGAATTGGTTGAGGCCAAAAGACTGGGACAAGACGTCCTCTTTTTCATACACCATAACCTATACAGTCATAATTCAGTGGTTCATGACGGCTTTAAACTGAATAATGCCGGTGAAATTGTCCAGCTGCTCAGTCAGTACCCGGTCCGCTGCGCTTTTTCCGGCCATATCCATGCCCAGCACATCATGTCCGGCTGGGTTCCGGTTCCCGAGGTTGTTTCATCCTGCTTCGCGGAAAGCGACCAGGGCTATGGGGTAGTTGAGCTGACTGCTAATTCCCTCAGCTACCGGCGCCACGATTTTGACATTGACAATTTTTTAACGGCTGAAGAGAAAAAGCAGCCCGCCTTTTGCGGATTTTCACGCTTATCTGAAGGAAGTTTTTGACCAGAGCAATGATCTGCTTCTGCGCCAGCACTTGCTCAAGGGAGCAGCAAAGGACCTGCCGGAAGCCGCGGAAATGCTCAAAAAGATGCACTGGGACTTTTTCACCGGGCAAAGCTATAAGAGTGAAGCCGAGATCGCGGCAATTTCTTAATCAAGCGCTTACCGAACTTTGTTGGCAGCCATGCCCAGCATGAAAAGTTATATCAGCTCCCTTTACGAGAGCACCCAGTCAAGTCAAAAGTTAGGTTTGACTTGGTGAAAAGCCGATCATTTTTTTTATTTCTTTGCTTAAAGTCCTAACTATAACTTGATTACCGAATATTAAAAACAATGTTTAAAAATATTTTTCGTATTTTTTCGGTATTTTCCTGTTTTTTTGCTATAATCTAGATATCTAGTGACAAGGAGTTTTTCATGAAAAAACATTTGATCTTTTTAGGAGACCTTGGCGTCATTTATTACAGCTGGCTCTTGCTGGTGCTTTTCCTGACTGTGATCTTCTGTCTGGAAGGCAGCCAGTTCATCAACCTGCCGACTGTGATAACCGGCATCATCTTCCTGCTTCTGCTTGTTTTTACATGGAAAAAGTCCTACATTTCTTTTGACGGTCAGACGCGCTTGCGTTTGCCTTACCGGAAGGAGTTCGTCCTAGATGAAAAAACAGAATTGGTGACTAGTTGGCGTGGCTTTGAAGTCTACCGGGCACGGGTTTCCAGGCATCAAAGCATTGATTATCTTGTTTTTAGGAGGAAGCGTGACAGAAATGGTTAAATCAGATATCGAAATTGCGCAAGCAGCAGAAGAATTGCCTATTACTGACGTTGCGGCCAAGCTGGGCTTGACCAGCCAAGACCTTGAACCATACGGCTACGACAAGGCCAAGGTAAACTGGCAGGCAATCAAGCGCAGTGAAGAAAACGGCCACTTGGGCAAGCTGATCTTGGTGACTTCAATTTCACCAACTCCAGCCGGGGAAGGCAAGTCCACGATGACGATCGGGATCGGGGATGCCATCAACAACCAATTAGGCAAGAAGACGGTGATTGCCTTAAGAGAACCATCCATGGGGCCAGTCTTCGGGATGAAGGGCGGGGCTGCCGGCGGCGGCTATGCCCAAGTCATTCCAATGGAAGACATCAACCTCCACTTTACCGGGGACATGCATGCCTTGACCTCAGCCATCGACAACCTGTCAGCCCTGGTTGACAACTACATCTACCAAGGCAACGAACTGGGCCTGGACCCGGAAAAGATCGTCATTAAGCGCGGCCTGGACGTTAACGACCGGACCTTGCGAAAGGTAACGATTGGCCAAGGATCCAAGTTCAACGGGGTTGAACGCCCGGCCAGCTTCCAGTTGACTGTGGGTCACGAACTCATGGCTATTCTCTGCCTGTCCAAGGACATTGCTGACTTAAAGGAAAGAATCGGCAAGGTTCTGGTCGGCTACACTTACGAGGATGAACCAGTCTTTGTCAAGGACTTGGGCTTCCAAGGCGCCATCGCTGCCCTTTTGTCAACGGCCCTGAAGCCAAACCTGGTTCAAACTTTGGAACACACTCCAGCCTTCGTGCACGGCGGACCTTTCGCCAACATTGCCCACGGCAACAACTCCATCCTGTCAACCAACCTGGCTCTGCACCTCAGCGACTACGTTTTAAGTGAAGCCGGCTTTGGTTCAGACCTTGGCGGGCAAAAGTTCCTGGACTTCGTTTCCACCAAGCTGGAAAAGAAGCCAGATGCCGCCGTTGTTGTTGCGACTGTCCGGGCCTTGAAGTACCAAGCTGAAAAGTCAACTGACCATTTGAAGGAAGAAAATCTGGACTCATTAAAGGAAGGTTTTGCTAACCTGGACCGGCACATGAACAATGTCCGTTCATACAATATTCCAGTTTTGGTGGTTATCAACAAGTTCCCAACTGACACTGAAGCAGAGCTTGACCTGCTCAAGTCATTGATTGAAGAACAAGGCTTCCCATGCGAAATCGTGACTGCCCATGATGAAGGCTCCAAGGGGGCTAAGGCAGCAGCTGAAAAGATCGTTGAACTGGCCGACAAGAGCGACTACGAAATCAAGCGCAGCTACGACCTGGATGACGACCTGGAAACCAAGATTGAAAAGGTAGCCAAGCGGATCTACCACGCGGCTGACGTGGAATACACGGACAAGGCCAAGGACCAGCTTGTAAAATTGAAGAAGATGGGCAAGGACAAGCTGCCAGTCATCATTGCCAAGACCCAGTACAGCTTTACTGACAATGTCAAGGAATTGGGAGCTCCTACCGGCTTTACTTTGCATGTCAAGGGCTTGAGCCTCCGCAACGGGGCCGGCTTCGTGGTCGTTTCAACTGGCCACATTCTGGACATGCCAGGCCTGCCAAAGCACCCGGCCGCCTTGGATATTGATGTGGACGAAACCGGCAAGATCAGCGGTTTGTTCTAGAAAAGAGGATTATGCAGATAGTTGGATTAGTTATTGCTGCCTTGATCGCGGCAGCTGATCAAGCTTTGAAGTATTATATTGTCACAAATTACCGTTTGGGCGAAGTCCACGACGTGATGCCGGGGCTGTTCTCCTTTACCTATATTCAGAATAACGGGGCGGCCTGGAACATCTTGTCCGGCAAAATGTGGTTCTTTTACGTAGTCAGCGCTGTTGCCATTGCCGTAGTGCTTTACTACTACTTCAACAAGAATTACAGCCATTGGATGTTCAAGTCGGGCCTGGTTCTGGTTTTGGGCGGGATCATCGGCAACTTGATTGACCGCCTGCATTTGAAGTATGTCATCGACATGATTCAGCTGAACTTTGTGCAGTTCAATATCTTCAACCTGGCTGATGCTGCCATTACCGTTGGCGTGATTCTGATCTTCAGCTATCTGTTATTCATTGAAAGGGAGGACTAGGATGAACCGTGAGTATGAACTGACCGCGGAAGAAAGCGGCCAGCGGCTGGACAAGTATCTGGCAGGGGAAATGACTGATCTGTCCAGAAGCCGGATCAAGGAATTGGTCCAAGCCGGGGAAATCCTGGTCAATGGCAAAAAGAGCAAAGTTTCATATAAAGTGCAGAAAGATGACCTGATCCAGGTCATCGTTTTGCCGTTAGAGCCATTAAAGCTGGAAGCGGAAAATATTCCCCTGGACATTGTCTATGAAGACAAAGACGTCATCGTGGTCAACAAGCCGCAGGGGATGGTGGTCCACCCGGCCGCCGGCCACCCCAGCCACACTTTGGTTAACGCCTTGCTCTACCACACCAGGGATCTGGCCGACAGTCCGGAAGGCTTCAGACCCGGGATCGTTCACCGGATCGACAAGGACACCTCGGGCCTATTGATGGTGGCGAAAAACGCGGCTGCCCGGGAATCACTGGAAAAGCAGCTGGCCGCCAAATCCAACAAGCGCCAGTACCTGGCCATCGTCCATGGCAATTTTGCGGAAGAAGGGACAATTGACGCCCCGATCGGCCGCAATCCCAAGGACCGCAAGCAGATGGCGGTGGTGGAAAAGGGCAAGAGCGCGGTAACCCACTTTAAGGTCCTGGAGCAATACCAGGGCTACAGCTTGGTTGAGTGCCAGCTGGAAACCGGCCGGACCCACCAGATCCGGGTCCATATGGCTTATATCGGCCACCCTTTAGCAGGCGACCCCTTGTATGGGCCGAGAAAGACCCTGCCCGGCCATGGCCAGTTCCTGCATGCCAAGACCCTGGGCTTTGAGCAGCCATCAACAGGTGAGTGGCTGGAGTTCTCCGTCCAGCCACCGGAAATTTTCCAGCAGACGGTTGCAGACTTGCGAAAGAAGCGGGTGAAATAGGATGAAACGCTACCTTATTCTTGAAGATGGCAGCTCTTATGCCGGTGACGGCATCGGGGCCATGATCACCGCTACGGGCGAATTGGCCATCCAGACCAGCAATTACGGCTATCAAGAGGTTTTAACTGATCCGTCAAACGCGGGCAAGATTATCGTCTTTACTACTCCGATGATCGGCAGCAACGGGATCAACGCGGTTGACTACGAAAGCATCCAGCCCAGTGTCCGCGGCGTCATTGCCAACGACATTGCCTTGAACATTACCGACAATGACACCTTCCAGTCTTTGGGCGACTTTTTGCAGGAAAAAAAGGTGCCGGCAATTTTTAACGTTGATACCCGGGCCCTGGTCAGAAAACTGCAGAATCTAGGTCCTTTAAAGGCCTCGATCATGGATACCAATGATGAACACGCCTTTGACCAGATCAGAGCTCTGGTTTTGCCGAAAAACAAGAGCTCCTTGGTTTCCACCAAGAACGCCTATGCTGCTCCTAACGTCGGCAAGACGATTGCTATTATCGACCTGGGCCTCAAGCACTCCATGCTGCGGGAACTGTCATTAAGACAGGTCAATGCTAATGTTCTGCCATATAACGCGACTGTCCGCGATATCAAGACCCTGCGGCCAGACGGGATTATTATCTCTAACGGTCCCAGCCAGGCCAAAGAGGTTTTGCCATACTTGCGGCAGATTTTGGATGAATATCTGGGCAAGCTGCCGATCCTGGGGGTCGGCCTGGGCTTTTTGGCGATTTCAGCCTACCTGGACCTCAGCCTGGTTGACCTGCCCCAGTACCAGAACGGGACCAATTTCCCGGTGATCAGGCAGAGCAGCGGACAGATCTGGCAGACGGCCATGAATATTGGCCAGCTGGTTTTGCCGGATGACACGGCCGTGACCTTTAATGAAGAGTATTTCGACCTGCACAATGAGCTTTTAGCCGGCTTCAGCAATGATAAGCTGCAGCTGCTGGCGGTGGCCTTCAACCCGGAAGGAGCCCCGGGGACGGAAGATGCCCAGGTGATTTTTGACGACTTTTTGAAACTGGTGAAATAATGCCACGCGAAAATGATTTAAACAAAATCTTGATTATTGGTGCCGGCTCAGCCCTGGTGGGCAATGTGGCTAATACGGACCTCTTGACCAAGAGCGCCATCGAGGCCCTCTTAGAAGAGAATATTCAGGTGGTCCTGGTCAACCCCAATCCAGCCAGCGTCTCAACCGACCCCTTACCGGGCTTGACCGTGTACCTGGAACCGATGACCTTGGACTTCTTGAAGCGGATTCTCCGGATGGAAGAACCCGACGCGATCATGACGGCTTTTGGTTCCTTGATGGCCCTGGACGTGACCAAGAAGCTGCAGGCTGACGGAATCCTCCACCAGATGGGGATCAAGCTGTTAACGATCAATGAGAGGGCCATTTCCATGTCCAACCCGCAAAAGAGGACCCGTTTCTTGGAAGCCAATCATCTGCCAGTCGGGCAGACCTGGTTTTTAGACAGCCTGGGTTTAAAATACGACGAGCACCTGCAAGAGCAGCTGGAAAACAAGCTCTCTTTCCCGATTCTTTTGACCAAAAAGTACTACTTTGAGCGCGATGACCACATCTCCTTTAAGAGCAGCCGGGATTTAGCCCAGTACCTGCGCCAGGAGAGCCAGGACCGGGACTTCCGCCCGGCCAGCTACCGGATGACGGAAGACTTGTCTAATTGTGAAGAGGTCATCTTGGACCTGCTCCGTGATGAAGACGGCAACCTCTGTTTTGTCGGAGCGACTGGGTCTTTGGAACCGGTCGGGATTGACTCAGGCGACTCAGTCTTGATTAAGCCGCTTTTGACCATGAACAATGACCAAATTCAAGTCCTGCGGGCAGAAGCTGGCAAGATAGCGGACAAATTGCAGCTGGTCGGCTTTTTAAGCGTCCACTTCGCCATCAGCCACCGGGGTACGGAAATGGTCTACAAGCTCTTGGCCGTTAAGCCACGCTTGACCAGAACCGCCGTCATGGACCAAAAGACCAGCCTGTATTCAATCGGCTATGTTTTAGCCAAGCTGGCAATCGGGCTGCGGCTGAATGAAGTCACTGACCCGGCCACTGGCCTGTGTGCGGCCATTGAACCGGTCTCTGACACCGTCAGCATCAAGATTCCTTACTGGTCCTTTGCCAAGACTGGCTACAACCACTACCAGCTGGGCAAGCACACCCAGTCAACCGGGGAAGCGGTCGGGATCGGGCGGAATTTTGAAAGTGCCTTTTTCAAGGCCTTGATTTCCAGCAATGATCTGGAAGTCTTGTGGTCAGCTTTTATCAAGGAAAGGGGCAAGAGCGATGAGGTGATCCTGGATGACCTCCGCCACCCTAACGAAATGCACCTGGTTCAGCTGCTGGCTGCCCTTAGCCAGGGCATCGACTACCAGGCCATAAGCAGCGTCTTGAATATTCATCCGGTCTATTACCAGAAGCTGCGCTACCTGGTCAAGATTGGCAGGGACATTGCCCATGCGGGTGAATTAGACCATGACCTCCTTTTAAAGGCCAAGATCCGGGGCTTCTCCAGCGACCTTTTGGCCGAATTGACTAAGATGGACGTCCATGACATATTTCCTTTGCTGAATGAAAAAGACGTCCGGCCAACATTCTCAGCGATTGATGACAGCGCCGGGGTCTACCAGCCCAAAGTCAAGGTCTACTACCAGAGCTACGGGGTGGAAAGCGAATTGGAATTTGCCAAGGATCCGGAGAAGAAAAAGGTTCTTTTGCTGGGGATGCCGCCCTTCCAGGTGTCAGTAACCAGTGAATTTGACTACATGCTCTATCATGCCCTGGCGGCCTTGAAGAAAGAGGGCTATGAGACGGTCCTTTTGTCTAATAACGCGGAATCTGCCTCGATGGACTACCACTTGGCTGACCGGGTCTATTTTGAACCGATCAACTTGGACAGCATCATCACCATCTGCGAAGAAGAAGGGATCACGGACGTGGTCACCCAGTTCTCCGGCAAGCAGATTTCCGCCTTGCGCCTGCCTTTGATGAGCCACGGTTTGAAGATTTTTGGCCAGCACGAGATCGACCGCCTTTTGCCGATTAGCCACTTAGACACGGCCAAGATTTCTGAGGTCAAACGGGTGCCATATTTGGCAACGACCGACTACCAGGCAGTTTTAGCCTTTGTGGCCCGGGTGGGCTATCCGGTCTTGGTCGGGGGCTATCACCAAAAGAGCAAGCAAAAGTCGGCCGTGATCTATGATCAGCCGGCCCTGGAGAAATACTTCCGGGAAAACCAGGTTGATAATTATACGATTTCCCAGTTTATCTCGGGGGTGAAGTATGAGATTACGGCGATCACGGATGGGGAAGACGTGACTATCCCGGGGATCGTGGAGCACTTGGAGCAGTCCGGGTCCCACGCCTCAGACTCCATCGCGGTTTTTGGCCCCCAGTATTTAAGCAAGGAGCAAGCGGAAAAGTTGCGGGTAGAAACAATCAAGCTGATCCGCAGCTTCAAGATCAGAGGGATCTTCAACCTGCACTTTTTGCTCAAGGGCAGGGAAATCTACCTGCTTCAGATCAAGACTTATGCCGGTCATAATCTGGCCTTCTTGTCCAAGTCCATGAACAAGGACCTGGTTGAATACGCGGTTAAGGTCTTAGCGGGCAGAAAGATTGCTGATTTAGGCTACCCGAACGAGGTCTGGCCGGTTGACGAGTTCATCCACGTGAAGATGCCAGTCTTCTCCTACCTCAATTACAGTTCAGACAATACTTTTGACTCCAGGATGAAGTCCTCTGATGCCGTGATGGGCAGAGACAGCCGCCTGGCCAAGGCCCTTTACAAGGGCTATGAAGCCAGCGACCTGCATATACCAAGTTATGGGACGATTTTCTTCTCAGTCAGCGATGAGGAAAAGCAAGAAGTAGCCAACCTGGCAAAGCGCTTTGCCCGCCTGGGCTTCAAGATCACGGCCACGGAAGGGACGGCCAATATTCTGGCTGAGGCGGGGATTACGACCGGGGTTATCGCCAAGATCCAGGAGGGGTCTAGAAACCTTTTGGAAAGAATCCAGACCCACCGGATCGTGATGGTGGTTAATGTCGTCAACCTGTCGGACTCGGCAGTGGAAGACTCGATCAAGATCAAGGACCAGGCCCTGAATACCCATATTCCGGTTTTCTCCAGCCTGGAAACAGTCCAGTTGATCCTCGATGTTCTGGAATCGCTGGCCTTGACTACCCAGCCAATTTAAAATATGCTATTCTAAAACAGAACTTTTTAATCCAAATTAAATTTATTTCTTATCCTGATCAGGATATAAGTTTCGCAAGCAGGAGGGCAAGCGATGAGAGCAATTTTGACAACTGTCGGCCAGGACAAGACCGGGATTATTGCCGGCGTAAGCAGCTTTTTAGCTGAAAAAGACATTAACATTCTGGACCTGTCCCAGACGATCATGAACGGCTACTTCACGATGATGATGGTCGTTGATGTCAGCGATGAGGCAGATTTCTCCGCCTTGAGCACGGAATTGAAGGAACTGGGCAAGAAACTGGGCGTGGAAATCAACATCCGGAATGAAAAAATGTATGCGGCCATGCATGAAATGAGCGGAGGTCTGGAATAATGGACTTGCGGCGGATTATGGAAACGGTCAATATGATCGACAACGAGAACCTGGACTTGCGGACGACGACCATGGGGATCTCACTTTTAGACTGTATTGACTCAGACAGTGACCGGGCCTGCCAGAAGATCTACGACAAGATCACGACTAAGGCGGAAAACCTGGTCAAGGTAGCTAGAGAACTGGAAACTGAATACGGGATTCCGATTGCCAACAAGCGGATTACTGTAACCCCGATTTCTTTGATCGCGGCAGCTTCAGGGGACAGCGACTACGTTAAGTACGCGGTTACCTTGGACAAGGCAGCCAAAGCAGTCGGCGTGGACCTGATCGGTGGCTTCTCAGCTTTGGTGCACAAGGGCTACCAAAACGGCGACCGGGTCTTGATCAAGTCAATTCCCCAAGCTTTAAAGGAAACTGAAAGAGTCTGCTCTAGCGTCAATGTCGGCTCAACCAGAAGCGGGATCAACATGGATGCCGTCAAGGAAATGGGCCAGATCGTCATTGAGAACGAAAAGATCAACCCGCTGAACAACGGCAACCTGGTCATCTTCTGCAATGCGGTTGAAGACAACCCGTTTATGGCCGGTGGCTTCCATGGGGTCGGCGAAAGCGATGTGGCTTTGAATGTCGGCGTATCCGGCCCTGGCGTGGTTAAGACGGCCCTGGAAAAGGTTAAGGGCGAATCTATGGACGTGGTTGCTGAGACCATCAAACAGACGGCCTTCAAGGTTACCAGAATGGGCCAATTGGTGGGCCAGGAAGCTTCTAAGCGCCTGGGCGTCGACTTTGGGATCGTGGACTTGTCTTTGGCGCCAACTCCTGCCCAAGGCGACTCGGTAGCCAATATTTTGGAAGAAATCGGCCTGGAAAGCGTGGGGACCCACGGGACCACGGCCGCTTTGGCCATGTTAAACGATGCTGTCAAGAAGGGCGGCATCATGGCCTGCAGCCATGTCGGCGGTCTGTCTGGTGCCTTCATTCCTGAATCAGAAGATGCCGGGATGATCGCGGCAGCTGAAAAGGGGATTTTGACGGTCGACAAATTGGAAGCCATGACCGCTGTTTGCTCAGTTGGTCTGGACATGATTGCCGTACCAGGCGACACGCCAGCTGAAACGATCAGTGCCATGATTGCTGACGAAGCGGCGATCGGGATGATCAACAACAAGACCACGGCTGTCCGGGTTATTCCAGTACCGGGCAAGGAAGTGGGCGACTCAATTGAATTTGGCGGCCTCTTCGGCTATGCCCCGATTATGCCTGTTCACAAGGAATCAAGCGCGGCGATGATCAACCGCGGCGGCCGGATTCCAGCCCCAGTGCACAGCTTTAAGAACTAATTTTTTAGAATATATAGAAAAAGAACCGTACTACCATTTTGAGATAATACGGTTCTTTTTTGCATCTTAGTCAATCCGCTTAGCTAAAATCTTGTCAGCTTCCGGGGTAACTTCAATGGACTTCTGCCCGGTGTAGATGACGAAGCCGGGCTTGGCCCCGTTAGGTTTCTTGATCCGCTTGACCTGGATATAGTCAACCGGCACGTGGGCGGAATTTTTGGCCTTGGAGAAGTAGGCAGCGATCTCCGCGCTTTCCTGGATGTCGCTGTCACTTGGCTGGCTGTCAGTCAAGATAACGTGGGAGCCGGGGATGTTCTTTACGTGGAACCAGTAGTGGTTCTTGTCGGCCTTTTTCAGGGTCAGCCAGTCGTTTTGCAGGTTGTTCTTGCCAACTAAAACAGTTTTGCCGGAGCTGAGCTTGAACTTGTTTAGGCTCTTTTCGGTCAGCTTCGGCTTCTGGCGCTTCTTTTGTTCAGCTCTAAGATAACCTTGGTTGATTAGCTCTTCCTTGATGGCTTCGACGTCTTCTGGGTCAGCGTTGTCGATTTCCGTTTGAACGGAATCAAGATAGCGGAGGTTTTCTTCCGTAATCTCAATCTGCTCGGTCACGTGCTTGATGGAATCCCGCATCTTCTTGTAGCGCTTGAAGTATTTCTGGGCATTGCGCTGAGGGGAGAGGGCCGGGTCAAGTTTGATGGTCATGGGCTGGTTGCCTTCATAGTAGTTAGGCAGGTCGATTTTTTCCATGCCGGGCTTAACCTGGCTTAAGTAGGCGGTTAAAAGTTCCCCGGAGACTCTGAGATTTTCGGAGTTTTCAGCACTGTCCAGCTGCTTTTCCAGCTTCTTCAGCTTCTTTTGGAGCTTTTTGGTCTCATTAGTGACGACCCGGGTCACCTGCTGGGACCGCTGCTTGACCCAGTCCCGGTTGGCCTGGTAGGCGTAAAACTCGTCTAAGGCTTCATTTAAGTTAGTGGAGGAGCTTTCCTTGGTCATCTCCAAATGATATGGCAGGTAAGGGTAGATCCGCCGCTTGTGCTTTGGCGTCAAGAGAACGTAGGCCTTAGGGGAGGAGAACTGGTTGTAGAAGGTCTTCAGAGAAGAGAAGGAGTAGTCGTCTTCCAAGTAGCCGGTCAGTTCTTGCCGGTCATCGCCATCTAAACCGTCCATTTGCTTGGCCAGGTCAGCTGGGGTTGGGTAGTCTCTTTTCAAAGAAGAAAATTCTGATTCCGTTAAAGTAAAGCCGTTGATGCCGGGAGTCAGCGGGGGCAGTTCGTACTTGGCTTTAGGCAAGAGGAGGCGGGCCCGGTTTTCGTCAGGGTTGATCCGCTTTAGCAAGTCGATGATCTTGCCGCTTTGCTTGTCATAGAGGATGACGTTGCTGTGCCGGCCCATCAGTTCAACGGAGAGGATCAGCTGTATTTCGTCACCGAGTTCGTTACGGTTGCTGAAGGAGAAGTTGACGATCCGGCTAAGGCCAACCTGGCTGATTTCCTGGAGGACTGACCCTTCCAGGTATTTACGCAGGACCATGACGAAGAGAGGAGCAACGTTAGGGTTGGAGAAGGACTCCTTGCTCAGGTAGAGGCGGGGATATTCAGGATTAGCAGAAATTAAAAGCTGCTTGTTTTTGCGGTCCTTCCTGAAGACCAGGACCAGGTCGTTGTTAAAAGGCTGGTAGATCTTGTGTAAGCGGCCAGCAGTAATCTCATCTTGTAATTCATTAAGCAGGCTATGAATAAATAAGCCGTCAAAAGCCATTGAGCACACCTCATTCGTAAATTGAAAATTGTTCAGTAAACTATTTTATCATAAAGTACGGGCTTTATCAGATATCTTGATTATAAGGATGCAGATAGTTATTCTATACGCAAACAGGCATGATCAAGATCCTTCTAGTTTAGCTGGGGCAAGTATGCTATAATTTTCATGTTAAAACGTTAAATACGGAAGGTTTAATATGAAGATCGCATTAGTTACCGACAGTACGGCCAATTTGTCCGCAGCAGAAATTGAAAAGTATAATATCAAGGTCATTCCTATTCCGATTTACATCGATGACAAGGAATACCTGGAAGGAATCAACATCACTTCTGAAGAGCTTTTTGAATCGCAGCGGAGTGGCTCCAGCTTCCCGACCACTTCCCAGCCGAAGATGGGGGACCTCATCACGACTTTTGACAACTTCAAGGATGAGGGTTACGAGGCGATCATCTACATTTGCCTCTCCAGCGGGATTTCAGGTTCCTACAGCACCTTGATGGGGATCGCGCAAAGCAACCCGGACTACCACCTGTACCCGTTTGACTCACAAATTACTGTTCGCCTGCAGGGTTACCAAGTTCTGGCAGCAGCTAAGATGATCGAAAAGGATAGCTACAGTCCGGAAGAGATCATCGCCAAGCTGGCGAAATCCGGTCAACTGTCGACGAACTCTTTATCGTTGATGACTTGAACAACTTGTGCCGGGGCGGCCGTTTGAGCAATGCCAGCGCCTTTATCGGGTCACTCTTGAACATCAAGCCTTTGCTGACTTTCAACGATGAAGCTAAGATCGTGGCTTACGACAAGGTGCGGTCAATGAAGCGGGCAGTTAAGAAGATCGAAAAAGAATCCCTGGAAAAGATCAAGTCATTGGACATCCCAGAAGACAAGCTGCGGATCTTGATCCTTCAGTCAAATGACGCCGCGCAAGCTGAAGAAGTCATGAACTACCTCAAGGCTGAAGTGCCAAAGGCTGTCTTTGAAATGGACGAATTTAGCCCGGTTATCGCGACTTACCTGGGCGAAAAGTCAATCGGCATCACTTGGATGATTGACGTTGAACAGATGGAATTCTAGTTTTTTAGAATTCAGAATTTGCTGTGTTCAGTAAAAGAAGAAAGAAATTTGGAAAATGAGAATCAAAAAGTGGGCCGTTATGGCCCTTTTTTGCGGTATTTTTTTGACGGGTTGCAGCAATCAGACCGCTTCAAAAGAAGCAAGCAATAGTTCAAATAAAAGCAGTCAGAGCAGCAAGTCTAGCGTTAAAAAGACCAGCAAAGCTTCGTCAAGTTCAGCTAAAGCAGTAAAACTTGATGCGGCAAAACTGACGCCGCAGGAAAGCGGCAGCTTGATTACGCTCTACTGTGCTGACCGCTTTGGCGGAGAATGGTCTAATTTGCTTCAAGCAGGGCAGAATGGCTCTTTGACTATTACCCTGCACAAGACCAGCGACTACGAATTTAAGCAGCCGGGCAGCGGCTATGCTTATGAAGCCGCGGCGTCCGGACAAACAGGGACGACCTATTATACTCTTAGCGGAAGCACTTTTTACTTCTACCAAGGAGTAAAAGTAGCAGGCAGTGGCAGCTCTTTGGGCCAGGCAACTAAGCAGGAAATGGCTGACTATATCGTTAAAAAATATCAGCTGGCTGAATTCAAGCAGCTGGCCAAGAAGGTCGAGATCGTGGATAAATCTGGACAAACTCAGCGCCTGTCTGACGGGCGGAGCGGCTACTTTACTATCCCCGCGGAAATGCAGGGAACCTGGTATTCTGCAAGCAACTATGATGGTGAGACAACGCATTCTAAGTACGTCTTTGGCCAAAGCACAATTTTTATTCAAGACGACAAGTACGATACAAATGGAACCACAACTACCCTGTACGCTAGGTCGAGTGATTTCAAAATGCCGTTACCGCCAACCGAAAAACAAATGGATCAGGTAAAAGGCTGGGGCTTGGGACACCTGTACCAGCAGGACGGTTTAAACTACATGAATGTCATGGGTTGGTACCAAACTGCCGGAAGTGGTACATCTTTTGCCGTTCATACTGAAAATATCGCTGGCAATAATGTGCAAATATTGGTTTGTGCTAGTGGTGCCCGTCCTTGGGTCGATGGAATTGCCTACCGCAGCCAGGCAATGGCTGAAAAGATGCAGGACCAGCATTTTGATGATCTGCACTATCGTGATGATGAGTAATTAAATATTACCGAAAAACTAAAGTAAAACAGCGCCAGCAGGAAAATCTGCTGACGCTGTTATTTTTCAACCCGGGATTTGATTTTGCTCCGCGGGGTCCAATTGAGGACGAGTACGGCAAAAATAATCATCACAGATGCCGCGTAATCCATCATTTGCGGCTGAAAGTGAAAGACGATGATGGAGCCAATCATGGAGGCCAGCGGTTCAAAGGCATCCATAAAAGCCACAGTCATCCCCGAAATATGGCCTAAAGCATGGTTTTGCCAAAGCGTCGGGATGATCGTGCCCATAACGATGACGACTGACAGGTTGAGATAGACGGTCGGTGAACTCGGCAGGCTGGGCCAGACTGGATGAATTGCCGTCAAAATCAAACCGGAGATAAGCAGGCCCCAGCCAGTAACTGAAATAGTGGACTGCCTGGTCACCAGTGCTTGGGGAAGCAAGCTGTTGGCCGCTGCCCCAACCGCTGACATAATGCCAAAAAGGAGGGTAAGAGGCGCGATCCTAAGGTCATGGATATTGCCATGCGTTGACAGGAGAAAGACTCCGCCAAAAGCCAGCAGGCTGGCCGCGACATCAATCAGCCGCAGAGCCTCTTGCTTGGTCAAAGTCAGATAGGCCAAAACAAAGAAAGGACCGATAAACTGAATGACCGTCGCGATTGCCGCGTTAGCCTGGGCTACTACCAAAAAGAAGCAGTACTGGAAGGGCAGAACGCCGATAACTGCATATGCCAGAAGCTGAACCGCGCTCTTCTTGTCTTTCCATACCTGCCAGGGATGCTTGCCCGTCAGCTGGGCCACAGTTAACAGGATCAAGCCTGAGCAAACCTGCCGCATTTGTGTAACCCAAATCGGCGTGATGCGGGGGTCCAAGTTAAAGAGGCCCTTGGCAAAGAGGCCAGAAATACCCCATAGGATGCAGGCGGCAGCTGCCAGGCCGGCCCACTTGCTGTTTGATTTCATCTTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTAACTTTCTTTCTCTCTAGATATAGATTTCATCATTATTCGCATATTTTCAGAAAACAACCTTCTCCATTTTACCACACTGCTGGCAGGACTCTTCAACAAAGTCAAAAAATACCCTGGAAGTCGCGATCAACAACTTCCAGGGTTTGTTTCAATGGTAAGGATAGAGAGTCAAAGTTTAAAAAATCAGCTATTTCTTGTGAGTCAAGATTCTGACGCGGGTAACAGCCGGGATCTGTTCCAAGTTGGGCACCACCTTGTCTTGGGTCGCCTGGTCGATCTCATCGATGTCGATCATGGTGTAGGCGTACTTGTCCTTGGCCTTGTTGACCAAGTTTTCAATGTTGATGCCACGGCCAGCCAGGTAGGTTGAGATCTGCCCAATCATGTTTGGAATGTTCTTGTGAATCAAAGTGATCCGGTGGTCACTTTCAAACGGTGCTGACACGTTCGGCAGGTTGACTGAGTTGATAATGTTCCCAGTTTCCAAAAATTCGATGGTTTGCTTTGCTGCCATCCGGGCACAGTTGATTTCCGCTTCAATCGTTGATCCGCCGATGTGGGGCATGAGGACGATGTCATCGTTGTGCAAAATCGTGGCATCACTGAAGTCGGTGTAGTACTTGCCCAAATGGTGTTCTGCCAAGGCTTCAGCGACAGCCTTGTTGTCAACGATCCCCAGGCGGGCAAAATTGAGCAAGATAGTGTTTGGCTTCATCTGCGCGATCTTGGCGTCAGCAATCAAGCCAGTCGTCTCCTCGTTCTTTGGCACGTGGGCGGTCACAAAGTCCACGTCCTTAACGGCGTCAGCGATGCTGGTGGCCCGCTTGATATATGGTCTGACAAGCGCCATGCGGCTTCAACCGTCAAGTATGGGTCATAGCCCCGACAACCTTCATCCCCAAATCAAGGCAGGCATTGGCTACCAGTGAGCCGATGTGGCCTAAACCAATCACAGCCACCGTCTTGCCCAGCAATTCAGTCCCGTTGAAGCTGGTCTTTTCCTTTTCCGTCCGCAGGGTGATGTCCGCGCCCGGCTTGGCGTTAGCTGACCAGTTGGCGGCAGCCACGATGTTCCGGCTGGCGATGATCATAGAAGCCAGTACCAATTCCGTAACGGCATTGGCGTTGCCGCCTGGAGTGTTGAAGACCACAGCCCCATTTTCCAGGGCCTTGTCCAAAGGCACATTATTGTAGCCGGCCCCGCAGCGGGCGATGGCCTTCAAATTCTTGGGAAATTCATGGTCATGGAGGTCAACTGATCTGATCAGGTAGGCATCTGGATTGTCAGTTTGGTTGATCCGGTAGTTGTCGCCAAATTCGTCTAAGCCTTCTTTAGCAATGGCATTGTAAGTTTTAATTTGGTACATGGGGAATCCTTTCAAAAATTAGTGCTTGGCGTCAAAATCCTTAATAAAGTCACAAAGGGCCTGAACCCCTTCCAGCGGCATGGCGTTGTAGATGCTTGCCCGCATCCCGCCAAACAGGCGGTGGCCTTTCAAGTTAAGCAGCTGGTGGGTGGTTGCCTCTTTGACAAACTCCGCGTCCAGGTCCGGGTCGCCGCTGACAAAAGGTACGTTCATAATTGACCGGCTGTCTGGATCAACCTTGCTCTCAAAATTCTTGGATTCAGCCAGGCAGTCGTAAATAAGCTTGGACTTTTCCTGGTTGATGGCCTCAATGCCGGCCACGCCGCCTTTTTCCTTGAGCCACTTAAGGGCCAGGCCAGCCACGTAAACCTGGAAGACTGGCGGGGTGTTCAAGGCTGATTCCTTCTTGGCTTCAGTAGCAAAGTCAAATAGGCCAGGCAGGTCGTCATGCTTGACCAATAGGTCCTTTCTGATGACCAAAACGGTCAAGCCGGCAGGGGCCAGGTTCTTCTGTGCCCCGGCGTAGATAACAGCGAATTTGCTGTAGGCGTATTCCTGGCCCAGGAAATTGGAGGACATGTCAGCTACCAGAGGGATATCGGTCTTAGGAATTTGGTCGTCTCTGTAGGCCGTCCCCATAATAGTGTTGTTGGTCGTGATGTGGAGGTAGTCGTAGTCCTGATCAAATTCAGTCGGGATTTTCGGGACAGCAGTGTAATTGTTGTCCTTGGCGCTAGCGACGATGTCAACGGTTAGGCCTGGCACTTTGGCCGCGTCTTCTGCTGCTCTTTGGGCCCAGTGACCACTGTCTACGACCACGATCCGGTGGTACTTGCGGGCCAGGTTCAAAGGAATTGTGCTGAACTGCTGGGTTGCCCCGCCGCTCAAGAAGAGGACGTCGTATTCTGCCGGGTCAAGCTTCATAAGTTCCAAGAGGTTGGCCTTGGTTTCCGCGTAAAGGTCCTTGTAAAGGGCTGACCGGTGGGAGATTTCCATGACGCTCATGCCGCTGTGGGCAAATCTGGCAAGTCTTGTTTGATTTGGGCAATGGCTTCGACCGGCATCACGGCTGGACCAGCCGCGAAGTTGTAGCATGTCATAAGTAAAGAATTCCTTTCCGAAAAAACAAAGGGCACCCGCCTTGCGTGAGTGCCCTTTGCCATGAGATGTTATGTTGGAGTTGTTGTTTCGGCCTCACTGTTTTAAACTGTGCTGAAGGCCATCACAAATCGCAGCCTTCTTAAGTGGAAGAAGACTGGGAGGGGGAAAAAAGTTTGTTTTGCATTTGAATTGTCTGTAAAGTAAACATTTTTTCGCTCCCTTCGTGTGATTAATTTTATTATAAGTCTAAAATTATAAATATCAACACAATTTTAATTTTGGTATAATATTTTGGTATAATATTTCTTAGCAAAGAAAAGAGAAAAAGAAAGTCTAGAAACAATGGAGGACCAGCATGACCACATTCTACTTTATCCGGCACGGGCAAACCTTTGCCAACATGGCGGGCTTGAAGCAGGGGACCATCAATAACCCCAACACCTACTTGACCGACCTGGGCAGGGAGCAGGCGCAAAAACTGGCTGACCAGTTCGACATCAGCAATTTCGACCGCCTTTTCGTTTCCCCCTTGGTCAGAACCAAGCAGACAGCGGAAATTTTGAACAAGAAGGCCGGCCTGCCGGTTGAAACGGACGACCGCCTGCTGGAGATTTCCTACGGGGACTGGGACGGGCAAAAGTACAGCGAATTGATGGCTGAATACCCGAATTACTTTTCTCCCCTGGTCAATGACGTGACGGAAGACTACGTGCAGGCAGCCCCAAAGGCGGAAAGCTTTGCCCATGTGGAAATGCGGACTGCTGAATTCGTGGCGGAAATCAGCCAAAAGTATCCAGAAGACCAGATCGTGGTAGTGACCCACGGCTTCACGGTCAGATCTTTTGCCATTAATGCCACGGGCGGCCAGGGCCTGCAGATCCTGGAACCAGACAACTGCTCCGTCACCAAGATCCTCGTTGACCCCCTGTCATTTAAGCAGCACCTGGTCTACTACAACCGGACAGTGACTGCTTTTTAGCAATATTTGTTAGATATAGAAAAACGGAACCGCTTGGCTCCGTTCTTTTATTTGATCTTTAATCGACAGACTTTAAAGCATCAAGCATGTTGACGGACTTGATCTTCTTGTGCATGATCAAGGCGACTAAAGCAGTGATCCCGGCCAGAATCAAGGCTGAATAGAGGAAGTTGCTGATCTTCATCGCCGGGTCAAACATGGCGTTGTCTGGCGGCAGGCTGGTGATGATGAAGGTGTGCAGGCCGATCCCGGCCAGGTAGCCGCAGAGGATGCCGATAATGGAGAGGATAATCGTTTCCCGGTAAATGTAGAGGGTGGTTTCCTGATCAAAGAAGCCGAGCACCTTGATGGTCGACAGCTCTCTGATTCTTTCCTCAACATTGATGTTGGACTTTTTCAATCACGAAGTTGATGTCCCGGTTGGCGTAAACTGTCGTGTCACCGGACTGATAGGTCTTCGTATTATGCTTCACTTCAATAAGTGCCATGATAGCTTACTTTAGCCATAAAAAAGAGCGGACCGGAAAATGGCCACGCTCTTACAAGTTGCTGACAAATTAATGATGAGAGCAACTCTTGCCGGTTAAATTTCGTTGATGCCGATCCGGTCCAGCTTCTGGTCGCGGATGGTCAGTTCTTCTTCAGTTTCGCCGATACCAACCCCGCAGACCGGCATGAAGCCGGCTGGCAGGTCTAGCTTCATAACTGTTTCTGGGTGAGCGGCCAGAGCAGCTGCCGCGCCAAAGAGGTAGCAAGCCCCCAAGCCCTTGTTTTCAGCAGCCAGAACCATGTTGTGGGCAATAATCCCGGCACTGGCATAGGCCATCTCGTCCTGCTTCTTGGCAGAGACCAAAATCAAGGTCGGCACACCGTACAAGGGATGTGATTCCAGATCGCCAAATATCATGGCTGCTTCCTGGTCGATCTCCTTTAAAAGCTTTGGGTCATTAATGATCGTCAGCTGGTAGTTCTCGTATAAGCCGCAGGCTACTGGAGCCAGTTCAGCTGCTTCGATGATCTTCTTGACCTGCTTCTTGTCAGCCGGCTTGCCAGTATAAGTCCGGATTGACTTACGTGATTTCAACAATTTCGTAAACTTCATGGATGATTTTCCCTCCTGTCAATCTAACAAAACACATGCCTGTCGATTCCTTAGCGCGATTATACCGCAATCACTTCAGTAAGCGGTTGAAAATGTTTTTAAACTTTTTCTACAAAAAAATTACCTGCTTTTTCGATAAAAGAGCTTGATTTAAAGGGCAAAAGTCTTTATAGTTAAGGAAACATATGAATGACCTTTAAATTTAGTCCCGTGAGGCTAAGAAGGCAGCTCAAAATCCAGATATAAACAAGAAATTCTTGGCAAACATTCGAATTGACAGGAAGACCGGGGAGGAAGCTTTCCGGGCAGTTTAAGTAGACTTTGAGAGACCATTTTAGACACGGAGACTGAGTGTATAAAATGGTCTTTTTGCTTAAGTTATTTTCGAAAGGATGCCAAATCATCATGACCACTGTTAGCTCCACCCAAAGGAAGGCCAGCACCTGCAAATGGGCCTGGTTAACGCTGGTGACGGTTCCGGCCAGCACCCATCCCAAAGCATGCTGGACATGATGACCATCTACAACGAATTCGGTCGCTTCGACGGCTTGAAGATCATGATCGTCGGTGACTTGACCAACTCCCGGGTTGCCCGGTCAAACATGGAAATCTTGAACACCCTGGGCGCGGAAGTCTACTTCTCAGGTCCGGAATACTGGTACGACGCTGAAGAATTCAGCAAGTACGGCACTTATGTCAAGAACATTGACGATGAAATACCAGAACTGGACGTCTTGATGCTGCTCAGAGTTCAGCACGAACGCCACAACGGGACAGAAGCCAAGACTGAACAGCTCTACAACGCTGCCTACGGCCTTAACCAACGCCGCTACGACATGCTTAAGGATGACGCCATCATCATGCACCCGGGCCCAATCAACCGCGGGGTTGAATGGGACGGTGACCTGGTTGAAGCACCTAAGTCCCGCTACGCTGTCCAAATGCACAACGGGGTCTTTGTCAGAATGGCCATGATTGAAGCTGTTCTGCGCGGACGTAAGTTGGGAGGCCTTGAATAATGGCTATTTTGCTGAAAAACGGCCTGGTTTACCAGGAAGGCGAATTCATTAACGAAGACGTCAGCCAGCCAAGCTCTTTGGCCTGGACGCTGGTGTCCTGGCTCCAGGCAAGGAAGCCGACCTGGCCGTCTTTGACCTAGACCACGCCGAAAAGCTGGCCGAAGAAGACTACTTGTCCAAGGGGGTTAACACACCTTTCACCGGCCAGGAAGTCTACGGCATGACCGCCTTGACTTTTGTCAGCGGCAAGCTGGTTTACAAGAGCAAGCACTTTGCCGACTAGGCAAATGGCAAAATAAAATTTTTACCACAGAAGAAAATAACTAGCAAAAGACGGAAATAAGTCCTTCTCTAATCAGAGGAGGACTTATTTTGTTTGGCGCTGGCATTGAGGGCGGCCCGTTGCTCTCTTTGGTCAACGTGGGTGTATAGGTCGGTGGCTGAGGTGCCTTTTTGCCCCAGTTGCTGGGCGACCATGACCTGGTCCTTGGTCGCCTGGTAGAGTTCAGAAGCGACCGTGTGGCGGAGCTTGTGGGGGGTGAGAGGGTGGCCGAAGGCAGCAGAATACTTGCCAACCATTTTTTCGATGGCATTCGTCGTCATCCGCCGGCATTCCTGGTGATATCTGGTTAAGAAAAAGGCCTTGTTAGTGGCTGGGGCCTTGTAGCGGTCTGCCCGGATTGCCAGGTACTTTTCCAGGTAGGGGAGGGTCCAGTCAGCAACTGGCACTGAGTCTCTCTGTCCGCCCTTCCGGGTGATATCTAAAGTTGCCTCTTTTAAGTTGAGGTCCTTCATGTCAACCCCGGCGCATTCAGAAACCCGGATTCCCGTGCCTAAGATCAAAGCGATGACTGCCATGTCCCGTTCCTTGTTTTGCTTAAAAGAAGAAAGGGCGCGCCCGCTGCAGAGGCCGGCAAATTTTTGGTCCAAAAAGTCCATGAACTGGTATTTCAAGTTGCCGGTGTACATGTGAGCTTCTAAGGCATGAGCCCGGTAGTTCAAGGTGCTTGTATAAGGAAGGAAATTGATCTTGAGCATAACATTGCGGTCAAAATAAGGCTCGCCATTGTTCTTGTCAGCCGTGATCGTCAAGTACTTGTACAAGGAGCGCAGGGCGTTGAGCGACCGGTTGACGGTCGTCGGGGAGTTGAGGTGGCCCTGCTTGTTCTTGCTGTGCTCCAGTTTATCCAAGTAGAGCATGACATCGCTCCGGCTCAATTTTTCCAGGTCGCTTGGCAGCACTTGGCTGGAGCTTTTCGCCTGGGTCAAATTTTCAGCGATCAGCCAGGAGAAAAAGCGGCGGATTTCCGTTAAGTACTGGTAGCTGGTGGTCAGAGAGTGCCTTGTTTCCAGCTGGTATTCCTTGACGAAGTCCGGCATCTGGGCCATTTCCCGGTCGATGAGGGAGAGGTATTTCTTGGTTTCCATATGACTCCTTATTCTTTCTCCAAAAAGTGGTTCTTGTACTCGTCTTCAATGATGGTCAGCATTTCTCCTAAGATGCCATAATTACCAATATTTTTCCGTTAGCTTAATTATACTAGAAAGAAGTCGAACCGACAGCTAGTTGATCAGTTGACTGTCTTTCAGCCAGGCGGCTTTTTGCTTGGAAAAGCGGTAAAATAGAGCTGACTATTGGAAAAATGAAAGAGGCAGAAAAATGATCAAGTTTATTACAGCCAGCGACAGTTTCAAGGAAAGCTTGTCAGCCAAAGCAGCCTGCCAGGCTATGACCGACGGAATCAAGCGGGTCTTTCCCGAGGCCGAAGTCATCCAGGTTCCCATGGCCGATGGGGGCGAGGGGACGGTCGATGCAATCTTGTCCTGCATCCCCGGGGAAAAAGTGGAAAAGATGGTTACCGGTCCCGATGGCAGAAGGCTCTTGGCCAGCTATGGTCTGATCAATGACGGGGAATGCGCAGTGATCGAGACAGCCGCGGCCAGCGGCCTGGGCTTGCTTGCGAAAAAGGGCCGCGATCCAATGACAGCAACTACTTTTGGGACCGGGGAGCTGCTGCTTGACGCGTTGAAGCGGGGCGTTAAAAAGATTATCGTGGGCTTAGGCGGCAGCGCGACTAACGATGGCGGTGCCGGCCTGGCTCAGGCTCTGGGGGTTAGGTTTTTAGATAAAAATGGCCAAGAGCTGCCTTTTGGCGGAGGAAGTTTAGACCAGTTAGCCAGAATTGATGCCAGCGGCTTGGCTCCCCGCTTAAAAGAAGTTGAAATCATCCTGGCCAGCGACGTGACCAATCCTTTGACCGGACTCAATGGAGCATCTGCGGTTTTCGGCCCGCAAAAAGGGGCGGACAAGGAGATGGTCCAGAAGCTTGACGCTAGCCTTCACCATTATGCGGCCGTGATCAAGGAGCAAGTTGGGAAAGACGTAGAGAACGTTCCTGGCAGCGGGGCGGCTGGCGGCCTGGGAGCGGGATTTTTGGCCTTCAGCAAGTGCCAGATGAAGGCGGGCGCCCAGATCGTGATCGAGGAGAGCCATTTGGCGGAAAAGATGCGGGATGCTGACTATGTCTTTACGGGCGAAGGCGGGATTGACTTCCAGACTAAGTTCGGCAAGACACCCTATGCCGTGGCCCAAGTTGCCAAAAAGCTTGGCATACCGGTTTTTGCCCTGGCTGGCCAGGTCGGAGATGGAATTGACAGCTTATATGAAGCAGGCTTTACGGGGATTTTTGGCATACTGCCAGGCATCTGCAGCTTGCCGGAAGCTTTAGCAGGCGGAGGAGGTAATTTAGCCCGAACCAGTGAAAACGTAGCCCGGGTGATTAAGGCCGCCAGAGTTAATTTACAGTAAAGGCTTACTGTTAAGGAAAAATAGCATTTTTTTGTCTTTCAGCCGATTTTTTTCGCATATGCTCTGTAATTTTTTCAAAAGATTGTGATAATAAGAATAGACGCGGAAAGCGAATTCAAAAATGAAAGGGTATAAAAAGATGAAAGAATACTATTTAGACTATCGTGAGCAAGTGCGGAACATCTTGGATGCTTTGGACGACAGCAGTACATCCTTGCGCCTGGGAGCAGTCGCGATTGAAAACCTCTTGACCCTGGCCAGAGTTGACCTGGATGATGAAGATGAAGAAGATTCTGATGACTCAGACGCCATTGAAGAGGCAGATAGCGGCGGGGACCTAGCAGATGCGGAAACAGAGGACAAGAAGCAAGTTAAAATCATCCGTCATGAAGAACCAACCGCCAGCAGCCATTACCAGCTCTGCCGCTTTTCCCGGGCCTTGAAGGGCGGGAGTTTTTACACCGAGCAGGGGGACCTGGTCAGCGAGATCAATGAGCTGGCCGTCAGAAATCTGAACGTGGAAAACGGCGATTTAGTCGAGCTGGACCTCAGCAGCCAGCCGCCCCGGGTAGTCCGGATAGTGGAAGCCGGAAACCTGCCTTCTAATATCGCGACTATGTCATATGGGATCGTAGAAAGGGATCCTGCCGGCGACTTGTATGTTAGCCGCAGCGCCATGGGCGAGAGCTTAAGTGAGTGCGCGGGCATTGACCGCTATGAGGTGCCGGCGATCATTGATGCTGGGCAAACCGAGACAGGTTTTGTCCATGAAGGAGACATCGTTGACTTGGCCTGGTATAAGAACAGCCCCAGCAATATGATCGTCCGCTGGGTCAGCCAGACTAAGGGAGAAGAAGTTCCAAAGAAGGAAAAGCCGGCTGAAAAGAAGGTAAAAAGCGAAAAGGAAGACAAGGATAAAGAAGAGAGCGTAACGACCTTGAATTTCGACCTGCATGGTCGCAGCGTGGCGGTGGTCATCGGCAATGAACTCCGCAGCCAGGAGATTCAGAAGATGGTAGGTGAGCACCACGGCCGCTGCAAGGTGATTGACGCCTTCAAATTTTCCGATACGGAATCTTTTTACAAGCACGCTCTCAAACGGGCTGACGTAACGGTCATGGTGCAGAATTTGAACAAGCACTCAACCAGCAAGGCTCTGCGCAAGTATGCCAAGCGGCTGGCCATCGCGGATTCGGCGGACCTGTCTTCAATTGAGCGGGCGATCTACCGGGCTATGCACGGCCTGCCGGCTTATGAGACATCTACCCAGCCGATCGCGTATCCGGTCAAGGAGCTGGCACTTAGTTAATTTTTAGAAAGGTTGGCGGTAAAGATGGCATTTTCGGACAAAGATAAATTCGTTGAGATGGATAAAAACGGCGCGACCTGGCTGGACCGGGGGGCGGAAGCCTACCGACAGGGGGACTATGAACTGGCCCTGCAGTGCTATAAAAAGGCAGCTGACTACGGCAATTCCCAGGCTATGTGCAATTTAGGCTACATCTATGCCTTTGGCCGGGTCGGTGAAGCCGACCAGGAGCAGGCTTTTTACTATTTTACTCAAGCATCTTTGGCCGGCAACCCGAATGCCTTCTATAAGCTGGGGGATGCTTTCCGTTTTGGCAATTTTGTAAAGAGAAACAACGAGATTGCCTTTCAATATTACAGCATGGCGGAAAGCGTCCTGCAGGAAGGCGACGAAGACCTGATTGCTGAGATCGACTACCGCCTGGCCCTTTGCTACGCCAGAGGCTGGGGGACGGGCCAGCGCTGGGACCTAGCCTTGAAGTATATCAATGAGGCTCAGCTTTATGCCTACCGGAACAAGCAGCATGGCGAGTACAACTGGCAAAAGACGAGCCAGCGGATCAATAAGCTGCATGATGAGATAGTAAGCGAAATGTTTTCATAAGTTTTAAGCAGCTGCTTGGGGCGAACCGGGCAGCTGCTTTTTTTCTGATTTATCCAAAACAGCTATTTTCTTTGGCCCTGCAATCAGCTTGGCTTATAATGATATATGCAAAGATAATAATAACTTAAAAGCTATAAAAAGTGATAGATAGATTATGGGTGTTTAACCAGCATGCTGCTGTCAACCTGCTAGACTACTATACAACTATTGAGATAATTATTTCATTATTTATTGCTGGCTTGCTTGCCTTGGTCTACAAGAACATACACTACAGCAAGCAACGGAAACGCAACAGCTACTGGTCTTTAGGCCTCTTGCTAATCATCAATTTAATTGAGTGGACTTCGGTCATGTTGGATGGCTTCTCGGGCCAATACAGAATATGGTTGGTAATCAACAAGTTTTTAAACCACAGCTTGATACCATTTCTAGGCTACTTCGTTATTCATATTTGAGTGCGGCATTCAAAGTATGACCGCCTGCTGGCAGTATTGCTGCCGGGGAATGTTCTCTTCCAGCTTGCGTCAATTGCTACCGGCTGAACCTTTTCGATTGACCAGAATAACTACTATTATCAAGGCCGTTATTACTACGTTTATTTCATTATCTGCATTATCGTAATGTTCGCGATTGTATCTGCCTATCACCAGTTTGAGCAAAAGACTTTCAGCGGCGACCGCCTCTTATATGGACTGCTATCCAGAAAGATTGAAGCCATTTTTAAAGAGAAAGTGGGTCAGCGATCCCAAGGCTGTCCCGGCTGCCGAAAGTTGGGTCAGCCACGATCTTCAAGACGACGTCATCCATACTTTATCTTGAGCCAGATACGCCAACGTATGTGTCATGGCGGTGGGTGATAGAGTACTTAACTTCTGGCCGGTCGTTCAGCCATGGCAGGCGCAGAGTAGTGTAGTCAAGACCGGAATCTTCCAAAAGCTGGTCGGCATTGACTGGAGAGCTGCCTTCTAGGTTGCCGCCAAAGCAGAAGTCCCGGTTCCACTTGCCGAATTTACCTGGAACTTCATCATAGATGCCTAAAAGGCTGGTTTCAATCACCCGGCTGATCTTATTCGCTTCAGCCGTTGCGATAATGTTTTTGGTTGGGCGGTTGTTACCAGCGTCGTCATGGTCAACGACAGCTGAGAAGATCATGTCACAGCCCTTAGCCGCGTCAACTACGACTTGTTTGTTGTTGATATCACCATCGACCAAAGTTACCCGGTCTGGGTAGTGGTCTTTTAAGCTTTGCAAGCGGTTGGCCTGGTGCAAAAGCAGGACCAGGTCGACATCCTTGACTTGTCTTCAGTCAAAATTCTTTCTTCAACAATGCGGGCAATTTGACCGTTAGCTGCCAAAATCAGTAATTTCATGTTTATTATTTTCCTTTCTGCTTGTCGGATTCTCTTGATGCTTTTATGATAGCGGGGTGCAAGCTTCTTGAAAAATACTCAATGTGCAAGATAGTATGCAGGAAGGACATAGTAGATATCAAATACTGTAAATTCTGATGTATATAAAAGATCATGATTGCGGATAACATAGGATAAGCCCTTTTTTCAGCCCTATTTTTTCGAAAATAGGCAATAAAGGTTGATCAAAAGGAAATGCTTTCACTTCAGTAGAGAAAAAGTTAAAATAGTATTTATAATGCAATACAATCAGAATCATTAGGTAAGTTGCTGTTTAGGGAAGAGGAAAGCTATGACTTTAGAATCACAACTGGAAGACGACCTAATCGCGCAGTTGACGCAGGATGTCCATCAGTGGAAGTTCCGTTATGATTTACGCACCGTAGATCAGCTTTGGGACAACTTTTTCCGTATCTTGGAATCAAACAATAAGGATCAGTTAAATGACCATCCGTTGACTCCTAACGAAAAAATGACGGTGAGAACGGCGATCGTTAAACCGACCTTTTACCGGGCAACGGAGTTTATGGTCGGGGCCAACCGGCAGGTTCGCTATCACTTAAGAAGAGAAGATTCTTCTATTCCCGACGCTGATTTGCTGATATTAGACAATACCAACATTGCTGGTGGGAACTCAGTTTATGAAGTTGTACACCAGGTTCAGCTACAGAAAAAGACCGCGCTTAATCGAGACCGTCGTTTTGACGTTAGTTTGTTGATCAACGGCTTGCCGGTGATTCACATTGAGCTTAAAGCGCCAAATGTTCCTTATAGGAAGGCCTTTAACCAAATTCAAAAGTATATCGATGAAGGGCAATTTACTGACATTTACAGCTTCGTAGAAATGTTTGTGGTAACTAATGGTACTCAAACAAGATATATATCTGCTGGGCAGAATTTGAATGCCAAGTTTTTAACGGCCTGGGTTGATAAGAATAATAAGCGGGTAGACAATTATCTGAGTTTTGCTGAAGAGGTCTTGTCAATTCCTGCTGCTCACCATATGATTGCCGACTATGTGGTCTTAGACAGCGAAAACAAGAGCGTTATCCTGCTCCGTCCTTACCAGATACACGCGATTCAAGCGATTTTTAAGGCTTCTAGAGAGAGTAAGTCGGGCTATATTTGGCATACGACAGGGTCAGGTAAGACGTTAACATCGTACAAGGTTGCCCGTAACTTGTTGCAAATTCCGTCAATTGATAAGTCAATCTTCCTAATCGACCGCAAAGACCTGGACATGCAGACTACAACTGCTTTCAAGATTTACGCCAACAACGATACGATCAGCGTTAACGAAACAAATAGCAGTTATGACCTTGCTGACCAGCTGACTGATGGCGACCGGACTGTAGTAGTTACTACCCGCCAGAAGATGCAAAACATGTTTAAGCGGATTGATGAATTGGATCAGTTGCCTAAACGGTACGAGAATTTAAAGAATATGCGGCTAGCCTTCATCGTCGATGAATGTCACAGAACGATTACCCCTAGCCAAAAGCGGGAGATTGATAAATTCTTTAACCGCAAACCGCTGTGGTATGGCTTTACTGGTACGCCAATTTTTAACGAGAATGCCCGGGCAAAGAATGGTCAAGACGCGCGGACGACTGAAGAATTATATGGGCCAGTCCTGCACAAGTATACGATCGGGGATGCAATTAGAGACAAGATGGTTTTGGGCTTCTCCATCGATAATCAAGGTGGCAGCAACGAGGATGGAAATGAAGAAGATACCAAGAAAATGGATAAGATTTACCGGTCCAAGGCCCATATGCATTCAGTTGCGACAGCAGTAATTAAAGCGGCGTACCGCAAGCAGGGCCTTATTTCTGGTAAGAAATACTCAGCCATTTTGACGACTTCGTCAATTGAGAAAGCCCAGAAGTACTACCGTATCTTTAAGAAAATCATCGATGGGGAAGACGAGGAATTCAAGATTCCGGAACGAATCAAGAAAGTGGCACCAGACTTCCCAAAGATCGCTATTACTTACTCAGTTAGTGAAAACGAAGATGATTCAGAATCAGTGCAAGACGAGATGAAGCAGTCGCTTGCGGACTACAACGCCGTTTATGGAACGAACTTCTCAATGGCTGAGCTGGATCAGTACAATCAAAACGTTAATGCCCGGCTGGCCCGCAAGAAGGCTCAATACCAAGCTGACAACCAACGCTTAGACCTAGTGATAGTTGTTAACCGTTTGTTGACTGGCTTTGACTCACCAAGTTTGTCGACTTTGTACATTGACCGGCCACCAATGAGTCCACAGGACATGATCCAGGCTTTTTCTAGAACCAACCGGATTTTTGATAAAGACAAGACTTGGGGACAAATCGTAACTTACCAGTATCCCAAGACCTTTAGTGAAAAGATCGATGACGCAATCGTCTTGTATTCTAATGGCGGGGAGAAGTATGCGGTTGCTCCAAGCTGGGAAGAATCAAAACAAAGCTACGTATCAGCCCGGTCTAAAATTGACATGTACAGCTTCGACGCAGATGGACCGTCAATTTATGATGCTTCCAAGGAAGAAAAGAAGAAATTCGTTAAAGCTTTCCAAGAATTTGACAAGGCTTTGGCTGCAATCAAGACCTATGATGAATTAGATACCGAAGAAGGCCTAATGCAATTAGGTGTGAGTGACATTACACCAGATGATTGGGAAGCCATGCGGGGAGTTTATGAGGATATTCTGGACGATCTGCGGAAAGATCCAGATGAAGATCCTGATCACAATGACGACATCGATGATGAATACGAACTTGAGTCATTTGGACAAAAGGAAATCGATGAGCGCTATATCATGAATTTGATCCAGGCGTTCTTGCCAGAAAGTTCTGACAATCAAGAAAAAGCTAGTGGCAATGAAATCTCGCCAGAAACTGTCAAGGAAATCAATGGCTACATTGATGAACTGGCGAAGACAAACGAACTTTTGGCAGAAATCATGCGTAAGCTTTGGCAGCAGATTTTGCAGGACCCGGCTAAATACGCAGGCAAGCAGGTTGATGAGCTCCTTGAATCCTTAATTGACCAGGAATTGCAATCAATCATGCGTGAGTTTGCTGATAAGTACAAGGTTGACTACGACCAGTTCCGGTACGTTATGGCTAACTATGACCCTAAGTTAAAGGGAAATAAGCAAAAGGGGATGAACGACCTTTTGCACAAGGAACGTTTTGTCGACTACTTGAATGACAATCCGGATTCTGACTTAAATAAGCCGTACCGTTGGAAGAGTGAAGTTCGGGAACAGGCCAAGCAATACTATGTAGATAAGATTGGCCCGTTAATTAACAGAGAAGCATAGAAGGAAGAAGAATATGGCAGAAGAAAATTCAACAGTTAGCTTGCAGAGTGGCTTATTTGCGGCTGCAGATGTTTTGCGTTCAAAGATGGACGCCAATGAGTATAAGAAGTATATTTTAGGAATTGTTTTCTACAAATACCTTTCTGACCAGCAGCTGTACAAACTTGCTGAAGACGCGGGTAAAGATGATGTCACTTTAGACGTAGCTCAAGAGACTTATGAAGATAACCTGGAAGAAGGAGATCTTTTAGAAGAAGTTAAAAGCGAGCTCGGCTATATGATCGGGCCGGAATATACTTATACCAAGATCTTAGCAAATGCTAATAATGGCAGCTTCCAACTTAATCAATTGAAGGACGCTTTTACCCAGTTAGAAAGTCAAGGTAACAGCTTTGAAGGTTTGTTCGAAGACTTCGATCTTTATTCAAGGCAACTGGGCCAAAATCTACAGAAGCAAACTGATACTATTGTTGGAGTAATCAAGGCAATTGGTAAGTTAGAATTAGTAAATACGCCGGGGGACACCTTGGGGGATGCTTACGAATACTTGATCAGTCAATTTGCCTCAGAATCAGGTAAGAAGGCCGGTGAGTTCTATACTCCGCAAGAAGTGTCGGAACTTTTGGCACGGTTGACTTTAGTAGGTAAGGATTACTCAAATGGGATGACAGTTTACGACCCAGCGATGGGGTCAGGCTCATTGCTGCTGAACTTTAAAAAGTACGTACCAAACTCATCGAGAATCACCTACTATGGGCAGGAAATCAACACGTCAACTTTCAATTTAGCTAGAATGAACATGATTTTGCACCGTGTAGACCTGGCAAACCAAAAGTTGAGAAACGGTGATACATTAGACGAAGACTGGCCTGCTGAAGAAATTACTAACTTTGATTCAGTTGTTATGAATCCACCTTACTCACAAAAGTGGAAGGCGGACAAAGGCTTTTTAGATGACCCTCGTTTCTCAAAGTATGGTGTTTTACCTCCAAAGTCTAAGGCGGACTATGCTTTCTTGCTTCATGGTTTCTATCACTTAAAGCACAGCGGGGCAATGGCTATCGTTTTGCCACACGGGATTCTTTTCCGTGGTGCAGCTGAAGGAAAGATCCGGCAAAAGTTGCTTGAAGAGGGTGCAATCGATGCTGTAATTGGTCTACCAGCAAACTTATTCCACTCAACTAGCATCCCGACCACTATTGTCGTTCTTAAGAAGGACAAGCAGGATCGGAGCGTGCTGTTTATTGATGCGTCTAAGGAGTTTGAGAAAGTTAAGACTCAGAATAAGCTGCGGCAAGAAGACATTGATAAGATTTTAAAGACCTACGAAGAACGGCCGGCAGATGTCGAAAAGTATGCTCACTTGGCAAGTTTTGACGAAATCAAAGAAAATGACTTTAACTTGAACATTCCTCGTTACGTTGATACTTTTGAGCCAGAACCAGAAATTGATCTGCGGGACGTGGCTAAGGAGCTGCGGGATATTGATCAACAGATCAATGAAAACGAGAAAGAATTGGTAGGGATGCTTAAGGAATTGACTTCAAGTGACGATGATATCATGGCAGGTTTGCAGAGCATCATCGAAGATTTTGAGGAGGAAATCCGCTAATGAAAGACGAAAAAAAGGCCCCTAAACTGCGGTTTAAAGGCTTTACTGACGATTGGGAGCAGTGTAAGTTGGGGGATGTGTTTTCTTTTTTAAAAAACAGCACGCTTTCACGTAGTGAATTAAACTACGAAAGTGGTAAATTTAAATACATCCATTATGGAGATATTCTTACAAAATTCGGAGATATAACAGACACTCGTAATTTTTCAGTTCCATTTGTTACGACCCCTGAAAAGGTCATAAGACTTGAAAAATATTTTTTGCAAAATGGTGATGTTGTAATCGCCGACACCGCAGAAGACAGCATGGTTGGTAAAGTTACAGAAATTCAAAATCCTGACCCCTTTCCAACTGTTTCTGGATTGCATACAATTCCGATTAGACCAAATAAAGAGTTTGCTGCAGGCTTTCTTGGGCACTATATGAATGCACCTTTTTATCATGATCAACTATTTAAATTGATGCAAGGGGTCAAAGTTCTTTCTTTATCAAAAAGCGCTGTAATTCAGACCAAAATTAATTCCCCATCCTACTGTGAGCAAAGATTAATCTCAAGGATGATTAATTTGATTGATGGAACAATCACTTTACATGAGGAAAAGAAACGCCAACTTGAGCGCTTAAAAAGCGCTTTACTGCAGAAAATGTTTGCTGACAAGAGCGGGTATCCACCTGTTCGGTTTGAGGGATTTAGTGACAAGTGGGAGCAAGTAAAGTATGGAGAGATATTTCAACGAAGGTCAAAAATGGGTGTTAGTACGCCTACTCTACCAAGCGTTGAATACGACGACATTAATCCCGGGATGGGTACTCTAAATAAGGAACCAAAAAGTAAAGGTATAAGCAAGCGAGGAATTTACTTCAATCCAGGAGATGTTCTATTCGGAAAATTACGTCCTTACTTAAAGAATTGGCTTTTTGCTTGTTTTGAAGGAGTGGCTGTTGGAGACTTTTGGGTTCTAACATCAAGTAAGATTGATCATGGATTTACGTATAGTTTAATTCAAACGCCGGGATTTCAATACATAGCTAATCTATCATCTGGTTCGAAAATGCCTAGATCTGATTGGGGTTTGGTCTCAAATGCAAGAACGTTTATCCCCATAAATCATTTAGAACAAGAAAGAATATCTTCTGTCTTATTTGGACTGGATCACGCCATCACTTTATATGAGCACAAGTTAGAAATTCTAAATAAGATAAAAAGTTTCCTCCTCCAAAATATGTTTATATAGTTTAAAAGGATAGCGATACCAAGCCGCTATCCTTTTATTTACAATGCAGCTAAGTGCTGCATAATTTTGGTGTTGTCTTTGTTCTCCAGTTCTTGAATGATGTGCAGGTAAGTTTGCTGTGTTGTCGTCATATCAGCATGTCCTAAACGCTTCGCAACACTTGCGATAGAAACACCGGCAAATAAAAGTAACGAAGCATGGGTGTGGCGTAGCCCGTGTACAGAGATAACAGGGATATTTAATTCCTCACAGTGCTTCTTCAGAAAATTATTAACAGTTGAGTTAAAAACTCGCTTTTGGGCAAAAATAGGCTCTCCATTAGGCAAATCTTGAATAACTTGGTTGAGCTGCATGGCAAGCTTCCAATCGATGGGAACTTTTCTTACTGATGACACATTTTTGGTTTGCTTGAAACTCCCTGTATAGCTCTTATAGTCCCAAGTTTTATCCACATTGATCGTTTGTTGCTCTAAATCTATGTCTTCTTTAGTGAGACCTAAAGCTTCGCTAAATCTCAAGCCTGTTTTAGCAATTAAAAGTATCATCCAATCAAAATTGGGGAAAGTTGACAAATCTAAGTGACGAAGTAATAACTTCAATTCGAATTCATTCAAATACTTTGCCTTCTTTTCGGAAGGTTCCTTTCCTTTAACCACGATTTTCCTTGTTGGATCTTTATGAATATAGCCTTCGTCATACGCATCCAACAGCATTGCCTTCAGTTGATGATGAAAGTCCATTACTGTCGCTTTTTCGTGAGTTTTAGCAAAAGTATTTAAGATCTGCTGATATTCAAGTCTTGTAGTATCGACTAATTTCAGATTAGGCGCAATTTCTTGTAAGTGGCGGTGGGAAAGCCAGTACTTATCTAGAGTCCTTTCTCGAACTGCTCCTTCTTTGTATACTTCAATCCATTGAGCAAAATAGTCATGTAGTAAAATTTGTTTCTTACGCATAAAAATCTCCTTAGCAAATATCTTGCTAGGGAGATTTTAGATTAGATGAACATCTTTTGTAATAATGATTTTTTGACTGAGTTTATATTATTTATTTTTTGCTGATGAAGAGCGATAGTGTCATCTAATTGTTTGAAGAACTGACCTATTTTTTGTTGCTCCTGAACTAATATGGGAATCATAAAATTAAACGAATCAATTTCTTCTGACGATACATTTGGCTGAGCGCCTGAAACTAGAACAGACTCAAGTTGCATCATGAATAATTCTGAACGGACGATTGTGGAAATAAACCCGTAGTCAATATAGTCTACAGGCTGAAAATAACCAACTCGCTGGTTTTGATAGACCTTGTCATAATCAGTTTGAGATAGTATAGCTACCTTACCTGTTGTTGCACCTGACATGGCTAGGACTGCTGATTTATCTGGAAGAATATATTTGTCATCCTTATCCTGTTCATCATAATATGCAAAATCTCCACCTACCTCCCCGCTGGAAAGAATATTTGAAATTCTAACAATTGGTACACCAGTGTTCCTGAATTTAGAGCTTTTGAATGCAAAACCGCCACGTAAGGGAGCTATATCACCCAACTTACGCTCTTCCCACTCGTCACTAAATCCTTCAAACCTAACAACAGGATACCCGCTCTCATCAGCAAACATCTTCTGCAGTAAAGCGCTTTTTAAGCGCTCAAGTTGGCGTTTCTTTTCCTCATGTAAAGTGATGGTGTGGTCGAGTCTAGAAATAAGCTTTGAGATACGATTTTGCTCCTCCAAACTTCCAAATGAAAATTCAGATTTCTCAACATCCTCTTTAGTAATATTTGGATCTTTTCTACTGCTAGCTGCGACTCGACGCCAATCGATGATATGCCTATTTAGGTAAGATTGAGCAAAGAACTGATTGATATTCTTATGAGGAGTCAAAGCTACTAATGCTTGGTTGATTGTAGCGGGAAATCCTAGAATACCGGTACGCCCAATTTGATTAAACCCACCATACATTGCTAAGACAATGGTATTCTCTGGAAGTATTTTCAATTGCTTTATACCTTCATAAGTCAGAAATTCAGTGGCGCTTTTAATCAATCCGTTATTTAAATCTGCCGTTCTAATCCAAGGGGTATCTCCGCCAAAATTTGCACTTTTTTTTCTGCTAGGAGTGTTCCCGGAATATAAATGACCATACACATCCCCCAACTTACACTGCTCCCAAGCAAAAATTACATCCCTTCCGCCTGTTCCTGCATGACCTGGCAGAAGGCGAGGACCAGGGGGTCTGCTTCATCTTTTTGGCAGACCAGGCCATAGTCCAGCGGGGCGGGGTAGTTCAACTTTACCGCCTTGATCACATCTGCTTTTTCGATCGCCACAAAACTTGGCATCACGGTGATCCCTAGACCCGCCTTGACCATTAAGCTGACGATTTCAACATCGTTAACGTAGCTGATGTCCAAGTCATCGACCTTCTTTCTGATCGTCTCCTGGAGCTTCAGTTGTTCTGGCGGGCACCAGTTGTTGTCCATCAGCAAAATTTTTTCTCCCGCCAAATCATCCAGGTCAAGCTCCTCTCTGTAACTTAAATGATGATCTGTAGGTACGAGTGCCACAAAGTGTCCGCAAAAAAGATCATAGTACTTCACCTCGGCTAGATCAGTGATATCGTCATGGGTCGTAAAAATCACATCGCTGTCGTGGTCAATCAAGTGGTGCTTGAGCTGGTTATGATCAAATCCCTCAAGAAAAATCTTGCAATTCGGGTATTCCCGGTGAAAAGCTTTGATCATCTCTGGCAGAATTGCTTGCTCTAGCGGTGTATCCGTAATCCCAATTGTTAAGTTCTTAAACTTCCCACTTGCAAACGTGGGCTCGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTTAGTCAACCACAACATCATCAGTATCAAACGAAAGGCTTGTGCTATGTCTAGTTTACCATTATTCGATACTAAGAACGAACCTAAAATTGCCAGTTCTGTTGAAAAGTTCTTCGAGGACTACAAAGTTATGGAGCTTCTCCGCAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCGCTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCGAGACAGAAGCATGTACATGGTGTACTGCTGGCTTCTCCAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCGCCTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCTGGCTGCCAAAGTATTCGACCACGTTTCGATGACCTACAGGAAGGGCTTTCGGATGATGACCATGGGATGGTATGCTTTTTACGTTACTATAAGCAGCCTTTACCTCACGAGATGAAGAACTGCACTATCCTCAAGCTGAAGTATGAAGACGGACAGTTTACCTTGCAGGATCACTTTGAACCAGATTTCAGCGAACTGGACCACTAAATACTTTCATCATGAAGTATCCAATCTGATTTTCTTTTTTTAACGGAAATTCCTTTTGTGGGAGAAAACGATTTTTTGTTATAATATAAACGAGAAAAGGCTTTTAACATAATATTAGATTTTGCTAAGGAAATAGAAAAGCAGAGGGACATCATGAAGTACGAATTGAGCGGCGGGAATACCTGCCCATTAGCAACTGTAACCCTCGATAAGGGGGAAAGCATTAAAGTCGAAAACGGCGCCATGGTGTACATGAAAGACGTCACCATCGCCGGTAAGATGAACTCCAGCAAGAAGGGCCTGGGCGGTTTGCTCGGTGCGATTGGCCGGAGCTTGACCAGTGGTGAAAGCATGTTTATCACTCAGGCAACGGGTGATGCGGACGGCGGACAAATTGGGGTTGCACCCGCAATTCCTGGCGAGATTGTAAAGCTTTCCGTTGGCAAACAGCAGTACTGTCTGAACACCGGTGCCTTCTTAGCAAGTGATGATAGCGTCAGCTACAAGATGCGCAGCCAAAAGCTGAGTAAGGCAGCTTTCGGCGGAACTGGTGGCTTCTTCGTGATGGAAACTGAAGGCGAAGGCGACATGTTGGTTAACGCCTTTGGTGACTTGGTTGAACTGACAGTGACCAGTGATAAGCCGCTCTCAATCGACAACGAACACGTCATTGCCTGGGATGCAAACCTTGACTACGACATTAAAGTAGCGTCAGGGATATTTGGTTTTACTTCAGGTGAAGGCTTGGTTAACCACTTTACTGGTGATGGCAAGGTTTTGATCCAAACGCGGAACCTGCATTCACTGGCAGAAGCCCTGCAACCTTTTATCGTTGAGAAAAACAGTAACAGTTAATGCAGCAATAAAAGATCGCCACAATCGTGGCGATCTTTTTCATGTCTGTCATAAAATTTCTTGTTACTTGAAGTAAGCCTGTGTGTAGTCAACCATGCCAACCTTGTGCCAAAGCACACCCTTTAAGTTGGCGTTTACCAGGTGGTCTTCAACCATGGTGTAAAGAGGAAGAACTGGGTAATCTTGGTTCATTTGCTCTTGTGCCTTTAACAGGTGGTTAAAGTAGACCGATCTGGTTGCGGCATTCTTTCTAGCTTGCTTGAGCTCATTGTTGTAAGCAACACTGGTGTATTTACCGTAATTGTGGCTGTTGGTCATTTCCAAGGTCTGTAGTTCACTGTATGGGTCAGCGTAGTCATTGATCCAGAAGGAAAGGTAGAGGTCGAATTTGCCATTGGCAGCTAAGTTGTAGGCTGACTTGGAAGGCAGATTCTTGACGGTGACTTTCAAGCCTGGCAGCTTACTTTCCAGCTGTGATTGCAGGAATTCACTGACATTCTTGTCAGTCGTTATGTCACTGGCCACCAAGGTTAAGTCAAGCTTGCTCTTGCCCAGCTGCTTTAAGCCAGCTTGCCAGAGCTTTTTAGCCTTGGCAACATTGTAAGTTTCTTTTGGCTGCGCTGCTGTTGCGAAGTCCTTGCCACTGGCTGGATCCTTTGCTGCATTTGGTGCTGAGAAGGTGTAGGAAGGCTTTGAACCATCTGCTAAAACCTTTTTAGACAGCTGAGTACGATTAACAGCCAAGTAGAGGGCTTGCCGGAGTTGTTTGTTGGCCAATACGGCGCCCTTAGCCATATTCAGTTTTACGAAGTTATTACCTGACCGGTAGAGGTGGTAGAGGTTCTTGTTATTTTGCAGACCTTGTGCCGTCGTGCCTGAAACTACAGCGTCATCTAAGCTTCCTTGCTGGAAGAGCTGGTGGGCAGTGTTTGAGTCTTTGACGACTTGGTAATTAAGCTTTTGCAGCTTGACCGCGCTTTTAGCGTAGTAGTATGGATTCTTTACGGCAGTCCACTTTTCACTGGTGTTAGTCCACTTGGTGACCTTGAAGGCCCCGTCAAAAGCGGTATACTTGGCAGCCGTACCATATTTGGCACCATATTTTTTAACAAGTCGGGTGTTTTGCGGGTAAAAGGCTGGTATAACCATCTTGTCGATGAAGGTCGGTTCTGGATTTTCAAGCTGCACAACCAGTTTATACTTGCCGACGGCTTTGACGCCTAAGCTGCTGACCGCCTTTTTGCCTTGAGAGATCTGGTCAGCATTCTTGATGTTGCTGAAGATGTAGTTATAGCCAGACATTGCTTTGGGAGAAACGCCTTTTCTCCAAGCGGTCACAAAGTCTTTCGCGGTCACAGTATCACCGTTTGACCATTTGGCATTGTGCCTCAGATTGAAAGTGTAGGTCTTACCGTCACTGGACTTATGATAGCTAGTGGCAACCGCGGGAACTGGCTGGTCATTTTTATCTGACCGGTAAAGGCCAGCCATAGTTTGCACCAAAGTGTCCCATTGGGGGAATGAGACAGTCACTGAGGTGTCGAGGGAGCTGACTACATCAGTCTCCATCAAGTTCAGGCTTGTCTTGCCACTGGATGGTTGGGAATTGCTATTGCCGCAAGCGGCCAGCAGGAAGGCGGCACTGACGCTGACGGCAGCAAGGGTGAATTTCTTGATCTTTTGCATTCTTCCTCCTTAGACAAAAAAGCAGCTGCTCCCTAAAGGAAACAGCTGCTTCATTTGCCACTAAGCTAACAATTACTTGGCAAATCACTTGGTCTGAGCTAAATCCAGTTTAGGCAACACAAAACAGTCGTATGACATAAGTGACATACAACAAACGCACATAGTTTGGTTTTCTTGCATTGCAAACATGATTTAGCTCCTTTCTCAATTTGATTTAATTTAATTTTACAGACTCACTTACTATAAGTCAACTATTTTATATAACTTTTTCCTAACGCAAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGAGGAAGAGAGTTGCACCATACTTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGAATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATTAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAAGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGAAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACTAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAGCGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGATCAAGATATAAACGCTGAAACGATCGACCGCTGGGTCAAAGAAGGCTGGGAATGGGGCAAGGCAATTGACCACTTCCCTTCCAAGCTGCTATAGAAGGGAAGTGGGAGATCAAGTTGACCCCGGTTAAGTATGTCCCGCACAGCTGGTTTGGTGACTTACACGGCCAAAAAGTCCTTGGCCTAGCCAGCGGGGGTGGCCAGCAGATGCCAATCTTGACTGCCTTGGGGGCAAAATGCACAGTCCTGGACTATATTCTGACCAGCAGCTGGAAAGCGAGCGCCTGGTTGCAGAGCGCGAAGGCTACGATATCGACATTGTCAAAGCCGACATGACCCAGCCTTTGCCTTTTGCTGACGAAAGCTTTGACATGATTATCCAGTCAGTTGCCAACAGCTACGTTGAAAAAGTTAAGCCGATCTGGAAAGAATGCTACCGGGTTTTGAAAAAGGGTGGGGTACTCCTGGTTGGCCTGGACAACGGGATCAACTACCTGTTTGACAGTGAAGATGAAAAGTATGTCGTCAACTCTTTGCCTTTTAATCCGCTGAAAAATCCTGACCAGATGCAGCAGCTGGAAAAAGATGATTTTGGCGTCCAGTTCTCTCATACCTTGGAGGAACAGATCGGCGGCCAGCTGGAGGCTGGCTTTACTTTAACCAATCTCTATGAAGATACCAACGGCGAAGGCCGCCTGCACGAATTGAATATCCCGACTTTTATCGCGACCAGAAGCGTGAAATAGCAAAAGCCACCAAGTTTAAGCTTGGTGGCTTTTAATGTATCCAAAATGATTTGCATTTTTCTTATTCTTCACCATGTTCAAACTGTGACTGGTAAAGATCGGCGTAAAAGGCTTTCTTTGCCATAAAGCTGTCATGGTTGCCAACTTCAACGATATCCCCGTCCTTCAAGACGATGATACTGTCTGCATCCCTGATCGTTGACAAGCTGTGGGCGATAACAAAAGCCGTCCGCCCCTGCATCAGCCGGTCCATCCCAAACATGGGCCATAAATCAGACCACTTCATCTTGCTTATATCCTGGCCGCCAATCGTGATCTTCCCGCAGTTTAACTCGTAAAAGCGCATCAAGAGCTTGACCAGGGTGGTCTAGCCGGCCGCAGTAGGCCCGACGATTAATGTGCTAAGTTATTACAAGTGGAAATCTAGAAACTTTTTCAAAGAAAAACGCCAGCAAATGCTGACGTTTAAAACTATTGAGTATTGATGAATACAGTTTATACAGCTTGGTGATGTCGACCAAGGAGAGCTTGTTGTCGTGCTTAGCTTCCAGGGCGTAGATCAAGGCCCGCGCCGTATCAAGGGAAGTGTAGATAGGCACGCCGGCTTCTACGGCAAAGCGGCGGATCAGGAAGCCGTCCTTCAAGTTGTTGTTTCTGGTTGGGATGTCGATGACCAGGTCGACCGTTTCCGTTAAGATTAAGTCAAAGATGGTGTTCTCCTTGTCATTGATCCGGTTGACCAGGCGGGCAGGGATGCCATGACTCTGCAAGAAGTCGTATGTCCCTTGGGTCGCGTACAGGTCGTAGCCGAAGTCGTGGTATTCCTTGGCGATTGGCAAAAATTCTGCCTTAGCCGAATCCTTGACCGTGCAGATAACCTTCTTGTGCTTAGGCAGGTCCAGCCCAGTCCCCATAAAGGCCTTGTACATGGCTTCTTCAACGTCTTCAGAAATCCCCAGAACTTCACCGGTTGACTTCATTTCCGGCCCCAAGGCAATTTCCGCCCCGGTAATCTTTTCAAAGGAGAAGACTGGCATCTTGACGGCAACTGTCTTCTTTTCCGGAGCAAGGCCGTAGTCATAGCCTTGCTCCTTGATGGACTTGCCAATGATGACGTTGGTTGCCACGTCAACAAGCGGAATCCCGGTCACTTTGGAGATATAAGGTATGGTTCTGGAAGAGCGGGGGTTGACTTCGATCACGTAAACTTTGTTTTCGTAAACGATAAACTGGATGTTCATCAACCCCTTGACCTTCAAGGCCTTGGCCAGGCGCTTGGAGTATTCTACGATTCGTTCCTTCATCTCCTGGGAGATCTTTTGCGGCGGGTAGATGGAGATTGAGTCACCAGAGTGGACACCAGCTCTTTCTACGTGTTCCATGATCCCAGGAATCAAGATGCCTTCATCATCGCAGATGGCGTCAACTTCACATTCCTTGCCGGCCAGGTACTTGTCGATCAAGATCGGGTGGTCTTCAATGTTAAACTGGGAGGTGATGTGGTCGATAAAGCGCTTGAGGTCGCCGTCGTTTAAGGCGATTTCCATTCCGGCCCCACCTAAAACGTAGGAAGGACGGACCAAAACCGGGTAACCCAGCTCATTCTTCAGCCGTAAAGACGGTTTGCCCGTTCGGCCGGTCGATCTGGCACTTTTCCAAAATCTCGTCAAATCTTTCCCGGTCTTCAGCCGCGTCAACACTGTCGGCAGAGGTACCAAGGATTCGGCACGCCCATCTTCATCAAGTCCTGGGAGAGCTTAATCGCGGTTTGTCCGCCGAATTGGACGATGGCCCCGTCTGGCTGCTCTGCACGTCTTCTGCCGTTAATGGTTCAAAGTAGAGGCGGTCGGCGATGTCAAAGTCAGTTGAGACAGTTTCCGGGTTGTTGTTGACGATGATGGTTTCGTAGCCAGCTTCCTTCAGGGTCCAGACACTGTGCACGCAGCAGTAGTCAAACTCAATCCCTTGGCCGATTCTGATTGGGCCGGAGCCAAAGACAATCACCTTTTTCTTGGACCGGTCTGGCTGGATTTCATGTTCACCGCCATAAACGCTGTAGAAGTATGGCGTTTCGGCGTCAAATTCAGCCGCGCAGGTGTCGACCGTTTTGAAGGCAGCCGTGATCTTCAAGCCCTTTCTGAGGTAGTAAACTTCATCAGCCGTCTTGCCGGTTAAGCTGGCGATAACCCGGTCTGGGAATTCGCAGTGCTTGGCCAGTTTCAAAAGATCTGGCGTCAGTTCTTCGCTCTTGAGGCGGTCTTCAATTTCAACCAGGTGCTTGATCTTGTCAATGAACCAGACGTCGATCTTGGTAATGGCATGAATTTCCCGGATGGAGACGCCCTTTCGCAAGGCTTCGGCAATTCTGAAGGCCCGCTTGTCGTCAATCTTGCGGAGGTCTTTACGGAGATCATCAGCTGACAGCTGGGCAATTTCTTCATTATAAAGGTAGTAGCTGTCTTGTTCCAGGGACCGGAGGGCTTTCATGAAGGCACCTTCGAAGTTGTTGCAGATAGCCATGACTTCCCCGGTTGCCTTCATTTGGGTGCCCAGCTTGCGGGAAGCGTCGTAGAATTTGTCAAAAGGCCACTTAGGAATCTTGCAGACGATGTAGTCAAGGGTTGGTTCGTAAGAAGCGTAGGTCTTGCCCGTTACGGCGTTGACGATTTCATCCAAGTTGTAGCCCAAAGCAATCTTGGTAGCAAGCTTGGCGATAGGGTAGCCAGTTGCTTTTGAGGCCAGGGCAGAAGACCGGGAAACACGAGGGTTGACTTCAATGACGCAGTATTCAAAGGAGTCTGGGTTGAGGGCAAACTGGACATTGCAGCCGCCCTTGATGTTCAAGGCAGTGATGATGTTGAGGGCAGAGGAGCGGAGCATCTGGTAGTCCTTGTCTGACAAGGTTTGAGATGGCGCTACCACGATACTGTCACCGGTGTGGACACCGACCGGGTCCATGTTTTCCATGTTGCAGACGGTGATGCAGTTGCCGGCACCATCGCGCATGACTTCGTATTCAACTTCCTTCCAGCCGGCGATTGATTGTTCAATCAAACATTCAGTAACTCGGGAGAGGCGGAGGCCGTTAGAGCAGATTTCATGCAGTTCTTGGCTTTTCTTTTTCTATCAATTGCTTGACGACTGGCACAGTCAAAGGTTCGATGTAGACGTGGTCAGCCATGTCGCCGTCAGTCATGATCGTGGCCGGGTTGGAGTTGATCAGGACAACTTCGATGCCTTCTTCTCTGAGGGCCCGGCAGGCCTGGGTCCCGGCATAGTCGAATTCAGCGGCCTGGCCAATGATGATCGGTCCGGAACCAATCACTAAAACTTTTTTGATATCGTCGCGCTTAGGCATTCTTGTGTTCTCCCATCATTTCAATAAAGCTGTCAAAGAGGTATTCCGTGTCGTGCGGGCCGCCGCAGGCTTCCGGGTGGAACTGGACGGACTTGATGTTTTCCTTTAAGTATTCCAGTCCTTCGATCGTCTTGTCGTTGACGTTCTTGAACCAGACCTTGGCTTGCTTTGGATCAATCGTGTCTTCCTTGATCACATAGTTGTGGTTTTGCGTGGAGATGTAGACCCGGCCAGTGGTCAGATCCTTGACTGGGTGATTGCTGTCGTGGTGGCCGTAGACCATTTTTTCCGTCTCAAAGCCGTGGGCTAAGGCTAAAAGCTGGTGGCCCAGGCAGATGGCGAAGATCGGGATGCCGGAAGAAGCAAGAATTTTCAGCTGGTCAATGATTTCCGTGCATTCACTCGGGTCGCCGGGGCCGTTTGAAAGCATGATCCCATCGAAGTTGTGGTCTATGACATATTGGGCCGGGGTGTCAGCCGGCAGGACTGTGATATGGCAGCCTCTTTTGGCCAGTTCTCTGGCGATATTGCGCTTGGCACCGAAGTCGTAGAGGGCAACTTCGTAGTCACCTTGACCGACATGGTAGGGCTCAAGACAGCTGCACTTTTCAACGACCCCTTGGATCTTGAAGGCCTTGATCTGGTCAATTACTTCGCTGACTTCGTAATCCTTAGTAGTGATCATCCCGTTCATGCAGCCTTCTTTGCGCAGGATCCGGGTGATGGCCCGGGTGTCGACGCCTTGGATGCCGGGGATGTTGTTTTCAATCATGTAGTCGTTCAGACTCATGTTCATGCGGAAATTGGACCCCAGCCGGGAAAGCTCGCTTACTACAAAGGCTTCGACAAAGGGGTGAGCGGCTTCCTGGTCATCCAGGGGAACGCCGTAGTTGCCGATCAGGGGATAGGTCATGACTACGCTTTGACCGGCATATGACGGGTCGGTCAAGACTTCCACATAACCAGTCATCGCCGTGTTGAAGACGAATTCGCTGATAACGTCATGGACCGCGCCGAAGCTTTCGCCTTCAAAAACGTGTCCATCTTCCAGTATTAAACGCGCTTTCATGATTGTTTGACTCCTATAAAAAAAGACATATCAACGAGTGACATGTCTTAAGTGATGAAATATTAATAATTTGAAAAAATGGAAAAGGAACAGCGAATGAAGCTAGGCAGATATCTGGGTTAATGTTCATAAATGCGGCCATTTTTGCTGCTTCCTTTCTGTTTCTTCAATAGTGTAAAGGATAGATGCAAGGCTTGTAAGTAGTTTTCTTGATTTTCATTAAGAAAGCTGCATATTTTATATTCATTTAGTTGGTAATCGTTGATTTATCTAGGTGAAAGCTTGATTTGTCTGGATAATCACGAATATTCGCTTTTTCATTATTAAAATGATATTTAAATTAAAAAGCTTTCCGCTTCTATGCTATACTTTTGACTGAGGTAAAACACATGCCAGATCAGAAACCGCAACTATTACCAACACGAGATTAATAATTTTTTGCAAGCCGCTCAAGAGAGCGTTACTTATGTCTTCTGCGACGTCAATGGCCTGCACGAAACCAACAGCAAGTTTGGCCATGAAGCCGGGGACCGGATGCTGATTGCCCTGGCTAGTGAATTAGCCAAAAGCTTCGGGCAAGACATGTCTTTCCGCTTTGGCGGGGATGAGTTTTTAGCAATTGCCTTAGACGAGCGCTTGGACAAAGTTCAAGCAAAGAGATACTTTCTAACTTGAAAAAGCAATGCTACCACGTTTCAATCGGGATCAAGCAGGCAAAGGCCGACCACTTAAATGTCAGTGACCTGCTCTACTAGGCAGACAAGGCCATGCGCAAATCCAAGGAAGAATTCTACAAGAAAGCCGAGAACGACCGCCGGGCCCGGTAATCTTCTTTCTTTACTACATTTATGACTGAAGATAAAAAGCCGGTATTAACCGGCTTTTTCTATTGCTTCTAAAGCTTGCATTTCTTTAATAACCAAGATGGTTGAGCCCAAGAAGCAGATGATTCTGGCTCCCAGTTCTGCGCTCCAGAAAGCATTAGTCTGAAGAAGCGTTAAAAGCAGCCCGGTAGCGGCTAGCTTAAGGGCTAATTCACCCAAGTTGCAGTAGAGGTATTCCTTCATCAAAACCATGCTTCTGAGCAGGCCTTCATTCAAGAACTTGAAGATGGAGAAAAGCTGGATGCCGACAAAAGCATAGAGATAAACTCTGAAGAAGGAGTAAGCTGCCTGGTTTTGGCCTGGATCAAAGAACATGCCTGCCAATAGCTGACAGAAGATGACCGACAGGGCTGAGCTGACCAGCCAGTAGATGAGGGAGACATTGCTGCAGTAGCGGTAAACTGCTTTAACAGCTGAGTACGTTTTTACCGCCAATAACTGAGCCGTCATCAGAGTTAACGTCTGGGCAAAGCCAACCAGGACGATCCGGGCCAGGTTCATGACCTTGACGATAGCGACATAGCCCAAGATTGCCTCCTGGCCAAAGGGATTGACCCAGGCCTGAACCAATGTTGCGCCGAAGGTGATCACGAATTGCTGGAAGATGGTTGGCAGGGCTATATGAAGGATGGACTTAATTTTTGTCCAGGAGAGGTCAGGCTTAAGGGAGACAGGCTCTTCTTCCTGCCGGTCCATTTTTGCCAAAAGGTAGAGGGTGACCAGCATGGTGATCCCTTGAGCTAAAACCGTGCCCAGGGCTGAACCTAATACGCCCAGCTGCAAGACGAGAATGAAAAGAAGATTTAATAGTAGGTTTAAGATGCTGGAAGTTGCCAAGAGATAGAAGGAGATTTTGGCCCGCTCATTGGAGATCAAGATGGTCCGGCCAACGTCATAGATGTAGATGATTGGCAGGGCAAAGAGGTAGACCCGGCCATAGAGGAGGGCATCCCCCATCATGTTTTCCGGTAAAGACACTGCCTTATAAAGGGCAGGCAGGGAAATCCAGGCAATTACCACTAAGACCAGACCGCTAATAGCACTGAGAAAGAGGGTGTCCCGGGCCATGGCGGCCTTCTCTTTATTTTTACTGGCACCTAACAGCCAGACCATGACGTCAACCGCCATTTCAAAGCCGCCGGAGACAACCAGGAAAAGCATGATGATATTGGCTGCGTTGCCCACGGCGCCTAATTCCCTGGCTCCCAGATAGCGGCCGATGATGGCCATGTCGATGACGCTGTAGAGCTGCTGGACAAACAGCTCGCTGATCATGGGCAGGCTGAAGGCCCTGCATACCTTTAGGGTAAACTATGCCCTAAGGGAACAGTCAAGGGCTGGAGAGTTTTAGTAAGGAAAGAGATTGACATGAACGAGGAATTAATTAAGACCGGGGATTTTGCCAAAATGTGTGCTGTCACCAAGAAAGCACTTTATGTCTATGAAGCAAAAGGGCTCCTGAAGCCGGCAGTTGTCAAAGATAATGGCTACCGCTACTACCGGCTGGAACAGGTGGACCAAGTTGCCACGATCCGCCTGCTGGAGAAATTGGGCAGCAGCCTGCAGGAGGTTGGGGACTTTTTCGCCTTAAAGGATTTGAATGAACGGCAGAAGTATTTAGGCAAGCAGCAGGAAGCAGTCGAAAGAGAGATGGCTGAGCTGGGGAAGATCAAGTCCAGCTTAGAATTTTTTGACCAGAGAATCAGTGACTTGAAGCAGACTGGTTTAAAAAAGTGGCGGTTGAGACTTGCCCGGAAGAATACCTGGAAGTCAGTCCTTTTAGGCATGGTGTTTCGCTGAATCCAATCAGCTTCGGGCCTAGATATGGGGTGATCGTCGATGACTTTGAAAAGGCAGAAATCAGCCACTTTTTTAAAGTAGTGGAAAGAAAAAAGGGCAATTACGTCAAAGCGGCTGGAAAGTATGCCTGCTTTTACCAGGAAATTGAGAACGACGATGTTGCTGGCAATGGACCGAAGGCACTGGAATATTTAAGAAGCAAGGCAAAAGTTGTCCCGCCTTTTTACCAGGAAGACTTCAGCAGTTCCGTTTCAGGTCATGACGGATCGGTAATCATCAAGTATTCTGCCAAGTTGGATTTATGAGCAAATAAGCAGTATCCATGCACGTTTTTTCGCGTGAGGGGATGCTGCTTTTGAATTTGCGGCTGTTTTCAATCGCAAAAGGAGCGTAAAAGCGATCGAAAAAATAATCCATCGCGTTTGCGATCACTTTTGCTCGAAAAATCGCTCCAAAACGAGCGCAAATATGATTGAAAAGATAATCTATCGTTTTTTCGCTCCAGCTGGTGCACTTTTGGCTGATCACAACCATTTTCGTGGTATCAATTTGGTTCGTTTCGGAGCAAATCTTAATATCATGCTGGATCGAAAAGACTATGAAGGTATTTCTGTTTTAGACCAATACAATTTCTCCATTGACATGTATCACAGTATTACCAATATAAAGAAATCAAGGGCATTAACAGGGAACTGGAACTGGTAGCAGAGATACCCGAGGAAGCTTTCAGAGAAGCAGTTGCTATGCCTTGGTCCATCGGACTTGGGACGTGAATTCTCAAATCAAAATTTCAATGTTTGATGACAGAATTGAAATTGTCTCACCCGGCGGCTTGAGCAAAGAGGAGTATCTCTTAGGGCAAATTTCAATACTGCGCAACCCGATTTTGGCTAATCTCTTTTACCGTTTAGGCTTAATTGAACAATTTGGCATGGGAATTCGCAGAATTATCAGTAGCTATCAAGGCAGCGTTATTCAACCTAAATTTAAAATCTTTGAGAACTCAATCGTGATCATTTTGCCGCTTTTTCAATCGGTGTCAGTCAATCTTTCTGAGGATGAAGGCAAAATTTATCAAGCTGTTCAATCTGGAAACGAAACTACAAGCAAGATAAATGAAGTGGTCGGCTTTGGCAAAACCAAAAGCTTGCGGTTGATAAACTCTTTGGTAAAGAAAGGCTACCTAATCAAAGTCGGGGAAGGCAGAGGCACTAAGTATATGCTACCGAAGTAGATAAAATTGAATAGCTACTAAGCAGCATCCCTGCAGAATTTTTCGTGAGGGGATGCTGCTTTTTAGTTGAAACTTTGCGTGACTCTTTTTAACCTGATTTGCGAAAAAAGGGCAAGTAATCATCTCAAAAAATTTGCGCGCAAATGAGAGCTCTTCTCAGCATTTTTGGCGAAAAATCGTTTTTTTACCGAATGCGTAGAAATAAGCATTTTTACGCATTCGAATCTTGATTAGTTAGGACGGATTTTTTAACAATTTTGCCGCTTCAATGCACCTTTGTGCTAGAATAAATGCATAAAGACGCATTCAATGAGGGGAGGATTTTGCTAGCAAAATGGGCCGAAAAGTTAAAAAAACAGAGAGCAGCAGAAATATCAGGCCGCTGAAAACTGCAAAGGAGATTAACGCTATGAAGCGGGCCCTCCAGTTTGGGACCGGGACAGTTACTGGACAAAACAGGAATGGTCTGCGGAATGCTATGATTTTTGTCTTTGGAATCAATACGGGTCTCCGGATCTCCGACATCGTCAAGGCCAAAGTCTCAGACATTGAAGACGGGGAATGGTACAACCTGGTTGAAACCAAGACCCACAAGAACCGGCATGCCTATATTGGCAATATCAGCCAGGACTTGGAAAATTACATTGACCAGATGCAGCTGAAGCCAAGTGACTGGCTCTTCCCTTCTAGAAAAGGGGAGGGGCATATTGAAGGAAAGTCATTCTATAAAGATTTGAAGCGGGCCGCCCGGCAGTGCGAGATTGATCCCAGTACAGTTGGTACCCACACCTTAAGAAAAACTTTTGGCTACCACTACATCAAGAGCGCGACAACCCCAGCAGGTGATCCAGATCCCCGGGCCTTGTACAAGCTGCAGAAGATGCTGAACCACAGCAGCCCAACCACTACTCTGAGATATATTGGCTTGGAAGACGAAAGCATGGAAGAAGATTTGAAGTCTTTCCGTTTGGGATAAAATACATCTTTTTAAGAAGCGAGTTCTATTGCGCTTAAATGTGCAGGTGATCATCTTTAACTTTTTAAGAGCAACAGAGTCGCTTTATCAGCACTATACATTTTTGAGTAAACATATCTACATAAACTTTGTTATGTAAAGTGATTTGCTGGAATTAAAAACCGGTCTCAGAATTTGAGATCGGTTTTTGCTTACAAAATAAATTCCATATTTGTTTCTTTGACCTTCAAGCCATTCTTCTTATAGAAGTTTATGGCAGAATCATTGCCCTCCCATACATTAAGCGTCACTTCATAGTATCCCAGTCTTTTGGCTTCAGCTTTGACATAATCAAGCAGGGCCCGGCCCACGCCTTGGGAGCGCTGGGTGCTGTCAATACAGAGGTCATCGATAAAGAGTGACTTAAACTGAACCATATTGGTTGAAAAAGGCTGCTCTTGCAGCTGAGTGAATGCATAGCCGAGCACTTGATCATCTTCGTCAACCGCGACAAAAACTGCTTTCTGGTCATCGTTAATGATTGTCGTCAGCTCTTCCACCGTGTACTTGGTTATGCTTGGAATAAAAATGTCTGGACGAATCGAAGCGTGAATTTCACCTAAAGGGTCACGCCTAACCAGCGTGGCCTTTTCTTATTCCAGCTTTTTGCAACTTAGCCGCCTATTTTTGCATCTTACCTAGATTTAACCCAAGAAAATATTAAAAGATGTAGAATTAACTTAGAAAGATAAACAGAAAAGGGTTACAAAATAGTGAAGAATGCTATTGAGGTTAGAAACCTATCTAAGTTCTATGGGGACTTGAAAGTCGTCAATGACATCTCCTTTGCATTAGAGACAAAGCTTCAGTATTCTTCTCAATGCTGAGTGTCATTATCATTTTTGCCCTCTACATCTTATTCATTGGTGATTCGGTGAATAGCGGGCTAAAGTTTCTGCCGCATCCCAATCGCTTGATGCGGGCTTGGATGCTAGCAGTGATGCTGGCTTCGGCGTCGATCACTACGAGTTTAGGAGCATATGGGGTAATGATCAACGACCGGGAGAATAAGGCGATCAAGGACTTTTACTCATCTCCGGTCAGCAGAAGACAGGTCGCGCGCGGCTATATCGTGACCGGCTTCATCATCAAGCATCATCATGTCCATTTTTACCTTAATTTTTGGGGAAATCTACCTTGGTCTGGCCGGCGGGGCAGTACTGGATATAGAGACTTTACTAAAGCTATTTGCTGTAATTGTCTTATCATCCTTTGCATCATCGGCGATTGCTTCTTTACATAATTTCTTTCTTGAAGACCAACAGCTCCTACTCAGCTGCAAGCACGATAGTTGGGACCTTGATCGGCTTTTTGGTTGGGGCATACATTCCAATCGGCAGCTTGCCAGACAACGTTCAATGGCTGGTAAAGTACTTCCCATGTGCTCATTCAGCGGTACTTTACCGGCAGCTTTTGATGAAGCCGGCAACTAAAGCAAACTTTGCTAATCAGCCGGCGAGTGTACTAAAAGAGATCAGGGAAATGTTTGGGATTGTCTTCGTCTATAACGGCCACATCGCGCCTGCATAGGTATCAGTAGCAGTCCTGCTGGTTACTGGGGCTATTTTCTACTTGCTGGCGGTCTTGGTAATGACCCGGAAACAAAATGAAATATAGAGAATAGTTAACGTAATTTTAGATATGGAAAGGATTTTGCTTAATATGGCCCTTGAAAAATACAAACGCTTTTTCAGAAAATCTTATCAAAAGTCCTTACACAATCATTTTTTTCTATTTTAAAATAACTAACTGTATTTGAATACGGTTATGATTGGAAACGCACACTCCCTTCATGATTAACGAACAACACGTGAATCATGAAGGGAGTTTTTTAATGCTAGAATCAAAACTGGAAAATTTTGTCTTTACTGTTATGATGGCCTTTGTTACGGTCTACGCCATGATCTGCTACAACATCGCTCTTACCATCGGCGGGGATGAGGGATGCTGTCTTACTGGACGCCTTCCGCGAAATGATGATCATGTGGCCGGTTGCAATCATCCTGGAGATGTTCGTCTTTGAAAAGCCTGTCGTTTACTTGACTCAGCGGCTGATTACACCTGAAACGCCAATCTTGCTGATCATCTTGATCCGGTGCTCAATCACCATCTGCCTTATGTGCCCAACGATGAGCTTGATCGCAACCGCGCTCTTCAAGAACTTCCAAGCAGCTGGCTTCATCGGGACCTGGCTGCAGACTGCCGTCATCAACTTTCCAATGGCGATTGGCTGGCAAATCTTCCTCTGCGGTCCTGCGGTAAGATTCTTGTTTAGAACGATTTTTAGAAAAGATAACTAAGTTACATTAGCAGCATTCATCTGTATTTAGTGCAGGGGATGTTGCTTTTAGTTTATAATAGAGACCAAAGCAATCGGTTACAGTTTGCTAGGAAGGAATTGGTATGTTTAGAAAACGAAGCTTTGTTTGACGAGGTAGAATCCGAACTTAAGAAACATGCCTCAATTCAAGATTTTGAAGAAAAATACGGTAAAATCACGGGCAGAATGATGATCACAGAAACAGAGATCCCCGAGGAATTAGGCATTAAGATAAATGATACAGATGTTCATTCTTTCAAAGCCACTTTTGACTTCTATAATACCGCAATAGGCCTGGCGCTTAATGTTAAAACGAGAGAAGCAGCAACAAAATTCTGGCTGACTCCACAAGATGATAGGAATGACGTGCCAACGGACAGCTGGTTTGAATTTTTTGCCATGATTTTGATGGAAGCCTTAGATGAAGGCATGGATAGCATCCCAACTTTCTCTTTCGTCAATGATTCCAGTGACCTTACCATCAGCGGCCTGGGCCTGCTTGAGAAGAAATAACAGGAGAAGATCATGACCAAAGCAAAAGTAGCCTTTATCTGCACCCATAATTCCTGCCGGAGTCAAATCGCCGAAGCCTTGGGTAAAAAGCTGGCCGGGGATGTCTTTGAATCCTATTCAGCCGGCACGGATCTAAAAGATCAGGTTAACCCCGACGCGGTTCGGCTGATCAAAGAGCATTATGGCATCGATATGCTGGCCAACGGGCAAAAACCAAAGACCCTCGTTGACCTGCCGGCGGTTGATTACGTAATCACCATGGGCTGCGGAGTCCGCTGCCCTTATTTGCCTGCAAAAAAGCGGGTAGATTGGGGATTAGAAGATCCAACTGGACAAGATGATGAGACCTTTATGCAGGTGATTAAAGAAATCGAAGATAAGGTACTAAAGATGAAGCAGGAGCTGAGTTAAGAGGCAGTAAGTGCACGCCGGAGTGGTACCTGCTTCAACCAGAAATGGAAGTCAGCTTTAAAGATGATGGCGACAATGTACTGGCAGACCCTGGGCTATTTGCCTAACCCGCGCATCGCGAACCTGGTTAGGGCTGCTCTAGCTAACCTTGCGCAATAGCCTTTTGCCTTTATCAAGTCCATCGATGAAAAAAGGCAAGTCATCCAGCTGGTTTTGGCCATCTATCAAAAAATGACTGAACCCGTTTTAGCCGATATCCCGCAGATTGAAAGCTGGCTCTTAGAAACAGACGGTGAAGATATTGTCGGAAAAAGCCGGCAAAAGCACCTTGAAGAAGTCGAAGTAGGGCAGCTCTTGTCTCTGCAGTTAAATCCTCCTTACGAACAGATTACGGTCTGCCCCCTGGAAGGGGATGACCTGGGAAAATTAAATCATCCGCTGCAAGGTCAGAATCCTGTTTATCGACCCGAAAAGCCAAGAAAACTGAAGACCAGACAGCCACTGAAGCAAGCAACAGCTCCAGTGGCTTTTTTCGTCTAATCCTGAAACAGACGAAATTTTTCCACTAAAGGAGAGCTTCGCCTGTTTTTTGTTACAACTTTTTTGCAAATCGCTAAAATTCCTATTGACGATTCTTAAAGACTCCAGTATTATTTAGTGTATTGCAACGGTAATACACCAATACGATTTAGGGGGTAACTATGGAAAAAGTGATGACTGTCAACAACGTTACAAAGACTTACGGTAAAAAAGGGGAGAAGCAGTTCCAGGCCTTAAAGGGCGTCTCGCTCAGCGTAGCCAAGGGCGAATTCGTCGCCATTATGGGGACTTCCGGTTCTGGTAAGACCACTCTTTTGAACATCATGTCGACCTTGGACAAGCCAAGCAGCGGCGAGGTTACGATTAACGGCAAAAACGTCGCCAAGCTGAAGAAGAACCAGATGGCCGACTTCCGGGCTAAAGAAATTGGCTTTATCTTCCAGGACTTCAACCTCTTGGACAACCTGACCGCTAGGGAAAACATTGCTCTCCCTTTGTCTTTGCAAGGGGTCAAGAGCTCAGAAATCGATTCTAAGGTTGATAAGATCGCCGCTAAGCTCAACATCAGCGAAGTCTTGGAAAAGTACCCAGCAGCCATTTCCGGCGGGCAGAAGCAAAGAGTTGCTGCTGCCAGAGCCTTGGTTCATGAACCGGCAATCTTGATGGCCGATGAACCAACAGGGGCCCTGGATTCTAAGTCTTCCAGGGCCTTGCTGGACACGATGGAGCTGCTTAATGAGAAAGACCAGGTTTCAATCTTGATGGTCACTCACGATCCGTTTTCTGCATCATTTGCTGACCGGATTCTCTTTATCAGGGATGGCTTGATTGATGAAGAGATCAAGCGCGGGGACTTGAAGCGGCAGGACTTTTACAAGAAGCTGATCAGCCAGCTCAGCGAAAATACCGACTAGTTGAGTAAAGAAAGGGATTAACATGATTTTTAAATTGTCAATGACCGGGCTGAAAAGCCGGCTAAAAGACTACCTGGTACTGTTTTCCGGCCTTAGCGCCGCCAGCATGACCTTCTACATGTTCTTGACTCTGGCCGCTAACCAGTCTTTCTTAAAGTCCAGTGTAGCGGGACGGCTGACCATGGGAGCAACTAAGTTTATTTTTTCCTTCGGGATCGTCCTCTTGGCCATTTTAACCCTGGTCTACTTGGCATACGCCAACAGCTTCCTCTTGAGCATGAGAAAGCGGGACTACGGCATGTACATGATGCTGGGGGCAAAAAGCGGCAAGATCGGCCAGCTGATCTTCGCTGAGACCCTGGTAACTGGCCTTCTGGCAACCGGGATTGGGATTATCTTGGGCGTGGGGCTGACTGAACTGGTCTCATCCTTGATGGTCAAGCAGCTGGGGCTGACTCTGGCTCACTTTAATCCGCTCTACCTGCCAGCGGTTCTCTGGACCTTGCTTTTCTTTGTCGCCTTGTTCTTCCTGGCCGCTTCCTGGAACGCGGTCAAGCTGACCAAGACTACGCTGATCAATCTTCTAAAAGAAGACCAGAAACCAAGCAAGCTGAAGAGCCGGCCGGTCTTACGGACTATCCAGGCTATCGCGGGGGTACTGCTTTTGGCTACCGGCTACTGGGCAATGTGGCATGTGGCGACTTTGCAGCTTAAGGCAATTCCAATTGCTTTAGTAACCATCGTTTTGGGTAGCTTTTTAATCTTTGACGCCTTCTTTGTAGCGGTCATCGACTTTTTGCGGAAGAGACACAGCTTCCTCTACAAAGGGATGCGGCCTTACACTCTGGGCCAGTTAAAGTTCCGCCTGCATGGCTATACCAGAATCCTGTCAGCCATCTCAATTATGCTGGCCTTGGCCCTTGGCGCTATTACGGTCGGCATTAACTTCAACAACTTGAAGAATGCCATGACTGACGTTATGTACTACGATATTGTCTTAGTTGGCAAGCAGAAGAAGCTGGCTGACAAGGTTGAAAAAATCGGTACAGAGGAGGAAGTTACTTACAGCTACAAGGCTGATGAGAAAAATGGCATCCTCTATGTCAAGAAAAGTGAAATTGACCAGACGCCGCTCAAGATCCAAATGTATAACGCGGCATCTTCAGACAAGAAGAAGGCGATTGACAAGGAGGGGCGGATTTACCACACGGTTGAGGTTACTTCCAAGACCTTAACTGGTAAGCAGACTTCAGCTACGGTCAGAAATTCTGCTCAAGCTGCCAGCCTTTTCCCAGAAGATTCCAGCAAGGGCTTTGTGGCCTTGTCAGATGCAGCTTTTGCCAAAAAGAAGCTGACGACTAAGGTCATCACTTTTTACAAGGTTAAGGATTTTGCCAAGAACAACAAGAAATTGCTGAAGCTTACTGAGCAAGAAATGCAGCTGTTCAGCAAGGACTCAATGGCATACGGCTACCTGGAATTCACCAAGCCGTTTCTTTACCAGCAAATCGCGGCAATGTGCTCAGGCTTTGAATTTATGGGCCTTTTCCTTGGTTTGTCCTTCTTAATGATGCTGGCTTCAACTCTGATGTTTAAGATCCTGTCAGCCGCAGCCAGTGACAAATTGCGGTACAAGATGCTCTACAAGCTTGGGGCTAGAAACAGCGTCTTGAAGGCAGCGATTAGAAAAGAAATTGCCATCTTGTTTGTGGCACCGGCGGTACTTGGCAGCCTGGACGTACTCTTTGGCTTGAAGATCTTTACGATTCTTCTGCCAGACCCCTACTACAAGATTTGGATTCCATTCTTAGCATTCTTCCTCTTGTACCTGGTTTACTACTTACTTACTGTCAAGCTTTACCAGGGAATCGTTTTAGAAGAGACTAAGCAAGACTAATAGATTTTTTAACAAAAAAGCGATCGAAACATGATATAGTTTCGGTCGCTTTTTGCATGGATTTAGAAGGTGAAGGCTTTTTGGAAAATAGGCGTTTGCCGTAAGTCATAGACAAAGCCGTCAGTAGGGGTGATTTCGAATGGCCGGAGCAGTTCCCGGCGTTCAGAGTCAGTCTTGTTAATCTCCAACATCGGTACTGCTTTGCGCATGGTAATTTCCTCCTATGAGTAGTGTATTTCTAAGATTTACACGTTTACTATAGCACCTTTCTGGGAGGAATGATGGGGGAGGGGGATGCTAGTTGCACTAAGCATAATTTTAGTTATGTAAAGTACGATTGCTTTTGCTGAGTGCTTATTTTGCTTTCAGTTTCATGAAATATCGATGGTGGACCAAACAAAATGACGTTAGCCGAGGCAAAAGAAGCATATGCCAAGGGTGAAAAAATCTACTAACTTTTTTGGGCGAGATCAATAAATTCCTGTACTAATTTGGGGACTGGTTTACGACAGTAGAAGCCATAGCTAGTTGCAAAGGACTAAGAGACCGGTTTAACAATATATGGATGGCACAATTCCGAATAGGCCTCTGGAATTAGTAACAGATGCTTTGTAAGCTGTGCTTGATTGACCACTGCTTTGTTAAACACGCTATAATAGTGCAGTTTAACTGCCGGGCGAACATTTAGAAGTTTGCTTAACATCACATCCTCAGAACCTGCAATAGATGGAGCTACGATTTCCAAATCCTGTGCTGCCAAGTCTTGTAAAGATAGTTGCTTTTTCTTGGCTAAGGGATGACTTGCTGGCAAAGCTACTCGAAGAGGCGAAGGAACAATGGATATGAAAGAGAATTAGTGTTCACTCAGTGGCTCTTTCGCATAAGTCATTTCTAAAATGTCTACTTCAGCAGGTATTTGCTGATAATCATTTATCTCTCTGAAAGATATTTGTGCTTTAGGATGGTTCTTCTGAAATTGTGGAATTAGGCGACCACTTAAGGTTTGTCCATTTAAATACCCAGATGCAAAAACAATTTTTTGCTGATATTTTCCTAATGCCTTCTCAGCCTGTTGGCAATCAAAAATTATCTGTCTGCTCCACTGAATAAATTCAATTCCTGCTGCTGGAGTAAGTGTTACACCATGGGTATTCCTAACAAATAGCTGGACATTTAACCGCTTTTCCAATAGATTCATTTGCTGAACGACAGCTGGTGTAGATATATATAATTTTTTGCTGCTTTACTAAAGCTTCCAGCTGCTGCAACTGCTAGAAATGTATCAAGTTCAGAATTGTACATATTTTTCTCCTTCTGCCTTTAAGTTTAACCTTAATACAGCATAACATCAATCAAGAAAGCGGTACGATAATACGTGCTATGATATAAGCATAGTGATAAAAGTAACTTAGTTTTGTTGAAGGAGAACAAAATGAACTTTGATATCGTAGTAGTAGGAGCTGGTGCTTCTGGCATCAGTGCAGCATTAACTGCATCAGAATGCGGAGCAAAAGTAGCACTATTGGAAAAAGGCGACAAATTTGGCGGTGCAGGGATGTTTGGTGCCCAGGGACTATTTGCGGTTGAAAGCAGGGCTCAAAAAGAAGCTGGAGTGAAGTACAGCCTAAAAGATGCCTATGAGGAAATCATCAATTATACTCACCATTCATCTAATGCGTTAATGGTTAAGGCCATTCTTGAAGAATCAGCAGCCACAATCGATTGGATGGCTGAATCAGGTTTGGAGACTGAATTAGTGACCAACACTCAAGAAGTCCACCAGGAGCATCCCAGAACCTATCACCAATTTATCGATAAGTTTAACGGATTTAAGCGGGTAATGAACAATTTTTTAGAAAACGGCGGAGTCCTTATGACCGAAACTTCAGCCGAAAAAATTGTTCAAGAACAGGGTAAAGTAACTGCCGTTAAAGCAAACAGAAAAGGCGAAGAAATCACCTTGGAAACTAAAGCCGTAATCTTGGCTGATGGGGGATTTGTTGGCAATAAGGACGAAATCAAGCGTACTTTAGCAATTGATCCAGATGACCTGTACTCAATGGGTGAACGGAAAGCTACCGGTGATGGCCTGCAGATGCTCAAAGAAGCTGGTGGCGTTAGCGATTACAAGAGAATTTTTGAAAACCATGCGGCAACTGTCTACTCAAAGACGGATCCAAAGTGGCACAACGCAAGTCTTTTTGACTTGACCAACATCCCACTCTTATGGGTTAACCGGGAAGGCAAGCGATTTACTAATGAAGACGTAGTATATGATTTCGCATTATGGGGTGATTCAGTCTACCAGATCGGTGGATACTACTACTTCCTTTTTGACCAAGCAACTGTCGATTATCTACGTCAGCAAGCTTTGGACTGGACAAGTTCATTTGAAAGAACCTTCCGCTTGTTAGATAAAAAGCTAATGACTTATCAAGTTGGTCCATATCCGCAACTAGATCAAGATTTAAATGAGGGTATCAGCCAAGGTGCTGTCTTCAAGGCAGATAACATTCAAAAATTAGCAGAGAAGATTACGGTTGATCCAGCAAATCTTACTGCAACAGTTAACCGATACAATGAACTGGTGGTAGAAGGTAAAGACATGGATCTTTACAAAGATGACCGTTTCATGACTTTGTCGGTCAAAGAGGGACCTTTCTATGCAGTTCGTGCTAATTCAACTACCCTGGGGACTGTCGGTGGTGCATTAGTCAATGAGCATTTTGAGGCTCTAAATGTGAAGAGACAAGTAATTGATGGTATTTATGCTGTCGGAAATGACGCATCAAGCCTTTATGACTCATCTTATCCAACAATTGAAGGCTTAAGCAACGCTTTTGCATGGAATTCAGGTCGAATTGCTGGCCGGTATGCTAGTGCTTATGCAGCAAAGAACTAAATAGAACAGAAAAAGCTCTACCTAAAGTTTGGGTAGAGCTTTCGTTGTCAGTAAAATGCCATTATTCTTCTAAGCCATTACTGAATGTATCAAAAATCATTTGATCCTTGATAATCTTGCCGTCATCAGTTAAAGACCATGGGGATCCTGGTTGATGCGTCTTTTGGCTTAATCCAGATGCACTGTAATTAATGTAGGCTTCATTAACTAATCTCAACAGGTGAGAGATATCGCCATCTTTAGAAACCAAGTTGTAATCATCAAATGCTTCTTTACTAGGCTTTCCAGTATCTAATACCGTAAGTCCCTTGAATTTGCTATGTACTTCTGTAATTACTGGATCGTACTGTGAGTGCACTATTGAAGACGTAAATAATTTGTTGTGTGTTTTCACCAGATAGCGCCCATATGCGAAATACAGTAGCTTGATTAGCTTCATTTGTGTCAATGGTTCAACGTTTTCATCTAAGGCCAAAATAATTTTCAACTCTTAGCCAATTTGCCAATTGTACAGCAATGAACTTTGGCTGGAAGCTTTGGTCAATAACAACAATATCTTCTTGCTGAAGATAAGCTTTGACCTTAGCAACAAGATCATTTGAGTAATTATTAGCGTCATCCATTATGTATTGACGCAACAATTCATCGTCATTGATCAAGTACTTTAACATTTTATTGTTTGCCGGTGTAGGAAATGCACCAGCTTCGTACAGAGCAATAGTATTTGGACTAAGTCCTGTCAGTTCTGCCAAATTGCGTTGAGAAAGACCAACTTTAGCCCGATATTTTTTGAGTTCTGTTGGCGAGAGGAGACCCATGTCGTCGCGATACGCTTGTCTAGCCATTTCAGATGCACGTTCATCAAGTTCAGCATCGTAAATTGGCTGATTTGTTTCATCACCAAAGCGAGCTGGCGCTGTGTTTTACAAAGTCTTCTGACGATAATTGCTCAATGATTGTCTTTGCTAACATGCGAGAAACAGGTACTTTCATTGTGCCTTGTCTTGCAACCAATTTAAATCTATCATGACTGACCAGAAATTTTAACTTTGTCAGTGCTTCAGCGACTTCCATAGGCTCCAATATCTCCTTGATTTTTGTACCACTATTATACCATCTCTTCAAAAAATTCTGCTACTAATTAGTAGCGCAACTAAAAACTAACCTCCAAAAGCGGGGGAGGGAACAGGGGAGGCGGTACCTTGCTACCTCCTTTTTGCTACGGCTTCTGTACAAACCGGCGAGTTTGTGCTTACATTAAATTATTGTAAAAGGAAGTCGATATCGTACATGAAGCATGTTTTTCTAATCAAGTCCAGATCAGTCCAGAAGTGATTCCCTCATCAAAAACATCGAAAGGGTGATGGAGGGGAGAGATTGCGAGATCTACTTTAGTGAGTACAAGGACCATGTAAAAGAAATCGTTAAAAATTACCCTGAAAAAACACGATTCTATTCAGTTGGTGGAGACGGCTTTTTCAACCAAGTCATCCAAAATATCGTGCACATAAACCATGGAGTTGTTTGCCTGCCATTTGGGACGGGCAATGACTTTTCCCGCGCGAGATGAGTCCTAAAGCCATCTTCAAAGCGACTTTAGACCAGCCAGCGATTCCAATTGACACAATTTTAGTCAATGATGAGCGCTACTGCGTCAACGTTGGCTGCTTTGGACTTGACGCCTTGATTGCTTGACGTTAAAACGCTTAAAAGCGCGGCATATGTAGCTTCAATTCTGCGCAATATCAGCCGCTATAAGTTTTCCAAAGTAAAGGTCATAGGCCACAAAATGGCCTGCTTTTTAACGACCAGGTCACGCTCTGTGCCTTCTGCAATGGACGTTTTATTCGCGCTATATTATATCTATAAAATTCTGCGAAAGGACCTGATTAGCTGCAAAGATGTAGTAGTGAAACAGGTGAAAGATGCGTAATAACAACGCCTGCTGCAATGAATCTTGATGGTGAAAAGAAGGAAGCAGCGAAGTATCATCTGGTCGTTCAGCCAAAATCCTTGAACTTGGTCATTTGACAGACTAGCTAGTGAATCTGCCGCAATACGGACAGATTTTTTGTAGCTTGATAAAACAGAAATCAAAAGCAGAAAAGAAAAATAAAAAATGCTCAAAAACTCAGTAAAATTCACACGTAAGAAATCAGTGGTAAAACTTTGAGCTTCAAGCATGGGTAGCTTAGTACTTTTTCTGCACATCAGGCCATTCTTCAGCAAGAACCGCGTACTCATTACTATCATGATAGCCGTCTCTAAGGATCAACCGGCCCTTATGGCAGCCTTCAAACCGCATCCCTAGCCGTTTAGCCACATTATTGCTTGGCAGATTGTCTACAGCGCACTGCAGCATAATTCTGTGTAGGCCATATTCCTCAAAGGCGATATCGATGATAGCCCGGGTAGCCAGCGTCATGATTCCGCGTCCGCGGAATTCTTTGCCTAAAAAGTAGCCGATATCTGCCTCAGAATACATAGCATCAATTGAATTCAAGCTGACTTTACCAGCTAAACGGCCATGATACCAAATGTGCAGGTCTAAGGCTTTGCCTTCAGCAAACCTGACTAAATTACGCCTAATAGCGTCAGTCTCAGCTTGCACGTCATGAACGTGGTCAACCCAAGGCAAGTAGTAGGATAAATTGTCCCGGTTTCTGTCAATTAAGTCATACAGAGCTTCACCGTCAGTCAATCTTGGCACGGCTAACTCTAATTCATCGTTGATCTTGTAGCTAAACATAAACTCATCTCCAATCCAAAAGCAATTGCGAAAAAGATTATCTGAATTATATCAGAGCGCAGTATTAAATACTACCGGGCAAAATGATCATCTGGGGCTAAGCAGCGTCCTCTCTCGCGATTTTTGCTACTCAACTTTACATAATATGTATTATTCGAACTATTAGCTAAAAGCGAAATCGTATCCCCTCCAAACAAAAAAGCACTGCATTTGCAGTGCTCAAGTTTAAGATGTTTGCGGTTCAGTTGTTTGGTTCTGCGTGTTTGGATCACTAGTGACTTCACCCTTAGGCGTTTCAACGTTGCTTGCCTTAACGTACAAGCCAACGCCGATTGCCCAGTACTTGCTGCCATTGATCTTTTTCTTGCCGCCATAGACAGTTACCGAGCCATTCTTCAGCAAGACACCGGAATTCTTTATCCGCTTGCCACTGCTGGAATAAATGTAGCTGTTATGGTTCAACTGGCAATCCAAACCAACCACGTTCATATATGCCACGTACTTGTTTTGGCCGATCATGATATATGGCTTGTCACCAACATAATTAATCATGCTGTAGCAGCCAACGGCTTTACCGGCCAGGATCTTCTTGTCCTTGGTCCGTTTGCCTTTTTCGTCATACACGTAAGTGTTGACCATGGCATTCTTGTAAAACGGTTTGTCAGCATCTGAAGCTGTCGTAGTCTTTGCCTTTGGCGCCAAAATAATGGCAAAAGCCAGTACAAATATTAACTTAACCAAAGCTGAGTTAACCGCTTTAGCGGAAGTGATCAAGAAGCACCATTTGCTGGCAATCTGTGATGAAATCTACAGCGAACTGACTTATGACCAAGAACATTTCTCTTTGGCTACTTTACTGCCAGGACAGGTAATCTTGATCAGCGGCTTGTCTAAGTCACACGCCATGACTGGCTACCGGCTAGGTTATATCGCGGCTCCGGCAAGTTTACTGCCAAATGTGGCCAAGGCCCACAGCTTCATGGTGACCTGCGTGGACAATATCGCCCAAGACGCGGCAATTGAGGCTTTGACCAAGGGGCTTGACGATCCAAAGGAATTTAAGGCAGCCTACCAGCGCCGGCGGGACTTCATGGTTGATAATCTGACCAAGCTGGGCTTTGAAATGGCTGTGCCGCAAGGGGCGTTTTACATTTTTGCCAAGATTCCGGAGAAGTTTGGCAGCGGTGACTTTGCTTTCGCCAAAGACGTGGCTAAGAAGGCCAGAGTTGGTCTGATTCCAGGCAGCGTATTTGGTAAAGGATCTGCTGGCTATGTCCGCTTCTCTTACGCGGAAGCTGATGACAAGCTGACAGAAGTAGTCAAGCGGCTTGGTGAATACGTTGCTCAGCTCTAATATTTTTCCTAAGACAGCAGTTTGCTGTCTTTTTTTATGCCGAATGATATAATTTAGAAAGAATCTAAAGAATTAGTATGACAAGGAGCATATAAATAATGTCTGAATACCCACAACTTAACCTTGACCAAGCCAAGGGCCCAAAGGCAACTATCAAGACCAACCACGGCGACATCGTCATTCAGCTTTTCCCAGAAGAAGCACCAATGACTGTTGAAAACTTCGTCCGCCTGGCACAAAAGGGCTACTACGACGGCGTAACTTTCCACCGGGTGATCAGCGACTTCATGATCCAAGGCGGGGACCCGGAAGGTACTGGTGCCGGCGGTCAAAGCATCTGGGGCCACAACTTTGAAGATGAATTCTCAAACGAACTCTTCAACCTGCGCGGGGCTTTGTCAATGGCTAATGCTGGTCCAAACACCAACGGCTCACAATTCTTCATCGTGCAAAACAAGAACATGCCAAAGCGCTTCATTCAACAATTGCGCGATGCCCAATATCCAGAAGATGTTGTCAAGGCTTACAAGCAAGGTGGTACGCCATGGCTTGACCACAGACACACTGTTTTTGGCCATGTAACTGAAGGCATGGATGTCGTTGACGAAATTGCCAAGGTAGCCAAGGATGGCAACGACAAGCCACTAGAAGACGTGGTAATCACGACTGTTGAGATTGCTGACTAAGAGTAAGTAAGAAAGGTTTGCGTGAACAAGAGTGAAGTTAAAACGGGTTTGGCTCGTTAAGTTAATATTTGTACTGGCTTTTGCCATTATTTTGGCGCCAAAGGCAAAGACTACGACAGCTTCAGATGCTGACAAACCGTTTTACAAGAATGCCATGGTCAACACTTACGTGTATGACGAAAAAGGCAAACGGACCAAGGACAAGAAGATCCTGGCCGGTAAAGCCGTTGGCTGCTACAGCATGATTAATTATGTTGGTGACAAGCCATATATCATGATCGGCCAAAACAAGTACGTGGCATATATGAACGTGGTTGGTTTGGATTGCCAGTTGAACCATAACAGCTACATTTATTCCAGCAGTGGCAAGCGGATAAAGAATTCCGGTGTCTTGCTGAAGAATGGCTCGGTAACTGTCTATGGCGGCAAGAAAAAGATCAATGGCAGCAAGTACTGGGCAATCGGCGTTGGCTTGTACGTTAAGGCAAGCAACGTTGAAACGCCTAAGGGTGAAGTCACTAGTGATCCAAACACGCAGAACCAAACAACTGAACCGCAAACATCTTAAACTTGAGCACTGCAAATGCAGTGCTTTTTTGTTTGGAGGGGATACGATTTCGCTTTTAGCTAATAGTTCGAATAATACATATTATGTAAAGTTGAGTAGCAAAAATCGCGAGAGAGGACGCTGCTTAGCCCCAGATGATCATTTTGCCCGGTAGTATTTAATACTGCGCTCTGATATAATTCAGATAATCTTTTTCGCAATTGCTTTTGGATTGGAGATGAGTTTATGTTTAGCTACAAGATCAACGATGAATTAGAGTTAGCCGTGCCAAGATTGACTGACGGTGAAGCTCTGTATGACTTAATTGACAGAAACCGGGACAATTTATCCTACTACTTGCCTTGGGTTGACCACGTTCATGACGTGCAAGCTGAGACTGACGCTATTAGGCGTAATTTAGTCAGGTTTGCTGAAGGCAAAGCCTTAGACCTGCACATTTGGTATCATGGCCGTTTAGCTGGTAAAGTCAGCTTGAATTCAATTGATGCTATGTATTCTGAGGCAGATATCGGCTACTTTTTAGGCAAAGAATTCCGCGGACGCGGAATCATGACGCTGGCTACCCGGGCTATCATCGATATCGCCTTTGAGGAATATGGCCTACACAGAATTATGCTGCAGTGCGCTGTAGACAATCTGCCAAGCAATAATGTGGCTAAACGGCTAGGGATGCGGTTTGAAGGCTGCCATAAGGGCCGGTTGATCCTTAGAGACGGCTATCATGATAGTAATGAGTACGCGGTTCTTGCTGAAGAATGGCCTGATGTGCAGAAAAAGTACTAAGCTACCCATGCTTGAAGCTCAAAGTTTTACCACTGATTTCTTACGTGTGAATTTTACTGAGTTTTTGAGCATTTTTTATTTTTCTTTTCTGCTTTTGATTTCTGTTTTATCAAGCTACAAAAAATCTGTCCGTATTGCGGCAGATTCACTAGCTAGTCTGTCAAATGACCAAGTTCAAGGATTTTGGCTGAACGACCAGATGATACTTCGCTGCTTCCTTCTTTTCACCATCAAGATTCATTGCAGCAGGCGTTGTTATTACGCATCTTTCACCTGTTTCACTACTACATCTTTGCAGCTAATCAGGTCCTTTCGCAGAATTTTATAGATATAATATAGCGCGAATAAAACGTCCATTGCAGAAGGCACAGAGCGTGACCTGGTCGTTAAAAAGCAGGCCATTTTGTGGCCTATGACCTTTACTTTGGAAAACTTATAGCGGCTGATATTGCGCAGAATTGAAGCTACATATGCCGCGCTTTTAAGCGTTTTAACGTCAAGCAATCAAGGCGTCAAGTCCAAAGCAGCCAACGTTGACGCAGTAGCGCTCATCATTGACTAAAATTGTGTCAATTGGAATCGCTGGCTGGTCTAAAGTCGCTTTGAAGATGGCTTTAGGACTCATCTCGCGCGGGAAAAGTCATTGCCCGTCCCAAATGGCAGGCAAACAACTCCATGGTTTATGTGCACGATATTTTGGATGACTTGGTTGAAAAAGCCGTCTCCACCAACTGAATAGAATCGTGTTTTTTCAGGGTAATTTTTAACGATTTCTTTTACATGGTCCTTGTACTCACTAAAGTAGATCTCGCAATCTCTCCCCTCCATCACCCTTTCGATGTTTTTGATGAGGGAATCACTTCTGGACTGATCTGGACTTGATTAGAAAAACATGCTTCATGTACGATATCGACTTCCTTTTACAATAATTTAATGTAAGCACAAACTCGCCGGTTTGTACAGAAGCCGTAGCAAAAAGGAGGTAGCAAGGTACCGCCTCCCCTGTTCCCTCCCCCGCTTTTGGAGGTTAGTTTTTAGTTGCGCTACTAATTAGTAGCAGAATTTTTTGAAGAGATGGTATAATAGTGGTACAAAAATCAAGGAGATATTGGAGCCTATGGAAGTCGCTGAAGCACTGACAAAGTTAAAATTTCTGGTCAGTCATGATAGATTTAAATTGGTTGCAAGACAAGGCACAATGAAAGTACCTGTTTCTCGCATGTTAGCAAAGACAATCATTGAGCAATTATCGTCAGAAGACTTTGTAAAACACAGCGCCAGCTCGCTTTGGTGATGAAACAAATCAGCCAATTTACGATGCTGAACTTGATGAACGTGCATCTGAAATGGCTAGACAAGCGTATCGCGACGACATGGGTCTCCTCTCGCCAACAGAACTCAAAAAATATCGGGCTAAAGTTGGTCTTTCTCAACGCAATTTGGCAGAACTGACAGGACTTAGTCCAAATACTATTGCTCTGTACGAAGCTGGTGCATTTCCTACACCGGCAAACAATAAAATGTTAAAGTACTTGATCAATGACGATGAATTGTTGCGTCAATACATAATGGATGACGCTAATAATTACTCAAATGATCTTGTTGCTAAGGTCAAAGCTTATCTTCAGCAAGAAGATATTGTTGTTATTGACCAAAGCTTCCAGCCAAAGTTCATTGCTGTACAATTGGCAAATTGGCTAAGAGTTGAAAATTATTTTGGCCTTAGATGAAAACGTTGAACCATTGACACAAATGAAGCTAATCAAGCTACTGTATTTCGCATATGGGCGCTATCTGGTGAAAACACACAACAAATTATTTACGTCTTCAATAGTGCACTCACAGTACGATCCAGTAATTACAGAAGTACATAGCAAATTCAAGGGACTTACGGTATTAGATACTGGAAAGCCTAGTAAAGAAGCATTTGATGATTACAACTTGGTTTCTAAAGATGGCGATATCTCTCACCTGTTGAGATTAGTTAATGAAGCCTACATTAATTACAGTGCATCTGGATTAAGCCAAAAGACGCATCAACCAGGATCCCCATGGTCTTTAACTGATGACGGCAAGATTATCAAGGATCAAATGATTTTTGATACATTCAGTAATGGCTTAGAAGAATAATGGCATTTTACTGACAACGAAAGCTCTACCCAAACTTTAGGTAGAGCTTTTTCTGTTCTATTTAGTTCTTTGCTGCATAAGCACTAGCATACCGGCCAGCAATTCGACCTGAATTCCATGCAAAAGCGTTGCTTAAGCCTTCAATTGTTGGATAAGATGAGTCATAAAGGCTTGATGCGTCATTTCCGACAGCATAAATACCATCAATTACTTGTCTCTTCACATTTAGAGCCTCAAAATGCTCATTGACTAATGCACCACCGACAGTCCCCAGGGTAGTTGAATTAGCACGAACTGCATAGAAAGGTCCCTCTTTGACCGACAAAGTCATGAAACGGTCATCTTTGTAAAGATCCATGTCTTTACCTTCTACCACCAGTTCATTGTATCGGTTAACTGTTGCAGTAAGATTTGCTGGATCAACCGTAATCTTCTCTGCTAATTTTTGAATGTTATCTGCCTTGAAGACAGCACCTTGGCTGATACCCTCATTTAAATCTTGATCTAGTTGCGGATATGGACCAACTTGATAAGTCATTAGCTTTTTATCTAACAAGCGGAAGGTTCTTTCAAATGAACTTGTCCAGTCCAAAGCTTGCTGACGTAGATAATCGACAGTTGCTTGGTCAAAAAGGAAGTAGTAGTATCCACCGATCTGGTAGACTGAATCACCCCATAATGCGAAATCATATACTACGTCTTCATTAGTAAATCGCTTGCCTTCCCGGTTAACCCATAAGAGTGGGATGTTGGTCAAGTCAAAAAGACTTGCGTTGTGCCACTTTGGATCCGTCTTTGAGTAGACAGTTGCCGCATGGTTTTCAAAAATTCTCTTGTAATCGCTAACGCCACCAGCTTCTTTGAGCATCTGCAGGCCATCACCGGTAGCTTTCCGTTCACCCATTGAGTACAGGTCATCTGGATCAATTGCTAAAGTACGCTTGATTTCGTCCTTATTGCCAACAAATCCCCCATCAGCCAAGATTACGGCTTTAGTTTCCAAGGTGATTTCTTCGCCTTTTCTGTTTGCTTTAACGGCAGTTACTTTACCCTGTTCTTGAACAATTTTTTCGGCTGAAGTTTCGGTCATAAGGACTCCGCCGTTTTCTAAAAAATTGTTCATTACCCGCTTAAATCCGTTAAACTTATCGATAAATTGGTGATAGGTTCTGGGATGCTCCTGGTGGACTTCTTGAGTGTTGGTCACTAATTCAGTCTCCAAACCTGATTCAGCCATCCAATCGATTGTGGCTGCTGATTCTTCAAGAATGGCCTTAACCATTAACGCATTAGATGAATGGTGAGTATAATTGATGATTTCCTCATAGGCATCTTTTAGGCTGTACTTCACTCCAGCTTCTTTTTGAGCCCTGCTTTCAACCGCAAATAGTCCCTGGGCACCAAACATCCCTGCACCGCCAAATTTGTCGCCTTTTTCCAATAGTGCTACTTTTGCTCCGCATTCTGATGCAGTTAATGCTGCACTGATGCCAGAAGCACCAGCTCCTACTACTACGATATCAAAGTTCATTTTGTTCTCCTTCAACAAAACTAAGTTACTTTTATCACTATGCTTATATCATAGCACGTATTATCGTACCGCTTTCTTGATTGATGTTATGCTGTATTAAGGTTAAACTTAAAGGCAGAAGGAGAAAAATATGTACAATTCTGAACTTGATACATTTCTAGCAGTTGCAGCAGCTGGAAGCTTTAGTAAAGCAGCAAAAAATTATATATATCTACACCAGCTGTCGTTCAGCAAATGAATCTATTGGAAAAGCGGTTAAATGTCCAGCTATTTGTTAGGAATACCCATGGTGTAACACTTACTCCAGCAGCAGGAATTGAATTTATTCAGTGGAGCAGACAGATAATTTTTGATTGCCAACAGGCTGAGAAGGCATTAGGAAAATATCAGCAAAAAATTGTTTTTGCATCTGGGTATTTAAATGGACAAACCTTAAGTGGTCGCCTAATTCCACAATTTCAGAAGAACCATCCTAAAGCACAAATATCTTTCAGAGAGATAAATGATTATCAGCAAATACCTGCTGAAGTAGACATTTTAGAAATGACTTATGCGAAAGAGCCACTGAGTGAACACTAATTCTCTTTCATATCCATTGTTCCTTCGCCTCTTCGAGTAGCTTTGCCAGCAAGTCATCCCTTAGCCAAGAAAAAGCAACTATCTTTACAAGACTTGGCAGCACAGGATTTGGAAATCGTAGCTCCATCTATTGCAGGTTCTGAGGATGTGATGTTAAGCAAACTTCTAAATGTTCGCCCGGCAGTTAAACTGCACTATTATAGCGTGTTTAACAAAGCAGTGGTCAATCAAGCACAGCTTACAAAGCATCTGTTACTAATTCCAGAGGCCTATTCGGAATTGTGCCATCCATATATTGTTAAACCGGTCTCTTAGTCCTTTGCAACTAGCTATGGCTTCTACTGTCGTAAACCAGTCCCCAAATTAGTACAGGAATTTATTGATCTCGCCCAAAAAAGTTAGTAGATTTTTTCACCCTTGGCATATGCTTCTTTTGCCTCGGCTAACGTCATTTTGTTTGGTCCACCATCGATATTTCATGAAACTGAAAGCAAAATAAGCACTCAGCAAAAGCAATCGTACTTTACATAACTAAAATTATGCTTAGTGCAACTAGCATCCCCCTCCCCCATCATTCCTCCCAGAAAGGTGCTATAGTAAACGTGTAAATCTTAGAAATACACTACTCATAGGAGGAAATTACCATGCGCAAAGCAGTACCGATGTTGGAGATTAACAAGACTGACTCTGAACGCCGGGAACTGCTCCGGCCATTCGAAATCACCCCTACTGACGGCTTTGTCTATGACTTACGGCAAACGCCTATTTTCCAAAAAGCCTTCACCTTCTAAATCCATGCAAAAAGCGACCGAAACTATATCATGTTTCGATCGCTTTTTTGTTAAAAAATCTATTAGTCTTGCTTAGTCTCTTCTAAAACGATTCCCTGGTAAAGCTTGACAGTAAGTAAGTAGTAAACCAGGTACAAGAGGAAGAATGCTAAGAATGGAATCCAAATCTTGTAGTAGGGGTCTGGCAGAAGAATCGTAAAGATCTTCAAGCCAAAGAGTACGTCCAGGCTGCCAAGTACCGCCGGTGCCACAAACAAGATGGCAATTTCTTTTCTAATCGCTGCCTTCAAGACGCTGTTTCTAGCCCCAAGCTTGTAGAGCATCTTGTACCGCAATTTGTCACTGGCTGCGGCTGACAGGATCTTAAACATCAGAGTTGAAGCCAGCATCATTAAGAAGGACAAACCAAGGAAAAGGCCCATAAATTCAAAGCCTGAGCACATTGCCGCGATTTGCTGGTAAAGAAACGGCTTGGTGAATTCCAGGTAGCCGTATGCCATTGAGTCCTTGCTGAACAGCTGCATTTCTTGCTCAGTAAGCTTCAGCAATTTCTTGTTGTTCTTGGCAAAATCCTTAACCTTGTAAAAAGTGATGACCTTAGTCGTCAGCTTCTTTTTGGCAAAAGCTGCATCTGACAAGGCCACAAAGCCCTTGCTGGAATCTTCTGGGAAAAGGCTGGCAGCTTGAGCAGAATTTCTGACCGTAGCTGAAGTCTGCTTACCAGTTAAGGTCTTGGAAGTAACCTCAACCGTGTGGTAAATCCGCCCCTCCTTGTCAATCGCCTTCTTCTTGTCTGAAGATGCCGCGTTATACATTTGGATCTTGAGCGGCGTCTGGTCAATTTCACTTTTCTTGACATAGAGGATGCCATTTTTCTCATCAGCCTTGTAGCTGTAAGTAACTTCCTCCTCTGTACCGATTTTTTCAACCTTGTCAGCCAGCTTCTTCTGCTTGCCAACTAAGACAATATCGTAGTACATAACGTCAGTCATGGCATTCTTCAAGTTGTTGAAGTTAATGCCGACCGTAATAGCGCCAAGGGCCAAGGCCAGCATAATTGAGATGGCTGACAGGATTCTGGTATAGCCATGCAGGCGGAACTTTAACTGGCCCAGAGTGTAAGGCCGCATCCCTTTGTAGAGGAAGCTGTGTCTCTTCCGCAAAAAGTCGATGACCGCTACAAAGAAGGCGTCAAAGATTAAAAAGCTACCCAAAACGATGGTTACTAAAGCAATTGGAATTGCCTTAAGCTGCAAAGTCGCCACATGCCACATTGCCCAGTAGCCGGTAGCCAAAAGCAGTACCCCCGCGATAGCCTGGATAGTCCGTAAGACCGGCCGGCTCTTCAGCTTGCTTGGTTTCTGGTCTTCTTTTAGAAGATTGATCAGCGTAGTCTTGGTCAGCTTGACCGCGTTCCAGGAAGCGGCCAGGAAGAACAAGGCGACAAAGAAAAGCAAGGTCCAGAGAACCGCTGGCAGGTAGAGCGGATTAAAGTGAGCCAGAGTCAGCCCCAGCTGCTTGACCATCAAGGATGAGACCAGTTCAGTCAGCCCCACGCCCAAGATAATCCCAATCCCGGTTGCCAGAAGGCCAGTTACCAGGGTCTCAGCGAAGATCAGCTGGCCGATCTTGCCGCTTTTTGCCCCCAGCATCATGTACATGCCGTAGTCCCGCTTTCTCATGCTCAAGAGGAAGCTGTTGGCGTATGCCAAGTAGACCAGGGTTAAAATGGCCAAGAGGACGATCCCGAAGGAAAAAATAAACTTAGTTGCTCCCATGGTCAGCCGTCCCGCTACACTGGACTTTAAGAAAGACTGGTTAGCGGCCAGAGTCAAGAACATGTAGAAGGTCATGCTGGCGGCGCTAAGGCCGGAAAACAGTACCAGGTAGTCTTTTAGCCGGCTTTTCAGCCCGGTCATTGACAATTTAAAAATCATGTTAATCCCTTTCTTTACTCAACTAGTCGGTATTTTCGCTGAGCTGGCTGATCAGCTTCTTGTAAAAGTCCTGCCGCTTCAAGTCCCCGCGCTTGATCTCTTCATCAATCAAGCCATCCCTGATAAAGAGAATCCGGTCAGCAAATGATGCAGAAAACGGATCGTGAGTGACCATCAAGATTGAAACCTGGTCTTTCTCATTAAGCAGCTCCATCGTGTCCAGCAAGGCCCTGGAAGACTTAGAATCCAGGGCCCCTGTTGGTTCATCGGCCATCAAGATTGCCGGTTCATGAACCAAGGCTCTGGCAGCAGCAACTCTTTGCTTCTGCCCGCCGGAAATGGCTGCTGGGTACTTTTCCAAGACTTCGCTGATGTTGAGCTTAGCGGCGATCTTATCAACCTTAGAATCGATTTCTGAGCTCTTGACCCCTTGCAAAGACAAAGGGAGAGCAATGTTTTCCCTAGCGGTCAGGTTGTCCAAGAGGTTGAAGTCCTGGAAGATAAAGCCAATTTCTTTAGCCCGGAAGTCGGCCATCTGGTTCTTCTTCAGCTTGGCGACGTTTTTGCCGTTAATCGTAACCTCGCCGCTGCTTGGCTTGTCCAAGGTCGACATGATGTTCAAAAGAGTGGTCTTACCAGAACCGGAAGTCCCCATAATGGCGACGAATTCGCCCTTGGCTACGCTGAGCGAGACGCCCTTTAAGGCCTGGAACTGCTTCTCCCCTTTTTTACCGTAAGTCTTTGTAACGTTGTTGACAGTCATCACTTTTTCCATAGTTACCCCCTAAATCGTATTGGTGTATTACCGTTGCAATACACTAAATAATACTGGAGTCTTTAAGAATCGTCAATAGGAATTTTAGCGATTTGCAAAAAAGTTGTAACAAAAAACAGGCGAAGCTCTCCTTTAGTGGAAAAATTTCGTCTGTTTCAGGATTAGACGAAAAAAGCCACTGGAGCTGTTGCTTGCTTCAGTGGCTGTCTGGTCTTCAGTTTTCTTGGCTTTTCGGGTCGATAAACAGGATTCTGACCTTGCAGCGGATGATTTAATTTTCCCAGGTCATCCCCTTCCAGGGGGCAGACCGTAATCTGTTCGTAAGGAGGATTTAACTGCAGAGACAAGAGCTGCCCTACTTCGACTTCTTCAAGGTGCTTTTGCCGGCTTTTTCCGACAATATCTTCACCGTCTGTTTCTAAGAGCCAGCTTTCAATCTGCGGGATATCGGCTAAAACGGGTTCAGTCATTTTTTGATAGATGGCCAAAACCAGCTGGATGACTTGCCTTTTTTCATCGATGGACTTGATAAAGGCAAAAGGCTATTGCGCAAGGTTAGCTAGAGCAGCCCTAACCAGGTTCGCGATGCGCGGGTTAGGCAAATAGCCCAGGGTCTGCCAGTACATTGTCGCCATCATCTTTAAAGCTGACTTCCATTTCTGGTTGAAGCAGGTACCACTCCGGCGTGCACTTACTGCCTCTTAACTCAGCTCCTGCTTCATCTTTAGTACCTTATCTTCGATTTCTTTAATCACCTGCATAAAGGTCTCATCATCTTGTCCAGTTGGATCTTCTAATCCCCAATCTACCCGCTTTTTTGCAGGCAAATAAGGGCAGCGGACTCCGCAGCCCATGGTGATTACGTAATCAACCGCCGGCAGGTCAACGAGGGTCTTTGGTTTTTGCCCGTTGGCCAGCATATCGATGCCATAATGCTCTTTGATCAGCCGAACCGCGTCGGGGTTAACCTGATCTTTTAGATCCGTGCCGGCTGAATAGGATTCAAAGACATCCCCGGCCAGCTTTTTACCCAAGGCTTCGGCGATTTGACTCCGGCAGGAATTATGGGTGCAGATAAAGGCTACTTTTGCTTTGGTCATGATCTTCTCCTGTTATTTCTTCTCAAGCAGGCCCAGGCCGCTGATGGTAAGGTCACTGGAATCATTGACGAAAGAGAAAGTTGGGATGCTATCCATGCCTTCATCTAAGGCTTCCATCAAAATCATGGCAAAAAATTCAAACCAGCTGTCCGTTGGCACGTCATTCCTATCATCTTGTGGAGTCAGCCAGAATTTTGTTGCTGCTTCTCTCGTTTTAACATTAAGCGCCAGGCCTATTGCGGTATTATAGAAGTCAAAAGTGGCTTTGAAAGAATGAACATCTGTATCATTTATCTTAATGCCTAATTCCTCGGGGATCTCTGTTTCTGTGATCATCATTCTGCCCGTGATTTTACCGTATTTTTCTTCAAAATCTTGAATTGAGGCATGTTTCTTAAGTTCGGATTCTACCTCGTCAAACAAAGCTTCGTTTTCTAAACATACCAATTCCTTCCTAGCAAACTGTAACCGATTGCTTTGGTCTCTATTATAAACTAAAAGCAACATCCCCTGCACTAAATACAGATGAATGCTGCTAATGTAACTTAGTTATCTTTTCTAAAAATCGTTCTAAACAAGAATCTTACCGCAGGACCGCAGAGGAAGATTTGCCAGCCAATCGCCATTGGAAAGTTGATGACGGCAGTCTGCAGCCAGGTCCCGATGAAGCCAGCTGCTTGGAAGTTCTTGAAGAGCGCGGTTGCGATCAAGCTCATCGTTGGGCACATAAGGCAGATGGTGATTGAGCACCGGATCAAGATGATCAGCAAGATTGGCGTTTCAGGTGTAATCAGCCGCTGAGTCAAGTAAACGACAGGCTTTTCAAAGACGAACATCTCCAGGATGATTGCAACCGGCCACATGATCATCATTTCGCGGAAGGCGTCCAGTAAGACAGCATCCCTCATCCCCGCCGATGGTAAGAGCGATGTTGTAGCAGATCATGGCGTAGACCGTAACAAAGGCCATCATAACAGTAAAGACAAAATTTTCCAGTTTTGATTCTAGCATTAAAAAACTCCCTTCATGATTCACGTGTTGTTCGTTAATCATGAAGGGAGTGTGCGTTTCCAATCATAACCGTATTCAAATACAGTTAGTTATTTTAAAATAGAAAAAAATGATTGTGTAAGGACTTTTGATAAGATTTTCTGAAAAAGCGTTTGTATTTTTCAAGGGCCATATTAAGCAAAATCCTTTCCATATCTAAAATTACGTTAACTATTCTCTATATTTCATTTTGTTTCCGGGTCATTACCAAGACCGCCAGCAAGTAGAAAATAGCCCCAGTAACCAGCAGGACTGCTACTGATACCTATGCAGGCGCGATGTGGCCGTTATAGACGAAGACAATCCCAAACATTTCCCTGATCTCTTTTAGTACACTCGCCGGCTGATTAGCAAAGTTTGCTTTAGTTGCCGGCTTCATCAAAAGCTGCCGGTAAAGTACCGCTGAATGAGCACATGGGAAGTACTTTACCAGCCATTGAACGTTGTCTGGCAAGCTGCCGATTGGAATGTATGCCCCAACCAAAAAGCCGATCAAGGTCCCAACTATCGTGCTTGCAGCTGAGTAGGAGCTGTTGGTCTTCAAGAAAGAAATTATGTAAAGAAGCAATCGCCGATGATGCAAAGGATGATAAGACAATTACAGCAAATAGCTTTAGTAAAGTCTCTATATCCAGTACTGCCCCGCCGGCCAGACCAAGGTAGATTTCCCCAAAAATTAAGGTAAAAATGGACATGATGATGCTTGATGATGAAGCCGGTCACGATATAGCCGCGCGCGACCTGTCTTCTGCTGACCGGAGATGAGTAAAAGTCCTTGATCGCCTTATTCTCCCGGTCGTTGATCATTACCCCATATGCTCCTAAACTCGTAGTGATCGACGCCGAAGCCAGCATCACTGCTAGCATCCAAGCCCGCATCAAGCGATTGGGATGCGGCAGAAACTTTAGCCCGCTATTCACCGAATCACCAATGAATAAGATGTAGAGGGCAAAAATGATAATGACACTCAGCATTGAGAAGAATACTGAAGCTTTGTCTCTAATGCAAAGGAGATGTCATTGACGACTTTCAAGTCCCCATAGAACTTAGATAGGTTTCTAACCTCAATAGCATTCTTCACTATTTTGTAACCCTTTTCTGTTTATCTTTCTAAGTTAATTCTACATCTTTTAATATTTTCTTGGGTTAAATCTAGGTAAGATGCAAAAATAGGCGGCTAAGTTGCAAAAAGCTGGAATAAGAAAAGGCCACGCTGGTTAGGCGTGACCCTTTAGGTGAAATTCACGCTTCGATTCGTCCAGACATTTTTATTCCAAGCATAACCAAGTACACGGTGGAAGAGCTGACGACAATCATTAACGATGACCAGAAAGCAGTTTTTGTCGCGGTTGACGAAGATGATCAAGTGCTCGGCTATGCATTCACTCAGCTGCAAGAGCAGCCTTTTTCAACCAATATGGTTCAGTTTAAGTCACTCTTTATCGATGACCTCTGTATTGACAGCACCCAGCGCTCCCAAGGCGTGGGCCGGGCCCTGCTTGATTATGTCAAAGCTGAAGCCAAAAGACTGGGATACTATGAAGTGACGCTTAATGTATGGGAGGGCAATGATTCTGCCATAAACTTCTATAAGAAGAATGGCTTGAAGGTCAAAGAAACAAATATGGAATTTATTTTGTAAGCAAAAACCGATCTCAAATTCTGAGACCGGTTTTTAATTCCAGCAAATCACTTTACATAACAAAGTTTATGTAGATATGTTTACTCAAAAATGTATAGTGCTGATAAAGCGACTCTGTTGCTCTTAAAAAGTTAAAGATGATCACCTGCACATTTAAGCGCAATAGAACTCGCTTCTTAAAAAGATGTATTTTATCCCAAACGGAAAGACTTCAAATCTTCTTCCATGCTTTCGTCTTCCAAGCCAATATATCTCAGAGTAGTGGTTGGGCTGCTGTGGTTCAGCATCTTCTGCAGCTTGTACAAGGCCCGGGGATCTGGATCACCTGCTGGGGTTGTCGCGCTCTTGATGTAGTGGTAGCCAAAAGTTTTTCTTAAGGTGTGGGTACCAACTGTACTGGGATCAATCTCGCACTGCCGGGCGGCCCGCTTCAAATCTTTATAGAATGACTTTCCTTCAATATGCCCCTCCCCTTTTCTAGAAGGGAAGAGCCAGTCACTTGGCTTCAGCTGCATCTGGTCAATGTAATTTTCCAAGTCCTGGCTGATATTGCCAATATAGGCATGCCGGTTCTTGTGGGTCTTGGTTTCAACCAGGTTGTACCATTCCCCGTCTTCAATGTCTGAGACTTTGGCCTTGACGATGTCGGAGATCCGGAGACCCGTATTGATTCCAAAGACAAAAATCATAGCATTCCGCAGACCATTCCTGTTTTGTCCAGTAACTGTCCCGGTCCCAAACTGGAGGGCCCGCTTCATAGCGTTAATCTCCTTTGCAGTTTTCAGCGGCCTGATATTTCTGCTGCTCTCTGTTTTTTTAACTTTTCGGCCCATTTTGCTAGCAAAATCCTCCCCTCATTGAATGCGTCTTTATGCATTTATTCTAGCACAAAGGTGCATTGAAGCGGCAAAATTGTTAAAAAATCCGTCCTAACTAATCAAGATTCGAATGCGTAAAAATGCTTATTTCTACGCATTCGGTAAAAAAACGATTTTTCGCCAAAAATGCTGAGAAGAGCTCTCATTTGCGCGCAAATTTTTTGAGATGATTACTTGCCCTTTTTTCGCAAATCAGGTTAAAAAGAGTCACGCAAAGTTTCAACTAAAAAGCAGCATCCCCTCACGAAAAATTCTGCAGGGATGCTGCTTAGTAGCTATTCAATTTTATCTACTTCGGTAGCATATACTTAGTGCCTCTGCCTTCCCCGACTTTGATTAGGTAGCCTTTCTTTACCAAAGAGTTTATCAACCGCAAGCTTTTGGTTTTGCCAAAGCCGACCACTTCATTTATCTTGCTTGTAGTTTCGTTTCCAGATTGAACAGCTTGATAAATTTTGCCTTCATCCTCAGAAAGATTGACTGACACCGATTGAAAAAGCGGCAAAATGATCACGATTGAGTTCTCAAAGATTTTAAATTTAGGTTGAATAACGCTGCCTTGATAGCTACTGATAATTCTGCGAATTCCCATGCCAAATTGTTCAATTAAGCCTAAACGGTAAAAGAGATTAGCCAAAATCGGGTTGCGCAGTATTGAAATTTGCCCTAAGAGATACTCCTCTTTGCTCAAGCCGCCGGGTGAGACAATTTCAATTCTGTCATCAAACATTGAAATTTTGATTTGAGAATTCACGTCCCAAGTCCGATGGACCAAGGCATAGCAACTGCTTCTCTGAAAGCTTCCTCGGGTATCTCTGCTACCAGTTCCAGTTCCCTGTTAATGCCCTTGATTTCTTTATATTGGTAATACTGTGATACATGTCAATGGAGAAATTGTATTGGTCTAAAACAGAAATACCTTCATAGTCTTTTCGATCCAGCATGATATTAAGATTTGCTCCGAAACGAACCAAATTGATACCACGAAAATGGTTGTGATCAGCCAAAAGTGCACCAGCTGGAGCGAAAAAACGATAGATTATCTTTTCAATCATATTTGCGCTCGTTTTGGAGCGATTTTTCGAGCAAAAGTGATCGCAAACGCGATGGATTATTTTTTCGATCGCTTTTACGCTCCTTTTGCGATTGAAAACAGCCGCAAATTCAAAAGCAGCATCCCCTCACGCGAAAAAACGTGCATGGATACTGCTTATTTGCTCATAAATCCAACTTGGCAGAATACTTGATGATTACCGATCCGTCATGACCTGAAACGGAACTGCTGAAGTCTTCCTGGTAAAAAGGCGGGACAACTTTTGCCTTGCTTCTTAAATATTCCAGTGCCTTCGGTCCATTGCCAGCAACATCGTCGTTCTCAATTTCCTGGTAAAAGCAGGCATACTTTCCAGCCGCTTTGACGTAATTGCCCTTTTTTCTTTCCACTACTTTAAAAAAGTGGCTGATTTCTGCCTTTTCAAAGTCATCGACGATCACCCCATATCTAGGCCCGAAGCTGATTGGATTCAGCGAAACACCATGCCTAAAAGGACTGACTTCCAGGTATTCTTCCGGGCAAGTCTCAACCGCCACTTTTTTAAACCAGTCTGCTTCAAGTCACTGATTCTCTGGTCAAAAAATTCTAAGCTGGACTTGATCTTCCCCAGCTCAGCCATCTCTCTTTCGACTGCTTCCTGCTGCTTGCCTAAATACTTCTGCCGTTCATTCAAATCCTTTAAGGCGAAAAAGTCCCCAACCTCCTGCAGGCTGCTGCCCAATTTCTCCAGCAGGCGGATCGTGGCAACTTGGTCCACCTGTTCCAGCCGGTAGTAGCGGTAGCCATTATCTTTGACAACTGCCGGCTTCAGGAGCCCTTTTGCTTCATAGACATAAAGTGCTTTCTTGGTGACAGCACACATTTTGGCAAAATCCCCGGTCTTAATTAATTCCTCGTTCATGTCAATCTCTTTCCTTACTAAAACTCTCCAGCCCTTGACTGTTCCCTTAGGGCATAGTTTACCCTAAAGGTATGCAGGGCCTTCAGCCTGCCCATGATCAGCGAGCTGTTTGTCCAGCAGCTCTACAGCGTCATCGACATGGCCATCATCGGCCGCTATCTGGGAGCCAGGGAATTAGGCGCCGTGGGCAACGCAGCCAATATCATCATGCTTTTCCTGGTTGTCTCCGGCGGCTTTGAAATGGCGGTTGACGTCATGGTCTGGCTGTTAGGTGCCAGTAAAAATAAAGAGAAGGCCGCCATGGCCCGGGACACCCTCTTTCTCAGTGCTATTAGCGGTCTGGTCTTAGTGGTAATTGCCTGGATTTCCCTGCCTGCCCTTTATAAGGCAGTGTCTTTACCGGAAAACATGATGGGGGATGCCCTCCTCTATGGCCGGGTCTACCTCTTTGCCCTGCCAATCATCTACATCTATGACGTTGGCCGGACCATCTTGATCTCCAATGAGCGGGCCAAAATCTCCTTCTATCTCTTGGCAACTTCCAGCATCTTAAACCTACTATTAAATCTTCTTTTCATTCTCGTCTTGCAGCTGGGCGTATTAGGTTCAGCCCTGGGCACGGTTTTAGCTCAAGGGATCACCATGCTGGTCACCCTCTACCTTTTGGCAAAAATGGACCGGCAGGAAGAAGAGCCTGTCTCCCTTAAGCCTGACCTCTCCTGGACAAAAATTAAGTCCATCCTTCATATAGCCCTGCCAACCATCTTCCAGCAATTCGTGATCACCTTCGGCGCAACATTGGTTCAGGCCTGGGTCAATCCCTTTGGCCAGGAGGCAATCTTGGGCTATGTCGCTATCGTCAAGGTCATGAACCTGGCCCGGATCGTCCTGGTTGGCTTTGCCCAGACGTTAACTCTGATGACGGCTCAGTTATTGGCGGTAAAAACGTACTCAGCTGTTAAAGCAGTTTACCGCTACTGCAGCAATGTCTCCCTCATCTACTGGCTGGTCAGCTCAGCCCTGTCGGTCATCTTCTGTCAGCTATTGGCAGGCATGTTCTTTGATCCAGGCCAAAACCAGGCAGCTTACTCCTTCTTCAGAGTTTATCTCTATGCTTTTGTCGGCATCCAGCTTTTCTCCATCTTCAAGTTCTTGAATGAAGGCCTGCTCAGAAGCATGGTTTTGATGAAGGAATACCTCTACTGCAACTTGGGTGAATTAGCCCTTAAGCTAGCCGCTACCGGGCTGCTTTTAACGCTTCTTCAGACTAATGCTTTCTGGAGCGCAGAACTGGGAGCCAGAATCATCTGCTTCTTGGGCTCAACCATCTTGGTTATTAAAGAAATGCAAGCTTTAGAAGCAATAGAAAAAGCCGGTTAATACCGGCTTTTTATCTTCAGTCATAAATGTAGTAAAGAAAGAAGATTACCGGGCCCGGCGGTCGTTCTCGGCTTTCTTGTAGAATTCTTCCTTGGATTTGCGCATGGCCTTGTCTGCCTAGTAGAGCAGGTCACTGACATTTAAGTGGTCGGCCTTTGCCTGCTTGATCCCGATTGAAACGTGGTAGCATTGCTTTTTCAAGTTAGAAAGTATCTCTTTGCTTGAACTTTGTCCAAGCGCTCGTCTAAGGCAATTGCTAAAAACTCATCCCCGCCAAAGCGGAAAGACATGTCTTGCCCGAAGCTTTTGGCTAATTCACTAGCCAGGGCAATCAGCATCCGGTCCCCGGCTTCATGGCCAAACTTGCTGTTGGTTTCGTGCAGGCCATTGACGTCGCAGAAGACATAAGTAACGCTCTCTTGAGCGGCTTGCAAAAAATTATTAATCTCGTGTTGGTAATAGTTGCGGTTTCTGATCTGGCATGTGTTTTACCTCAGTCAAAAGTATAGCATAGAAGCGGAAAGCTTTTTAATTTAAATATCATTTTAATAATGAAAAAGCGAATATTCGTGATTATCCAGACAAATCAAGCTTTCACCTAGATAAATCAACGATTACCAACTAAATGAATATAAAATATGCAGCTTTCTTAATGAAAATCAAGAAAACTACTTACAAGCCTTGCATCTATCCTTTACACTATTGAAGAAACAGAAAGGAAGCAGCAAAAATGGCCGCATTTATGAACATTAACCCAGATATCTGCCTAGCTTCATTCGCTGTTCCTTTTCCATTTTTTCAAATTATTAATATTTCATCACTTAAGACATGTCACTCGTTGATATGTCTTTTTTTATAGGAGTCAAACAATCATGAAAGCGCGTTTAATACTGGAAGATGGACACGTTTTTGAAGGCGAAAGCTTCGGCGCGGTCCATGACGTTATCAGCGAATTCGTCTTCAACACGGCGATGACTGGTTATGTGGAAGTCTTGACCGACCCGTCATATGCCGGTCAAAGCGTAGTCATGACCTATCCCCTGATCGGCAACTACGGCGTTCCCCTGGATGACCAGGAAGCCGCTCACCCCTTTGTCGAAGCCTTTGTAGTAAGCGAGCTTTCCCGGCTGGGGTCCAATTTCCGCATGAACATGAGTCTGAACGACTACATGATTGAAAACAACATCCCCGGCATCCAAGGCGTCGACACCCGGGCCATCACCCGGATCCTGCGCAAAGAAGGCTGCATGAACGGGATGATCACTACTAAGGATTACGAAGTCAGCGAAGTAATTGACCAGATCAAGGCCTTCAAGATCCAAGGGGTCGTTGAAAAGTGCAGCTGTCTTGAGCCCTACCATGTCGGTCAAGGTGACTACGAAGTTGCCCTCTACGACTTCGGTGCCAAGCGCAATATCGCCAGAGAACTGGCCAAAAGAGGCTGCCATATCACAGTCCTGCCGGCTGACACCCCGGCCCAATATGTCATAGACCACAACTTCGATGGGATCATGCTTTCAAACGGCCCCGGCGACCCGAGTGAATGCACGGAAATCATTGACCAGCTGAAAATTCTTGCTTCTTCCGGCATCCCGATCTTCGCCATCTGCCTGGGCCACCAGCTTTTAGCCTTAGCCCACGGCTTTGAGACGGAAAAAATGGTCTACGGCCACCACGACAGCAATCACCCAGTCAAGGATCTGACCACTGGCCGGGTCTACATCTCCACGCAAAACCACAACTATGTGATCAAGGAAGACACGATTGATCCAAAGCAAGCCAAGGTCTGGTTCAAGAACGTCAACGACAAGACGATCGAAGGACTGGAATACTTAAAGGAAAACATCAAGTCCGTCCAGTTCCACCCGGAAGCCTGCGGCGGCCCGCACGACACGGAATACCTCTTTGACAGCTTTATTGAAATGATGGGAGAACACAAGAATGCCTAAGCGCGACGATATCAAAAAAGTTTTAGTGATTGGTTCCGGACCGATCATCATTGGCCAGGCCGCTGAATTCGACTATGCCGGGACCCAGGCCTGCCGGGCCCTCAGAGAAGAAGGCATCGAAGTTGTCCTGATCAACTCCAACCCGGCCACGATCATGACTGACGGCGACATGGCTGACCACGTCTACATCGAACCTTTGACTGTGCCAGTCGTCAAGCAATTGATAGAAAAAGAAAAGCCAAGAACTGCATGAAATCTGCTCTAACGGCCTCCGCCTCTCCCGAGTTACTGAATGTTTGATTGAACAATCAATCGCCGGCTGGAAGGAAGTTGAATACGAAGTCATGCGCGATGGTGCCGGCAACTGCATCACCGTCTGCAACATGGAAAACATGGACCCGGTCGGTGTCCACACCGGTGACAGTATCGTGGTAGCGCCATCTCAAACCTTGTCAGACAAGGACTACCAGATGCTCCGCTCCTCTGCCCTCAACATCATCACTGCCTTGAACATCAAGGGCGGCTGCAATGTCCAGTTTGCCCTCAACCCAGACTCCTTTGAATACTGCGTCATTGAAGTCAACCCTCGTGTTTCCCGGTCTTCTGCCCTGGCCTCAAAAGCAACTGGCTACCCTATCGCCAAGCTTGCTACCAAGATTGCTTTGGGCTACAACTTGGATGAAATCGTCAACGCCGTAACGGGCAAGACCTACGCTTCTTACGAACCAACCCTTGACTACATCGTCTGCAAGATTCCTAAGTGGCCTTTTGACAAATTCTACGACGCTTCCCGCAAGCTGGGCACCCAAATGAAGGCAACCGGGGAAGTCATGGCTATCTGCAACAACTTCGAAGGTGCCTTCATGAAAGCCCTCCGGTCCCTGGAACAAGACAGCTACTACCTTTATAATGAAGAAATTGCCCAGCTGTCAGCTGATGATCTCCGTAAAGACCTCCGCAAGATTGACGACAAGCGGGCCTTCAGAATTGCCGAAGCCTTGCGAAAGGGCGTCTCCATCCGGGAAATTCATGCCATTACCAAGATCGACGTCTGGTTCATTGACAAGATCAAGCACCTGGTTGAAATTGAAGACCGCCTCAAGAGCGAAGAACTGACGCCAGATCTTTTGAAACTGGCCAAGCACTGCGAATTCCCAGACCGGGTTATCGCCAGCTTAACCGGCAAGACGGCTGATGAAGTTTACTACCTCAGAAAGGGCTTGAAGATCACGGCTGCCTTCAAAACGGTCGACACCTGCGCGGCTGAATTTGACGCCGAAACGCCATACTTCTACAGCGTTTATGGCGGTGAACATGAAATCCAGCCAGACCGGTCCAAGAAAAAGGTGATTGTCTTTGGCTCCGGCCCAATCAGAATCGGCCAAGGGATTGAGTTTGACTACTGCTGCGTGCACAGTGTCTGGACCCTGAAGGAAGCTGGCTACGAAACCATCATCGTCAACAACAACCCGGAAACTGTCTCAACTGACTTTGACATCGCCGACCGCCTCTACTTTGAACCATTAACGGCAGAAGACGTGCAGAGCAGCCAGACGGGGCCATCGTCCAATTCGGCGGACAAACCGCGATTAAGCTCTCCCAGGACTTGATGAAGATGGGCGTGCCGAATCCTTGGTACCTCTGCCGACAGTGTTGACGCGGCTGAAGACCGGGAAAGATTTGACGAGATTTTGGAAAAGTGCCAGATCGACCGGCCGAACGGGCAAACCGTCTTTACGGCTGAAGAATGAGCTGGGTTACCCGGTTTTGGTCCGTCCTTCCTACGTTTTAGGTGGGGCCGGAATGGAAATCGCCTTAAACGACGGCGACCTCAAGCGCTTTATCGACCACATCACCTCCCAGTTTAACATTGAAGACCACCCGATCTTGATCGACAAGTACCTGGCCGGCAAGGAATGTGAAGTTGACGCCATCTGCGATGATGAAGGCATCTTGATTCCTGGGATCATGGAACACGTAGAAAGAGCTGGTGTCCACTCTGGTGACTCAATCTCCATCTACCCGCCGCAAAAGATCTCCCAGGAGATGAAGGAACGAATCGTAGAATACTCCAAGCGCCTGGCCAAGGCCTTGAAGGTCAAGGGGTTGATGAACATCCAGTTTATCGTTTACGAAAACAAAGTTTACGTGATCGAAGTCAACCCCCGCTCTTCCAGAACCATACCTTATATCTCCAAAGTGACCGGGATTCCGCTTGTTGACGTGGCAACCAACGTCATCATTGGCAAGTCCATCAAGGAGCAAGGCTATGACTACGGCCTTGCTCCGGAAAAGAAGACAGTTGCCGTCAAGATGCCAGTCTTCTCCTTTGAAAAGATTACCGGGGCGGAAATTGCCTTGGGGCCGGAAATGAAGTCAACCGGTGAAGTTCTGGGGATTTCTGAAGACGTTGAAGAAGCCATGTACAAGGCCTTTATGGGGACTGGGCTGGACCTGCCTAAGCACAAGAAGGTTATCTGCACGGTCAAGGATTCGGCTAAGGCAGAATTTTTGCCAATCGCCAAGGAATACCACGACTTCGGCTACGACCTGTACGCGACCCAAGGGACATACGACTTCTTGCAGAGTCATGGCATCCCTGCCCGCCTGGTCAACCGGATCAATGACAAGGAGAACACCATCTTTGACTTAATCTTAACGGAAACGGTCGACCTGGTCATCGACATCCCAACCAGAAACAACAACTTGAAGGACGGCTTCCTGATCCGCCGCTTTGCCGTAGAAGCCGGCGTGCCTATCTACACTTCCCTTGATACGGCGCGGGCCTTGATCTACGCCCTGGAAGCTAAGCACGACAACAAGCTCTCCTTGGTCGACATCACCAAGCTGTATAAACTGTATTCATCAATACTCAATAGTTTTAAACGTCAGCATTTGCTGGCGTTTTTCTTTGAAAAAGTTTCTAGATTTCCACTTGTAATAACTTAGCACATTAATCGTCGGGCCTACTGCGGCCGGCTAGACCACCCTGGTCAAGCTCTTGATGCGCTTTTACGAGTTAAACTGCGGGAAGATCACGATTGGCGGCCAGGATATAAGCAAGATGAAGTGGTCTGATTTATGGCCCATGTTTGGGATGGACCGGCTGATGCAGGGGCGGACGGCTTTTGTTATCGCCCACAGCTTGTCAACGATCAGGGATGCAGACAGTATCATCGTCTTGAAGGACGGGGATATCGTTGAAGTTGGCAACCATGACAGCTTTATGGCAAAGAAAGCCTTTTACGCCGATCTTTACCAGTCACAGTTTGAACATGGTGAAGAATAAGAAAAATGCAAATCATTTTGGATACATTAAAAGCCACCAAGCTTAAACTTGGTGGCTTTTGCTATTTCACGCTTCTGGTCGCGATAAAAGTCGGGATATTCAATTCGTGCAGGCGGCCTTCGCCGTTGGTATCTTCATAGAGATTGGTTAAAGTAAAGCCAGCCTCCAGCTGGCCGCCGATCTGTTCCTCCAAGGTATGAGAGAACTGGACGCCAAAATCATCTTTTTCCAGCTGCTGCATCTGGTCAGGATTTTTCAGCGGATTAAAAGGCAAAGAGTTGACGACATACTTTTCATCTTCACTGTCAAACAGGTAGTTGATCCCGTTGTCCAGGCCAACCAGGAGTACCCCACCCTTTTTCAAAACCCGGTAGCATTCTTTCCAGATCGGCTTAACTTTTTCAACGTAGCTGTTGGCAACTGACTGGATAATCATGTCAAAGCTTTCGTCAGCAAAAGGCAAAGGCTGGGTCATGTCGGCTTTGACAATGTCGATATCGTAGCCTTCGCGCTCTGCAACCAGGCGCTCGCTTTCCAGCTGCTGGTCAGAATATAGTCCAGGACTGTGCATTTTGCCCCCAAGGCAGTCAAGATTGGCATCTGCTGGCCACCCCCGCTGGCTAGGCCAAGGACTTTTTGGCCGTGTAAGTCACCAAACCAGCTGTGCGGGACATACTTAACCGGGGTCAACTTGATCTCCCACTTCCCTTCTATAGCAGCTTGGAAGGGAAGTGGTCAATTGCCTTGCCCCATTCCCAGCCTTCTTTGACCCAGCGGTCGATCGTTTCAGCGTTTATATCTTGATAGTTCATAATTGTTTTTAGCCAGCCATGGAAGTAGACACCATCATAAAAATTGTATTTTCCCTTGCTTTGGCAAACTAAACTTATCTTCTGCACTTTACCATCTCCATCTTTTTACAGATCCGCTATCATCAAGCTATTTTAATAATAGCACTATTTGGAGACAGTCTAGTCCATTTCGTATAAGCCGCCAGCAATTTTTCGCTCCAAAAAAGCTGCATCCCCTCCAAAAGTGGGATGCAGCTTTTTCCAAACTACAATTCAATCTCTATCCGTGCAGCTTCCTTCAAGAGCTTCAGCGGGTACGGCAGCACTGTTAAGTCCTTGTATTTGACAAAAGTCACCTCTGTCATCTTCAACATCCGGTAGATCTTCTCAGCATCTTCTTCAAGAATATCACCCGAGAAACTGTTAATTATCCGCACAACTGATCCCTTGTCAATCGTCGTCTGCATCCCCCTGCCAATTTTACCAACGTTATACTTAACGCGGCCATTCTCAAGCCAGTGGTTTTCATAAACTATACCTGACATATACTCATCCAAGCCCGTCTTATTCCGATAGTATCTAAATTCTGGATCTTCGATCGTCTTATAGTACAGACTCTTGTTTGGCATGGTTCTAAGTTCGCTCTGTTTGATGCCGTAAAGTTCTCCGTCAATCCGGGCTAAGAGTTCATAATCGCTTGTCATTCTGCCCTTCTTGTCTTCCCAGAGCAAACCGTGCTCTATAAATGGATTGTTTTCTGAGAGTGGGTCAAGCAGCTGGTTGCTTTTTGCCAGTTCAAAAGTCTCTTCATCCTTGAACTTCAGTGACCAGCAAGTTCCCGTTCCCTTCTCCCAATAGTGAAATTCAGCATTCGGCATCCCTTTGACCTGCAATGGTTTGACCGTCCGATTGACAACACAGTACTTTACCAGTAATTCCTTAAGCGAATTGTCCAGTGCTGACTTGCCCTTAATCTGCCCGTTTTTCTTTAAACAATTGTCTTGGTAGATGTGCTGAATCAGACACTTGCTGTTGCTTCTTTGATATGGGTCCTTGCCATTATAATCTTTTGGTGGAAGCACAACCACGATATTAAAGCCTTCTTTTACTTGCTCAATGCAAGTAGCTTCAGCAGTCTTATCAGCGAAATACTCTGCAACCGGAGCCAAATCGAGCTCTTTTCTCGTTTGGTCAACGAGATGCACTTTCTTGTCCTTGAAAAAGTCGGCTACAGCTCTTGTTACCCTTTTATTCAATTTCATGCTGGTTTCTTCGGCCGAGATGGTCTTGGCTTTGACTTCTTTAAAGGAAAGCTTGCTGACATAGCCTGTTCCTTCGTAACAACTGTTAAAACTGCTTAACAGTTGATAAGCAAAGCCATATTTTGAATGGTCAAACGGGGTATTTTTGTCCAGGGCGAAATTCTTCATCGCCCCGTCAATAGCCTTAGGCTTCTCATTTTTATAAAGTGGAGCTTTCAGGTAGCAGTCATCTGTCATCTTCCGGCACTGCCGGATCGTCATGTCGTCCAGGTTGATCCAATAAAAAGGACCCGTCAGCAAATTGCGCTCAGCTAACTTATCCTTGAATTCTTCTCCGTACTTTTCCTTGAAAAGCTTAACCTGGGTAAACAAGGAATTCGCGATGTACATAGTTTTAGATTGCTCGTCAAAGTACAAGTGGAAGAGGACAACTTGCCCCCTTCTACTGAACTGGCCGCCCTTCCTATCTTTGCCTTGATTGATATCCTTAATATAGAAAAACAAGTCTCCCAGCAGATTGCAGCGCTCTATTTTTCCCTTCTGGTTCAGCTGCGTGGCAAAAGGGACATTCATTGTCAAAAGCTTGATAGCAGTTATATCACTAATCTGCTCTTTACCCGTCACGGCAGCCGCCGGCGTAAGATTGCTCCTCTTGAAGACTGGGTAGTTTCTCAGCTTGGCTTCAGTCAGCCCGTTGCTTTTAGCCGTCATAACATAAATCCGGCTCTTCCACTCATCCCCGATGTGCACTTTTTGATAGCAAACCAGCAGCTTTCCTTTTGAACTTTCAACCAAATCATTGAGCAGAAACTTTGACGGATAAGCCGCCTTATTGTCTTCATCAAGGCAGTCCATGAAAAAGATGTCATAGTCAGCCAAGATCTTGTCCAGATACACCTCACCAACCAGCTCGTTAGTAGTGATCAGATTTTCTTTATTCGCCATTTTCTAAAACACCTTTCTAAAATCTCTGACAAGCTTCTGGTTGAGCTCGCCCTTTTCATCAAATAAGTATGGATATAGGTAAACCTTTTTATCTGCAAGTCCGCCGGCTATTTGAATTGCCTGCATCTGTTTATTGGACCACTTTGAGATATTGATAATAATGGCTGATTTACCCATTTCCACCATGCCTAACTTTCTCTTTATCCATCTAACCGTTTGGTCATTATCGCCTGAAGGAGCGTCTGTGTTGTAATTCTTCCAGTCAACATAGACTATCCGGCCATCATCAGCTTTAAGGTAGCCATCAAAGCGCTCCATCTCACTATTCGGCAGGTCTGCCATGTCGTGGTAATCAAAGCCCAAATGCTTCATCACCGCTTCCCCAATCGCTTCACCTATCGCGCCCTTGTACAGATTGTTAAAAGCGCCAGGCGTCAGCAAGTAACGGCTTGGCTTGAAGGACAGGTCATAGCCAGCTCTTTCCAGCTCCCGCTTTAGCCAAGGCTGCTGCTTCCATATTCTTTCAAGAGCTTGCTTGTACTCTTCATAATCCATATACTGGGGCTGAAACGAGGGCTTGATCCCGGCTTCGGCCATCTGCCGCTTGACATCATCTCGGTCTTCACCGATTGCGATCAAGCGCTTATAGTCACCTTCCACATAGTAGTAATATCCGGAAACCGGGTGGCCGAAATCCCAATAGTAATTGGGAACTATTTTGGCTAATTTCCCGTCTTCCACTTCAACCAGTGAGTCAAGCTGAGGATGCTTGGCAATAAACGTCCGCAACTTGATCCACAGTTGCTGCATGTCATCTGGCATAGAGACGAGCTGAAGGGCAACCTGCACCAAATAGCCCATCGCGTTGCTGGCCATCAGCTTTTTAAGTTTCAGCTCTTTTTCTTCCGTTTGATTCGGCAGAAGCCGCAAGCCTGGATCGGAAGCCATGATTGCTTCCATAACCGCGTTGGTCCGTTTCCTATCTACCTGCGATCGGTTTAGGCAAGAAGCAATTTCTTTATCCAAGATGACAAACATGCTTTCCGGCTTAACAACAGTTCTGACCATTCTCCCGCTGGTCTGGTCAATCTGGCTAGTATAGGCATTGTCTCTTGCTTGAATCTGGTAAAAAGGATTCTTCTCACGCTTAAGCGGATATCCCTGGTAGTAAGCAGTCAGCAGCCGCTCGCTATCTGCATAAGTAAAGCCTGGTGTACCCAGATTTATCAAGCCATCACATGTATAAATCAATTGGAGATAGCCCTTTATAAATTCATCTTCAAATTGCTTCCTGTCTCTATCGGCATTGTTTTTAGGTATAAGGTGCGTCGGCTGCTCCATATAGCAACCGTTAATGTCCACAAACGGATTGTCCTTATTGAAAAAACGGTCATCCAAAACGACGTAGTCCTCTGGATACTTTGCAAGCAAGGCTTTAGCCGGGTATTGCAGGTTAACCGCCCGGCTCATGGTTGAATAAGAGGTCAAGATAATTTTCAACTTGCCCTGTGCCCAGTCAGCCTTGACCCTTTCAAGTTGCTTTTCTGGATCATCTTTTGCACTGATGCAAACCAAAGCCTTATCCTGGTCTAAATAGCCAAGTTTCTTCAAGGCTGTCTCATACCATTTAGCTTCCGCCTCTCTGATATTGCGGTTAGTGTAGGCAATAAAGGCGACCCTGCTTGGGCGTTCCCGGTTCTTTTGGCAAAAAGCTGCCAGCGCCTTAAGCAATTTGAGATTTCTCCCGAAGTAATAGCAGGCAGTCCTAATTGTCACTTTTTGCGTGATTTTTTCATTGGATTCCGGCTTATATTGCCAGTTAAAGTCATACCTTATTCCTGCAAGAGCTGACGGCATCTCCGAAATCAGATCGCTTATCTCTGGGTAAGATAATTGACTGTCTGGGAAGGAAGCTTTGAAGACATCACGCAATTTAGCACCAGGTGCCGGCTTTATCCATTGAACATTGATTTTGCCCTTGTCCCTTTGGGCCTTATTCCGCTCTTCATTCTCTTGATTTAAAAGTTGCTCGATTTTCTTAGGCAAATGGTAAACATATGGGATGTTGTTGTAGACCCAGTCTAAACCGAAATTGCTGAAGATTGACTCTGTCTCAGCCGTCGCGGAAACCAGGATCACCCGCCACTGGCTGGCTAAAGTCGCCAGCAGAAGCTCTGGAGTCCACTTTTGCGCGTAACGGGAGACTTCAGCATTTGTTCTCTTGTTCCGGTTAGATTCCAAAATGTGCACGGTAAATCCTTTGCCAAAAATTGAGTTGTCGCTGGTCAAGTTTGCGGCAATCCCCGTTTGATGGCGCTGCGGTGAGTCCCGCATATACGTCTCTAGCAGGTAATTTACCAGTGCCTCGTCTTTATCTTCGATACCTAAAAGCGACCGCAAGACAAAGCGCTGTTCATCCTCCAAGTCCATCTCATCTCTGTATTTCTTTTTGCCATTTGCTTCCTGGTGGCGATTGATCTCTTTGATTCTTGACTGAACATTTTTCGCCATGGAGTAGCTGTTCCTGACAAAGGAAGAGATATTCTGGTTTAAGTCCTCCAGCATTCTATCCAGGCGAATTGCCTGCTTGCTGCTTTTCTTTTTCTCAAGTACATTGACAAAAAGCTTTCCTTTCGCGCCGGCAAGGCTGAAAGGATCGGGCTTGTATTCAATATAGAGCTGGTCGTTGATGTTCAAATAATCTGATTCACCATCATTAATCAAGAATTTTTTAGCGAGTTCATCCTCACTCAAGCTTTCGCCAATGACCAAGTCAGCTTCAAGGTGGTATTTATTTGAAAGATCATGAAACTTCTTGCTGGCAGATTTAATTCTGCCGCGGTTGTCTCCGGCTGCGAGAATTATTTCATTTGCTTTATTGAAGCTTGGTTCCAGGGCAGAGTTGATTTTCTTGGCCAAAGTATAAAGGTCAAAGTGCTCCTGCTTTTGCCCCAGCATGCTTTCCAGCCAATTCTGGTGAATCTTGTCTGACTCATCCAAGATCAGATTTACTAATGTTTTCTCTTTACCTGCGGGCTTCTTCTGATTAAAATTCAGTCGCCAATAGTATTTGTTACTTCCCGCCAAGTCTTTGTAGCGGTAAATAAACTTGTTCGCTGCCATTACTAAGATTTTCTTATTTGCCAAATCATAATCGGGAAACATTATTTGGTACCAAGGCAAGTCGCGGAAAACGGTCGCCTTCATCCGGGCCTTCCGCTCCGCTGGACTCAAATCTTGCTCTTCTTCATCAACAATGGCATAGGCATCTGTCCGGATCATAGATTTGATCTGGCTGAAATTCTTTCGATCATCTTCTATTTCTTCCTCGCTTTGCAAATCAGAGAAAAGCAAGATTGACTGCAGGAGGCCGAAAATATGCCGGGTATTAGGATAGTTATCCGGTATGCTTTCTTCCCGCCAAGCCTTATACAGCTTCTTACGGTCCAACCGTCCAATCACTCTTTCTTCTTGTCTAACAAAGACATGCTCTTCGAAGAAGTCTGTAACTTGATCCTGCTCAGAAAGCACATTGACCAGGATTTCTTCAGGATTCTTGCCGAGTTTGAGGAGTAAGTCCCGGCAGCCTGCGTATACCTCATCCCTGTCCTTGCGCAAAGGGGTCAAGTAAAAGGTTACCTGCTGGTCGTTTACCGCCCGGTTGACGATCGCCCGAACAGTACCATACGTTTTCCCAAGGCCAGTTGACTGCTGCAGAATGCTAAGCAGAGCACTCTTATCCTGTCCTGTGATATCTTCAATGGCTGCCTGTGAGCCATTTGCACATGGGAAGTAAGTCTGACTATTTTCCATTTTTTCTTCCTCTCAATAATCAGTTTTAATTAGCTTGGATAATATATTTAGAACTGATCATAGCACTCTTTGTTAGCGCATACATGCAGACTAACTTTTTGTAAAAAAACTGTAACAAGCTGCGGCAAGACGCGAATAATACGAAAAAACGGCCAGCAACTGGATCTTTCCCAACTACTGGCCGCTTTATCTATCTATTTATCTTACAGCATGGTCCGGATCTGCTGGCCATTTAGCCAGGCAGTCACATTTTCAAAAGCCATCTCGGCTCTTCTGTCAATTGATTCTTTCGTATCAAAACCGACATGTGGGCTGCAGACCAAATTCGGAACTCCCAGGAGTGGATAATCAGCTGGCAGTGGCGGATCCTGGTCAAAGACGTCAAGTCCTGCCTTAATCCGTCCTTCTTTTAGTGCTGCAGCCAACGCTTCAGTATCTACGACCGGACCTCTGGCCGTGTTGATCAGAATGGCCCCTTCCTTCATCTCTCCGATCTCTTTTTTACCGATCAAGCCCTTGGTTTCCGGAGTCAGCGGCGTATGAATGGAAACAATATCTGCCTCCCCCATCACTTCATCCAGTGACTTGTATTCCAGGCCCAGGTCAAGGGCGGCCGCCTTTTGACTACGGCTATAGCCGATCAGCTTGCAGCCAAAAGCTTTAAAAATCTCTGCTGTCCGGCAGCCAATCGCTCCAGTACCAACAATCCCAACAGTTTTGCCTGCCAGTTCATGTCCCTGCAGTCCGCCCTTGCCCTCACCAGCTTGTACAGCCTCATTGCCGGCACTGATCTTTCTGAGGCAGTCCAAAGTCAAACCGATGGCCAATTCCGCCACCGCGTCGTTGCAATAGCCACCAGTGTTGGAGATATTGATCTTTTTCTCCTTGCAGGCCTCCAGGTCAACATGGTCAATCCCGACAAAGGCAACTGAGATGAACTTCAAATTCTTATCTGCCCGGATTACTTCACCAGGCAAGAGGTGGTTGGCGATAATCAAGGCGTCCGCGTCCTCGCTCCGCTTCTTCAATTCTTCAGTATCCGTTGAAAAGCTGTCGTAAGCCGTAAATTCATGCCCCTGCTTGGTCAATTTTTCCGCCAGCTTGTCTAAACTTTCCTGGCTAATGCCCAGTGGCTCAAGCAATACAATCTTCATTATTTTCTCCTTACTTTCTACCTTACAAACACATAGACAACGTAAGCTTCTACATCAAGAATATTATCTCATTTTTATTGTTTGCCTGACAAGGATAGAAATTACTTTAATTCTTTTCAGCCTTTTTCTTGACATTAGTCTACACAGAGACTAAAGTCTTAGTTATTGTCCACGAGGAGACTTTTTATGAACTTAAAAAAAACACGAAAGCATTTCAGAATTAGTAACCCTGGCCAGCGTCCGGGCGACTTACGCGTATGAGCAATATGACAAGCTCATGGGAATCACCCAGTACGAGAGCCTCATTCTATATGAGCTCTTCACCCACCCCCGCCTGTCACAAAAAGAGCTCGTCTATAGAAGCGGCATCCCCAAGCAATCCATCAGCAAGGGGATTCACAATCTAGCTGAGCTCGGCTACCTGGAAATCAGCTCTGCTGATCAGGACAAGCGGGTCAAGTACTGCTCCTTGACTGAGTCCGGGCTTGCCTATGCCCGGGAAAAAGAAGATGAAATCCTGGCTATCGAGAAAAAGGTAATCGACAAGCTGGGCTTTGACCGGGCCGCTTTGGCCTGCCAGATTCTAGCTGAGTGGTCTGATCTCCTCAGCAAGGAAATAGCTAACTTAAAGGAGAAAAAACAGAAATAATGAAAATTCTCTTGCCTTACTTCAAGCGATATAAAAAAGACGTTTTCCTGACTTTGATCACCATCGTCTTTTCAGCTTTTGCCACCCTCTACCAGCCCCGCCTGCTCCAGCAGGTGCAAAATGAACTGCTGGCTGACCAGCAGCAGGCCGTCATCCGGGACACCGCGATTTTGATCGGCCTGGGCCTTTTATCCATTATTACCGGGGTCCTCAACGTTTACTACGCCTCCCGGATCACCCAGGGCGTGGTCAGCGACCTCAGAGAAGACACCTATGCCAAGATCCAGACTTTCTCTCTGGCTAATGTGCAGCAATTCTCCTCTGAATCGCTCAGCGTCCGCTTGATCAACGACATGCAGCAAATCATGAACATGATCATGACTATCTTCATGCAGCTGATCCGGATGCCTTTGATCCTCATCGGGTCAATCATCATGGCCATCGTCACCATCCCCCGCTACTGGTGGGCGGTTGTCGTCCTCCTGGCCTTGATCATGGGTCTGGGCGTTGTGGCAGTCAAGCAAATTACCACCATGTTCGACAAGTTCCAAATGTACATGGACAAAATCTCCGGCCGGACCGGGGAATTTTTGCAAGGGGTCCGGGTGGTAAAATCCTTCAACCAAAGTCCCCAGGAAATTGCCAAATTAAACAAGGATTCTGACGAATTAAACGAAGTCAACATCAAGGTCGGCTACTGGTTCTCCACCATCCTGCCTGGTGCCCAACTGATCTCCTACCTGGTCATCAGCTTAGTGGTCTACTTGATCGGGACCAGCATTCTCCAGCATCCCCAAGACGTTTCCGTCATCACTCCATACGTCAACTATGTTTTGACCATGCTCTTTGCCATCCTGCTGGTCGGCATGGCCGTCATGCAGATTTCCCGAGGTAACGTCTCCTTACGGCGGATCCAGGAAATCATGGACACCCAGCCAGACGTTGTCTTCAATGAAAAAGCCCCGGAAGACGCCTTGGGCGGTTCAATTGAATTTGATGACGTCTCCTTCACCTACCCAGATGGCCAGCAGCCCGTCTTAAAGCACATCTCCTTTGCTGTTGCACCGGGCCAAATGGTCGGTATCGTCGGGGCAACCGGGTCGGGTAAGTCGACCCTGGCCCAGCTGATCGCCCGCCTCTATGACCCAACAACTGGGAAGATCAAGATTGGCGGCAGCGACCTCCGCCAGGTTAATGAGAATGCCCTCAGAAAGACTGTTTCCTATGTTCTGCAAAAGGCTGTCCTCTTCTCAGGAACCATTGCTGACAACCTCCGCCAAGGGAAAAAGGATGCTACTTCATATGAACTTGAACGGGCAGCGCAAATGGCCCAGGCCAGCGAATTCATCCAGCGCTACGATGAGACTTTTGACCATGAAGTTGAAGAAAGAAGTGCCAACTTCTCCGGCGGGCAAAAGCAGCGTCTGTCTATTGCCCGGGGGATCATCGCCGGCAGTCCGATTTTGATTCTGGACGACTCAACTTCCGCCCTGGACGCGGAAAGCGAAAAGCTGATCCAGGAAGCCCTGGAAAAGCAGCTGCCTGACACGACCACGATCATGATCGCGGAAAAGATCGTTTCTGTCATGCACGCGGACAAGATCCTGGTCCTCGATAACGGCCGCCTGGTTGCTGAAGGGACCCACGAGGAACTGCTCAAGACTTCCCCGGTTTACCAGGAAATCTATAAAACCCAGAAAGCCAAGGAAAGAAAGGAGGAACTTTAATGTCAGACAAGCAAAAGTCTCTTACTTATTTGACGAAATATCTGAAAAACTACAAAAAGCCGATCTTAATTTCAATTGCCTTCTATCTGATCGCGACCATCGCCCAGGTCATCGCTCCCTCCCTTTTAGGGCAGGCGGTTACGGACTTGTCGGCTTTTGTTAAAGGGCAAGGAAGTCTTGGCGTCTTCTACCAGGCCTTAGCCTGGATGGCCGGCTTTTATGCCTTTAACTCCGTGGCCACCTACATCGCCTGGATGATGATGACCCGCTTTAACGCTAACGCCAACAACGACATGCGCAAGGGCCTTTTCGGCAAGCTGCAGCGGATGACCTTCCGTTACTTCGATACCCACCAGGACGGGCAGATCCTGTCCTTGTTCAACAGTGACCTGGACAACATCTTCAATGCGTTAAACAACGCCTTTTTTGAAATCATCTCCCAGTCCCTCCTTTTTGTCGGCACGATCATTGTTATGTTTGTCATCAACTGGAAGCTGGCCCTTAGTGTTGTAGCTACTACTCCTTTGATCTTGCTTTTGAGCTGGATCATTATAAAAAAAGCCCGCGTCTACCTGGACAATCAGCAAGACCGGGTTGGTGAGCTTAATGCCTACATCAACGAACAACTCAACGGGGAAAACGTGATCATCACCCAGGGCCTTAGGGACCAGTCAGTTGCCGGTTTTAAAAAGGAAAACGCCAAGGTGCGGGAAGCCATGTTTAAGGGGCAATTCTACTCTGGTATCCTTAACCCCTTAGTTACCGGCTTCTCCCTCTTGAACTTTGCGATCGTGATCGCCACTGGCGCTTACATGATTATGACCAAGCAAGTCAGCAAGGCGGCTGGTCTGGGCTTGATCGTGACTTTTACTGAATATTCCTGGACTTACTTCCAGCCGCTGACTCAAGTAACTTCCATCTACTCCATGCTCCAGCTCGCCTTGACCGGTGCCAGACGGCTTGAGACGGTTGAAGAGCAGGAAGAAGAAAACACGGTACCAGACGGCAAGACTATCTCAGGCGTAAATGACGCTGTCCGCCTGGAAGATGTGCACTTTGGCTACACTCCAGACAAGGAAATCCTGCACGGGGTATCAATTGAGGTGCCTAAGGGGCAGTCTGTCGCTGTTGTTGGCCCGACCGGGTCTGGTAAGACGACGATCATGAACTTAATCAACCGTTTCTATGACGTAAACAGCGGTGCCGTAACTTTTGACGGCACAGACGTCCGGGACCTTAAACTGGAAAATCTCAGAAGCAATGTCGGGATTGTTTTGCAAGACTCAGTCCTCTTCTCTGGGACAGTAGCTGACAACATCCGCTACGGCAAGCCGGATGCTACCATGGATGAAGTTATTGCCGCGGCTAAGGAAGCCCAGCTGCATGACTTTGTCATGACCCTGCCAGAGCAATATGACACGCCGATTGAGAATGGCCAAGCAAATTTCTCTACCGGGCAAAAGCAGCTTTTGTCAATCGCCAGAACTATTCTGGTCGATCCGGCCTTCCTGATCCTGGATGAAGCAACCAGCAACGTCGACACGGTTACGGAAGAAAAGATCCAAAAGGCCATGGACAACGTGATTGCTGGCCGGACCAGTTTCGTGATCGCCCACCGTTTGAAGACGATTTTGAACTCAGACAAGATTGTCGTATTAAAGGACGGCCAAGTCATTGAAGAAGGACCGCACGCCGACTTGATCAAGAAGCGCGGCTTCTACTACAAGCTCTACACTAGCCAGATGGCTTTTGAATAAGGGATACATGCAAAAAGGACACCTGTCACAGATGTGATGGGTGTCCTTTTCTTATCTAAATTTTTGATACTTGATCTCTACTTTATTCAGTCTTACCGCTATAGTTGGCAATCCCGCCAATATTTTGGACTTTGCTGTAGCCAGCTTGCTTAAGCCAGGTAACTGCGTGGCCGCTCCGGTTGCCGCTGCGGCAATAGACAAAGAGCGGGGTATCAAGATCCGTGATCTCTTCTCTGGCTGCCTCAATACTGCTCAAGGGGATGTTGATGCTGGCCGGGATGTGCCCTGCTGCGTACTCATCCTCTTCTCTGACGTCGATTAATTTAGCCTGCAGCGTTTTCTGGTATTCTTCAACGCCGGCGTTAACGTCATTTGCTTGAAATAGGCCCATGTACTCCTCCTTAAATTTGCATTAATATATCGGATTATAGCACATCATTCATCCATGCGCTTTAATCAGCATGCTGTCAACAAAGTCGCTGCCAGCATCACTGACAGTGCTTCTTAACCATGCAAATTTCAGCTTGGAGCTATCGAACTTGTCCAGCTCCCGGTCAATGTCCTGCCAGAGTTCCTGGTTGGCTACCGGCTTTCCGTTAGCCGTCTTCCAGTCCCGCTTTTTCCAGCTCTTCATCCAGGCCGGGCCATCTTTTGTGTAGCTAACCGACTTGATAACGTACTGGGAGTTCAAGACAAACAGCAAAGGCTGCTGGGTCAGACCCAACTGTTCCAGCTTCTTCAAGCTTTCCAGAAAAGCAGTCATTTCCATTTCGTTATTGGTGGCGCCCAAACGGCCGGCACTATCAGCAAGCTGCTTGCCATCATGCTCGATCATGTAGGCCCAAGCAGCCTTATCGCTGTCTTGGACATGGGCCGCCCTTGCGCGTGCCGGTGCTGCCTGCGGCAGGCACCCCCGGTATAAATAACGGCAGAATAATCTTTCTTATCGTATTCTGGCTCCTGCTTAACTGCATTTTGCGGATCAGCTGGATCCAGCTTCAAGTAGTTCAAGGCATCCGACTCACGGCTGAAGGACTTGTATTCAGCTCCCGGGAAGCCGTTTACCTGCTTTTCAGCTTCCGGCCAACTGTAATAGATTCCTGGCTGACGGCCTTTTCTGACAGCATAAGTTTTTTTAGCTTTTTCTGCTTGCTTCACTTCAGTATCCGCAACTTGTTCCGCGGCTTCCAGCTCTTGATCATTCTTGATCTCTGCCTTGTAACGCCTCAGGCCAGGCAAGCGGCTGGAGAAAAGATTGATGATACTTACCAGGTCATCCACCAGTTCTTGGCTGGGGCTGGTCGCGGGGTTATTGATGACCACGATTTCACTTCCATGGCGCTTGCAGAAATTGGCAAACCAGTCAAAAGCCAAGCGTACAAAGCGGTCTTTGTGGGTCACGTAGATCTTGTTGACCTCGCGGTCTTCAACTTTCTGCAAGAGCTGATTCCATTCCGGACGGTTAAAATTCAGACCGCTGCCAATGTCTGACATATTCTCACTCACAGTAATGCCGTTGGCATTACAGTATCCAGCAAAAAATTCTCCTGCTTGGCCAAATCATCGCTTGTCCAAGCCGACGACACGCGAGCATAGATCACGTTTATTCTGCCGTCGTTGCTGGCTGCGCCAAGATACTCGTTAAGTTGCTCTTGGGTATAGTAACGCCGATTTGTGGCACTTCTTTCAGCCTTAAGTTTGCCCTCACGATCCCACCTTTGCAGAGTGGCAACAGAGACGTCAAGGATTTCAGCAGCTTCGCCTACTTTGTATTTCTACACGATAAAAGGCCCCTTCACATTGTTTGCTACTAGTATAACATGACTTGCATACTTGCTGTTGGCAGTTACACATAATAATGGATACGAATGGCTGCCACCGATTGCAATTAACTTCTAGGCCGCGACTTTTTCAAGAAGCAAAGAACAGCATCCCTCTTCACAGAATGATCTGCGCGAGAGGGATGCTGTTGATAAAAAATAGAATTGTTACATCTTGTCCATCTGTTCATTAACAAGGGCGTCAGCCAGGTTGTTGCCATCGCTATTAGCATGGCCAGTGACGTGCTGCAAAGTCAAATCGGAGAACTTAGAAAATTCCTTATCAATTTCCTTCCACAAGTCCGGGTTGGCAACTGCTTCCCCATTTGACTTTCTCCAGCCCCGTTCTTTCCATCCTTTGATCCAAGCAGTCCCATTGGAAGAGTCACTGAGGGCTTTGCGAACATAGTCTGAATCTAAGGAAAGCAGCAGCTTCTTCTGGCTAAGTCCCATGTCTTCAAGAGCCTTCAAGCTTTCAAGAACAGCCGTCATTTCCATCTGGTTGTTAGTAGCGCCGACTTTGCCGCCAGTAGCGGTCATGGCATGTCCATCATGCAAGATCACGTATGCCCATGCTGCCTTTGTCAGTTGGCAAAACGTGTTCACCTTCATTGTTGCGGCAGCCACCGTCGGTAAAAATCCAGGCATCGTATTCGGATTCAAGTTAAAATTATACCATGCCAATAAGAACTATATTGTTTTCTTTTTTCACTCACCTGCATCACTAGGTTTGAATTTCGTCTCAAAACCTTATCAAGGTTACACCCTACGTTATTCACATGTTTTAATAAAGTCAAAATGCATGGCCTGATTAAATATCAGCGTCATGCCTTTTTATTGTTCATCGTACAACAATAAAACTAATAGTCGTCCTGCTGTTTCCAATACCTAATATGTGCTGGATAACTCACAGAAACATGATCATCTTTTATTAGTATCTCAAGATCTTTCGGTCTTCCATGCTTCGCAACTGACTGTCTCACACTAATTGCTTTATCATGAACTAAAATATCAAGGTCTTTATCACGGCCAAAAATTGCAACTCCTCGACGAACAGAAACTATCTTGTCATGTACCAAAACGTCCAAGTCTCGGTCTCTACCTTGTTTCGCGACGGCTTTCCGCACACTAGCAACTTTATCTTTCACTAATATATCTAAATCTTTATCGCGTCCACATTCAGCAACGATGGCACGAACTTTCCAATCTGGATCGTGAACCAGTATATCCAAATCTTCATCACGGCCTTGATGGGCAACAATTTCACGAATCTTCTCATTACTGTCATTAACAAATATGCTCAGATATTTATCTTTTCCAGTAAATGCTACATAGCTACGCACTTTTAGATCTTTATCATGAACAAGTCTGTCTAAATCTTTTTCTCGTTCAAATGAAGCAACAATACATTATCTGAGGAATCATTACTTTCTCGTAATTTTTGAAGTTCTTCCTCAGTTACTGTCCAATAGTCATAGCTGATGTAACTTTTATACTTATCTCGTAACTTGTATTTCTTCATATGATTGAATACTAACCAGAAAAGCTTTTACCGTAAATCCTCATAGCCCGGCTTGGTTAAGACCTTAGCCGCGTAAGAACAAGTCGCCCGCAGTCTGGCCCCCTTCTCCCGGGCAGCAGAAGCAACGGTATCAACCAACTTCCGGCCCAGGCCTTGTCCGCCATAGGCTAGATCTACCTTAGTCGTTGTGATGATCCAGTGATCACCCTTATCTTCATATACGCACTGGCCAATCAGCTTGCCGCCATCATATACCGCGGCCCGCTTTTGCTCTTCTTCAAATTTGATTTCCATCTTATTCACCTAAAATTGCTTCTTCCAGCTTTTCAGCTGTATCGACAATCACAGTTGCCCCGTGTTTTTGCAAAAACGGCACGCTTCTAAAGCCCCAATTTACCGCGATTTCATCCATCTCAGAATTCCGTGCGGTCTGGATGTCAATTTCAGAGTCGCCGATATAGACGCACTTGTCTCTTGGTACGCCCAAGACCTTGACGCACTCACTAGTCATGTCCGGAGCTGGTTTGCGGCGGATCCCGCTTTTTTCACCCAAAGCAAAGTCGAAGCTGCCAGGGAAAAGCTCTTCGACCAGGACCTGGACGGCTTCATTTGGCTTGTTGGAAACGACAGCCAGCTTGACGCCTTTTTGACGGAGATTTTTCATCAAATCCAAGATGCCTGGAAAGGGACAAGTTTTAATCTGGCAATGGTCAGCGTAATAAGGCTTGAAAACTTCCAGGACCCGGTTAACTTCTGCTTGGGTAACGGCTTCAGGGATCCGTTCATCCTTGGTGCCAAAGGCGACCAGACTTTCCCGGCTGCTGCCAGCTTCATAGGCCAGGGCCCGGGTGACCGCCACCACGACCCCGCTGCCAAAGAAGTTCTTGATGTCTTCAACGGTAAAGTCATGCCGGTGGCCGGTTTGTTCAAACGCGTAGTTCAATGCACTTGTTAAGTCGGCGCTCGTGTCTAAGATTGTGCCGTCCATATCAAAAATCGCGGCTTTATATTTCATCAGTTTCACCTCGCTTTCATTATACCATCTGGCAGAAAAAATAGGCCTGCCCATATAGAGCAGACCTATTCCCTTCCCTGTTAGCGAGGGAAAAATCAATTATTCATCATCGCGCTTCTTGCACCAAGTTACTTGGCTAGTGTAGGTATCATTGGAGACGGTGCTGCTTGTCGCATCAGTGGTCGTTGTACTGCTGTCATTGGCAGTATTTGTTGCAGTATTTGTACTGGTGTCATTTGTAGTCGTTGCAGCGGTATCGCTTGTAGTAGTTGAAGCAACATCTTTTGTGCTTGCAGTTATCTGTCTGCTAGCGGAGGTAATTATGCTGCTCTTTTGCTAAGTAGTCGTCACCTCAGCAGCTGTATTGTCAGCCGCGGCTACCTTGCCAGGCGTAAATGTAATTGCCAGCCCGCCTAATGAAAAGCCGAGCAAAACAGAGGCCAAATCTGTATTGACCTTTCTGAAACTGTAATGTTGTTCATTTCAATCCATTTTCTGAAGCTTGTTTCTCGCAGATTTCTTCGCTTCAATCATGTCAAACTTCTTCCCATTTTTCCACGCAATAAATTAGAACACCATTCGCTAAGACTATTAGCGATTACGACCCGTGTTTTCAATTTATTTAACATACGTTTTCGAAAGTTTTTTGATTAAAATTTGATAGGTCATTTTTTATTCTGCAACTATAAGTCGCAAATACAATAAACAATTTATTATATCAATCAAAAAAGCTGTATCTATCAAAATGACAGATACGGCTTGGGTAGCATTTATAGAACTGTTTGAATTAACTTATTAGATGTGGCTTGCCCCACTTGCCGCGTCAACGTGTGCTTCTTGAGCAACAGCCTTCCCTGGTTCATCTGCTGTCAATCCAGCAATAGATTGCCCAGCCAGACGGCCAAAGGTGTGCGCGTGGCTGGCTGCCGGTCATTGTAGCTGCCCCAGAAGAAGCCACCGGCATCGTTACCTGCCGCATACAAGCCATAAAAGCCATAAAAGCCTGGAATTGGGTCATGATTTTCATCTAAAACTTCCATCTTAGTGTTGATTCTGAGCCCGTCAAAAGTTCAAAGGATGCGGCCACCCAGAACGCAGCCGTAGTAAGGCTTCTTCTTGATTGGCGTAATCCGGTAGGCTTCCTTAATGTAATCAGACAGGCCATGCTCTAAACGAAGAAACATGGTCCCGTTAAAAGATGCTTCAACGCTTTCCAGGCAGGTCAAGTTGACGACGGCTTGTTTGGAAATCTGCATGAAGTCCTGTCCCAGCTGCTGGTAGACCTCATACAGGCGCTTTCTGGAAAAATACTTGCCTTTTCCGGTGTAGATGACCGTATCGCCGCCTTCGACCCGGACGAGGATAGCGTCACTAGGCTTGATGATGACCAGGCGGTCTTCCTGCTGGGCGATTAACGGGCCAGAGCTGGCGCTGCTTTCCAGGAAAGCAACTGCCCGCTCAACCTCTTCAGTCATTTTGTCGGTATAGATCACTGCCAGGGGCAAGTCCTGGTCTTTATTCAGCTTAACTTTAACCTTCATGCTGGCCACCTTCTTTCTCTTTGGCTCTTTTACAGTATTATCGTATCGTTTTTTGCCGGTCTTGTCCCAGCTTTTCCGGTAAGATGCAAATAGAGCCTCCAGAGAAATCCTGGAAGCTCTATTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATAGCTCCCGGAGAATCAAGACAAATATCTGATTTAGGGCATGGTAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTTATTTCTGTAAAAGCAACATTAAGTCCTCATAGCCGATCACTGCCGTCCCTTTTTCAGCAGCTTTTTTACACTTTCCGGTGACATGATCCAGCTCGCCCTTTAGCAAGTAGTCAGTCACGCCGGACACCGAGCCGGTCACCTTGCCGCCGTGGCTTTGAATCAAACTGGTCAGCTCATATCTGGTTGCCTGGCGGAACTGGCCGGTAATCACAAAACGCTGGCCAGCCAGGCGGGAGTCAACCTGCTTGGGGGTAAAATCAATTATTTCCGTGGCTTTAGCTAAATCTCCGTCGAGGAGTTTCTGGTAAACGATATTGTTGGTAATACAATCGCTAATGGCAATGTGGAAGTTGATATTGATCCCATAGTATTCTTTCAGAGTCGACAGTCTGACGTTAGGGATAGGATCTGCAAAAAGACCCCTCTTTTTGTAACTATTGGCCAAAAGCAAGGTATCCAGTTTCGGATTAGCCACCGGATAGCCGTTATCGGCCAAAACATTGCAGTCAAAACTAAGTATATTGTGGCCAACCAAGGTATCGTCGCCGACAAAGTCCAAGAAGTCTGGCATAACTTCATCAATCAAGGGAGCGGCATCAGTTTGGTAATTGCTGATGCCGGTCAGATGAGAGACATAATCATTAATTTTCTCCAAGGGGTTAACATAAGTTGAGAACTTCGCTACGGTTTGGTCGTCTCTGACCTTTAATGCCCCAATTTGGATGATCTTTTTCCCAGTTGTTTCCAAGTCAAAAACCGTGTAGTCATGCAGTTTAGAATCCATCTTGCTACTTCTTTCTCTCAGTAAAAGCTCGGCTTTCGTCCAGCATGGCCAGAACTTCTTCATCTGGCAGATCATTATTGAGCAGAACTGACAGCCAGTTTTGCTTATTCATGTGATAAGCCGGGAAAAAATCCGCCTTTTTCAGCAAAGCAGGCATTTTTCCCTCAGCCAGCTTCAAATTAAGTACCGCGGCTTCCTGCTGGTCTTTCTCATCACCTGTCAACTTGCCTAGAAGCACAGCCATCAGCAAGCCATACCATTTCCGGTTCTGGGGATTACGGAAGACAGCGTAGTCTGGGAATTTCTTAAAAGGAAAATCCGGCTCATCACCGTAGCGGGTCTTAATTCCATCCTTGATCCGGTCTGCCTGGGCTTTGACGAAGCATTTACCGGCAATATCCTGCAAAATCGCCCTGTATTCCGCCTTGACTACGGCGCTGAAGCTGCCCGTGTTACTTTCAACGCGGAGTAAAAGATATTCCTCCCCGGTATCAAGATCATAGACGTTACCGCTGACCTTACCAGCTGAAGGAATTCTAATTTTTGCGAGGAAATTATCACTTTTCAAGGGAACTTCAAGGATAATAGTCATCACCATTTTTCACCTCAAATTAGCTCTTATATGCCGGGTTAGCCTGGCGGACAGAGCCGCCATATTCCTTAAGCAGGCGGGAAAAAGCCCTTTCAACTGAAGCTGGCAGGTCCACATGCGCTATATAGTCCTTCCCAAGCGGCCCATAACCATCTTTGTTGTCTCTTAAGCGCGGGATCTCACCCATGAGCAGGCTGATATAACGATCCATTGGCCACATGCCATGGATCTCCTTATCATAAGCCAGCTGTCCGTCTTTCTCCAAGACATGAACCTGGTAAGCCGCGTAATTAATGATGGTCAGCTCTGGCCGGTACTTGTGTAACACAGCACTTAAGCGCAGCTGCATGGTCGCGTCCTGGCAGAGGATGACCGATGACAGGTCAATATTATGACGGTTAAGCAGGTCTAACAAGTAAGTGATGTTGTTGCCAGAATTGGTCGACTGGCATTCAAGTAAATCGGCAGTAATCTGGTACTTTCTTTGTACATAGGCGGCAAAAATATCCGCTTCTGACAAAGAATCAACGTCCAGATCCGGAAAGACGGCTTTTGCCTGGGCCCGCAAGCCATCAGTCGTGTGGCCATGCCCACCGACGATGATGTATTTTTTGGCAATCTCAGCCTTTTTAGCCGCGGCAAAGACATCCCCGCCGGGCAAAATACTGCCGCCAAATAAAACGAAAGCGTCGGCTTGGGGAATGCCGTATTTTCCTTCTAAGTCTGCCGGGGTCAAAGCCGGCAAGTCGCGGGGGCCTAAGTAGTCAGCCAGGGTATTGATGTCGTTAATCATTTTTCATCTCCGGAAAAGGAATGATCGCTGGTGCAGGCACGGTATGCTCACCAAGCATCTTCTCCATCCAGACCATGTCATACCAGCGGCCGAATTTATAGCCGCACTGGTGGAAACGGCCGACAAATTTGTAGCCTAAGTGCTCATGGAAACGAATGCTGTTGTCATCCAGATACGGATCTTCACCAATAGGAGCAGCGATGCAGGCGTTCAAGTTGAGAAAGCCTTGCTTCTTTAAGCAGTCTTCTATCGCGTCATATAAAAATCTGCCTACATGCTGGTGACGGACATTAGCGTCGACATAGATCGACAACTCCACGCTGTGGTCATAAGCTGCCCGCTCCTTAAATGCACTAGCATAGGCATAGCCAACAATTTTGCCATCTTTAAGCGCTACTAGATAGGGATAGATCCGCAGAGTTTTTAAAATCCGGTTTTGAAATTCGCCAATAGATGGCACCTTATCCTCAAAAGTGATTGCTGTCTTCTCCACATAAGGAGCGTAGATTTCAAGCAATCTTTCCGCATCCCCGACGTTAGCCCTTCTTAACTCTAATTCAGTCAATAGCCTTCTCCATAAAAAACTAGCACCTACTTACTAACAGCTTTATTTTACCATGAAGGAAAAATAAACCGTTTTATTATTTTCTGCTTATAAAATAAATAACATATGGCATCATAAATCTTGTAAGCGCAGCCAACGCCGCTAGGAAAAAGATAGGTGATATTAGCATTGTGTTTTAAGGAGAAAAAATCATGACCGAATACAGAGCTAAAGCCCATGGTTTCAACTCGGAGATCACGGCAATCGTTGAAGTCGAAAATGGTGAAATCCTCAAGATCAGCGCTGAAGGCGAAGTGCCAAACACGGTCGGCGCTCTTGGGGTTGACACCTGGCTGGAAGAAGCCAACGCTGAGCATTCAGTCGAGGTAGATGCTATTTCTGGTGCCTCAGTTTCAACCGGTGCCTTAAGAAAGGCAACTCAAATGGCTTATGCGGAAGCTACTAGCGGGGATGTTGACGCTATCTCTTCTGCTTCTATTCATAACCAGCCTAACAACTATCCCCTCCTCAAGGAAAAGTTCTATGAAGGCGACATTGAATTCGACGACGAATATGATGTGATCGTTGTCGGTGCAGGGGGTGCCGGACTTTCTGCTGCAGCAACGGCTGCGGAAAATGATGCCAGCGTCTTGGCGATTGAAAAGCAAGGCATTACTGGCGGGACGACCAGCCTTTCCGGCGGCGTTATGCAGGCGGCTGGGGCTGGATCGGATCCTACTACCCAGGCTCAGGTACGGAAATCCACCAAGGCCGCAGAGCTGCTAAATCGATTCTTGGCTTGAGCTAATAACTTAATAGACGCAAAAATGCATCCCTGGTATGAAAGATCATACTTAGGGATGCATTTTCGCTTTACTCCAGCCCCAACCATTTTCTGTTTCTTTCCTCGATCTCCCGGGTCTTTTCCATGGTCAAACCGCCCGGCATGATTCCAATCGAAGTCTTGTACAAGAAGTCGTTCAAGTCATCTTGCTGGCCAGTCTCATAGAACTTCACCAGCTTGTGCCAAAAGTTTTCCCGCTCTTCAACCGGGACTGCCAGCATTGCCGCGTTATTTTGGACAAAAACATGGTTGGCCACCAGCTGGGCGGTGCGCTCGTTGCCATCATTAAACCACTGCTCTCTGGCAATATGGCCAAACAGATAGAAGCCTTGCTTTATGGGTGGTCAATCTCTTTTGCCAGTTGCAACACTTCCTCAATTTTTCCAATAGCTGGCATCCCCAGCTTATAATCCGTTCCCGTAATCCTCACCGGGTAGCTTCTGATCTCACCAGGCTTATCACACAAGCTCTCAAATATAATCCGGTTGTATTCCTTCACCAGATCCAAGTCAACTGGCCGGTCAAGGTTGGCCAGCATGAACTGCATCGCCCGCTTCAGATTGTGCACGGTAATCACTTCCTTGACGGTCATCCCTTCAGCTGCTTCCCCGTCGCAGATCATCTGAACCTCTGGCAGTCCAATACCTTCAACCAGTTCCGTATTGGCAATTTTCCAAACTACATCTGGCAAGAGCCTTTTTACTCCGTCAACCGCCAGATCCCGGTCAACCAGTCTGTATTCGTATTCCATAATCTTCTCCGCTTCAAAATAAAAACGCGGTCTAGCATTAATCCAGTCCGCGCTTATTTTCCGCCCGTCATACCCCAAAACGATGGTTGTGTTTCAACCAGTCCTTGACCAGTTCCTTAGCTACAGCATAAATGCCAATCAAAAGAACGGTCGCGATCAACAATGCAAACATTTCCTCTGGATAGATAGAAACGACAATTGCAAATACAACGAATGCTACAAAGCATACCAACAAGTCAATAATCTTCTCGCTAAGCATCATAATTACCCGATTTCTACGGAGCTTAGCGGGCGGTTTTATACTTATATTATACGCCAACTTCCTTGAAAACGCACTCTTGCCCCAGCCTTATTGCCTTAGCATCCGGCCGGTGGCCAATAAATTCAGTCTTGGCGATTGGAAGATTTGTTGGCAGCAGGTCCAGGAGAATTTCTTCTGGCAACTGGCTTTCCTTTAACTTGTCCAGCTCACTGAATGTCCCCAGCAAAACGCCGCTGATCTGGTTAAAAATCCCGGTCTCCCGGCATTGCTCAAGTAAACTAGCTACCAGCTCCGGCTGCCCCCGGTAGGCCTCCAGCAGCAAGATGCTGCCAGTAAAATCGGGCCAATCGGGCGTCCCCGCCAGTTTCAGCAGGCAGCGGAGGTTGCCCCCGTAAACTGGCCCTGCCATTTTACTTCCCCGGACAAAAGTGACTTCTAGCTCATCGAGCTCTTTATTTTTTTCTTTACCTGCCAGCAGGCGGTCAAAATAGCCGCTCTTCAACAAATCCTTGTTGACCAGACAATTGCTCAGCTGGAAGTTGACCGCTTGGTTGCCGTTTTTAGCCAGGGCCGTCAAGATCGTCGTCAAGTCGCTGTAGCCGTAAAAGACCGCCTGGCTGTCCTTGATCTGCTCCAGATCCAAGTGGCCTAAAACCGTATTGGCCAAGTCCCCGCCAGAAATGTCAAAAATATGCCCCATCTCTGGATCTAAGAAGAAACTTTCCAGCTCCCTGGCCCGCTTTTCTCCCCGGCCAATTAATGTATCATCGGTCAAAAATTGACTGACCACGACTTCCAGTCCCCGGTCTTCCAAGATCTTTACCAGCTGGTCAACAACTGGCCGATATGCTGCTTTTAAGGGATTTGAACACCCAACCAGGGCTGCCTTCATCATGCTGTCTCCTTTTCACATAAGCAAAATTATGTAAAGCTAATCTGCTATTGCCGCAAACCCTTAGGATAGTAATTCTTCAGCTGTCCCTTGCCAGAGAGTTTCCCAAAGCTGAAAATCATCCCCCGGCAGGAAACCAAGACGAAGCCCTTCAAGCTGCTATTTACTTGCAGGCTTTCCCCATGCAGGTAGTGGTCATACTCTTCTTCAGTCAGGTCAACCACTCTTTCCTGGTCAACTTGACCTAAAACTTCCGCCAGCTGGTGGCTTGGCTCAAAGCGCTTCTTCTTCAAAATCCCCAGTTCCAGACCGTTGTTAAGGACCTTGATTCCTTTTAATTGTTCAGGTTCAAGGGCCGGGACAAAGACGTGATCCTGGCTCTTCAGCATCTGGCTTGGCCAGGAAGCCAGACTTTCCGGCCAGTTAAAGCCGGCTATAGCTTCACTGATATAGCAGGACTCTTCCTTGCTTGGCCGCTCCAGGCTGCTTCTATTCCCTTTATTCTTGCCTTTGCCCTTTTTCTTCTTGTCCTTGTTTTTTCTGACCGGAGAAAAAACTTCTCCTGCTTCAGCTGCAAAGCTTTCTTCGCCAGCTGCCTTTTGCAGGCTGGCCACAAACTGCCCTTCACCAACACCGTCCTGTGGCCAAAAACGGGCACAGTTTGCTAAACTAGCATCCCCGTTGCCCCATTCCGGCCGGCCTGGCGCGGCTTTCTCTGCCGCAATTGGCAAAAGCTTAAAGCCATATTCATCCAGCAGCCAGCTGACGATCTCCTCGTCCTCTTCTGGTGAAAAGGTGCAGGTCGAATAGAGCAAATACCCGCCCGGCTTCAGCATCTTGACCGCTTCAGTCAAAATTTCCCTTTGCCGGTCTGCACAGAGGTCGACATTCTCCTGGCTCCAGTACTTGATGGCGTCCTCGCTCTTTCTGAACATCCCTTCCCCGCTACATGGCGCGTCCACTAAGATCGCGTCAAAAAATCCCGGGAAACGGGCGCTCAAGGCAAAAGAGTCGCAGTTCGTAACGACAGCGTTAGAAACGCCCCACCGCTCCAGGTTTTCTCGCAAAATTTTGGCCCGGGACGGCGAAATTTCATTGGCTACCAATAAGCCCTCACCTTGCAGCTTCTGGGCTAAAGCCGTGCTTTTCCCGCCGGGAGCCGCGCATAAGTCCAAAACCTTGTCACCTGGCTTAACTGGAATTGCCTGGGCCGGGAACATGGCTGCCGGGTCTTGCGAGTAAACCATGCCAGCTGTCCATTCCGGGTCCTTGCCGGAGACTCCACCGTAATAAGCGTTAGGGATGCCGGGCACCGCCTCTTCTTGCGAGTATACCACGGCTCCCTCTTTCAAACTGTTGATCCGGTAGGCCTTCTTGCTTGGCTCAGCCAAAGAGTCAAGTAGCTTACCAGCTTCTTCCTGGCCAAGCAGACCCGTAAATTTCTCCTTAAACTGGTCTGGGATCTCAATCATCCGCCTGTTTCCCCTTTCTGTACATATAAACCATCATTCCAACATATACTACCAGTTCAACCACGACTGTCCCGAGCAAAAGCAGGCCTAAAATGCTCTGGTTGCTGTAGTAGGCCTTCCACACCAAGAGGAAGTATGAGACAAAAGCTTCCAGGACCATAAAGACGATAAAACGCCCGCTCCGGTTCAAGAGTAGGTTTGGCAACAAGTCTCCCTTAACATGGCTCAAATCAGTTTCTTTCCAAGTCAGCCAGGCAATAAGACCCATCAAAAGGACCCCCACGCCCAGCAAAAAGAGGATCAAGAGGGCTTCTGGCATGAGAAGCGTCAATCTTCTTTGCCGGCCCTGCTTGACGAAGTCCGGCCAATAGGTCTCACTCTTTAAGTGGCTGGCGATCTTGCCGATCGTCTGGCTGCTGGCGTCCACGTACAAGGTAAAGTGATTTATTCGGCTTTGCCCGGTTTCCTGCTTAACCCCCGTCGTCAAGTAGTAGGCCTTGCTGGACTGGTATGGCACAGCTTTAAGGCTGCCGACAACTGAATAGTACTGGCCGTTGGCGATCAAGTAAGTATTGCCCTGGGTCTTGATCTGGGAAGCCGCTGAAGATGGGGAGACCGCCGCGATGGTGACCCGCCCTTTAAAGTCATCTTCACTGAAAAAGCGGCCACTGGAAACAGGGAAGTAGTTGAGGTCCCGGTTTTGTGACCAGATCAAGACCTGGTTCTTGTCCTCCTTGCTCTTAAACTGCATCTGGATGCTTTCCTTAGGGAATTCTTTCTTGATCCACTTAAGGAAGGAGGCAATAGTCATGGTCTTCTTCGGCTTGACGATCCGGGCCTCCATGCTCATCCCCTGCGCCTGCAGAATTTGGTCAGCCAGCTGGGACTGCATGTTGGAGCAGACGATGCCGATCATGATGAAGAGGAAAAAGGTGGACAAAATAACAAACAGTTTGTACCTTTTCATCAGCTCACCTCAATAAACTTTTCCTTGATAAAGTCGTAGGACTTAAAGCTGCGGTTAATCTTTCTCAGTTCGCTTGATTTGGCGAAATGCTTTCTGGTCCAGAATTCCGGGGAATTGGTCACCCCTTTTTCCCCGATGAAAAAGAGTCGAGCAGCTGGAGCGTAGTGCTGCTTGGCAGCGATCAGTTCCAAATCCGCCTGGCCGAAATTCGGCGCCCAGGAGCAGAGAATCATGTCGCAGGTCGCGTACTTCATGACTGCCTGGTCAGCTGGCAGGTTTTCAACTGGGTAAAAAGGCTTCTTCCCGGTCTTTGAGCTCTTGGACCATTCTAAAGAATCCGTGGCCCAGACTTGAATCCCGGCCTCGCTCAAGGCCTTAGACCAGTAGGCGTTGCCAGCCATAACTTCCAGGGCTGTCTCAATCCCTAATTCGTTTTTAAAAAGCTGGGCCGTCTCCATGTTTGGCAGTGACCAGATCCCATATTCCAGGGACAGGTACTGGCGGACATTGTTCAGCAGGTTGTTTAAAGCCCGCAGGTCCTTGATCTGGCTGTCAGGCAGCTCCCAGGTCAGCTCGGCAAAACGGTCATCACTTATGCCTAAGCGGTCTGGCGCGAACAGCAGCATCCGCTGGCTAGATACGCACTCATCGATCATTTTGATCTCTTGCACTTGCCGGTCCAGTTCCGGATCAGCAAATTCCTTGGCTAAGGCTGAAATTTTTTCAATAAATTGTGTCATATGCATTCCTCACCAGTTGATTTTATCATTTACCAACCTTTTGAGGTAGCCTGGACGATTGCAAAAAAATGACCTGGCTAAGAAGGCCAGGTCAAAACTATTCAATTAAATTACAGATCTGCCGCCAGGTCGGCCATTTCTTCGTCGACCCCGTTGGCCAGCAGCATGTCACGCGTCTCCAGCTTAGCTGCATTTTTCTTTTGCACCGGCTTTGGAGCCGCAAGACCAGTTGCCTGCTCGGTCATCTTGTTGCTGACGCCATTGGCAATCATGGTGTCCATCAACATTGTTTCTTCCGTGCTTCTCATTTTAACCAGCCTTTTTTCTGTAAAGTGCCTTTTTACTTAAGACTAATTATAGCACCATTTTAAGCATGAAAGCTGATTTTATGCGGATAGTAGCGATTTCCTTTTTTTACAAACTTTTGCCGTTATTTTCCCAAAAATTTAACTCTTCCTAGTCCCCGTCCGACAAAAATGCAGCAATTGCCGCGGTTAAGCCGGTCACGATTGTTTCCAAAGCCATTGACGGCTGATTTGGCCGCTTGACCACCTGCTCTGGCAAAAAAGGGATATGAATGAAGCCCGCCTGCATCCCCGGATGTTCTTTTCTCAAGCTCTGCGCGTAATACATGACATGGTTGCAGACAAAGCAGCCGGCCGTGGTTGACACTTCAGCCGGGATGCCCGCCGCTTTAATAGCTTTGACCATTTTCTTAACCGGCAGCTGGGTGAAGTAAGCCGCTGGCCCCTCCGGATCAATCGCCTGTCCTTCCCGCTTTTCCCCGTCATTGTCCGCGACCGGGCAATCATCATAGTTGATGGCGACTAGTTCTGGAGTCAGGCAGGCCCGGCCACCCGCCTGGCCCACGTTTAAGACAAAATCTGGCTCTTCTCTTTCAACAGCTGCTTGCAGCTTTTTCTCACTTTTCTGGTAGCTGGTCGGCAGCTGCAGCTTGATAATCTCACAGCCTGCGATTTCGTCTGGCAGCGATTTCACTGCTTCAATGGCTGGATTGATTTTTTCATGGTTGAAGGGATTAAAACCTGTCACTAATACTTTGGTCATTATTTTTCCTTTCTTGAAAAAAAGCCCCACTTGCGAGTAAACTAGATTCATATCCAAAGAATAGAAAGTGGGTCAAACATGTTTTTCTTCTTCCTCGAACCAGTTTTAATCTACAACTGGCTCCTTATCCTGGCCGCGGTTATCCCCGCCATCTTCCTAATGATCAAGGTTTACCAATCTGACCGGCTGGAGCCGGAAAGCCCCTACCTTTTGTGGAAAATGGTGACCGGGGGGATCTGGTCAGCGGTAGTTGCCGGCATCCTTGAATGGATCGCCAATGGCGTTTTAACTTCTTATGTCTCGCAAAAAGATCCAATCTACAACGTCATCATGTACTTCGGGATCGTTGCCTACGCTGAAGAAGGAGCCAAGTACTTCTTCTTAAAGCGCCGGTCCTGGTTCAGCCGGGAATTTAACTGCCAGTATGACGGGGTTGTCTACGCTGTCTTCGTGGCCCTGGGCTTCGCCCTCTGGGAAAATATCTCCTACGTCATGATCTACGGCTTCTCTACCGCCTTAGTCCGGGCTGTAACGGCCGTTCCCGGCCACGCCTGCTTCGGCGTCTTCATGGGGATCTTCTATGGCTTGGCCCGCGGCTGCGCCTACCTGGGCAAAAACATCCGGTCCAAGTTCTTCCGCGTTTTGGCTATCGTCGTGCCAGCCGCCCTGCACGGTAGCTACGACTACGTGGCTTCCCTTAATTCCGCTGAAGGGCAGTGGATCTTCCTGGCCTTCATCGCCGTCCTTTTCTTCATCTCCTTCCATCTGGTGAACAAGATGTCCAAAAACGACAAGTACTTCCAAATCGACCGGCGGAATTACCGCTTCTAGACTTTATTCACAAGTAAAAAATCTGTCCCTGCCTCCCTGGCAGGGGCAGATTTCTTTTTGCACGAATTCTTTTTAGTCCAGTTCTGCCAAGTCGTATGGCGTTTCCTGGTAAACGGCGTAGTTGATCCAGTTGCTGAAGAAGGTTGAGGCGGCCAGACTCCAGGTCAGGCGGGGCTTTTTCTCCGGATCGTTATCCGGGAAGTAGTTAACCGGCAAAAGCGGATTGATACCGGCATTAAGGTCTCTATGGTATCCTCAGACAAGGTGTCTCTGGAGTATTCCAAATGGCCAAAGTTGTAGATCTGCCGCAAGTCGTCACTAGCCGCGATTGCAACCCCGACTTCCGGCCCCTCCGCCAAAATCTGCAGACTGCACTTCTTTAATTGGTCTGGGTAAATCGTGGTATAGCGGGAGTGCGGACAGCGGTAGGAGTCGTCAAAGCCGCGAAGAAGGGGGCTGGTCCCCACTACTTCCTGCTCATAAATGCCGGACAGCTTCTTTTCCAGAGGCTGCTTGTCGATCCCAAAGTGATAGTAAAGCCCGGCTTGCGCTCCCCAGCAAAGGTGGAGTCTGGAGTAGTCATAGGTCTTGGACCATTTCAGCTGGCAGAGCTCGCTCCAGTAGTCGACCTCCTGGAAAGGCAGCTGTTCAACCAACCGGGGCGCCAGTAATAACCATCCCACTATATCATAGCGCTTGTCCTTGATGTAGGCAAAGGTCCGGTAGTAGTTTTCCAGGTATTCGTTGGAAGTATTTTTAGACTTATGACTGGCCATGTAGAGGAATTCCACTTCTAACTGCAAGGGCGTGTTGGCCAGGTGGCGGAGCAATTGCACTTCCGTGTTGGCCTTCTTAGGCATCAGGTTCACCACCAGAATCTTTAAAAACCGGATGTTCTGGGTCCGGGCTCTTTGCGAGTCCATGAGACAAAAATATTCTCCTGCCTTAACACATCAATGGCGGCTAACTGTTTGTCTAAAGTAATTGGCATAGTGCACTCTCCTGTCTGAATTCTTTTGTTTAATTTACCATTTGTTTAATTTACCATTCTTTCTGAAAAAAATGCTAACAAAAGAATTATACTTTTTAAACTTTTACAAAACGAAAAAAGTCCGCCAAAGCGGACTTTCTCAAGCAGACATCTTGTCAAATTTACTGTTTTAAAATTAGTCTTCGATGTTGAAGACAACGGACTTGACCCGGGTCATGGCTTGAATGGAGTACTTGACCCCCTGTACGCCTGCCCCTGAGCTCTTTACGCCCAGGAATGGGAAGTTGTCCGGACCTCTTTGGGTCTTGTTGTTGATGTGGACCGTGCCCACTTCCAATTTTCCTGCAATGGCAAAGGCTTTTTCAAAGTTCCGTGAGAAGACGGAGCTTTGAAGGCCGTATTCTGATTCATTGGCAATCATGACAGCTTCGTCAGCTGACTTGACGCGGATGAATGGCAATACTGGCCCAAATGGTTCTTCCCAGGCCAGGCGCATGTCAGTCGTCACTTGGTCCATGACCATTGGGTAGATCAGGTTGCCTTCGCGCTTGAAGTCAAACAAAGGCTTAGCGCCCTTTTCTGCGGCTTCTTCAATTAAGCCTTGTACGTAGTCGGCAGACTTAGTGTCGATCAAAGGAGTGATGTCGGCATCCTCTTCTGGTATCCCGACCGTCAAATCCTTGGCCAAAGCAGTCACCTTTTCAACCAATTCGTCAGCCACGCTGTCCATGACCAGAACCCGCTTAACGGCGGTACAACGCTGGCCGGAGTAGCCAAAGGCGCCGGCAACGATGTTCTTGGCCGTCAGGTCCAAGTCAGCGTCTTCCAAGACGATGGCCGCGTCCTTGCCGCCAAGTTCCAGCATAATCGGCCGCATCCCGGCCAGTTTGCCGATGTTCTTGCCGACAGCACTGGAACCGGTGAAGTTGATGAAGTTGACTGCCGGGTGTTCAACGATGTAGTCGCCGATAACCCGACCCCGGCCGGTAATGGTGTTGAAGACGCCGGCTGGCAGGCCAGCTTCGGCGAAGGCCTTGGCCAAAAGCAGACCGGAGATTGACCCTTGTGTCGGCGGCTTGAAGGCCACCACGTTCCCGCCCATCAAAGCAGGCGCGATCTTTGAGCCGGCCAGGTTAACCGGGTAGTTGAAGGGTGAAATTGCCAAAACCAGGCCGACTGGTTCCCGGCGGACAACAGCCAACTTGTTCTTGCTTGCCGCTTCAAAGTTGCCGCCCTCCATGACTTCCCCGTCCAAAGTTACGCCGACCTTGGCCGTGTATTCAACGATTTCCGCCGTCCGGGTTACTTCGCCGATAGAGGACTTGAGGCCCTTGGCGATTTCCTTGGACAAGGTAGAACCGATCTTTTCAGCATCTCGGTAAAGGATGTCCGCTGCCTTTTGCAAGTATGCGGCCCGTTCAACGTATGAGAGGGCCCGCCAGGCTGGAAGGGCCTTTTTGGCGCTGTTCATTACGTAGTCCACGTCTTCGTGGGACATGGCAGGTACAGTACCCAGGGACTTGCCAGTTGCTGGTTCGAAAATTTCAATCGCGTCAGCGGAGTCCCGCCATTCGCCATTGACATAGTTTAAATAGTGTTCTGTCAAGAGAGCAACTCCTTTCATGGATGCAATCACATCTATATTTTAATGCTTTTCTAACCATTTTCAAGCCTTTTTGCAGAAAAAGTACCTACCAATTTTCTAATTAGAGCAGACCATGCTGCTTCAGGTACTGGCGGGCCACCTTGCTGGCGCTCTCGTGCTTGACGGTCACCTTGTAGTTCATTTCCTGCATTTCAGCTTCAGTAATCTTGCCAGCAAGCTTGTTTAGGCTTTTGACGACGCCGGGATGCTTCTTGGCAAAAGAAGTTTTCAGCAAAGGCGCCCCTTGGTATGGCGGGAAAAAGCTCTTGTCATCCTTTAAGGCGACTAAGTCATACTGCTTGATCTGGGGATCGGTCGTATAGCCGTCAACGACTGCGACCTTGCCGCTGGCAATTGCCTTATAGCGCAGAGCAGGTTCCATAGTTTTAACCTTGAAGTTCAAGCCGTATTCCTTCTTTAATCCCAGGTAGCCGTCCTGCTGGTTGGCAAAGTCCGGATCAAAAGCAGCGGTTAAGGAAGCGTCCACTTTCGCCAAGTCGCTTAAGCTCTTAATATTATTTTTCTTGGCAAAAGCCTTCGTAACCGCCAAGTCGTAGCCGTTCTGATAGTTCATTGCTGGCAGGTAAGTCAGCTGGTCCTCCTCAGCCATCAGCTTTTTAGCCAGCTGGTAAGTTTTAGCCGGGTCATGCAGAGTGGCCACCTTCTTTTTAGCCAGGCCTTGCAGAACCGTCCCGGTAAATTCCGGATAGATGTCGATTTTGCCCGTCTTTAAGGCATTGAACAGGAAGCTGGTCCCACCAAAGTTGTTCTTAAGGGTCACCTTGACATGAGGATTGTTCCTTTCAATCAAGTACTTGTACATGTTGATCAAAATGTCTGGTTCACTCCCCAGCTTGCCAGCGATGACGACCTTCTCTTCTTTTGGCGCCAAGGCTTTTGGCAGCTGGCTAACTCCTAAGCCAATGGCAAAAATTGCCAGGACGGCGGCTGTGACACGGAAGTGCTTTTTTGATGAGGCCATGAACTTGAGCAGGCCGGACATGGCCAAAGTCAAGACAGCTGACAGACCAGCCCCGATCAAGAGATAGGTGTTGTTGTTTTGCTGGATCCCGATCATGATGTAGGTCCCAAGCCCGCCGGCCCCAATCATGGCAGCCAACGTGGCTGTCCCAATAATCATGACTAAGGAAATGCTGACGCCGGAAAGGGTCATGGGCAGGGCCATGGGGAATTCCAGGCGGGATAATTTTTTCCAGCGGCTTAAGCCAAAGGCATCGGCCGCTTCTTCCAAGTTGGGATCGATATTTCTTAAAGCCGAGTAGGTATTCTGGTAGATTGGCATGATCCCGTACGCAGTCAAGGCGATCAAGGCCGGAGTCATCCCGATTCCGACAAAAGGAATCAAGAGGCCGAGCAGGGCCAGACTGGGGATGGTCTGGATGATGCTGGTGATCTGGAAGACCACTTCCCCGGCTCTTTTGCTGTGGGCCAGGAGCATCCCTAAAGGAATGGCGATCAAACAGGACAGCAAGAGGGCTTCCATGGATAAGAGCAAGTGCTCACCTAAAGCCTGCCAGATCTGCCCTTGGTGCGACGATATAGTATTGATCAATTCACTCATCTCTTAGTCCCCCCATTTTCCAAAGTAGTGCAACAGGTCGCTGGACTTGATTTGGTAACCTGCTCCCTGGTAGGCAAATTGCAAAAAGCCAGCTTTTTCAGCTAATCCCGCGACTTCTTCGACTTTCTCAACTTCCGGCAGATCCGTTTCTGTAATTCTATTTACGTATGGACTAGCCAAAAGCTCAAGCATAGTGCCCAGCCGTGGCCGGGCACTCTTGAAGAAGTCAGCCACAAAAGAGTTGGCGGGCTTTTGCACGATTTCTTCCGGGCTGCCGACTTGCATCAAGCAGCTATCCTGGATAACCCCGATCCGGTCCCCTAAACGCAGGGCTTCCTGCATGTCGTGGGTCACGAAGACCACGGTCGTCTTGCTTTGCCGGTGCAGGTCAAGCAGGAGTTCTTGCTGCTGGCGGCGCAAGACCGGGTCTAAGGCACTGAAGGATTCGTCCATCAAGATCAATTTGGGCTGGCTGGCCATGGCCCGGGCGATAGCGACCCGCTGCTGCTGGCCGCCTGAAAGTTCTTTGGGCAGCCGGGAGATATACTTGTCCCCTTCCAGGCCAACCTGGGCCAGTAATGCTAAGGCCCGCTTCTTTCGTTCAACCTTTTTGACTCCGGCTTCTTCCAGCTGGATTGTAATATTGTCGCCTACCGTTAAATTTGGAAAAAGACTGCTGGTCTGCGGAACATAGCCCATATGCAGGCGGAGCTGGCGCAGGTCGTGATCTTTGACTCTTTTGCCGTCTAAGTAGACATCGCCATGAGTCGGTTCTGTTAAACGGTTGATCATTCTGAGCAAAGTCGTCTTCCCGCTCCCGCTGGGGCCGACTAAGACAAAAAGCTCCCCGTCATTGATTGTAAGATTTATCTGCTTCAAGATGACATTGTCTCCATAGGTCATCCCGACATCGCGGTATTCGATCATTTTCCCCTCCATCTCGCAGGGCATTCATGTAACTTAAATGGTTTCTCGACTTAGCATAAACTCTTTCTTAGCCCTTGTAAAGGTAAAAGCTACAGCTTTCCTCTTTTTCTTGGCCAGGAATCTATAATAGTTTCTCATCCTTCTATCTTGGGCCAGCTACTTATAAGAAAAGTGTAAAAGCAGTACTATTGCTTAGTCGGTATCTTCCAGGCGGGTATAAGCTTCATTCTGCTCTTGCTGACAAAGAACTTGTTTTTAGCAATTTCAGTTACTATACTGGTAATTAGATAAGTTACATGATTTGCCTAATTATTTGGGAGAGAAAAACAAATGAAAGTATCAACCCGTTTTAGCGACAGCATCCACCTCTTGGCCTTTCTGGTGATCTATAAGGGAAAGACCACTCTGTCCAGCAACATCATCGCCAGTTCTTTAAATACTTCGCCAGTTGTGGTGAGACGGTTAATGTCGAATTTAAGGGATGCCGGCTTTATCAAGACGACCCATGGGTCACCGGATCCAGAGCTATTAAGGGAGCCAAAGGATATCAGCCTGCTGGAAATCTATCTGGCAACTGAAGGAAAAAGCCCCCTTTTTGCCATCGACCATGAGACTAATCCGGACTGCATTGTCGGCGGCAACATCCAGCCAACCTTGACCGACTACTTTTCCCACGCGGAAACCGCGGCGGAGGCGGTTTTAGGCAAGATCAGCCTGCAGGACGTGATCGACACGATTTTGGTTAAAGAAGCCGCGAAAAAGCAGGCAGAAAACAGTAAAGACAAAGAATAAGCAAATATAAAACAGATTGCGAGGAAGCAAAATGAAATACACGATTACTGCCGCGACTGGCCACTTAGGCAGAGAAGTCGTTAAGTAATTAAATAAGTTAACTGATGTCAAGAACATCCGCCTGGCAGTCCGCAGCCCGCAAAAAGCGGCAGATTTAGCAGAAGCTGGCTATGAAGTCATACACAGCGACTACTACGATGTACCTACCGGGACAGACGTCCTGATTTACATTCCCAGCATCACTTATAACGTAGGCAAGCGGATCAATTCGAAAATTCTCTGGAAGCAATGAAGGAAGCCGGAGTCAAGCACCTGGTTGACGTCAGCTTCATGGCTGACCAGGCCAATAATCCCTTCCAGATGGCAGCAGGCTATTACGCCTACCTGCCAGCCCGTTTAGCTTCTAGCAAATTGTCCTATGCCGTGGTCAAAAATTCTCTTTACGCTGACCCCTTGGTCCCATACCTGCCGGAGTTGATTGCAAGAGGCAATGTGATCTACCCGGTTGGCGATCAGGCGATGAGTTTTATCTCAAGAAAAGACAGTGCGGAAGCTATTGCCAATGTCGCTGTCCGGCCTTACCTCAGAGACAAGGGGCAGATTTACCTTTTGACCCAGGAAAAGAACTATAACATGGTTGAATTAAGCCGGATCATGACTGAAGTTACCGGAGAAAAGATCGGCTACCAGCCGGTCAGCCTAGAAGAATTCGCGAATATCTACCGGGCTGAAGGCGACGGGGATGAACTGGCCTCCATGTACAAGGCGGCAGCCATGGGCTTGATGGACGGAGTTACTGATGACTTCACCCGGATCACGGGCCATACCCCACAGAATATGAAGGACTTTTTGGCAGAAAACTATAAGAAGTAAGATGAATCAGCTTTAACAGCAAAGAAAAAGGATGCAGCTCTACTGGGTTACATCCTTTTATTTATTTAGGCAAATCTGCCGTATGTTCCAAGCGGTCGATCCGCCGGTCTAAAGTCGGGTGGTCAGAGATCAAGTTGGTCCACCAGTGCTTGACTTGGAAGTTGTTAAAAGCTAAAGCTGAAACCATGGGGTTCTCCTTTTGCTTCTGATATTGCTGCTCAATAGCTTCCAGCTTTTTCAATGCACCGACAATGCACTTCGGATTTCTGGTCAGGTCGACTGAACCAATGTCCGCCAGGTATTCCCGCTGCCGGGACATAGACAAGTTGAGCAATTTGGCGATTGGCAAAGCCACGATGAACAGGCCAGCGCCAACTGCTAAGGCAATCGAGCCAAAGAACCAGCAAATGAACTTAGTGATAACCCCGCCATCCATCTTAAACAAGGTCCAGCCAAGAGCCAGCAAGTAAACGGCAGCCAGGTAGATAAAACTGGATAGAGCTGAGGTAATCGTCGTTACCCGCAAGTCATAGTTACGGATGTGAGATATCTCGTGGCCGATCACGCCTAAGAGTTCATCATGGTTCATGACTTTTACAAGGCCGGAAGTAACCGCCAGGCTGGCATGCTCCGGGTCACGGCCGGTCGCGAAGGCGTTGGGGATATTGCTTGGAATGGCGTAGACTTTCGGCATGGGGATGCCAGCGGCCAGGCTCATCTCCTCCACCATTTCGTAAAGTTGAGGGACGTTCTCTTGGTTGATTTCCACCGCATGGGTGATCCGCATCAAGTGTCTGGTCGAATAAAAGTAGATATAGACCATGTAAATGATTCCCGCGGCTAAAAAGATCATGCCGGCCCAGAAGGTCAAATAAACTGACAACAGGCCCGCAATAGCTAAAAGCAAGGCCGTAAAGCCACCCAGCACGACCCAGGTATTGCGCTTGTTTTGCTCGATTTGCTGATAAAGCATATTCCATCCTCAATTCTTTTCATAAAGCTAATTAAAGGATACTAATTGGATGGCTTTGGCGCAATAGATAATTACAGAGTGATTTAGTTATATCGCTTGCTAGGATAAAAATAAGACTCCGAACGATATTTTATCATCCAGAGCCTAGGGGCTAGTGCTTATATAAATTGAACTTTGTGTCGATTGCCAAAATATAGAAAATGTTACGGTTGATTTTACCAATTACTCGACCTTTGTCATTTAGCCGAAATACCCAGTAGACGTCACCATATTCTTCTAAGCGTCCAGAGCTTGAAAAAAATGGGTTAATGCTTAAAGAAACCACATTATTAGGGAGTTGTTCGAGACCTTGTTCTTTCGCCCACCCCAAGACAACCGATATTTCTTCAATAGAGAGCTTCTCTATTTTCTCCAACAACTTCGCCTGGACATTCTTATCGATACTATTGTTGTTTTTATCAAGATTGTATCGTTTGTCTCTTGTGAGAAAAGAAAAATTAAACGCAAAATATGTCTTATACGTCCTTCTGATTCTTGAGGCATTAGACTTGCGTGTCCGAAAGTTGCCTTTAATCATCGACAACGAACACCTTACTGTAAGTCATTTTTCTACCCTCATTCAATAACCATTATTTTGCCTATTATTATGCGTTCAACACAGTTTGTCTCGCAAGCTACAGGCCTTACCATTCAATCCACGTTCTACTGGCATTTTGCCAATTAGTTATTTAGATTAAGTACTCCCTGCTTCAGCCTTTGCATCCCGTCAATTACCAATTCTTTCGGGCAGGCCAGGTTGATCCGGACAAATTCATGCCCATTGCCCCGGTAGCCGTTCCCGGCAGAGATGATCAAGCCCGTCTTTTCCCTCAGGTACTTGCAGAAGTCCTCCGCGTTCATCCCAAGAGCGCTGATGTCGACCCAGGCAAGGTAGCTGGCATTTGAGTCAAGCACCTTCACTTCCGGCACTTCTTTTGCCAAAAATTCCCGGGCATAAGCAAAGTTGTCCCGCAACACTTGCTTGAGCTCACGGAGCCAGTCATGGCCTTCTTCATAAGCGGCAATAGCTGCCGGGATAGCCAACAAGTTTGGTTCCCCGATGCCGGCCAGGAAAAAGCTCTCCCCAGCCCGGGCGCGCAAATCCGGGTTAGGGATAATCGCGCAAGCCGCGTGCAACGCCGCCAAGTTGAAGGTCTTGCTTGGTGAGATCAAAGAAACTACCCAGTTTTTGGCATCCCAATCTACCGTAAATGCAGGGGTAATGTCTTCATCCGTCAAAACCAGGTCCCCGTGAATTTCGTCAGAGATCAAGAGGACCTGGTGCTTGGCGCAAAGTTCCGCGATCCGCTTGACTTCTTCCTCGCTCCAGGCGTAACCGATTGGGTTGTGAGGGTTGCAGAAGACCATCATCCGGACAGACGGAGTCGCCAATTTTTCTTCCAAATCAGCCCAGTTGACCGAGTACTTGCTATTTTCATAGATCAAGTCGCTGGAAATTACCCGGCGGCCATTGCCCTCAATGACAGAGTAAAACATGTTGTAGACGGGCTCCTGGACCAAAATTTGGTCGCCAGGGCTGGTGAACTGCCGGACCATGGCAGAAATCGCTGGCACGACGCCTGAGGCAAATACGCACCAGTCTTCTTTAGGCCGGGCGCGGTGCTCAATTTCTTCCCAGTCAGCTACAGCTTTGTAGTATTCAGCTGGCACGCTTTCATAGCCAAAAGCCGCTACTTTTAGCTTTTCTTCCATGCTGGCCATAATTTCCGGCGCGATCTTAAAGTCCATCTCAGCAATCCACATCGGTAGCTCTTTTTCCTTTAAGACGCCCCACTTGATGGAATTGCCCTGCCGCTTTGGCACATGTGTAAAATCATATTGCTTTTCTGCCATTTTTGTTACCTCAATAATCAATTACCTTTTTCGCAATCTATTTTATCTACAAAGTAAGCATCTTCACGTTTTGGAAAATCACCTGCAATTTTCAAGTTTGCAATATTATGCTGAATTGAATAGATTGCCGGATCAACAAGTACAAAGCCTAAGTTCCGATCCTTATCTCCAGATTTCAAAATAATTATATCATCAAACTAACAACCCGTTCTCTCTCCAATGCCTATAACGAGAAAGACAGGTTCCTTTCGGAACCTGTCTCCCTCTAATTACAGCACATTTGCATTAACATATCTGTTCTTGCCAATTCGGTAGTAGTACTTGCCATGAAGCTTCTGTTTCTTGCTTAAAAGCTTAACCTTCTGCTTCTTTTTCAGATGGCCAACTACCTTCCCTTTCTTGTTATAGACCTTGGCATTCTTCCTTGCGCGAACTTGCTTAACCTTCTTAGTCTTTTTCGGCAGGCTGCTTGCCAGAATATATCTGTTCTTGCCAACCCGGTAGTAGTACTTTCCATGAAGCTTTTGCTTCTTGCTTAATAGCTTGACGCTAGTCTTCTTCTTAAGCTTGCCAACTACCTTGCCCTTCTTATTGTAGACTTTTGTCAGCTTAGTCAACTTGACCTTCTTGTAAGTCTTAGTCTTCTTAACTGTCTTCTTGCTTGCCTTCTTAGAAGCCTTCTTGTTCTTCTTAGCACTAGTCTTCTTCGCGCTACTCTTTGAAGTCGTCTTGCTGTCAGTCTTTTTATCATCCTTGGCAGATGGCTTGTTATCGGACTTAGCTTCGCCATTGCCGTCCGATTTGACATCACTCTTAGTGTCAGTCTTCACATCACTCTTGGTTTCTGCCTTGTTATCAGACTTAGAATCACTCTTGCTGTCTGACTTGCTATCGTCCTTGTTTTCCGGCTTAAACTCGGCAGTCTTTTCTTCAACAACCTTCTTGACTTCATAAACGACAACAGCAGATTCGTTGTCATCCCCGTCGCGGTACTTGAACATAGCCCGGCCGCTGTCAGTCAGCTTAACTTCGCCATCAACCTTTGACCAATCCTTACCATCAGTTGAGTAAAGCAAAGTTACTTTTCCGTCAGCATCCTTTTCAGCCTGTTCAACGTTGCCAGCCTTAACCTCAACACTCTTATCAGCTTCAACCGTGCCAGTCAAATCTGGAGCGGGCAGCTTCCGTTCTACCTTGACCACACTGGTGTAGACTTGGCTCTCATTGCCAGCGTCGTCATAGCTCTTGAATTCCACAGTTCCGTTGTGGGTCAGCGTAAAGGCATCCTTGTAGTCAGTCCAGGACTTGCCACCATCAAGGCTGTACTTGATGTGGTTGAAGTCCTTGTCAACATCCTTCTTGTCAAAAGCAAGCTCAGCCTTGACCTTGCCTTCTCCATCCGGAGTCAGCTTCAATTCCGGCTGGGCAGCGACTTCCTTGACGATATTCTTGACTTCATAAGTCGTAACCTTTGACTCATTGCCGTAAACGTCTTGGTACTTGAACTCAACCTTTCCGTTTTCGGCTACCTGTACAGTATCCTTGTCCAGCTTGGTCCAAGTCTTGCCGTCAACTGAGTAGTAGAGATCAGCCGCCTTAAACTTGCCAGCAGACTTTTGTACATCGGACAGATTTCCGACCTTCAGCTGAACAGCTTGGTTGGTCTTCTTGCTTTCTGAAGCGGAAACCTCCGGTGCCTCAAGATCTGCCTGGTGGTTGTACAGGGTAAAGTCTTGTTCAGTTTTGTTGTCACTACCATCAGTCAAAGTGACCTTGACCTTCCGGAATCCGTCTTTCTCAGCCTTGATCGGGTAGCTGACCTTGACTGCATCCCTATTCTTAAAGAAGTCTTCGTTAAACACCTTGTAAGTCTTGTCTTGGTAGGCTGTATCGCTGCCAACTTGCAGGCTGTATCCGCTCAAGTTGTCATTGATCGTTGCCTTAAGATCGTAAACATCCTTGTTGGTGTAGACAGCCAACTGGCCATCCTCACCTAAGGACATCCCTTCCAATTGCAGGCTTGGCGCTGCTAAGTCAACCCAGAGCTTGTAGCCCCATTCGACGACTGGCTTGCCGTCATTAAGCCGTGGATCTTGAACCAGAGCAGTCAATGAATGGTTGCCGTTCTTTAAGTCTTTGATCGTGTAGCTGAACTTCAATGTATCTGGGTCGTACTTAACGTCATCCCCGTTTAACTGGAAGCGGGCGACTGGGTACGCGAGTTTACCCGTTACTGTGAAGCTGTGGTCCTTCTCATCGTAACCCGGCGTCATCTTGCCAATAACCGTCAGATCGCTGGCGATATTGTCAAAAGTCAGCATATCCTTGTTGTAAGTGTAACTTCTAGCGGTGAAAATCGTTACGTCCTTCTTTGTAACATTGCCATCCGCATCAGTTGCCGTCAGTTCAAAAGGATTGTCACCGTAGTTCAAGTCAACCTTTTGTGAGAACTTGCCGTCCTGGTCAACCGTTAACTTATCAGTCTTGCTCTTGTCAGACAAGTTTGTCAGTTCCAGTTTGCCGCTTTCGCCAAGGCCAGATACCGTCCCGGATAAAGTATAGGAATCATCCTTAGCCAAAATGCGGCCTGATCTTTCTTCGTCAACGCTGACTTTCGGGCCTTCAGCCTTAACAGTGAAGTTGACTGCTTCAAGGATTTGGTCCCCATCCTTGATCAAAAGCTGGTTTTGTCCATCCTTGACTGGCAGCTTAACTTCAAAGTAGCCATTTTTATCGCTTTCTGCCTCGACATCATTAAACTTAAGCTTGGCATTCTTCTTGTAAGTACCAGTTACAGTGTAAGTTTCTTTCTCTTGATCGTAAGCCGGGCTTTGACTAGTGATCTTTTGACCGTCAGCTAAGTTAAAGAGAAGAAGCTTGTTATCAGCATCGTTATTTTGACTGGAGAAAGTTGCAGCATAGCCAACATTGCCGGCATAGTCAGCCAAAACAGTTTCTACTTGGTTCTTGCCGTCCTTAAGTCCAGTCAAGGCAGACGTTGACTCGTAAACATTACTTTCTCCCTTAACCGGAGCCAGCGCCAGCTTCTGCTCTTCACCGTTTACTGCCGCAACAAACATTGTCATGTCAAGACCGCTGCCGGAATCCTTAGCCTTCAAACGGAGCTTGCCATCTTTGGTAACCTGCAAGTCACTCACTTCTGGCGCTTGGGTATCAACCTTGACAGGGATGTTCAATTCCTGCTTGCTGCCGCCAATTGCTGGGGTAAATTCAACCTTGTAGATGTATTGCCCATCCTTGACGACTTGGCCGTCAGCGTCAGTGCCATCCCACTTGTCCAGTGAGTGGGTTGTCCACTCACCGCTTGAAGAACTGTAGTAATCTTTAGTTCCCTCTTTGCCAACGCCCAAGCTCTTAACTTTGTTTCCTTGAGCATCAGTAATCGTTTCCGTGTATTCCTTGTAGTTCCGGTCAAAGAAGAGAACAGGATATGCGTAGTCCCGGCTACCATCGCCATTTGGTGAAATCGCGATCAGATCAGGATCAGTATACTTGCTGTAATCATCACCCTCATAGCCAGTGTGACCGAGCATATCATTGTTGTTAGAAAACATGACGCCAACCAGGGAGTGAATTGTGTTGATTAGATTTGAATTGCCACCTTCATAAAGCATTGGTGCGCTGACACTCGCTTGACTGTAGCTGCCGAAAAAGCCCATGTATGGAAGAACCAGGTTTGGTGTTGCCTGGTCTTTTGCTTCAAAGCCAACATAGCCTTCAACAAAATTTTGCCGCTGGAAACTGTATGGCAAGGTCAAGGTAAAGCTTACATCCACACTTTCGCCAGGCTGGACAGTTACCTTTGGCGTCTCCGTCGTCAGCTGTCCCTTAACAATCTTTGTGTCATAGATTTCGCCACTCTTCGCTTCGGTTGCCTGGGTGTATGGACCGCCATAATTATCAACTGCATAGGTCTGGGCCTTCTTACCATGATTGGTCAAGGTAACCTTAAAAGTAGTCTGCCGGCCAATTTCTTTCAGGGCTGCTGCCCCGTTGCCGTTGGCTGCCTTAACCTCAACCGTATTGTTGATGGCATCTTTAACATTGATTTCGCCACTCCCTTGCCGGCGGGGAGAAATAATTTCCTTGGTATGCTCAGTGTCATAGACGGGGTGCGAAGTGTTCATGGCTGAATTCTTAGCAAATTGTACTAATTCTTCCCCGGACAAGTTCAAACCTTGTTTCTTGATACCTTGCAAAATTAATGCTTCGGAACCTGCGACAAATGGTGAAGCCATTGAAGTCCCACTCATTTGCTGGTACTTGTTGTCGTTGGCCAGCGAGTAGATCTTCCCGCCTGGAGCAGTGATTTCTGGCTTGAAGTCTAATTCAGGAGTTGGTCCCCAGCTGGTAAAGTCACTCATCTTTCCCGCGCTGGAGTTATCGATTAAAGCAGTACCGAATTTTAGCTTGATGCTCTTACCTTCTTTTGCTGCTTTAGCCAGAACTTCCCCATCAGCCTTACTCATCCCCAAGGTTGGGAAAGTCTTGTCGTCCAGTGACATTGAAAGTAAGCCGTCATCCTCGCTATTGTAAATGACGATCCCTGCCGCGCCAGCTGCCTTGGCATTGGCAACTTTCGCTGAGAAGGTATAAGCTCCCCGTTTAACAACTGCAAGTTGTCCCTTAACCTCAGCCTTCTTTTCAGCAGTATAGTCATCTGCACCGCCCAAGCCCATGTCAACAAGCTTAAGCTTCTTGGTTAAAACGGAATAGTTGCTTTCCAGCTGGGTTGTTACTTGTGCAGCACCCTTCAATTCTGAATTTGAGCTAAAGGTGACCCCACCGAGTTCGTCTTTAACTGTGTCGGTGGTCACCTTGCTGTTTTCAGCAGAGGCAACCGTCAGAGCATCCGGTGTAACCCCTGGCGTGCCAACAGTACTGAGTTCACTTGTCCCGGTATTATTGACTGGATTGCCATCCGCAGTCGACCCGGCAACACCGGAGTTCCCAGCAGAGATAACATTAATGACGCCAGCCTCTGATGCCTTTGCTACGGCTTGTTGCTGTGGATCACTTGGATCGACATCTGATGAAACTGAGCCCAAACTCATGTTGATAACGTCGGCCCCCAGCTTAACTGAATCTTCGATCGCGGAAATGATGTCGTCATCATAGGCTCCAGAATTCTTGGCATTGTTGGAGAAGACCTTCATTGCCAAAAGCTGGGCATCAGGAGCAACACCTTTGACTTGTCCATTGGCCCCGGCAATCCCGGCCACGTGCTGGCCGTGCATTTCGCCACACCCATTGTCCACGATTTGGTCGTTCTTATCAGCGTAGTTATAGCCGTAAGGAACCTTCTCCGTGTAATACTTCCCATGACCTAGCTTACTCTTGTCGCTTTCAACCTCACTCTTACTCAACGCGGTGCTGACGCCACTGTCCAACTTCAAGTCCTGGTGGCTGGAGTCGATCCCTGTATCAATGATCGAAATGACCATACCTTCACCCTTGAGCTTTTGTTCTTGCCAAACGTCCTGCACTTGGGCCATTTGATCAGCACTCTCATCGGTTGGGTGGTAAACCTTGACAGGCGTAACGTTCTTAACCTGGGGCAGATCCTTAACCTTGTCGATATCGTCTAAATCCATATCGATTGAAAAAGCATTGACCAAGTAGCCGAACTGCCGGCGGACCTTGTTGCCGGTGATTTCTTCTACCTGCTTGATAACCTTTTCTTGACCATCCTTGACTTGGTCACTTGCCTGCTCAATCTTTTTCACCGAGGCAGCTGATCCAGTCGGCTTACTGGTGTGATCAAATGCCGCTGACTTGTTCAAACTGACAATCACCCGGACCGAGGACTCATTCTTCTTGCTGACAGCTTGGCCAGAAGCCTGTCTTTGCTCTTTAGCAGCCTCTTGGAACTTGCTGTAACTCTTCTTAGCGTTATAGCGCTGCTCTTGCTGCAAGTACTTAGTCAATGCTGCCCGGCTAGCCGACCGTGGACTAACCGTTTCTTGACTGGCAGCTTGGACAAAAGCGGCTGACTGGAAAGTTCCCGCCAGTGGACTCGCTGATAGGAGCAGTGCTGCGGCTAATTCAGCCACTTTGTTCAAATGGCGTGCGGATTTTTTCTTCTGCATCTGTTTCCTTAACTCCTTTAGACAAATAAATATTTTTATTAGCAAGCCTTTCATCACGCAGCTTCGGCTCACTAACATTTCATAATCATACCATAGTTTAAATTAAAGTTAAATGTTTTTTAGCAGAATTTTAAATCAAACAGTGGAAAAGTAATTTCTGAACGCCAAAAAACAAAAAGCACATTATTTCAGCAATACGCGAGAAAATAACGTGCTATGAAGTTAAAAATCCACAAAATACTAACTTCAAAGTTGATTCGCTAAAGTCGTGGTATAGTGTTACCTTTTTGATTATAATAACACCGTCCCTATTTAAACATAGTTCCATCTGCTTTTTCATTTAAGAAAAGAATATTGCCAAATTTTAGATATAGCTTTTTAAGTTAGATTCACATTAAATTTTTTCACTTATAAAGCAAAAGAAAAAGCAGCCAGCACCTGCTGACCGCTTTCTAGCCTTCTATCTCTTTGATCATGTTGTACCAGATTTCCCCGGCATGCTCTGACTCAGCTTGCCCATGGTTGACGTAGCCATTCTTTTCGTAAAATGGCACCCGGTCTTCCAGACAGGTCAAGGCGATCCGCCCCCGCTTCATTTCCTTAGCGGTCTCCGCGAATCTATCTAAAAGCTGGCTGCCAATCCCCCGGCCCCGGTAATCCGGATGAACCGCGATGGTCAAGACCATTTGGTTGCCGCCGGGACCTGCCAAACTCTCTGTCTCTTTTTCATACATCCAATCCTCGATGTAGTCATACTTGCTGTCAACGACTGGCCCGGTAATAAAGCCCACGACCTCTTCCTCCAAATTTCTGGCGACCAAAAAGCTCCCGGTAAATTTCTGAATTCTCTCTTTATACTGAGCCGGACTGCCTGCTTCTGCCTCATTGAAACCAGCTCTTTCAATTTCCACGATCCTGTCTAAATCTTCCGCTCTTGCCTAGTCAAATTTCAGCATGCTCTTCTCCTTGAATGCAAAAAGCACGCCTCTGTCAATCCAGAGAACGCGCCTCGTTTTATTCTTTTTAAAATTGTCTGTTAGATAGCCATCGCGTTAACTTCAGCAGCCACGCCCAGCTTAGCTAAAAACAAGGCTGGAGTGTTGGCATTCTCAGCTACAGCGCTGCGAACTTGCTGGTTCTTGTCTTGGGCCAGCTTCTTCAGGACAGCTGCGTCTTCGCTCAGCCTAGCTGCCAGGATTCGCAGACTTGCGTAGTTTGAGCTAGTTTGCTTGCCCAAGAGAGCAACCCATTCCTTCTTAGCTACGATTTGGTCCAGCTTCAGCCATTCAGTGACCTTGCACTTGCCAAAGTCAGTTACCTGGCCCCAGCTACTTACTTCGTAAATGGTGATGCCTTCCTTCTTCACTTGGGTATTGGCTGGCGTTGACAACAGCGTCTTCCAGCTTTTCGTAGATAGCCAGGTAGCGGTTGTGGTAGGTCTTGCCTGCCAGGTAGCTGCGGCCTTCACGGAAAAGCTTGCCTTCCTTAGCTGAGAATACAAGATATCCCTTAACTGCTTGTTCGATAGTTACGTTAGTCATATTTACCTCTCCTTGAATAAATTTAACTAAATAGGCAAAAGTACAAGCAGGACAACCTCCCTTGTACTAAACAGTCACAAATTCAACAGAAAACAGAATAGATTAGAGGTAATACAAGTTATGAACGAGACAATCACGCAGCTGATTCAAAACTATGGCTATGTCGCCGTTGCCTTGTTGATTGCAGCTGAAAACATTTTTCCCCCAATCCCTTCCGAACTGATCCTGACCTTTACCGGTTTCCTGACCCTGTCTGTCCCGGGAGCCATCATTGCCTCCACGATCGGTGCCTTCATTGGCGCGGTAACTCTCTATTGGGTCGGCACCTTCTTTGACCAAGACCGCCTTTCCCGCTTCGCCGCCAGCAAGGTCGGCCGCCGCTTCGGCCTCTCCCCGGAAAAAATCACCAAGACGGAAAACTACTTTAACAGCCACGGCCGGCCAGCCACCTTCTTTGGCCGCTTTATTCCAGTCGTCCGCAGCTTAATCTCCCTGCCAGCCGGGATGAGCCGCTTCACTTTAGCCCGGTTCAGCTTCTACACCATCCTGGGCACGGCAATCTGGAACACGGTCTTGATCTACGCCGGCCGCTTTGCCAGCAATGCCTACCAGCAAGTGGTCCAGGAATTTGAAGGCCTTAGCTTGATCGTGTTAATCGCTTTCTGCGCCATCGCAGCCGCTGTCTACCTGCTCAAGAAGAAGGGCCTAATCTTTAAAAAATTTTTTTGCCTTTGATCTTGACAAAAGTTAAATCCGTATTAGAATTTTACTTAATCAAATAAGTCAAAAGATGAGAAAGACGAGTAGGAAAGCACAATCTTGCAGAGAGTTGCCAGCTGGTGAAAAGGCAACAGACCCTGGCTTTCTGAATAACACTTTTTCCAGATCGCCGGCTGAAGTCACAGTAAGCCGTGCCGCCTGCAGGACGTTACCCTGCTAGAGCATGTTGGTGCTCGAAGTGGTTCGTTTAGAACAAGGTGGGTGGTACCGCGGAAAGATGCCTTTCGTCCCTGTAGTTTTTGGGGATGAAAGGCTCTTTTTATGCCCTTTTGACAAATATTAGATTTTTAGCAGAGGCAAGAGATATGGCTAAATTAGTTATTCCAAGTGATTACGATCCGAAAATGACCATCCGCGAAACGGAAAAGGCAATCCGCTACATCCGGGAAACCTTCCAGACTGAATTCGGGACCGCGATGAATCTGGAAAGAATTTCCGCTCCTATGTTTGTCAAGAAGTCTTCCGGCTTAAACGACAACCTCTCTGGCTGGGAAAAGCCGGTTTCCTTTACCCTGCACGACGGGAATGAAGGCGAATTGCAAATCGTCCACTCCCTGGCCAAGTGGAAGCGCTGGGCCCTCAAGCACTACGGCTTCAGCCACGGTGAAGGCCTCTTCACCAACATGAACGCCATCAGAAAAGACGAAGAAGTTTTGGACAACCTCCACTCCGTTTACGTTGACCAATGGGATTGGGAAAAGGTCATCGACAAGAGCGAACGGACGGAAGCAACCCTCCGCCAAACTGTCCAGCGGATCTTTGAGACCATCAAGGGGATGGAATACCACGTCCGTGCCCTCTACCCGCAAGCCGCCTACCACCTGCCAGAAGAAATCAGCTTCGTAACCAGTGAAGAACTGGAAGCCCGCTGGCCATCCCTAACACCAAGCGAACGTGAAGACAAGATCTGCCAGGAAAAGGGCGCAGTCTTCTTGGAACACATCGGCGGCGCGCTCCCGCTTTCCAAGAAACCGCATGACCTCCGGGCACCAGACTACGATGACTGGACTTTGAACGGTGACCTCCTCTTCTGGTACGAACCCCTCCAGCGGGCCTTTGAAGTCTCCAGCATGAGCATCCGGGTCGATGAAGACCGCTTGCAAGAGCAGCTGAAACTTGCCGGTGCTGAAGACCGGTTAGACCTGCCTTTCCACCAAGCCCTCTTAAAGGGTGACCTCCCTTACTCCATCGGCGGCGGGATCGGCCAGTCAAGACTTTGCATGCTGCTTTTGGGCAAGGCCCACATCGGTGAAGTCCAAGCCAGCATCTGGCCTGACGAGATCGTAGAAAAGTGCCAGGCAGCCAAGATCCAGCTTCTGTAAAAAAGCTAGTTAAGCAAAAACAGGAAGAATATAAGAGCAAGATAGACAATAAAATACCGAGGTAAAGAGATAAACATGACAGAATTGATTTCAATCAGAGAATCAAGCAAGCACGTAGATGAAGAAGTCAGAATGCACGTCTGGCTGACCGACAAGCGGTCCAGCGGGAAGATCGTCTTCCTGCAATTAAGAGACGGCACGGCCTTCTTCCAAGGCGTTGTCCGCAAGAACGATGTCAGTGAGGAAGTTTTTGAAGCAGCCAAGGGCCTGCGCCAGGAAGCAAGCTTCTACCTCACCGGGACCATCCATGAAGACGCCCGGTCTCACTTCGGCTACGAAATCCAGATCAGCGACCTGGAAGTCGTCTCAAACAATGAAGGCTACCCTATCACCAACAAGGAACACGGGATCGACTTCCTTTTGGACCACCGTCACCTCTGGCTGAGAAGCAGGCGGCCATTCGCCATCATGCAGATCAGAAACCGGATCTTCAAGGCCACGGTCGACTTCTTTGAAAACGAAGGCTTCGTGAAGTTTGACGCCCCGCTTCTGATGCACTCAGCGCCAGAAGGGACCACGGAACTCTTCCACATCGACTACTTCAACCACGACGCTTACCTGTCACAATCCGGCCAGCTTTACGGGGAAGTCGGGGCAGAAGCCTTCGGCAAGATCTTTACCTTCGGGCCAACCTTCCGGGCGGAAGCTTCCAAGACCCGCCGACACTTGACTGAATTCTGGATGATGGAACCGGAAATGGCCTGGATGCACCAAGATGAATCCCTGGACTTGCAGGAACGCTTCCTGTCTTACGTGGTTGGCCAGGTTTTGGAACACTGCGAATACGAATTAAGCATCCTGGGCCGGGACGTAGACAAATTGCGTCCAGCCGCTGAAGGCAATTACACCCGCCTGTCCTACGATGACGCGGTTAAGATGCTGCAAGAAGCTGGCAAGGACTTCAAGTGGGGCGACGACTTTGGCGCGCCAGATGAAGCCTTCCTGTCAGAACAATTTGACCGGCCATTCTTCATCGTTAACTACCCAGTAGCAATCAAGCCATTCTACATGAAGAAGAACCCGGAAAACCCATTGACTTACCTCTGCGCCGACGTGGAAGCGCCAGAAGGCTACGGGGAAATCATGGGCGGGTCAGAACGTGAAGCTGACTACGACACCTTGAAGGCGCAAATCGAAGAAGCGGGCCTCAACCTGGACGACTACTCCTGGTACCTGGACCTGAGAAAGTACGGCAGCGTGCCGCACTCTGGCTTCGGGATGGGCTTTGAACGAGTTATTGCCTGGATCTGCAAGCTGGACCACGTTCGTGAAGCTGTCCCATTCCCAAGAATGATCAACAGAATGCAGCCATAATATATACGAAAAAGGCTCTTTGTCAAATCTTACTGATGCTTGTCAAGAAATCTTACATATGTTTGATGAAGGCACTAAACAGAACACGTCTGTTTAGTGCTTTTTTGAAGCAAATGATGTTCTGCTCTAGTCTGATCCTTTTCAAAAGGTGAGTGAAATTAGAATAGCCATAGGCTGTACGTTCAATTTGTTTGATCTTACGATTAACGCCCTCTAGGCAGCCATTTGAGTACGACATTTTGGCACCATTAATGACAGCCCTCCTGTTCTTTCTAAGGGTCCGTATGGTTGTTTTCAATCGCTCACAATACTGACCGATATTACTGTCGAGCAGATCGTTAATTTTTTTCGTATCTTTGTCTGCTAAAGCATACACGAAATCCTGCATGAAGTCGTATGTGTTCTTCAGTGTTTCATTGCATTTAAGGCCTTCATCAACGATTTGAGCCGGTGTATACGGTACTTTAAGACATCTGTCATAAAATTGTTTACTGCCTTCCAGATCCTTATATTTCTTCATATACAGCTTCCAATATCGTTTTAGAAGCTTGTATTCTCTGGATTTCTTATCTAACTGTTTCATGACTTGAACTCTAAAACCGATAAAGGATCTGTTTACCATTTGAACCATATGGAAACGGTCAATGACAAGCTCGGCGTTTGGGAAAATCTGACGCACAATATCACCGTAGTAGCAGTTGAGGTCCATACTTACTGTTCTAACAGTCTTTCTAACTATTTCCGGGAACTGCAAAAAGTATTTAATAATAGTGTTTTTGAAGCGATTCTCTAAAATGGCGACGATGGTATGTTTTTCGCCATCTTGACAGATAAAGTGTAGCTTTCGCCCCACACCTCTAAATTCATCAAACGCTAAGTGTTCTGGCAAAGAATCGAATGAAGGAGTAAATTGAGCGCTGCAGTTGTCTAAGTATCTTTGCACAGTAGTAACTGATACACCATTCTCTTCAGCAATACTGGTCATAGAATGATCTTTAGTGAGTCCGACAATGATCTTACGTTTAACGGCGTTAGAGATGTGGCAATACTTGTCAACGATTTGGGTAGACGGATAACTGTATAGCTCACAGTTCTTACAAAAAATACCGTGCTTCTTGACTTTGATAATGACTGGATTGCTTTCGTCAGCTGAAATATAAGGGATATGAACGACCTTGAAGCCGTTATATATATAGTAATCAGCAGATTTACAATTAGGACATGTGTCGAGCTCGGCAATGGCTGTACACATGATTACTTTTCTCCCCTTGTAAGTTGTTTGAGAGCAATCTACAAAATTTAGGCAAGGGTCTTTAACATTAAGCAAGTTTTCAATATAATTAGCAGTAGGGTTCATAGAAACCAGCTTTCTATACTTAGAAGAATTGTGGTAGAGGATTTTAAGTTACGAATAGCGAGGCCTATGGGCCTCTTTTTTATTTTAAGCAAAAAATCTTACCGACGGATGTATTACTTGACATCCATCAGTAAGAAAAATTATAGAGCCACGAAAAATAGCTTGGAGAAAATCAATCTCCAAGCTATTTCTTTGCTATTATTATGCTCTATGCCCTTATGCTTTTGGGCAAGATTACCGGTAAACGAGTTTTGTTGGGAAAGTGACCTTGTAAGTGCCAGCTTCATCATCATCCAGCAGGTCTTTCATGACCTTAACGCTGGCCCGGCCCATCTGCTGGGTTTCAACATGTACACTGGTCAAAGCCGGGTTGGCAAATTCTGCCGCGGTCGTGTCGTTAAAGGAAATCAGACTGACCTCTTCTGGGACTTTGATCCCGGCTTCTTTAAAGGCCTCCAAGGCACCGATGGCCATGGCATCATTGGCCGCGATCAAGGCTTCCGGGAAGGATCCGGACTTAAGTGCATCTTTAATGGCTTCATAGCCAGACTGAGGGGTGAAGTTTCCAACATAGACTAAGTCCGGGTCGTACTGGCCGCGGGCCGCGAGGCTCTTCTTATAATCGCGGAAGCGGAAGTCAACCAGGTTGTTTTTATCAAAATTACTGTCCAAATCACCATCCAAAAGGGCGATCCGCTCCTTGCCCTGCCCCCAGAAGACCTCTAGCGCCTCCTGCATGGCCTGACCAAAGTCAGCCACAGTCAGCCACAACTGAGCAGTAACCCAATTTTAAGGTGTCAGTATCGACAAAGACCAGGGGCAGGCCAGACTTTTTGACTTCATTCAAGCGGTCTGGCGAATACTGCTGGTAGCCAATCATGATGATCCCGCTTAAAGCAGCTGGATCGGGCAAAGGATCAGCCGGATAAATGACCTGGCTTTCAAGTCCCTGCTTCTTGGCCTATGCTTGCGCGCTGGTTCTGATTGAATAGTAATAGAGGTCTCCTTGATCTCCTGGTCTTGGTCACACCACAGGCAGATCGCCAGGCGCTTTTGCTTGCTCTTTCTGGTCTTCCGGCTCTTATGGTAGTGCATGGCTTCAGCAGTTTCAAATATCTTCTGCCGGGTTGCCTCATTGACTGACAGGGTCTGGTCATAGTTCAAGACCCGGGAAACCGTCGCTAGCGACACGCCGGCTGCCTTGGCACTTCTCTGATCGTTGCCATCTTCCTCACTCGCTTTGCTTTTACTAAAATTTCATCCTGTTAAGTCAATTGTAGCATTTATTTTAGTAAAAGGGGCTGAATCACCAGGCGGAGCTGGCGGGCTTTTTGAGCATCCAGGCAGAATTCCGGGTGGACCTTCTGCCCCCAGGAGTCATCCCCGCCGACCCCCATCTGGGCGCTTAAGGCTCTAACCCAAGTGTAATTGTTAGTCAGTTCAAAAGCGTGGTCCGCTGCTTCAATTTGGGCGGCAGAATATGGCAAAGCAGACAAGTTCAAGTCTGCCCCATTGGCCGTAAATTCCAAGCCGCCCTTTTCATCAAAGAGCTGGTACCAGCGAACCTTGCTCCGGTTGCCCGTTTCCTGCGGACGCAGGTATGGGCTAAAGTTCTTTTTTACCGCTCCCTGGTAGATGCCCAGGTAATTACCTTCCAAGCGGTCTGGGTAGCTCTCATTAGGTCCCAGACCATAGTAGCGGTAATCGGTCAGTTCTTTTGGCAGGGCTAGGTTCAAGCCAAAGGCTGGCAAGAGACCGGCTTCTTCCGCGCCTGGGAAGTCAGCTGTTACAGCAATCTTGCCCCGTCCATCGACTTCATAGGTCACGGTTAAATCACCCTTTAAGGCGACAGGCAACGTAAAGGCAGTCTTGACCAAAACGGAGTCTTCCTTGACCTCGCAGCTGATGTCTTTCAAGCGGGCATACTTGCCGGCATTTTCCCACCGGGCCAGATCATAGCCGTAACCAGCTCCCCGGTCGTTGTCCGTCAGGGCCCGCCAGAAGGTAAATTCCGGCAGCCGCTTCAAGTATTCCCTACCGGCATACTTGAGGGAAACCGGCCAGCCCTTGACCTTGGAGAAGAGAATTTGGAAGTTATTTCCTTTCAGGCCTAGGTTGTAGTCGGAATCAACTAAATCTGGCCGCCCTTCCGGCTTAAATTCCGGCAGCTTTTGAGCTACTTCTTCTGCTTCAGCCACAGTGAAGCCCTCATCCGCCCAAGGCAAGTCTTCTTTTAAGTGGGCCGTTACCCGGTAGACGACCTCTCCTTTTTCATCAGCGACTTCCGGCCAAGGCAGGGCAAAGGTCCCGGATTCGCCAGGCTCCAGGCCAAAGGTCAGAGGCCGGCTCTGGTAGGTCAACTTGCCATCGACCAAAAGACTAGTCAAGAAGTAGTAAGATGAGCTGTTGGTAAATAAATTGTCGTTTTTGAGGAAGAGCTGCCCATCTTTTACTTCTAACTTAAGGTTGGCGTAAAGGGCCTTGACATTAGCCAGTTTCGGCGATTCAGTCCGGTCAGCAAAGACCAGGCCGTTCCCGCAGAATTCATAGTCGGTTGGCCGGTCATCGAAGTCGCCCCCATAAAGCAGGTGCCCGTCTTTTTCCAGTCCTTGGTCAATCCAGTCCCAGATGAAGCCGCCCTGGTAGTGGGGGTATTTTTCCAGGGCCGTGTAGGCGGCCAGGTCACCGACGGAGTTGCCCATGGCGTGAGCGTATTCAACTGAGATAAATGGCTTGGCTGGTTTATTGGTCAAGTATTCTTCAATTACCTTGGCCGGAGCATACATCCGGCTTTCAATCTGGGTGGCGTCGTCAAACTTCCGGTTGTGGGTCACCCCTTCATAGTGCTGAACCCGGGTCGGATCAGCCTTCCGGACGTAATCAGCCATTTGGGCAAAGACAGTGCCGGCGTAAGACTCATTGCCTAAAGACCAGATCAGGATTGAAGCATGGTTCTTGTCCCGAGCCATCATGTTCTTCACCCGGGATAAGCTGGCTCCCAGCCAATGCTGGTCATCGCCTGGAACATTGAAGCTAGGATCTTCGTGCCCCCCCACTTTTTCCCAGGTGCCGTGGCTTTCCAGGTTAGCTTCATCAATGACGTAAAGGCCGTACTTGTCACAGAGCCGGTAAAAGAGGGACTGGTTCGGGTAGTGAGAGCAGCGGACAGCATTGATGTTGCTTCGCTTCATGGTCTTGATATCCCAGATCATATCCTCTTCTGTGATAGCCCGGCCCAACTTACTGTCAAATTCGTGCCGGTTGGCCCCCTTGAAGACGATCCGCTGGCCGTTAAGGTACATAATCCCGTCTTTTAGTTCAAAGTTGCGGAAACCCACTTCCTGCCGGCTAACCTCTAAGAGGCTGCCTGCCTGGTATAAATACAGGCGGACCTGGTAAAGGTTAGGCTTTTCCGCGCTCCAGGCAGCTACTGGCAAATCAGCCAGAGTGAATTCCAGCTGCTCGCTTCTGATTGGGCCCAGCTTTTCAGCAACCAAGTCACCTTCACTATCCCGCACTTCCAGCTTAAAGCTGGCATTTGGCAAGCGGTAGGCAATATTGGCTTCGACTTCCAGCTTTCCTTTTTGGTAGTTATCGGTCAAGCTGGCCGTAAGCTTAAGGTCCTCCAAGTGCAGACGCGGCTTGGCCTGAAGAGTCACTGATCTGAACAAACCAGACATGCGCCAGAAGTCCTGGTCTTCCAGCCAGGAGGCGGAAGAATACTTGTAGAGAGCCACTGCCAGGCGGTTGTTTTCTTTCTTGAGGAACTTGGTAACCATAAACTCGCTTGGGGTAAAGGAGTCTTCCCCGTAGCCGACGAAGTGGCCGTTCAGCCAGACATAGATGGCTGTTGCCGCCCCGTCAAACTTCAAGCTGACTTCCTTGTCCCAGAAAGCTTCATCCAGGTCAAAGTATCTGACATAAGAAGCGAGCGGATTTTTGCTTGGAATTTGGGGCGGGAAAATCTCCTCACTGCCGTCCCATGGATATTGGACGTTGACATACTGGGGCTGGCCAAAGCCTTGCAGTTCCAGGTTGCCGGGTACTTTGACTGACTTAAAATTGCTATCGTCAAAGTCTTCTGCATAGAAGTTGACTGGTCCCTGGCCGTTTTCAGCGTAGTCAATCAGCCAGTCCCCGTCCAAGGACTGCACTAAACTGGACTTGCCCTCCTCCAGTTCTTCCTGGCTTTGGAAGGACTCATGGTCGGAGTGCGGGGGAATTGTATTGACTTCGTAAACTTCCGGGTCAGTCAGCCAGGCCAGGTCTGCCTGGTCAACTCTTTTTTCTTTTACTAACTTATTGCTCATTTTCTAATTCTTCCCTTCTAACTTGAATACATCATCCAGGGCTTGGACGCTGTGGCCGATCGGCAAGAGCATCTGGCTATTTGCGAAAGTTTCGCTGTTGATGACGGTCACGATTACCGTGTCGTCCAGCTTGGCCTGCTTGATCGCCGGGTCCCAGAATTCCAGGATCTGCTGGCCGGCTTCTACCTGGCTGCCCTCTTCAACATAGCTGACAAAGCCAGTCCCGTTTAATTTGGCCGTGCCCAGGCCAAGGTGAATCAAGACCAAGACCCCATGTTCATTTTCCAGGACGATCGAGTGCCGGGTCTTGGCCAGCTGGCGGACAGTACCGGCAAATGGCGCGTAGACCTTACCGTCTGCTGGCACCAGGGCAAAGCCGTCGCCTAACTTTTTGTCGGCAAAGACCGGGTCGTCAACCATGTCCAGGTTCATTAATTGTCCGGAGACTGGGCTGGCCAAAGTGAAGCTTTCAGCTTGCGCCGGCTTTTGGGCATGGCTTTGGCCGAATTGAGTTTCCAGCTGGTCGACGATTTCCGCGTGCTTTTCTTCAGTCAAGAAGACCTTTTTGGCGAAAATAGAAACAGCGATCAAGAGCATGACTGCCGGTAAGGCAAACATAGCTAACTTGAAGACCATCTGGCCATGAGCTGTAATTGTTGAGGCAGTCGCCCCAGTGGTCATGCCGGCAGTTAAGGCAATCAAGGAAACAAACCAGTTGGACAAGGCCCCGCCCAGCTTATCGACCAATGGCCGGACAGACAGGGTCAAAGCTTCGTCTCTGTGGCCAGTTTTCAGCTGGCCGTATTCAACAGCGTCAGAGATGATCATCAAAACGACCAGGAAGGCCAGAGGCTGCGGAATAAAGAAGAATTCTGCCCCAACAAGGGACAGGGCCAGAGAACCGCTGGCCACGGAGAAGACCCCGATCCCTAACAGCATCACCGCGATGCAGGCGTAGAAGAGGCGATTTCTGTTGAACTTCTTGGCCAGTGATGGGAAGAAGGATGCAGAGATTAAACCGACAAAGGTGTTGATGGTGTAAAGCAGGCTGTAGCCGCGGGCATCGCCTAAGATGTATGAGAAGTAGTAAAGTTGCAGAGCGTTCAGGGTGTTGATACCCAGGCCGTAAAACCAGTAGGCAAAGGCCAGCCAGAGGAGCTGGTCGTTTTGCCCCAGGACCTTAAAGACCTGCTTCAAAGTGGTCTTTTCATTGCTTTCCCGCAGGGCGGATTTTACTTCGTGAGTACCAAGACCAACGGTAATTGAGGTCAAGATGCCGACAATGGCCACGATCAAGGCAAAGAAGAACCAGCCCTGCTTATCCCCGTTGGGGTTGGCCTTGCTAGCCGAGAAGAAGAGGATGATTGGGGTGATGACTACCCCGACCAGGTTGGCCCCGATGGTGGAGCCGACTCTGGCGAAGGTGGAGGTCTTCTCTCTTTCCCGGGAATCCAGGGACAAGGCCGGGATCATGGCCCAGAAGCCAGTGTCTTTAAATGAGTAGAAGATATCCATAATCAAGTAAACAATACCGAAGATTACTAAGTAAACAACGGGTTTGCTTTGGTTAATGCCGCCAAAGTCGGTAAAGAGGGCTAAGAGGGCTAATGAGCTGATGATCCCCCCGCCCACAACCCAGGGCTTGAACTTCCCCCACCGGCTTTCGGTCCGGTCGATGGCGTTACCGATCAAGGGGTCGAGCAGGACTTCCCCGATCCGGATGGCGGTGATCAAGTTGGTGATGATAAAGATCATCTTGTGGTCACCGGCATTAAAGAGGTGGGTGGTGACGAAGACGATAAAGTAGGTTGACAGAGTCGCGTAGAAGACGTCGTTGCCAAAGGCACCGGCCGCGTACGACAAGCGTGAGACAAGCTTTTTCTTCATGAAATTCTCCTTTAGGTGTGTTAACTTGTTTATAATTACAGTATAGACTTGTTTACTAAATAAACCAAGATGTTTTACTAAAATATTTTTAGTAATTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAATGATGGCGATATAGCCTCTTGCATGTACTTCGGGAGGCGTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGTCGGTTGGAAGATCTCTTTAACACTCTCGAACATGGCTTCCACCAGGATTTGTAGGGAGTGATTGAAAGTGATGTCCGCAAGCTCGTCTACCATGCAATAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGTGAATCTCGTCTAAGTATGTTGACTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTAGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACCAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGCACCCGCAACGGCTGGCCTACGTTCAAAACAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAACCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAACACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAACAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTAACCGGTATTGGTAAAAAACGCGCTAACGACATAGCGCAAAGTCTTATTCGGTTGGCTAAAGTCGCATGCCCAGCGGTCAAAAAGAACAGTGCTCATATTCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAAACCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAGAGTTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAGAGCTCGCCTATTGTCCTATCATCTTCATCATCTCGCTTCTCAACTGACATGAACATGTAGCGCAGAAAGACGAAAGCTGTATGGGCAGTCAATGCATCATATGACAGGCCATGGTATTCAGTGCCAAGCTTCAAGAAACTCTTGCAGGTCTTGAAGAAGACCTCGATGTCCTATCTTTTGCCGTAAATTCTGATGATCTCATTTTCATCGATCGTCATGTCCGTGCAAATAAGAGCGATCCAGTCTTTGCGGTTGGAACGATTTCTTACGCAGACTATTCTGGCATCAATCTGGGCACCATCTTTGGCAAGATCTCCAACCTTTACAGGGACGGACAGGAGATATCTTGAACGACCTCGACGCTTCTTGCATGCGTTGAAGATCTGCTTGACGTTCATCCGCTTTCCTTCGAACTCGTATGTGATCTTGGAGCTTTTCTTCATCATGGCGATTACGTTCAAACCACGTTGACTGATTTGGACAATCTGATGAGGATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCAGCTGGATAACTACACCGGTCCCCTTTGATTGTGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTTGATCTTCTTGGTCGTCCCGATGACATTCTGATCGTTCTTTGAGGACAAGAGTGATGAAGCGATTGGGACGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTAGGTCATCGAAACGTGGTCGAATACTTTGGCAGCTAGCTCAGTCTTCTTGTATCCAGTTCTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGATCAGAAGTCAGATCTTTCAAGTGCCCATTGACGATCCTCTCAGCTAGCAGAATAGTGAAGCGAAGCCAGTTGAAGCCAGTTGATATGTGGGTTCTGCATGAATCGATAGTAGGTGTTTTTTGAGAAGCCAGCAGTACACTTGCCAGACTTCTGTTGCATGTACATGCTTCTGTCTGGAAACACATTACTGAAGATGTATGAAAGGATCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATATACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGGGCAATTTTAGGTTCGTTTTTGGTATCGAATGATGGTAAACTAGACATAGCGCAAGCCTTTCGTTTGATATTGATGATGTTTTGGTCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTTAGTAAACAAAAAATGACTCTTTTTTCAAAGAGTCATTTCCTGCTATTTACTTGTCTGCCTAAATTCTTTACTGATTATGCTTATCTCTTACTTCTTCCAGTTTAAGTCACTGTTTTTATCAGCTTCAGTGATTTCCCGGATAACCCGGCAAGGATTGCCAGCGGCTACGGAGTTGGCCGGGACATCTTTAACAACGACGCTGCCGACGCCGATCACGGAATTGTCACCGATTGTGACGCCAGGCACCACCCGGACTCCCCCGCCGATCCAGACGTTATTGCCAACAGTAATCGGGTAGGCATATTCCAGGCCGGTATTTCTTCTGGCCGCGTCCAACGGGTGGCCGGAGGTGTAGAAGCTGCAGTCAGGGCCGATGAAGACATTGTCACCAAAGGTCACTCCCCCAGCATCCAGGACGGTCAAATTATGGTTGGCGTAGAAATTGTCGCCTACTTTAATATTCCAGCCATAGTCGCACCAGAAGTTGGGTTCGATGTGGCAGTTTTCCCCGCTTTGGCCAGTATTTCCTTTAAGAGTTCCTTCTTTTCTGCTCCAGACGGCAATTGGTTGTAGCGGAGGCACTTGGCCTTGCAGGCCGTCAGTTCCGTCACCAGTTCTTCGTCTTGACCAGGATTATAGACCTGACCAGCCAGCGTTTTTTCTTTTTCGGTCGGCATTTCTTTCCTCCAGTCCCTGCCAAATCTTTTTTGCTTGTTACTTTACTCTAAGAGTTATTTTTGATCAATTAGCTATTTGGCCAAAGGAAGCTAATCGCCGTCTTTAAGACTTGCGGGTTCTCCCGCAAGCGGCTGTGCTGGGCCATTGGGCCGGTAAATTTCTTTTCTTTGTAGCTTTTTACCTTTGGACTGACCAGGTAGCGCAGAGATTTGGAGGAAGAATTCTTGACCCGGCCGTCTGAGTGACTGCCGTCTTCCAAGTCTCCGTAAACATTCAGCACCTTGGCATGCGGGTAGAGCTTCCTGAGAACCAGCTGCCGCTTGTAGTTGTCGTTCATGTGAATTGGCTTACCGTTCTTGTGGTTGGCCGAGACATACATCTCATTTATTCCCTTGTTCTATCTTTTTCACGTTTAAAGCTAATTCGCTTCTATTAAGCCAGCAGACCTTTTGCTAACATTGTTTTGTCGGGCGCGGCGAAGCCGCGCAATGTGTGTTATAATTATTGTAGTAACAATTAGGAAGCTTAGAAGAGCGGTTAAAAAGAAAGGAGCATGTCATGTATCCCCACCAGGAAGGTTTTGAGAATTGGTGCCGGGGTCCGCAAAGACTCAGCCCCAAGTCAATTGAGAACGCCGATTACTGTTTGGACCACTTCTTTACCTATGCAGAAGTGAATTTCCCATCCAGTGACGTTAATGAAATCACGGCTAGCAATGTCCGTGACTACCTGCAGCAGTTGGCGACTAAGGAAAATTTGCAGGTCACGACCGTCAACAAGTATGTCTCCTACATTAAAAAGTACTTCTACTACCTGGCCCTGGCTGGAATTACCCCAAGCTATCGTTTACTAGACCTCAAGGGCTACTCTTTTGAGCGGCGGAAGACCTATGTGATCGACTGGCCAGAGCATTTGCCTGCCCTTATCCCCTATGTCAAGCAGCCGGTGACTCTCTGGTTGCTGCAGCTTTTTGCCCTGGGCTATCAGGCTAAGGAACTCTTAGGAATTCGCTATAGCGACGTGAAAGACAATTTGGGCGAGATGACTGACTACCTGACTGGCACACTTTCCTTTGAAAAGGACCCGGATCCTTATATTTTCGCCTCCAGGTCCGGTGAACCATATGCCAGTACCAACAATATCATGCAGCTGGTCAAGGTCGACAAGGACCTCCTCTCCCCGATGCCGATCACTTTGACCAATCTCCGCCTTTCTTATGTCTATTCCTTGATCAGCCAGCAGAAGTATTCTGACAAGGAACTGCTGAAGATTTTTCGTTGCCCGCCAAAGCGCCTGGCCTACTACCAGTACAACGCTGCCCAGTGCAATCTCATTCCATTTTCTGAAGAGATGCTAAAAAAGGCCGGCCCAGACGCCGCCCCTGCAAGAAAATAGGCTATAATAAGTTAATAGTCAGTAAAAGGAGATTTTTATCAAATGAAGAAAAAGAATAAGCAAGCAGCTGAAGAAGAAAGCTGGGGCAAGTTTTTCAGGGACGTCTTAGTCATGTTCCTCGTCTTCGTCTCAATCTACTATGTCGTCTTCTCCTTCTTCTTAGCCAATGAAGTGGTATCCGGCCCATCCATGCAGCCGACCTTTGAAGACGGTGACCGCTTGATCGCCGTCCGCCACTTTACACCAAAGAGAAACGACGTTGTCATCATCAAAGCTCCTAACCAGCCAGGAGCTATGTACATCAAGCGCTTGATCGGCCTGCCTGGTGACACGGTCCAGTCCAAGAATGACGTCCTCTACATCAACGGCAAGAAGGTTGCCCAGCCGTATTTGAACAATAAATATCAGAAAGCTGACCGTTTAGCCGGCGTAAATTATACTAATAACTTCAAGGTCAAGCTGAAGAAGAACCAGTACTGGGTCATGGGTGACCACCGGGATGTCTCTAACGACTCCCGCCGCTTCGGGCCGGTCTCTAGGAGCTCTATCTTGAGCAAGGTGGTTCTGCGCTACTGGCCAGTTACCCAGATCGGCACTAACTTTTACTAAAAAATTCTGAAGCTCCCTCAACAACTTTTCAAAAAATGGTAAAATGAAGTTATTAAGGAGTGAAGATCAATGAAACCAGAAGAACTTTCGGATGCAATTATCGAGTTTCAGAGCAAGCACGCTGTGAGCGATACTACCCTGGCCTTTGCCAGTCACCTCTCAGTGGAAAAGGTGCACGCCATGAAGCAAGGGCGGGGCAACTTTACCAGCGATGAAATCAACCAGATGCTGGACTATCTCCAGAGCTATCTCTAGAGCTAAATGTAAGCAACCGGGCCAAACGGCCCGGTTTTCTTTTGCCCTTTTTTCTCTGCTTTTCCCTCTCTCATTTCTTTTTATCACTTCATTGTTTCACGCTAACCATTTTACATTTTGTATAAAGTTTAAAATAGTAAGAAGCCTGTTATGTAAAGGACAACGGCTATTATTTCTTAACAGCTGCCATTTTTATCATTTAACTTTAACCCGCTATTGCAAGCGATAAAGCTTGCTATTACAGCATTTCTCTTTCTAGCTCTGTAAGCCTTTTTCTCCGATTTTTGTTCCACGGTCTCTTTTTACCCTATCCCCGGCCAAGTTATTCACAGGCAAAAAATAAGAGCCACCCTAGAGCAGCTCTTATCCTTTATATTTAAGTTATCTTGTCTTACTTGTTCCGTTCAGCTTGCAGTTCAGCCATCTTGATCATGACGTCAACAGCCTTCCACATTGATTCCAGAACCGTGTATTCGTAGCGGCCGTGCATGTTTTCTTCCCCGGCAAAGAGGTTCGGGCATGGCAGACCCATGTAAGTCAGTTGTGACCCGTCCGTACCCCCTCTGACTGGTTCTTCATTGATTTCAGTCAAGCCGCAGGCTCTGTAAGCATCCCGGGCCAGGTCAATGATTTCCATGTGCTTGGCCAGTTCATCAGCCATGTTATAGTACTGGTCCCACATCTTCAGCTTGATTCTGTCCCCGTACTTGGCGTTGAGTTCAGCCACCTTTTCCTTGACCAGGTTCTTCCGGGCTTCCAGGCCGTCGCGCTTGAAGTCACGGATGATGTAGGACAGGTGGGCGTTGTCAACCGTACCAGAGAAGTCCATCAAGTGGTAGAATCCTTCTTCGCCTTCAGTCTTTTCCGGCACTTCGTCTTGCGGCAGGGAGTTCTGGAAGTCGATCCCGACTTGAATGGCGTTGATCATCTGCCCCTTGGCTACAGCTGGGTGCACGTTAACGCCTTGGATGTCCAGTTCAAACTGAGCTGCTGAGAAGGTCCCCCAGTCCAGCTTGCCCGGGCCCTCCCCGTCAACCGTAAAGGCAAAGGCAGCATTGAAGTCTTCCACGTCAAAGTGCTGAGCACCCGTGCCGATTTCTTCGTCTGGCGTGAAGCCCAGGCGGATTTCCCCGTGCTTGATTTCCGGGTGAGCCAGGAGGTATTCAGCAAAGGTGACCAGTTCGGCATCCCCACACTTGTCGTCCCCGCCCAAAAGGGTGTCACCGGAAGCAGAGATAATGGTCTGCCCCTTGTACTTCTTCAAGTTCGGGAAGACGGCCGGGTCCAGGTAGAATTCGCTGTCGCCCAATTGGATCTTGCTTTCCCCGTCGTAGTTTTCAGTAATCTGCGGCTTAACGTTTTCTGAATTGAAATCAGCCGTGTCGCAGTGAGCCAAGAAGCCCATAACCGGCACGTCCCAGTCAACGTTGGAAGGAATAGTTGCGATGACCGTACCAGCCTTTTCATTGTAGTGAACGTCACTTAAGCCCAGTTCTTCCAGTTCCTTCATGATGACCATTTGGTAGTCCACTTCTCTTTGGGTGGATGGGAAGCGGTCAGCATGTTCATCTGACCGGGAGTTGATCTTGACGTACTTCAAAAATCTTGGCAGCAAAGTTGGGTATTCCATCTTTTTCTCCTTATTCTTTACATAAACAAAAATATTTCACTTACTAAAAAATGTTCTGGAAAGGATCGGTTGATTCAGCGCTGATTAAGCACTCTACGCTCCAGCCCTCTTCCTTCTGCCAGGCACTGAGCCGTTTGGCAGCTTCATACTTGAAGAGCTTCTCCGTATAGTGGCCCGGATCAACTACTACCAAGCCTGATGAAATCATGTCATGGCCAGTGTGGTAGTAGACGTCACCGGTGATGTAGGCGTCGCATTTGTCAGCTAAGGCCTGTTTCCAGAACTTGTTCCCGTCCCCGCAGACGAAGGCAACAGTTTCCACCATTTTATCCTGGTCAGCGCAGATCAAGCGGACCATGTCCACCCCCATCTTTTCCTTGACGTAGTGGGCAAAGTCGATCGCCTTCATTGCTTCTGGCAGGCGGCCCTTCCGGCCAATGGCGATGCCGTCCTCGTCTGGGGCAAAGCCGGTTACGTCCAAAAGGCCAAGTTCTTCAGCCTGCCAGTCGCTTGACCCGTCCTGGGCCTTGTCGGAATTAGTATGAATGGAGTAAACGGTGATGCCGTTAGCAATTATCTTGGCGTACATGGCCTTTTGCGGGTCGCTGTAGTCCAAGTTGTTAACCGGACGGAAGATCAAGGGGTGGTGGCTGACGATGAGGTCAGCGCCTCTCCTAATCGCTTCATCAACCACATTTGGCCGGATGTCTAAAGTCACCAAGATCTTGTGGACTGGTGCTTCCAGGCTGCCGATCTGCAGGCCGACCGGGTCACCGGCACTGGCGATACTTTCCGGGAAAGCTTCATTCAGTTTAGCTACAATGTCTTTTACTTTAGTCATTTTCCCCACCTAATTCTGTCTTGATCATAGCCAGCAAGTTTTCAACTTCCTTGATCCGGGTCAGGTCCTTTTCCCGGGCCTTGTTGAGGTTAGCCAGCAGCTTTTGGTAGTAGGCTTCCTGTCCCTGCCACTTCTTATAGAAAACATCAGTCTTGTTCTTTAAGAGCAAGGGACCAAATTCCTGCTCGCGGACAGTCAATTCGTGAACCTGGTCAGTTAAACGGGCCTTGATCAGCTCATAGATGTGGCCTGCTTCATAGACGATGTCTTCAGCGACGATCTCGTACTTGTTGGCCATCAACCAACGGCGGACGGTGTTTTCCCCAATATTGGCTTCAAGGACCAGGCTTGGGTAGTAAACGCCCCGGGAGGCGGCTTCAGAGAGCAGGTTGACCATCAATTTGCCGCCCATGCCGGCGATGACGACCGTGTCGATTTGATCGCTTTCCTTAATGGTTTCCAGGCCTGAACCCAGCCGGGTTTCAATCTGGTCAGAAAGTCCCGCGGCGGCGATGTCCGTTTTCGCGTTCTCTAAGGGGCCAGCAGCAACGTCACTGGCGATAGCGTGGCTGATCTTGCCGCTCTTTACCAGGAGGATCGGCAGGTAGGCGTGGTCGGTGCCGATATCGGCCAAGCGGCTGCCTGGATCAACCATATCGGCAAGTCTGTTAAGTCTTAAATTCATTAGTAAAACGCTCCTTTATCCAAAAGTAAATTCTATCATATGCCAGCCAACAAAAGACAGTTTCTGCAAAAAATAATCCACGTGCTATAATTAATTGTATTTTTGTCAGTTTTTTTGATGACAGGAGGAAAGAAAGACAAGACATGGACCGGACGGAGCCTACTACTTTAACTAATATGTGCATGATCGTGGACAAAGACCGGGTTCTGACGATCGACCGGGAGGACCCGGTTTGGCCAGGCCTGGCTTTTCCAGGCGGCCATATTGAAAAGCATGAGTCATTTCATGATTCAGTCATTCGCGAGGTCAAGGAAGAGGCCAACCTGGACATAGTCAGTCCCCGCCTGGTCGGCTTCAAGCAGTTTTTTGACAAGCTGGACCGGCGTTACCTGGTCTTCTTCTACCGGGCCGACCAGTTCTCAGGAAGTCTCCACGCTTCAAGGGAAGGCAAACTGGAATGGGTCAAGATCAACGATTTACCTAAGCGGCAGTTAGCCTACAACTTTGACCGAGACCTGGAAGTCTTTTTAAAGAGTGACCTTGATGAGCATGTATTGTTGGACAAGAAGGACTTTTTATATTAATGAGCAAGAAAAAGAAAAATAATAAGAAGAGCAAGCGGATTTGGGGCGGAGTCGTGACGGTGGCACTTTTTGCTGCCCTCTTCGCTTTCGCGGGCGTGTATATCAAGAATTATCCAGTGGAAAAGGATGTCAAGCTGGTCGCCACCCAGCCTAAGGCCTTGAAGGCCAAGAAGACGGTAGCTGAAAAGGACATCTGGGGCTATCCATTCGCCAAGTGCTACACCAAGAAGATCAAATACCTGTCGGGCCAGCGCTATGGGAAGACCGACGTCTGCCGGCGGGTCTACCCGAAGAAGTCCTACTTCCATGACGGCTGGGACTTTGGCTGGAGCGAGGTCGGCAACAAGGCGGCTGTTTTGGCTATTCACCCGGGGACGGTGAAGAAAGTTGCCTACTACACGGGTCTGGGCTGGTACATCTGGGTCGTTTCTCCAGACTGCTATGTTGAAGTCTACCAGGAAGGTTTCGCCAACCGGTCAGACATTACGGTTAAGGCCGGTCAGAAGGTTAAGCTAGGCGACAAGCTCGGCCGGCTGACTGACTCCCACCTGCACCTGGGGATCACTAAGACCAGCGCTGACTACATCAGCAAACACGGTCACCCTTACAAGAACTACTGGCGGGACAACGACACCTGGCTGAACCCGATGAAGGTGATTACTGACAGCTTGCAGTTGCAAGAGGATGTCAAGGAATACAACGCTAAGGCAGCCAGCTACAATGCCAAGGCAGCCAGCTACAATGCCAAGGCAGCCAGCTACAACGAGAAGCTGGCAGCTAAGAAGAAGAAGCTGAAGGTGGAAGAAAGCAAGCACCCCTACCACTACTTGAAGTCATTTATCAAATAGACAGAGAGAAAAAGACGACTGAAATTAAGCAGCCGTCTTTTTTGCTCACTTTTTTGTCCCGCCCTTCTCGAGGTCAAGGAGAAGTTTTTTAGCTGCAAGGCCAGCGGCGTAGCCGGTAAGGCTGCCGTCGGCCCCGATGACCCGGTGGCAAGGAATTAAGATCAAGATCGGGTTGCAGTTGTTGGCCAGGCCGATTGCCCGGCTGGCATTCTTGTCGCCGGTCATTTCAGCCAGCTGCTGGTAGCTTCTGGTCTCTCCGTAAGGAATCTGCTGGAGCTGCTGCCAGACCTTTTGCTGGAAGTTGGTGCCTTCTGGCGAAAGGGGCAGATCAAATTTTTGTCTTTGGCCGGCAAAGTATTCCTTCAGCTCCATCATGCAGGCCTTAACCAAGTCACCTGACGGGTCATTTGGGATAATCCGGTCAGCCGGGACCTGGTAAGTTGCTTGGCCAGTCTTTTTCTCAAGATAATTTGCCGGTTCAACGCAGAGGATGGCGTCTTGGGAAGCGACAATTCTGAGTGGCCCGATTGGCGTGTCCATGACGGCCCGGGAGATATTTTGGGCAAAAAGCTGCCGGTATTTAGCCGGCGGCATCCCGGACAGCTTGCGGAAGTGGGCATAAAAGCTGGAGAAGTTAGTGTAGCCGGAATCAGCGGCAGCGTCGAAAGCGCTGGCTCCGGCCTGCAGAGCTTGCTTAGCGGCAGCGATTCTCACCTGGATCAAGTATTCTGCCGGCTTCATGTCATAGTAAAGCTTGAAGACTAGGGACATTTACTTTCTAGTTACGCCCAGCTCTTTCAGCTGCTGGTTAAGCTCTTGCCGGTCACTGAAAGAGTGGTCAAAGACGACCTTGCTTGCTTCAGCCGGGTCGCAAGTTTGGACTGCCTGCCACATTTCGTTGTCATCCATATCTCTTCTCCTCGTTTTCAAACGGTAGAAAGTTTTCAAGAAGCACTTTCAGCTATATGAAACTTTAACATATTTAGTCAGTCTTTGCTTCCGAAAAAGGCAGATTCAATTGTTAGGATAAAAAGACGGCTGACCCAAGTCAACCGCCTTTTGCTGCTAATTTCCCAGGATTTTACAACTCAAGCCATACGGATGACAGATTTTCTGCCAGCCGTATTTATTTTATGCATGACTTTTGACTTTCCAGAAATGCGAGGATCTCAGCTTTAGTTCGGGTACTTTTATCAATAGCTTTTAGTAATTCCTCCTGCTCTCGGTGTTTCTTGAGCTCATAGAGAGCATCTAGCTTCTGCGACGCTTTATCGCAGCGCTCTTTAAGGCGCCGGAGTTGTTCTTCTGTTTGGGAAATCTCGGCTTCAATTGTCTTAATATTCTTCGTTCTCGGCATCTTCATCATCGTCTTTCTGTTCTTCTGGCATTGCGGCGTTCTGAATGTCTTTTCCAATCTGCCTTGCCTGTGCCTTGATCCATTCTTCGTCCAGTCCAAAGGCACCTAGTATTACTTTCTGGGTAGCTGTGACTGCGTGATCGAGCTTATAGTTGCCGTTCGGCTGGCGTATCAGATCAATCTTTTCGAGCTCTTTCAGTGCCGAAGGTACGCTCAGATAGTTAGGCTTGCCCGGCATTTCGGCTTTGCGCTTTCTCAAAAGCGTGTAGATTCTTGCTCGGATTATCAAAGCAATGAACTGAATGAAGATCTTAGCTTCAGCCGCCTGGCTGCTTGCGACTCTGAATGAGCGATTGCCAAGGAAGGTCTTATCACTTCCAAACAGCTTCTCTGAGATATCGCGGCTCTTGTAAAGATTCAAGGCTTCAGAGGCTGTCATCTTTTCGGAGGTCACGATCGCGAAATAGCCGCACAGCTGCAGCTCTCGTTCGATGACATCTTCCCGTTCCTTTCGCAATTATTCAGGGATACTTACGGCTTTGATAGCTTGACGAGCTTCTGGAGTTGAACAAGGACAAAATAAATCCCAGCACCTTGATTGGCGTTGGGATTCTTAGGAAGTTTGCTTTAGCTATATTCTGGATTATTCTTGATCTTCAGAATAGTTGTCACGCAGGTATTCGCGGTCATCTTTATCAAGACCTTGGCCGGTCGAAAGCTCTTGGTAAATTTTATTTTCTGCCTCGTTTACCGGACGGTCTTCAACGATGTTGTCCTTCCGGCAAACTTGCACAGCTTGGTTTGAGAAATAGTCTGAGTACTGCATCACGCCTTTGGGATTTGCAGCAGTTGGCACTCTTTTGGCATAGAGATGGATGGCTCTGCCGAACAAGATACCCATTTTTTCTCTAACATTGTCTTGAACTTCATCCACGACAAAAGCAGCATTCTTCGTCTTAATCAGCTTTAATGCCATTGTATTTCCTCAATTCTATCACGCACGAACGACATCCTGTTTTCTTACTCTAATATACCACTAACCGACTCTATCTTTGAGTGTCGTTCCATCAGGGTAGAGCCACTTGACTTTACCATTTACTGAAGCGCCGAGTATACATCTAGGCAGATGAATGTAGATCTCTTAAACTACTACTTAGTATTCTCTTTATCGGGAATCTCATTCATCATATCAAGCAAGCTCTTAAATGAATCTACCTGCTCATAAATTACGTCAGTCGTTGACATTTCATTGAATAGCTTCTTTGCACACTTAATCTTAGCTTGCTCGATTGGTCGCAAATCCATACTGCTCAACGAGCCCTTGGTTTCAGCAATAAAGTAAATATGCTTTACGCTACCTTTCTTGAAGGCAATTGCCCAGTCAGGGGCATAATTACCAACTGGAGTTGGGATCTGGAAACCGCGAGGTAATTTAGCGTAAACAGCAACCTTATCATCTAAGTCCATATCCTCCGCAAATTTTCGTTCAACTGACTTTTCTGCGGACCCATCCGCAAATACATAGTCTTGAACGTTCTTTTTTGCTCTGTAAGCTTTAGAAAATTCATGGTTCTTCTCAAGAGTAAAGATACTTGAATCATAGCGACCTTCAGTTTCATTGTAGGTGATATCATCCACGATCATAGTTGCTTTCTGCTCATTGATCAGTTTGATTACCTTTGAAATGAATTATTCAGGGTTATATTGATACATCTTGAATTTAGCTGGCTGTATTGTCTTCAATATCTTCACAACGGTTCTACGTGTTAAGTGAGTCCCAGCACTAATCTTACCTATCAAGTCATACTTAACTTGACTAGTTTCACCACGTGTAAGCGTATAGGTTTGACGGCTTTCAGAAACAAAGCCAGAACCTGCTTTCACACTGTCAGAAGACCACTCTTCCCCTTGAGTACCCTTTGTTACCGTGTACTGGAGTGGAGCAACATACAGCTTACTATTAATATAATTAACTGAATTTTCAATTAATTCCTTACTATCGAAGTGGACAGTATAACTGTACTTATGGTTGATTTGCTGCCACAGCTTTTGAAACTCTTCTTTATTGAAGTTGTCATTCAAATTGTTCTCTGGAATCTTCGTTTTCCGACCATCCAAAACAAAGTCATCCAAGGCATGGTCATCATAAACACTTTGAACCAGGGCATGAATTTCTGGCGTCAACTCTCTCACCCCGTATTTTTCAGGTAGAGGTTTAAGAGTATTATTAGCTACATCGGTTCGGTATGTATCCGTAACATGATCATCATCATCAATGTAATCATTCTTTATCAGATAGTGCATAATTACATTGCTCTGTTCCTTACTGATCTTGACAACCTCATCATTATGCTTAATTTGCTTATTCTCAAAGAAGTCCAGCGTGATCTTGGTTGGACGCTCATACAAGTCGTCCTTGATTTCCTTTTGAAGGGATGAAACAAAATCTTTATAACCATCACTTGCAATGACAGTCAATTTGTTAACGTCTTGAACTTCCGCACCCAAAATATGTTCATCCATCCGATCCCCATCTTGGTTAACACAGATTCTGAGCCCACGCCCAACTTCTTGACGCTTATTGGTTGTACTATCGCCACCATGCTTTAACGTGCAAATCTGGAAGACGTTCGGATTATCCCAGCCTTCGCGTAAAGCAGAGTGAGAAAAGATGAAGCGGACTGGATTATCAAAAGAAAGCAGCTTTTCTTTGTCCTTTAAGATCAATTCATAGGCTGATTCATCATCACTAATATCAGAACCTCGCTTTATCTTGGAGTCAATCTTGTGCCCTTTCTTATCGATACTGAAATAGCCCGCATGAGTCTTCTTCACATCGATGCTCTTGAGATACTTCTCATATGGCGTATCAAATAGAGTCAGATATTCGTTCAAGATAGAATTGTATTCTTCTTCGAACATCTGGCCATATTCTGAGTTAACTTCATTGCCTTCTTCATCATATTTACGATAATGTTCAACCTTATCGATAAAGAAGAGTGACAAAGTCTTAATGCCTCGATTATAGAGATCCTTCTCTTTCTCGAAGTGCGAGCGGATAGTTTCGCGGATTTGAACTCGACGAATATCCTTTTCACTAACATCCCCTTGAACTTCACCAGTATGAATTTCAACACCGTTAGTGAAAGTCACTAGGCCATTTATTGGATCGATATCATTGATGTGGTAGCCTTGGTATTGCTCCAAGCCTTTAGAAAGGGCGTACAAGTCATCATCTACTCCAAGAATCCGAACTTCACGGTTGATTGACTTGTTGTATTTGATTTCAAATTCAAGTCGGGCTCTTGGCGGATGGTTAGGGGAAATTACGATATTCTCAAGATACAGATATCCGTCTGTCCCTCGTAAGTTCTTGATGTCGAAACCTTTGACTTCAATCTTCTTAACCAACTTCTTCTTGTAAGCGTCAAGTGCATCAAGGACATAAACCAAGTCATGGTGTTCCTTATGCGTTGCAGAGTAGTTCAAGGTAAACAGAGGATTGAACTCTTTAAGAGATTCCTGTGTTTTCTTACCACCCATTTTTTGAGGTTCATCGAGAATGACGATTGGCCTGTTAGCCTTTATAACATCAATTGGCCTACGGCTAGCAAATTCGTCTAACTCCATTCGAATTCTTCGAGCGTCTTTTCCACGCGCATTAAAGGCTTGAACGTTGATAATCATGACTGACAAATCTGCACGAGAACTAAAATCATCAATTTCTGTTAGATTCTTTGAGTTATATATACAGGTGTGGGCTTTCTTCTCATACTTCTCTTTAAAGTGATCTTCCATCATTTGGAAACTCTTCTGAACGCCTTCACGGACAGCGATAGATGGAACAACAACGATGAATTTGTTCCAACCATATCGTTTATTTAACTCAAACATGGTTTTGATGTAGACATAGGTCTTACCAGTACCAGTTTCCATCTCAACGTCCAAAGAGCAAGCACCCATATGTTTAGCAAGAGTTGAGGATTATCTAATATTGTTCTCTTTTTGTACTTCACGAATATTATTAAGAAGTTGCTCTGATGACAAAGCCACTGATGCATTAGAAAAGCCAGCTAGATATGTATTATCTATTACTTCCGAATCTGAAAGCTTGACTTCATACTCCTTACCAACATCACGTCGATAGCTGACGCCCCCCTGCTTCGGTTGACCTTTAAAAACATTAACGACACTGTTCACAGCATCGGTTTGATATTGCTGGATCGTAAATTTAAATTTCATGTCAGCTATCTTATAGAACCTTTCTTACAGTCTCTGGGCTATATGTTTCAAAGATCTGTTCGAAATTGGCAGCAACAATATCATTAGCCATGCTATTATCCCGGAAAACAGCATAAAATGGTCTCTTCTTAGCAATTTCGATTACTGTTTCTTCAGTCACATTCTTATCGAAGCAAGCCAAGAGATAACCATCTGCAACGGAGAAGACCTTCTTGCCAGCAATCTCCTGTGTTTCGATATCTGATGAAAGTAGAATACCTAAATCCAACATAACTTGAATTAACAGGTCTTCGGGCGTTCTATCCTCCTTTATATTGTCCTCAAATCCGTCAAGACTAAGTTGTTCAATATCTGCTGGAGCATAGTAAACGTCCTTCATATTAGATGAATCAACTTTGAAACAACGGAAGCCATAGTCGATATCAGCACCTGTTTCATCCTTGATCTTCTTACCTGCACGGCGGATACGCTCTTCACCTACATCACAAATATTTTTAAAACCGGATTTATAAGCTTCACTCTTCTGACCTGTTTCTTCTTGCAACTGTACTAAAATATACTTACGTTTTCCGCCATCCTCAGCATTTAATTGCATAGCAGCTTGTGCAGTAGTTGCTGATCCTGAAAAGAAGTCTACAATGATTGAATCTTTTTCAGTTGCTTGTAAAATGAGTGACTTTATGAGCGACATTGGTTTTGTATACGGAAAAAATGATTTTCCAAAAAGATCATACATTTGTTTCGTGCCTTCAATATTCATTCCAACATCACTTAGCCACGTTGATTGTGGATTTGTGGCTGAATTTAATTCAGACGCAAATCGTTTTCTCATGGGCCGCTTTGAAGTATCCTCAGGAAACACGATTCTATTTTCTTTTATCAATTGGTTCATTGATTCCGGGATATAGGACCAGACACGATTGTAATTTGGCTTATAAACCTTTCCAGTCTTTGGATCAACCAGATCATAATATTGATTGGGACGCATATCCGCTGTCATTCCTACAGTCAGATCTCCTGGTGTCCATGGGCCTCTGGGATCACTGTCTGGATTTGAATATCCTTTATAATCTTTATCGATTCCACGTAATGCAGTGAATTTTTCCCTTTTATAAGCTAGCACATATTCATGATCTGTTGAGCACTTACTTTTATCTAGTTGAGATGATGATCGTCTCTTCCAAACAAAAGTTGCTAAAAAGCTTTGTGTTCCAAATATTTCATCACATATTTTTTTTAGATTTCCGAATTCATTATCATCAATAGATATAAATATCAAACCATCTGGAGCTAACAAATCCTTTGCCAATCTAAGTCTTGGATAAATCATATTCAGCCAATCAGTGTGAAAGCGTCCATTACTCTCACTATTTTGAACTAGACGGTTTCCTTCTTCATCTGTTTGACCACTGTTATCAGCATATTCATCAACACTCTGGGCAAAGTCATCTTCATAAATGAAGTCATTCCCAGTATTGTAAGGAGGGTCAATATAGATCATCTTAACCTTGCCTAGATATGTTTCCTGTAATAGTTTCAACGCATCTAAATTGTCCCCCTCAATATAAATGTTTTCTGAATCAACTCCTCCTGGTGTACCATCCCTACCAACAGACTTTTCTTTTTCTAAACGTAAAGTTTTGGAAATTGGAGCATTCGCCATCACCATTGACTTACGTTTATCTGGCCACGTAAATTGATATCGTTCCTGCCCATCATCGATAACCTTAGTATTGATTTCTTGCATCAACACATTCTTATCAATTGCCCGAACAGTATTGCCGTCTTCATCTTTGATTTCTGTCACTGCGTCTGGAAACAGTTCTGCTAACTTTTTATAGTTTTGCTCTGCTATATCTGGCGTATGCATCTTCAGCTTATCCACGTATTAATACCTCCAACTGCTCCTTATGCTTTTTCAAATCTTGATAAAGATCAAATTTCTTCTTTGGCTGGGTCTCTCCCCAGGCTGCTTTCTCTAATTTCTTTATTTGTTGTTGCAATTGCACTATTTCATCTTGTCTCATCAACTGATCGTCAAGACTCATTTTTGAACTGATTTGAGTATCTGGTCCTATTGCGATCTGTCGGACTAGTCCACTCCAGATATCCTCAAGACTATCGCCGGAAAGGTGCAGCTCAACCTTGGCTTCCGGCATCCACTCAGTCATATAGAGTTTCTGATAGTAAACAGCTAGTTGCTTCTGATCTTCGTAGCTCATCAGAAAGACAAGTTTATGCGGGTTGCCTTTTGCTATTGCTTCAATAATCCTTTGATCGTAGTCCTGCTTCTTAAGCTCAATCGACAGTAGCAAAATTTCTTTTATCTCTGAGTCCTTAACTAAGTTCAAATTCTCTTTAGTCAAACTGTTTTCAGCCACAATACGGCTAATGTCTGACACAAACTTGCTTTTCAGAGCTGTACTCAGTGATAAATGTTTGTAAAATGCTTCCTTAGGAATCCGTCGATTAGTCTTTGTGCTTTCTGGGAAATCAATCATTTACATCACCACCAAGAAGTCAATCAATTCAAAGTCATCCAAGCCAGAGAAACCACCAGATTGAAAAGTGGTGGTGCCTGCAGAAAAGAAACTTTCAATGTCCTCTTCATTTTTAGCTTCGATGATCGATCCAATCGCATCTTCTAAGAGCTTTGAGACCTCTTGCATCTGACGACCATCTTTTGTTACCCGGTTGAATTCCTTGCACAGCTCTTTATCTGGCTCATTTCGTCCTTTTGCCAGATGCCGCATCTCGTCAAGGATATCTTTCGGCTGTAAATGGTTTACCAGAATCTCTCCATCCATATCCACGTAGACCATGTAGAACGGATGAAAGCGGTTCCTGTCTTTGATATTTATTTTCTTGTTCACATTCTTCAGTACGAAGATCACCCCGGGCTTATCACCATGAACAATGGCATGAATACCAAATGGCAAACGGTCTAGATCCTTGTGCTCTTTCATGTAGGCGAGTAAATCCATCCGGAAGTCGTTTAGCCCAAGATCCGTAATTGAGATACCTTCGTTCATGTCCTCCAGATCGACTACTTCTTCTTGCAGACGCTTCAACTGGGTTTTTCTGTAACTCAGATCTCCCTTCTCTTCTGGGTTGATTAGGTCGTCATCCCCTGTTGAAGTCATTACGGAGATCTTCATTCTGGTCTCAACACGATCTTTAAGATTGATGTATTCGTCAAGTGTCAGATCAGGCCAGAAGTTGACCAACTGAATAACCTTGTTCTTGCTGCCGATACGGTCAATCCGGCCAAAACGCTGAATAATCCGTACAGGGTTCCAGTGAATGTCATAATTGATGCAGAAATCACAGTCCTGCAAATTCTGGCCTTCAGAAATGCAGTCAGTTGCAATTAAAATATCGATATTCTTTTCAGTATCATCCGGATAGACAACATTCCTGTCCTTAGACATCGGTGAAAAGCAGGTCAAAACGTGGTTCATCTCTGCTCTAAAATTCGGAATAGTTGTCTTCCCTTCGATACTCCCAGTCACCAAGGCAGTATTCAACCCAATTTCCTTAGCCCGAGGAGCAATGTTCTCGTACAAGTATTCAGCAGTGTTTGCAAAGGCAGTGAAGATCAGAATCTTCTTATTGCCTGGATTGATAGGGTGCTCTTCTTTATTACGGATAACCTCAAATAACTGGTTGAGCTTAAAATCATACTCTGGTGAGATGTCCTCGGTCATATGGATCAAGGTTTCCAAGACGTCAACATCCGCCTTAATTTCTCGTTGCCAAGAAAGATAATCCATGTCCCGCAAATCAATCTGAACCTTCTTGCCCACTGTGAAGATATCAGTGTTTTGATCATCCTCGTCAAAGTCAGTGGCCGCGTTTGATAAGTCAGTTAATTCATTAAGCTTTCCCTTGCCATCTTTTTGGAAACGATCAATTGCATCTGAGGTATCACACATGTATGCATATATCTTTTGCAACGTTAGTAAAAATGAGTGAACTGAGCTTTCCATTCTTTTCAGAAGGTTAATACTCATCAAACGCTGAATCCCAGATTCACGACCAACTCTGAATTTCTCAGTTTCTCTTTCAGAAACGTACTTTGACAGCCGGCTTGGCAAAATGTATTTCGTTGGTGTGTAGATAGCCAGATTTAGCTGGTTTAAACACTCATACACGTCTTTGTAATTAATTGCTCCAGGCTTATCAGTTAGCTTAGGGTAAAGGCTGATTGGCTTTAATCGTTTAGGAAATGTGCCTATTTCAGTAGTGTCATAGTAATTTTGAATGTGATACCGAGACCGCGCGATCGTGACAGCATCTAAAACTTCAAAGAAGTCAAAATCTAGTTCTCTCAATAAGTTCTTAGTTGTCCGCTCCACTTCAGGCCGCTTGCACCAAGCATTGTAGACGGACTGAGCTCTCCGAAAGATCGTGTCGATGTTTGATTCGGTATTGAGCTTCTCGTTAATCTCATCTGGTACGCCTTCATAAGCCAAGGCAAGTTGATTTCTAAGATCATTGAAGCGATTGTTAACGGGAGTCGCTGATAACATCAAAACTTTAGTGTTAACACCGGCTCTAATAATCCGATTCATCAGACGCATATACCGGTTTTCTTTCTCGCCGCCATGTGTATTGGTCCCGTTACCATTTCGGAAATTGTGACTTTCATCAATTACTACTAGGTCATAGTTACCCCAATTGATTTGTTCAATTGGTAAACCTGTCGCTGTTTTGCCGTGATCTCTTGAGAGGTCAGTGTGATAAAGGACATCGTAGCGGAAACGATCTTTATAGAGCGGATTATTAACCAGATTTCCCTTGTAGGTCATCCAGTTTTCTGACAGCTTCTTTGGACACAAAACTAATACGCTCTTATTGCGCCCTTCGTAGTACTTGATTACTGCTAGTGCAGTGAATGTTTTACCCAAACCAACACTGTCGGCCAAAATGCAGCCATTGTATTGCTCCAGTTTGTTGATGATGCCTAGAGCCGCATCCTTTTGGAAGTTGTAGAGTTTGTTCCAGATTACGCTGTTTTTGAACCCAGTAGCTTCGTTTGGTAGCACATCTTCAGACACATCTGCCAGAAATTCGCTGAAGACGTTGTAGAGAGTCATAAAATAAATCAGCTCAGGAGAATTCTCTTGATAGACTGACGAGATTTTATCGATAATTTCGTCAGTTACATCTACCATTTTTTCTTTGTCCTGCCAAATTGATTCAAACGTATCTAAGAGGGCTTGACTAGCTTGATTATCGAACCTCATAGTCATGTTGGTCATAGTGTTACCACGCTCACATCCCAATCCGACAGTCGTAAATTCATTAAATGGCATGTAAGTGTAGGTATTTTCGTAATTTTCTACCGTTAAGAATTGGTTTATACTCTCATCAGTCGTATTGGTTAGGAAACGAGCCTTGTGTCGAATCCAGTTGGCACACTCTTTAGCAATTGCCTTCTGCTTAAGTTCATTTCTCAAGCGAACCTCAAACTCAGTACCATACAAACTATTTTCTCGAGTAATCCGCGGGATGTAGAACTCACGACGCTCTTTTGGCATTTGATCAGGTACAAACGTTGGTGAAGTAAAAATGAAGCGAAACTCGGAGCATTTTTCCAATTCCTCTTTTAAGGCTTGGTAGGCATAAATGGAGAAGCAGGCTGCAGCAACAGAAACTTTGCTGTTAGGTGTAATCTGCTTCTTCAAGTCGTCTCTCACTACCTCAGTTGTGTTGTTAAAGTTTTTTACTCCCACGACTTACACCCCCATTTCTGTATGCCAAAAAGCTGGTGGCAAGCCATCCGCTCTCGTATTTCATACAAAAAGGATCCACCTATCCCTAAGTTAAGTTGAGTTGAGTTCATTCTTCTAATCCAATCATATCTATAGAATAAAAATGGAACCAAATTGGCCCCATTTTTTGGATAATCTATTCATCGTTATGAAGTATTCAGTCTTATGAGGTACTAAAAATGGTATTATAATACCTTCTATTTTATTAGAAAAAACGCAAAGAATAAAGGCCTACGGCTGAAATACCGTATATGATAAGTGGCACTCCATAACAACCATAGAAGCTCATGCGATTTTATTCCTTCTTCCCAGCCACAACCTCAATCTGCAATTCACTTTGGTCAATGCCATAGAAGTCAAACAAGTCTCTCAACTTGTGGATCTTGTTCCAGTTGTCAGTGCTCGTGTACAAGTAGACACCATCCGCAACTTGGCTAAAGCCGTTTTCTGGATGATCAATCAGTACTTTTTCAAGTTTAGTTCGATCACCTGCAATTAGTTGGCGCATAGGCGCAGGATCAAGCTCATAGAGTGCCCGCACAACTCCAATATACATCTCTTTCCAAGTGCGCTTAGGTAGCTTGTAAGGTGTGTTCATCAAACTGTAGGAAGCGATCTTCACGTTAGCGTAGTTGTTGTCGTCATCAAGGCCATAAACTTCATTTTCAACAACCTTTGGCTGAAAATTACTGCTTGGCATTGGCCAGAGCTTTAAAGCTGTCTGCTTCAACAGTTCACTACGTTCTATCAATTCCTTTTCAGTCCACTGATCGCATCCCTTAACAAAATCATTCAATCTAAACCCACTATGATCAAAACCGTTCTCAGCCGTCTTTTTCTCGTGAAAACTCTTGTTGCTGTAGCTTGAATTATAAGCCGTCAAACATCTCATAAATTGGTATCGCGGTACCCTTCATTTTCATTTCCTCACATTCTCTATAGATACTTATATGATAGCAGTTTACTTCCTTAATGGCCTTTTAGACTCTACCAAAAAACTCTCCCTAAAGCATTAGAGAGAGTCATCATTTCCTTGCCCCTACATCATCGTCTGCTCAATATAGTGCGCGATATTCTTCCCAGCGCGGGCATCGCTTGGCGTCTTGGCCACCGTGGTGTTGTAGCGGTCATCGCCAAAGAAGGTCAGCCGGTAGTGCTTGCCGTCCTCCTCGATCCTAAAGCCGAAATCCTGCAGAGCCTTCCGGGTCTTGGCATCCATAATAGTGTAATTCTTCAGAACCCTCTGAATATCAGCCTTTGACCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCTGGCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCCAACCGCAAAGACTGGATCGCTCATATTTGCACAGACATGACGATCGATGAAAATGAGATCATCAGAATTTACGGCAAAAGATGGGACATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTAAAGCGTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCCCATACAGCTTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAACTCTTTTACTACATGGTGGACGAGCTTGCGGACATCACTTTCAATCACTCCCTTCAGATCCTGGTAGAAGCCATGTTTGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGGTTCACCAACGCTTTCATTTCACGCTTCCCGAAGTACATGCAAGAGGCTATATCGCCATCACTAGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTATGGGAAGTTTAAGTAATGGATCAAACAAATTTCAAGTTTTATCAAGCTGACAACGTTCAAGTTTTATCAAGCTGACAACGTTTATGGGGCCTTATTTTCCCAGTTTCCCAAAGTATTGATGTACGGCGAACAATATCGGTATTTAAGTAGTGAAGCCAAATTAGCCTATATCGCGTTTTTCCTGGTTGGCATTCCAACCGATATTAGCGGCATTTTGCCGGTAACCAAACCGGATTTTTATGGTTCGCAGCTTTAAACATCATTGAAGGAATTGCGACCCCATTTTTTACAACGCTTTTAATGGCAATGATTCAACAAAGTTATCCAGCAGAAGAGTTAGGGCGGATTCTAGGCGTTTTGAATTCTTTGTTGAATCTAGCTGGACCAATTGGCTTAATTTTTGCCGGTCCCCTAGCTGATGTGATTGGCATTGAACGCCTATTTGTGATTGCAGGAATCGGTACTGCCATTTGCGGGGTGGTCGCGGTGTTAATGCCAATTACCAGGCAATATGACATTAGGCTGCATCAAAAAATGGCGAAATTAACTGAGCAACCAGATAAGTAATTAACATGATGATCAAAAAGAGGGGAAAGACCAGACTACCAGCTGATCTTTCTCCTCTTTTTTGTCATCACTTAATTACACGTTTTTAATCTTTTCAGCAGTCAATCCCATCGCATTAATTGCCACGATAATTGTCGACATAGCCATGACCACAGCACCAACGGCTGGGTCTAGAATGATTCCAATAAATGACAACACACCGGCAGCAAGTGGAATTGCGACAATATTGTAGCCTGCTCCCCACCAGAGATTTTGAACCATTTTCCGATTTGTGATTTTAGCCAAATCAAGAAAATGTAAAATATCGCTGGGTTCTGATTTAACTAACACAACATCAGCGGAATCAATGGCAACATCGGTTCCGGCACCAATTGCAATTCCAATATCGGCCGCGGCAAGACTTGGTGCGTCATTTACGCCGTCACCAACCATGATGACGTGATTGCCCTTTGCTTGATAATCAGCAACAATCTTTTGCTTATCATCTGGTAATAGGCCTGCATGGAATTCAGTCAATCCTAGTAAGTTAGCAACGTGTTCCGCGGCTTTTGGATTATCGCCAGTGAGCATTACAGGGGTAATTCCTCGCTTCTGAAGACCACTAATTAATTCCTTAGCACCCGCTTTGATGGTGTCGCCTTCAGCAACCATTCCTTGAACTTGGGTGCCCTGCAATAGGAAGCTGACGGAATTACCCTTAGCAGCCCATTTATCAGCAGCGGCCTCGTCAAACTTGATCCCTTGCTTCTTTAAATAGTTACCATTAACAATCATATAGTCAGTGCCATCAACATTACCGGAAATACCAACGCCCGGAATATTTTGAGACTTTTCAGCCGCAACGACTTCAATGCCCTTCGCTTGGGCTTCAGTAATGATTGCTTGGGCCAGCGGATGAGTCGAATTACTTTCAAGGGCGGCCAGTCGGCTTAATAACGTTGTTTCGTCAATCCCATCATTTGGAATCAATGCATTCACCGTAAATTTACCTTCTGTTAACGTGCCAGTTTTATCCAAGAGAACGTGGCTAACATGTTGACTTGCTTCAATGGCTTGGCGATTTCGAACTAATAGCCCATTTTGAGCGCCAATCGTAGTAGAACGAGAAACCACTAATGGAATCGCTAATCCTAATGCATGCGGGCAAGCAATCACGAAGACGGTCACCATGATCGTCATTGCAGTCGCCAATCCCTGGGGTAACCAGGCAAAGAAAGCAATAATCCCAACACTAAATGCCGCGTAAAATAGATACTTGGCAACTAAATCAGCTTTATCTTCTGCTTTAGATTTAGCTTGCTGAGCATTTTTAACCATTTTCATTACTTGAGAAAGATAGCCGGAGTCACCAGTACCACTAATTTTAACCGTTAGCGTCCCGTTATTGTTGGTTGCACCACCAATGACCTTATCGCCAACTTTCTTGGGAACGGCAGCAGATTCACCGGTTACCAGTGCTTCATTCACGGTCGACTCCCCAGCCGTAATAACACCATCGGCTGGAATACTCTCACCTGAACGCACTTGGAAAGCTTGACCAACTTTTAAATCAGATACTGGCACTTCTTTTGTTTCACCATTATCTGTAACTAGATGGGCCGTCTTAGGCAACAGGGCCGCCATCTTTTGTAAGGCATCCCCAGCCCCCATCAATGCATTCATTTCAATCCAGTGTCCTAGAAGCATAATTAAAATCAGGGTTGCAAGTTCGAACGAAAAATCCATTACATGATTTGCCGGGTTCAAGAAGTTGTTGGCAATAAATGCGTACAAACTGTAGAAATACGAAACGGAAATTCCAAGGGTTACTAGCGTCATCATTTCAGGAGATTTATTCTGAATTTCCGCTTTAGCCCCCTTTAAAAATGGCATTCCGCCATAAAAGTAAAGTGCTGTATCAAACAAAACGATGATAATGCCAACAATTAGCGGTGAACTGAAACTAAGGATGGAAACGTTTAAACCCATGATTGGTGCTAACAGTAAAACTGGAATCGCTAAGACAACGGAGACCCAAAATTTAACTTTCAAATTCCCCATATGCATCATTGTGCCACCGTGCATCATCATGTCGGTCCCAGCCATATCCATATCACCGTGATTCATGTTCATTTGGCTGTGATCCATTTCGGCCATATCGTGGTCCATGTTCATTTGATTATGATCCGTTTCGGCCATATCGTGGTCCATGTTCATTTGATTATGATCCGTTTCGGTCATATCGTGATCCATATGACACATATTTGATTCATTATTTTCCATATTCTTAGCACTCATGTTTTTCATATTCATATGGTCCTCTTTATTTTCCATATTCTTAGCACTCATGTTTTTCATGTTCATATGGTCCTCTTTATTTGCCATGATTATCGACCTCCTAAAAATAAGTGTGCGTAGCAAAGCGGTTAGAAGCCGGAATATAAGTTCCTTGTGTGGAAATCCCCGGGCTCGGGATTTTTCCACCAGGTTCTTATATTTAGGCTTCTGCTTTGCGGAGCACCACGCCACTATATGAATTAGAATTACGACAAAAATTCATAAGTTTCCGCCATCAGAAATCCCAGATTCTGGATTTTTGTGCAGCAATCCTAAAAGTAAATAGAACACCACAGTCTTAACACGTTTGATCACCTGGCAAGCAGTTACACTGAACTTCCTCGGGCGCTGTTTTGGCCTTTTCAGCTAGAATCGCCTGTAAGTTCACAATATCCGCCCGTGAGAGTTCCCTTGACTGAATAACGCCGGCAATGTTGAACCAGCCCGCATCGCACACATATGGTCAAACAAATCATCTGCCGCTGCCGCCATTGATTCCTTCTCGCCAACAACCAGCTTATACGTGAATGGTCGACTGCCGCCATGCTGCGCAACCGCCTGTTTTTGAATCGACCTGTGAAGTAGCGTTTTGGTTGTTGAGCTGACCAGCCTTCTAATTCGTTCATAGCATCGATTAGTTCACGACTAGTCGCATGTCCCATTGTCCAAATTGCTCTCGTAACCATCCATCAGAATCGGTGATGGTTACATTCTTTGCATCCTTCAATTGGCTTCCTCCATTAATTGAATTCTAAGTTTACGTTTGTAGCCTCTTAACACTTATTAGTTTACGACTGTAGTCACAATAATGCAACCTTTCTGCCAGAAAATACCATGACATTAAAAAAACGCCTAGATAATATTCCAGGCGTGGTTTGATACGATATGTTAAATTAATGATCTGGGAATTTTTGGTTTTCTTGTTAGTATCTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCACGCAGAAAGACGAAAGCTGTATGAGCAGTCAATGCATCATATGACAGGCCATGGTATTCAGTGCCAAGCTTCAAGAAACTCTTGCAGGTCTTGAAGAAGACCTCGATGTCCCATCTTTTGCCGTAAATTCTGATGATCTCATTTTCATCGATCGTCATGTTCGTGCAAATAAGAGCGATCCAGTCTTTGCGGTTGGAACGATTTCTTACGCAGACTATTCTGGCATCAATATATTGAAAAGCACGGCTACCGGCCAGACATCACTGACGAAGACAGAGTCGTCCTTAAAGAAGGGACCGTTGACTACGTGGCCTTCTCTTACTACCAGTCAACTACTGTCTCCAGCGAAAAGGTCTCAGCTGATGAACTGAGCGACCTGGAAAAGGCGGTTGCGGTTAACCCGACTTTGGAAAGAAGCAACTGGGGCTGGGAAATTGACCCGGTTGGCCTCCGCCTGGCTTTGAACCACTTGACTGACCGCTACCACCTGCCCTCTTCATCGTTGAAAACGGCCTGGAGGCCTACGACAAGGTCGAAGACGGCAAGATCATGACCCATACCGGGTTGACTACCTGAAGAAACACATTAGCGAAATGGAAAAGGCAGTTGCGATCGACGGCGTTGACCTTGGGCTACCTGCCATGGGGGCCAATCGACCTGGTTTCTGCCGGGACTGGCCAAATGGACAAGCGCTACGGTTTCATCTACGTCAACAAGAATGACCAAGGAGTCGGCGACCTCAGCAGAACCCCAAAGGACTCCTACTTCTGGTACAAGAAGGTCATTGCATCCAACGGGACTGACCTCGACTAATCTTCTCTAATTCTTATTGCTACTTAATCTCTTAACGAAAACGCGAAAAGCGACCAAGATCTGCTATGATCTTGATCGCTTTTTTGTGCTTAGCTAATTTTCTTTTTCTACTTAAAATGGCTGCTGTAAACCGGATCTTTGAAGTCCTTTTGGCCTTTTAGCCAGGCAGAGCATTGCCTTGCCAAGTCTTCCGTCATCGTAAAAAAACATGCTTCCAAAAAATGGAAACATGTTTCTTCTGTCTATTCTGCTGAGAAGTAGTCCTGGAGCAGGTCTGAGTGTTGCTTCAACTTCTTGACAGCCTTATCTTCAATCTGCCGGACCCGTTCCCGGGTAACGCCCAGACTGCGGCCAACTTCTTCCAGAGTGTGCGGCTCATAGTTTTCCAGGCCGAAGCGCAGCTTCAAGACCTTAGCTTCTCTGTCAGTCAGGAACTCACCCATCATGCCGGACAGTTGGTCCTTCAGCATTTCAAAAGCAGTGTATTCTTCCGGGTTGATTGCCTTGTTGTCTTCCAAAAGGTCCCCCAATTGCGAGTCCCCTTCTTCGCCAACCGACTTGTCCAAAGAGTCAGTTTCCTGGTTCTTGGCTACCGTGATAATTTCCTGCACCTTCTGCAAAGGTTCATTCATTTCCGCGGCCAGCTCTTCCGGCTTGGCATTCCGGTCCAGGTCCTGCTGCAGAGTCCGCTGGATCCGGTTCATTTTGTTGATGCTTTCCACTACGTGAACCGGGATTCTGATCATCCGGTCCTGGTCAGCCAGGGCCCGGGTAATGGCCTGCCGGATCCACCAGGTAGCATAAGTTGAAAACTTAAAGCCCTTGGAGTAGTCGAACTTGTCAACTGCCTTCATCAGGCCGATATTGCCTTCCTGGATCAAGTCCAGGATCCCCATCTTCCCATTGTGCTTGGCATAGCGCTTGGCAATGGAGACAACCAAACGGAGGTTGGCGGCGGCCAGTTCATCCTTGGCTGACTCATCGCCGTTTTTAATCCGCTTGGCTACTTCTACTTCTTCGTCCCGGCTCAAAAGCGGGACCTTGCCGATTTCCTTTAAATACATCCGAACCGAGTCGTAAACCTGGTCGTTGTCGCTGGAAGCGGCCAGTTCTTTTTGTTCTTTCTTTTCAGCTTCTTCTTCAGCCTTGAGGGCCAGAGCAGACGGTTCACCCTGGTCGTCAACGATACTAATCCCATTGTCCGCAAACTCTTCTACCAGCTTGGCAGTTTCGGCATCATTCAGACCATACGGCAGCAAGAGCCGGGCCTTCAAGTCCTTTTCGCGGATCCGCTTGGTCTTCTTTAAACCGGTAATCACCATTTTAACTGCTTTTTCCAGTGGAAAATCATTTACGTTAGAAGCATTTTCTTTTGCCATTCAATCCGCCCTGTTCTTATTCTGCTAAAAATTTACTACTCTAAAAAGTCACGCAACTTGTTGCTCCGGCTTGGGTGCCGCAGCTTGCGCAAGGCCTTGGCCTCGATCTGCCGGATCCGCTCCCGGGTCACGCCAAAGACCCGGCCGACTTCTTCCAAAGTCCGGGGATTTCCGTCATCCAGACCAAAACGCAGACGCAATACATTCTCCTCCCTGTCAGTCAAAGTGTCAAGCACTTCCGCCAGCTGGTCTCTCAGCATTTCACTGGCCGCGTGCTGTTCCGGGCTGGTTGTGTCCTTGTCTTCGATAAAGTCGCCTAAGTGGGAGTCATCCTCTTCCCCAATCGGTGTCTCCAAGGAAACTGGCTCCTGGGCCACCTTGAGGGCCTCCCTAACCTTCTTGACCGGCAAGTCCATTTCCGCGGCAATTTCTTCTGGCTCCGGGTCTCTGCCCAGATCCTGGAGAAGCTGCCGCTGGATCCGGATCAGCTTGTTAATGGTTTCCACCATATGAACCGGAATTCTGATCGTCCGGGCCTGGTCGGCAATCGCCCGGGTGATTGCTTGCCGGATCCACCAGGTCGCGTAAGTAGAAAACTTGAAGCCCAGCCGGTAGTCAAACTTGTCGACTGCCTTCATGAGGCCCATGTTCCCTTCCTGGATCAAGTCCAGGAAGTTCATCCCCCGGCCGACATAGCGCTTGGCAATCGAGACAACCAAACGCAGGTTGGCTTCAGCCAGTTCCTGCTTGGCCTCTTCATCGCCGGCCTCAATCCGCTTGGCCAGGGCGACTTCTTCCTCACTGGTCAAAAGGTTGAACCGGCCGATTTCCTTTAAGTACATTCTGACCGGGTCGTTCATCTTCATCCCGGTCGGGGCGGCCATATTGTTCAGTTCTGCCTTTTCAACATTTTTCTGCTTGGTCAGAGCCAGCTTGGAAGGCTTGCCGTCCTCATCAACAATGCTGATCCCGTTGTCTTCAAATTCCTGGACCAGCTGGTCAACGGCCTTGCCCTCTAATTTGTAGGGCTTGATCAAGCGGTCTTCGAAAGCAGCTTCAGTGATTTGGTGGCTGGCCTTTACTCCTTCAACAACCAGCTTCACCGCCTTTTCCAGGGACATCTCATTAGCCTTGGTTTGCTTTTCTTCTGTCACTAACTGCCTCCTCTTCCTGCAGCTTCAGTTGCCTTAGCTGCAAAATTGCCTGTGTTTCCAGCAAAATTGCCGTTTGGTCGTTTCGCCGACGTGCGTCTGCAATCGCCTGCATGTGGCGGTCGATCTCATCATCTATCTTGCACAGGTTGAGTACCCGAACCTGCGCCTCGAGCTCTTCCAAGGTGATTTCCCCTGGCAGCCCGGTCATATCAGTACTAACAATTATACTCTGAAGTTCTTCAGGAATAAAATCCAAAAAGCCGCTCAATGAAACATTTTCATGAGTTTCAATGTAATTGAGCCAAAGTTTGGCCAGGCGCTCGTATTCCGGGTTTGGAAAAACAAAACCGTTGACGATCAAGTAGTCCCGGGCCTCATCAGAATAGATGTAGGCATAAAGCAGGCGCTGCTGGGCCTTTAGAGCCCTGGTGACCGGCTGCGGATCCGCGGCTGGAGCCAAGGGGGCCAGCTCGGGCAGGACTTCGCTGCTGGTATGCTGGTCCACCCGGCGCTGCTTGCGGCGGGCCCTGGACAAGTTGACCTTTAAAGCGTCCAGGGAGACTCCGGTTTCCTTGGCCAGGCGGCCTACATAAAGTTCTTGTTCAACCGGGTTGGGCAAGGCGGCGATTTCCGCTACTGCCTCGCTTAAATAGGCCACCTGCTCGCGCTCATTGTTTATGTTGTACTTCTTCTTCAAGCGCTGCAGGGAAAAGTCAGTGGTCGAAATAGCCCCTCTAATCGCGGCCTGGTAGCTGTCCGGTCCGTACTGCTTGACATATTCGTCCGGGTCGAGCTTGTCAGGCAGGATCACGATGCCCAAGTCAAAGTTGCCGGCCTGCTTGAAGAGGCCCACCGCCCGTTCAGTTGCGTGCTGGCCTGGATCGTCGCCGTCATAGTTGATGACGACTTGCTTGGTGATCCGGCGGATCATATAGACCTGCTGCTGGGTCAAACTGGTCCCCATGGAGGCAATCCCGGTCTTGACCCCGGCCTTATAGGCCGAAATCACGTCCATATGTCCTTCAAACAAGACCAGGTGTCCCTCTTTTCTGGCATGTTTCTTGGCTTCTGAAAAGTGGAAGAGCAGGTCGGACTTGTTGAAGATGCTGGTTTCCGGACTGTTCAAGTACTTGGGTTCTTCCGGGTCATCGCTGATTCTCCGGCCGGAAAAGGCTACCAAGTGGCCGCTTTCATCACTCATCGGGAACATCAAGCGGTCTCTGAAGCGGTCAAAGAGGCGGCCGTCCTGGCTCTTGACAAACAAGCCGCTTTCCGCCAGCTGGTTATCCGTATAGCCTTCGCCTCGCAAATAGGTCAAGAGCAGGTCGGACTTGCCTGGGGCATAGCCGATCTTAAAGTGCTTGAGCAGGTCATCGTCCAAGCCTCTTTTTCTTGCATATTCCAGGCCCCTTTCCCCGATCTTGGTAGTCATGAGAACCTGCTGGTAAAAGTCCGCCGCTTCCTTGTGCATCTGCATCAAAGGATTCAGCTTGACCTGCTGCTCCTGGTATTCCTGGGGCATGGGGATATTGGCGAATTCCGCTACTCTTTCAACGCTTTCTGGAAAAGTAACTTCTTCCTTTTCCATGATGAACTTGTAGACATTGCCGCCTTTATGGCAGCCAAAGCAGTAGAAGAACTGCTTGTCCGGGTTGACGCTGAAAGAGGGGGTCTTTTCTTGATGAAAAGGGCAAAGACCAACATAGTCTTTGCCTCTCTTCTCCAGTGATACATACTGGCTGATCACGTCAACGATATTTACGCTGCCCCGAACTTCATTGATAAAATCTTCCGAAATTCTTCCAGCCAATTTGCCTCACCCTTTATTAAAAATTTGCATCTTACTTGATAACCAACTTGCTCAAGTCGCCCAAGCGCTTGGCCAGGTCATTGACAGCTGCCAGCTGGCTCAAGCGGTTGTTCTTGACTGCTTCGTCCTTGGCCATGATCATGTTGACGTCGAAGTAGCGGTCGATTACCCCTTGCAAGGCAACGAAGGCTTCGTAAAGTTCAGCATGGTCCTTGACATTTGCCAAAGCTTCAACTCCATCATAAAGGTCTTGTTCGCTTCTGTCTTCAAATAAGCTTGGGTCAACCGGACTAGCCTGGCTGAACTTAGCCTTCTTCAAGATGTTGGCGATTCTAGTCAGACTTTCAACGACTGGCTTGAAGGCCTCGTCGTCATGGTGCTGCTGCAGAACCTTGGCAGCGGCCAGGATTTGGCTTGGGTCTTGTTCGCTTGAAGCCAGAACGGCGTCGATAACGTCGTATTGGTAGTTGTTCTTTTGCAAGAACTGCTTGATCCGGTCACGGATGAAGTCAGCAAGTTGCTTGTCTTCTTCCGCCCCTTGCGGCATCTTGGCCGGAGTCTTGCCAGACAAAAGTTCCACGATTTCTGGAACAACCTGGTCAAATGGCAGGGACCAGTCTTCGTTCAAAAGGATCCGGACAATCCCGTAAGCGTAACGGCGCAAAGCGTATGGGTCGTTTGATGATGAAGGAATCATCCCGGCACCAAAGAAGGCGATAATGGTGTCCAGCTTGTCAGCAACTGACAAGAGGGCGCCGACCTTGGTCTTCGGCAAGTCGCCTTCAGCCGTGGTTGGCATGTAGTGTTCCTTGATGGCGACAGAAACGTTTTCGTTTTCGCCAGCCAGGCAGGCATAGTGCATCCCCATAACCCCTTGCAGTTCAGCAAATTCGCCGACCATTTGGGTTACCAGGTCGAACTTGTACAGGCCGCTTACCCGGTCAAAGTCAGCCACTTCTTCAGCTGACAGGCCGAATCTCTTGGCCAGGTAGTAGCCGATGATCCGGACCCGGGTCATCTTTTCTGCCATAGAACCGATCTTGTCGTGGAAGGAAACGCTGTCCATCCGGTCAACAAAGTGGCTGATCGGGTACTTGCGGTCTTCGTCGTAGAAGAATACTGCGTCATCCAGGCGGGCAACCAGGACCTTTTCATTACCGGAAATCACGTTTTCCAAGTGGTCCTTGTTCCCGTTTCTCACGGAGATGAAGCAGTTGATCAGCTTGCCTTCCTGGTCGTAGACTTCAAAGTAGCGCTGGTTGTCCTTCATGGAAGTGATCAGGACTTCGTCCGGGATTTCCAGGTACTTTTGGTCAAATGAGCCGGCAAAAACAGTCGGGTATTCAACCAGTTTGTTGACTTCTTCCAAGAGGCTGGCATCCAGCTTGATTTGCCAGTTGTGGCTGTTTACCAGGTCGTTGATCTGGGAAACGATCATGTCCTTGCGTTCGTCAGCATCAACGATAACGTATTGGTCCCGCAGAGCTTCCACGTAGTCGTCAGCGTTGGCCAAAACCACGCTGTCGCCCAGGAAGCGGTGACCGGCAGTCTTGCGGCCGGCAGTGATGTCCAGGAACTCAACTGGGACGACTTCGCTGCCGTAAAGGGCAACGAGCCAGTGGATCGGGCGGACAAATTCAAAGTCTTGGGAGTCCCAGCGCATCTTGGTCGGGAAGGTCATGGCCTTGATTACTTCATCCAGGCCCAAGAGGATTTCCTTAGCTTCCTTGCCGGCCTTTTGCACGTGCACGTAGGCATATTCCACGCCCTTGAGTTCTTCAAAGTAGATATCGTCGGCGCTCATCCCCTGGCCGCGGGCAAAACCGACAGCGGCCTTGGTCCAGTTGCCGTCAGCGTCCTGGGCGATCTTCTTGGCCGGCCCCTTCTTGACTTCGTCCACGTCAGCTTGCTTTTCATCCAGTTCCTTGACCAGAACAGTCAGGCGGCGGGGAGTTGAGTAGGTCTTGATTTCCTTAAAGCCCAGGCCGTTTTCCTTCAAGAACTTGCCAGTTCTGTCAACCAGCTGCTTGACTGATTTGCTGACCACGTGGGCTGGCATTTCTTCAACGCCGATTTCAAATAAAAAGTCTTTAGTCATTGCTTGCCTCCGCCTTTGCTTGTGCACTCTTCAACAATGGGAAGCCGCGCTTTTCACGTTCTTCCACAAACTTAACCGCTACTTCGTGAGCCATGTTGCGAATTCGGTGCAGGTAGCCGGCCCGTTCAGTTACTGAGACTGCCCCCCGGGCGTCCAGCAGGTTGAAGGTGTGGGAACACTTCAAGATGTAGTCGTAAGCCGGGTGAACCAGGTTCTGGCCCAAAAGGCGCTTGGCAATTCTTTCGTAAGTGTCAAAGAATTCCAACAATTGCTTCTGGTCGCTTTCTTCAAAGGCGTACTTGGAGTGTTCGTATTCAGGTTCCTTGAAAATGTCCCGGTAAAGGACGCCGTCGCCCCATTCCAGGTCAAAGACTGAGTTAACGTCCTGGATGTAGGAAGCCAGCCGTTCAACCCCGTAAGTGATTTCGCCCATGGTTGGCTTGACATCCAGTTCGCCGACAGTTTGGAAGTAGGTAAATTGGGAAACTTCCATCCCGTCCAGCCAGACTTCCCAGCCAACACCGGCACAGCCCATGGATGGGTTTTCCCAGTTGTCTTCAACGAAGCGGATGTCGTGTTCCAAAGGTTCAATGCCCAGAACCTTCAAGGAGTCCAGGTAGTATTGCTGGATTTCCAGCGGAGCCGGCTTTAAAACGACTTGGAACTGGTGGTGCTGGAAGAGCCGGTTCGGGTTGTCCCCGTAGCGCCCGTCAGCTGGACGGCGGGAAGGCTCAACGTAGCAGGCCTTCCAAGGTTCAGGCCCGACTGCCCGCAAGAAGGTGTATGGGCTCATCGTCCCCGCACCCTTGTTTTCATCATATGACGGCATGATCATGCAGCCTTTTGAAGCCCAGAACTGTTCAAGCTTGAAGATCATGGTCTGAATATCTAATTTTTGTGCCATAGTTACCTCCTATGCAAGGTCATAAAAAGAGCCTATGCAATTTTACTTTTGCATAGGGACGAAAAAGTATTCGCGGTTCCACCCTAATTCAGGAAGCCTATTTACCTCCTGCTCTTAATTAGCTTGGCTAGAGGGGCCTTTTCCCGCTGTATCCTTCCACCAACCGATACTCGCTGCCGCGGTACTTTTATATTTCCTCATCATTACCAATATACAGGATATTTTACCACAAATTCCCTTTCTTTTCATGTTTTTTTAGGAAAATCAGCTGCCCCGGACCTCATTTAAAAAGCGGAGGCTGGGCAGGTGCAAATCCACTGTTGCCTGGTAGATCTGGGCGATGGCCCGCCGGCTTTCCTTTTTCAAATCTTCGCCGATCTGGATCTCCCCTAAACGGCTGATTGGTAAAAGGGCCAGGGTTCTGATTAAGGCAGTAGCCTTTGGCGACAGGTGCAGGCGGCTGACAGAGCGGAAATGGTCGCTGCAGACCACCCCGCCGGCGGCGATTGAATAGTCAAAAATTCCTTTTTCCTTGCCGCAGATCACGCAGGCCCCCAGCTGAGGAGCTACCCCGAAGGCATCCAGGAGCTGCAGCTGGACAATTTGGGCAATAATTTCCGGGTCCTGGCCGGCCACGATCCGGTTAAAGGCCACTAGCAAAAGGTCATAGTAGCCCCCCAGTTTCTGGTACTCGCTGAAGGCATGGTCAGCTAAGTCAAAAAGATAAGAAAGATAGGCATTTTTGTCCAGGTCGGTAAAAAGCTCATCGTGCTGGCTGAGCTTCTTATAGGTCCGCAGCTGGCTGATCCCCTTGTAGCGGGTCAAGATGCCAAAAGTCCCTTCCGTAAAGGGCAAAACCGCGGCGGCCAGCTGGGACTTGGGCCGCATCCCACCTTTGGCAATTACGGTGACGATTCCCAGTTCCTTGGTCCAGAGCTTGGCCAAGAGGTCAGCCTCTTTATACTGCTGCCTTTTAAAAAGCAGGCCGTGGACATCGAGCAGGTCAGCGGCCATTAAAGTTCCTTCTTGTCATAGCCGATGGACTTGAGGAAGGCCGGGTCCTGCCGCCAGTCGCGCCGTACCTTGACCCAGAGCTTCAAGTTAACCTTCTCGCCCAGAAGATTTTCGATTTCTTTTCTGGACCGCATCCCGATCTGCTTAATCATGGACCCTCTTTGCCCGATAATGATCCGCTTTTGCCCGTCTTTTTCCACAAAAATCGTGGCATCAATCTGCAATTTACCATTGATCCGCTGATTCATCTGGTCAACCCAGACAGCAGTTGAGTGGGGAACTTCCTGGTCGGTCAAGCGGAGGATCTGTTCTCTGATCATCTCAGCCACCACGAAGTATTCCGGCCGGTCGGTTATTTCATCTGAAGCGTAGTATTGTGGTCCTTCTGGCAGGTAGTCCTTCAAGGTCTTTAGCAAGTCGTCGACCCCGTTGCCCTGCCGGGCGGAAATTGGCAAAAATTCCGCGAACTTGCCGACGGCCTGGTAGGAGTCGATAATTGGCAAAAGCTCATTTGGGTGAACCTGGTCGATCTTGTTGATAACCAAAAATACCGGAATATCCAAATCCTTCAAAAGACCGGCCACGTATTCCTCGCCCTTGCCGGCTTCTTTAGCGTCAACCATGAACATGACTAAGTCAACGTCCTTTAAAGAAGACAGGCTGGCCTTGTCCATGTATTCGTCCAGGTCGGAATGGCTCTTGAAAATCCCCGGCGTGTCGACGAAGACAACTTGCATGTCATCTTCAGTGTAGATGCCGGAAATCTTGTTTCTGGTAGTTTGCGGCTTGGCGGAGGTGATCGCCACCTTCTGCCCGATTAAGCGGTTCATCAAGGTTGACTTGCCGACATTTGGCCGGCCAACCAATGCTACGAAACCTGACTTGTGTTTACTTGTTTGCCCCATCTTGAATGTCCTTTTCTGTGAAATGGTATGGTATCAATTGCTCAACTGTAAAGCGCTCATAGTCCCCCTGGCTGTCGGTCAGAATTACTTCCGTTTCCGGAGCCATAAATTCGCTCATTACCTGCCGGCAGGCCCCGCAAGGGGAGATTGGCCGGTCAGTGTTGCCGATGATCAAAAGGCACTTGATCTTGCCCGTCCGGCCAGCGTTCACCCAGGAGAAGATCGCCGTCCGTTCGGCGCAGTTGGTCAAGCCAAAAGAAGAGTTTTCAATATTGACCCCGGTAAAAATTTCTCCCGCGTCCGTCACTAAAGCACTGGCCACGTGAAAGTGGGAATAAGGGCTATAGGCATCCGCCAAATGGTCCTTGGCCAGCAAAAAGAGTTTTTCTTCCAACTCGTTCATGCTATTTTCCTCTTCCTTCGTCTAATTGGTCCGGATAAAGGGGCAGGCCATATTCTTCCAAAACCTTGCCCTGGATTCCAAACATTTCCTTGGCTTCGTCTGGCTCAATGTGGTCATAGCAATTTAAGTGCAAGTAGCCGTGCACGATCGTGTAGCCAAATTCCCGGTCAAAGCCGGTGCCATATTCCTTGCTGTGGCGCTCGATGACACTTGGGCACATGAACAAGTCGCCAATGTCTTCAGTAAAGTCCGGGTCCTGGGTGAACATAGACAGGTCCAGGCCGTCGTCGCCGTCTTCAATGGCGAAAGAAATCACATCGGTTGGCCGGTCTTTATCCCGGTAGTCCCGGTTGATAGCCTGCGACCGGTCTTCGTCAACGAAGTTGATGCTCATTTCCTGGGCATTGTCCTTGCCGATTTCCTTTTTCGCCATGAGGAGCAGCTGCATGATCCAGTCTTCCCAGTCCCGGTCTCCCTTAGTCAAAAAGCCGACTTCATCGCTGTAGCTTACGTCAATTCCCTGCATTATTCTCCTTCCTCTTCATATGCCTTGATAATCTTTGCTACGACTGGGTGTCGGACAACGTCAGCCGCACTGAATTCCACGAACTTGATCTGGTCGATCCCCTGCAGGATATTGCGGGCCGTGATCAAACCGCTGTTGGCCTTGCCAGGCAGGTCGATCTGGGTCATGTCCCCGTTGACCACCATCTTGGAGTTAAAGCCCAGCCGGGTTAAAAACATCTTCATTTGGGCGTCAGTCGTGTTCTGCGCTTCGTCTAAAATGACGAAAGCTTCTTCCAAGGTCCGCCCTCTCATGTAAGCAAGAGGAGCGATTTCGATAACGCCCCGCTCCATCAAGCGGTCAGTTGGTCCCTGCCCTAAGATGGCATAAAGGGAGTCATAGATTGGCCGCAGGTAAGGGTCAACCTTTTCCTTAAGGTCCCCTGGCAAAAAGCCCAAGGATTCCCCGGCTTCAACTGCCGGCCGGGTCAAGATGATCTTGGAGACCTCTCCCCGCTTAAAGGCAGCAACCGCGCAGACGACAGCCAGGAAGGTCTTCCCTGTCCCGGCGGGTCCGATCCCAAAGACCACGTCGCTCTTGTTGATGGCCTCAACATAGCTCTTCTGGATCATATTCTTGACCCGGACTGGCCGGCCCTTAGCATCTCTGATCAAGATCTGCTTGTAAAGGTCACCAAAGTATTCAGTTGTCCCCCGGTCAGCCATTTTCATGGCACTGACCACATCGGCCGGAGTTAAATTGATCCCATTGCTGGCTACCCCGTCCAGGGCCTTTAAAACCCGCAAGACGGTCTCCACCTGCTCTTCAGGTCCAGCGACCTTGATCTGACCACCCAGGTCAATAACGGTAACCTCATAGCCTTCTTCGATCAGCTTCAAATTGCTGTCATTTACGCCCACCAGCTTCTGGACATTTTCGCTGCTGTGGGGCAAAAACTTCTTTTCCAATAAAAGAACTCCTTCATTTTCAAACCAGCGGGCAAGCACATCTCTGTCCGCCAGACTATACTCTTCTAAACCAATGATACACGATTCAGGCCAAAAGAGAACACGGAAAATAAGCAAGAAAAAAGCTCCCGTTTTCACGAGAGCTTCAGTCGATTAATAATGTCTACGCTTGCGAGCGGCCTCAGATTTTAACTTTCTGCGAACGCTTGGCTTTTCGTAGAATTCACGCTTGCGGTATTCTTGCAAAGTGCCACTTCTAGAAACGGAACGCTTGAAACGACGAAGAGCATCATCAATAGACTCGTTTTCGTGAACAATAGTCTTAGCCATGTGTGATCCCCCCTTCCATTTCTTGGCATGCTGCCATAAACATTTATCTAAATTATAGCAAAAATTGACTAATTATCAATAGCCTGGACAGATTTTTTGAAAAGTTTTTTGGGGCTAAAGCCCAGAAAGCGCATTATCCGGTATAATAGAGTTGATGAGGTGATCTATATGACTGAGAATAAAGCAGAAAACAAGCAAACAGAAAAAACTGAAAAGATGGAAGTCAACATTATCATTATTTCCGACTCAGCTGGGGAAACGGCCTTTAACAACGCCCAGGCGGCTGCCGTCCAGTTCCCTGACGCCGAAGTCAACTACCGCCGCTATCCTTTCATTGTTAACGAAAAGAAGCTGGCCGCTACCCTGGAAGAAATCGAGCAGTACCCTAACCTGGTCATCGTCTACAGCATGCTGGATGAGAAGCTGCAATTGCCGATCATCAAGTTTGCCCGGGAACACAAGGCTAGGTACATCGACATTTTGTCTCCGATCATTGAGGCTATCAGCCAGACGACCCATATGAAGCCGACCGGCCTGGTTGGGGCTAACCACCAATTGACCAACAAGTACTTCAACCGGATTTCCGCCATGGAATTCGCGGTTATGTACGACGACGGCAAGGATCCGCGGGGCTTTTTGGAAGCAGACGTTGTCTTGTTAGGTGTCTCCCGGACTTCCAAGACTCCCCTTTCCTTGCTTTTGGCTAACAAGGGGCTTAAGGTGGCCAACTTACCGCTAGTACCGCAGACCCACATACCAAATGAAATCTACCAAATTGACCCGACGAAGATCATTGGTTTGACCACCGATCCACAAGTGCTCAACCGCATCCGCCGGCAAAGAATGATCAGCTACGGGATGGACCCCGACACTGCCTACTCTAACATGGACTCCATCAATGCCGAACTGGACAGTGCCATGGCCTTATACAAGAAGCTGGGCTGCTTCGTGATCAACGTGGCTGAACGGTCAATCGAAGAAACCGCGGCTTTGATTATGAACCACCTGAGTTACGAAGAAGATTAATCAAATAATCGCGTAAAAAAACGCGCTACTTACAACAAACGTAAGCGCGCGTTTTTCTTTTACTTCAGCGGACTTTCATCCACTTTGAAGACTTCTCCAGAAACTGGATCAACTAAAATGAAATATTCCTTCTTGCCGTTCTCGCGCAAGCTGTCAGTTACGCTGAAGACGTAAAAATACTCTGACCGCTTGTCTGGACTGGTCTTAGTCATCAGCAGCTTGACATTGTGGTGTCCATGCTGTTTAGCGTAAGTAGTGGCGATCTCAGTCGCCAAATCCAAGCCTATATATTTTGGTTGATAGCGGCTATTGTCCCTTTCATCTGGCGTCTATTTCACCACCTCACTTAGCTTTTTCATAACATAAGTATAATTTATTTTTTAATATTCCTCAATAGCTAAACGACTTCTTGTTCTCTAAATCTGCCATAAACTTTCTGGACTTCCGTGACACCCATGAAGGCAAAGGGGTCACACTTTTCTACTGTGGTCCGGATGTCGTAGAGGTCGTAAGTGTCGATAATGGTTAAAAGGACGGTCTTTTCAGTATGCCCGTAGGCCCCTTCCACATCATGGAAGATAGTGATCCCGCGGTGCATTTTTTCTTGAATCCCTTCGATGATGGCATTGGGATGTTCAGTAACAATCATTACCTGCAGCTTGTTGTGCTGAGTGTAGACTGAGTCGATGAAGCGGCCGTTGATGAAAATGTTCAAGACCGTGTAGAGGGCTCTGGACCAGTCAAAGAGAAAGCCGGCGATCAAAACGATGATCAAGTTGACCAAGATATTGAACTTGCCGTAGTTCACACCAGTTTTCTTCCTGACCACGATGCCTAAGATGTCCAAACCACCCGTAGAGATCCCACTCTTCAAAGCCATACCAGTGCCGATCCCGTTGAATGCTGCCCCGAAAATGGCGCAGAGGATTGGGTCCAGGCTAACTTGGGTCGGTTGGATGAAACGCATCATGATCGCGGACATAGCAACCGCGAAGATGGTGTAGCCGGTAAACTCATAGCCGATCTTGAACCAAGCTAGGATAAAGAGGGGTACGTTCAAGGCAAAGTACATCACTTCTGTTGTGATGGTAAATGGCATGTAGCGGCTAGTCACAGTGTTGACGATCTGCGCGAAGCCGGTGATCCCGGAAGAATAGATGTGGCCGGGACGCCAGAAGAAGTTCAGGGCTACGGCAATCATAACTGAGTATAGAATAGCCGCCCCGATTTTTACCAAAAAGCCATAATTGCGTGAAAAGCGATTTAAATCAAACAGCTTCATTTTTTCTGCTTTCCTTTCCGTTGTAACAGGATCAGCAGCTATTGGCTACTGGCCTTGCCCCGCCTATATAAGAAGGCAAAGCAATGAATATCCTTATTTATGATACAGATTTTTCATAAATCATTGGGGCTTTCCCAATAACTTTTGTAAGCACCCAATAGCAGAGTATATTAAAATACGCGTGGTGCTAGTTGAAATATAGTTTCAATTTCTTAACAAAAAAGGTCCAACATTGTAGACTCTAGTTGAAAAAAAAGAAAGGAGTCCTTACAATGTTTAGCCAACTATAAACGTTATAGTCACCGTTTGCAAGTAGAATTTAGAACTTTGTCGAAAGAAAATCTGCAAGAAACTTTATTACAAGTACGCCCCATCTCGGTTAACTCACCGCCGCAATGCCAGTTTGGTAAAGGTTCCAGACTACGAAATCATTGCATTACTTGTCTGGCAAGCTGAGGAAGGTATATCTTCTCAGCGCAGATTTGCCCGTTGCTGGGGACTTTGTGGTCTTTCTAGGTCTCGTTTTAATCGCAGGGCTAGAGCGCTTCTTGGCATCACTGCTCAGATCATCAACGATCTGAACTCAAGAGTCGATCTGTCCGATCAGTATATGATCATTGACAGTCTACCCATGCCTTTGTGTCAGCCAATCAGAAACCGCAGAGCTAAGGTGTTTGAAGGAACAAACAGCCAACATTGGCTATAACTCAACCAAAAAGTTTTACTACTACGGTTTTAAAGGCCATTTTGCCGTATCTAAAGACGAGTATGTTCTTGGCTATGTTAATCACCAAGGCATCAATCCACGATGCAAAAGAAGCAGAAGAGCTGATTCTCAGTACCCGTCCCGAAGGGCACTTTATCTTAGGCGATGAAGGTTATATAGGCGAACGACTGCATGATTCCCTCAAGATAGACGGTTATATACTGTGGACACCTTATCGGAAAAATATGAAGGGGGCTAAGCAGCATAACAAAAGAGAGCTAATGGCAATTCGCAGAACAATCGAGAGTGTGTTTTCTGTACTAAAGTACTACGGAATTGAAAATATACTTGCAAGAAGTGTAGATGGTTTCCAACAAACTGTCGAGATAATTGTACTAACTTACAATATCAGCTACATCCTACAGAGATATGGATTCAGCTTCTTCAACTAGCACCACGCGTAAAAGAACATATTGGCCATCAAAATCAAGCTGATTCCGCCCAGGACATTTTTGTCATTTTCGACGCTAAGCCAGATCAAAAGAAAGCCGCCAGCCATGAGGAAAAGTCTGGCTGCCAGGCGGCTGCCAAAGCCGTTATCGGTCAGCTGGAACTTCCGCAGCATGACGGCCGCTTGAATCACAGTCAAGAAAAAGGTCAGGGCCTTTTGGCCATACCCATCTTCCGCTCTGTCATTTTGGACATCATCGGCAAGCGGAGCTGGGCTAGCATCCCAATGATGATCATGGCTGACATCCAGGGACTGATCCCTAAGGAAAAGAGGCTGGCCTGGCTGCTGTCACCGCCGGTCGCGACCAGGAGCGGATTGACCTGGCCGGTCTGCAGCTTGGCAAAAGGCAGGGAAATATGCTTACCAAAAACAAAGATCCCCAAATAAAGCATGGACCACCATGCCTTAGCCAGAATCGTGCTTATTCCCAAATCTTTTAAAGAGGCCTTCTTACCCATAATTATCACTGCAGTTCACTAAATTTAGCGACTTGCCTCCGGTGCTATATTTGCATTATCCTATAAAAAAAATAAGCTTTGCTTTTTCATTTTCTTGCAAAAAAGCGGCATCGCTTACTACTTAAATGATAACATAGCACCCGCACTTATGGTAATTTCTGCCTCTTTTTGCCAGGAAAAAACAAAAAGCACGGCAGCCATCAAGGCCGCCGTACTTTCATAATTTACATTTAATAAAATTTATTATTCTGCTTCCACAAACTTGGTAATCCGCTTGAGAGCCTCTTTTAAGACTTCATCGCTGGAAGCGTAGGACATGCGGACATAGCCGGCCCCGCCAGCCCCAAAGTAGCTGCCCGGGATCACGCCGACTCTGGCATCCTTGGCCAAGGACTTGGCAAAGCCAACGTCGTCGCCCTGGTACTTTTCAGGAATCTTGGCAAAGATGTAAAAGGCCCCGCGCGGCAAAGCCATGTCAAAGCCCAGCTTCTTCAAGCCCTTTTCCATGAAGTTGACCCGGCGCTGGTAAATATCTCTGAATTCCTTCGGGTCATCCAGACCGTTGGTCAAGGCTTCAATGGCCGCAGCTTGCACGTTGTTGGTCACGACCGTGATCATGAAGTCGTTCATCTTGCGGACGCTGGCCATGATTTCAGCTGGCCCGCAGATATAGCCCAGCCGCCAGCCAGTCATGGCGTGGGACTTGGACAGACCGGAAATAAAGATGGTTCTGTCTGGAATGTAAGTAGCCAAAGAGTAGTGCTTGGCATCCCCGTAGATCAGTTCGGAGTAGATTTCATCACTGATCGCGTACATGTGGTGCTTCTTGATAACTTCAGCCAGGCCTTCGATAACTTCCTTAGGGTAGGTTACCCCGGTCGGGTTGGTCGGGTCGTTCAGCATAACAGCCTTAACCCCCTTGCCTTCCCGTTCAATGACTTCTTCCAGCTTTTCCGGGGTCAAAATAAAGCCGGTGTCTGAAGTGTCGACTTCAACTGGAGTAGCCCCAGTCAAGCAGACCAGCTGCATGTACATGGACCAGACTGGAGTAGGCACGATCACCTTGTCGCCATCGTTCAAAAGGACGGACAAGCTGCAGTTCAAGGCTTCGGTTGCCCCGACCGTGACGGTGATTTCACTCGCCGGGTCATAGTCAACCCCGGTCACGCCCTTAACGTACTTGCTGATGGCCTGGAGCAGTTCCGGCTTGCCTGACTGCGGGCCGTAGTGGCTGTCATTGTTTTCAATGTCCCGGATGGCTGCCTGCTTGATGTGTTCCGGGGTATTTAAGTCCGGTTCACCCAGGGTCAGCTTGACAACATCATCGAACTGGGAAACATACTTGTCAAAACGGCGGATATCTGAAGGAACCACGGCGTCGAGCTTGTGGTTGATAATCGGCAGTAAATCTTGCGCTAATTTTGGCATTGGAAAAAACCTCTTAATTCAAATCAGAAAGAACAACAACTTAACATTTAAGTCTATTTTAGCATAGTTTGTTAAGGGAAGCGGCAGATATAGCTAACTTTGTCCATTTTTTCTCAAATGAAAAATAATTTTCTTAATTCTATACCAGAAAAAAGTTTATTTTGTTAAAAATAGCCCGGGATTATTTTTGATATTTTAAGTCGTTGGCAATCAAATCGTCATAGCTTTCCCGCTTGATCACCAGCTGGTCAACCCCGTCCTCAGCAAAAACCACGGCCGGACGCGGATTGCGGTTGTAGTTTGAGGCCATGGAATAGCCATAGGCGCCGGTACTTAATAGGGCAACTACGTCACCTGGTTCGGTTTTTGGTAAAGGACAAGACTTGATCAAGATGTCCCCGCTTTCGCAGTACTTGCCGACCAGGTTGACCCTTTCTTCATCCTCTGCTTGAGGGCGGTCAGCAACAACGGCTGAATATTCTGCCTGGTAAAGAGCTGGGCGGATATTGTCCCCCATCCCCCCGTCAAGGGCGACATAGCTCGGATAGCCAGGCAGGTCCTTTCTTGAGCCGACAGTATAAAGGCTAAAGCCCGCAGGGCCGACGATCGACCGGCCTGGTTCAATCCAGATGGCCGGCAATTTCAAATTGTTTTCCTGGCACTTGCTTTTGACTTCTTTAACAATGGCCCGGACGAATTCTTCAGCCGGAAGCGGCTGGTCCTGGTCAGTATAGTGGATGCCGAAGCCGCCCCCTACATTCAAGATGTCCGTTTCATAGCCGTATTTCTCTTTCCAGGCACTAGCCAGCTGGCAGAGCTTGTCTGCGCAGCCCACGAAGCCCCGGACGTCAAAAATTTGCGAGCCAATGTGGGCGTGAATGCCGGCCATCTTCATCCGCGGATTGGACAGGACCAGTTCCAGGGCCCGGTCAGCCTGGCCGCTTTCCATATCAAAGCCAAACTTGGAGTCCACCTGGCCAGTCTGGATATATTCGTTGGTGTGGGCGCTGATGCCGGGGGTAACCCGGAGCATGACCTTGCTGCTTGCGTTTTTTTCTTCCAAAATCTGGCTGAGCAAGTCAATTTCATGGAAGTTGTCCAAAATAATGACCCCGACTCCCTGGTCAACAGCCAGTTCCAGTTCTGCCCGGCTCTTGTTGTTGCCGTGGAAACTCACCTTGTCCATAGGAAAGCCCGCCTTCATGGCCGTCCAGAGTTCCCCGCCAGAGACGACGTCAGTGTGGCCGCCTTCTTCATTGATGACCTGGTAGATGGCCAGGCAGGAAAAGGCCTTTGAAGCATAGCTGACTTCATAGTCTACCCCTTCTTCTTCAAAGACCCGCTTAAAGGCCCGGATTGCCTGGCGGATTTTCCCCACGTCAAAAACCTGCAGGGGGGTCTGGTACTTGGCCGCCAGTTCCAGGGCATCTACCCCGGCAATCTGCAGGTGGCCGGCTTGATTGACATCGCTTGCTTTAATTAACCGTTCACGCTTTTACCTCAGTTTTTTTTATAAAAAATTTAATCAACTTAGCTAATAAGTTTAGCCTTCTCCACCTGCCTGGTCAAGGCAGACAGGCTGAGAAAAGAAAAGGGCAATAAAGATAGAAAAAACAAAAAAGACACCCGACTGGGTGTCTTCCTCACAATTGCGTTAGCTGGATTCGAACCAGCGCATGACGGTACCAAAAACCGTTGCCTTACCACTTGGCTATAACGCAATCTTCAATTCAACCAAGGGACGGCTCCCCGCATCCCCCGACCAAGTAATATCATACTTAGCTTTTTAACTCTTGGCAAGCCTTTTTTACAAAAAATTTGCCTTAGCCAAGATTCACTTTAAGAAGTTAACCATTAACCAGCTTTTTGGCCTTCTTCTCAGCCTTCAAGGCTTCAAAATAATCCCGTTCTTCTTTCACGTTGCCCAAGGCAATCGTTCCCCGCTTCTGGTTGATGCTCAAGTCATCGATGATCGCATCGACCAGCTCCCAGAAATAGGGACTGACAGCGGCTAAGTCATCGCTCTCCCCTACGCAGAGGTGGGCTGCCTGGCTCATCAAGAGCCAGTCCCGGCCGGCTTCTTTCTGCATCTTCTGGTGGGCCTTCTCTAGGGTCTGCCGGGAATTGAGTTCTAGGCGCTGAGCCTGCTTTTGAAAGTCTTCTTCACATTCTTCTTCCACTGCCAGGGCAAAAACGATCACTTCGCCCAGGTCCCGGCTGGCCGCTAAAGCTGACCGCAGCTGATTCAAAAGGGGGGCAAAGTCCGCCGCCGGGCCGAGCTGGCTGCTGGAAAGGCTGGCGTAAAAGGCCGCCTGCTGGTCCCCTTCTTCCGCTAAGGCCAGATACAGCTGCCTGGCCTGCTTGAAGCGCTTGGCCCGGTAGGCCTGCTTGGCTTCAGCATAAATCTCCGCCTGGTCGGCAAGGTCAAATTGCCGGCGCAACTGGTCAGCTGAATAGGCTGCCCCACAGGTCTGGCAGACAAAACGGCTGCCTTCTTTTAACAAATCTCTTTGCACGCAAAGCTCACACTTGATTTTTCTCATTGGCTATTTCCCCATGTTGACTTAATTTATCGGCAACTTGTAACCGCTTACTAGCAGATATTATAGCAAAAGTTTGTGAAAAATGCAGATTAAAAAACAAAAAATCAAGACCCATTTTGGTCTTGATTTAAAGAATGATGTTAATAAACTCAGTTGCTCTGCGTGCTTTCTGCTCCCGGGGCAACCTCAATCATGAATTCTGAACTGGTCCAGGTCGACTTGTCCGGGTATGTGACCTTAATCTGGGTCTTGTAGCTGCCGGCCTTGGCAAAGTCTGGCACCGTCAGGCGAAGTTGGCAATCAAGCTGGAATCCGCGATTGCCTTGCCCACTTGAGTTTTAGCGGCTAATAAGACAGGAGTGTAGCGGGATGAGTCAGCAGGATTATTGACAGTTACCGTCAAAAAGGCGCTGGTCTCCTTTTTATAACAGTCTTCTTAGCCTTCCAGGTATGGTCATAAACGCTGACGGTTACTTCCTGGCTGGTCTCCATTGAATTGTCCGGATAAAGCAGGCGGATCCGGGTCTTATATGTCCCCGCCTTGGCGAAATTGGGCTCGGGCACGAATTTATAAACCGTATTAGCCGGCAGGCTTTTAGCATTCTTGACCAGCTCCTGGGCAATCCGGTATTCGCCTTCCCGTACCTAAAAGTTTCTAACTTCTGGATTATATTCATCTGCCTGGCTGGCCTGGCTTTCCTGGCCGGCCAAAAGGCAAAGGGGCATAATGGCAGCGGCCGTTAGGACGCTATATAGCTTCGTCATTTTTTATTCCTCCAAAACACAATTCAAACACTTTTTTGCAAGCACATACTTTATAAGTTAATTATAGTCCAAATCGTTTTATTTTTGTGCCCGCTTTCAGAATATTTGGCCAGCTTTTTCCCATAAAAAAGGCTGCCAGAATCTGGCAGCTCATGCAAAAAATCATCTTTACTTTCTAACTCTTATTCGCTCTGGACCTTGCTGTGGAAGGACATGCGAAAGCTGGCTTCGAAGTCTTCCCCGCTTGCCAGCCGGTTCATCCCCTTCTTATCTTCCAAGTCCCCGTCAGTATCGGTAAGGTCAGCGATCCCCCACCATGGTTCGATGCAGACGTAATCAGCCGTCTTTGGGTACTGGGACCAGATGCCCACGTAAGGAGCTGAATCAGTTCTGACATTGATGTGGAAGCGGCTGGTTTCCGTCTTGATGGAGAACTTGTTGTCCGGGTGCCGCATCACCAGCACCATGGCATCATCCTTAAAGAGATCGTCAGTGATCGTGATCAAGGATTCAGTTGGGGCCAGGAACCGCTTTTCCCAGTTGAGCAGGCCGCCTTCCAACGGCACCTGCACCCGGGGCTTAGCCGGGTTGACCTGCAGGTAGAAGTCATCCTTCTTGACCCCGTCTTCAACCGGCAAGGCAAAGCCCGGGTGGCCGCCGACGCCGAAGATCATGTCCCCTTCACCCTTGTTAGTGACGTGGAAGCTTTCCTTGATCATGTTGTTCAAAAGCTCATAGCTGACCCGGAATTCAAACTTGAAGGGGTAGACAGCTCTGGTTTCTTCTGTGTCGGTCAAAAGGAAGGTCAGCTTTTCCTTAGTCTGCTCTTCCAGGGCAAATTCCATGTTGCGGGCAAAGCCGTGCTGTCCCATGTGGTAGGTCTGGCCCTGGTAGCTGTATTCATCATTCTTCAGCTTGCCCACGATCGGGAACAAGACTGGAGCATGCCGGCCCCAGACTTCCGGGTCAGCCTGCCAGATGTATTCATTGCCGATGTGCTTGCCAATGACGCTCTGCAGCTCTGCCCCGCGGCTTGATACCGTAACCTTCAGAATCTCGTTTTCGATAGTATAATCCATTATTTGCCCCTTAATACTCTTATTTTTTCTAAACTCAATCGCATTTTTACACTAATTCAGGGACAATTAAAAATCCCTCCTTTACAGGATGAACTTGGTCAGGTCCTTGTTCTTGACGATATCGCTCAATTTCTGTTCGACATAGGCCTGGGTGATGGTGATTTGCCCCATTTCCATGTCCGGCCCTTCATAGAGAACTTCTTCCAGCAGCTTCTCCAAGATCGTAGCCAGGCGGCGGGCACCGATATTGTCCGTCCCCTGGTTGACTTCAAAGGCAATTTCAGCAATCTTGTCGACTGCTTCAGCCGTGAAGACCAGGTCAACCCCGTCAGCCTTCAGCAAGGCAATGTACTGCTTCAAGAGGGAGTTTTGCGGGTCCTTCAAGATTCTGACGAAGTCATCCTTGGTCAAGGCGTTCAGCTCAACTCTGATCGGGAACCGGCCCTGCAGTTCCGGAATGAGGTCGCTCGGCTTGCTTTCAGCAAAGGCCCCGGCCGCGATAAAGAGGATATGGTCGGTTGAAAGCGGACCGTACTTAGTGCTTACGGTTGAGCCTTCAACGATCGGCAGGATGTCTCTTTGAACCCCTTCTCTTGAGACGCCGGCGGAGTTGCGCTTATCAGCCGCAGTAATCTTGTCGATTTCGTCGATGAAGATGATCCCGCTCTGCCCGGCCCGGTCCATGGCCTTTTGGTAGATGTCGTCATAGTTGACCAGCTTCTTTTCTTCTTCTTGGACCAAAAGCTTTCTGGCCTGGCCGACCGGCAGGGTCCTCTTGACTTTCTTCTTAGGAAGCATGTCACCCAGCATGCTGGACATGTCCATCCCCATCTGCCCCATCATGTCGCCCATTGGGTTGGCCTTTGGAGCTTGTTCAACTTCGATGGTGACTTCTTCGTTTTCCAAAAGCCCCCGGTCCAGCTTTTCAGCCACGCTGAGTCTTTGGTTTCTGATCTCGTCAGTAACTTCTTCTGTTTCTTCCGGCATCCCGCCGCCAGCCAGCAGGCTCTGCATCATTTCCTGCATCTGCTGCATCTGGTTTTGCCGGTTGTTGCGCTTAACGCCCGGCACCAGCAGGCGGACCAGGGTCTTGTTGGCCTGGCGGATGGCCTGGCTTTCAACCTTGACAAATTCTTCTTTTTCCACGATCCGGACAGCTTCATTGGCCAGGTCCCGGACCATGGATTCAACATCCCGGCCCACGTAGCCGACTTCGGTAAACTTGGTAGCCTCAACCTTGACGAAAGGCGCGTCAACGATGTCAGCCAGGCGGCGGGCTATTTCCGTCTTCCCGACCCCGGTTGGCCCGGCCATCAAAATGTTCTTTGGCGTAATGTCCTTTTGCACGTCTTCTGGCAGCTGGGTCCGGCGGTAGCGGTTGTACAGGGCGATAGCCACGGACTTCTTGGCCTCATTCTGCCCGACGATGTACTTGTCCAGCAGGTCAACGATCTGCTTTGGCGTTTTCTCTCTCATCCCTATTTTTCCTCGATTTCATCCGTAACAATCTCGTGGTCGGTAAAAACATCGATGTCCGCAGCTATGTTGACTGCTTCCTTGGCGATTTCACTGGCCGTCATCCCGCTGGCATGCCGGAGCATCCCCACGGCCGCTGCCTGGGCATAGTAGCCGCCTGAGCCGATGGCCACCACGCTTTCGTCTGGTTCGAGCACTTCCCCGTTGCCAGAAATCAAGAGCAGGTCCTGGTCGTTAAAAGCAATAACCATGGCTTCCAATTTCTGCAAGGCCGGGTCTTTCCGCCAGGACTGGGCCATTTCCACGGCTGCCCGGCGCAAGTCGCCGCTGTAGCTTTCCAGCTTTCCTTCCAGCATTTCCTGCAGGCTGACGGCATCCGCCACCCCGCCGGCAAAGCCGATCACCACTTGGTCGTGGTAAATGCGGCGGATCTTCTTGGCCGTGGTCTTGGCAATGATGCTCTTGCCCAGGGTCACCTGGCCGTCGCCTGCAATCGCCGTCTGGCCATTGTATTTTACTGAACAAATCGTTGTCATTTTCTTCCTCCGTTTGTTTGCTTTTCTATTTGATCGCGTTATTTAAAAATCTTGCTAAAAAGCGGAAATGATTACCGCTTTCCAACCATTTTCATAATAACACTTTTCCTCATTTTCGGGGAAAATGCTGGCGATATTCCACCGTAAGATGCTGCATGCTGACATGAGTATAGATCTGGGTCGTAGACAAGTCCTCATGGCCCAAGAGCTCCTGCACGCTCCTAAGGTCTGCCCCGTTGTTGAGCATGGCGGTGGCGAAGCTATGGCGGAGTTCATGAGGGTGGGCACCAGCCGTCAAGCCTGCTTTTTGAAAAATTTGCTGGACGGCTTTGGCAATCCCCCGGCTGGAAATTGGCCTGCCGAGCTTGTTTAAAAAGACTGCCCCGGTATCTGGCTCATTTTTCAATAAACTTGGCCGGGCTGCCTGCAGATATTCCTCCAAGTACTTTTTGCTCTCTTGGTCAAAAAAGACATAACGGTCCTTATTGCCCTTGCCGTGCACCAAAATCATGCCGTTTTCCAGGTCAAGCTGCTTAATTTTCAAGTCAGTCAGTTCGCTCAGCCGCATCCCGGTCGCGTAAAAAAGCGCCACAATTGCCCGGTTGCGGACTGTTAACGGTTTGCCATCGTTTAGCGAGCGGATGACCTGGCCGACTTCATCCTGGTAGAAAAATTCCGGCAGCTTTTTCTTCCCTCGCCTAAGCTGAATGGCCACGGTCGGGTCAGCTTTGACCAAACCCCGCCTGGTCAAAAATCGGTAAAAAGACTTAAGGCTGGATAATTTTCGAGATAAAGTGCTGGATGCCAGCTTTTGCCCGGTTGCCAGCAGGTAAATTTCCAGGTCCCGGCGGGATATTTGATCCCAGCCTGGAAAGCCCCCGTTTTCCTGCCAGAATTTCTTAGCTGCTGCCAGGTCCTTTTGGTAGGCCAGGACGGTTTTGGGGCTGTAAGAGCGCTCATTTTTCAAGTAGGAAAGAAACTGCTCTTCAAGGGTCATTAGTCATCCAGCTTCTCTGCCTTAAAGGCGGCCAGGTCGGCCAGGCCCCGTTCACTGATCTTTTCGTGGCGCTCGCGCTTGTTTCTGATCTTCTTGCCCTCCAGGCCCGGAATCAAGGCAAAGCTGGCGTTCATTGGCTGGAAGTGCTTGGCATCAGTGGTCGTAATGTAGTGAGCCATAGAGCCAAGGGCAGTGGTTACCGGGAATTCAACCGTCTCTTGCCCCAGGGCTTCTCTAGCCGCGTTAATCCCTGCGACCAGGCCGCTGCCGGCACTTTCCACGTAGCCTTCCACCCCAGTCATCTGGCCGGCAAAGAAGAGGCCTGGCCGCTTTTTAGCTTCATAGCTGGCCTTTAAAACTTCCGGGCTGGCCATGTAGGTGTTCCGGTGCATCTTGCCGTAGCGGACGAAGCGGGCGTTTTCCAGGCCAGGGATCATTTGGAAGACACGCTTTTGTTCCCCGTACTTGAGGTGGGTCTGGAAGCCCACGATATTGTACATGGAGGCAGCAGCGTTGTCCTGGCGGAGCTGAACGACAGCGTAAGGAGTCTTGCCGTCCTTCGGGTTCTCCAGGCCGACTGGCTTTAAAGGACCAAAGAGCAGGGTCTTGGCCCCCCGGGCCGCCATGACTTCGATCGGCATGCAGCCTTCAAAGACCTCGCTGTTTTCAAAGCCGTGAATTTCAGCAGTTTCCGCGTGAACCAGGGCATTGGCAAAGCGGTCGTATTCTTCCTTGGTCATCGGGCAGTTGAGGTAGGCGGCTTCGCCCCGGTCATAACGACTCTTCTTGTAAACGATGTCCATGTCAATGGAGTCAGCCGCGATGATTGGAGCGGCAGCGTCAAAGAAGTGGAGGCTTTCTGCGCCTTCAAAGTCCTGGATCTTTTCTGCCAGGCTATCGCTGGTCAAAGGACCGGTCGCGATAACGGTGATGCCTTCACTTGGCAGGTCAGTGATTTCTTCATCGTGAATGATCACTTCCGGCAGGCTGGTCAATTTGTCGGTCACATACTTGGAGAAAAGCTCCCGGTCAACGGCTAACGCCCCGCCGGCTGGAACTTGGCAGGCATCAGCGGCTTGCATGATCAAGGAGTCCATCTGCCGCATTTCTTCTTTCAAGAGGCCAACAGCGTTTGAAAGCTGGTTGGACCGCATGGAGTTGGTGCAGACTAATTCCGCGAAATTGCCGCTTTCATGGGCCGGAGTCATTTTCTTTGGCCGCATTTCGTACAAGTCAACCTTGATCCCTCTTTTGGCCAGCTGCCATGCTGCTTCGCTGCCGGCCAACCCGGCGCCAATTACCGTAACTTTTTCTGTCATTTGATTCAATCCTTCGCTTAAAAATTATCTACTTACCATTTTACCGAAAAAGCTTCTCCCTGCCTAATCGCACGCTCTGAGCAAAAAATGCCACCAAGGGCCTTGGTGACATCTTTGCTTTAACTTTCAACTTATTCGGCTGCTTCGCCTTGTTCTTCTCTTGGCTCTTCCTTGTAGTCGCCATTCGGGCAGAGGACGACCATGCCGTCCTTGCGCTTCTTTTCGACCAGGAAGTGGCCGTCGTGCGGGCAGACCCGGCTGATCGGCTTGTCCCAGGAAACAAAGTCGCAGTCTGGATAGCGGGAACAGCCATAGAATTTCCGGCCCCGCTTGGACTTCTTTTCCAGAACTTCGCCTTCCCCGCACTTCGGACAAGTCACGCCGACCTTCTTGACGATGGTCTGGGTGTGGCGGCAGTCCGGGAAACGGGAACAACCGTAGAACTTGCCGTAGCGGCCCATCTTGACCAGCATCGGGGCCCCGCAGACTTCACAATCAAAGCCAGCTGGCTGGTCCTTGATCTGGATCTTCTGGATCTCTCTGTCGGCTTTCTCCAGTTCTTTGGAGAATGGCTTGTAGTACTGGTCAACCACACTGACCCAGTCTTTCTTGCCTTCTTCGACTTCATCGAGTTCATCTTCCAGCTTGGCCGTGTAGTCAACGCTGGTGATGTCCGGGAAGAACTGCTCAACCAAGCCGTCGACGATTTCCCCCAGTTCAGTTGGCACGATTGCCCGCCCTTCCAGCTTGACATAATTCCGGGACTGGATATTCTGGATGGTCGGCGCGTAAGTTGACGGCCGGCCAACCCCGTTTTCTTCCAGAGCCCGGACCAGGCTAGCTTCAGTATAGCGGGCCGGCGGCTGGGTGAAGTGCTGCTTGCTGTCTGACTTGGTCAGCTTGACCTCGTCGCCCTCTTCCAGGGCTGGCAGGGCCACGTTCTTTTCACTCCGGTTGTCATAAACCTTGGTGTAGCCGGCAAACTTCATAACTGACCCGCTGGCTCTGAAGGTCACCCCATTTTGGGTCAAGTCATAGCGGACCGTGTCAAAGACGGCCGGAGTCATTTCACTAGCCACAAAACGGCTCCAAATTAAGGTATAAAGGCGGAGCTCATCCTTGGTCAAAACCTTTTCCAGGGACTTCGGTGTCCGGTAGACACTGGTCGGCCGGACAGCTTCGTGGGCATCCTGAGCGTCGCCTTGATTCTTGAAGTGGCGCTCCTTCTTGACCGCGAAGTCGCTGCCGTATTCCTCAACGATGAACTGAGCTGCTTCCTGGCGGGCAACTGGTGAGATCCGCTTGGAGTCAGTCCTCATGTAGGTGATCAAACCGACCGTGCCTTCCTTGCCCAGGCTGATCCCTTCATACAGGTGCTGGGCAATGTTCATGGTCTTTGAAGTCCGGAAGTTCAGCCGCCGGTTGGCTTCCTGCTGCATGGTGGAAGTGGTAAACGGCGCGGCTGGCTGCCGGCGGACTTCTCTTTTAACTACCTTACTGACCGTAAACGGCTGCTTCTTATCAAACTTAGCCAGCAGCTTCTGGACGGCCTCGTTATTTGGCAATTCCGTCTTTTTGCCTTCTTCGCCGTAAAAGCTAGCCTGGAACTTGTCCTTGCCCTTGGCAAATTCAGCGTCAATCGTCCAGTATTCAACCGGCTTGAAGGCCTTAATTTCCTTTTCCCGGTCGATAACCAGCTTCAAGGCAACTGACTGCACCCGGCCGGCTGACAGCCCCTTCTTGACCTTGGACCAGAGAATCGGCGACAAAGAGTAGCCGACCAAGCGGTCCAAGACCCGGCGGGCCTGCTGAGCGTTGACCGTGTCCATATCGATGGTCCGGGCGTGGTTGAAGGCATCCTTGACTGCGTCCTTGGTAACTTCGTTAAAGGTTACCCGGTTGGCTTCTTTTTCGTCCAGGCCTAAAACGTGGGCCACGTGCCAGGCAATAGCTTCCCCTTCCCGGTCGGGGTCGGAAGCCAGGTAGACTTTGTTGGCCTTCTTGGCTTCAGCCTTCAGTTCCTTGATGGTGTCACCCTTCCCCCGGATGGAGATGTATTTTGGCTGGTAGTCGTGGTCAATGTCGACCCCCATCTGGGACTTGGGCAAGTCCCGGATGTGCCCTTTAGAGGCGATTACGCGGTACTTCCGGCCCAGGTACTTCTCGATAGTGTGGGCCTTGGCTGGAGATTCCACGATAACCAGGTCTTTTTTCACCTTGCTCTTTTTCCGCTTCGGGCTGCTCTTCTTGGCAGCCGTGGTCGCCGTGGTCTTTTTACTGCTCTTGCTTTTATCTTCTTTTGCTGTAGCAGGCATCAAATGCCCCTTTCACTGAATTCGAAATTAAATCTTCTTCAATATAGAAATAATTTCCGGAATTGTCAACCAAAAGAAAATTAACTTAAGGGAGCAGACAGGCAATTTTTGCAAGAATTTAATCTTTCACAGGTCAATTTCCTTGTCGATAACCGGGGTTGCCCCGGCTGAAATCAGCTGGTTGGTGCCGGCCGACAAGGGGCTGGTGATTGCACCCGGGACGGCAAATACGTTCCGGTTTTCCTGCAGGGCCAAATTGGCCGTAATCAACGAACCGGAATGGGCTTTGGCTTCAGTCACGATCACGTTCTTGCAAATCCCGGCCAAAATCCGGTTGCGCTCTGGAAAGCGGAAGGGCCTTGGCGGCGTGTCGGGCAGGTATTCGCTAAGCAGGAGACCCCGGGCGGCAATTTGCTGCTGCAAGAGCGTATTTTCCCGGGGGTAAAAATAGTTCAGGCCATTAGCCACAACCGCGATGGTCTTGCCGCCAAAATTCAAGGCATTCTGGTGGGCCAGGGCATCAACGCCCTTAGCCAGGCCGCTGGCGATCACCTGTTTTTTCTTTAGAAAAACCGGCATGAGGTTCTCAATCACCTTGCCGGAATATTGACTTGGCGTTCTTGACCCCACGATCACCGTCACCTCTTTTTCCAAAAGGGACAAGTCCCCCCTGGCAAAAAGCAAAATCGGCGGCCGATAAATTTCTCTTAATCGTACTGGATAAGCATCGTCAAAGAAACTAATTATTTTGAAATTCCTTTGCAAGTTTTCAATGGCACTTTCGTAGCGGTCACTTAAAAAGGCCCGCTCCACCCGGTAGAGGATTTCATCAGGCAGTTCCAGGCAGTTCAGCCATTCATGGTCCACGTCCTCATCCGGGGGCATCTGCTGCATGACCTGCAATATTTTGAGATAGCTGAGGCCCTTCTGCAGCTTCAGGCGCAGTAAGAATTCGGTTTTGTTCATTTTTTCCCTCCACTTACTATTACGCCAAAAAGCGGGATTTTTTCTTTTTCTCAAAATTTTTATTTTTTCTTTTTTGACCAAAAAGAAAAAGACCGATCTAGTCAGCCTTTTTAAGTCCAACCATCTCGCTCACCGGACTGAAGGTCAGGCGGTGAATCGGCGTTGGGCCGTATTTTCTTAATGCTTCCAGGTGGTCCTTGGTTCCATAGCCGGCATTATGGTCAAAGGCATAGTCTGGATAAAGACGGGCGTAATCGTCCATCAAAGAGTCTCTGAAAACCTTGGCCACAATTGAGGCCGCGGCAATCGAGTTAGACTTAGCATCCCCCTTGATCAATTCTAGCTGGGGCAAGTCCACCGGCACGTTCATGGCATCGACCAGCAAAGCATCTGGCCTGGTGCTCAAAGCTTCCACGGCCTGCTTCATGGCCAGGCGGTCAGCCTCGTAAATATTGATCTGGTCAATCACTTTGTTGTCCATGACCCCGACGCCGACAGCAACAGCCTCTTGCAGGATCTTGGGATACAGGGCTAGGCGCTTTTGCGGACTCAGTTTCTTTGAGTCGTTGACTTCCAGTAAGGAAAAATCTTCCGGCAAAATGACGGCAGCCGCTACAACCGGGCCAGCCAAAGGACCCCGGCCAACTTCATCGACCCCGCCCACCAGCTGCCCTTTAGCCCAAAAATCCTTCTCGTAACTGAAGCGGCCCAAGAATTCTTCCTTTTGCTTAGCCAGCTTTTCCTGCCGGCGCTGGTAGCTGACCAGCAGTTTCTGGACCCCCTTGCGGTCGTCTTTGGCTAATTCCGCCAGAATAGCTGGGTCAATAGAATCTGCTTGCAGCAGGTCTTTAATTTCATTAATTTTCATTATTCGCGCTTGGCCAGTCCAGGCTGATCCTGCCCAGCTTGCCCTTTCTTAACCGCTGCAGCATGAAGAGGGAGAAACGGTCATAGTCTTCCCGCATCCCGTTGTTTTGAGTCATGGCCAAAAGCAGGTCAGTGTCGCCGATATTTTCCAGCTTGTCCTTAGTGCAGTTGGCGAACTTGGCCAGATAAGCCGGGTAGTACTGCCGCAGCTGCCGGATGACAAAAAGTGCAACGTCGTCAGCGTGGAAAATCGTGTCCTTGATGGCCCCAAAAGCAGCCAGCTTGTAGCCTACTTCCTGGTCTTCAAACTTTGGCCAGAGAATCCCCGGCGTGTCCAGGATCTGGATGCCATATGGGGTCTTCAGCCAGGCCTGGCCCTTGGTTACCCCCGGCCGGTCCCCGGTCATGGTGACATTGCGGCCAACCAGGCGGTTGATGATAGTGGACTTGCCGCAGTTAGGCACGCCAACTAGGCAGACGCGGATGATCGGGTTGGAGGCCCCTCTCTCTTCCAGCTTCTTGACCTTTTCGCTGGCTGCCTTCTTGATCAAGGTGATCAAGGCCTGCATATTAGTGTTGTGCTGGGCATCCATTGCCATGACCAAGGTGCGCGGGCCCTGCAATTTCTTTTGCCAGAGCTTGGTCATCACCGGGTCAGCCAGGTCGGTCTTGTTTAAAATGATCAGGTGGGGCTTGTCGCCGACCAGTTCACTGATCATCGGGTTTCTGGAAGCGCTGGGAATCCGGGCGTCCAAAACTTCAATAACAACGTCAATTAAGTTTAATTTTTCTTCCAGCTGATTCCTAGCCTTGTTCATGTGGCCTGGATACCATTGAATTTTAGTCATTTTTCCTCCCAAAAACAGCAGAAAAGGAAGCCGGGGCTCCCTTTCGTGCTTGTCACTGAATCCTAAAAATTATCCTAGTACTGCATTTTCTCTTCATAAGCCTGGTAAGCATCGTCAAAAATCGTCATGCTGGGCAGGTAAGCGGCATTTTCCTCCAGATATTCTGACAGCCTGGTCCGGTCCTGTTCCTGTCTGGGAAAGGTCGAGTCAAACTGGGCGTTGTTGGCAAACTGGGCCAGGTCGCCATTTGAATCCGGATCGCGCAAAGTCATCAAAAACTGGTAAAAACTTTGTCGGTAGGCCATATATTACTCCGTATAAAACATGACCGCGTAGGCCTCATGGCCGGCGTGGGTGATGATGATCGGGCTGGTTTCCTGGACCAGGATCTCCAGGTCCGGGTTGACTTCCTTGAAGCGCTGGGCGAGCTCTTCCATCTTGTCTCTGGTGTCGACATAGGAGATGCCGACATACTTGACCTTGTCGCCCAGTTCTTTCAACTGGTCGACAAGCATGTCGTCAAACTTCTTGATGAATTTCTTCCCCCGGCCCCGGTAAGGGACATTCAAGCTGCCCTCTTTCATGGTCAGGCCGACGTGGAAGTTCAAAGCTGAAACCACCCGGCCGGCCCACTTGCCCAAACGGCCGCCGGCTAAAATGTTCTGCAGGTTGGGCACCATCATTTCCAGGTACATATTCTTGCCGATCTGGTCCAGGTGAGCCAGGATTTCATCCATTTCCTTGCCCGCTTCCGCGTCCTTGGCCGCCTCAATGCAGTAGTAGCCTTGAGAGCGGTCAGTATAGCCGCAGTCGATGACCGTGATCTTGCCGGCTACCATTTCAGCGGCCTGGCGGGCGGAATCAACCGTCCCCGACAGGGTCTTGGCCATGAAAATCCCCAGGACTTCACTGCCGTCAGCCGTCAGTTCCTCCATTCTCTCCACGAACAGGCCGACCGGGGGCTGGCTGGTCTTGGGCAGCTTCTCTGCCTCATCCATCTTTTGGATAAAGTCGGCCCGGGTAATGTCAACGCCATCCGTGTAGGTATGTCCGTCGATTGTCACCGACAGGGGCACCACCGTAATACCATATTTTTCAATTTCTTCCGGACTCAGCTGTACTGAGGAATCCGTCATGATCTTGATCTTAGACAATTTAACTGCCCTCAATTTACAAATTATCCTATCAGCTTCTCAGTTGTGATAGAATTAGACTTAATACAGATTTTAGTATAGCAAATTTTCGGCTAAAAATTATAATTAATTGATCAAAACTGAAGGGACTTTATATGGCTTTCAATCCTTGGCAGCCGGTCGAAGACCGGCCCAAATCTTACTATATTATTGACAATGTTCTCTCAGCCGTCGTGCACGGGATCGGCTTCGGCCCCTCAATCGCCGGCCTGGTTATTTTAGTGGTCCGGGCCGCCCACAGCCACAGCGCCCTCAGAGTGACAACTTTTGCCATCTACGGGGCTTGCATGATCCTGCTTTACCTATTCTCGACCCTCTACCACAGCCTGGTCTTTACCAAGGCGAACAAGGTCTTCCAGATCTTAGACCACTCTTCAATCTTTATCGCGATTGCCGGCTCTTATACCCCTTATACCCTGGTCACGATCGGCGGGGCTAAAGGCTGGGTCATGTTCGGCATCATCTGGGCCCTGACGGTCTTTGGTATCCTCTATTATATCTTCAACCAGGGCAAGCACGTTATCGGCGACACCATCCTTTATATCGCCATGGGCTGGATGGTGATCCTGGCCGGCAGCCAGCTTTATTTCAGCCTGGGGCCGACCGGCTTATGGCTTTTAGTCTCAGGCGGGATTGCCTACACCTTTGGCTGCCTCTTCTTCTCTATGCGGGGCCTGCCATATAGCCACGTCATCTGGCACTTCTTCGTTTTGCTGGGCTCCATCTTGATTTTCTTTTCAGTTTTATTTTATGTATAAAAAAGGCGCTGGTGACCAGCGCCTTTTAGATTGCCAAAAATTCCGCGATTGCCGCCTGGCTGTTCTCTACCTGGCCGCTGACCACGCCCTCAAGGGCTTTGCGCAAAAGCTGGCCCAGTTCCGGTGAAGGCTTAATCCCCTCCTTGATCAGCCACTGGCCGTCAATGGCCAGCTCCCCTGCCGCCTTGATTGGCAGACGGTTATAGCGGTCTAACAGGACCTGGCTGGATAGAGGCTTGCCCAAAAGCCCCGCTAGCTTTAAAGCCGCCTCCAGGTTCTCCTGGCCGATTTCAAAGAGGTCAAAATCACTCTCTTCCCCCCGGCTCAAGAGGTCAAAGGCGGCCACGATCTGTCTGACTTGCTGGTTCATTGCATTGGAGTTCTTCCAGGCCCGCATGAAAGGCGAAATCTTGTCGGCCGGCAGGTTGATTAAAACGGCGATCAAGCTCCAAAAGACTGCTTCGTCATCCGGACCGGCCTTAAGGTCAGTTAAGACAGAGAGCTGGTCCTTTTTCCCGGCCAGACCCGGGCATTCCTCGCTTAAGCCGGTGGCCAAAAAGTCCTTAAAAGCCTGCCGGCTGTCCTTGCCCAGGGCCAGCTTGACAAATTCTTCCCTAATTCTTTCCACGGAAATCTTGCTTAAAAGCTCGTGGTTGTTGATAATAGCCTGCCTGGTCTTTTCTTCCAGGCTGAAAGAGAGCTGGCTCATGAAGCGGACTGCTCGCATCATCCGCAAGGCATCCTCATGAAAGCGGTCTTCAGCTACGCCAACAGCCTTGATCACCCGCCGCTTCAAGTCGCCTAAACCGTCAAAAAGGTCAATGATCTCCCCTTGCCGGTTCATGGCCAGGGCATTGATGGTAAAGTCCCGCCGCTTTAAGTCCTCGTCCAGGTTCTGCACGAAGGTGACCTTGTCTGGCCTGCGGAAGTCCTGGTAGCCGGATTCCGTTCTGAAAGTCGTGATCTCGTAGCTGGATCCCCCATAAAGGACGGTCACTGTCCCGTGCTGGATGCCAGTGTCGATACTTTTGGCAAAAGTCTCCTTGACTTCTTCCGGGTAGGCACTGGTCGCGATATCCACGTCATGAATCGGCCGCTCTAAGAGCAGGTCGCGGACGCAGCCGCCGACGAAGTAAGCTTCAAAGCCAGCTTCTTCCAACTTTTCCAGGACCGGCATGGCCTGGGTAAAAACTTCCGTTATACGAATATTAGTCATCTTCTTCTCTACCTCGACTTTTTTTGCTAAAATTGATTACGTATGGGGAATAATTTAAGAAATAAGAAAGGAGTGTCGAAATGAACAAGCCAAAATTCAAATGGACCACTAGTGACACGATCAACATCCTGATGATTGCCCTGGGCTCGGCCATCTACGCCTTCAGCGTGGACATGGTGTCGATTCCCAACAAGCTGGCCGACGGAGGATTGTCGGGTTTCATCCTGATCATCCGCCACTTCTGGGGGGTCAACCCCGGTCTCAGCACCTTCATCATCAACATTCCCTTGATCTTTTTAGGCTTTAAATATATGGGCAAGCGGGCCATGATTTATACCGTCTGGGGAACCCTTTGCCTGTCCTTCTTCTTAAGCATGTGGACCCTGCAGTCTATTATAGACCAAGTTCCCCTCCATCACGACCCCTTCCTGGCTACTGTCACGGCCGGCTGCTTGTCGGGGCTGGGACTAGGACTGGTCTTCCACTTTAACGGGACCACCGGGGGCAGCGATATTGTCGCCCGGGTCTTGCAGGAAAAATATGGGATCACGCCCAGCAAGGGCCTTCTGGCCCTGGACTTCTTAGCCCTGGCCTGCTCCCTGTCTTACCTGGACTTCTTCCATGTCGGCTACACCATGGTCTCCTGCTTCATTTTATCCAAAGTCATGGCCCTGGTTACTGAAGGCGGGACCCGGGCCAAGGGGGTCTTTATCATTTCCCAGAATTACCGGAATATCGCTAAGCTGATTTACCTGCGCTTAGAGCGGGGCTTCACCTACATTAACGCTGAGGGCGGCTATTCCAACGAACCCCGCCACATGATCTACCTGGTCCTGTCACCAAGAGAAATCCCAGAATTAAAGAAAATCGTCAAGCAAGAAGACCCGCAGGCCTTCATCATCTTCTTTGACGTCAACGAAGCTTTGGGCGAAGGCTTCAGCTACAAGACCAAATCGCCAAGCTTATTTATCAGAAAGTAAAAGAGTCACAAGCGTGACTCTTTTTTCTTGCCTTAATCTTACTTAATCCTGAGAGCCGCGTCCCGCAGCTTCTTGCTAAAGACAGGCGCCAGGTGCTGCAGGAGGCTGACCGGATTAATTTCGCCCTTGTCATAGACATTAGTCAGAAGCAAATAGGCTTGGATCTCACCAAAGTCATTCTTAACCGGAACCAGCAGGATTGCGGTCAATATCATTCTTGGCGCAGAAATCCCCTTGTTCAGCAAAGTCAGCCTCTTCTTCGGCAAATTTAGCAACATCAGCAATGTCTAAATAATTCTGCCGGGCCAGCAGGCGTTCAATCGGCTCCAAGAAACACTTGCTGATATTCTCCAGTTGCGTATTGAGCGGCGCAACATAAGGCGCGGCCCATTCGTAATTAATCGTGAAGCTGTCTGCCCCTAGCTCTAGCAATAGTGCGTGTGAAGCCAGGGTAACATCACCGATCTCCCCCGCAGGGCTTTCTGCATCGAGCTGAAGTATCTCCGGTCATTTAGGAGCTGCTGGTTGACCTCGAAAATTCCGCGTCAGTTGCTACGATCCGCTTGAATTCCGACTCACCGCCTTCATCCAGGGCAAAGACCGTCACCACGCAGTTTGGCATGGTCGAGGCCTTGGTATAGTAATTGACCCAGCTGCGCAGGCCCCGGCGGGTCAATCCACCGGCTCAGAGCTTCCAGATTGCAGACCTTATCAGTCAAAGTCCGGATAACCGGCTGAAAGTAAACCTGGATCCAGCCCTTTTCCAGGGCCTCGTCAATGTGGCTAAGCACATACTCTTGCAGGCGGTGTCTTTGGTCCAGCTTGTCATCATAGTAAACTATTCCGGACTTAAAAGGATCTTCCAAGGACTCACAGGCCATATTCCTGGCAGTAGGCATAAAAGCGGTCTTCACCCGACCGGGTGCAGTCCTGGTCACCAAAACTGTCCTTAAGACAAGCTCCCACAAAGCGCAGCAGGTCATCCCCCTGCGTATTGGTTGTTGTAATCCTTCATCCCCACCAGGTCAAAGGAAATGATCGAAACACGCTCGCCTTCCTTGATCCAGTCCCTTGTCCGGCTTTGGCCGACTTCTTGGAAAGAGCGCAGGTCCAGCAGGCCGGTCAAAAGGTTCCGGTTGATGTTGATCAGCGTAATGTAGCACAGGTGCAATTCCCGGCCAGCAACTTCAGCCTTGCGAACCTAAGCATTAAGCATGTGCTCTTGCCCCTTGGCATCTGCAACTGTCATGTGTTCAAATTCGGCATGATCACCGCTTAGACCTGTAGTCAGCGGGAAGAGCTTTTCCCAGGCAAAATCAGTCAGTTCAGCCATATTTTTGCAGGCAAACAAATCCAGCAGCTTCTTATTGGCATAGACGATGGCCGTTTTATTATCCTTGACTTCCAGAACCAGGAAGGGCTTCCGGATATAAGTAAAAGACTTTCGCAAGAAATTTGTCAGATCATCTTTTTCAATCATATTACCAGCTTCCATCTAGCTGTTTTTTGTCATTAGAGACTTGTACAAAGTAATTATACTAAATCCTTCTATCTTTTTCTCAAAAAATAATAGTATTTTTGCAATTATTTTGCGAACTAAAACCGCTCTCACTTAGAGAACGGTTAAAAACTTAAAAAGTATTCAGTTATGATGGCAATTTCGCGAACTGGCTGCGGTAAAGCTGGCTGTAAAAGCCGCCCCGGGCCAAAAGGTCAGCGTGCTTGTCGCGTTCAATAATCTGCCCGTCCTTCATCACCAGGATCAAATCAGCATTAACGACCGTGGACAAACGGTGGGCCACGACAAAGCTGGTCCGGCCCTGCATCAACTTGTCAAAAGCAGCTTGAATCAGCATTTCTGTCCGGGTGTCGATAGAGCTGGTTGCTTCATCCAAAATCAGCATTGGCGGGTCTAGCAGCATGACCCTGGTGATACAGAGCAGCTGCTTTTGCCCGGCGCTTAAGCTGTCAGCGGAAAGGGGCGTGTCCAGGCCCTGGGGCAGGCGGCGGATAAAGCACCAGCTGTGGGCAGCTTTAGCCGCCGCGATAATTTCCTCGTCAGTAGCATCTTCCTTGCCGTAAGCCAGGTTATCCCGGACTGTCCCCTCTTCCAGCCAAGTGTCCTGCAAGACCATGCCGAAATTTTTTCTTAAGGCATGGCGGGACATGTCCTTGATATTTCTGCCGCCTAAGTAGATTCCGCCGGAATCCACGTCATAAAAGCGCATGAGCAGGTTGATGGTGGTCGTCTTCCCGCAGCCGGTCGGCCCGACCAGGGCAACCCGCATCCCCGGCTTGGCAGTCAAGTTGAAGTCCCTGATCAGAGGCTTGTCCGCCTGGTAGGAGAAGTTGACATGGTCAAAGACAACTGAACCGGTCTTGACTTCAGGCAAATCGCCATCAGCCTTGTTCAAGTCAACCGGATCAGCTTCCGGCTCTTCATTGATCAGTTCGAAGACCCGGCCGGCGCAGGCAGCCGCGTTTTGCAGCTCAGTAATCACCGAGCTGATGTCGTTAAACGGCTTCATGTACTGGTTAGAGTAATTCAGCAAAACGCTGAGCCCCCCAACCGTAAGACGCCCGCCCATGATGGCAAAAGCACCCGCCAAGGCGACCAGGGCATAAATAAGGGAATTGATAAAGCGGGTGGCCGGGTTGGTCAGGCTGGAATAAAAGGTCGCCTGCTGGCTGTATTCTTGCAGGCGGTGGTTTATTTCAGCGAAGCGGCTTGAGGCGGTTTTTTCATAACCAAAAGCCTTGACCACCTTGACCCCGCTCACCATTTCCTCAATCAAGCTGGTCTGCTCGCCCCGAGTCTGGCTCTGCTTTCTGAACATCTGGTAGGACCGGCTGGCAATAAAGCGGGCCACGATGAAACTCAAAGGAGTCAAGACCAAAACCAGGAGGGTAATTTCCACCGACTGGCTGAGCATGAAGGCTAGGGTAGCCACAATAGTGATCAAGCCGGAGAAAAGCTGGGAAAAGCCTAGGAGCAGGCCGTCAGAGAGCTGGTCGGTGTCGGCAATGATTCTGGAAACAATGTCCCCGCTTGGGTGCTGGTCCAGATATGACAAGGGCAAAAGCTGCAGCTGCCGGATGGCCTTTTCCCGGATATCCTGGACGGTCCAGTAGGTCAGTTTATTGTTGATCAGGCCCATCAGCCAGGTGGCGGCGGCTGAGACAATCACCAAGATTAAAATCTGGACCAGGTCCTGGCCAATAGCTGGAAAGTCAACTTTGCCAGGGCCGACAATCTGGTCAATGGCCCGGCCAAAGATGATCGGCACATAAAGCTGGAAGATAACGGAGACTGCCGCCAGAATTATGCTGATGAATAAAAGAAGGCGGTAGCGGCCGATAATTGGCAAAAGCTGCTTCATCGCCTGCCAGCTGGCCATTTTCTTGTCTTGCTTTTTCATCGGCTCCCCTCCTTATCTTCTTTTGCTTCTTTTTCCTTCGGGAACTGGGAATAATAGATTTCCTGGTAGACCTGGCAGTTGGCCAAAAGCTCTTCGTGCTTGCCGCTAGCCACCAGTTTGCCATCGTCTAAGACCAGAATCTGGTCAGCCTGCATGATGCTGGAAACCCGCTGGGAAACCAGAATCTTAGTTACGTCCTTCAAGCTGGCCAGAGCCTGCCGCAGACGCGCCCCCGTTGCCAGGTCCAGGGCGCTGTCGCTGTCATCTAAAATCAAAAGCGGAGCCTGCTTGACCAGGGCTCGGGCGATGGTCAAACGCTGCTTTTGCCCACCGGAAAGGTTTCTGCCTTCCTGCTCGAGCTGAAAGTCCAGCTGGCCGGGCTTAGCCAAGACTACGTCTTTCGCCTGGGCCAGGCTGAGGGCCTGCCAGAGTTCTTCATCACTGGCCTCCAGCCTGCCCATCAGCAGGTTGTCCCGGATGCTTCCGGCAAAAAGCTGGGCCTTTTGCGGCACCAGGGCATACTGGTCCAATAGTTCCTCTTGGGTCAGTTCCTTTATGGAAACGCCGCCCAGTTTGATCTCCCCTTCCCCGCAGTCATAAAAGCGGGTCAACAGCTTCAAGAGGGTGCTCTTGCCGCTGCCCGTCCCCCCGATAATGCCGACGGTCGCGGCCGGCTTGATCGTAAAGGTCAAGTTTGAAACGGCTGGCGCGGAGGCTGCCGGATAGGTAAAGGAAACATTTTTAAAGTCAACCTGGCTGTTTGTGACCTTTGGACCTGCTTTAGGATAAGTCAAGTCATTTTCCGTGGCCAGAACCTGGCCAACCCGGTCTCCGCAGGCCCAGGCCCGGTTGATGGTGATAATCAGGCTGGCCAGCTTAATCAGTTCCACGATCATTTGGGCCAGGTAGTTGTAAAGAGCCACCACTTGCCCTTGAGCCATTGCTCCGGTATTTACCTGGACGGCGCCAACTTGAATCAAGACAATGGCCGCGATGTTGATCATGACATAAGTCACCGGGTTCATGGCGGCTGACAGGCGGCCGACGAACTCATTCAGCTTGGTCATGGCGGAAACTTTTTCATCAAATTTGGCCACGGCGGCTCTTTCTTTTCTGAAGGCCCGGATGACCCGGACCCCGGCCAGGTTTTCATTGCTCAAGCGGGTAATTTCATCCAGCCGCTTCTGCACCTTCCGGTAAAGGGGAATGCTGACCAGCATGATGCCAAAAACGACCAGGGCCAAAAGCGGAATCGCTACGGCAAAGATCAAGGCCGCTTTAACATTGACCGTAAAGGCCACGATCATTGACCCAAAGACGATAAAAGGACTTCTTAATAAGAGGCGCAAAGCCATGTTGAAGCCGGTCTGCACCTGGTTGATATCACTGGTCAAGCGGGTGATCAAGGTGCTGGGCGGCAGCTGATCCAGGTTGGCAAAACTGAACTTTTCCACCTTGTCAAAAGCCGCCTGACGCAGCTGGCTGGCCAGGCCCACGCTGGCCTTGGCGGCAAACCACTGGGCAGTAATGCTGGCCGTGATCCCGAAAAGGGCCAAAAGGGCCAAAAGGCCAACCTGCTGGAAAACATAGGCCTGGTTTCTTTCTTTGATCCCGTAATCGATAATCCTGGCCACGACCAGGGGAACGAACAGGTCAAACAGGGCTTCCAGCAGCTTGAAAAGCGGGGCCAGAACGCTTTCTTTTTTATAGTCTTTGAGGTAGCTAAAGACGTATTTCATGTTCCACTTCCTTAATTTATTTGATGTTTCGAAATTCGATCATACTTTATTCTTATTAAAATCAACAAGCACAAATTTCTAAAATTATTTTAAATCGATCATTTTTACGAGTTTACCACTTGATTTTTTACAGGATTAGCAATAAAGTTTATTCATAATACTAAGATGAACACTTTTTCATTGCTAATACCTCAATTTCTTTTGCCTGGCAGCACTTTTTAACCGGGAAAATTAGAAATAGTTAGGTAAAAAATTTTTAAAAGTTTCGTTTTTTAATAACAAGTGTTTTTATTTCTTAAGGAATTGATATATTATTATATCAGAACTGTTTGATACGCGTAGCATATATATCTGACATTTCAATCTTTTTATTATGAGGAGCTTAGTAAACCCGTGAGAATCGAACACCTAGAGATCTTTGTAAACGCCGCGCAGACGCAGAGCTTTACCAAGACTGCACAAAATATGAACATGTCCCAGCCAGCGGTTTCCCTGGCCATATCCTCAATCGAGAAGCAACTGGGCTACCAGCTGTTCAGCCGCTCCCGCCGCAAGATGCTGCTTACCCCGGCCGGCCGGTCTTTGTACAACAGCATCAAGAGCGAATTGAACAACTACCGGACCGCCGTTTCCAAGGCCAAGCGGATCGCCATGTCAGAAGGACAAATCACCTTGAAGGTCGGCTTAATCGGAATTCTAGCCGAACAGCTGATGCTTCCAGGCTTGATCCGCCAGTTCCGCAGGAGCCGCGACACCGTAAACATCGAATTCTTCGTTGAAAGCAGCCCGGTTCTCTTTGAGAAGCTGGCCTCCCACGAGCTTGACCTGGTTTTGTCAACTCCGGAAGCCATGCCGAAATTCCCGGACTTCACCGCCTACACGATCGGCAAGTTGAAGTGGTGCACCCTGGTGCCAAATGACCACCCTCTGGCTGAAAAGGACCTGCTTTCAGAAAAGGACCTGGACGGCAAGGACCTGGTCTTCCTGGATCTTTCTTATTCATCACCGCTGATTACCTTGATGCAGGACCGGATTGAAAAGAACTGCAAGCAAAGCCGGATCTTCTTTGCCAACAATGTCGTGGCGCAAACCATGATGGTTTACACCCAGCAGGGCCTGGCTATCCAGCCATACACCGGCTCGCTTGATGACGACAATTGCGAAGTCAACGGCCTAAAGCGGGTTCCCCTGGACGTCAAGGTCAGCTCAGACCTGACCCTCTTCACTTGCAAGGACGTCCTCAACGAACACGTCCTGGACTTGATGAACTGGCTCAAGGCACAAAAGCTGGGCTAAGATTATAAGTATATAGAAAAAATGCTCATCGGCTGATGAGCATTTTTCATTGCTGTTTTTTCGACTTGAGTTATTTGATTTCATTAAAGGACTTGTTGCAGTAGTTGATCAGCTGCCGCATGTCCTGCTTGCCCCAGTTCCAGGCCCGGAATTCCTTCAAAAATTCCTCTGAGCAATAGTTTAAGTAGTTGTCCTCTGCTTCTTCCAAAATCTGCCGGGGATCCATGGCCTTGATTTCTGCCAGCCGGCTTTCCCTAATATAAGCCGGGTCGTTTAAGAGAGACTTGCGGCTGACCGGCTTTAACTGGCAGCCCCAGCTGGCTGCCCGGGCGCTTGCCAGGTGCAAGAAGGCAGCGTTGTGGGTAATGCAGTCTTGCAGGATCTGCTGGCCCCGGCCAGATTGTCTGGGCATCTCCAAACTGAAGCAATACTGCCGGTCTAAAGTCAGAAAAAGACCGTTATTGTCAAGGCACTCAAACAGCTTCATCTGGTGCAGGCCCACCAGGTCAAGCGGCTTGTGGCGCATGATGAAAAAAGAGAAATAGGCATGTGAGCCAAAGGACTGCACATACTGGTCTGACATCCCGATCTGCCGGCAGAGCTGCTTTTTAATAGTCAGTTCGTGGGCCGGCTCCTTCTTTCTCAGTTCATGAACCAGGCGGCGGCATGTCTTCTTTTTAAGCAAGACCCAACCGGCATCGGCGTCATAAATGATCGTCCGGTACTTGCCCAAAAGCAGGTCCATCTGGAAGTCGTAGGCCGCGACCGTCTTCTGGTTTATCTGGTAGTCCTCGTCGGCCTGGGCAGCTATTTTCCCGCTAGCCAGTAAGGCAGGCAGATTCTGCCGGTCAACCACCGCCACATTCATATCGCAAATTTTCTTTCTCGTTCTCATTTTCTCCTAAACAAGCTCCTAACACTATTTACCGTTTATATGTTGTTATTTTTCTCCTAGTTTAATTTAACAAAAAGGCCCTTGTGAGGCAAGCGGTTCCATCGATTTTGGCCAACTTTTATCAACTTTGTATGCGCTTCCGGTATTGGTTGATTTTCCAGCCGGGGACGTGTAGAATATTTTCCGTAAAAGTCCGCTTGTTTTTATCTGGACAAGTCAAGTTTTGCTAGAAGGAAAATGAAAATTTGCAAGTCGACCTTATCTCACTGACAATCTCAGGGCTGGTCCTGCTAGTCTTGATCCTCAACATTCTCTATTCCCCGGCCTTCAACCGCCTGGACCGGAAGCTGCACAAGAAACTGGTGCGGACGCAGAAGAATATTTTTTGGAAGATCATCGCCTTCATCAACGAGCCCAAGCTGGTCATTGTCTGGGACGTCTTGATTGCCGGCCTGCTCTTAAACGAAAACAATTACCGGCTCGGCCTTTGGGTCCTGGCTACCTTAGGCGTGACCGATGCAGCCGGTTTTATCGTCAAGCACCTGGTCAAGCGGAGCCGCCCTCATGCCCACCTGTCTGAAGAAGAAGGCTACAGCTTCCCCAGCGGCCATGTCTTAGGGGCAACGACCATGTGCCTGATCCTTTACGCCCTGCTCAGACGGGAATTTGATCAGTTATTTGCCGTAATTCTTTTGATCTACTGGCTCTTTGTGGTTATCTCCCGCCTTAACCTCCGGGCCCACTACCCGTCAGACGTCCTGGGAGCCGTGGCCTTGTCGGTCTTCTGTTTTACAGTCGTGCAAACAATCTATGCTGCCCTCTTTTTGAAGTAGAACATAATACATAACAGAGACGATAACGATATATAGGAGCAAAAAATCCAGAGTTCTAACTTAACAGAACCCTGGATTTTTTATTTTGCAGCTTATTAATTGTGAAAGCCGACCATGAGCCCCCCTCTTTCCGCGTAGAAAGAGCACAGGCCCCGCATTGGCCGGATGGTAATCTCAGCCTCAGGATATTCTGCTAGCAGCAGTTCCTTCAGCTTCTCAGCATCAGCTTCATTTTCGCAGTGGTCAATCACGACCCGGCCGCCCTGGTACTTCTCTTCCTTCATCTGCTTGACCAGTTCCCGCAGGGCCTTCTTCATTCCTCTGGCCTTGGTCAAAGGCTGCAAGTCACCGTCAACGCTGGCCGTCCCGATTAAATTTATCTTCAGCATCCCCGCAATTTTGGCCACGGCTGGCGACACCCGGCCGTTTAAGGACAGGTTTCGCAGGGACTGGAGGACGAAAAGCAAGTGAGTCTTGGTCCGGTACTCGGCAATTCTGGCTTTCAAGTCAGCAAAGCGGAGCTTGTCATCTTTAAGAATGCTTTCGATCCCTTCCAGGATTACTTCCAGTTCCTGACCGGCTGACCGGGAGTCAACGACCACGATCTGGGCATGCGGGTGAGTCTCTAAGTAGATGTCTCTGGCCTGCAAGGCGGAAGAGTAGGTCCCCGACAAGCCGCTAGTAATAGTCCCGATCACTGCCTTCTCGCAGCCCTCCAAACTATCCAGCCAGCGCTGGATGCTTGGCGCGGCAGTCTTGCCTGCCTCCTGGCTGGCCTCCATCTTGTTCAAAAATGCGCCCATGTCCAGATGCTCGTCATCCAGCCAATTTTCCTGGCCGATGGTCAAAGTCAAGGGCACGACCTCAAGGCCGCGGCTTGGGTCGGTCAAAGTATTGGCGCTTGAATCAACTATCAGTCTCACGTTTTCCATAATATTATCCCGATTCTACATTGTCTCTGGCAGCTTTTCCTGCCTTGTCTGTTTCTAAATCTATTTTAACAGTTTTTCCTTAACCGGGGAATTTTTTACTAACCGCTTTCAAACTTGGATTTTGACCAAACTTGCTTAGCAAAAAGTAAAATTTGTAAAAAAGCGGTTTTTTGGAATCGTTTTCAAAAAACTGGCTGTTTACGGATTCACAAGCTTATACTATAATGAACTTGTAAATAATTACAGAGCGAATGCTCTTGCTGTCGGAGAATTCCTCCGCCAGCGTATTTTAAGGAGGATTTTTTAATGACCAAGGTTGTTATTGAAAACGTTCATGCTAGAGAAATCTTTGACTCACGTGGTAACCCAACTGTTGAAGTTGAAGTTACTTTGTCAAACGGTGTAGTTGGCCGCGCTGAAGTTCCATCTGGTGCTTCAACTGGTGAAAACGAAGCTGTTGAATTGCGTGACGGTGGCTCACGTTTGGGCGGCAAGGGGGTTATGAAGGCTGTTAACAATGTTAACACTGCCATCAACAACGAACTGCAAGGCGCAGACCCATTCAACCAACCAGCTATCGACAAAGCTATGATCGAACTTGACGGTACTCCAAACAAGGGTAAGTTGGGCGCTAACGCTATCTTGGGTACTTCAATGGCTACTGCTGTAGCAGCTGCTAAGGCTACCCACCAACCTCTTTACCGTTACCTTGGCGGTACTGACTTGTCAATGCCTCAAACTTTCCACAACGTTATCAACGGTGGTGAACACGCTGACAACGGCATCGACATCCAAGAATTCATGATCACTCCAGTTAAGAAGACTTCATTCCGTGACGGCTTCGAAAAGATCGTTAACACTTACCACACCTTGAAGAAGGTTTTGGAAGAAAAGGGTTACGAAACTGGCTTAGGTGACGAAGGTGGTTTCGCTCCTAACATGAAGGACTCAGAAGAAGCTTTGAAGGCTTTGCACGAAGCTATTGAACGTGCTGGTTACGTTCCTGGCGAAGACATTGCCATCGCTTGTGACTGTGCCGCTTCATACTACTACAACAAGGAAGACGGCAAGTACCACCTGGAAGGCAAGGTTCTTGACGGTGACCAATTGGCAGAATACTACGACAAGTTGCTCGCAGAATTCCCAGAATTGATCTCAATGGAAGACCCATACGACGAAAACGACACTGAAGGTATGGTTAAGTTCACTCAAAGCCACAAGGACCGTCTGCAAATCGTTCTTGACGACTTTATCTGCACCAACCCACGTTTGTTGGAAAAGGCCATCAAGGAAGGCGCAGGTAACGCTTCATTGATCAAGCTGAACCAAATCGGTACTGTAACTGAAACTTTGGAAACCATCCGGATTTCACGTAAGCACGGCTACAACACCATGATTTCTCACCGTTCAGGTGAAACTGGTGACACCTTCATCGCTGACTTCGCTGTTGCTACTAACGGCGGCCAACTGAAGACTGGTGCCCCAGCTCGTTCAGAACGTGTTGAAAAGTACAACCAATTGTTGAGAATCGAAGAACAACTCGGTGACGGCGAACGTCTCGACTTCTTCCCAGCTCAAGACTAATTATTACAAAATTAGCTCAAAAAAGATCCGCATATGCGGATCTTTTTTCTGTACGCAAAATTTTCCTGGTGAATTGACAGCTTTTCCCCTGCTCTTTATACTAGTTCAGACCAACTTGCCAGACGAGGCAGTTAAAAAGCGGGCAAAAGCTGTTTTTGCCAATGGGAGTATTATTTTGGCCGCGCTTTCAGCACTGCTGGTCAGCTACCACTTGACCGGCCACGGTCTGCCCTGCCTTTTCCGGGCACTGACCGGCTACTTGTGCCCCGGCTGCGGGATGACCAGGGCGGCAGTTGCTATTTTGGGAGAGGATTTTGCCAAAGCCTGGCAGTACACCCCCCTCTCCTTAACCCTGCTGCCTGTTTTTGCCTTCTACCTGCTCTATATCTATAAAACTGGCCGCTATATTCGCAAGGGAGAGGAAGATTTCAAGCTGGGAGAGAGCGTCTTTCTGCTCCTTATCGCCATCTGCTTTGCCATTGCAAGAAATCTGTAAGCTTTCTTGGTTTTTATCTAATTTAGGAGGAACAATGTGTTGCATACACTGCGGGGCTAAGTTGCCCGAGGGTACCAATTTTTGCATAAAGTGCGGGGCACCAGTTGAAAAAGTTGAGTCCGATGGCAGTGAGAAAAAGCCGTCGGTGCGTCGGTGGTGAACCAGGTTGACAACAGTATCGACCAGATGGGCGAGCAAATCGGCCAGGGCATTGACGATGCCGCTAAAGACATTACTTCTGGCTTGAAGAAAACTGGCGAAAAAACGGGAGACTTTTGGGAAAACTGGCGGGACTATCTGACACCTAACAACGCGGAAAAATTCGTCAGCGTCGCCCTCCTCTTCCCCCTCTTTATGACCGTGGTTTTGTGGCTGCTGACCCGCGTGTCCGGCTGGGTCTACGGCCAGTATTTCCTGCCTTTATATGACTTCTTCTTCGCTATTTTCCAGATTGCCATTTTCCTGGTCAAAGCCCTCTTCCTGATCGGGTCTGGCTTGGGTGTTGCCGCAGCTGGCTATGTTTTGTATAAAAATGAGAGCAAGCGGACGGTCTGGGGCTGGCTTACCGGCGCGGCCACCGCGGCCACTGTTTTATCCTTCCTGGGCTGCCTGGGGATCAACCAGTCATATCCATATAATGGCTTGACGCAGACTTTCAAGATCTTGGGCTGGGTGGCCGTTGTCTGGGGGATCGATACCTGCTCCAGAGTCCTCCTGCAGAAATTGGGAATTGACGTTGAACCAATCATCAGCCGGGATCTGGCCGCTTACCGGGACTTTTACCAAACCTACCGGGCCAAGCATGAAGCTGAAGAAAAGGCTGAGAGGGAAGAAATTGCGAAGGCCCAAAATGGTCAAGCAGGTCCTGTCTCCTACTTTGATGGAACTGGGGCCGGCCTGTTTGGTACTTACCTGCTCTATGCCCTTTTAACCATCATTACTTGCGGCTTCGCCGCGCCTTGGCTTAACTGCGCCATTCAGCGCTGGAGAACCAAGCACATGGTAGTTGACGGCAAGCGGGTAACTTTCAATGGGACTGGGGCTTCTCTTTTGGGCCACTGGATTCTCTGGGAATTCTTGACCGTGATCACCTGCGGGCTTTTTGCCTTTTTCATCCCGGTTGGCCTGCAAAAATGGAACATGAACCACACCTACTATGAAGGGGAAAAGGGTGCTGAAGATTCCCGCTTTGACGGCAACACCTTCCAGTACATTGGCTACAACATCATGCAATTCCTGCTCTTAGTTGTGGCTTTTGGCCTGGCCTACCCATGGACTCACAAGATGATTCTCCGTTGGCAGACCAAGCACCAGCTCATTAACAATGACCAGCTCATTAACAATGACCGCCTGATTTATGACGGGACCGCCTTAGGCATGCTTGTCCGGGCACTTGTTGTGATCCTCACCCTGGTAATTCCTTTTGCCTTCCTGGCATCCCCATGGGCATATTGCTGGCTGTGGTGTTACCAATACTCCCACACTCATGTGGACCACAGTTCTGCAGAATAATATTTGACAAAAAATAATACGCTCAGATCAGCTTGATTTGAGCGTATTTCTTTGCTTTATTCTTCCGTCTTGATGACCAGCTTGCGGCCATCCAGGGTCCCCTGGAGCAGCTGCCTGATCAGTTTCTTGGCATTTTCTTGCGACCGGGCCAAGAGGCCGGACTTTTTGGCCACGCCTGTCGCCTTCTTTAAGGCCGCCTGCTCAGCCTTGGTAATGTCTTCTTTTTGGTTCCAGTTAAAAAGAGCATAGCTCTGGTCATAGAACTTGATTGAGGACGGGTCGATCTTCTTGTCCAGCAGCTGGCTTTGCGGCAAAGTCACGGTCACCTGGTCTTGATTGACTTGGACCTTGATGTCCTTGACCTTGACCCCGGCTTTAAAGTTGGCCGTATAGACCATAGTGAAGCCCTTCTTGGTGATAAAAGGAATCTGCCCGTTAGATAGTTTGTAAATGCCAGTATAGGTGTACTGCTCAGTCGCCAGCTCCCCAATAGCCTTCAATTTAGCGGAAACCGTGGCCACCGTTACCTGCTCCCGGCTTTTCTTGGGCAGATGCTGGCCGATCATGATCCCGCCAGCCAAAAAGACAACGGCGATCAAGAGGGCAGCCAGCTTTTGGAGAAATCCGGTCCTTCTGCCAGACCCTTTATCTGTTCTTTTTTGCAAAAAAGTCCCTCCTTACGTTCCCCCTATCATAGCAAGGGCGGCTAGAAAAAACAATCAAGAAGCCAGTAATTTCTAAATATCTTAGCAATTTGCCCCCAAAAATCTTCTTTTCTTAGCTTTATACGGATATCTGGCTATTTTACCTATTTTTACAATCTTTTTCATGAAAGTTGTCATTTTCCCTTGCATCAGCTTCCCTTTTGCGCTAGAGTTAAAAATCAACAAGAGATTTAATCTCAGATTTATCTTTACTTTTATTTTTAAAGGAGCAGATCATAATGAGGACGAGGACTTACCACCACCGAACATAGCACCATCCACGATGGTGACTGAAGCTGTTTCATTGCAAGGCGAGGACTGGCAATGAAAAGCTGTCATAGTCATAAGTCGCTCATTGGCTCCAGTATTTCAATTACTGTCAACTTGATCAATTTTAAGTACTCTTGCCCGGAACTTTGCCGCTTGTCAGCTCTTCATTGCTTGTGTCCTTTTAGACGAAGGATTAAACATGAACAAGATCATCGAAGTTAAGCATCTGAAGAAGAATTACGGCGACAAGGAAGTTCTCAAGGACATCAATGCCGTCATCGAAAAAGGAAAAGTCATCACGGTTATTGGTCCATCCGGTTCAGGCAAGAGTACTTTTTTGCGCTGTCTGAACCTGCTGGAAAAGCCAACCAGCGGCCAGGTGATTTTTGAAGGAACGGAACTGACCGACCTTAATGAAGAAGAACTGGACCAACTCCGGCAGAAGATGGGCATGGTCTTCCAAAGCTTCAACCTCTTCCCTAACATGTCCGTCATTGAAAACGTCAAGCTGGCGCCGATGAAGGTCAAAGGGATGAGTGACCAGGAGGCCGGCGACCTGGCCCATGAACTTTTAGCAAAAGTTGGCCTGGATGACTTTGCTGACCACTCCCCGGCCAGCCTGTCCGGCGGCCAGCAGCAGCGGGTTGCTATCGCCCGGGCTTTAGCCATGCAGCCGGACATGATGCTTTTTGACGAACCGACCAGTGCCTTAGACCCGGAAATGGTCGGGGAAGTCTTAAAGACCATGCAGGATTTAGCCCAAACTGGGATGACCATGGTTGTGGTCACCCACGAAATGGGCTTCGCGCGAAAAGTCGCTGATGAGGTCTGGTTCATGGCTGACGGTTATCTTTTGGAACAGGGCAGCCCCGACCAGGTCTTTGACCACCCGCAAAGTGACCGGGCCAAGGACTTTTTGGCAAAAATTTTGGAAGCCTAGCAAAGGAAGAATGAAGCAAGATGAAGAAACTTATTAAAATTATGACCGCCCTCCTCCTCTTGGCCGGGCTCTTTACCGCGGCAATTCCAGCAGTTGATGCCGCCAGCAGCAGGAAAGTGGCCAGCGGCACGGTCATGAAGAAGATCAAGAAGTCCGGCAAATTAGTTGTCGGCATTTCCGCTGACTACCCGCCATTGGAATTTACCAAGAACGTCAACGGCAAAAACAAGTATGTCGGCGTCGATGTTGAACTGGCCAAGCAGATCGCCAAGGACCTGGGGGTCAAGCTGGAAATCAAGAACATGGACTTTGACTCCCTCCTGGTTGCCCTGGAAACTGGCAAGATCGACGTGATCATTTCCGGGATGACCCCAACGGCCGAACGGAAAAAGAGCATTGACTTCTCCAAGATCTACTACGCTGAAAAGTCCGACTACTTTGTCATCAGCAAGACCAACAAGGCCAAGTATACCAGCACCGCCTCCTTTAAAGGCAAGACGGTTGGTGCCCAAACCGGTTCGCTTCAGTACACTTCCTTGAAGAAAAACGCTGCTAAGAGCGGGATCAAGGTCAAGGGGCTGGCAAAGATCAGCAACCTGCTCATGGCGCTTAAGTCCGGTAAGGTTGACGCTGTTTTATTAGGTGAACTGAACGCCAAGACTTACACCACTAACGACACTTCCCTGTCTTTGGTCAAGTCCAGCCTCAGCCAGGCTCAGATGGGCAACGCTGTTGGGGTGGCCAAGGGGCAAGGCGACCTGGTCAAGGCCATCAACAAGACCATCAACAACTGCCAAAAGCAGGACCTATTTAACAAGAAGTACATCCCGGCCGCTGCCAAGGCCATGAAGCAGGCCTCAAGCAAGACCAACAACTCCATGAGCAAGTACGCCAGCTACTTCGCGACTGGCCTGGGCTACACCATGATTATTACGATTTGCTCCATCACGATTGGTTTAGTCCTGGGTGTCATCTTCGCCTTGATGCGTCTGTCTAAGAACAAGCTTTTGCACGCCATTGCCGTTTGCTACATTGAGTTCCTCCGAGGCACTCCGCAGATGGTTCAGATCATGTTTGTCTACTTCGGGGTCGGGATGCTGATCAAGAATATGCCGGCTCTGGCCGCCGGGATCATCGCCATCGGCCTTAACTCCGGGGCTTACGTGGCTGAAGACATCCGGTCCGGGATCAATTCCGTGGCCAAGGGGCAAACGGAAGCTGCCCGGTCCCTGGGCCTCAGCCAGGCCAAGACCTACCGCTACGTAGTCTTCCCGCAAGCCTTGAAGAATATCTGGCCAGCCCTGGGCAATGAATTCATTACCTTGACCAAGGACAGCTCCCTGGTCTCCGTCATCGGGGTTGGGGAATTGATGTACGAGACCGGCCTGGTCCAAACCGCGACCTACCGCGGGGTCATGCCGCTTTTTATCACCATGTGCATCTACTTCGTGGTAACCTTTATTTTTACCCGTCTGCTCAATTACTTTGAACGGCGGATGAACCTGACTTCAAGCCGGGCATAAAGACAAACAATAGAAAGAAACTGGAAACCTAGATTGGCTTCCAGTTTTTATTTTGCATATAGGGCAATAATTTGCCGCATTAAGGGGGTAACCACCCGGTCTTTGCGCCAGACTAGCTGCAGGCGGGTCCGCCACTTAGCCGAGTCGATTGGGTAGATGTGGCCTTTGGCATAAGTTTTGGCGATTGATTCCGGCACCAGGGCAATCCCCAGGCCAGAGTCGCTCCAGCGGATAGCGGTTCTGGAATCATCGCACTTAACCACAAAATTTGGGGTGAGACCTTTTTCCGCGAAGGCTTCCTTGAACATGTCCTCAAAGCGCCGGTAGATGACCAAGGGCTGGCCGGCCAGGTCCTGCAGCCCTACTTTTCCCTTGCCAGGGAAAAAGTCCTGGCAGGTAACCGCGGTCATCGGCTCATCGCTGATGTCGACAAAGTTCAAGTTGACCCGGTTGTAGGGGGTGCGGACGATGGCCAGGTCCAGCAGGTTGCCCTGCAGCTTGTCCAGGATGCCGAAAGTGTTGTCTTCGTAGATGTCAAAGGAGACGCCGGGATGCTGGCGGGCAAAAGCCGTCAATTTGGCGGAAGGAAGCTCGCCGATTGAAGAAGAGACGGAACCTAATTTAACCCTTCCCCACCCGCCCCGGTCCAGCTCCGTAATTTCAGTTTGGACGTTTTTGGCTAATGTCAAAATCTGACCAGCATAATCCCGCAGCTTTTTTCCAGCCTCGGTCAGTTCAATTCCATAAGGCTGACGGATAAAGAGCTTAGCCCCTAGCTCCTCTTCTAATTGCTTTAATTGGTAGCTGAGGGCTGGCTGGCCGACAAAGAGCCGCTTGGCGGCTGAAGTAATCTGCCCTTCCTCGGCTACGACCAGAAAGTAATTGAGCTGCTTGAAATTCATTTTCTTCCCTCTTTTTTTGATGATCTTTGAGCTTAGTAGATATCAACTCTTTAGATATCTAACATCATAAATCAGTATTTTGTTTATATCAACCTGGGGGCTACAATGAACAGTGAGAGAAATAACTTCTAAATGTAACACGTCACGACTGAAGAATAATTATAAGGAGATCTTTGCATGAAAGTAAAAGGCTTGACGCAGGCTGAAGCTGACCTGCGCTTAAAAAAAGACGGACTCAACCAGGTGCCGGAGCCGGAATTCAGCTTCTGGAAGGAATTTGCCGGCAAGCTTTGGAATCTCAGTGCCTGGATTCTGGAGGCGGCACTCCTCCTGGAATGTGCCCTAGGCAAGTGGATCCAGTCCCTCTTCGTTTTGCTTATGCTGCTCTTTGCCGCCTACAACGGGGCCACGCAGAAGAAGAAGTCCCGCAAGGTCCTGAGTTCAATTTCCCAGCAGCTGACCCCGGTTGTCGCTGTTTTAAGAGATGACCGCTGGCAAAAAATTGACTCCAAATACCTGGTAGTCGGCGATATCGTCAACCTGCAAAAAGGGGATATTTTGGCCGCCGACATTGACCTTTTGGACGGGAACTTGACCTTAGATGAATCCTCAATCACCGGGGAAGCCAAAAATGTCCATAAAAAAGCCGGGGCGACAGCTTTTGCGGGCACGACCGTCATGGACGGCGAGGCTCTGGGCAGAGTCAGCGCGACCGGGACCAATTCAAGAAGCGGGCAGACCATCAACTTGATCAACACGTCCGCGGCACCTGGCCACCTGCAGCAGCTTTTGACCAAGATCATCTACTACCTCTGCCTCTTAGACGGGGTTTTGACCGTCATCCTCTTGATCGCGGCCGTAATCCGGGGTGAAAATATCTTGGAAATGCTGCCCTTCCTGGCCATGATGTTCATCGCTTCTATTCCAGTAGCTATGCCGTCAACTTTTACTCTCTCCAATTCCTTTGAGGCCACCCGCCTGTCTAAAGAAGGAGTTTTGACCAGTGACTTAACCGGGATTCAAGACGCGGCCAACCTGAACCTGCTCTTACTGGACAAGACCGGGACCATTACTGAAAACAAGACGGCTGTCGCCTCTTTTGCTAATTTTTCAAAGCTCTCAGATGAAGAAGTCCTAGCCTTGACCAGCCTGGCCATCGACCAGCGCAACCAAAGCGTGATCGACCTGGCCTTAATGGACTTTCTGCAAGAGAAAAAGATACCAGTTAAAGAAGCAGAAGCCTTTACCCCCTTCACTTCCAGCCAGGGCTATTCTGAAGGCCGAGGAGAAGGCCACGACGTTAAGCTGGGTTCAGTCAAGCAGTTCAGTAAGATTGATCCGGCTATTTCTGAACAAATGGCAGCTGTCGACCTCAGTCTGGGCCGGTCAGTCGGGATTTTGCTCGACGACCGTTTGGCGGGTATTTTTATCACTAAAGACAAGGTCAGAGCTGATTCAAAAGCCGCCCTGGCCGAACTGGTCAAGCGGGGAATCAAGCCAGTCATGCTGACCGGGGACAACCAGAAAACCGCGGCCAGCGTGGCTGAAGAAGTCGGCTTGACTGGCAAGGTCATCTCGATCAGCGACTTTAAAGAGGGGGTAAAGGCGGAAGACCTGGCCGGGATCGCCGACGTTTTGCCGGAAGACAAGCTGGATATGGTCAAGTACTTCCAAAAGGCTGGCTATATCGTCGGCATGACCGGGGACGGGGTTAACGACTCCCCTGCCCTCAAGCAGGCCGAAGTCGGCATAGCTGTATCAAATGCCGCTGACGTGGCAAAAAAGAGCAGCAAGATGGTCCTTTTGGATGAGGGCCTTAGCCCTATCGTCAAGATCTTGGATGCCGGCCACCGGGTTTACCAGCGGATGACCACCTGGTCTTTGACCAAACTGGCCAGAACGGCTGAACTGACCATGCTCTTGACCTTCTCTTATCTTATTTTCGGCTACCTGCCGATGGCCTTAAATGCCATGGTCATCTACACGATCATGAACAACATGGTCACCATGATGATCGGAACCGACAAGACTCACATCACTTACAAGCCGGAGAACTGGGACATGGGCAAGCTGGCTAAAATTGCCTTCTCCTTGGCCGGAGCCTGGACAATCATCGGTTTTGCCTTCGTCTCTGCCTTAACAAAGGCCGGAGTAAATCATGATCAAGTTGGGACCATGGTCTACGTCTTCTTAGTTATGAGCGCCATGATGATCGTCTTGATCACCCGGACCAAGCGCTTCTTCTGGCAGTCTGCCCCATCTAAGCCGGTAGCCAGTGTCCAGATCGCCGATATCCTTTTGACCTGCCTTTTAGCACTTTTGGGCATCGCCATGCCGGCCATCGGGATTAAGGAGCTCTTGACCCCTTTGGCCGTAGCCTTCCTGGCCGCCATTTTGATCGACCTAGTCTACCAGCCGGTCATGAAGAACAAGTAACAAATAAATGTGTGTTTGGCTATTTTTTGCCAATTAGCTTTACAGGGAAAGAAGAATTTATGCGCAAGAGAATTTTTAGAATCATCATGAGTCTGGCAATTCTGTTGCTGGTCATCTTATCCGGCATGCTGGCCTACAGCTACTTCAATGTTGAAAGAGCCGTCAGCCGGTCCTATCAAAAAAGCGGCTTAAAAGCCGCTGAAAATGAGAGCAAGGAAGAAGTATTAAAGGGAAAAAAGCCCTTAGTCGTCCTCCTGCTGGGGACTGACACCGGGGCCCTGGACCGGGACTACAAGGGACGGACCGACTCCATCATGGTTTTAGTCCTTAATCCCCGGACCAAGAAGTCGACCATCGTCAGCATCGAGCGGGACTTCCAGGTCAACTTCCCGCAATATCCTCAATACTCCCCTTCTAAGATCAATGCCGCCTATACTTACGGCGGGGTCAAGCTGCTCAGCCAAACCTTAGACCGGTATTTCAAGATTCCAGTCATACTTATGCCTTGATCAACATGGGCGGGATGAAGTCGATCATCGACCAGCTGGGCGGGGTCGACATTACTCCCCTTTTGAGCTTTGACTACGAGGGCTATAGCTATAAAAAGGGCGTGACGACCCACATGAACGGGGACAAGGCCCTGGAATACTGCCGGATGCGTTATGACGACCCTGAAGGCGACTACGGCCGGCAAAAGCGGCAAAGACAGGTCTTGACCGCGATTATTAAAAGTGGGGCTGACGTCCAGAGCCTCTTAAAGCCGGCCTTCCTCAACTCTGTTTCCAGCCAGGTCAGAACTGATTTGACTTTCAGCGACTTGACCCAGATGGCCAAGTCCTACCGGGCAAGCGGCGACCAGCTGGAAACCGACTACACCCGCGGGACCGGCTTTAACCAGGACGGGGGCTCCTACCAGCACATCAGTCTGGCAGAGCGGCAAATAATCAGCGACCTGGTCCGCCAGGCTGCTGGCCTGAAAAAAGTTCAGCTGGCTAATGGCCAGTAAGACAAACTATATCATCGACTAAATGCTTTATACTTATTACTGTTTAATCTGACAAAAAGGACCCGCTTTTGCGAGTCCTTTTACTTAGTTCTTATATCTACTTTCTGCTTACTGCTTACTCTTCACTTGCCTCTTTGCTCTTTTCCAGCTGCTTTTGCCGGTAGGCAATCAAGCGCTCGAATTCCGTTTTCAGCAAGGCCCCCATCGGGACGGCAATCAGCATCCCCACAAAGCCGCCCATGGCCCCGCCGGCAATCACGCAGGCGATAACGTACAGGGGGTGGATGTGAATGGCTGAAGACAAAAGCTTAGGATTAAGAATATTGCCATCAATCGCCTGGATCAAGAGGAGAATAATCATCCCCACGATCAAAGCTGTCATATTCTGGCTGAGGGTGCAGGCTAAGATAACCATCCCATAGCCTAAAATCGGACCAAAGTATGGGATTAGGTTCCCCAGCCCGGTTACCAAGCCGATCAAAAGGCCATATGGGACCTTGGCAATCAGCATGGCCAGGCTAACTAAAAGGCCAACGATAAAAGCATCGATAATTTGCCCTCTGATGTAGCCGGAGAAGGACCGGTCAGCGTCTGCTAAGAAGAGCTTGATTCCCTTGATCACCTTTTTATTTAAGAGGGTGCCCAGGTTTCTCTTCCAGTATGCCGCGATCCGCTGGCCATCGTAGAGGAAGTAGATGGCAAAAATCACCCCGAAGAAGAAGTCGCTCAAAAAGCCAGTTACCCGGCCGACCCCCTTTTGCATATAAGAGACCAGGCCGCTGGTCGACCAGCCCTGCTTTTGCAGGTAGGCTAAGATTTCGTTGATAAAGCTGCTGTACTGGGCTTTCAGTTGGTCATAGAGGCTTTCTAAGCTGTCCAGGCTGAAATGGCTCAGCTGCTTGGAGAAGGTCACGAAAACCGCTGTCGCGGCCAGTAAAATAACCAGCAAGAGCAAGAGCAGGGTCAAGGCCACTGCGGCTGACCGGCTGGCCGTCGCCACTGCCCCCCGGCTGCTGCCCTTGGAAAACTTCCGGTCAAAGAAGTTGGTCAAAGGCAGCAAGAGATAGGTTAAAACTAAGCCGTAAGTCAAAGGCTGGGCAATTGCTGCCAGAATCTTGCCTACCCGGACCCAGAAGCCAGTTGACTCATAGGCTAAAAGCAGGATGAAGAGACCGGCAAAGACCGTGCCCAGACAGTAGAGGGCAATCTTAAAATACTTCTGATCAATGTGGTTCCAAAATTTGTTCATCATACACCTCGCTAGTTTGACTAGCTTTTATTATAACAGTTTCCGGCCCTGGCCAAAGCAATAAAAAACAGCAGTTGCGAAAACTGCTATTTTTTATCTTCTTCTCGATTATGATTTTTACATCACGTGGTGGATCCAGCCTTCTGGGGCTTCGACTTCCCCGTTTTGGATGCCAGTCAAAGTGTTGTAAAGTTCTTCCATGAACTTGCCTGGCTTGTCCATGCCTGATGGCAGGTCGATGACCTGGTCGCCATTGACGATGCGGCCAACTGGTGACAATACGGCAGCCGTGCCGACCAAAGCACATTCCTTGAAGGATGGAACTTCGTCGAAACGGACTTGTCTTTCTTCAACCGTCAAGTTGAGGTAGTGTTCAGCCAAGTATACAATGGAGCGTCTAGTGATTGATGGCAAAATTGAATTTGACTTAGGAACGACCAAGTGGTTGTTTTGGTCGATGAAGATAATGTTTGAGCCACCCGTTTCTTCAATGTAAGTTTGGGTAGCTGGGTCCAGATACATATTTTCAGCAAAACCTGCCTGGTGGGCATCGACAGTCGCCTTCAAACTCATGGCATAGTTCAAAGCGGCCTTAACGTGGCCAGTCCCGCGAGGTGCAGCCCGGTCATATTGGGCAACCTGAACGGCAACTGGAGTAGCCCCGCCCTTGTAGTATGGGCCAACTGGAGTTGCAAAGATTCTGAACATGTAGTCAGTTGCCGGAGCAACGCCGATGATTGGTGTAGTGCCGATTTCGTATGGACGCAGGTAAAGAGTCGCGCCTGAACCGTATGGCGGTACCCAGTCAACATTGCCCTTGACTACTTGGTCGATTGCTTCAACGAACTTGTCCTTTGGATAAGGCTGCATTTCGATCCGCTTAGCGGAGTTGTACATCCGTTCCGCGTTTTGGTCTGGCCTAAAGACAACAACAGATCCGTCCTTCCAGGTGTAGGCCTTCATCCCTTCAAAAACTTGCTGGGCGTATTGCAGGGTTTCAGCACATTCATTCAATACGACATTAGGGTCGTCGGTCAGCTTGCCGCCTTCCCAAGCACCGTCGTGGAAATAGTCCACGTAGCGCTTGTCGGTTTGATGATAGCCAAAGCCGATATTTGCCCAATCGAGATCTTTTTTTGCCATGATATTACCTCCTAAAAATTCAATCACTAGTTTTTATAGTTGTAACTATAATACTCTTTCTGAAGGTTAGCAAGACCTTTTTAAGAAAATTTTCATTTTATTACTATTTTTAGCTAACTTTAATTCTTCTAAGGCCTAAGCCTTGCGAAGACAAGCCTTTTGACCCTAATTTTCTCTTTTTTAAGTTAGATAATCTTTTCTTAATTTTCCTTGTTGGTTGACAAAAGGTCCTCGTCCAGGCCCCGGCTACATTCTGCCTGCAGGGTAACGTGGTTGATGGCAAACTTTTCCTTCAGACAAGCAGCAATCTCTTCATCAAGCTCTTCAATCCGCTTGGCGGTTAAATCGGAGTCAACCACAATGTGGGCGTCCAGCATGATGGTGTCATCACTGTAGCGCCAGACATGCAGGTGGTGGAGCTGTCTTACCTCCTTAAAGGCCAAACCAGCCTCTTCAATGGCTTCCAGGTCCAGGTCGGGGTTAGCTTCCATCAAGACGTTAGCTGAGTCCCTGGTGACTTCAAAAGCCTCTTTCAAGAGGAAAATTGCCGCGGCCATAGTTAAGACCGGGTCCACCAGGGTCCAGTTTTGGTAGTAAATCAAGAGTGACCCCACCACGACAGCCACGCTGGACAAGGTGTCCGACATCATATTCAAAAAGAGGGCCCGGGCATTCAAATTCTCCTTGCTCCCCCTGCCCAGGATCAGCATGGAGATCAAGTTACCGGCCAGGCCGATCAAGGAGACGATGAACATGACGCCCCCTTCAATCGGTTCAGGCTTGCTGAAACGCTTAATGGCTGAAATAAAGAGATAGATGCTGATGGCCAGCAAGAAGAGGCCGTTGGTGTAGGCAGCCAGGGTTTCGGCCCGCTTGTAGCCAAAGGTCTTGTGCTGGTCCTTGCTTCTTTTGGCGACCAAATTAGCCGCAAAGGCAACCACGATGGAAACAACGTCACTCAAGTTATGCAAAGCATCTGACAAGAGGGCCAGGGAACCGGAGATAATCCCGCCGGCAATTTCCGCGGCAGTAATGGTGATATTGAAGACAGTCACCCACAAATACCTTTTTGATGCTTGGTCTTTCATGATTTTTACCTGCGCAATCTTTTATATATCATTTTTGGTATATTTACTCTTGCCTACACTATATTACAAAAATAATATACAATCAAGGGGGAAACTGGAAAGGAGACCCGCATGACACACGAAGAACTGATCGACCGGGCGGCCCGCCTTTTCAAGGTCTTGGGCAACAGCCTGCGGATCCATATTCTCTTTTACCTGAGAAAACACGGCGAAAGCCCGGTTTCGGCAATCGTCGGCCACCTGGGCGTCTCTCAGCCGGTAATTTCCAAGCAGCTCGGTATTTTGAAAAAATACGATTTCGTGCAGAAACGCAAAGCAGGCACTTTTGTCTACTATTCAATCAACGACCAGGACATCGTGCAGATCATCGACGCGATGACCGAGCACCTGGACCACCTGGACCGGCTGCAATAGTTTTACTTTTATTTTTAATACAAACAAAAACGGCTTCTACCTTCCGGTAAAGCCGTTTTTTTCTGTCTTGCTCGTAAAATTAAGCGCCGGTGTATTGAACCAGGGAGAAGATGTCCACGTCCGGGAACTTTTCTCTGCCCTTAAGGTCGGTCAGTTCAATGTAAAAGGCTGCCCCGACAACCTTCCCGCCCAGGCGTTCAATCAATTCCTTAGTGGCGTGCATGGTGCCGGCCGTAGCCATCAAGTCGTCGCAGATGACTACTCTTTGGCCAGGCTTGATCGCGTCCTTGTGCATTTCCAGGACGTTTGACCCGTATTCCAGGTCGTAAGCCGCAGCTTCTACTTCCCGTGGCAGCTTGTGGGGCTTACGGGCTGGCACGAAGCCGATACCCAGTTCGATTGCTACCGGAGTCCCGACCAGGAAGCCCCGGGCTTCCGGCCCGACGATCACGTCAGCTTGCCGGCTCTTGGCGTATTCAGCAATTTCGTGAGTAGCTGCCGCGAAGGCTTCACCGTCTTGCAGGATCGGGGTAATGTCCCGGAAGATGATTCCTTCATTCGGGAAGTCCTTGACGCTGGCAATGTACTTCTTAAAATCAATTGACATTTTGTAATCCTCCATTTGCTAGACCACTGGCATAGCGAATTAATTCATCCGAAGAGATTGTTCGTAATTTGTTAGCAAAGGCATATTCTGCTTTCACTGACCGGTAATAGGCTGAATCGTCCAAAGACTTCTTTGTAGGACTCGGTTTAGGGAGCAATCTGTCCTCTTCCATTTTAACAAAATCAAGGGTAAAAAACACCCTCAAAATAAACTTGATGCTGTCCGGATCCATCCCCAGCTGGCCGGCAGCCTGCATGTAATCATTCGGTTTTAGTCCCGGGTGGGCTAAAAAGTACTGCCAGACCAGGCCGAAGTTGCCCCGGCTGGGCAGGGTCTCCCCTGGCAGCTGGTCCAACTGAAAGCGTAGGTAGAGCTGGCGGTAAGGCTTGGCCAGGACAAAGTTCAGCTGGGCCTCATTGGCCGGCACGTCAAGAACTGACACGACCTGCTGGCTGAGGTCTTCATTGTCCTTGGCCAGGGAAATCTGCTCTTTAGTTATGCCAAAATGATTCATGGCCTGGCTGAGATTTCTCTCATCAAATAAGAGATACTTGTCCGCAAAACCCAGCAAATTCTCCTGCCCGCGAAAGTCCACAATCCGGGCGGCTGGCGCGTACAAGGACTGGCCGTAATGCAGGTCAACAATCCGGAACTGGACATTGGTCTTGCCTTTAAAAGTGTTAGAAGCAAGCTTAACCAACATCTGCCGCAAATAAGGCAGGACAGTTTGGTTTAAGCCGTGGTCAAAGTCCACCGCTCTGACCGGGCCCACCATGAAACTGCAGCCCTTCCGCATAGGGCGGAAGTTAGAGATCTGCGGCCTGTCAAGCAAAAAGACCGGCTGGGGGTTGTCCGTGCCAAAAGGCCCGGCCTGGGCCAGGTCATAAACGCTGGTCAAATCAACATCTAATGGACTGATCGTGCCATCATATTCCTGGACCTTTTCCGGAGCCTTCTCCCCTGCCTTATAGCTTTGGTTAAAGTCACGCCTGAGCTGGTTCAGATTTTCCTCAGTCGTCGACAGGCCGCAGGCAAAGTCGTGGCCGCCAAACTGGGTGATGGACTTGCCTTCAAAAGGCTTCAAGGCATTGAACAAGTTGAAGCCCTGGCTGGACCGGCCAGACCCCTTGACCAGGCCGGCCTCGTTTTTCGTCAGCATCAAGGTTGGCTTGTGGTATTTTTCCACGATCTTGTTGGCGACTAAGCCCATGACCCCTTCATGCCAGGCCGGGTCATACAGGGTCAATGTCGCTTCTTTCTGGTAGCCCCGTCTCTTAATTTGAGCCTCAGCCGCCTGCATGGTCGCTTGGGTTAGGTCTTTTCGCTCATTGTTCAGCTTTTCAATCTGATCGGCTAATTCCTGGGCCTCGCCCGGGCTTTCCGCCAAAAGCAGCCTTACGGCCAGGCTGGCATCAGCCAGGCGGCCGCAGGCGTTTAAACGGGGAGCGATGCTAAAGCCGACGTCTTCTTCATCAATCATCCCCGGGGTAAGGCCGGCATTGCGGATAAGAGCCTCCAGGCCCGGCCGGGAGCTTTCATTCAGCATCTCCAAGCCCCGCTTAACGATAACGTGCCCTTCACCGGAAACTTTGACCATGTCCCCAATGGTCCCGATCATGGCCAGTTCCAAAAATTCGCTGGCCGTGTCTTCTAAGACTGCCCGGGCAATAGTATAAGCTACCCCGGCCCCGCAATAGTCGTCAAAAGGATAAGCCTGGCCTGGGTAGTTGCAGTGCACCAGGGCATAAGCGTCGGGCTTTTCCTCCTTGAAGGTGTGGTGGTCGGTAACGATCACGTCCACGCCGTGAGACTGCGCATATGCCACTTCTTCAATCCCGGTTGCCCCATTGTCAACGGTGATGATCAATTTCGTCCCGTCTGCCACAATATCCTTGTAGCGGTCTAAACTTGGCCCATAGCCGTCCTTGAAGCGGTCAGGAATGAAGTAATGGACATCAGCCCCCATGATGGTCAGCATTTCCGTCATTATGGCCGTGGCGGTGATCCCGTCAGCGTCATAGTCCCCGTAAATAGTGATCTTTTCGCCCTCGTCCAGGGCCTGGTTGATTCGGCCGACTGCCTTGTCCATGTCATGCATCAAAAAGGGATCAGCCAGGTCATTTTCACTGGCGTGGAGCCAATAGTCGATTTTTTCCTCGTTGTCAATTCCCCGCAAAGAAAACAACTTAGCCGTTAATGGGCTAAGTTGAAATTCCTCAACCAGGTCACTGGCCAAAGGAGCAGCTGTTCTTTCTTGCCATTTCATCGAAGTTTAAACATCTCCAAATTCTGCTTGCTTGCCGGCTTGACCGCGGTCAGCTTCCCTCTTAAAGACCAGCGGTTTACCCCGCCATCAGCACAGGTGATCAAGGTCACGATCTTCTTCTTGGTGTTGGCAACCAGCCAGACGGCGCTGGGGTCAACCACCTTCTTGTAGTAGATCTTGTATGCATAGACCTTCTTTAAATCAGTCAAATAGACCATGCTGCCCAGCTTGACCCTTTCAAGGGGTGAAAAAAGGCCCCCCTGGTCGGTCATGTAGTGGCCGGCCAAAGGGTAGTTCCCCTTGCCCATCTTCTGGTCAGCCCGCATGGTGCCGCCCCCTGTTGACAGAGCCGCGTCTGAGAGGCCCTGCATAACTGGCAGGTAGAGCTTGACGCTGGGGATGGAAATTGCCCCAATTGCGCCAGCTGTGTTCTTGACCCGGCTGCGGGTGGTCTGGGCAAAGTCAATTGACTTGACCTTCTTGAAGTCATACATCCCCTTCTTTTTCTGGTTCTGCACGACCTGGTCCCGGGTCAGGCCCTTTAAAGCCGCGGTCTGGTTCTGCTTGACCAAAAACGCGCTGATCTGCTGGTTAAAGACCAAAGCCAGGCCCAGCAAAAATAGGATTACGGCAACTAGGCGCAGAATAATGCGGCGGACTGGGTGGTCTTTTGTATTTTTACTTGCCGTTGATGTCATCGTCATTCATCCGTAATACTGCCATAAAGGCGTCCTGCGGGACTTCCACCCGGCCAACTGACTTCATCCGCTTCTTGCCCCGCTTCTGCTTCTCCAGAAGCTTGGCCCGCCGGTCCGGGTCACCGGTGTGGATCTTCCAGGTAACGTCTTTTCGGTAAGGCTTGATCGTAGCCCGGGAAATGATCTTGGACCCGATTGCTCCTTGGATGTCGACTTGGAAGTTTTGCCGCGGGATCAGCTTCTTCAACAGGCTGCACATCTGGACGGCCCGGTCCCGGGCTTCTTCGCGGTGGGCGATGAAGCTCAAGGCATCGATTGGTTCCTTGTTCAAGAGAATGTCGATCTTGACCAGGTTGGTGGCCTTGTAGCCGATGATTTCATAGTCCAAAGAAGCATAGCCCTTGGTTGAAGACTTAAGCTGGTCAAAGAAATCGTAAATAATTTCTGCCAGGGGCATTTCGTAGATCACGTTGACCCGGTACTTGTCCAGGTAGTCCATGGTCTGGAACTCGCCCCGCTTGCCTTCACACAGCTGCATTACAGCACCGACGAAGTCGTTTGGCACCATGATTTCCGCCTTGACGTAAGGCTCTTGCAATTCCTTGTATTCACCGGCATCCGGCAGGTCAGCCGGGTTGTCGATCAGCTTGACCTCACCAGTCGGCATGATAGCGTGGTAGTCAACTGACGGCGCGGTCATGATGAGGTCCAGGTCAAATTCCTGCTCCAAGCGCTCTTGCACGACGTCCATGTGCAAAAGGCCCAAAAAGCCGCAGCGGAAACCAAAGCCCAGGGCTTGGGAAGTTTCCGGCTCAAATTCCAGAGACGCATCGTTAAGCTGTAATTTCTGCAGGGCTTCCTTCAAGTCGTCATAGTCCCGGTTGTCGGTTGGATACATACCAGAGTAGACCATTGGCGGAATCTGCCGGTAGCCTGGCAAAGCTTCTGCCGTCGGGTTTTCAGCGCTGGTGATGGTATCCCCGACCCGGGTTTCCCGGACAGACTTGATGTTGGCAGTAATATAGCCAACGTCCCCGGCAATCAAGATGTCTTCTTTAACCGGGTGGGGGCTGGAAACGCCGACTTCGGTTACTTCATACTTTTTGCCGGTGTTCATGATCATGATTTCGTCGCCTGGCTTAACCGTGCCTTCTTCAATTCTGACTGACATGACCACCCCCCGGTAGTCATCATACTTGGAGTCAAAGATCAAGGCCTTGAGGGGCTTGGTCAAGTCCCCAGTCGGCGCTGAGATGTCGGTCACGATTCTTTCCAAAAGTTCCGGAATCCCTGCCCCGGTCTTGCCGGAAACTTCCACGGCGTCGCTGGCGTCTAAGCCCAGCATGTCGCCGATTTCGCTCTTGGCCATGTCCGGGTCGGCGCTTGGCAGGTCGATCTTGTTTAAAACAGGCAGGATTTCCAGGTCGTTTTCCAAAGCCAGGTAAGTGTTGGACAGGGTCTGGGCCTGGACACCCTGGGAGGCGTCAACGACCAGGACAGCCCCTTCACAGGCAGCCAGGGACCGGGAAACTTCATAGGAGAAGTCGACGTGGCCGGGGGTGTCGATCAAGTGGAAAATGTAGTCTTCCCCGTCATTGGCGTGATACTTGACCTGCACCGAGTTCATCTTGATGGTGATCCCCCGCTGCCGTTCAAGGGGCATGTCATCCAGCATTTGATTTTTCAGCTGCCGCTTGGAAACCGTGTCCGTCAGTTCCAGAATCCGGTCGGCAATCGTTGATTTGCCGTGGTCAACGTGGGCCACGATTGAAAAATTGCGGATGTGCTTTTGGTAGTCTTTTAATTTTTCTAAGTCCATATATTTTCTCGCATCCTTACTAAAGTACTAAACAATTATACCCGAAAACAAAGCATTTGTCTTTTCCCAGTCATCAAAAAAGGCAGTCCTTGCAGACTGCCTCCTTAATTTGCTTAAAAATTTAGCTCAGCTTCTCCTTCAAGCGTTCAAAGAAGCCTTTTTCCTGCGGGGCAATGGAGCCACCGCTGGCCTTGACGAATTCCAGCAGGGCCTTGCGCTGGGCCTCGTTGATGGACTTCGGAATCACGATCTCAACCGTGGTTACCTGGTCACCAGTGCTGCCGCCGCGCAGGCTCGGAACACCCTTTTCCTTTAAAGTAAACTTCTGGTTTGGCTGGGTGCCGGCCGGAATCTTCAGTTTCGTGTCACCGTAAACTGTCTTGACGTTGATCTCGTCACCCAAGGTTGCCTGGGCAAAGGAAATCGGCACAGTCGTGTAGATGGTCTGGCCACGTCTGGTGAAGTCCTTGCTTGGCCGCACCCGGAAGACGATGTACAGATCCCCGTATGGGCCACCATTCTTGCCGGCTTCGCCTTGGCCGGCCAGGCGGATCTGCTGGCCGTTGTCGATGCCGGCTGGCACCTTAACCTGCAGGGTCTGCTTCTGGGTCTTGACCCCCTTGCCGTGGCAATTATGGCATGGATGCTGGATGATGACCCCGCTGCCCGTGCACTTGTCACAGGTCGTCTGCCGCTGGATCATGCCCAAAACGCTTCTTTGCGTAATGGTCATCATGCCGCTGCCCCCGCACTTGTCGCAGGTGATCGGGTGGGTGCCCTTTTCAGCCCCGGAACCCTTGCAGACTTCACAGGTGGTTGACCGGCTGTAGCTGATTTCACTGGTCTTGCCCTTGATGGCATCCATAAAGTCGATCGTCATGGTGTAGTCCAGGTCAGCCCCCCGCTGCGGAGCGGTCGGGTCTACCTGCTGGCGGGCGCCGCCAAAGAAGCTGCTAAAGATGTCACCAAAGTCACCAAAATCAGCTCCGCCAAAGCCCTGGCCCCCGTACTGGCCGCCAAAGCCGCCCTGGCCGTTCATGCCAGCCTGGCCAAATTGGTCATACTGCTGCCGCTTTTGCGGGTCATGAAGCACTTCGTAAGCTTCGTTGACTTCCTTGTACTTTTCTTCTGCCCCTGCTTCGTGGTTTAAGTCCGGGTGATACTTCTTGGCCAACTTCCGGTAGGCCTTGCTGATTTCTGCGTCACTGGCATCCCGGCTCACGCCTAAGACGTCATAATAGTCACGGTTTGCTGCCATCTGTTTATTATTGCTCCTTTTACTAACAAAAGAAAAGAACTACATCAAGCAGTTCTTCTCCTTTTGTTTAATTATAGTCGCTTTACTTGTCTGGGTCTACCTTGGTGAAGTCGCCGTCAACCGTGTCGCCGTTTGCGCCATTTGAACCATCGTCAGTTGGGCCTGCTTGACCGCCTTGACCTTGCTGGTTTTGGGAATTTTGCTGGTAGAGCTTGACAGCCAGGTCTTGGGCAACCTTGCTCAAAGCGTCCTTCTTTTCCTTCATTTCGTCCAGGTTGTTGTCCTTTTGGGCCTTCTTCAGGTCTTCCAGGGCATCCTTAACTGGTTGAATGTCGCTGTCTGCGAGTTTGCCGTCAACTTCCTTCAAAGTCTTTTCGGTTTGGAAGATCAAGCCGTCAACTTCGTTTCTAAGGTCAACTTCTTCCTTCTTCTTGGCGTCTTCTTCAGCGTGTTCTTCAGCTTCCTTCTTCATTCTTTCGATTTCTTCGTCTGACAGGCCGGAAGCTGATTGGATGGTGATCTTTTGTTCCTTGCCAGTCCCCAGGTCCTTGGCTGAAACGTTAACGATACCGTTCTTGTCGATGTCGAAGGTAACTTGGATTTGTGGCACGCCACGTGGAGCAGCTGGAATGTCAGTCAGTTCGAAGCGACCCAAAGTCTTGTTGTCAGCTGCCATTGGCCGTTCACCTTGCAAAACGTGGATGTCAACAGCTGGTTGGTTGTCAACGGCAGTTGAGAAGATTTGACTCTTGGAAGTTGGGATGGTGGTGTTTCTGTCGATCAGCTTGGTGAAGACCCCGCCCTTGGTTTCGATACCCAGGGAAAGCGGAGTAACGTCAAGCAAAACGATGTCCTTAACGTCACCGGAGATAACCCCGCCTTGGATTGCGGCACCCAAAGCAACGGCTTCGTCTGGGTTGATTGAGTGGTCTGGTTCCTTGCCGGCCCATTGCTTTACAGCTTCTTGAACAGCTGGAATCCGAGTTGAACCACCGTTCAAGATAACCTTGTCGATGTCGCCAACTGACAGGCCAGCATCACGCAGGGCGTTGTCAAATGGAATCTTGGTTCTTTGCACTAAGTCATCAGTCAGTTCGTTGAACTTAGCCCGGGTAAGGTCTACTTCCAAGTGCAGAGGACCTGCTTCACCAGCGGAGATGAACGGAAGGGAGATGTGGGTTGAAGATACGCCTGACAAGTCCTTCTTGGCCTTTTCAGCCGCGTCCTTCAAACGTTGCATTGCCATCTTGTCCTTGGACAAGTCAATGCCGTTTTCTTGCTTGAAGCCGTCAACCAGCCAGTCGATGATCTTGTTATCAAAGTCGTCCCCACCCAAGTGAGTATCACCGTTGGTTGACAGAACTTGGAAGACACCGTCACCTAATTGCAGGACGGAAACGTCGAAAGTACCACCACCAAGGTCGTAAACCAGAACAGTTTCGTCGTCTTCATCCTTGTCCAAGCCGTAGGCCAGGGCTGAAGCAGTTGGTTCGTTGATGATCCGTTGCACGTTCAAGCCCGCAATCTTGCCGGCGTCCTTGGTTGCTTGCCGTTGCGCGTCGTTGAAGTAGGCTGGAACAGTGATAACCGCGTCAGTAACTGGTTCACCAAGGTAGTCTTCTGAGAACTTCTTGATGTATTGCAGGATCATGGCTGAAATTTCCTGCGGGGTGTAAGCCTTGTCGCCAACCTTAACCTTGTAGTCACTTTCGCCCATATGCCGCTTGATAGAAACGATGGTGTTCGGGTTGGTGATGGCTTGCCGCTTGGCAACTTCACCGACTTGAATTTCGCCGTCCTTGAAGGCAACTACTGAGGGGGTAGTTCTAGCGCCTTCCGGGTTGGTAATAATCTTTGGTTCCTTGCCTTCCAAAACCGCAACTGCTGAGTTGGTGGTACCTAAGTCAATCCCAATAACTTTAGACATTGTCTTTTTATCTCCTTTTGTTTATTTTTGCTTGTTTATTGCTTTGTTAAAAGATTGCCTTACTGGGCAACGACAACCATGGCTGGCCGCAGGGTCCGGTCCTTGTAGACGTAACCCTTTTGCAGGACCTGAACGACATGGCCTTTTTGATCATCATTTTCAGCTGGTACGCTTTGGACCGCCTGGTGCAATGTCGGATCAAACTTTTCGCCGTCAGCCTTGATTTCTTCAATGCCGTTGTCCTTCAAGGCTCTGACCAGGCCTTCCAGGGTCATTTCGATCCCCTTCTTCAGCTGTCTGGAAGCCTCGTCGTCTGCCTTGACCTGCAGAGCCCTTTCCAAGTTGTCCACGCTGGACAGGATATCCTTGCCCAGACGCTGGGACTCGTACTTGACCAGGTCGGCTCTTTCCTTGCTGTAGCGGCGCTGGGCGTTTTGAATCTCAGCTTGGCTGCGCAAGTACTTGTCTTCCAGATCCTTGTTCTTCTGGGTCAAAGCGGCAACTTCAGCCTTGAGCTGATCCAGTTCTACATCAGCTGGCTTGGCTGCTTCTTTTACGCCGGCCTTGTCAGCTTCAGCTGCCTTGGCTTGCTTTTCCTGGTCTTCTTGCGGCAAATCTTTCTCACTTGGAAATTCTTCTTTGCTCACGACAAACCTCCTTATTTAAATCTACCATAGTAATCTAACAACTTGCGGGCCAGTTCTTGGCGGAAGTATTCCATCAAGCCGATCATTTCCGAGTAAGGCATGTGTCTCGGCCCCAGCAGGGCGATCATCCCCCGCCCGTAGCGGCCAACACTGTATTCAGCCATTACCAAGCTGAAATCCTTCAGCAAGTCGTTCTCTAGTTCCGCTCCTAAGCGGACATGAACTGGGTAATGGCTGGGACTGTCGCTATATGAACTGATCAGTTCTCCAGCCAGAGAGCTAGAATTGATCAGTTCATATAGCGACTTGATGGCTTTTAAATCGCTGTTTTCAATATTGTTGAGCAGGTTCAGCTGACCGTCAACATACATCTGTTCGCTTGCCGCGTCCTTAATGACGGCTTCCAGCAATTCCAGAAATTCCGGGGCATTCTTGCCCACGATCTGGCTTCTGTACAGCTGCTCAAAGGTCTGCTTGTTGATTTCGCTTAAATTCTTGCCAACCAGCTGGTCATTGATCAAGCGGGCCACCTGTTCAACTTCATCCCCTGAGATGTGCCGTGGCAAGGTGTAGAGCTGGTTCTTGACGCTGCCATCGCTGATTACCAGAATAGCCATGACCTGCCGGGGAGCCAGGGGCACGATTCTGAAGCCAGTGATGCTGACATTCTTGGCTTCCGGCCCTTCTGCAATGGCCGTGTAGTCAGTCAAGTCTGACAGGATCTTGGCGGCTTCTTTGACGATTTCGTCCACTTGGTTGAACGGCTGATCAAACTGGTAGCCAATTTGATTGTACACTTCTTCCGGCAGCTGCAGCGGCTGCACCAAATTGTCCAGGTAATAGCGATAGCCCTCAGTCGATGGCACCCGGCCACTGGAGGAGTGAGTCTTTTCAATCAAGCCATGCTCTTCCAGAACCGCCATCTCGTTGCGGATTGTCGCGCTGGACACTTTAATCGACAATTGATTCATGACTGTCTTTGAGCCAACCGGCTCATGCGTCTTGGTAAAATCTTGAATAATTGTCTTTAGAATAAGTTCTTGACGTTTGGTCAACATAACATCGCCCTCGCTTTTAGCACTTACAACTTTCATGTGCTAACATGGCATAGATTAACAAGAAATTAGCAGTTAGTCAAGGAGAATGCTAAAAAATCCCGCAAAAAACGGTCTTGCTTAAAAGACCGTTCTTATTACTACTCAATCAGTGAACTAAAATAGTTTTTACTAGCGACTTGGTCCAGCTTCAGCTGCTCGCTTAAAGCCGCCATATCGGCAAACTTTTCTTCCCCGCGCAAGTATTTGTACCAGGCGATGGTGATTTGCTGGCCGTAAATGTCCTGGTCAAAATCAAAGATGTTGGATTCGATGTAAATCTTCTTCTCATCATTGAAAGTGACATTGTAGCCGACACTGGTCATTGACTGGTACCAGCTGTCCCCTACTTGGGTCATGGTCGCGTAGACCCCGATTTTCGGCAAAACTTTTGGCCAGGCCAGTTCCAAATTCGCGGTTGGGAAGCCCAGCTTGTGGCCGTTTCTGAAGCCGTGGACGACCTTGCCACTGGTCAAATACGGGTGGCCCAGAAGTTCCGTGGCCAAGCGGAGATTGCCGCTTTTAACAGCCTGGCGGATTTCAGCTGAACCGATTTTTTCTCCGGCAAAGATCTGCTTTGGAACCACCTTGATGTCAAAGCGGCCCTTGGCAAAGGACGGCAGATTTTCCATATTGGCCACGTCCTTTGGGCCGTAGCTGTAGTCAAAGCCGGCTACCACCGTGTCTGCTTTCAGGCCCATGATGATCTCATCAACGAAGGCCTGGGGAGCCAGGTGGCTGAACTCCGGCGTAAACTTGAGAATCACCAGGTAGTCGACCCCGATCTTGGACATTTCGTAGGCCTTTTCCTCCGGTGGGTTCAAGTACTCAAAGTCCTTAACTCCAGCATAGACCTCCTTGGGGTGGCGGTCAAAGGTCAGCACCATCAATGGCAGATCCTTCTCAACTGCAATTATCCGGGCTTCCTTGATCAACTTCTGGTGGCCGATATGAACTCCGTCAAAAAAGCCCAGGGCCAGCACAACCTTGCCGGCCGTCAGCTCTTTCTTGAACGGATAGCTTAGATTTATTACTTTCAAACTTAATCCCTCAATTACTCATTACTTAATTACATAATATAACAGAATAGCGTAATACCGCCATTCAGCAAGCTAACATAAAAATATTGCACCTAATATTGTACCAAAGGCACCTAAGCCCGCATGAATTTGGCTAGTTGTTGAACACTTTCTTCCTTTCTGTCATTGGTTACATGAGTGTAAATGTCCATAGTGGTTGAAATGCTTGAATGTTCTAACCGCTCTTTAACATCTTGCATAGTCAAACCAGCTTCAAAACATAAACTTGCGTGTGTATGTCTGAACCCATGCAAACTAATTGCCCTTAGTCCCTTGTTTTCAGCAATTTTTTTGTTCCAGCCTTTAATTGTGCCATTGCTTAAATGTCCCCCGTGTTCGCTGGCAAAAACAAGGTTATTGCGGGGCTTGCCGAAATAGATGATCCGCCTTGCTTGTTCAGCCCGCCATTGTCTAAGAATGGTCATCGTTACATCATCCAGCAAGACCGTTCTATTACTATTCGTCGTTTTTGGGCTCCCTACCGTCGCTTGTCCGTACTTGTCCAGCGTTAACGTCTTATTTATGGAAACTGATTGGCTTGCAAAATCAACATCCGACCATTCCAAAGCGATCAGCTCCCCGATCCGCATTCCGGAGAAGGCCAACAGGCGGAATAAAGTATATTTCATCATTCCAGCATCCCTTGCACCGCTCAAGAATGTTTCCAGCTCATCTTTAGTATAGAACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAAGCACAAGGCCTTTGTTCGCTTGATATGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGTGCTATGTCTAGTTTACCATCATTCGATACCAAAAACGAACCCCAAATTTCTCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTTGGTCCTTTCATACATCTTCAGTAATGTGTTTCCAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCAAAAAACACCTACTATAGATTCATGCACAGAACCCACATATCAACTGGCTTCGCTTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCCGGCTGCCAAAGTATTCGACCACGTTTCGATGACCTACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCCTCCTTCGTTCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCGCGGCCAAGAGGCGGATTATGGCCCAATCAAAGGGGACCGATGTAGTTATCCAGCTGCTCGATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCAGTCAACGTGGTTTGAACGTAATTGCCATGGTGAAGAAAAGCTCCAAGATCACATACGAGTTCGAAGGAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGAGGTCGTTCAAGATATCTCCTGTCCGTCCCTGTAAAGGTTGGAGATCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCCAACCGCAAAGACTGGATCGCTCTTATTTGCACAGACATGACGATCGATGAAAATGAGATCATCAGAATTTACGGCAAAAGATGGGACATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTAAAGCGTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCCCATATAGCTTTCGTCTTTCTGTGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGACAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAACCGAATAAGACTTTGCGCTATGTCGTTAGCGCGTTTTTTACCAATACCGGTTAAGCCCTTTAAGAAGTCGGTGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGGTGTGGGAATCTGAGGACAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGCTCAATCTCTGGGAAAGTGAGCTGAATGGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTTTTGACATAAAATATTATGACCTTTTTTTCAATTACTTTTTATTTAATTCAGAAAGAGCAAAAAACATGGGAAGATATATTAATTTATGAAATAAAAAGTGATTATTCATCACTTAATCGATAAAAATCACCTCTTTTCATTATTCTTTCTCCTCGTATTTAAACTTAATTAACATACCGTCTATAGTACTTTCCAATTTCTTTTTTTCTGTACTTGTTACGATATCTTTTTTGTTGTTTCTTAATTAATTTATGCTTTAAGTATATTTGCTTTTAGTTAGGAAAAATAAAAAAAGTCGTATTTGAACATCTTTAAGTAAAAATGCTAAAATACGACAACTAATTCCTTTTTTACCCCTGCTTGTAGATGCTATCTTTAAAATAAATATACGCACTTCAATTATGAATATAACAATGCAGTGGTCACTATGGTTAAAAATTCCTTTTTTAATTATGTGTATCTTAGCATATATGTATTTTTGGTACGCTTTGTTTAAAGAAATCAAAGATAGTCTATGAAAAAATAAAAAGTAGTCATTTAGTCTTAAAAACGCAGTAAAAAAACTGCGTTTTTTATGTATTCATTAAAAAATAATTAATTATTGTATTCATAAGTTGAAACAGGAGAGAGTATTAACAGCTAAAGCAGTATTGCGGTAAGTTACCACGGCGCTAACCTGCAAAATATCCTTCACTGCCAAAACACTGTAACGCTTATATTTGTCATAGCCCATCAGCTTATCCAGTGGGTATTGGGCCTTCTTGCCTGGACAAGCATATCTTCTGCGCCAATAGCTAATCTCACCAAAGGCAGTCACAACTGAACGCTTATTTTTCTTCTCGATCTAATAGCCTTGCTTTTTAGTCTCTTCAACTAGACCAGCATCAACTTCTTCTAGTGCTAATTTAATTAATTCTCTAATCAAATCAAAGAAGCAGCACATTAATGCCTTTTCACGAGCAATAACATTATTTTCAGACTTAATAATTTTCACGATATCAGCTATAATAGATTCCATAAAAGACCAGATTCTAATGTGTTTTTTGTTCTTAACATCAGACTACTGGTCTTTTTGTTTTAGCTCAAGTCCAAATTCAAAGGACTTGAGCTTTTTAATTAATCATTCAACTTACCGCAAAAAATTATACACTTAGATTTAATATAGCTGGGATAGAATAAAGCTGAAAAAGATAAACAACTAAAAAATAGAAAACTAATATTGAGCTAACCATTAAATTCGAAATCTCTATTCCAATAAATTTAATATGAACATCATAATGTAAATAAAAAAATATATCGCAATGTTCTTGCTTGCAGTATGTCTCGCTCTTATCTGAATAAGATGATATTCAATCTTATCAACAATATAACTGATATAACAAAAGCAAATTAAAACATTCACGAAACAGAATTTGAAAATAACACCAGAGAAAAAATATTTTCAAGCTACTAGAAATTTCAACTATGTTATCATGACTTTTTTTATTTTTTAGCTCAAGATTGACAGATGTCTCGAAATTGTGTATATTAATCATAATAAAAATTTCGGAGGTGTCATGATGAGTCAATCAATGTTTAATGCGATTGATTGTTGCTGTCGAACAACGCGTTTTTGGCGATGTTCGGCCTGTTAGCATTGACGTTTTTTGGGAAATCATGACCTAAAAAGAGTTCAATGTCCACTTGGCTGGAGTTGAACTAAGGGCGCGAAAATTCTGGATTTCAGAATTTCGCGCCCTTTTTCTATCTATTGCGGCCATTTTCCCTAGCATCCCGCCAGCTAAACACTGCCCCAAATGATTAGAAAGGATCTTATTTATGCTTATTCATTCCATTTCAGAACTGATCGGTCATACGCCACTGATTGATCTGCAAATCAACATTCCAAATCACAGTCACATTTACGCCAAACTGGAGATGTTTAATCCAGGAGGCAGCATCAAAGACCGCCTGGGCCAATACATGATTCAAGATGCGATTAATCGTGGTCAGGTAACTGAAGGTGTAACAACAATTATCGAACCTACTGCCGGCAATACCGGAATTGGGGTTGCCCTTGCCGCTCGACAACACCATTTGCCAACCATTCTGGTCGTACCGGAAAAGTTCAGTTTTGAAAAACAACAATTGATGAAAGCCTTAGGGGCAAAATTAATCAACACCCCCAGTGATCAGGGCATCAAGGGCGCCATTGAAAAAGCAGAAGCGCTTCACGATCAAATTCCTAACAGTTTCGTTCCAATGCAATTCAAAAATCCGGCCAACCCTGATACTTATTATCACACTCTGGCACCAGAGTTGCTTGACGACCTCAATGACCCAATTGACGCCTTTGTTGCCGGTGCGGGCAGTGGTGGGACATTTGCAGGCGTCGCTCGTTACTTAAAGGAGCAGAATCCGGCGACTCAAACCATCGTTGTGGAACCTGAAGGCTCAATTCTAAATGGTGGGCCTGCCCATCCCCATCGGACTGAAGGCATCGGTGTTGAATTTGTCCCACCATTTTTTAAAGATGTTCAAATCGACAAAACGTTAACAATTTCCGATGCCGACGCCTTTCATCAAGTTAAGGAGCTTGCCAAGAAGCAGGGATTATTCATTGGCAGTTCAAGCGGGGCTGCTTTGGCTGCCAGCTTAAAGGTTGCCAAGGCACTTCCCGAGAATAGTACCATTGTCACAATTTTTCCAGATAGCAGTGAACGTTACATGAGTGAAAATATTTATAATTAAAAATAAAGTGAGGTTATTAAAATGGAATTTGATACAAAATTAATTCATGGTGGTATTAGCGAAGATAAAGCAACCGGAGCAGTTTCGGTGCCGATTTATATGGCATCAACTTTTCATCAGCAAAAAATCGGTGAAAATCAATATGAGTATTCTCGTTCTGGAAACCCAACTCGAGAAGCAGTTGAAAAACTAATTGCCGAGTTGGAAGTCGGCACAGCCGGGTTTGCATTTGCTTCCGGTTCAGCTGCAATTGACACAGTCTTCTCAATGTTCTCCGCCGGCGACCATTTCGTCATTGGCAATGATGTCTACGGTGGTACCTTCCGATTGATTGACGCCGTTTTAAAACGCTTTGGCATGACCTTTACCGTGGTTGACACCCGCGACCTGGCCGCTGTTGAAGAAGCGATTACGCCAAATACCAAAGCAATTTACTTGGAAACGCCAACCAACCCACTTTTACGAGTAACCGATATTGTAGCGGTTGCCAAGATTGCCAAATCGCACCAAATTTTAAGCATTATCGACAACACTTTCTCCTCGCCTTACGTTCAGCGACCGCTGGAACAGGGAGTGGATATTGTTCTTCACAGTGCTTCCAAGTATCTTGGTGGTCACAGCGACGTCATTGCCGGGCTGGTCGTCACTAAAGATGATCAATTGGCCGAAAAAATTGGTTACCTTCAAAATGCCATTGGTGGTATTTTGGCCCCTCAGGAAAGTTGGCTATTGCAACGTGGGATTAAAACGTTGTCTCTTCGAATGCGTGCTCATTTGGCCAATGCCGAAGCCGTCTTCAATTATCTGTCAAACCAGCCACTTGTCAGCAAAATTTACTACCCTGGCGATCCGAACAACCCTGATTACGAAGTCGCCAAAAAACAAATGCACGGCTTTGGCGCAATGATTTCCTTTGAATTACAGGACGGACTGGATCCAAAACAATTTGTTGAACAACTGCACGTTATCACATTGGCCGAGAGTTTGGGTGCACTGGAAAGCTTGATCGAAATTCCGGCCTTGATGACCCACGGCTCAATTCCACGTGACATTCGGTTGAAAAACGGCATCAAAGACGAGTTAATTCGCCTTTCAGTCGGCGTTGAAGACCAAAAGGATTTGTTAGCCGATTTGGAACGCGGCTTCAATGAGCTTAAGAGGAGCGAGAAAAATGTTTCAGACAGCAAGGTCCATTCTCAAGCGTGATCCGGCAGCCCACAGTCTTTTAGAAGTTCTCTTAACCTACCCGGGGATTCGGGCCCTGTTTTGGTACCGAATCGCTCACTTTATGGCTTTTCATCGACTTTATACAATTGCCGGGTTCCTAAGTCAACATGCCGCCAAAGTAACCGGGATTTCAATTTCGCCGGAAGCCCAAATCGGTAAGCGCGTTTTTATCGATCACGGGATTGGCGTTGTGATCGATGCCACTGCCGTGATTGAAGATGACGTCACTATCTTGCATGGCGTGACGCTAGGTGCCAGGAGGGCCGTTGAACGCTAATTTCCCAGGATTTTACAACTCAATGTATAAGAAGCCTACTATTACGGCCTTTTTCGAAGTTTACGATAATATTTTTTGAGTTGTAACTTTAAACTCAACGAAATCCTCTAAAAGGTTGGCATATCAGGTGATAGAGCACTTTGAGTAGTAATTTATGGGAAATTAGCATTGAAGGTCGGCGACATCCCTATGTAAAAAAGGGTGCATTCATTGGTGCCAACGCCCAATTGCTTGTCACCATTACGATCGGCGCCTTTAGTAAAGTTGGCGCAGGGGCAATTGTCCTGAATAACGTGGCCGATAAAACCACAGTGGTCGGCAACCCTGCCCGAACCGTTAACAAGTTACCCGCTAAAGTCATTAATGTGACCTTCACGACAAACACGTCAACCACTAAAAATTAATAACTTACGAAAAACACCTTGATGAAAAGAGTTGCCAGTTGGCAAAAATATCATCAAGGTTTTTTCGTATTTAACTATTGTGTCGAAAATAATTAGGGTCCGTCTGAAAACACATCAAATTAAGCTCAATTGGCGTTAAAAGCCAATTTTTTTCTCGATTAAGATCGAATAATCATGAATGTAACATGGTAATTGCGTTACATTCATGAGATTTCTGCTATCTTAAAAGTTAAGGAGGAGTATTAAATTGCAATTTGCTAATGTGTTACGAAAAAAAGAACTGCACTTAACCCAACAACATTTGGCTGGATATGAAGCTTCTGCTTTGCAAAGTGCTTATTCTGTTTCAAAATTTGGAATTCGTGGCTTGACTCAAGCTGCGGCCAAAGAATTGGCAGTAGATAAAATTACTGTTAATGCTTATAATCCAGGAATTGTTCGCACAAAAATGCGAGATGCAATTGATAAAAAAATTGCAAAAATTAAACATGAAACAATAACGCAGCAACACGCAAATTGTCTCAAAGAGATAGCGCTTGGTCGTGAAGCAAAACCCAGCTATGTAGCTGAAGTTGTGGCTTGGTTTGCTTCATCAGGTGCTGGGTATGTTACTGGACAATCACTTCAAGTTGATGATGGAATGAGATTTCATTAAAAAAATATTTAGAATAAATAACTTAAACTTCCCACCTTAAACTTCCCACTTTTGTAAGTGGGAAGTTTAAGTATTTACAAATACGGTTGCACTTTGAGGTGCAAACATAACCAGCGTAGTTGAAAATACGGAGGTTACAAACAAGAGCATTTAGAAATACGGTTGTACCTTGAGGTACGCCCGTTAAGCGCACCCGATTCAGGGCCCGTGAAAACCTTTTTTGGAGTTTCTGGAGCATTCTAAAGAAATATCCTGGCCATTGGTTGAATTGCCCTTTTGAAGCGCTTAAAGCGTGGGATGCTGGCACGAAATGGACTTTCTTACCCCCTAAAAGAGAGGTACAAACAAAACAAGTTTTTCAACACATCTAAAAGGGAGCAGGCTCCTATTTTGCGTTGTACGCCAATTTAAAGGCCCTGGAGCTCTTGCTAACCTTCTTTAGTGTAAAGTTACCTGGCTAGCGTTTCCGCCTTCTATTAAGGGAAATTTTGCTTCTACGGTTCCTTATTTATTGTATCCCCGGAGCGTATAACATGTTCTATCGATTGGCCAGAAATTGGCCAACGAGTAAAACAACCCCCTGGCACAGGATTTAAGGAAGCAGTACCGATTTAGGGCCCCAGCCACCCCAAAAAAGAGCATAAAAAACCGCCTGCTTGACGCAAGCGGAGAAAGTAGAAATCACTACTTAAATTTTATCATAGATTGTCTTTAGCATCATGTTGAAGCCTGTGGACGCATCCGAATCATTTCACCAAATATTGCACCGAATTTAGTAGCAACATTTTCTATTCCCTGTTAATCAGAGCTAGCTAGATTGGAGAGAATCCCGCAACGGCAAGGGTTGAGAAGCTTCTGGACTTGCCTAAAATTTGGCCCAAATTACTCATTACTTAAAAGCATTAAGTCCGGGCAGTAGAGACCTTGTCCCTTGGCCCGGTAAATCGCTTTAACTGTTTTATTATACCGCAAAGCGACCTTGTCTGCATCAAGAGGGAGTTTGATCCAGGCCCCGTTTTTAACCTGCTGCCATAAGGCAGCATCTAAATCAACTTGCTGGTAGTCAGCGAAAAAGCTGTCGATTGGCTGAATATAATCTTCAGCGTGGTCCAAATTATCCGCCAGTTCTTCCAAAGTAACCGCGTCTTGGAGCTTGTAACCGGAACTGGCCGTCCGCCGCAGTTTGGTCATCACTGCCGGCAGGCCCAGTTCTTCGCCTAAGTCGTTAACCAGGCTGCGGACATAGGTCCCCTTAGAGCATTCAACTTCATAAGTAAAAGTCTGCCGGCCCTTCTCCGGGTCGAACTGACTTGGCGCCGTCAAGTCGTAGAGGAAAACCTGGACAGTCCGCTTGGGCCGCTCAACTGGGATCCCTTCTCTAGCGTATTCGTAGAGCCGCTTGCCATTTACCCTGACGGCAGAATAAATCGGCGGCTGCTGGACGATTTCCCCGATCAACTTTTCCATTGCTGCTTTGATGGCCTGGTCACTGACCGGCTGAGACAAGGCTCTTTCCGCCAAAATCTTCCCCTCCAGGTCATAAGAGTCCGTGGCCAGGCCCAGCATCCCTTCACCAACATAAGCCTTTGGACGCTCATGCATCAGCTCGATCAGTTTGGTTGCCTGACCCAAAGCAATTGGCAAAACTCCGGTGACTTCCGGGTCCAGGGTTCCGGCATGGCCGATCTTTTTTTGCTTTAAGAGCCGGCGCAGCTTATAAACCACATCCCCGCTAGTCATCCCTGCTGCCTTGTCGATTACGATAATTCCATTGAACATCTTTTTCTCCTCTTCTATAAACGCAAAAAAGCGCCCGAAGGCGCTTTTTGCTAGTTTTGGCGATCTTGTTCCTGCTTCTTCAAGTCAGCAAGCAAACGGTCGATCTTGCTGCCGTAGATCACGGACTGGTCCCGCTTGAAAATCAGTTCCGGAACCTTGTACATGGTCAAGCTCTGGCCGAGCAAGTGCCGCATGGTTCCCTTAGCCTTTTCCAAGCCGGCTTCCGCTTCCTTTTGCGCCTGTTCATCTTCAGTCAGCAGACTGTAGTAGACAGTCGCGTATGAAAAATCATTGCTGCACTCCACGGCGGTAAAAGTCACGTTGCTGACCCGGGGATCGCGGATGTTCTTGCGGATGATCTTAGTCAGTTCCCGCAAGATTTCGCCTTCAACCCGTCCTTTTCTGTGCTTCATTTCAGCCTCCTGTTAACTTGGCTTAACTTCCTGCATTTCGTAGGCTTCCAGTTCGTCGCCTTCCTTGATGTCGTTGAAGTTTTCAATGGTCAAACCACAGTCAAAGCCTGCCTTGACTTCCTTGACGTCGTCCTTGAACCGGCGCAGTGAGGCAACCTTGCCGTCGTACTTGACCACGCCGTCTCTGATGACCCGGATGCCTGATTCTCTGGTCACGTAACCGTTGTCGACAAAGGCACCGGCGATGGTCCCGATCTTGGAGACCTTCCAAGTTTCGCGGACAGTAAGGTTACCGATAACCTTTTCTTCGTAAGTTGGTTCCAGCATCCCTTGCATAGCGGCCTTAACGTCATCGATCGCCTTGTAGATGATACTGTAAAGGCGGATATCGACGCCTTCTTGGGCAGCCTGGCTCTTGGCCGTAGCCGTTGGCCGGACGTTGAAACCGATGATCAAGGCGTTTGAAGCGCTGGCCAGGGTAACATCACTTTCATTGATGGCCCCGACACCGGAGTGGATAATGTTAACCCGAACGCCTTCAACGTCAATCTTTTGGAAGGATTGAGCCAAGGCTTCGGCAGACCCTTGCACGTCAGCCTTCAAAACGATGTCAACGGACTTCATGCTTTCCCGCTTCATCGTGTCAAAGAGGTTGTCCAGAGTAACGTGCTGTACGTTTTCCCGCTGCTTTTGCAGGGATTGCTGTGCCCGGGCTTCACCAACCGCGCGGGCAGTCTTTTCATCGGCAAAGACAACCAGCTTGTCGGCAGATTCCGGCACGTCGTTCAAACCAGTAATTTCAACGGGCATTGATGGCGTAGCCTTCTTGACCTGGTGTCCCTTGTCGTTGGTCATCGTCCGGACCCGGCCGAAGGTGTCACCAACAACGATTGGGTCACCGACCCGCAGGGTACCCTGCTGGATCAAAACATCGGCAACTGGCCCCTTGCCCCGGGACAGACGGGCTTCAACAACCGTACCGATCGCCTTTTGCTTCGGGTCAGCCTTCAGTTCCAGCATATCGGCTTCAAGGATGATGTTTTCCAAAAGTTCATCAATCCCCATCCCGGTCTTGGCTGAGATGTTGACGAAGATAGTTGAGCCGCCGTAGTTTTCCGGAATCAGTTCATACTGCATCAATTGTTCAGTAACGTGGGCAGGGTTGGCGCCTGGCCGGTCCATCTTGTTGATGGCCACAATGATTGGCACGCCCGCGCTCTTGGCGTGGTCGATGGCTTCGATAGTCTGCGGCATAACCCCGTCGTCAGCGGCAACGATCAAAACGACGATGTCGGTGATTTCCGCCCCGCGGGCCCGCATGCTTGAGAAGGCCGCGTGGCCTGGAGTGTCCAGGAAGGTGATCAAACGGTCGTTGATCCGGACCTGGTAGGCCCCGATGTTCTGGGTGATCCCGCCGGCTTCGTGTTCAGAAACCCGGGTGTGACGCAGACGGTCCAGCAAGGTAGTCTTACCGTGGTCGACGTGACCCATGATAGTTACGACTGGCGGACGGACAACCTGGTTTTCAGAGTTCTTGGACTCTTCCATTTCCTGGGCAAAAATATTGTCGATGTCGGAAATGTCTTCATGGACCTTTTCAACAGCTTCGATGCCGTAGTCAGCAGCCAGCAGTTCAATGGTGTCCTTGTCCAAAGACAGGTTCTGGTTGATCATGATCCCCAGCATGAAGAGCTTCTTCACGATTTCAGCTGGTTCCCGGTGAAGGATCTTGCCCAGGTCTTGGGCGTTCATGCCAACTTCGTATTCAAAGCTTTCTGGAAGTGGACGGTCCTTTCTTTGGGTAACCTGCTTCTTAACTTGCGGAGCACTTTGGTGCTTCTTGTTCTTGCGCTTGCGCTGTTCGCTGCGGTTGCTATTTGCCCCTCTGCCTTGGTCAGCGTAAGAGTTTTGCCCCTTGCGACCTGGCTTGCCACTCTTTCTGCGGCGGCCTTCCTTGTTTTCCGGCATTGGCGCTTCAGTGAAGCTTGGCCGGGAACTTGGCCGGCGAGAAGATGAAGGCTTGGCAGCAGGCTTTTCACTGTTTGCCTGGTTTTGCTTCAAGCGGGCTGGGGATGGCTTCAAGATCTTTGGCCCACGGACTTTTGGTGCTTCAGCTGCGGTTTCAGCAGGCTTTTCGACACTTTCGACCTTCTTGACAACCGGCTTGCTTTCGCTGGCCTCAGCCTTGTTCAATGACTTCTTGTATTCCTGCTTAGCAGCCTTGCTTTCCTGGTCCAGACGGGCTTCGTCAGCCCGCTGCTTTTGCTTGAGGTCCTTCAGCAAATCCTGGGCAGCTGGCCGGCGGCGCTTGCTGTGGTCGTTAGAGTGGTTGTTAGCCCGGCGGCGGGTATTTGATCTCTTACCCTCAGTCTTCTTTTCGCCCTTGCGAATAGCACTGACTGAAATCTTTAATTTACCAGACTTGCCGCTGGTTTTCTTGTTATCCATGCCCAATTCCTTTGAAGTTTCGTTTTCTTGTTTCTTGGTCATTAGATCACACTCCTTCTTTAATCTTATCCAGCAAGGTTTTCGCAAAACCACGATCTGTTAATGCCAAAACTTTGCGTTTCTTACCTACAGCCTGACTGAGTTCAGCTTCCGTAAAGACGTCGACCAATGGCGTTGGGCGGGCCTTTACAGCAGCTTCAATCTTGCCGCGGCTATTTTCTGCTAAATCATTCGCAATGATAATGCACTTAAGCTTGCCCTTCTTCAATTTGGCCAAAACTATGTCCGTGCCCGAAACGGTCTTCCCCGCCCGGGTGGCCAAACCAAGCAAATTTAAGGCTTTCTCTCGGTTGTTAATTATTTTTGATCACCAAATAATTCTTTTCTTGCCTTCTGGTGGTCCACGTAAGCGAAGAGCTCGTCGTAAAATTCATCGGCTACCTTCACGCCCAAACTGCGTTCCAGCACCTTTGACTTTCGGGCGGCAGCGATCTTCTCCGGTTTTAAGGAAACATAAGCGCCGCGGCCCGGCTTCTTGCCGCTTGGATCAACAGAAACATTCTTTTCCTTGTCAACGACGATTCTGACCAAATCCTTCTTCGGCTGCATCGTATCGGTCAACAAGTCCTTCCGCATGGGGATTTTTCTCTTTTTCAAGTAAATCACCTATTCTTCATCGTCAAGATCCAGGTCTTCTGCATCTTCTGCTTCTTCAGCTTCTGTATTTTCATCAGCTTCAGTCGCTTCAGCTTCTGCTTGGTCATCTGCTTCTTCAACTGCTGCTTGCTGGAGATCTTGATCTTCTGCTACTTCAGTTTCGTCTTCTACTTCGCTTTCGTCAACAAATTCGACTTCGGATTCTGGCCGGATGTCGATCTTGTAGCCAGTCAAGCGGGCGGCCAGGCGGACGTTTTGCCCTTTCTTGCCGATAGCCAGGGAAAGCTGGTAGTCCGGCACGATCACGAAGGCTTTCCTTTCATCGTCTTCGTCTTCAAACTGGACAGCGATGACTTCAGCCGGGTTCAAGGCATTGGCGATGTAGTCAGATGGGTCTTCTTCGTACTGCACGATGTCGATATTTTCCCCGCCCAGTGCGTTGACCACGTTCTGCACCCGGCTGCCGCGTGGGCCAACACAGGTACCAACCGGGTCGATGTTCGGGTCGTTGGACTTAACGGCAATCTTGGTTCTTTCGCCGGCTTCCCGGGCGATGGACATGATTTCAACGGTCCCGTCAAAGATTTCCGGCACTTCTTGTTCAAAAAACCGCTTAACGACATCCGGAGCGGTCCGGGAAACCCGGATTTGGGCTCCCTTGCCGTCAGCACCGACCTTGGTGACCAGGACGCGGACCCGGTCTTGCGGGTTGTAGTGTTCACCTGGAATAGTGTCACACTTGATGTCCATAACTGCCTCAACATTGCCGATGTTGACGTAAACGAAACGGTTGTCAGTTCTTTCTACTGTCCCGGTGACCAGTTCATCTTCGTATTGGGAGTATTCGTTGACGATGTGGGCATTTTCCGCTTCCCGCAGGCGCTGCATTACGACCTGCTTAGCCGTAGCTGCCGCAGTCCGACCGAAGTTCTTTGGGGTAACTTCGAACTTGATCGTGTCGCCGACTTCGTATGCCCGGTTGATGGCCAGGGCATCCTTTAAGCTGACTTCCACCCGGTCGTCTTGCACTTCGTCAACCACCGTCTTCAAAGCCATGACCTTAAAATCGCCCTTCTTTTCATTAAAGTCGATTTCGACATTTTCCGCCAGGCCGTAGTTCTTCTTGTAGGCAGCGGCCAAAGCAGCCTTCATGGCTTCAACGATAACGTCTTGTTTGATACCCTTGGTCTTTTCCAAGACGTCAAAGGCTTCCAGCATTTCTTTTGACATAAGTTTTTGATCACTCTTTCTAAAATTCGATTGCAAAACGGGCGCTGGCGATCTGCTTGCGCGGAATAGTGAGCTGCTTGCGCCGGGTCTTGATCTTGATTTCCAGTTTAATCTCCTGGTCGTCCAGGTCAAGCAAATGACCTTCAAAGACCTTCTCGCCTTCCAATTTCTGGTAGAGGCCGACATGGATGTACTGGCCCTTGGCCTTCTCCCAGTCCTGCTCCTTCTTGATCGGTCTTTCCAGGCCCGGTGAGGATAGTTCCAAAATATACGGGTCTGGCAGCGGATCTGGCTGCATTGAGTCCAATTTTTCTCCAACCAACTCACTCAGCTCCGCAATCGTTTCGATGTCAATCCCGTTTGGCTGCTTATCAACGTAGATTCGCAGATAGTCTTGACTCTTTTCCTTGACGTATTCCAAATCAACAAGTTCACAGTCATGACCGATAATGACCGGTTCGATTGCTTCTAGGATAGGTGTTAAGTTTTTTGGCAAAATTTTCCTCCGTAATAAAAAGAGTGAGCATCGCTGCTCACTCGAATTTACCATATTCGATCTACAGGAGATTATAACAGAATTTTTCCCACTTGTAAATAAGAAGCTCTTAGAAGAGGGAAAGTTGGTTCTGGTCAGGCATCCCCTCTAAGACATTGTTGTTTTCAAAGAAGTCCATGATCTTCTGGGAAACCTTGCCACGAACCTGCAGGTCTTCCTTTGACAAAAATGGCGCTTCACTTCGGGCAGCCACGATCTGCTTGGCCGCGGAGTCACCTAAGCCGTCAACGGCGTTAAACGGTGCCAGAATGGTGTGCTTGTCCACGATCTTGTAAGTCGTAGCTTCAGACTCGTTGATGTCGACCATCTTGAAGTTGATCCCCCGCTCAATGGCTTCGTTGACCAGTTCCATGTAGGTCTGCAGGTCCTTTTCCAGCTTGGTCGCTGCCGTCCCTTTTTCCTTGATCCGGTTGATCAAGGCCACAACCGTGTTCTTGCCCCGGCTCATGGCTTCCAGGTCGACCTTGTCGGCTCTGACTGAGAAGTAGGCGGCATAGTAGATCTCTGGATAGTAGACCTTGAACCAGGCCACCCGGAGAGCCATCAAGATGTAGGCGGCCGCGTGGGCCTTCGGGAACATGTACTTGATCTTCAAGCAAGACGGAATATACCAGTCAGGAATGTTCTTATTTTCCTTTAAGACGGCCATGTTCTCATCAGAAATCCCCTTCCCCTTCCGGACAGTTTCCATGGTTGAAAAGGCAACTTCTTCCTTAACTCCCCAGCGGATCAAGTCAGTCATGATGTTGTCCCGGCAGCCGATCACGTTCTTTAACTTGCAAGTGCCGTTGTTGATCAGTTCCTCGGCATTGCCTAGCCAGACGTCCGTCCCGTGTGACAGGCCGGAAATCTGCAAAAGCTCGGCAAAGGTCGACGGCTTGGTCTCTTCCAGCATACCCCGGACAAAGGGGGTCCCGAATTCCGGCAGGCCCAGGGTCCCGGTCTTGGAATTGATCTGCTCTGGAGTAACGCCTAGGGCTTCCGGGCTGGAGAAAAGGGACATGACCTTAGGGTCATCAGTTGGAATCGTCAAAGGATCAATCCCAGACAAGTCCTGCAGCATTCTGATCATGGTCGGGTCCTGGTGACCCAGGATGTCGAACTTCAAGAGGTTGTCGTGGATCTGGTGGAAGTCAAAGTGGGTCGTCTTCCATTCCTTGGAGATATCGTCTGAGGGATACTGCAGGGGAGTCAGTTCATAGATGTCCTTGTCATCCGGCAAAACGACGATCCCGGCCGGGTGCTGGCCGGTCGTGGCCTTGACCCCGGTAACCCCGATGGCCAAGCGGTCAACTTCCGCGTTGTTCATCTTGATTTCCGGGTGCTCGTCTTGATAGTGCTTGACATAGCCAATCGCCTTTTTATCAGCCAGGGTACCTACGGTGCCGGCCTTAAAGGAGTGGTTTGGCCCAAACATAACTCTGATGAAATTATGGGCAACTGGCTGGTAGTCACCAGAGAAGTTCAAGTCGATGTCGGGCACCTTGTCACCATGGAAGCCCAGGAAGGTTTCAAATGGGATGTTCTGCCCGTCTTTAACCATCATGACCTGGCAGTCAGGACACTTTTTATCCGGCAGGTCAAAACCGGAAGCGTATTCGCCGTTTTCAAAAAATTCTGACTGCTTGCACTTCGGGCAGCGGTAGTGAGGCGGCATAGGGTTGATTTCAGTGATACCCATCATGGTGGCAACCAGGCTGGAACCAACGGAACCCCGGGAGCCAACCAAGTAGCCGTCCTTAACTGACTTGGCCACCAGCATCTGTGAAATCAGGTAAACAACCCCGTAGCCGTTACCGATAATGGCATCCAGCTCCCGGTCCAGACGGGCCTGGATATTGTCCGGCAAAGGATCACCATAAAGTTCGTGGGCCTTGTCATAGGTCAGCTTGCGTACCCGTTCAGCCGTATGCGGGATCTTTGGCGGGAAGCTTTCGTCTTGGACCGGCTGCACTCCCTCATCGATCATGGCATTGATCTTGTTCGGGTTGCTAATGACCACTTCTTTAGCAATGTCTTCGCCCATGAAGCTGAATTCATCCAGCATCTCCTGGGTGGTATAGAAGTGCAAGTCAGGGTGCTGCTTGTTGCGGTTTGGGTTACCCCTTTGAGCAGCCAGCAATACGTCCCGGTAGATGGCTTCATGCTTGTCAATGTAGTGGGCATCGCTAGTTGCCACGACCGGCTTGTTCAGCTCCCTGCCCAGCTTGTAAATATTGGTCAGAATTTCTTCCAGCTGGGCTTCATCAGCAATCAAGCCATCGGCAATTAAGCTAGAGTAGTTTGACGGCGGCTGGATTTCCAAAAAGTCGTAGAATTCCGCCTTCTTTTTGGCTTCTTCATAGCCCTTCTGCATCATGGCAATAAAGACTTCCCCCTGGCTGCAGGCAGACCCGTACAAAAGGCCGGCGTGCAGGCGGCGGAGTTCTGACTTAGGGGTCCTCAGCCCCTTGAAGTTGTATTTGATCCCGGCCAGGGAGACCAGTTCATATAAATTCCGCAGGCCTGGCTTTTGGTTCTGGGCTAAGACCGTAATATGGGTCGGCCGGGCCCGCTTGTAGCCTTCCCCGTTGCTGTAGTCGTTCATCTTGCCCAGGTCATCTTCCTGGTACTTGTCGTTAAAGGCATCCAAAAGCTTGAACATCAGGTAGCCGGTTGCTTCAGCGTCCTGGTTGGCCCGGTGGTGGTGCTCCAGGGGCACATTGTACTTGCGGCAAAGCGAATCTAGAGTGTGACGGGACTGTTCCGGGTGCAGGAGGCGGGAAACTTCCAAAGTGTCGACGACCGGCTGGCTGATTTCCGGGTAACCGCAGCGCTTCAAGGCCGCATCAACAAAGCCCACGTCAAACTGGACATTGTGCCCGCAGAGCGGGTCATTGCCGTAAAAGTCCATGAACTGCTTAATTACGACAGCTTCGTCGTCAGCCGCCTGGACCATCTCGTCCGTAATTGAAGTCAAGTTAATCGTAGTTTCAGACAATGGATGGTGAGGGTTGATGAACTTGTCAAAGCGGTCGATAACTTCACCGTTTTTCATCTTGACCGCCCCGATTTCGATAATCGTATCGTAAACAGAAGACAGACCGGTCGTTTCAACGTCGAAAATGACAAATTCCTGGTCTTCATACTTCATGCTGGCGGGGTTTAAAACCAGCAGGCCGTGGTCTTCAACCATGTTGGCCTCCAGGCCCATGATGACCTTCATCCCGGTCTTTTTGCCCGCTTCAAAAGCATTCGGCAGGGCCTGCAGGCCAGCATGGTCAGTGATGGCGACGGCCGGCTGACCGAACTTCTTGGCTGTCTTGATGATGTCTGCTACATCGCTAGTCGCGTCCAGCTGACTCATGTTGGTGTGGACGTGCAATTCCACATGCTTTTCTTCACCTTGGTAGGCTTCTTGCCGGCCCACGTGCTCGGTTAATTCCATGCTGTAGATGTTGAAGATCAAGTCATGGGCATACTGGTCATCCTTAAGGCTGCCCTGCATGCGGATCCAGACACCAGGCTTAATGCCTTTCAAATATTCGATTTCTTCCTTGTCGGAATCACGGACGAACTTCTTAAAAGAAATAGAACCGGTATAGTCAGTCATTTCCCCGTAAAAAATAAAGGAGCCCGACCGCAGTTCCTGCATTTCCGCTTTGAAGACATGGCCTTCAACAACCGCGCTGCGCTGGTCTTCTGACAAGTCTTTCAACTGGGTAATCTCTGCCTTGTCGCTGATGGCGCCTGGGCCAAAACTGGTCTTCTTCCCCCGCCGGCCCTGGTAGCTGGGCCGGGGAGCTGGCTTTGGCTTGGCCGGGGCCTGCTGGAAGGCTTCCTGCATGTTCTTCTCATGGGCTTCCACCAGCTGGGCCAGGCTTTCAAAGTCGCTTTGCCCGCCCTGGTCAGTAACTTCCGTCAAAAGCTTGACGTTAAAGAAGCCGTAATCGCGCAGCTCTAAAGAGAAGCTGTCCAAGAGCCGCTGCTCCAGCATCTTGTCAAAAAGCTGGCCATTGATTGGAATAACCCAGCGGCCACTATCTTCATAGGGCGCCTGCCCGACCAGGAAGTTCTGGGCTGCCGGATTGGCGGACAAGACTTCTGAATTTTCAACCGCGTACTGCCAGTAGTCTGGCAGGTATTGCTGCTGGCCATCAGCCGTTTCAACTATGAGCCGAGTATCAACAAAGTCATTAAATTCATGCTTAATTGCCTGGTTCAAGGCATTGTAGCTTTCAAAACGCAGTGGAGTAGTAAAAAAAACGTGGATATCCCATCTACGTTCTTTTCTGTAGACATCCACGTTTTTTATCTCCCCTGCCTGTAAAACCGCTTCGTCAGCTCCCCCTGCCGAAAAGCCGACTTGTTTTAACAATTTGAGAAAAAGTTGGTTTTTATCAGTCACGAGAGTTCAATCCTAATCTAATTCGTTGGCAATAAAGTCTTCCAGGTCGGCAACGGCCAGCTTTTGTGCCTGGTCGTCGCCTGGACGCTTGACTTCAACAATCCCGTCAGCCGCGTCGCGGCCAACAGTAATTCTGATTGGCGCGCCAACCAGGTCAGCATCGTTGAACTTGACGCCTGGCCGTTCGTTACGGTCGTCATAAAGGACGTCATACTTGGCAAACTTGGCTTCCAGGTCTTCGGCCAGCTTGCTTTGGATTTCATCCTTCATCTTCATCTGGATGATGTGAATCCCGAATGGCGCGATTTCCTTTGGCCAGGCAACCCCATTTTCAGTCGCGTGCTGTTCAACGACGGCTGAAAGCAGGCGGGTAACCCCAATCCCGTATGAGCCCATGATGACTGGCTGGGACTTGCCGTTCTGGTCCAGGAACTTGGCCCCCATGGTTTCCGTGTAGTAGGTCCCCAGCTTGAAGATATGACCAACTTCAATTGAGGTAGTAAACTTAAGCGGTTCATGGTCAACCGGGTCAGGTTCGCCCTCGTTGGCAACCCGGAGGTCAGCAAAGCGGTCAGCCCTGAAGTCCCGGTCCAAGTTAGCGTTGATGAATTGAGCATCGCTTTCGCCAGCACCAACGACCACGTTATAGAGGCCCTTGACGGTTTTGTCAGCCACGATTTCGTCAGCCCAGTCAGCATTTACCGGGCCAACGCCGCCCTTTCCGGCCCCGGTCAGTTCTTCCAGGTCGCTAGTTTCAGCAACCCGCAGGCTGTCGCAGTCCAAGAGGTGAGTCAGCTTGACTTCGTTGACTTCCTTGTCAGCCCGGATCAAAACCAGAACCTTCTTCTTTTCGTCAACGATGTAGAGGACGCTCTTGACAATTCTGGTGGCTGGCACTTGCAAGAATTCTGCCAGCTTGTCAATGGAGTCGCAGCCTGGAGTAGCAACCTTTTCCATCGCCTTCAGTTCTTCAGGCTCTTGCTTGAAGGTATCAACGCTGACGGCCATTTCCAAGTTAGCGGCGTAGGTACCGGAAGCGTTGGTTGCAATAGTGTCTTCACCAACAGCGGCAGGTGCCTGGAACTCAATAGAGTTCTTGCCCCCCATAGTCCCGGAGTCAGCGATAACTGGCCGGACTTCAACGCCTGTGCGCTTGAAGATCTTGAGGTAGGCTGCCTTTTCATCATCAAACTGCTTGTCCAGCTGTTCTTGGCTGGCCGCGAAGCTGTAACCGTCCAGCATTACAAATTCTCTGCCCCGGAGAAGACCGAAACGTGGCCGGTTTTCATCCCGGAACTTGGTTTGAATCTGGTAAAGCTGCAGGGGCATTTGCTTGTAAGACTTGAGGCTCTTAGCCACCACGTCAGTAAAGGTTTCTTCGTGGGTTGGCCCCAGCAGCATTTCCCGGCCATGCCGGTCCTTCAGACGGAACATTTCCGGACCATACTTTGGCAGACGGCCTGATTCTTCCCACATTGAAGCTGGCAGCATGTGCGGCATGATCATTTCAACTACGCCGGCATTAGCCATTTCTTCTTCAATGATCTTTTCAGTCTTGCGCAAGACCTTGTAACCCAGCGGCAGGTATGAGTAGACACCAGCCGTAACCTGCCGGATGTATCCGCCCCGCAGCATTACTTGGTGGCTCTTTGCAACCGCGTCGGCTGGAGTTTCCTTCAGCGTCGGCATGAAAAAGATTGATTGACGCATAATTAATTAAATTCTCCTAAACATTTATTATTTCAAGGACTACTTGATAAAGTAGCGGTAGATGTCGTTGCCAGTTACGGCGATAATCAGAATCAGCAAGAAGACCACTCCGATCAAGTCAACGACTGTCTCATGCTCCTCTGGAATCGGCTTGCCCCGCAGGAGCTCGATGAGTTCCAGAAAAAGCTTGCCCCCGTCCAGACCTGGAATTGGGATCAAGTTGACGATCCCCAGGTTGATGGACAGCATGCCAACAAAGGCCAGCATGTAGGTCAGACCCATGGAAGTTGCCTTTGAAGTTTCCGAGTAGATCCCGACTGGGCCAGACAATTTGTTTAAGCTGAAGTGCTTGAACAAGTTGCCCAGGGCCTGGAAGATCATTCCTGTTACCTGCCAGCTCAAGTCCCAGCCCCGCTTCAGCTTGGCGGAAAATGAGTTGTCGGCCTTAGCCACTATGCCAACCAGGTATGACTTGGTCTTCTTTGAGTACTTTGGCGTCAGCTGGACTGACTTTTCGCTTCCCTGCCGCTTGACCTTGACCGTCAGGGTCTTACCCTTAGAAGAGTCAATCGCCTGGCTGACCTGGTCAAAAGTACTGATCTTCCGACCGTTGATGGCCACGATCTGGTCGCCTTTTTGCAAAACGTGCTGGGCCGGGGAGTTTGCCGCTACCTGGCCCACGGTCGTTGTTGCCGGGCCAACTGAAGCAAAGCTGTAGATCGTCAAGACCACAAAGCCCAAAACAACATTCATAAACGGTCCGGCAAAAGAGGTTGCCAGTTTCTTCCATGGTTTGGCTGCCGGCAGCTGCACGTCCCGGGGGGCAATCTGCAGCTCGGTGCCTGTGTCGTCGATCATGGTCGCGTCATGGTCGACCTTGTAGGTCACCAGCTGGCTCTCATCGCCATTTTCATACCCTGCAATGGTCAAGTCATCAACCAGATCGGCCTTAGTCACCCGCAAGGGGCGGCCTTCGATCGGCAGGTCTGATTCTGAAGCATCGATTCGCGTAACAATTCCAGCCTCATTCAGTTCCAAGACAACTGCCGTCCCCGGGTCAATTTCACTCTGCTCGTCAGGACCAGCCAGGCGGACATAGCCGCCCAGCGGCAGCCAGCGGATGGTATAAGTCGTTTGACCAGGCCGCCACTGAATCAATTTTGGCCCCATGCCGATTGAAAACTCGCGCACCAAAATACCGGCCTTTTTCGCCACGAAAAAGTGCCCGAATTCGTGGACAAAGACCACCAGGCCAAAAACTATAATGAAGGCTAGAATACTTTTCACAGCGACCTCCTAAATTCCAAAGATCAAGGCAACGATTGGCAAAACGAAAAGCGTGCTGTCAAACCGGTCCAGGATCCCGCCGTGGCCCGGCAGGATCTTGCCGGAGTCCTTAACCCCGTAGAAGCGCTTGTAGGCTGATTCAACCAGGTCGCCCATCTGGCCGGCGATTGACAGGAAGAAGGAAGCAATGATCAAGCTGGTCTTGTCGCCGCCGACTGGAGCCAGGTTGACATAAATTGCCGTCACGATAACCGCGATGATCACGGCCCCGATTGACCCTTCCCAAGTCTTGCTCGGGCTGATTACTGGCCAAAGCTTGTGCTTGCCGAACTTGCGGCCAACCATATAGGCAGCCGTGTCAGTCGTCCAGACAATCACGAAGGCAAAGAGCAAGCGCCACAAACCATAGACTGGATCGCTGTTTCTGATCGCAGCCAGGTAGTGGAAACCAGTCCCGATGTACAAACTTGACAGGACGTAAACGCCGATATCGTCAAAAGTCGTCTTGTTCTTAGACAGAACCGTCCAGGTCAAAAGAATCATTACCAAGGCATAGAAGACGCCCCACTTGCTCCAGTTTTTTGGCAAAAAGCCAAAGAAGGAGTTGGGCACGGTCCAGGTCAAGGTGGCCAGGGCAGCCAGGGTAAAGTCAACTGAGACCAGGATCTGCTTCTTCATCAAGAAGACTTCACTGATGCCGACGGCAGCCACAAAGGCAGCCAGCCAGTCAATCCACATGCCCCCGGCAACCAGGACCGGGATAAAAATCAATAAAGCAACAACTGCTGTAATTACTCTTTGTTTCATATTACCTAACTATCTGTTTCATCTAATTTACCAAAGCGCCGGTCCCGGTGCTGGTAGATCTTAACCATTTCGGCCAAGTCGTTTTCGTCGAAGTCCGGCCAAGCCTTGTCCGTAAAGGCAAGCTCTGAGTAAGCAATCTGCCAGAGCAGGAAGTTGCTGATTCTCTGCTCGCCAGATGTTCTGATCAAGAGGTCTGGATCAGAATAAGGGGCAAACTTGGCGGTCATCAGCTTGGCGGAGACCATGTCTTCAGTAATTTCTTCCGGCGTGATTTCCCCGCTGGCGGCCTCTTTTGCCAGAGCCTGCACGGCTGAAACGATTTCTTTTCTTGACCCGTAATTAAAGGCAAAGTTCAAAACCAGACCGGTATTGGCCGCGGTTTCCGCCATGGCCCGCTCAACCACTTCCCTGGTTGATTCCGGCAGGGCATCCAGATAGCCCATGATGTTGACCTTAACATTGTGGGCCTGCAGGCAAGGCATGAACTTGTCAAAGAACTTGACCGGCAGTTTCATCAAATAATTGACCTCATCCTTAGGCCGGGCCCAGTTTTCCGTCGAAAAAGCATAAAGAGTCAGGACTTTAATTCCCAACTCATCTGCCGCAAGCGCAATCTTTTCAACGTTGTCCATCCCGGCCTTGTGGCCCATGAAGCGCGGCATTTTCCGCTTCTTTGCCCAGCGGCCATTGCCGTCCATGATGATCGCCAAATGATTCAGCTGCTTATTCTTATCCATAATTAACCCTGAATGATTTCCTTGCGCTTGTTGTCAGCCATCTGGTCAATCTTCTTGGTTGATTCGTCAGTAACCTTCTGGACTTCCTTTTCCAGGCGCCGTTCTTCGTCTTCAGTGATTTCGCCGTCTTTTTCCTGCTTCTTCAAAGCCTTCATGGCTTCCTGGCGGACATTGCGGACAGCAATCTTGGCTTCTTCAGCCAGCTTACCGACTTCCTTGGCAATTTCCTGCCGCCGTTCCCCGGTCAGTTGCGGGATAATCAGGCGGATGACGTTACCGTCGTTAGCTGGCGTAAGGCCCAGGTCTGAGGCCAAAATGGCGTGTTCAATATCGTTCAAAGAAGTCTTGTCATATGGAGTGATCATCAAAACCCGTGGTTCTGGAATGGTGATCCCGGCCATTTGCACCAGCGGAGTTGGTACCCCATAGTATTCAACCATCACCCGGTCCAAAAGGGAGGCGTTGGCTACCCCGGCCCGGACAGTTGCCAGATTGCTCTGGTAGACTTCGATGGACTTGTTCATGTTTCTCTTGGCTTTAGCAATCGTTTCGTTGTTCATTACTTGTCACCTCTGATAATCGTCCCGATGTTTTCGCCTTCAACTACCCTCTTGATGTTGCCTGGAGTGTTGACGTTGAAGACGATCAATGGAATATGAGTGTCCATGGACAAGGAGCTGGCAGTTCTGTCCATAACTTGCAGGCCCTTGGAGATCATGTCCAGCTGGGTCAGTTCAGCAAACTTCTTGGCACTTGGGTCCAAGTTCGGGTCAGCAGTGTAAACCCCGTCAACCCCGTTCTTGGCCATCAAGATCACGTCAGCATTAATTTCCGCTGCCCGCAAAGCAGCCGTGGTGTCAGTTGAGAAGTATGGGTTGCCAGTGCCGCCGCCGAAGATAACGACCCGGTTCTTTTCCATGTGGCTGATTGCTACCCGGCGGATGTAAGGTTCAGCTACCTGCCGCATGGAGATTGAGGTTTGCAGTCTGGTCTGCACGCCAGCAGTTTCCAGGCCATCTTGCAGGGCCAGGCCATTCATGATCGTGGCCAGCATGCCCATGTAGTCAGCTTGAGCTCTTTCCATGCCCAGCTTGGCCCCGGTTTCACCGCGCCACATATTGCCGCCGCCACAGACAACGCCGATTTGCACGCCCATGTCATGAACCAGCTTGATTTCGTGCGCCAATTTCTTGATCACAGTTGGGTCAATGCCAGTTCCCTTTTCCCCGGCCAAAGCTTCGCCGGAAATTTTCAAAATGATACGATTATATTTAACTTGACTCATAATGCCCTCCTAATTAGCTCTAACTATTTTACCATAAAACAGAAAACTGTCTCTCCTATTTATCCTATTTCACCAGCTTAAATTTGCAAAAGCAAATTTGCCGACAAAAAAAGGATGGGTTTCCCCATCCTTTTTCTTGCTAGAAGAAATTAGTTCTTCATTTGTGCAGCAACTTCAGCAGCAAAGTCTTCTTGCTTCTTTTCGATGCCTTCGCCGACTTCGAAACGAACAAAGCTTACTACGGAAGCGTTGACTGATTCAAGGTATTGTTCAACAGTCTTGCTGTCGTCCATAACGTAAAGTTGAGCGAGCAAGGTGTTTTCTTGGTCAACCTTAGTGTTGTCCAGCATGAAGCGGGCCATCTTGCCTGGGATGATCTTGTCCCAGATCTTTTCTGGCTTGCCTTCAGCCTTCAGTTCTGCCTTGATGTCTTCTTCAGCTTGAGCAATGACTTCGTCAGTCAATTGCGCCTTTGAACCATACTTAAGGTGTGGCAAAGCTGGCTTGTTGACCATGGCACGTGATTCGTTGTCTTGGTCAATCTTGTGGTTAAGTTGAGCCAGTTCTTCGCGGACGAAAGCTGGGTCAAGTTCCTTGTAGGACAGAACCTTTGGGCTCATTGCGGCAATGTGCATTGCAATGTGCTTAGCCAAGGCTTCGTCGCCGCCTTCAACAACAGTCAAAACGCCGATGTGGCCGCCATTGTGTTGGTAAGCGCCAAAGTGTTGGTCATCAGTCTTTTCAAGAACAGCGAAGCGGCGGAAGGAAATCTTTTCACCGATAGTCGCAGTAGCATTTACGTATGCTTCTTCAAGGCTTTCGCCTGAAGGCATGGTCAATGCCAAAGCTTCTTCGTTGTTAGCTGGCTTGCCCTTGGCAATAGTTTCAGCAGTTTCGTTGACCAAAGTCTTGAACTGTTCGTTTTGCGCAACGAAGTCAGTTTCAGCGTTGACTTCAACGATAGCAGCAACGTTGCCGTCTACGTAAACGCCAGTCAAACCTTCAGCAGCGATCCGGTTAGCCTTCTTGGCAGCCTTTGCTTCACCCTTTTCGTGGATGATTTCAATAGCTCTTTGCATGTCGCCTTCGGCTTCAACCAGGGCCTTCTTGGCGTCCATGACGCCGGCACCAGTGGTTTCACGCAATTCCTTGACTTGCTTAGCAGTAATGTTTGCCATTTAAAAAAGTCCTCCAGTTCAAACTAAATAACAGAATTCTTCCAAAGATAGTTTACGACAAATTATTCAGCGTCGTCTACTTCTTCAGCAGAGTTTTCTTCAACACTTTCAGACAATTCCTTTTCAACGTCGGCGTTATCTGCACCTTGCTTGCCTTCGATTACGGCATCAGCCATAGTACCGGCGATCAAGCGGATAGCACGGATAGCGTCATCGTTTGAAGGGATGATTACGTCGATCGGAGTTGGGTCAGTGTTGGTGTCAACCATGGCTACAACTGGGATACCAAGCTTGTTAGCTTCGTGAACGGCGATCTTTTCCTTCTTAGGGTCAACGACGAACATTACGTCAGGAATCCGAGGCATGTCTTCGATACCGCCCAGGAACTTTTGCAGCTTGTCCATTTCCTTGGTCAGCAAAGAAACTTCCTTCTTTGGCAGTACGTCGAAGGTGCCATCTTCAGCCATCTTCTTCAAGTCCTTCAGACGCTTAACCCGGCTTTGGATAGTAGTCCAGTTGGTCAAAGTACCACCCAACCAGCGTTGGTTGACGTAGTATTGACCTGCACGGGTAGCTTCTTCAGCGATTGCTTCTTGAGCTTGCTTCTTGGTACCAACGAACAGGAAAACACCGTCGTCTTGAGCAACAGCCTTAACGTAGTTGTAGGCATCGTCAAGCATCTTGATGGTCTTTTGCAGGTCGATGATGTAGATATCGTTTCTTTGAGTGAAGATGTATGGCTTCATCTTCGGATCCCATCTTCTAGTTTGGTGACCAAAGTGTACACCAGCTTCAAGCAATTGCTTCATAGATACAACTGACATAAATAAATTCCTCCTAGGTTATTTCCTCTCAAGCGTTCATTTCAGCATTCAACCGTTTGTCTTTAGGCACCTGAACACCGATCGCTCTTGATGTGTTTTCTAGCGTGCAATCGCACGTTTATCTATCATACTCGATTTTTCCTTTAAGCGCAAGCTTTTCCGCCTAAAATTTAACCCCTTGCTCGTGCAAAAATTTTTCCTTCCAGGCCCGGTCATGATGCTTGAACCAATATTCCCGCTGCATGGCCGTCCGCTTGTCGGCATATTCTTCAAGATAGATCATTTCAACCGGCCCCCGGCTCTTGGTGTACTTGGCCCCTTTACCAGAATTATGAGCCCCCAGCCTTTTCTTTAAATCATTGGTGTAGCCGCCGTAAAAGCTGCCGTCGCTGCATAAAAGAACATAAAAGTAATGCTTTTCCTCTGGCAATTTGGCCTCTAAAATTTCCTTGATGGCCGGGGTATTGCTGCCGTCTGCCTCATGGACTTCGATAGCGTCGCGCAGAACCAGCCCGTCGCCTTTCCCGCTTCTGACCGCTTCAACGATGACTAAATTGGCGTCTTGCCCTCTTCTGGAGACAAAGGGCTGGACAGTCTTAACGGCCAGGTCATGCTTAAATCCGTAATTGATGATCTCACCCAGCCGCTCTGGCCGGTGGACCATGAACATCTTCCCCTTCATTTTCAAGAGGCCGGCGGAAACGGCGATGATTTCTTCCAGGTTGATCTCCAGTTCATGGCGGGCAATGGCTTTAGACCGGTCCGGGTTCAGCTTGTGGCCGGCCGGGGCCTTGAAATATGGCGGATTGACCACGACGACGTCATAGCTGTCTTTTCGCAAAAAGCTGCCCGCGTCTTTGACATTGCCCTGGTGGACCGTTATCCGGTCCTGCATGTCGTTTAATTCAACCGACCGCCGGGCCTTGGAAACGATGTCTTCTTGCAGTTCAACATCGTCGTAATGGGCCTTGTTAAAAGCAGCCATGTAGAGGCTGGCTGCCGCGTTGCCGCTGCAGAGTTCAACCACCTTGGACCGGTTTTTGATGGCTTCTTTGGCCCAGTAAGCCAGAAGCAGGGTATCCAGGGAAAAGGCAAAAGACTGCCCGTCCTGGATGATTTTCAGCTGATCGCCCAGCATGTAATCGATACGTTCATTTTCTTTTAGTTCAATCATGTAATTCTGAAGCCCGTCCCTTATTCTTAGATGTGTTATAATTTATTCTACATCATTTGGAGGTTCTTTTATGCTTTATCGTATTTTCAGACCGATCGCCCGCTTCATCGTCTGGGTCTTAAACGGCCACCTGCATGTCCACCACAAGGAAAGACTGCCCGAAGGCACCTACATTTTGGTTGCCCCCCACCGGAACTGGTGGGAGCCGATTCTTTTCGCCCTGGCAGCCAGCCCTACGGAATTCATGTTCATGACCAAGCAGGAGCTGTTTAAAAATCCGGTCCTCCGCTGGATCTTAAACAATGCCCACGCCTTCCCGGTCAACCGGGAGCATCCAAGTCCTTCCGTTATCAAGATCCCGGTCAAGGGCTTAAAGTCAGAAGGCCTGTCTTTGATCATGTTCCCATCCGGCACCCGGCACTCAGCCTCCCTTAAGTCCGGCGCCCTGGTTATCGCCAGAATGTCCGGCCGGCCCCTGCTGCCGGCTGTCTACCAGGGACCGCTTACTTTTAAAGGGGTCTTGCAAAGAAAAGGAATAGAAATCAACTTTGGCAACCCGATCGTCATTGACCGCAAGACCAAATTGACCCCGGAAACCGAAGCTGCCTACAACCAGCAGCTGGAAGACGCCTGGAAGCAGATCGACCAGGAACTGGATCCGGATTTCCACTATGAAGCTAAATAATTAAAGATGACAAAACAACAAGAAAAAGGATTGAGCATGGACGCTCAATCCTTTTTCTTTATGCTTTTTTACTGCTGCTTATTACTTGTTATTTTCCAGGTATTCCATAATCTGGACGGCGTTGGTTGCCGCCCCCTTTCTGATCTGGTCGCCGGTGCACCAGAGAGTAAGGCCGTTAGGGTTGGTCAAGTCCCGGCGCAGGCGGCCGACTTGCACGATATCCTTGTCGGAGTTTTCTAGGGGAGTTGGAGTGTGATCAGTAACCAGGAGGTCGCCGTCAAAAGCCGCGATGGCATTTTCAGCAGCTTCAACTGAGACCGGTTCTTCAGTGACAACCGTCACCGCAATTGAGTGGGACCGGTAGACCGGTACCCGGACGCAGGTGCAGGTCACCAACAAGTCTGGCAAGTGCAAGATCTTTCTGCCTTCATTCTGCATCTTCATTTCTTCAGTCGTATAGCCGTTTTCCAAAGGACTGCCAATGTCAGCGATGACGTTAAAGGCGATCTGGGCCGGGAAGACCTTGGCTTCCACGCTCTCGCCCTTGGTCAAAGCCGTCACTTCATCCTTCAGTTCGCTGATCCCGCCCATGCCGGCACCGGAAACGGCCTGGTAGGTGCAGGCGTTGATAGCCTTGATCGGAGACAACTTGGCAATTGGAGCCAGAGCCATCAAGGTAATGGCAGTTGAACAGTTGGGATTGGCAATCACGCCGTGGTGGTCTAAAGCATCTTGGCCATTAATTTCAGGAACTACCAAAGGCACGCCGTCTTCTTGCCGGAAGGCTGAGCTGTTGTCAATGTAGACTGCCCCGCTCTTTTCGACCAGGGGCCGGTATTCCTTAGACAGGCTGTTAGAAACTGCCCCCAAAACGTAGTCCAGGCCATTCAGTCTTTCCTGGCTGACCACTTCCAGGGTCAATTCCTGGCCAGCAAAGGGCAGCTTTTTACCCTTGGAACGCTCGGAAGCAAAAACGCGCAGCTCTTCAACCGGCAATTGTCTTTCTTCAATACATTCCAACATCTGCCGGCCAACGGCCCCTGTAGCTCCTAAAATACCAATTTTCATTTATCGTTCCACTCTTTCTTCACTAATAAACTGCTGATAAATCGCCTTGATTGCCGGCACCAGGTCCTGGTTGTTGACCCCAATGACGATGCTTTGTTCATCGCAGGCCTGGTTGATGGTGCGGATATTGATCTGCTGGTCACCCAGTGTTGACAAAATTTTGCCCGACATCCCCGGCATTTGCCGCATGACCCGGCCAACCACGGCCAGCATGGCCTGCTGGCTTTCGACCTGGATATCGTCCAGGTGCAGGTCCTGCTGTAATTCCGCCACGATCTCATAGAGATAGCGCTCGATTTTCTTGGTCTGGACCACAATGGAAAAGGTATCGACCGTGACCGGAACGCTTTCAATCGAGATCTGAAATTTTTCAAAAACGGCTAAGACCTTGCGTAAGAAGCCTGCCTCAGCTGAAACATGCGACTTAACCATGGTGATGACCGTAAAGTCCTGCTTGCCTGTAATCCCGGTGATGACATGAGGCGGCTCTTGCGCGTCAAGTTCACTGCAATCATTCATGATCATGGTGCCGGGATTTTCCGGATGATTGGTGTTGCGGACATTGATCGGGATGTTTTTCTGCCGGACGGGAAAAACCGCGTCGTCATGCAGGACATTGGCTCCCATATAGCTCATCTGCCGCAGTTCTGAGTAGGTAACCCGGGGAATCTGGACAGGATCTTTGATAATGCGCGGATCGGCCACGTAAAAGCCCGAAACGTCAGTCCAATTTTCATAGACGTCAACGTCAAAGGCATTGGCCACGATTGACCCGGTAATGTCTGACCCGCCCCGGCTCATGACCTTAATCACCCCATTTGGCAAAGAACCGTAAAAGCCGGGGATCACCACCCGCCGGCCCGGGTCAACCTGGGCTTTTAACAGTTCCTGGCTTTTATCGAGGTCAATTGAGCCGTCATAATGGAAACGGATCACCTGGCTGGCGTCACGAAAGTCCGCGTCCAGGTATTCAGCCAGGCAAAGGCCGGTCAAGTATTCGCCCCGGGAAACCAGGTAGTCCAAGTTCAAGTTCTGGGCCATGTTCTGCCGGATCTTGGCGAATTCTCCAGCCAAGTCGATTTTAAGGCCCAGGCTGCGCTTGATTTCCATGTACTTGTCCACGATAGACTGGAAAATCGACTCATAGCTGACGTCATAGGTAATGTGGGCCGCGCAGAGGTAGAGGAGGTCGGTTACCTTATGGTCCTCCTGCCCGCTCTTGCCGCAGGCGCTGGTCACCACGTACTTGCGGTCCGGATCAGCCAAAATGATTTGCTTGACCTTCTTAAACTGTTCGCTGTTGGCGACTGAAGAGCCGCCGAATTTGACTACTTTACTCATCTGCCACTCCCGCCAAAAAGGCCGCCGGGTCCCCACTTTCCTTGACCAGGCTTGAAATTTCCGCCAAAGTCAGCTTTTTGGTCAAAAATGCCTTTTCGCTGATTCTTTCTGCTACTACATCCTGGAAAAAATCCGCCCGGTTAGTCCGCAGGTAGAAAGTCTGCTCTTCTTCATCAGTCAGCTGACCCGGTTCAGCACTTTGCATGATTTCCTTTTTCCCTTCAGCCAGATCCAAGAGGTCTTGAACAGCCGCGTGGGCGGTTGGCAAAGACCCTGCCCCCTGGCCCACAAAGGTTGCCGGACCCAGGGAGGCGGAATCAGTTTCCAGGGCATTGAAGTTAAGGCCCACTCCGGCTAAAAGGCTGGTCTTTTTCAGCATGACCGGCAAAACCTGCAAGGACAGCTTCTCACCTGCCTGCCGGCCCCGGCCCAGCAACTTGATGGTCCGGCCATTTGCCTTGGCCCAGGCAAAGTCTTCCTTGGTCAAATGCCGTATCCCCCACTGGTCAACCTGGCTTGGATCAGCAATTTTGCCAAACGCAGTCAAGGCTGACAAGCAGACCTTGTAGCAGACATCCCCGCCGTCGATGTCATCGCTGGGATCCTTTTCCGCGTAGCCCAGCTCCTGGGCTTCTTTTAAGCAAGCAGCAAAGTCCAGGTCCTTTTCTGCCATCTGGGAAAGGATGTAGTTGCTGGTCCCGTTAAAAATTCCCTGGAAGGCCGTGACCGGCTCCAGGCGCTGAATGTGCTTGATGTTGTCAATCCAGGGGATGCCGCCGCCAACGCTGGCCTCATAGGCCAATACCAGGCCCTTTTGCCTGGCTAAGTCAAAGAGCTCGCCGGCATAGACCGCCAGCATCTTCTTATTAGCCGTCACCACGTGCTTGCCGGCTTCCAGGGCCCGCTTAACATAGCTGTGGGCCGGTTCTACCCCCCCGATGCACTCGCAAACCACTGAAATTTCCGGATCGTTCACGATTTCCACAAAGTCAGTTGTATACTGGTCATCCAGGATCTGTTCATCTCTGTGAACCAGGATTTTTTTAATTTTAATCTTCTGCAAAAGCGAAGTTTCAGCCTCTTCAACCAGCTTGACAATGCCGCCGCCAACCACGCCGCAGCCCATGATTGCAATTTGCATACCCGCCTCCGTTGTTTCTAATCTAGGGACACTTGTTTTTTAATTAAAAACATAGTATCATTATACGCAAGGCTTGACAAGGGAAAAGTTACTTATTATTAAGTAAAAAATTAAAGCAATATGTCAAAGGAGAATTTGCCATGGCCGACTATTTTTACGTTCATAAAAAGATCCTGCCCGACTATCTGGAGAAGGTCCTAGAGGCAAGGGAAATGCTGGACAGCCGGGAAGCAGCCACCGTCACCGAGGCGACTGAGCGGGTCGGCATCTCCCGCAACACTTATTACCGCTATAAAGACTATGTTTTTAGAGCCAAGGACCCTGCAAGGGGCCAGCAGGCGGTCTTGTCTCTGCTTTTAGCTGACCTTCCTGGGGCCCTGTCAGCCGTTTTGACCTGCGTAACCGACCACCGGGCCTCGGTTTTGACTATTTCCCAGGCCATCCCTTTGGCCAGCCACGCCAGCGTCTTGATGTCCCTGGACCTGGCCGGCCTTAAAGGAGACATCAACACCCTTTTGGCTGATTTGAAAAGTCTCCCCTTTGTTAAAAATCTCCAGCTTGCCGGATTAGAATAATAAAAGAGCGCGTCTTCTGGGCGCGCTCTTTTTTGTCTTAATTCATTCTTAGTTTTCCCGGTTTTGCTGGAGGGTGTAAAGGTCATAGTAGTAGCCCTTTTGGGCCAGCAAGTCCTCGTGCTTGCCGTGTTCGACGATTCTCCCCTTGTCTAAAACAATGATCTGGTCAGCATCAGCAATCGTTGACAGGCGGTGGGCAATAGCCAGGGTCGTGCGGCCCTGGCGGAGCTTTTTGAGTCCTGCTTGAATCAAACTTTCTGTTTCCGTGTCCACGTTGGCCGTTGCTTCGTCCAAAATCAAAATCTTAGGATTGGTTACCAGGGTCCGGGCAAAGGAAATCAGCTGTCTTTCCCCGCTGGAGAATTCCGATCCGCCTTCAATGACCTTGGCATGGTATTTCCCAGGCAATTTTTCGATAAAGCGGTCAGCCTGGACAGTTTTGGCGGCTTCTTCAATCTGCTCATCAGTGATCTTGTCATTGTACAAGCGGATATTGGAAGCCACGTCCCCATAGAACATGAAGGGTTCCTGGAGAACCAGGCCCATTTTTTGCCGTAATTCTGCCTTGGAAAAGTCCCTGATGTCGGTCCCGTCCAAAAGGATCTGGCCCGAGTGAAATTCGTAAAAGCGCATCATGACGTTGATGATCGAACTCTTGCCTGAACCCGTGTGGCCAACGATTCCCAGGGTCTCGCCTGGATTAAGGGTGAAGGAAACATCGCGGAGAACGTCATGCTTGCCGTCATATGAGAATGACACATGCTTAAACTCAATTTTCCCTTCCGTAATCTTGGCGTCGGCCAGCTCTTTTTGCTCAGGCTCGTATTCTTCCTGGTCCAAAATCTTGAAGATCCGCTTGCCAGCCACGATCCCGTCGGTAAAGAAAGTCAGCGAGTTCATCATGTCCGACAAGGGGTTAAAAAAGTTCTGCACATAGTTTGCAAAAGCATAGATCATCCCGGCCGGGACAAAAGTTGCCCGGAGGGGGTAACCGAACCAGACCAAAACGCAGGTTAAGGCCAGCGAATAGAGCAGGGTCGTAAACGGCGACAAGAGCAGGCCGTTGGTTCTGATCAGCTTGAAGCGGGTCTGCATCTGCTGGCGGTTGATTTTTTCAAAATCATCGTCTATCCGCTTTTCCTGGCGAAACTGCTGGATCACGGAAATTCCGGCAATGCTTTCTTCCAACTTGGTGTTGATCAAAGAGTTGCGGGCCCGGTATTCGTGGTAGATTTTGGAGTTGACCCGGTTATAAAGCCAGATTGCCCCAACGATAAGTGGAATAAAGGCCGTCACGATCCCCCCGGCCACCGGGTCAGCCATATACATAGCAATCAAGGCGGTTACCATGGAAACGATCCCTAACAGAAAGGCAGAGAAAACCTTCATAAAGTTGCCCAGGGTCATCGTGTCGTTGGTTACCCGGGACAAAATCGACCCGGCTGGAGTCTGGTCAAAATACCGCATCCCCAGGGTGTGAATTTTTGCATAAAGGACCCGGCGGACCTTTTCCAAGGCCTTTTCCCCGGCCAGGGCATAAAGGTATTCATAGGTAAATTGGCAGACCGCCTTAAATACCACGCCAATGCCGTAGATCAAGGCAACATAATAAACCGTGCTGAAGTCAACCTTGCCCGCCTTCAAATAGTGGTCCATGTAATACTGCAGCCAGGTCGGCAAGAGCATATTGATCGCGGAAACTGCCACCATCCCTAAGACGGCAGTCAGTAATTCCCCCTTGTAAAGCCAAACAAAGGTCCAGAGCCGCTTTAAAATCTGCCCCTGCTCTTTGGTCGAAATTGGCTGCTGCCAGACTGACTGGAAGTCCTCATTATTCATCGTCATCTTCACCTACCTTCTGGGCTAATTCCTGCCGCTGCCACATCTGGGCATACCAGCCCCCCTTGGCCAGCAATTCTTCATGCGTACCTCTTTCTGCCACCTGCCCGTCCTGCATGACCAGGATCAAGTCAGCATCCATTACGCTGCTTAAGCGGTGGGCAGCGATGACGGTAATTTTCTTTTCCCGTTCTTGCCGAAGCTTAGTCAAGATCGCCTTTTCAGTTTTGGCGTCAACAGCTGACAAAGCATCGTCCAAAATCAAGATTTCACTGTCATGAAGCAGGGCTCTGGCAATCGACATCCGCTGCTTTTGACCGCCCGACAGGGAAACCCCGTTTTCCCCGATCATGGTCTCATAGCCATTTGGAAAGGCCAGGATATCGTCGTGAATGGCGCTCTTTTTAGCCGCCGCTTCGACCTCTACCTGGCTGGCATCCGGCTTGGCAAAGGCAATATTGTCTCTGACCGACATGGAGAAAAGGAAGTTGTTTTGGGGAACGTAAGATATTTCTTTTAAGTAGACGTCCAGGGGAATCTGCCGGATGTCGTGGCCGGCAAAAGTGATCCGGCCCTTGTAGTTATCAAACTCCCGCATCAAAAGCTGAATAATGGTCGTCTTGCCTGAGCCAACCCGGCCAACCAGGCCGATAGTCTGCCCGTTTTTCAAGTCAAAGTCCACTCCCCCCAAGGCAGCCTTGTCTGGTTCATCCGGGTAGGCAAAACTGGTCACGTGATAGCGCAAATCCCCAGTCAGCTTCTGCTCCTTGTCCATTGAATCTGAGTCCACGATCAAAGATTTTTCATTGAGCAGGCTCATAATCCGGTCGTAGCTGGCACTCCCCCGCTCAAGAACATTAAACAGGTAGCCAATGGCAAACATTGGCCAGACCATGGCCCCAATGTAGGACAGAAAGGAAATCAGCTGGCCCAGGCTGATCGATTTGCTGAGAACCAGCCGGCCACCGTAGATGATGGTAATGATGTAGGTAATCCCGATGATCATGGTAATCATTGGGTCGTAGAGTGAGTCGATCCGGAAGACCTTTTTATTGATATCTACCGTTTCATAGGTCATCTTGTTAAAAGCTGCCGCATCCTCCTTTCCCTGGCCAAAAGTCTTCAAGACCTTAATCCCAGACAAGGATTCCTGAGTCTTGTTGTTCAAGCGGGAAAAGGCCGCCTGCGAATCCATATAGGCGTCATGCAGGCGATCACCCAGGTAGCGGGCACAGAAGGCCAAAAGGGGCAGCGGCAGCATGGCCGCCAGGGTCAAGCGCCAGTCTACCAGGATCATCATGGCCAGCAAGGTGGTCCCCCCGGTAAAAATCGCGTCGATCAAAGTCAAGATCCCGTCACCTGCTACGTTCTGCACGGCCTGGACGTCATTGGTTGCCCGGGCCATCAAGTCCCCGGTACGGTAGCGCTGAAAGAAGGTCCGGTCCATCTGCATAAAATGCCAGAAGAGCCGGCCGCGGAGTTCTTTTTCCAAAATCGCCGCTCCGCCGTAAATCTGCTTGCGCCAGAAATAGCGGCAGACATAAAGGGCCAAAGCCGCCAGCAAAATTGCCAGAACATAGCTAAAAAATTGCTGCCAGCTGATTTTCCCCGTATCCAGCTGGTCAGCCATCATGCCCAGGATCCGCGGCGAGACCAGGTTGGCTGCCGAAGTCAGGACTAAGGCCGTGATCCCTAAGGCGTAGCGCTTGCGGTGGGCTTTAAAGAACCAGCCCAGCTTGCTGAAAGTATCCATTTTTTCTCCCTCTTTTATTTCGGTTTTATCTTTTTTTCCTTCTTTTCTAATCCCCCTAGCCCGAAAAAAAGAGCGCCAGGATTCCCCTAGCGCTCTATGGCTGACTAGACTAGTTCTTGGCTGCCTGGTGCTTGATCATGTTCATCACTTGGTTGACCTTCTTGGCTGAAGGCTTCTGGCCCATTTGTGACATCATGGTTTCAACCATTTCCCGGGTAATCGGGGGATTCTTCTTAAAGTAGTTCTTCATGTAAGTCCGGGCACCGTAAAAACCAGCAACCGCACCCAGAAGAGCTGCCAAAATAATCAAGAAAATCGCCAAACCTAAATTCATTGTCGCTAAACCTCCATTGGTCTTAATTTGTTATCCGCCTCAGCGGAGATGCATTCGTTAGTCACACAAATACTATCTTACAAAACTTCAGACCAATTTTAAAGGATAAATCTTATCTGAGAACCTTTTTCTTCTGAATTTGCTTGGCTTTATCCGGCGTAACGTCCTTGCCTTGATCGTCAACAATTACCAGGCTGTCCAGCTGCTGCTTGAAACCTGCCCGGAAGTTGGCGATAAACTGCTTGTGCAGTTCTTTGCGTTCAGCCTCTTCAGCCTCCGTCAAGCCGCTTTCCTGCTTCTTCTTGTATAATTCATTGATTCTTTTTCTGACTTGATCTGCTTCTGTCATATATATATCCGCCTTTCTAGTGATAAGAATAGTGTACTCGCTTTGCAAAAATAAAAAAAGTTTTAAGCCCAGAACGCCCGTTTGCAAACTTCCCGAATATTTGCTAAAATAAATAATAATCGACAATAAGATTTTTGACGAAGGAAAAGTAACTATGGCAACTCACGACTCAAAACAATTAGAAATTCTGCAATACATCTACGATACCGTTGAAAACCGTGGCTTCCCGCCGACGGTCCGGGAAATCTGCGCGGCAGTTGGCCTGTCTTCAACCTCCACTGTCCATGGCCATTTGACCAGACTGGAGCGCAAGGGCTACCTCATCAAGGACGCCACCAAGCCCCGGGCTTTGGAAATCACCCACGCCGGCCTTGACGCCTTGGGCATCAAGCCTAAAGACATTCCAGTCATCGGGGTTGTTACCGCCGGCCAGCCGATACTGGCTGTCCAGGACGTGGAAGATTACTTCCCGCTTCCACCGAACCTGGCCAGTGATGCCGGTGAGCTCTTCATGCTCCGGGTACACGGCACCTCAATGATCAATGCCGGTATCTTGAACGGGGACTATGTCATCGTCCGCAAGCAGACCACGGCCCAGAACGGGGAAATCGTGGTCGCCATGACTGATGACGGGGAAGCAACAGTCAAGCGCTTCTTTAAAGAAGACCTCCACTACCGCCTGCAGCCGGAAAATGATGCCATGGATCCAATTATCTTGAACCATGTACAAATTTTGGGCAAGGTCGTCGGTCTTTACAGAACAAATATTGATTAATACAGTTTTGCCGGTCAGCAAGCTCGATTAGCTCATATTTTTTGAAAATATGTTTTGTTTTATGCAAAGCATCTTTTCCCTTTTAACCGTTTTCTGAAAGCGGTTGACATTTTCATAGCGCTTTCTATTGCTATTTTCCTAAAACTCCGTTAATCTAATAACTATTCGACAAATTATTAGTTAAAGGAGTTTTCAATTAATGAATATCATCATTGCCTTACTGCCAGCCATCGGCTGGGGGGTTATGCCTTGGATCGTCAACAAGGTGCCAAACAGCAAGCCGGCCAACCAGATCTTCGGCGTTGGCATGGGGGCGACTATTGTCGGCATCATCGTGACTTTAATCCAGCATCCGGCCATTTCCATGCCAGTTTTCTTCCTGTCCCTTCTGTCCGGTGCTTTATCGACGATCGGTCAAATCGGCCAGTTCATCTCCTTCACCCGGATCGGGGTCAGCAAGACCATGCCGTTCTCAACTGGCCTGCAGCTGGTCGGCAATACCATCATCGGGGCTTTGATCTTTGGTGAATGGAAGACCAGCAACAACTTTATCTTCGGGATCATTGCCCTGGTCATCATCATGGTCGGCGTCATCTTGACCGCCTACACTGAAAAGGGCAACGGCTTCACTCAGAAGACCACCAACAAGGACATCCTCTTCCTGGTCTTGACCACGATCGGCTACCTGGCCTACTCTGCCTTCCCGAAGACGATTACGGCAGACGCTGAATCCATGTTCCTGCCACAAACCCTGGGGATCCTGCTGGGGTCTGTGATCTACCTGGCCTTCAGCGGCAACAAGGCTGCCTTCAAGGAAAAGGCCAGCTACCTTGACCTCTTTGCCGGCATCAGCTTCGGGATTGCAGCTTACGCCTACATCATCTCCGCTCAAGTCAACGGGGTGACCAACGCCTTCATCTACGGCCAACTGAGCGTAATCATCTCCACTATCGGCGGGATGACTCTGCTGGGCGAACGCAAGCAAGGCAAGGAACTGGTCGCAACGCTTGCCGGCCTCTGCTTGATCGTTGTCGGCGCTATCCTTTAAATCTAAATCAAAATACTAAAATACAAATAATTTACGTGCTAGCTAAAAAGCTAGGAGCAGATGCTCCTAGCTTTTTACTTTTTGTATTAGTTTTTCCGTCTTATTGAATCTTAACCTTCTGGCTTTCTGCATGTTTGACGTCAAAGCCGGAGACCTTGCCGAACCACTTCTTGACCAGCTGGTCATATTTTCCGTTGGCCCGCAGCTGCTTTAAGGCCTGATTGATCGCCTGGCGCATTTCGGTCTGGCCCTTTTCAACCCCGATGCCGTATGGCTCCTCAGCTAAAGAGGCCTTGGTCAAGGTGAATTCCGGGGTATCAGCGATCAAACCAGCCAAAATCCCGTTGTCGTCGATCATGACATCCCCTTGCCCGGCCTTTAAGGCGTTGAAGGCTGACCCGTAGTCGTCAAACTGCTTGACGCTGGCCTTTGAAGCCAGCTTAGCCACCTGGTTGGCCACGTCGGTCCCCTTGATGGCAATAACCACGACTCCCTTTTTATTCAAGTCAGCAATGCTTCTGATCTTGCTGGACTTCTTAACGATCATGGATTCGTTGGCGTTAAAGTAAACGTCAGAGAAGTCGATCACCTTCATCCGCTCCTTGGTGATGGTCATGGTTGAAATGACGGCGTCCAGGGAGCCGTTGTGCAAAAGGGTGATCCGGGTCTTTTCCGTGATCGGCCGGAAGACAGCCTTGCTTTTAGGGCCAAGGATCTGCTTGGTGATGGCCGTAGCCAGATCAATTTCAAAACCTTCGATCTTGCCGGTCTTGATGTTGGTCAAGCCGAACAGCTTGGTATCTGGCCGGACCCCCCAGGTTATCTGCTTAGACTGCTTGGCCCGGGCATAGCTGCTCTCCTGCTTGCTGGAACAGGCAGTTAGGCTGGTCGCTAGCAAAAGCAGCAGACTGCAGGCCAATGCCTGGATGATTCTCTTGATTGTTTGCGGCTGTCTTTTCATGTTTTTCATGTTTTTCATATTTTTCATCTTGCTATCATATCGGATCTATAAAATATTATACCCGATATTTTAGAAAGTTTCTTTTATTTATAATGAAAGTCTCTTTTTCTTGCTTTATTAAGTAGAACTAGGCTTATTCTTTACGAAATTAGTTTTTTCCAAAAATAAAGCCTTTTCCCAGAACTTTTCTCCATGAAAAAATTTAGATTAAAATCAGCCGTAGTCGACATTTTTCATGGCTGACCACTGCTTGCCCAGGCTTTGCCCGGCAATTTCAAAGGCCAAAAGTTGCTTCAAGTCAGCAAATTTTTCCACCTTCATCTGCCCGCTCTTCTCCAAGCGCCAGGTGAGCTGCCGGTAGACCTTTCGTTCACTGGACTGGACCAGGCTGTACTGGCGGCCGGCTAAAGAAAACTTAATGTCGCAGCCGTCTTTAATCGCCTGGACAAATTCCTCCAGGCTGTCAAACTGCACACTCCAGACAGCTACCTCGCTCATCTGGGGCCAGCAGTCAGCCAGGGACTGACCGCCTATCTGGCAGGTCAGAAATTCCTCCGTATTGGCAAAAAACTGCTGCTCTTCAGGCAAATCACAGTTGATCAAGGTCTTGCTGGCCGGGGTCAAAGGATTGCCATCATCAACTAACAGCCACTGCTGGCCGTTTAACTTAAAATGTATCTCATCGCTGTCATCAGCGGCTGTTTCTAATTCTTGAAAACTGGAAATCGGACGCTTGCTTACTGACATAAATGTCCTTTCTAAAAAATCGAGATTTGATTATTAGACATTATTATACATCTTTTTTAAGCCATTTGTCTCGTAATCTCTCCGATTGCCCGCCGCATTTCAGTCAAATCCAGGACACTATAGGCAAATTCTTTTCTGACCAGGTCGTCTGGCAGGTATTCATCATACTTGTCAAAAACCGGCACTTCCTTTGGATAGAGCAAGTCCAAAGGGTCAAAGTCTTTAGCGGCTTCTTCAGTCAGAATCTGGTAAAAGTCTCCTTCACTGACATCCATGCTGAACTGGATGTAGTATGGCCGGACTGAGTCAATATTCTTAAACCCTAAACGGCTGGCACATTTCAGGCGCAAGAAACGCTCTAGGGCCAGAAAAGCATAAGAACCCGTCCAAGGGAAAAGGCAGTAGGTCTTAGCCCCCAGGTTAATCAGCTGCTTATCTGGCAGGCCAGCGGCTTCCGCCATTGCTCTCGTTTCACTCAAGCGGGCAGCCGCGTTTTTCATCAAGTAAGGATACTGCCTCTTTTCTGCCAGAATTTGCCGCATCTGCTGGAGGACTTTGGGATGGATATCACCGGCTACATCCCCAAAATATGCTGGGATCTGGCCTTTAACCTGGTGGACGTAGACCTGCCGGCGGCGGCGGTCGATTTCTTCAACCACCCAGACATGGCCGGCGATGGCGATTTTTTCACCCAAGGGCGGGGGCTTAACGATCGTCCCCAGTTCTTCTGACTCAGCGTGGACGCTGTATTCCTCGTTTTCCTGGAAAACTGCGTAAAACTTGAAATTGTTGGTCACCCGCTCGCCGGCTAGGCCGACGATCAAGCCGCCATTTTCCGTCAGCTGGATCTGATCGGTCTTGATCAAGTGGCGGAGCAAAACTCTATAGTCATCCTGGCTGACCCAGCGGAAGTACGACAGGGTCAAAACCCGGGAAGCAAGTTCTGCCGGGCTCATCTCCCCGCCGGCCATCAAAGTAGACATGGTCTGGTGGTAAAGGAGGCTGTATGGCAATTGGTGGTCTCTTGGCGGTTCAACCCAGCACTCTTGTAAATACAGCTCAACTAAGGCAATCCCCTGCAGAAGCGACCAAGGAAGCAAAACTGGCAGCATGTCCCGGCTTTCAGCCTGTTCTTCGCGCATGACAAACCACATTTCTGCCGGATTGCCCCGCCGGCCAGTCCGCCCCATCCGCTGCAAAAAGCCGGAAACGGTAAAGGGCGCTTCAATTTGAAAGGCCCGCTCCAGCTGGCCGACGTCAATGCCCAGTTCTAATGTAGCCGTCGCGCAGGTCGTAATATTGGCATCTTCGTCTTTCATGATAGCCTCTGCCCCCTGCCTAAGGGCCGCGGACAGGTTGCCGTGGTGGATCATGAAGCGGTCTGGTTCATGCTTATATTCGCAATATTGCCTTAGAACCTGGCAGACAGCTTCACATTCTTCCCGGCTGTTAGTAAAGACCAGGCACTTTTTGCCCCTGGTATGGTCAAAAATATAGGCCAGGCCCGGGTCAGCTAATTCTGGTGCCTGATCGCTGGCTTGATCCAAAACAGCCTGGGCCAGCAAGGCAGAATGGTCGCCAGCCTGGTCACCGCTTTTATAGAAATGCTCCATTGACAAGTGCCAGCGCTGTGGCCGGCTTTTTACCTTAGGAATCCTGGTCTGATGGCCCGATCCGTCCCCTAAAAACTGCCCAGCCGCTTTCGGGTCCCCGATCGTAGCTGACAGGCCGATCCGGCGGGGTTTAACACCAGCCAACCGGTTTAAGCGCTCTAAGAGGCAGAAGGTCTGCCCGCCCCGGTCGCTTCTTAAAAAGGAGTGCAACTCGTCGATGACAACATAGCGCAGATCACCAAATAAGCGGGGAATATCCGCGTGCTTGTTGATAATCAAGCTCTCTAAGGATTCCGGCGTTATCTGCAGGACCCCCTGGGGCCTTTTAAACATTTTCCGCTTTTGAGCAGCCGAAACATCCCCATGATAGCGCCAAACCGGGACATCACTGCCTTCACAGATGTCTTTAAGCCGGTCATACTGGTCATTGATCAAGGCCTTTAAAGGGGCAATATAGAGGCAGGCAATAGAGTCAGCCGGATTTTCCGCCAAATCTGTCAAGATGGGAAAAAAGGCTGCTTCGGTTTTCCCGGAAGCAGTCGAAGCCGACAAAAGCAAATTGTCGTCAGTATCAAAAATCACCTGGGCCGCAGCTGTCTGCAAAGGCCGCAGGGTCTCCCAACCCCGGGAATAGATATAGTCCTGGATGAAGGGAGCATAGCGGGAAAAAGTATCCATAAAAAACTTCCCTAATTAAAACTTAAATCGTAAATTCCGCAAAGTCGCTGGTCTTTTCATCAGACACGGCGTCTGACTTAGTGTAGGCAAAGTCCCCGTCTGTCAAAAGACTCTGCACGGTCTGACCAGGATTTTGCAAGACAATGTCCAGCAGCTCGATAAAGTCCCGGATGATTTCTCTTGGGGTGATCATGCTGCTCGTACCAACTCTGGCATATTCAATCTTGATAAAGTCAGCCAGGTCCTTTTCGCTGATCGTCCGCTCATAGCCATAAAGGCTGGCATGCATGTCGGCCAGTTTCTCCGTTAAAACCAACATTTCTTCTGCCGTCAAGGGTTCCAGGCGGATCACGGGAGCATACAGGTCCCGCTGCCCTTCCTTGGCAAACTTGCCTTCGGCCAGGCGGGACCTGAGGGCTTCGTAAGAGTAAACGCCCCGCCGCCGGTCTTCGACTGCCTGGGGCGTGGCCCCCATAATAATGCCTAGGTACTTGGCCTTGCCCTGCATGGCGTCATTGTACATGCTGAGCAGCTTTTCATAGTTGTACTGGCGGGAGATGGCGTTAGGAATCTTGTAGAGGTTGACTAATTCATCGACCATGATAAACATGCCGCTGTAGCCGGCCTGGCGGAAGAAGACGGCAAAAAGCTTCAAGTATTCATACCAGTCTTCCTCAGAAATAATGATATTGACGCCCAGATCCTGCTTGGCTTCTGTTTTCAGCCGGTATTCCCCTCTAAACCACTTAACCACCTTACCCTTGGTATCCTCGTCGCCGGCCAGGTAGGCATGGTAGTAGCGCTCTAACAGCTGAGCAAAGTCATAGCCGTGCACCATTTCGCTCAAAGAGGAAATCTGTCTGACGATCTTTTGGTCAACGGCTGTCTGAAAGCCGGGGTCATCAAAAGGAATTTCACTGGCTACTGCCGTCTGGACATTGTTGATCCAGCGGTCCAGGACTAAAGTTAAGGCTCCGCCTTCCGGCCGGGTCTTGGTGGCCAGGTTCTGGATCAGTTCCCGGTAGGTGGCCAGGCCCTGCCCCTTGCTGCCCTGCAGGCGGCGTTCCGGGGACAGGTCGGCATCTAAGACTATAAAATTTCTGTCCATCACATAGTTGCGGATGGTCTGCAACAAAAAACTCTTGCCTGACCCGTACCGGCCCACAACAAAGCGGAAGGAGGCCCCGCCTTTTTTGACTAAGTCAACGTCGTGTAAAAGGGCCTCGATTTCCGCCTTCCGGCCCACCGTGATATATGGCAGGCCGATCCGGGGCACAACCCCGCCTTTAAGTGAACTGATAACCGTTTGGGCAATCCGCTTGGGAATCCGTTTCTTTTGCTCCACTATTTCTCCTCAATTCCTAATAAGTCAGCGAGATCGCTCCGATAATCTTCCACGATTTCTGCCTTCTGGCCATCGCAATCGATTACGGCATCGCCGATTTCGTCAAAAATTTTCTCATTAATCTGGTCCACGACCACGCTTAAGAGCAGGTGCCGCTGGAGTAAAAAGTCCTGGTAGGGCTGGCCGGAAAAAAGAGCCAAAAGCAGCTGCTCTTCATTCTCGTCTAAGCCCAGGCCGCTGGCAGCCGTTTCATCAATGTCCTTCGTCATCTTTTCTTCTGTAGCAGAAGACTCAGATACTTGCTTATTACTCTCGCTAGTGATTCTCTCAGCTTCTTCGGCCTCCAGCTGCCGCTCTTCTTCAGTCAGCAGGCTTTCCTTGGTTTCAGCCGCGTCGGACCGGATCTGGTCCAAGCTGGCTAGGTTGATCTTAACCTTTGGCCGGGCCCTTTCTATCAGAATTTCCTGGTAGTCAGCAATTCCTTGCACGATTGCCTGCTTAAAAGCGGGAGGAAGGTCTTTTTCTTTTAAGGCCCGCCCCTGCTTAAAGGCCTGCCGGCTCAAGCGGTCAAATTCATGCATGAAATTGGCCAAAAGCTGTCTCTGCCGGCCGGAAGGCCAGTAGACTTCATTACTCCACTGCCCGCCCTGGCAGCGGTAGACAAGGCCTGGCCCTAAAATGAGCTCAGCGTCTTTGACCGGATCAAGGCTGAAGAAAACCGTATCAGCAAACATTTCTACCGGCAAGGTCGTTTTTTCCCCGACCAAAAGCTTAAGCAGCTGGTAAGGATTTAGGCGGACTTCCTGCCAGACCTGGGCCAGAAGCTCATAAAACTTCTCCGGCTCCTTTTTCAGCAAAGGATTGTTCTTGGGCAAATAAGAAGACAAGCAGCAGATGGCCTGATAGAGTTCCTGTCCGCTCGCTTCACCAGACAGAAGATTATGATAAACTTCCCCCCGCATCAGCTCATCTGCAAAATCCGGCCGGATTTCCTCAAGAGCAAAACCGTAATAAACCAGGTAGTTCTGCAGGATGTGCTTTTCCTGCCAGCTAGTGGAAATATCCTTTTGCTCCACGCACTTGGCAAAAAGAAGGCGGAGCTGACGGAGGCCATCGGCTTTATCCTTAACCCCGATCTGGCAGACTAATTCACTGGCCAGCAAATAGACATAGGCAGCCGGAGCTGGCTTGTACTTGCCCTGCCGGAACTTGGTCCGCCAGGAAAAATAGGACCGCAACTGGTCGACGGTCAGATCATGGTAGACTGGTCGCTGCTTGTTAATTGGGACCATTTGGGCAAAGTCATCTTCATAATTAGCCATCAGCATCCCCTGCCGGTAAAAATTGCTCTCCCGCCGGGGTACTGCCAAATAGTCGTAACTCTCCTGCATCTGCCTAATCCCTTCCGGGATCACGGGCTGGCCTTTTTCAGCCAGCAGGCGGTCAAAGTCGCTGTCTTTAAAAAAGGCTGGCCGCTTAGGAATTACTTCTTCTTGGAAGTCTTCTCCCTCATCATCCAGCAGGTAGATTTCATGCTCTTGCCTATCTTCTGCCGTATTTTTCGCTGCTTCCAAGGGCCGGGAGCTCTGATAGGCAGAATCCAGGGTCTTGTAAAAAAAGCGGTCGTTTAAGGCAGGATTATCTAAATCAACCCTGATCCAGGCCAGGTCCTGCATGAAGACGGCTGGTCCAAAAGCCGGCTGGGCAACCAAAAACTTAGCCAAGGACCCGGCTTTCAGTTCAACCGTTTCGCGGCCGTCCTTCTTAAGGAGCAAGGCGAAACTTTCATTTGCTCCCGGGACCGTGACGGCGGCCAGGGTTTGCCCGGCCAAGTCGACATAGCTGGCCTCAATACCATATTTGCTTTGAATGTAGTCGGCTACTTCCGCCAGATGCATGCCTGCCCCTCCTTGCTGTTTCTATCATAATTATAGCACGATTTTTCGAACGTTAGTTCCAAAACGCGTAAAAATAAAATCTTCCCAAAGGGGAAGATTTCAAGAAAACAAAATTCACTTAAACTATTATTTCTATTTTTCCAGGGCCGCTGCCTGGTCAGCGGAAATTTCCACCTTCCGGTTCAAAGCCGGACTGACAATCTGCTTGCCGCTGGCCGTCTGCTGCTTAAGGTAGCTGATGAAGGTTTCCGTGTCAGTCCCGGTCAAGATGCCCACCTTTTTGCCAGCAGTGAACTGAGTAAAGTGGTCACCGCCGCCAGCGATAAATTCGTTGGCGACAACCCGGTAAGTCTTGGTCAAGGAGAGTTCAGTCTTCTCGCCTTCACCGACATAAACCTTGACGATCTTGACCTTGCCGGCCGCGTCCTTGGTGTAGACATAGTGCAGACCGCTGACCAGGAGGTAGTAGTGGTCATATTGCTGGTTAAGGGCAGCTAAAATCTGCTTCCCGGTCATGGTCAGAACCTGCAGGCTGTTGCCAAAAGGCTGAACGGCCATGGCCGCCCCGTAAGTAATTGATTTATCACTGCCCACAGCCAGGCCGGACCGGACCCCGCCCCCGTTAGTCATGGCAAAGTCAGCCTTGAAGCCCTGCCGGTTGGCTTCTGACAATTGCGCGTCAACGACCAAGTCGCCAACCGCGTTTTCATTGGAAGCATTGTTGTTTTCCCGGCCAGTGATTGTTTCCGCCTTTTGGGCCGTAGCAATCTTTTGCTTGGTGATGGCTGAAACCCGCTTGTCAGCGTCAGCCACAATCTTGGCAACTGTCTTGTTATCCTTGGTCTTCGGGTCATCAGCAGCTGACAGGACTGGGTAGACATGAGAAACCAGGCTGCCCTTGACGAAATCCTTGGTCTTTGGACTGATGTAGCCGATTGAGTCAGTGTAGGCCTGGCCATACTTCAAAGCTTGAACCAGCCGGGTCTTGCCGACCTTGGCGTTGGCATACTGGTGAGAGTGGCCGGCGATCATCAAGTCAACGGTGTTTTTCGGATCGATCTTGTTCAGCTTCTTTAAGATCTTCACGCTGTCACCGCTAGTGGTCAGCTTGCCCTTACTGTCCGCCACCGTTTCAACCCCCTTGTGGGCCAAAACAACGATAGCCTTAACGCCCTTCTTGCGCAGAACCTTTTCATACTTGGCAATGGTCTTGGCTTCATCCAGGTACTTGAAGGCAGAGTAGTTTTTCTTAGTCGTCAAAGTTGGCATTTCCGTGGTCAAAATGCCGATAAAGCCGACCTTGGCCTTCTTCTTGCCCGCTTTTACGGCCTTGATGGTATAAGGCTTCCAGCCATATGGTACCTTACCGGTGGACTTTCTGACAACGTTGGCTACGATTAGCTTGATGCCTGACTTTTGGTGGGGGTAGGCCATTTCAGCGGAATTGTACTTCTTAGTTGGCTTTTTGCCTAAAAGAATCCGGTTGAATTCGCCCAATCCCTCGTCAAATTCATGGTTGCCCAAAGTGCCGATGGTAAACTTCATGGCCTTTAAGGCGTGCATGGTTGATTCATCTTGCAAAAGAGAAGAATTGGCCGGAGATGCCCCCACTATGTCCCCTGACTCGACTCTGAAGGTCGTGCCTTGCTTGTTTTTCTTCTTAAAATCCTTTTGGGCCTGGTCCAAGTAAGCGGCCAGCCGGGCCACCGTACCGGCATTACTGTAGCTCTTTTGCCCCAAGGTCGCCGTACCAGTCGTCGACAGGTTGCCGTGCAAATCGTTAATGCTCAAAAACTGCACCGGAATATCCCTGCTGTACTTCTTGGGATTCTTCCAGTCCTTGCTTTGGGCCGGCTTGATGGCAGTATCAGCCTTGCTGGTAACTTCTAATTTGCTGGCGCTAGCCTGGCCCGGTGCTAAAACGGCCACGGCCAAAAGCAGAGCCGCAAGTTCTTTCTTGATGGATCTAGCCATGTTTTCCTCCGTGAATTACTCAATATTAAACAACAGTATACTGCTAGTATAGCATAAAATGCAGCTAGTTAACAGAGAAAGTTCGGCTGTAAAAGACAAACAATTACTTTTTCCAATATATCAAGCAATAGTCTTAGTAAAACACGGATTATTTTTAAGGAAAAACTATAATTAGTCAGAAAAAAGTGTTTTGCTTCTTAGGATTTTTTGGCAAAAATAAAACTGCCTTGCAAAATGCAAAGCAGTTTCAGATTCGTTGTCAGAATTAACGACGACGTTCTGTGATACGAGCAGCCTTACCGCTACGAGTCCGCAGGTAGTAAAGCTTAGCACGACGCACGCGGCCGTGACGAATAACTTCAACCTTGGCAACACGTGGAGTGTTAACTGGGAAAGTCCGTTCAACGCCAACACCGGAAGCGATCTTACGAACAGTGTAAGTAGCACCGATGCCAGTGCCCCTCTTCTTGATTACGACACCTTCGAAGATCTGGATACGTTCGTGAGTACCTTCAACAACACGTACGTGAACACGAACAGTGTCCCCGGCACGGAATTCAGGCATGTCGTCACGAAGTTGTTCTTTAGTCAATTCTTGAATTAATGGATCCATTATTATTTCTCCTTCTACGGCATTCATCAACCTCTCTGGGCCAGCGGAACACCCATAATCTTTATTGGCAAAATACCACGTCTAATAGAATACCATCTTTAGCCAGGCAAAGCAAGCTTCTTTAGTCCAAAATCTTGAGCAAGTCTTCCTTTTGCAGGCTGGCGCTGGAAACAGACTCTGCCGTCAAGATGCCTTGCGCCAGCAGGCTCTTAGCTTCCTGCAAGTCCAAAATAGCTTCCTCAACCGTATCCTTGGCAATCAGCTTGTAGACCGTTACCTTCTTTTCCTGGCCGATCCGGTGGGCCCGGTCAGTTGCCTGGTTCTGGGCCGCCACGTTCCACCATGGGTCATAGTGAATGACGGTATCCGCCCCGGTCAAGTTAAGGCCCGTCCCTCCGGCCTTAAGGGAAATCAAGAAGACCTTAGCCGGACTGTCTTTATGGTTGAAGACGTTGACTAAAGTCAGCCGTCTGGCTTTAGGGGTTTGGCCATCGATCCGTAAAAAGCCGATTTCCTCTGCCTTTAGGCTTTCTTCCAGCAGGTCCAGCATGCTGGTAAACTGGGAGAAAAGCAGGACCTTGTGGCCCTCGTCAATCGCGCTCTTGATCAAATCCACGCAGGCCAGGCGCTTTTCAGATTCGCCCTTGTAGTCTTCATAAAGCAGGCCCGGGTCGCAGCAGATTTCCCTGATCCTGGTTAGCGCCGCCAGAATCTCTATCTGCTCGCGCTTGATACCTTCATCGTCCTCAGCCATAACCTTATTTTTCAAGCGGGCAATTTCAGCGTCATAGAGCCTTCTCTGTTCCTTGCCCACGCCGACATAGCGGACTTCCTCCAGCTTGTCCGGCAGGTCCTTGAGAACGTCTTTTTCAAGCGGCGGAGGATAAAGGGACCGACCATCTGACTGAGCCGGTTCAAGCAGTCCTGGTCGTCTTCCTTAACGATCGGACTTTCAAAATCCTTCTTAAATTCCCGGTAACTCTTTAAAAAGCCCGGCATGACGAAGTTAAAAATACTCCAGAGCTCACTTAAGCGGTTTTCAATCGGCGTCCCGGTCAAGGCAAAGCGGTGTTTGGCCTTAACCACGGAAACCGACTTAGCCGCGGCTGTCCGCGGATTTTTGATCATCTGCGCCTCATCGATAACTTCATAGGCAAAAGTATGCGGCTCATAGTTGGCAATATCGCGCTTAAGCAGGTCATAAAACGTGATTACAACGTCAATATCAGTCAAGTCTGCCAATTGCCCGCTTCGTTCTTTCTTAGAGCCAGACAAAACCAGCGTCTTCATTTCCGGGGCAAACTTTTTAAACTCAGCTTCCCAGTTAAGAACGAGAGAGGCCGGAGCCACGATCAAGCTCGGCTGGTCCTTTTGACTGGCCAGGAGGCTGATCACCTGCAAGGTCTTGCCCAGACCCATTTCATCCGCCAGAATCCCGCCAAAGCCATGCTGGGCCAGCCGGTTCATCCAGGCAGTCCCGGTCTTTTGATAAGGCCGGAGGATCTTCTCCAGGCCGGTTGGCAGTTTTAGCGGCGCTTCTTTTTGGTCAAAGTCAGCAAGCAATTGCTGGAAGTGGTCGTATCTTTCAATTTCGCCCATCTCCTGCTCTTTTAAGAGCTGGTCGACGTAAAGGGCCCGGTAGGCCGGCATTTCCAGCTGTTCTTTGCTAAAATCCTTAGCGGTTAAATCTAAGTTTTTAGCTAAAAGGGCCAGCTTTTCCAAGTCCTGGCTGGCTGGATTAAGGAGGCTGCCGTTCTTCAAGCGGATATACTTCTTCCGGTCCTTGTACTGGCTGAAGACCTCCGCTAATTCTTCTGGCGTAAGCTTGCTTTTCAGATCCAGACGCAAAAGCCCGTCACTTAAGGAAAGGCCAAAAGCCAGATTCAGCCTGTCTTTAAACTTGAGCTTTTTAAAGGCTGGAGTAACTTCAACTTCATCAAAGGCGGCGAAGCAATTTCGCCATCCCTTCCAAAAGCTGGTATACCGCTTCGTCATCCACTTTATCCAAGCGGCAGTCGCCATCTTCCAGGTCAAAAAAATTCTCCAGCTGGGCCAAAAGCTTCACGTCCTCTAAGGCATCCTGGTCGAATTCTTCCAGCATCTCTGCCCTGGCCAGGGCACGGTCTGCCTGGTAGTCAGTTACTTCACCCAGGTTTTCCCGCATGATCATCAAGACCAGCTTCTGCAGGAGGGCAATTTCATGCCGGCAAGGGCCGGTAATTTCGTGTTGCTTGCATTCCGCAATATTGCACTTCAGCTCGCTTACTTGCTTAAGGCCAACTTTAACGTTGACCTTGTTCCCGTTCCCGCGGTTGGCGAAATGGCTGAAGCCGGTAGCCGTTAACAGGGGCTGCTTATCATTAGCCTGGCTGTCATCCAGGTTAACGGCTACCAAATAGGCTAGGGCCGGATTATCCCAGATCCGCTCCCAAAGGACCGGGTCAAAGTCAACCGATGCAAGAATCTTGCCAGGATCAAAAATATAGTTGACATATTTTCTGCCAAGGCCGTAGACCTTTTCAATGATCTCTTCCTGCCGCTTTTGCGGTCGCTTGCAGGCAATTCGCTGGTCAAGGGTTCTTGAATGGCCTGCATCCCTTCAATAAAAAGCTCCGTGGCGTACAAGCAGGCTGCCTCGTGCTTGCAGTTGTAGCCTTCAGCCGCGTAAGGGCAGTCACAGTCCATCCACTTGATCTCGCTCCAGTCATCAGAGAAGTCAATCGTTACGTCATAGCTTTGCCCGGGCTTACCAACCCGGCAGTGGATGCCGGCTGGCAATTCACTGTAGCTGGGCGCGTAGACCCAGTCCTTTTTCCAGTAGTCCCTTCCCCGGTCCAGGATCCGGTTGGAAAAAAGCTTTCTCCATTGCAGGGTCATCTAATTCCCCTTTTCTATAGCTTGTCTTCTTCAGCCTGCTCGTCTTCTCTGATCTGCCGCAGCATTCTGACCTCTTCCGGGGTCAAGTCCCGCTTCTCCAGCAGGTCCGGCCGGTGCAGCTTGGTGGCCTTTAAAGCCTGGTAGTGCCGCCATTCATCGATCTTGCCATGGTTGCCTGAAAGGAGGACTTCCGGCACCTTTTGCCCCTCAAAATCGGCTGGCCGGGTGTATTGCGGATATTCCAAAAGGCCGTCTGAGAAGGATTCTTCAACTGTAGACAGGGCATTGCCCAGAATCCCTGGCAGAAGGCGGACAGTGGCATCGATCATGCTCATGGTCGGCAGTTCCCCACCAGTCAAAACGTAGTCACCGATTGAGACCATTTCGTCAGCCAGGTCGTAAACCCGCTGGTCAAAGCCTTCAAAGTGGCCGCAAATGAAGGTCAGGTTTTCTTCCTTGGACCATTCCTGAGCCATCTGTTCATTGAAGGTCTTCCCCTGGGGAGCCGTAATGATGACCTTGCCCTTATTTTCCAGTGAATCAAGGGCATCCTTGATCGGCTTGACCTGGAGAACCATCCCGGCCCCGCCCCCATAAGGAGTATCGTCGACTGACTTGTGCGGCCGGTCAGAAAAATCGCGGAAGTTGACCAGGTTCAGCTTCCACTTGCCATCTTCCTGGCCCCGGCCCAGCAGGGAAACCTGCAAGGGGGTAAACATTTCAGGAAACAGGGTCAATACGTTGATGTTCACTATCTCAAGCCCTCCATTAATTCAACCCGGACTTCTTTTTTATCAATATCCACGCTCTTAACGACCTGCGGGATGTATGGGAGCCAGAAGCTCTTGCCGTTTTTGTCAGTTACTTCCCAGATGTCATTGGCGCCTGGCGCTTCGATATCAGTCAATTCGCCGATTTCTTCCCCGCTTTCATCGTCCAGGACCTTGCAGCCCAAGAGCTCCCGGTAGTAGTAGACCCCGTCAGGCAGTTCCCCCTGGTCTTCTTCGCTGATCAAGATTTCCGTCCCCTTCAGCTTTTCCGCCTGGTCAATATCAGTGATTTCCGCAAAAGTTACCAGCCAGAACTGCTTAAAGGGCCGGCCAGCAGCTACCGTCACTTCCCGGCTATCGTCGCCCAGGTAAAGGCGGGAACCAGCTCTGAAGCGGTCTTCTGGAAAGTCGGTGGTCAAAGCGACCTTGACTTCACCCTTTAAGCCATGGGTCGCGATGATTTTGCCAACATTGTAGTAATTCATGGTGTATATTTTTCCTTTTCAACAAAAAAAGTTTGAAGCTAGTGCCCCAAACCTTTTCCAATTATTTGTTGTACTTTTCGTCGTGCAACTTAGCCATCAAGCCAGCGCTTGAAAGAAATGAACGAACAGTGTCTGAAGGTTGTGCACCCTTCTTCAGCCATTCAAAGATCTTGTCTTCATCAAGCTTCAATTCCTTTGGTTGTGAAACTGGGTTGTAGTAACCAACTTCTTCGATGAAGCGGCCATCACGAGGTGCACGTGAATCTGCTACAACAATCCGGTAAAATGGCTTTCTCTTGGCACCCATACGGCGCATACGAATCTTAACTGACATTAATTAGTCCTCCTAAATTTCAATAGTTATACTATAACACCCAAAAAACAGCCTGTAAAGTATTTTTACTTAACAGCCTGCTCTTTTTTAAAAATTATGAGTGGAAGCGCTTGACCTTCTTCATTTTCTTGGCCTTCTTCTTCTTGAAGCTCTTCCCCATCCGCCGCATGGCCATCTTGGCCATCGGGCTGTTCATGCCAGGCAATTTCTCCAAGTCCTTGAAGTTCCCCTTGGTCACCTTGGACATCATGTCCTTGGCCGTCTTGAACTCCTTGATCATCCGGTTGACTTCTACAATCGGTACGCCTGACCCGGCCGCGATCCGCCGGCGCCGGCTCGGGTTAAGCAGGCTTTCGTCTTCTCTTTCGGCTGGCGTCATGGAGTAGACGATGGCCTTGGTGTGGGCGATCTGCTTCTCATCGATTGAGAAGTTCTTCAATTGCGGGTTATTGGCCATACCGGGAATCATCTTCATGATTTCATCCAGCGGCCCCATCTTTTGCACCTGTTCCAGCTGGTCGATAAAGTCGTTGAAGTCAAAAGTGTTTTCCCGCATCTTCTGGGCAACTTTTTCCGCCTGCTTGGCATCGTAGTCCTGTTGGGCCTTTTCGATCAAGGTCAGCATGTCCCCCATGCCCAGGATCCTGGAAGCCATCCGGTCCGGGTGGAAGACTTCCAGGTCGGTCAGCTTTTCCCCTTGCCCAGTGAAGAGGATTGGCTTGCCGGTGATGGCTCTGATAGACAAGGCGGCCCCGCCCCGGGTGTCACCGTCCAGCTTGGTCAAGATGACCCCAGTCACGTCCAGGCGTTCATTGAAGGTCTTGGCCACGTCAGCAGCGACTTGCCCAGTCATGGCGTCAACTACCAAGAGGATGTTGTCCGGCTGGCTGACCGCCTTGACTTCTTCCAGTTCCTTCATCAAAGGTTCGTCGATTTCCAGCCGGCCGGCCGTGTCGATGATCACGTAGTCGTTTCTGTGGACGGCGGCTTCTGCCAGACCGTCTTCTACAATCTTGGCCACGCTCTTTTCTTCCGGGTCGCTGTAAACCGGGACCTTTAAGTCCGCCCCGATTTGCTTGAGCTGGTCAATGGCCGCTGGCCGGTAGATGTCGCCGGCAATCAAAAATGGCCGGGCTTTTTCTTCCTTCATCAAGCGGTAGGCTAATTTGCCGACCGTAGTGGTCTTACCAGTACCTTGCAGACCGACCATCATGATAACAGTTGGGATGTGCGGGGACTTAGTCAAGCCGACCGCTTCTTCACCCATCATCTTGGTCAGTTCTTCATTGACGATCTTGATGACCTGCTGGCCTGGAGTCAGTGATTCCTGCACTTCCTGGCCCAGGGCCCGCTTTTTGATGGTCTTGATAAAGTCCTTGACCACCTTGAAGTTGACGTCGGCTTCAAGCAGGGCCAGGCGGATTTCCCGGGAGGCGGCGTTGATGTCTTCTTCAGAGATCTTCCCCTTCCCGGTCAAGTTGCGCAGGGCCTTCTGCAAACGTTCGCTTAAATTTTCAAATGCCATCTTATTCTCCTCTAATTATCTGCAACAAGTCTTCCATCTGCAATTTGGCCGTTTCCTGGTCACCGGCGGCCAGGCTGGCTAAGGCCTGGCTGATGCCTTCTTCCAATTGGCTGTAACTGGCCAGCAGCCGCAGCTTGTCTTCGTATTTTTCCAAAGACTTGGCGCTGCGCCGCAAATTGTCATAGACCGCTTGTCTTGAAACATGCCGGTTGTCGGCAATTTCGCCTAAAGACAAGTCGTTGTAGTAATAATCTTCAAAATAATCCTGCTGGCCATGGGTGAGCAAGGCGCTGTACATGGCGTACAGGTCACCCAAAGCTTCATTTTTGCTCAATTCATCCATCTTTTTCACCTGGTTACCAGTATAGCAAAAAGCACTGCAAGTGCAGTACTTTTTAGAGATTTTTATCCATATTAAAAGTCAGCTTGGACAGCTTGATGGCTTCCTTAAAGAGCTGGCCCCAAAGCTTTTCGCTTTCCTGGCGGCAGTGGGCCACCGTTTCCTGGTTAGCCTTGGTCAAAAAGGCGGTCAGTTCTTCGCCAGTGAGGCCTTGGGCCTGGTCGGTTACTTCGGCCACCCGGGCGCGGAAATAGCGGTTCAGCTCAGTCAAATAGGTCGCGTCCATTTGGACGAAGTGGGAGTAGTGGCTTTCCACCAGAGCCGCTAAAGACTTGTAGAACCACCAAGCGTCAGACTGCCGGTATTCCAGGGAAGCTTCGTTATAAGAAGGGTCAGTGTCGTTCATATTGGTAAAGAAAGGCACGAACGGAGTGAAAGTCGGTCCCCCGATGCAGAGCCACATGATCCCGGCAACGCCAGCTACTTGGTCATTTCTGACTTCCAGAATATGGGCGTTTTGCGTCCGGTTAAGGCCGATTGGCCGGTAGCGGTGGTGTTCTTCATCGCTGCCCTTGACGGCAAATGGGTCGTAGACCGTGGCCTGGTAGTGAGAACCCAGAATGTATTCGATGTCTTACTTGCTGATCTTCTTTTCTGCCCGGCGGATGAATGGCAGGTCAGGGTCTTCCGGGTCCTGGTCGATGCTTGGGTTCAAGATCTTTTGCCCATACCAGACACGGGAAGTGTTGTAGTGGCGGTCCTGTTCAGTGAAGGTGCCGAAGATATGGCGGAAGTTCCAGCCTTCCAGGTCAGGGTTGAGCTTGTTTTTGGCAACAAAGTCCTGGATCCCTGCACTCCACATGAAGTCATCACTAGTAAAGTCAACTTCCTGGATGGAGACCCGGTTGGCGGCGATGGCATAAGCATCGTCGGGGATTCTTTGAGCGACCCAGTGGTGGCCGGTCACGATTTCCATGTACCAAATTTCATCCTTGTCAGAAAAAAGGACTGAGTTCCCGGCAGCTGACCCGTACTTGGCGATCAAGGCGCCCAGGCGCTTAACCCCGCCTCTGGCAGAGTCAATATAAGGCAAGACGACATTGACCATGCAATCCTCGTCTAAACCGTCAACCACTAAGGGGTCAAAGGCCAGAGTGCGTTCATGCCGTAAGTTGACTCAGTAGCCGACATGGCCACGTTCTTTTCGTTAATGCCGCTTTCTTCATAGTAGCCGTACTTCTTGTAGTCGACATTAGGCACAGCCGGGTAGCGGTAGGCGTCTTCCGGCAAGTCCATTTCGAACTTGTTCAGCCAGGACTTGATCTTGCGCCCCTTTTCCCCGTGAACTGCCGGGTTAACGACAAACTTTTGCTGGTTTAAGGGAGAAAAGGTGTCGTCATGCGGGCAATCAGGTTATTGCCGTCCATGGCCGCTTTTTTGCCGACTAAAATCGAAGTACATGCATCATCTTTCATTTTTCTTTTTAACCTTCTAATCTAACTTTGCTCTTCTTTTTTAAAACTACAGCAGGTCGTGGAAGAGGCCGACGGCATAGTTGGCAGCGTCAAAGTCGGCCAGGTCTTCTGCCTTTTCGCCCAGGCCAACCAATTTGACTGGCAACTTCATTTCGTGGCGGATGGACAGAACCACCCCACCCTTGGAGGACCCGTCCAGCTTGGTTAAGACTAAACCAGACAGCTTGGTCGTCTTGTCAAAGTCCTTGGCCTGCAGGAGGGCGTTTTGGCCAGTTGACCCGTCCAGAACCAGGAGGGTTTCAGCCGGCTGATCTGGCAGGCGCTTCTTGATGGTCCGCTGGATTTTTTCCAACTCGTTCATCAAATTGACCTTGTTTTGCAAACGGCCGGCCGTGTCAACCAAGAGATAGTCTGCTTCTTCCGCGATCGCCCGCTCTAAGCCGTCGTAGACCACGGCAGCCGGGTCAGCCTTGTCTGGGCCAGTTACGACTGGAACACCGGTCCGCTTGCCCCATTCAACCAGCTGCTCAACCGCGCCGGCTCTGAAAGTGTCGGCAGCGACTAACAGGACCTTCTTGCCCTGGTCGTGGAAACGCTTGGCCAATTTGCCAACCGTAGTGGTCTTGCCGGCCCCATTGACGCCGACGAAGAGGTAGACATTTGGCTTGGCGTTTGGATCGTAGGCCAGCTTTTCGTTTTCGCTGTTGGCATTTTCGTCATAGACTTCCACTAGCTTTTGAACAATGACCCGCTTTAAGTCATCCCGGCTCTTGGCCTTTTGCAGCTTGGCTTCTTCTCTGAGCTGGTCAGTCAGTTCTTCACTGGTCTCATAGCCAACGTCAGATTCAATAAGCAATTCTTCCAAGTCGTCAAAGAAGTCTTCGTCAACCGTTCTGAATTTGGCCAAAAAGGCATTGAGGCGGGCACCAAAGCCCTTGTTGGACTTCTCCAGCCCCTTTTCATAGATCTCGGTTGTCTTTTCTTCTGTACTTTCTTCTACTGGTTCAGTGGTCTCTTCTTCAGCTTCAGTCTTTTCTTCTGCTTCTTCAGTAGTTTCTGTTTCTTCTGCAGTTTCAGTAGTTTCTGTTTTTTCTTCTACATCTTCTGTAGCTTCAGTAGATTCTTCTGTTTCTTCTGTAACTTCAGCAGATTCTTCTTCAGCTGCTTCAGTAGATTCTTCATCAGCGGTTTCTTCTTGCTCTTCAGCCTTTTCTGCTACCGCTTCTTCAGAAGTTTCAGTAGTCTCTGCAACTGCCTCATTTTCTGTTTCAGTATTTTCTTCTGTGGCTTCTTCCTGGTCAGCCTTGACTTCTTCTGGCTTTTCTTCGTCTTTTTGGCCGAACAGGCTCTTTTTGATTCGATCAAATAATCCCACGGTTATACCTCATCTTTTAAATCTTTCAAGGAGACCGACAAAATCTGGGATACCCCGGATTCCTGCATGACCACCCCGTAGAGCTGGTCGGCTTGTTCCATGGTCCCCCGCCGGTGCGTAATCACGATAAACTGGGTCTGGCTGTCATATTGGCGCAGAAAACGGGCAAAGCGGGCGACATTGGCATCGTCCAGGGCCGCTTCCACTTCATCCAGCACGCAGAATGGCACTGGGTTGACTTCCAGCATGGCAAAGAGCAAGGTGATCGCCGTCAGCGACCGCTCCCCGCCGGACAGAAGGCTCAAGCGCTGCAGTTTCTTGCCAGGCGGCTGGGCGATGATTTCCACCCCGCTCTCCAGCAAATTGTCCGGATCCGTCAAGGTAAAGCGGGCATTGCCCCCGCCAAAGACCACCGGGAAAAGGCGGCTGAAAGAGGCCGAAATCTGCTGGAAGGTCTGACCGAAGCGGCCCTTGACTTCCTGGTCCAATTCATCCATCGACTGCTGCAGGTTGCTTCTTGCTTCCAGCAGGTCGTTCTGCTGCCCGTTCAAGAAGTCATAGCGGTCCTTGACTTCCTTATATTCGTCAATCGCGCCCAAGTTGACCGGGCCGATGTCTTCCAAAGACATCCGGTGCAGCTTGACGCTGCGGCGCAGGTTCTGCTGGTTTTCTTCCGTATTTTCCAGCTTGGCCTGGGAAAGCGCGGCTTCATAAGTCAAAGAGTAGTCTTCTCTTAAACTGTCCAGGTGCTGCTTGAGCTGGCCTTTAACCGTGGCCAGCTTGACTGATAACTCTTCTTGTTCACTAGCCGCGTCTTTTCGCAAGTCATAGTTTCTTGTCGCCACGGCTTCCAGCTGGTTGATTTGCCCGTTTAGCTGGCCCAAAAGCTGGCTGGCTGCATCCAGGTCAGCCTGCTTGTCTTTTTGCTCAGCCAGGAGCCGGTCTTTCTCCAGGCCCAGCTCCTCTTTCTTTCTGGCTGACAATTGACTGGAATTGTCCAAAGCAGCCAGTTTTTCTTCCAGCTGCCCGATCTGTTTCTGGATAGCCGCCTTTTGCCGGCCGAGCTCAGCCTTTCTGGCTTGCAGGTTTTCCTGCTTGTTGGCTAAAACCGCCAATTGCGGGTCAAGCTCAGCCAATTTTTCTTGCACGCCCTGGTTTAAATCAGTGTAGTTCTGAATGGTCTCTTGCAGGCTGGCCAGGTCGCGTTTTTGCTGGTCGGCCAAAGCGGCCAGCTCTTCCTTCTTAATCTTTTGGGCCTTTTCTTTGTCAGTCAAATCTGCCAGGTAGGCAGCTTGTTCAGCCTGCTGGGCCTGGTAGAGCTGAACGGCGCTTTCCAGGCGCTTGACTTCTTTTTCCTGGCTTTGGAAGGTCAAGACTGCCGCGCTCAAGTCCTGCTGCAGGCTCTGCAGGTCCCGACTGATTTGCTCCCGGTTCTCCTGCTTGTCTTTAACTTGCTTGTCTAAGCCTGCCAGCTTTTCTTCTTTGATATGGAACTGTCTTTCTAATTCCTCCAGCATGGCGGTCGTCTTGTTGATTTCAGCCGTTGTCTGCAAAGGGGAATTATTCCGCTGGTTGCGGGCCCCGCCAGTCATGGCCCCGCCGGGACTGATGACATCCCCGTCCAGGGTAACGACCCGGTAGTGGCCGATCTGCCTAGAGACAGCCAGGGCCGTGTCCATATTGTCAACGATAATGATGCTGCCCAGCAGGTACTGGATAGCTTCTGAAATGTCAGTATCACCCTTAGCCTCAACCAATTCGCTGGCCAGGCCTTGGAAGCCGGCAAAGCGTTCCAGAGCCTGCCGGGTTGAAGCGGGAATTGCCCGGTATCTTAATGCATCCAGGGGCAAAAAAGTTGCCCGGCCCAGTCTTCTGACTTTCAACTGCTGGATGGCATCTTTAGCCGCCATCCGGTCTTTAGCTACCAGACTTTGAACGTTGCCGCCAAGGGCAGTCGTCATGGCTGCTTCCAGGTCAGCCGGGAAGGTTAAAAGCTCCCCAACTGCCCCGATAATGCCCGGGAAGCGGTCTGGCTGGTTTAAAACCTGTTTGACCCCCGCATAGTAGCCATCATGCCGCTTCTGGATATTGACCAGGGCATCCCGGCGGGCAGTCAGCCGCTGGAGGTTGGTCAAATCTGCCTGCAGCTGCTTTTGGGCAACCTGCTGTTCGGCAGCTAATTTCCCTAATTGGTCGCTGGCTTCCTTTAATTCCGCCTGCAGCTGGTCATTTTCTGCCCGCAGCTTTTGCTCTTTCAACCGCAAGCCTTCCAGTTCTTCCTGGCTCTTGGCCAATTGGCTGGAGGCATCTTCATAGCGCTGGTCCTTGCTCTCTTTGGCCCGCTTGATTTCCCCTTCCAGGTAAACCAGCTGGTTGTTGACACTGGTTTGGTCCTGCAAGGTCTGAATGTATTGCGAGCGCAGGTCTTCTACTTTCAACTTGAGGCTGGCCGGGTCTTCTTTCAGCTGGTCGACCAGCTTTTGTCTTTTGCATTTCAGCTGATCCAATTGCCCGGCATATTCAGCTTCCTGGTCAGCCAATTTGCTGATTTCCGCATCCGTAGCCGCCAGATTTTCCTTTAAATCAGCCAGCTGTCTTTGGTATTCCAGCCTGGTTGCCTGGTCAAACTGCCGGGACTGCTGGGAAACCTGCAAGGAAGTGTTGATTTCTGAGAGCCGGTTGGTCAATTTAAGGACTTCCGCTTGCACCTGGTCCCGCTTTTGGCTTTCCAGCTGGAATTCCTGCCGCTTGGCTGCCAGCTTGGCCTGGGACTGCTTGACTTCCGCGTCCAGCCGGCTTAGAAGTTCCTGGCTCTTGGCCAATTTCTGGGAAACTTCCCTTTCTTCCTGGTCCAAGTCGGCGATTTCAAAGGCCAGCAGGGTCTTCAAGTCCTCATCAAGGGCGGCTTTTTGGAATTGGTATTCCTGGGCCAAGGAGCTCTGTTCATGCAGGGGCTCCAGCCGCTTCTCCAGCTCGTTGACCAGGTCGTTGATCCGGATCAGGTTGTCATTGGTCGTCTCCAGCTGCCTTTGAGCCTGCTGCTTTTGCTGCTTAAAGTGGAGCACCCCGGCTGCTTCTTCGAAAATTCCCCGTCTTTCCCGGGCCTGGGAATTGAGGATCTGGTCCACCCGCCCCTGGGAAATAATAGCCAGGCTGTTTTGGGAAATGCCTGAATCCAGAAAGAGCGCCCGGACATCCCGCAGACGGACCGGCTGCTGGTTGATCAAGTATTCATTGTCGCCGGACTTTAAGATCCGCCTGGTAATTGAGACTTGGTCAGCTGAAAAATCCAGTTCCCGGTCTCGGTTGTCGAAAACCATGGTCACTTCTGCCCGGTTTAAGGGCTTGCGGAACTGGCTCCCGGCAAAAATCACGTCTTTCATGTTGCGGCCACGCAAGGATTTAGCACTGCCTTCCCCCATGACCCAGCGAATGGCTTCAGTAATGTTGCTCTTGCCTGACCCGTTAGGGCCGACAATGCCGGTAATCCCTTTAGTAAAGTCAATCACCGTCTTGTCTGCAAAAGACTTGAAGCCTTCCAAAATCAAACTAGTTAAAGGCACTATTTTCCTCCATTCAAGTGCTCCAAGGCGTGGCTGGCCGCGTCCTGCTCAGCCTTCTTCTTGTTGCGTCCTTCCCCGCTAGCTAGCTTCTTTCCGTCGACCAGAACTTCAACTTCAAAGTGGGGCGGCTGCTGGCTCTCATTCAACACCCGGTATTCGATGGTCACGCTGCCGTTTTGCTGCAAAAGTTCCTGCAGGTCCGTCTTAAAGTCCCGGGACGGGGTAAAGTAGCCAGCCGCGATTAAAGGATAAACGGTCTGGCTAAGGAACTTTTCGACAGCTTCAATCCCCTGGTCTAAGAACAAGGCACCGTTGAAGGCTTCGAAGACGTCTTCCAAAAGGGCCTTGCGCTTGCGGCCGCCAGCTTTTTCCTCGCCAACGCCCAGGTTGATTTCTTCTTTAAAGCCGCAGTCCAGGGCCACTTTTGAGAAGCCTTCAGTGCGGACGATATTTGATCTCAATCTGGTCAGTTCCCCTTCATTTAAGTGCTGGAAGTGGCGGTAAAGGTAGTCAGAGACTGTGAATTCCAATACCGCGTCTCCCAGAAATTCCAACTTTTCATAATTCCCAAAAGTTTTGCCGGGATTTTCATTGACATAGGAGGAATGGGTAAAGGCTTCCTCCAGCAAGCGGACATCCTTGAAGCGAATCCCGTATTTTTCATCCAGCATTTTAATAAATTTAGTTGAGACCATGAACTATACATCCTTTCATAACACTAAGAATTATATCAAAAGCCCGACATAAGGGCGGCTTTTTTACCTAAATCCAAGAAAAAACTCTGCCTTGTCCGGCAAATGGACAAAACAGAGTCGCAGATTATTTTTTATAGCCGATTTTATACCATAATGGATGGCTGTTGTTCATTTCTGCCGGTTCATAAGAGAGGTTGACCAGCTGCTTGTTGATGGCTGTAATCTTGTAGGAACTGGTCAAAGGAATTACAAAGGCTTGCTCTTTCATGTACCTTTGCCACTTTTTGAAGACCTTGATCCGGTAGTTGATGTTAAAGGCGGCATCTGAGTCCATCGCTTCCAAAAGCCGGGTATTGATCTTGGTAGCAAAACGCTCCAGGTTGTACTGGGTCCCCGCCCCGTAGATGCCATTTTGGGAAGGCTCATTGTTTAAAGTCCAGCCGGCGATGAACATGTCGACCTGGCTGTCATCTTGGAAGAGCAGGTTGTAAAAAGTATTGAATTCCAGCAGGTGGCCAGTGGTCAGTTTGACGTTTAAGCCAATTTCTTTCCACTTCTTAATGTAGTTGTTGATGATCTTGCTTTGGCTGGCGTCACCGGTCATGGCGGCCAGGTGGATCACCAGCTTATGCCCCTGCGGGTCCCGCCGGTATTTTTCCCCCGGCCGGAGCTTGTAGCCTGCCTTGTCCAAAAGCTTTTTCGCCTTAGCTGGGTTATAAGGATAACCCTTGCTCTTATCATCGTAGTAGTCGCCAAATTGCAACGGGATCAAGCTCTTGATGCGGAAGGTCAAGCCAGACGTATACTTGCGCTGGATCTGGGTGACGTTCATTGCGTAGCCAATAGCCTGTCTCAGAGACTTATTGGCCATCTTGGAATTCTTATTCATCTTGACTGAGTTGGTCTTCTCGTCCCACTTCCCCAGCTTGAAGCCCAGATAGTTGTAGCTCAAAGGAATCGTGGCCACGAACTTGTAGTTTTTGGTAGTCCTGATCTGCTGCCACTGGGAGTTAACAACTTCGATGATGTCGTAAGTTCTTTCTTTAATGGCCGTGGAGACCGACTTTGGCGAAATAATGGAGATGGTGATCTTGCTCAAGCTCGGCGTCCCCCGCCAGTAGTATTCATTGCGGGTCCAAACCACCTTCTGACCCGCTTCAATGCTCTGGACCTTGTAAGGTCCAAAGTAGAGGGGCTTTTTGCGGATTTCGATGCAGGTTCTCAGCTTGCTGAAAGGCACATTCTTAAGATAGTGATATGGCAGGGCAGATTCCCAGAAGTAGCCGTTACCGGACTTCAGCATCCCCGGGTGCATTTCTTTAAAGTGAATCACGACCTTGCGGCCATTTTCCCCATCCGGCATTTCGATCCCGCTGATCGTCTTGGCTTTCCCGTCATGGTATTCCTTCAAGCCCACCACATCCTGCAGGGAAGAAGTATAGTGAGAACTTTTTGTAGCCTTGTTGGCAATTACTTCATAGGCATATTCCACGTCTTTAGCCACGATCTGCTTGCCGTCAGACCACTTGACCCCTTTTTTAATATTAATGGTGATCTGCTTGGCCTGCCGGTCCAGGCTGAAGCTTGCCGCCCCGCTGTCTGTGATATTGTAGCTGTTGTCCGTGTCAAATAAAAATTCAGAGCCAAACTGGACCAAAGTGGCATCAGTTGTTGAATCAGCCAGTTCATCAGAAAAAATCCCCGTGAAAGGAGTATCAGTTTCTAAGGCTACCTTGATGCTGCCGCCCTTTTTCGTCTTGGCAAAACTAGTAGCCACTGGGAACTGCATGGCATCTTCTGCCCCGCTGTTGCCATTTTGCTTGCTTTTCTCCGGCTTTTGCCCGCAGGCCGCCAGACTTAGGGCCACTAGCAGGCAAAGCGTTATTTTCGTTAGTCTTTTCATCAATCAAGAGTCCTTTTGCTAAATTGCTACATAATGTAGTTTACCATAACAAAAGCGGCAAGACCGGGCCCTAAGCCGGGAGAACAGAAAAAAGAGGAGGGAAAACCTCCTCTTTTGAGAAATTATTTATTATCTTTTACTTCTTAAAGCCAGTTTCGTACCACAGGGTAGCTGCCTTTGATGGCTTAGTTGAGTAGTTGACCAGCTTGCTGTTAACCGCAGTGATCGAGTATGCGTTAGTCAAAGGAATTACAAAGGCTTCCTTTTGCATGTATTGTTGCCATTCGTGGAACTTTTGTACCCGGTAGCTGTGGTTAAAGGCCTTGTCACTGCCAATTTCCTTCAGCAGCTTAGTGTTTTCACTAGTTGCAAAACGGGTAAAGTTGTAAGGAGCCTTAGGACCATAGAGGTCATCTTGGGTAGGTTCACTGGACAGAGACCATGCGGCCATGAAGACGTCTACTGATGGGTCATCGTTTTGTACCTTGTCATAGAAGGAGTTTAATTCGATCAAACGGCCAGTGGTCAAAGTTACGTGCAGGCCGATCTTCTTCCATTGCTGGATGTAGTTTTGCACGATTGCTTCCTGGTTTGTAGACCCACTCATGGCTGCCAAGTGGATGGTTAACTTCTTGCCATTTGGATCCCGGCGGTAGGTTTCACCCTTCTTCTTCTTGTAGCCGGCCTTGTCCAACAAAGCGTTGGCCTTCTTGATGTTCAGTGGGAAGCCCTTCACGCTCTTGTCATAAAAGTCACCGAAGGCTTCTGGCACTAAAGTCTTAACTCTGAAAGACAAGCCTTGGGTGTAGTGCTGGGTTACTTCATCAACGTTCATGGCATAACCCATGGCTTGACGGAGATAGCGGTTGCTCATCTTAGAGTTCTTGTTCATCTTGACTGAGCCGGTCTTCTTGTCCCACTTGCCGACCTTGAAGCCCATGTATGAGTATGACAATGGAATTTGGGCAACGAAGTTATAGCCCTTAGTCCCCTTAACTTCCTTCCATTGGGAGTTAACAACGTTGATCATGTCAAACTTCTTGGACTTGATTGACTGGGAAGCTGAATTTGGTGAGATCACAGAGATGGTGATCTTGTCCAGCTTGGCCTTGCCACGGTAGTAGTAAGGGTTTCTTACCCAAGTAGCTGATTGGCCCCGGACCAGCTTGGAGAGCTTGTAAGGACCAAAGAAGAGTGGATTCTTCCGAACCTTGTCACTGGATTGCAACTTGCTGAACGGTACATCCTTCAAGTAGTGGTAAGGTACGGCACTTTCCCAGAAGAAGCCGTTACCGTATTGGGTCATGCCTGGTTTCATTTCCTTAAAGTGCAAAACCACCTTGCGCCCGTTTTCACCATCAGGCATTTCGATCCCGGAGATCTTCTTGGACTTGCCATCGTGGTATTCTGCCAAGCCGACGATGTCGGCAAGTGAGCTGGTGTAGCGGGATGACTGGCTGGCCTTGTTGGCGATGATTTCGTAAGAGTATTCAACGTCCTTGGCAGTTACCTGCTTGCCGTCAGACCACTTGACCCCCTTCTTAACTTCGATAGTGACCGTCTTGGCCTTCCGGTCCATCTTGAAGGTAGCGGCACCCTTGTTATTGATCTTGTATTGATCATCGGTTGCAAACAGAGCTTCATTCCCAAACTGCATAAAGTCACTGTCGTATTGGCCGTCAGAAAGTTCGTTCAAGAAAACACCCTTGACAGGAGTGTCAGATTCTTCTGCGATAGTGATGCTGCCGCCCTTCTTGGCAGTTGCAGTTGCCGTAGCTTCCGGGAATTTCTTGGCATCCTTAGCCCCGCTGTTGCTGGAGCTGGAGCTGCTCTTGCCGCAACCGGCCAGCAAAGCTGCCCCGGCCAGAAGTACTCCAAATGTTCCGAGCATTCTTCTCTTCATAATTTAATTTACCTCCACACAATATATTCAAAAGATAAAACACACAGCATATGAATAGTTATCGAGATAGCGATTCACAAAGTTTATCTTTCATGCCTTTTACTTTAACATTTTCATTTTTTTAAAGTCAATGAGAAATTTAATTTAATGCTAATTATTTTAGTTTTCTCTTTGCCGGGCGTCGCCAGCCTTTTGCAGGGCCTGGCCGACATAGTTGATGCTCAAGCAGATCACCAAAAGCAGGACAGTTGCCGGCAGCCAGAGCCACGGCCGGTCAATGATGTTAACCGGGTCATTGGCAAAACCAATCAAGGTCCCCAAAGATGGAATCTTGTTTGGCAAACCATAGCCGATGAAAGACAGGGCAGTTTCAATCCCGATGTTGCCGGAAACGCTCAAAACTACATCGATGATGATCATTGATGCAATATTTGGCAGAATTTCCCGGAACATGATCTTGGTATTTGAAGAGCCTGAAGTCTTAGACGCCAGAACATAGTCTCTTTCTCTTTGTGACAGAATGAATGACCGGTAGTATCTGGCTTCACCCGTCCAGCCGAACATCGAAATCAGCAGAACCAACGTCATGGCATTATAGTTTGGCAGAACCGTTACCAAAACGATCAAAATTGGCATTTGCGGCAAAATCTGCACGAAGTCGACGATTCTCATGATGATGGAGTCAGTAGTGCCGCCATAGTAGCCGGCTACAAGGCCGACTATTAAGCCAACTAGTTCACAGAAAAGAGTGACCAAGAGACCAATCATAATCGAGTTGCGCCCGCCCATGATCAACAGATTCAAAATATCCCGGCCACCGTCATCAGTTCCCAGCAAGTGGCCGTTTTGTCCCCAGCCGGCGTAGGATTCCAAAATGTGCATTTCAGTAACCTTGCTGCTGTCAAGGAATAAAGAACCGCCAAAGGTAAGTAGCAAAATAACGACAATGGTGCAAAAGGCTATAGTCGCAGCCTTGCTTTTAAAAATTTCTCTAAAAGTAATCTTTAAAGCGGATGGTGGAATTTGGGCCCGGTCATCCTGCTTCTTTTTTACCAACAGTAAATAAAGCCATCATTTCACCTCTACTTCACGCGAATTCTCGGGTCAACCAGACTCATGATAATGTCAGACAGCAGGTTGCCCAGCAGGGTCAAGGTCCCGTAAATCATAATCAAAGCCGTCAAAGTGGTATAGTCACGCTGGCTGATTGAGTCAAGGAAAAGCTTCCCCATCCCCGGGAAGGAGAAGACCGTTTCAATGATCAGTGACCCGCCAAGCAGACCGGTGATGGTGTTCCCCATAAAGGCAGCGATCGGGAGGAAAGAATTCCGCAAGATGTGCTTGTTGAAGACGACTTTTTCCGGCACGCCCTTGCTACGGGCAGTCTTAACATAGTCTTCCACCTTGTTGTCAATGATCCCGGTTCGCAGGTATTGCACTGTCCCAGTCGTGGCGATGATCGCAAAGAGAATTGCCGGCAAAATCATGTGCTGCAGGCGGCTAAAGAAAACTCCCCAGAAGCCACTGGCATTGGCGGCAACCGTCCCGCTGATCGGAAACCAGCCCAGAGTAAAGCCGAAAAGCCAAAGGCCCAGCAGGTAGAAGACAAAGCCTGGGATAGCATATGTCACGTAGTTAAAAATTGAGATTGCCCGGTCCTGCCATTCACCTTCATGCTTGCCGGCGCTGATCCCCATCGGGATAGCAATGCCGTAAAGAATGATGGTTGACAAAAGCGAAAGCCAGAAAGTGTTCTGGGCCCGGTCGGCAATCAAAGATGCTACTGGGACGTGCTGGATGTAGCTTTGCCCCAAATCACCATGCAAGAGGTTCTTAATCCAGCGTACGTATTGCACCGGTACCGGGTCATTCAAACCATATGCCTGCTTTAAGCGGGCAATTTCCTTAGGACTTGAGTTAGGGTTGATCAAACCGGTAAAGGGATCCCCTGGCATCATTTTGGCCAGCATGAAGACAATAATGCTAAGTAGGATCAATTGCGGGATCATGATCAAAACCCGTCTTAAGACTGTTTTCCACATTTGCTATTCTCCTCCCTTGATCTGCTCTTTAGGCAGGGCTACCTGGTGGTTGGGGCCAACCTCGGTCAATGGGTAGACCCGGCCATCTGCATCATACCAGTTTGCCTGGTCCTGCAAAAATTCCCGTTCGATTTCCCGCCGTCTGGCCGCGTGTTCCGCCCGGTGTTCAACATCAATCTTCGGAATCGCGGACAAGAGGCGCTTGGTATAAATGTGCTCCGGATTCTTGTAAATTTCTTCCTGGCTGCCCACTTCCACCAACCGGCCCCGGTGCATGATTGCCAGATTTTCTGACATGTGCTTGACCACGCCCAGGTCATGGGAAATGAACAAGAAGGCAATGTTGTACTGCTGTTGGATGTGCTTCATGAAGTTCAAAACCTGGGCTTGAACTGACAAGTCCAAAGCACTCGTTGGCTCATCGGCCACGATTAATTTCGGATTAGTGGCAACTGCCCGGGCAATCCCAATTCTCTGCCGCTGACCACCGGAAAATTCATGGGGAAACTTGTAAATCGCGTCACTTGGCATCCCGACGATGCTCAGCAGTTCCTGGACCCGGTCACGTTCCTGGTCAGTGGTCAAGTTTTCAAAGTTCCGGATCGGTTCTGCGATAATGTCTTCAATCCGCTTGCGGGGGTTAAGACTGGACATGGAGTCCTGGAAGATCATCTGCACGTCCTTGTTGTAGTTCATCTTCCGGCGGACGGATTCCTTGGTTATGTCTTCACCCTTGTAGAGAATCTGCCCGCTGGTCACCTTCTCCACGCCAACGATTGCCTTGCCAGTCGTGGACTTGCCGGAGCCTGATTCACCGATCAAGCCATAGGTTTCCCCTTCCTTGATTGAAAAAGAAACCCCGTCAACTGCCCGGACATAATCAGTAATTCTGTTCCAAAAGCCCGACCGGACTGGGTAGTGGACTTTCAGATCTTTAACTTGGATAATTTCTTCTGCCATACTTGCTACCTATCCTTCATCTTGAAAGTGGAAAGTCTTCCAGCAGGTGCAGCGGACAAAGTGATTTGGCTCAACTTCGTGCAGCTGCGGGTCTGCTTCATGCGCTTCAGCTGGAATCCAAGGAATTCTAGCCGCGAAGCGGTCGCCGGTCCGCGGCATGTTTTTAAGTGAAGGAACAGTTCCCTGGATTACATGCAGTTCATCCTTGTCATCATCTGACTGTGGAATGGAATTTAACAGTGACCGGGTGTACGGGTGCAAAGGATGAGTAAACAAAGTTTTCACATCAGCTTTCTCTACAATTTGCCCCGCATACATCACGGCAACTTCATCAGCCGTTTCCGCTACAACGCCCAAGTCGTGGGTGATCAAAATAATTCCAGAGTCTGATTCTTTCTGGATCTTCTTGAGCAGGTCCAGGATCTGGGCTTGAATGGTCACGTCCAAAGCAGTCGTTGGTTCGTCAGCAATGATAATTTCCGGCTTGCAGGCCACCGCCATCGCGATGACGACTCTTTGCCGCAAACCACCGGAAAGTTCATGCGGGTACATGTCATACATGGCTTCCGGCTTAGGCATCCCTACTTGATTGAAGAGTTCAATCACCCGGTCGCGGCGCTGCTGCTTGTTCATATCCGTATGGTAAAGCAAGGCTTCCGCTACCTGGTCCCCAACCTTCATCAAAGGGTTCAAACTGGCCATCGGGTCTTGAAAAATCATGCCAATATTGTTGCCGCGAACTTGGTTAAACAAATCCTCACTCAAATTGACCAAGTTCAGGTTCTTGTACCTAATTTCTCCTTCGACCCGGGTGTTTTTCCGGTCATACAGGCCAACGATGCTGGAGGCAATCGTACTCTTGCCGCAGCCGCTTTCGCCGACAATAGCCAAAACTTCGTTGCGCTTGAGAGTAAAACTGATGCCATCAGCCGCATCATAGAACTCGCCCTGCAAGCGGTAGCCGGTATGAAGCTTTTCGACGTCTAGTAAAACGTTTTGCTGATTATCCAACTTTTTTCTCCTTCAAAATAATTATTAATCAGTAAATAAATACCACACTAGTAGATTTTAACCTTTTTCAAATATTTTGCAACAGTTTCTTAATTATCTTCTAGTGCTTTTCAGTTATTTCTTCATCATTTCTGCCAATCCACATCATAATCATTAAATTATTGTTTGCTTTTTATCATATTTGCCGCCATTTCCTGGAAAGAGACCACAAAAAAAAGCATTTGCCGCAGATCTTTCTTTGGCAAATGCTAATTAAATATTAGTTGTTTGCATTTCGTTTTCAATGCACTTTAGCCTTGGTGGCTCTTGATGTAAGCTACCGCGTCAGCGACTGTGATAATCTTAGCAGCGTCTTCATCAGGAATTTCAGCGCCAAATTCGTCTTCCAGCTGCATGATGAATTCTACCAAGTCGATGGAGTCAGCGTTCAGATCCTTGGTAAAGTTAGTGTCCATAGTGATTTTGTCCTTGTCCAGCTGGAAGTTGTCAGCGATCAAAGTGGCAATCTTGTCAAAAATTTCTGCTTCAGTCATTATTCTTTCTCCTATAATTTCTAACTGCCCGCTTGCTTGGGCTATTTTCTTTTTCTTATCCTTACTTGCTGAATTCTTGCTTAAAGGTATTTGTTAAGTCTTCAGTCAAAATCTTGTCGATCTGCTTAACCGCGTAGTAGACGGCCCGGGCGTCTGACCGGCCATGCTGCTTGACGACTGGTGAGTTTAAGCCGAGCAAAACCGCCCCGCCATACTTGTCCTTGTCAAAGCGGCTGGCTACAGACTTCAAGGCGTCTTTAGCCAGCAGGGCCCCCAGCTTGGCCTTAACACCATTGTTCAAAAGGCCGTCTTTCAGCATGTGGATGATGACGCTGCCCGTTCCTTCGATGCTCTTTAAGACCGCGTTGCCGGTAAAACCGTCTGTGACCACAACGTCGGCCTTCCCTTGCAAGAGTTCGTGCCCTTCAATGTTGCCGGTGAAGTTCAGGGAGCTGTCCTGCAAGAGCTGGTAGACTTCCTTGTGCAGGTCGTCGCCCTTGTCAAATTCAGCCCCATTGTTTAAAAGAGCTACTCTCGGCTTGGAAACGCCACGGACCTTTTCCGCATAGTAGGAGGCCATTTCCGCCCATTGCAGCAGGTATTCCGGCTTGCTAGTAGCATTAGCGCCAACGTCAATGATGTTGAAGCCGTCATCTGAAGATTCAACTGGCATGGTCGGCATAAGGCCTGGCCGGGCCACGCCCTTGATCCGGCCGACAATGAAGATCCCGCAGGTTAACAGGGCCCCGGTATTGCCTAGTGACAGCAAAGCGTCTGCCTTGCCTTCCTTGACCCAGTTAGCTGCCACGACCATGGAAGAATCCTTCTTGGTCCGCATGGCCTTGACTGGCTCATCTTCATCAAGAATAACTTCCGTGGTGGCCACGATTTCGATCTGGTCATCGTCTGCTGGCAGCAGCTCTTTCATCTTGCCTTCATCGCCGAAGAAGATAAACTTGTCTTCCGGCAGTTCAGGCTTGGCCTTTAAAACTGCTTCTACAATCTCCTCAGGAGCGTTTTCCCCGCCCATGGCGTCAATCGCGATTTTTCTCATCAATAATCTCTTTTTCTATATTGGATTAGACTAAGCTCTCGCTTGTACAATTTTCTTATATTTTATCACAGCTTGCAGGTCTGCCAACTTTTCTGTTTTCAGGTCCGGATCAGCTTGGACGATCCGCTTGGCCTCATCCCTGGCTACCACCATGACCTGGTAATCGCTGACAACGCTGCCTGTCCTGAATTCCGGCAGGCCTGACTGAGCCTTGCCAAAGAGGTCACCCTCGCCCCGCATCTTGAGGTCTTCTTCAGCGAGCTTAAAGCCGTCGTTAGTTTCAGCAACGATCTTCATTCGCTGCTTGCCGGCTTCTGTCTTCGGGTCAGCTAAAAAGACGCAGTAGCTTTGCGTCTGCCCCCGGCCGATCCGGCCACGCAGCTGGTGGAGCTGGCTTAAGCCAAAGCGGTCAGCGTCAAAGATGACCATCAAGTTGGCATTGGCCACGTCAACGCCAACTTCAATCACGCTGGTAGTAACCAGAATATCGACCTCCCCTGCCGCAAAGCGGTCCATGATCTGCTCTTTGTCAGCTGCCGCCATTTTCCCATGCAAAAGGACAACTTCCTGGTCTGGAAATTCGCCGGCCAGCCTGTCGTGCAGGGCTTCAGCATTTTCCAGGTCAATCATTTCCGACTCACTGATCAAGGGCGTAACCGCATAAATCTGGAAGCCTTCCGCCAGTTGCTGGCGCATCAATGAATACACCTCATCTAGCTGGCTGCTGGTCTTCCAGTAGGATTTAATCGGCTTACGGCCGGCTGGCAGGTGTCTGATTTCTGACAAGGCGGTGTCGCCATAAACAGTCAAGGCCAATGACCGGGGAATCGGGGTGGCAGTCATGGCCAGGATATCCGGCCGGTCCCCCTTGTTGATCAAGGCCAGGCGCTGGACAACGCCAAAACGGTGCTGCTCGTCGATAATAACCAGGCCCAGCTTTTTAAAGGCTACTTGCTCTTGGATCAAGGCATGGGTGCCGATCACCACATTGATGCTGCCATCAGCCAGCTCCTTGTAGATTTCCCGCCGCTCCATGGTTTTAGTTGATCCCGTTAAGAGGGCCACCCGGACGCCGAAATCTTCCAGCATGGCGGAAATTTTGTGATAGTGCTGGTTGGCCAGAATTTCAGTTGGCACCATCAAGGCGGCCTGGTAGCCAGCTGTCACTGCCCCGTAAATGGCAAACACGGCCACTACGGTTTTCCCGGACCCAACGTCCCCCTGAAGAAGGCGCTGCATCTGCTGGTCAACAAACATATCGGCAAAAATCTCATTAATCACCTTTTTCTGGTCAGGAGACAGGGCAAAAGGCAGGGACTTGGTCAGCTTGCCGATTTCTTCCAGGTCGTAATGCTTGGCATAACCACTGTGGCTCTTATTTTGGCTGGACATCAAGGCCAGCTGCATTTGAAAGAGGAAGAATTCCCGGAAAACAGCGCTTCGGCGGGCCTCCTTAGCCTCAGCCAGGTCTTTAGGGTGGTGCATGGCGATGACCAGGTCCTGGTCAGCCATGAGCCGGTAGTGCTTCCGCAAGTCCTCTGGCACAGCATTGCCCATCTCATCCATGCTTTCGGCAATCGCCAGGTCGATCATGGTCTGCAGCTTCTTTTGCTTGATCTGCCGGTTGATTGAATAAATCGGCGCCATCCCGTCATCACTGTTTTTATTGGCTAAGAGCTTATAAGCTGACAGGCTCTGCTTTCTCAGGTCATATTTGCCATAGACGGCGATTTCCTGGCCCACGCTCAGCTGCTTGGTCAGCCATGGCTGGTTAAAAAAATTGACCATGATAATATCATGATCAATTCGCAGTTTGAAGCTGACCCGGCTCTTGTGGTAGCCAAAGTAATTCTGGTAGGGGTTGGTGGCCACGATCCCCTTCAGCATGACCTTCTGTCCGTCCTCCAGCTGGTCCAGCGGCAGATTCTCCAGTTCGTCATAGCGGTAAGGGAAGTAGAAGAGCAAGTCGTAGATGCTGTAAATGCCCAGCGACTGCAAAGCTTCTGCCGTCTTGGCCCCCACGCCCTTCAAGGCCGTCACCGGTCTGAAAATAGCTTCGTTTAAAGTCATTATTCTACAGAAATCAAGAAGTTGTAAACTGGCTGGCCACCGTCGTAAATTTCGAATTCGCAGTCATCATCTTCGTGAGCTGCTTCCAGGCGGTCAACAACTGCCTGGGCTTCTTCTTCAGTAGCATCGCTGCCGTACATTACAGTCACGATTTCAGAGTCTTCATCCAGCATCTTTTCTATCATAGCGACAGTTGCGACAATTGGGTCAACGTCGTCAACCACAATAGTGCCTTCAACGATACCAATGAAGTTGCCCTTGTGGATTTCAACGCCGTTGATTTCAGTGTCACGGGTTGCCCGGGTTACTTCACCGGACTTGACAGAGCCAAGTTCATCAGTCATGGCTTCAACGTTCGCGTCAACACTGGCTTCCGGGTTGAAGGCCAGCATAGCAGTTAAACCTTGCTGGATAGTCTTGGAAGGCACGATGCCGACTGGGATTTCAGCAACTTCAGCAGCCTGCTTGGCGGACATGATGATGTTGCCGTTGTTTGGCAGGATGATCGCCTGCTTGGCGCCAGACTTGGTGATGGCGTCCATGATGTCTTGAGTTGAAGGGTTCATGGTTTGCCCGCCGGAGATGATCCGGTTGACCCCTTCGCTTTCAAAGAGCTTGCGGACACCGTTGCCGGAAGCCACTGCGATCACTGCAAAGTCAACGCTTTCTTGTTGTTCTTGCTCGTTGTCAACGATCGTTTCGTGCTGAATCCGCATGTTGTCGATCTTGATCTTGCCCAATTGGCCGAATTGTGACCCGTAAAGGAAGACCTTGCCTGGGTATTCAGTGTGAACGTGAACCTTGGCGATTTCGCCGTCAGAAACTGCTAAGAGGGAGTCACCCAGTTCTGACAGGTAGCTTCTGAATTCTTCCAGGTCGAATGGCTTCTTGTTTGGCACGTCAGCCTTGAGGTCAACCATGATTTCAGTACAGTAGCCGTTGGCAATGTCGGAAGTTGCCAGTTGCCCTTGCACTGCCTGGTGGTGGGTAGCGTTGATCAAGGAGTTCATGTCGTCAGCATCTGGCACGTACTTGTCATCGAGGTTTTCACCCAAAAGGCCTTCCAGGAAGCCTTCATAGATGAAGACCAGACCTTGGCCGCCGGAGTCAACCACGCCGACTTGCTTAAGAACTGGCAGCAGGTCAGGAGTGCTCTTCAAAGCTTCCTTAGCGCCTTCAACGATCGCCTGCATTACTTCTTCTACATCATCGGTTTCATTTGCCTTGTTAGCACCTGCTTGAGCGCCAACCCGGGCCACAGTCAAGATGGTCCCCTCAACCGGCTTCATCACAGCCTTGTAGGCAGTAGCTACACCATTGCTAAAGGCATTTGCCAATTCCTGGGCGTTCAAAGTGGTCTTGCCTTGAGTTGCCTTGTAGAAGCCGCGGAAGAGCTGGGAGGTGATAACCCCACTGTTACCGCGCGCGCCCATCAGCATCCCCTTAGCCAGGCTTTCGGTCAAGTCGCCGACACTGCTGCTTGCGTTTTCGGAAACGGCCTTAGCCCCGCTTTCCATCGTGAGATTCATATTCGTGCCAGTGTCGCCGTCAGGAACTGGGAAAACATTTAGATCATTGACGAATTGCACGTTCTTGCTCATCCGGTGAGAGGCAATCCGCACCATGTCTCTAAATTCTTTACTGCTAATTTCACTTAAAACCAATATTGAATCCTCCACTTATCTAGTCGTCGAGAACCTTTACACCTTGAACAACGACGTTGACCGCCTTGGTGTCGATCCCCAGCTGGCTTCTTAAGTTATATTTGACACTGTCTTGTACATTACGACTTACTTCAGAAATTTTTAAGCCGTAGCCAACAATAATATAGACATCAACAGTTACTTGATTTTCGTCAGACTTAACAACGACACCGCGCTTGTAGTTTGCCCGGCTCAAAATGCTGTCGACTCCGTCTCTGATGGCATTCTTGGATGCCATACCGACAACGCCATAGTTAGACGTAGCTGCACCACCAACAACAGTTGCAATTACACCGTTTGAAATATCAATCAAACCATACTTTGTCTTGATTTTAACAGCCATGTTTATCCTCCGTCTTATTTCCAATATACATCCTTATTTTATCATAACGAGATCAAAAGCTAACAGTTCCAACTTTATTTTCTGGAAAATACTTTTCAAAATAATAATTGAAAAAGGTCAAACTTTATGGTAGAGTTTAATAGTGTGACATGACATGTAAAGGGGGTTTAGCAGCATGGCAAAAGATTTCGTAACCGGTAAGAAGACCACTTTTGGTAACACGCGTTCACACGCTTTGAACTCATCAAGTCGTTCTTGGAAGCCAAACCTTCAAAAAGTTCGCATTCTTGTAAACGGCAAGCCTAAGCGCGTTTGGGTTTCAACCAAGACTTTGAAGTCTGGTAAAGTTACCCGTGTCTAGTGACGAAACGAGCCCGGTAGATCAATGATCTGCCGGGTTTTATTTTGCTCTAGCAATGTGCATTAAAGTGATTTGTGCCGCAAATTGCAAGAATAAATTGAACACTTACCATAATATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACTTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTATACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATTCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTATCCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACATAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGTCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCCCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGCGCTTGCCCTTTTGGTGTTGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGAATAATATTAGTCAAAAAGAATCCACTACCAATGAGAACTAATATTATTCTTACCGTTCTTTTCTAAAGCACGAAGGGACTTATACGCACCAATAATACCTTCATCCAAGAAACCATAGCAAGATCTTAATTCAATCTTTTTCACGTCACTATTAACGTACTTCAGATTTTCGCCTGCTATTTTCTTTGCTGCGGATATTAAATTATCTAGCGCATCGTCCGATATGGTCAAGAGATACAGCCATGGTGCAAGTGCTTTAAGAATATAAACTGCTGAATAGAACACAAACATGTATACGACAACATGCATCAACATTGATAAAAAATATAGAAAATATAGCATATATTCTACCTCAAAGGAGAAATATAATGATAGGCAACATGTGGATTGCTCCACTAATCAAACAACAAAAAATAGACGGTGAAACTCAATACCTTTTCCAAGCAGGCAGCAAAATCACCGGTTTGACGTTCCCAACTTATTATACTATGGACGCATTGATATCCATATCTGAATTGGACTTGTCAGACCATAAAATCGAAATAAGACTAGACAAAGAGACTATCTCAGTAAACAATTTAAGCCAGAATGCGCTAACCGATGCAAACATACTTGATGGTTCTCTGACCATTGTAATTACACTAAGAAATTTTTTATTAAAAGAGTCTGGCATCAAAAAGTTTTCCCTTTATGTTGATGGCCAAGAAATGTCTGTGTTTCGGCTTAACTTTTCATCAACAAAATAATTTTGCAGCTACCACTTAGGGTAGATCCTAGGCAAGAAGATCCAGATGATCAGGTACGGCAAGCAGGTAAAACAAAAAAGCCCGCGCTGGCGGGCTGGAAAGGATAATGGTATGGAAAATGATTTTGACTGCGTAGTTTCGTTTGATAAAAACGATAATTTTTGGATTCTAAGAGCCAACGGAGGGAAGTATTTAGACGACTTCATAGACGACAATTATATTGGCATTCAGTATAACAAAGTGTCCGTTGCAGATCTGATGGATCTAGACCACAATCGAATAACCTCTGTTGAAAGTGTGAAAGACCTATATATTGAAAAATATGAGTTTGCGACAGGGTATAAAAATGATGATGAACTAGACACGTCTCAAAGGCAACGACTTACTACACACGCAAAACAAGCTTATTTGTTCACCTTTGAAATGAAGCCCGGTGATATAGTGTTAGTTCCAAGCAAGAAATCGCGAAAATTTGCCGTAGGAATCATTGAAGGAGAACCGTATGATGAATCTAAGGATTACATACAGAGTAGATTCGCAACTTCTAAACCAAATGGTAAGCAGTTTCTTATTTCAAACTACATAAAGAGGAGACATGTAACCTGGCATTCCTTTTTATTGCGCTCAGAGTTGCCGGCATTTCTTTCATGGATCATAAACTCACATCATGCATTGACAAAAATTGATTGCCAAACAGACGACAAAAGAATTCAGTTATTTTCACTATTAACGCCACTGTTTCAGTACAATGGAAAAACGTATTTAAAGCTCCATACGGGAAAAGGCGGGGATTTATCGATATCAGACTGGCGTAAGATTACTGAATGTACTAATGATATCGATAAAATCAGTATGAAAGCCGATGTGCATTCACCTGGATTTTTTACATTTGTTGTTAGCAACATTGACATAAACGCTTTGTCAAAATTTGTAGCAAACATTTTTGGATTAGACACTGCTCCTGTGACTTTAGCCGGTGCACTGTCCCTTGTCGCCATACTATTTTATGGTGGAAAAGATGTTTTTCTTCATGGCGTACACGGGGTTCATTTACAACACCAAAAAATAAATCAAGAAATTCAAGAGCAAAGAATAAAGAATGAAATAGCAAGACTAGCGCTAGAAAAGCAAAAAGATAGCTACAAAACTAAGACTTTAGCTGAAAAGCTTGAAATACAATTTACTGCAAATGGAACCGCAATCGAAAATGGACGTAATACCGGTGAAGAAACAGATGGCCCTGTTGCTCATAGCGAAAAAGCAAAATAGATGCTGGTAAAGCTAGTGGAAAAAAGAGATATGGGTAATATCCATCTAAAAAAGGCATTAAAATAATTGCAACTAAGCATGATATAAAACAGCTAAGCCCAAAATAGTCAAAAAACTTTTCCATTTTTCACTAATCCCCTCGAAAAATAACTTATTATGTTAATTATAGCCCAAAATATACCAGGCAAAAAGCAATTATCTTAATTAGGGACTAATCAATCCCCTTAGAATAAATTGTAGGGGAATTAATACTCGCCACAACTGGCATAAAAAAGCACGTCTTTAGGCAAAAAAGGCCTAAAAACGTGCTTTTCTTTGATTTACCTCTTGTAACGCATTTCCATATATGGTAATATATAAATAATCGAGCTTAAGTTAAAACAGGAAGGTAAAAAATTAGATGAACGTCTTGCAGAAGTATCTAGATCAAAACAAAATGACTCGGTATCAAGTAGCAAAAAAGACCGGAATTGCTAACACAACTCTGGCCAATGCAGTTAAAGATACTAAGCCACTTGCTGGCCAAACTGTAAAAGTGATTAGCGCAGTTGCAAAAGCTCTGGGTAAGACGCCTGGGCAAGTCCTAGACGATCTAATCAAGCTTGAAAATAGCGAGGAATAACGGTTGGCACATATCTATAAGCGTGGCAATACTTGGACCGCTAGAATTACTAAGCGTATTGGTGGCAAGCTGATCCAGTCTTCAAAAGGTGGCTTTAAAACAAAAGCTGGGCCACTGAGCAAGAAGCACTTATGCTTAAAGGCGTCGATATTGCCAATGACCCAACGTTCGTTCAGTTTTTTAACGAATGGTATCACACATTCAAAGAAAAATCGGTAACTTCGTCAACGAAGAAGCGCTATGTCACTCACGGCCGGATAATCTCCGAGTATTTCCAAAATACCAAGTTAAAAGATATAAAACGTACCGATTATCAGAGATTCTTAAACTGGTTTGGCGAATCGCATGCGCCTGGTACTGTTCACAAGCTTGATACGATGATTAGAGATTGTGTTTCTTCAGCAATAGCAGACGGTTTAATTTCTATGGACTTCACGGCTAAGACGGTTATAGCTGGTGACGACAGCAGAACTAGACACGTTGAATATCTAAACTTAGATGAAATCAAACGGTTGATCAGCTTGTGCTATGAAAATCGTCAGCCTAGATATACGAGCCCCTACATGATCATAACGGCAATTTACACCGGGATGAGATTAGGAGAGATTAGTGCACTGAATTGGAGCGATATCGATTTTAGTAGTAAGCAAATATCGATTACTAAGTCTTGGAACCAAGACCGCCGTGAAATGAGTAAGCCTAAAACTGAGTCGTCTATTAGAACCGTTCCAGTCAACAGTTGGCTTCTTGAGCTGATAACAGAGCTAAAAGCGAATGATTGCGACTTTGTTTTTGGCAATCCACTAACCGGATTTCCCCCAACTTCGCAAGCCATTAACCAAGCCCTTAGACGCTTCCTGAAGCAAGGCAACATGAAAAAAGAGATTTCCACTTTCACAGTTTACGGCACAGTCATGTTGCATTCCTGCTTAATAACGGAGTCGACATCTATGCAATCAGTCAAAGGTTGGGGCACGCAAACATAGCAATTACGCTTAAGGTTTATGCCTACTTGCTTGACGATCAGAAGCAAAAAGAAGATGATAAGATTATCGCTTCACTAGACATTTTGAACAAATAAGACTTAAATTGTGCATCAGTTTGTGCATCACTGGCAAAACTTCTATAGTTTTCTATAGTCTTGTTTAGCGCCATTGCAGTGTTTTCCGGCTATTACGCTTGCTATGTTTTTATATAAAATTCCAACCAAGACTTTGAAGTCTGGTAAAGTTACCCGTGTCTAGTGACGAAACGAGCCCGGTAGATCAATGATCTGCCGGATTTTATTTTTGACAAAAATTCATCAGCAACAAAAATAGGCGGCTCATTGAGCTGCCTGTTTTGTTACTTCTCGGCTAAATTGACCACCCGGTCAAACATAGCTATTTCTTCATCTGAAATCTTGTGAGCTACTTCGATTACGGTGCCAGGGAAATTCTGTAGAATTGTCTGGTGAATTTGCTTGGACAAGCGGGGATCCAGGGCTGAGGTCGCTTCATCGGCCAATAATACCGGCCGCTTGGCCAGCAGAGCTCTGGCAATTTCCAGCCGCTGCCCCTGACCGCCGGACAAGTTTTTGCCTTCTTTTCCGACTTGGTAGTCCAGACCTTTTTCCTCAATCAAGCTGGTTAAACCGGCTTTTTGACAAACTGCCAGCAGGTCTTCCCGGCTGACTTCCCTGCCTAAAGAGATATTATATTCGATTGTATCATCAAGAATATAAGGCTTCTGCTGGACAAAGGAGAAGTACTCGTGGTCCTTGCTCCAGTCACCATTGGCGTCTTCACCGTTGATCTCGTAATCCCCATCTGCCAGTTTGATCCGGCCAACCAAGACGTTAAGCAAGGTTGACTTGCCCCAGCCAGACGGTGCTTCCAGCAAGACTTTTTCACCATTTTTAACAGTCAAATCAAGATCGTTTAAAAGCTTCCGGTCCCCTCTTTGCACACTTGCATCGTCTAAAGAGAGTTCCTTAAATTCATCCCGGTCCGCAGCACTTTCTTTTGCTGTAAAATCTGCCACGGCAGTAAACTTTTCCCAGATCGGATTGCTGGTTTTAATGTCATTGACCGAAGAAAAGATACCGACAATCGGATTGATAAAGTTGTTGGCCAGCTGGGAGATCATCATGAAGGTCCCCAAAGTGATCTGCCCTTGAGTCACAAAGTAGATCCCCAGGCTGAAAGGAATGATCACGCTGCAGACGTAGGCAAAAGAAGTGATGACTTCTGTCGTCACCATTTCCGCCTTTTTCATCTTGGCCAGGGCCGTTTCCATTCTCTGGCTGTAGTGGAGCATTCTACTGTAAATACTGTCTTCAGCGTCATAGAGTCTGGCAAAAGCGGCAAAATTGATGGTGTCCGTCATTGCCTCAGTATATTTGCTGTTCTCCCCTTCCCAGGCAGAAGAAGCAGCTTCAATTTTTGGCCCGAAAATATTCTGCAAAAGGCCGGGAGCCAGGGAGGCGACCAGGAAGATCAAGGATAAAGCCCAGGAAGACAGCATGGCTGCCGCAGATGCCGCGATAAACTGCAAACCATTGAAAATAATATCCAGTTCAGCTTCCACCCGGTGACTTTCCACCTGCTTGAGGTCATTAGTCATAAAGGACAGGTCAAATTTGGGATCAGAATTATCTTAATACAACAAATATTTTGTTGCCTGCTCCTTGATCTTCAGGTTGACGTCCTTGATAATATTCGCCTGCATAATTTGGTAGATTAAGGCCAGGCAGGCAAAAAGGACAATACCCACAACTGCTTTAATAGTTAATTGTAATAAACTCCCCTTAGGATTTCCAGAAAAATTAATGAATTCCTGGAAGACATAAGCGATAAAAACCGCCTGCAGTGCCTTTGCGGCGGCGAAGACCGCAAAGACCAGCAACTTCCACTTGCTGGCATATTTTAACGTCATTTCTCTCCTCCTCGTAAATAATAGACAACACTACTGCAAGTCTGTCTATTCAAATACTTAACGATTTTCTTAAACTCATCAAAAATCTGATCATGGTCATCAAAGGCTTCTTTATTTACATCTTCCTCTCCAAAAATCATTTTCGAGAAAGAGTCAATGCTCTTTTCAGCACCATCAAATTGCAGCATCCTATTAAACAGAATATTTTTGATTGTATCTGCTACTTCTACCTTGGACAGGTGACTTATGCTTTTAAAATATGCTGATATGTTTCTAGTAACTTTTGTAACATCACTTGATGTATAAGATGTTAATATCTGCAGATAAATTCTGTTACCTCTTACAACTGGATTGGCAAAGACAAAATACAGTTTTGGTATTTTTTATGTAGACTCGTCAAGATAGAATTCTTCCCGTTATTCAATACAGAAAACAAGAAACTCAAGGATGCGATTTTGACTTCATCAACTTCTGATGAGCAAACATCATAAACTAATGACACGTATGCCGTTCTGGCTTTTTCTATTCTGTTCTTGTTTTCACCTCCTTAATTTATGATTAAAATTATACTACAGTTCATCAAATAATTCATCTTTTTTTAATTAAAAACACTTCGAATTTTATTCAATGTGTTTTTCTTGGATAATTTACATTTTGTTCTTCTTACGACGGCCAAAGGCGAGGAGACTTGCACTGGCCAGCAGTGCCACAATCCCTGCCAAAAAGGCGGACTTATTCTGGCTTTCGCCGGTTTGCGGCAAAGTTGCGCTTGCTTTTGCCGGAGCCTTAGCAGCAGAAGTTGCTGGAGCAGTCTTTTGAACAGTGCTGGCTGGAGCGGCTTGCTTTTTGCCAGTTGCCTTGGTTTCAGTCTTGCCAGCTGGAATTACGATAGTTTCGGTTTCCCCGGAGTTAGCCGGACTTTCACTTGGTTCGTCTTCGCTTGGAGTAGTCGGAGTTTCGCTCGGCTTGTTGTCGCTTGGAGTAGTCAGAGTTTCACTCGGCTCGTTGTCGCTTGGATTAGTCGGAGTTTCACTCGGCTTGTTGTCACTTGGAGTAGTCGGAGTTTCACTCGGCTCGTTTGCTTCTTCCAAAGCTTCCAAAATAGCCAGGTGCTTCTTAGCTTCAGTAAGTGCCAAATCCGCTGCTTCCTTGGCCTTAGCCGCGGCAGCTGAATCAGCCTGCTTGCTTTGCGCGGTTTGTACGGCAGCATCAAGTTCTGCCAACTTAGCCTTTTCACTGGTAGCAGTCTTTTCTGCTTAGCCGCAGCAAGAGTTTCATTTGCCGTAGTCAAAGCTGCTTGCTTAGCAGACAGGTTGCTTTCGGCGCTTGCGAGTTCTTGTTTGGCTCGAGCAAGCTTAGCGTCAGCTGCCTTGAGCGCGTCAGCCTTTTCATCAGCCGTCTTTTGAGCGGCAGAAGTTGCTTCTTGCGCCTTAGTCAATTTTTCCTTTTCAAGGCGTCATTGGCCACTACCTTAGGTAAAGCCTGGTATTCCTGCTCAGCTTCGCTTTCGGCTGCCTTCTTTGCAGCTAAGTCTTTATTTGCGGCGTCGCTGGCAGCCTTAGCCTCGTTATCCGTGTCAGTCAGTTCCTTAACCTGGCCGTTTACCTGGTCAACTGCCTTTTTCTCTTGATCAACCTTATCTTGAGCTTGGCTTACCTTGCCTTCTTGGTCAGCCAAAGCTGCTTGCGCCTTCTGGCTGGCTGAGTCTGCCGTCATTTCAGTTGCACTTGCTTCATCTTCAGCAGCCTTTTCTGCCTCTTGCGCGCTTGACAAGTTTTCCTCGCTCTTTTGGGCTTGGTCTGCCGCGCTTTTAGCTGCCTTATCAGCTTGGGCCTTCTTGTCAGTGGCCGCCTTAGCAGCAACTTACGCCAAACTTGCTTAAATCATCTTGCGCCTTTTTCTGCGCTTCTTCAGCTTGACGCTGCCTTGACTAACCGCGCCTACACCGACCACGCCAATCCCGGCAGTCGCGACTACAGCAATTTTCCGTAAATCTTTTTTCGCTTTATTTTCTATATGACTCACCTCTATAAACACACAATAGTTCGAGATAATATCTCTTAACTTTTATTATACAAATAAGTCATTTACTGCTGAGCGCTTTCACGGAGGAATATTTGCATTTCTTTGTAAAATCACGTCAAAGGCGCAAAAAAGTCCCGCTTTTCAGCGAGACTTTTTTATAATATTAATTATACTATCTTTTGCAAATCAAGCCATTTGGTAGCGGTCTAAATCTTTAGAATAAACAACCGCTACTAAGCCTTTCTTCAAGGATAACCGGCAGCTATCCTTATCCGGCAAAAACTCATTAGAAGTAAAGGAGCGTAGATAGTCACCGCTATAAGGAGCCAGGTCATACAAGGCCCCCTCAATCGTCAAATCTTCTACTGGCAGAAGGCAGGTCACCCCAAAGTAGCTATAGTCCTGCTGCTTAATCTCGTAGCTGCCAGCTTGCCGGTAAAAAATCAGATTCTGCTTGTCAATCAAGGTCAGCTGGTTAGCATACTTGCGCAGGTCCGGGTTCAAAATGCCAAAAGCATTGATCGCCGCGTGGTCAAGCCGGCCGCCAGTAGCCCCGTAAACCTTTAGCTGGTCAATCTTATAATCGCCAAAAGCAATCCCCAGCATCAATTCAGAATCGGTCCAGTCCTTCTTGGGTACCGAATAGCGGATATCCGCAACCGTCCCTTCTACCCAGGCCAGTTCATCAGCCTTCAGCGAGTCAAAATCCCCGATTGCCAAATCCGGCTTAAAGCCTAATTCCAGCAAAAGCAGGGCTCCCCGGTCGACCCCGATTAAAAGGTTTCCCTTAGCTTGCGCCTGCTTCAGCTGCTCCTTCAAATCAGCCGGCCATTCTTCCTTTGGCCCGCCAAGCAACACTGACGCGTCCATCACAAAACACCCTACCCTAACTTATTTCATCATTTCAAATATTCCGGCATCCGGCCTTCCTCGATTTCCGTCCGCATGGCCAGATAGTCATCATAGCGGAAAGTAGCGATTTCACCTAGAGCCATCTGATCCTTGACCGCGCACTTCGGTTCATGCAAGTGCTGGCAGCCCCGGAACTTGCAGCCCGTACTCAAGGCCTTAAATTCTTTAAAATACGTACACAGTTCATTCAGCTTGATCGGCGTCAGATCAATTGCCGAAAAGCCTGGCGTGTCTGCTAAAAAGCCTTCCCCTAATTTGAAAAGGGTAACCGTCCGGGTTGTATGTTTTCCCCGGTTCAAGCTGGTTGAGATCGCGCCCGTCGCCTGGCCCGCGTCTTCCTTGATAAAGTTCAGCAAAGTTGACTTCCCCGCCCCTGACTGGCCAGCCAGAGTCCAGATCTCGCTTTCCCCGATCTGCTTGGGAAGTTCTGCTGCCAGGCTTTCCCTGTCCAGGTAAACCCGGTAGCCGATCTTTTGGTAGTAAGCCAGCTGGCTTTCAATTTCTGCCAATTTTTCCTTTTCCAGCAGGTCGCTCTTTGACAGGTAGATCGCTACCTCTACTCCCTGCCAGGCAAAAAAGACCAGGAAGCGGTCCAGAAGAGCGGTGGAGAAATCTGGTTCAACTGCCGAAATGACCAAAAGCACGTGATCGACATTAGCCACCGCCGGCCGGCCGATCCGGTTCTTCCGGGGCAGAATCTTCACCAAATAAGCCAAGCCCTGTTCATCCAGCTTGACCTGCACGCTGTCACCGACCTGGGGCTTCTCCCGGTTCTTGCGGAAAACGCCCCGGGCCCTGGTCCGCACGACTCCTGCCGGCGTTTGCACGTCGTAGTAGCCGGCAATTAAAGAAACTACCGTTCCTTGTACTATTTCTGCCATTTAATTCCCGCTTTCACTGTCATCTGCCGAAATCGTCTCATCAACTACAGTTTGGTCATCACGGACAATCTTGATCTTACCGTCACCCTTAGTAACAGAAAAAGTGATCGTAAAGTCCGTGTCCTTGGTGATGTAAAGGTCCCGGTAAATATTGCCGAGACTGTGGTCGTCATCCTGGATATAAATCCGGACATGGTTGCCCTGGCTGGAGGAAGAGCTGGAGCTTGACTCACTTGAGTTTGATGAGCTCTCTGCAGCCTGGTAGTCAACCGTGAAGGTCTTCTTGACCTCTTTCTTCTCAGCCCCCTTGGAGACCGTAATCGTCAAAGTATCACCCTCAGAGACCTCGCTACCAGCGGCAGGATCAGTGTAAATCACGTCACCGCTGTCCACGCTGTCCGAGTGGTCCTTCTCAACCTTGACGTTGAGCTTCTTACTCTTGGCGTAAGACTGGGCGTCTTCCAGGCTCTTGCCCGTCAGATCGGCCAGTTTAAAAGTTGCCTTCTTGCTGCTGGAGGAGCTTGAAGGCTTAGGCTGGTCTTCTAAAGCCACGGCCACCACCAAAGTGATCGTTGTCTTAGAGGCATCTACCTTGCGGCCGGCCTTGACGCTTTGGGAAATGATCAAGCCTGGCAGGTACTCATTTGATGGTGCCTCCCGGCTCTTGACCTTGAAGCCCAGCTTGTTCAGCTTCTTTTTGGCGGTCGACAAATAAAGGCCCTCAACATCGGGCACCTTGGTCAAGTTTGATCCCTTAGACACCAGCAGGTTGACCTTTCCACCTTTGTCAACGGGACTGTTGGCCTTCGGCGTGGTCGAAATCACCTTGCCTTTTTTAACATCGCTGGAGTAAGTCCGCTTAACAGCGCCTACTGCCAGGCCCGAGCTCTTCAAAGAAGTCTTGGCTGCCTTCTCCGTCATGTTCACGACGTCCGGCACCCGGACATTGTTATGGCCAACTGCCAAAAACATGAAGAGCAGGATGGCAAAAACAGGGAATAATGACCCAATCCACCACCACTTATATTTCTTGATACTAGCCCAGAAAGACCGCTTCTTTGGCTCTTCAGCCTTGCCTTCCTTGGCCTTCTCAGCCTGCATGACCTTGCCGTTCAAGGCTGGCAGGATCTTAGTTTCATCATTATTGCCGTGGCTTGGCCGGTAAATTGCTTCGCCTGCCCGGCTCGGATCCAGACTGGAGTCCAGGTCTGCCTTCATTTCAGCCACGGAAGCATACCGGTCCCGCGGATCCTTGGCCGTCGCTTTTAAAACAACGTTTTCCAAGGCCTGGGGAATGGCCTTGTTTTGCTTTCTAAGGGACGGAATATCGTCTTCAGCATGCTTGAGGGCAATTGCCACCGGCGTTTCCCCATTAAAGGGCACATGGCCAGTCAAGGCCTCATACAGGATGATCCCCAAAGAATAGATGTCAGACTGCTTGGTGACCATCCCTCCCCGGGTCTGCTCAGGAGACATATAGTGCACCGAACCCAGGACCGAGTTGGTCTGAGTGATCGCGCTTTGATTCAAGGCGACAGCGATACCGAAGTCGGCAATTTTGATGTTGCCTTTTTCATCCATCAAAATATTCTGTGGCTTCAAATCGCGGTGAATCACATTGTGCTTGTGGGCCAGTTCCATCGCTGACAAAATCTGGTCCATGATCTTGATGACCTGCGGGAGGGGAATCGGGCTTTTTTCCCGGATATATTCCTTTAAGTCAGGTCCCTTCACGTATTCCATGACCATATATGGCAGGCCATGGTCGGTCCCCACGTCAAAAACGGAGACAATATTAGGGTGGCTCAGTTCACTGGTGGCCAGGGCCTCTCTTTGAAAGCGGGCCAGAACCTGGGAGTCCTTCTGCAAATCAAGGCGAATAATTTTAACGGCGACCTGTCTCTTCAAAATTATGTCATCAGCCAGGTAGACGTTGGCCATTCCGCCTTCACCCAGGGTGTCGACGATCCGGTAACGGTCTCCAAGCAAATAACCTTTATTGATCACTCGCGCCATCCTCCTCATTTACGGCCAGGCAGACGGTAATATTGTCGCCGCCGCCCAGACGATTGGCTTCATTGACCAACTTGTTGCACCTCTCCTGCAGGTTTAGGCCCTTGGTCGCCAAAACCTGTTGAATCAAAGGATCCGATAGGGAATTGGTCAAGCCGTCAGTGCAGAGAAGGAGCACGTCGTCAGTCTTCATTTCAAGTTCATTATATTCCGGATCAATAGTGCTTGAAACGCCTAAGGCTTGCGTAATGATATTTTTCTGTGGGTGGGTCTTCGCCTGTTCTTTGGTGATCTGCCCCATCTTGACCAGTTCATTGACTAAAGAGTGGTCTTCAGTGATCTGGCGGAAATTCCCTTCAGAGTAGCTGTAGGCCCGGGAGTCACCCAGGTGGGCAAGCAAGACTTCCTGGTCAAAGAACATGGCCAGGACAATCGTCGTGCCCATCCCGTTCAAGTCCGGGAAGCGGTCTGCGGCCTTCAGAATCGTTTCGTTTTCTGAGCGCAGCTGGACGTCCAGCCATTTTCTGGCCAGATTCTTGTCGTGCAGGTCGGTGTTAGCGAAATTGTGGCCCAGGTGGCTGACTGCCATCGTGGAAGCAACGTCGCCGCCCTGGTTGCCCCCCATCCCATCGCAGACGATGGCCATGGTTACCCCAACGCGATTTTGAAAAATCTGCACGAAGTCTTGATTGCTCTCTCTAACTCTACCAATGCTTGAAGCAAATGCCGTTTTAATCACAAGTACTAACCTCTTGTCGTAAACTTGGCAATGAAAAATCCATCACTGTTGTAGCTGTCGGGCAGGATCTTCAGCATCCCCTTGGGCGCGGAGATCTTGGCCGTTTCAAATGGTTTCAATGCAAAATCTGGATGCGCGGCTAAAAATTTCCGCACGTTTTCTTCGTTTTCTTCTACAGAGATTGAGCAGGTGGAGTAGACTAACTCCCCGCCCTTTTTCAGCAATCCGGATACTTCGTTCAAAATGTCCAGTTGTATTTCAGCCAAATGGCTGATGTCTTCCGCTGTTTTCGTGTAGCGGATTTCCGGCTTGCGGCGCAGCAGTCCCAGACCGGAACATGGTGCGTCTATCAATATCTTATCAAATTCTTGCCCGGAAAAATACTCCCTCGCCTTCCGCGCGTCCAAAGCTTTGACCTTGACCCGGTCAGCAACCCGCATTCTGGCGGCATTTTCCTTGACCAGACGCAATTTCTTTTCATGGATATCCAGAGCAGTCACTTGCCCGTCAGGCAATTGCTCAGCTATTTGAATGGTCTTGCCGCCTGGGGCGCTGCAGGCATCAAGGGCCTGCTCATTTCCCTTAAAGTCAAAGGCTTCCGCCACCAGGCTGGCTGCTTCGTCTTGCACCGTCACTTCACCATCTTTGAAAAAGTCGGTCATCACGATCCCGCCCCGGCTTAAGGCATAGCTGCGGCTGGCCAAAGGCGACTCCTGAGGGGCAAAATGGGCCCGGTCCAGGTCCCGGACGACCCGCTTTTCATCAGCCAAAGCCGAAATCCGGATTTCGTTTTTCGCCTTGCTGTTGAAGCTGGCCATGATTTTTTCTGCCCTGCTCTTGCCCCAGTTGGCTACGAAATAGTCGCTCAGCCAAAGGGGCATGCTGCACTTGACGCTGAGATAGTCTGGCGCGTCTTTTTCCGGCAGGACCTCTCCTCGCCGTAAAAGCGAGTGCAAAATCCCGTTAACCAGGCGGTAGCCGCTAGATTTTGGCCGGCCATAGACCTTAGCCAGCTTGTTGGCCTCGTCTAAGACTGCCCGGTTTGGCACCTTGTCTAAAAAGAAGATCTGGTAGGCCGACATCAATAAAAGGGGCTTGATATATGGCTCTCTCAGCCGGGCCTTGACCAGGTCCTTGAGCTGGTATTCCAGGTAAAGCTGGTATTGGATAGTCCCATAGACCAGGTTGGTGGCCAGCCGACTCTCTTCACCCGGCAGCTTAGCCGCCTTTAACGCGTGGTTTAAGCTGATATTTGAATATGAGCCCTGGTTAATCACCTTCATCAAGGTGTCCAGGGCCACGGTGCGGGCGTTAGTCTTCATCTACGATCTTTTCTCCTGCTGCAAACTTCTTCCCCTGCCCGTTCAAAAAGTCCTTGATGGCCATGGCCTTCTTGCCATTTGGCTGGACTTCAAGCAGGTTCAAGACCGTGTTGCCGGCAAAGCTGATAGCAAAGCGGCCCTGGTTGGTCAAAAGGTGGCCAGCTGGCAGACTGGTGTTGTCGTCAGCCACTTCTGCCTTCCAAACCTTTAAGCGCTGGCCCTTGATGACCAGGTAGGCGCCTGGGTCCGGATTGAGGGCCCGGATCAAGTTCTTGGCCTCCTTGGCCGTCAATTTCAAGGAAATTCTTTCTTCAGCCTTGCTGATGGTTGGGGAAAAGACTACCTGGCTTGGATCCTGCGGCTTTTTGACAATTTCGCCACTGGCAATCTTTGGCAGAGTTTCCAAAAGCAGGTCCCGGCCAAGCGGAGCCAGTTCTTCGAAGACTTCCCCGCTGGTCTCATCTGGTCTGATCGGCAGGCTGGCCTGGGCATACATGTCGCCGGCGTCCATTTCCTTGACCATTTCCATGATGGTGACCCCAGTTTCCGCATCCCCGTTTCTGACCGCATACTGGATCGGTGCCCCGCCCCGGTATTTCGGCAAAAGGGATCCGTGCACGTTAACAGCCGCGATCTTAGCGGACTTCAGGAATTTGGTCGGCAAAAACTGGCCAAAGGCCGCGGTGATGATGAAATCGGCGTCAAGCTGCAGCAATTCGTCAAGTTCATCTGACTTGGACAGGCGGACTGGCTGGTATAAAGGCAAGTCGTTGGCCAAAGCCACTTCCTTGACCGGGGAGTAAACGACCTTTTGCTTGCGGCCAACCTTCTTGTCCGGCTGGGTGACCACGGCCAAAATATGATAACCGGCCTTGATCAGGCCTTCCAAAACTGTAGCGCCGAATTGCGGCGTTCCTAAAAAGATTACTGAATTCACGTTTTTATTCCTTTCCTTTACATAATTCTCTCTGGCTCTGAATCGATCTCAACAGTCAAGCCGTACTTTTTCACTTCCTGGGCCTGGTCCTGGATCTGGTGCAGGAGCTCATTTAAGTGTTTTTCTCTTTTATATTTTACCAGTATTTGGTAATAATACTGGCTCTTTAAGCGGCTGATCGTTGCCGGAGCCGGCCCTAAGATAATAGTCGGCGCCCGCAATTCCCTCTGCAATTGCCGTTTGATTTTAAAAGCCTCCCGGGCCGCGTTTTGCTCATTTTTGGCTGAAACGGAGACCAGGACCGTGTAAAAGTAAGGCGGGTAGTCGCCGGCATGGCGGACCCGCATTTCTTTAGCGTAAAAAAGCTCATAGTCCTGCTTTTGCGCCAGGTGGATAGCGTAGTGGTCCGGATTATAAGTCTGGATCATGACCTGCCCTTCCTTGTCGGCCCGCCCTGCCCGGCCAGCTACTTGCGTAATCAGCTCAAAAGTCCGCTCAGAAGCGTTATAGTCGGGCAGCCATAAACCAGTGTCAGCATTGATTACCCCAACCAAAGTTACATTAGGGAAGTCCAGGCCCTTGGCGATCATCTGCGTGCCCAGCAAGATGTCGGCTTCTCCTTGGCCAAAACTGGTCAAAATCTTGTCATAGCTGCCCTTCCTCCGGGTCGTGTCCACGTCCATGCGGATGATTTTAGCTTGCGGAAAAAGCTCAGCCAGCTCTTCTTGCACCTTCTGCGTCCCCGTCCCCAAAAAGCGGATCTGCCGGTCCCGGCAGTTGGGACAAATTTCCGGAACAGCTTCTTGGTAGCCGCAATAGTGGCACTGCATAGTCCAAGTGTCCTTATGCATGGTCAAGGACAAGTCGCAGTTAGGGCACTTTAAAACAAAGCCGCAATTGCGGCAGAGCATGAAGTTGGCAAAGCCCCGCCGGTTTAAAAGCAGGATTACCTGCTCTTTTTTCTCCAGCCGCTTTTGAATCGCCTCAGCCAATGGACAGGAGATGTCAAACTGGCTGCCGGCAAACTGCACGTGCTTTAAGTCAAGCAGGTCAACTCGCGGTAAAGGCTGGCTCTTGGCCCGCTTTTTTAAGCGCAAGAGCTGGTAGACCCCCTTTTGGGCCCGGGCCCGGCTGGCCAAAGACGGCGTCGCGCTACCCAAAATCAAGGGACAGTGGTGGTAGCGGGACCGCCAAATTGCCACGTCCCGGGCATGGTAGCGGGGATTGTTGTCCTGCTTGTAGGAGCCTTCATGCTCTTCATCGATAATGATGAGGCCTAAATTGTCCAAGGGGGCAAAAACCGCGCTTCTAGCGCCTACGACCACCTGGGCCTGACCCCGGCGGATCCTGCGCCATTCGTCATAGCGCTCACCTTCCGACAAGGCCGAGTGTAAAACCGCCACCTGCTGGCCAAAGCGGGCCTGGACCTGCTTGACCATCTGGGGGGTTAGGGAAATTTCCGGCACCAGCATCAAGGCTGTCCTGCCCAAGGCCAGGGCCTGGCTGATCGCCTGCAGGTAGACTTCGGTTTTCCCGGACCCTGTCACTCCTTCTAAAAGAAAGGTCTGGCTGACCCGGCCCTTGATGTCCTGGCTGACCCGGCTCAAGGCCGCGGCCTGCTCGTCATTTAGGTCTAAAGGCCGGCTGGGAGCAACCGGCTTGGTTGGCCGCCGGTATTTTTCCTGGTCTTTTTCCTGCAGCCATTTCTTGCTGACCGCCGCTTTTAAAGTTGCTGAACTGATGCCCAGACCGGTCAATTCTTCCCGGCTTTTAGGATAAGCCGCAAAGTCCCCGGCCAAATCTGCCAGCAATTTTCTTTGCTGGCTGGCCGTTTTTCTAGTTTCTAAAAGAATCTCCTGGCAGTCAGCGGCCGACAGAAGCGGATAGTAGACTGAAACCATCTTCTTTTTCGCCTTATTTTCAACCAGGTATTCTATCCTGGCCTCCCCCTTATTCAGGAGCTGCTTGACCAGCTTGATCAGACGCGGCTCTTCTAAGTTGGCCAAATCCACCGGGTCTCCCGCAAAAAGAGGCATTTGCTCTGCCCGCGGGCTGTTTGGCAGGAGGATTTTCCGGTAATTGGCCCGCATAACCCCCGGTAGCATGGTCTTGAGGATACTGATCCGGTAGGCAAAAATCTGCCGGGCCAGGTCGCTGGACAGGGCGACCAGCTCGGGAGTCAAAGGCGGCATTTCATCGACCACTAAGAGCAGGTCCTTTAACTGGCCGGTAAAGTCGCTGCTTTTTTTCACGGCGACGACAAAGCCCTGGACCTTGCGGCGGCCAAAAGGCACCACTACCCGGCTGCCAATTTCAACTTCCAGGTCATCAGGGATATGGTATTCAAAAACGCGGTCAGTCTGGTGGGCAGCCACATCGACAATAACTTCTGCGATCAAGTCCTTCTCCCTTCCTTTACGCTAAAAGAGGAGCGGGCTTCTGGTCCGCTCCTCTTCAAGAATTATTCGTCGGCTTCACCGTGAGGGTCAGCGTCAATCGTTACCTTGCCGGCAGCAATTTCTTCCAATGCCTGGCCGACCGGCTTCAAGTTGTGGTAGTTGTCCAAAGCGCCCGGCTTGCCGGCTTCCAGTTCACCAGCCCGCTTGGCAGCCAGAACTGACAGTGAGTATCTTGAATCAACTTCATCTAGCAGCTTGTCAATTGATGGATAGGTAATTCTCATCTTAGTCCTCCTTAACCATTTTCCGATAATCGTCGATCACGCGCCTGACGCTGACGTGTTCAGCGTCAACGATTGCTTTAATGTGGTTGACGGCGTTGGCGACAGTGTCGTTGACTACCGCGTAATCATAGTCCTGCATAACCAGAATTTCCTTGCGCGCTTGGGCAATTCTGCCCCGGATCACGTCTTCGGATTCCGTGCCCCGGTGTTCCAGCCGGTCTCTTAAAGTGTGCAGGTCAGGTGGCGTCAAGAAAATAAAGACGCCTTCTGGCATTTGTTGGCGAACCGTTCTGGCCCCGTTGACATCGATTTCCAGCAAGACGTCCTTGCCGGCAGCCAGCATTTCCTTGACCGGGCCCAAAGGGGTCCCGTAAAGGTTGCCGACGTATTCGTTGTATTCCAGCAGCTGATTGTCAGCAATCGCCTGCTTGAATTCTTCCCTGGTCACGAAGTAGTAGTCTTTCCCGTTCACTTCGCCTTCACGGGGCTTGCGGGTAGTCATTGAGACTGAGTATTCGAAGGGGAAGACCTTGTGTTCAACAATTGCGCTTTTGACGGTTCCCTTGCCCACCCCGGACGGGCCGGACAAAACCAACAGTAATCCTTTATCTGCCATGATAGCTCCTTTTTTGACTAGTAATTCTATTTTGGACCATAAGCGCCTTCTGATCAAGTCTTAAGGCCGAAAAAAGCTTTTTTAAAAAAGGGGCTTGCTTTTTCGAATACTTGTTCGTATAATATGTTTACAAACAGGCGTTCGAAAATGATTTACTTAAAGGAGTCTTCACCATGTCCAAATTTCAAAACTTTGCCAGCCAAGCCGCTCAGCCCCTTAAGAAGGCCTTTCACTATCTCTTTGCTTATGACGAAGACCGGCTCACCCTCCGCGGCGACAGCCTGGCAGTTAACTTAGCTAAATTGCAGCTGGCCTTCTTGAAGAGGCAATATCTCCTGGTCACCTTGAATGACGGCAGCTGGCGGGTTGGCAAGATCACCAAGCGGATTTCACCCAGCCGCTTCGTTTTCTGCGATGCCGACAACAAGATTTTTTACCAGCTTGACATTAATGACATTTTAACAGTTGAGCTGCCTTAAAGCAAAAAAGAGCCTGGCTTTTCCAGACTCTTTTTGCACTTATGTTCTCTTACGCTTTTCGTTATTTCACGCTGGCGTACTTGAACTGCCAACCGCCGAGGTTGTCGTTGTAGACATTCTTGATTTCCGGTCTGATCAAGTAAGCAGTTGAGATGTAGTAGATTGGGGTGATCCCTTCATCTTCCAGCAGAATAGCTTCGGCCTTTTGCAGGTCGCTTACCCGCTGGCTGCTAGAAGCAGTTGTCTTGGAGTCCGCGATCAAACGGTCGTATTCACTATTGCTCACCGTAGTTTCTGCTGTTGTTGCTGGTCAGAAGGTCCAGGAAGGATATAGCGTCGTTGAAGTCGGCGATCCAGGTGGAAACCATGACATCGAACTTCCCTTCTTCCCGGCGGGCCATCCGGGTCTTAAAGTAAGGAATCCGCCGGTCCAAAGTCACGACCAGCTTGTAGTCGCCTTCTGCTTTCACGCCCAGGCTGGATAAAGGCTTCTTGCCGGCAGTAATAGCCGTGGCATCTTGATGCCCTCAAACAAGTAGGCATATTCTGAAGCCGTCTTATGGTTGACCGTTCTTCGACAGGAATAGACAAAGTCCTTGGCCGTGACCGGACTGCCATCACTTCACTTGGACTTGCGCAAAGTAAAGGTATAGGTCTTGCCGTCCTTGGAAACCGTGCTGCTGGTGGCCAGGGCCGGCATCAACTTGCCATTTTTCCCGATCCGGTACAAGCCTTCCATTGTGTTCCGCAATTGGTCAAAGCTGACAGTATCACTGGCCTTGGACATGTCAATGGTCGAAATTTCAGCTGAAGTCGACCAGGAAAATTCCTGCTTCTTGCTGGCCTGGCTATTGGATTTGCCGCAAGCCGTCAGCATAATCATTGACAAGGCCGCCAGAGCCAGCGGCGCTTTAATCTTAATCGGTCTCATTTTTTCGTCCTCTCTTTCTTGCAGATTTTTACACTGGTCCAGAAATACATTATATTTTCTGGGAGTATGTTTAAACTTAAATTAAAACAGTAGTTATCCATTGTCAACACTTTTTTACCTATAATTAAAGCAGAAATTGCGTATTCTTCCCATGCGCATGCAAAAAACTCTCCTGCCTTCTGGCAAGAGAGTTATTTTTTGATAATTATTTTCTAATCTTGTTTCCGCTGACTGGCAATCAGGTCGGCCGCGTTTTGCTCAGCAGCTTCGCTGACATTAGCTCCAGCCATCATCTGGGCGATCATATTGATGCTGCTGTCTTCATCAAGTTCCTTGACCTGGGTAAAGGTCTCACCGGCTGCAACCTGCTTGGCGATGGCAAAGCGGTGGTCGGCGCTGGCCGCTACCTGCGGGGAGTGGGTGATGGCGATAACCTGCTTTTGGCCGGCAATCGCGTGCATCTTCTTGCCGATGGCCGCTGCCACCCGGCCGGAAACCCCGGTGTCAATTTCATCAAAGACCATGGTGCCAACCGGCTCAACCCGGGAGAAGATAGCCTTTAGGGCCAGGATCAGCCGGGACTGTTCCCCGCCGGAAACGATCTTGACCAGCGGCATCAGCTCTTCGCCTGGGTTTGGCGCGATGTAGAAGGCCAGGTCATCAATCCCCTTGACCGTGAAATTATCAGTCTTGGCGAAGCGGATGGAGAAACGGGCCTTGTCCATGTACAGGTCAGCCAGTTCATGCTTGATCGCTTCTTCCAGCTTCAAGGCGGTAGATTCTCTGGCCTGGTGGAGGTCAGCCGCCATGACTGACATTTTTTCCTCAACAGCGGCTATCTGCTTGACCAGTTCTTCTTCGTCAAGGCCACCAGTTTCAAACTGGCTGAGCTCCTTGGAGACTTTTGCATAGAAGTCAAAAACGTCTGCCAGGCTTGGTCCATACTTCTTCTTCAAGTTGTTCAAGAGGTCCAGGCGGTTTTGCACGTACTGGTAGCGTTCTTCATCAAATTCCAAGCTGTCCATGATGTCGCCCAGTTCTGAGCGGGCATCGCTCAGCGAATATACCCCGTCAGTAATGGACTGGGCCACATTCTTGAAGTCCTTGTCCAGGTCGGCCAAATCTTCTGCCGTTCCTTGGGCATCCCCCAGCAGGCTGGTTAAGCCATGCTCGTCATCGTCAAAAAGCTGGATCATGAAGTTGGCGGATTCAGCAATCTTCTGGTAATTGTTCAGCTTGTTGAACTCGTCTTCCAAGTTCTGGTCTTCCTGCTCATCCGTCAAATCCGCTTGGGTCAACTCTTCGACCTGGAACTGGAGGATGTCCTGGCGCTGGGCCAGTTCCCGGCTGTCCCGGCGCAGGTGCTCCAGGCGCTGGTTAAGGCTTTGCCAGGTCTGGTATTCAGCCTGGTACTTGCCTAAAAGGGACTTGAAGTCCTTGCCCGCGTATTCATCGACCAGGTCAATCTGCCGGCTTTGGTCCATCAGCATCTGCTGGTCGTTTTGTCCATGGATGTCGACCAGGTACTCACCAATTTTTGCCAAAGCGGTGATGGTGGTCAGTTGCCCGTTGATCCGGATGACGTTCCGGCCCTTGCTGGAAATCTCCCGGCTGATGATCAGGTCATCACCGTCCATCGGCAGGCCGTAGTCAGCCGCGATTTGTTCAACTTCCCGCATTTCCTCATCTTGCAGGGTAAAAAGGCCCGTCACCACTGCCTTGCTCTGGCCAGACCGGACCAGTTCTTTTTGGGCCCGGTGGCCCAGCAAAAGTGACAAAGCATCGATCAAGATGGACTTGCCGGCCCCGGTTTCCCCGATCAGGACTGTCATTTGCGGCTGAAACTTGATTTTCAGACTCTTAATGATAGCGAAATTCTGGATATCCAATTCGACAAGCATAAGCGTCCCACAGCATCCTTTCTACAGACCCTGGGCAGCCCGGTCAACCAGCTCGCTGACTGAGCCGGACCAGAGATTCTGCCCTGGATTTGCCTGGTCCTTCTTCAAGTGAAGCAAAAATTCAATATTCCCCTTGCCGCCCTTGATTGGTGAATAGTCAACGCCCAAAATGGAAAAGCCAATTTCCAGGGCCTTGGCCATAGTGTGCTCGATCACTGCCTGGTGAACCGCGTGGTCCCGGACGATCCCGTGCTTGCCGACATTTTCCGGACCGGCCTCAAACTGGGGCTTGATCAAGCAAACGGCATCCCCCTGGTCTTTCAAGATTTCATACATCGGCGGCATGATCAAGTCCAGGGAGATAAACGACACGTCGGTCATGGCGAAGTCCGGCAGGCCTTCGGTAAAGTCGGCGGGAACCGAGTAGCGGAAGTTCTGCCGCTCCATCACCACCACCCGGGGGTCATCCCGCAGCTGCCAGGCCAGTTGGTTATAGCCCACGTCCAAGGCATAGACCAGCTTGGCCCCATTTTGCAGGGCCACGTCGGTAAAGCCACCAGTTGAAGCCCCGATATCCAGGCAGACCTTGTCTTTTAAGTCAATGTTCCAGACCTTGACCGCCTTTTCCAATTTGAAACCGCCCCGGGAAACATACTTGAGATTATCCTTTTTAATGAAAAATTCCTCGTCAACGGGAAACTTCTCCCCGGCCTTATCGATCCGCTGGTGGTTGTGGTCAGTTACAAGACCCGCCATGATGGCTCTTTGGGCCTGAGTTCTGGAGTTAAAATTTCCCTTGGCGGCCAATAATACGTCCGCGCGTTCTTTACTTGCCATTACAATACCTTCTGATACAAATCCAAAAAGCCCAGCAAAACTTCTGCCTTTTCCCCGGCCAGGTCAGCCTTGCCCTTTTCAATCAGCTGCTTGAGTTCATTTCTGGTTGCCTCTGCCCCCAACATGGTCAAGCTGTTGTTCTTGCCCACTTCCTGGTCCTTATGGGTCGCCTTGCCCGCTTCTTCCTGGCTTTCAACGATGTCTACCAGGTCGTCATAGAGCTGGTAAGAGCGGCCAAAGTGCTTGGCGAAGGCCAGGTACTTTTGGGCCTGCTGGTCAGGGCAAGCAGCTAATGCCGTGGCCATCTGAACGCTGGCCAAAATCAAGCAGCCGGTCTTCAGCCATTCCATGTGGTCAATCACTTCTTCACTGCTGTCTTCATTGTTGGTGGTGTCGATGTCCAGATATTGGCCAGCCACCATCCCCTTTGGACCCACAGCTTCAGTAATGATCTCGACCAGCTTCCAGTTATGTTCAGCCTGGGCGATCCACTGGATACCTAAAGGCTGGAGGGCATCCCCGGCCAAAATAGCTTCAGCTTCGCCCCATTTCTTGTGGCTGGTCAATTCCCCCCGCCGGTAATCGTCATTGTCCATGGCCGGCAGGTCATCGTGGATCAAAGAATAGGTATGGATCAGTTCAATCCCGCAGGCGGCCTGGACTTCTTTTTCGGTGATCTCAACGCCCAAGGCATCTAAAGTTGCCAAAAAGAGCAAAGGCCGCAGGCGCTTGCCCCCAGCCATAACTGAATAAGCCATGATTTCAGCAAAACGGGGGTCATCGCTTTCTTTTGCCAGTTGTCCTTCTAAAAAATCATTAATGATTGGCGTGTACTTAGCTTGAAATTCTTTAAAAGTTGTCATGGCTTTATTCCTTTGGTGCTGAAGCATCGGTTGGATCAAGTTCCTTCTCGCTACCATCAGACTCGATCAACTTGGCCACGGTGTTTTCGGCCTTGGTCAATTCCTGCTTCAATTCCCGGCTCAGCTTGACTCCGGTCTGGAACTGGGCCAATGATTCTTCCAGTGACAACTGGCCATTTTCCAGCTGGCCAACGATTTCCTGCAGCTCCTTGAGCTGGCTTTCAAAATTGTTCTTCTCAGTCATTTTTTTCTTCCTTAATCTCTTCAATCCGGCCGATGGCCTGTCCATCCTTTAAGTGCAGGCGAACCTGGTCGCCTGGAACCAATTGCTGAACTGACTTGACCACGTTGCCGCTCGCGTCAGTCGTGTAGCTGTAGCCCCGAGCCAGGGTCTTTAAAGGACTGTAGTCGTCCAGCTGCTGGACGGCCTGCCGGCAGGCAGCCTGCTTTTGTTCCAGAATCCGCTTGATCCCCATTTCCAGGCTCTTGGCCAGGTAGCTGTTTTCCTGCTTAAGCTGCTTGATTCTCCGGTCTGGGGCCTGGTGCTGGAGGCGCTGGGTCAAAAGGCTAAGCTTTTGCCCCTGGTCTTTGACAATTACTTCCATCATCCGACTCAGCTGCTGGGACAATTGGTCGACCTGCTGCATCTTCTGCTCATAGAGGCGCTGGGGCTCTTTCATGATAAAAGAATTCTCCAGCTGGGCCAGGGCCTGGGCCCGGACCTGGATCACGGCCCGGATGTCGGTCAAAAGCCGGGTCTGCAGCTGGCCAATTTCAGCCAGGACCAGGGGCAGGGCCGGCGTCGCCATTTCAGCGGCTGCCGTTGGCGTAGCCGCCCGGCAGTCAGCTGCCAGGTCACAGAGGGTGGTATCTGTTTCGTGACCAACTGATGAAATCACCGGCATCTTCATGGCATAAACCTGGCGGACCACTTCTTCTTCGTTAAAAGGCCACAGGTCTTCTAAAGACCCGCCCCCCCGCCCGATAATGAGCACGTCATATTCATCTGCCCGGGCTTGGATCTGCTGCATAGCAGAAACCAAGCTGCCAGCTGCGCTTTCCCCTTGCACCTGGGCTGGGAAAAGGTCAATTTCAGCGTGCGAGAAGCGGCGGTTAGCCGTTACCATGATGTCGTGGATGACCGCCCCGGAGGCTGAAGTCACAACCGCGATCTTATCTGGAAAAAGGGGCAGAGGGCGCTTGTGCTCTTGGGCAAAGAGGCCTTCTTTAGCCAGCTTCTCCTGCAGCTGCCTAAAGCGTTCATACAAGGCACCAAGGCCGGCCGGTTCCATGCTTTTGGCATAAAACTGGTAGCTGCCCTGGGCTTCATAAGTTGACAAGCGGCCGGTCACGTAGACCTTCATCCCTTCTTCCGGCTCGAACTTAACCTTGTCAAAGTCTCCGCGGAACATCACCACATTGATTTTAGACTTGTCGTCTTTTAAAGAAAAGTACTGGTGACCACCTCTCCGGAAGCGAAAATTCGACAATTCCCCTTGGAGAAAAATTTGCCGCAGGTAGGGATCCCGGTCAAATTTCTGCTTAACATACCAATTTAATTCACTGACAGTCAGGTACTTTTCGTCCGTCCCCTTAATCGAGTCCATGCTGTCTCCTCGTCAATTTGATGACTTCTTCCATTAAAAACTCTACCGTCAAAGGGCCAACCCCGCCAGGCACAGGCGTGATCCAGCTGGCCTTTTCTTTAACGGGGGCAAAATCAACGTCACCGACCAGGTGGCCGTCCACCCGGTTGATGCCTACATCAATCACGACCGCCCCTTCTTTAACCATGTCCGCCTTGATCATTTCCGCCTTGCCGACCGCGCAGACCAGGATGTCGGCCTGCTTGGTCAAGTCAGCCAGGTTCCGGCTGCGGGAGTGCAGGATTGAGACAGAAGCGTTTCTTTCCAGCATCAAGGCAGCCAGGGGCTTGCCAACAATGTTTGACCGGCCGACAATCACGGCGTTCTTGCCAGTCAAGTCAATTTGGTAGTGGTCCAAAAGGGCAATGATGCCGGCAGCCGTAGCTGGTTCGACAAAGTGCTTGCCCTGCCAGAGGCGGCCGATATTGGCCGGAGTCAGGCAGTCAACGTCCTTCTCCGGATCGATCCTTTCAATGACCCGGTCAGCATTGATCTGCGGGGGAACCGGTAACTGGACCATCAGGCTGGAAACTTCCGGGTCCGCGTTCAAGCTGTCGATCAACTTTAAGACATCCTCTTCGCTTTCATCAGCCGGCAATTGATAAACTACCTGCTTGATGCCCAGCTTCTCAGCCTTCCGCTTCTTAGAGGCGACATAGACCTTGCTAGCCGGATCATCGCCAATATTGATGACGCAGAGCTTGGGACTGACCCCATGCTCTTTTAGGGAATCCACTTCACTGCCTAACTTTTCCCCTAATTCCCAGGCCAGCTTCTTCCCGTCTAAAATTTCTCCCAAAACTGCCTCCTTAAGAAAAAAAACCGGCGAAACACCGGCTTAAAGATTATTTTAAAGATTATTCTTGCACAAAGTTTGCCAATATGCCATTGATGAAGGCCTTTGACTTCGGATCATCAAACTCGTCACACAAGTTCAAAGCCTCGTTGATGGCTGACCGGTCTTCAATAACCGGGCTGTACAGCATTTCATACAGGGCTACTTCCAAAATCGCCAAGCTGGTCTTGCTCAGCCGCTCCAAGCGCCAGCCTTGCTTCAAGTTGGCGGAAAGCTTGTCACGCAGTTCAGCCTGCTTGTCGATCACGCCGCTGACCAGTTCCTGGCTGTAGGCCGGCAAAGTATCCAAGTCCAAAGCGGACTTGACATTGTTTTCCAATTCACTGGCCGTAAAGCTGGGATCCTGGTTGTACAGATAAATGGCTTGCAGTGCAATTCTTCGACTATCGTGTTGATTCATTACTTATCTTCTTCTTGATCGGGGAATAGTGGTTGACCAGCATCTTCAAAGTTCTTTTCATCTTCAGGGAAGACGAGACCAACGACATGAACATCAATGGACTTCAAATTCATATCCGTCATCTGAGTCAGCTGCTGCTTCAGAGCTTCTTGAATCTTGCCCGCAACAGCTGGCACGTTGACGCCGTACTTGAGATATACGTAAACGTCAGCCGTCAGTTCGCCGTCTTCATCAACTGAGACGGAAACTCCCTTGCCCCGATCCTCGCGGCCAAAGACACGGCTCAAGCCTGACTTCAAGCCACCGCGCATCCCGGCAACACCGTCGACCTTCTGAGCTGAAATGCCCAGAATGACTTCGAGTACCTGCAGGTCGATCTTGATTTGATCGCCCTCATCATTGCCGCTTAAAACGATTGTTGAATTATCAGCCATTTTTCCACCTCGAAAATTACTGCTTAGAACGTGATACGTATGAACCGTCACTAGTATTGATCGTCAGCACGTCACCAACATTGATAAAGAATGGCACAGTGACAACCAAACCGGTTTCCATCGTAGCTGGCTTACCACCACCTGATGAGGTATCGCCGCGGATGCCTGGTTCGGTTTCAACGACTTCCAGGTCAACCGTGTTTGGCAGGTCCAGACCCAAGGTTTCACCATTGTGGGAAATAATGTTCACAATCATGTTTTCCTTCAAGTACTTGGCTTCCTGGTCGATCTGAGCGTTCGACACTTCCAATTGCTCGTAAGTTGCCGTGTCCATGAAGACATAGCTCGAACCGTCGTTGTAAAGGTATTGCATTTGTCGGGTTTGAATGTCAGCCGTTTCAACCTTGGCAGTTGAACGGAAAGTGTATTCTTGAACGGCGCCAGTCCGCAAGCTCTTCAGCTTTGAACGAACGAAGGCACCGCCCTTACCTGGCTTAACGTGCTGGAATTCAACGATACGCCACAGGTCGTTGTTGTATTCGATCGTGAGGCCGTTCTTGAATTCGTTAACAGAAATCATTGTCATCTGGTAAATCCCCCATTTCTACATCTTAAATTGTACCAATAAACACTAAATTTTACCATAAAAATAATCTTACAGGTGAATGAGTTCGTCCTTTGGCAAAGTGGACAAAACTTCCGGAGTGTCGCCATTAACCAGAATATCATCTTCGATCCGGACCCCGCCTTGCGGCAGGTAGATGCCTGGTTCAACCGTGTGCACAATCCCGTTTTCCAGGGTCGTCTGGCTGAACAAAAATTCCGGCTGACACATTTCATGGATTTCCAGGCCGATCCCGTGGCCAATCCCATGGCCGAAGTATTGCCCGTAGCCGGCGTCATTGATGTAGCCCCGGGCTGCCTGGTCAACGTCCTTGCCAGTTGCCCCGGCAACAGCGGCGGCAATCCCCCGCTTTTGTGCTTCCAGAACAATCTTGTAGATCTTTTCCAGTTCGTCTTCCACGCTGCCCAAAGCGTAGGTTCTGGTAATGTCGGCGGTGTAGCCGTTATATGAAGCGGCCGCGTCAATTACGACCAGTTCGTGCTCTTGCATCAAGCGGTCGCTGGCCACCCCGTGGGCCCAGGAAGAACGGGGACCAGAAGCGATAATTGAGTCATAGCCCGGGCCGTCGCCGCCGTAGAGCTTGAAGAGGTAGTCGAGCTTGGCGCCCACGTCTCTTTCCTTGGCACCTGGCTTAAGCATTGGCAGAACTTCTTCAAAGGCTCTTTCTGAGATTTCAACAGCCTTTTTAAGAGTGGCCAGTTCCAGGTCATCCTTGACATTGCGGACCCGTTCAACGATTTCAGCAGCCATCACCAGGTCAACATCTGGCAGCTGGGATTTGATCTCGTCATATTCATAAGCAGAAACAAATTCTGCTTCGACTAAGAGTTTCTTGACCCCCAGCTTCTTGACTTCTGCCGCGATTTCGGCCGCTTCGTGGCCATGCTTCATGACTACCTTCAGTTCACCCACTGCCTGGGCTTCGATTTGCGGGGCAAAGCGGGAGTCTGACAGAAGCACCCGGTCGCCGTTTTTGGTAATGATCAGCTGGGCTTCTTCACCGGTAAAATTGGTCAGGTAGCGGTAGTTTGCCCGGTTGAAAACCAAGAGGGCATCCGCGTCCTTGTCCTTGATCAAGTCAGCAGTTCCCTTGATCCGTCTGGTCAACAGACTTAACAATTCATTGTTCTTGCTCATAAGCACCATCCTTTTCTGCAGCTTTTAAGCTTTTATTCATGATGTTTTTTATTATACAAAAGATCAAGGACTTAAACATGCTTTCCCTGGAAAAAGGGCAAAAAAAAAGCAGGCAGCTGGGCTGTCTGCTCCTTTGCCGGCTTGATTATTCAGCGTCTTCTACTGGCAAAACAGAAACTTGCTTCTTGTACTTGCCAAGACGTTCGAACTTAACAACACCGTTAGTCAGTGCGAACAAAGTGTCGTCGCCACCGCGGCCAACGTTCTTGCCTGGGTGGATCTTAGTACCACGTTGACGGTAGATGATTGAGCCAGCGTGTACTTCTTGACCGTCGGCACTCTTTGCGCCCAAACGACGACCAGCTGAGTTACGACCGTTGGTAGTTGAACCACCACCCTTGTGGTGGGCAAGTAACTTTGCGTTTGAAAGAATGTTCATCATCATAGTGTTCACCTCTTACTAAGCTTCGATGCTCTTAACAGTAACCTTGGTGTAAGGTTGACGGTGACCGTACTTAGAATGTGAGTGCTTCTTTGGCTTGTACTTGAAAGTTACAACCTTCTTTTCCTTGCCTTGCTTGTCAACACTAGCAACTACCTTAGCACCTTCAACTAATGGAGTACCAACCTTAACGTCGTCACCATTAGCTACCAGGATAACTTGGTCAAAAACAACTTCTTCGCCAGCTTGTACGTCAAGCTTTTCAACGAAGATACTTTCGCCTTCGGCAACCTTGTATTGCTTGCCACCGGTCTTAATAACTGCGTACATTAGTACACCTCCGTATAAAATTACTTAGACTCGCCATCAAAGGTGCTGCCCAAAGCAGGCTTGTCAACCTTATCTGCGCGGTTGCAGAATCGAGGTATCACTCAAATTGCAACTCTGTTAGTATAGCACGCTTTGCCCGCCTTGCTCAAGTCTTTTGCCAGGCAAATTCCTGTTTTTGCCAGATTTTTTGCGTTAAACTCAAAAGAGATAATTTAGTAAGGAAGAAATCGAGGGAAAAACATGCCAAAATTCTATGGATACAAGCGCTGCTCCACTTCCCGGAAGGCCCAGAAGTGGTTTGACGACAAAGGCATCAGCTATGACTTCCAGGACCTGGTGGAGACTCCGCCGGAAAAAGACCTGCTCTTGTCCTGGCTGACCAAGTACCAGGACCGCGGCCTGCGCTACTTTTTCAACACCAGCGGCCAGCACTACCGGCAAATGGGCCTGAAAGACAAGTTACCAAATATGACTACAGAGGAAGCCGCTGATCTCTTGTCTAAAGACGGCAAGCTGATCAAGCGCCCCCTGGTCGTTGATGACCAGCACTTAACCTGCGGCTTTAAAGAAGAGGTCTACGAGCAGACCTGGAAATAAGCAAAAACAAGTTCCGGCTTCTGGAACTTGTTTTTTTGCTTTTATTCCCCCAAGGCCTGGGCCAGGTCGGCAATCAAGTCGTCCGCGTTTTCCAGGCCCACTGAGAGCCGCAAAAGCCGCGGCGTAATTCCCAGCCTGAGACGCTGATCTTCTGCAACATCGTCATGGGTCTGGTAGTAAGGAATGGTCAAGAGGCTTTCTGCCCCGCCCAAGCTTTCCGCGAAAGTAATCAGCTTGACGCTCTTGAGAACCCGGTCGACTTCTTCGTCGCTGTCCAAATAAAAGGAGATCATCCCCGCCTTGCCCGGGTAGAGGACTTTTTCCACGTACGGCGCCTGCTCCAGGAAAGAAACGATCTTTTTCGCGCTGGCCGTGTGCTGCTGCATTCTTAAAGGAAGAGTCTTCAAGCTTCTGTTCAAAAGCCAGCTGTCAAAGGCGGACATAGTGTCGCCAACCGTAATGGTGTACTGGAAGTAAAAGTCGGCCAAAACCGGATCCTTGACCACCACGACCCCGCCTAAAATGTCGTTGTGCCCGCCCAGGTACTTGGTGGCTGAGTGAATGACCACGTCTGCCCCTTGGGTCAGCGACTTTTAAGTATTGTCAACGGCCCCAAATTAACTGTTTTCTTAATCTAAAACTAATTATACCCGAAGGATCAGCCTTTTCCTAGCAGATAAGAAATGAAGAAAAAAATAACCTTCGAAAGCAGTTTCCCGCTTTCGAAGGTTATTCTTTTTAACCACCAAGGTAGGCCTTTTGCACAGCCAGGTCGTTGAGCAGGTCCTGCCCGCTGCCGGTCATCTTAACTTCGCCTGAGGCCAAAACGTAGCCCTGGTTGGCAATGCTGAGGGCCTGCCGGGCGTTTTGTTCAATCAAGAGGACAGTCATGCCTTCCTTGTTAATGCTTTTAATAATGTCAGAAATTTCCTGGATGTAGATTGGCGCCAAACCCATGGATGGTTCATCCAGCAAGAGCAGCTTCGGCCGCTCCATCAAGGCCCGGGCCATGGCCAGCATCTGCTGTTCCCCGCCGGAAAGAGTTGCGGCTTCTTGCTTTTGCCGTTCCTTCAAGATCGGGAAGCGTTTGAACATGGCTTCCATGTCCTTTTCCACCCCGTCCTTGTCCTTTCGGAGGTAAGCGCCCAGCTGCAAGTTTTCCTTTGAGCAAAAGAAAAAGGAGCCAATGGCTCCTTTTTTCCAGCTTTAAAAGCGCTTGCCGGTTGCCCGGTAGCCGATATCACGCCGGTAGAATGTCTGCGGGATATCCAGCTTGGCCAGGTAGGCATAAACGTGTTCTTGGGCTTCTTTTAAGTCAGCTGCCTCAGCCCGGACCATCAAGATCCGGCCGCCGCTGCCGACCAAATCAGTAGCCGGGCCGGTTACGTTGGCACAGTCAACGAAAATGCCATCTTCAGCTGGCAATTGGCCCAGTTTTTGCCCCTTAAGCGGCTTCTTCGGATAGCCTTCAGCGGCCAAAATGACGCCAAGGACTGCCTCATCCTTTTCTTCAACGGCTGGCATTTCCTCATCATTTACGCAGGCAGCAACCAGTTCCGCAAAGTCGCTCTTCAAGCGCGGCAAAACAACTTCCGTTTCCGGGTCACCCAGGCGAACATTGTATTCGATCATTTTCGGCCCCTGCTTAGTCATCATGAGGCCCAGGTACAAAACGCCGTGGTAGTCATAGCCGCCAGCCAGCAGACCCTTGGCCGTCGGTTCAACCAACTGGTCAACGATTTCCTGGTATTCAGCCTGGCTCAATTGCGGAACCGGGCTGTATGACCCCATCCCGCCGGTGTTCGGCCCCTTGTCGCCGTCATAGGCCCGCTTGTGGTCCTGAGCCAGAGGCAGGAGGCGGTAATTGCCCCCCTGCATAACGGCAAAGACGGAGTATTCCGGGCCAGTCAGGAATTCTTCAAGAACTACCTGCTTTTGCCCCTTGGCAAACATTTCCGTCAAAGTACTTTCCGCCGTTTCCTGGTCTTCAGCGATGACCACGCCTTTCCCGCCGGCCAGGCCGTCCTCTTTCAAAACGACTGGCAAGCCAAAGTCTGGCAAGGCACTAATGGCAGTTTCCGCACTCTGGAAGGTTTCATAACGCGGGTGCGGCACCTGGTACTTTTCCATGAACTGCAGAGCATAGTCTTTTGACCCTTCCAATTGGGCTGCTCTGGCATTAGGCCCGAAGATCTTCAAGTCAAAAGCATGGAAGTAGTCAACAATCCCGGCTACCAAGGCATCTTCCGGACCCACAAAGGTCCAGGCAATGTCTTCCTTAATAGCAAAGTCCTTCAAGGCCTTGAAGTCGTCTTCTGCAATACCGGTAGCTTTAACGCCGATCGCGGCCATGCCGGAGTTGCCCGGCGCGCAGAAGACTTCTGCAACGTGCGGACTCTTCTTCAAAGCGCGGGCGACGGCGAATTCCCGGCCGCCAGACCCGACTACCAAAATTTTCAGCTTGTCTTTCATTTTTTATCAGCCCTTTTAGTGTCTAAAGTGACGGACGCCAGTGAAGACCATGGCAATGCCGTACTTGTTGGCCATGTCGATGGATTCCTGGTCACGGACAGACCCGCCTGGCTGCACGATGGCCTTGATGCCGTGCTTACCGGCGTATTCAACGCAGTCGCTGAATGGGAAGAAGGCATCGCTGGCGAGGACTGCCCGGTCGTCCAGGGCTTCTGCCGCGTGGTCGATGGCAATCTTTTCAGAGTCGATCCGGTTTGGCTGGCCGGCCCCAACACCCAGGGTGCGTTCATTGTTAGCGACAACGATCGCGTTGGACTTGGTGTGCTTGACTGCCTTCCAGGCAAAGAGGAGACTTTCCAGCTGCTCTTGCGTTGGCTTGGCCTCAGTTACGCATTCCCAGTCAGCGAAGTCTTCGTCCAGAACATCCTGGTCTTGCACCAGCAAACCGCCCATGACGGATACAGTTTCCTTGCTAGTTGCTTCGTCCTTCTTGCTGAAGTCCAGCTTAAGGATCCGGAGGTTCTTCTTCTTGGTCTTCAAGGCTGCCAAAGCATCTTCATCATAGTCTGGTGCGATGATGATTTCCAGGAAGATCTTGTGCATCTTTTCAGCAGTTGCCAGGTCAACCTTCCGGTTCAAGGCAATTACCCCGCCAAAAATTGATACAGGGTCAGCAACGTAAGCCCGGTCCCAGGCTTCTTCTAAAGTATTCCCTTGGCCGATCCCGCATGGGTTCATGTGCTTCATGGCCACGACAGTTGGCTTGCTGAATTCGCGGACGCATCTCAAGGCTTCGTCAGCATCCTTGATATTGTTGTAAGACAGCTCCTTGCCGTTTAATTGTTCAGCTTGCAAAACTGAGAAGGCCTTTGGCAGGGCATCTTCGTAGAGCCAGGCCTTTTGGTGGCTGTTTTCCCCGTAGCGCATGGCTTCCTTTAAGTCGTAAGTTAAAGTCAGCTTTTCCGGAGCAGTTTCGCCGGCCTTTTCAGTCAAGTATTGGGAAATCAAGGCATCGTATGAAGCAGTCAGGCGGAAAGCCTTAGCCGCTAAGCGGGCCCTGGTTTCCAGGCTGGTAGAGCCGTCTTTTTCAATTTCAGCCAAAACCTGGTCGTAGTCAGCCTGGTCAACCACGATCGTTACATCGCGGTAGTTCTTGGAAGCTGACCGCACCATGCTTGGGCCACCGATGTCAATGTTTTCGATAGCTTCAGCCAGGGTCACGTCAGGCTTTTCAATGGTCTGCTTGAATGGGTAGAGGTTAACGCAAACCAAGTCGATTGGCGTAATCTTGTGTTCCTTCAAAGTTGCCACGTGTTCCGGCAATTCCCGCCGGGCCAGGAGGCCGCCATGGATGTAGGGGTTCAAGGTCTTGACCCGGCCGTCAAGAATTTCCGGAAAGCCAGTCACATCTTCAACTGAAATAGTTGGGATGCCGGCTTCATCCAAAACGCGCTTGGTACCGCCAGTTGACACGATTTCGTAATCATTGGCCACCAGGCCCTTGACGAAAGGAACCAAGTTGTTCTTGTCTGAAACACTTACAAGTGCACGCTTCATTTATTTGTTCTCCTCTTCAAATTTCAGCAAAGCTTTTCTCAAGGCTTCCGGATACAGATGGTGTTCACATTCGTGAATTCTTGCTTCCAGAGTATCAACCGTGTCGTCGTCATAGATCGGCACGTGCCTTTGGGCAATGGCCGGACCAGAGTCCAGGCCTGAGTCGATATAGTGAACCGTTACCCCGGTTTCAGCCGGGTGGTCGGCAAAGGCCCGTTCAATTGAGTGCAGGCCTGGGTAAGCCGGCAAATAAGCCGGGTGAAGGTTGACGATTCTGCCTTCATATTCGCTCAAAATCGTTGGCCCGATCACCCGCATGTAGCCAGCCAGGGCAATAAAGTCGATTTGGTAGTCCTTTAAGACTCGAAGGATCTTTTCTTCGTACTTTTGCTTGCCGCCGCAGGACTTGACCGTAAAAGTCACTACCGGTGTGTGGAATTTTTCTGCCCGCTTGATCACCGGAGCGTCCGGGTGGTCACAAAAGAGCAGGGCAAGGTCGCCGGGCAGGTCACCCTTTTGAAAATGTTCGGCCAGAACTTCATAGTTAGTTCCGTTGCCGGATGCAAAAATTGCTACTTTCATTATTCTACCAATTTAATAAAGATCTTCTCGCCGTCAGTTCTCTCACTCAAGTGGCCAACTTCAAAGACCTTTTCGCCACTTGCCAAAAGCAGCTTCTTGGCTTCTTCTTTCTTGTCAGCCGGTACTGCCAGGATCATCCCCAAACCCATGTTGAAGGTCTGCCAGCAGTCATCATCTGACAAATTGCCGACTTGCTTGAGGTAGTTGAAGATGTCCGGGACTTCCCAGCTGCCAGCGGCAATTTCTGCCCGCAGGCCGTCATTGAACATCCGCGGCACGTTTTCGATGAGGCCGCCCCCGGTAATGTGGGCCACGCCGTGAACCAGCCCTTGCTTGATCAAAGGCAGGACAGACTTGATGTAGATTCTGGTTGGAGCCAGCAGGCTTTCACCCACGCTCTTGCCCTTCAGTTCAGCTGGCTTGTCAGTCAGCTTGACATCATGGTCCTTAAAGAGGATCTTGCGGACCAATGAAAAGCCATTGGAGTGGACCCCACTTGAAGCCAGGCCCAAGAGAACGTCACCAGCTTGCGGAGTGTCAACTGACAAAAGGCGGTCTTTTTCCGCTACCCCAACTGTAAAGCCGGCCAGGTCGTATTCGTCTGGGGCGTACATGTCAGGCATTTCTGCGGTTTCCCCGCCGATCAAGCTGGCCCCAGCCTGCTTGCAGCCTTCAGCCACGCCTTGGACAACTGAAGCCAGGAGGGCTGGATCGTTGTGCCCGCAGGCAATGTAGTCCAGGAAAAAGAGCGGTTCAGCCCCTTGAGCCAGGACGTCGTTAACGCACATGGCCACTACATCGATCCCAACGGTGTCATTCTTGTCCATCTTTTGGGCGATAATCAGCTTGGTGCCGACCCCGTCAGTCCCGGAAACCAGGACCGGGTGGTCATAGCCCAGGGAATCAAGGTCAAACAGGCCGCCAAAGCCGCCAATATTGCCCACGTAGCCTGGCCGCTTGGTTGAGGCTACCGCCCCCTTGATCCGGCGCACCAGTTCATAGCCAGCATTAACGTCAACGCCTGCATCCTTATAGCGATTCACGATCATTCACCTCTGTTTTGCTTCTTTAAAATTTCTTCAACCGGTTCCACATTCAGCGGTTCCTTGATTTGTTCTTCGTAGTCGTACAAAGGAGTCGGGTACTTGCCGTCAAAGTAAGCAACCGTAAGGCCCCCGTTTGGCGCGTCACCGGTATCTGGTATGTCGACTGCCTTGATCAGGCTTGGAATGCTCAAAAAGCCCAGGCTGTCGGCCCCGATCAGCTTGCACATGTCGCTGACGCTGTACTTGGCCGCCATCAAGTCTTTTCTTTCAGAAATATCAATCCCGTAGAAGTGCGGGTATTTGAAAGGCGGAGAAGCAATCCGCATGTGGACGGACTTGGCCCCGGCTTCTTTCAGCATCTGCACGATCTGCCGGGAAGTCGTCCCGCGGACGATTGAATCGTCAACGACCACGATATTTTTGCCGCTGACCACCCCACGGACAGGAGCAAGCTTCATTTTAACCCCCTGCTCACGCAGAGCCTGGGTCGGCTGGATGAAGGTCCGGGCAATATATTGGTTCTTGATCAAGCCCATTTCATAAGGCAGGCCAGCTGCTTCAGCATAACCAGCCGCGGCTGACAGTGAAGAGTTTGGCACCCCGATAACCATGTCCGCTTCTTCTGGAGCTGGCTGTTCCTTAGCCAGCAGTATCCCCATCCGCTTTCTGGCGGTGTGGACGTTAACCCCGTGGATAATGGAGTCTGGCCGGGCAAAGTAGATGTATTCCATTGAGCAGACGGCCAGCTGGGTTTCAGTCGTGTAGTGGTCAATCTTGATCCCGTCTTTGTTGATGATGATGAGTTCACCTGGCTGCACATCCCGGACCAGCTTGGCGTGTACCGCGTCAAGGGCGCAGGATTCGCTGGCTACGACATAGCTGCCGTTGTCCATTTGCCCTAAAACCAGGGGCCGGAAGCCGTTAGAGTCAAGGGCGGCATAGAGGGTGTCATTGGTCATCAAGAGGAAGGCAAAGCCCCCTTTGACTTCGTTCAAGCTGGCCTTCAAGGCTTCGATAAAAGGCATACGGACCTTGCGGCGGATCAAGTGGATCAAGACTTCCGTGTCAGAGCTTGACTGAAAGACTGACCCGGAATCTTCTAGGCGCTTTTTCAGCGTCTTGGCATTGGTCAAGTTCCCGTTGTGGCAAAGGGCGATTTCCCCGTCCTGGAAGTGGAAGAGGAAGGGCTGGACATTGGCCAGGGAGTCTGAACCGGCAGTACCGTAGCGGACGTGGCCGATAGCCATGTTCCCTTTTAAAAAGTCCAGGTCAGCCGGGTTGGAGAAGACTTCTGACAAGAGCCCCCGGTCACGGAACTGGCGGAGATTCTTGCCATCGCTAGCCACGATCCCGGCCCCCTGCTGGCCCCGGTGCTGGAGGGCATGGAGACCAAAGTAGGTCACGTTGGCCGCGTCAGGGACATTGTAGATCCCGAAAACGCCGCATTCTTCATTTAATCCTTTGATTTCATAAGGCATGGCAGGGCTTCCTCCCAAATTTGCTTCAATTCCGCTACCGGCAAGTCGGCTGCTTGGTCCTTCAAGGTCAGCTTCAGGCTATCGCCAGCCGTTTGGCCGATCTTGACCGCGTCAGCTGCCAAAGCTGCAGCAAATTCAGCTGAGTATTCGCTTGGCACGCTGACCAGGAAGCGGCCTGGAGTTTCGCTGAAGAGTTCGGCACTGGTCAAGTCGCAGGCAACTTCTGCCCCGATCCCGTGGCCAAAGCTGCTTTCAGCCAGACTGACAGCCAGGCCGCCTTCGCTTAAGTCGTGGGCGCTGGCCACGTGGCCGGCTTCCATTTGGGCCAAGAGGCGCTTCTGGTAGTCCTTAATGTGGTCTAAGTCCAAATCGTTCAAGGACCCGAAGATTTCCCCGGTCAGCATCTTTTGCAGTTCTGAGCCGGCGTAGTCCGCCCCGGTTTGGCCGACCAAGTAAAGGTCGTCGCCTTCTTCTTGGAAGCTGTCTCTGACCAGGTGGTCCAGGTTCTTGACCAGACCAACCATGCCGACCATTGGGGTTGGGTAGATGGACTTGCCGTCAGTTTCGTTGTAAAGGGAAACGTTACCGGAAACAACTGGAGTTTCTAAGACTTCACAGGCCTTGGCAATCCCCATGACTGAGTGGTGGAGTTCCCAGAAGACTTCCGGTTCATTCGGGTTACCGAAGTTCAAGCAGTCAGTGATGGCCAGAGGTTCTGCCCCGCTGGCGATGATGTTGCCAGCTGCTTCAACAACGGCCCGCTTGCCCCCGATTTCCGGGTCCAGGTAGATGAAACGGCCGTTGCCGTCAGTGGTCATGGCAATCCCCTTGTGGGTGCCGCGAACCCTCAAAACGCCGCTGTCTTCACCAGGCCCGACAACCGTGCTGGTTCTGACCATGGAGTCGTAGGTCTGGGTGAACATTCCCTTAGAAGCGATGGTTGGCTGGGCCAGCATCTGCTTGTAGGTCTTTGCCAAATCCGTAATCTCAGGTTCCCAGGCCGGCTTAGCCGCGTCATCGATCATGTGCTGCGGCTGCTTTTCTTCGCTTGGTTCTTCCAAGACATCTTCAGTCAGGCTGGTTACCGGGATATCGCAGACAACTTCGCCGTGGTGGCGCAAAACGTAGTTGTGACCGCTGGTAATCCGGCCTATAACAACGGCGTCAAGGTCGTAGAAGTCAAAAATCTTCTTGACGTCTTCTTCGTGGCCCTTCTTAACGCAAAGCAGCATTCTTTCCTGGGATTCACTCAGCATGATTTCGTAGGCTGACATCCCGCTTTCTCTTTGCGGTACCAGGTCCAGGTTCAGTTCCATGCCAGACTTGCCTTCTGAAGCCATTTCTGAACTTGAGGAAACGATCCCGGCTGCCCCCATGTCCTGGATGCCGACCAGCCAGTCAGCGTGCTTTTGGGTCAATTCCAGGCAGGCTTCAAGCAGCAACTTTTCCATGAAGGGGTCACCAACTTGGACAGCTGAGCGTTGGCTTTCGTGTTCTGAGTCAAAGGAGTGAGAAGCAAAGGTTGCCCCGTGGATCCCGTCACGGCCAGTCTTGGCCCCGACGTACATTACGGCATTGCCTTCACCTTGGGCCAGGCCCTTTTGCATGTCCTTAACGTCCAAAAGGCCGACGCTCATGGCGTTCATGACTGGGTTGCCCTTGTAGATGTCGTCAAAAGTGAGTTCGCCGCCAACAGTTGGGATCCCCATGCAGTTGCCGTAGCCGCCGATGCCGGCGACAGTTTCGTTTAAAAGCCAGCGGGTGTGGGCGTCATCTAATTCACCAAAGTGCAGAGAGTCCAAAGTAGCAACTGGCCGGGCCCCCATGCTGAAGACGTCACGCAGGATCCCGCCGACACCAGTAGCTGCCCCTTGGTAAGGTTCAACAGCAGTTGGGTGGTTGTGGCTTTCAGCCTTGAAAACGACAGCTTGGCCGTCACCGATGTCAACAACCCCTGCCCCTTCACCAGGCCCTTGCAAAATGCGGGGACCCTTGGTTGGGAAGAGACGGAGAACCGACTTAGACTTCTTGTATGAGCAGTGTTCGCTCCACATGGCTGCGAAAAGGCCGGTTTCAGTGTAGTTTGGCAGGCGGTGCAAAAGCTTGTCACAGATGTAGTCGTATTCTTCTTCAGACAAGCTCCAATCGAGATAAGGCTTCTTTTCTTTGATTTCTTCTGGAGTCATTTCCTGCATCATTACGCTTTTACCTCCGCGTGGTTCAAAATTGACTTAAACAGGCGCAAACCGTCGGTGTTGCCCAAGAGGGCTTCGACTGCCCGTTCCGGGTGAGGCATCATCCCTAAGACATTGCCTCTTTCGTTGGTGATCCCGGCAATATTGTTCAAAGAGCCGTTCGGGTTTTCCTTTGAATAGCGGAAAACGACCTGGCCATTGTCTTCGATCTTCTGCAAGGTTTCCGGGTCGGCGTAGAAGGAGCCGTCAGCGTGCGCGATCGGCAGGTTGATCTTCTCACCCTTTTGGTATTCAGAAGTAAAGATGGTGTCGTTGTTGGCTACTTCCAATTCAACCGTCTTGCAGACAAACTTCAAAGAGTCATTTCTCTTCAAAGCGCCTGGCAAAAGGCCAGCTTCGGTCAAGATCTGGAAACCGTTGCAGGTCCCGAAGACCGGCTTGCCGGCCTTGGCCATTTCGACAATAGCGGGCATGATATTGGTAAAGCGGGCAATAGCGCCGGCTCTCAGGTAGTCCCCGTATGAGAAGCCACCTGGCAGCATGACAGCGTCAAAGCCGTCCAGGCTGCTTTCCTTGGAAGGAACGTAGGCCACGTCAGCTCCACAAACCGTGTGCAAGGCTTCGTAGAGGTCGATGTCGCAGTTGGAGCCCGGGAATTGGATTACCGCAAACTTCATTATTTTTCCTCCAAGATCTTGTAGCTGTAGGTTTCCATGTTGAAGTTGACCAGCAGCTCTTCAGAAATTTCCTTGACAGTTTCTGCTACAGGCTTGTCTCCTTCTTCAATAGTTACATCGAAGAACTTGCCGACCTTGACGCCCTTGACTTCATCGTGGCCCAAAGAGTGAATTGAGTTGGTGATGGCTTCACCTTGCGGGTCGAAAACTGATTGCTTGTAAGTAACGTAAATCCGTACAGTAGTCATTTGCTTAATCCTCCTTGGCCAAAGCATCCTTCAAACGGGCCAAAACTCTTTCGTAAACATCGATTAGGTTGCCGATTTGCCGGCGGTAAACGTCCTTATCCATGTGGTCCTTGGTTTCCATGTCCCACAGGCGGCAGTTGTCTGGTGAGAATTCGTCAGCCAGGACGACTTCACCGTTTGGCAGGGTCCCGAATTCAACCTTGAAGTCAACCAGCAGCATGCCGGCGTCGGCAAAGAGCTTGGTCAAAAGCTGGTTGACCTGGCGGGAGATTTCCCAGATCTGTTCATGTTCTTCATGAGTCAGCAAGTGGAAGGCAATGGCGTCTGATTCATTCATCAGCGGGTCGTGCAGGGCGTCGCTCTTCATGAAGAGTTCTTCAACTGGAGTGTCCAGCTTCTCGCCTTCTTCTTTCAAGCCATAACGCTTGCAGAATGATCCAGCCGCGATATTCCGAGTAACAACTTCCAGGTCGATCATCTTGACCTTCTTGACCAATTGTTCGTTTTTAGACAAGCGCTTGATAAAGTGCGTCTTCACCCCATGCTTCATCAAATATTCGAAAACCAGGCTGGAAATTTCCGCGTCAAGTTCACCCTTGTTTTGGAAGACATCGTGCTTCAAGCCGTCCAAAGCGGTAGCATCGTCCTTGTAAACAGCGCGGAGCACTTCTGGATCGTCAGTGGTCCACATTTCCTTAGTCTTACCCTGATAAAGCAATTCTGCCATTTTTTACCCTCCGATTAACACAAACTATAATAATGTAAACAGGAATTACTATTCGTAATTTCTTTCTTGAACTAAGAATAACAACTTAAAGGATAACAACTTAAAAAAGTTTGGTCAAGAGATTATCGAATATTTTTTAGCTATCACTCCTCTTACAATCGGATATTCCTTCATTATTTTTGGACAAAAACTTTAACGAGCAAAAATCAAGGGATAAAAACCGAACAAAAAGCGGCTCATTTTATGAGTCGCTTTTAATTATCTAGATTTCTCTATCCTTTTATATATTGGCAATCGCATTGAAAATCATTACCTTTTTACACTTATTCCAAACCTAGGCGCTTGTAGATGTCGTCAACGTGGCGCAGGTGCCAGTGGTAGTCGAAGGCATCGTCAAGATCAGCCTTAGTCAGTTGCTTTTGAATGGTTGGGTCTGCTTCAAGGAGAGGCCGGAATGGAACTTGTTCAGCCCAGCACTTGGCCGTGTATGGCTGGATCAAGTCGTAGGCAGCTTCCCGGCTCATGCCGCTTTCAACCAGCTTGAGCAGAACGCGGCCGGAGTAGATCAAGCCCAAAGTCTTGTCCATGTTCTTCTTCATGGTTTCCGGGAAGACATCCAGGTTGGCCAGGATCTTGCCCATCCGGTTGAGCATGTAGTCAAGACCGATGGTGCTGTCTGGCAGGATTACCCGTTCAGCACCTGAGTGGGAGATGTCTCTTTCGTGCCACAGGGTTACATCTTCGTAGGCAGTTACGACATTGCCGCGGAGAACTCTGGCCATCCCGCAGATGTTTTCTGAACCGATCGGGTTGCGCTTGTGCGGCATAGCGGAAGAACCCTTTTGCCCTTTGGCGAAGTGTTCTTCAACTTCGTGGATTTCCGTTCTTTGCAAAGAACGGATTTCCGTAGCGATGTTTTCCAAAGAAGTTGCAACCAGGGCGATGGCAGCAATGTATTCAGCGTGCAGGTCACGTGGCAGGACCTGGGTTGAAATTTCCTGGGCGTGCAGACCCAGCTTCTTGCAGACATACGCTTCTACTTCTGGGTCAACTTCAGCGAAAGTCCCGACGGCACCGGAAATCTTGCCGGCTTCCACTCCGCGGGCAGCATGTTCAAAGCGTTCCTGGTTCCGCTTCATTTCTGAGTACCAGCGGGCGAACTTCAAGCCGAAAGTAGTTGGTTCAGCGTGAATGCCGTGGGTGCGGCCCATGCAGACCGTATCCTTGAATTCAAGGGCCCGCTTGGCCAGGATGTCGATGAAGTCCTGGATGTCCTTGCGAAGGATGTCGTTAGCCTGCTTCAATTGGTAGCCCTGGGCAGTGTCAACCACGTCAGTACTGGTCAAGCCGTAGTGCACCCACTTCTTTTCCGGCCCCAATGATTCAGAAATGGTCCGGGTGAAGGCAATAACGTCGTGGTGAGTCACGGCTTCAATTTCGTTGATGCGGTCAACGCTGAACTTGGCGTTCTGCTTAATCTTTTCCACGTCTTCTGCCGGAATGTGGCCAAGCTTGGACCAAGCTTCATCAGCAGCGATTTCTACTGCCAGCCAGCATTCATACTTCTTTTCATCAGTCCAAATGGCACCCATTTCTGGTCGGGTATAGCGCTCAATCATTTATTTTCCACCTTTAAAAAATCGACAATAATCTGCTTTTTAATTATACATCCCAAACTTTTGTCGCGACAATCTCGGCCAAAGTCTTGTCGACATCATCAGTCAGGATCGTCACGTGCCCCATCTTCCGGTCTCTGCGGACCTCGCCCTTGCCATAGTCATGGAAGGACCACTGCGGCTTTTCGGCGATCAGCTTTTCCGTGCCGGCCACGTGCTGGCCTAATACATTGACCATGACGACCGGGCTGAGTAGCTTGATCTTTGGCAAAGGCCAGTTGCAGATGGCCCGGTTGTGGACGGCAAACTGGGAGAAGTTGCAGGCTTCAATTGAGTAGTGGCCGGAATTGTGGGGCCGGGGAGCAAGTTCGTTGATGACAATTTTGTCATCTTTAGTAACGAACATTTCTACGCCTAAGATCCCCTTTAGGTCAATGGCTTCAGCGATCTTAACGGCAGCCTCCTGGGCCTTTTGGGCCAAGTCCGGGGAAATCCGGGCCGGGACGATACTTTCATGCAGGATTTCGCCCTGGTTTATGTTTTCGCTGACCGGGAAGACCGTGACTTGGCCATCAGAGTTGCGGCCAATCATGACGGAGGCTTCCATACGGAAGTCGACAAATTTTTCCAAAATGCAGTCACCGCAAGCCAAGACATCAGCAGTCTTGTCCAAGTCGGCAGCTGCTTTTAAAACAACCTGGCCCTTGCCGTCATAGCCGCCTTCACAGGTCTTCAAAACGGCTGGCAGGCCCAAGTCACTGACGGCTTCTTCCAGGTCAGCCCGGTTCTTGACCGCTCTGAACTTGGCCACTTCACAGCCGGCACTTTGGATAAAAGTCTTTTCCCGGATCCGGTTGTTGGTCGTGTATAGAAGCTTGGTCCCTTGCGGAATAAAGACCTGGTCCTTGACGCTCTCCAGGGCATCCAGGTCCACGTTTTCAAATTCGTAGGTCAAGACATCGCTTCTAGAGGCCAGTTCATGGATGGCGTCGATATCACTGTATTCAGCCACGATCTGGTCATCTGCGGCTTGGCCGGCCGGGCAAGCCGGAGTTGGGTCCAGGATGATGACCTTCATTCCGCTGGCCTTGGCATCAAAAGCCAGCATTTGCCCTAATTGCCCCCCGCCAATGATGCCGATCGTTTGGCCGGGCTTGATTTTAATAGACAAGGTCTGCACTGCTTTCTTTGGCTTGGTCGTGCATTTCCTTGCGGTAGTCCACGATCTTTTGCTGGAGTTCTTTATCTTCGATGCCTAAGATCTGCATGGCTAAAAGAGCCGCGTTCTTGGCGCCGGCCGGGCCGATGGCAGTCGTCGCTACAGGGATGCCGGCTGGCATTTGCACGATGGAAAGAAGGGAGTCCATCCCGCCTAAAGCGCTGGTCTTGGCTGGGCAGCCAATTACCGGCAAGGGAGTGTTGGCAGCGATCATGCCTGGCAGGTGGGCTGCCCCACCAGCGCCGGCAATGATCACCTTAGTACCGTTTTCCGCTGCTTTTTGGGCAAAAGCGAACATTTCCTCCGGCATTCTGTGCGCTGAAATAACCTGCTTGTCGTAGTCAACCCCAAACTTGTCGAGCAACTTGCAAGCTTCCTGCATATAGCCCCAGTCTGACTTGGAGCCCATTACAACACTGATTCTACTAGTCACGATTATTCCTCCTGTCTGCTTTCCCTTAGGATACCAGAAAACGGGACTTTTTTAAAGAGAAAGATGAACTATTTTCCGTGAATGCGGTTGGATCATTCACTTTTAATTAAAAAATCGTAAAAAAAGACCACCATGTGGTGATCTTAAATGCCATAAAATCAATCTTTCTTTTCTGCCCGCCAGTAATGCTGGCCATAAGGGTCCCGCCCCAAGCGGCCAGTGTCAACCAAGTAGCGGCGCAAAATCGCGTAGTCGTTATAGACTGCCGCCAAAACTTCATTGACTTCCTTTTCAGAATAGTCCCGGCCAAATTCAAAGCGGTCGATTAGCGCTTCAAACAAGGCCTCTTTCGCCTTTTGCTTGCGGAGAATGACCTGCAGGCGGCTGTCCTTGAAAGATCCTGTAATATCCATTTAAATTTCCTCAACTTCCAACTTCTTACTTTGCATGCCTAAAATTGCCAGCAAAAAGATCAGCAAACCCAAAGCGGCTAGACTTACCCAGGCAAAGCCGATGCCAAAGCGGTCTGACAAAAAGCCATTAATTGCCAAAATCGCGACTTCCGCGCCCGCGTCCAAGGCATTGGCAACTGACATAATAGTCGCCCGGCGGTTCTCTGTTTGAATCGTCGTTTGCAAAACAATCCCGCCCAGCATGTTTTCTAAACTGCCAAACATGGTATGGAGCATGAACAAGCTCAGAGACCCATAATACCAGTTTTTCAGACCAACCACGCCGAACAAAGTAGCAGCCATCATAACCGTGCTGACAACAATCAAGCGGATCTGCCCCCTATTAGACAGCGGCTTTTTGGACACATAGCGGTTGTAAAGGGAAATCGCCAGCATCCCGGACAGACTCATCAAGACAGAAATCGTCCCGGAATTAACAGTCTTGCCGCTTTGAAAGTACATCTGCCACTGGTCAAGCGGTCCGGCTGAAATAATTGCCACGGGAAGCAGAAGCAAGATCCAGGCAAAAGTTTTCTGTTCTTGCTCGACCGTGTATTTTACATCGGCAACCAAGTTCAGTTTCGGCATCCCTTCTTCCGCCTCAGCCAGGTTTTGGCTGTCATATTTTAAGAGAGGGATGATTGTCAAACTGGTCGCAAGCAAAAAGGCCGCGCCGATCAGCAAGGGCAGGTCCAGGCGAATATTGCCTAAAATATTAGCCCCAACGAAGGTGGCTGCCATGGTCAAGGGCGTGCCGATAATACTGTAGCCAGAAAAAATCGCGCCAAGCTGATCTTTTTCACCATGCTCAACGGCCTTGTTGGCAATCCAGGAAGTCATGGTGCCCGATTGCAGGGAATCCCCCAGCGCGGTCAAGACCCCGCTGACTGTCATCCACAATAAATTCATGGGACTGAGTGCCAAAATTATCAAACCTAAGGCTCTGATGATCCCACTGGCCATGATGGTTTTTAAATAGCCGAATTTGTCAGCAATGTAGCCGGATGGTATTTCGGCAAAAAAGGTGACCAGCCAGAAAATCTCCAAGAAAAGATTGATCAAGCTATAGCTGTAGCCGTTATGCCGCATAAACAGGTAGATCGTTCCGCTCCATAGCGAGGTTCCCATCGTATACAAGATGCTGATGTAGTAAAAAATATACTTGTATTTCTTCATCGCTCCTCCAGTTTGTTATCTCCATAAATCCGCTCTTACCGCGACTAAGTATACCTCCTTAATTTATCATCTTTCTTAAAAAATCCATCTTTTTTCTTCATATTATATTAATAATAAGGCGCTCCTTTATCATCATCCCGCGCAAAATAAGCTTTCACTTATTATTTTTAGATTAAGAAATGCACTAGGCAGTTATACGCCTAGTGCATTTCAGTAAGAATATTTATTTTTTAAGAGCCTGCTCTTGAGGCTGTTTCGCCATATTCGAGTCAAAAACTTCTGCCCGCTTGTTCATGGCTATATAGATCTTTGACTTGTAAGAAGCCAGGCCCTCTACTTCCCGCTTGGCATTGAAGTGGTAGTAGTTGGCCAGGTTACCCTTGGCATCAATCTTAAACAGGTAATCGTTAAAAGCAATGTAATAGCACTTGTGGGTGTGGGCAACACTGTAAGTAAAGCCCTGTACCTGGCTGGAGTTAGAAATCAAGTCACCGTCAGTAGTGGCTGCTTCTTTAACCTTGAAGCTGTTGCCCGTCCGGGTGATCTTCCAGATTTCAAAGCGGTGATTGAACTTGCTGTGGAACAAGGCCAGCATGATGTTGTCGTCAATCACGTCCGCGTTTAAGAAGTAGCAGTTGTTTTCCCGCTTGCCGTTGCTGACGGCAAAAGTCCAGATCCGCTTGACCTGCATGTCCTTCTTGTCAATCTGCAAAAGCTCGTTTGACCGCGGTTTCTTCGTATGGTTCCAGTTAGCCAGTTCATAGATATAGCGGGAAGTTGACCCAACAGACTGACTATGGCCGAGTTTAATGTAAGGACTGATCTTGATGCTCTTGACGTAATTCTTCCAAAGCTGGAAATTCAAGGTATTGGTTGGAATATACTGCAAAGCATACTTTGGCACTTGGTTCAATTGGTAAAGGACCATATGCCCCCGGGCACCATCCATGGAAGATTCTGGCCCGCCATAAAAGTTGGTCGTAACCATATCCTGGCCGTACACGTCCAAACCCTGGACATTGCCCCGGACATTGGTCTCCTGGCTTCCTTCCAGCAGGCTAAAAGAATTTGGCTCATAAAACTTAGTGGTCAATTTAGCCGTCTTCTTGCCATGCTTGTCAGTCCCGACGTAAGTGTGCGGGGTAACCTGGGCATTGTAGTTGCCTCTAAAAGCCAATTCATGCGGGAACCAGGTCTTGCCAACATTGCCGCCCTTGCCCAGCTTGGCATCAGCCTTGGAAATTCCTTCATTGGCATCGTTTCTGACCGTCACCGTGACCTTTCCGCTGGCCTTGCCGTAACGGTAAGTCACCATATACCGGCCAGGCGTCTTTTCAGAAATCCGGTCCGTCGACCGCTTCACCGAATTAACGTCAACCACGCTGCCGTGCTTGTCTGTCACGTAGTTGATGGCATCAGTCGTCACAAAGCCGTTGGTATCCAGCTCGTTGTTGACCAAGCTGACGCTCTTAACTAAAGACATCTTGCTTCTGGCAAAAGCCCGCTCGCTGACATAGCCGACCCCGCGGCCGTCAACTTAGACATAGTAATACCGTCTGCCCCGGGCGAGTTTGTAGGATCGGGACTGGACATGGGCCAACTTTAATTCTTTCGTAGTTGCTATCTTCTTGCCAAACTTCCAGACCAGCTTGGTCTTTTTCTTCTTGCCCTTGCCAGTCTTGACCTTACCTGCTTTAAGCTGGAGTAGATCCCATAGTTCTTCTTCCCATCGATCACCTTGGTCGACAGCTTCTCACTCGTGGCTACAACTGGCTGACCAGCTTTAAACAAACAGGCAATGGCCATAAATGCGGCTGAAAAGGCCAGCCTCTTCTTTAATTTTATTCTTCCTATACCCACAATCATTAGACTCAACTATTTTGTAATATGATTCACTTTCAAAGTTTCCGTTGGATGATTCAAGTTGACGTAGAGTTCGGGCCCGTAGCTGCTCAAACCTTCAAATTCCCGGCGGCCAGTGTCAAACTTGTAGTAGTTCAATAGCTTGCCGGCATCTGTTTTGCCATCTAAGCCTGCCCCGATCTTAAAGAGGTAGTCGTTAAAGGCAATATAGTAAACGTCATAGGCACTGTTCCAGACAAAGCCCTGGACTTCAGCGGAATTGCTGATGAGGTCGCTGCCGGTTGCCCCAACTTCCTTAGCCTTAAAGCTGTCGCCGCTTCTGGAAATCTTCCAGTATTCATAGCAGTGCTTATAAGCATTGTGGAAGAGAGCAAGCAAAGTGTTGTCGTCAATCACGTCCGCGTTGAGGAAAATCCGCGGATACTTGGCTGACCCGTTCCAAACCTTGAAGGTCCAGATCTTGTCAATTTCCATGGTGGATTTCTTGACCCGGATCAGTTCCTGGGAGTTGGACCAGTTGTTGGACCGGTTCCAGTTGGCCAAAACGTAAACATACTTCTTGGTGCTGCCGACTGACTGGCCATGGCCCAGCTTCATGTATGGGCTGACCTTGATGTTCTTGATATAGCTTAGCCAGGTGTTGAAGCTCAGCATCTTGCTTGGAATCAGCTGCCAGTTATACTTCTTGACCTTCCGCATATTATAGTAGACCATGTGCCCCCGGGCTTCCCAGTTGTCTGCCTGGCCTAAGTCAAGGTTGCTGGTCACCAGGTCATTGTCATAAAAATCGATCCCTTGCACAGCACTTGATACCTTGGCCTCCAGGTTGCTTGAACCTGGCGCGCTCAAAACTGCCGGATGATAGAAGATGGTTTCAATATCCGCGCCCTTAGCGTTGCCAGACATGGTCTTGGTCGCCCAGTACTTGTGGGAGCTGGAAACCGCGTCTTTTGAAGTAATAGTTGAAGATGAGGACAATCTGGCCCCGTCTCTGGCTGACCAGGTCGTAATCTCTGGCAAATCAGTTTTCACCGGCGTTACATCAGCCGAGCTGATCCCTTCTTTGGCATCCCCGCGTACCGTCAGCTTGCTGGTCGCCTTGGCCTTGCCGTACTTGAAGGTCAAAACCGCCGTCCCGGCCTTGCGGCTGGATACATAGCCAGTATCAGAAATATTCAATTCAGCAGACTTGCAGCTGATCTCAACTGAATCATTGTCAACCAGACTGCCGTGCTGGTCAGTCACGTAGTTAATCGCGTCTTCGGCGTTAAAGCCAACTGAGTCAGACGGGTTGTTGACCAGGCTGACCTGGGAAACCACATTAGCTTTCGAAAGGGCAAAAGCCTTCTCATTCACGTAGCCGACTGGCCGGCCGTTAACGTAAATGTAGTAGTAGCGCTTGCCATCTTTAACCTTGTATGACTTGGACTGGACGTGGGCGTATCTGAAGTCAGCCGAGACCGTCAATTTCTTGCCGAACTTCCACTTCTTCTTCACGTTCTTGTAGGCCGTCTTAGTCACCCACTTGTACTTGACCTGCTTGACCGTCTTGTACTTGGTCTTGCCCTTCTTACTCTTCTTCTTGACGGCGACCTTCTTCTTGACCGTGTACTTCTTCTTTTCCTTGGTCTTTGTCTTGACCTTCTTAGTTACCTCTTCCAGCTTGAGCGAAGAATAGACCTGGTAGCTCTTGTTACCCATGATCTTGGTCACAAGATCGGTCTTCGTGCTCTTACTATAGTCTTTGCTGCTTGCTTGCACCTGACTGGCCAGGCCGGCCATCAGTGCCGCACTGGTCATCATGCCCAGGGCAAAACGTCTCATCAAACTCTTCCCTTCACTTCTAAAAATACAAAACTCATAAATCTACGATTATTAACAAAAAGCACCCAGATAATTTACACTTTTATCACGAAATGCCTTTTTCATACTTTACCACAGTTTTCGGGCACTATTTCATTTGTAACAGATTTGTTAACTCATTTTAAGAAATATTGCTTTTGCAAAAATCAGTCAAAAACCAAAGAGAGCTTGTCCCCTTCCAGCTGCAGCTTGGCTGAATACCGCTGCCCGCTCTTTTTAGAGACAAAACCGTCCAGCTTGTCAGTCTTGCCCTTGCTGATCAAGGTCTTCACAATCCGCTTGCCCATATTCTTGCCGGCAAACTTCTTGGGCAAGGTGAAATGGCAGCCGCCCCGGTAATTACTGCAGCCGTAAAACTTGCCCTTGTCAGTAATTTCCCCTTGCTTGCAAACCGGGCAGGGGCCGATTGCCGCGGTTTTGGCTTGCCGGGTCTGGGCTTCTTCCTGCAAGCCCTGATCAACCTGGATCTTGCCTGGCACTTCTGTAATCATCTTTGAAATGAATTTCTTGATCTGCCCTAAAAAGTTATCCTGGCTCCGCTCTTTGGCCCCGACTTGCTTTAAGGCCTTTTCCCACTGGGCCGTCATCTGCGCGCTGACTAAGAGTGGCTCAGCTTCCGCCGCCCTGCAGAGGATGGTCCCTTCCGGGGTAACCGACAATTTGTTTTGCCGGCTTTGCATGTAGCCCCGCTTCTTCAAGATTTCGATGGTGCTGGCCCGGGTAGCTTCCGTCCCGATCCCTTCAACGTCCTTTAAAGTAGCCTGGGCATCTTCATCGTCCAGGGTCTTGCCGGCCGTCTTCATGGCCGTGATCAAGCTCCCTTCCGTAAACTTGGCCGGAGGCTTGGTCTCTTCTTCTTGCTCTTTCAATTTTGCCGTCAGTTCCTGGCCGACTTCCAGGGGCGGCAGCTGGGCATCTTTAACCGGCCCTTCCAGAATCTTCCAGCCCAGATTCACGCTGACATTGCCGCTGGCTTTAAAAGTCAATTGGCCGACATTAATTAAAGCCGTGGTCTTCTCATAGACATAGGCCTTTAAAAACATCTCCAAAGTTCGCCGCAAGACCAGGCCATAGACCTGCCCTTCCAGCTTAGACATTTTGCCCATTTGTGCCTGGCTGGGCACGGTCTTGGTCATGATGATGGCGTGGTGCTCCTGGACCTTGCCGGAGTCGACATAGCGCTTCTCCGCCTTTAAGGGCTTCATTTGCTCTTTGACTTCTGCAGAATTTGGCAAAAGCCCCTGGTAGCGGTCCAAGTTCTGGGCCAGGTAGGCATACTCATTGTCCGTAATATAATTGCAGTCTGTCCGCGGATAGCTTAAAAACTTATTTTCATACAAATTCTGCACGGCCTGTAAAACCTGGCTGGCTGAAGCATGGTAGCGGCGGTTGGCTTCCGTCTGCAGGCTGGACAAAGAGAAGAGGCGGGGGCTGGCCTGGCTCTTTTGCTCCTTGTCCACCTTGGCCACCCGGCCAGTCTGCTTGCCCAGACTCCCGCCTTTAGCCAGCAAAAACCGCTCCAGTTCTGCCGGGCTCTTGAATTTCGTTTCCGGCAGCAAGCGGCCGGTAAATTTCTTTCTTCCCTGCCAAAAATCGGCCATAAGCAGCCAGTACTTCTCCGGCTTAAAATTGGCAATCTCCTGGTCACGCTTATAGACCATGTACAAAGTTGGCGTCTGCACCCGGCCGATTGAATAGGTCCCCTTGATCCCCTGCTTTCTTAACAGCAAGGTAAATAAGGGACTGCCGTTCATCCCAACCAGCCAGTCACTGATCTGCCGGGTCTGGGCTTCCTTATAGCGGTAGTAGTAGTCCCAGCCTGGCCGCAAGTTCTGGAAGCCTTCCCTAATCGCGGCTTTTTTCCAGTGAATTGATCCAGAGGCGGAAAAGGTGCTTCTGTTTCAAATCGATCCCCGCCTGCCGCATAATGGACCAGGCGATGTTTTCCCCTTCCCGGTCACTGTCCGTGGCAATCACGATCGTATCTGCCCGCTTGAGCAAATTAGCGACAATATTGAACTGCTTCTTCTTGTCCCGGGGAACCAGGTACTTGTACTGGTCGGGAAAAATCGGCAGCTTCTTTAAAGACCAGCGCTTGTAGCTGGCGTCATAGGCTTCCGGCAGGGCCATTTCCACTAAATGGCCAAAACCATAAGTGATCACCGTGTCTGCCGGCAAGATCGGGTCCGCCACCTTAATCTGCCCCTCCCCCTTCTGGCTCTGGGTAAAAGCGGCCGCGTATGCCCGGGCCTGGCTGGGCTTCTCTGCTAAAATTACCGTCGTCATTACATTTCCTGCCTTGCGTTAAAAATCCCGAGCAAATAAAAAGGACCCGGCCAAGTGGCCAGGATTGCTCGAACAAGCGTTTAATATTTGTTCCATTATAGTTTACTTTTGCCGGCTTGGCAAATTTTCTGCGGATATAACAAAAAAATCACTGAGGCAAGCCTCAGTGATTTCTCTGGTTGCAATCATGATTCGGGTGAGATTCGAACTCACGACCCACGGTTTAGAAGACCGTTGCTCTATCCAGCTGAGCTACCGAACCGTTATGCTCCGACGCAACAAATTAAGTATATTAGACCAGGGATAAATTGTCAAACATATTTCAGAAAAAAGTTGCGTTTTTCTTGGTCATTTTTTTCTTGACAAAAAGGAAGCGGTTTGCTTGCATTAACTTGAGGACTTGCTTAAAAAACAGCTAAAAAACTGGATAAAGCAAAAAGATACAATATCCCATAGATGTAAAGATATAAAGATGAGGTAAAGCATGAAATACAATCAATATGCCTACGTTGAAACCAGTCCGGAAAAGGCAACTGAAGAGCTGCTGGCGATCAACTTCTTGCCAGAAAACTACTCTTCTCTTTCCTTCAGTGAGCTCCTGGCCGTCTTGACCGGCAATGTCCTGGCGGAAGCCACGACCCGCCAGGCTAAAGACGCCAAATTGGCGGAATTTGCCGTGGACGACCAAACTGACCTGGCCGCCTTTCTTTTGGACACGCCGACTGCCATCACGGCCAGCCAGTTCGCTAATGTTGCCCTGCAGCTTTTAGGCTACCACCCAAACTACGACTACAGCCTGACTGATCCTTTGACTTGCGGGGAAAAGCATGCCCTGCCGGCCTTTAAGGACTTGACCAGCAAGGAAGAATTGATTTTTGCCTTCTACCGCCTGCTCAACACCCGGAGCAAAAACGGGCAGATCCTCTTGGACGTCATGGCCGGCAAGGGCTACTTCACCCAGTTCTGGGGGGAAGGCAAGTTTATGTTATTCAACGGCAAGTCCCTGCCAGTTTTTGACACAAGCCAGGTCATACGCGAGGTCGTTTACGTGCAAAGCGACCTGGACACGGACGGCGATGGCAAGGGCGACCTCTTGCCGGTCACGGTCTTCCGGCCAGTTGAAAGCCAGGACCAGCTGAAGGTCCCAGCCCTCTACACGGCTTCACCTTACTTTGGCGGGATCATCGACAATGTCAAGACTAACCACAATGTCGACGAGAACCTGACTGACGCGACCACTTGGACCAATCCCAAGTACGTGGCCAAGCCTTTAGTTAAAAGCCCTGCCCCCAGTGGCCAGGACGTGCCGGCCACTGAACTGGCAACTGGGCAATCTTCTTACGGCTTAAACGAATACCTCCTGGCCCGGGGCTTTGCCTCTGTCTTCTCCGGTGCCATCGGCAACCGGCACGGGGACGGGATCCGGATCACCGGGTCACCGGAAGAAACCATCTCCCAAAAAGAAGTCATTGAATGGCTGACTGGGGACCGAGTGGCTTATACTGACCGGACCCGCCGCTTTGAAACCAAAGCTGGCTGGTGTAGCGGCAATGTCGGCATGACTGGCCGCTCTTACCTGGGGACCTTGCAGATCGCCATTGCGACGACCGGGGTCAAGGGGTTGAAGACGGTGGTTTCTGAAGCCGCTATTTCCTCTTGGTATGACTACTACCGGGAACACGGCTTGGTTATCGCGCCAAGCGAATGCCAGGGCGAAGACATGGACAAGCTGGCTGAAGTCTGCCAGTCAAACCTCTGGGACGGGGGCAATTTCACTGCTAAAAAGGCTTATGAAGCAGAGCAAGCTGAACTTTTAGCCGCCCAGGACCGGGCAACCGGCCAGTACTCTGATTTCTGGGAGTCCAGAAACTACCGCCACCACGCCGATGGCATCAAGTGCTCCTGGATCTCCGTTCACGGCTTAAACGACTGGAATGTCAAGCCGAAGAACGTCTACAAGATCTGGCAAAAGGTCAAGCAGCTGCCGGTGGAATCCCACCTCTTCCTCCACCAGGGTCCGCACTACAACATGAACAACCTGGTTTCCATCGACTTCACCGACCTCATGAACCTCTGGTTCGTCCACGAGCTTTTGGAAGTGGAAAACGGGGCTTATGAGCAATGGCCAAAGGTCATGATCCAAGACAACCTGGAAGCTGACAAGTGGCACGCAGAAAGTGACTGGGCCAACGACCTGGGCCAGGCCAGCCTCTATTCACCAACGGCTGACGGGTACCTGTCAACGGTTGAAAACGGGACAGGCCAGCTGACCTTCACCGACTTAGGCGGGACAGAATTCAAGAAGGCCGGCATTAGTGAAACTGACTGGGAATACCAGTTTATCAGCGGGGAGAAAAAATGGGCCAAGGCCAGCCTCCGCTTTGAAAGCGAGGAATTCCTCCACCCGACTACCCTGGTCGGCCGGCCAAAGGTCCAGGTCCGGGTAGCAGCTAATAAGACTGTCGGCCAGCTGTCTGTTGCCCTGGTTGACCTGGGGACCCGGCAGCGGCTGACGGCTACGCCGAAGATTTTTGCCAGAGGAAACCAGCCCTTTGGCTACCGCTTCGAGGCAGACTCCTTGCAGGAATTCGTCCCGGACAAGGCCACTAAGGCCAAGCTGATTACCAAGGCCCACATGAACCTGCAGAACTACCAGGACATGAAGCAGCCAAGCAAGCTGGAAGCCGGCCAGTTCGTCGACCTGGAATTTGAACTGCAGCCGACCTACTACACCCTGCCAGCTGGAGCAAAATTGTGTCTGATCATCTACTCAACCGACCAGGGGATGACCAAGCGGCCGCTGGAGACCGAAGACTACACGGTTGACTTAGCCGGAACTGCTCTTTTGCTCTACCGGAAATAATGCCTGGGCAAAAATTGGCGGTTTATGCTAAAATAACTTTATCGCAAACAAACAAAAAGGCTGTCGCGGAGCTACCGCTGACAGCCTTTTTGTGTTCTTAGAAAGGTTCTTATGGAAAAATCAAGCAAAGTCAACCTCGCCATTTTCAGTGCGGGCCTGATGACCTTCATCGGTATTCTGAATGAGACCTCCATGAACGTCACCTACCCGCTTTTAGTCAAAGAGTTCCACCAGCCCCTGGCAACCGTCCAGTGGATCACTACCGCCTACCTGCTCAAGCAGGTCCAGGCTCGCTGGCTGCATTTAGGAGCCGCCCTGTCCTTTATTTGCGGCTGCATCATCTGCGCCTTAACTTCCAGCTTTCCTTTGATGCTGGCCGGCCGGATCATTCAGGGGATCGCCACCGGCTTTTCCACCCCGATCATGTTCCAGCTGATCTTTACCCAGGTCACTAAGCAAAAACTCGGCCTCATGACCGGTTTTGCCGGGATGATCATCTCCTTTGCCCCGGCCCTGGGCCCAACTTACGGGGGCCTGGTGGTCTCAGCTGCCAGCTGGCGGATGATCTTCTGGCTCCTTTTGCCCCTGGCTTTAGTCAGCTTAATCGGCGGTCAGGTCTACATCCGCAACCAGGTAAGCGGGCAAAAGAAAAAATTTGATGCCCCCTCCCTGCTCTTGCTGGGTCTGGCCCTTTTTGCCATTATCTATGCCCTGTCTTTAATCGGGACCAGCAGCTTGTCCTGGCTTCTGCTTTTAGCCGGAGCGGTCCTCTTTACCCTCTTTGTTTTTGTCAACAAGCGGGGAAACAGCCACTTGCTCAACCTGGCAATTTTTAAAGAAAAAACTGTCTGCCTGGCGGCTTTAACCTACTTTTTCCTGCAGCTGGTCAACATCGGCCTGTCTGTCGCCGTTCCGGTCTATGCCCAATATGCTTTAGCAGCCAGCAGCTTGATCAGCGGCCTGATCCTTTTGCCAGGCTCCTGCATGGGGGCCGTCATCTCGCCTTTTGCCGGGAAACTGGCCGACAAGCGGGGCTTCAAGTTCCCGCTGACCCTGGGCGGCTGCCTCTTTCTTTTGGGCAACTGCCTGCTTTTGGTCCTGCAGCCCTTGCTGACCCCGGTCTTGATCGTTGTCTGCCATATCGTGATCCGGTCCGGCTTCAACTTGAGCTTTGCCAACACCATCTCCAACACCTCAACTTTGGTTGACCGGAAAAACGTGGCTGACGTTAACTCCTCTTTCAACATGCTCCAGCAGTTTGCCGGTTCAGTCGGCGTCAGTCTGGCCACGGCCCTGATCTCCCTGGCCCAGAAAACGGGGCGAGGGACTTTGGCCCAAAGAAGCTACCAGGGCGGGAAATACGACTTTATCATGTTCAGCTGCCTAGCTTTGGTGACCCTTTTGGCCATCTGGCAGAACTTCCGCCTGCAAGAGCAGAAAAATAAAGAAAATTAGTTTTCTGTAACTTTTTTCTAATTTCTCTTGCCAAAGCAAAAAATAGCGGTTATACTTCAAGTAACTAATTTAGGAGGTAAGCCAAATGTTCAACAAGAACCTGTTCAACGTAAACATGACTGCTTGTTGTTGTGGATTGTGTCTTAAGCAATCCACTATTTGGCTTGGACTGGAAAGCTAGGAGCAGACCAGAATTCCCAATATCCAAATAACTTTGATTGTTTAAGACGCGTAGAGCTTGTCTCGCGCGTCTTTTTGTTTTCCCAGACTTACCTGCTATTTTTTTAAAAAAGGACTGACAAACAAGATGAGCAAGAAAATCGGCATTCTCAATTTGATGCATGACAAGATCGACACCCAGAAACGGTTCAGCCATGTGATCAAAGAAGCCAGCCCGGAAACTGAAATCACTTATTTTTACCCCCAAAGCCACTATCTAAACCGGCCCCGACCCCAAAACTGGCCGGCTGAGCCGCTAAATCTCAAGACAGTTGCCAAGCTGGACGGCTTCATCGTCACCGGCGCCCCGATCGAGCTCCTACCCTTTAGCGAAGTCGACTACTGGGAGGAATTGACCAAGCTCTTTGACCTCTTAAAGGCAAAAAACATTCCCCAGCTCTATGTCTGTTGGGGCGCCATGGCGGCTCTCTACTATTTCTACGGGATCGGCAAGCATCCCATGCCGGAGAAGATTTTCGGCATCTACCCCCAGGAGATCCTGGCTCCCACCCCCCTGTTAAGTGGCCTGATCACAGGCTTTCTGGCCCCGCATGCCCGCTACGCTGAGATGAACAGGAGCGAGATTGAGCAAGAAAAAGCTTTAACCATCAACGCGGCCACACCAGATGGCCACCTTACTCTGGTCACTGGGCCTGGCCAGCAGGTCTTTCTCTTCAGCCACCTGGAATACGGCCCCCAGGCTTTTAGCAAGGAATACCAGCGGGAATTATCCGCTAGAGGAGGTGATGACCGGAAGATAGCGAAACCGCAGCGGTATTTCGCGGATGAAGCCGCCATGTCCCTGCCCCAGTTTACCTGGGAAAGCAGCCAGCAGCACTTTTTTAAAAACTGGCTGCAAACTATCAAATAAGATTTAGAATTTTTTAGCGAATAATTTCAGGAGGAAAAAACTATGTCAACTGACCGCATTTACGGCAACATTTTGGAAACTATCGGCCACACCCCAATCGTTAAGTTAAACCGGGTCGTCCCAGAAGGAGCTGCCGACGTCTACGTCAAGCTGGAATTCTTCAACCCCGGCGGCTCGATCAAGGACCGGATTGCCCTGGCCATGATTGAAAAGGCAGAAAAAGAAGGCAAGCTTAAGCCTGGCGACACCATCGTGGAACCAACTTCTGGCAACACCGGGATCGGCCTGGCCGCTGTTGCCAGCGCCAAGGGCTACCACTTGATCATCGCCATGCCGGAAACCATGAGCGAAGAAAGAAAGAAGATCATGCGGGCCTACGGGGCTGAACTGCTTTTGACCCCGGGCAAGGACGGGATGCCAGGTTCTATCGCCTTGGCGGAAAAACTGGTTAAAGAAAAGGGCTACTTCATGCCAATGCAGTTTGAAAATCCGGCTAACCCGGAAATCCACGAACTGACCACGGGCCAGGAAATCGTCAACGCCTTTGCCGGCGATTTGCCAGACGCTTTTGTAGCCGGGGTTGGTACTGGCGGCTCTTTGACCGGGATTGGCCGGGCCTTGAAGAAGGCCGGCGACGTCAAGGTCTACGCCCTGGAACCGGCGGAATCCCCGCTTTTGAAGGAAGGCAAGAAGGGCCCGCATAAGATCCAGGGGATCTCTGCTGGCTTCATTCCAAAGACTTTAGACCAGTCCATCTACGACGGGATTGTCGAAGTTTCTAGTGATGATGCCTTTGCAACAGCCAGAGAAGTTGCCCGCCTGGAAGGCTTTTTGCCAGGGATCTCAGCTGGGGCCAACATCCACGGGGCCATCGAACTGGCCAAGAAGCTGGGTGCCGGCAAGAAGGTAGTCACTGTAGCGCCGGACAACGGGGAACGCTACCTGTCAACGGCTCTGTACCAATAAGATAGATAATAGACAGAATTAAAAGTAAAAAAGATACAATAAAAGGCAATAAACAAAACAACCAAATCAATCTAATTTAGTACTTAACACTTTACAGCTTAACATCAACAACTAATCACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCTAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGCGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATTGCCCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCGAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCCAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCGCTTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAGAACTGGATACAAGAAGACTGAGCTGACTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGTTCGCCTGTCATATGATGCATTGACTGTCCATACAGCTTTCGTCTTTCTGCGCTGCATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTATTGCATGGTAGACGAGCTTGCGGACATCACTTTCAATTACTCCCTACAAACCCTGGTGGAAGCCATGTTCGAGAGTGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGGTTCACCAACGCTTTCATTTCACGCCTCCCGAAGTACATGCAAGAGGCTATATCGCCATCATTAGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTAAAATACGTAATTAGGTTTAATAATTAGTGGAGGAATTGCATGTTAGAAAAAACATTTTACAAAATGATGCTCAGTAAGTCCTTCCCTTTTCCCGTTAAAGTAACTTATTGGGACGGTAAAAGCGAAGTATATGGTAACGGTACTCCAGAAATTGAAATAGTTTTCAATGAAAAAATTCCAATGGGCGACATTACAAGAAATGCTTCCCTAGCACTTGGTGAAGCATACATGGACAAGAAAATTGAAATCCATGGCAGCATTCAAAAATTAATTGACGGCGTATACGAAAGTGCCGACAGTTTCATGCGTTCATCCAAATTCCGTAAATTCTTGCCTAAAACTAAACATACTGAAAAGCAAAGTGAAGAGGACGTTCAAAGTCACTATGATATCGGTAATGATTTCTACGAACAATGGCTTGACCCAACCTTGACTTATTCATGTGCTTACTTTACGGACGATAATAAAGATGATCTTGAACAAGCTCAGATCGCCAAGGTACATCACATTTTAAACAAGTTACACCCACAAAAAGGAAAGACTTTACTTGATATTGGTTGTGGCTGGGGTACTTTGATGCTCACTGCAGCTAAAGAATATGGTCTTAAAGTTACCGGTATTACTTTGAGTGAAGAACAATACAAGTTAGTTCAAAAGAAGATTTATGCCGAAAACTTGCAAGATGTTGCCGAAGTTAAACTTGAAGATTATCGTGAATTAGATGATCAACAATGGGATTACGTCACTTCAGTTGGTATGTTTGAACACGTTGGTTCTGAAAACTTGGGTGAATACTTCAATGATGTAGCTAAATACTTAAAGAACGATGGTGTAGCCTTAATCCATGGTATTACTCGTCAACAAGGCGGTGCCACTAATGCTTGGATTAACAAATACATCTTCCCAGGTGGTTACATTCCAGGTTTAGTTGAAATTATTTCTAGAATTGAAGAAGCTCACTTGCAAATTAGTGACGTTGAAATGCTCCGTCGTCACTACCAAAGGACTTTGGAAATTTGGGACAAGAACTTTAACAATGCTCGTCCTGAAATTGAAAAGAAGATGGGCGAAAGATTCTGCAGAATGTGGGATATGTACCTTCAAGCATGTGCTGCCAGCTTTGAATCAGGCAACATTGATGTTGTACAATATCTTTTAACTAAGGGTCTATCTGGTAAGAACTTGCCAATGACCCGTGATTACATGCTTAATAATAAATAAGTGCAAACCAACAATGACTACTGGAAAAATCCAGTAGTCATTGTTTATTTTGTCTAAATTACCAAATAGTAATTCTATCTTCAGGATCAAGCCACATGCCATCATCAGGCTTAACATCAAATGCAGTGTAGAAATCGTCTTGACATTGAACAGGGATATTTACACGAGTTGGTTGTGGTGCATGAACGTCAACTTGCACTTCAGTTTTAATTGCTTCTGGACGTTGCTTTTGCATCCAGCTTCTTGCATAATTTTCAAACAAGTCTTTCAAATCAACATTGTCGTTCTTACCAGCTTGAACAGCACAAGCAAGCCCTGCCAAGTCAGCAATATTTTCTCCTACTACTTGCTTACCGTTAATCTTAGCTGGACCGTATTGCAAGCCATCAAAAATATCAACCATTTGGCCAACCCGCTTATTGAATTCAGCGAAGTCTTCATCAGTCCACCAGTTATTCATATTTCCGTGTTCATCAAATTTAGCACCACTATTATCAAAGGCATGAGAAACTTCATGACCAATAGTTGCACCGATACCACCGTAATTTGCACCACGGGATTGATGAATATCATAAAATGGCGCTTGCAAAATACCAGCTGGGAAAGTTAAATCATTTCTTTGTGGATCATAACAAGCATTGTTAAAGTTTCCTGGCATGAGCCATACTGAGCGATCTACTGGCTGAGTTAATTTATCGAGCATATACTTGGTGCGTACCGTTGCCATTTGAGCTTCATTTTCATAAAGACTCCTTTCTGGGTCAATTTGCAAAAGATCATAAATCTTTTCGATTTTTTCTGGATAACCAATCTTAAGTACTAAAGCTCTTAATTTAATAATTGCCTTTTTCTTAGTATCTTCAGATAACCAATTATTATCATTGATTCTTTGCTCATATACTTTAAGCATATTGTGAATCATATCTTCGACATCGTGTTTAGCTTCTTCACCAAAGTATTTCTTACCATAAAAAATACCAACAACTTCATCAAAAGCACCATTACTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAGTGATGGCGATATAGCCTCTTGCATGTACTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTCCTTGAAGAACTTTTCAACAGAACGAGAAATTTGGGGTTCGCGTAAGCCTTTCATTTGATATTGATGATGTTTTGGTCGACTTAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTATTAGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTAATCAAAAAACTGCATCCCCAGGGATGCAGTTTTCTTCGTTCTAAAATCTTTAGGCTTATTTTTCCAGCAAGGCCAAAAGGCGGTCTTTTTCCTCCTGGCTGGCAAAAGCGGCTCTAACCGAGTTTAAGTAGAGCTGCTTTTCTTCAGACTTAGTCAAACCCTGCTCTTCCATGAGCTGGTATTCGCGGGGCAGGTTGGTCGCTGAGACCGTCATGTTGTCGGTATTCAAGGTTACCCGCAGATTTTGCCCCAGCATGGAGCGGAGGGGGTATTCGGCGATCTGGTCAAAAACCTTGGTGTTCAGGTTTGAGCTGGCGCAGCATTCAAGAGTAATCCCCTCTTCAGCTAATTCTTTAACCAGACTTGGGTCTTCCTGGCAGCGGATGCCGTGGCCGATCCGCTTGGTCCCTAAGGCCAGGGCATCTCTCATCGACTCTGGCCCCATGGCTTCACCGGCATGGATAGTGTATGGAATCCCCCATTCTCTTGCCTGCTGGAAAAAGGACGCGTACTTGCAGTTGGCCACTTCTTCGTTTTCCGGGCCCGCCAGGTCCAGGCCAGCTACCCCCTGATCTTTAAACTCTTTAGCCACTCTTAAAGTTTCCCAGTTTGCTTCATCCTGACCAACTAGCCGCATCAAGCAAAGGAGGAAGTTGGCGTGCAGGTCGTCTCCTTCCTGCCCTTTTTGCCAGGCGTAAAAATCGTCCCTGCCATCTAGAACTGCCTGGACAACTTCTGCCTGGGTCAAAGTTTCCGTGTGCTTCTGCGGGGCAAAACGGATTTCCGCGTAAACCAGGCCTTGTCCACGCAGCTCTGCTAAGAGTTCTCTGACAATCAGACGCAAGTTTTCTGCTGTCTGCATCAAGGACAAGGGGAAGTCGAACTTGTCCAGGTATTCGTCCAGGTTCCGGCAGTCCGGGCTGACTGAAAGTCTTTTTCGCAAGTCAGCTTCCGGCAGGCTTCTCCCCTCTTTAGCCAGCAGTTCACGGACGGTTTGGTAAGGGACGGAGCCATCTAAGTGCAGGTGGAGGTCAATCAGTTTTTTCATAGTGTCTTTTACCCCTGTAAGAAAATAATTGTTACTATTCTAGCACAATTTTCACTTTTTTAAAGGTGGATTTTTGCTAAAAACTTTAATGCCATTAACACAAACCAAGCCAAGCATAGTTACTCTATTGTTCGGGATTTGTTGAAATATATTTTCTTTAAAAAAGCAAAATCCTGCTTGAAAGCAACATTGCTGTCTCAAGCAGGATTTTTCACGGCAAATTAATAATGCCTGTGTTTTTTATAAATCTTTTTAACTTTTTCAAAACCAGTCTCTTCCAGCTCGCAGACCAGCCCTTGCGGCAGGACGTAGAGCACCCGGCCTGTCGCCCCGTCGTCGATCAAGTCGTACAGGCGGCCGGCGCTGTGGCTTTCGCCCAAGACAGTATACGGGCTGTTGGCCACGTAGCCGATCTTGCCTAAAGCCCGGGCTTCCACCCTAATGGCTTCCTTGTCATACTTGTTGTCAGGTTCCTTGTACAAGGTTACCTTCATTCTCGGCTTGAAAGCTTCCGTCCCAAAGTAGTGGTTGCAGCCCGTTACTGTAAAGAAAATGTCTTCCATACCGCTCGCCTCCATTCGCGCATATAGTCAAGAATTTTTTGTAGTTTTTTTGCAAAAAAATATTCTATCTTAACTATAATCCTGCTTTTATCGGCGGCAAACATTTTCTCCCCATCTTGCCCAATTGTCCATTTTTCACTAAAATATCATTACTTAAGCTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCCAATAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTAAGTCGATCAAAACATCATCAATATCAAACGAAAGGCTTGCGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATTGCCCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGAATCCCACTTTGGTCGATCCTTTCATACATCTTCAGTAATGTGTTTCCAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCCAAAAACACCTACTATCGATTCATGCAGAACCCACATATCAACTGGCTTCGCCTCACTATTCTGCTAGCTGAGAGGATCGTCAATGGGCACCTGAAAGATCTGACTTCTGACCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTAAAACTGGATACAAGAAGACTGAGCTGACTGCCAAAGTATTCGACCACGTTTCGATGACCTACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCCTCCTTTGTCCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCAAAGGGGACCATGTAGTTATCCAGCTGCTCGATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCAGTCAACGTGGTTTGAACGTAATCGCCATGGTGAAGAAAAGCTCCAAGATCACATACGAATTCGAAGAAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGAGGTCGTTCAAGATACCTCCTGTCCGTCCCTGTAAAGGTTGGAGATCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGCTCCAACCGCAAAGACTGGATCGCTCTTATTTGCACGGACATGACGATCGATGAAAATGAAATCATCAGAATTTACGGCAAAAGATGGGATATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTGAAGCTTGGCACTGAATACCATGGCCTGTCATATGATGCATTGACTGCCCATACAGCTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCTAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACTTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTATCGTAATAATCCGCAATATGACAAGGTTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACCGCTGGGCATGCGACTTTAGCCAAACGAATAAGGCTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATGCCGAAAACAGTTTTCAATAGATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTGCATGGTAGACGAGCTTGCGGACATCACTTTCCATCACTCCCTTCAGATCCTGGTAGAAGCCATGTTCGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGATTCACCAAAGCATTCATTTCTCGCCTTCCAAAGTACATGCAAGAGGCTATATCGCCATCACTAGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTCTTACTACTTACTTTTTAAGCAATAAAAGAAATTATGATTTCCAGCTGCATCAAGGCATTGATAGCGCCAGGCAAACTTTCTTCACTGACTGTCTGCTCAATCACGGCATGGTCTTCATCAAAGTCAAAACCAGCATCCATAATCATCCCGGCCGCGTACTCGTTCAAATCCTCGTTTTCTTCCAATGGATTGTACTTGAACATGAGGTAGCCGTCATCAGTTACCGTGTACTTGTCCCCGCTTTTTTCGACCAGGACAAAAGGCTTGCGGCCGTAAGCATCAACCAGTTCGTTTTCTACCTGGAAAACCGTGTCTGACCAGAGCTTAAAAACTGTCTGCCCCGCCAGCCAATTGATGTAGTCTGCCTTCAATTTCTCGATTTCCATTATTCTTTTCTTCCTTCCAAAAAATTTACGCTATCATCAATTATAGACAATTAAGGGGCAAAAGAAAAACCAGCCTGGCGGCTGGCTTAATTTTTGGATTTTAGTGATTATCAATTGCCCCGTTCAAGCGCTTGCGCCAAATCAAGTAAACAATCAAGGCCAAAGGTACCACGATCAGCTGGACCAGGTAGAACCAGCGGCCCGGAAGAGCCTTGGCCACTACCCCGGCCAGCATCGGCCCAAAGGCCATGGCGATGTCTAGACCCAGGTAAAAGGTGGAGCTGCCCAGACCCTGTTCATTAGCCGGTGACAAAAGCAGGGCCGTTGACTGCAAGACGGAGTAGATCAAGCCATAGCCGACCGCCATCCCGGCCGCCCCCAGGGCCATCATCCAGTTGCTGCTCATGTAGGCCAAAAGGACCAGGTAAATGGCCGTAGCCACCTGGCTCAGCCAGAACCAGACCCCGAAGCGGACCGTGTCAAAGTAGTTCTTGAAGAAGGTACGGATCAAGAGCAAGACGATGGCGTAGATGAAGAAGTAGCTCCCTACCGCCACTGGCATGTGCATCTTGGCCACGTAAGTCACGATGTCGGCCTGGGTGACGAAGTATGGGATCCCGAAACAGGTCGTCAAAAGTGCTACTGGCAAAGCGTTGACGGAGATCATCTTGAACTGCTTCTTTTCTTTTTGCCGGGGACTAGGAACAGCCCGGTTGCCGACGAACTGGATGATGATGATCATGATCAAAGTTGCCGCGGCTGGCAGCATCATGGTCTGCCGGTAACCAATCACTTTGTAAAGGTTGATGGAGATCGCCGGGGCAATGGACATGGCCAAGGCGTTCATCAGCCCGTACAAGCCCATTGCCGCCCCGACATGCTGGCGGGGAACCAGGAAGGCGATCCAAGTGGTCATGCAGACGGTGCAAAGAACGAAGCCGGTCCCGTTGATAATTCTGAACAAGAGCAAGAGCTCCCCGTTAGGCGATATGATATAGCCCAGGATCCCGATAAAAATCAGCACCCCGCCGATAAAAGACAGCTGGTACTTGGAGAACTTGTCAGTCAAGTTGCCGGCGATTGGCCGGAGAAACATGGCCGCGAAACTCATGATCCCCACGATCACCCCGGCTAAAATGCTGCTGGCCCCCAGGCTTTCAGCATAGCCGTTGATCAATGGGTTATTGAACATGGTCCCGAACAAAAACAGGAAGGAGGCGGTCATGACCAAGATGACGTCTTTGGAATAAATCGACTTGCCCTTTTCCTTTTCCATCCGCCCCGCTTTGGCAGGGGAAACACTTGCGCTCTTGCTGCTCACTGTATAACCTTCTTTAGTCTCAATCAATAATAATGATTTTTGCTTAAAAACAAATTAGATTTTACCATATTTTCCCCTCTGCGCTAAGGCTGGCAAAAATCTCTTTGCCTTTTTTCGATTATCCAGCAGTAAAGCGCTAGCAAGCGCCAGCTTGCTTAAGATAATTACGTCTGATTTCTTCATAAGAAAAAAGCCTGCCCAAAAGGCAGACTTTCTGATTAGTCAATGATAAATATCGTATTCTGAACTTTAGTAGTTGAAGTAGCGCTTTACTTCCCATTCTGAAACTGATTGGGTGTACAGAGCCCATTCAGTTTCCTTCAATTCCAGGAAGCTGTCAACGATGTGTTCGCTGAAGGCAGACTTGACGACTTCGTCTTCCTTGAAGGCCTTGATAGCATTGTGCAGGGTTGATGGCAATGGCTTGATGCCCAGTTCCTTGCGTTCGTCATCAGTCATTTCAAACAGGTTGGAAGTTACAGGTGCCATTGGCAGCTTGCCTTCCTTGATTCCGGTCAAACCAGCCTTCAAGCAGGCTGACAAAAGCAGGTATGGGTTAGCAGTTGGGTCAGTTGACCGCATTTCCAAACGAGTGCCGACTTCGTTGGCGTTAGGAATCCGGACCATTGGTGACCGGTTCCGGCTAGCCCATGAGATGTAAACTGGGGCTTCAAAGCCTGGGATCAGCCGCTTGTAGGAGTTGACCGTTGGGTTAGCCACGCAGGTAATAGCGCGGGCGTGTTCCAAAATCCCGTTCAAGAAGGTCAAGGCAGTAGTTGACAGGTTGTATTGGCCATCCTTGTCGTAGAAGGCGTTCTTGCCGTCCTTGAGGAGGGACATGTTGGTGTGCATCCCGTTGCCGGCCAAACCTTCAACTGGCTTAGCCATGAAGCTTGCGTGCAGGTGGTACTTGCGGGCGATAGTCTTGACAACCATCTTGAAGGTTTGCAACTTGTCAGCAGTTGCCAAGGCATTGTCGAAGCGGAAGTCGATTTCCTGCTGGCCATCGCCGACTTCGTGGTGGGCAGCTTCTACGCGGAAGCCCAGCTTTTCCAAAGTTTCCACGATTTCCCGGCGGCACTTGGCGCCTTCGTCTTCAGAAGCCATGTCGAAGTATGAGCTGTGGTCGGAAACCTTGGTGGTTTCTTCCCCGTTCTTGCCTTCCTTGAAGAGGAAGAATTCAGCTTCAAAGCCGATTTCAAAGTCGGAGAAGCCCATTTCTTCCATTTCCGCAATAACCTTCTTCAAGTTGTTGCGTGGGTCACCTTCAAATGGAGTGCCGTCTACGTTGTGAACTGAGCAGACCAAGCGACCGATCGTGCCTTCTTCAACAGTCGTCCATGGCAGAACTAACCAAGTTGCCAGGTCTGGGTACAGAACCATGTCACTTTCTTCCAGACGAACGAAGCCGTCGATTGATGAACCGTCAAAACGGGTTTGGTTGCCCAAGACGTCGTCCAATTGGCTGACAGGAACTTCCAAGTTCTTCAGCGTACCGTTAATGTCAGTGAAGGCCAAACGCAAAAAGCGAACATTCTTTTCTTCTACATCTTTGCGGATTTCTTCTTCAGTAATTACCTTGCTCATGTTCTCACCTTTAAAAATCAAGAATAAATTTACGATCAACTACTCAATTGGCTCTACGCTAATCGATGCTTTAAAGATACCACTCTAACCGCGTGAGGTCAAATTGGTCTAAAGACTTCTTTAATAAAAAAGGACTTTTAGCCATTTTCCTTAAAAAATAAATGATTTACGGCATTTGTAACTGCTATTCTATCGTGAGCATAAGTTAGACCACATTGCATGTAGAGGGCGTAAGGCGGCCGGATCGGGCCATCTGCTGAGAATTCCATGGTTGAACCAGAGACGAAATTGCCAGCGGCCATGATAACCTTATCTTCGTAACCTGGCATGTCGCTTGGAATTGGCTCAACGAAGGAGTCAATTGGCGAATTTTTCTGCACTTCTTTAGTAAAATTGATCATCTTTTCCGGAACATTGAAGATGATCGTCTGAATGAGGTCGGTTCGCGGTTCATGCCATTTTGGCGTGACTTCACAGCCCATTTTTTCCAAAAGAGCTGCTGAGAAGATCATCCCCTTGATGGCTTCACCGGTTGTGTGCGGAGCCAGGAAGAAACCTTCATAAAACTCGTGCATGTTGGTCAAGGTGGCCCCTTCTTCCTTGCCGATCCCCGGAGCCGTCAAGCGGATAGCCGCGTTTTCGACCAGTTCCTCTTTGCCGACGATGTAGCCGCCAGTCTGGGCGATCCCGCCGCCGGCGTTCTTGATCAAGGAGCCGGCCGTAAAGTCGACCCCGTATTCAGTCGGCTCATGCTTTTCAGAAAATTCCCCATAGCAGTTGTCGACGAAGACCAAGCTTTCTGGGCTGACCTTTTTAACAAAAGCAGTCATTTTCTTGATCTGGTCAACCGTGTAGCTCTGCCGGGTGTCATAGCCCCTAGACCGCTGGATGACCACGATATGGGGCTGGTCGCGCTTGAGGACCTTTTCCGCTTCTTCGTAGTCAACCCCGCCTTCTTCGTTTAAAGGCACGTAGGAGAAGTTGATCCCCTTCTGGATCAATGTCCCCCGCTTCTTCGGGGCCAGGCCAATCACCTGCTGCATGGTGTCATAAGGCATCCCGGTCAGGTAGGTCAAAGTTTCACCTGGCAAAAGGTTGCCGTCTAACGCCACAGCCAGGGTGTGGGTACCTGAGACGAACTGGGGCCGGACCAGGGCGTCTTCAGTCTGGAAAACCTGGGCATAGATGGCTTCCAGCTTTTATCGGCCGATGTCATCGTCCCCGTAGCCGTTGGTCCCCTTGAGGTCAGCTTCCGCCACCTGGTGGTCGACAAAGGCCTTGAGGACCTTTCCCTGGTTATAGACCACCTGGTCGTCAATTTCCCGCAGACGGGGGGGCAATTTCCTAGTCAACTTCAGCCAGGATTGCCTTTAATTCTTCTGGTAATTTTCTCATTTTTCTTCCTTCATCCATTCTTCTATTCTGACAGCAATCCGGTTAGCGCAGTTGGGATCCGTCAAGGGATCATACCACTCAACCGGCAATTTATTCCTAAAGTAAGTCAGCTGCCGCTTGGCATACCGCCTTGAGGCCGTCTTAAGGGCCATCACGCAGGTTTCCAAGCTAGCCTCTCCTGCAAAATAAGGGAAAAATTCCTTATAGCCGATAGCCTGCAGGACCTGGTGCTCACCTGCCCGGTGCTCGTAGACAAAGCGGGCCTCTTCTAACAGCCCGGCCTCCATCATCAAGTCCACTCTCTGGTTGATCCGCTGGTAGATGGCCTCCCGGTCACTGTTTAAGCCGATGATCAAGTAGTCATAGCGGGTCTTAATTTCTGCCTGCTGCTTGGAAAAAAGCCCGCCCGTCCGGCTGATCACGCTGAGGGCCCTAAGGCTTCTTCTGCTGTTGGCCACCGGGATCTTTTTAGCAGCTTCCGGGTCTTTCTTGTTTAATTCCTCCCACAAGGCCTGGGGGCCGTTAGCTGCTAAAAAGACTTCCCATTCCGGATCCACGCTGGCCGCTTCTTCTTCCTTGTCCCCCAGCTGCATGTCATTTAAAAGGGCATTGACGTAAAAGCCAGTCCCGCCTGCGATAATCGGCAGCTTGCCCTTGCCCGCGATCTCTCCGATGGCGGACCGGGCCTCATCAACGAAATTTTTTACGGAAAAATCCTCAAAGACCGAGTGGGCATCCACCAGGTAGTGCTTGACTTCTGCCTGCTCTTCCCGGCTGGCCTTGGCCGTGCCAATGGCTACTTCTTTGTAGATCTGCATGGAGTCCCCGGAGACGATCTCCCCGTCCAGTTTCTTGGCGATTTCGATAGCCAGGCTGGTCTTGCCCACGGCGGTCGGCCCGACTATGGCCACTACTTTCTGCATAAAATCCTCCTGCAATTTTCTCTTCTATCATCATAAACCAAAAAAGCCTGCTTGAGAAATTTTCTCAGCAAGCTTTCAGCTTAGTTCTTGGCTGCCTTCTTGCGGCCGTCCCATTGGGAGAAGCCGTCCTTGAGGTAAAAGACCTTGGCAAAATTGTGCTTGCGCAGGATGCTGGCGCAGCGCAGGGTCATGGTCAAAGAGTCCGAGTAGAGGTAGACCGGCAGGTCTGGCCGCAGTTCGGTGTATTGGTACTTGAACATGGTATATGGGATGTTTCTTGCCCCATCAATATGTTCATGCTTGAACTCATTGGCTTCGCGGACGTCGATGATCTGCGCCTTCCGCATCCCGGCCTTGAATTCTTCGTTGGTCAGCTCCCCGCCTAGGCGCTTGGCCTGGATCCGGTTGTAGGCCCAGAAGCCCAGAAAGCCCAGCAGGATGACGCCCAAGATGACGTCAAGAACGATTAAAAAATTGGTCATGTAAAAAAGCTCCTTCTTGCAAGTCTTATCTCATAATAACGCTAAATTCAGCCTGGGGCTAGCTAGTCCAGCCTTTTTTCCCGCTCAAGCCGTTCTTCGTATTCGTGCTCATGCTTTAAGACCAGTTTCGCGTTTAAATAGATTTTTTTCTCTAAGAGGCCTGCCTTATACAAATTGTCTAATTCAATCGCCATTAATTCGATGTCCCACTTCCGCTTGCCCAAGTGGACCAGGATGCCGTATTTTTTCAAAAGCTGCTGAACATCGTAAAGATTTTTCAAAACAGTCATCATACCGTCACTACCATTCCTAAACGCAAAATCAAAACCACATAGACAATCAAGCCAGCCGCGGCCAATAGCCGGCCGCCCTTGCCGTAGCCTTTATAGGTCGCGTCACCCAGGATTACCGCCAGCAAGGCCCCGGTGATCAAACCGCCCACGTGGCCCAGGATATCCACGTCAGGCATGAAGACGTCCAGGACCAGGTTGATGACCGCTAAGGCCAAAGCCTGCCGGCCCAGGAAGGACAAAAGGGTATTGTCTTTATCCTTAAAGCCGGCGCAGGTCATGGCCCCAAAGAGGCCAAAGAGGGCAGTTGAGGCCCCTGCACTGATGGCCTGGTCATTGCCAAAGGCCAAGGTTAAAAGACTGCCGCCCACCCCTGACAGCAGGTAGATCAGCAAAAAGCGCCAGTGGCCGAAAACCGGCTCAGCGTACTGGCCGATATAGTAGATCATAATCGCGTTGGAAGCGATGTGCATGATCCCGATATGGAGGAACTGTGCGGTAAACAGGCGCCACCACTGTCCCTCCATAACCACGGCCGGGTTGAACATAGCCCCCATTTTCAGCAAAACAGAAGTGCTCTCAGAGCCGCCCATAAAGGTTTCCACCAGGAAAACGGCAAAGAGGACCACAACCAGCGCGGTTGTCATATAATTACGCCGCAGATTATTCATCACCGGCCTCCTTTACAATAATCAAATCATCCATGGCCTGGTCATGGTCTTCCATTGGCCAGACCGGAGTCTTAAAGTACATGGCTGAGTTGACCAGGGCCAGGGTCTGGACGGAATTTTGGGCCAAAAAGCGGTCGTAGTAGCCCCCGCCAAAACCAATCCGGCTCTTGCCCGCCGGACTGAAGGCCAGGCCGGGAACAAAAAGCAGGTCCAAGGCGTTATCAGCTTCTTTTTTCTTCCGCCAGCTCCCAGACCCCGAACTTAGTCTGCATTAAGGGAGCGCCTTCGTCCCATTTTAAAAAGTCCAGCTGCCAGCCGGGATGGCACTTAGCCAGATAGAGCTCCTTACCCTCTCCCCGCAGCTCTTTAATCAAGCCATTTATGTCCACTTCCAGCAGCATGGGTAGGGTCAAGCCAATTTTTTTCGCCTCCTGGACCAGGGGATGCTGCAGGGCCAGGGAAGTCAATTCCTGGTCTTGCCTTTTTTTAGCCGGAGTCTTGGCGAAATCCGCCAGCCGCTGCCTTTGCCAGGAGCGGAAAGTCTTCTTGTCCATCAAAGCAGTCACGCCCTCACTTCCTGCAAAATAAAAAAAGCAGGCCTTTCGACCTACTGTCTTTTATTACTTAGTCTCGCGGTGAAGAGTTACCTGTCTTTCAACTGGGCAATACTTCTTCAAGGTCAAACGTTCCGGATGCTTACGCTTGTTCTTCTTAGATAAGTAACTTCTGTCGCCACATTCGGTGCATTCTAAAATGATGTTGTCTGCCATTATTTTCACCACCTACAATTAATATCTGACTGTACAATCATAACATTTTCAAGGGCAAAGAGCAAGTTATCTTGCCAAATTAACTATTAATTTGTGCTTGAAAACTTTCCCTTGTACATCTTGTAGTAAGTCGTCACCATCGACTTGGCCATGTTCTTGTTGTAGTTGCCTTCCTTGTTCGGATCGATGCCGGCAAAAACAACCGCGAAGGCAATCTGCGGGTGGTTGGACGAAGCCCAGCCGACCATGGTTTCGTTAATCAGTTCCTTATCAGTCGACTTCTTGGTCTTAGTGTTGTAGTAGAATGTCTGGGCCGTACCGGTCTTAGCAGAGATCGACGGCTTGACATTCTTCAAGGCATGCGCTGTCCCCCAGGCGTTGGACCCGTGAACGACCTGGTAGAGCCCCCGCTTGATGACAGCCAGCTCATCCGCTGTCCAAGGGATCTTGAACTGGACAGTCGGCTTCTTGTTATAGTAAGTATAGAAGTGCTTGCCGTCGCTGCTGGTTCTGCCGATAGACTGGACAACGTATGGCTGCATCCGGTAGCCCCCGTTGGCAATCGTTGAAATGTACTGAACCAGCTGGATTGGGGTATAAGCATCATAGTTCCCGTAGGATTCGTCGAGGACTGACCCGGACAGGATGATCCCGTTGGAGTCAGTTGATGCCCCTTGGATACCGGGGCTTTCACCTGGCAGGTCGATCCCGGTCTTTTGCCCAAAACCAAACATGGCAAAGTTGTTTCTCAAGGTCTCAAAGGCCGTCTGCGGCATGTGAATGTACTGCTTGGCCACATAGCTGGCCTTCACCCAGCGCAGGGTCAACTGCATCATGTAGATGTTGGAAGATACTTCTAGGGCGCTGGCCGCCGTCAAGGAGCTGAAAGTCCCGGTCGGGTAAACAGACTTCTTGACCGGAGAACCAGGCAGGTAGATGGCCGTATCCGGCAGGGTGTTGTTGGTTGGAGTGATGACCTTATTGATCAAGCCCCCGGCCACCTGGGCCCCCTTGACAACAGACCCCATAACGAAGGACTGGTTGATGTTGCCCAGGGCGTTGTCCGTGATCTTGCCCGTTGATGGGTCATAGCTGATCCCGGACATAGCCAGGATCGCCCCGGTATTCGGGTTCATGGCGATCGCGTAAGCCCCGCTGGACAGGCTGGCCGCCCCGGCACTCAAGGCAGAGTTAAACTGCTGCTTGAGAGCCTTGGTTACGGCTGCTTGGTACTTGGCGTCAATCGTCAATTTCAGGCTGGCCCCGGACTGGCCCTTGTAAACCTGCTTGGTCTTGGTGATTTCGCTGCTGGAGTTGCTGGTGACCTTGTAGCTGGCTTTGGTCCCCTTCAAGAGGGCCTCGTATTCCTTTTCCAGGTAGGAAATCCCGACCCGGTCGTTTCTGGAATAGCCATTGACCAGGTAGTATTGCAGGCTGTCCCTCGGCAGACCTGTCTTGGTCGTGGAAACTGACCCGATGATACTCTTGATTGAAGACCCGTTCGGGTAGTAGCGGTTCCAGTCAGTCCCGATCCCGACCCCCGGCATGGAAGACAGGTGCTCGCCGACCTGGGCGATTTCCTTGTTGCTGAGGCCGCTGCTCTTTAAGTTGATCGTCGACAAGGTTGTGGCCCCTGACATCATGTTATACAAGAGGGCGGCCGTCTTTTCCTGGCTGTTTAAAGACGGCTTAAGGGTGTTTTCGACGTAGGCCACTTCATTGTCGTTGATTTCTGAAGTCGACAGGCTGGACTTCTTCTGGGACTTGGGCAAGGCAGCCAGGACTTTCTTGGCCCGGCTGCTCTCAGCCAGGTAATAATCGGCAATTTGTCTTTTTGTCGGCTTTTCGTCGGTAATTTTTATATAATTACTAAGGGTATTAGCAACCTTGTACATCTCTTTGGAAGTCGTTGACAGGCTGCGCATGTAAGTAATCGCGTTCTCAGCCTTGTTGCCGACCAGGACCCGGCCCTGGGAGTCGTACATGACTCCCCGGGGGACAGACTTGGTCATGGTGTTTTCGTCGGTGGCGTTAACCTCCGCGGAGAAGCGCGAACCGTAGAAGAGCTGCAAGTATGCTAATTGGCCGATTAATGCCGCGAACAAAATTACGATGACCCCGACCAGAACCTTCATTCTGAGAGGGGTGTTTGCAGTTTGACTACTGTTGCCAGTTCCGCTATTCTTTCTAAAATAACTCATGATAAAACCATCCTCACTAACAAGTAATTTTAGCAAAAAGACCTGCGCAATTCTATCATTTAGAATAGGAGTTAGCCAATTCTTAATGTACATGTCCAAAATAAAACGTTTTTTCAAAAATTCGGCCTTAAGCAGCTTTATGCCTGCCTGGCCTTCGCCCTGCCGGCCTTGATTTTCGCCGGTTACTTCCTCAGCAAGAAGGGCAATATTCTGACCGTCGACCTGGGCCAGCAGTACGTTGACTTTCTGGCCTACTACCAGCAAAATCTCTTTAAGGACCCAAGCAAGTTGATTTACAGTTTTGCCAGCGGCCTGGGCGGCTCCATGCTAGGGACGGACAGCTACTACCTGCTCAGTCCCTTTAACCTGCTCTTGCTCTTTTTCCCGCAGAAGTTCCTGCCCCAGGGGATCCTTTTGGTCATCTCCTGCAAGATCGGAGCTATCGGCCTGTCCGCCTACCTGGTCTGGGGAAAGAAGTACCAGCTGGCTAAGGAATACGTTCTGGCAGCCAGCTTTGCCTTTGCCCTCTGCGGCTTTGTGGTTGCCAACAATTTGAACTTGATGTGGCTGGACAGCCTGGCCCTTTTACCCTGGCTGCAGGAAGCTATTGACCGCCTTTTATCCGGGGAGAAAAATCACCTGGTCCTAATTACCTTCCTGCTCTGGCTGACCAACTTCTATACCGGCTACATGACCCTGCTCTTTGGCCTGCTCTATTTGCTAGTGGGCCTGGCCACGAACAGGAAGCCAAAGAAGCGTTTTTGGGCCTACTTCAAGGGCAGCTTCTTTGGCAGCTGCCTGGCCGGGGTCAGCCTCTGGCCGACTTTTCTGGAACTTTTAGCCGGGAAAACTGATGCCGACGTCAGCTGGAAGCTGAACTTCCAGTTTCCGCCCTACCAGCTAATCGCTAAATTTATCGACGGGGCCTACAGCTTCCATGAAATGTCGGACGGCCTGCCCAACATCTTCATCAGCTCCTGCTTTACCCTCTTGGCCCTGCTCTTTATCTTTAATTCCCAGTTCAGCAAGCGGGAAAAACTGGCCCGGGGCCTGCTTTTGACCTTCCTGGTCTTGTCTTTGTCCTTTACCCCCCTGGTTTTGATCTGGCACTTGGGCCAGTTCCCGGTCTGGTACCCGGCCCGGTTCAGCTTCCTGGTCTCCTTCTATGCCTTGAACCTGGCCCTGGAAAACATGGACAGGGAACCCGTCTTCAATCTCAAGCAGAAGGTCCTGGCCGCCCTTTTGGGGGCCAGCGTCTCCATTTATCTGTCCATCAATCCGGACAAGCTGGAATTTATCCGGCAAGACGGACAAGTCGCGACCGGTCTCTTCCTTTTGGCCAGCCTGCTCTTCATTCTCTTTATTTACGGACAGCACTATTTAGCCGGCCACTACGCCCTGCTTTTGGTCGTTTCGGAAGTCACGGTCAACTTGATTTTTTCCTTAAACGCGATTTCCTACCAGGAAAACAAGAACTATGCCAAGTTTGAAGCCAACGTCAACCAGGCGACCAGCTACCTGGCCAAGACCGACTCCAGCCTCTACCGGACGGAGAAGAGCTTCAGCCGGTCAGACGATGACCCCTTCACTGGCAACTATTACGGAATCACGACCTTTAACTCCATCAGCAATTCCAGCACTTCCAACCTGCTCAGCCGCTTAGGCTACGTCCACAACAGCAACTCTTACACCAACCAGGGCGGGACGCTTTTGACTGACGCCTGCCTGGGAGTCAAGTACTACCTGGAGCCGAATTATTCTTATGACGGCGTTTCAGCCGCCCAGCGGATGCCTTATGACAACTTGAACCACCGGGCTGATTTGAACAGCTATTATCCAATAAAGCAGTTCAAGCAGATCAGCATTTTAAAAAACAAGCAGGCCCTGCCTTTGATTTTTGCTAGCCAGAGCGGGCAGAAAAAGGTCAAGTTCCTGGATAATGACCCGGTTCACAACCAGCAAAAGCTCTGGGAAAGCCTGGGCTTGTCCGGCCAGCTTTTCAAGAAGGTCAAAAACGAGATCAAGCTGACCAACTTGAAAGTGAACCAGTCCAATCCCTTGGTCTTTAAAAAGGCCAACTCTGCCAAGCCGGCTTCCGTCACCTTCAGCTTGACGCCAAAGAGCAATGACTCCTACTACCTGCAGCTACCGGACGGTTTTGACTTCAAGAACGCCAGCTTAAGCGTCAACGACATCTTCTACAACTACGAGAGCCGGGACGGGCAGATCCGCCTGGTCAACATCGCCAACCAAAATAAAAAGTCCAAGATCAAGGTCACTTTTAACTTGACCAATTCGACCCTGGACTTAACTGGTCTTATCTTCTGGCACTTTAACAATTCCGCCTTCAAGGCCGGGATCAAGCAGCTGAAAGCGCCGGAACTTAAGTTAAAGCAGACTGGCTTGCAAATTTCCAGCCAGACTTTTAAGAGCCAAAAGAAGCTCTGGATCACGACTATTCCATATTCCAAGAACTGGCTGGTCTATTACAACGGCAAACGGGTCAAGACCAGCAAATACGCTGCCAGCCTCCTGGCCTTCAACTTAAAGGGGGGCAAGCACCAGCTGACCCTGGTCTATTTTCCGGTCAGCCTGATTGCCGGCAGCTTGATCAGCTTGGTAACTTTGGCTGTCTACCTGCTTTTGAAAAAGGAACAGAGAATTTAAACAGTAAAATAGAGCGCAAAAAAAGGTGCTGTCCGGGTGGACAGCACCTTTTTAGTCGGTCGTCTTAACGTCGTTGATTACGACATCGTAGCTGACGTTGGCTGAGTCAACGTTGATCTTGACCGTTTCACCCTTCTTGTGGCCAAGCAGGGCCTTGCCGATCGGAGATTCGTTGGAAACCTTGCCGTGGAATGGGTCAGACTGGCTGCTCCCCACGATTTCGTAAGTTTCCGGTTCGTCTTCGCCGACTTCAGTAACCGTAACGGTCTTGCCGATACTTACTTCGTCGGGGTCAACGGCAGCAGTGTCGACAATGACAGCATACTTCAATTGTTCGCTGATGGCATTGATTCTTTCTTCCAGCCGCATTTGCTCATCTTTAGCTGCGTCGTATTCTGAGTTTTCAGACAAGTCCCCGTATGAACGGGCAATCTTCAAACGTTCAACGATTTGCGGCCGCTTGACAAACTTCAAGGTCTGCAGTTCTTCTTCCAGCTGCTTCTTGCCTTCGGCAGTCATTTCATAGGTTTTTTCAGGCATTTTGATTCTCCTTCATTTAACGCATTATGCAATGTTAAATATTAGAGTTTAATCCCGGGAAAGTCAACCATTAACGAATGTTTGCCTCTAATTTTTCTTCCAAAGCGGCTTGCACATTGTCAGTTGCCTTAGTGACAACCGCGTCAGTCAAGGTTTCTGCCTCATTCAAGAAGGTCAGGCGGTAAGCCAGGCTCTTCTTGCCGGCAGCCAGGTGGGCCCCTTGGTAGACGTCGATGACTTCAACGCTAACCAGGTACTTGCCGGCGTTTTCCTTGATGCAGCTTTCAACTTGGGCATTAGTGACATCTTCGTCAACCAAAATTGACAGGTCCCGCTGCACGGCTGGGTACTTCGGAGCCGGCTTGGACTTGACCCCCTTAGCCATCAGCGGCAGCAGGGCATCCAGGTTCAGTTCGTAAACGTAGATTTCCTTGCCGGCGAAGTTCTTGTCAGTCATGGCCAAAACTGGGGCAATTTGGCCGATCAGACCAATATATTCATCATTTACGTAGATGCCAGCCGTTCTGGTCGGGTGCATCCCCTTGATTGCTTCGGCCCGGTATTCCACGTCCTTGACCCCGATCATTTCAAATACGTCTTCCAGTTGCCCCTTGACGTAGTAGAAGTCAACGACTTCGTCCTTGTGCTGCCAGTTGCTTTCACCAGCTAAGCCGACGTAAGCGGCTGCCAGGTGTTCATGTTCGTGGTAGTCGCCGCCTTCCATGTCGTAGACGCGGCCGTTTTCAAAGAGCTGGAGTTCAGTTTGCTTGCGGGCGAAGTTGTAAGCAACCGTGTCGAGCAGGCCGCAAATCAAGTTTTGCCGCATGGTGGTTCTGGCTGAGTTCAGCGGCCAGTTGACCTTGACTGGGGCCAGGGCCTTTTTGACAAAAGTCGTAGCCAGTTCTTCAGAAGTCAGGGAGTAGTTGATCGTTTCACTGAGCCCCTGCCCTTCCAGCAATTGACGCAGGTGACGGGCCTTGACTTCATCAGCCGCATAGCCGCCAATAAGTTCACCGGTCGCCGGGTGGGTGGACTTGATGTTGTCGTAGCCGTAGATCCGGCCGACTTCTTCAAAGATGTCGGAGTCAATGAAGATGTCCCAGCGGCGGTTTGGCACAGTTACCGTGTATTCGTCGCCATTTACTGCAACCGGGAAGTTCAGCTTGCCCAGGATCTTGACGATTTCGTCCATGGACAGGTCAGTGCCCAGGATCTTGTTGGTCCGGGAAGCAGTGGTCGTAATAACAACTGCTTCCTTGTCCAGGTCGCTGGCCTTGATTTCACCAGATAAGACAGTGGCGCCGGCATTTGCCCGCAAGATCAAGGCGCAGATATCCAGGGCCTTTTGGGTGTTGTCCCAGTTGATCCCCTTTTCAAACAAAGCAGAAGCGTCAGTCCGGTTGTCGTGGCGCAGAGCTGCCTTTCTGGTCAAGGCCGGGTCAAAGACAGCAGCTTCCAGGATCACATCAGTAGTTTCTTCAGTTACTTCGCTGTTCAAGCCGCCCATCACGCCAGCTAAGCCGACTGCCTGCTCACCATCAGTGATCACGATGTCTTGCGGGTCCAGGTTGATTTCTTTTTCATTCAAGAGCTGCAGCTTTTCGCCTTCCTTGGCCAGGCGGACCTCGATCTTCTTGGTATTGTCAAAAAGCTTGGCGTCGTAAGCGTGCATTGGCTGGCCAGTCAAGAGCATGACATAGTTGGTCGCGTCAACCACATTGTTGATTGGGCGGATGCCGGCATTCCACAGGCGGGCCTGCATCCAAAGGGGACTTTCAGCGATCTTGACCCCGGTCAGCTTTCTCAAGTAGTACTTCGGCGCGATCTTTTCATCAGCAACGGCAGTAAAGTCACCAGTCCAGTCTGCCCCGTCTTCTTTAAGGACAACGTCTTCGATCTTTGGCTTCTGGTCAATCAAGGCACCAACTTCATAAGCTGCCCCTTCCATTGAGGAAGTGTCGGCCCGGTTTGGGGTAATGTCGAAGTCCAAAACGTAGTCGTCCATGCCCAAGGCTGCAAAGACAGAGTCACCAGGCTTAAGGTCCGGATCATGGAAGACCCAGATGCCGTCGGCGTACTTCGGCGGAACAACTGAGTCGCTGAAGCCGAGTTCTTGCAGGCCGCAGATCATCCCATTGGATTCAATCCCGCGCAGCTTGCCCTTCTTGATCTTGATCCCGCCTGGCAAACGTGCCCCGGGCAGGGCCACGATCACGTCCTGACCAGCAGCCACGTTAGGTGCCCCGCAGACGATCTGGCGGGCTTCATCTTCACCAACGTCGACCGTAGTCTTGTTGAGGTGAGTCCCTTCGATCTTTTCGCAGGTCAAAATATGGCCCACGACCAGCTTGCTCACGCCGTCTTCCGGGTGAACCGTTGAGGCGATTTCAACCCCGGACCGGCTCAGTTTTTCAGCCAAGGCGTAAGGGTCTACGCCGTCCATGTTCAAGAAATCTTTCAACCAATTGTAAGAAACTAACATTAATCTTCCTCCTGACGGAATTGTTGCAAGAAGCGCACGTCGTCACTGTAAAAGTCGCGGATGTCGTCAATACCATACTTCAAGATGGCGAAGCGGTCCAGGCCCAGGCCAAAGGCAAAGCCAGAGTAGACGCTTGGGTCAATGCCGGCGGCAGACAAAACATTCGGGTGAACGATCCCGGCACCCAGAACTTCGATCCAGCCGGTGTTCTTGCAGATCGCGCAGCCCTTGCCGCCGCATTCAAAGCAAGAAACGTCCATTTCAACTGATGGTTCAGTAAATGGGAAGTAGCTTGGCCGCAAGCGGGTTTCCCGGTCCTGGCCGAATTCGTGCTTGGCCACCAGTTCCAAGGTCCCCTTAAGGTCACTCAAGGAGATGTTCTTGCCGACAACCAGCCCTTCCATCTGCATGAACTGGTGGGAGTGGGTGGCGTCGTCATCGTCTCTTCTGTAAACCTTGCCTGGGGAGATCATCTTGAGGTCCCCTTTATCGAAGTCATGCTTTTCCATGGTCCGGGCTTGAACTGGTGAAGTCTGGCTCCGCAGCAGGTGGTCAGCGTCAACGTAGAAAGTAGCCTGCATGTCCCGGGCCGGGTGGTCCTTAGGCAGGTTCAGCATTTCGAAGTTGTAGTGTTCGCTTTCGATTTCCGGGCCTTGGACAACTTGGTAGCCCATGCCGATGAAGAAGCGTTCCAGGTCGTCTTGAATGATTCTGATCGGGTGCTTGGAGCCGACATGCTTTCTGCGCCCTGGCAGGGTCACATCAATCTTTTCAGCTTCCAGGCGGGCCTCAATGGCCTTTTCGATCAAGTTATCCTTGGCAGAAGCCAGGTTTTCATTAAAGAGGTCGCGGAGTTCGTTGACCTTCTGGCCGACTTCCCGCCGCTTTTCCGGAGCAACGTCCTTCATCTGGTGCAGAATTTGCGTCAGTTCCCCTTTCTTGCCGACCAGCTTGACCCGGACGTCATTCAGGCTCTTTTCGCTTTCTGCTTCCTTGATTTCAGCAAGCCCCTGCTCCCGCAGTTCCTTCAATCGATCAAATAAATCCATTTGCTTATTCCTTTCAACAAAAAAACTCCGCCCCCCAAAAAGGGACGAAGCTTCGCGGTACCACCCTAGTTTAGGCCCAAAAAGGCCTACGCTCTATACCGATAACGGTGGCAGCCGGAATTGATTAGATCCTACTCGCAAGATGAAATTCGCAAGCCGCTCTTTGGTTTCCTTTCAGTTGCCAAGAAACCTCCCTGTCAAAGACCGAACTTGCTACTAGTCTTGTTCTTAGTAATTAATTAAAATCATAGGCTAAAACTTGCTTAAATGCAAGTCGTTTTTTACGCCCACTTGTCAGCCCAGATATGAACCTGGCTGAAGACCGGCTTTAATTTGGCCCCTTTTGGCGTCAAAGTGTAAAGGACGATCTTCTTTTCCGCATCCTTGGACCGCTTGACGATCCCGTTAGCTTCCAGCTCCCGCAGGCGTTCGACCAGAACCCGGTCAGAGCAGGCACCGACCGCGTGGGCCAGGTCCCGGAAGCGCATGGCCTTGGTGTCGCACAAGGAGCTGATGATCAAGCCGTTCCACTTCTTGCCGATGATCTCAAAGGCCTTGACGAAGCGGGCGCACATTTCGTAGTTTTCAGCGTTTTTACAGCATGGCGTGTCCTGTTCAGCTAATTCTGTCATAGAGAAATCCTCCTCAAATTAGTTTCCATGTTAATTATTTAAGCACACTTTACTTACGAAAAACAAGCAAAAAGCCTTCTCCTAGCTGAAGTGGTAGATCATGATCCCGGCAGCAACAGCGGCGTTCAAGGATTCAGCCCGGCCCTTGATCGGAATGTAGAGCTTCTCGTCAGCCAGAGCCTCGATTTCCGGGCTTACCCCGTGCGCCTCATTGCCGATGATCAAAGCAACCTGGGCTACTGGGGCAAAGTCCCCCAATTGTTTAGCGGCTGGATCCAAAAGGCTGGCGTAAACTGGAATGTCCGCGGCCTTCAAGCTGGCAATGGCGTCTGGCAGGTCAGCCTTGATCAAGTTCAAGTGGAACTGGCTCCCCTGCATGGAGCGCTGGACCTTTGGGTTGTAGAGGTCAACCGTCTTGTTTGACAGGATCACCCCGTCAAAGCCAGCCGCGTCAGCCGTCCGGATGATGGTGCCGACATTGCCCGGGTCAGCCAGGTCATCTAAGAGGACCCACTTGCCGTAGCTGAAGGCAAAATGCTTAGGCCGGTTGATCTTGACGGTCATGTTGATCTTGACGGTCATAAAGATATCCTGGGAATTCTTGGTGCTGCTGAGGTGACTGGCCACGCTTTGGCTGATCTTGATCAGCTTGCCCTCATCATAAGCCAGGCCAAGTTGCGCCAAGCGGCTTAGGGCTGCTTCAGTAGCCAGGATTTCCCGGTACTTGACGCTTGCTTTTAAGGCTTCTTCAACCAGGTGGAAGCCTTCGATCAAGTAATAGCCGCTTTCTTCACGGTATTTCTTCTGCTGCAGCTTGCCGATGGCCTTAATTTGCGGATTGTTGACAGATGTTCTTTCTTGCATGATAAAATACTCCTTAGAAATACTATTTTAATGATTTTTTGCAAAAAATAAAGAAGGTAGTCAAAATGCAAACATGGGAACTATTAGCGCATGGAGTCGTCCAGGGCGTGGGCTTTCGCCGGGGCGTGCAGATGCTGGCCCAGAAGATGAAGCTGCCAGGCAGCGTGAGAAACAACCCTGACGGGACGGTCACCATTGTCATTCAAGGGACGCCAACTGATCTGGTCAAGTTTAAAGCTGAGTTGCCAAACGCGGTGCCATATGCCCAAATTTCACGTTTGGACACAAAAGTTCTGCCTGAAATGGAACAAATGCATTCTTTTCATGTATTATATTAGACAGATCCTAAGAATTTGGAGAGAAACTATTCAATGAAAAAAAACAAAAAACGTTTATTACCTGTCAGCCTGCTGGCGCTCTTGCCGCTTTTCCTTACGGCCTGCGCCAGCCAGACCAGCAAAAACGGCAGCTTAAAGGCCCCGACCAGTGGTCCTTACTACTGGATCTATGAATGGATCGGCCTGCCTTTGCAGCATATCACCGTCAACATCGCCCACGCCATCGGCGGAGCCAGCGGGGCCGGCTGGGCCATCGTCATCATCACTTTGGTCGTCAGAGTGATCTTGATGCCGCTCATGCTGAGCCAGCAGCACAAGGCTACCCTGCAGCAAGAAAAGATGCACCTTCTGCAGCCGCAAATGCAGCTTTTGCAAAAGGCCATGAAGACGCCAGGGATGACTCCTGACCAGCAGATGGCCTTGACCGGTCTGCAAAGAGAGATCTATTCCAAGAACAATGTCTCCATGACTGGCGGGATGGGCTGCCTGCCCCTCTTGATCCAAATGCCAATCATGATCGGGATCTACCAGGCCGTGGCTTACTCAAACGCACTTGCCAAGTCCACCTTCTTCGGCATTTCCCTGTCCAGCAAGTCCATGGTCCTGGCCATCATCGCCACTGTTTTTGCCTTGATTCAAAGCTACGTGGCCATGATCGGCATCCCTGAAGAGCAAAAGAAGACCATGCAGGCCACCATGCTGATGAACCCAATCATGACCCTCTTCTTCTCCATGTCCTTCTCCGGCACCCTGGCCCTTTACTGGGCAGTCGGTAACCTGGTCATGGTCATCCAGCAGCTGATCACCACCTTCATCGTGCAGCCGCGGGCCAAGAAGCGGGTTTCCAAGGAACTGGCAGACAGCCCGATCGTGGAAGTCGTTACCCAAGCCAAGCTTAACCAGATCTTAAAGCCAGCCCCTGAACAAAAGCCAACCAGCCAGCCGAAGTCCGGCGACCTGCGCAAGCGCAACCAGGGCAAGCAGAAGCGGAAGTAATTCGCCAAGCTAAAAAGAAGCTAAACATAATAAGATAAACAAGAAAAAAATAAAAGCCGCTGAAAAGCGGCTTTTACTTTGCTCTAAATTCTGTTAAATTGTCGGATCTTGCTTTGGACTCTCAGTTCCAGCTTGCTTTTGCTCTTCCCGGCTTTCCAATTCTTTGACTTCTTCATCAGTCAAGACCGGGAAGGTGATTCTGAACTGGCTCCCCTGCCCTAAGACTGATTCAACGTCAATGGTCCCATGGTAGGATTCCACCAGCTTCTGGGCAATTGACAGGCCCAGGCCGTTGCCGCCCTTTTCCCGGGTTCTGGCCTTGTCGACCCGGTAGAAACGGTTGAAGATCTTCTTCTTGTCCTCATCGGAAATCCCTTCCCCGTAGTCTTGGACCACGATCTGCATTTCCTGGCCAGACTGGCCGGCAGCTACGGCAATTTCCTTGCGGTCGGTTGAGTACTTGATCCCGTTGTCGATCAAGATGATCAAAATCTGTTCCAGGTGGCCCTGGTAGATCTGAATCTTGGTATCCGGATCCAGGTCCTCAACTTCCAAAGAGATCTTGAAGTCCGGGTGAACCATGCCTATGTCCCCGACTACCCGGGTCAAGACTTCCATCGGCTCAGCGATGGCGTTCGGGTAGTGGACACTGATCTGCTCAGCCCGGGTCAAGTCCAGCATTTCCTGGATCAAGTGCTTCATCCGCTCAGCCTCTGAAATCGAGGCGTCAATGGATTCTTCCAGGACCTGTGGGTCATCCTTGCCCCAACGCTTAAGCATGCTCAGATGGCCCTCAATGACCGCCACAGGCGTCCTCAATTCGTGGGAGACGTCAGAGACGAACTGCTTCTGCTGCTCGATATACTTCTGCATCCGGTCCAGCATCATGTTGAAGGACAGGGCCAGTTCTTCCAGTTCGTCGTTTCTGTGCAGCTCGGGAATTCTGGCCGTGCTGTTCGGGTCGGCGTTGACTTCCCTGGCCACCTTGGACATCTTGTTGATTGGTCTGACGACGCTGCGGACAACCAGGTAGGAAATTACAATCGCCAGGCTGATCCCTAGGATTGAGAGCCAGAGCATGGCCTTCAATGTCCGGGAAATCAAGCGGTTGTAGCCGGTCATCTGGTTCTTGACGACAATGTAGCCAGTCAATTTATGGCTCTTCCGGTTTCTGACCTTCCGGTAGACATAAAGAGAACTTTGCCCATCCTTGCCTTCCTTGGTCACACTCTTGCTCTCACTGGTGAACTTGACCAGTTTAGGGGCACTATCGCCGTTGTGGAAGACGATCTCATTGCGGAGATTATAGATCGCCACGGTCATGTCAGGGTTGGTCACGGTGCTTAAGACCGAGTCGCCAAAAACGCTGCTGTTGCTGTTGTCATTTTCTGACAGAGCCGGCCCGCCCGTTAAAATCCGTCTGGTGTTCGGTGATAGTTGCTGGACCACATTGGTGATCTCCAGTTCATCATCGATGCCGATTAGACGCTTGCGGAGTACGTTGACAACTTCGTTAGACATGTACTTTTGCTGGCTCAAGGCTTCCTGCTTGACCGTATTGTAGACGACAGCTGAGAAAACAAGAAAGGAAACCATGATCGTCATCGCGACGATGCTGACCCATCTCACGATCAGTGAAACGTGTCTGGTCCCCTTCTTGCCGCTGGCGGCCTTTTGCTTAGGCATTGTCTTCCTCGTCTCTGACCATATAGCCGGTTCCGCGCACCGTCTTGATGTAAGATGGCTGGCCAGGGATGTCGATCTTGTTGCGGAGGTAACGGACGTAAACTTCGACAACGTTAGTTTCGATGTTTGATTCCGGTCCCCAGATCTTGTTCAAGAGCTGGTCTCGGCCAACAACATTGTTCTTGTTTTCGATCAAGGTCATGAGCAGGTTGTATTCCCGCTTGGTCAAGTCAACGGTCTTGCCGTCGCCCCGGTGGACGATCCGGTTGGCGGTTTCGATGGTCAAGTCCTTGAACTTGACAACCTTTTGCCGCGGCAGCTTGTTCTTTGAGGCGTCCTTTTCGATCTTGACCCGGCGCAAGACAGCGCGCAAGCGGGCCAGGAGTTCTTCAATAGCAAATGGCTTGACGATGTAGTCGTCAGCCCCGTGGTCCAGGCCTGATACCCGGTCAATCACGGAGTCACGGGCCGTCATCATGATAATTGGCGTGGTCTTGCTCTGCCGTACCCGGCGGGCAATTTCCAAACCGTTCAAGTCTGGCAGCATCAAATCCAGCAAGATCGCGTCGAAGTCTTCGCTCAAAGCGCGGTCCAATGCCTTGCGGCCGTTGTTTTCCACTACGGTCTCATAACCTTCGTGCTGGAGTTCGAGTTCGACGAAACGAGCCAGGTTCTTTTCGTCTTCAACAATTAAAATTTTCGGCATGTTTTTATCCCCTCATATCGATTTAATTTGGGTCTGCTGAATCCAAGTATAATCTTAAAGTATATTTTAATAATTCTAGGATAGCCCAAAATTAGCTTTTTAACAAGCCCCATAGAAAAACAAGTCTTCTGCCAGATTAATTTTCTCTGGAAAAAGACTTGTTTACTGAAGATTGTTTTTATTTTTCTTCGTCTTCGGCTTTATCTTTGTCTTCTTCAGCCTGCATCTTGTCCAAAAGACCCCGCAGCTGGGCGAAGGCCGGGTTGACCTGGTCCTTCTTCTGGCCGGCGAAGTCTTGTTCAGACATGACTTTCCAGCCCTGCCCTTCTGGGTACAGGTCTTCTTCAGCTTCTTCCTTAGTCAAAACCGTGCTTGGAATATTCAAGAGCATGTTGTCTTCCACGGCCGTCTGCACGTCAATGCGGTCATCGTCCAGCGGAATGATCATCAAGCCCAGTTCCTTTTCTTCCTGGGTCGGTTCATGGTCGGAATAATTTTCCACGAAGCTGAATTTCTGCTTCAAAGGCACTGCTTCCAGGCTGCGGGAGGACGGAACCAGGAGGTCGGCTTCCACTTGGAAATTGCCAGTCACGAAGGGTTCGTCATAAAAGAGCTGCCCTTCCACGTGGGCGCTTTTCACCTCATAGACCAGGTCCTTAGCCCGCTGGTAAAAGCCGTCAGCAAAAGTCAAATCAGCTGAGATCTGGGTCAATGGCTCCCGGCTGTTCTTGATTTGGAAAAATGAAAGTTCTAGCATTAATTTACCTCGAGTGGCCGCCGGCCAAAGTTCTGGTCAGCGCCAACAATCTGTTCAAATAAGCGGTCAACCCTGACTTTCAGACCCAGGGTCCCTTCTTGGGCATTCTTGCGATCCACTTTGGAAACGATATCGATCTCAAAGTCTTTCCGCTGCTGCTTCAAATATTTCCGTCCCCGCTTGCTGTAAGCCAGAAGCATGGTGGAAACATGGTCATAGCTGTTTAAGACATCGGCTTCAGTCACGTTCAAAAGAGTATAAAGACTCAGTCTTCTTAACCTTGAATAGGTGTAGCGCTTGGACTTGACCCGGCGGAGGAAGTCAGCGAAATTTTCAGCCAGGTGGATTTCTGCCTTGAACTTGTATTCCAGGCCCTCGCTCATCTGGTAGATCTGCTGCAATTCCTTGATTGAGGCTGATTCCAGCCGGTATTTCAGAAACGGGAAGAGCAGTTCCCAGTTGGGCAGGACCTTTTCCTGGTCAAAAGCGGCAATTTCCCCTTTTGGCAGCCATTGCTCCAGTTCTGAGCGCTCGGCCCCGTTTAAAAGGAGGTTGCGGATAGCGCTGGCACTTTGGACAACTGCTTCTCTTTGCAGGATCTCATCATGGCCGGCTCCAACCCGGTTGACCGGGCTGAGCTTTAAAGGCGAGCCCAGATTGGCATTAGCCACGGCATAAGCCAGGCCCAAAATCGCGTTGGGCTCACTGACTTCATGGCCGATTTCCCGGGCCACCATCTGGTTGTACTGGGTGGAATAAGTCTGGCTGTAGTCGGCGAATTCCTGCCTTTGCCGGGGGATCTTGGAGATCCGGTCGCCGAAATATTCAAAATTCAAGTTGGCGTCTTCAACCCCAAAGACCAGGTTCTTGGCCCCCAGCCGGGTTAAGAGGTCGACCCCGCCGGTGGCGAACATGTCGGCAGCTTGGACAGCATAGGAAAAAGGCAGCTCAAAGACCAGGTCAGCCCCAGCCTCAATGGCGCTGCGGGCCCTGGACCACTTGTCCAGGATGGCCATTTCCCCTCTTTGCACGTAATTGCCGGACATTACCGCGATAATGGGGTCATCACCGGCGATCAAGCGGGCCTGGTTCATCAGGAATTCATGGCCGCTGTGGAAAGGGTTATATTCAGCTACAATCCCGACAACGCTCATGCCTAGTCTTCCTCGATTTCCACGCGCTTGCCGTCAGCCCAGAGCTTTTCCAGGTTGTAGAAAGCCCGGGCATCTTCTGAGAAGATGTTGACAACGACGTCGCCCAGGTCAACCAGGAGCCATTCTGAGTCATGATTGCCTTCAACCCGGTAGTCGTAGAAATTAGCTTCGTGACAGGCTTCTATGATGCTGTTGGCAATGGCGTGCAGCTGGCGGCTGGAAGTGGCGCTGGTGGCCACGAAGTAGTCAGCCAGGATGCTGATGCCGCGCATGTCGTAGGCTTCGGTGTCTTCCCCGTGCCGTTCGCTGATTGCGTTTAAAACTAAGTCAAGTAATTCTTCGCTCTTCAAATTTTTCTCCTAATGTTTAGTTACTCTTAATTTATCTGTTATTACTCAGCTGCCCAGACATTGTAAGCAGCCAGAGTTCTTGGGTAGATCTTGCTTCTCTTTTGGACTAAAAAGGCCAGAGTGTGAGCCAGTTCATAGCCAACCCCGGAAGCTAAATCCGCGTAGCTGGTCTTTCTGGCCTCTTCAACGCCGGCAAAAGTCCGGCCAGGCTCAATATAGTCAGCCACGAAGACGATCTGGTCCATGGTGGTCATTTCCACGTCCCCGGTGGTGTGCCGGTAGACAGCGGTTAAAATTTCCGGGTCGGTGATACCGAGGTCGCGCTTGATGAACCAGCTGCCCACGATCCCGTGCCAGATAGCCCGGTTCCAGTTCAAAAGATCCGGATCAAAGCCTTCTTCCTTGATGACCTTGATGTATTCTTCAACTGGAATCTGCTTGGCATAGTCGTGGACAAAACCAGCCAAAGCCGCCTTGTCTTCGTCATAGCCGTTCAATTTGGCCAGGGTCCGGGCCGTTTCACTGACGCGGACGCAGTGGGCAAAGCGGTTTTCATCCATCATGCTCTTCTCCTTGGCCACCAATTCACTGCTGGACAAGGGGGAATATGTTTCCTTAAAAACTGGATCAGTCACGGTAAAGCCCCTTTTCTTCAATATATTCGCGGACCTTGTCCGGGACCAGGTAACGGATTGAGATTCCGGTTGAGACAGCCCGGCGGATAGCAGTTGAGCTGAGTCGGATGTCCGGAGCATCAACCCAGATCATGGAATATTGCGGATCTTGCGGGTAGCCCGGCCGGCGGATACCGACCAAGGTAGCTAACTTGGCCAGTTCCTCAGCATTCTTCCACTTGTGTAAGCTGTTGACCTGGTCGCTACCCATGATCAAGTAGTAGGTGTTTTCCGGCGCCTTCTTGGTTAAATAGTGTATGGTATCAATCGTGTAAGAAACGCCGCCTCTGAAGAGTTCCAGCAGCTTAACCCTGAAACGGGGATTGTCCCGGGTAGCTAAATCCAGCATGGTGGCCCGGTCGCGGGCAGACACGTTTAAGGGAGCATCCTTATGCGGGGGAATATTGTCCGGAACGAACCAGACTTCATCCAGGTGCAGCTTGGTCATGGCCTGTTCAGCGGCGACCAAATGGGCCATGTGCACCGGGTTAAAGGTGCCGCCCATGATGCCGATCTGCTTGCCTTTCCGCTGGCTCTCAGCCGTCTGCACTTTTACTTGCGTTTCTTTACTGAAATCTACCAATGAATCCATGTTACAACCTCTAAATCAAAGCTCTTCTGGTTCCCAAGCCGATTCCGCCCGGCGTGTAGGCCTTGATCACGCAGCCTTCCGGCACAGTGATGAAGCCTACCCCGGCAAACAATACATCGCTGCGGTACTTGATGGAGTACTCCTGCCCTTTAAGCGGCGGCAGGTCGCTGTTTGGCCCTGGCGGAGACAGCAATTCGCCCACATGCTTTTGGTAAAATTCGTCAGCCTTCTCCGTCTTAGTCCGGTGGATGTACATGCCCCGGGCAGCATAGATAGTAAAGCTGGTTGACGGCCCCTTCAGGTAGTCAATTCTCCCCAGGCCGGCCAAGAAGATGGTATTGCCTGGCAAAAGCTGATAAGTGGCCGGCTTAAGCGGCTTCTTTGGAGAAGCCAGGTCCAGGTCCTTCGGGTCCAGCCGGCTGGCCAGCTGCTTGTCGGTCAAGATCCCTGGGGTGTCGACCAAGAAGTGGCCGTTGTCCAGGGGAATTTCAATCTGGTCCAAAGTGGTCCCAGGGAAGCGGGAAGTGGTGATCAAGTCCTGGACGTCCCCCATTTCATCGATAATGGCGTTGATCAAGGTCGACTTGCCGACATTGGTCGTGCCGACGAAGTAGACGTCCTGGTCCTGGCTGTGCTTGTTCAAGTAGTCGATCAAAGTGTCCAGTTTCTTCTTCTTGGCCGCGGAGATCAGGAAAATGTCCTTTGGGTAGAGGCCCATCCGGTTGGCTTCCTGCCGCATCCAGTCCTTGATCTTGCTTTCCTTGGAGTTCTTCGGGAAGAGGTCCAGCTTGTTGCCGACCAGGATAAAGTCATTTGTGCCGACAAAGCGCTTCAAAGAAGAAATCAGCGAGTTGGAGAAGTCAAACAGGTCCACCACGTTGACGATCAAGGCCTTCTTTTCCGCCATGGTGTTCAGAAGTGCTAAAAAGTCATCATTGTCCAGGGAGACCGGCATGATCTCGTTGTAGTGGCGCAAGCGGAAGCAGCGCTGGCAGTAGACTTCTTCTCTTTCACCATTTTCCACCTTGGCCAGGGCACTGGCCGGCAGGTAGCCTGGCAGCTGCTTGTCCTGGCTCTGCAGAGCCGCGCCGCAGCCGATGCAGCGAATTTCTTCACTCATGTCTGAGTTTTCCTCCTTAAATTTCATCTTCCTTAATTATATCTTAAAGCCGGCATTTAACAAAGAAAAAGCGCACCTAGCCAAGCTAGATGCGTTTCTTCCAAAGAATTAAGCCAAAGCCTTCTTAGCAGTTTCTGCTAAAGCGGCAAAAGTCTTTTCGTCGTTGTAGGCAATGTCAGCCAACATCTTACGGTTCATGTCAACACCAGCTAGCTTCAAGCCGTGCATCATCTTTGAGTATGACAAGCCGTTTTGACGAGCAGCTGCGTTGATCCGGGCGATCCACAGTCTTCTGAATTCGCTCTTGCGCTTCTTACGGTCGCGGAATGCGTACTTGTATGAAACGAACAATTGAGTGCTTGCAGCCTTAAATTGAACGTGCTTTGAGCCACGGTAACCCTTGGCAAGCTTCAAAACCTTCTTACGACGTGCGCGTGTAACGGTACCACCTTTAACTCTTGGCATCTGAAAATCCTCCTAATATCGTTAGTGTATTAAAAAATAGTAAATTAACGCATTTGGGAAAGCATTTGCTTGATGCGCTTCAAGTCGCTGCGTGAAACCATAGCGGCTTTTCTCAAATGGCGACGTTGCTTCTTGGTCTTACCGTGGAAACGGTGGCCAGTGAAGGCGTGGTGGCGCTTCAAACCGCCGTTACCAGTTCTCTTAAAACGCTTAGCTGAAGCGCGGTGGGTTTTCATCTTTGGCATGGTAAAATTCCTCCAATTAACTATTGTTTGTTTTTGTCTTTATCGCTCTTGGGACTGAGCATTAAAAACATTTGACGGCCTTCCATCTTTGGCCGGCTGGTTACAACAGCAATATCCGAAGTTTCTTCGGCCATCTTTTCCAGCACTTGTTGTCCTAATTCCTTGTGCGTGATTGCCCGGCCTCTGAAACGAATCGAAACACGAACTTTGGCGCCTTCTTTTTCTAAGAACTTGCGTGCATGCTTCAACTTGGTTTCGAAGTCATTGCCTTCAATCGCCGGACTCAAACGGATTTCCTTAACGCTGACCTGCTTGGAATTCTTGCGTGATTCCTTCAGCTTCTTCTGCTGTTCGAACCGGTACTTACCATAATCAAGAATCTTTGCTACAGGCGGCTTGGCGTTTGGTGAAATCAAAGTCAGATCGAGGCCAGCATCGCTCGCTTGGCGCAGAGCTTCATTTCTTGACACGACCCCAACTTGTTCACCTTCAGCGTTGATCAGCCGAACTTCACGAGCGCGGATGCTTTCGTTAAGGATCATGTTGTTTTGTTTCTGTGGTATAACTGTTCACCTCCATGTTAATTTCGAGGACAAGAAAAAGGCGGGCATATAGCACCCGCCTTTAAAATCAACAGAAAATATCGATTTGCCCAGAGGTTAAATAACTTAGGCGAGAAGCGGGGGCTTCTTCTTGTTCTCAACTTCTACTATTGTACTAGGTCTAAGATTGCTCGTCAAGGGCTAATTTCACTTTCAGCCCGATTGCTTAAAGCTTAATTTTGCCAATCGCAACAGGAACGTATTCGCAAGAACTTTCACAACAATCTGCTTCATATTTCCTTTTCCCTCTCCTTTTCTCATCTCTTTAATTCGCTTTCTTTTGAAATTATCATATATAGCCATACTGATCAAGGAAACTCTCCATTCGCTTTTATCAATCATTCATCTGAAATGTGTCCTTGTATACGCAGAAAATCTCGCCTCAGTGTTGAGACAGGATGCATCCCTCAATTAACAATATCGTAAACTTGTATATCATAAGCTTGTAAAGTATAATATTGTAAATTGTATTATTGCTAACGAGGTGTTTCAATGTTTATCGGCAGAAATCAAGAGCTTACAGCTTTGAATAAGCTCTATCAAGAAGACAGCTTTCAATTTGCGGTCATCTATGGCCGCCGCCGTATCGGGAAAACCAGCTTGATCAACCAATTTCTTAAAGGCAAGCGGGCCATCTATTTTACTGGTCTTGAAGAAAACGCCTTGGAAAACCTGGCCCGTTTTTCTGACGCGATTCACGCCTACGAAGATCCCAGCTATCTGGATGGACCTAATTTTGCTTCCTTTGAGCAGGCCTTCAAATACCTCGTCCATCTCTCTGAGAAAAATGACCGCTTAATCTTAGTCATCGATGAATTTCCTTACCTGGCGAAAGCCTATCCGCCAATCAGTTCAATGCTGCAATCCTACATCGACCATTATTTTAAACAGAACAAACTCTTTCTTATCCTCTGCGGCAGCTCCATGCCCTTCATGGAAAAGCAGGTCCTTGGCTACAAGAGCCCGCTTTATGGCCGCAGAACTGCCCAGTTTAAGCTGAAACCCTTCAGCCTGCATGATGCCGAAGAATTTTTCCCGCAATTAAATAAGGAAGAAGTTTTTGAACTCAATGCCATCACCGGCGGAATTCCCCTCTACCTCTCCCTGATGTCTCCCAAAAAATCCCTTAGGGAGAACATCAAGGACAATTTCTTAACCACCAGCGCCATGCTCTATGCCGAGCCGATGAGTCTGCTCAATCAAGAACTCCGCGAGCCGGCAAGCTACAGCTCCATCATCAGTGCCATCGCGGCCGGGGCCAGCCGGCAGTCAGAGATCTCAACTAAAACTGGTATTGCCAGCGGAGCCCTTAGCCCTTACCTGGACAATTTGATCGACCTGGGCATTGTCGAAAAACGGTTGCCGGTTACGGAACTTGATAAAGCCAGAAGCCGAAAGACCATCTATGCCATCAAAGATGGCATGTTCCGCTTCTGGTATACTTTCGTCGGCAAACGGGTCAGCTTTATCGAACGGGGGATTACCGAGCCAATTTTAGACTACATCATTAAGCAGCTCCCCCACTTCATGGGACCAGAATTTGAAAAACTCTCCCAAGAATACCTCTGGTCCAAACTGTTTGATCCAGACCTGGTGCCAGAGCCTTTTGTCAACTTAGGCAACTGGTGGGGGCCGGATCCCAAGGAAAAGAAGCAAGTCGAAATGGACATTGTCGGTTTCGATGACCAAAAGCTGAACGGCTACTTTGGCGAATGCAAGTGGAAAAACGAACCGATCTCCGCGGATATCCTCGAAACTCTCATCTACCGAAGCCGCCTCTTCCCCACTCCTAAGAAAAATTACTACCTGTTCTCCAAGACCGGCTTTACTGATAAATGCCAGCAGCTTGCCCAGCAAGTCGACTGCCACTTAATTACCTTCGACATGATGTAAGTCCAAAAATAGAATCCCATACGCAAAAACATCCCGCCTCAGAGTTGAGACAGGATGTTTTTTATGTCAGTTTTGCTTTCTTATAGTAATGCAACATACACAAGAATTATTGCTAATAAGACTGCAGCTACAACCGTAATGATATTGATCACCTTTTTTACTCTATCAGACACAGAATCACTTCTCAAGAGTTCATAGCTGCCTAAGCCTACGACAGATATCGGAATGATACTCCAGTAGTTGCTATTCCTATTGGTTAGCTGCTCAACTATATAAGCAAAAATAAACAGAATTAACGTTACCGAAAAAACTTTCATGAAAATCTGTTTCATAACACTACAGATTAATCCTTCCATTGTTAGGATAAGCATCGTGTTTATCCCAATACTTCGCTATTATCGTGCCTGGAGAATTGTAATTCAAAGCATAATCAATAAATGTACTGGTAACAGCACCTGCAGTACCAAACTTCTTAATAATTTTTTGGCGAATCAATCTACTCAACTTTTTCCGACCCACTTTTTTTACAGCAGCTTTTATCCCTGCTGCAGTTAATTTATCTATACCTCTACCCACAAGCAAACTGATTATTACATCAATTGCTGCGGCGGCCTGTGCAACGGTAATCCCTTTCCACGAGGATCTTGAGGAGATTGTTTTTTGACTCTTGAATACAGATACAGATGGGATTTGTCCATCATTTAATTCATCTCGAATCAGCTCCTTAATGTAGTTCCTTGAAAACTCAGGATGAGATTTTTGTAAAATATCAGCAAGTTGATCAATTCGTTCATCAGACCAATACTTTTTGTCAATCTCAATATTCTTGTTAGGTAAACTCATCGCTTCATTCAAGTTAGTTTTCGCACTTACGCTAGTAGCACTGAATGGCAAAAAAATTGTTACAGTAATCATGGCAACAAAAAAGACAGTTAGATATCGTTTACACTTTTTCATCATTCTTCCTCCGAATTTATTTCACCTTTTATGATACTACCAAGTCTTCAACCAGTAAATAATGATTTTATCGCTTTTAAGCAATAAAATCTCATTTTCTATTTCTTACGCAAAAAACATCCCGCCTCAGAGTTGAGACAGGATGTTTTTTTATGTCAGAAAGGGTTCAATTTTATAAGGAAGGAATTAGTCTTCGCGGGAGTAGTTTGCTACGTCCTTGCTCAGCTTGCCCATGAACTCAGCCAGGCTTTCGGAGTTTTGTTCTTCAGTCCCGTAAGGACGAACGTTAACCGTGCCGGCGTTCATTTCATCATCCCCAAGCACCAGAGTGTAAGGTACCTTTTGGGTTTGTGATTCACGGATCTTGTAGCCCAGCTTTTCATTTCTGAAGTCGATTTCTGCTCTGAAGCCCTTGGCCACCAGTTCGTCGCGAACCTTCTTAGCGTAGTCTGAGTGAGCGTCCAGGTTAACTGGAATGATTTCAGCTTGAACAGGAGCCAGCCAAGTTGGGAAGGCACCCTTGTAGATTTCAGTCAGGTAAGCGATAAAGCGTTCCATAGTACCGACAATCCCGCGGTGGATCATAACTGGACGGTGTTCTTCGCCGTCAGCGCCGATGTATGACAGCTCAAAGCGTTCTGGCAGCATGAAGTCCAGTTGGATGGTTGACATGGTTTCGTCGTTGCCCAAAGCAGTCTTGGTTTGGATGTCCAACTTTGGACCGTAGAAGGCAGCTTCACCTTCAGCTTCAACGTAGTCCAGGCCCATGTCGTCCATGGCTGCCTTCAGCATGCTTTGGCTTCTTTCCCACATTTCATCGTTGGCAAAGTACTTGTCAGTGTTCTTTGGATCCCGGTATGAAAGACGGAAGTAGTAGTCATTGATGTCGAAGTCGTGGTAAACGTCCATGATGATTTGCAAAGTTCTGGCAAATTCTTCTTGAACTTGGTCCAGAGCTACAAAAGTGTGACCGTCGTTCAGAGTCATTTCCCGGACACGTTGCAGACCTGACAAGGCACCAGACTTTTCGTAGCGGTGCATCATCCCCAGTTCAGCAATCCGGATTGGTAGTTCCCGGTAGGACCGGATGTGGTGCTTGTAGATTTGGATGTGGGATGGGCAGTTCATTGGCCGCAATTCCAGCATTTCGCCTTCACCCATGTCCATTGGCGGGAACATGTCTTCCCGGTAGTGAGCCCAGTGGCCGGAAGTCTTGTAGGCGTCCAGGTTCATCAAAACTGGCGTGTAAACGTGTTGGTAGCCGGCTGCGACTTCCTTGTCCACGATGTAGCGTTCAATGATCCGGCGGATAGTGGCACCCTTTGGCATCCAGTATGGCAAACCTGCCCCAGCCTTAGGGTCAACGAAGAAGAGATCCAGGTCCCGGCCGATAGTCCGGTGATCTCTTTCCTTGATTTCTGCCCGCCGCTTAAGGTCAGCTTCCAGGTCAGCTTCCTTGAAGAAGGCAGTCCCGAAGATTCTTTGCAGCATTGGGTTTGAGCTCTTGCCCTTCCAGTAGGCACCAGCTACTGACAAGAGCTTGAACTTCTTGATCTTGCCAGTGTTTGGCAAAAGCGCGCTAAAGCCAAAGTCAACGAAGTCGCCCAGCTTGTAAGCGTCAACCACGTCGCCTTCCTTGGCCAAAAGTTCGCTCTTGTATGGATCGTCCTTGAAGGCTTCAGCCAGTTCGCTCTTAGCTACTTGTACGTGTTCAATGGCTTCGCCGTTCTTGATAGCCTTTTGCAGGGCCTTTTCCAAGTCTGGCAATTCAGTGACCTTGATTTGGTCTTCCTTGTCAGTTTCGATGAAGAAGCCGTCTTCTGAAACTTCAGCCTGGCCCAGCTTGATTTCCGGATACTTGTCCTTAACCAAGGCTTCCAAAACGAAGGCAACAGTTGCCCGCAAGACGCTCAAACCTTCAGCGTCCTTGTTGGTCAAAATGGCAACTTCGTGGTCAGTGTCCAGCTGAAAGTCAAGGGGCTTGATTTCCCCGTCAACCTTGCCGGCAACGGCGTTCTTAGCCAGGGAAGTTGAGATGCTGGAAGCAAGGTCAGCAACGGAAACAGCTGCGTCAAATTCTTTCTTTGAGCCATCTGGCAGAATCAAAGCAAAACTCATTGGTTTAAATCCTCCAAAAACAAAAAAGACCCGAGCACATATACATGCTCGGGACGATTAATTATCGTGGTTCCACCCAAAATTCAGGCCTAAAGCGGCCTCTCTTATTGGACTGATAACGGCGTCCAACCTTGTCATTTATCTTTTGGGGTCATAGAAGGTGGGGTTCCTCCCAAATGGGGGCTTTCAGAACTGGGCCCCTCTCTCTGAAGCGGGAGGAATCATGTCTTCTATTTACTTTTCGATTATACCCCCTTGCCCAAATAAGACAAGGCTTTTTTGCCATTTTTTTCAAAAAATCTAAGGCAGGCGGCGGTTGTTCCCGTAAACCACCACTTCTTTAGCCAAATAGCGGACCCTTTGCATCAGCCGGGCCGCCTTGACCGGGTCATCCGCGTTCTTGGTCGCGCTAAAGTGGCTCTCCAGGGTCTTCATGTCAAAGTTGGAGCTGAAGAAGGTCGGCAGGTCATTGTCCATCCGGGCCTGGAGAATCACTCCTAAAACGTCGTCTCTTGACCAGGGACTGAGGGTCTCGGCCCCGATATCGTCCAGAATCAAGACATCGCAAGCCGCCAGGCGCTGGATTTCCGTCTGCAGGCTGTTGTCGCCGAAGTGGCTAGACAAACCAGCGATAAAGGTCGGCATGTGCAAAAAGATCACCCTGCCGCCCATTTCCGCTACCCGGTTGGCCAGGCCCGCTAAAATGTAGGTCTTCCCGACTCCGAAGTCCCCGCTTAAATAGAGGCCCTTGGCATGGGGATTGCTCTGGTAAGCCTGCAAAAAGGCCCCCACTTCAAACAAGGCCTGCTTGCGGTCATCGGCCATGTCCAAGTCAGCCAGCTTGACCCGGCGCAATTTCTCCGGCAGGTCAATCAACTCAATCCGCCGCTTGGCTGCTGCTTCTTTGTCCCGGCGCTGCTTGTCCTGGCTGGCCCGGTAACGAATCCCGATTAAAGGACCCTCCATGAAAAGCTGGGGCAAATAGCCGCTGATCACCTTGTCGTGGCTGTCTTTTTGCCGGCAGTATTCATAGAGGCTGGCAAAGCTGGCGTCCACGCTCTCCTTAGTCAGCTGGTCCTGGTGGGCCGTCAGAAAGGCCCGTACGTCGGGGTCAGCGAAGACCTGTCTTTTCATCTTTTCAAATGATTCCGCCGAAAAATCCTGCCCGTTCTTGGCTGCCGCGGCCTTAGCCGCGTCACTCAACATGTCGCCAATTGCTCTCATCTAATCACCCTTACTTGTCTTTCTTGTCCGGCCCCTGCAGCATCTTCCGCAGGTCTTCATCAGAAATATTGACCGGCTGGACAAACTGCTTCTTGTTCCAGTCAGTCCCCTGTTCAAGCCGCCGGTTGCCTGAATATGCCGGGTAGTTCTTCTTTTGCCCTGACTGGGCCTGTTTCTTCCCAGCGCGCAGGTGCTTGATGGCGGCTTCCGGGGTCGTGATTCCCTTTTGCAGCCAGTCGTTGGCAATCCGGTAGGCCAAATCCTGGGTCAAAACCGGCTGGTAGTTGAGGCAGGTGTAGACCAGAACATTGATCAAGTCCATTTCCAGGCCGACATTTTCCCGCAAATCATAAACGATCTGCCTCTCTCTGGCCGTGGTAAAGCCGCCCTTTTCCCGCTTCATGTCATCCAGGAAGTTGACCGGGGACTTGCTCTTCACCAGGTCTAAAAGCTGCTGGTCTTGCTGGTCCACGCTCGGCCGGTCCTGCTTTTCTTCCTGGCGCTTGATTACCTGCTTGCGGCGGTGGTTAGCCTTGTAGTTGTAGTTGAGGCTATTTCTGATCGCCGCGGCGTCCAGCTGGTAGCTGCCATGCAGGGTCGGCAGGGTTTCGTTGATAAACTCTTCCTCGCTTAAGCCGTAAAGTTCCATGATGGACCGGATTTCGTCTTTCTGCAGGTCGATCTCGCTTTCCGGGATCTGGTAAGTCGCGAAGCGGTCTTTCAAATACTGCCAGTCGATCTGCTTTAAGTTGACCTGGGCTTCTTCCGTCTTCTGGCCGGTATTTTCCTCAGCCGCCTTTTGGACGTCTTCAGAAGGATTGATGGCCTCATTTTCCGGCAGGCGGAAGACTTCAAAAAAGGAAGCGGAAACTTCTTCTAGGTTGTCCAACTGCCGCTCCTTGACCTGGGCCTGCTTGGCAAATTCCCGGGACAGCTGGCTGAAGCGGACCCCGCCAACTTTTTCTTTTAAGAGGCTGGCTAACAGCGAAGTGTTGAAAAACTCACTGGCCTCCGGCACGGCGTGCAGCTTAAAAGCCAGGATATCCCCCAAGCGGAGATTGTGGCTGACATAGGTCTTGAGTAGCCCCACAGCTTCCAGCTTATGCAGGGCCTGCCAGAGCTGGCGGAGGCTGCAGTCCAGGTCTTCTTGCAGGCTGTACAGGGCATTTGAAGCCGACAAAGACCGGTAAGGATCAAAGTCCTGGACCAGGGTCTGGTAGAGGGCAACCCCTAAAGCCCCGATCAAGGGCTGGTAGAGCTTGATTAAGACCTGCCCTTGCCCTAACTGGTCGGCCAGCTCATTTAAAACGACGTACCTAAGGCGGGGATTGGAATTTTCGTACATGGACTACTTGGCCTTGCTGTGCCGGTCCATCATGTCCTCCATGGTCTTCATGAAGCTGGACATGTCAGTGAACTGGCGGTAGATGGAGGCAAAGCGGATGTAGGCCACGTCGTCGATGTCGGCTAATTGGTCCATGACCAGTTCCCCGATTTCCTTGGAGTAGATTTCGCTGACTCCTTTAGCCCGGATCCGGTTTTCAACATTGTCGACCAGCTTGTTGAGCTGCTCGCTGGTTACCGGCCGCTTCTGGCAGGCAGCCGCCACCCCGTTCAGGATCTTTTCCCGGCTGAAGGCCTCTCTGGTGCCGTCGTTCTTGATCACCAAAAGGGGTGACTGTTCCACCCGTTCAAAAGTCGTAAAGCGGTAGCCGCAGTTTTCGCATTCCCGCCGCCGGCGGATGGTCCGCCCTTCGTCAGTTGGCCGGGAGTCAATAACCCGGGAGGCGTTTTGATGGCAATTTGGACAAAGCATTGTAAAGCTCCTTTCACGCGATAGTTTTCAGCAGATTGCTCAATTTGTCTCTTAATTCTTCTATTGTACCAGTATTTTCAAGGACATAGCTAGCCAACAGGCGTTTTTCCCCTAAAGGCAGCTGGGCCTGCATCCGCCTTTTAGCTTCTGCTTGGCTTAAAGAGTCCCGCTTCATCAAGCGGTCCAGTTCCACTTCTTCCGGGGCCACGATCAAGAGGACAGCGTCAAAGTAGTCCTGCCAGCCAGCCTCAAAGAGCAGGGGAACATCGATGACGCAAACAGAAGCCTGGCTGTCTTTCATCTGCTTTTGAACTTCTTTTAAGACCTCGCCTTGGGTAATTTCAGACAATTTGGCCAAAGCCTTAGGATTGGCAAAGACATACTGGCCCAGCTTCTTGCGGTTAAGACTCTTATCTTCATTGAAGAAGTCCGGCCCGAATTCTTCTAAGATCCTTTGCCAGGAGACCTGGCCCACTTTGGCCTGCTGGTGGGCAATCAAGTCGCTGTCAATGACCTGGCAACCCAGATCTTTTAATATCCGGCTGGCGGTCGACTTGCCCGTGGCAATCCCGCCGGTCAGTCCCAGATAAAAAGTCATCTAATCTTTTACCTCTTTTGACAATGCAGGCAGTAGGTGGTTCCCCGCCCGCTGATCTTGATCTTGACAAAGTCTTCTCCGCAGCGGGGGCATGGCTGCCCCTCCTTGCCATAGACCTTGAGCTTTTCCTGGTAGTGGCCGGCCCCCCCTTCCGCGTTTAAGAAGCTGTGGACGGTGGTGCCGCCGTATTTAGTAGCTTCTTCTATGGTTTCATTGATGGCTGAATGGAGCTGTTTGACCTGGTCCTTGGTTAATTCGTTAGCTGGCGTTAAGGGGTTAATCCGGCTTTGCCAGAGGACTTCATCAACATAGATGTTGCCCAGGCCGGCCACCAGGGTCTGACTCATGAGCAGGCTCTTGATGTTCATGCTCCTCTTCTTCAAGCCTTTTTCAAAGTAGTCCAATCTAAATTCTGGACTATTTGCTTCAACGCCCAAATTCTTCAAGCCGGTGACCTGAAATTCAGTTCCAGTTTCCACCAATTGCAGGCGGCCGAATTTGCGGACATCCGCGTAGCGGAGGCTGCTTCCATCGGTAAAAGCAAACTGCAGGTGCTCATGCTTGTCTACCGGTGCATCCCAGGTCGTTAGATGGTACTTGCCTTCCATCCGCAAGTGGGAAACGACCGTCAAGTCGCCTAAACGGAAGAGCAGGAATTTGGCATAGCGGTCAACGGCGGTAAAGGTCTTGCCCTTTAACTCCCTTTTAAAAGTTTCCGGGTCGCCGGTGATGACCTTGTCGTACCAAATATCGACATGGTCGATCGTTTTGCCCACGACCAAGGGCCGCAGGGTCCGGCGGACCGTTTCAACTTCTGGCATTTCTGGCATTTTCTACCTCCTACTTTGCTTCATACCAGTCATGGCCCCAGCTGGCGTCAGCGACTAAAGGCACGTCCAACTTAACAGCTGCCTGCATGACTGACGGGACAATCTTCTGGATCGTTTCCAGTTCATCAGCTGGTACGTCAAAGATCAATTCGTCGTGGACCTGGACGACCATCTTGGTCTTTAATCCCAGTTCATCCAGCTTCTTTTGCATGTTGATCATGGCAATCTTCATAATGTCCGCGGCTGACCCTTGGATTGGGGAGTTGATCGCCGTTCTTTCCGCGAAAGAGCGGACATTAAAGTTCTTAGCGTGGATATCTGGCAGGTAGCGGCGGCGGTGCATGATGGTTTCCGCGTAGCCCTTTTCTCTGGCGTCTTTAACAGCCCAGTCCATGTAGGCCTGAATGCCTGGGTATTGGTCAAAGTATTCGTTGATGAATTCCTTGGCCTGCTTGCGGGAGATGTCCAGGTTCTTGGAGAGGCCGTAGTCAGAGATCCCGTAGACGATCCCAAAGTTGACCGCCTTGGCCCGCCGTCTTTGCAAAGACGTTACTTCGTCAACGCTGCTTAAATGGAAGATCTTCATGGCCGTGTGGGCGTGGATGTCGTAGCCGGTCTTGAAGGCTTCCTGCATGTTCGGGTCGGCTGAGACATGGGCCAGGACCCGGAGCTCGATTTGGGAGTAGTCGCAGGAGTAGATATAGCCATCCGGACTTGATGGGACAAAAGCCTTTCTGATCTGCTTACCTTCTTCCGTTCTGGTTGGGATGTTCTGCAAGTTAGGGTCAACTGAAGACAGGCGGCCAGTTGCCGTCAAAGTCTGCAGGTAGCGGGTGTGGATGCGGCCGTCACGCTCATCGATGACGTCTAAGAGGCCCTTAACGTAGGTTGATTGGATCTTGGAAATCTGCCGGTATTCCAGGATGTCACTGACAACCGGGCTTTGTTCTTTCAATTGGTTCAAGACTTCAACTGAAGTGGAGTAACCGGTCTTGGTCTTCTTGATGACTGGCAAGCCCAGCTTTTCAAAGAGGATGACCCCCAGCTGCTTTGGTGAATTCAGGTTGAATTCTTCCCCGGCTTCCTTGTAGATCTTCTCTTCCAGTTCCTTTAAACGGACAGCAAAGTCGTTTTCTAGTTCCTTCAAGCGGGAAGGCTGGACCTTGATCCCGTTCATCTCCATCTTGGCCAGGACTCTGGCCGTTGGCAGTTCGATTGAATCGTAGAGGTCATCTTGCTCATGGTCTTTTAACTGCTTTAAAAGACTGTCCTTCAAAGCCGCGATCGCCGCGGTCTTGCCAGCCAGGTGGTTGAAGAAGACCGCGTCATCTGCCGGAATCTTGGCATTCTTCCCCTTCCCGTAGACTTCCAGGTCGGTCTTTAAGTCATAGTAGTCGTAGCCTTGGACCAGTTCACCCAGGTCGTTGGAATTTTTCTCATTGTCAACCAGGTAAGAAGCCAAGAGCAGGTCAAAGGACAAGCCTTCAGCCTTAATCCCCAGCCGATAGAGGCCGTAAGTGGTCCGTTTTAAGTCAAAGACGTTCTTTTGAACGGCAGAATCTTCCAACATTTCTTTTAAGGGACTTTCCTGCAAGAGGAAGACATCCCGGCTGACGAAAGTTTCCCCGCCGATTTTCAAGGCAAAGCCGGCGAAGTCAGCCAGGTGGTAGTTGTCGCCAAACATGGCCAGGTAGAAAGTAACTTCAGCAGCCTTTGGCAGCTGGTCTAAGTTATCAGCACTGAGCACGACATAGTCCTGCTTTTTAACTTCCGTCTTGTTTTCAGTCAACTCCCCTTTTTGGGCCAAGTCGGCCAGAAAGCGGCGGAAGTTCATCTTTTCGTAGAAGCGACGGAGGTCGTCGACATTGCTGCCCTCATAGCTAAGGTCATCAAGGGTCACTTCCACCGGGCTGTCGCACTTGATGGTGGCCAGCTTTTTACCCAAAAGGGCATTGTCCTTGCCGGCGATCAGGTTTTCCTTCAGCTTGGACTTCTTCATTTCATCAACGTGGTAATACAAGTTCTCCACGCTGCCGTATTCCTGGATCAATTTAGAGGCAGTCTTGGGGCCGACCTTGGCCACGCCTGGGTAGTTGTCGGACGGGTCACCCATCAAAGCCTTCATGTCGATGAACTCAGTCGGGGTCACCCCGTTGACTTCTTTCATGTGGTCTGGAGTGAAGGCTTCCAGTTTAGTTACCCCGGACTTGGTCACGTAGACGGTGACATGGTCACTGGCCAATTGGGTCAAGTCCTTGTCCCCGGAAACAACGGCCACTTCATAGCCGGCTTCGGCTCCTTTTTTAGCCATGGTGCCGATGATGTCGTCGGCTTCATAGTTGGCCAGTTCGTAGCTCTTGATTCCCATGTCCTTGAGCATTTCCCGCAGGTAAGGGAGCTGTTCGGAAAGTTCTGCCGGAGTCTTGTCCCGGCCGCCCTTGTAGTCTTTGTACATGGCGGTTCTGAAGGTGGTCTTGCCAGCGTCAAAGGCCACCAGGATATGGCTTGGGTCTTCCTGCTTCAAGACCACGTCCAGCATGTTCTTAAAGGCATAGAGGGCGTTGGTGTGGAGACCTTCTGGATTCTTAAACTTGTCCAGCTGCTGGTACATGGCGAAAAAAGCCCGGAAGGCCACGGAATTGCCATCGATTAAAAGTAACTTCTTGTTCATTGTCATTCCTTGCAAAATAAAAACTGTCAAAATACCTATATGTATTTTAACAGTTTTTGCTAGTTCGTTAATTATTTAGATCCACCTTCTGTTTTCACGTTCTTGTAGAACATGAGCCAGAGGAAGACTACGATTACGGCCAGGAAAATAAAGGCGTGCTGGGTGCCGATTGCTGTCGGCCGCGGGCCCTTTGACCCGTATTGGGCTTGGCTCAGGCCCACAATAGCTGAAGTCAGAGAAGTCCAAATGGCGCCGGCAAATTGCTGAATGGTATTTAAGAAGGCATTGCCTTGCGCGGAGAATTCCGGCTTAAGGCTGGCCAAAGCATTGGTCATAATGGCGCCAATGCTCATCCCCATCCCGGTCATGTAGATGATATAGACCAGTGAAATTACAAGATCGGACATCTGCTGGGACAAGCAGACAAAGGCGATCAACTCGGCAGCCATCAGACTGGCCCCGGTAATGATTGGGAAGCGGGCCCCTTTGTCGTCATAGAGGCGGCCTCCAACCACGCTCATCAAGGCCCCGACAATGCCAGCCGGCATGGTAACCAGACCAGCAACAGTAGCCGTAGACTGGTTGACCAGCTGTAGTTAGGCAACAAGAAGGCGTTGCCCAAGGAGCAAAGCTGGATCATGAGAAAGCCCAGCAAGTGCACGCTGAAGGACTTGTTCTTGAGAATTTCAAAGTGCAGGATCGGTTGAGCCAGCTTTTTGGACCGGCCCAGCAAGAAACCAAAAGAGCAGAGGCCGATAAAGATTGGAAAGAGATTGGTCAGCAATTTACCTGATGAAAGGTTGCTGAAGTCATAGATAACGCCGGCAAAGAGAACAGCGATAAAGACAATGCTCAAGAAGTCCGGCTTGATCTTGACGATATTGGACTTCTGCTGGATGTCATAAAGACCCAGGAAGAGAGACAAAATGATCAAAGGCATCAAGAAAAAGAAGACGTAGCGCCAGCCCAGGTTGTTAATGACAAGGCCCCCGAAGGTCGGCCCCAAGGCAGGCGCAACACCCGTGATCAAATTGCCAAAGCCCATCATGAGGCCGATTTTGTCAGCTGGTACCTGCTCTAAAATGATGTTGAACATGAGTGGCAAGGCAATCCCGGTACCCAGGCCTTGGATGGCCCGGCCCAGGAGCAGAATCATCACGAAATTTGGCGCTAAGGCGTCCAGCAAGAGGCGGCAAAGAAGAGCAAATTGGCGGTAACAAAGAGCTGCTTAGTCTTAAAAGAGCTTTTCAAAACAGCGGAAAGCGGCACGATAACGGAAATGACCAGGAGGTAGATCGAAGTCATCCACTGAACAGTGTTAGTGGCCAGGACAAACTGTTTCATCAAGATTGGGAAGGTAACATTCATCGCCGTTTCCACCAGGACGCCGCTGAAGGACATCAAGCCCGTGGCTAAGATGGCCGCGTAGACTTTTTTAGAAATTTTCGAACCGCCAATTGCAAGAATAAATTGAACACTTACCATCACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGCTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCTTTACGACTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCACTTGACCTTCTCTCACTGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGAAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCACATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGATGTGGTTTAGTGTTAGAATATGTATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGTTTTTTCTTACTGGATCGGAACAGTGTTCAGTTTGATTTTACAATCGGCGAACAGAACATATTTTGTCAATAATTCTTTCTGTTCATCTTCGATTAGTTCAACTGGTAAAGCTACATTAAATTCTTTCGCGTACCGTGAATTTGCTCGTCGATCTTTTCTTTCGACCTCATTCCATAATTGTTCTCTATCACTCGCCCATGCTAGCGCATTCTTAGGAGTTAAAATAAAACTCTCTGGCATGACAGATCGGGCATAGAAATAGTGGCGACCTTCCTTATCATCAAATAATTTTTCACCACTTCGATAAGCGGCACTGGCAATGGCGCTGCGTCCTTTTTCTTCAACTGACTTCTGCACTCTGGCCTAGGATTCCGGCTTATTTTGGTACATGTGGTAAGAACCGCCGGCATATGGGTTGTCCAGATGGGCAAACTGGGTGGTCTGGCTGGTCGGGTTCAGCTTGATTTCCATGCCCAGGCTCTCGATTTCTTCCAGAGTCGGCTTGGCATTTTCCACGATCCGCCGGGTCAGTGGCCCATTGTTCAAATAGTGGTTGTACTCATTTAATTGCCGGGTGGCTTCTTCCGTTGACAGCTGCAAACCAGCTTCCCGCTGCTCCTTGGTGTCAATCGCGAAAAAGCCGCTGGAGATCTTGGTGTTGCCGCCTGGCTGAGCCTGCTTTTCAATTACCAAAGTCTTTAAGCCCTGGCTGCCCCCCGCGTCAGCTGCCGCCATCCCCGTGCCGCCGCAGCCAGCTACCGCCAAATCAACCGTGTATTCTTTGCTCATGCTTGTTTCCTACCTTTCACAATCTTGCTTTTCTTACGACAACTTCTCCCTATGCTAGAAAAAGCAGCCATACATTTCATATTGACCTCCTGGAATGCTTGACTGATGCCGTATTGTCAGCCAATAAGCGCCTCTTCTCTCTGAAAAAATTCGACATCATCGTCGCTACTGGCTTCAAGGAAGTCCACCTGTCTCCGTTAGCTGAAAATAGCAAAGCTGCTGCTTCTGCCTCTTTCCGCCTCCTCCAGATAGATTTGGCCTACCCGGATTGGCCTACCCGGACCCCCTTAACCAGTACCTGGTCGCCGACAACGCCTTAATCCATGACTTAATGAATGACAAGTCCAGCAAATATGCCTATATCGTCTTTCAAACTCTGGCTGACGGGATGACCAATGGCTATATCAACTTGCTTCATATTCTTGCAAAAAGAGACAAAGACGAATACGACGATTTTCAAGTCCAGCGCCTGGCTGGCCTGCTTTTGACTGAACTGCTCCACCAACACCGGCAGAAGATCTCCAAGAGCAGGTCAAATTTTCCAAGAAAAAACGTGCGCCACGCTAACCGTGACGCACAATCTGGCGCTATTATGACTTACCTGACCCAGAAAAATGGCCAGGTTTCTTTAAAAGAAGCGGCTGAGTACTTCGGCTACCAGGCAAATTACTTTTCCCGCCTCTGCCGCAAGCTCTTTGCCACGGACTTCGTTCACCTGCGCCGCAATATCCGGATCAACCTGGCTGAAGACCAGCTACTTTTAACCAACAAGAAGCTGGAAGAAATCGCCGATGAACTCGGCTATCAAGACCTGTCCAGCTTTTCCAAGGCCTTTGCCGAATCCACCGGCTTTTCGCCAGGCAAATACCGGAAAAAATATGGCATAAAAACAAGCCGCTGACCTAGTCAACGGCTTGTCTGCTGCTTATCTTACTTTCCCAGCATTTCTTCAAATGCTACTTCATATTTAGGAATATCGCCGGCACCCATGAAGACAATGCAGTCACCCTTGTAAGCCAAAAGATCCTTCAGATTGTCGAAGTCAATGACTTCAGCGCCTGGAATCTGGCTGGCGATGTCTTCACTCTTGATGTCGCCCGCTGCTTCTCTGGCTGACCCGTAAATTGGCGTCAAGAAGGCCTTGTCGACCCCCTTCAGAATTTCCACGTATTCTTCTTCGAATTCCTTGGTTCTGGAGTAAGTGTGCGGCTGGAAGATGGTAACCAGCTTCCGGTCCGGGAACTTCTGCCGGGCAGCTTGAATCGTAGCCCGCAGTTCAGTTGGGTGGTGGGCGTAGTCATCGATGACCACCGTGTCACCGAAGTCCTTTTCGCTGAAGCGGCGCTTGGCCCCGGTGTACTTAACCAGACCCTTTCTGACTACATCAAGGTCAATGCCTTCAGTAAAGGCAATAGCAATAACCGCCGTAGCGTTCATCACATTGTGGTCACCGAAAAGGTGGATAGTAAATTCGCCTAAGTCTTCCCCATTAGCCCGGACATGGAACTTGGCCCCTTCAGTGGTCTTAACCACGTCAAAGGCCTGGAAGTCATCGCTGTCTTTCAAGCCGTAAGTGTACTTCTTGGCCGTCTTTGGATGGATCTTCTGCAGGCGTTCGTCATCGCCCCAGACAAAAAGCCCCTTCTTAGTCTGGTCAGCCGCCGTCTGGAAGGCTGAGGCATAGTCGTCTCTGTCCTTGAAGTAGTCAGGGTGGTCAAAGTCGACATTGGTCATGATCTGGTAATCCGGGTGGTAGGCCAGGAAGTGCCGCCGGTATTCGTCAGCTTCGTAGACGAAGAAGCGGGAGTCCTTGACCCCCTTCCCCATCCCGTCACCGATCAGGAAAGAAGTCGGAGCGGCTTCGCCCAAAACCGTTGCCAAAAGGCCGGTGGTTGAAGTCTTGCCGTGGGAACCCGCAACCCCGATACTGGTGTACTGCTGGACGATTTCTTCAACCGTGTCCGGGTAGCTTTGCCACTTGACGCCCTTTTCCTCGCAGGCGGCAACTTCGATGTTGTCGCTCTTAAAAGCGTTACCCTTGACGATCACCTGGCCGCTTTCCTTGATGTTGTCCTTGGAGAAGGAAGCAACTTCAATTCCAGCGGCTTCCAGCGGGTCCTGGGTGAAGGTGTACTTGTCGATGTCGCTACCGGCAACCTTGTAGCCCAGGTCGTGCAAAATCAAGGCCAAGGACGCCATCCCGGTCCCCTTGATCCCAATAAACCAAATTTGTTTAGTCTTGTCTAACATTTTTTCGCTCCATTTGTTTCAAACGTTCGACCCTTATTTTATCATTCTTGGGCCAAGAAAAAAGAGCTCCGGGCCATAATCAGCCGAAAGCTCTTTATTTTTTGCCGTTTTTTTAACAATTACAGGGTGATAGCGCCGCTGGCCAGCAGTTCGTCACACTTGGTCGGTTCAAATTCGTCACCGATCTTGAAGCTGTCCGGAACAACCATGATCCCCCGCTTTTGCGGAGCATGAGCCAAGCCCAGTTCTCTGGCTGAGCAGATCATCCCGTCTGATTCAACCCCGCGCAAGGCGCCTGGCCAAATCTGGGCCCCAGTTGGCATCAAAGTACCAGGCAGAGCCACAACGACCTTTTGCCCTTGGGCGATGTTTGGTGCCCCGCAGACGATTTGGTGGTCCTGACCATCGCCAACGTCAATTTGCGTTACGTGTAAGTGGTCAGAGTCCGGGTGTGCAGCGCATTCCTTAACGTAGCCGTAAACCAAAGTTGGCTTGGCCACAGTCAGCTTGTCGGAAAAACCAACGCTGGCCAGTTTTTCGTTCAAGGCTGCGACTTGGTCTTCGTCCAGCTTGACTTCGCCGTTTGGCAGCTTGTCGTAGTCCAGCACCTGGTCAACGTTAAAGAAGTTGAAGCCGGTCAATTCGCCCTTGCCGTCCGTAACCCGGGTTACGTCGGCCTTTTCTTCGAAATTGCTTTCGCCATCGCCTTGCGCCAAGATGACGATCAAAGTGTTGGGATAGCTTACTTTGTTAATACTAGTGATCATTTGATCTCAAGTCCCCTCTTATCTAGTCAAGCGACCGCAAAAATGCTTCTACTTCCTGCTTGGTCTTGCGGTCTCCATTAACTAGTCTACCAATTTCTTGCCCATCTTGGTAGACAACAAATGAAGGAATTCCCATAATGTTCATTTCCTTGCACAAGTCGATAGAGCCGTCCCGGTCGATCTTGATGAACTTGCTGTCTGCGAAGTCAGCTTCGATTGCTGGCATGGCAGGTTCCAAAAAGCGGCAGTCTGAGCACCAGTCAGCAGAAAATTCGACAACCGTCCGCCCGCTCTTGACTAAGTCCGCCAGCTTTGCCCGGTCAACTACTTTATATTCTTCCATGTTTGCCTCCTGCTTACTTTTAATAAGAGAAATATTTACTAGCTATTTTAACCGATTTTCCCGGCAAAGGGAAATTTTTTACTTGGCCAGAAAGCCCGCGTGCAGGCAGTAGATCGGCTGCCCCTTGCTGGCAAACTTGTGCTCATACTCAGTTTCCACGTTCTTTTCCACGATTTCTTCGCTTTCGTGGTGGAGGTCAACTGACATGAAGTCAAAGTGCATCCCGTAATTGTTCATGCTCTTGACACTGTACGCAAACAGGCCGGAGTTGTCGGTCTTGAATTCGATCAACCCGTCGCCGGTCAAGACTGCCTGGTACTTGGCTAAAAAGTCCTTGTAGGTCAAGCGGCGCTTTTCATGCCGGCTCTTTGGCCAGGGATCGCTGAAGTTGAGGTAGATCTTGCTGGTGGAGTTTTCCCCGAAATAGGCTACCAGGTTGGCCGCGTCGGCGCAGAGGATCTGCAGGTTGTCTAGCCCCTCGTCCAGCTTCTTTTTCAAGATGATGCCGGCTGCCGTCTTCTGGATTTCCATGGCCACGAAGTTGCGGTCAGGGTGCTGCTTAGCCAAAGTAGTAATAAACTGCCCCTTGCCTGAGCCTACTTCGATTTCAATTGGCTTGTCGTTGCCAAAGCGGGCTTCCCAGTCGATCTTTTCCGCTGGATCCGGCCGGTCCAAGGCGCTTTCCGGGTGCTCTTCTACCAGTTCGTTTGCCCAAGGCTTGTTCTTTAAACGCATGTCTTTCTCTCTGTTCTTTCTAATTCTTAGTTTTATCTATATCTTATTTTACCGTTTGCTTTTTTACCCTTTTGCCCTATTTTTTCCGCTTCTTGTAACGGGATTTTTTCGCCAGCTGCTGGGTCTTGTAAGGCAGGTAGCCTTTGGCCAAAAGGCCGCACCAGACCAAGAACAAGAGGCTCCAGGCAAACTGGCCCGGCATAATGGCCAGCCAGAAAATTATAATCAGCCCCGTCTGCAAAAGCAAGGCCCAGGCCAAGACCCGGCTGACTTCCTGCCCCCGCTCTTTTTGGGCAATCGGGTAGACCCGGTACATGATGTTCTGGTCATATTTTTGCCCTAAAGGCAGGAGCTGCCAGACGGTTAAGTACATGACCAAGGCGGACAGGAGCAGAGACCAAACCGGATCCTGGATCATGGCTGTTAACAAAACGGCAAAGGCCGTCATCCGGGCCAAAAGGTTCAAGTATTCCGGGTTCCGCAAAAGAGTCCGCCGGTACAAGAAGCTGTTTGGGCTTTCCTTGCCAAAAGGCGGCAATAAAAAGTCCAGGTACTTCCGCCGCTTGATATTGACCTGTCTTTCCTTGACGTCAGTAAACAGGGCAAAGCCGGCGTAAACCGTCTCTTTCCGCCTTGCTTCATAGTCAATGGCGTACTGCCAGTCAAAGGCGGAATTTTTCCAGGCCCGTAAGGCCAAAACTGCGATAACGGCAAGAGCCAAAAGCAGGTACAAGGCATTTGGCAAGAAATACAAACTCGCCAAAAGCAGGGCTAATAGGACTAGCCTGATCAGCCAGGTCACCTGCTTGACCCTGTGGTCAAAAGTCAGGCTGCGGCTGACCGCCCCTTGCTCAAAGACCTTGGCGAAAAAGAGGGCCAAGACCAAGCTAAAGTAGTTGAGATTGGACAGGCCCATTTTTAAACTGGCGAAGGGATACATGATCCCGCCAGCTAAGGCCAAAAGCAGGGCCGGCAGAACTAAGCTGTAGCGGCGCATGGGAGCCAGGTAATCATCCAGCCGGTCGTCAGTGGCCAGCAGGAATTGCCGGTCAGCCGTCTGCAATAGGGTCACCAGTTTGCCCGGCAAGTAGGCCAGCCAAAGCAAGGCGGATAATACCAGGGGATAGTACCAGGCCTTTACCGGCAGGACCTTCATCACCTGGGCATACCAGAACATGACTGCCCCAAAGATGAAGATCAGAGCCAGGACAAAGAAATCGTTGAAAACCAGGGCCAAATACTTGGCTGACTGCTGGAAGTTACCCTGCAGTCTCTTCTTTGCCAACTCACGCATTTTTCTGCTCCTGGTACAAGAGCTGATAGAGCTTGTCAAAAGAGTCGCTGGCCTCTAAGCCATAGTGGTCCCTGATTTCATCCAGGCTGCCGGTGAACTCGATCGTGCCCTGGTTTAAGATCGCGTAGGTCTTGATGGCCTTCTGGGCATCGGCTAATACGTGGGTGGTCATCAGAATTTCCTTGCCAGACTCTTGCGCTTCTTTGATGAGGCCGATGAAGTTGGCGACAGCCAGAGGGTCCAGGCCGGTAAATGGCTCATCGATCACTAAAAGCTGGGCGTCAGTCAAGAAGGCGGCCACGATCATCACCTTCTGCTGCATCCCTTTTGAAAAGTGCACCGGCAGCCAGTCCAATTTGTCTGCCAGGCGGAACATGGTCAAAAGCTCTTTAGCCTTTTCCCAGGCTTTATCCGTATCCAGCTGGTAAGCCAGGATGGTAAGTTCCAGGTGCTCTTTCAAGGTCAGTTCCGGGTAGATGACTGGCGTTTCCGGGATGTAGGCCACCAGCTTTTTAAATTCAGCTGGCTTCTCAGCCAGGTTGATCCCGTTTAAAGTAATTTTGCCGGCTTGCGGGCGCAAAAGGCCCAGCAGGTGCTTGATGGTGGTCGACTTGCCGGCCCCGTTCAAGCCAATCAAGCCGATCGCCTCACCGGAAGCGATGGTCAGATTGACGTCTTTGATTACCGGGATGCTGCTGTAGCCCCCGGTCAAATGCGATATTTCTAGAGTCATATTTTCCCTATCTTTCTTCATGTTTTTATCTGCCTCTTATGATAGCATGGAGACATAGAGAAACTGAAAAAATAACTCATTAAAATTGATCAGAGGTAACACAATGACTAAGGCTGAATTAATTGACGACTGTTTATTCTGTAAGATTATCCGCGGCGAAATTCCCAGCTACACCGTTTTTGAAAATGACGACGTGAAGGCCTTTTTGGACATTTCTCAGGTCAACGAAGGCCACGTATTGATGGTGCCAAAGAAGCACTTGACCAACTTCTTTGACTACAGCGCTGAAGATGCCAGCCGCTTTATGCAATGCGTGCCGGAAATCGCCAAGGCCATCAAGGCTTCTGACCCGCGGATCCAGGCGATGAACATCACCAGCAACAACGGTGAAATTGCCGGCCAGGTGGTCATGCACTCTCATATCCACTTTATCCCCCGCTGGGAAGGCGACGGCATCAAGTTCTTCACCAGAAACAATGCCGACCAGTACGACGAAAAGAAGTACCAGGAAGTCTGCGACCGGATCAAGGCCCAGTTTTAACTGAGGGGGAAGAAAAATGCGGAATTTCAAGCACTTTGGCCTGGGCTTTTTGCTCGGGGCAGCAGCAGGAGCGGTCTTTGCATTTTTGCCAAATGAAAACGGCAAGAGCACCAGGGAATATCTCAAAGAAGACGCGAAAGACTTCAAGGAAAGCCACAAGGAACTGCAAGACGGCCTCTCCCGGGCCCAGGAAGCCGGCAGCCGCTTAGCCAGTGAACTGCCAGCAGCTGAGCAGATGGTCAGCGACCTCAACACCGACGTTGAACGCTTCAAGCAGGAAGCCGACGAGGAAATCGCCCGCCTGCAGGCCAAGATTGACAGACTAAGCAGCGAGCTCAACCAGGACCTGAACGAGAGCGAAAATTAATCAGAACATAAAAAAGTGTTGAATGATTACTCTTACCATGAAGTAATTACTCAACACTTTTTTCTTGCTCTAAATTTTTCTATTGTTTATTTGACTGCCACTGGCCAACCAGGCTGGTAACGTCACTTGCGCCCATGCCAGCCAAAACTGCTGGCAGACCGTCAATCACGTGTTTGATGGCCAATTTGTCATAGAAGGACATGCTGCCGATCTGGACAGCGCTGGCCCCAGCCAAGATGAATTCAGCCGCGTCTTCCGGGCTGTTGATCCCGCCGACCCCGATGATCGGCAGACTAGTTGCCTGCTTGACCTGGGCCACCATGCGGACAGCCACTGGCTTAACTGCTTGACCGTACAAGCCGCCAAAGTCATTGCCTAAAACCGGCCGCCGGGTCTTTAAATCAAGGTGCAGAACCAGCAAGGTGTTAATCAAGGTCAAGCCATCAGCCCCGCCTCCTTCAGCGGCCTGGGCAATTTCCACGATGCTAGTAACGTTTGGCGTCAATTTCACGTATACCGGCAGGTCCACTTTTTCCTTAACCAGGCGGGTTATCTTTTCCAACATTTCCGGCACGATGCCAAAAGTCATCCCGCCTTCAGACACGTTCGGGCAGGACAAGTTAAGCTCTAAAGCGTCCGGCTTGGCCGCGGCCAGAATTTCCGCGACTTCCACGTAGTCTTCCACGCTTTCCCCGCCCACGCTGGCCAAGATCGGCAGGTCCGGGTGCTTTTCTCTTAAAGCCGGGATCTTCTCGCTAGCCACAACCTCAGCGCCTGGGTTGGTCAAGCCTACGGCGTTCATGACCCCGTCAGCGAGCAAGTCAATCTGCGGCTGAGGGTTGCCGGTCCGGGCATGCCGGGTGGCAGTCTTTAAAACGATCGCCCCCATCTCGTCCCAGTTGAAATTCTCTGGCAAGTCGCCAAAGGCAAAGGTCCCACTCGCCGGCATTACCGGATTCTTCAGCTTCAAGCCTGGCAGTTCAACAGCCAAATTAACTTCTGCTGTCATTTTTCCTCCCGTGTGACTTCATGTGACTTATTTAACTTTTCAATTCGCCAAAATTATCCTACAAAAAAATAAAAAAGGCAAGCTGGCCTGGCCCTTGATTTTTCAGAAAGTTCGTGATAGTCTTTTGTTAACTGAGCTTTAATTGGTACAGAGAGACCACAAGCAGCACAATCTTTTTGGTATGCACGCATTCTGCCCGCCTGGGGTCTCTGTAGACTCTGGCGGGCTTTTCTTATGCGGTCATACGCGCTTTGTAAATTTAAGGAGTCGCAATGAACAAACCGTTATTTATCGCTTTGGACTATGATGATCAAGAAAAAATGTGGCTGTTCCTCAACCAGCTGAAGGACAAGCAGGGCCTGCACGTCAAGCTGGGGATGGAAATGTTCTACCAGTACGGGCCGGAAATTGTCCGTGATCTGTCCGCCAAGGGCTACCAGATCTTCCTTGACCTCAAGCTGCACGACATTCCCAACACCGTCAAGCGGACTGCCCACCAGCTGGCTGCTTTGGGCGTTTACTGCACGACTGTCCACGCCCTGGGCGGCAAGCAGATGATCCAGGCCGCTAAAGAAGGCCTGATCGAAGGTACCCCGGCCGGCAAGCCGGTGCCAAAGCTTTTGGCCGTGACTGAACTGACTTCGATCTCTGAAGAAGTCTTGAAGAATGAACAGCACTGCTCACTCAACCTGGCTGACGAAGTAAAGAGCCTGGCCCACCAGGCCCAGGAAGCCGAGGCTGACGGGATCATCTGCTCACCTTTGGAAGTCAAGGCGATGAAGAGCGAATTCAGCGACGACTTCATGTTCGTCACTCCGGGCATCCGGCCAAAGAGCTACCAAAAAGACGACCAGGCCCGGGTGGCCACCCCAGGCCAGGCGCGGGAAAACGGGTCAACCGCTATTGTTGTCGGCCGGCCAATCACCCAGGCCGCTGACCCGCAAAAAGCATATGAAGAGATTTTGAAGGATTGGAGCAAGAACGATGCAAAATAACGAAATTATCCGCCAGCTGATCGACAAGAAGATTGTGACTATTTCCCCAGACAAGGACTTTGTCTACGCCAGCGGGATGCACTCCCCGATCTACACTGACCTGCGGCAAACCATTTCCTTCCCAAAACTGCGGCAGGCAATCGCTGAAAACCTGGCAGCCTTGATCAAGCAGGAATTCCCGGAAGTTACGGTGATCGGCGGTGTCGCTACGGCCGGCATCCCGCACGCTGCCTGGGTTGCCCAAGTCATGAACCTGCCAATGGTTTACGTCCGCTCCAAGCCAAAGGACCACGGCCAAGGCCGGCAAATCGAAGGCCGCCTGTCCATGGACGACCACATCGTTTTGATCGACGACCTCATTTCAACTGGCGGCAGCGTTTTGTCTGCCGTGCAAGCAGTCAAGGAAACAGGCGCCCACGTTGACGGGGTCAGCTCAATCTTTACCTACCTTTTGCCAGACGCTGACGAAAACTTCAAGAAGGCCGACACCAAGTTTGCCCCGCTCTTGAACTACCGGGAACTGATTGAACAGGAAATTGCTGAAACGGTCAGCGAAGAACAATATAAGGAATTGTTGGCTTGGCACCAGGATCCTTGGAACTGGAAGCGGTAAGAGCTAGTAAAGAAATTCCTAAGAAAGGCGATTTTTTTCATGAACTTTGCCTCCAGGAACTCTATAGCTGGAAAAATATGTTATATTAGTAACCAGTACGTATGAAGGATGTGGAGACTTAATTTTATGAAAAATCATTTGAAGAAAATTGCCGTTTTGGCAGGTGCCGCAGCTATCGGTCTGTCCACTGCCGCTTGCTCAAGCAGCTCAGCTACTGTAGTTAACTACAAGGGTGGCAAGATCACTCAGGACGAATACTACGAAGCTATGAAGGACACTTCAGCCGGCCAATCAACTTTGGTCAGCTTGATCATCTACCGCACGCTGAAGGCCCAATACGGTGACAAGGTATCTTCAAAGAAGATCAACGCCGAATACAACAAGTACAAGAAGCAATACGGCTCAAGCTTCAGCACTGTTTTGAGCTCCAGCGGCTTGACTACTAAGTCATTCAAGCAAAACCTGGCAACCAACCTGTACTTAGTTGCCGCTTTGAAGGACTTGGAGAAGCCAACCACCACGCAAGAAAAGAACTGGTGGAAGAGCTACCACACCAAGACAACTGTGCAACACATTGTAGTTGCCAAGAAGTCAACTGCTGAAACTGTCATCAAGAAGCTGAAGAGCGGCACTAGCTTTGCTACTCTGGCTAAGAAGTACTCAACTGAGACTGCTACCAAGAAGAAGGCCGGCAAGATGGCAGCCTTCGACTCAACTGACACCAGCTTGAGCAGCACTTTCAAGTCAGCTGTTTGGAAGCTTAAGGAAGGCGAATACACTACCACGCCAGTTAAGACTTTATCCGGCTACGAAGTCATCAAGGTTTTGAAGACTACTGAAAAGGGCTCATACACTAAGAACAAGAGCTTCATCGACAAGCAACTCTACGCTAAGTGGGCAGCTGACTCCAACACGATGACCAAGATCATCAGCAAGGTTCTGAAGAAGGCCAACGTCAACATCAAGGACAAGGACCTGAAGAGCAAGAACCTGCTGGCTAACTACCTTGGCACTTCATCATCATCAAGCTCAAACTAATGCGGGCTGACGATTAGACGATAAAAAGACGCGATTCACTGAATCGCGTCTTTTTTCTTTGTTTCTTTTGATACTACTTTTTCAGCTCATAAGCGGCCAGGATTTCCTTAGCCTGCCGGCGGTCAGCCAAAAGGCTGCTGAAGACATGTCGCCGGGTACTTCTACTTCCTGGCCCAGCAATTCTTGGCCCGGCTGGACATGGATGGTCAAATTGTCCGCCTCTGTTGTGATATCAGCGCCAAACTGCCGCAACATGATCTCAGTATGGTTTCTGGTCGGCAATTTTTCGATGATGGTTGACGGGCTTCCTGCTTCAAGGGCAGCAAAAATCGCCGCGCTTTTGACCTGGGCGCTGGCAACTTCCAGCTGGATTTCCGCCCCATGCAGCTTTTGCCCTATGACCGTGGCAGGCAGGGTTCCGGCCGGGCTCAAGGCAATCTCTGCCCCGAATTTAGCCAAGGGCTGGCTGACCCGCTTCATCGGCCGCTTGCTTAAAGAAGCATCCCCGATCAATTGACTGGCAAAGGAGCTGCCGGCCAAAATTCCCAGCAAAAGACGGTTCGTCGTGCCGGAATTGCCTATGGCATTAACCCCGACAGCGGCCGCGGCAAGCTTGGCGTCCAATTTCGTCTCCCATTTTGAAAAATCTTCTGCCGGATCTCACTGACGTCTAAGGGCTTTTCAGAATCAGCTTCTACTGCCCCGACTTGCGCCACATAAGCCACCAGGCCGATATCCAACTGCCGCAAAAACTGCTGAGCGATATTGCCCAAAGCCACCCACAGGGTAGTTTCCCGGGCTGAGGACCGTTCCAAGACATTGCGCAGATCCCGGTGCCGGTCGTGATCACCGCGTCTTTGCCAATATTGGCCAGCAGGGCCCGGTGCTCGCAAAGGCGGAAGTGGTCTTCGCCGAACTTGGCAAAAAATTCCGGGATGGTCAGCTTTTCTCTTTCCACAATAGCCTGGTCTAAGTCGATCTGCAGCTTGTTCAGCTTTTTCGCCAGCAAATCGCCAAACGTCGTTTTCCCGCATGACATGAAGCCAACTAATACAATTCTCATCTTGTCCACTCTTTCTAATCTAAAAATAAAAGCCACCTGTTTTGGAAGACGTCTCCAATCCAGATGGTTGCATATCTATAAAAGAGTGGGCCCTTGCACCCAGCCATGCTAGATTGAATGTGTATCTAGCAGGCTCAACAAACATTGGCTAGCTGAGATACGAACGTCTCGCGTCCGTATCCGCGGACGCTTTAGTCGAAATAAGCATAGCCATAAAAGAAACTAGTCATGTTTGTCTTGAGCAAGTTCATTGTTAGATCCTCTCTTTTCAAATGATTGTTTGATTGAAATAATTTAAAAATCTCTCATTGAATCTGCCAAGAGTTTAATCTAAAAAATAAAACAAGGAAAGAGAGAAATATAAAAGGAATAGAAAAAGAAGAATTTTTCCTATCTTTCCTGTCTTGGCCGGTAATAGCGGCGGCCGTCCTGGGACATCAGCGGCGGGGTGAATTCCCCCGGCTTGGTCGTGGACAATTCAGTCGTGATGGCGTTGACCGCCGCGTCCAGGTCATCGATCCGGTGTAAAAGCTCTGCTTAAAGCAGCGCCGGCAATTTCGGTGACCCGTACTCATAGCGGCCGTGGTGGGATAAGACCATGTGCCGCAGCAAAAGCAGGTCTTCACTGGCCAGGTCGATTTTCAGTTCCTGGGCAGCCAGCATCAGCTGCTCATCGATCAAAACCAGGTGGCCAACCAAGTTGCCTTCTGCCGTGTACTGGGTCGCTACCGGGCCGGACAATTCCAGCACCTTGCCCATGTCGTGCAAGATGCAGCCGGCATAAAGCAGAGACCGGTTGACGGCTGGGTAGTTGTCAGCTAAGCCTCTGGCGTCTTTCAGCATGGTCAAAGTGTGGAAGGCCAGACCACCTTTGTAGGCGTGGTGGTTGGACTTGCCAGCCGGGTAAGCGAAGAAGCGGCTGGACCACTTTTTCAAAAGGAAGTCCACCAGGTCATGCCAGTTCTTATTGTCGATCTGGGCCACAAAGTCCTTAATCTCCTTCTCCATTTCTGCTGGCTTTTCCGGAGCAGTGGCCACCAATTGACTCAAGTCCGCCTGGTCGTCCGGGCTGACCGGATGAATGCTGAACAGCTTGATCTGGTCATGGTTGTGGTAGTCCTCAATCATCCCTGAGGCCTCAACCACCGTGCCGGCGTTGAAGCGGCTGGCGTCCTCAGCCTTGGCCTGCCAGTAATTGGCCCGGATGCTGCCGGAAGAGTCAGCCAATTGCATGAGCAGATAGTGCTTGCCCCTCTTATCTTGGCGCAGCTCGGAATTCTTGACCATCAAGACCAGGTCAAATTCTTCCCCTTCATTGTAATCCAGCAAACGTTTAAGCATCCTGCTCCTTCTTTCTGTATCTGATTGGCGCGGCGCTGACGGCTTCAGCCAAGTCTTCTCTGGCCGTAAAGACCAGGATCTGCTTGTCTTCGCTCATCTTCTTGAGCATGTCTACAATGTAGCCGGTCCGCGGGCCGTCGAAGTTGACGAATGAATCATCGATCAAGACCGGCAGGTCGATCTTGTCCTTGATCTGCATGACAAAAGCCAGTTTCAAGGCAAAATAGAGCTGCTCCTGGGTTCCCCGGGACAGGTAGGCCAGGGGGATCTTCTTTTTGTCTTTTCTGACCACCTTGAGCGGGGTCTTCTTGGACAATTTGGCCGGCAAAAGGATTTCCCGGTAGCGGCCGCCGGTCAAAATTTCCAGGTAGTCCTGGGCTAATTTCAGCATCTTCGGGAAGCGGTCATTTGAGGCTAGATCCAGGGTCCGGCCAATGACTTCCCCGGCCAAAAGGCTGGCCAGGTAGTCCTGGCTGTCTCTTCTGAAGCTGTCGGCGATTTCAGCCAAGGTCTGCTTGTCTTCAGCCACCTGGCTGGAAGAAGCATAGCGCTTTTCTTCCGCCAAAAGGTTGGCCATTTCCTGCTGGAGGACTGAGACAGCTCTTTGCTTGTCAGCCAGCTCTTTTTCCAGCTCTTGCTTTTGCCCCAGCAATTTGCTTAAATCCAGGCCATTTTCTTCAAAAGCCGCTAACTGGTCACCCAAGTTGTTCTTCAAAGCAGTGATCTGGGCAGATAAAGCCTTTTGCTCTTGCAGCTTTTGCGCTAATGCCTGGTAGGCTGTCAGGTTTTCTACCCCGGCAGTCTGGTAGATGGCCAAAAGCTGTTCAGTTAAAGCGCTGATTTGTTTTTGGTAGTTCAAGTTGGCTGCCTTGACCTCCTGGCTGGCCCTAAGCGCCGCACTCTCAGCTTCCACCTGCGCTTCCAAGCGGCCCAATTGCTGGCTGACAGCTGTAAGGTCACTGCCATCCAGGCCCAATTGCCGAGCCAGGTCAGCGGCCTGTTTTTCTTTTTGAGCGAGTTCTGCCTGGCTATTTGCCAGGTCACGCCGGTTGATGGCCAGGTCCCGGTAAGGGGCAAGCAAGGAGTCTACCTTAACACTGGCATCGATACCGTACTTTTCCTTAAAGGCTCCCGCCTTGTCTGGTCCCTTGGCGGGCTTTTTGAAGTAGGCATAAGCTGCTAAAGCCGCGCCGGCAAGGATTAACAATATTGCCAAAATCCGGTTTTGCCCGATCAAAGCCAGGCCAATTACCGCTACGATCAAACCGACATATGGCGGCAAGGTCTTAGGCGCGGCTTCTGCCTTCTGGCTTTCTTCCCAGTCAGCCTGCATCTGCTGGAACTGGTCCATGGATAAATCTGCCACTTGCTCTAAATGCGGGGTCAATTCTAAGAGACTGGCCTGCTTTTCTTCCAGCTGCTTGACCTGCTGCTTGAGCATTTCCAGGCTCTGGCTGATTTGCCCCAGTTCCTGCCGCCAGGCCCGGACCTGGTCCTTTCTTTTGGCCAAAAGAGCCGGGTCAACCGCTGCTTTTTCTTCCTTGATGGCGGCCTTGAGGGCCTTGATCTGGGCATTAAGCTCCAGGGCCCTCTGGTAGAGCTCCTGGTCAAAAGCGACCGGGCTGACCTGCTTTTTTAGGTCCAGATAAGTCTGGTAGTTCTGCACCTGCTCCAGCTGCTTTTCCAGCTTGCTTAGCTGGCTGGAGATTTCCTGGACTTCTTTTTCCAGCTTTTTAGCTGCTTGCTCTTCAGCCAGCCTCTGGCCTTCCAGCTGCTGGTAGGCGTCGAATTCCTGGCCATCAGCGGCCACCTTGTCTCTTTGCTCAGCCAATTTGAGCAAGTCCTGGTTGACCGGGGCCTTCTTCCCGCTTGGCTTGAAGAGGTCCTTGGCTTCCTTGTCAAAGTCAGCCCGGATGGCTAAAAGCTGGCTGCTCTGGGCCGCCCCCAGATAGTAGATGTTCTCCAGGATCTCGCCTTCAGACAGGGAGCTGACCTGGCGGAGGAGGTCTTCATTAAAGATAAAGCTTTCAGCGTAAAAGCTCCCGTCGATATTTTGAATCTGGTCGTAAAAGAGACTGACCGGGACTTCCTGGCCGTTTAAGAGGACCTTGACTGCCCCGGTCTTGCTCTTGTCCCCCCTGCTCCAGGTCCGCTCTAAGACATATTCCCCTTCATCACTAGTAAAGACCAGCTGCCCGCCCATCGGGTAGCTCTTGGTCAAGGGCTCGTAGTCTTCAAAAAAGACTGAGCTGGTATTTTTCAAATTGAAGCCAAAAAGGATCTGCTTGATGAAGGCCACGGTCGTGCTCTTGCCAGCCTCATTGCCCCCGAAGAAGGCTGCTAAATTGCCGTCTGGCAGATCAAAAGTCTCCTGGCTGAACTGACCGAAATTGTAGATTTGAATCTGCTTGAGTCTCATTTTTCTCCCCCAGTCATTGCCTGCAGGCGGCTGGCCAGCTTGACAGCAACCAAGTCCCGGACCTGGTCGCGGAATTCCCCGTCCTCTAAAAGCCGGCGGGCATATGGGTCCTTCTTGGCCCAGGAAGCGGCCAGCTGCTGGATCTTCTCGTCAGTCAAAACTTCTGCTTCAGCAGCAGCCAGGGCTTCCCGGTCGCTGTTGTTGAGGCTGACCAGGCCCCGGACGGATAAGCGGACATCAACCAATTGTGATGGGGCTAAAGCCGCGGACAGACCGGCCCAAGCCTCCTGGTCCTGCCAAAGGTCTATTTCTTCGCTGGTCAAATATTCTGAGCCCGAAATCTTCAAACTGAAGTAGGTCTTGCCTTGGATATTTTCTTGCAAAAGTTCCAGGGCTTTGGCATGTAAGCTGCTCTTATCAATTGCCTGGTCCAGCTCTAAAGTCAGCTGCTTCCAGGTAATCGGCGCTGTTTGGACAAAAGTCAAGCTGGTCTGCCCGCTGGTTTCATCGACTTCAGCCAGGTAGCAGCCCTTCTCCCCCAGTTCGCCGACATCCCGGCCTTGGATGTTGCCGGGGTAAACAATTAGCGGCTTCTCGCTTAAAATTTGCCGGGCGTGGATGTGGCCCAGGGCAAAGTAGTCATAGTTCAGCTCCTTCATCTGGCTTAAGTCAAAGGGAGCGTAGACATTGCCGCTGGCCGCTCTTTGGGCCGCGTGCATCAGGCCGATGGTATAGCCCTCTTTTTCCGGGAACTGGTCCAGGAGGTCAGCTTCAATATGGTTCTGGCTATAGGAAAAGCCGGTCACATTGTAGGCAAAGCCGGTCTTAGTCTTAAAAAATTCCCGGGCAACTTTTTCCTGGTCGCCCAAGAGGCAGAAGTAAGGACTGTTTTCGACCAAGAGATCCTGCCGGGTCATGTAATCGTGGTTGCCGAAGATCATGACCACTTGGATCTGGGCGTCAGTCAGCCGCTTCACCTGCCGGGCTAAAAAAAGCTGGCTGGCCGGAGACGGCTTGTTTGAGTCAAAGGTGTCGCCGGCGATTAAAACCAGGTCGACCTGCTCTTTTAAGGCCAGGTCCACGATCCTAGTCAAAGACTGGGCAGCTGACTGGCGGATTTCATCATATTCCCTCTTTGGCAAAAAAGATAATCCACGAAAGGGGCTATCTAAGTGCGCGTCAGCTAAATGAATGAATTTCATGATTAGGCTTTTCTCAAATCCTCGTATGCTTCAGACAAAGGCTGGCCGATATTCTTTTGTACGTCGTTGAGCAGGGTGTAAACAGCTTGTTCTGCCAAAAGCATGCTTTGCAGGGTGGTGTTTTGGCTGACCCGTTCGTTCAAGCTCTTGAAGTGGTCTTGCTGCTCCTCAGTCAATTCCTTGCCGGTTTGCTGGGCTTCCATGATTTCCATTTGAGCCGCGTCCAGTTCCTTGAACAAGGCCAGGCTGCCCTCATCCGCCTTAACAGCGTCCATGGCTTCCTTCAAAGCCAAAAATTGCTGGGTTTCCCGCAAGTCGTTAGCTAATTGGTTGGCAGTATCGTAAATGTTGACCATTTTCTTTTATCCTTTTTTATTCCATAAAAAATTCTGTTTGCTTATTTTCCAGTAATCTTATTGTACCATGACTGAATCGTTGATTCGGCATTCTTTACCCCATTGCTGATCGATTCTTTCAGCTTCTTGCTCCAGTCCGAAGAACTTGAAGAAGAGCTGCTTGTCCCATTGCTTTGGGCCATGGAGTCAGCTGACTGAACGGTAAAGCTGGTCTGCTTGCTGTAAGGAAGGATCCGGGTCATTTCGTCTTTATAAAGGGTGGTAATCCCGGTTTCCGAAATCCCCTGCATGTAGTGGTTCTTGTCGGTCTTGTCAAAGCCGACCCAGGTAGCCACGACCACGTCCGGGGTATAGCCGACGATCCACTGGTCCTTGGTCCCGTAAGCAAAAGATACTTCAGTTGACCCGGTCTTGCCAGCTACTGAATAGCCGGCTGGCTTGGCGTTAACGGCCGTCCCGGAAGTGAAGACGCTGAGCAGCATCTGGGTCATTTCCTTGGCCGTGTCAGCAAAAATAATCTGGCTGGTCCCGGTATTGTTGTTTTCCGCGATCACGTTGCCGCTGGCGTCGGTGATCTTGGTGATCATGTATGAGCTGTCCGGCAGCTTCCCGCTGTTGGCAAAAGCTGAGTAGGCCCGGGCCATCTGCAAAGGACTGACCCCGGTGGACACCCCGCCCAGGGCCAGGGCCAGGTTCTGGTCACTCTTTGAGACGGTAATGCCGAACTTCTTCAAGTAGCTGACCCCGGTGGACACCCCGATCGTGTTTAAAAGCCAGACAGCCGGGACGTTCTTGGACTGGGCCAGGGCCTGGTACATCGGGATCGTGGTCGAGTACTGGTTGTCGACGTTGACCGGCTCATAGCCGTTATTGCCGAACTTCTGCCGCTTGTTGGAGAGGTCAGAGTCATAGTGGTAGCCGTTCTCCAGAGCCGGCGCGTAGACAGCCAGGGGCTTGATGGCACTGCCGGGCTGGCGCTGCATTTGCGTGGCCCGGTTGTAGCCTCTGAAGACGTGCTTGCCGCGTCCTCCGACCAGGGCCTTGACTGCCCCAGTCTTGGGATCCATGGCCACGCTGGCCCCTTGGGCCCGGGCCGTGCCGGCCGGGTTGACCGGGAAGTTGTACTTGTTCTTGAAGCTGGCCTGCATGGACTTCTGGTAGTTCTGGTCCAGGGTCGTGTAGATCTTCAGCCCCTTGCTCATGATCTCGTTTTCGCTTAAACCGTACTTGCTGATGGCTTCAGAGATGACGGCGTCAAAGTAGTAAGGATACTTGTAGCCTCTGGTCGCCTTGTAGGTATCAACCAGGTTCATCCCCTCTTTTTTAGCTTTGTTGGCGGTCGTCTGGCTGATAGACTTGTTGTCAACCATCCGCTGCAGGATCAGGTTTCTTCTGGAAACCGAGTGCGAGAGGGAATCGATCGGGTTGTAGTAGGAAGGGTTCCGCAAGATGCCGGCCAAGGTTGCCCCTTCAGCCACCGTCAATTGGCTGGCGTTCTTGCCGAAGTACTTGCGGCTGGCATCCTGGACCCCGTAGACCCCGTTGCCGAAGTAGGCATTATTGAGGTACATGGCCATGATCTGCTTTTTAGAATAGACCTTGGTCACCTGGATGGCATAGAATATTTCCTCCACCTTCCGGGACAGAGTCTGCTGCTGGGTCAAAATGGAGTTCTTGACCAGCTGCTGGGTGATGGTCGACCCGCCCCCGGCGATATTGCCCCCGTGGATGACATAGCTGACCGCCGCCCGGAGGATGCCCTTGGGGCTGATCCCGATATTGGTCCAGAAGGTCCGGTCTTCGGTGGCGACTACGGCCTTTTGGACATTGGGGGAAATCTTGCTCAAGCTGACATAGGTCCCCTTGCCGGAAGACACGGACCCGGCCTTTTTGCCATTCTGGTCATAGATAACCGTGGTCTTGGCCAGGGAAGCCTGGAGGTTGGACAGGTTGGCTATTTTGACTTTAAAGGTATAATAAGAAGATACAGCTAAAAAAAGGCTCAAAACGATCAAAATCAACCATCTTAGCAGTTGGAAGCGGTAGTTGATCCTTTTCAGCCATCCCCACAAGCCCTTTTGGGGCTGGGAGTCGTTCATTTGTTTATGCGCTTTGCGCCTGTTTTCCATTAATATATGCTCCTTCGTTAGAACGTGGTCTAAACAGTTTGATTTTATCATAAAAGCTGGCCGCGGCTATCCTGCAAGGAGCAAGTTATCCATTTCTTAATTGCGCTAACAAGGTTTTTAGAAAGAAAATAAATCCCGTCATGATCTATCATTTCAGCTTAATCTATCCCGCAGACCGTCCCCCAGTTTCCGTCAGTGACCTGCTTAGGCAGCTCTTAATTCCCCGCAAATGGCGGCACTATCTTCGTACTGAGCGGCAGGTTTTAGTCAACGGCCAATACCGCAGCTTCAACCAACTGATCAAGGGCAATGAAAAAGTCGACCTCTACTTAGACCAGGTGGAATCCCTGCAAGGAGACTACCCAGCCAGCGGCAAAATGCCAAAAGTCGTCTATGAAGACGAAAATGTTTTAGTCATTGACAAGCCCAAGGGGCAAAAGACCCACCCCAACCAGGGGGAAAACGGAACCGCCTTGAACGACTGCGCCAGCTACTTAGGCTACAGCCCCTACATCGTCCACCGCCTGGACATGCTGACGGGCGGGCTCTTGCTGGTCGCTAAAAATCCCGCGGTCGTGCCGATCTTGAACCAGCAGCTGACCAGCAAGACCTTAAGACGAGACTACCTGGCTACGGTTAACTTAAACAAAGAAATACCCGATCAAGGCACAATTGACCTGCCGATCGGGCAAGACCCGGCAGACCAAAGAAAAAGGCAGGTTAGAGCTGACGGCTTAAGAGCAGTCAGCCACTTCCAGGTCTTAGAAAAAGACGAGGTGAAAAAGAAGGCTAAACTGCTGGTAACTTTGGAAACCGGCCGGACCCACCAGATCCGGGTCCACTTGTCGGCCTCAGGCTGGCCGATCGTGGGCGATCCCCTCTACAACCCAAATTTTGCCGGCGAAGACTTGGCTTTAACCGGCTGGCAGCTGACCTTCGTCAAACCCTACAGCTTTAACCAAGTCGCAGTCAGATTAGACAAAAAATAAGCACAAAATTGAATAAGAGAAAAAGAAAAAGGCTCTATAGCAGCAAATGCTGTTGTAGAGCCTTTTCTCATGAAAAATATTCTGAAGCTTCAGATTATTCTTCGTTAAGTGAGCTTCTGTCGAATGAAGCGTCAGCTTCCTTGTCGTCGATTGATGGAGTACCCATCCAGCTGATCATTTCCTTCATTGAGTCAGTGATAGCTTCAGTACCTGGCAAGAGCAGCTTACGTGGGTCGTAACCCTTCTTGCTCTTGTCTTGGTCCTTGCCTTCTTCGATGTACTTGCGAGTAGCTTCTTGGAATGCAAGTTGGAATTCAGTGTTGATGTTGATCTTTGAGATACCCAAAGAAATTGCCTTTTCGATTTGGTCTTGAGGAATACCTGAACCACCGTGCAAAACAAGTGGAGTTTCAGGAACAGCTTCAGCGATTTCCTTAAGACGGTCGAAGTTCAAGCCGCTCCAGCCTTCTGGGTAAACACCGTGGATGTTACCGATACCGCAGGCAAGCTTGTCAACGCCAGCAGCTACGAAGGCCTTAGCGTCTTCTACTGAAGCAAGTTCGCCGGCACCTTGGTTTTCACCGATCTTGCCGATTTCAGCTTCAACAGAAATGCCGCGTTCGTGAGCCAGCTTGATGATTTCCTTGGTCTTGGCCAAGTTCTCTTCAGTTGGCAATGCGTGGCCGTCGAACATAACGCTTGAGTAGCCAAGCTTGATACATTCAATAGCTGAGTCGTAGTCGCCGTGGTCCAAGTTCAAGATAACTGGAACTGAGATGTTCATAGCGTCCATTGAGTCTTCTACCAAGTCCTTAACGAGCTTGTAGCCACCCATGTACTTAGCAGCACCAGTTGAAACTTGAATCAACAATGGAGTTCTGGTTTCTTCAGCACCACGAAGAAGAGCGCGGGTCCATTCCAAGTTGTTAGTGTTGTAGGCACCAACAGCGTAGTGTTCCTTACGAGCCTTCTTAAAAATGTCATTACCGTTAACGAAATAAGCCATAAAAATACCTCCTGAGCTTCTTACGACTCTATTGTACCCAATAATGAATATTTGAGCAAATAAATTCTTTCTTGTAAGCGCTTTATGCCAAAAATATTTGTGTTCGCTTTCTCTATGCAGATTTCCTAATGCATTTTGAGGACAACCTTGCTGCCAACTGGCAGGCCCCCGTTCAATCTTTGCTCATAGATCCACTTGGCATCGTTGACTGACAGACGAACGCAGCCATGGCTGTCCGGCTTCTTGCCCAGGGTGGTCAGGTGGGCTCCGCCCTTGTAGCCATAGTGGTATTTGCCGGCCTTAACCCCGGAATTGAAGTTGTTGATCGGGACTGAGTGGAAGAGGTAGACCCCGTGCTGGTCGTAGGAGACGCAATAGCGGGCCCCTACCCCGTCATTATTGTAGAAGACCTCGCCGGCTTCTTCCTGGATCCGGTAGTTGCCGACTGGGGTCCGGCTTTCACCGTTCTTCTTGATCGCGCCCGGGGAAGCGTACATGGTGTAGATGACTTTCTTGCCAGACATGACATAGACCCGAGCTCCCAAAATGGAGACGCGGATCCAGACATCCTTGTACTTACGCAGGTCAGGGTACTTGCGCTTGGTTTCGCTGGAGTACAGGTAATAGTGGCCGGTCATGGGACGCATGTCACTCGGATCAGGGTAAGGGCGGTCATTTTCTTTCTTGGCAACCTGCTCCTTCTTCGGGGGATGCTCCTGAACCTTGCTCTTTCCGCCGACCTCCGGCAGGGGCTCAAAGACTGGAATAGCACGCGATTATGGCAATCAGCAACATTCCTATTCGTTTATGGGCCTTGTTCATCAGTTACACTCTTTTCCTAATTTCTTTTCAAAAGCTTGCAATCGCCAATATAGCGATTTCACACAGGATTAAGCTTATTATCTTACAAATCAGCATAAAAACATAGTCAAACCACTTCAGTTTGCCCGAATTTTAAAGAAAAAGCAATCCAAAATGGATTGCTCTAAAAAACTTATTTGATTTGTAATAAGCGACATCTAACTGTAAAACGAGTCGTGCCGTCATAAGTACAAGTGAACAGGCTCAAATCGTACTTACTTTGAACCATCTTGCTGATGGCGGTCGGCTGCAGGACTTCCATTTTCTGGACCTGGTAGACATAGCGCTGGCCGGCCGCGGCTTCAAAATAGACCTTGTCGCCGACTTCCAGCTAGTTCAAGCGGCCAAAATGGTTCACGAAATTGTGCCCGGCCACGATCCAGTCCCGGTCCTTTGCCGTCCCCGTATAAGTTGCCGGGGACACTTCCAGCTGGCTGAAGCGCCACTTGCTGGCTACCGGCAAAGTCAGATTTAAAGTCGGGAAATTGAGATAACCGCTGCAGGCTGTTCCGTTGACTTTAATCGCGTCCTTGCCAGATTTCTTTGCTTTCGCAGTTTTTGGCGCCTGCTCGATCGTCCGTACGATTGCCTTGGCAGAACTGCCGGCGCGGTAGTCTTCAATTAAGTTGTGGGCCAGCAGTAAACCGGCCAGCAAGATAAAGATGGCTCCTAGCGCCATTTTGATTCTGCCCTTTTTTCTCATCGTTCACCTTTCTTCTGCTCAGCCCAGCCCCAGATAAACAGGGTCAAACCTGCCAAAGCCAAAAGCGGGATCGGCCAGTTTAACTGCCCCGTCTGCGGCAAGCGCGGAGTTTGCGGCAAAGTCGGAACCGTGCTGCCAGTTGGCGTCTTGCTGGTCTTCTTGGCCGTAATCGTTGGGGTGCCAGGATATTGCGGCTTGCTAGAGAGCTTTCTGTTACTTGAGCTTGAAGACGACGGCGTGCTTGGCGTATTAGGCGTAGCCGGCTTAGACGGCGTCTTCTGGCTGGGCTACGCTTTTATTGACCGTCTGCCCATCAATCTTATATGGCAAGACCAGGCAGAAGGGATTGATCTTCTCATATCCCGCAGCGCTGGTCGTTTTCACTACCAGCTAAACCGCGTTTGACTCCAGGCTGATTGAAGCATCCCCGCTGGAGGAAATTTCCGCCATTTGCGCGCTAAGCGACTTGCTGCTGACATAATTAGCCAAGCTGCGGGCAAAATCCACCGTCATTATCTCATTTTGCGACATGCCAGCAATATCTTGACTCATTTTAGAAAAATCACTGGTATATTGGAACTTTTTCGCTGAATCAAGCTTGGCTACTTGATAAACGACCAAATTCCCGCCGGAAATCGCCTTGCCTGTTTCCTGGTCCCGCATCTGCACCGTCAAAGAGCCGGTATCAGCTGCCTGGACAGGATTGACCGCGGTAATAGCTAAAAACAAACTGAACAAGACTGCCAGTTGACCCAAAAGTTTTCGCTTTAGAAAACAAGCCATCCACCCTCTATCTATTTAAGTGCTATGAGAAATGTGGAAGAATGTGCGCTTGATACCGGCTGGTTCACATTATGGTCAAGATATTCAACTTTGCGACTATCGCATCATCGATATCTTTACTTCCAGCACCGACATGCCTGGCTGGAACATACCTAGCGCATAACATAGGACTCTGCCGACTTCCATTTCTCCCACGAGCGTTCACTGCCAAGCTTTCGCATTGACAGCGTGGGCGATCTCTGCACTCGATATGCTCACATCACCTGTACGGCCGAAGCCGCAGACAATGCCTTTATCCGAAGATGAGCAACCGAACTGTCTCACGAGTTCTGAACTCGCTTCTCGCATGTTCTTCCATTTGACGAATTGCATGCGCGGTCGTAGAAACCGATTCGCTGCCAAAACAACTTATCGGCTTCCCGTCCGGTGAGCCATCTGCACCGAAACAGCCACTTACGCAACTGCTCAAGTAACAGATGGCATTCCGGCCATTAGCCTGCCCGCATGGATCCTTGCGGATCCCTTATTTTTTTTACAGTGCTTTATTGTATCTTGGATGATCAATCAAAAAAGTAAGATTCATCATCGCGTTCATGTCCCGAACTACAACCTTGCCATAGTTCGGGCATTTTTTGTTGTAGCACACATATTCATTGTGCTTGGTGCCATGCTTTTTATTGCAAGAAAGGGTGATCTTTTCATCGTCCTTCTTGATGTTGCCACAGGCTGCACAGCGCTGGGTGCTTGGATAAAAGCGATTGGCAATCACCAGCTTAACCCCGGCAGACTTGCACTTGTATTCAAGATAGCTGCGAAAGCGTCCAAACAGTGCACGGTGTACGCCTTTTGAAGCGACATGGCTCATAAGCATGCCCTTAACGTCCAGATCCTCAATGCAGATTGCATCATATTCTTTGACAAGGTGAGTCGTGTACTTGTGCATTGCATCATCCTGCATGCGGTGAGCACGCTCGTAAAGCTTCTGAAGCTTGATTCTCGCTTTTTGATAGCTTTTTGAGCGCTTTTTGAGCGCTTCCCGGCAATCTAATCTGACCATTTTCTTTCAACTTTCTTGCCATAATCCGCTGCTGGTGCTTGATGTTCTCATAGACTCTTGCCAGCTTGACGGCGCCATTGTTTCCCTTGTGCAGAAAATAGTGTTCCCCCTCTGCATCATTGAAATGGCTGACATTGACATCGATCCCTGTTTTCTTACCCGTATGCTTGTGAATGTATGGTGGCGTCTCATACTTGTAAGGAACCGCCATGTAGTAATGGCCGTGTTCACGGTAAAAGCTTATCGTCCCAAATTCGGCATTTTTGGGGATTTCAGAAAATCTTATGCTATGCCACTCACCCTTATAAGGTGCTGGGACAGGCAAGGTCAGCTTCCCGTGATTGCCTTCCTTTGCGAGCACCACACCTTGATTCAACTTAATGCCTTGGCTCTTGGCTTTCTTGGATTGAAAAACGGGGTGTCCGGCACCTCTTTTAACTTTGAGTGCCTTATCTTTGGCAAACTTCTTGAACGATTTGCCCAAATCAGCACATGCTTGCTGCAGGATACGAGAAGAAATCTGCTTTTCCCATGACTGTTTGCTTGCCGTAAGCTTTTTCTAAATCAGTGCTGCGGTTGGGTAGTATCTAGATATAAATAAATTCTGCTCTTCAGTAAATTGCCGTTCTTCTTTTGGCTTCTTGAATTCCGCCAGAATTTCTGGACTAACTAGCATACGATATTCCGAATAGGTAGCATTCCAAAGTTCTAGGGCCTTATTGTAGCAATAACGGCGATAGTCACACCACTGGTCCAAAACGTGAGCCATAGTAGCATCTGGATATAAACGATATACGTGAGTCCTTTTGGTTGCCATTTGTCTTCACCTCTCTTCGACAAGCATATTTTAGCACGTATCCCAGCTCTCTTCCAAACATACGTTTGAAGAAGGGCCAAAAAATGCGCTGCATCTTTTGATTAAAATCATAGGTGCAACACACTTAAATTCTATTGAAATAGATTCGTTTTCTTTCACAAGAACATTCTGCTATATTTTTCTATATAGTTCTATATTACTTGTTACTAATTAGTAGCTCTTGATCAAGGACATAAGTCTTGTCACCGTCAGTCAAGCTCTGCTGGCTCTTGTCGGTTAATTCCCGGTAAAGCTCACTGGCTAAAGCGTAGTGAGTGCCGGTCCCCCGGTCAGTTACGGCTTCATCATGGCTGGTATATCTGGTCGCGTTATAGATGTCGTCCTGCAAAACCGCAACAATCAGCAATTCAATTCTATACAAGACAAAAAACAGGGCTCTTCCACATTGTGTGAAAAAGTCCTGTTTACTTTTACATTAACAAGTAATATTAATTTTTTGACTAGAAATTCTACTTAAAGGCCTACTTGTACTTGATAACGACCTTGGTACCCACCTTCAGCTTGCCTGAAGTCCGTTGACCGTACAGCCAGCGGGCGTCACTCAGCGTCAGCCGGATGCAGCCGAGAGAATCTGGCTTGGTCCCTTGCACAGTCAAGTGGGCCGTGCTGCCGACGCCGCCGTAGCCATAGTGGTAGCCCTTGTAGTAGACGCCAGAGCCATAGTTGTTGATTGGCACGCTGTGGAACAAGTAGTCACTGCCGTAGTAAGCCATGTAGTAACGGGCCCCTACGCCGTCTGAAGACATGAAGGACGGGCCATAAGCTGCCTTCAAGTAGAAGGTGCCACGCGGCGTGTCGCTTTGGTACTTGCCGTTAGTCATTTCAAAACGGCCGGCTGAAGAGTACATAGTGTAGATGACCTTCTTGCCGCTCATGACGTAAACCCGGTTGCCCAGGATGGAAACCCGGATCCAGACATTCTTGTACTTGGCCAGGTTCGGGTAAGCCCGCTTCTCACTTGACTGGAAGTAGTAAGCTCCAGTCTTGGCCCGCATGTCGGCAGGGTCATAGTAAGGAGCGTTGGCTGGCTTATGCAGAACCCGCTTGTAACTGACCTTGACGGTAATATTCTTGGTCTTGCTGGTCACCGTCTTGGCCTTAACCTTAGTCGTGCTGCGCTTGTAGCCGCTTATTGCAGGAACCTTATAACTCTTCCAAGTCCCTTTTGACCACTTGCCATAGCTCTTCTTCGCCTTCTTGGAAGTCTTGGTTAACTTGCCATCAGTATAGGTTTTAGTCGTCGTGGTGGTGGTCGTTACCGTTCTGGACAGCTTAACCTTTTGGGTGATGGTCTTGTTCTTGCCCGGCCGGTCCAGGATGATCTTCCGGGTCTTGGTTACGTATTGCTTCTTCTTGCTCTTCTTGACCGACTTCTTGGTCGTCACGACTGAAGACACTTTAACCGTGACATCTACCGTGTCAGTCGACTTGTCAGTGTAGGTTACTAAAACAGTCCCCTTGACCGTGCCGGCCTTGGCCGTGCTTGGTGCCTGCTTCCAGGTCACGCTGGCCACGTTCCTAAGGCTGGAAAGGTTGCTGATGGCTGAGCGGGCCGTCAGGCTCTTGCCCACCTTGACCGTCAAGCCGGTCTTGGCTACAGGGCTATTCTGGCTGGCACAACCGGTTCCGGTTACTTCCAGGTCGACTTCAACTTCGCTGGTCGTCCCGTCAGTATAAGTGATGACTACCGTGGCCTTCTGGCTGCCGGCAGCTGACACGTCTGGCGTGGTCTTCCAGCTGTAACCATGGACTCTCTTTAAAACAGCCTTGTTGCTGATGGCGTCTTGAGCATTCGGCAGAGTGCCCACAGGCGTGGTCAGCTTCTGTCCTTTGGCTTCTTGATGGTTTAAGGCAGTTGACGTTTTTGACGTATCCGTTGTCGTGTTGGTTGACGTATTGGTCGTCTGCGCCGTGTCCGTGTCAGCCAAGACTGCTTGGCTGCCCAGGCCACTGGTCAGCAGGGTCAAAGCTGCCACAGAAAGCAGGGTAAGATACTTTGACTTTTTCATAATTCCCTCCGATATCTAACAGGTGCTCAGGCGCTTCATCAAGCGCGGCATATAAGCAGAAATTTGCGTTGGCCGCACCAGGTAGGAAGACTGGTAAAGGTCGTCCCCTGCCCTTGAGTGGCAGTAAACTGCTGCTAAAACGCTGGTCAGCTTGGGGCCAAACTGGCCAAGAAAAGCGGCAATAATTCCAGCTAAAGTATCGCCCATTCCGCCCGTAGCCATTCCAGGGTTGCCGGCTGAATTGCGGTAGATTTCACCTGTAAAAGCATATACTCGCGTTCGATGTGCCTTCAAGACTAGTATAACACTTTTCATTTTGCCAGAGAACAAACGCGAAAGAGCCGCTTGGTTGGCCTGGTCTTCCTGGTCAGCAATCTTGATCCCGCTCAGCCTCTGCCACTCCATCTGGTGGGGAGTCAGAATGACCAGGCCGGCCTGGAGATTTCTCAGCAGGTCAGGCTTTTGGCTGAGCAAGTCTAAAGCGCTGGCGTCAAAAACAATAGTCTGGTCAGAACCTGCATGCTGGCAGACTGCTTCTAAAATTTCCCAGGCTTTTTCCTCCAGGCCCAGACCAGGCCCGCACAAAATTACATTAGACCGGGAAATCTGCTCAGCCAGATCTAAATTGTAGTCAAGCACGGCTGCTTCTGGCAGGCGGGCGTGGAGGGCGGCAAAATTGACCGGGTCGGTCGCTACCGTCGTCAGACCCGCCCCGGAGTAAACCGCGGCTTCGGCGGCCATGCTGATGGCTCCGCCATACTGGTGATTTCCGCCAATTAGCAGGACCCGGCCGTAATTGCCCTTGTGGCTTTCAGCCGGCCGGGGGCGGACCACCTGCCGGGCTAAATCTTCATCAATGCTTTTCATCTTACTTGCTGCCAAAGATGCTCCGCCACAAACGGACGAAGAAGTTGGCCTCCTGGTTGTCCTGAGTTGCCACAGCTGGGGCAGTCACCGTCTTGCCGCTAAGAGATGGCAATTTACCGCTAGTGGCTGAGAACTTGTAGCTGGCCACCTTGCTCCCCTTCTTTACAGGGGCAGAAACAGCAGTCTTGGATAAAGAAGTCTGCAGCTTGCTGCCCTGCTTGGCCCAGATAGTCACCGTCTTGCCCAAAACAACCTTGCTGCTGGTTTCCTTGCCTTCTGGCACCTTGACCGTGTTGGCCCCGCTGATGCTGGACCCCTTCTTCAAGGTTATGGCCGTGTAGTTTTGGTAGACATAGTGCATCAATTTGGCCGTCTGCACGAAACGGGACGGGTCCTGGCTGTTTGCGTGCTTGGCGCCCAAAACCACAGTGATGATCCGGTGGCCGTTTTTCTTCACAGTCCCGGCAAAGCAGGCACCGGCCTTGTCAGTCGTCCCGGTCTTCAAACCGTCAACTGGCAGGTCAGAGTAGTAGCTGCTCAGCCCTTTCAGCATCCAGTTCCAGTTGGTCATCTGGCTTTGCGTTGAACCGGATGAGAAGGTAGCGCTGGTGATTGAAGTCGTCTGCAAGACTTCCGGGAAGTCCTTTAAGAGCTTCTGGCAGACGATGGCCATGTCAGTGGCTGACATCTCGTTTTCAACGTCCTTGCCCACGCCCGGGTAAGCAGCTGAGCCAAGGCTGCCATTAGCCAAGCCGCAGGCGTTGTAAATCTTGGCGTCCTTAATCCCCCAGCTGGTCAAAAGCTTCCGCATCTTTTTAATAAAAGTTACCTGGTCGCCGCTGACAGCCTGGGCCAGGGTCAAGGCTGCCCCGTTAGCGGATTCGATCAAAGTGGCCCGGTAAAGCTCCTTGATCGTGTAAGCATGGCCGCTAGTTAATGGCACATTGGAATACTCAGTGTTCTGGCTGATCTTGGCAATCGCGGCCGTCGGTTTAGCCGTGCTGGTCCAGGACAGCTTGCCCTGCTTGATGGCCTGCAGGGTCAGGTAAACTGTCACTAGCTTGGTCATGGAAGCAATCTGCCGCGGGGTCGTGGCATTCTTGGCATAAAGTATCTGCCCGCTGTCGGCATCAACGGCAATCGCGGCCTTGACGTCCAGGTTCAAGTCCTGCTGCTGATAGTTGGCGGTTGCCGCCGCAACCGGCGCGGCCTGCCAAGTACTTATTCCGGTCAGTAATAATCCACTGGCTGCCAGACTCAGCAGTGCCTTTTTGATCTTTTTTAACAAAGTCGCTCCTCTTTTCAAAAAAATTACGAAAATTTTGGATTAGCACTTCCATTTTACCAAATTTTTGCTATTATTAAATATGTGCTGAGGCACGAGATGCCCACTTGGCGGAATTGGCAGACGCGCAGCGTTCAGGTCGCTGTTCTGGCAACAGAGTGAAGGTTCGACTCCTTTAGTGGGCATGAATGAATAGCTGGGACATCCAGCATGGGAGTTTTAAGAGCTGACCTAAGGGTCGGCTCTTTTTTTTGCTTCCCCTGCCTTTTCAGCCTAGCAAAGTAATGGAAAACTGCTCCTAAGAAAAAGTAAATTTTTTCTAAAAAGGCAAAAAGAAGATCTCCCTCAAAAAAGGAGATCTTCTTTTGATGTTACTAGTTATGCTGGCTCTTAGTGAGAAGCACCTGAACTAGTGTCTGGTGCAGTTTCTGGAGATGATGCACTAGTAGTTGACTGAACTTGCAAAGCGTCAGCCTTGTCTTCTGAGCGACCAGATGCACCTGAAGCCGCGTCAATTTCCAAACCAAACTTTTCAGCAAAGTATGAGAATGGGTGCAGGGCTTCTGCGTGGTAGTACTTCACGAATTCTGGGTCATCCAGAGTGTTAAGTTCAGTTGAGTAAGCCATGTGCTTAGTGTACTTAACGTCGATGAAGGCCGGGCCGTCCATCTTCTTCCATTCTTCTACAGCGGCTTGGAATTCAGCCTTGTCGTGAACAGTGAAGGCCTTCATGTTCATACCTTCAGCAACCTTTGCCCAGTCGTTGTCTGGAATGATAACACCTGACAGAGGTTGGTTGGATTCGTCACGTTGTTCTGCTTCGATGTAACCCAAAGTTTCGTTAGTGAAGACAACAGTCAATACGTGCATGTTGTAGCGAGCCAAAGTAAGCAGTTCTTCGCTCATCATCGCGAAGCCACCGTCTCCGGTCAAGTGCTATACTCCACGGTCTGGCATAGCAGTTGCGGCTGCAATAGCAGCTGGTGAGCCGTAACCCATGCTTGCGTACAAGCCTGAAGTAGTCCAGCGTTGCTTGTCGTTCATGTTCAACAGACGTACGTGGTCCATGTTGACGTTACCAACGTCAATAGCGAAGACAGCGTTGTCTGCGGCTTCCTTGTTGATGACATCCCAGATTGGTTCTTGGCGTACGCGGCCTTCGTCCTTCAAGTGGTCGTCAGCAAGCCTTAGCACCGATACGGCCGATAGTCCCCAAGTATGGCTTGAAGCTGTCTTCAACGATACCCTTGCCCAGGTATGAAGACATCATTGGCATCTTGAACTTGTCAGCAAATTCCTTCAATTCGTCAGCAGCTGCTGAAGCACCCAAACCGAAGTAAACAACTGGGTTCTTAGCTTCCTTGATCAACTTAGTTGCGGCTTCAATTGATTCAGCAGTTGGAGCAGCGTAGTTGTCAGCAACGTGGTTGCTTGCGGAAACACGGTAGTTGTCTTCGATTTCTTGCCAACCGAAGTCCTTAGGAATTACCAAAACAGCTGGACCCTTCTTTGCGTAAGCTTGACGGATAGCAGTGTCCATCAAAACTGGCAAAGCTTCCTTGGTCTTGGCTTGGTGGACCCAAACGGCAACGTCACGGAACCATGGCATTTCGTCAAAGGCTTGGAAGAAGTTGATGTCTTGACGAGGAGTTGGAACATTGGCTACCAGGGCAACCATTGGGGTCTTGTCGTACTTAGCATCGTACAAGCCGTTCATCAAGTGGATGGCACCAGGGCCAGCTGAACCCATGCAGACACCAAGCTTGCCAGTAAGCTTGTATTCTGCTGAGGCAGCCAAGGATGCGGCTTCTTCATGACGAACTTCAATGAACTTAATCTTGTCTTGCATTTCATAGATCGCGTTCATGGTTGAGTCTAATGACCCGCCAGGGAAGCCGTAGAGGTGGTCAATGCCCCACTTGTACATAACATCTAAAACTGCGTTTGCACCCTTAATTTTTGCCATAAGTGAATCTCCTTACAATTAATTCCTTTAAAAGTTATTTACAGTAATAATTATAGGCTTCCTGTAAGCGTTACCAACATTGTGAAAGGATTAATTTTATCCAGCCTGGATATTGCCAGGACAATCTTCTGCTTTTTGCAAGCAAAAAACACTTCAAAATACTTCTATGAATATTAGGCAAAGTTTTATTAATGAAAGCATGCAAAAAGCGGATCGTCAGATCCGCCTTTTTTAAGCTTCTTCAAATTCGATGATGCTCTTGGTTGAGATGTAGGCTGGTGAAAATTCACCCCGGTTGTACTTCTCGACCTTCATGAAGCCGTCCTTGGATGAAAAGACGTATTCAGCCAGTTCTTCCAGGCTGGCAAACTGGTCAGTGTAGAAAGTCCCCTTTTCCGTAACCAGCTTCATCTTGCCGGCAAAAAGTTCCCGCCGCTTAGAGTAATTGTTGGTCCGGTTCTGGTTTTGGTAGCCGTTTCTCTGGTTGTTTCTGCGCTTGCCGTAATTGCCCCGGCCCCGCTTGTCGTCGTTAGTGCGCTTTCTAACAACAAATTGCTGGTCATTGGCCGGCTCATGGCTCTTTTCGGCCTTTTCCGCCGGCTTTGCTTCTTCCTTGACTTCTGTGTCAGCCTCCTCAGCCTTGTTTTCGGCTTCCTCGCTGTCATCAAAGGCAAAAGGCAATTCAACTTGCGGGTGTTCAGCCAACTTTTCCGTTGTCGGGCGCGGCGCCTTCTTGATAAAGCGCGGGCCAGCTGGCTTATCATCTTCTTTGACTTCTTCTGCAGCAGACTTTTCTTCTTCTACTACTTCTTTGACTTCTTCCTCTGCAGTAGTCTCTTCTTTGTTTTCATCCTCTACTTGGCTTGCTTGTTCTTGCTTTTCTTCCGTCTTTGCTGCTTCTACAACTTCTGCAGCTTCTACTTTGCCTTCAACTTCGGTAGTCTTTTCTTCTGCTTGCGTGGTCTTTTCTTCAGCCTTTGCTTCTTCTGCTCCGAAGTGGTCATTGATGTACTGGATGGCGCTCGGACCCCAGTATTTCTTGTTGTGGTTCTTTTCATCAACAAAGTCTGGCCTCAATTCCTTGTGTTCCCGCAAAAAAATCCGCAGCTTCTTCTTGCCCAGGCCAGTAGTTTACGCCAGGGCATTGATGTCCAGCAGGCCATTGTCGGTTGCCGGCGAAGCTGCCGACTTGGGCAGGACCTTGCCCAGTTCTTGGAAAATCTGCCCCACAGCTCGTTCATCATAAAATTTATTGCCGCTGGGGTCAGTCAAGGTCGGTTTGAGCTTGAACTTCATGTTGATCAGGTAGTAGACCTAGTAGACCTGCTGCTGGGAAACCTGTGCCAATTTTGCGATTTGATCCATTGAGTAGTATTGTTGTGCCATTTATCTGCTTTCCTCTTAACTTAAAGTGCCGCTTTTTACTAAAAAAATGATGACAATTCATTTTTAATTTTACGTCAAATTGGCATGAAATGCTTGATTTTTGCAATTATTCAACAAAAAAGCCGCTCCTTTTGGAGCGACTTATGGTCAAATCAATCTAATTACCATCCGTAGTCTTCAGTATCCTGCATCCCCAGGCCAGTAGCCTTGTCCAGCAGAATTCTTTGTTCAAAGTGCGCTACGTTGAACTTGGTTTCCTTAACCATGTCCGGGTTTACGGAAACGTAGTCAATCCCGCTCTTAACCAGGAATTCAGTGAAGTCTGGGTATTCTGAAGGTGCCTGCCCGCAGATAGATACGGTCTTGCCATACTTGTGGGCGGTCTTGATCAAGTGGCGGATTGCCCGCTTAACAGCCAGGTTGCGTTCGTCGTAGAGGGCGGAAACGGCATCGTTGTTCCGGTCAGTCCCCATGATCAGCATAGTTAAGTCGTTTGACCCGATTGAGTAGCCGTCAACGTACTTGTTGAACTTATCAGCCAAAATGATGTTGGATGGATTTCCGCCATCATGAAGACCTTGAAGTCACGGTTGCGCTCAAGCCCTTCATCAGCCATGATCTTAGTTACCTTTTCTGCTTCTTCAACAGTTCTGCAGAATGGGATCATGACATTCAGGTTCTTCAAGCCTAATTCGTTTCTAACCTTCTTGACTGCTTCCAGTTCCAGCTTGAAGGCTTCGATGTACTTCGGGTCGTAGTAGCGGCTTGCCCCGCGCCAGCCAAGCAGGTCAGCTGGTTCATGCGGTTCGTACTTGTCCCCGCCCTTCAAGTTCCGGTATTCGCTGGACTTGAAGTCAGAGAATCTCAAGACAACAGGTCTTGGGTTCATGGCCCGGCAGACCTTGCTGATCCCGTTAGCCAGTTAGTTGACAACCCGTTCTGGGTGGCCGGTTTCGATCAAGTAAAGCGGGTGCTGGTGGATGTAAGTGGTCCAGAGGAATTCTTCCCGCATCAAACCGATACCATCAGCTGGCAAAGTTGCGTACTTTTCAGCCAGGTCCGGGTCACCCAGGTTCATCATGACTCTGGTTGCCGTTGGCGGGAAGTATTCAGCTGCAGCCATTGGGGCAGTCTCAGCCTTCTTTGGCTTAACGACTTCGTCAGCCACCCCTTGGTAGACAACCCCGTTCTTAGCGTCAACCGTTACTTCCTGGCCGGGCTTCAGCAATCTGGTTGCAAAGGTCCCCCGGCTGGCAGTACCAACGATACATGGGATCTGCATTTGGATTTCGCCTTCCTTGAAGTCACCGATGTCCTTCGGGTCATCAATTACGTGCACGATACCTGAAGCTACACCAGGGCTGGCTGGCAGACCCTTGACCAAAACCTCCTTGTTGGAGCTTGGAGACTTAGCGTCAGTTGCTTCCTTTGCGCCGCCCTCCTTCTTTCTTTGTGACCAAACAGTTTCCGGCCGGGCTTGAACGAGCCAGAGCTTGTCGTCTTGGTCTCTGGATCATTCCATGTCCATGTAGCAGCCATAGTGCTTTTCAATTTGTTTAGCGTAGCCGGCAAGTTCAATAACTTCTTCATCAGTCAAACATGGACCCTTGGCCACGTCTTCTGGGACGTCTCTTTGTTCAAACCCGCCGCCTGGCAGACGGATCAATTCAATGTTCTTGTTGTTGATGGTCTTGCTTGCGATCTGCATGCTTTCCTTGTCAACTTCGAAGTTGTCCGGGGGAACCGTCCCTTGGACGATGTATTCACCCAAACCCCATGAACCTTAGATCATAACCTTGGTATCATCACCGTTGGCAACGTTGACCGTGAACATAACCCCGGCTGACTTGGAGAAGGCCATCATTTGGACAGCGGCTGACAGAGCCACCTTCTCTTGCGGGAACTTCTGCTTGATCCGGTAGTAGGTTGCCCGGTCAGTAAACAGGGAAGCGTAGCAGTCTTGGACCTTGCGGATAACGTCCTTGCGGCTTCTAACGTTAAGGTAAGTGTCTTGTTCCCCGGCGAATGAAGCGTCTGGCAGGTCTTCAGCCGTAGCACTTGAACGTACGGCAACGTATGGTTCGTTTTGTCCGGTCATCTTGGCCAGTTCGTCATATGAGTTGCCGATGTCTTCGGCTAAGTCTTCCGCCTCGCGCATGATCTTTCTGATCTGGCTGCAGACCCGGTGCAGTTCTTCTGAGTCTTCCGGGTCCTTCAAAGTTGCCAGCAAGGCATTTACCTTCTCGTTCAAGCCATTGACTTCCATGAAGTGCCGGTAGCCCGCATGCGGTCGTTGCGAAACCATAAGGCACTGGCACGTCAGTACCTGAAGTCAATTCACCCAATGATGATTTACCCCCAACCAGGGCCACGTCAGCGCGTCGCAGTTGGTTAAACCAAAGAACGTATGCATTTTCGCGTTCTTCTTCAGTCAATTCCTTCTTGTCGTTAACTTCCATTATTTTCACCTCATATCACTCGGCTTATAACCCCTTTCACTTTTCACTATTGATTATTGTCCTTTTGTGAAAAAAATGTCAACAGTTTCTTACAAGTTTTTGGGGGAATTTCCTGTAACCGTTTCCCTTGCTAAAATAACAATCTTACAAAAAGTCTTTTTTGTTAAAAGTCCGTCAACTATTGAATTGCTTTTATTCACAAGCTAAAAAATACTTTTATCAAAAAAACTGCTTCGTCCCTTACCGGACCTAGGCTTTTTGCAATTTTTTTCGCAAGATTTTCCCCATGAATAGACGTTTTGGACAAAAATGAAAACGGAAAAATACCCAAAAAGATCCTCCAAATGGAGGATCCTTAACTGGCTCTATTCTATTATCTGAACTTTTGCATGATCCGGGTCACCCGGCTGCCCAAAATGTTTTCAGCCAGGCCGGTCTTAAGACTCAAGACCCCGTAAACAAGCACGCCGACAGCTACCGCCAAGCCGCTGAGTAGCATGGCTGACAAGCGCTGGTAAGGGCTGAGGAAAAGGCCGCCCAGCTTAACGGCAACAAAGACCGCCGCGAACATCACTATGGAGAAGCTGGCAATCCCGATAAAGCGCCGCATGATCCGGTCAACCCGCCAACGGTATTTCACGCTAAGGTGCTTGAGGGACATGGCGATGACCGTCAAAAGGCCAAGGTTGGTCGCCAAAAGCGGACCATAGACCTTGAAAAGGCGGATCATCGGATACTGGACGATCGCTTTGATGACCAAACCAAAGATCAAGTAGCGGATAGCATACATGTTCTCGTCCAGACCCTGCAAGATGGCCATGAGGACCGTAAACATCCCCAAGCTGATGGCCGTAAAGGAGGACAGGTACAAGACATGGGCCCCCAGCCGGTCATAGCCGTAGAAAATGGTGTACAAGGGGTCTGAGATCGCGGCCATCCCCAGCGAAGCCGGCAATAAGACGAACAAGAAAAGTTCCAAGGTATTGCCGATCTGCCGGGAAATATCCCGGTAGTCCCTTCTGGCGTGGGCCCCTGACAAGAGCGGAATAGCCGTAACCGCCATGGCCGTTGACAGGGAGACCACGATCATGATCAGCTTGTTGGCGTTCAAACCGAACAAGGCATACCAGATTTCGATCGCGTCATAAGGCACGTGCATGAAGCTGGCGATCATCGGGTGGAAGGTATACTGGTCCACCAGCTGAAAGATGTTGATCCCGGAGTCAATGATGATGAAGGGGATCGACTGCTGGATGATTTCAAAGAGCAGGCTGTTGGTTGAAACCTGCACCTGGTTGTTGGACTGGGCAATCAAAGGATCAACCGTCCGCTTCTGCCTAAGGTAAAAAATTACCAGCAGGCCAATACCGAACACGGCCCCGATCGCGGCGGCCAGGTTGGACTGGGTTACCGCGTCGACATAGTTGCCGTGCTGGACCCGCATGATCACATAAGCCGTCAAAAGCATCCAGATCACCCGGGCCAGCTGTTCCACGAACTGGGATATGGCACTGGGCATCATGTCGTTGAAGCCCTGGAAATAGCCCCGCAGGATACTCAAGATCGGAATGATCAAAACGGCCAAAGCCAGGCACCGGATCACCGGTACTTCCTGAGGGTTAAAGCCGGACAGCGGCAATGCCAAAAAGTACATGCAGGCCGCTGAGATAATCCCGAAGACCCCCATTAAGGCCAGGCCGTGCCTGAAGAGCTTGCGGCCGACCCCGTACTCATTCAGGGCATTGTACTTGGCGATCTGCTTGGCGATCGCCCCTGGAATGCCCGCGGTGGAGATGATAATGAACATGCTATAGATGTTGTAGCTCTTCGCCGTCAGAGAGTTGGCCAAGTTGCCATACTTTCCCATCCAGGCATACCAAGGGATGATATAGATCGCCCCGAGAATCCGCGACAGGATCGAGCCAATAGTCATCCAGGCCGAGCCCTTTAACAACTGGGCCTGGGAGTTGGTCTGTGATTTGTTCTTTGCCATAAAACTTCCCTAATCTTTATACTTCAACCTACTATCATATTCCTGATCCAGTTTGAAATATACCATAAATTAATTTTTTAGGAAAATTTTAGATTTATTTGGCAACAATGTTCACGATCTTGTTTGGCACGACAATGACCTTCTTGATCTCCTTGCCTTCCAAAAATTCCTTTACGTGCGTCAGAGCGGTTGCGGCAGCTTGGGCTTCTTCTCTGCTTGCGTCCTTGGCTATTTGGAAGTTGCCCCGCTTCTTGCCGTTGACCGTAACCGCCATTTCAACCGTGCTTTCAACCAGCTTGCTTGCGTCGTAAGTTGGCCAGGCAGCAAACTGCACGCTTTCGTCGTGGCCGAAGACATGCCAGATTTCTTCCATCATGTGCGGAGCAACCGGAGCCATCAGCTTCACGAAGCCTTCAGCGTATTCCCGCGGAATCTTGTCGACCTTTTGGCAGGCGTTCATGAAGACCATCATTTGGGAAATAGCCGTGTTGAAGCGCAGTTCTTCAAAGTGTTCCGTAACAGTCTTGACCGTTTCATTGTAGATCTTGTCCAGCTTGCCGTCGTTTTTGTCAGTGATCTTTTCAGATGGGATCGGATCCAGGTCTAAGTCATTGACAAAAGTCCGCCATACCCGGTCAAGGAACTTCTTAACACCGGAAGGACCGTTGTCATCCCAGTCAATAGACGCGTTCAAAGGCCCCATGAACATTTCGTAAGTCCGCAGGCTGTCGGCACCGTATTCGTCAACGACGTCGTCTGGGTTAACCACGTTGCCCCGGGACTTGGACATCTTTTCATGGTTCTTCAAGATCAAGCCCTGGTTGTAGAGCTTTTGGAACGGTTCCTTGGTTGGAACGACGCCCAAGTCGTAAAGAACCTTGTGCCAGAATCTAGCGTAAAGCAGGTGCAAGGTCGCGTGTTCTGCCCCGCCGATGTAAAGGTCAACTGGCATCCACTTCTTCAAGAGTTCCGGGTCAGCCAGGGCCTTGTCGTTGTGCGGGTCAATGTAGCGCAGGAAGTACCAGCTTGAACCAGCCCATTGGGGCATGGTGTTGGTTTCCCGCTTGCCCTTCCGGCCGTTTTCGTCAACAACGTTGACCCAGTCAGTCAAGTTGGCCAGCGGACTTTCCGGAGTGCCGGACGGCTTGATGTTGCTTTCCTTAGGCAGGCGCAGCGGCAGTTCGTCTTCTGGCACCAAAGTGGTTTCCCCGTCTTCCCAGTGGATGACCGGGATTGGTTCACCCCAGTAGCGCTGACGGGAGAAGTTCCAGTCCCGCATCTTGTAGTTGACCTTCTTTTCGCCGACGCCCTTTTCAGTCAGCCAGTCAACCATCTTGGCCTTGGCTTCTTCATTGTGCAGGCCGTTCAAAAAGTCTGAGTTGACGTGGACCCCGTCACCGGCAAAGGCTTCCTTGCTGATGTCGCCGCCTTCAACGACTTCCTTGATTGGCAGGTCGAACTTAGTGGCAAAAGCGTAGTCTCTTTCGTCATGGGCTGGAACGGCCATAACTGCCCCGGTCCCGTAAGTTGCCAAAACGTAGTCAGAAATCCAGACTGGCACTTCTTCCCCGTTAACCGGGTTGATAGCGTAAGCACCAGTGAAGACCCCGGTCTTGTCCTTGTTCAAGTCAGTTCTTTCCAGGTCAGACTTGGATTCAATGGACTTGATGTAGGCGTCAACGGCTTCCTTTTGCTCTGGACTGGTGATTTCCTTAACCAGTTCGTTTTCCGGGGCCAAAACCGTGTATGAGCAGCCAAAGAGGGTGTCCGGCCGGGTAGTGAAGACGGCAAAGCTCTTGTCTGAGTCCTTGATCTTGAAGGTTACCTGGGCCCCAACTGAGCGGCCGATCCAGTTTCTTTGCATTTCCTTGATCGGTTCTGGCCAGTCCAAGTCGTCCAGGTCGTCCAGCAAACGGTCAGCATAAGCAGTGATCTTCAGCATCCATTGCCGCATCTTGCGCCGGTAAACCGGGTAGCCGCCCCGTTCAGTCTTGCCGTCGATAACTTCTTCGTTAGCGACAACCGTGCCCAGGTCTGGTGACCAGTTAACCGGTACTTCAGCTTCATAGGCCAGGCCCATCTTGTACATTTGTTCAAAAATCCACTGGGTCCACTTGTAGTAGTTCGGGTCAGTAGTCTTGATTTCCCGGTCCCAGTCATAGGAGAAGCCCAAAGCTTGCAGCTGCTTCTTGAAGTGGGCAATGTTTTCGTCGGTGAAAGTTGCCGGGTCGTTACCAGTTTGCAGGGCGTATTGTTCTGCCGGCAGACCGAAGGCATCCCAACCCATTGGGTGCAAGACATTGTAGCCTTGGGCCCGCTTCATTCTGGCCATGATGTCAGTAGCGGTGTAACCTTCCGGGTGACCAACGTGCAGGCCCTTGCCAGATGGGTAAGGGAACATGTCAAGAACGTAGTACTTTGGCTTTTCCGGGTCAGTCCCGGTCTTAAAAGTCTTGTTTTCCAGCCAGTACTTTTGCCACTTCTTTTCGACAACTTTATGGTTGTACATCTGATAAATCCTTTCCTAAAACCTTTCCTAAAAACAAAAAGCGCCCTATGTTCAAACATAGGACGAATTGTTTCGCGGTACCACCTAAGTTCCACGCTTTCGCGTGACACTCAAATGTTTCTTAAAGCGAAACAACACTTTGGCATTGTCCGGGTGAGTTCAAAATTCCTCTTTCAAGCCTCGCAGCCACCGGCTCTTCTCTGAAGAAAGAAAAATTTCTACTAGTCCCTGCCCTTTATTATTTTCTCGATAACGATTATACTTTACCACATGGCTAAAATTTTACAAGGGAGAAAAATTAAAAACAATTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTCGTAGATTTTGACTATCTACGCCCGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACGGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAATAACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATTCCTTCATAACGATAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTTGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGACTCTAGGACTACGTTCATCGATGCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCAAAGTCAACGTAGTTATACAGTGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCGATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTAGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCTCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATATGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGTTTTTTCTTACTGGATCGGAACAGTGTTCAGTTTGATTTTACAATCGGCGATTAAAAACAATTGAATACGAAAGAAAATAAAGTTAATTATCAGCCGCTTTTAATTTTTGGCGGTGCCTTCAGCCTCTTTTTTGCTTTTTGGGTTTACCTGATTGCCAGCAAGAATCCCTTTATCAAGTCTTTTGATACGGTAGTCTACAATGCAATCAGAAACAACAATCCTGTCGAAAGGCAGCTGGCCTTTTACTGGACCCAGCTGGGCAATACCTTGACGATCACAGTCTTTACCGTGGTCCTGGTTCTTTTCCTGGTCTACCAGCGAAACTATATCCACGCAGTTTTTGCCAGCTTAACCATGATCGCGGCAAACGCCTGCAACTCAATTATCAAAAATATCATCCAGCGCCAGAGGCCCCGGATGGACAAGGCGGTTCACGCCGATGGCTTCTCCTTCCCGTCCGGCCACTCGGTCGGTTCCATGACCCTGGCCCTGGTCTTGATCGCCTTGATCGTCGTCTTGGTGAAAAAGAAGCCAGTCAAGACCTGGTTGATCGTCTTCTGCGTCTTCTTCACCCTGTCGATTGGATTTACCAGAATGTACTTGCACGTCCACTGGCCAAGCGACGTCTTAGGGGGCTGGTGCGAGGGCCTGGCCTTCAGTTCATTGGCTAGCTGGCTCTTTTTCAAAGCCTTGGACAAAAAGAATAAACTAAATCCTTAATAAAAAATCTGCTCACATGCCGTGAGCAGATTTTTGTTTGCGTTCATATTTTAACTAGTCCTTCTTTTGCCGGTAGATATGGTTGAAGACCAAGGACAAAAGCAAGGCAATCAGAGAAACGATGTAGATCCCCCGCATGGATGAATGCAGGATCTCCCGCAGAGGGGCCAAAACGGCCGGATCCAGGCTTTTAGCCTGGACTGGGGAGACAATCTTGTTCATCATCTCGCTGGTCAAGGAAGGCTGCTTTTTGAGCCCGCTGGCCACGACCACGTTGAAGGTCATCCCGTAGAAGACCATCATGACAGTTTGACCCAAGTACTTCATCAGAGTGTTAAAGGAAGTTGCCACCCCTACCTGGCTCTTGTCAACCACCATCTGGGCCCGGACCTGGCTGGCCGTGGCAATACTGCCGAAGCCAATCCCGTTGAAGACGGCGATCAGGCAGAAGACCCAAAATGGCGTGTAGGTCGGAATCAGGATGAAGGCCAGGTCTGCCCCAATTAAGAGAAAAAGTGACGCGTCAAAGTACTTCTGCGTCCTACACCGGCCCATAAGGTCACCGGCTAAAAAGGATCCGCAGACCCACAAAAGGGAGCTTGGCGTAATGGCGAAGCCGGCGATTGAAGCGCTGACCCCATTGATCCCCTGCAGCCAGGTCGGGATGTAGAATTCAAAGCCGATCACGACCCCGGAAACCAGGAGCTGCAAGATGTTGACCGCCAAAAATTCCTTGTCTTTTAAGATGCTGAAAGGAATAATCGGGTCAGCGGCTGTTTTTTCCACCTTGGTAAAGGCCCAGAGGCTGACCAGCATAATTGCTGCTAAAAGCAGCAGAGTCCAGTTAAATCCTTTTTCCAGCCCCTGCAAAAGCAGCATTAGGGATAAAAGGAAGATAACCAGGCTAAAGCTGCCCTTGAGGTCGATCTGTAATTTATTTTTAGCAAAATCTTCATGCAGGTAAAAGGCAACCAGCAAAAAGGCGAGCAAGCCGATCGGCACATTGATCATAAAGACCCAGTGCCAGGACAGCTTTTGGACGATAAAACCGCCCAAAAGCGGGGCGATAACCGAAGCCAGGCCCCAGAAGCCCGAAGTCAAGCCCAGCATTTTAGCCCGCTTGTCAATATCATACATGTCCGCTAAAACCGTCACCCCGGCTGTCTGGATAGCCCCTGAACCAAGCCCCTGCAGGACCCGGAAGATGATCAATTCCACCATCGAGTGCGAGAAGCCGCAGAGGGCTGACCCGATCACGAAGAGTCCAATGCCAAATAAAAAAACTGGCTTGCGTCCTACGCTATCAGCCAGTTTCCCATAAATCGGCGTTGAGACTGCCGTCATCAGCAGAAAGACAGACACCACCCAGCTCATGATTGCCAGCCCGTCCAAATCGGCGATAATGGTTGGCATCGCGGTCGACACAATCGTGCCTTCGATCGCGGACATAAAAGTGGTGATAAAGACAGCGAGCGTGACCATTTTCACGTTTGTTTTCTTCATTCTTTTCCCCAACGAAATTTATGTTACGTTAATGTCTTACGTGTATTCAATTGTAAAAAATATTACTTGTGGCCATTAACAAAAGCCTGGAGGGCTTCCGCCTTGTCGGTCTTTTCCCAAGGCAGGTCGACGTCAGTGCGGCCAAAGTGGCCATATGCAGCCGTCTGCTTGTAGATTGGCCGGCGCAGGTCCAGCATCTTGATGATCCCGGCTGGGCGCAAGTCAAAATTGGCCCGGACAGCTTCAGTCAAAAGCTGGTCGCTCACCTTGCCGGTCTCGGCAGTATCAATCATGATGGAAACCGGGTGGGCCACCCCTATGGCGTAGGCCAGCTGGACTTCACAGCGGTCAGCCAGGCCAGCGGCGACAATGTTCTTAGCCACGTAGCGGGCAGCGTATGAGGCGCTTCGGTCGACCTTGGTGGCGTCCTTGCCGCTGAAGGCACCGCCGCCGTGGCGGGCATAGCCGCCGTAAGTATCGACGATGATCTTGCGGCCAGTCAGACCGGCGTCCCCCTTCGGCCCCCCGATAACGAAGCGGCCGGATGGGTTAATCAGGTACTTGGTCTCGTCATCCAAGAACTTATCTGGAATGACTTCCTTGATCACGTCGTTGACCATGGCCACCCGGATCTCTTCATTAGTCACGTCAGGGCTGGTTTGGGTTGAAATAACGACCGTGTCCACCCGCTTAGGCTTGCCGGCGTCATCGTATTCCACCGTGACCTGGGCCTTGGCATCTGGCCGCAGCCAGGGGAAGGTCCCCTCTTTTCTCAGCTGGGCCACTTTGCGCATCAAGCGGTGGGCCAGGGAAATCGGCAAAGGCATCAGTTCCGGCGTTTCGTTGATGGCGAAACCAAACATGAGCCCCTGGTCACCAGCCCCAATCTGGTCGAGTTCATCGCTGTCGTCTTCTCCCCGGACTTCCAGGGCTTCATCAACCCCGCCGGCGATGTCAGGCGACTGCTTGTCCAGCGCTACTAAAACGGCGCAGTTGTCGGCGTCAAAGCCCAGGTCTGGGTCATTGTAGCCGATCTCGCGGATCGTCTTGCGCGCGACCTGCTGGTAGTCAACATTAGCCGTAGTCGAGATTTCCCCGAAGAGCAAGACCAAACCGGTGGTTACAGAAGTCTCACAGGCCACGTGGGCTTGCGGATCCTGGGCGAGTACCGCGTCCAGGATGGCATCGGAGATCTGGTCAGCGACCTTGTCCGGGTGTCCTTCTGAAACTGATTCTGACGTAAATAAGTGCTTTTCCATCTATATGTGTCCCCCTATAGACTAGCTACACGGTTACAAGGCATCTTCACCAATTTGGTGAATCCTATCAGGACTTGTAACAAATAACATTTTAAGCATGTTCAGTTTTTTGTAAAAAAAAAGATTACCGTCCGGTAACCCGTCCGGTAACCTTCTGAACATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCATATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCTTTTCGTAAGCACGTTTACTAGTATACAGCAATTCCCGGTCAATGCAAGCTTTTTTCGGGAAAAAGTTTTCAGAAAAAATAGAAAAGATTAAAGAATAGACGAAAACAAAAAACCACGACCAAGTCGTGGTTTGCTTATAGCGGCGGGGGGAATCGAACCCTCGACCTCCCGGGTATGAACCGGACGCTCTAGCCAGCTGAGCTACACCGCCATAAAACGGAGTGTGAGGGATTTGAACCCTCGATACAGGTATTTACCCGTATACATGATTTCCAATCATGCTCCTTCAGCCGCTCGGACAACACTCCATATTAAACTCCGCCTGTCAGACTCGAACTGACGACATCCTGATTAACAGTCAAGCGCTCTACCAACTGAGCTAAGGCGGAATGTTGAGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTATTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGTGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAACTTGGCCTTCCGGCCAATGGAGGCAAACGGGATCGAACCGATGACCTCCTGCTTGCAAAGCAGGTGCTCTCCCAGCTGAGCTATGCCCCCGTAAAATATCAACTTTTAAGATGTTACTCCATCTCGGCTGAAATGTAAAGACTTTTCTTTGCATTTCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCCGAGCTACAGGCCCAAGTTCTTATCGTTGGTACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCCGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCGCAGGATGTCAAGGCCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTGCGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTACGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGACTTCTTGTCAACAGCTTCCTGATATTTTCTTTTTGGCCTCCGCGAGACTTGCTTGTCTCACGCGGCAACAAACATTAGTATACTAGCTTTTTCTGATTCGTCAAATTTGCTTTTTCATTCGTTTTATGATTGGCGCACCCGGACGAGTTGTGATTGATAGTTTTCTGCTTATATTCCACTTTTCTGCTTTTCGCTGAAAAATAATCTTTGCCTGGAAAAGATAGTTCGATTTTCGCCTTTTTTTCGGCTTTAAAATTCTGTAACAAGTTTTTTGCTTTTTTCGTTTCGCTTCTTAATTAATTTTGCCGGCGTTCTATGGTAAAGTGGTTTTAGTATATTTTCGAAAGGAGATCTCGCTTATCAAACAATATGATCTTGCCGTGATTGGCGCTGGACCAGTCGGCCTCTTCGCGGCCTACTTCGCACACCTGCATGGCTTAAAGACAGTTATCCTTGAATCCTTGAACGAGCCTGGCGGACAGCCAGAAATGCTCTACCCCTTCAAGAAGATCCTGGACATCCCTGTCTTCAATGAAATCACCGCGGCTGACTTAACCAAGCGCCTCTTAGCCAACTTAACCGACCAGGACCTGGTCACTGGCCACAAGGTCAGCCAGCTGGAGAAAACTGACGAATTTGTGATCGATGGCGAATACCAGGTCCGCAGCATTATCGTCGCAACTGGCAACGGGGCCTTTAAGGCCAAAAAGTTCCCCCTCAAGGCGACCCCGGAAGCTGAAGACCACATCCACTACTTTTTCAAAAATCCTGACCTCTTTGCTGGCCAGAAGATCGGCATCTTTGGCGGCGGAGACACGGCCTTAGACTGGGCCCAGGAACTTTCCCAAATCGCTGACGTCACCCTCGTTCACCGGCGCGACCAGTTCCGGGGCATGGAAAGCAGCGTGGAAAACTTGAAGGCTGACCAAAAGGTGACCTTGAAGACCCCCTACCTGCCAAAGAGCATGCAGGTCGAAAAGGGCCAGCTGGAAATTTCCTTGAAAATGGTTGGCGGAGATGAAGTCACTCAAGAAACTTTTGACCAGATCCTGGTCGCCTACGGCTTCCGGGCCGACAACCGCTTCGTCAGCAAGTGGGGGGTTGACCTGGACCAGGGCTTGATCGCCGTTGACCGGTCCATGCAGACCAGCGTGCCTGGCATCTATGCCATTGGCGACTCCTGCGGCTACCCGGGCCGGGTGCCAGTTATCGGGATTGGTTTTGGGGAAGCCCAGATCGCGGTCAACGCGATTATGCAGGACCTCTTCCCGGAAAAGAGCCTGACCATCCACTCAACCAGTATCTAGCGGAAAAAAGAAAAATAAGAAATGAGGTTAACACATGCCACTGATTGACTTTATCCTGCACATCGATGACCACTTGGTGACCATCGTCAACAACTTTGGGGCAGGAACCTATTGGATCATTTTTGCCATCATCTTTATCGAAACCGGTTTGGTCATCTTCCCCTTCCTGCCAGGTGATTCCTTGATCTTCGCGGCAGCCGCCATGGCCGCCAACCCGAAATACGGTTTAAATGTCTGGCTGCTCTACATCGTTGCTGCCGCTGCCGCCATTATCGGTGACAGCATCAACTATGAAATCGGCAAGTGGTCAGTAACTTCCGGGGCTAAGCACAGCTGGTTCAACAAGCTGATCAATGAAAACGACCGGCTGGCAGCGGAAAAGTTCTTTGAAAGACATGGCTCCATCACCATCGTGATCGGCCGTTTCATCCCCTTCATCCGGACCTTCGTGCCTTTCATTTCCGGGGGCAGCAAGATGCACTACCAAACCTTCGTTATTTACAACATCCTGGGTGGCCTGCTCTGGACGGCCCTCTTTACCAGCATCGGCTACTTCTTCGGCAACTTCCCAGTCGTCAAGGGCCACTTCTCCTTGATCGTGATCGGCATCATCCTGGTTTCAGTCGTGCCTATCCTGGTCGTGGCCTTGAAGAAAAAGCTCACCATGCGGCGCGAGCAGCACTTCAATGATTAAAACAAAGCAAAAAATAAGGACCTGCCGGTCCTTATTTTTTTGGTCTAAATTCTGTTTAAGTACTTTCCAGTTTACTTTTTCAGCAAATAGCGGGCCAGGTAGAGCTCGTAAATCGCTCCGCCAACCGCAAAGCAGGAGGCAAAGAAGCCTTCCGTCAGCACGTTGATGACCGGGTCAGTCGCCGGGTCAAAGAGCCAGTTGTCATTGCGGAAAAAGAAAGTATGAAAGACCCGGAAGAAACTGCCAAAGTCGGTCAAGGCAAAAGGCATGACCACAATTGGCAGCAGCATCAAGAGCAAGGCCTGGGTCTGGGTCAATTTAAGCGGCTTCTTGTAATTGCGGAAATAGCTGCTGAGAGCCAGGCAGAGCAGGAAAACCAGCTCGGCCAGAATAAAAAGATTTTTGACATCGGCAAAGTGAGCAGCCGCTAAAGCCGAAGTCGGCAGGTTGCTCATCTGCAGCTTGGTCTGCCCAGGCCAAACCAGGTAAAGCAGGAGCTGGTTATAGTTGCTCATGACCTGGCCCACGGTCAAGTTAACCGTTTGGTAAGTCTTCTCCAGCAAGGTAAAAAGCAAAAGCAAGGGCCAGCTGACTACGATCGCGCCAACGACAGCGCTGGAGACCGCGAAAAAGAAATGGAAAAGGGGCTGGCCCAGCTTGCTTAGGAATTTTTTCATAGGCTAAATTCATCCAAATCGTTCACTAAATAAGTCGGCGGAGTGAGACCGGCCAGGTCTGCCTTTTGCGTCACCCCGGTCAAGGTCAAGAGGGTGTCGACTCCGCTGTTGATTCCGGCCATAATGTCAGTTGGGTAATTGTCCCCGACAATCAAGGCCTCTTCCGCCTTGACCCCAGCCAAGTCCAGGGCGCGGTTGACAATAATGGCTTCCGGCTTGCCGATAAAAAGGGGCTTTTGCCCGGACGCGACTTCCAGAGCCGCGCAAATTGAACCGTTGCCTGGCCGCAGCTCCTTGCCCACCGGCAGGTTCTGGTCGGAATTGGTGCCGATAAAGACCGCTCCCCGGTGAATGCAGCGGGTGGCAACCATGAGCTTGTGGTAGGTCAAGTCTGTGTCCATCCCCACTATCACGTAGTCAGGATTTTCCTCGTCATAATAGAATTCCGGCCGGTCCAGGATCTCCTTCCACAGGCCAATTTGGCCAATGATGTAGACGCCGATTGGCCTTTTCGCCTCTTTTTCCAAAATATAGCTGGCCGTGGCCATGCTGGGCGTGTAGATCTTGGAAACGTCGGTCTTGACTCCGTGCCCGGCCAGTTTGTCAGCTACCATCTGGGGCGTCCGGGTCGTGTTGTTGGTCAAAAATAAGTAATCAAGACCTGCCTCATCCAGGCGCTTGACAAAGCGGACGCCGGATTCAATGGTATCCTTGCCCCGGTAAATGGTCCCGTCCAAATCAATCAAAAATAAGCGGTAATCTTTCACGGCTTCTTCTTTCTAATCACAAAGGCCTGGTGGCGGCGGTTCTTCTTGCAGCTTTCAGCATAGCTGCCCTTCTTGGGACGGCCGCCCTTGACCTTTCTTTCGCTAAAAGCCGCCTTGTTCTTCGGCCGCTTTCTGGCTGGCCGCCGGCGCTGGGTAGGCCAGGGCTTACGGCTGGGCTGGAGGGATTCCAGGATAAAGTAAGGCGCGCCAGGGTTGCAGTATTCAGTCAAGTAGTCAACAATCGTCGACTTTTTCCGGTCAATGGATGTCTTGACATAGTCATTGTAAAAGCCCCTGAGGCGGAGGTGGTCGCTGGATACATCCCCGACCAGATAATCATACTGGTCCAGGTATGGATCGTACTTTTGCTTCAAAACTTCCCGGTCTAAAGCATCCCGCTGGTTGACCAAAAGGCGGTATTCCCGCTGATTGATCACGACCTTTTCACCGGCAACCACCACCTCTGCCAGGGGGTGAAGGGGCTTAGCTTCAGCTGCCTCTGTTTTCTGCTCTTTTTTCGGCTCTTTCTGCTCTTTCCTCAATAAATTCACCTTCTTTTTTCATAGGATACTTGCGGCCTAAGTAGTCGCCTACGACTTCCCTTAAAAACTGCGGGAAGAGGAATTCATTTTCACCGACAATGGCCAAAGTCGGGAAAAACGGGATCAGGACATAGTGGTCCAAAACGGCGATCCGGTATTCTTCCGCCGGGTCCAGCAATTGCCCGTTGACGAAAACGTTCCTGGTCATTGGGTCATACTTGATCCCCCTGTAGTAGACCTGGCCAAAAATCTTCCCTCTAAAGCTCATCCCCACCAGAGGATAATTTTCCAAAAAGTGCCGGTTCTTTTCCACTTCCATGACCAGCCGCCACAAGTCCCGGCCTAAAAGGGTAGTCCGGACGACATGCATCGTGTGCGGCAGGGCATGCTGGAGGTCAAACTGGTTGATGAGGCCTCCCTTAAATGGCGTCAAAAAGAGGCCGGTGCTCAGCATGGCCAGGTCGGTACCGGCAAAGTCAGCGATCGCTTCCAGGGAGACGTCGATCGCGGCCAGCTTGTCATCCTTGAACTTCTCTGGCAAGTCCGCCACATGCCGGCTCTGCAGCATCTTCTGCCCCTCTTCATATAAGGCGGCAATTTCTGCTTCGTCGCCCGCCTGACTTGGCAAATCAGCTACCGGCACGGTAGTTGGTTTAATCGAAATGATCTTGTGGTCATCGCCGATTTCCAGGCTGATGTCGCCGACATAATTGCCCCACTTGTCCGTCTGGGTGATCCAGGTGCGGCCTTCCTTGACCCCTTTTTCCAAAAGGGTGTGGCTGTGTCCGCCCACGATCAGGTCGATTTCCGGGTAGTGCTTGGCCAGCCACTGGTCCATTCTGAGGCCCACGTGAGTCAACAAAATCAAGCAGTCATACTGGCCGGCAATTTCCGGCAGGACCCGGTCCATAGTTTCGCCCAGCATCTTGATCTGCCAGTGGTTAGGACCGTATGTCATTGGATAAGCGGCCGTCAGACCCACCAAGGCCAGGCGGGTGCCCTTTTTGGTCTTGATAATCTTGTAGTCATTGGCCCAGGCCGGCCAGCTTTCGTCTTCTTCTCTGAGATTTGACAAGAGGACTGGGAAGTTGGCATGGTCAAAAAGCCGCTCCAAAACGGCATGCGGGTTGGAAATCCCCTCATTGTTGCCGATCGTGATGGCGTCATAGTGAAAGTCATTCATCAAGCGGATGTTGGCCTGGCCCTCTGTAGCATCAGACAAGGGATGGGACCGGTCCATGAAGTCGCCGGCGTCAAAAGTCAAAACCTGGTCGGCAGCCGCCGTTTCTTGCACCTGCTTCAAATAGCGCCTGATTTTTGGAAAATGCTCAAAGTGCGAGTGCAAGTCGTTGGTATGCAGAATCCGCAAAGTTTCCATTGTCTTCCTCCTAGCCGATCTTGTTGGCTTTCAAAACCATTTCGTAAGCATCCCTGACCGGGCCTTTAGGCTTGTCCCATTCCACCCATTGCGGGTTCTCCCAGTCTTCTTCGTTCATCAAAGTATGCAACTGGTAGGCCTTGTTAATGTACTGCTCGTAAGTTTCCAGCGCCTTGGTGCGCGGGATGTTGATGACCAGAATCCGCACGCTCTTGATTAAACCGTTGTTGACCGCCAGTTCCGCGAAGCCGTTTTGGTCGATGTTGGAAATTTCATAGTACTGACTGCCGTCGTTTCTGGTAATCTCTTCGATCAAATCGAATTGCTCGTATAAGTGATCCATTTGTGCCCCCCATTATCTTATAAAAAGATTGTAACACAAAGTTCAGCTGCCTTTGCCCGGGCGAAACTAAAAGAGCCCGCCGCTTGGCAGGCTCTTTCGAAAAATCTTACTTGTTCAAGGTACTTTGCTTCTTGATCAGTTCATATGGCAAAACGATGTGCTTGTCTTCCAAGCCTTCATCGTTCATCAGCTTGGTCAGCATTCTCATGGCCACGGCACCCAAGTCGTAGAGCGGCTGCTTGATCGTAGTCAAGGCTGGCCGGACAACTGAGGCGATCTGGGTCGCGCTGGCCGTAACGATTTCGAAGTCTTCCGGCACCTTAGCCCCGCGGTCCAGAGCTGAGTTGAGGAGGCCGACTGAGGAAACGTCCTTGGTGATGATGACCCCGTTGATCCCCTTCTTGGCCAGTTCCGGGTAAAGGTTGTAGCCGTCAGAGTAGTCCTTGATGTTGTCAAAAATCTCGCAGCCTTCCAGTTCATTGTCAGCCACGAACTTCTCAAAGGCCGGAATCCGGTGGTTCCGGTTGATCGGAGCTTCCTTGTCGCCCACGATCAAGGCCAGCTTCTTCTTGCCGTCGTTCAAAAGCAGGTTCAAAGCTTCCGTGTCGGCCTTCTTGTAGTCGATGTTGGCTGAAGGGAATTCTAGGTTGTCGGAAACAGTCCCGGCCAAAACGACTGGCGTGTCGGTCCGCTTGAAGGCTTCCGCTGCTTCTTCAGACAGCTTGTTGGACATGTAAATAACCCCGTCAACCTGCTTGTTGAGCAAGCCTTGAATGACGGCGTCTTCCTTCATCAAACGGTTTTCCACGCTGGAGATGATGATATTGTACTTGTACAAAACAGCAATGTCGTCGATCCCCTTTGACAATTCGGCAAAGTACAAGTTGGTCAGGTCCGGCACGATCAAGCCGACCGTTGTGGTCCGCTTTGAGGCCAGACCCTGCGCTACCGCGTTTGGTTGGTAGTGCAGACGCTTGATAACTTCCATGACCCGGTCACGGGTTTCCTTGCGGACATTGTTGTTGCCGTTGACTACCCGGGAAACCGTGGCCATAGAAACCTTGGCTTCCCGAGCAACATCGTAAATGGTTACATCTTGCTTATTCATAATAACAGCCCCACCTATCTAAATACTAATTACTGATTTAATGATACCATGAGAAATTTTTTGGTGCAATCGCTTACAGCTATTTTTTCAACTTTTTTCACTTTTTTTAGTGCTATACTGAGGTTAATTTCATTAGTAAGGAGAATTTTGCCATGAATTTAGACAAATTACAAAACTGGCTGCAGGAAAACGGGATGGACGTAGCCTACGTTTCCAGCCCGACTACCATCAACTATTTCACGGGTTTCATTACTGATCCTGAAGAAAGAATCTTCAAGCTTTTCGCCTTCAAGGACGCTGAACCCTTCCTCTTCTGCCCGGCCTTGAACTATGAAGAAGCCAAGACATCAGCTTGGGACGGGGACGTGGTCGGCTACCTGGACAGCGAAGACCCATGGGGCAAGATCGCTGAAGAAATCAAGCAGCGGAGCAAGGACTACCAAAACTGGGCTGTCGAAAAGAACGGCTTGACGGTTGCCCACTACCAGGCCCTGCACGCTCAATTCCCAGACTCCGACTTCTCCAAGGACTTGTCTGACTTCATCGCCCACATCCGCCTCTTCAAGACGGAAAGCGAACTGGTCAAGCTGCGCAAGGCCGGGGAAGAAGCTGACTTTGCCTTCCAGATCGGTTTTGAGGCCCTAAGAAATGGGGTTACCGAACGGGCCGTAGTCAGCCAGATTGAATACCAATTGAAGCTGCAAAAGGGCGTGATGCAGACCAGCTTTGATACCATCGTCCAGGCCGGCAAGAACGCGGCCAACCCGCACCAAGGCCCAAGCATGAACACGGTGCAGCCAAATGAACTGGTACTTTTTGACTTAGGGACCATGCACGAAGGCTACGCTTCTGACTCCAGCCGGACGGTCGCTTACGGGGAACCAACTGATAAGATGCGGGAAATCTACGAAGTCAACCGGACTGCCCAGCAAGCAGCCATCGACGCGGCTAAGCCAGGCATGACGGCCAGCGAACTTGACGGGGTAGCCCGCAAGATCATCACTGACGCCGGCTATGGTGAATACTTCATCCACCGCCTGGGCCACGGGATCGGGATGGAAGTCCATGAATTCCCGTCCATTGCTAACGGCAACGACGTCGTTTTGGAAGAAGGCATGTGCTTCTCCATTGAACCAGGGATCTACATCCCAGGCTTTGCCGGTGTCCGGATCGAAGACTGCGGGGTCCTCACCAAGGATGGCTTCAAGCCATTCACCCACACTAGCAAGGAATTGAAGGTTCTGCCAGTTAAGGAATAAGACTGAAAACAGAAAATGGCTTCTAGAAGTATCTCTCTTTTAGAAGCCTTTTTTTCGTATACAATTATACCTTACGAAGGTCGCGAATCAAGTAGTAGACGCCAATTAAAGTCAACAGCAAGAAGACATTCTGAAAATCATGATAGCCTTCCTTCATGACAAAAATGGCAAAAAACACGGCAGGCAGGATAGTCAAAATTATCCCCCGGTATTTTCTCAGCTTCAAAACAAAAGGATTATCTGATTTTCTGAAGGAAAAATACGTTACCATTAAGTAAATCAGAAAAAGGACCATGTTTGTTGTCGTCATGTGATTTATCCTCCTATGCAAATTTAGCAATCCGTTGATTACTAATTTCAAGCAACAATTTTAATTATTGAGCAAATAATACAACCCGTATTTTAATGGAAATCCAATTATTTAAAATTCCTAACGGCAACGACGTCGTTTTGGAAGAAGGCATGTGCTTCTCCATTGAACCAGGGATCTACATCCCAGGCTTTGCCGGGGTCCGGATCGAAGACTGCGGGGTCCTCACCAAGGAAGGCTTCAAGCCATTCACCCACACCAGCAAGGAATTGAAGGTTCTGCCAGTTAAGGAATAAAACTGAAAAAGCAAAAAAATGACGAGTCTTGCGGCTCGTCATTTTTTTATATTCGCGTTAACTATTCTTGATCTGGACTAGTCGGAGTGCTTGGTTCTTCCGGCTTCTCTTCCCCTTCTTCGCTCTTTTCAGCATTGTCCAGGTCGCTGGCGTCTTGTTCGCCGGCGCCGTTAGCTGAATCGTCGATTACGATGTCGTCGAAGTCCTTCAATTCAGAATCATCTTCAATGTTCTTTGGGAAAGAAGCCAGTTGGTTTTTCAAGATTTCTGTCCCGTTGTCGTACTTTTCCTTCAAGTCTTCAACGTTTGGATTGCTCTTGATCTTGTCCTTGACTTCTTTAAGCTTGTCGTCTGAGATCAGGCTGGCAGCTGCAACCCCAGCAGCAGCCCCAAAGACGGCCCCTAATAAAAAGCTACCAAATTTGCTCATGATTGTTCTCCTTTTCTTAATCCTAACCCTTCCGCCGGAAATGTCTGGCAAAAGCCGACGTAATTACGGAAGTGATCATTCCCGTCCGGGTAAAGTGGGCATTGGAAACCTTGTTGATCATCTTCTTGGATGATTCGTTGATGTCTGAGACGCTTTGGCCCAGGTCAGCGGCGGCCTGAACGACCGGCTGCAAAGTTTCCATCTTGCCATTGACGTCTTGCAAAAGCGCGTCTATCTTTTCCAAGAGTCCGCCGGTCTGCTTCATCAAGTCATCCATGTCTTCAGTCAGCTTGGCCATAGATTCATTGGTCAATTGGACTGTCTTCTCCGCCTCTTTCAAAGTCTTCGAAACATTAAGCAACATGGGAATCGTGAACAGGACCAGTACCAAAAAGGCAATGGCCGCAATCAAACCGGCTAAAGCGCCAAATGAAATTGTCATAGCTTACTTCCCCTTTCCTTTCTAAAAAAGTCTAGCATGAAAACGATTTAGACACAATCGAAAGATCTTCCGAAGTTTTTACCCGCTTTTCTGTTATCCTTTAAGCATAGCTGAAAGGAGCATTTTTTCAATGAAAAATCTTGATTTCAAAATTGCCGGCATCTCTGTCGACGTCGACAATCTTTTTACCAGCGGCGTGACCATCCTCTGGAAGCTGCTGATTTCGACCCTGGTCTTCTACCTGGTCAGCCATTTTGGCCGGAAAATTATCAAGCGCTACCTGGACAAGCACAACGACAAGCTTGTCCTCTCCAAAAGGTCCCAGACCATCTCAGCCTTGGTGAACAGCCTCTTCCACTACACCATGGTCTTCTTCTATGTCTACTCCATCTTAACCATCCTGGGCATCCCCGTCGGCACCTTGATTGCCAGTGCCGGGATCTTCTCTTTGGCCATCGGCCTTGGGGCCCAGGGCTTCATGAGCGACCTGGTCAACGGCTTCTTTATCCTCAGTGAAGGCCAGTACGATGTCGGCGACAATGTCGAGATCGGGACTGAAGCCGGGACCGTGACCCAGCTGGGCCTCAGAACCACCCAGATCGTCACCACTGACGGCACCTTGATCTTCATCCCCAACCGGCAGATTTCCATCGTCAGAAACCTGACCCACGGCGGGATTGGCCTTAACTTGGACCTGAACCTGGATGCAAATACCGACTTAAAGCAGCTGGCCAGCCTGCTTGACCAGGCTGATGAAGATCTGCTTGCCTGGCATGACAAACTAGTCAGCGGACCAACCCAGATCGGGGTCGTCGGCCAGCAGGGGCAGACAATCACCTACCGGGTCCACTTCCAAGTCAAGCCGGGCTTTGAAGGCAAAATCCGCCAGGCCTACTGGCAGACCTACCTGCAATACTTACGGGTCAACCAGGTCAAATTTGGCCAGGAACCGGTTATCATCAACAACAGTAAAAAAGCTTGATCTAAAAATGCTGGGCCGCGGCCCAGCATTTTTTTGACCTTAGTTGAATTGAGCGAGCCAAGCTGGCAGTTCTTCGATCAAAGCCTTGACTGCCTTGCCCCGGTGGGAGACTTCGTTCTTTTCTTCAGTGGTCATTTCGGCGAAAGTCTTGCCCTTGCTTGGTACGTAGAAGAGTGGGTCGTAGCCGAAGCCGTCCTTGCCGCGCGGAATTGCAAGAACTTCACCTTCGCAGGTGCCAGTTACAACCAAGTCCTTGTCTTCGTGGCCTGGCATGGTCAAAACAAGGGTAGTGACAAACTTGGCTTGGCGCTCGTCTTGCGGAACCCCGCCCAAGGCTGCCAAAAGCTTAGCGTTATTTCTAGCATCGTTGTGGGCCTCACCGCCGTAACGGGCTGAGTGTACGCCGGGAGCGCCGTTCAGTTTAGCAACCAGCAGGCCTGAGTCGTCAGCCAGAGTTGGCAGCTTACTATAGTCTGCCAAAGCGTGTGCCTTCAGCTTAGCATTAGCTTCAAAAGTCGTCCCCTTTTCGTTAACGTATGGCGGGTTGTCCAAATCTGCATTTGATTTAAGCTCAATGTCCAGACCAGCCTGCTTGAAAGCTTCTTGCAATTCCTTAACCTTGTTTTGATTATCTGTAGCAAACAATAGTACTTGAGTCATATGTTACTCCTATCATTTCAAAATATAAAAAATCTCTCTACTGAAATTTTACCACTTATTCAAGCCTTTTCGAACTTACAAAGAGAGTAATTTCTGCTATTTTCACCGCTTTTTCAGCCGGCAGGAACTTTTTTCTTTTTTTCGGCGATTTCCTAGCCTTTTTCTAAAACTTGTTAAAAAATTTCACCATCCTGTAATATTTACGGTAGAATTAAAATAGCGAATAAGGATGAGGATTATGTCAGAACACAACGAACACGTATACTTTGTCAATCAACTATACCGCGACTTCTTGTTGCCAACCATTTTAGGCGGGGACACGCCGGCAATTCTCTACTGGGCCGGCAAGCGGATCACCCGCAAATATGCCTTGAGTGAATTTGAAGACTTAAGCGAATTCTTCAAGATGGCTGAATTCGGCAATTTAACCATTGTCAAGGAGCGCCGTTCCTCAGTCATCTTCTCCTTGAGCGGGCAGCCAATTAGCGACCGCCTGGCCGCCGGCAGCCGGGAATTCTCCCTAGAAAGCGGAATGATCGCCGAAGCGGTTGAACAGAACCGGGGCCGGTCAGCTGAAGCCGAAATCGCCATCGACGACAAGAAAGAGACCGTTCAGATCACCGCCTTCTTCTAACAAGCAAATTCAGCAAGATAAAGAAAATACAAACGAAAAAGACCAGAGCCAATGGCTCTGGTCTTTTAACATGCTTATTTCTTAGTCAGCGTACTGGTCAAGAATTTCGTTCAGCTTTTCCTTTGGAGTGTAGCCAGTCAAGCGGTCAACCACTTGCCCATCCTTCTTGATCAAGAGGGTTGGGATGGACATGATGCCAAAGTTCTTGGCCGTTTCCGGGTTGTCGTCAACGTCCATCTTGGTGAAGTGCACGTCTTGTCTTTCTTCAGCCAAAGCTTCGATGACTGGTGACTGCATCCGGCAAGGACCGCACCAGGTTGCCCAAAAGTCAACCAGAACTAAGCCATCCTTGGTTTCTTCTTCAAAAGTTGCGTCAGTAATTTCATCTACCATGTAAATACCTCAAATTCGTTAATCTGAAAAACATTATTATCTACTTACTGCTTTAAGTTTACTAGACTTACTTACTTTTCGCAAGTAGATTGCCTACTTTAAGGTCACGATCGTGGCCCCGGTCCCGCCTTCATTGGCTGGCGCGTAGCTGTAGGTCTTGACATGCTTGTTGCGCTTGAGATACTGCTGGACCCCCTGCCGAATGGCCCCGGTCCCGATCCCGTGGATGATCGTGACCGTGCTAAGGCCGGACAAAAGGATGGTGTCAAAGTACCGGTCCAAATTGACCATGGCCTCTTCATAGCGCTGACCTCTAAGATCCAGGGAACTGCGGGCCCGGCTGGACCGGGAGGCAGAAGTGGCCCGTCTTTGGGCCTGCTGCTTCTGCCCGGCGGCCAGCTTGTCGATGTACCTGTCGGTCACCTTGAGCTTGATCCGGCCCAAGGAAACCTCATAATCATGCTCACCCAGCTGCTTGGTCACCGTCCCGGTCTGCCCGTAAGACAGGACCTTGACCTTGTCACCCACCTGGACGTGGTGGCGTTTCTTTTCCTTTTGCAGGACCTTGTTTTTGGCCAGGTTGACCTCCTGCTTGGCCAGCTGGTTGAATTCGCCCTTGGCGTCCATCAGCTGGTTGGTCTTGACCTGCATCCCTTCCTTGCGGGCTTCTTCCAGCTCGGCGATGACCTTGTCGGCCTTCTTTCGCTTCTTGGCCACGATTTCATTGGCCCGGTCCAAGGCAAAGTCCAGCTGCTTTTGGACCCGCTGGTTGTAGATATCCAGGGCATCCTGCAACTTCTTTTCCAGCTGCTTGGCCCGGTCCAGGCTGGTCTGCAGCTTCTGCTTGTTTTCCGTGGCCAGTTTGGTCTGCTTGTTTAATTCGTCGATCATGTGGTTGATGTCAGAATCATCGCTGCTCATCAGCTTCTCAGCCCCGACCACCACGTCTTCCCGCATGCCCAGCCGGCGGGCAATGGCAAAGGCATTACTGTGACCCGGGATCCCCATCTGCAGGCGGTAGGTCGGCGACAGGGTCTTGATGTCAAATTCCATGGAGGCGTTGGTGGTCCGCTCTCTGTTATAGCCATAGAGCTTGAGTTCCGGGTAGTGGGTCGTGACGATGATCTTAGCCCCCTTCTTTCTGAAGAAGTCCAAAATTGAGATGGCCAGGCTGGCCCCTTCTTCCGGGTCGGTCCCGGCCCCGATTTCGTCGATCAGGACCAGGCTTTGGTCGCTGACCCGCTTCATGATCGCCACGATATCGTTGATATGGGATGAAAAAGTACTCAGCGACTGCTCGATTGACTGTTCGTCCCCAATATCAGCAAAAATCTGGTCAAAAACCGCCACGCTGGAGCCCTCATTAGCCGGAATAAAGAGACCGGACTGGGCCATCAGCTGGAGCAAGCCTGCCGTCTTCAAAGTGATCGTTTTACCACCAGTGTTGGGCCCGGTGATCAAAATCGTGTCAAAGTCCTGGCCTAAAGCAATGTCATTGGCCACGACCTTGTCTGGATCAATCAATGGGTGACGGGCCCCCAGAAGCTTAAAGGACTGGTCTGCAGACAAAGCCGGCTGGCTGGCCCGCATCTGCTTGGCCAGCTTGGCCTTGGCCTGGAGGAAGTCCAATTCGCTTAAAGCCGCGGCCACCCGCTTGATAGTCTCCATTTCTTCTCTGGCGTCCAGAGACAGTTCATGCAGAACCCGGTGGATTTCCTGCCGCTCTTCAGCCAGCAAGTTTTGCAGGCGGTTGTTTAAAGGCAGGATGGCAGCCGGTTCAACAAACAAGGTCTGGCCAGAGGCGCTTTGGTCGTGGACCACCCCGCCGAACTTGTAGCGGTATTCCTGCTTGACCGGGATAACGTAGCGGTCGTCCCGGATGGTCACGATCTGCTCAGACAGGTACTGGCCGTTCTTGCCCTTGGTGTAGGCGATCATCTTTTCCTTGATTTCCGCTTCCGTGGCCAGGCGGCCGTGGCGCAGGCGGGCCAGGTCAGCTGAAGCGGTATCCAGGACTTCCCCGTCATAAGTCAGCGAAGTCCGCAGGCGCCGGTAAAGGTCATCCGGCAATTCCAGGTCCTCCAGCAAAGTTTCAATCGCCGCCAGATCCAAGGTCTCATTTTCTTCCGCGTCTTCTACAAAGCGGCTGCTTTCCTGGGCCAGGGTGAAAATCAGCAGTATATTGCCTAATTCCAGGGCGTTCAAGTCGGCCTTGACCTTCAAACGCTTGAGGCTGGGCGCAACATCTTGAAAGTCGGTCAAAGGCAGCTGGCCCTTGATCCGGTCCAAGTCAACCAGGGCCTTGGTTTCGCTTAAGGCCCGGCTGACCGTCTCCCGGTCGCTGGCGGGCTGGAGGTTCAAGGCCTTGCTCTTGGCCGGAGCCGTTACCGCTTGTTCAGCCAGGCGGCTGCTAATTTCCTGGTATTCCAGAATGTCTAAAATTTTATGATTCATCATCTCAGTAATTTTATCTAAAAAATTTTCCTAACAAAAAAAGCGGGCTAAGCACCCGCTTCTTTGTTATTCTGCAGAATCGTCACCGCTCAAACGGTCATCTTCAAGGAAGGTGTTGAGCACTCCTTGAACCATGTCCCATTCAGCGTCAGAAGTGATTTCGTGCAGGTCGCTGCTGGTTACGTCGCCATCTTCATCGGCGTCGTAGCTGAAAGCCTGGACTTCAATTTCGTCGTCATCTTCTACAGCTGCCGGGTAAAGCAGGATGTAGGACTTGTCATTGTCGTCAGAATGGAAAGTAAACAATACTTCAAATAATTCTTCGTTGCCGTCTTCATCGATCAAGGTCAATTGTCTGTCTTGATCTTCGGCGCTAACTTCAAAAGCCATAGTTATTCCTTTCGCTGTAAATCCAAATAGTTCTGCAAAATCAACACAGCTGCCATTTGGTCAACGACCTCCTTGCGCTGCCGGCGATCATGCATTCCCGCCTCTTCAACCAAAATCCTCTCTGAGGCCACGGTCGTCAAGCGTTCATCGTCATAGTAGACTGGCAAGCCGAACTTCTGCTCCAGGCGCTCGCCCATGGCCTTGCTCCGGCTGACCGACCGACCGGCCGTTCCGTCCATGTTCTTAGGCAGGCCCAGGACAAAGCCGTTCGCTTCATATTCGCGGACCAGCTTCTTTAAAGACCGCATGCCGAAATTGTGCCGGTCTTCATCAATCGGGATCGTCATCACGGACTGGGCGGTGATGCCCAAGGGATCACTGACGGCCACCCCAATGGTCTTGGAGCCGACGTCCAAACCCAGCAGGCGCATTACTTGTCCTTGCCCAGGTAGCTCTTGACCAGTTCTTCGATGATTTCATCGCGTTCGTGCTTCAAGATCAGGTTCCGGGCGTCGTTGTGGCGTGGGATGTACGCTGGGTCGCCTGAAAGCAGGTAACCCACGATTTGGTTGATCGGGCTGTAGCCCTTTTCTTCCAGGGCCTTGTATACGTCTTCCAGAGTGTCGCGGATGTTCTTGCCCTTATTCTGGTTAAAATCAAAGTGCATCGTTTTATCAAGCGAACTCATCGTTATTCCCCCTCTTTTGTCTATTCTACTTTAAAATTTTCCTTAACTCAATTATTTTAGCTTAATTAGTCCAGCTGGCTGACTGCAGCATCGATGGCATCCTGCAGGCCTTCTGGATTCTTGCCGCCGGCTTGGGCCATGTTTGGCCGGCCGCCGCCGCCACCGCCAAAGATAGCAGCCACGCTCTTGATCAAGTCGCCGGCCTTCAGACCCTTGTCCAGGGCCTTTTGGCCCAGGCTGATCAGCATGTTGGCCTTGTCTTCAGACTTAGCGCCCAGGATCAAGACGTCAGACTTGCCTTCACTCTTCCATTGGTCAGCGATTTCCCGCAAGTCGTTCATCCCCTTGACGTCAGCGATCGTGGCGATAACCGTCAAGTCACCAACCGTCTTGACCTGGTCAAAGATCTTGCCGGCCTTGGAAGCGTTGATTTGGGCTTCGTAAGCGGCGTTTTGCTTTTCAGCGCTTCTGAGTTCTTCTTGCAGGCTGGCAATCTTGCTTTGGATGCCGTCAACCTTAGTGGCCTTAACTTGAGCCTGGATCTGGTCCAGGATGTCTGAGCGGCCAGCTAAGTATTCGTAAGCCAGCTTGGAAGTTACGGCTTCAATTCTTCTGACCCCGGCACCGATGGCTTGTTCAGAAATAATCTTGAAGACGCCGATTTGGGAGGTGTTGTCACAGTGAGTACCCCCGCAGAATTCGATGGAGAAGTCATCCATTTGCACGACTCTGACCTTGTCAGTGTACTTGCCGTCAAACAGAGCCAAGGCGCCCATCTTCTTACCGGTTTCCGGATCAGTTTCCGTGGTCTTGACTTGGATTGCTTCCCAGATCTTTTCGTTGACGATCTTTTCAACGTTCTTCAATTCTCTTGGCGTGATTGGGTCAAGGGAAGTGAAGTCGAATCTCAAGTAGTCTGGTTCAACAACTGACCCGGCCTGGTGGGTGTGTTCACCCAAAACTTGCCGCAAGGCAGCGTGCAAGAGGTGGGTAGCAGAGTGGGAGTGGCGGAGGCCTTCCCGGCGCGCCCGGTCAATCTTCAGCTTGTAGGTCTGCCCCTTTACAAGTGGCAGGACCACGTCGACAAAGTGCAGGTTCTGGTCGTTAGGCGCGTGCTGAACGTCAACTACCCGGGCAACTAAGTTGCCTTCCTGGTCGTAGATGTCACCGTGGTCAGCCACCTGGCCGCCCCGTTCAGCGTAAAATGGCGTCTTGTCGAAGATCAAGGTTGCCTTTTCACCGTCAGCCTTGTCCACAAGCTTGTCGTCAACGATGATGTCAACCAGCTGGCTTTCTTCTTCATAGACCCCGTATTCAAAGACGCTCTTGTCCTTGATTTTCATCAAGGTTTCGTCTTGTGAACCCATGGATTGCAGGTTGCCCCGGGCCTTGCGGGCGCGTTCCTTCTGCGCTTCCATTTCGGCGTCAAAGCCATCCTTGTCAACCTTCAAGCCCTTGTCTTCAGCAGCTTCAACCGTCAATTCGTATGGGAAGCCGTAAGTGTCGAACATCTTGAAGGCGTCCTTGCCAGAGATGGTCTTGTCTTCGCTGTTTTCGGCCTTGTCGATCAAGTCGTCCAGCAAAGTCAAGCCGGCTTCCAAAGTTGCACCGAAGCGGTCTTCTTCGTTCTTAACGACCTTGCTGATGAATTCAGCCTGGTCGCTGACTTCTGGGTAGTGGCTCTTCATGATGTCGCCGACAACTGGCACCAGCTTGTAAAGAAAGGCGCCGTCGATGCCCAGCTTGCGGCCGTTCAAGGCTGCCCGCCGCAAAAGCCGGCGCAAAACGTAGCCGCGGCCAGTGTTGCCTGGCAGAGCCCCGTCACCGATGGCAAAGGAGATAGCCCGGATGTGGTCAGCGATAATCTTGAAGGAAATGTCGTCAGCCTTGTTTGCGCCGTACTTCTTGCCCGCGCTCATTTCTTCAGTAGCGTGGATGATTGGCAGGAAGAGGTCGGTTTCAAAGTTGGTCGGGGCATCTTGCAGGATAGACAGGACACGTTCCAGACCCATCCCGGTATCGATGTTCTTGTGTGGCTGTTCAACGTAGCTGCCGTCTGGCAGGTGGTTGAATTCTGAGAAGACGATGTTCCAGATTTCCAGGTAACGGGCGTTTTCCCCGCCTGGGTAGTTTTCCGGGTCGTCTTCTGGCACGTCATTGTTTTCCTGGCCACGGTCGTAGAAGATTTCTGAGTCAGGACCACATGGGCCTTCACCGATGTCCCAGAAGTTGTCTTCCAATTGCACGATGTGGCTTTCCGGCAGGCCGACGACTTCATGCCAGATCCGGTGAGCTTCAGTATCCTTAGGGTAAACAGTTACGTAAAGCTTGTCCTTGTCCAGGTCCAGCCAGTCAGGACTGGTCAAAAATTCCCAGGCCCAAGGAATCGCTTCTTCCTTGAAGTAGTCACCAACTGAGAAGTTGCCCAGCATTTCAAACAAGGTTTGGTGGCGGGCAGTCTTACCGACGTTTTCAATGTCGTTGGTTCTGATTGACTTTTGTGAGCTAGTAATCCGGCGGTTCTTTGGCACGACTGAGCCGTCGAAGTACTTCTTCATGGTTGCCACCCCGGAGTTGATCCAGAGCAAAGTCGGGTCATCCTTTGGAATCAGGCTGGCTGACTGCATGACCATGTGGCCGTGTTCAGCAAAAAAGTCGAGGAACATTTGCCGAAATTCTGAACTGTTTAACTTTTTCATCAAAATCTCCTAAAAATACAAAAAACAAGCATGTTTGCCTTCTTCAAGGACGCTCTAGACGCGGTACCACCTTGATTGCAACAATGCTTGTTACCTCTTGATTATCTTAAATTAATCACTTTAAGTAGCATTTCCTGCCTGGTGATAAACCCTTCCCAGCTGCCGGTTCTCTCTTTGAATCGCCTGGACAGAAAACATATCTTAAGCGTCTCTAATTTTACTACTTAGAGAAAAAATGTCAACGTTTTTGCTCGCGCTTGCGCTTACGGAGGTGCTTTTGGTGGCGCATTTCGTGGCGGGCTTCAATCTTCCGCTTCTTGCGGTTGTCTTCTTGAATCGCCTGCTTGATCTTCTTCTTGTAGCCAGGCTTGCGCTTGGACTTGATCTTCTTGACCACGCCCTTCATGTGGGGGTCAAGCTGGCGGTTTGCAGCCGTCCGGTTGTCCCGGCGGCGGTAGTGAGTCCGCGGAGCGAGTGCCCCGTCCTTGATTTCAACGAAGTCAAAGTGAACGCCCATGTACTCCAAGGCCCCCACCCGATTCATCTCTTCTTCCCTGACCAAAGTCACGGCGTGGCCCGGCAGGCCGTTCCGGCCAGTCCGGCCGATCCGGTGGATAATGAATTCCAGGTCCTTGGGAATCTCATAGTTGATCACCAGGCTGACGCCAGGCAGGTCGATCCCCCGGGCAGCCAGGTCGCTGGCGACGACATACTGGTACTGGCCGGCCCGGACTTCCCGCAGGGTCCGCTTTCTTTCCCGTTCGGTAATGCTGCCGTGGATCTTGGCCACCTTAAGCCCTTGCTTAGTCAGGTAGTCAGCCAGTTCGTCAACCATCTGCTTGGTGTTGGCGAAAACCAGGGCCAGGTAAGGCTGGCCCATGGTCAAAAGCTTGTAGACGATCTTCTTTCTGTCCTTGCTGCCGATGTCCAAGAGGTCGTTTTTGATGGTTGGGGCAATAACTGCCGGATTGTCGATCACGATTTCTTCCGGCTTGGCCATGTACTTGCGTAAAAAGTTGGTCAGCTTGACCGGAATCGTGGCTGAAAAGGCGGACATGACCACGTCCTTTGGCAGGCGGGCGGCAATCTTGTCCACATCGGCCAGGAAGCCCAAGTCCAGGGTCATGTCGGCTTCGTCGATGACAAAGTTCTTGACCTGGTCCAAAAGCAGGATCTTCTTGTCAGCAAAGTCCAAAAGCCGGCCCGGCGTAGCGATAACCAACTGGGGCTCGTTCTGTTCAAATCTGGCGATCTGCCGGTCCCGGTCGCTGCCCCCGGCCAGGTGGGCAATGGCGATGTTTAAGCCGGAATTATCCCGCAGCTGGCGGGCCACCCGGTAGAGCTGGTCAGCCAGTTCCCGGCTGGGAGCCGTGACGATGGCCTGGACATAGCGGGCGTCTTCATCAATGGCGTTTAAAATCGGGATCAAGTAGGCGTGGGTCTTCCCGCTCCCCGTAGCCGCCTGGACGATCACGCTTTCGCCTTTCAGCATGGCCGGGATGACTTTCTCCTGCACCGGAGTCGGTTTAGTAAAGCCGATCTTGGCCAGGCCCTGGCGGATTTCGCTTCTTAAGCGGGTATCAGTAAAAATGTTATTCATGGTCTTCCTTGTATTTCTTGGTTACTTCAACTAATTCCTGGAAAATCTGGTCGATTTCCACCTGGTCATGGGCCGTTGCCCCAGAGGCTAATTCATGGCCGCCACCGTCGTGGGCTTCAGCCAGCTTGTTGATGTGCGGACCCTTTGACCGGTAGTGGACCCGGTAAGTACCGTCTTCTTTTTCCACGATGACCAGCCAGGTCAGAATCCCCTTGATCCGACCCGGGGTTGAAACAGTGACTGAAGCTTGCGGCTGGGTAACGCCCAGGGCCTTTAAGTCAGCCTGGCTAATTACGGCGATAGCGACCAGGCCGCTTTCGTCCAGCTGCATTTTCTCCAGGGCCAGGCTCTGCAGCTTGGCCTGCTGGAAGGTAACTTCACTTTCGTTTCTGGCAATTTGGGAGATGTCAATCCCCGTCTCCATCAAGCGGGATACTACTTCGAAGGTGTGGGCGCTGGTCGCGTCGTACATGAAGCGGCCAGTGTCACCGACAATACCGGCGTAGAGGGCCAGGGCAATTTCCTGGGTAAGGGGCAGGCCTTCTGCTTCGATAAAGTCAGCGATGATTTCACAGGCAGCAGCGGCTTTTGAGTCAACGTAAGACATGTCAGCATATGGGTCAACATCCGGGTGGTGGTCAATCTTGATCAGGTAGTCCCCCAGCCGGTAGCGCTGGTCAGAGATCCGCGGCGTGTTGGCCGTGTCAGTCGTGATCACCAGGGCACCTTGGTAGTCTTCATCCTTGACTTCGTCCATGGTGTTGATCCAGTCCAGGTCACCGACGTCATTTTCCCCGGTGCAGAGAATCTTCTTGTCCGGGAACTGCAGGCGTAGGCTCTTGGCTAAAGCAGCTTGGGAGCCGATAGCGTCCGGGTCTGGATTGGTGTGCCGGTGGAGGATGATGGTTGGATATTGCTTAATCTTACTGAATATTTCGTCAAAAGTGTTCATCGCGGGGTCCTTTCTGCCTTATGAGTTCAAAATTTTATTTTAGCAAAAAATCAGCCTTTTAGCTATTCATCTGCAAAAAGACTGATTTCCTGGTAATGTTTTTCTTCAAGTTCGCCGGCTGACAGGCCCAAGAGGCGGATGCCTTCAGCCAGGAATTCCGGTTCCCGGGCCAGGAGCTCCTTGGCCAGCTGGTAAAAGACTTCCGGGTCACTGGTCGGCTGGATCTGCTGCCGGCGGGTGATAGTTTTAAAATTGCGGTCGCGGACCTTTAAAACGACCACCCGGGCTAAAAGATTTCTCCCCTTTAGTTCAGCCGCCACCGTCTGGCTGAAGTCCTTTAAGTAGGCATCAGCCCGGTCAGGGTCATAGATTACCGGTTCAAAAGTCCGCTCCTTGCCCAGGGACTTGCGCTGCCTGGAGGCTTGGACGGGGCTTAAGTCAATGCCATAAGCATGCAGGGCCATGTAGTAGCCGGACTTCTTATAGTCTTTTAAAAGGCGGCTGAGTCCGTAATTTCTGATGTCGCGGCCGGTCAAAACTCCGGCTTCCTTTAGCCGCTCCTGGGTCTTCTTGCCGATGCCGGGGAATCTCTTGATCTCCTGCCTGTCTAAAAAGTCCTGGACCCGGTCCGGGGCAAGATAAGTGCGGCCAAAAGGCTTGGCGTATTCTGACCCCATCTTGGCCAAAAACTTGTTGTAGCTGACCCCAAAAGATGAGGTCAAATGCAGCTGGCGGAAGATCTGCTCTTGCAAATAGCTGGCCAGCTCCAGGGCGCTTTTGCCGGGGATCTTGCTCCGGGTCACGTCCATATATGCTTCGTCCAGCGCCACGCTTTCGATCTGGTCGGTCAGTTCGTGCATTAAGCCGTGCACTTGCCCGGAAACCCGGTGGTATTTCGCGAAATCGGGTTCAACGAAAACCAGTTCTTCAGCTGGAATCAGCTTGACGGCTTGGGCGGCCGCCATGGCTGACCCGACCCCGTACTTTCTGGCCCGGTAGTTGGCGGTGGCGATCACGCCATGGCCGCCAGTTTTCCGGGGGTCCTGGGCAATCACGACTGCCTTATTAGCCAATTCCGGCCGGTCCCGCATTTCAACTGAAGCATAGAAAGCGTCCATGTCCAGGTGGATGATCCGGCGGGAAAAATCGTTCCTGGGCAAAAGGTCAATATCGGCCATTACTTGTAGATCCAGCCATCCTCAGGATCCGCGAAGATCTTGCTGGTATCCGGCCCCATGCCGTAAGGACGGTACTTGACCGGCTTTTCGCCGGCAGCGTTTTGCTTTTGCCAGGCAGCTTCAACCGCGTCCACGAATCTCCAATACTGCTTCAGTTCTTCCCACTTGGTAAAGTTGGTGGAGTCGTTGACAAAGACGTCGTGGATCAAACGTTCATAGCCGTCTGGCACCTCAGCTTGTTCATCTTCGCTGTAGCGGTAGCGGAATCTTTCAAGACGGAGGCCACCGCCAGCAACAATCTTGCCGTTTAAGCGGAAGTAGACCTGGTTGACCGGGTCAATCTCAATAGTCAGTACGTTGGTCTTAGCCTTATCGCCATACAGGCCAGCTTCATCCTTAAAGACCACGTCCACCCGGGTCTTCTTTTCCCGCATTTCCTTGCCAGTTCGGAAGTAAACCGGCACGCCAGCCAAAGGTCCCTTACTAAATTCCAAACGGCCAGCCACGTAAGTTTCCGTCTTGGAGTCTTCCGCCACGTTCGGCTCTTTGACATATTCAAAAGTGGTTTCCGTCCCCAGATACTGGCCGCGGATGATGTTTTCGCTGACTGCTTTTTCATCTGGGATAACTAAAGATGCCAAAAGGTCTTCTTTAGCCGCGTGGATGGCCTTGTCAGACAAGTCTTTTGGCTCCGGCATGGCCAAAAGGGTGATGATCTGCATGATGTGGTTCTGAACCATGTCCCGCAGGGCACCGGAGTTGTTATAGTAGCCGCCCCGGGCTTCAACGCCCAGCCGTTCAGCCAGGGTAACCTGGACATTTTTAACCGCGTCGGCGTTCCAAATCCGCTTAAACAAGGAGTTGCCAAAGCGCAGAGGCAGGATATTCTGCACCATTTCCTTACCCAGGTAGTGGTCGATCCGGAAAACCTGGTCTTCAGCAAAAGAATTGCGGATCTGCTGGTTCAAGACTTCCGCACTGGCCAGGTCAGTCCCAAATGGCTTCTCAACCACTAGGCGGTTGAAGCCGGTCCCGGTCAAATGCTGGTCGGCAATGTGTTCGGTAATCGTCCCAAAGAAGCTTGGGGCCATGGCCATGTAGAAGATGCGGTTTCCGCCGCATTCATAGCGCTCATCCAGTTCCTGGGCCAATTGCTTCAAAGTTACGTAGTGTTCAACGTTGGTTACGTCGTGGGACTGGTAGTAAAAGTGGCTGGCAAATTCCGTCAGCTGCGCTTCGTCGACCTCTTCCCAGCTTTCATGAACAGCTTGGGCCACCTGCTCGCGTAGGTATTCATGCGACCATGGCCGCCGGGCAGTGCCGATAACGGCAAAATTGTCGTGAATGACATTCCGGCGGTAGAGATTGAAGAGGGCCGGATAGATCTTGCGGTGGGCCAGATCGCCGCTGCCGCCGAAAAGGATCATTACTGTTGGAATATTGTTCATTATAGTACCTCAAAAAAATCAACTACTAACTATTTTAGCAATTTATCGACGCAAGCAAAGCAAAAACGTCCCCAAAGGAACGTTTTGTTCGTTTATTCTTGACTGTCTTTGTCTTCTGCTTCTTCAGTCTTGGCTGCTTCAGCCTTTTCTTCTGCTGGCTTGGCTGCTTCAGCTTCACTTGCGTCAGCTTGCTTCAAAACAGTTCTGACTGCCAGTCTGGAGAAGGTTAGGTAAATGCCGTCAGCGTCCAAGACGATAGTCTTGTCAGCATCGTTGATTGAGTCGATCTTGCCGCGCAGGCCGTCGACCATTTCCACGCTGTCGCCCTTCTTGAGCTGATTCATCATTTCCTGGCGCTGCTGTTGCTGCTTCTTTTGCGGCTTGATCATCGTAAAGTAAGTAAAACCAAACAAAACGGCCAGCATAACCAACATGAAGATGTTGCTGCCAGCACCGCTGTTGGCTGCGGCTAATGCAAAAGTATTCAAATTATCCACCTCATAAAATTTATTTGCCGTTTTTTGGCAGATGCCAAAAGGCTTTAACGAACATTATACTGTAAACCAGATTTTTTTGCTATTCTTCCTCACCCGGCAGGGGCAAATTCAGCTGCTGGTAGGCCTTCTGGGTCACTACTCGCCCCCTTGGGGTCATGACGATAAAGCCGTTTTGCAAAAGATATGGCTCATACAGGGACTCGATCGTCTCCCGGTCTTCCCCGATATTGGAAGCCAGGGTCCGGATCCCGACCGGGCCGCCCCCATAGCTTAAGATCATGGTTCTCAGCAGCTTGCGGTCAGTCTGGTCCAAGCCGGCACTGTCGACTTGCAGCTGCTTTAAGGCCATGGCCGTGGTTTCCAGGGAGATTTCTTTTTCTCCCTTGACTTCCGCAAAGTCCCGCACCCGCTTTAAAAGGCGGTTGGCCACCCGGGGCGTTCCCCGGGACCGGCGGGCCAGTTCATGGGCAGCTTGCGGGGAAATCTTGGTGTGGAAGACCTCGCTTGAGCGGAGGATGATTTTTTCCAAGTCTTCGACCTGGTAGTACTGCATGTGCTCAACGATCCCGAAGCGGTCGCGCAGAGGCGCCGACAACTGCCCGGCCAGGGTGGTTGCCCCGATCAAGGTAAAAGGCGGCAGAGGCAAGTGGATGGCATGAGTCGTCTGCCCTTCCCCAACCACGATATCGATGTAAAAGTCTTCCATGGCTGAATAGAGGACTTCTTCAACCGGCTTGGCCAGGCGGTGGATTTCGTCGATAAACAAGACATCCCCCGGCTCAAGGTCAGTTAAGAGGGCCACCAGGTCCCCGGCCCGCTCGATGGCCGGACCGCTGGTGCTTTTTAAATTGACCCCCAATTCATTGGCAATAACAAAGGCCAGGGTAGTTTTACCTAAACCTGGCGGGCCATAAAGAAGGACATGGTCCAGGGCCTCGTCACGCTGGCGGGCGGCCTGGATGTAGACTTCCATGTCCTTTTTGACATGCCCTTGCCCGATATACTGGCTGAGCAGCTGGGGCCGTAAGGACAGTTCCACCGCTTCCTCGCCTTCGGCGGCTTCCTGGCTGGTCAAATGTTCTTCCGTCATTTCCCTTTCCCCCTTATTTCTTCAGCAAAAAGCCCAGCCCCTGCTTGATGTATTCGTCAGCGGACATTTCCGGCAGTTTCTTCAGTTTCGGCTTGATCCGGTCAACTTCCTTTTGACTGTAGCCCAAAGCCCCAAGGGCCAGGAGGGCGTCTTCCAGGGCTGGGAAAACAGACTTAACCGGTTCATCTTCGGTAAAGAGGTTTTCCGCCACATAGTTGCCCATCTTCCCCCGCAAGTCCAGGACGATCTGGGATGCCGTCTTCTTGCCGATCCCCGGGAAACGGGTCAAGTAGGAAACTTCGCCGCTCTCAATGGCGGAAGCCAGGGCTCCGTTGTCTTCAGCGGCCATGATGGCCAGGGCAGACTTAGGACCGATACCGGAAACTTCATTAAGCTTGTTGAAGAGGACCTTGTCTTGCTGGCTCTTGAAGCCGTAGAGGGTCATCCCGTTTTCCCGGACGACCTGTTCAACGTAGATCCGGGCCTTGTCCCCATCTTTATAGGCATAAGGGGTCGGGGTCAGGATCCGGTAGCCGATCCCGGCCACTTCAATCACGACATAGGCCGGATTAACCACGGTAATGGTGCCCTCAAAATACTCGTACATCTAGTTTTGTCACTTTCCTTTCTTAAAAAGCTTGCTTAAATCATTCTGGCTCAAGCGGACGACGGCGAGCTGGCCGCTGGCATCCCGGTAAGGGTCGCTGGCCGTCTGCAAACGGAGCAGCAGATCGGCGGCTTCAGCGCCGGTTAAATTGACCCGGCGGGAAACATTGCTTTCCGCCGCCTTAGCCGCCACCAGCTTCAAGAGACTTTTTCCATCGTTTTCCCGGCTGGACAAGAGCTGGTCCAAGAGCTCCCTGACCTGCACGGTGACTTCCCCTTTCAGCCAGGTTGGGTAAGAGTGCATCAAGAGGGTGTTCTGGCCAAAGTCTTCCATCTCCAGGCCCAGCTGGCGCAAAAGGGGCAGCTGGTCTTTTAATTTCTGGTAGTCATAGACGCTGAAGTCAAAGACCAAAGGCTCAAGCAAGCCTTGCTGGTAGTTCTCGTCTTTTTCCAGGCTGGCTAAAATCTGGTCGTACTCCAGCCGTCTTCTGGCCGCCACCTGGTCAATCAGGTAAAGGTCGCCCTCGTGTTCAGCCAGGAGATATCCCCCCATCTGGCCCAAAAGGCGCAGGGCCGGCAGGTGTTGCCTTAGCAGCTGGTCAGCCTTTGACGTGACCGGGCTAGCGGCTTCCTCTCCGCCCGCAAAAGGCGGCAGGGCCGTCTGTTCCTTGACATGCTGGTCCCAGCTCTTGGTTAAGACATATTGGTCATCTTCTCTGACCTGGTTTAAGTCCACGTATTCCGGAGCAGAAGTTTTTTCTTCTTTCTCTTCTTGTTTATTTTCTTTCTTCTCTGCTTTTTCTTTTGTCTCTGTTTCTTTTTTATTAGTTATATCTGTTTTGCCTTCCGGCTCAGCCACCTGGGAGACTTCCAGCTGGAAGTCATCTGGCCGGCGGGTGTCGACCACGTTTGGTTTTAAGTTGAATTCCAATTGGTCCAACTGGGTCTTGTCTTTAAAAGGAGTCAGCTGAAAAAGCGGGCTGGCCTCGTCCTCATCCATTAAAGCCTCAGTCACGGCACTGGTGATCAAGCGGCTGAGCTCTTTTTCCTTGGACAGGCGGACTTCTTCCTTAGTCGGGTGGACGTTGACGTCGACTAAGAGGGGATCAGCCTCAATCGCCAAGACCGCGATCGGGTACTTGCCTCCCAATTTGTTGCCGTAGCCGTCCAAAAGGGCACTGGAGAGCTGGTAGTTCTTGATGTAGCGGCCATTGAGCAAAATCGAGATAAAGTTGCGGGATGACCGGGTCAAGTTTGCTTCTGACACCAGGCCATAGAGGGTAAAGTCCGGGTCCTCATTTTCCACCGTCAGCATTTTTTCGGCGACTTTGCGGCCATAAATATTGGCCACGTCCTGCTTTAAGTTGCCGTTACCGGGCGTTCTGAGCAAGACTTTCCCGTCGCTGGCCAAAGTCAGGCTGATTTCCGGGTGGCCCAGAGCAATCCGGTTGACAATATCCACAATCTTCAAGAGTTCAGTCTTCGGGCTCTTCAGATACTTCAGCCGGGCCGGAGTATTGTAAAAAATGTCCCCGACCGTGATCTTGGTTCCCTTAGCGCTGCCGGCATCTTCCTGGAACTTTTTCACCCCGCCGGCAAAAGCTGCCCGGGTGGCCGTCTGCCCGCCAGTTGAAGTCAAAATTTCCACATGGGCTACGGCTGCGATGGAAGCTAGGGCTTCCCCTCTGAAGCCCAAGGTCGCGATATTGAACAAGTCATGCTCATCTTGAATCTTGCTGGTCGCGTGCCGCATAAAAGCCAGGTCAACCTGGTCCGGGGCAATCCCGCTGCCGTTGTCTTGGACAGAAATCTGCTTTAAGCCCGAATGCTGGACTTCAACCCTAATCCGGCTGGCTTGGGCATCGATCGCGTTTTCGACCAGTTCCTTGACCACGCTGGCCGGCCGCTCGATAACTTCCCCGGCCGCGATCTGGTTGGTCAGATTTTCTGAAAGTTCATGAATTTTCGCCATTATTCTTCCTTCAAGGCCTGCTGCCAGTCAGCTACCAGCTGCATGACTTCCAGCGGCGTCTTTTCATTCAAGTTGACCTGGCTGATCTCGTCTAACAGTTCCTCCTGCTCTGCCTTGAGCGGGTTCTCTTCCACTACTTCCACCGGACTGAAGAGGTCCAGCTGCTGGCGGCTTGGGTTGATCTCCCGGGCCCCTTCTGCTTCCAGGCGCTTGAGCATGCTGGAGGCTTCTCTTAAAACGACCCGCGGTAGGCCAGCCAATTTGGCCACGTGGATCCCGTAAGACTGGTCGGCTGGTCCTGGCAAAATCTTGTGCAGGAAGATCAGCTTACCGTTTTCTTCCGTTGCTCCGACGTGGATGTTCTTTAAGTGCAGCAAGGTTTCATCCAGTTCAGTCAGTTCATGGTAGTGGGTGGCAAAAAGGGTCTTGGCGCCAACCTTGTCATGCAGGTACTTGATAATCGCCCCGGCCAAGGCCATCCCGTCGTAAGTGGCCGTCCCCCGGCCGATTTCGTCAAACAGGACCAAAGACCGGCTGGAAGCGTGCTGGAGGGCCTCATTGGCCTCGCTCATTTCCACCATGAAGGTGGACTTGCCGGAGTAGAGGTCGTCAGCGGCCCCGATCCGGGTGAAGACCTGGTCAAAAACTGGCAGCTTGGCGCTGTCTGCCGGGACGAAGGAGCCGATCTGGGCCATGATGGCGATTAAGGCCAACTGCCGCATGTAGGTGCTCTTACCAGACATGTTTGGCCCCGTGATGAGGTAGATGCTGGTGTCTTCATCCATGACTAAGTCGTTAGGGATGTAGGAGCCAGCTGGTAAAACTGCCCCAACAACCGGGTGGCGGCCGTTCTTAACGGCGATTTCGTTTTTGCTGGAAAAACTTGGCCGGCAGTAATTTTTCTCTTCAGCATCCTGGGCAAAGGCCACGAAGACGTCCAGGGCCGCCAATTGCCGGCCCAGTTCCTGCAAGTCCGGGATATGGGCCTTGACAGCCTCTCTCAGCTGGCTGAAGAGCTCGTATTCCAGGTCAGTTGACCGGCTCTCAGCTTCCAGGATCAAGTTTTCGTGTTCCTTTAATTCCGGGGTAATGTAGCGATCAGCATTGGTCAGGGTCTGCTTTCTGGTGTAGCGGTCCTGGGGCACTTTAGCGACATTCCCTTTGCTGACTTGGATGAAGTAGCCAAAGACCCGGTTGTAGCCGATCTTCAGATTGTCGATCCCGGTTCTCTGCCGCTCTTCCATTTCCATCTGGGCTAGCCACTTTTTCCCGCCATTCATGGCTTCTCTGTACTTGTCCAGGTCCTCGCTGACCCCGGCCCGGATAATGCCGCCGTCTTTAGCCGAAATCGGCGGCTGGTCAACTAAGCAGTTAGTGATGCTCTCAGCAAGTTCACTTTGCGGGTCGATCCCCTGCCCGTATTTTTCCAGGTCTGGATTGCCCGATTCGACCAGGGTCTGGATGATCAGCTTGGTCGCCTCCAGGCTTTTCGCCAGTTGCAAGAGCTCACGGGGGTTGACATTGCCAAAAGCCACCCGGCCGCTCAACCGTTCCAGGTCATAGACTCCCTTCAAGGAGTCAACGATATTTTCCCTGGTAAAGTAGTCGTCCAACAGGGCTTGCACCATCTGCTGGCGCTGCTTAATCCGGTCTAAAGACAAGAGCGGCCGGCTCAGCCACTGCTTTAAAAGCCGGCCCCCCATAGCCGTGGTGGTCTTGTCCAAAACCCAGAATAAAGAGCCCTGCTTCCTGCCAGTCGTGGCTGACTGGGTCAGTTCCAAATTCCGCTGGACAGTGTTGGCCATCTGTAAATACTGGCCGATTTCAAAGCTTTCCGCCACTTGCAGGTGAGCCAGGCTCCGCTTTTGTGTGGCCAAAAGATAAACGACCAGCTGGCGGACGGCGGCTTTTTCCATAGAGTCAGTCAGTTTCTGCTGGACATAGGAAATTTCCGCGTGCTCGCCTTCCAGTTCTGCCGGTTCAGACACGGTGATGTTGGCCTTTTGCAGTCTGTCCCGGTCGCTGGCGCTAAGGTTGCCAGCAAAAACGACTTCCCGGGTTCTCAAAGACAGGAGCTCGTTGACCACCTCGGCGTAGTGCTTGACGTGGGTGACAAAAATCTCCCCGGTCGACAGGTCGCTGTAAGCCAGGCCATAGCCGCCGGCCTTTTCAACCACGCTGGTCAGGTAGTTGCTTTCCTGGCTGTCGTCTGGCCCCTGGGCCATCTTGGTGCCGGGAGTAACCAGCTGGATGATCCCCCGCTTGACCATCCCCTTGGCCTTCTTCGGGTCTTCCAATTGCTCGCAGATGGCCACCTTGTAGCCTTTTTCCACTAAAGTGTTGACATAAGAATCAACCGCCATGTGGGGCACCCCGGCCATGGGAATCGGGTTTTCCGACTTATTTGACCGGTGAGTCAGGGTCAACTCTAAAATCTGTGATCCCTTGATGGCATCGTCTTCATAGAGTTCGTAAAAATCTCCCACCCGGTAGAAGAGAAAGGCATCCGGGTACTGGTCTTTAATCTGGTAATATTGCTCCATCATTGGAGTCGTGGCTTTTCTTGGCATAAAAACTCCCTCGCTTATCGTATGCTTTCAATTATTGCTAATTTCCCAGGATTTTACAACTCAATGTATAAGAAGCCTACTATTACGGCCTTTTTCGAAGTTTACGATAATATTTTTTGAGTTGTAACTTTAAACTCAACGAAATCCTCTAAAAGGTTGGCATATCAGGTGATAGAGCACTTTGAGTAGTAATTTATGGGAAATTAGCAATTATACAGCATTTCGCCGGCCTACTTGCCTTGTCTGCACGCAAAAAGAGCCCAGCCAAAGCTGGACCCTTCTTAAAGTAATTCTTGTGTGTGTTAAATTTCAGTATTTTACATCATGCCTGGTTGAGCTGGAGCAGCTTCTGGCTTGTCTTCCGGAATTTCTGCCACAACTGCTTCAGTGGTCAGCAAGAGGCCGGCGATTGAAGCAGCATTTTGCAGGGCTGACCGGGTCACCTGGGTTGGGTCGATGATCCCTTCGTCAATCATGTTGACATACTTGTCTTCAGCAGCGTTGTAGCCGACTTCCGGGTCAACCTTGCGCAGGTGGTCAACAACGACTGAGCCTTCTTGGCCGGCGTTTTCAGCGATTTGGCGAACTGGGGCAGTCAAGGCGCGGGCCACGATGTTGATCCCGGTTTGTTCGTCATCAGTGTCACCCTTGGTTGCCTTAACAGCTTCTTCAACGTTAACCAAAGCAGTACCACCACCAGCTACGTAGCCTTCGTCAACAGCGGCACGGGTAGCGTTCAAGGCATCTTCTACCCGGTAGCGGCGTTCCTTGAGTTCAGTTTCAGTAGCAGCACCGACGTGGATTACGGCTACGCCGCCAGTCAGCTTGGCCAGACGTTCTTGCAACTTCTTCTTGTCGAAGTCAGAAGAAGTGTCTTCGATTTGCTTTCTGATGGTGTCAACCCGTTCTTGGATGGCTTCCTTAGCGCCAGAGCCGTCAACGATAGTAGTTGAGTCCTTGGTGATAGTTACCCGGCGGGCTTGACCCAATTGGCTGAGCTGGGTGTCCTTGAGTTCCAGGCCCAGGTCTTCAGAAATTACCGTACCGCCAGTCAAAGCAGCGATGTCAGCCAGTTGTTCCTTGCGGCGGTCACCAAAGCCAGGAGCCTTAACAGCAACAACGTTGAAGGTACCGCGGATCTTGTTCAAAACAAGAGTTGGCAAAGCTTCGCCAGTCACGTCATCAGCGATGATTAGGAGTGAGCGGCCTTGTTGCACGATTTCCTGCAACATTGGCAAGATGTCCTGGATGTTGGAAATCTTCTTGTCAGTGATCAAGATGTATGGGTTTTCCAAGTCAGCTTCCATCTTGTCGTTGTCCGTTACCATGTATTGGGACAGGTAGCCGCGGTCGAATTGCATCCCTTCAACCACGCTCAGTTCAGTTTCGATCCCGCGGGAGTCTTCAATGGTGATAACACCGTCCTTGCCGACCTTTTCCATGGCTTCAGCGATCAAGTCGCCGATTTCCTTTGAAGCACTTGAGATTGAAGCAACTTGGGCAATTTGGTCCCGGCTGGAAACTTTGTGGCTGTTCTTGTGCAATTGGTCAACGGCTGCTTTGGTGGCCTTTTCAATCCCGCGGCGAATGCCAACTGGGTTAGCCCCGGCAACCACGTTCTTCATCCCTTCTTGCACGATGGCTTGGGTCAAAACAGTGGCCGTGGTCGTACCATCACCAGCGATGTCGTTGGTCTTTGAAGCAGCTTCAGCAACCAACTTGGCCCCTATGTTTTCGTAGTGGTCTTCCAGTTCAATTGCCTTGGCGATGGTCACGCCGTCGTTGGTAATCGTTGGGGCGCCGTAGCTTTGTTCCAAAACAACGTTTCTTCCCTTAGGCCCCAAGGTCGTCTTGACAGTGTTAGCCAGCTTGTTAACCCCGTTTAAAAGTGAACGTCTTGCGTCTTCTGAAAACTTGATGTCTTTTGCCATTTTTTAATTCGCACTCCTACCTTAAATTACTTAACGATTGCCAAAATGTCTTTTTCATGAAGGACTAAGTATTCCTTGTCTTCGTACTTGACTTTGGTGCCAGAATACTTATCGTATAAAACTTCATCGCCCTCTTGGACGGTCATAGGAAGCTTGCTACCATCTTCCGCGTACAGGCCGCCGCCTACGGCAACAACCTTGCCTTGGGTTGGCTTTTCCTTAGCGTTGGAAGCAAGTACGATACCACCAACAGTTTGTTCTTCAACTTCTTTAACTTCAACGATCACGCGATCTCCAATTGGTTGTAACATGTTATTCCCTCCTAAGACTAATTGTCTTTAGAAATTCTTTAGCACTCATCTTGATCAAGTGCTAACTTACAACTATGATAATAATCCCTTTTTCCCAAAAAGGCAAGAGAAAAATAGCACTTTTTAGTCGAGAGTGCTAAAAAATGCTGTTTTCCTTATTTATTCGTGTTGTTCATGGCCTTTTTCCGCTCTTCCAGCTGCTTTTTGATCAATTCGTCAGAGTCAAGGAAGTAGATCAAGGTCTGCAATTCGGTAGCCAGGTCGACGTTTTGAATCCGGACCCCGTTTGGGGCGGACAGGCGGATCGGGGTAAAGTTCATGATCCCCTTGATCCCGGCTTCGATCATTTCATCAGCCGTATTCTGGGCCGTCGCCTGGGGAACGGTCAAGATAGCGATCCGGATCTGCTGGTCAGCGATCTGCTGCTTCATTTCATCCATTGAGTAAACCGGGACCCCCTGGGTGATCTTGCCGGTGATTTCCGGGTTGATGTCGAAGGCGCAGGAAATTCTGATATTGTTGCTGCGCTTGAAGTTGTAGTTCAAAAGGGCGTGACCCAGGTTGCCGACCCCGACCAGGGCAACGTTGGTCAAAGTGTCCTGGTTGAGGATCTTCTTAAAGAAGCTGAGCAGGTTCTTGACGTCGTAGCCGTAACCCCGCTTGCCCAGGGCACCGAAGTAAGAAAAGTCCCGGCGGATTGAAGCGCTGTCGACTTGGACGGCTTCCGCCAGTTCAGTTGAAGAAACCTTGTCTTTGCCTTCATCATTCAAAAGCAGCAAGTAGCGGTAATATAGTGGCAATCTTCTGGCAGTAGCCTTGGGAATTCTAAATTTGTTGTTCATAAAAAGATGCCTCCAGTTTTTATTTTGTGAATGTGAATCTATAATCAATCATCTACTATGATACCCATTTTTAACAGTCCTTGGCAAGTCGTATTTTCACAATATTTGCCGTAAAATCCTTTTTATTGAACTTTTTCACAAATTGATTAAGAGATCAGCGCTTCCGGCATTTTCTTTAAAGAAAAAGGAAGGAAAAAAGAAGCGGAAAAGAAAGGGAAAATCAGCCCGGCTGACGGCAGGCAAGCCTTTTGCATGGTACAATGTTTCAAGGTGAAAAAATATGATAATAGCACAAGGACACAATTTGGAGCAACGCTTCGGGGCTGCTCCTATATTCAGCAAGGTAAACTTTTCAATTGAGAACAATGCCCGGATCGGCCTGGTCGGGCCAAACGGGGCCGGGAAAACGACTCTTTTAAAGATCATGACCGGCCGCCAGGAAGCCAGCCAGGGGGAATTTACCGTCAACAAGGGGATCGAGCTTGGCTACATCGCCCAGGAGCACGACTTTGACGAAGAGAAGTCGATCTGGGAAGAGATGCTGACGGTCTTCCAGCCCTTGATCGACCAGGGCCAGCAGCTGGAGAAGCTGCAGTACGCCATCGCCGACCATCCGGAAGACGAAGACCTTCTCCGCCGCCTGGACCAGGCCCAGTATAATTTTGAACAAGCCGGCGGCTATACCTACCAGGCCGAAATCAAGAGCATGCTCAACGGCTTCAACTTCCCGGAAGCGACCTGGAACAAGCAGATTGCCAGCCTGTCCGGCGGGGAAAAGACCCGGCTCAGCTTCGTCAAGCTCCTTTTAAAGAAGCCCCCGCTCCTGCTTTTGGACGAACCGACCAACTACCTGGACCTGGATACTTTGGACTGGCTGGAAGCCTTCCTTAAGAACTACCCAGGCGCCATCCTGACAGTTTCCCACGACCAGTACTTCTTAGACCACCTGGCTACGCAGATTTTTGAACTCCAGCATGGGGAACTGACTGTCTTTAAGGGCAACTACAGCCAGTACCTGGCGCAAAGAGAACTGCGCGACCAGCAGCAGGAAGCCGCTTATGAAAAGCAGCAGGAAGAGATCAAGCGAGAAGAAGAGTTCATCCAAAAGAACATCGTCCGCGCCTCCACCACCAAGCAGGCCCAAAGCCGGCGCAAGGCCCTGGAGAAGATGGAACTGGTCGACCCGCCAAAGCACAAGTCAAAAGTCCGGATCAAGTTTGACAGCGCCCGGCCGTCAGGCAAGGAAGTCTTGATCTTGAAGGACCTGGCCGTTGGCTATCCAGACAAGACCATGCTTAAGGACATCTCCTTCCAGATCAATAAGGGTGACCGGGTGGCCATCATTGGCCAAAACGGGATCGGCAAGTCCACCCTTTTAAAGACCGTCATGAAGCAGCTGCCGGTTAAGAGCGGGGCCATCAAGTACGGGGCCAGCCTGGACATCGGCTACTATGACCAGGAACTGCAAGGGATAGACTATTCTAAGACTGTGATCGACACCATCTGGGACCGGCATAAGGACATGAACGAAAAGGACATCCGCTCCATTTTGGCCAGCTTCCTCTTTACCGCCAAGGACATCGACAAGAAGGTCAGCCAATTGTCCGGGGGGCAAAGAGCCCGCTTGACGCTGACCGTCTTGTCCATGGAACACAACAACTTCCTTTTGATGGACGAACCGACCAACCACTTGGACCTGGACGCCAAGGAAGTTTTGGAAAAAGCTTTGGCCGATTACGACGGCACCCTCCTCTTCGTTTCCCACGACCGCTACTTCATCAACGAACTGGCCAACAAGATCGTCGTCGCTAAAGACGGCCAGGCCAAAATCTATGAAGGCAACTACACTTACTACTTGAACGAAAAGGCCAAGGAAGAAGCCGCTGCTCAAGAAACAGCCGCGCAGGAAGCGCCAGTCGTCAAGGCAGTCAGCGAAAGCAAGTTCTCCTACCAGGAGCAGAAAAAGCGGGACTCGGAAAAGCGGAAACTGGAGCGTCAGGTCGCCCAGGCAGAAAAGGACCTGGAAGAGCTGGAAGCAAAAGAACAAGAGATCCAGGAAGCAATGGCTGACCCGGCAATTGCCGCCGACTTCAGCAAGCTGGGGCCTCTCCAGGAAGACTTGACCGCTGTCCAGGAAAAGATCAGCCAAGTTAGCCAGGCTTGGGAAGATGCCTCCTTGGCCCTGGAAGAATTTTAATTTTAGGCAAAGGAAAAGCAAGTCCAGTAACGGACTTGCTTTTTTGTTGCATTTTCGTCTTGCTTTTTACTTGTAATCCTCAGCGTAAGGCAGTTCCATTGACGGGTCCGCGTCCAAGGTCAAGTCGGCAAAATTACCGGCTAGGTACTGGTTGTAAGCGGCAGCCCCGATCATGGCCGCGTTGTCCCCGCAGAGCTTAAGCGGCGGCAGGATAACCTTCGGTGCCTTTTCCAAAGCAGCGATCTCCTTGTTCATCCGCTCTCTTAAGCCCAGGTTGGCGGCAACCCCGCCCCCCATGATGAAGGTCTTGGGCTGGTACTGCCGGATGGCCCGCACGGTCTTTTCAGCAAGAACGTCCACCACGGCCGCCTGGAAGCTGGCTGCCAGGTCATACTTATCCAGCTTTTCGCCGATTTGGTCAGCATGGTGGCAGGTGTTGATAAAGGCACTCTTGAGGCCTGAGAAAGAGAAGTCGTAATTATCTTCATCGATCATGGCTCTAGGGAAGCCGAAAGTATCCTTACCCTGGTGGGCCCACTGGTCGATCGTCTTGCCGGCCGGGTAGTTGACCCCCAGGACCCGGCCGATCTTGTCGTAAGCTTCTCCGGCCGCGTCATCGCGGGTGTCGCCCACGATTTCAAAGTGGGTCGGGTCTTTCAACAAAGCAATTTCGGTGTGGCCGCCGGAAACCTGCAGGGCCAAGGCCGGATACTCAACCGGTTCAACCAACTGGGCAGCTGAAATGTGGCCCATGATATGGTCCACCCCAATCAAAGGCAAGCCGGTCGCCATGGAGGCCGCCTTGGCCGCGTTGATCCCGATCAAAAGGGCTCCGACCAGGCCTGGCCCGTGGGTTACGGCGATGGCGTCCAGATCTTCCCAGCTGACCTTGGCTTCTTCCAGGGCTTCCCGGGTAATCTGGGTAATCACTTCGATATGGTGGCGGCTGGCCACTTCCGGCACAACCCCGCCAAAGCGGGCATGGCTCTTGATTTGGGTAGCAACGACCAGGCTTTCGATCTCTGACCCGTTCTTGACCACGGCAGTCGAAGTCTCGTCACAGGAGCTTTCAAAAGCTAAAATGCGAATGTCTTTCTTTTCCTTCACAGTCAGTTCTTCTTTCTTAGATGGCAGATCATGTTCAAACCGTCGCTGTCCGGACGGTCATCATTATCGTAGTAGTTCTTGCGGACAAAATTGTCTTCAAAGCCAAGCTGCCGGTAGAGCTCTTGGGCCTTCTTGTTTTCGACCCGCACTTCCAAGGTGACCGCTTTAAGGTCAGCCGACTTGGCCAAGTCTAAAACCGTCTGAACCAGGTAGCTCCCGATCCCCTGCCCCTGCTCTTTCGGCATCACCGCCAAAAAGGTGATGTGGGCTTTAGAGAGACTGAAGCGGCAGCCGATGGCTCCGACCAAAAAATCCCCCTCAAGCAAGAGCAAGTATAAGGAATCCCGGCGACGCAATTCTTCGGCAAAGACTTCCCCGTCCCAGGGCCGGCGGCCGGCATAAACTTCCTTTTCTAGCAAAAGGAGGCGGGCAAGCTCGCCTGCCTCCGCCTTCTTTAAACAGTATTCATGGCCGCTGATGCTGATTGCCCGGGGGGCAAACTGCACCAGGTCATCTTTAAAGAATAGTCCCATAAGTCTAAACTTCTTCTACATATGCACTGTCTGCTTCAAATTCCTGGCCGGTCTTCTTTGCCCAGTCATACTCAGCCTGCGTCCGGCGCAGATAGTTCGGCACGGCCTGGTCCGGATCAAGGACGGGAGCACTTACCGCCAAGCGGCCAATTGCACCGGCGTGCAGAAGGTTCTCTTCCCCTTCAGCCAGGCGCAGGTCCTTGTCAGCCAGCCCTGCCGCGATTTCTTCCTGGTACTTTCTGAAGTCGCTGCCGACAAAAATCACCTTCTGGTCAGGCAGGGCCCCTACTTGCTCTAAGAGCTCGCTTAAGTGGTAGTGACCGTCTGCAATCACGGCTTCCTTGCCCCGGTAAGCACCGGCAAAGAAGTTCTTGTTTCTGGCGTCTAATGCCGCCACGATCAAGGCATCTTCACCGGCAAAGTTCTGGGCCAGGGCCTGTAAAGTTGAGACTCCAACCAGCTCTTTATTCAAAATGCTGGCAAACATCTTAGCCGTGGTCAAGCCGACTCTGAGGCCAGTATATGAACCAGGCCCGATCGCCACCGCGAAGCGGTCGATGTCTTTTAGAGACAGACCGTTTTCTGCCAGCAGGCTGGCAATATCCGGATCAAGGTCAACGCTGTGGTTGCGCTGGTTTTCCTCGATCTTTTCGCTGACCAAGTGGTCAGCTTCATTCAAGGCAATGCTCAAATCGCTCGTTGCCGTCGAAATGCTTAAAATCTTCATGCTCTAACTTTTATTTCCTAAAATTTTCTACTCAGCTTGACCCGGGACAGGCCTTCCAGGATAAACCAAACCACGACCATATGAATCCATGGAGTGATCATTTCCTTGAGGATCCGGCTGGACAAGGCGACCATAAAATTGGTCCCGCCCAGCATGCTGACCCAAAGGGTGTTCAAGCCGATGTAGCAGATTACCGTGACACAGATTACGGACGCGATGACCCGCCAAATCTGGATGGGCTTCTTGTACAAGAAGAAGCCGTAGATCATCGACTCCAAGGCCGCGGTCAAGGTGAAACCGATAAAGAAGCCGCCCAGGTTGCCAAAAATTGCGGATGAAACCAGATCGCTCAAGGCACCGCCGGCAAAGCCCCACCAAGGCCCGAACAAGTAGCCCAGCATGACGCTGCCGATAAAGCCCAGGCCCACCTGCAGGGTGGCATCCCCGACCTTAAACTGTCCCAAAACCACCTTGATGGCGATAACCATGGCCAGTAAGACCAGCTCCCGCAACTCCAGCTTGCTGCTGACTTTTGATTCACTTTTCACAAGACTGTCCTCCTAAAAAATGGCTTATCAAATCGCTCGTTGCCGTCGAAATGCTTAAAATCTTCATGCTCTAACTTTTATTTCCTAAAATTTTCTACTCAGCTTGACCCGGGACAGGCCTTCTAGGATAAACCAAACCGCGACCATCTGAATCCATGGAGTGATCATTTCCTTGAGGATCCGGCTGGACAGAGCGACCATAAAGTTGATCCCGTACATCATGCTGACCCAAAGGGTGTTCAAGCCGATGTTGCAGATTACCGTGACGCAGATTACGGACGCGATGACCCGCCAAATCTGGATGGGCTGCTTGTACAAGAAGAAGCCATAGATCATCGGCCCCAAGGCCGCGGTCAAGGTGAAACCGATAAAGAAGCCGCCCAGGTTGCCAAAAATTACGGATGAAACCAGGTCGCTCAAGGCACCGCCGGCAAAGCCCCACCAAGGCCCGAACAAGTAGCCCAGCATGACGCTGCCGATAAAGCCCAGGCCCACCTGCAGGGTGGCATTCCCGACCTTAAACTGTCCCAAAATCACCTTGATGGCGATAACCATGGCCAGTAAGACCAGCTCCCGCAACTCCAGCTTGCTGCTGACTTTTGATTCACTTTTCACAAGACTGTCCTCCTAAAAAATGGCTTATCAAAAACAACTAATTCAGTCTCTATTAAAGCACATTTTTTGCCAGTTTACCTCACAAAGTGCCATAAGTTCACCTTGCCGGGTAATGGCGTGGCAAGTCTTGACAGCGCTGTCTTCCGTTTCCTGCATAACCTGGCAGACAACTTCATCGCCGTATTTAATTTCCTTATCAAACTTGATGGCCAGGTCTTTCGGCTCATGGCTGTTGACGAAGTCCCGGGGAAGGCTGTCGACGATCCAGTCCAGGTAGTGGGCGTTGTTGACGTGGTGGTTGGAGTCCAGGTCATAGTAGTAGGCCCGGTAGACCTTCTCGTCTTTGTAATCGTCTTTTGGCCGCAATTTCTTAAAGCGAGGTATTTTAGCCAAAAAGGGTGCTCCCAATTCCTCAGCGATTTTATCATCGCTGGGCAAAAGCTTCCGGCTCTTTAAATCAAACAAAACCCACTGGCTGTGGGCAATTACCAGGTCTTTGCCTGCTTCGTCCTCAATGCCGAAGTCCCGGTAGGACAAAAAGCGGTTGTAGCCAACCGCTTCGGTCCAGACCCTGACTTTTTGCCCGGCCCGGGGAAGGCTGGTAAATTCAAACTCGTACTGAGTGACTACCCAGCCCCTGCCCCGCTCTTTCATGGCGCTAGCCCCGCCTAAAGTTGGCGCCAGCTGCCCTTCAGAGCTTCCCATCATCAGGTCGATCATTCTGGGCAATTTCAGCTGGCCGCTTTCCCCGCAGTCAGCGTATTCCAACTGGTAATCCTTGTAGTATCTCATTTTGCCCCCTCCTGGTGGTAGCGGTCATAGAGTTCGTTTTTGGAAACGCCCTGGCTCTTGGCCACCTGCTTGATGGCATCCTTTTTAGAAACGCCTTGGGCAACTTGCTCTTTGACCAGCTTGACCAGGTCAGCCCAGTCCAGGGTCTTTTCTTCCGTGTTTGGCGACACCAAAACGACGAACTCGCCCCGGGGGTCGACTTCTTTAAAGTGCTGGATGACTTCTTCCAGGCTGCCGCGGACGAATTCTTCATGAATCTTGGTCAGTTCTCTGGCACAGACGACCTGCCGGCCGCCTGGCAAAACTTCCACCATTTGCTCTAAAGTCTTCAAGAGCCGGTGGGGTGCCTCATAAAAGATCGAGGTCGCTCTTGAAGCATTGATTTCTTCTAAAAAAGGCCGCTGCTGGCTGGCCTTGCGGGGCAAAAAGCCGTAGTAGGTAAAGGGCTGCCCGTCAAAGCCGGAAGCGATCAAGGCCGTGGCAAAAGCCGACGGGCCCGGCAGGGGAACGACTGGAACATTGCTTTTGATGCATTCCTGGACCAAAATATAGCCGGGATCAGAAATCACCGGCATGCCGGCATCGCTGATCTCAGCGATTGTCGCCCCCTCCTGCATCAACTTGACCAGTTCCGGCGCCTTTTCTTTAGAGTTGAACTTGTGAAAGGCCACCATCTTGTTGTTAATGCCCAGCCGGTCCAGCATGATCCCGCTGGTTCTGGTATCTTCAGCGGCAATGTAGTCAGCCTCTTCCAGAATCCGCTTGGCCCGGATCGTAATGTCTTCCAGGTTGCCGATGGGGGTAGGCACCAAGTAGAGCTTGCCCTGCTGGTCATCCGCGTAGCTGTGTTGCGTTTGCATTATTTGTGCACCAACTTCTTTCCAAAATTATCCAAAATATCCAGGCAAAACATGCAGTCCGCGCTGGGATCCCGGTGGGTTCCGTAGTACATGTTGCAAATATGGTAGCCAGACTGGTAGATCTGCTTGAGCATGGCCATCCCGCTCTGGCTCTTGCCTTCGTGTTCTTTAACCGTCAATTTGTCCAGCTTCTCGCGCAAAAGCTGGTTTTCAACCTTGAGCTCGGTATTTTCCTTCAGGCTCTCCAGCACCTCCTGCTGCAGGGAGCCCATGCTTTTGAGCATGCGCTCCATCTGCTGCTGCAGCTGCTGCAATTTAGTATATGGGTCCACTTTCCTTACCGCCTTTACTGCTGCCACTTTAAGGCCAAATAGTCCAAATTGTTCAAAAAGCCGACATTACTCTGCCACATCTGGTCAACCCGCATGAGGTCCGCCAAAAAGTTTGCCGCTTCCTGGCAGTCACCCTTCTCCAGGTCCTTTTCGCCCCACTTCTTGAGCAAAATCCAGACATACTTCTCCCACGCCTTGGTCCCCTGCTTTTGCTTTTTAACCAGGCCCGCCAGCTGGTGGGCGGACACGATAGCCAAAGAGTCATGCTCGCGGAGCTCCTGGTAAAAAAATTTTACCGCCTGGTCGACTTCCTGGCTGCTTTTCACCTGGTCAACTTCTTCCTGGCTCATCCCGTTGGCCAAAAGGAGCCTGTCCTTGCTGGAAGCAGCTTGCTGGCTGAAATTGATGATCTGGGTTCTGGACTTGATCGTCGGCAGAATCTGCCCGCCGTTATTGGCAATCAAGAAGGTGACTACCGGTGCCGCTGGCTCTTCCAGCAGGTTGAGCAGGGCGTTTGCAGCCGGCAGGGTCAATTTCTGGGCATGGTTGATCACGAAGTAGCGCCGGTCGCCTTCCAGAGGGCTCTTGGCTAATTCCTGCTTAAGCGGCCGGATCTGGTCAATCGCGATCGACTGCTTGTTTTCTTCCGTGTCGATCAAAAAGACGTCCGGGTGGTTGCCGGCCAGAATCCGCCGGCAGGCCGGGCAGGTCCCGTCCGGCTTCTTTTCGCCCGTGCAGTTCACGTAGCAGATCAGCCAGTAGGCCGTGTTTAAGGCTTCTACCTCATCACTTGACAAGAGCAGGTAGGCATGCGACAGCTGCCCCCGATCCTGGGCTTGCTTGAGCTGCCGGAATTCAGAAGCGCCAATTTGCTTTAAATCCAGCATTAAAAGTGCAGGGACTGGTCAACCGGCAAGACAAAGACCGTCGCGCCGCCGACCGTGATGTTGACCGGTTCAATCGGCTGCTCGAAGGAAATGCCAGGGTGAATGCCCGGGTTAATTGTTTCTTCTCTGGTTTGGGAATGCTCTTCGATCAGCTTCAAAACGCCGTCAACGTCTTCATCTTCCACCCCAAGCAAGAAGGTGGTGTTGCCTTCGCGCAAAAAGCCGCCCGTTGACGCCAGTTTAGTGGCGCCGACATTGTTGTCAACAAAAGCCGACTGCAGGCGCTTGGCGTATTCAGACTGGACAATGGCAATGATCAGTTTCATCTTGATCCCCCCTAAAACAATTCTGGAAATGTGCTTTTCACCAGTTTAACACTTGCGGCCACAACTTGCGGCAAATCTTGACTCGCGTCGACCACTTTTACCCGGTCCGGATGAGCCTGGTTGACCTTTTGGTAGCCCCGGTAGACCTCTTCATGGAAGGCCAGCTTCTCTTGTTCCAGCCGGTCTTCGCTGCCTGACCGGACCTTGGCGATTCTGGCCAGGCCCTGGGCCGGGTCTAAATCCAAAAAGATGGTCAGGTCCGGCTCCAAGTGGCCGGTAGCGAAAGCGTTGATCTGGGCTACTTCATCAATTCCCAGTCCCCGCCCCTGGCCCTGGTAGGCCAAAGAAGAGTCGACAAAGCGGTCGGACATGACCAGGTCCCCCCGCTTTAAAGCCGGATTGATAATCTCGCTGACATGCTGGGACCGGCTGGCCGCGTAGAGCAGGGCCTCGGTCTTGGCATTCATTTCCGTATTGGCCGGGTCCAGGATGATGTCGCGGATTTTTTCCGCGATTTTTGACCCGCCTGGCTCCCGCGTTACTAAAATTTCCCGCTTGCACTGGCCCTGGATGGCCTTGACGACTTCATTGATCACTGTCGTTTTGCCGGCGCCGTCGGGACCTTCAAAAGTGATAAAGTAACCTTGCATTTTAACTTGCCTCCTATCTATCTATTTTACAGAACTAAGGCTAGTATTTACAGACTTATCTTCCCACTAAATCTAGTAGGTAAAAATCGTAAAAAAATAATCCCCCGAAACCAGGAGATTATCAGTTTTTTATTGGGAAATGGCGTTGGTCACGCCGGTGTAAGAAGCATGGCGGTAGCGGGCCTCATCGTACAAAAAGGCATACTCAGCTCTAAAAATCTTGCCCGCCACGATATTGTCATCGGACATGTCCAGGGTCGTGTTGTCTAAACCCTTGCTAAGGCTTATTTCCTGCTGCAGCTTTTCTACCAAAGCCATCAGCTTCTCATCTTCTGCTTGCTTGATTTTGTCGCTGTGCTTACTCATGCTATAGCTCCGTTCTACCTTGAACTGCCCGCTTCAAAGTGATCAAGTTGGCATACTCAATGTCTGAGCCGACCGCCAGGCCCGCGGCCAGCCGGGTAACCTTGAGGCCGGCCGGCTTGATCAAGCGGGAAATGTACATGGCCGTTGACTCCCCTTCCGGGGTGGAATTAAGGGCCAGGATGACTTCTTTGGCAGCATCATTTTTCTGCAGGCGGACGATCAAGGACTTGATGTTGATCTGCTCCGGCCCGATCCCGTCCATCGGGGACAAGACCCCATGCAGGACATGGTAGAGGCCGTCATATTCGCCCATATTTTCAAAGGCCATCACGTCCTTGGCTTCCTCAACCACCATGATGGTTGACCGATCCCGGACTGGATTGCTGCAGATGGCGCAAGGGTCTTGTTCGGTGATGTTGCCGCAGACCGAGCACTGGCGCAGCTTTTCCTTAACGTCGACCAGAGCCTGGGCGAATTCGTCCACGTCTTCTTTAGGCATGTCCATGGCGTAAAAGGCCAGGCGGGTCGCCGTCTTTTCACCGATGCCCGGCAGTTTCATGAAGGAATCGATCAAGCGGGCGATTGGCAATGGGTATTGCAAATTACATCAGGCCTTTCGTGTACTTGCCCAGGCTCTGCTGGGTTGCCTGGTCGATCTGCTTCAAGCCCTTGTTAACAGCGTCGATAACCAGGTCTTCCAGCATGTCCGGGTCATCCGGATCAATGGCTTCCGGCTTGATGAACAAGCTCTTTAAAGTCCGGTCGCCGGTAAAAGTAGCCACTACCATGTCGTCAGCTGCCTTGCCGGTGAATTCCTGGGTCGTGATGTTTTCCTGTTCCTGGGCCATTTGTTCCTGCAGCTTCTTGGCTTGCTTCATCATCTGCTGCATGTTCATGCCGCCCATTCCTGGGAAAGCTGGTCTTTTGCTCATGAAAAAATCTCCTTTTACTACTTCTTACTACTTCGTTTTTATCTGCTTAATTTTAACGCGAAAAAAGTTTTTTGGCGAATATTAGTCCTTAACCTGGGCCAAAGGGCCGAAAAGCTCTTCTGCCTTGGTCACGATCGCATCATCTGCCGCTTCTTCCGGCGGCGCCTGGTCCGGCAAAGGCGGCTCAGGAGCTGCTTCTTCTGCCGGCTGAGCTTCTGCTGGCTGGGCCTTGGCCCGGAGCTGACTGGCATGTTCTTTAATGAACTCCTGGCGGATCTTTGGCCAGGCCTTTTCGTCAACGATGGCGATGGTCCAGCTCTCCTTGGTCAATTGATCCAGGTCAGCTTTGAGAGTTGCTAAAAATTCCTGAGGATTTGTGACCAGCTGCCAGGCCCGGGACTGGCTGGACAAAAGAACCGCCCGGTCGCTGGCCGCGATCGGCTGCAGGAAGCCCAAGACCGTCTTGGCCGGCTCTTCCAGCATGCTTGGCAAGTCCCGGTCCCAAAGGTTGCGGGCCTCAGCTAAGCCGGGCTTGGTGGCCTGGCTTAAGACCGCGTAGATCTCTTCCTGGCTGCTGGTGATTTCAGCCTGCAGGCTTTCGGCTTGCTGCTGCTTTTCCGCCGCCTGCTGGGCCACTTCGGTTGCCCCGCCCTTTTGCGTGTACAGCTGCTGGTTGAGCTGGAAGACATGGCGGGGGCTGAAGGCCTGGCTTGGCCGCTGACTCAGCTGCTGAACCTGCTGGGTCAGCTGGTGGACTTGTTCTTTCAAGACCTTGATCTGCCGCTCTATGGCCGGGTTGCTGGCCGCGGAAGCAACTTGCGGGCCTGCCTGGCTGTTTTGCCGCTTCTGGCTGGCCTGGACTAAAAAGACTTCCAAGGGAATCTGCTGCTGGTTGGTAAAGCGGAGACTGCCCAAGGCGTCATTAGCCTGGTCAATGATCTGGCTGAAGCGGTCCGGGCTTTGCTGGGCAATTTCCTGGGCAAAGTCATCCGTCAGGAATTCCCCCTGCCCTGTTTTGGTAAAAAGCATGGCCTGGACGGTCAAGCTAATAATTTCATTTAAGATGTTTTGGGCGCTGGCCCCGTCCTGGATGGCAGACTTAGCTAAGTCCAGGGCCATCTGGCTGTCCCCGTTTAAGAGGGCCAAAAGGAGCTTTTCCACTTGCTCCTGGGCGGCGAAGCCGGTGACTTCCAGGGCGTCCTCGTAGCGGACACTGCTTTTTTCAAAAGAAAGGAGCTGGTCCAAAATGCTCAAGGCATCCCGCATCCCCCCGTCAGCGACTTGGGCGATGACCTTTAAGGCCTTGTCCTCATATTCGACCCCTTCCTGGCCCAGGATGTATTCCATCCGCTGGACCATGGCCTCATTTGAGAAGCGCTTGAAGTTGTAGCGCTGGGTTCTGGAAATGATGGTGGCCGGCACCTTCTGCAGTTCAGTCGTCGCCAAAATAAAGACGACGCTGGCCGGCGGTTCTTCCAAAGTCTTCAAAAGGGCATTGAAGGCTGAAATCGACAGCATGTGGACTTCGTCAATGATGTAAACCTTGTACTTGCCTTCAGTTGGGGCGTAGTGAACCTTGTCCAAAAGGTCGCGGATTTCGTCAACGCTGTTGTTTGAGGCCGCGTCCATTTCAATGATGTCCGGCATTGCACCCTGGTCGGCGGCCAGGCAGTTGCTGCACTCGTTGCAAGGTTCGCCCTCTTGCAGGTTTAAACAGTTCAAGGCCTTGGCAAAAATCTTGGCGCATGAGGTCTTCCCCGTTCCCCGCGGGCCGGCAAAAAGAAAGGCATGCGAGACCTTGCCCCGGATAAGTGAATTCTTGAGGGTATCGGTAATGGCTTCCTGCCCGACCACATCATCAAAGGTGCGCGGGCGCCATTTGCGATACAAAGCTTGATAAGCCATACATTCTCCCCGTAATGAAAAAGCTCCTAGCCCCGAAGAGCTAAGAGCCTGTTAATTGCTAAATAAAGGGCACATGTCCAAGCGACCTTAGTGCTGCTACCTTCCGGTCCTGACACGCTTCGGAGGTCGAACATTGCCCAACAAATATTGTAACCTAAACTAATCCTTTTGGCAATTTTCCTGGGCTTTTTTTGCTAATTTTTGTTTGCGGCGGATTTCCCGGAAGAAATCTTTCAAAAGCTGGGCCCCTTGCTCCTTGTAAAGACCCCGGATGACCTTGGGATGGTGGTTGAATTTTTCCACGCTGAAGAGGTCGACCACGCTGCCGGCGGCGCCAGCTTTGGGGTCCATGGCCGCAAAATAGACTTCCTTGATCCGGGAGTTGATAATGGCTCCGGCACACATGGCGCAAGGCTCCAGGGTGACAAACAGGTTGCAGTCGATCAGGCGCCAGGAGTCTAGCTTTTGGCAGGCTTCTTTAATAGCCAGAATTTCGGCATGGGCTGTCCCGTCTTCATCCAGCTCCCGCCGGTTGTAGCCCCGGCCGATAATCTGCCCGTCTGGCCCCACGACAACGGCCCCGATGGGAACCTCGTCTTGCCGGCGGGCCTTTTCTGCTTCCGCAAAGGCGGCCTCCATGTAGGTCTTTTTTTCTTCGCTTGAATACATTATTTCTTCACGCTCTTTAAAATGTAGTAGCCCTTGTCCCGGGTCAAGATTTCGCAGTTGCCCAGGCTGGCTGCCATCAGCTTCTTCGCGCTCGGTGCCCCCTGCTTTTTCTGGATGACGACCAGCAAAATCCCGCCATCAGTTAAGTGGCCCTTAGCTTCTGACAAAATGCTGGACCAGATGGCTTTGCCGGCCCGGATCGGCGGATTGGTCACGATCATGGCATATTGGCCGAAAACTTCTTGATAGCGGTCTGAGGCAAAAATATTAACGTTGCCTGCCCCGTTGGCCGCCGCGTTTCTTCTGGCCAGGTCCATGGCCCGTTCATTAACGTCAACCATGTCGACCTGGCGGCCGGGCCATTTTTTAGCGGCGAAAAGACCGATCGGGCCATAGCCGCAGCCGACATCCAGAATATTGCCGCCTGGCAGCTCCTGGTCCAGCATCTGCTCAATCAAGACCCCGCTGCCGTAGTCGACCCGGGTTTTGGAAAAAACGCCGGCATCCGTGGTCAGGTTTAAGTTAATGCCATTAAGGTGGTAGTTGACATGGTGCTCATCATGGTCAACCGTGGGATTTTCAGTAAAGTATTGTTCAGCCATCTTATGCCTCGCTGATCTTTACGGCGTCAGTACCGTCGATTTCGCTGACCTGGACCTGGACGTCCTCGCTGGCCGCGGTTGGGATGTTCTTACCGATAAAGTCCGGCCGGATCGGCAGTTCCCGGTGGCCCCGGTCGATCAAGATCGCCAGAGCGATCTTGTCTGGCCGACCCTGGTCCATGATGGCGTCAAGAGCTGCCCGGATGGTCCGGCCAGTGTAAAGGACGTCGTCAACCAGGATGACCGTCTTGCCAGTCAAGTCAAAGGAAGTGTCAAAGCTGGCAATGGCCTTGGCCTTTTCCTCCTGGCTGAGGTCGTCCCGGTAGGCGGAGATGTCTAAAGACAAGACTGGCAGCTGGCTGTCTTCAATTTTGGCCAGGCGGTCGCCGATTCTCTGGGCCAGGTACCAGCCCCGGGTCTTAATTCCGATTAAGACCAGGTTTTCCGTCCCCTTGTTTCTTTCTACAATTTCGTAGCTCATTCTGGTCAGAGCCCGGCGGATCCCCGCTTCATCCATGATTTGTTTGCTCATTTTTCTTCTCTCCGTATGGTAGTTTTTTCTATTCTATTGTTCTTTTCTGTTTCTATTTTTTATTCTGGTAAAAAAGCATCGCTAACCATTTTATAAGACTGGCCCGGATGTAGTCAAATTCCGCCAGTTCTTTTCATAAGCGCTGGCCACCAAGTCCAGGTACTTGTCATAGTCAAGCGAATGCAAAATTGCTTCCTGCTCTTCAGCTTGAAGTAAGTTGACGGCCCGGTTTTCCACGTGCATGAACCAGTCAGGTGACAGATTAGGAATTTTCTGGACCGTAGCCTCCCGGCCTTTTGCCAAGTTGCCCAGGCCGTTAGCCTTAAGGACGGACAGGGCTTCTTGGTCATGCTGGATCACGGCCTCCCCGCTTTTCTTGCGCTTGTTCAGCATGGCCGGGGTCAGCTTTTTAGCCGCGGCGGAATAAAGGTGAACCGTCTTCGGCAGGCCGTCTTGATAGATAAAGACCCGGTTGTAGCGCTGCAAGATTAAGAGCTGGCCGGCATCCCCCCGGCCGAAAATGCAGTTAGCCCGCTCCTTGCTGTGGTTGGCTGAGAGGACGTTTTGGAACATTCTGAGCCGGTGGGCCGGGTCTGGGAAGGCTTCCTCAGCTTCCGCCAGAATCTGCCGGCCCAGGTCCCGGTCAAAAGGCGCTGCCAGGTCTGTTCTTTTTTCCAGCAGGTAGCGGCTTAGGGCCCAGTCGATGATGGCCGGGTGGGCCAGGGACTTGGTCGGGCTGGTGTCCTTCCGGCAGGCCAGGCTGCCTGAGGCAGACAGGATCTTGGTCAAGTCCGGGCTGGCTTCCAGGCGGTTGTTGGAGTCTTTAGAAACCAGGTAGAGTTCTTCCGGGACGATTTCCACCCCGATTTCAGCAGCTTCTTTAGCCAAGATCTTCCGGTTTAAGTCCGCGTCCAAAACTGAGTAAAGGCCATCAGTGTTGGTTGACACGATCCGGGCTCCGGCATAGGTCTGGGCCTGGCCGATCATATAAGTGAAGAGCTGGCCGATGATCCGCATGGACCGGATCCGGTTGTTCATTCTAATAGAGGACGGCACTTGCCCCTCTCTTGGGTCAGCGGCCCCGGTAGCTGAGTTTAAGATCAGCTTGGTCCCTTCTCTTTCAATATTAAACATCCGCCGCTCTTCGTCGCTGTATTGGGGATCAGTCCGCTTTTTGTCCAATTCCTGCTTTCTTTCAAAGATCGCCGTATACCGGTCTTCACCTAAGCGGTCATTGTAAAAAGCATTCAAGCGCCGGAGCATGTTTGGATAGTAGGAAGTAAAGTCCTCGTGGTTGGTCAGGTCGCTTGAAGTAAAGGCATAGCGGTCATCCAGTCGGACCCGGCTCCCCTGCTTTTTGAAAACGGTTGGTTCATCTTGACTGAAGTCCCGCCAAAACTGCCCCCGGTCGGCTGGATCCGTCTGCTCCATCAGCTTGATCGTTGCTTTGGCAGTCAGAAAAGTCTGGTACTTTTCCACCCGGCCGTCTGGCAGGGTAACTTCCCTGGCCTTACGCAAGTCCAAAGGATCTGGATAAAGCTTTTGCACATAAGCCAGGTCAGCCTGCTTTTTCTCCCAAAGGGCATGGTCTTTTAAATAAAGGTCACGGTTATATTCTGACCCATGCAGGCCGCCGACGGAAAAAGTAATGTAGCAAGTCGATGGCTGGCCGTCCTTTTGGTAGTAGAAAAGGTTGGTATCTTCGTTTTCGACATCGCTTAAGTCGCTGACCGGCAGGGCCTGGTCGCCGTAATCTTCCCGGTATTCTTTTGAAGGATTGAAGTTCTTGCCGGCAAACTGCTTATAGTAGTCATAAACCCGGTCGAACTTCTTGCGTAAGTTTTCGTCCTCAAAGAGCTTGTAGAAAAAGTCCCGGCTTTCTTCCAGGATGTCTCTCTGCTTTTCGCCCGTTTTTTCCGCCACGCTGGCCGCCGGGTACAAGAAGGAAACAGCCCGGTCATCTTTTAAGCGGCCATATGGGCAGATGGTCCGGCGGGCAAAATTAGCAGAAGAAGAATCGATGGTCAAGCGGTCTTTTCTAACAAAGGCCGGGCCGATTTTCGCCTGGTAGCTGTCCCCGTCTTCTTGGTAGATCAAGTCCGGGTACTGGCCCAAGAGGCCCTTTTTCAAAATAAACTGGCCCTGGTAGTAAGGATGGCAGAAAAGCTCCTTTAAATTGACCACGTCAGAAACGTTGTAGGCAATGAGATCTGCCAGTTCTTCGGGACTGGTCAAATAGTCCTGGCCAGGCTTTAATTTGTCACTTTCCAGAATCTGCCAGCCCAGCATCCCCAAAAGGCGCTTGAGGCCAACCCGTCTTTGCCGCTCATTGAGCTGGGCCACGTCGATATGGCGGCCGGACATCTGGAAGTTTTTGGCAACTAAACCCATGGTCTTGTCCTGCCAAAGGCGCAGGCGCATGTTGCCGATATAGCGGATGAAGAGCTCATCGTTAAAGTCCCGCATCTCCCTTGCCGTCACGGCTGAAAAGCGGTCCCGCTTGCCGCTTTCGACAGGCTGCCAGGCTCTAGTAAAGTAGTAGGCCAGCATGGTCAAGTCGTAGTTGCTGGAATTGTAGCCCATCAGGTAGGGCGCTTCTTCTTCCTGGTAGCCTTGGTCAGTGTCGCAGACCGGGCGGAACTGGCCAGGGAAAGAGGACGGGGCTTGGGGATCATTGACGTATTGGGCATCTGAAACCCCAAAGGTCTGGGCCAGACGGGCGGAAGCTGCACTTGAGCAGAGATTGTAGTAGTAGATCTCCCCTTTAAAGTTCTGGTTCTTCTCCCGGATCCGCCGGGCAGCAGCCTTCTTAAAGTCCAGGCTGTCTTTGTCATTTAAGGCCGGATCATCAACCAGGTAATAGATGTCAACCCGCTGGTCGTCTGGCCGGTAGCAGGACAAGGTAAAGGCGTTGGTCAAAGATTCGATATCGTAGAAATAAGAATTGAGTCGGCTAATTTTTTCCTCCAGTCGTTTACTTACATTTTAGCAAAAAGCAAGAAAAAAGCGGGCCATCAGGTCCGCTCCCTTGTCCTGCCGTGCAGCTGCTCATAGCGCTCCAGCGACATTGAGGTTACATGATAATTCTTGCAATAAGGACACCGGTAAGCCCGAATCGGCATCTGCCGCCAGTGCTCATGGTTGATTTCACGCAGGTGAAAGGTCACCTCTTCCTGGTAAAGAAACAAGTCGGCATCAAACTTCGTCTTAAAGGCCCGCTTGCCGCTGGAGCAAGCCAGCAGACGGCTGCGGCGGGCGCGCCGGTAAGCCTTACTGGCTTTACTCTTCGTCATTGCTATGCCCCCCTTACTTTCTTCAGAAGTAAAACAGCAAATCACTGAATCCTTATGTCAATATTCACTTTCTAGCTTGATTTTATCACCATTCGCCTGCCTGCTCAATTAATAGCTACTTTTTACCAAGATTTTAGTAAGCGCTCTATTGTTTTTTAATTAAATAAGGATGATAATAAACTAGTGTGCAAAGAATATTTCATGAATTCTTAGGAGGCAAAATGAGAAAATTAACTAAGTCTGTCGTGACTAAAGTGCCCTACAATTGTTAGACATAGACATCTAACGATTGTGGGGTATTTTTATGACCAAGTATTCATCTGAACTAAAAGTACAAATTGCTTCTGATTATCCTTACGGTAGAGACACATACAATGGATTAAGCAAAAAGTATAATATCGCTGCGTCAATAATTCGTACGTGGGTGAAAGCCGCTGAACTCAATGGATTGGAAATCTTAAAAGTTAAGCGAACCAAAAGAGAATATTCTGTTGACTTTAAGCTACTATACTAAAATCCAATGTAGGACGTAATCTGGTAGCTGCTAAATTCAATATTAGTCCGTCACAAGTGTATTCATGGACTAAGAAGTTCTAGCGAGGCGGTCCAGATGCGCTCCTTCCTGTCAAGAAAGGTAGACCCGCTAAAATGTCTAAGAAGACCGAGAAAGCCAAGCGTAATAAGCAAATAGGTACTCTAACTGATAAGCAGAAATATGAGGACAAAATTCTGGAAAAGGATGCCAGAATAAAAGAATTAGAATTGGAGCTCATCATCGCAAAAAAAGTGGCCGCCCGGAACTTTTGGCCCTAAAGGCCGGAGCCGACCTCCTTTTAGGCGGCAAATTGGAAAACTTACCAATTTTGGAAGCAGCCGCAGAGAGCGGTGAATTGCCAAAAGAGCGGATCAAAGACGCTCTGGTCCGGGTCCAGACCCTGCAGGACGATTATTCTCTTTAAGCTTTTAAAAAGCTCTGTAACATTTCAGAATTAACCAGCAATTTAACGACAAAAAAGGCAGATCCGGAGATCTGCCTTTTTATCTTGCAATTTATTGTCTATTTCTTACTTTGTTTCTTTGTTACTTTGCTTAAGTCTTAGAGAAAGTAGCAAACCTAATCTTTTTCAAGATCTGGTAGCCAACATCCTTGACCTTGTCTTTACCAAAGCTGCGCTGGTTGAGAAGCAGGATAATCCCGTTCTTGTTGTCAGCTGTCAGCTGGAAGTAAGCAGCATAGTGGGCGCTGCCAATTGCCCCGTAGGCCAGCTTGACCTTTTCCCCCTTCTTGAGGTAAACACCGCCGCTATATTGGTTGATCTTGCTCTTGAGGTGGGTCAGCTTGTGAAAGGCGCTCGGCGACAGGAACTGCCCTGTCCCCAAAGCTTCTTGGATAAGATAGTAGTCGCTGGCTGTCGTCAGCATGTTCCCGGCCCCAACCAGCTGAGACAACCGTGTCTTTTCCAAAGTTGCCGCCTGCTGGTAGTTCTTGCCATGCTTATAGGCGTAAGATACAGCCAGCATCTTATTCTTAGGCAGCTGGCTGCTTACATAAGTTGACTTGAGGCCCAGTCTCTGGACCACCCGCTTCTTAAAGTTCCAGGCATATGACTTATGGCTCACCTTCTTGATGATGCCTGCCAGCAAAACATAATTGACATCGCTGTAGTGGTAACTCCCCACCTTGTCTTGCGGCAATTGGTTAGCCCGGGTCACAATCCAGTTTACTGCCTGGTCTTCACTGTAGTTGATATGGCGGTCGGCTTCGACTTCCGGAATCTGCACGCCTGAAGTGTGGGAAAGCAAGTTGCCCACGCTGATTTTCTTGGCATTCCGCAAGGCCGGGTACCAGCGGGAGATCTTCGTGTTTTGACTAAAAGCACTTGAGCTCCCCTTCTTTTCTTCCATCAGCTGCATGATCATGGCCCCGGTAACTTCCTTTTGCATGGAAGCGGCCGGGTAGACGACCTGGCTGGCCCCGTTCTTGACCTTCTGCTTAGCATTAGCCAAGCCATAGTTAACAACCTGGACATGCCCGTTTTGCACTATAGCCACGCTTCCGGTCACATGCTTCTTCTTAAAAAGCTTCTCGACAAAAACATGCATATCGGCCGCCGTTGCCAGATCAGGGGCGGTTTCTTCTGGCCAAAACGCCAAAGCGGCCACTAAGACAAGCAGGGCAACGATTAATTTCTTACCTTTTTTGAACAAGTCTGCTTTTCCCTCCTAGAATAAATATGAACATTATAAGCCCTTTTCCAGGGAAAAGGGAAAAGTCATTATACTTTTAAAAAATTAAAAAAATACTCACTAATTCAAACTGAAGGTTCCCGGCTGTATCTTCTGCAAGAGGCCGAAGGCCAGGCCCTTGAGCTGCTGTTCAGTCTGGCTGCGCTCATTGACGAACATGATGATCCCATTTCTGTTGTCCGCCGTCAGCTGGACGTAAGTCCCGTAGTGCTCATCCATAATCGCGCCAAAGGCAGACTTGACCTTGCCGTCCCGCTTCATGTACATGCCGCCGCTATAGGTGGTCTTTCTGGCCTTGAGGTGAGTCAGGTATTTAAAGTCGCTTTGGTTCAAAATTGCCCCGTTCTGCAAGGCCAGCATGATCTCATAATATTCAATTGGCGTGGTGCACATATTGCCGGCACCTGGGATCTGGGAAGCTACGGACTTAGGCAGAGAAACCGGTCTTTGGTACTTTCTCTGCCAAAGGTAGGCATAAGAGACCTCCTGGCTCTGGGTCCAAGGGATGTCGTGTCTGAGGCTGGTGTGGGCTAAACCCAGCGGCTGAACGATCCGGTGCTTGAAGTTGTAGGCGTAGGAGTGACCGGTCAATTTGCGGATAATGCCCGCCAGCAAGATGTAGTTGGAATTGTTGTAGTTAAAACTGCCCGTCTGATACTGCCAGCTACCATTGATCTTCTGGATCACCCAGTTGATGGCCTTGTTTTCTGACAGATTCTTGCGCCGGTTGCTTTCTGAGCCTGGCGTCCGGTAGCCGCTGGTGTGGGTCAAAAGGTTGCCAACCGTCACATAGCGGGCATTCTTCAGCTTGGGATACCAGCGGGAAATCTTGGTGTACTGGCTGAATTGCTGCTTGGTATGATTCTTTTCGTTCATGATCTGCACTAGCATGGCCCCGGTTACCACCTTTTGCAGGGAAGCGGCTGGATAGGTCACGTTATAAGAACCGTTCTTCATCCGCCGTCCAAACCAGGCATAGCCGTAGTTGACGGTCTTGACGCTGCCGTTTTGGACTAAAAGAACTGCCCCGGCCAGGTGGTTGTCCCTCATTACCCGGTTGACGTCGCTCTTGGTCGCTTCCGCCTGGACCGTAGCTGGCGCCAAAGCTGGAAGCAGGAGGCTGGCAGCTAAAGCCAGCTTGCCGGCAGTTTTCGCGGATTTTTTCAAAAAGAAATCTTTAAAATTCAATTTGCTCTTCCCTTTCTCATCATAAGCATAACTACGAATTATGTTAGCCCTAATATTTATTAAAAACAAGGGAAGCTGTGTTACGTTTTAATTACAGGATTTTTCCGCAAAAAAGACCACCGGAATCAACCGATGGTCATTTAGAAGTGGTCAAGCTTACTTAACGGCATCCTTCAGGGCCTTGCCTGGCTTGAAGGCTGGAACCTTGCTTGCAGGGATTTCGATTTCAGCGCCAGTTTGCGGGTTGCGGCCCTTCCGAGCAGCGCGTTCACGAACTTCAAAAGTCCCAAAGCCGATCAATTGTACCTTTTCACCCTTAGCAAGTGCTTCTTCGATTGATGCAAACAAAGCGTCAACGATTTGAGCAGATTCCTTCTTGCTGAATTCAGTCTTTTCACTTACAACTGAGACAAGTTCAGTCTTGTTCATCTTGTTTCCTCATCTTTCTATTAAAAGGTTCAGCAATATGCCGAAGCTTAGTCATAAGCTTAATTATAGCAAAACTTTGCCGCTGCAACAGCCTTTCTGTGAAATAGATGAGGGGGGGGGAATACTAAAATTACAAAAGTCTTCTAGCAGAATCCACCTATTTCACTGGCACGCAGTGCTTGTCGTTGATCGCCTTGACTTTGTCCACCCGCCGGCGGTACTTTTCTTCCATCAAAGGATCCGTGTTCAGCCAGGTCTTGACGATTTCGCCGGCCATCATGTCCCCGATAATCTTGGCACCTAAGCAAAGGACGTTGGAGTCGGTGTGCTGGCGGGCAAGCTTGGCGCAGAAAGGATCCTAGCAGACCGCGGCGTAAATGCCGTTAATCTTGTTGGCGATCAAGGCGCTACCGTAGCCAACCCCGTCAACGAAAATGCCCCGGTCGCATTCGCCCTTGGCCACAGCCAGGCTAGCTGGGTAGACAAAGTCTGACAGGTCGCTCTTCATTGCCGGTCCCGAAGTCAACGACTTCATAGCCTTATTCCTCCAGATAGGCCTTGATTTTGTTCTTCAAGCGGGTACCCGCGTGGTCGTTTGCCATTGCGATCTTCATGTTTATGCCTTCTTCTATTTCAATTTTTTAAAAAACTTCTCTCGCCTCTATTCTACCATTTCCAAAGAAAGGGAAAAGTTATGAGCAAATTTTAGCCTTTCTTAAATAAGTTCATGCACTTTGGTCAATTTCTTGCCATACTTGCTTCTAATTATCCAGATAGAATTTCTTGTAATATCAAGGAAAGTATTTTATGGCAAGGAGGGACTACCATGTCTGCCAGAAAAGTTATCACGAGTGTACTCGCCGTTGGAACAACCATTGCTATTGCCATCGACGGCTATCTCTTATTTTTAAAAGCTGACCAAGCCAGCTCGGCTGCATCTACAGCTTAATCCAGCACAAGCACTGCAACTTCCAGTTCTGCTTCATCTTCAAGCTCATCTGCAAGTTAATCCACGTCCAGCGGATTAAAAGACGGTACTTACAGCGGCAAATCTGTCAGCACCCAGTGGGGCGATATCCAAGTCCAGATCAAGGTCAGAGGGGGAAAAATCACCACGGTTAATGTCTTAAAGTACCCTTCAGACAACGACCACTCCCAGCAGATCAACGACCAGGCCCTGCCTGTCTATAAAAAAGAGGCCGTCGAGGCCCAGAGTGCCGACATCCAGCAGGTTTCCGGGGCCACCGTCACTTACGAGGGCTTCACCCAGTCCCTGCAAAACGCCATCACCCAGGCTAAAGAAAGCTAGTGGCCATTATAACTGTAACCTGCCTTAACCAGACAGTGGAAGCCATGACCATTTCTTTCACTGTTTCTGTTGCTGTTCAAGGAGAGGCATCCCCGAACTTGACCCAGGCTTTTACAGACGCCTGTAGAAAAATTTATACAGAATTAAAAAGAATCGAAGCTGATTTCTCCGCCTTTTTGCCAGACTCCTTAGTCAGCCGCTTTGCTGAAGGCGATGAGAGCATCCTTTTAGACAATGCTGAATTTCAAGAAGTGTACGCGGCCGCCCTTTTGGCCAAAGAAGAAACAGCCGGTGCCTTTGATCCCTACTTTGCCGGCAAATTCGACCCGACCGGCCTGGTCAAGGGCTGGGCAGTGAAAAAAATCTTTGCCTCCTGTCTCATGCCCCTAGCTGCTTTTCCCGAAGTCACCGGCCTCTGCATCAACGGCGGCGGGGACCTGCAGGCCTGGACCAGGGGCGACTTCCGCTGGGAAGACCGGCATTGAGAACCCGGCCCAGCCCCGCCTGCTCTTGCTGATCGCCGGCGGGATCGGGGTTGTCCCCCTCCTGTCGGTAATTGACGGCAGTCCTGACTTGCCTACTAAAGTCTTTTACAACGCCCACACCAAGGAATCCTTGATCTATGAGGAAAAATTCTACTACTGGAACAGCCGGGACAATTTCCAGAGCCACTGCCAGGTGGGCCGGTTTAAAGATGAGGAAATTTTTCCCTGCCTGAAGACTTTTCCGGTCTCCAGGTTTTGATCGGGGGTCCCCAGGTCATGGCTGACCACTGGCTCAAGCTCTTAAAAGAAAAGGGCCTGCCAGCCGGGCTGATCTATTATGAAGAATTTGACTGGTAAAAAATAATCCAAACAAAAAGTGAGACCCAGCGGTCCCACTTTTTTCTGTGTTTCTGAATTACTAATTAGCGATGTAGGCATACTTGAAGTTGTAGCAGGCGCCGGCACTGTTGTAGATAATGCCCTTGACCTTGCTCTTGATCATCCAGGCCTTGTTGGCTTGAGTTAAAGGAGTTACCCCCTGGTTTGACCATCAAGATGTTTTCAGCCTTGGCCAAAAGCTTCATATGGGCCTCCCCGGAACTGGTCTTAGATGCCGCGATCAGCTTGTCGTATTCCTTGTTGCTCCAGCTCCCGTAGTTGTAGGAGTTACCAGTCGTTTCACAGTCCAGGAAGGAGATCGGGTCAGCGTAGTCGGCGATCCAGCCGTACAAGGTGCATTCAAAGTTGCCGGCCAGGACCCGGTTGAGCTTGGTCTTGGAAGGGATGCTCTGCACCTTGACAGTGGTCTTGTCGCCAAAAGCAGTTTCCAGCTGGCTCTGGACGAATTCCGCCAGTTTCTTGGAAGTATCGTCGTCAGAAGCCAAAAGGGTAAAGAACAATTTGCTTAGGCCCTCTTCCTTCAAGCCTGTTTCGAAGTACTGCTTGGCCAGCTGTTTATTGTAGCTGGTGTACTTTTTAGCCTCGCTGCTGGCGGCCAGCTTGGTGAAGTCCTCACCGTTGACAGTAGTCAAGCCGCTGGAAGTAAGGGTCGTCGCTGCCTTGTAGGTGGCCCCTAATGTCTTGGACAGGCTGGACCGGTTGATGGCCATGGAGATCCCCCGGCGGAGGTTAGTACTCTTAAACTTGCTGTACTTCTTCAAGTTGAACTGGAGATACTGGGTGTTGGCCACTTTTCTGATCGTGTAGCCCTTGGACTTGGTCAATTGCTTGGAGGGTTGGGCGTCCAGGATGGTCCCGTCCAATTTTCCTGCCTGGTAGAGGTTGTAGGCAGTTGACGGAGACTTTTGGACAGAATAGTTGATTTTGGTCAGCTGACATCCTTCTTGTCCCAGTAGTACTTGTTCTTGACCAGCTTCCAAGAGAGGTTGGAGCCAGTCCACCCTTGTGCACGAATGGGCCATTGTAGACCATGTATTTAGAAGCGATCCCGTACTTGGACCCGTACTTCTTGACTGCCTGTTCATTTTGCGGGAAGAAAAGCGGGAAGGCCATCAAGAGCTTGAAGTATGTGATCTTCCACTCTAAGCTGACAACCAGCTTGTACTTGCCCACGGCTTGATGCCCAGGGTGGAAGCCTTTTTCTTACCGGCGACGATCGCGTCAGCGTTTTTAATCCCGGAAAAAAGATAGGAGTATTCCGACGCGGTCTTGGGGTCAACCGTCCGCTTCCAGGAGTAGACAAAGTCCTTGGCGGTCAAGGCCTGGCCATTGGACCATTTGGCATTCTTGCGGATTTTGAAAGTCCAGGTCTTGCCATCTTTAGAAACGGTTGCCTTGGTTGCCAGGGCGTTTTTCACCTTGGCATTGTTGCCCAGGGTGTAGAGGCCCTCCATGACTTGGTTGACCTGGTTGAAAGAAACGTCGTCCATGATCTTGGACACGTCGATGGTGGACAGTTCCGCCTCTTCCATCCAGTTCAGCTTTTGATTGGCCGCGGTCTTGCTGAAACTTGCCCCGCAGGCAGCCAAGAGGGTTGACGTCATGACGGCCAGACCGCCCAGGATAATTTTGCTCTTTTTCATTTATTTTTTGCCTCAAATCAAACCAGACTGGTTCAAGGACGCGCGGTGAACCAGCACTACTGCCATTATTCCTAAACCTACATGTCGCCTGTAGTTTCTCTCCTGATTCATCGCTTGTCACGCTCCTTTTATTGAGGTATATAAGCTATTTTTTCATTCTATCAACTAGAGCGGAAATTGCACGCATCTTTTGGTGAAAAAACAATTTTTAAGCAAAAAGGGCAGAAATACTGATGGTAAAATAGAAATAATCCAAGTAGTATTATCTGTAAGTAAATCGTAGTTTGACAAGTAGAGAGAATTAATAAATGACGACACGCGACAAATTGCTGGCAGAGAACTGGATAAAGAAAAAATCCGCTATTACATCATGCAGGACTTTCTCTATCTGAAGGACTATGCGGCTGGCAACGTCCACCTAATTGATATCTTCGTCACCTGCTCCCGTTATGAGGCTGACTTCTGGCAGATGGCCTGGGAGCAGAAGCAGTAGTCCAAAAATATTGCAGTAAACGTTGCAGTTTTTTCGTAGAAAAATTTTTCGTTAGAGGCCTTTAGGCCTCTTTTTGGGCAAAAAGTTAAAAAAGCCAAACAAAAAACGCGCCTGTGGATGTCCACAAACGCGTTCTTCGTTAATAATTAATGCCCGAAGGCCGTAATTATTTAAGGGTAACAGTTGCGCCAACTTCTTCAAGCTTAGCCTTAAGTTCGTTAGCTTCGTCTTCTGACAAGCCTTCCTTAAGAACAACTGGAGCACCGTCAACAGTCTTCTTAGCGTCCAGCAAGCTTGCGCCAGTAGCTTCCTTAACGATCTTGATAACCTTAACCTTTTCAGTACCTGCTGAAGTCAATTCAACGTCGAAGCTTGACTTAGCTTCTTCAGCACCACCAGCGGCACCAGCAGCAGCTACAGGAGCAGCAGCAGTAACGCCGAATTCTTCTTCGATAGCGTGTACAAGGTCGTTCAATTCAAGAATTGAAGCACCCTTCAATTGTTCAATGATGTTAGCAGTATCCAAAGCCATTGTAATATCCTCCGAAAATATGGAATTTAATATCTAGTTTAAAATGACCAGACTATTCAGCTGATTCTTCCTTTGATTCAGCGACAGCCTTAACAACGTATGCAAAGTTGCGTACAGGTGCTTGCAATACAGAAAGAAGCATTGAAAGCAGACCTTCGCGACCTGGAATTGCAGCCAGTTCTTCGACTTGTTCCTTGGTAGCAACTTGACCTTCAAGTGCACCACCCTTAATTTCAACAACGTCGAACTTCTTAGCGTAGTCAGCAGCGATCCGGGCAGGTGCAGTAACATTGTCTTCATCATCAGTGTAGATCACAGCTGATGGACCAACGAATACTGGTGCCAAATCGTCCAAGCCGGCTTGAGCAGCAGCGCGGCGAAGGTAAGTGTTCTTGACAACCTTCATCTTGGCGTTGCTTTCACGCAATTCTGCACGGAACGCAGTAACTTGGTCAACAGTCAAACCAAGGTAGTTGATAACTACGATGGACTTAGCTGACTTAAGTTCTTCTGCAAATTCTTCAACGAATTTAGCCTTAGCAGCGATAATAGCTTGACTCAAAATTATTCACCTCCATAAAATTTTGTAAAATTCTACAAGGCCTAAAAACCTCCATGCCAAGAAAGACATGGAGAGTTTAACAATCTTCATTATCTTCTGGCCTCGGCGGGATTGTATTGAGGCTTTACGCCACCCACGTCTTAGGTTAGAAATTTACTTTATCTAGACTACCATCTGAAACAAGATCTGTCAAACCTTTTTCGCCACTTTTTGCAAAAATCTGCTAAAATTTACTGTAATGACTTTTAGGAGCATAATACTAGTGTAATGTTATACTGACATTTAAAACATGTGCAATCAGAACTATAGTTGCTGATATAGATCCGCATGCGTAGTATCCGTGTCAGTATTATTAAGATATCATCATGACACTACACTAGTGGCAAAAAACGTACTTAAAGTGTTTGATTATATGTAAGAGTTAGCAGATAGGTACTAAGCCGAATCAACGTAGAGAAATCTAGGACTTTGCTTTAAGAATAGAGCACAGCTTTCACCCACATTTCAGAAACATATGTTTGGAAATCTGTAGGAATACGTGCTAAAATATTCCTCGAAACAAAGATTGACAAAGATATAATTCTGAAAGGCGGTGAAATCAAATGGCGGAACAGGTAAAAGAAGCACCGGCAGAATTAATTCAGACAAGAGTCTATGAACTATGTCCCAACAAGACTATGAGAAGAGTTTTGGATGAAGCTTGTGACTACCGTCGTTATTGCTGGAATCAAGGCCTCGACTTGTGGAATGAAATGTATAAGGAAAGGCAAGCACTTAAATCTTCTTTGGCCTCCGACTCCAAAAAGCTGACCGAAGAGCAGAAAGTGCTGCTTAAGCAAAGCCTTCGCCGAGTGAACGAAGAGTTCGTAATATGTTAGTTGCCGATAAAAAATACTGGCAGTATACACAGTCAGCCCGGATTCTGCAACTGGCAATTTCTGACTTGGGTAAGGCTTGGAAAAATTTCTTCGACAAGACCCAACCAAGCTGGGGTAAACCGAAATTTCGATCAAAGCGGGAAGCCAGACAAGGCTTCAAAAGTGACCGGAGCAAGATCAAAGATGGAATTCTTTATTTGGAACAGGCAAGAGGAAGTAGCGTTCCAAAAGATCAATGGCGTGGCTTTAAGCTGAGCGAAAAGCCTTTGTCAGATGAATTTGGCACTGTCAGCTATTTCAAAGAAAAAGGCCGTTATTACGTTGCCATTCCGTATAAGATCAAGGCTGAAGATGTTAAGCTGCCAGACAAAACAGGTAAAGCTACCGCGGTTGACGTCAATGTTGGTCACTTTGATTACACGGGTGGCCGGGTGAACGTACTACCTAAGAAGCTTGATAGAATTTATAAAAAGATCAAGCACTATCAAAGGAAGCTTGCCAAAAAGCAAGTCGAAAATGGAGAAGTTGCTTGCAAAATCGAGAATTACTTGAAGACGAAAGCCAAGCTTCAAGCATGCTATCGTAAAGCAAGCAATATCCAAAACGACTTGATTCACAAGTTTACGACCGAACTGGTTAATGACTACGACAAGATCGTGATCGAAAATCTGTCGGTTAAGGGCATGCTGATGAGCCACGTGGCTTCAAAGGGTGTTCATCGGTCGATGTTTGGCAAGTTTAAGCAGATCTTGACCTACAAGTGCGATTGGTATGGTAAGGAACTTATCCTGGCAAATAAGCTGTATCCGTCTACTCAGCGTTGTGCGGCCTGTGGCAATGTCAAAAAAGGTGATGACAAGATCCCCCTTTATGGAAACAAGAAGCATGGTACTAAACACAATGAGTACGTCTGCTACAACGAAAAATGCCCGAACTACAATAAGGTCGTAGATCGAGATAAGAATGCGATGCTTAGTCTTTTAGCGCTGACTGAGTACCCAGAATTAAATCATGCACTATAAATATTAAAGAAAGGAGAATTAATGGCTAAGGCCCTGGCCTTAGTCATGCGGGTTGGCTGTACCCGAGGATTGGCGAGAGCCTTTCCATGAAGTTGCAAGAGTGGTGCTTCGGTACCTGCGCTGGTCAATGCGGTTACCCCCCTTGTTGGGATATCGGAATACCGGTGATGACGGCAATAAGAAAAATGTCTGTATTCATGTCTTCGGACAATACATAGTCAAAGATTACTATTTGGCTACATTGCACACGTTTTTTGCAGCAGGTACAATTTTGAAGAGTAAACTGATCGACATTTTCTACTTCTTCTTAGCCGGCATTTCCGGCACCTTGGCCGTCTTTAGCATGTTCAAGGACCATTCCGCCGCTAGCATCGCCATGGACGTCTTATTCCTCATCATCAGCGCCTACTTCATTGTCCGCGGCTTCCTGGACATCGAATCTGAAAACAAGAAGTTGAGCAAGAACTGGCAGATCCTCTCCTGGATCGCCTGGTGCCTGCTCCTCTTGGGCGTCATCTTGACCTTGACCGGCTACAAGCTGGGCATCAACGGCCTGGGCTGGGGCGGCTTCGTCCTCTTCCTGCTCTGCTCTTTCGTCGTGCCCGAACAAGCCAACGACAAGAACTTTCATGTCAAGCGCCGGGACGAGACCGGTTTTGATGACAAAAATTAAGTCTGTTTTTTAGTATTTTTTAACAAAATAATTCAGCAAACGCTTGCAGCCTGCCTTTTGAAAAAGCAGGCTCTTTTTTGCCCTTTTTTCCCAACTTTTCCAGGCAATTTCTTCTCTTTCTAAATTGGTCTAGAGTTTTACAAAATTCACCGGCATGGTATAACTAAGAACATAAATCTGAGTAAATAATTGGTATAGAGATAGAAGCAAAAAGGAAATAAGGATGAACACAGCCAACACCGTCTTCTTAATTATCGCCGCCGTCCTGGTCTTGATGATGACCCCGGGCCTGGCCTTTTTCTACGGGGGTTTGGTCTCGAAGAAAAACGTGGTCAACACCATGATCTCGGTTTTTATCATCTGCGCTTTAGCCATCGTCTTATTCGTGGCCTTTGGCTATGAACTTTGCTTCAACGGCAATGTAGCTGGAATTTTTGGCAGAGTCCAGCACATCTTCCTCTCCGGCAGTGACTTGACTAAGGTCGTTTTAAAAGAGCAGGGAATTACCGCCGCCAGCTACCTGCTTTTTGAAATGATGTTTGCCATCATCACCCCGGCCCTCTTCGTTGGGGCCACGGTGGGCCGGATGCGGTTCAACTTTCTATTGGTCTTCGTCTTCTTCTGGTCAGTGTTGGTCTACTACCCCCTGGTCCACATGGTCTGGGGGACTGGCGGACTCTTAGCCGGCTGGGGGATCCTGGACTTTGCCGGCGGCACGGTCGTTCACATCAACGCCGGGATCACCGCCCTGGTCTTATCCATCTTCTTAGGGCCCCGCTACCAAAAGCAGACCCGGCCCTACAGCCTGCCCTGGGTCCTCTTGGGGACAGCAATCCTCTGGCTAGGCTGGTACGGCTTTAACGCCGGCAGTGCCTTCGGCATGAACCAAACGGCCTTGACGGCCTGCTTGACCAGTACGGTTGCGGCAGCGGCCTCTATGATGACCTGGCTTTTGCTGGAAGAAGCCTTTAGCGGCAAAGCCAGCCTAGACGGGATCTGCACCGGTACCCTCTGCGGCTTAGTCGGCATCACGCCAGGGGCTGGCTATGAAACCTGCGCTGGAGCCCTCTTCACCGGTATCCTCTGCAGTCTGGCCAGCTACTTCTTTATCAGCCAAGTTAAAGGACGGCTTAGCTTTGACGACCCCCTGGATGCCTTTGGCTGCCATGGCATTTCCGGTATCGTTGGCTCTTTAACCGTCGGCCTCTTTGCCAGTCAAAAAGTTGACCCGGGGATTTCCACTAGCGGCCTTTTCTACGGAGGCAGCTGGGAACTCTTAGGCAAGCAGGCAGCCGGCACCCTCTTCACCATCGTCTTTACTCTCTTGATGGTCAGCTTAATTACAGCCGTCTTGAAGCGCTTCATCAACATGCGGGTTTCCGCCCGTGATGAAGAAGTCGGCCTGGACCTCAGCGAGCACGGCGAATTCGCCGACTGCCAGATCAGCGCAAGCCAGGCCATCTTCGGCAAGTAGCAGCATTTTTTCTCAACATCCTATTCATCAAATCAAAAAGCTTTGGCCTTCTTGCCAAAGCTTTTTTGTCGAATATTGTATCTTTTTTCCCCTGCCCTAATTAAACGAATACAACCGCTGCAGGATCAAGTAGGCCCCGCTGACCATCTGCCGCATAGGCAGGACGTCCCGGGAGACAAAATGGCCCACCAGGCGGCGTTTAAAGGACTTGTAGGTCTCCAGGTCATAAGTCTTCAGGAACTGCCAGAGCTCGTCCTTTTTGGCAATATACTCCTTCTTCTTGCCCCGGATCAAGATTACGCTAGTCACGCCTGTGACGGCCTCTAAGAAGTATTTCATGTATTTGGCGTAAGGCGCCCGCTTGTTGACCTGGGAGGCGTAGAAGACGATCAGCTGCTTGTTGATCAGGATCTGCTGGTCGATCTTTTTCAGCATCACCTTTTCGTTGACTGACTGGTCATCTCTGCCGATAAAGTAGTGGTAGAGGTTGACCGGCAGGTAGCGCATGGTCTGCACTTGCACCATCGGCTCAAAAACAAAGATATTGTCGTCATAAGACACCTTGGTCGGCAGGGTTACCTTGGCCCGGTCCAGGACTTTCCGGTTGTAGATGACGGAGTGGAGCATGAAGTACTGGCCCATCCGCAGCTTGACCTCATCCCAGGAGAAGGTCCGCCCGACTGGCAGATGCGGGAACTTGATCACCCGCTGGTGGCCGGCAGCTGGCTTGTCATAGACATAGTTGGCCAAAAAGAGGTCGACCTCTGGATTACTTTCCAGGTAATCCAGCACCTCTTTGTAGGCCTCCTGGTCCAGCCAGTCGTCGCTGTCGACGATCTTGACGTACTTGCCCTTGGCCAGTCTCAGGCCATTGTTGATGGCCCCGCCGTGGCCGGCATTTTCCTGGTGGACAACTTCCAGGTCCAAGTTTAAATTCTTAGCTTGATAGTCATCCAGCATCCGGCCGGTTTCATCAGTTGACCCGTCGTCAACCAAGATGATTTGCACCCGGTCACCGCCGGGCAAAAGGGAGTCGACGCAGCGGTTCAAGTATTCAGCTGAGTTATAGCAGGGAACGATGAGAGTTAGTAATTTTTCCACCTTGATACACTTCTTTCAGTTCGCTATTTGTCTCTACTAGTATAACAAGACTTTTTAAAGAAAGCCTTTTCCAAGACTAAAAAATTCTTAAGGTAAAATTAGAACAAAGAAAAAACTCCCCGCCAAAAGGCGAGGAGCTTAATTTGCTTAACTTAGGGAAAATTAGGCCATCAAAGCGATTGGGTCCAACTTGATCCCAGGGCCAAAGGTTGCGGCAACTGCGCAGCTCTTGATGTATTGACCCTTAGCTGAAGCTGGCTTTGCACGCAGGATAGCGTTTTGCAAAGCGCGGAAGTTTTCAGTCAATTGTTCTTCAGTGAATGAAACCTTGCCGATAGCAGTGTGGATTGAAGCTTGACGGTCGACACGGTATTCTACCTGACCAGCCTTAACATTTTGAACAGCCTTGGCAGTGTCCATAGTAACAGTGCCAGTCTTAGGGTTTGGCATCAAGCCCTTAGGCCCAAGCACACGACCCAAACGACCAACCTTAGCCATCATCATTGGAGTAGCGATGACAACGTCGAAGTCCAGGTAACCGTTTTGAACCTTTTCTACCAGGTCGTCTGCGCCGACTTCGTCAGCACCGGCAGCCTTGGCTGCTTCAGCTTGTGGGCCTTCAGCAAATACGATAACCTTAACAGACTTACCAGTACCGTTTGGCAAAACGATTGAGCCACGGATTTGTTGGTCAGCTTGCTTAGGGTCAACGCTCAAGTTGTAAGATACTTCTACGGAAGCGTCAAAGTTAGCGTATGAAGTTTCTTTAACCAGCTTGATAGCGTCTTCTACTGAGTACAACTTGTTGCTGTCAACCTTCTTGGCAGCTTCTACGTATTTCTTACCATGCTTTGGCATGAAAAATCCTCCTTGTATGTGTGGTCAAACGAGCTTTCTCTTTGCTCTCCCACCTGACTTGTTAATTGGTAAAAATTAACAAATTAGTCCTTCACTTCGATACCCATACTTCTAGCAGTACCTTCAACCATGCGCATAGCAGCTTCGATTGAGGCAGCGTTAAGGTCCTTCATCTTAGTTTCAGCGATTTCCTTAACTTGAGCAGTGGTTACTGAACCAACCTTGTTCTTGTTAGGTTCGCCTGAAGCCTTTTGAATGCCAGCAGCTTGCTTCAACAAGACTGGTGCTGGAGGAGTCTTAGTTACGAAGTCGAATGAACGGTCTTCGTAAACAGTGATGACTACAGGGATGATCATGCCCTTTTGGTCAGCAGTACGAGCATTGAAGTCCTTAGTAAAGCCAACAATGTTGATACCTGCTTGACCCAAAGCAGGACCTACTGGAGGTGCAGGGGTTGCAGCGCCAGCTGGAATTTGTAACTTAACAACGTTAATAACTTTCTTTGCCACGGTCAAAACCTCCTTGATTCCGTGATGTGGTTAAAATGGAGAGTTTCCACACTCTCCTCCCACAGTAGTAAAGTACGTTTAATATAGTACTCTGGAAACCGGCAGAATGCAAGACTTTTTTATGTTTAATCTTCCATTTTCTTGACTTGGTCAAAGTCCAGTTCAGCCGTGGTAGCGTGGCCAAACATGTCGATGGTCAAGAAGATCTTTTTCTTGTCGTCCTGGATTTCAGCGATCTTGCCGACCATGCCGTTGAAGGCACCTTCGGTGATCATGACGCTTTCGCCAACTTCGTAGTCGTAGTCAACCTTTTCAGTTGCTTCGCCTTCTTGCATCTGCAGGATAGCTCTGACTTCTTCCTCGTAAAGCGGGGAAGGCTTGGAACCACCGCCGTGGCTGCCAACGAAACCTGTAACGTTAGGAGTGTTCCGGACAACAAACCAGCTTTCGTCAGTCATGACCATTTCAACCAAAACGTAACCAGGGAAGACCTTTTCGTTAACTTCTTCCTTCTTGCCGCGCACGTCTTCGATCTTTGGTTCTTGCGGAACGACAACCCGGAAGATGTAGTCCTGCATCCCCAGTGACTGGGCCCGGGACAGCAAGTCGGATCTAACCTTGTCTTCAAAACCAGAGTAAGTGTGTAGGACGTACCATTGCTTCTTGGCGGATTCTACCATAATTTCTTTAATCTCCTTTTTGGCAAACAAAAAAACCTCGCTAAAGAGGTTTTTCTTGAAACTAGCATGATTATAACATACTTTGTCGCTCTTACAGAACTAATTGAATCAATTTTGCAAAGGCCCAATCCAAAGAGCCCAAGAAAATCGCGTAAAACAGAGAAGTTACGACCACGTTTGCCGTGTCGCGCCGGTTTTCCTTAGCACTTGGCCAATGAACCAGTTTCATTTCCTGACCAACGCTCTTAAAAAACTTAATCATCCCTGTCTACCTCGTTTCCTTGTGCAAAGTCTTCTTGCCGCAGTGCTTGCAGAACTTGTTCAGTTCCAAACGCTTGGTGCGGTTGCTGTTTGCAGTGATTGAGTAGTTCCGTGACCCGCAAACGCTGCAGGCCAAAGCTGCTTTCTTTACTGCCATAATATCACCTTCAAACTTCATTTGATTTTAGCAAAAATCCGCCCTAAAAGCAACTATTATATGACTGACTTTGCCGGGCTTTATTTTCACATCTTAAGCGGCCCCTGTGTCATAATGGAACTAGCAAAAACGCAGTTTACAAGATTGCCGGTTAGCCGGCCATGAGGTGAAGAAATGAATCAACACCCTGAATACCTGCTCAACAAGATCAAGTCACCAGCTGACATTAAGGTCTTGGATCTGGAAGAAATGAAGCAGCTGTCTTCAGAAATCCGCCACTTGATTATCGAGAAAGACGCGGCGGTTGGCGGCCACCTGAGTCCTGACCTGGGGATCGTGGAACTGACCATCGCCTACCACTATGTCTTTGACGCCCCCGGCGACAAAATCATCTGGGACGTCCTCCCACCAGACCTACCCCCACAAGATGCTGACGGGCCGGGCTTATGCCTGGCTGGACCCGGAAGCCTACGGCAAGGTGACTCCTTACACTAATCCCGATGAAAGTCCCTATGACTACTACGCGGTTGGCCACACTTCTACCTCTATCTCTTTAGCCGCCGGCATGGCCAAGGCCCGGGACCTCTTAGGCGGCAGCGAGCGGATCATGGCCATCATCGGCAACGGCTCCTTAACCGGCGGGATGGCCTATGAAGGCTTAAATAACGCCGCGCTGGAAAAGGGCAACCTGGTCATCGTCATCAATGACAACCAGTGGTCGGCGGCTTGACCACGGCCCTAAAGAAGCTGAGAGACAGCCAGGGGCAGGATCCGGAAAATCCTTTTAAGGCCTTTGGCTTTGATTACCGCTATGTCGCTGATGGAAATGACCTGGAAAGCATGATTAATGCCTTCAGTGAAATCCGCTATGTCGACCACCCCCTGGTTTTGCACATCAATACCTTAAAGGGCAAGGGTTATCAGCCAGCTATTGAGGATGAAGAAAAGCACCACTGGGTCCGCCCCTTCAACTTAAGCGATGATTCGTCAAAGAGCATTACTGAGGGCTCGACCCCAGCGGAAATTGCCATTAAGACCGTGGCTAGCGCTATTGACGGGGGCCAGGAAAACATCATGGCGATCACTGCCGTTATCCCTGGCGTCTTTGGCCTTGACACCTTTAAAGAGTCTTACCCGGACCACTACCTGGACGTCGGGATCGCCGAGCAGGATTCCGTGGCCTTCGCGGCGGGCTTTGCCAAGGCCGGCGGCCAGCCAGTCCTTTTTGAAAACTCCACCTTTCCTGCAGCGGGCCTTTGACCAGCTCAGCCATGACGTGGCGGCTAACAATTTGCCAGTCGTCATGATCGTGGCTGGCGGCGGGATCCAGGCCAACTCCAAGACCCACGTGGGCGTCTTTGACCAGGTCATGGTCAGCAACCTGCCTAACTGGAAGTACCTGGCCCCGACCAGCTTGACTGAAGAAGCGGCCATGATCAACTGGGTCTTGAAGCAAAAAGACGGCCCTGTAGCTATCAAGCTGCCAGTCCGGCCAGTTCCAGCCGGCGGGGCTGTGCTTGAAGGCTACCGGCACATCCACTACCAAAAGCGGCGGGCCGGCAAGAAGATCGCCATCCTGGCTTTAGGCGACATGCAGGAATTAGGCAGCCAAGTGGCAGAAGAACTTAATGCTGCCCTCTACAATCCTTTGTCAGCTAACATCCTGGATACTGACTGCCTGGACCACTTAGCCTGGCACTACCAGGCTGTAATTACTTTGGAAAACAATATTCTGGACGGGGGCTTCGGGCAAAAGGTGGCCGGCTACCTGGCTGACCGACCGGTTTTGGTCAAAGCTTTTGGCGAAAAGCGGGAATACACCGACGTTGACCAAAGCTATGACCAGATCCTGGTCCGCAACCAATTGACGGCTGAGCAAATCGTTGCCAGCGTCAAGCAATTATTTAACTAAGAAGCAGATATAAGCAAAAAGCTGATCACGCAAGGTGACCAGCTTTTTCTGTACTATCATATTTCTTTTTATTCTCTTGTTTCCTTTTTACTATTTAACTCATTACTTGTCATGAGCAAGTAAATATTGCCGAACCGCCTGGGCGGTTGCCTGCTGCTGGGCCTTTCTGGAGATGGTTGCCTGCCCGTCCCCTTTTTGCAGGCCGTAATTGCCAAACTGGGCATGGTTGACGCCCTTGATGACTTGCTTAGTATAGTCATTTGGCAGATACTGGGGATTCTTTTGCAGCATCTTCGCGTTCCCGTCTTTTGACCCATAGATGCTGAGCACGGAAAAATTAGCCGCGTGCAGGTCCTTGGTTGGGTAGCCGGCCAGCATGATCAAGCCCCCGGTAGTCTTTCAAGTGGTCCGCGCTATACATAGCCGCCATGGCCGCCCCCAGCGAGTGGCCCGACATGTACCAGTTTTGGTAGTGGTAGCTGGCCCGAATCTTGTCTGCCTTGTTGAGGCCGAAGAAGGCCATGTGCAGGGGCATGGCGACTAAGAAAACATCCGCCTCCTGGCTGGCGATCTGCTTTAAGAGGGGCGCGTAGGCGGTAGTTTCCACTTTCGCTCCCGGGTAAAAAATAATGGCATTCTTCTTTGCAGGCCCATCAAACAGGTAGCCCTCAGCTGTCTGCTTGACCTTGACTGTCCGACTGCTCTTCATCGCCTGCTGGGCCGTCTTGTCAGCATGATAGTAATTGCCAAAATACAGACCAAAGGCAAGCAGCAAGGCGGCTAAAATCACCGCCAGAGCCAGCAGCCCTTTTTGCTTCTTGGCCATCTTATTCTTTTTTTCTTTTGCTTTTTCTTCTGTTTCTCCGTTTTTTCTTGTTTCTTTTCCAAATTTCCAAATTTCTCCTTGTCAGATTTATAGCCAGATTATTATTTTAACAGAAAAAAACGGCGGCTCGCTTGAGCCGCCGTTTTTCGCCCCTTCCCCTCCCTTATGGGAGACAAGAGGTCAGGAATGTAGGTAAAAATTATTTCTTAAGGTTCTCGTTGACAAATGCGATGATCTTGTCGTCAGAGTCGCTCATGAATGGAAGCATGGCTTCCTCAGTCTTGTCGGTGTTGTGGCCGTTTGACTCCATGAAGTAGTCCCAAAGGGCATCTCTTACAGGGGTGTCTGAGTCACTCCAATCAAAAACTTCTTTCATTGAACGATCCAGAAGAGCAGTCTTAACAATTTCTGACATTTTTGATTACCTCCTAAATAATCTTTTCATCCTACAACTATATTATAGTCCCATTTGGCTAAAATGTTTACGCACCTATCCGCAATTTTAGCTTGATTTTTTCCTTCACCCGGTATTTGGCCCGTCTGAGCCCCATCTCATTTACCTGGTACTGGCGCTTGATCTCCCCGGCCTGCTTATAGCCCAGTTCCAAAAGCAATTCTTCCAATTCCAGCATGCTCAAGGACTCAACCAAATCCTGCCAGTCCAAAACAGGCGCCGGCGGACTCGCGATCAAGCAGGAAGCCTGCTCAAGTTCGGTAGCCACATCTTCCCAATAGACCTGGTCACTGGCGGCCAGGCGCTTTTTCCGCTTGCCCCGTCTGATCAAGTTGATGGCCCGGTTGTGCAGGCTGACTTTATAAAAGCCGACAAAAGGCTTTCCTTGCTTTAAGTCAAAGCGCTTGGCAGTCTTATAGCAGAGGATCAAGGCCTCCTGCTCCCAGTCCTGGTTGTCATATAGCTCCACAAAATACTGCTTGATGGTGCCGCCGATCACAGGCAGGCAGCTGTAATACAGTTCTTTAAGGGCCTGCTCATCGTCATCTTTTTGAATCCGGCTGATCAGCAGGCGCTCTCTTTCCTTTGTCAATCCCATTATAAAAAAGCCTTTCATTCTGTTTGCCCACAGAATAAAGGACTTTTTACCTTGACAGAATCGAACCATTGTTTGATTCAATCACTTTTCTTGAACTGTAAACGATTTGCTTTACAAAGGGTGGCGGCTGTTAAAGGCCTGGTAGAGCAAGACCCCGGTTGCTACTGAAGCATTCAGGGATTGGACGTGGCCAATCATCGGGATGGTCAAAGTCTGGTCCATTTGCTTAAGAAGAAGCGGGGAGATCCCCTTGCCTTCATTACCGATAACTAAAACGGTCTTGCCATTGGCATTCCACTTCCGGTAGTCATCGCCTTCCATGGCCGTCCCGAAGATCCAGTAACCCCGGTCCTTCAAGGCCTGGCAGGTTTGAACCAGGTTGTTCACCCGGGCAACTGGCACGTGGTCGATGGCCCCGGTTGAGGTCTTCGCCACCACGCTGGTCAGGCCGCTGGCCCGGCGCTTAGGGATGATCACCCCGCTGACCCCGGTCGCGTCGGCGCTGCGGAGGATGGAGCCCAGGTTGTGGGGGTCTTCAATATTGTCCAGCATGAGCAAAAGGGGGGCCTCTTCTTGGTCCAGTTTGTCCAAGAGCTGGTCAAAGTCGGCGTATTCAAAAGAAGCGACAGCCAAAACCAGGCCCTGGTGGTTTTCCCCGCCAGTCAGCTTGTCCAGCTTGTTTTTCGGCACCCGCTGGATGATCAAATGCTTCTTTTTAGCATAGCGGTAGACTTCTCTGGCAAAGTCCTCCTGAACCCCTTCAGCCAGGAAGACCTTGTTGATCTTTTCGCTGTCCTGGGTTTTCAAAAAGTCGATTCCGGCATGACGGCCGAAGACAAAATCATTGTTAGTTGAAGACATATTCCCTTGTCCCTTCACTTTCCACCTCATCAATGCACCAGGCAATCAATTCCTTGACCCTGCCTTCTTCACCGGCCAGGTCCAGGTAGCCAAAGACTGCTTCAAAGCCAGTTGACATTTCATACGTGGCCAGGCTGGTGTTCTTGGCCTTGGTATGGGTCTTGGCATTTCTGCCCCGCCGGTAGGCTGTTTCTTCTTCTTCAGTCAAAAAGCCGGTGTCCAGCATTTTAGCAATCAGGCCCGCCTGGGCCTTGGCTGAGACATAGTGGGTTGCTGCTCTTTGCAAGTTCTGCGGCTTCAGCATCCCGCCCTTGATCAAGTGCCGGCGGATGGCGGCTTCATAGATCCCATCGCCCAAGTAGGCCAGAGTCTGCCCGCTCAAGGTGTTGGGATCAATCTTTTTTTCAGTTAACTTCTGTGCTTTATTCACGGCTCCACCTGGTTCCTTGCGGGGTATCCTTGAGGACTACCCCCATTTCCTTAAGCTGGTCGCGGAGTTCGTCACTCTTGGCCCAGTCCTTGTTCTTTCTGGCTTCCGTCCGCTGGGCAACCAATTCTTCGATTACAGCGTCATCATCACCGGCTTCCTTAGCCAGGAGCTTGTCAACATCCAGGCCAAAGACGCTGAGCCAGGCAGCTAATTTTTTAGCAAAAAGCCGCAGACTTTCCTTGTCGGCTTTTTCAGCATTGGCGTTGGAGTTGACGGCTGGCAGGGCTTCGTAGATGGCGGTCAATGCATTTTGCACGTTGAAGTCATCGTCCATGGCGGCTTCAAACTTGGCCGTGGTTTCAGTGACCAGCTTGGCCAGATCCGGGTCCGGCAAGCCTTCAGTCGCGTCAGCCAGGCGGTAGTTGATCCCTTCCAGGGTGTTCTTGAAGCGGCCCAGAATGTTAGCGGCCTGCTCCAGGTTTTCTTCCGAGTAGTTGATCTGGCTTCTGTACTGGACGCTGGCCATGAAGAAGCGGAGAACCTGGGGATCAACGTTTTTTAAGATATCGTGGACGGTCACGCAATTGTGCAGGGACTTGGACATTTTTTCCTCATCCTTGCCCACGGTCACGAATCCGTTGTGCAGCCAGTAGTTGACGAACTTCTTGCCCGTCTTGGCTTCACTTTGGGCGATTTCGTTTTCGTGGTGGGGGAATTCCAGGTCCTGCCCGCCCCCATGGATGTCCAGGGTATCACCTAAGTACTTGGTTGACATGACTGAGCATTCAATGTGCCAGCCCGGCCGGCCCTTACCCCATGGGGAGTCCCAGGCGATTTCGTCTGCAGCCTTCTGCCCCTTCCAGAGGGCAAAGTCGATTGGGTCTTCCTTGCGGCCTTGTTCTTCATCGTTTACGTGCTGGGAGGCCCCTTCTTCCAGCTGGTCGATGTTTTGGTCGCTCAAGTGCCCGTAGTCAGCGAACTTTTTAGTCCGGTAGTAGACGTCCCCGTCGGCTTCATAAGCGTAGCCCTTGTCGATCAAGGTTTGGATGAAGTCGATGATGGCCGGGATTTCGTGGGTTGCCCGCGGGTGCAGAGTCGCTTCTTCGATGTTTAAGGCCCGGGTGTCTTCCAGGAAGGCCTGGATGTAGCGTTCGGCTAATTCCGGCACGGTCGTGCCTTCGGCTCCAGCTTCGTTGATCATCTTATCATCGACGTCAGTAAAGTTGGAAACGTAGTTGACCTTGTAGCCCTTGTATTCAAAGTAGCGGCGGATGGTGTCAAAAGCGATGGCGCTTCTGGCGTTGCCGATGTGGATGTAGTTGTAGACCGTCGGCCCGCAGACGTACATGCTGACCTGGCCGGGAACCAGGGGTTTGAATTCTTCTTTCTGCCTAGTTAAAGTGTTGAAAAGCTTCACGATATTTTCCTGCTTTCTTTAAGAAGTTTTCCTTACCTGCAATAATTCAGTACTTAACACTCTACATTTTAACAAACAATCACCGCCCGTGGTAAAATCTGAGGAAACAGAGAGAAACATAAAAATAGAGAGAAGAGAAGAATGACTTTACTGACTGATTTAAAAAATTACCAACCCTTTAACGAGCAAGAAGCAGCCGACGTCAAAGAGATGATCTACCGGCTGGAGACCGGGGAAGAACTGTTCTTGCGGTCCAATTTGGCCGAGCACTTTACGGCTTCAGCCTGGGTCGTCAATCCGGCCCGGGACAAAGCCCTGATGGCCTACCACCGGATCTACGACTCCTGGGCCTGGCTGGGCGGACACGCGGACGGCGACCAGGACCTTTTGCACGTGGCTTTAAAAGAAGTCGAAGAAGAAAGCGGAGTTAAAGCAAATCCAGTCACGGACCAGATCTATTCTGTTGAGATTTTGACCGTGGACGGGCATGAGAAAAAAGGCAAATACGTCCCGTCACACTTGCACTTAAACGTTACCTACCTCCTGGAAGCAGACGATAGCTTGCCTATCCGGCCTAAAGAAAACGAAAACAAGGCTGTTGCCTGGTTTGGCTTGGATGAAGCCCTGGAAAAATCAACCGAACCCTGGCTTGTCGACCGGATCTACTCCAAGCTGAACGCCAAACTCAAGGATTATCCGGCTAGGTAAATAGAAAAAGCAAAAAAGAAAAAGTTTTTTTCAAAAAGCCGCTTGACAGAAGCCCATTTACGTCTTTAACCCCAAGCAGGATCACTGACCCGGTTACCGGCAAAGAATTCAGCAAGGAAGTCGTAACCAAGCAGACCAAGGCTATCCAGTCCGGGACTAAGGCCCAGGCTAAGGCTTACTACAAGAAGGCTTTGAAGGAGCTGGGCAAAAAGCAAATCACCATCAAGCTTTTAGGCGATGACACTGATGACGCCAAGAAGACCACGGAATTCATCCAAAGCGACCTGGAAAGCAGACTGGCCAAGCCGGTGCGACCGTTATCTCCGCTGGGGCCAACTACGGCCGCTTCTTTAAAAACGGGGTCGGCTACGGGCCTGCCTTCCCGGACAGCCTGGACACCGCCCACGCCATCGACGAATCCGTCAGCCTGGCTGAACTGGAAAAAAGCCTGGCCATCTACGCTGAAGCGATTTACGAATTAACCAAGTAGAATATGCAAAAAAAGACTTTTACCCAAAACAAGTAAAAGTCTTTTCTTATCTGCTTGCCTTCAGTTCCGCGCAGATCTGCTGGTGACGGTCCGCGTAGAGGCTGTTCTTCTCCCAGATAAAGGTGAAGTCATGGCGGATCTGGAAGTCCCGCAAACTCAACTTCCGCAGCTTTCCTGCCTTTAAAAGGTCACTAACGGCAGTCCGGTACAAGAAAGAGACCCCGCAATTGGCCAAAAGCAGCTGGGTGATCATCTGCATGTTGCCGACCTGGACATACTGCTTGAAGTCGCTCAGTTCCTGCCCCTGGGCGCCTAAGCTGTCCTCCAGGATCTTCCTGGTCCCTGAGCCCGGTTCCCTGACCAAAAGGCGCTGGTCAAAAAGGTCAGCGATCTGGTCCGGCTCCTTGGCAAAAAACAAATCTGGCGAGCAGACGGCGATGAAGTCCTCGCTTTGGTAGCGCAGGCTGGCATAACCCCTGGCCGGGTCCCCTTCTACCAGGGCAAAGTCCAGGTCCCCCTCATCCAATTTCTTGGTCAAAAACTGGGTGTTGCCGCAGACTACTTCCACATTGGTTTGGGGATGATCTTTTAAAAAGCGGCTGAGGGGCCTGGCTAAGGCGTATTCCCCAATGGTCATGGTTACCCCAAAGCGGACCGGCGGCAGGTCAGCCTGCTTGATTTCCGCTTTAAGCAGGCGCTCATCGCTCTGCATCTGCCGCATGGCCTGGCGGAGTTTCTCTCCCGCCGCGGTCAAGGTCAGTTTCTTGCCCTGGTATCTGAAAAGCTTGACCTGGTACTCCTTCTCCAAATAGCGGATGTGCTGGGACACCGCCGGCTGGGTCACATGCAGGCGGTCAGCCGCCCGGGTGAAGTTCATAGTCTCACAGACCGTTAAAAATGTTTTGACGCGAAAATCCAGCATCCCCTGCCTCCTTACAATAATTCTGCTTTATCGACAGATAATAATCTATAATTTTATTTTCTACAACTTTACTACTATACTAAAGCATGTTCAAAAAATATCTGGAGGCAAAAAAGAAATGAATTGGATTAAAAAGAATCTGCCCGGCATCCTGGTCTGCCTGGCCATCGCTACCCCCGCCTGGCTCTTAGGCAAGGCCCTGCCAGTCATCGGAGGCGCCGTCTTCGCCATCTTGTTTGGCATGGTCATCACCCTCTTTTGGGAAGAGAAGAAAGGCTCGGCCAGCGGGATCAAGTGGACGTCCAAGTATATCCTGCAAACGGCCGTCGTTCTCCTGGGCTTTGGGATGGACCTGCAGGTGGTCGTCAAGACCGGCCGCCAGTCCCTGCCGATTATCATCTGCACCATCTCGACCTCGCTCTTGCTCGCCTGGCTTTTGCACAAGTCTTTAAACATCCCCGGCAAGATCTCAACATTGATCGGGGTCGGCTCATCCATCTGCGGGGGCAGCGCCGTCGCCGCTACCGCCCCGGTTATCGACGCTGACGACGACGAAGTAGCCCAGGCCATCTCTGTTATCTTCTTTTTCAACGTCCTGGCCGCCATCCTCTTCCCCATCTTTGGCAAGCTCCTGGGCTTTGACCAGACTTCGGGGACTTCTTTCGGCATCTTTGCCGGGACAGCCATCAACGACACTTCTTCCGTCACTGCCGCGGCGGCAACCTGGGACAGCATGTTCCATTTGGGCAGCCAGACCCTGGACAAGGCCGTGACCGTCAAATTAACCAGAACCCTGGCCATCATCCCTATCACCCTGGCCTTAGGCTATTTCACTGCCAAAAAGGAGCAAAGGGGCAACAGCTTCAGCTTGAAGCGGGCCTTTCCTGCCTTCATCCTCTACTTTGTCCTGGCTTCCTTAATCACAACCTTTGCCCTGGCTAATGGAGTAAATGCCAATGTCTTCCTGCCTTTAAAGGAGCTGAGCAAGTTCATGATCGTCATGGCCATGGCCGCGATCGGCCTTAACTCCAACATCGTCAAGCTGGTCAAGTCCGGGGCCAAGCCCCTCCTGCTCGGCGCTTCCTGCTGGGCCGGGATCACAGCCGTCAGCCTGCTTTTGCAGCGGCTAATGGGGCTCTGGTAAAAAATAAAGCAAACAATTTAATCGATTGCATCAAAAAAGGCTTTTACCGCTCGGTAAAAGCCTTTTCCTTTGTTCTTTAGCTTATTCGATGCCAGCTTCGCTAAGCTGCTTCAAGGTCAAGTCCAGGTGCTTCATGACCGTGTCCTTGCCCATCAATTCCATAGCTTCGCCGATGCCAGGGCCGACCATTGACCGGGTAGTAGCGATCCGGATTGGCATGAAGAGCTTGCGGCCCTTGATGCCAGTTTCCCTCCGGGTAGCCATGATGGCGCCCATGATCTTCTTGGCCGTGAAATTGTCCAGCTTGTCCAGTTGCTTCTTGAATTCTTCAATCGCCGGACGAGCTTCGTCCTTCTTGATTTCTTCCACTTCTTCGTCAGTCAGGTATTTTGCTTCAGTGAAGAAGATCTTGCTTAAGTCAACGATTTGCTTGGTGTAGGACATTTGGTTGGCGTACATGTTCACCAATTGTCTTACCCATTCCATCTTGCCTGGAGCCGGGTTAGCTTCAACCAGGCCAGCTTCTTGCAGGTTGTGCAGGGCCAGGTCCAAAAGTTCATCTCTGTCAGCCGTCTTCATGTACTGGTTGTTGACCCAGTCCAGCTTCTTTTGGTCAAAGGCAGCTGGGGACTTGGACAGACGGGCCGGGTCAAATTGCTTGATGAATTCGCGCTTGGAGAAGATTTCGCTTTCGCCAACTGGCGACCAGCCCAACAAAGTGATGAAGTTGAACATGGCTTCTGGCAGGAAACCAAGTTCTCTGTATTGTTCGATGAACTGCAGGACTGATTCGTCACGCTTGGACAGCTTCTTGCCAGTAGCGGAGTTGATGATCAAAGTCATGTGGCCGAAGACTGGAGCTTCCCAGCCCAAAGCTTCGTAAACGCAAAGCTGCTTTGGCGTGTTAGAGATGTGGTCATCGCCCCGGAGCACGTGGCTGATTTCCATCAAGTGGTCGTCGATAACGACGGCAAAGTTGTAAGTTGGCATCCCGTCGCGCTTTTGGATGACGAAGTCACCGCCGATAGTGTCGGATTCAAAGCTCAAGTGGCCCTTAACGATGTCGTCCCATTCGTAAGTCACGCCTTCTGGAATGTGAATGCGGACAACTGGCTTCAAGCCCTTGGCCCGGGCTTCGTCTTGTGCCTGCTTGATTTCGTCAGTAGTCATGCCTTCGTATTCGTAGACATAGTGAGGAGCAATCCCCATGGCCCGCTGTTCTTCACGCTGGGCTTCCAGTTCTTCTTCAGTTTTAAAGGAGTAGTAAGCCTTGCCTTCTTCAAGCAGCTGGTCGATGTACTTTTGGTAGATGTCCTTTCTTTCGGACTGCTTGTAAGGGCCGTAGTCCCCACCGATGTCCGGACCTTCATCCCAGTCGATCCCCAGCCAGTGCAGGTTTTCGATTTGAGATTCAGCCCCGCCTTCAACGTTTCTGGCGGTGTCAGTGTCTTCGATTCTCAGAACCAAAGTCCCCTTGTTGTGACGTGCAAACAGATAGTTAAACAGAGCAGTACGCGCGTTACCAATGTGCAAGTGGCCAGTTGGTGACGGAGCGTATCTCACGCGGATTTTCTTATTAGCCAAAATTATGCCTCTTTCTTACTATTCTTCAACTTATTAAGTTTACTAGCAATAAGGAAAAAATTCAATCTTTGACCGGCAAATCGGGCCCTGACGGCAAGCAAAAATGCCCACCAAAGGCAGGCATTTGTCACTTAATCTGATTTGCTTATTTCTTGGCTTCAACGCCCTTCTTGAAGACGAAGTATTCCGCTGCCCACAAGATGGCCACGTAGACCAGCTCAGCCAGCATGTAGAGCCAGCTGATGACCGGCAAGCCCAGGTCGGTCTGGGACGTGTGCAGGCCAGTATTGTCAATGACAAAGTTGAAGTCAAAGCCGGAATTTGAAACCATGCGAATGACCGCGCCCAAGATGCTGCTGCTGCCCCAGGACAAAAGAGCCAGCAGGGCCAGCAGGATAACTGCCTTGGCAAACTTGCTCGTTCTCCCCTTCAAAGGCAGGAAGTCCCCCAAAACGCTGGCTGATTCAGTGATGAGCAGCCAGAAGCAGATGCCGCCGGCAAAGCTGACTAGGGCAAACAAGGTCATGTAGAGCAGCCAGTTGCTGATGCTGGAGACGTAAGGCTGGAAAGTCGCCACTGCTTGCGAATCGATCCGCATCTCCCCGCCAAAAATAAATGGCAGCAAGGTAATTACGAAGATCAAGAGGTTAGCTAAGGCAAAGATAACCGCGGTCACAAGCCCGGTCAGCACGTTAGCAGTCAGGAAGTTGCCCGCTGTTACCGGCACTTGCCGCCAGGTCTGGGACCGGTTGACCCGGTAGGCCGCCATAATCACGTCAATTTGGTACCAGATGCCCACGTAGAAGATCACCGTCGCGGCAATCCCGATGCCAATACCAGCTGAGTCGCTGCCAAAGCCGTATCTGATACCAAAGTACAAGCTGATCAAGAGGATAAAAATTGCCTCGATGCCCAGGCTGAGCCAAGTCGTCCGGCTCTTTTCCTTGAACATGGCCGCGAAAGTCTGCTTAAAACCGATCATTACTCTTCCCCCTCGTAAAATCCTTCATACCACTCTTCGATGCTTTCTTGTTCAGCCCGGATTTCTTCAGCACTGCGCTGCTCTAAAACTGAGTGCTTCTTGATCAAAACGACCTCATCGATCACCGGAGCGATTTCATCTAAGACGTGGTCGCTGATGACCAGGGTCGCCTCTTCCGGCTTCCAAAGCAGCATGGACTTGATAATCTTCTTCCGGCTCATGGCATCAACCCCGCTGAAAGGTTCATCCAGCAGGTAGAGCTTGGCCTTGCGGGAGAAGACCAGGGCGATGATTAATTTCTCCTTCATCCCCTTGACAGGCTGCCCAGTCTTTCATCTTCATTCAAGTTCATGAATTCCAGAATATCAGCAAACTGCTTGTCGTCAAAGTCCGGGTAGACCAGGCGGTAAAAGTCAGCGACATCCTTGATCTTTCTGGAGTCGCGGAAGGCGGACAGGCTGTCGGTCATGGCGATGTACTGCTTGCGGCGGTCTTCATCTGCTTCCCCGCATACCTCCACGCTGCCCTTGTACTGCTTGGCCAGGCCCGTGATCACCCGCATCAAGCTGGTCTTGCCGGCCCCGTTGGCCCCGACTAAGGCCACGATCTTGCCGGCCTCCAAAGTCAAGTTGACTCTCTCCAAAATCGTCTTTGAATTCTTGTGGTAGCTTAAATCCTTAATCTCCAAAGTCTTCATGCTATTCCTCCCTTGTGTCATCTAAGTAGCTGGCCAATAGTCCAGTCAGGTTTTCCCTTTCGACTCCGAGTTTCTCCATCCGGCTGACGAAAGCCGCCAGCTCCTGCTTCAGCAATTTGCTCTTCATTTCCTCCAGGCGGCCTTCATCGGTCGTAACGAAGTTGCCTTCGCCGCGTTTGGTAAAAATATAGCCCTTGGCCGTCATTTCTCTAAGTGCCCGCTGGACTGTATTGGCGTTGACCGTCAATTCAAGTGCCAGGGCTCTGACTGAAGGCAGCTTCTCGCCGGCCTGCAGCTTGCCCTGGGCGATCTGCAAGTAGATATAGTCTTCAATCTGCAAGTAGATCGGCAGGTTGTCTTTGAATTTCATTTGCACACCCCTTCGCTGTACTAGTTATCTAATACACTGTTAGTGTATAACGGATCGGGCCTTTCGTCAAGGCAAAAACAGAGAAAAAGCAAAATTTTCTTCCTTTATCTTTGGCCTAGTTCTGTCCTATGCTTTTTACTTACCTTTCTTCCTTTAAACAATCAGCCAATTCTGCTTTTAAGTTAGACTAGACTGCTTTCTAGCAAATGAACTAATACGTAAAGTTACCTTTAATTACTTTACGGTTGCTTTAACAACGGTTTCAGTCCCGTCTCATCTTCAGCTCATAGTCGCAAGAGAGCGTTTCTTTTTGTGTATTTTCTGTTAGACTACAATTAGTGTTTGATAATGTAAACTTTTCAAGGAGGACAACATGAAAAAGACTAAGACTTTTTTTGGCTGCCGGCAGCATCTTGACGGCTGCATTAGCCTTGACGGCCTGCGGCGGCAACTCTTCATCTTCTTCATCTAACAAAAAAGAACTGAACTGGGAAGAATCAGCTGAAATTCCGACTATGGACCTGTCCAAGGCCACTGACTCTGCCAGCTTTACCCAATTGATCAACACCATGGAAGGTTTGTACCGGGCAAAGTCTGACGGCAGCCAGGAAAAGGCCATGGCAACCAGCGAAAAGGTATCCAAGGACGGGAAGACCTACATCTTTACTCTCCGTAAGGACAACAAGTGGTCAAACGGTGACCCGGTAACCGCGCAAGACTTCGTCTACTCATGGCGTAGAACGGTTGACCCAAAGACTGCTTCTCAATACGCTTACCTGTTTGAAGGCATCAAGAACGCCACCGACATCCAAAACGGCAAGAAGAAGCCGGAAACTTTGGGGATTAAGGCCGTTGGCAAGTACAAGCTGGTCGTAACCCTGGATCGGCGGATTTCTTACTTCAACAACCTGATGGCCTTCGGGAGCTTCTTCCCGCAAAACGAAAAGGCAGTCAAGAAGCACGGCTCCAAGTACGGTACTGCCTCCAAGTACATGGTCTACAACGGGCCGTACGTCATGAGCGGCTGGAGCGGGTCAAACCTGTCCTGGAAGCTCAAAAAGAACCCATACTACTGGGACAAGAAGAAGGTCAAGCTGGTCGCGGTCAACTACAGCGTGCAAAAGACCCCGTCAACTGCTTACAACCTCTACCAGTCAAACAAGCTTGATGCTGTTTCCCTGGACGCTGAACAAAGCAAGCAGCTTAAGAGCGTGAAGGGTTATGCTCTCTACCCACGTGGGACTACCTTCTACATCCAATTCAACCAGGCTAAGAACAAGTACCTGCAAAACGCCAACATCCGCAAGGCCCTTTCCATGGCTATTAACCGGGAAAGCCTGACCAAGGTCCTGGGCGGCAGCAACACTGTTGCTCACACCTTCACTCCAGCCAAGCTGACCACGGTTAACGGCAAGGACTACACCAGCCTGATTTCCAAGAGTGACGAAGCTTACACTTACTACAACAAGAAGGAAGCCCAAAAGTACCTTAAGCAAGGTATGAAGGAACTTGGCGTTTCCAAGCTGAGCTTCAAGTTTTTGTCAGACGACACCGATGGTGCCAAGAAGTCTACTGAAGCAATGCAATCAAACATCCAGGAAACTCTGCCGCAAGTCTCCATCGCCACCCAGAACCTGCCATTCAAGACCCGTCTGGCTAGAACTAACGCGCTTAACTTCGACATGGTTGTTTCTGACTGGGGTGCCGACTTCAACGACCCGATCTCCTTCTTGGACTTGCTGACTTCCACCAACGCCCAAAACGGCGGCAAGTGGTCCAACAAGGAATACGACAAGCTGATCGCGGCTTCAACAGACTCTGAACGCTGGAGCGACATGTCCAAGGCTGAAGGCGTTCTGCTGAAGGACGTTGGTATTTCACCACTTTACTCAAGCACCAGTGCCTGGATCGTCCGTCCAGAAATCAAGGGCTTGGTAAACCTGCGCGACCACTGGGACTTCAAGTACGCTCACGTTAACTAGTGTCTGTCCCTAGAGGCTAACAAACTGAATCACTGAAAATAGCAGACCGCCTGGTCTGCTATTTTTGTACTTTTAACTGTTTTTCTTGCTACAATTGAACTGATTTTTAAAGAGATTGGTGGCAGGCAAAAAATGTACAAAGTAGTCCAGAAAGAAACTATCAAGGCGGACCGCTTCACGGTCATTCAAGAGAAGGTGGCCAAGGACGGGCAAATCGCCCCATATTCCTACGTTACGATCGGCTTCGGGATTTCCATCATCCCCTTCGTTGATGATGACCACGTCTTGCTCTTGAAGGAATACCGGCATCCCGTTGGCAGCTGGCAATATGAATTCCCCAGCGGCGGCATTGATGGGGGAGAAGAGCCCAGTCAGGCAGCCAGAAGAGAGCTGCTGGAAGAAACGGGCTATGAGGCCAGCGAGTTGACAGAACTCGGTTTCACCTACCCTTCTTTTGGCTCAACCAATGAGAAGATCACCCTTTTTGCCTGCCGGGCCACAAAAATGGCTCAGCCAAAAAGAGAGATTCTGGAAGAAATCAAGATGGAGATCGTCTCTGTCGACCAGCTGGAAGATTTGATCGTCAAGGGTGAATTTGCCCACGGGGCTGGCCAAGCAGCCTGGCTCAAGTGGCGGCTGCTTAATGAGAGAAGATAAGAAAAAGCAGGGAAGGCTATAAAATAGCCTTCCCTGCTTTTTAGCTGTATACTGCTGCTTTTTTCAGCCAGGCATCCAGCTCATTTAGTTTTTCTTCAACGGTCCTGCTGTCTTTTCCGCAAACGGAAATTGCCGCAAGGGCCTCTACGCTGCTTGCCGCGCCATTATAGGTCCGGCCAAGCTTAGCATATTGATAGTAGTCATAGACTTCCGGATTGGCTGCTAGCACGGCATCTGCAGCCGGCAATTTTTGTAAAATTCCCCGGCCAGGTTCAACCATCACAAAACCGCGAATCTCAGCTGACTTATACTCCTTGTCAAGGTCCACCTTATTCGGCAGGCCCAGATCCAGCTTCAGCAATTCTTGAATAGGACTAAAGCCCAGCCCTTGCTCAAGCTCTTGCAGAATCCGTCCTCCCCCCAATCTTGACCCGATCTCGCACAATTTTACCTCGCGGCCGTCGCAAAAGACTTCAAGATGAAAGAGATAGTTTTCCGGCGTATCCATTCCTTTGAGTAGGTCTGTCACGTAAGAGCGGATCAACTTCTGTTCTGCCGCAGTCGGGCTTATCTGCACGCTTCCAACTGATTTACCGTTTTTCACTTCTAGTGTATTGGCAAAATACTTAGAACTGATCAAGTAGACAAAATGGCCTTGCTTTACAAAACCATCCACGTGGTACAGGGGCCAGGGGATAAATTCTTCTGCCAAATAGCCACGAAGAATTTTATCAGCGGCCAGCCTTTCTAACTCAACATGATCATGAACTACAAAGGTATCCATCGACCCCATGCCGGCAATTGGCTTTAACACGAAGGGGAAGCCCAGCTTCTTTTCTGCCTCGATCAGATCAAACACGTTATCGACCGGCCAGTAACGGGGAACGGCTACGTGAGCTTGCTCAGCTGCCTTGACCATAGTTAATTTATTCCGGAATTCTTCCGCGCTCGTCAAGCTTTGCCCCAAGGTAACTTGGTATTTTTTCCGTAATTTTGCCGCAAAGATGATCTCTTCTTCAGAATAAGCATAAACGTAGTCGATCTGCTGGCCAAAAGTTTGACTGATCACGTAGTCAATATATTCTTCATTCCAGATCTTCAAAAAAACGAATTTGATGTTTTCTGGCAAAGTTTCTGGATAATTGTCACGGTGCCGTTCCATGGCAAAAATCAGATAAAGGTTATCCTTATCCCCGCTAATAGCATCGAAATAGTTAATATAGTTGTTGCTGATAGGGGCTAAAATTACAATCTTTTTCATCGGCAAACCTCATTAAAAGCCTTGTTGATTTTGGCGCTGACCATATCTGAAGCTGCTGCATCCTTGCTGGTATACTGGGCCAGAAAGAAGGCATCCCCGATAGATTCAGCTGCTTGCGACTGCACGCCTACAGGATGGTTTTGCTCGTAAGTGAAAAGATCTGGGATTTTTTCCTCTAAACTTTCCATCATCGTCTTTCCATTGGTCAGCTGAACATAAGAGCTTGAGCAGACCCGCGGCGAAAGAGGCTGCTCCCAATTAATCTCTTCTGCACGCCTTTCTTGCATTTTCCAATATTCTTCCAGAAGATCGACGCCAAAGGAATGCTTAACCAATTTTGGAATCTTCGCTCCGCCAAAACGCTTGCCAACCTCGGTAAAGACAAAGCTCTGGTCTTTGTCTTTCCAATTCTAAATAGGCTTCTGTTTTAGTTTCTGGAACAACGAAGGAAATTCCCTGACTAGGACGAATGCCGACCACCTTGGGATTGTAGGCCCAAATAAAGTATTTCATTGCTGGCTCACCTCCTTTTTTAAGGCTTCCGCGTATTGACCAGACCGATGTTCTATATTGTCTAAAACTTCTTTTTTAGACAATATTCCCCGTTTTAGCAATTCCAAATACGGCGACCCTATAATACGACCAGTGGTATTCTCTAGCAGTGCAATTAAAGTTGAAGCATTTTTTAAGCCGTCCATTGAACCAGTGTCCATCCAAACCAAAGAATACTTATGTCCGGCATTGATAAATTGCTTGTCCTTAACCATTAAGTTTATTGCTGAAACTATTTCGTATTCGTTTCTCTCGGATTTTGAGATCTTGTCAATATAGCTGAATACATCACTTTTGAAAATATAAAAGCCAGGAACCGCATTCTTTCTTGTAGGATCACTGCCTTTTTCAATAATATAATCTCCGTCAAAGTACGAAAAAGCGCGTGCATCTTTTACAGGAACTGTTATTGTCAACGATACACCACGTTCTTCAAATTCTTCTCGCAGATCGTTGAATATACTATTTGTCAAATCGACAAACAAGCAATCTCCCATGAAAAGTGCAAATGAGTCTGTGCCTACAAATTTTTCGGCTTTCTTGATGCTGGTCGCTGTGCCTTGAACGTCATCCTCTTGTTCGTCCACGAAAGTTAAATATTTCAGTAAAAGACTATCTGAAAACAACTTTTTGAACTGTCTGTTCATTTCTGGCGTACCGACAATACATATGTCAGTAATACCCATTGCAATCAAATTAGTTAGGTTGTAAAACACTGTCGGCTTATCGTAAATTTGGTGAAATATTTTGGAATATGCTTCCGTAGCAGGCCACATCCTCTTGCCAAACCCTGCAGCAATAATTACGCCCTTCACAGTTGGCTCACATCCTTAAAAATCGTATTCGCTGTGCCAGTTATGTAAATAGTCACCATAATACTCATCTGGCAATCCTAAGGAGCTCTGTGCTACTTCTCTAGTTAAGTTCTTTTTCTCAACAGTTTTTACTGCTGTCCGGTAATTTTTTTGTGTTGCCCGCAGATTATCAGTAAAAATAGTAAAAATATCAGCAGAATAATTTTCAGCTTTACCGATCTGCTCAACTACTGACACTAGCTCATCAACGTCATTGTTGACATAATAGACGTAGTAAAAATAGAGATGGCGTATCTTCCGCTTTACTTCACTATTAATTCCTTTGGCAGCTGGAAGAATCCCTAGAGACATGACTTTTAGCACGGTGCGAACATCATTAATAATCACATGTTGGTCTCTAGGTTCATTCGTATACTTAGCAACTGCAGCTTTCTCTGCTTGATATTTAGCCTCATCAAAGATGAAACGTTTATTTTCGGTCAACAAATCTATCAAGTTTTCTACCCAAATAGAATCACGTTGTGAAGAAAAGTCACTTGAGTCATAATCGACCAATACAAAATCAACAACATTGATTGACCCAGTCTTAAACTTCATTCGTACTTTAATGTAATAGTGCTTTCCTGGTATATCCAACTCGCAGAGATATCTATCAGTTGTTTCAACTTCATTGAGCTTAAATTCAAATTTTCGTTGTGCAAAGTAATCATGCAAGATGTCTGGGTAGGTAATTTCTACTTCAGAAGCAGCAATTTGTGGGAATAGCTTTTCACGGCTGACTTCAATTAGCTGCTTAATCAAATCGATTTGATTGGATCGTTGATATTTTTGTACAGCATACGTCGTCTGATAATTCAGATTTAAAGGGTTCGTCAAATCTAGCGCGTTCAGTTTTCTGATTGTTGGCTGATATTTTACAAAGATGCTAGACGCACTTTTTAAACTGTCAAAATTTTCTTCTGTATCTTGGAAAGGCGAAAAAGTGAAGTATCCATCATCTGACCGCAAAAGCGGACTTTCAGGTAATTCTTCAACCTGCCATTTTCCCCGCAACATCCGAACAAATTTTTTATAGGTACTCATATTATTACCTCACTGCTCCAAAGAACTGAACATTTTCGCCTCCATAATTGTTTGCTGCAATCAGTGACTTTATTCTGTCATGGTCAGAAGAATATTGGGCAATAAATCCTGCCATAAAGGCATCCCCCGCACCTGTTGAGTCTACACAGTTTACCTTATTTGCATCTACATGATATACATCATTCTGAGAAATCATAGTTGCTCCGCCTTCTCCCTCAGTGATGATCACATTTTTTATGCCACATTCATTAACTAACTCTTTACCACAATCGATCAAATTAGGTAATTGACACAATCTCTGTGCCTCCAAATTATTCATAAACAAAAAGTCTAATCCCGAATACTTACCCTCTTTGATAAATTGATACAAGTGATTCGTATCTCCCGTTGTTCCTGCATATATGGTATGACCATTACTGTGAGCTCTAGCAATCAGCGGCTTCAAATCCGTTTCAAGATGAGGCAATAGCCCTAGTCCACATACCGCTATATCGTTATCCAAATCTTCTAATTCCGCTGCGGATAATTCGAATTCATCATTCATCCCTTGATAACTTGTAACCGATCTTTCCCCGCTCTGATCTACCAATACCAAGGAAATCCCAGTTGACTCATGACAGTTTTGGTTCCAAGTCACATTGTTCTTAACAAAATCCTTTATGATCACACTGCCCGGATAATCATCCCCGATATAACCATAGAATTTTGTCTCAACTTCCTTTTGAGCCAAATTAATCGCTAAATTACAACCATTGCCACCAGCCGAGATTCTGGTGTTTGAAATACTACATCCATAAACGCTGTTCCTAATACATTAATCTTCATAATTCATCTCCATCTAACTCTATTCTGCCCGCCGCTGATTCAGCGAGTAAATTACACTGGCAAGGCCTGCTACAAACGTCAGCAATCCCCCCAGCCACAAATAATCCACGCTGTCCTTTACGTCCATGACAAATTGGAAGAAAAAGGAACCGAGCGGCACGAAAATGATTGCCGCCGTAAAGACAATACTGAATACCCGGCCAATGTAAGTCATATCCGCGTTGGTCTGAATGTAAGTCATAAACTGAATGTTAAAAAACGAAATGCAGAAATTAAACAGGGTAATACAGATTATCGGCCCAAAAAGCCAATGACTAACTTGATACAGCGAACTCATCACCGCCAGCGGCAGTCCAGCCACAGCAATAATCCAGAACAGATACTTGCTGGATAATTCCTTCTGAATCAAATTTGAAGCCACTGCTCCCAGCAAGCCACCAACTGATTCAGCCGTTAAAAAGAAAGCATAAGCATTCTTGCTAAAAGCAAAACTGGCAAAAGGAAGAATCAATTCGTAACCTGCCAAAATAAAGTTGATTACGCTGGCAAAAACAATTACGATCAAAATATTTTTTTCGGCCAGCAGATACTTAAATGCATCCTTGATCTTGCTAAAATTGCTTTGCTTAGCTACCGGCGGCTCTGTTTCAAACAAAATATCCAGCTGTCTGATCAACAAACCAGAAATAATAAAAGTAAGTCCGTCCAGCAGCAAAGCCATCTTACTGCCAACAAATTTAGCGATCACCATGGCAAGCACTGGGCCAGCAACCTTGATAGTTTGCTTGCAGCTTTCAAGCAAAGAATTGACCCGGCCAATCTGTTCTTTGCGGACAATTTCACCAAAGACCGCCTTATAGGCTGGATCTCTGATCGAAGACAGAACCGATAAAGCAATATTGACCGCAATAATTGCGTATAACAACCAAATAGAAGGAACAAACACTGCTAGCGCAATACACAAGAGACCGGCAATAATATCGCAAATCCAGATAATGCTCTTCCGCTGCTTCGTATCAGACAAGATTCCGCCTATAAAGTTGACGAAAACACTGACGATCGTTTCACTGCTCTGATACACTGCCATCCAAAAACTGCCGTTCCCCAGCTTCGATAGCCAGACAGAATTAACATAATCGAACAAGATGTCTCCAAGCTTGGAAATACCATTGCTTGTTACAAGCTTGACGGTATTAGCTAGCTCTCTTTCATTTAATTTCATTTTTCACCTCACTAGCACACCCCTTACCTTTTAGATTAAAAATATATTTAACTAGTAACATTTCTCATTGTATTGTCAATTAAATTTCGGTTTTTTTAAGCTTCTGTCATTCAAGGTGATCGCCTACTTATCGCCAAATTTTTTCAGAGCTTTTCATTGCAATATACAGTCCGTATAAATTAGAGATTTGTTTGCTTGCTCTTTCTTTTTGAAAGAAAAAAGGTCATGCTCAAACACAAAAAGTGTTTGGGTATGACCAAATAGCTCACTTTTTAACTGTTTCCTCACAAAAGTAACAAATCTTTCCTGGTCTTGGTAAAGGGGTGGAAGCCGTCTTCACCCAGCCAGCCGCAGTCCTCGATTCTGACGCCGCCAACACCCGGCAAATAGATCCCCGGTTCAATGGAAAAGCACATCCCTGCTTCCAGCTTCTGCTTGCTTCCCGGCTCCAGATTCACCGGCTCATGGACCTGCATCCCAATCCCGTGACCCAAGCGGTGGGTAAAGTACTGCCCGTAGCCCGCTTCTTCGATAACCCCACGGGCCACCTGGTCCAGCTCACCTGCCGTCATCCCTGGTCTGGCCGCCCTAGCTGCCGTTTCCTGGGCTAGCCGGACCGTCTCATAGATTTCCCACTTTGCCGGGCTGATTTCGCCCAGGGCCACCGTCCTGCTGACATCTGAAGCATAGCCGTCCTTCATGATCCCCAAGTCAAAAATCACTATGTCCCCGGCTTGAACCCCCTTTTGGCTGGGCAGGCCGCTGATACTTGCCGCGCTTTCCCCGGCCTGGACAATCAATGGAAAGCTCAAATCCCCCATCCCCTTTTTCTTCAGCTGGTAGTCCAGTTCAAGGGCCAGCTCGCTTTCACTCATCCCCTGCCCCGCTTTTAAAAGGGCAAAAGCCAAGTCCAGGGCCTGGTCAGCCAGCCTGCCAGCCGCCTGCAGCTTTTCAATTTCCGCCGGCGACTTGATCATCCGTTGTCTGGCCAGCCAGGTAGAAATGTCTGCTGCCAAATTTGCTTCCGGGAAAACTTCCTTAATCGCCCGGTAGTGGCTGAGGGTCACTGCCCGCGCTTCCAGGGCCCAAAATCCTTTTGGCCAGGCGGTCATTCTCTTTTTTGCCTTCTCCCAAGGATTCTCCCCGTCTTGGTAAAAGCAGGCCCGGTCCGCCCAAGAAGTCTGCTTGACTTCTCCTTCATTGATCGCCGGAGCCAGCAAGAGGGCCTGGCCTGTTCTGGATACCAGCAGGGCGAAGACCCGTTCCTCCGTCCAGCTGCTGTAGCCCGTCAGGTAGGCAATGTCCACTGGCTCTGCCACATAGGCAAGGTCAATGCCTTTTTCATCCAAGTAGGACGTTAAGGCTGCCAAATGCTCTTCCCAGGTTAATTTTCTTTCTTCTTTCATGCTTTTTCACTCCCAAGAAAGTGTTCTTGCTCTATTTTCATATTTCTTTCCTTTTTCTAGGCTTTTTTAATGAATTAGCTAGGCAAAGCCACTAGATCATAATATAATTTATATCAAATCCAAAAATCATTCTATTGATCTATTTTTTGGATTTTGGGGAAACAAAATTTTCACATCATAAGCACTGACTTATTAGAAAAGAACTATTAACTTAATCCGATAATCACCCACTTGATTATCCTTCAATAAATTAAGGAATAACTATGGCAGAAGCCCTTTACCAATTTACCGATCAAGAACGCGCCCTATATGAGAAAACACCTCTGCCGCTTTTAGTTATGCAGGTCATCGACGGGGAGTACCATGCCTTGCTGGCTTCTGACGAATACTGCAAGATGGTTGGCTCTGACCGGGAGTCCATGCTGGAATACCTCAACCACCACAGCTTTGGCCGGGTCTACCCGGCTGACGTTGTCCGCCTGGCAACTTTTTCAGCTTCAGCTGTCAAATATCCCCAATGCCACTTGACCTACCGCCTGTCCATCAAGGGCGAATACCACACCCTTTTTGCCCACTCAAAGCGGATCAAGACTGAGGACGGCACAATCCTTTTTCTGGTTACCTACTTTGACCTGGGCAATGACCAGAGCCAGCAAGACCAAGGAACAAAGTGAGTCCCCCGACATGGACCTGCTGACGGGCATGCCCAATGTCAGCTACTTCAGCAAGTTCGGGGATGACTTTTTAAGAAAGCTCTTAAAGCAGGCCGGGCAAGTTGACGTTATCTACTTCGATATCTCCTCCCTGCACTCTTACAACGACCACTTTGGCTTCTTGCAGGGGAACCAGCTTATCAAGAAGTGCGGGAAAATCATCCGGGCCAGTTTCCAGGAAGGGCTGACCCTGCGCTATGTCGACAACTCCATCTTGACCATCACTGCTCCCAGCCAGCTCAAGAAGCTGCTGCCGGAGATCCAGAAGAAAGTCGCGGATTTTTCCTTGACAAGGTCACGACCGTCAGAGCCGGCGTCTACCAGGTCAAGGAAATGGAACCAGCCACCAGCGCCGTCGACAAGGCCTACCTGACCCTGCGCTACATGGGCGATGACCGGCACAAGGCTTACCAGGTCTACAACACATCCGTCAAGAAGCCCTTTGAGATGCAGGACTACTTGATGGGCCACTTTGAAGAAGCCCGCTGGCAGGAACCAGGTAAGCCGGCTTTAAAGGCCAGCCGCTTTATCCCTGTTCTGGAAAGAAGCGGCCTGGTCTACTAGCTGGACCTCCATGTCTTAGACCATGTCTGCCAGCTGCTGAACCAAAGGCGGGCCGACAACCTGCCAACCATTCCGGTATCCATCAACCTCTCGCCTAGCGACTTCAACATCGACAGTTTCATCGACCAAGTTCTCGGGATCACCCAGAAATACCAGATCCCCCACAACATGATCCAGTTTGACCTGATGACCCAACCAGTCGCGGTTGACCAGCAGCAGCTGAAGGACACGGCGGCCAACTTGCGGAAACAAGGATTCAGGATCTGCCTGGACCGCTATGGCGGGGAAAACAACGACTTGTCAACGGAAACCCTGCTGGAATACAATTTCGACTATCTTAAAGTCGACGTCCGCAGCTTCAATACCAACCGGCAAAGGGCCAAGATCATCCTGGCTTCCGTCATCAACATGTCCCGCCTGCTCAAGATCGTCCCGGTCGTCAAGGGGGTTGAGGACCAGGCCATGCTAAACTTCATCCGGTCCTTAGGAATCATGCTGACTCAGGGGCGGCTTTTGGCTAAAGAAATGCCGGAAGAAGAACTGAGCCAGGAAAGAGATAACTTTGAAAGCGTTGAAGAAAGAGCCCTTTTCTCTGGCTTCAACCACATCAACGTCCTGGATCCCTACTTGGAAACCCGGGACCGGCTGGACAACAACTTTGAGAATCCCCGGCCTAATTCCATCTTCATCGTCCAAAGCCAGCAGGCCAAGCTGGTCTACTGCAACAGTGCCTTCCGCTCCTGGACCGGCTGCGCAGGAATGACCAAAAGGTCCGGGAATACTTGAAACAGGTCAAGATTCTGGACTTGAAGTTTGACATCCATATTTCTGCCGGCTATGTCTATGGCCAGGCCCAGACCCCAGACGAGGTCTACGAAATGATCCGGGAAGCCGACCGAATGCTCTACCAGAGCAAGGACAATGTACAATGTCCGCAACCAGATCAGCGGCGGGCCTTCGCGCTATAATTAGCCTTCTGTTTAACTGAATGAGCATTAAAAAATCCACCCATCTGGGTGGATTTTTGCTTGCAGTGCTTTCTGTATTTCTTTTTTCTCCCTGTTTACCGCAAGCGGTGTTGGAGCTGCTTTTCGATGCCGGCATGGTAGACCAGGTTGTAGCCTAAGCCCGCCCCAACGGCTGCCTGCAGGCATTCAAAAGGAAACTTGACCAGGGAGATGGCCGGGGTCGCGTAAATAAAGGCCCGGCCTAAAGTGTAGCCAGTTACCATCACGGCGGCGCCGATAAAGATGCCCAAGATGACCTTCTTTTGCTCGCCGGCAAACTTGTGGGCAAAGTAAGAGATGATCAAAGCTTCAAAGCCATGGGAGAAGAGGCTGACGAACATGGGCGCAGGGTAGAAAAGGAAGTCGCCCAAGAAGGCCCCTACCCCGCCGACCACGAAGGCCTCTGATGGGGACAGCAGCAAGGCCGCGGCGACGATGACCACGTCGTTGAAGTAGAGGTGGCCGCCCGGGACAGGGATACTGAATGAAGACAAAGCAACGTTCATCGCCATCAAAACGGCGACGACGGCGGTTCTTTTGACTGACCATGATTTTTGCATGTGATTTCCCTCCGGCTTGTAACTTTGCTTTCTATTTTAGCACTTTTTCAGTATTTTTTGAGGTTTTTCTCTTACAAAAAAGAAGAAATAAAAAGCCAAGGCGATGGCCTCAGCTTAGCTAATTTAAGACATGGATTCTTGCATTTTAATGACGGTATTTTTTATAAGATTGGCTTTCTCCTCATGGCCACGGTCTTGATGTTCAAGAGGTCCTTGGCGGTGATGTTGTGAGAAACTGAGTTAGCCCCGTATGAGCCGGTTCCCAGGGTCAAGGATGGCATCATGTTGTTGTAGACCCCGCCGATCCCGCCAAGGGCAGCCGGGCTGTTGACCAGGATACGGCAGGCAGACATGGCGAAGGCAAACTTACGGATAACCTTGCTGTTTTGGGTGTGGATGCCAGCAGTGTGGCCCCGGCCGCCGTAGTTCAAGAGGTCGGTGCAGATCTTGAAGGCCTGGGCACTGTTTTCCGCCTTGTAGAGGGTGAAGACCGGGGACAGCTTTTCAGCTGACAATGGGTACTTCGGGCCAACCCCGCTGTATTCAGCCACGATGACTTGGGTGTCGGCAGGCACGGTCACCCCGCACATTTCAGCGATCTTGACCGCGCTCTTGCCGGCCATCGGGCCAGCGACTGTCCCCCGGCGGGGGTCGATGAAGTGTTCTTCAAAGAGCTTGATTTCGTCAGCCTTTAAGAAGTAGCAGTGGCACATTAAGAAGGCTTCCTTGACTTGGTCATAGACCTCTTTGTCAACGACGACGGAGTTTTCTGAGGCACAGATCATCCCGTTGTCAAAAGTCTTGGACAAGACGATGTCGTTAACTGACTGTTCAATGTCCGCTGTCTTTTCGATGTAGGACGGGCCGTTGCCTGGGCCCACGCCCAGAGCCGGCTTGCCAGTTGAGTAGGCGGCCTTGACCATGCCTGGGCCGCCAGTGGCCAGGACTATCTGCACCTTTGGGTTGTTCATCAAAGCCGTCGTGGCCGTGAGGCTTGGGTGTTCGATCCATTGGATCCAGTTTTCCGGTGCCCCGGCGGCAACCGTGGCTTCCTTGATCAGCTTGGCTGTTTCCACGCAGCATTTTTGGGCTTGCGGGTGGAAGCCGAAGATGATGGTGTTCTTGCTCTTCATGGCGATCATAGCCTTGAAGATAACCGTGGAAGTCGGGTTGGTGACTGGCGTTACCCCGGCGATGGCCCCGATCGGTTCAGCAATCTTCATCAAGCCTTCCTGCTTGTCTTCTTCGATCACCCCGACCGTCTTCATATCCTTCATGCTTTCCCAGATAGTCTGGGCAGCGTAGGTGTTCTTGGTCACCTTGTCTTCGACCTTGCCCCGGCCAGTTTCGTCAACTGCCATTTGGGCCAGGTAGCGGGCATTGTCTTCACCGACTTTTTCAATGACTTGGCAAAGCTTGTCCACGTCTTCCTGGCTGAAGTCGTCCATCTGGGCTAAGGCTTCATGTGATTTATTAACCAAAATATCGATATTGTGGTAGATTTTGTCTTCAGTTTGAACTGACTTTTCCACTTCTGTGGTGCTTTGCTTAGGCATTCTCTCGTCTCCTGCTTCTTGCTTATTCCTTGTGATCAATTTCTCAATTACTACTATAACAGCATTTAGAAAAAAGAAAAGAGGGTAAAATCCCCCTTTCTTAATGACACAAGAAGCTGCTTTTCACTTACGTTTTGCCTTATTAGCGATGTGAGCGGTAACCATCTTTTGCTATTGTGAATAAATCATTTTATATATCTTTTCCACTTTTACAAAAGATAGCGATTTCTGTCACAAAAGTTAAAAGGTGTTTTTTCAGCTTTTTTGCCGATAAAAAACAGATTTGCTTGCCTGCATTCTCCTTTTTTCACTAAAAAAGACCCGGTAAAAGGCCTTTTAGCAGTTCAGTAACCTTTTCACTTACTCTCTGTTTTTAAGTTAATTTTTGACAAATAAAAAGGACTCAAACGAGTCCTGAAATTTATCTTCTACTTAAAAGGGTTGTAAAAGCGGCCCTGGTTCAGATGCCAGAAGTAGAGCATCAAGAGAACCAGCAAAACTGCCACCCCCAAGCTCAGCCAGTCGCTGGCTTTAAGCTTTTGGGAAGTGTACCAGGTCCGCTTCTTCTTAGAGCCAAACCGGCGCAGTTCCATGGCCGTAGAGATCACCGTGATCCGGTCTAAACTGGACAGAATCAAAGGCATGACGATATTGACCGTCCCCTTGGCCCGGTCAGCCAGCTTGGCCTTCTTGGAAATTTCATTCCCCCGGGCCTGCTGGGCATGGGAAATCGCCCAGTAGCTTTCCTGGATGTCTGGAATATAGCGCAGGGCCAGGGAAAAGGCATAAGAGAAGCGGTAGCTGATCCCAATCTGGTTCAGACTGGAAGCAAACTGGCTGGGATTGGTCGTCAATAAGAACAAGATTGCAATCGGCACGGCACAGATATACTTGAGCAGCAAGTTGAAGAGGTAAAAAGTCTCCTCAGCCGTTAAAGCAAAAAAGCCACTGCCCAGCAGGACGTGCTTGCTGCCATAGAGGTCCGCCCCGTAGCTAGGCTGAAAGACATAAACCAAGATCAAGTTCAAGACCGCGAAAATTATGATCAGGTTGACCACAACTGACACCTGACGCCACTTGACCTGGGAAACCTTGAACAAGACCAGGGACAAAAGGCACATAATCAGCAAAAAGCGGGTGTCATAAGTCGCCATGCAGGCCACCGAAGTAATAATCAAGAGCAAAAGCTTGGTGGTCGCGCTCAAGCGGTGGACAAAGGTCTTCCCCGGCGTATAGCCTAAAACAGCATCATTCATTAGCGTTTTCCCCCAATCTTTCCCGTTCATAAGCCGCGAACTTGCGGGCAAAGCCATCCGGATCTGGCAAGCCGTAATGCTGGGCCAGGTCAAAGAGGCTGACCTGCCGCAAAGAAGCCTGCTCGATCAGCTTTTCATCAGTCAAGAGCGCAACCGGCGTGGTGTCGGCAATCAAACGTCCCTTGGCAAAAACAAGTGACCGGTCAGTGTATTCCATCATCAAGTGCATGTCATGGGTGATAATCATGATCGTCTTGCCAGCTGCATTTAATTTCTGCAAGAAGGACATGATTTCCGTGTAGGTCTTCCAGTCCTGGCCAGCTGTTGGTTCATCCAGAATCAACAAGTCCGGTTCCAGGACCAAAATCGCCGCGATCGTGACCCGCTTCTTTTGCCCAAAGCTGAGGGCGGAAACCGGCCAGTTTCTGAATGGGTAGAGGCCGCAGATCTTAAGAACCTTGCCCACCCTTTCCTTGACCTCGTCTTCTGGTACTTTCCGCAAGCGCAAGCCCAAGGCCACTTCGTCAAAAATCATAGTCTGACTGATCATCTGGTTGGGATCCTGCATCACGTAGCCGATCTTGTCCGCCCGCTCCTTGATGGACAAGCCGGCCATGTCCTCGCCTTGCCAGGCAATCTCGCCCGTGTTTTGCAAAAAGCCGCAGATCAAGCGGCAGAGGGTGGTCTTCCCCGCCCCGTTTTGCCCGACGATGGAGATAAAGTCCCCTTCCTTGATGACGGCATTAACGTCCTTTAAAGGATATTTTTGGTCGGCGCTGTAGGCAAAGCCAACATTCTTCAAGGTCAAGAGCTCCTTAACAGCTGCCTTTTCTGCCGGCAACTGGTAGCTGTCTTGCCAGGCCAAAAGCTTGTCCTTGGCATCCCTCTCAACCGGCAAAGCTTCCAGCGGGGTCAGCTTCTCAAACTTATTCAAATTGATCCCAGCCGTCTTCATGGCGTCCAGGTAAAGAGGATTTCTGACCCCAACAGCCTCCAGGCGGTCAGCCTTGAGCAGGTCATCCGGCTTTTGGTCAGCTAAAATCCGGCCATCATCAACCAGGACGATCCGGTCTACTTCCTCGGCCAGGACTTCTTCCAGGCGGTGCTCGATGATGATGACCGTGGCCCCGAACTTCTTCTGCATCTGGTCGATGAGGCGCATGGTCTTGTAGCCAGAGGCCGGGTCCAGGTTGGCCAGGGGTTCATCAAAGAGCAGGATCGGGGACTCGTCAACCAAGACCCCAGCCAGGGCCACCCGCTGCTTCTGTCCGCCCGACAAGCTCTGGGGAGCCTGCTTAAGCAAATCGCCCAAATCCAGCTCCTTAGCCCAGCGGTCCACCACCTGCTTCATTTTGTCCTGGGGCACGCAGTCATTTTCCAGGGAAAAAGCGATGTCTTCCCCGACCGTCAGGCCGATAAACTGGGCGTCCGTATCCTGGAGAATGGTTGAAGTGGTAAAAGATAAGTCAAACAGGCCAGTCTGACTGATGTCCTTGCCATCAATCAAGCACTGGCCTGTGATCGTCCCTTTATCCAGGTTGGGAATCAATCCGTTCAAGCACTTGCCCAGGGTTGACTTGCCAGACCCTGAGGGCCCGGCCAGCAATACTTTTTCCCCCTGCTCAATCGTCAAATTGATATTGTGGAGGGTTGACTCCTGCTGGCTGTCGTACTGAAAAGAAAAATCTCTAAACTGAATCAGACTTGTCATATATTAATTCCTTAATCCTTGTGCAAACTGCCCTTCTTGACCCGGCTGCCGGCGTAAAGCTTGAGCAGGATGGTACCCAAAACCGCGATGGTCAAACCATCCATCAAGGTAGTCAGGCCTGCTTGGGCAAAGACCTTAGCCGCTGGTTCGCTGTTCAAGACCATGTCGCCCACGGACCCCAAGAGGAACCAGACAATAGCGTTGGCCACGACCTGCACCACATTAAAGATCACCATTTCCTTAGCGCTGAATTCACCTTGGTCGATGTTGACGCGCAAAGCGTAGAGGCCGATGAAGAAGCCCAGGAAGCCGGCTGCGAAGTTCCAGTTCCACCAGGTCTGCCCGTACATCATCAAGTCCAAGAGGACGTGGCCGATGAAGCCGACCCCGAAGCCGACAGTTGGCCCGTAGATCATGGCAATCATGGCCAAGAAGGCGTAAACCAGTTCAAAGTTGGTGTTTGGCAGACCGCTTGGGATTGAGGCAAAACGGCCGACAATCACGAAAACGGCTGACCCGATCCCCAAGGCAGCGATGTTCTTAGGGCTTAACTTCCACATATCCTTATTCATAAAAAATCTCTCCAATTCCTTTTTTACTTGTTAACCTTGCTGATCTTGACCTGCCAGTCGGTCCCGATGCCGATGTGGTGGACAGCGGCGAAGGATTCCTGGTTGAGGGCAATCCCGATGTTGACCAGGGAGTTGATGTAGACGAGTGGCTGGCCCAGGTTGACTTCCGCGAATGACCGCACGAAAGGGATTTGTTCCTGGTAGACGGCCACGTTCTGATGCAAGATGGTGACCAGCAGGCTGTCGCCCCGGTCGATGGACAGCTCTTTGACCATTTCCAGCGGAATGTTGGTCCATAAAGAACCAAAGCGGACATCCAAAACGTCGATGGTGCCGACGGCCGTGTCGCCTTGCAGGCGAGGCTCGATCACCGGCAGAGTCACCAGGCTGTCAACTGGGACATCTTCGCCTAATTCTTCAAAAGCAACCTGCCCGCTGGCCAGCAAGGCCCCGTTATAAGCGTAAACGTCCCGGCCATGGAAGGTGTTGCTTTCCTGGGAGTGCGGCAGGCGGTTCTTGTTTTCATCGATCACCCGGACGGCTTCAACCCCTTCATACTTGTAGATATGGGTCAAAGTCCCGTTATCTGGGGTGATGACGTAGTGACCGGACTTGGTCTTGACGGCGATTGACCGGCGGGCTGAGCCAACGCCTGGGTCAACGACAGAGACGAAGACCGTGTCTGCTGGCCAGTACTTGATGGTTTGGTAAAGCCGGTAAGAGGCGTTCCAAATGTCGTAAGGTGGGATTTCATGAGTTAAGTCAGAGACCTGGATGTCACTGGCAACCGTGTGGGCCACCCCGTGCATGGCGCTGACCGCCCCATCTACTAAACCAAAGTCTGTCTGCAGAACCAACATCTTATTATATGCCATCCGATTTCCACCTTTCAATCGTTTTCAATTTTTAATATATATTAAAATACTCTCTTTACCAGGCAAAGTCAAGAAAAGTATTCGGTTTTTTATAAAAATTTCTAGCTTTTCTCCCTTGTTTTTTCCAGTATTTTTGGAGAAAACCTAACATTACGCATAAAAAACAGCCATGACTCGGTCATGACTGTATGATTTATTTACTTTTATTTTCCGGCCCGCTTGTCCTTAACCCGCTGGTGGAAGTAACAGAAACTCCCAAAGAAGACGGCCCAGGCCGTGGCCAGGCTGGCTCCGAAGATATTCGCCTTGACGAAGAAGAGGCTGAAGAAGATGACCAGGAAGAAGGCAATCGTCAATGGACTGGTTACCTGGTAAAAAGGCATCTTGAAACCATCTTCCATAAAGTCACTGGACTTGCGGTACTTCCGGTGAGCCAGCAGGGCCAGGACGTAAACCAGGATGAAGATATCACTGGTGGCCCCGGCGACCATGCTGAAGACCTCAATTGCCGTGTTAGAGAAGCTGAGAATTGGCGCGATCAGGGCGAATAAAACTGAGATCGCGATCCCTCTTGCCGGTACCCCGTTTGGTGCAATCTTGGCAAATTTTTTTTTCAGCCAGCTGCCCTTTTTAGCTTCTTGCGCTAATTGGAAGAAGTGCCGGCCAGCTGAGAAGATGGTTGAGTTCAAGGCTGAAGCCGCGCTGGTCAAAACCACGAAGTTCAGGACTGAAGCCGCGGTAGCGAAGCCTGCTAACTGGAAGACCTGGACGAAAGGACTGCTTGAGGCAGACACTGACCACCAAGGAACCACGCACATGATCACGGTCAAAGTCCCGATGTAGAAGATCAAGATTCTCAACAAGGTCTCGTTGACCGCCTTTTTGATCACCTGGTGGGGATCTTCAGCTTCCCCGATCGTGATAGTCACGAATTCAATCCCGGCAAAGGAGAAGAAGACCATCGGGAAGGCGGTAAAGAAGGCGTAAGTGCCATTTGGCGCCAGCTTGAAGTTCTTGGTCAAGCTTGCTAAAGAAGCATAGCCAACCGGGGTTTTAGCATGGGTTGCCACCAGGAAGACCCCGGTCAAGATCATGGAGATAATAGCGATGATCTTGATCATGGCAAACCAGAATTCCGTTTCCCCAAAGAGGCGGGCTGCCGTCAAGTTCAGCAGGGTCAAGGCTCCTAGGAAAATCAGCTCAACCAGCCAAAGAGGCGCGTGCGGGAACCAGTACTGGAAGTAGGTCCCGACCGCTGTAAGTTCAGCCATACAGGCAAAGAGCAGGCCGATCCAGTAGGACCAGCCGGCGAAGTTGCCGGCTGCTGGCCCCAGGTATTTAGTAATAAATGAGACAAAGGTATGGTGGTTGGGGTCTGAGTAAAACATTTCTCCCAATGCCCGCAGCATGAAGAAGAAAAAGACCCCCATGAATGCATAAATCAAAATGACTGACGGTCCGGTGGCCGAGATCGTGCTGCCGGACCCTAAGAAGAGACCAGTCCCGATAGTGCCCCCGATGGCAATCATCTGGACATGTCGGTTCGATAAGGACCGGAGCGTTCCGTCCGCGTTTTCGTGTTTTTTCGCCATCTGTCCTCCTAAATAATCAAATCAACATTAATCTATAACCATTTTAATAATAGAGAAAATAGCCGGAAAAGTAAAGTTATTAAGCAAATTAGGCTGATTTTCACCCTTTAACCGAATTGATCTTCAAGATAAAAATCTAAGGGCTGTTGATACTCCAATTTAACTTTCTTTGCGGAATACAATTTGTTTTTCTTTAAGAAAGCAATTGTCTGACTGTAGTTGCTGTAAACCGGATAGTAGATCTTAGCCCGCTTGCCATTTGCCCGCGTCCAGGAAACCGCGACTTGGCCAATCGGCTTCTGCAGGCTGGCCTGCTGGTAGTCCCACTTGGCTAAGTCTTGCTTGTAGGCTGCCCGGAAGTCCTTGTAAAGCTGGCTGTCCTGGCGCTTGATCGTTTCCTTGCCATTTGTGTAGGTAAAGGACACGCTATCCAGATTGTCCATAATCATCTGGTCATGGTAGATCTGGAAGTAAGCCTGCTTGTAAGCCTTGGTCTTGCTGATTGGTTCAAAGTATTTCTTCAGCGTCTTTCTATCCACATCATAGACCCTGGTCTTGACGCGGCCATTCTTCATTCTGAAGACAAAGCGCATCTGGACTGAATCTTCCCGTTCATGGAACCGGTTCTGAGTAAATTTGCTGCCAGCTTTAACCAGATTTATGAGGTCACTGTTTACCGGCAAATACATGTATTTCGCGGCATAATCGCTGGCGTCACCTTTAGCTGATTTTTTACCCATGTAATAGTTGGTATAGATGCCGTCATCCCGCGAAATTGCCACACTGGCTACTTGCTTGCTTGCAGGCAGCCAATCATCATAGCGCTTGGCTCCCCAAACCATGCCGGCCAAAATTGCTAAACCCGCCACGGTTAACAGCAAGCTCTGGACAAAATTATGCTTCCAGGCAGCCAGGTCAAACTTGTAGATGATTTCCATCAAGCTGGCAGTTATTAAACCAATGATCAGGGCACCAATAATGCCGCAAGCAAAGTTTAAGCCGATCATCGTGTAGCCAATGATCCCGCCAATTGCCGCGAAGTAGACAACCACGATGATCTTAACCATCTGTTCAATCCAGGCAAAAGCCACAGCTCTGCCTGCCTTTTCATTAGCCCGTTTCTGGTAAGCCCAGTAGGCTAAGGCCAGGTAAAGGACGGTCCAAAGCAGGTTAATCCCGATCCCTAGCCAGTGATTTGAGTTATATACCTGAGTCGAAGGATTGGTGTATGCCAGCCAATCATGATTGTCATAGCCAGCCGTAGTTGCCAAGGTGGAATAGAAGATTGAATTCAGAAAAATCAAGCCAAATTCAAAGCAGGAGAAAAAGATCGTGGCTAAGCCAGCCACAAAGGTATTACCTGTGATCATCATGCTCAAAGAGGCGATAGCGTACCAGGCTGAAAAGGCAAAGAGGTCAGCCAGAAAGCCCCGCCAGATCTCACCGTCAGCCAGGAAATTAGCCCCACCTGCAGCCAAGATCAGCATTCCGGCCAGGAAAAAAAGCAAGTAAAGCAAGCTATAAATAAGCAAGCTGTTGACCGTAATTCCGATGAAGCGAGTCTTGCGGCTGACCGGCTGGCTCTCGTAATAGTCCACTTGCCGCGGCACATGCAAGAAGCGGAAGCCTTCAAAGGCCAGGTAGATGCCGAAGATCCCGGCCATCACAGCCGACATGCTCGTATTTTGAAAAATATAATATGTCCGGGCGTCATGCAGCAAGGAAGCCGTCTCAACATCTTTGTTGCTGATCAAAACCAGAATCGACCCAACGATATAGAACATGGCCATGACCAAGATCGCCAAGACTACAGGTACTTTCCGGTGCCGCAGGATTTCTTTTTGCGGCAGACCGTGTTTATTTAAGGATAAGTTTGCGCGTGTCATAGCCAACTGCCTCCGCTTCTGCAATAAAGATTTCTTCCAAGGTCAACGGCAGGATTTCGAAGAAGGTCATCGGCACATGGTCAAAGACCGCCTCGACTTCGCTCCGGCTCCCCCGCACGACCAAAGTGTGCAGGCGGCCCCGGCTGCTGTGGTCAACCAGCTTCAGCTTGCCCAGGACTTCCTCCATGTCCCGGTCGTCCTTAAAGACGCACTGCAGCTTCTGGATTTCCAGTTTCATGTCGGCCAAGTCTTCTGATAAAAGCAGACCGCCGCTGTGCAGGAAACCGATGTGGTCACAAATATCTTCCAATTCCCGCAAGTTGTGAGAGGCAATGATTGGAGTCAATTGCCGCCGGTCCATGTCTTCGGCAAAAAGGCTCTTCATGCTCTGCCGCATAACCGGGTCTAAGCCGTCAAAAACTTCGTCTAAGAGCAGGTACTTGGTGTTAGTACATAATCCTAGTAGGATCGCCAATTGCCGCTTCATGCCCTTAGAATAGTCGTGTATGCGGCGCTTTGGCTCTAAGCGAAAGTCCGCCAGCAGTCTGGCAAAACGTTCTTGGTCAAACTCCTGGTAAACCGCCGCGTAATCCCTGGCCATAGACTCCGCTGTGGCATTTGGGAAGAAGTAGGGGTCATCTGGAATGAAGCAAAACTTTTTCTTTGCGGCTGGATTGTCATAAACTGGCAAGCCATCAATAGTGATATGCCCAGAAGTCGGCCGCAGGATGCCAGCGATCATCCGCAAGAGGGTGCTCTTGCCGGCCCCGTTGGTCCCGATCAAGCCAAAGACCCGGTCTTCTTCAATGGTCAGGTTAAGGTTCTTAATGGCCTCTGTCTGCCCATAATCCTTGCTTAGTGCATCAATCTCGATCATCTTCTGCCGCCTCCTCCATGGCCTCAGCAAATAATTCCTGTGAATTCAGGCCTACTGCTTGAATCTCCTTAATTAAATCAATCATTTTCCCTTTCATCTCTTCTTTTTGCTTGCTCTTCAGCGTTTCATTGGCCCGGACGAAATTCCCCCGTCCCTTGACGCTGTAAACGTATCCCTCCCGTTCCAGCGCGGCGTATGCCTTCTGCACTGTATTAGGGTTAGTCGACAATTCCATGGCCAACTTCCGCACAGACGGCAGCTGCTCATCTGGCAGCATGACTCCGGTCAGAATCAGCTGCCTGTACCTGTCCGCGATCTGCTGGTAAATCGGCCGGCTGTCCAAATAGTCAATAAAGTCCACTAGCTCGCTCCTTTCTAGCTGTCTCTACTGTACTATTTATTCTAGTACACCAAAGACGAATTGGCAAGCAATTAGCAAAAAGAAAATAGATTGTTTCTAAAGTAAAATAAGCAGCCAAGAAAATTTAGAAAGAAAAGAATAAGACAGAAAGGAAAAATAAATGCAAAGACAAAAGAAGCAGGTGGATACCTGCTTCTCAGTGACGGTCCATGCGGGATTTGAACCCGCGATCTCCTCCGTGACAGGGAGGCGAGATAGACCACTGCTCCAATGGACCAAATATTCTGTTTTGCCTTCCGGCAATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCAGATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCAATGCACCCAGTAGGACTTGAACCTACAACCTTCTGATTCGTAGTCAGACACTCTATCCAGTTGCGCTATGGGTGCGCTGAAATATTCTGTTTGCTAACGCTGCTGCGTTAAGCGGAAGACGGGATTCGAACCCGCGACCCCCACCATGGCAAGGTGATGTTCTACCACTGAACTACTTCCGCATGATAAAAGCCAGGCTAGACAGTCTGGCTGATTGAGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATTCTTCTTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATATCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAGTGAGAGCTGATACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCTGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGACGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTGCGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCATCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCAAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTCAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGACTTCTTGTCAACAAGTTTTTTGATATTTATTTTTGTCTTGCTTCAAGCACTTGGCTCGTTTCAAGACAAATACTACTTTACCTTGTTTTTTCTTTTTCGTCAACTTTTGCCTTTTAATTGTCTTTTCCGCCAAACGCCAGGAGGTGTTGTAAAGGTTGTTTCCTTTTTTGCTTTTCAAAATCCTCGCGCACTTTTGGAAAAATTGCTTTTTCGAAAAAAATGTTCGGATTTTATGTCTTTTCTAGGTTAAATGCATAAAAAGTTTTTTTGAAATTTTTTACTTTCAACTTTTTTACGGGTTGAAAGTAAAAAAAGGAGCAGCCAAATGACTGCTTCTTGCTTATTTTAGGTATTGCACGGTGATGTCGCTGACGTTGATCAGGAGCATCTGGTAATTTTCGTGTCTGGCAATTTGCTGGGCACTAAGGCGGAGATATTGCTCGGTTTGCTTAAAGTCAAAGTAGCTTGCCTCACCCTGGTCAACCTTTTGGGCAAAGGCGTGCAGCCGCTTGGCAATTTCTGATTCCGGCTTGTTCCATTCATTAACGATCTGCTTAAAGACTGCCGGTGCCCGCTTGACTTCTTTCTGAAATTCTTCGTTGACATAAAGCAAGCGGAAAAGGCTGCCATCGTCTAAGGCCAGGCAGGTCGGCTTGTCGCTGGCCAAGTCCACCAGGCCAACACACTGGTAGAACTTGCTCTGCTGCCAGTTCTCAATTTCGATCCCCTTTTCAGCCACCAGCTTGGCGAACTCACCGGTTGGCAAGGGCTTGCTGTAGTAAAAACCCTGGATCCGCTCGCAGCCAATCGACTGCAAGAAGTCCAACTGCTGCTTAGTTTCAACCCCCTCAGCCAAAGTATGGATTCCCAGGTCCTTGGCCATCTTCACGCAGGCGGTTAGGATCTTCTTTGAAGCTTCGTCAAAGTCCTTCATGAAGATCATATCCAGCTTGATCTCATCGAATTCAAAATTCTTGAGATAGTTTAAGGAAGAATAGCCGCTACCAAAGTCGTCCATCCAGACTTCATAACCGGCCTGGCGGAAGTTGTGAATGGCCCGCTTCAAGCCGGCAACATCCTTAGATAAGGCACTTTCGGTGATTTCCACGCGGACTAGGGACCAGCGCAAGCCATTTTTCCGCATGGCCTGGTTTAATTCGGTCAAGGGATCCATCATCTGGAAGTCTGCCCGGGACAAGTTGATGGAAACTGGCACGAGCTTTTCTCCCTTGTCGATACGCCCGCGCAGGCCCTAGGTAACTTCTTGGATGACGTAACGGTCAACCTTGTAGGACAAGTTCATCTCTTCAAAGAGGGGAATAAAGTCGCCCGGTGACAAGAAGCCCTTGACCGGATCAATCCAGCGGATCAAGGCTTCCGCCCCGCAGAGGCGGCCGGTCAAAGTCCGGATGACTGGTTGGTAGTAAACCTGCAGGTAGTGCTTTTCAATAGCTTCATCCAGGTGTTCGATCAAGTACTGCTTTAATTCTTCCTTTTCCTGCATGGCCGAAGTGTATAAGCACCAGCTATGCTCAGGCTGCTTCTTTGCTTGGTCGCAGGCTAAAGAAGGACTGACTTTCTCATCATACTGGTAGACTCCGACCCACACCCGGAGCTGGCTGGCTAAAGGCAGGTGCTTTAATCGGGTGTGCAGGCGGATGATCTGCGCTCCCAGTCACCTGGTTCTGGATCATAAACATAGAACTTACTAAAAAAGCCTTCCAAAAACGAATTTTGGAAAGCTCTTCTTGTGAATTATAAAGTTACCTGCTCATTTTCCTTAACCCGGGCCCAGTTGTGGGGATCCTGCAGGGTCGTGTCCAGCTTGCCCAGCATGTGGTCCATCTTGTGATATTCGGTGTCCCTTTCTTCATCGGTCGTCTTGGCCAGTTCTGCCTTCAGTTCATCCGCAAAGATGGTTTCTTCGGCGTTGGTCCAGAAGTAGTCTTCATACTGGATCCCGCTGAAGCGCCAAGGCTTAAAGAAGAGATTGTAGTGGATAAGGCCAGGATTTTCCAAGGCGGCGGTGTTTTCGTTTGGCATGGCGTCCCAGCGGCCGTCCAGGTACTTGATCCGGCCGGAGCAGATTTCATTTAGGTAGTCCTGGTCCGTGGCGATGCAGTCAAAGTGGTAGCGGCCCAAGAGGCTGAAGAACTTGTCAACGAAGTTTTCCTCTCTGAAGGCCTTGGCGTTCATGACCAGCATCCCTGAATTGATGTATTCCTTCGGATCCAGAGTCAAGACTTCCTTGATATAGCGGAGCATCTTTTCCACGAACTGGATGGAAGTGTCGGTGCAGGCACCCAGGAGATTATTGCCTAAGTCATGGTCATAAAGCTTGGCGATGTCGTCATTTAAGACCGTGTCACTGTCGATGTAGACTACCTTGTCGTATTCCGGGAAGAGGTCCGGGATAAAGAGGCGGTAGAAAATGGACATTGCAAAGAAGTCGCCCCGCAAGTAGTTCTCCTTCCGGTCCTGGATTGGCTTGAGGAGTTCGTCGGACATCTCGTAGAACTTAATGTGGACATTGTCTCTGTTATAAGCGGCCAGGGCCTTTTCATGGTCCCGGCTTAAGCCCTGGTGCAAAAAGGTTACCGTGTAGTCACGCTTTGGGTCAGCATGCTTGACTAAAGAGTGCAGTGAGACAGCCGCGTATGGGGTGAAGTCGTCACTGATTGAATAAAATACTGGAACTGTCATTATTATTTTTCCTTTCCATCTACCCTCAATCGTATACTACATTGTAGTTCTTACCAGCATTTTAGCAAGAGAAAAGTGCAAATCGTATGAAATATTACATTCGTTTTCTCTATGAGAAAAGGTAGTGGAGGGCCTGGCGGACGCTGGAGACCGGAATTACCTCAATCCCCAAATCCTGCAAGGCCGGGCTCATATTGTATTTCGGGATAAAAATCCGCTTGAAGCCAACCTTGCCGGCTTCCTTGACCCGGGCCTGGATCTGGTTGACCCGGCGGACTTCCCCAGTCAGGCCGATTTCCCCGACAAAGCAGTCAGTTGCGGAGATTTCCTTGTCATAGTAACTGGAGGCAATGGCCATGGCGATGGCCAGGTCAATGGCCGGTTCGTTTAAGCGGATGCCGCCGGTCGCTGATAAATAGGCGTCCTGGTTCTGCAGCATTAGGTTCCCCCTTTTTTCCAAAACGGCTAAAAGCAAGGAGACCCGGTTGTAGTCCAGGCCCGAAGTAGTCCGCTTGGCATAGCCGAAGGCGGTTGGGGTGACCAGGGCCTGGATTTCGCCCAAGATCGGCCGGGTGCCTTCTAAAGAAACGACCACGGCTGACCCAGTTGAGTCGGGCAAGCGTTCATCTAAGAAGACAGCGGAAGGATTGGTCACTTCTGCCAGGCCTTCGGTCTTCATTTCAAACATGCCGATTTCGTTGGCCGCCCCAAAACGGTTCTTGACTGAGTGCAGGATCCGGTAGGCATGGTGCTCGTCACCTTCAAAGTAAAGGACGGTATCAACCATGTGCTCCAGGATTTTCGGCCCGGCGATGGACCCTTCCTTGGTCACGTGGCCGATGACAAAGACAGTGACCTGGTCCAGCTTGGCGATCTTCATCAATTCGGCGGTAACTTCCCGGACCTGGGAAGCTGAGCCCACCATGGAGTCCAGGCTGGGTTCATTCATGGTCTGGATGGAGTCGATCACGACAAAATCTGGCTTAACGTCGTCGATCTGGTCGCGGATGTGTTCCATGTTGCTTTCCGGATATAAAAGCATGGGGCTTTGGCCCAGGCCTAAGCGGTCAGCCCGCAGCTTGATCTGGCTGGCAGATTCTTCCCCGGAGACGTAGAGGACCTTGTATTTTTCGGCCAGTTCGCTCATGATCTGCAGCATCAAAGTGGACTTGCCGATGCCGGGGTCCCCGCCAATCAAGACCAAAGAGCCTGGTACGATCCCGCCGCCTAAGACCCGGTTAAGTTCAGAGGACTTGGTTAAGACCCGCTCTTCTTTTTCCGCCTTGACGGTGGACATTTTAACGGCTTCTTTAGCACCCACGCTGGCCATCAGGCGGCTGGGGGTAGCTTTAGTAGAAGTCTGGCGGACCTCCTGGCTTTCTTTTTCAAACTGGTTCCAGGCCCCGCAGTTCGGGCACCGGCCCAGGTAAGAAGCGGAGATGTAGCCGCAAGACCGGCACTTATACTGGGTTCTAGCTCTGGCCATTACTTGCCGCCCTTCTTGCCGGTTGAGCCAAAGCCGCTTAAGCGCTGGCTTTCGATTGGCTGGTCGTCATCAGTTTTGAGGTACTTAATGAAGATACCCTGGGCGATCCGTTCACCCTTTTTGATCTTGAGGGGACGGACGCCGTAGTTCAAGACTTGTACGAAGATCTCCCCTTCATTATTGGGGTTGTTGTAGTAGTCGCTGTCGATGACGCCGATCCCGTTTGGCAAGGACAGGTTGCGCTTGAAGGTGTTGGAGGACCGGTTGGCCAGGATCAGGACCTCGTCTTCTGGCATGTAGGCCTTGATGCCAGTTGGGACTAAGATCGGCTTTAAGACTTCTTCAGCCTGCAAAAAGTCGCTTTCGATCAAGTCGTGGCCATTTCTGATCAAGCAGAAGATCCTGACGAAGTTCAAGCTCCAGATGCTGGGGATGGTGATGTCACGGGCCGCTTCGATATCGTAGCCGGCGCTGGCCAAAGTCTGCCGGCGGGGCAGGGTCAAGCCTTGTCCTTCATACTTCTTAACTACTTCAAAGCCTCTTACTCTGTTCATTGTTTTTTTGCTCCTTTAATTATCTAGACATCTATTTTACACTAGTTAAGATAGCAAAGGAAAAGGCAGGGACCGCAAAATATTTGCCGCTTTGAAAGGAAAAACTATGCCAGAAGAAAGAGAAAAAGTCATTGAAATCAAGGCTGACGGCCAGTTGGTTGCCAAAAGTCCCCTCCTCTTGATCGAGAGAAAGAGCGGGCCGGTTTGGGCCATGAACCAGCTTTTTATCGCGCCGGGGGCACCAGAAGGAACTTTGGATCAAGTAATGAAGCAAGTAGAAAAGCTTTGCCAGGAGACGGGCTTAAAAGTTTGGCCTTTAGACCCACAAGTGATCGCTTATTGTCAAAAGCACGGGGAATTGACGAAAATTTGGGCCTGGAAACCAACAAATTAAGCTACTTTGATAGACGGCCTTGTTTTTATGGGCTAAAATGGGCTTAGACAGTTTTTTTTAAAAAAGAGAAACAGGAGGCAATAGGATGTCAAAAGAAATCAGCTTTGACACGATCGAAGACTTCACCAGCAACTTGAGCAAGCACCCAGCTTACGGGGTAGCTGCCAACGCTGCCCAAACCAACGGGATTTTCAAGGCCAGCCAAAGCACCCAAAGCAAGGTTGACCTGGACCCGACCTTCTCAGTGGAAATCGACACTGGTTCAGTTACCAACCAAAAGCAGTCAGGCCGCTGCTGGATGTTCAGTGCTTTGAACACCATGCGTCACTCAATCCAAAAGGAATTCAAGCTGAAGGGCTTTGAATTGTCACAGAGCTACACCTTCTTCTGGGACAAGTTTGAAAAGTCAAACTTCTTCTTTGAAAACGTGATCGGCTCAGCTGACAAGCCACTGGGCGACCGAAAGGTCTCCTTCCTCTTTGCCACTCCGCAATCAGACGGCGGGCAATGGGACATGCTCTGCGGCTTGATTGAAAAGTACGGGATCGTGCCGAAGAAGGTTTACCCGGAAACTGCTAACTCAGAAAACTCCCGCGCTTTGGACGACACTTTGAACACCATGCTCCGCAAGGGCGGCTTGGAACTGCGGGCTTTGGTCAATGAAGGCAAGAGCGCAGAAGAAGTAGAAGCGCACAAGGCTGAACTTTTGGACGCTATCTTCCGCATGCTGGCTACTTCATTGGGCTTGCCGCCAAAGAGCTTCAACTTTGAATACACTGACGATGACGGCAACTACCACATCGACAAGGACATCACCCCGCAAGACTTCTTCAAGAAGTACGTTGGCTGGGACCTGGAAAACTACATCTCAGTCATCAACGGGCCTACTGCTGACAAGCCATACAACAAGGTCTTCTCAGTTGAATACCTGGGCAACGTGGTTGGCGGCCGGCAAGTCCGCCACCTCAACTTGGAACTGTCCAAGTTCAAGGACTTGATCATCAACCAATTGAAGCAAGGCGAAGTTGTTTGGTTTGGTTCAGACGTTTCCAAGGGCGGTGACCGGGAAGCCGGGCTTTTGGACACTAAGATCTACCAAAGAGACCAGCTTTTTGACTACGACTTCTCAATGAGCAAGGCTGACCGCCTGGACTCAGGCGAAAGCATGATGAACCACGCCATGGTTATCACTGCCGTTGACCTGGTTGACGACAAGCCAACTAAGTGGAAGATCGAAAACTCATGGGGTGACAAGCCAGGCTTCAAGGGCTACTTCGTCATGAGCGACGAATGGTTCGACCAATTCGTTTACCAGGCTGTTTTGAACAAGGCCTTCCTGCCAGAAGACGTTAAGAAGGCTTACGACGAAGGCAAGGAAAACCCAATCGAACTTCTGCCATGGGACCCAATGGGCGCTTTGGCTTTCGACTTCTAATAGATTTGAATAGATATGAAAAACGAGTTGCATCGCGCAACTCGTTTTTTGGTATGTATGGAAATTTAGTGTTGAACAAAACATTGAATCACGTCTTTGGCATTCAAATGCGTCAGCAAAATAGCGATGTTTTGATCTGCTTTTGGCAGCCAGTCATTATTGAGGTCCACGTATTTTTCCGTCCGCGTCCCCCCTTCTTCTGGCATGATCAAGGCATCCACCGTTCTCGCAGCCCGTTTTCTAAACAAGAAGTGATAAACCAGCTGTTTGTGATTCAAGTCTGTCAGCTTAGTGTAATCACATGAAAAAAGCTTTTCCCCGCAATCCTGAGGAAAAGCTTTTTCTCTGTCTTTTACCAAATGTACAAAAGTCTGGTCCGGTCCAGATTGCTCAAATTAAACTGGTGAACGTGTGATTCCTTGTTCTCCGGAAATTCTCTGATAAAGTCAGCCACGTTGTAAAGGCCGGTCGTGTAAGACCAGGTACCCTTGACCTTCTTGACCGGGTCCAGCATCTCGTTTCTGATCGGGTAAGCCGAAATCAAAAAGTGCTTGTGGTGGAACTTAAAGGCAAAGTATGGCAGACGGAACTCGTCGACCACCTCTTCCTTGGTCTTGCCGATAGTCACCACATTCCGGTAAGTCCCGTACTTTTCACTGAACTTGTCGTTGAAAGAGAAGTAGAAGTTGGAAATGTGCACATAGGGAAAATCTTCTTCTGCCACCTCGTCAGGTATGGCAATCACATGTGAATAATGGTCCAGATTGTTCTCTCTCTGCTGCAGGGCCTGCTCCATCTGGTTGGGCTTGATCCCCTTAACCCACTTGGGCAGCTCCGGGTGAGCCTTGTAAGAATTGTACATCATCGTGATGACTTCCGGCTTCACCCAGTCGTATTGCCTCCGGATCTGGTTTCTCTTCAACAAACCTTCCAGGGTCTGGTTCTGCATAAAATCAACCACATAGCACTCGTAATGGTACTTCTCGCACCACTTCTTGTAGTGATCGATCTCGCTGGCGACAATGTGGGTCCCGTCCACGATGACGGTTTCCCCATAGGACATCTTGTGCTCAACCAAGTTGTCCTTCATCCGCTTGGTCTGTTCCGTGACATGCCGCGGAATAACCTGGTGCAGAACGTCAGTCTTCTGGTCATAGTAAACGGTCAGGTTCGCCAAAAGCAGGCGGATCGCATCCCCGCTGATCGAGTACGGCAATAATTGGTGCCGGGCGATAAATGAAGACTTGCCAGAGCCGGGCGCGCCTCTCAAAAGAAATAATTTGCGCATACTTAGCTCCATTTTAAAAAATCTATTTTGAATATATCAGAATAGATTTTACCATAGATTGCCCCCGACATTTAGCAATCTGGCAAAAGTCGCCATAAATTTTTGCTTTTTTCTAATTTTTCGCCTGCATGTCCTTGCCGTCCCGGTCACCCACGATAAAGACCAGTTCCGTCTCGCAGACCACGTCCCCGTTCACTTTAGCCACTGCCGCCACGCTCCCCGTCTTAGCCCGGACCTTGAGCATCTTCACTTCCATTTCCAAAACATCCCCCGGCCGGACTATCCTTCTGAACTTGGCCTGGTGGATCGCCCCAAGATAAGCAGTCTTCTTGTAAAAGGCCGGTGACTTCAAGATCAAAATCGAGGCCACCTGGGCCAAAGTTTCAATGATCAAGACCCCGGGCATCACCGGATTTCCCGGAAAATGCCCCTGGAAAAAGGATTCGTTGATCGTCACGTTCTTCACGGCCTTGATCCTTTTGTCGGCTTCCAGTTCTTCCACCCGGTCGATATAGCAGATCGGGTAGCGGTTGGGAATCAAATCCATCACTTCTTGGGCTGTCATTACTGGCATCTTATCACACTTTCCGTTTATAAAATCTTTTTACGAGTTTTCTAATAACTTGTGACTAAGTGTAGCACTCCCAAAAACGATGTCAAGTTTTTCAATAACCGCTGATTTTTTCCGAGTAAAAAAAGAAGAAAAAAGGCAAAATAAAAATAGGCCTCAGCCTGTTTTTGTCATCAGTTGGTGATCATCTTATCCACAATGTTCAGCTCCTGGTCAAAGTCATAGACAATGGCCTGGGCGTTAGGCACCTCCAGCTTTAGGATATCCACATTGTTGATATCTTCTAAATATTTGATCAGCGCCCGCAGGCTGGAGCCATGGGCCACGATCAGCTGGTCTTCCCCAGCCACTAAGCGGCTGGCCACCTCGTCTTCATAGTAAGGCAACAAACGCAGCTGGGTCTGGTGCAGGCTCTCCGCTCTTGGCAAAAGCTGAGGGTCCACTCCCCAATAGCGGCGGTCGATAGTTGGTGACCCTTGCGCTGGCGGGACCGCGTCACAGCCCCGCCGCCACTCTAAAACCTGCTCTTTGCCGAAAATCTTCCTGGACACGTCCTTGTCCAGGCCCCGCAGGGCCCCGTAGTGGCGTTCATTCAGCCGCCAGGTCTTTGCAACATGCAGGTATAAAAAGCCCGCGGCTTCGGCCACGATGTTCGCCGTCTCAATTGCCCTCGACAAAAGGGAAGTGTGAATCATAGTCGGGTGAAAGTCCCCGACTTCTTTTAATTTCTCCCCTGCTGCCCAGGCCTGCCGCCGGCCCTTATCCGTTAAGGGGACGTCATTCCAGCCTGTATATACGTTTGCCGCATTGGCCTGGCTTTCCCCATGCCTCAGCAGTGCCAACTTTGCCATAATTTTTTCCTTCTAGAGCCAAAAAGACCAAATTCCAGTAATGATGAAGAGGATGCCTAAGAGGACAAAAGCCTTGCCCCCCAGCCCCTTCTGCTTGACGCCCTGCTTCTGCCGGCGCAGGCGCGTGATGCCGGTAATTAAATCCCAGATGCCGAAAAACAAGATGGCATAAGGAACCCACCAGGAATGAACGTTCATATTAGCCCCACAACTTTACCGCGTAATAAATGGCCACGGCCAGGATGCCGGCCCCGGTCAGGTAGTAGGACTTGGCTGGCAGGCTGTCCTTCTTCCCCATCCGCTGGCTGTTATAGCCCCGGGCAAATTCCCACAGGCCCACGATCACCAGCAAAACGAGCGTAAAAGTGTGCGTATCCCACTTCATCTTCTAGTCTGTCTCCTTGTTCATAAATCTTCAGCCTTGCAGTTGTAGTCGACAATTTCAAAATTGCCTTCTTCGTCCAAAATCCCCTGGCTGACGCTGCCGTTGTCCGGGAAGGTGATGTCATGCAGGCCGTCGTTTTCCTTCCAGTACTTGATCCCCAGGGTCTTGATAAAGTCCCCGTGGGAAACCAGCAAGACCCGGCCTTCGCCGCTGGTCTCTTTTCTCAAGACCTTGATGGCCCGGCACATTCTGGTTTCCAGTTCTTCCGTGCTTTCGGCCAAATGGAGGGGGTCAGCCTTTTTAGTGACTTCCCGGAACTTGTAGATGCCGATGGTATCGATAATCTTCTTCACGTCAGTGGTTGCTGGAATGCCCGCGGCTTTAGAAACACCGAGCCAGATATCATCGATGCTGCCGCCTTCAAAAGAACCGTAAAAAACTTCTCTGAATTCCGGCAGTTTTTTGATCTTGCCAATCTTAGACACCTGGTTGGCGTCCTTCATCAAGTGGACGGTGTCAATCGCCCGCTTCAAGTCTGACGAGTACATGTTGTCAAAATGAATTTGAGAGAGGGCGTCAGCCGTCTTCTTTAAATCGTCAATTCCTTTGATGGTCAAGGGGGTATCGCACCAACCCTGCACCTTGTTCAGGCGGTTAAAAAGCGTTTCCCCATGTCTGACCAGATAAACTTCAGTTTTCATGCCCGTCCTCCCTAAATCAATCAATAACTATTCTAACTTACTTTGCCTGGCTTGGGTAGTTAACCCCAGGCCCGCCAGCCCAGGTAAATGGCCAAAAGGACCGAGAAGCAAGCCGTGATCCATCTGACCCAGGCAGGCTTTAGATATTTAATCATTTTTTGCCCGAAATAGCCACCAATAAAGAGGCCAATCGCCAAAGGAAAAGCTACTGGACAGTTGACCCCGCCCTTAAAGGCAAATAGCGCCAGAGCCACCAGGTTGGCTAAAGAACCGATCACACTCTTAATGGCATTGATGACGACAAAAGAAGAGTCACTTAAAGCCGTCAAAAAGATCAAGGTCAAAACGCCCGACGCCGCCCCAAAGTAGCCGGCATAGATCCCGGCCACGAACAAGCCAAAATAAGCCCCGATTCTTCCTAGCTTGGTCGCCTGCTTTGGCTGCTTTTGCCGGCCGCTGTAAAGGAGCAGGCCAGCTGAAAAAAGGACGAAGAAGGGCACTAATTTTTGAAAGTTTTTTTCCCGGGAACTTGACTAAAAGCCAGCCCACAATTAAGGCCCCGGTCAATTGGAAGAAGGCATAGCGCCAAAGCTCCCCCCAGTTCCCCCGCATCTCCTTTAAGTAGGAGGACAAGGAACCAAAACCGGTCGTCACCAGGGCCGCCGTATTAGTCATATTGGCGCTGACCGGGCTGAGGCCGAAGAGGAGCAGGCCCGGGTAAGAGACAAGCGACGCCATGCTGGCCACCGCCGCCACGATGCCGGCCAGGACGCCTAAGATAATGAGGTAAATGAACTGCATGTTTGCTCTTTTTTGTTTTTTCACTGATTCGCTTATTTTTCCATTTTCACTGATTCGCTTATTTTTCCAAAGGAAAAAGCCGTATCCATTTTAAACGATCACAGCCGGCAATTGCAAATTGATGAAAATAGCCCGCTTTCAGCGACAAGCTGACCGCAATTTTGTACAATAGAAGGTAGCAAATCATTAACAAAAAAATTAAAAGCGCGAACAAGTAATTTTTAGAAAAAAGGAGAAGAAAACTATGCCAACTGCAGCAATTGTTTTTTCAGATGGATGTGAAGAAATCGAAGGCTTAAGCCAGGTCGACGTCCTGCGCCGGCTGGGCATCCCTTGCGATATGGTGGCTCTGGACAACTTGACCATCACTGGCGGACACGACATCCGCTTTACCTGCGACAAGTTAGTGGACGAATCCCTACTTGACTACGACTTGGTCGCCTTCCCGGGCGGGGCCCCGAACGCCAAGCACCTAAGAGCAAGCGAGAAGCTGGCCGGGCTGATGAAGCAGCGCTTCGCGGCCGGCAAGTGGAACGCCGCCATGTGCGCCTCCCCGATCGCCTTGTCTAAGTACGGCTTTTTAAAAGAAGCCAAGTGGACCAGCCACCCGGACTTTAAAGAACAAGTTGCCAGTGAAAACCCGGCCAGCACCTACGTCGACACCCCAGCTGTCATTGACGAGGACCACAAGCTGGTCACCAGCCGGGGGCCGGCCACTTCCTGGGCTTTTGCCTATGCCCTGGCCCAAGTTTTAGGCGTGGACACCAGCCAGCTGGAAGACGCCATGCAATACAGCTACTTAAGAGACCACATCAACGAGGCTTAAGATGACTGAAGAAACCTTAGTCAGAAAGGCAGAAAGCCGGGACCTAGAGGACATTGTCGCCATCATCAAAGACGCCAAGGCCCTTTTGAAGGCGCAAAACTCCAGCCAGTGGCAAGAAGGCTACCCTAACCGGGCCAGCATTGAAGAAGACCTGGACAACCGCCAGGGCTGGGTTTTACTTAAAGATGGGCAAGTCGCCGCATATATGGCCGCGACCGACTTCGACCCCAACTATGAAGTCCCGATTTGGGCGGGAAGTGCTCCCTACTGGGCTCTGCACCGCTTCGCCATTAAGAAGGATTTCCGCGGACAGGGGCTCATCCAGCTTTTGCTGAAAAAAGTAATTGCTTTTGGCCAAGAAAATGGAATTAAGAGCTTCCGCCTGGATACGGGCAAGCAGAACCAGGCCGTCCAGCACCTGGCTGACAAATTGGGCTTTGTCTACCGGGGCATCATTACGGTGACCAACGACTCGGTCGACCCGGAGCGGCGGGCCTATGAACTGCTTTTTGACAAGTAGGAAAAATATAAAGAGAAAAAAGAAAAATAAAGAAACAGGAAAATAAACAAGGAGGAAAAAATGGCTGAACAATTGGCAATTGCAGACCTGCAGGTCGACATTAAGCAGATTCCCTTAAAGCAGCCCTTCGTCACGGCCCTGCACCGGGTTGACGCCGTCAACGCCGTCCGGGTGACGGTCCGACTGGCTAACGGAGTAACGGGTGTCGGTACCTGCACCCCTAATGAAAAAGTGACCGGGGACAGCTTGTCCAGCGCCCGGGCCGTTATTGAAGAAACGATCAAGCCTCTCGTCTTGGGCAAGAACCTGACCGACTGGAAGGAACTTTTAAACACGGTCAAGACTTCCATCGTCCACAATGCCCCGGCCAAGGCCGCGGTCGAAATCGCCCTCTACAATACCCGGGCCAACCTTTTTGGCCTCACCCTCTCCCAACTCTTAGGCGGCAAGGGCGGCAGCGTGGAGACCGACTACACCATCAGCATCGGCAAGGCTGAGCAAATGATCGCTGACGCCCAGAAGATGGTCGATCAGGGCTTCAAGACCCTTAAACTGAAATTGGGGGCTGGCCATTTAAAGCGGGACATCAAGCTGGTCGAAGACCTGGCCTACGCGGCTGGTCCTATGGTTCACCTGCGCTTAGACATGAACCAGGCCTGTGATGTCCGGCAGACCATGCAGGCGGCAGAATACTGGCACAAGCAGGGCCTTTTGATCGACTTTATCGAGCAGCCGGTCCCGGCCTGGGACCTGGATTCCATGGCTTACTTGACCCGCCACTCCCCTTACCCGATCATGGCGGATGAATCCGTGGAAAGCTACGAGGATGCCCAAAGAGTTTTGGCCAAAAATGCCTGCGACTACATCAACATCAAGCTGATGAAGACGGGCGGCTTGTCTGAAGCCCAGAAGATCAACGACTTAGCCGAAAGCCGGGGGGTGCCAACCATGGTCGGCAGCATGATTGAGTCAATTGAGTCTTTGGCGGCAGCCTGCGCCTTCTACCGGGCCAACCCGAATACGATTTTTGCCGACCTGGACGCCATCTTCATGGTTGACCAGGACCCGGATTTGAATAGTTACGCCGAATGCGTCGGCGATAATATCGTGGTGAGATAAAATGCTGGATTTTAAGAAGATTGCTGACATCCTGGCTCCCCTGCCAGGGAAAACAGCCCTTTTGATCAAAGACAAGACCGGCGTCCTCTACGCCAGCCCCTTAGCCGGGGAAGAATTCAAGTCAGCCAGCCTGATCAAGCTCCTGCTACTACCAGGCCCACCCGCAGGACTTAAGCCAGATGGTCCATGTCCCGGAAGACAAGATCGTTGAGGGCGGGATTCTCTGCCACCTATTTTATCGGCTTTGCAAAGATGGCCGCCTGGTTTGAAGCAGAATTTGCCCATCTTCACCTGGGCCGGTACTTGATGGAAGTGACTGACCGGGAAATAAGGTATATTCTTTTTTGGACGGCTAGCCATTTTTATCACTATTGTGATAAAATTAAAGCAGATTTATCAAAAGTAGGGATATAAATGGACATTACCAATTTTTTTCACGGTTGAGACTTCTGAGCTCTCCAAATCTGACCGGAAAATCATGAAGAGAATGACCTCCGACTTGACCAATGTTGAGTCGCTGACCATCAACCACCTGGCTGAAGAAGCGGGAACTTCCCTGGCTTCCGTTCAGCGCTTCTGCCAGAAGATGGGCTATTCCGGCTTTAAAGAATTCAAGTTCCAGCTGCTGACCTACATCAAGAAGCAAGAGAGCCAGGAGGCGGCGGTTTCAAGCAGCGAATACCTGGATGACTACCATGACGCTATCAACCGGGTCTGGACAGCAAATGAAAAGGACGCGGAAGAATTGGCGGAAGTCCTGGCGACTAGCTCGACCAACTTTATTTTCGGGATCTATTATTCTGAACTGCCGGCCAGGCTGCTCAGCATGGGGATGCGGGATTTAGGCAAGTCGACCTACTTTGGGGACAACCTGGCAGCTGGCGAGCACCTCTTCCCGCTAAGCGATGAGAACTCCACAGCGGTCTTTTATTCAGTTTCAGGGATTTCCAAGCTTTTTGGCTCATCGCCCTTGCCCAAGTCGATTTCCCACTTCAAGCACAGCTACCTGGTCACCATGAACCCGGACACGCCTTTGAAGAAGTACTTTAAGAAGGTCATCGTCCTGCCGGGCAAGAACCTGGCCCAGGGCCTGCCGGTCGACCCCCAGTCGATCCCGGTGGTCTTTACTGAAAGAGTGATTGATATCGCGGCAACTAAATACCGCCGCTAAAGCTGCCGGAAGGCGGCTTCTTTGCTTGGCGTCTTGTTTGCCAGGGCTGGCGAAGATTGATAGAATTTTATTTAGGTGGTTAGTTACTTTTTGTAACTAATTTCAAAAAACAGCAGACATTGAAAATAAACATTAGGAGAAAAAGATGGACTTAAACTTTAAAGAACTGGCGGAAGCCAAGAAGGACGCGATCTTAAAAGACTTAGAGGAATTGATCGCCATTGACTCTTCCGAAGACCTGGAAAACGCCACGGAAGAATACCCAGTTGGCAAGGGCCCGGTTGACGCCATGACCAAGTTCCTCAGCTTTGCCAAGCGGGACGGCTTTGACACGGAAAACTTCGCCAACTACGCCGGCCGGGTCAACTTCGGTGCAGGCGACAAGCGCCTGGGCATCATCGGCCACATGGACGTAGTGCCAGCTGGTGAAGGCTGGACCCGAGACCCCTTCAAGATGGAAATCGACGAAGAAGGCCGGATCTACGGCCGGGGCAGCGCCGACGACAAGGGGCCAAGCTTAGCTGCCTACTACGGGATGCTTTTGCTCAAGGAAGCTGGCTTTAAGCCAAAGAAGAAGATCGACTTCGTCTTAGGGACCAACGAAGAAACCAACTGGGTCGGGATCGACTACTACTTGAAGCACGAACCGACTCCAGACATCGTCTTCTCACCAGACGCTGAATACCCGATCATCAATGGTGAACAAGGGATCTTCACCCTGGAATTCAGCTTCAAGAACGATGATACTAAGGGCGACTATGTTTTAGACAAGTTCAAGGCCGGGATTGCCACTAACGTGACTCCGCAGGTTACCCGGGCTACTATTTCCGGACCTGACCTGGAAGCTGTTAAATTGGCTTACGAAAGCTTTTTGGCAGACAAGGAATTGGACGGATCATTTGAAATTAATGACGAAAGCGCCGATATCGTCTTGATCGGCCAAGGGGCCCACGCTTCAGCTCCGCAAGTCGGCAAGAACTCAGCAACCTTCCTGGCCCTCTTCCTGGACCAATACGCTTTTGCCGGCCGGGACAAGAACTTCCTCCACTTCCTGGCTGAAGTGGAACACGAAGACTTCTACGGCAAGAAGCTGGGCATCTTCCACCACGATGATCTGATGGGCGATCTGGCCAGCAGCCCGTCCATGTTCGACTACGAACACGCCGGCAAGGCCAGCCTCTTGAACAATGTCCGCTACCCGCAAGGGACTGACCCGGACACCATGATCAAGCAGGTTATGGACAAGTTCAGCGGCATCCTGGATGTCACTTACAACGGCTTTGAAGAACCGCACTACGTGCCAGGCAGCGACCCAATGGTGCAGACTTTGCTCAAGGTTTACGAAAAGCAGACCGGCAAGCCGGGCCACGAAGTCGTAATCGGCGGCGGGACTTACGGCCGCCTCTTTGAACGCGGGGTTGCCTTCGGGGCCCAGCCGGAAAACGGCCCAATGGTTATGCACGCCGCCAACGAATTCATGATGCTAGACGACTTGATCCTGTCCATCGCTATCTACGCTGAAGCCATCTACGAATTGACCAAGGACGAAGAGCTGTAAGAAAAAGCCGAAAAGGTAATTACTCAGGGTGACTTAATTTTCTTTAGTCTAACCCGGTCAAAACAAAACATTTTTAGCTTTAGCAGGTTGTCAAATTAATTTTATTTTGACAGCCTGCTTTTTTTGCCCTTTCTTAAAGGATTTTATCTTTATGCTTTAGTAGGAAGGACTTGCTTTATGGAAGACCGCAGCATTGAAAACACGGACGGGACTATCCGCTCCTTGTCCAACCGGCACGTGCAGATGATTGCCATTGGCTGCACGATCGGTACTGGCCTCTTCTTGGGGGCCGGGACCACGATTTCCGCCACTGGTCCCTCAGTTATTTTTATCTACGCCATCATGGGCCTCTTTTTCTTCTTCCTCTTGCGGGCCTTAGGAGAGATGTTATATTTTGACTCCAACAGCCACACCTTCGTCTCCTTCATCACCAGATACCTGGGTGAGGCGGCTGGCCGCTTTGCCGGCTGGACCTACTGGATCGGCATCCTCTTTGCCTGCATGGCGGAACTGACGGCCGTTTCAACCTATGTCTAGTACTGGCTGCCCGGCCTGCCCGCCTGGCTGATTGAAGTTAGCGTCTTAGGCCTCTTGACCCTGCTCAACTTGACGGCGGCCAAGCTTTTTGGCGAAACTGAATTCTGGTTTGCCATGATCAAGATCATCGCCATCATCTCCCTGGTCGTAACCGGGATCATCATGGTTGCCGCGAATGCTAAAACTCCGGTTGGTCACGCTAGCCTCAGCAACTTCACCGGCATCTTCTCCCTTTTGCCAAAAGGCAAGTATGCCTTCTTCACCGCTTTCCCGATGGTCTTCTTCTCCTTTGCAGGGATTGAATTCGTGACGATTACCATTGGCGAGGCCAAGAACCCGAAGAAGGTCATCAAGAAGGCCGTCAACGAAACCCTGCTCCGGATCCTTCTTTTCTACATCGCTACTTTAGCCGTAATCATGTGCGTCATCCCTTGGGGAAAAATTACCAGCGGGACAAGTCCCTTCGTCCAGTTCTTCAAGATCGCTGGCTTTAATGCTGTTGCTTCAGTCTTCAACTTCGTCGTATTGACCGCCGCGGCTTCTTCTCTTAACTACGGGATCTTTTCAGCTGGCCGCCACTTCTTCCAATTGGCTGAAGAAGCGCCTAAGGATTCCTTTTTGAAAAAGCACTTCGCCAAGATTTCAGCAAATGGCGTGCCAGCCGCGGGGATCGTGATCTCCGTTGCCTTAATGCTAATCGCGCCAATCATGAGCTTCTCCAGCACGGCTATTGAAGTTTTTGGCACGGTGGCCGGGGCAACGAGTGACATGTACATCCTGGTTTATGTTCTGGCCCTGCTGGCCCACCGCAAGTACCGGGAATCCAGCGATTTCATAGTCGCCGGCTTCAAGATGCCTTTTTACAAGCTCTCCAGTCCTTTGACCATCGCCTTCTTCCTGATCATCTTCTTCAGCCTCTTCTTTATTCCGGCTGATGTCTTCGGGGCAAGTCTGGCCGCCAGCTGGGCCCTCCTCTTTGGGGCTGGTGCTGGCTCAGCGAAAAGCATTGAAGTGCCCATCCGAGTTTAAGCAATTAAAGTTAAACAAGCTAAAAAGCGTTGACAGATTTTTCTGTCAACGCCTTTTTTATGCTTCAATATTTGTCCGCACCGAAGTAATATTGCTGGTAATATTTCAGGACATCTGCGGAAACTTGGGAATTGGTGACCAGTTCATCGATGTCATACAGACTGTAAAACTAGTAGAAGTCGCGGCGGATCGTCATTTCTGAAACCTGCAGGCTCTTGGCTAAATCCGCGACTGATATGTAATTTTGCTCAGTAACCATATTCATAACTTGGTCAAGCCGTTCTCTTTTTAGCATTTTGGTCAGCCATCTCTTTCTTGCTTTTCCATGCTTAACTGTGTTCGCTTTAAAACACAATTTAACATCTGCCATGGCTTTTTTCAATGGATCCATAACGCTTATTTTTAGCAGAAACTCACGTAAAAAAGCCGGTACAGGAAACCTGTACTGGCTTTCTTAGTCTAAATTGACTAGCATGATCACTTTTAAAAAACTATCCTAATAAACAGTCCAGCTTTTCTTCACTCATCAAGTGATTTTCCAGGACCAGTTCCCGGACGCTGCGCTTTTCCTTAAGGGCCCGCTTGGCGATCTTAGCTGAGAGCTGGTAGCCCAGGTATGGGCAAAGAACCGTGGCGATGCCGACGCTACCTTCCTTGAGCTGCTTGCAGCGGCCCTTGTTGGCGGTGATGCCCGTAATGCAGTTTTCTACCAAGGTATCGACTGCCCCGGTCAAAGCCGTAAAGGATTCGAAAAGCTGATAGAAGACAACTGGTTCAAAAGCGTTCAGTTCCAGTTGCCCGGCTTCTGCCGCCATGGTGATGGTGGTGTCGTGGCCGCAGACCAGGAAGGCCGCCTGGCTGACGACTTCCGGGATAACCGGGTTGACCTTGCCCGGCATGATGGAAGACCCGTTTTGCTTGGCTGGCAGGTTGATTTCGGCAAAACCGCAACGCGGGCCGGAAGACAAAAGACGGAGGTCGTTGGACATCTTGGACAGGCTGATGGCGCAAGCCTTAAGGGCACCAGACACTTCCACGAAGGAGTCCAGGTTTCCCGTAGCGTCAAAGAGGTCGTCGGCCTGCTTGAGCTCAAAGCCAAAGAGCTTGCTCAACTGCCCGGCGATGTGGTCTTCGTAATACTGGGAAGCGTTAATCCCAGTCCCGATCGCCGTTGCCCCTAGGTTGATCTCGTGCATTTCCATGGTGGCTTTTTCCAAACGCTTCTTTAAGCGGCTGACCATTGAAGCGTAGCCGGCAAAGCTGTCACCCAAGGTCATCGGCACGGCGTCTTGCAGCTGGGTCCGGCCCATCTTGATCACGTCAGAGAATTCATCTGCCTTGATCCGCAGAGAAGCTTCCAACTTGTCCAGGCTAGCGACCAGCTTTTCACTGAGCAGGATGGTGGTCATCTTGCCAGCCGTTGGAATGGTGTCGTTGGTAGACTGGGCCATGTTGACCTGGTCGTTAGGGTGAACCAGGTCGTAAGTCCCCCGCTTGCCGCCTAAAAGCTCGTTTGCCCGGTTAGCAATAACCTCGTTCATGTTCATGTTAGCGCTAGTCCCGGCCCCGCCTTGGATTGGATCGACGATGAAATCTGCCGCGAATTTGCCGGCAATCACTTCATCGCAAGCAGTTTTAATCGCGTCAGCCTGCGGCTTAGTGAGTAGACCAATTTTAAAGTTTACGCTGGCAGCTGCCTTTTTGATCAAGGCCAGGTTGCTCAGAAAAACTGGACTCATCTTTAAGTGCGTAATTTCGAAATTCCGGCTGGCCCGTTCAGCCTGGACCCCGTAGTAGGCGGCTGTCGGGACTTCAAGACTGCCAATTGAATCTGCTTCTAATCTGCTTGCTGCTTTCATCTGTTTTTGCCTCGTTTTTTTACTTCTTTTTTTGATTTCTTTCTATGGCCAATACTATAGTTGAAAATTAGACCAATGTTAAGACCATTCCCCCTTTTCTTTGCCATCTTTTTAGAAAAGGCTTACAAAAATTAGATTATTAACTTCTTTTGAGGAGAAAATTTAACATGCAAAGCTGAAAAAATTAGACCAGTTATTGGCCAAAAGATATAAAACAGATCATGCTCCAATAAAACAGCACGAAAAAAGAGGCTGATTGCTTAGCCTCTTTACACATTATTCTTTTGTATATTCTTCCCTAAGCCTTAAAGCTGCCCCAGTAGGCGCCGCCGTAGGCCCACTTAAGGTGGGCTGGCACTCCGATATAGTGCAGGGAGTAAGTGCCGTTAGTGTAGGAAACGTTAAAGCCGTAGTAGTCCCAGTCGCCGTCATACTTGCCGCCCTGGGTATTCATGAGGTCCCCGGCGTGCTCCCATTCCGTGTACTGGCTCAGCTGCTTGACCTTGCTCTGGTTAGCATAGCGGTAGCCAAACATCATGGTCTTCAAGCCAAAGTAGATGTCCTTCTTCATAGCCGTCATGGTCACCTGACTGCCGTCCTTAAAGCCGGCCATGTCTTCGACATAGTTGTAGTTGCTTGGCAATTTCAAGCCGACCCGGTTAGTGGCCCGGACAATCCCTGGCACATAGTGGCCAGTAGCGATGGTCTTCTTGTTTGCCACGTATTCCTTGGAAATTTCCAAGGCCAGCTTCTGGGTCCCCTTGCTGTACTTCCACTTCTTCAGGCCCAGCTTGGCCCGGGCCTGGTTGATCAAGCGGAGGGAGTAGGTTGCCAGAGTCTTGGACTGACTGGTATTCAAGTGGCCATTGGTCAATTTAACAATGGTCTTGTTGTCCTTGCTGCTCTCTGACCAGGAACTTTGGTCAAAAGTATTGGCCGGCATCCCCTTAACGTTGATCTTCCGCCACTTCTTCAGCCAAGCCGCGTTCTTCTTGTTTTTCAGCCACTTCTTCTGCTGGCTCTTAGACAAGTTGGAGTACCAGTAGGCCTTCTTCATGTTGGCCTTAGTATAGCCCTTAGGCAGGGTAAAAACCGCCTGCCGGCTGCTGGCTGCAACTGGTCTTACCTGGCTGGCCGCGAAAGCCGTCCCGATTGCCAAAGCAGCTGCCACGCTTACGAAAAATTTCTTCATCTTTGAACCTCTGTTTCTCAATTCAAATCCTATCCCATCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGGACATGAGCACTGTTCTCTTTGACAGCTGGGCATGCGACTTTAGCCAAACGAATAAGGCTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGCTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGCTTTGAACGTAGGCCAGCCGTTGCGGGTACTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTTGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCCAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTATACCTTGTTTAGCAGCTCTTTTCTCCACAAAAAGGCAAAGAAAAAGACGGTTCCCCGAAAGGAACCATCTTTGACCAGCAGCTGATTAGTACCAGCCGTTAGCTTGCCAGAAGGCCTTGGCTGCAGTCCATGAACCATACCGGCTTTGAACGTAGCTGTTGGCAACCTTTTCCTGGTTGGCGGCAGAAGTGTCACCATTCAAGTAGCTCAAGCTCAATTGGTACTTGCCGTAGTAGTTACCGTTTGAGGCAGTGTATGAGCCGCCGCTTTCCTTGCTTGCGATCCAAGCCTTAGCTGCTTCTTCAGATGATGATGAAGAAGTTGAAGTTGAGCTGGAAGTGCTTGCGGAAGCAGTTGAAGTTGAAGCAGAAGTGCTTGAACTGGTCGTGCTTGCGCTGTAGCTGGAAGTGTTGGCTGCGCCAGTATTCGCGCTGTAGGTGTAGTTATAGTTTGAGCCGTAGCCGTAGTTATTTGCTGATGAGCTGTAGCTCGTAGTGTAGCCAGTGCCAGTTGTGCTGTTAGCAGTGTTAGTGCTGGTAGTATTCGCGTTGTAAGTGCTGTTAGCAGTGTTAGTGCTGGTAGTATTCGCGTTGTAAGTGCTGTTAGCAGTGTTAGTGCTGGTAGTATTCGCGTTGTAAGTGCTGTTTGAAGTAGTTGATGCTTCAGTGGTGTACTTGGCCATGATCCATTGGCGCTTGCCGATCTTGTACCACTTTTCACCTGAAGCGTCGCGGGCGGTCTTAACTACCTTCCATGAGCTGCCGTCCTTAACGGAACCGGTAACCGTAGCAGTGTAGTAATTTGACCAAGTTGCAATTGATTGTCCATCAATGTAGTCAACCGTTACGCTGTCACCGATGGTTGCCGCGTCTGCTTGACCGTTCGTGCCTAAGCCAATCGCTGCCACGCCAGTCAAAGCCAAGCCTGCAGCAAATACTGATTTAAGTACGTTAGATTTGATGTTCAAAAAAATTCTCCTTTGCTTGTCGCAAGCTCTCGTCTGCCAAGTTACTTCTCCTTTGGCAAATTCCTTCTTGCTACTCTTATATTATTGACAGTCTATATGTTAACAGGGCCAAATTTCAAAATCATAGCAAAAAAGTAACGATCCAGTTAAGAATAGATTACAGGGAAGACATTTTCTGTAACATTTGTAATATTTTACCCGGCCTTAACTGCCTTGGAATATTTGCCCAAAAGCAAAAAAGACACCATGCACACGCATGATGTCTAGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATTGGGTTTATTTAACTAGCGCCGAAGCGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATGGGTTTATTTAACTAGCGCCGAAGCGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATGGGTTTATTTAACTAGCGCCGAAGCGCGATGGGTCGTCAGGGGATCGAACCCTGGACACCCGGATTAAGAGTCCGGTGCTCTGCCAGCTGAGCTAACGACCCAAATGGGCTGCGGCTGACTTTCGTCAACCGACATTTATCTATTATACAGAAATGCGACAGGAATGCAAGCCTTTTGGCAAGATTTTTGCTCAAAAACTTCCTTTTCCTGTCCAGCCCGTCCTTTTCTTCCTTATTTCTGCCAAAAAGCACCCCGCGGGGCAACTTCCAGCCGGCGGATTTCATCCTTTAAGCCCGCCTCTCTGACCGCGTCGACAAAGTCGCTGATACGCTGGGGGTCAACCAGGCTCATAATGGTCGGGCCGGCTCCTGACAGGTAGGTCGCTACCGCCCCATGCTCATGGCCGACATTGCGGATGACCTCCAGTTCCGGCACCAATTTGCTTCTGTAGCGCTCATGGAAGAGGTCAGCCTCCATTAACTCTCCGGCCTTTTCATAATCCTGGGCAAAAAGGGCCGCTACCGCCGTGTTGGCCACGGCACTGGCCTGAACCGCCTCTTTAAAGGAAAGCTGCTTGGGCAAAGCGGCCCGGGCATCGCTGGTCTTTAAGTTATAGGCCGGGATGTAGGCGATCATGGCAAAAGGCGGTACCGGGGCCTTGACGGCTGTAAAGTGGCCGTTGACCTTGCAGCCGACAACCAGGCTGCCCAGAATGGTCGGGGCTACATTGTCCGGGTGCCCTTCCAGTTGGGCCGCGATTTCGATTTTTTCATGGGGAGCCAGGTTGAGTTGACCCAATTGGTCGGCCAGTTCAATCCCGCCCACGATGGCGCTGGAACTGGAGCCCAGGCCATGAGCCAGGAGGATGTCTGATTCCACCCGCAAGTGCTGGGGGGTTAAATCCGGCTTGACGCTTAAAGCCGCCTGGACGATCATATTGTCTTTCCCGCTTGGCAGGTCCCCTAAGTTATGGTCTACCTGCCAGTGGTCGCTCTCCCCGATTACTTCAATGGTCAGGTACAAGGAAATGGCCACCCCGATGGAGTCGAAACCCGGGCCCAGGTTGGCGCTGGATGCTGGAACTTTGATTTTCACGCTATTTCACCTCAATAATTGGCAATCGCTAGTTTTCTTAATCATTTTATCATGTTTTCTCTTTTAGAAAAATGATTTCCCCGTTATAATTAGCTATAAAGGAAAAAATCTTTTTCAACCATCGTTACTAGTTTACAGATCACGCATCTGACTTTTAGGGAGGATTTATGATTTACCGCAGTACCCGCAGCCAGGGGCAGGAAGTTACCACTGCCCAGGCAATCGTCCAAGGCCTGGCCCCAGATGGCGGCCTTTTCGTGCCCAAAGAATTCCCGGCTCCATTTTCAGCCGCTGCTTTAAAGGAAATTTTTGCCCTGCCTTACCAGGATATGGCTAAAAAGATTCTGGCTTTGTTCTTAACCGACTACAGTGCAGAGCAGCTAGCAGAGATTGTTAAAGGCGCCTACGGCCAGCAATGGGATGACGACCGGATCGCCCCGCTGACTGATAAGAAGGCCGGCAATTACTACTTGGAGCTCTTCCACGGGCCAACCCTGGCCTTTAAGGACGTGGCCTTGCAGTGCCTGCCCCGCTTGATGAAGACGGCCTTGGAAAACTCAGACGAACACAGGGGGATCGTGATTTTGACAGCGACTTCCGGGGACACCGGGACCGCCGCCATGCGGGGCTTCCAGTCCTTAGCCAAGACCCGGGTCATCGTCTTTTACCCTTACCAAGGGGTGGCCCCGATCCAGCTTAAGCAGATGCTGAGCGAAAACAGCGACAACACCGTGGCTGTAGCGGTTGAGGGCAACTTTGACCAGGCCCAGACCAGGGTCAAGCAGATTTTTAACGACCCGGACATGAACAGTTTGCTGGCTGACCACGATTTGACCTTCTCCAGCGCCAACTCCATGAATGTTGGCCGCCTCTTGCCCCAGGTCGTCTACTACTTCGCCGCCTACAAGCAGCTGCTGGACCATGAAGCCATTGCCTTTGGCGATCCCGTCAACTTCTCCGTGCCAACTGGCAATTTCGGCGACATTCTGGCCGGCCATTATGCTCAAAAACTGGGCCTGCCAGTCGGCCGCCTGATCTGCGCTTCCAACAAGAACAATGTCTTAACCGACTTTTTCAAGACGGGCAAGTATGACAAGAAGCGGGACTTCTACGTGACCAACTCCCCATCCATGGACATCCTGGTTTCCAGCAACCTGGAGCGTCTGCTCTTTGACCTCTGCCAGAACCCGGACACGGTCAAGTCTTTGATGGAGCGGCTGAATACAAAGGGCGAATACCAATTGCCAGAAGACATGCAAAAGAAGCTTTCCGGCTTCTGGGCCGACTACGCCACTCCGGAAGAAATCGAGGGCGAAATCAAACGGGTTTACGAAGAAAGCGGCTATGTCATCGACCCGCACACGGCTGTCGCTTCTTTAGCCGCCAAGCGCTTTAAGGAAGAAGACGATAAGCCAACTGTCGTCCTCTCTACCGCCAGCCCTTACAAGTTCCCGGAAACCGTCTACCACGCCATCAGCGGGCAAACTGTTAAGGAAAAAGGCCTGCCAGCCCTTAAGGAACTGACTGACCTAGCCGGCCCTGCCCCAAAGGCCATGGAGGCCTTCTTAGGCCACAGCTCCCAGGAAATCGTCATCCCGGCTGATAACATGGCAAACGAAGTCAAGCGGCAGCTGGATCTGGACTGATTTTTGCTAAAAAAGAGAATAGATAAAGAAAAAAGCAGCTGAGGATTTGTTCCTGAGCTGCTTTTGCCATGTAATTGAAAATAAGGAAAAAAATTCAAAATAAAAAATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCATATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCATTTATTTTGCTTAGCCTTTTTGCAAGGCACGACTATTAGTATACCCGACCCAGAAGAAAAAGCAAGGGTTTAGGGCAAAAAGCTTATTATTTTTATTTGCAAAAAGCACTTGCACTTTTCCCTGCCTTTGCTATACTAATAGATGTGCTTGCGGGCGTGGCGGAATTGGCAGACGCGCAAGACTAAGGATCTTGTGACCGCTTTTGGTCGTGGAAGTTCAAGTCTTCTCGTCCGCACCAAGCGAAAGGAACTGGTTTATCCAGTTCCTTTTTTGTTCTTCGCCAGCCTTTTTTGCTAGAATATTCTCAGAGTGATAAGCAAAAAGCAAAAAACAATTTAAGGTAAAAAAAGCATGACTGAATTAAACTGCCGCTTGGCAACGGAAGCTGACTTGGCTGCCCTCTGCCAGTTCTACCAGGACATCTGCGCCCACCAAAAAGACGACCAGTTCGGGGCCGACTGGCACTGGGGGATCTACCCAAGAGAAAAAGACATCGCGGAAGCAATTGCACAAAAGCGGGCCGTGGTTGGCATCAAGGACGGCAAGATCGCCTCAGCCGGCATCTTGACTGTGGGTAATGACCCTCTTTACAGCAAATTTGCCTGGCCAACCCCAGCTGAAGATAACGAAATCGCCGTCCTCCACCTCTACGGGGTCCACCCATCCTTCCGCCGGCAGGGCCTGTCCTCTGTCCTTTTGACCTTTATCAGGGACCAGGCCAAAAAGCTCGGCTGTAAATCCATCCGCTTGGACAGCATGGATGGCAACGTTCCTGCTCGCCGCCTCTATGAAAAGAATGGCTGGCGCTTTGTCAGCCAGGAAACTGTCTACTACGACGACATCGGCGACTGCAAGGTCGACCTGCTTGAATTAGCCTTATAACAACAAAAAACCACAAGCCTGGCTTGTGGATTTTTTCTTTACTCTTTTTCCTGTTCTTGATCCTCATTTTTTCCCGCCACTCCTTGGCCCGCTGGTCCGGCATAAACCACATCAGCATGACCAAAGCCATGAAGACCCAGGACAAAATTGGCCAGGCAAAGGCTGACAAGGCAATCCCCAAGTTGGCGGCCAGGGTTAAGCAGCCCTTGATCCCCATATTCTCTTTCAAGTCTTGGCTGTCGTAGGCAATCTGCCAGGCAAAGTGCTGCAAGAGCAAGAAGCTTACTGAGCTTAATAAGAGAACCAGGCCGTACAAGAACAAGGGCGGCCCAGCCAGAGGGTTCTTCCCCACCCAGGCCGTGGCCAAAGGAATCAAAGAGGTCATGAAGAGCCAGGCCATGTTGGTCCAAATTACCTTGTGGTTGACCGAAGGCAAAGCGTGAGTGATATTGTGGTGGTTGACCCAGTAAATGGCCATGTGAAAGAAACTGAGCAGGTAGATGACCAGTTGCGGGATAAGTGGCTTGAGGGCCTGGAAGCTGGCTTCTTCTGGGGCCCGTATTTCCAGGACCGTGATGGTGATGATGATGGCCAAAACGCCATCGCTGAACGCCTCCAAGCGGTTCTTGCTCATAATTTTCCCCCAAAAACAGAAATACTCAATACGCGAGTTAAGAATACTTTTATTGCATCTTTACCATTTTAGCCTACTTTTGCCAAAAGGAAAAAGCCCGGCAAAGCCAGGCCCAATTTCTTCTGCTTTATTCAGTAGTTAGCACTATTCTTGATTCTTGTAGTCAGCTCCCATTTCCTGCGGATCTTCCGCCTCTTCTTCATCGAAGCTGTATTCCATCTTCTTGTTGCGGTCCTTCATAAAAGCATAGGCTATTTCCGCCCCGTAGACCAGGAGGCCGATCAGGCTAAAAGCCAGAATGAACAGCCAAACGCGTTTCTTCTCCATGCTTGTCACCTTAGCTTTCTTTTAACTAAAAATTGCTTCCTAATTTTATTATAAGCGCTTTTCGGGGAAAATACAGATTATCCTGGCAAAGACAGGAAAAGCCCCCCCGCAGGAGATGCTTAAACAGTCTGGTTTCTCAGCAGCTTGACCGGGAGCAGGTAGCTGTTTTGGGCCAGCTTCTTTTCCGGGTCCGCGATCCGCTCATAGAGCAGCTTGACCAAGGTCCCGGCCAGGTCTGGAACCGGCTGGGTCCCGTCAAAGCCAACGATTTTCAAGTCCTCCGGCACCCTGATCCCCAACTTCCTGGCTTCTTTTAAGAGCAGGATGGCCGTAAGATCGTCTGAGCAAAAGACCCCGTCGATCTTCCGCCCGCTGGTCAAGAGCTCCCGGAGTTCTCGCGCCTTAGCCGCCGGAGACTCGTAAAAGGCTGATCGGGCCGTGTGTACCGTCAATCCCGCCGCGGCCACCGTGTCTGCGTAGCCGTCAAAGCGGCGGGAGGTCGGGTTGCCTGTTTTAACCGGATTGCCGACAAAGTAGACATGCCCGCATCCCGCGTCAACCAAGGCTTGGGTAGCCAGGCAGCCGCCCTGGTAATTGTCACTGGTCACGATCGGCACCTGGTCAGACAGGTACCGGTCAAAGGAAACGATCGGCAGGCCATAGCGCTGGTATTCTTCAATCCCCAGGTTGTGCGAACCCGCGATGATCCCGTCGACCTGGTTGGCCTCCAGCATCCGCAGATAGCGTCGCTCTTTATCGCTGTCCTGACCGGCGTCGCAGAGCAGCATCTTGTAGCCGTCCGCTTCCAGCTTGTCTTCAATTGCCGCGACCAGTTCCGCGAAGAAGGGATTGGTGATGCTGGGCATGATCACCCCAATCATCTTGGTCTGCTTGCCCTGCAAAGACCAGGCCAAGGTGTTGGGCTGGTAGTTCAGCTCCCGCATGGCCGCATTCACCCCGGTCAACCGTTAAGCGGGCGTGCTTGCCGGTCTTGAAGCGGAGCTTGATGCAGTTCTTACCTTCACTGTCTGCCACCAAAAGCAGCTTGCCCTTCTGCCCCTGCTTAATAGTCAGCTTCAGTTCGCTTTGCGCGCCAGCATCAAAGGCCAGGTCACCTGTGAAGTCTTCTTCGACTCCTCTCAGGCTCTTCATGGCCTTGACCGGCTTTTGAAGCAAGCGGCCGTACTTTAAAGCCAAGCGCTTGACCTGGCTCAAGCAGTTAGCCCAGCCTTCCTTATCACTTGGGTAAGTCACATCCGGCAGGCCAACCCAGCTGATGGCGTAAGCATAGCCATCTGGCGCGTTGAAGGCCTGAGTAGCGTAAACGTCAAAGCCCCCGTCCAGGTTGATCGGGGACTTCTGCTTGGTCTCGAAGTGGCCGGTTTCAAAGTCAAAGCTTTCCCCAACCCAGTACATGTTCGGGTAGACATTCTGGTAGTCGGTCACGTTCTTGTCCAAACCCTGCGGGCAGAAGATGAAGACCGGCTTGCCGTCAACAAAGACCAGGTTCGGGCATTCAACCATGTAGCCCATGTCTGGCAGGTCAACATAGCCCAGGTCCTGCCATGGACTCGTTACAGCATCTGCCTTGTAAAGGCTGATCTTGCCGGCCTTGATCTCCTTGTCCTGGGCACCCAGAATAGCGTAGTACTTGCCATCGTGCTCTAAAATCTGCGGGTCACTCACGGAAGTGCTCAGTCACATGCTCTGGCGAGTTGATCAGAGGCGTCTCCAGCTTGGTCACCTTTCCCTCTTCGTCCATCCAGGCCCCAACCTGGTAAGAATGGCGAACCCAGTTTTCGTCGCGGACATTGCCCATGTACATCAGAAAAAGCTTGTCCTTGTCGCCAATTGCCTTGGCTGAAATTGCCTTGGCTGAACCGAAATAGGCCCCATGGCTGTCCAGCGGGGTGTCAGGATAAACAGCTTCGCCCAGGTTTTCCCAGTGAACCAGGTCGGAACTGGTCAAGTGCACCCAAGACTTCAAACCATGCACTTCCCCAAATGGGTAAGCCTGGTAGAAGACCTGTCAGCCGTAAATGACGAAGTCTTCTCCCAGAAGCTCATGGGTAACGGGGCAGCCATCGTTCCTAGCGACGGCAATGTCTACTCTCCTGTTACCGGTACTGTTTCCGTTGCTTACAAGACTGGCCACGCTTACGGGCTTAAGTCTGACGACGGTGCCGAAGTCCTGATCCACATCGGTCTGAACACGGTCAACTTGAACGGCCAGCACTTCAAGTCCCTGGTCACTCAAGGCCAGCACATTGAAAAGGGCGACAAGATCGGTGAAGTCGACCTGGATGCCGTCAAGGCTGCCGGCTACGACACCACTGTCATGGTTGTCATCACCAACAGCCCTTCATACAATGAAGCGGCCCGGGTTGAAGCAACTGACGTTAAGCACGGCGACAACTTGATTTCTTTAACTGCTCACTAATCAAAACTACTACCATCAAGCAGCCCTGCCCGGGCTGCTTTTCCTTTACTAATTTTCATTTGACAATATATTCATGATTTTTTTCAATTAGATTAAAAAATCTGCTTGCACCTTGGCAGGTATATGACTAAGATTTAAATTAAGCCGAATTTTAGAGAACTGTTTAGCACGGGGAGGAATTTAAGCATGACTTTACGAGTTGGTATTTTGACGAGCGGCGGCGACTGCCAGGCGCTCAACGCGACCATGCGGGGGCTGTCCAAGACCCTTTACAACTGTGTCGATGACGTGGAAATCATCGGTTTCAAGCGGGGCTACTACGGCTTGATGCATGAAGACTACGTCAAGATGAAGCCGCGGGACTTCTCCGGCATCATCAACGAAGGCGGGACGATTCTGGGCACTTCCCGCCAGCCATTCAAGGAAATGCGGGTCATCGTTGACGGCTTTGACAAGGTAGCCGCCATGAAGAAGACCTACAAGAAGCTCAACCTGGACGCTTTGGCGGTTTTGGGCGGCAACGGGTCACTTAAGTCAGCCAACATGCTGGCCCAAGAAGGCTTGAACGTGATTGGCCTGCCAAAGACCATCGACAACGACACTTGGGGGACTGACTACACCTTCGGTTTCCAAAGCGCCATTGATATTGCCACCAGATACCTGGATGACATCCACACTACTGCTCAAAGCCACTCCCGGGTCTTTGTCGTCGAAGTCATGGGCCACAAGGTTGGCCACATCACCCTGGCCGCCGGCCTGGCTGCCGGCAGCGACATTATCCTTTTACCGGAAATCCCTTATGACATCAATGTCGTGGCCAAGAAGGTCAAGGAAAGACAAAAGTCTGGCAAGGGCTTCACGGTCATTGCCGCCGCTGAAGGGGCAATTTCCAAGGAAGACGCCACCCTGTCCAAGAAGAAGTACAAGGCTAAGGTTGCCGCTAGAAACGGCGCCAGCGTGGTTAACGAAATCGCTGCCCAATTGCAGGAAGTTTTGCCAGACGCTGAAATCAGAACGGCGGTCATCGGCCACGCTCAACGGGGCGGCCGGCCAGATGCCTACGACCGGCAAATCTCAACCCGCTTCGGGATTGAAGGGGCCCGCCTGATCATGAACCGGTCCTTCGGCCGCCTGGTTGTCTTGAAGCAAGGCGAAGTCGACTCTATCGCCCTGGAAGACACGGCCGGCAAGCTCAAGTACGTTGACCCGAACGGCAAGACCGTAAGCAACGCCCGCCTTATGGGAGTCACCTTTGGGGACAAGTAAGAGCCTATAATTCTTAACAGCACACAAGCACAAAGAAAGAAGCATCGCGTTCGCGGTGCTTCTTTCTTTGTTGTTTTAAAATTACTTCAGCAATTCGCTGATAGCGTCTTGGTAGCTTTCAGCTGCCTTTTCAGCAGTTGCGATGTCAGCCTTGTTAACGCCGACATAAGCCTTGATTACTGGTTCAGTACCAGATGGCCGCAGGGCTACCCAAGTTTCGTCATCCAGGAAGTACTTCAAGACGTTTGACTTCGGGAAGCCAGTCAATGGAGTTTCTTCGCCGTTTTCGACAGTAACTTGTTCTTGGTAGTCTTCGATCTTCAAGACCTTGGCCCCGTTGATTTCGCTGAGGCGTTCTTCTCTCAGCTTGCTCATCAATTCAGCCATCTTCTTTTGCCCGCCGATCCCTGGCATTTCGATAGCCCGGGTGATTTCGTAGGCAACGCCGTACTTCTTCCAGATTTCCTGCAGGCCGTCAAAGACAGTCATGCCCTTGGAAGCGTAGTAGCTGGCAACTTCGGCGAACATCAAGGCCCCTTGCATGGCGTCCTTGTCGCGGGCGAAGGCTTGGAAGAGGTAGCCGTAGCTTTCTTCAAAGCCCATCAAGAACTTGCCGTCCCCTTCCTTGTTCATCCGGTCGACTTCTTCACCAATGTACTTGAAGCCAGTCAGAACTGACTTGGTCTTGATGCCGAAGTCCTTGGCAATCTTGAATGGCAAGGCACTGGAGACGATTGAGGTAACGATTTCGTAGTCCGGAGTCAGCTTGCCTGAGTCCTTCAAGTTTTGCAGGAGGTAGTAAGACATCAAAGTAGCGATTTGGTTCCCAGTCAAAACTTGGAAGTCGCCCTTGTCAGTTCTTACGCAGGCCCCCATCCGGTCAGCGTCCGGGTCGGTAGCTACAATCATGTCAGCGCCGATTTCGTTGGCCAGTTCCACGCCTGGGTTGAAGACGTCACGGAATTCCGGGTTAGGCTTCTTGCAAGTTGGGAATTCCGGGTCCACAATCGCCTGGCTTGGCACTGGAACAACGTTGCTGAAGCCGCCCCGTCTGAAGGCGCGGTCGTAAAGCATCTTACCCGTACCGTGCAACGGAGTGTAAACAATCTTCAGCTTGTCGGCGTTTTCCTTGATCATGTCCTTGTTGACGTTGACTGTTTCCAGCTTGGCCAGGTAGGCTTCGTCGACATCTTCGCCGATCAGCTGCAAAGTGCCTTCAGCACGCAGCTTCTTGACTGGAGCTGCCTTAACGCTGAAGATGTCTTCAACCTTTTGCGCGTAGGCAAAGAGGCGGTCAGCATTTTCCGGCCCCATTTGGGCACCGTCTTCGCCGTAAGCCTTGTAGCCGTTGTACTGCTTGGCGTTGTGGGAAGCAGTTATGTTGATCCCGGCAAAGGTGTGCAGGTAGCGGACAGCGAAGGACAGTTCCGGCGTTGGACGCAGGTCGTCAAAGAGGTAGACGTGAATGCCATGAGCCCCCAAAACGCGGGCAGCGTGGGTAGCCAGTTCGCGTGAGTTGTAGCGGGAGTCAAAGGAAATTACCACGCCCCGCTTCTTGGCTTCTTCGCCGTTTTCGTCGATCAAGCGGGCCAAACCTTCAGTTACCCGGCCGACCGTGAAGACGTTGATCCGGTTGGTCCCTGGTTCCAGGAGCCCCCGCATCCCGGCAGTCCCAAAGTTGATGTCCTGGCCAAAGGCGTCTTCGATCCACTTTTCGTCGCCGCCTAATTCAGCCATTTGTTCAGCCAGGTCTTCCGGCAGGGCGGCTTGTTTCCATTGTTCAAAAATTTCTTTTGCATCCATATTAGATATATTCCTTTTTATTCCTTTTTATTCTTTTTCATTCCTGTCCAGCTTAAATGTCTTCAACAGATAAGCCTTCTGAGCTACGCTTTCTTGGTCCAGTATATCACTTACCAGCTCTCCAATCTTCTCTGGCAGGCAATATGTTTGAAATTCTCCCGCGTCCAGGATCATATCCTGGTCGGTCTTGTTGTAGCAGTAAATGACCAGTTCCCTTTGGTTGTAGCGGACCAGGGCGTTGATGCCATAATCAATCTTGACATAACCAACTTTCCCGTCGACTAGTACCCGGTTTTCCCGCCGCCAGTGGGCCAGTTCCTTGACTTCTTTTTCCAAAAAGTCGCTTTCCTTGCCCCATGGGAAGTAGCGGCGGTTGTCCGGGTCCTTGTCCCCTTCTAGGCCGGCTTCATCCCCATAATAGATGTAGGGAACGCCGGGAACAGAAAACAAAAACAAGAGGCCAAAGGCCAGAGCGACCAGCTGCTCGTCTCCCCCCAAGACGGTCTTGATTCTGGCCGTATCGTGGGTGCCAATATTGTTCAGGCAGTTTTCCAGAAAGGCCTTAGGGTAGTTCTCAACCAGCTTTTCCAGGTCATTCAAGGCGGCCACTTTTTCCGTTTCGTTATTGGCCTGCAAGAGCGAAACGATAAAGTTGCGGACCGGATAGTTCATGGTCCCGGTTAAATTGTCCCCGGCCATATAAGTCCGGAATTCACTGTTGACGAACTTGTGGGAGGCGTCTTCCCAGACTTCCCCGATCAGGACATGGCAGTCTTCATTCTGCAGGCGCTCGCGGATTTCCCGCAAGAGCGGCATTGGGAGTTCGTCTGCCACGTCCAAGCGCCAGCCGTCGATATGCATCCGGGTCCACTTGGCTAAGACGCCATCGGGCCCGCAGATGAAGTTCTGGTAGCCAGCATTATTCTTGTTGACTTCAGGAAGCGTGGTTACCCCCCACCAGGACTGGTACTTAGTCGGATAGTTGATGAAGTTGAACCAGGAGTAGTAAGGGCCCGTCTTGTCAGTGACCGCGCTCAAGAAGTACTTGCTGTCGGCCCCGACATGGTTGAAGACCCCGTCTAAGATCAAGGCAATCCTGTTTTTGTGCAGGTCCTTGATCAAGTTCTTGAAGTCCTCCTCTGTCCCCAGCATGGGGTCGATCTTCATGAAGTCCTGGGTGTCATAGCGGTGGTTGCTGGAAGCCTGGAAGATCGGGTTCAAGTAGATGGCCGTCACTCCCAAATCCTTTAAATAGGGAATCTTTTGCCGGATACCTTCGAGGTTGCCGCCAAAAAAGTCCCAGCGGGCTATATCGCCATGCTCATCCTTAATATAGTAAGGACTGTCTTCCTTGGTCGCGTAGATGAAACTGTCCTTCTTGCGGCCCTGGATCTCCCCATGCGGGTTGCCGTTGTTGAAGCAGTCCGGGAATATCTGGTAGACCACCCCCTGGGTGTACCAGGGAGCCTGTGGGACCGCCCGGTCATAGCAAGTCAGCTGGAAGATCCGGATATCCCGGCCGTCCTGGGTGATCTCCCCGTCGCCAAAACCGTCCTGGCTTCTTTCCAAGAAGTAAAACTGGTCGTTTTGCTTAATGAATTAATCTTTTCGAACTTTATCATCATCTAATACTTCAGCTACAATTCTGCCGTTTTGTTCATAAACGCCTTGCACTTCAGGTTCAAAGCCAGGGAATTTCTTAGCAGCGGTGAGTAAAACCTTGAAATAATCGATGTCAATTTTATGCCATCTTTCTCCAGGAGCGACAATAAATACACCTGGTGGATAAGGCAATGCGCCTTCCAGTGCTATTTCATCAGTCAAATTATCTACTTCGACTAATTTACTATTATTTCTATTAAATTCTTCATCAGCCTTGGCTGGTGTCATTACATATTTTTGAAAATCGTTCTTTATAAATAGTTGCTTTTCAAGGTCAAATATATGATTAGAACGATAATACTCATGCATCTCTTGGCATAGATCATGAAGCGTGTAATTACTGTAACGATCAGGGAAAGCATTGCTTAATTGAGGCATAACTTGCTTAAGCGGTTCATTATTTAGATATGCTTTTTCAAAATCCATTAAGGCAGTATATAGAGTCTCCATATCTACTTCAGTTTCACCTGGTGTAATTAGATAAAGCGTTGAGTAAATATCAGCCTTTTCTGGAATAATGTGCTTTTCATGTAAATATGTCTCTAAAATTACGCCAGGAATGCCCTCTTTAGTGAATTTAGCCGTAGCTAAATCAACACCTGGATTTATAATTGTTAGTTTCAAGGGACTTAAAGCCACTTCGTCATTTTCAATCTTTTCAAAGCCATGCCATTTATCAGTTGGCTTTAGTTTCCAAGCATTAATATCTCTAGCTAAAACATCTGTTGGGATATCCTCCCACTTTTGATTATTAACTGTCTTAGGAACCAACGGTCTAAATAATTTGCTATGACGCAGTAATTTCCTCCTAAATTCAATGGATAATTTAACTGTATCATTCCACCAAGTTTGACAAGCTGGAGAATTAGCCATTTTTGCATTAACAACTAGAGATGAATAAATTGGATAAGAACAACTAGTAGTTACATACTTCAAATAAGCATGATTAAAGTGCTTATGATTTACATAACGCTTTTGCCCTTTAAGATGACTATCTTTTTTTAGAATTTGAGAAGCTTGAGATACACCTACTTGTTGTTTATGAATCGATTGAGTTACTAAAATACCAGGATCATCTGGACCGTAAGTTAATTGCATTGGTGATAGATCACGTAAAACATTGACGAATTGCTCATAGCCACCCCATGCACAATCAAACAAGATGTAATCACAAAGCTTGCCTAATTTTTTAATAATATATTTTGCATTATAGAAGACCCCATCATACGTTTCTAATTGTAAAACCGCCATTCGGAATGGTCTTTTGGCCTGGGCGCGTTCTGGGTCTATCTTTGCAATTTCAGTACGAATTTTATCTTCATCTAGGTCATCTGCAACTAATGGACCAATTAATCCGTCTGCATTACGATCGGTTGGTAGATATACTGGTCTAGCTCCAGTCATTACTAAAGCACTATTGTACAAGCTCTTGTGGTTATTTCGATCGAAGAGAACGAGATCATTTCGTCGCAAAACAGCTGCAGCACAAATAGTGTTAGCACTAGTCGTGCCATTTGTACAAAAATAAACTTTGTCAGCATTATAAGCTTTAGCAGCTTCTTCTTCAGCCTTTAATGGTCCACCTTCGTGAGTCATCATATCCCCTAGTTCAGAAACGCTATCCGAAACATCAGCTTTAAAAAAGTTGGGTCCGAAAAAGCTTTTCATTATAGCACCAGCAGGATGACGATCATAAAAATGACCGTTATGATGACCTGGAGTACTTAGAATTAGATCATCTTGATCAGCAAATTTAGTAAGATCTAATAAGAATTTAGGTATTACTTCTTGCTCATATTGACTAGCAGTTTGATCAATAATTTGTATCATATTTTGCTTTTCATCATAAACAATTAAAGGCAAATCAAGTTTTAATTTATCTGCCCAAAAATGATGCATCCCCTTGCCACGACTATCATCTTTACGCACAACAACAGCCGCTAGATATGCTCCATTTAGATTCTCTTTAAGTTCTACTATTGGCCAATTTTTAGGTAAATAAGGTAATAGGTCTTTTCTAGCTGCGATTTTTAAGTAATGCATTAATTTTGTCCTCTCATGTTTTAACAATTATTTTCATTATACTCAAAAAAAAGTGTGGAATTACAGCTTTTTTAAGACTAAAATGACACTAAGGTTAAGGTTTAATCGATTCTAAGTACAAGGGAGGAATGAATGTCATACCAAGTAGTCAAATATTTAAAAATTCAAAATAAGTCCCCCGTCTCTGTATAGTTGCCAATCACATTAAAAGAATAAGTAAGAGGAGAAAAAATGACTGAAGAAAATAACAAGAAAAATTACATGGGCTGGGTTACCCTATCGATGTTTGTCTACATCACTGTAATTAGTTTTGAAGATCCTTTTTACCCTTACCAAGAATACGGTCTGTTTGTCCTGGTATTATGGATCATCATGTTGCTTTTTTATCAATTGCCTTACACATTAATTGCAACTGAACTAGGTTTCGCTTATTCTGGTAAAGAAGATGGGGGTATGTCATCCTGGATTCGGCACGGAACAGGTAGTGATTTGTTAGGATACGCAACTGGTTGGATGTATTGGGCACAAACAATTCCTTATTTAATTGACTGTGCAAGTTCAGTGGTCGTTTCAATTTCTTGGATAATCCTAGGTGATAACTCATTAGGACGTCGAATGTCGCCAATGGTATTTAGTTTGATTACCTTTTCAATTATCTTGCTCTTCCTGATTTTTGATAATACTGTTAAAAATGCGCTGGATGCTACTTCTTTGTGGAGTGGTATTGCTATGGTGGCTATGACCATCATCTTTTTCGCCATGATTGTTTGGTCACTAACACACGGTGGCCATATTGCAACTAAATTAACCTGGGATAATATCAGACCGCATTTAAGCTTGCATTATTTCTCAAGTGCTAGCATGTTAATTTTTGCCATGTCTGGTGCAGAATTAGCAGCGCCATACGTGTCACGGCTGAAGAAACCACAAAAAGGATTTCCAAAAGCAATGTGGCTTTTGTTCTTTGTTACTGCTTTAATGGTAATTTTAGAAACATTAGGTTTGGCTGTATTATTTGATGCCAAGCATATTCCTAATGATTTCAAGATGAATGGTGACTACTATGCCTTCCAATTATTGGGACGTGAAGCAGGAATGGGCAATAGCTTAATGCTAGCCTACTCTATTGTATGTTTAGTAAGTTTGTTAGCTCAAATTGCGGCATTGATTGATGCAGCTAGCCGGTTCTTGGCTTCTGATACAGCTGTTAAGTATATGCCTAGATTATTGCTGAAGAAAAATAAGAATAATCGTCCTATCAACAGTTATATTTTCACTGCTGCAACAACTTTAATTTTGATTCTCTTAGGAGGAACTTTGCCTCAGATTAACGACTTCATTAACTGGCTATTGAACATTAACACTATTGTTTCACCTTATAAGACATCTGTAGTTTTCTTATGTTTCTTAATTTTAAGATATAATAAAAAGAATTTTAAGAAAAATGAATTTGTCTTTATTAGGAATCGTAAATGAGCCTTAGCAGTAGGTTGGTGGTGTTTCCTATTAACTTTCATTTGTGCAACGCTGGCCTTCTTACCACAAAACGGCCAATTCGGGACAGCTAAATGGTTCAATCAATTATGGATGAATATTATTGTTGTATTATTCCTATTCGGAACAGGATTCATTTTACCGTTACTACGTAAACTAGAAGTTAAGTGGCATTTAAATAGAAATTAAACAGAAACACCAAGTGATTCTTTTAGTCGCCTGGTGTTTTTTTGATGCATTAGTATTCTGTAGTTTTTGATTTTTAATTTAGGTGATTGAAATTGTGATGGTTATTTTTGTGTTGAATAGTCTAGAAAGTTAATTGTTTTTTGTGATTCAGTAACAATAGATAATGATCAAGTAGTATTCTTTTCAACGCAAACAAAAACCCATTAGCTTTTCATTTTAGCTAATGGGTTTCTATTTATGTTTAAGAACAAAAAATTATAAGTTCTTCAAAAGAGCAACCAAAGACTTCTTTAATTCGTCATTGTTTCTGCCTTTCTCGTTAAGCAATCTTGCCTTATCATCCAAAGCTTGATTGTACTTATCTTGCAATTCATTAAATCTACGCTGCTGATTGTAAAATCAAATTGAACACTTGATAAAAAATAAAAAGTCCATTCGGACCTGTTTGATAGAATGTAGTTACCACACAACATTTAGAAACGAGGTCAAAATGGACTCTTTACATTCCTACCATGAATCAGCACATTAAAGGCAAGCATTTATCATTCGAGGAAAGAGTTATTATTCAATTGCGTTTGAAAGATGGCTATTCTTTGCGTGCCATCGCCCGTGAATTAAACTGTTCTCCTTCTACTATCAGCTATGAGGTTAAGCGCGGTACTGTAGAACTGTATCATGGCAAAGTCAAAAGATATAAGGCTACTCAAGGGCATGATGCATATCAAGCTCATCGTAAAAATTGTGGGCGCAAATCAGACTTTCTCAGGAAAACTCAATTCATGCGCTATGTCCACAAGCATTTCTTTAAAGACGGCTGGTCGCTTGATGTGTGCAGTAATCGTGCCACTGCTGTTGGCGAATTTAGCAGCAGAGATGTTGTCTGTACTAAGACTCTTTACAATTATGTCGACCAAGGTCTATTAGATATACATAATTACGACTTGCCAGAGAAGCTTAAATGCAATACCAAGCTTCATCGTATTCGCAAAAATAAGAAAAAACTTGGCAGAAGCATTGAAGAACGTCCTAAAGAGATCAATAAACGTAATGAATTCGGTCATTACACCAGTGTGAAACTACTATTACTAATTACTCATTTCTACTTATTCATTTGTCTTCTCTTTCACTCTAAAAGTGACCATCATTACTATGAAACTAAGAGCAAAAGCAATCACATTGACCAACCAACCTAGACTATAAGAGCCAGTCTGATCAAAGAATAAGCCAATCAAATAAACTGAAGCTGCCATAGCAAAGGCTCCAATCATATTGATAATTGAAAGGATATTGCTGTAATCTCTTTCACCAAAAATTTGTCTGATTAAATAAGGCAAAGCTACAAGACATACACCCTGTCCTAAACCTAAAATTACAGCTGAAAGAATCAATAGATTACTTTCTTTAAGCATCGCTTGACCAGCCCAGCCAATCACACCAAAGAGTGAGTAAATCAAAAGAACCAATTTTGCATTAAAGCGATCTAAAAAGTAACCAATAGAGATTTTCCCAATAGCTGCTCCAATCATCACACCTGATACTACAGTTGCTGCAGTAATTGGAGAAATACCAATATTAGTAATATGACCAGATATGTGTTGAACTGATCCAGATACAAATTGCAGAGCTAACATGGCAAAGGCTAATGCATAGAACACAGGCATTTTCAATGCTTGTTTCAGATCAAGACCACTTAAGTTCTTTCTCTTAATTTGTGTTTCCTTACCATATGCTGGAAATCTTTTGGAAGGTGCTGGTTTAATTGAAAGAGCTAGTGGTACCAAGATTAATCCTAAAAGCAGTGCTTCTCCAACGAAGCCACCTCGCCATCCAAATTGCTTAATAATTTCCGCAATGATTGGATTAAAAATTGTTCCACCAAGTGCCGATAGTCCAAGAGAAATACCCATTACTGTACCCAATTTTTCATTGAACCATTTACTTAGTAAAACCGGAATTGATAAAGTAATAGCAATTGGCTGACAAACACCAATTATTATCCAAGCAAGATAAAAATGAAGCAAGTTATTGGCAAAAGCCAAGCTCATCATACTAATAGAAATTAAGGCAAAACATGCCGTTAATAACCAACGTAGATTACTTTTTGCCATAATTTTTCCTGCAAAAAGCAAAGCAATTGCGGCTGCCGCATTTTGAAAAGTCGTCATCAAGGCAACTTGAGCTCGACCTACTCCAAATTCATTACTAATTGGTCCAAAGAACAATCCGATCGTATTCACGATTAGTCCAAAACCAATCATTGAAATAAAACAACATACAATAAAAATCCACCAAGGAAATAAAGTCTTCTTCTGTGTCACTTCTTTTCCAACTTTCTAAAAATTATCTTTTTTATTATAAGGAAAAATTGATTACTTGTGTTTTAAGAAAAGGTAAAATTATGTACAAAAAATAAAGATATCTCTAAAGTGAGACACTTTTAGGCCTTTTACTATGTCTAAATTTAATAAAGAACAAAAGATAGAAATTTATCGTAAATGGAAAGATGAGAAAATCTCAATCAGTCAGTTGTCAAAAGCATATAAAATGAACTTAGCTAATCTGGATTACATGCTTAGATTGATTGATATGCATGGAACAAATATTTTGAATACTAGAAAGCGGGTTTATTCTAAGAAGTTTAAAGAACAAACAATTGAACAAGCTATCTTTGGTACTAAGTCAGATGTTCAATTATCTCTAGAATAAGGATACTTCAGTTTTGGACGCTTACTTTCTAAAATCTGAATTTGCACTTTCTTTTTTACCCAATGTAATCATGATCACAATGAAACTAAGTGCAACTGCTGAAACGTTAATCATCCATCCTAAGTTGTAAGATCCAGTTTGATCAAAGAATAAACCGATCAAATAAACTGAAGCTGACATTGCAAAGGCACCGATCATATTAATGACAGAAAGAATGTTGCTGTAATCTTTTTCACCAAAAATTTGACGAATAAGATATGGTAAAGCAACCACGCAAACTGCTTGACCTGAACCTAGAATTACAGCAGCTAAAATCAATAAATTGCTTTCTCTAAACATTGCCTGGCCGCCCCAACCGATTACACCAAATAAAGAGTAAACGGCTAAAACTAACTTAGCATTAAACTTATCCAGAAAATAACCGATAGAAATCTTACCAATTGCGGAACCAATCATTACTCCAGATACAACAGTTGCGGCAGTAATCGGTGAAATTCCGATATTAGTAATATGTCCTGAAATATGATAGATAGAACCAGAAACAAATTGCAGTGCAAGCATAGCGAAAGCTACAGCGTAAAATACTGGCATCTTCAAAGCTTGCTTTAAACTTAAACCTGTTAAAGCCACCTTTTTACTTGATCGCATTACCTTGCCATATGCAGGATATTGCGTCGTTGGTTCAGGATTAATAGAAATAGCTAAAGGAACCAAAATTAGCCCAATTAGCATTGCTTCTCGAACGAAGCCGCCACGCCAACCAAATTGTTTAATCACTTCGGCAATAATCGGATTAAAAATTGTTCCGCCTAAAGCAGAAAATGCAAGCGAGATTCCCATCACTGTACCAAGCTTTTGGTTAAACCATTTGCTAAGCAAAACAGGAATTGACAAAGTAATTGCGATTGGCTGACAAATCCCAATGATTGTCCAAACAAGATAAAAATGAACTAATGAATTGGCAAATGTTAAGCTAAGCATGCTAACGGCAATTAAGGCAAAACAAGCAGTTAAGAGCCAGCGTAAGTTTACCTTTTCCATGATTTTACCTGCAAAAAGCAAAGCAATTGCGGCTGCCGCGTTCTGGAACGTCATCATTAGTGCAACGTTAGCACGGCCTACATTAAACTCTTGACTGATTGGCCCGAAGAATAACCCAATTGTGTTAACCAATAGGCCGAACCCAATCATTGATATAAAACAACAAACAATAAATATCCACCAAGGAAAAAATGATTTTTTATGTGTCACTTCTTTTCCAACTTTCTAAAAATTAGTCTTTAATTATTACGCTGATTGTAAAATCAAATTGAACACTTGATAAAAAATAAAAAGTCCATTCGGACCTGTTTGATCGAATATAGTTACCACACAACATTTAGAAACGAGGTCAAAATGGACTCTTTACATTCTACCATGAATCAGCACATTAAAGGCAAGCATTTATCATTCGAGGAAAGAGTTATTATTCAATTGCGTTTGAAAGATGGCTATTCTTTGCGTGCCATCGCCCGTGAATTAAACTGTTCTCCTTCTACTATCAGCTATGAGGTTAAGCGCGGTACTGTAGAACTGTATCATGGCAAAGTCAAAAGATATAAGGCTACTCAAGGGCATGATGCATATCAAGCTCATCGTAAAAATTGTGGGCGCAAATCAGACTTTCTTAGGAAAACTCAATTCATGCGCTATGTCCACAAGCATTTCTTTAAAGACGGTTGGTCGCTTGATGTGTGCAGTAATCGTGCCACTGCTGTTGGCGCATTTAGCAGCAGAGATGTTGTCTGTACTAAGACTCTTTACAAGTATGTCGACCAAGGTCTATTAGATATACATAATTACGACTTGCCAGAGAAGCTTAAACGCAATACCAAGCTTCATCGTATTCGCAAAAATAAGAAAAAACTTGGCAGAAGCATTGAAGAACGTCCTAAAGAGATCAATAAACGTAATGAATTCGGTCATTGGGAATGCGATTTAGTTCTCGGACATAAGTGCAAAGATGATGAGGTGCTGCTAGCCTTATCTGAGCGTATGAGTCGTGAGTTTTTAATTCTTCGTATTCCTGACAAGACTTCTGTCAGTGTCATGCAGGCCTTTAAAGAACTCCAAAGGCAATACAGCGAACATTGGAATGATATTTTTAAAACCATTACCACTGATAATGGCTCAGAGTTTGCAGATCTTTCCAACCTAGAAAAAGCATCCAATACACTGGTTTACTATGCCCATCCTTACACTTCTTGTGATAAGGGAACAGTTGAAAGACACAATGGTCTTATTCGCAGATTCATTCCTAAAGGAGAAGCAATAGCTAACTATTCTTTACAAGACATCATTAATATTGAAACCTGGTGCAATTCTTTGCCAAGAAAGATACTGGCCTATCATACACCAGATGAAATCTTTGAAAGAGAATTAGATCTAATCTATCAAGCAGCTTAACTAAAAGTGTTCAATTTATTATTGCAATTGGCGAAAACAAAAAAGACTTCAATTTTTTTAAAGTTGAAGTCTAGTCGTCGTGTACATTACTTCTTTCACCTAACCAGTTTTGAAAGTTGGTTAGATCCTGGTGATGATAGCCCAAAATATGTAAAAAATTGCCTATTTCAAAAAATCCTCTAAAACAGCAAAAAAAGCCGTCGTATCAAGGCTTGTAACCTTTTAAAACGGCTTTAAACTGTTCAAAACAACTTAAAAGTATGCCAATTGTTGGAATCGAACCAACGACCTTCTCTTTACGAGGGAGATGCTCTACCAACTGAGCTAAATTGGCAATTTATCAACTCTTTCATTATAGCAAACAATCTGCTTTTGTCAAAAAAATTTTCGCCAATTTTCGCAAAAAATCTGTCTCCCTCAGACCGTTTTCTCAGCCCTTATTTCTCAATAATGGTAATCTCGCTGATCCGCATGACTTCTTCGTAAACCTATACGCTGCTGCCATCATAAAGGTTCTTGTAGATCCCCTCTGGCAGCTGGGTCGGAATCGCCTGCTTCTTGCCGGTCGTATTAAACGAGCCGATCAACTGCTTTTCTTCTTCACCTTCACCCAGGCTGTGGACAGCTTCCAAGACACCCTTTCTGACCTCTTTAGCCTCATAGCTGCCCTCAGCCATGATTGGCAGCTGCTTGATTTCATGCATCCTCTTTAAGAGGTTTGTCAAATCAATATCGCCGTTCCAGTCAACCGGGTCCTTGTCAAACAGGGTCACGTGGTGAGCATCCCCCTTTTCTTCCCCATTGTAGACCAGCATGGCCCCCTTCATGAAGTAGATGAAGGCCGTCATTGCCCGCAAGGCCGCCGGATCATCGATCATCCCGTGCGCCCGGACCACGTCATGGTTTTCCAAAAAGTGCGCCTTGACATAGTTTTCCGGGTAGACCCCTTCTTGCCGGTTCAGGCCAGCCAGGTAGTCAGATCCTTTTTCCCCAGCAGCGCTGCCCGCAAATCTGGGTAGATGTCATAATCATAGGTCATGTCAAAAGCCTGGTAGAGCTCAGAATCTGACCCACCGACTGCCCCCTTGCTTCTCAAGAAGCGGATAAAGTCCGGGGCACCAGATTCAGCCAGCCAAATAGCCCCTGGCCGCACCTTAGCCACTTCTTCTCTGGCATACTTCCAAAATTCCACCGGCACCATCGGGGTCACGTCGCAGCGGAAACCGTCCACATACTTGGCCCACATGACCAAAGTCTCTGCCTGGTACTTCCAGAGGTCCCTGTGGCTGTAGTCTAAGTCGATAACGTCGCTCCAGTCGCCCACCTTGTTGCCAAAGCTGCCGTCCTTCTTGTGGTAGAACCAGTCCGGGTGCTCCTTAGCCAGGACTGAGTCTGGGGAAGTGTGGTTGTAGACGCAGTCGATGATGATCTTCATCCCCTTGGCGTAAACGTCATCGCACAGGCGCTTGAAGTCCTCCATAGTCCCGTATTCCGGGTTGATAGCCCGATAGTCGGAAATTGCGTAGTGTGAACCCAGGCTCCCTTCCGCTTCTCCTTGCCTGACGGCTGGATCGGCAAAAGCCAGATGATGTCCGTTCCCAAGTCCTTGATCCGGTCCAAATCCTTCTGGACCCCTTCGAAGTTGCCCTCTGGCGAGTAGTTTCTGACAAAAATGCTGTAAATCATTTGCTTGCGCAAGTCAATCTTGGTATCGCTAGCCATTTTTTCCTCCTTGACCTGTGGCCGTTTTTTCTCACCCTTCTACCTTAGTCGTTTTCCTAAGCGCTTTCACTTTTTTTCCCCGGTCATGTTACCGGTAACTCTTTTGCAAAAAATAATCCTAGATCTAGTAGTATGGTTAGCGGTTCCAACTCAAGATCTTGAAAATTTTACCTTGCCCTTACATTGCTTACATTGTATCCTTAATATATAGAATGATATTGACCCTATTTAAGAATATTGTTCGTGTATTGTTACTATTGTTCGTGTATTGTTACAAAGTCCAAAGATTTATAAGGAGAATATCTGGACAATGAAGACTAATCGTTACATTGTTGCTTTGGCGGGGATCATGCTGCATCTGATGATTGGATCAGTATACGCTTGGAGCGTCTACACTAAGCCAATCGTGGCACAGACCGGCTGGAGCGAATCATCAGTTGCATTTGCATTTAGTTTGGCCATCTTATTCCTGGGGATGTCCGCGGCTTTCATGGGCCGCCTGGTTGAAAAATTCGGCCCGACCTTGACCGGGACTGTTTCCGCCATCCTTTACGGGATCGGGATCGCCTTGACTGGCCTGGCTGTTCAAAGCCAGCAGCTCTGGCTCTTGTACGCTTCATACGGCGTCATCGCTGGTCTGGGCCTGGGTGCCGGCTACGTCACCCCGATCTCAACCATCATCAAGTGGTTCCCGGATAGACGGGGTTTGGCTACTGGCCTGGCCATCATGGGCTTCGGATTTGCCGCTCTTTTAACCAGCCCGATCGCCCAATTCCTGATGTCAAGCGTTGGCTTGTCCAATACCTTCTACATCTTGGGTGCCGGCTACTTCTTGATCATGATCGTATCTGCCCAGTTTATTAAGCGGCCAACTGCTGAAGACCTGGCCAACTTCAAGAGTGAAGACAAGAAAGCTGTTTCCTTGACTGGCGGCCTGCAAATGACGGCCAACCAAGCACTGAAGACCAAGACCTTCTATCTGCTCTGGTTCATGTTATTTATCAGCATCACCTGCGGGATCTCCCTGGTCTCCGCTGCTTCACCAATGGCCCAGGAACTGACTGGGATGAGCGCGGCTACTGCCGCTGTCATGGTCGGCATCATTGGCCTCTTCAACGGCTTTGGCCGGCTGGTTTGGGCAACCTTGTCCGACTACATTGGCCGGCCTTTGACCTACAGCTTGATCTTTGTCGTTGACATGGCCATGTTCGTGATCTTGATCTTCACCCACTCACCATTCATCTTCGCTGCAGCCCTCAGCCTTTCGATGTCCTGCTACGGGGCCGGCTTCTCAGTTATTCCGGCTTACCTGGGCGACGTCTTTGGCACTAAAGAACTCGGCGCCATCCACGGCTCCATCTTGACTGCCTGGGCGGCAGCCGGCATGGTTGGCCCGCTCCTGCTCTCCTTCACCCACGAAGTTTTGAAGAGCTACTACGTGACCTTGGCCGCCTTCATCATCCTGGCCGGCCTGGGCCTCTGCGTCTCCTTCCTGATTAAGCGCGAATTTGCCAAGCTGACCGACCTGGCTGACGAATTAGATTAATGACTTTTCAAGTTCCTGCTGACGCGGGAACTTTTTCTTTCCCCGCGAGCTTTTAAGCTGGCTAAAGGCTATAATATTATCGAAGAGAGATTAATGAGGGGGAAAAACATGATGCTTCCAAGCAAGCTGCGCGACCTGCGCAAGAAGCATGGCTTAAGCCAAAAAGAATTAGCGGAAAAATTAATGACCACACAAGCCAAGGTGGCCAGCTGGTAAAACGGCGACAGCGTGCCCGACATATCATACATCGCCAAACTGGCGGTTTTATACGACGTGTCAGCTGACTACCTGCTGAAAGACGACAAGCAAGAAGGGCAGACCATCGAACCAGGCGAAGAGATGGACCGGCCGAACACTAAGTGCTTGGGCAGGATCAACAGCATCTACTGGACTATCGTCATCGCTGTCTACCTGCTGGCCAGCATCGCGACCGGCCGCTGGTCCACCAGCTGGGTCCTCTTTATTTTAGGAGGCGCCATCTGGCTCATCGGGGCTGGTTTTCACTGGATCAATTCGACTAAATAAGAAAGGAGCTGCTTCTTAACTAGAAGTCAGCTCCTTTTGCTTTCTTATAAATTGTTTGATGACATGATGTAAAAAGTCAATAAGACAGAAACTGCAAAACACAAGGCTGCCGCCAGTAAGTAGGCCAGAAAAATATTGACCCCGTGCTTGACAAAAGTCACTCCTAACAAGTCAATCCCGCAAAGCAGGGCGAAATCAGCAAGCGAAGCCCCAAACTTGGCCTGGCCAAAATGGCTCATCAGCAGGCCAATGATGACCGCGGCTGCAATACAGATACTCCACCGTCGGCTGGTCTTAGGCGGATAAGCGCTAATGGCCCGCTCTTTAAGATGTTGCATGTAATTCTTCATCATTTTCCCCCTTAGTAAAAAATCCTGCTATAAGCATATTATAGTCTTTTTGTGAGAATAGTAATAAAAAGCCATGATTTAGCAAATTTCCCCGAACCTGATACAATTAAGGCAAAACACTTCAGAAAGCAGGAAAAGCATGCTGAAAGACGGTATTTATGAACAAATCCTTAACCAAGAAATCCTGGACCAGCTGGAAAAAATCGACCCAAAGGATTACAACCTGGAACAGCTAAACGCTGATGACTCCCGCCAGCTCTTGACCATCTACCTCTCCCAGGTCATCCGGTCGGGCCTGCACTACCTCCGCGACAGCTTCAAGTCCGGTGAAGACAAGGCTGCCCTCATCGCCCAGATCCGCCTGGCCAACTCCATCGTCGACCAGGTCGCCCTGCATACCGGCGAAGCCAACTACGAGGACCTGCAGATCCTGGAACAAGGCGAAGTCCTGACCTCCATCTACCACAAGCTAACCCAGTCCCAGAAGATTACCCCTATCCGGCCCCAGACTTCCATAGTTGAGAATGCCCTTTTTACCGGCAGTAAAAATGAGCCCAGCATGCTCAGCGAAATCAAGAAGGAAATTGCCTCTTCTGACCAGGTCGACTTGCTCGTTTCCTTTATTAAGTGGTCGGCCATCCGCCCCCTTTTAGGAGATTTGGAAGCTTTTTGCCAAAAAGCCGGCCACCAGCTGCGGGTGATCGCGACAACCTATACCCAGGCAACTGACTACAAGGCTATCCTGACCTTGAGCCAACTGCCCAACACTACAGTCAAGATCAACTACGAGACCGACCACGCCCGCCTGCATGCCAAATCCTATCTTTTTAAAAGAGAGACTGGCTTCTCCACTGCCTACATCGGTTCCTCCAACCTCTCCAGCGCTGCCTTGACCACGGGCCTGGAATGGAATGTCAAGGTTACTGAGCAGGAGTCTTTTGACATCGTCAATAAATTTGCCGTTTCCTTTGAAAGCTACTGGAACGACCCCTCTTTTGAAACTTTTGACCCGGATCAAGAAGACTGCCGGAAGAAACTGCAGACAGAACTGAACCGGCATAAGGCAAATACTTTCCACTTGGAAACCAGCATCCGCCCCTACAACTACCAGCAGGAGATCCTGGACCGGATGCAGGCTGAGCGGGAAGTTTACAGCCATTATAAAAATCTCCTCGTCGCCGCCACCGGGGTGGGGAAAACCGTCATTGCCGCCTTTGACTTCAAGCGCTACTTGGCAGAGCATCCCCATGCCCGCCTCCTCTTCGTCGCTCACCGGCAGGAAATCCTGGAGCAGAGCCTGCAGAAGTTCCGCGAAGTCCTCAACGACTTCAACTTCGGCCACTTGCTGGTCGGCCAATACAAGACTGATGATGTCAGCCAGCTTTTCGTCTCCATCCAGTCCTTTAACTCAGAAAAAATTGCTGATCTCTTGCCCAGCGACTACTACGACTTCATCATCATCGACGAATTCCACCACGCCGCGGCCAAGTCCTACCAAAAGCTGCTCAGCCACTTCAAGCCCAAGATCCTTCTGGGCCTGACCGCGACCCCCGACAGGATGGAAGGACAGGATATCTTGCAGTACTTTGACGGCAATATTGCCGTCGAAATGCTGTTAGGCGAGGCTATCGACCGCCAGCTCCTCTGCCCCTTCCAGTATTTCGGGGTCACCGACAATGTTGACTACTCCGGCATGAAATGGAGCCGGGGCCAATACGAGGTCAGCGAACTGGAAAATGTCTATACGGCTAACGACGCCCGGGCCAAGTTGATTTTGCGCAGCCTGGACAAGTACAGCAACAATTTGGAAGACATCAAGGGCTTAGGCTTCTGCGTCAGCGTCAAGCACGCCGAGTTCATGGCCGCTGCCTTCAATCAGGCCGGCATCCCTTCCGCTGCTTTGTCTGGCCAGACTACCCAGGCTGACCGCCAGCAGGCTAAAGAAGATTTGACCTCCGGCAAGCTCAAGTTTATTTTTGTCGTTGACCTCTATAACGAAGGAGTCGACATCCCAGCCGTCAACACCATCCTCTTCCTGCGGCCAACCCAGAGCCCGACCATCTTCCTCCAGCAACTGGGCCGGGGCCTCCGCCTCAGCCCGGGCAAGGATTGCTTGACAGTCCTGGACTTCATCGGCCAGGCCAATCGCCACTATAACTACGAGGCCAAGTTCAAGGCCCTGACCGGACCAGGCCATGCCCTGCCATATGAAATCAGAGATGGCTTCCCGCACCTGCCGGCAGCCTGCTATCTGGAGCTTGAGCCCGTTGCCAAAAAGTACATCCTGGCCAATCTTGGCCAGAACACGGCTAACAAAAAGGGCTTGACCCAGCGGGTGAAGACTTTTAGCGAAGACACGGGCCTGGAATTAAACTTGGCTAACTTCCTCAAGGCCTATGACATAAGTCTTTATGACTTCTACCACGCCAGCGGGTCGCGTTCACTTTTCCGCTTGAAGAAGTGGGCCGGACTGATTACTGACGACCGGGATGTGGAAAACCAGGTCTACCAGAAGTTCAGCAGCTTTTTCCACATCGATTCCAAAAGGCTCCTGGACTACTGGCTGGCTTACTTGAAGATGCCAAAAAAGGCAAGTAATGAGACTGAACGCTTGATGCTGGGGATGCTCTACTACAGTTTCTACAAGAAAAAGCCGGCCCAACTGGGCTTTAAGGACCTGCATGAAGGGATCAAGGACTTTTTAAAGGAAGACTTCGTCAAAGAGGAATTAATGGAAGTCCTCCGCTACCGGCTGAGCCAGTTGACCGTATTGCCGGAAGCTAACGAATACCCCTTCACCTGTCCCTTGGAAGTCCACTGCCACTACAATGTCAACCAGATCATGGCGGCCTTTGACTACTTCAACCAGGACCAGTCCCCGGAATTCCGGGAGGGGGTCAAGTACTTCGCTGATAAAAAGACGGATATCTTCCTTATTAATCTGAACAAGAGTGAAAAAGACTTCTCCCCGTCAACCATGTATGAGGACTATGCCATCAATGCCCAGCTTTTCCACTGGCAGAGCCAGAGCCAGGACCGGCCAGCCAGTCCCAAAATCCAGCGCTATATCCACCAGGGCGAGACTGGCAATCTGATTTCTCTTTTTGTCAGAGAGTTCAAAAAGCAGGGAAATTATACAGCAGCTTACACTTTCTTAGGCAACGCGGATTATGTTTCAAGTGCAGGCGAGCGGCCGGTTTCCTTTGTCTGGCACCTCCACCAGGCGATTCCAGCCAGTCTTTTGGCTAAGGCCAACAAGGCAATTGCCCTGTAATTGCTTCAGCCGGGGAAAGCATTTTCTGTTATACTAGGTATCAGTTAGGTTTTGCAAAAAAGTATAAAAAAGGAGTAAACATGAAAATTTTAGTTGTAGGTGGTGCCGGCTACATCGGCTCCCACGCTGTAAGACGGCTGGTTGCCGATGGCAATGACGTAGTCGTTTTGGACTCACTGTTCACTGGTCACAAGGAAGCTATTGACCCAAAGGCCAAGTTTTACCAAGTTGACCTTTTGGACAAGGATGCGGTAGCTGACGTCTTGAAGAAGGAAAAGATCGAAGCTGTGATGCACTTTGCTGCTTACTCTTTGGTCGGCGAATCAGTCAAGAAGCCGCTGAAGTACTACAAGAACAACGTATCCGGCATGATCAGCCTGCTGGAAGCCATGGAAGAAACCGGGGTTAAGTACCTGGTCTTCTCATCCAGCGCTGCGACTTACGGCATCCCTGAAAAGCTGCCAATCACTGAAGAAACTCCGCTCAACCCAATCAACCCTTACGGGGAAACCAAGATGATGATGGAAAAGATCATGCACTGGGCTGACAAGGCTAACGGGATCAAGTCTATCGCCCTGCGCTACTTCAACGTGGCGGGTGCTTCCCTGGATGGGTCAATTGGTGAAGACCACCACCCAGAAACCCACTTGATTCCTAACATCATGAAGGCTGCCCTGGCTGGCGGCGGTGACTTTACTATTTTTGGCGACGACTACGACACCAAGGATGGTACTAACGTCCGCGACTACGTGCACGTGGTTGACTTGATCGACGCCCACGTCCTGGCTTTGAAGCACTTGATGGAAACTAACCAAAGCGACGTCTTCAACCTGGGTACGGCCACCGGCTTCTCCAACTTGGAAATCCTGAAGGCCGCCATCAAGGTTACCGGCGTTGACATTCCTTATACTATCGGGCCACGCCGCGGCGGTGACCCGGACTCACTCGTTGCTGACTCAAGCAAGGCCCGGAAGGTGCTGGGCTGGAGTCCGAAGTACGAAAATGTCGACGACATCATCGCCAGCGCTTGGAACTGGCACCAAAAGCATCCTAACGGCTTTAGCAAGTAAGACAAAGAAAAATAGTGGAACTTCCTCAGATGGAAGGTCCACTATTTTTTGCCTATAATTCGTATTCTTCTAATACTGCCCCGTATCCACACAAGTAAATCAATCGCTTGATTCCGTATGCGTTGTCACTCTCGCCTTTATTCAACTGACACAGCAAGACGTAAGTGAAATCTGCTGCTCTTTCAAAGTCAAAATTGGTCATTGCATCCACAAAACAGCGGGCACTTACCTGCTGCGCAGTAAGGATTTCGAACAGGTCGTCAGCTATTATTCTCTGATCTCCACTCTCAATTCTGGAATACTGCGTTACAGACATGGTCATACCAGCCATTTGCTTTTGAGATAAGCCCAAATCCGATCTTATCCTTTTCAGCAGTTCACCCACCTTTGTACTGCATCCCATAACTATTCTTACTCTCCACACAAATACACAAAAATATTAAACGGATCCTCGATTATCTACCGCTACTACCTAATCTTATCTTTCCTTTACTTGATCAGCATGATGCTTTTCAATCCCCAATTTTGGTGCAATCCAATCGAAAATTATTGAGCTGGCAATTCCGGCCAGCAGATTTGACAAATAGATGTTTAACGCTAACTTCGAAAACAGGTATTGCAAAATCAAAAAAATGACAAGAAAGCTCCCTAACGATTTGGCTTTATCTAAGAATTTGTTCATGCTTAACATTTCTCCCGATTTTTCTATTTCCTTTATATTTTAGCTAAAAAATACTTTCTTGTCTGAAAAATTGCTGATCTGCAAATCCATTTCATTTCTTTTGCTAAAGGCATGACTATATGTGCATATAAAAAAGCCTTTCATGGCAGAAAGGCTTTTTACTATATGCTTCATTCCTCTTAAAACAGGGAGCCGCACTTCTCGATCATCTGGAAGAGGTCGGCCCGGTAGTCAGGGTCTTCCTTACGGAGGCTGCTGATGGCTACCCCGAAGTGCTCCTTATAGCCAGTTGAGTTGATGTACTTGCCGTGGCCCAGGTACATGGCAATATGTCCTGGGAAATAAATCAAGTCCCCTGGCCGTAGGTCTTCAAACTCAATCTCGTGCACCGGCCAGGCTTCTTTGATTTCCGCGTCCCGCCAGAGCAGGACCCCGTTTAGCATATAGCTCATGAAGACCAGGCCCGAGCAGTCGATCCCCAAGGGGCTCTTGCCCGCCCACCGGTACTGGTAGCCCAAGTACTCCTTGGCGGTCTCCGTTACCTGCTTTCTGAAGCTTTCTTCATCCGGCTTGGCTTGAAGCAAAAAGTATTCCAGATCTGCTGACCACAAGAAGTCATCTTCATCCAGCCGCTTTGCCAAGGCCGTCTTGGAAACCCAGCCGCTTCGTCCGTACAAGAGCTTAACCTTGTAATAGCCGTCCACAAGCTCATCCGTCACGTTAAGCAGGCTGCCCTTATAAACCGTCAACAGAATGTCGGCTGAAACCTTGGGCTCAGCCAGGACGTCAATGACTGGCCGCCGGATGAGTTTGACCTCCCGCGCCTTGATTTCTTCTAGGCTAACTGGAGTTACCGCGGCCTTTGGCACGTAGCCCTTATAGCCGTAATGACTGGTTACATACCAAAAGTCTTCCTTTTCCCCGGTTGCCTTGACAGCCCAGCCGTATAAAAGTTCATCGCTTCTGGATTTGAGGTCGTCTTCCGTCATGAAGACCGCTGGTTGATTGATCAAGCCGTACATTTGCCTTCCTCCTAACTTTAATCGCTTATTTTTCCTTCTTTATCCTAATCGTAGATAATCCCAATCATTTTTGCAAAATGACAACGTACCCTATTTCTTAAGATTCCTTTGCCTTATAGACTATTTTCTTAAATTAATTTCACTTTCTGCTAGCTTGTGTTAAAATATTTCATGTAACTCAATGGAGGTCTTATGGAAGAAAAGAAAACACAAAATACATACAAACGGACACTAACCAATGCCCACATTCAGCTGATTGCCCTAGGCGGGACGATCGGGACCGGCCTCTTTCTTGGGGTCGGCAACAGCATCCAGAAGGCAGGGCCGGCAGTCATCTTGATCTACATCATCGTCGGCCTCTTCCTCTTTATCTTGATGCGGGCCCTAGGTGAACTGATCTTATCTGACTTAAAGAAGCACACCTATATCGAGTTTATTGAAAAACATCTCGGCAAGGACATCGGCAAGGTGACTGGCTATCTTTACTGGCTCAGCTGGCTGATCCTGGCCATGGCGGAAACGACGGCCTTAGGCATCTACTTCAAGTCCTGGCTGCCCAACCTGCCGACCTGGCTACCCGGGGTGCTCTCAGTCGCGGTCCTGCTCTTGATCAACTTGATCTCTGCCCGCTTCTTCGGGAATCTGGAGTTTGCCTTCGCTATCATCAAGATTTTGATGATCGTCGGCTTCGTTATCTTCGCGGCCTTCATGCTGCTGAGCTCCGGTTCAACCAAGTACGGCCAGGTCAGCTTCAGCAACCTGTACACTGACGGCTTTTTCAACAACGGGGCAGGCGGCTTCTTGCAAGGCTTCCAGATGGTTATCTTCTCCTTCATCGGGGTGGAACTGATCGGGCTGACAGCCGCTGAAGCTAAGGATCCGCACAAGACTATCCGGAGCGCGATCAATGAATTGCCACTGCGAATCATCCTCTTCTACGTTTTAGCGATTATCGGGATTTTGGTGATCCTGCCATGGAACAAGGTTTCAACTTTCAGCTCACCATTCGTCCAAGCTTTGATGGGGGCAGGCTTTAAGGGTGCCGGCAACTTGATCAACTTCGTGGTCATCACGGCAGCTATTTCAGCAACCAACAGCTTCATCTACAGTGCCGGCCGCCTGCTCTTCTCCGTTACTTTAGGCGGGGAAAGCAAGTGGAGCAAGTTCTTCGGCCAGCTCAACCACCGGCAATTGCCAATGAGAGGCCTGGTCTTCTCAGCCTTACTCATTATCTGCGCGCCTTTGATCACCATGATTATGGGGGACGAAGCCTTCAGCTTCATCTCATCAATGGCAACCAGCATGTTCCTTTTGATCTGGATCATCATGACCTTGACCCACCTGCGCTACCGGCAGGTTACGCCAAAGGACCAGCTACATGAATTCCAACTGCCAGCTTACCCATATCTTGACTACCTGCTCTTAGCCTTCTTCGGTGCCATGGTTATCCTGCTCCTCTTCCTTGAGAGCTACCGGGTCCCAATGATCATGGCTTTGATTACCTTCGCTGTCCTCTATGGTTTCAGCAAGGCCTTCAATAAGAAAAAAGAAGCAGCAAAATAATTAATGAGATACAACAAAAGCTGACCGCAAGGTCAGCTTTTTTATGTACTTTAGTATTTCACCAAGAAGAGGCCGTTACGCTTAAGCAGCTTATTAACCAGCTTCTTCGACTTCTTAGAAAGCTTATACAGATCAGCATCAATGCCGCTTTCGATCCGGAGCAAGGAATAGTGCTTCTTGTCCCTAAAAAGGACATTTACCCCGAGGTAATAGTCTGTCACAATCAACTTCTTGCTGATCTCCAGCAGATCAGCCACAGGCAGCTCGGTCAAATCCCGGTCAAGCAAGTCAGGATAAGTTTCTTTAGCCAGATCATGATCCAAAAAAATGTGTGTCTCATACTGGCTGACCAGCATTAACAGCAACAGGAGCATTTTGTCCGCGTAGGCTTCGCCAATCGTATGCGACCTCAAGCACTCAAATATCTCAGAGCTAGTCCACCAGCTTATACGCCTGCTTTGCTTTCATGTCGATCCTCCATTGGCAAAGCTCTCTTTTCAGTATAACACGGAGATTTTTAACATTACCGCACAAAAATAAGCCCGGACTTGGTCCGGGCTTATTTCCATTCTATTTCTTTTTGCGAGTAAAGAAGAGCTTGATCGTATCCCAAACTCCCAAAGCCTGCCGCATGTGGTCGGCCGGGACATACTTACGGATCGCCCGCAGAGTCTTCTTCGGATCCTTGGTAATAAAGATGAACTTCCCATCCTTCTTAGTCCGGATCTCAAAGCGGGGAATGTACTTCCCTTTGAAGTGAACGTCCGCGACTACATAAGTTATCTGATCCCAAGGAATCTGGATATAGTCCTCAACATTCTTCTCGTTATAGAATTCAAAAGCTTCATCGCCGATCATGACTTTGCCATAGGTAGACATGGCCCGGAACCAAGTTCCGGATACAGCCAGATCAACGGTCTTATTCATTGATTGAGCCATTTGTTAATCTTACATCAAGCCCCATACGTGGAAGAGGATACCAACAACGAAGATCCCCAAGATGATAACGATTGGAGAAACTTTCTTCTTCAAGAGCCACATGCAAAGGAAGGTAAGCAGCAGACCTGCCAAACCTGGAACCAGCATGTTCAAGTTGTCTTGCAGAGTAGTAACCTTGGTATTAGTCAAGGACCGACCATCAGCTTGTTGGGTCAAGGCTTCCTTGATACCAGCAGCACCGCTTGGCAGCTTGTTCCAGTCGATGTAACCACCCTTTTGGATTGGCACTTCTGAAACCTTCAGAGTGAAGGTGATTCTTACCCAACGTTCGATCAAGGCACCCAGGACGAACATACCCATCATGGCAGCCCCACGGGTAACCTTCTTCAGCAAACCACTTGAAAGGTCGGAGCTGATAGCGGCACCAGCCTTGTAACCCAATTCTTGAGTGTACCACAAGAAGGCGATACGGATCAGGTTCCAAAGAATGAAGAAGAGGATTGGCCCGAGGATGTTACCGTTGATGGCCATTGAGGCACCAAGGGCACCGAGGATTGGACGAACAGTGTACCAGAAGACTGGGTCACCGACACCGGCCAAAGGCCCCATCATACCAACCTTAACACCTTGGATAGCTTCGTCGTCAACTTCAACGCCATTAGCCTTGTCTTCTTCCAAAGCCAGGGTAACACCAATGATTGGTGAAGCCAAGTAAGGTTGAGTGTTAAAGAAAACCAGGTGACGTTGCAAAGCAGCAGCCATGTCTTCCTTGTTTGGGTACAGCTTTCTTAAAGCTGGGATCATACTGTAGGCCCAACCACCGTTCTCCATTCTTTCGTAGTTCCATGAACCTTGCAGAAGTTGTGAGTGCCACATAACGTACCAACGATCACGCTTTGATAAAGTTACTTTCTTTTCAGTCATGATTTATTTCTCCTTTCTGGCTTGATTTCTAATAGTCATCAATGATGTCGCCCAGCGGGTCACCAGTACCAGCTGCAGCAACATCGCCAGAGCCCTTGCTTACCTTTTCTTCCAAAGCGAGGTACATCAAGGCCATAGATAAACCAATCGCACCCAAGGCGATCAAAGTCAAGTCCTTATCGCCGGCCAAAGCGAAACCAATGGCCAAGAATGGCCATACTTCACGGCTGACCATCATGTCGATAACCATAGCGTAACCTACGGCAACAACCATACCACCACCGATGGTCATACCATCTGACAGCCAGGCTGGCATAGCAGCCAGTGCGCTTCTAACAGTTTCAGTTGGAATAGCAAGCAACAAGCCGGCTGGGATAGCAATACGCAGACCCTGCAAGCAGACAGCGATCCATTGCCATACGCTGATCATGCGCCAGTTACCTTCTTCGGCGTACTTGTCCATGATGTGAACGATGGCAGTTGAAATAGTCCGGACCAACATGGTCAAGAACAGACCGGCAACGGCCAAAGTGATGGCCAAACCAGTGGCAGTCCCGATACCCTTGGTACCTTGACCACCCTTGATCAAAATGATGGCTGAGGCAACAGCGGCCAAAGCGGTGTCAGGTGCGATAGCGGCACCGATGTTGGCCCAACCTAAAGCGATCATTTGCAAAGAACCACCGAGCATAATACCCAAGGTAAGATTGCCAGTAACTAAACCGATTAAAGTACATGCAACCAATGGTTGGTGGAATTGCCATTCATCCAGGACACCTTCCATCCCGGCCAGGAAAGCTACCACAATCACCAGGATGACTTGAATAGCATTTAAGTCCATTTTTAACTCCTTTTCTCACTACTACTTTGTTCATCGAGCAGGCTTTGTGCCTTCTTCAGAATTGAATCCATGTTTTCTGGGTTGTCTGAAGGAACCTTGCGGACGTCGAACTTGATGCCCATCTTTTCTAGTTCACGGAAAGTGTCGACGTCAGTCTGATCCATGGACAGAACGTTGTTGGCGTTAACCTTGCCCTTGCTGTATGACATGGAGCCGACGTTCAAAGTCTTGATGTCTACGCCGTTCTTGATCGTTTGCAAAGCATCTTCTGGGTTTTCAAACAACAAGAAGGCGTGCGTAGTACCAAAACGCGGGTCTTCATAGATTTCCTTCATCTTCTCCAATGGAACGGTGTGTGCTACCGTACCAGCTGGAGCAGCTTCACGGATCATGCTCTTGCGCAGGTCGTCCTTGGCAATCTTGTCAGAAACCACGATAACCCGGTCTGGGTGAAGTGATGGAATCCAACCAGTTACAACTTGACCGTGCAACAAACGTGAGTCAATTCTGGCACCAACGATCTTAATGTGACCGTCGCCCAAAACAGTCCCTTCTGGGATTGCTTCCTTAGGAGCGCCAGCTGCGGCTGCAGGTGCAGCTGCCTTTTCCTCTGCAGGCATTAAGCTTTCAGGCTTGGTCTTGATACCATCCTTAGCTGGCTTAATGATCGCAGTCGCGATGTCTTGCGCGGTAGCCTTGTCATTGATCATTCTTTGGGTCAAGGCTTCAACTACCATTGGCAAGTTCAAACCGGAAACGATTGCCCACTTGTCGTGACCGTCGAGCAAACCGTTTGCCTGGTTGAAAGGCGTGCCACCCCACAGGTCAACCAGGAACAAAACTTCTTCCTGGTCTGCAAAAGAAGCAATCGCTTCATTCATCTTACCCTTAATATCTTCTGGGCCTTCAGAAGGCTTCAGAATGACATGGGCAAAATTGTCTTGTGGGCCAAAGAGCATTTGCGCGGATTCGGCAATACCGTCCGCGAAACCGCCATGGCTAGCTAAAACAATTCCTACCATGATATTTCCTCCTCAAAAACTTCGGTACGTTCCTAAACTTCGGTACGTTCCTATTATACAACTTAAACTTCCCACTTACAAAAGTGGGCTTGTACCTTGAAAATTCAATAGTTTAGCTAATAAAAAAAGCACAAGGCCTTTGTTCGCTTGATATAATTCAACTACAACATCATCAATATCAAACGAAAGGCTTGTGCTATGTCTAGTTTACCATCATTCGATACTGAAAACGAACCTAAAATTTCTCGTTCTGTTGAAAAGTTCTTCAAGGACTACAAAGTTATGGAGCTTCTCCGTAGATGTGGGCTCCGCAAGTCCAAAGGATTCCCACTTTGGTCGGTCCTTTCATACATCTTCAGTAATGTATTTCGAGACAGAAGCATGTACATGCAACAGAAGTCTGGCAAGTGTACTGCTGGCTTCTCCAAAAACACCTACTATAGATTCATGCAGAACCCACATATCAACTGGCTTCGCTTCACTATTCTGCTAGTTGAGAGGATCGTCAATGGGCACTTGAAAGATCTGACTTCTGATCAACGTGCCGATTGCTTCGTCTTTGACGATTCGCTCTACTCTACAACTGGATACAAGAAGACTGAGCTGGCTGCCAAAGTATTCGACCACGTTTCGATGACCTACAAGAAGGGCTTTCGAATGATGACCATGGGTTGGACTGATGGATCCTCCTTTGTCCCAATCGCTTCATCACTCTTGTCCTCAAAGAACGATCAGAATGTCATCGGGACGACCAAGAAGATCGACAAGCGCACAATCGCGGCCAAGAGGCGGATTATGGCCCAATCAAAGGGGACCGATGTAGTTATCCAGCTGCTCGATCAAGCCTTGAAAGCAGGGCTCACTGCCAAGTACGTCATGTTTGACACTTGGTTCTCCAATCCTCATCAGATTGTCCAAATCAGTCAACGTGGTTTGAACGTAATCGCCATAGTGAAGAAAAGCTCCAAGATCACATACGAGTTCGAAGAAAAGCGGATGAACGTCAAGCAGATCTTCAACGCATGCAAGAAGCGTCGAGGTCGTTCAAGATATCTCCTGTCCGTCCCTGTAAAGGTTGGAGATCCTGCCAAAGATGGTGCCCAGATTGATGCCAGAATAGTCTGCGTAAGAAATCGCTCCAACCGCAAAGACTGGATCGCTCTCATTTGCACGGACATGACGATCGATGAAAATGAAATCATCAGAATTTACGGCAAAAGATGGGATATCGAGGTCTTCTTCAAGACCTGCAAGAGTTTCTTGAAGCTTGGCACTGAATACCATGGTCTGTCATATGATGCATTGACTGCCCATACAGCTTTCGTCTTTCTGCGCTACATGTTCATGTCAGTTGAGAAGCGAGATGATGAAGATGATAGGACAATAGGCGAGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAACCGAATAAGACTTTGCGCTATGTCGTTAGCGCGTTTTTTACCAATACCGGTTAAGCCCTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGGTGTGGGAATCTGAGGACAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGCTCAATCTCTGGGAAAGTGAGCTGAATGGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTATTGCATGGCAGACGAGCTTGCGGACATCACTTTCAATCACTCCCTACAAATCCTGGTGGAAGCCATGTTCGAGAGCGTGAAAGAGATCTTCCAACCGACAGAAGAGCAGATGGAAAGGTTCACCAACGCTTTCATTTCACGCCTCCCGAAGTACATACAAGAGGCTATATCGCCATCACTGGCAGCTTAATTGAATATTTACTGGCTAAACTATTGAGTTTTCAAGGCTTCATAGTTCTTTTTGGTGTGGGAAGTTTAAGTTATACAATAAAAAGCGCTTACGTGGAGCACTTTCTTGAAACCTTTTTCAACTTTTTTGTTAATTTTATCTCTATGACTGAAAATGCATTACAATAACGCAAAAAGAGGCCCAAAAATTGCATTTTTGCGAAAAATACCAATTTTAATTAAGAAAAGAAAAATACTTATTAGATGAAAAAAAGCGGCTGATTCAGTCAAATCAGTCGCTTGTCTTATATATTTGTTGTTATAACGGAGTAGCAGAGATTCGAACTCTGGCGCCGGTTTCCCGACCTACACCCTTAGCAAGGGCGCCTCTTCAGCCACTTGAGTACTACTCCAAGTCATGCATATTAATATTAGCAAACTTTTTCCGGGTCCGTCAAACCCTTTTGAGAGATTTTTTCTGCTTTTTCGCTTTTTTGCGTCTTTTTTCCTCCAAAACAGACGATGTCTGCAAATCAATTGAAAGCCGGTCTCACTTTTCATCGTTTTTGGCTATTGTGCTATAAGAAATGTAGAAGAATGTGCGCTTGATACCGGCTGGTTCACATTATGGTCAAGATATTCAACTTTGCGACTATCGCATCATCGATATCTTTACTTCCAGCACCGACATGCCTGGCTGGAACATACCTAGCGCATAACATAGGACTCTGCCGGCTTCCATTTCTCTCACGAGCGTTCACTGCCAAGCTTTCGCATTGACAGCGTGGGCGATCTCTGCACTCGGTATGCTCACATCACCTGTACGGCCGAAGCCGCAGACAATGCCTTTATCCGAAGATGAGCAACCGAACTGTCTCACGAGTTCTGAACTCGCTTCTCGCATGTTCTTCCATTTGAGGAATTGCATGCGCGGTCGTAGAAACCGATTCGCTGCCAAAACAACTTATCGGCTTCCCGTCCGGTGAGCCATCTGCACCGAAACAGCCACTTACGCAACTGCTCAAGTAACAGATGGCATTCCGGCCATTAGCCTGCCCGCATGGATCCTTGCGGATCCCTTATTTTTTTACAGTGCTTTATTGTATCTTGGATGATCAATCAAAAAAGTAAGATTCATCATCGCGTTCATGTCCCGAACTACAACCTTGTTGTAGTTCGGACATTTTTGTTGTAGCACACATATTCATTGTGCTTGGTGCCATTCTTTTTATTGCCAGAAAGGGTGATCTTTTCATCGTCCTTCTTGATGTTGCCACAGGCTGCACAGCGCTGGGTGCTTGGATAAAAGCGGTTGGCAATCACCAGCTTAACCCCGGCTGACTTGCACTTGTATTCAAGATAGCTGCGAAAGCGTCCAAACAGTGCACGGTGTACGCCTTTTGAAGCGACATGGCTCATAAGCATGCCCTTAACGTCCAGATCCTCAATGCAGATTGCATCATATTCTTTGACAAAGTGAGTCGTGTACTTGTGCATTGCATCATCCTGCATGCGGTGAGCACGCTCGTAAAGCTTCTGAAGCTTGATTCTCGCTTTTTGATAGCTTTTTGAGCGCTTCCCGGCAATCTAATCTGGCCATTTTCTTTCAACTTTCTTGCCAGAATCCGCTGCTGGTGCTTGATGTTCTCATAGACTCTTGCCAGCTTGACGGCGCCATCTTTTGATTAAAATCACAGGTGCAACACACTTAAATTCTATTTAAATGGATTCGCTTTCTTTCGCAAGTACATTACGCTATATTTTTCGATATAGTTCTATATTACTTGTTACTAATTAGTAGCTCTTCCCGCCTGCTTAAAAAATAATTAGCAAAAGCGTTGCTTAACAAAGCTCATAATGTTATAGTAGGAAACATAAAAATTCGAGTGATCTTTTAGTAGCTGTCAGGCTCAGCGCTCATAAAACCGGTGGTTGATGCGAACCGGACAGGCCTGGAGTAGCGAATTACGGGATCAAGCAGTTCGGCCGGTCTAGCCCCGTTACGGCTAAAGCAAGTGCAGCATGCTGCAAAGTTGGGTGATACCGTGCCTATAAGCGCCCCAGCCTGAGTCAACCGACTCGGCTGGAGCTTTTTGTTTGCAGAAAGGAGAAATATGAAGCGATATCAAGCCTTGGTTTAAACTGGCAAAAGCAAATACAGATTTAACTAAGGAACAAACACATGAACAAACAAATCAGTTTTAAAGAAGCAGTAACTATTCTTATTTTGATGCTGGTCATGCTGGGCTGGGGCGTCATCGGCTTTGGCCTGTCCCCGCAGATCCCGGTCTTGACCGTCATCGCCTTACTCATCTTCTGGCTGCAGATCCGCGGCTTTGAGTGGGAAGAAGTCATGAAGGGAATCAGCCAGGGGATTTCCACGGCCATTGTCCCGATCTTTATCTTCCTTTTAATTGGGACCTTGATTGCTGTCTGGATCCAGGCTGGGATTATTCCATCCTTGATGGTCCTGGGCTTTCATATGATCAGCAGCCACTTCTTCGTTCCCTCGGTCTTCCTGGTCTGCTCTTTGGTCGGCCTGGCCATCGGGTCCGGCTTTACGACCGTGTCCACCGTCGGGATCGCCCTCTTTGGGATGGGGAGCACTTTAGGCATCAACCCGGCTTTGACGGCTGGTGCAATTATCTCCGGCGCCGTCTTCGGCGACAAGATGTCCCCTCTGTCTGACTCAACCAACCTGGCTTCCGCGGTAGCTGAAACTGACCTCTTTGACCATATCAAGAATATGATGTGGTCAACCATTCCCGCCTTTATCGGCTCTTTGCTCTTTTTCTTCTTCCTGGGCCAGAGCAATAAGGCAACTTCCTTAGCCGGCATCGCTGCCGTAGAAAGCAGCCTCCGCCAAAACTTCTCAGTTTCCTTCTGGGCAGCCTTGCCGATCATCTTGATGTTCGCCTGCGCCTGGAAAAAGGTGCCAGCCATTCAAACGCTTTTTGCCAACATCTTCTTGTCCGTTGCCATGATTTTTGTCCAAAATCCGGGCTTCAAGATGCAAAAGCTGGCAACGCTGATTGAATCCGGCTACGTTTCAAATTCCGGCAACAAGACCATTGACGCCCTCTTGACCCGGGGCGGGATCTCCAGCATGATGGGGACTGTTTCCTTGATCATCATGACCCTGGCCCTGGGCGGAATCTTGATGCACCTGGGCATTATCGACAGCGCCATGAAGCCTCTGGTTGAACGCCTTAAGAAGCCGGGCCGGCTGATCTTGACGACAATCATGGCCGGGATTGGGATCAACCTCTTCGTCGGTGAACAATACCTGTCTGTTATCCTGCCGGCCAACGCCTTTAAGCCTGCTTACAAGCGGATCGGCCTTGACCCCCTGGCTCTCAGCCGGGCCCTGGAAGACGGGGGCAGCGTCATCAACTACTTGATCCCTTGGGGGGTGGCTGGTTCCTTTGTGGCTTCAGCCTTAGGCGTACCAGTTCTGGACTTCCTCCCCTTCACCATGTTCAGCCTACTGTCACCTGTCTTCTCTATCCTCAGCGGCTTTACCGGCATCGGCCTGAAGTGGGAGCAAGAAAAAGTGGCTTAAGCCTTATCTTACTTAAATTAATAAATCAAAGAAGCCTGTTTCCAGCTGGAAACAGGCTTTTAATGTAGGCAAGTATCTTGACAGGCTTTCTCCTTCTTTCAGACCTGTAGAAAACGGCTGAAGTAGCTGAGCTATAAGCAACTAACAGCTGTTAAGAGAGCTGATTACAGGCGATTAGAAGCAAACAGATAAATAGAGAGTATAGATTAGCTGATAAATTGCAAGAAACAAGAATACAAAAACAAAAAGAGCCAGACTTCCGTCTGACTCTTGTCTCGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCAAAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGTAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTATTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAGTGAGAGCTGATACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCTGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTACGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTCAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGGATTCTTGTCAACAAGTTTTTTGATATTTTCTTTTCCGTGTCTCCGGCAAATTCCTTCTTCGCCGCGACAACAAATATTAGTATACTCGTTATTTTTGAAAGGTAAAATCAGCCTTTTCATTCGCTTTATCATAGATACAGCCGGCAGAGTTGTAATATTTTGCCTTGCCGCTTCTGCTTCTTTTATTCTGCTTTATCTTTCTTTTTAATTCTTCAATGAATTCCTCGTTCGTTTTTTGCCCTTTTTTGCCGGGAAAAATAATTTTGTTTTTTTTTTTTTTTATCTGCTCTTTTATCTCCTCTTTTGCCTTTCTCTGCTTGTCTGTCTCGCTTATAAGAAGAGCTTTGAAAATAAAGTCGCCGTGCTATTTGGCTGTTGGCAGCTCTTTCCCTCACTTTTTCTGCCCTGGTACAGTTATCAAATCCTTTTCATTTTTTATATAATTTTTTCTTGTGTTCCTTATGTCCTATATTCCATTTTGGACTATTGTTTTTGTTTTTTTAGAAAGGCTGATCCAACTCCCATGATCAAAACCCGTCTTATCAAGCAGCTGGGCTCTTTCAGCCGCTACCTCAGCCAATTCGCCTATGCCTTTCTGGCTCCCTTGACCCTGTTTGCCGTCTTGGTCAAAATCGACGCCCCGGCCAGCATCTTCCTTTTATGTGCCGTGCCCGTGTGATCCCCATCGTCATCATGGTCGTCATGCTTGTCGCCAAAAAGATCCTCAGCCGCTACTTTGCCATTTACCATCATCTAGCCGATACCTTTTTGGAAAAAATGCAGGGCATGACTACTTTAAAGGTCTACCAAAATGATTCCGCAGCTGAACAAGAACTGGCTGAAGAATCGGAACTCTTCCGGCAGATCACCATGAAAGTCCTGACCATGCAGCTGCTCAGCACCGTGGTCATGGACACCGTAGCCTATGGCGGCGCTGCCTGCGGGATCGTCATTGCCCTTAATAACGCCCTTAATAACCTGCGGCAAGGGCAAGTAAGCCGGCAAGGGGCCATCATCTTGATCCTTTTGGCCGCCTCCTACTTTCTTCCCATGCGGCAGCTGGGCAGCTACTTCCATATCGGCATGAAGGCCAGTGACCATATTTTTGCCTTCCTGGACCTGCCGGAAAAAGCTGCTGGGCAAACTTCCCTGCCGAAAAAATGGCCTTGACCGTCAGTGACCTTTCCTTTACCTACCCAGACGCTGACCAAGCCGCTTTAGACCAAATCAACCTGTGTCTATCCCCGCCCCCGGCTTCACTTCTATCGCCGGCCTGTCTGGATCAGGTAAAAGCAGCGGATCGAGATCGCCCGGGCCTTCCTGAACGGCGGAGACCTTCTCCTTTTAGACGAAATCACCGCCAACCTCGACGCCTTAAACGAAGGCATCATCCTCAAAGCCCTCAAGGAAGCCCGGGGCGGCAAGACCGTGGTCCTGGTCTCCCACCGGCTCAGCACCCTGGCCATCGCTGACCAAATCATCGCTTTGCCAAGCCGCGAATAAGCTAAAAACGCCTGGAAGAAATTCCAGACGTTTTTTTGCGCTCATTTTTCTTTTTTACCCGATCGAGCCCACCATCTGGTACTTGATCAGGCGGTTCAGTTCCACCGCGTATTCCATCGGCAGTTCCTTGGTAAATGGTTCCAAAAAGCCCATCACGATCATTTCCGTGGCCTTGGCTTCTGAAATCCCCCGGCTCATCAAATAGTAGAGCTGCTCTTCAGAGATTTTTGACACCTTGGCCTCGTGCTCCATGGAGACGTTCCCGTTCAAAACTTCATTGTAGGGAATCGTGTTGCTGGCCGACTTGTCGTCCATGATGATGGTGTCGCATTCCACATGGGCCAAAGAGCCGTCGCTGTCCGGGTTGAAGCGGACCTGCCCCCGGTAGTCCACCCGGCCCCCGTCCTTGCACAGGGACTTGGAGACAATGGAGCTGGTGGTCTGGGGAGCATTGTGGACCATCCGGGCACCAGTGTCGGAGTCGATCCCCTGGCCATTTGAATCGCAGCCGGCAAAGGCAATCGACAGCATGGTCCCCCGGGCCCGGCGGCCGTTCAGGTAGACACTAGGGTACTTCATGGTAACTTTGGAACCTAAATTGCCGTCCACCCATTCCATGGTCGCGTTCTCCAGCGCTTGGGCCCGCTTGGTTTCCAGGCTGTAGACATTGTCTGACCAGTTTTGGATGGTCGTGTAGCGGCAGTAGGCGTCTTTTAAGACATTTACTTCCACGACCGCCGCGTGCAGGCTGTCAGCTGAATAGTTGGGTGCCGTGCAGCCTTCCACGTAATTGACGCTGGCCCCTTCATCGACAATGATCAAGGTCCGCTCAAACTGGCCGGAATTACCGGCATTGATCCGGAAGTAGCTCTGGATCGGGACTTTGGCCTGGACCCCTTTGGGCACGTAGATAAAAGTCCCCCCGGACCAGACGGCGGAGTTGAGTGCCGACATCTTGTTGTCATCCGGCTTGACCAGCTTGCCGAAGTACTTTTTGACCAAATCGGGCACCACTTGGACGGCGGCGTCGGTTGACATGAACAAAACGCCCTGCCGGGCCAGGTCCTCTTTGATTTTTTCATAAACGACTTCTGACTCATACTGGGCCGACGACCCGGCCAGGTACTGGCGCTCGGCCTGGGGAACGCCCAGCTTTTCAAAGGTCTCCTTAATCTTGTCCGGCACCTCGTCCCAGTCCCGGACCGCCTTTTTGGCATCCCGGCGGAAGTAGTTCAAGTGGTCAAAGTCAATCTTGGTCAAGTCCGGGCCAAAAGCCGGCAGGGGCATTTTGAGGTAGGTCTGGTAGGCCTTGAGGCGGAAGTCCAGCATCCAGTCCGGCTCTTTTTTCGCCGCGGAAATCTGCCGGACCACCTCTTCACTTAAGCCTGTCCCCGTGGTATAGATGGGTTCGATCTCGTCTTTGAAGCCGTACTGGTAGTCCTGGTCCAGGGCCTGTAAGGTTTCATCTTTTTCAACGGTCATCTAATTTTTCCTTTCTATTGCTTCACTCAAGCCTTGCCAGGCCAGACCCGCGCACTTTACCCGGGCCGGAAAGCGGGAAACGCCCTGTAAAAGTGCCGCGTCGCCCAGCTCCTTTTCTTCCTCCTGGCTGATCTCTTTTCCTTCAAGCATCCGCCAAAAAATCGGCAAAAGACCGGCCGCTTTTTCAAGCGGGGCTTGGTCAACCAGGCCGGCCATGATCGCCGCTGAAGCCTGGGAAATCGTGCATCCCTCAGCCAGGCAGGCGACCTGTTCAATTTTGCCCTCCTTGACCTTTACCTGCAAGGTCAGCCGGTCCCCGCAGCTTTCATTGACCAGGCTGACCGCCTTTGTAGGACTGGCTAAAGGCTGCCGGTATTTTTGGCTAGCCGCGTAATCTAAGAGGACTGCCTGGTAGACCTGCTTTAAATCATCTAGTGCCATTGAAAAACTCCTTCGCCGCTTGCACTCCCTTAATCAAGGCTTCCACATCAGCTTCATTGTTGTAAAAAGCCGCGCTGGCCCGGGCAACGGCCTTGACTCCTAACCAGTCCATCATGGGCTGGGCGCAATGCTGGCCGGCCCGGATGGCAATACCCTGGGCGTCCAGGGCCGTCGCTAAATCGTGGGGGTGAACGCCAGGCAGGTTGAAAGATGCGATGCCGCCCCCCTGCCCGTAAACCCTGGCGCCTGCTTTTCTCAAGCCTTCCGCCATGGCCTGGCCTAATTCTGTTTCCCTGTCTTTAATAGCATCTAAGCCAATTGCATTCAAATAGTCGATCGCTGCCCCCAAGGCAACTACGCCGGACACGTTCTGACTGCCGGCCTCAAACTTTTGCGGGGCCGGCTTGAAAGTCGCGGTAGTTTTGCTGACCTCTCTGATCATCTCCCCGCCAAATTCCAAAGGCTGGGTCTGGTCCAAGAGTTCTTTTCGGCCGTACAAGACCCCGGTCCCGGTCTGGCCCAGCATCTTGTGGGCGGAAAAAGCGTAAAAGTCGGCGCCTAATTTTTTGACGGCAACTGGCAAGTGGCCCGCTGCCTGGGCTCCGTCGACTAAAACCAGGGCCCCGCGCTTTTTGGCCAAGGCCGCCAGCTCTTTGACCGGCTGCTCAGTCCCTAAGACATTGTTAACCTGGGCCAGGGCTAAGAGGCGGAGGCGGTCAGACATCACTTTTTCTGCTTCCTTTAAGTCAACCCGGCCCTTTTTGTCCAGGGGCAAAAAGACCAGCTTGGCCCCGGTAAGGGCGGCAACTTGCTGCCAAGGGACCAGATTGCTGTGGTGCTCAGCGGCAGTTAAGGCGATCTCGTCTCCCGCTTTTAAATGCCGCAAAAAATAGCCAAAGGCCGCCAAATTGATAGCCGAAGTCGTCCCCTTGGTAAAAACTATTTCGCTGGCCTCACCACCAATAAAATCTGCTGCCTTCTGCCGGACTCCTTCATAAGCCTCTGTTGCCTTGGCAGACAGGGCATAAGTTCCCCGGTAGATATTGGCATTTTCTTTTTGATAAAAAGCAGTAATTGCCTCAATCACACTCTTGGGCTTCTGGCTGGTGGCCGCGTTATCCAGGTAGACCAGGGGCTCGCCGTTCATTTTTTCAGCCAGGATGGGGAAATCCTGCCGGAGCTTATTCCAATTCTTGTCCATCGATCAGCTTTCTTTCTACCATTTCAAATAAAGGCTGCCGGCTGGCTTCCGGGATCTTGGTCAAAACCGGGCCCAAAAAGCCCCGGATGACTAAACGCTCGGCTAAAGGCTTGGGCAGGCCCCGGCTCATCAAGTAATAGAGCTGCTGGTCGTCAACCCGGCCGACGCTGGCCGCGTGCCCGGCAAAAACGTCGTTATCATCAATCAAGAGGATAGGGTTGGCATCCCCTCTGGCCGACCTGGACAGCATCAAGACCCGGTTCTCCTGCTGGGCATTGGCCCCTTTTGCCCCCTTCATGACATGGCCGATCCCGTTGAAGACCAGGCAGGACTTCTGCAGGATCACCCCATGCTGGAGGATACGGCCATCTGACTTTTTGCCGTAATTATTGACAACGGTGTTCAGGCCCTGGACCTGGTCACCGATGGTAATGGCGATCACGTTCATCTCGGCTCTGGCTCCCTGCCCGTAAAGGTCAGAGTCATAGTCAGCCAGAATTTTCCCGTCGCTCAGCATCCCCATGGCCCAATCCAGCTTGGCGTCCCGGCCGACCCAGGCTACCCGCTTTAAGTAGGCGGTCGTGTTTTTGCCCAAGCGGTCGATAGCGGCATACTTAACCTGGGAGCCGGCTAAGGCGCAGATCTCCACCACCAGGTTGGCTGTTGCTTCCTTGTCTCCTCGGCTGGCCACTTTTTCAAAATAGGAAAAAGCCGCGTTTTTCCCGGCCACGAGCAAGACGTGCAGGGCAAAGTCCTCTTGCTTTTGGCTGTCTTGCAAATAAGTTACCGTCAAGGGCTCTGCCAAGGCCACATTGTCTGGCACATAGACAAAGAGCCCCTGCTCCATCTTGGCCACGTTTTCTCCTAAAAGGCGATTTTCCTTAAAATTTGCCGCCCGGCCAAAGTACTTTTCCAGCAGGTCCCCGTGCTCAGCTAAAGCCGTCTCCCAGTCGCAGGCGACGCAGCCTTTTGCCCAAAATTCTGCCCCAGCTTCAATGGAAAAAGCTGCCCTCTTTTGCAAGGGCCGGGTCAAAGACAGGGGCCAGGCCCGGTAGTCCACCTTGGCAAAGTCGGGCCTAGGCAAGTCCGGCAAAGCGGCAGCGGCTTCTGCCTGCATTTTTGCAAACCATGCTTGTGCGGTCATGCTTCCTCCTTAAACGTCTTCATCCGTCAGTTCAATGTCCAGGCCCAGCTCGTCGCGCAGCTTGGTGTAGCCTTCCTTTTCCAGGCGCTTGGCCAGGTCCGGCCCGCCTTCAGCCACGACCCGGCCACCCATCATAACGTGGACCTTGTCAGGCACCACGTAGTCCAAAAGGCGCTGGTAGTGGGTGATCATCAAGGCGCCGAAGCCTGGCCCCCGCAGGTCATTAACCCCTTTAGAGACCACCTTCAAAGCATCGATGTCTAGGCCGGAGTCGATTTCGTCTAAAATCGCGAACTTGGGCTTGATCATCAGCATCTGCAAGATCTCGTTACGCTTCTTTTCCCCGCCGGAAAAGCCATGGTTCAAGTAGCGCTGGGCCATTTCGACCTTCATGTCCAAAAAGTCCATCTTTTCATACAGTTCCTGGAGGAATTCCCGGGCCGGGACTGGATCGCCTTCCGGCCGGCGGGCGTTCAAAGCCCCCCGGATGAATTCGGCGTTGCTGACGCCAGGGATTTCAGCCGGGTACTGCATGGCTAAAAAGAGGCCGGCCCGGGCCCGGTCGTCAACTGGCAAATCCAGCAGCTCTTGCCCATCCAGCTTGACTGATCCCTGGGTTACCTTATATGCCGGGTTGCCCATAATGGCTTCTGACAGGGTCGACTTCCCCGTCCCATTTGGTCCCATAATGGCATGGATCTCCCCGGTTTTCAGCTGCAAGTTAACCCCTTTGAGAATCTCCTTGCCGGCAATTTCTACGTGCAAATCAGTAATTGCTAACTCTGACATGACTCACCTCAACTAGTTATCTACAAAATTTAGTATCACGTCTATTTATAGCACACAAGGTCTAGTGGTTATAGAGGACGAAAGGAGAAATATGCGATTTTTTAAAAGATTGCAAATCACCAGAAAAATATCTGAAAACTTCAGAAAATAATCAAGTAATTTGACAAATCATTCTAGCCTGCTACAATGACTAAACATAATCAACTAGTTATGGAAAGGATCCTGTCGTCAACCGTGAAAAAGCGTCAGAAAAACGACTTCAGTAAAGAAATTCAAGTCAAACATTTTAACGAGCTCTCTGCCCGGGAGGTCTTCTGCCTGTCCAGAATCCGCGATGACGTTTTCGTTGCCGAGCAGGAAATCACGGTTCCTGAACTGGACGACCAGGACCTTTCCGCCTACCATGTCTTTATTTTAAATGAAGACCAAAGCAATGCCCTGGCGGCGGCCCGCTTCTTCAGCGAAGAAGGCCGCTTCTACATCGGCCGGGTCGCCGTGCAAAAGACTGCCCGCCACCGCGGGATTGCCAGCCAGCTGTTAGGCGCCATTGAAAACTACGTTTTGGCAAATAGCTTAACCAAAGAACTTTATCTGCACGCCCAAGCCAATGCCCGGGACTTCTACCTGGCCAATGGCTACCACGATGTCGGCCCCGTCTTCATGGAAGCCGGCATCCCCCACCAAATGATGGCTAAAAGCCTCGCCTAAGCAGCCGCAAGGCTGCTTTTTTCATGCAAAAAACTGCCCCGGTAAAGATCCCGGAGCAGTCTGGCGATTTGTGAGTTAGTAAAGAAATTTTTTTAAAATAGAGGAGTAAAAGTATAAAGTAAAAGTTTTGGATTAAAGAGTAATGTTAAAAATGGTAAAAATCATCACACGCTTTAGTTAAAGGCAATTTCCTGCGCGTCGTCGCCCGCCTCTACAGGGCGCGGGTCGACATCCTTGACTTCTTTAAGCAGGTCCATGTTGGTGTAAACCACCATGACCGTGTTGTCCAGGCCGTGGTCAGCCACGTCGGCGATGTCCATTTCCGCCAGCTTGTCGCCAGCCTTGACTGAGTCGCCTTGCTCAGCGAAGAGCTTGAAGGGTTCCCCCTTCAGTTCCACCGTGTCGATCCCCAAGTGGATCAAGACTTCCAGCCCTTCGGCCGTCTTGATGACGATAGCGTGCTTGGTCGGGAATAGGGTGGTAATGGTCCCGGAAACCGGTGCAACTACTTCCTGGCCGGTCGGCTTAACGGCAAAACCGTCGCCCAGCATCTTTTGGGAGAAGACGTCATCGCTGACTTCGGACAGGGGAATCAGATTGCCCTTGATGGGCGCCTTGACTTCATTGCCTTTTGACTTGGACTTTTTAAAGAAATTAAGCATGAATATCAACCTTTCACCGCTCTAAAGGCGAGAACTACATAGAACACAAAACAAATTACGAATAAAGAAGCAATCAAGTAGGTCAAGGACAGCAGCTGGCTCGGCTTTACCTTGCTCTCTTCAGGTAAATCCTCTCCCCGCCGCAGGGCAAAAATAGCGAAGAGGAGACAGAACCAGTTGCCAACGATCAGCTGGGTCCACAGCTGCAGCTTCATAAACTTCATGTACTGGCGCCGGTCGGCCAAGAGGGCCCCGCCGTCGATCCAGCAGAGGTAACCCAAGAGAAAGTCACCGGCTGCCACGATGATTGACACCGTGGTCGCGGGACTGGCCGCGATGAAGTCAGTGATCGTCTGCTTGGCCGCCCCGGCCCGCAGCTGCAAGAGCAGCAGGTAGGCCATCGGGGCAAAAAAGAGGACGAAGGTGTAGATCTTTAATATTCTTTTCGGCGTCAGACGGGCAGACTTAGTCAACCTGTCTAGCCAATTCAAAGCTTTCTCCTGCATTATTCATCATCTTTTCTCAGCCACTCGCAGTAGCCGTTAATCAATAAATCAATCATTGTGTAAGCCGGACTAAAAGCCCAGTTCTTGGTGCTGTTGCTCTCATGGAAGAGACTTGGCTGGAAAAAGAGACTGTAGTCAGACAGACTGGCCAGCCGGCTCTCCTTGATGGTCGTCACCGATCTTCTTTTGCCGGTCAGCATCAATGTCGTACAGTTTCAGTTTCCGCAGGGGAAGCTTATCTTGATTGGCACAGAGACTGATTACAAAGCCAGGGGTGAAGGTGCTGCCACCGCCGGCAATAACTACTGAAAATTTCTTGTCTGACATAAATCAATTGCTCCTTACAAAAGACATTGTTTCATCACATGGGGCCTTTCAGGCGCCCTGACCTCCCGTAAGCTTGCTTACACTCTTGTTATGGCACCGCTTCCAGATATGTAAAGAGTTTACAAAAACAAAGAACCATATTTCAGATTGTGAAAAGTATTTCGCAAGGGCGAAAAATATTTTGGAAAGCTGTCTGGACTAATTTTTGCAAAGAAAAAAGGCACTGGTCTTGCCAGTACCTCGCGATTAACTTAATTTAATTAACTAAAGCTGCAGGCCATTTGGCAGAGCCAAGGCAACAGCGAAGACCAGCAGAGCAGCGCCGATCAACCAAAAAGCAATTTTCTGCCCCTTTGGCAGCTCCTTTTTGAAAGCGTAGATTACCAAAGCCAGACCAATCAAGCCAGACAAAAGCATAATCCAAAACCCCATTGTCAATTCTCCTTTACAGTAATATTTCCGTTTTTTAGTTGCAGCACCCTATCGTGCTGACTGGCAATATGCGAATCATGCGTAACCGTAAAGACGGTTTTCCCTTCCCGGCTGAGTTTCTTCAGCAGGTCCATGATGATTTTCGCGTTTTCTTCGTCCAACGATCCCGTTGGTTCATCCGCCAAGATGAGCTGTGGGTCATTAATCAAAGCCCGGATTGCAGTCACCCGCTGCTTTTGTCCACCTGATAAGGTTGCCGGCTTTTGATCAAAAACTTGACTGACTCCTAACTGATCGGCAAATTGCTCGGCTCTGGCAAGGTAGTAGTCTTTGCTCTTGCGCAGTGATTTGTCCAAGTATACGGTTGGCAGCAAAATATTGTCCCTAACACTCATATTTTTGATCAACAAGGGCTCTTGCAGGATAAAGCCAATTTGCTGATTCCGCAAGCGAGCCATTTCAGTCTGGTTAAGCTCGTTGACTTTTTGGCCAAACAATTCAACTTGCCCGGAGTAATCCGTATCCAGAAGACCGATCACGTTCAAAAGAGTAGTTTTACCTTCACCTGACGCGCCAACTAGGGCTGTCAAAGACGATTCTTCAAGTTCCAGATTTAATCCGGAAAAAATCTTCCTGCCGTTTTTAAATTCTTTTTCAAGCTCTGTAATTCTCACCGAATACATTATTCGTCTCCCATCCGCAGCGCGAGTGTTTTCCTGTTAAAGTGAGCAGCTACTAAAGCAATGGCCAGAACAGTAATCAATAGCATCAAGATAAAAGAAATCAGTAAGCTTACTGTTTCAGCTCTTGGCAGCAAACCGTTCAACACTATCTGCGAACTGCTCCCAACCGAGCTGTCAGCCAGCATCTTAGAATAAGAACCTGCATATAGCAATACTGGCACGATAGCTAAAATATCAATCAGCAATTGGTAGATGATCGCTGCTGATAGTACATCTTTTTGCCGCATGCCTAACGAAATTCTTAGCGCGATCTCACTCTGTTCCTCACTCAAACAATTCCACGTGTTCCAAACGATTATCAAAACTGCAATCACCATGATTGCCAATGAAAAAATCGCGAACATGATGGCAGTACCTCTATAGCTGTCATAGAAGTCGGAAATATTTTTCTCAACTGAAATAAAACGGATCTTAAAAAAATCCCCTTGATTAAATTTGCTTGTCAACTTGTTCAATTCTGTCCGGCTGCTGTCAAAAATAATCAAGTCCTGGGCTGCGGCAAGCAACTGCGCAGCAGTCAAATTCATTTTATCCGCCCTTCTTAACGGGCGGATGATGGTGTTATTCAAATAATTTTGATTGTCAAGCAAATACACTGAAGGCACGTTCGCGTTCTGCTGCAAGACACCTACCACCTGGTAATATTCTTTTTTCCCGGAAGAAGAGTTTACTGCAGTAAATTTGCTGCCTAAAGGCTGGCTTTTGGCGACATTGGCCCCAACCAAAACAGGAATATAGTAGCTGCTACTCTTATAGTCAGCTGAATTAAAGCTGCGCCCCGCCGCGATATGAAGTAGATAAAACTTGAAGAAGTTGCTATTGACCGTATCGATGCTGACGGAATCACCATTATTCAAGTTTGAGTCGAAAGACCATCTCAAAGAATAGTGGTAATTTTTATCCAGATAAGCAAAAACTTTACGCGCGTGAGCATTAGTTTTAGCCAGATTCTTTTGCTTAAAATTCTGACTGAACTGCTTCCCAGTCGACTGGTCATTGCCAACATACACTTTCCGCTTCACCAAGGTCTGCAAACTACGCTCATTGTTTAGGACGTACAAGTTTGACCGTAGCAAGTGATAGCTGATGAAGCCAAACGAAATTAGGCACAATAGGGTCAGCAGAGTCAAGACCAGTTTCTTTAAAAAAACGTTCCTTATAAATTCAAAATACACTTGGCTTTGCCTTAGCGATCAATCACCTTAACCAAAAGCGGCCACCACAGCAGTAAAACCACGGTATGCAACATACTGGCTAAAACGAATTCTCGCAAAGCTCCTCCTTCGTTCTGACCAGTCAAATATCTCATTCCAAAAAATGCCAAGGCAAAGGTCAGAAGATCAGCCAGAAATATCATGACCTCCCCTACCGAATACTGCTCTCGGCAAGTAGAACCGACGATAATTCTAATCCTTCTTTCTTTTTGCCCTTTTTTGCATAAATGGTAAATCACCAAGAGCGAGGCAATACTGGCAAAAGCGAGAATTGAAAAAGAACTGGCAGAATCTTCTAACAGATTCTTGATCGCCCAATTCACCCGAGCATTCGCTGCCTTTTGACTTACCAAGCTGAAAATAGCTAAATAAAGAAAATTGAGATATTCAACTAGTAACAATCCGATCAATGCTAAAAAGCTGAAAGGATTTCTTGTCAATTTTTTCATCAATTAAATCCGTAATGGAACTTCGTCTTAGGTGCAGTTGGATTCAAAGTATCCCAGCAACTTACATTGGCTTCAATTTTAGTTTTACTTGAATACTTTGAGTTGTTTTTCACATAGGTTGTCCACTTGGAAGCAACAGTCTTGCCATTTCTAGTATATTTTGCATAACCCACATGAGTATGAGTAGCATAATGTGGGTAGAAAAATACGCCGCCACTGTAGTGAATTTGCATAGTTTCAGTACTCCAAGCACCACGATGAGCAGTCCCAAACTTAGTAGTACCAGCTAATACAGTCGCAGTTGGAACTAACGCTAATGCAGTCAGCATGGTAAAAAATAGAGTTGTCATTTTTTTCTTACTTTTCATTTTTCTAAACCTCTTTTTAGATTCATGCCTGTTCTTTTTCTCACATTCATTTTACAACCGCGCAAGCCTTTTTTTCAATTATATTTTAAAAAACTTTTTATTTATGTGTGGATATAGAAATAATTTTCATAAGACAAACAAAAAATCCGCCGGAAGGCGGATTCCTTAAATTCTGTATTTTCTGCGCAGTTCCCGGTCCTGGTCGCGCTTCTTGATCGTTTCGCGCTTGTCGTATTCCTTCTTACCCTGCGCTACGCCAATCAAAACCTTGGCAAAGCCGTGCTTCAAGTAGACCTTGAGCGGCACGATGGTCATCCCCTTTTGGGCCTTCACATCGGCCAGTTTGGCGATTTCTTTCTTGTGCAAAAGCAGTCTGCGGCTTCTCAGCGGGTCATGGTTGTAGCGGTTGCCTTCCTTATATTCATCGATATGAACATTTTCCAGGAAGGCCGACCCGTTGATGATCTGCACGTAGCCGTCACGCAAGGTCACGTGCCGGGCTCTGACTGACTTGATCTCCGTCCCCGTCAAAGCAATCCCGGCTTCATAAGTATCCTTGATGAAATAATCATGCCGGGCTTGCCGGTTCTGCGCGAGGACATTTTCATCCTTGGCTTTTTGTTTCATAAAAAATCCTCCCGCTTACATATTAACGGTTTGGCCGCCGGCGGTTGCCTTTTTCACTTTGCCCCAGCCGCTGGCCGCGGTTGCTGCGGCTTGGCTTGTGACGCCGTTCACCGCTCTTGTCGCGGCCGCCGTAATTGCTCCGGCCCTTGAAGTTCCGGTCCCCGCTTCTTCTGCCCATCCCGCGGTCATTGTGGGGCCGCTTTTTGGCATCTGGATCGTAAACTTCAAAGTCCAGCTGGTGCTGCTCAACATTCGCATTGGTCAAGACAACCTTGATCGGCATCCCAACCTTATACTTCTTGTGGGTTGTCCGGCCGGTCAATGTCATGGACTTTTCATCGTATGAGTAGTAGTCGTCCTTCAAGTTGGAGATGTGGATCAAACCTTCCACCGTGTTCTCCAACTGCACGAACATCCCAAAGCTGGTTACTGATGAAACAACCGCTTCAAACTTGTTGCCGACCTGGTCAGCCATGTATTCGGTCATCTTCAAGTCGTTGGTTGCCCGTTCCGTATCGATTGACCGCCGCTCTTGCATTGAAGTCTGATCAGCTGCTTCCGACAGTTCTTCCTTAAAGTGCTCCTTGACATCATCCCCCATTCCTTCTTCCAGGTAGGCGTGGATCATCCGGTGGACCATGGTGTCTGAATACCGACGGATTGGGGAAGTAAAGTGGGTGTAGTACTTGGCCGCGATCCCGAAGTGGCCCAGCGGATCTTCTGAGTAGTGGGCCTGCTTCAAGCTCCGCAGCATCATCATCTGGACAACCGATTCTTCCGACGTGCCCAAAGTCTTGGTAACCACCTTCTGCAAGTCCAGCGGCTTGATGTCGTTTGGATCTGCCTTGACGTTCAAGCCGAAGGCACTGCAGAATTCAAAAAATCTGCTGATCCGGTCAGCTTCCGGCGTTTCGTGCACCCGGTAAAGGAAAGGCACCTTTTTTCTGTAGTAGGCTTCTGCCACAGTTTCATTGGCCAAAAGCATGAAGGATTCGATCATCTTTTCGGCCGTCCCCCGGCTGTGCAGGACGATGTCCACCGGCTTGCCCTTCTCATCCACGATGATCTTGGCTTCCGGTTCTTCAAAGTCGATGGACCCCCGGGCGTGGCGCTGTTTATACAGGATTTCATGCAGAGCTGCCATGTCCTTAAGCATTGGCCGCACCTTAACATACTTGTCTTCCAAGTCGCTGTCCGGCACGTCAGCGCGCAAGGCCTGGTTGACCTTGTTGTAGGTTAAACGGCCGTGGGACCGCATCACGGCCGGGTAGATGTCGTAAGATACCCGCTCACCTTCCGGGGTGATTTCCATGTCACAGGACAGAACCAAACGGTCAACGCCTTCGTTCAAGGAACAGATCCCGTTGGACAGTCTGAACGGCAGCATTGGAATAACCCGGTCGACCAAGTAGGTACTGTTGCCCCGGGCAAAAGCTTCCCGGTCCAAAGGCGTTCCTTCTTTAACATAGTGGGCCACGTCAGCGATGTGGACGCCCAGGTGGTAGTTGCCGTTGTCCAGCTTCCACAAAACGACCGCGTCGTCAAAGTCCTTGGAGTCATCCCCGTCGATCGTGACGGCTGGCTGGTCGGTAATGTCCCGCCGGCCTGCTTCATGCCTCTCTTCTTCAGTTACGTGGTCCGGGATGGCATTGGCCTGCTCTAAGGCGTCTTCTGGCCATTCAGTCCGGATGTCGTGTTCCGCTACGATGGACATGATGTCCACGCCCGGGTCGTTCTTGTTACCGATAATTTCGACAACTGCCCCGGTCATCTGGTCTGGCAAGTCTTCGGTCGGGTAGGTCTTCAGAGATACCTTGACCATGTCCCCCATTTGCGGGATCAGGCCGTTTTCAGATACATAGACCCGGTACTTCTTGAACTTCTTGTTGGTCGGAATCACGTAGCCGGCAAAGTGGCTGATCTTAACCTGCAGGTCTTCCAAAGGGGTGTATTCGCCGACAATGCTGCTGGCCCCGCGCTCCAGGATTTCTTCAACCTGCCCTTCCGGCCCCTTCCCGTTCCAAGGGTTGCCGCCGGCCGTGATCTTGACCTTGACCCGGTCCCCGTCCAAAGCCAGCTTGGTAGCGTCAGAGTTGATGAACACGTCATCGGCTTCTTCATCATCTAAGCGGACAAAGCCAAAGCCCTTGTCGTTGGCCCGGAAGACCCCTTCGACTTCAGTATTTTCCTTGGCCAGCTGGTAGCGGCCGTTGCCGTCAGTGATGATCTGCTTTTCCTGCTCCAGGTAGGCCAGGGCCTTGACCAGGTCGGTAAAGTTGCCCAAGCGATCCCGGCGGGCCTGCCGCTCGATCTGGTCAACGCTGAATTGCTTTTGCGGGTTGTGCCGGAAGATCTCCAACACGCCCGCCAATACAGTCTCGTTTTGCGCCATTATTTTCTCCATCTGTATTTTCGTTAAAAAAACCTCCCATCAAGCAAGTGATCGGGAGGTTAATGATTATTTAGAAGACAGGATTGCCAAAATAATCGAAAAAGCAAAGAACAATACGAGTAGAACTGACGTCACTTTTTCCATAAAGGCTTCAAAGCCCCGCTTCTTGGTCTGGCCGCTAAAGACGGCGCCGCCTGACAAAGCGTTCAAGGCATCTTGCTGCTTCTGTGGTTGCATCATTGTCGCAATAATGATCAGCACTGAAACAATGATCAACAGCGTCATAATAAAGTTGTACAATGCACTGCCTCCAATTTATTCTACAATTACTTTACTATTCTATCATAGATAGACTTACTTTGTCTTAGTTTTTTTCAGTTCGGGCGCGTCAGTTTTATAAAGACTGCTTGCGTCCTTCTTGCCCAGCTGGCTCTTTAAGCTGGTCTTGCTCTTACCGGCTTCTGCCAGCTTCTTTAAAGAGTCAGTCTTATTGTAGTCATAGTCACTGGTCTTGACCGGAGTAAACCAGGAGGGGTGGTAGAAGCGGAGCAGGTTCCCGGTCACGACCCGGTCAGACAGGGTCAGCTGGGTCAAAACCTGGTTGGCGATCAAGCGGCAGGCCTTCTTTTCCTTAGTGCCGGTGACCTTCTTGCCCGTCCTGGTGTAATAGTAGCTGCTCCCCACCTTGGTGTAGGTCGGGGTAATAAAGTTCCCATTCCGCTGGGCCACCACTTGCGGGTTCTTTTTGCTTAACAGGTCATGGCCAAACAAAATCAAGCCCTTGCTCTTGATCCCCAGCAGGTTGAGCAGGGTCGGCATCACGTCGATTTCCCCGCCGTAGGTATGCTTAATGCCGCCTTTTAAGTTGCTTGAATAAAACATGAGCGGCACTCTTTGCTGCTGCTGGTCGTCAAACTCCCCGTAATTTTTCTTCCCGGTCAGCTGGGCCATGGCCTCGTTGTGGTTGTTGGAAATCCCGTAGTGGTCCCCGTAGAAGACCAGGAGGGTCTTTTTGTCCAGGCCGGTCTTCTTCAGCCAGGTCATGAATTCGCCGATCGCCTGGTCCAGGTAGTGGGCCGTCTGCACGTAGCCGTCAACCGTGTTGTCCCCGGTCGTGGTCTTCTTGATCGACTGGTTCTGCTTGTCCAGGGTATATGGATAGTGGTTGGTGACCGTGATCATCTTCAAGTAAAAAGGCTGGGGCAGTTCAGAGATGTACTTGGCCGACTGCTGGAAGAAGATCTTGTCCTTTAAACCGTAGCCCAGGTACCAGCTGTTTTGGTACTGGTAGTAGTTCAAAGAAGCAAAATAATCATAGCCAAAAGACTTGTAGGCATTGTTCCGGTTCCAGAAGGACCCCGTCCCCCCGTGCATAACGGCGGAAGTATAGCCGCCTTTTTGCTTCAAAATAGCCGGCATGGATTCAAAAGTATTGCTGGTCCCGTAAGTCGACATGGCTGACCCCGACTGGACCCCGAAGAGGGAGTTTTCCAGCATCAGTTCCGCATCAGAGGTCTTCCCCTGCCCCACCTGGTTGAAGAAGTTGTCAAAAGCCAGAGTGTGCTTGGAATGGTAGATCTTGTTCAAGTTGGGCGTGACTTCCTTGCCCTTCCACTTGTAGCCGATCAAAAACTGCTGGAAGCTTTCCAGGTGGATAACGATGACGTTTTTCCCCTTGGCTACACCCGTATAAGCTGAATTTGGCTGGACGTAGTTGGCCTTGAGGTACTTTTTAACAGAACTCAAATCCGACACCTTGGCATTAGCCATCTGGGCGTTGGTCTGAGCCGTCTTGATCCCGTCATAAAGGGCATATTCGTTGATCCCTAAATACTTGACGATGTAGTTGTTGTCAAAAGTCCGCGTGAGCAGGCCTGACCGGTCCTTTTGGGCCAAGAGGAGGTTGCCCCCCATCAAGAGCAGGGCCGTCAGTTCAATGGCGACCTTCCTTTTCCAGGACTGAGCGTAGAGGTCCATTTTGAAAAACTTCCCCAGCAAAAGCCCCAGCAGGATCAAGGGGTCAACAAAGGCTAAAAAGTCGCTGCCCTTGAGGATGCCGGCAATGCTTTTGCCCAAATTCTCCGAAGCGCTGCCCGAATTCTGCAGCAGGGAGAAAGAGAGGAAGTTGGAGAATTCCCGGTAGTAAAGGATGTTGGCGAAAAGCCAGGTCGCCAGGAGGAAGTCCAGGACAAGCATGGTCCAGTAGGACTTGCGCCCCTTCATCAGCATCCCCAGACCCAGGATCAGCATCCCCGACGGAATAGGGTTGATGAGCAAGAGGAAGCCCTGCATCGGGCCCGTCGCCCCCAGGGTAAACTTGGTCAGATAGATTAGGTAACACTTGAGCCAGTAGCCGAAGACCGCCAGAGTAAAGAAGCCGTTCTTCGACGTCCGCAGCCAGGTCCCAAAGGCCTTGATTTTCTGCATTTCTTTCACCTCAAAAAATCAGTCCCGCAACTTGGCCGGCTTGAAGGACCAGCCAAAGATGCCGAGAATCATGCCGAAGAAGTAGGTCGCGAACCGCCACAAGAACATGGCCAAAACGACTACCCCCGGCTGGCTGATGAAGCTGGCAAAGAGGGTCTGGAAGCTGAATTCCGCCCCGCCACTGCCCCCAGGCAAAGGAATCACGGCCATGAACATGATGATCAAGATCGTCATCAAGGTCACTTGAACATAGTCAACTGGCTGACCCAAGGCCCGCAAGGCCAGGTAAGGAGCCGAGTAGTAGCACAGGAGCTGCCCAACCGTCAAGAGAACCACGCCCCATAGCTTTTTCTTCTCAGCCTTAAGGGCCTGGCTTTCCTTGTAGAAGCTTTCTACTTGCTCCAGGGTAGACTTCTCCCAAGCCTGGGCCCTTTCCTGGCCAAAAATCCGCCCCAACAGCTTCATGACCTTTTTAACAGCCTTGACCGTCCAGTTATGGGCAAACATGGCTAACAGGAGCAGGATGATGGAGAAGACGTGGAGGGCAAAGCCCAGGAAAATAAAGATGGCTAAAGCCGAGAACTTGCCGGCCACAAAGTGAAAGCCGAAGATAAAGGCCGTCAAATAGGCAAATAAGACAACCAGCTGGTAGCAGATGAACTTCATCATCAAAATCGAAGTTGCCCGGCCGCCGGCCATGCCCATTTCCACCATGGCCGCCAATTGCGACGGCTGCCCGCCGGTGGCCATCGGGGTGATCCCGTTGAAAAGGGCCTGGATGAGCGGAATCCGCAGATAAGACCAGAAGCTCCGCTTGGCTGTCCCCGGCCTTTTGGCCAAAAGACGGAGGATCAAGGCCTCACAGACATAGGACAAGGCCATGGCCAAAAAGACCAGGACCAGGCGCCAGGGAATAATCTGCCCGGCTGCCGCCTTTAAAGTCGCCATTGGCGTGGCCCGGAGGTCAAAGTACAAAACAAGGGAGCTGATCAATAAGACGATCAGGAATCCCCACAGATTTTTCTTATTCATAGCTGATCTGCCCCAATTCCCGGCCCAGCTGGTACTGCTCCTGGTAGAAGTCCCGCCAGATTTCAGCCAGGTGGTCTTCAGAATACTGCTGGCTGGCCTTGCGGGAAAGCTCCTGCTGGCGGGCCAGGACTTCCGGATGGGTAGCCGCGAAGCGGAGCTGTTCGTTAATTTCAGCAGAGTCCTTGCCGGCCAGGTAGTAACCGTCAATGATCGCCCGGTAGAGGTCCAGGTCTCTGAGCAAGACCGGGGTCCCGCAGCTGAAGGCTTCCAGAACTGACATCGGGAAGAGTTCGTCAAAGGACGGCAAGAGGAAGAGGTCGGCCATGTTCAAGTAGTCAACCAGCTTCTCCCGGTCGATGATGCCGGTAAAGGTCAAGTTCTTGGGCGGGTTCTCCACCAGCTGCTTGAAGTGGTCATAGCCGTCCGTTATCTTGCCGAAAGAAAAGCCGCCGGCCCAGATAAACTGGTAGTCGGGGTTGGCTTCCGCCAACTTGGCGAAGTCGTCGACCCCTTTTCTGGCCTGGACCTGCCCGTCGCCAAAGACAACGAACTTGTCCTGCGGGATGCCTAATTCCTGCCGGGTGGCGTTCTTTTTGGCCTGAGTCTGTTCATAGAACTCACTCTTGGCCACGAAGTTCGGAATGTAGCGGATCTTGTTTCTGTCCAGGCCGTATTCAGTCAGCTTGTCGATGAAGATCGGGTTGACGACCACGATCTGGTCCATCCGCTTGTAAAAGTCAATCACGTACTGGTAGAAGACCTTTTTAGCCACCCCTGGCAATTTGATTGACCTTTCCAGGGTATCTGGCAAAAAGTGGACATAGCCGATCTTGCGGCCTCTGGCTGGTGAAAAGCTGTTGGCGAAGTAGGTCGGGTTGATGGTGTGGTAGTGGGTCAAGTCGCTTCTGCCGTACTTGTTGATGGTCACGTAGAAATCATCGACCAGGTGGGTCCTGAGAAGCCGGATCAGTTCCAGGTAGGCTGCCCCGACCCCTTGGCCGGCAACTGAGTCCGCCTGGGAAAACATGTTGATTCTAATCATTGCTGTCCTCTTTTTTCACTTGATAGTTGTCAATCGCGTACTGGTAAAACTTGCAGACCTCGCTGGCAAAGTGGCTGGCGGAAATTTCTTCCAGCTTTTTTGCCAGGAGCTGGGGCGGAATCTCCTGCCGGCCCTGCCGCAAGTAAGCCGCGATTTCTTCCTTCATCTGCCGCAAGCTTTCAAAAGTCAAGCCGTAAGCCGGGTCATTGAAGACCTGGTCGGTGTAGTCGGTCTTGTAAACCACGCACTTGCGTCCGCTGCCCAGGGCTTCGATATAAGTCAGCCCCTGGGTTTCCGTGTCGCTGGCTGAGACGAAGAAGTCGGCCATCTTATAGTAGCTGGCGACCTGGTCATGGGGAATATTGCCGGCAAAAATCACATGGTCTTCCAAAGTCAGGCGCTCAACCTGCGCTTTTAAGACATCCACGTCCGGGCCGTCGCCGGCGATAACAAAGACCAGATTAGGGAATTCAGTCAACAGGTCTGGCATGACCTGGAGGATGCGGTCAATCTTCTTTTCCGCGGCTACCCGGCCCAGGGTGATGATCACCTGGGCATCCGGGGCAATCCCCAGTTTTTCCCGCAGATCCGCCTTGTCCGGGCCACTGATGGCGTCCAGGTCAACCCCGGTAGGAATCACCCGCATGGGGATTTCCACCCCGTATCGGGCCAATAAATCCGCTACCCGCTGGCTGGGCGCGATGACCCCGTCCATATTCTTCAAGTAGCTCTTGGTGAACTGCTGGACATGAACTGGCCGGAGCAAGTGGCCGTTTAAGACATAGTGCAGGTAGTTTTCGTACATGGTGTGGTAGGTGTGGATAGCCGGGATGCCCAATTGCCGGGCCACGTACTTGCCAATTAAGCCCATGGAAAATTCGGTCTGGGTGTGGACGATGTCCAGGTTGACCTCCTTGGCCACCTTGACCGCCTCAAACAGGCCCCGGAAAGCAATCCGCCGCTCAGAGAAGCCAATGAAGGGCACGGAGCTGAAGCGGAAGATGTTGGCTTCAACCGTGTCCTTGTCGACGTTGGGATCAGTTGTCGTGAAGATGAAGACATTGTGACCCTGGGCCTCCAAAGCTTCTTTAAGGGTTTTGATCGACGTCGCTACCCCGCTGTTTTGCGGGAAGTAGGTGTCTGTAAACAAACCGATATTCATGTGCTTTCATTACCTCCATACTAAAAGACATTATAGAGAATCGGCAAAAGAGGTGCAAATTTCTTTACCAAAATCCAAAGAATAAAAGATATTTGCTGCAGGGAAAAAGATAAAAGAAAAACGACTCCCAAGAGGAAGTCGTCTCAAGCGATAGCGGTGATCGGGGTCGAACCGATACGTCCGTAATGGACACCAGATTTTGAGTCTGACGCGTCTGCCAATTCCGCCACACCGCCGTGATATTAAAGTTGAATAGCGGTGATCGGGGTCGAACCGATACGTCCGTAATGGACACCAGATTTTGAGTCTGACGCGTCTGCCAATTCCGCCACACCGCCATGCTATTCTACTTGGCCGTTAAGCCTAAGGCGGCGATCGGAGTCGAACCGACGATTAAGGTTTTGCAGACCTCTGCCTTACCACTTGGCTACACCGCCACGATTATTCTTTTCTGCCCTTCGGCTAGGGCGGTATGTGGGAATCGAACCCACGAATGCTGGATCCACAAACCAGTGTGTTAACCACTTCACCAATACCGCCATATTCTGTTAACAGGGATAGTAGGAATTGAACCCACACCGACGGTTTTGGAGACCGTAGTTCTACCTTTAAACTATATCCCTATTATGGAGGAAAGTGGATTCGAACCACTGAACTCAGAGAGAGCGGTTTTACAGACCGCCGCGTTTAGCCACTTCGCTATTCCTCCATTTTCAATGGCGCGGGACGGAATCGAACCGCCGACACATGGAGCTTCAATCCATTGCTCTACCAACTGAGCTACCGAGCCATCAAACGGTCCATGCGGGATTTGAACCCGCGATCTCCTCCGTGACAGGGAGGCGAGATAAACCACTGCTCCAATGGACCATATTGCGGGAGCTGGATTTGAACCAACGACCTTCGGGTTATGAGCCCGACGAGCTACCAGACTGCTCCATCCCGCGATAATAAAAAGGAGGATGTGGGATTTGAACCCACGCACGAGTCGCCCCGTCTAACGGTTTTCAAAACCGTCCCCTTAAGCCACTTGGGTAATCCTCCATTTGATGGATAGAAAAATATTCAATTCTTGCCTTCCGGCAATGACCCGTACGGGATTTGAACCCATGTTACCGCCGTGAAAGGGCGGTGTCTTAACCACTTGACCAACGGGCCGCGTAAGCACTCTTAAGATGATACTCGCTTAAACTCATCTTGTCAAGCGGCTTTCTCAATCTTTTCAAAGGCCACTTGCACCGACGCTCGCGCGTCAACAAATACTAGAATACAGAAAAATCCTGTCTTTGGCAAGTCTTTTTTAGAAAAAAGAGCTACTTTTTTGCCTTTTCTCCTGCTTCTGCCCTCTCTCCTTCTTACTTTTAGAGTTAAGCAGCTTTAAGGCACAAAAAAAGAGCTGCGGAACAGCTCTTTATCAGGCGGAGTAAGAGAGATTCGAACTCTCGCGCCAGTTTCCCGGCCTACACCCTTAGCAAGGGCGCCTCTTCAGCCACTTGAGTATTACTCCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCTGAGCTACAGGCCCATAAGCGGGTAACGAGAATCGAACTCGCGACAACAGCTTGGAAGGCTGTGGTTTTACCACTAAACTATACCCGCAAATATTCAATTTATGGCGCGGGACGGAATCGAACCGCCGACACATGGAGCTTCAATCCATTGCTCTACCAACTGAGCTACCGAGCCAGCTTATTAAAAAGCAATTGCGGGAGCTGGATTTGAACCAACGACCTTCGGGTTATGAGCCCGACGAGCTACCAGACTGCTCCATCCCGCGATAATAAAAAATGGACCTTGTAGGACTCGAACCTACGACAGGACGGTTATGAGCCGTCTGCTCTAACCGACTGAGCTAAAGGTCCAAGTTTACAAAATAGCGGCGGGGGGGATCGAACCCTCGACCTCCCGGGTATGAACCGGACGCTCTAGCCAGCTGAGCTACACCGCCATACTGTAACCAATATGGAAAATATTAAATTACAAATCGGGAAGACAGGATTTGAACCTGCGACCCCCTGGTCCCAAACCAGGTGCTCTACCAAACTGAGCCACTTCCCGGATTTATGCACCCAGTAGGACTTGAACCTACAACCTTCTGATTCGTAGTCAGACACTCTATCCAGTTGCGCTATGGGTGCATGCATGCCGAAGACCGGGGTCGAACCGGTACGGTTGAAACCAACCGCAGGATTTTAAGTCCTGTGCGTCTGCCAATTCCGCCACTCCGGCATATATACTATAAAAAGCGGAAGACGGGATTCGAACCCGCGACCCCCACCATGGCAAGGTGATGTTCTACCACTGAACTACTTCCGCACAATGCCGATTATACGACTTGAACGTACGACCCCCTGTTTACAAGACAGGTGCTCTACCAACTGAGCTAAATCGGCATGATATAAAATACGGGTGGCGGGACTTGAACCCGCACGTCCAAAAACACTAGAACCTAAATCTAGCGCGTCTGCCAATTCCGCCACACCCGCAGATCGGGGCCATGAGTCGTGAGGGACTTGAACCCTCGACCCTCTGATTAAAAGTCAGATGCTCTACCGACTGAGCTAACGACTCGATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCATATGACTAGTTTACGGCATAGGCCGTAAGCACAAATATTAGTATATCGTATTCAGCCAGGAATGCAAGTCTTTTTTGCCTTTTTATTTTGAAAAAGCAAGGCGAAACACAAAAGAACAGCGTAAAACCGCTGTTTTGGGAAAGATTTTAAAATCAATTACATAATGTTGATCTTCTTGTTGGCAATCAGTACGATAGACAGAACGCAGAGAATTGCAATAAAGATAAAGGTGATCTTTTCGTTCTTGTTGAGCTTTCTGCCTTGTTCACGGACGCCTTGGTAATAAACGATTAGGCCTGGGATGTAACTCAAGGAAACAACCAAGACTGATTGCCAGCCAGCCAAAATCATGCACATGAATTGGAAGAGGGCTGCCAATAAGCCGTAGATCCATTGAGTCCATTCCTTGTGTTGTGTTCACGGCTGAACTTCATTTGGTACAAGCCGACAAACAGGTATGAGAACAAGATGGCACTTGAAGCCAAAGTGTAGCAGAATTCGTAAGCCTTGTCAGTGAAGAGCAAGGAGAAGAGGAAAATGGTCTGCAGGATAGCAGTAGTGAACAGGGCGTTGGTTGGCGCCTTCTTGCTGTTCAGCTTGCCCCAGAACTTAGGAGCAGCACCGTCTTCAGCGATCAAAAGCATGGTTTCTGCTGGTAGCATGGTCCATGACAGCCAGGAAACGATAGTGGAAATGATCAAACCAATGTTGATGATCATCATGCCCCAGTCGCCGACGATCATCTTCAAGTCGTTACCCAAAGCTGGTTGTGCAGCGCTGGCCAATTGGGCCCGGGTAAGTGAGCCGCATGGCAGGATTGAAATCATCATGTAGAAGACCAAAAGCAGGACGAAACCAAGCAATAGTTGCTTGTTGCGCTTCATTTAGGCTCTTGGCACGTGACCCCATGACTGAGGCCCCTTCAACACCGATAAATACCCAGATCAGGGTCATCAAAGTCCCCTTCATCTGTGGCCAAAGGCCGCCAGTAGTGGTCCCCTTGGACAGGTTGTTGGCAACTCTGCCCCAGAAGTCAGCGGTGAACATCCCGCCCTTGAAGGAAACGATGCAGATGATTACAAACATAATCAATGGCACAACCTTGCAGAAAGTACCGATCGTGTTAACGAATGAGGCACTTTCAACACCGTTGTTAACCAAGAAGGTCAAGGCCCAGCAGAAGATGATAGCCACGATGATTGAAGGCAGGTTTGAACCGCCCTTGAAGACCGGAATAAAGGTCCCGATCGCGCTCATCAGCATAGCCGCAAAGGCCAGGTTGCCCAGTCAGGCACTCAGCCAGTAGGCCCAGCCGGAAATGAATTCGCCCAGAGGGCCATAGCCAGCCCCGGTGTAAGCGAAGATATCACCCTTAAGGTCGGATCTCTTCTCAGTCAAATTGTTCAATGACAGAACAAGCATCAAGAAACCAAAACCGACCAGCAGCCAGGACAAAATAGCGGGCCCTGGAGCGGCAGATTGGGCAATGGAACTGGTAATGACGAAGATCCCAGTCCCAATGGAGGAACTGACGATCAAAGCGGTCAGGCCGACAAGGCCTATCCCGTTTTTGTTTACTTTCTCTTCCATGATTTTTACCTCCCAAATACTCTTTCCACCTAAAAAGGCGGAGATAGTCTAAGCCCTTGAGCGATAGACCAGCTCCGCGATTTTAGGATCTTAAAACCAATTAGATGTCTTCACGAACAATTGGCCGGCACCATGCACCTGGGCCAAGTCCACGAAGGCCTGCCCTTCCAGCCAGTTTGCGCTGACAAGGACGAAACCGACCCTTGAAGGGGAAGTTGCCTGGTATGACGACCAAGGTGCCGTTTGCCGCTGCCTCAACTGGCGGGATGCCCAAAGAACCATGCTGGATGAAGATTCAACTAAGGGCGTAATCGTAATTGAATCAGTCAACGCTGACCAGGCGCAGCGAGCTAACGAAGCCATGAGCGACTTGAAAGAGCTTTTGGGAGAATTCTTCGGCATCAAGCGGGACAAGTCCGTCATCTTGCCCAAGGACGCGCCAAGCGTGGACGTTGACTAAAAAACTATCAACAAGTTTTCCACAAGCAAAAAGTCTTACCCGTCATAGGTAAGACTTTTTTCGATTGACTAAAATATTTTACTTCTTTTCCTGGCTCCAGACCTTTTCTCCGCCAATCCAAGTCGACGCCGGCTTGACCTTGGCTAAGTCCTCTGCCTTTTGACTGAAGATGTCTCTGTCCAAGATGACAAAGTCGGCGTCCTTGCCCGGGGTCAAGGTTCCATTATTGACGAAGCCGCCCATCTTGGCCGCGTCTCTGGTATAAGCCAGGATGGCCCGGACTACTGGGATACCTTCATCTTCATTAATAAAACCGCCTGCTGCCGTGTGCCGGGTCACTGCCGCGTAGATTCCGTAAAAAGGACTGTCCGGTTCCGCCCATGGGGTGCATGGGGCATCAGAACTGAGGCTGAAAAGAATATTTTCTTTGTCTAAGCTCTTGATCCGGTAGGCCATTTTCAGCTGGTCCGCTGACAAAAACTGCCGGTAGAAATCTTCTTCGGCGAAGAAGAAGATCGGCTGGGTGGAAACAGCCAGGCCAATTGTTGGCCCCTTCAGCTCCTTGAGCATGGAGTCGGATAAAAGTGAAGCGTGCTCGATTCTGACCGCGACTTCCCGCATGAAGCCAGTTGGCCGGCCGGAAGCGTCTTTTTCAATCTTCCCGCCCGCCGGGTCCGGCGTATGCTCATCAATTACTGCCAATTCCAGAGCCCGGGAGTTGCCCACAGAAGAGTGGCAGTCAGACCGGTACAAGAAGATCGGCTGGGTAGTTGACACCTGGTCCAGGTCATCTCTGGTCGGGCTCCGGTGTTCAGCCAACTTGCTTTCGTCAAAGCCCCAGCCCTCAATCCAGACGTCAAGCCCCTGGCCATATTCCGGAGTATGGCGGAGGGCTTCCTGCATTTCACTAATACTGTTAACCAAAGGTGGGGTGCAGGCTGCCCCATGCAAGGCGTCAGCAATATACTTGGGGTGGGTGTGGTTGTCGATCAGACCTAGCAGGACGGTTTATCCCTGAAGATCAATGATTTCACCCCAGCCTTTTTCCCCAATAGCCACGATCTTGCCATCTTCAACCGTGATTGAATCGGTAAAGGCCGTCTCGTTTTCCCCGGTAAAAATTTTCCCGTTTACAAAAGTTCGGCAGTTCATCTTTTTCTCCTGTTTTCCTATTAATCCTAATTCCGCTTATTAAACGCTTACAATTTTATTCTACTCAGAAAGCAGACAAATAAAAGTAAAAATTAGGCAAATAGAAAATAAAACAAGAAAACAAAACATACTAACCTAGTGTTGGATGATTACTCGACGGAGTAGTCGTTCAACACTTTTTCTTTTACTATGTAAAGTGGAGATGAAGCCAATGCCGTGAGCTCTTTGGACACACGATGTCGTAAATAAAACGGGCAGCTTCACCATTCAATTGTGAATCTCGTCTAAGTATGTTGGCTGTTAAAGTCCTGTTGAGAAAATTAGATCTGATTGGATTAGGTGGAGGTAGCTCATCTCCGAGTAAAGCGGAGGTTTATTCTTATGGATTTATTGAAAACTGTTTTCGGTATTGATGTTAGCAGCCGAAAGTCTAACGTATGCATTATGGTCAATGGCCAAAAAGTTAATGACTATGCCATCTCCAACGATATGGTAGGCTTCAATCGGCTGCTGGGTGACCTTAAGCAGGTTACTAAACCGCAGATTATCTTTGAAGCAACTGGCGTCTATTCCAGAAGACTCCAGGCGTTCTTGGACATGCACGAATTGCGCTATGTCATGATGAATCCGCTAGAAGCCAAAAGAAAGACAAAGGATGACCTGCACAAGAACAAGACCGATAAGCTTGATGCCTTGTATCTTGCCAAGCTGCAGTCTGAGTACCCGCAACGGCTGGCCTACGTTCAAAGCAAAGAATATCAAGAATTGATGGCCAATAACCGCATCTATGAGCAGGCTTCGCACGATCTGATAAGCAACAAGAATAGACTGCACAAAGCAGTTCAGCTCACTTTCCCAGAGATTGAACACTTACTGGCTAATCCGAGAGGGAAAAACTACTGGAGTATTGCTCTCAGATTCCCACATCCAGATATCGTACTAGAAGCAAAAGAAGCCGATATCATCGACTTCTTAAAAGGCTTATCTGGTATTGGTAAAAAGCGCGCTAATGACATAACGCAAAGCCTTATTCGTTTGGCTAAAGTCGCATGCCCAGCTGTCAAAAAGAACAGTGCTCATGTCCGTGGCCTCAAAATGGCTATTAACAACATTCTGAGCGCTGAAGAAGAGTGCCAGACTGCTTTACAGGAGATGGCTAAGCTGGCTCCTAAACGGGATCTGGAGATCCTCACAAGCATTCCAGGCATCGGCGAAAACACTGCTCTAAGAATCATTAGTGAGCTTGGGGATATCAGACGTTTTAACAACCCTAGCCAATTAAATGCCTTCGTTGGTGTTGATCCTCAAGTTTATGAATCTGGCAATCTCACGGCCCACTTGTCAATTTCAAAGCGTGGGACAGCTATTGGCAGAAAGGTGCTGTACTTGGCCATAAACCAAATTCAGTCGGCTAAGAAAGCGGGAAACCCTTGTCATATTGCGGATTATTACGAGAAACGAAAACGGTCTTCTGAGACTGCAAGTCACAAGAAGGCCGCTATCGCATCGATCCATAAATTATTACGGACGATCTTCGCTTTAATTAAGAATGATCAATTGTATAGCTATGACGTAGCCAAACATAACCAAAGACTTTTGTCATAAAAATTGATCCAATAGATATTATAACAGCCTCTTTTTTGAAATTACAGAAGGTGGCTGTATTTATCATGCCCTAAATCAGATATTTAACTCGATTCTCCGGGAACCATTTCCCGATTAGGCCCTTATTTCAAAATAAAATTGCCTAAAATCGTTGATAACACTTGACTTAGAGTAGAAAAAGAGCCAGACTTCCGTCTGACTCTTGTCTCGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTACGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCAAAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAATGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAACGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGTAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAACTTGGCCTTCCGGCCAATGGAGGCAAACGGGATCGAACCGATGACCTCCTGCTTGCAAAGCAGGTGCTCTCCCAGCTGAGCTATGCCCCCGTAAAATATCAACTTTTAAGATGTTACTCCATCTCGGCTGAAATGTAAAGACTTTTCTTTGCATTTCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCTGAGCTACAGGCCCAAGTTCTTATCGTTGGTACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCCGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTACCCGAAGGGAACCACCTATCTCTAGGTGTAGCGCAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTACGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTGCGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCATCCCGAAGGAATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACATTGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCAAGTGACGCAACGCTTTATATCTTACTCGCTTGTTTGATTCTTGTCAACAAGTTTTTGATATTTATTTTTTGCCTCCGCGAGACTTGTTTGTCTCACACGGCAACAGATATTAGTATACTAGCTTTTTCTGATTCGTCAAATTTGTCATTTTATTCGGTTTATTATGTGAACACACGGCAGAGTTGTTGTTGCTCAGCTTTCTCCTTCAGCGGCAATAAATCGGATTAACAGCATTTTTCCTTCTTTTAACAAAGGATTGTTCTTATTTCGCTTGCTTTTCCCGAAAAAAGCAGAGAAAATTTCTGCGATTTTTTCTAAAAATCGGCAAAAGAAGCTGAGCAAAAAAATGGCGACCTAAGTCACCATTTTCTTCACTCCATCATACTCTTTTTTCCCAGTTTTTTCTTTTCTCTCTACACTCTACATTCTTCAAATCTCTGTATTTTTATCTCTGCAGTTTGGCAACCAGCTTGTTTGGCAAAACGAAGCTCTGGCTGCCCATGGACATTGGGCCAACTTCGCCTTGGTTGAAGACGATAACCACCTGGTTCTTCTTGTTGATGTAGAACTGCTGCTTCTTCTTGATCTGGCTGAAGCCGTCCGGATTGCCATTTTCCTTGAGGAAGTAGCTCTTGTTCTTGTCAGCCTTCATTTCCTGCTTCATCTGCTTAATGATGTTCTGGCTGATGGCCTTTTGGTAGTTGCTGCCGCTCTTGAACAAGTCCCCCAGCTTGACCTGCTTGCCGCTGGCCTTGCTGAAGACGTAGTAGCGGCTGCTTTCCCCGCTGTCAGCTTGCGTTTGCACGGCTGTCAGCTTGACCACGTACCAGTAGCGGTTGTTAGTCACTTGCTTGGTCTTGACCGTCAAAGAACCATAGCCGCCCTTCTTCAGAGATGCCTTGAATTTCTTGGTCAAACGGTCAGTTTCCTGGACAATTTCTCGGTTGACTGCCTGGCTGCTCTTCTTGGCCTCCTTGGTTGCCGGCCCGGTTACCCCGCTGACGGCAACTTTATCAACAGAAATATCGGCTGAATGCTTGCGGCTTTCATAGTGGTAATCACGGAAGGTCACCAGCTTGAAGTAGTTCCCCACAACTAGCAAGTTCTGCATGGCATTAGCCACCTGCGGACTCGTGTTTGGCAAAGCCACGCTGAAAGCAGCCGCGGCCGCGATCCCTGCCACCAGGCGGACCCACGGCTTGCGCTTGGCTGACAAAGGAATGACCTTCTTTTGCCCCCGGCTGGCTGCTGCCTCCACGATGTACTCAGTCTTGATTCCGCCCATTGCATCCATTAAGTCAGTGTTTTTCATAATAATATCCCCTTTAGATATACTTTTCTTCCTGCAGCTTTTTGCCCAGCTTGCGGCGCATCCGCAATAATGATACCTTGACAGCCGACACGGTCATCCCGTTAGCTGCCGCAATATCGCTGACAGCATCCATGTAAAAATACCGCTGAACAAAAATAATTCTTTTTTCTTTTGGCAGGCCTGCCAGAAAATCATTGATGATCTCCGTCAAAGCGCTGCTCTCAATCCCTTCCAGCTCTGCCGGCCCCTGTACCGCGCCGGATAACTCTCCAATTTCATCCAGCGAGGTGGTATATTGATCCCCAGCTCGTTTCTGCCGGTTTTGGTCGCGGACCATGTTCAAGGCTCCGTTGCGCGTGACGCGCCCCAGGTAGGCCAAGAGGCTCTGCGGCCGCTTCGGCGGAATCGTGTTCCAGGCTTTCAGCCAAGTATCGTTCAGGCACTCCTCAACGTCCTCCTTATCCCGCAAGATGTTGCGGGCAATCGTTGAGCAGTATGCCCCATATTCACTCTGGACTGAAGTGAGAGCAGCTTCGTCTCTGGCGAAGAACTGCCCGATGATTTCAGTTTCTCTCACTGTCTTTTTCCGTCCTTTTACTTTTTGTTTTTCGAGGCCCTCATCTCCTCTACCCTAATAGACACCTAAGGGAGCTGAAAGGTTACACTTTTGCAAAAAGTTTTTTAGAAAAATTTTCCACGCAAAAAGGAACCCCTCCGCGGAGTTCCTTTTTGCACTAGTGCCACTTAACTTCTGGCGTGATCTTGGTCATGCCGTGCATGTATGGACGCAAAGCTTCTGGTACGGTAACCGTGCCGTCTTCGTTTTGGTAGTTTTCCAAAATAGCGGCAACTGTCCGGCCGACAGCCAGGCCTGACCCGTTCAAAGTGTGGGTCAGCTTAACCTTGCCGTCTTCGTCACGGTAACGGATTTGTGCCCGGCGGGCCTGGAAGTCAGTACAGTTGGAGCAGGATGAGATTTCCCGGTAAGTGTCCTGGGCTGGCATCCAGACTTCCAAGTCGTAAGTCTTGGCACTGGTGAAGGATGCATCCCCGGTTGACAAGGCTACAACCCGGTATGGCAGACCCAGCTTTTGCAGCAGGTGTTCAGCGTTGTGGGTCAGGTTTTCCAGTTCCTTCCAGGAGTCTTCTGGCTTAACTACCTTAACCATTTCCACCTTGCGGAATTCGTGCATCCGAATCAGGCCCCGGGTATCGCGGCCAGCTGAACCAGCTTCACTTCTAAAGGCTGGTGACAAAGCAGTCACATTGATTGGCAGGTTCTTGCCATCAATGATGTCACCTCTGAAGTAGTTGACCAAAGGAACTTCAGCAGTTGGAATCAAAGTCAGGTTCCGGGCTACTTCCGGGTCGTCGTTGTCAACAATAGTGTAGACGTCTTCCGTAAACTTCGGGAATTGGCCAGTCCCTTGCATTGAGTCATTGTTGACCAAGGATGGGGTGATGACTTCAGTGTAGCCTTCGCTGGTGTTTTCATCCAGGAAGAAGTTGTAAACTGCCCGTTCCAGCAAAGCGCCGGCACCCTTGTAGTAAACGAAGCGGGCTGCGGAAACCTTGCTTGCCGCATCCCAGTCCAGGATGTTCAAGTCAGTGCCCAGGTCCCAGTGAGCCTTTGGCTGGTAGTCAAACTTGGTTGGTTCGTTCCAGCGGCGGACTTCTTCGTTGTAGCTTTCGTCAGGGCCAATTGGGTCTGAGTCAGCCGGGAAGTTTGGCAAACGGAGCAGGATGTATTCTTGCTTTTCCTGCAATTCGTCAACTTCCTGGTCCAATTCCTTGATCTTGACGCCGACTTCACGCATGTTGGCGATGGCTTCACTGGCGTCTGCCTTTTCCCGCTTGGCGGCAGCAATCTTCTTTGAAACTTCGTTTCTTTCTGCCTTCAAGTTTTCACATTTCACCATAGCTTCCCGGCGCTTGGCGTCGATAGCTACCAGTTCATCCAATTGCTCAGGCTTGATGCCCCGAGTTGCCAACTTTTCCTTGGCCCAGTCAAGATTCTCGCGAATGACCTTAATATCCAGCATATATAACCTCCGAAAAAATAAAAAAACCGGTCCGTCCCAGTCTTGGGACGAATCGGCGCACGGTTCGCGGTACCACCCAGTTTCGGCTCAAAGAGCCGCACTCAGTTGAGCGTTAACGGTGCCCGGCCGTGCAATGATTAATTGCCCACACTAATGAAATCTGGAAGCGACCGCCGTCCGCTCTCAGCATACGCGGACTCTCTGTCGGCAGTCTAGGGATTTCGTGTTTGTCTCTATTCTATGCTATTCGCTCCGTTTTAGCAAATAATACTTGGCTGAAAAATCCAAAAAAGGCGGAATTTGCCGGTAATCGACTTCATACATCTGCCGAAAGCCCAGCTTTTGCAATAAATGCTGGGGCCGCAAATTGTTTGCCCGGCAGCCGGCCCAGATTTCCTTGATCTCCGGATCTTTAAAAGCCTCCCCTAAGAGGCAGTTGATGCTTTCAGTCATGTAACCCTGCCCCTGGTACTTTTTATCCAGTAAAAAGCCCAGCTCCCGGGACTGGCCATCCCGGGGGTACAGCTCCAGCAGACCGATCGCCTGGCCCTTTTTCAAGCAAATCATGTAGCTGGCCGGCCGCTGCTGGTAGGCCAAGGCCCCTTCTTCAGCTTCTGGCAGATTCCGGTAATGGGCAAAGCCTGCCGTCTCCTGGTAATAGGGATCCTGCCCCCAAGACAACAGCAGCTCAGCATCTTCCGGCCCGACCGGCCGCAAATATATCCGCTCACTCTCCATCACATCAGCCTCATGATCCAGCGGGCCCCGTAGACCAGGCCCAGGCTGTAGACCGCGATAGTCCAAGGCTTGCAGAGAACGATAATCCAGAAGTAGGTCCAGGGCTTCATCTCCGTTAGACCCGCTAAAAGGCAGAGCAGGTCATCCGGAGCTACCGGGGCTAAGATACAGATGGCAAAGAGCCAATTGAACTTCTTTTGGTTCTTAGTCCACTTGGTATACTTCTCCAAGCTCTCTTCCGACACGATGTGCAAGATGAAGGACTTGCCGTAGTAGCGGGCCAGGAAGAAGTTGATCAAGGAGCCGATGACGATCCCGATATAGTTGTAGATAAAACCGGGCCCAGCGCCGAAGAAGACGACCCCGGCCAAAAGGGAGACCCCGCCGGGGATAATCGGGATCACGACCTGGATGATCTGGATCAAGACAAAGATGATGGGGCCGAGGATCTTTTTGTCAGCCAGATAGGCGCTCATCTTCGCCTGGCTGGTAAAAATCCCCAGCTGGTACCAGTAGATGCAGAGGCCAATGATCACGATGGTTGAAATAATGGTCAACCGGTTGATCAGCTTGCGGCTTTGTTCGTAACTCATGGTCTTTTCCCCCTAAAAACAATTCCAGGATAATTTTAGCAAAAAGCCTCCGGCAGCCCCACCAGTTTGCTTCAAGTTTTACCCAAACTTATCCAAGTTCCTTGCAAAAAAGACAAAAGACAAGCAGAAATTATTGCTTTGAGTATATAATTAAGTTAGAAGTAAAGATCAGAATTTAAATCAGATCAGAAAGGAAAAATGAGATTATGGTTGTGACTGTTAACAATATCGCTTATGACCTTAAGCATGGTCTCAAGACCGACATCTACTATCCCAACGATACCGACTCACAGACAAAAATCCTCATCTTCTGGCACGGCGGCGGCTGGTTCCGGAGGAGCAAGGAAAGCATCAGGGACGTAGCCATCGACCTGGCCAACGCCGGCTTCATGACCTTTGTGCCCGACTACCGGCTGGCTCCAGCGAACCACTTCCCGGCTGCCCACGAGGATGCCCTCAACTTCGCGGCCTGGCTTTTAGCTTCAAACTACACCGACGAAGGCGATGAAAACAATATCGTCCAGATCGGGGCCAGCAGCGGCGGCACCCTGGCTTTGAAGGTGGCCGGCATGTACGGCTTTCCAACCGTCACCTGGTCAGCCCCGGTCGACTTCAGCAGCTGGCTGGCCGACCACCAGGAGGTCAAGCCCTCAGTCAATGCTAAAGAAGAACTGGGCTTGACCAAGCAGCAGGCCATCAATGAAGCCTTTTACAAGTACTTCGTCTTGACCTATGTCGGCAGTGAAGACTACGACCTTTTGGCCGACCTGGACGCTCAGAGCTACGACTACAGCAAGTTGGGTCGCCTGCTCATGCTGAATTCCGCGGCTGAACTAACCGACCTGGCCGGCGTTACTAACTTTGCCGGCCACCTGGCCGGCCGTGGCCACCAGGTTGACCTGGAAATCATCCCCGGCCACGGCCACGCCATGGACTACGGCCGGGAATATCTCCGGGAAAGCATGACCTATCTCAATTATGCCCTCAGTCTGAAAACAGGAAGCGAATAGCCATGATAAACATTGAAAAATTCATCAAAATCCGCAAGTCACTCAAACTCTCCCAAAATGAGCTCTGCAACGGGATCTGCACCCAGTCAACCCTAAGCAAGTTCGAAAACAACGGGCAAATCCCCTCTTTCAAGATCCTCAAGCAGCTCTGCGAGCGGATGAACATCTCTTTATCCGACATCGTGCTGACCAGCACGGAAAGTGAAATTGCCCAGAAGCTTTTTTCCGCGGACTTCTACTTTATCACCTACGACTATGACCAGGTCCGCAAGATCCTCAAGCAGGTCAATGAGAAAAAGATCCGCGACAAGCAGGACCTTCTGCACTACAACTACCTCTGCGGGCAGCTGGCCCTGGACGGGGACCACAACGATGTTTCAGCTCTCTTCTATTTCAACAATATCTTGACGACGGACAACCTCAAGGCCGACAACATCTACCGCCTCTTGGCCCTTAAGGGCTGCAGCCAGGTTTACGCCAGCCAGGACATGGACAAGGCCTCTCACTACTTTGACCAGATCCTGGGCCAGATCAAGAAAGTCGAAATTAAGGACAGCCTAAGAGAACTCCAGGTCATGTCCATATTGACGGCAGCCGGTGAATTTTATGGGCAAAACGGCCAGTACAAGCACGCTGACGACCTGCTCAACTACGCCTACGAACTGGCATCGAGCCACCATGTGGTCTACTTTTTAGCCCGGGTCGTTTACCAGCTGGCTCTGAACGACTTGGCCCAGAAGCGGTCCCTAAATACTGCCCTGGAGCACTTGCATGACTCCCTGGCCTTCGCCCGCCTGAACAAAAACGAGGTCATCCTCAAAGAAGGCAGCAAGCTCCTTAAAGAACTTGAAGAGAAAGCATAAGAAAACGGTCAATCGCGAGATTGACCGTTTATTTTTCGCCTTAAATAGTGCCGTAGCCAGTCAGCGGCCGGCATGGGCAGTTGTTAAAGTCGTAAGTCTTTAAGAGTTCCAGTTCCTGGTCACCCTTGATAAAAGCAGTTGCCCCTTCAGACAGCATCAAGTTCATGATTGGCTTCTTTTCCGGCTGGTTAGTGAAAGGCACGATGATGACCGGCTTGTTCTGCGCCCGCAAAAAGCCGATTTCAAAGGCGCAGCCGTCATCCAGTTCATCCATGTCGTAGAGGAAGACCCCGCAGTTGGCCATGGACAGGCCGTTGATGTCGTTTTGGTAGGTCTGCTGCTTCCAAAGCAGGCTGCGTTCGTCGCCAAAGCCGACATTCGGGTCTTCAGCCGGGTCGGTTACCTGCTGGTCAAAGGGAAAGTGGACATGTTCAACCGTCGGGTTGGCCGCCAGGTATTCGCGGACCTGCTTGGCCCGGGCTTGATGGTGGTCACGGTGAAAAGATGAACCTAAATAAATACGTGCTGTTGCCGTCATGAATCCTCCTAGTGGACGCTTAAATAATCTAACATGGTGTAAATGGCGCGCTTGTTGGCGCTTGGCAAAGGCTGGGCCAGAATCTCAGCCGGAGTCTGGTGTAAGTCATTGCCGCTTTCAGCGTAGGCGCCGTCATTGATGACGATTTCGCGGACATTGTCAGCCAAAGTCTCTAAGTGAAACTGCAGGCCGATCACGTTGCCATTGACCAAAAAGCCCTGGTTGGCCAAGAGGTCGCTGGAATAAAGCAGGTGGCTTTCAGCCGGCATTTCAAACATGTCCTGGTGCCAGTGCAGGGCCAGGAGCTTGTCTGGCAAACCGGCAATAGCGTCATTTTGCTTGTAGACCGGAGCCCAGCCGACTTCCTTGTGGGCCGCCGGGTGCACGCTGCTGCCTAAGCAGATGGCAATTTGCTGGGCGCCCAGGCAGATGCCCAGAATCGGCAGGTGTTGCTTGAGGCAGTCCTTGATCAATTGCCGCTCTTCTTCCAGCCAGGGCAGGTCATCGCCCGGACTCATCGGCCCGCCCAAAACGACCAGCATGTCAGTTTCATCAGCTTTCGGGAAGATGCCGAAAGTTTCCGGATGGTATACATAGACTTTATTGTCCCGGTCTTCGGCCCAGGCCTTGATGGCCCCTGGCCCCTCATTCGGGGTGTGCTGCAAAACGTTGATCCGCATAATCTCGTCCTTTCAATTTTTAAATATTTTACCATGCTCACCGGATTTTTTCATTAAACGGGAAATTTTTACCAAAAGCTTTGAAAAAATTGCCGTTAAAATATTCCTTCCGCCAATTGCAAGAATAAATTGAACACTTACCATAGCATCTCGTAGTTTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAATCTTGTAGTTTAAGATCTTCCGATGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTTGCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAAGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCAATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTGGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGCAGCCCCTGGATTGTAGTCCGGTCGTTCAGCTTAAGGTGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATTGGTGTGGTTTAGTGTTAGAATATGTATGATTCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTGAAATGGATTTTTTGTGCTCTAATCCAGTGAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGTTACTTTTTTCTTTAATCTTTATTACATTACCTACTTTTTAGTGTTTCTTTTGTACTAGTTTTTGCTGCTTAATTCTCAACTTTTAAGTTTTTATTTTTCACGAATCTCCAAGTAGAAAATACCAAGAAAAGGCCGCTGGTCACTCAGACCAGCAGCCTTTTTGTCTGCAAAAAACTATTCTTCACTATTTTGCCTGGGCTTGACCATTGGCTGGAACATGTTGATACCGGCCAAAACCGTGGTCAGGCAACTGACCAGGATCAAGAGGTAGCCGGAAATGCCGATGGCCACGGCATAGCTCTTCAAGCTGGAAACAGCCTGGCTTAAGTAGCTAGCCGCGCTAGTTGTCTGGGCCAATTGGAAAAAGAGGTAGATCAAGACCAGGCTTTCGACCAGGGACAAGGCAAAGGCCCGGACCCGGGAGACCCGGGTATTCTGGCTGACGGCCAGCATGATGAAGACTGGCAAGAGCAGGAAGATAGCCAGGAAGAGGTAGAGAATCAAGGCGGGAACGATCTTACCCGCCGCGATCTGCCAGTTGGCGACTTCAAAGAAGACGCTGGCCACGGTCAGCTTACTGCTGGAGGTCACGAAGCCTGTCCCCAGGAAAAGCAGGACCAGGGTGATCAAGCTAGTCAAGAGGATGGAGAGCTGGATGATGCCGAAGTTCCGGGGCTTCTTGGTCTTCTTTTTCACCTTTTCCACTTCCACCTTAGCTTCAAATTTCGGGTGGGCCTGGGTGAAGTCTTCATTCTTCTCTTCAATTTCGCTTTCCTTATCATCAAAGGCATTGAAGACTTTAGAAGCCCAGTTCCGGATATATTCAGTCAAGTTCCGGTCAGCCGTGTATTCACCCTGGGAGTCCCGGTAGCCGGTCCAGATGAGGAGAGCCATGGAGACAGCAAAAGCCGTCCAGCCCAGGGGCCGGGAGAAGCTCATGATGATCAAAAGGCCCACGCCGACCAAGAAGGCGATCGTGGTGTTGTCTCTCATCCACTGGAGCATTTTTTCCGCGGTTGGGTTGCCGGTAAAGGCATTCCGTTCCTGCTTTTGCTGGTAGGCGGACCGGCTGAGCTTGTCAACTGGCTCTTTTTCTAAAGACCGGTCAGCTTCTTCTAGCTTAGCTTCTCTTATTTCAACATTTTCTTCTACTGCTTCTTCCGTAAAGTAGTCGCGGCGGTATTTTTCCACATTGAATCCACAGTTCGGGCAGGCCTTTTCCTGGCCAGTCAGAGCCTGGCCACAGTTGGGACACTTTTTCATAGTAATCGTCCTTTGCTAGTGTTTCTTTTTCCACATTATAGCATTTTCCTTCCGGAGACAAAAAAGAACCCGCCAAAGATGACGGGTTCTTAATGCATTATTTAGCTTTCATTTAAGACTTCTTGCCGAAGCTGAGGCTCTTCTTGCGGCCTGCCCACTTAGGCCATGGGAAGCCTTCGTAGGTCAGCTTGGTTGAAGCAGACAGGTTGATCGGCATCAGGAAGACCAGGATGGCCAGACCGATGATGACCCCGATGGCCACTTCGATCAGGGTTGGCACGCCTGATGGGATCAAGGCCGCGAAAGTACCACCCAGGATGACGGCAGCTGAGATGACAACCGTCCCGATAACCGTACATGCCTCCAGGATTCTTGCGCTAGACAAGGCATGCGGATCGCTGTCGCGGTAGCGCATCATGACGAAGATGCTGTAGTCGACCCCGAGGGCGATCAACATGATGAAGGTGAAGAACGGCACGTTCCAAGCCAGGGTGCTCCGGCCCATCACGCCGCTGACAACCCAGCGGGTGATTGACAGAGAACTGATGTAGGCCAAGAGCAGAGTCCCCAGGATGTAGATCGGCTGAAGCAGACTCCGGGTGACGAAGATCAAGGCAATGCCGATACCGATCAGCATGATTGCCATAGTTCTGGTAAAGTCACCGCTGGCCGTGTTCTTGGTGTCTTCGATGGTTGAGCTTTGCCCGCCCATTTCGACTTCAGCCTTGCCCAGGTCGGTCCCCTTGAGGGACTTGCGGGCCATAGCGCTCAAAGCTTGTGAGTGCTCTGCGGCACTTTCAGAACTTGGGTTGCTGTCCAGGATGATGATGATCATAGCACTCTTCTTGTCCGGGCTGAGGAAGACCTTGAGGGACTTCTGCAGATCGGCGTTGTGCTTCAAGACGTAGCTTGGCACGTAGAAGGTGTCAGAGGCCTTGGACTTGCGCAGGCCGTTCAAGTATGAACCGGCGGAAACCAGACCGTTGTTGACGGCAGTCAAGCCGCTGGTGATGGCTGGCGTATTTTCAGCGAGCTTGCTTGCGCCGCTGGAAAGCTGGCTGGTACCGGACTGCAGCTTGTCAGCCCCTTGTGACAGGGCCAAAGCACCTGCCATCCCCTTGCTCAATCCACTGTAGAGTGAATTTGAACCTGTGTAAAGCTTGTGAGCGCCGGTTGCAAGCGCGTCAACTGCTGCCTGCAATTGTTGCACTTCCGTGCTCAAGTCGGCCGTAGAAACTGCAGAAGTACCGCTGCCCAGACTGCCGGTGGCACTTTGAATGCCTGAAGCGGCACTATTCATGTTGGTTGCGGCAGTACGGGCAGTAGTCAAGCCGCTGCCTACAGTACCCAAACCACTGTTAAGGGTTTCTAATTCCTTTTGCAGTTCTGCCTTCAAAGTTGGGTCTGAAACCTTGCTGATTGAGCTTGCCAGACTGCCAGCTGCGGCACTTGCAGTTCCAAAGCCAGTACGAGCAGTGGTCAAAGCGGTCTTGGCATTGGTTAAACCAGTTTGCAGAGAGCCAACTTGTCCTTGCAGGCTTTGCAGACCGCTGTTCAAGTCGGTCAAGCCAGATGACAATTGGTCAAGCTGGTCAGCGTTCAAGGAGCTGGCATTTTCTGACAGCTGGCTCTTCAGCTGGTCAAGGCCGGCAACCAAGGTGTTCATGTTGGCCGTCAGATCCTTGGCGCCATTGGTCAAGGTCTGAGTCCCCGTGTACAGGTCCTTGGCCTCATCACTCAAAGTGCCGGTGCCTTCGTCGAGCTGGTCAGCCCCGTTAGCCAGTTTCTTGGCCCCGCTGGTCACCTGCTCGCTGCCCTTAGTCAATTTGCCGACACCCTTTTCCAACTTGGCGATCCCGTCGGTAACTGACTTCAGCTGCTTCTTAACGTAGAGCAGCTTGATCTTTTCGTTGTATGGCTCAGTCGCGGACATAACCTTGTCCACGCCTTCAGAATTGCGCAATTTCCGCGTCAATTCGTCGATCAGCTTCAAGTCCTTCTCATTGTCGAGCGTGTGGTCACTCTTGATGTAAAGGTATGAAGGCATGGCCATCCCTTCAGAGAAGTGCTTTTGCACCAGGTTCAGCCCCTGCTTGGAAGGCACTGAATCTGAAATTTCCGCCGTGTCGTCGTAGTTAAAAACGTTAGAGTAAGTAACGAAGAATGGTGCAACGACAACCGCTACAGCTGCCAAGAAGACAACTGGCCGCTTCAAAGTAGCGCTGGAAATCCCGTGCCACATCTTGCTTGGTTTTTCCCCGGCGAATTCCTTGCTTGGCCAGAACATCTTCTTGCCCAAAGTGGCCATGAAGAAGGGGTTCAAAGTCAAGAGGACGATCAAGAGGACCAGAACGCCGACAGCAACGCCGGAAGCAGACCGGTAAACGGAGAAGTTGGCTAAGCCCAAAGCGGAGAAACCGATCAGAATTGAGGAGCCGGAGTAAAGAATAGTCCGGCTGGCCTTCTTGATCGAGTCCTTCGTGGCTTCAGCCACCCCCAGGCCATTGCCCAGGTACTCCTTAAAGTGGTTATATAGCAGAATGTTGTAGTCTGTCCCGATCCCGAACAAAACAATCACCATGAAGACCTGGGTGAAGTTGGAGAACGGGAAGTTCACCTGGTTGACCAGGTTGGCCACGATTGAGAAGGAAACCAGGAAGGAAACCCCAACCGTCAAAAGTGACACAAGCGGGACAACCGGTGACCGGAAGACGATGATCAACACGATGAAGATGAAGACCACCGTGATCAATTCCGTCTTCTTGATCCCTTCTTGGATCGAGCTGGTAAAGTCATTGTTGAGGACGTCTGCCCCAGTGACGTAGGTTCTTACCCCACTGGTCTTGACGACCTTGTTGATCTCGTCGTAAACCTGGGAGATGCTCCCATGGCTCTTGGCGATGTTCATCTGCATGACCCAAGTCGTTCCGTCTTTAGACTTGAGCAGCTTCTTGGTCGCGATGTTGTTTTGCGGCGCCAGGTAGTCCTTGATGCCGTATTTTTTCTGGTTGCTGGTCAAGCGGTCGATTGAGGCTTCGATGTTGCCCTGGTCGGTCTCGGTCAGCTTACCGGATTTCTTGTTGAAAACAACCGCGACTTCGTAAGTATTCTTTTTCTTATTGCCCCATTCGTTCTTGATTAGTTTGGCTGCTTCGCTTTCCACGTTGCTTGGCAGGGAGATTTCGCTGTGCGCTCTAGTCAGTGAGTCAACGTTTGGCAGGGCAACCAAAGAAATCACCAGAATGAGCACCCCGGCGATCAAAGCGCCGAGGTGGTTCTTCAGTAACTTCTTCAACGTCCTTTTTCCTTTCTTTGTCTTTTACAATCAGTCTACTAAGCTAGGCATTTGACTGCTGGACGCTGGGCGAAACCAGCCGCCAGACCATTTCGTGATAGTTCTCCTCTGCTTCTCGCGGACTTTCCACCTTTTCCTGGCCATCTGTAAACCGGTCCAGGAAGACGTAGCCCAGGACAGCGCCAACCAAGGCGTGCTGGGAAACCACGTGTTCAGTGTCCACTTGCAGCTGGTCCCCCAAGTCCAGGATCTTAACCACCTCTTTAACCACTTCTGAATCATCAGAAAATTCATCCATGTGGTAAAGGAGGGTCGCCAGGGCCTGGTCTTCCAAAAGGCGGTCGCGGACCACGTCAGCAAACTTAAACAATGCTTCGTGGCCTGACAAACCGACCAGCTGCTTGAGCAGGTCCTGGTAGAGCAGGCGGATCCGGCTGGCCGCGACCAGCGACAGAAGTTGCGAGCGGTTCTTCACGTAATGATAGAGTGACTGGCTGCGAACGCCCAGATCCTTGGCAAGATTTGGCATGGTCGTCTCGCTTAAGCCCCGGCTTTCAATCATTTCCGTGGCTTTGGCCAGGACCTTGTCCAAGTCCAAAGTTCTTTTTTGAGTCATAATTACTACCATTTTTGAGTCATAATTACTACCATTTTCCTTTCAACTGTAGCAATTATATAACTACTAACTGAAGGTTTCAATCTACACTCTGTAAATTAATTCCACTTTCTATTGAAAGCGGTTCCTAAAGGCGCTATCATATATTCAGATAGGGGATGAAAACTAAAAATGAAAATCTGGTGGTTCGCAAACTTTTACTGGTTCAGTTTACTGATTTATCTAAATGTTTTCATGTTCAATTTTCATTACGCTGACGGCAGCAGCATCAATCCTTTCGTAGTAACCTTCCTGCTGCTGGCTATCTGCATTATGGTCGGGGAATTCCAATTCGCCTGGTATATGTGGCTGGCCACGAAAACTTATAAACCACGTAAACGCAAGAAAACACAAAACGACTCTACTGTCTGGCTGTAGAGTCGTTTTTCATTTCTTCTGTTCAGTTTGCTCCGTCTTTACTTTTCCATGACTTGCTTGACGGCTTGCCCCAAGGAAACAAAGTCATCAGTCTTGCTAGACCAGGCGCTGACCACGTAATTGTGGCCGTTATTGCTGATCAAGGCGACCTCTAAATTGCCATCAGCATACTGGTAGATGGTCCCCTTGGCCTTGCTGGCCAGCTTGGTCTTCCCTGTCATAGCAGTCAGAACCTGCTGGTTGTAGCTGCCGACCAGCTTGCCCTGGTAGATGGAAACCATGATCTTGGCCAGGTCACTGGCTGTCGTCTTGCCGACCACGGATTTAGAGAAGGTCCCCGTTAGCTTAGTCTGGCTGGCCCCCAGCTGCTTAAGGATCTTGTTGACCTGCTTAGTCCTGATCGTCCGCAAAAGCGCGTTAGCCGCGGTCTTGTTGCCCTTCAGCATCTGCTCGCGCAAGTAGCTTGGCCCATAGCTGATCCCGACCGCGATCGCCCTACTTGTCCCGGCCTTGTCAGCCTTGGTAACCTTGATAGTCGTGCTGGCCCCGATCTTGCCGGACTTTTCTTGGGCGTAAAGGGCGAGCAAAAGATAGAGGTAAAAAATCTTCTGGGAATCCTGGCCGCTCTTGGTATTGGTCACTTCCGCGAAATGGCTGCTCTTATTCAAGTCATAAGCCGCCACCTGGTAGCTGACGTCCTGGCCCATAGCCTTCTTAATTGCCTTGACCAGCTGCTTGTCACTGCCCTTGCTGCTCTTGACCTGGTTGTCATATTCAATGGAATTGACATTCGGTTCCTTGTCAGTGGAAGAAACGGTCTTTTTGACCTTGCCGGACTTCTTTACCTGCACCACCGTGACTTTCCGCATTTCAGCATCCTTGTTGGTGCTGGTGTACACGACAAAAGCCAGCAGGGAGGCGATCAAAGCCCCGACTACAATATTGTTCTTCATTAAAGCTCCTTGTTTCTAGCTCTTAATTCCTTTAGAAAAGATGGTGCTTACGCATGAAGAAGATCAGCCAGACCATCAAAAGGACGGTGATCAAAATAATGACTATCCAGTCATAGCTGGCCCCGAGAACCGGCAGCTTCACGTTCATCCCGTAAAAACCAGTCAAAATGGTCGGGATGGTCAAAACGATGGACCAGACCGTCAGGAACTTCATGGTGTCATTCAGGTTGTTGTTCATCATGTTGTTGGAAGTCGATGACAAAGTCTTGGTAACCTGCCGGGAAATCTGCACCATTTCTGAAGACTGGCTGGATTCAATCAAAACGTCGTCCAGCCTTTCCTTGGCCGCTTTGGAAAAAGTCAGCCGGGAGTGCTGCAGGCTGCGCAGCATCATCTGGTCAGTCTGAATTGAACTGGACAGGTAGACCAGACTCTTTTCAATATTGGACAACTCCACCAGGTCCTTATTGTCGATGTCATCGCTCAGCTTGACGTCTAGGTCGTTGCGTTCAGCATCCAGCTGGGTGATGGCCAGATGGAAGTACTGGGAAGCATACATCAAAAAAGTCGCCAGCAGTTCCGTCACATCCTGGGCGTGTGAGAGCCAGCGCAAAACCTGGGGATCATTGAACTCGTCAAAAACATAGCTGGTCTCAATCGTATGGAAAGAAAAGAGGTTCTTGCCCTGTAGCAAAAAAGTGATTGGCCGGGAAGTGAAGTGCTTGATGGTCGTCGTTGGCCAGACTGGCACGTCATAGACCAGCAGGTGGGTGTCGGTATATTGGTCGTAGTCGTAGTGGGGCCGTTCATGCCGGTCGGAAACGTAGGAAATGATTTCCGGGGTAAAATAAAACTCTGTCTGCAGGCGCCGACTGTCAGCTTCGTTCAAGCCATTGACGTCATACCAGTTAAAGTCTGTTTCAATTGGAAAAATTTGTTGCTTAATCATGGCTGTTCCCACCTTCATTTTACTCATTATTCATTTTACTCATTATTCATGTTACCATTTTTTAAAAATGAAGTTGTTTAAAGTAGGTAAAATAATGATGCAAATCACAGAAAAATATCTTCCATTTGGAAATTGGCAAACCTACTGCCGGATCGTGGGCGAGGCTACTGACCGCGCCCCGCTCCTCCTTCTCCACGGCGGGCCCGGCAGCAGTCACAACTATTTTGAAGTCCTCGACCAAGTCGCTGAAAAAAGCGGCCGCCAGGTCATCATGTATGACCAATTAGGCTGCGGCAACTCCAGCATCCCCGACGACCAGGCGGAAACGGCCTACACGGCCCAAACCTGGGTCAAAGAGCTGGAAAATGTCAGAGAGCAGCTGGGCCTTGACCAGATCCACCTTTTGGGGCAAAGCTGGGGCGGGATGCTGGCTTTGATCTACCTGTGCGACTACCAGCCTGAAGGGGTCAAGAGCCTGATCCTCTCCTCCACTTTAGCCTCCGCCAAGCTTTGGAGCCAGGAACTGCACCGCTTGATCAAGTACCTGCCCAAGGGCGAGCAGGCCGCTATCAAGGAAGCTGAAACAACTGGCAACTACGACTCCCTGGCCTACCAGGCGGCCAATGCCCACTTCATGGACCAGCACGCCATCAAGCTTACGCCGGACCTGCCGGAGCCAGTTTTGCGCAAAAAAAAGGGCGGCAGCCTGGCCTACTTGACCGGCTGGGGCCCTAATGAATATACGCCGATTGGCAACCTGCACGGCTATGAGTACACTGACCGCTTAAAGGACCTGCACTTGCCGGCCTTGATTACCAGCGGCACTGACGACTTATGCACTCCCCTAGTGGCTAAAAGCATGTACGACAACTTGCCAAATGCCCGCTGGGAGCTCTTTGCCGGCTGCGGCCACATGCCTTTTGTCCAGGAAAATGCCAAGTACCAAGAGCTATTGTCTGACTGGTTAATCAGCCAGGACTAGACCAGAGCCTTCTTTAACAAAAAATCTGTCTGACGGTCATCGCCAAGAACGAAGACATGCTCGCTGAACCGGGTCAAACCACGGCTGGCATAGAAGTTCTTGGCGTTTTCGTTGTGCTCCCAAACGCCCAGCCAGAGGACAGACTTGCCCCATTCCCGACCCTTTTCTTCCGCGAACTCAAATAGCTGCTTGCCCAGGCCCCGGTGCTGGAAACTTTTCTGCAGGTAGATCCGCTCGATTTCCAGGCCGTTTGGGTCGACCTCTTCGTTTTGGGCGTCGTCAACGTCCAGCTTCAAGTAGCCGGCAACTTCCCCGTCCGCTTTTAAGAAGTAAAAGAAGCTGCCCGGAGTTGCCATTTCTCCCCCAAGCTTGTCTTCATTGTAGTTTTCGTCCAAAAACTTGGCCATATCTTCCGGGCTGTTGTCTTTGCCAAAAGTATCCGCGAAAGTCTCCCGGCTGATGGCAATCAACTCTGGCAAATCTTTTTCACTAACTTGCACAATTTTTACTTATGTCATGCTTTGCCTTCTTCTCTTTTTCTGCTTTACAGTTTCTTAGTTAAGGCCGGTCAAGACCCAGGTTCTGAGCAGCATCCCTGCTCTTTCCCAGTCTTCTTCCCGGTAGTCGTGGCCAGCGCCCCGCATTTGCAAAAGTTCACCTTGCTTCAGCTGCTTGGCCATCATTTCCAGGCTGGCCAAAGGCGCCTGGTCGTCATCGCTGCCGGCAACAATGTAGCTGCGGCCCTGGTAGCCCTTGATCTTGTCCCAGTCCTTGATGACTGGTGACATTAAAAAGATCCCCCGGACGGACCGGCCAATTTCACTAGCCGCAACAGCTGCAGCGTTGCCCGCTTCCCCGTAGCCGGCAAAGACGATGTATTCGCTGGCCACCCGGTCATCGTTTCTAAGTTCGTCAAAGGCCAGGTGGTAGCCGCTGATGGCGCTGGCTGCATCTTCTGCTTCAAAGGTGAAGGTTAGGATGCCAGCGTCGTTTAAGTAGCGGCTGAGCCAATAGGCCTGGTCCTTATCGCCGATCTTAGCCAAAATTACCAAAGGGGTAATCCCTTCGATCGAGTTGACGGCTTCGCCCCAAATTCCCTTTAACTTGCCCTTGGCGCTGATTAAGGTCATCTCTTTTTCCATAAAAAACTCCTTACGATTTCTTACTTTACATTAAAAAACTTACAATATTCCTATTGTACTATTTTTTGCCGGAAATTAGGGCCGGTACTTGTAAATCGAGTTGTTGAGGTTGTCCTTGACCAGCTGGTCAAAAATTCCCTTGCCCTTGGCCGTAATCGCCGCGGCAATTTGATCATTGGCTTCCGTCAAAGACCCGGCGGTTGCTGGCTTCGCTTTCCGTTGAACTCATGGCCACGTTGTAGCTGTTGATCCCCTGCTCGTCAAAGCGGCCGTAGTCTTCTACGGCGTCGCGGACGGCGGGGAAGCCGCAGCCTTCTCCCTTTAAGGGAATTTCAACGCCAGTTCCTTTGGAGACAAAGAGCTCATCATAATTTTTAGCTGGACAATAGACAAAGCGCTTTTCGTTAAAGCCCTGGTCGTAGTCTTCATCTCTGGCCACGATCGTGGACCCGTCAAGGCTGGCCTTCTTGGCCCACCAGCATAGTTGTACAGTTGTCGCGCATTTTTCTTCCTTCTTTCTATTCGCTGACCTGCATGCCGCGGTCGATCTTTGCCCGGCCGGTTTCGTAGTCAAACTGGTAGCCCGGCTGCACATTGTAGATATAAACGTTGAAATCCAGGCTGCCGTCGGTGGAAACTGCCTGGAGGTTGATCCCCCGGGCCATGAGTTCCCGGCCTCTGAAAATTGGCGTTGCCTGGTAGATGACCTTCTTCCCGCTTCTTAAAGCTGACCGGACCTTGCTTTCAAAAATCGTCTGGATCTTCTGGTTAGAAAAGGCTGACTGGGTAAAGAGGTTCTTGGGGTTGTTCTGGTCACCGGACTGGTTCTTGGGGTTGTAGTTGCCGTCCTGGTCGATGCCGGCGGAAACTGAGTAGGCAATCAGGTGGCCCCGGTTGTAGATCTGGGTCCCGTTTTGCCGGTTGGAGTGCCAGCCGGTTGGCTGGACGTACTGCCTGACTCTTAAAGAGTCGTTAGCCACGTTCCGCTTCTCCAAAAAGGCGGTGTTGGAGCTGGAAGTCCGGTTCTGGCTATCCAGGTTGGAGTAAATGACCCGGTTGACCTTCCAGGCGCTTTTCACCAAGGTGGAGTGGTTATTGTTAACATAGCGCCAGCCCTTGCCTCCGGATTTAAAAGTTTCCTGGGCTAATTTCTGGTAGTCGCTCTTGGCTAATCCCCCGTAGACGGTTTTAGCCGTTTGGGCCGAGCTGACCGCACTTGATGAAGTACTGGTATTTGAACTGGAACTAATTAAATTTCCCTGGCCGCCCTTGGTGTAGACGCCCCAAATGATTGCCGCCGCGGCGATAGCGACCGACAGCAGGCTGGTATTTTGGCGCTTCTTGCGCCTGCGTTTTTTTGCCATTTCTTTTCCTCGCTTTTTAAACTAAAACTATTTTAGAGGATTTTTCCCGGAAACCAAAAGATTTAACCTATAATTGAGAGAAAAAGCAAGCAATACTTATCTAATAGAAAGGCAAAGGAAAAAATTATGGAAGAATTCAAGCTAAATGACGGAAACCAAATTCCAAGGATCGGCTTTGGCACATACAAGATCAAGGGCTACCAAGGGGCCCTGGCCATCAGCCAGGCGATTGAAAGCGGCTACCGGCTCTTGGACTCAGCCGCCCGCTATGAAAACGAAGGAGCCCTGGGCAAGGCAATCAGAAGCAGCTCTGTTGCCAGAAGCCAGCTCTTTGTGACCTCAAAACTGCCGGGAGCCCACCACGAATACAAGGCCGCGATCAACGAACTGGAAGAAGGGCTTTTAAGAAGCGGCTTGGACTATTTTGACCTCTACCTGATCCACTGGCCAAATCCTTTGGAAGACCACTATGTAGAAGCTTGGCAGGCCTTGATCGACGCGCAAAGATTTGGCTTGGTCCGGTCGATTGGGGTATCGAATTTTGAGCCAGGGCATATCGACCGCTTGATTAAGGAAACCGGGGTTACGCCAGCCGTCAACCAGGTGGAGCTGCATCCCTACTGGTCCAGCCGCGCCGTCCGGGCTTATGACGATGAGCATGGGATCGTTACGGAAGCCTGGAGTCCGCTCATGCGGGCCGGGGAAGTTTTCCAGGAAGATTTGATTCAAAAGCTGGCCGCCAAGTATGGCAAGAGCCCGGCTCAAGTAATTTTGCGCTGGGAAGTCCAACTGGGGGTAGTGCCAATTCCAAAGGCTTCCTCCAGCCAGCACCAGTTGAGCAACCTGGACATTTTTGACTTCAGCTTAACTGAAGAAGAAGTGACCGCCTTGACGGACTTGGACAAGGCAGATGGCCGCCGGCCCGACCGCGACCCTAACCAGCACCAGGAATTTTAAGCAGTGGAAATAAGCAAGAAATAAGCTAATTTTTCAAAAAAGCCAAGTCCAATATGTCACATAGCCCCCTACAGGAAGCGGTATCATATGTACAGAATATAGCTTTTTAAACTTGGAGGCACCATGATGACAAAAACAGAAAAAACTTTTTCAACGATAATCAAGACCGTCAACTGCTTGATGTTCCTGTCCGAAGCAGTTTTAATCTGCTTAATGGGCGCGGAACTGGTCGGTTTTCAAACAAAAGCCAAAGATCTGACCATTGGCTGGTCACTAATCATTGCTTCCGTTGCCCTCGTATTGGCGGCCATCCTAATCTGGACAAGCAAGTTTTCCGTCCTCTTCTGGATCACCGAAGTTGCCTTGCTTGCCAGCTTCATCATTTTAACCATTTTCCGGATCATGGATGTTGGTACAGCCTTTGACATACTTGGTTCAGCCGCGATTCTCGCCCTCATCCGCTATGGCAAATTTACCAAGCCCTACATCGGGCCAATCGTGGTCGTGGCCATCGACCTGGCTTACCTCTTGCTTTTAATCTTCTATTACGACTTCTTCAATTTCTCCTACTAAGGAAAAAGTAAAAGGCAAAATTTCCAGCAATAACAAAACTGAGCTCACATTAATATGAGCTCAGTTTTTTCTATATTCAGCTAATTTTTTCCCGCTACTTTTGCATCCCCTGCAATAAGGCAAAGAGAGCACCGTAGAGGTTGGTATCATTCTTGGCCGCCACGATTTCCGGCGGAATTACCTGCTGGCCCAAAATCGGGTTGTCCTGCAAGATTTCCCCGAACTGTCGGCGGATCTCCTCGATCAAGATTTCCTGGGCACTGATCCCGCCGCCGATCACAACCTTTTCCCCGTTGATCACGGTCTGCAGGTTAAAAATCATCACGGCAACATCCAAGCAGTACTGGCGGAAGATCTTGCCTGCCTCTTCATTGCCGGACTTGATTGCTGCAAAAGCCGCCAAACTGTCAGCAAGGTCTTCATTGCCCAGCTCCTGGTTTGACCCTTTCCACCATTCTGACAGCTGAGCAGCGGGCACCAGTATAGTCAGCCATTTCCTTAAGCCAAGCTTCCTGGTTAGTGATCATCCATCTGAGTTCCCCAGCCTGGAAGCTGCTCCCGTGCATAAGCTTGCTGCCAACGACGATCCCGCCGCCAACGCCAGTGCCCAGAGTCATCACCGCTCTGGTATCAACTCCCTTGAGTTCGCCCCGCCACTGCTCGCACAAGGTTGCCGCCTTTGCATCATTTTCCGCGCTAACCGCTACCCCGTATCTGGACCCCAGCGTCTCTTCCAGGTTTAAGCCGTCCAAAAAGGTCAAAGCCCCGCCATAGTGGATGTTCATTTTCTCCGTGTCGATCTTCCCTGGCGTGCGGACCGCGATCCCGGCAAACTTGCCCTTGTACTACTGGTCGCCGACTTCATACAGGGCGGCGACAAAGTCGTCCAGATTGTCCGCGCTTGGCCGCTTCCCCTTTTCCAGCAGCTGCCTTGTCCAGCCATCAGGGTCGTTCTTTTCCAAGCCGTCAACAGTGTAGCGGCTGTGGCCAGTTGCTTCAAAATCTTCCTTCAAGTATTCTTCAGGGTTCATGTCCTGCAGCCATTTTGGTTCTGCCGTAATTCAGTCTCCTTCAGTCTTGCAACAAACTATTTTCTTTGTTTTCTTACTTACACTCTTCATTGTATCCTGTAAGCGCTTACTCCGCAAGAGCGATATATCATATTTCTTATATGTACAAAAATATATATTTTTCTTTTACTAAATCAAAAAGCTTTTTAACATATATTTTACTGTATAAAAGTAATAAAAAAGCCAGCTTAGGCTGGCTTAACTTTGTCTAAAACAATAATCTGGTCGAACATGGCCTTTTCCACGTCCGAAATCTTGTGGGCGACTTCGATCACCGCTACCTTCGGATTGCCCAGCAAAGTCTCATGGATCTCCAAAGACAGGCGGGGATCCAGGGCACTGGTGGCTTCGTCAGCCAGAAGGATCGGCCGGCCAGACAAGAGGGCCCGGGCAATTTCCACCCGCTGGATCTGCCCGCCGGAGAGGTTGTTGCCGTTCTCCCCGACCGGGTAGTCCAGGCCGTTTTCCTGGATAAGGTCATCCAGGCCCGCTTCATGGCAGGCCATGAGCAGCTGTTCTTCATCCACCTGCCGGCCCAGAGTCACGTTAAAGCGGAGGGTGTCGTCAAACATGAAAGGCTTCTGGTTGACGTAGGAGTAGAAGTTGTGGGCCTTGTACCAGTCCCCCGTCACTTCTTCACCGTTGATTAAAATTTCACCATGGCTTGGCGTGTAGATGCCCAGCATGAGGCGCAAGAGGGTGGTCTTCCCCCAGCCGGACGGCGCCATCAAGAGGATCTTTTCCCCCGGCTTGATCTTGATGTTCACGTGTTCAAAAATCTGCCGCTTGCTGTGCTTGGTCACGTAGGCCACGTCCCGGATTTCCATGCCGTCAAAGTGGTCGACAGGGTAATCGTCGTCTTTTTGCACGTAATTGAGGGCCCGCTGGGTTCTCTGCCACATTGGCACGGTTGACTTGACCTGGTTGAATTCGTTAAACAAGGTGACCACCGGGCTGATGAAGTTGATGGCCAAGTCGACCATCATAACCAGTGTCCCAACCGCCAGCCGCCCCTGCATCATCATGATCCCGCCGATCGTGCAGGGAATGATGAAGCAGAAAAGTTCCGCTGCTGAGTAGATCAATTCCAGGGCCCAGGCCTGGGTCAAGGTCATGTTCCGAAGGGCCGTTTCCATATCCCCGGCAGCACCCACCGCCCGCTTGACGATATTAGTGCGGACGTTGTATAGGCGGGCTGACTGGGCCCCGTTCAAGCTGTCAGACACGTACTGGGTGTAGACGGCGTTCTTCTGGGTCCAGATCTTGGACTTCTTGGTGATGATCTTGCTGGTAATCATCTGCACGCCGGCCGGAGCCAGAGTCGCCACGATAAAGACCAGGGTCATTTCCCAGGAGTTATATAAAGCAAAGGCCAAAGAGCCCACGAAGGTCAAACTTTGGTAGATGATGTCCAGCTGGGCCGTGACCCGGTTGGTTTCGATCTGCTTTAAGTCGTTGGTCATGAAACTCAGCCCGTCCTTGGTGTCCAGGCTGTTTTGGTCGATCAGGTAGCGGAGGTTGGCCTCTTTCAAGGTCATGTTCACGCTTCTGATGATGTTCATTTTGGTCGTTTCATAGAAGAAATTGCTGGCCATGAACAAAAGCTGGCCCCCGGCCGTCAAGGCCGCGAAGCCGACCAGGCGGCCGTAATCAGCCTTGCCGGAAGAGGCAATGTTCAGCATGACCTTGAGCATGTAGGCCACGAACAAAACATTGCAGGCCTTGATGGCGGCCAGGAAGCTGAACAGGGCTACCTGGCTTTTCCGTGCGTATTTGAGACTCATTGGATAATCCCTCTCTTTCATAAACATTATAGCAATCTTTCCTATTTTTGCCGCCAGCATTGATATAATTAAGATAATCCTAAGAAAGTAAAATCTTGCTAAAGTCTGATTCTTGGCAAAGCGTGAAAATTTTTTAAAAACGCCGATTGTAAAATTAAACTGAACACTGTTCCGATCCAGTAAGAAAAATCGTTTTTACTGGATTAGAGCACAAAAAATCCATTTTAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCTTATTCTAACACTAAACCACACCAAAAGGGCAAGCGCCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTGTGCTATAGCTAGAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATACCGGCAATGTGAAGCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAAGCGAATGCGGCCGCAAGAGCTTGTTTCTTCGCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCATGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTCCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGGACGAAGCATCGATGAACGTAGTCGAAAGCTTGGTCACTGGGAATGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATATGTTGCTTACTCTGTGGGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATTGAGGATAAGACCTCAGCTAGCGTTATGAAGGCATTTGATAAGCTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTCTATCACAACCGACAACGGATCTGAGTTCGCAGATCTATCCGATCTTGAGCAAGTTTCCAAGACTCTTGTGTACTACGCTCACCCTTATACATCCTGTGATAAAGGCAGCGTAGAACGGCACAACGGGCTTATCAGACGCTATATTCCCGAGGGAGACCGTATGGATAAGTACAGTGTGGAAGATATTGCTAAGATCGAGGTATGGTGCAACTCTCTTCCTCGGAAGATCTTAAACTACAAGACTCCAGAAGAGTACTTTGACACCGAACTTGACCGCATTTACCTGCGTAGATAGTCAAAATCTACCAGATGTTATGGTAAGTGTTCAATTTATTCTTGCAATTGGCGAATTTTTTTAAAAAAGAGAAAAAGACCGGAAAGACTAACGGGGAAAAAAGAATAAAAACTAGAAAGAAACGAGAAGACAAAATAAATGAAATTAGTTGAACTGCATACCAAAGCCGACCAATTATCCGGCAGCTACTATCTGGGCTACCTGATCTACCAAAGCGCGGACGCGGCCACCCTCATCAGCCTGGACGACGACGCCAATGCCGGCGGGGTCTTGGTCATCAATAACCAGGACATCCTGACCAGCGTCGACGAATCCCCCAGCCTGGCCTACTGCCAGCGCCTGATCGATGAAGGCAAGTCGACCGACCCCTTCGCCCTCATGCCCCTCAACCAGGAGCTCCTGAAGACGCCTTTGACCAGCCTTAGCGCGGCCAGCCAAGCCGCACTGGAGAAGGACCTGGTCGTCAATATCACCTTAACCAGCGGGATCGTCTACACCGGCATCATCGCCTTAGCCGGTCCAACCGAAATCCAGCTGAAGCAGATCGGGGACGACTACGAGCTGGACCCTCTCTGCCTGGTCATCCCCCTGTCTGCCATCTCCAGCCTGGAATTAAACGCTCCTTTAAACAAGCTCTGGACAAAGTACCAGGCGGTTAAAGAGCAGTTTGCCGGCCAGAATCCCTACGGCTTAGTTGAACTTTACCTGGACTGGCTGGATGACGCCCGCTTTGGCAGCTGCCTTTTGGGCCTGGTCCTGGACCAAAGTGACCAATTCCTGCTTTTTGAAAGCTTGAATGACTATGGGCAATTAGAATCCATCTGCCTGGTCAACAGAGAAGACGTGGTTCATGAATCAGTAAATTCCGCGGCTATCGACTTCTCCAACTTCCTGGTCGCCTACAACCAGAAAAATAAAATTTTTGATCCGGGCCACTTGGGCAAATTAGCCCAGTCCTTAAACCATGTCCCAACTGCCCGGGAAGTGATTGAAAAAGTCGGCAATCAACTGGTCAGCGTTGACGACTATGAATTAGCCGAGGAAAACCTGGGCTACGTGACCGCGGTAGACGAAGCAGGCTTCACCATTGAGGACCCGGAAAGCGGGCAGGAAGTCAGCCACCTTTTTGAAAACGTCTGTGCCTTGGACTTGGCCAGCACCGAACTGAAAAAAATGCGGGAATTCCTGGCAGCCCAAAACCAGTAGGCAAATAATGCATATAATAGATAAAGGCATATAATGAACTAGATAGTTATAGTTAGGAGATTTTTTCAATGAAACAAGGAACGACGATTTTGACTTTGGACAATGGCTACCATCTTTGGACCAACACCCAAGGGACAGGTGACATCCACCTGCTCTGCCTGCACGGGGGCCCGGGCGGCAACCACGAATACTGGGAAGACACGGCTGAACAATTAAAGAAGCAGGGCTTGAACGTCCAGGTCCACATGTACGACCAGCTGGGCTCCCTTTACTCTGACCAGCCGGACTACAGCGACCCAAAGATCGCGGACAAGTACCTGACTTACGAATACTTCCTGGACGAAGTTGAAGAAGTCCGGCAAAAGCTGGGCATCGATAACTTCTACTTGATCGGGCAAAGCTGGGGCGGCCTTTTGGTCCAGGAATACGCGGTTAAGTACGGAGACCACTTGAAGGGGGCCATCATATCCTCCATGGTTGACGACATCGACGAATACGTGGCCGCGGTCAACCGCCGCCGGCAAGAAGTCCTGCCGCAGACCGAAATCGACTTCATGCACGAATGCGAAGCCAAGAACGATTACGCCAACCAGCGCTACCAGGACGACGTGCAGATTCTGAACATCAACTTTGTTGACCGCAAGCAGCCTTCCAAGCTCTACCACCTGGGCAACCTGGGCGGCACGGCTGTCTACAACGCCTTCCAGGGCGACAACGAATTCGTCATCACGGGCAAATTGAAGGACTGGCACTTCAGAAGCGAACTGCCAAAGATCAAGGTGCCAACCTTGCTGACTTTTGGCGAAGTGGAAACCATGCCTCTGGAAACGGCCAGAACCATGCAGAAACTGATTCCTAACTCCCGCCTGGTCACTACTCCTGACGGCGGCCACCACCACATGGTCGACAACCCCGATGTCTACTACAAGCACCTGGCTGACTTCATTAGGGAAGTTGAAGCCGGCACTTTCCAAGGCGAATAAGATTATGAAGTCCTTATTTTTGAGGGCTTTTTTTGTAAAAGAAATCTTAACCTTTGGTAAAAGATCCAAGTTGGAAAAGACTTCTGCCTTTAGCTTTTAGCCATTTTCAAGTAAAATAGGCTAAGACTAATCAGAAGCATTTAGGAGGCAAAACTTTGACAATCGGTAAAGAACTACAGAAACAGCGCCGCGCAAAGCAGCTCAGCCTGGAAGCCGTTAGTCAAACCCTGCGGGTCGACCAGGCGACTCTGCAAAAGATTGAAGCCGATGATTTTCAAGGCTTAAACCCGGTCATGGTCAGAAGCTGCATCCGGCAATATGCCAGCCTGCTGGGGTTAGACGGGGCACAGCTGCTCGACCAGTTTACTGAGCCGGCCGCCGCCGGCAAGGACATTCCGGCAGCTAAGCCAACCAGTCCAGTTAAGGAGGCCAGCCCGGCCGGCAAGGCCAAGGAAATTTTGGACAAGAGCAAGGTGCCGCATGGCTTCAAGGCAATTTTTAAATTCTTTGACGCCATCAACTTGGACAAGCTCTTAAAGATCGGGATCTGGGTCATCCTAGGCCTGGCCGTGGTTGGGTCCGTAGGCGGCGGCTTTGGTGCCCTGGCTTCTAAAGCCACCAGCATTTCCCGCTCATCCAGCTCTTCCAGCTCCTCGTCATCATCATCATCTTCTTCATCTAAGCCAGCTCAAGATGATTCCGCTAAGCCTGATGAAAACAAGCCAAGCCATGATGACCAGCCGAGCCAGCCGAGCCAGCCGAGCCAAAGCCAAAGTAAAGAAGAGCAGGTCAGCTCTTCCAGTGAAGCCAGCTCTTCTAGTTCCGTGGCCAGCTCTTCTAGCCAAGAACAGAGCAGCCAAGAACAGAGCAGCCAAGCCTCTTCCTCTAGCAGCCAGTCAAGCACTGACACGACGACTGATACAAACGAATAAAGTGCATGCAAAAAGCGCCCGGGTAACCGGACGCTTTTCGTTTACTTTTTTGGCCTTAACCCCGGCTCTTGTAAGTCCCTTCCTGGGTGTTGATGACCAGTTCATCGCCTTCGTTGATGAAGTCAGGCACAGTCACAACCAGGCCGGTTTCCATAGTGGCTGGCTTGCCGCCGGAAGCTGCGGTTGCCCCCTTAATGCCTGGCTGGGTTTCTACTACCTTCATGTTGACAGTTGATGGCAATTGCACAGCCAAAAGTTCCCCGTCTTCAGTGAATTCCAGGATAACTTCGATATTTGGCATCAGGTACTTGACGTCGTCACCCAGTTGGTCGCCGGAAATCGCATATTGTTCGTAGGTTTCCGTGTCCATGAAGTTGTAGCTGTCGCCTTCAGCGTACAGGTATTGGGCTTTCTTCTTGACGACTTCGACCAGCTCGATCTTTTCACTTGGCCGCATGGTCTTGTGGATCACGCTGCCGGCCCGGACGTCACGCAGGTCCATTTGCATAACGGTGTTGCCCTTGCCTGGCTTGTGGTGGTTAGCCGCCACAACCAGCATCAGCTTGCCGCCATCGTCAAAAATCATGCCTTTTTTCAATTCAATTGCTTGCATAAGAAAATCTCCCTAATAAATTTTTTATCACCGTTCTTCATTATACCATTGACTTAAAAGCTGCGAAGGTAAATTTTGTCAATCAAGTGCCCCTCAACCTTATGCAGGATCAAATTGGCCCGCTCCTTGGTCGGGGCGATGTACTGGCGGAGGTTGACCAGGTTGACCATCTGCCAGGTTTCTTCCGCCAGGCGCAGGGCCTCGTCTTCCGGCCCGTTGGCCAGCTTGTAGTAGAAGTTGCTTGGGTCATTCTTCTTCATTTTCATGATCTTCTTGAAGCGTTGCATATACCACTTTTCAATCAAGTCTTCTTCCGCATCGATATAAATTGAAAAGTCAAAAAAGTCGCTGGTCACCAGCTGGCCGCTTTCCGGCAGCTGCAGGGTGTTGATCCCTTCGATGATCAAGATGTCGGGCTTTTCCACATGGCCATAGCGGCCCGGGACGATGTCACTTAATTCCTGGGAATACAGGGGATAAACGACGTCATTTTTTCCGCTGACCACGTCCTGGAGGAAGTCTCTGAGCATCTGCATGTTGTAGCTTTCCGGGAAACCCTTCCTGGGCATCAGCTTCCGCTTCTCCAGCTCCTGGTTGGGGTAGATGAAGCCATCAGTGGTCATCATCTGGGTCTTTAAGTCCGGGTAATACCGGGTCAAGAGCAGCTGCAAAAGGCGGGCAGTCGTGGACTTACCCACGGCAACTGAGCCGGAAATGCCGATAATATAAGGCACCTTGCTTTCCGGCAGCTGCAAAAATTCTGCCTTCTTAGCGGCTGTCGCCTGCTTGGCCTGGTAGGCCAGGTGGATATAGTTCAGCAGGGTCTGGTAGATTTCACCGACGTCCTTGACGTCCAGCTGGTCGCCCAAAGACTTGACCTTGGCCAGCTCTTCATTAGTCACCGCCAGCTCGGTCTTGGGGGTTAAAGCCGCCCAGGCCTGCCGGCTGAATTCAGTATAGTTTCGCATTCTTTTTACTTGTCCTTTTCTCATTCTTTACCTATTATAGTAGAAAAAGCAGGAGAAACTGGCAAATGCCAGCTTCATTTTTCAAAGAAATGGGTGAACCAGATGAAGAAAGTCGTGCTTTTTGGCGATTCAATTTTTAACGCGTATGACGGGCAAAAGGATACCGACCGTTTGACCAAGGCCTTGGCCAAGCGGCTGGGAGACGCTTACGAGGTCGTGAACATCTCGGTCAGCGGTGCCTGCGCCCAGGACGTCCTGCCCAGAGTCAGCAGTCTGCCTGCCTGCGACATTTTGGTCGTAGAGTACGGGACCAACGACGCCGCCAGCTGGGGCTGCAGCGCCTATGACTACCAGGAAGGGCTGGAAAGCTTGATCAAGCAGGCCCAGAAGGTAACCGGGGCCAGCGATACCCTGGTTTTAGCTCCGTCCATGCCGGATTTGACAAACCCGGAAATGGCCGCGGCCTACTCCTTGGAGAAGCTGGACGAGTACGTCGACATCGCGCAAAGAGACGCCGGCAAGACCAACTCCTTCTTCTTCGACTTGACCCACAAGATGGAAAAGCTGAAGGACCTGCCTTCCTTCATGATTGCAGACGGCCTCCACTACAGCGAAAAGGGGATCTCCTGGCTGGCCGATGTCCTGGCTGACCAAATCAATAAGATGGCATAGGAAAAGCGTCCGGTTCGTCCGGTTACCCGGGCGCTTTTTGCATGCCGCTTAAACAGGAAAAATGACCGCTTGCGCGTCTGCTCTTTCATTTTTGCTTAAGCTTCTTCATAATAAAATCTGAAAAGGGGGGAGAAAAGATGCAGGTAGAGTTTAAACAAGACAAGCAGCTAAAAGAAGACCAGCTCATCATCAAGGCCAAGAAACTGACGCCGGAAATCGAAGCGGCCCTGGCCTTTTTGGAAGAAAAAATGGCTCAGAAGATCACGGTCTATCAAGGCAGCGATGTTATAATCCTGCCCCTAACCAGCATTCTCTTTTTTGAGACCAGTGACCGGCACGTCTGGGCTCATGACCGGGAAGGCAGCTACCTGGTCAAGCAGACCTTGCGGCAGCTGGAAGCCAACCTGCCCAGCGACTTTGACCGGGCTTCCAAGAGTGCCCTGGTCAACTGCCGGCAAATCAATGCCGTCAAGCGGTCCATTATGGGCTGCGAGCTTGGCTTTACCGCTTCTTACAAGAAGGTCTTCGTCTCCCGCCGCTACTACCAAACCCTGATCAGCCATTTGCACGAAATGAGGTAAGCACAATGAACAAGAACAGAAAGTCCGCGGTCAGATGGGGCTTGATCCTGATCGCTATCGCCATCCCCTTGATTTTAAGCCAGCTTTTTCCAGACTACTTTACCCTTTTTAAGCTCTTCAACTTAAGCTGGGGCCAGGTCTTCTGGGTTCTCCTCTTAGCCTGGATCGCCTGGACCAGCTTCAAGAACCGGGCCCTCTTCTTTGGAATTTTTGCCAGTGGCTTGATCGTCAAAACCATCAGCGAAGCTAGCCACTTCTTTAAATGGACCGGCTACATGTACCTGGCCCTCTTCCTAATCGCCCTGGGCTGCAAGCTTTTGGCCGGAGGAAGCCAGCTGGAGGTCAAGATGAATGTAAAAACTGGCAAGAAAGACGATGACGGCACTAGCCTTAGCTACAGCGAATCAATCGGCGAAAATGGCGAAAAAGTTTCCATCGAATCCGTCTTCTCCAAATGCGTCCGCTACGTTCACAGCCAGGCCTTGCGCAAATTATCCGTCTCCACCGTTATGAGTCCGGTAACTATCTACTTGGACCAGACCCAGCTCAAGGATGGACGCGGCAAGCTGGATTTGGATGCGGTCTTCTCCAAAGTTGATATCTACATTCCCAGAGAATGGGAGGTCCAAGCCGACGACAGCCCGGTCTTCTCCCGCTTCACCGCCCTTAACCCCAGCGGTTTAACAGCGGATTCACCCCTTTTAAAAATCGATGCTGACCTGGTCTTCAGCCAAGTCACCATTCACCGGGTCTAAAAAAACTGTTCAGTTCCTTATTTAATAAGGCTGAACAGTTTTTCTTTTATTCTATTTTGTTCTAATCAACCTTGCCCAAGTAATTTGACTTTTGTCCGAACCACTTCTGGTTGATCTTGGCCAAAGTCCCGTTGGCCTGCAGCTCCGCCAGGGCCTGGTTGATCTTCTTTTTCAAGTTCTTGTCGCCCTTCCGCATCCCTACCGCGAACAAGTCCTCTGGCACCTCTTTGTTCAAGATGACCTGGTAAGACTTTGAGTCTGCCTCGTGCTTGATGTAGTATTCCGCGTAGGTTTCATCCAGGAGGATCCCCTTGATTCTGCCGGCGTTGAGGTCCAGGAAGGCTGACGGAATAGTGTCGTAAAGGACCTTGCTCTTCGGCTTAATGACCTTTTGGCTGCCATCCAGCCAGATCTGGGCGGTTGACCCACTCTGGGCCCCGATTGCCTGCCCCTTCATCTGGGCAAAAGACTTGATCCCGCTGGACTTCTTCACGACCAAAACCTGCCGGTTTCGAAAGTAGCTGCGGCTGAAGGCAACTTTTTTCTTCCGCTGGCTGGTCACGCTGTAGCCGCTCCAAAGAACGTCAATCGTTCCGTTTCGCAGCTCCGTTTCCTTCATGGACCAGTCGATAGTCTGGAAGTCCGCCTTAAGGCCCAGCTTCTTGCACACGGCCTTGGCTAAGTCGACGTTGTAGCCGACCAGTTGGCCACCTTTTTTGCCGGAAGTCCATGGGCACGAAGGTGTCATCCAAGCCGATCACCAGGCTGCCCCGCTTTTTAATCTTAGCCCAGGTGTCTTTTTGGTTAGCTTCTTTAGTTAAATTGCTGCAGGCTGTCGTCAAAAAGCAGGACAAGACCAGGCCCAGCAGCAGGATTCTCTTAAACCATTTCATTGCTAACCCTCCAATGGCTTAACCTCTAGGACCTGGTCGGCCACCTTTTTGGCAAAGTCCATGTCGTGGGTGATAATCAATTGGGTCAGGCCTGACTCCTTCAAGTTCAAGATGAGGTCGGCCACCTGGTCCCGCAAGGCCGAATCCAAAACACTGGTCAGTTCATCGTAGCAGAGCATCTTCGGCAGCATGGCCAAAGCCCGGGCGATGGCTACTACCCGCTGCTTCTGCCCGCCGGAGAGCTGGTAAGGGTAAAGGCCGCCCTTGTCCGCCATCTGCAGCTTCGCCAAAAGCTTTTCTTTTACTTTTTTGCAAAAGTTGCTTCATTAGTTGGCAAAAGCGGACTCTTTTCACCAGCGTAAACCAGGTCCAGCTTGTACATGGCCCGGGAAGCGATCGTGTAGACCAACTGGGTCTCGTCTTCTTCGTGGTAGGCCGCTTTAGAGGCATCCCACATGATTACGGCGTCAAATTCCAGTCCCTTGGCCAGGTAGGACGGCAAGACCAGGTTCCCTTCCACCAGGCGCTGGTTGGCGCTGGAAATAAGGTGGACCCCCTCAAGCTGGTCAGCCAGCTTTTTGGCCGCCTCCAGGTCCTTAGTGATGATGGCAGTCGTCAGCTTTTGGGCATCGTTTTCCGCCAAAGCTGCTTTCAAAGCCGCTAAAGCGCCAGCTTCATCACTTCTGCCCCAGACTTGCGGCAAAGGCCCCTGCCGGTTGAAACTTTCGATTTTTTCACCATGGCGGAGGATCTGCTTGGTGTAGTCAGTCAGCTGCTTGGTTGACCGGTAGGACTTGGTCAACTGAACCAGCTTTGTCTTTTCCGGGTCAAAGAGACCGGAGATCTGCTTTAAGAGGCTGCTGCTCTCGTCCTTGGTAAAAATCGCCTGGTTCAAGTCGCCCAGCATGGTGAACTTGGCCCGGGGGAAGTTGTAGCGCAGATAGGCCAGCTGGAAGGCTGAGTAGTCCTGGATTTCGTCGATAAAGCAGTAGCGCATCTCCAGGTTGGTCTGGCGGGCAATGATCTGGTCGTAAAGGTAAAGATAGGCTGAAGCATCTCGGAGGTCAATTTCCTGCTCTTTGAACTTAGCCTTGACTTCTTCAACATGGGTCAGCCATTCTTCTTCGCTGATCCCATATTTGGCCAGGTCCGTCATCTTCGGCACGGCCCGCAAAAAGGCTAGGTACTGGCCACGCAGGTTCAAGAAGCCGTTGTGGTTGATCCGGCGGGCAAGCTTGGACAGGTGCTTGATAACAATCTTTTTGCCCAGGAAGGCCCGTTCCGCCTTTTCTGAAGAGAATTCCTGGTCCGGCCGGTCGTACATGTCCAGCATCTGCTCGTGGCTGAGCCCTTCGATTTCCCGGCTGACCCAGACCTTGCGGGCTTCATTGGCCACCCGTTTATTCAAGCGGCGGATCAGTTCCTCGCGGGTAGCGTCAATCCGGTTGCCCAGCTTGTAGTTTTCATTGAAGGAGTAGTAGAGCTCCTTGATTTCTTCCTTGCTGAAAAACGGCTTCTTTTTGGTCCGGAAATAGATATTGCGGAAGATCATGCCGGACTGGTTCAGGTGCTGGCCGTAGCGGGTAGCCAGCTTGTAGAAGGCCAGCGAATCCTTGAAGCGGCCGATTGCCGTGTCAGCCTGCCGGTCTTCAAACTGGTCAAAGAGGTTCTGCACCTTCATCTTCGGCAAGCGGCGGGCGATAAACTGCCAGTAGGTCATCTGGACCATGTTCTGCTCGCCCATTTCCGGCAGGACGTTTTCGATGTAGTCGTTAAAAAGCTGGTTAGGACTGAACATGATCACGTTCCCGCTCTTGAGGTTGCCCCGGTAGCGGTACAAGAGGAAGGCGATCCGCTGCAGGATGGCACTGGTCTTGCCAGACCCGGCCGCCCCCTGGACAAAGAGCAGGTCGCTGGTCGTATCCCGGATGATCTTGTTTTGCTCCTTTTGGATGGTCTTGACGATGGACTTCATCTGGATGGAGGACTTTTCTGACAGAACTTCCATCAGCATCTGGTCGCCGATGGTTTCGTCAGTGTCGAACATGTTGATGATGGTTCCGTCTTCGATCATGAACTGCCGCTTCTTGCTCATGTCGACTTCAACCGGCCCTTCCGGTGAGTAGTAGGTTACCTTGCCGATCTTGCCATCGTAGTAGATTGAGGAGATCGGGGCCCGCCAGTCATAGATCAAAAGCTCATTGTTCTCGTCCATGAAGGAGGCCAGGCCGATGTAGATACTTTCCGGCTCTTCGCCAGCCTCCTCAAAGTCGACCCGGGCGAAGTAAGGATGGACATGCAGCCGCTTTAAAGTAGCCAGTTCGCGGGCGTTGACCTGCCAGGCATTGTCGCGTTCTTTGAGCATTTGCTGCTGCTGCTGAATCGACAGGGCCGTGTCCATTGAGGTCGAGTAGTCGTCAAAGTCCAGGCGAATATCATCATAGAAGTGGGCGCTGATGTTGCGGGCTTCGGACTTGTCTTTAGCGATAGCCTGCTTGAGCTGGTCCCCCTTTTGATCAATCTTTTGCAGGACCTGGTCCAGGTGGGCTTGTTCTGCTTTGCGGTCTGAGTTTTCTACCATGTAATATATGCACCTTTTCTAAAAAAATAAACTCCAACAGCTTTTCTTTGAAAAAACTTGCCTAATATTCTACCATTTTTCAGCTTAAAACTAAAGCCAGACCTCCTTAGGAAAAGCTTAAGCAGTTTCAGCGGCCTTTTTGCTAGGAAAAAGAGCTGGCAAATCTTATAATAATTAGCGCAAAGGAGAAAATTGATGCGACGATTTTTTAATTTCATCAAGAACCTGCTCATCTTAGCGATCATGGCCGCGGCCGTGGTCAACTACCATGAGCAAATACAGACTTTCCTGCTGGAAGCAGCGGGCACGGCCAGCACTTATCTGGAGCAGAAAGGCTTAAAGAGCAAGACTCTGGATTTAAGCGTCGGAATCGTTGCTGAAAGCAATGAGAAGGTCACTAAGAACACGACCGGCTATCGCTGGCCAAAGGCGACGGCCAAGGTCTACATCGGGGTTAAGCAAACCGACCTCTACAACGCCACGGTCAATGCCATGGCAGCTTGGAACCAGACGGGAGCTTTTACCTTTAAGCAGACTAAAAACAAGAAGAACGCCCAGATCGTGGTCGTGGCCAACTCCAAGAACAACGGGGCAGCGTGCCTGACTACCTACAAGTATCTCAGCCACACCAACCGGCTCTACTCAGCCCAAGTGGCTCTGAACACCTACTATCTGGAAAACGACTATTACAACTACACGCAGGCCAGAATCGTCAACACGGTTGAACACGAATTAGGCCACGCGATCGGCTTAGACCACCGGACCGGGGTTACTGTCATGTACCCGACCGGATCCATCTACACGATCCAGCCAAAGGACATCAAGCTGGTTAAGAAGATTTACAAGAGCAAGTCATAAGGCAAGTTAGAAAAATGAAACGGATTTATCTGGTTAGACACGGGAAAACTTTTATCAACAAGTACAACAAGATGCAGGGCTGGTGCGACACCCCCTTGACTGATGAAGGCCGGGAAGGCGCAGAAAAGGCCGCTGAGGCCTTGCAGGAGCTGCCTTTGGACATTGCCCTGTCTAGCAACACTTTACGGGCCAGCGAGACCTGTGAAATCATCATGGAGAAGAACTGCAACAGGGACCTGCTCCAGCACCTGGCCTACCCTTACTTCAGAGAGCATTTCTACGGCTACTTTGAGGGGATGGACAATGACGTGGCCTGGCGGATGGTCGGCGCGGCCCACGGCTTTACTAACGCCGCTGATTTAGCTGAACACGCGACTTGCGACCAGATCGCTGACTGGACCAAGGAGGCTGACCCCTACCATGATGCTGAAGACAGCAAGGAATTTTGGGCCCGCTGGCAAAAGGGCTTTGACTTGATCCAGCAATTGGACGGAGCAGAGAATATCCTGCTGGTCAGCCACGGTTTTGCCATCAAGACCCTGGCCCAGAAATTTGCGGTGGACGGGATCGACACGACCGTTCACCCGAGAAATTCATCAATTTCGACTTTAGTGATGGATGAAGCTGGCAATTTGCAGATGACCAGTTACAACAAATTGCAGCTGTAATTTTTACCAGATTTTTACGGACAAAAGGCCTGCAAGTTAGCATAGAGCTACTATAATATGAGCCGGCAAGAGAAAAAAGCAAGATTCCAGTTTAAGGATGGAGCGCAATTAAATATATGAGAACGAAGATTTTTGGTCACCGCGGTTATCCAGCCAAGTTCCCGGAGAATTCCCTGGAGGGCTTTGACTACTGCATGCATCACGGGGCTGAGGGGGTCGAATTCGATGTCCACTTAACCCGTGACGGGGTGCCAGTGATCATGCATGATGAGAACATCAAGCGGACCACTAATGGCAAGGGCCTGATCAAGGATTTCAGCTTGGCGGAATTGGACCAGTTCCACCTGGCCAATGGCGAGCGGATCCCCCGTTTGAAGGACCTCTTCCAGCTGACTGAAGAATCTGGCTATGAAGGCCAGCTGAATCTGGAGATGAAGACCAATAAGTTCGATTATCCAGGCTTGCCGGAGAAGATTTTTGCCCTGGCGGACCAGTTCAAGTTCAAGCAGGAGATCATCTACTCTTCCTTCAATTTGCAGACCTTGATCCACGCGCAGAAGATCCGGCCAGAGGAAAACTACAATTTCTTGACCGACAAGCGGATCAAGGACCCGGCAGCTTTTGTCAAGGAGCACGGCTTTAAGGGGATCCACCCCAAGCGCTTGCTCGACACGGACACGCCGGAGCGGATCTGGACGGTGGACAGTCCCCTGCGGGCCAAGAAGATTATTGAGTACGGCGCGGCCGGCTTTTTCACCAACAAGTTCGAAGATATGATGGACCTGCGCAAGCGGGTGGCAAATTACTAACGCGAATATATGAAGAGAGTTGCTTTAGCGGGCAGCTCTTTTTTGCGTGGTCATTTTTATAAATTCTATTCTTTATCCAAACAAAAACTATCCCATGCGGGATAGTTTTTTTACTTTATCGTATACTTTATTTTTAAAAATCAGCGATGACCTCGCCTAATGTCCAAAGTGAGATAATTCCAGCCACGGCTTCCTGCCCATCTCTGTAGATGTATCCTTCCATGACTGTTGTGGTCATATTGTAAGTGTCCGTGATAATCTCAAATTTAGCATCCGGGTACTTTTCCAAATACTCTTGCAAGTCGTATCTTACGCCCGAAAATTCCCCATTTTCTATCCCCTTGTCAAAAACTAAGGTATGGCATTCTTCCAAATCGATATCTGTGAACGTTAACTTTGCCGGATAAAACTTCTAGGAATCTTTGTGGTACTCATACACTTGGTCTAAATGCAAAGTGAGATCGCCATCGTTAACTTCCATTTTTACAATCCGACTGTCATGCAAGTCAAACGGAATGTTGCTGATCGTCTTCTTTATCAGTTTCATAGCTTCTCCTCTAGTTTATCCCTGTTTTTCTAGTTATTAACGATAGCACTCATCGATTCAATCAAGCCCGCGTCATTCAAGGTAACCTTGTCCGCACCATTTTTAATCATATCCGCAACAGCGTTATCATTCTTGCAAACCGTCCAGATTCCATAGTCTACGCCATACTTACGAGCCGCGAGAATATCATCAAGCGTTGTCTTATTGTAGTAACAGTCAGCACCGGCCTTTAAGTGGGACAGGAAAATATAGTCGTTATCAGTCAAATGGCGGCTGTAAATCCCCATCATGGCAATTTCTTTGCCACCCGGAATCACGTTTCTGACTTCTTCCAACTCACCAATATTAAAGGAAATCAAGGTCGTCTGCTTCTGCATCCCTGCTTCGTTAATTTCCTTAACTACCTCTTTCAAGGCTTCCATATTGTTGATGTACTTCAACTCCAAAAAAGCTTCCTTGCCATACTTCTTACAGATTTCTAAGTACTGACGCAAAGTTGGCACGCGAAGATCTTCATAAACCTTATCCTTATCGACGCCATCCAGCACACCCTTGATCTTGTAGTTTTCCACCTGGTCAAAAGGAATATAGTTGATGTTCTTTCTGTAGTTTGGATCATCCGCGCTGATATTGGTCGTCCGGGCCAAAGTATTATCGTGCATGATAACCAGCTTGTTGTCTGACGTATTATCTACGTCGGTTTCAATCCCCCAAACTCCGGCTTCCTCACCAGCCTTTTCAAAAGCCAGGGTCGTGTTTTCCGGATACTTAGTGCTATAGCCCCGGTGAGCGATAAACTTGACCTCCGCCTTAACCAGGCCAGAAGTACTCTGCGTCTTTACATCAACATTTTCCAGCTTGCGGTACTGGGCCCACAAGGTCGTGCTCTTCTTAAAAGTGTAGGCCTTGCCGAGCCGGTACTTCTTCCCCTTTCCGTTTGTGGCAACGGTATAGTTTAAGAACTTGTAGCCTTTCCGGTAAAAGCCAGTCTTTGGCAGAGTAACTTTCTTGCCTAAGGTAAAAATCTTCTTTTGCCGGCGGCCAGACCCGTCATTGGAGGCAAAAGTCAGCGTTCCCTTAGCTGCAGTAACTTTAACCATGCAGGCGTAGAACTTTTTGCCATTTTTAGCAGTAATCTTGGCTGTCCCGGCCTTGACTGCCTTGACCTTGCCCTTAGAAGATACTGTCGCTACCTTCTTGTTGGAACTTCTCCATGTCGTCTTTTTCTTGCTGTTCTTCAGATACAAGCGGGCTGTTTTCCCCTGCAGCAGACTCAGCTTTTTTTTATTTATAGAAACCTTAGCTTTTTTGCCTTTCTTGGCCTTCCTACTCTTCTTAACCTGCCTGGCGGCGTGCACTGGCTGCAGCGGTTCCAGCTGCTGTCCAATCCCAAAAGTCAGCAAGACTGCTGAGGCCAGCAGCAACTTTTTGATATCTTTCCGTTTATTCAAAAGAATTCACTCCACTTTCTTTTCCTGTATATTAGATTAACATCTCTATTCTAGCGCATTTTTGCTAAATAAAACAAAAAGCCAATGAACAAATTTTCTTTTGTCCATTGGTAAAAATAGCTCTTAACTTGTTTTTAGCGGCTTATGCCAACCCATCGATAAAGTGATCAATCTGCAAGACGTATTCTACTAATTCCCGGTGCTTCTGCCCGACTTTTTCATAGTAGTCCTGCAGATCAGCCAAATCCATCTGCTCCATCAGCTTGGAAGCCGTCTTATCCTTGCTCCAGCTTTGGTGGCGCTGCTGCATCAAAAGTCATACATGTGCTGCTTAACGTCTTCGTATGGCGCAAAGACATGTGTCTTCTTGCCCTCTTTAAAGACCAGGTAGTTCTCAATCTCCCGCTTAAAAGTCGCGTGAATGTGTGCCTGCATCCATGGATACTTTGCCCTAATCCGGTGCAAGTGCCGCTGGCTCTGCTTAGCTTCATCCGTCCCCTTGTCTGAGTCGATCAAGATGAACCAAGGTTCATTCAGTTTAGAAAAAAGGTCAAAATTCAGCCAGGCCAGCAGACTGCCGCATCCCCCGACCGGTAAAATAAAGAGCCCTTTTTCAGCAAAAGTCGCCTCCACCAGCTTTTCTTCATACATCCACTGGTTGATCTTGGTCACAAAACGGACGTCTTCCTGCCCTTCGACCAAGAGAACGCAGCGGGACTTGACCGCCCGCTGGTCAGCATCCAGGCCCAAGCTGCTAGACACTTCCGCCAAGATCTGGCTGTCACTCAAAAGCTGCTGCTGGCCGGCAACCTTCTTGATGATCTTGATCCCTTCCAAAGGCAGAAGACCCATCAAGTGCGGCGTGCGCGGAATCAAGATGACCTGTTTGTTCTTAGCGACCAGTTTTAAGCAGGGCCTGGGCCAACAAGGCTTCATCTTCCTCCGACAAATCATTCGCTTCAAAGGCATAGACCACGTTGTCGATGCTGGCATTTTCACTTTGGGCCAAAAGAAAGGCCAGAATAATCCGGCTGACCTTGGCCGTTCCCGTCACTCCGACCTTTTCCCGCTGCTTGATTAGTTCAGCCAGGTTGGGATCCTGGAAGACAAACTGGGGAGCTGGTTCACCCAAGTCCCGGTAGTTGGCCAGAAGCTGGGAGAGACTGCGGCCCAGGCGGTCGTCCAGGTAGTCCTGAATTTCCTTGATTTACGCTGCCTTGTCCCTAATAGCGCTGCGGGCCACGAAGTTCAAGGGGCTGGCCGCCCTTGACTCTTCATCAAAAAAGACATACAGGGGCATGCCGGCTGAAAGCTGCCGGTAGCGGCCCCGGTTTTGGTCCGTAACTGGCTGAAAGTCCCCGCCTTCTTCCGCGAAGCTGTCGCTTTCTTCCAAATATTGCTTAAGGTCAAAGGACTTTTTGATAGCAAAATCATCGAAACAGCAAGTGATGGCAATTTGCCAGTCCCCGGCCTTGAGGGCTTTCTCGTTTAAGTCTTGCAGCTTCAAAGGCCGCTTAGCCAAAGGGCCGTTGAAAAAAATGTCCATAGCCCGCAGGATGGTCTTCTTGCCCACTTCCCCTTCACCTAAGAGACTGGTCAAGGGGGCGAATTTCAGCTTAAAATTGCGATAACCGCGAAAGTTATGCAGCTCAACCGCGCGCAGCAACATAATTTGCTCCTTAATCAGCTTGGTCGCCGTGTCTTTGCCGGTAGTCCTTCCGGCTCATCTTAACCTTCGGTACCTTTTCAGTTGGGTTGGCCAGTTGCCGGCTGACCCGGTCCAAACGGGCAGCTTCTGCTTCCCCCTTGGCTTTAGCTTCCGCGTGTTCCCGGGCCTTGCGGAGTTTTCTGGCCTGGATGTCCCGCATCCACAAGGTCGGCATGATTGCTACGGCTCCTAAGAAGGCACCCATGGTGTTGGCGATCATGTCGTTAACATCATATGTGCCCAGCCCTGTCATCCGCTGGAAATGTTCAATAAACCAGGACAGGCAGAAGACCATAAATGTGGTGATCATGATGCTATGCAGCCACTTGGACCAGGATGGAATAATGTAGCCCAAGGGCACGAAGAGCAGAACATTCATCAAAAAGCCGTAGCGGCCGCCATAGTTTGAGCTGGCAAAGACTTTTTTCAGCCCCCACTTCCAAAAGGCCGGATCTTTCAAAACCTCTGAGCCGGCGGCCATTTGGGCCGGATGCTGCCAGTAGTAGACAGCAACCGTTAGCATTCTTGAGGCAAACACATAGTAGATCAAAGCACAGCCATAGATAACCGTTACTACCAGCCGCAAAAAGGAGTTCCCCGTGCGGATAGCCCAGTAGCCTGCCAAAACACAAACAGCAATAACCACAAAGCGGATCTGCAAAGCCAGTTCATGATACATTCTTTTTCACTTCCCCTCACGAAGTCCTTTCTACATATTTTATACCATTAGTCGACTTATCAACAAAAGTTGTGATTATTAATTTTATTATCAATATCACAAGATCATTTTTCTAAAGTTCTGCTCTGTGCTATTCTTTATATTAGTGCTTTTAATTACAACAATACATAAAATTGGAGTATCAAACATGGACAAAGAAAAAATCAATGAATTATGGGGCAAGTACAAGGATATCATCCCCTATGTCTTCTGGGGCGTCATGACCACCCTAGTCAACATCTTCTCCTACTGGCTCTGCAACAGCGTCTTCAAGTGGGACATCATGCCAGCGACGATCATGGCTCAGTTCCTGTCCATCGTTTTTGCCTACTTGACCAACCGCAAGTGGGTTTTCCACAGCCAGGCATCCACCTTTAAGGAATACGCCAGTGAAATCGCTAGCTTCTTCGCGGCCAGAATCGGGACTGCCCTTTTAGACATGGCCATCATGTTCATCTTCGCTGAGCAAATGCACTTAAACAGCATGGTCATCAAGATCCTGGCCAACGTGGTTGTCGTTATTGTCAACTATGTGGCCAGCAAGTTCTGGATCTTTAAATCCAAAGACTCAGAATAATCTGTCTGAATTAATTGCTAAGAAATGGTAATTATTCCGGCTAAAAGTTTCACCTAATGCATTTTCGTGTTAATCTTGAAGTCAGTTTAACCAGAGAGGAAGGATGAAAATGCGAAAAAGAAACATAATTTTAGCCTTTTTGGGATGCTTGGGGTCGGTCCTGCTGATCAGCGGCCTGACTTTCCAGAATTCCGGCCAGTCAGCCCAGCTGACCTTAAAGTTCGTCAACTTATTTGAGAAGGTTCATTTTCACTTGACCGGTACTATGATGGCTGAGTACCCGATTTACCACATGATGCGGAAGCTGGCCCACACGGCTGAGTATTTCCTGCTCGGCACCAGTGCCTGCTACTTCTTCAGCCGCTGGCAAAAGCACTATGCCTGGTCAGCCCTGGCCCTGTCCGCCGCCTTCTCTCTCTTTGACCAGACCAGCAAGCTGCTGGTTCCCGGCCGGGAATTCGACCCAACTGACTTTCCTTTCGATATCGCCGGCTACCTGCTCGGGATTGGCTTAATCCTCTTGCTCCAGCGGTCATGGGCCAAGCGGGCCGTCAACTAAACCGCTAATACATTTTACTAATTGCTAAAAAGAGTGCTTTCCCGGCACTCTTTTTTCATCTTTAGCATTTCCTTGCTTCATCATTGCTATTTTAAAATTATCATAAACAGCTAAAAATTGTATAATATGTATTGTTTAAAATTTGCTATCAGAAGAAAGGAAAAAATACTAACTCCTCCACATTCAACAAATCATACTTTCCCTCCCGCCAATCGGCGGTGCTTTCAAAAGAGAATGCGATATGGAGAAAATATCAAAGGAAAGCTTAATGAATACGAACAAATTTACAATTAGCTGGGGAGACTTCAGCCGCTATCGGAGCAGCATGTTTGGCCTTTCAATCATTGGCATCATGGTCTTCCACTACTTCGAACATATTCGCAGCGCCCACCTGCTTCTGAAATCAGAGCAGTTCTGGGACTACTACATCGGTTCGACCGGGGTTGACTTCTTCCTCTTTTTGTCCGGGATGGGCCTCTTCTATTCCTTGACTGCTAATTTCCCATAAATTACTACTCAAAGTGCTCTATCACCTGATATGCCAACCTTTTAGAGGATTTCGTTGAGTTTAAAGTTACAACTCAAAAAATATTATCGTAAACTTCGAAAAAGGCCGTAATAGTAGGCTTCTTATACATTGAGTTGTAAAATCCTGGGAAATTAGCATTAAAAGAGCATTCCGCTGGGAATGCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATAGCTCCCGGAGAATCAAGACAAATATCTGATTTAGGGCATGGTAAATACAGCCACCTTCTGTAATTTCAAAAAAAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGTTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAAACGAATAAGGTTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGGTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTCCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTACTTACGACATCGTGTGTCCAAAGAACTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTTACTTTACCAATTTACTTTTTATCGTGGTCCGGATCAGTGTCCAAATCTTCGTGAGACAACTTGCTTTCTTCAGTTACCTCGTTTGCGTCATACAGATCATGCTTAATCTTGGATGAGCTGATCTCAGGGGTTCTTGGCAGGTAAACAACGTTGACGCCTTCTTCTTTCAAGAAGTCGAACTTGCCCTTCCAGTCATCCCCCATGACAAAAGTGTCAATGTGGTATTCGTGCATGTCGCTGCGCTTTTGGTCCCAGTCATTTTCAGGGATGACCAGGTCAACGTAGCGGATGGCTTCCAGTAGCTGCTTGCGCTGTTCATATGAGAAGTAGGTCTTCTTGTGCTTGGAATTCCAGTTGAACTCATCAGTAGATAAGGCAACGATCAAATAATCGCCCTGGGCCTTGGCTCTTCTAAGCAGGTTGATGTGGCCGTAGTGCAGCAGGTCAAATGTTCCATAAGTAATTACGCGTTTCATAACTGCTCCTTGTCCCCCTATTTTAGGTATTCCTTGTAAGACTTGTCGGGATCAAAGATGACTGAACCATGGAGTGATCCGCCTCTGACAAAGATGTTCCACTTGCCGTACTGCTTAGTCAGCAAAGGATCGTAATCCTTTGGGATCGGCAGGCTGAGCAGCTCAAACGGCACTCTGACAGGATTGGCCACATACTCGCGCTTCCAGCAGCACTTTTCTGTCCCCAACATGACCATCATGACCTCTTGGGTAGCTTGGTCATCATACTTGGTGATTTCCTTGGCAAAGCGGTCGTAATAAATGTTTCGCCCACCGCTCTTTTTCTTTTCAAAAAAGAACTTGGTATAAAGCAAAAATTGCTTTAGTCCAGACAGATTCTTATTCGGATATCCGTTGCAGTAGTTGTAAAATTGCCGAGCCCGGTGTTTGAGCTGGTTGACGCTTTTGACAAAAGCTTGCCGCTCTTCCGGATCATCTGGCACATTGTCCAATGGGAAGATATCGATAAAAATCCCCTGGTTGAACTGGTAGTGAAAGTACTCCTCAGACTTTAAGATTGCAGTGGTAGCCGAATTACGCAACTGTGCATGCCCTCGTATAGATCCTGTATCCGTTTCTTCAGTCTGAAAAAAATAGGGTTCCGTAAATTCTTGACTGGCAACTTCGCAGAGGCGTTCAAAGTCCTTCCTGTACATCATCAAATCGATATCATCATCCCAAGGAATATAGCCCTGGTGACGAACAGCGCCTAAGAGAGAACCACCGGACAGATACCAGGGAATATCATATTTCTGGCAGACTCGGTCCAGCTGGTCCAGAAGATCCAGTTCCACGGCCCAGACCTTCTTCATCTCCGGGCTGACTGTATAGTCGTTTCTGACTTCTTCTTTTAAAAAATCTTCTGAGAGCTTGAGCTTAATATTGTCCATTTTCTTTTCTAAAATCTCCCTTATCCCCTGCCCAAAATCTTCTTAAGCAGGCCAACAGAATCATCCTTCATGATAAATAAGGTCGCCAGGTAAGTACCCGCGCCTAAAACAAATTGGATGCCCAGCTTGATGATGCCAGGATTGCCAAATGGATTCAAGGCCAGGATGACCAGCATCATCAGAGTTCCGGCAATCAGCTTCTTCCAGATCACCTTGCCAATATAAACCAGCTCTAAGTAGCCATTGTCATGGCAAAGGTAAAGCAGGCTGATTGTCAATTCCGCGATGATTGAGGCAAAAGTTGCCCCGGCACTGGCAAAGCGTGGAATCAAGAACAGGTTCAAGACAAAGTTGATGACTGCCCCGATGATAATGTAAACCGCGCTCTGCTTCCGCAGGCCAGCCGGGTTGTAGTATTGCGAACCCAGACAGTTGGAAATCCCGATGATCACGATCTGCGGGCTGAACAAACGGAGCAAAAGTGCCACCTTATCCCAGCCGTGACCGAAGAAGACCGGCACAAAGGTATCCGCAATTCCGAGCAGGCCAAAGCCGATCCCCACTCCGATGAAAAGGATATAATTTATGGATCCTTGGATCCGCTGCTTGATTTCCTTCTCATTCTTCTTGGCAAACAAGTATGAAATTCTGGCCCCCAGGACATTGTTGACGGCGGTAAAGGTCACCGCCTTGGTCAAATTGATGATCTTGGTTGCCTGCTCATAGTAGGCATTTTCCGCGTTGTTCTGGGTCATGAAGCCGATCAAGGTCTTGTCCATATAAGTATAGATGGAGGTGGCAATGGTCGGAATAAAGTAGATCAGAGTTTCATGGAAGTGCCGTTTCAAGTTGACCAGTTTGATTGGAACTTTTACGACGAACTTATGCAGTTCCAGCCACATAGACATGGTCCCCAGCAAGGTCGTCCCCGTCATAATGAAGACGTAAAGGTTGGTATCCTTAGGGGTCTTGACAAAGAGCAGGATCAAGATAACCCCAGCCACCTTGACCAGGGCGTTCTTGGTCACCGTGTACTGGAATTGCTCCAAGCCGTCAAAGAACCAGGAGATGTCCAGCATAGTGTTGAACAGGTTCAAGGTCAAGATAAGGAACATAACCCGGTAGTGGCTTTGGAAGCCTAGGTAAATTCCCCATAACAGCAGCATGGCCAGGGAGGTAAAAACACTCAGCATCTCAATTTCCCAAAAAATCTGGCTCCGCTTTTTAACATCGTTACGGTTGCGGGCAATTTCCCGCATCCCATATGAAAGCGTCCCCAAGGCCGCGACCAGGGAAAAGTAGGTCTGAATTGAGGAAGTCCAGCTGTAGGCCCCAATCCCATCAGTCCCGATGACTCTGGAAACGTAAGGTGCCGTAACTAATGGTGTAATTATAGATAAGACCTGATATAAGGTACTAATGAATATGTTTTTCTTAATGCTCGGATTATTCATTTACGCTCTCAATCTAATAAAAGCTACTGTCAAACCGTAATACTGTGACAATTACCATACGGTCTTACTATTTTTAATACCTTTAACAAGATTTTTTCGTCATTAGGATAGTAGCTAGGGCTATATCTTAACCAAGCCGTTTTTACTTTTCCAAAGCTTTAACTGCTTTTTTCAAAGCAACCTTGGTGAAGTCGCCTCTTCTGAGCTTTTTAGCTACTTCTCTCGCATTGATCGCGAAGTGTTCGTATTCTTCTTTTGTCACTTTATTCAGGACTTTTGGTAGATCATTCAAGGAGTCAATAGTTAGTCCGAGATTGTTATCAATGATGAAGCTAGCTTCAGCTGCTTGGCTCCAAATGATAACTGGCAAAGCTGAAGCGAGATACAGTGACAGTTTATGAGGATCGTTATATCGTAGGTAATTGCCAAAGGCGCCATCACAAGTCTCAATGCTACTACCGTACCAAATTAATCCAAAGCCTTAATTTAATTGATTTGGAATCTCATCAGCTGGAAAAGCGCCATGATACTCAACATTTTTGTAAGCATCTAGAGTAAAATTTAACCCATAAAGATTAAATTTTGCATCTATCTTTCCAATATCTTTCAAATATTGTGTCTTACTTACATCCAGATTACCAGCAACTGAAACGGATCTCTCAAATTTAGCATGGTTAATTTCACCATTTGGAATCAAATAGTCAAATATTTTTAGCGTAACCAATTTCTTTGGGTCAACACCACGATCCTCAAAAAAATTTTTCATGGAATCGTTGTGAACGATCAAGCAATCAGCATACTTAAGCATCTGGTTGAAATCTTCCTCAAAAAATTTACGATAGTAAAACTTTCTCAATTCTTCAACGTCATGTACCAAATAAATAAACTTAACGTTTTTTTATTCTTAAGTTTAGCTAAGGTTTCCTCTGCATTTTTACTGTTTCTGTCCCTTGCGGCTCAAACTCCCCTTAGTGGTTAAAAATTGACTTGTAAGGGTAGACTTGCTCAAAGCCCATAGCAAAGTCATGGACAAAGAGTATACCAAAGATCACAATAACTAAAATATACAAGATCAAGCGACGTTTGTCATCTCTTTCAAATTTACTGATTGCATTTGGGATAAAGATGAACTGGGCATAAGTAAAGATTCTAACTACCCGGTACGTAGCTGGCAAAATTCCATCCATAGCACATACAATCAAAATCATCCATTGCAAAAGCTTGGCAATTGCCCATTCTTCAGCTGAATTTCCTAGTTTTTGGCGATCATCAAGTTGTAACATGCCAACCAATTGGCTCTTAAAGGAAGACTTGTTATAGGAAAACTGCGTCAAATCCCTATTAAAACACTGCTGGTATTCTAGATAAAGGTAAATTAGTGAGATAGCAATTTGTACTCCCAAATAAAGTTTACCGATCGTCTTACCCAGATATACTCCTTGATTTAGATACATCTGTACTCGCGGAATGAGTAAGGCTAATAAGGCTAAAATTCGCTTGCCTAAAAGCTTAATAAAAATGTAAAAACCTAAGTTAATCAACAGATAGCTGAGCTGTGACAGAGGTAGTAGATCCAGAACCGCCATAATCAAGAAATAGTAGGCACTTTGGTGCATGGTCCCTGCTAGAATCGTCAATAAAACAAAAGCAATTTTCTTCTTACGAACTAAGAAATATAAAGCTGGTAACAAGATTGCTGAAGCTAAAGCTTGTCTAATATTGTTGATCGAAACAAAGTAGGTATAAGTCAAGTAGAACAGCAAGATCGATATAAAATAATTATCTGATAAAAAAACTGTTACTACATATACCAGTCCTAGGGTTAGGAGCGCACAAAGAGCAATTAACCACTGTGGATCACTGGTTAAACTAGCGACTAGCAGATTCAGTAAATAAAAACCAGGTTCATAATAATGAGTATAACTACCATTTACAATTGATAGAAACTGAGGGACATATGTATGAAAATAGTCAGTTCCCACTCCATAACGAAAACAAGAAATCAGCAAGATGGGTAGGGCAGATAAAGAAACAAGTCCAATTAGCTGCCATTTCTTGGTATCTTTGTACCAAGGCTGCTTAACCAGTAAAAAAGTTCCATGTTGGTTTTCTTCAATTAGTCGTGGCACAAAAGCAGCCACAAGAAGCGACATCGAAATCGCAATCAGATAAGCCATACTATAATCCTTTATTCTTTCCAAAGAAACAATTTGGTAGTTTATTTTTTCAAAGTGTAAAAGATCTGGTTGGTGATCTGGCGGCGGTAATTAGTAATTTTTTCCTTCATTGGCATTTCGGTATTAACGATCGGTAAGTGCTTAACCTTCAATTCCTTATGCGAGATCCAAATATTTAACAACCGCTCTGACAAGAAACCATATAATCTTTGCTGATATGCATTCAAACTACTTAAATCAACCTGTGGCTCTAGGTTAAAGAGGATTGTAAACAACCACTGACAATATTCATCAAATAAGTCCCCTCTGCAAAACATCATATTAAATAAAACTGCCTTGTTTTGATTAAAGAATTTATCAAAATCAGATAAGTATTCGGGACTGCATTTGGCCACGCTGGCTCGCAACTTACCAAAAATTTCTTCAGTACAACAATGAATCATAATTTCATCATGAGCATTCTGCTTAAAGTTAGCGACATATGAAGTCACCAAATCATGGTCCTGTAAAAAGCCTTTAAGCTCATCATAACTATATATCTGCTCAAAACTAGAAGAGAAATCACTTTTGCCAAAATAACGACGATAATGTACTAATCCCTTATAATCATCTTTTGTATTTTTCCAGATCCAATATAGTCCTGTCAATTCACAATAGTTAGGATTTTTTTCAGAAATATTATCTCCTGTATCATCAGTCAAGTAGTCCAGGTGTTCATGCAAACTACTCCCCACTTGCAAAGGAAGATATTTGTCTAGCTTGGGTAGCTTGACTCTTTTATGGGTAATAATGTAGATCATTTTGACCTCGTTTTTAATGATTACGAATTATATAGCTTCATGAAAGCAGCCACTGTATCTGTAATATCCAATTTTTGACGGGATAATAGGTCATAGTCGTCACGATGCCCTAATTCCAGATCCTTGATCACTTGACTTTGCCAAGCTGACAAGCTTGTTTCATCAATTGGCAAGAAAGAAACATTGTTAGTCATTTTAGCCTCACTAGTGATTTGATCAGAGAAAATTACTGGCAAACCAGCAGCTTGTGCTTCAACCCCGACAATTGGCAAGCCTTCAAAATGAGATGGCAGCAAAAATACATCCATCGCTTGAAAAAGCTCACTAGTATTGGAACTTAAGCCGTAAAAAATTACTTGCTTATCCAGTCCCAAGTCATGCACCTGGTGTTTACATTCATCTTGCAAATCACCTTTTCCTACCAAAAGCAAGCGAGCTTGTGGATCTTGAGCATAGACTTTTGCAAAAACTTGAATCAAGTATTGGTGATTCTTCTGGTAAGCAAAACGACCAATATGGCCTAGTACATGTTTGCGAGATAAACCTAACTCTTTTCGTATCCTTTTTCTAATAATAGGATCATAACGAAAGGCGGCTAAGTCAACCCCATTCATAATCTTAATCACCTGTGACTTGGGTATACTTGGGAACATCCAATTAGAGGCTAAATCAGAAACTGACACATAACAGTCAGCCAATTTGACTAGCTTCCCTCTCAAGCTTTTATGAATAAAGCGCTTAAGCTGACGATGAGAACCATCCACATCACTGGCATGTGACTGCAAGATTATTTTAACCCCACTATCAGCCTTACGTGCAGCCAAAGCCGTTACGTAGAGTTTATTTGCTACATCCCCATGGATATGAACATAGTCATAATTACCATCTTTTACAACCTTTTGTAATTTCTCATAGTACTTAAGCTGCTTCTTGATTTTATTACCAGGGTAACCAATGTAATAGACCTGAGTCCCTAGCTTGTTTAAATAATCAATATTTTGCTGTGATTCAAATGGCTCTAGGCAGGCTAAGTCAATCTGATAATCGGCCGGCTTATTTTCAATTACTCGTTTAATTAGAGAATACACTCCGCTGTAACCATTGTCATCAACATTAACTTCTAAGATTCTCTTAGTCATGCTGCTCCTCAATATATTCAATTTCAGGTCTGAAGAAAATGCCCTCAACTGAACCCCCTAAGATTATCCCCAGTTTTTTGAGCTTATGTGGATTATGAGTAAAAATAACTCGCAACATATTGTAGTTGACCTTGGCGAACTGTCTAAGTCGACCCTTCATTCCATTTTCTCTAGCTATCACGCACTCATTACGATAGGCAAACTTATAAAGACCGATCCGATCACCCTGTTCCTTAGCGATATTAGACCCATTATTATCCCTAGTCTTATGGATTACTTGACTCTTACCAACTACATAACAAGGATATTTTTTTGAAAGGCGGTTGGAATACTCAACATCATCCCCCCAAATAAAGAAGTCTTTAATTGGCAGGCCAAGTTCCTTAACCGTTGCAGTTTTAACAAAAAATGATACAAAAGTTGAGTAGTACGTTCTTACCAAGCCAGCAGACAGATAACCCAGATCACTAGTCCAGTCCTTGACCAATTTCGGACGGTTCATAACACAAGGCTGGCCATCAGTCCAAAAGACTGTACTAGATAAATAGCCATAGTTTCCCTTAAGCAGCTGATCTGCCTTTAGCAACTCTTTTAAAGCATCCCTTTTGACGATCGCATCATCATCCATAAGCCAGACATACTTGTAACCAGCCTCACAAGCTTTGCGCATTCCAAAATTAAACCCACCGGCACCTCCTAAATTCTCGCCGGTATTAATATAAATGATTTGCCCTTGATCAATGTAGTCAGCAATATAGTCCTTAGTCCCATCCGTACTTGCATTATCAACGACTAATACATCTGCCTCAGCTGCACTCTGCATCAACAAGGCATCAATTGCTTCTTTTAGTAGTTCTTTTCGATTATAAGTTACAACTACGGCAGCCACAGATTTCAAAATTTGCTAAATCCTTTCGCTAATTAATTATTTTTGCAACTTTTTACTAATTAAGTTCTTGGCTTGATCAATAATTGGAGCCTTTAAAAAATATACTAGCCCAGCATAAATTACTACACCAACAGCCACTTCACAAATCAACCAAAGCCAGCTAGCCTTCAAGTGTGTATTCATCCCAAAGACCGCAACAAACATTACCCCACTGGCCAATAAGTATTTCCATGAACTTTGGAACATTAAGCTTAGATCCAAGTCCTTTCTAACGACATAGAGCTGGTAGCCCGTCACAGCCACTTCCGACAAAACGGTTGCCCACATCGCCCCATTTAATCCCCAGAGACTGATAAAAGGAAAGTTCAAGATAATATTGACTACAGCCCCGATAGTTACGGAAGTCGTAAAGTCCTTGACCCGGTTAATTGGGAGCAAGTACTGCGTTCCAATAACATTGGACCAGCCGATCATCAAAATAACGATTGATTCGATCAGCATGGCTGGACCAACCGGAGCATACTTGGCACTATAATACAATGGCGCTAAAGTTAGCGATACACCAGCAATTCCAAACATCATTGGGTAGGCCAAGGCGGATACGAAATCAAAAGACTTGTAGAGCATCTCATGGGCTTTTTTCATATCGTGCTTGGCAAAGGCATTGGCCACGTGCGGCAGCATGACTGTCCCAGTTGCTGTAACAAAGGCCAAAATCAGCTTAACCAGGTTGTCTGAATATTGGTAAAACCCGAGGCCTTCTGGTCAACCATTAGGCCCAGCATGGTTCGGTTCAGTTGAACATAGAGCTGGGTCGCGATTTGTGGGATAAACATAGCAATTGTTGGCTTAAAATGCCTTAGGGGCTTTAAGCTGGCCAGGTTAACACCAGGCAACATCACTTGAACTCTTAATAAAAACAAAAATAGCGACCATCGAAACGATTTTAACAAAGGTATTTCTCAAAACCGTTCGCCGGAAATCCTCAATTCCTTCATATAACCAAGAAATGTCAAAAGCAACCGCGATCAAGTTGATTGACTGGACCCACATGTAGGTCTTGTTGCCGGAATAAAAGGCCATAAAGACCACAAAGGACAGATAGGCAACAACCGTCATCACAGTCTTGACGATTTGAATTTCCCAGAAGGTTGCCGCCATCTTTTGCTTATTGTCTCTGACGTAAGCAATTTCCCGGTTTCCGTAGTAACCAATCCCGATGTTGGCCAGCAACATGAAGTACTGGATGATGGAGCTGGTAAAGGCGTTGGCCCCAACCCCTTCCGGACTCAGTACCCGGCTGACGTAGTAGGAAGTGATCAGCGGGACGATGATGGCTAAAACCTGGTAGCCGACATTGTAAAGGTAATTCTTAACAACACGCACGATTACTTACCGAATTCCTCATTAACAGCTTCCAAAGCAGCCGCGATGACCTGGTCCATGTTGTAGTACTTGTACTGACCCAGGCGGCCGCCGAAGATGACCTTGGCATCTTCTTTGTCAGCCATTTCCTTGTACTGAGCGTACAGGTCGTTGTTTCTGTCATTGTTGACCGGGTAGTAAGGTTCATCGCCCTTGTGCCAGTCAGCTGGATATTCCCGGGTAATGATGGTCTTGTCCGGGTCCCCCTTGCCAAATTCGAAGTGCTTGTGTTCAATCACCCGGGTATAAGGCGTTTCTGCGTCGGTGTAGTTGATCACGGCGTTACCTTGGTAGTTACCCACGTTCTTTTCTTCAGTTTCAAAACGGAGAGACCGGTACTCCAGTTCACCCAGCTTGTAGTCAAAGAATTCATCGATCGGGCCAGTGTAAACTACCCTGTCGAACTTTTGCAGATACTCGTCCTTCTTGGCAAAAAAGTCAGTGTCCAGTTCAACCGTGATCTTGTCATCCTTGAGCATGTTTTCCACCAGCTTGGTGTAGCCGCCCTTAGGAATCCCCTGGTAGTCGTCGTTAAAGTAGTTGTTGTCGTAAATCAAACGAACTGGCACCCGCTTGATGATGAAGGCTGGCAGTTCAGTTGCCTTTCTGCCCCACTGCTTTTCCGTGTAGCCCTTGATCAGCTTTTCATAAATGTCGCGGCCGATCAAAGAAATAGCCTGTTCTTCCAGGTTTTGCGGAGTCTTGCCCGCCATTTCAGCCCGCTGCTCGTTGATCTTGTCTATGGCTTCTTGCGGCGTCCGGACACCCCACATTTGAGTAAAGGTGTTCATGTTGAAAGGCAGGTTGTACATCTTGCCCTTGTAATTAGCTACCGGGCTGTTGGTGTAGCGGTTAAATTCCGCGAACTGCTGGACATATTCCCAGACTTCCTTGTTTGAGGTGTGGAAAATGTGGGCACCATACTGGTGGACCTGGATGCCGTCAATTTCCTTGGTGTAGATATTGCCGGCGATGTGGTCACGTTTTTCGATTACCGTAACTTCGTGCCCCCGCTTGGCTGCTTCGCGGGCAAAGACAGCACCGAAAAGACCTGCACCAACTACTAAATACTTGCTCATACTTGTTTTGCTCCTTTTATTTAAAAGTGGGTCTGCTTCTTGCCAATGCCAAGCTTGCGCTTGATCAGGTTGTAGCCCTTCTTGATTACCGCTTCACCGCCGATTTGCCCCCAAGGCATTTCAACGAAGTCCTGCTTGGTCGTGTAGAGCCAAACATCCAGCAGTCTTTCGGAAATGTAGCCATAGACCCGCTGGTCCTGGACAGAGTAGCCGTAAATATCGATTTGCCCTTCCAGCTTGCTCAAAACGCCAAAAACAAACTCACAATAAGACTCAAAGGCTGGCCGTTTCATGACAAACATATTGAACATGTGGGCACTGCGCCGCTTCATCATCATGTCAAAAGCCGGCAGATAGTCTGGATAGGCATCCGCGATAATGTCACGGGTCTTGTCCAGAGGCTCTGCCGGATGGGCATGAATGTAGTGGTCATAGTTGCTTTCGATGTAATAATTCCGCTTCTTCGGCACGATCACGTCGTGGTCAACCAAAAAATGCTCGTAGTCGGCTCCTTTAGCCACGTGATCCAGGTTATGAGGCTTGGATACATAAAAATAGCGGCGGTAATGCACCAGGCCAATTGCGTCAAAGTCTTTCAAGTTCTTCCAGGCCCAGTAAACTCCGGTTAGTTCAGAGTAATAAGGATTCCTGGCAGAGATGTTGTCTCCTTCGTCATCGCGTCGGTAGGCAATACCTGCTTTGTAGTTCTTAACCGCCCCGACCAAGACCGGCAGATAGACAGAGTCGTCCGGCATCGGGAACTGCTTGTGGGCCGCGACTAATACTTTAATTTTCACTAAGTTTCCCCCTATTTTAGTAAGCCCCTTCTTTTTTGAAGATGCTGAAGATTGTCTGGAAGAAAATTTTTACGTCATAGGTAAAAGAGATATTGTCGATGTATTCCAGCTCAACGTCGCAGCGCTCCGGGTAGCTGATATTGCTCCGGCCCGTTGCCTGCCAAAGTCCCATGGCCCCAGGTCTGACTGAAAGGAACTTATCCTTGCGGTTGCCATATTCAGCCAATTCTTTTTCAACCACCGGGCGGGGGCCGATGATGCTCATATCACCTTTAAGGATATTAACGAACTGCGGCAACTCATCAACTGAGGTCCGCCGCATCCAGCGGCCAATCGGCGTGATTCGCGGATCTTCATCAGCCAGCAGCTTATAGTCGTTGGCCACGTACTTTTGGTAAAGTTCTGGATCGCTTTTGAGAATTTCCTCAGCGTTCATCTTCATTGACCTGAATTTGTACATTTTAAAAGACTTGCCGCCTTTGCCAATCCGTTCTTGAGCAAAGAAGGCGGATCCGCCATCCCGGCTCTTGATCAGCAGTGACAAAACTAAGAAGACTGGTGAAAAGACGATTAAGGCCAGCAAACTGCCGACAATATCTAAGAATCTTTTCACGTACCGATATGCTCCCAGCCTAGTCTCTCCATCAAAACCATTGTTATCTGTCATTATCTTCGAGCTCGACATATTAAAATCCCTTTATTATATTATCATTTCGCTATTATCATAATATAGCAACAGTACACACAATTTTAATCAACAGTATACCATCTTTGTTTGCTTATTCCAAAACTTGCTTAAGCGTTTTTGGCCTTTTTACTTAATTTCAATAATTGACCAGCTATTTTATCGATGATCGCCTTATCTACTTCAGCATCAAATTTCCTGGAAAAAAGGTGGGCCCTGCCGGCGGGCAGCCAGCAAAGTCTCATAATCCTTCTCCCGCCAAACGTAAGGAATTCCGTCCCACCAATTAATATAGCGGAGGTTGCCTTGGAATTCTTCAGGCCGGTCGTGAACCGGCCGGTCATAGTAGATTCTGTCTTTGAATTCCGGATAGATGTTCAGCATCGTTGGCACCAGCAGCTCATCGACCAGGAAGCCCCGGGCAAACATCGTTCTGATCCGGTCATCTTCCCGCAGCAAGACCTGGACCAGGTCATTTTCCAAACTGACCCAGTTGGAACCAAAGGCCAGTGTTCCAGCGAATTTCTTCCTTACTGGAAAGACCCGCTGCTCTGCCTTTTCGATTTTTCTAAAAAGCCGCATGGCCTTGTTTGGCTGCCGGAAGTTATGGGTGAAATGATATTTCTGCACCCGGGCCAATAACTGTGCCCCATTTTTCTGGGAACTGTAGGTAATGAATTCCTTGCCAGGATGAGCGGCAAAAAAAGCATGAATCTCATCCTGATTAGCCAGCGGCAAGTCCAAGCCAGACAGCAGATGGTAATAGGCATATTTGCCTGGAGCTGCTCCTTGGAAAAGCCGCATTTCAGCTTCAATCTGCGAATAACTACCCCAGTCGATGACCAGGGGCGAGACACTGAAAAGCGTGGCGTAGTTCAGCTGAAAGTCACGCGGATAGCCCACGCTTTTTCTGTCGACCAAGAGATAAATATCGTTACGGCTGTCATCAAGCAGAGTCAGCAAGGTCTGCAACTGACCCGGGTTGCGGTTGGCGATGATTAAGTAGGCATGTTTCTACATTTTTTCACTTTTCAATAACACACTTAAACTTCCCACTTACAAAAGTGGGAAGTTTAAGTTAGTAATTAATAGCCGGTACTGTTGTTTTGATCATTGCCGGCTGAGTAGCCGCCAGTAGTGCCGGAATCAGCGCCATTGCCGGCTGCTGCCCCATTATCGCTTGGGCCAGCGGTGTTACCAGCCCCGCCGGTAGTATCGCTGTCAGTTGTCGTGCTGCTTGAGCTCGAACTGCTGCTTGTTGACGTATCGATTGAATCAGTGCTTACCGTCTTTGTCTTGAGGCCCAGGGTCTTTCTGATCAAGTTGCTGATTCTCTGCCGTTCAGAAACAGAAATCTTCTGGTAGGAAACCCCGTCTTGCATGTAGCTAGTGCCGTGAGTGTAGTCAGTCTTCAAGTCCTTCGTGGCTGCCAGGTAGCGCTTCGCCATAGAAGTCATGTCACTGAAAGTAAAGTCAGTTTGCACTTGCTTGGACAGGGAAGAAATGAAGCTGGAGTTCAGCAGGGTTGTCGCGCTTTCAGCCTTATTCAAGAGAGCTGAAAGGACTTGCCGCTGCCGCTTTTGCCGGCCGTAGTCACCTTCTGGGTCATCATACCGCATCCGGGAATAAGCCAGTGCCTTGGCCCCATCCATGTGAGTCGTCTTCCCCTTGGTGAAAGTGTAGCCTTCATAACTAAAGGAAAGAATCGGAGCAATATCAACACCGCCGACCTTGTTAACGATGGTCTTCAAACCGCCCATGTTGATCAAGACATATGCGTTGATCGGGATATTGTAGTACTTCTTCAGAACCTTGGCTAATTCCTTAGCATTGCCGTAAGCGTAAGCCGCGTTCAACTTGGAAGGTGAATTTTCCGGGTAGTCTGGCAAGTTGACCTGCTGGTCTCTTTCAAAGCTGACCAAAGTTGTCTTCTTGGTCTTTGGGTTCAAGACCGCGACCATGATTGAGTCGGTCCGTCCCTTGTAGGTTCTGCCCAAGGCCCCAGTGTCCGTCCCCATCAAAAGAATTGCAATTGGCTTGGAGTTGCTGATAACAGAATTCTTGCTCCCGTTTTCCGCATTCCCCAGACCGCCAGACCTATAGGCAGTATCAGCCGCGTTCTTTACAGTATTGTACTCATAGAGGGCAAAGCCGCCGATCGCTACCAGAATGACCGCCATCACGCTCCAGAAGATCCGCATGGCCTTGTTGCGTTTCTTCCGCTTGCCGACTCTGGTATTTTTGTCCATATCATTATTCACAGTTTTCACCAGTATCCTATCTATATAATGATTATTATCTCCATTATAATTAAGATCTCGTTAATTTGATACCATGAATTAGATTTTTAGCTTTTTTTAAAAAGTAGACCCGGCTTGCAAACAGTAAATTTCCGCCATTTTCCGCCTATTCCTTCTTTATGTAATCATGTTAGAATGTCAAAGTTGTTTGTTCTAACACTAAAGTGATTTTGTAAAGAAGAGGAATTTCCGTGAAGAAAGCAATGCAAAAATTAACGGCCCTCCTGCTGGCCTCAGCCAGCTTCCTCGTGGCCAGCCCCGCCAAGGCCAGCAGCCTGGCTGACCGCAACTACCAGGGGCAAAAAGTTATCACCGTCAACCAGGAGCGGCCAACTTTTTCCAAAAAGGCCCTGTCGACTAAAAAGGGGGCCTAGCAGATCTACCACAAGCTGGACTTGGACTCTTTAAACCGGGCCGGGGAAGCCGATGCCCTGCTGAACAAGCGGCTCATGCCGGCCAAGGCCAGAAAGCCCCTTTACTGGAACCCAACCGCCTGGCACAACAAGAAGATCGCCGGCGGCTGGCTCTACAACCGCAGCCACCTGATCGGCTACCAGCTGACCGAGCAAAACAATAACCCCAAGAACCTGATCACCGGGACCCGGCAATTAAACGACCCGGGCATGCTCAAGTACGAAAACCAGGTGGCCAGCTACATCAAATCCTCCAGCCGGCACTACATCCGCTACCGGGTCAAGCCAATCTTCCGCGGCCGGGAGCTCCTGGCCCGCGGGGTTGAGATGGAGGCCCAGTCCACTGGCTCTAACGCTGTCCGCTTCCACGTCTACATCTTCAATGTCCAGGACGGCGTCAAGCTCAACTATTCAAAGGGTACCAGCGTGGTTACCGGCGCGGCGAAAAAGTCTGCCAAAAAGACAGTAGTTAAAAAGGCCGCTGCTAAAAAATCCACATCTTCTAAAAAGAAGATCAAGACTTCTACCACCGGCCGGATCGTCGGCAACCGCCGGTCCAAGATCTACCACGTTCCAGACCAGGCCGGCTACCACATGAATTCAGCCAACGCGGTCTACTTCCGCACCGAAACTGAAGCCAAAAGAGCCGGCTACCGCCGGGCACTGCGCTAAAGCATATTTATTGTATTTTTGCAAGGGCCTGTGTAATATTGACAGTAGGAAAAGGCAAGAGAGGTGGACCTACCTTTTCCTGTAAAGGTTTTATATCATGCTCTTTTCTTATCGCATTTTTACACACATACTCTTTCATCTTATTTGTACATGGTACAATATGTTGGCATATCGGGCGACTCATTTCAAACACTTCTAACATCTTTCGCATTTTTACCGATTCCTTTCTATTCATAAAATGTATCGAAGCCATATGCCATCCCCTTTTACATCAAAGAGGAGTCCCAACCGCGGGTTGGGGCTCCTTTTTTGCTCTATTAAGCTTTCTTCTTTTTTCTTCTTGCTCGTTTCTTCTTGCTCGTTTTCTTCTTTTCCGTCTTCATCTTCTTCACCGGCAGCGGGTTCTCTTCCAGCTTGTTCAAACTGATCTGCCGAAGCAGCTTCTTGAAGCGGGCTTGGCTGCCGATTTTTTCTATTTGCCCCCGGTTCCCCTTGAACCAGTAAACGCCACTAGTGTCTGCAAAGAGGCAGACCATATCAGAACCCGCGTAAGCGCCGGTCAAACTTCCTTCCGTCCCACCAATCGCCACTTTTTTCCGGTAAAAATAGCGCGGCTTGACCCCGCCAACCGGGAAATAGCTAGGCAAGCTGTTTAAAGTATCCGGCCGTTAGCTGCTACCGCCAAAACCAGCAGGTCACTCACTGCCTGCCCGGTCTGGTTGTCGATCTTTAGCTGGAGCTTGCCGCCCTTTTCTTCTGTCTCCCAGACGTTTAATCCCGCGGCCGCGCTGGCTGCTGGCAGGTCTTGGTTGGCCTGCTTAAGTGCCTGGTTTTCCTTGGCCAGGCGGGAATTTTTCTTCTTTAAACTGGAATTGTCGCTCGCCAATTTGTCCAGGCGCTTTTTGATGCTGGAAGCTTCCTGGCTCTTGGTCCGGCTGGCCTGGTAGAGCTGGCCGGCCAGCTGGCTGTTTCTCTGGGTCTGCTTGGCAGCTTGCGCGCTCAGCCAGACGCTGGCTCCCATGGCGGCAAAGCCCACCACCAGGGCCAAGACCGTCAGCCAGGTCAGCCAATTCTTCTCCTTCATCATCTTATCCACCTTATATTTTTAACATCACTCTTTCATTATACTGCTTCCTTTGAAAAGGCTTCCGCCCCCCCTGGCTAAAAGAAAAAGGCGGGAACTTCCCGCCTTATTGAGCATCGCGCTCGGCAATATCCCAGCGCATCAGCTTCTCAATGATGTCAATATATTCCCGCTGCACCTGCTGGCCCAGATAGGTCAAACGGATATCGCGGTCGGTCAAGTCGACCACCCTGCGGTCTGCCTGCTCCAGCATTTCTACCGGCAGCCCGGCCAGAATGCTGTTCCTGGACACGCCAAAAATATTCGCTATCTTATCAACAGCCTTCATCCGCGGTACCTTGCGGCCAACCTCCCAATTAGAGATGGTCTGCTTGCTTACTCCCAAGGCCAGGGCTAGCTCCTGCTGACTCATCCCCCGCCGCCGGCGCAGGTCTCGCAAATACTTGCCAATCATGTTCTTTTCCATCCAAAGTCACCACCTAACATAAGCATAACATAAGTTGTAATAAAATGAAATGTTTATGAGAGTTTTTGCCTTTTTTGAGAAAAGAAGAGAAAAGATAAAAAGAAGCCTGCTTCCGCAGACTTCTTAATTAACTTTATTACTTGGTCATTTCTGACTTCTTTTCCCGCAGCATCAAGGCGTCAACGGTTTCCCGGGCATCAGCACCGCGGTTGACCACGGCGTCAACGGCGAAGACGATTGGCATTTCCACGTCATACTTGTCAGCCAGTTCCAAGGCAGCTGGAATGGCGTTGATCCCTTCAACGACCATGCCGACTTCCTTCTTGGCTTCTTCAGCGCTCTTGCCCTTGCCGATCAGGTAACCAGCATTGTTATTCCGGCTTTCCTTGCTGGTAGCAGTAACGATCAAGTCCCCCATGCCGGCCAGGCCGTCAAAGGAGTCTTCCTTGCCACCCATCTTAAGGCCCAGGCGCTTGATTTCCGCCATCCCGCGGATGATCAAGGCAGCCCGCATGTTGTCCCCGTAGCCCAGGCCTGAACAGATCCCGCTGGCCAAAGCAATTACGTTCTTCAAGGCCCCGCAGAGCTCAACGCCCAAGCGGTCAGAGTTGGTGTAAACCCGCATGTTCTTGTTCATGAAGACATCTTGAACCTTTTTGGCCACAGCTTGGTCTTCACAGGCGGAAACGATAGTGGTGGGCAGGTCCTTGGCCACTTCTTCAGCGTGGGTCGGGCCAGACATGGCAACGTAGTGGACATTGCCATGCTTGCCGTCCTTGTTCAATTCGTCAGCGATGACTTCAGTCAAAGTTAAGAGGGTGTCTGGTTCGATCCCCTTAGCCACGTCAACGATGATCTGCCCGTCTGGAATAAAGGCAGCGGCAGTCTTGGCAATTGAGCGGACGAAGACTGATGGTACGGCGAACAGGATGATGTCCTTGTCTTGGCAGGCTTCCGCAATTTCCTTAGTGAATTTAATTTCGTCAGGAATAACCATACCCGGCAGGTTCTTCTGGCGACGAGTTCTTGAAAGTTCGTCGACTTCTTGCGGCAGGGCTGACCAGACGGTCACTTCATGACCAGAGTTGCTGAGCATCCGGGCCAGTGCCATGCCCCAAGTACCTGCTCCCAAAACACCGATTTTTGCCATATTATTACCTCACTTAGTTTGTTGATTCCTATTCGCGGCGGCAAAACGGCCGCCACTGACCTAACCTATTATAGCACTCAGCCGGCAACTTTCTCTTTAACCCCAGCCTAATTATTGAAAAATTATCCTTTGCCTACGCAAAAAAGACGTTTCCCAATTGAAACGTCTGTTAGAGAATAGCCATATTAAAAAGTGTAAACAAAAAACAGCTATGCATTTATCTCCAAGTGAAAAACTCAATAGTTTATTAAAAAGTAACCGCTTACTCTTGCATAGCCTATTGTATGATGTAAAATAGGATTTGACAAGGCTCTTTGTGAATTTAAACATTTTTTATGCACTTTTTTCAAAATACGAACATTTTTCCTAATTGCTTTCTCAGCAGCATAACATTTTATCAATTTGTACTAACGCTAAGCGAGGGGGATTATAACTAAGAGTATATTATAACAACAAATAAGCGCAATTCAGCAATGTTTAAACAGCTTAGGAAAGCAAACCAAAACGACTACTTGCTTATCACGGCTACTTTGATTTTGTTGGTCGTCTTCAGCCTCAGCTTGCTCAGTTACGTCCAGGGACAACAGAAAGCAAGCTGAGCGCGACCAGGCCCAGGCCCTGGCAACCGGCTTCTCCAGGACCTTGAAGGACGAGATCAAGAACGCCCTGACCCTGTCGACGACTCTGAAGGAACTAGTTTTAGCCAGCGATGGCAAAGTCGACAATTTCTCCACAGTTGCCAAGGACCTTTTAGCAGAAAATACCGCGGCCAGCAACCTGCAGCTGGCGCCTAAAGGAAAAGTCACTGAAATCTACCCTTTAAAAAGTCACTGAAATCTACCCTTTAAAAGGAAATGAAGCAGGCAAGATCAACCTTTTGACCTACCCGATCCGGGGGCCGCTTTGCCGCTACGGTATCAGCCACCAGGTCACCGTGTCAATCGACCGGCTCAGCAACCACCGCTTCCTGCTGGGCCTGGTCAGCGGGGACCGGAAGAATGAGTTTAAGGCTTTTGGCCGGGACTGGAATGAGCGCAGCGAGATCTTCAGAGAAGGCTGGGACTTAACCAAGAAGTCTCTGACACATCCCAACCGCCTGCACTTCAGCGGCAACTACTATAGCAAGCTGACCGGGTCTTTGAGTTGTCGTGCCTCAGCTTGAAGAGGGCTACTCAATGCCTCTGGTGGCGATCGGCCGCTGCCGGCAAGATCTCTCCTGGCTGGCTAACGAGCCGGACTCCTGGATCTGGCATGGGATCGGCGAAGATGAGACGGCGCCGGCGGTTAAGAAGCTAAATGACTTGAATGAGGACGGCAACTGGCATCCCTTCGGCTACCAAAACTTCGTTGAGCTGTTGGATGACCCGGACGCCCCATGCGAGCTCTTCAACAAGATCTACCTGCGCGGGGGCGCCAAGAGCATGGCCCAGTTCTGGCGCAAGCAGCGCGAGGAAGGCTTAAACCACGTGATTATCAACTTCAAGCCAACTAAACGGCCAATTGCGGACTGCTTGGCTGACATGGAAAAGTACGTTTTCCCAGAAGTAAATAAAGACTAAAAAAAGGCTCTGCCATCGTGCTTGATGACAGAGCCTTTATTTTTGCTCAAATTAATTACTTAGCTGAGCTAGTTGAAGATGCTGAAGTTGACTTTGCGCTACCCTTCTTTGCAGCCTTCTTAGTTGACTTCTTAGCAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTATCCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTATCCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTGGTAGTCTTAGCTGCCTTCTTGGTGTCCTTAGCAGCCTTCTTAGCTACCTTCTTGGTGTCCTTAGCTGCCTTCTTGGTGTTCTTAGCAGCCTTCTTAGTTGACTTCTTAGTAGTCTTAGCTGCCTTCTTGGTAGTCTTCTTAGTGTTCTTTGCGACCTTCTTAGTTGACTTCTTTGCAGCCTTCTTGGTGCTCTTCTCTGCAGCCTTCTTGCTTGATGATGAAGCTGCTGAAGAACTGCTCTTTGAAGCTTCTGATGAGCTTGAAGCCTTTGATGATTCTGATGAGCTAGTCTTCTTTGATGAAGATTCAGCAGCAGTCTTGTTGCTCTTAACTTCAGTCTTGTTTTCAGTTGCAGCCAGAACTGGGCTTACGCTAGTAGTCAGCAGAGCAGCAGCAACAGCAGCTTTACCAAGGTTTTTCATTAAACGCTTGTTCTTCATAATACGGTTCCTTTTCCTATATCGGTATCAAAACAATTTCTATTACTTGCCCCTAATTATACTCAATTATTGAAAGATGTTAAGCCAAAAAAATTACGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGCTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCCATACGGTCTCCTTTGGGAATATAGCATCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCAATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCCCACAGAGTAAGCAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCATTCCCAGTGACCAAAGTCCATTTTTTGTACTCTAATCCAGTGAAAACGATTTTTCTTACTGGATCAGAACAGTGTTCAGTTTAATTTTACAATCGGCGAGCCAAAAAATTAAGAAAATTAGAATTAAACTTTTATCCTCACTGAAGGCAAAATTATCCAGCTTATTTTCAAGTTAAAAGAGTTTTTAGCCTGTTTTTTCCACCTATGAACATTATATGATCGATTTCTATATGTCTACACAAAAAGCAAAAGTTATATTTTCAATAACAAGTATAAACAAAAACAGTCCTGCTGCTCAGCAACAGGACTGTTAAAAGCCTTATTCTTGCTATTTTACTGCCGCTTTCACTCTTGCGCCCAGCCCCACATAAAATTATACAGTTTCAAATATTCAATACACCGGAAATAAAGGCTCATGGTGGTAATGAAGACTGGTATGACGAGCTATTGGAAAAAACAAGCTCTTACTTCGTCAAAGACCTGCTAGATCAGGCATATAACTCACATGACGAAGTGGAAATGTGCATCAGACTTGAAGAGATCATAGATATCTGTAAGGCAACTGAAAATAGTCACTTTATTTGGTTTGCACGTCTCTTATACCGCCATTTGAGAGGGATCTACACGTTTGCCAAATACGGGATATCAACTGGCAAATTTGAGGGGTATTAACAATAAGATAAAGACCGAGAGACGTAAAGGGTATGAGTATCCAGATGATGAATATAATGGAGCTATCACGGAAGGCTTCCTAAGTCTCTCAATCATTTACACAAGTTTCTATACTGAACCCTTTTAAGCAAAAACTGGCCAAACGACGATTTTTCAGATTAATTTTCAATTATCAGACTATTCTTGCTTTTTAGAGTTAAAATTAAATTAACTTTGGGAGAGGAGGAAAGACTATGCAATTTACCAAGCAATTTGAAGGAACTTTCGCCCAAGTCAAGGAACAAATCGACAAGTTCGTTGCTGAAGGCGGCCATATCGACGCGGTCATCACCGACCACACTAGCGAAAAGGTTACCGAAAACCACACCTTTAGCTACAAGATGCGGGTCATCGCTATCTGCAGCGAAGAAGAAAGCTAAATAATCGCAAAATGCGCCATCCCCAAATCGTGGGATGACGCATTTTTTGTCTATAAATTATTCAACGCTTGGCAACTTAATGTCCACGTCATGTTTATCAGTAACTACCGTCATGACCGTTGGGTCGTAGCCGGCTTCCTTAATGCACTTTGCTAACCAAGGTAAAGAAGTCGACTTTGCCCTGCCATGGGGGATCCCGCACAGCGGTGACTAAGACTTAGACGATCTCTTTGCCTGGATTGACCAGATTATACAAAAGGAGGAGGACTAAAACCACAAAAAGTACAATGAATAAAACGAAGACTCCAGGCAATTCCGGCAACTTAATGTTCATTTTTCTTCCCCAAAAATCAAGCAGACTAATCAATAGAATAATTTTTGTAATTGATTAAAAAATCTATTGACATCAAGCAAAGTTCCTTTGAAATTAATACTATCAAATAAAGATTACAGAAATATTGAATCGCTTTTTTGTCTGATATGGGAGGAAATCATCATGAAAGAGGTCAAGCGAATTATGGTCGCCGCTGCCGCTGCCGTCATGGCGCTCACGGCAGCTGGCTGCAGCTCATCATCGTCATCATCATCCAGCAAGTCTTCTTCCAAGGTCTACAAGATCGGTATCTGTCAGCTGGTCCAGCACGAGGCTTTGGACGCGGCGACTAAGGGCTTCAAGGAAGAAGTTACCAAGGAACTGGGCAAGAGCCATGTCAAGTTCGACACGCAAAACGCCCAAGGCGACTCTTCAACCGCCACTACGATCTGTAATAACTTCGCTTCTGAAAATGAAGACTTGATTTTGGGAAACGCTACCGCCTCCCTGCAGGCAGCCAGCGCGGCTACTAAGTCAATTCCAATCTTGGGAACGGCGGTCACCAACTACCAGGTGGCTTTGAACCTGAAGAAGTTCAACGGCACGGTTGGCAGCAACATTTCCGGAACTTCTGACCTTGCTCCTTTGGACAAGCAGGAAAAGATGATCAAGGACTTCGTTCCTAATGCTAAGAAGCTGGGCATCCTCTACTGCTCTGCTGAGCCAAATTCCAAATACCAGGCTGATGAAGTGGCCAAGTACGCCAAGAAGGACGGCTTGAAGGTCACCGAGTACACTTTATCTGACACTAACGACGTCAACTCTGTCACCCAACAAGCTGCTAGTGCCAGCGACGTCATCTACATCCCAACTGACAACACGGCTGCATCCTGCGCCAAGACCATCAACAACGTGGCTCTGAAGGCCAAGGTGCCAATCATCACCGGTGAAGAAGGGATCATGAGCAAGTGCGGGGTTGCCACCCTGTCTATCGACTACTACGGCCTGGGCAAGCAAACTGGCAAGATGGCCGTGCAAATCCTTACTGGCAAGAAGAAGATCGCCCAAATGCCGGTTCAGTACTACAAGAACCCGGTCAAGGAATACAACCCAACCATCTGCAAGAAGCTGGGCATCAAGGTTCCGGCCGGCTACAAGGCTTACAAGAACTAGTTTTTAGTTTTCTTTTGTAAAAAGCTGCTTGAGACTGGAGGACACCATGGCAGGATACTTATCATCATTGAGCTTTCTCGACTTGGCTGGCCGTTTGCCAGCATCAGTCGCGCAAGGGCTCTTCTGGGGCATCATGGCCCTGGGCGTATACATTACTTTCCGGATCTTGGACATCGCAGACCTGACGGTTGACGGGACTTTCGCTACAGGCGGGGCGGTCTCAGCCGTCTTGATCATGAAAGGGGTCAACCCCTGGCTGGCAGTTCTGGTAGCCCTCGTAGCAGGCCTTTTGGCCGGCGGGCGCTTTGACCTTGCTGATGGCAACTCTGGTCAAGCCGAAAGTTCTCCTATTGGATGAACACACGGCGGCACTGAACCAAAAGACGGCGGAGAAGGTCTTGAAGGCGACCGACCGGATCGTCGAAGAAGGCAAGCTGACCACGATTATGGTGACTCACAACATGAGGGATGCCATTGCCCACGGCAACCACTTGATTATGATGAACGACGGCAAGGTCGTTTTGGACATCAAGGGTGAAGAAAAGAAGAAACTGACAGTGGAGAAATTGCTCCACCAGTTTGAAGTCGTATCTGGCGAGGAATTCGCCAGCGACAAGGCAATTTTAGGCTAGAAAACAAGAAAACTGGCGATTTCCAAATCAAGGAAGTCGTCAGTTTTTTCGTTTATTCGAAAAGCTGCCGGTATTCGCCGTAACCCGCTTCTTCCAGCTGGTCGTAAGGGATGAACTTGAGGGCAGCAGAGTTGATGCAGTAGCGCAGGCCGCCTCTGTCCAAAGGACCATCGGTGAAGACGTGGCCCAGGTGGGAGTCAGCCTGGCGGCTGCGGACTTCGGTTCTTTCCATGCCAAAGGACTGGTCCCGGCGCTGGGTCAGCTTAACCAGAGGCTTGGTGAAGGCTGGCCAGCCGCAACCGGAATCGTACTTGTCCAAAGAGGAAAAGAGGGCTTCCCCACTGACCACGTCGACGTAGATCCCTTTTTCGAAGAAGTCGTCGTACTCACCTGTATAAGGCGGTTCAGTTGCCGCGTTTTGGGTCACGTCGTACTGCATTGGCGTCAGCCGGTCTTTCAAATCTGCTTTTTCGTTCACCTTGGTCACCTCATCTATTTAGATAAGGCTATTGTAGCTTGGATAGATGCGCGGGGCCTTGATCTGGATCAAGAAATTAGTTAAGAGATTCCTTATTTTTGGCCTGTACCTCTGTAAAAGGCTTAATTGCTGACAAGTCACGGCTAAGATGCTTCTTGGCATCCCGCAAGTCAATGTCACTTTACAGATTAATGTCACTTTGCAGATTAAGGAAGTAAGCATCTGACACGCCGAAGAATTTGGCTAATCTGAGTGAAATGTCAGCAGTGATTTCCTGGCTGCCGTGCAAGATATCCTTGATTCTTGCAGCCAGCACATGGATGGCTTGCGCCAAGTCAGCAGCGCTAAGGCCTAACGGCTGCAGGTATTCGTCATTGATGGTTTCAGCAACTGTTGGCATTTTGATAGATTCGGTCATTTTTTTCCTCCTTAAAATTATTTCTCTTGTACTGTTTGAGCCTATTCTACCTCATCCAAAGCAGATTTTTGAACATGCATTCGGTAGAGAACCCCCGTCACTACAGCATTCTTACACAGCAAACTTTTTGTAAACTAGCCACCGCTAGCGCCTTTCTAGAAGAAGATCTTGCCACAAAAGTTTTTGGCCGATTTTTGGGCGAACGAAAACCCCCTTGGAAATTGAGAGCATATTCCAAGAGGGCGTTTATATCTTTTAGCAACATCATGCTTAGCGCATGGTTCGCTCGGCGCTATCTACCTTATTACCCATAATATCATATTTTGCATGTTTAGTCCTATGGCTTGCTCTATTTTAGTGCCGCTTGGACGATTACCATGAATAGGTGGATATGCCTAAAAACAAGCAAAAAAGCACCGGATTTCACATCCAGTGCTCTTAAAAATTGCTTAGTCAAAGAAGCCGTCAGCCTTCAAGGCTTCCAAGTAGCGGTGCACGGCGTCTGGCCAAGTTGGCAGCGGCTTGAAGCCGTTCTTTTCCAGCTTGCTCTTGTCCAAACGTGAGTTGAATGGCCGTACAGCCTTGGAGAGGCCGTATTCTTCCGTGGTAACCGGAGTTACCTTGGTCTTGTAGCCTGCCTGGCGGTAGATTTCCTTAGTGAAATCGTACCAGCTGATGTAGCCGGTCTTCGTGCCGTTTTCATCATAGCCGCTGGCAGTTTCTGGCAATTCCGCGTTAGTTGCGTGGTAGTAACCGTACTTGTCAGTTTCGATCATGTCGACCAAAAGCCGGGCCAAGTCCAAAGTGTAAGTTGGCGTACCGATTTGGTCGCTGACCACCTTGACTTCATCATGAGTCTTACCCACGTTAAGCATGGTCTTGATGAAGTTCTTCCCGTTCAAGCCAAAGACCCAGGCGATCCGGACGATGAAGTACTTGTCCAAAGTTTCAGATACGGCAAGTTCCCCGCCCAGCTTGGTTTCCCCGTAAACGTTCATTGGCTTGTAGCCCTTGAAGTCCGGGTCCCATGGAGTAGTGCCCTGGCCATCGAAAACGTAGTCAGTGGAGATGTAAACCATTGGCACGTCTAATTCCTTGGCTACGTTGGCGATGTTTTGAGTACCATCGGTGTTAACCTTGCGGACAGCCGCAACCTTGTCGTCGTCTTCAGCCAGGTCAACCGCAGTCCAGGCAGCGCAGTGAACGATCACGTCAGGGTTAACTTCAGTGATGGCCTGCTTTACGCCTTCCGCGTTAGTAATGTCCAAAGAAACGTAAGGAGCAGTGGTAACGGCTGAGCCGTCAGCGATCCCGCTGTATTCCGGAGCCAAGTCGCTGCCAACGCCTTCGTAGCCGCGCTTAGCCAGTTCGTTCATCACGTCGTGGCCCAGTTGGCCATTGACGCCAGTTACGAAAACCTTCATTTTTTCCTCCTAATTAAAACTTGAAAGTGTCCTTGAGGCCCAGCCACTTTTGGTCCCTGTCGGACAAAGTCAGCTTAGTACCGTCTTCCAAAGCGTAGCCGCTAGCATCAGCTGAGCCCGGGTATTCGCCAACCAATTGCGGCCATTCAATCCCGATTTCAGGGTCGTTCCAAGCCATGCCGCCTTCATCGTTTGGGTGCCAGAAGTCGTTAACCTTGTAGCAGAATTCAGCCACGTCGCTCAAAACCAGGAAGCCGTGGGCGAAACCTTCTGGAATCAAGAACTGCTTCTTGTTTTCAGCGGTCAGTTCCACCCCGTACCACTTGCCGTAGGTCTTGGAGTCGCTTCTAAAGAATCTGTCTAGCGCTTCTCTAGGATATGCTTTCATAGTTGGTGGCGTGTACCTAATCGTCATCTACTTGATAATTTCGATGCTGTTTATCGGCATTAAGAAACTGTTTGCTGATGGGGAATATCAGATTGATTTCAAATTTTGCATATTGCTTTCGATATTTTCCATTATATTTTTCACCGTAGGAATTGTGCTGCTCAATACACTTCACTTAACGTAATGTATTAAAGCCCATAAAAGATAAAAGTTCTCCGCTCTGTTAGAAGTGAAGTCTAACAGTTGCAGAGAACTTTTTTCTAATGCTATTTAATTCTGTACCCGGCTGGTACCATCGCTGTAGTTCAAAACAACGCCGGGCTGGACGTTAAAAACATAGACGTTAAAGGAAACCGCGTTGCTGCCAACAGACTTGGCCTCCATTTGAACGCCACGGGCCAGAAGTTCATCGCCTTTGAAGATTGGCTTAACCCGGTAGCGGACGTAGTTATTTGAAGATTCCTTCAAATAGTCAGCTACTTCGTTTTCGTATGGCAGCATCCCTGATACGTTCATTTCTTCCGTACCAGTGATTAGGTTCTTCGGGTTGTTATTCTGTCCAGTCAGCTGGTAGCCGATCAAGTGACTCCGGTTATAGAGCCAGCCGCTGGAAATCCGCTTGTTGTGCCAGCCAGTTGGATCCCAGTGCAAAGGTTCTCTTTTAGCAGTCGGCATCAAAGACTGATTCAGCATTGCATTGGCCATAGTAGCCCGGTTCAAGCTGTCCAGATTGCCGTAGGTCTGCCAGGCACCGCGGCTGGTTGACAGGTCACTTTGGCTGAAGTCTGGTTGGTTGTTATTTACTTCAGTAGACAGTTGCCCGCTATAAGTCAAGGATGCCAGATCAGTTTGCTTTGACTTAGCAGAAGCAGTTTCTTTCGTGGACGTAGTCTGGCTGGTCTTACTACCCGGCTTTTTGGCCAGCTTTTCCTTAGCTTCCTCAGTCTTATCCTTAATAAGATCAGTCTCAGCTTTTAAAGTAAGATTATCGGACTCGTAGTCTTCGATTTTATCTTTATACTTATTGACCCGCTTGGTCTTAACGGTAATCTTTGGATAATTCTGGGAATCAACCGGCTTGGTAGAAGTCACGGCAAAAAGCAGAGCAACCGCACCGGCAACAAAAATTATTCTTTTCTTTTTCATTATCTCTTAGCCCTCCGGTAACCTGCTCTCTGCGCTTCTTCTTCACTGTTGAAGTAGACAGCGTTTGACGAATTCATAGGGTAGCCGGCCTGGCCAGGGACATGATAAATTTTTGAGTTGACATTACCAACAATTTTCTGAGAGTCAGCCGTGTTCATATCACCGCGCTGGTTACTTGAAGTATCAGCTGAGTCATCAGTGTTTGAATCACTGGCACTAGATGCGGCAGCGGCTTGCTTTTCCGCGGCTTTACGGGCGGCTTCAGCCTCCTTTTTAGCTTCAGCTGCCTGCTTTTCCTGCTCCCGCTTAGCCTTTGCGGCTGCTTCTTTTTCTGCCTTTTCCTGGGCTTCCAGCTTCTTAACCTTCTTAGCCAGAGGCGCGTAGGCCAACAAGGCGGCCTTTTTTGGCAGAAATCAGCGCAGCGTTCTTTTCTTTTACCTGTTGGTATTCCTTAGCGCCAGTATACTTAACCACGACTTTGGTCCGCGGACTGTATTCTGCCGCGGCTACACTGCCAACACCGACAGTCACAAAAGAAAGGGCCAGCAAGAGCCAGGCAGTTGCCTTTTGTACCTTTAACTTGTGTTCTTTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATAGCTCCCGGAGAATCAAGACAAATATCTGATTTAGGGCATGGTAAATACAGCCACCTTCTGTAATTTCAAAAAAAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGTTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGAATATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAACCGAATAAGACTTTGTGCTATGTCGTTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGTTTCTAGTACGATATCTGGGTGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGTTTTGAACGTAGGCCAGCCGTTGCGGGTGCTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTGGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCTAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATTCAATTAGATCTAATTTTCTCAACAGGACTTTAACAGTCAACATACTTAGACGAGATTCTCAATTGAATGGTGAAGCTGCCCGTTTTACTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTACTGTAGGCAAAATACATCAGAACAAAAGCGGCAATAAAGAAGCATCCCCCTACACTTAAAATTCCTAACGGCAGATAGCTCATCATAACGCCTAGCAAAGACATAAAGGCAAGGCAGCCCCACCCTCTAACTGAATAGTAATCTTTATCAGCCTTACCAGCTTTTTTCTTACGATAGCTGATCGTTGTCATAGCAGCAGATACTACTAGCAATATGGGCCATAATACGGCCATAAATATCCTCATCTCTTCCTCCTCAAAAAACACACGATTAAACAGCTAAGTGCCGAAGGTCCCACTTAGACTTTACATTATAGCACGCGTGTAAAGAGAAAAAGACTCCCTATAAAAAGAACGAGTAGTTGGTTCAGAAAAAGTGCATAAAAAAGAGCGCCTATTAAGCGCCCTTACCGGTTCGGCACAAGTAATAAGCTGGTACCATTTCTTGCACATCAGATATGAACCCGGTTCATAATTCTGGTATCTATATTTTAGCACACACACCAAATACCCCCTTGAAGCAAAGAGAGCACACTTCAAGGGGGGCGGTAATTAAAATAACAGTATGTATTTATTTTAGGCTGGCGATGTAGTCCTTGGCATTCATGGCCGCGTGACGGCCGGAGTTGACATTGTGAGCGCAGGCCGAACCACCCAAGGTGATGGTGTAGACGTTGCGGTACTGCATGGTTGAATCCATGCCAGCCACGTACAAGCCTGGGATCGTGTTAAAGTCAGGATCAATAGCCTCAAACTTCCGGTTAGAGCCAATCCCGCCAACGCCGATCAAGTTGGATGGGTCAAGCCGGGCAATGTAGTATGGCCCTTCTTCCATTGGAATCAAATTGTCACTGTCCTTGGCGAATTCTTCATCCTTGCCTTGGCGGGCAAACTTGTTGTAGTCGTTCAAAGTCTTGGTCAAGATATCCTTTGGCAGGTCGAAGTGATTGGCCAGGTCTTCCAGGCTGTCTTCCTTGTACAAGGAGTCACCTTCGTTAGTTTCAACAGCTTGGGCCAGGACCTTGTCCGCGTCGGGGATGCCAGCGGTAATTCGGTCATAGATATCCTGGTTGAAGACTTCGTAGGCATTCTTGACTGACTGCATGGCCATTCTCCGGTAGAGCAGGTTGTACTTCTTGGCATTTTCGTTGACGAAGCGGCGGCCATCTTGGTCGACAAAAAACGTCGGACCACCAGATGGCAAACTCATGAAGCCATTGATCGGATCGATATACAGGTGCACGCCTTCGTGTGGCAAAGCCATAATGTAGTTCATCATGAACTCAGGGGATTCAACCAGCATGTCTCTAGCCCCGGCAGCCATGGCCATCTTGTAGCCGTCACCAGTGTTGGAAGGCATTGAGCAGTAGTGCAGGTTCTTGGTTGACCAGCCTTGCTTTTTCTCCTCAAAACTCTGTTACCGTTTTCAAGATTAGTATACCAAGTTTGGTTATTGAAGGTATAATCATAATTGTGATTGATAATCGGAATGACTTATTAGTGAGGAGAAAAATGTATCTGGAGCACTTAACGACTTTCGTCAATTTGGTGGAAACGCTCAACTTTTCCAAAACGGCAGTCAACTTGAACATCTCTCAGTCTTCAATTTCTCAAGCGATTGCCTCGATTGAAAAGCAGCTGGGCGTTACATTGTTTTACCGTAGCCGCAAAGCTGTCAGTCTGACACCAGCTGGACAGGAATTTTACGACCGGGTCAAGCCCTGGCTGAACGAGTACAACAAGGCCGTGCAGCATGTCCAGCAGGTGCAAAACGCGCAGAAGATGAACCTAACAATTGGCTACAGCGGGACGCCGTATGAACATACTGTGGTGCCAGAACTAGTTAGGGCTTTTTGCCAAGAGCATCCCCAGATCAACGTTTTCCTGGAGAATTATGCCCACCAGGAACTGAAGGGCCACTTGACCCATGGAAATTGCGACGTGATCTTCACCATGCCGGACATCATTGCGGGAATGGACAACCTGGCTTACCACAGCCTGCTTATTGGCTACTATTGCTTGATCGTGCCTAGCGAAGTCAAGCTTGGTCCTCCGCCAATTTCTTTGGAAGAGCTGAGCAAGAACAGGCTGATCTTCCTGGACCACCGCTGGTGCCCGCCTACGCAAGACCAATTGCAAAAAGAGATTTGCAGAAACAACCATTCTCTGGACCTGGCCTATGTCAACAATATCGCGACCGCACGGGCCATGGTTAAGGCCCGGCTTGGCTGGGGAATCTGGGCCAACTTTGTGTCCGATCCTAATGACCTCGACCTTAAAAAGCTGCCCCTTTCCACCAAGATTGTGCCCGACTATGGTGTCGCCATCTTGAAGCAAGGCAGCCCGCAAGCCGCCAGACAGTTCGTCAGCTGGCTGGAAAAGACCGGATTGCCAGGGTGAGATGTGGGACCAGTATCTTTATATGCAAAACAGGGATGTAATCCGTTGTTGGACTGCATCCCTTATTGTCGTCATGGCTGCTTCTTTAGCTTGACAGCTAATTTCCCATCATTCTTAATCCGTGAACTTGTAATATAACCTACATTGCGTAAGCGTTCCGACAATGCTACATTTCCTTTAGTGTTATCTAATTTTACCTCTTTCAAAGAATTATACTTTTCATAAAATTCATGGTAAGTACCAGGTAATTTTGAAAAGCATTGGCGAAAATCGTCTCTATCTAAAAGATCTATATTTCTTTGCATCCAAGGTACTCTCTTAACATCACTTAAGTTTTCCAAAATGGCGAAGAACCACTGCTTATTAACATCAAAAAACTTATTAGCCAAATTCATGGCCACTTCTTGATCTACCATTTTTTGTGGTAAGTTGTTGTCAACAATTCTATTTATAAGTTCAGAAGAAATAGATGGACTTGCTAATAGATTAATTGCCAGACCATTGATATCTGAGATATCCAACTTATCAAGTGCTTCTAGCTGATGTTTCAAAATATAAGCTGTAGCTAACTCATCACTCACAGATTTTACTTGGTCATAATATTCCTGTGTAAACTTAAAGAAATCTTGGTCAATTAATACTCTTAAATTCTGCTCCGGAATATCTGAGATAGTACCGCTAAATTTCCATCCCTTGAAACATGGAGCTAAGCTACTAAATGTATCATCATCCCAAGTAGCATTAATAAACAAATCATCTACAAAATCTTGGGTACATACAAGTCTATCACTAGCAATTATACTATCGATGTTATTTTGTATAAATTGGAACAACTCGGGTGAAAATTTAAAGGAAGACCAGTACTCACCCACTGTAGACCATGTAGCTTTAACTCTACTATTCTTTAATACCAGATTCCAGATATATTGATCCGGTTCATCTAAGGTGAATTCTGATAAACTAACCCCTACAAACTCTTCATGTTGCAACAGCCTATCTTGATAATCTTCATTTTCTTTAAGGCGGTCAAGCAAATCTCTAATAGCTTCTATGCTCTCAAAGATATTGTCATCTGCAAGAACTACTTCATCCATGAAAATCGAAAGATTATCTTTCTCATAAATATATTCCAAGATCTGCATCTGGAGATTATCATCACGATCAAGTTTCAAGAGGTTGGTATACGCATGTTTATTGAAGCTTTTCTGTAAGTCTGGATTAAGTCTTCCCAAAATCTCATCGAGCATCTTCTCGTTAATCTTGTAATATCTCTTAGCAGTAATATGGTTAATCATACTTTTTGGAACATCTGATAAATCTTCCTTGGAAAACTTTACAGAGAGAGCATTGTCTAAAATTTCAGTCATACGAGACACACGGATATCTTCAAACCTTTGAAGACTGTTTTCAGTGTAAGACAGATATTTAGAAATCGACTTGCTCGTATCCATTTCTTTGATATCGGATGTGTCTGCAAACTTGAAAATCAGCTCAAGATAGCAATCGACCGTCTCAGGTGACAAGTCTATTCTATCTTGAATATAGTTAAACATATTGTGCCAAGCATACGATAATATTCTAATAAACTTGCATCTATTTTTCTTAGCTTGATCAGTTTCCAACGCTAAGTAATTCGAGACAAATAACCAACTGTCTTCTGTTTCGTCTTTCAGCTGTTTAATAAAAGCTTCAAGCTTCTGATCAGTGCTAGAATATTCACGTAACATATAATCCATTAAGTCATTATTATAAATTTCCTTCTGACTGAAATCTATCGCTCTCAATCTATCTGCGACATTTGCAACCTTCGTAAGTTTATATGATTGTGGCAGCTTCTTTCTATTTTTGACTGCTAATATAAAGTTTTGATCTTCTCTAGAAATACTGTTACCTTTAAAGTAATTAATGTAACTAGCATACTGCTCATCAATATAGCCGCGTCGTAGTAAGAAGACTAATAGATTATTTTCTTTTACTTCATCTGGCAAATAGTCATCCAATGGATAATTTTCTATAAGCTCTGCCAGTGTCACCAAATCTAGTTCGGTCATTCTCCGCTTCAAATTTTGCAACTGTGACTGGAGATCTTTTACCTTAGATTCCTTTGCACTAGTTGCAAGTTCTATTCTAGATTCATACTTATTATACAGTTCATCTATATTGCAATCGATTCTACGCTCTTGAGTATCTTCAAAAGAAATATACTCAATGTTGTCAATTCCTACATCCTTTAAATCTTTTAGTGTCTGTTTTCCGTTCAGTAAATTCACCGAATTAAATTTCTGACGAGAATATCCATACCCATGATAAAAGCTTGTTGTAACACCTTGATAGTTTGTAGTTTCTAACAAAAAGGCGGTCATTAACTCCTTATGGCTCTCCAGTACTTCATTCTTAGTACTTTCTATTTTACTTTCTAACGAAGAGATTTGTTCTTTAAGGTCTCTCTTAATTGTTTGAAGATATGCCTCCTTTCCATTGAACACATCTTTGACAATCCCCTGCTCAAGTTCTAATTCTGCAAACTCTTTAGGATAGAGATTTTTGAAAATAATGAGAGCTAACAATTTTTCTACATCTAGATCCAACCCTTGTTTTTTAATAATTATTGGCTCATAAACCTCAAATTCATTCCAAATATTGACCAAGACCCTAATATTTGGAATATATGGACTTACATCAAAAATAAAATCTTTTGTGATCTTAGGCTCTAGCTTACCGTGCTTTACCTTCTCCAACAAAAATTCACCTGCATTTGTGGCATTCATTACAGGGATTACAGGAATGATATAATCAAAAAATTTAGTTCTCTCTTCTTCATTTTGAAACATATCATCACCAAGAGCATATACGAAAACTAAAGGCTCTTTAATTGCATCATCTCTATTTAGAAGCGAATTCAATTCTCGCAAATGCGAAAAGATGTCAATGTTCCCCCATCGATCTAAATCTTCAAAAAATACAATACGATAATTTGTTGTTTCAAAAAAGTAGGCTAACTCATCCATGTTCTTATCAAAGAATGACTCTGAAGTTTGTCGGTCTACTTCCGCCACTTTGCCTACGTTTATCTTGCTCAAAGATAGTCTTGATAATATATGTGCAACTGCTTTAACAAGGATATTTAATAGCGTTCCGGACACAACAACAATAACTATCAAAATAATATAATATAGCATGCCAAACGCATGAGCATGTTTTACAGCTTGGTCAAGAAGAGAGCGATTCTTAGACCACAACCCATAATCAAAGATATACAAGCCGATTAGGAACGAAAGGACCAGGGTGATTAAAATAATAAAAATCTTTATAACGGAAGGGTTATGAAGTTTTCGATACCTGCTCAGTGGTATCTCGCTTGGCTTAACCTTGTAAAAAATTTGCTTTAAGATACCTCTTTGAATCTCTTCTTCAGTTAAAGATGTATCACCATCATCAGGATCTTGCTTTGAAGAAAAAGCTGCCAATGATATATTCAGACTTATCTTCTCAACGTCTGGATGCCTCTTCAAATATGATGCTATAATGCTTGATTTTCCCGATCCATACGGCCCTGTTAAAGCCACATTATGCAATCTATCACACTTTTTTAGAACCTCATCTAAAAGTTCTAAGTACTCGTTATCGGATTTTAGGTTGTCATTTGGTGCCAAATCATCAAGTTTCTTTTTATTATTTTGTTTCATCTTACAATAGATTCGCTTACTATAATATCCCACGTATCTTCTCCTTCAAAGTCCCTATCCATATTGATATTTAGACGCTAATAATATAAAATCATTGATATTTAGACGCTAATAATATAAAATCGTACAAAACTGTCCTATAAACATTGTACTTCACTGTAAGGTAAGCACCCAATAGTGTGGCATATTAAAATCCCATCCTAGCAATGCTAAGATGGGATTAATCATTTTATGAGACTTTACGTAGAGTGAAGCTGATCAATGGTAAAGTCCTACATCAAGCGCATGACTTGCTCATCAGACAGCTCTCGCACTTCGTCTTCATTGTTTGGCCAGGCAAGCTTTCCATTCTCAAAGCGCTTATTGCTAATTTCCCAGGATTTTACAACTCAAGCCATACGGCTGACAGATTTTCTGCCAGCCGTATTTCTTTTATGCATGACTTTCCAGAAATGCGAGGATCTCAGCTTTAGTTCGGGTACTTTTATCAATAGCTTTTAGTAATTCCTCCTGCTCTCGGTGTTTCTTGAGCTCATAGAGAGCATCTAGCTTCTGCGACGCTTTATCGCAGCGCTCTTTAAGGCGCCGGAGTTGTTCTTCTGTTTGGGAAATCTCGGCTTCAATTGTCTTAACATTCTTCGTTCTCGGCATCTTCATCATCGTCTTTCTGTTCTTCTGGCATTGCGGCGTTCTGAATGTCTTTTCCAATCTGTCTTGCCTGTGCCTTGATCCATTCTTCGTCCAGTCCAAAGGCACCTAGTATTACTTTCTGGGTAGCTGTGACTGCGTGATCGAGCTTATAGTTGCCGTTCGGCTGGCGTATCAGCTCAATCTTTTCGAGCTCTTTCAGTGCCGAAGGTACGCTCAGATAGTTAGGCTTGCCCGGCATTTCGGCTTTGCGCTTTCTCAAAAGCGTGTAGATTCTTGCTCGGATTATCAAAGCAATGAACTGAATGAAGATCTTAGCTTCAGCCGCCTGGCTGCTTGCGACTCTGAATGAGCGATTGCCAAGGAAGGTCTTATCACTGCCAAACAGCTTCTCTGAGATATCGCGGCTCTTGTAAAGATTCAAGGCTTCAGAGGCTGTCATCTTTTCGGAGGTCACGATCGCGAAATAGCCGCACAGCTGCAGCTCTCGTTCGATGACATCTTCCCGTTCCTCGTAGCCATAGAACTTGTCTTTGTGGTAGGTGAGCTTGAAGTAGTGCTCGTATCGCTTTGGAAGCTTGTATTCTCTGCCTTTTATCTTGTCCATCTCGGCTTCCATTCTGTCCAGATCAGCTTCCAGTCTAGCACGCTCGCTAGCCTGCTTCTTGGCCTTGTAGTAGATATGAAAATAGCGGTCAGTGTCGTCATCCGCGTACAGCTTGGCTTTAACCGTCATGCCATAAGTCTGGTAAGCCTTGATGGAGCAGGCTCTCTTTGATTCGAATTCGCCCATGTGCTCCATGATCAAGCCATGTACAAAGGAGGCCCTGCCTTTAACCATCATCACGAAATCATAGTCGCACGAGTCCATGAATTGGATGTTAGCCTTACTGAAGTATCCACGATCAAGAATGAAACCTATCTTCTTATAGCCGTAGCCGCGAATCTTCTCCAGCATGTATTTCAGTTGTGAGACATCCACGATACTGCCCGGGTAGCTTTCATAAAGCAAAGGCTTCTCATTGGTCATGTCGTAAGCAATCGAGTAGTTGATTATTGGAGCGCCAACTTCATTCTTAGGGTGACCGTATTCCGCCATCTCAATATCTCCAGCCTTACAGTTCTTGTTGGTGGAGTCATAGGAAACGTAGATTTTCTCGTTCTTATCGTGGGTGGCGTTCCAGCTGTTCAAGAATTCAACTCTGTCATTGTCGTCAATCTCACGAATGAAGCGCGAGATTGTAGAGTCGCTGTAAATCTTGTTCTGTGGCGTCATCAATGGGTGGTTGTATGCATAATCCGGGAAGTGCTGAGCCACGTTGCTTTCTGCGATAACTGAGTAAGCGGCGAGATCAAGGAGCAGACCTTTTCCCCGGTCATCCCAACGCTTCAAATGTTCAGCGAGCTTGTAGTCTTCAATAATTCGTCTGACTAAAGAGAAGGCACCAATTCGGATACAGCTGCTTCTAGACTCATTGACAGGTTCAGCCGCCGTTCCTTCGGCGGGAATCTCAACATCAGGGAAGAATTTTTCGAAGTTAGGGTTAGGGAACATCATTCCAGGATGATCTGGGTCGGCTTTCCCGATGGTCGTTCTTCTGGCAATGTTGTATTTCTTCTCGGGAAGGTACTCTCTAGCATAAGTGTATTCGATGTAGGTAGTCTTGCCCCGTTTATTTCTGGAAATTTTACCAGTGTTCTTAGGAATGTTAACCAGGCAGTTGTAGTACATGATTTCCTCCTTCACTGAGTATGATATCATACTCGAATTATACCGTAGAAAAGCACATCAATGCAAGCAAAGATGTGCTAAAAATGTAGTATTTTTGTGGGTTTAGGGCACTTTCTCTGAGGACTTGAGTTTGCTTGCTCTGGGAAGTCAACACTCAACCTAACTTAGCCAGATTAATCATGGCTCAAAAACCTGCCTACAACTTCAAACATAAGCTCGCTATTGTTGTCACTGTAGAGTGGCAACTCAACCCCTTTGGACCTCATAAATCTGTTTCTTGTAGGCCTGTTCTTAAACTTGAATCTACCTTTCAAAAGCTCAAGCGAGACGATTAGATGTTCAATCATAAATATAGTGTTCCTACGCATTCAATTGTTAGGAACAGTATATGACTATTGAACACAGGTCGGTAGATACCACGCTATTGTGCACTTACTCTGCACCTAACTCTTCAAGTAACTTATTCAATCTTCTCTTCATGTTAGCAACAATATCAACAGCTAAGTCCCTCTTGATATCCTCATCTGCACTATCATTCTTAAAAAGAATTTGAATCGTTGGCAACAGATCTAAATGTGTTAAAAGCAGCAACTCACATCTCAAAATAGGATCATCTATTTTCTCTTCTCTGTAAGGACCATCATAGGAGTATAAATCTACACCTACTCCGACTAAATCACTGCCGCTTCTCAGCTCGACTTTAAGGTTTCTATGTTCCTTATACGTCATGGCTAAACTCACCTCAGTAAGCCTATCACTTTCTAGTAAAAATGACAAAGTCGTCAACATTTTTATTACATCGCTACCCTCTGTTGAAACAGTATTTAGAGATGCAACAGTCTTACCTTTAACTGCATCTAAAGAATTAAAAGAGATGCTAGCATCTTCCAATGAAGAATTCTTATCATCACTATCAAAATCAATTTGAGATTCATCATAGTAGATTCGGCTGATAATCCAAAAAAATAAGCGGCCATCAAAAAAAGAATCATCTCTTTTAGCTGGTATAACAACACCCTTTTGTGATGAGTCATAACCTAATAAAGCTCTAATAAAGTGCAATCCTATTTTTGACTTATCTACAATAAAGCCAATCTGGTCATTTTGGTCAAATACAATAAGTTGGTTGTGAATTCTTTTTCCAGTTGTAGATGCAATCGAATAATCAAATAAATTATATCTAATCTCACTACCAGATAAATCTAAGATCTGATCCTGCATCTTATTAACCAAACTAAAATCCGGATAATGTTCCGGATTTAGACTAAACTTCTTCTCATTAAGACGCTTAATAACAGTCTCATACTTCAAATTATTATCATTCAAATACCAAAGCGTCGATTTCGTTGACATGATTTTCTCTACTCCCAGTAAAAAATTATTTTATTTTCAATCTTAACCGACTTAAACTTAAAATCACTGCTACAATTCATTGTCTTGTAGCCCGCACTAGTAATCTTATTTTGTGGAGAAGCAAGTAAACGAAACTCTACTTCATCGTTACCAATCTCACTTAATGGAATCACAATCCTATGTTTTTCTGAATCAACAAACTGATCCAATTTAAAATCAAATCCGACTTCAATATCATTGGGATAATCGAAAATCAATGAATGTTTAACTAGTGTTTCTTCTTTAAAGCCTGCTAATTTAATATAAATTTTAAAAGGAACAGCCTTACCCTCAGACAACTTAAGTTGTATTTCGTTAAAATTATTATCCCAACGTCCCCCATTTTCAAAGCGAACCACAATCGTTGATCTTCTATGAATAATAAACGAAATCAAACTACAGGTAACTGCCCAAAAAGCAGAATCTATATTAGAGCTTTCATGATGAAAGAGAAACTTAGATACTGGAATAAAACAAAGAACAGCAACAAGTAGCGTCCAGACAGAAGATTCATACTTCTCAAAGTACTCTCTCAGCCATTTAGCCATTTTATCGATTCCAAGCTTTCGTTAACTCACAGAGGACAATATTAACCCATGCCACATCATATGTATCAAAAACTCCATTAGATCTAATGGTCATAACCCCGTGATCATTATTTCTAATAGAAATTGCATCAAGGTCAATGGAAAACGCTGATTCTAGATAATCCAATCGAGAATGAATATCATCGTCAGTTAACAAGCCATCCATATAAGCTTTAAACAAATTGGTGATACGCTCTTTTGCTTCAACATCATCGTCATCATACAGAGTAATTCCAGCCAAGTAATTATTTTTAGACTGTAAAAAAGACAATAATAAATTAATCATTGTATCAGAAGTAAGCAAAAATTGAGTTAATCCTTCTCCATTCATTCGTTTTAAGAAAGTATAGTATGAATCTGCCATATCAAATGGCTTTGCAACAAATTCTCTAGCACTATTTCTAAATAATTTAAAGGAATGACGCCCCAATCTACTCACCTCCCAAGAATGCATATAGCCAATTATATTATACCTTTTGGCATATCTGTTTTTCAACCAAAAAGGCACCATTCTCTGTATCTAGGTATACAACTTAACGCGTGGTGCTAGTTGAAGAAGCTGAATCCATATCTCTGTAGGATGTAGCTGATATTGTAAGTTAGTACAATTATCTCGACAGTTTGTTGGAAACCATCGCAAGCACCCAATAACGCAGTATCTATTACCCGCCGGTCAATAGTCATATACTGTTCTTAACAATTGAATACGGAGGAACACGATATTATGACTGAACATGCAATCGTATCGCTCGAGTTGCCGAAGGACAGAATCAGGCCTAGGAATAAGCTTCCAAAGAAAAGGCCTGTCCTTAATCTCAAGTCCAATGGGGTTGAGCTGTCATTTTACAGTGATGCCCCTAACGAGCTTATGCTCGAAGTCGTAGACAAGTTCTTGAGCCATGATTAATCTGGCTGAATTAGGTCGAGTGTTCATTGTTTGCGGTAAGACCGACATGCGACGAGTAATTGATTCGCTCGCTTATATAGTTAAGAAGAGCTTCAATCTTGATCCTTTCTCTGGCTGCGTCTTTCTCTTCTGCGGCAGCCGAAGAGATCGTTTTAAAGCACTTTATTGGGACGGCCAGGGATTCTAGCTGCTCTATAAGCGCTTTGAGAATGGAAAGCTGGCCTGGCCGAGCAATGAAGACGAAGTTCGAGAGTTGTCCGAAGAGCAAGTCATGCGCTTGATGCAGGGTTTTACCATTGGTCCTAAAATTAATACCGCAAGAGCTCGTGAATTGTATTGATTCCACGAGCTTTTCTTGTATTCTTAGATTATGAATCAAGGAGGGACAATAACCATGACTGACAAAGAAATTTCAGCTTTAATCGAAACGCTCAAAGCAAATAACGAAGAATTGCTCAAGCAGGTTGCCCTTCTTACTGAACAAGTTGCTTATTTGACTAATAAGCTTTATGGCAAGTCTTCTAAAAGAAGTCTGTCAACCCAAGATCAGCTAAGCCTTTTTGAGGAAGACAACGCCTCTCAAGAAACGCCTCTCAAGATGACAAGGACTTGCCATCGCATTACCGAAACTATTACCTATAAGAGACGCAAGCAAGTCGGTAAAAAGCAAGACATCTTAGACTCTCTACCGGGCGAGGAGCTTCATCATCGTTTGGATAATCTTACCTGCCCAGACTGCCAGCACGAGCTGAAAGAGATCGGCAGCTTCTGTGCCAGAAAAAAGCTGCTCTACATTCCAGCCCAAGTTAAGAGAATCGATCACATCCAGCACTCTTACAAGTGCTAGCACTGCAGTGATAAAGCGCCAGCTGACAAGATTATCAAAGCACCTGTACCTAAGGCTCCGTTAACCAACAGTCTTGGCTCAGCTTCTTTGATTTCAAATACTATCTATCAGAAGTACATTCTCAAGGTTCCTACCTACCGGCGAGAGAAAGACTTGCGGCGTATAGGCCTTCCGCTTGATCACAAGATGGTTTCTAATTGGCACATCAAGGTCTGCGAGTACTACCTCTCCAGCCTTTACGAACTCTTGAGAAAAGAGCTGCTAAAGCAGGATGTATTTCACGCAGATGAGACGCCATATCGAGTCTTAGACAGTGAAATAGCTAAAGACTACGTCTTGACCTTCTTGTTAGGCAAGCATGCCGAGAAGCCGATTGCCATGGATCACGAAAAGGCGCCGAAGCATGGGATTTCCTGGCAGGCTGCCGCGAATACCTTCATTATGATCAATATTACGATTAAGCCAACAGGATGTGACTCTTGTAGGCTATATGGCTCATGCAAGACGAAAATTCCATGATTCCTTGCCTAAAGGCAAGGCTATAGAGTCCGACGCGACTTCGGTGGCTAATCAAGGGATCAACTACTGTAGTCAAATGTTTAGCCTGGAGCACGCCTGGGAAGACCTTTCCGCTGAAGAGAGATACGAGAAGCGTCAGTCCGAATTAAAGCCTCTGCTAGAGAAGTTTTCCGACTGGTGCTCCAAGAAGTCAATCTCCGTGTTGCCTTCCGGCAAGCTGGGGACAGCCTTCCAGTATTGTATGAAGCACATGAACAAGTTCATGAACGTTCTAAAAGATGGTCGCCTTGAACTGTCCAACAACAGAGCAGAACGAGCAGTCAAATAGATCGTCATGGGACGCAAGAACTGGCTCTTTTCACAGAGCAGTACCGGCGGCCAAATTCCATGAAAATCATTATGAGCATACTCGAAACCGCCAAGCAAAATAGCTTGGATCAATTCAAATACATCAACTATTTTCGAGACAAGCTGCCCAATGGGCTGTCATTATTAGACAATCAGCATCTGGAAGCCTATTTACCATGGTCTGAGAATGTTCAGCTCCACTGTAAGTAAAGTCCCATAAACTAATTAATCCCATCTTAGCATTGCTAGGATGGGATTTTAATATACTCTGCTATTGGGCGCTTACTTATCTCTTCAATTTCTCAGCATAAAGATTGTACAAGTCATCCGCGTTTTTAACAGCGTCATAACCTTTAGCTGCTAAACGCTTAATATTATCATCTGACTCATCACCACGTGATGGCAAATCTGCCTTTTCAATTGCCTCAAGCCATGTTTTTGAATCCAATGAAACAAATTCCAGCTTACCAGTTAGGTTACTTTCTCGTGAAATCTTGTCTGACAAAATTATTGGTAGACCATTAGCTGAAGCCTCAACAACGACAAACGGTTGGCCTTCAAAGCGAGATGGCAAAACGAACACGTCCATAGCTGAAAGATAGTCGGGAACATTATGAACTGATCCTGTGAAAATTACGCGGTCTCCTAAGTCCATTTCTTCTGTTTGCTTCTTGACTTGATCAAACATACCACCCTGACCAACCAGAATCAATTTATACTTGGAATCTAATTTTTTCATAACATCGAGCAAGAATGCTTGATTCTTCTGCTCATTAAAACCGCCAACATGTCCTAATAAGATATCTTTCTTACTTATGCCTAATTGTTTGCGCATCCGTTCCCTAACGACAGGATTAAAGCGGTACTTGTCTAAAAAAACACCATTATCGATAACCGTGAAATTCTTTTTGTTAAACAGCCATTTACCAGCTGCCTCATTGCAAGCTACCCTACAATTGACAAACATATTAAAGGGTATACTCAAAAGTTTATGTAGTTTTTCGTGCTCTGTAACTGTGTTGTGACTGTGAGCAACCCTTACTTTCACTCCGGCAAAAAAGGCAGCAGCCAATTCAATTGACATGATGTTACTACTACCGTTAACATGTACTACATCATATTTTTTGCGCTCAAGTAAAGAAACTAAGTTCTTGAAGTATTGCTTGGGATTGGAATTACGATCATGGATTTCAAAGACATTAACTTTATTTTCCTTAAGATCAATCGTAATGTCCTCAGCAACTTCATTAGGAGCCAAAACATCAACATGAATATCCTGCTTCTTAGCCAACAATTTTGCATTGTTAATAATAAAAGTTGAAACCCCATTATCACTCAAATTATTTGTGCTAACTAGTAGAACCTTCATATTTCCTCCAATCTATTTATTCCCCGTTTTTTTCAGAATATAGTTGATAATTTCTGAGTCCTTGTCTAATGAAAATTTCCGCGCAATTAAAGCACCTGCGGTTGCATCTTCTAGCAACTCCTTGTCAGCAATTGTAAAAATATGCGGACTACCATTTTTTGAACGCACCCAGTCAATAAAACGTAAGTTATCAGCACCATTAGGATTATGGTACATCCTGTTCATAAACCCACAGTTAAAAGCTATTGTTTGAATTAATAACTCATCTGAACAGTTAGTCCACCTAAATAGTTTTGAAATCTTGGGTTCTTCTTGTAACATTCTAATAACAAAATCATTAGTCACACTTGCCCACTCAGACCCTAGTTTGATCTGCCAATCTAAGTTTTTAACCCTGTTCACATGCAAGATCAGCTGGAGTAGCAAAGAACATCTCTCAAAGAAAATAAAGATGTTATTTAGCCATTGAATCTGGAATCGACGACAATAATTTTGTAAAAAGTGATACAACTTAGTGCGGCGTTTAATTTCCGGATCGTGCTCATTTTGTTCATCTTTGAACTCTATAAATTCTTTGCCTTGGTTCTTTTCAAAGAATGAATCGAATTCTTTGTTATTGACCAAGAGAAGATCCGCCCCTGACATCATATGATAGTAATCATACGGCCCATTGTTAGAAGCCTCTTTAAACAGTTGTAGTTCAGCAAGTGTTAGCGTGTATCCTCCCCAGTACACCTTAAAATTTGAATATATTCTAACTTTAGAATACTGTGTAACTGCCTCTAACTAAGCTTTAGGATAGTTTTTAGCTTTGGCATCAATATGAACATAGATATCATGATCGGGAAAATCTATCTGCTTTAAAAGCAGCTTCAGTTGCTTCCAATTACTATGAGCCGTTATCAAGAATGCATGTTTCATTATTTTCCGCCAATCCATAACGATTTAATTGACACATTATGCAGAACTGCCTGCCTAGGATATACAAATTTTGTTTGAAAAGTCACATGTCCTAAAACAATTAAAAACATGCTTATTATTCTTAGGAGTTCAAAGTTTGACTGCCGTACTTTTTTAGCACTATCAACCATATATAACCGTTTTCTCTATAGATATGCTATCTTTGTCTTCTTCTCACTAATAGATCTTTTAGTTGATTGATGATTGGTGCTCTTAGCAAAAAGATCATACACAAATAGATAACGGTACCAACTATTACTTCAATGAGCAACCATAACCAGCTAGATTTCATGTGCGTATTCAGCCAAAAAACTGGAACAAACATTACAGCACCTGACAATAGATACTTCCAAGTACTACCAAACATTTGCTTTACATTCAATGAATTTCTTACTACAAAAAGTTGATAGGTTGTCACTGATATTTCTGACATAACAGTCGACCACATAGCTCCTTGTAGCCCCCAGAAATGAATCAGCGGGAAATCAAATATTATATTGATTACTGCTCCAAAAGTAACAGAAGTAGTGTAATCTTTAACACGATTAACTGGTATCAAGTATTGTGCACCAATAACGTTGGACCAAGCAATCATTAATATAACAATTGATTCAATTAACATAGCCGGACCAACAGGTGCGTACTTAGCACTATAATACAGCGGAGCTAAGGTCAACGAAACACCAGCAACTCCAAACATCATCGGATATGCCAATGCTGATACAAAATCAAAAGATTTATAAAGCATCTCATGAACTTTTTTCATGTCACCTTTGGCAAACGCATTTGCCACATGAGGTAACATAACAGTTCCCGTTGCTGTAACAAACGCCAAAATCAATTTGACAATACTATCCGAATACTGGTAAAAGCCGGATGCTTTTTGATCTACCATCAACCCTAGCATGGTACGATTTAATTGAACATACAATTGCGTAGCAATTTGTGGTACAAACATCATAACTGTGGGCACAAAGTGATGCCATGGATTCAACCGAACACCATGTCCTACACAACCATAATTTTTTACGGCATGTGGCCATAAAGTCAAATTTCCCAACATAGTTGACAAAGCTAGAACCGTAATATATAACGTCACATCATTCGGGCTCTTGATGAAAATGAAAATAGCCACCATTGAAACTATCTTAACAAATGTGTTACGCAGTACCGTTCGCTTGAAGTCTTCCAGCCCCTGGTAGAGCCAAGAAATGTCAAAAGCAACCGCGAGCAAGTTGATCGACTGGGCCCACATGTAGGTCTTGTTGCCGGAATAAAAGGCCATAAAGACCACAAAGGACAGGTAGGCAACAACCGTCATCACAGTCTTGATGATTTGAATTTCCCAGAAGGTTGCCGCCATCTTTTGCTTATTGTCTCTGACGTAAGCAATTTCCCGGTTTCCGTAGTAACCAATCCCGATGTTGGCCAGCAACATGAAGTACTGAATGATGGAATTGGTAAAGGCATTGGCTCCAACGCCATCTGGACTTAAAACCCGGCTGACATAGTATGAGGTGATCAACGGGACGATGATGGCTAAAACCTGGTAGCCGACATTGTAAAGGTAATTCTTAACAACACGCACGATTACTTACCGAATTCCTCACTAACAGCCTCCAAAGCAGCCGCGATGACCTGGTCCATGTTGTAGTACTTGTACTGGCCCAGACGGCCGCCGAAGATGACCTTGGCATCTTCTTTGTCAGCCATTTCCTTGTACTGAGCGTACAGGTCGTTGTTTCTGTCATTGTTGACCGGGTAGTAAGGTTCATCGCCCTTGTGCCAGTCAGCTGGATATTCCCGGGTAATGATGGTCTTGTCCGGGTCCCCCTTGCCAAATTCGAAGTGCTTGTGTTCAATCACCCGGGTATAAGGCGTTTCTGCGTCGGTGTAGTTGATCACGGCGTTACCTTGGTAGTTACCCACGTTCTTTTCTTCAGTTTCAAAACGGAGAGACCGGTACTCCAGTTCACCCAGCTTGTAGTCAAAGAATTCATCGATCGGGCCAGTGTAAACTACCCTGTCGAACTTTTGCAGATACTCGTCCTTCTTGGCAAAAAAGTCAGTGTCCAGTTCAACCGTGATCTTGTCATCCTTGAGCATGTTTTCCACCAGCTTGGTGTAGCCGCCCTTAGGAATCCCCTGGTAGTCGTCGTTAAAGTAGTTGTTGTCGTAAATCAAACGAACTGGCACCCGCTTGATGATGAAGGCTGGCAGTTCAGTTGCCTTTCTGCCCCACTGCTTTTCCGTGTAGCCCTTGATCAGCTTTTCATAAATGTCGCGGCCGATCAAAGAAATAGCCTGTTCTTCCAGGTTTTGCGGAGTCTTGCCCGCCATTTCAGCCCGCTGCTCGTTGATCTTGTCTATGGCTTCTTGCGGCGTCCGGACACCCCACATTTGAGTAAAGGTGTTCATGTTGAAAGGCAGGTTGTACATCTTGCCCTTGTAATTAGCTACCGGGCTGTTGGTGTAGCGGTTAAATTCCGCGAACTGCTGGACGTAATTCCAGACTTCCTTGTTGGAAGTGTGGAAAATGTGGGCCCCGTACTGGTGAACCTGGATGCCGTCGATTTCCTTGGTGTAGATGTTGCCGGCGATGTGGCCGCGCTTTTCGATCACCGTGACCTTGTGGCCGCGCTTGGCGGCTTCGCGGGCAAATACAGCGCCAAAAAGCCCTGCCCCGACTACTAAATAATTTGACATAAATTCATCCCTTTTGCTATTTTCTACAAACAATAATAGTGAACTCTATACTTAATACACATGGTGCTGATTAAAATGCTAACTTAAACTTCCCGCTTGCACAAGTGGACTAGTGTAGTGTCATACTGAAATTTAAAGCTTGTGCAATCGAAACTATAACTGCTGATATAGAGACGCAATCCTAGTACCCGTATCAATACTGTTAAGATATCGTCATGACATTACACTTGATATTGTTTATGGTAAGTGTTCAATTGATCAACTTGCTTAATTACAAGTGCGCATATAATTGCCGCAAATGCCATATCTCTATCATTAATTCCATCAGCATAAGTGAATGCATAGGAAGCGTTAATTAAAAAACTTAAACAAACAGCTGCTTTCACAAATACATTCTTGTCTGTCGACCTTAGAGATTTTATATCAGCTAACAAAGTTCTTACATATACGCTTAAAAAGCAAATCGGCAACACTATACCACCATCCAAGAACAGCTTGCTTAATCCAGTTAAGTCATAACCATAATATAGACCGTATAGTCTGACAAAATATGGTTGATATGCTACTTTACCAGCCTCCTTAAGAAAAACGATATCTAACGATGCTGCTGAGCCTAAGCCATTGCCTATAATTTTAAGTAATGTGGTACTTTGCCGACTATACACGTTTATTAGTGCCTCAAATCTACCATATTGGTAAATCCCCCAATTAGAATTACCAAAAATATATCCCTGTGCACCGTTTAACGTCATAGCACTCTTAAACCTCGGATATATTTCTGTCAGCAAGTTCACAGCAACACAAACAAGAAAAGAAACTAACACAATGCTTATAACTGGCCTAAGATTCACCTTTCGTTGTATCAATCCAATAATAAGAAGTGCAATAAACAATAATACCACTTGGGCTTTGCATTCAGCCATAATCAATATAGCTACTGAAATTACTATTGAAATTAGTGTGGAACGCAAAGTTCCTTGGTTTACTGACCACTTTGAGTATTCATAAATAGGATACAATAGGACAAATGCTGAATAAGCTCCTAAACCAAAAACTCCGAATATCCCATTTCTTTGATCGACATTGAACCCAGCTATCGTTTGACCAATTGTGAAAAAGAAGCATACTACATAAATAAATTTATATAAATCAACGAAGCTTAGATCACTTTTGCTGTATCGTATAACAAAAAAATATTCTATGCCTATAATATAAGGAATTGCACTTTCTAAAGCTTGAATACCAGGAGTACTGTGTATTATCACACCCAAGCACGTGTAAAAAAACAATCCTAAGGTACAAGCCCACCAGCTAAAGCTCTTAAAAATTTTAGTACTATACCTTAACAATAGAAGTGAGATCGGTATAAGAGATAAATCTCTTAGTCTTATATTTATAGGGTGTCCCAAATAGTGAACTACTACTTCTAATGTAAATACATACGTAAGTAACGTAAAAATTGAAAATTCAAACAGTTGTTGATTACGCATGCTCAATGAAAGACAAAATAAAATTCCGCCCACAAATAGTGCGTATGCAACCCAACTCTCAGTGCTAAGCGACGTTACTAAGCTAATCAAGCCTAAGGAAACCAACAGGAAATTATATCCGCTAAAACGTAAATATTTTTTATTTACAGTACACGTTGCATTTCCATTTGTTCCGATGGTTAACATTTAAATACCTCACATCAAATATTGACTACCATACACTACTTGGGAACCGGATATTTAGTTGGATCGTAAGGCTTTTTGTTAAGTCTATGTTTCATACTTTTGAGAATAGAATATATTTTCTTTCCTTCTACTACTGAATATATTGGCAATTGCTTAATCCTAGCCAAATTAAAACCGTTATGTAAAAGCCACACATATTCAAGTCTCTCCGACATGAAACCATAAGCACGTTGTTGATACTTAGATCTATTTGATAAATCAGTAATGTCTTCTAACTTGAAAAGAATTGTAAACAACCACTCGCAATACTTGTCAAACACGGGCTTAGGTACAACCATCATATTAAGGCCGAAACTGCTCTTTCCTAACATGACCGTTTGAAAATCCTTACTGTACTCAGGATATATATTATGAATTATTTGAGCAGTATTTTCATAATCTTCCTTACTGTGATAAGTTTGATAGTACTCCTTAATAGAAATTGTATTTGTCACGATATCTGGTAAAACAATCTTTTCCTCCTCTAAAAACGAAATAATCTTTTCAGGTGTACAAACTTTGGGAATAATCGCTGCAGGGTCCATAAAAAATCTACGGTAATGTTCAATAGATACATACTTAGAGCTCTTGTCATTTTTCCAAATCCAGTACATCGCAGTCAATTCACAAAAATGTGGATTTTTTTCTGCAATATTGTCACCGGTGTTATCTCTAAGATAGTTATTTTTATTATCCCCACCTCCTACAAATATAGGAGTTCTACCTGCTGGTACAAAATTTACTGACTTATGTGTAACCATGTACATTGTTAATTCATTTTTATCAATTTTTTTAACCATTTTCCCTAGCCTATTTAACACCAAAAAGTACTATTACCATAATTGAATGTTGACATTTAATTTATTTTAATCATATTGTCAACAATTTCACTCAGATCCTCATTAAACTTCTTATTATTGCTACTTTCACCACTATTTTTCGTCTTAACAATACTGTCGTAATTAGCAATTGTAGCAGCTAAATCATCAATATCGTAAATGGGAATGATATTGTTCATTCTTTCAGCAATCAGCTTGGTAAAATCAACTTGGTGATCGTTAACATGTTCATTGAATTCTAACTGTCTCGGCACTACAATCGGTACCTTACCATACTGCAGAGCTTCTACAAAGCTAGATGGACCACCGTGAGTGATGACAATACGTGCATCCTTAAACGTTTGCTGCATTTCGTCAAAACTCATAATTTTGTGCATTTCACAATGCTTAGCTTCATAAGTACTAAACCCGTACTGGACAACCACTTTTTCTTTAATTTCACCTTTTTCAACCAATTCGTCCATCTTCTCAATCAAACGGTTGAATGGTTGTTCATGTGTTCCTACAGTTACAAATATCATATGTTCCTCTAGAAGATACTACCCAAGTTAATTGCCTTAGGATAAACCTGCTTCATTTCTTCCCATTCTACAATGAACTTATCAGTAATAGGATAAACTAGTTTTCCTGTTACTGTAGGTTTATCGTAACGGTCAAACACTTCAATATAAACCAGCTTAGCTCCCATCATTTTTCCGATGTAGAAGAATGGTGCTGCTACTGCTGCACCACTAGAAATAATAAGATCTGGCTTCTCTTTACGAAGCACTTTTATTGCTAGAAAAGTATTTTTGATCAAGTTCTTCAAATTACGGTTAGTGGGGTAATAGCAAGGGTAGAATCTTTCACCTTTAAGTTTGCTTCTAGCATCTTCTTTATCAAAAGTCACCCAGAAACGATCCTTGTTTTGCCAAAATGGTTTCAACATATACAAGTGTGTCAAGTGGCCACCACTTGATCCAACCAAACAGACTTTGATATTTTCTTTAGACATTGCTTGCTTCCTAATAAAAAAGCGAGGTTCTTAAATCCTCGCAAACTCCTACTCTTCCTACATCCCGTTCGGGTGGAAAATAACACCGATTGTCTTGAAAATGATCCACAGATCAAAGAAGACGCCACTCCGATTGATGTACTCGATGTCGAGCTGCACCATATCCGCAAAATCAGCCGCATTCCGGCTAGTTGCTTGCCAAAGGCCACTGCAGCCTGGTTTTACGAGCAATCTCTGCTTGTCATAGTCAGTATACTGTTCAACCTCATCTGGCAACGGTGGCCGAGGCCCCACCAGTGACATATTCCCAATCAGCACATTCCAAAGCTGAGGTAATTCATCCAAGCTATGCGCTCTGATAAACTTGCCAATCTTAGTGATCCGCGGGTCTTCATGCATCTTAAACATGGCTCCTTCGACTTCATTTTGCTCCAGCAGATCCTTCTTCAGCTTCTCAGCATTGACCACCATGGACCGAAACTTGTAGATCCGGAAAGGCTTTTCATCCTTGCCAATTCTGATTTGTGAGTAAAAGACTGGTCCGCCGTCTTCGCCATGAATCTTGATCGCCAGCCACAGAAAGAGCGGTGACAACAGAATCAAGGCAACCAAGGAAGCCAGAAAGTCAAAAAGACGCTTGATCCCATGGTAGAGAGGGCGGCCCTTGACTTTGGACTGTTTAACATATGCTGGACTACTGCTATATCCCATATCCATTTTTTCCTCTCCTTCATCCAAATTTCTACTTTAAAACAGACCCAAGAACTTCTTGCGCTTCTTCGGTAAAGATTGCCAGTTCAAGTAAACTGGATCGCCATTGATTACCGCTTGCGCATTGTCTAAATACTTCTGTTTCTTATCTTCACCAAATTCTTTCGCCAACTTATCCAGTGCTTCACTCAGTTGATATTGCCGTCTTGGCAAATCATGAGCATCACTGGCAAAGAAGGCACATTGTCCAGCCTTGATAAACTCCCGGCTACAGTCCTCAATTTCTTTACCAAACAAACCGGTGTAAGAGCTAGCAGTAATCTGCACCAGAACGCCCATTTCCAGAAATTCTTGCAGCTTCTGTGGGTTGCCCAGAATTTCTTTATTCCGTTCTGGGTGAACAACGATTGGCGTAATCCCTCTTCTGGTCAATTCGTACACCATGTTCTTGGTGTAATGTGGCACTTCATTGCTTGGCAATTCCAAGAGCATGTAGTGTCCTTCTTCATCGCAGAAGAGGATGTCATCATTATCAAGGGCTTCAGTTAAGCCACCTGACAATCTGACCTCATGTCCTGGAAAGACCGTCAGCGGAATACCCGCTTGGTCAATCCGATCTTGAAACTCTTCCGTCAACTTGATCACATCTTGCTTGTGGCTGGTGTAGCGGCCATTTAATGTGTGTGGAGTACACAAGGCATGGGTTACGCCATCCGCAACCGCGGCTCTGGCAAGCTTAAGTGAAGCCTCCCAAGACTTTGAACCATCGTCGATCCCTGGTAAGATGTGACAGTGTAAATCAACTACCGGCATGAGCTACTTCTTTCTCCCAAAGAGACCCTTCTTCTCCTTTTCTTCGCCATAACCGTAGCCGTAACCATAACCATATCCATAGCCGTCATCCCCATCGGCATCAACATCGTTCATAACATAACCTAAAATTGGTGACTTAGTCAGCTTAAGTAGCTCAACTGCCCGCTTAACCGCTGACTTCTGTGAATATGCCTGGCGCACAACCAAGATCGTCCCGTTCAAAAAACTGGTCAGTTGCTGGGTTTCGCCCGCGTCCAAGATCGGTGCTAAGTCAAGCACGACCATATCATATTCTTGCTTTAAATCTTCAATCAAATCCAACATATGCTTGGAAGACAGAAGTTCTGATGGGTTTGGCGGAATCGGACCTGCCGTCAAGATTGACAGGTTCTCTACACCACTTTCCCGGATCACGCTGTTTGCGTCCATTTCCATAGACCGGCTAGTCAACAAAGTGGTCAAGCCGTTGCTATTGGATACATTGAAAGTAGAGTGCATAGTTGGCCGGCGCAAGTCCGCATCGACCAAGATCGTCTTCTTGCCGGCTTGCGCCATGGTAATGGCTACATTAGCACTGACCGTCGACTTGCCGGCGCTGGCCATGGCTGAAGTAAAGACAATCGTCTTTACTTCCCTATCAACGTTCATAAAATTGATATTGGTTCGGATGTTTCTGAACTGTTCTGAAATAACGCTTTGCGGGTTGGCCAAAGTAATCAGCTTGACCCCGTTCTTCATCGTATCGTTGTTTAAATGCTTCTTTCGACCGAATGCCATGCTAACATCCTAAACCCGTCTTCTGGAACTGCCACGCTTTTCAGCCGTCTTAGCCGTAAAGGTCCAGTCCTTTGGCATCGTGATATGTGCGATTTCACCTAAGTTGGTCAAGCCAAGTTCATTGGTCATAAATGAATCTTCACGAACAGTCGTATCTGACAAGTCCTTGATGATGATGATCAACAAACTGATTACCAAACCAGCTAAAACACCAATTGCAGTAAACATACTTACCTTCGGGAAAGACTTAGTTCCCTTAGAGGCTTCCGCAACGATCGTCACGTTGTTAACATTCATGATCTTAGGAATCTGTTCCTTAAATTCCTTGGCAACCGCGTTAGCAATTGCTTGGGCCTTGGCTGGCGTTTCAGCCGTAGCTGACAAGGTGAAGACCTGGGAAGAATCCGTAGTGGTTACTGAAACCGCGCTAGCCAATTCACTGGCTGAGACTGAGTAACTCTTGCTTTCCCGCTTGTAAACCGCTGGCTTAGCCTTAACCGCCTTCTTGGCTGGAGTTGCCTTCTTAACCAAAGTTACCGGGTTAGCCAGGTACTTGGATGCACCCTTTAAAATAACGTTACTAGTGATAATGTCCTTGTAAGTAGTAATGGCGTTAATATCGGCTTGCTGGTTGGCATAAGCCTGGTTAGCATCCGCTGTCTTCCGGTTGACCAAGAGTTGTGTGCTAGCAGTGTACTTTGGCACCAGAACATATTCTGAAACCCCATAAGCGATCAAGCCCAGGCCGATCATCCAAATCAAGATGCTGATGATGTGCTTCTTGATTAAGATGAAGAGCCTGCGCAGGTCAATGGTTACTTCTTCATTATTCTGTTGTTCAGCGCTCACTAGTTATCCTCCTTATAAACGTCGACATTCTTAATTCCTAAAGTTTGCCGGATATTGTTGGAAATCCGCTGTCTTTCCTTAGTAGACATGATTTCAACTTCCATGTTGCCGAATCTTTGATTGTTGACGCTGCTGCTCTTCCCTTGAGCGTAGTCTGACTTGACATTGTCAGTTACCCCTTGGTAATTCATGGCCAACTTAATCATGTCGTTCAAACTTAGATCAGTCTGCATGCTGTCACCCAAAGATTGCATGAATGAGCTGTTTAAGATGGTCTTGTAGGACACGCTCTTCTTAATTGCAGCCATCATCACCAGCCGTTCACGCTCCTGGCGGCCGTAGTCTTGCCGCGGATCACCGTGGCGGAGCTGGACGAAAGCCAAAGCCTTCTTACCAGAAATGTGGTACATCTGCCCCTTCTTGAAGGAGTAGCCCATATTGTCAAAGGTCAATGGAGAGATGACATCCACCCCGCCCATCTTGGTGATAATCTTCATGGTACTTGCCCAGTCAACCAGGACATAACCATCAATCGGCACGCTGTAGTACTTATCCAAAGTCTTGATCGTCTCGCTAACCCCGCCCAAAGAGTAGGCGCTGTTCAGCTTGATCGGTGAAACCTCCGGGTAATCCGGCAGGTTAACCTTGGAGTCCCGGGCGATCGTGGTTACCCGCGTCTGCTTCTTGCTTGGGTTGACCGTGACGAACATCATCAAGTCAGTCAAGCCGTGGTAGTTCTTTACGCTCCGTCCTTCAGCCCCGGTGTAAGTCCCCAGAATCAAGAGGTTGACTGGCTTCTTGGCATCTAGGATCTTGTCTAAGCTGGACCGGTTTTTGTTTGACTTGGTAGACTTTGAAACCGGCGTGTACATCGTCGTTGCAGCATCCCTGTCATTCTTATAAGCATAACCGATTACTAATGACACTGCCAGAAGCAAGACCCCAACAATCCCCGCGATCCAGCGGCCGATATGACGCTTACGGCGGCGGTGATGGTGGTGATGAACACGACTTTGATCAGGTTCATTCATAATTGCCTTTTCTTATTCTCCTTATATCCCATACCAATTTTTATCTCTATTTTTCCTAGAACATAATTGTTCTTGTTGGATAAGCATTGAGTATCGCATGCGCAATCCACGCCATTATCCCATTATACAACATGTGGCCTTCACAAAAAAGTTTAAATCGTTTTTAATCTATTTCCATGGATCAAATTTCCTTAACATTTATCTGTTTGAGTAATTTCCGCCTAAATTTAGGCAAATTCAGCGATTTTTCTTCTCCGCTTCTTTACAATAGATAATAAATAGATGTACAAATTCATCATCTAGCAATATAGAAAGGAAGTTATAGATGATCGACAATCAAGCTCACTCAGTTAAGGCCTACTTAGCCGGCGTCAACCTTGACGATCCCAACTTTGACTACTCCATGACTGAACTGGCCAATTTAGCAGAAGCCAATAATTTCACCGTTGTCGGCTCCAGCCAGCAGAAGGCGGAAAACATCGTCGCCTCCAGCTACCTGGGCAAGGGTAAGGTAGCTGAAATCAAAGACCTGGCCCAAGGACTCGGGGCCTCCGTCCTCATCGTCAACGATGAACTGACCCCAGTCCAAATCCGTAACCTGGAACACATGACCAAACTCCGCGTCATCGACCGGACCGAACTCATCCTGGAAATATTCTCTTCCCGGGCCCGGACCAAGCAAGCCAAGCTGCAGGTCCAATTAGCGCGCCTCCAGTATGAACTGCCCCGCCTCCACCCGTCTGAAAACAACCTCGACCAGCAGCACGGCAGCGGCGGTTCCACCGGCGGGGGCTTCGCCAACCGCGGGGCCGGGGAATCCAAACTGGAAATGAACCGGCGGACCATCGGCAAGCAGATCTCCGCTATCAAACATGAATTAAAGGAAATCTCCGGTCAGGAAGAAATCAAGGCTGCCCGCCGCAACCAGAGCCAGCTGCCTAAGGTCGCCCTGGTCGGCTACACCAACGCCGGCAAGTCTACCACCATGAACGGCCTGCTTAAGGCCTTTGGAGCTGGCAATGAAGATAAACAGGTCATGGCCAAGGACATGCTCTTTGCGACCCTGGACACCTCTGTCCGCCGGATTGACCTGGACGGCTTCTCCTTTATCCTGTCTGATACCGTCGGCTTTGTCTCCAAGCTCCCCCACAAGCTGGTCGACTCTTTCAAGGCGACCCTGCAGGAAGCCAAAGACGCTGACCTCTTGATCAATGTCGTTGACGCTGCTGACCCGAATATGAATCAGATGATCAAGACCACTCTGGAAGTCTTGGACGAAATCGGCGTCAAGGACCTGCCAATGATCACGGCCTACAACAAGGCTGACTTGACAGACCGTAACTACCCGCAGATTGAAGGGGGCGACCTTCTTTACAGCGCGGTTGACTCAGCTTCCATCCAGGCCCTGGCCAAGCTGATCACAACCCGCCTTTTCAGCAATTACCAGATCACTGGCCTTCGCCTGCCGCTAACAGCCGGCAAAGACCTGGCCTACCTGCACCAGCACTCCCGGGTCTTAAAGGAAGACTACCAAGCTGACGGAATCGAAGTTTCCGCCCGCCTGTCGCCCCAAGACCGGGCACGTTTTAGCGCTTACCAAATTTAGACCGCATAAAAAGCCAGACTCTATCTCTAGAGCCTGGCTTTCCTATTGCTATAGAACTCTTCTTGCCCGACTAGGCCAGAAGTAGGTGGACAGGCTCGCTTGTACAACACCCTGCTGGTCTCCAGCAGCGGTAACGTACTTCCCATCCCCCACGTAAATGGCTACATTATATGGTTTATTCTTGGAACCCCAAAAGAGCAGGTCTCCTTCCGCAAAGCCAGAACTTGGATCAACCGCAATCCCCTTCTTGACCTGGCTCTTGGTGCTGGAACCTGTATTGACGCCAGCTGCCTGCTTGTAGACATAAGCAACCAAACTGGCATTGTCAAAGGCATTCGGGCCCTTGGAGCCCTTGACATAGGCCTTGCCGACCTGCTGCTTAGCCAAAGACACGACTGCCTTAGCCCGGGCCTTAGACCCCATCGGGGCAGACCAAGAGGCTGCCAAACTGGCAGCACTGCGGGCCTTCTTAACCGTCTTCTTAGATTTAACCTTGGTCTTCTTGGCCTTCACGGCCTTCTTGGCAGACTTGACCTGGTTAAAGTACTTGGCCATGACCCATTCCTTCTTGCCAATCCGATACCACAGATTGCCCATGGAGTCAGTTGCCGTCTGGTAGACGAAGTGACTGCTACCCTTCTTTAAATGAGTCGCAACATGCCGCCCCTTCTGGTAGTTGGTCCAGACAGTGACAGATTGCTTGCTGATAACCTTGATCCGCTTGCTGGCGGCCTGGACCGGCTGCTTGACCGGCTTGACCCCTGTCGCTGAGATCCCTAAGAAAGTCAGCGCTGCAGCAAAGAACTTGATCATATTAGACTTCTTCATGCTCATTTCCTCCCTTACACCGCTAACTCTATTTTAACACGGAAACTAGAGAATCCGCCGGGCCGTTGTTGGCCAGAAGTAACTGCTGATGGTTGCCAAGATAACCCCTTGCTGCTCATCAGCGGCGGAAACATATTGACCATTACCAACATAAATTGCAACGTGATATGGCGCTGCCACATCCCCCCAGAAGAGGAGGTCCCCCGGCTGCAGGCTGGCCGTTGATACCGGCACAGCTACGCCTTCCTTAACCTGGGTATAGGTAGTCCGGGAAACAGTTTGCCCAATCGCGGTCTTGTAAACCCACTGGACTAAGCCAGAGCAGTCAAAGCTGCTTGGACCGGTCGCGCCCCAGACGTAAGCCTTGCCGACTTGCGCATTTGCCAAAGCAACTACCTTCTTTTGCTTAGCCGCCTTAGCAGCCTTAGCCTTAATTGAAGCGTACTTCTTAGTCGTGACTGTATTAGTCCCCAGAATCCACTTGTTGTCCTTGATCCGGTACCAGGCCCTCCCCTTGTACTGGGCCTGACCCGTAGCCGTGAACTTGTAGCCGGACTTAACCTGGCCAACCAATTTCTTGCCGGCCCCGTAAGTGGTCCAGGTGTTGACCTTATTACCCTTATTGTAGGCTACCCGGGTCTTCTTCACGATCGTAATATTGCTGTCCTGCCTGTCCGTTGCCGCGTAGGCCGGCTGCGCCCCGCCCAGCCAAGCTGCCAGCAGTAAAAGGACTAAACTGAACGCTTCATTATAACTGTTTTCTCCTAAATTGAATTCGCTTTTTCTAGTGTAAGCAAGTTGTGTTACAGAAAGGTTACAGAAAAATACAGTTGTTTTTTAATAACAAAAGGCAAAAGAAAAAGGACGCCAGCTGGCGTCCTATATAAAGGATATTTCTCAATTAAATCAAGCGCTTGGCAGTTGATGGCCAGAAGTAGTAACTCAGGCTCTGCTTGATCACGCCCTGGCTTGGAGTAGCCGCGTGAACAAACTTGCCGCCGCCCACGTAAATCCCCACGTGGTATGGTGAAGACTTGGAACCCCAGAAAAGCAGGTCCCCCTTCTTCAAAGTTGCCGTAGAAACAGCAACCGTCTTGCCTTGGTGCACTTGCGTGTAAGTGGTTCGGGTAATGTACTTGCCCAGGGCCAGACTGTAAACGTAGCTGGTCAAGCCGGAGCAGTCAAAGCTGTAAGGACCAGTAGCGCCCCAAACGTAAGGCTTGCCCACTTGGGCCTTGGCCAAGGCAACAACCTTGTTCTGCTTGGTCTGCTTGCTCTTAGATACCTTCTTGGCTGCCGCAGCCTTCTTAGCTGCCTTGGCAGCGGCCTTCTTAGCAGCTGCTGCCTTCTTGGCCCAGGCTTTAGGACTCAAAGTGTAAGAAGCCAGAATCCATTCGTTGTCAGCGATCTTGTACCAGGTTCGCTTCTTGTACTTAACTTCGCCGACCACCGTCAAAGTAGTCCCGTGCTTGAAGCTGATGCCAGTGTCGTTGGCCGCGCCAAGCTTAACCTTGTAATTCTTCCAGGCCTTAACGCTGTAGCCAGACACGTAGTTGACTACAACCTGCCTGTTAACAGCCTTAACAGTCGCTGCCTGGGCTGCCGGAGCTTGGGCGCTGGCGGCAACAGGTGCGACCAGAGCCAGGGCCATTAAAACTTTGACTAATAAACTCTTGAACTTCAAAACTTGATATCCTTTTCTATTCTAATTTTTTACACAGGTTCTATAATAAGTTACCGATGTTACAAGAATGTTACAAAAAGAATACTAGATTGTTAAAATTAAATCTAATTCGCCAATTGCAAGAATAAATTGAACACTTACCATAACATCTGGTAGATTTTGACTATCTACGCCGGTAAATGCGGTCAAGTTCGGTGTCAAAGTACTCTTCTGGAGTCTTGTAGTTTAAGATCTTCCGAGGAAGAGAGTTGCACCATACCTCGATCTTAGCAATATCTTCCACACTGTACTTATCTACTTATCCATACGGTCTCCCTTGGGAATATAGCGTCTGATAAGCCCGTTGTGCCGTTCTACGCTGCCTTTATCACAGGATGTATAAGGGTGAGCGTAGTACACAAGAGTCTTGGAAACTTGCTCAAGATCGGATAGATCTGCGAACTCAGATCCGTTGTCGGTTGTGATAGACTTAAAGATTTGATTCCATTTGGATCCGTAGTACTCTCGAAGCTTATCAAATGCCTTCATAACGCTAGCTGAGGTCTTATCCTCGATCTTGATCATGAAGAACTGACGCGTCTTTCGTTCGCAAACACATCATCGTCCTTAGTCTTGTGTCCAAGAACCAGATCGCGTTCCCAGTGACCAAAGTCCTTACGGCTTTCGATTCTAGGACTACGTTCATCGATGCTTCGTCCCAGGATACGCTTGTTTACACGGGCACGACGAGTCTTAGTATTGCGCTTGACCTTCTCTGGAAGATCACCGTTCTTGATATCCATTAGGCCCAAGTCAACGTAGTTATACAGAGTTTTGGTTGATACGACCTGATCCTTCTGGAAGATTCCCTTGGCCAAAGCATAACCCACGCAAGCATCAAGAGACCAGCCATGATTATGGAAGCAGTGGGAAACATAGTCAATGAACTTATGTCTGCGAAGAAACAAGCTCTTGCGGCCGCATTCGCTTCTATGTGGTTCGTAAGTGCTTTGCCCTTCGACAGCTTTATACCGATACACGGATACTGTGCCTCTTTTGAGCTCATATCCGACCGTGCTTGGTGAGCAGTTAAGTTCTCTAGCTATAGCACGATTAGAGTAGCCCTTAGAGTGAAGCTCCTAGATTGTAGTCCGGTCGTTCAGCTTAAGGCGCTTGCCCTTTTGGTGTGGTTTAGTGTTAGAATAAGAATGATCCATTTTAACCTCTCTAGAAATGTTTGTGGTAATTCATATTCTACCAGATGGTTAAAATGGATTTTTTGTGCTCTAATCCAGTAAAAACGATTTTTCTTACTGGATCGGAACAGTGTTCAGTTTAATTTTACAATCGGCGATTAAATCTAATTTAAAAAGGCCAGCGCTTTTTGCCGCGCTGACCTTCTTTTTTATCGTTATTATCGTAATTTTAGCAGGTAATGATAAATTAGATAACCCGCTTGGCGGTTGATGGCCAGAAGTAGGAGCTCAAGTACTGCTTGCGGACACCTTGGCTTGGAGTAGCCGCGTGCACGTACTGGCCGCCGCCCACGTAAATCCCAACGTGGTATGGGGAAGACTTGGAGCCCCAGAAGAGGAGGTCACCCTTCTTCAAGCTGGCAGTTGAAACCTTAACAGTCTTGCCTCGGTAAACTTGGCTGTAAGTAGTCCGGCTGATGTACTTGCCAATGGCGTGGCTGTAGACGTATGAAGTCAAGCCTGAGCAGTCAAAGGCGTTAGGACCGGTTGCCCCGTAAACATAGCGCTTGCCGACTTGCTTCTTGGCCAGCTTAACGACCTTGTTCCGCTTGGTCGTCACGCTTGCTGCCTGGGCCTGGTGGCTGTTTTCCTGAACGGCGATTGGCACAACCAGGGCCAGGGCTAAGGTCAATTTTACTAAGATCTGCTTAAACTGCTTCATTACGTTGTAACCCTCTTTCTCTTTTCTCGATGCTTATATCATAGCCGATGAGTGTTACAAGAAATTTAAAGACCGTTTGCAGTTTCTTTAATAATCCTTTTCAGTTTTTTAACATCCTGCAATTTTTTCGTAAAAAAAAGGCCCTGGCAAAGAGCCAGAACCTTAATTTATTAAGCCCGCAGCTTCTCAGATGCGGAAGTGGAGCTTTCCGGTGCAGCCACGACTTCATTGCGGGCATCAACTGCCCCCTCAGTGGCCATGTTATGGAAATTGTTAAATGACAAGGAGATCATGTCTTCCAAGGCTGGTTCAGTAAAGGAGCCCATGTGCGGAGTCAAGAGCACCCGCGGGTAAAGATCCATCAAGGACTGGACTTCCTGGTCCGGCACGTCGCTTTCACAGTCAAAATTGTGGCCCATGATCTTCTTTTCATTGGAAACCACATCAGCGCCGTAGCCAGACAGGTGGTTACTGGAGACAGCAGCGGCGATGGCTGCTTCATCAGCCAGTTCGCCCCGGGCCGTGTTGACCAAGACTGCCCCTTCCTTCATCTTAGCGATGAATTCAGCGTTCATCAGCTTGTCGTTCTCGCCTGGGAAGTATGGCACGTGAACGGAAACGATGTCACAAGTTGCCAGCAGTTCGTCTTCTGTTACAAAAGTGCAGTACTGCTTGGCGAAGTCAGATGGGAATGGGTCATAGGCATAAACTTCAGCGCCCAGAGCCTGCCACATCTTGCCTTCAACCGCCCCGATCTTGCCGGCCCCGTAGATGCCGACCTTCAAACGGTTGAATTCCGTAGCGAAGTAGTCCGGATGCATCCCAAAGTCATGTTCATGGACATGATGGGCAGCTTCACCAACGTGTCTTGACAAAGTCAAACCCAGGGTAAAGGCCAGGTTGGCTACCGCGTATGGGGAGTAGTTTGACACCCGGGCAACGGAGATGCCCAAGTCCTTAGCGGCTTCCAGGTCGAAGTGGTCCACGCCGACTGACCGGGTGAAGACCCAGGAGATCCCGTAGTTCTTAAACTGTTCCAGGTTTGTCCGGTCACAGAGGCAGTTGCCCCGGACCAGGACGGCGTCGCAGTCTTCTGCTTGTACTACGTTTTCCCGGTTCAAGTATTCAGGAATGAGCTTCAAGTCGTAGTCATACTTGTTCAGTTTTTCAAAATAACTTCTTTCAAGCGGCCTAACGCCGTAACATGCAATTCTCATCTTGAATACCTTCTTTTCTAGTACTTCACTTTATTTCTTTCAATAATTGCCCCTATTTTATTTAATTCCTTTCTCATTTTCAACCCTTTCCTTCAACTTCTTAACTATTTAATTTTCTCCCGCCTTTCCAGGCCAAGTAAGGGCTGACAGACTTTGCTTTCCGTAAATCCTTCCCTTAAAAGTCCAGCTTTTGCTTTTAATCTACAGGCCAAAAAGGCAAAGAAAAACGCCCCTGAGGCGGGTGCCTCAAGGACGCTGATTTGATCATTTTGAAGTTTGCTAATTAGATAACCCGCTTGGCAGCTGATGGCCAGAAGTAGGAGCTCAGGTATTGCTTACGGACACCCTGGCTTGGCGTAGCGGCGTGCACGTATTGGCCGCCCCCAACGTAGATGCCCACGTGGTATGGGGAGGACTTGGAACCCCAGAAGAGGAGGTCACCCTTCTTCAAGCTGACAGTTGAAACCTTAACAGTCTTGCCTTGGTAAACTTGGCTGTAAGTAGTCCGGCTGATGTACTTGCCAATGGCGTGGCTGTAGACGTATGAAGTCAAGCCTGAGCAGTCAAAGGCGTTAGGACCGGTTGCCCCGTAAACGTAAGGCTTGCCGACTTGCTTCTTGGCCAGGGAGACGACCTTGTTGCGCTGGCTGGTCTTAGAAGCAGCTTGGACAGTGTTGTTTTGAGTGTTAACAGTATTTACGGCAACAAAACCGGCGAAGGCCAGGGATACGGCTGCGACTACTTTGGCTAATGACTTCTTGAACTTCAAAATGATTTACTTCCTTTCCTTAACTTGATGTTTTTCTTAACTTGATGTTTAACATCTTACAGGATAAATATTTCAATTCTGTTTCAAAAAAGTCACGCCTTTTTTACAATCTATGAGGAAAAGCTTAATTTTGTAATTTTCTCACCAAACTGTCCAAGCTGGCATAGGTCGCTTGCAGGTCGTCATTGACCAGGACATGGGCGCAAGAAGCCAAATCTTCCGGCAATTCGTTCAACTCGCTGCCGGTCAGCCGATTCTTGATCTGGTCACTTGCATCACCCCGGTCAGCCATTCTTTGCGCCAAGGTATCCAGGCTGCAAGTCACATAAAGGAAGTAAACCTGGTCACCTAAAGCTTCCAGGTAGGACCGGGCTCCCTTGATGTCCACGATCAAGCTGACCAGGTCGTTCTTGGCCCAGGCTCTTTCCAGCCCTTCTTTACTGGACCCGTACTGGTAGTCCCCGTATTTGACATGTTCAAAGAAGTGCAGTTGGGCAAAAGAATCATCGTCTTCAAAATAATAGGCTGACCCGCTTTCCCCAGACCGCTTTGGCCGGGTGGTATGGGTAATCACCCGGGGGATCTGGTAGCGGTCGGTCAGGTATTCAGATATAGTCGTCTTGCCCGCCCCGCTGGGACCGGCAATCAAGATAATTTTTTTAGCCAAAAAGGGATCTCCTAACTTGAAAATTTTCGCTCTATACTATATCATAGCCTAGACTATATCATAGCCTAGGTGAAATTTTAACCATTTGCGAATTAAGGAGATTGCCATGAAGAAAGCCGATGTTGAATTAGGTGCCGTCGTTAACGCCAAGTCAGAAGAAGAACTGAAGAAGCAGTTCCAAGGCACGGTGGAAAAGATCTATGAAAACTCCGCCCTCCTGGCCATCACTTCCTTTGACGACGTTGATGCTGCTGCCGTCAGCGACCTCAACTACAAGCTGGTCGTCAGCTTCAAGAACATGAAGCCGGCCCGGGCAGCCAAGAAGGCCAAGGCCCTCTCCACCAACAACGTGACCATCGAAAAGGTGGCCCCAACCATAAAGGCTGACGACAAGGATAAGGACAAGAAGGAAAAGAAGGCTCCGGCCAAGAAGAGCAAGTAAGAGAACTCCGTGGTTATCCCGCGGAGTTTTTTGTTAAGATAGTAGAGAAAGCGAGTTGACAACATGAAAGAAAAAACTAAAAGCCTGCTCTACTGGTTCATCCTCCTCCAGCCCTTCCTGGATTTGGACTTCTTCTACCGGGGGAAGCTGGCCACCATCCTGCCCTTCACCATCCCGACCATCATCCGGATCGCCGGTGTCATCGTCTTGGTGGGCCTGCTTGTCTGGGGGCAAAAGCAGCTGCCTCCGGCCTGGCTCTGGGCCTACCTGGACCTCTTGACCCTCTACGGGATCTTCCACCTCTGGCACATGCAGAACTTCAAGAGCCTCAGCCCGAACGATTATGGCTACTCGAATTTCGGGGAGATTTTTTACCTCTTCAGAATGCTCCTGCCCCTGGCCTTGATCTGGGTGACCAAGAAACTGGAAATCAGCCAGGACTTCTTATTAAAAGCCTTCGCCTGGGTCAGTGGCCTCTTCACCGGCACGATCGTCTTGAGCAACCTCTTCGTGGTCTCTTTGAAGTCCTACGAAACTGGGGTAATCTCCGGCAACATCTTCACCTGGTTCATGGGGCCGCTTTACGGCTACTCCCACAGCGCCTCCAAGGGTTTCTTCTACTTTACCAACACCTTGAGCGCCATCCTCTTGATGCTGGCCCCGGTCGTCTTCTACCTTCTTCTTGAGCGCTTCTCCTGGAAGACCGGCCTTTTGGCCCTCAGCCAGACTTTGGCTATGCTGGAAGTCGGCACTAAGGTCGCCCTCTACGGCTTAGCCGGAACCCTGGCCGTCAGCTTGATTGCCTGGCTGGTCCACCTGTTTTGCTTAAAAAACGTCAAGTTTTCTAAAGGCGGCCTGGTCACCCTTTTGGCCTTAGCCGGGATCACCGGGGTCTGCTGGCAGGTCTCCCCGGCTGTCCAGCGCTACAAGTACGAGATCTACTTGGCAAACAGCCATGACTCCAAGATCGACCAAGAAAACGCGCTCTTAAAGGCGGGCCTGGCCAAATACAAGAATGACCCGGACAAGCTGAAAGAGTTTGAGAAGTACTTTTTGGCCAAATATTACCAGAAGTACGCCTTAAACAAGCGCTTCATTACCAAGTCCTACCCATATAAGTACGACCCGCAATTCTGGATCGACCTGCTTAAAGAGCCGGCCAGCGTCCGTTTAGCCAACCGCAAGGTCGAAGAGGCCATGCTTAAGCAAGTGGTCAAGTATGACAATGATCCTTTGGACAAGTGGCTGGGGATCGGTTATATGCGGCAGACCAACATCTCCAACCTGGAGCGGGACTTCACGGCCCAGTACTACTCTCTGGGGCTAGTCGGCGCCTTCCTTTACCTGGCCTTTTACCCGGCCATCATCCTCTATGGGGCCTTTGAGTGGCTGAAGGAAAAAGCCTGCCGGACCCTTTACTTAACCAGCCTCTTGATCGCTAGCGCCCTGCTACTGGGGGCCAGCTACATGTCGGGCAATGTCCTGGACTTCCCGACCTCTAACCTGCTTTTAGCCTTCCTAGGTGGCGGCCTCCTGGCTTACATCAAGGAAGAAAAAGGCCGAAGCACCGGACTCCGAATCGTCAGATTTGAGAAAAAGTAATACCAAAAAATCGTCTTCTTTAATTAGAAGGCGATTTTTACTTTGTTTTCAATTCTTACTTGATTTCCTTATCAATAAAGGAACTGTCCGGCACCCGGATCAGGTAGAAGCGCTTGGCACGGCGGCCGGCATGGAGGCCGATCCCGTTAGCCGCGGTGTTCTTGTACTTGGCCGTGTAGATGGCCACGTAGGCCTGCTGGTAGCGGGAATCTTCCTTCTTCAGCTCCTTGCGGCTGAAAGGCAGAGCTGAGGCGGTCACGTTGATCGGGTCCTTTTCATAAGAGACCGTAGCCAGGTAGCTAGGCACGGTATACTTTTTCCCCTTCAGGTAAAAAATATACTGCTGGCTCAAATCCCGGTTCTTGGTGGACTTGACCTGGACATAGTAGCTCTGGCTGGCGCTAGGCTGCAGGACCAGGGGCTTGTAGGTCACGGATGAAGTAATCCGGGAAGTATCCGTCAAGTTCGGGTCGTCAAAGAGGCTGACAGCTAAGAGCCAGCCGACCAAAAGGCAGAAGCTGGCGACTTCCAGCAGGCTGATCATAAAGTTGCCCCATTCAAATTTATGCTGGCGCTGGATGATCATCTTCAGCCGCCGGCGCCGGATATTTTGCACGATAAAGACCAGGTAAACGATGGCTCCCACCCAGAGAGCCACCCCCAGTACGTTCCAGCTCCACATAATTATGCCTCTTTCTTCGTCTTGGCCTTGGCTTCTTTGGCAGCTTCCTTGGCGGCTGCTTCGCCTTCCTTGACCTGCTTGATCTTCTCGCTCATGGCATCAGCCAGGCGGTCGGCTGCCCCTTCAACATCGGCTACTAATTCGTCGCCATCCATGAAGAGGTCGATCCGGAAGTGGGAAGCGTTCAGGTATTCGCTGGCCGTTTCAAAGTAGACCTTGACCGGCTGGGCTTCTTCTTCGTCAAAGAAGTTGATCAGCTTCTTGTAGTTGGCCAGGGGCAGGTTGATGATGTTGGTTTCCAGGGCAAAAGTGATAGGGTTCTTCCCCTCCAAAACCAGCTGGACCTGCATGAGCCGGTCTTTATTCAAGGCCGTGGCCACTTCCTGGACCATGGTCAAGGCGTGTTCACGCAGCTTCTTCTTGCTCCGGGAGACTTCGGAATATTTGATGGTCTCCATGTCAGACAGGTAGGTCTGTTCTTCGATTGCTTTAGTTAAGTCTTTCAGGTTGATCTGCATTTGTTGTCACCGTCCAATTATGTCTGTATCTACATTAACTAAAAAAGTCCCCGGGTGCAAGCGAAAAAAAAGAGCCGGCCAGGGGGGGCCGGTTCTCATTAGGATTAATAGGAAATGTAGGTTGTCACCAGTACTCGACTGATTTATAACCTCCGGGGCGGCGATAACATGGGGAAAACACCGCCGCTCCGGGAAATAGAGCCTGCCGCGCGGCAAGTTCTCTATTACTCTGCTATTTTACCATATCCATCCTCAAGAATCTCTCATGATATGCGATCTCAGTGAAAAAATCTTCGGCTATAGCTGAATTATTAGCCAGCTATTCTGACCAGAAGAGGAAAGCAATTATAGCGTGAAATGACAAAAAAGCCGCCAGAAGCGTACTTGCTTCTAGCGGCTTTCTCAACTCAAGGCACTTGCCAAACGGCAAATGTGACTCCTTCTCGTTCACATCAAGGGTGTGTCAGCATCGACGCTTCCCGCGTCTGGCCAAAGGCCTGATGCCCTCTATCTTAAAAATACGCACCTTTGCGTTTTCCTCGACTCGTCGATATTTGATTATACGCTCTTTCCCAGGCCTTGTAAAGCTACTTTTTCAACTTCTCCCGCAGCTTGAGCCGCTTGATGTACTTGTTCCAAGCTTCCTGGAACAGGGTTGACAGCAAGAAGCCCAAAGCGATCGACACAGTCACGATAGCCACCCGCATCATCATCTGATGGGCAGCAATATACTTGCCATCAATCAGCCGTCTGACCACCATATAAGCCGGCGCTCCCGGCACCAGCGGCACCAGGCCCGGTACGCTGAAAAGGGTGACTGGACACTTTTTCCACTTAGCCAAAACCACCGCGACCAAGCCCACGGCAAAGGCCCCCAGGGTGTTGGAAATCATCCGCCCGCCAGAAGCCTCCGTCACCAGCCAGTAGACCATCCAGCCCGCGCAACCGCAGATCCCGCTCCAGTGAATCACCCGGTGGGGAATATTCACCGTCAAGGCAAAACCCACCGTGTCAATGTATGAAAAGACCAAGTTGATCAAGACGTCCCAGATGTTGAAACTAACCTGCATTCCCAGCATGACTAAGCTCCTAAAAATCTAATCACGATCCCGACGCCGCCGCCCAGGGCAATCGCCGTCATCGCCGCCTCACACATGCGCACGATCCCTGACACCCAGTCGCCCATAAACAAGTCTCTCAAGGCGTTGGTCAAGGCCAGGCCGGGCACCAGAGTCATCAAGGCCCCAGTCAAAATATTGTTTACATTGCAGGCCGGAAGAATCCCATTAATGATAATGGTGAGTAGCCCCATCCCCATGGCCGCGATCATTTCCGCCAGGAAGCGGATCTTGGTGTGGCCCTTAAGCCAGGAGTCCATCAAATAGCCGCTGGCCCCGATCAGCCCGGCAACCGGGAAGTCGATCCAGTCATAAACACCCAAAAAGAGAACCATCAAGGTGGCACTCAAGATCCCGGCCCCGATGACCTGCAGCCATAAAGGAAAAGTCGGGGCGTTCTCCTCGATTTCCCGCAGCTTCTCTTCCAGCTCCTCCAGGTCAATCCGCTTGTCGGCGAATTTCCGGGAGAATTCATTGACCTGGTCAACCAGTTCCAGGTTGATGGCCCGCTTCTTTACGGTTTCCAGTTCCGTCACCGTGCTGCATTCCCCATCATCCAGGCTGACGAAGAGGCCGGTTGGCATGGCAAAAACATTGACCTCCTTGATGCCGGCGTTGACAGCGATCCGGCGCATGGTGTCCTCCACCCGGTACATTTCGCTACCGCCGGCCAGCATGAGGCGGCCAGCCTTCAAACAAGTATGAACGACTCTTTTCATGTACGCGTCTGTGCTCATTTTTTTCACCGCGAGCCTGCCTAAAGGCAGCTAAATCAATTATTCATGGCTTCAATATCGACGACCTTGTCGACCCAGTCACCTCTGAAAAAGTCCTGCTCGTGACTGACGATGATGACCCCGCCCGGGAAATTGACGATGGACTTCCGCAGGCTGTCCTTAGTTTCATTGTCCAGGTGGTTGGTCGGTTCGTCAAGAAAAAGCAGGTTGGCCGGCTCAAACTGCATCTTAGCCAGCTTCACCTTCTCCTGCTCGCCCCCTGACAATTCCTTAAGTGGACTCATGACCAATTGGGCGGTCAGCCCCATCCGGGCTAAAGCCTGCCGTAATTCCTTGGGCTTCTTCTGGTCAAATTCACTCTCTAAGTACTGCAGAGGCGTCATATTCTGGTTGGGCCAGGTCAAGTCCTGCTTGAAGTAGGCCAGCTTAGCCGTAGCCGACAGGTCAAAGCCCCCGTAGATCGGCGGAATCTGCCCCAAGAGGGTCTTCAGCAGGATGGTCTTGCCGATCCCGTTAAAACCGGTGATGGCGACCTTTTCCCCATTGCCAACGGAGAAGTTGAAGGCTTCCTTAACCAAAGCCTGGTCGTATCCGATCACCAGGTCCTGCGTCTGCAAAAGCAAGTTAGAGGCCGTTTCCACGTATGGGAAGTCAAATTTGGCCTTCTTGCCGTTTTGCGGGGGCGTCAAAACTTCCATTCTGTCCAGCTGCTTTTGCCGGGACCGGGCACTTTTGGCCCGGGTGCCGGCTTTATTTTTTCTGATATAGGCTTCAGTCTTGGCGATCTGCCGCTGCTGGTTGGCATAGGCCTTCATATAAGTCTGCCGGTTGGCTTCCTTTTGCCGCATGGCTTGCTTTAATGTACCGGTATAGCGGGTGATGGTCCCGAAGTCGATGTCGATAATACAGTTGGTTATCCGGCCTAAAAAGTCGTAGTCGTGGCTGACAACGATAAAAGCGCCGGTAAAATCATTCAAGTAGTCGACCAGCCAGTCGATGTGGCCGACGTCTAAGTAGTTGGTTGGTTCGTCCAGGACCAGGACTTGAGGCTGCTCTAAGAGGAGCTTGGCCAGGATCAGCTTGGACCGCTGGCCACCGGAAAGCTGGGATACGTCCCGGTCAAAGCCCAGTTCAGCCAGGCCTAAGCCGCTGGCCACCCGGTCGATTTCTGTGTCCAGGTCGTAGAAGTTGTTTTCTTCCAGGTAGGTCTGCAAACGCCCGGCTTTAGTTAAAAGGGACTCATCGCCGCTTTCGCTGTAATCGATGTAAAGCTGGTTCAACCGGGCTTCATCTTGGTAGAGCTGGTCAAAGGCAGTTTTTAAAAAGTCCCGCATGGTCAGACCGGGCGTCAGTTTGGCGTACTGGTCCAGGTAGCCGACGGAGAGCTTGTTTTGCCACTTGACTGACCCTTCATCGGGGAAGATTTCCCCGGTCAGGATTTTGATCAAGGTGGACTTGCCGACCCCGTTTTGGCCGGTGACCCCCATGTGGTCTTCCTTGTTTAAAACGAAATTGGCGTCTTCATAGAGGGTCTTTTCCGCAAAGCCCTGGGTCAAGCCGCTAACGGTCAGTAAACTCAAATTTTTTTCCTTTCTTACAGGTGAAAGTTTTCCGCCTGCTTGCGCTCATGGTCGTACTTCTGCAGGGTCTTGAGGATTCGCGGCCAGAGATAGCGCGGGGCGGTCAAGTGCAGGTGGTCGTCAGCCACCCGGAAGTAGCTGGGACTGAGCTTGGTTAAGCCGGAGAGGAATTCCTCATCTAGGTGGTACTTGTCAGAGATCCGCTGGATTTCGGCAATCGCGTATTCGGTGTAAGACGAGCTCACGAAGACCAGGATGGCGCCGATGATGCCCCAGACCAGGGACTGGGTATTGGTTAAGGCGAAAGAGTGCCGGCAGATGTAGAACATGGCGATGAAAGTCATTACGCCGGCAATCCCGCCGTAGATGTATGGATAATAGCGTTTTTTCACGAAAATTCCTCCTAATTCTATCAACTATCTTAACGTATTTTGCCCCCTGGATAGTAGGAAAATTATTGCTGAAAGGGAAAAAATACCCCTAGCTAAGCTAGAGGCATGATTGTCAGCACTACCAAGAATCACTGCTTCTTGGCGTAATTGAGTTGGCTTCATAAATCGTGTAGTTGGTGATGGTCTCATTGCTGGAGAAGTCGACCCCGTTATAGGTCTCGTTCAGACTGTTCTGCCGGGTTTCCTGGTTGGTCAAAGTCTGCGTGGACAGGCCCAGGCTCTTTCTCAGCTTGTTGGACCACTTCTGCAATTCTTCAGTTGACGCGATCTGGAGGCTGGTTCCGGAAATCGTCGCGTCGTGGCCCTGGATGTAGCCGCTGGAGATGTTGCTGGCCGCGCTTCTGTAGTTGATGGCCAGGCTGGTCATGTCGCCAAAAGTCAAATTGGTCTTGACGTACTTGGCAAAAACCTTGAGCAGCTTCTGGTAGTTGACTAAACCGTTGACGGACAAGCCCTTCTTGACCACGGCCTGGATGATCTGCCGCTGCCGCAGCTGCCGGCCGTAGTCCCCCCGGGGTTCGTCATAGCGCATCCGGGCATAAGCGATGGCGTGGCGGCCATCCAGGTGCTGCTTGCCCTTCTTAAAGTCACACCAGTCATAGCTGAAGCTGAACGGCACGTTGACGTCAACCCCGCCTAAAGCGTTGACCAGGCTCTCCAAGGCCTTCATGTTAACTTCCACATAATAGTTGATCGGCACGTTGAGCATGGCCGAAACCGTCTTGACCGACCCGCTGCTGCCCCCAAACTGGTAGGCCGAGTTGACCTTGAACATGTAGTAGCTAGTGTTGCTCGTTTCACCCAGAATTTCCGTCAAGGTATCCCGGGGAATCGAAGTCATGGTCGCCTTCTTGGTCGTTGGGTTGACGGTCACCAGGATGATGGTGTCCGAGTTCCCCTTGTCATTTCTCCCCTCAAGCCCCTGGTCGACCCCTAAAACCAGAATCGAGATCGGCTTCTTGGCCGCGATCCGGGCACTGGTCGCCGTGCTGCCGTTATTGCCGTTCATGCTCACCAAGGCTGAATGCAAGGAGAAGTAGGCATGCGCCCCCCAGGTCGCCGCGATCATGACGGCAAAGGTCACCAAGAGGCCAATGATGGTCGGCAGGGGACGGCGGGACTTTTTTTTCAAAAAGCCAGCCTGGACAAGAGTCACATTACGAAAAATTTTCTGTTGTCTTCTGCTGTGTTGCTCTTCCATGGACTAACCCCTTTAGTAATTTGCTATTATTTATTTTCGCATGAAAAAGGCATTTAATAAACCAGGCGTGGTAATATTTAGACTATCTTATTTTTTTGGCAAAAAGCCGCTTTGAGAGGACAATACTAGTGGCGAAAAACGTACTTAATGTGTTTGATTATATGTAAGAGATAACAGGTAGGTTCTAAGTTCAATTAATCTAGGGAAATCCGGAACTTTGCTTTAGGATAGATCCCAGCTTTCACCCACACTTCAAAAACGTATGTTTGGAAATCAGCAGGAATACCTGCTAAAATATTCCTCGAAACAAAGATATAATTCTGAAAGGCGGTGAAATCAAATGGCGGAACAGGTAAAAGAAGCACCGGCAGAATTAATTCAGACAAGAGTCTATGAACTACGTCCCAACAAGACTATGAGAAAAGTTTTGGATGAAGCTTGTGACTACCGTCGTTATTGCTGGAATCAAGGCCTCGCCTTGTGGAATGAAATGTATAAGGCAAGACAAACACTTAAATCTTCTTTGTCCACCGACTCCAAAAAGCTGACCGAAGAACAGAAAGTGCTGCTTAAAGACAAGCCTTCACCGAGTGAACGAAGAGTTCGTAATATGTTAGTTGCCGATAAAAAAGACTGGCAGTATACACAGTCAGCCCGGATTCTGCAACTGGCAATTTCTGATTTGGGTAAGGCTTGGAACAATTTCTTTGACAAGGCCCAACCAGGCTGGGGCAAACCAAAATTTCGGTCAAAGCGGGAAGCCAGACAAGGCTTCAAAAGTGACCAGAGCAAGATCAAAGATGGAATTCTTTATTTGGAACGGGCAAAAGAAAGTAGCGTTCCAAAAGACCAATGGCGCGGCTTTAAGCTGAGTGAAAAGCCTTTGTCAGATGAATTTGGCGTTGTCAGCTACTTCAAAGAAAAAGGCCGTTATTACGTTGCTATCCCGTATAAGATCAAGGCTGAAGATATTAAGCTGCCAGACAAAACAGGTAAAGCTACCGCGGTTGACGTCAATGTTGGTCACTTTGATTACACGGGAGGTCGCATGAACGTATTGCCTAAGAAGCTTGATAAAATTTATGGGAAAATCAAGCACTATCAAAGGCAGCTTGCCAAAAAGCAAGTCAAAAATGGAGAAGCTGCTTGCGAAAGCGAGAACTACTTGAAGACGAAAGCCAAGCTTCAAGCATGCTATCGCAAGGCAAGCAATATCCAAAACGACTTGATGCAGAAGTTTACGACTGAACTGGTCAATAACTACGACAAGATCGTGATTGAAAATCTGTCAGTCAAGGGTATGCTGATGAGCCACGTAGCTTCAAAGGGTGTTCACCGGTCGATGTTTGGCAAGTTTAAGCAATTCTTGACCTACAAGTGCGATTGGTATGGTAAGGAACTTATCCTGGCAAATAAGCTGTATCCGTCTACTCAGCGTTGTGCGGCCTGTGGCAATGTCAAAAAAGGTGATGACAAGATCACCCTTTACGGAAACAAGAAGCATGGTACTAAACACAATGAGTACGTCTGCTACAACCAAAAATGCCCAAACTACAATAAGGTTGTAGATCGGGATAAGAATGCGATGCTCAGTCTTTTAGCGCTGACTGAGCACCCAGAATTAAATCATGCGCTATAATTTTTAAAGAAAGGAGAGTTAGTGGCTAAGGCCCTGGCCTTAGTCATGCGGGTTGGCTGTACCCGAGGATTGGTGAGAGCCTTTCCATGAAGTTGCGAGAGTGGTGCTTCGGTACCTGCGCTGGTCAATGCGGTTACCCCCTTGTTGGGATATCGGAATACCGGTGATGACGGCAATAAGAAAAATGTCTGTATTCATGTCTTCGGACAATACATAGTCAAAGATTACGGTTTGGCTACATTGCACACGTTTTTTTGCAGCAGTAGAATATCAAGTATCGTAAAATAGAACGTAAAGTAATAAGAAAAAGAAGAGGTATCGTATGGAAATCCCTTATCGCAGTGAGGTTCCCAAAGAACAGACCTGGGACTTGACCCGGGTCTTCAAGACTGAGGCGGACTGGGAGGCCGCCTTTAAAGCTGTCAAGCAGGAAGTCAAGGCCCTGCCGGCCTTGGAAGACGGCTTTACGGAGAGCGCGGCCGTCCTCTATGACCGCTTGACCCAGATTTTTGCCGTTGACCGCCGCCTGTCCAAGATCTACGTCTATGCCAGCATGGCCAGCGACGTCGACACCAGCAACCAGAAGAAGCTGGCCCTCAATTCCCGCGGCCAGAGCCTGGCCGCTGAATACCAGGCGGCTGTTGCCTTCATTCAGCCGGCTGTTTTAGCCTTGGGGAAAGAGGCCCTGGACGCCTTTTTCAAGGAAGAGCCAAGACTGGAAAACTACCGGCACTATTTGGAACAGATCGTCAAGCAGGAAGAGCACGTTTTGCCAGCTGAAGAGGAGAAGCTGGTATCGGCGGCCGGGGATGCCCTGTCAGCTTCGGCCAACACCTTCAACGTCTTGACCAACTCCGATTTGCGATTCCCTTACATTGAAGATGAAGACGGGGAAGCAGTAGAACTGACGGAAGCCAACTACGACATCTTGATCCAGTCCCAGAACCGGGAAGTCAGAGAGGACGCCTTTGACGCCCTTTACGCTGGCTACGGCCAGTTCGCGTCAACTTTTGCCTCAACCTTGGCCGGCAATGTCAAGGCCCACAACTTTGATGCCCAGACCCACCACTACCAGGACGCCTTAGCCGCGGCTCTGTCAGAAAACAACATCCCTGTCGACGTCTACAACCAGCTTTTGACTAGCGTCCACAAGCACCTGGACCTCCTCCACCGCTATGTCAACTTGCGCGAAGAGATCCTGGACCTGAAGGGCGACCTGCAAATGTGGGACATGTACGTGCCGATCACGGGCAAGCCAAGCCTCAGCTACACTTTCGCTGAAGCCAAGGCCCAGGCCAGAGAGGCCCTGCAGGTTTTGGGCGAGGACTATGTCAAACACGTCGACTACCTCTTCAATAACCGCTGCATCGACCACGTGGCTAACATGCACAAGCAAAGCGGGGCCTACTCCGGCGGGGCTTATGACACCGACGCCTATGTGCTCTTGAACTGGCAGGGGGACCTGGATTCCCTCTACACCCTGGTCCACGAGACCGGCCACTCAGTCCACAGCATGTACACCCGGGAAAACCAGCCATACGTGTACGGGGACTATCCGATCTTTGTCGCGGAAATTGCCTCAACGACCAATGAAAACCTGCTGACCAACTACTTCCTGGACCGGGTGACGGATCCAAAGACCCGGGCCTTCCTGCTCAACTACTACTTGAGCTCCTTTAAGGGAACGGTCTACCGGCAGACCCAGTTCGCGGAATTCGAGAAGTTCATTCATGAAAGCGACCAGGCGGGGGAAGCCTTGACGGCTGACTACCTGTGCGGCTTCTACGACCGGCTCAACCAGCAGTACTACGGCCCAGCGATCAGCCTGGGCAGCGACATCGACCTGGAATGGGCCCGGATCCCCCACTTCTATTACAACTTCTACGTCTACCAGTACGCGACCGGCTTTGCCGCGGCGACTGCCCTGGCTAACAAGATTACTTACGGCAGCCAGGAAGACAAGGAGAAGTACCTGGACTTCCTTAAGTCCGGCTCCAGCGACTACCCGATCAACATCATGCAGAAGGCCGGCGTCAACATGACCAAGTCCGACTACCTGGAAGATGCCTTCAAGGTCTTTGCGGAAAGACTGGACGAATTTACTGACTTAATCAAAAAATTGTAGAAAAGAAAACGAAGCTGCTCAAAGTGAGTAGCTTCGTTTTTTGCTATTAAACTTGACACATGTTCAATCTTAGTGGTGTGAAGCACCAGTAGCCGCGTCTGGTTCAGACTTGATTTGGTTGACCGCGGTAACTGAGTATGGCGCACCCGCGGGTCAGTGCTGGATGGCTTATGTCGCCAGCGTACTGGAAGTCAGTCAAGCGGGCGTGCTTAACGTCTTCAATCGTCTTGCAGCCAGTCAGTTGCATGTCGATCTTCAATTCATCGTTCAATTCGTTGATGATTGAAGCAACCCCGTGCGGGCCACCCAAAGCCAGGCCGTAAAGGTAAGGACGGCCAATACCAACTAGGTCAGCCCCTAAAGCCAAAGCCTTGAAGACATGGGAGCCCCGGCGGACACCACCGTCGAAGATAACCGGGCAGCGGCCGTTGACTGCTTCAACAACTTCTGGCAATACGTCGATAGTTGCAGGATCACCGTCGATTTCCCGGCCACCGTGGTTAGTCACGTAAACGCCGTCTGCGCCGGCAGTCAAAGCAACTTCAACGTCTTCAGCACAGTTGACACCCTTAACGATGACTGGCAAGCCTTTAGCGTTAGGCGTACCTAATTTTTCCAAAACGTAGTCGCCGTCACTGTCCTGGCTGATGATCCCGTTTTGGTAAGTGTCAGTCACGCTGGTGTCATCCTTGTCACCGGTGTAAGAGAGGTTGTGGGTGACCGTGTAGTTGGCGTAAGTCTTGCCGCTGCCGGCCGGGCTGGTAGACAGGACGCTGACGACTTCGTTGTAATTAGCGACTGAGTCAGAGTCGTCCCAGTTGTCGTGCAGCTTCTTGATGCTGAGGTAGCCGGTATTGCTGCTGCCGTTGACCCAGTCTTCGCTGTCGTTGTCATCCCAGATGTCCTGGAGAAGGTCTTCAGCATCTTCGCTGCTTGCCAGGCCCTTGTCGTCCAGGTCGGCTACCTTCTTATCGTAGATGTAGACTTACGCTGCTGACCGTGAAGCTGCCAGTAGTGATGTTCAAGCTGACCTGGTGGTTGCTGAAGAGGTCCAGCTTAACCGGGCTAGGTGAAATGGTCTTCCCGCTCAAGTTGGCTGAAACTGAGAAAGTATAGCGGCCGGCGATTACCGGGTCCAGCTTCTTTTGGTAGTAGTCCCCGGATGCAGACAGCTTGCCCACGTTTTTCCCGTTCATCTTAATCGTGGAATTCTCGTGGTTGGTCACAACCGTTGGTGAGTAGGTCTTAACCATAAGCTTGTATTTCGGGAAAAAGAAGAAGTAGTGGCCGTCTTCGCCTAAAGAAACGGAGTCTTCAAAGACGTCGTCAAGGTCGTCCTCCCACTTCCGGACCTGCTTGAGGTCGGCCCGCCTTTTGCCTGTTTTAGCTGGCTTAACGGGTTGAACTTGCTGAGTTAGCTGGCTTGATTGTGCCGGCTTAACTAACTTTGCCCCGCAATTGGCGCAGACGCAGAAAGTAGCATTGGCCTGGTTTTTGGCGCCGCAGTTAGCGCAGTAGATCATTTTTACTTCCCCCTTTTTGATAAAAACTCTGTATGCTTAACTGGCAAAAAATGCTCTCAAGCCCAGTATTGCATAGAAAAATACAATTTTAGGCAAAAGAAAAGGAGCTCAAGAGCTCCTAAAATTCCATATTTGACTACGCCCGCTTCTTTCTGGCTTGGGTGAAGTAAACCAGCAGGTAAGCCGTTACCTCAATTACCGAAATGAAAAAGGTTACCGGCCAGTTGGTGATATAGCCCAGGCACAGCCCGGCCCAGACCCCCAACAGGGCCAGGCCGACCGACCAGGCCAGCATGCTCGGAATCGACTTGCCCAAATAACGGGCCGTTGATGACGGCATGGTCAAAAGGACAAAGACCAGCATGGACCCGACCACCTGGGAGCCGATGGAAACCGCCATGGCCAAAGCTACCAGGAAGACCACCCCGACAAAGCCGGTATTGATGTGGTGGGCCGCTGCCCCGATATGGTCAAAGGAATCATAGTTTAGGGGCCGCTGGATAGCAAAAATGATCAATAAGACAACCACTGACAGGCCGACCAGCTGATAGACGCTGGATCTGGACACCCCGATAATGGACCCGAACAAAATGTTGGTCGCGTAGCTGCTGGCTGAGCTGGACAGGGACAAAAAGAGGATCCCCAAGCCGACGAAGAAGGCGGAAATCGCGGAAATCGACGACTCCTTCTGCTCAGTCTGCATGGACAATTCCCCGACCCCGATTGAACCCAGGAGGGCAAAAATCAGCATCCCCGTCAAAGGCTTCAGTCCCATCAAAATGGCAAAAGCCGCCCCGGCAAAGCCGATTTCCGACAGGGTGTGGGCCAGGAAACTGAAATTGCGGGCCACGACATAGACGCCCACCACCCCGCAGGTAATCGCGATAAAGGTGGCCGCCCAAAAAGCATTGCGCATGAATTCGTAGGCAAACATCAGTTGAAATTCTCCTTAAAATCTTCCATCTTCCCCTGGCTGACCGTCCCGTCGCTTAAGTAAAGATAGTCCTTCATATAGCGCTTGGCCAAAGGAATGTCGTGGGTGACGAACAAGACCGTCATCTTGTGTTCATGGTTGATGTGGGCGATCAGGCTCATCAATTCTTCCTTGGCCTTAGGGTCCAGGCTGGCCGTGGCTTCATCCAAAATGATGAAGTTCGGCTGGTCCAAGAGGGCCTGGGCCAGGTAGGCCCGCTGCTTCTGCCCGCCGGAAGCCTCCCCCATCCTGGTGTCCGCCAGGCCTTTCAAGTGGGTCTCCTGCAAAATATGGTTGACCTGGTCCTTAACCTTCTTGCTCTTCCAAAAAGGCGTGTTTAATTCGATAAAAGACTTGATCGACAAGGGATAGTCCGGGTCGATATTGCGGAACTGGGGCACATAGCCCACCTTTACGTCGTCAGCCAGCTCAAAATATCCGTGGCTGGGGCTCAGCATCCCTATCAGTATTCTGACCAGGGTGGTCTTCCCGGCCCCGTTAGGGCCCAAAAGAGCCGTCATGGACCCGGTCTCCAGGCTGAAATTGAGCTTTTTAAAAATCTCCTGGTCGTCGAACTTCATGCTCAAGTCCACGACCTGCAAAGCTTTACTCATTTACTTACCTCTAGTCTCAGTCTCTCTATAGCTTCTTCAGCAAGTCCAGGACCCTGTCCTGGACGGCACTTTCATCGCTTGAACCGATGATCCCGTTAGCCGCCCGCTTGGCTTCCGGCAAAGCCGTAGCTGTCGCGTAGCTCTGGCCCACGTATTGGAGCATGGCCACGTCGTTGCCCCCGTCGCCGAAGGCCACCATTTCGTCAGCCGGGATCCCGTAGCGCTTGCCCAAAAGCTTGAGGCCTACCGCCTTGTTCATGCCCAGCTTGCTGATGTCAACGGCTGAGTCGCTGCCGGCCACCATGTCCAGGCTCGGGAATTCCCGCTTGAGCTGCTGGGCAAAGGCTGATGATTCCCTTTCCCCGGTCACCACAGTGAACTTGAATATCCGGTCCTTGACGCTTTCGTAGTCGTCAACTGCTTTCAGTTCCTGGTAAAAAAGGCGGAGGTAGTTGTAAAACTCTTCCCCGTAGCTCTGCAAGGTGTAGGCGCTATTCACCCCAGCCAAGACAGTCGGGTGGTCCTGGCCGTACTTTTCCTTGATCTCGTGGATCGTGGCCAGTTCATCGCTGTTTAAGTCCACGATGTTGAGGATTTCCCGCCCCTTCAAGACATAGGCCCCGTTTTCAGCCACGAAGTAGAGCTGGCTGAGGTATTCTTTCGGAAAACGGGTAACCAGGTTTTCATACTGGTTGCCGCTGGCGATGACGAACTTGACCCCCTTTTCCCTGGCCAGGTCCATGATTTGCTTGAACTTGTCCAGGTCGTACTCCTTCTTGGAGTTGAGCCAGGTACCATCCATGTCAGTCGCGATTAACTTGATCATCTTTTCTGCTCCATTCTCGTAATAAATCGTCTCATTTTTCAGTAAGTATAAAACTTTTGCTTTCTTTTGCTTTTTCCACTATCTATCTTACAGAATTTTGCCCGCTATTACTTGCTTTTTGTCCGCATTTAAAAAATCTGTAACAGTGAAATATAACAAATCTTCCAGGAGAATGCCAGTATTTTTTCTAAAAAGAAAATTTAGGGCTAAACACAAAAACAGGAGGGACTTAATCCCCTCCTGTTTTGCATTTTAACTTATTTGTTTACTTTTCAATTGGTTTCTTCCAGAAGCCCATCATCAAAGCAGCTACGATTGAGCCGACAGCTACGGCGCCCAGGTAGCCCAGCCAGTTGCTGGACAAAGCGATAACCCAGAAACCACCGTGAGGTGCTGGCACGCCGACGTGCCACAGACCTACCAGGGTCCCGCCGACAGCACTGCCGACGATTGATGAAACGATAACGTGCAGCGGGTCAGCACTGGCGAATGGGATAGCCCCTTCAGTGATAAAGGAGAAGCCCAGGATCCAGTTGGAAACACCGGCCCGGCGTTCATCTTCAGTAAACTTGTTCTTGAAGAAAGTAGTCGCGATAGCAGTCGCTAATGGTGCTACCATACCACCAACCATAACGGAAGCCATCAAGATAGCTGAGGTCTTGGAAGTCGGGTCGTTGGCGAAGGCACCTGAAGCGAAGACGTAAGCGGCCTTGTTGAAAGGACCACCCATGTCGATACTCATCATGCCGGCCAGGATCGTGGTCAAGAGAACCAGGTTGCCAGTGCCCATGCCGTTCAAGAAGTTGGTGATAACCCCGTTCAAGGCACCGAAGACCGGGTTGATGATGTAGTACATGATCAAGGCTACGAAGAGCAGACCAAAGATTGGGTAGAGCAACATTGGCTTCATACCTTCAACGTTCTTCGGCAGCTTAACGAAGAGCTTCTTGAGGCCCAAGATCAGGTAACCGGCGATGAAACCGATGGCAATCCCGCCCAGGAAGCCGGCTGGTGAAGCAGCCTTGGCGTTGGCGTTAACAACGTAAGAGCCACCCAAGGAAGAGTTGGTGATTGAGGCCATGAAACCACCGACGAAACCTGGCATCAAGGCTGGCAGGTCACCGATTGATTCAGCGATGTAGCCGGCCAGAACCGGAACCATGAAGGCGAAGGCCAGGTTACCAGCACTGTTCAAGAAGATGAAGGCCGGGCTCTTGGCGCCACCCATGTATTGTTCAACCAGGAAGGAGATGGCCATCAAGATACCGCCACCGATAACGAACGGAAGCATGTGGGAAATACCGCTCATCAAGTGCCGGTAGATGGTTGACCATACGCTGCCGTCGCTTGCAGCTGAGCTTTCACTGGCTTCACCAGCTTCTGCATGGTAAACGCTGCCCTTGCCGGACAGGATCTCGTCAATCAGTTGGTCTGGCTTGTTGATCCCGTCAACAACTGGGTGCTTGACCAGTTTCTTGCCGTCAAAGCGGGCCATCTTGACCTGCTTGTCGGAAGCGATGATAACACCCTTAGCCCGCTTGATTTCGTCAGCAGTCAGTTCGTGCTTAACGCCTTCTGAACCGTTGGTTTCAATCCGGACTTCAACGCCGCGCTTTTCACCGGCCTTGATCAGGGCTTCTTCAGCCATGTAAGTGTGGGCGATCCCGTTGATGCAGGCAGTAACGCCGACGATCAATGGCTTTTCGTCACTAGCTGCCTTAGCTTCTGCTTCCTTCTTAGCGGCCAGCTTGGCTTCGCGTTCAGCGTCTTCCTTGTCCTTGTCAGCTTCTGCCTGGCTGAAGAGGTCGATAACTTCGTCAGCCGTCTTAGCTGCCTTCAGCTTTTCAACCAGGTCAGGGTTGATCAAGAGGCTGCTCAGCTTAGCCAGGGCTTGCAAGTGAGTGTTGTCCGCACCGGCTGGGGCAGTGATCATGAAGAAGAGGTGGACTGGCTGCTGGTCTAATGAGTCGTAGTCCACGCCCTTTTCACTCTTGGCAAAAAGCACCCGGGCCTTGTTAATGTATTCGTTTCTGGCGTGAGGCATGGCAATCCCGCCACCGATCCCGGTAGTGGATTCCTTTTCCCGGGCCCAGATGGATTCAACGAACTTTTCCTTGTTGTTGACGATACCCGTAGCTACTTCCAAGTCGGCCATTTCGTTGATGGCTTCATCCTTGGTGGTAGCCTGCAAGTCCATAATCATGGACTCTGGGCTCAAAATATCTTTAATCCGCATCTTGTTTTCCTTAGTTACTAAAAAATACTCTGTTACTTCTTATTCCCTTTATTCAACGACGTCGATCTTGATTTGCGGCAATACGGCGTCGATTTGGCTCTTGATCGCGATGTCTTCAGTGAAAGCCGTTGCCCCGCCGCAGGCGCTGCCGACCCGGAGGCCTTCAGCCGCGTCGTGCTTTTCAAACCAGGTGCCGACGAAACCGGCAATCATGGAGTCCCCGGCGCCAACGGAGTTGACCGCCGTGCCCGTGGCCGCGTTGGCGTGGTAGACGTGGTCAGCAGTTACTAGGTAAGCACCTTCGCCAGCCATGGAGATCATGACGTTTTGCGCGCCCAGCTTCTGCAGCTTCTTGGCTGCTTCCAGCATGTCGGCAGTTGATGAGAAGCTGGTGTCAAAGAGGTCAGCCAGTTCGTGGTGGTTTGGCTTGATAACCAATGGATTGAACTTCAAAGTACGCAGCAGGGCTTCGCCAGTCGTGTCAACGACGAATTCCGCCCCCTTTTCCCGGATCAGCGGCAAAAGGCTTTCGTAGAAGTCAGTTGGCAGGCTTGGAGCCAGGCTGCCGCTCAAAACAACGACATCGCCTGCTTCCAGGTCGTCCAGGCGGGACTTGAAGGCTGCGACTTCCTGGTCGGTAATGTCCGGGCCAGCCGCGTTTATTTCAGTTTCTTCCTGGGCGTGGATCTTAACGTTCACCCGGGTGTCGTCGCTGATTCTTACGAAGTCGCTGCTGATCTTCTTGACGTTCAATTGGCGGATCAATTCTTCGCCGGTAAAGCCGCCGACAAAGCCCCAGGCAGTGTTGTCCACGCCTAATTGGTTAAGAATCTGGGAAACGTTGATCCCCTTGCCCCCAGCTAAGAACTTGGTGTCGCTTGACCGGTTGGTCTCCCCGTCCTTGACTTCTAGCAGTTGCAGAACGTAGTCCAAAGCTGGGTTGACAGTCACGGTGTAAATCATTATTCAGCCTCCTCAAGTTGAATATTTACTGGCAATTTCTCCCGGTCGCCAGCCTCCAGGCGGCTGATGATGGTCACCTGGTCGGTCTTGGCGAATTCGGCAAAAGTTACCGCGTTAAATTTGCTGCGGTCGATTAAAACGAAAGCCTGCTGGCTTTGCTGGATAGCCGTCCTTTTCACGGCAGCTTCCTCAGTGTCCGGCGTGGTTAAAAAGCCGGCCGGGCTCAGGGCGTTGGCCCCAATGAAAGCCGCGTTGAAGTTCAGCTCCTGCAGGCGGGAGACAGTGGTCGCGCCAATGGCCGCGTGGGTCTGCCGCTTGACATGGCCGCCTAAAAGGCAGCAGTCAATTCCAGCGTCAGTCAAGGCCAGGGCCGTTTCCAGCCCGTTGGTCACCACGTGCAGGCCGCTGATCTCTTTTAAAAAGGGAACCATTTCATAAATGGTCGTCCCCGCGTCTAAAAAGAGATAGTCGTGCGGGTGGACCTTCCTGGCGGCCAGGCGGGCAATAGCCAGCTTGTCATCCTTGTTCAGATTGAAGCGGATCTGCTGGGCCACATCCTGGCCAAAAGTCTGCAGGCTCTGCGCTCCGCCGTGGACCCGTTTAAGCAGGCCCCGGTCTTCCATTTCACTCAGATCGCGTCTGATCGTCGACTCGGATGTCGAGGTCAAGCGGCAAAGTTCCGTTACGCGGCAAATCTGATGTTCGTCTACATAATGGGCAATCATTTGTTGCCGCTCTTCCGCCAGCATCTTTATCTCACCTCGCCATCTATTGTAAAGGCTTTCTCAGCCAAAAGCAATCATTTTCCGTCAAAAATGAGCGATTTTCCTAAAAATTAACTGTTTCTGACTGAAACATACTTAAAATTAGCAAGGCAAGCAAAAAAGACCAGGATTTCCTGGTCTTTTATTTAGTCATATAGATATTTCTGGCAGGCCTGGCGGGGATCTTGCCCGTTCCTAATCGCCAGAGCCAGTTCGATCGACACGTCAGCGATGATCGACTGGGGGTCGATAACCTGGTAGGGGTGGTCCGGCGCCTGCTCCTGGGCTAAGGAAAGTTCCGTGCAGCCCAGCAGGATCACGTCGCAGCCATATTCGTCGTGCATCTTGCGGAGGATCTCATGGTAGAGCTCCTTGTCGACGATCCCCTTCTCCTTGATGTCCCGGTAGATCAATTCCGTCACCATCGGCTGGATCTCGGGACCTCCGAATTCGACTTCCCGTCCCACCCGGTGGATCTCGTCTTCATAAAGGTGGTCGTAAATTGACCCTTCAGTCGCGATCAAGCCGATCTTGGGACTGTTTGGGAACTGGTCGACATATTGGTGCACGGCAATCCGCATCATGTGCAGGAAGGGAATGTCGGTCAAGGCCGCCAGGTCGTCATAAAAGTAGTGGGCCGTGTTGCAGGGCATGACCATGAAGTCCGGCCCCAGCTTGGCCTGGCCTAAAACATCTTCTTTAAGCGCATTGAAAAAATTCGGCTGGCTGTGGTCCTTGATGTAGGCCGTCCGGTCTGGCACCTGGGCATCATTGACCAGGATGTAGTTCAAGTAGTCCTGGTCCTTGCTGATCTTGACCCGGTGGTTGATCAAGCGGACATAGCTTTCGGTCGCAATGGTCCCCATCCCGCCAATAATGCTAAAGAAATGCTTCACTAAATATCAATCCCTACTTTTCTAATTCCTGGATCACTTGCCGGGCGATAACAATATCGCCGGCATATGGAGTGTCTACCCCGCGGATCTTCTGGAAGGCGTCAGCCCCCTTGCCGCAGAGCAGGACCACGTCGTCCGGGCCAGCTTCGGAAATGGCTTCCTTGATGGCCTTCTCCCGGTCCAGTTCAATAACCGTTTCACACTTGGAGTGGTCGATCCCGGCATCGATTTCCTCGCAGATGTCCTGGGCATTTTCAAAGCCAGGGTCGTCCGTGGTCAGGTAGGCCTTGTCAGCTTCCGCCGTCAAGCTTTCACTGAAGCCCGGCCGGCGGGAAATTCCCTTGTCCCCAGGCGCACCGACCACGACGATGACCCGGGGGGTGGTGAATTCCCGGCGCATGAACCGCATCAAGGCCAGCATGGAGGCCTTGTTGTGGGCATAGTCCACCACAATCAAGCCGTGCTTTTGGGTCGTGACGGTTTCCATCCGGCCTGGGATGGTCACGTGCCGGATCCCCTTGGCGCAGTCTTCATAACTCATTCCGGCTAGGCCAGCCCCGATGATGGCGCCGGTAGCGTTGGTTTCGTTGAAGTCGCCGATCATCTGCAGAGTGTATTCACCAGAGATTGGCAGCTTGTGGGCCTTGCTTGAAGCCGTAGTCAAGGTGAACTTGGTTTCAGCCAGGTCAGTTTCCACGGACTTGTAGCGGAAGTCGATTGGCTTCTTCAGATCCGGATTTTCAAAGCCGTCCCGGGCAAACAGGTAGATGCTGTCCGGGTTGGTCGTGGTCGTTGCTGCCGCGTAAACATCAGCAAAACGGTCGGTTTCCGCGTTGATGATGCACTTGCGTGAGTTAACCAAAAGCTGCAGCTTGCAGTGGAGGTAGTCCTCAAAGTTCGGGTGCTCGTTGACCCCGATGTGGTCCGGGCTGATGTTCAGGAAGAAGCCCAGGTCGTAGGTCAGGCCAAAGACCCGGCTCTTCTTGTAGGCTTGGGATGACACTTCCATAACCATGTGGGTCATGCCGTTGTCAACTGCCCGCCGCATGTCTCTGAACAAGTCCAGTGATTCCGGCGTGGTCAGGCTGGACTTGAAGGTGTCTTCCGGAGCCGGCCCGAGGATGTTGTCGACTGAGGACAAAAGAGCAGTCCGGCCCCCGTTGAGCTGGTCCAGCATCCCCTTTAAGAAGTAGGCGGAAGTGGTCTTGCCCTTGGTCCCGGTAAAGCCAACCAGGAAGAGGTCGTCTTGCGGGAAGCTGTAGAAGGCAGCTGACAAAAGGGCCATCGCCTTGGACACGTTGCGGACGATCAAGGCGTGCATCCCCGTGCCTTCCGGGTATGGCTGCTCAGCCACGTAGGCAATTGCCCCGTTTTCCTTGGCCATGGTCAAGTAGGTTGGCCGGAAGCCCGCCCCCTTGCAGAAGAAGAGGCTGTTGTTCTGGACATCGCGTGAGTCATAAGAAACAGCCTCCATTATGGTCTGGACAGTGTCCTGGACGGCACTGGACTTGAGCAGGTGGTGTTCTTTTAAGATTAAAATACAGGTGTTTAATGAGATGTTCATTTTTACTCCTCAGTGTCAATTAAGATTCAGTTCAAATTATACCACAGGTCTAAGAGCAAAGTTGTTTGCCTGGGGATCCCGGGGCAAGAGAATGATGAAACTGGTCCAATCCTTGTTTGATTCACAGCGGATCGTCCCCCCGTGCAGCTCGACGCCCCCTTGGACGATGGACAGGCCTAAGCCCGTGCCCCCGGTCTTGGTATTGCGCGAGCTTTCCACCCGGTAGAAGCGGTCAAAAATCTTCTTCAATTTGTCCTTGGGAATCGGTTCCCCGTTATTCTCCACCCGCAGCTCAACCTGCTCGTGGTTGATCAGGTTGGCCACCAGGTTGATCCGGCTGGCCCCGGCCGCGTACTTTAAGGCATTGGAGATCAAGTTGTTGTAGACCCGGACCAGCTTTTCCACGTCGGCGTTGACGATCAAGTCATCCGGCCGGGCCTTGACGCTAAAGGCAATGCCCTTCTTCTCCGCTTCCAGCTCAAAGCCGGCCGCCACCTGCTCCATCATGCCCTTGATATTGATCGGGGTCACGTTCAGCTTGGTCTTGGTCGACTTCAAGGTGGTGTACTCGAAAAGGTCATTGGCCAGGGACTTCATCTGCTCAGCCTTGTCATAGGCGATATTGATGTACTTGAGCATGTCCTCCTGGCTGGTCACGGCCCCGTTCTTCAGCAGGCCCAGGTAGCCGATGATGCTGGTCAAAGGGGTCCGGATATCGTGGGAAACATTGGTGATCAGTTCGTCTTTCGACTGCTCGATCGCCTTTTCTTCATTGATCGCCCCCACGGTCGAGTCGACCAGGGAGTTGATGGAATCGATCACCTTCTGCATGTCGTTGTTGACGCTGAAGGAAATCCGGTGGTCAAAGTGGCCGTTGGCAATATAGTGCAATTCGGAAATGATGTGCCGCAGCTGCATTTGGTGGTAGCGGCGGATTAAGCGCCAGTACAAGACGATGACGTCAGCGATCCCCATCAAAATGATCCCGATTCTTTCCCAGGACCAGATATGGTAGCCCGGTCCGATCGTCATGGTCTTTTTCAAAAAATAAATGCCGTTGACCAGGCTCTTGTCCTGCAGGACCGCCAAATGGTAGAGGATGATGACGGACATGTTCAAGAGCAGCATGATGATGACCGTCACCACGCCCTCAGCAAAAAGCTCGCTCTTCTCAGCCGCGGTCAGCTTGACCCGGGGCCGCTTGCCCTGGACGACTTGTTTTTCTTTGTCTTGCTCAAGCTTCAACTTTGTAACCTACACCCCATACAGTCTTGATGACTTCTTCGCCGTCGGTGGCCTTATGGATCTTGTCCCGCAAGTGGGAAACGTGAACCATGACCGTCTTGGCGCTGACAATGGACTCTTGCTGCCAAACCCGCTCGAAGATCTCATCAGCTGAGAAGACCCGGTTGGGGTGGCTGGCCAAAAGGTAAAGAATGCCGAATTCCAGGGCTGTCAGTTGGATTTCCTTGCCTTCAACCGTCTTGACCTCATGGGAGTCCTTGTTGATGATCAGAGGCCCGACTTCCAAAACGTCAGGCTCCTCTCCCTTGACCTGCTTCTGGCTGCGGCGCAAAAGGGACCGGACCCGGGCCATGACTTCCAGGGGGTTGAAAGGCTTGGACACGTAGTCGTCGGCCCCGGTGATCAAGCCCTGGATCTTATCCATGTCGCCGGTCTTGGCGCTGACGATGATGATCGGAATGTCAGAATCCTTGCGAACTTCCTTGACCACATCGATGCCTGACATGTTCGGCATCATCACGTCCAGAATCATCAAGGCGATATCCGGCGTGGTTGAGAGCTTGGTCAAAGCTTCCTTGCCATTGTAGGCGGCAATCGGCTCATACCCTTCGTTCTTCAAATAAATGCTTAAGAGTTCCACGATTTCGTGGTCATCATCGACAACGAGAATCTTCATTTGCAAAACCTCTTCTATTCCAAACTTATCTATCCTATATAGTACCTTTTATTTTAACCAATATACCAAAAAGAGCGTACTTTGACGTACACTCTGACTTGGATTTTAGCAAAACATAAGATTCGCTCTTATTGGATTTCTTTTTTGCCGGTGTAGAGCTCGTAGTAGTAGCCCTGCTTGGCCAGAAGCTGGTCGTGGTTGCCGGCTTCCAGGACCCGGCCGTGGTCCAGGACAATGATCAAATCGGAGTTGACGATGGTGGACAGACGGTGGGCAATGACGAAGCTGGTCCGGCCAGCCAAAAGGTTGTCCATCCCGGCTTGCACCAGGCGCTCAGTCCGGGTGTCGATGGAACTGGTGGCTTCGTCCAGGATCATGACCGGATTGTCAGCGATCATGGCCCGGGCAATGGAGAGCAGCTGCAGCTGCCCCTGGGAGAGGTCGCTGCCGCCCCCGTCGATCACCGTTTCATAGCCATCATCCCGGTCATGGATGAACTCATCGGCCCGGGCCAGGCGGGCTGCCTGGTAGACGTCGTCATCTGAAGCGTCAGGCCGGCCGAAGCGGATGTTTTCCATGATGTTGCCGGTAAACATGTGAGTTTCCTGCAAGACGATGGAGACAGACTTGCGGAGGTCATCCTTCTTGATGTCCTTGATATCGATCCCGTCGTAAGTAATCGTGCCGGAATTAATTTCATAGAAGCGGTTGATCATGCTGGAAATAGTAGTCTTCCCGGCCCCCGTTTCCCCGACCAGGGCCACCTTCATGCCCGGCTTGGCTTCAAGGGAAATATCGTGCAGGATCTGCTTGCCTGGCACATAGCCGAAGCTGACGTGGTCAAAGACGATGTGACCCTTGACTGGCACGTACTTAAAGCCGTTTTCGGTCGGCAGCTTCCACTGCCAGGCATTCTTGACGCCCGGCTTTTCTTCGATAGTTACCTGGCCGTCGTCGACTTCAACTTTTTCATCCAGGACCTGGAAAATCCGACGGGCCCCGGCAATAGCCAGAACGATGGCGTTCAGCTGCTGGGAAATCTGGGCGATCGGCATGATGAAGGCCTTGGACAGCTGCATGAAGGAAGCCAGAGCCCCCAAGGTCAGCGGAATGTTGCCGGCTAAGATTGCCGCCCCGCCGAGCAAGGCGATCAAGACATAGAGCAGGTTGCCGATATTGCCCATGATTGGGAACAAGATGGTGGCATAGGTGTTGGCCTTGCCTGAGGCAATCCGCAGCTGGTCATTGTAGCGGTCAAAGTCGGCCTTGGCTTCCGGTTCATGGGAGAAGACCTTGATGACCTTCAAGCCGTTAAGCATTTCTTCGTTGTAGCCGTTGACCGTCCCTACAGTCTTCTGCTGCTGGTCAAAGTAGTAGCTGGACTTGCCGGTCAAGTAGCGGACAACGCCTAAGGACAGGAGAACCACTACCAGGGAAACCAGGGTCAATTGCCAGCTGAGGTAGAACATCCCCGCCAAAACGAAGACTACTGAAAAGACAGAGTTAGCGAACATCGGCAGGGCCTGGGAGATCATCTGCATCAAGGTGTCGATGTCGTTAGTATAGCGGGACATGATGTCGCCGTATTCGTTCTGGTCAAAAAAGGCGATCGGCAGCCGCTGCATGTGGGTAAACATTTCATTTCTGATTTGCTTTTGCACCTGCTGGGACAAGACCATCATCAGCAAGGTGAAAAGGTAGTTGGCTACCAGACCGATGGCGTAAACGCCGGCCATGAGCAAAACAGCGTGAGCCAAGGGGCCAAAGTCCGGGCTCTTTTGCTTGAGCATGGGCGTGATGTAGCGGTCGATAACCTGTTCAATGAACAAGGAGCCGACAACAGAAGCCGCCGCGCTGATGATCACGGAGGCCAGGGAAACGATCAAAGCCGCCGGGCTAACCCGGTAGACGTATTTCAGCAGGCGGGTCAAGGTCTGCATTTGTGATGGTTGCTGAGCTTGTTTTTTAGTCATCGATTATCACCTACTTGCTGTTTTCTTCCTGGAACTTGGCGATGGATGAGTACAAGTCGTTGCGCTTGATCAATTCATCGTGGGTTCCGACGTCTTCGATCTTCCCGTGGTTCATGACCACGATCCGGTCGGCATCCTTGATGGAGACGATCCGCTGGGAAATGATGATCTTGGTCGTTTCCGGCAGGTCCCGCTTCAAGGCTTCCCGGATTTCCCGTTCAGTCTTGGCGTCGACGGCACTGGTGGAGTCGTCCAGGATCAGGATCTTCGGCTTCTTCAACAGGGCCCGGGCGATCGTGATCCGCTGCTTTTGCCCCCCGGAAACGTTGTTGCCGCCTTGTTCGACCATGGTGTTATAGCCGTCCGTCATTTCCCGGATAAAGCCGTCAGCGTGAGCAATCTTGACTGCCCGGACGATTTCCTCGTCGCTGGCCTTTTCATTCCCCCACTTGAGGTTGTCCTTGATAGTGCCGGAGAAGAGGACGTTCTTTTGCAAAATGACCGCCACGTTGTCGCGCAGGGTCTTAAGGTCGTAAGAGCGCACGTTGTGGCCGCCGACTCTGACTGCCCCACCAGTCACGTCGTAAAGGCGGGGAATCATGGAAATCAAGGTTGACTTGGAAGACCCGGTTTCCCCGATAATCCCCAAAGTTTCCCCGGACTTGATCCGCAGGTCAATGTCCTTTAAGGCATAGTGGTCATCTTCCTTGTTGTACTTGAAGTCAACGTGGTCAAAAACGATTTCCCCGTTGGTCACGCTGGTCAAAGGTGACTTGGCCGGGTTGACAATAGTTGGCTTGGCCGTCAAGACGTCAGCCACCCGGTGCCCGCTCGACCGGGCCATCATCAGCTGGGTGAAGATCATGGACAGGATCATCAAGGACATCAAGATGGACATGGTGTAAGAGAACACGGAAACCAGCTGGCCGGTTGCCAGTTGATGGCCCACGATCAGTTTTGCTCCAAACCAGGACAGGGCCAGCATGACAGCGTCGATCATCATAGTCATGACCGGGCCGTTGAAGGCCATGATGAACATGGCCCGGCTGAAGAGCTTGTAGATCTTGCTGGTGGACTTTTCAAAGTTCTCGATCTGCTCTTCTTCATGGACATAGGTCTTGACTTCCCGGACCCCGCGGATGTTTTCCCGGACCTTCCGGTTCAGTTCGTCATAGGCCCGGAAGATTCTCGGGAAGTATGGCCGGGCATTCTTGATGATCAAGATCATGGCCAGAGCCAAAACCGGAACAGGCACGAGGAAGACCAGGGTCAGTCTCCAGCTGATCGAAACTGCCATGAACAAGGAAATGATCATCATGAACGGGGCCCGGACGGCTATTCTGATGCTCATCTGGTAGGCCTGCTGGATGTTGTTGGTGTCGGTCGTCAGCCTGGTCACCAGACTGGCGCTGGAGAACTTGTCAATGTTTTCAAATGAAAAGTCCTGTATGTGGTAGAACATGTCCTGGCGGAGGTTGGCGGTAAAGCCGGCTGCCGCATGGGCTGAGAAGTAGCTGGCACTGGCCCCCAGGACCAGGGAGACCAGAGTCAGCAGGATGGTGAACAGACCCATCTTGCGCACGTAGTCCATGTCCCCCTTGTTGATCCCGTTGTCAATCAAGAGCCCCATGATATATGGGATATACATTTCAATGAAGACCTCGACGACCACGCACAAAGGAGACAAGAGCGTCTCTTTTTGTACTGGCGGACGGACTTCAATAAAGTTTTAAGCATTAATGACCTCCCTCTTTACTGCTCATCGCTTTTTATAAAAAATCGTCAAAAAAAACAAATAGATGCTGAGCATCTATTTGTTTTATACTTATCAGCTTATTTTACGCCCATTAGGATTAAAAAGCACGCTATAGATTTACTTTTTCTTCATGGTCAGCTTGTCCGGGCTGAGAGAAGTCCCTTCAATCCCGTAGTGACGGCGAACCAGCCAGCGAATCCCGTAAGCGGCTGCGGCCACCAGGATGTCAGCCCAGCCTGGCAGAACCGGGTTGATGACGGACAGGGCCGGAATTGAGAGGACAAAGACGATCAGCATGATGATCAAAAGTGACCCCAAAAGGCCCCAGATCACCTTGCCCCAGGCCTGCTTGTCGGTCTTAGGGTCAGGCTGCATCCAGGTGTTGTATTTGGTGAAGTACCAGCCCATGGACAGACCCATCACGATCAAGGTCAGGATCCCGGAACCGGAGGAAGTGGACTTGCTGTTGTCCGTGAACAATTGCAAGACCCCAAACAGAACCGTCAGCATGGCCGTGTAGAAGAGGGCCCCGTCCAGGGCTACCAGCTTGTCCGACACCCTTTCCGGCTTAACGACCGGGTGCAGGATCTGGCTGGCCTTCATCTTAGGCGCGGCGCCAAACAAAACGTTGGCCGGCTGCCCCTTGATCTGGGCGTCGTAGATTTCCGGCAAAAGGCCGTCGATCTGGGCGTCAGCGTCGCCTTCGCTCATGCCGCCGGCAACCAGTTCCTTCTTCAAGCGGTAGATGTAGTCCTTGTTCTTGTTGGACAATTTCCCCCGGAGTTCTTCCGGGTTCTCCTGCTTGATGCTTTCCGTCTTGGCTTCTGCCTGCCCCTGCTTTTGCAGCTCGGCTTGAGAATCGTTCTTAACTTGCTTTTCTTCGCTCACTTCTGTCTCCTGCCTTATACGTTAAATCTGAATTCGATGATGTCGCCGTCCTGGACTTCGTATTCCTTGCCTTCCAGGCGGACTCTGCCGGCTTCCTTGATCTTCTGCATGCTTTCGTACTTGTCCAGGTCTTCGAAGGAAACGACTTCGGCCCGGATGAAGCCCCGTTCAAAGTCGGAGTGGATGACACCAGCGACTTGCGGCGCCTTCATGCCCTGGTGGAAGGTCCAGGCCCGGGTTTCCTTGCCCCCGGCTGTAAAGAAGGTTCTGAGGCCCAGCAGGTGGTAGGCAGCCCGGATCAAGCGGTCCAAACCGGATTCTTCAACCCCTTCAGCCGCCAGCATTTCTTCCTTTTCTTCATCGTCCAGGCCGGCAATTTCTTCTTCGATAGCCGCGGAGATGCCCAGGCAGCCAGCCCCTTCCTTGTCGGCGTGGGCCTTGACGATTTGGTAGTACTTGTCGCTTTCCGGATCAGCCATGGATTCTTCCGCGATGTTGGCCACGTAGATGACCGGCTTGGAAGTCAGGAGGAAGAGACCCTTGACGATCTTGGCTTCGTCATCAGTGAACTTGATGGACCGGACCGGGTCGCCGGCTTCCAGAACTGGCTTGATCTTTTGCAGGACATTGTATTCAGCCATGGCTTCCTTGTCCTTTTGCTGGGCCATCTTCTGCACCTTGCCGATCCGGCGGTCAACTGAGTCCAGGTCAGCGTAGATCAGTTCCAGGTTGATGGTGTCGATGTCTTCTTCCGGGTCAACCTTGCCGGAGACGGAAGTGATGTTTTCATCGTCAAAAGCCCGGACCACGTGCACGATAGCGTCGGTCTGGCGGATGTTTTCCAGGAACTTGTTGCCCAGGCCTTCACCCTTGGAAGCCCCCTTGACCAAACCGGCAATGTCGGTGAATTCAAAAGTCGTGTGGACAACCTTCTTGGCCGGGATCAGTTCCTGGATTCTGGCCAGGCGCTTGTCCGGCACTTCAACCATCCCCACGTTCGGTTCAATGGTCGCGAATGGGTAGTTAGCCATTTCCGCGCCCGCCTTGGTAATTGCGTTAAAAAGAGTTGACTTGCCGACGTTTGGCAAACCGACGATACCAGCAGTTAAAGCCATATTTTGTAATTCCTCTTTCTTGTTTTTTCTTGCTTGCGTGTTTAATTCTTGGCCTTTTGGCCAGATTAGTCAATGCCTAGCCGAAATTTGGCCGGGCGATGTCTTCCTTGGCCACGTAAAAATCGTTTTTCAAGTTGACGGGATCATTGCTCTTGGCCAGGAGCTTCTTGACCTTCTTGTTGAAATCAGCCCGCGGCATCATGATCACGTGCCCGCAGCCCATGCATTTCAAGCGGATGTCGGCGCCCAGGCGCAGGACCTCCCAGTTGTTGGTCTGGCAAGCGTGGGGCTTCTTCATTTCAACCGTGTCCGCCAAGTCAAAAGTAATGTTTTTAGTCATCGAGATTCACACCTAACAAATCCAGAATCCGGTTCAGTTCATCCGGGGAAGCAAAGTCAATTGACAAGTGCCCCTTCCCCGTCTTGTTTTCCGTAATGCTTACCGGCGAGCCGAACTTGGCGGCCAGCTGGCTTTCGCTGGCCCGCACGAAGGCTGATTTGCCGGCATTATTTTTCTTCTTCTGCCCGCGCTCGTTCATCTTGGCGACCAGCGCCTCGACCTTGCGGACCGGCATCCCTTCCTTAACCACCCGCTTGGCCAGTTCATCGATCCTGTCCTTGTCCTTTAAGCCCAGAAGGGTTCTGGCCTGGCCCATGGACAATTCCCCTCTTTGCAAAAGGCCCTTGGTCTTCTGCGGCAGGGTGAGCAGGCGGAGGTAGTTGGTGATGTAAGGGCGGGACTTGCCCATCTTCTTGGAAACCTCTTCCTGGGTCAAGCCCAGGTTCTTTTGCAGCATTTCATAAGCCTGGGCTTCTTCCAAAGGAGTCAGGTCTTCCCGCTGCAGGTTTTCCAAGATGGCCACTTCCATCATCTGGCTTTCATCAAACTGGCGGATGATGGCCGGGATGGTGGCCTGGCCGGCTAATTCGGAAGCCCGGCATCGGCGCTCACCGGCGATGATCTCGTAGCCGCCGACTGACCGGCGGACGATGATCGGTTGCAGGACCCCGTTTTCCTTGATGGATTCAGCCAGTTCGGCCAGCTTCTTTTCATCAAAATTCTTCCGCGGCTGGTAAGGGTTGGGCCGGACTTCTGCCAAAGGCAGGTCTTCGATTTCTTCGGCCGGCTTTACCTGGGGTTCTTCTTCAAAAAGCGCCCCCAAGCCCCGACCCAGGCCGCCCTTCTTCTTTTCCTGTTTCTTATTTCTTGAGTCTCTTGCCATGAGCCTTCAGCACCTCTTTTGCTAAGTCATCATAAACCTTGGCCCCGCGCGAACTTGGCGCGTATTCCGTGATTGCCTCCCCGTAGCTTGGCGCTTCAGCCAGCTTGGTGATCCGCGGGATGATCGTCTTGTAGACCCGGTCGCCGAAATATTCCTTGACCTGCTGGACCACGTCGGCCCCCAGGTTGGTCCGGGCATCCAGCATGGTCAGCAAGACCCCCTCCACGCCCAGGTCCTTGTTAAAGTGCTTCTGGACTAAGCGGATGGTGTTGAGCAGCTGGCTCAATCCTTCCATAGCGTAGTATTCGCTTTGGACCGGAATCAAAATCGACTGGCTGGCCGTAAAGGCATTGATGGACAACTGCCCCAAAGAAGGAGGACAGTCGATAAAGACGAAGTCGTACTTGTCGCCCAAGTCTTCAATGGCCCCCTTCAAGCGGGTTTCCCGGGCCATCATGCTGATCAGCTCGGTTTCCGCCCCGGCCAGATTGATCGTGGCCGGCACGATGTCCAGCTTCTTGCTGCTAGTCGGCTTGATGGCTGAGGCGATCGGGATTTCATCGATCAGAACATTGTAGATATCATACTCGATGGTCGACTTCTCAATCCCCAAGCCTGAGGTGGCATTGCCCTGCGGGTCAATGTCGACAATCAATACCTTGTAGCCTCTTTTAGCAATGGAAGCGGCCAAATTGATGGTCGTCGTGGTTTTGCCAACGCCGCCCTTCTGGTTGGCGACTGCGATGACGCTGCCCATGCTAGTCCTCCTTCTTCTTTCTCTGATTCTTCATCACGATAGTAATCTGGTACTCATCCGGGCTCTTCGCCTCGGTAACCTTGACTTTCACGCCGGACTCCTTGGCCAGTTTAACCGCCTGCTTGATCGTGTTGATCTGCAGCTGCATGTCCCGGCCATAGCGGACCACCGCCTTCTTCTTAACGGCTGGCTTAGGATTGGCCAGCTTGGCCGCCCGCTCTTCCGTCTCTTTCACGCTGAGACCTTTTTCGACAATCTCTTCAGCCAATTTAACCTGGTCCTCTTCGCTTAAGCCCAAAATGGCCCGGCCATGGCGGGCGCTGAGCCCGCCTTTAGCCAGATACTCTTGCACAGGTTCAGCCAGCTTGAGCAGGCGGAGCTTGTTAGCCACGTAGGACTGGGACTTGCCGATATCCTGGGCCAGCTGGGTCTGGGTCAAGTCGTTGAGCTGCATCAGCTGCTCATAAGCCTGGGCCTCATCGATCGGATTCAGGTTTTCCCTTTGCAGGTTTTCGATTAAGGCCAAAGAAGCGGTCTGCTGGTCATCGAGATTGTTCACGATAGCCGGAATCTTTTCCCAGCCCAGGCTCTTGGCCGCCCGGAAGCGGCGCTCGCCGGCAATGATTTCGTAGCCGCCCTGGTCCTGGCGGACGATGATCGGCTGCAAGAGCCCTTCTTCTTGCAAGGTCTGGGCGAGTTGCTGGATGGAATCATCGCTAAAAGTCCTTCTTGGCTGGTAGCGGTTCGGATGGATTTCCGCTAAAGGCAGGTCCTGGACCTGCTTGTTTTGGGGAATTTCATTTCGATGAAAAAAACCAAAAGCCATTTGGGCACCTCCAAAAAACTACAAGGGTTTGCGGTTTGGCGTGCCTGCCTGGCGCGGGTACTTGCCCGGAGTTGCCTCGACCTTGTCAACCAGGACAAGGGTCCGCACTTCAGTGCTGCCTGGCAGGGTGATGACCCGGGTGAAGACAACTTCGCCGCCCAATTTCTCCAGGGCACTCTTGGCGTCTTCCAATTCTTCGTCAGCCCGCGGCCCCTTTAAAGCCAGGAACTTGCCGCCGACTTTGGCCAGGGGCAGGCAGTATTCGCTCAAAACGCTCATTCTTGCCACGGCCCGGGCAGTTACCAGGTCAAACTTCTCCCGGTAGTCCGGGTTTTGCCCCACATCTTCAGCCCGGCCGTGCACCAGGTTCACGCCTTCGATGCCAAGCTTCTCCAGCAAGTCAGACAAGAAGTTCAGCCGCTTGCCTAAAGAGTCAACGATGGTGACTTCCAGGTCCGGGCGGAGGATCTTGATCGGCAGTGACGGAAAGCCGGCTCCGGCCCCGACATCGCAGAGCTTGGCTCCTTCTGCAAAGACCTCTGGCCAGAGCAGGAGCGGAGTCACGCTGTCGTAGAAGTGCTTGAGGTAGACCTCGTCTTCGTCCGTGATCCGGGTAAGGTTGACGTGTTCATTGACCCGGACCAATTCCTTAAAATATGTTTTAAATTGTTGCTCTTGGACAGGAGACAACTTAAAATTATATTTTGACAATGTTTCTGCAAAAAGTTCAGGATTCATTCTTTCACCTGTGAAACCGTGTTTCACACCCTTAAATGTAACGCAAAAAGCAATCTTGCGCAAAAAAATGTTACACAAACTATCTTAACAATTATGGATTATTTTTGCTTGAAGGTCAAAAAGAATCCATGGAAAATTACAGCTAAAAACAAAGGATATAAAGATGCTCTTAGTTATTTTCGTCATTCTCTACATCGCCTGGCAGACCTACAAAGGCTACCATGTGGGTTTCTTTAAGCGGATCGTCAATTTGATCTTCGCCGGTCTGGTCTTCATGCTGGCCATCATGCTGCAGAATCCGGTCGGCAACCTGATCTACACCCAGTTCATCCAGGGGCAGGCGGGCGACTCCAGCCTGGTCCTGCATGCCTGCCGCTTCGGGGCCTTCTTCGCCCTCTTCTTCATCCTCAAGCAGATAGCCAAGATCTTCAAGGCCTGGCTGCCCGCCCAGGAGACCAAGACTGGTTTCACGGCCACTTTGGACCACATGGCCGGGGCCATCGTTTCTTTCGTGGCCTCCTACTTCTTCATGTACGTGGTCTTGTCCATCCTCAACTCAGTCGGCGTCAGCCAGCTGAGCCAGCTGATCAGCGATTCACAGCTGCTCAGTTTCATCGTCAACGACACGCCAGGTCTGTCGACCGGGGTCTTCAAGACTCTCTTCAGCGTCAGCCGGACCACGGCCTAAGGAAAAAGCAGCTTCACAAGAAGGTGAGGCTGCTTTTGCTTTACTTTAGTAATCCAGGCCGACTTTTTCCACCCGTTCATCGTTATACACGTAAATGGCGCCTAAGCGGCAGTCATTGACCCAGTTGGCAATTGGCTGGCCGGCAAAGAAGCAGCGCTTGCACTCGATTTCCGCGTCAACGGAATTCTTGGTGAAGGTCGTCACCCCGGCGATGTTGGTTTCCACCGGGTAGCCGGTCCGGGAGTCGATCAAGTGGTGGTACTTGTGCCCGTCCACTTCCAAAAAGCGCTCGTAAGTCCCGCTGGTGACCACGGAGCATTCCGGGATCATCATGGCCGTGATGTTTTCTCCCCGCGGCTTCAAAGGATCCTGGACGCCTACCGTCCACATCCCGTTGGCCCGCTTCGGGCAAGGGTTGACGAAGAGGACATTGCCGCCCAAGTTGATGATGCCGGCTTCGACCCCGTAGGCCCGCCAGAGGTCCCTGATCCGGTCGGCCGTCCAGCCCTTGGCGATCCCGCCCAGATCCAGCTCCATGCCTTCCTGCTTCAAAAAGACCGTGTGGTCATCGTCATTTAATTCGACCATCCAGGGATCGATCAGCTTCATTTTCTCCTGGATTTCCGCGTCACTTGGCACGCGGGCATCCTGAAAGCCGATGGACCAGAGCTTAACCAGGGGGCCGATTAAGGCGTTGAAGCCGAAGTTTTCCCGGCTGGTCTCAACGGCCAGCTTGATCAAGCCGTAAACGCTGCTAGAGACTTGCACGGCCTCCTTGCCCGCCTGGTCGTTGACCCGGGTTACTTCGGACAGGCCGTAGCGGGGGTGGTCCGGCTTGCGGTTGACCGTCAGCAGGTCTTCAAAGTGGTCGATTAGGACCTTGGTCTGGTCCAGGATCTTTTCCGGGTCTTCCCTTGCCCCGTAGATCTGCAGGCTGATGTGGGTCCCCATGGCCTTGTGCTGGGCCAAGACTTGGTCAGTTGATATGTATTTGATGATTCCCATTTTTAAAATCCTTACTCTTCTAGATACTTGGCCCGGAGCTGGTCACGAAGGACGGGCGTTACGCCCAATTGCCGGGTCAAAAAGGCTTCCATGCCGCCATATTCCTGGTCGATGGTGATCAAGGCGCTGTCTAAGTACTCATTGTTGACCGTGCCCAGAGACCTAAGGTTGGCCCGCTGCACCAGGCTTTCCCCGTTTTCCCGGGCTTCCTTGTCCCTTTTGGCCCGGTAGCCGTTAAGGTAGGGAGCGGATAAAAGATAGTCCTGGCGGATGGTTTCCGGGTCAACCCCCAAAACTGTCAGCAAAAAGACAGTCACCAGGCCCGTCCTGTCCTTGCCTTCCGAGCAATGATAAATAGTTCCGCCTTCAGTTTCAGCCAGATAGGCTAAAACCTGGCCAAAAGCCGCCTGGGCGTGCTCTTCCGTCACCATCAGCCGGTAGCTCTCCACCATATGGCGGAAGCCCGCCAGGGGGTCTAGGCCGTACTGCCTGGCTAATTCCGCAAGGCTGGCTTCGGCCTTGGTCTGGTCCCGGCTGTTAACGGGGATATTGACGTTCTGGATCCCGGCTAGCTTTTTATCCGGCCGCTTGCGGCATTCTTGCGGAGAACGGAGGTCGATGATGGTTTTCACCCCGCGAGCCCGCAAATAATTGCCATCTTCTTCACTGATCGCTGCGACCGTCCCGGTCCGTAGCAAAAGTCCGGCCTTGATCTTCCTGCCGGAAAAGCCGGTATAGCCGCCAAGATCCCGGGGATTGCGGACTGTTTTCAAGGGTAAAAGCTCCTCTGCCATCTTTTCTCCTCCTTCACTTCTCCCTACAATTTTAAAACAAAACAAGGCGGAAGCGCCAAGCTATCCGCCTTATTTTGCAGTTTTTCTTTTTTAAAACAAAACAAGGCGGAAGCGCCAAGCTATCCGCCTTATTTTTCAGTTTTTCTTTTACATTACTTCTTGGCTTGGGCAACGAAAGCAAAGAAGGCTTCCATAACCTTGTCCAGCTGAGCGATTGAAGCTTCGTCAACCAGGTCGCCGCTTTCCTTGTCAAAGCTGCTGTAAGCCTGGCCGATCAGCAATTCGTTGCCTGGCAAAACGTTGGCCGTCATGTCCGGAGACAGCAGGATTTCCCGGGCATCTTCCTGGGCGCGGGAAGAGCCTTGGACGCCCAAGGACACGCCTACAACGCAGACTGGCTTGTAGGCCATAACCTTGCTGCCAGCGTGGCTGCCCAGCCATTCCAAAGCGCTCTTCAAAGCAGCTGGAATAGCGTGGTCGTATTCTGGAGTAGCGATGATCAAGCCGTCAGCCTGGTCAACCTTTTCCCGCCATGCCGCAACACGGGCATCAGCTTGCCCTTCCTTGTAGAAGGCTGGCAGGTCGCCAATTTCAGCGACTTCGATTTCCGCCTTATCGCCAAAGCGCTTGGCGATGAACTGGCAGAGCAGACGGTTGAAAGAAAAATCGGCATTAGTTCCGACAATAGCTAATAATTTCATTTGGCAATCCCCCCACTTACTTCGTGATTTGTGCGTACCAGGCGTCGACTTCGTCAAAGAAGTGTTCCAAGAAGTCAACGGTACCGGGAATCTTCAAATCGCCGTTTTCGTCAAAGGCAGTAGCTGCCCCGCCCATCATGAATTCATCGTCGTTGAAGACAACCGGGTGCAGGCCTGGGGAAGCCAAAATCGTCTTCAGCTTGGTCTGTGACCGGGCACCCCCTTGGGCCAGCGGTGAAGTTGACACGATAACGACTGGCTTGCCGTTGAAGGGGTGAGTGTTGGTTGACAGCCATTCCAGGGCGCTCTTCAAAGCGCTGGTTACTGAGTGCTGTTGTTCCGATGACCCGATCAAAGCCAGGTCAGCAGCGGCAACTTGGTCACTCAATTTGGCCACGTCAGCCGGGTCTTCCTGGCCTTCCTTAAACATCGGCAACCCCTTCACGGTCGCGAATTCAAAATCATACTTATCAGCGAAGTGCTTGGCAATGAACTTCAGCAGCATTTCGTTGTAAGACTTGTCAGCGTTAGATCCGTTAAGAGCTAAAACTTTCATAAAAACCACCTTTCAGATTTTCCATTACTTCCCTAGTTATACCCAAATTAAAGGGGTTTCAGCAAGGCTTTTGTGAAAAAATTACAAGGATAAAATGACCGATTGATAGTTTGATTTTTTAAATGGATCAGCGGTCAAAAAGGCTTTCCAGCTGCCGTTTGATGATCCGGACGAAGTTGTCCTGGTCATAGTCAATCAGGCCATCGACCAGCATTACGGCCAGGCCGTTGACGATAATCCAGTTGAGGGCGATGAGCCACTTCTCCAGTTCCGGGTCAAGGTCGCGCTGGTACTGTTCGCGGAGCTTGGTGTGGCCCAGGTCCATCAAGGTATCGCGGATTAAGTCGTCACCAAATTCCCCATTGACGAAAATCGTTGAGAACAGGCTCCGGTGGTCGCGGGCAAATTGCAGGTAGGAGAGGTCAACATCGTATAAGGGCTCGCCAATAAATTTCTTCTGCAGGATTTCATCGCGCAAGGTGCGGGAGACGCGCTTAAGCACTTCCTTGCGCAGGCCATCCATGTTCTTGAATTCCAAATAGATCGGTTGAGTTGAAAAGTGGCCAGTCTGGGCAATGCTGCGGGCAGTCAAGTTCTCGATCCCGTCGGTCAAGGCCTTCTTGTAGGCGATGTCCAATATTCGCTCGCGATCAATTTCTTTCCTTCTGGCCATCATCTGCTCCACTTAATTTCATCATATTCTGAAAACACTTTAATATTTCATTCCTAACCAGAACAAGCTTTTCAAGCTGATTCTATTAGCTTAGACTAATGGATCATCGGCAATCAGCCTATAAAAAACGCTTATTCGCACTAATTATATATTAGCACAATATCTAACCAGCGGCGTATTTTTAGTAAAAAGTTAAGCAGATAAACCCCGTCCCTGCGGGCGGAGGCAAAACAAGGTAAAATCTAAACAAGAGCAAAAGGAGAAAAGAGGACAAATTATGACAACACACGGACGTTCATCCTGCACTTCAATCTTGATCGGGAAAAAGGCTAGCCTTGACGGCAGCGTGATTATTGGCCGCAATGAAGACTCACGGACGGCCTGGCCCAAGCACCTGGCCTTCCACCAGCGGCAAGCAGGAGCCAAGACTTTCAAGTCACATGATAACAAGTTCACAATTGATTTGCCAGAGGAGGCCTTTGCATATTCATCCACTCCAGAATGGACGAAAAAGTACGGGCTTTTTGAAGAAGACGGGATCAATGAGCACCATGTGGCAATGAGTGCTACGGAAAGTGCTTATGCCAACGAGCGGGTTCTGGCCATCGACCCCTTTGACGCTGAAAAGGGCCTGCTGGAAGAAGCCATGGTGACTATTGTTTTGCCTTACGTCAAGACGGCCCAAGAAGGGGTCAAGCGCTTGGGCGAAATCGTGGAAAAGTACGGGGCGGCTGAATCAAACGGGATTCTGTTTGCGGACAGAGACGAGGCCTGGTACTTGGAAATCGGGTCCGGCCACCACTGGGTTGCCCAGAGAATCCCGGACGACTCCTACACGGTGGTTGCCAACCAGCTGTCAATTCAGGAGATCGACTTTAAGGATCCGGCCAACTTCCTTTATTCAGCCGGACTGCAAGAATTCGTTTATGAGCACCAGCTTTGGCCAAAGGAAGCCAAGTTCAACTGGCGGGAAATTTTTGGCACGAGAAGCGAGAGCGACCTGCATTACAACACCCCGCGGGTTTGGTACGGGCAAAAGCTGTTGACCCCGTCAGTCAAGCAAGAGCCGCAGTCTTTTGACCTGCCCTTTATTCAAAAGGCAGACCGGCCGCTCAGCATCCAGGACGCCCAGACGGTCCTGGCCAGCCACTACAGCAACACGGAATACGACTTGACCAACCCGAAGAACGCGGGCCAGGCAACTTTCCGGCCGATTGGGGTGGCGACGACCCAGGAATCCCACCTCTTGCAGCTTAAGGGCGAGGACATGTACCACTGGCTAGCCATGGGGGTTACGGCCCAGAGTGTCTACATTCCCTTCTTCCCGCAGGGGACCAAGGTGCCTTACATGTGGGGCAATGGCAAGGTCGACTACAGCCCGAACTCTGCCTACTGGATCTTCAAGCTGGCCGGGGTTCTGGTTGACCGGAACTGGGGCAAGTACGGCAAGGAACTGGCCAACGCCCAGACGGAAGCCAAGGAAAAGGTCCTGCGCCTCCGCTATGAATACGACCAGAAGCTGCATGCTGACCCAAGCCAGGCCACGGCGATCGCGGATGAGGCCAATGCCAAGATGGCCAAGACGGTGACGGACATCTACAACAAGCTGATCAGCAACTTGATTACCCAGCAGACGGGCGATTCCCCGCTCAGCTTCCAGATGGACCCGAACTTGTAAAAAAGCATATTAAAAAAGGCGTGAAAGTGCACCATTGCTGCTTTCGCGCCTGTTTTGCTGTTCCTTATACCCAACAGTCTCCCTTCGATTGTTGATTGTTTTGCCTGGCCTGCCCTCTTATACTAAAAACATCTCTACTGATACAAACAAGTTGAGTAAACGAAAGTAGTCCACACATGGCTAAATCCAAACTGATCAAGGCAAATGAAAAAATCACGGAAAAAGTAACCGGGGCTTTTGGCAAGGTCCAAGATTCCGTAGTTGGCGGCTATAGTAAAATCGAAGACAAGTTTGTCGACCAATATCTCACCAAAGACGGTGAGAGCATCGCCGATGCCAAGGCCCGCTTGAAACAAGAACAAGCTGACCGTAAGGCAAAGCAAGACCTGCACAAGCAATAAATAAAACAGGCGTGAACCCGCATCCCTGCAGCGTTCACGCCTTTTTCTTCATCTAAATTAATGGTAGCTGATCGTCTGGACCGCTCTTTTGGCATTGATCTCCCTAAAGAAGACCGGTGCCGAGACCCCTTTGAGGATCTGGTCGTTGGTATAAGTCACGATCACCGTATCGTCGTAGCCGAGCCCGCGGAGCAACTTACGGTTCATGGTCGCCAATAGCTGCCCCTTTTTAACTTCCTGACCGGCTTCAACTAAAATGTCGCAGCCGACCCCGCCTAGCTCTACCGTATTCAAACCCAGGTGGATCAAGAGATCCAGTCCTTCCTTGGTCCGGATGCCAATCTCATGGTTGGTCGGAAACAAGGAAGTAACCGTGCCGTTCAATGGAGCGTAGATCAAGTCGCTGGACGGCTGAACCGCGAAGCCCTCGCCCAGTCCCTTGCTAGCAAAAATCTCATCGTTGACGTCCTCGAGCGGGAACAACCTGCCCTGGACCGGAGCCAGAACCTTGCTCAGCCGGGCCCTACTCTTTAGCAAATCAAAAATTCTAAACATAAATCAACCTCAAAATGATATTCAGACTAAAATATGTAAGCGGAATCATCACTGTCTAGTTTATCATTTTGATGGTAGTTTTGCTATATGTTCCCGCTAACAATTGTCATTTTCCTAACGGAGCAGCCGTTTTGTCGCCGTTTCAACCTTCCAATTATATTCGTCAACCAATTTGTCCATCTCATGCCGGAACCTCCGTGAAAAGCTTAGAATCTCACCGTTCAGCATGACAATAGTCCGTTTGCGCAAGTTGATCGCCGCTACATTTTTTGGGTTTATCAGACAAGACTGGGATATCTTAGCCAAAAAATCATTTTCTTCATCAACTCTTCCCGCTTCATCCTTGTAGCGCTTTTGCGCAGGGCGAATCAGATAGCCATAAATAAGCTTGGCCGTGGTTGACATGTCTTGGTACTTTTCATCAGTGAACAGCTTGCCATTTAGGACAATGCTGGTATTCCAGAGGTCTAGTCGGGCTGGGCCATCGTCCTAACAGTAGAATAGGGGATTCCTGTTTCTTTAGCAATGCCTTGCCAACTTAATTTGGACTGCAAGATCTTTTGTTAGTCCAAGCTGGTGCTGCTTAGACCGTTCAGTGTCTTCGTATCGTTTGCATCAAGCAGCTACATCAAGCTGCTGCAAAGCCTTGCCAATCATCCGGCCGTATGGTGATACAAGCTGGAAACATGTCGACAGTTCATTCAGCCCAAGCCGGAGATGGCCAAAAAGCTCCTAAACACTAACCCCCTGGTTGATTTTCATCTAACCAGGGGGTTTTCTTGTCAGTTATTTAGTTTAGATTTTTTGCTTAACTTCTTGCACGTGGACAACCAGGACCTTCCGCAACCAAGGCAGATCGGCTTTCATGAGGTCAAAGTACTCTCCGGCTTCAACGAATTCGCCAGTAGCATAAACGTGGTAGCCACGGCCTGGACCTTCAGTGCCTTCAAACTTCATGGAGCCGAAGGTCAGGATCAGCTGGCTGTTTTGAGCCGCAATATCTGCTTCAATCGACCGCATCCCAGCAGCAGGCACGAGGAAGGTTGAGTCATCAACCACCTTGATGTAGCTGCTCCAGGTGTTGACCACATGAGCTGGACTGGCTTGGTAGGAAACGATCGTTACTGGTTGCGGATCGCTGATTACCTCCAAAAAGTTTTGGGTTAAAGTAGTGCTTTCTTCTAACATATTTAAATTCTCCTTTTCTTCTTGTTGTAGATATCATAAAATGAAAAGGTGACAATTTACGGCACCTTTTAGCAAAAATAAGGAGAAAAAATTGAAAAAATCTGAGCGGCTTAATCAAGAGCTGATTTTTTTAAGTGACAAGAAGCGCTTTAACCTGCAGGACCTGATGGACAACTTTCAGATTTCCAAGCGGACGGCCCTAAGGGACATTGCCAGCCTGGAGGAACTTGGCTTGGCCTTATACGCCGAAGCAGGCCGGGCTGGCGGCTATTCACTGATTCAAGAGGACCTTCTGACCAAGATATACTTCAATTCGGATGAGGTTGCCGCGATATTTTTCGCGCTCAAAGCCATGGAGCAGCTAAAAGAAACCCCGTTTAACGAATCTTTCCAGATGATCAGCCAAAAGCTGCTCAAGAACCTGGCAGCGAGCCGGCAGCAGCAGGTCTTAGCCTCACAAGCAGCGGTTTCCTTCTTCAACACCCCGGCAGTTCACCACAACCCTTACTTGCGCCTGCTGATGGAGTCAATCCTGCACGACTCCCTGGTCCGGGCCAACTTCAAGGGCCAGCAAGTCCTGTTGCAACCCTGCCAACTCTTTTTTAGGGATGGCAACTGGTTGTTTGCGGCCTATGACTTGCTGGGCCAGGCCTTTTGGAACTACCGCTGCGACCAATTGCAGGATTGTACTGAGCAGGCTGCCGTTCCTAATAAACTTAGTTTGGCTGAATTGAAGCAAAAGCAGCTAGAGTTTGAGCACGACAATTCAGGCCAGAAATTTAAAATTCTCCTCAACCACCGGGGCCAGGAACATTTTTTGAAAAATCTCTACCCAAATATGCAGCTTGAGCATGAAGGCGGGACTACTTATTTGACCGGTTCATATACGCCACGCACCTTTGAGTACTTAATTGACTATCTCTTGACTTTTGGACTGAATGCGAAAATCATCACGCCAGAAGAGCTAAGAAGGAGCTTTAAAGAGCGGCTGGCTGCCATACTTGACCAATACAGCTAAAAAGCCCCTAATTGGACTATATTCCAATCCAATGTCATTAAGTTAAGGGATTGACATCAAGAAAGAACCGTATTATCCAAAATTTGGGTAGTACGGTTCTTTTGACTTTTGTAGAATTCGGAATAAAAATAAACGTGGAAGTGTCATTAGCACTCCCACGTTTATTTTTCCATCCCTAACGACCTCACATTTCTCACTCATTTTCTTATTTAATCATACCCTTTTTCCATATTTTTCCGCCAAAAATTCAGATCCGGTCATTTTTCCGCGTATCCGGTCAAAAAAGGCCCCGCCTGAGCGGAGCCTTCTTCTGTTATTTTCTTTGTGTCAACTGCCCGTCCATCATGTCATAGATGTGGTCAGCGTATTTTTCCAGCCGCGGGTCGTGGGTGACCAAAATGATCGCCTTCCCGTCATCCTTGGCCAGCTTCTTAAACAAGCGGCCGACTTCTTCCACCCGTTCACTGTCCAGTGATGCCGTTGGCTCATCAGCCAGTAAAATCTTCGGGTTGGCGTACATGGCCCGGGCGATTGCCACCCGCTGCTTCTGCCCGCCTGACAAGTTCTCCGGATACTTCTTGACCAGGTTCTCAATCCCCAGGTCAGCCAAAAGATCCTTTAATTCTTCCTGGCGCAAGTTGCCGGTCTTCTTCACCTTGTCCACCAGCTGGAACTGCTCCTTAACCGTCAAGTAAGGCACCAGGTTGTAGGCCTGCAAAATAAAGCCCAATTTGTTCAAACGCAGGCGGCTGCGGTCCTTTTCCTTCAACCGGCTGATGTCCTGGCCGTCGATTTCCACCTTCCCGCTCGTCGCGGTCTGCAAGGCACCCATAATCGTCAGCAGGGTGCTCTTCCCGGCCCCGCTTGGTCCCATCAACAGAACCACGTTGCCAGTATCCGCGCTGAAGTCGACCCCCTTGAGGGCAACCGTCGCTGCATCCCCCTGCCCGTAAACTTTTTTCACGTTCTTAATTTCAATCGCTGCCATCTTAGCCTCCAATTGCCTGTACCGGGTCAATCTTCAAAATCGTTCTAACTGGGTTAAGCCCGCCCAGCAGAGCCATTACCAACATCCCGCCGATCGTTGCCAGGAAAATCCCTGGCGTAAAGGCCATCGGAACAGATGCCGGTATCGCGGCCGCCGTGCCCCAGATTGCCAAAAGAGCCAGGACCAAAGCACTCGTTACCAAAAGCAGACTCTGGCTAACCGTGGCCCAGATCAAAGTCTTGGCCGGCACGCCCTGTGCCCGCAGAACCGCGTAGTTCGGCAGCTTCTGGATAGTCAAAATGTACAGGAAGACTGCCACGATGGCCAGGGAAATGATGAACATGAAAGCAATCATCAATTCAAAAGTCAGGTTCTGTTCAGAGTGGCCCGGCAGTTTTTGCGTAAATCCCTTAATCCCGTAAGTCTTGAAGTTCTTCCCCTTAACAGACAGCTTCCGCTGGGAAATGATCCCGGAAGCTTCAATCCCCGGTGCCACGTTCTTTAATTCCTTCCATGCCGGCAAAAAGCCACACATGATCGGTTCAATATTAATCTTGGCATCCCTGACGAAGCCGACGATCGTGTACTTGTGGTCTGACCCGTTCAAGGTTACCTTGTCGCCCAGCTTGTAGCCCTTGTCCTTAAAGCTGCTGTCAGCCGTGACTTCGTACTTGCTCTTAGCGCGTCGGCCAGCAATTACATCCTGGTCCTTGTAGATAAATTCGCCCTTCTTAACCCCCATGTACTGGGCGTTAATCCCGGTCTTGCCCTTTTTCTTGGCCACTACCTGCAGTTCGCCGACCACGGCTTCCTTGTCAGTCAAGTCGATCTTCTTCAAGTCGTCCTTGGTCAAAATCGAACTGTTCATAAACAGGTTGGCGTTCTTGTTCAAGACCACGCTCTTGGTCTGCCAGCCTTCCAAAGCCACCGTGTTTTCCCGGGCCAGGCCGTATGCCAGGCCCCAGGTTGCCAAAATCATGTACGCGATCAGAAAAATCATGAAGACGATCAAGCCGTACCGCATCTTTTCATGCTTGATCTCTTTTAGTGCTAAAAACATTCTTTCTGCTTTCTTCCTTTCTTATGTCTTTTCCCAGCTTGCCTATTTATGTTGGCTAAAGAGCTTCTCTAAAGCCTCATGCTCCCGGTCTAAGTAAAAATCTGCCTTGTCCGGGTCCAGCAAGGCTTCCTTGATCGCCTCGTGTGACAAGACCATGGCCGCCCAGGCACAGGCCGGCATCTGCTTGGGCTTGTTGCTTGGCAAAAGCGCCTCGTTAGCCGCGTAGTGCAGGCGGATCAAGTCATAGTACTGGCTGCCAGTAGCCTTGGTCACAAAGTCCTTGGTCATCTGATAGAGCTCGTCTGCCCCCATCCGGCCGGTCAGGCCCGTGTGCAGGTCCCGCATGGCCAGCTTGAACAGGTACTGGTAAGCATCCGTCAAATCCTCAAAGTACTTGTAAAAGGCCCCCCGGGCAATCCCGGCTTCCTTAACGATCCGCACCACCTGGGCGCTGGCCAAAGTATGGGCGCTGAATTCCTTGAGAAGGGCCTCTGTTACCCGGTCCTGCTTGTCTTTACTTAAATTCTCAAAAGTTGCCTTGACCATTTTTCACCTCCGTGACACCGTGTCACCCTCAACTGTTTTCCAGTATGTGCCTGAAGTGACACCGTGTCAACACAAAAGGTGACGCAGTGTCACTTTTCCTGCACAAAAAAGGGCTGCCGGAGCAGCCCTTCCCTGTGATAATTAATTTGTGAAGCTTAAAAATTAAAATGTTGTTTTGTTGTTTTTATGTACTTACTGTTAGGTACTTGTTCTTTTCGGTTTTTGGTTAATTCTTGATTTGCTTAGTTGATTAGTTCTTGATTATTTTTGCTTCGGATTTTTGAAGCTTGCCGCGCGGAGGAAGCCGTGATTTAGTCTAACGGGAAGATCTTGTCTGGGTTAAGGATGCCCTTAGGATCGAAGAGGCCCTTGACCTTTCTGAGCAAGTCGGTGTAATCCTTGCCGTAGAAGTCTTCGTAGTAGTTCTGGCGGGCGTAGCCAACCCCGTGTGTTCACCGGACATGTTGCCGCCCACTGACTTGGCGGTCTTGTAGAGTTCAGAGATAGCGTTGTCGCCCTTCTTGGCGAATTCTTCGTCAGTCATGTCGTCTGAGCAAAGGTAGATGTGCAGGTTACCGTCGCCGGCGTGGCCGAAGTTAGGAATCCGCATGTCTTCTTCCTTTTCCAGTTCTTCGATCCGGTGCAGAACCAACGGAATCTTGTTGATCGGCACGGAAACGTCGACTTCGTCCATCTTAGGAGTTGACTTTTGGATGGCCAAAAGCAGCTTTTCACGGGCGTCCCAGATGGTCTTGGCTTCGTCTGATTCAGCGTTCAAGACAGTTTCCTTCAAAGCGTGGAATGGCTTGACTGCTTCCAAAGCTTGAGCCAATTGGGCTTCAGCGTCGCTGGCCGTGAAGGAGTCGATGCCCAGGATGATGAAGCCGTCGCCTTTCTTGATTGGGAAAGTAGCGTCGTAGTACTTTTCCCACAGGTTCAAGACCTTGCGGCCCATATATTCAACAGTGGTTGGCACAACGCCGGAAGCCAGGATAGCTGGCACTGATTCGATGGCATCGTCCAGAGTTGGGAAAGGAATGATGGCGTTCAAAGCGTGCTTTGGTCTTGGGTAAAGACGGAGAACAGCTTCAGTGATGACGCCCAAAGTCCCTTCAGAACCGATGATCAGGTCCTTCAAGGAGTAGCCGGATGATGACTTAACTGACTTGGAACCGAACTTGTAAACCTTGCCGTCAGTCAAGGCAACCTTGACTTCCCGGATGTGTTCACGGGTTACCCCGTACTTGATGGCCTTCAAGCCGCCGGCGGCTGATGTTGCCGGCTACAGTAGACCAGTGCATGGCTGGTGCTGGCATGTAGGTAAATGGCTTGTCTGCCATCAGCCGTGGTTGGCTGGATTACCAGGTCAAGGTCAGGCATAGCCCGGACAGTCTTGAATTGGTCGTGGTCCCAGTGTCCAGTTACTTCAGTAATAAAACGTTCTGGGTCGGCAATCATTGGCCGCAAGTTTTCGATGTCTTCAGCAGTTAACTTATGATATTCCATTCTAGCTCACCTTACAGTTTTCTTTTTTGTGTTTCAATCTCTGTTTCTATTAAATCACATCTGAAAGCGTTGCCGATTTTATAATTTATTGCACAAAAGAAAAAAGGCCAGTCAGCAAGCGCTTCCTATCCTTTTAAAAGTGTAATTTTTTCTTTTTCGCACTTTGTGAAAAATTGTCATGCCTTCTTCCGGAAAACTACCCGGTCTTCCCCGCTTTGGTCAGGGGCAAAGGCATAGCCGAAGTCGGTGAAGCCCGGCAGGTCGGACAAGTCCCGGCCCCCTTCCGCCAGCCAGCGGACTAAACGGCCCCGGGCCATCTTGGCATGAGTTGCCTGGGTCCGCCATTTGCCGTTTTTCTCTTCCTGGAAGACGACCTCAAGCAAGCGGTCTCCCTCTTTTAAGAACGGAGTCAGGAGATGGCTGTATTCCTTGGAAGCCAAGTTGAGGACCACGGAATCATCTTGGTAGAGCTCTTGGTAAACTTTTTCTCCCCAGAATTCATAAAGACTCTTATACTTAAAGGCAGGCAGGGGGCTCTTCATTTCCAGGCGGTAGGGCACGATCCCGTCAAAGGGGCGAAGGCTGCCGTAAAGACCGGACAAAACGCGCAGGTGCTGATCCAGGTAGTCTAGCCCGGCTTGGTCTAAAACGTCGGCGGCCAGGTACTGGTACTGCAGGCCACTGTAGGCAAAGAGGGCTGGTACTTGCGGCTGAGTTAGGTCAGCAGCCAGCATCTGCCGGGCTTCTTCGGTGATTTTGGCATTGGCCCGCCAGACTTTTTCCAGGCCAGCTTGATCTAAGGAATGCAAATAGGACCAAAGCTCCTCAGCCTGGTCGAGGAAGACGGGCTGGCTTTTCGGCAAAAAGCCGCCGTCTGTCTGCATTTTTTTAGCGGGGGAAATTACAATCTTCATTTTTTACATCCTATTAATAATCTAGTAAAATAAAACATATGTTTAACAATAAGGAGGAGCAAGCATGATCAACCCTGATTTTGCGATTATCTTAAATTTTAACCCAACTGGGGCAAATGTAAACGCGGATGCTCTGGTCCGCCGGGCAAGGGACATCGGTGCCCGCGCCGTCAGCGGCCGGGAAGAATTAAAAGCGGCCTGCGAAAAGTACACCATCGCCTACCTGCCAGACCAAGCTGGCCAGCACTACAAGGCAGATGAAGTCGTGGACGCTTTGCTAGCTGCCAGAAAGGCCGGCCAGGCCTTAGTCGTTGACGTCGACGGCGAAGACGAAGCTGACCAAGCGGCTTTAGACGCTTTGAACGCCTGGATGCACAAGTTTGGCCACGCGGTTAATGAAGGCCAGGAAAGTGACTTGTCAGCTGACGCGGCAGAGGCTTTTGTCTTGACCAACCGGCACGCGCCCTACCAGGCCTACCTTTTCTTAAAGGCCCCTTATCCTGCAGAGGTCAAGGTGACTGGCTTGACGGAAGCGCCAAACCGGATCGAATGGATCGACGGCCGGGAAGAATGTGAATTTGTTTTTGAAAACGGAGTCCTGACGGTTCAGTTAAAGAAGCAAGAAAGTCCTTTTGCCTGGCAACTGGTGCGGATTCAAGGCCACCGGCCGGAGGACGATATCGCGGAGACAAAATTTTAAATTCATATTAAAGATCTCTCCGTACATTTTAATCGCTAAGCGATTCGTATTATACTGAACACAATCTTTTGAATGAACAGATTGGAGTTATTAATGACTTCTCGCAAAGACTACCGGAAGAAAAACACTCAAGGCAGCAAATACCTGATTATCACGGGTGTGGCGGTTATCTTCCTGGCCTGCGCGGGTATTTGGGGCCACAATGCCTACCAACAGCACCAGGCAACCGTTCCGGCGGAAAACAAGAAGCACTTCAACGCTAACGTCACTATCTATGGCGTCAAGGTGGGCAAGCTGACGGTTGACCAAGCGGTCGAAAAGATCCAGGCCAAGGCTGTCAACAAGCTGGTCTACAAGGACGGCAAGATCAGTGCTGTTCGTGACAGCAAGCTGACAACTATCAGCAAGGAGCAGGTCCAGAAGTACTTTGACAAGCAGTACACCCAGCTGCCGACTGACCAGAGCTACAATTACGAGAACACGGCTCTGAAGAAGGGCAAGAGCAAGCTGAAGGCCATTACCGCGGCCAGCGTGGACTACTCTGTGGCGGGGAAGACTTTTACCCTGGCAGCTAAAGACTACTTGACCCAAGTCAGCTACTACAGCGGCGCTGTCCACTACGACGACGCAAGCAAGCTGACAGCGAAACTGAACGCCATGGACAAGGAAGTCAAGACTTTGGGCAAGAGCTACAAGTTCAAGACGCCAGCCGGGTCAACCATCACCGTTACCAACCAGAGCTACGGCTGGGGGATCTGGACGGCCAGCGCCAAGAAGGCGGTTCTGTCAGCTTATGAGACTGGCAAGAAGACCATTGACGGGAAGAACCACATCTATGGTGAAGGCTACACCACGCAAGGTCTGGGCTACGGCAAGAGCAACAATGGGCTGGGCAACAGCTATGTGGTTGTGTCAATCGCCAGACAGGACATGTGGGTGGTTGTCAACGGCAAGGTGGTCGTAACTGTATCTGACGTGGTTACGGGGACGGCCAACAAGGGCGACAACGCTACGCCTACTGGGGTTTGGTACATCATGTACAAGCAGCAGGACGCTACTTTAAGAGGGCAGAACGACAACGGGTCGAACTACGCTTCTAAGGTCAGCTACTGGATGCCGTTTACGATGAGCGGCTGCGGGCTGCACGACGCGTCATGGCGGACAGACTGGTCAAGCACGGCCTACCTGGAAGGCGGGTCACACGGCTGCGTCAACATCCGGCCTAGTGAAATCAAGTCCGTTTGGGACGCGGTTAAGGTGCACATGCCTGTGATCGTTTACTAAGAAGTAAATTACATATGAAAAAGGATCTATCTTCATCGAGAAGGTAGATCCTTTTTTGGTGTGTTGTTTTCTATTTATCAGCTAATTCCTTAAGTTTCTGGACAGGTTCGCTCTCCTTGAGCTTTCTCTTCCCCTTCTCCATGAGGATCCCTGCCTGCACGCCCTTCAAGAATGGCGCTGACCGCTTCAAAGCCTGACCACCAGCATAGCATAAAGTCAGCAAAAGGGCGATTCTCTTAGCATGGTAGAAGAAAAGAAGGTAACTCCAGAAGCACGCGATGCCGCGGTTAACACCTTCCTTCCACTTTACGAAAAGGCTGACCGGCAAATGTTAGTTGAAGGCGCAATAGTTGATGCCTCACTCGTTGCCATGTAACTGATGCTGGTTGCCCGTGAACACGGCTACGAAACCAACCTAATGGCTGGCTATGATGCAAGCAAGGCAGCAGCAGAATTTGGCCTGGACCCAGAACAATACATTCCAGTGATGGCTATCTCCATTGGCAAACCGGACCCAAGTGAAGTCGTTCCAGATACTGTCCGTTATGATGTCAAAGACGTGACGGAATTCGCCTAAACTTAGTCTGAATACATACAAAAACTGTTTCCAGCTCTTACCGGAAACAGTTTTCTTATGCTCTATTCAATTACTTTTGCAAAGCAGCAGCAACCGCGGCGTTGACGTCAGCTTGTTCGCTGGCAATCAAGTCTACCCGGTTAGCGATGACCTTCCGGTCCATCTTGATTTCCCGGTTCAGCAGCATGTTGCTTTCCTTGTCAGTAAAGAAGGCGTTGTATTCGTCGTAGCGTTCCTGGGTCTTGAAGACGCGGGAGATGACAGTGATGAAGGTAGCGAATTCCATGTCGCCGCCGACCGTCTTTTCCAACCATGCCCATTCGTCTCTGATCCAGTTCCAGGCCAGCTGTTCACCTGCCGGGTTGGACAAAACGCCGCTGAACCAGCCGCGCAAGTCCTGCGGCTTAACAATTTCAGCGTTTTTGAACCAGGAAACGATCTTCTTCAGTTCGCCTTCGTCCTTGCTCGTCACGATCGCGGCTTTCAGGTCCATCTTGAATGATGGGTCACTGGTTGCCTGGTACAAACCGATCAGCTTGTCAGTCAATTCGCTTGACCCGTAGTTTTCAACTTCGTTCATCAAAACGTATGGCCGGATGTCAGCGGACAGTTCTGCCAACTTATCAGCGTATTCCACGTAGATTTCGTGGGCTTGCTTTTCTGAATCAGCGTTGCGGCCGTAAAGGCTAGCAGACAAAACGTATGGCCGGGTCTGAATGTCTTCATCGCTTTCCCCTGCCTTAGGCAGCCAGCCCAAACGGGCAACTTGGTCCTTGGACAAGTCGTTGTACAGAGCCCGCAGGTTCTTGTCAGCTTCACTGCCGGCTGGGGCAAATTGCCGCAGCTTAGCAGCAGTCGTGTACAGAGCATCGTTGACAATGTGGCTTTCTGAGTTCTTGAAGAGTTCCAGAACTGGTACCACGTCAGCGTATGAAGCCTGCTTGCCTTCTGCCAAAAGCCGCAGGTCTTGCAGCAATTGCAATTGGGAAACTGGATCAAAGTCCTTGGCTTCCTTCATGATGTCGTCCATCAAAGTCTGGTCGTACTTCACGATGAAGTGGGAGTTGTTGCCCACGTTCAAGCGCAGAGCGTGGCCGGCTTCTGCCCGCAGAGCCTGGTAGTCGCCCAGGTCAAGTTCAACGTCTGACATGATCTTCGGTGCCTTGAAGTTAGCGTTAAGCGGAATTTCCCACTTGCGGCCGACTTCCTTGCCTTCACCGATGAAGAATTGCTTCTGAGTCAGCTTCAAGTGGCCGTCCTCAACAAAAGCATTCACCACTGGGTAGCCTGGCTGGTCCAGCCAAGTGTGCATGATTTCCCCAATGTTCAAGTCAGTGGCCGTTGACAAGGCATCCCAGAGGTCGTCACCTGCCGCGTTGCCAAACTTGTGCTCGTCAAAGTAGCGCTTCAAGCCCTTTCTCAAGGCTTCATCGCCCAAAAGTGACCGGACCATGACCAGCATTCTTGACCCCTTGGCGTAAACGATGGCCCCGTCAAAGAGGGCGTCGATTTCAGCCGGGTCATTAACTTCCACGTGCACTGACTGTACCCCGTCGGTTGCATCCCGGGTCAAGGCAGCCGCTGCTTCAGAAGTCTGGAACATTTCCCAGATGTGCCAGTTAGGTTCCAGGTGGTCAACTGACAAGTATTCCATCATGTTGGCGAAACTTTCGTTCAGCCAGAGGTTGTCCCACCATTCCATGGTTACCAGGTCACCGAACCATTGGTGGGCCAGTTCGTGGGTCACCACAGTCGCAACCAGCTTCTTCATTTCCAAAGTGGTGTTGTCCGGGTCCAAAAGCAGGTAGACTTCCCGGTAGGTTACCAGACCCCAGTTTTCCATGGCACCGGCTGAGAAGTCAGGCAGGGCCAGCTGCAGTGATTGCGGTAGCGGATATGGAGTTTGGTAAAAGTCTTCGTAGAATTCAATTGCCCGCTTGGCAATGTCCAAGGAGAAGGTCAGTTCCTTTTCAGTGTGGGCTTGAGTTGAGTAAACCCCGATCAAGACCCCGCTCTTGGTGTGGGTGGTCAATGACCGCATTTCACCAAAGGCAAAAGCAACCAGGTAGCTAGACATGCGGACAGTTTCCTTAAAGTAGTGCACGCCGTTTTCTACCCGGTCTTCTGGCATGTTGGCCAAAACAGTTTCGCCTTCGTGTTCGTCGAACTTGAGGGCGAGGGAGAAGGTTGCCTTAGCTTCTGGTTCGTCAACACATGGGAAGGCTTCCCGGGCAAAAGTAGTTTCAAACTGGGTCCCGATCAGTTCCTTCTTGACGCCGTCAACTTGGTAGTAGGACGGGTAGATCCCCATCATGGTGTCAGTCAAAGGCGCTGAGTAGTCGATCGCGATGACCGCTTCCCCAGTCTTGCCGGCTTCGATCTTGATGCCTTCAAAGTCGTCGCCAAAAGTAAACGGCACTTCCTTGCCGTCAACAGTGACCTTGCTGATGGTCATGTACTTTTGGTGGACCAATACAGTTTCTTCCTGGATTTCACCATGGATGGTGGAAGTCCCTGAGAAAGATCTTGCTGCCCGGTCAACGTCGATGTACAGATCGTAGTGATCTGGATGGAATGTTTCGTAAAAGCGCTTAACAGCCATTGTTTCCTCCTATAATCCGCGTCTGATTTTTCCTCGCGTATATTGTATTCATACTTCTCTATTCTAGCAAAAAAGGCAAAATAAAGCCATTTAACGCAAAATATCTGTTTTTCGTCTACCTCAGCCCCTTGGACTCGATCAGCTAGTTCAGTTTCTAACGAAAATTAATTCCTTTTATTTCATTCTCTTGACAATCGTTACTAATGTTACTTATATGCATAGCTGATTTAAAGCGCTTAAAATGATAATTTCAGCCCTGTTTCCGTCTTTTTTATGATCTTTTTGCCAAAAAAATGTGCATTTTACCCGATTGTTAACGAGCTGTGGTCGTTTTGTAACAGTCCTGTCATATTCCTTTAGTAGCATAGACTTAGTTTTTAAGAGAAGCATGTGAGGAGTTTCTACCATATGATGTTCAAACACAATTTCAAGAAAGTTTTATCAGCAACTGCTTTTGCAGTTGCCCTCGTGGTTGCTCCCGCCGCTAACGTTTCAGCGGCTACTAATGACGCAAGTTCTACCCAACAATCAGCAACTGCAACTAGTCAAGACCAACAAGCCAGCCAAGACCAGGCCGCAAGCCAGTCTAGCGCTGCTAACCAAAGCTCAGCTACTGCTGTTTCAGCAAGCTCAAGCACTTCTACTTCTAGCGCGACTTCAACTAGCACGGTAAAGAAAACCACTAAGAAGGCTAAAAAGACTACTAAGAAGAGCAAGAAGAAGACTTCCAAGAAGAAGGCAGTCAAGAAGGTTGCTAAGAAGACTACTAAGAAGAGGGCAACTAAGAAGGCTGCTGAAGCTGCTGCCAAGAAGGCCGCTGCCGTTAAAAAGGCTGCCGCCAAGAAAGCCGCTGCCGCTAAGAAGGCTGCTGCTAAGAAGGCTGCTGCTAAGAAGGCTGCTGCTAAAGCCGCCGCTAAAAAGAAGTCCGCTGCCAAGAAGAAGGCCGCTGCCAAGAAGAAAGCTGCCGCTAAGAAGAAGGCTGCTAAGAAGTCAGCTGAAAAGGCAGCTAAGTACTGGATCGCTATGCGGGAATCAAGCGGTTACTACACTGCCAGAAACGGCAGTTGTTACGGCCGCTACCAACTCTTGATTTCTTACCTGGGCGGTGACCTGTCCAAGAAGAACCAAGAACGGACTGCTGACCGCTACGTTTACGGCCGTTACGGTTCATGGGTCAACGCCAAGAGATTCTGGCTGGCTCACAACTGGTACTAAAATCAGACAATGCCGAAGGGGGAATCGATTGATTCCCCCTTCTTTTTTACCCTTTTTAGTTCTTTTTTCCTTTTTCAAAAAGTGATACCTTTTTACTTATTTTACAAAAGTAACCTTTTGCTTTACAATATTTAAATAGTCTTTTAAATGTCTAAAATTGGGAGGAAATCATGCAGCTCAGCAACGACCAGCTTGCGAACATCGCACACGACTACTACATCAGCAAACTCAACATCGCCGAAATTTCCGCCAAATACAACCTGTCCCGCTACCTCATCGACAAGGCCTTAAGCGATGCTGAAAAGACCGGCATCGTCCAGATCAACATCAAGGAAGGAGCCAAGCAGAATCCCGGCCTGGAAAAAAGTTTCCGCCAGCAGTTTGGCCTCAAGGAAGCCTTTATCTTAAAGAAGCTGGAGACTAAGAACCAGGACAGCGAAAAGATCGTCAGCTTTGCCGCTGAACAGATCCAGAGCTACATGCAGTCCAGCAAGAACGTCGGAATCACCTGGGGCACGACCATGCTCGACATCATCAACTCCTTTACGGAAGTTAAAAACGATGACCTGACCTTCGTCCAGCTGGTTGGCTATCCTCTCCAGGGCAACGACCGCAAGAATCCGCTGGAAAGCATCGCCGCTGCCCAATGCGGGGGCCACTTCCGCGCCCTGCCCGCTCCCCTTTACTCCTCCAACCCCGACCTGGTCAACTTGATCAAGAAGGAACCTTTTTACGAGCAGTTGGATGAGCTCTACGACAACATGGACCTCCTGGTAGCCAGCCTGGGCACCCTGCAAGCCTTTGAAGAAGAAAGCTTCCTGCACGAAAAATACGAGAGCCTCCTCTTCAAGAACATCCACCAAAAGAGCATCTCCGGCATGATCTTCGGCCGGCCATACGACCATGAAGGCCACTTCTTCAGTTCAATTACTGACAAGATCATCGGCATCTCCGACCAGCAGATCGTCAAGACCCCGGTCCGCTTCGTCGTGGTCAACGACCGCTTCAAGTCTGAAGCCCTCTTAGGCGCCCTCAAGTCGGGCATCATCACCCACCTGGTCACTAGTGAAACCATCGCTGACCGGGTCCTGCAGCTGCAAAAAGAAAGCGGCCGGTAAAAAAATAATTATTTTGCCTGCTTAGCAGGCAAAAGGACCAGCTCCGAAAAAGAGCCGGTCCTTTTTTCAACCGGTATAATCTAGCTATCCCCTATTTTGTATGTAAAAATCTTTCTCATTTTCCGATAATTTCTTGCCCAGCTCCTTCTTAAGAAAGTAGTTCCCCTTTTTGTATAGGGTTATAATTTAATGGTAAGAGGCTTATGATTTCTTTTAGCAAGCGCTAACAAGCGTTGCTGTGTGATTGATAGGATTATGTTTGATAGGGGGAAATATCATACGTAAGTTTATTTGGGCTGCCGGTGCCCTGGGCCTGGCCGCTGCTTTTACCGCCACATCTGTTAAGGCTTGCACGACTGTAGTAGTTGGCAAGAAGGCCACGACCGACGGATCAACCCTGGTTGCCCGTAATGAAGACGTTGGCGCCTGGTCCAAGCACTTCTATGTTCACCAGGCAACCAGCAATGGCCCGACCACTTATGTTTCTGAAGACAACGGCTTAAAGACCAGCTTGCCGAAGACTGCCCTACGCTATACCAGCACGCCAGACGGCGAACAGGTTAACGGCCAGTGGATTTTTGGCGAGAGCGGGATCAACAGCGAAAATGTGGCCATGAGTGCTACGGAATCAGGCACGACCAACAAAAAGGGCCTGAAGGCTGACAACTTAGTCAAGAACGGGATCTCCGAAGCTTCCATGCTGGACGTGATTCTGCCTTACATCCATTCCGCTAAGGAAGGCGTCCAGCGCCTGGGCCAGATCGTTGAAAAGCAAGGCAGTGCCGAAAACAACGGGGTCATCTTCAGCGACAAGAACGAAATCTGGTACATGGAAATCGGCTCCGGCCACACCTGGGCAGCTGTCAGAGTTCCAGACAACAAGTATGCCGTCATCCCTAACCAAATGGTGATCGGCAAGCTCAACCTCAAGGACTCTAAGAACTACATGGCTTCAACCAACCTGGTCAAGAAGGTTAAGGCCTGGTCCCAGAACAAGAAGATCAAGCTGGCTGGCTATGTAAAAGGCACGGTCAACTACTCCAAGGCTTTTGGCACCAACGACAAGACCGACGCCATCTACAACCGGCCAAGAATGTGGGACGGGCAGAGAATCTTGACCCCAAGCAAGAAGCAGTCAATTACTAAGAAGTCCTACACCCTCTTCCTCAAGCCGGACAAGAAGGTTAGTCCGGCCAAGGTTGGCCAGGTGCTTTCCTCCCACTTCACCGGGACCAAGTACTCCAGCTACGGCAAGTGGAAGGCCGGCTACCGGCCGATCAACGTGCCAACTGACGTGGAATCCCACATCCTGCAGATCAGAAACAATGTGCCTAAGGAATACGCGGCTATCCAGTGGCTGGCCATGGCCTCCCCGGCTAACAGCGTCTACATGCCTTTCTACACCAACATCAGTGACACGCCAAGCCAGTACAAGGTTGACGGCGACTACCAGGACCCGACTAATACAAAGTCCGCCTACTGGACTTACAAAACCACGGCCATGGTAGTTGAAGCCTACAAGCACAAGAAGTTCATCGACAGCTCAACTGGCAAGAAGACGGACCTGATCTACAAGGACGTTAACCCGACTAAGAAGGCCGTAACTAAGTAGCTCAAGGCCAACCTGGCCCAAAGCGACAAGGTAGCCAAGACTTTGTCCGGCGACAAGCTGACGGCCTATCTGACAGAACAGAACCAGAAGAATGCCGACTACGCGCAAAAGAAGTGGCAGACCATGGACAATAGCTTGATCGTCCACTCCAACAAGCTGGCTCCGGTAACCAAGTCCAAGCTCACTTTCAACAAGTAATTTTATTTCTGTAATCTCCATAGTAACTGTAAACAAGAAGCATTTTAACAAGTAAAAAAAGAGTAACATCGATATTTTAACCGCGCGAGAAAGGCAGCCCCGCTAAGGAGCTGCCTTTTCACTTACAAACTTTTTACTTTACTTACAAGCACTTTGCAAACTTGCTTTTAAACTTTTTACCACAGGCCGATCAGCTTCATCCACAAGCCGCCGATGCCGCCGTAGACTACCAGGTAGAAGAGACCCAAAACGAAGCACATCTTCCACCAGTCAGTCTGCTTGACATAGCCTGGGGCGAAGAGGGCAGTAGCAGGCCCACATGAGTAGTGGGTGGTTGACTGGAAGATCGCCCCAGTCATGCCCAGCATGATAGCCGCGAACATTACCGGCACGCCAGCACTCTTGGCAATCAAGAGCAGAGGCGCGTACATGGCAACAACGTGGGCCGTGCCGGAGGCAAAGAGGTAGTGGCTGTAGAAGTAAACCAGGACCAGGATGGCCATGACCAGAACTGGTGACATGCCGCCGATGACAGACTTGATTGAAGTCTGCAGCCACGGAATCACGCCGCCCTCAAGGCTCAGTTGGTTGGCCATGAAGATCAGGATTGAGAACCAAACGACAACGTTCCAGGCACCAGTTTCGCTCAGCATGTCCTTGGTGGTCAGCACCCCGGTTACCAGCAAAAGCGCGGTTGCCATGAAGGCTACCCAGGTAGCGTCCAAGCCGATGAAGCTGGACAGCATCCACAAGACAAGGGCCAGGATGAAGACTGCCATCATAACCTTCTCAGAAGCCTTTATAGCGCCCATTTCCTTCAATTGGCCGTCAGCCCATTCCTTGGCGTTAGGAGTTTCATTGATCTTAGGCGGGTACATCTTGTAGATGATGATTGGCACTAAGATGAAGGAGATCAAGGCTGGCACGATAGCGGCTGCTACCCAGCCTAACCAGGAAATCTTGACCCCATTAGCCGCTGCCAGACCAACCGCGGCCACGTTAGGAGCTGAGGCAGTCATGAAGAGGCTGGATGAGATCGTGTTGGCGTGGAATTCGTTGAAGACCAGGTAGGAACCGATCTTGTCTTCCGTGCCATCAGAAACCTTGGAACCGAAAGTGTCGGACAAGGATTCGATGATTGGCAGGACGATACCACCAGACCGGGCAGTGTTACTTGGGGTGGCTGGTGAAACGACCAAGTCGATCATGGACAAGGCGTAGGCCAGACCCAAAGTCTTTTTCCCGAAGGCCCGGACGAAGATCAAGGCGATCCGCCGGCCCAAGCCAGTCTTGGTAAAGCTCCGGGCAATCATGTAGGCCATGGCGATGGTCCATGGAGTTGAATCAGCGAAAGCTGACAGGGCTGGCTTCATTTGCACCAGGCCCAGGCCGATGATGGTCACGTAGGCGATGATGGATACCCCGGCGATTGGCAGGGGCTTGGTAATGCAGGCAATGATCGTCGCCAGGAAGATGGCGAACATATGCCAGCCGGCAACGGTGATGGTCGCCGGGCGCAGAGGAGTGAGCAGGAAGAGCCCAATCCCGATGATCAAAGGCCAGATGAAGCCTTTGTAATTAACTTTTGCTAACATTTTTTCTCCCGCTTTTTGAAAAAACTATTCTTCCGGCTTAGTACGGTCGATGTTGGTCATGGCCATGTAGTCCATCCATTCATCGTATTGTTCTTCGGTCACCTTGCCGCTCTTCAGGGCAGCTTCCTTCAAGGTAGTGCCTTCACGTTGAGCAGTTTGAGCGATTACGGCAGCTTCATGGTAGCCGATCTTTGGTGACAAAGCAGTAACAGTCATCAGGGAGTTTTCCAGCAGGTCATCCATTCTTTGTTCGTTGACAGTCAAACCGTGGATCATCTTGTCAGCGAAGCCAGTAATAGTGCCGGCCAGGATGTCAGCTGATTCCAGGAAGGCAGCGATCATGACAGTCTTGAAGACGTTCATTTCGAAGTTACCTTGGCTGGCAGCGAAGTTGATAGTTACGTCGTTACCCAATACGCGGGCTACAGCCATGGTTACGGCTTCAGCCTGGGTTGGGTTAACCTTACCTGGCATGATTGATGAGCCTGGTTCGTTGGCTGGGATGTTAAGTTCACCGTAGCCGGCACGTGGGCCAGAAGCCAGGAAGCGGATGTCTTGGGCAATCTTGAACATGTCGTTGGCCAAAGTCTTGAAGGCGCCGTGCATTACGCTCAAAGCTGAGTGGTGAGCCAGGCCCCAGAACTTGTTGGTATCGACCTTGAATTCGTGGCCGTAAACTTCTGACAGCTTGCCAGCGATAGCTTCAGTCATGCCTGGGGCAGCGTTCAAGCCAGTACCTACGGCAGTACCACCGATAGCCAATTCGTAAAGGCTTGGCTTCAATTCTTGGATGTAAGCCAGGTCATGCTTCAAAGCTGAGATGTAGCCGGAAACTTCTTGGCCGAAAGTCAAAGGAGTAGCGTCTTGCAGGTGGGTACGGCCAACCTTGACAGTCTTCCAGTACTTGTCTTGCTTTACCTTAAGTTCGTCAATCAAGTGTTCAATAGCTGGCTCCAGCTTGTCGACAGCTTCAACGGCAACGATGTTCATTGCAGTTGGGTAAGTGTCGTTTGAGCTTTGGCCACGGTTGACGTCGTCGTTAGGCAGGATGTTCAAGCCTGGGTGAAGCTTGTTAGCCAGGTTGGCAACAACTTCGTTGACGTTCATGTTGGTTTGAGTACCTGAACCAGTTTGCAATACGTGAAGTGGGAAGTCCTTGCGCAGGTCTTCGTCGCTAAGTGCCAGCAATTGGTCGATAGCTTCTTCGATTGCTTGTCCCTTTTCAGCTGGTTCGTCGCCAACTTCAACGTTTGATTCAGCAGCAGCCTTCTTCAAGTGCAGGAAAGCACGGATGATAGCCAATGGCATCAATTCGCCGGATTGGAAGTTGTTGCGGCTTCTTTCAGTTTGCGGCCCCCAGAGAGCTTCCTTAGGAATCTTAACTTCACCGATCGTGTCTGATTCAATACGGTATTCTTGTTCTGCCATCTTACAAATCTCCTTACAAAAAACTTTTAACAAAAATCTTGCTTAACTAATTGCATTATATAACGGCTTTTTTGAATTTTGTTAAAAATAACACAGCTTTTTGTTGTTTTTTAAAGAATTTCAAGGACTGTCTATTTTTTGAAATTTAAGGAATTTTTTAGCAAATTTGTTAAAATGTAAAAGCATTCAATTAGAAGTAAGCGGTTGCCAGAAGCTTTTCGCAATTTATTTTGACGTAGTAAAAAATTTTTGGCCTGTTTTTTACAGGAAGTTAATGAAAAATGTAACTTGTGAAATATTCATTAGCCAAAAGCGGTTCAGGCAGTTTTTGGGCAGTTGCATCCCCAGCACAAACACAAAAATACAAGGAAAAAAAGAGCTCCAGAACTTGCTAAACGCTTCTGAAGCTCTTTCTTTATGGACTGATTTTCAACAAATCAAGACTTACTTTTCTTGCTTTCTTTTCTCAAAGCTGAAGCCAAAGAGAGAAACTCCGGCCAGCAGAGAAAGAATGCCTGCCAAGATGCCTGGCTTAGCGTCTTTTTCACCGGTTTGCGGGAGCTGAGCTGCAGTGGCTGCTGGGGCCTTGGCTACTGGTGCAGTGTTGGCTAACTTAGTTACAAGAGTTGGCGTCTTGGCTGCTGACTTAGTTGCTGGCTCTTCATCCGTGTTCACTACAGTCACAACGTCACCGCCGTCAGTATCTTCTTCCGTATCAGCTGGTTCTTCAGTATATTCCTCAGCGGTTGGTTCTGTAGAAGGTTCTTTGGACGGCTCGGTAGTCGGTTCTGTCGTTGGATCCGTTGACGGTTCTGTACTTGGCTGAGTCGGTTCAGTTGGAGTCGTTGGGTCCGGTCCGTCGGCTGTGTTGCTTCCAAGGCAGCCAAGCGGGCCTTTGCCAGGTTCAAAGCGTGCAGAGTTGCGGCCGCTTTTGCCGTAGCAGTGGCCAACGCTTCCTTCTTTTCCGCCAAATCAGCTTCCTCCGCGATCAAAGCAGCTTGCGCGCTTTGCAGCTTCAGCCGTCTTAGCGTTCTCTTGCGCCGTCTTCAAGTCATCCTGGCTGGACCTAGCCTGGACGTCATTAGTGGCCGCGTTGACTGACTGCCCCAATACCAGCAGCCGCAACTACTGCCATCTGCTTGATCCGGGTCTCGCTTCTCGCTTTCATGTTTTTCCACTTTTCGCTCTTAAATAGTAAAATCACATATATATTTAATTATAAATGATGGAAATATTCCCGGGAAAGCAGGAAGCACCGGAAAAGTAGAGATACTTTTATCTATTAAAAAGACAAAAAGTATCATCAAAAAGCAATAAAGCTGCTAAACTATTTTTCACCCAAAGGATCGGTAATTAGCCTATAATCTTAGTTAAACCGTCTGAAAAAAGAGCCTTTGCAAGCCAACTTGTGCTAGGCTTGTGATGCGAAAGGAAGATTTATATGGCAAGAATGTCGCGCAGACAGTACCAAGAAAGACAAGAACAAACCGCGCAAAAGCAGACGCGGCAGAGAAACCCTAACTCCGTTCCTCGCTTGGACACTGACGGGGCTTCAAGAAGCGAGCAGAAGGTCCGGCTCAACTTCTGGCAGATCTTCGCCGACCGCCCTTACGTCACGGTCATCATGATCAGCCTGGCCCTCTTCTGCATCCTGGCCAAGTGGTGGATCGGCCTGGCCATCATCATCATCTTAACCATCGCCGGTATCTTCGTGATTGGCCGCTCTCACCACCCTAACCGGGTCCTCAGTCTGGAATTCAAGCTCAAGGCCTCCCGCAAGCTGAGTATGATCAAGGCCCTGCAGCTTTTGGGTTCAACCATCATGTTCCTGGCCGCCTACATGCGGCAGATCGTCAGTGTTGACTTCTCCAGCGCCGGGGCGACTGACAGCCTAACAGTCATCCAGAACATGCTCTCCAATCAAGGGACTTTCGGCCAGCAAGGGTCCTATTTCTTGAGCCTCTTCAACCAGCTGACCGGGGGATCGCTTTGGGGGACCTACCGCTACGCTACCAACAGCTCGCAGATGATGAACTCCACTGCCGGCACCATGATCATCCTCTGGATCTTCCTCTTGATGATCGCCCCGGCCTTCTGCGTTTTATCCCAGTTCTTCAGAGAGCCTTACTCCCGGCACGTAATGACGGTGGCTTCCTTGATTTCCACCATCTCCTTTACCTTGACGCCAACTTTGATGAACCGCTGGGTCATCTCATACGCCGTGCAAAACCAGATGAGCCAGGCAGCAGCGGAAAACGCTGTCCAAGTCGGCGGTATGGTCTACCCGGCCATCATCTCCGCCGTCTTCGTCTTTATCCTGGCTATCTACCGGGAAATCAAGAAAGATTAATTTTAATAGCAATGAAAAAAGCTTCAGTATTGCTTTACTGAAGCTTTTTCGTTTGATTCTAAATCTATTTTGTCAGAAAAATCCAAAGCAGGTTGACTGCCAGCAAAACAGCTGCCATGCATCCCTTCCACAAATTGTATTTCTCTGCCGGCGCCTTCTTGTTCACCAGGTACTCCATGCTAAAACCGCAGACCAGGTTTAAAGCCAGCATGACCAGGCGGTACTGCAGCGTTCCCCAGCTGCTCAGCAAATTTAGCAGAGCCAGCAGGGTAAAGACGATTGTCACGTAATATTTTCTCAACACCTTCTATCCCTCTCTTGTAAGCAAAAATATAATTTACACTATTTTCAAATTATCATTAGTTTGAATCATCATGAGAGAGATGTCAATCTCCATTTCCTACCCTAGCAATTTCTGGTACAAGGCGTAAGTCCGGGCGTCGTAGGCCACCATGATTACCCGCATTTCGTAATCCTTGTGCTCTCTCAGCCACTTGCGGACCTCACCGAAAGCCACCTTGCTGGCCGCGTCCAGCGGATAGCCGTAGACCCCGGTTGAAATCGCGGAAAAAGCGACCGAGTGCAGGCCATTTTCCTTGGCCACCCGCAGGCTGTTTCTGTAGCAGGCCGCCAAAAGCAGGGGATCGCTGTGTGAACCCGAGTAAACCGGCCCTACAGTATGGATGATGTACTTAGCCGGCAGGTTAAAGCCCGGCGTGATCTTGGCCTCACCCGTCTCGCAGCTGCCCAGGGCCCGGCAGGCCTCATTCAATTTAGGTCCCGCTGCCCGGTGGATGGCCCCATCAACGCCACCGCCGCCCCGCAGTTCCCGGTTAGCCGCGTTAACGATCGCGTCCACCTTCAAAGTCGTGATATCCCCTTGCCAGATTTCTAAATTCATTAGTCCTCTTCTTCCTCCTCTAAGTACATTTCCCGGAACTTTTCCAAGTCAGCCTGCTTAAAGCCCAGTTTTCTGGTAAAAAATTTGTCAAAACTGCCCCAGCCCTGCCGGATAGTCTCCGTGATCCCTTTAACCGCGGTTCCTTCGCCCCGGGTCACGTTCATCTTCGCGATCACCTGCGATAGCTTCTCATTAGTCGGATGCTGCTTCTCAATGGAAAAATCGTACAATTCATCCGTCAGCAAATAGTCCTCCGCGATGGTCTTGTCGTCCACGCCTAGGGCCATCAAGATCAAAATACTGATGATCCCCGTCCGGTCCTTTCCGGCCGCGCAGTGGTAGACCAAGGCCTGGTCCTCCGGCAGCTTCAGCAATTCCTCAAAGACCCGTTTGATCCCCTCTTCTGAATGCTCATTTAACAAAACCTGCTGGTAGATCTTAGGCAGGTAGTCGTCAAATTCCGGCAGATGGTGAAAAAGGCGCAAGAAAGGATGGGCCTGGTTGAAGCGGTCCCCTTCAGCGTAAAGGCCAATATTCACAAAACGGACCCCCGGCCAGAGCAGGTCGGGGTAGGACCGCTGCTCCCGGCTGGACCGCAGGTCACAGTCCACCGTAATACGCAGGTTGGCCAGCTTGACCCGGTCCCTGGCTGACATCTCGTTTAAAGCCGCCGACCGGTAAATCTTCCGCCACTTAACCTGGCGGCCGTCCAAGCCTTGATAACCGCCCAGGTCACGGAAGTTGACCGGCATGTCCAGTTCAATTACCCTTTGCATCTCCATCCGGCATCCCTCTTTTCCAAAAATCCGCAAAATTTCTTCTCCCTTCCATTTTAGTTTTCCCGGAATTTTTTGGCAAAAAAATCGCCCCAGCTTAAGCCGGAGCGAGGAAATTTATTTAGACAAAACAATTTGTCTGTCAAACATGTCAACCATCTCATTCGTGAAATTGTGGCCGATAAAAATAATCGTTGCATTGGTTTTAAGAAGGTTCTTTAAAATACGCTTCGTGCTATCTTGATCCACTGCAGCCGTAGCTTCATCGATCAAAATAAAGTCACTTTGATTGAGTTCCGCACGAGCTAAAACAATCTTTTGTCTCTGCCCACCAGAAACATTAAGCTCTTCTACATCTATAACAGTATCCTGGCCTTTTGGAAACTTGGCAATATCTTTAGCCAAATCAACTTTCTGCAGGTATTCTCCAACTTTATCATCCAACTTAGGCTTGAACATGGTAATGTTTTCTGCAATTGATACTGGGAACAACACCGGATCTTGCGGCACGTAATGCATGGCTTTAAGTGAAATATCGATTTTCCGATCATCATGATCATAGAAAGCGATATTGCCAGTCGTTGCTTTCAGCTCTCCCGCCAAAACCTTTAGCAAAGTTGACTTCCCCGTCCCGCTGTCGCCGGTCAGCAAAATTTTTTCGCCAACCTTGATTTTCAAATCGGGATAATTAATTGTCTCCCCATGATCATAGGAAAATGACAAACCAGTTGTCTGCAAATGATCAAAGGAGGTCAATTCTTCATCTGTACATACATCCTTAGGTGGATCAGCTAAGGCAGCGGCTACCTTTTCATTCAACGGTTTAGTTGACTTGATTTGCTCAAGGTAGTTAGACAGCATAACCAGACTGTTAAATATTGTACTAGAGAATTGGCCAACCGCGACAAGTTTCCCGATAGAAATTGTTCCAGCAAGAATCAATGTTCCAGTTACGACATCTAATACAACTTGACAAAAGATGCTCATAAAACCGTTGATAAAATTTATCTCAATTGCGCTAACTTGACGCGTAACCAATGATCCTTCTAATTTCTTAGACCGCTTTTCTAAAACTTCAACTAGCTTGTGTCTCGCATCATAACGTTGAATTTCAGCTAGGCCCCCTAACCAATTCTTTATACTAGTCAGATAGGCCGTGTTCATATTAGAAAAAATCAGAGTTCTTTCTTGATATTTTTTAGAGAAGATGCTTGGCAAGTATAGAAACATAACTGACAACAGCACAGTTGTAACCAACAAAATCCAATGCATCGTAACTAGCGCGTATGCTGAAAATACAACAGCTAAAGCAGAATCAAAGAAAACGAACAGTGGCTGAGTAAAGTTGTCAAATAACATCTGAAAGTCATTCGTCAAATGACTTTGCATTTCAGCAACAGTTTCATGATTTTGGTAATAATAATCAACTGTTTTTCTTCTAAGTTGATGAACATATTCTTGAACTTGTACAATATATAAGTATTCAGCAAAACTGATTAGGACATATCCACCAATATACAATACAAAAAACACGGCTAAAACTAGATAAAATCTACTAGTCTCTCTCTTAACCAGTAAGTCTAGTATAAAGCCAATTATATAATTTCCAACCGCCACACACAGCTGTACCAAAACTTCTAGAGCAACTGCACATGTAAATCGCAGTCGATTTTGCTTAACAAGTTCACCGATTTTCATTCAACTTCTCCCATTCTTTCAATACAAACGCCATTCCTCGATTACCATAAAACAGACTGGTATCTAACGCTTCACTTCTAGAATCAATCAAATACATCAAGCCATGGCAATCTACACAAAAATATTGGTAAAAAGATAATTGCCGTTCAATTAGGGGCATATAGTCCCTATCATGTGATTGCTCAACATACTTTATAAGGATCCAAGTAATGCCAGACAAGCCTTCTATGAAGGTACCATTTTTAGCATACGCCATCTTAGAAAGTTCATTAGCCAATTGCTTAATCCGTCGGTCATACGCCTTAGTCTGATAAATTACTTTTGCATTCATAAGTACTATCAGCATCCCTGCCATACCATTTTTTAAATATGGAGAAATGTATTTTGATTTTGCAAACAATCTATAACCACAAAAATCATTATTTTCTACCCAAAACATACTTTCTATTTTCTTTATCGTAATATCAAAATTATCAAATTTGACTGAAGCTGTCGGAACTCTCTCTCTAAGATATTCAACAATCAAAAATAACTGCCGTAATATCTTTTCCATTGAAGGTCTAGTTCGACTTAGTTCTTCGAAAATTTTTAATTGACTCTGTTCAAAAGCAGGAACTGGACAGTTGTTATTTCCTAATTCCACTGATAAAAGTGCCTTCACCACTTCATCTTCACTATTTTTTTCATCAAGGCTATTCTCTTCAATCTGTTCAATTGCCACCGGCCTTTGCAACCCTTGCAATAGTGACTTTAAAGGTAATTGCTGAGTTGTGGTAATTTGACTCAGTACATTCATATCATCTTTTTGCAAAATCTCGATTGCCCTATCTAAGCTACCTGCCGTAGCATTGATCAGCACTTTCATAACCTTAATAAACACAGCAGGAATTTTTTCTTGAGCTGCCTGTTTAATAAAGAAATTCCAACTTTGTTTACCGCTCTGATCTATTTTCAAAAAGTCGTTTGCCCTTGAAAATACGCTCATCACTAAGTATCCAGATTGATGAACATCTTGAAGCTCGGGAGATAAATTATCTACTCGTCTATCATAGAATCCCTTGGTTCGATAATAAAAACTCTCATCCATATTTGTTAGTAACGCTGATTGCGAAACATCAACTAAAAATACTTTTTCACTTTCAAAATCAACAATGATGTTACTAGCAGAAATATCTCCGAGAAAAAAAGAATCATTATGTAACCTTTGCAAGCATCTTAGGTAATTAAGTACAATGTGCCTTATTTTAGCAAAGTAAAAGCTATTTCTCTTATCGCCTATAAATTCCGCTCTCAGATCATCAATCAGCACGCCCTTAATGTACGATTCAACTAAGAAAAAGTCTTTCTGCTCATAAAATGAGTCCAGTACCTTAGGAATAAAATCATACTTTTCCCAATTTATTAGGTTCTTTCTCTCATTTTGTAATTTTTGAATCTCAGTTTCTTCTGAATCTTTAAATCTGTATTTGGCACGCTTGATTACTACATCTCTCCCATAAATATCTTGTGCTCTATAAACACCGCCTGAACTTTTTCGTGAAATTATTCCTTTTAAAAGGTACTTTTTTCCTATCGTCTCTAGCTTATGTTCATTTTTTGATTCAAAAGGTTCTTTTACGAAAGATGGTAATTGATACGTTCTTAATTCATGATCTCGATACAACTTATTATTTCGTTCATCACGTATGAAATCATCATCAGAATTAATTATTCCATATCGGTAATAAACATTCTTGCTATCCCTAAAAGCCTGGTCTGTAAAGATTGGAATTCCATCTTCTTTTCCCACCAAATCGTAGATTGTTCTAATCAATTTTTCGAATCTACTTTCAGTTTCTGGATAAATAGTAATATATTTTCCAGTCATCCATAGTGGGCCCGTCCCTCCTAAATACTGCTCTAACAGGCTATAGTTGCTAATATACTTAAACGTAAAATTATTCTCACAACTAAGGTCGTATACTTTGTCTAAAATAACTTGGTAGTTTTGCAAGGTAGCCGAAACGTGTATCTTAAACCCCTGGCGTGGCAAGGAAGCTGCCGATTTATTAATCTGAAGAAAGACATGGTGAGGATCCCTTGAAATTATTTCTCTAGATAAACCCAAAAAATTGGTTGGCACAACGTCGACATGATTATATTGCCGAACGCAGAAATCACCATTAATTAACTTATATTTCATACTGCCTCCAAAAGCGCGGTTGACTTATCTTATTAATTCACTATAATATATCACAAGTGAACGTGATTTTCACCGAAAATTGTAATATTTATTTAATGATGTAGAGGCGCAATTATGAGCTCAGTCACTTATTTAGATGAATTAGACTTGCTTGTTCCTGCTGAAGAAAATCAAGAGGAGCTTGCTGGCAGTTTTGTTTGTCGTACATTTATTTGCAAAATGTAGTTGCAAGGATTACATTTTTGTTAAAAAGCGTTAGCAACAAATGAAAAGGATCTCCGATCGGAGGTCCTTTTCATTTTCACACTATTGTGGTATAAAATCTTATTCCAAAAACTTGTCCCTAAGCCGGTCCAAGTCTCCTTGTCCAAAGCCCAGGCTGGCAAAATAGCGGTCAAAGCCGCCCCAAGTCTGCCGGATCGTTTCCGTAATCCCGTAAAAAGCCGTCTGGCTGACCTGGGTCTGGTTCATCTTGGCAATCTGCTGGCCCAAGCGGTCGTTTTCATCCGCCTCATCCCAGTCCCAGCTGTATTCCCGGCTGAGCAGGTAGTCCCGCAGGATTTCCCGGTCTTCCAGGCCCAAAGCCATCAAAACGTTCACCGACACCATCCCCGTCCGGTCCTTGCCCATGGAGCAGTGGTAAATCAAGGCCTCATCATCTTCCAGGGCCAGCATTTCCTTAAAAATCTTCCGCATCACCAGGCCCGTTCTGGGGGCGACAAGATTCTGCTGGTAGACCATGGCCAGGTAAGATAATTTGGGCAGCTTGCCCGAATACTTTTCCCAGGCTGCCTCAGCTTCTTCCTCTTCATCCCCGCTCTCGCTGTAAAAGTGGGCATCGACCAGTTTAGCCCCCGGCCAGAGCTTGTCCGGGAAGTTGTCCTGTTCATGCCGGGAGCGCAGATCGCAATCCACCACAATCTTCCGCCGGACCAGTTCCGACTGGTCCGCCTTGGTCAAGTGGCTGAGTGACCCCGACCGGTAAAGCCGGCCCCACTTGACAGTCCGGCCGTCCTGGCTGACGTAGCCGCCCAAATCCCGGCAATTGTAGCCGGCCTCTAACTTTACGATCCGCTTTGGCATTTTTTATCCTTTCATCCTGTTAAACGTTAAAAACTAAAAATCTTTCCCGTGGGCAAAGACCCGGGTGGCCAGAACCGCCCGCTGCCAGCCCGCGTAGAGCCGGTCTCTTTCCGCCTCTTCCATCTTTGGTGCAAAGGCGGCCCCGGTCTTGGCAATTTCCTTCAAGCTATCCAGGTCTTGCCAGTAGCCGACGGCTAAACCTGCCAGAAAGGCTGCCCCCAGGCCAGTGGTTTCCAAATCCGCTGCCCGCTCGATCTTCTTGCCTAACAGGTCTGCCTGGAACTGGAGGAGGTAGTTGTTGTTTGAAGCCCCGCCGTCGACTCTGAGAACCGGAATCTCAATGCCCGAGTCCTTCTGCATGGTGTCGACCACATCCCGGATCTGGTAGCCCAAGGACTGCAGAGTTGCCTTGATCAAGTCCTTGTCACTGCTGCCTCTGGTCAAGCCAAAAATCGCCCCCCGGGCTTCACTGTCCCAGTATGGTGCCCCCAAACCAGTAAAGGCGGGAACCACATAGACTTCATTGGCGTCTTTAGATTCCAGGGCCGCCTGCTCTGATTCCGGAGCTGAGTTCAGCAGCTTGACCGAGTCTCTCAGCCACTGGATGGCTGACCCGGCCACGAAGACTGACCCTTCCAAAGCATAGTTTACTTGATCGCCCAGCTTGTAGCCAATAGTCGTCAGCAAATTATTCTTGGATTCAATCGGTTCCTCCCCCGTGTTCATCACGATGAAAGACCCGGTCCCGTAGGTGTTCTTGACCATGCCCGGCTTGACGGCCAATTGGCCAAACAAGGCCGCCTGCTGGTCCCCGGCCATCCCGGCGATCGGTACTCTGCCGCCGAAGAACTGGTAAGGGTCAGTTTCCAGACCAACCAGGTATCGATCGTGCCAAAAAGCAGCTCCCCTTTTTCCGCCCTTTCCTGGGCCCCTTCCACATGGTCCAAAATCCAGCGGATCTTCGTGGCGGAGAAGTAAGGGGCGATCACCAGGCCCGTCTTTTGCCGGATCATCTCGCTGTAGCTGTCCTTAACCAGCTTTTCCGCGATATCACTGGTTTGCCGGGACTGCCAGACGATGGCCGGGTAGATTGGCCGGCCCGTCTCCTTATCCCAGACCACCGTGGTTTCTCTTTGGTTGGTAATCCCGATGACCGCCAGTTAGTTGGTCCGGCCGGATGGCGGAGTTGATTAGGGCCGTTGACGTCGTGATCTGGACCGCGTTCCAGATTTCCTCAGCCTGGTGCTCCACCCAGCCGGGCTTGGGGAAGTACTGGGTGAATTCCCGGGCCACGCTGGCCACCTGCTGGCCGGCATAGTTGAAAATGATTGCCCTGGTTGAGGTCGTCCCCTCATCGATTGCCAAAATGTATTGTTCGCTCATGTTGTAATCCTTTAAACTTATCCTTTTCTTACTTTACTTACTTTCTTTTTCACCGTCTTTTGAGAAAGCGCTTACCATTTTAGCCTAAGCCAGTTTGTGAAAAAAGCAAGCCAAAAGGACCTGGCCTTTAGATTATTATTTTTCCGCCTTTTAGTTTATAATCAGTGTAATTGATTATGATAAGGAAGATTTTGACTATGGATGATAATTTGATTCGCATTGCCTACCTCTACGAAGACTTGATGAACACCTACGGGGACTCCGGTGACGTCAAGATCCTCCGCTACTTTTTGCAGAAAAAAGGCTGGCAGACCCAGATCGACAATATCTCCCTGGGCAGCCAGTTCAACGCGGCCGACTACGACTTTGTCTTCTTCGGCGGCGGCCAGGACTATGAACAAAGCATAGTGGCCAAGGACCTGCAGCGCTTCAAGGAAACCCTGAACGACTACATCCAGGCCGGCAACCCCATGCTGGCCATCTGCGGGGGCTACGAACTGATGGGAACCCACTACAACACCATTTCCGGGACCAAGATCAAGGGCCTGGGGATCCTGCCCCTGCACACGGAATTTGACCCAGATAAGCGGATGATCGGTGACACCAAGTACGAAACTGAATGGGGCCCGACCATCGGCTTTGAAAACCACTCCGGCCAGACCTTCCTGGATGACCGGAAGATGCTCAAACCTTTAGCCAAGGTAGTCGAAGGCTACGGCAACAACCATGAGGAAAAGGAAGACGGGGTCCGCTACAAGAACTTCATCGGCTCCTGGTCCCACGGCCCGATGCTTAAGAACGAGAATGTGGCTAATGCCCTGGTGGACATTATTTTGAAGCGGCACGCTGCCCGCGTGGCCCAATAAGATAGCTTTTTGACCAGCTTTTGACGAGCTGGTCTTTTTTTCGCGATTTTTTTAAAAAATCGTTATTTCACACTTGTGGTATATCACAGATGTGGTATAATGGTTGGCGTAGGGGAGTGAGAACGATGAAGATCGATGTTATTCGATACCTCGACGACAGTGGTATAATAGTTGGCGTAGGGAAGTGAGAACGATGAAGATCGATATTCTTCGATACCTCGACGACAAGCACCTTACCATTTACCGGGTGGCGAAAGAGTCGGGCTATGGCTACACTACCCTTCACAAGTCATTTAACAAGCAGCAATCAAATGCGACGTCAATCAACTTGCGCGATCTTGACGCGATCGCCCGGGCCAAGCACTTGGCGATGTGGCAGGTTCTGCGTGAGCTGGAGAATGATTATCTCAGCGATGACGATGATGACTAAACTAAATACGAAGGTTGGTTTAACCGCTGAGCAAGTCCTATTGTTTTGATTTCGCTTGATGTAGAAGGAGTTTTTAGTTAGCCAAAAACCAGCAACTTATTTTACTCAGAAAGGAGTAAAATCATGGATTACAACAACTTTAACGATATGGATGATCTTTTTAGAGAATTAATGAACGGCTTGGGCGGCTTCAATTCCGAAAACCGCCGCTACTTGATCAACGGCCGGCAGGTAACCCCGGAAGAATTCGCTGAATACCAGAAGACTGGCCAGCTGCCAGGACATGGCCAGGCCAAGAATTTCCAGGGCAAGCAAAAGAAGGCCAACGGCATTTTGGAAAAGTTAGGCCGGAACCTGACCGCTGAAGCCCGGGAAGGCAAGCTCGACCCGGTCATCGGCCGGAACAAGGAAATCCAGGAAACGGCGGAAATCCTCTCCCGCCGGATCAAGAACAACCCAGTCCTGGTCGGGGACGCCGGGGTCGGCAAGACCGCGGTCGTTGAAGGCTTAGCCCAGGCAATTGTCCACGGGGACGTGCCGGAAGCAATCAAGAATAAGGAAATTATTTCCATCGACATCTCCAGCCTGGAAGCCGGGACCCAGTACCGGGGCTCCTTTGAGCAGAACATCCAGGACCTGGTCAAGGAAGTCAAGGACAGAGGCAATGTCATCCTCTTCTTTGACGAAATCCACCAGATCCTCGGTGCCGGCGGCATGGGCGACGGTAATGGTTCCAAGGGGATGAGCGACATCTTGAAGCCGGCTTTGTCCAGAGGTGAAATCACCGTAATCGGGGCCACCACCCAGGATGAATACCGGAACACCATCATGAAGGACGCCGCTTTGGCCCGCCGCTTCAACGAAGTAACTGTCAACGCTCCGAGTCAAGCTGACACCTTCAAGATCTTGATGGGGATCCGGTCCTTATACGAAAAGCACCACAATGTGGAACTGCCAGACGACGTCTTGAAGGCCGCCATCGACTACTCAGTCCAGTACATTCCGCAGCGGTCCCTGCCTGACAAGGCCATCGACCTTTTGGACATGACCGCCGCTCACCTGGCTGCCCAGCACCCGGTGACTGACGCCAAGACCATCGAAAAGCAGATCAAGGAAGAAAAGCAGGCTCAGAAAAAGGCCGCTGAAAAGGAAGACTACCAAGCCGCCCTTGACCACAAGGCCAAGGCTGAAAAGCTGGAAAAGCAGCTGAGTGAAAACCACGAGGAAAGAAAGACCGTGGCTACCCCGGCTGACGTGGCCGCTGCCGTTGAACGCTTGACCGGGATTCCGGTTTCCAAGATGGGCGCCAGCGACATCGAACGCTTGAAGGGGCTCAGCAGCCGCTTAAAGGGCAAGATCATCGGCCAGGATGAAGCCGTTGAAGCAGTAGCCAAGGCTATCCGCCGCAACCGGGCTGGCTTTGACGAAGGCAACCGGCCAATCGGCTCCTTCCTCTTCGTCGGCCCGACCGGGGTCGGCAAGACGGAACTGGCCAAGCAGCTGGCCTTGGACATGTTTGGCTCTAAGGATGCCATCATCCGCCTGGACATGTCTGAATACTCCGACCGGACAGCCGTTTCCAAGCTGATCGGGACCACGGCCGGCTACGTGGGCTACGATGACAACTCCAACACCTTGACGGAAAAGGTCCGCCGCAACCCTTACTCAATCATCCTTTTGGACGAAATTGAAAAGGCTGACCCGCAGGTCATCACCCTGCTCTTGCAAGTGCTTGACGACGGCCGCTTAACTGACGGGCAAGGCAACACGGTCAACTTCAAGAACACCATCATTATCGCTACCTCTAACGCCGGTTTCGGCAATGAACAGCTGATGGGCGACGCTAAGAAGGACGAGAAGCTGATGGACCGGTTAGCTCCTTACTTCAGACCGGAATTCCTCAACCGCTTCAACGCGGTCATCGAATTCAGCCACCTGACCAAGGAAGACTTGAAGGAAATCGTTAACTTGATGCTGGCTGACGTAAACAAGACTCTGGCCAAGAAGGGCATCAGCCTGACTGTCAGTGAAAGCGCCAAGGACTACTTGATTGAACAAGGCTACGACGAAGCTATGGGGGCACGGCCGCTGAGAAGAGTCATCGAACAGGAAATCCGTGACAAAGTAACTGATTACTACCTGGACCACCTGGACGTCAAGAAACTGAAGGCGGACATGGTCGACGGGGCCCTGGTTATCAGTGAAGATAAATAATAGGATTCTGTTAAAGATCTTGCACAATCGTAAAAAAGGCAGTCAAATGACTGCTTTTTTACTTTGTCCGGATTTTTGTATTATAATCAATGGGTAATATAAAATCGTTTACGGAAGCTTGCTTTATGCAAGATAAATTCTACGCTTTTAGTGAGGAAGCCAGGGAAGTTTACGAGCACTCCACTTTCCAAACCTTGATCTACCAGTTGATCGACGGTCAATACCAAGTGGCGGGAAGATCCAGCCGGAAAACCTCTGGGATGCCATCACCCACCAAATCAAGCTGGGCGTCTTCTGGAAGGACAGACAGCGGAACTTCCTGGGGGCTAACCAATACTTTTTGGACTACTACGGCTTGACTCTGCCAGAAGTGATCGGCCTCAACGTCCATCCGGAAAACTTCCAGGAAAGCGAAATGCAGCTTTTAGAAGACGGGGTACCAGTCAAGGAACGGGGCAAGACCCGGTCCCGGGGCCAGATTCGGGAAATTATGATCCTCAAAGCTCCCGTCTATGACCAAGACCAAATCGTTGGCTTGATCGGCTTCTTTATGGACATCACCAATACCAGCAAGCAAATCAACCGCCTGGAAAACGAGGCCGCAAGAGACGACCTGACCAGTCTGAAGAACCGACACAATTTTGCCCGGGACTTCAACTACCTTACCGGCAAGCCAATCCTGGCCATGATGCTGGACGTGGACCACTTTAAGAAGTTCAATGACAACTTTGGCCACCGCTACGGCGACGAAGTCTTGAAGAAGATCAGCCAGGCCCTGCTCAAGATCTACGGCATTGGCCACTGCTACCGGTACGGGGGGACGAATTCCTGGTGCTCCGCGACTTTACTGATACTGACACGGTTGCGGAAAAAGACCGGCAGTTCCGGAAAGAATTGGAACATGCCCGGGTCCTGGATCTTTACATGAACATAACCGTTTCTGCCGGCTACGCCTACGGGATCGCCAATAACAGCGACGAGATCAAGAGCATGATCCGCCTGGCCGACCACAACCTTTACCAGGTTAAAAAGAACGGCCGCAAGGACATCTGCGGCAGCCTTTTCCAGCCGAATTTTTTGAATATGAGTAAAAAGAAACAGCGTGAAAGCTTAATTTGCTTTCACGCTGTATTTTTTGTGGCAGGTAACGGCCGGCAAAGGCAAGGGCAGCCTTGGCAAAAGCAGTATTGCTAATAATGCTTGGGGCCGCGTTCAAGCCGTCAAAGATGGCCGGAATAATCGTAAAGTAAACCGCAAACTTGTAAACTGCCGGATCATTATTGAAAAACTTGCTGGTCAAGCCGCAGAAGATCAAGGCAATGGCCAGGGGGTAGAGGAACATCAAAACCGGAGTTGACCAGGCGATGATGGTGGTCAAGCCAAAGTTGGCAATGGCAAATGAAAACAGGCAGTTAAAGGTCAGGAAAGTCCGGTAGGAAATTTTTGGAAAACGCTTGTGGAAGTCCTGGGCAAAGGCAACTACCAGGCCGATGGCCGTGGACATGTAGGTGATGGTAGCCAAGGTCGCCAGGAGGGCTTCCCCGAAAGTGCCCAGGTAGTGGTGGGCGATTTGGGCAAAAGCAATCCCGCCGTTTTCAGACAATTTGAAGTAGTGCAGGCTGCCGGCGCCCAAGGCAACCAGGATAAGGTAGATGATGGCGATGCCGGCAAAACCGATGGCACCAGTCTATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCACATCGGTCCCCTTTGATTGGGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTCGATCTTCTTGGTCGTCCCGATGACATTCTGATCGTTCTTTGAGGACAAGAGTGATGAAGCGATTGGGACAAAGGAGGATCCATCAGTCCAACCCATGGTCATCATTCGAAAGCCCTTCTTGTAGGTCATCGAAACGTGGTCGAATACTTTGGCAGTCAGCTCAGTCTTCTTGTATCCAGTTTTAGAGTAGAGCGAATCGTCAAAGACGAAGCAATCGGCACGTTGGTCAGAAGTCAGATCTTTCAGGTGCCCATTGACGATCCTATCAGCTAGCAGAATAGTGAGGCGAAGCCAGTTGATATGTGGGTTCTGCATGAATCGATAGTAGGTGTTTTTGGAGAAGCCAGCAGTACACTTGCCAGACTTCTGTTGCATATACATGCTTCTGTCTCGAAACACATTACTGAAGATGTATGAAAGGACCGACCAAAGTGGGATTCCTTTGGACTTGCGGAGCCCACATCTACGGAGAAGCTCCATAACTTTGTAGTACTTGAAGAACTTTTCAACAGAACGAGAAATTTGGGGTTCGTTTTTGGTATCGAATGATGGTAAACTAGACATAGCACAAGCCTTTCGTTTGATATTGATGATGTTGTAGTTGAATTATATCAAGCGAACAAAGGCCTTGTGCTTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACAAGCCCACTTTTGTAAGTGGGAAGTTTAAGTCATTATTAAATTTCCCTTTTTAAGACATATATGTATATCAGACCATTTTCTGTATTTACAGGTACACCCCATAAAAGCACAAAAGAAGCTCGGTCCTGTGGACCTGAGCTTCTTACATAGGTCTCATTATACTATTAATTAAGTCTAATATTTAATATAAGATTCTACGCGTGGTGCTAGTTAAATCGTTTTAGTTAATAAAAAAGTCCAATCGGACTAGACTCAAGTTGTAGTATTCAATAGAAAAGAGTCTGATCTGATTGAACTGCCTTAAGCTTAAGCGTTTTAGTCATCCTAACACAAGTTGGTTTTAAGGATTTAGTCAAAATTTGCCGGTACTGGTATCGTTTATCTGCTCCGGCTGAATTTAGTCAACGGCGAAACATCAACCAGGTAAAAGCTACGGACAGTTTAATCTTGGCTTTGCTTATCTGGCAGGCCAAGACTGGAATCGAATCACAAAGAAGGTTCTGCGAATATTGGCTATAAGGCAACCAAAAAGATCTACTATTATGGTTTCAAAGTTCATGCGATTGTCAGCGACGACGGCTATGTTCTTGATTATGCCGTAACCCGCGCCTCAGTCCATGATGCCAAGGAAACGGTGGAACTAATGAAAAATACTCATCCAGCCAATCGCTAGCTGCTTGGCAATGAGGGCTATTTAGGCAAACGATTGCATGATCGATTAAAGCAAATGGGCTATGAACTGTGGACGCCATATAAGAAAAACATGGCTGGCGCCAAAAAGCACAATGATCGTCAATTGATGGCTATTCGCAGAACAATTGAAAGCGACTTTTCACTTCTAACTCATTACAACGCTGAGAACAATCGAGCGCGCAGTTTAACTGGCTTTCAAGCACGATTAGAAATTGCTATTCTGACTTATAATCTAGCTTATTGTCTAGAACGATTTAACTAGCACCACGCGTAAGATTCTTATATTGCATCCCCACAATGCAATGTTATTTATATTTTTATAATGTATTTCTAAATCAATACGTTTTATATTGTATAAAAGTTATTTAATAAAATAAATAGCATTAGTAATTTTTTTCTAAAAAATAAGGCTCCTGTTTTCACAGAAGCCTTTTCCAGTACGCTATTTCTATTTTAATGCATCAGTAGCAAATGATCTGTTTTCTAGGGACTTGAGTAATGCGTCCGCAGTATCTAAAGCTGTTAATAAAGGAACATTTTGCTGAATCGCCATTTGTCTAATAATAAACCCATCCGAATTCTTTTCAATATCATGCCCCATCGTATTGATTACTAAATCGATCTTTCCATCGCGTAATTCGTTCAAGATGTTATCGTCTGCTTGCTCATCTTCATGTACTTTTGTCACGAGTTCTACGTGCAGGTCGTTCTTTTTAAGGAAGTTGGCTGTACCCTTAGTTGCGAAGATTCTGTAACCGATCCGAGCAAATCTCTTTGCAATCGGCAAAATCTTTTCCTTATCTCTATCTTCAATAGTAAGAAGGACATTACCATTTTCAGGTAGCTGCATCTTTGCACCTGCAAAAGCCTTGTAGAGTGCCTTAGCAAATGTATGATCACTACCCATTACTTCACCAGTCGATTTCATTTCTGGTCCAAGGTAAGAATCAACATCAGCTAATTTACTAAAGCTAAAGACCGGTGCCTTAACACTAATCATTTCTGGTTCTGGAGCTAAACCATCTGCATAACCTTGCTGCTCAAGACTTTCTCCCATGATCACGCGAGTTGCAACTTGCGCCATTTCAATACCGGTAATCTTACTCAAGAATGGCACCGTTCGACTTGCACGTGGATTTACCTCAATTACATAGACATCCCCATCGCGCACAATAAACTGAATGTTCATGATTCCCTTACAGTTCAAAGCTAAAGCTAATTTCTTAGTCACATCCATAATCTTTTCTTCAACTTCATCACTAAAGGTTTGTGGTGGATAGACTGCCATAGAATCACCTGAGTGAACGCCCGCATGTTCAATGTGCTCCATAATTCCTGGAAGCAGTACTGTCTTGCCATCAGAAATTGCATCAACATCACATTCACGTCCATCAAGATAATCATCGACCAAGATAGGATGATCTTCTGCAATATCGGCGTGATCATGCAAATATTCTTCTAATTCATCCTTTGAATAAACGATCTCCATTGCCTTGCCGCCTAAAACATAAGATGGTCGAACCAGCACTGGATAACCTAGTTGATCAGCTGCCTTCATTACTCCTTCATGCGTCGTTGCAGTCAAACCTTGTGGTTGATGCAAATGCAAGCTCTTAATAATCTGATCGAATTCTTCTCTATCTTCTGCTCGATCAAGATCCTTAACCGTTGTTCCTAAAATTTTAACGCCATGTCTTTCAAGACCGGCCGCCAAGTTAATTGAGGTTTGACCACCGAATTGCACGATCACGCCTTCAGGCTGTTACAAGTCGCAAACATTCAAAACATCTTCTAAAGTCAGTGGTTCAAAGTAAAGCTTATCTGAAACCGAGAAGTCTGTTGAAACAGTTTCGGGATTAGAGTTAATGACAATGGCTTCATAGCCCATCTTTTGCAAAGCCTTAACCGAGTGAACTGTTGCATAGTCAAATTCTACCCCTTGACCGATGCGGATCGGGCCTGAGCCAATAACGATCACTGATTTCTTACCAGATTTTCTACTTTCATTTTCACCATCATAAGTGGAGTAAAAGTATGGCGTGGTTGATTCAAATTCAGCGGCACAAGTATCAACCATCTTATAAACTGGCACAATGCCATTAGCTTTTCTCAAATCTCTTACTTGATCAGGATATTCATGCCATAGTTTTGCAATCGTTTGATCACTAAAGCCATATTTTTTAGCTAGACGCAAAACGTCTAAGTCATCTGGATTTGCCTCAATTTCTTTTTCCATCTCAACCATGTGCTTTACAACATCTAAGAAATAGAAGTTAATCTTAGTTAATTCATGAACATCTTCAAGTGAGTAGCCGCGTCTAAATGCTTCAGCGAGATAAAATAATCTATCATCTTGCGGTCTAACCAATTTTTGTTCAATTTCGTCATCGCTTGCCTTATGTGCCTTAGCTGAGTACAAATCTTTTTCATCAATTTCAAGCGACTGCACAGCCTTTTGCATTGCTTCTTCAGCTGTACGACCAATTGCCATAACTTCACCAGTTGCCTTCATCTGCGTTCCTAACACGCGGTCAGCTTTAGGGAATTTATCAAATGGAAAGCGTGGAATCTTGCAGACCACATAGTCAAGTGCTGGTTCAAATTCGGCATAAGTAGTACCAGTTACTGGGTTCTTGATTTCATCTAAAGTCATGCCGATCGCAATCTTAGCAGCCATCTTGGCAATTGGATAACCTGTTGCTTTAGAAGCCAAAGCACTTGAGCGAGAAACTCTTGGGTTGACTTCGATTACATCATAATCCAAACTATTAGGATCAAGTGCTAACTGAACATTACAACCACCTTCGATTTTTAATGCTCTAATCAGTTTTAAAGAACAATCTCTAAGCATTTGGTATTCTTTATCAGACAAGGTTTGGCTTGGTGAAAAGACAATTGAATCACCAGTATGAATACCAACCGGATCGAAGTTTTCCATACAGCAGACGATCATCGCATTGTCACTTGAATCGCGCATTACTTCTAATTCGATTTCCTTGTAACCTGCAATTGATTTTTCAATTAAACATTCCGTTACAGGAGACAATTCCAAACCGTTTTTAGCAATCTCGGCTAATTCATCATGATTGTGACAAATACCACCACCGGTACCGCCCATAGTAAAGGCTGGGCGCACAATGATTGGATAACCGATTTCATCCCCAAATGATAAGGCATCTTCGACTATCTTGACTGTCTTAGATGGTGGAACGGGCTCGCCCAATTTTTGACAAAGTTCTTTAAATTTTTCACGGTCTTCTGCTTGTTCAATTGAAGCAAGCTTGGTACCTAAAAGCTCAATATGGAGTTCATCCAAAATTCCTGTTTTTGCCAAAGCTAAAGCCATGTTTAATCCCACTTGTCCGCCGAGTGTTGGCAAAATCGCATCTGGATATTCCTGACGGATAATTCTAGAAACTGAATCTACTGTTAAAGGTTCAATATAAACCTTGTCAGCGATTGTAGTGTCAGTCATGATTGTCGCCGGATTAGAATTGACTAAAACAACTTCATAGCCTTCGTCGCGCAAAGCCAAGCATGCCTGAGTACCAGAATAATCAAATTCTGCGGCTTGGCCGATAATAATTGGGCCTGAACCAATCACCATAATCTTATGAATATCTGTTCTTTTAGGCATGACGCTCTTCTTCCTTTCTTTGATCAATCATTGACATAAAATCATCAAATAGCGAATCTTCATCGTGTGGACCTGGCGTTGCATCTGGGTGAAACTGAACTGAGAAAGCAGGATACTTTTTATGTCTAAGTCCTTCCACAGTACCATCGTTAACTTCTTCATGAGTAATCATTAAATTATCTTTATCAATTGATTTGGCATCAACTGCATAACCATGATTTTGAGAAGTAAAACCGATGTGTCCGGTCGCAATCTCGCGGACTGGATGGTTAAAGCCGCGGTGGCCGAACTTCATCTTGTAGGTTTTAGCACCATTCGCTAAGGCAAAAACTTGGTGACCCATGCAAATTCCGAAGAGCGGTACATGCTTTTCTACCTCTTGTACCATCTTGGTTGCTTCGATCATTTCTTCGGGATCACCTGGTCCGTTTGAAAGAAGAACACCGTCGGGATGCAAGTTTAATACTTCTTCTGCAGTTGCGGTATATGGCAAAACAATGCAGTTGCAGTCGCGCTCAGCCAATTCACGCAAGATGCTGTGTTTAATACCGAAGTCAATAACCACGATGTTGCGCTTTGAACCTGGAACTGGGTAGGCGCTCTTAGTAGAAACGCGGCTAATCACGCCTTGAGTAACATTTTTGTGTTTTAATTCCTGAACTATTTTTTCTGCGTTTTCTTTAGAATTAGCAATCTTGCCGCGCAATGTACCATGTACACGCAATTTTTTAACTAATTCTCGTGTATCAATACCTTGAATGCCTGGAATATGCAATTGCTTCAAAAATTCTGGCAAAGTAGTTTGCATCCGCCAATTATCAGGATGGCGGGCAATTTGGTGGCAGATTACGCCTTTGATCTGTGGCTGCAGTGATTCATAATCGGCTAAGGTAATGCCGTAATTGCCAATTAATGGATTAGTGAAAACCAAGATTTGGTCGGCATAAGATTGGTCAGTAATTGCCTCTTGGTAGCCGGTCATCCCCGTCGTAAAAACAACCTCACCAGTAGTTTCTCGATCGCTGCCAAATCCTTCACCAGCATAAATGCTGCCATCTTCTAAAATTAAATAGCGCATTATTTTTCTCCTCTTTGATATACAACTTCACCATCAACCATTGTCATTACCGTTGCTCCATAAATCTTTTGTCCAGTAAATGGGGTGTTGATGCCTTTTGATTGGTAATTTTTTTCTTTTAATTCTGTTTCATGTTCTAAGTCAAAAATCGCAACATCTGCTGGGCATCCGGGTTCCAGCACTCCTGCCTTTTTTAAGCCAAATACTTTAGCCGGTTGATCACTCAGCCAAGATAACAATTGCTCTAATGTAAAGACCTTATCTTCTTTAACAAATTTGGTATAAAGCGTGCTAAAGGCTGTCTCACTACCGGTAATTCCGAAGGCCGCATTTTGCATTCCACCTTGCTTTTCCTGCTTGGCATGCGGAGCATGATCAGTTGCAATTAAATCGATCGTGCCGTCCAGCAAGCCTACTAATAAAGCTGCTTGATCTTCTTTACTTCTCAAAGGTGGATTCATCTTGTAATAGCCATTGTCCTTAGGAATATCATCTTCGGTTAAAAGCAAGTGGTGTGGTGCGGCTTCGCAAGTAACATTGATTCCGCACGCTTTTGCCATTCTGACTAATTCAACGCTAGTCTTAGTTGAAACATGGCAAATGTGATAATGGACACCAGTTTTTTCAGCTAGTAAAAGATCTCTAGCAATCTGAGTTGTTTCAGCTAATTCAGTTACTGGTGGTAAATTCAGTTCTTTTGCCTTTTCTCCTTCATTAACGATACCGTGATTAAAAAGTGAATCATCTTGCGCATGTGCTGCTACGATTAGATCATTTTTCTTTGCTTCTTGCATGGCCAGATACATCGTTTGAGCCGTTTGCACGCCATGACCATCGTTACTGAGAGCAAAGGCACCAGCTTTTTTCAATGCGGCATAATCAGGCAATTCATCTGTTGTTTCATTTTTAGTAATTGGACCATATTGAAAAATATGCACGATGCCTTTTTGTTTATTTTCTTGGACCATCTTTTTCATTAAATCAGGCGTATCTGGAACCGGCGTCACATTTGGCATCGCACCGACTGTAGTAAAGCCGCCATGGGCTGCAGCCTTACTTCCAGTTTCGATATCTTCCTTATATGTTTGTCCAGGATCGCGGTAATGAACATGGACATCAACCAGTCCTGGGCTAACCAACTTGCCAGTTGCATCGATGACCTTGTCGCCAGTTAAATCAGTACCAATCGCCTTGATTTTTTGATCTTCAATTAGCACATCAGCATGAATCAAACGTCCATTTTGATAAACTGTTCCGTTCTTAATTACTGTTTGCATTATTCAAGCCCTCCGAGTTTTCTGCCACGCAAAACTGCTTCCAACATGGCCATTCTCATAAAGACGCCGTTTTCCATTTGGCGAACAAACATGCACTTGTCACTTTCTACCAGGTCGCCACTTAATTCGACATTGTGATTAATTGGACCCGGGTGCATGATGATCGCATCTTTTTTCATTGCTTCATATCGTTTGTGATTAATACCGTATTTTTCATGATAACGATGTGCATCAAACTTCTTTTCATTAGGATCACCGCTATGACGTTCGTGTTGCACCCGTAGCAACATCATGACATCCATTTTAGGGATCAATTTATCAAGTTCTTCATGCTTCCCATATTGATCGAATTCTTCAGAGTACCAACATTCAGGGCCGGAGAAGTAAACTTCAGCACCGAGTTTAGTTAAAAGTTCCATGTCACTTTTAGCTACGCGAGAATTAGTGATGTCACCTACGATTGCCACTTTCAAACCTTTAAAATGACCAAAGTGTTCATGAATAGTCATCATATCAAGCATGCATTGACTGGGATGCTGACCTGAGCCATCTCCTGCATTAATCACACCGATGTTTAATTTTTGATGCTGCTTTAAATTAATCAAATCCTCGTAATATTCATTTTGTGAGTGGCGAATTACTTCAAGGTCGATGCCAAGTGCATTCATCACTAGTGAAGTGTCGTATAAGGTCTCACCCTTGTTGACAGATGAATGAGCTGGATCAAATGGAATCACAGTCAAGCCTAACTTTCTTTCAGCCATCTCAAAGCTGGTGTGGGTTCTGCTTGAATCTTCAAAAAACATGTTAGTGACATAGACCGGACTAGTTAACCTAGCTACAGCTCCACCTTTTTTGAAATATTCCGCACGCTTAATCAGAGCCTTTACTTCATCATTTTTCAAATTTTCAACACTAACAAAATGTGGTAAAGCGACAAGATTTAAATTTTTCATATTCTGTTCTTTCTATCAAAAGAAGCCTGAAGCATTTAATTGCTCCAGGCTTCTTCTCCATATTTTTGTATACGAAAAACTAAGCAACCCTTCTGGCCCTCTCTGGAGTCAATTAAATGGTTGATTATTTATCTGTTATTCTTTTTACTTAGGCAAAGCCTTCAGTTCAACTGAATCTTTGCCATCTTTTTCAACTACATTAACTGCAACTTGTTCATCTGCAGAAGTTGGAATATTTTTACCAACAAAGTCTGCTCGAATTGGCAATTCACGGTGGCCGCGATCTACTAAAACTGCAACCTTAATCAAGCTTGGTCGACCAACGTGCATCAACGCATCCATCGCTGCTCTAATTGTCCGGCCTGTGTAGATTACATCATCGATTAAAACTACTCGCTTATTGTTGATGTCTACACCAACGTTGTCTGAATTAACCACTGGATCTTGCTTTAGTAAAGCATCATGTCGATCATCACGGTAAAGTGTAATGTCTAATTCACCAACAGGCACATCTACGCCTTCCAATTTTTGAATTCGATCATGAATTCTATTAGCTAGATGAACGCCACGTGTCTTGATCCCGACTAAAACTAAATCATCGGTTCCCTTGTTTTGCTCAATGATTTCATAGGTAATTCGCGTTAATGCACGCTTAATTGCCAATGCATCCCATATTTCTTTTGCCATAAAATTCTCCTTACTCTGCCCATGAAAAAAGCTCCCGGCCTACATTGAGACTAGGAGCTTTTAGTAAAGTAAAACTATTTATGTGCTAACCTCACGGGACTAATTTTAAAGGACATTCATTGCTTTAAAGTTACTGTAATTGAATATGTTTGTCAAGAGTTAATTAAATTTAACTTGACCGACTAAATCATTGATATCTTCAATGCCTAATTTTTCTAGTTCAGCCGGTAAATTCTCAGCAATATGTTTAGCTGCTAATTCATCTTCAAAATGAGCGCTGCCAACGGCTACGGCATTGGCACCAGCCAGTATAAATTCGATGACATCTTGTGCAGTACTAATTCCGCCCATACCGATAATTGGCAATTGCGTTACTTGACGAACTTGGCTAATCATACGAATAGCAATTGGTTTGACCGCTTCTCCAGATAAGCCACCCATGTTATGACCTAACAACGGCTTTCTAGTTTTAACATCAATCCGCATTCCTAAAACAGTATTGATCATTGAAATCCCATCGGCACCACCGGATTCGGCTGCTTTAGCAATCTCAACAATATCAGTCACATTAGGAGTTAATTTGACATAAATTGGCAAAGCAACTGCCATCTTAATCTTTTTGGTTAACTCTTCAACAACACCGGCATGAACGCCAAAACTCATGCCGCCTTGTGCCACGTTAGGACACGACACATTAATTTCCAACGCATTAACTAAGCCAGAAGCAGACAACTTTTTAGCGACTTCGACGTAATCATCTTCGCTGTCTCCGCCTACGCTGGCCATAATCGGTAAGTCAAGATATTGATGACGTAACTTAGTCAATTTTTCACTAATTACCTGATCAACCCCGGGATTAGTTAATCCTACAGAATTTAAAACGCCATCTTCTAAGATCGCAATTTGTGGCTGCGGATTACCAGTCGTAGCGTGCGGCGTCGTTGTTTTAATCACCATTGCACCTAAGTCGTTTAAATCAAATTTTTGTGCGGCTGGCACATCGCCAAAACCAAAGGTGCCACTAGCCGGCATCACTGGATTCTTCAAATCTAGACCTGGTAAATTTACATGAGTATTAACCATAATTTTCCTCCAAAATGAATGCTCTCTGTCATTCGCTTATTTTTTAAGAATTGATTCTACACGCCTTTTATTTTTTTGCAAGGTCAAAAATTTTCTGTTGTATTTTCTAATCAGGGGTGTTAAACTTCATCTTGATCAAACTTTAAACGGTACAGAGAGACCGCAAGTTCAAAATATTGGCTTAAATTTATCTAGGGAAAGTCTATACCTGGTATCTCTCTGCACTGGTATAGACTTTTTTGTATGGAGGCAAAATGAAACCTGTAATTGTTGCTATAGACGTTGATAATCAAGAACAATTAACAAAAATCTTACTTAAACTTCCCACACCAAAAAGAACTATGAAGCCTTGAAAACTCAATAGTTTAGCCAGTAAATATTCAATTAAGCTGCTAATGATGGCGATATAGCCTCTTGCATGTACTTCGGGAGGCGTGAAATGAAAGCGTTGGTGAACCTTTCCATCTGCTCTTCTGTCGGTTGGAAGATCTCTTTAACACTCTCGAACATGGCTTCCACCAGGATTTGTAGGGAGTGATTGAAAGTGATGTCCGCAAGCTCGTCTACCATGCAATAAAAGAGCTCGCCTATTGTCCTATCATCTTCATCATCTCGCTTCTCAACTGACATGAACATGTAGCGCAGAAAGACGAAAGCTGTATGGGCAGTCAATGCATCATATGACAGGCGAACGATTTCTTACGCAGACTATTCTGGCATCAATCTGGGCACCATCTTTGGCAGGGCCGCCAAACTTTACAGGGACGGACAGGAGATATCTTGAACGACCTCGACGCTTCTTGCATGCGTTGAAGATCTGCTTGACGTTCATCCGCTTTTCTTCGAACTCGTATGTGATCTTGGAGCTTTTCTTCACCATGGCAATTACGTTCAAACCACGTTGACTGATTTGGACAATCTGATGAGGATTGGAGAACCAAGTGTCAAACATGACGTACTTGGCAGTGAGCCCTGCTTTCAAGGCTTGATCGAGCAGCTGGATAACTGCATCGGTCCCCTTTGATTGGGCCATAATCCGCCTCTTGGCCGCGATTGTGCGCTTGTCTTTGATGGTGGCGTTACGATTTACAGTTATAAAAATAACGTTTGGACTGGCGATACCTTTTTAAACGCTCAGTAACCACTGATAGATAATTACAATCTACCATATGAAAAACTGTGCGCTTGAATTATTTAGGGTTGCATACAGCGAATTAAAGTGTTAAAATTAGTTAAATTGACATATACGGAAGTTATAAGTATCATTCATTTTTGCTATCTATTATTTTCCTAGATGTTAATTCAATTTGGTTACTTTGGTTTGATTCCTAGGAGGATATATATATGCAAAATGGTACTGTAAAATGGTTTAATGCTGATAAAGGCTTTGGGTTTATCACTGGTTCAGATGGAGATGTATTCGTACACTTTTCATCAATTAAAACTAACGGTTTTAAGAGTCTTGAGGAAGGGCAAAAAGTTAGTTACGATGTTGAACAAGGCAATCGAGGACCTCAAGCGACTAATGTTGTTCCACAATAATTTGTCTAATACTATGAAGAACTGCTTTTGATGGAGCAGTTCTTTTTTATGGCTCTTCGTCAAGAAGTACTGATAGAAAAATTTGGATAACTTTTCAAACAGCTCGTGTCTGAGATTGGACATGAGCTGTTCTTTTATTCTTCCAGTTGATGGCAAAGTATGAGTTAGGAAGGGCAAGCAGGATTCGAGCCCGAAAATTAAAGAAGTTACGAAAGCCTGGGGAAAGCACCAGATGTCAGGGCTTGTTTGTCGTACCTATGGCACATTTTTGGTGTTGGAAAGTATTTCCATTCCAAAAGTACTAGGCCCTAATTTAAAAAGCCATTGATAATGGATCAAAAACGGCCAATAGGGTATACCCTATTGGCCGTTTTTATTTCTGTGCTATGCTAGGAATTACAAGTGTTCATTAGAACTGTCCAAAAGGAGAACTGTAAATGGCTAAAATCGGTTATGCGCGTGTGAGTTCCAAGGAGCAACATTTAGATCGACAGTTAGCGGCTTTAAAAGACGTTGATAAATTATTTACGGATAAATTAAGTGGGGCTAACACTAATCGGCCAGAACTGCAAAAAATGCTGGCCTATATTCGTGAGGGTGATATTGTAATGGTCACTGAATTAGATCGCTTAGGCAGAAACAACCAGGATTTAACTAATAGTTTAGCCAATAAATATTCAATTAAGCTGCTAGTGATGGCGTTAATGCCTCCTGCATGTACTTCGGGAGGCGGGAAATGAAAGCGTTAGTGAACCTTTCCATCTGCTCTTCTGTCGTTGTGCTTTTTTATTGGCTAAACTATTGAATTTTCAAGGTACGAGCCCACGTTTGCAAGTGGGAAGTTTAAGTTAATATCTGACTAGCGGCCTGTAGTGCTTCCTGCTTGCATCCCCTAGTACAGGATAGTACAGGATTTTAGGAAGCCGCCCCGATTCGGGGCCCCACAAAAAAGGCAAAAAAAGAACCGCCTGCTTAACGCAAGCGGAGAAAATAGAATCACTACTTAGATTCTATCATAGGTTGTCTTAGTAATCATGTTGAAGCCTGTGAACGCATCCGAATCATTGCACCAAATATTGCACCGGATTTAGTAACAACATTTTCTATCCTCAGTTAGTTAGAGTTGGCTAGATTGGAAAGAATCCCGTAGCAGCAAGCATTGAGAGACTTCTAGATTTGCTTAAAATTCGGCCAGGCTTAACCCCATGTTAATGATCAAATCATCGTTTTGATTTTAACACAGTTTTCCTTGCTCTGACGGGCTTTTTCGGCAATATGCATAAAAAGTTCTAAAGCTTTCTTTGCAATTTGCCCCGGCGGGGACTGGGCACGACCTGCAGGCAGGTGGCCAGGATAATCAAGACCCCGCCCGCCATCTTCATGATGCCAAAGTCGCTGCCCAGAAGGGTAACCGACAGAATCGTCGCTACCAGCGGCTCAAAGGCCTCCAGCATGCTGACCAGGCCGGCTGAGATGTACATAACGCTGGAAAGGTAGAGCGAGTAAGCGAAAACCGTACCGGCGATCACGATGTAGATCACCAGGCTCCATTCCTTAACCGTAACTCCAGTGGCGGGCATCACGGCCAGGGCCGGACTGAGGATAATCCCGCCCAGCAACATCCCCCAGGCCAAAATAGTGATGGTCCCGTACTTTTTAAAAAGCTTGGCCGGCATGGCAATGGCCAGAGCCTGGGTCAAGGCACTGAAGAAGCCCCAGACCAGGGTTTTAGGCGTCACCGCCAAGTGGCTGAAATTCCCATTGGTCACCAAAACCACCGTCCCGACCACTGCTAGCAAGACCGCGATCAGATCGATTCTCCGGGGCATTTGCCGGGTTTTAGCCGCCATAAAGCAAATGATCAAGACCGGGGCCAGGAAGACCAGGACAGTGGCCGTCGGCGCGTTTGAGGCCGCTACCGTGTAGAAGTAGGTAAACTGGGCCCCGGTGATGCCCAGCATGGAGAAAAGGGCCGCGTAGAGAAGGTCCCGGTGATTTTTGAAAATAGCAAAGGTCCCCTTCCCCTTGTGGACCAGGGAAATGAGCAAAAGGCTAGCCCCGGCCAGCCATGACCGGACGTCAACCAGCCAGAAGGTATTGATATTTGGGCTTTGGTAGAGCATTTCCGCCGCCGTCCCCGAGGTCCCCCATAAGGCAGCCCCGGTAATTGCCAACAGGATTCCCAAATGCTTGTCTTTCATTTCTTCACCGCCATCGTTTCACGTGTAACATTCCATTTCTGCCTGGAAAGACAGAACCTTTTACATTATGACAGTTTTATGAGATCTTTGTTAGTCCCTTTCTGAAAAAAGGCAAAAGAAAAAGCAGCGAAAACGCTGCTTGCTTCTTTTCTTCTACTGCTTCTCTTCTTCCGCCTTATCGATCAAGTACTTGAAGAGACGGTTCATGATGGCTGCTTCCGGGGCAGGGTTAGCGTGCATTTCTTCCGGGTGCCACTGCACGGCGATCACCTTGCCGTCAGTGCTTTCCAAAGCTTCCGTCACCCCGTCGCTGGCGCTGGCTGATTCGGTCAAGTCCGGAGCCACTTCCTTGATCAGCTGGTGGTGGAAGGAGTTGGTCATGAGGCTGCTTTCCCCCATGATCTTTTTCAGGGTTGTCCCGCTCTTGATCTTGACCACGTGGGTGCCCACGTCAGGCCGGATAGCCTGCATGTGCTTTAAAGTGTTGCCTGGCCGCAAAGACAGGTCCTGCCACATGCTGCCGCCGTGGGCCACGTTGATGATCTGGGCGCCCCGGCAGATGCCCAGGACCGGTTTGCCGGTTTCTTCCGCCCGCTTCAAGAGGGCCATGTCGAAGGCATCCCGGTCTGGCCAGGTTTCCCCGCTCTTTTGGTCAATCTCTTCCCCGTACAAGTGGGGGTTAAGGTCATGGCCGCCAGACAGGATCAAGCCGTCAACTAAGTCCAGCTGCTTAAAGGCCATTTCTTCTCCGCCAGCGGTAAAAGGAATTACCAAAGGAATCCCGCCGTTCTTGAGGACTGAATCCACGTAAGCAGCGTTGACGTAGGTCCGGGGCTCGCCCATGAAGGGGCCGGACTGGATCGTAACTTCTGAAGCTGAAATACCGATAACTGCTTTTACCATCTTATTATCCCATGTCTACAAACTTCTCCACCGCCAAAGCGATGCCGTCCTGATTGTTGCTGGCCGTGACGTAGTCAGCCGCGGCCTTGATCTCGTCGATCGCGTTGCCCATGGCCACCTTGAAGACCCCAGGCAGCTGGAAGTCAGAGAGGTCATTGTTGTTGTCGCCAAAAACCATGGCTTCTTCCGGCTGGATGTTCAAAAGGTCCAGCAAAGTGGTTAGGGCCTGGCCTTTGGAGGTGCCAGGAGTATTGAATTCCAGGCACTGGCCGCCGGAAGCAGAGATTTCGAATTCCTGCTCAGTTGCCGGACTGAAGCCAGCCCGGAACTTCTTTATCTTGCTAGGCAAAGAAACAAACTCGCCCTTGATGAATTCGTAGTGCTGACCGGGCACCATCCGCTTGACCCCCATGTTCCGGGCCTTGGCCAGAAAGCCAACACCGAAGGAACTGCCCTTTGGGGCTACATAGAAATCCTTGGTGTCCATGAAGTAAGGACCAAAAATCCCCGTCTGCTTCAAGGCCAGCATGTGCTCCACGTTTTCATCAGTCAAGGGGCTGGCGCTTAGGACTTCCCCGTCCATCCGCTGGACCAGGCCGCCATTGTAGCAAATAGCAAAGTTGTCTGCCGGATCCAGCTTGAAGGGTTCAAAGACCTTCAAGACGCCAGGCAGGGGCCGGCCGGACAGGGGCACCACAAGAATTCCTTTTTCCCGGGCCTTTTTTAAAGTCGCCAGGGTCTTAGGGCTGACCTTCTTTCTGGAAGTCAGCAGGGTTCCGTCCAGGTCCACCGCGATCAATTTAATCTTCATAGATGTTTCCTTTCATATTTGCTACTATTTTACGGCAAAAGGCGGCCAGCGCCTAATTTCACGCTTAGTTTTCCTTGTGCTTGGAATTTTGGCTGTTGTTTGGCCCCGGCTTGACCTGTTGCTTGAGCAAGTACTCCTGGATAATCCTGACCACCTGCTTATTCTGCGGCAGGCTGGAGTGCTGGGCTTCTGCCCCGGTAACAGTCATCGTGGTATAGCTCTTGACCTGGTTCTGGAAGATGTACTTGCCGGCTTCCACGCTGCTTTCCGGCACGATCCCGTCGGATTCGTAGTTTTCCCCGCCGGACAGGGAGTAGACGATCATATTTTTCGGCAGGCGCTTGCGGTACTTGATAAAGTCCGTCATCATTTGCGTCTTGTACTTGATGCTCTTTTCACTGAAGTTGTAAGGCGAGCCCAAGGTCATCAAGCTCTTGATTGTGATTTCATCTGAATAGTTGTTGCTGTAGTAGTGTTCCAGCCAGTAGGTCCAGATCAGGCCCCCGTTTGAGTGGCCAAAAGCCTTGAAGTTGTTAAACATGTAAGTTTTGGCAATTTCGTAAAAGGCATCGTCCAGCCAGCCGGCCTGCTTCTTGATATTGCTGTAACCGTCATGGTTATTTTGGAAGCCAATCACGATAAAGGGCTCATTGTCCTCCTTTTTCATTGAACCAGAATAAGTCAAGGTCCCGTCTTCACTGATTTCCACCTTAAGCAGGCTGTGCTTATAAGGGGTATTCTCGTTGAGCAGGTCCACCAGTTCATTGAAGCGGTTGACGGTAGCACTGGAGCCGGGAACCATGATCAGAGGTGACAGTTGCGAGCGCTGGCGTTCAGCGTGCTCCTTGTTGGTCTTTTTCATCCAGGAATAGCCCGGAACGGCCAGCAAAATAATGATCGTCAAGGCAACGACGATCAGTTTCCAGTTGCGGCTCTTAAACATGACGGTCATCCTCCATTTCATAGTCCTTCAGCAGGATCTTGGTCCGGTTGTCCAGCTTGACGGCTGGAATCATCATGACCACGTCCAGGCAGAAGAGGAAGATGGTGAAAATCAAGGTCGGCCAGTTGCCGTTAGTGGAAAAAAACGGCACCAGAGGGCCTGGCGTCCCCGTCAAGACCGTGTAGACCGGAGTCGGCACGATATGCAGGAAAATCGCCAAAGCCGCGATCAGCATGTTCACGACTGGCACCAGGACCAGCTGAAGGGCATAAATCGGGTTGAGAATCACCGGCAAGCCGACCAAAAAGCCCCGGGACGAACTGAACAAAAGCGGCCAGAGGTTCATCTTAGCCACTGTTTCCCGCTCCTTCCGCCGGCCCCCGATCAAGATGGCCACGGCTAAAGCTAAAATTGCCCCGCAGCCACCCATCACCCCGTAAATCGAGATCATGGACCCGCCCAGGTAAGGATAAGGCACCTTCCAGACTGACCCCCGCCGCAAGACATAGGTCAAGTTGGCAGTCGCGGCGGCTGAACCAGCCACGTTGCTCATGCTCAAGTCAAGAATCGGGGCTTCCAGGCCCAGCCAGCTCAAAAATGAAGCTAGGGCCGTGGCCGGCACCGTCAAAAGCAGGTTGTTGGAATTTTCAACCGGTGACACGATGCTGGTCAGGCTAAAGTTGGCCTTGACCTTGCTGATGACCACATAGAGAATCCCGCCGATAGCGATTCCCCCGATTACAGTAACCAGGGTCGGCTTCAGAGCCTTGATCGCCCGGTCCTGGACCAGTTTGGTGTTCTCATAGTTGACAGACTCATAATCGGCCCCTAACCAATGGAAAACCTGCCCTACCCCATAACCCAGCAAGAGGGCAAAGGAGGTGTACTGGAAGCCCAAATAGCCCCCTGTAAGCAAAGAAATCCGTCCGGTCAAGCCCAGCTGAAAGAGATAGATCATGACCAAGAGACTGGTCAGAGCACTGATCCCGGCCATCGTCGCATCTTTACGGTAGATTTTAGCCGTAAAGGAAGCTGAGAAATAAACCGTGAACAGGCAAAAAAGGCCGAAGATGACTTCAACCACGCATTGTGACAGGCGGGTCCCGATGTCCCAGAAGCGGTCACTCATGATTTTGTCAAAATCAAATAAATTATAGATAAAACTTTCCGGCGCAAAGACGCTGTACTGCAAGACCTGGAAAAAGGCCCCGACCGTCGCGATCGGCATCAGAACGGCAAAGGTCCGCTGGGCCACTCTGAAAAAGGAGCGGCGGCGCAGCCAGATGCACCACTTGGCTAATTTGTCCATTTACTCTTTCCCCCACAAAAACTATATCAATTATACAAATTCCCATAGTACTTGAGCAAACTTTTGCCGCAAAAAACCGGACCAGAAATTGGTCCGTTTTAAAAAGTAACAAGAAATGTATTTATTCAACACTTGTAGCTGTTTCAGTTGCCAATGTGGGGTTAACCAGCATTACCAAACCGATGATGAGTGTTAGTAATCCCATGGTAGCTGCCTGCTTTCTATGATGTATGTGTTTAAAAAAATATAAAAGCCAAGGAAAACAAAAAGAGCCAGACTTCCGTCTGACTCTTGTCTCGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATCTCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAGTGAGAGCTGATACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCTGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCCCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGTGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAGACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTACGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCACCCCGAAGGGATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTTAATCTGCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTTGATTCTTGTCAACAAGTTTTTGATATTTATTTTTTGCCTCCGGCGAATTCCTTCTTCACCGCGACAACAAATATTAGTATACTCGCTATTTTTGAAAGGTCAAATCCACCTTTTCATTCGCTTTATCATGGGTACAGCCGGCAGAGTTGTAATAAGCGCTGCTTGATATGGTTTTGCCTTTGTCTTCGCTTACGGGGGAAAATCTTTTTCTTTGCGAGGAATAGTTCGGATTATCGTATTTTTTCCGGGAGAAAAAAGGTAAAACTTTTTATTTTTTTTGCTTTAAACAAGAAAAAACACTAGAGTGAAGCACTCTAGTGTCAGCAAACTCTTCATTTTTTACCAATATCCAATGCACTTGGTCCACAGCAAACCGCCACCCAGCCAAATAACATTGAAAATCACACCGATGATCGCGCTCAGCTTCCACCAGTCCTTGTTTGAAACATAGCCAGTACCGGACAGCATAGCTGCCGGGCCAGCTGAGTAAGTCGAAGTCGACAGGAAGACCGACACGCAGAAAGCCAGCATCAAAGCGGCCACCTACTGGCACGCTGCGTTCCATGTTCACTTGGTCGCCAGCCTGCAGATTTTTAAAAGTCGTCTTGGCAAAAGTCTGCGGCATCATGGTTACCGTAAAGCTGTCTTTGGAAAAAGCCTCCACCGTCAGGCAGCAGCCATTGACGGCGATCGAGTCACCGATTTTTACCCCAGCCAGGTTTTCCGGGAATGTTTTAACCGTCAAAACGATTGTCTTGCCTTCCTGCTCCAGGCGCTGAATCCGCGCCTTGCCGCTTACCAAACCACTAAACATCCTTGATCCTCCCATAGATTCTTACATCGTCGCCGACTTGCTCAGTTTGAACATCCTTTAAGTCCGGTGCTTCCGCGGCTACGACTGCTTCAGTCCCCCGGCCCAAAAAGCGGGGAGCGACATAGCTGATCACGTCATTGACCAGGCCCGCTGCCATCAGGCTCTCTTGCAAATGCGCGCCGCCTTCAGCGTAAATGCTCTGCACGCCTTGGTCTGCCAGAATTTTTATGCTGGTCGAGATTTTTCCATCCGGCAGGGCAAAAATTTTTACCTGCTTTTGCATATCCTGCTCCAAGAAAGCCGGATTTTCCCTCAAAATCCAGGTCTCAGCCCGCTTGTCGAAAAATAAGCGTAAATCCAAGTGCTCAAGCAGCCGGCCCCGCCGGTCCAGCACAACTCTGACTGGCGGGTGAACCAGGTCCTCGCTGGTCAAAAGCAAAGGATCGTCGATGATCGCCGTTTCTGACCCGATCAAGACAGCCTGGTAACCAGCCCGTTCCTGGTGTGGTGGACCCGGGTCCAGGCCTCAGCCACAGTAATCGCGGTCCGCTCACCCTTTTTCGCCAGCATGTGGTCCAGGGTCATGGCCTGTTTCAAAGTCACGTAAGGCAGACCTGTTTGGTAAAAGTAGTTGTAGTGGTCATTCAGCTGACTTGCTTCTTTTGCTAAAAGACCAGTGCTTACTTCAAGGCCTGCCTGCCGCAAAGCAGCTATACCCTTGCCCGTTACAAGAGAGTGGGGATCGGTTGCCCCGACCACCACCCGCTTGATCCCGCTGTCAATAATCAGCTGGGTGCAGGGCGGTTGCTTGCCGTAATGGCAGCAAGGCTCTAAAGTCACGTAAATAGTGGAATTGGATAATTGTTCCGGAGTCAATTTGGAGATGGTATCACGTTTCTCTTTTCAATCAGCAATTCCATGGGAATAAAAAGCAATAGAAACGAAAAAAAGCAACGACCTAAGTCGCTGCTTTAATTACGGTCCATGCGGGATTTGAACCCGCGATCTCCTCCGTGACAGGGAGGCGAGATAGACCACTGCTCCAATGGACCATATGGAGGATACAGGGCTCGAACCTGTGACCCTCTGCTTGTAAGGCAGATGCTCTCCCAGCTGAGCTAATCCTCCGATGCACCCAGTAGGACTTGAACCTACAACCTTCTGATTCGTAGTCAGACACTCTATCCAGTTGCGCTATGGGTGCGCTGGAATATTCTGTTTGCTAACGCTACTGCGTTAAGCGGAAGACGGGATTCGAACCCGCGACCCCCACCATGGCAAGGTGATGTTCTACCACTGAACTACTTCCGCATGTTCGCTTAATGCGAGATCGGGAAGACAGGATTTGAACCTGCGACCCCCTGGTCCCAAACCAGGTGCTCTACCAAACTGAGCCACTTCCCGGTACTCCGCCTGTCAGACTCGAACTGACGACATCCTGATTAACAGTCAAGCGCTCTACCAACTGAGCTAAGGCGGAATGTTGAGCGCGGCAGCTTCCTATCCTCGCAGGCAGTTTCCCACCAACTACTTTCGGCGTTAAGAAGCTTAACTACTGTGTTCGGCATGGGAACAGGTGTATCCTTCTTGCCATTGCCACCGCACTCTTTGCTTGAGCTTGCACGCTCAAAACTGAATATCTTTTACCAAGTCAAAACCTCATTGCTTCGCTCTTTTGGTCAAGTCCTCGACTGATTAGTACCGGTCCGCTCCAAGCCTCACGGCTCTTCCACTCCCGGCCTATCTACCTCATCGTCTCTGAGGTGTCTTACTTTCTTGAAGAAATGGGAAATATCATCTTGAGGGGGGCTTCGCACTTAGATGCTTTCAGCGCTTATCCCGTCCGCACATAGCTACCCAGCGATGCCTTTGGCAAGACAACTGGTACACCAGCGGTGCGTCCATCCCGGTCCTCTCGTACTAAGGACAGCTCCTCTCAAATTTCCTGCGCCCACGACGGATAGGGACCGAACTGTCTCACGACGTTCTGAACCCAGCTCGCGTGCCGCTTTAATGGGCGAACAGCCCAACCCTTGGGACCGACTTCAGCCCCAGGATGCGACGAGCCGACATCGAGGTGCCAAACCTCCCCGTCGATGTGAACTCTTGGGGGAGATAAGCCTGTTATCCCCAGGGTAGCTTTTATCCGTTGAGTGATGGCCCTTCCATGCGGTACCACCAGATCACTAAGCCCTACTTTCGTACCTGCTCGAGTTGTCTCTCTCGCAGTCAAGCTCCCTTTTACCTTTACACTCTGCGAATGATTTCCAACCATTCTGAGGGAACCTTTGGGCGCCTCCGTTACACTTTAGGAGGCGACCGCCCCAGTCAAACTGCCCGTCAAACACTGTCCTCGGCCTGGATCACAGGCCTGAGTTAGAGCATCCGTCAAGCAAGGGTAGTATCCCAACAGCGCCTCAGATAAGACTGGCGTCCTATCTTCTCCGGCTCCTACCTATCCTGTACATGCTTGACAGATACCCAATATTAAACTGCAGTAAAGCTCCATGGGGTCTTTCCGTCCTGTCGCGGGTAACCCGCATCTTCACGGGTATTATAATTTCACCGAGTCTCTCGTTGAGACAGTGCCCAAATCATTACACCTTTCGTGCAGGTCGGAACTTACCCGACAAGGAATTTCGCTACCTTAGGACCGTTATAGTTACGGCCGCCGTTTACTGGGGCTTCAATTCAAACCTTCGCTTGCGCTAAGCTCTCCTCTTAACCTTCCAGCACCGGGCAGGTGTCAGCACCTATACTTCATCTTACGATTTTGCAGATGCCTGTGTTTTTGATAAACAGTTGCTTGGGCCTTTTCACTGCGGCTGATCTTGCGACCAGCGCCCCTTCTCCCGAAGTTACGGGGCCATTTTGCCGAGTTCCTTAACGAGAGTTCTCTCGCTCACCTGAGGATACTCTCCTCGACTACCTGTGTCGGTTTGCGGTACGGGTGCACCGTCTCTGGCTAGAAGCTTTTCTCGGCAGTGTGACGTCGCAGCCTTCGCTACTTTAATTTCGCTCCTCATCACGCCTTGTCCTTATGAGAGCAAGCATTTGACTCGCTCTCAGACTTGACGCTTGAACGTGGTATCCAGCACCACGCGCTGCTAGCCTCCTGCGTCCCTCCATCGCTCATAACGATTCGGTGCAGTACAGGAATTTCAACCTGTTGTCCATCGACTACGCCTCTCGGCCTCGCCTTAGGTCCCGACTTACCCTGGGCGGACGAGCCTGCCCCAGGAAACCTTAGTCTTGCGGCGGACAGGATTCTCACCTGTCTTTCGTTACTCATACCGGCATTCTCACTTCTAGAAGCTCCACATGTCCTCTCGGTCATGCTTCACCGCCGCTAGAACGCTCTCCTACCACGTGCATAAATGCACATCCACAGTTTCGGTATCATGCTTAGCCCCGGTAAATTTTCGGCGCGGCGTCACTCGACTAGTGAGCTATTACGCACTCTTTGAATGATGGCTGCTTCTGAGCCAACGTCCTAGTTGTCTGCGCAACTCCACATCCTTTTCCACTTAGCATGAATTTTGGGACCTTAACTGGTGATCTGGGCTGTTTCCCTTTCGACTACGGATCTTATCACTCGCAGTCTGACTCCCGCACATAAATGTCTGGAATTCGCAGTTTATCTGAATTCAGTAACCCTTGACGGGCCCCTAGTCCAAACAGAGCTCTACCTCCAGCATCCTCTTTGCGAGGCTAGCCCTAAAGCTATTTCGGAGAGAACCAGCTATCTCCAAGTTCGTTTGGAATTTCACCGCTACCCACAACTCATCCCCGCAATTTTCAACTTACGTGGGTTCGGTCCTCCAGCGCGTTTTACCGCGCCTTCAACCTGGTCATGGGTAGGTCACTTGGTTTCGGGTCTGCGTCAGCCAACTGCTCGCCCTCTTCAGACTCGCTTTCGCTACGGCTCCGTCTTTTCTGACTTAACCTTGCTGACTAACGCAACTCGCCGGTTCATTCTACAAAAGGCACGCCATTACCCGTTAACGGGCTCTGACTACTTGTAGGCACACGGTTTCAGGTTCTCTTTCACTCCCCTCCCGGGGTTCTTTTCACCTTTCCCTCACGGTACTGGTTCACTATCGGTCACTGGTTAGTATTTAGCCTTGCGAGATGGTCCTCGCGGATTCAAACGGGATTTCACGTGTCCCGCCCTACTCAGGATACTGATAGGCCTTCTTTGGATTTCGCTTACGGGGCTCTCACCCTCTCTGGCGCGCTTTCCCAAACGCTTCTGCTATCCTCTGAAGTGCCATGTCTCAGTCCTACAACCCCGGCAGATAAATCTGCCGGTTTGGGCTCTTTCCTGTTCGCTCGCCGCTACTTGGGAAATCGATATTTCTTTCTCTTCCTGCAGCTACTTAGATGTTTCAGTTCACTGCGTGTTCCCTCCTTAAGCTATGTATTCACTTAAGGATAGCATGTCTGCACATGCTGGGTTCCCCCATTCGGAGACCTCCGGATCAAAGCCTACTTACGGCTCCCCGAAGACTTTCGCGGTTAGTCGCGTCCTTCATCGGCTTCCAGTGCCAAGGCATTCACCGTGCGCCCTTCTTCACTTGACCTTGCAAGTTTGTTCTTTCGAACTCTCTCGGTCGCTTTGCAATGTTTTCATTGATCTCAATGATTCTCGGTTTTTTCTTGGAATTAAGATATTCAGTTTTCAACGTACAAACTTGGCCTTTCCGGCCAATGGAGGCAAACGGGATCGAACCGATGACCTCCTGCTTGCAAAGCAGGTGCTCTCCCAGCTGAGCTATGCCCCCGTAAAATATCAACTTTTAAGATGTTACTCCATCTCGGCTGAAATGCAAAGACTTTTCTTTGCATTTCAATGGGCCTGGATGGACTTGAACCATCGACCTCACGCTTATCAAGCGTGCGCTCTAACCAGCTGAGCTACAGGCCCAAGTTCTTATTGTTGGTACTCTCAAAACTGAACAAAGTTTCTTTTGCAGTGTGCTTCCGTAACTGATGGATTTCTCTTAGCATTTCTGCTCTCCATCCATCCGTTTTCCTTAGAAAGGAGGTGATCCAGCCGCAGGTTCTCCTACGGCTACCTTGTTACGACTTCACCCCAGTCATCTGCCCTGCCTTAGGCGGCTGACTCCTATAAAGGTTATCCCACCGACTTTGGGCATTGCAGACTTCCATGGTGTGACGGGCGGTGTGTACAAGGCCCGGGAACGTATTCACCGCGGCGTGCTGATCCGCGATTACTAGCGATTCCAGCTTCGTGCAGGCGAGTTGCAGCCTGCAGTCCGAACTGAGAACAGCTTTAAGAGATCCGCTTACCCTCGCGGGTTCGCTTCTCGTTGTACTGCCCATTGTAGCACGTGTGTAGCCCAGGTCATAAGGGGCATGATGACTTGACGTCATCCCCACCTTCCTCCGGTTTGTCACCGGCAGTCTCTTTAGAGTGCTCAACTTAATGATGGCAACTAAAGACAAGGGTTGCGCTCGTTGCGGGACTTAACCCAACATCTCACGACACGAGCTGACGACAGCCATGCACCACCTGTCTCTGCGTCCCCGAAGGGAACCACCTATCTCTAGGTGTAGCACAGGATGTCAAGACCTGGTAAGGTTCTTCGCGTTGCTTCGAATTAAACCACATGCTCCACCGCTTGTGCGGGCCCCCGTCAATTCCTTTGAGTTTCAACCTTGCGGTCGTACTCCCCAGGCGGAGCGCTTAATGCGTTTGCTGCGGCACTGAGGACCGGAAAGTCCCCAACACCTAGCGCTCATCGTTTACGGCATGGACTACCAGGGTATCTAATCCTGTTCGCTACCCATGCTTTCGAGCCTCAGCGTCAGTTGCAGACCAGAGAGCCGCCTTCGCCACTGGTGTTCTTCCATATATCTACGCATTCCACCGCTACACATGGAATTCCACTCTCCTCTTCTGCACTCAAGAATGACAGTTTCCGATGCAGTTCCACGGTTGAGCCGTGGGCTTTCACATCAAACTTATCATTCCGCCTGCGCTCGCTTTACGCCCAATAAATCCGGACAACGCTTGCCACCTACGTATTACCGCGGCTGCTGGCACGTAGTTAGCCGTGACTTTCTGGTTGATTACCGTCAAATAAAGACCAGTTACTGCCTCTATCCTTCTTCACCAACAACAGAGCTTTACGATCCGAAAACCTTCTTCACTCACGCGGCGTTGCTCCATCAGACTTGCGTCCATTGTGGAAGATTCCCTACTGCTGCCTCCCGTAGGAGTTTGGGCCGTGTCTCAGTCCCAATGTGGCCGATCAGTCTCTCAACTCGGCTACGCATCATTGCCTTGGTAGGCCTTTACCCCACCAACTAGCTAATGCGCCGCGGGCTCATCCTAAAGTGACAGCTTACGCCGCCTTTCAAACTTGAATCATGCGATTCATGTTGTTATCCGGTATTAGCACCTGTTTCCAAGTGGTATCCCAGTCTTTAGGGCAGATTGCCCACGTGTTACTCACCCATCCGCCGCTAGCGTCCAACAAATCACCCCGAAGGGATCTTTGAATTCAGCTCGCTCGACTTGCATGTATTAGGCACGCCGCCAGCGTTCGTCCTGAGCCAGGATCAAACTCTCAATTTGAAAATTGAGCCTTTTTTAATCTTCTCCAGATTATTTGCTTGCGAATTGACTTCGCTTATTTGTTTGGATCAAACAATGTTTGACCCGCACACTGCGAAACTTTGTTCAGTTTTCAAAGTACCAACTTGCGTCTTAGTGACGCAACGTTTTATATCTTACTCGCTTGTTGACTTCTTGTCAACAAGTTTTTTGATATTTTCTTTTTTGCCTCCGCGAGACTTGTTTGTCTCACGCGGCAACAGATATTAGTATACTAGCTTTTTCTGATTCGTCAAATTTGTCATTTTATTCGGTTTATTATGTGAACACACGGCTTAGTTGTCATTTTTATTTTTTATTTCTTTTGCCTTTTGTTTAATTTTATCTGGCTTAATCTGGGAGAAGCAGTCTTTTAGTTCGCTTTTAGGTCATTTTTACCGGAAAATTTTTTCAAAAAAATGTTATTTCCCGGTAAAAAAGAAAAACCGCGGATCAAATCCACGGTTTCTTAGTTCTTGCTCTTATTTCAATCTGCTTTCTTCTTAAAGCCATTTTCCAGGTAGCTCAAGCGGCGGTCCAGGACTTGGGCCAGCTTGGCCGTATCGACGGGCCGGCCGGCTTCATAGTCTTCTGCTCCTTCAATAAGGCAGCTGATGAAGGCCAAGAGCAGGCTGTGCAGGAGAAATTTCAAGTCAGTCCGGTCCTGCAAAGCAACCTTAGCTGTCAAACCGGCAATTTCCTGAGCCGACAGGCAGGCCAGCGGGTCTTCTGCCCGCTTGGGCCGGGGCACTTGCTGGGAGTGCAGCATGTCAATCTTCCGGTAGAAGAAGGCCGCGTTTTCCCCATAGAAGATTTCATCTAGCCACTGGGGCAGGACCTTCCTGGCCAGGGCAAAAGGATCATAGCCGCAAGCAGCTAATTCTTTCCGGGCGCCTTCGATCATCCGCTGGCTGATCTGGTCACCCAGGTAAAAGTAGACGTCTTCCTTATCCGCAAAATACTGGTAAAAGCTCCCCCGGGGGATCCCCGCCGCCTTGATCAAGCGGTTGATGGAAGCTTCATCGAAGCTGTGGGTAAAAAATTCCTCCCGGGCCGCTGCCATAATCCGGTCCTGCTTTTCCTTAGGCAGGTTGAAAAAAGTCTGGCTGGGCATTTTTTACTCCTTCCGCAAAGCTTCAACTGGATCCAGCTTGGAAGCGTGGTTGGCTGGCAGGATCCCGGCGATCATGCTGATGACAATGCTGATGAGCAAGCCAGTCAAGGCGTATTGCGGGGTCAAGCTGACCACGGCCGCCTTAAAGGCTGACTTGGTTAAGCTGTTGATCCCTTGGGCCAAAAGCCAGGTCAAAGCAATGCCGACAATCCCGGAAGCCAGGCCCAGCAAAAAGGCTTCGCTGGAGAAGATCCGCCGAATGTCCTTGCGCCGGGCACCCAGGGCCTTCATGACCCCAATTTCCTGGGTTCTTTCGACTACCGAGATGTTCAAGACAACCAGGATCATGATAGCTGAAACCAAAAGGGAAACTGCCGCGATAGCCGTCAGAACGTAAGTCAAAACGCTCAAGATGCTGTCAAACATTTCCGTCATCTGCTCCTGCATTGAGCCGGCAAAGCCCTTGTCCTTGGCTGCCTGCTTGATAGAAGAAGTGTACTGCTTGTCCGTTGCCGTCAAGTAGACCACGTTTGCCTTCAAGGTCAAGCCGTTGTCTTTGAAGATTTTTGCCAAGTCGCTGTAGGGCAAAAGCAGGGTGCTGACCTGGCCGGAACCGGAAGCTTCATAGATCCCGACTACCTTGACCGTTTTGGTGATAGTCTTGGTCCCGATCTGCAAACTTGCCTTGACCTTCTTGCCTAAGATCTTCTTGCCCAAGTTGTCGGCGCTGCCGCTGTCGATCATGACCTCGTCCCTGCCAGCCTTAGGCAAGTGGCCCTTCTTGACATCTGACTTGGCGATCCCATCATTGACCGTCTTAAGGTAGATCATGCTCGCCGTCTTCTTGCCGTATTTCAGCTGGTTGGTCCCCAGGGAAATCGCACTGTAGCCCTTCTGCAGCTTTTTGACATGGGCGATCTTCTCCAGCTTCTTTAAGTCCTGCTTGCTAAAAGCCGAAGCGCTGCTGGTCCCGGACAAAGAGGCCATATTGTTTTGCTGCTTGGCCAGGGCTGCCTTGTCCCCGGTTTGCTGGGCCTGCATCCCCTGCTGGCGCATCTTCTGGCTGGAAGTCTTCTGGATTTCCGCGACCAGGGGGTTGGAGTAGGTGTTCATCTGCCCGCTGAAATAAGAGGTAACCCCCTTGCCCAGGCTGAGCATGAGGATTACGGACATGATCCCGATCCCCATCCCGGTTGAAACCAGGGCGTTGCGGCCAAACTTGGCCTTCATGTTCTTAAAAGCCAAAGAGATCGCCTTAAAGAGGATCATCTGCTGGATCTTAACTTCAGTTCTCTGCTCCAGGTGATGGTCCAGGGGCTTTTGTTCCTGGTCGCTGACGATCTGCCCCTGGTCGATCCGCAGAACCCGGCTGCAGTGGCTGGCCACCTTGTCTGAGTGGGTAACCATCAGGACCAGCTTGCCTGAAGCCGCGATGTCTCTGATCATGTTCAAAATCACGTCAGTCGTGTCCGCGTCCAGGGCCCCGGTTGGTTCATCGGCGATGATCACGTCCGGGTCATTGGCCAAAGCCCGGGCAATGGCCACCCGCTGCTTCTGCCCGCCGGACAGTTGATCGGGCTTCTTGTGCATGTGGTCCTTCAGGCCCACCTGGGTCAAGAGCTCTTCCGCCCGGCCGCGCCGCGTTTTTTCATCCGCGTTGGACAGGGTCATGGCGATTGACACGTTGTCGATCAAGTCCAGGTGGGGGATCAAGTTGAAGTTTTGAAAAATAAAACCGATTGATTTCTTATGGTAGTTAACCATTTCCTTTTGGGAAAAATCACGCAGGTTCTTCCCTTCGTATAAAATGGCCCCTTCAAAGTCAGAGTCCAGGCCCCCGATCGTGTTCATCAAGGTCGACTTGCCTGACCCAGATTCCCCGACGATGGCGACCATTTCCCCGGCGGCAAATTTCGCATTGACCCCGCGCAAGGCCTCGTACTGGCCCCCGCTTGGCATCTTGTAGTACTTTTTGACGTCTTTCAATTCAAGAACTGTCATCTATCCGTCCCTTTATGCAAAAATATGACAACTTGTCATATGACATGTTGTCATATTAATCCCTCTCCCAGCTTCTGTCAAGCAAAACAAAAAACATGACCCCGGAAAATTCCGAAGTCATGTTTTTTTCACGTTCTTAGCAGCTGGCGCCGTTTTGAATCTGTTCAGCGGTAAGTTTGCTTGGCTCGTAAACATTGACGCCAACTGCGCTGTCAATCAAGCCGCTGCCGTCGCTCAAGGACAGCATCCCGTACTGTTCGCCAACGCTCAAGCTGTCATCCAAGAAGCCCATTTCCGCCTGGCCCGTGTACAAGTCCAGACCTAAATCGTTGTCGATCTTGATTTGGTAGTCCGCGTCTGCCTGGTCCAGGGCGACGAACTGGAAGTTAGCCCCGATCGTGCAAGTCCCGCCTTGCAGTGAGTACTTGTTGGACCCGTCATTTAAAGCCAGGAGCAAGACTGCCTTGTTTCCCAGCTTTTTTTGCAAAAAATCTCTAGCTTCCGGACTAAAAGTCATTTTAACCATATTGTTACCTCCCCATAGGACTTACTTATTTTTTGATAGTTTAAGTATAGCAGGTTTTTTCTCAGAAAAATTGATCCAGGTCAATTTTCTTCCCCCTAAGGGCAGAAAAATGCTTAAGAATGTTATAATTTCCCTAAAAAGAGTGAGGAGGTGGACCACATGACTAAAGTCAAATTCAACCTGGACGACGAACTGGCCATCCTGCTTTAGGCCTACCAAGACCAAAGCGGGACAGACAGGGACGCTATCATCAACCAGGCCGTCAAACAGCTGCTGGTCAAAAAACTGGGCAAAAAGCGGATAGCCCAGCTGCTCAAGGACAGCGAAGACGGCAGCGACTACCAGCTAGAACAGTTCCTCAGCAGCTACGACTGGCTTGAATAGGCAAACAAAAAAGCCCAATTCCACCAACATTGGAATCAGGCTCACACAGTGCGTGCCAAAGCAAACCACATATTAAGGGCTGTTTTCGCTACCGGAGAAAACAGCCTAAGCATTTGACACAAGATAGATTATATACTCAAACTGGCTTTCGGACAATCTTTTCGCCCCGAAAGCTTATTTTTTTAATTTTGCCAGGACGTCTTTATTCGTCAAATCCACCGTCGGCAGCTTTTTCTTTTCCCGCCAAGTCTTGGTCAAGTAGTAGTCGTTAATCGCGTATTCCGGTTCCGCGTACTTCTGCTCCATAAAAGGCTTGACTGCCTGGTCAACGGCCAGCCAGCCGTTCCAGCCCAGGTGGATGGTGTCTTCCATGAAGTACTTCTTCTTGCCGTCCTTGGACAGGTCATAGATGTTGTCAAAGCCCTGGCTGATCAGCTGGTGCTTGATCTTAGTCGTAGCCGTGTCATACATCTTCTGTGACAAGCCAGTGTACTTCTGCCACTTGGCGTTAACTGGCGGAATAATGAAGAGGACCTGGGTCTTGTCCTTGGCGAACTGGTTCAAGAGCAGCTCGAAGTCCGAGTATTCCGGGGATTCAACATAGTTGAACTTCTTCTGGCTCCCCTTCAGTTTCTTGAGCAGCTTGGCATTCAAGCGCTTTTTGTAAAAACTAGTCCGGATCCCAAAGCGGTTGCCCTTGGTATCCTTCTTGGCTTCCTTCTCTGAGGCCTTCTTCAAGCCCTCGTAAGAGTAGGTATCCGGCAGCTTGGCCCCCTGCTGCTCAATCTTTGGCAGGCGGTCGCGCAGCTGCAGGGAAGTAAAGAACTTGTCTTCCGTGGAGTAGGTCTGCCGCCGCCAGCGGAGGTAGTAGCGCTCCTTCTTGGAGATCCCCACCTCGGCCGCGATTTCCAGCAGGGCATGGTGGATCACGTGCTCACTCTTCACGCTTGGCATTTGCAAAAGGCGGCGGGCCGCGTAGCGGTCAGCTTCCGTGTCTTTAGCGTTCAAAATAAAGTCGCTGGCATGCAGAGGCGAGTAGTAGAGGCTAAAGGCATCCGGGTTCTGCCCCTGGGGCGTGAACCATTGCGGTGAAATAATCACCACGGCCTTCTTGCTTGGCGCCTCCTGCATCCCCAGGTATTGAGCCAGGGACTGGCTGCCCGGTCCCCCAAGCAGGAAAGGCGTGTAGGAACGCTGGTACTTGGTAGCCAGGACAGTCGGGTGCATGTTGTCAAAACGCGACAGTTCACTTGACCCGTAGAAAGGCACATAGCCCTGCTTATAGTCCTTCTGCCGCATGGCCTTGCCCTTGAAGACAGTCGTGGTCTGCGAGGCGGCGGCCTGGAAAAGGCTGCCCTTTGAGAAGGTCCGCTCCCAAGGCAGGGATAAGATCCCCATCAGCAAGAGCACCGCGCAGATGACTGGCCCAAAGATCAGCCAAAGTTTTGTCTTATTCTTCATCTTGCAGTTTCTTCACCTGTTCAACCAGCTTGTTCGGGGTGTTCCAGTCGTCGCGGTTGAATTCAGAAACCGGAACGGTGATGTCGAAGGTTTCCTGCAGGGTCAAGAGCATCTGCACAGTGGTCATAGAGTCCATGATCCCGCTCTCGTAAAGTTCTTGGTCCATGTTGTCTGAGAAGTCTTCACCAGTTGCTTCAGCTAAAATGTCAACGATTTGCTTTTGAATATCCATAATTTTCCTCTTTCTTGTTAAATCTATTTCTTTAGATCTTTTTCTTTTTTCTGTTTTGTTTTCTGTTGATTTTTTAAAAAATTACTTGCCCAGCGGCACGTTGAACCACAGGTTGTTCAGGAAGCCTGAGAAGATCAAGAAGCTGAGGCAGACCACGTTGAAGGTCACGAAAATTGCCACCGCTTCAGTGAACTTGTTGTGCTTGACCAGCTTGTGCTTCTTCTTGAAGCGGAGCCAGATGTCATTGATGATGATGGCCAGGGCGTGGTAAAGACCGTAGACGATGTAGTACCAGGTCAAACCGTGCCAGACCCCCATTACCATGAAGTTGACCAGGTAGGTCACTTGCGACAAGCGGTTCCGGTTCTTGATCAAGCGCTTCTTCATTGCGAAGAAGGTGAAGCGCATGAAGATGAAGTCTCTGAACCAGGAGGACAGAGTCATGTGCCAGAGGTTCCAGAATTCCTTGATGTTGTGGGCCGCGAAAGGCTTGTTGAAGTTCATCGGCGTGTGGATGCCCATAAAGTAGGAAATCGACACGGCGAAGAGGGAGTAGCCCGCGAAGTCAAAGAACAGGTACATTGAGTAGCAGTACATGACCCCTAAAAGCCACCAGGACAGGTGCAAAGGATACATCCGCCCGGCCAGGATGGCCTGCTGCTCAAGGTATGGCAGGCAGTAGGTCCCGAAGAACCAGCCCAGGAGGAACTTGTACAAGAAGCCCTGGAAGAGGTATCTGACCGCGTAAGAGAGGTCCTTAATGTAGTCTTCCCGGCTCGGTGCCTTGTCATAGTCCTTGACGAAGCGGCGGTAGCGGTCGATCGGGCCGCTGGAGATGGTCGGGAAAAACAAGAGGAAGCGGGCGTATATGACCGGATCCACCTGCTTGATCGTCCCGTCGCGCAGCTCCATGACCACCTGGACCGTCTTGAAGGTCAGGTAGGAAATCCCTAAGAAGCCGAAGTCGATCCCCTGCTTGTGGGGCACGATCGGCCAGATTTTTACCCCGACCAAAGGCAGGATAGCCAGGATCACGGCCAGGCAGAAGACCCAGGTCTTATTGGCCTTCCCTGTCTTCTTCCGGTAGTGCTGGTAGGCAAAAGTCACCAGGAACTGGTAGACGATATAGCAGATCAAGGTTACCCCTTGCTGCCACTTGTCCGCGTCGAAGATGAGGAAGATGAAAGCCAGGGAGACCAGGGCTTCGTACCACTTGTAGCGCTTGCCGAAGTAAAGGCCGATGATCAAAGGCAAAAGCGCGATCACCAGGTAGACAAAGTACTGCGGGTTTTCATATGGTTGCAGATTTATCACGCCTGGTTAACCTCCTTGATGACCGCCTTGATGTCGACCTTCCCGTTCTGGGAGATCGGCAGGGCGTCTTGGTAAAGGTAGCGCTGCGGGATCATGTACGGCATCACGTCCTTGGTCAGGCCGTCTCTGATCTGCTTAGTAATGGTCCCTTCATCGAACTTGCGGCTGACCCCGTCGTTTAACTCAACCACGGCTACCAATTGCTTGATCGTGTGGTCAGGCTTGTAGATCGGGGCAGCAACCGCGTGGCGGACCAGCGGATTCTGGTTCATGTAGAAGTTGATTTCTTCCAGCTCGATCCGGTAGCCGTTGAACTTGATCTGGAAACCGATCCGGCCCTTGTAGAAGAGCAGGTCCCCGTCAAAGTAGCCCACGTCCCCGGTCCGGTAGTGCTGAACGCCGTCTTCCTGGTAAAAGGCTTCTTCGGTCTTTTCCGGGTTATTGATGTAGGCCTTGGAAACTGACGGGCCGGCGATGATCATTTCCCCGCTCTTGCCGTCATCGCCCTGGCTGAGGTCAATGGTGATTTCCGTATCTTCCTTGACATAGCCGATTGGCAGGCGGTCATATTTTTCCAGAATTTCCGGGGTGATCTCCACTTGCGTGACTGCCACGGTCGCTTCCGTTGGCCCGTAGGTATTAAAAATCCGGCTGTCCGGGAAGCGCTTCTTGAGCATTTCAACTTCCTTGCGGGGCAGTTCTTCTCCGCAGAAGAGGAAGTGGCTGAGGCTGGCGTGGTGGTCTGCGTCAAAAGTCCGGTCCAGGAAGCACATTTGGGCAAAGGACGGAGTTGACACCCAGACATTTACGTCGGTTTCCGGCAAGGCCTTGAAGAGCTGGGCAAAGTTTTCCGTCACTTCGTGAGGCAAAACAACCAGTTCCCCGCCGCTCAACAGGGCCGGGTAGATGCTCATGACTGACAGGTCAAATGAGTAAGGAGCCTGGGCCAAAAAGCGCGGATGGTCCGGCAGGTCAAAGTCCTTCAGTTCCCAGTCAACGAAGCTAACCAGGTTGTCGTGGCTGATCTGGACCCCCTTAGGCTTACCGGTCGTCCCGGAAGTACAAATGATGTAGAAGTTTTCATCGCCCTTGACGTAGTCAGCTTCATCCGCTGTCCCCTCTTCCGGAACGTCGTCCGGCTTAAGCAGGGTCAAGTCGCCCAGGTCGACTTCCGGCAAGTCACTGATGGCGATCAAGACCGGGGAGGCAGAGACTTCTCTGACCAGGTCGATTCTTTCAGCGTTAGAATAGTCGGCGATTGGCACGTAGCAGTGCCCGCTCTTTACACAACCTAAGAAGCAAGCCAGCATGTCAAAAGTCTGCCCGCCCCAAATCATAACGGGTACCTTGGCCGGTGCTTTTTCCTTTAACAAGGCTGCCCAGCTGTTAGCCCGCTTGATCAAGTCAGCGTAGGTGTTCTTTTGACCCAGGTAGTCGTAAACTACCCGGTCTGGTTCTCTTTGCGCGATCTCATCGATCGTCTTGACAATATTTCTCATTTCCACTCAACTCCCCTAAAATTCATTGTAAATAAAGCCAGTTGAACCCAAGCCACAATATTCATACAAATAAATCAAGCCTAATAAAATGAGGCTGTAAAGCAGGGTTCGCAGGATAAAAGACCGGATGACCTTCCCCCGGCTGACTGGTGTCTTGTTTTCCATTAAGCTCATCTCCTCTTCTTTTCACCAGAGTCTGCTATCCCAACAGAATGAAACAACACAACTTACTTTTTGATTACAGTCAACTGTAACACATAATTCATCGTTCACAGTCTTCAGTCTTCTGACATTTTACCATTTCTTAACGTATTAAAAAACACAAAAAACTAGTCCTTAACCTTATATTTTTGCAAAAAACTACTTCAATCCGGCCTTACGCTCCTGGCTGTAGCAGAACAAAAGCGGAATTGAAGGCAGGAAGCCGACGAAGAACATCGCGATCAAGCTCATCCGCAAAACGTAGCTTGGGGACTGCCACTTGTCCAGCTTGGCGGTCGCCAGCACGTAGGCAGCGTACAAAACGACCAGGGCCAGGCCCCACAAGAAGCTGGCGTAATGAGTGATCTGGTAGAGGTAGAGCAGGCCGCTGGCCGGGATCAGGCAGGACCAGCCGGAAATCTGCACGTCGATGATGATTTTCTTAGCAAGTTGGCTATCCATTTTTTATTGTCTCCTTTATTTGATATTCGCTATTTATCAGTTATTGTCCAGCAGGGCGTTGATATTGACCGACAGGGTCCGGTCCATGACCGTGATATCCTGGCGGGCATACTGGCTGGAGGCCGATTCAAAGAGGCAGAGCAGCTGGCCCCTATAGACTGTGATCTGCTCTAAGTAAGGCGGCATCCTGACCACCTGCTCGGCATTTGACTCGTCGAGGTTGTTCACGGCCGTGATCGGGGAGATGTAGAGCTTGGAATCCTGGCTGCCATATGACTGGCTGAGGAAAATTTTGTCCCCGTAGATGGCCAGGCCCTGGATCTGCTTGTTCATACTGGTCGTCCCGTCCGGGTCAGACCAGGAAACGGACTCATTGATACTGGAAATCTCACTGGTGGTGATGGTGTTTTTGTACTGGCCGGACCGGGCCAGCTTGTAGCTGGCGACCTTGCCATGGCCATTTTCATTGAAGTAGCCGACAAAGAGCTGGTCATCGTAATAAGTCAGAGCTGAGGCCTTGGCGATCGAGTTGATCGGAATCTCATGATCATAAACCAGCTGGTCGCTGGTCTTGGCGCTGGCCACGTATTCGATCAATTTGGCCAAGGAGAAGGACATCAAGGCTGACTGCCCGTCCTTTGACCCGGTCAGCCAGATCTGCATCCCCTTAGGGTCGTAAGCAATCCCGCCCAGGTGCTGCCGGCCTGGCAAGCGGACCGTTTTCAAAAATTTCCCCGTCTTTTTGTCTAAAACATAAATGACCGAGGCATGCCGGTGCTGGCCGTCATAGGCCGTGATCAAAAGATAATTGTAGACTACGGCGATCCCCTGGGGGGTCATGGCGCTGGCTGAAGTAATCTTTTTCGCCTGGTAGTCATAGCTCCGCATCGAAATAAGGCCCGGGATGACCACGTCCTGGCCCACCGTCGTCCTTTTCGGGGTATGGTAGGCGGCCTGATAGACGAAGCTGTAATTGTCCCGGATCGCCTTCCGGTAGGCTGTCAGCTTGTGCCAGGCCGGGCTGGTGCTGGTTCCGTCCTTGGCCTTGGTCAGCTTGGGCCGGGCCGCCAGCATGGCCTGCTTCATCTGCCACTGGCTGTAAGCCGGATAGGCCCAGTAATAGCCACAGGCTGACAGGCCCGCCAGCAGGATTAGGTTAAAAATCAGCAGGCGCAGCTTCCGGTGAAAATGGTGCTTCTTTCGGCTGACTAGTTTCTTTCCGCTTTTTCTGTCTTTTTTGCCCATTGGCCCTCCTTCCGGCCTTTTTTCTGCAATTTTTCCCCTAAAAAAGAAAATTCCCCTCTATCTTAACAAGCCCGGCCAGGGGCGAAGCAATTTTTTCGGCTTTTTTTGAATTTTTTCGCTAAATTTCATACTTTGTTCACATTTCCAGTATAATATAATGACCGTAGCAAGCGAGAGCTTGTTACTACACTCAACTTTTTGTTTTTCATTCATACTCCTCCAAAGTAAATGAAAAATATCGACTGACTCCATAGTCGATTCATATCTATCCCTTTCGGCTCACGTGCGTTGCGTGAGCTTTTTTGTTGCTTGAAGAGGCCTTTTTCGGTCTTTATAGATCCGCAAGCAATTCTTTACTCTTTGTTAAGGAATTCCAAACCCTTTATTGAGAATTACCCTGTATGATAAACATGTAACGAGCTGGTAGAACTCGTTACAAGTACTCCCACTTTTTTTATTTCATTCATTCTTACTCCTCCAAAGTAGATGAAAACCAATTAGGCCTGCGCGAGCAGGCCTTTTCTTTTTTTCTTTTTCCAAAATAGTTTTATACGCGTGGTGCTACTTGAAGAAGCTGAATCCATATCTCTGTAGGATGTAGCTGATATTGTAAGTTAGTACAATTATCTCGACAGTTTGTTGGAAACCATCTACACTTCTTGCAAGTATATTTTCAATTCCGTAGTACTTTAGTACAGAAAACACACTCTCGATTGTTCTGCGAATTGCCATTAGCTCTCTTTTCTACTCTAAGTCAAGTGTTATCAACGATTTTAGGCAATTTTATTTTGAAATAAGGGCCTAATCGGGAAATGGTTCCCGGAGAATCGAGTTAAATATCTGATTTAGGGCATGATAAATACAGCCACCTTCTGTAATTTCAAAAAAGAGGCTGTTATAATATCTATTGGATCAATTTTTATGACAAAAGTCTTTGGTTATGTTTGGCTACGTCATAGCTATACAATTGATCATTCTTAATTAAAGCGAAGATCGTCCGTAATAATTTATGGATCGATGCGATAGCGGCCTTCTTGTGACTTGCAGTCTCAGAAGACCGTTTTCGTTTCTCGTAATAATCCGCAATATGACAAGGGTTTCCCGCTTTCTTAGCCGACTGAATTTGGTTTATGGCCAAGTACAGCACCTTTCTGCCAATAGCTGTCCCACGCTTTGAAATTGACAAGTGGGCCGTGAGATTGCCAGATTCATAAACTTGAGGATCAACACCAACGAAGGCATTTAATTGGCTAGGGTTGTTAAAACGTCTGATATCCCCAAGCTCACTAATGATTCTTAGAGCAGTGTTTTCGCCGATGCCTGGAATGCTTGTGAGGATCTCCAGATCCCGTTTAGGAGCCAGCTTAGCCATCTCCTGTAAAGCAGTCTGGCACTCTTCTTCAGCGCTCAGAATGTTGTTAATAGCCATTTTGAGGCCACGGACATGAGCACTGTTCTTTTTGACAGCTGGGCATGCGACTTTAGCCAAACGAATAAGGCTTTGCGTTATGTCATTAGCGCGCTTTTTACCAATACCAGATAAGCCTTTTAAGAAGTCGATGATATCGGCTTCTTTTGCTTCTAGTACGATATCTGGATGTGGGAATCTGAGAGCAATACTCCAGTAGTTTTTCCCTCTCGGATTAGCCAGTAAGTGTTCAATCTCTGGGAAAGTGAGCTGAACTGCTTTGTGCAGTCTATTCTTGTTGCTTATCAGATCGTGCGAAGCCTGCTCATAGATGCGGTTATTGGCCATCAATTCTTGATATTCTTTGCTTTGAACGTAGGCCAGCCGTTGCGGGTACTCAGACTGCAGCTTGGCAAGATACAAGGCATCAAGCTTATCGGTCTTGTTCTTGTGCAGGTCATCCTTTGTCTTTCTTTTGGCTTCTAGCGGATTCATCATGACATAGCGCAATTCGTGCATGTCCAAGAACGCCTGGAGTCTTCTGGAATAGACGCCAGTTGCTTCAAAGATAATCTGCGGTTTAGTAACCTGCTTAAGGTCACCCAGCAGCCGATTGAAGCCTACCATATCGTTGGAGATGGCATAGTCATTAACTTTTTGGCCATTGACCATAATGCATACGTTAGACTTTCGGCTGCTAACATCAATACCGAAAACAGTTTTCAATAAATCCATAAGAATAAACCTCCGCTTTACTCGGAGATGAGCTACCTCCACCTAATCCAATCAGATCTAATTTTCTCAACAGGACTTTAACAGCCAACATACTTAGACGAGATTCACAATTGAATGGTGAAGCTGCCCGTTTTATTTACGACATCGTGTGTCCAAAGAGCTCACGGCATTGGCTTCATCTCCACTTTACATAGTAAAAGAAAAAGTGTTGAACGACTACTCCGTCGAGTAATCATCCAACACTAGGTTAGTATGTTTTGTTATGCTGCTTAGCACCCTTCATATTTTTCCGATAAGGTGTCCACAGTATATAACCGTCTATCTTGAGGGCATCATGCAGTCGTTCGCCTATATAACCTTCATCGCCTAAGATAAAGTGCCCTTCGGGACGGGTACTGAGAATCAGCTCTTCTGCTTCTTTTGCATCGTGGATTGATGCCTTGGTGATTACATAGCCAAGAACATACCCGTCTTTAGATACGGCAAAATGGCCTTTAAAACCGTAGTAGTAAAACTTTTTGGTTGAGTTATAGCCAATGTTGGCTGTTCCTTCAAATACCTTAGCTCTGCGGTTTCTAATTGGCTGACACAAAGGCATGGGTAGACTGTCAATGATCATATACTGATCGGACAGATCGACTCTTGACTTCAGATCGTTGACGATCTGAGCAGTGATGCCGAGAAGCGCTCTAGCCCTGCGATTAAAACGAGACCTAGAAAGACCACAAAGTCCCCAGCAACGGGCAAATCTGCGCTGAGAAGATATACCTTCCTCAGATTGCCAGACAAGTAATGCAATGATTTCGTAGTCTGGAACCTTTACCAGACTGGCATTGCGGCGGTGAGTTAACCGAGATGGGGCGTACTTGTAATAAAGTTTCTTGCAGATTTTCGACAAAGTTCTAAATCTACTTCAACTAACACCACGCGTAGTTTTATACTTAAATTATGTCAAAACAAAAATCAGCATAGAAAAAATATAAGGAATTAGGTTGATGATTTCAGCAGCTATTCAACGCGTTCTCGCGGAAAAGTCCGGCTCCTTTTTGATCCCGGCCAGCAAGATTGCCATCGTTGAAGAAGACAATCCCCTTTACCATGCCTTCTTGATCTTAACCAAGGTCAAGTACGCCAAGATACTCGTCTTGAACAAGCAGGGCCAGATCACGGGCCTTTTGAGCCTGGCCATGATCACCGACAAGATGCTGGACCTGGATGGCATTTCCGTTAAGCCTTTGAACAAGTACCAGGTCAAGGATGTCATGGAGACTGACTTCGTTTCCATCAACTTTACGGAAAAAGACATCGAGACCCAGCTCCACCTGCTCGTTGACAACAACTTCCTCCCCGTTGTCGACGACCAGGGGGGCTTTCAAGGGATGATCACCAGGCGGGAATGGTTCAAGGCCTTCAACTACCTGGCCCGCACTTTTGACGACCACTATGTCACGGTTGACAAGAAGCAGGTCCTTAAATTAGAAGCGGAGAATTAGCAATTACAATCATAAGCATTTTCAGTGTAAGAAATCCAATTGGTGCTAGAATATATTTAGTAATCTATATTGTCTTTTAAGATAAAAAGTGCTTGTCCACACTCCTTATTTTTACTATTGGGAGGACTATTCATGAAACGCCAATGGAAATTCATTGTCGTCCTGGTTCTCGGGGCGATTGGGCTGATCACTGACAATGTCCTGCATATTCCGGGAATCGCGGAGGTCTTGTTCGACATTGCTGGTGCCTACATCAGCTTCTCCTTAGGCAAGGAAATGTTTGGGGACTTGAAAGAAGGGCACTGGGGCATCGACGTCCTGGCCCTGATCGCGGTCATCTCCATGATGATTACCCGGGACTACTGGGCTGAATGGATGATCCTGGTCATGTCTACTGGTGGCGAAAGCCTGGAAGACTACGCGACCGGCCAGGCCAACCGGGAACTGCGGGCCCTTTTGGACAAGAACCCGCGGGTAGCCGGCAAGCTGGTTGACGGCAAGGTAGTTGAAGTCAAGGTTGACGACCTGCAGATCGGCGACCAGGTCTTAATCAAGCCAGGTCAGCAGGTGCCAGTAGACGGGACCATCATTGAAGGCAGCTCTGTCTTTGACCAGTCATCTCTGACCGGGGAATCAGTTCCGGTGGACAAGACGGTCGGCGACGACTTGATGTCCGGTTCCCTTAACGGGGAAACCGCCGTAACCATGGAAGTCAAGAAGCTGGCCAAGGACTCTGAATACCAGACCATCGTTGAACTGGTTAAGTCTTCTGCTGCCCAGCCGGCCAAGTTCGTCAAGATGGCGGACCGCTACGCCGTGCCATTTACCATTATTTCATTAATTATCGGGATCGCTGCCTGGGTGACGACCGGGAACTTCACCCGCTTCGCGGAAGTCATGGTCGTTGCCTCCCCATGTCCGCTCTTGATCGCCGCTCCAGTTGCCCTGGTAGCGGGGATGAGCTCCATGTCCAAGCACCACATCATCGTCAAGTCCGGTTCAACCTTGGAACAATTAGCCAAGGCCAAGACTTTTGCCTTCGACAAGACTGGTACTTTGACCCAGAACCAATTGGTCATCCAAGACGTTCTGCCGGAAAACGGCTTTGACAAAGAAACCATCCAAAGCTACGCGGCCAGCCTTGAGCAGCAATCCGACCACATCATCGCCAACTCCCTGGTTCAAGGGACTGACAAGAACTTGATCCAAGCCGTAAGCAACCTGCAGGAATCAACTGGTAACGGGGTCAGCGGGACCGTTGACGGCAAGAACGTCATGGTCGGCAAGCTTTCCTACGTGGCGCCTGACGCTAACGTAAACAAGGCCAAGACTACTGCTGTCTACGTTTCAGTTGACGGCAAGTACGCCGGCTGCATCACCTTCAAGGACCGGCTGCGGCCAGAAACTCCGCAAACTTTGGCCCGCCTGCGCAAACAAGGCGCAAAGCACATCATGATGCTGACCGGGGACAACAAGGACGTGGCCCAGGCGATCGCTGACGTGGCCGGCGTCGATGACGTCCGGGCCAGCCTTTTACCAGCCCAGAAGATTGAAGCCATCAAGAACGTGGCGCCTGAAAACCGCCCAGTCGTCATGACCGGGGACGGGATCAACGACGCGCCAAGCTTGACGGCCGCTGACGTCGGCATTGCCATGGGAGCCAAGGGGGCTAGCGCGGCCAGCGAAAGTGCTGACGCGGTCATCATGGTCAACGACTTGAGCAAGATCAACGATGCCGTGGCCATTGCCAAGCACACCATGAAGGTGGCTGAAATCGACATTATCACTGCCATCGTGGTCGTTATCATTCTGGAACTGGTGGCCTTCACTGGTCTTATTCCGGCCTTCTGGGGCGCTGTTTTGCAGGAAGTGGTTGACATGATCACCATCTGCCTGGCCCTTTTGGCTAAGACCGAACCGAAGAATCCAAAACAGACCGGTTTATAAAATTTGTCTTTTCTCTAATTTCTTGCTAAAGTATTATTAGTTAACATGACATTTTTCAGAGGTTGGAGTTTCAAAACTTTCAAGAAAAAGCTTCTTTGGGTCAAGAAGCTTTTTCTTGGGAGTTTTTTGCTTTCCAGCCCTTTTTTGAAACGGAGGTCAATATGAAATTTATTGGACAACTGATACTGGTCTTGCTGATGACAACCCTGCTGGGGCAAGTCTTTGCCCGCTTCAACTGGCCCCCGGTCATTGGCCAGCTCTTATCGGGGATCCTGCTGGGACCGGCTCTTTTGGGCTGGATCCACCCTAACGAAACGATGACTCTCTTCTCCGACATCGGGGTTATCATGCTGATGTTTTTAGCCGGGATGGAAAGCGACCTGGACTTGCTGAAGAAGTACTTTAAAATCAGCTTCACGGTGGCCACGGTCGGGGTTATCCTCCCTATCCTCTTTATTGGCGGGGCCTCCCTGCTCTTTGGGATGCAGTTCCTGGAAGCCCTCTTCATCGGGATCGTCTTCGCGGCCACCAGCGTCTCCATTTCCGTGGAAGTCCTGCGGGCGACCGGGAAGCTGCAAACCAAGGCCGGGACGGCAATTTTGGGGGCAGCGGTAGTCGACGACATTTTGGCGGTGATCGTCCTCAGCCTCTTCACCACCTTCAGCCATGAAGGCGGCAAGTCAGGACTGACCAACAACTTCTTCCTGAACCTGCTCTTTGAAGCCCTCTACTTCGTCTTCGTCTGGCTGGTTTCCAAGTTCATCGCGCCAAAGTTCATGCAGCTGGCGGAAAAAATCAATGTCAGCTACTCTGTGGTCATCGCCTCTTTGATCCTGTCTTTGGGCATGGCCTACATCGCTGAATTAGTCGGCTTGAGTGCCGTGGTCGGGGCCTTCTTCGGCGGCCTGGCCATCCGGCAGACCAAGCAGGAAGCAGAAGTCAATTCCTCAGTCTCCGCGATCGGCTACTCAGTCTTTATTCCAACCTTCTTCGTCAACATCGGCCTGTCGATGACTTTTGCCTCCATCGGCCAGGACTTCCTCTTCATCGTGGTCATGACAGTTCTGGGCGTTCTGTCCAAGTACTGGGCCGGCAAATACTCATCAAAAATCTTCGGCCTTAAGCCGCTGGAAGGCAGCATTGTCGGGGCCGGGATGGTTTCCCGGGGGGAAGTGGCCTTGATCGTGGCCCAGATCGGGATTGCCCACCACCTTTTCCCAAAGTACATTTACTCCAGCTTGATTCTGGTCATCATCTTGACGACAGTTCTCTCACCAATCATGCTCAACCACTACATCAGAAAAGACGAAGCGCAAAACTAAAAAGCAGCGAAGCCAAGCTTCGCTGCTTTTCGTATATCCAAACAGATTTCTCTTTTTCTCTTTTTGTTGTATTCTTGTATTTTTCCTTTTGGCCTAGCCTAAAATGCTGAGCATATTCCACATGATGTGGGTGGCCATGGAGTAGCGCAGGTCCTTGGTGGTCATGTAGACCCAGGCCAGGACTGACCCCATCATCCAGTAAACCAGGAGATATGGTGACCAGAAGGGATTGTGGGCAAAGGCAAAGAAGAAACCGGAAACCAGGATCCCCGCCCACTTGGCGACCTTGCCGGCATGGTTAAAGAGGAGGTTGAAGAACATCCCTCTGAAGATGATTTCCTCCATAACCGGGGCAACTAAGACCACCATGATATTGTAGGTCGGGCCCGCCGTGTGCTGTAGGTCATCCAGTTTCTGCTGGTTGACTGAGACCCCGCCGCCGATCAAGTTCATCAAGAGGATGTAGAGCAGCTGCATCAAGAAGAAGCCCCCGACTGCAGTGGCCAGCTTCCGCCAATCCCAGTGGAAGTCCTGGCTGAAGCCCCAGTCATTGTCATCATCCAGCTGCCCCTTATAGAGCCAGAAGCTGAACCAGAAGACCAGGACGGTCGAGAGGGCCAGGATGAAAGCCTCAGCCGACCCGAAGCCAAAGATGTCCGGGTAGAAGTAAAACTCCTGCAGGGTCGTGTACAGCGCGAACACGATTGCGATTTCGATCAAGTAAAAGAGATAATGCCCAATTTTTTTCACGTTTGTCACCTTGTTGTCTCAAAAAATTCTTATCCTCTATTATAATAAAGTTTGACCAATTTTCTAAACGATATGGACTAGGACCTAAAAAAATGCCATCCGGATTAAACACACTGCTATTTCTATTCAGCCAGAACCGGGCCTTCAGCTACTTTACCATTTTGGTGGCGATTGCCGCGGTAACCTTCATTTTTTCCTGGCTGAGCGACCCGCGCCACTTGATCAACGGGGTCTTTTTCACCTTTTTCATCGCTTCGCTGGGGGCCTGGTTCACCTTCCTGGTCTATGCCACCAACCTGCCCAGCTTCCGCAAGGTCTACCTCTGGGCCCTGGCGATCCTGGCAGTAACCGTGGCCGTCATCGTCTCCTTCTCCTGGATCCTGCTTTTATGGAACTCCTATGTGGTCTTGAAGCATGAGAGCCATACCCTGCCCAACCTCCTGACCTTGATCCTGGCCGGGGCCATGCTGGGCCTCTGGGTCTTCATTTTCATCGGCCACTTCACCCGCAGCACGCCGACCGGCCTGCGCCTCATCCTGGACATTTTCCCGACGGTCGCGGTCTACCTGGCAGCCGTCATGTACAACTTCCTGGTCAACCTCCTGCTCTACCAGATCGTTCCCCGCCGCTACCAGCAGAACTACCTGATCGTTTTGGGAGCGGGCCTAATCCATGGGGACCAGATTTCTAACATCCAGGCGGCCAGAATCAACCGGGCCATCCAGTTTGCCTACCACCAGCAGGAAAAGGGCCAGCCCTTGCCCAAGTTCATCATGTCCGGCGGCCAGGGGCCGAATGAAAAAATTTCTGAAGCGGCAGCCATGGCCGCTTACGCCATCAAGCGGGGGGTCCCGAAGGAACTGATCCTGCTGGAAGACCAGTCCAGAAATACCGAGCAGAACATGGAATTTTCCCAGATTGTGGCCTACAACGACTATGGCAATGACAACTTCAAGGCTTGCTTCTTTACCAGCAACTACCACGTCTTCCGGTCAGCCATCTACGCGAAAAGGGCGGGGCTGGATGCCAACGGGATCGGCTCTTACACCCGCCCTTACTACCTGCCCAACGCGGTTTTGCGGGAATTCGCCGGCATGTTCGTCATGAACCGCCTCCGCCACTTCACCGTGATAGCCTTGATCGTGGCCGGCTACATCGCCTTGGCAATTTGCAAACTACTAAATGTCTTTTAACTTTTTTAAAATTACCTGGAAAATCCGGGTAATTTTTTGTTTTTTTCTAGTATGCCCTTCCCGCTTAGAACCATATATCTTGAGGGGTTTTTGTCAAAAACGAGAACCCCGTCAAATCAACACTCTATCTTGTGGGTGACCTTTTGACACGACTACCAAATATTGATAAGATCGTAATCGTGTTAATTTTAAGGGGTATTTTATCGTGAAGAAAATCAAATTCAAGAAAGTTTTGGCTACTGGTACTGTTTTAGCAGCGGGGATTGCCATGACTGCCTGCTCAGGGGCCAAGCAAAACGGCGGCGGCTCCAACAAGAAGAGCTCAGCCAGCGTGGCCTTGATCACTGACACCGCCGGGGTTGACGACCACTCCTTCAACCAGTCCGGCTGGGAAGGGATGGTGGCTTACGGCAAGTCCCAGGGCTTAAAGCGGGGGACCAACGGCTACCAATACTTCGCCTCAAGTTCAGCTTCTGACTTTACGCCAAACATCAACCAGGCGGTTGCGGCCGGCTACAAGACCATTTTCGGCGTTGGCTACTCACTTAAGGGCGCGATTGCTTCAGCAGCCAAGAAGCACACTGACAAGAACTTCGTCATCATTGACGACGTGATCAAGGGGCAAAAGAACGTGGCTTCCGCCAACTTCAAGTCCCAGGATGCTTCCTACATGGCCGGGGTAGTTGCAGCCCGGACCACCAAGACCAATGTGGTTGGCTTCATTGGCGGTGTTCACGGGGACATCGTCGACTTGTTTGATGCTGGTTTTGCCAAGGGCGTGCAGGACACGGCCAAGAAGATGGGCAAGAAGATCACGATTTTGAACCAATACGTCGGCTCATTTACGGCTGCTGACAAGGAAAAGTCAATCGCCAAGGCTATGTTTGCCAAGAAGGCGGACGTAATCTTCCACGCTTCAGGTTCAGCCGGCCAAGGCTTGTTCAGTGAAGCCAAGTCCGTCAACGAAGGCCTGGCTGCCAACTCCAGCAAGAAGGTCTGGGTCATCGGGGTCGACTCTGACCAGTCCAACCTGGGCAAGTACAAGTCCAAGGACGGCAAGAAGTCCAACCTCTGCCTGACTAGCGTAATGACCGGGGTCAACGTGGCAGTCAAGGACATCGCTACCAAGGCAGCCAAGGGCAAGTTCCCAGGCGGCAAGCAGCTGGTTTACGGCTTGAAGAACAACGGTGTCTACCTGACCCGGGGCTACGTGGCTGACTCAATTTGGAAGCAGGCACAAACTGCCCGCAGCCAGATTCTGTCCGGCAAGATTTCCGTACCAAGCCACCCAAGCAAATAAGTAAACAAAACAAAAATCTCTGAGCAGGAGCTCAGAGATTTTTTGCGTATCAGGCGTTTTTTCGGCTTTAACGGCCCAAGAGACCAGGAGCAGGCCAGCAAGAAACATTGCTTCTGGCAGCAGCATGCTGGATAAGTCAAAAGCAGCATCCCGCAAAAAGTAGAAGGCCATCAAGGCACTGATAATCAAGACGGCCGCGAAATCGTGCCAATCTTCGCTGGTGAAAGCTTGCCAGTCCTTTTTGACAAACATCATGACCAGGCCAGCAAGACCCAGCAGCAAATAGAGAACCGCAATCACAAAAAGTACCAACGCCGTTTCAAACACCTTTCTGACCAGCATCCCTTCAACCAAGAGCAGACTCCCGCTTGCCAGAAAAATCACTGTCAATTTCCGCCAGCTGAAGGTCACCGGCAACTGCTTAAAGCCGCTCAGCAGCATCCCGCAGCCGATCAACAAATTTACCAAAAACAAGCTATTCATTGCTTTCCTCCTCCAACAACTAATATCCGCCATCCTGCTCTATTATTCTTCTTCGTTCAAGCTCTGGTAGCCGTAATTTGCCAGCTGCTGGTCAGTATCGATCACCGACATCCCCCTAACCAAACAGTAGATCAAGACCGCGTCCCGTTTTACGTTGGCGTAAAGGGCCCCGTTATCGCTTAAAGACAGAAGGCGGTTGGTTTCAGCCAGAGATAATTTCAAGCTGAGGGCCAGGGACAAAACCTTATTCCTTGCTGGCAGGCGCCGCCCCTTCAAAATTTGATAGCCATAGCTGCGTTCGATCATAGCCTCGTTGAAAAGCTCGCTTTTCTTGCCCCCCTTATCTTCGATCAGCTTGTTCAAGTAGCCGGCAAAATTGTAATCAGCCACTTGATCTAGTACATTAGAAATATGATCTGCTTTCAAAGCAGCGAGTAATTTTTCAGTTTCCATTTTTACCCCCATTGTTACCATTATGGCAGAAAGATTTTATAGATGAAGCAAGGAAAAATAAGCGATTACGTTAATCCCGTCCCCATTAAAATAACGGACGACAAGGCAATTTTCAAAGTTGAAAAGCTGGTCCCGACCCCTTACATCGAGCGAGTCCTTCCTTTAGAGTACGCTCCTTTATATGAACAGCTGGCTGAGCTGGACACCGCGATTCCCAAGATTGTCTGCCTGGAAAAAAGCGACCGCCTGACCGTCATCGAAGAATACATCGACTCTCCCCGTCTCGACCAGTACTTAGAGACCCACAAGCTCACTTCTGCCCAGATCAACGACTTAATCTGCCAGCTGCTGGACATCCTCGCGGTCCTGCACCAGCAGACACCGCCGATCATTCACCGGGACATCAAGCCGGAGAATTTTTTTATGATGGCCAAAAGCTGATCCTGGCCGACTTCGATATCGCCCGGAACATGCAGGAAGACGCTGACCGCGACACCCGCATCCTGGGGTCAGTGGGCTACGCGGCCCCGGAACAGTTCGGCTTCAGCCAGAGCGGGCCAGCCAGTGACTTCTATGCAGTCGGGGTGCTGATGAACGTCCTTTATACTGGCTACCTGCCCAGCGTCCGCCTTTATAAAGGACCAGAACGGGAAATCATTGAAAAAGCTACCCACATCAACAGCCAGAAACGCTACCAAAGTGCCCAGGAATTCAAGGATGCGATTACTGGCTTAGGCCGGTCCAGCTGGCTTTTGCCAGGCTTCCGCAGCCATCAGCCCGCCCGCATGCTTACAGCCGGTTGCGGCTACTTATTGATGCTGTTTAGTTCCTTTAGTATGGACGCCAAGAGCGACTCAGCGGCTGACAGTTTCCTGCTCCGCCTGTCCTTTTTCATGGTTCTTTTCTTGATCGTCCTTTTTGCCTGCAACTACCGCAATATCAAGAGCATGTGCCTTTTCCATTCATCCAAGTCCAAATTTACCCGGGCCTGCGGGATCATCATCAGCTACCTGCTCGTGGCCACGGTTTTGACCACGGCTTTAGCCGCTTTATCGGTAGCGATTTCATCTTTTGGCCATTAGTGGGCTGCCTGCCCACCAATTCTTCTCTTTAAAAGTCTACACTTAAACTGGATGCTGACCCATGCAAGATGGTGAATTTTTTAGCTAAGAATTCTGCTTGAGCCGCCTTAGGCAAAAATGTAGTGTGTGCAAGCAGACTTTCAGCTTTCAGCATCAATTAAGTCACTTGTTTAAGGAGAGGATAAGATGAAAGTAGTTGGAATTCTGTTAATCATTTTAGGCGTTATTGGTATTGCCATTGGACTGATGATGTTCGGTGATATTGGCGTAGCATGTATTGTCGGCGCTCTTGCCGCCCTGCTGTCGGGATTCGGCTTCTTAAGCGTTAACAACAAGCTGAATAGTTCTGAGTCTTAAAGCCGGGGGGATCTTGCCATGAAGTCCAATAAAAAGCCATTTTATAAGCAATGGTGGGCTGTAACCATCGCCTTCATTTTCGTGTTTTTTGTCGGCTACATCTTCGGCTCTGCCGCTTCTTCGAGTGACGACTCCAATGACGAAGCCTCTGTAGCCAGTTCATCAAAGAGTTCTTCTAAGAGCACTACTGACGACAAGTCTTCTGGGAAAAAACAATGCTAAGAAAACTTTGGACGACAAGTCTTCTGGGAAAAACAATGCTAAGAAAACTTTGACTGTCAGCTATAAAAATTACGAAATTTCTTCAGAAAAGACCTTTAAGCCGAACTATACGAATAACAGCTGGGCCGGCGGCAGCGTATCTGTCGACAGCATTACTTTGTACAAGACAGCCAAGGCCTACAATTATGATAGTGCCAACGATGGCAAATTCACTATTCAAGGTTTCATGCAGATTCATTACGTAATTAAGACCAAAGCTGATGTTTCAGTTTACCCGACTCAAGGAACATATATCTACTCCAATGGTGAACAGCACGGAGCAGATTCCACTGAAAGTTGGGATGGCGATATTTCTAAGAACGTAACAAAGCAAGGAACGGTAACTGTCCCAGTCGAAAAGATTTCAAGCGTCAACAGTGTTCGCGTAAAATTTGACGCGAGTGGCCAAGACTTTAGTGATGATTCTTTAGACCACGATTTTGATTTCACTATCACTTTGTCCTAACAGACAGCTTGATCTTTAAGAAATTTGGTTGGCGAAGCAAAGACTTCTGCCAAAACGCTGCAGCTGCAATACAAAACCTCAATTTGGAACGACAATACGGTTAAATTCAAGCTCAAATAAACCGCGAAAGCAAAGCCTGCGAGAGCCAGGTTTTGCTTTTTTTGTTAACCGCTGTCAAAAAACAGTTCGGAATTTCGCTTATATTGTTGCTTTTTTCTGTTTTTACACTATAATAAACCGAGATAAAAATAAACATCTTTTTTGCGATTGTCACACAAACATTCGTGTTGCAACGGAGGAAATCACGTGTCTGTTTCTAAATTTAAAAAGTTAGCAACCATCGCTACTGCTGCTGTTTCAGTTTCAGTTCTGTTGACTGCCTGCCAAGGCAAGAAGTCATCATCTTCAACTAGTACTAAGACCACCAAGCACAGCATCGCGCTTATCACTGACAACAACGCCATTGACGACCACTCCTTCAACGAAGCTGCCTGGAATGGTTTCAAAGCCTTCGGTAAGAAGCACGGCCTGAAGCAAGGCAAGGGTGGCTACCAATACTTTGAATCTTCATCAGCCGCCGACTTTACTCCTAACGCCAACGAAGCTGCCAGCTCCGGCTTTGAAACCATCTTCGGTGTCGGCTACCAACTGACCAGCGCTATCAAGTCCGCTGCCAAGAAGAACCCTAAGAAGAACTTCGTGATCATCGACGACGTGATCAGCGGCCAAAAGAACGTTGCTTCAGTTACCTTCGAAAGCAACCAGGCATCATACCTTGCAGGTATTGCTGCTGCTTACACTACCAAGACCAACCACGTAGGTTACATCGGTGGTGCCAAGTCAGCTACCCTGGAACTGTTCGAAGCCGGCTTTAAGCAAGGTGTTGAAGCAGGTGCCAAGGCTTTGGGCAAGAAGATCAAGATTGACGACCAATACATCGGTAACTTCACTTCAACTGACAAGGCTAAGTCAATCGCTCAATCAATGTACGCCAGCGGCGCGGACATCATCTACCACGCAGCCGGCAACGCTGGTAACGGGGTCTTCACTGAAGCCAAGGACATCAACAAGAACCGCAAGGCTTCCAAGAAGGTTTGGGTCATCGGTGTTGACGTTGACCAATCAAGCCTGGGTAGCTACACTTCCAAGGACGGCAAGAAGAGCAACTTCGTTCTGACTTCAGTTCTGAAGGGTCTGGACGTTGCTGTTGAACGTATCGCTGAAAAGGCATACCAAGGCAAGTTCCCAGGCGGCAAGCACTTTGTCTACACTCTTGAAGGCAACGGTGTTTCTGTAACCAAGGGCAACATCGACTCCAAGACTTGGAGCAAGGTTCAAGCAGCCCGCAAGCAAATCTTGAACGACAAGGTTAAGGTTGCTGAAAGCGTAAGCGACTTGAAGTAATCTCAAACAACAGATTTTTTTAAGAGGCACTCATCATTCGATGGGTGCCTTTTTTCTTCGCCTTAGCGTTATAACTATATTAAGACAGCGCTTTTATAAAAAGGCGATAATCATGCTCAAAAAACTACGTAACTCACTATTTGCTTTAACTGCCCTACTGAGTTTTACGGCTTTAGCGGCAACCCCAAACACAGTTTCAACAGCAAGTTCAGCAAAATACACGCCCAAATATGTCAAACGACAAGTCGTACTGCAGTTAAACTGCAACAGCTATGTATATGACCGTTATGGTAATCGAATGCCCTGGTTTAACGGACTTTATGGTCCCCTCGGTTACCTAAAGGAAGACAGCTACGTCTACACAACCAGAAACAGAATTGTACGGACTAACAAAGACGTCCGCTACTTCACCTTATTCACCAAATACCACGCTACTAAATACAATTATGACTTCGTAGGTAAAAAGTATTGGCTGCCATATAAGAAGATCAACGGACATTATTTCTACTACATCGGCTATGGCGCCTACATCAAAGCAAGAAACGTCTTTTCAGTCAACGGCCTGCTCCAATACTCTAATGGTGAAAAAGCCATGCTTACGATGTCTGGTTATCCTTTTACATTTGACAGTAAAACCAAGAAAATAAAAGATATGACAAAAAATACGCCGATTGTAAAATCAAACTGAACACTGTTCCGATCCAGTAAAAAAATCGTTTTCACTGGATTAGAGCACAAAAAATCCATTTCAACCATCTGGTAGAATATGAATTACCACAAACATTTCTAGAGAGGTTAAAATGGATCATTCATATTCTAACACTAAACCACACCAAAAGGGCAAGCACCTTAAGCTGAACGACCGGACTACAATCCAGGAGCTGCACTCTAAGGGCTACTCTAATCGTGCTATAGCTAAGAACTTAACTGCTCACCAAGCACGGTCGGATATGAGCTCAAAAGAGGCACAGTATCCGTGTATCGGTATAAAGCTGTCGAAGGGCAAAGCACTTACGAACTACATAGAAGCGAATGCGGCCGCAAGAGCTTGTTCAGACATAAGTTCATCGACTATGTTTCCCACTGCTTCCATAATCATGGCTGGTCTCTTGATGCTTGCGTGGGTTATGCTTTGGCCAAGGGAATCTTTCAGAAGGATCAGGTCGTATCAACCAAAACTCTGTATAACTACGTTGACTTGGGCCTAATGGATATCAAGAACGGTGATCTTCCAGAGAAGGTCAAGCGCAATACTAAGACTCGTCGTGCCCGTGTAAACAAGCGTATCCTGGGACGAAGCATCGATGAACGTAGTCCTAGAATCGAAAGCCGTAAGGACTTTGGTCACTGGGAATGCGATCTGGTTCTTGGACACAAGACTAAGGACGATGATGTGTTGCTTACTATGTGGGAACGAAAGACGCGTCAGTTCTTCATGATCAAGATTGAGGATAAGACCTCAGCTAGCGTTATGAAGGCATTTGATAAGCTTCGAGAGTACTACGGATCCAAATGGAATCAAATCTTTAAGTGCTAATTTCCCAGGATTTTACAACTCAAGCCATACGGCTGACAGATTTTCTGCCGGCCGTATTTCTTTTATGCATGACTTTCCAGAAATGCGAGGATCTCAGCTTTAGTTCGGGTACTTTTATCAATAGCTTTTAGTAATTCCTCCTGCTCTCGGTGTTTCTTGAGCTCATAGAGAGCATCTAGCTTCTGCGACGCTTTATCGCAGCGCTCTTTAAGGCGACGGAGTTGTTCTTCTGTTTGGGAAATCTCGGCTTCAATTGTCTTAATATTCTTCGTTCTCGGCATCTTCATCATCGTCTTTCTGTTCTTCTGGCATTGCGGCGTTCTGAATGTCTTTTCCAATCTGTCTTGCCTGTGCCTTGATCCATTCTTCGTCCAGTCCAAAAGCACCTAGCATTACTTTCTGGGTAGCTGTGACTGCGTGATCGAGCTTATAGTTGCCATTCGGCTGGCGTATCAGCTCAATCTTTTCGAGCTCTTTCAGTGCCGAAGGTACGCTCAGATAGTTAGGCTTGCCCGGCATTTCGGCTTTGCGCTTTCTCAAAAGCGTGTAGATTCTTGCTCGGATTATCAAAGCAATGAACTGAATGAAGATCTTAGCTTCAGCCGCCTGGCTGCTTGCGACTCTGAATGAGCGATTGCCAAGGAAGGTCTTATCACTGCCAAACAGCTTCTCTGAGATATCGCGGCTCTTGTAAAGATTCAAGGCATCAGAGGCTGTCATCTTTTCGGAGGTCACGATCGCGAAATAGCCGCACAGCTGCAGCTCTCGTTCGATGACATCTTCTCGTTCCTCGTAACCATAGAACTTGTCTTTGTGGTAGGTGAGCTTGAAGTAGTGCTCGTATCGCTTTGGAAGCTTGTATTCTCTGCCTTTTATCTTGTCCATCTCGGCTTCCATTCTGTCCAGATCAGCTTCCAGTCTAGCACGCTCGCTAGCCTGCTTCTTGGCCTTGTAGTAGATATGGAAATAGCGGTCAGTGTCGTCATCCGCGTACAGCTTGGCTTTAACCGTCATGCCATAAGTCCGGTAAGCCTTCCTTGATGGAGCATGCTCTCTTTGATTCGAATTCGCCCATGTGCTCCATGATCAAGCCGTGTACAAAGGAGGCCCTGCCTTTAACCATCATCACGAAATCATAGTCGCACGAGTCCATGAATTGGATGTTAGCCTTACTGAAGTATCCGCGATCAAGGATAAAGCCAATCTTCTCATAGCCATAGCCGCGAATCTTCTCCAGCATGTATTTGAGCTGTGAGACATCGACGATACTACCCGGATAGCTTTCGTAAAGCAGGGGCTTCTCATTGGTCATATCGTAAGCAATCGAGTAGTTGATGATTGGCGCGCCAACGTCGTTCTTAGGGTGGCCGTATTCAGCCATCTCAATATCTCCAGCTTTACAGTTCTTATCGTGGGTGGCATTCCAGCTGTTCAAGAAGTCGACCCTGTCATTGTCATCGATCTCGCGAATGAAGCGCGAGATTGTAGAGTCACTGTAAATCTTGTTCTGTGGCGTCATCAATGGGTGGTTGTAGGCATAATCCGGGAAGTGCTGAGCCACGTTGCTTTCTGCGATAACAGAGTAAGCGGCCAGATCAAGAAGCAGTCCCTTTCCCCGGTCATCCCAGCGCTTCAAGTGTTCAGCGAGCTTGTAGTCTTCAATAATTCTTCTCTTCAATAATTCTTCTGACTACGGAGAAGGCACCGATGCGAATACAGCTGCTTCTTGATTCATTAACTGGTTCAGCCGCCGTTCCCTCGGCAGGAATCTCAACATCAGGGAAGAACTTTTCAAAGTTGGGGTTCGGGAATATCATTCCCGGATGATCTGGATCGGCTTTCCCAATGGTCGTTCTTCTGGCGACGTTGTATTTCTTCTCGGGAAGGTACTCTCTAGCATAAGTGTATTCGATGTAGGTAGTCTTCCCCCGTTTATTTCTGGAAATTTTACCAGTGTTCTTAGGAATATTAACCAGGCAGTTGTAGTACATGATGGCCTCCTTCACTGAGTATTAGAAAAGCACATCAATGCAAGCAAAGATGTGCTAAAAATACAGTGTTTTTGCGGGTTTAAGGCACTTTCTCAAAGGACTTGAGTTTGATTGCTCTGGGAAGTTAGCATTAAGGAAAGCAAATCCTTCTTCTAGACAAGCTACCCAATGAGCCGTAGATAATCAACGTCTGGAAGCCTATTTACCATGGTCTGAAAATGTTCAGCTCCACTGTAAGTAAAGTCCCATAAACTGATTAATCCCATCTTAGCATTGCTAGGATGGGATTTTAATATACCGCGCTATTGGGGGCTTACTTTACGAGCTTATCTTATGTTCGTCATTTTCAGCACGGATGCCCTAAATATGAACCGAAGCATTGAACGAGTACTTCGACTTCTAAATTATAGTTAGCTGATCACAACTTAATATTCGGATTTGCTATTGACGCAACTTCGGATAATGTGTATAATTATTTGTATTCGGAGGTAAAGATGAACAAAAAATCCGCAGTTTATTTGCTTTTGCCTGCTTTTCTAGCAGTGCTTGTATTTACGTTTTATCCATTGATCCAGATTGCTATTCCGACATTGAATAGTAAACAGGGCTTTCTGCGTTTGTATACTCAATTTTTGAGGAGTACATACAATTGGGAGGTCATTCAACGAACATTTATTATTGCTATCATTACAATGCTTATTGTTTTGATTTTGGGACTACCTGTTTCACTCTGGATCGCTCGTCAAAAACGTTCATTCAGACAAGTTCTCTCAGTATTGATCTTGTTCCCAATGCTTACTAACGCAGTTGTCAGAAACTTTGCTTGGATTATTATTTTAGGTAAGAATGGTGTAATCAATCAAACTTTGATGGCTTTGCATATCGTTAAGTCTCCAGTGTCGATCTTGTATACCGATACTTCAATAATTGTTGGCTCTGCATATTTGTTCTTGCCAATTATAATAACTTCTTTAGTTGGTAGTGTTTCTGAATTGAACATCGAAACCGAAGAAGCCGCAGCTGTTTTGGGGGCTAATCCATGGACAAGTTTGTTCAAGATTATTATCCCTCAGCTGACAACAGGTATTTTTACAGGTAGCATCCTAGTTTTCGCAGGTACGATGACAGCTTATACAACTCCTCAAATTTTGGGTGGTAACCGTCATTTGGTGATGTCTACGTTGATTTACCAACAAGCGATGACTCTTAGCAATTGGGACAATGCAAGTGCAATCGCCATTGTCTTGATTTTGATTTCAGCCTTATCAATGACGATTTTGCGTTTAATTGGTAAGAAATTAGATAGGAGACCTGGCCTTGCTTAATGGTAAAAACAAACTTCTGACAGCGATTTCAATCATTATAATTTTGATGATCATGCTTCCATTAATGATGGTTGTGATCACGTCATTCAATGATCAGAGTACTATTTCATTTCCAATCAAGGGTTTTACATTTAGATGGTATCATAATATTTTTGAACAACCCGATTTTGTAAGTGGGTTTGGAAACAGTCTGATAGTTGCTTTGATTGCTAGTCTTCTCGCCTTGGTTTTGGGGATTCCAGCGGTTTACGCTCTGACTCGTTTCAATTTACATCATGCAAGTTGGTTTCAATCCTTCTTTCTAAGCCCAACGCTAATTCCAGAAATAGTTATTGGCTTCGCTCTGTATCAGGCAGCAGTAGTATCGATGGGTTTACCGGTTATGCCCAGCTTAATTATTGGTCACTTTCTGTTATGCCTTCCATATGTTATTCGCCTGATTACAGCAAGCATGTTATTGCTAGACCCTCACGTTGAAGAAGCAGCTTGGGTTTCAGGATGTTCACGTAAGAAATCTTTTTTTATTATTGTTTTGCCTAACATAAAATCTAGTATCATTGCAGCATTTATGATGTGTTTTATCAATTCATTCAACAACATTCCAATTTCGTTGTTCATGAACGGCCCAGATTTGACTATGTTACCAGCTGCAATTCTTAACTACTTACAGAATAATTATGATCCAACTGTTTCAGCAATTTCAGTTCTGCTAATGACTTTCACGGCAGCGTTGATGTTCCTGGTTGAAAAAGTTGTTGGCATCAATCAATTGACAGAATAGGAGATTTTAATGGCAAATCTTGAAGTTAAAAATTTGGCCAAGTCTTATGACGGCAAGAACAACGTTTTGAAAGATATTTCTTTTTCAGTCAAGAATGGGGATTTTGTTTCAATCCTTGGCCCATCAGGCTGTGGTAAAACTACTACCTTAAGAATCATTGCTGGATTGATTGATAAAACTTCTGGTGAAATCAATATTGATGGTACAGATATCAGTACGGTTCCAGTTTACAAGCGAAACTTTGGTATGGTGTTCCAAAGTTACGCTTTGTTCCCTCACATGACTGTCTTCAATAATGTTGCTTTTGGTTTGAAAATGCGAGAGCTTTCTAAAAATGAAATTAAGGATAGAGTTGATGCTATGCTAGAATTGACAGGGTTAACTGATTTTGCAAATCAGTTTCCGGATAATCTTTCTGGGGGACAGCAACAACGTGTTTCATTAGCTCGTGCATTGGTAATTAATCCACAATTACTTTTAATGGATGAGCCACTGAGCAATCTTGATGCTAAGCTACGCTTGAAGATGCGCGAGGAGATACGTAATCTTCAGCAAAAAATGAAGATGACAGTTCTTTTTGTCACACATGATCAACAGGAATGTTTTGCTATTTCTGACAAAGTTTTAGTTATGAAGGAAGGTCGCATTGAACAATACGATACTCCGCAAAATATTTTCCACCACCCACGCACAAAATATGTAGCTCAATTCATTGGTTACGAAAATTTTATTAATATCGATAAGAAATTGGATGATCACAAATCCGTCAGCGCCGGCATTCAATTTGATACGGCTGACACTGATCAAGACGCGGTTGCGATGACAATTCGTCCTGAAAATATTAAGGTTGCTGAAGAAGGCGATGATAACCTTATTTCTGGTATGATCATAAGTCGAGAGTACCTTGGGCAAAGTTTCCAATATACCGTTCAGACTGTTTTAGGCAATTTGAAGTTTGAAGAAGTTCGTCGTGCAATGAGAGACTTGAATGAGCAAGTTACTCTTTCTTTGCCAAAGGAACATTTACATTTGTTGTCAGAATGAAGTAAACACTTGTTTTTAAGAGAGGATAAAGAATGTTTAATAAGAAAAAAATTGGCTTGATTGCTGCTAGTGTTTTGGTTGCAGGCTCTGCAATTCTTTCAACTGCATGCTCATCATCTAATTCTAACGGCTCAAGTAAGTTGGTAGTTTCAACTTTTGGCATGTCAACTAAGCAAATGCAAAGAGATGTTTTGAAGCCATTTGCTAAAAAGTTCAACGTCAAGGTTTCAACTCAGTTTGGTGACTCTTCAGCTCGTTTGACCCAAATCGAGCACAACAAGAATACCTCTGTTGACGTTGCAGAATTTGCACAAAATAATGCTGTTACTGCCAACAAGAAGGGACTTGCCAAGAAGCTTGATACTTCAAAGATTAAGAACTTTAAATACCTGTCAAAGGAACAACAAAAGCTTGCTAAGCAAATTAATGCAGTCCCATATACTCTTAACAGTTGCGGTATTATTTACAACTCAAAGAAGGTAAAGATTACTTCATGGGATCAGCTTTGGAGCAAATCTTTGAAGGGGAAAATCGCAATTCCAGATATTACTACTACCTTTGGTCCGGCAATGCTGTATATTGCTGGTGATCATGCAGGTACTGCAGTAACTAGTGACAATGGTGTAGCTGCTTTCAAGGCTCTTAAAGCTCTCAAACCTAATGTTGTTAAGACTTATACTTCAAGTTCTGATCTGGTTAACATGTTTAAGAACGGTGAAGTTGAAGCAGCTGTTGTTGGTGACTATTCAGTAGCAATGATTTCAGCGGCAAGCTCAAGCATCAAATACTTCGTTCCATCTTCAGGTACTTACGCTAACTACAACACTGTTTCAATTTTGAAGAACAGCAAGAATACTGCTGCCGCTTACAAATACATCGACTACCGTTTAAGTACCGCAGTTCAAAAGAAAGTCGCAAGTGCTAAATCACTTAACAATGCACCCGTTAATACTTCAGTAACGTTAAGCGCTAAGGACGCTGAAAATAAGGCGTATGGCGCAATTGCTAAGCGTTCAAAAACTATTGATTACTCATACGTGAACAGTCACCTTTCAGGCTGGATCACCAAGTGGAACAAGCTGATGAACAAGTAATTTTGAATTTGGCAAAGTTGGAACTCAAAAAAGTTCCAACTTTTTTCTTGAGGAAACAAATATGACTAAAATTGATTTACTGGTAAAAAATGCTCACGTGTTTAATGTTTACTTACGTAAATTTGAAGATGTAAATATCACAATAAAAGATGGTAAGTTTTATTGGATCAATAAGGAATTACCAGGGATAGAAGCGGCAAAGGTTATTGATTTACAAGGAAAGTATGTGATACCTGGCTTTGTTGATGCTCATATGCATATCGATAGTTCGATGACTACCCCAAAAGTTATGGGACAAACAATTGGCAAATACGGCACAACGACAATTATTGCAGACGATCATGAAATCACTAATGTTGCAGGGGTAAAGGGACTAAAAGACTTTATTGACGAGAAAGCGCCTATTGATATATTCTTCGGCATTCCTTCATCGGTTCCGTCGACTAATCCTAATATGGAAACGACAGGCGGATTAATTGGCGTAAAGGAGACCGAGGAATTACTTAAAGATCCACGTTTCGTTTGTCTTGGCGAAGTTATGAACTTTAAAGACATGACTAGTGATCACGATACATTAATTAAAAAAATTATTGCTGCTTGTCGCAAGGCTAGGCCTACGATGCCACTTGAAGGTCATGTGCCCGCATATCACAGTGAAGATTTAGCAAAGGTTATTTATGCCGGAATCACAACTGATCACACTCAGCAGACTTCTTCTTTAGTTGATGAAAAAATTAGAAGCGGTATGTTTGTTGAAATTCAATTAAAATCAATGCACCAAGAAGTTATTGATACGGTAATAGAGCATGGATATTTTGAACATGTTGCTTTGGTAACGGACGATTCAATGCCGGATACTCTACTTAAAGGGCATCTGAACTTACTGGTTAAAAAAGCTATTGATATGGGAATGAGACCTGAAGACGCTATCTATATTTCAACTTATACACCTGCACGTCATATGGGGCTGTGGGATCGTGGTGCCATTGCGCCAGGACGAGTAGCCGACTTTATAGTATTAAATAACCTGGAAGACCTATCGATTGCGCAAGTTTACAAAAATGGGCTTCCATTTGCGGCAAAAGATGAAAAGGATAATAATGTTTACCCTGAAGAGTTATTGCATTCAGTTAAGGCCCCTAAACTTTCAGAAGCAGATTTTGATTTAAAGACTGATTTGGTCCAAAATGGTAAAGTTGTTGCCAATATTATTCAAATTAACGAAGTTGGAACTTTTACTAATCATATCCAAAAGTGTTTGGAAGTTAAAGATGGGCACGTACAATGGAAAAAAGCAGGTTTGGCTCTAATGCTCTGTCAAGAACGATATGGTAAAAATGAGGGCAGATACGCCTTTGCATTAATTGATCGTGGCATTGTTGGAGATGGTGCTATCGGTGCTACCTGGGCACATGATCACCACAATTTAATCATCTTAGGGACTAATATTGCAGGTATGGTTTCTGTTCAGAACCTTCTTGTCGAAGAACAGGGGGGCTATATAGCAGCTAAAGGCAGTCAAATTGTTGCAAATGCACCACTCCCATTGGGCGGGGTAGTTAGTCTTGAGCCAATGTCTGTTTTGGGAAAACAAATTAGTAAGGTCAGAGAGACAATGGTCGATTTAGGCTATAAGAATACAAATGAAATTATGTCTTTTTCAACACTTTCCTTACTTGTTTCTCCAACACTGAAAATTTCAGATAAAGGAATCTTTGAAGTCAAAACCCAGAGACATATTCCTTTGTTTGAATGTTAACTTCCCAATACCAATCAAACTCGAGGCCAACTAATCAGTCGCCTTACTACATTTTCATCAGGATGGTCTGGGGTTCTGGAGGCTTGCTCTGTAAGCTCTTGGAACTGGCCAAACAATGAAGACGAAGTGTGAGAGTTGCCCAATTAGCCACCCTTATCAGATAATCAACGTCTGTAAACCTATTTATCATGTGCTGGAAATGTTCAGCTCCACTGTAAGTAGAGTTCCATAAACTGATTGATCCCATCTTAGCATTGCTAGGATGGGATTTTAATATACCGCGCTATTGGGTGCTTACCTTACAGTGAAGTACAATGTTTATAGGACAGTTTTGTACGATTTTATATTATTACTAAAACTTCCCAGTCCGGGAACTGATCTATACAAAGCTGCCACTTTGTTTGCGAATTAACCGTTTTCTTATTTCTCCAAATTCGTCCAAAAAAGCGAATATTCACCTATCTATTCTCTTGCTTTTTCCTAAACTGAATGCTATCTTTAACTCTTGCTTTTTCCTAAACTGAATGCTATCTTTAATACATAATTGTTCGTCTATGAAAAAGAAAAGAAGAAAAAGAAAGAAGTGATTTAACTATGCGCTTTAATTTCAAGAAATTGGTTGCCGCTGGGGCAGCCACCCTGTCAATCGCTGCTGTATTGACTGCCTGCTCCGGCAAGAAGTCTAACACTTCCGTCAACAAGGACACCAAGCACGGTATCGCCTTGATCACTGACAGTAACGGTGTTGACGACCACTCCTTCAACCAAGCCGCTTGGTCTGGTTTCAAGGACTACGGCAAGGAACACGGCCTCAAGCAAGGCAAGGGCGGTTACCAGTACTTTCAATCATCATCTGCTGCTGACTTCACCCCTAACTTTACTCAAGCTGCCCAAGCCGGCTATCAAACCATCTACGGTGTCGGCTACATGCTGAATGACTCAGTTAAAGCCGCATCCAAGAAGTACCCTAAGAAGAACTTCGTCTTGGTCGACTCAGTTATCACTGGCCGCAAGAACGTTGCTTCAGTTACCTTCAAGAGCAACGAAGCTTCCTACCTTGGCGGTCTGGCTGCTGCCTACACCACCAAGACTAACAAGGTCGGCTTCATCGGCGGGGCCAAGGTCAGCATCCTGGAACTGTTCGAAGCCGGCTTCAAGCAAGGTGTCAAGGATGGTGCCAAGGCCTTAGGCAAGAAGATCACCGTTTACGACCAATACATCGGCAACTTCACCTCAACCGACAAGGCCAAGTCAATCGCCCAGTCAATGTACACTGACGGCGCTGACATCATCTACCAAGCTGCCGGCAACGCCGGTAACGGTGTCTTCACCGAAGCCAAGACCCGCAACAAGGCAACCACGGCTGCCAAGAAGGTCTGGGTCATCGGTGTTGACGTTGACCAGACAAACCTGGGTAACTACACTTCAAAAGACGGTAAGAAGGCCAACTTCACGCTGACCTCCGTATTAAAGGGGCTGCGTTTCGCATGCAAGGACATCGCTGACAAAGCCTACAAGGGCAAATTCCCTGGCGGTAAGGTAATTTCCTACGGCTTAGCTCACGATGGCGTCTCTGTCACTAAGGGGAATCTTGATGCCAAGACTTGGAAGGCAGTGCAAGCTGCCCGCAAGCAAATCCTGGCTGGTAAAATTAAAGTTGCAACTGCTCCAAGTAAGTAGCACAATATAATATATAGTGGTCAATCTGAAACACTCCGCAATATTACGGAGTGTTTTTTGTAGGAGTAATACAGAAAGTTTTGTCATATGGAAAAAGAGATCAAAAACATCATTGAGATGCGCCATATCGTGAAAGACTTTAACGGTTTTAAAGCCAACAACGATATCAACCTCACGCTCCGCAAGGGCGAAATCCTGGCTCTTCTTGGCGAAAACGGCGCCGGCAAGTCTACTTTAATGAGTATTCTTTCCGGCCTGCTCGAACCAACCTCTGGCGAAATCTACGTGCGGGGCGAGAAAGTCAACATCTCCGGCCCAAACGTCGCTACCAGCCTGGGGATCGGGATGGTGCACCAGCACTTTATGCTGGCCCAGGCCTTCACTGTCCTGGAGAACATCATCTTAGGCCATGAAACCACCAAGGGCCTGGCCCTGGACTTCAAGACCGCCAGAGAAAAGATCCTGGCCCTGTCCAAGCAATACGGCCTGGCCATCGACCCTGACGCTAAGATTTCCGACATCACCGTCGCTCAGCAGCAAAGAGTTGAAATCCTGAAGGTCCTTTACCGCGGGGCCGACATCTTGATCTTCGACGAACCAACTGCCGTTTTGACGCCGCAGGAAATCACTGAATTCATCAAGATCATGAAGAACCTGGCCAAGGAAGGCAAGTCCATCATCTTGATCACCCACAAGCTGAAGGAAATCAAGGAAAGTGCCGACCGGGTCACTGTCATCCGGGCTGGTAAGTCCATCCAAACCGTCAGCGTTGCCGATGCAAATGACGAACAATTGGCCGAAATGATGGTTGGCCACCATGTTAACTTTAAGCTGGACAAGGCTCCCCTCAATCTGGGCAAAAATATCCTGGAAGTCAAAGACCTGCACGTCAACGAAGACCGGGGGACCGACGCAGTCAAGGGTCTCTCCTTCAATATCCGCGGCGGGGAAATCCTTGGTCTGGCCGGGATCGACGGCAACGGCCAGGACGAACTGGTCGAAGCCATCACTGGCCTGCGCCATGTTGAAGGCGGCCAAGTCGTCATCAACGGCCAGGATTTGACCAACAAGCCAGTCCGCCAAATCACGGAAGCCGGCGTCGGCCACATCCCTGCCGACCGGCAAAAGTACGGCTTGATCCTGCAACTGCCTTTGTCTGAAAACATTGCCAGCCAGACCTACTACAAGGAGCCTTACTCCAAGCACGGGATCATGAACGAACAGACCATCCGGGAGCACGCCCGGGAACTGATCAAGAAGTTCGACGTCCGCACGACCAGCGAACAATTGCCAGCCAGCGACCTGTCCGGTGGTAACCAGCAAAAGGCCATCATCTCCCGGGAACTTGACCGGGACGCTGACTTGATCATTGCCTTCCAGCCAACCCGGGGCTTGGACGTCGGGGCCATCGAATACATTCACAGCCAGCTGCTGAAGCAAAGAGACGCCGGCAAGGCCGTGCTCCTTGTGTCCTACGAACTTGACGAAATCTTGCAGCTGTCTGACCGAATTGTCGTCCTGCACGACGGGGCCGAATCAGGTGAAGTCAAGCCTGACCAGACTAGTGAAACTGAACTCGGTTTGCTTATGACCGGGAAGAATACCAAGAAGGAGGCTGCCGCTAATGATTAAGGTGAGCCCTAAAGCCAAGCGGCTTTTAGTGCCGATCGTTTCTGTTATTGCCGGCTTTTTAGTCGGGGCCATCATCATGCTGGTCTGGAGCTATGACCCATTCCAGGCCTACAGCTCAATGTTTGAAAGTGCCCTGGGCTCAGCCAACGGGATCGGGGAAACCATCCGTAACGCCACCCCGTTGATCTTTATCGCCATCGGCTTCCAGATCTCTTCAGCCGCTGGCTTCTTCAACATCGGTCTGCCGGGCCAGGCGCAAGCCGGCTGGCTGACCGCCATCTGGATCGGCCTGGCCTTAAAGGGCCTGCCCGTCTACATCCTCTTGCCATTTGAAATCATCGCCGGCATCCTGGCCGGTGCCTTGGTTGCCGGGATTGCCGGCTGGCTGCGGGCCTACTTCGGAACCAACGAAGTTATCTCAACCATCATGCTTAACTACACCGTCCTCTACCTCTGCCAATACCTGCACCAGGACGTCATGAGCAAGAGCCTCCGCGTTGACACCGACACTACCAAGACCATCGGGGCTAGCGGCAGCCTGCGGATTCCGTGGCTGAGCGAAATGTTCGGCGACTCCCGGATCAGCGGCGGTATCTTCCTGGCCATCATTGCCCTGGTCATCTTCTGGTTCTTGATGAAGAAGACCACGGTCGGCTTTGAAATTAAGGCGGTTGGTTTGAACCCATTCGCCAGCCGTTACGCCGGCATGAGCGACAAGAAGAACATCATCATCTCCATGCTCTTGTCAGGTGCCTTCTGTGGCCTGGGTGGGGTCGTACAAGGTCTGGGGACTTACCAGAACTACTTCACCCAAACGACTACCCTGGACATCGGCTGGGACGGCATGTCCGTTGCCCTTTTGGGCGGCATTAGCGCCATCGGCATCCTGCTGGCTTCCCTGCTCTTCTCTATCTTGAAGATCGGTGGCCTGGGGATGCAGACGGCAGCCGGGATTCCATTTGAAATCGTTTCTATCGTCATCGCTGCCATTATCTTCTTCGTAGCCATCAGCTGGGCTGTCGGCCTCCTTTTCAAGGAAAAGAAGTCTGACAAGACCGCGACCTATATTGCCACGGCGGAAACCGCCAGCCGGCAAGCCGCCAATGACCAGCAAAAAGGAGGGGAAGCATAATGAACTTCGTGACTGTATTAGCCTTAATCGTTTCATCAACTTTAGTTTATTCAGCTCCCTTGATTTTCACCGCTTTGGGCGGGACCTTCAGTGAAAACTCAGGGATCGTCAACGTTGGTTTGGAAGGGATCATGACCATGGGGGCCTTCACCTCCATCGTCTTCAACCTGAGCTTCGCCTCAACCTTCGGCACCGCTACTCCATGGCTGGGTGCCCTCTTGGGCGGGATTGTCGGGATCATCTTCTCCCTGCTGCACGCCGTTGCCACGGTCAACTGTCGGGCTGACCACGTTATTTCCGGGACGGTCTTAAACTTGATGGCGCCGCCATTGGCCGTCTTCCTGGTCAAGGCCATCTACAACAAGGGGCAGACCGAAAACATCAACCAAAACTTCGGCTACTTCTCCTTCCCTGGCCTGGCCAACATCCCGGTTATCGGGCCGATCTTCTTCAAGAACACTTCAGCTCCTGCCTGGGTGGCTATCATCTTGTCCATCTTCCTCTACTGGGTACTGTACAAGACCCGCTTTGGCCTGCGTCTGCGGTCCAGCGGTGAAAACCCACAAGCTGCCGACACTTTGGGGATCAACGTCTACAAGATGCGTTACGCCGGCGTCTTAATCTCCGGTTTCCTCGGCGGGATCGGCGGGGCCGTCTTCGCTGAAGCAATTGCCGGGAACTTCTCAGTTTCCACTATTGCCGGGCAAGGTTTCATGGCCCTGGCGGCCATGATCTTCGGCCGCTACAACCCAATCGGCGCTATGCTATCCTCCCTCTTCTTTGGCTTCGCGCAAAGCTTGAGTATCATCGGGGACCAGATTCCAGGCATTTCCAGCCTGCCATCCGTTTACCTACAGATCGCGCCTTACGTCTTAACGATCATCGTTCTGGTGGTCTTCTTCGGCAAAACTGTCGGGCCAGCTGCCGACGGGCAAAACTACATCAAGTCGAAATAAAGAAAACAGGGCTTTGGCCCTGTTTTTTACTGACATTTTTTCTGAAAAAATGCTAAAGTAAATTAATGACAAGTTTTTAAAGCAAGCTTTGTGGAGCTTGGTTCACTGGAATATTAGAGTATGACTCCAATTCTGGCTGAATCCAAAGACCCTTTCCGGGCCCGGATTCGCTGAATTGTAGTTTTTTATTGGAGGTTAGAATTTAATAGAAGCTCATGAAAAAGTCGCCCCTTCCGTGATCTGGTCGATCATCGGGACCGCGGGCGTGTCCGTGATCATTGCCATCGCCGGCAGTCCTTACCAGGGGCAGAGCAAGCAGGTAGTCATGGGGTCACAAGCTGCCTTCATCGTCCTCTTCGTCTTCACCCTCTTGATTTTTGCCTGCGTCTTGCGCTTGATCAAGCGCGACAAGCAAGGCCTGGTCAAAAACTAAAGCAAGCGAAAAGCCTTACTCCACACGGAGCAAGGCTTTTTCAGATCTTAAAAAGCAATGTCGTCAGCAGGCGCAAAAGTGCGAAGACCGCGAAGACCCAGATGCTGTCTTTGATCCCGCCTAAGTAGCGGCGCTGGTAAAGAGTCATCCCGGCAGCCGCGGCAAAGAGCAGGATAAGGGATATGGCGGCCAGCCAGCTGCCCGGCCAGTAGATCAAGTGGATCACAAACAGGCAGGCCAGGTAGGGCCAGGACCACTTCAGCCGCAGCAGGGTAAACTGCTTCCGGCTCAAGTGCCGGGTCAGCAAGAGCGGCTCAATCCCGGCCAGGTCCTCTGGGAGAAAAAGCCGGGCAAGTACCTGGCCTTCCCAACAACTTGCAAGCAGAATTAAAACAGCTTCCTTGCCAGCCAAGCGGCTGGATCATCAGCCGCTTTTTGGACTGTGGGGAAGAAGGCGGCAAGGTCTACGACTACTACAAGACCTTCGTGGAGATCAGCTGAAAATTAAATGCTCTCCAAGGGCTGCTTGCTCTTCGGTGGCAGGTAATCCCGGTCCAAGGCGGCCAGTTCACCGGCGGTCAAGACCAGGTCAGCAGCCGCCAAGTTGGCCCGCATGTGGTCAACTGAACTGGCCTTTGGAATGGTCAAGACCTGCCCGGTCCGCATGGTCCAGGCCAGCAATACTTGATGGACGGACACGCCCCGCTTGTCAGCGATCTGCTTTAAGCTGGCTTTAACGGGGATAGATTGCCCGTTGCCTGAGTTAAAGGGCGAATAGCCAATAAAAGCAATGCCGTGCTGCTTTTGCCAAGGCAGGAGGTCATATTCAACGCCCCGCTTGTCGAGATTGTAGAGGTCTTCATTGGCAAAAACGGCCCCTTCCCCTGCGATATCTACCAGCTCCTGCATATCAGCCGTATCAAAGTTGGAGACGCCCCAGTGGCGGATCAGGCCGGCAGCTTGCAAATCCTGCAGGCCCTTGACTGTTTCTGCTAAAGGATAATCGCTCTTCCAGTGCAAAAGATACAAGTCCAGATAGTCTGTCCCCAGCCGCTTCAAGCTGGCGGCCAGGCTTTTTTTCTGCTCTCTTGGACTGGCGTGCCAGGGGTAGAACTTGGAAATAAGGAAGAGCTGGCTCCGGTCCAGGTCCTTGATGGCTTCACCGACCAGGCTTTCGGCCTGCCCTTCCCCGTACATTTCAGCGGTGTCGATCACGTTGACCCCGGATGACAAGCCGCAACGCAGGGCCGCGATTTCCTCCTCCCGCTTGCTGGCCTTTTCCCCCATGCCCCAGGTGCCCAGGCCCAGCTGGCTCAGTTTTTCTCCTTTGACAGTCATGTATTTCATGGAATTTTCCTCCATCTGTTTTATTGTTTTTTTATTTTTGCTTTCTCATTAAGCATAGTACAAGGGCGGCCATTTTTTAGCAAAAATCACACAGATTTTGCCAGGATTTATCGGTCTAGACCTTGACAAAAAATCTTCTTGGAACTAAAATGGACTATACCAATATGAGTGAGTTAAAAAATAAGGAGTCGTGATCAAGATGAAAATTATCGTTGTGAAAAACGCCAGTGAATTAGGCAAGCAGGCCTTTGACCTTTTGGCAAAGGCGGTTGACGAAGGGGCTAAGACCTTGGGCTTGGCAACCGGGTCTTCACCGGTTGAGCTCTACCAGGAGATTGTGGCCAGCCAGCTCGACTTCAGTCAAATGACCAGTGTCAACTTGGATGAATACGTTGGTCTCAGCCCGGAAAACCCGCAGAGCTACCACTACTTCATGAACCAGCATCTCTTCCAGTACAAGCCATTCAAGCGCTCTTACCTGCCAGACGGCCAGACAAAGGACATCCAGGCAGAGTGCGGCCGCTACAACCAGATTTTGGCGGAGAACCCGGTAGACTTGCAGGTCTTAGGGATCGGGCAGAACGGGCACATCGCCTTCAACGAACCGGGGACGCCGTTTGACAGCGTGACTCATGAAGTTGCTTTGACGGAAAGCACGATCAAGGCCAACGCCCGCTTCTTCAACAGCATTGATGAAGTGCCAAAGAGCGCAATCTGCATGGGGATTGCCAATATCATGGCGGCTAAGGAAATCGTCCTTTTGGCCAAGGGGGAAAGCAAGGCTAAGGCTATTAAGGACATGGTTGAAGGGCCAGTGACTACGGATGTCCCGGCCAGCGTCTTGCAAAAGCACCCGAACGTTACGGTGATTGCCGACCAGGCAGCCGCGAGCTTACTTAAATAAGAAGTAAAACAGGAGCACCTTCTTCGTAAAAAGATGCCCCTGTTTTTGCTAGCGCTTCGGAAAGCGGTTGCGTAAAGCAAAGGACAATGATAATATAATATGTAACAGATACTATAAACTTACTTCGGATTTAACATTGGGAGTGATGAAAATGCCTTGGTTTACAATCATGACGGTCATCGTAGTCATCTTGGCAGTCTTCGGCCTAATTACTTTGGCCAAGTATCTGATCAACTACTCTAAAAAAGGCAGCTAAACAGTATACGCAAAAGGATCTGCCTCAACAGAAGGCAGATATGACCCCCGAAATTAGGACACTAATTTCGGGGGTTATTTTCATGACTAAATACACTAAAGAAATCAAACTTGCTATCTACCTAAATGAGCTTGAGCAAGCTATTCACAAATACATCGATTACTACAACAACGTAAGAATCAAGACAGGACGAAAAAACATGACCCCGATTGAATATCGGAATCATGTTTTAACAACCTTAACGGCGTAATACTAAATTGTCCCAATTTTGGGGGTCACATCATTGAATTAATGATGTTCTGCTTTTCCTGATCAGAAAAGCCAATCCGGCGGTACAGGGCAACGTAGTCTGCAAGAACTTGCTCTACTATAGTAACAATTTTCTCTAGCTTTCGGTTCTTTACATGGATTCGCCTTAAGATAGTTAACAAAGCTAGGCTAACGAGCCAGATGGCAAACGCAATTAATTCAGGATATACACTTATGAGCTTTTCACCTCCGCCCTTTTTAGAATGTGTTAAAATCAAAAATATAAATCTGTTTTTCTAAGAGGTACTTATGGATACTACCGAGAGCATAACCTTTACTAGCAAGCTAACATTCTGGGATAAGTTTAAATGCTTTTATTTGCTGCACCTTTACAGTCTTATTTTTTTAATACGATTTCAAAAGAAGTGGCAAAAGATTCTTATTTATCTGTGGTATACCAGTGTTTGTGGCTTTTCACTTGCGATTCTTGTTGTTTCCTATCCTTTTGTCACCATTAAAATGTTTATTGATGTCTTTTTAACGCTATCTTGTTTTTCGTGGGTACCAGCTATCACTGCATTCCTAATTTCACTAAAGTGCCCATCTATTATAAATCTTAAGCTTTCACCCGATAATAATTTAGGAAGAGCGCCTATAGTAAAAATAGGTGATTCAAATTCACAGATAGTATACTTAAAAAGTTCTTTACTACTTGATACTAAGAATTTCTATTTGATAATGTGCCCAAATTATTTGCCAAAGCATAAAAGCAGAGTATTCTATAGCTTCATTTCCAAAAGCCAAAACACTACAGCGCTATCTAAAGTCAACTTTATAGCTTCCGTAAAACCACATTTTAAAAAATTCATCAAGTTGCATATTTGATGTTAAAAAATACGAACTTATTAGTCTGGGATTCTAACCTACTAACAACCCGGTAAACAATTGTGGAATAAGATCTAATAAGACTGAAAGAGTCCCTCCACTAATAAAAATAGATACTCCAGCTATTGCAACAACCGTTGAAAAGCCAATTAAGGTCTCCCATGATTTCTGATCAGTTTGACTTTGGGTTACGAGCTTCGGAACATCAACGTTTGGAATTTTCGTGCCAGTAAATAGATCTGTTGGCTTTGAAGTGACAGTGATAACTACAGACAGTTCATTATCCAATTGCTTATCCTTAGCTTCTAAAATATGGTAGATAAATTTAAGCTTGCTTTCACCAGAGTTGTTAATCGAAGCTTCTATCGCCACGTTACCATTGGTAATGCTTGCGCTTGAGATCACCTTATTTGCTTCGTTTACAACCGCATCAACACCATTTCCTTTAATATGTCCTGAAGTTTGAAGCCAATTGGCAAAACTGATTGAATCTAACTTACCGTTTGAAATAGTAATTGCAGGAGATTCATCAGCTACTGACAGCGAATTAACCAATTCTACTGAAATCTTTAAAGAAGGGATATCCACTAATTCAATCTTCTTGTTGAACTCAGCAGATACCGACTTACCAAAGCCCTTTAGTACATCAGCTGCTACTTCCCTATAAGAAATAGTACCGTATAACTGGGGAACAAACTTATTAACACCGGCATCTTTGCCAGAAGCTGCTACTTGGTCAATATCCGTGCTGCCAATTGGATATTCAGTAAACTGGTCAAAAGCCCAATTTGTTGGCATTCTAAAGCCAAGATTCCCACTCCAACCATAGGACATATCCGCCACGAAGCTGTATTTCATCCCAACTTCTTCGCCGTGGAGGAAGACATTTCTAGTGCCATAAATACCTGGTTCATATGGACTGAGCTTCAAGGCATCGATGATCCCTCTCATGTAAGGAACGACTGTACCTTCAATGTCACCATCCTGAATATCAACGTCCACTGCAAAGCAAAAGGACCACCAGAATTGCCAAAGCCGCGCCAAACATGATAACCGTCTGCCACAGGCTCTTCTGCAGCCTGTCTATATAGGAAGAAACACTGACAAAATTGGGCTTGTTATCGCTCAGATTGAAGCGGGCCAACAGGGCCTTGTTCGTGTATCTCTCCCGCGTTTTTTGGTCAGCAAATTTCAAATAGCCATTCATCGCGCTGGCAAAAATCCCCCCGATCTCAACATAGGTCATGTTTTCTGGAACCGCCAGATGGATGACTGGATTCCTAATCTAGTAGGGTTCTTTCAGATTATTGTTCCACGTGAAACACCATCCCCCCTCCAGGCAAATTATTCCTCTATCATATAAAAAATCTTTTTGGACAAAAAGCTTGCTAAGGCACTATATCTTGCAATAAACTATTAGAGCAACATAGATCTAGTATAGTATGAATAGAAAGAGTGTGATCACCGTTATTGTCTTAAGTGGCCCAATTGGAGCCGGCAAATCCAGTTTAACCAGTATCCTCGCCAAGCACCTTGGCTCAACAGCATATTACGAAGAGGTCAACAACAATCCGGTTCTGCCTTTGTACTACAAAGACATGAAACGGTACACCTTCCTCTTGAACACCTACTTCTTGAACAAGCGGCTGGAAGAAATCAACGCGGCGGCAGGCAACCACAATGACGTGCTCGACCGCTCAATCTACGAAGACTTGCTCTTCTTCAACATGAACGTCGATAACGGGGTTGCTGACCCAACTGAATATCAGATCTACCACGACCTGATGGACAACATGATGGAAGACGTGCCAGGCAATCCGCGCAAGAAGCCGGACCTCCTGATCTACATCCACGTCTCCCTTGACACCATGCTCAAGCGGATCGGCAAGCGGGGCCGAGAGTTCGAACAGCTCGACTCCAATCCAGGCCTGAAGGAGTACTACCAGAACCTCCTGCGCTACTATGAGCCATGGTATGAACAATACGACGTATCGCCAAAGATCGCGATCGATGGCGACAAATTCGACTTTGTCGACAACCAAGACGATCAGGACTTCGTTTTGGACACGATCGACAGCAAGTTGCGCGAAATCGGCAATTTGTAATTGATAGAAGGAACGTGATGACCGTTATTGTATTAAGTGGGCCCGTTGGAGCCGGCAAATCCAGCCTAACCGCAATTCTTTCCAAATATCTGGGGACCAAGCCTTTCTACGAAAGCGTCGATGACAACCCTGTCCTCCCGCTTTTCTACAAGGACCCCCTCAAGTACACCTACCTGCTGCAGCTATTCTTCTTGAACACGCGCTTCCACAGCATTAAAAAAGCCCTCAGCGACGACAACAACGTCCTGGACCGGTCCATCTATGAAGATTCTCTTTTCTTCCATATGAATGCCGACATCGGCCGGGCCAATGACCTGGAAGTCCAGACCTACGAGGAGCTGCTGGAAAACATGATGAAGGAACTGGAGCGGATGCCTAAGCGCCATCCTGACCTCCTGGTTCACATCAATGTTTCCTATGAAACAATGATCAGACGGATCCAGAAGCGGGGCCGGTCTTACGAGCAGCTCAGCTTCGACCCGACCCTGGAAGACTACTACAAGCGAATGCTCCGCTACTATGAGAAGTGGTATGACGACTACGACTACTCACCAAAGATGATGATCGACGGCGACCACTACGACTTCATGGCTAGCGAAAGCGACCGGACTGAAGTCCTGGACCAGATCACCCAGAAGCTCAAGCAGGTGGGCAAGCTGCCAAAGAACTGGCAGGCCGGTGAAATTGCCAGAAAGGCCATCGAGATCGGCCAATAAGCCAACAGCAAAAGAAGTCATTATTTCCCAGGAAATGATGGCTTTTTTGCTTGGCCCGGAAAAATTAAATAACGTATTTCTCCTTATTTTCTTAGAAAAAGGCAACGCTGTAATGAATTAATTAAGGCAAAAGTCTGCTTCGACTTTATTATCTTAAGTGTGCCCGCTGTCTTTTCTCAGCTTTTTTCTCACAATGCTGATATGTCATAGTCCAAAGCATGTTACAATAGTTATTAACTTATTCTAAAAAGGCTTAAAAAGATATCAAAATGATTAAGGGTGATTTATTTTATGAGATTCGCAAAAATTAAGCAAATGCTGCTGATCCCATTTGCAGCACTTCTGATGCTGGTCGCGCTGGCTATGCCTGGCCAAGCGCAAGCCGCCAGCAAGAAGACTTACATCATCGGTACCGACCAGACTTTCAAGCCCTTTGAAATCCAAGACAAGGATGGTACCTACAATGGCAAGAACCCGGGGATTGACATCGAAATCCTCCGGGAAATCGCCAAGCACGAAAACTTCAAGTACGAGCTGAAGATCATGTCCTTCAACGCCGACGTCCAGGCCCTGCAGTCTGGCCAGATCGACGGGATGATCGCCGGCATGAGCGTGACTGAAGAAAGAAAAAAGACCATCGACTTCAGCAACTCCTACTACACTGACGGGGTCTGCCTGGCCGTGGCCGAGGACAGCAAGATCACCAGCATGAAGGACCTCAAGGGCAAGACGGTTAACGTTAAGACCGGGACTACTTCTGCTATCTATGCCAAGTCCATCCAAAAGAAGTACGGCTTCAAGCTGAAGTACTACACCAACTCCAACACTTCCTGGGCTGACGTCAAGGCCGGCAACGCTGACGCCTGCTTCGACGATGGTCCGTCCCTGCGCTACGGGATTGCCAACGGGACCGGCCTGCGCATCGTCGGCAAGCAGGTTTCCAACGCCCCTCTGGCTTTTGCCGTTAAGAAGGGGGAAAACCAGGAACTCCTCAAGATGTTCAACGACGGTCTGGCCTGGCTGAAGAAGACTGGCCGCTTAAAGAAGATCGTCAACAAGTACACCAGCAAGAAGGTTGTTAAGAGCCAAGTCGTAGCTGATACTTCAATTTTGGGCTTAATCAAGGACAACGCCGGCGCTCTTCTGCAAGGTCTGTGGATGACCATCGAACTCTCAATCGTCGGCATCCTGGCCGCCCTGGTCTTCGGTTTAATCCTCGGGATCATGGGGATCGCTGAGCACAAGTTCTGGCATGGCCTGGCCAACGTAATCATCTACATCTTCCGTGGTATTCCAATGATGGTTCTGGCCTTCTTCATCTACATCGGCATGCCAACCTTGCTGGGCCACAAGCTGCCCCTCTTTACCGCCGGCATCCTGACTTTGATGCTGGACGAAGGGGCCTACATCGGGGCCATCGTCCGCGGGGGCTTCGAATCAGTTGACGTGGGCCAGTGGGAAGCAGCCCGGTCCCTGGGTCTGCCTTACTACAAAGCCCTGTGGAAGGTTGTTGCCCCGCAAGGCTTCAAGCTGATGATTCCATCCCTGGTCAACCAGTTCATCATCACTCTTAAGGACACGTCCATCCTTTCCGCCATCGGGGTCATGGACTTGACGCAAACTGGTGCCAACTTGATCGCCCAGAACTTCCAGGGCTTCAAGATGTGGCTGATCATCGCCGTAATGTACCTGATCATCATCACCCTGCTTACCTGGCTGTCCAACTACATTCAAAAGAAGATGCAACATTAGTTAAAAGGAGGCTTTTTCCATGGAAGAAAAATACAAGGTTCAGGTAACTGACCTGCACAAGAGCTATGACGACGTTCATGAAGTCATCAAGGGCGCCAGCCTGGACGTCGCGCCAAGCGAAGTCATCTGCATCATCGGTCCGTCTGGTTCAGGCAAGAGTACCTTCCTGCGCTGCATCAACAAGCTGGAAGACTTCCAAGACGGCCACATCTACTTGGATGGCGTTGACCTGGCTGACCCAAAGGTCGACATCAACAAGATGCGGGAAAAGATCGGCATGGTCTTCCAGCACTTCAACCTCTTCCCGAACATGACCGTCCTGGAAAACATCACCCTGGCTCCGGTCGAACTGGGCAAGGAAGACAAGGAAACGGCCATCAAGGAAGCCCACAAGTACTTGCAGATGGTCAACATGGATGACAAGGCCGACGTCAAGCCGACCACCCTGTCCGGCGGCCAGCAGCAGCGGGTAGCCATCGCCCGGGCCCTGGCCATGAAGCCGGATGTCATGCTCTTTGACGAACCGACCAGTGCCCTGGACCCGGAAATGGTCGGCGACGTTTTGAACGTTATGAAGAAACTGGCCCAGGAAGGGATGACCATGATCGTGGTAACCCACGAAATGGGCTTCGCCAAGCAGGTGGCTGACAAGGTTGCCTTCTTCTACGGCGGCGTGATCAAGGAACTGGGGACGCCGGAAGAAATCTTCGACCACCCGCAGGAAGAAGAAACCAAGAACTTCTTGAACAAGGTTTTGAATATCTAAGCTGAGTTTAGATTTTTTTAAAAACAAGTCAAAAATTAAAAGGAAAGCGCTTGAGTTGCCATGCTCAAGCGCTTTTTAGCGGCTAAAAATAATGGAAACACACTTTATAATCACTAATAAAATTATAATTCGTATTTACATCCGGTTGATTCCATGTTAAGGTAGAAATATCCCCTTCTATTGGAGGAAATTCCGAACGTTACCTACTGGAGGATCAAATGGAATTTATTAACAAGTATTTCGAGCTCGACAAGCTCGATTCAAACCCTAAGCGGGAGTTCATCGCTGGTCTGACGACCTTCTTCGCGATGTGCTACATCCTTTTCGTCAACCCTAGCGTCTTGGGCGCCAGCGGGATGGACAAGGGCGCGGTCTTCACGGCAACTGCCCTGGCCAGCGCGCTCGGCTGTCTTATCATGGGTATTTTTGCCAACTACCCGATCGCTACTGCCCCGTCTTTGGGTCTTAACGCCTTCTTCGCTTACACTGTCTGCATCGGCATGAAGGTGAAGTGGCAGACTGCCCTGGCTGCTGTTTTCGTGGCCTCAATCATATTCATTTTGATTACGGTCTTCAAGCTGCGGGAACTGATCGTCGACAGCATCCCTAACGACTTGAAATTTGCCATCTCCGCCGGGATCGGGATCTTTATCGCCTTCCTGGGTCTGCAAAACGGCAAGCTGGTTGTCAACAGCGCTTCTACTTTGGTAACTATCGGTTCCTTCAAGGACCCGGCTGCCTGGGTAACCATCTTCGGTCTGCTGGTAACCATCTTCTTGATGATCCGTCGGGTGCCAGGCGCGATCTTAACCGGGATCGTCCTGTCATCAATCTTCAGCATCCTGGTTGGCCAAAGCAAGATGCCGACTTCAGTCGTTTCTTTGGCGCCAAGCTTGAAGCCAAGCTTCGGCCAAGCCATCCTCCACCTGGGCGACATCAACACGGTGCAGATGTGGACGGTCGTTTTAACCTTCCTCTTGGTGGCCTTCTTTGACACCACTGGTACCTTGATCGGTCTGGCTCACCAGGCTGGCCTGGTTGACAAGGACGGCAAGATGCCAAGAATCGGCAAGGCCATGGCGGCTGACTCAACGGCCATGATGGCTGGTTCCATCATCGGTACTTCACCGGTTGGCGCCTACGTTGAATCTTCATCCGGGATCGCTGCCGGCGGCCGGTCAGGTTTGACTGCCGTTTGGGTTGGTATCTTCTTCCTTTTGTCCATGTTCTTCAGCCCGCTTTTGAGCGTGGTAACGACTACGGTTACTGCTCCAGCCTTGATCATCGTCGGCGTTTTGATGGCCGCCAACCTGGCCAAGATCTCCTGGGACAAGCTGGAAATCGCTGTTCCAGCCTTCTTGATCGTGATTGGCATGGGCTTGACCTACTCCATCGCTGACGGGATGGCCCTGGGGCTGATCGTTTACCCGATCTCCATGACTGCTGCCAAGCGGACCAAGGAAGTCAGCCCAATGATGTGGATCCTGGCTGTAGTCTTCGTGATCTACTTCTTGATCTTGAACGTCTAAACGCTAACAATAACAATTTTTGCCAAGCTAAAAAGCCCCGACTTCGGTCGGGGCTTTTTTTTATACATTTTCAGCTTTATTCTTTGGCTTCCTGCAGTCTGGCCATCTTATCATAGACCAGGCCCCGCTGGTTTTCATCGATTTCCAAGACTAAAAGGTCACCGGCTAACAGCTTGGTATTCCCATTAGGGATAATATCCTTTTGCCCCCGGTGGATAACTCTAACCAGGGTGCGGTCCGGCCAGGCGATGTCCTTGACCTGGTGGTCAGCCAACTGGCTGCCTTCATAAATGGAAATAGTCAGCTGGTCTGCTTCACCAACATAGTCGTTGTCTTCTTTGGTCTGCATCCGGCCAGCCAGGCTTTCATAGATCGGCACCCCGCCCAGCAGTTCGTTGACGACATAAGCGGCAACTGAGACCACGGCTAAAGGCATGAGGTGCAGCAGTGACCCAACCATTTCCGCGATCAGCATGATAGCGGTAAAAGGCGAGCGGACGATGGCTGAAAAAAGCCCGGCCATGGAGAAGATGATCAAGTTGACGACCAATTTTTGGTCCAAAAGGCCCAGGTCAACCATGAACTGGCCATAAACCGCCCCCAAGAGGGCCCCCATGGTCAAGATCGGCAGGAAGATCCCGCCCGGCAGGCCAGAATCGTAAGACACGATGGAAAAACTGATCCGCAAGAGGAAGATCAAGACCAGGACATTTACGGCGTGAATTTGGTTCAAGCTCAAGATCAAGTTGTTGCCCCCGCCGACATAGCCTGGGAAGTAGTACATGACCGGCACTAAGATGAGGGCCGGGATGATCCCGTGCAGCCAACGCGGCAGGACGGGGATTTTTTGATAAACATGGCTAAAATTGAGCAGGCCCCACTGGTAGAATCGGCCGATCAAGCCTAAGAAAGCCCCCAATAAGAGCAGCTGCCAGTACTGGAGGATGGGGAAGCTGTGCTTGTAGTCGATCGCTAAGACCGGAGTCTGGCCAAAGACATTAGAAACCACAAAGTTGGCCATGATGGCTCCGGCTAAAGCGTTCAGCCAGACCCGGGGAGAAAAGTTGTGAAAGACTTCTTCAACGATGAACATGGCCCCGCCCAAAGGTGCCCCGAAGGCTGCGGACAAGCCGCTGGCCGCCCCGGTTTCCAGGAGGACCCGGGAGTCGCTCTTTGAAGCCTTGAAGCCCTGGGCCACCCCCTGGCCGACTGTTGAGCCCAATTGGATTGACGGACCTTCCCGGCCTAAAAAGAGGCCAGACCCGATCGACAGGACCCCGCCGATGAACTTCCGCCAAAAGACCGGCCACCAGGCCAGTTGCAGCTTGCCCTGCAGCTGGAGCTCTACTTCAGGGATCCCGGACCCGCCGGCATGGGGCTGCTGCTTGACTAAGAAGCCGGCCACGATCACGCTGGCCAGAACGCCCCCGGCTAAGAGCCACAAGAGGGCTGGGTTAGCGTGCGCTGCCTGGTAGCCTTTTTGCCACATGGCCAGGGTCTGCCCGATCAGCCAGCGGAAGCTGCCAACAACAATGCCCGCCACCAGGCCTACGACCAGGGCTTCGAATAATAAGCGCAGGTTGGATTTGCGCGTTTGTCTGTCTTCACTCTCCATATAATTTTCCCCTACCTTTTTTGCATATAAAAAAGCATAACCCTTTTAGGCGGACATGTAAAATCTACTTTATCTCGTAAAGGCTTCATAGCCGAGGTTCTTGAGGAACTTGAACAAGTCTTCCGTTTTGATAAAAATCGTCTTTTCATTGGTATTGGGGTGAAAGCTCATTCTGTCCTCATCAACGATCTCCTTGTCAAAGTAGACCTGGATGTCGTGGTCAGCGTTGTTCAGCAGGCCAAAGGGAGACACTACCCTGGATGGCAAACCCATTTTTTCAAAGAGGCTCTTTTCTGAAGCCATCTTGATCTGCTTCTTGCCGGCAATCTCCTTGAACTTGTCCATATTTAGTCTTTTAGCATCATCCATAATCACCAGGTAGAAGTTCCGCTTCTTCTTGTTGGTCAAAAACAAGGTCTTCGTTCTGACCCCTGGGATCCCCTCGATGAATTCGTCAGCCTGCTCCGTCGTCAAGGCCGGGGCGTGCTCCACCAGCTGGTAGTCGATGCCTAATTCAGCCAATTTATCCTTTACTTCTTCAAACACGGCAATCCTCCTTTTAAATGCACACAGTCCCTTCAGAATCAAGGAGGACTTCTCAAGTATGTAATGTCTTTGTGTTTTAGGTAATGTTAAGAAAAAGAATGAGGATATAATCGATTTTGAAAATGAGGATATATAGGATATAAGGATACGCGTGATGCTACTTGAAGAAGCTGAATCCATATCTCTGTAGGATGTAGCTAATATTGTAAGTTAGTACAATTATCTCGACAGTTTGTTGGAAACCATCTACACTTCTTGCAAGTATATTTTCAATTCCGTAGTACTTTAGTACAGAAAACACACTCTCGATTGTTCTGCGAATTGCCATTAGCTCTCTTTTGTTATGCTGCTTAGCACCCTTCATATTTTTCCGATAAGGTGTCCACAGTATATAACCGTCTATCTTGAGGGCATCATGCAGTCGTTTGCCTATATAACCTTCATCGCCTAAAAAGCTAAGAAGCTGCAGACTTACGATCTGACTGGGACTGCCATCAAAGGCAAGAAGATTTTAAACTTATTTGTTCACGTGGATGGGCAAGCTTACCTGCTAAACACGCAGACTAAGAAGGTTGAGCTCTTCTACCACCTGCAAGACCAGCACCTGATCGGCGAGTTCTTCTGGTTTGAAACTCAAGCAGACGACGAATATTTCAAGGCAACTGATCAATACAATGGCTTCTTAAAGGCCAGCGAAGTTAAGAAAGCAAAGCTGCCGACCATCATTTCCAAGAAGGCAGCCAAGACAAGCGACCAGCCGGCCAGCGCGAGCCAGCTGGCAGCCTTGAAGAAGGAAATCACCAAGGCTGAAGCCGTCCAGAAGAAAACAATCTACAAGCTGTCATCTTCCTACCGCCGTGACTACCTGGACTACGCGCTCAGCAACGCGCAAAAGGCACTTTCCGGCAATAAGGGTGAGGTAACTTTTGCCAAATGGCTCCTGGCCAACTCTGAGACATATCTTAATGGGAAAAAGGCCCCAGTCACCAACATCAACAAACTCAGCAAGGCTGAGTACGAACGCGTGCGGAGAATCGTTTCGGATGTAGCGCCAAATGGCTACATGACGGCCATTTACTACAAGCGGGCGGATGGCACTTAGCACAGAAAATACAGTGAACTTTGGAACAACAAAAACTGCAAATTCGTTTATGTCAGCATGACGACCAAAGAGAAGAAATTCTTGAAGATCAGCGACTACGCGAAGAACAGCAAGTAATAGTTTACAGATGAAAAGCAGTCAACTTTTTTGAAGCTGACTGCTTTTTGCTCGCTTATTTTTCCTTTAAGCCCGATATTTTGCCAGAATCAAGCGTAGCCACTTTGGTCAAGTTGCTCTTGTACTGATAAAGGCTGCCCTCATCTGAAAGACCGGCATTATATTTTAGAAAGGCATAGTAGTCATCGCCAAGCTTAAACAGGCTCAGCATCGCGATAGCGTGCTTGCTTCTCTTGGCGACCAGCTTAGTTAGCTTGACCCAGTTTTCATCAGAAGAGACCTGTTTGTTTTTCCTCAGTGCTTTCTCGTTTACTGTTAAATAAATATTGTTTTTCTTGTCCGTATGCTCCACAAAAACTTGTGGGTCTACTTCAATTGGCTTAACAAACTTCTTGTTTTGGCTGGACCTGCTTTTTTCGACCTTCCCGTTATCATAGATGGTCGCGAAGCTAGTTCCAGAGTCATCGTCAGCCGTTATTCTAGCTTCCAAAATCGCGCTAGCACTGTTGTCGACGTGCTTTAACAGCAACAATGTCCCAAGTAGCAGAACGACAATTAAGCCAAAAATAGCCAGTAACCTTTTGTGAGATCGAATAAACTCCATAACATGCTCCCTCTATTTTTAACCGCTTTCAGTATGTTTCTGGCAGATTTATTTGTCAACTATATATTTAACAGCCTTTTTATGAAAAGAACAGTATAAGATAGCCATGAACAGTTTTTTATTCTAATTTTGTAATAGCTTTCCTTAATTCATATTCTCTGCATTTTGCTGCACTAGCTATGCAAGCAAAAAGTGAAACTTCTTTGGAAAGTTTCACTCTTTTTGCTTTTTTTAATGATTGCTCCTTTTTCAAAAAAGTAAGAATTTCTTTTTAAATACATGACTGAATAAAAACATCGCTAAAGCCGCGTCTAGCATGATACCAGAGCATGTATCAATGACTTTTGCTTGAATTTTTTGTTGAAATTTATGTTGACAGTAATTATATGTAGAACTATTACTGAGGCGATTAAGGGGGAAGAAAAAATATAAGGGTGGAGCCGTATATATGTATATCATTAGGCAACAATGGCTGCAGGACAATGCTATACGTAAGTGGTATTTCCTAGCAGCTATTTTAATTTTATTTGGGGGATGCAGTACTGCTATTCTGGTAAGCGACGCTCCGCAAAATCAGTGGTTAATCCAGACCATATTCTCACGCTTTCTTGTTTTCAGCCTGCTGGTTCCTGTTCAGATCTTGCTTTTACTGAGTACATTTCGTGTCCGTCTACAGGATATATATGTTACTGGGAGCAGGCGGATAATTTGGAAGCAGCTGGAGTATCGTTTGGCGATAGCTTTGCTCGTGACCCTTGTACCATGGGCAGTCGGCTGCTTGATTGGTATGTGCCTCAATGGCTGGGGGACCAGATTAGGGACTATAGTGGCAGAAGCATTGATTCGCTACCTGTATCTGGCCTTGTCCTGCCTGGCTATTCTCTTGCTGGTCAGTCTCTGTTTGCTGGCTAGCAAGAGAATCTGGGCCTTTCTGGCCGGCTTTGTTCTAAGCGGAATTTCCTATTTCTTGAACGTCAACCATCATTTTTCCTTGTTCTATGATTTTCTTATCGATGATTTGGGAACCCTGCTTCTGTCCCGCTTGCCGATCCTGCTAAGCATAGTCTTGTTTCTAGCTGTTGGCGTGCAAATGGAAATCGCTAGAAAGGACTGGTAAAATGCGGCTTTTTAAAGATCAGTTTCTGTATTTCTGGCAGCTGATAAAGGTGAGGTTCCTATCATGGCTACTGTTGACCTGTTTGTTTTTGCTGGTTGCCGGTGGTTTCATGAGAAACGGCAGAAGTGCCAATATAATGGTCTTCCAAGGGCTTGGATTGGCAGAGATAAGGGCTGGCATTAGAGATTTTCCGGTCTCGTGGTTCGGCTATTTCTTTTTCCCGCTGATGATCAGCTTGAATATTTTCAAGGAATTGTGGATCAGCAGGGTAATGCAGCTGCGGGGCCAGCAGATCAAGCCAAGTCACTTCAGCTGGGTCAATGTCATATTGCAGTTGCTCTTGGCCGCAGTTTACGTCTTGGCAAGCAATGCCTGCCTGTGGTTGAAAGACTTGCTGTGTGGCAACTCGCCTCTTGTTCTGGGACCCTGGCAAGGAGGAGCAGCAGAATTGCACTGGATGTTAATTGCCTGGCTTGGGGTCAGCTCACTCTTACTGATTCAAGCCAGTTGCAGTGAGCTCACTCCCGCTTTGGGCTTGATTATGCCAATCGTCTTGTTGGTTTCGACCTCTTTGACGGCTTGGAGCGGCAATCCGCTTAATGCATTAATGTTGAGCCGCTGGACCAGTGGCGCAGAGTTGTTTATGTTTGTGTGGACCCTGATCTGGGCTTTGCTGTACGTATTAGTTGACAGCAAGCACGGCTGGGTCTAAAGGAGGAAGAATGTTTATTGAGTTAAAGAATGTAAACAAGGTCATCTCAGGCCGGCAGCTGCTCAGTCAAGTCAACTGCGAGATTGAGGCTGGCCAGATCGCGGTTTTTGAAGGGATCAACGGATCTGGGAAGACTTTGACTTTAAAGACGATTTTGGGCTTGATGAAGGTTGACGGGGAAGTCTTGGTAGCTGGCACGCAGGTCAAGCCGCAAGATGCTTATCCTGTTAAGGCCGGGATTCTGATTGAAAATCCCAGCTTGATTACAGACTTCACGGCAACGCAGAATATGGAGCTTTTAGCCAAGCTTGATGAGCATATTTCTGCAACTGAAATCGCAGAATTGCTGAAATACTTTGACTTAAGCCGCTTTCCTAATGAAAAGGTCAAGAAGTTTTCTTTAGGGATGAAGCAAAAGCTGGGTATTGCTGAAGCCTTCTTGGGCTCATATCCGCTGATTGTTTTAGATGAACCGACCAACGCTTTGGACAGCGATAGTATTGATAAGTTGGTGGATTTGATCAAGTTGCGGCAAAGCAAGGGATGCACTTTTGTCATCGCTTCACATGACCGGGATTTTGTTGAGCAAGTGGCAACCAAGCGCTTTAAAGTTGAAGAAGGTGTGGTTCATGAAGCGTAAAGTATGGCTGGCGGCAGCCATCGTCTTGTGCGTGCTGGCAGGCCTGCGCTATTGGCAAGTAAACGCTAATCCTGTTTGCCGCGGGGTAGACAAGGAAATTTTTGTCAAGAAAGGGCAGGAGGTTCATGCTCCAGGAATCGACTTTAAGATTCTGTCCGCCAAGATGGTCAAAGGGAAAGAAAACGTTTATTTGACTGTAAAGGTTGATCTGAAAGACCGTGGCTATTACGCGGATGGCAAGCATGGAATAATCGCCGCGGTTAGCAACATGTATTTCAATATGCCATACAGCATCAGCAATCACTCAGATCTTTATGTGGTGGATGGCAATGGGCACAAGGTAGCCATTGGATATTTGACTAGCAAAACTCCCCAGCCATTGACGCTGAAATTTGACAATGTGCGAAGTTGGTATGATACAGAAAACACACCGGCCAGATTCAGCTTTTTGGTTGGGGATGGCAATGGGTATAAGAAGTATTCAATACTTTTGGAATGAGGGAAGACAGAATGAGTTTATTATGGTCAAGATTAAATAAGCGCTGGTTTGTTGCGGCAATCGCTGTTGGCATGGCAGTGGGCTTGGGTCAGATAATCGTCAACTGCTACACTGGCATGGCGAATATCGACTCTCCTTACACCCGCTGGCTGTCAATTAACACTGACTCATCTGCAACGACAATTTTCTTTATCCTCTTGCCCTTCTTAGCCAGTATTCCAGCAGGAAACATGTTAAAAGAGGACTTAGACAGTGGTCTATTCAATAAGTTTAAACTGCAGGTGCCTGTAGCTCGTTTGATTATGCAATATGCGGCTATGGCTTTTATGACCGGATTTGTGACCATCATGATTCCGCTACTTTTAAACTTGCTAGGATATCTGTTGATTCTTCCTAATTTTAAGCCAGATAATTTGTTGAATATCAATATTGGGGTTTTCAACTTCAACACCATGCTGGTTTCTTTGTATTATAGTCATCCTTTTGTTCACGCATGTCTTAATATATTGCTAGCTTCCGTCTGGGGTGGTTTGTTTTCGGTATTTGTCTTGGTCAACTCGGTTTGGATCAGAAATCGTTTTGCATCATTGAGTACAGCCCTGGTTTTAGAGCTGATCTTAATGGAATTGGATACTGTTTTGCCAATTGATGATATGCCAAGCATATCACCTACTGATTTCTTGCCAGAGCTGGGGGACCGTCCTTTGTTATGGCTGACAGCTTTGATGACGATAGCGTTAGCTGCATACTGTATGGGGATGTATAAGCTGGCTTGCCGCCGGGCCGTGCTGTAATTTTCGTGCGAAAAGGGAGGAGTCTAAGTGTGAAGGTTATTAAACAGCAATGGCTGTTAGATACGACTGTACACAAGTGGTTTCTGTTAACTGCCGCATTGCTATTCTTTGGGGGATGTAGCAATGCGTTTTTAGTAAGTAATACACAGCAAAGCCTGTGGTTAGAGCAAACTCTGTTCTCGCGCTTTCTGATTTTTAGCCTCTTAATACCTAGTCAGATCTTGCTTTTATTGTGTACCTTTCGAATTAGGTTTCAAGATATTTACATCGTAGGTGGAAGATGGATTATTTGGAAGCAACTTAAGTACCGTTTGATAGAGATACTACTTTCAAGTCTTTTACCATGGGCGTGTGGCAGTTTAACGGGGATGCTTGTTAATGGCTGGAGTCCGACGTTAGGGGCAGTAGCTACTGAGGCATTGATTCGCTGTTTATATTTAATTTTGTCGTGCTTAGCACTTCTTCTGCTTACCAGTTTTTGCTTTCTAATTAGTAATCGAATTACGGCCTTTCTAGCAGGGTTTGTTATAAATGGTCTTTCTTTCTTCTTGAATGTTAACCACCACTTGTCTATAATTTATGATTTTGTTGTCCCGGAATTTGCTACTTTACTCTTTTCCTGCTTGCCAATAATGTTAGGCTTGCTTCTTTTCTTGATTTTCATTGTACAGCAGGAGATTTCCAGAAAAGATTTGTGAAATATGATATATAGAAAATAGAATTGAGTATAGCGATTTTAGGAGGTAATGTATATTATGTTACATAAAAAGTTTATTGTACTAATCGCATCAATTTTGATGACGATTGGTGTTGTTACTATTGTTTCACCTGTTTTAGCCGGAAATACAAGTCAAACTTATTGGCATAATGTATACAGAATCTGGTCTCCTTACGACCACACTCCGGCTCGTAGAAAAGAAACTAAATCTGCCTACTACAATAAGACAAATCATATTAAAATTAGTGGCAACTACATTGTTATTTGGGCTGCACTTTATGATGGCCGTGATGTTTCAGGAGGCCACAGGTACAAGAGTTATAAAGGACAAGTAACGAATTTGTGGAATAATGCTGTAGAGCGTTACAAGAAAGGCGTCCAGGTAAGAATTGATTCAAAAAGAGTGGCGAATGGATGGGCAGATGGTGTTTGGAGCCCTGACACCAAGTAAACTTTAGTCAAAGTGGCCACACTTAATTCCGGTAAAATCTCAAGCTTAAAGATAAAAAGCAGTCAACTTTTTTGAAGCTGACTGCTTTTTGCTCGTCTATATTCTGTTTTGTTGTCACAAATCTTTTCTGGAAATCTCCTACTGAACAATGAAAAGTCTAATATTATCATCAAGCAACAGAAGAATCAAGCACGACAAGCAAAAATAGTGAAACTTTCCAACGAAGTTTCACTATTTTTCATCAATACTGTTTGTTATTTTTCTTCATACCATTCGGTGTGGTAAACGCCCTCGCGGTCGTTTCTGTAGTAAGTGTGCGCACCGAAGTAGTCTCTTTGTGCCTGAATCATGTTGGCCGGCAGGCTTGGGTTGAAGATTGATTCCAGGTAGTTCAGAGCGGCGCTGAAGCTTGGAGTCGGCACGCCAGCTTCCGCAGCCAGCTTAACGACTGCTCGCAAGGCTGGCAGGTTCTTTTCCATCACGCCCGCAAAGTATGGGTCCTGGAAAAGGTTGTCCAATTGCTTGCCGTCAGCGTAGGCATCTTCAATGTGGTACAAGGTCTTGGCGTGGATGATGCATCCCGCTTCCCAGTTCTGCGCGATCGCCGGGTAGTTCAGTTCCCAGTCGTAAGCCTTAGCGGCCATGGTCAACTGCTGGAAGCCTTGAGCGTAAGCCACTATCTGCGCCAGGTACATTGCCTTGCCCAAGTTGTCGATCAAGTCGCTGGCAACTTCACCGTCGTAAACCACTTCCTTGCCTTCCCGGGTCGTTGCCTTGGACATAAACCGGGCCAAAACAGCTTCCGCTACCACCGTAATTGGAGTGCCCAGCTTGATGGCATCTTCCAGCATCCAGTTGCCAGTCCCCTTGTAGGAAGCAACGTTCAAGATGTGGTCGATCACATCGTCGTCAGTCAAGTCGTCCTTTTGCCGCAAAACTTGTGAAGCAATTTCAATCAAGTAGGCGTTCAAGTCACCCTTGTCCCATTCAGCAAAAATATCCGCCATTTCCTTGTTGGACTTGTGGGCTACCTTGCGCATGATATCGTAGACTTCAGAGATTTCCTGCATGATCGCGTATTCCATCCCGTTGTGGACCATCTTGACGTAGTGGCCCGCCCCTTCTGGCCCGATGTAGGACACGCAGGCGCGGCCGTCTTCAGTCTTAGCGGCCATCGCGGTCAAGATTGGCGCTGCTTCTTCATAAGCTTCCTTGTCCCCGCCTGGCATCAAGGCCGGGCCGTTCAAGGCGCCTTCTTCACCGCCGGACACGCCCATGCCGATGAAGTGCAGGCCGTGCTTCTTTAATTCATGGTAGCGGCGATTGGTGTCGTGGAAGTTGGAGTTCCCGCCGTCAATAATGATGTCGCCCTTGTCCAAAAGCGGGATCAGCTTCTGAATGGTTTGGTCAACCGGGTCACCAGCCATGATCTGCACCAGAATCTTGCGGGGCTTTTCCAAAGAATCAACGAATTCTTCCCAAGTGTAGCAAGGCTTCAGCTTGTCATCCTCGTACTTGGCCAAAGCATCGACTTCCGGCTTGTCGATGGAGAAGCCGGAAACTGAAAAGCCGTGATTTCTAACATTGAGGGCTAAGTTCTTGCCCATGACCGATAAACCGATCACACCAAATTGTTGCATTTATTTACCTCCTAGTATGTCTGCTTCTTTTATTATACTTGCAATAAAGAAGAAAGCGAAACCAAAAGGTTTCGCTTTCTTCTTTATTTATATCTCTCTTAGTAAGAAGCACCTGAACTAGCGTCTGGTGCAGTTTCTGGAGATGATGCACTAGTAGTTGACTGAACTTGCAAAGCGTCAGCCTTGTCTTCTGAGTGACCAGATGCACCTGAAGCCGCGTCAATTTCCAAACCAAACTTTTCAGCAAAGTATGAGAATGGGTGCAGAGCTTCTGCGTGGTAGTACTTCACGAATTCTGGGTCATCCAGAGTGTTAAGTTCAGTTGAGTAAGCCATGTGCTTAGTGTACTTAACGTCGATGAAGGCCGGGCCGTCCATCTTCTTCCATTCTTCTACAGCGGCTTGGAATTCAGCCTTGTCGTGAACAGTGAAGGCCTTCATGTTCATACCTTCAGCCACCTTTGCCCAGTCGTTGTCTGGAATGATAACACCTGACAGAGGTTGGTTGGATTCGTCACGTTGTTCTGCTTCGATGTAACCCAAAGTTTCGTTAGTGAAGACAACAGTCAATACGTGCATGTTGTAGCGAGCCAAAGTAAGCAGTTCTTCGCTCATCATCGCGAAGCCACCGTCTCCGGCCAAGTGCCATACTTCACGGTCTGGCATAGCAGTTGCGGCTGCAATAGCAGCTGGTGAGCCGTAACCCATGGTTGCGTACAAGCCTGAAGTAGTCCAGCGTTGCTTGCCGTTCATGTTCAACAGACGTACGTGGTCCATGTTGACGTTACCAACGTCAATAGCGAAGACAGCGTTGTCTGCGGCTTCCTTGTTGATGACATCCCAGATTGGTTCTTGGCGTACGCGGTCTTCGTCCTTCAAGTGGTCGTCAGCAAATGAAGCAATCCATGCGTCCCATTCTTCACGGTCGGCCAAAGCAGCCTTGTAAAGTGGTGATTCTTCACGGGCTTCACCGGCGTCGATCAAAGCACGCAAGCTCTTCTTAGCGTCTGCCAGGATTGATACGTCAACTGAGTGACGCTTGCCTTGCTTCTCTGGGTCAACGTCGATTTGGATAACCTTGGCGTTCTTAGGGGACCACAATACTGAGAATGGTGAGTTGTTACCAACCCAAACTACCAGGTCAGTGTGGCCTTGAACTTCGTTAGGAGCCTTAGCACCGATACGGCCGATAGTCCCCAAGTATGGCTTGAAGCTGTCTTCAACGATACCCTTGCCCAGGTATGAAGACATCATTGGCATCTTGAACTTGTCAGCAAATTCCTTCAATTCTTCAGCAGCTGCTGAAGCACCCAAACCGAAGTAAACAACTGGGTTCTTAGCTTCCTTGATCAACTTAGTTGCGGCTTCAATTGATTCAGCAGTTGGAGCAGCGTAGTTGTCAGCAACGTGGTTGCTTGCGGAAACACGGTAGTTGTCTTCGATTTCTTGCCAACCGAAGTCCTTAGGAATTACCAAAACAGCTGGACCCTTCTTTGCGTAAGCTTGACGGATAGCAGTGTCCATTAAAACTGGCAAAGCTTCCTTGGTCTTGGCTTGGTGGACCCAAACGGCAACATCACGGAACCATGGCATTTCGTCAAAGGCTTGGAAGAAGTTGATGTCTTGACGAGGAGTTGGAACATTGGCTACCAGGGCAACCATTGGGGTCTTGTCGTACTTAGCGTCGTACAAGCCGTTCATCAAGTGGATGGCACCAGGGCCAGCTGAACCCATGCAGACACCAAGCTTGCCAGTAAGCTTGTATTCTGCTGAGGCAGCCAAGGATGCGGCTTCTTCGTTACGAACTTCGATGAACTTGACCTTGTCTTGCATTTCGTAGATCGCGTTCATGGTTGAGTCAAAAGAACCACCTGGGAAACCGTAAAGGTGGTCAATGCCCCACTTGTACATAACATCTAAAACGGCGTTTGCGCCCTTAATTTTTGCCATAAGTGAATCTCCTTAAAAATTATTACTTGCAGCCCTTTATTAAACCACATTTTTTCACTTTTGCAAGTGCTATCAAAAACCGCTATATCAAGGATAGTCGCATTTTTAAGCTAGTTAATTCACAAACTTGCTTTTTCTGGATAAAAATTTTTTGCTATCTTCCCTTTCTTTATTGTGAAAAAGTAGCTAACTTCTGGAGAATATTTTTCGGTAAAGTTTCTATTGATTTTTAAAAAAGTATGAAAGCCATCGATTATTTAAAAAGCAGGCCAGGATCTCTGGTCTGCCTTCTAAAATTATTGCTCTTTACTTCTGAACCTTGGCGTATTTGCCATTTTGCACGTAGACGCTCAAGATGGCCAAGTCAGCCGGGTTGACCCCGGAGATTCTTTCCGCCTGAGCCAGGGTTTCCGGCCGGATCTTGGCTAACTTCTCCCGGGCTTCTGTAGCCAGGCCCTCGATCTGGTCATAGTCGATGTCCTTCGGGATCTTCTTGGCTTCCTGCCGGCGCAGGCGGGCCACTTGAATCTCCTGCTTCTTGATGTAGCCGGCATACTTGATGTCGATTTCCACCTGTTCCTTGACATAGCGGTCCCCGGCCAGCTTCTGCCCAGTCAGACGTTCAACGTCTTCAACCGTCACCCTTGGCCGTCTGAGGAAGACGTCTGCCTTGACCCCGCCGTTTAAGTCAGTTTGGCCTAAACCTGCCAGGTATTCGTTGACGGCAATGGTCGGGTGAACGGTGATTTCGCCCAGCCGGTCCAGGTCTTCCTGGATCAGTTCCTTCTTAGCCAAAAATTCAGCATAGCGATCATCGTCAATCAAGCCCAGGTCATGCCCCTTTTCCGTCAAGCGGAGGTCGGCATTGTCGTGGCGGAGAAGCAGGCGGTATTCAGCCCGGCTGGTCAAGAGCCGGTAAGGTTCTTCCGTCCCCTTAGTTACCAGGTCATCTATCAAAACCCCGATATAAGCTTCGTCCCGGCCCAGGGTGAAGGCTGGCTTGCCTTCCGCGCTCAAGGCTGCGTTGATCCCGGCAATCAGGCCCTGGCCGGCGGCTTCTTCATAGCCGGAAGTCCCGTTCATCTGCCCTGCCATATACAGGTGCTTGATCCGCTTGGTTTCCAGGGTGTGGGTTAACTGCCAGGGGTCAACCACGTCGTATTCAATGGCGTAGCCCGGCCGCATCATTTCAACCTTTTCCAGGCCAGCGACCGTGTGCAGCATTTCCAGCTGCACTTCTTCCGGCATGGAGGTAGAAAAGTCCCCGACATAGATTTCTTCCGTCTTCCGCCCTTCCGGTTCCAGGAAGATCTGGTGCCGGTCCTTGTCCGCGAAACGGACGACCTTGGTTTCAATTGACGGGCAGTAGCGCGGCCCTACCCCGACGATATCACCGGAGAACATTGGTGACCGGTCCAGGTTTTCATTGATGATTTCGTGGGTCTTCGGGTTGGTGTAGGTCATCCAGCAGGAAGTCTGGTCGGTTAGGTAGTCTTCATCCCTGCTGGTAAAGGAGAAGTGGCGGGGCTCCTTGTCGCCCGGCTCTTCTTCGGTCTTGGAATAGTCGATGGTGTGCCGGTTGACGCGGGGCGGCGTCCCGGTCTTAAAGCGGCGCAGCTTGAAGCCCAGTCTCTCCAGGCTTTCAGACAGCTTAATGGCTGGAATCGTGTTGTTCGGACCGGATGAGTAGTTCAATTCCCCGATAAAAATCCGCCCTCTGGCCGCGGTCCCCGTCGTCAAGACCACGCTTTTGGCCCGGTAGCGGGCCCCGGTGTTGGTCACTACGCCCCGGCATTCCCCGTCTTCAACGATCAAGTCGTCAACGACCGCCTGGCGCAGGGTCAGATTAGGGGTGTTTTCGATGGTCCGCTTCATCTCTTCGTGGTAGTCCCACTTGTCAGCCTGGGCTCTTAATGCCCGGACAGCAGGCCCCTTGCCCGTGTTCAGCATCCGCATCTGGATGTAGGTCTTGTCGATGTTCTTGCCCATCTCCCCGCCTAAAGCGTCGATTTCTCTGACCACGGTCCCCTTGGCCGGGCCGCCGACTGAGGGGTTGCAGGGCATAAAGGCCACCATGTCCAGGCTGATGGTGAGCAGCAGGGTCTTCTCCCCCATCCGGGCACTGGCCAGGGCTGCTTCACAGCCGGCATGGCCGGCACCGACTACGATCACGTCATATTCGTTTGAAACATAAGTCTTCATTTTTTTCGTCTTCCTTGCCTTCCTCGCTATTTCCCTAAGCAGAACTGACTAAAGAGGTCATTGATCAATTCATCCGGGGCGCTGTCACCAGTGATTTCCCCCAGGCTTTCCCAGGCCCCGGTAAAGTCTATCTGAACCAGGTCAACCGGCATCCCTGCCTCAAGCCCGCTGGCCACGTCGGCCAATTGCTGCTTGGCCTTGGCCAAAAGGCCCGCCTGCCGCTGGTTGGTCACCAGGACCTGGTCGTTGGAGTTTTCGATCCCCTTGAAGAAGAGCTTCTTGATCAAGGCTTCCAATTCGTCCAGGTTTTCCTTCATCATGATCGAGGTGCTGATCACTTCACTGCCGCTTTCTTTAGCAATCTCAGCCGCGGTCAGCTTCTGGCCCAGGTCCGTTTTGTTCAGCACGATGATCCGCTTTTTGCCGGCGGTCAGTTCCAAAAGCTGCCGGTCTTCTTCCGTCAATTCCTGGCTGCCGTCCAGCAAAAGCAGGATCAAGTCCGCCTGGGCAATGGCCTTCTTCGACCGCTCGACCCCGATTTTTTCCACCTGGTCCTCGGTATGGTGAATCCCAGCCGTGTCAATCAACTCCAAGGGCACCCCCTTGACAGACACGAACTCTTCCAGGGTGTCCCGGGTGGTCCCGGCCACGTCCGTTACGATCGCCTTGTCGCTTTGGGTCAGGTAGTTCAAAAGGGAGGACTTGCCCACGTTAGGCCGGCCGACAATGGCTGTCTTCAAGCCGTTTCTGAGGATCTGCCCCTCCTGGGCCGTCTCCAGCAGGCGGTCAATCTTGCCGCTGACGGCTTCCGCGCAAGCCAGCAGCTTCTGGGCCGTCACTTCTTCTTCATCGTATTCCGGGTAGTCGATGTTGACTTCGACATTAGCCAAAACATCCAGGATTTCCTGGCGCAGGGCCCGGATTTCCGTCAAAAGGCCGCCGGAAAGCTGCTTGACCGCCACCTGCCGGGCCTTGTCAGTCTTGGCCCGGATGATGTCCATCACGCTTTCAGCCTGGGTTAGGTCGATCCGCCCGTTGACGAAGGCCCGCTTGGTAAATTCGCCCGGGTCAGCCATTCTGGCCCCGTTGGCCAAGAGCAGCTGCAGGATGTCATTGGTGACCACGATCCCCCCGTGGCAGTTGATTTCCACGATGTCTTCCTTGGTAAAAGTCTTCGGCGCCAGCATGACGGAGGCCATGACCTCGTCGATCACCTGCCCGGTTGCCGGGTCCACGATGTGGCCGTAGTTGATCGTGTGGCTGGGAACCTTTTCCAGGTCCTTGCCCTTAAACAAGCGGTTGACAATGGCGACCGCATCTTCCCCGGAGACGCGGACGATGGAGATCCCGCCTTCTCCCAGCGGCGTTGAGATCGCCGCGATCGTATCAAATTCCGTTAAACGTTGAACCATCTCGTTACCTCGTTTTTTCCAATAAAAAAAGCGCAATTTCCACCATGAAAAATGATGGATAAAGCACTTTCACTACTTTATCTAAAAAACTTTAGATGAACATTCAATTATTTCCGCTTGATCCGCTTGTAAGCCCGCCGAATCTTGCGCTGGCGCTCGCGTTCAGCTTCTTCCTTGGCTTCCTGCTCCTTGCGGTACTTGAATGGGTTCTGCAGGACCAGGGTCTGGCCAACCTGGAAGAGGTTGGAGATCACCCAGTAAAGGGAGATCGCGGACTGGAAGACGATGGCCCAGATCCCGACCATGATGGCCATGACATAGCTCATCATCTTAGTCATCGTGGTCTGGGAAGACTTAGGCACCGACAAAGTCGCGATGTATGAGGACAGGAAGGTAAATACCGTTGCCAAAATCGGCAGGATGTAGTATGGGTCTGGCTTGCCCAGGTCCATCCACAAGAATTTACCATTCTGCATCTCTGGCGTCCGCCAGATGGCCTGGTACAGGGCCCACATAACCGGCAACTGGATCACCATCGGCAGGCAGCCGGCGTAAGGATTGACGCCCGCTTCCTTGTAAAGCTTCTGCGTTTCTTCGTTCAGCTTGTTCCGGGTCTCCAGGTCCTTGCTGGAATACTTCTCCTGCAAGGCCTTCAGTTCCGGCTGGATCTCCTGCATCTTTCTGGTGCTGTTGATCTGCACCGCGTTCAAAGGCAGGAGGATCACCCGGATGATAACCGTAAAGATGATGATGGCCCAGCCGTAGCTGCCCCCGCAGACTTTTGCAATCCAAAGCACGAACTGGGAGAGGTAGTAAACTACCCAGGCATCCCACCAGTTGCTGGAATTATGGGAGATCTGCGTTGGCTTCTGGGTGGTCTGCGTGGCGCAGCCGCTCAGAACAAGGGCAAAAACCGTCACCAGTGCCAGAACGGCCAGAAGGCGCTTGGTACTCTTCTTCGATAAAATGTCCTTCACTATTTTTCCTCTTTATTTGGCATTTCTTCAATGACGTGGGCCAGGTTCAGCGCGTGAAGCAGGTTTTCCCGCGTCTTTTCCCAATCGAAATCGTGAGCGTAGGGTCTGGCAATCACCAAGAAGTCCAAGTCCGGCGCAATCCGATCCCGGTTCTCGGTCAACACCGCCCTGATGTAGCGCTTGAGACGGTTGCGCACAACGGCCGTGTGACCGACCTTCTTGCCGACAGAGATGCCGACGCGAAAATGCTTATTCTGCTTTCTAGGCAGGACGTAGATCACAAAAGCCCGGTTGGCAACTGATTCGCCATTTTCAAAGACGGTCTGAAAATCCTGTTCAGATTTAATTCGATATGACTTTCTCAAAGCTCTTTACACTCTTGCAAATTAAAAAAACCACTGGGATTCAGTGGCTTAAGCAGATAATACCTTTCTACCCTTTGCACGGCGTCTAGCCAAAACCTTACGGCCGTTGCTTGTAGCCATACGCTTCATGAAGCCGTGAACGCGTGAACGGTGACGCTTCTTAGGTTGGTAAGTTCTCTTAGTTGACATATATTTGCACCTCCATTTTTTAGTGCTACGTGCACAATTTCTTATCTAGGATAGCACGGAAATCGAAAAAAACCAAGCTTTTTCTTGCAAACTTGCCCGATTTTTTCCTTAGACTGCCTGAGCATGATCCCCCGCCTGTGGACAGAAAGTAGA", "alphabet": "DNA"}, "features": [{"location": "[0:1864998](+)", "type": "source", "id": "", "qualifiers": {"mol_type": ["genomic DNA"], "organism": ["Lactobacillus delbrueckii"], "strain": ["ATCC 11842"]}}, {"location": "[322:1687](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0593"], "gene": ["dnaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05648"], "locus_tag": ["MAAAAKME_00010"], "product": ["Chromosomal replication initiator protein DnaA"], "transl_table": ["11"], "translation": ["MFDLEKFWDSFNAEMRSEFNEVSYNAWFKNTKPVSFNKDTHELVISVQTPVAKGYWEQNISANLIQSAYAYAGIDIYPVFVVKNGPTPSSERMLEPQPQAKPEKARPQGREFTKDLRLNEKYTFENFIQGEGNKLAAGAALAVADNPGTFYNPLFIFGGVGLGKTHLMQAIGHQMLAERPDAKVVYIQSETFVNDFINSIKNKTQDKFREKYRTADLLLVDDIQFFAKKEGIQEEFFHTFETLYNDQKQIVMTSDRLPTEIPDLSERLVSRFAWGLQVEITPPDLETRIAILRKKAESEGLEIDESTLDYVASQVDTNIRELEGALVKVQAQATIQKQDINIGLARSALADLKLVQKSRGLQISKIQEVVANYFQTSVPDLKGKKRVRQIVIPRQIAMYLSRELTDASLPKIGQEFGGKDHTTVMHACDKIARQIKTDTEIKSAVSDLRQMLER"]}}, {"location": "[1867:2995](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0592"], "gene": ["dnaN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06672"], "locus_tag": ["MAAAAKME_00020"], "product": ["Beta sliding clamp"], "transl_table": ["11"], "translation": ["MKFTVQRNLFINDLNSVLKAVSSRAQIPILSGIKLELTEAELIMTGSNADISIELSQPVSDDLRVESTGSIVVTAHLFSEIVRKLPGREFTFEVKEGNQIQITSDKADYVINGLDASAYPRLPEIAGTSFSLPSKTLRELITQTVFAVSTEESRPTLTGVNFSFKNGQIKAVATDSHRLSQRIVDIAAGPSEDLSLIIPGKNLQELAQIIGDADQDIKVYLGDSQIRFEFENLSFYTRLLEGVYPDVDRLLPTESTTSVQFTVSDFMQTLSRASLLTHANRTNAVQMTLNVADQTVLVSGNSPEVGKIEEEVGFSSLTGRDLTISFNPDYMAAALRASVTDSVIINFTESLRPFTVVPNDQSVEFVQLITPIRTF"]}}, {"location": "[3216:3450](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKVKTIETFAINGEFITLGQFLKDECIVSSGGQAKWYLKDSPVLVNGDKEDRRGRKLYPGDRLTVAGKEYELVQGL"]}}, {"location": "[3449:4595](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1195"], "gene": ["recF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8RDL3"], "locus_tag": ["MAAAAKME_00040"], "product": ["DNA replication and repair protein RecF"], "transl_table": ["11"], "translation": ["MYLSRFKQSGFRNLAPLNLEFDPHVNVFLGENAQGKTNLLEAIYFLAISRSHRTSNDREMIAFGQDFASLAGRVHKRQLDLDLRIVISKKGKSAWVNRVEQARLSKYVGHLNAILFSPEDMELVKGAPSLRRRFMDLEFGQINPEYLYFASQYRQLLQQRNNYLKQLARRQASDQVLLGVLTEQVATAASELIWRRYRYLADLNRYAAEAYRAISGQREELRVLYRPSAKEITAADQPAQIKQKLLDRFAEIADDELRRATTQLGPHRDDLEFQLDGKNAHLFASQGQQRTIALSLKLAEIQLIKQLTGEEPILLLDDVMSELDQNRQAALLNFIHGQTQTFITTTDLDSISQEIVKQPRIFYIHSGQIIEKEEGLNGRRR"]}}, {"location": "[4578:6540](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0187"], "gene": ["gyrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q839Z1"], "locus_tag": ["MAAAAKME_00050"], "product": ["DNA gyrase subunit B"], "transl_table": ["11"], "translation": ["MADEDNKLKKAKQFEQEADKYNASQIQVLGGLEAVRKRPGMYIGSTSSQGLHHLVWEIIDNGIDEALAGFATKIEVTVNEDNSVTVQDDGRGIPVDIEKKTGRPAVETVYTVLHAGGKFGGGGYKVSGGLHGVGASVVNALSTKLNVTVMRDGKKYYIAFDHGRVVEELKEVGTVPLTEHGTIVHFWPDPNIFTETTVFDDKILKNRIRELAFLNKGLKLTFTDKRNDTAETYVYHFEGGIKEYVSFLNRGQEVLFDEPIYVEGKYEGIDVEVSLQYTTGYKTTLMTFANNIHTYEGGMHEAGFKTALTRVINDYAHKAKILKENDDNLSGEDIREGMTAVISVKHPSPQFEGQTKTKLGNSDARTAVDRAFSETFSTFLMENPQVARKIVEKGQLAERARVAAKRAREVTRKKSGLEIANLPGKLADNTSNDPNISELFIVEGDSAGGSAKQGRSRLTQAILPIRGKILNVEKASMDRILANQEIRTLFTALGAGFGADFDVSKARYHKLIIMTDADVDGAHIRTLLLTLFYRYMRPMIDKGYVYIARPPLYQVRQGKLIKYLDTDEELHDYLGSLQPSPKPIVQRYKGLGEMDAEQLWETTMDPENRRLDRVDPEYAKDADEVFEMLMGNEVGPRRKFIEDNAQYVENLDA"]}}, {"location": "[6552:9024](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0188"], "gene": ["gyrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPM2"], "locus_tag": ["MAAAAKME_00060"], "product": ["DNA gyrase subunit A"], "transl_table": ["11"], "translation": ["MDNENQGQDRRIRNVDLTQMMRSSFLDYAMSVIVARALPDVRDGLKPVQRRILYGMNELGVTPDKPYKKSARIVGDVMGKYHPHGDSSIYLAMAHMAQDFAYRYMLVDGHGNFGSVDGDRPAAMRYTEARMSKIAVEMLRDINKNTVDWQRNYDDTENEPTVLPARIPNLLVNGSSGIAVGMTTNIPPHNLSEVISGIHMLMKNPDVTTKELMKAIPGPDFPTGGILMGRGGVLHAYESGKGNIVVRAKTEIETEKSGRERIIVSEIPYLVNKAELVQKIAELARDKVIDGITGVRDESDQSGMRITIDVRRDASASVVLNNLFKETQMQTNFAMNMVAIVDGAPKFLTLKQMLQYYLAHQEDVITRRTKFDLEKAEARAHILEGLRVALDHIDEIVSLIRNSESSDIAKAGLISRFDLDDRQAQAILDMRLVRLTGLERDKVEGEYQELLVKIADYKDILAKPERIDQIIYDELLDIQKRFGDKRRTQITASEVVTIEDEDLIEEQDALLTLSHQGYVKRMLIDDFKTQNRGGRGIKGMGVQKGDFIEHLLYSSTHDYLFFYTNKGKVYMKKAYEIPEYGRSAKGLPIVNLLQLDKGEHIQTVVNLPQGHDDDYAFFITKLGTVKRTKIREFENIRTNGLIALTLKDGDELSNVLTTDGQQNILIATHQGYAVTFNEDDVRAMGRSAAGVRGINLREGDYVVGSGILKPEDEVLTISEKGYGKRTAASEYPVKGRGGKGIQTAKIGEKNGPLAGVAVVDGQSDIMLITTDGIMIRFKTSDVSQTGRSTMGVRLIKVADGNAVASMAVVPAEAEGESEPETEV"]}}, {"location": "[9239:9533](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0360"], "gene": ["rpsF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21468"], "locus_tag": ["MAAAAKME_00070"], "product": ["30S ribosomal protein S6"], "transl_table": ["11"], "translation": ["MTTKYEITYIIKPDVDDEAKKAIIDKYTKVIADNGGEMVEAKDWGKRRFAYEIEKYREGSYYIMTFTAEDAAAVNEFARLSKIDDSVLRSMTVKLDK"]}}, {"location": "[9573:10149](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0629"], "gene": ["ssb"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66854"], "locus_tag": ["MAAAAKME_00080"], "product": ["Single-stranded DNA-binding protein"], "transl_table": ["11"], "translation": ["MINNVVLVGRLTRDPELRTTGSGISVATFTLAVDRQFTNASGQREADFISCVIWRKAAENFCNFTSKGSLVGIQGRIQTRNYDNKDGQRVYVTEVLVDNFSLLESRRERESRQQNSGFGGQGQSQNTGFNTGFGGGSGYANNAFGSPAQSNGPANAGFNEDNKKDAGGDTNTNPFDSSDDAINVSNDDLPF"]}}, {"location": "[10175:10412](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0238"], "gene": ["rpsR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNZ2"], "locus_tag": ["MAAAAKME_00090"], "product": ["30S ribosomal protein S18"], "transl_table": ["11"], "translation": ["MPQQRKGGRRRRKVDLIAANHIDYVDYKDVDLLKHFISERGKILPRSVTGTSAKNQRKVANAIKRARIMGLLPFVAED"]}}, {"location": "[10552:12574](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.59"], "codon_start": ["1"], "db_xref": ["COG:COG3887"], "gene": ["gdpP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37484"], "locus_tag": ["MAAAAKME_00100"], "product": ["Cyclic-di-AMP phosphodiesterase GdpP"], "transl_table": ["11"], "translation": ["MKNFLRKLELPEFVRDSRLIIAFSSIVFLTVLSTVVAFFINRIFGVALLLVLIVDVFWVVFGVYILAKNTNNYAANLSYRIKRGEQEAMIKMPLGILLYDESRHIQWVNPYLQLYLGDKDAIGKTITAVDRKLGKLVEEALEAQTSESKVVKWGDHQFEMVVQDSIGVIYLIDITRYADLADKYRAERLAIGQIFVDNYDELSERMHDQELARTSTYLQTTLNDYAEKFKAYLKRIDEDHFLLLAHLQDLEAMEEDKFSVLDKIRLETSRNNTPLTLSVGIAYGGESLRKIANQAQANLDLALGRGGDQVVLRELGQVARFYGGKSNPMEKRTRVRARMVSQALGELFKDVDQVFVQGHQRPDMDSVGSGIGVVKIARLHGVKAHFLLDTAHCNYDVDRLVKKMQAEDPQLDLFVSPDEANAVATDNSLLVMVDHSKYSITYDQRLYDRLRNRIVVIDHHRRGEEFPENPMLTYVEPYASSASELVTEMVEYQQPAEDNRVLTNLEATAMLAGITVDSKEFSLRTGTRTFDAASYLRSIGADSSVVSELLKEDISSFLVKSHLVASLQMLRPKMAVMQGPEDKVIDPILTAQAADMALDLEGVSASFAITRRSGDKVGISARSMGHINVQVIMEKLGGGGHLSNAATQIKDITVKEASQRLLAAIDEYLEENS"]}}, {"location": "[12596:13052](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P02417"], "locus_tag": ["MAAAAKME_00110"], "product": ["50S ribosomal protein L9"], "transl_table": ["11"], "translation": ["MKVIFMQDVKGRGKLGQVKDVPNGYAQNYLIKQGLAKEANKGNLNTLKRVEANEKAEYEAQKAAAQEIKKQLEADETVVELKAKAGSDSRLFGSISSKKIIEGLDKQFGIKLDKHKLELREPIKVLGYTNVPVKLFKGVESKVRVHVTQEN"]}}, {"location": "[13075:14446](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG0305"], "gene": ["dnaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37469"], "locus_tag": ["MAAAAKME_00120"], "product": ["Replicative DNA helicase"], "transl_table": ["11"], "translation": ["MDNLVTQQIPHDSAAEKAVLGAIFIDPEVINEVSSVLEPADFYEHANRLVYSALLALYDESRSIDLVTLQEELKRRGQLEELGDMAYVSELLLATPTAFHAKDYARIVHQKAQLRNLINASQKIISSAIQGSDSVDEILSNAENEIMNVSNEKGSGGFHKIEDLVAGAFEQISNNAQNQDVVTGLRTGFAYLDEMTTGLHDDELIILAARPGVGKTSFAMNIAKNVGITEKKPVAVFSLEMSGEQLVQRMLASTGLIDSQHLRTGILDRDEWNQLDMAASVLRQAPIYIDDTPGIKISEIRAECLALQKELGDLGLVVIDYLQLIEGPKTESRQQEVSAISRQLKKMAKELHVPVISLSQLSRSVEQRQDKRPILSDLRESGSIEQDADIVGFLYRDDYYRDEDADGEEPKEDPENVEVEVIIEKNRSGRRGSAKLMFSKPYNRFSNLDTGHEAQG"]}}, {"location": "[14494:15652](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MASTLDYLRWRGDLPFQACPFNSLDASLMASLAYLPFDGSTVGHSLGEVCQSIYQREPDRWQNLDKTELLLLPKSPRLADLTVLDWVNKMEIEPEPIQFNAGAFRLDDRTILVAYRGTDQSMIGWSEDMVMDYTPEITGHRLAAKYLNQIGQAYPNDRIYITGHSKGGNYAHYALAFADPQIQARVIKSYSFDGPGYRHQIYGTSGFQDNIKKMKTYIPESSIVGCMLDHTERVLVVKCNQPVLSQHDPRTWSVGRDSYVLAQEGLTTTARVIRHSLIAFNHQIPAEKRGQMWSALFEAFDSLDITKIKQISGFTGTYRFSRAYFAMDPEMRAIFRQIFNNIIETARQSLTLPFNMSDDPYKNRPNFNDSKKGPIFFDAYDIKQE"]}}, {"location": "[15759:17865](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00140"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MDLLKIEGLSVKYSEKTILSKISFSFLPGNFYLIKGPSGIGKTSLINCLGLLKKPSSGSVFWGEKNLWELSDNDRADFRHSYISFVFQKNNLVENMSVKNNILLPLATSSDYNSDHAIKKLSEITRLLKIEDLLGKFPKDLSGGEEQRVAIARALISQSKIILADEPTSSLDETNADNIYGFLSKLAHDFGKIVIVVSHESLPSKYADSILEIRNQSLLMVKDDTHSFTKDEEPIKKTNDLTLKQSFSYNSKLKNHISSLSCILSVVVVLLMLLSSYLPALPTILVNKQESSFSAVMDKNIFVVNDVAKVNSPQDLDSYRAFSSKTTSKIKNAFLGAKVYPFINFTSYGITPTNVRTAVPKSYSIYLGNKQRTISNDFSIQPIYPEDLNKKYFYEFGKPLKNSKNFVVSQDFLSQNGLSVKSVMNKVITLKAYVPYLLYITETELPNDNTKSISIDGDVYKVVTIKAKISGVYKSNYPYHRSEQGNVFFMDYKAMKDIQDKVISKSDIHKRVFKSFSQKAWAPSAYVLAMKNINQLKSAPKKLSSISKDIRTYSTLQNVDNVKQQLEQTKRATYKFTFFIVLLVFLVLYVIFNIIYKQRTYEFGILKCIGFSNKDVFKIITAYSVKIGTLYALLGTIITVVSYFMLISKNTAIGIPIFFEALLRLVLLCYVLTFLAVLPTFAKIAKIDPIDVITESRTADL"]}}, {"location": "[17407:39909]", "type": "protocluster", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "category": ["RiPP"], "contig_edge": ["False"], "core_location": ["[27407:29909]"], "cutoff": ["20000"], "detection_rule": ["(micKC and not PKS_KS)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iii"], "protocluster_number": ["1"], "tool": ["antismash"]}}, {"location": "[27407:29909]", "type": "proto_core", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "tool": ["antismash"], "cutoff": ["20000"], "detection_rule": ["(micKC and not PKS_KS)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iii"], "protocluster_number": ["1"]}}, {"location": "[17407:39909]", "type": "cand_cluster", "id": "", "qualifiers": {"candidate_cluster_number": ["1"], "contig_edge": ["False"], "detection_rules": ["(micKC and not PKS_KS)"], "kind": ["single"], "product": ["lanthipeptide-class-iii"], "protoclusters": ["1"], "tool": ["antismash"]}}, {"location": "[17407:39909]", "type": "region", "id": "", "qualifiers": {"candidate_cluster_numbers": ["1"], "contig_edge": ["False"], "product": ["lanthipeptide-class-iii"], "region_number": ["1"], "rules": ["(micKC and not PKS_KS)"], "subregion_numbers": [], "tool": ["antismash"]}}, {"location": "[18014:18404](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRKAKGLISLAAAMSVFAVFANLNEQKADAAFVSRQATCTWKSRANITTGWFTLHGKGYSYPNSGKVTSAWITSGSAMFNTIVNKKHWTYKTPRGMHLMGQATDKCAVGTQWAYVPISSDTRTVGVQF"]}}, {"location": "[18416:18641](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIETIKPIWLTLLLVLSFILPLLGWLPLVYLYSQRQDPAMQGMEKTLKLAAGVQVGCLVILAAIFYFFAPIHD"]}}, {"location": "[18751:19456](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1285"], "gene": ["sapB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45514"], "locus_tag": ["MAAAAKME_00170"], "product": ["Protein SapB"], "transl_table": ["11"], "translation": ["MEKFTGIPVSFQLVWLLRILLSAFCGGLIGFERATQRKSAGLHTHVVVAIASTLFSIVSKYGFYDMLTFSNVSYDPSRIASLTVTGISFIGAGTIMVHKEQISGLTTAAGLWATSAIGIAIGVGLYWVGIVAAVLLLLVQRFLREETVLNLLRKVSISLLIEASNTPHILETIQSELEKNEVHQLSIKIISVSDDHVLFSCDGEIASRIDENQIIMNLRKYPDIKRITYSPGSK"]}}, {"location": "[19583:19658](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_00180"], "note": ["tRNA-Thr(agt)"], "product": ["tRNA-Thr"]}}, {"location": "[19985:20390](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFKILFARQIDLVEFGKLVQGTYDSAENKAEKRYQSQMNVAVSTKDLKLMEKYCQDIIESSNDEILQLRALVALAYFKGELGGLSKEIRVKIKEKFDEGRNWTKRTELLGLLANTMLLWDQDDLNYSRKISQTV"]}}, {"location": "[20577:21507](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_2"], "gene_functions": ["transport (smcogs) SMCOG1000:ABC transporter ATP-binding protein (Score: 136.2; E-value: 2.5e-41)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00200"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MEDARIKRQACLSVAEFTQEIVDNIGIVGVPFLAGILYFRGQVAFGAIIAAGYLANGVFSSLQESFSAYISAKSTTKLNETMLQHLQVQAAAKTEDPQTIIGRGIEVNLGGQVIKYPDFTIKAGEKVLLTGPSGCGKSSLFKLLLGQIEPSKGQLTYLDSEGKEIQNPARSFEYLPQAGWIFPGTVADNITMYDAKKQTKLAEVLKKVGLDRDFSKAVDLDREVSPQQADLSGGQKQKIFLARGLLRHKKFSLMDEPLSALDQASRQKILPLLLGRKQTLIFVGHNLPLEERERFDQVINLKEGENFAN"]}}, {"location": "[21674:22625](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene_functions": ["transport (smcogs) SMCOG1288:ABC transporter related protein (Score: 90.2; E-value: 2.1e-27)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q57538"], "locus_tag": ["MAAAAKME_00210"], "product": ["putative ABC transporter ATP-binding/permease protein"], "transl_table": ["11"], "translation": ["MLLLGSLLDQVTDYFWELHLEKYFHQIRQEVLAHAYAEAAGTKENLQSELTNDLEMLKDQYADSIGGIVHSAVLLALVAGSLASFRWSLLLLVIAVSVLQMYLPRVLDEPLQKATDKISASNRKYLQTLADWLNGIDTLRRYAVGEKFLSIIHADARELESAYVKQQKADQELDYLNQAIYSLGNMLIFLLTAYLVARGQLEFGLIASVNDFSLYLFGSLMNIANYRGQLVVSRGLQEKILDLRQPLTKAEEGGTAPAAFSVKDLRLAFANGHEIKYPDIQVKPGEKVLLTGANGTGKSTLFKLLVGEAAASGGHF"]}}, {"location": "[23056:23839](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3279"], "gene": ["agrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0I7"], "locus_tag": ["MAAAAKME_00220"], "product": ["Accessory gene regulator protein A"], "transl_table": ["11"], "translation": ["MLAIIILEDNTAEREIIQQMIENRIQINETPAAYDARVVLSTGDPHSVLAYIAEHQDLNYLAFLDIDLKTSLDGIEVASRIKNIGILSQIVFVTADATALRLTIERHVEPLDYITKDAAPLEIQHRIYETVDTAYKRYRLTMTSAKQTSYFTYSKIRNFVEKIPLADLYYISIQPKKYKTLRVYAKNKVFDCLGTLKDYEKRYPSLVPADRQSLINLDAVQNYDEKKGIAYFDQGIAHSVAVRRRRSVMLKLNATKNDLA"]}}, {"location": "[24068:25148](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINSLFNNLAFNPYLFSVLLAFTLAGVKRSDLLLYPLLLLPVLFGYQYVLAAIIALQLISQLFARGQAKSLSRLFFYYLVLILYPILGELFGWIVQLLFYFFTHHLLDHVAINLVCFLPEILICLLFCFLKKHFAINLEKIAADVKGNPQFLNLLVWIVWSFLLVTHVIWSMIEVFSIAPLVELGLMTIVLLLITVLFFNLYQAIQKNQEIMATRIQKAEIQQIQEYSSRLEEANISLRKARHDYKNSLLALNGYLLTADVAGASKYLEELVADSNRLQEAANSMTLELANLQIKELKYLIIDKLQQAQDQGIKTKVEINKPIATLPVNIVSIIRCVGIFLTTRLKPASHRQMGRSAFC"]}}, {"location": "[25331:25499](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTDTQNFQTENNPALKNLQGTATSIRAKKHRRKTRVSNSNISILCNHINFNILG"]}}, {"location": "[25520:25688](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGNYILMIEKELSQAFKELEQPRSKHWNWRNAHSHISIMCPNSDSHFSIFSIKIR"]}}, {"location": "[25691:27401](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["bmrA"], "gene_functions": ["transport (smcogs) SMCOG1288:ABC transporter related protein (Score: 312.4; E-value: 9.9e-95)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06967"], "locus_tag": ["MAAAAKME_00260"], "product": ["Multidrug resistance ABC transporter ATP-binding/permease protein BmrA"], "transl_table": ["11"], "translation": ["MKLLKITPRLLWGILLSMIASLLNLYLPLLVRHFINLKQFAWSGLSKKVLLLGGLILIGNLLVSSLSDYLISSEGDRQVRQLRLRLQKQVLRLPQKYFDQQISGNLTSRIINDVNVLRSFLTETIPAVVTGCLTILGTMLITFSLDWKLTLLMLLVFPIDGLVTVPLGKISEVIADQTQSSLAALTGVTSESIKQIKTVKLNKTEEDVFAKNAREINKLYRLSLKGDRIAAMIGPLQSMLSFCLIMAVVLYGTLRVKSGSLSTGTLGAFMMYFFQIIGPINNVALFYSDRKQMLGATRKISEIINETAEETAGKEQLAVAPGSSLLRLDQVSFAYQDLPVLEKVYLEARSGEKIALVGATGAGKTTLANVITRLYPVAAGRISLNGQASTDFSLEQWRGFFSVVLQENTIISGSIRDNLTLGLNRKVTDQELWDALALVRLEEYAKKLPKGLDSLLGESGKQLSGGQRQRMQIARACLRDFKFLLLDEATSNLDADTEKIIMTALDRLKRTKNCGQITIAHRLATIANSDRIYFIKNKTVVASGSHEELLEKVPDYRRYVHEQQLKEKR"]}}, {"location": "[27407:29909](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0515"], "gene": ["ramC"], "gene_functions": ["biosynthetic (rule-based-clusters) lanthipeptide-class-iii: micKC", "biosynthetic-additional (rule-based-clusters) Pkinase", "regulatory (smcogs) SMCOG1030:serine/threonine protein kinase (Score: 74.9; E-value: 1.2e-22)"], "gene_kind": ["biosynthetic"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O88037"], "locus_tag": ["MAAAAKME_00270"], "product": ["putative SapB synthase"], "sec_met_domain": ["micKC (E-value: 1.8e-131, bitscore: 436.5, seeds: 18, tool: rule-based-clusters)", "Pkinase (E-value: 2.3e-11, bitscore: 40.4, seeds: 54, tool: rule-based-clusters)"], "transl_table": ["11"], "translation": ["MLEEQIKYLEAARNSGSLFYTRQKGEEEHFFTLKDRPDAAWLEKKTANWHYILYEPDELPVQGWKIHLSATVKQAQGMLDEVAPCLIKQKVSFKFQSSLEQYVESNSKYADRGESGKFITVYPRGEEEFACLLAELQKLTETFALGPYILSDQNWQESNVYFRYGGFKPLYLVNAAGERVPAIYDPAGNKVADQRLPYYQQADFVKDLPIFGKNTFPKQEAFAPLEEYQVKEALHFSNAGGVYLALHEGKKVVLKEGRQQAGLDANLKDGFARVENEAEILRQLADLTGVVNYLDDFTSWRHHFLVEEYIAGQSLEELLATEFPFVVGDLEKKARYKAKAIKILEQLKELLKQIHARGLAVGDLSLSNILVTEDGDVRLIDLENAGKATEKYVPGLTTVGFVSRAAKTYAEADDFALARIAYYLFLPVIPVADLAPDIIAKQEKWIGGYFGQDLVQFLRKIAGNMQASEPIFLKKPLAIPEKDLSRQTVDFFTDGLTRGILRHSRFDQVGLVPNLHEKNADPMELLNLARGAAGILWAVGQNADLQAWVARNQGKIIKIAEESEATGLFNGLAGLASVLEKRDFPALAKQLRQILRQKVDLNMADNSLATGLTGIALALREEKPEVSEKIAEELAGRWKQVDFANFADEDVGLLTGWGGVSWLFWQLGQKEVAEEIVSRILRDHAEEAETLTISDQSRGFERLLPYLENGNFGLALLMHKFMREDPAFKQRYQLPFDKLKKSCLTYCTYMETLVSGYSGVLPLAKSLAGDGDYALLDYALAALNQYLVANNDEILAPGKYGYKLSLDFSTGSAGLLTLLKDLRQRDEFSWLPL"]}}, {"location": "[29928:30090](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNVILDFEKMVERKAEQLSRKEITPASSLSILCTGHDVSSFGIGSLLFKLFK"]}}, {"location": "[30185:30258](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_00290"], "note": ["tRNA-Thr(agt)"], "product": ["tRNA-Thr"]}}, {"location": "[30392:31031](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG4619"], "gene": ["fetA"], "gene_functions": ["transport (smcogs) SMCOG1000:ABC transporter ATP-binding protein (Score: 203.4; E-value: 6.6e-62)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77279"], "locus_tag": ["MAAAAKME_00300"], "product": ["putative iron export ATP-binding protein FetA"], "transl_table": ["11"], "translation": ["MALIELKQVSYRAGDQEILQDVSFAVEEGDYLTLTGPSGSGKSTTLKLIAGLISPNKGEIFYKGQNLDSLDLVQYRRQVSYCFQQPTLFDETVKDNLALPFAIRKQDFAEKRAQEALKQVDLPADYLDKKITTLSGGEKQRVALIRNLLFRPELLLLDEVTTGLDEESKQIVYQLIARVHQEGTTIVQVTHDQEELAASKQLLHMEKGGVLK"]}}, {"location": "[31027:31795](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0390"], "gene": ["fetB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77307"], "locus_tag": ["MAAAAKME_00310"], "product": ["putative iron export permease protein FetB"], "transl_table": ["11"], "translation": ["MKAIAVSDLSLILSFALVLVPVAISWKEKLGLTRDIFYSVGRAIVQLVIVGYVLKFIMQVNNALLTLLMTLFIIFNAAWNANKRDPNPNRQLWQSIMALLIGTYITLGVLLLTQTVKLKPMQIIPITGMIAGNEMVAMGLCYKVLATGFHDQRQQVLEKIALGADVKTASMTILRRSIKTAMQPTIDSAKTVGLVNLPGMMSGLIFAGVDPVYAIKYQIMVTFMLLSATGLGAVIAGYLSYRNYFNKRSQLREEQ"]}}, {"location": "[31797:32049](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLEKYFTWLAEVLLIIVVGVGLVFITLHSLYYSYGMMIFGEHSAAATEMFWESEKIWSSIYTVAVIVIAVSTQIVRSFKSSKK"]}}, {"location": "[32269:35089](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKRLKLLALVSTLTAAVSMSFAGLTQASTTSASSRSYGVDVSSYQPTSTTEYSKAGAQFVIVKVSEGTSYRNPNAKAQVASAKANKLLPMAYHFANFGSSSSRAKSEADYAIASAKAVSLPAGSYLACDWETSSGNSTSGSRSANTSAIMAFMKKVKAAGYQPLLYSGSYLLNNAINMSTVTSTYPNSLWVAYYTSSGRIDAPDFSYFPSMNGVIIWQFTENWKGLNVDGNISILPLSISSSLSSSSSSRPSKTPASQAPVSKTKKKIMSKSYVYTSAGKRTGAYKSAYTYVYVIGGIVKIGSNNYYKIGTNQYIKVNNVDGTARKLVHSAWTYNSKGKRVKSVATLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKRTGAYKSAYTYVYVIGGIVKIGSNNYYKIGTNQYIKVNNVDGTARKLVHSAWTYNSKGKRVKSVATLKKGKQVFTYGGKRKIGKTPASQAPVSKTKKKIMSKSYVYTSAGKKTGAYKSAYTYVYVIGGIVKIGSSNYYKIGTNQYIKVNHVDGTARKLVHNAWTYNSKGKRVKSVASLKKGKQVFTYGGKRKIGKKTYYRINVGRYIKAGNVK"]}}, {"location": "[35341:35464](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQIRKAELKDFDQVMAILQDGRNQLAESGIDQWQGGLPES"]}}, {"location": "[35604:35859](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTLPSTGWPSTPTTLVNGYASQLYQAVINYFTSGFNDIKSVRVDTHEDNLPMQHLIEKSGFKRVGTLHGVYRGKTRPATFTNF"]}}, {"location": "[36263:37130](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.35"], "codon_start": ["1"], "gene": ["pdxK"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01638"], "locus_tag": ["MAAAAKME_00360"], "product": ["Pyridoxine/pyridoxal/pyridoxamine kinase"], "transl_table": ["11"], "translation": ["MKSVLISQDLSCVGQVSLAVALPVLGASGLQTAALPTAILSTHTGGFGENTFLDLSASLPDIWAHWDKENISFDAIYLGYLGQAASRVWEKGLEEYSRQGKLILLDPAMADHGRLYRGFDDSYVVQMQLLARQATILTPNLTEALLLLNEPVDFTEVDSHRACVITQRLAQKFALSQVVLTGVSLADNRIGVYGLSRGGRVWERTQSGFRTAILARGTFLPAASWPACFTGWTWNRRLAWPGTSWPRQSWQLIWTRTSALALITRRPCLGFCSNCTISALIIYLKEEK"]}}, {"location": "[37129:37687](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRDEQNSLRAVVMTGLFAAMIYIGIWVLRIPLPAVVGRPFIHFGNTLTAVAILYLGFRNGTLAGIIGLGGFDILNGYAATSWLTMLEVVVVAAILSAVYKGMKYNDSKKNIIILAVIAGVTKIFTSYATMVVAALMAGTALQPALVAAFLSLLATVINSCSTAVCTPILYFALKDITVRVMKRAH"]}}, {"location": "[37713:40479](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["uvrB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00204"], "locus_tag": ["MAAAAKME_00380"], "product": ["UvrABC system protein B"], "transl_table": ["11"], "translation": ["MELSPLSPPRLVSNQQENIWQTLRRQLLTCQSFTWAVAFITADMLPPFKLVMEDLQASGIRGTIITGTYLAFNQPRVFAELLKISNLTVRIADGPFHAKGYLFDHGDWQTAIIGSANFTRSALLANQEWCLKVDSQTDSTLPRQLAAALADLTGKSQPLTYTWLADYEKSWQPPAKPVLHVKQEKIVPNQMQAAALENLQALVKSGARRALVVSATGTGKTYLAALAVKDFAPRRFLYLVHREEIARKALETFKKVIGGKDSDFALLTGTSHQQARYTFATIQTVSQDQFLASQAADFYDYILIDEAHRSAAPSYQKVLNHFSPAFCLGLTATPERMDQQDIFALFDYNLAYEIRLADALESKMLTPFHYIGIRDYEIDGQTSDDFSDLRWLGAKKRVSYLLKELDYYGYSGTRPCGLVFCSRQEEARQLAEAFTQQGQPAQALTNQDSPAVRRQAVKDLESGRLHYLVTVDLFNEGVDIPALNQIVMLRATQSATVFIQQLGRGLRLYPGQDFVTVLDFIGNYQNNYLIPLALAWKKLSRDQLKYQLQTVSFAGLSTINFSRIASQEILASLDKVKLDSLKQLREAYADLASSWAGRPFCWIFAKKGQVSPRLWLDNKSLPHYGAFLEQMGQPYQLSSYESQVLSFVTKELAPGQRPHELLLLQALLPKGQISQTDFQALLKNYGAYDSPALEKSLEAILSLDFYDVKSGSTSQKAKYGGEPVACLKDGCWSLNPQIVQASPDFLRLFKDAVETGLFLAKEKDPAQDFTLYAAYDRKEVCRLLNWPLDVSRPMYGYRLSGNVCPVFITYQKTDQEQRNARYDNQARGQRLAWYTRTPRHLSSPEVQQLLRGTESGQQVTRIPVFVKRADAYGPKFYYLGSAKIDPATVREVNLKGKSAVGLDLVLPDPLPAKIADQLFSN"]}}, {"location": "[40626:41154](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKAKEIRALAQENLKQIPKKIYMPMGLLLVLANIIPNVVDQATDSKSGVGANIIFFLLEIAAALLTANGYIFFDRWRNKIQKGGEEPNAWCGLTGQHIARLLIYGVIEALIIGTVAVAIAAAVVGLAIPQVSVAVSIILLILLVVLLVWIELRLTYVVYVIDDDVRTGQKRSVWA"]}}, {"location": "[41099:41234](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYQPKKDKLRQSSFQTRPLVSFQPAPIYAQTDRFCPVRTSSSIT"]}}, {"location": "[41422:41902](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAHALYISEIHMDLNEYTRMAMKVTEKSRRRIIMIAEAIWIAAGAVAFALKQYDFTVMFALVIAFYPAAIVYLYKRRLKKIYAGMPAIKDDYVRYEFYPDHFLVLTNRGDGEYHYDQITRYVETDEEIIMMPAPDQGMLLLKKNCSPDLIKFLREKCQR"]}}, {"location": "[41992:42421](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1959"], "gene": ["ywnA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71036"], "locus_tag": ["MAAAAKME_00420"], "product": ["Putative HTH-type transcriptional regulator YwnA"], "transl_table": ["11"], "translation": ["MKFSHKLSDAVHLLAYIEIFPDDDLSSRAIARSIVTNPSMVRSLMMDLRKAGFLKTKQGSAEPELAKKPEEISLYDIFAAVGMEHHLLHVDEDTEQKCPVGGNIQGPLAKAYAEVEEAAFAKMREISLREIVDQIKEEGQLA"]}}, {"location": "[42559:42787](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.5.2"], "codon_start": ["1"], "db_xref": ["COG:COG0702"], "gene": ["qorB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39315"], "locus_tag": ["MAAAAKME_00430"], "product": ["Quinone oxidoreductase 2"], "transl_table": ["11"], "translation": ["MKYAISAATGNFGQTAVKNLVDAVGAENVVSIVRNKEKGKQLLPAGIEIRQADYGDEAAVEKALAGVDKLRQAGQ"]}}, {"location": "[42810:43200](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.5.2"], "codon_start": ["1"], "db_xref": ["COG:COG0702"], "gene": ["qorB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39315"], "locus_tag": ["MAAAAKME_00440"], "product": ["Quinone oxidoreductase 2"], "transl_table": ["11"], "translation": ["MVEAAKNAGVGYVAYTSFPKASESDNWLAADHKLTEKLLKESGLKHSFLRNNWYLENEMTFLAPGPANRIYWANNFAGWAPESEYAAAAVKVLTSDDPKEVYEFAGPKWSYQDLAAALNVATGEEAAAK"]}}, {"location": "[43467:43656](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.2.6"], "codon_start": ["1"], "db_xref": ["COG:COG1942"], "gene": ["ywhB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P70994"], "locus_tag": ["MAAAAKME_00450"], "product": ["2-hydroxymuconate tautomerase"], "transl_table": ["11"], "translation": ["MPFVHIELLAGRTPEQLEKMMKDVTRVISEDTGAPKEHISVIINELGKQQLAQGGEWREPQA"]}}, {"location": "[44121:44694](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITSIKLLEANQILAQVLDSERGSEINVKKFCKLAACSRPTFYAHYGSMRQLSAELLLKKLDQHLHFATSDYSNGLKRLLTYMEKDRCFILNLLALIDAEKGKIKGKEFAARFPQKVEWLLRKKTVCYVDAHSVSGDYSIKTLNNAAHIIYAILYEWLAEGLQLSARDVYDRCQLAIEIVEEQTSKKALL"]}}, {"location": "[45156:46717](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_00470"], "product": ["16S ribosomal RNA"]}}, {"location": "[45420:45945](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRITPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[46747:46843](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[46936:49840](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_00500"], "product": ["23S ribosomal RNA"]}}, {"location": "[49916:50026](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_00510"], "product": ["5S ribosomal RNA"]}}, {"location": "[50161:50662](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00520"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVTHFDLAATYRPVRCSTVNGYTSLNRVRISSTVFLWQSPSDVKQEKQMSSILDDQLRLMALKQYGLIKSIKTPDISYADLILILKNTENETIKQLAAEKLLKETNIYDIYKADLKLILKNTENETIKQLATEKLQYLNSHPRLGWAGSLARANRLGSFHSESTKD"]}}, {"location": "[50690:50888](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.85"], "codon_start": ["1"], "gene": ["lacG_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01574"], "locus_tag": ["MAAAAKME_00530"], "product": ["6-phospho-beta-galactosidase"], "transl_table": ["11"], "translation": ["MKKLKFGIFYIMLINLMGHSKWSWMNAYRNRYGLIRDDIHTQKKTLKKSAYWYRKLSDSNELDAD"]}}, {"location": "[51009:51978](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.8"], "codon_start": ["1"], "db_xref": ["COG:COG1482"], "gene": ["manA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31646"], "locus_tag": ["MAAAAKME_00540"], "product": ["Mannose-6-phosphate isomerase ManA"], "transl_table": ["11"], "translation": ["MQMAEPLFLAPVFHEKIWGGTGLKDEFGYQIPSDHTGEAWAISAHPHGPATIKNDLYKGMKLNELWDQHRELFGNAKGDVFPLLTKILDANQDLSVQVHPDNEYARIHEGELGKTESWYVIKAKPGAKLYYGHNAQTREEFAEMVKNGEWKKLLRTVPVHEGDFFYVPHGMVHAVGSGIMVLETQQSSDTTYRMYDFDRVDKKTGKLRQLHLQQSIDTAQVPFEMPKLNHEEWDVGDVHVTQFVMAEYFGVFKLDVRGKGDFEIKDGKYRLLSVLDGSCDLTVDGQTYPLKKGDHLILPSTISCYTLDGQATIIASKPGDEA"]}}, {"location": "[52017:52221](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.4"], "codon_start": ["1"], "db_xref": ["COG:COG1940"], "gene": ["gmuE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05510"], "locus_tag": ["MAAAAKME_00550"], "product": ["Putative fructokinase"], "transl_table": ["11"], "translation": ["MTYTFVGSIEAGGTKFILGVQNVETGETTATKRVPTTTPAETLAACRDFFKERNPVKAIGIGSFGPI"]}}, {"location": "[52770:53373](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIIQATYLFLDGTRTLMMNRILPSNEALVNFASLCLAITLNILSYTTLMFIACKIELPLAEDKRQNRIVLGLPIAISIFDIVCALFAPNLIFSANDINAFTPFFSTLFLLLPIGYSTFVFGVTAYNALINRKNGLGHYYLVLSFYPVLMTVFGFIERHVQAAGHRDFMRGDREPEPVRLPQGDRLPVPAGLPLRGFHAAG"]}}, {"location": "[53730:54495](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEEVEAVLKRLLAGRVWPASLGRELESKRICLSDLLLDKQRKNVIKPADVPLIRQALGELRKNLQEEVKKVLQTEQEMASDTARLAWLLLQLFAKKRKRVRDLTADQLALLQTEEAKKYVLFHGPRVYFRNNACFLTNTFPAELVHINDLAGLKGQPAAFSVLLQGEEVDGEELRSWLDLFGPLYEEKYFGKHYGPGVELAGFQISSGKRDPRIYYVLRYLLKDKEPEARSKNLAALPLKTILRRNLVCHEAFK"]}}, {"location": "[54491:55274](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMTVYSREYYQAGLAEGKIKAKKLDKYRLGPDFILAYDLGPAASYRTLLVDRKQGEIVLRVTTKTLLAHFVNEDLPGGYPLQDKLYKLLGIREQHVISAGHVAIFSPESFHAGLVDLVALQRMRGMEACQGGLLMTDLAGVNCYFFQVKRGYANASRQVKEAVEHNALYCSLFHGLAGQVGCPVCRQGDWNLLYGPSYQQAVEADLAGRIPSLRQLLAEIKAEEKAVLKQILLDELGLPLLPDDLDYALKQAEKKLLFRI"]}}, {"location": "[55324:55810](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNMQINQAMDQAWERRKLVAGALKTAHVYRKCADYEDLFQEGLIVYAQCLQEMADKPQEEADKLAFRKVYWRILDLLRQKKRQRDHDEPLLAAAFVGQADQHNLLLKEAWKKLSTSEKLLLGQNLLADRSIKETADLMNIPYRTASRIKKQALEKLRRQLA"]}}, {"location": "[56237:56960](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0580"], "gene": ["larD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F9UST3"], "locus_tag": ["MAAAAKME_00600"], "product": ["D/L-lactic acid transporter"], "transl_table": ["11"], "translation": ["MIHNLLNEFLSTGLMILFGVGVHCDDVLNKTKYHGSGHIFAITTWSFGITACLFIFGGVCMNPAMALCQAILGIIPWSSFIPYTLAEFAGAFAGALLAYFMYADHFKASEDTIDGVASRNIFSTNPNLRNLPRNWMVEMIATTIFFSGILAIVAKFEKFGFTPLLVGLLVWAIGMGLGGTTGFAMNQARDLGPRLAYQILPIKNKANNDWQYGLIVPGTAPFAGAVLAAMFVKYFLKLTF"]}}, {"location": "[57300:58287](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.7"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59495"], "locus_tag": ["MAAAAKME_00610"], "product": ["Sucrose phosphorylase"], "transl_table": ["11"], "translation": ["MWNTFGPDQIDLDVRTEVTKRFVKETLQQLVKHQASLIRLDAFAYAVKKLDTSDFFVEPEIWDLLDGVRQDLAGTDAQILPEIHEHYSLPRKVSEHGYFIYDFALPMVLLYSLYTGKSQRLAAWLKQCPMKQFTILDTHDGLGVVDSKDILTDEEIDYTTQELYKIGANVKRKYSSAEYNNLDIYQSNTTYYSALGNDDQKYFLARLLQVFAPGIPQIYYVGLLAGENDLDLLERTKEGRNINRHYYSLEEIDQEVKRPVVAKLLKLLESRNTEAAFDLDGRLEVAAPSDHEIVLKRVNQAGDREAVLRVDLTALTYQISVNGEEISL"]}}, {"location": "[58752:59709](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARPAIGSVEEREKTINMKKLKKINYAACWPYLAVVLFAAYLAYRQMRTGNIIIGSDTIFHFNRFYETEEQIRNGNLSWFMTLYGFNQSGRVINAFYGPAFAYLNGLLLLAVGTWYRYQIITSFLVFAVGGVGGMYRAVHRFKVRGSIAVLVTIIYMTIGWLPRWQSGSNFTGIGAALMPYGILVACDMFYDKEKPIHWIKLTILMTVALECHLLTALMYMAFLVPAWLYAIIKRENKRGILLNTLKAVLLTIFLTVNTLLPLYWMSKTNNLAPTATMRMLENAVHLKHTTVAFHPFRILTHNLRASLTFWLAYAFIV"]}}, {"location": "[59799:60747](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVEWDRITNHLPALARFIQFPSRFVCIAYPLLIVGLGLSFEHILHHKQKWVQIAAYASLGMLTFAAADCLVITLTSNAWAGYQNNVGRSRNTKFGEETQKTSSRKKKGKKKKKAMEDYGVYHPVKLDDRRKQALVDTNAATHAHDLQAFLDMTKKAIPDYLPVYKWDPEPDVPSHLYTYKWKQYYTIENSKITAAYRKSVMNHNRNVKVKTVKHGLKLTWKAKKGKHKQQLPVIIYKQSKLTVNGRVLTKYKRNRVGAPTVPEKTKGTNTAYLEFQTSFWIKLAIAVSLLGQFAAVVWGLLWRGGSFKKREEKKA"]}}, {"location": "[60752:61700](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0463"], "gene": ["csbB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45539"], "locus_tag": ["MAAAAKME_00640"], "product": ["Putative glycosyltransferase CsbB"], "transl_table": ["11"], "translation": ["MKKISIIVPCYNEEEALPFFYPVAHEVLEKLPDDYELIFVNDGSKDKTLEILRDLAAKDPHVFYISFSRNFGKEAAMYAGFVNASGDYVAVMDADLQDPPALLPEMIKILDSGEYDSVATRREDRKGEPPVRSWFARKFYQIINKISDADVVDGARDFRLMKRDMVDAIVEMSEYNRFSKGIFGWVGFKTYWLPYENVERVAGESKWNFWKLLKYAIDGIINFSLVPLNLSSWMGFFMTGVSFIMLIVIVLRKLIKGDPVAGWASLICVVIFIGGLVMLSLGVMGQYLAKIYMESKRRPHYISSESNIKDVKKID"]}}, {"location": "[61727:62249](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKIARSLAGLHLPRYQELPQMGLYLEQTATYINEALAPLENVHLTSSMVSNYVKHDLIASPKKKLYSRQQIAELVFIAVSKNVLSLADLCEALKLQRSNYDTETAYNYMVDELENVLAYVFGFKGELTDVGHEHGEYEYGEYKTMLRNVIMTVSYKVYLDKYFAQFTGQEEE"]}}, {"location": "[62450:63248](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DQI6"], "locus_tag": ["MAAAAKME_00660"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MTAGNLGSCQLEVAALSLIQGDKTWLDDASFDQAEFNQRAKDGIAASSACPSISSWLDAYAGGSEIYVVTISSVLSGSYNSAVQAAKIYQEEYPDALIHVFDSKGAGPAQFLAAEKIAELKEKGMQFPDLVEAVSDYLENHVRVFFALKSMTNLANNGRVSPAVAKIAGLLKIWVYGWAEEGEIKLLGKARGEKKTLAALLRTLEEKGYRGGRVKIDHADNFDSAAELHDLIKKKRPEARVDLGTCRALCSFYAEAGGLMIGVEI"]}}, {"location": "[63194:63740](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKHLVIHTLCEGVETKEQADFLRAIGCDRLQGFYFSKPLPQEEMLALIEKNGLDHYEPQEMNDYYDTIGETNILVNPMVSHISQGIKHLEMPLTLIERRTGDQLVYYFTNFAYKDELTRRHLASYQDRDMYVCSINNFGHYLDKTRRREVKKSAPGPVLIFYMLNFYSNHQPARFSVEAA"]}}, {"location": "[64033:64618](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRILLLGDSIFARKEGLDQPRINWTLKEKKLDLEIDNTAVSGINSGALLALLGDLALKRPRAGQLFLMVGVNDAASHKQVPLDQYRKNLQAIVSALVCFYPGTQTVLVSGPAVDEDKQRGRTNAKLAKYAKVMEEVAAEYQVAYADFFTAMLKEGNLKALCRGELDDGLHFGPRGYQLLAAEMMKQLPKEEVEQ"]}}, {"location": "[64614:65268](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.73"], "codon_start": ["1"], "db_xref": ["COG:COG0406"], "gene": ["cobC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P52086"], "locus_tag": ["MAAAAKME_00690"], "product": ["Adenosylcobalamin/alpha-ribazole phosphatase"], "transl_table": ["11"], "translation": ["MKKIYVVRHGRTYLNKYQRLQGWSDAPLTEEGIEGAHRMGKALKDQHFDLVASSDLKRAADTRKIIVSENDNWESTKMTQTADLRELFFGYYEAFHDTEGVAAAFKSTKYPRLVDAVKDGYTWQEIGNLFHAADPEGDAESGSEFESRLKRGIDYLVNYDESERILLVGHACVIHCLACIYGGKHLRTDLPKHNEMTVLNVDDNGQVSLEEFGRPMY"]}}, {"location": "[65343:65472](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISKEDKLLIRRCLYAMINMYGIIPLRHAYHIFSHQNPLAQR"]}}, {"location": "[65590:66064](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRENEWYYERTTATEEYRQYLKDSNPGLGDDRLEEAFFEALTQLHSVSYGKTVEETINAVPRSLRLIGFTVTDEQEDELRDLLRRMLDGTRQEALRGKMYKYHKLSTTLEIIETEGLTPENISRIHSGKIDAMELVPQIELKQPNLAQQLATIYQQ"]}}, {"location": "[66912:67197](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDRFSKLAVSTKKVLKWVLGLLIINFIGLMLITLYSAYYSFGTMIFGVHTESAIKDFWSTEFITAIPFVIGINLLAIITASVRIYKNKKKENNS"]}}, {"location": "[68068:68614](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1268"], "gene": ["bioY2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI45"], "locus_tag": ["MAAAAKME_00730"], "product": ["Biotin transporter BioY2"], "transl_table": ["11"], "translation": ["MSRKNTFQLCLLALSIALIIVGSQLAVPLPGGVPFTLQTLIIPLIAAAFGWQLGTGAVALYLLLGAAGLPVFSGASGGIAVLFGPNGGFLWAFLPLALITGLDKGNRFYLTLAAGIALFLQLLLGAAWLAWISHLPFAAAANAAIWPFLPTTLAKLALVVALAPRLRAIFAVYAGKVNRGY"]}}, {"location": "[69334:69955](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_00740"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MRPQELFLRRHKFIDYVSHCFHNQGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILVRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMEAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYIHPVIKAA"]}}, {"location": "[70002:70137](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKYRVEDIAKIEVWCNSLPRKILNYKIPEEYFDTELDRIYRRR"]}}, {"location": "[70249:70963](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1011"], "gene": ["yfnB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06480"], "locus_tag": ["MAAAAKME_00760"], "product": ["Putative HAD-hydrolase YfnB"], "transl_table": ["11"], "translation": ["MRYQQIILDVDDTLLDTEATIHDSLVQLFKSHGWEISDEFEKEFHAYNQGLWRRLEKGELTLNQLYEIMFPDIIKKYCGVEVDGMETADEFHSYFHTGHKLLPGVKETLRYAKRLGYSLAVLSNGEQFGQEHRLELAGIRHYFDLVVTSQEAGVQKPNAEIFDYFFARSGYSPNQTVFFGDGLSSDIMGAENYGFASIWFNHRHRQKTLSVHPLFEVDNYAQFQRILKKDFAPTALR"]}}, {"location": "[71012:71186](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGNYFFDFDDTICESRHIYAASVQKTFEARGVKVPSTEDIYQAMGIPIDVSIARWAQ"]}}, {"location": "[71228:71564](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.18"], "codon_start": ["1"], "db_xref": ["COG:COG0546"], "gene": ["gph_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32662"], "locus_tag": ["MAAAAKME_00780"], "product": ["Phosphoglycolate phosphatase"], "transl_table": ["11"], "translation": ["MAEYVLLEDDQVRLFPGIVKTLTQLKLAGKQLFVCSSKTDPEIAHNLENLGLLDLFVDFVGADEVVNYKPASDEIDLLVKRHGLNLSESVMLGDAKYDIRMGKNAGCATCA"]}}, {"location": "[71708:72536](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.11.2"], "codon_start": ["1"], "db_xref": ["COG:COG0708"], "gene": ["exoA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37454"], "locus_tag": ["MAAAAKME_00790"], "product": ["Exodeoxyribonuclease"], "transl_table": ["11"], "translation": ["MRLISWNIDSLNAALTGTSPRAEMTRGVLKNLHDLDPDVLALQETKLPASGPSKKHQAALADLFPEYDFVWRSSMEPARKGYAGTMFLYKKGLEPVVTRPEIGAPEPMDFEGRILTLEFPDFYVTQVYTPNAGNGLVRLGDRQEWDKCYRAYLEELDKKKPVLASGDFNAAYQEIDLKHPENNHHSAGFTDEERAGFGQLLAAGFTDTFRQIHGQVEGVYSWWAQRVRTAKANNSGWRIDYWLVSNRLADQVEKSEMIETGERADHCPILLEVKL"]}}, {"location": "[72615:73092](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00800"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRLEKGVIGLILVIFAGTVIMAVSSGGQKAESSSDAFDTSEYRKAVKSTDNHHFKNMKVELSGKKSKRVDLDFTASKKDSVLISKQTVKLLTPKGQELTHATVGEIGYDPDSDKVLIFASDKNYSRGFYPLGNLKRNEPSPASLSADQDPLEFSFKD"]}}, {"location": "[73278:74187](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14295"], "locus_tag": ["MAAAAKME_00810"], "product": ["L-2-hydroxyisocaproate dehydrogenase"], "transl_table": ["11"], "translation": ["MRKVAVIGMGHVGATAAFILFTHGVADELVLLDKNETKCRAEWGDLRDTLGRNDFYVNVKWGDWKELADADLIITAFGDVAASITTGDRFAEFPINTKNAVEVGQKIKDSGFKGVIINISNPCDVVTSILQKVTGLPKSQVFGTGTFLDTSRMQRVVGEKLGQDPRNVSGFNLGEHGSSQFTAWSTVWVNNRPAKDLFNEAEKEEMDRLSKDNAFMVGKGKGYTCYAVATCAVRLARAVFSDAKFYGPTSCYVESLGTYIGYPSIVGKHGVEEVPVLDLPADEQAKLEASAKKLKDSLASLE"]}}, {"location": "[74305:75163](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0656"], "gene": ["yvgN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32210"], "locus_tag": ["MAAAAKME_00820"], "product": ["Glyoxal reductase"], "transl_table": ["11"], "translation": ["MTLHGLEDTYELANGVKIPVIGFGTWQTPDGDVAQEAVETALNAGYRHIDTAAAYGNEASVGRAIKRSGVKRSDLFVTSKLWNGSHSYEGAKAAIDDSLLKLDTDYLDLYLIHWPNPVAIRDHWAEGNAEAWRAMEEAVQAGKIRAIGVSNFRRHHLEALLKTAEIKPVVNQICLNPNDLQAEVTAANKEYGLLSEAYSPLGTGGLLGNETIKAVGAKYGKSSAQVLIRWSLQHNFLPIPKSVHPDYIKANAEVFDFALTADDMAKLDGLQGIGQPVLDPDQAEF"]}}, {"location": "[75458:77678](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.17.4.2"], "codon_start": ["1"], "gene": ["rtpR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59490"], "locus_tag": ["MAAAAKME_00830"], "product": ["Adenosylcobalamin-dependent ribonucleoside-triphosphate reductase"], "transl_table": ["11"], "translation": ["MSEGISLSAEFIDRVKASVKPHWGKLGWVTYKRTYARWLPEKGRSENWDETVKRVVEGNINLDPRLQDSPSLELKQSLTEEAERLYKLIYGLGATPSGRNLWISGTDYQRRTGDSLNNCWFVAIRPQKYGDSKIVPSYLGKQEKAVSMPFSFLFDELMKGGGVGFSVARSNISQIPRVDFAIDLQVVVDESSESYDASVKVGAVGKNELVQDADSIYYRLPDTREGWVLANALLIDLHFAQTNPDRKQKLILDLSDIRPYGAEIHGFGGTASGPMPLISMLLDINEVLNNKAGGRLTSVDAADICNLIGKAVVAGNVRRSAELALGSNDDQDFISMKQDQEKLMHHRWASNNSVAVDSAFSGYQPIAAGIRENGEPGIVNLDLSKNYGRIVDGYQAGIDGDVEGTNPCGEISLANGEPCNLFEVFPLIAEEQGWDLQEVFALAARYAKRVTFSPYDWEISREIIQKNRRIGISMSGIQDWLLTRLGNRVVTGFKDDFDPETHEAIKVPVYDKRAIKMVDQLYKAVVKADQDYSKTLGCNESIKHTTVKPSGTVAKLAGASEGMHFHYGAYLIQRIRFQNSDPLLPALKACGYRTEADIYTENTTCVEFPVKAVGADNPNFASAGTVSIAEQFATQAFLQTYWSDNAVSCTITFQDSEGDQVESLLRQYRFIIKSTSLLPYFGGSLQQAPKEPIDKETYEKRSQEITGNVEEVFSQLNSDVKDLELVDQTDCEGGACPIK"]}}, {"location": "[77742:78558](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKKILAVVVASAAFMGLFASQPVQKQYVQAAKNTKTAKKTTKKAKAKQISVTYTLKDTTKAKNNQTLAKKTFKVKKGTSVFTVLKKAWKVNYTKSSYGVFITKIKGLGNEKKKLYWTYTVDGKMAKVAADKQKLTKNKSKVVFTLKQYVQAAKNTKTAKKTTKKAKAKQISVTYTLKDTTKAKNKQTLAKKTFKVKKGTSVFTVLKKAWKVNYTKSSKYGVFITKIKGLGDEKKKLYWTYTVDGKMAEVAVDKQKLTKNKSKVVFTLKQY"]}}, {"location": "[78559:79108](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTKERYQLQRLTLLALLTAMCVVLRIFKIIDIPNVQPVTDIIMLTTLELGAGTGILLAILVMVISNIFLGFGIWTLPQIFAYAACALTVALFARLLPLKSRKFFWLQELLAGFLGLEYGFFVSLGMAGWGGWAAFIAYWVSGLTFDLYHAAGNLAFYPIFYLPLVLGLDRFKKKAGWKQNA"]}}, {"location": "[79100:79664](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.17"], "codon_start": ["1"], "db_xref": ["COG:COG2096"], "gene": ["yvqK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34899"], "locus_tag": ["MAAAAKME_00860"], "product": ["Corrinoid adenosyltransferase"], "transl_table": ["11"], "translation": ["MLKVYTKVGDQGKTKQVTGKMVAKYDPQIQTLGALDELQSWLGVTVANLSPACQGLEEKLIKLEREMYELQADLVVKRHHTITLAEVTYMEEQIDAWTEELPEMKGFILPGGSKTSANLQYARALARTSERVCVLYADESGEVKSDSLKYLNRLSDYLFVMARYANLLEGVADVKSKPARPRRRPKK"]}}, {"location": "[79875:80901](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_00870"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLNDRTTIQELHSEGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWERDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMKAFDKFREYYGSKWNQIFKSITTDNGSGFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDQYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[81169:82171](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.28"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["ldhA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26297"], "locus_tag": ["MAAAAKME_00880"], "product": ["D-lactate dehydrogenase"], "transl_table": ["11"], "translation": ["MTKIFAYAIREDEKPFLKEWEDAHKDVEVEYTDKLLTPETVALAKGADGVVVYQQLDYTAETLQALADNGITKMSLRNVGVDNIDMAKAKELGFQITNVPVYSPNAIAEHAAIQAARILRQDKAMDEKVARHDLRWAPTIGREVRDQVVGVIGTGHIGQVFMQIMEGFGAKVIAYDIFRNPELEKKGYYVDSLDDLYKQADVISLHVPDVPANVHMINDESIAKMKQDVVIVNVSRGPLVDTDAVIRGLDSGKIFGYAMDVYEGEVGIFNEDWEGKEFPDARLADLIARPNVLVTPHTAFYTTHAVRNMVVKAFDNNLELVEGKEAETPVKVG"]}}, {"location": "[82461:83853](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0277"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIT1"], "locus_tag": ["MAAAAKME_00890"], "product": ["putative FAD-linked oxidoreductase"], "transl_table": ["11"], "translation": ["MNFSAYNTDEIIDFLQEQVKDGIVKTDKDSLQTVSYSQNLPGQHGLALALVEAGSIADVQGVMRAARRFHLPVVSQNRFTSTVVGADAVDHAIILSTAKMNKILELNAEDAYAVVQPGVINNDLDQAARKQGLFYAPDPASKKMSGIGGNVATNAGGLSGVRYGSTRDNVLGLKVVLADGRLLDLGGKTSKQAFGYDLTQLFVGSEGTLGTIVEITVKLLPLPLGESLMGLAYFKDMHTLAEATKDLRMSGIYPAMLEAMDSHTLQAVSEFRDNKEMAGRGAALIFRVDSISDEGKQIVKNIMDKYHVTDVQLATDPAEQDKIISVRQDMLPAIFTGRSAVMEDMAVPTSRMAELVDTIQAFSDKYPELEIFTAGHAGDGNLHPTVTWSKDAKEMPESVNIVLHEMFTKALELGGTISGEHAVGMLKNQWNNVELGEDVDWIQHQIKSLFDPMNLLNPKRKID"]}}, {"location": "[84045:84477](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.88"], "codon_start": ["1"], "db_xref": ["COG:COG0242"], "gene": ["def1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KVU3"], "locus_tag": ["MAAAAKME_00900"], "product": ["Peptide deformylase 1"], "transl_table": ["11"], "translation": ["MTVQKIIHDPLSLSQPAAKAAASDRQAAQDLLDTLLAHRESIDGLPPAAGLAANMIGVNKAIIAVNAGFLPIVMLNPTIVKRSGHYLAEEGCLSLPGERPADRYEEITVKYQDMDLEEHEQAFTGFVAETIQHEVDHCKGKLI"]}}, {"location": "[84519:85401](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1464"], "gene": ["metQ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32167"], "locus_tag": ["MAAAAKME_00910"], "product": ["Methionine-binding lipoprotein MetQ"], "transl_table": ["11"], "translation": ["MRRKKKHQRLIAATIALIVIIAAFFALRLTSSRQTAKSQTTTVTVGSIGPDVQVWQHIAKSSQAKKLGLKIKVKAFTDGPSILRATSDGSINVSAFASWAYLEAYNKSKSNTGQQVALATTYLEPMGIYSSKYKKLSDLPKGATIALANNAANEARGLLLLQSAGLIKLKKNFDSASGNTNDIVSNTKKFKFKLIDDTTGPRIIKSVDAVLIGNTIALAGNLNVLKDSLYHEKINQSTKNNINVLATAKKNKNNAAYKKLGKLYHNKQIQKWIAKKYSGTKVEVNKPVSYLTD"]}}, {"location": "[85428:85908](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.4.1.21"], "codon_start": ["1"], "db_xref": ["COG:COG1854"], "gene": ["luxS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RRU8"], "locus_tag": ["MAAAAKME_00920"], "product": ["S-ribosylhomocysteine lyase"], "transl_table": ["11"], "translation": ["MAKVESFELDHTKVKAPYVRLITVEEGPKGDKISNFDLRLVQPNENAIPTGGLHTIEHLLASLLRDRLDGVIDCSPFGCRTGFHLITWGEHSTTEVAKALRDSLKAIRDDITWEDVPGTTIESCGNYRDHSLFSAQEWCNDILKKGISDDPFDRHVVED"]}}, {"location": "[86085:86868](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.30"], "codon_start": ["1"], "gene": ["metA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A1D3PCK2"], "locus_tag": ["MAAAAKME_00930"], "product": ["Serine O-acetyltransferase"], "transl_table": ["11"], "translation": ["MSKKIGILNLMHDKIDTQKRFSHVIKEASPETEITYFYPQSHYLNRPRPQNWPAEPLNLKTVAKLDGFIVTGAPIELLPFSEVDYWEELTKLFDLLKAKNIPQLYVCWGAMAALYYFYGIGKHPMPEKIFGIYPQEILAPTPLLSGLITGFLAPHARYAEMNRSEIEQEKALTINAATPDGHLTLVTGPGQQVFLFSHLEYGPQAFSKEYQRELSARGGDDRKIAKPQRYFADEAAMSLPQFTWESSQQHFFKNWLQTIK"]}}, {"location": "[87299:88277](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_00940"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKRLKLNDRTTIQELHSKGCAIARELNCSPSTVGYELKRGTVSVYTGNVKRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTNTRRARVNKRILGRRIDERSPRVESRKDFGHWECDLVLGHKTKDDDVLLTLWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLSDAIFPKETVWISTVWKILLRSRYGATLFLGRS"]}}, {"location": "[88789:89089](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_00950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNETELLQAVQQLADKDVAPFDLQIDRQAKLPNGLFQKIVDLGLLRAKIPKEYGGLDVSAQTAGLALLGPFDLILIGATIADYLRDRKFNSGKQKQGN"]}}, {"location": "[89251:90829](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00960"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MTFKEFYLRKPVKSSLLFLAAALSSLLLVGSSYALTLEFNALRNRQPVLFAQMLALQLACLVFSALLTYYGNLALEQLIQSYLQQIRQELALHIFNDGQAHDPAQAQNQLLKEGDLLTVSYLRNIYSSFKAGMTVLASGGALLSFHWSLFIACLIFALVQIYLPRLLDRQLNHANQRLATQNQAYLKVLGDWLLGLGDLHRCLSLAWFKEKAGLAAKELEDAHVHKSAVSARLDYLNQLAYSLGSSLILLLTAFLVIQHWTAFGLLSSIASFNSDFFGNLQNAADYLGEISGSRQLRQDLLKQREAVPEQKEAGQAPAAFASSPLTVEFNGLSLAYPAIKLQPREKVLLTGASGRGKSTFFKLLLGEVKAASGEIHYLDQKGQVIQPNLSQIGYLPQDPQLFPGSVAENMTMFNPALNDQDLLRQTADQVNLSEDLRLWPAGLDTRVAVEDSNISGGQRQKIVLARSYLYHSQLLLIDEGTSAIDQAATREIIVRLLKTDKTIMFVAHNLTADSRQLFDREIQLD"]}}, {"location": "[90825:92388](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_00970"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MTLRKLINSNRGRFAIIFALLVMTQVIDVASTYLFSPMVNQVSAGRFNIFCSLLLIQFALALVLNLAFNGANYLFSKQTQQYLHGVRDRMADHYYQQPAGLSEMTNHFSQDLDTLTYDYATVLFYLICDVINALMVAASLLSFHWLLLLASILTTVTSFAIARLLEKYSNQATDQLSAASQHFLATIAQWTAGLAELRRYFAKGPYQKALLKSGQELADRQVSRRKINSQIQCLQSLSNALGTVSIPLIAGFLFFKGQMSLGGVITSGYFASSIFSVLENIAGSYSYLNSTKSLRQQLSRLQESKKNDNLQPVNRMAQIEIKQVSLTHGKQLLSYPDLTIHAGEKILITGDSGSGKSTLLKLLLGNLQSEKGQIIFKDAAGQAFQPDPYSIGYQAQDLVLFPATLAENVTMHTPGLSADPKDYLKTVGLQLDPQRQITPDDLTLSGGQKQKLALARTLSHGFPLLLLDESLSAVDRAGQDQILRTLCQLPATVIFVAHNLSPEQKARFDREISLAKKEHV"]}}, {"location": "[92530:93259](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["mutS2_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00092"], "locus_tag": ["MAAAAKME_00980"], "product": ["Endonuclease MutS2"], "transl_table": ["11"], "translation": ["MTNIAKIVTHAQSRSLVLLDELGSGTDPDEGAAIAISVLQAPQLKGCLVLATTHYSRIKDYAVKHPNYRTASMDFNADTLTPTYRLLLDQVGQSRAFWIAQKVGMPKEIIDQAQKVLAGQLPLSSSTVVLKEKATSKIVKTHFCKGDVVYAGNLEKEGIFYALEANQTLAKIFVNKQFSVVPVKRLKLRRKAADLYPEGYNLDLLFISDWQEYKFNKDLNRGSKKAYKKLVKYEQEAKSKKQ"]}}, {"location": "[93197:94430](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1193"], "gene": ["mutS2_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9X105"], "locus_tag": ["MAAAAKME_00990"], "product": ["Endonuclease MutS2"], "transl_table": ["11"], "translation": ["MTEIFENNQLQFAQVLTQVASYAKSPEARNLLLQAQPLTKPAAVTHLLDETEEGTRLLERSLQLPFVSSDSLLPLINRAQKGLLLSADDLEKVADYLRVCELLQRFLYREKDLVPILNSYGEELQLFPKLVEQIYQSIEHGQVADSADRDLRRLRRQEQELSQEIKDTAGKLLQSKKVSQSLQEQRLVEKDGHLTLPVKSSFKKAIAGRIIAYSANGQTAFILPRKLDQLSSEKIAVKGQIEAIEAMILGQLTAAVYEESPGLLRNIDVVAAIDQIMARARYSRELNGKRARLNQTNQLLLRGMRHPLLRNPVPLDLEIKPPVRGLIITGPNAGGKTATLKTCGLAIMMTEIGLFLPSREICDIPVSQQIFSQIGDQQDLDNFPVDLLSRNDQYCQNCHSRSKPQSSFAR"]}}, {"location": "[94510:95212](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGWILLLLVIIICVGTYINFRNEKKKQSQLWAQRQKDSYVPPMPIIILETVDGASKLVVKNDSSVYFTQYEKGKAPWPGGVENFSVYYDKDTKHLLILSLVQENDNIDFGEVDPEATEKFLAIFQSVGGHLAQHYELLTLNKVDSSDLNLAVKSFPAKVYFYTEKSVTDGKKRLYFSPDPTSTAYKLLGVAVSDGSNGEKSVELSLETFKGVKYSIYTTLSEAGVKDLQENFA"]}}, {"location": "[95438:96353](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["argP"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00513"], "locus_tag": ["MAAAAKME_01010"], "product": ["HTH-type transcriptional regulator ArgP"], "transl_table": ["11"], "translation": ["MRIQQLLYLQKVVALGNMTEAAKELFIAQPTLSSAIKQLEKEMGITILIRGKKGVSLTEDGREFMQYAQQILDQVQLLERRYGDQSSAPKIFSVAAQHYAFAVDAFVQLLKEIGQSDYQASLKEMRTYEVIEDVANLHSEIGIVYLSRYNRQVMENSFQEKELSFTPLFKAHPHVFLYRNHPLAGKKSISLADLFPYPKLSYDQGQHNSFYYCEETLADQHSPKSIIVSDRATLFNLAIGLKGYTISSGIINADLNGDDIIARPLISDEYIEIGYLTNRLHQLSSIGQKYLGYLRESIEKNAKR"]}}, {"location": "[96484:97609](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.14"], "codon_start": ["1"], "gene": ["metE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00172"], "locus_tag": ["MAAAAKME_01020"], "product": ["5-methyltetrahydropteroyltriglutamate-- homocysteine methyltransferase"], "transl_table": ["11"], "translation": ["MPFPRYDIVGSFLRPAALKEAREKFARGEISQAELTAVEDQEIKNLVQKEVAAGLKVVSDGEFRRSYWHLDTFWGFGWVEHVRADHGYFFHDEETRPDAAKLVGKLTYEAGHPDVAAFDFLKPLADSAGVEARQSIPAPAQLYCELICRNDELIAATDAVYPDRAELAKDVSKVYRELILDLYKHGARDIKLDDCTWGVLVNDSFWHAFDEGHLKREEILQLYKEINENALVDLPEDLRITTHICRGNYDSTWASEGGYGPAAPYVCKEKGVEAFYLEFDDDRSGDFAPLAEVPADKVVVLGLVTSKKPELEDPEALKAWIKEAGQYHPLATTALSIQCGFASTEEGNHLTDEEQWVKIMLVIDTAKEVWPDAE"]}}, {"location": "[97865:98486](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLFAVSMCLIFPLIAGSVEASTNKSLSANRLNSINTEYKIDSTKWSDEKIDQLVKALSELHPELSNEYLRELVESQLNDEAIPNLTNRDISPSLALRANLARSTKSSWKGITVAQMGAVIDTIIGTVIGGGLSSITKAGLKAAVKKMGRKKLSRLVRQHLLRKFSAAYIISSKVIETALNYTSPGTWVAKYWDKHDAYPNNGRINF"]}}, {"location": "[98548:98743](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLIDKLAHRQSTFWGILSFLAFYGAYEFQMSESVPKKVHTIVNVVLGVAALAIVCVLIYISFHN"]}}, {"location": "[98915:99854](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG1940"], "gene": ["glcK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54495"], "locus_tag": ["MAAAAKME_01050"], "product": ["Glucokinase"], "transl_table": ["11"], "translation": ["MKKYAFGVDIGGTTVKIGLFETNGELSQKWEIPTRKEGNGSKILPDIAASLNDKLKELDIPKEEVAGVGIDVPGPILDDEIVNRCVNLGWGVFNVAEKVRKLTGLDKVKVANDANAAALGEMWQGGGESHQNVVMVTLGTGVGGGIISEGKIVAGAFGASGEIGHMLVNKDETQLCGCGKKSHLEQYASATGIARKAKELLAESSEESSLRGVDQLDAKAVFDAAKEGDKLALEIVDFVGETLGTALASISCVFDPEVYVIGGGVSKAGQILLDTVQKHFVDAAFHASGGTEFALAQLGNDAGMYGAVKMVL"]}}, {"location": "[99904:100828](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.27"], "codon_start": ["1"], "db_xref": ["COG:COG0039"], "gene": ["ldh"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59645"], "locus_tag": ["MAAAAKME_01060"], "product": ["L-lactate dehydrogenase"], "transl_table": ["11"], "translation": ["MSRKVLLVGDGAVGSNFANDLLQTTRVDELVICDLNKDRAAGDCLDLEDMTYFTGQTKLRAGDYSDAADADVVVITAGVPRKPGESRLDLIKKNEAILRSIVDPVVASGFSGIFVVSANPVDILTTLTQKLSGFPKKRVIGTGTSLDSASLRVELAKRLQVPIESVNAWVLGEHGDSSFENFSSAVVNGKPLLDYPGMTEAALDEIEAHVREKGSEIIVKKGATYYGVAMMLAKIVTAILENNDLALPLSAPLHGEYGIKDEIYLGTLAIINGQGISHVLELPLNDSELAKMRASAATIKATLDSLG"]}}, {"location": "[101546:102773](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["naiP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34691"], "locus_tag": ["MAAAAKME_01070"], "product": ["Putative niacin/nicotinamide transporter NaiP"], "transl_table": ["11"], "translation": ["MDNTSPMSTNQKWVLASMSSGFLLENMDVMFLSFSLSEIIAQMHVSSTAGGWIGTFTNLGMFFGGALFGLLGDRIGRVKTFSYTIFLFAIATGLTYFAHNITALYALRFLAGIGAGGEYGVGIALIAENFQANQIGRASSVAAVGGQIGSIVASLLAAWIIPTYGWNTLFLFGVVPVVLTYFVRRHVKESDEFLAAHKKAEETGEKISFGRLFETPRLALQTLGLMLMTIVQIAGYFGLMNWLPSIVQKKQGLSVSGSSYWMIATIIGMSIGIMVFGTIMDKICPRWAFGIFLLGSAVVVFAIVNVTSYWTMLLAGALTGFFSNGMFGGYGAVISQLYPTEIRSTANNLIMNTGRAIGGFSSVIIGALMDHYNLYVVMGFLSALYIISFLVMISLPGLREIQTKKRAA"]}}, {"location": "[102973:103516](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNAFGNGITISSNIGTAPWGASEVNLAHIFHTSIALAMFLTGFLVAVINQLLMRRFDLPRFLDEVVFIACFSYFINLFTSLFSALGLPDLPLPWRLVAGLLGIMTLGCSISFCQRANLLMHPNDDTTNILRFMYCKNKVVRAQLINFSVPLLLTGICWLATGKVYAVNIGTLLCLLVNGR"]}}, {"location": "[103766:104603](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSVKKHRYAATASTVYFSYFMMGIGMSLLAQFKPQFASLWHSSISEVLSVVSAVGIGGIVSILITGPISDHFGRRASAVIGHLLWAIYYIGLLYAPNFAVAYIIGILGGIANSFLNASNFPALMEIFSESASVAGLMSKFAINIGQFCLPLAILLGTALDSGYRTVFMLAEILYIVMALILAFSPYPDQVTGPKKQEKAKHDFKPVANFYAAGELVGGANGKDSMPSMMNSWSYASGFVAGTAAADNANNYAVDVITSASHAPAPKPEATSGAIHYHC"]}}, {"location": "[104737:105652](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["gltC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20668"], "locus_tag": ["MAAAAKME_01100"], "product": ["HTH-type transcriptional regulator GltC"], "transl_table": ["11"], "translation": ["MNIRHLRFFVELAKTEHMAKTAEKLGISQPSLSYAISSIEEELGVPLFEKEGRNIRLTNYGKIYLEYVKSGLSDLDRGGEYIAELLDVNRGHIRVGFTMGQDLIPQLIYKFKQEKDTKDITFSFVQGTTDDLVDQLVNDNLDLVVSPAPDLPGLEDKVDISHLVDQEMLAVVPFSNPLAQKDSVSLADLAKYPMIYYSKSSRLRPLLDKMFAEAVVKPKIIMESMEDHTIIGFVHWGYGVAIVPHLPQLDPRTVKLLHIDENLGVHPIFVVKKSDHFLTPAVTRFERFIKSYCRKHCNNEHKLV"]}}, {"location": "[105836:107498](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.25"], "codon_start": ["1"], "gene": ["aroE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00222"], "locus_tag": ["MAAAAKME_01110"], "product": ["Shikimate dehydrogenase (NADP(+))"], "transl_table": ["11"], "translation": ["MADERNNEIEETKIQGVNGPITGWLDGHTILVGLMAYPIRHTMSPTMHNNAFAKLGLNGAYLCVEIDNEKLPGAIDAIRPLDMRGSNVSMPNKKKVIPYLDKLDKTSQMCDAVNTIVNEHGILSGYTTDGMGWVRALKKDGQDVKGKIITLAGAGGAGLAAATRSLQHDKKVVILEKFPQLGGNTARACGPMNAAEPDWQKGFKALPGEKGTLQELAETPTSEIDPEYVADFEKLRDQIKAYLDLGEDYLFDSVLLHEIQTYLGGKRVDLKGNEIHGKYELVTTLVNNVLDSVNWLTDLGVKFDRSDVTMPVGALWRRGHKPVEPMGFAFIHVLGDWVKEHGATVLTETRAKHLIIEGGKVTGVIAEKTDDSKVTVHAKSVILMAGGFGANTKMVQKYNTYWSEIADDIATTNSPAITGDGIVLGQGAGAALTGMGFIQLMPVSDPVTGELFTGLQTPPENFIMVNQKGERFVNEFAERDTLAKAAIDNGGLFYLIADDKIKETAYNTTQESIDAQVEAGTLFRADTLEELAEKVGMDPAVLTDTIKEVQLLR"]}}, {"location": "[107954:108818](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIIGDKRLDVIHNIKQAANERNFTAKTEIGDPVMSSEEKLALVEGFWQKQDQAKTKFDGTVGHELLQLLTKTISGSTKVNGLGKLKGLPKGGAIVTANHFNQVDALAVNRLAQKAHRRMDIVIEDTNLMLPGFFSYIMNNMGSIPLTQSPNYLGREFIQHLNQAFNQNHWVLIFPEQEMWWNYRKPRKPQRGAYYFAAKCNVPVISTFVEIQDLPKLEKQNEHFYQTRYTVHVLDVLYPDPTKTASENASRLMEEDYKLKVQAYERVYKKKLDYDFTSWDIAGWRGE"]}}, {"location": "[108833:109436](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNADIAGLYQTELGNNLVAACHDQSVHYIEPLQTYIRDCLGIDPDKYVNSGVLVMNCLAMRDEGFVDKFLQLLSTYQFNSIAPDQDYLNEICSGRIKLLDPRWDAMPNDFDPEMTGPYLIHYNLSYKPWHFEEVKYGSYFWQVAKETPFYKDLQKQLAAFSDQDRKEELAKMQSMVDMVCKNLHDPQNWFHGKREIKVTL"]}}, {"location": "[109814:110639](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNFLFCGDHNAERGVLIAVLSLLKAERGEEVHVYILTMRAKSKSRSFKPFSQHAADFIRSLIVADNPNSSLELIDCTENFIKEPPTANMGTRFTPYAMLRLFADELPQIPDRILYLDDDVIIRRPVDQFYTQDLTGTELVGVLDYFGRFFFHNQKKIFDYLNSGVLLLNMPEIKRTGLFKRVRHLMQVKKMFLPDQTAINKLAKEKRIAPRKYNEQYALQDDTVIQHFTTSFRFFPYFRTQTVKPWDVKRVHSVLNLHEYDDLLNEYLQLKDQL"]}}, {"location": "[110666:111443](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKTYYYHSESEDLVSSAQQDFQLPDDYQFFREGAAWQFWNGLVRSLACAFAWLYSRLFLLVKVKGKEKLRPFKKQGYFVYGNHTQMLGDPFNPMTIVNPYHYYALAAQANWGIPFLGKYVIPAAGLPVGKNIKQSIRLLKEVKYAYEEKQAAIVIYPEAHLWPYYTKIRPFPATSFNFPVSLKAPAFAMTTTYQPCRWRKRPKITVYIDGPFYPDEKLGKKAAQEKLHGEIAKSMQERAKLSTCEYCSYVKIDSKN"]}}, {"location": "[111502:111575](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_01160"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[111701:112430](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["walR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37478"], "locus_tag": ["MAAAAKME_01170"], "product": ["Transcriptional regulatory protein WalR"], "transl_table": ["11"], "translation": ["MPKKILVVDDEKPISDIIKFNLIKEGFDVETAYDGEEAVEKVEEYNPDLLILDLMLPKKDGLEVAREVRQTHDMPIIMVTAKGGEIDKVLGLEMGADDYVTKPFSNRELVARVKANLRRRDIVKKAVEVNQQKEKEQESNDIQIGNLLIKPDAYLVEKNGEKIELTHREFELLYYMAQHMDQVMTREHLLQTVWGYDYFGDVRTVDVTVHRLREKIEDNPVRPKILVTRRGVGYFVKQQTEE"]}}, {"location": "[112464:114372](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.13.3"], "codon_start": ["1"], "gene": ["walK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45614"], "locus_tag": ["MAAAAKME_01180"], "product": ["Sensor histidine kinase WalK"], "transl_table": ["11"], "translation": ["MDGLMKKDKKARKEKVKKEKTYLLKRAVSSIQTKIALIFMLLLLATIEIIGAYFTRQMEQTSINNFQTTIQLQSIVTDQLTTQLVKNGKSADRKMNQIITDYSNDAISEIQVVDSKNVIRAVSNLSDKNRVGQLSNNGDIREVINSGQQKTQVTSDQKGSFMVQIVPLTSGTNIVGAVYVRASMADVFNNLRNISMMFLTASLLAVVVAAIASMFISRAITRPIEELRQQAIQVADGDYSTQVKIYSNDELGQLGAAFNTLSTKIERSNEQSESERRRLDSVLSHMTDGVIATDRHGNVSIMNQMAQDFLDVKAEDAIKKPISQVLGLGEDYTSQDLISNQSDMQVTVNAGTDDEMILHASFTLIKRVTGFVSGAVCVLHDVTEQIKNEDEQRQFVSNVSHELRTPLTSVRAYIEALNEGAWKDPEIAPQFLDVTQKETERMIRMVNDLLVLSRMDRGATKLEPEWVNFTDFVSHLLNRFDMIVEHDQGEAQSDTKEYVIKRDLGNQALWVEIDTDQMMRVIDNIMNNAIKYSPDGGTITVRLTQNQNQILLSISDQGLGIPRKDLGKIFDRFYRADKARSRAQGGTGLGLAIAKEIVTAHGGRIWADSREGHGSTFYIALPYEPMDEEDEWDEV"]}}, {"location": "[114361:115909](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKFKFKFNDFLLHLATLAVILISIGLWVTVMTSDQRFSRISNESSSQSSASLSTHYRNVQSFYAPGQTYVFQNGVRYQVHDAKRNLPLKFVQYLEKVKLGTIEKMSTTASDYEKLLADQNYIMFAYPDQINFTVLLGKKQANSSLQFNRVFVPVKSKTRYLYFGNDKGSRVYRVKIKSGSFRQLAKYVKSAQDRQEVSFLHLKKLYVPFYAKEIKAKEYSYLISYQSSSYYASRLLGSSYRKSVAKNGRTVYTAGYSKRLQIPKEGKSNDHQYLYQNYLTSQERTATQEMLESAAYVKQLGLAEQDLRFFERSGKTVSYIKYIEGYPIFANDALAQTQVTMGTESVSVAFSSMNLQIPIPYDGRVKTLPKTATLLKELNSIGIKESEIEKITIGYHIQADKKRSDLITLVPTYFIKVGGSWNSLAGWKKIKAENTDLLMEGASSSSSSYSSSSSSSNESSSEASSSASSSVSQAPASRQEAYSSSRSQPAAESSSSSSSAVSASSASSKEGEK"]}}, {"location": "[115909:116710](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4853"], "gene": ["yycI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45612"], "locus_tag": ["MAAAAKME_01200"], "product": ["Two-component system WalR/WalK regulatory protein YycI"], "transl_table": ["11"], "translation": ["MDHRKIEWLFLILFCLVDIYLLIELWRAPVTLTSSTNSVTTSTSLKAEMKSDNITVPSLSIKGDSGYYLATRSKSDLKEAAKKLSSDVFTSYAEGDKTLYATMKTAIPLERMTVGEFKNDSNYVPHGKQYVFAKNLSSNSSYVYVQKSQYGLVYSSLAQLVVNVRNKKITGYYQTYLTDLSSVRELQATISPLRAVTNLYTTRELADNSRVMQVKLGYTKLTEVRGSVIFVPTWLVWIENKSSKSSCLKRVNAFSGQLLQNSTLDD"]}}, {"location": "[116728:117526](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1235"], "gene": ["yycJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C0SP91"], "locus_tag": ["MAAAAKME_01210"], "product": ["Putative metallo-hydrolase YycJ"], "transl_table": ["11"], "translation": ["MQFAVLSSGSAGNCSLLMTDQHKILMDAGLSGKKTKELLAKVGVAIEDLDMVFLSHDHGDHSGGMGVLMRRYPQLNAFSNTVTWKYLEETGKIGCLPKDQINVIEPGQTKCYGDLEVTAFATSHDAAQPQYYVFSSGGKRLACLTDTGYVSEEVEYEIQDADAYLLEFNYDDLMLRSGPYPWSLQQRVRSDHGHLSNEQAAETLARVISSKTKHVFMAHRSQQNNLNYLARDVAEEVLAARDADVASDLELHDTEPMTPSSLINL"]}}, {"location": "[117620:118904](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.107"], "codon_start": ["1"], "db_xref": ["COG:COG0265"], "gene": ["htrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9LA06"], "locus_tag": ["MAAAAKME_01220"], "product": ["Serine protease Do-like HtrA"], "transl_table": ["11"], "translation": ["MSEEQDKQRNTRKKENNRLLTKAAIIGVVAGILGGGIAYGGLSAANLNSNTSSSTASSSSSNTGENGSVTTSSSGTTKVNKSKTTSGTMTSAYKKVQNAVVSVLNYKYTSSSSSSSDIYSMFGYGDSDSSDSSSSKKSLTLYSEGSGVIYTTANGKGYIVTNNHVISGAAKVKVILASGKTIAAKVVGKDSTSDLAVLSIDSKYVTQTASFGDSRSLLSGQTVIAIGSPEGSEYASTVTQGIISSPSRTITYNSNQMTVIQTDAAINSGNSGGPLVNSDGQVIGINSMKLSSSSSGDSVEGMGFAIPSNEVVTIVNQLVKKGKITRPQLGIKVAAIADLNSYYKKQLGISTSLKKGLYVASVTSGSAAASAGIKKGDVITAADGKTVNDVATLHSILYSHNVGDKVKITVNRNGKTMTFTVTLQASN"]}}, {"location": "[119396:119876](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.177"], "codon_start": ["1"], "db_xref": ["COG:COG1576"], "gene": ["rlmH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45601"], "locus_tag": ["MAAAAKME_01230"], "product": ["Ribosomal RNA large subunit methyltransferase H"], "transl_table": ["11"], "translation": ["MNIKIVCVGKLKEKYFKDGIAEYQKRLSRFAKVEIVQVPDEKAPESLSPAQMEEVKKREGERILSKIKDKEYVYVLAIKGKERASEEFAKELKNLGTYGHSDITFVIGGSLGTSDAVNKRANDLFSFGKLTMPHQLMRLVLIEQIYRAFMINSGSPYHK"]}}, {"location": "[120004:120148](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKTERYMWLANDLLLTAAAVSLIINLVGQTASGYAFSGSHGQATAL"]}}, {"location": "[120107:120443](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPLAAVMGRQLLYDAFILLVAAAALGVWLSKWLAPAAAWVIGACLLLGLVIDRVVGLYFGLTWYWTLAVVALEVSLVLASYRWRGKAVSNYWLAGILLAVSLVSCVMAWLG"]}}, {"location": "[120460:120841](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLLKILVKVVDVILLCFLTVVVCSNLKDYINALRTIKGNDLKVTVFGHVVLILVLLTELALAVFSQKNPRKPFLIIGLVCIALTLIGLITPIAFGPGNLPLNFLALVLLAVSRFLQENVAQKRTL"]}}, {"location": "[120939:121281](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMKNFATKPAVKTVFLLAGLCLALFMAVQWIFALGNPGPVSWAIAGMIAITLLTLFLGIAPLTKLSPVAGYVTAAVLAFVVLIFVFNIHEYISIGILYLIYAALACGLLWAKK"]}}, {"location": "[121350:121542](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKHQERQQVAVVVADVPSHTSVRVVGSVTIHEGDDFAKEYAAKVGKPETAPAVVVEVEEIFA"]}}, {"location": "[121502:121718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLDATTLTADQQKFFNDALAFVASVDKDGNPQVGPKGSLTALDDKHLVWSEVTSSHLWENIKNGSRLLL"]}}, {"location": "[121965:122322](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDHSYSNTKQHQKGKRLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRIKSLSLSQPTTDLSSQIYPILSKFPRLLCTTLTLIHPVIKAA"]}}, {"location": "[122369:122504](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKYRVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[122589:123258](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ecfT_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01461"], "locus_tag": ["MAAAAKME_01320"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MTKSKMNPSLKFLLILIISLELSFKVSLFSNVIVIVLSLAYLLYRRIKPKTLGGMLLATGLAAITVFSSGYIFSDHLDLWYALDISSRAFVYTFATACLTISTTAEEMARSLEQNLHLPSKFAYGTLAALNIIPRMQAAVKQIRVAGMMRGVYLSFWSPVLYFKAILVALNSADNLAQGMESHGYREGAPRSVIVEVPLTNKDWLLFIIAVLLLNLGAFLLP"]}}, {"location": "[123267:124623](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ykoD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34362"], "locus_tag": ["MAAAAKME_01330"], "product": ["Putative HMP/thiamine import ATP-binding protein YkoD"], "transl_table": ["11"], "translation": ["MQAELTIDHLTFSYGDREVIRDLSLTLPAGTFSLLIGPTGCGKSTLLKIMAGLYPKYGGQLTSGQVSLGWRSQAMMFQEAGEQFTMATPREEIIFAMENLGKSKTEFADRLKLASEFAEIDSLLDQKIVTMSGGEKQRVALAVLVAMDVDLFLLDEPFASVDPAARRFLIGLLAKLKEQGKTIIITDHLFDDYQGKVDGVYRFKGEQVDLLTKDEQALLLATEPIGLHFPLPENEPAAFVMKNFAIKQGRPLLEQKELSIPKGKVTLITGPNGSGKSSLFKAMTKLLDYQGSLTWKGKEVAKLKERTYFQHVAQIFQNASDQFMAITVKEELALSQKHASPYFTPEVLDQALADLDLADHMDQVVYSLSGGQKKKLEILLMLLSGQEVLLIDEPLSGLDQKSIEQVVQLLQKCQEKSGQTILLISHHFYGISTWCDYHLRLAGRELAFVQD"]}}, {"location": "[124925:126401](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bmr3_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96712"], "locus_tag": ["MAAAAKME_01340"], "product": ["Multidrug resistance protein 3"], "transl_table": ["11"], "translation": ["MSDQRRRVITVALMLSNVMSGLDNTIINTALPRIIADLHGIEYTGWLVAIFLLGTAVSTPLWSKLGERRGNKLAYQLAAACFLLGALLQGCAQQMSFLLTFRLLAGIGNGGMVSLPYIIYSDLYPNAHKRLKVLGMVSAFFTTATILGPLFGGWIVDALSWRWVFYINIPVALISIVLIQIFFLDEKKDRPVRRVDLGGAIFLSFGVVDLLLGTQLVGSASLATALLIFAAALIFIGLLVIIERRAEDPIIPGRLFKNIPLVVDFTLFVLIWAAMSAYSVYAPMWAEGLMATTALVGGMTQIPGAFTDMLGSLSVEKMRRRWSAYQVMLATCWLLAAGYLAMAVAPRYFPYWGILLAGMLQGWGHGVMFNQLQVKVQEDAESQDVPVATSFSYLIRMLAMAISSSVFGVILNEHLAKGVKASGGKITLSMLNHLSDAKTRASLPKQDLVQMENILYGAIHAIFWAAFILVFLSLLLAIWARWREKKLAGKR"]}}, {"location": "[125153:136119]", "type": "protocluster", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "category": ["RiPP"], "contig_edge": ["False"], "core_location": ["[130153:131119]"], "cutoff": ["20000"], "detection_rule": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "neighbourhood": ["5000"], "product": ["RiPP-like"], "protocluster_number": ["2"], "tool": ["antismash"]}}, {"location": "[130153:131119]", "type": "proto_core", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "tool": ["antismash"], "cutoff": ["20000"], "detection_rule": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "neighbourhood": ["5000"], "product": ["RiPP-like"], "protocluster_number": ["2"]}}, {"location": "[125153:136119]", "type": "cand_cluster", "id": "", "qualifiers": {"candidate_cluster_number": ["2"], "contig_edge": ["False"], "detection_rules": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "kind": ["single"], "product": ["RiPP-like"], "protoclusters": ["2"], "tool": ["antismash"]}}, {"location": "[125153:136119]", "type": "region", "id": "", "qualifiers": {"candidate_cluster_numbers": ["2"], "contig_edge": ["False"], "product": ["RiPP-like"], "region_number": ["2"], "rules": ["(strepbact or Antimicrobial14 or Bacteriocin_IId or BacteriocIIc_cy or Bacteriocin_II or Bacteriocin_IIi or Lactococcin or Antimicrobial17 or Lactococcin_972 or Bacteriocin_IIc or LcnG-beta or Cloacin or Linocin_M18 or TIGR03651 or TIGR03693 or TIGR03601 or TIGR03795 or TIGR03975 or TIGR01193 or (YcaO or TIGR03604))"], "subregion_numbers": [], "tool": ["antismash"]}}, {"location": "[126464:127313](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEIAKLQKKLQEAGDATLPLSKGKGQTAACTFVLLGDKAEGWKNDSLTALLLLAGTGRFRAGQQKWQVKPGDWFLLAAGQDCKASLKEGLLVQLVLPEAFSVKDLKKDLMLGEAEEVGTHGRVAVDGPAGAAFLAALNEYQTSDSVSSVLLKSQLLTALALALRALNEVGSLSEREIRRYISENYVSTSVKDAAAYYQLSPNYFSDLVKKKTGQSFIELVDEQKMETAVRLLARPDLSIKQIIGLVGYRGKSFFYEKFGKYYGMSPAAKRKELFRQQGINL"]}}, {"location": "[127454:128387](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_5"], "gene_functions": ["transport (smcogs) SMCOG1000:ABC transporter ATP-binding protein (Score: 165.7; E-value: 2.4e-50)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_01360"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MIEIDQLSFDYRTFSKEPGLKGALQDIFHRKYQLVPALKDLNLTIKDGEIIGLIGPNGAGKTTLTKLLTGIIQPTSGSVKVAGLIPGSRQKKLLRQIGVMFGQKSQLSWNLPAVDTLNMLAAIYQLKPDHYQARLRELCDLLDIGEIVKTPVRKLSLGQRIRCELACSLIHEPSYLFLDEPTIGLDLLTQEKIYNFLKTENRLHQTTIILTSHNVRDIEALAQRLLILSKGELIFNDSLNKLPLQIDQSDSYCLKYWINDQTDVREEIIHDPQQLFVKMEKFQPEQIISLSKSGISAEEVILKIYQREKQ"]}}, {"location": "[128383:129130](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRYLPVYYLGLKNSLIYRANMIMKLVLQLASLLVTVLMWKFILAESGNFQQMARYLLATNLISLIFTTGPVFQFADMVESGNLSLYLTRPLSLYWYLFNYNLGLQTPLLLLYLILLLFLVKSAGPVFLLLIYLLLSSLMFFSLMMVLAMLSFWLINMWPLRSGINAVYLLLGGLYFPLNLLGPVYQYLKYNPFSLVTDFPARLLTGTTDQRDFFTNCLAVCCWLLLSVLLGKALFKKGIKTFEGAGA"]}}, {"location": "[129126:129891](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKIKAIWRQSLAEFMIYRGTSIITFLLATVFLLIELLAGQVYFSQRENLAGWTANRYYVMISFMNSATYLYNLFFILGHEGLGEDILEGNLDYLLVRPSSSYWLAVGRSLDIPSFFNLLLSLGLLAYYLTREGASFGQIMLINCMIVLPAALIFILNQLCLTLLFWFEGLTALGGIVEDLVSLAGRPKQIFPRVIQQLFTWIIPLLLVSNLPVDWLLGRGKSLLIYLLAFLPILYWISAKFWQWGLRRYSSAN"]}}, {"location": "[129923:130076](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGRTRTELTKGGPILVEGLNDEELNFFDALMSSPKDLSDQVNNVKTEVVK"]}}, {"location": "[130153:131119](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene_functions": ["biosynthetic (rule-based-clusters) RiPP-like: YcaO"], "gene_kind": ["biosynthetic"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01400"], "product": ["hypothetical protein"], "sec_met_domain": ["YcaO (E-value: 6.6e-23, bitscore: 78.8, seeds: 127, tool: rule-based-clusters)"], "transl_table": ["11"], "translation": ["MQIEREMPDADAHTNWLELINRLHLTADYRMWVSANLALQTVQCILSDSKKQQVSVGMGKGMNHMPVLGAEFESIEHLFYNSQTHSAKQRVLVSQIMEQDLDFLDDPALNQLSKNTKLTVDSFVDIESSKEVYYPSFLSDVNFIDDGVSINNHAYQYASDSGYASGSTVNEALLHSINELIERDSISRFIIKYGLGIKENSVTAFKIIPKSLPKDLYKIYLGLKDTVDTEVILVKVINNYQIPTYFTAVLSQGSDILPIYGSGSSVDERYAVMRSLTEAYQLVSVKKGSESQQLRKRLNLIWSEISPIEEDDVSNFYKKVG"]}}, {"location": "[131338:132178](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYGQYFKRLRNYKKMTLGEAAKDITSSPALSRWENGVDDIRLKKFLALLDRVDITPREFFAYTEVQGNLDNSYYDELQLLVQQKDGQRLHQIFLRQISSFHQTKDPDILGKAVAAANSYFSLTKINCLTDADLKSFKDLLLDSEYLDFKSLRFLENSVYLIDCDLLISYNSKVIHQLSHLEQVDYELYLNAWTALTNIVFSLIQQKQNSVASHILNQLLTIDLPQQMAAFKIRIVFLKKLLAYRESGDDREINAYLKSLTEIGLSNLVSELLDYWDSVY"]}}, {"location": "[132321:133221](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG0501"], "gene": ["htpX_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O30795"], "locus_tag": ["MAAAAKME_01420"], "product": ["Protease HtpX"], "transl_table": ["11"], "translation": ["MLYQQIAQNKRKTAGVLGVFVLIFALVGAGLGQLMWGKPLPGVLTAGVIALIYSFLVFQDPVNVVMSMNHAQHLNKEDNPQLFHIVEDMALVANIPMPEVYLIPDKSPNAFATGLSPDKSAIAVTQGLLDMMNREELEGVLGHEISHIRNYDIRLSMVALVLVSAISFIADFAQRCVWFGFGLDRDDDDDREGGTIGMIIGVIGVIFVLILGPLAASLAQMALSRNREYLADASSVELTRNPHGLISALTKIENSQPMQAASSASASLYIEDPIRRHSLSHLFDTHPATADRIKRLEKM"]}}, {"location": "[133237:133792](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1704"], "gene": ["lemA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A8AVK0"], "locus_tag": ["MAAAAKME_01430"], "product": ["Protein LemA"], "transl_table": ["11"], "translation": ["MAVWIIAILVVLIVIFYISAYNGLQKAKVNTEEAWSQISVQLKRRNDLIPNLVETVKGYAKHEKETLSKVVELRNQLTQLPADDHEGAMHLSNQITDSLKTIFALSESYPDLKANTNFANLQEELTNTENKIAYSRQLFNSSAAVYNKMLLVFPSNIVANIHHFTKVDYLEIPEEETKVPKVSF"]}}, {"location": "[133949:135095](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0471"], "gene": ["ybiR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75788"], "locus_tag": ["MAAAAKME_01440"], "product": ["Inner membrane protein YbiR"], "transl_table": ["11"], "translation": ["MEAAKSKSSNNFLTTLKKIFSDRILQITIVITIISLFFARPLSADMNWHTIESVTTMLVLIQVYSYLHVLDIIAYKLAAIADSTRKLILLFTLLSVFSGMFLGNDITCLTMIPLYLNIAKKYKLPEILPATLIGMGANIGAAFTPWGNPHNIFVVSNYHLAPAIFFKWTLPYLIVAMVVFLCFFFFIPKKNIPTQEVVEINVSWPMTMITTVIFCFFFVGVFKFVPIWMPMLASIIWALIVNWKILLHIDYSLLLTFTLFFLFISDIQQIPFVVALIHGLVGTEMSTYWTSILSSQVMSNVPSTILVGKFSKYAEALTLGSNIGGFGSPIGSMANMLVMRTFYAHASKDAKKKFFPKWLGYQIAGLIILSLIGWVIVKLNL"]}}, {"location": "[135688:135823](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSRNIHTGINPHRRPRNASNAKERVAHVAATISFLNQAAKDENK"]}}, {"location": "[135944:136856](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["cas9"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01480"], "locus_tag": ["MAAAAKME_01460"], "product": ["CRISPR-associated endonuclease Cas9"], "transl_table": ["11"], "translation": ["MKFQCSSCGLRLESLHFKLPGLVNDRLASLCDICRQRGLDPAASPNPVVKLFAANLLYAFVGKDGEASGDFSLPDLKIRRSYEALMQDYDGNVLARQQLPRADFNQAVIKAEDDPSFFLPGKLPFAEKLQALGLSVDFQLNEVDYIDRERIRAKYKYRCQYCGRRGRSVDHKDPVSVSHDNSLDNLILSCSECNRIKSNMPYDLFVKLNEELQPLNKKLVKYENALGPLEKEFQDRRNMLAAKVHLKGVVNDPELAAIRKENKRLRDAIDSLESDYDAVRRLREDHFKLGWKLYLAQQDKEII"]}}, {"location": "[137085:138225](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yneA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02014"], "locus_tag": ["MAAAAKME_01470"], "product": ["Cell division suppressor protein YneA"], "transl_table": ["11"], "translation": ["MKKKNLLMTTLATLSASGALLTTGASALADSYTVVKNDTLWGLSKKYGVSVSDLKKANGVSGHLIYVGQKLQIPTKSTKATKTAKTSTSTSTVDTTSTTHTVVKGDTLWSLAKKYGVSVSALMKANNLSSSTILIGQSLNLRAGMTTYGVNGVTTGSSSTAASANTASSTSTTASSQAPKDKKTATKAKSTTINTSSNSNTSTSANTQSQSTASNSSASTTTNTNTVASNANTTSSTNTAASSSQAVSQAPTASTATTTASASASAITSYALTFLGVPYVWGGTTPSGFDCSGLVQYVYSHFGINLGRTTYTQQYAGTKISVASAQAGDLYFWGSYGSAYHVAIALGGGQYVMAPAPGQNVMTGSVSSYTPSFAVRVLG"]}}, {"location": "[138852:139614](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["artM_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54537"], "locus_tag": ["MAAAAKME_01480"], "product": ["Arginine transport ATP-binding protein ArtM"], "transl_table": ["11"], "translation": ["MADYKDNEIILNVQHLQKAYGEHQVLKDISFEVHKGKVMTVIGPSGGGKSTMLRCINLLEDPTGGEILFHDQNILDENYNIPRYRSKVGMVFQQFELFENKNVLQNCMIGQELVLKRSKAEAKKIALENLKTVGMDPYIDAKPRQLSGGQKQRVAIARAISMNPEILLFDEPTSALDPEMVGEVLETMKKLAKTGLTMIVVTHEMAFSKEVSDQVLFMSDGYVAEQGSPDEIFNHPQSEKTQKFLANFRGPQI"]}}, {"location": "[139617:141201](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.2.-"], "codon_start": ["1"], "gene": ["mltF_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02016"], "locus_tag": ["MAAAAKME_01490"], "product": ["Membrane-bound lytic murein transglycosylase F"], "transl_table": ["11"], "translation": ["MKKHSSWISALMAAVLTLVLAVSWSQPAQASGTLKIGMEANYAPYNWTQTTSANGAVKIDGTSSYANGYDVKIAKIIAKKLGKKVIVEKTQWDGLLPALTSGKIDLIIAGMSPTAERRKAINFTSPYRTTNFVVIVNKQSKYAKAKYLTNFKGAKLTAQQGTLHYDLIKQLPGAKREPASKDFAAMRESLEAGTIDGYVAEDTELTSFQMVDSNITGVNLSKMKGFKVSSSDAEVSIGVKKGNAQLLSQVNKVLAGISTSERNKLMKEAVQQQPQTSTKKENWLVSMLKNYGQMILEGIGMTLLISLVSTIAGIFIGLLVSIVRTIPEPKNKFKKGLLAFCKWLLSVYVEIFRGTPMMVQAAVIYYGIAQFWHINLNRTVAALIIVSINTGAYLAEVIRGGIISTPKGQFEAASALGMTHNQRMWNIILPQAIRNCLPSITNEFIVNIKDTSVLSIISVSELFFVGSTIASQSFQFFQTYLVISVIYLFLTFTITRIFNLIEKHIEGPENYNMMANQVQVGKQEGDK"]}}, {"location": "[141588:142215](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG2094"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WJP7"], "locus_tag": ["MAAAAKME_01500"], "product": ["Putative 3-methyladenine DNA glycosylase"], "transl_table": ["11"], "translation": ["MDYRNFFTGRPTSEICRDLIGRPFYYQAGGEKIGGYIVESEAYLGIYDRAAHSYGGRRSHANEGLWRAGGTIYIYSQRQYVFFDIACQEEGNPQGVLIRAIEPVWGLDQMLKNRGGKDGVLLTNGPAKLMQAMGIKSRNWDLAPLADSPFVIDLTEKKPAKEIVASPRIGIVQADPAWAQAPLRYYVAGNPYVSGMKKRDWADDHGWL"]}}, {"location": "[142297:142669](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTIKTVRIYAKEQPAGYRILVDRLWPRGIKKEAANLDEWEKELAPSRDLRIWFKHDPARYPDFRQDYLEELADNPEWPPFVEHLQELLQKGDVLFLYGAKDEEHNQAVVLKEAAKEALAKLP"]}}, {"location": "[142655:143354](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.286"], "codon_start": ["1"], "db_xref": ["COG:COG0846"], "gene": ["cobB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66815"], "locus_tag": ["MAAAAKME_01520"], "product": ["NAD-dependent protein deacetylase"], "transl_table": ["11"], "translation": ["MDQAKLAEFKADLKKAKHPIFLTGAGVSTHSGIPDYRSKTGIYNGVSEPPEVILSEETLYDRPQLFYDFVMQNMYFPDAKPNLIHEKIAAICNEKGALVTQNIDTLDRQAGNQHVTEFHGNLYDIYCSKCKQKVSYEDYAKGYKHECGGIIRPGIVLYGEGINPANVNQSILEMRQSDLVVIVGTSFVVYPFAGLLGYAAKDAKIWAVNLTEIPAQGIKQLTGDALEVFKEV"]}}, {"location": "[143466:143946](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDTLFYLVADTLLAAYAGYSWYSQATVILRARWRMTAVVMPILLVWLGASWGYLELGTPGFIVFLALFILTGILEATSGFADKRVILSGYFRRTLKYSEISQVILTAAPPEVGDLSIAALETSRHQIYYLRFNKQVSDVVSFLMQRLERGVNIDVRKMG"]}}, {"location": "[144015:145479](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "db_xref": ["COG:COG1502"], "gene": ["clsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71040"], "locus_tag": ["MAAAAKME_01540"], "product": ["Major cardiolipin synthase ClsA"], "transl_table": ["11"], "translation": ["MTAISWIDIWHIIFFANAILALWTVFHRKRSVAASWAWLIVLIILPVVGFIIYGFVGRGISQEKLFAINRQKHNGLSNVQKMITEAPAKIDQSDTSPSAHILIKYLDKDQESPITKNNKLKLYTDGHDKFRDLFADIRQAKSSINVEYYTIYNDAIGNEFLKLLIQKAREGVQVRVLYDAWGSFGASKSWFNQLTEAGGDVLPFITSRNMISRNRINYHLHRKIVVIDGVTSWTGGFNVGDQYLGRKKKFGYWRDTHLRLVGSASLLLQERFVMDWNASAVKEEELISFDEKLFPDLDENDISKGDMAVQVVSDGPDNDEPYMRNGLVRLMMLARKRVWIQTPYLIPDEAMIAAWQILASSGVDLRIMIPCMPDHPFIYRATQWYANQLVKIGVKVYTYNNGFMHAKTIIVDDKYATVGSVNQDYRSYDLNFEDNVFVYDRAFNKEMSDQFEKDMEQSTLLTPEMIKKQSRWLRSLQNFSRLLSPIL"]}}, {"location": "[145480:146425](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLFFNSKKYAEETEKKRGKNPDPRDHSLAMMFFLGILATFPPFRIFLKLRGKRVSDLAENQASGSDQVPIIYVHGFRGGDYTTRMMVEDALKQKGDARFLKVEADLTGRIKLTGCYTGDKQPIIQLTFKDRIAGYQAINYYLSFILPFLSKKYVFTRYSAVAHSLGSPCVVATEMRYAKRKNFPHLASCALIAGPFNGVMYLGDIPNVNRLTESGRPSMMTPHYSYMLRHRRDFSPSIRVLNIYGNVLDTTNSDRFISVVSAKSIRYILAPDAVYYQEVEVLGDNAEHSQMHDEPFVIGILNRFLGLDKIKKGL"]}}, {"location": "[146496:147264](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "gene": ["rnhA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00042"], "locus_tag": ["MAAAAKME_01560"], "product": ["Ribonuclease H"], "transl_table": ["11"], "translation": ["MKVYVVKKGYRPGIYHSWPEAEEQVKGFPGAEYKSFSNIMEALDYQQMDPEDALKALQGAEDKLQAAIAKVRQGGSKKKQAESQKEFAASSKYAAHIFTDGGCRNNGTHKGGHVQADDKAAWAYLIEYGGQKLSASGGRFGATNNEMEMTAFLESLKKLEELGLNDQPLLFSLDSQYVIKAVSDNDQGPAWIKGWQRRGWKKADGSPVANRELWQEIAKEMAKFAQPEFEWVKGHANSAGNNFVDGLLNKYMDQM"]}}, {"location": "[147351:148308](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4086"], "gene": ["ypuA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31847"], "locus_tag": ["MAAAAKME_01570"], "product": ["putative protein YpuA"], "transl_table": ["11"], "translation": ["MNTKIKKIITACALFLGLGLTAGRVSAAEDTTPVITLGTSLTASQKQGTLDVLKGALSDSSSYNTLTVTGSDLVTYLNPSGSSFTSSSGVWSSAAIEKTSSGSGINVRILNYNGQNNITTITANQYRNAAITAGITDANIYVTSAIPIDGSGALAGIYKAYAKSGEKLNQKQITAAQNELNTLSGITKENKGKDGYSDAQLNNAVAGAKKEMAQKGSNITKNQIITIVNNQIENNNLTNVITNKQKQQIVNILVEIRDSGALNSSSFKQQASQAMSAIQKSAKGIFAKLNTSENRNALQKLWDAIVNFFTSLFSSLSK"]}}, {"location": "[148477:149302](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.53"], "codon_start": ["1"], "gene": ["arnC_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01164"], "locus_tag": ["MAAAAKME_01580"], "product": ["Undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferase"], "transl_table": ["11"], "translation": ["MRANADLKLTVIMTVYNQEKYLARALDCLLEQKNQQFKLLVIDDGSTDSTAEIAASYQDRFQAFDLVSKANEGVAAARNLGLDMVDTPYCIFHDGDDWVEPDYTDYFIKAFDRHPDDDMVTCGYYVDQAGKPSVPITKPVEGELTRLEAVLKVLGSAHSPVKGYTWNKCYKTQLVRSLHLRFNEDLDLMEDQVFNIDYLMQTEGCYYSSVPLYHYWQRADSAVHTVSWDHFWSIVGANISIYKSIFSHLWQKSPQQAAANPGIPRQLCKGKDQR"]}}, {"location": "[149298:149958](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.99.20"], "codon_start": ["1"], "gene": ["menH_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01660"], "locus_tag": ["MAAAAKME_01590"], "product": ["2-succinyl-6-hydroxy-2, 4-cyclohexadiene-1-carboxylate synthase"], "transl_table": ["11"], "translation": ["MIIKVNGVDLYYQKLGQGQPLILLHGHHLDGGMYSKVIAPLSLYYTVYTLDMRGHGLSGGDGAEHYQTEVEDLAVFIKELGLEQPYVFGYDSGGLVTLMLASQQPDILGKAVVAGVFIDGRGIHKYHYLTEGVRRFLRFDHDSRVELTESYMEPESLEQIKIPVLCVVGENDWVKVEHVRWYSSLIPNGRLALMPRQTHDSYVVDSLKILDLIKDFCKE"]}}, {"location": "[150048:151053](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.1"], "codon_start": ["1"], "db_xref": ["COG:COG0462"], "gene": ["prs_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14193"], "locus_tag": ["MAAAAKME_01600"], "product": ["Ribose-phosphate pyrophosphokinase"], "transl_table": ["11"], "translation": ["MMTSITKEEIHKLLNPMKVIGLGGNPQLNEKVASTLGVPLIETTVHHFSDGEIQVNVAESVRGCDVFVIQSIQDPVNENFMELEIVLDALHRASAHTVNCVIPYLAYSRSDTKTRSREPITAKLIANLLQLTGIDRVLTIDLHASQIQGFYNVPVDHLHAIPLLAQYFLDNGIAAKDDDDVVVVSPDHSGTKLARVFGQYFNAPIAIVDQRGARYDDSVHDMIGDVKGKKCIIVDDLIDTGTRLASSTRSVFAAGATKVYVAATHALLSQDAIKILNGLPLEQIVVTDTIKHEKYPDRMVRISVDRLLAKGIDHIYNDRSIHDIFDEQNRFTKD"]}}, {"location": "[151234:151915](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["betI_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00768"], "locus_tag": ["MAAAAKME_01610"], "product": ["HTH-type transcriptional regulator BetI"], "transl_table": ["11"], "translation": ["MARRKNMQRRREILYNTFRLIRANGFDNVSLQMIAENSGISKSLLQSYYPHKARLMTDIVRNFFNTMWDQVEINYHAPKKNPFTRVDALIYTIATLGMADKGLDRVITEAFTDQTSLDNWSRMLDEWMKSHNAFSEYSNYQEIRTGIAFIITGVGRLYRDRGKNGLNAEQMADYSTSSLMYGFLHADPAEIDVVLEEGHRIIDDINIGEVHHAIDTMFDEGKVIYS"]}}, {"location": "[151925:152759](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAESSGTHRRRNNYEIVDNALEYKRPLAFIAFLLLSLLLATGTFLNPAFMKETIKTDSNTVVISQQVNSHFNRLATIVNGSSDEKNLISDDQAREVADLIIDYKYGWHFIHTSNLDLAKDIKAVILKKEQTDTDQVTAIRKKLKKQSDSSVYIVSNAFDLATVMLEANLITIIRIVNLLVIPLCLVAVVSILREAFASHTKRAVVHDMTAGLMWTAFWFILVYGLLAMVPIFMDTSVITVADLGYWLEIASGVFLDFVIAGVILYVVSAIPWQATSR"]}}, {"location": "[152798:153449](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["anr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O85222"], "locus_tag": ["MAAAAKME_01630"], "product": ["Transcriptional activator protein Anr"], "transl_table": ["11"], "translation": ["MHQHDELNCISHVPFFKNLPLDLRQDLVHISTHQQFFKKGSLIHAPGDGRLSVMSLDSGRAKVYSLSPDGHEQVLSLMQEGDINGEENLFDTENDDLFIEALEDSTVCSINYFDFQDLLLKSPELSLYLLNEFGKRLVSAQKNAMRRNSLEAGPRLYASLKDYADEAGSATFTLPLKKKDLASLLGITPETLSREFSKLKKDGYIAAKGKQITILK"]}}, {"location": "[153486:154818](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKMRHKPVLLLLPAILLAVGPTAVQAAEFTPQEQAEVLRFQREYQALSKTVYPQQNIYASKPSLKNKFKAGSLKSSYINEQVAYINYYRDLFGLTAVKTSSQGNKNAQTTAAVMAAINANPFVNQHGLPNEKKPSYISKKNWLLAQDVSNSANLNFNASPQTAGDVVTDLLTDRYNLSGSDTGHRAWPLSTRLSKISVGAAYGTNGYRYSVNQVLNVGDSARTASREMVAYPNAGVFPLELLNGQNIAWSLYFSNKVVTSTPKITVTDDDTGKTVTASQVANYSEYGFGNFQTVITYYPSKLQLTAGHKYTVRAGNLATYSFKLFKQSSSQTYSSKVSSSSTQSKNKVSQKDLQNKGLAKYLYKVGKNISTVKSKKITNAKAVKTTSKTKKTSKKSSKKSSKKSAKKSSKKSRKKSSNKAKAKSKKTSKKAAKKSNKKSSKKK"]}}, {"location": "[154965:156054](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.4"], "codon_start": ["1"], "db_xref": ["COG:COG1181"], "gene": ["ddlA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A1F0"], "locus_tag": ["MAAAAKME_01650"], "product": ["D-alanine--D-alanine ligase A"], "transl_table": ["11"], "translation": ["MTKKTQVGLIFGGNSSEYEVSITSAGNIYKAIDKDKFDVHPIWITNSGYVASEADSYKVLEEPGYMVEKNDKTANLSNLIELASRPELDVLFPIVHGNLGEDGVLQGLFRLIDKPFVGVDVLAAAVTMDKEFTKILAQRAGVPVAKWVSIKRYEYEDAKNQKLSYDWVSGQLGTSNLFVKPSNQGSSVGITHVTDDSNYAEALAEAFKYDDKVLVEEGIVGTEVETAVLGNDHPVVSGVGQIINADNTWYSYENKYSTESTTTLQIPAQIPAETAEKVQENALKIYQITECSGMARVDSMLRESDGEVIFNELNALPGFTNISMYPKLFEEAGISYPDLITRLIRLAEERYAHKKTLLRKHD"]}}, {"location": "[156103:156379](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSEKSEQMKTSEAAQALGVSENTLRKYSQAVEKAASPAYFPRVKNTRRYRPEDLTVLKQMQDLVKAGQKIDQAAQELFAGEKEEAPVKTAR"]}}, {"location": "[156592:156739](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKSDQEVHKELLSRTQENAAKGAPTYRTLADMQLAPKKTPWWNKIFK"]}}, {"location": "[156870:157980](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METKKQSILAALVLLALGLGLAALTYFKTTGYKNPVAVITDTKIKDRLLKKETDIYGNKDEERRQYLHVQVLIGKYKGQTFETVNTYYPSQLVTQKYRAGERVFVTVTDGSLALVSPKRDWILVMTLAITLALMVAVVGRRSWHLIVSMAIIWILFYCLILWDVAVNGAGIIWMFSLADIVFSFFSLAIVQGVNKKMLVTWLATLLGVFVSFALCYAVIKLTGETYLNYEMGDYATQDTRGIFMAQALLGVLGAVMDEATDIVSSLYELIQHKPEITVKELLASGRTMGQEIMGPLINVLVLIFISEALPETILYFRDNNTIATTFNFTMSLGATQSAVSAIGIVLTIVFASLCSLLFLKKPQKGGKQE"]}}, {"location": "[158067:158772](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINSLLLVLVAMLISWGLSIPIITAIFVPLKLITIIFLGTHDYTVAKNSFYASLIVLSLVSVLILGIQYLAQAAGLGPEAGEILLGHSQMPGISYGQIAVTVAIFSALGAVAEAAVSMSSGILELKKAKPDITEEQLMKSGAAIGYDVLGTAMNTIIYGMFGSFLSLFLWYYRLHYSFSEVINDKLFVNEALIIMYSLLGVLLTVPLATFLLAKGMSRQSEAKNGNEKTRDQEL"]}}, {"location": "[158737:159532](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METKKLEIKNFNGRTYQLQTYTVKSSHAPLNKLRPLAIVVPGGSFTHLSVKEGEPVALAYVSRGFNACVVSYNLLQDEGMIYPDAGLDVLSTVNYYHERAAEYQIDPNKIMTIGFSAGGHIVSAANYLADEAEYQERYGYEGDQVRPNATILGYPLTDVHKVAFEIGGRADGALPPDPKLVDTALGVSPKTPPTFIFQSWNDPICLPTNAMAYEEALFKNKVKCEAHMFDIGYHGYSLATPELSTEDIFWQGNPHTARWFNLSL"]}}, {"location": "[159744:160002](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRVEAGRDLPDLSQVLPGHKRRRGRRDLRGIIKRLDYLQDLGIDAIWLYPVYKSPGVDNGYDIADYEAIDTPPVRDHGGHGRINQ"]}}, {"location": "[159982:160291](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.70"], "codon_start": ["1"], "db_xref": ["COG:COG0366"], "gene": ["dexB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99040"], "locus_tag": ["MAAAAKME_01720"], "product": ["Glucan 1,6-alpha-glucosidase"], "transl_table": ["11"], "translation": ["MEELISEAKKRGIRIVMDLVVNHTSDQHHWFIEARKNPSSPEHDYYVWADKANELKSAFSGSAWEYDGQVVQYYLHLFAKEQPDLNWKNPALRQKVYDLMNF"]}}, {"location": "[160339:160924](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1175"], "gene": ["malF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P02916"], "locus_tag": ["MAAAAKME_01730"], "product": ["Maltose/maltodextrin transport system permease protein MalF"], "transl_table": ["11"], "translation": ["MAYAVPQFVSLLLIAQFLDAQGPLNTLLQNWGWILGPLHFIDNEDAPWVARLTVIIVNMWIGIPVSMLVSMAIIQNLPQDQIEAARIDGANVFQIFHNITFPQILFVMGPSLIQQFIGNINNFNVIFLLTGGKPMNNDYNGAGSTDLLVNWLYNLTFGQQQRYNASAVLGILIFILSATISLIAYRHTTAFKEG"]}}, {"location": "[160926:161784](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3833"], "gene": ["malG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P68183"], "locus_tag": ["MAAAAKME_01740"], "product": ["Maltose/maltodextrin transport system permease protein MalG"], "transl_table": ["11"], "translation": ["MKSYSNQRKVSLFFRYLLLTILAILWLIPIFWIVLASFSYNDTGFISTFFPEKWTFQNYIGIFTNSQFPYLHWIINTLLVAIISATLSTFFQISVAYVLSRLRFRLRKPFLQIALVLGMFPGFMSMIALYYILKGLNMLNLGGLILVYVGGAGLGFYVAKGFFDTIPRSLDEAAELDGATKWQVFTKIGLPLSKPMIVYTALTTFMAPWVDFIFSGIILSTSGDPKTYTIAYGLYNMLSSSKGSATTYFAQFVAGCVITAIPITILFVIMQKFYVSGITAGADNG"]}}, {"location": "[161935:164941](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTADLQNSRHQLGRLVGVNKRENYYELHYATGEIARVYLIANGIFRYWLDPSQEFAETNDMLVKGIEPDPQCFARATAHATSDMFIITTGSCKLIFQQKTGSFSIFDESVHRPRMVQASALELSGKHSIEILKQGKNEYYYGGGVQNGHFSHKGEKITIKTDGITGADGVLAAVPFFWTNAGFAELRNTTATGHYDFGRQNSQLTILSHRTPVFDSYYIIGNSPQELLSSFYYLTGKPFMLPSYALSFGHIGNFLDGSWQEADGKGHEAVRFEDNRYYSRKTENSGRLPSLNGEQDYQFSARAMLDRYQRWGFPLSWIIPNYESQTAAKPDDFAAFASYAQSRNCHPGFWSEKGQPLAHHSEFAAVDDPSSDLTAVNSDLAKENPKAKPLTLVRDSLLPYQSQAALAFGDVSGDWSSIKTQISTLLGAGLSGLPFIGAAAGGKHGQENAQVAVRDLEWKTFTPLFFAIDDQSPLSKTPFAFNNKVSRIMKAYLGLREQLKPYLYALSRQAQDGLPLVRPLLMSFPHEQVGYGRDFADEFMLGDQLLVAPIVNGKSDNRGLSVRDRIYLPDKQTVWIDLFTGDRLMGGRVYNRRKYPLWQLPVFVRGGSIFDLGSRRFVLYPQGDATISTYSDNDQSDYKHNSAQTVIRTHVADSKLRVIIEPTTGYYPNMAIKEQTFLYIYCDQHPDEIQLRAGDEEVVTLTEYGTPETLQRAKEGFYYDNKFCWPEGFKDLGATPRPALIIKLQERDIKQEKLEILVNNFRFANEQLIHQITDAALPLPGKVEVDLDKISAHSLTVKWAQRTPSVQIELNGLLYTGISGNIFTFTDLAANTGYRLRLRYEAGYKVSEWSDLLQVKTKRDPRDFIISNVKVTSNQESASGHQLKNLLDRRMATDWQSTGKPSEDQPLTLTFSFPDQTELNKLIYVPRASSRDGRPLRMRVEISTDGENFTSYGTDYQFKSDCKNKVIGLRGGSAKAVRLSILETTGDYATASGIDFYRPLK"]}}, {"location": "[165537:166686](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1820"], "gene": ["agaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8XAC3"], "locus_tag": ["MAAAAKME_01760"], "product": ["N-acetylgalactosamine-6-phosphate deacetylase"], "transl_table": ["11"], "translation": ["MRYYIHADQFYLPNGREKGGYLEIVDGKFGAYLPEGSQVPDAVDYTGFSVAPGYVDTHIHGSVKEDVMKSDWEGINRLSEALLSAGVTSWLPTTVTASSEQLGEVCRMLAAHQGEESGAKIQGIHFEGPFFTEEHAGAENPKYMMDPSPAELDKWLEASKGMLKKISLAPERPGTPAFVSYAVSRGVKVALGHSSASYDQTKAAAQAGATIFTHTFNGMPDFSHNRPNIANAAMTLENMDNELIADGHHVTPSAIKALLAAKGKEHIVLITDCMEAGMMPDGDYMLGELPVYVKDGMARLKEGDNLAGSVLQLKDGVKNLVDWGLAGKEEAVLMASYNPARSQGLLDKCGAIRPGLPADFLILKDDMSLAKTYLNGEIRWEE"]}}, {"location": "[166756:167230](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.6"], "codon_start": ["1"], "gene": ["ntd_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9R5V5"], "locus_tag": ["MAAAAKME_01770"], "product": ["Nucleoside deoxyribosyltransferase"], "transl_table": ["11"], "translation": ["MPKKTIYFGAGWFTDRQNKAYKEAMEALKENPTVDLENSYVPLDNQYKGIRVDEHPEYLHDKVWATATYNNDLNGIKTNDVMLGVYIPDEEDVGLGMELGYALSQGKYVLLVIPDEDYGKPINLMSWGVSDNVIKMSQLKDFNFNKLRFDFYEGAVY"]}}, {"location": "[167403:167883](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEELLKAESCFVLRAEDRADMFAQVYKKLLEQGLVAAGFLDQVVDREEDFPTGLASCNLAPDLPNLAFPHTEGCFVKEQRVVPIKLLAPVSFKSMVDPSRELPVGFCFMLLDQKADGQAELLARTMTFLSQAEPAALSRIFAQTDPAGLYSALREEGF"]}}, {"location": "[167892:168690](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSLKQQLLDVKGGRNFRELGGYQTVSGKKIKMHKLIRSGHLADLLKEDQEYLRRYGLKYDIDLRTSFERNKQPDRKISGVEYFADPVFDEDLTNSTMSISDMARESQDPGWGYQRMLWAYKNMATGKNANKAYQHLFEVLLANEKDSESVLFHCTAGKDRTGFGAILILTALGVPMKTIEKDYLFTNEVIKDFVSQLLAKEKAAGADDSLLATFRDLQTVQPAYFKYLLDVINRDYGSINAYLHQQIGLSNADLLDLRTIYLEK"]}}, {"location": "[168886:169360](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A551"], "locus_tag": ["MAAAAKME_01800"], "product": ["Putative universal stress protein"], "transl_table": ["11"], "translation": ["MTEEKIKILVPVDGSESAERAFDKAVKIAANNGYHADFLNVIDTRQFMGEMQDTLISGDTIYQMTQDSEEYLKSLKQWAHDNLAFDDIDYHIRYGSPKRIISYDFVKDHGNNLIVMGATGLNAVERMLMGSVTEYVNQHAMADVLIVRTDVNNMPAK"]}}, {"location": "[169778:170720](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3221"], "gene": ["phnD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QQ71"], "locus_tag": ["MAAAAKME_01810"], "product": ["Phosphate-import protein PhnD"], "transl_table": ["11"], "translation": ["MKKFKKALFGALTVAAAVLATACSSSKSSSSSKGYTPSKSHPLTIQFVPSQAAPTLEAKAKPLEKILSKKLGVPVKISMSTDYNTVVEAMKSKKVDVGFLPPDGYVMAHKEKAADVLLQALRYGIKQPGGKETNKLVKAYRSEILVKKGSKIKSWKDLKGKKIAVQNATSSAGYIFPIAELKEKGLDLTKKGNANLVTVTGHDQAVLDVLNGDVDAAFTFEDARNTVLADQPNIMKKVVPIYFTKSIPNDTISVRSDMSSSFRKKLSKAFESLRKDKKSLKIIESIYRHEGYTPSKDSDFNIVRKYDKMAATK"]}}, {"location": "[170837:171608](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1135"], "gene": ["metN_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q87RS1"], "locus_tag": ["MAAAAKME_01820"], "product": ["Methionine import ATP-binding protein MetN"], "transl_table": ["11"], "translation": ["MADQPMIEMKNVTKVYDNGTVGLKNINLKINKGEFVVIVGLSGAGKSTLLRAINRLHDISEGDILIAGESITKTKGKNLRLMRRKIGMIFQSFNLVKRSSVLRNVSAGRLAYYPTWKTTFNLFTDEDKQRAYEALQSVGMAEKVYSRADELSGGQQQRVAIARVLTQRPEIILADEPTASLDPKTSRQVMEDLKMLNEKFDMTVVANLHSIELAKEFGHRVIGVRAGEIVYDGKMEDTPQSVFDNIYNGGKGKEED"]}}, {"location": "[171610:172411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSATDRDMLKLPKKKFKMWNWVWVILMVLGLVLSVNNTQTSLPEFFANFDQFAEIFVQMAQPDWSYAGTAIPYLVETIKMAIISTVIGSLLAFVYSLLIARNIVHNRAITGVLRFIMNIIRTIPDLLLASIFVAVVGIGPVAGILALTVFTFGVVVKLLYEAIETIDPGPSEAIKAVGGNGMNNIMFAVMPQILPYFISYALYAFEINVRASTILGYIGAGGIGLQLKNTLDMFNYNQTGMIILVVFLVVLVIDFVSTKAREALMR"]}}, {"location": "[172410:173223](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3639"], "gene": ["phnE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QQ68"], "locus_tag": ["MAAAAKME_01840"], "product": ["Phosphate-import permease protein PhnE"], "transl_table": ["11"], "translation": ["MDTTMKKLPPKPVTTKSRAIKWGGWIISIAIIIWSCTGINFGGIKPTAVQITGAIFNGLFHPDWSYVYNGSGEDLVSQLWQTLCIAFLGTFISAIISVPFAFWAANTRHKKFWVSESGKIVLTFIRSFPEIVLALMFIKAVGPGAPAGALALGLHSVGMLAMLFSEAIESLDDGPAEAITAAGGSKFNVAVFATMPDLMPAIVSNTLYRFDVSVRSASVLGLVGAGGIGYPLIIALNYRQWSRVGIILLGIIVMVVVIDWISGAIRKKLV"]}}, {"location": "[173476:175102](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_01850"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MRSKKLLASSTVILASAATLAACGSNSSQSSAKKQPLTWMNTAEIATLDASKATDQASVEQINNVEEGLYLLGKNAKVQNALATSTKNSADSKTWTFTLRKNAKWSNGDPVTAQDFVYSWRRTIDPKTASEYAYLFSGIKNADAIVAGKKKPATLGIKADGKYKLTVTLEKRIPYFKLLMAFPLFFPQNQKFIEKMGSKYATASKYMIYNGPYKQVGWTGSNLSWKLVKNGKYWDKKNVKLDTVKFSVQKTPATDYNLYQSGKLDAAFLDAQATKSLKGKTGYTQRKMSTTQYLAYNLKKHPEFKNKNLRLAISMAINRKELASTLGGAATPATTFDPEGMTTVNGKDYTDTVKNAATEKAATYNVKEAKKLYKQALKETGKKKISFTLLGDDDDTAKKASEFVQSQLEDNLGIDVQVQSIPKKTRMNKMMSGNFDVVSTRWNADFADPISFLDLQTTGASYNYGKWSNKTYDKYVAASKTTGSTSTRFKELAKAEQILLEEQGVTPLYHPVEAWMVKPSVKGVIYNGAGANYSFKYAYLK"]}}, {"location": "[175349:175835](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKLTTMELADELAEAQDKILNGEAKLDTGRVYQAIDDLGVLNDPISNYFDRTEDEYYETESDHYLALTNLTGKLGDLHDRVLINHVDGFVDKDEINLTYNHENAYVEDNYVPRTDLHVLVYGLKVIGAVEAIAAADLRNVLSKDAVLSLGLAAHALAENL"]}}, {"location": "[175892:177293](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.53"], "codon_start": ["1"], "gene": ["cpdA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00905"], "locus_tag": ["MAAAAKME_01870"], "product": ["3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA"], "transl_table": ["11"], "translation": ["MDLFKYTKGIIDKAVGAFKLHAVQKNAGELLDPMQKYLTVGEYHVDARDATPDGRPFTLTVYQDDQGILHQALSPESTDSLAAEYDRKFVPELNRFKAFRNRETGRRYVVEDYLARFVSDVKKEIREGDDSVNIGVITDTHFKNVDSLDFYGWNGLMHVKEFSYLDQLDILDLKCHLGDWIDGSDAGLISESELMKLRDSFKSSKVPYLMIKGNHDENDKFDEHHDLKASFPEREFEKIMWPEMYRQRELGYVSRQHGVAWFDQGHVRVISLNTSDIPYILDEKGQKKYDVKLTLGVREDQVQELIEILQQSSGKQVILLSHANPINRKGGNALKYNGRSLHELLVAFNQKEKGRMHSSKDVPAEFRLSNDFDFTKVKDARIIAYFCGHRHVEDQYRINGIQYVLFNCSALMGPNHQLTTKYNKNLNRKMDHQNEFAGYVVNVDLFRRRIKVFGYGAATRRRIFFI"]}}, {"location": "[177389:179339](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG0367"], "gene": ["asnB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54420"], "locus_tag": ["MAAAAKME_01880"], "product": ["Asparagine synthetase [glutamine-hydrolyzing] 1"], "transl_table": ["11"], "translation": ["MCGIVAFYDPEINDKQAAIGKMMATIQHRGPNSDGMYTNDKVALGFRRLSIIDLRGGSQPIYNEDRSRAIIFNGEIYNFKPLREELIKAGHTFSTKADTEVILHGYEEWGMDGILKRVRGMFAFIIWDDNTQTMYGARDFFGIKPMYYQDVDGHLLVGSELKSFLAFPHFKKELNTEAVKPYLMNQYNDLKETFFKGVYRFQPGHWFEYKDGKMKTHQYWDAEYKDNNLSFEETVKKINEDLKETVDLYRNADVKVGAFLSEGVDSSFLTALLDPDEVFSIGFDDNTYDEASKAKALADINGWHFYADKVYSEEAMRDFPEMQYHMDEPDANPSIIPLWYLCKLARKHVTVALSGEGADELFAGYVNYGMHTHNNVIKVFTDKLKKLPKGKRVKLAHKIKKMPNFPGKVHLYTNLAEPSEFYVGQSVIYDMDYPTIFTSKDANAVLQPSYRNKLTVNGNYQEDFKKVKDLDNVKQMQYIDLHHFMLNDIEQKADKISMAHSLELRVPYLDVKIAKLANSIPSKYLVNKYDTKYALRKASEQVLPDEWAKRPKLGFPTPIKQWLQEERFYKQVRDLFSEDFVNDIFEQKKILDLLDENYNGDGSHRRQIWVIYTFLVWYKLFFVDYEETVRKYQRVQPEVASLIAQGKLL"]}}, {"location": "[179372:180632](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.12"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:H8L902"], "locus_tag": ["MAAAAKME_01890"], "product": ["D-aspartate ligase"], "transl_table": ["11"], "translation": ["MAKFTPILLGSDINVYGMARSFNEAYGIKVQAWAATQLAATRYSKIVDVEVHPGFSEDPGFMEVMQKKIKEYQNHEEPVILIACGDGYAELLAKHKQELEGTFVVPYIDYQLLEKLISKEGFYEVCEEYGLPYPKTKIIKLADYHDGSYADVPFAFPVALKPEDPVSWLDVQFEGRKKAFVIKDLAEFKDIVGKIYTNGYKEDLILQDFIPGDDSNMRVLNAYVDKNHQVKMMCLGHPLLEDPTPQSIGNYMAILPAYDEKLYETVQTFLEKINYVGMANFDIKYDARDGQYKFFEINLRQGRSSFYVTLNGYNLAKWYVDDYAEDSLAGQETVYANKLESSHMLWLGVPEKIFKEYAVDNEAKQAALKLIDAGQVGTTVFYDQDSSFKRWLLMKYMFHNYYKRFKTYFQVNKGQYFDK"]}}, {"location": "[180997:183208](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.98.6"], "codon_start": ["1"], "db_xref": ["COG:COG1328"], "gene": ["nrdD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P28903"], "locus_tag": ["MAAAAKME_01900"], "product": ["Anaerobic ribonucleoside-triphosphate reductase"], "transl_table": ["11"], "translation": ["MLKPAAETVSLNFANAPKKFIKRDGAPFKFEQFKLEMVLDELGLEDSEIKAAVLSKVYAKLATYTVDAVQVHAAFRASLNELGYLNEAKEYEAKRREDEADWRAETDTKQRLAKLVDKDPSIVHENANKDSDVFATQRDLTAGTVGKTVGLTLMPQHIAKAHLRGDIHWHDLDYTPLSPMSNCCLIDFDYMLNHGFKIGNAFVEVPNSIRVATSQVAQIITSVASSQYGGCSFDRCDEVLAPFAEKDYKKHLEEGREFIDDEDKVKAFAKKRTQKDIYDAMQSLEYEINTMFSSQGQTPFTTLGFGLGTNWIEREIQKDILQVRIEGLGREHRTAIFPKLVFSLKKGFNLHPGDPNYDIKKLALECATKRMYPDVLSYDKIIDITGSFKAPMGCRSFLQGWKDEQGREVNSGRMNLGVVTLNLPRIAMESQGDMDRFWEIFNDRLELGRQACEYKAKRVTEAKPVNAPTLYEYGAFGQGVGDDGDVNDFFKNGRATVSLGYIGLYEVGTVFYGPDWEKDPEAKAFTLEVVKKMHDACAKWEKEDPNHYHYSVYSTPSESLTDRFCRLDTEKFGKVKDITDKEYYTNSFHYDVRKHPTPFEKLDFEKDYPYYAAGGFIHYCEYPNLKQNPAALEAVWDWAYDRVGYLGTNTPIDKCYECGFAGEFKSTAKGFECPQCGNHNPETCDCVKRTCGYLGNPLKRPMVHGRHEEIVHRAKHMSLGMVSEEASLEKQKNSQY"]}}, {"location": "[183279:184002](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01910"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPEKDKNQQEGPDVRDNLIRISVGGETVFVDANQYKAKNAGQTAKPRKMKRQPKNPKPGEWISEDYSKHKIADYKPFNFVDGEGVRCSLYVSGCLFDCPGCYNLAAQNFNYGRPYTQELEDQIIADIGQSYVQGLTLLGGEPFLNTWVCNRIIDRVRAEYGHSKDIWSWSGYTWEELLRETPDKVEMLKKLDILVDGRFMDNLKDLTLQFRGSSNQRIIDVQKSLKTPDLHPVIWDKLQR"]}}, {"location": "[184099:184267](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sufT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H2XI17"], "locus_tag": ["MAAAAKME_01920"], "product": ["Fe-S protein maturation auxiliary factor SufT"], "transl_table": ["11"], "translation": ["MWSTLGLIYGVYIDDEGNCLVTMTLTTAGCPLNDYLNREIRQAVSQLAAIRGRTV"]}}, {"location": "[184370:184814](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEVEQAEEKARPALTDSFIEFAEGSLSYEQLSAVLDLLPLDLIFVDKDDVIRYFGGSCGFYPHSKNDLSMNLFSIHMPKSVSKVKAIVDDLRSGRKDKHAFWFEVRGRFVYIQYLAVRNKAGEYLGVLEVLQDITDLRALQGKKKEL"]}}, {"location": "[184913:186134](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mdtH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01529"], "locus_tag": ["MAAAAKME_01940"], "product": ["Multidrug resistance protein MdtH"], "transl_table": ["11"], "translation": ["MKTKHGQSQLPEIALPWLVVAQLATWIGASFIWPLTSVYLNKRLGISLSVIGIVLFCNCAANMLGSTISGRLFDRLNPYPLITGGMLLNALVLLAMAFFHGWPVYWVWLVCMGFLGGWNGALVNSIATSLRKYPGRYVFNILYFSQNLGVVIGTLIVGYLYDYSIELLFIIASCLFLIGTLVAFCKFKPIVAYHARRQEQKKTGQTPLKAEKMPKANFWMTMGFFITLGVTWLMYMNWESNLSVYMVSLGIPFHLYSTLWTINAGIIVVVQLILARFPRIFKSIYLQIYFGIFMFAVSWLTLIFAKTYPGFVLSMSILTLGESTAFSAIPAYVNDMSPYSSKGKYQGMTLVASGVGRAFGPLFGGTLIDLFGYEIMFVVASCGILLCLLALLPLRAKLKDQVQFFK"]}}, {"location": "[186221:186560](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLKVYGTKICPDCIACEASFKKYGIGYEFVNIFATMPDFKEFLRLRDASPAFAHAKEQGSAGIPACVKEDGEIFTDWEGFLKDQGLEPIWPEAADQAKAEIAAQCDLRQHNC"]}}, {"location": "[186584:188537](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG3590"], "gene": ["pepO_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q07744"], "locus_tag": ["MAAAAKME_01960"], "product": ["Neutral endopeptidase"], "transl_table": ["11"], "translation": ["MNNKFAVRGGSGDTTVVDKTARPQDNLYLAVNSDYLDQLEIPADRSRMGSFDQIAENVEKTLMADFAAFASGEKEVPALPNLAKAVELYKLAKDFDKRNADGAEPIQADLKKLEGLNSWNDLQGAAAALAKEGFDLPFSFSVDADMKNTKVNTVYFGGPHIFLPDTTTYESPDSEKLLGVLKEQTLKLFQMAGVSEEKAAEYVDGALAYDQRLAKVVKSSEEWADYPAMYNPISLADFKSKFTSFDMGQFLAGFLGEEPEVLINTEPRYLDQAEGLLNEASFSEIKGWMLVKFINDVASSLSQEFREAAFPFSQALTGQPQLASGIKQAYRIANSTFSEVVGIYYGQTYFGAAAKEDVLGMIKRMLKVYEDRLAKNDWLSQATKEKAITKLQALILKVGYPDKIEDIYNRLQVTPAEEGGSLYSNLQAASQESIKYSLEKLHQPVDRTVWMMPGNLVNACYDPQRNDITFPAAILQAPFYSADQSRAANYGGIGAVIAHEVSHAFDNNGAQFDEFGNMKNWWTEADYKEFADRTKAEIALFDGLKFGPTTLNGKQIVSENIADQGGLAAAMTACKEEGQGLEDFYANWARVWAQKSLEAAIKMIVSVDVHAPGPLRANVQAQCQDEFYETFDVKPGDGMYLAPEDRVKIW"]}}, {"location": "[188853:190884](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["kup"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01522"], "locus_tag": ["MAAAAKME_01970"], "product": ["Low affinity potassium transport system protein kup"], "transl_table": ["11"], "translation": ["MEVENKLNRMTAAGLLIAIGIVYGDIGTSPLYVMKSVIAGNGGINTVGRDLIIGTISLILWTVTLLTTVQTVIIALRATNHGEGGIFALYALIRKKAAWLVWPALIGGAAILADGTLTPAVTVTTAIEGLKGLEFGKGNVPVSNQTTVLVITIVILLVLFSIQRMGTRIIGKAFGPIMLVWFAFLGVMGLINIGGNWWILQALNPYYAIKLLFSPYNKAGFAILGSIFLATTGAEALYSDVGHVGKGNIIGSWPFVFVCLSLNYFGQGVWILNNTNMHSATEINPFYAMIPENIRLASIVLATLAAIIASQALITGSFTLVAESINLKFLPRMNILYPSDERGQIYIPAVNKMLGITTIALVLFFRTSAHMEAAYGLSITISMLTTTILLYEWLVLKQGHNLANLLFVIFFSTINILFMGSSLSKFTHGGYVSLLITLLIASVMVVWYFGNKVRDQNGAGNAYVRLDEYTDMLTNLSHDDNYPTYSDNLVYMANVKYNKFIKREILYSILDKRPKRARAYWFVTVNVTNEPFTAEYAVNTFGTKNVINIQLYLGFKKQTSVNVYLRQIVHDLIKDNTIEAQPQEYTTTPGRDVGDFKFVIVNDVISPSTTLSSYKKWLVKARVQLQNLSLNPAQWFGLEFADMVIERVPLILGKQEHERIKRVAPVDYSKTSLNKK"]}}, {"location": "[191051:191468](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_01980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEEEEKKIRSNEDMFKIVMPEPERVTMPAREVADQPAYLVNFANFYVSSFERDDLEIISEFDEDHNMVNINHYLLLNQPFSRKNLVKHVLIDHAHNFQAILDKMTAETGVDPEAMTTYEDWSNWYEGVRAKIKSSLS"]}}, {"location": "[191584:192532](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mapZ"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01941"], "locus_tag": ["MAAAAKME_01990"], "product": ["Mid-cell-anchored protein Z"], "transl_table": ["11"], "translation": ["MKKSTIWSIVVVAVLALGGAGAYFYSSQQKQSQEQTVSSSYSSHMQAGKEAVKAKKYSQAADEFDQAYQAKATAQAKNYQAQAENLADSVKLAKTTVKYASALNLAQKAQEQNGGYSVMTSQAKKLVKQLKAVKDNYDSEIKPLLNKAAKAMEDGYYDSAASTYSSILDLPYINGAYYAKVRSNVKDLLKEAKSKQEDSSSSSESSSSSSSDSSSKSSSKESSSSSSSDASSSASSSSNQAEGSGTSYNDKVGGSTVTSRDVQQIRTQLDNLGESTAGWSPQDLINLFNYAYQQGHTTIDSITKDDVEGYLKSGK"]}}, {"location": "[192745:192955](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNFTLADQSIQYTFKAEKYDKGQMQRSLQNVKLDASPESLVKVGQAISKLQGDELAALTLVQKHNLTLA"]}}, {"location": "[193014:193251](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTTTELQLTFKSSAGKKKSLNLPYAVKGLSADVVREAAAAIAGEGVFVKEGEVLYAEPLAANYIERTVTGVFDDSNH"]}}, {"location": "[193518:194724](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRRFLTGLATAAMLTSVAVPVTNNMFLSNQAVEASATSDAFLSKVSLQAQKTSKKYGVYASLMLAQAALESGWGTSTLSTQANNFFGMKATGWTGATYSVKTAEQTSSGKTYYITAAFRKYSSYQASFDDYGLKMRTTLGNYGSLCYSKTWLENASSASAAAKAIKAAGYATDTNYATKLISHIGTYNLTKYDPVYSGTNYTAKVAKSGATYLYPTDHSVSPKKSYVTAGQTVTVTKTYTYYNGKKRMYLKGLGWINGESLNTGSSQAPSAADNAASVSGQMKVLMHSAAIYTSTGAKSTAKSVKAGKSVTTYGSVTINGAKYYRVNSASADQFIKASNFDGTSRKLKRNAYIYNNAGKRVGKTKWLKGSTHTVYGGSVKIKGKQYCIVGLNQYVKKANF"]}}, {"location": "[194744:196355](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRFNKILTAAAVASLGLTFVFSQGKAAEASINSEAKTKTYSGTKSLETLLKAVGLTYNQFNSVANGNKYGSRFGYRNGVGKPEGVVVHETATPGATAWDEGRYFNNNWMAAYTYVHAVVDNNQTIQLMSPDYGVWGAGPIANVRYIQVELCEVSTRSQFVQSVANDAYYIASLLHSYNLTPSRASQDGSGTIWSHNEVSHYLGGTDHGDPDGYFAKWGYSMSDFYSLISYFYNKQGASTGTNTGSTNTGSGSNTGNTNTGSNTSSSTASSGQAPATQPVTTKKLRLMWNAYSYDASGKKLAVKALKAGQYLKVYGSAVTIGSSKYYKYADGKYVKAGNIDGTSRTLTGNAWTYTISGSREWSTTKLLKGSKVTTYGSQVNIKGKAYYMTGFTSNNVAKYVKASNFQVKTVETTTTKRLMRNSYSYSAAGKKLPDSMLKAGQYLKVYGSAVTIRKAKYYKYANGKYVNAGNIDGTSRPLKHNAYVYTVKGTRNWSEAKRLKGSTVTTYGSRVKLAGKYYYMVGFSGQTALYIKAGNF"]}}, {"location": "[196465:198304](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0475"], "gene": ["kefC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P03819"], "locus_tag": ["MAAAAKME_02040"], "product": ["Glutathione-regulated potassium-efflux system protein KefC"], "transl_table": ["11"], "translation": ["MEGLSLFLTVFLALVIPIVMARLRVTTVPTAVAEIIVGILMGKSCLNLITQTSQLTFLSDLGVIVLMFLSGMEIDFDLLSPKKHTRARKSESGKQVKPMVVAAFAFGGVAVASVLLALGMKALGLFSDVALASIIFMTVALGVVIATLKEKEILGRPIGQTILLTAVMGEVIPLLLLTIYSTVNGGDARKLWLIILLFVAAIILLRRFKRPYLWFAKVTKATTQLDVRLAFFLTFALVTVAEQVGAENILGAFLAGMVMKLLEPTQATKDKLTSIGYGFFIPIFFIRTGVNLNLKLLFANPQALMLLPVLVICFFLAKLPVTLTYMRAFNKRNAFAGGFLTATTITIVLPTLQVARKLNAITATQSSAFILAAVIVCIACPIVFNSTFALTPEDKIKEKVVIFGLNAVTMTVYQDLHDSWYSVQVLTCRKEKYDTYKSKVKNLKLLPDRKLDTLESAGAFDTDIFVATFIDDQANLEVGRAAKQAGVKRVIVSQGKIVADTVDQLREEGIELFAFNNLHGAMLRALIESPAVYRIITDTNNALYDVVVRNSAYTGRQLMDWDFVDQITVSRIRRGDKWISPHGSTVIEPGDELIYSGPWREADRIHQLLSRE"]}}, {"location": "[198374:199004](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.371"], "codon_start": ["1"], "db_xref": ["COG:COG0673"], "gene": ["iolU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05265"], "locus_tag": ["MAAAAKME_02050"], "product": ["scyllo-inositol 2-dehydrogenase (NADP(+)) IolU"], "transl_table": ["11"], "translation": ["MLKDDQVDTVYVATPSSMHYQMCLDSLAAGKNVICEKPFVFTTEEALELKQLADQKGCLITEAITNRYLPAFKSLASDLQLLGPVHVVSLNYTQYSSRYDRFLAGDISPAFNPRLGGGALLDLNVYNIHLAVSLFGAPLDVHYFPNLQKGVDTSGVLVLAYDDKQASLTAAIGLPGLCPQPACHRRPGSSQGLHALRKKQKKQNRKIKN"]}}, {"location": "[199220:199970](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSKKKKIHLLTLLALASLFLTACAKPSPQSLVKKAQQSKIANFQLKTDEHYYTGNKPVRFYGQINYQRSPFVMQADLTQSGDQNVKMWVGQRYAYVKYYKDQQEAWYKAKLNQFTTISHFQQLVKDMDTLTLSQKSAKLFSVSRTKNGWRLNYTGKSQRLWQEITETNGLASLSSDSQIAKAKLQQIKMTIDFSQKKQLTGLAIYAKYKVKGQTSSTKLSMLKVNQQKKLAIPKTVSKNSVDVSRLNK"]}}, {"location": "[200133:200823](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "gene": ["gpmA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XB88"], "locus_tag": ["MAAAAKME_02070"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MSKLVLIRHGQSEWNLSNQFTGWVDVNLSDKGVEEAKKAGRLIKEAGLEFDQAYTSVLTRAIKTLHFALEESGQLWVPETKSWRLNERHYGALQGLNKAETAEKYGDEQVHIWRRSYDVLPPVLADDSEFSQANDRRYANLDPHIVPKAENLKVTLDRVMPFWEDHIAPDLLAGKNVIIAAHGNSLRALTKYIENISDEDIMDVEMKTGEPVVYTFDDKLNVVSKEKLD"]}}, {"location": "[201074:202364](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_02080"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MKKEDKLGIPETRQHARKRKQKQIRNWIIGILAVVCAIAAGVGLYAAHLYKTAEQAANKAYDSENAVKTTYGEFNGKKPFAVMLLGTDTGALDRTEKRGNTDTIIVVVVNPKKKNYTMISIPRDTMADMVGDDSNDVQKINAAYSIGGAKMAMKTVSNLLNIPVKYYALVNMGGLMKLVDYVGGIYVTPPLTFTYSGFPFKKRVRQHLNGQAALAYSRMRYDDPQGDYGRQKRQREVITKLVQKLATADSLTNFSKIANNLSSNVKTNLSFQALKSILANYSDCTSSSDSDYLHGYSTYVNDAAYQIAPTSELQRISNKIRKLLGLKTATVSNRETELNTLNETAGFKFGSGETQNYTIYDPGTTADSVKSGKKSSKSSSKSSSQASSSSSSSTDYSGNTAYSGSTNYDTTYSYSYNYNYNINPFSGGY"]}}, {"location": "[202366:202984](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.275"], "codon_start": ["1"], "gene": ["plsY_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01043"], "locus_tag": ["MAAAAKME_02090"], "product": ["Glycerol-3-phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MLSKFLAVIIGYLFGNFISAMFVGKYYLHKDPTKYGSCNPGTANMGAVFGKKAGILTCIGDLLKTLLAICLVYAIYHQHLLTAYTVLGVVLGHCFPVFNHFKGGKAVAVTAMVTVLYDWRAGLITLLIALVLTAIMQNLTIPPLVFMLSFSIYQLTKSLEPGLAFLIMTAVMAFKFRYDIRDFFTGHGKRVDILYTIKKKLGILK"]}}, {"location": "[203023:206056](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLQKKRIIPILMSEQTQSRKIHNLLKYGFLLLAALVLLLQMFNFKSSMLKSSITYLRHLPLIVESATYWFIPMVFGAVYSKRKLRFNEGFRAWAIMEVTLLAYYLAFFISKPWHLNAWRFWGILFPILTSISVLMTGLVFGLLVQPVIYDWQEKFSKKQSLIILIALTLLGFTLSAGTFEMNYSIYGLYLALPFAWGMFLGKADFSVKQTVIFIVAGILSLGLVIVGVAGFNAVYWSQIMSWRANPSSWNYQFLLNVTSPFIFIIALAAFTFARPAIKALEAKDLDFLVLLIIFMQAPDANSFMSSFKYGTGSRQLNRMITILIMLVIAIAWHWLIERYLWRFKPVKRINRFLYESKSFGAAAEEAFNRLWGWMKYHRINLLTWTFFFILSFASFLVESDNIRIQITTASNVNAVVWLVGTKLGALILTTIFIDAFFTILYFVTTRYWVSLITTSTVVIAWAVANKIKLDLRGEPIYPSELSEVTNADSLLSMIGGQKTLSMILLALAAVIALMVFCEVKFKVKKRGNWKQRGMWALASLALFMTPKWFNHQGSAIYRLNRAFDNKQSFRNPERDIQVNGPILNFLNYIDLQIMDKPSNYSKSQIQKLYEKYQKVADQINKTRTNDLSKQTVIFNLSESFIDPYTFPTIKFAKGTKDPISYIHSLKKTTTYGSMLSAGYGGGTANMEWESLTGFNMGSFSTTLTPYVQVVPQYQYYPTIGANSNYSSAVHPFIGTYYSRIEDYKRFKFNKFVYLGSKYKIVEQKKLGTSSYNSDFTTYANGLRQINSRKGGQFINLISIQNHMPYNNWYPKNYYAGKISGDLFDDGSIRTQVATYIMGTHYTDQAVKKFIKQIDKIKKPITLVFYGDHYPSIVSQSYTSKYPVQMHSTRYFIYSNKYARQHGAKAKLTSKTNYVNTSDFIAMMLEQTNSKVTAYQALLTEVHKKLPALTISYSDDTGFTLVDQKGKEVDPKTLTNSQQALLKDYEMIQYDMTAGSAYALKIKGFYTMKK"]}}, {"location": "[206134:206443](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "gene": ["wecH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01949"], "locus_tag": ["MAAAAKME_02110"], "product": ["O-acetyltransferase WecH"], "transl_table": ["11"], "translation": ["MAHKQRVAYLVAYLDYLRLVAILGVITIHVATSLNFYRQDYASLNWQILNFWDGLSRFCVPFFIMISGAIFLNPDFDLSWEKLFNLNFPLTKVGLYLENSIV"]}}, {"location": "[206528:206837](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKMARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKPGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[207194:207770](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_02130"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFDTWFSNPHQIVQIRQRGLNVIAMVKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGGPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKLGTEYHGLSYDALTAHTAFVFLRYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[208269:209118](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTVLYRRWLSWLLNGIWRSSQAFQASAKTLL"]}}, {"location": "[209370:209568](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_02150"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMVDELADIAFNYSLQTLVEAMFESVKEIFQPTEEQMGRFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[209607:209757](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEITLNQLYDIMYYHLDPNGWWPGRSDWEVIWSTVLIQNLNFPHQKEL"]}}, {"location": "[210197:210548](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.2.25"], "codon_start": ["1"], "db_xref": ["COG:COG1539"], "gene": ["folB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P56740"], "locus_tag": ["MAAAAKME_02170"], "product": ["Dihydroneopterin aldolase"], "transl_table": ["11"], "translation": ["MYTIRVQNMQFHGHIGVLPEEKKVGQTLQVDLEVVINAVPVADQLASTVSYGDFYPIVEKIIDENHVNLVETLAQKILTAIKQLDSRIQTVTVRIRKLNLPVDGVFNNVEIEMKQS"]}}, {"location": "[210544:211618](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.16"], "codon_start": ["1"], "gene": ["folE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00223"], "locus_tag": ["MAAAAKME_02180"], "product": ["GTP cyclohydrolase 1"], "transl_table": ["11"], "translation": ["MMENVILSLGSNIGNREAYINKAVALLGNDPAILIDKASSFYETSPVGNVNQRAFINIALKIATTDSPEDLLTKIHQIELHLHRTRDVHWGPRTLDVDIIFWGDQKIKTESLIIPHPEAFNRLFVLVPTLGIVTPEFPFYNQIKAQIQKLQKADQTIQLVQKQTQSKQVVESAIRQILNAIGDDPDRPGLVETPDRVARMYNEIFSSEGLDNFEDYKLFNTKETDNSKMVMVKNITFYSMCEHHMMPFWGKAHIAYVPDHGKIIGLSKIPRLVDFVSHKLGLQEKLTDDIVAQMNRILAPKGVAVIVDSRHMCVEMRGVKKADSLTRTIRFSGVFETDQALRMAFLNSIGDVNGKTI"]}}, {"location": "[211601:212939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.17"], "codon_start": ["1"], "gene": ["fpgS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15925"], "locus_tag": ["MAAAAKME_02190"], "product": ["Folylpolyglutamate synthase"], "transl_table": ["11"], "translation": ["MGKQSELNAAEFPTFLYDQGDRIGLLKRILKALGSPDQKFKIIHICGTNGKGSTAMMITAILKQMGHRVGLFTSPYIGEIYNGIQIDFKNIPSRIFEEKISVIKKLLRTAAFANVKVSEFEAQFLISMLYFAEQRVDYVVLECGLGGELDATNAVATTMYSIFTKISLDHVGILGNNITEIATTKSKIIRHHNVTITAQNQSLEALKVLENEAVSKQAVFLNADRVTITTSQQSKRSKQVHYRALLEHSEQSGTFRFGLAGTYQLENLATVLTWFFDFVKRTSFQQRLDDILAHSLAELVVPGRFETVQQKPKIVLDGGHNPDGISAFVETVQKLYPNAPKLIVNGFLKDKSYEIAVQKLLTLKNSSFIITQPENQQRELSPVKLADVYQKYTNRQFPEFTSPVKAIKQAIMTASPTTVILVVGSFYLLNPIRTYLLSRSEHNGN"]}}, {"location": "[212928:214020](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEIKKINNRQQTFSGNVTISFNANTEELPKLINLLADQTANLSISSSLVIATFTQTELAAVIKSWPEVFGAENGTLQQIQAASQIHFKGRGFDFDITTKPIIYSILNLTPDSFYDGGRNASVDGVLKRIEADLAAGTAIFEVGGKSSKPHFDDISAEEEWGRIKPFLDAIHKRFPNIVLAIDSNTNAVIEEALKNGIQIINDIDGFNSQAKLNLVAKYKPAVVTMFNGRNFNEQTETLSKTMMDFFTHTISDLTGVGLEKENIVIDPGVGFSDHNTLAFDLIKMKLTKLMAEFQTPIMIAISRKSFAKRLFNLESADDRLIPTLLFEAFMTVLGGRVIRVHDAKETRQLIDAFELLKDQLLLK"]}}, {"location": "[214031:214568](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPQDPYLSVLIKAIDQLAELPVSWLPDKKLVQIKGILTDQQPAELRNRKSKVHLSASAMVFSKNAGFFIRHPYLRTTLLPAGHVEPGELPINCAVREFHEETGYQVKPESGQLIDVNLIAIPANPVKGESAHQHVDFRFHFLIEPGTRSNPELPVSLLTQAQAPTEFAKYFALIKSGD"]}}, {"location": "[215391:216051](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEQ6"], "locus_tag": ["MAAAAKME_02220"], "product": ["Glutamine transport system permease protein GlnP"], "transl_table": ["11"], "translation": ["MNWSIIQQALPLFAHAFGITIWLSLIGIIGSIIVGIIASLTQYFKIPVISQIMTAYVELARNTPLLIQLFFLYYAFPVIGIKMSAEVCGIIGLIFLGGAYMAEGFTGGFNGISTSQINSGKALGMSRFQLARYVVFPQGFALSLPALTANIIFLIKETSIFSVIAIPELTNTALDLIGMYYRSNEYLLMLVIAYAIILIPVILLLTWLERRVRYGAFGN"]}}, {"location": "[216031:216706](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEQ6"], "locus_tag": ["MAAAAKME_02230"], "product": ["Glutamine transport system permease protein GlnP"], "transl_table": ["11"], "translation": ["MVHSGINVLFEGSNFARLMAGLWTSIWIAAISLIIGLAIGTIFGILRTLTNKIIRFVLRIYLEFFRIVPTIVLLYLVYYILPRTFHVNWPATWMAVLAFSLWVAAEFSDIVRGAIESVPKSQRESGLALGLSKIQLFRYVLLPQAVKLELPATINLATRVIKTTSLLLVISIMEVINVGQQIIEANNQQYPTGVFWVYGLIFILYFVLDYPLSAWAKKLTKESK"]}}, {"location": "[216715:217456](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["glnQ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27675"], "locus_tag": ["MAAAAKME_02240"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MTEEILKVEHLDKFYDDRQVLHDINFSLKKGEVLTLLGPSGSGKSTLLRTLNGLEDYKNGAIYFHGKKINPSPKEWQMLRQKIGMVFQSYDLFPNLTVIENVLLAPVKVQKRNENEVKEEAIKLLKQVGLDQYLNAYPRELSGGQKQRVAIVRALAMRPEVMLLDEITASLDPEMVRGIEEIVERLSKRDHMTMIIVTHQMNFASRIADEVLFLENGHILEDTPGKDFFDHPQTQRAKEFLDSMDY"]}}, {"location": "[217467:218328](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_02250"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MKKKNIFNIIMGIVALIVVVSAAYFGFTQPNLNSGTAGSRWSNENGVSEIKRRGYIRVAVFGDLPPYGWVNEQGKRVGYDVYLARRIAKDLNVKIRFIQVNANNRVDTLNSNKADIVLANFTVTPERKDVVDFAKPYMKVSVGVISPKNAPINSAQKLKGKKLIVTKGTTAENYFAKQSGVNLLKFDSKTQQFNALKNGRGAALADDNSYLYAWVKKNPKYVVGIKSIGPRQYVAPAVKKGNRSLLKWTNHEITKLTKEGFFVQDYQKELAPYFGKDIKPTDIVLR"]}}, {"location": "[218739:218847](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGYYFSQAHMSKRNLYFVQALGLLGAGATIGLSG"]}}, {"location": "[219424:220690](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.1"], "codon_start": ["1"], "gene": ["tyrS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A537"], "locus_tag": ["MAAAAKME_02270"], "product": ["Tyrosine--tRNA ligase"], "transl_table": ["11"], "translation": ["MANFDILEDLKWRGAINQETDEEGLRDYLAKHDDLALYCGTDPTGDSLHIGHLIPFMILKRFQLAGYKPVIVIGGGTGSIGDPSGRSTERVLQSEETIKHNEEALTAQMVKLFGTENFRIVNNRDWLGKMNLLEFLRDYGKLFQVNNMLNKEVVASRLKNGISFTEFSYQILQAIDFYILNRDHCVQMQIGGADQWGNITAGIDLIHRLEGADRPAFGLTIPLMLKADGTKFGKSAGGAVWLDPEKTSPYEFYQFWINQDDRDVIKYLKYFTFLKHEEIDALEEKVKTEPWKREAQKRLAEEVTKFVHGEEGLKEAQTVTEALFSGNVKDLTTKQVEIALAKAPSAESGAEKKNLVDFLVDTKIESSKRQAREDVNNGAIYVNGDRIQDTDFEVDPAAAFDGKFVIIRKGKKKYTLVHIKG"]}}, {"location": "[220784:220857](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_02280"], "note": ["tRNA-Thr(ggt)"], "product": ["tRNA-Thr"]}}, {"location": "[221099:221408](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKMARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKPGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[221786:221888](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLAKIRGGAGDITKPDLNARIQDNLYLAVNSD"]}}, {"location": "[222083:222449](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLNTNKLTEEQVNLFKNNLVYLATVDAEGNPQVGPKGSMTVLDPSHLQYLEKTKGEAYENIKRGSKVALVAADVPSHTAVRVLATAEVHEDDDYAKKVLAKTEFPNAFVVNLNIEEVFA"]}}, {"location": "[222745:223054](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADKHPNNNLKRSIGFGSAISIVIGTIIGSGIFFKQVSVVIYTLVTIGIFRFLPVGLIHRLGENTTAYLATKVFGTIGGKLLSAGIIISMMGTLNGKMLTFP"]}}, {"location": "[223500:224688](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.47"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01692"], "locus_tag": ["MAAAAKME_02330"], "product": ["N-acetyldiaminopimelate deacetylase"], "transl_table": ["11"], "translation": ["MNANFETKLMQLLDQNKDEIIKIRRYLHEHPELSFHEKKTSEFIENYYRDLDCQVRHCGDDYGIVVDINPDKPGKKLAWRADFDALPIQENNELPFKSQNPGVMHACGHDGHTAYLLVLGKCLIQLKDQINGSIRLIHQPAEEVTPGGALSMIKDGALDGVDDVIGIHVMSTMPTGTVQLHAGATQTGRANFDLTFTGKGGHASMPQLSNDAIVAGSYFVTQLQTVVSRRLNPFDVGSVTIGSFDGAGSYNAIQEQVKLKGDVRVMNEATRKLMKKNIKQIIKGIDVTFGVKSELNYDDNYPVLVNNQDLTKKVENWIKESKIPEVTAVKDSGVVNASEDFAYYAQKKPACFFYVGCQPEDGGIYPHHSPKFMMNEDCLIICARSAASVISHYFA"]}}, {"location": "[226070:226805](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0833"], "gene": ["rocC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39636"], "locus_tag": ["MAAAAKME_02340"], "product": ["Amino-acid permease RocC"], "transl_table": ["11"], "translation": ["MQKWFPQVSVWIWSLTCMILIFLSNFFSVKAFAESEFWFAAIKVFAIVAFIVLGGLAIAGFLPVEGYHAAPGLANFYRNGWFPNGFSGVFTTMLTVNFSGTELIGVTAGEAENPQKAIPSAIKTTLWRLLIFFIGSIAVMSALIPYKVAGVTQSPFVYVLDSIHVPFAANIMNFVVLTAIISAANSGLYASTRMLWSLSNEGTIPAIFKKTNKNGIPVLALIFSMLGGVFALVSKVRSQLTQFA"]}}, {"location": "[227157:228405](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQNTIINSATEKLSPFKTLTAEQENLVNDILSFTTKHIKQDYPAIFTVYGDAGTGKSVVLAHLFNEIQVAARTKEDSPLYQTTNYFVVNHPEILKVYKEIAGDLPHLYKKDFTRPTSLINQLDKKDETVDVVVIDEAHLLLSRSDPYNNFTYNNQLVELIKRAKVVILVFDQYQVLRTKTFWTNKQLEKITHQCPHEDYHLTHQFRVNASDDLLNWFNYFTDEEEILPFPEDARHNYDFRIFDDAEKMRQEIVKRNNEVGLSRILSTTGYPSTLDGGKHYITEGKFKMPWDQYNYTSKPWAEIPETINEVGSIYTCQGFDLNYTGIILSPPITQIPGTNKLKVDPSKFTDIEAFKKRKDLFNDQELNEAKKRLFMNMINVLLKRGVYGTYIYAHDPLLRQTLYQNYQKLISKHNR"]}}, {"location": "[228504:229155](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1418"], "gene": ["yedJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46144"], "locus_tag": ["MAAAAKME_02360"], "product": ["putative protein YedJ"], "transl_table": ["11"], "translation": ["MERKLIADFVKENLAEERTGHDYYHGKRVAVLAERMLLADHPEAGQKSRDIAYTAGFVHDTIDEKVCPNPSKVLAKLREVFTAAGLSASDQDNVFFAIEHMSFSKNIDRHYRLSLEGEYVQDADRLESLGAMGIARAFVYSGKHDDKIYDPEIPPMELVSHDQYRNHEETTINHFYEKLFKLEGLMNSRAAQKEARRRTEYMRDFVREFRHEWYLD"]}}, {"location": "[229305:229554](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVLEIWLKEVASVALDKSMVGISDATVQFKVFLVVDLEDEELEPQAASIKADNVTAAPAPKNLETFIVLSPYLSILMIDSHV"]}}, {"location": "[229665:230028](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["ygiS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46863"], "locus_tag": ["MAAAAKME_02380"], "product": ["putative deoxycholate-binding periplasmic protein YgiS"], "transl_table": ["11"], "translation": ["MERRYGVTAKDFVYSWRRTVNPKTASRYSYPFSGIKNADAIVAGKKSVNSLGIKAVGKYKLVITLERRIPYFDKLMGFAVFFPQSEKVVKKYGSKYGTASKYMIYNGPFVQKGWTVSNLS"]}}, {"location": "[230031:230991](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_02390"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MVKNKYYWDKKSVKLNTITWSVQKTPSTSYNLYQSGKLDYTSLDSSQTKQLKSTKGYTTLNKGATFYMQFNIAKNKYLANTNIRKAISLAVNRKGLVSSLGGNNVAANTLTTPGLTDVNGKDYTKLLSSSAESLYPSSTKKSEAVKYMNKGLKQLGVSKFSFKILADDTDSGKKTAELLQSNIEATFGSKVSVSVQNLPFKTRLSRSTAGNFDIVVSGWSADFADPISFLDLFTSTNSENNGKWKNATYDKLIADSKTTSSTSKRWSDLTKEENILLKDAGVAPLYYSTTASLIRPSVKGVIQNRGTWNFKNAYITSSK"]}}, {"location": "[231232:232861](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_02400"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MKLSKTFSVGATVLASAALLAACGSNSSKESSSSKKTLNWTVASEIPTMDMSKATDTTSFNQLSNTMEGLYRLGKNSKLEKALATSEKVSKDGKTYTYTLRKSKWSDGSELTAKDFVYSWRRTVDPKTASQYSYLFSGIKNADAIVAGKKKPETLGIKAVGKYKLVITLERRIAYFDKLMGFAVFLPQSEKAVTKYGSKYGTASKYMLYNGPFKQTGWTGSNLSWKMVKNPYYWDKKNVKLDTITWSVQKTPSTSYNLYQSNKLDYTGLDASQTKQLKNQKGYVTLNQGATFYLQFNIAKNKYLANTNIRKALSLAVDRKGLTSSLGGNSVPANTLTPTQLTDVNGEDYTKRISKSAESFYPASTNKKEAVKYLNRGLKELGVSKFSFKILSDDTDSGKKTTEFLQSTFESTFGNKVSVSVQNLPFKTRLSRSTSGNFDVVVSGWSADFADPISFLDLFTSTNPENNGKWKNTSYDKLIADSKTTASTSKRWDDLTKAEDILLNNVGVAPLYYSTSAALIRPTVKDVYQNRGTWNFKDTYIK"]}}, {"location": "[233185:233398](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_02410"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MDSAEIPTMDLSKATDAASFNQISNTMEGLYRLGKNSKLEKGLATSEKVSKDGKTYTYTLRKSKWSDGSD"]}}, {"location": "[233601:234072](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_02420"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MGFAVFFPQSEKAVTKYGSKYGTASKYMLYNGPFKHVGWTGSNLSWKMVKNPYYWDKKSVKLDTIKWTVQKTPSTAYNLYQSNKLDATALDSSQTKQLKNQKGYTELNQGATFYLQFNIAKNKYLANANVRKALSLAVNRKGLPPFWAATTSQPTL"]}}, {"location": "[234068:234680](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTPTQLTNVNGEDYTKLIPSSAESLYLANPNKKEAVKYMNKGLKELGVSKFSFKILSDDTDAGNKTTEALQSNFESTFGDKVSVSVQNLLFKTRLSRSTAGNFDIVVSGWSADFADPISFLDLLTKSNAYNYGKWESTAYNKNVSLSKTTGSTATCWKAMVAAERALLEDQGVITVTPLYYTNEAPPASRALNSGYFSLLVNL"]}}, {"location": "[234844:236437](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_02440"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MLAACSKTATKSAKPVSSSGYEKSINWMTTSELESLDPAKADDTASEEQIANTYEGLYRLGENSETVPGVAIKSTTSKDSLTWTFYLRKDAKWSNGDPVTAEDFVYAWRRQVDPKTASSQVNNYEGIKNAIKISEGKKKPSSLGVKAEGKYKLVVTFEKKIPYFKVVTAISLKPLDSKAVKKYGKRYGTKSAYAVYNGPFKSVGWTGSNLTWKLAKNPYYWDKKAVKLETINYSVQKTPSTDYNLYQTGKLDAAILDTQAAKSMKGKKGYRVLTLGNTTYLCYNYKKKKIFRNANLRRAISMAINRKQLLSTIGTYNTQAKTFSATNVVLDGKNFAQEAESANSSVNKYVEYDLKSARSYFKKALKELGVKKVSFTLMADDDDSYKKQTEFIQSALTEAFGGKMTVSVNNLPKTTRVSRQIANNFDVVLGGLTSDFPDPYHFLAYMQSGQTYNFGKWSNKEYDKAVKASLTMDKTKRRKALLKAEKILIDQEAISPLYHMGQAWMIRPNIKNLVFNGEYPDFKTTYAVKN"]}}, {"location": "[236860:237781](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0601"], "gene": ["oppB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24138"], "locus_tag": ["MAAAAKME_02450"], "product": ["Oligopeptide transport system permease protein OppB"], "transl_table": ["11"], "translation": ["MAKYLLKRIFYMILTLFLVATITFFLMKMMPGSPYANEAKMTATQKAIMNKQYGLDKPVIEQYITYLAGAAHGDFGISFQYSNQPVSSLIGARLGASAQLGLQALVVGIILGIIIGSIAAVNQGTWIDSTATIVSIIGKSVPNFVLAVLLQYYIGLKLGWFPIAGWGEAAQTIMPTIALSVGPLAETARFIRTEMVDTLSSDYVELGKAKGLSRIEVIRKHTLRNSMIPLVTLIGPYAVALMTGSMVIENIFNIPGIGEQFTKSILTNDYPTIMGVSMVYCFGLVVILLLTDIVYSLIDPRIRLTD"]}}, {"location": "[237802:238834](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1173"], "gene": ["oppC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24139"], "locus_tag": ["MAAAAKME_02460"], "product": ["Oligopeptide transport system permease protein OppC"], "transl_table": ["11"], "translation": ["MDQDASNVKITPESFEHVEKGDMQSAEHISGPSLSFMQNVWIRFKSNKAAMISAVIIIVMVVIAFGSSFWINNSSLVKSAPQYANLPAKWKGFDWLNGLNGKIKQNGVWTDAYSSVPAGKYFVAGTDYLGRSLAQRIIYGTKISLIVAVVAAFFDLAIGVTYGIISGWKGGMTDNIMQRIIEIISSVPTLVIVVLMLVVLKPGITSIILALAISSWTTMARQIRAETLSLKNEEYVLAARSLGESTFKIATKHLIPNLSSIIIIQTMYTIPGAIFFEAFLSFIGIGISAPETSLGVLLNEGQKNFQFLPYQMWYPAAALCVLMIAFNLLGDGLRDAFDPKGQR"]}}, {"location": "[238847:239891](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0444"], "gene": ["oppD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24136"], "locus_tag": ["MAAAAKME_02470"], "product": ["Oligopeptide transport ATP-binding protein OppD"], "transl_table": ["11"], "translation": ["MANRILDVKNLKIDFHTYAGEVKAIRDVSFHLDEGETLAIVGESGSGKSVTTRSIIGLLAKNSQIMGGQILFHGKDLLKISEKEWQQIRGNQIAMIFQDPMTSLDPTMKIGQQIAEPLIKHKGASKKEAWAKALEMMKAVGISNAEERINQYPHQFSGGMRQRIVIAIALICEPEILLADEPTTALDVTVQAEILDLMKDLQKRVKTSIIFITHDLGVVAGMADRVNVMYAGEFLEKGTVDEIFYNPQHPYTWGLINSMPTLTSEKLESIPGTPPDLLDPPKGDPFAPRNKYAMKIDAQMKPPFFKVSETHQAATWLLHPDAPKVTPPDEIVRRWEHYKELQAADED"]}}, {"location": "[239905:240859](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4608"], "gene": ["oppF_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24137"], "locus_tag": ["MAAAAKME_02480"], "product": ["Oligopeptide transport ATP-binding protein OppF"], "transl_table": ["11"], "translation": ["MPEERKKILEVKHLKQYFKNGRTVTKGVDDVSFDIYEGEVFGLVGESGSGKTTTGRSILQLYKPTAGEVLFEGKDVAKLHGRDEQLAFRRDAKMIFQDPYASLNPRMTVEDIIAEGLDIHHLVKDKAERRKRVEDLLETVGLNRNHASRFPHEFSGGQRQRIGIARALAVEPKFIVADEPISALDVSIQAQVVNLMIDLKKQHDLTYLFIAHDLSMVKFISDRIGVMHYGKLLEVGSADEVYDHPLHDYTKSLISAVPQPDPEIERSRKRIDYEYGKFEGDGKDDQRSMHEIRPGHFVKCTDDEVAYYEKVAQSYEK"]}}, {"location": "[241210:242524](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "db_xref": ["COG:COG3579"], "gene": ["pepE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94870"], "locus_tag": ["MAAAAKME_02490"], "product": ["Aminopeptidase E"], "transl_table": ["11"], "translation": ["MSHELTLQELAEFSANFNADPKNQVIARAAARSGVLEASYNERVAGRLTRVFSTELPTDNVTNQKQSGRCWLFSTLNVLRHDFGAKHKAKNFTLSQSYNFFWDKLERANLFYEKVIETADKPLDDREVRSYFDFAGHDGGQWHMAVSLVKKYGVVPSYVMPESFNTSATNGLASALADKERKDALALRRLAQAGDQEGLEKARKTFLNEIYRMVAIAVGEPPKTFDLEYRDDDKNYHLEKNLTPVSFFNKYFDVDLDDYVVLTNAPDHEYGKLYHLGAEDNVEGGSPILFLNVPMEYLEQAAVAQLKDGEAVWFGNDVGRQMDHKTGYLDTDLYKLEDLFAVDLSLSKADRLATGVGEVSHAMTLVGVDEDKGDIRQWKVENSWGDKSGEKGFFVMSHNWFKEYVYEVVVHKKYLTKDQQELLSSTPVELAPWDSLA"]}}, {"location": "[242575:243889](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "db_xref": ["COG:COG3579"], "gene": ["pepE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94870"], "locus_tag": ["MAAAAKME_02500"], "product": ["Aminopeptidase E"], "transl_table": ["11"], "translation": ["MSHELSPQLLESFSRDFNADPKNQVISRAARRSGLLEAAYNPAVSHRLNRTFSIELDTDNVTNQQQSGRCWLFSTLNVVRHNFGKANKAKNFTFSQSYNFFWDKIERANYFYDRIIATADRPLTDRTVRGYFDWCQTDGGQWHMAASLIAKYGVVPAYSMPESFNSNHSQALDMVLADKERKDALTLRRLAQAGDQEKLEAARTDFLSQIYRIMATALGEPPKTFDLEFRDDDKNYHLDKGLTPVQFYKKYCATDLDDYVVLANAPDHEMNRVLHLGFEDNIKGGYPNLFINVPMEYLEDAAIAQLKDGEAVWFGNDVGRQMDRKTGFMDLDLYQLDQLLDIDSHLSKADRLATGIGESSHDMALVGVDVDGGQVRQWKVENSWGDKSGEKGYFTMSADWFREYTYEVAVQKKHVPAEILDLLKNQPIELDPWDSLI"]}}, {"location": "[243985:244411](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ibpA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02000"], "locus_tag": ["MAAAAKME_02510"], "product": ["Small heat shock protein IbpA"], "transl_table": ["11"], "translation": ["MTNDLMNRYNDLFDQIGGWLDNSKDLLDSHAFRNILQSDVAEDEHEYTVKIDVPGMSKDDIHLSYTDGILTISAHRSTFKDDSDKKKNILRQERSEGSVSRSFSLPNVDKKGISAKLDGGVLTVTLPKAAPEENEDTITIE"]}}, {"location": "[244638:245100](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["greA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDQ7"], "locus_tag": ["MAAAAKME_02520"], "product": ["Transcription elongation factor GreA"], "transl_table": ["11"], "translation": ["MVYYQKMTPEGYKQIEDEIAALKADRPRRVQNLKEARALGDLSENTEYSTAKRELRHLDSRVRYLNKQLKYAEVIETVNDGKVNLGKQVEIRYEDDQEVEEYRIVGRMEEAVGDGKLPFDSPLGHALMKHKAGDRVKVKAPMGDYEVTILSVK"]}}, {"location": "[245183:246473](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.4"], "codon_start": ["1"], "db_xref": ["COG:COG0104"], "gene": ["purA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65887"], "locus_tag": ["MAAAAKME_02530"], "product": ["Adenylosuccinate synthetase"], "transl_table": ["11"], "translation": ["MTSIAVVGSQWGDEGKGKITDFLGTTADLSVRANGGNNAGHTIDFDGKEFKMRLIPSGIFAAKLGAVISNGVVINPKVLLGELNNLEKSGIDTSNLKISNRAHIIMPYHIMQDTYEEEAKGNLKVGTTKNGIGPTYMDKASRIGIRVCDLIDPETFAEKLRFNLERKNALFTKVYGKPAMDFDEIYNEYVEYGKRIAKYVCDTSLYVNDALDRNEKVLFEGAQGIMLDIDQGTYPFVSSSNSVSGGIASGSGIGANRIKTVLGICKAYTTRVGAGPFPTELHDETGDKIRDIAHEYGTVTGRPRRVGWFDSVALRHAKRVAGINALSLNLLDVFSGFDKIKICVAYDLNGKQIDYYPASLKEVEACQPIYEELPAWEEDITGAKSWEDLPEKAQAFVKRISEITGIPVVTVSVGPDREQTIVLQDPWTL"]}}, {"location": "[246658:247651](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.7.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG0516"], "gene": ["guaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05269"], "locus_tag": ["MAAAAKME_02540"], "product": ["GMP reductase"], "transl_table": ["11"], "translation": ["MNNYFSMEAFDYDDIQLVPNKAIVKSRKECVTSVKFGNRTFKIPVVPANMESVIDEKLAVWLAQNGYYYVMHRFQPEKRADFIKMMHEKGLFASISVGIKDDEYDFIDELVEKDLIPEYTTIDVAHGHSVYVIDMIKYIKEKMPDTFLTAGNVATPEAVRELENAGADATKVGVGPGKACITKLKTGFGTGGWQLAALRMCSKVARKPLIADGGIRHNGDIAKSVRFGASMVMIGSMLAGHEESPGNVIKIDGKTYKQYWGSASEVQKGAYRNVEGKQMLVPYRGSIANTLEEMKEDLQSSISYAGGRDLESIKRVDYVIVKNTIMNGDY"]}}, {"location": "[247779:249087](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG0389"], "gene": ["dinB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47155"], "locus_tag": ["MAAAAKME_02550"], "product": ["DNA polymerase IV"], "transl_table": ["11"], "translation": ["MYDYRYEPHRVIFMIDNKSFYASCEALRLGLNPMEVALAVVSQQPGTDWGSGLIMAASPLAKKKYGLSNVMRARDLPPKDQAPDLMLVEPHMNLYIKRSMEVLQIFRKYAADEDIHVYSIDESMIDMTESWHLFGDDPYLVARKIQKDIHDSLGLYTTCGIGENPLLAKLAMDISAKHRTSMIACWHYIDVPDTIWKIPKLEDVWGINVKTADHLRRLGINNMYDLAHSDPAILKKEFGVIGDQLFAMSWGVDRSIIKQKYRPKSKSYGNSQILSRDYEDQREIEIVIQEIGDQVASRIRAQHLLAGRVSLYIGYADYEADPAGFSIQEKITPTDISSDLVAKLRALFRRKWRGQAVRRLGVTYSNLASAGCQQLTFFLPPAEQIKQQKRDQVVDKLRKKYGFASVVRASSLLSGATAIARSRLVGGHNGGNAYE"]}}, {"location": "[249064:249439](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGATPMSKEFDQRVTDFFAHYQDRGMKKWAGFFLSDHTAMINKETRQKSVPDRAEMSREECGKVLGEAFGNQRSVAVQLKEVDENGDRPEEIVDFVQGYAEDKVVIGEHVIALDDLRCVLLLSD"]}}, {"location": "[249508:250801](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A2A5JY22"], "locus_tag": ["MAAAAKME_02570"], "product": ["Nucleobase transporter PlUacP"], "transl_table": ["11"], "translation": ["MDQTQEPSQGRSFVLGLQHLLAMYSGAVAVPILIGNALHFNSEQLTYLISIDIFMCGLATLLQLLRNRYFGIGLPVVLGCAIQAVAPLEMIGQKYSIGTMYGSIIVAGGFVFLIAGVFSKIKRLFPPVVTGTLITTIGLTLIPVGIQNLGGGSATAKDFGDPKNLLVGCVTILVIVALQAFAKGFIASISILIGLIVGTLLAACLGMVSLTPVSEAAWLHFPQFFYFGLPKFEWSSSLTMMIIALVSMVESTGVFFALGDLLGKDITEDDLKRGYRAEGLAQIFGGLFNTFPYTTFSQNVGLLQLSGIRSKRPIYWTAGLLMAMGLLPKVGALVTIIPTAVLGGAMVVMFSSISVQGIKMLLKVDFSDNHNLLIVAISLGLGLGVSVYPTIFQALPSELQLFLENGIVIASISSVLLNLIFKGKKGLDEK"]}}, {"location": "[250830:251400](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.22"], "codon_start": ["1"], "db_xref": ["COG:COG0503"], "gene": ["xpt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831Y0"], "locus_tag": ["MAAAAKME_02580"], "product": ["Xanthine phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MELLEERIKKDGVVLPGNVLKVNSFLNHQIDPQLMMTLGQEFARLFKDAGVTRVLTAEASGIAPGIMAAYCLGVPMVFARKKKPSTVTDAVYTAEVFSYTKQVTNTISVEAKFLDANDRILVIDDFLANGEAAKGLISLAEQAGAEVVGVGVVVEKAFQGGHDWLVNHGYHLEALASIKEFADGQVIFN"]}}, {"location": "[251754:252912](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.205"], "codon_start": ["1"], "gene": ["IMPDH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01964"], "locus_tag": ["MAAAAKME_02590"], "product": ["Inosine-5'-monophosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MSLWETKFAKEGITFDDVLLIPAESHVLPNEVDLSTQLAPNLKLNIPLISAGMDTVTEGRMAAAMAKMGGLGVVHKNLSIQAQADEVRLAKNTPVTAEDTYAAVDKDGKLLVAAAVGVTSDTFERAKALFEAGADAIVIDTAHGHSAGVLRKIKEIRDHFPHNTLIGGNVATAEGTRALFEAGVDVVKVGIGPGSICTTRVVAGVGVPQLTAIYDAADVAREFGKPIIADGGIKYSGDVVKALAAGGNAVMLGSMLSGTEEAPGDVQQGSDGRLVKSYRGMGSVGAMSQQHGSSDRYFQGGVNEANKLVPEGIEAVVSYKGTVSNVVYQILGGLRSGMGYCGAENIDKLIETAQFVRISNAGLRESHPHDVMMSKAAPNYGGIDF"]}}, {"location": "[252911:254465](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.2"], "codon_start": ["1"], "gene": ["guaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99105"], "locus_tag": ["MAAAAKME_02600"], "product": ["GMP synthase [glutamine-hydrolyzing]"], "transl_table": ["11"], "translation": ["MAKIDLSNFDKIIVLDFGSQYNQLITRRIRDFGIYSELLPHTITAEEVKKIAPKGIIFSGGPNSVYDENALDVDPEIFELGIPILGICYGMQLMTQKLGGTVEKAGEAEYGSAHIEVKEADSPLYKGLPEKQVVWMSHGDLVTKVPEGFEVLASSKNCPIASMADPDRKFYAVQFHAEVRNSEYGLDILRRFAFDVCGAKDNWTMDDFIKLSVDSIREEVGNANVILGISGGVDSSVTATLLHKAIGSQLTAIFVDHGLLRKNESDEVMAALKEGLGVNIVRVDAKDRFMSKLAGVTDPEKKRKIIGNEFVQVFNDEAKKIKDAKFLAQGTLYTDVIESGTDTAHTIKSHHNVGGLPEDMQFKLIEPLRQLFKDEVRVLGEKLGLPHDLVWRQPFPGPGLAIRVIGEITEEKLRIVRDADAILREEVKNAGLQESIWQYFVALPGMRSVGVMGDGRTYDYAVCIRAVTSIDGMTADFAQIPWDVLQKISVRIVNEVKQVNRVLYDVTSKPPATIEYE"]}}, {"location": "[254789:255041](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKWDKLLQRILSLSKGMRFVELKKVLESYGYVMTAPRSGSSHYTFRKPGKTPITIPKHEPIKKIYVEMVRKVVEEETKHEDN"]}}, {"location": "[255027:255399](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTIDDYLALPYRLELVPDPDEGGYVASYPELPGCITIGESLEAAAKNAEDAKKAWLEAALEDGIEIAEPASLDDYSGQFKLRIPKSLHRSLAEHSKREGVSMNQYCVYLLSKNDALEERNRA"]}}, {"location": "[255832:258085](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINLNYQSSDTSLLPSDFQLEDYKKIARDSKKRFLQFCFSNAEIPDQGFKIHISATQINYQVILDEVFDLCKSNLIDFKYISNREQLLDNLAGKDDLWASGKFITIYPSSLDDFKKVIVKLYENNVLKVQDGIAIFSDRRYRDSNVIFYRYGRLKGPDKWIYNPITKLKEYRDYESMEYRLPAWVDEPFPDNSDDSKTCKYFFKKIIPTEGLNSKPSGATFLAHVAGSEEEFVLKNAHPGYMNLGVACTDSLKNEAVNIKRMMKFDFIPNYIADFSEDEDYFLCEEKKCGLSVDDYRADSHHNFIDKKLRKKTINDYRKSITDLLKNVQILHDERIFLGDISSENVLVDPETNLVSFVDLEQSVFLEDHSKIAFFARTEGFFDENTPFLAPIAQDNQQLAYLLISFFCRGNMFLLIDHSGAMTINFFKQYASTHNLPKVFVDVIMDLLEDPNQRLDNLVEVLDKMDCENLYNSEDLVSLDDFQYELVKSVYLAMIDGIQIDDKKTLFFEEDTDLIFNENMVSIYKEYLQKPTIFNDIFFEKKMHNHVISEGKRLVEMLKDGDERLAETSLVQVYALLLCTIKIASPSEKIIIDSLINYTQEKYMESTINGRFFRITEYSTYLSPYFADGTAGMINILLEYREKFHDTKYDASILDLVNSISQEHMPKNSSLYRGLGSFIYVLQKFKKIFKSSKRDNDIREMFRNLPLYSIVSNGNRYMVDESFRRISLDFADGNAGIIFLIEQAKQMGIL"]}}, {"location": "[258107:259709](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_6"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_02640"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MYYSDFIKGNRVRFIAIILLVIGGSALLAGNNALLTLLGDSLRKGNLLLFVTIIGINFVVNSIGSSLSYRANYLYDKQTQEYFHKLRSAEVEKIYNSGNKAPKVSSVQNSLTQDLNMLGENFLAPWLKIAACGLDVVLSSIIVFTYSWLLLLVILLLAVLMFFMPRFLSPALQKATDDISNENKHYLDMLEKWFSGLSVLQRYHVKQKLLAVTTAQGKRLEDANVRRSGRMQVASGVNNAANVLSQALILLVSGVLIITGRMNFGVFFSIGNFASTIFTELGVVVNQYTILQSSKTLNAKLRKQLAVQTDHLEKTESLDHFQSLSVQALSVAFSNEEKITYPDFQIKRGEKILLSGDSGTGKSTLFKLILQELPLATGKICFKNEAGQEIERPDLSQIGYVPQDPVLFPGTIKENITMFNSKLNDRVMHFVKQVNLEKDLAKFPAGVDTELDQGKHVLSGGQRQKVVLARAQIHDSQLIFIDEGTSAIDAHNGLEILQNLLQTDATIVFIAHNLTEEMRQLFDREIHLSNTAG"]}}, {"location": "[259793:260588](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rhaS"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01534"], "locus_tag": ["MAAAAKME_02650"], "product": ["HTH-type transcriptional activator RhaS"], "transl_table": ["11"], "translation": ["MPIAYEEVNNLARLPFKFFKRSNYVPKAPTHWHTGIEIDYLVSGEDFKVVIAGQTHHYNSGDIWAIDRTQIHAATGHKDRSYYVMGLIIDNNFLEKEYTSSKNWRIKMDHISRDTASYRQLRKNLITIAELVDQPISDSIRFLILSEFFQMIALIDSEYTEKTAVTTPPNQSLADTVITYIANNSSTNITAQSIAEHFRISQVTLNKELSQVTKLPLGKYLKQVRLMHARYLLLSTNYSVAYIANYCGFSSAKVLERNFKAWKK"]}}, {"location": "[260831:261755](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.85"], "codon_start": ["1"], "gene": ["lacG_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01574"], "locus_tag": ["MAAAAKME_02660"], "product": ["6-phospho-beta-galactosidase"], "transl_table": ["11"], "translation": ["MSVTDITTAGSLESPRYLTYTLDGKDGKVAGMFASSLPKGAKGKIFDNEYYPNHVAIDFYHYYKEDIKMFADMGFKVFRTSIAWTRIFPTGEEDKPNQEGLDFYRRVFEELKKNGIEPLVTISHYEDPLALGEKYNYWQDRKMIDLYVKYATTLFKEYKDLVKYWLTFNEINSFLMFLKLVGDGKVSDADYQKAYQKLHHQFVASAKAVVAGHKINPDFMIGNMIAGSVYYPGTPDPKDALAARYEEELSQLYCADAQAKGEYPSFAKRLWDEHNVHLKIEDGDLEVMKEGKAAGKMPFCLLRGRSR"]}}, {"location": "[261780:262383](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.1"], "codon_start": ["1"], "gene": ["deoD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01627"], "locus_tag": ["MAAAAKME_02670"], "product": ["Purine nucleoside phosphorylase DeoD-type"], "transl_table": ["11"], "translation": ["MADHFITIDRLRPIYIIENQGEQLCLCRAPLGGPAAAQFMDALIALGCRKFLAVGSCGTLVDIKENDFLIPARALRDEGTSYKYLPASRYVDLDPAAVEKIGQGLKEQGLPFEPCTTWTTDGFFRETQDMVEYRRGEGCQVVEMECASMAAVAAKRGAEFGQLLYTADSLANVEAHDDRDWGQASQAKALHICLRIIHNF"]}}, {"location": "[262462:263725](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.12"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:H8L902"], "locus_tag": ["MAAAAKME_02680"], "product": ["D-aspartate ligase"], "transl_table": ["11"], "translation": ["MQQFTPILLGSDINVYGMARSFHEAYGIKVQAWGASTLAPTRYSKIVDIEVHPGFTEDPEFIKVMREKIKEYKKHPEPVILISCGDGYSELLAKHKQELEEAFIVPYIDYALLEKLISKEGFYEVCEEYGLPYPKTKIITMSAYKDGSYADVPFPFPVALKPEDPVSWLDVQFEGRKKAFVIKDLDEFKDIVGKIYTNGYKEDLILQDFIPGDDSNMRVLNAYVDKNHQVKMMCLGHPLLEDPDPIAIGKYMVIAPDYDEKLYQTVQAFLEKINYTGMANFDIKYDVRDGQYKFFEINLRQGRSSFYVTLNGYNLAKWYVDDYVEDSLKDQPVVYGNQDPAKHKLWLGVPDKIFEQYAVDSLAKKEALALLRAGKVGTTVFYKPDMNVKRWLLMKHMYHNYYKDYQKYFKVNKEQYFEKK"]}}, {"location": "[263818:264784](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLTPNDSSSFENQLSPRQDLTFNSLQALFDQQGLPFSPPSSQFGILQFSNFDLLVSDQCPYTIKCAVFKGTDQDEFLDRQEFTGSLAAQFQQVYAFLEKHNPVESQIKGLYREDRPAYPKQALREALMNAIIHRDYSNPASSLINLYTDRVEFISFGGLMPGITLEDIQLGLSVCRNKRLADLFYQLKLVESYGTGLARIKSAYKGSRLAPQILAAPSSFKVVLPHYQAAVKATSKPVKKAVTPAPSPSPAPKPKARATGNEETVLAFGKEHGEFIRSDIEELLGVSPATATRLLRQMENSGLVLKRGKAKAIRYRISENS"]}}, {"location": "[264934:265300](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0833"], "gene": ["rocC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39636"], "locus_tag": ["MAAAAKME_02700"], "product": ["Amino-acid permease RocC"], "transl_table": ["11"], "translation": ["MLGGVFSLLTSVYAADTIYLVLVSISGLAVVFVWMAIALCQLKFRQKWLKEGNTEDELKFKTPLYPFTPWFAFIASLASCLLIWFDPSQRVALYATIPFVIFCYVAHHFYAKHQEKKQTSL"]}}, {"location": "[265305:266259](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0833"], "gene": ["rocC_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39636"], "locus_tag": ["MAAAAKME_02710"], "product": ["Amino-acid permease RocC"], "transl_table": ["11"], "translation": ["MCYHVTAYFNKKTGYTISQAGPIGTIIAYFFGAILVYAVMLCLGELSVAMPYTGSFHVYAKNLLNPATGFTVAILYWLTWTIALGSEFTAAGIIMRHWFPSVPVWIWSLVFMILIFLSNFFSVKIFAESEFWFAAVKVAAIVAFIILGGLAVVGVIPLKGSQGAPGLTNLTKDGWFPTGFGGVFTTMLTINFAFSGTELIGITAGEAKEPEKTLPKAIHTTLWRLIIFFIGSIFFMACLIPYKQAGVTESPFVHIFNMMGIPFASDLMNFVVLTAIISAGNSGLYASTRCSGPWAMRGLFQLFLPKPTKEGFRPSPC"]}}, {"location": "[266274:267207](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.10"], "codon_start": ["1"], "db_xref": ["COG:COG2040"], "gene": ["mmuM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47690"], "locus_tag": ["MAAAAKME_02720"], "product": ["Homocysteine S-methyltransferase"], "transl_table": ["11"], "translation": ["MADLPTLLAQGPVTLDGSMSTPLEAWGEDTNSDLWTAKALADNPDLVYRVHQEYFKAGARVTITDSYQASLPAFMKHGLSEDAARALIRESAAVAIKARDDFEKETGIHNFVAGSVGPYGAYLADGSEYRGDYALSHEEYVDFHAPRIEELVAGGVDCLAVETQPKLSEVRAILDYLKAKYPDLPVYVSFSLKDPATISEGLPLTEAVEEVSAYAQVFAAGANCFKLAWTVDVVKNLRASKLPIVVYPNSGAEYDPSVKKWVYPPEAADFGQAGAAWLAAGAKLVGGCCTTMPEDIAGLAAAVKKVYTAF"]}}, {"location": "[267262:267712](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAVERVKDSFKDTDVNVIELPESSATVALAAQALNTEPDQIAKTLSFLVDDAPILDVMAGEASTDNHKYKATFHKKAKMIPVDQVEDYIGGVCPFAVKPGVKVYLDESLKRHTEVYPAAGSSNSAVRLTIPALEKYSDYTAWVDVTKTA"]}}, {"location": "[267947:268151](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADLSKLREQIDQADQDLVKALVKRYDLVMEVGRVKREKGQAVFDPKREERVLDKVTNLAQRPEEDF"]}}, {"location": "[268209:268659](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["slyA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01819"], "locus_tag": ["MAAAAKME_02750"], "product": ["Transcriptional regulator SlyA"], "transl_table": ["11"], "translation": ["MMDLGLRVKKINDLMAKRGNYELKKLDLTFSQFHCLVYLEKCAGQQAPLKQLEKHFEVAQTTMAGIVGRLEGKGYVRSHLAESDKRVKIVCLTDEGRQICASAKKGMHKLQEKVELLYSRQELSQLEKYLDRLYELLAEENREACEEKR"]}}, {"location": "[268655:269663](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG0252"], "gene": ["ansA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26900"], "locus_tag": ["MAAAAKME_02760"], "product": ["L-asparaginase 1"], "transl_table": ["11"], "translation": ["MTNKKILLLSTGGTIASVASEEGLIPGQSGAELLHTLGGLPYEVEVKDILSLDSSNIQPEEWAFIAEQIYKLRRGFDGIVVSHGTDTMAYTASMLTFMLQGIDLPVVLTGSQVPMQAILSDAPDNLRVAFAAAATCKPGIYIAFNRQIMRGCRCVKIRTTGFDAFKSINVDPVAMVTSDGIDIKHKDFEYVPSEHAICTLNTKVEPQVAMIKLFPGFDPAVLSAMVDSGVKGIVIEAYGLGGMNYMRRNMVKAIGEIIKRGVPVVACSQCLYERTDLTKYEVGRAAMLEGAISGRDMTSESAVTKLMWALGQGMDLEDVRAFFNKDIAGEVTITD"]}}, {"location": "[269788:270070](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "gene": ["cof_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01847"], "locus_tag": ["MAAAAKME_02770"], "product": ["HMP-PP phosphatase"], "transl_table": ["11"], "translation": ["MIKLIASDLDETLLGPGSRVVEENLRAIKKCQELGIKFVPATGRDFYSLRQTLEELGQADQAGQYTICYNGGAVFENKGPRLISFTGMDGEPG"]}}, {"location": "[270107:270617](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "gene": ["cof_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01847"], "locus_tag": ["MAAAAKME_02780"], "product": ["HMP-PP phosphatase"], "transl_table": ["11"], "translation": ["MHIYTEDQVYGYQLTQEEIDFCQGRADFAALPGGDLTALRASGARFAKIIYVDTDFPRLKKLRKDLADFEKVSEMSFSSNRYLEFNPPKVNKGTGLKKLCQELGYQLDETMAIGDSFNDLAMIKAAGTGVGVANVSPEMRADCDKITEKTFDQGAVAEAIGRWVLPDYE"]}}, {"location": "[270701:271178](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mscL"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00115"], "locus_tag": ["MAAAAKME_02790"], "product": ["Large-conductance mechanosensitive channel"], "transl_table": ["11"], "translation": ["MPKRINLPDGQQAVESTKGFFGEFKAFISKGNVMDMAVGIIIGGAFTTIVKSLVSDIISPLLGLVGGMNFDQFSLKFAGVTLAYGKFLTAVINFLMMAFVLFFIVKAFNRAGSLIKKEEEVEEEATTKVCPYCKSEIDIEASRCPMCTSQLEEKMAEQ"]}}, {"location": "[271257:272781](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.21"], "codon_start": ["1"], "gene": ["pncB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00570"], "locus_tag": ["MAAAAKME_02800"], "product": ["Nicotinate phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MVSVQFILAIGEVFIFTFNSYIFEKADFYTMSLSHALITDLYEFSMANGYFETLPRDTEAVFDVFYRTVPDNGSFVVSAGLEQVVEQLRGFHYTKEDIDYLKSLKLFSAEFISYLETMTFDCVVYAIPEGTPVFPRVPILTVKGPLIQCQLLETFVLNLINHQSLIATKSRRINLAAAGRPVMEFGARRAQGPDASVLGARAAVIGGCGSTSNVLSAAKYNIPVAGTMAHAWVQSYPTELEAFEKWAEIYPDNALLLVDTYDVLTSGVPNAIKVFKELRAKGHKKFGIRIDSGDIAKLSRKARKMMDDAGFPEATITASNALNENVIDSLLQEGAPLDSFGVGEQLITSSSSPVLSGVFKLAALKIGDGEWQPKIKLSNSKEKVTLPGEKKAYRLYHKGTKNAFADVIALADESLPEEFVGINMDPMMTETEANLKDFDAVLLTQVVVGPKAKSIETDTFKIQKHMYEKLAELPEETQRLLNPDRYPVYLTPALADLQAKMIKDHKL"]}}, {"location": "[272800:273508](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_02810"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRRIDERSPRIESRKDFGHWECDLVLGHKTKDNDVLLTLCERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYRVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[273523:273835](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_02820"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLKDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHG"]}}, {"location": "[273996:274551](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.110"], "codon_start": ["1"], "gene": ["rutB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00830"], "locus_tag": ["MAAAAKME_02830"], "product": ["Peroxyureidoacrylate/ureidoacrylate amidohydrolase RutB"], "transl_table": ["11"], "translation": ["MKNEALLIIDYTNDFVDDKGALTCGAPAQALAGQIVSLADQFLAAGKWVILPTDKHFKGNPYHPETKLFPPHNLPNTWGREFYGPLQTWYNKHQDDEHVLVLDKSRYSAFCATGLDLFLRERKVSRVHLAGVCTDICVLHTAMDAYNHGYDITVHEKAVAALNDAGQEWALNHFKSCLGAEVVD"]}}, {"location": "[274805:275663](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKNRKNLALLLLAASLLAGCAGQSNSQSSQSNQAKSEKKEESKASSKSAAKSAASSAVSSTKSSSSRASSKSAASSSQRADANRMGTLTSQLRVKLPGMLLPAADGLGQGSSNLNIRYTSSSSQNVVYYSVGNSPLALNDSRIASEKPYAVLTENKNVADASSLINYQEPKTGLPAVKIAGNVTGTEEGAAGSTYLQFNQGQWSFVVRASNVQGQKPLPTAQKLLALYQQYGLPDTAAKSSVQVDVGESLGSLNTVITWAKGSSVYQLKAHSTETAFKMLKSLN"]}}, {"location": "[275655:275922](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNFWQSSLLLINLIAFALYGIDKAKARMHAWRIPERLLLTCGLLAPVGSGLGMLAFHHKVRKAYFYLAIFAGFILWSAIDYLILSFS"]}}, {"location": "[276017:276794](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPELEKIVERPLITITNLIWSFNKETHRVQLLLVKRKDEPFADRWALPETLLLLRENESADQAAVRLIKEKIGLDLPETSTEQLATFTSPHRTPGERALALTYMTYLPAMPNLRPGYGASDVAWFAFENFGHKYELFSADKDLTFELAENSHALAFDHDEIIAVAIQRIRNKLDYQPSILQILGPEFTLREAREVYAPFFQTTVDEIDNSNFRKTHGSLFTELGVQKNYHKSGRPPKLYCLKETQSNILWRKANNKQG"]}}, {"location": "[276960:278259](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEQIEEVPAELIQTRVYELHPNKTMRRVLDEACDYRRYCWNQGLALWNKMYKARQALKSSLASDSKKLTEEQKVLLKEKPSPSERRVRNMLVTDKKDWQYTQSARILQLAISDLGKAWNNFFDKAQPGWGKPKFRSKREARQGFKSDRSKIKDGILYLERAKESSVPKDQWRGFKLSEEPLSDEFGVVSYFKEKGRYYVAIPYKIKAEDVKLPDKTGKATAVDVNVGHFDYTGGRVNVLPKKLDRIYKKIKHYQRQLAKKQVKNGEAACESENYLKTKAKLQACYRKASNIQNDFMHKFTTELVNDYDKIVIENLSVKGMLMSHVASKGVHRSMFGKFKQILTYKCDWYGKELILANKLYPSTQRCAACGNVKKGDDKITLYGNKKHGTKHNEYVCYNEKCPNYNKVVDRDKNAMLSLLALTEHPELNHAL"]}}, {"location": "[278528:278816](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFFNKKENEAEEAFKKQLETVANDPAVKANAALSNLIEAAVKKVEKSESIRSIASNLDTQLRSNFAENELPKAVISLQLDLARYSAVGANGVVLK"]}}, {"location": "[279003:279255](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYQASRLPLWERVFHIVGDSMIIWLWHHLLIVALGLLTLLGLVIYLVVSGIRQKNVAKAVWPVVIFCSCLGLVYFAMSCAIMD"]}}, {"location": "[279388:280009](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKIVEYIFCRDCKKVYFYLHGGPLFTLRNWQEYPFATMLYNEQRNFILLNYPIVYGNGGISDYQFLKEYFWEYKRQNPNTEMVLLGESYGGYLASLFAAEYIFRKIIAISAFTSIAYQELFSSERSWLKDYLSENALDFYTLCRDNKVNTRTIFINGSRDSRVPYQQFLVLPFMKKFKVNILPGFTHRESRTRLEYVVSLIKQEL"]}}, {"location": "[280010:280811](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02910"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNPQHFRNISLGLRSIRIVANNEWRAFVHNKGLLLSMFMQPLITYGLLVMALNQNLASVHYESLILPYKQYALTGVLSFFMTTQMSQAMYRATVDKEYGLLAIKFTNGVQPWHYLTGMSFFPIAGLLFQSAVLIVLGLATGGVYNLGLLLLSLLVLIISLEFWSTLGIVLSTRISSYQQRDIIMTLIFSPVAYAAPTLYVFSNNSPLIIKVLAYINPLSYQLKALRTVAFGIFNINDLLIALVLTIIMIIFAQIILRRMPLSLAER"]}}, {"location": "[280807:281518](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1121"], "gene": ["mntB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34338"], "locus_tag": ["MAAAAKME_02920"], "product": ["Manganese transport system ATP-binding protein MntB"], "transl_table": ["11"], "translation": ["MISTNNLNIGYKDKVVVHDLSFSLDKGMFIALIGANGAGKSTLINSLIGVIPPVSGQISWKLKTDRVNPFNDVGFSPQSQLIDWYTSVYDNVYQGPLLAGFKTKEAQKTTKQALKLLDISDLSAKPVDHISGGQQQRVQIAREIAREPQVYILDEPTTGLDVETSEKLFTYLKQKVDAGSIVLTSSHDLTLLESYASHVLFLDDHEQKYFGPLTDFLDSGTSLREKYLNERKAIEK"]}}, {"location": "[281642:281888](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSIEFQKLIQKLQSDPITIGNFLADPEEFLKSTKLTNQEKKTLLARDVEALNDLGLTIDQAVGALSGAHSQRCSTNHPTRG"]}}, {"location": "[282190:282919](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKEDIAIQFELLLKEYSVARYEDSIWAFPDYPHHIKSNYGWKIHISAILTNAIQIARKFLTLNQKYHFDFKIISSIPYLEQMNMGYFGNSQVGKFITIYPDQSAVTETLELLYYYFHDDVGIRVGSDISYKQGLNVYYRYGTLLDDVENIDKRDKKLKPSSNVEKIYDYRLERYNSLPTRYLILEAIKQKGPSGVLLALDLQTKVKVIIRYAEKYYNIESAGIDERDRLISASSLLEKDFV"]}}, {"location": "[283791:284460](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTPRSRKGNLVRYLVYFVVFVFTALADNLAIKSPSISIWNVILFLVLAAMCLLFYIYRYNREQRFFDSRFNIPWLSSFNFTLLLSFVVAAGRIGISYLQLYKGMPASGLQLAYASHSTSSLYWFMMLANGVVLPILEEYLCTGFLFNYWFRTEKKGVAYVGIICSGLFYAILTFQFTPAIFAFNFAFGMLFAWSYLSTQTIWLPLYLVALNGVLTVVTIAV"]}}, {"location": "[284529:284600](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_02960"], "note": ["tRNA-Gly(ccc)"], "product": ["tRNA-Gly"]}}, {"location": "[284780:285806](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG0180"], "gene": ["trpS2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RVD6"], "locus_tag": ["MAAAAKME_02970"], "product": ["Tryptophan--tRNA ligase 2"], "transl_table": ["11"], "translation": ["MTKEIILTGDRPTGKLHIGHYIGSLKNRVMLQNTGKYDSYIMIADTQALTDNARNPEKIRNSLIEVALDYLAVGLDPEKSTIFVQSQIPALFELTTDYMDLVTLSRLERNPTVKTEIKQKGFGDSLPVGFLTYPVAQAADITAFKATLVPVGDDQEPMLEQTREIVRSFNRTYNVDVLVEPKGYFPPKGQGRLPGLDGNAKMSKSLGNAIYLSDDAETVKKKVMSMYTDPNHIHVEDPGQVEGNTVFTYLDVFDPDKDTVAQLKEDYQKGGLGDVKIKRYLNKVLEAELAPIRERRQKYAENLDAVYDMLYQGSQKANQVADQTLQEVRDAIGFNYFKNRG"]}}, {"location": "[285807:286290](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.33"], "codon_start": ["1"], "gene": ["tadA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00972"], "locus_tag": ["MAAAAKME_02980"], "product": ["tRNA-specific adenosine deaminase"], "transl_table": ["11"], "translation": ["MTRKRIPWKQYFMMQALVIAQRSTCDRALVGSVLVKDKRILSTGYNGSVSGQDHCDDVGHQLVDGHCVRTIHSEMNSLISCAKNGVSTDDTEIYVTHFPCYNCTKHLLQAGVIKINYYYDYHDSPLAIQLLRDSGVPYEQIKLDRQFVEELAHKLEDGSD"]}}, {"location": "[286270:286885](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_02990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTAATRLAWLLALVCLFPLVTGASSFFVQDNAGIINSDTWKMVDQNNAKYQKSDQHPIVIVETLQNAKKTQPAGLSKASRTFYIVINVQKDGTKKAYLYSSSDLHSQFTAQVRANILSHTASKITDDDPIAFNEGVQELFKISVTLIDQSLGFKKDSLDLSSEEVNRVIKPADLRIPIMLALLVLIAAVIIFLRFTIRRQDRK"]}}, {"location": "[287243:289934](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.14"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["mgtB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22036"], "locus_tag": ["MAAAAKME_03000"], "product": ["Magnesium-transporting ATPase, P-type 1"], "transl_table": ["11"], "translation": ["MLNKTMNKAASDDAKRVARIALEKRSVTLAQLHTNSNGLSTEEAANIREKTGTNEIASSNQASKLHFLAEAFLTPFTLVLLILATMSLFTNYIFVPQREKNLSTVIIMVVMVLVSGITSFIQNVRTSNAVQSLLKMVSVTTNVRRDGKDQEIPTKDVVVGDIINVSAGDMVPADMKLLSSTDLFCSASSLNGESTPTEKNANFVPTPDKMENYLDYPNILFKGTTIVSGSGRGVVFATGEHTVFGKIAAQIADTEMKETTFDTGIKNISKLLLTMTAIIAPLVLVVNGLTKGNWTDALIFAIATAVGLTPEMLPVIVTTNLVRGSLEMSKHQTIVKKMNSIQNFGSADILCTDKTGTLTQGQVILEKHYNLEMRETDRVLKMAYLNSYYQTGMKDLIDQAVIDVADDELDTSEIQRDYHKIDEIPFDFQRRRMSVVVANSDQKHGEHLLITKGAAEEMLAVSSQVEIGGQILPLTEERKKQIFKDIDDLNSDGMRVIVLAYKVDPSPVGEFTVDDESDLIVIGFLTFLDPPKESAKNALASLNRDGITVKILTGDNEAVTRAVALKVGLNIDTVYGQKDLIGKSDEELAKIVEECDIFVKLSPEWKTKIINALQKNGHTVGYMGDGINDAPAMKQADVSISVDSAVDVAKESADIILLQKDLSVLEHAVRIGRKTLTNTMKYIKITLSSNFGNILSIMVASVFLPFLPMLPLQLLILDLLYGTSCLALPFDSVSEDYLHVPREWSTKNMPKFMSYFGPTSSIFDVITFAVLFFVICPALTGGSYASLGPAGQLAFMTIFHTGWFVESLWTQEMVIHALRDERLPLIQQRASSPVMLATFGAAIFGTFLPFSKLAGAMKFVHLNEEFLWIVAGLLVCYLLLTTVVKHFYMKKEKFLI"]}}, {"location": "[290069:292052](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.10"], "codon_start": ["1"], "gene": ["metG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67579"], "locus_tag": ["MAAAAKME_03010"], "product": ["Methionine--tRNA ligase"], "transl_table": ["11"], "translation": ["MADNKKTFYITTPIYYPSGRLTIGNAYTTIAADTMTRYKKARGYDTFFLTGTDEHGLKIEQKAEKLGMKPKAYLDGMVKDIKELWKKLDINYDKFIRTTDEEHVKAVQKIFEKLKASGDIYLGEYTGWYSVEDEEYFTESQLKEVFKDDQGNVVGGIAPSGHEVQLVKEPSYFFKMSKYADRLLQYYKDHPEFIQPNSREKEMVNNFIKPGLEDLSVTRTTVDWGIPVPSDPKHVVYVWIDALANYITALGYGSEDDSLFKKYWPADVHLVGKEIVRFHTIYWPIMLMALDLPLPKQVFGHGWVLIYKDKMSKSKGNAVYPESLISRYGLDPVRYYLMRAIPFGADGSFTPEDFVERTNFDLANDLGNLLNRTVSMINQYQKGLVAPVDQEQDKYGQDLAAVAAKAISDYYGNMDKMHFSNALENVWQLISRANKYIDETTPWVLNKEGKTEELSRVMSNLAESLRLVAIMIAPVMTETPGKMFAQLGLDWEDESQKDLQFGGFAWDVNVVAKPTPIFPRLKNDEEVAYIKEEMKKAKPKKQSRREQKQEEKQITIDDFAKVKIQVGKILSVEPVKGSSKLLMFKLDFGKTGERQILSGIRKFYPDESILLGKKVLAVTNLKPRKMLGHESQGMLLSSEADGDVKLALVGDEHPVGAELG"]}}, {"location": "[292051:292831](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.96"], "codon_start": ["1"], "gene": ["dtd3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P73335"], "locus_tag": ["MAAAAKME_03020"], "product": ["D-aminoacyl-tRNA deacylase"], "transl_table": ["11"], "translation": ["MKIYDNHTHLNDKPFAGKEADYIQKARDLDVVGMNCVGQDPEMNLGALELAKRFANVKAIIGYCPDVAKDYDQAAEDLLVEQVKGGQVVAIGEIGLDYYWDESPRDVQRKVFARQIEVARDLQLPVNIHTRDAFADCWQILKEADLEYGAVLHSYNGGAEWTEKFLDLNVNFSFSGVVSFKKAAEVHESAKLVPLDRLLVETDAPFLTPVPYRGRQNEPGYVRYVAQAVADLKGLDLAEVAEATYANTMRIYGLNAEEF"]}}, {"location": "[292814:293387](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.8"], "codon_start": ["1"], "db_xref": ["COG:COG1658"], "gene": ["rnmV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37547"], "locus_tag": ["MAAAAKME_03030"], "product": ["Ribonuclease M5"], "transl_table": ["11"], "translation": ["MQKNFNAVVVVEGKDDTIRLKQFFPGIETVETNGSAVSDAVLAKLKKLAQSREIIVLTDPDVNGERIRRIVTEAVPTAKQAFITRKEGEPQKKGSLGVEHASKEALERALSDLREVQAQKADFDYGDYVDLSLAMGRQSRQLREAVGIKLGIGYANSKRFYQRLQTFGISLAELKQAVEEAENDQQNSNR"]}}, {"location": "[293361:294252](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.182"], "codon_start": ["1"], "db_xref": ["COG:COG0030"], "gene": ["rsmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37468"], "locus_tag": ["MAAAAKME_03040"], "product": ["Ribosomal RNA small subunit methyltransferase A"], "transl_table": ["11"], "translation": ["MTNRIPIASPVRTAAIVNRYFVHAKKNLGQNFLVDLDAVQGIVRAAGIEPGDQVVEVGPGIGSLTEQLLLAGGKVAAYEVDQSLPEILANELPEKVDGQDLDQRFKLIMKDVLKADFATDLAGFFDLSKPVKVVANLPYYITTPIIFNLLESSLDFTSLTLMMQKEVAERLAAQPGSKAYGPLSIAVQTQMSVDLALEVGHASFMPQPKVDSAVVVLTPLEKPADVGDRKQFNRVVKLCFAQRRKTLANNLKTLLPDKEDREKLLADLDLDPRQRPEQLAISDFIRISQAIAEMNK"]}}, {"location": "[294311:294563](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4466"], "gene": ["veg"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37466"], "locus_tag": ["MAAAAKME_03050"], "product": ["Protein Veg"], "transl_table": ["11"], "translation": ["MLINIQDIKQKLDAHLGEELTIVAQAGRKKVTRRRGILKNTFPAVFVVALDQDSNNFEHASYSYTDVLTKNILLEFDDESDAE"]}}, {"location": "[294668:295499](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0503"], "gene": ["purR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37551"], "locus_tag": ["MAAAAKME_03060"], "product": ["Pur operon repressor"], "transl_table": ["11"], "translation": ["MKRSERLVDMTKFLMERPHTLIALPFFAKRYGAAKSSISEDLAILKHTLASNEDGILETVAGAAGGVRYIPFLGQKPAEKYLKDLAGRIQDSSRILPGGFLYLSDILGGPYDLEMIGKLIATRYAYANIEAVMTVETRGISLANAVASYLNVPAVTARKRSKVTEGATVSVNYMSSSTSRVAKMELPTRALDKDTSVLIVDDFMKGGGTLDGMRQLVKEFDCQVAGVCVLCETEYEEERKIKDYVSLVNIDQIDSEKEIVLAQPGNFLTRTNFDRF"]}}, {"location": "[295560:296946](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1207"], "gene": ["glmU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97R46"], "locus_tag": ["MAAAAKME_03070"], "product": ["Bifunctional protein GlmU"], "transl_table": ["11"], "translation": ["MEKYVVVLAAGKGTRMKSKLYKVLHQVCGKAMVEHVVDAARAVKPSKIVTIVGHGAEDVEKVLAGKSEFVMQEEQLGTGHAVMQAEGQLAALEGATLVVTGDTPLFTSETFEKLFAYHEEEGNAATVLTAEAPDPFGYGRIIRDDQGNVLRIVEQKDGKPEELKVKEINTGVFCFDNQDLWAALKQVGNDNSQGEYYLTDVLEILRKAGKKVGAYKMPDFSESLGVNDRIALAEATRIMQRRINEGHMRDGVTFIDPATAYIDADVEIGNDTVIEGGVTIKVHTVIGSDCLITSGSRIVDSQIGNGVTVTSSTIEESIMEDNTDIGPNSHLRPKSLIKRGAHLGNFVEVKKAEIGENTKVGHLTYVGDATLGKDINVGCGVIFSNFDGVKKFHTTVGDKSFIGAGSTLVSPINVADHAFIAADSTITKDVGKYEMAIARGRQVNKKDYWHKLPLSEDEEWK"]}}, {"location": "[297115:297814](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFTKKIAFASASLALTLATPAALLTQNVAFAKTTTVKQATKVKVTKKTTPFYHKDGSKFTKKKPYVYGGWKSTVAYKNTSYNVVKTVTIKGAKYYYIGNDAYLKASDVKVTATKTVKSSSTSSAKKASTSSSKSSSKKTSSTSSSTSSSSSSKKTVTQIQVTKKTTPFYHKDGSKFTKKSPYVYQGWKSTVAYKGTKYKVSKTITIKGSKYYYIGNSAYLKASAVKVIASK"]}}, {"location": "[298043:299024](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.1"], "codon_start": ["1"], "db_xref": ["COG:COG0462"], "gene": ["prs_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14193"], "locus_tag": ["MAAAAKME_03090"], "product": ["Ribose-phosphate pyrophosphokinase"], "transl_table": ["11"], "translation": ["MSYKDNIKLFALNSNKPLAEKIAKRMGLKLSTSSVVRFSDGEIQVDIDDSVRGKDVFLIQSTSAPVNDNLMELLIMIDAVRRASAASVNIVLPYYGYARQDRKTRSREPITAKLVADMIQAAGADRVLSLDLHAPQIQGFFDIPVDNLMGAPLLADYFLSNHLEEDAVVVSPDHGGVTRARKLAEFLGTSIAIVDKRRPKANVAEVMNIIGDVKGKRAILIDDMIDTAGTITLAAQALKDAGATEVYACATHAVLSGPAADRLNNSVIKSLVLTDSIQQPAEKNLDKMILVSVGPLMGDAIKLIMEHKPMSPLFDTRYDANKYKDK"]}}, {"location": "[299095:300409](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01212"], "locus_tag": ["MAAAAKME_03100"], "product": ["Deoxyguanosinetriphosphate triphosphohydrolase-like protein"], "transl_table": ["11"], "translation": ["MTKFDSPKLAREVVVRDPVHGYIHLDTQVALEVVRSQEFQRMRRIKQLGPTAFVFPGATHTRFEHNLGVYELARRISNLFTDKYPSQSTGDGLWDPSENLLVQMAGLLHDIGHGPYSHTFEHLFGTNHEQIGQQIILDPSTEVNQALSKVDPDFPKAVASVIAKTYPNPQVVKLISSQADADRMDYLLRDAYFTGASYGEFDLSRILRVIRPYEKGVCFTANGMHAVEDYIVSRYQMYQQIYYHRVNRSMEVILHHLLKRAQYLYQEKELPVTPSLARFLAGTWDLQDYLKMDDGVMETNFSMWTESSDPVLVDLTKRYLFRRPLASAKINEESKQLLPQLKDLIKKAGFDPDYYTGVGSAFDEPYDAYKPSGKNANSQIEIMQEDGSLIELSQLSPLVKALNGTLQGDERFFFPVAMLKQADFQQYLKNGESLTKK"]}}, {"location": "[300548:300947](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKIKIDLTSKITQGEQTETIRQQAEGELREDGAVKRIFYEAEKVPVKMLVKEQELLIRRGTDHSNFSQMHFILGEKGQCKYVVEGRQLDLLSETKRLELKENAAGQQLEVEYDLFSGVDLIGSYAVSLIFA"]}}, {"location": "[300992:301562](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpoE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00357"], "locus_tag": ["MAAAAKME_03120"], "product": ["DNA-directed RNA polymerase subunit delta"], "transl_table": ["11"], "translation": ["MGLADFKDVDRNELSMIEVAHAILEDRGERMAFADIVNEVQKYLNKSDEEIRQRLPQFYTDMNTDGRFISMGENVWALRTWFKFEAVDEEVDHPEDDGDEESTRKHHKKVNAFLATTEGDDVIDYENDDPEDEDLSDDSDADEDDADDNSGDDYDDNEDDDDDDSLLDGIEDQLSQMDDDDLDDDEDEE"]}}, {"location": "[301678:303298](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.2"], "codon_start": ["1"], "db_xref": ["COG:COG0504"], "gene": ["pyrG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O87761"], "locus_tag": ["MAAAAKME_03130"], "product": ["CTP synthase"], "transl_table": ["11"], "translation": ["MTKYIFVTGGVVSSLGKGITASSIGRLLKNRGLKVTMQKFDPYINIDPGTMNPYQHGEVFVTDDGTEADLDLGHYERLVDVRTSKYSNVTTGKIYQEVLQRERRGDYHGGTVQVIPHVTNMIKEKVMRAAQMTDTDVVISEIGGTVGDMESTPFMEAIRQMRREVGSENVMYVHVTFVPYLRAAKELKSKPTQQSVSMLRSIGIQPNMLVLRSEMPVPQEMKDKISTFTDVPVDYIVESLDAPSLFDVPLSYQEQGVDQKVVDFLHIDSPKPVADMDEWRRMDERAKNLKYKTKITLVGKYVELEDAYISVTDALHHAGYLYNSKIEVEKIQAEDITEDNVAELLKDTQGLIVPGGFGTRGLDGMITSIKYAREHDIPFLGICLGMQMASVEFARNVLHLEDANSAEAEPNCKNNIIDLMADQRDQEKIGGTLRLGLYPAMLKAGTKTRECYDGQEVIQERHRHRYEFNNKYREDFEKAGMTFSGISPDNHLVEIVEITDKKFFVAAQYHPEFLSRPNRPEGLFKGFIGAASGLQVDKF"]}}, {"location": "[303417:304689](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.7"], "codon_start": ["1"], "gene": ["murA1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H2ZNL3"], "locus_tag": ["MAAAAKME_03140"], "product": ["UDP-N-acetylglucosamine 1-carboxyvinyltransferase"], "transl_table": ["11"], "translation": ["MKKMIIHGGKPLQGDIWIGGAKNSTVALIPASILSRTPVTLESVPRIADVDNLMDLLSEMDVHCDFRETTLQIDPTEIKMSPLPAGKIKSLRASYYFMGALLGRFGKAVVGFPGGDDIGPRPIDQHIMGFQSLGADVRCENEQIVITAPDEGLKGAKIHLKMASVGATMNIIMASVTASGRTVIENAAKEPEIIDLATFLNNMGAKIRGAGTDTIRIDGVDRLEAKVPHTIIPDRIEAGTYISMAACIGNGIRIHNIIAEHLDAFLAKVEEMGVVIDTDEDSLFVYPAGDLRMVQVKTGTYPGFATDLQQPITPLLLTAKTGEGVIIDPIYPKRTRHVPELQKMGAPITVVNNIILVQPGSRLHGAVVHADEIRAGACLMLTGLMVDGETVINNAGNILRGYDRVEEKLRQLGADVVIRDVED"]}}, {"location": "[304788:305040](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0254"], "gene": ["rpmE2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTN5"], "locus_tag": ["MAAAAKME_03150"], "product": ["50S ribosomal protein L31 type B"], "transl_table": ["11"], "translation": ["MKKGIHPDYQEVCFMDAATGFKFVAGSTLKSSETVEFEGNTYPLIRVEISSDSHPFYTGKQKFAAADGRIERFNKKYGFNKKN"]}}, {"location": "[305147:306515](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0770"], "gene": ["murF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P11880"], "locus_tag": ["MAAAAKME_03160"], "product": ["UDP-N-acetylmuramoyl-tripeptide--D-alanyl-D- alanine ligase"], "transl_table": ["11"], "translation": ["MKMQLAEIAQALNTSCEGDAETVITSVAFDSRKISQGALFIPIKGERDGHDFVGSAIEAGASATLWEAGNPNKPEGIAVLEVADTLKAMQDLARYYLQKVNPTVVSITGSNGKTTTKDMVAAVLAKRFNVYKTQANFNNEIGVPMTILEMKPITEILVLEMGMDRAGQLHELSQLARPDVAVITMIGEAHIEFFGSRDKIADAKMEITDFLQEDGEFIYNGDEPLLAERAAKLPQDKSTFGFADSDSIHASDLRSTMHHSFFKINGTDREFSIPMIGRHNVANAMAAILVGRHFGESDEEIAAGLANFVPTANRMEWEKGDCGEDIMSDIYNSNPTAVKAVTASFGQVPVSEDGRRIAVLADMLELGSRSADLHKGLAACLDPDKINVLYLYGPEMNHLYQALLDKYGQQNLHYYPEDEMSHLIDDLKSDIHSQDIVLLKGSHGMHLERVLDRLK"]}}, {"location": "[306524:307976](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0513"], "gene": ["cshA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y8N0"], "locus_tag": ["MAAAAKME_03170"], "product": ["ATP-dependent RNA helicase CshA"], "transl_table": ["11"], "translation": ["MKFTELGLNDNILKAIKRSGFEEATPIQAQTIPLALAGQDVIGQAQTGTGKTAAFGLPILQKLDLDKQEQAIQAIVIEPTRELAIQTQEELFRLGRDEKAKVQVVYGGADIGRQIRDLKKVPEILVGTPGRLLDHLKRKTIKLDGVKTVVLDEADEMLDMGFIQDIESILTYAENRDQTLLFSATMPKPIQALGEKFMHDPQVVKIQAKQLTADLIDQYFVRVRENEKFDTMCRLIDVENPDLAVVFGRTKRRVDELTRGLVARGYNAAGIHGDLTQARRMQVLKRFKEGELDILVATDVAARGLDISGVTHVYNYDIPQDPDSYVHRIGRTGRAGKSGMSVTFVTPNEIGYMRTIEDLTKKKMSPLRPPTDAQAFAGQMKQAVLKVDDLLSGDLSKYDDAAEKLLENYSAEDIAAALLKELSNDSEVKVTITPENPHPYRGKHSGGRGRGSRSRSGNKNFKGKRNFDRKKRKPGFKIHGRKG"]}}, {"location": "[308060:308474](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.7"], "codon_start": ["1"], "db_xref": ["COG:COG0736"], "gene": ["acpS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A2W7"], "locus_tag": ["MAAAAKME_03180"], "product": ["Holo-[acyl-carrier-protein] synthase"], "transl_table": ["11"], "translation": ["MIKNIGVDQIEVDRIAKVVDRGDGFARKVLTDREFAQYQDLTHKRKIEYLGGRFAIKEAFSKAWGTGIGQAVSFEDVETLRTESGAPVTTSRIFTGRIFSSIAHDDHEIVAVVVLEEPAGWRRAIGKLLHLLSGRKK"]}}, {"location": "[308470:309601](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.1"], "codon_start": ["1"], "gene": ["alr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S5V6"], "locus_tag": ["MAAAAKME_03190"], "product": ["Alanine racemase"], "transl_table": ["11"], "translation": ["MITAVNRPAALHINLAAIKENTRQAKAHLKPGQKLFCVVKANAYGHGAARLAPVMEEAGADGFCVAMLDEGLELRRAQIVKPILVLGLQPAEEAALAAANDISLPVSSLDWLKKAEKVLRKEGLQLKIHLAIDSGMGRIGFSEDEDFKAVNEYLQGNDAFFVEGMFTHFASADSADASYFDYQVKRFKHMESLLTVKPKWIHVDNTAAILFDKDVASDIVRFGIGLYGLNPSSAPGSRDLEPAFALKPAMSFVSELTYVKQIHKGYGVGYGSTHIAEEDEWIGTVPVGYADGWIRKFQGFKVKVGDTYCPIVGRVCMDQFMVLLPKEVPAGTPVELISADPAAPNSLRRAADWLDTIHYEVACQFNDRLDRIYDNE"]}}, {"location": "[309654:310353](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLIKSLVIKKDYLTTVNEHATLEEALKVLESSGYRCVPILDDSGKIFRGNIYKMHIYRHKSQGGDMSLPVTYLLKNATKTIKINAPFFQVFFTIKDLPYIAVLDTDNTFYGILTHARLLDMLSSAWNIKTGAYVLTVLSTNDSGNLTKMTKIIAKFVNLAGAMTLDAPASEFDGKYVRRTLFTLPQGTTETELKAICKKLKAKGFPVVAVEDLAAGMNIMSEEKPGVFLNEE"]}}, {"location": "[310576:311134](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.29"], "codon_start": ["1"], "gene": ["pth"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:B5XIP6"], "locus_tag": ["MAAAAKME_03210"], "product": ["Peptidyl-tRNA hydrolase"], "transl_table": ["11"], "translation": ["MKLIVALGNPGLKYEKTKHNTGFMALDHYLDEKGLRLDRDKFTALYAKEKVAGEDVIFMEPQTYMNESGRAVGAAAKFFKIDPSDILVIHDDMDMPIAKLRIRAGGKSGGHNGIKSIIACLGTEKFNRLKIGIRHPDKQSVVSWVLTPFNPDQQKELEASFAKVDQIIDDFIAGKDAQYLMNRYN"]}}, {"location": "[311150:314627](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "gene": ["mfd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A7B2"], "locus_tag": ["MAAAAKME_03220"], "product": ["Transcription-repair-coupling factor"], "transl_table": ["11"], "translation": ["MQVIDFLKKDQGVTAFIAKTSRIKNSLLTGVERGAFAVLIQAYLAQVGQPLLLIEENEYKAQERHNDLSRLLADDDLELFVLDGNLATQTAVSSPDELSSRIQCLNLLLSGRPGVVIATPQGLQYPLSAPALFKKGQKHFAVGDEIALPDLAQWLNQAGYHRENLVVKPGEFAMRGDIVDLYPLDRESPLRLEFFGDEIDTIKTFDLTSQRSLEELPEATVPAASDHVFTAEDLDRAGRELAGDLPKEAAASLEIAQEALANGQLPDDCNRYLDYLLSKSFSLLDYLPAKGLLLFNDWQLIAESVKNMGAINDDYLASQIASKMMTSRQKLRLDFDAVLKADCHHRLYVSLMAHSMGRLRFGQHLAWDSREPQQFFSQMELLKTELDSYAKKGQTVVLQVSSRRQAEEFNRSCHDYDIYLPLAEADGLKEGRAQLVIGGYASGFVLPDSDLVYLTEKELFNQNKRSKKRIKTLENAQRLRSYTELKPGDYVVHVNHGIGRFEGIQTLETDGKKRDYITITYQKGDQLFVPDDQLSLVQKYVASEGKQPHINKLGGSEWAKTKKRVAARVEDIADDLIELYAKREAEKGFAFSPDGSDQAAFEAAFPYEPTPDQLRATAEIKADMEKAKPMDRLLVGDVGFGKTEVAMRAAFKAICDGKQVAFLVPTTILAQQHYQTIKDRFKGFPVEIASFSRFQGQAESKKIVAGLKDGSIDLVVGTHRILSKDVQLKDLGLLIIDEEQRFGVAHKEKLKQLKTNIDVLTLTATPIPRTLHMSMIGIRDLSVMETPPQNRYPIQTYVLEQLPGTVKEACQREMQRGGQVFYLHNRVGDIEETVARLEQLLPEARIAYAHGQMSENQLEDILSRFLDREFDILVTTTIIETGIDMPNVNTMIIEDADHYGLSQLYQLRGRIGRSARLAYAYFLYQPNKVLTEVGEKRLDAIRDFTELGAGFKIAMRDLSIRGAGNMLGAQQHGFIDSVGYDLYSQMLADAIKERQGKKPVKKSNAEVDLGLEAYIPEDYIADQEQKIEFYKKIKGIGSLQNREDIEDELLDRFGDYPAAVENLLNVASLKASCDLAQILTLVKEKAQIRVIFSDSGSREMEGPNIFKALEHVSWKARIALGAQNRLVVTLLLPDKLTRRAMFTELGTFAKDAAEIIQR"]}}, {"location": "[314695:314938](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIDKFLKISRLVKRRTVAKEMADQGRVSVNGKTVKSSYNVVVGDVIAVAYGTRVIKARVLDLRETTKKAEAGDLYELVD"]}}, {"location": "[315003:315384](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsL_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00910"], "locus_tag": ["MAAAAKME_03240"], "product": ["Cell division protein FtsL"], "transl_table": ["11"], "translation": ["MGNNRGNQQNVTPLRPDQDVRRLKKRQIKFREVHRVRRNRLLALILLVFAVLGFQLAMTKARTAKIQKQVSQNQATLTKIKKNKEKLTNERDDMKDSDYVAKVIRYKYKYTKDGERVYNIKEKGDN"]}}, {"location": "[315383:315737](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.8"], "codon_start": ["1"], "gene": ["pnp"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01595"], "locus_tag": ["MAAAAKME_03250"], "product": ["Polyribonucleotide nucleotidyltransferase"], "transl_table": ["11"], "translation": ["MNYKVGQRLDGVINNVTDLGIFVTLPKHKSGLVHRNDFGSDWPRKRQHWQAGDQVRVVVQNLRKGRLDLSIRRVNDPDLIDPTNQFSQLRAGDFARVLNQVDQEARAEIEQLEAALK"]}}, {"location": "[315783:317079](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.19"], "codon_start": ["1"], "gene": ["tilS"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01161"], "locus_tag": ["MAAAAKME_03260"], "product": ["tRNA(Ile)-lysidine synthase"], "transl_table": ["11"], "translation": ["MDIKKRLSAFFAEEGLPLEGNFLVAASGGPDSMALLDLMRRLPGGFQLYAAHLDHQLRADSQKESQVLRAYCHKYQLPLYESVWPKSLHPESGLEAAARDYRYNFLFEVARQVKADYLLTAHHGDDLLENILLKLVRSGIPREMNSLKPVSQRGQVKLVRPLLAVGKADLLAYAKKQGLEYVEDETNFTGITARNRLRQEVVPLLKKESPDLLENAWRFSQEMTAEEDYFAQAAGKLPEPEPFFGGWRIPKAAGQAESELVKAYLENFIQKKYNKRVQLDRILLANRQSQEKGGLHLSFYQGHYWLYPVKQPAPSPLEEVVAGQPFFFRGNCYLLSEEKREESPLAEISFPGKLSAGSLPNGQRLLLKDGRRTKSKKLFAAAGIPLALRGNCLSLFAGQEAVYVAGCYQQAVKEGKRPLYLYQVKTCKKGR"]}}, {"location": "[317149:319363](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG0465"], "gene": ["ftsH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q88Z31"], "locus_tag": ["MAAAAKME_03270"], "product": ["ATP-dependent zinc metalloprotease FtsH"], "transl_table": ["11"], "translation": ["MKNNRNRLFSNGLFYIVVFLLLLWGINWVLGGSSNSGATETISYSEFVKKLRNGEIKDFNVQPSNGVYSVTGSYKSSQTKSSSSSDIFGGNTSSKVTGFSTTMLENDPSVKKVQDLAQSENVKMSTQGESQSSNWISTIIMLVPTVLFIVLMVMMMNQGGSRGQGGGIMNFGRSNVKPQDPKKNKVRFDDVAGEEEEKQELVEVVEFLKNPARYTKLGARIPSGVLLEGPPGTGKTLLAKAVAGEAGVPFFYISGSDFVEMFVGVGASRVRDLFTNAKKNAPSIIFIDEIDAIGRKRGNGQGGSNDEREQTLNQMLVEMDGFEGDEGVIVMAATNRSDVLDPALTRPGRFDRKVLVGPPDVKGREAILRVHAKNKPLADDVDLKEVARQTPGFVGADLENVLNEAALVAARRNGTKITAADIDEAEDRVIAGPAKKDRMISKKERERVAFHEAGHSICGLVLSDSRTVRKVTIVPRGRAGGYNIMLPKDDQFILTKKQLFEQIVGLMGGRAGEEVVVGDQSTGASNDFEQATTIARSMVVNYGMTDELGMVELEKEGEGTPYGFKPYSEATAAKIDEAVKKILDEAHAKAVEIVENNREKHRIIAEALLKYETLDEKQIYSLYKTGKMPEKSSEEFPSEAKALSYEEAKEAAQKRAEEKAEEDTAEKQALATPSEDAVKPETDAAKLAEPDASASQEDPVDSLPTPSESDLSKDPEKDDNDAPSQKTEQTDDSDKDE"]}}, {"location": "[319407:320289](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hslO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99082"], "locus_tag": ["MAAAAKME_03280"], "product": ["33 kDa chaperonin"], "transl_table": ["11"], "translation": ["MNDYLIKAINASKDLRLLTINGKDLVAEAQKRHDTWSASSAVLGRSLLGTLLLAGAELKGDQELTLRLLGDGPVGAAVVTAKSDLTVKGYVQNNHVALPAREDGHIDVKKAVGKGWLQVTKDLGLKQPYTGEVPIVSGEIAEDLTYYLAKSEQIPSAVGLSVFVNPNDTIGAAGGFLLQALPGASEELLQETEDRIKALPQLSSAFLDGMTPEDLAKKILGDDCKILEKDEVSYHCDCSKEKYAGMLETLKGSQLKEMIDEDHGAELVCNFCGNKYNFTEAELQAILDKKLGK"]}}, {"location": "[320742:322368](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_03290"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MTLKKITAAGLLTASALVLAACGQQKSSQSQTKQVLNWIESAQISTQDPSLTTDSTSFQALLNTQEGLYRLDKKQKPQLALAKSAKVTDGGKTYTFVLRDAKWSNGQAITANDFVYSYRRSLNPKTKSSMAFYLYQIVNAEAINAGKKPVSSLGVKALSKNKLQIKLVRPVSYFKLLLAFPLFFPENQQFIEKVGSKYGTAAKYTISSGPFKLTKWTGSNKQFTLVKNQNYWDKKNVKLDKVNETISETSSTAYNLYQAGKLDETYLTGEQVKANKGKSTFYDQPASAIQRLELNRKKVKAFNNFNIRRALSLAIDRESLAKVLSDGSVAAKGFVPSGMGNNPTTGEAFYKEAYVKEAVSYNLKEAKKYLAKGYKELGIKSLNLNLTVSDTDSAKQVGEFLQSKLGELPGVKITVTILPYTTLISRQSAGNYQLTIKNWQAILGDPINFLDVFEKDSSYNTSGFASSKYDQLLNEAENVYGNKPVQRWKRLVAAEKLLMNEQGTIPLIQTAKPQLVQSYVKNVSYNPLGIPYDFKLVYIKK"]}}, {"location": "[322377:323664](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.4"], "codon_start": ["1"], "db_xref": ["COG:COG2195"], "gene": ["pepT_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81WU4"], "locus_tag": ["MAAAAKME_03300"], "product": ["Peptidase T"], "transl_table": ["11"], "translation": ["MAFSDFDFLEKNFIHYAKEDTQSKYANKDQVPTTPNQVKMMKELADQVKDYDLESYYNEKTAFAIGHLAANTAGVAPIGFFAHVDTVEFDDRFPIRPQVHRDYQGQKLALDEANGIFLDPEEFPDLLTLKGQTLITSDGKTVLGTDDKAGVAGLLAALKYLHEHPEVEHGDIYVAFGPDEEIGLGGQRFDPADFPGVEFAYTLDNGRPGDFEYETFNASAADLTIKGTVVHPGEAYGLLVNATTIMTEFLAALPQDQVPEKSRGHEGFIMVTDAQSSVDSAHVGLIIRDFDWDEFLAKEDLVKKLVASLGEKYGPDRFQLDLRRQYENIYNGVKDRPYVVNLALDSYEKAGLAPNVQTFRGGTDGNFITKKGIPTPNLFNGGGNYHGRYEYVTVEQMDKLAEVLVTIADEHARQSKEGQDKRPLEKYW"]}}, {"location": "[323777:324812](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0042"], "gene": ["dusB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0ABT5"], "locus_tag": ["MAAAAKME_03310"], "product": ["tRNA-dihydrouridine synthase B"], "transl_table": ["11"], "translation": ["MAMDTTWKIREIEIPNRVMVAPMAGVSNMAFRKVCKEFGAGMVVCEMISDHGIIYGNKKTLSMLDVDPGEHPMSIQIFGGAEDSLLQAAQYIDQHTDADIIDINMGCPVPKVTKTDAGSKWLLDSNKIYQMIHKVVHNVEKPVSVKMRIGWDRKHIFAVENALAAQEAGASMLAMHGRTRKQMYQGEADWETLHEVAQVMDIPFVANGDITTPQLAKKALDEIGCTAVMVGRAALGNPWILKEMTHYLATGEELPKQSVREKVETAKHQLDGLVQLHGEKRAVPEFRQQAAYYLKGIPRSARTRAKINEVWTRQEVFDLLDEFVEICEKRARQKQDRVADTQSM"]}}, {"location": "[324828:326334](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.6"], "codon_start": ["1"], "db_xref": ["COG:COG1190"], "gene": ["lysS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97RS9"], "locus_tag": ["MAAAAKME_03320"], "product": ["Lysine--tRNA ligase"], "transl_table": ["11"], "translation": ["MAKNEINDQLLVRRQKLEELKEMGIEPFGRKYDREALARDLDEKYLGLDKDELNANMPKTKIAGRMLAKRGKGKVGFADLYDRSGKIQIYVRKDMVGEENYQIFKKADLGDFLGVEGEVFKTDSGELSVRAQHVTFLSKALRPLPDKYHGLKDVESIYRQRYLDLITNHESYQRFVNRTKIIQAIRDYLNGQDFLEVETPVLHNIPGGAEARPFITHHNALDINLYMRIALELPLKRLIVGDMERVYEIGRVFRNEGMDLKHNPEFTELETYAAYYDFHDVMDEAEGIIRAAAKVVSEDGKINYQGTDLDLGKPFRRVHMVDLIKELTGVDFWQPMTLEEARKVAAEHHVEVEPYWQVGHIINAFFEKFGEKTIVDPTFVYGHPVEVSPLAKKNADDPRFTDRFEIFIMGNEYGNAFSELNDPLDQRERFEAQMAERDAGNDEADIIDEDYLRAMEYGMPPTGGLGIGIDRLVMLLTNAASIRDVLLFPTMRPEKNINLDK"]}}, {"location": "[326455:326890](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRAAIRKGEFLPIYKYLLSILTTISALAGAFLAASSGLPAYLAGHPLKAGIFAVLCLLEGLSAYLLWRPGKRALGVLNGGLLAAALLLFWQGEGLAAGSALALLAINYLLKREETWAWTLALVLNLVFAALTMLPHQFMSFPAA"]}}, {"location": "[326907:327663](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLDKINYYGVSRADYQACQEQIDRHATTYLVFVVLVAVLLTDKFWTTGAFYLAMLLVFSFCSYYFKGPIMWELDSFNGLTFTLVALALNYIVQRERIASFLLFNKYKENQRELRVQANFDYLSGVILRSTFMDLSQKAIEQPECTDFFIGLVDIDYFKQINDNYGRRMGDLAIQRLSQCLEKGLEVDYRDLADFVEKFDPAKDNVLARLGSDEFVFACHCPSEAACLEKMQGLQAAFAKEEIALDGQRLS"]}}, {"location": "[327928:328147](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISWFLFALFSKKRIDIFPKASILKTKLKTDEERRTEMEFAAKNCQMQVMPMNMLMSSMPFSVEANTCGSPS"]}}, {"location": "[328410:328572](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.-"], "codon_start": ["1"], "gene": ["metZ"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02056"], "locus_tag": ["MAAAAKME_03360"], "product": ["O-succinylhomoserine sulfhydrylase"], "transl_table": ["11"], "translation": ["MSKEAISNEGLSFETLQVHAGQPIDETGARAVPIYQTTSYVFDDADQAAGPLP"]}}, {"location": "[328528:329701](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG2873"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WZY4"], "locus_tag": ["MAAAAKME_03370"], "product": ["O-acetyl-L-homoserine sulfhydrylase"], "transl_table": ["11"], "translation": ["MSLTTLTRQLALCLDRRLQHLQPFDNPTTAVFESRVAALEGGTGGVSLATGAAAITAAILNVAGAGDEIVAASTICGGTYDLFAQTLPPLGIKTHFVDPSDPANFEKEINDHTKVGYAETIGNPNANLIDIDAVAAVAHKHGVLVIIDNTFATPYLYRPFEHGADVVVHSATKFFGGHGTTMGGVVVESGKFDYEKSGRYPTFTNPDPSYKDVTWAKLGAGAFTTKIRATVLRDTGASLSPFNAFLLLQGLESLSLRVERHVYNAQRVSEYLSKHPKVAWVRYPGLADSPDHAMAERDFPKGVGSIFPFGLKGGEEAGKQLIDNLKLFSLLANVADAKSLIIQPASTTHAQLNGEELASVGITPDLIRISVGVENIDDLLADLDQALAKL"]}}, {"location": "[329763:330372](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKKRLLAACLALALLPLLSSCSMISDYTLDLKSKLVGIPFTVSTYDYDGQKIDQIKGKSVYIETYKPMSKENSSGDEQSKVIDVEFGGQQMIHVGSSLIANEGLRNYEDTFSKKVTITDKQRSIPVLSIMYNNFRNDWLSKGKVIMIRSQAGKPIAVYAGNKVRVSATDMPSTTQINVDGHRLFIYRCDYSIYDMETIKKM"]}}, {"location": "[330507:330579](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03390"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[330582:330658](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03400"], "note": ["tRNA-Pro(cgg)"], "product": ["tRNA-Pro"]}}, {"location": "[330765:330837](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03410"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[330995:331457](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.4.14"], "codon_start": ["1"], "db_xref": ["COG:COG1956"], "gene": ["msrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76270"], "locus_tag": ["MAAAAKME_03420"], "product": ["Free methionine-R-sulfoxide reductase"], "transl_table": ["11"], "translation": ["MAAASQAEYELLLEQAKALTAGESDWIANAGNVSALLKAGMRNVNFAGVYRFEKGELILGPFQGMPACVHIQLGKGVCGKAALEKKTQIVANVHDFPGHIACDSASNSEIVVPVFNRDGSLWGVYDFDSTNLDNFDDLDQKYLEQIAAVALGN"]}}, {"location": "[331480:333940](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["clpC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A797"], "locus_tag": ["MAAAAKME_03430"], "product": ["ATP-dependent Clp protease ATP-binding subunit ClpC"], "transl_table": ["11"], "translation": ["MQNSYSKSSRQVLEIAQEQAKEFHHRLVGTEHVLLALVIEADGKAGKILRTMNVTPTGVREEIERYTDYGSAAPTSYMEFSPRLTLALDYAKRNSELRSSKEIETTDILQALVSSEQILSAMILRNLDVDLENLKDELDDANQVTGESSQTSRPDAAGSSQSQTPILDRFGIDLNRRAKEGDIDPVIGRQRELDRVIHILSRRTKNNPLLVGEPGVGKTAVAEALASAIVAKKVPRDLADKRVVSLDVNSMVAGTRYRGEFEERMDRLIKEVTASKNVILFVDEIHSLVKAGDAEGAMSASNTLKPALARGDIQLIGATTFEEYRKHMEKDSAFVRRFQLVRLAEPNEEETLQILHGIKDKYEDYHRVALSEEALQAAVDLSSHYIADRYQPDKAIDLIDEASAAVKLANDTGEDKDLAEIDLEISRTLKQKNDEAAKQNFAQAAKLRDQEIALRQKRNEIAKKLAGKDEKRSVVGAEDVAKVVSIWTGVPVTQLKTSENKRLAHLEGILHERVIGQDDAVKAVANAIRRSRSGLKDENRPIGSFLFLGPTGVGKTELAKAVAEAVFGSEDNIIRVDMSEYMDRESSSKLIGSAPGYVGYEEGGQLSNKVREHPYSVVLFDEVEKANPEIFNVLLRVLDEGFMTDSLGRKVDFRNTIIIMTSNLGSRSLEADSHVGFSASQEDQGKLIAEKVTRATKDFFRPEFLNRIDEKIVFKPLEAKQLRKIVTLLTRKLVKRLAEKDITLRLSPAALDQLAKDGYNPEMGARPLRRTIQDEVEDELAQDLVSEKLQAGDTVKIGARGGKLRFEIVKAKTGEKIKG"]}}, {"location": "[333964:334153](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFGKKNKAEAAKAEKEASKKTDGRILLYSDIIDALYDEMPRESGRPCWKLSSSWNRRSTWAR"]}}, {"location": "[334152:334308](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRDLRIALEPVAIKSQLSPQGKQIFWNITAGGYQLTGVGLASQAAMLFSGR"]}}, {"location": "[334509:338184](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "db_xref": ["COG:COG0085"], "gene": ["rpoB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37870"], "locus_tag": ["MAAAAKME_03460"], "product": ["DNA-directed RNA polymerase subunit beta"], "transl_table": ["11"], "translation": ["MFSLLNGHVVNYGQHRTRRSFSRIKEILPLPNLTDVQTESYKWFLDEGVKEVFDDILPISDTSGRLTLEYVDYKLQEPKYTVDESRKHDATYSAPMHVTLKLTNHETGEIKTQDVFFGDLPLMTKSGSFIVNGAERVIVSQLVRSPGVYYSGEFDKNGRQIFGTTVIPNRGAWLEFETDAKNISYVRVDRTRKLPLSVLVRALGFGSDSEIKEIFGDSDTLDLTLDKDVHKNPADSRVAEALKDIYDRLRPGEPKTTDSSRSLLVSRFFDPRRYDLAAVGRYKVNKKLSLKNRLLGYTLAETLADPGTGEVLAAKGTVVNNEVMDVLKDYLDRDDFKTVTYTPSDEGVIPEPVTVQEIKVFSREIPDREIKLISNGHIAEDVKCITPADIIASVNYFLELQEGVGNIDDIDHLGNRRIRRVGELLQNQMRIGLARMERVVRERMSIQDAATVTPQQLINIRPIVGSIKEFFGSSQLSQFMDQNNPLGELTHKRRMSALGPGGLSRDRAGYEVRDVHYTHYGRLCPIETPEGPNIGLINSMATYAIINKYGFLETPYRRVSWATHKVTDKIDYLTADEEDNYIIAGANTPLNEDGSFVDDVILCRHREDNVEVSPDRIDYIDVIPKQVVSVTSACIPFLENDDSNRALMGANHQRQAVPLINPHGPLVATGMEYRAGHDSGDALLAEADGEVEYVDANEIRVRREDQTLDTYTLEKYRRSNATKNYNQTPNVKRGDKVVDGQVIANGPSMADGELALGQNPVIAFTTWNMYNFEDAIMLSERLVKEDVYTSIHIEDYDSEARDTKLGPEEITREIPNVGEDALKDLDENGIIRIGAEVHDGDILVGKVTPKGITELSAEERLLHAIFGEKAREVRDTSLRVPHGGGGVVQDVQVFTREAGDELAPGVNTLVRVYIVQKRKIQVGDKMSGRHGNKGTVALIAPVEDMPYLPDGTPVDICLNPMGVPSRMNIGQLLEIHLGRAARALGIHVATPVFDGASEDDVWDFVREAGVDSDGKTVLYDGRTGEPFHNRVSVGVMYYLKLTHMVDDKIHARSIGPYSLVTQQPLGGKAQFGGQRFGEMEVWALEAYGAAYTLQEILTYKSDDVVGRVKAYEAIVKGERITKPGVPESFRVLVKELQSLGLDLRVLDSDENEVELRDMDEDSNEHVNIDALSRLAEAQEKKKLAEEEAEIAAEAEAEGSAEGDAAEADADANEAETADDDKASK"]}}, {"location": "[338199:341865](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "db_xref": ["COG:COG0086"], "gene": ["rpoC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37871"], "locus_tag": ["MAAAAKME_03470"], "product": ["DNA-directed RNA polymerase subunit beta'"], "transl_table": ["11"], "translation": ["MIDVNKFESMQIGLASPNKIRSWSYGEVKKPETINYRTLKPEKDGLFDERIFGPTKDYACACGKYKGVRYKGIVCDRCGVEVTTSHVRRERMGHIELAAPVTHIWYFKGIPSRMGLVLDVSPKQLEEVIYFAAYIVIDPGDTGLEAKQLLTEAEYREEKAKYGNRFVAKMGAEAIRDLLKQVDLDKEVTALKAELQTLKGQKRTRAIRRLDILDAFRNSGNKPEWMVMETVPVIPPDLRPMVQLEGGRFATSDLNDLYRRVINRNNRLKKLLDMHAPGLIVQNEERMLQEAVDALIDNGRRGRPVVGPGNRPLKSISHMLKGKQGRFRQNLLGKRVDYSGRSVIDVSPELKFYQCGVPRPMALELFRPFVMRELVRRGIASNIKNAKRKIDREDDDIWDVLEYVIKERPVLLNRAPTLHRLSIQAFEPVLVPGKALRLHPLACEAYNADFDGDQMAIHVPLSDEAVAESRLLMLAAHHILTPKDGTPIVTPSQDIVLGNYWLTQAEIGREGEGMIFATPEEATIAYNNGDIHYHTIIGVSAASMPKKDWGAGHEDSVFVTTYGRLVFNSLFPDDYFYINEPTQDNLKQPMADKYFLEDGQDIQDKIAEIGQDLVATPFKKGFLGDTISEIYKRYRVQRTSEYLDDLKEMGYSASTISGLTIGMADIPETKTKDALVAEARKQVKQVSKMFRRGKLSDKERHDNIIKIWTDCKDAVQQEIAEFKDQKNPISVMQQSGARGNISNFTQLAGMRGLMATPSGELFEIPVISNFKEGLTVLELFMSTHGARKGMTDTALKTAQSGYLTRRLVDVAQDVIIREDDCGTDRGITAKAIVDKDAGLIESLYDRLVGRFTNRTIRDPQTGEVICSKGVLMDEQMAQKIVDAGVQEVQIRSILTCNTSHGICRKCYGRNLATAEEVEIGEAVGTVAAQSIGEPGTQLTLRTFHTGGVAGAEDITQGLPRVQELFEARNPKGRAVISEVDGVVDKIESNAAEHLQEITVKGKIDTRVYTIPYTAKPAVQEGDEIHRGDKLIPGSIDPKELIKVTDTLTTEEYILAEVQKSYRTQGVDLADKHAEVLTRQMLQKVRVLDPGETDILPGEVMDIAEFRDRNRDVIISGGIPATAQAYILGITKAALETNSFLSAASFQETTRVLTDASIRGKNDPLLGLKENVIIGKIIPAGTGMPIYRDQVPKADVQQPDSVYSIADLEKKMEDENKETESK"]}}, {"location": "[341932:342493](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSEMISLLCGLLAALIADRYRYNTFLECKSRLADDIPYIILTGNLLVYLISNSRSSAISLLFIINFFLMVVSDLHEQSFDTCLLVVPLATGLMHFFQASNTEGLGQAAIFLAVLVWLAFTGKMGSGDVWHFLLLSLNFSCPVAVKSFLLASLLAIAHALWHKRPGKDPFAFLPYLFWGLNLQFFL"]}}, {"location": "[342676:342787](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNELGIKGEDQYAVTLNGAISRKASGEIMTSDLIAN"]}}, {"location": "[342783:342945](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKLVAIDTDGTLLNSQGEIQDSTKEAISKALDRGVKVRPLFRPANRGPWPLT"]}}, {"location": "[343208:343616](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0048"], "gene": ["rpsL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RP74"], "locus_tag": ["MAAAAKME_03510"], "product": ["30S ribosomal protein S12"], "transl_table": ["11"], "translation": ["MPTINQLVRKGRHSKTTKSKSPALNYSYNSMKKEQVFNPAPQMRGVATRVGTMTPKKPNSALRKYARVRLSNLTEVTAYIPGEGHNLQEHSVVLIRGGRVKDLPGVRYHIVRGALDTAGVDGRKQARSKYGAKKG"]}}, {"location": "[343631:344102](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22744"], "locus_tag": ["MAAAAKME_03520"], "product": ["30S ribosomal protein S7"], "transl_table": ["11"], "translation": ["MPRKGHVSKRDVLADPVYNSKLVTKLINHLMKDGKRAQASSILYDAFDIIKDKTGREPMDVFEEAMNNVKPVLEVKARRIGGSNYQVPVEVRPERQTTLALRWLVSYSRLRNEHTMDERLANELIDASNNTGSAVKKREDVHRMAEANRAFAHYRF"]}}, {"location": "[344135:346220](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0480"], "gene": ["fusA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80868"], "locus_tag": ["MAAAAKME_03530"], "product": ["Elongation factor G"], "transl_table": ["11"], "translation": ["MANKREFSLEKTRNIGIMAHIDAGKTTTTERILYYTGKIHKIGETHEGDSQMDWMEEEKERGITITSAATTAQWKDHRINIIDTPGHVDFTIEVERSLRVLDGAVTVLDAQSGVEPQTENVWRQAENYGVPRIVFVNKMDKIGANFDFSVKSLHERLNANAIAVQMPIGAEDQFEGVIDLFDMVADVYDEDKLGAKWETIPVPDEYKEEAESRREEMIEEIAEVDDDIMEKFLGGEEISNEELKAALRRATLDLKAFPVFAGSAFKNKGVQMMLDGVVDYLPSPLDVKPYIAHDKEGNEVELLADDNKPFAALAFKIATDPFVGRLTFIRVYTGSLKSGSYVLNASKNQRERVGRLLQMHANSRTEIPEVFSGDIAGAIGLKDTTTGDSLTDPAHPLILESLDIPAPVIQVSVEPKSKADRDKMDVALQKLTEEDPTFRAETNPETGETLISGMGELHLDIMVERMKREFNVEATIGEPQVAYRETFTVPTQAQGKFVRQSGGKGQYGDVWIEFTPNEGKGYEFEDAIVGGVVPREYIPSVDAGLQEAMKNGVLAGYPLIDVKAKLYDGSYHEVDSSEAAFKVAASLALKNAASKAGAVILEPIMKVQVIAPEEYLGDVMGSITARRGQMEGMEDRAGAKVINAMVPLSEMFGYATTLRSSTQGRGTFTMVMDHYSPCPKSIQAEIIKKRGGNA"]}}, {"location": "[346606:346915](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0051"], "gene": ["rpsJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21471"], "locus_tag": ["MAAAAKME_03540"], "product": ["30S ribosomal protein S10"], "transl_table": ["11"], "translation": ["MANEKIRIRLKSYEHSILDESGAKIVDTAKRTGAEISGPVPLPTERTLFTVLRSPHKNKDSREQFEMRTHKRLIDILNPTPKTVDSLMKLDLPSGVDIEIKL"]}}, {"location": "[346940:347570](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0087"], "gene": ["rplC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42920"], "locus_tag": ["MAAAAKME_03550"], "product": ["50S ribosomal protein L3"], "transl_table": ["11"], "translation": ["MTKGILGRKVGMTQIFTKDGVLVPVTVIEATPNVVMQVKTVENDGYEAVQLGYQDKREVLSNKPEKGHADKAKTSPKRFIRELRGVELSDYEVGSEVTVETFKEGDVVNVTGTSRGHGYQGNIKRHHQSRGPETHGSRYHRIPGSMGSIINRVPKGKKLPGHMGVKTVTIENLVVEKVVADKNVLMIKGNVPGAKNSLIVVKSSAKASK"]}}, {"location": "[347584:348202](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0088"], "gene": ["rplD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42921"], "locus_tag": ["MAAAAKME_03560"], "product": ["50S ribosomal protein L4"], "transl_table": ["11"], "translation": ["MANFKLMDQNGNNAGEVTLNDNVFSVEPNEAVVFDAIIRQRAGKRQGTSKVKNRSAVRGGGKKPWRQKGTGRARQGSIRAPQWRGGGVVFGPTPRSYAYSMPRKQRRLAIKSVLSQKLLDQNLVVLDKLTMDAPKTRDFVAILNGLKLEGKVLVVSDDKNVQLSAKNLPKVKVVPVNGLNVEDAVNYDKLVLTQDDVKKIEEVLA"]}}, {"location": "[348201:348498](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0089"], "gene": ["rplW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42924"], "locus_tag": ["MAAAAKME_03570"], "product": ["50S ribosomal protein L23"], "transl_table": ["11"], "translation": ["MDARDIILRPVITEKSADLMDSKKYTFDVALTATKLQVRDAIEEIFDVKVKSVNIMNVRGKEKRVGRYTGKIARRRKAIVALTEDSNDIKIFKDENNE"]}}, {"location": "[348523:349360](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0090"], "gene": ["rplB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNQ2"], "locus_tag": ["MAAAAKME_03580"], "product": ["50S ribosomal protein L2"], "transl_table": ["11"], "translation": ["MAIKVYKPTSNGRRNMTSSDFAEITKSKPEKTLLASKSKTAGRNSYGHITVRHRGGGHKQQYRIIDFKRTKDNVKAKIVAIEYDPNRSANIALLHYTDGTKAYILAPKGLTVGSWVESGVDADIKVGNALPLKNIPTGTEVHNIELKPGKGGQIARSAGTSAQVLGVDGKYTQVRLQSGEVREILSECRATIGAVGNEQHSLINIGKAGRSRWMGKRPQSRGSVMNPNDHPHGGGEGKAPVGRPQPMTPWGKKSRGIKTRDSKKASEKLIIRHRKGRK"]}}, {"location": "[349377:349653](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0185"], "gene": ["rpsS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNQ1"], "locus_tag": ["MAAAAKME_03590"], "product": ["30S ribosomal protein S19"], "transl_table": ["11"], "translation": ["MSRSIKKGPFADAHLLKKVDEQQAAEKKQVIKTWSRRSTIFPSFVGLTIAVYDGRKHVPVFVTEDMVGHKLGEFVPTRTFRGHKADDKASK"]}}, {"location": "[349674:350028](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0091"], "gene": ["rplV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42060"], "locus_tag": ["MAAAAKME_03600"], "product": ["50S ribosomal protein L22"], "transl_table": ["11"], "translation": ["MAEQISSARAEARTVRIAPRKARLVVDLIRGKSVAEALAILKFTPKAASPIVEKVLRSAVANAEHNYDLESANLYVSEAYVNEGATLKRFRPRAKGSASPIMKRTSHVVVVVSELND"]}}, {"location": "[350041:350713](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0092"], "gene": ["rpsC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21465"], "locus_tag": ["MAAAAKME_03610"], "product": ["30S ribosomal protein S3"], "transl_table": ["11"], "translation": ["MGSKINPIGFRLGVNRDWEAKWYAARGYKETLNEDLRIRKFLDEKLKDASVSTVEIERAANRVNIAIHTARPGMVIGKGGAEVEALNKEINALTNKQVHINIVEIKKPDLEAKLVADGIARQLEARIAFRRASRQAAQRSMRAGAKGIKVQIAGRLNGADIARREWHTEGSVPLHTLRADIDYAWVNAFTTYGEIGVKVWINRGEILPGRKNQPAKRSKGGKK"]}}, {"location": "[350712:351156](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0197"], "gene": ["rplP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A475"], "locus_tag": ["MAAAAKME_03620"], "product": ["50S ribosomal protein L16"], "transl_table": ["11"], "translation": ["MPLVPKRVKHRREFRGKMRGAAKGGKTVAFGEYGLEALESHWITNRQIEAARVAMTRYMKRGGKVWIRIFPQKSYTAKGVGVRMGSGKGAPAGWVAVVKREKIMFEIGGVSEETAREAMRLAASKLPIKCKFVKREDQEAGGATNED"]}}, {"location": "[351145:351343](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P04457"], "locus_tag": ["MAAAAKME_03630"], "product": ["50S ribosomal protein L29"], "transl_table": ["11"], "translation": ["MKTKEIRSLSTDELLAKEKQYKEELFNLRFQQATGQLENTARLSQVRKNIARIKTILSEKELEQN"]}}, {"location": "[351361:351628](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23828"], "locus_tag": ["MAAAAKME_03640"], "product": ["30S ribosomal protein S17"], "transl_table": ["11"], "translation": ["MSESIERNRRHVYQGRVVSDKMDKTIVVVVDTYKNHPVYSKRTRYSKKYYAMDENNEAKVGDIVRIMETRPLSRTKRFRLVDIVKKSV"]}}, {"location": "[351658:352027](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0093"], "gene": ["rplN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A473"], "locus_tag": ["MAAAAKME_03650"], "product": ["50S ribosomal protein L14"], "transl_table": ["11"], "translation": ["MIQTETRLKVADNSGARELLVIRVMGGSKRKTGNIGDIVVAAVKQATPGGVVKKGDVVKAVIVRTKSGARREDGSYIKFDENAAVIINADKSPRGTRIFGPVARELREGDFMKIVSLAHEVL"]}}, {"location": "[352043:352283](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60735"], "locus_tag": ["MAAAAKME_03660"], "product": ["50S ribosomal protein L24"], "transl_table": ["11"], "translation": ["MFVKTGDKVKVIAGSEKGKEGTVLSVNVKENRVVVKGVNMIKKATKASASNANGGVVETEGSIHASNVKVIAKAESNKD"]}}, {"location": "[352302:352845](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0094"], "gene": ["rplE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12877"], "locus_tag": ["MAAAAKME_03670"], "product": ["50S ribosomal protein L5"], "transl_table": ["11"], "translation": ["MANSFATKYNEEIVPALTKKFNYTSSMQVPKIDKIVLNMGVGDAVANAKNLDEAVEELTLISGQKPMITKAKKSIANFRLREGMSIGAKVTLRGDRMYDFLSKLINVSLPRVRDFRGVSTRSFDGRGNYTLGVKEQLIFPEIDFDKVNRTRGLDIVIVTTAQTDEEARELLTQFGMPFAK"]}}, {"location": "[353067:353466](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0096"], "gene": ["rpsH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12879"], "locus_tag": ["MAAAAKME_03680"], "product": ["30S ribosomal protein S8"], "transl_table": ["11"], "translation": ["MVLTDPIADFLTRIRNANMAKHDSVEIPASNIKKSLTEILKQEGFIRDYEVTEDGKQGVIKITLKYGPNGERVISGLKRISKPGLRNYVSADNLPKVLNGLGIAIVSTSAGILTDKEAREKNVGGEVIAYVW"]}}, {"location": "[353490:354021](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A466"], "locus_tag": ["MAAAAKME_03690"], "product": ["50S ribosomal protein L6"], "transl_table": ["11"], "translation": ["MSRIGLKVINVPESVTVTKNGNEITVKGPKGELTREFDPRIKFEQEDGVIRFSRSNENDKAIHGTMRANLANMIEGVVNGYKKELKLIGVGYRAVAKNNVLTLNVGYSHPVEMKAPEGVTVTTSSATDVTIEGISKQVVGQFAAEIRAVRSPEPYKGKGIRYADEVVRRKEGKTGK"]}}, {"location": "[354047:354407](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A467"], "locus_tag": ["MAAAAKME_03700"], "product": ["50S ribosomal protein L18"], "transl_table": ["11"], "translation": ["MISKPDKNKLRLKRHRRVRGKISGTAERPRLSVFRSNTNIYAQLIDDVAGVTLASASTLDKSVSKDATKVEQAQAVGKAIAEAGKAKGITEVVFDRGGYIYHGRVKALADAARENGLEF"]}}, {"location": "[354423:354936](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P02357"], "locus_tag": ["MAAAAKME_03710"], "product": ["30S ribosomal protein S5"], "transl_table": ["11"], "translation": ["MANRNDSKNRRNKDDIEDQLVAINRITKVVKGGRRQRFAALVVVGDKKGHVGFGTGKATEVPEAIRKAVEAGKKNMISVPTVGTTIPHEVLGHYGSGNVLLKPAEAGSGIAAGGAVRIVMDMAGIGDVTSKSLGSNTPINVIRATIDGLQKLKTREDVLKLRESAKSLQD"]}}, {"location": "[354947:355133](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0G0"], "locus_tag": ["MAAAAKME_03720"], "product": ["50S ribosomal protein L30"], "transl_table": ["11"], "translation": ["MTDLKITLIRSVAHRLPEQRKVVKALGLGKINSTVVQPDNAATRGALMKIAHLISVEEVNK"]}}, {"location": "[355153:355594](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0200"], "gene": ["rplO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19946"], "locus_tag": ["MAAAAKME_03730"], "product": ["50S ribosomal protein L15"], "transl_table": ["11"], "translation": ["MKLNELHPSEGSRHARKRVGRGTSSGFGKTSGRGQKGQHARSGGNTRLGFEGGQMPLFRTMPKRGFKNINRKEYAIVNLADLNKFEEGSVVDFEALKAKGLVKKQLSGVKVLGNGDLNVKLTVKVNKVSEAAKSAIEAAGGTVEVI"]}}, {"location": "[355593:356889](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["secY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A468"], "locus_tag": ["MAAAAKME_03740"], "product": ["Protein translocase subunit SecY"], "transl_table": ["11"], "translation": ["MFSTLKNAFKDKEIRNKLFYTLFILVIYRLGANITVPGINAKALTTVANTGLVSVLDTVSGGGLDNYSIFSLGVSPYITAQIVIQLLQMDIVPTLVEWGKQGEVGRRKTNQVTRYLTLFVAFVQSVGITLGFNALSSFGLVKTQTWQTYFEIGMIMTAGTFLLTWLGDEITDKGLGNGVSVIIFAGIIARLPGGLYQVFQDQVINNSASDRWQGVAFFVALIVAILLVTKFVTWVEQADRRIPIQYTRRATTSGSESFLPLKVNVSGVIPVIFASSFIVTPATILMAFQGKYGDTTWYQVLSNIFSLQTTPGAIIYTLLIILFTFFYAFVQVNPEKLAENLQKQGAYIPSVWPGKDTEKYMSSMLLKLSTVGSVYLGLVALLPQLATNIWDLPSSIGLGGTSLLIVIGVVLELSRQINGLLMKREYAGFIR"]}}, {"location": "[356899:357553](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.3"], "codon_start": ["1"], "gene": ["adk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27142"], "locus_tag": ["MAAAAKME_03750"], "product": ["Adenylate kinase"], "transl_table": ["11"], "translation": ["MINLILLGLPGAGKGTASEQIVDKYHLAHISTGDMFREAMANKTPVGLEAKSYIDKGDLVPDEVTAKLVEERLGQDDVKNGFILDGFPRTTNQAELLDEITTRLNKQLTNVIAIDVKEETLIDRLSARFMCKNCGATYNKFSKKPKVEGTCDRCGGHEFYQREDDKPEVVKNRLEVNEKMNAPLKEYYDKKGLLATVNGEQVPEKVFADIDAILSKD"]}}, {"location": "[357628:357850](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0361"], "gene": ["infA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20458"], "locus_tag": ["MAAAAKME_03760"], "product": ["Translation initiation factor IF-1"], "transl_table": ["11"], "translation": ["MAKDDVIEVEGKVVDTLPNAMFKVELENGATILAHVSGKIRMHYIRILPGDRVTVELSPYDLTKGRITYRFIK"]}}, {"location": "[358006:358357](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0099"], "gene": ["rpsM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20282"], "locus_tag": ["MAAAAKME_03770"], "product": ["30S ribosomal protein S13"], "transl_table": ["11"], "translation": ["MARIAGVDLPRDKRIVIALTYIYGIGEHTAQEICAAAGVSEDVRSKDLTPEQQEKLRAEVDKYRVEGDLRREVSMNIKRLVDIGSYRGIRHRRGLPVRGQNTKNNARTRKGAKRSR"]}}, {"location": "[358385:358775](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66357"], "locus_tag": ["MAAAAKME_03780"], "product": ["30S ribosomal protein S11"], "transl_table": ["11"], "translation": ["MPAKKTAHKRRVKKHVESGVAHIHSTFNNTLVMITDVQGNAVAWSSAGALGFKGSRKSTPFAAQMAAEAAAKSAIDQGMKHIEVSVKGPGSGRESAIRALQAAGLEITSIRDVTPVPHNGSRPPKRRRV"]}}, {"location": "[358818:359757](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "db_xref": ["COG:COG0202"], "gene": ["rpoA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66709"], "locus_tag": ["MAAAAKME_03790"], "product": ["DNA-directed RNA polymerase subunit alpha"], "transl_table": ["11"], "translation": ["MIEFKKPNITVVDQEDSYGKFVVEPLERGFGTTLGNSLRRVLLTSVPGTGLVKVKIDGILHEFTTVPGVKEDVTKIILNLKKLELRAYTEEVKTIELDVEGPATVTAEDLKADADVEVLNPDQYICTIAQGGHLHMWIDVCNGRGYVPASENKTAEMSIGDIPVDSLFSPIEKVNYQVESTRVGKREDFDKLTLEIWTNGSIAPNDALNFAARVLVEHFKAFESADAAAEIGEVMVEQENDQKEKKLEMTIEDLDLSVRSYNCLKRAGINTLQDLTVKSEAEMMRVRNLGRKSLEEVKNKLADLGLSLRQED"]}}, {"location": "[359780:360164](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07843"], "locus_tag": ["MAAAAKME_03800"], "product": ["50S ribosomal protein L17"], "transl_table": ["11"], "translation": ["MSYRKLGWDSSQRKAMLREMTTQLIINERIVTTEARAKEVRRTAEKMITLGKRGDLAARRKAAAFVRNEIADIHEEGDEVVVKSALQKLFSDVAPRYKDRNGGYTRIMKLAVPRKGDAAPMVVLELV"]}}, {"location": "[360353:361202](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1GBJ0"], "locus_tag": ["MAAAAKME_03810"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA1"], "transl_table": ["11"], "translation": ["MSDNIISFDHVTFTYPDSPRPALSDLSFAIERGSWTALIGHNGSGKSTVSKLINGLLAPDDLDKSSITVDGVKLGADTVWEVREKVGIVFQNPDNQFVGATVSDDVAFGLENRAVPRPEMLKIVAQAVADVGMADYADSEPSNLSGGQKQRVAIAGILAVKPQVIILDESTSMLDPEGKEQILDLVRKIKEDNNLTVISITHDLEEAAGADQVLVLDDGQLLDQGKPEEIFPKVEMLKRIGLDIPFVYRLKQLLKERGIVLPDEIDDDEKLVQSLWQLNSKM"]}}, {"location": "[361177:362041](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA2_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1GBI9"], "locus_tag": ["MAAAAKME_03820"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA2"], "transl_table": ["11"], "translation": ["MAIKFENVSYVYSPGSPLEAIGLDQLNFSLEEGKFIALVGHTGSGKSTLMQHFNALLKPTSGKIEIAGYTITPETGNKGLKDLRRKVSLAFQFSEAQLFENTVLKDVEYGPRNFGFSEDEAREAALKWLKKVGLKDDLIEHSPFDLSGGQMRRVALAGVLAYEPEIICLDEPAAGLDPMGRLEMMQLFKDYQAAGHTVILVTHNMDDVADYADDVLALEHGRLIKHASPKEVFKDSEWLQKHHLAEPRSARFAAKLEAAGLKLPGQPLTMPELADAIKQSLKGGEHE"]}}, {"location": "[362033:362831](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ecfT_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q035B4"], "locus_tag": ["MAAAAKME_03830"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MSKIIIGRYLPGTTFVYRVDPRAKLLTTFYFIIMIFLANNWVSYLVISIFGLAYVFATGLKARVFWDGVKPMIWMIVFTSLLQTFFMAGGKVYWHWWIFTLSSEGLINGLYVFIRFAMIILVSTVMTVTTKPLEIADAMEWMLTPLKLFKVNVGMISLVISIALRFVPTLFDQTVKIMNAQRSRGADFNDGGLVKRAKSVVPMLVPLFIDSLEVALDLSTAMESRGYKGSEGRTRYRILEWSKVDLIPVAYCLLLTILMITTRKH"]}}, {"location": "[362830:363619](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.12"], "codon_start": ["1"], "db_xref": ["COG:COG0101"], "gene": ["truA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07649"], "locus_tag": ["MAAAAKME_03840"], "product": ["tRNA pseudouridine synthase A"], "transl_table": ["11"], "translation": ["MTSRYKLTLSYDGHDFHGFQSQPGQRTIQGTVEEILKQMTKGQEVRVFGSGRTDAGVHSVGQVIHFDYPGREIPAANMIKALNSQLPMDMVFTDCEIVDKDFHSRFSVKGKWYRYRVSLDGFVNPFKRFYTGHYPYPVDVEKMQEAAKDLLGRHDFTSFAASGGQIEDKVRDMYYVNVALDEENNEVIMDFIATGFLYNMVRILVATLLEIGNGRRPVHDLKRVIAAKNRLEVQQTAQACGLYLYHVFYEEVPRKYRLDLDL"]}}, {"location": "[363724:364168](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0102"], "gene": ["rplM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P70974"], "locus_tag": ["MAAAAKME_03850"], "product": ["50S ribosomal protein L13"], "transl_table": ["11"], "translation": ["MRTTPLAKTSEIERKWYLIDATDVSLGRLSTAVATILRGKNKPQFTPNVDTGDNVIIVNASKLKLTGKKATDKIYYHHSEYRGGLKSVSAGELLAKNPVKLVELSVKGMLPKNTLGHQEFLKMHVYAGEEHKHEAQKPEKLDINNLI"]}}, {"location": "[364180:364576](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YYM9"], "locus_tag": ["MAAAAKME_03860"], "product": ["30S ribosomal protein S9"], "transl_table": ["11"], "translation": ["MAQQVAYAGTGRRKDAVARVRLVPGDGKITVNNKDVADYIPLPILVKDLKQPLTLTETEGQYDVIVNVNGGGFSGQAGAIRHGIARALLEVDPDFRGPLKKAGFLTRDPRMKERKKPGLKKARKASQFSKR"]}}, {"location": "[365058:365259](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYLNVHFKPRFAEKIKFIAFALMYQHESYVYLDEAVSNALYPDLKNKNLRNIGLERLGEIHRYYGD"]}}, {"location": "[365248:365530](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVIDNYGSLNILLKQENDFSLMRIEDGFSTIFFNLKGQLREEVESLVEHQGLYFKELTEQTNFSPQLIHIRKLSISLDQLNKVNPCRTENFQN"]}}, {"location": "[365711:367085](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_03890"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MWLFKGKFICQKTLNWSAGAEIPTMDLSKATDSVSFTQISNTFEGLYRLGKDSKITPGLATSEKVSKDGKTYTFTLRKNDKLSNGDPVTAQDFVYSWRRTVNPKTESEYSYLFSGIKSADKIVAGKKPATSLGIKVVGKYKLVVTLERRIPYFNNLMCFAVSFPQNEKAVKNYGSKYGTASKYLVYNGPYIQKGWTGSNLSWKMIKNKYYWDKSKVKLNQINWSVQKSTTTSYNLYQAKKLDATSLDSSQIKQLKSDKAFSLLPQGGTYYMTFGQGKSGNEYVKNANIRKALSLAIDRGGLRGPGFYHLRRGQTANTLTSKDLTKVNGKDYTSLISSSAKSLYPKDGNKKLTKQYLAKGLAELGKSKIKLTLISSDTDSAEKTAESIQSNIEATLPQVKVEVNSVPFKTLLNRLASHNFQLGLIDCIADFADPISWTFLRLATAKTTGNGQTANTTS"]}}, {"location": "[367132:367279](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKAEDILLNDAGICPLYYSTSVMLVRTSVKNAVYNRGNWDFKEAYVK"]}}, {"location": "[367397:368018](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.22"], "codon_start": ["1"], "gene": ["nudC_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00297"], "locus_tag": ["MAAAAKME_03910"], "product": ["NADH pyrophosphatase"], "transl_table": ["11"], "translation": ["MKKGDKLIDWAMEIQAIGQTGLAYSKDVFDTERYSRLREIAAEMLAEKSAVSYDKVKELFCNEIGYQTPKIATRAAIFKDDQILLVQEKEGRWSLPGGWCDVDQSPTDNCVKECREESGLTVKPVKIIAVQDHFKHHGSIHPYGITDIYYLCQSLGGEFQANSETSQAAWFKEDDLPPLAENKNSTEQVKMCFAAHRDANWQTLFD"]}}, {"location": "[368078:368759](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2814"], "gene": ["pbuE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q797E3"], "locus_tag": ["MAAAAKME_03920"], "product": ["Purine efflux pump PbuE"], "transl_table": ["11"], "translation": ["MISLLTLVTFILLLAFVPRDTPQSQSSKGNKQFAILGNWHIQLTLLAIILVCAAQYTYYTYIRTLITDYMHFPKSWLNVLLLLLGLAFIAGNKTGGFLADHGGIKRLPLVFGIQTVLLFLLAPLLPLSWLAFLCIVGICCVNSMYGWSSTQVYFLDLAAAEYPESIDFASSFNSIFANVGISLGSFTAAQAAGLTGIASIPYFGGVYSLLSCLLMVLVCRQLAAKK"]}}, {"location": "[368755:369205](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sotB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00517"], "locus_tag": ["MAAAAKME_03930"], "product": ["sugar efflux transporter"], "transl_table": ["11"], "translation": ["MLGCNEYMIVSVLPDISREINASLSSLGYLVTVFALVYAVATPLVTSLTKYFKRHQLLFFLMGIFFISNTWTALSYSYVSLLLSRILSATTAGAIISLILVIANFVAPLEKKSLASLLDFCRLLDCFHHRPANRDLDLNDFFPSMLVSG"]}}, {"location": "[369355:369847](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQIQVKLDKGYLSDEYAKYASVKEAGNPVVSFPFTLTDLPEGTKYLAWSLVDYDSIPVCGFAWIHWLASDVPAVSEIPADFSRTTDTPQGYNSTVSRFLTDPEEVHTGYIGPTPPDKDHDYRFRVYALSEKLDLEQPYYYNEFLRALKGKVLAESQVDLPARV"]}}, {"location": "[369944:370018](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03950"], "note": ["tRNA-Gln(ttg)"], "product": ["tRNA-Gln"]}}, {"location": "[370136:370307](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGKEQEAEKIQKLLGQLEEEISLSYFLKPGTITVGRDLLQAMQDLLANPENWEEN"]}}, {"location": "[370631:371813](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0436"], "gene": ["dapX_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16524"], "locus_tag": ["MAAAAKME_03970"], "product": ["putative N-acetyl-LL-diaminopimelate aminotransferase"], "transl_table": ["11"], "translation": ["MVDLTKHFKQGVAEVKSSAILNFAKYTSQYPDIVKFTVGEPDFNTPDHIKTAAIKGIVDNHSHYALSNGTPGLRKAAADFLARHYDMHYEPSEIIATNGATEAIYTVMSAIINPGDVMVLPTPIFPLYIADAALEKAEVVQIDTSQTGLKLTPDQLQAAVDEYGDRIRILVMNYPTNPTGVMYSQEELDALAAVIKDRPTFVLCDEIYSELNYEQEHASMAKSLRSQAIVLNGVSKSWAMTGYRIGIMAAPQEITDQLAKVHQFITTTEPTPMQDAAEEAFKNGDRDAREMKAAFKERRDYLYQALTETGFEVIKPQGAFYIWAKIPAGLNQKDTEFVYELADQAYVGVCAGSWFAKGGQGWLRFSYATALDEIKEGVSRIKKFVEENKNDGK"]}}, {"location": "[371799:372855](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_03980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTESKETNGLKQGTLNILNGIGLGVIAALVPAAILGQLMKALLGVAPAFAQTVINITTFTQSLLAAMAGFCAAYLFQMNMIQMCSVAAAAMIGSGAVTFKNGLIMVAGTGDVINIGLTITLAILLIKLIGNKLGSYTTILLPIIVLVVGGGIGLLILPYVKTVTTFIGMIVMAFTKLQPLLMGVLIGMSFAAMIVSPISSVGIAVAIGLTGVASGAANLGITGAAYTLGIMSYSVNGMGTTLAHFIGTPKIQMTNMLEKPKLFVPVLLSSALSGLLAAIFNLQGTPNSAGFGFSGLIGPLAAYAKMTPGWGSIILLTVLYVVYPVALGFFMRWLFIDRLSFAQAEDLRLEV"]}}, {"location": "[372930:373012](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_03990"], "note": ["tRNA-Tyr(gta)"], "product": ["tRNA-Tyr"]}}, {"location": "[373016:373090](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_04000"], "note": ["tRNA-Gln(ttg)"], "product": ["tRNA-Gln"]}}, {"location": "[373226:373559](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTYNLKQAQKEWALAKKRLGKSKITIELLTSDMDAPKRVGEYLQSNLMKNLPGLTVKLRSIPLKSRLADTSKHNFDMVYGTWQPSFQDPIDYLTIGGLFNLESDYKNSTF"]}}, {"location": "[373916:375029](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKYIKVGSGGGEVTWHRAMLDMKPGDYLLLEPGYYVWPRGRLLEDVTIKGLGASPEDTRIRSFFSIGENSSRVVFENLTLEPYGDVNTLDLPEETNSYLILRGCVLTGTGSKTTTISVNGQDTVEMYSCRLLNGTLSFFEKANFRLEMADCLLDYESEKFGTISLEGTGTAIINNSEIRGTVNSFDSSNIELNINNSAIGNLNLGGKSWVNVYACRFLNRDYSLYARGECWLNILESQMPSQLAIEDHCHLLMQNSQLYNFQARGESQSFLSNVQIAAAASLEGKSFMDGSLVTFSGNGDYPYFIFLVDQAVLKGRNLQFDPQNWPVLVDNDARLVANALYYQGAPLEIKCEHPENISLMGIKWTERKE"]}}, {"location": "[375043:376111](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRLIKVSQDPRDLSWEQALDQLEDDDVLMLAPGFYEIPFGQKLKNIVIKGTGTSADMTVLVGTVILDGRYLTLENLAVKTTAIAGALVRVYEGENAPYLTLRGCRLEAAEGERGTALLTLGPVWLELYSCQLKGGIRLVGDEEQHVQISSSEIAATPVAFTGNGFGPLAISQSQIKGNFVLEESSAYEGHFDQTAFDQVTSLSEGNDLYFTESALSLTLKNGQADLLNCDLPGTTLLEKANSAAFQNCTFKQFKQVSGSSNLTNCHLEAGEIMGQGKAVFCRPHFSCSEGTWLSLRDASQVRLQNTLLNVAGSHLRLADKAGILGNVLESDQDQLLVKQTGQGKVKLTGIKCKLV"]}}, {"location": "[376177:376879](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2188"], "gene": ["nagR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34817"], "locus_tag": ["MAAAAKME_04040"], "product": ["HTH-type transcriptional repressor NagR"], "transl_table": ["11"], "translation": ["MQEPMYIKIHNQLRRDIENHVYQVGDRIPAERQLAEQFKVSRMTLRQAIKTLEEEGILERRLGSGTYVASQKVQEKMSGIMSFTEITRANGQTPSSKLVSYKITQPSLSEKERLGLEGSDKVLRMERIRYADQVPICHEIVTVPEDLIAPFAKDDVSSHLYQTLEKQGGYQIGDATEYISAAVANEQEARLLNCRRGEALITRRQVTKLADGRPFEYTRASYVGERFEFTFSK"]}}, {"location": "[377041:378181](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSILFRLYLAVMKFLARWQKEDPNTYVILNGSGRSGSNGYLFYKYLCREHPEVTAYLIEPWPSSHLPWSDWQKIGRAKYVLTTHQPFKVRKSQVNLALWHGIPLKRMGTMANNTQRRDNQRNEKLWHKTADLVTSSSELYESLMSACMGIEGPRYVQLGFPRIDSLLKSPYKKAQLLADFFSCQDPEAQVGIYVPTFRYELEEPEVMERIKEGNFFAFSDFDLAALDQALAARKQYLLVKLHPWEMKLFSDFHLEAKHVAFLNNSDLLAKKLDLYEILGATDFLMTDFSSIYFDYLHLDKPLIFITNYLAQYEKTRGFLLGPYEKIVPGPCVASQADLVKQLGEKDGYGLERKKWLELSDQADHGQACQTIFDYLSGV"]}}, {"location": "[378184:379612](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["rfbX_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37746"], "locus_tag": ["MAAAAKME_04060"], "product": ["Putative O-antigen transporter"], "transl_table": ["11"], "translation": ["MKRTFLNIFYNAVYQVFLVLVPLITVPYLSRVLGPTTYGIYSSVNNTVQFLMIFCVLSLSNIGVRSISKARAKSKSGELTEAFWGLWYFQFIGGLVTIALTVLTCLVLKVRYWNYFLLMLPYLIAAQFDISWFFQGLADFGRVVLRNTIVKIVSVVFILLLIKSPADLWKYFLIMSVSTMLGSFVFWSSIGKYVGRPVKHFYHFAETRRAIMTLMIPQIATQIYTSLDKPLLGLFQNTAQVSYYDNSQRISNMILGVITSISLVIMPQMAVQGKETQKKVLKKSLEVTTMLGTMFAMVVMANTKEFVPFFFGKKYIPMTPLMFFFTLTIILIPMGGVFANQFALANKRDKDYAIPVTIGAVLELVFSYFLDRPFGAAGAMVAILLTEVVVFFLRCWIVRDGYDFKETFSDVPKCFLAMGISLAAGMLWPWQIPSAFINMMVKSLVIMALYLAILWLLKFDLNEDLVTIVKKRLKK"]}}, {"location": "[379663:380398](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.187"], "codon_start": ["1"], "db_xref": ["COG:COG1922"], "gene": ["tagA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27620"], "locus_tag": ["MAAAAKME_04070"], "product": ["N-acetylglucosaminyldiphosphoundecaprenol N-acetyl-beta-D-mannosaminyltransferase"], "transl_table": ["11"], "translation": ["MVKINILGVGFDKYSLAEFEARFLDRLRKKESTLVVTANPEIVMAAKEDPEYREIINNVADYVTADGIGIIKGAKMLGLKLPERVTGYDLFCWYLQIANEDHLRVYLIGAKPAVIAAVKEKIAKDYPGIDLVGAEDGYSKEALPEIASRIAQSRPDLVFAALGFPKQEKLLAILRKQNLPASMMGVGGSFDVFAGAVKRAPKLFQDAHLEWFYRLLKEPSRIGRMMVLPKFVVEVKKSKKQDQQ"]}}, {"location": "[380397:381498](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.250"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["mshA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QQZ8"], "locus_tag": ["MAAAAKME_04080"], "product": ["D-inositol 3-phosphate glycosyltransferase"], "transl_table": ["11"], "translation": ["MKVLHINAGLESGGGLTHIVNLLSQAKKAGQDFDLLTFAEGPVAQAAREKGIKTIVLGGSSRYDLALLKRLKKTIKDGRYDLVHSHGARANLFVSLIKSSLPCPWLITVHSDPAIDFEGRGIAGKIFTKLNLRAIKQADGVFAITPRFEKILLNYGVKPSRIHVIYNGIDFRDNRNIAGKEDHAGFNIINVGRLEKVKGQDLLLKAFKAANLPQAHLYIAGSGSQEADLKKLRQDLALTDQVTFTGFLTQEELRQLYRKMDLAVLSSYSESFPLVLLEAADNLLPLLATDVGGARELIPEGKGWGVPVNEEKAMADQLRAIAALPKEELAAIAQTEKAYARQHFSLDRQLADVLAGYQACLQGEKA"]}}, {"location": "[381494:382196](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIPKIIHYVWVGGNPKSKTIQTCLASWQKRLPDYEIIEWNEDKLDLNANKYVKQAYQAKKWAFVSDYVRAKALYEMGGIYLDTDVMVLKDFAGLLNDRAFIGFENNDYLSAAIIAAEKGHPFMADILHYYDDLDFAFDQKDQLAGVNSLSVTEILKEKYGLKTGNQEQVLKEGIHVYPDGILCNPSPQSRSIHLFTGTWLEGKNSWKHDLVTFLKLHIRSQKNAKIYYQLFRR"]}}, {"location": "[382300:383131](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.5"], "codon_start": ["1"], "db_xref": ["COG:COG0171"], "gene": ["nadE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q830Y9"], "locus_tag": ["MAAAAKME_04100"], "product": ["NH(3)-dependent NAD(+) synthetase"], "transl_table": ["11"], "translation": ["MRELQKKIVEYEHVLPEIDPQEEIRKTVDFLKDYLKANPFLKSYVLGISGGQDSTLTGKLTQMAISEMREETGDDSYKFIAVRMPYGVQADAADAADAVAFIQPDVDLIENIKPATDAMVATLKETGVEMTDFNKGNIKARQRMVMQYAIAGANQGAVVGTDHAAENFSGFYTKYGDGAADLTPLFRLDKRQGKQLLAALGCPKHLYLKAPTADLEEEKPSLPDEVALGVTYEEIDDYLEGREVSEKAAERIEELWTKSEHKRHLPVTIFDDYYKK"]}}, {"location": "[383336:386003](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q73E41"], "locus_tag": ["MAAAAKME_04110"], "product": ["Calcium-transporting ATPase 1"], "transl_table": ["11"], "translation": ["MAKKYYSQDIPGTLAEFGSDANHGISSAEAKKRLDQYGPNALAGKKKRSMFARFMDQFKDLMIIVLLVAAVLSGVVAQEWTDAGIILVVVLLNAVLGVIQEARSEAAIEALKDMSTPSARVRRDGAVIEVPSTDIVPGDVVLLEAGDVVPADLRLLVAESLKIEEAALTGESVPVEKSNETLQGEDIALGDRINMAYSSTNVTYGRGEGVVVATGMNTEVGNIAKMLNEADETDTPLKQNLNQLGKTLTYMILAICVVVFIIGVIRNPQHEPMNALLIDMFLTAVSLAVAAIPEGLPAIVTIILALGTQTMADHKAIVRKLPAVETLGATDIIASDKTGTLTQNRMTVEKVYYDGILHNASDDIDLNNKALITMLLANDTKIQGGGELLGDPTETALVQFGFHKDLPVNDFLAEHPRVQEVPFDSDRKLMSTVNRYDGQFMVAVKGAPDMLLERVKYVNINGELSEISAEQKKAILASNNEMAKQALRVLAMAYKVVAEPYADPTTDNVEQDLIFAGLVGMIDPERPEAKDAIAEAHRAGIRTIMITGDHQVTAQAIAERLGLVEKGRGDAVITGAQLDKLSDDYFTKHVGDYSVYARVSPEHKVRIVKAWQANGKIVAMTGDGVNDAPSLKQADIGVGMGITGTEVSKGAADMVLADDNFATIVEAVKQGRKVFANIQKAILYLMSCNVGEVLTVFLMTLLGWDVLKPVQLLWINLVTDTLPAIALGVEPIEKWIMNKKPRGKNSNFFSGGVASSIVYQGILEGALVLTAYGLGLHVLPRGTNPHEDALTMAFLTLGLIQLFHAVNSKYVKQSIFQKRTFANKWFNGAIVLSALIMAAVELPFLTRVFSVSELHLDQWLIVLGMGVLIIVIVEIVKFFERKADQRNN"]}}, {"location": "[386216:386543](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYLLVIIGQMAYAIYDNALISKNNAFAFEYLFNTVQPFGVDETMIGAIAIFLFVPIVGAALAIYIKNNHELYNVVSRTGWNNFLTKSTAYAFLGAVGLYWPRILPIS"]}}, {"location": "[386686:386950](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLKTRYQRLIAITLFLDFAVSLRCGLQFAMIGGEGEMPMYYLNANLISLYIQPGLTVMAAVQILSFRSVRPLLAPRGKMDYFDQRLA"]}}, {"location": "[387254:387857](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.4"], "codon_start": ["1"], "db_xref": ["COG:COG4555"], "gene": ["natA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46903"], "locus_tag": ["MAAAAKME_04140"], "product": ["ABC transporter ATP-binding protein NatA"], "transl_table": ["11"], "translation": ["MLKVSHVKKCFKKLAVLKDISLENQAGELVHISGVNGCGKYTLFKIIVGLLKADSGEIHTDKDDYLGALIENPGFIEYETAWDNLIFLGHFNYRFQPEKTRDLLKAFDLDPDNPQSVGNYSVGMRQKLGITQAVMEEQNIILLDEPTRGIDKEGVDQFVNLMKDLRSENKTVIVASHDEIPGLVYDRRLRMKDGILLAEE"]}}, {"location": "[387860:388358](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00745"], "locus_tag": ["MAAAAKME_04150"], "product": ["Protein SprT-like protein"], "transl_table": ["11"], "translation": ["MAFPALTSYNNTMISEQELQQLVESISLESFSRPFLHQAKINRRLKTTGGRYQLSDHHLEFNPLFLKEENLHYLPGIIKHELVHYHLHLAGLGYQHKDRDFKLLLQKVGGSRYAPRLEGNKRSRWHYRCRQCGQDYWRQRQVNVKKYFCGRCRGKLKKIAGPLAK"]}}, {"location": "[388388:388475](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_04160"], "note": ["tRNA-Leu(aag)"], "product": ["tRNA-Leu"]}}, {"location": "[388591:389215](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYDSEARQKTLNLTVSAVFVAILLLEAFIPNVGYITILPGLPAITTIPLTVAVFASLRGPKAGAAFGLVWGLTSLLRAYVAPNGLVTILLFQNPLIALLPRLAAGWAAGLAGQLADKWEKESRKPLAYALSGLLASAVNTLIVILLSDLVYFIHPQKLALALGAKSGQSLLVILFTALAVNGILEAVFSGLITPLITAPLKKRLKRR"]}}, {"location": "[389228:389882](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1705"], "gene": ["lytG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32083"], "locus_tag": ["MAAAAKME_04180"], "product": ["Exo-glucosaminidase LytG"], "transl_table": ["11"], "translation": ["MAGHRKTRKGKQTTTILVVRVFAIILLCLGFFVAFRYYRRQALQQEQIRQAELAKQEAAAKLLRQKKAFIQKVGPISQNVDKGTGLLPSITIAQACLESNYGQSALSQKYNNLFGVKGTNPNTSAVMTTKEYSNGKWVTVKARFQIYDSYEASIRAHVRLFQQGTSWNKDQYKDVLAAKDYKSQAKALVTDGYATDPDYSTKLINLIEQYNLNKYDN"]}}, {"location": "[389970:392232](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["pcrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P56255"], "locus_tag": ["MAAAAKME_04190"], "product": ["ATP-dependent DNA helicase PcrA"], "transl_table": ["11"], "translation": ["MSEATILQGLNPQQVQAVKTTEGPLLVIAGAGSGKTSVLTRRIAYLVEEKRVAPWNILAITFTNKAAKEMKEREVKLLGDQAESIWMSTFHALCVRILRRDGHLIGYDRDFSIADPSEQVTLVKRILRQLDLDPKQYLPRNILSQISNAKNCLQTPKQYEASAVGPFEKVVADVYKKYQASLERDQILDFDDLIMQTLTLFKASPDTLAYYQQKFRYLLVDEYQDTNEAQYELCRLLADGYHNICVVGDADQSIYGWRGANMENILNFEHDYKNAQTVKLEQNYRSTGHILKAANSVIDHNENRKAKKLWTDKGDGEKVHYYQAQSDRDETRFVLAKIKEEVDKKKRRYQDFAVLYRTNAQSRGMEETLVEANVPYQIVGGHKFYDRKEIKDIMAYLKLVANPSDSMSFNRIINVPKRGIGQATTTKLAAFADEMGGGIYEAMRNVELAPISSAAAKKLLAFSDQLTAAIAYAQDHTVSELTDKILEDFGYIKALKEEEAQGSLEAAARLENLQEFATVTKRFDDNYNEEENPDSSRLSDFLAEVSLLSDQDDLEESDDRVTLMTLHAAKGLEFPVVFLIGMEENIFPLSRAIKDEDPNQLEEERRLAYVGITRAREELYLTSAYTRMMYGSKQYNSQSRFIGEIKDEDLDIVASTAPKSSTSFIDLDRLPFAKKSQAKAAQPAKIHRASKAAGAVGAEKKGWHPGDQVEHKSWGKGVVIKVTGSGEDMELDIAFASKGNKRLLAAFAPIKKI"]}}, {"location": "[392242:394258](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.5.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG0272"], "gene": ["ligA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q837V6"], "locus_tag": ["MAAAAKME_04200"], "product": ["DNA ligase"], "transl_table": ["11"], "translation": ["MAESLEEAKQEVRQLRAQLDQWAKAYYEQDAPVVEDHVYDEKYARLLELEAAYPELKSADSITQRVGGEVNSDLPKVEHPVPMLSMGDVFSKEELAEFDQRVQKAIGHPVAYNVELKIDGLSLSLEYEEGCLKRASTRGNGQVGEDVTKNVKYIKDVPQKLPKAITTEVRGECYMSKEAFAKLNQERDEAGESIFANPRNAAAGSLRQLDPKVTKKRQLSTFIYTWINPPAGIDSQHQAICEMAKLGFHTNENGRRLENLADVYDYIDEFTKKRDSLPYVIDGIVLKVDDLALQADLGNTVKVPRWEIAYKFPPEEEETVVREIEWTVGRTGVVTPTAVMDPVRLAGSTVARASLHNPDLLAKLDVRLGDTVKLHKAGDIIPEISEVVLSKRPEDSVPYEVPTKCPSCGEDLVHLDEEVALRCINPSCPAQVEEGITHFASRQAMNIAGLGPKIVKQLIAKDLVHNVADLYYLTADDLSQLDHFKEKSINNLLVAIDQSRKNSVELVLFGLGIDNVGGKAAQLIARKFKNMSKIASASVQELTAIDTIGMTIAESLTAYFQQEEAKKLLARLEEAGVNMDYLGEDGEAADNFFKGKTVVLTGKLAHYSRAEFTKKLQALGAKVTGSVSKKTNCLVYGEDAGSKLAKAEALDIPRLTEAEAISKIEEKDTEK"]}}, {"location": "[394254:395400](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRFLQAITLASCSLLLAACGNLKNSDLASNSTTTTSEAKKYETTSSTDGGYSVLLKKGVYKTSPISGLEATNYDNSVDESAMERGLIRVSKKVFSTKDYVIQEGQQLDEATVTNWLGRYSKSNKEGLNLKNNGKTGSTTRNPIILQQIMEEDFYVKSGSSYKLAGISISLGLNSVDYYTKTTDGAEYSTKISPAKRRAFGQKTANTIVSRLHAKTKLKNIPIMVGLFSKTDTDSLVGGTYFSYGTASANSSKISKWSSVNEKTQVLPTVDGASAVSASDKSKFTSFKDEIEDYFPNVSGVTATLRYYDGKLAYESIAITTQFYGYLQVQSFAQTVMSRAKKYLGTSSPVEITISSVNDTQAVVAKETATGSYRMHIYGGN"]}}, {"location": "[395411:395717](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.-"], "codon_start": ["1"], "db_xref": ["COG:COG0721"], "gene": ["gatC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SE5"], "locus_tag": ["MAAAAKME_04220"], "product": ["Glutamyl-tRNA(Gln) amidotransferase subunit C"], "transl_table": ["11"], "translation": ["MEKVTNDTIKHVAALAQLEFSEEELAKFTPQMGKILEMAEELQAVDTTGVEETVQVVDRDTVFREDVPEKWQTREEMMKNVPDKSNGFVKVPVIIDKDDNQ"]}}, {"location": "[395716:397159](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.7"], "codon_start": ["1"], "db_xref": ["COG:COG0154"], "gene": ["gatA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SE6"], "locus_tag": ["MAAAAKME_04230"], "product": ["Glutamyl-tRNA(Gln) amidotransferase subunit A"], "transl_table": ["11"], "translation": ["MNYLNETIDSLNDKLKSGAVSADQLVKDTIANIKKTDEKINAFITVDEDAKPAEDLDFNNKLAGVPIAIKDNIITNGLKTTAASHILYNFEPVYESTVVAKLKAAQATIIGKTNMDEFAMGSSTETSYFGDTKNPWNLNKVPGGSSGGSAAAVASGEVVAALGSDTGGSIRQPASFNGIFGIKPTYGRVSRWGLIAFASSLDQIGVMSKRVKDSAEVLNVIAGADDRDATVSEKEVPDYTSFLGKDVKGLRVAVPKEYMSDAVEEGVRKEVEAQIELLRANGAIINEVSLPHTKYVVPTYYIIASSEASANLERYDGIRYGYRAEAKNLDEVFLKSRSEGFGDEVKRRIMLGSFALSAGAYDKFFLQAAKVRTLICQDFDKIFEDNDVIVGPVSTETAFDLNSEISDQIKMYNNDILTISANMAGIPAASVPAGLSETTGMPVGFQIMAKRFDEGHVFQVADFIERSNKFYEQTPAGLED"]}}, {"location": "[397164:398595](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.-"], "codon_start": ["1"], "db_xref": ["COG:COG0064"], "gene": ["gatB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O30509"], "locus_tag": ["MAAAAKME_04240"], "product": ["Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B"], "transl_table": ["11"], "translation": ["MNFTSTIGLEVHFELKTKSKIFSPSPVTYGAKPNTETNVIDWGYPGTLPMVNKEVYRLGLMVALATHSHVNPVTHFDRKNYFYPDNPKAYQITQFFKPLAENGYVEVEVHGKKKKIHIHEMHIEEDAGKNTHGTNGFSYVDYNRQGVPLLEVVSEPEMTDPDEAVAYLEKLREIVQFTGASDVKMEEGSMRIDTNISIRPAGQKELGTKVEMKNLNSFEHVRMSLAYEQKRQQEILLSGGRVRLSTRRFDTNTGKTVLERVKEGDADYRYFPEPDLPPYHIKQEWVDEIAANLPKTADERRKIYVDEYGLKPYDANVLLQNKESSDFFDATVAAGADPQQAANWMNTQVNGYLNEKHAELKDIALTPENLAAMIKLISDGTISSKIAKKVFAETVANGTDPKKYVEENGMAQLSDESVLAPMVKEVVDANPQSVEDYKNGKDRAIGFLVGQIMKQTRGKANPKVINKLLLADLASR"]}}, {"location": "[398630:399557](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.107"], "codon_start": ["1"], "db_xref": ["COG:COG1597"], "gene": ["dagK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31502"], "locus_tag": ["MAAAAKME_04250"], "product": ["Diacylglycerol kinase"], "transl_table": ["11"], "translation": ["MTKRARLIYNPVSGHEQMPKNVSDILDILEQAGYEASAFRTTQAPLSAQNEATRVAKDGFSLVVAAGGDGTINEVVSGIAFLPKEERPRMAIIPAGTTNDYARALKIPRDDVVAAAKVILKDKVQKMDVGRADFGDGSQKYFVNIAAAGSLAELTYGVSSDVKSALGYAAYLIKGAEMLPNLSECEMRLTFDKGVYEGKLSLLLLGMTNSIGGFEKIMPNAELSDGLFQLIVVKPSDPGNLLRLMALALNGKHVDDPNIIYTKTTSLKAELIGHNRDDKLSVNLDGEEGGMFPVTFENLRERIEFYVG"]}}, {"location": "[399617:400340](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITNKKKELARKRAERSLQPLSPEEQSEWDQLSQYREKAIKESGTKLAEHVMTFNDGVIAIIITIVLVEIADPLSKSAYQDFFSQIFIYLISFFVVANFWYEIHYTFSFHIMRAGKMTMVCDFAFLANLSLIPVMTKWIMGDLSVLSVVCYGIVYFLVQIFELATEIVGMRSSLPHIKTFRKFWGRFSWLRFIWLFLLNLVFILISFVQPRLGMILYLAFPIINFVMPDNRSQRTRKGDK"]}}, {"location": "[400342:401698](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG2265"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97R12"], "locus_tag": ["MAAAAKME_04270"], "product": ["putative RNA methyltransferase"], "transl_table": ["11"], "translation": ["MKKNEIVEVEITDLSYEAMGVGHVNGETVFVNNALPGEVVKAQILKDKKSYAFARISEIVKESPDRVKVPLRQYVQTGLASLAHLKYDKQLEFKQKQVKELLSKAHLDQIKVAEILPSPLETGYRNKAQVPVRMVKGQLEIGFFRRHSHDLVPLEDFFTNDPEIDRVLLAVRDILREKRIPAYDEEKHQGQVRYLEVRRGTATGDMMVVLVCLDRDFPGLHAVVDEIKEIAGVKSIFLNHNPKRTNVILGEHDYHLWGKRYIDDKIGDLTFEISPQSFFQINSLQTPRLYKLAIDQAGLTKDDLIVDAYSGIGTIGLSAAKYVKEVRGVEVVKAAVKDAKNNARLNQIHNAKYYVGKAEELMPKWAAEGLKTDVIFVDPPRKGLTKEFIDAAVKTGPKKVVYISCNPATLVRDMQLLMEAGYTTDLVSPVDMFPQTPHVESVTVLERTQID"]}}, {"location": "[401881:402739](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAINRMEEFENLIMIEVLKAMQALGGRVTRKEVKREICDHSEAISEDKVDEVKHSKKTGTPYRPFDYRFNFAVKHLITTGFIITEDNRNLELPEKGRTTKLEDFDPIRDVRAVLSENSADDTDVEEETEIEEEPWKAELLAALAKMPPQKFEIFSRGLLIHMGVDLDDNIGVRYVGDGGLDGFGYITSDDFRTTRVALQTKRWDGKVSAPEIDKFRGAMDKYNAEYGIFITTSNFTREAMKTAKAGTRIITLINGDKLCDLVAKYHYYVEPVTTYKLKSFFTDNE"]}}, {"location": "[402992:403628](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEYINYQTQDQWQGPASQQSPIDIVLEQTTPRPLADQPLTVSFVGDQALTRDPRSSGDQFIGAGTLTLGNHHYHFLRLHFHDHSEHLFDGQRQDAEVHFVYQDDQGQTLVLAMLGIRAADGEAGFDFAPVINGQAGSAYLNQFFANNQGYFNYTGSLTTPPLSPDVTWVVLDAVHPFSSGSLALIHDLFADNYRAPQPITVPVYHYYESGK"]}}, {"location": "[403801:404449](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISIKIGIFAKFFYEKSHPGEFDPLNGLVLVDAVDFTSRDWKSDVLVVMVVDLAANAFWQFQVSWHAVDVDHPLVQGQVLGAVRRPNCPVLGDQPAKGGGPARSQQDTPGLYQVLYQVDGDAEGGHEDVSPLTAPDIAFMTKVLGMNLTAIWVRLMIGRFSGQALVKASHEGTTYHDAIYRAHFPYADYHLTNQKSVPATVIGAQIERANKGSEQ"]}}, {"location": "[404509:405763](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.3"], "codon_start": ["1"], "gene": ["cadA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20021"], "locus_tag": ["MAAAAKME_04310"], "product": ["Cadmium-transporting ATPase"], "transl_table": ["11"], "translation": ["MQKWLMKNRNRLTEITGILIVLAFAAKWLFRSETAESGLLLAASLIGGFPIAESAWQALKVKVISIDLLVTLAILGAFVIQEFEESAIVAFLFLFGAYLEQKTLAKTRSAIKELVEMVPETALRQTADGDFEEVDLDDLDEGDILLVKTGGKIPVDGEVVSGSGTANEASITGESMPLGKKPGDPVYAGTILENGTIRIKAGKVGDETTFGKIIELVEEAQDSKSQAERLIDRFSKYYTPVVLLLAIIVGLISQDLELAVTILVLGCPGALVIGVPVSNVAGIGNGAKQGILFKGSEVITKFSKVDTIMFDKTGTLTYGDPRVSQVKKYGQGQLAEQLLVSVEKESAHPLAKAITGYYEDLEAKEVEASRVLQGGGIVAQVAGQQVLVGNRYLLDQYHVLVSYKRNGKGHGRAGKCW"]}}, {"location": "[405737:406400](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG2217"], "gene": ["zosA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31688"], "locus_tag": ["MAAAAKME_04320"], "product": ["Zinc-transporting ATPase"], "transl_table": ["11"], "translation": ["MEELASAGNSLVLVAVNGQLELALGLKDEIRAGVKEDLAALKKQGVKNLLLLSGDNQKTVDLVAEELGLTEAYGQLLPEDKAEFVKKRQAAGEIVAFVGDGINDSPSLARADIGIAMGSGTDVAIETSNVVLMNGSFDRIPRALALAKATRRNMIENITIALVVVAVLLISVLASSWMNMAIGMFAHEGSILVVILNAMRLLAYRSKLQKSRKLIENNFS"]}}, {"location": "[406464:406692](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["copZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32221"], "locus_tag": ["MAAAAKME_04330"], "product": ["Copper chaperone CopZ"], "transl_table": ["11"], "translation": ["MKKAILQLETLACPTCMQKIAGAIANVDGVEKTSVKVLFNASKAKANFDPEKTNLDTITQAVKNIGYDVLKASAK"]}}, {"location": "[406729:407008](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["scdA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01156"], "locus_tag": ["MAAAAKME_04340"], "product": ["Iron-sulfur cluster repair protein ScdA"], "transl_table": ["11"], "translation": ["MIKEFFDKNDEMLDLCTQAITKAHGAHHPEVFEVRKVYEDIQKKVKAGQEDLTADFSKLRSLTADYNIPADACGAMTKTYQTLEEFDHLVQG"]}}, {"location": "[407032:407683](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0664"], "gene": ["fixK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29286"], "locus_tag": ["MAAAAKME_04350"], "product": ["Nitrogen fixation regulation protein FixK"], "transl_table": ["11"], "translation": ["MQHICVSLVPLFVDLPEKDQLKINSLASHRRYQEGETIFQPGDEKLQIVARGNIKVYQLSASGREQLLRVAQPGDYEGEKQLFGLENDSFFGQAMENTEICSLSKADFNRVLMENPQLSLKLLELITQKLLATERQTQFLAMERVEERLASYLLDLAKAAGSDQVQLSMKMKDIALYLGTTPETLSRKFKLLEKMGYLKRTGKQVKILDEDGLLDL"]}}, {"location": "[407737:409078](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1114"], "gene": ["brnQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AD99"], "locus_tag": ["MAAAAKME_04360"], "product": ["Branched-chain amino acid transport system 2 carrier protein"], "transl_table": ["11"], "translation": ["MKEKLTHAESLTISSMLFGLFFGAGNLIFPAYLGEASGANLWISLLGFLITGVGLPLLAIASLGMTRSEGLLDLSGRVSHKYSYFFTCLLYLTIGPFFAIPRCFTVPFETGISALLPSGMAKSTGLFIFSLIFFTIMLFFSLRPGRIMDWIGKFLTPAFLLFFFFIMITALLHPLGNYHAVKPVGEYASAPLISGVLAGYNTMDALAGLAFGIIVISSIRTFGVTKPEKVASATLKTGVLTCLLMAVIYAITALVGAQSRTALGLAANGGEALSQIARHYFPGLGAVIFALMIFVACLKTAIGLITACSETFVEMFPKTLSYNKWAIIFSLLAFGIANVGLTTIISFSLPVLMLLYPLAISLILLALTSNLFDFKQVDYQIMTAVTFLCALGDFFKALPAGMQVKAVTGLYGRVLPLYQDGLGWLVPVAVTFVILAIKAAISKKRA"]}}, {"location": "[409223:409886](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPPFEKYQAVKKAYAAGANKENAQAMDKYMRNLFPFYGLKTPTRRELSKPFLKGVTKEEIAWDLVDLCFKDDYREMQYFALDYLKKVQKQLTFKDLPKIKQLAETKSWWDSVDSLVKLAGQIFIKDEENKEKTAALMLAWAQDPDFWVRWTAIEFQLEATDPDLLGKIIDRNLGSQEFSINKAICWALRYYSKTNPAWVRDYMASRDLSALSRREGSKYI"]}}, {"location": "[409929:410436](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.22"], "codon_start": ["1"], "db_xref": ["COG:COG2816"], "gene": ["nudC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32664"], "locus_tag": ["MAAAAKME_04380"], "product": ["NADH pyrophosphatase"], "transl_table": ["11"], "translation": ["MFELNYCPQCGQKLTKKELPLDGLIPYCEQCGDFRFPVFSVAVSMIVMNEGGDQVLLIKQYGKDSYILVAGYVNKGENTEDSCRRELMEELHLTAKSLHFNRSQYFAPSNTLMLNYTVTVDQAEKVSPNEEIDAWNWLSIDEARRQIRPNSLARTFLLEYLNKCKLHR"]}}, {"location": "[410731:411241](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLGYVELMNQCMDWAMQDGDPSDAIMILLSEIDEELGAARAFRENSGYYISDMAAFKETDPMLYEVFSRQELSSLVLCPFYFETDLVGFVGVDEPKDMSLALPVMQIASSHMSGLLQKSFYVEKGASDDSVTNLCSVTAFRHHVAYELEEIQANPGLKLDLVHFDIRNF"]}}, {"location": "[411293:411740](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVQEVGSPWLVRPVADHFYALIPDSKVGQAIRNVHDAIIGDEAFGVSIRAGIYPLSASDQQVSFAMDRARIAANNAVSNYQNYYCRYEQKMEADLTLANYLLGHIDEAVAKGWINVLNALYPFSGSNHQELVENRFGHGLFRQGRGR"]}}, {"location": "[411708:411984](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVFLDKGGDVDIIYANKASKSWTESLRLKGEDYAVAIKEEFCALLRQLVSQTDGEIIEKSFRIKDYAGRLRLQLVAEMSGQRAYVISTNMV"]}}, {"location": "[412060:412318](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04420"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNELDKMRSGDFYQLTAPEVEPYQEAGIIWNDEFRQGNNLDRPAQLLRLKMHLGALGDQASFGTSFSCLNGPNIYIGHHFLAAGV"]}}, {"location": "[412714:413071](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIALQVLACLVAVEFFYIMYLETFATTSKKTAEVFQMDQEELSRPSVNTLFKNQGIYNGLLAVLTLIAAFALGKIVLQLVLAYMILVAAYGAVTSQPKILLMQGGLPILTLIVSFFA"]}}, {"location": "[413188:413674](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1522"], "gene": ["lrpC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96582"], "locus_tag": ["MAAAAKME_04440"], "product": ["HTH-type transcriptional regulator LrpC"], "transl_table": ["11"], "translation": ["MVEYKIDKTDRRILQMLEENARISVKDIAEANFMSSPAVANRIRRMEDNNLIKHYYADIDYSSMGYVVKAFINLEVKPEDKSEFYPFIEKVPNVIQCDCVTGDYSMLIQAAYRRPEELDHLVNELQKFGRTRTEIAFSTPIEHRPIPVKTESDDEEDKKED"]}}, {"location": "[413882:415694](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.16"], "codon_start": ["1"], "db_xref": ["COG:COG0449"], "gene": ["glmS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0CI73"], "locus_tag": ["MAAAAKME_04450"], "product": ["Glutamine--fructose-6-phosphate aminotransferase [isomerizing]"], "transl_table": ["11"], "translation": ["MCGIVGVVGKPAREVVLNGLKNLEYRGYDSAGIYLNDLQGHEYLTKAVGRIANLEEKLAPEEEGTTGIGHTRWATHGHPTVENAHPQYSEDGRFYLVHNGVIENYLELKEKYLAGAHFKSETDTEVVVQLVAKLAKEENLDAFSAFKQALKLVKGSYAFLLVDNTKPDHIYIAKNKSPMMLGLGDGFNIIASDAISVLDQTKTFIALNDGDCADVTKDSIEIQDCDGNKAEREAKVLDIDPNAASKGTYEFYMLKEIDEQPAVMRRLSTDYLDEAGKPVVDEKIIDAVSQADRIYIFAAGTSYHAGLVGKEIFEKFTGIPTEVGYASEAGYHFPMMSKHPFFIFLTQSGETADSRVVLTEANKRGIPSLTMTNVEGSTLSREATYTMLLNAGPEIAVASTKAYTAQVALQAILAKAVGEKLGDQAAKDWNLKQGLSLAAEGIQEIVDGKEKIEELAKKYLIPSRNAFYIGRGIDHAVSLESALKLKEVSYIQTEGFAAAELKHGTISLIEDGTPVIALINDPVTADLTRGNIQEVASRGANVITIVGKQFAKEGDNIVLPEIDYYLSALLSVVPTQLLAYFASKNKGLDVDKPRNLAKSVTVE"]}}, {"location": "[415830:416166](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVTDRQQRILQILLENEDGISLAEVEKRLETSRRTLYREFGLLRPELAKSDLTLTNKKGYLQLTGPDESIADLRGELEESQGQGEMKAEDRGNALAALLLLNWMSLPVKT"]}}, {"location": "[416162:416270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIGGSQFLKEEGYKHLNDEDKAEVDKYVGFPERRC"]}}, {"location": "[416376:416586](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.17"], "codon_start": ["1"], "gene": ["mtlD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99140"], "locus_tag": ["MAAAAKME_04480"], "product": ["Mannitol-1-phosphate 5-dehydrogenase"], "transl_table": ["11"], "translation": ["MEGVHYAPDLEPYIERKLFSVNTGHATVAYTGKALGYETIGEAVKDDRVVDQVTRVLAETFPPFGQVGL"]}}, {"location": "[416597:416837](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.17"], "codon_start": ["1"], "gene": ["mtlD_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00196"], "locus_tag": ["MAAAAKME_04490"], "product": ["Mannitol-1-phosphate 5-dehydrogenase"], "transl_table": ["11"], "translation": ["MKNTMLKSSTASRTHTSLTISGRTPIRKLGYDERFIRPIRELKARGLDYTALLETVGKIYHFDEPVDAESQKAATDAQG"]}}, {"location": "[417055:419785](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG2352"], "gene": ["ppc"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QWX4"], "locus_tag": ["MAAAAKME_04500"], "product": ["Phosphoenolpyruvate carboxylase"], "transl_table": ["11"], "translation": ["MTAKKLENNSNHAVTAEEVKILTDLLDESTRHLVGDEEFAKIKGLVKIAASSDHSQLESQIACLSNQEMIIVARYFATLPLLINITEDVDLATEVNLLNNTDKDYLGKLESTVDLVAEKDNAAEILSHVNVVPVLTAHPTQVQRKTILELTNKIHDQLRRHRDVKASTINRKEWTNQLRRYIEIIMQTDIIREKKLKVSNEIKNVMVYYPGSLIPAITKLTARYKELAREKGLNVDGATPITMGMWIGGDRDGNPYVTAETLRLSATIQSEVIFEYYVKALNDLYRTVSVSTSYVQPTPEVAELAKLSADNSPFRENEPYRRAFYYLESRLAHTEMELLDVFSKEAVVKKEAALKAPVYKDAYEFKKDLEAIKRSLIQNHDRAVTGGHFDALLEAIDVFGFHLATIDMRQDSSVNEACVAELLKSARICDNYSDLDEEEKIQILLSELNNDPRSLHSSNSPKSELLQRELKIYHTARLLKDTLGENVIKQHIISHTESISDMLEQAIMLKEYGLLDSEKARVQVVPLFETVEDLQNSREIMKRYLSFDIVKRWVASKGNYQEIMLGYSDSNKDGGYLASCWNLYKAQTELTAIGEEQGIKITFMHGRGGTVGRGGGPSYEAITSQPFGSIKDRIRTTEQGEIIQNKYGNKDAAYYNLEMLVSAAVDRMVSKQKVSQDHIQDFTASMDGIVEDSNRVYRELVFDNPHFHDYFFQATPIKEVSSLNIGSRPAARKKITELSGLRAIPWVFSWSQSRVMFPGWYGVGSAFKHFIDADPNNLKELQEMYQGWPFFHSLLSNVDMVLSKSNMEIAEKYADLCEDEATRSVFDIIKKEWELTKEVILQIEGHSKLLEDNPSLERSLDYRLPYFNVLNYVQLEMIKRGRQEKLSGIYESIIHITINGVASGLRNSG"]}}, {"location": "[419951:420896](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFFISLEQICIMFILMAIGFLCRKKGMIHEETGKDLTAILVYIVGPCLIINAFERPASASLIKDFDLTFLAGSLNYLFPIAFSSLFLRLPRLKNDPDKQLIAFGAVYNNCGFIGIPLIQALLGSKGTFFAVPILVLNNIFVWSHGIGTFKKRQPLADTLRTVLFNPNIIATAIGFALFITGSSLKFPAVIDRSVSYVASLNTPLSMIVIGSNLGTISGDFYKDSKAWLICFLRNFLMPACMSVILLLFPLSTTAYLAVVIMAAAPVAGFIVMLSLLANRPVAFPMRCLCLSTLMSVVSVPLIIMLASWLKQLV"]}}, {"location": "[421076:422699](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0488"], "gene": ["ybiT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9U3"], "locus_tag": ["MAAAAKME_04520"], "product": ["putative ABC transporter ATP-binding protein YbiT"], "transl_table": ["11"], "translation": ["MITVTDLSLQIGSRTLYSDVNLKFTPGNCYGIIGANGAGKSTFLKLLEGKMEPTTGSISMGPNERMSSLNQDHFAFEDFSVMETVIQGHQKLYQVMKERDALYAKADFSEEDGVKAAELETEFAELDGWNAEADAAQLLQSMSIPEDMHQKQMSELAESDKVKVLLAQALFGNPDTLLLDEPTNGLDVHTTAWLENFLADYENIVLVVSHDRHFLNQVCTQMCDVDRGQIKLYVGNYDFWYESSKLATELARQQNAKKEEQIKQLQEFIARFSANASKSKQATSRKKQLDKISLDDIKPSSRKYPYIKFEMNRDLGNDLLRVDNVSYKSGDEQLLDNVSFIIRPGDKVAFLSRNTRATTALMEIIAGRLEPDSGTVTWGQTTSFNYMSRDLNANFDNDELTILDWLRQYADKEHDDNTFLRGFLGRMLFSGDEINKQIKVLSGGEKVRCQLSRMMLEAANVLVMDDPTNHLDLESITALNEAMENYPGSILFTSHDHEFIQTIANHIIEVGPKGVVARADISYDDFLAHPTVQEQVAKIY"]}}, {"location": "[422758:423421](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["kgtP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEX3"], "locus_tag": ["MAAAAKME_04530"], "product": ["Alpha-ketoglutarate permease"], "transl_table": ["11"], "translation": ["MDESAQFTAKNKQNKQAGSFALLMKYPKQVAIVVGMSLGGTISFYSYTTYMQQFMINSAGMDKETVAMINFLVLLVMVALQPLFSHLSDKIGRRPLLIFFGIGGTLLTVPLFTLLAHVSTALQAFLLMLTGVVIVSGYTSINAIVKAELFPSEIRALGVGLPYGLTVALFGGTSQYVALCMRSIGHESLFFYYVSFAVFISLMLYIFTLKGHRSALDDDA"]}}, {"location": "[423444:423771](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["kgtP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEX3"], "locus_tag": ["MAAAAKME_04540"], "product": ["Alpha-ketoglutarate permease"], "transl_table": ["11"], "translation": ["MAAGSLIIAFAPTYAQVGIISPLILVITRMVQGLSLGGEYGTSATYMSEMASRGRWGFYSSFQYVTLIAGQLFSLLVQIILQQVLTDAQLYAFGRRIPFPSSLVLSAP"]}}, {"location": "[424454:424664](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEAQKAIKLQLKSRDTDPDKSLFLNYRVKAKSGKILHLSTLGRYVEDSYYGDVFVIFVLPDDLSMKRKK"]}}, {"location": "[424720:425086](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKVITKILQAVSFLLSLFLLWAGLASLLDVCNSARLMGWSSFIPSIVAGLVFIVMLICEAWLGLRINKLDDRGIFFFLAALLLLTAGEMVAPVALGSGFLWLNLLQLLLVLLARFSIDFHE"]}}, {"location": "[425328:426528](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sbnD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2G1N0"], "locus_tag": ["MAAAAKME_04570"], "product": ["Staphyloferrin B transporter"], "transl_table": ["11"], "translation": ["MQKQPVWKRNLQVSTVSVFLAGIAFSEITPFLSLYIDTLGKFSHQQLSFWSGIVFSAVYVVAALVSPIWGKLADKKGRKPMILRASLGMAVVFTCMGLAQNVWQLLFLRGMQGVFAGFISNSNALIASETPKNKSGKALGIMISAQTGGQLLGPFAGGALSQAFSYRVTSFITGALLFTCFILSVFFIHEDDFVPVESKQRGSFKDTMKQFKSGQLILGLLLTTLIIQAANNSINPIVSLYVRSLMHNSRQVVLVSGVIAALPGIATVAAASYFGGLGDRIGTHKIILGGLIGSIILFFLTAFVRNTVELGVCRFLVGFTDACLFPQVQTLLTKHSPKELTSRVFSWNQSAMYVGNIFGPLLGSTVSAHFSYSAVFLVTSGIVVINLLLYRTNILKNIA"]}}, {"location": "[426667:427381](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0670"], "gene": ["ybhL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AAC4"], "locus_tag": ["MAAAAKME_04580"], "product": ["Inner membrane protein YbhL"], "transl_table": ["11"], "translation": ["MFNVSPEQEHRHIVDDSALNGFLTKMYSIMGLAVLVSSLTAYLTLTVFSGSLLPLLTNRVFLWVLLLLPLILSVGISFKATRKPTTAFFMLMAIAVVYGLEFSLLAFAYTGAQIGGAFISASAVFIGMAAYGSVTKKNLDTIGAYASAAIWGLIVASLVNMFLKSTPASFIFSIIGVIIFTILTAWDAQKMKSIYASYGDQLPELGLAVNGALMLYLDFINLFLQFLRIFGIADNDN"]}}, {"location": "[427648:428434](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.3"], "codon_start": ["1"], "db_xref": ["COG:COG0796"], "gene": ["yrpC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05412"], "locus_tag": ["MAAAAKME_04590"], "product": ["Glutamate racemase 2"], "transl_table": ["11"], "translation": ["MSKEYVDRPIGVFDSGQGGLTVLSRLVDLMPNEDYVFYGDSANAPYGVKSKEEVYQLAKRVVDELIDKHQVKAVMIACNTATSAAADRLRREYSLPIIGIEPAVKPAAEENPGRQVVAMATPLTLEQDKFNQLVAECAEPGQVVKVPAPKLVELIEKGQTDSPAIYQYLEELLAPYVGKAAGVVLGCTHFPFAKQAIQEILGPQAKVYDGAIGAAAEVKRQLASQDELNASSQPGQILFENSAPAGADLSKRLYALYRQKQ"]}}, {"location": "[428512:429934](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_04600"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MQKPAECTTILVGKDATIDGSTMIARSEDGGSTIIPEAFIAVNPKEQPKHYKAVISGQEIDDEDLLPNPLRYTSVPDASGKNGIWAAAGINDATVAMTATETITTNSRIQGIDPLVEEGGLGKEDFVTLTLPYIHSAREGVKRLGYLVEKYGTYEMNGSAFADHDEVWYIETIGGHHWAARRIPDDAYVAAPNRLNIDFFDFNDEENFMCSSDLLDIINEYHLNPDYQGYNLRHIFGSSTIKDAHYNNPRAWYIHRYFDPEWEGEPGDQDQPFITYAKKKISPEDIKFLESSHYQDTKYDVYSTTNTEAEKKLFRPIGINRNFETHILQIRNDVEEGIAGVQWLAFGPNTFNCFVPFYTNVTTTPASFQTGPDFDLTKIFWLNKLNAQLGDTNYKVYSALEQAFEEKTMAKLRQIENETDRAVKGLTGRDLQEKLEEANQKMADLTYKQTAALTGEMVKDGHSLMKLKYDLLD"]}}, {"location": "[429947:431033](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG1363"], "gene": ["ysdC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94521"], "locus_tag": ["MAAAAKME_04610"], "product": ["Putative aminopeptidase YsdC"], "transl_table": ["11"], "translation": ["MEKAAEIQMLKDFSNANATSGFENEFVDLFTKTVKDYADLEVDGMLNVYASKKQNTGKRPVIQLDAHSDAVGFLTQAIRPNGLIKFVTLGGWNNVVLPALKVKVRNRDGEYIPGVVALKPPHFMSEAERTSVPQVADLSIDVGSSSREETINDYKIDTGCPIFVDVDCEYNEKTGLFFGKDFDDRFGAAAMADILENLKDEEVNFDLVAALSSQEEVGLRGAYVTARKIKPDLCLVLESCPADDTFEPDWLSQTGLKRGPMLRDMDVTFLPNPKFQQYACDLADKNGIPYTRSVRTGGGQDGAAIYYENGAPTIVIGIPVRYEHSPYCFSSYKDYKAAVDLALAIIRDIDKEKLESFKSFN"]}}, {"location": "[431240:431810](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4721"], "gene": ["ykoE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34738"], "locus_tag": ["MAAAAKME_04620"], "product": ["Putative HMP/thiamine permease protein YkoE"], "transl_table": ["11"], "translation": ["MLRRESEWNVKAIILMALIGIIMGVIYTYVVNPIYNSVELALNLVGLGPLAGQICAGLWYMAAPLAMYFVPTFGSGIVGETLAATVEMTFGGQWGAMTILQGLVQGACNEIGFFPKKENYDRFGWGSLITGAVCCAVAGYVMSYLTYGWSAYKSALLIEMFIACIISSIVFDAVLVKLITKLFDRVMAK"]}}, {"location": "[431921:432053](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTHLILSRPKKMNRAYWSMVGLLLALMLLTAWIGLHTFAYLNL"]}}, {"location": "[432139:432766](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.48"], "codon_start": ["1"], "db_xref": ["COG:COG0572"], "gene": ["udk_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SKR5"], "locus_tag": ["MAAAAKME_04640"], "product": ["Uridine kinase"], "transl_table": ["11"], "translation": ["MAKQKPLVIGIAGGSGSGKTTVSKEISKRLPADRVLILTEDAYYNDNSALSMDERKKINYDHPNAYDTDLLIEQLQDLLDGKAIEMPTYNFNILSRAKDTIHVEPADIIILEGILVLATEELREFMDIKLFVDSDDDIRFIRRLQRDTQERGRSIDWIISQYLATVKPSYNQFVEPSKKYADIIIPQGGENQVAIDMVSSKLLSIING"]}}, {"location": "[432768:433422](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.48"], "codon_start": ["1"], "db_xref": ["COG:COG0572"], "gene": ["udk_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67413"], "locus_tag": ["MAAAAKME_04650"], "product": ["Uridine kinase"], "transl_table": ["11"], "translation": ["MSKKQHPIIIGIAGGSGSGKTTIAHELYDQFKTDRIRIITEDSYYKNHPEMSMAERNKINFDHPDAFDTELLISQLQDLLNGKAIEMPIYDFTTHLRSPETVHVEPADIIILEGILVLASEELRNLMDIKIFVDTDDDIRLIRRQRRDMAERGRSFDSIIDQYLATVKPSYHQFVEPSKRYANIIVPEGGANDVALDMLITKVRDILRRNDLAEKEA"]}}, {"location": "[433971:434712](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["glnQ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27675"], "locus_tag": ["MAAAAKME_04660"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MAAIIEFKKVNKFYGDYHALKDVNLSIDEGEVVSIIGPSGAGKSTLIRTMNGLEGISSGVLKVDGYDLGDKKTDLNKIRRNVGMVFQHFNLYENHTVLENVMLAPRIVLHRDEKENREIAEKLLKQVGLLGKEDSYPRQLSGGQKQRVAIARSLAMKPKVLLFDEPTSALDPEMIQGVLDVMQSIAAEGMTMVVVTHEMGFAREVSDRVIFFDQGQVLEDSHNPKDFFKHPRNLRAQEFLSRVIDH"]}}, {"location": "[434733:435573](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_04670"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MKHTKLFRKVAALLFLLLTTVSLSACAVESDNSVRVYNHVKSSKTITWGVKFDMALFGIKSVKTNKLEGFEIDLARLLTKEILGKDGKAKFIEVTAQTKIPQLKNNNLDAVLATMTITNERKKSVDFSTPYFKAGTSLMTKTSSPIKSIKDLNHKGRVVIVAKGTTAADDIARLAPKATIRQHNDYGACTNALLAGQGDAVATDNGILAGIAKQHKSLHLVGGTVAVEPYGIAVEKGQTKMLEAINKALKEAKADGSYHKLVKKWFGNIPGFSAKEVEY"]}}, {"location": "[435572:436214](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34671"], "locus_tag": ["MAAAAKME_04680"], "product": ["putative glutamine ABC transporter permease protein GlnM"], "transl_table": ["11"], "translation": ["MLSLLGANWSTFLLGFWNTILCSLISLFFSLIVGSGFAILETVPSKFWRVVAKVYVEIFLNIPLLVVTMVFYLVLPTYTPLKLTGFQAGTIGLSIYSSAFIAETVRSGIQSVGTGQMEGARSNGMTYWQAMRYVILPQAFRIVIPSLGNQFVNLIKNSSILAFVAGFDLMYQGDIVASNTFQTIPSYVLVSLFYLVLTLPLSYYMQYLEKKGV"]}}, {"location": "[436225:436894](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0765"], "gene": ["glnP_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34606"], "locus_tag": ["MAAAAKME_04690"], "product": ["putative glutamine ABC transporter permease protein GlnP"], "transl_table": ["11"], "translation": ["MENLTEALSWINLRFLLQGFWVTIEVSVISIILSFVIGLALGLIRFTRIDAKTTRISKVVGVIIDIIRNLPLLLIIFFSYFGLPVMGIRVDAFQASVIAMVVFESAMIAEVVRSGIMAVDPGQMEGARSNGMTYMQAMTHVVLPQALSKMIPALLSQFVSLIKDTSLATIIVLPELLYHAEIIYNQNTNYMIPMYLAVAVMYFIICFALSSFANYLSKRIKY"]}}, {"location": "[436935:437781](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_04700"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MARKLRELTAIMAVLLLSLVFTACSHSQSSSTYDRVKQTNTITWGMRADTRLFSMMDVDSGKATGFEVDLARAITKQILGPKGKMKIEYISEKSRIMDLKIGNVDAVMATMTNTPDRRKIINFSDTYFMAGETLIVPKKSKLNSIKDFNNSKYSIAAVKGSTADSDVHKYAPKARVIFYDDYGSCYNALKTGKASAMVSDNAVLAGLISDDKDKFKMLPDTFTVEPYGIGIKRGEDKFTAEVNQALKVLRKNGTYACLMKKWFNGVPGFNIKSSSRLKASE"]}}, {"location": "[437986:439498](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.40"], "codon_start": ["1"], "gene": ["gppA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01550"], "locus_tag": ["MAAAAKME_04710"], "product": ["Guanosine-5'-triphosphate,3'-diphosphate pyrophosphatase"], "transl_table": ["11"], "translation": ["MSKRQFGLIYISSYQARLFIVDLKKLAIIEQLSSVQFVQGGKKFEVYENELPRLTDALIGFKRKIAEYGIDNYKVYGNRQLLDKISARYLADQIKVRTGLEIEWLNGAQIAYYKIIAGMALPQFSELADDEFTYLLSMGSAILNLTLFKGQHYLSTWNFALGPEEIEEMAAMTRDTPSDPIDIIGDYISRKLVSFKTIEKPTGKARIIIQHVFGRGEQSLRPQEKARVIDLKQFAGVYSDFREAPDQYLMEKYELDTDSLARMKPTIVLINQLVKIIKPHMMTLTQSSAITGLMIQEAARLKYRPDEYSTIVLTATKNIARRYESGGQHVNLSNKFALHIFDRLAHAGMVDRRDRQLLEIAARLHDIGNFVNFHNHYEHAAYIVGANQIIGLSDWENEMLLSILKHQDITNLNADEREYRHLDPALQVRVAKLAAILRLANSLDASRKQKISKIVVSIKDEKMLIVVTSKRDLTLERWVFEKNVNLAEAVFGMKIAMKQKRGK"]}}, {"location": "[439501:441667](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.1"], "codon_start": ["1"], "gene": ["ppk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0DP45"], "locus_tag": ["MAAAAKME_04720"], "product": ["Polyphosphate kinase"], "transl_table": ["11"], "translation": ["MTIAKNKNKFTDPSYYANRELSWLDFNDRCLDEARNPDEPLLERANFLGITQSNVDEFYMVRVASLSKLVAAGVKSHDASGLTPLEQLTAINHKEHEVVEKRYSTYSRSLLPLLRKNGINILESDELSEDQEEYIRRYFSNELYPVLTPMADDHSRPFPFINNDSLNIALRLKDRESGEHKFATVRVPNIFPRLVKLPDGDNDFIMLEDIIKVFADRLFDGYEIRQAACYRVTRDMDLDVSESDTSDFLLAVKKQLEDREHGHVTRLEVESSMNIKLLKHLMKRLNVDEGSVFSINGPIDLTFLKKLPGMVEGHEDLRYKPMQAFVDPALRSDHNIFDSIREKDYLVQHPYDSFDSVLNFVKQAAKDPDVLAIKMTLYRVSGNSPIIKYLGQAAKAGKQVTVLVEVKARFDESNNVHWARTLEQMGCHVIYGLVGLKTHTKVTLVIRRDEDGIRRYLHLGTGNYNDVTAHFYTDLGFFTCDRDLGVDVTNLFNMLSGYSKPPYFSKLRISPKLIRQFIYEKINNEIAIAKAGRHAEIHMKMNSLSDPDVIAKLYEASVAGVKIHLIVRGICCLKTEIPGVSDNIEVHSIVGRFLEHSRIYYFYNDGKEEVYLASADMMRRNLNRRVETLFPVLQEDLRERVLDIFAKMWQDNVQARILHKTEWVHVDRRGQTPFNSQEYFIAEAAEKVRIVKEEEEEEKAKKKDAFEAMKPQESELEDDER"]}}, {"location": "[441695:442961](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKDRHEIEIFKIDQMFIGDSQEELIKQGEGRRKEHPIAAISTFNPVKRDVFQLIKLTEEKMIPELLGMRHKRMMQNPFSYFRATAGIMEKDLRQFPDGQSHIPVIICGDSHLTNFGFFASPERHLLFGLNDFDEARIGNWEFDLKRLLTSVVLIGRINGYPKEQLDGILAESVHSYRRGIKYANSLPLLDRFNLSYSVDDLLGQMTDNEQMKRVLLKVADRAPKKNSDAVVKKFTEKTEDGRLRFKKKPPRARRVSQKVYAELMAGLEDYQKSVADDIRVLLINYEVTDIIRYSVGVGSWGTRCYLALLTGKDGSHLVLQIKEALPLRYNLSALTVEESQAQGKGEGKRIITAQRVLQTYHDPFLGAIEAGGRSFYVRQFRDMKDSIDPLNLDQESFSAYCNMCAFIFWPLPTTKARQRR"]}}, {"location": "[442957:443095](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYGYVHKQKELDTGLAHWAVKYADQMDADYTCFAKYLQGEGDEE"]}}, {"location": "[443098:443422](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLTDLDRVELTKLSYEALNVGETVVVAGKKIGQLTRDVYAKDGMQAFLSRTGRMANYLRYRRNLQADWQKESDQRAEQIGEELFNHSFLQDFNDRDKNAKDGKEQ"]}}, {"location": "[444014:444260](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKLTLYLLPPVLLAAIFMIVDFASGQHNLWMSAVATLAWWLFSFASDHLAKGWQKAVFLACVGFLLLVAGLCIYIKLNS"]}}, {"location": "[444406:444904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIEEVLAKQLLAKDPSIERFEEDFYGDFYDYFVNFLKFKCLSQGKDLASLEKQKLVLYLDLFNSQDFPGRKAYRYKLVFDSQLNFLAAESDFTLSALCRDLRGRVDQLSDYEAVRSQALASLAERFDSKNPDPNTRIQNFNVVLADLYDRYNLSRFKTAYQLVG"]}}, {"location": "[444971:445892](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.15"], "codon_start": ["1"], "gene": ["rbsK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H2WZY4"], "locus_tag": ["MAAAAKME_04780"], "product": ["Ribokinase"], "transl_table": ["11"], "translation": ["MQKIVVIGSSNVDTTLHVENFPKPGETINAHKVSEAGGGKGGNQAVAAAKSAAETIFISRVGEDSYGSWMKEQLAGYGVKTDYVLPTAGVKTGHAYITLNAEGQNDIIIDHGANYSLTEADVLAAKDVIEAADCVIAQLETPLEATTAAFKLAKAAGKVTILNPAPAIKDLPADLLAVTDLITPNETESALLTSLPVAEEADLEKNAAKLHELGVKHVIITYGSKGAYLSSPVFTGLVPAFKVKAVDTTAAGDTFLGFLAGSLASDFSNLHEAARFANRASSLAVQKMGAQPSIPDRASVASALAE"]}}, {"location": "[445907:446558](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.3.1"], "codon_start": ["1"], "db_xref": ["COG:COG0036"], "gene": ["rpe"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AG07"], "locus_tag": ["MAAAAKME_04790"], "product": ["Ribulose-phosphate 3-epimerase"], "transl_table": ["11"], "translation": ["MIIAPSILNADNLHLGQQIQEAADSGIRRFHIDVMDGHFVPNLSYGPQLVSDFKKQFPDLTAEVHLMSNNLPDLLPAFVKAGSDFIEIHYEADYPNLIAHWLDYLKENGVSCGLVLSPDTDIKVLERYKDKLDQVLLMTVYPGFGGQKFMEEAAARIKAARAILPDLPIEVDGGINAQTAEIAKEAGADVFVAGSYIFGRDSVAKQVAELTSILEK"]}}, {"location": "[446570:447263](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.6"], "codon_start": ["1"], "db_xref": ["COG:COG0120"], "gene": ["rpiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTT9"], "locus_tag": ["MAAAAKME_04800"], "product": ["Ribose-5-phosphate isomerase A"], "transl_table": ["11"], "translation": ["MDQAKQDELKKAAAKKAAALVEDGMVLGVGTGSTVKFFIDELGKKKAAGLTLKAVVTTSSRSQKQLEGYGFTVSPLSEVDQVDLTVDGADRVDKQLNGIKGGGAALTLEKNVAVNSKKNVWIVDESKVVDHLSGFALPVEVLPISCMQVEKRLADEGLKPEFRLTEDGQRLKTHYGNYILDLKLDRIPVPSGLADYLDHTVGVVEHGLFLNICDQVIIARDNGEIEVRSR"]}}, {"location": "[447358:448294](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1957"], "gene": ["rihC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22564"], "locus_tag": ["MAAAAKME_04810"], "product": ["Non-specific ribonucleoside hydrolase RihC"], "transl_table": ["11"], "translation": ["MNKKPLIISTDPGIDDAVCLTIALFAKELDVKLIVPTWGNVSLEKTLNNTLRLQAFLGTKVPVVAGAKLPLVKEAIDASEVHGASGMDGFDFPEADQSLLVEGLAATKIHEVVSQSPEKVTLMQIGPATDFALYFRQYPEDLDKIDRLYIMGGALGRGNYGPYDEYNVSGDPEAAKIVFDLGAKGLDIYVAPLEVGNQAFVDAASLEEIKALGRVGEMIYGLNSQYELNDADADAGKRIYDALTAAMLLEPDLFEVKEAYVAVDTKGPYTYGASVMDFEGFFGKKANAKIAVKVDRQPFKNWLLAAIAQAK"]}}, {"location": "[448302:449025](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2188"], "gene": ["gmuR_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05509"], "locus_tag": ["MAAAAKME_04820"], "product": ["HTH-type transcriptional regulator GmuR"], "transl_table": ["11"], "translation": ["MADYVYRTVMHDIKRRILAGEYEGMRLPDECSLAEQYQVSRSSMKRALELLAQHGIVFKKRGSGTFINPLYLKNQAMFRYEGSNLGLTDSFLAPGKKQGIKLLEFKVVKASPETAQDLFLSENDFVYQFKRLRLLDGQPFLIEEGFVPIKILPELKEEILQGSLFNYLEDAQNKAVTRSYLTITVSPSSAEDQEALQLKATEPVGVMDGIFFLDDGTPFEVSSMRVHYKYMRFNSFVNLN"]}}, {"location": "[449228:451631](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.2.9"], "codon_start": ["1"], "gene": ["xpkA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q937F6"], "locus_tag": ["MAAAAKME_04830"], "product": ["Xylulose-5-phosphate phosphoketolase"], "transl_table": ["11"], "translation": ["MTADYDSKEYLKSVDAWWRAANYLSVGQLFLLKNPLLKEELTADDVKIKPVGHWGTIAPQNFIYAHLNRVIKKYDLNMFYIEGSGHGGQVMVSNSYLDGSYSEIYPEISQDEAGMTKLFKRFSFPGGVASHAAPETPGSIHEGGELGYTLSHATGAILDNPDVIAAAEIGDGEAETGPLAAGWFSNRFIDPVKDGAVLPILQVNGFKISNPTITARMSDEELTKYFEGMGWKPYFVSTFKGGRFDGMKDIDQIHEEMAKTLDAIIEDIKAIQKNARENGDKSFAHWPLLIFQCPKGWTGPKTDLDGNPIENSFRAHQIPLPVDQKHMDHKELLLDWLKSYKPEELFDETGYPTDLVLQNAVHGDQRMAMNPVTNGGINPKRLNLPDWRDFAFEVGKPGSKDAQDMVEWAKYLTKVAELNPTTFRGFGPDESKSNRLFDFLDSEKRQWESEIHEPNDENLAAQGRLIDSQLSEHQDEGMLEGYVLTGRHGFFATYEAFGRVVDSMLTQHMKWLRKAKEQYWRRDYPSLNFVATSTVFQQDHNGYTHQDPGLLTHLFEKNRPDMIHEYLPADTNTLLAVADKAFRDREGINLLVTSKQERPQWFTPEEAAKLVDKGLGYIDWASTDKDAKPDVVFASTETEPTMETLAAIDILHQNFPDLKIRYINVVDVMKLMAPKDNPAAISQEEFDRLFPTDVPTIFAWHGYKTMMESIWFARKRYNVSIHCYEENGDITTAFDMRVLNHLDRFDLAKDAVEQIPALKDKSAAFIDKMDSLLSKHHAYIRDHGEDIPEVTSWKWTGLDK"]}}, {"location": "[452051:452600](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLGGQETLTLKRTKDEADLDVKISLPDLVNLDKTATDKANEELKIDKAEEAVKEVAASEKEGRHLLLHFAKGQSQLKLSLDPGRYYIRELTKPGVTVQPLLLSLPRNGSNQLTVYLKTEAVTGQVQLTKLGYASASAKGKALAGVSFYLYLEGNSLPLRVDALGKLSTDYRDSRLLFTDLP"]}}, {"location": "[452654:452954](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDQIKVIKPTQVDQLKIVKGRDLCTLMTCNSLHDQHLPPAGHRIPYNPKAEAKAKERSRNRLIWIIIAILLPVLAIIIFIWHKKRKKKTAKADKEKEQE"]}}, {"location": "[453096:454440](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WFP3"], "locus_tag": ["MAAAAKME_04860"], "note": ["UPF0053 protein Rv1842c"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTQIWINLLAIGVIFVFASFFVAAEFALVQVRPSQLEDMIANGQGNVKKLKRALHMSHNLNEYLSTTQVGITLVGVILGWFGADTIANIFERLLALTPMSKNLVNSVGALIGVITLTYLEVVLTEVVPKNIAIDAPVKILMWIVNPLQLFHTLVYPFVWLLNVSSSGIIKMLGFNPADEENQVYSQSEIIRLSKNAVHGGALDKEDLTYMERAFQLNDKTAKDIMTDRTRLTVLDASENIKTALDKYLEDGYSRFPVVRENDKDDVVGYVYAYDIVQQSRIDDRVPVTRINRTIITVPESMPIQDILRLMISKHTPIVLVVDEYGGTSGIVTDKDIYEELFGSVKDEIDDVSDDYIIKDAEGNIRVSGKTTLYDFERYFHQNLKSFQNSDIITIGGYMMERYPDLKKEESIELEGFRFTLDDIQQGFMRWFIVEGPKTNDQAKKEE"]}}, {"location": "[454549:455119](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.8"], "codon_start": ["1"], "gene": ["hpt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99085"], "locus_tag": ["MAAAAKME_04870"], "product": ["Hypoxanthine-guanine phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MKSIHDAVDHKLYSEEDIAEMTKRLGQQLTKDYAGKRVLVVGALKGAIFFLTDLLREMDLACDIDFIDVSSYGNGTESSGKITVTHDLEADVTGRDVLIVEDIVDTGLTLKFMKDELLSRGANSVKCCVLLNKTARRTTEVDVEYYGTHVGNEFVIGYGMDFAGLYRNLPYIGVIKPEVVEEFSKHEHD"]}}, {"location": "[455200:456493](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["steT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34739"], "locus_tag": ["MAAAAKME_04880"], "product": ["Serine/threonine exchanger SteT"], "transl_table": ["11"], "translation": ["MKKQISFGHALATVIGSVIGAGVFFKIGSISQSTGSASATILVWLLAGVISICSGLTVSEIAAALNVNGAIEYLDYSYGSIWGFLFGWAEMTVYFPAQIAALASIFGQQFVVLAGLPASSSKWIAAGVVLLLFLINMLGTKASAWMQSVITVIKLIPLFLIIVFAIIRPQVSVSLWPVTVDSSGGWLAGISQGLLSALFAFEGWIVVTNLAKEMKNPKKDLARAIILGLSLVTVVYVLVNYAFMAVLPFDKIIGNDNTAYYASLKLFGQAGGKNVTVGILLSVYGACNGFMLTGMRTPYILAQANRLPGSEKLAKTSVRSGVPVFSALLVNAIALIMISLGNFEILTDMLVFVMWTFTTLLSVAVILLRKREPDLARPFMTPAYPVIPLISIIVGLFIIVMTVINQFALSMIGLGITLLGLPVYYWKKLH"]}}, {"location": "[456598:457285](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGQKKHFQHPATLPALLILLAAIISLLAYGLYNYTSQTTLPKGASQSAVGLKVSQADFDLSRLEKGGLSFVYLPVDQNFAARREQVAKTKLAYGSIIEVQGEKNAAKQLSRAKRLAAGHWGALPILLDSGQDDPSAANLTAMSKMAYSLVKSHEIMVNAPVKYKKLFPAGCKFLATSASAPSKLDYCFWRYTEKGHVAGVSGIGCKNVMYAYIGTSQQYKEKYGQLAQ"]}}, {"location": "[457281:458526](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0513"], "gene": ["yfmL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34750"], "locus_tag": ["MAAAAKME_04900"], "product": ["putative ATP-dependent RNA helicase YfmL"], "transl_table": ["11"], "translation": ["MIYTEQIQAVLQKEGKSQPTLIQRETYEAIKNGASLVALAKTGTGKTLAYALPALERVIPGEKNSLVILAPTTELAVQIRNAILPFAKALGLKTLALVGAGNRQRQDERLKKDNCEVLVCTPGRFFDFFSSGRIKLVQIKTLVIDEADDILEFAKLELLSSLGQNLPSSSQILLFGATESQITQEAEEIFARHFLLVDVRPDQGSQTEHVFLQVDNKHKLEYLQRLCKLDGFRGLLFFDSNEGMLRFARIFAHSKTRFEVLANNFSKDKRQQAIRDLAKGKVKLLLATDLAARGLDIPKLTYVVNYEIPTDANTYMHRAGRTGRMQQEGKVVSLGNDHDLRKLKKLLEGEVTVDRVYFAGYHLSKEKPVKKEKAEDKDKPAVIEQPVKKKKKSKKKNKNKGYHPHYLKRKKQSE"]}}, {"location": "[458518:459838](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1455"], "gene": ["celB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9CJ32"], "locus_tag": ["MAAAAKME_04910"], "product": ["PTS system cellobiose-specific EIIC component"], "transl_table": ["11"], "translation": ["MNSVIDWLERHLMPLANNLASVRWLVALRDAFISTLPISLTGSVAVLIKSLIITANRNWGWHVFCQLMQPSISICNFVWRGSVAMFALFFVLSWGYQLAKAREVDPLAGAMTALCSFMMSIANYSYLMQGNKRIKLDQAFNIKQLSTTGMFTAILFGGLGVALYILGVKARLGLHIQTAMPPAQIAAFEAAIPVMLALFIVGGLNYLFQTITGQYFGDWLLEIIQLPLLKLGQGFIMVIAITALTQLFWFFGINGASALAPVVGSIWATAQNANLLAAANGHKIPYLWTNTSFVVFGVNGVCLPLVIAILLTSKRGDHRTLAKVALAPAVFNVNEPMLYGLPIILNPVCFLPFTLAPLANVSLAYLATKLGWINRVQASVPNIMPPVIGPYLATNYDWRALVLFLVNLVIAVLIWLPFVKAADQIGQTDEPRRFFMPQY"]}}, {"location": "[459898:459975](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_04920"], "note": ["tRNA-Arg(cct)"], "product": ["tRNA-Arg"]}}, {"location": "[460315:461389](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSETTQTKETVGSFTMKVLNGSATAIIVSLLPSAILSTFLTPFAGSNAIVANLLHIVTVFQYFFAVMCGFSTAKQFNLGYTEAACVGGAAFLGSGCMTAVTTTVKGVTTTSFQLAGMGDVINTMLTAAVAVLFIKWVGNRFGSLGIVFFPILAGTGVGFLGSLIKPYVSLVTTAIGDVINTFTKLAPYSMCILIAMSFAIIIVTPLSTVAISVAIGLAGMGSAAAGFGLASTAAFLFWATLKVDKPGVQVAIFLGVIKMMMPNFLRYPVIGIPIALTAAISTLSVPILGMQGTPASGGFGLIGAVSPLAAYNAGFYNVLVLVIVWVVVPFAVGYLMKKIFVDWTKIYKPEYFISPAR"]}}, {"location": "[461620:462904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pyrP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39766"], "locus_tag": ["MAAAAKME_04940"], "product": ["Uracil permease"], "transl_table": ["11"], "translation": ["MKEDKTFRNPEAVLDVQDKPKFGPWLLLSIQHLFTMFGSTVLVPLLIGLKPSIALFCSGVGTLVYILCTQAKIPAYLGSSFAFIATMQALMKNYGYPAVGQGAIAAGLVYVIVALLIARFGSRWLDKILPPIVVGPIIIVIGLSLATTAANDAMFNASGKYSLTYFGVAIFTLVITIIFNMFLKGFPSMIPVLLGIICGYLMALFCGIVDLSGVESAKWFSLPAFDVLGVSYKFKWYPAAIITMAPIAFVTMTEHMGHIMVLNKLTKRNFFEDPGLHRTLLGDGLSSIIAGFLGGPPTTSYGENIGVLAMTKVHSVFVLGGAAFFAIVFSFVGKVSAVIESIPTPVIGGISFLLFGMIAANGLRILVDNKVDFEKKRNLVIASVILVIGIGGTYLKIGSFQLTSIALATVFGILLNPILPEKAASEQ"]}}, {"location": "[463016:464267](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNLPEELAKIVKEVDEQIAGRLHEIDEQVIYNQAKVLEAFVDNAVAESDLKGTNGYGDDDEGRDKLERVYAQVFHTEDALVRPQFVSGTHTLATALDGNLVPGDTLTYLTGMPYDTLQHAIGLTPDKAGTLIEKGVKFSYVPLKEDGSVDFEDGEKILKRDQPKIVAIQRSRGYDTRESFPVAKVKEMIDFIKEVSPQSLIFVDNCYGEFSEKHEPTEYGADFMAGSLIKNAGGGIAQTGGYIVGRKDLIHRAASRLFAPGISDSEGPTLNSLHEFYEGFFLAPNVTGEAIKGMIYSAALMEKLGFDVSPKWDAPRTDLIELITFNDKEKMIKFCQEVQKNSPVDSFVTPIPSHMRGYEDEVIMAGGTFVSGSTVEFSADGPIRPPYAVYMQGGLTYAHDKIAVTNAVKSVLFGD"]}}, {"location": "[464350:466438](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.17"], "codon_start": ["1"], "gene": ["odcI_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P43099"], "locus_tag": ["MAAAAKME_04960"], "product": ["Inducible ornithine decarboxylase"], "transl_table": ["11"], "translation": ["MHYLAIAAKKELLPYLPIDWPKTELTELVNPASLAAVVIDEKDSRSRGIYQTMKEKLGLDLPLIEFTPETSPAEISRLAQTYEEANVPRFIRELTAFSDQDDLVFDTPGHHNGRFYDRHPAGAVLRNFFGDNYFRADTSDCVSELGDMMNHTGGPLEAQQEAAKAFNADKVYFCTNGTTSANTICTTALLDEDDLVLFDRNNHKSIYNSALVMTGAKPVYLPTDRNADGLIGPLTAASLDEDLIRREIAKVAPGRAKADRPFRLAVLQLETYDGIFYDAKLILKKLGRLCDYILFDCAWGGYEQFVDVLRDFSPFQQTYGPDDPGILVTQSVHKQQAGVGQASQILKKDSHIKGQKRYVDHKHFNHAYMKYVTTSYSYPVYASLVANSAMAASPAVNSWWNDTVKLGIDFRKRLLKESKLFKPLVPPTVHGQKWENLPTDVLSQDPEAWKLSPDDDWHGFKLLAPGEVALSPVKVTLMTPGIDLAKAAFTEEGIPGAIVSLYLHEKHIIPEKSDSYSTLYLLTPGEGQVDMNGLFSTLMAFEEAYLTKAPLSAIMPELVAQYPNRYEGYTLYQLCQELHHYYQEHEIFKLQQALFLKDSFQNYELTPKEADREFVHGNSELVKLADAKGRMALEGALPYPPGVFIVAPGERWQDLDVAYFQVLIGAARKFPGLDPEIQGVYQEDGEVWAEVLKES"]}}, {"location": "[466477:466720](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_04970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKFLRVTATLLSAAAILDSLYWLFVGHSYLRVAFLKLTGGNGIPGWLQIAVIAGILLLLSQYDWFFDHFLRDERDRKYK"]}}, {"location": "[467146:467509](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_04980"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MIEETPKKHYMAWMTLAMLDFVTIIRFEDVFYPYQNQGLSVIFSWIFLLICYQLPYTLIATQLGLAYKDTEEGGLASWIRRGTGSDVLGYATSWMYWAQTVPYLVDVSNSIIASSFPFPG"]}}, {"location": "[467505:467892](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_04990"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MILGNNTLGKHMSPFMFGLLTFVIILIFILCESAYKNSLDLLSLIGGIAMFAMSVIFVILIIWALMHGGHIATKMEWSSFKPNFSVHYFSTTGLLIFAMSGAELAAPYVTRLKNPRKEFPSQCGCFLA"]}}, {"location": "[467870:468590](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_05000"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MWMLFGMTVFMTLTETLGLAVLFDAKHIPHDFKMNGAFYAFQLLGEEAGMGKSLMYMYAIVCLLNFMADLAALIDAASRVFASDTSEKYMPSWLRKKNKDGLPVNSYVLTCSITFFLLLLSGTLPEINDIFNWLLNLNGIVSPYKTSVVFLAFLAFRYRHKTFAKDDFVFIRNNKGALAVGWWCFIFTFICATMGFLPQDVTFESPQWTKQLWMNIITVIVLFGTGFLLPWLRKLELKH"]}}, {"location": "[468693:468888](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVNIFPLLGDSLLIILVGFSLVYSFDGSLGQKTRRILRITSLLLLLAIIPLTIWILQHPLLIN"]}}, {"location": "[468989:470132](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.3.14"], "codon_start": ["1"], "db_xref": ["COG:COG0381"], "gene": ["mnaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39131"], "locus_tag": ["MAAAAKME_05020"], "product": ["UDP-N-acetylglucosamine 2-epimerase"], "transl_table": ["11"], "translation": ["MQKIKVMTVFGTRPEAIKMAPLVLKLISDDRFRPVTVVTAQHREMLDQVLEIFKIQPDYDLNIMQPQQTLADITTRVLTALSQIIQEEKPDIVLVHGDTTTSFAASLAAFYQQTPLGHVEAGLRTWNKYSPFPEEMNRKLTDVLSDLYFAPTSVSRANLLKEGHPEENIFVTGNTAIDALAPTFQADYQHEVLDKIGQGKRIILVTMHRRENQGEPMRRVFKAMKDVVDQTDDVEIVYPVHLSPRVQEAAKEVLGGDPRIHLIKPLDVVDFHNLAKRSYFIMTDSGGVQEEAPSLGKPVLVLRDTTERPEGVKAGTLKLLGTEEDAVKAAMLELLTDPAAYQQMAEAKNPYGDGQASDRILDDIAWYFAGKKGPKPADFS"]}}, {"location": "[470173:470653](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKDFNRRRALGERNFKRHRNLWVYMFFGFIAALINTVVFMFMHDFLHTVLVIDNTIAFIVSNLASFWFNHKAVFTKNVDHEHKLWQKLLSFLAYRIISLLPDTLIMWLGMTVLGWPALIVKVIDQILVGIFNYLTTKSVFEKQEKNLKKRLEKKIKKR"]}}, {"location": "[470645:471092](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0716"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P00323"], "locus_tag": ["MAAAAKME_05040"], "product": ["Flavodoxin"], "transl_table": ["11"], "translation": ["MRAKIVFASMTGNDEDMAEILEEDLLDQGLEVDSSDVSFTDANDYLDSDLCVFITYTYGEGAMTDEIADFYDQLKELDLTGKSFAVMGSGDKTYKEHYCENVFDFEKAFLACGAKELIPPLTVENAPDDDDIARIDQAAEELADKLNG"]}}, {"location": "[471238:472066](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.18"], "codon_start": ["1"], "db_xref": ["COG:COG0024"], "gene": ["map"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19994"], "locus_tag": ["MAAAAKME_05050"], "product": ["Methionine aminopeptidase 1"], "transl_table": ["11"], "translation": ["MITIKSVRELKGMQASGHLLATMFEALRDVIKPGISTWDIEEFCQEFVSSRGGRLSEQGFEGYKYGTCISVNDEIAHNIPRKNVFLKEGDLVKVDVTCNLNGYESDSCTTYGVGQISEEDQHLIDVTKKAMYMGIDQAVVGNRIGDIGAVIQHYVEDEEGYGDVRELIGHGIQPSIHEDPEVPHWGKAGHGLRLREGMTITVEPMVEAGGDWRILQKTVDDPNDDWVFYATPDGSKSAQFEHTFAITKDGPKILTLQKPYDGLEKYIPHFDEMED"]}}, {"location": "[472068:472983](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEKVEPGQKGVRRFLTTLSSVVSQGEIFQSSIVIAYYILFSIFPIVIIVGNALPWFHLDTGPIADYLEMIFPSDVARYIIPIVDTLLKSNSTSYISFGAIMALWSMSCMVNAVRIGMNRLYGVHNKELKLGFWHFIWNRTLTVIFSALMVTMFILLALIVVFGQEVLHFLAPYFNLPLAWIDKLSSYRWLVLLVLILIGVYYLNAVAPNVHFKKALFPGTIVTVAGWEALSYLFSFYLKNFPVKWENYGIVGNFIIFMLWLNLLAILLLFGTAVNVSLDQLRYGPATYSNGPLAEFIAKRRKK"]}}, {"location": "[473106:474021](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.9"], "codon_start": ["1"], "db_xref": ["COG:COG1210"], "gene": ["gtaB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q05852"], "locus_tag": ["MAAAAKME_05070"], "product": ["UTP--glucose-1-phosphate uridylyltransferase"], "transl_table": ["11"], "translation": ["MKVRKAIIPAAGLGTRFLPATKAMPKEMLPIVDKPTIQFIVEEAMASGIEDILIITGRSKRAIEDHFDSNTELEDNLTEKHKDALLKLARETTMSNIKVNLYFTRQPHPNGLGDAVNRARSFIAGEPFVVMLGDDLMRDKTPLTKQLIDCYHETHASTIAVMKVPNEEVNKYGVIDPIGETAPDLYNVKAFVEKPDVDKAPSDLAIIGRYLLTPEIFDMLDKQKAGAGGEIQLTDAIDALNKTQRVFAHEFKGQRFDVGNKEGYMETSIQYGLRHPETKDALRKYIIDLGKKLESEGKKKPAGK"]}}, {"location": "[474081:474363](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLEDFLQLLAGLGGQNVLYLQVQNQTLPLSKFVLAREDCQLLCGGQAMTLAKFRQLTGKGSKSIPLSFCWQEKEIPVYGVQILPAEGKIICK"]}}, {"location": "[474478:475447](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.99.20"], "codon_start": ["1"], "gene": ["menH_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01660"], "locus_tag": ["MAAAAKME_05090"], "product": ["2-succinyl-6-hydroxy-2, 4-cyclohexadiene-1-carboxylate synthase"], "transl_table": ["11"], "translation": ["MKKKNKKRSNYRLVKILGGLLAVLALALAGAGYYFFNMAVVPGKKSFVTNGTVQLTKSTPQYKQKLWYKQVTKQHWQLRSANNNYLLRANYIPAKNSAKTVIILHGYMSNKENMGAYAQLFHSLGYNTLLPDAEAHGQSQGKYVGYGWLEKNDVKKWAEQVIKKNGQKSKIVIFGVSMGGATTMMTSGLNLPKQVKCFIEDCGYTSAKDEIDHEAQALYNMPAFPRFPLVEILSGITKLKAGYFLAQASSLAQLKKNTRPMLFIHGSKDTFVPTKMVYKNYRASRGPKQLLIVKGAQHAKSYEHNPALYARTVKQFLAKYAK"]}}, {"location": "[475828:477211](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.189"], "codon_start": ["1"], "db_xref": ["COG:COG2265"], "gene": ["rlmCD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31503"], "locus_tag": ["MAAAAKME_05100"], "product": ["23S rRNA (uracil-C(5))-methyltransferase RlmCD"], "transl_table": ["11"], "translation": ["MQKKHFSKNASKERHVIITIKRLGINGEGIGYYKRKIIFIPGALPDEVVVAKIVKDHPQYLEGELVRIKEASPDRVPFPSGVDPRIGGLELAHLSYAGQLKFKKDNLVSALEKYHPRGYKNYKIKNTIPAPDQWHYRAKAQYQIERENHHVSLGLYAPNSHQLIDLPEMPTQSEDTQATERAIRDLIIKLRVPIANRRRNLPGVKTIVVRQAEASQEMQVTLITVGHKLNNLLQLADEIMRLPKVVSVYQNETDWQNPQVWGNKTSKLRGKNQVTEEIMGKKFALSPRAFFQLNPVQTATLYSEALKLLSLTPDMTLIDAYSGVGTLGILAADQVKQVVGIESIPEAVLDAQHNVELNHVRNAEYLHGSVEKLLPRLKEDGLPIDALIVDPPRTGLAKSLIKTLLRVKPASFVYISCNPSTLAQDLVLLGEAYDVRVIENVDMLPQTPRCECIAKLTLRK"]}}, {"location": "[477371:478187](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["recX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66003"], "locus_tag": ["MAAAAKME_05110"], "product": ["Regulatory protein RecX"], "transl_table": ["11"], "translation": ["MAIITKVSAQKRQGRYNIFLDQEYAFSVSEKTLAEFVLLKGQELSPQKINEILDYEASAKASDLAARYLSYQPRTIKEVTDYLSQHEISRSAAKRAVNELTHLGYLDDAAYARLFVKNNLQVGKNGPGAVRRDLKKKGVDDDLIEAALADVTDEEWAGVGKRLVKSLLGQQGKIAKREVDRKMQTKLLSHGFSGSLAQAVTQDLVPEADEDQERAALVKQVLKAYKRFKRYEPGVREQKMRQYLYSHGFSGDEISAFLVGEIIPLEELEEY"]}}, {"location": "[478208:478685](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTEINELTFIGKAFPDRMMDANGTFAAANQELEADPAFQAFVKEAGLAGQRASLIVFGPENFMYWYGVIAPKDSEVSGLLKFSLPSARVFQKEETANAAYFDLPLNFELPRFLDEAGDLGSDFQAQLEENPNPYILRQLDLGSKKLTKSLYLPVSQN"]}}, {"location": "[478681:479149](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKMRRIMLVFVFLLLIPYICSLAIIGIGFNALVLHSTSHFRTAVGAFVGAIIMLAVKATIQRPLNLLAGDIYDSFLQQILRFFSIRRRPLLQVANFILDFVLCTLATIVIRLLLPLKWIVGTSMGFVILVMFISTCLGAYIEYDNLSIDAEIKQS"]}}, {"location": "[479249:480107](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WFP1"], "locus_tag": ["MAAAAKME_05140"], "note": ["UPF0053 protein Rv2366c"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSDPATGSLFDKLRSRFSSNEESGKDQLQAEIDQLHAGNVLTDTEYSMIEGSMAFHDKVAREVMVPRTDAFMIDIEDDLEENLDDILRQPYSRIPVYHQDKDQIVGVIHIRTILREARQHGFDQLTYDRLISPPLFAPETIELDDLLVQMQTSQQQLAILTDEYGGVTGLASIEDLLEEIVGDIDDEVDKAEVLVRQLNDRQFVIYGKMPLTDFNDRFGTELEMEDVDTLAGYMITKLGVIPGRGEQLEVPLDNGMVLTTRRMRGVAALNGLIDPARRKLRGRN"]}}, {"location": "[480113:481685](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["prfC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99V72"], "locus_tag": ["MAAAAKME_05150"], "product": ["Peptide chain release factor 3"], "transl_table": ["11"], "translation": ["MNKELLDKVNKRRTFAIISHPDAGKTTITEQMLLLGGVIRSAGTVKARKTGNYATSDWMEIEKKRGISVTSSVMQFEYQGKRINILDTPGHQDFSEDTYRTLMAVDAAVMVIDSARGIEPQTKKLFKVVRQRGIPVFTFMNKLDRDGREPLDLVAELEEVLGIEGVAMNWPIGMGQSLLGLYDLANQRVELYHPEEGQDRFIALADGKAPAGSPLADDPQFEETLGEIELLEGAGASFDRAKVLAGQQTPVFFGSALTNFGVETFLEQFVDLAPAPGEHEVNGDEELKPDDDEFSGFIFKIQANMNPQHRDRIAFVRVCSGEFSKGLDVTLARTGKQVRLNNAVEFESSARVQVSEAVAGDIVGLYDTGNFQIGDSVYAGKRKLEFPPLPEFTPELFMRVSPKNVMKQKSFHKGMNQLVQEGAVQLYRNYQTDDYILGAVGQLQFEVFQYRMKNEYNSEVEMTSIGHRVARWINPDQLDPKMSSSRNLLVKDRFGNPLFLFENAFAERWFHDKYPDVELTEKL"]}}, {"location": "[481786:481975](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMNNNLYLKILWVLLYGIVAFYTFTDKMMMAMYWMAGVMFTQAVLDLVYYFLPKSKTEMTEC"]}}, {"location": "[481996:482245](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDMETITNAFVEEMGVEPGEVFMPGMDVENMDMGACFHAAEAETSRRLVEAVTAASRAGHEGHHDAASGASHHDATSGASHH"]}}, {"location": "[482290:482623](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "gene": ["mco_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q69HT9"], "locus_tag": ["MAAAAKME_05180"], "product": ["Multicopper oxidase mco"], "transl_table": ["11"], "translation": ["MDDNDKINGLRFSMERIDMKQTLNSVEYWDVTNTNNSASRMLHPFHIHGTHFLVVSRNGQKPNPNEINVYKDTIEVGPGETVRLKVYFQNAGVFMYHCHIIEHEDAGMMA"]}}, {"location": "[482644:483013](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2132"], "gene": ["ftsP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26648"], "locus_tag": ["MAAAAKME_05190"], "product": ["Cell division protein FtsP"], "transl_table": ["11"], "translation": ["MPLINGVIRPYVDVTTQKVRLLFLGGSNRREWRLHFENDLTMTQIGGDDSFLRHPIDVKKLLIGPGERQQVIVDFAGYKEGDVVSLYTDDFKLVKFRIHAFEKDDRELPFNIFTPDDPAVNS"]}}, {"location": "[483150:483669](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "gene": ["mco_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q69HT9"], "locus_tag": ["MAAAAKME_05200"], "product": ["Multicopper oxidase mco"], "transl_table": ["11"], "translation": ["MTVYPDYFYAEKDFDTSHMGYKPLTIPAGVEAQPLAVPPLLAPDKVDANDIYYTIEAQEGESQILPGKKTETWGYNAPLLGQTLVVKTGQRVHVRLKNSLPVLTSFHWHGMEVPGPITDGGCHAPVYPGEEKDIEFTVKQPAALTWLHAHPCPSTVNGHAGLDGPGHVGCGY"]}}, {"location": "[483954:484233](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHLIDVTNSYAELVHSQLNTTSVNYVKVYSLGNTTVVYTESPIAIGIVLENHHRKIREEELEFVIKRLIPDHTSYQLTVDKHRRVVEIHVDK"]}}, {"location": "[484348:486544](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0542"], "gene": ["clpE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S5Z2"], "locus_tag": ["MAAAAKME_05220"], "product": ["ATP-dependent Clp protease ATP-binding subunit ClpE"], "transl_table": ["11"], "translation": ["MFCQNCHQRQASIHLYTKINGQNKEIDLCQQCYQELRNQQGNQMNNDNFFGDFDELFNALNGRSNGANRDNNQNPSGPTPGRGGNGGGQSLLDQFGTDLTALAKKGKIDPVIGRDREIARVIEILNRRTKNNPVLIGEAGVGKTAVVEGLAQDIVDGSVPAKLQNKRIISLNMVSMVQGTGIRGQFEQRMQQLVKELQSQPDIILFIDEIHEIVGVGNSEGGMDAGNIIKPALARGELQLVGATTIKEFREIEKDSALARRFQPVEVKEPSIDETIKILKGIQKRYEDYHHVKYTDNAIEAAVKLSARYIQDRFLPDKAIDLLDEAGSRMNLTIPYIDKEKIQERIDAAEKLKQDALKNEDYEKAAYYRDQIEKYEKLKDQNVDPDKAPTITAKVMDKIVEEKTNIPVGDIQAQEEKQLANLASDLKAKVIGQDEAVDKVARAIRRNRIGFNKSGRPIGSFLFVGPTGVGKTELAKQLALKMFGSEDAMIRFDMSEFMEQYSVSKLIGSAPGYVGYEEAGQLTERVRHNPYSLILLDEVEKAHPDVLNLFLQILDDGRLTDSQGRTVSFKDTIIIMTSNAGQGIKTASVGFTAENNKNEAEETRKVMSQYFKPEFLNRFDDIIQFHPLSKDNLLQIVNLLLDKTNAMVSDQGLHIKVTDAAKDKLVEEGYDPEMGARPLRRVIQEEIEDKVADYKLDHTEAKQLVVDLRDGEITISEEVPALPATEASKEK"]}}, {"location": "[486712:486913](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDYTDILEKLVLGDLLEYQIDPQKDPEDAFAFQQSLRNYGKNKKITGRAGRGGVITYTSIENKPKY"]}}, {"location": "[487020:487287](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1925"], "gene": ["ptsH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07515"], "locus_tag": ["MAAAAKME_05240"], "product": ["Phosphocarrier protein HPr"], "transl_table": ["11"], "translation": ["MEKKEFHIIAETGIHARPATLLVQAASKFGSDINLEYNGKSVNLKSIMGVMSLGVGQGADVTISAEGDDEKEAIATVAETMSKEGLAE"]}}, {"location": "[487286:489014](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.3.9"], "codon_start": ["1"], "db_xref": ["COG:COG1080"], "gene": ["ptsI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23530"], "locus_tag": ["MAAAAKME_05250"], "product": ["Phosphoenolpyruvate-protein phosphotransferase"], "transl_table": ["11"], "translation": ["MTETLKGIAASDGIAVAPAYLLVEPDLSFEKKSIADAEAEVARFDKAVAESQAELESIRKVAAESLGEEEAQVFDAHLMFLSDPEFTGQISAKIKSDAVNSEAALDEVAQNFITIFQNMTDNAYMKERAADVRDVSKRIMAHLLGKELPNLASIDHEVVLVAEDLTPSDTAQLNKKYVKGFVTDLGGRTAHSAIMARSLEIPAVVGTEKITTSVENGQMLIADGLDGVAIVEPSEEQVADYRKKGDDFAKQKAEWRKLKDEPSVTADGKHFTVAANIGTPDDLAGVLENGAEAVGLFRTEFLYMNSNDFPTEEDQFEAYKKVLEGMNGKQVIIRTMDIGGDKHLSYWDLPEEMNPFLGIRAIRLSLKNKEIFRTQLRALLRASAYGKLGIMFPMIGTLDELHQAKAVLAEEKDKLVKEGVKVGDDLQVGMMIEVPAAAVLADQFAKEVDFFAIGTNDLIQYTMAADRGNENVSYLYQPYNPSVLRLIKHTIDSAHKAGIWCGMCGEAAGDSIMFPILLSMGLDEYSMSATSILRIRNEMKKLSTEELASLADKATKESLTNEDNIELVKNLMADK"]}}, {"location": "[489192:489597](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["spxA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60379"], "locus_tag": ["MAAAAKME_05260"], "product": ["Regulatory protein Spx"], "transl_table": ["11"], "translation": ["MVDLYVSPSCTSCRKAKQWLEQHNIPYKERNIISDPLNREEIIHVLRMTEEGTEEIVSTRSKAFQELNIDLDDISMNELIDLIEKNPSLLRRPIILDDRRMQVGYNEDEIRRFLPHSVRRLEIARAKRLADQYF"]}}, {"location": "[489700:490450](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4862"], "gene": ["mecA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37958"], "locus_tag": ["MAAAAKME_05270"], "product": ["Adapter protein MecA 1"], "transl_table": ["11"], "translation": ["MRVEKVNENTLRVSMTREDLNQRGLKILDLLGNRERVQEFFLSVLREVDEDNDFASDAPVTFQVMPNDGGIDLLITKMNAGSDLPEEMRRFFDPEANGVGDDMAEAVEEDDWAFSDLNPADDANTEMDPVVMQDLGNTDDEDYEDYWSYQETHVLVFDDIDDLLALADSLKVSDLASSVYYYKQQFYLKLAFMDENYAEIKPADAWAIANEFGRQVSADEFQQAQAHGQCLFQQDALGALRRQFASKRA"]}}, {"location": "[490551:490749](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYAALLNKELVLAVSEAGKVRENPAYLNQEVYRCPRCQKPVILVLSQKAEPFFKHYQAYRGLGEQ"]}}, {"location": "[490767:491412](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLKAALTAAGLNAKAEVPLADGALRADVLATPLLAFEVQCAPLSKGEFAHRHALYQAIGIKDVWLVGRRHFLGEKLKQTQLIFFRENRCWGSYYLEIHQEAGLIRLKYQIRQAPVSQTLLYRQVDFALDAEGIAALWHFRPLLPPPLADDWVKERDYLDQQLKEKSKLGQKLGELMYLAGYTVFTLPKEAFSTWRRPGEKSWLLKFLQQKTSP"]}}, {"location": "[491424:492069](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFELFLFINPLGLSCYQLEKRIRLLAAELQLEISVNYIPLVTMEAMKADMVKRNWNFNTSINLANYHNASVSAQSFYYAVQIAYGKKKARSFLFKLQESLSDGQRSYSPALAEELLESLNIKPEKISSTLNDACLKDVIARDQQLARKFQITVLPSTVVFDDQIDNSGLLLDGELSDDDLLQVFQNSADSCLEPLMQLTENAPLYYPVSHLHLL"]}}, {"location": "[492149:492752](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG4116"], "gene": ["yjbK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31609"], "locus_tag": ["MAAAAKME_05310"], "product": ["Putative triphosphatase YjbK"], "transl_table": ["11"], "translation": ["MSKNREIEAKVALDQASYEAIVAAYPVKSDFKQSNHYFDTPDKQLKEDHSALRIRCFQDRAEETIKVPVKKLQETYHESLEINDDLTLPEAEDFLKKGRPSLTGNVGQYLLEHYPDKASQLTLFSWSKTRRILLDGPKGCELTLDQTSYPDGYQDWEMEIENDSPAAIKEALAEIKTRFALPVKSANNQSKIARASQHAK"]}}, {"location": "[492849:493488](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.5"], "codon_start": ["1"], "db_xref": ["COG:COG2357"], "gene": ["yjbM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31611"], "locus_tag": ["MAAAAKME_05320"], "product": ["GTP pyrophosphokinase YjbM"], "transl_table": ["11"], "translation": ["MSVITDWDTFLWPYNEAANELKVKFRALRQSFLTKGEHSPIEFVVGRVKTVDSIKEKMQRRVISPDVIETDMQDIAGIRIMCQFVDDIYRVVDLLHARDDLEVVEERDYIQNAKPSGYRSYHMVVAYTVYLSEGDKRLLAEIQIRTLAMNFWATVEHTLNYKYQGAYPEDISERLKRTAEAAYQLDEEMSSIRNEVKEAQKIFTKNKGKEKS"]}}, {"location": "[493484:494282](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.23"], "codon_start": ["1"], "db_xref": ["COG:COG0061"], "gene": ["nadK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65779"], "locus_tag": ["MAAAAKME_05330"], "product": ["NAD kinase"], "transl_table": ["11"], "translation": ["MKVAIVHNDRVTTQVAVRHLQVLLAEKGILQDQQHPDLVISVGGDGTLISAFHKYKQQLDKVCFAGIHTGHLGFYTDWRNYDMEKLVDALASHPVEENEVGYPLLDMKVTTSCGEKRFLALNEASIKRISKTMEAEVWLGGERFENFRGDGLCVSTPTGSTAYSKSLGGAVIHPRLKTLQLTEIASINNLVFRTVGSPIVIAPDEWITIVPKISDRVVVIVDGERISLTDVQKVDYKIAAEEIRFYQYGHHHFWERVNDAFIGDR"]}}, {"location": "[494296:495190](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVAKNDPGQLSHFLLKKGFSRRAVNNCKNHGGMMLVNHHRRNGSYRLKEGDVVHFLMGQEPVNPWLKVSRRPLDIVEETADYLVINKPAGLLSIPSGFHAEDAVINRVLAYFEKQGVNPAYVKPHIVTRLDQDTSGLVLLGKNAIAHDRFSKLGKDAFIKKYHAIVHGNFAEGDLSGLIDKPLARVGDTVKREVNPKGQRALTEYRVLNQVPGASLVELRLLTGRTHQIRIHMASIGHVLYGDDLYGARDAFARQALNCFYLAFPNPFSGEEREIEIPDPGDMQGLWRQLKQEAGK"]}}, {"location": "[495275:495464](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSLLCLLFILWLCWKMGVALWRVLIFLIGVGLAFALLSSVVLPLLAICALGGLAWAVISNA"]}}, {"location": "[495535:496363](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.27"], "codon_start": ["1"], "gene": ["uppP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5WNX2"], "locus_tag": ["MAAAAKME_05360"], "product": ["Undecaprenyl-diphosphatase"], "transl_table": ["11"], "translation": ["MLDIFKAIILGIIEGVTEFLPISSTGHLYLADYIIKLDQPTSFINMFMVVIQLGAILSVIVIYFNKLNPFAPSKSKREKGQTWQIWFKVIAAVLPSIIIGLPLNDWLEENMTSWQVISATLIIYGILFIVLENYYAKRQPSLTDLNKMSNKTALLIGCFQVLSMIPGTSRSGATILGAMLIGSSRYVATEFSFFLAIPTMFGASLLKLVKFFKAGHVFVGNQLAILLVGMVVSFIVAYLSIKFLLKYVQTHDFKPFGWYRIVLGIIVTICGLVFA"]}}, {"location": "[496386:497397](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG2706"], "gene": ["pgl"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34499"], "locus_tag": ["MAAAAKME_05370"], "product": ["6-phosphogluconolactonase"], "transl_table": ["11"], "translation": ["MHILIGGYTKHESAGIYQFDFIGSGDQAHLEQRRNVVEVGGPTYFQKDGQFIFTIKNENGQGGIAAFANGKLVSQLLHEGSSPAYIGINKEKKLLYTANYHTGVLAVISYDDQGQLTLLDQVKHENKALGPRPEQAGAHPHYFDETPGGHLVSCDLGQDRVDFYGFDGQKLTHLASYQNEDGFGSRHLAFSPDGKYFYVAGELSSQVNVVKFDEENWMFRSLATYSTIPESWDQHNGAAAIRLSSDGKFLYVSNRGHDSIAVFAVLPDQALKLVQRVSTFGEFPRDFNWDAEEKYVVAANQNSNNATLYQRQSDGTLTPLEKDIAVPEGTRVLFTD"]}}, {"location": "[497561:497942](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWISTIKAIGPNAISEKDRVVILFGQTAKDELQDVSVIQTFDDEQAAQAVVLKKGDTVTIDGTTFLINYVGPMAVSNLRALQHASLFFTDKVPKKPMSNALYLDLPEDQEMPKFRVDDKIVYEHL"]}}, {"location": "[497951:499088](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKRDTSLFTDWVLNNRFSVGLINVLLVLVIVLVFNKISFILNPVNTFISAILPPLLVAMVQYYLMEPVVDKLEEKFKVPRTVTIMVIFAIVTVFLIWAINSLIPVVQSQIDSLVKNWPTIWKNSTNAVDELLHSPKFSGLRDSLQKQMTSLQKNFSKSMGSTVSSALGNLTSAVTVATAVFTTLATAPFLLFFMLKDGHKLRPFLVKFAPQRWEQATSKLLHEVNQAVSSYVIGQVSVAICVGIMFFIGYTIIGEPYGAALAICAGFLNLIPYFGAFIGLIPALIIALVTDLPMVAKVLVVFFIEQIIETRVISPLVVGNRLKMHPATTIIVMLGAGSVWGLWGVIGGIPIYAVMKILLTHVYRYYRKVSHLYDDSF"]}}, {"location": "[499133:499691](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.207"], "codon_start": ["1"], "db_xref": ["COG:COG0219"], "gene": ["trmL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AGJ7"], "locus_tag": ["MAAAAKME_05400"], "product": ["tRNA (cytidine(34)-2'-O)-methyltransferase"], "transl_table": ["11"], "translation": ["MTNHIVLFEPEIPDNTGNIARTCAGTNTVLDLIEPLGFRLDDKHLKRAVLDYGGEVEIRRHDDLRAFLATLPDNAEMYLISKFSSKVYTDVDYTDESKDYYFVFGRETTGLPETFMRQYADRNLRIPMSDKIRAFNLSNSAAIVIFEALRQQGFPHMEKSHHYENDKLKDDYNRPGRYQRNLPKH"]}}, {"location": "[499722:500118](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEFNKQTPIIVRAFHYDLLDEPEEKNEVNVAIRQVVATGEDGVEDAGEAGGYYEVAVVYDVTPDEDNIIEISGVNTQVVQLLGYHGDGQDLDQETYRLLSRPLVEYIETLTYEVSQVALDEPINLDFEPNF"]}}, {"location": "[500137:502456](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1674"], "gene": ["spoIIIE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21458"], "locus_tag": ["MAAAAKME_05420"], "product": ["DNA translocase SpoIIIE"], "transl_table": ["11"], "translation": ["MPRKKRQANRKNKNKKKTEESLSWVVTGIVSILVAILALLRFGWLGKELANLLRLLIGDSYLLGGAFLAILGLVMLIYGQPPRFGFKRTSGLILAYLGLLYILASRFFNVRSVHSEFLTAFKNVIFEELARANVTVSVGGGWIGSFLYGILYQLLGQIGGLCLAVLNIISGILMFFDVKFRSLVAAFQKISRSFIQQSKDGAGQLKEKYSEYREQQRKDPNNREKLTDPWRDSEEAKPSLPEIQVAEQHPDPPVTNSLELDDLLKPRSQAEDDQKMILADQQVDHGLDKSTVSYDDNYQFPPLSLLKAVHASDQSSDKDKTRQNTAILEETFKSFGVEVNVKRAILGPTITRYEVQPAVGVKVSRIVNLADDLALALAAKDIRIEAPIPGKPYIGIEVPNQKAQSVAFKDAMEHQDQKAKDHPLMVPLGKDVTGQIISADLTKMPHLLVAGSTGSGKSVAINTILTSILMKARPDEVKLVLIDPKMVELSVYSGVPHLMIPVVTDSRLASKALKKVVDEMERRYKLFAAGSVRNMGEYNRKVAENNKDTSRPVMEPLPYILVVVDELSDLMMVGGHDVENSIVRLGQMARAAGIHMILATQRPSVDVITGLIKANVPSRISFAVSSGVDSRTILDQVGAEKLLGRGDMLYLPIGASKPDRIQGGYIDVDEVEAVVDWVKGQQSAEYDEKMIPQAGDDDESSDDDVDDEYYQQAVDLVRRQQSASTSMLQRRFRIGYNRAARLIDELEEHGVVGPPEGSKPRKVLLPPEGQEE"]}}, {"location": "[502461:503685](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEENISIQSNQKFTSGNLGLFVRLPLTKHNMSMASLLCRMQMNESELFPDPGLQQVELQQRYSFQFEAVVQLFGKEMVISYLANFVEPQEILDPDYNYRQIAETFAGLATRPLITPSSVQLAQRQLEEEYQELMAEPSNAALSAFFNNWYADQPDYAASFIGTIEDITKATSQEVRCFADAIKTQASCVFGHVYDARQVKRLLQKKLQEEGWPGLALDFGSRDLLISAPDLRIEKTDEQGKQQAQLFLGYAYKGQPSLQDLATATVLRQYLTGDQSSRLFSKVREENGAAYAVESNWYADNALFLVNAGLDPDKLDLARQIIGKEMQMVADGRIDPGLLKQSRQALANRHLLNQDHASWLLAKDLRYKLHADYEDFDMMAAVSRVTSGRLADFAQKLYLNESYVLK"]}}, {"location": "[503681:504935](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKPEIIRKDFPSGFKAQVIRRKGFNQRFFGIIVDFGSADPQPVPGLAHFLEHKLFAAEEGDLSLEFEKMGASVNAFTSFNETMYYASGVKNVGPMIDLLFKLVGQPYFTDENVAKEIPIIQQELAMYQDEPDWILGDRLLRGIYGDCNLAIDVAGTRESIASVTKEKLQAAYDENYVAARMSFVACGDFTDNQVKTILRQARKLSDQYLRPGKPQKEADLVPFLPSGQDWNLIGGEVPLFTAAIPLPNFKKVLASRDMSQILLEIMLESKLGAASHWFARARQAGLISQPLQISVTYTRQGAYAVLLGMSSEAEVLLDQIKAELAPDKLFSKKQEMEMRQLFEIHKRSWLAQTVRSLDNLSGFAVEMAEESLDEEDLFANVEQMQAMNFADYRAYCQELCEGASINTARLLEEDDQ"]}}, {"location": "[504931:505660](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.100"], "codon_start": ["1"], "gene": ["fabG_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KQH7"], "locus_tag": ["MAAAAKME_05450"], "product": ["3-oxoacyl-[acyl-carrier-protein] reductase FabG"], "transl_table": ["11"], "translation": ["MKRALIFGATGGIGQAIAARLAESGWSMYLHCNSNWEEASDLARTLAEKHPLQDFMPIKLNFLAGDDQLKNFASSLLPVNAVVFAQGITNYDFLGSQSSQVIDQIIKVNLENPIKLTKLLESQLLKQEHSRIVYLGSVYGGQGSAMEAVYSATKGGISRFAQAYAREVAASRFTVNVVAPGAVNTAMNAMFSPETLKELAEEIPAGHLAKPKEIAYWVDCLLNPESDYLTGQTIYVSGGWLE"]}}, {"location": "[505728:506904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSGIGEQLRKAREAKGLSISDIEKATKIQSRYLEAIENNDFDKLPGDFYVRAFIRQYAQIVGLDGKELLSQYQGEVANEVTSEVSQPAASSPAQEVHEEAHEEEAAPVEPVENKPARISASRPAKREVAEEAPKDAKWRKLVPRLALGYGIALLLLIGGMVFANMKKAGSSSQKENAGSSVTITSKKSSSKKSSSASSSSKKKKTSSIKVASLGGSSYRVTGIKSRTPLVVRSSKQSIYYYVSVDNVITNQGTLQSSEKHTETVKKGQTLIVYLGTDTGVTVTVGGKKIPFTPINGTTRLTIYLGDSSASASSSAASRTTSTNTNTNTSTSYSSRASSSVQSSASSRPAASSSSVQSSSQASSSAAPSSQSSAAPSSSAASSSKQQEKNGH"]}}, {"location": "[506930:507494](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.5"], "codon_start": ["1"], "gene": ["pgsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63756"], "locus_tag": ["MAAAAKME_05470"], "product": ["CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase"], "transl_table": ["11"], "translation": ["MNLPNKLTVFRIFLIPVFMILLIAQWPAGSFTLAGTEILWSRVVAMIVFAVASATDWFDGHIARSRGLVTNFGKFADPLADKMLTMTAFIFMVALNLAPAWVVAIIVCRELAVTGLRLIVVENNGKVMAAAMPGKIKTTCQMLSIIFLLFGDIFHLGTILLYLALIFTIYSGYDYFHSSWDVFKGSM"]}}, {"location": "[507699:508695](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0468"], "gene": ["recA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16971"], "locus_tag": ["MAAAAKME_05480"], "product": ["Protein RecA"], "transl_table": ["11"], "translation": ["MAKDEKKAALEAALKKIEKNFGKGAVMRMGEKVDTQISTVPSGSLALDAALGVGGYPRGRIVEIYGPESSGKTTVALHAVAEVQKRGGTAAYIDAENAMDPAYAEALGVDIDQLILSQPNTGEEGLQIADTLISSGAIDIVVVDSVAALVPRAEIEGEMGDSHVGLQARLMSQALRKLSGTIAKTKTIAIFINQIREKVGVMFGNPETTPGGRALKFYSTIRLEVRRAEQIKQSTNVIGNRVKIKVVKNKVAPPFKVAEVDIMYGQGISQSGELLDMAADQDIVDKAGAWYSYHGEKIGQGRENAKKYLEEHPDVSEDIQTQVRKGLRNRC"]}}, {"location": "[508957:510601](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1418"], "gene": ["rny"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31774"], "locus_tag": ["MAAAAKME_05490"], "product": ["Ribonuclease Y"], "transl_table": ["11"], "translation": ["MMNNTVFPLATVAVIFLISLVVGCLIGYAIRKNVWETRAENARQSVEAILAKAKAEVEVAKAEIQAQKQAAEAVKRDAETEKKAKILEAQEEIRDYRQKVEDELNRRRDEAARKENRLQQKEDTLDHRSSLLDDREKQLTQRKAQIKQQEEKVAGLLEEAHGLVEKQNDKLLEISRLDEEEAKKIVLAQVSDHLTKEKAELIRANEEEISARADRFAHQIIVDAIQSSAADTVAETTVSVVDLPNDDMKGRIIGREGRNIRSFEAMTGVDLIIDDTPNTVTLSGFDSIRREVAKRALQKLIKDGRIHPARIEEMVDKARKEVNDDIYEAGESALMELGIHRMNPELVKILGRLKYRTSYGQNVLAHSIEVGKLAGTMAAELGLDEKLAVRAGLLHDIGKAIDHDIEGSHVEIGVELTRKYHEPDLVVNAIAAHHGDVPKLSFIADLVVAADTISSARPGARSESLENYIRRLTELEDIAGSYDGVKQAYAIQAGREVRVMVEPGKISDDEITVLAHEIRDRVEKELDYPGNIKITVIREKRAVAVAK"]}}, {"location": "[510704:511904](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.33"], "codon_start": ["1"], "db_xref": ["COG:COG0472"], "gene": ["tagO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34753"], "locus_tag": ["MAAAAKME_05500"], "product": ["putative undecaprenyl-phosphate N-acetylglucosaminyl 1-phosphate transferase"], "transl_table": ["11"], "translation": ["MFKIIVDLFLLVIIQVAITPFIRRLAFVLGAVDNPNARRVNKKPMPTIGGLGIFVTYNIGTFILLREQFPTHELFALLLASSVIVLTGMIDDILELKPGQKMGGIFIAAMITYFLAEIRMTELNIPFTGQTINLPWYLSLPITIFWILALTNAVNLIDGLDGLAAGVSCISLLTMGIVGYFFLRNQGLYVPIACLMLAACLLGFLPYNFNPAKIFLGDTGALYLGFMISVLALKGLKNVTFISLLVPVIILGVPISDTVYAMIRRKLNKKPISQADKHHLHHQLMNLGLTQRQTVLVIYALSLIFSFVSMLFLLSPIWAMVLLLVGLLIAVELFVESIGLLGEKYKPLSHLINRLVLHSTHTKEPDVEVWHQGEAKPRKWQERSKGGHKPAEKNSGKKQ"]}}, {"location": "[511956:512616](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1739"], "gene": ["yigZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27862"], "locus_tag": ["MAAAAKME_05510"], "product": ["IMPACT family member YigZ"], "transl_table": ["11"], "translation": ["MSKEADFLTIKENGQHELVIKKSRFIATLARVQDEEEARDFIAATSKKYHDATHNTYAYTLGINDDRVKSSDNGEPAGTAGVPELKTLQLMGLKNVAVVVTRYFGGIKLGAGGLIRAYSSSVSEAAEAIGIVKRVKQQELIFSIPYNRYDKVDHFLKEKEVFVDGTEYGVNITISIYLDLDQIDPFISDLTELLNGEPDLIKGDQRYNEIPVKSGEKRF"]}}, {"location": "[512659:513937](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG4098"], "gene": ["comFA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39145"], "locus_tag": ["MAAAAKME_05520"], "product": ["ComF operon protein 1"], "transl_table": ["11"], "translation": ["MTEEKESLAGRQWLVDKVDNSIKEGQTAIPAIENGICQRCGSSCWVRLPSGFLYCRACVGLGRLDEGKLLVRQAAGSHYPARAGMTWTGQLQERQEGVSRFLLEKFAAKEDCLVEAVTGAGKTEMIFPLLAEAFSCGCRVAIATPRIDVVNELYPRLVAAFGEVEIGKYHGREEKEAANEQLVICTTHQLLKYYQAFDLLIIDEIDSFPYAGNPQLHFAAGNAVKKTGSQVFLTATPPEDLLKAARQGKLAIVRLNRRFHCYPLPVPRLDLYVKPFLTKGRLHPKLARRIKMAAKSGHPLLVFLPRIAQMPQYFAAVKRLLPDLRLATVYAQDPDRLEKVEKFRKGDLDLLLTTTILERGVTFKHVWVIIVAADDEIYSAASMVQIAGRVGRDKQDPDGLVLFCYRRYSRQIRSAVKQIKEMNRG"]}}, {"location": "[513933:514488](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLCLFCDQPFTGDLDMRRLLLPGKSKTSCLCPSCRQLFAQIGTAFCPQCGRQQDSGEICQDCQKWRRIYQGNFLNNQAVYCYNQAFHDLMVRYKRYGDYLLCKVLQELAAPAVQKLAADYYVPVPTSPEHRKKRGYDTVWEIFTPPFALNATFSQEGWSWGPGGKGQKSQDAGQAKFLFKSGI"]}}, {"location": "[514700:515258](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hpf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A0H3GEZ8"], "locus_tag": ["MAAAAKME_05540"], "product": ["Ribosome hibernation promotion factor"], "transl_table": ["11"], "translation": ["MLKYNVRGENIEVTEALRDYVEKRLTKLEKYFDLSQDVIAHVNLKVYRDHSAKVEVTIPLPYLVLRAEETTDDMYRSIDFVSEKLERQIRKYKTRVNRKSREKGVEEFFIPEDAPVEEEKVEKAPMFKIVRNKRVNLKPMDPEEAILQMDMLEHDFFVFQDAETNGTSVVYRRNDGSYGLIETNE"]}}, {"location": "[515417:517820](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0653"], "gene": ["secA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P28366"], "locus_tag": ["MAAAAKME_05550"], "product": ["Protein translocase subunit SecA"], "transl_table": ["11"], "translation": ["MANILKKLYNADKRELKRFEKIADQVESYADQMAALSDEELQAKTPEFRSRIEKGESLDDLLPEAFAVSREASKRVLGLYPFRVQILGGIALHRGNIAEMMTGEGKTLTATMPVYLNALSGKGVHVVTVNEYLSSRDETEMGQLYRWLGLTVGLNVSTMSPEEKRKAYACDVTYSTNSELGFDYLRDNMVVYKEQMVQRPLNYAIIDEVDSILIDEARTPLIISGEAEQANADYVRADRFVKKLVEDKSDNDADDDEDHGDYKIDWPTKTISLTRTGIQKACDHFGLKNLYDVENQKLVHHIDQALRANYIMLKDIDYVVQDGEVLIVDSFTGRVMEGRRFSDGLHQAIEAKEGVKIQEESQTQATITYQNYFRMYQKLSGMTGTAKTEEEEFREIYNMEVITIPTNRPVIRQDMPDLLYPTLDSKFKAVVDEIKERHAKGQPILVGTVSIESSERLSHMLDKEHIPHAVLNAKNHAKEAAIIMNAGQRGAVTIATNMAGRGTDIKLGPGVKELGGLAVIGTERHESRRIDNQLRGRSGRQGDPGYTRFYLSLEDDLMKRFGGDRVKDFLDRLSDNDDDKVIESRLITRQVESAQKRVEGNNYDTRKQTLQYDDVMRIQREIIYKERMQVIDEQQSLKSVLMPMIHRTIDHQVDMFTQGDRSTWRLDSLRDFIVSSLASEEYVDSEIDFKTFTPDALKQQLYQLVEDNYQEKEAALADPEQMLEFEKVVILRVVDEHWTNHIDAMDQLRQSIGLRGYGQLNPLVEYQDSGYNMFEEMISDIEFDVTRLFMKAQIRNNLSR"]}}, {"location": "[518026:519025](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["prfB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6R4"], "locus_tag": ["MAAAAKME_05560"], "product": ["Peptide chain release factor 2"], "transl_table": ["11"], "translation": ["MAEPGFWDNQEKAQKLISETNLLKEKRDSFLALKKDLTDEETALELLRLEADADLQKDTEDQLAKLQEEFHQYELNLLLSGEYDDHNALMEIHPGAGGTEAMDWGNMLLRMYQRYCDSRGLKFEVNNFEPGDEAGLKSVSVRISGKNAYGLLKSEHGVHRLVRISPFDSAKRRHTSFASVEVIPEVDDSIEIDIDPKDLRIDVYRSSGAGGQHINKTSSAVRITHIPTGIVTTSQAQRSQFQNRDTAMNEMRAKLFHLEEEKKRKEKAALKGEQLDIAWGSQIRSYVFHPYSMVKDHRTGYETADVGGVMDGKLDPFIYAYLQWRLSQENPE"]}}, {"location": "[519035:519338](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSFTTIVLLVLAAVVALALLSVFFKALIALLPVGLVVILLLWLYYRFYWRKKYKLPSRPEPDRFKPGQADPERPRKQAQDVTVRDVDDSEVHDDEHGKTN"]}}, {"location": "[519312:520263](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG1493"], "gene": ["hprK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RE09"], "locus_tag": ["MAAAAKME_05580"], "product": ["HPr kinase/phosphorylase"], "transl_table": ["11"], "translation": ["MTNTVKLTEFINDNSNLRVLQGQECVAGKEITVSDVYRPGLELSGYFDFYPADRVQLLGRTEISYAARLDHDLRRKVFEKICQKETPCLLVSRNLPVPVELKEAAEAAGTPILISNDATTYLMSMITQYLAVKLAERSSVHGVLVEVFGMGVLLTGESGVGKSETALALVQHGHRLIADDRVDVYQRDHETVVGEAPRILKHLMEIRGIGIIDVLKLFGIGAIKDETEISLVINLTNWDSKANYDRLGFQENTRIICGIAVTQVTIPVKVGRNMENIVEVAVMNFRAKAMGFDAAKTFDENLTSLIAENSEEEKRG"]}}, {"location": "[520272:521106](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.145"], "codon_start": ["1"], "gene": ["lgt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60962"], "locus_tag": ["MAAAAKME_05590"], "product": ["Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase"], "transl_table": ["11"], "translation": ["MTLALNPIAFSIGDIHVRWYGIIIACGILLATFMSIREGQRRQIMSDDFIDLLLWGVPIGFIGARIYYVIFEWGYFSQHPDEIIAIWNGGIAIYGGLIAGAIVLLVFCYRRFLPPFLVLDIVAPGVMAAQVLGRWGNFMNQEAHGAKCSLQYLQNLHLPQFIIDQMYINGSYYKPTFLYESFFNLIGLIIILSLRHKKHLFKQGEVFMLYLAWYSVVRFFVEGMRTDSLYIFGVIRVSQALSLLLLIAVVILFVYRRVKVKPKWYLEGSGLKYPYER"]}}, {"location": "[521111:522128](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.94"], "codon_start": ["1"], "db_xref": ["COG:COG0240"], "gene": ["gpsA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97NF1"], "locus_tag": ["MAAAAKME_05600"], "product": ["Glycerol-3-phosphate dehydrogenase [NAD(P)+]"], "transl_table": ["11"], "translation": ["MTKISALGAGSWGSVLASMLADNGHEVALYAHRQVIADEINQDHTNLHYMKDWTLNPSVWASTDMGQVLKDCDVILFAVPTSAIRSVAKAVRQVLDENGRQPYLVSATKGIESGTKKLVLQIFKDEIYPDGFDKMIVLSGPSHAENTAQKDLTAITLASTSLDNAAKMQKIFSNDYVRFYTSNDPIGVQVGGAVKNVIAIAAGILAGLGYGDNAKAALMTRGLAEITRLGVAFGGQPWTFSGLSGIGDLIVTCTSVNSRNWRCGYQLGQGKPLDEVLANMGQVVEGATTVKAVYEICDKYSLDMPISASIYKVLYEGAKIDDEIKLMMSRQLGPEIRI"]}}, {"location": "[522199:523132](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0492"], "gene": ["trxB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80880"], "locus_tag": ["MAAAAKME_05610"], "product": ["Thioredoxin reductase"], "transl_table": ["11"], "translation": ["MTKEVDVVIIGAGPAGMTAAVYAARANLKTVLLDRGIYGGQMNNTADIDNYPGFVEVQGPELGEKMYQTVQNAGASYEYGDVQAVKLEGDYKRVITDSEEYLAPAVIIATGSEHKHLNVPGEEIYSGHGVSYCAVCDAAFFRDEDVTVIGGGDSAIQEGLYLAQSAKSVTVVHRRDQLRAKPELQEKAFKHPKIKFVWNALTEEIIGEDGKVSGIRYKDKVSGEEKEFATKGVFIYVGVLPVTKALDGLDILDENGWIPTDELMRTRQEGIFAAGDVRPKDLRQVTTAVGEGSVAGQEAYNYLQAKGFLK"]}}, {"location": "[523252:525295](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0556"], "gene": ["uvrB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37954"], "locus_tag": ["MAAAAKME_05620"], "product": ["UvrABC system protein B"], "transl_table": ["11"], "translation": ["MIKRQDNNKFELVSPYKPAGDQQQAIDQLTAGFQAGDKEQILKGATGTGKTYTMANVIAKMNKPTLVITHNKTLVGQLYNEFKEFFPNNAVEYFVSYYDYYQPEAYVPQSDTYIEKDSSINDEIDQLRHAATSALMSRNDVIVVASVSCIYGLGDPREYEASVLNVYTGQEYERNTLLRDLVNIQYDRNDIDLQRGRFRVRGDVVEVFPAGYSDRAYRIEFFGDEIDRIVEVDPLTGEVHGVRDSISLFPATHFMTNDDQLAGAIDRIKAEMDDQVKKFEKEGKLLEAERIKQRTTYDLEMLREVGYTNGIENYSRQMENRKAGEPPYTLLDFFPKDSLILIDESHATMPEIRAMYNGDRNRKQTLIDYGFRLPSALDNRPLKLEEFEQHVNQIMYVSATPGDYELNRTSRIVEQVIRPTGLLDPKIEVRPIEGQIDDLVAEINLRIERRERVFVTTLTKKMAEDLTDYLKDLGIKVRYLHSDIKTLERMQIIRDLRLGKFDVLIGINLLREGIDVPEVSLVAILDADKEGFLRAYRPLIQTMGRAARNANGEVIMYADRITDSMKMAIDETNRRRAIQMKYNEEHGIVPKTIIKPVRDMISVVKADKEAEKSDSFADLNFDELTAKQKKQMIANLKEQMQDAAKRLDFESAANLRDAIIELEGSVRKPIKKKGKDFNGR"]}}, {"location": "[525284:528140](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["uvrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63383"], "locus_tag": ["MAAAAKME_05630"], "product": ["UvrABC system protein A"], "transl_table": ["11"], "translation": ["MADRKIVIRGAREHNLKDIDVTIPKDQLVVITGLSGSGKSSLAFDTLYAEGRRRYVESLSSYARQFLGQMDKADVDSIDGLNPAISIDQKTTSHNPRSTVGTVTEINDYLRLLWARVGHPYCPNDGTLIQRQSVDQMVTRILDLPERSKIQLLSPVIRGKRGEHKEVFARIRRAGYVRVIVDGELHEASEEFALEKNKRHDIEIVVDRLVIKDGIRSRLFDSAEAALRLSEGYMDVDVIGGEKLSFSEYYACPLCGFTVGEMEPRLFSFNAPFGACPACDGLGMKLAVDPDLVVPDKDKSLAEGALAPWAGSKYYMGMLEQACAALKIPMDKPFKKLTKRQRDIILNGSDKEIHFHLEGDFGVNDTKQPFEGVINNVDRRYAKPMSKFMQEVMGEYMTELPCEVCGGKRLNEKALAVKVNGKNLAEASDLSIKDGLAFFKAVDLSEQEAAIAKPILKEVCDCLNFLVSVGLDYLTLSRSAGTLSGGEAQRIRLATQIGSNLSGVMYVLDEPSIGLHQRDNDRLIASLKRMRDLGNSLIVVEHDDETMRAADYLIDMGPGAGSQGGEVMAAGTPEEVMANPKSLTGQYLRGEKFIPVPLKRRKGSGKKLKLTGAAENNLKNISVEFPLSEFVVVTGVSGSGKSTLVNQILKLVLAQKLNHNSAKPGKYDKLTGWKNIEKVIDIDQSPIGRTPRSNPATYTSVFDDIRTLFAQTNEAKMRGYTKARFSFNVKGGRCETCHGDGILKIEMNFLPDVYVPCEVCHGQRYNSETLEVTYREKNIAQVLDMTISEACDFFVNIPKIHRKLQTIVDVGLGYVKLGQPATTLSGGEAQRMKLASELQKLSTGKNFYILDEPTTGLHTDDIKHLLEVLQRLVDQGNTVLVIEHNLDVIKTADWLIDLGPNGGERGGQVVCTGTPEEVADCPESWTGKYLKPVLDRDKALTESSLANKKES"]}}, {"location": "[528236:528779](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFDSGYNEKRGFDWGVFSAGVISVVLSIFLFANPGKGLRGLVIILAVLLIMQGIAWISMYAGFHGIFGPSWTTLLSGIFDILIGIFFLWDNKVGAYMIAILVAIWFIVDSVIGIVFAWHLRFFETGWYFFFNLLLNILGLVVGVMLLFRPVIAVMSTVYLIAIYLMIFGINEIALAFMHR"]}}, {"location": "[528929:529703](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG2362"], "gene": ["dppA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26902"], "locus_tag": ["MAAAAKME_05650"], "product": ["D-aminopeptidase"], "transl_table": ["11"], "translation": ["MEGCAGVTSWEQTHYGHKGYDLALKEMTRETVAAVKACQQAGYQVTVKDGHEDGINLDPALLPAGTELIQGWDSSPEEMMAGISADYAGAIHIGSHSPAGSSETPLDHTVEHGWYSWVKLNGELASEFTFNSLCAAQYGVPSLFLAGDAGICRRAEDFCPGIVTCATKKGVGSATVNKSPQEVAAGIATGIKEALAGPGGLPLLADEYLLEFCFSSAGRARAASFYPGAERAGERIVSYRAKSIMELLTAKMFMTEI"]}}, {"location": "[529711:529831](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGLKRELFLPRAYQTGEKNDITDVPGVKVGPGDPAKGRG"]}}, {"location": "[529805:530411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLRKGGVNTGVTAILPGSDIFKQKMLASGQVINGFGKTTGLVQINELGTLETPILMTNTLAVGTCWTALTRYMLDRNPEIGLTTGTVNPVVMECNDGDLNDIRSLPVKESDALTVLALAEGNPPLLEGNVGAGTGMRCLGFKGGIGSASRLLELGGKNKKISRSQPGLRQFRGFWQVAGWQPPFGPATKRRRFGPGESRK"]}}, {"location": "[530878:531757](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67109"], "locus_tag": ["MAAAAKME_05680"], "product": ["Nucleotide-binding protein"], "transl_table": ["11"], "translation": ["MHEKYKKQLLILTGMSGAGKTVAAHSLEDVGYFVVDNLPPELLGNFWDLMNTSEDFEKVAVVIDLRVKSFYKDLIDEINSLEDSGQTQATIVFLEASDDTLVARYKETRRLPPLAENGRLLDGIRDERRILTPVRNRSNYILDTSKMTTKELKQKLQSKFGELHKPKFGIEVMSFGFKYGMPIDADIVMDVRFLPNPFYIPELRPFTGLDKRVFNYVMDKDETKVFYGKLLDLLLTAIPGYIDEGKEKLTIAIGCTGGQHRSVSIAQQLARDLSEKYPVDITHREISRYLRK"]}}, {"location": "[531766:532789](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0391"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PN8"], "locus_tag": ["MAAAAKME_05690"], "product": ["Putative gluconeogenesis factor"], "transl_table": ["11"], "translation": ["MSFGENKIIRIIKRRRPRVVVIGGGTGLPVILQALKKQDAEITAIVTVSDDGGSSGIIRNYINVVPPGDIRNVLVSLSDLSQEKKQIFQYRFESKDSFFSGHAIGNLIIAALSEMQGNIFDAVQNLSAMMEVDGHIYPSANEPLTLNAEFMDGSQSSGEVEITSQHKQIKRVWVTTADDGEPASPSPVIEAIMQADAIVLGPGSLFTSILPNLMIPNVGQAVRETKAEVVYVCNIMTQAGETVGLSDADHVRVINQHLGGNYIDTALVNGAQIDMTKFHPEDYDEYLKPVANDFAGLQEQNCRVITDDFIDQRSGLVFHDGDKVAREIIDLALQEMFKRK"]}}, {"location": "[532796:533729](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1481"], "gene": ["whiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O06975"], "locus_tag": ["MAAAAKME_05700"], "product": ["putative cell division protein WhiA"], "transl_table": ["11"], "translation": ["MASYASEVKKELTSIEVHPEHAKAELAAFLRMNAVLSRHDGQMSLDIVTENPAIARRIFSLIKTAYGFDPQLIVTRKMKLKKNHQYLVRVAQMVSEIMADLEIYSPKKGFITGVPDKIKYSEQRSMSYLRGGFLASGSVNNPETSRYHLEIYCTYANHSQDLQEIMNKYFDLNAKVTARRSGSIVYLKEAEKIGDFLHVVGAVNAMLAFEDLRIMRDMRNSVNRLVNCDTANLRKTAGAAAKQVEDIELIDKKQGLEPLPEKLASLARFRLQHPELSLKELAEQVPDGPISKSGVNHRLKKLHEIAENLR"]}}, {"location": "[533796:534381](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.92"], "codon_start": ["1"], "db_xref": ["COG:COG0740"], "gene": ["clpP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RQI6"], "locus_tag": ["MAAAAKME_05710"], "product": ["ATP-dependent Clp protease proteolytic subunit"], "transl_table": ["11"], "translation": ["MLVPTVIEQTARGERAYDIYSRLLKDRIIMLSGDVNDQMANSIIAQLLFLDAQDNTKDIYMYINSPGGVITSGMAIVDTMNFIKSPVSTIATGMAASMASIILAEGEKGKRFALPHATVLIHQPLGGAQGQATEIQIAAEEILKTRKMINEILAKDSGQDIETIKRDTERDHYMTAQEAKDYGLIDNIMVNQNK"]}}, {"location": "[534564:534825](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKKLLCSLLLAAAFIGQAQTAQAATVSKMPGTKNMGIYAKVTKKGASKKVTTTKYFKYSKIQSTASKKTKKGTYAYIYANGRPLG"]}}, {"location": "[534927:536061](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNDAHGTMVDPANGAVKASLSGDKLNFTYGKAKTTVELVKTANPNRNLKPAVSAKKGPKEVASTRKHSGSSKNWNAVHRYGTETSSNRWTSGGLTLATQLWEPRNLSLETNDWQQVGPVMEGLAVNGGWAYSSWYRSAAASDQLKGNIVAFNMKKLNKYQAQYLSPRSYLYKKLSFGKFKSYSQNVKVSPYLRLGHGQSLGASSKYIYVLANENKLPGGASNGFYSEEILQLKKSGLTINKVWSIRVDVGSSGRYFYNAAFAGDNTMYGVFHNAAFGRYEFWRLNLVNNRWQVSQVTVTQSHFVKQQAGSSPVQGFSVSGSNMYLAFNNLILKLQTDGTYQKTWKHVSNREIEGLASDGSQLYAQLAQRGEILSGRW"]}}, {"location": "[536460:536667](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAATLFINIKPAAQKSKEVRVGGLTLMRHPALDEIYRGYKAGLAKSGYKVKIDYQNANNDQSNLKTMA"]}}, {"location": "[536887:537295](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPRLKTLGIIHTSSDSSAVSGYKQIVSYCKQMGINYKAYSISNSNDLNQVSQQMLTQVDAVIVPTDNTIAGAMQTLVKNANAAKKPVFPAAGTMVKDGGLATYSVDQYQLGLIGAKMTVQILQGKKPGNNGHPLC"]}}, {"location": "[537275:537401](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAIHYVEHGTPYLNLKEAKKLGTKVPASFLKEAKSKGTIYK"]}}, {"location": "[537419:538322](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLIVSAIGQGFLWGLLGLGLFLSFRIMNTTDMTVEGTFPLGAAVSVSLIVQGTNPFLATLAAFVAGVLAGLVTALLITKGKIPSLLAGILTMTGIYSIDLMVMGKSNVSLLGKKTIYSLAFLQKLPQYFDSVVAGTILMVLVTCDLIWFLSTDFGQAFIATGDNPQMAKSQGISPQQMTVAGLMISNGLVGLCGAVVAQSNGYADVNMGMGTRTIVIALASIIISEVVFRNLGLASRLFAVGLGSIIYRLLLLAVLQVGLSSSNLNLISSLVLAACMMLPQVEEKLRLKQTFMKGLKHD"]}}, {"location": "[538314:539079](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1125"], "gene": ["opuCA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34992"], "locus_tag": ["MAAAAKME_05780"], "product": ["Glycine betaine/carnitine/choline transport ATP-binding protein OpuCA"], "transl_table": ["11"], "translation": ["MTSQNLLELTDLEVVVGRGTSEENKILGKLSLKIKPGDFICLLGGNGAGKSTLLNVLAGAIQPTSGKILHAGKDISKESEVKRSSYIARVFQDPKLGTAPRMTVAENLLLAAKRGQKRGLKLRRLKENIPAFKEALEKVNPDLAGKLDLPVDQLSGGQRQALSFVMATYNKPELLLLDEHTAALDPRSSRKLMEATDEQIRAKKITAVMITHHMEDALKYGNRLLVLDHGQISHDYQGQAKQDLTLQDLAALFD"]}}, {"location": "[539164:539236](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_05790"], "note": ["tRNA-Arg(ccg)"], "product": ["tRNA-Arg"]}}, {"location": "[539428:540577](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2390"], "gene": ["cggR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32253"], "locus_tag": ["MAAAAKME_05800"], "product": ["Central glycolytic genes regulator"], "transl_table": ["11"], "translation": ["MEIEAKSCFSYFFKQCGTENDNSVVGECPTRRMVILNTDLSLLELLVPDALKIFRQRYLILEQISLHAPIGRRTVARQLGLSERNIRTETDYLRDQGLIEIKNFGMFLTEKGESVVKDAAPIVDRLFNASQAEVWLAQALGIDRTIIVAGDADLQSRVYDLAGEELNSALSLLLPLADCIVTVMGGKTIAKVAKKLNRSLSENRSLIFVPGRGALGGRVNTESNAVVQEMARATGGSYESLFLPEHVSKDAYRSLVRDPEISGVLQDISQSDVVIHGIGLASEMARRRGYDSVALARLRENKAVTECFGCFFDEEGHVVERIRQVGLQFENLTNVPHILAIALGTRKAKAIKAYMRNAPHQTWLITDEAAANQILNGSSRLK"]}}, {"location": "[540614:541631](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.1.12"], "codon_start": ["1"], "gene": ["gap"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59309"], "locus_tag": ["MAAAAKME_05810"], "product": ["Glyceraldehyde-3-phosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MTVKIGINGFGRIGRLAFRRIMDLGEETKDIEVVAINDLTTPAMLAHLLKYDSTHGTFDHEVSATEDSLVVDGKKYRVYAEPQAQNIPWVKNDGVDFVLECTGFYTSKAKSQAHLDAGAKRVLISAPAGNDLKTIVYSVNQDTLTADDTIVSAGSCTTNSLAPMANALNKEFGIQVGTMTTIHAYTATQKVLDGPDRGNNFRNARAAAENIIPHSTGAAKAIGLVLPELNGKLDGHAQRVPVKDGSETELVTILDKKVTAEEVNAAMKKYESPSFAYNADQIVSTDVLGMTAGSIFDPTQTQVITAGDKQLVKTVAWYDNEYSFTCQMVRTLLHFATL"]}}, {"location": "[541727:542939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.3"], "codon_start": ["1"], "gene": ["pgk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q6GIL7"], "locus_tag": ["MAAAAKME_05820"], "product": ["Phosphoglycerate kinase"], "transl_table": ["11"], "translation": ["MAKLIVSDVDVKDKKVLVRVDFNVPIKDGVIGDDNRIVAALPTIKYIIENGGKAILLSHLGRIKSDEDKKSLSLAPVAKRLGELLEKPVTFVPSNEGKEVEDAINNMKDGDVVVLENTRFQDIDNDFGKRESKNDPKLGEYWASLGDVFVNDAFGTAHRSHASNVGIATAMKAAGKPAAAGFLLEKEIKFLGNAVANPVHPFVTILGGAKVSDKIGVITNLIPKADHIIIGGGMAYTFLKAQGHNIGKSLVEDDKVEFAKELLEKAGDKLVLPIDNVAATEFNNDAASEVVGQDIPDNEMGLDIGPKTIELFKKTLEGAKTVVWNGPMGVFEMPNFAKGTLEVGRALADLPDATTIVGGGDSTAAAKQLGIAPKLTHISTGGGASLEYLEGKELPGIACVSDK"]}}, {"location": "[542957:543716](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.1"], "codon_start": ["1"], "gene": ["tpiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q93GB7"], "locus_tag": ["MAAAAKME_05830"], "product": ["Triosephosphate isomerase"], "transl_table": ["11"], "translation": ["MSRTPIIAGNWKLNMNPKETVEFVNAVKDQLPDPSKVESVICAPAVDLDALLKAAEGSNLHVGAENCYWENSGAFTGETSPAVLKEMGVQYVIIGHSERRDYFHETDEDINKKAKAIFANGLTPILCCGESLETREAGKENEWVVSQIKAGLEGLTSEQVSKLVIAYEPIWAIGTGKTASSDQAEEMCKTIRETVKDLYNEETAENVRIQYGGSVKPANVKELMAKPNIDGGLVGGASLVPDSYLALVNYQD"]}}, {"location": "[544250:544469](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDTINRLQKSQFYDLIRLGFISENYRYSYNRIWVDTDENDRVWGMICMYPDKAQGIIDVVLRKEWPRSACQ"]}}, {"location": "[544444:544744](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.189"], "codon_start": ["1"], "gene": ["mshD_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01698"], "locus_tag": ["MAAAAKME_05850"], "product": ["Mycothiol acetyltransferase"], "transl_table": ["11"], "translation": ["MAKVGLPMTTDIFTDKEAQKGEWYIDALAVSPRDWGKGIASRLMELAPKLAKKHGYKKVSLNVDLEKTRAQQLYLRKGFKTTNSMTIGDRVYDHMVKEV"]}}, {"location": "[544700:545270](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYTLYLTQEGRTGQIPITDEEGKPFGSIRGRLDNPNHTLYLLDTSGNEIGRLFSDGTGLIASFTLDVVHHSLVHVKKVNSPLTNLFYITRLNYWVNGSIKQGSYYFRDGFKKVASVDTAVADKGVTLTCQISREEDTPFILLIAVLFTQWHVTPLNLPDLFPNLNQRPTSTASFFKLLLPYGRKRGRQ"]}}, {"location": "[545266:546151](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ywpJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94592"], "locus_tag": ["MAAAAKME_05870"], "product": ["Phosphatase YwpJ"], "transl_table": ["11"], "translation": ["MIKLITCDLDGTLLNSSMEISDANVQAIKRAQENGIEFMVASGRAPHESQPMLKEYGIDCSFINLNGGLVFDTAGNLIVKNPLKLETAKKICRLLKKEGFYFELVTSNHVYSEDLSQRITNVAHLMVELNPMLTFKEAVLVSASKPAIVSIQQVPSYEDLMDEPGTEVMKILVFDSRGQYAFTDVIKKIEEIDKLSITSSAADNIEINAADAQKGQSLLDYAAAKGIKREEIAAIGDNLNDESMIQAAGTGVAMGNAVPQIKTIASFVTKSNNEDGVAWAIDKIIADNQKEQDQ"]}}, {"location": "[546312:546996](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.27"], "codon_start": ["1"], "db_xref": ["COG:COG0692"], "gene": ["ung"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39615"], "locus_tag": ["MAAAAKME_05880"], "product": ["Uracil-DNA glycosylase"], "transl_table": ["11"], "translation": ["MKHFIGNDWDHVLAPVFESGEYHKLHVFLKKEYQTRQIYPDMYHIFTAFKLTPFKDTKVVILGQDPYHNPSQANGMSFSVMPGTPLPPSLRNIYKELYDDVGAQPVNHGYLKRWADQGVLLLNAVLTVPYGQANGHQGKGWEMVTDAAIKALSERGQVVFILWGRFAQNKIPLIDQDKNVIIKSAHPSPFSANRGFFGSRPFSRCNAALKEFGRAPVDWQLPPNPEA"]}}, {"location": "[547016:548006](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.8"], "codon_start": ["1"], "db_xref": ["COG:COG0280"], "gene": ["pta"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39646"], "locus_tag": ["MAAAAKME_05890"], "product": ["Phosphate acetyltransferase"], "transl_table": ["11"], "translation": ["MEVFEQLKQLIKQKDKQRIVFPEGEDPRILTAVSRLKQDDLVEPIVLGQKDQVLALAEKAGLDMTGIEIVDYQNSPDFGEMVEKFHERMAGGKHFQTMEEAEAALRDANFYGTMLVYTGQADGMVSGAAHSTADTVRPALFILKTKPGMHRISGSFIMERGEEKYVFADCAISIDPTSDQLVEFAAQSAATAKMIGIDPKVAFLSFSTHGSAKGPQVDKVAEAAKLFKEKYPDIPADGDLQFDAAFVPAVAELKAPGSAVGGRANVFIFPELQSGNIAYKITQRLGNFTAIGPVLQGIAKPVNDLSRGCSADDVYKIGILTAAQAVMEG"]}}, {"location": "[548016:548502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0802"], "gene": ["tsaE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05515"], "locus_tag": ["MAAAAKME_05900"], "product": ["tRNA threonylcarbamoyladenosine biosynthesis protein TsaE"], "transl_table": ["11"], "translation": ["MTELAINSASDMQAFGAALAQSAQPHDLLLLKGDLGAGKTTLTQGFGRALGIKRPVKSPTFTLVREYREGKLPLFHMDFYRLEGDDLASIDLNDYLAEEGVVIIEWPQVIQADLPSNFLELVLTRVDDSWDSTKRLLELVPHGQRAAAWAENACRLYQEKQ"]}}, {"location": "[548576:549113](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "gene": ["polC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63982"], "locus_tag": ["MAAAAKME_05910"], "product": ["DNA polymerase III PolC-type"], "transl_table": ["11"], "translation": ["MMNFVAMDFETANQHPASACSLALVLVRESKIIDRFYTVINPQMAFDAQQVKVHDITAEDVAGAPTMAEVWPKIQPLFQPGMLVAAHNARFDCNVMKQSLARYGIAEPHYLVLDSLKVSRELEPGLDNYQLNTVSDLLGVELWHHHNALSDSEACAGILLKEEEKRGSELLKKFVYQV"]}}, {"location": "[549234:550128](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.98"], "codon_start": ["1"], "db_xref": ["COG:COG0812"], "gene": ["murB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y776"], "locus_tag": ["MAAAAKME_05920"], "product": ["UDP-N-acetylenolpyruvoylglucosamine reductase"], "transl_table": ["11"], "translation": ["MKLYDLKAQGLDLQENIPLSRYTFTQTGGPAEYLAFPKTLAELKELLAAAKEDQLPITVIGNASNLIIRDKGIKGLVIILTEMKEIKVEADKVHAQAGARIIDTSFAAGEAGLSGLEFAAGIPGSVGGAVFMNAGAYGGETKDCLESATVVTRDGEVKTYTNAELHFSYRHSLLQENDEIVIAATFALKAGDKATILDQMNYLNALRSYKQPLEYPSCGSVFKRPTGHFVGPMLIKAGLQGKQIGGAQVSTKHAGFIVNKGGATATDYLNLIHYIQKTIKEKDGIALQTEVRIIGEE"]}}, {"location": "[550168:551257](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.11"], "codon_start": ["1"], "gene": ["potA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A679"], "locus_tag": ["MAAAAKME_05930"], "product": ["Spermidine/putrescine import ATP-binding protein PotA"], "transl_table": ["11"], "translation": ["MEIIKLDHITKQYDDGFVALKDINLELESGKFYSLLGPSGSGKTTILRIIAGFTEASAGKVYFDGQDITNLDASKRHINTVFQNYALFPHLNVYENVAFALKLRQRPESEIREKVKDALHTVRLDGYANREISELSGGQQQRVAIARAIINEPKVLLLDECLSALDKRLRKEMQFELRAIQKKLGITFIFVTHDQEEALAMSDEIFVLNDGEIKQSGSPVDIYDEPVNDFVARFIGDSNILSGRMIRDFAVEFAGKDFECADAGITPGEKVEVVLRPEDLDITAPAAGKLLVTVQSQLFLGDHFEIKAIGQDGFEWLIHSTNGVQIGQEVGIFFDPEDIHVMRLGETEEEFDARLETYEGED"]}}, {"location": "[551259:552072](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1176"], "gene": ["potB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFK4"], "locus_tag": ["MAAAAKME_05940"], "product": ["Spermidine/putrescine transport system permease protein PotB"], "transl_table": ["11"], "translation": ["MKKNRLLFLLPYLLWIGLFVIAPLVLILGYSLTDAHSHLTLQNFAAFFSGGTFLRMMANSFWYALLITFFCLLVSYPAALALTRLKNQQFWLMLIILPTWINLLLKAYAFIGIFSRSGMVNQFLGLFGIGPVGIMFTDFAFIFVAIYIEIPFMVMPIYNSLKEIDPALLSASSDLGASFWQTFRYVIWPLSWPGVESGIQAIFIPSLSLFMLTRLIGGNRVITLGTAVEEYFLTTMNWNMGATIGVILIALMSIVMLLTSRKQHKKEFEL"]}}, {"location": "[552068:552872](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ydcV_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFR9"], "locus_tag": ["MAAAAKME_05950"], "product": ["Inner membrane ABC transporter permease protein YdcV"], "transl_table": ["11"], "translation": ["MKKTIWGRVYFGLVLLIIYLPIFYLIYFSFSSGSSMDHFRHFTWEHYQTLFADKRLLAILLETIMLALLSSLAATVLGTFGAIAIQRSKEAYRKILLSFNNILIVSPDVIIGASFLILFTALGFSLGFASVLLSHIAFSVPIVVLMVLPKLKEMDNSLIDAARDLGANNYQVFSQVLLPALTPGILSGFFMALTYSLDDFAVTFFVTGNGFTTLSVEIYSRARQGIDLEVNALSTIIFFFVLLLVGVYYFLTKRQGKKANRLGGLLR"]}}, {"location": "[552868:553951](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0687"], "gene": ["potD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFK9"], "locus_tag": ["MAAAAKME_05960"], "product": ["Spermidine/putrescine-binding periplasmic protein"], "transl_table": ["11"], "translation": ["MKKILSAALAILLVSLGLYLGAQQLDSSSGGSASSKKDLIIYNWGDYIDPDLITKFEKQTGYHVIYETFDSNEAMYTKIKQGGTAYDLAVPSDYMITKLRRDNLLDKIDTSRLSNFKYIDKEFLHKSFDEKNEYSVPYFWGTLGIVYNDRYVKKGEIKSWNDLWKKKYQGQILLVDSARDIMGMSLVSMGYSMNDTNSAHLKAAKAKLDKIGKNVKAIVADELKMYMVQNEAWIGVTYSGEAAMMMDQDSHIHYVVPAQGSNLWFDNIVIPKTCKNKEAAYKFINFMLEPKNAAQNAEYIGYSTPNTAAQKLLPKSVREDKQFYPPMSTVKNLEVYRDLPSSKVQEYNDLFLEFKMYARN"]}}, {"location": "[553983:554823](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.85"], "codon_start": ["1"], "db_xref": ["COG:COG1624"], "gene": ["dacA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y5E4"], "locus_tag": ["MAAAAKME_05970"], "product": ["Diadenylate cyclase"], "transl_table": ["11"], "translation": ["MQFDFASLWTWHTLSVVLDVLITWYFIYHLTHLIKGTKAVQLANGIILIMVARVLAGWAQLTTVTFILDQIVSWSVIGIIVIFQPEIRRGLERLGRVSLFSDSENSKREQQEKLVKELDKAIQYMSKRRIGALITLEQKTGLEEYVETGIKLDALVTGELLINIFIPNTPLHDGAVIIKNNRVQVASAYLPLSDNAMIPKSLGTRHRAAVGISEVTDAITVVVSEETGGVTITRNGQFMVDLSQQEYLKYLRAELVTEEKKKQPWPIRLARGIWNWGDK"]}}, {"location": "[554822:555653](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4856"], "gene": ["cdaR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34659"], "locus_tag": ["MAAAAKME_05980"], "product": ["CdaA regulatory protein CdaR"], "transl_table": ["11"], "translation": ["MHKLFEQKWFYKLFSLLLAIVLVAFVDNTQVNTNNQTKVQETASTEQSLKMALQVSVDTDKYYVTGYPSKVKVTLEGPNALVTSAVNTQNFRVYIDLSKQGVGSHQVPIKVSGLPNQVSCKLSQKSVKVNIQKRKSRTLPVQIGYNKNAVAQGYDIGMPTVSPETVEVTGAQSEVKAIDRVQAQLVVPNGSTETVRRNVLLAAYDAKGHQLNVVISPATARVTLPLSVSKKKVKLKLNASHGSSKKVYSLTAKEEKVTLYGQKGSLEKDQFPDFGC"]}}, {"location": "[555600:555774](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_05990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKKEALKKISSLTLDVDLTDIKSSVTKSFRLPVPSGVAWISPGSVDVQIEVSDSNN"]}}, {"location": "[555798:557151](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG1109"], "gene": ["glmM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34824"], "locus_tag": ["MAAAAKME_06000"], "product": ["Phosphoglucosamine mutase"], "transl_table": ["11"], "translation": ["MLKYFGTDGVRGEANKVLTPEMAFKLGRMGGYVLTKEKEDGGQARVLVSRDTRISGEMLEHALISGLLSVGIEVLECGVMTTPGLSYLVQAQGADAGVQISASHNPVEDNGIKFFGSNGLKLSDAKEEEIEELIDTKQDMLPRPSAEGLGTVTDFRDGSNKYIQFLENTIPEDLSGIKVVIDGANGAASAFISRLFADLDVDFTTISTHLNGLNINDHCGATHTARLQEEVVKQGAQLGLAFDGDADRCIAVDENGNEVDGDHIMYVIGSYLADHGRLKKDTIVTTVMSNLGFTKALERRGIKNVRTQVGDRYVSEEMRANGYSLGGEQSGHVIISDYHNTGDGMLTGLHLMLVMKKTGKSLTELLADFKEYPQVLVNVPVKDKNSWKNHQAVVDAIDSVEKDMAGNGRVLVRPSGTQELLRVMAEGPTQEITQEYVDRIVKVVTTEMGE"]}}, {"location": "[557299:558112](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XD45"], "locus_tag": ["MAAAAKME_06010"], "product": ["Putative phosphatase"], "transl_table": ["11"], "translation": ["MAIKMLAIDLDGTLLTDSKTILPGTYKALQEAKAAGIKIVLTSGRPLSGIKGYAEELGLSGSEEYAILFNGAVVQNLDGRVLISHDLDFGDFNTLLHMQRLSDVNLDFETPDRFYTLDKRISIRLQIDGAETKNQLWIQDRSDFKKDFTFAKAVYQCDDPDQVDRLWNRLPDWFFQSYAVVRSWPEVVEVGSLAASKGYAVSELASRLGLSNSEVMIFGDQGNDRSMFEILDFKRVAMGNAIDEIKDLADYVTDTNERDGIAKALRKLVL"]}}, {"location": "[558163:558502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTAEIEEKITGIFEEAIRQKTVNGISYALVDQGRGSRHYLGQAEPGQFYDLASLTKVVGTASGIFKEMAAGKISLKDRVGDFFPAACSAVTVRDLLLHTSGLPADLDDVWQ"]}}, {"location": "[559211:559655](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["copY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47839"], "locus_tag": ["MAAAAKME_06030"], "product": ["Transcriptional repressor CopY"], "transl_table": ["11"], "translation": ["MNEDCRISDAEWQVMRVVWTLGQANSSEIIEQLVAKCAWSPSTVKTLLRRLEKKGFLLVDRQVHRFVYRAAKDESEAMQESLTAKFAAMCDMHKGEMLLRLLDDLSLSRSDLEAIAKKAAEKAKTAPEKVGCNCLSTCEHMEGEWEC"]}}, {"location": "[559648:560023](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLVNGLVILAAAALIGLIIWWFFGNFQKSSQQADLANGRQEGQVVVKGGYEPEVLYLKQGVPAEVTFKMEDKTACLSHVVFSSLGVDKDLSKEKLAKIQIPTDKAGEIDYACGMGMFHGKIVVR"]}}, {"location": "[560022:561939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.8"], "codon_start": ["1"], "gene": ["copA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32113"], "locus_tag": ["MAAAAKME_06050"], "product": ["putative copper-importing P-type ATPase A"], "transl_table": ["11"], "translation": ["MKLTNWRRFWLSLFLALPMLAQMLLMIWGIMLPGIKTYSLIATSLIMLIGAGPYIQSAWAALKRHQANMNSLIAIGTSVTYVYSLFAYFTGRPVYFESAAFILISVLLGDALEEKMHDRAAASLNKLLELQASEAEVKRGEDFVKLPLDQVKAGDVIKVRPGGKVPVDGRLVSGQSNVNEAMVTGESMPVAKKPGDRVIGATINGSGSFLMVAEQVGEETMLSQIVQVVKQAQNSRAPIQKLTDKVANYFVPAVLIVSILAFAIWDVFSSVGPVKAMLYAVSVIVIACPCALGLATPTALMVASGRSARMGVLIKDGEILEAAAKIKTIVFDKTGTLTVGQPQLVDQVGDKASLSLAASLEANSEHPLAQAIVTSAKEGGQPLLPVSDFSAEEGKGVEGKVAGHLVKVGRADYVSAPDAWRQQAEGLAEAGKTVAYVQKDSAVIGLLALQDAPRPEAKAVLSELKSRGIKTVMLTGDNQQLAEKIGRQLGIDQVEAGLLPGEKADRLAKLQEAGPVAFVGDGINDAPALSLADVGIAMGSGTDVAKEAGGIVLMTSSLTGVLRALDLSKQTFTRIKLNLFWALIYNLIGIPVAAGLFSFIGVSLSPELAALAMAFSSVSVLLSSLMLNWTKIAGAGKS"]}}, {"location": "[562090:562477](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["crcB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00454"], "locus_tag": ["MAAAAKME_06060"], "product": ["Putative fluoride ion transporter CrcB"], "transl_table": ["11"], "translation": ["MDTVKNYLSVAFFAFWGGLARYGLTEAFSFYGTVIANLLGCFLLAFLTYFFLRKSNSRAWLTTGLGTGFVGAFTTFSSFNLDAFKLLLGGQNFGALLYFTGTIAAGFLFAWAGKQAANFAAGKLLERG"]}}, {"location": "[562481:562841](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["crcB_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00454"], "locus_tag": ["MAAAAKME_06070"], "product": ["Putative fluoride ion transporter CrcB"], "transl_table": ["11"], "translation": ["MIFAVGFGASLGAVARYALTSYGKKHWMQGTACPRPTLLINLTGAFFLGLAFALRLPASVYAFLGTGVLGGYTTFSTLNTEMVSLAENGQKHVLKHYLLASYLGGAVLLTCGYYLGSLL"]}}, {"location": "[562824:563595](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEACYEKSQLILRKSLCSLAAIISLVALLSSPVTFKMYEVKDYASSLIDTFANQSDGSAMSIAVKAAVESGLKQDLVDQLPDKVEISESHLSLYRLVSRYRQNKRLQSSNLKLPAKNKVQLFMDDLILYLVNSELNVHEGELQQITQIYQLSLWIICVLYLLGVALLLFNRYWSWLPFVLGAASASGFQVFITHTLTEMVQKEVYSKMLFTYSWGSWAGFLLALAGHLFYLDVCRYRAKGKANKNKEANNNLKKLC"]}}, {"location": "[563914:564718](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKGLCELYGLPAAELKQLLDQDLFAGLHPDDQPGVQADLTSFMNRDSSDYQSIYRIKLLGQEDYVLLQAQGKFLEDTDCFLVWYTEMSTSRLQDLTTADRRTKHLLDDLTGLPKAVYFYELAELGCRKLFKAGKQPVVLAFNLIGFSHFNHRYSYIEGNRLLVAFADLLKRHFSGDACGHFTKDNFYAYTAHDHLEERLKDILKESRQINEGRNLAIRIGVYDAGSLVYEDIKKVCEYAMVACITTARTLRPTSLTSPARTGRVWN"]}}, {"location": "[564798:565740](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNGQSGNWEALARWRKPDNGMLLDEQFIPTLDRAGILYRLDLYMADKVIADLKKMQERGHLELAVSLNLFSSEFDQCNMAEEITRKVKESGLSPEFIVIEISNDTRNLNADKIREQIALFKQNGFYVWVDNFGEGYSSIGLIKDNAPVSCIKFDASFIKGPDQKRSRIVLKKMVELAEELGIDTIVEGVENADQLLALREIGCAAAQGYYFGQPLPFDQAWKKWVEGPEANLERFSESDYYNSVGMMSLERPHFIQETYNNDLTFDDPDPVLDRYFKGTPLGFLEYRDGKLYYLRGNEGYTRYLLSCGSVTKE"]}}, {"location": "[565941:567357](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIDVLTSYNANQVYQDQARDDLGVTVNFSLSADQYRDMPLPFIIAASVYQEKRVVDMQYIYVNQAYAEIMGQSREKLLGNRMSSFVKHKLAFWIKVICGASDGEIRQGTFHSRTGHWYEYITAKSSVPETRSLVMINIDEQKRSQHEIKQKQNTTNEIVQLSEILNVENDKLETAISKGLAKLGTDLAADRVVVMEGEGQYAKNTYSWTLPGLASAQKEQQKIDVATLKVKLQEQLNHDSLFLTDQAEIAKRFPEIVATYDSDYQLENVLLAPFYESGRVSGAVVVEDLDASLNMDFNNLIELTADFVGAKVMGRKLEQQRDTDVLTKLNDRHPYLAKLNYYKKVKASRSIGVAFMDLNGLKEANDELGHDAGDELLISAGQIISQAFGRDYVYRVGGDEFVVLDDQSSRTEFESHCAAFEKALTQPASPSILIGAEWCPDSHYLREAVERADRKMRRQKNDFYKSHKRYR"]}}, {"location": "[567406:567805](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFYSLIMALIMLALGIVSFWGRNQDSFDGIYATAPLTSAKTNWTDKKGKAVDLTELKPDKQGTLTIYYRLPEKLNRQDKLIFFSRYIKQIDAYIGKKKIYHSHPEIAADWLSLTEHYESFTNSIELPAKRSA"]}}, {"location": "[567807:568218](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKGFYQLAGKLTACSLGNDGAFLANYVRKNALRVGLGIVSVVMGLTLLLFSIFAPLTSAFKRSLGYYSVALILFAVLQMQEEMQLTVLFGHYHVWRLFTYPVMVLLPFLLIMTINAQLDQALNERKSELYAAAKQD"]}}, {"location": "[568302:568761](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "db_xref": ["COG:COG0394"], "gene": ["yfkJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O35016"], "locus_tag": ["MAAAAKME_06140"], "product": ["Low molecular weight protein-tyrosine-phosphatase YfkJ"], "transl_table": ["11"], "translation": ["MQKILFLCHGNICRSPMAEFIMKQLLAEAGKADQVEVASAAVTGDEIIGGVGNPMDPRAQRELAKNGVPFSQHRARLLTREDYDKYDYLIAMDSENFMAMNQICGGDPERKQYKLLQFAGSYADIDDPWYTNDFDLAFQEISRGCRGLLGQL"]}}, {"location": "[568857:569256](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKYVILHPTGRISRLVIKHLLADPQFSDVELELLTQRPELLVDLAKGDRIKLTEGAATDLDYTLIRMPALTDWPDVKYSLTGRYDEFVGTSVSRASVADLVLKIMADPSRYSRASVGISQPETAGYVRPVY"]}}, {"location": "[569343:570975](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_06160"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MDELDKKGNYISWQTLAMMAFVTVIGLEDIMYNFQNQGIAVITSWVLMMFLYVVPYALIVGHLGSVFNHEGGGLSSWVRATDGEFLGYFTAWTYWAASIPYVVDTANCLLVDVGWGLTGTDEFEDPKFLSTAMFTAITFVIFILLTLLEHKFSKSMEVLSNIGGWAIFIMTILFVLLAFAGLAKSGGKTATPFTWKTIIPKFDLKYFSTVGMLIYAVNGSELVAPYVTRMKDPKREFPKAMIALALMTCFLTIFGSIALGIYIDANHMPNDLKMNGEYYVFGAMGKQFGVGKLFVYIYAWASFFYNAALLSVLLDAMTRMLISDTGDKYMPKFLKKTNKDGLPINGYILTVFLSGFIMVLGIFLPDMNDIFNWLLNLNGIISPAVTCWIFYSFMKVRGKNSSKYPSVYRYIKNDTFAWWVGFALLAVTAVATVLGFMPQDVKEGSWVWWYELSINIVACLVLIGLGGIFPGIRRREEEYGLAFDKQQWTWMSALVLGSIVFNVWLGGTTIKLRALYIVIESVIALLAVWLIGRRLPKGAKASK"]}}, {"location": "[571234:571762](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.4.11"], "codon_start": ["1"], "db_xref": ["COG:COG0225"], "gene": ["msrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54154"], "locus_tag": ["MAAAAKME_06170"], "product": ["Peptide methionine sulfoxide reductase MsrA"], "transl_table": ["11"], "translation": ["MKEKLDSAIFAGGCFWCMVAPFDTLPGIESVTAGYTGGHVPNPTYEQVCSHTTGHTEAVKIVFDPDLMSYEDLLGYYWQVTDPTDASGQFQDRGDNYRPVIFYNSPEQKEAAEKSKQELAESGRFDDPIVTKIEPAAPFYEAEDYHQQFYLKHPDRYAAEEAGGRAQFIKEHWGK"]}}, {"location": "[571810:572626](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRGLYTAGVTDVLMKYGIKFDGAVGVSAGVTFGCNYKSLQPGRVLRYNLRYGSRPQFKSWRSWIKTGDLYGADFCYYTLPEVLDPFDTAAFARNPMDFWCVATDVETAQPAYHKLTTGKGRDVAWIRASASIPVFARPVKIGGHAYWDGGVSDSIPVRFLLDKDYDKAVVILTQPAGYQKEPSRLQPVIDRVLKKYPAVVARLRQRHLEYNACLAYIAKEEAAGHLFVFRPSQGIDVSAMEKDPNRLKAVYQVGVRDAKRQLAALKEFLQD"]}}, {"location": "[572711:573593](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKTHRQLIIWPILLLATLFLAGCAKDEQTSKSQIKIVTSTNIYADIAQNIVGKYGKATALIANGNSNPHDYEPTTNAAKTVADADIIVANGMGYDSWMGNLAASNGKKAVKVGEDLMQLDSRANPHIWYNLNMPKKYVAYLVKKLSKLDKKHASYYQAQGKKYLQKIAKIEKVADGIKGSKAKPVFVSEPVFDYALERTGFKIGNKNFEEATEKETDPSAAVIAQMNEAIKKKQIPFFVNNTQASSDTVKYFVKKAKKQGIPIVEIRETMPNKVSYADWMLDNYQKLAKFGD"]}}, {"location": "[573701:574229](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNNFKFSKREKIYLLLALAVLVMLFISSSMTYHEQKMKAGFIHTYLGWLEDLIHRLNIYYGGVWHNVKTDGAAGFTQFVVRKLAHFTSYFFYGLFAYLGLRRVFVIKWTGPFFVWSSAFAFAAMDEFHQFLTGDRTPSVHDVMLDASGALLAIVLAVIFYQVKQGREQKSRPFRG"]}}, {"location": "[574305:575037](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0217"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P44634"], "locus_tag": ["MAAAAKME_06210"], "product": ["putative transcriptional regulatory protein"], "transl_table": ["11"], "translation": ["MSGHSKWHNIQGRKNAQDAKRGKVFQKLSREIYMAAKSGGPDPLGNPRLRLAVDKARAANMPKDNIQRAIKKAEGNSDEHYDEVTYEGYAPGGVAILVEALTDNKNRTASSVRVAFTRNGGSLGATGSVAYMFDRKGYIVIDRSTTDADEDQMLMDVMEAGGDDLQTSDDAYEIYTDAKSFTAVRDALEKAGYQLAVSELTMVPQNTTPVPADKKEQFEKLVDALEDDDDVSNVYTAAADEEE"]}}, {"location": "[575195:576167](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2804"], "gene": ["comGA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P25953"], "locus_tag": ["MAAAAKME_06220"], "product": ["ComG operon protein 1"], "transl_table": ["11"], "translation": ["MEVVDKARQMLEEAVRIRASDIFFLPKKGGYKLRLRAGDLEERPSLTREAGNELINWFKYQAEMDIAEHRRPQVGSMAVNLAGQDYWLRLSSVGDYRGEDSLVIRIIYALGESRYFFPDQFRDLVDLCWLRGMIVTSGPTGSGKTTTMYELARKLSQTKMVMTIEDPVEVYEESFFQAQVNAGARISYASLLKAALRHRPDVLIIGEIRDEETAHLAVDAALSGHLVLATVHAKSTYQTISRLESLGVKNNELVNCLTAVSYQRLLPGKKGPACLLDLASREDLLAALGQSVRGNFAAWEENLSRLVEKGEISADVARQYKGG"]}}, {"location": "[576138:576306](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MWQGNIKAAKLKQSEQVELLAFLANCLKNGFSLTKSLQLLPLLWPQRKKAAGPAG"]}}, {"location": "[576310:577138](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRQGEELGQLLAGLGFNKTTVTQLDMALSQGRLDESLAQLALLGRMKNEQVKKLEGELAYPVVLAGMMTLILIFMQNFLSVEFAGSSAKQGDLILLILVFLLVLVIMLVVIAAAYMKKQDYQSFKKLLVWPVFGPVVALYGQYLISYDLGMLLASGFSLQQMCDFACRQAPGSLQEEVGRRTRYAILRGKKVEEVIQKEPFLSQDLLMLLQAGSEREELSRQCLLLSRLLFNRLRQKLSKLIVNVQPVCFILIGLCIIGMYLKLLLPIYDSMQQL"]}}, {"location": "[577159:577483](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKHLRRFWPKRQRAFTLIEMLIVVAIIATLVLLISPNLLAQKDHADKRTNDAFTTTIQTQVELYEENTGKKPASFQEMVDAHYLTQKQEKQAEDKKLAIGDFAKGGE"]}}, {"location": "[577479:577917](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRQKAFSLLETVIALAIAGMLLGIGEMSFQGFEDKINFDRFCRQAVGLFQEKIRSAAITGKRVVIYNQSSQGKLEVIQDGQHESLKIPDGVTVYTNFNNTSGWTISSDGTTSQAFTLRIIKNDQGKKEYEKAYTFLLSWGKINEK"]}}, {"location": "[577906:578173](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSKQEGFLALEAVVALAIVCIALTAMVTCLSGLKKLEQESSQRANQALAYRMLKECPVKRVKVRDHEYVLTGKGDLYDETQQKICQK"]}}, {"location": "[578138:578759](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMKPSRRFARSKAFSLLETMVALLVTVICLSLLSSSLKLFTLFEKDRHDPNELVFSYVQFAKFLKKDSQRTYIDLENSNPLKIMFIKEEKKKDKKGEEKIDKAGYVLEMDNGGNNLRVRRSGPDGGNMTLLPIWGATFAARDGLMEVHINEKGKRSILYFKVDKAPEKEKEAEKKTEDQKTDQAKPAKGERPADQRAAASHDNSAD"]}}, {"location": "[578900:579899](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNRIEELFGQTLEAVECLQEALNVSLADALVETFDNLESGEIRVEMGAPDQKTVAELEERYAALDYKNWSKAQKEQVYGLLVLKAVNDDGRDANQMPTPPLLATVLTLFMDKLLPKRKQVLLDPAVGSGNLLFSVDQQLAAQNHSEDRFDLVGLDNDEEMLNLADVAAHLAGLKADFYCQDALTGWPVKPDVVVSDLPIGFYANDDNAKNFDLRTKEGHAYAHVLFVEQIVKNLAEDGFAFLLLPQNMLTGTVGADFMPWLASKVYLQAIVQLPSSLFQSKISQKSILIFQNHGQSKPPKEVLLTKLENLKKEESLVALNIKLNEWYTKEDN"]}}, {"location": "[579934:581122](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG0282"], "gene": ["ackA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37877"], "locus_tag": ["MAAAAKME_06300"], "product": ["Acetate kinase"], "transl_table": ["11"], "translation": ["MDKILAINSGSSSFKYKLFSLADESVLASGLGDRIGIDGSTFSMKLADGTKHEVEVDLPNQEVAVQTLLDWLKEYGVIADLKEIVGVGHRIVNGGELFPDSAIIDKDNIHKVFDLTNYAPLHNPAEGREIQAFMNILPDVPQVGVFDTSFHQSMDEVHYIYSLPYEYYEKYKARKYGAHGTSVRYVSGKAAELLGKDLKDLKLVVCHLGSGASVTAVKDGKCYDTSMGFSPLAGVTMGTRSGDVDPSVLQYIMKKEGITDFNEMIDILNHKSGLLGLSGISSDMRDIRNSDDKRARLAEAVFINRVVRYVGSYIAEMGGADAVVFTAGIGEHDDVVREGVMKSLSFMGVDFDDAANKAANEGFITKEDSKLAGLIIPTDEELMIERDVVRLAKLK"]}}, {"location": "[581188:581547](+)", "type": "tmRNA", "id": "", "qualifiers": {"gene": ["ssrA"], "inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_06310"], "product": ["transfer-messenger RNA, SsrA"]}}, {"location": "[581844:582000](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLKEFLLGAYSCQKVNDKGRTKLKVDLSPGLLPTALFAWAVYKFLTSGDD"]}}, {"location": "[582179:582905](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["srrA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L524"], "locus_tag": ["MAAAAKME_06330"], "product": ["Transcriptional regulatory protein SrrA"], "transl_table": ["11"], "translation": ["MKILMVEDDKSVSQMMELFFKKEGWEQVSAYDGEEAVEIFQTHPRDFDIITLDLNLPKKDGIQVAKEIRRISETVPIIMLTARDSESDQVLGLGVGADDYVTKPFSPIALIARIKALHRRVMLEGQPRNLPKNIPSNDFDLETNHIRISKSRREVYFDENRVEGLTPKEFDLLYTMAQKPKQVFSREQLLELVWGYEYFGEERTVDAHIKKLRQKLEKSGPQIIQTVWGVGYKFDDSQVNA"]}}, {"location": "[582901:584467](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_06340"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MKLIYQHILSFLIVILTSVMIIGFSTINYQKEQAYQSNYTRLESYAENLSTLQLYSKKTQSKNSPPFFSADFLQKFSFVMRDENLKLFLMDKNFKTTYPLGGYDILKKSAKSMLKKGQVVRIKDDHSSEQQDLAPKVQGRVKRDGLRKRINRLFAAESYTWVVVPQVQGSGSNKKVVGAIMIGSRVKDVLQTVSQAKANLARALVITFVVSLILNFILAYYQTGRIKKLSLAARKVADGDLDVQVDHRHADEIDDLAENFNEMVRSLKASNEEVKAQEERRDQFMQDVAHEMRTPLTTINGLLEGMKYDAIPEESIPESIDLMSRETKRLIRLVNENLDYEKIRSGKIQMMKSQFNAWTIMNDVQQQLTQNAAKNGDKIILDAPEDLPVYADQDRFKQMLVNLTQNAIQFTNNGTITLRGRRFQHGATFSVQDTGIGMTQEQSKYIFERFYKADPARARYGGTGESGLGLSIVLSLVRQHGGEIKVISKPHEGSTFMITLFDQGHEKHYDKKDKKEYKDKE"]}}, {"location": "[584513:586736](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1368"], "gene": ["ltaS2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34952"], "locus_tag": ["MAAAAKME_06350"], "product": ["Lipoteichoic acid synthase 2"], "transl_table": ["11"], "translation": ["MKHSKFLGKFQSRTGFLTLLVICYWLKYLFVAYCDFNLGLANPLQHIIMWFSPLGTSIILISLGFYFSKPLASYIAMLALDFANTALLFANVLYYRQFTDFITVKTMANLSKVSQGLGKSSAALLAPSDIFIWLDLIVIVILLAVKVIKIDQRSYGFSRTFAITSFGFFVLGLNMMVAECNRPRLLKNTFDRTYVVKYLGIDTFTVYDAIKNESSSTVTKNASTSELNKIINFTQQNYAPANSEYFGAEKGENVIIIHLESFQQFLIGMKVNGKEVTPFLNSLYKNKHTLSYSNFYHQVGLGRTSDAENMLETSTYGISDGSLFTSLGSSNTFQASPQILRANSNYTSAVFHGNVGSFWNRNDVYKNMGYNYFFDKNYFSQESGDSSGYGLKDKLFFAESVKYLERMQQPFYAKFITVTNHTPFELATADQDPNFKTSSTSDVTINNYFLTAHYLDQALKEFFTYLKKSGLYEKSMIVIYGDHYGLSNEEYTTLAPLIGKNPNDWSSYNTAQMQKVPFMIHASNLKGGIKSTLAGEIDVLPTILHLLGISSKQYVQFGTDMLSAKHKQIVVFRNGTVISPKYVLIGGKTSKGNVYDASGKLLTKLTKKQKAEVKKLAAYGKNSLAYSDTLNNKNLLRYYTPKGFSPVIPSDYNYSTNYQQMMDLIEQLGKQSTALISQKGDTSKLYKTDASQLAKRQSEITQIPESILSSSSSMNESMTSSSSSSSASSSSSKASSKKTK"]}}, {"location": "[586884:587511](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLFLAPLYNYLASQYATRINHFALIKLTLQGLDKTIFYFLLFALVRVIWLLAVRKRRGLWSEFGLWLFVFYFLLVLMLTTFRSSYFPWELNFHWTRPLSNINLVFMKNTWKLVYAQSKVDFYYNSMGNILAFVPFGALLPNLLQVKRCFGRVFFLGVLSSVTIEILQFLLMTGVSDIDDVFFNACGVLLGYGLYFLLGQICVKKPNKD"]}}, {"location": "[587587:588928](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0166"], "gene": ["pgi"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P81181"], "locus_tag": ["MAAAAKME_06370"], "product": ["Glucose-6-phosphate isomerase"], "transl_table": ["11"], "translation": ["MNSVVSFDSSKLTPFVHENELKEMQAMVNAADKELREGTGAGNDFRGWLDLPVDYDKDEFARIKKAAKKIQSDSDVLIGIGIGGSYLGAQAAIEFLNSSFYMAEKSDYPKVVFCGNSLSGTYLSDLINWLGDKDFSLNIISKSGTTTEPSVAFRVLKAKLIEKYGKEEAAKRIYATTDRQKGALKIEADAEGYEEFVVPDDVGGRFSVLSAVGLLPIAAAGCDIDALMQGAADARAAYTDPDVSKDSPYQYAALRNILYRKGYTTELLENYEPSIRMFGEWWKQLMGESEGKDQKGIYPSSANFTTDLHSLGQYIQEGRRNLMETVVRVAGPRADVEIPNDESNLDQLNFLAGKKMNYVNDRAYEGVVLAHTDGGVPVMTVNIADQSEHTLGYLIYWFELSVAISGYLNGINPFNQPGVEAYKRNMFGLLNKPGYEDLHDELASRL"]}}, {"location": "[589102:589594](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23843"], "locus_tag": ["MAAAAKME_06380"], "product": ["Periplasmic oligopeptide-binding protein"], "transl_table": ["11"], "translation": ["MSSRKIALTGLALAAVTLTACSKQESSQKEQDLNWSVGGEITTMDPSKATDVVSFSQMINSMEGLYRNSKDGQSPGLATSAQVSKDGLTYTFNLRKSKWNDGTPVTAQDFVYSWRRTVNPKTEAEYSYLFSGIKNADAIQNGKKPVSSLGIKAEGKSISWSSL"]}}, {"location": "[589602:590586](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_6"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_06390"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MAYFKDLMAFPVFFPQEEKDVKKYGDKQSVKLDQISFTVNKTATTAYNLYQSNKIDVLGLDSNLSKQFKGKKNYYSLSNGGTYYLELNEKNPNLANSNIRKAISLAINRENLIRILGGNNQVANTYTAKGLTEYYGENYTSMISSSAKDLYKYQPSKAKEYWQKGLSELGKSSLTLNLLTSDSDGGKKTGETLQSMLETQLPGLKLTVTSVPFKTRLARRENGQFQICGSDWIADFGDPISFLELLTSKNSSNYGSWKNSQYDKLIAASKNTNDQEKRLKDMSKAESILLDDVGVYYEDDAWLIRSNAKGWICKRSEWNFKEAYVTK"]}}, {"location": "[590643:590716](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_06400"], "note": ["tRNA-Gln(ctg)"], "product": ["tRNA-Gln"]}}, {"location": "[590720:590794](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_06410"], "note": ["tRNA-Glu(ctc)"], "product": ["tRNA-Glu"]}}, {"location": "[590963:591968](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.16.4"], "codon_start": ["1"], "db_xref": ["COG:COG1680"], "gene": ["yfeW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77619"], "locus_tag": ["MAAAAKME_06420"], "product": ["Putative D-alanyl-D-alanine carboxypeptidase"], "transl_table": ["11"], "translation": ["MLNFPKTQLLIESLVSERIVPGVNYALLKGDQVFASTLGFASIYPAKSQLSPFAYYDLASCSKVLATTAAFLQLREEGKVDFADPLQKYVPEFKDGRVRLSHLLTHTSGIRGWIENRNALSGPELMRAIVGLPVTSEFNRVVRYADTNFVLLGLVLERITGKAVQDLASERIFRPAGLTETTFAPPKEECVPTELVDGQVIQGFVHDPKGQQLGRRCGSAGLFSTVSDLVKMGQGYMGVSDLLPLKEETIQDLYQVKTPAGLKARSWGWNLVFDPKENYPIIYHTGFTGTLVLFDQVKQSGLILLTNRVHPSRHNQIFLTMRSRIINAFLQENR"]}}, {"location": "[591990:592242](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLSNKQKGWLLLAVYGLVIIILGCFNSRMSPYYAITAIAAFAVALIEGLLFAFSKNATYKAVAFFAGLVALINVVAVLTTAI"]}}, {"location": "[592303:593659](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.13"], "codon_start": ["1"], "db_xref": ["COG:COG0769"], "gene": ["murT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DNZ9"], "locus_tag": ["MAAAAKME_06440"], "product": ["Lipid II isoglutaminyl synthase (glutamine-hydrolyzing) subunit MurT"], "transl_table": ["11"], "translation": ["MSFKSNIATFAGKSSYWFLHNVLKGGTSFPGKLAMKLDPDVLEQLGKDYETIIVTGTNGKTMTTALITQTLKEKYGDILTNPSGSNMAQGIVTAFLAHDQKKSSRKLAVLEVDEANVKAVTQLVHPKAFVLTNIFRDQMDRYGEIYTTYEKIVAGIKLAPDATIIANGDASIFSSVDLPNPKVFFGFETDQDKPQNDLKADVNTDGVLCPKCEHILHYHAISYANLGDFFCPNCGYKRPDLTYKLEEISEQTPSRIKFTIEGKEFAVNIGGTYNIYNALAAFACAREFGVSANEIAAAFAKNKRIFGRQELIHYQGKQINIILVKNPVGLNEVLSLLDTEKDHYSLAALLNAHHADGIDTSWIWDGNFESLDRDKIDQVIVGGERHKDMAFRLEVAGFDPDKMIIESDFDQLLAAFAKTPTDKIYILSTYTAMLHLRQVFADKGVLKRRIN"]}}, {"location": "[593799:594402](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.21"], "codon_start": ["1"], "db_xref": ["COG:COG1435"], "gene": ["tdk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9PPP5"], "locus_tag": ["MAAAAKME_06450"], "product": ["Thymidine kinase"], "transl_table": ["11"], "translation": ["MAQFFFEYGAMGSGKTIEILKVAHNYEIQGRKVALLTSSVDTRAGRGVVASRIGLSRSAQPIEPDLDLFDYITALNQQEQESDGHPLAAVLIDEAQFLKKDQVIQCARVVDDLHIPVMAFGLKNDFQNHLFEGSEYLLLYADKIEEMKTICHFCGHKATMALRYKDGLPVYEGEQVQIGGDEAYYPVCRFHYFHPDQARD"]}}, {"location": "[594425:595511](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0216"], "gene": ["prfA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DU64"], "locus_tag": ["MAAAAKME_06460"], "product": ["Peptide chain release factor 1"], "transl_table": ["11"], "translation": ["MDNVMAQLESLEVRYEEIQEMMADPEVIADTKRYMEITKEEADMREVVQKFRKFKADKEEIAGNKEIIADGSDPELVEMAKMENSELEDEISQLEDEIKILMLPKDPNDDKDIIMEIRGAAGGDEASLFAGDLLRMYEKYAENQGWNVSIVDSEQTEVGGYKRAAIMITGNKVYSKLKYENGAHRVQRIPVTESAGRVHTSTATVAVMPEYEQVDIDLDPKEIRVDVYRSSGAGGQHINKTSSAVRMTHLPTGIVVAMQDQRSQQQNRAKAMEILKSRVYDYYESQNRDKYDAKRKNAVGTGDRSERIRTYNYPQNRVTDHRIGLTLNKLDRIMNGELDEVIDALTVYYQTKQLEELAENA"]}}, {"location": "[595503:596346](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.297"], "codon_start": ["1"], "db_xref": ["COG:COG2890"], "gene": ["prmC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYV8"], "locus_tag": ["MAAAAKME_06470"], "product": ["Release factor glutamine methyltransferase"], "transl_table": ["11"], "translation": ["MHKSLREMRIEASELAESARSEEIDFLLAERLGLTPSQFQLKQDMELSDAEVKQARKDMKRLAKGDSPQYILGYAWFLGYRLRVAKGVLIPRFETEELVEWALAHLQDGDTVLDLGTGSGNITVALAKEAESKGIKDLHFYASDVKDTPLRISEENFLDYGLDVTTRKANVLLGLGKFDLIISNPPYIKPSEKNVMDKGVLANEPEEALFGGQDGLAFYRKFAEEVRDHLNSGGRFFMEFGFSEEDELKAMFAEKLPDFKVEFRRDMAGKPRMLFGEWKK"]}}, {"location": "[596345:597341](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.87"], "codon_start": ["1"], "db_xref": ["COG:COG0009"], "gene": ["ywlC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39153"], "locus_tag": ["MAAAAKME_06480"], "product": ["Threonylcarbamoyl-AMP synthase"], "transl_table": ["11"], "translation": ["METKIFKREQLDEAVSLLREGGLVAFPTETVYGLGALATRDDSVKKVYAAKGRPSDNPLIVTVADEAMMRPYAKEVPERAEKLIKHFWPGPLTILLLAKEGALPESVTGGLPTVAFRCPDDQLTHDLIAKLGYPIVGPSANTSTKPSPTTAQHVYHDLKGKIAGIVDGGETEVGLESTIVDLSVNPAVVLRPGKITPEEISQVLGEEVLINRGQVSDKDVPKAPGMKYRHYAPSAQVYVVDQAETFDKLDLDASCGVMATSDLLENLPVPEENKFNLGKNLTEADHNLFAGLRYFDDRPEIKSIYVEGFDQGEESLAYMNRLNKAAGGHHV"]}}, {"location": "[597440:598070](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.9"], "codon_start": ["1"], "gene": ["upp"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P70881"], "locus_tag": ["MAAAAKME_06490"], "product": ["Uracil phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MGKFTVLNHPLIQHKLTIIRRKETGSNEFRRIVGEIAGLMTYEITRDLPLQDVEIETPMGKTVQKELAGKKLTIVPILRAGMGMVNGVLEMIPSAKVGVVGMYRDEETLKPVEYFFKVPKDVTERECLVVDPMLATGGSANLAIEALKKRGVTDIKLAVLVAAPEGVKAVQDEHPDVDIYAAALDDKLLPNGYIFPGLGDAGDRIFGTK"]}}, {"location": "[598179:598899](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["atpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P09218"], "locus_tag": ["MAAAAKME_06500"], "product": ["ATP synthase subunit a"], "transl_table": ["11"], "translation": ["MEKSLVFNINGTGLNVDLVGIIGSTLMAIVVFAICYALSRKVEMKPNKKQNVLEYLIDFTDGIVKDNVEDPAAQKHLSLYAFVLFLFIFCMNQLGLFLEVKVGDYMVIKSPTADPVTTMSFAMMTLLLSFTFGIQKFGTKGYLQNYARPVGFLLPINIIEEFTNFLTLSLRLYGNIFAGEVLLTLIGNQLGPSMGIVTRILAAPLAMIWQGFSVFIGSIQAYVFVTLSMVYIGKKVTQE"]}}, {"location": "[598917:599142](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["atpH_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01396"], "locus_tag": ["MAAAAKME_06510"], "product": ["ATP synthase subunit c"], "transl_table": ["11"], "translation": ["MTTGLKDLAAALVAGIAALAASWGNGKVISKTIESIARQPESAGNLRATMFIGVGLIEAVPILAIVIAFLILFM"]}}, {"location": "[599195:599702](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0711"], "gene": ["atpF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY5"], "locus_tag": ["MAAAAKME_06520"], "product": ["ATP synthase subunit b"], "transl_table": ["11"], "translation": ["MEFQPVFAGAEISIINTLWYLIVFSILLLAVKHYAWGPVKDMMEKRRQKVIDDLDQAASDRKKAETLANEREAALKNSRQEATQILSDAKSNAQKTGKQIVSEAMAEASAIREKAKADAAQAETDALNEAREEVADLSVTIAEKVIAKNLSAADQKDLVDQFIKGLND"]}}, {"location": "[599701:600244](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0712"], "gene": ["atpH_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY4"], "locus_tag": ["MAAAAKME_06530"], "product": ["ATP synthase subunit delta"], "transl_table": ["11"], "translation": ["MALSREETARRYGTAIFDFAKDSGKTELMYSELTELKKAVQAEPRFVQVLSNPVLDAKQKKSLLTAVEQGFSAELQEVLNFLLSYDRFDNLVDIIDYYIHLYNAANHIGTGVAKTVLKLDEDQLQRLADSYAKKYGLQALHLENEVDPEIIGGVVLEVEGRVIDGSVKHRLEKIRAMLTK"]}}, {"location": "[600266:601778](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.1.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0056"], "gene": ["atpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5FKY2"], "locus_tag": ["MAAAAKME_06540"], "product": ["ATP synthase subunit alpha"], "transl_table": ["11"], "translation": ["MSIKAEEISSLIKQQLEHYDDKLDIEEVGVVTYVGDGIARAHGLNNVLSSELLQFDNGAYGIAQNLESNDVGIIILGKFDDIREGDRVKRTGRIMEVPVGDALIGRVVNPLGQPVDGLGEIKTDKTRPIESKAPGVMQRQSVNQPLQTGIKAIDALVPIGRGQRELVIGDRKTGKTSLAIDTILNQKGQDVICIYVSIGQKESTVRAQVETLKKLGAMDYTIVVEAGPSEPAPMLYIAPYSGIAMGEEFMYAGKDVLVVFDDLSKQAVAYRELSLLLRRPPGREAYPGDVFYLHSRLLERSAKLSKELGGGSLTALPVIQTEAGDISAYIPTNVISITDGQIFLQSDMFFSGTRPAIDAGASVSRVGGAAQIPAMKKVAGTLRTDLASYRELESFAQFGSDLDQATQAKLARGRRTVEVLKQPLHKPVAVEKQVVLLYALTHGFMDAVPVDDIARFEQELYTDFDANHADLLAEIKSTGKLPDENKLQEALQQFASSFSSSNK"]}}, {"location": "[601788:602751](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0224"], "gene": ["atpG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY2"], "locus_tag": ["MAAAAKME_06550"], "product": ["ATP synthase gamma chain"], "transl_table": ["11"], "translation": ["MPASLLELKKRIASVKQTSKITEAMHMVSAAKLNQTEKRDKGYQEYNRLLHQTVSRLMSASVINHLNKANYRLTQDNIDSIDYDDVFGMGIISDMIKPREEVHSVGYLVVTGDRGLVGSYNSSVIKQMMSLVADDKLQGRESKILSVGSVGSQFFKKNNLNVVYEKDGVSDVPTFKETLPIVSTAIKMYLNGVYDELYVCYTHHVNSLSSAFRAEKMLPIVDLDIGTMEAKESKKIEFEVAPDIDSVLATLLPQFARAEIYGAILDAKTAEHASSMTAMKSATDNAKDLVSSLSLQMNRARQAQITTELTEIVSGANALE"]}}, {"location": "[602770:604210](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.1.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0055"], "gene": ["atpD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5FKY0"], "locus_tag": ["MAAAAKME_06560"], "product": ["ATP synthase subunit beta"], "transl_table": ["11"], "translation": ["MSQGEIVQVIGLVVDVKFSIGKDLPDINNALKVIKSDDDSIILEVILEQGDGVLRCIAMESTDGLRRGMKVEDTGSSISVPVGPDTLGRVFNVLGQPIDGGPEFPADHPRSGIHKEAPKYDELTTSREILETGIKVIDLLEPYLRGGKVGLFGGAGVGKTTIIQELIHNIAQEHNGISVFTGVGERTREGNDLYFEMKASGVLDKTAMVFGQMNEPPGARMRVALTGLTIAEYFRDVEGQDVLLFIDNIFRFTQAGSEVSALLGRIPSAVGYQPTLATEMGQLQERITSTKKGSITSIQAVYVPADDYTDPAPATTFAYLDATTNLERSLVEQGIYPAVDPLESTSSALDPEIVGQEHYDVATRVQHILQRYRELQNIISVLGMDELSDEEKLIVARARRIQFFLSQNFFVAEVFTSVPGSYVPIKETIKGFKMILDGHLDDLPEDAFRGVGPIEDVLKKALKMGVTPSDPEAKALLEK"]}}, {"location": "[604221:604662](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0355"], "gene": ["atpC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RGY0"], "locus_tag": ["MAAAAKME_06570"], "product": ["ATP synthase epsilon chain"], "transl_table": ["11"], "translation": ["MAEAEKLFKINIVTPNGLIYSHRGSSVSMRAIDGDRQILYNHLPILTPLTIGEVRVQRGADVDHKVDHIAVSGGIIEFANNVATIIADNAERARNIDLSRAEAAKQRAEAHITEAKEKHDEQLLERAQIALRRAVNRIHVYGALHK"]}}, {"location": "[604695:604941](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVDFIMRQLGIHAIISLVIYFVCIALAFQAIKAVRIEKIIRTSRVFEVQVFLIFTAIALGYTVGQFLIALIDTSLQLSNLF"]}}, {"location": "[605026:606016](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1077"], "gene": ["mbl"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39751"], "locus_tag": ["MAAAAKME_06590"], "product": ["Cell shape-determining protein Mbl"], "transl_table": ["11"], "translation": ["MSKDIGIDLGTANVLINVSGKGIVIDEPSVVAVDTNTNKVVAVGTEAYEMVGRTPGNIRVIRPLKDGVIADFDITEAMLSYFIEKLNVKGFMSKPNVLVCTPTGVTSIEQKAIIQAAEKSGGGKVYLDYEPKVAAVGAGLDIFKPQGNMVIDIGGGTTDIAILSMGEIVTSKSLRYAGDRMNQAIVNYIKANHQLLIGMRTAEAIKIEIGAATDPDPDASMNVRGRDTIDGLPKQIKVNSSEVTEALQEGLQSIIDTTKQVLQETPPELSADIIDRGIMITGGGALLKNIDKLIADSLLVPVLIAESPLESVALGTGILLQHIEKHERH"]}}, {"location": "[606030:606306](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0759"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97NX8"], "locus_tag": ["MAAAAKME_06600"], "product": ["Putative membrane protein insertion efficiency factor"], "transl_table": ["11"], "translation": ["MILLVRFYQRAISPILPDSCCFYPTCSSYMITALEKQGPLLGLLMGLARILRCNPFNRGGVDPVPDKFTLLRNPHPEEYEDEIIARKFHSH"]}}, {"location": "[606318:606546](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSRNQENIGIEVNELSGRRVPTWEVVIPKKRQIGLIEQVDGKFRVTSSKSKNVMFAKSLDAGINDLLAYFTLHEK"]}}, {"location": "[606570:607761](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.129"], "codon_start": ["1"], "db_xref": ["COG:COG0772"], "gene": ["rodA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39604"], "locus_tag": ["MAAAAKME_06620"], "product": ["Peptidoglycan glycosyltransferase RodA"], "transl_table": ["11"], "translation": ["MAKVQEESKWYDRIAWGVIIPVVLLSFVSFYSIYNASVNDSTYGTPTRTVAMQIVWYTVSWLMVAFIVRFDAEQIFKLAPYLYGLGIIMLVAVLFLYDRTTAASSGAKSWFVVGPVSFQPSEVMKPAFILQLARVVREHNARYAHNLRNDWLLIGKVMSWFLPVAMLLMLQPDFGTTLVFVAITAGILLVSGISWKIIIPVFLLMVVMGVAVILLVFTSEGQTILRHYFKTYQLERIKSWSDPSGDNSNSAYQLWQSMKAIGSGQIFGNGFNNIKVYVPVRNSDMIFSVVGESFGFVGGVALIGIYFVLIVQMVKITFSTKNAFYSYVSTGIIMMILFHAFENIGMSIDLLPLTGVPLPFVSQGGSALIGNMIGVGLILSMKWHNKDYMFSTAGDF"]}}, {"location": "[607832:608294](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A551"], "locus_tag": ["MAAAAKME_06630"], "product": ["Putative universal stress protein"], "transl_table": ["11"], "translation": ["MTKQYQYKHIQVAVDGSKEADLAFKKAVTVAKHMNASLEILHVIDTRSFQNVSSFDSAMVEQVSNDAKKKMEKYYQSAQDSGVKEVHYSIEFGSPKTIISREFPKKHDIDLIVVGATGLNAVERLLIGSVTEYVTRTADCDILVVRHNKAGLD"]}}, {"location": "[608351:608636](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLYIRIFMIIFIACLLLTAWYLWHRKNGSFLVFDVSSSPELHSLMTICSWTLLAISFLGIVLLFFDNKYLNLITLFLGSATIFIFALLLSQNNQ"]}}, {"location": "[608986:610291](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2256"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQN1"], "locus_tag": ["MAAAAKME_06650"], "product": ["putative AAA domain-containing protein"], "transl_table": ["11"], "translation": ["MKPLAYRMRPQSIDQVVGQQHLVGPKKIIRRMVEARQLSSMILYGPPGIGKTSIASAIAGSSKYAFRQLNAATDGQKELSQVAAEGKMSGTVVLLLDEIHRLNKVKQDFLLPLLESGQVIMIGATTENPYLAISPAIRSRCQIFELKPLTEEEILTAVDRALTDEERGLGKYHAKLTKEAGEFLAQKGNGDLRATLNSLELAVLSTKQELEAEGKDASSLTVTLDDMADSLQMKIQNFDADGDGHYDLLSAFQKSIRGSDTDAGLHYLGRLLESGDLVSICRRLSVIAYEDIGLANPPACERVILAVQAAQQLGLPEARIPLANAVIELCLSPKSNSAMTAIDAALADIRQSNVGQIPDQLKDAHYKGASKLGHGTGYLYPHDYPGDWVAQAYLPDRMQGKQYFAPKGESKFEAAFKSQYQRLHDLQKAGLKGK"]}}, {"location": "[610287:610752](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTENLTKRVENAANDITPQTRPDERRSFLGSLRERVFVRMTIKDCEDAKLTKLFMDHFADYKGYTILINANTPNPTFVGQIESRASKEQVPFCMVNDESARKGDDDSAILVVSKEAINRMRIELTQVYAPPLPAEKLPAPKKKGFLARFFGGNK"]}}, {"location": "[610876:611488](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0522"], "gene": ["rpsD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI10"], "locus_tag": ["MAAAAKME_06670"], "product": ["30S ribosomal protein S4"], "transl_table": ["11"], "translation": ["MSRYTGPSWKRSRRLGISLSGTGKELARRSYIPGQHGPNHRGRLSEYGMQLQEKQKLRWMFGLNERQFRTLFARAGKIREGQHGTNFMILLERRLDNVVYRLGLATTREQARQLVNHGHITVDGKRVDIPSYEVKVGQTISLKEKSKNLQQVKDALEAVASRPSFVSFDEDKMEGQLVRFPERDEMEPEIDEALVVEYYNKLL"]}}, {"location": "[611783:613502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4477"], "gene": ["ezrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34894"], "locus_tag": ["MAAAAKME_06680"], "product": ["Septation ring formation regulator EzrA"], "transl_table": ["11"], "translation": ["MSSTQSLLLITLIITIIVVVMAMLLINRRQLRDIEELDNELGNMEDLHLERAIGKLDQMELAGESLATLNTWKKSYQKAAELFPEIQRLIEDGADENARYHLVKSHQSIKQARELVDSVSEDVKNSSDVFTQLLESNRENKAQYDELMQSYWEIRKEILADSFDYSVALEEIENRLSAMEEDFAQAKNLSAQGDHVEAKRVLSKIRADLTALKTKLPEVKEDQHDLQTVFADQLDEIAAGYKEMRDAKYGFGSLDVLLEIRQSNDQIDRSLAALAQLDLEETSKGMKKVEKEIKTLYGILEKEYKARPFVEKNQDKLQRLLTHQQTVSQQLIKKLRHIDESYELTHGELDESRELEREVHKMDSDYIRASQRIADGRAVYSEVQDDWIKILGRLQEIGKRQQELSEAVDGLYEAEEVAQRSIKEFKQQVSLVYRHLSRQNLPGIPEGFLQMYTLVVNEISKTSGELNQVRINMEKISEELVQISDDVDRLQREAEDIISSANLFELTMQYSNKFLDNETVVRARRNAMKLYDRDYNYKDALDTIATAVERAEPGSYQRIENAYYQEQKELID"]}}, {"location": "[613587:614745](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.7"], "codon_start": ["1"], "gene": ["iscS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O54055"], "locus_tag": ["MAAAAKME_06690"], "product": ["Cysteine desulfurase IscS"], "transl_table": ["11"], "translation": ["MIYFDNSATTKMAPKALETYSQVVTKIWGNPSSLHKLGDRAHGLLEASRKQVADLLGVNTDEIYFTSGGTESNNTAIKGTAWAKREFGKHIITSSVEHASVANTFTELENLGFRVTRLPVDKEGRVNPEDLKAALDKDTTLVSIMGVNNEIGTIQPIKEISEILADYPNIHFHVDNVQALGKGIWDQVFTSRVDMMSFSSHKFHGPRGIGILYKKRGRMLMPLCEGGGQEKGLRSGTENLAAIAAMAKAARLLLTDEKEKADREYAIKEKISKYLAGKPGIHIFSPLKADFAPHILCFALEGIRGETLVHTLEDQDIYISTTSACASKKADEASTLVAMKTPDAIATSAVRLSFDESNTLEEADEFIAAFDEIYQHFSKINHLGE"]}}, {"location": "[614747:615965](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.4"], "codon_start": ["1"], "db_xref": ["COG:COG0301"], "gene": ["thiI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81KU0"], "locus_tag": ["MAAAAKME_06700"], "product": ["putative tRNA sulfurtransferase"], "transl_table": ["11"], "translation": ["MQYTEIMIRYGELSTKGKNRKDFINRLASNVQKVLHDFPDLKIQTHHDRMHILLNGTPFEPVNDRLKVVFGIQTYSPVIKTEKSLEAIEKTALELMQATYKAGMTFKVNTRRSDHKFIYDTNQLNQMVADYLYNHMEGLQAEMKHPDMVLLLEIRQDGAYISNQLLHGAGGMPVGTAGKAVMMLSGGIDSPVASYLAMKRGVNIEMVHFFSPPYTSEKALAKAKELTSILAKYSGRINFIEVPFAEIQETIKEKLPEGYLMTVQRRFMLRLADIIREKRHALAIFNGESVGQVASQTLESMAAINNVTTTPVLRPVATMDKTEIIAKAEEIGTFDLSIQPFEDCCTIFAPPRPKTKPKIDKAREYESRLDVDGLIERALAGVKVTPIYPGQSFLDDLDEEDADLL"]}}, {"location": "[615964:616690](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.19"], "codon_start": ["1"], "db_xref": ["COG:COG1187"], "gene": ["rsuA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AA43"], "locus_tag": ["MAAAAKME_06710"], "product": ["Ribosomal small subunit pseudouridine synthase A"], "transl_table": ["11"], "translation": ["MLRLDKFLANMKVGSRSQVHEIIKAGQVTVNGKVCRSAKQKVKEDAEVLVNGQAVVYQQYHYFLLNKPAGVLSATEDSRQKTVLDLLKDQDRYQKIAPVGRLDKDTTGLLLLTNDGQLAHQLLAPEYHVPKTYYALLAGVADEETAKAIAAGLTLKDGTELKPGQLNILRQDKDQEQSEIEITITEGKYHQVKRMFASQGMKVLKLKRLSMGPLTLPADLAPGSYRPLTEEELAALKQVAL"]}}, {"location": "[616950:619590](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.9"], "codon_start": ["1"], "gene": ["valS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99TJ8"], "locus_tag": ["MAAAAKME_06720"], "product": ["Valine--tRNA ligase"], "transl_table": ["11"], "translation": ["MTELAPKYNPQEVEAGRYQEWLDEDLFKPSGDKKAKPYSIVIPPPNVTGKLHLGHAWDTAIQDTLIRYKRMQGYDTLYLPGMDHAGIATQAKVEARLREQGVSRYDLGREKFVEKVWEWKDEYANIIKSQWQKLGLSLDYSRERFTLDKGLSKAVRRVFVQLYNEGLIYRGEYIINWDPKLRTALSDIEVVHQDDQGAFYHINYPLADGSGSVEIATTRPETMFGDTAVAVAPGDERYKDLVGKKLILPLVGREIPIIEDQHVDPEFGTGLVKITPAHDPNDFEVGNRHDLPRINVMNDDGTMNDKAGKYAGMDRFDCRKQLVEDLKAEGYLIKVEPIVHSVGHSERSGVQVEPRLSTQWFVKMKPLADKVLENQKGEGRVNFVPDRFEGTLERWMENVHDWVISRQLWWGHRIPAWYNKQTGEMYVGEEAPADIENWDQDQDVLDTWFSSALWPFSTLGWPDEDSADFKRYFPTNALVTGYDIIFFWVSRMIFQSLHFIGERPFDNVVLHGLIRDEQGRKMSKSLGNGIDPMDVIDKYGADALRWFLLNGTAPGQDTRFSYTKMDAAWNFINKLWNASRFVIMNLPEDAKPAQKPDISKFDLADAWIFDRLNHTVKETNRLFDEFQFGEAGREMYNFIWNDFCDWYIEISKVALYGDDAELKARKQANLTWILDQILRLIHPIMPFVTEKLWLSMPHEGKSIMTAAYPEAHAEFDNAKADEDMAFLIEIIKAVRTIRMEVNAPMSSAIDILIQLDDEKNEAILRDNMEYVENFLHPKKLEISGKIKAPKLAKTAVIAGAQIFVPLSELVDLDEEIAKMGKEEARLEAEVDRASKKLANKGFVGHAPAAVVEKEKGKLAEYENQLAGVRDRIKELKESR"]}}, {"location": "[619594:620860](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.17"], "codon_start": ["1"], "gene": ["fpgS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15925"], "locus_tag": ["MAAAAKME_06730"], "product": ["Folylpolyglutamate synthase"], "transl_table": ["11"], "translation": ["MKFRTVNELTAYLYHLPRLHEKSDLTYVKRVLKALGDPQDKVKCCHITGTNGKGSTAYYLNNLLQKAGQQTGLFVSPFIIRFNERIQLNGQAIADEDLLEVANEVEAAVGHLREEEADFALVTFEYEVAMAFLFFAKQKCDYAVIEVGIGAEHDKTNVMTPVVSLITTIGLDHEQIIGPTLADIAKEKSGIIKPAVPVILGDIPASVKGIVEEKITKSASPSYWLGRDFQVKEEKAGYKLAVAGQNYQLPAWPRPEAKDAAMALAAFALLPLTLSEKAAEAALTQTTVPGRYQRLEKAGCSFLLDGAHNVQAGSELLPYARRLAKDKDGRLLVLAGMMKDKDLSDFLTLLKNEKVTLTSLAYPRAAKKADFPAWVQEKFAYEGDLGQALNQVMAEAGDRDLILVTGSFYLVSAVLQFLQSA"]}}, {"location": "[620877:621558](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG0637"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9X0Y1"], "locus_tag": ["MAAAAKME_06740"], "product": ["Phosphorylated carbohydrates phosphatase"], "transl_table": ["11"], "translation": ["MRVAGLKTDKQGVIFDMDGLLVNSEEFYWQANIQAAREYKLGISDDAYLDLVGASVKAMDAFYEKYFPSDEVRQAFVKRTDDLVWEWTDQGKLKLKAGVKEALEYFNDLGLTVGIASNNYKSVVDHNLWVTGCRNSFDFIVTHDEVAEKKLRSKPFPYLYLAAQERSGLGKDQLLIFEDSSMGVEAAENAGIDCVMIPDIKPASAEDRARAQLICPDFFDFLKKIS"]}}, {"location": "[621606:622221](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTETTQNYYYVESDRDLLKLLFDQLPCQSLEDLLQLLDQKHIASFKDILDYASGPDCPNDLSLTIEVAMDRLRRTDMRRSSDWAGSSKIGNYLANKLLGQKQEQFWVLYFDQQQNLLGEKMLFQGTLDRSWVHPREIFRWAVVYGCASIIVAHNHPSGALTPSDNDLELTKGLKKASKIMKITFLDHFIIGGGEYLSLRERELF"]}}, {"location": "[622311:623316](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1077"], "gene": ["mreB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q01465"], "locus_tag": ["MAAAAKME_06760"], "product": ["Cell shape-determining protein MreB"], "transl_table": ["11"], "translation": ["MFGLGSKNIGIDLGTANTLVYVEGKGIVLREPSVVAKNTKTGEVIAVGSEAKEMIGRTPGSIVAIRPMKDGVIADYDTTAAMLKYFMGKTVGNSKPSVMICVPSGVTEVEKRAVIEAARVAGAREAYVIEEPFAAAVGAGLPVMEPTGSMVVDIGGGTTDVATISLGGIVSSTSIRQAGDKFNQAITNFVHSKYNLLIGERTAEDIKIQISSASVEAAKEIESKTIRGRDLVSGLPKSLEISAVDVATAIQDVVQDIIVAIKETLELTSPEIAADVIDHGIVLTGGGALLKNLPEVISDATKVPVFIAQDPLDCVAIGTGESLKHLDVMRKTSR"]}}, {"location": "[623366:624218](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1792"], "gene": ["mreC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y6Y4"], "locus_tag": ["MAAAAKME_06770"], "product": ["Cell shape-determining protein MreC"], "transl_table": ["11"], "translation": ["MKKFFQNRKMLAAFGTVAVLASLLGSTVMLRNNLSEPLLIQRLGNDIVSVGSRIVSVPVSWFTYGIDSVKDLQNAADENSHLKKKVAELAQVEARNAALEKENKQLKAAAGIKKTLTGYTTTTASVISRSSDSWSEVLTIDKGKSSGLKKDMAVMSGGGVIGRILEVDAVTSKVELITTTDSSANRFAVQATTDTGKVLHGIISVQSNGALTFTQASSSSKLKKGTKVYTSGLGGTSPKGLLIGTVAETTKDSFGLSDLIKIKPAGNLSDASVVTVVKRSVAG"]}}, {"location": "[624217:624757](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIFKQWVLAIALYLALVVEGTLSVYLQPALTYQHGRAGLLLLPIAVLIIAYEDERNEKEIWLALAAGVVADLYFWGIIGIYTFILPALSAFGRWYARVFPELFVFRLLGNIVAITVSCLYTWLVFRLIGWTDLTLKAIGFSLLYTAGWTTGISLATYWLWAKLARSYPFLVDLDNYRY"]}}, {"location": "[624813:624936](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARKKKKSTFQKIENFMVVLMALITLFGVAASVLYYLTAQ"]}}, {"location": "[625053:625383](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06800"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLMIFLLPVFGLACAYLVNLIWPKAAFKGYDVMPFFLIYACQLMTNLKGVPSFLPAGFLLYFILILLAAIRWAMINKNISLGKMFRQFWSYLDACSFFWYCGLLLVVMI"]}}, {"location": "[625515:625947](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mraZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65439"], "locus_tag": ["MAAAAKME_06810"], "product": ["Transcriptional regulator MraZ"], "transl_table": ["11"], "translation": ["MFMGEYQHNLDAKGRLIIPAKLREQIGPAMVLTRGMEGCIFGYPLTEWAKIEAKLAKLPLTKKNARSFTRMFYSGAMEGEFDKQGRINLSPTLKKHAGLVKECVIVGVSNRIEIWAKERWEEYSDEANESYDEIAEDLDDIEL"]}}, {"location": "[625949:626894](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.199"], "codon_start": ["1"], "gene": ["rsmH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60392"], "locus_tag": ["MAAAAKME_06820"], "product": ["Ribosomal RNA small subunit methyltransferase H"], "transl_table": ["11"], "translation": ["MEFKHTSVLLHETIDNLAPQSGGTYVDATFGGGGHARYLLRKLDKGNLIGFDQDQYAIDTAQSNFAAFLKEDSQPRLQLVHNNFSHLKEELAKLGISGIDGIYYDLGVSSPQLDQAERGFSYRFDARLDMRMDQSQDFDAYQLVNQYDQKQLADVLYRYGDEKFSRQIARKIVERRRGKPIETTFELVEIIKEAIPAAARRRGGHPAKKSFQAIRVEVNHELDVLRASLEEAISLLNPGGRISVITFQSLEDKIVKQTFKKYSEVEIPRGMPVVPEGIKPTLRLVNRKSITASEEELAENNRSHSAKLRVAEKL"]}}, {"location": "[626905:627262](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsL_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00910"], "locus_tag": ["MAAAAKME_06830"], "product": ["Cell division protein FtsL"], "transl_table": ["11"], "translation": ["MAGNTVRKYNYEPEEEARKSPRLVVDPQKVPYSTFEKLLAVLGLLGAVALITLNVSASVSATYAQWQLTNVKESITKQKNATADLQQEIGELSSNTRLNKIAQSQGLKLRENNIRTIR"]}}, {"location": "[627261:629424](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0768"], "gene": ["pbpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q07868"], "locus_tag": ["MAAAAKME_06840"], "product": ["Penicillin-binding protein 2B"], "transl_table": ["11"], "translation": ["MKKTTNLGKIKSRAHGYRFTVGRILELVVALVFLFLAGRMLYLSISKTIDGQDISKRTAAIYRRNTVLTANRGTIYDKNGLIIAQDSHTYTVYAILDKTYVDSNKKPLYVQDKEKTAEKLATVLPLSKAKILKYLNPKNKNTFQVQFGTAGSGLTLTEKKKIQAMHLTGIKFMETPSRLYPNGVFASNVVGYTVSQNNSKTQTTELEGVTGLEAYFNKILKGTNGYETSMVDSSENQLPSGFHSYKAAKDGDNLYLTIDSQLQSALETYMSKVQKNYKPKAMTVVIENLKTGKILAASQRPTFNSQTKAGISKAGSNLLVQSSYEPGSVFKILSLAAAVNSGNYNPKSYYRSGSITVSGSTIYDWQKSGWGTIPFSQAFPRSSNVGMVYLEKKIGAKLWRKYLNMFRITHKTGITLPGEVSGSLSFSSPVDQAVTSFGQGVTVNVMQMMQVYSALANNGQMVKPQLVEKITDSSGKTIKSYRVQKVGKKIFTAQTRKVVMQNMKKVLDKEIGTGHIYYMKGKDFGIKTGTAQIAKSTGGYMTGDRDYVFSVVGITPTANPRYCIYLTMKQPSKLGSGAETILAQIFKPMMSRLVLLNKGDKSASAVVKVPKFTGMTYAKAKKTATSNGLSLVRLGTGSKVLSQKAGAGETVSVGSTVFVLTSRKISLPDLTGWSESQIEAYASLAGIKLQLSGSGKVKSQSLAQGTVVKSGTKLKVELKE"]}}, {"location": "[629431:630391](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.13"], "codon_start": ["1"], "db_xref": ["COG:COG0472"], "gene": ["mraY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2FZ93"], "locus_tag": ["MAAAAKME_06850"], "product": ["Phospho-N-acetylmuramoyl-pentapeptide- transferase"], "transl_table": ["11"], "translation": ["MQASLIAFMISLVLSALLFPWLIIWMRSHDEGQQIRDEGPKWHEKKSGTPTMGGTVFVLSAAVATVAICAYKGQLSKTVWILLVALLGYGIIGFLDDGLKLFFKRNLGLRAWQKMDLQLLVAAGIVLLAASDNFDFALYLPFAGVVKNVVLFTLFEVFWLVGFSNAVNLSDGLDGLATGLSFIAYGTYAWLAFKSQNFGVLVFCMAVMGGLAAFFMFNHKPAKIFMGDAGSLALGGGLAAVSIFLGRPWSLLLVGIVFVCETASVILQVASFKTTGKRIFKMTPIHHHFEMLGWSEWKVDLVFWLVGLVGSGIYLMIWG"]}}, {"location": "[630397:631780](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.9"], "codon_start": ["1"], "gene": ["murD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8E186"], "locus_tag": ["MAAAAKME_06860"], "product": ["UDP-N-acetylmuramoylalanine--D-glutamate ligase"], "transl_table": ["11"], "translation": ["MKEIDKYAGKNILVLGLGRSGFAVSKLLLKLGARLTLNDKADLAADPKAKQLADLGVRVIGGSHPVDLFDQEKFDYLVKNPGIPYENPMVAKASEKGVPIITEPEVALSASESPYVCVTGSNGKTTTVMLTQQIMDHYLQKQGHHAHAVGNIGCPISEVVLNQAGPDDLLVVEMSSFQLMGVTDIEPKVAAIVDIYNNVHLDYHKTFDNYVDAKLNVGRFQKASDYFLANFDQKDILAREEKATKAKILTFSENDPVADFYIGQDYLMHGEEKMMKIADIKLPGIHNLQNSLVAIGISSLMGAGKDDIAAVLSTFTGAEHRLQYVTTLDGVKVYNDSKSTNIEAATVAIQSFKQPEVLLAGGLDRGFVFDSLVDLFKKHVKAIVTYGETRYLLADAARKAGIKTIVVVDNLHEGVKAASKLAEAGDVLLFSPACASWDQFKTFEERGEYFVKYVKELEEK"]}}, {"location": "[631781:632894](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.227"], "codon_start": ["1"], "db_xref": ["COG:COG0707"], "gene": ["murG_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9HW01"], "locus_tag": ["MAAAAKME_06870"], "product": ["UDP-N-acetylglucosamine--N-acetylmuramyl- (pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase"], "transl_table": ["11"], "translation": ["MRVIFSGGGTGGHIYPIMALIERLKEEGICQDDEILFVGTKKGLESKIVPAAGVNFKTIDIQGFDRKHLLNNVKTIQLFLKATKRAKEILADFQPDVVLGTGGYVSGAIVYEASKMKIPTMIHESNSVVGVANKFLGHYVDKICYTFDDAAKEFPEKKKLVKTGNPRSQQVLSLNAKPVDLAGDLGLNPKIPTVLVFGGSRGALAINRVMLKSLMELKKKPYQVIWATGTYYYDAIEKKLADVDYDDSIKVVPYIDNMPGLLPEMTCVVSRSGATSLAEFTALGVPVILIPSPNVTHNHQMKNAMDLEKAGAALVIAEDDLNENTFVSSIDHLLLDQSYDEKMRQASKALGVPDASDQVIKVMKEIAKKN"]}}, {"location": "[632917:633763](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1589"], "gene": ["divIB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16655"], "locus_tag": ["MAAAAKME_06880"], "product": ["Cell division protein DivIB"], "transl_table": ["11"], "translation": ["MARKRITRRDPEEELSKFLRHEPGQGQETRKLSSQLTSLKKERRRGLLTRLGSIMAVCLLAIAFLTYYVSPLADVSTVRVLGADDLDGKSMVEVAQIKASDKVVDALRGQKKISKKLAAKYPEVASVTLSVKGLNTLNMQVHERKVSGYIKDGSSYREILANGELGTKSLAWREFDHDKPLFISYSKQVALKTNLKIFNSFPEYFKKQVKMLSGNTRRKTQMILVMKDGNVIIGNTETIKSKVKYYNSIKQDLTTNSVIDMEVGAFTRPLTSAEKKAYGLS"]}}, {"location": "[633821:635204](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0849"], "gene": ["ftsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P28264"], "locus_tag": ["MAAAAKME_06890"], "product": ["Cell division protein FtsA"], "transl_table": ["11"], "translation": ["MDNSTLLVGLDIGTTSIKVVVADAAHQELQVYGAVAAPTRGMRHGKIVDIDQVAESVKNAIQQVSEKTNSKINRVVTALPVSMLQLESTTGLVNISDSGKEVANEEVQRVMYAAIKAAKKKDRQAVAFFPSRFLIDGEKDVDDPRTMIARSLLVQGLVMTAPSAEIHNINTVLKHADIQNNFFVPAPMAFSSVALDEAERTFGAILLDMGGGSTTATVIRDGQIKYATVDLKGAADITHDISVVLSTTMSDAEALKRDYGYADPDLASENEKFAVKAVGKDENNLVSEKYLSEIINARLQQILRRVGWGLYNHDALSLPAGVIITGGSALLAGIDDLVAADYDVKAKIYQPAQIGLRNPVYSVAYGIVNYANNLSDIGYLANTVIYHDSALVSNERPTSAGNSQKNAKRVTKKAENDTELAYNKAKLDGEVDTETRHEEKTNNNENKNKGLAAFLRKFFD"]}}, {"location": "[635219:636578](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsZ"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00909"], "locus_tag": ["MAAAAKME_06900"], "product": ["Cell division protein FtsZ"], "transl_table": ["11"], "translation": ["MALDFTFDSDDNNNAVIKVIGVGGAGGNAVNRMIEDGVQGVSFIAANTDVQALNSNNAEVKIQLGPKLTRGLGAGSHPETGQKAAEESEETIEDALKGADMIFITAGMGGGTGTGAAPVIAQIARETGALTVGVVTRPFSFEGPKRSKNAAEGIDKLKEYVDTLVIVANNRLLEIVDKKTPMMEALKEADNVLKQGVQGISDLITSTDYVNLDFADVKTVMENQGAALMGIGRASGENRTVEATKMAISSPLLEVSIDGAKQVLLNITGGPDLTLFEAQDASEIVSTAAGEDVNIIFGTAINPNLGDEVVVTVIATGIDDEAEAAASKQFPGRGHQVSAPREKPAAPKILTPEEAAPAAPVQEAPVQAEAAKPTSPVKEEKPAMMDPISVWGLNDDDYSRRKKPEEQKRRAEEKEAVSDADPSSAISQIDINTDYDDDDDDDIPFFKHRRDR"]}}, {"location": "[636592:637009](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1799"], "gene": ["sepF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31728"], "locus_tag": ["MAAAAKME_06910"], "product": ["Cell division protein SepF"], "transl_table": ["11"], "translation": ["MNNKFKDFFGFGDNDSYEERDAYEEHYDEQEEMQNSNRPTNSRDSNVVSIKAGQAGSGPSKIVLYEPRVYSDAKEVAQNLLNQRAIIINFSRMDDASARRVVDFITGTVYALNGEIQRIGDKIFLATPPKFETDGKIT"]}}, {"location": "[637038:637341](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTFLVFLYRLLYFICEAYSLLIIIDAFMSWIPAISESAAGRWIDRIVNLFVNLFRQGPILRLIYATGIDISPMIALFVIYFVQSVALGWLFSILGRIFL"]}}, {"location": "[637340:638138](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKRQASSFYPHFAIEERPTIDQFVGLFNRLLFTGQSFLTDFLDPRQRQIMETIAGGEAIVQAFGGYEEAEKCRLYISLEWENLRPDDYQVQLFEIEYPQKFASLRHSQILGSLANSGVKTDTFGDIITDGQGRWQFFAEKELAGFFASQIDRMGPVKVRLEEKPLKDSLEAEDNSEIISAVASSMRLDAVLAALSNKSRSQVKEALEAGEVRLNWHEEEKGESLLKVGDILSLRRFGRVKLLSVQPSKKGRLRVEGQFWPAKRQ"]}}, {"location": "[638487:641283](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.5"], "codon_start": ["1"], "gene": ["ileS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67509"], "locus_tag": ["MAAAAKME_06940"], "product": ["Isoleucine--tRNA ligase"], "transl_table": ["11"], "translation": ["MRVKDTLNLGKTKFPMRGNLPKREAEWEKNWEDQKFYERRLKLNEGHERFDLHDGPPFANGNIHMGHALNKITKDIIVRSKNMEGYYAPYVPGWDTHGLPIEQQLTKQGVDRKTMDRAAYRELCRKFAMEQVEKQRTDFKRLGVMGDWDHPYITLLPEFEAAEIRVFGKMYENGYIYQGKKPVYWSWSSESTLAEAEVEYHDVESPSIYISFPVKDGKGKLSEENTYFLIWTTTPWTIPSNQGIAVNPKFDYSVVEVGDRRYVVGTDRLSAVAEILGWDSYKTVQHLKGTDMEYMVAKHPYIEGRDSLLMEAVYVTDDDGTGLVHTASGFGEDDYNTAMRYGFDVLSPMDNKGCFTEEIPDPDLVGKFYTDTNEIVKDKLSAAGNLLHYSTFVHSAAHDWRTKKPVVYRATTQWFASISKFRDQILDQIEKTTFYPAWGKTRLYNMIKDRGDWVISRQRAWGVPLPIFYAEDGTAIVTHETIEHVADLFAKEGSNAWFTHPVEELLPEGFTSEHSPNGKFTKETDILDVWFDSGSSWSGVQALGRAVHYPTSMYLEGSDQYRGWFNSSLITSVATNGVAPYKSVLSQGFTLDGQGRKMSKSLGNTIAPNDVIKQMGAEIIRLWVASVDASGDVGVSMDILRQVSEGYRKIRNTFRYMLANTADFDPEKDRVAYKDLCKIDQYLEVKLNDLVAESIVNYDKYDFADVYKLVFKFITNDLSAFYLDFAKDVLYIEGKDSHARRSMQTVIYDAAVKLAKILAPILPHTMGEVWGYLKEKEEDVYLSNFPEIEDYADADDLKESWGEFMKLRDDVLKALEEARDQKLIGKSFEASVTVYPGEAAKAALDKLAGEDFREILIVSNLVMGQGEVPAEAKQFDQASVLVRRAEGEVCPRCRMYRTDLGADSRLPQLCGRCASIVAGDHPEILEEGLED"]}}, {"location": "[641282:641492](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1278"], "gene": ["cspG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S170"], "locus_tag": ["MAAAAKME_06950"], "product": ["Cold shock-like protein CspG"], "transl_table": ["11"], "translation": ["MRTGLVKQFAEKASFGFIEDDQNHKSYFVFYTAIKEEGYKRLEVGQRVRYQLAQGKHGLQCINVYLAKD"]}}, {"location": "[641507:642065](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG0494"], "gene": ["nudF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54570"], "locus_tag": ["MAAAAKME_06960"], "product": ["ADP-ribose pyrophosphatase"], "transl_table": ["11"], "translation": ["MDLKETEISTKEAFHGGFINLHVETVMLPNGKTASRELVDHRPAAAAICINDEKKMLLVTQWREAIKQLTLEIPAGMIDASDVSPLDAMKRELNEEGGLKAEYWEKVAEFYTSPGFSNEKLHLFYCDTLSPVANKLDLDEDEFLTAEWYSLEELKNLLTEGKIVDAKTIYAISVWENMLLTGSEG"]}}, {"location": "[642068:642275](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_06970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEKRSDYRRRQAEQAEKANRQEAADSAAFPAFKQDQDQKPLKAERLNFAILVVCLLIILVWVILLKF"]}}, {"location": "[642294:642993](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.9"], "codon_start": ["1"], "gene": ["mtnN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5B0"], "locus_tag": ["MAAAAKME_06980"], "product": ["5'-methylthioadenosine/S-adenosylhomocysteine nucleosidase"], "transl_table": ["11"], "translation": ["MKIAIVVPMAEEAEFYHQYFSSGKKEMFGSTEFEHFSVAGNDLYLGLTGIGKVQAAMNLTSLLAKEKIDLVIMTGSAGSLQKEVQRMDLVLPSEFAYHDAHNTSAGNYVEGQIPQEPARFKLDCAERDKFKDFLGKKGVAYKEGLVVTGDSFISSQAQKDEILGNFPTALCVEMEGAAFAQVAYHFNVPLIALRAISDNGDEDADNDFAAFVRKVGAQAAELIVEYLRENDF"]}}, {"location": "[642992:644156](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.7"], "codon_start": ["1"], "gene": ["iscS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O54055"], "locus_tag": ["MAAAAKME_06990"], "product": ["Cysteine desulfurase IscS"], "transl_table": ["11"], "translation": ["MKQVYLDNAATTPMSPTVIDVITDEMANDFGNASSTHTLGRKARNSVETARHTIAQAINAKDQEIIFTSGGSESNNTVIFGVAEMQKAVGRHLITTKIEHESVLKSMQHLEELGYEVTYLDVDRDGHISLDQLREAIRPDTILVSVMAVNNEVGSINPLKDIGQIVKDSQAFFHVDAVQGLGNIDLDVEEMGIDFMSTSAHKINGPKFLGFLYERDGIRLPNRIYGGDQELKRRAGTENVPGIAGFGQAVAEVQAESKADLQAKYTDFQKIILSRLDESGVAYEVNSPLTGLVSHHVLNLRLNGLSTYVLLANLDLAGFAVSGGSACTAGSLTPSHVLTAMFGQDSPKVSESIRISFGRYNTVEEVEAFAAALVKVARKLQDRKRED"]}}, {"location": "[644210:644552](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MANTVMINGDKRKFMLNTDVKLYALIDAGFQKTPRGNFVYEHPLYNESPYNATTKLKMTIKSDLTSLTMVVTDPSGLKKVNIFKNKQLAPTVELLDYILKDLEERKILSEVKD"]}}, {"location": "[644556:645684](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG0482"], "gene": ["mnmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97T38"], "locus_tag": ["MAAAAKME_07010"], "product": ["tRNA-specific 2-thiouridylase MnmA"], "transl_table": ["11"], "translation": ["MVDNSKIRVVVGMSGGVDSSVSALLLKQQGYDVVGVFMKNWDDTNDDGVCTATEDYEDVKKVADKIGIPYYSINFEKEYWERVFQYFLKEYKAGRTPNPDIMCNTEVKFKSFLEYALDLDADYLAMGHYAKTMVDENGVTHMMRPKDGNKDQTYFLSQLTQEQIKRVMFPLQDLTKPEVRRIAEEAGLVNAKKKDSTGICFIGERNFKHFLSEFLPAQGGDMVTPDGKVVGHHAGLMYYTIGQRQGLGLGSTKESTAPWFVVGKDLEKNQLIVEQGYDSPRLYADRLQASGMTFFTGNPEEDTEFKATAKFRYRQCDVGVTVKYHAASKTADVYFDEPARAVTPGQALVLYNGEECLGGGNIDAAFKDDKKLQLV"]}}, {"location": "[645783:646443](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "gene": ["gpmA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01039"], "locus_tag": ["MAAAAKME_07020"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MEIYFVRHGKTQWNLEQRFQGGQGDSKLLPESLADIEKLGRYLQGKHFKAVYASPLDRARMTAQGLIGAAGIRLPLHIDERLREMNLGKLEGMKYAEAEKLYPQEIDNFWHHPDKYDNTVVEGESYEHAMARGLDFGREMAEKYPKDSDKVLVVSHGAVLSAIMGALLGYDLANLRQNGVIYNTSVSVLASQEKGPAFKLVKWSDVTPLEHKMSETDGL"]}}, {"location": "[646442:647096](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDQKINQLYEEGKVDQEIHALIEKIDHNPRETANYLQLATYLLDQGSAEQARELLTKARGIAEDPQALVYDLAVCDYALGDFDQALARLAQIPDDDMTMYQKALVYLKLGQSQKALAYALSIKESDDRVKELIGDIWLALGELEAARASYLEIAEGQRSSKLNFLLGLTYFSQDREQAEEFFAKSKKQDPKYYQKAKDQYESLLKLLSQGKAGAGKE"]}}, {"location": "[647109:649500](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG0507"], "gene": ["recD2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RT63"], "locus_tag": ["MAAAAKME_07040"], "product": ["ATP-dependent RecD-like DNA helicase"], "transl_table": ["11"], "translation": ["MTEFSGEVKSVIYENAQNMYKILLVAVSQPLAGYDDDEIKVTGTFGDLELGQEYNFTGDLVTHPKYGLQFQATGCQPALPKETGGVVKYLSSEKFPGIGPKTAEKIVDQLGSGGLKSLQADPTLIAKLDLSQKQKDSLLSGLAQMDSFDDLGMTLASYGIPRKVAGRLYQKYHDQTLKKLQADPYLPLGEVTGYSFKQADHLGIGFGIALDSLERADGSILAVLLQALTMEGETYLELEELLPAAKELTNINFDLLAEAVNDLQDKKKVVVEEGRASLLAPFQVESEIVTDLEDLLAKGKEADYREKDLDQAIKRAERKLGISYDPEQKQAIKNAVTSPVSILTGGPGSGKTTIIDGILLVLKDLADMDEEEAEEAILLAAPTGRAAKRMEEVTGYPAKTIHRLLGLGIDNSEEMELNDLEGEILIVDEMSMVDIYLFEKLLSAISNVHHLVFVGDKDQLPSVGAGKVFADLIEADFIPTCQLQVVHRQKDDSTIIPLAHAVNEGANPAVLLQKTASYSFIPCRPHAVPSAVEQITQAALKSGFAADDIQVLGAMYRGDGGINSLNDTLQRVINPEKGNDKAVEAHGENFRLHDRVLQLQNDPERGIYNGEIGKVVAVDPEMLEDEDDEVKLLVNFDGNEVAYTQADLNNLTRAYAITIHKSQGSEFPLVILCLTMQNYIMLKRNLLYTAITRASQKLVMVGEEQAFAQAMRVKGNERRTNLVWLLKDRFKPEEQSKQESSDSTENTLDKEEKVEDYILTGARISRAEISPMVGMEGLVQGCKNLVEIVRTKGPGA"]}}, {"location": "[649665:651015](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1249"], "gene": ["rclA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77212"], "locus_tag": ["MAAAAKME_07050"], "product": ["putative pyridine nucleotide-disulfide oxidoreductase RclA"], "transl_table": ["11"], "translation": ["MTEKETKKTVKNIIIGFGKGGKTLAKFLGQQGEEVLLVEKSAKMYGGTCINIACLPSKRLILEGAAGSDFSEAVAGKNEMTAQLREKNYQMLAQEETVTVLDGQARFIGEKEIEVTGPAGKQIFKGDRIFINTGASPVLPPVPGLKESKKRLDSTQAMNLTSLPKELLILGAGYIGLEFAGMFANYGSQVTVLDHSPEFLPREDDDIKAAVKADLERAGVKFILGADAEKVSDEADQVVIDYKLGEEKLTAAADKVLVAAGRRANTADLNLPAAGIETDDRGNIRVDDRLRTSADQVWALGDVKGGPQFTYVSLDDFRIVKDQLFGEGKRRVSDRQILPTSVFITPPLSAVGLNEKAAQKAGLDYQLFKLPVAAIPKAKVAKDSRGLFKALVDPASGQILGASLYGLESHELINQIALAMKAKLPYSFLRDQIYTHPTMSEAFNDLFKQ"]}}, {"location": "[651054:652734](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["rnj1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8K5W8"], "locus_tag": ["MAAAAKME_07060"], "product": ["Ribonuclease J 1"], "transl_table": ["11"], "translation": ["MKIKQNEVAVFAIGGLHEIGRNMYCVQYQDEIVIMDCGIKFPEDDLLGINYVISDYSYLVKNREKIKALVVSHGHEDHIGGIPFLLEKIPEIPVYATPFALALIKSKCEEHGILDRTELHEEHEDTVLTFDKLKVTFFRTTHSIPDTLGIAVHTPLGAVVFTGDFKFDLTPVMNQPAPNFQRMAQLGEEGVLALLSDSTNAEVPQFTKSERFVAGSLHNIITGIEGRIIFATFASNLYRVSTAIQAAIDTGRKVAIFGRSMENGIQNGIDLGYLDVPEGLIVDAETINSLPPEKVMLLCTGSQGEPLAALSRIANGTHRQIKLKPHDTVIFSSNPIPGNTLSVNQLINKLMEGGANVVHGRVNNVHTSGHGGQEELKLMVELAKPKYMIPVHGEYRMQVVHAHLAQQAGVPAENTFVLKNGEVVCFSPEGARIAGDIHVKDVFVDTSGADDVGNIVVRDRQILSEEGLVVAVATVDYKHKRVLAGPDILSRGFVYMRESQDLINAAQKHVYHVLKTEMAKSDKPKDSEIRKAIIENLQDFLYSRTERRPMILPMLVEKK"]}}, {"location": "[652723:652957](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA23"], "locus_tag": ["MAAAAKME_07070"], "note": ["UPF0356 protein M6_Spy1605"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYKVLYQKDKIVNPRRETTQTLYMEADNIVQARALVEQNTPYNIELIQELTGNSLKYEQEHADFKLTAFGQTNSED"]}}, {"location": "[653135:653690](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.88"], "codon_start": ["1"], "db_xref": ["COG:COG0242"], "gene": ["def2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q819K2"], "locus_tag": ["MAAAAKME_07080"], "product": ["Peptide deformylase 2"], "transl_table": ["11"], "translation": ["MILMKDIVRDGDPVLRQVAQKLTFPLSDHYRKLADDMMEYLVNSQDPKIAAKHQLRAGVGLAAPQVGEGVSMAALLVPDDKGEIIFKEVYVNPEIISESVRKTCLSEGEGCLSVDKVIDGYVPRPNKVTVHYWTVDGEEKTIRLKGYPAIVSGHEIDHLNGHLFYDRINKENPFALDEDTIVIY"]}}, {"location": "[653935:655783](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1217"], "gene": ["typA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32132"], "locus_tag": ["MAAAAKME_07090"], "product": ["GTP-binding protein TypA/BipA"], "transl_table": ["11"], "translation": ["MADQKRRENIRNIAIIAHVDHGKTTLVNQLLKQSDTLPEHMNLEDRAMDSNAIERERGITILSKNTAVSYKGTTINILDTPGHADFGGEVERIMHMVDGALLLVDAYEGPMPQTRFVLQKALEAGVKPVVVVNKIDRPGARPAEVLDEVLELFIELGANDEQLEFPVVYASALNGTSSCSDDPADQEETMDPVFDTVIKAIPAPLDNEDEPLQFQITMLDWDDYVGRIGVGRVYRGKIKVGDEVTVMKLDGSKQNFRVTKLFGYFGLKRNEIKEAKAGDIIAISGINDIFVGETIASKENPEALPILRIDPPTLQMDFVANDSPFAGREGSQVTPAKLEERLLRQTRTDVSLKVEPTDQLNAWTVSGRGELHLSILVEEMRREGFELQLSRPKVIYREVDGQMCEPYEAVQVDVPDEYVGSVIDGLSQRKGEMQNMVSKGNGQTRLEFSVPSRGLIGYNNEFMSATGGYGIMNHTFSEYKPVVKNWNPGRRNGALVSINQGQSTTYSLQSVEQRGQLFIGAGVQVYEGMIVGVSSRDRDIAVNVTKGKNLTNTRASGKDHAAAIRTPKTLTLEESIEFLNDDEYCEVTPESLRLRKKILNTSERQKFDKKKAKTN"]}}, {"location": "[655881:657084](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.129"], "codon_start": ["1"], "db_xref": ["COG:COG0772"], "gene": ["ftsW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07639"], "locus_tag": ["MAAAAKME_07100"], "product": ["putative peptidoglycan glycosyltransferase FtsW"], "transl_table": ["11"], "translation": ["MKKNKVAATAAKIKETFQYFDYRIFIVYLLLMTIGVIAVYSASSEILLINGFKATVYGQKQLLYAFFGVLICLACYSINLDYLRRGKLLLWLLVIVAGLLVYVLFFGQAVNGAKGWINLGPINIQPLELAKLVLTLYLARMLAKADGRLVRGHIISQLLPTAIIAGLLMILVLIEPDFGGTAIIFCLVLIMYSVSGIPTGYILLSIIGITVLVVGGFSLIVAWNPSFLQDIYVYKRFIAFLHPFKTAANEGAQLVNSYYAIHNGGLFGLGLGNSIQKRGYLPEPYTDFILSIIAEEVGSLGALVVLGLLFYLVILIMERGVKAQSQYSTLICFGVTAIIFFQTLFNVGAVLGLMPITGVTLPFISYGGSSLWVLSAAIGLVLNVTAEEKIRQEVQAEDEY"]}}, {"location": "[657073:657415](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSINQELADQEIASRTSLIVYLRNVNDDQFKLRRFGDIVYFSKKLHYLILYVNQAEAEETASKLRTFSFVKKVEFSQNDALDLDNQKIEQQISDMAKEAEEKLNQTDKEDWIK"]}}, {"location": "[657411:657963](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.171"], "codon_start": ["1"], "db_xref": ["COG:COG0742"], "gene": ["rsmD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P44869"], "locus_tag": ["MAAAAKME_07120"], "product": ["Ribosomal RNA small subunit methyltransferase D"], "transl_table": ["11"], "translation": ["MRIISGKYAKRNLFTLKSQKTRPTSDKVKESLFNSLGQFFAGGEVLDLYAGSGALGIEAVSRGCEHAVLNDVSRPACQIIRKNVDLTKEPDRFEVFTMPAKVALKVFADQERKFDLVFLDPPYAKQQMVKDMTALASLDLLKPGAKIVVETDEQTDLPPVAGFDLLKDHHMGKTIVRIYQRAE"]}}, {"location": "[657963:658458](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.3"], "codon_start": ["1"], "db_xref": ["COG:COG0669"], "gene": ["coaD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831P9"], "locus_tag": ["MAAAAKME_07130"], "product": ["Phosphopantetheine adenylyltransferase"], "transl_table": ["11"], "translation": ["MMTALFPGSFDPITNGHMDTIEQAAKVFDRLLVVVMTNSSKKALFTPDERVDLIKDAVKEHGLANVEVLARPGQLTVDLARELGAGILVRGVRNSSDFLYEQQIAQLNRDLAPDLPTVLFMAEAANSALASSMLKEIAMFGGELDRFLPKKAARALKEKLQSES"]}}, {"location": "[658447:659488](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3480"], "gene": ["ylbL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34470"], "locus_tag": ["MAAAAKME_07140"], "product": ["putative protein YlbL"], "transl_table": ["11"], "translation": ["MKVKKDGQSKKWRRALVGLFAVILLALVLLLPTKYVIEAPGDALPVGNYLKTTGVKAKNNLYFVTVSERRAVLGDYLWSFTQPYEDRLTMDEVTGGSSTEQYEQLQEWYMQTSQQTAIYYAAKKAGLKPKLKYQGVYVMDLQSSSSFKKKLLIGDTIVAANGHKFKSVQGFMCYLQKQKIGQKVSITVLRSGKKQTFTGKIVKVKGTGKPGIGISMVERVKVEVSPKTTISTGDIGGPSAGLMFSLACYQNYTGKDLTKGHKVAGTGTIDANGKVGIIGGVDKKVVAADKEGAEVFFAPTDQTGVKKSQTNYAVAKRTAKKLGTKMKIVPVATFDDALKYLQKHYK"]}}, {"location": "[659623:660370](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQSNERTEGKQKLQDLLAWLMDKKMYIVVVLLAAGGFYYANRQPAADNSALLSSSQSMSENSGQSLQSSSVSSVAASASSAASAANAEVVCDISGAVKHQGVYRLKNGARLEDLIEKAGGLTKDAQLQAINRSQLLKDQDKVYILGKGDKTEAAQTANSAAASSPSASASASSVSSSASGAASGDLINLNTATASDLQKLNGIGEKKAEQIIAYRQEKGSFKSIDELKEVSGIGDKTFAAIKDQLTI"]}}, {"location": "[660323:662582](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0658"], "gene": ["comEC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39695"], "locus_tag": ["MAAAAKME_07160"], "product": ["ComE operon protein 3"], "transl_table": ["11"], "translation": ["MATRPSRQLRTSLQSSLQAGFYFLLALASVSLCGIFQSQKWGKLFALAALIYLLFLLKDKYGGLVKLAMAFLLLLTLVLAKDQVKPGEPAGDIRLYPDQVKITDGWLSGRGQTATQKVQVYGPASREALALLENGQSIDLTEVSGAVSEIEPSTNPGQFDYRRYLASQHVYRQVKLAHYQFKLAPASLLTRLHGLRWKIQAYLKRLPRLLAFFASELLLAENPAGDNQANLNTYRDLGVIHILSISGMHVGIYVFALAVFGSYLHMTKEEVFAVSCALLTFEVFLSAGRPGFIRATLSYVFSAGLAFKSRRIGRADLLGLTYCCQQLFTPRLLLETGGILTYVLALGLVLTAKLPDCKQAFWLNGLLTPFLLYFFYQVNVCTIFYNILVVPYFNYIVMPMTGLALLAPPGLAAFFEKILEAAEGMLANVAKTGFGQLIYGQVKAWQLALLFALTFLYLITRKKKYRHILAAVYLLIFVSIHFPLEGQVSFIDVGQGDSILLTTPIRRRVYLIDTGSKLTFGKKKQSQPQIDRITIPLLKAQGISQIDGVFVSHQDADHVGDLGPLLEEMPVKRLYMGAGLIQNPSFRARIAGRVEKTKLVELKAGMEVKEAINFQVLHPEVAGKGENKDSLSLTCRLAGKSWAFTGDLDQAGEEAIIKKFPDLKIDYFKLGHHGSDTSSSTVFLRAIQPKLVFISAGRNNRYHHPKPETLAKLHQLGIPYLNTQTEGMISWHYGIREYFSSFLEGRRVCYHY"]}}, {"location": "[662612:663602](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1466"], "gene": ["yqeN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54459"], "locus_tag": ["MAAAAKME_07170"], "product": ["putative protein YqeN"], "transl_table": ["11"], "translation": ["MPNLISLFPNSQAGNPNVLLQGPDAFLNDYLAHNYVQQSAFQGLEKVTVDCESDPLDDLIAALAEASLFSQQKLVLVKNPIFLTGKFPAKYKQQGDRLLEIFSHLDQIDDVIVLVASYEKLDRRKKLTKQVERSFNTVSTAVKSYESGRVMQALVKAEGYRFAGGALDLLMERSDQVLDAALGNYNKLKAISDGQEISWDLVDRNIDLSLDQNVFAILEAALRGDYQEAIDRLDGQLREGTYPLQMVAVFFSQVEFLLCVKVMGQRRRSESEIAKELSAHPYRVKTALKSRAKVGQLKKMLGQLIQLDYRYKSGVYQGSRFLKAFILTC"]}}, {"location": "[663694:663946](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0268"], "gene": ["rpsT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RMG0"], "locus_tag": ["MAAAAKME_07180"], "product": ["30S ribosomal protein S20"], "transl_table": ["11"], "translation": ["MPQIKSAIKRVKTQAVANERNAAQLSTMRTAVKKFKAAQAAGADNASELYVAAIRELDKAASKGLIHKNKATRDKSRLAKLAK"]}}, {"location": "[664149:664419](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0184"], "gene": ["rpsO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21473"], "locus_tag": ["MAAAAKME_07190"], "product": ["30S ribosomal protein S15"], "transl_table": ["11"], "translation": ["MAVSKERKNEIIKEYATHEGDTGSVEVQVAVLTEDINNLTQHMREHSHDHHSYVGLLKKIGHRRNLLRYLQENDLERYRALIARLGLRR"]}}, {"location": "[664620:666465](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["rnj2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8K7S6"], "locus_tag": ["MAAAAKME_07200"], "product": ["Ribonuclease J 2"], "transl_table": ["11"], "translation": ["MSDKLKIMVLGGVREQGKNMFAVQVNDEIFVLDAGLKYPDSSLFGIDVVIPDMEFFKQYGDQVVGIFLTHGHADSIGALPYILRDWDIPVFGSKLTIELAKIDVQRENKRRNNQLFNVIDADTEIDFKNASVSFFHTTHSVPDSLGIVIHAPQGQIVYTGDFKFDPSARPAYRTDMARLAEIAGNGVLALLPDSSNAEAVLPNASENEVGTYITNVFRNAKGRIIVAGKASNLNRVQQVFNAAAATGRRVLLTGRDVAKIVHTAMKLGYLEVPDGLLMKAKELKDVPDEKTVILETGRMGEPLQSLQKMANNRHRMITIHEGDLVFIATTPSHAVETTVAITSDMVYRAGGTVIELGRNMHTSGHATGRDLQTLIDLLKPRILVPVIGDYRLLEAVKDLAVETGMDPDDVYITQNGDCLEYDTKRGQFFRGDAVPGEDTMIDGSGVGDVGNIVLRDREVLSDDGIFIAVVTIDRKKKKIVSEPQVTSRGFVYINANHKLMNDSIQVIKDAIQANFEHKKFDWTELKQDMRSSLGKFLYKQTNRRPVVLPVVMEVNQNRHRAMQKKAEDAAEGNKEKPVKKNNRKKQTRPANKYAKGKKPVNKNKKKDSKADDKR"]}}, {"location": "[666451:667279](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSVSQENLRKLAIEAEAGGDYQAACGHLEEALRLGFDEDLALDLSRLLRLNKEEDQAYALIKALPDLFSRDKVLEEYGQVLAANNFLIEALQVKHLTEGEVDFPVLPADKKEQEKILLAFRKKQAVSQSQYEQLLKLDLPTYLAFARSLLLDPLANYALRLAVCEDLVKLGVKEEMQVMILGDLKSFVPAETDLLKQDPVYREFITSLASRYQNRPSELPLILAEGNFAFGQLYPCQGDYVTNPDAFARNLTGFLRQKRGGESQDLLEKIYQKK"]}}, {"location": "[667467:668658](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["tuf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XD49"], "locus_tag": ["MAAAAKME_07220"], "product": ["Elongation factor Tu"], "transl_table": ["11"], "translation": ["MAEKEHYVRTKPHVNIGTIGHVDHGKTTLTAAITTVLAKKGLAQAEDYSQIDAAPEEKERGITINTAHVEYETEKRHYAHMDAPGHADYIKNMITGAAQMDGAILVVAATDGPMPQTREHILLARQVGVNSIVVFLNKCDLVDDPELIDLVEMEVRDLLSEYGYPGDDVPVVRGSALKALEGDEEAQKKIEELMDVVDEYIPTPERETDKPFLMPVEDVFTITGRGTVASGRIDRGTVKVGDSVEIVGLVEKVLTSVVTGLEMFHKTLDLGEAGDNVGVLLRGVDRDQIVRGQVLAAPGSIKTHKTFKGQVYILSKDEGGRHTPFFSDYRPQFYFHTTDITGEIELPEGTEMVMPGDNTEFSVTLIKPAAIEVGTKFTIREGGRTVGAGQVTEIDD"]}}, {"location": "[668841:670161](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.2.1.8"], "codon_start": ["1"], "gene": ["tig"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99080"], "locus_tag": ["MAAAAKME_07230"], "product": ["Trigger factor"], "transl_table": ["11"], "translation": ["MSANWKTTGKTTGELSFEISQDEIKKSLDKAFGRVKKSLRVPGFRKGHVSRVIFNQYYGEEALYEDALNFALPEAYSAAVKETGIKAVGQPQIVPVSMGKNKAWEMKAIVTVEPEVELGQYTEIEVPKQNTRVYQKDIDAELTKRQEQNAEMVLKNDKAENGDTVTIDYVGTVDGVEFDGGSAQNYSLELGSNTFIPGFEDQLVGHGAGEEVDVVVTFPEDYGAKDLAGKEAHFATKIHEVKAKQLPELDDEFAKDVDDSVETLDELKEKIKAELKSEKEEAAKAAIQEAAITTAVKNATVEEIPDVMIQEDVDNQLNQYLGDMQRQGIDPQTYFKLTNTTEDQLRSQLSANAAERVKTNLVLEAIVAKEGFEASKEEIDAEIKDLADNYNMSEKAVRNALSDEMLAHDINVRKAMDLITDSAKQVAKAKLEEGSEEDK"]}}, {"location": "[670312:671566](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1219"], "gene": ["clpX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50866"], "locus_tag": ["MAAAAKME_07240"], "product": ["ATP-dependent Clp protease ATP-binding subunit ClpX"], "transl_table": ["11"], "translation": ["MATKFTDPEEVKCSFCGKSASQVKKMIAGNGVYICNEDIELAKRIIDDELRLDSLKETRELPKPMQIKEELDQYVIGQDRAKRVLSVAVYNHYKRISQIDVDSSTELQKSNIALIGPTGSGKTYLAQTLARILNVPFAIADATTLTEAGYVGEDVENILLKLLQNADYDLERAQRGIIYIDEIDKISKKSENVSITRDVSGEGVQQALLKILEGTIASIPPQGGRKHPQQEMIRMDTTNILFIVGGAFDGIEEIVKNRLGKKTIGFGAEQESGKVDDDNWNRFLTTGDLVKFGLIPEFIGRIPIITTLDRLDSADLVRILTEPKNALIKQYQKLLSLDGVDLEFEPAAVKQIADLAIERKMGARGLRTIIENAMMDIMYRTPSESDISKIIITPETITGMGEPKVVRRELEEVVDDH"]}}, {"location": "[671555:672158](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0218"], "gene": ["engB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P38424"], "locus_tag": ["MAAAAKME_07250"], "product": ["putative GTP-binding protein EngB"], "transl_table": ["11"], "translation": ["MIINQSEFSVSAVKASQYPEGGLDEIALAGRSNVGKSSFINTLLQRKNLARTSSSPGKTQTLNFYRVDSDQADFYLVDVPGYGYAKVSKKQREEFGEMIQDYLETRAYLKGLILMIDGRHEPTVDDIAMYDYAQYLNLPILLVATKMDKIKKNAFNKTEAAFRKHLNLNKDNVTFLPFSSVTKLNVDQVKDWIQARLYEE"]}}, {"location": "[672206:672524](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFAVSIALLSSNQLLVFLAHYFLLFYAYGRSHKIILRRQTGVFRMIITGAEAVISFALGIIVIINPEYFNHQSIIEIGILLIIYGAFKLVAELFNHRPQMPKKHR"]}}, {"location": "[672538:673801](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDNSNLLTYLEWRGDIPLEKSPFNEIDALVLAIFSYLNLEKYIPSGNKEVTVSEIAEKYFASSFTGLDASQYQELFHLMSEADRFKDARLSHFNTVLTDQCQFSALKIILEDGTHYVAFRGTDDTLVGWREDFEISFKETKAQILGARYLKDLLAGDSADYILGGHSKGGNLAEYAALNLPEDYRARIKAVYTFDSPGLASEAGVDYNEDFLQRVLRRYVPDFSIIGRLFEPREVDPVIVYSTNGNIAQHDTYSWQIKGSHFVTRKRPNPESRVYNQLINQWIGSASLEEREALTQDLFDALAASGSSKINQLAKNGFGGFGAILLSVTNSSRRTKFILGNLFSSIWQLIKNQQIGAALFSRDTMAGWLLVLLGIISLTAPNYAFKAFGVLAAVGGSFSASAISSRSQFQPLNRSRNASS"]}}, {"location": "[673934:674075](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGLTFKRQDDLDKLFDKFASVPDPKKAASGKGKEKEDDKAAGKEAK"]}}, {"location": "[674212:674875](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0778"], "gene": ["nfnB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R6D0"], "locus_tag": ["MAAAAKME_07290"], "product": ["Nitroreductase NfnB"], "transl_table": ["11"], "translation": ["MTDAIDTIKSRHSTRYFDQGKEPSRADLEEVIRLAGLAPSWVDSQPWRVYLAMGETAKKIHARHLALAEAGTASSPDWEAWHREDWDPYPRENMARHNQASQEYLNTPELLDLRTNILQKNLYYAPAIAYLTIPKRSNLWSVYDLGAFAQTLALAAKAKGIDSMPAYELVKYPASVREIMGIPEDQTLAMGIGLGYGKDEYVNGYQAPRRDLPDFLTIKD"]}}, {"location": "[674958:675063](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFAMQENQTMCVCCMSLMSYDCFVLPKLDLAQTK"]}}, {"location": "[675147:676797](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_07310"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MQKIKKFTLAAVSVSAAFLLAACGSQQSSSSASKDKQVLKLSATAPLDTIDISKATGYGQTGNVFESFYRLGKNGQPAAGLAKSGTVSKDGKTWTFKLRSNAKWSNGEKITAQDFVYSWRRTINPKTASPYAYIFSGIKNADEIIAGKKSPSSLGIKALNQETVQVKLNRPIAYFKVLMAYPLFGPQNEAFIKKTGKKYATSSKYMLYSGPFKITGWKGTNDTWSFVKNNQYWDKQAVKLSKISYQVVKTTNTGYQLYQQGKLDLTPLSSEQVKQLKKNKDFKTYPYSYVAFLAYNFQAKDATVKKALNNKNIRLALSLSLDRKILTSKVFGDGSSVPTGFVASGLAYDPANKEDFAKEQKVANTVDYNEKLAEKYWKTGLKELGLKKLNLTLLASNESTNADALTQYLQSQWTKVLSGINVKVNSIPNKNAHTKALSGDFDIYVSGWGGDFSDPMTFMQILQKGTSYNYGKWNNAEYNSLIKKALTTDANDVNKRWQDLVKAAQVANADQAVSPIYQQTTAYLQNSKVKGIIHNNAGTQWSYKYAYIK"]}}, {"location": "[676856:677234](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEDNGSRYIQPHDSLEAMELIQKLFNQYRRAPLTPELLAYHQNLIERLEGDIHQAAEAEGQAKRVQELDRMIKLMKDWTAIRLSGRPFNAKMRHFRFLPEGGQVKFKRHPHKIKASSSHRASRH"]}}, {"location": "[677475:678141](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.399"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["hgdH_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D2RJU7"], "locus_tag": ["MAAAAKME_07330"], "product": ["(R)-2-hydroxyglutarate dehydrogenase"], "transl_table": ["11"], "translation": ["MYLLRKWGYYHRKMRRGDFTRPTELMSDEIFNQTVGIVGLGRIGAAAAEMYHALGARVIGYDPVYNASLEPFLDFVDFETLIKESDIVQVHIPLTPENKGMFSANEFAKMKDDAILVNQSRGELVDTAALIVALKYHEIGGAALDVLEGEEKIFGCKFEDVGSLPDEYTELINLPNVVMSPHSAYYTKMAVKNMFLQSMTDIERTLSGKKGLFQGELAKKQ"]}}, {"location": "[678300:679257](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.45"], "codon_start": ["1"], "db_xref": ["COG:COG0207"], "gene": ["thyA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q834R3"], "locus_tag": ["MAAAAKME_07340"], "product": ["Thymidylate synthase"], "transl_table": ["11"], "translation": ["MANQDQAYLDLLKKIMTEGNDKNDRTGTGTRSLFGAQMRFDLSQGFPILTTKRVPFGLIKSELLWFLRGDTNIRFLLEHKNHIWDEWAFKNWVTSPEYQGPDMTDFGLRSQKDPGFKAVYDEEMQKFCQRILDDEAFAQKYGNLGDVYGAQWRHWGKRDGGFIDQIADVIEQIKTNPDSRRLIVTAWNPEDVPSSALPPCHVLFQFYVADGKLSLQLYQRSGDMFLGVPFNIASYSLLLSLIARETGLEVGEFVHTIGDAHIYKNHFAQVEEQLKRKPFDAPTLWLNPGKKKVADFEMADIKLVNYQHGSTIKAPVAV"]}}, {"location": "[679270:679759](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.5.1.3"], "codon_start": ["1"], "db_xref": ["COG:COG0262"], "gene": ["dhfR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q54801"], "locus_tag": ["MAAAAKME_07350"], "product": ["Dihydrofolate reductase"], "transl_table": ["11"], "translation": ["MLSYVWAEDEKGAIGYQGRLPWHLPADLAHFKAKTMGHPMLMGRKTFESLPGLLPGRQHVVLSTRKLDLPAGVLQLKSEEEVSAWLKEQAGEVCVIGGSSLFALLADQVDKLEVTRIKGIFSADTYMPNLDWAAFALVKSEAHRADGKNKYDYVFETYLRKK"]}}, {"location": "[679792:680074](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["ctpE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3Y2"], "locus_tag": ["MAAAAKME_07360"], "product": ["Calcium-transporting ATPase CtpE"], "transl_table": ["11"], "translation": ["MKTNLETGLTEEEVAQKSAAGKVNTTIDDEFKTNRQIIVENTFTYFNLIFLVLTILLLIAGDIRDLTFLPVIILNTIVGIVQEIRAKSVLSKL"]}}, {"location": "[680125:681064](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["ctpE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3Y2"], "locus_tag": ["MAAAAKME_07370"], "product": ["Calcium-transporting ATPase CtpE"], "transl_table": ["11"], "translation": ["MPIDQLVEGDLVLLKAGDQIPADAKVVDGGVRVNESLLTGESDEIAKEVGDELLSGSFVVSGEVMAQLVKVGSESYIAKLTAEAKAMGGGEESKMIRAINRLIKWVGIIIIPMGLALFAQAYFLNHRSFAESISSMEAAIIGMIPEGLYLLTTVALALAAMRLARNQVMLHDMKSVETLARVNVLCVDKTGTITEPKMAVEKVVPAKNYPGNDLEDRLATYVSNMPVDNITAEALSQKFGQDQPMVNAKRIIPFTSVNKYSGAVFAGYTLLLGAPEMILRSQLKACQEEFARYPEGRLPGPGLCQVSGRTGR"]}}, {"location": "[681110:682202](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0474"], "gene": ["ctpE_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3Y2"], "locus_tag": ["MAAAAKME_07380"], "product": ["Calcium-transporting ATPase CtpE"], "transl_table": ["11"], "translation": ["MSNPIRKEAKETFAYFAKQGVEIKVISGDNPVTVSRVAGQAGIAGAEKYIDAQTIKPGEYEQAMAEYNVFGRVKPEQKKEFVQALQKIGKTVAMTGDGVNDILAMKEADCSIAMASGNSAAVQASQVVLLDSNFAKMPQVVNEGRQVVNNIERSAGLFLVKNIFSLLIAVFSLILTINYPIKPAQITLISSFTIGLPSFLLALEKNHSRIRGNFTVNILTKSIPGGITDWLAVSILVLTNKFTNIGDNEVATASTALLVLVGLMVLFWISRPLNKYKLGVLALSVVCIILSIIFIPGFFKLSPLSGRAVFTVVVLFFAGMTLFRIMSRICDGIKEVSNVLKEKGKDAKLRDLLAAYGKDRDEL"]}}, {"location": "[682646:683468](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1464"], "gene": ["metQ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31728"], "locus_tag": ["MAAAAKME_07390"], "product": ["putative D-methionine-binding lipoprotein MetQ"], "transl_table": ["11"], "translation": ["MAVVVLAVIAFFSFGKKGSQQSAKTVTVTVGTVGATKAERAIWKSVAATAKKKYGIIVKTKNFSDYNQPNSALKSGDLDLNAFQHYNFLNNWNKANKSNLVAIGKTYIAPIRLYSLKYKSLKSLPKGATIAIPNDTTNEARALLVLKNAGLITLKGTSATKLYSVADIKNNPKNFKIKEVATEQAARVLKSVDAAVVNNDYANPAGLGDKQTIYVEPINKDSYQWINVIVARKKDKNKKAYKEVVKAYQTEKTKQLYKKYYGIKQVAAWDAKF"]}}, {"location": "[683504:684560](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1135"], "gene": ["metN_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32169"], "locus_tag": ["MAAAAKME_07400"], "product": ["Methionine import ATP-binding protein MetN"], "transl_table": ["11"], "translation": ["MSIVQLDHVSVTFKRKKAADVQAVQDVTLHIEKGDIYGIVGFSGAGKSTLVRTINLLQKPTAGDVVVGGVDFVKDGKQVISGKDLQARRRKIGMIFQQFNLLNETTVIENIAFALKHSDLSDDELEEKCHKLLKLVDLEDKANAYPAQLSGGQQQRVAIARALANDPEILLSDEATSALDPQTTIQILDLLKKLNRELGLTIVLITHEMAAVKKIANKVAVMENGRVVENGNLRDVFLAPKAELTQKFVGGSLAVVDTLKSLNISLAENEALYQLVYSLNNVAKSIIIELYREVGVEASMLYGNVEVLADEPVGTLLVMVKGDADKQKATLKFLSDEGVTVTELDERGNRL"]}}, {"location": "[684556:685270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2011"], "gene": ["metP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32168"], "locus_tag": ["MAAAAKME_07410"], "product": ["Methionine import system permease protein MetP"], "transl_table": ["11"], "translation": ["MINGLVHWIAQNFPNIYNLGWTGDTGWGTSVLQIIYMTFWPSIFGGVLGLFFGVILVLTEPGGILENKFWFNFCDKLISILRAIPFIILLAFISPLTRLIVGTEIGDTAALVPLTLGIFPFYARQVQVALESLDPGKVEAAQSLGASNWDIIFDVYLKETRSEIIRVSTVSIISLIGLTAMAGAVGAGGLGTTAIQYGYRDFANDVTFLATVLVVIMIFIVQVVGDFLAKKLNHQHR"]}}, {"location": "[685392:686790](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P83223"], "locus_tag": ["MAAAAKME_07420"], "product": ["Fumarate reductase flavoprotein subunit"], "transl_table": ["11"], "translation": ["MAKYEFKSSPIDLVNPSYDLVVIGAGGTGLSAALQAHELGASVAVFEKNEVLGGNTSKASSGMNAAESLVQFKHGIIDNKADFYQETLKGGGNLNDEAMLSYFVDHAALAIDWLKQYGVELDDLTITGGMSKKRAHRPASMAPVGGYLITGLLKSIEAARIPVFNKTKVVKVLQDEKGKVTGIDIVGPDGRRKVMAKAVILATGGFGASKEIIKKYRPDLEGYKTTNQAGATGDGLILGEEAGAELVQMDFIQVHPTAQTDGEKTFLIGEAVRGEGAILVNKAGQRFINELDTRKVVSAAITGLNEDGAYLIFDQGVRDHVKAVEFYDHIGLVEHGATLEELAGKIGVDAAGLEATVASWNEAVKGQDDQAFGRTTGMDRDISVAPYFAIHIHPAIHYTMGGLHINPETQVLGKDDKVIEGLYAAGEVSGGLHGNNRIGGNSVAETVVFGRQAGIQASKFVRGEN"]}}, {"location": "[686967:688002](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.49"], "codon_start": ["1"], "gene": ["pckA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00453"], "locus_tag": ["MAAAAKME_07430"], "product": ["Phosphoenolpyruvate carboxykinase (ATP)"], "transl_table": ["11"], "translation": ["MSTRERYQQSELVKANSKFSRVRATIESAFYGNNVHEVKSVAEAYELAKRQPGVIETDLPILHTSDFGLPVGAKQLVYNHGKILGRTASARHFVDDPEEDAAALTNSLYEDIYAGHEQKYLKTTVLVGLDASFSLKAHLMLQEDQAFNLLSYMLNFRFFDEKAAEMYGKSKLYDEGDLYFYFDPNVTDPAYPNGLAIFDAPHNCASVFGLLYFGELKKGTLTLAWALAHRHGYAACHGGEQAFHFEDKKDKVFAFYGLSGSGKSTLNHADHDGKYDITVLHDDAYIISREDGSSVALEPAYFDKTHDYPAGHHETKYYTTVMNCAVTLDEARAECFGYGRPPEQ"]}}, {"location": "[687952:688609](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQGRNVLVTEDLRNSNGRVIKSRYTSANRVDVEENPITALFWIMKDNSLPPVLKVTDPVLATTLGLTLATKRTSAENLPKGFDMNTLGIEPFADLFRAYPVGGDYSDFKDLFTKRGAECYVLNTDAFCGKNIPKELTLEIIEKLVDDTDQWQAFGDFAGVSYMPLADYPVDLEYKQNLRAWIQDRMDWLNMYNGEHPKTPLPEEAKECLEKIVSELK"]}}, {"location": "[689132:690693](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_07450"], "product": ["16S ribosomal RNA"]}}, {"location": "[689396:689921](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[690723:690816](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNNKNLGL"]}}, {"location": "[690805:690881](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_07480"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[690949:691022](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_07490"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[691151:694055](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_07500"], "product": ["23S ribosomal RNA"]}}, {"location": "[694131:694241](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_07510"], "product": ["5S ribosomal RNA"]}}, {"location": "[694454:695678](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_07520"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNRNRLHKAIQLTFPEIEHLMVNPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSSHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKVGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[696001:696400](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDITLHFCQGNLRSKKFYDAKYDGLVDTIFQLPFSGFFMEFDDEKYCNFSLLEKRQGQKIVLGLVNTQSDELEDKEVLLKRLEEANKHVDPKQICIATQCGFASTEAGNLISEEGQWRKLDLVHELAESLNA"]}}, {"location": "[696672:697926](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.39"], "codon_start": ["1"], "db_xref": ["COG:COG1167"], "gene": ["lysN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q72LL6"], "locus_tag": ["MAAAAKME_07540"], "product": ["2-aminoadipate transaminase"], "transl_table": ["11"], "translation": ["MLSKLFAKRIKTQNPSRLQGLFPESNFSDNISFGGGCPDESLFPSQALQAAYQKAVDQEQAHSFQYHDVKGPGTLRDYLASRARQQGIKANADDILLTAGGQQGLDLVAKLFLGAGDEMAVEAPSYVGALSAFDNYEPVYHEIPLEDDGVNLDYFEEVLKEHPAIKLFYTVPDFHNPTGITISLAKRQRLVDLANRYDFVILEDTPYRDLRYHGESLPSIKSFDTEGRVIFLSSFSKILSPAFRLGWLVASPEIKEQLVNLKLSADLEVPYLAAGTVAAYLADNDLDQHIDQLKQVYRVKLDAMAKALKTYLPADAKISQPEGGFFFWVELDDEIDTRQLLLNEAVPKEHLIYVPSASFYPNWDKNNGLRVNFTGSSLSQIDEGAERLGRILSPAQTASGSTSPALASARSMKELSA"]}}, {"location": "[698065:698980](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hdfR_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01233"], "locus_tag": ["MAAAAKME_07550"], "product": ["HTH-type transcriptional regulator HdfR"], "transl_table": ["11"], "translation": ["MLPFPYLVFQTVIDQGTFNKAAAVLNVTPSAISHSVNQLETELGFPVFVRSRNGVRLTPDGEKILPLIQEIINDQSRLEQVAQQIQGLDTGLIRIGAFSSVCINWLPPLIRNFAKNYPQVKISVRQAGFSEITQAVKSGQLDLGLTMLPENEQGISCEKILEDEIYCIAPKDFQVKNGHSISEEDLVNCNFILQQSDYDLDTKAALDHYSIKSTAISFSIDDQSIVAMVEAGLGLGILPALALQKMQGEVRILPFSTPFYRKIALVTSNQQRLAPSSRQMIKNVHELIRRQYPGGRLTMEAESA"]}}, {"location": "[699214:700912](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.19"], "codon_start": ["1"], "db_xref": ["COG:COG0018"], "gene": ["argS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q54869"], "locus_tag": ["MAAAAKME_07560"], "product": ["Arginine--tRNA ligase"], "transl_table": ["11"], "translation": ["MNGKQLVAEALQAVLPDWSLDDIDVKIERPKDEKLGDYAFPTFTLAKTMRKAPNLIAAELAEKIDQGSFEKVEAVGPYINFFLDKSQTGAAILQEILADPENYGARDLGHGRNVLTEYSSPNIAKPMGMGHLRSTMIGEAIARILAKEGFKPIRIDYLGDWGTQFGKMMAAYKMWGNDADIEKDPINTLLSYYVRINREAEEHPEYDEDGREWFSKLEHGDEEAKRLWSWFREVSLERFKKVYDMLDVHFDSFTGEAFSAQMMDKPIQILREKGLLVKSQGAEIVDLEKYNLPPLMVIKSNGTSTYITRDLATAMYRKKTYGFYKSIYVVGQEQEVYFQQLRACLKEMGFDWADDIVHISFGLMSINGQKMSTRKGNVVNLEDVLNESVDLARKQISEKNVGLKNADEVAKQVGIGAVVFHDLKNYRRNPIDFNLEEVVKFEGETGPYVQYARARGESLLRKSGITDFSDADLTKIGAEEWDLVSFMARYADTIQKAMETYDPSAIAKYALELAKRFNKYYAHTRILVDDVDEDVKKARLAVVQAVSHVIKSALDLLDVKAPDEM"]}}, {"location": "[701131:701605](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1438"], "gene": ["argR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9K973"], "locus_tag": ["MAAAAKME_07570"], "product": ["Arginine repressor"], "transl_table": ["11"], "translation": ["MNYKERRQLIYELIQTNKIETQEQLLLLLQAHGANATQATISRDIRALHISKVPDDDGRSYYVKAPSAAVNRERQLKDAIRERVATVTAVQFTVVIQTSMKLTYAPILAGLIDDIDNDDVVGTIAGTDTLLVILKDAEAAASFADWAQAIVKERKIY"]}}, {"location": "[701616:702816](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0452"], "gene": ["coaBC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WNZ1"], "locus_tag": ["MAAAAKME_07580"], "product": ["Coenzyme A biosynthesis bifunctional protein CoaBC"], "transl_table": ["11"], "translation": ["MARISVYMTGGIAAYKAVSVVRGLQKAGHEVRVAMTAKSERFVGPATLAALTKWPVLDDLFSPGRQAEIAHIDLADWSQLALVVPADANILAKLAQGIGDDAVSTTLLALHCPRLIVPSMNSHMWENPAVQRNLRLLKEGGDWIMEPAVGRLAEGYAGKGRMPEAEEILAWVNDQLDLPAKGKRIVVTAGGNLEAIDPVRFIGNRSSGKMGFRLAEAAAKRGAEVDLIYGNVSVPLPRDARIHLHPALSAQAMLEKLEELFPAADALLMAAAVSDWRPKEAADHKLKKQDGVEEMTLQLVKNPDLLKTMAQKKRPDQVVIGFAAETNDLLANASRKLAEKGADLIVANDVSGDAFGGDEDQVTILEQGKELDPWPWMSKQAVADRLLEMTLARLAEKKN"]}}, {"location": "[702845:703919](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDLLFFSEAFAEMNRFHYNKGKSFAKKIGRRIMKKIDAHLHLVRDLASYKGNGRSNALGNGLVVWDSGFKTRLFPAGWGDDAFRADAARKVMEDHDVAKAVLLQGSLYGFQNYYSWQVAKAAPDRFAPAFSIDPFASEAEKIVKRHVEDLGFRALKLEVSQAGGLMDYHLPFDLAEDDRLGKILDYLSSYPGFAVAVDYGDSSQASHQPRSLARLAKRYPDLDFVLYHLSFPKPGKLDLLEKELALFAPLPNISFDLAALQDIAGEQTYPYPFCQEAVGLAKEIVGAKRLLWGIDAPWSATFNDYGQLYSWLEDAGIFSEAELADVYYGNAERIYFKADHVAALKASRDPLFEGDA"]}}, {"location": "[703920:704871](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.81"], "codon_start": ["1"], "gene": ["ghrB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01667"], "locus_tag": ["MAAAAKME_07600"], "product": ["Glyoxylate/hydroxypyruvate reductase B"], "transl_table": ["11"], "translation": ["MENAKVLVAGLAVRQLPELEKVCEVTFAPAGAGKDWYLANLGDFDALITGKLPVDQELLDAGKKLKIVSATGVGYDHIDVDYASSQGIIVSNCPASVMQPTAEMAFTLLLALSRKLALYNQEMRQENFLDTGLLENQGQSPVGKTLGIFGMGRIGKTLASYARTFGMNILYHNRHQLPEDEERALGVSYVPLADLLSQADYVSLNAPATAETYHVIDEAALSMMQPTAFLINTSRGSQVDEAALLRALKGKRIAGAGLDVFEEEPDFNKEFCQLDNVILTPHAGSATRESRRSVLKEASHNIVSFLVDGVPVNRVN"]}}, {"location": "[704945:706715](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG0514"], "gene": ["recQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15043"], "locus_tag": ["MAAAAKME_07610"], "product": ["ATP-dependent DNA helicase RecQ"], "transl_table": ["11"], "translation": ["MLDPQQVLKKYFGYDSFRPGQREIIEKVFQGKNVLAVMPTGGGKSLCYQIPALMIPGATVVISPLISLMKDQVDSMREYGIPAAALNSSTAQEDVNPILRACYEGKIKLLYVTPERMEMDYFRYQLNFLEVNLVAIDEAHCISQWGHDFRPAYRKLKDGINALHTHPNVLALTATATKAVREDIGQQLDISEENFVITSFERKNLHFKLVNAPKNSRAYIVNYLKQHRGEAGIIYSNTRKKVEGLTEFLRREGFNVAAYHAGMSNEERAQVQDDFQYDRIPLIVATNAFGMGIDKSNVRFVLHANSAKNLEAYYQEAGRAGRDGLESEAVMLFHPSDLRQFRWFIDNSEADESYRQVQYQKLQTISDYANTDECLQQFIVRYFGQDCPPCGKCSNCLNSGDFQDVTAEAQAIIGMVYDLDGRYGKRIVAQAVTGSKVKKISEIGADECVHYGLLKGKKQADVSSLVDYLVSKGYLQLVGDCYPLVHVTNRGWDVLDGKARVKRRQEVKREQLAETGGDQVLFEELRKARRILAQKRGVPPFVIFSDLSLRDMAARKPQTPEELLQCSGVGDAKLANYGKAMLAVIKKYG"]}}, {"location": "[706771:707710](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.-.-"], "codon_start": ["1"], "gene": ["rihA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01431"], "locus_tag": ["MAAAAKME_07620"], "product": ["Pyrimidine-specific ribonucleoside hydrolase RihA"], "transl_table": ["11"], "translation": ["MKNFYLNHDSNMDDFTSLLLMLLVPDIKLIGVGVTDADGYVEPGVSASRKLIDRFNQRGDKLEVAKSDSRAVHQFPEAWRVSAFSVDHFPILNEKGTVETPVAAKPAHLDMIDKIHAADGPVTLVFTGPLTDLARALEIDPSIQDKIEELYWMGGSLNAHGNVYAPCADGTQEWNAWWDPEACKTVWDSKIKIQQVGLESTEELPLTDEMRQHFASNRKYPAFEFLGYVYALVNSFEVDSTYYLWDVLTTMSALYPEIATTRDTKSDVYTDGDRAARFFETENGRPMTLVTSANYDKFWERFDDLCEKAKLF"]}}, {"location": "[707983:709786](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0322"], "gene": ["uvrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5KWH6"], "locus_tag": ["MAAAAKME_07630"], "product": ["UvrABC system protein C"], "transl_table": ["11"], "translation": ["MASQLIENKLKLLPEKAGCYLMKDVNGKVIYVGKSKNLKNRVRSYFKSSQEGRRAELVKNIADYDIIVVDSDKEAFLLEVTLIKKYQPYYNVALKSGTGYPYIEITNEKNPQTRLTSIVYKDKGYYFGPYPNVYAASATLKFIQKVFPLRRCSGYTGRPCLYYHMGQCLGSCFKEVPQSEYDEQIKKIKRFLNGDIQEVKKDLTNKMLQASADLEFERAGELRDQLKYIEETVEKQKIISNDHTQRDIFNYYVDRSWISIQVFFLRQAKLLRRESHMFPLTDETDPEDEFMSFIAQFYAQKNRVNPREVLVPKGIDQDELAAAIGIKVRTPQRGQKASLMEMARENAQLKLDDKFRLLELGQRKTKGAQEEIFKALGLPYGSYIESFDHSHIQGADPVSALVVFKDGEPFKTGYRKFKLKGEVEHQNSADEVGNTREVVRRRYSRLLKEHERMPDLILMDGGQIQVEACEDVLRNELNLDIPVAGMVKDDKHRTNHLLYGDPFKGQPFKLIPMDPKSEGFYLMTRIQDEVHRFAITFHRQTHAKNSLVSRLDSIKGIGPKSRTKLLREFGSLKKIKEASIDDLRKAGLTLTQAQAVKISL"]}}, {"location": "[709923:711177](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.5.-"], "codon_start": ["1"], "gene": ["obg"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A584"], "locus_tag": ["MAAAAKME_07640"], "product": ["GTPase Obg"], "transl_table": ["11"], "translation": ["MVAFRHEKFMPNGGPAGGDGGRGGSIIFVADNGLRTLMDFRYRRKFKAEPGENGRIKAQYGKAAKDLYLKVPVGTTVYDFFTGEEIGDLVENGQELVVAKGGRGGRGNIHFATSVNTAPEIAENGEPGEFRTLRLELKVLADVGLVGFPSVGKSTLLSVVTSAKPKIAAYQFTTLKPNLGMVLLPDGRDFSMADLPGLIKGASQGVGLGIQFLRHVERTKVILHMVSMDPNNGRDAYEDYETILHELASYTEDDLSSKREIIVASQMDIPGADEKLAQFKKDLAAHGVDQEVYELSSVTHQGVDRLMSRAADLVSEVEAQEAEAAVKPKEEVKTKTYKYHRPEKMEFTVEKLADHEFEIHGEQLERLVAMTNLDHQDGIMRLARRLKRMGVDDELRAQGAVDGDDVYIGDFSFEFVQ"]}}, {"location": "[711228:712842](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "gene": ["oatA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A3D6"], "locus_tag": ["MAAAAKME_07650"], "product": ["O-acetyltransferase OatA"], "transl_table": ["11"], "translation": ["MKKRYITGYAGLRALAVIGVILYHLDPDHFGGGYLGVPVFLVLTGYLVTDQIMAAYRNQGYFDIKSFYQRRFKRLYPPLIAMLWLTSAYIVLFQRNLLNKLYQIVASNLLGVYNWWQIFNGQSYFERFDNNESPFTHLWTMAIDWQFYLLWPLVMVLLVKFAKKRRNIFWVLVGLSVLSALEMALLFRPGQDTSRIYYGTDTRFFSLGLGSAMAVRWPFEELDNRFTQKDGVIFNWTGLATLFGMLLIIFSPLMNAQTAFPYYGGMFIFSFFVTVFAAVIAAPVGIWNRLMTNPVFNWLGSRSYEIYLYQFPVMIFFESRVSDLADHVTLYRVTEIVLILLISEITYRLFEKRRYTSEGIRYSLTKLFHWPVKLSKNWLKTAAFFLVFLIGSSGIIFSPLAKADNKDGALIKTINDNSKQQAEMNKKALESIKSSRKAAKKSSSKKSKQTSKAKTKSKTTKSKSGGKKVNQEFEKYGISQADLQAAQKLQVTAIGDSVMASSSDILHQLLPHAVIDATVSRQADVAPPAAAVLCPKR"]}}, {"location": "[712858:713173](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "gene": ["oatA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A3D6"], "locus_tag": ["MAAAAKME_07660"], "product": ["O-acetyltransferase OatA"], "transl_table": ["11"], "translation": ["MIGLGTNGPFTDDEVKQIMQIVGPKRQLFWINVVVPTRSWQNQVNQQLQALTKKYKNLTVIDWYGYAHSQSSWFYDDKAHPNNVGQNYYSTYIVKEMVRTSGSN"]}}, {"location": "[713209:714139](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.11"], "codon_start": ["1"], "db_xref": ["COG:COG1234"], "gene": ["rnz"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54548"], "locus_tag": ["MAAAAKME_07670"], "product": ["Ribonuclease Z"], "transl_table": ["11"], "translation": ["MELEFLGTCSGQPSKLRNVSSLALKLLDELNEIWLFDCGEATQHQILRTNIRLRKITKIFISHNHGDHIFGLPGLLSTRSFQGDVGPLTIYGPAGIEQFVKTSLRISKTKISYPIKFVTLEEGGKIVSERGFEVYTEKLDHRIDSWGFRMVEADKAGELLMDKLAEFKVPNGPLLGKLKRGEQVELADGTVLNGKDFLGPAKKGRVVTVIYDTRSTPSIRRLADHADVLVHEATFDASEGKLARDYYHSTCTQAAETASACHVGHLYLTHVSARYVGSLASQMVKQAREIFPATTLAKDLDKFVVPMKG"]}}, {"location": "[714149:714944](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.87"], "codon_start": ["1"], "gene": ["hcaB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01647"], "locus_tag": ["MAAAAKME_07680"], "product": ["3-phenylpropionate-dihydrodiol/cinnamic acid-dihydrodiol dehydrogenase"], "transl_table": ["11"], "translation": ["MSDSLRNKVVVITGASSGIGRSIALESASRGATVVLLARRLDKLEEIAAEARELSASAAFAVKADLSLASDIEAAFAEVKEKVKRIDYLVNAAGFGKFEEFMEADMQDATEMFQVDVLGLMYMTRLFGRLMLDQGSGQIINFGSMAGKVPTTKSAAYSAAKAAVIQFSNVLRLELKPFGVKVMTVNPGPVYTNFFNIADASGQYVKNVQAFMLDPDDVAWEVVHYFGSNKRELNLPVSLAALAKLYNLFPGIGDKLSLEFASRK"]}}, {"location": "[715058:715250](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0333"], "gene": ["rpmF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RHH0"], "locus_tag": ["MAAAAKME_07690"], "product": ["50S ribosomal protein L32"], "transl_table": ["11"], "translation": ["MAVPARHTSKQKKRSRRAHLKLSVPAMHYDATTGEYRLSHRVSPKGYYKGRQVVSENSASDND"]}}, {"location": "[715318:716884](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.6"], "codon_start": ["1"], "db_xref": ["COG:COG0737"], "gene": ["cpdB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P08331"], "locus_tag": ["MAAAAKME_07700"], "product": ["2',3'-cyclic-nucleotide 2'-phosphodiesterase/3'-nucleotidase"], "transl_table": ["11"], "translation": ["MKLVFLHSSDTHGYLLPTDYQSTGDYDAPYGLSRVASAIKVEKAKWGADHVIVTDAGDCLQGSPLAAYTHGSKNLDNLARFTAAYNAVGYDVRCLGNHDFNFGQEYMAYYVDNNKAPFVNCNILDAETQVPTLGRDYVILERSGVKVGVLGITTQYIPHWEAADRIKGLAFKSAYEQIAHFAKIIKPQVDVLAVLYHGGFESDIASGEATEPHNGENEGYRILTEISEVDVMLTGHQHRRLNMISPSGKPCVQPGYRGEAIAEVVLDLEKTEAGYKVKEATSELIDTKDFASDPEVEEIVKPLDLATQKWLDQPIAHLDQPAQIEDANKGRIEGAPFINLLQQMQLYFTHADLSATAVMNDVAKGFGKTVTMRDILLNYPYANQLVSIKLTGKQLRHIVEHTASFLEKDENGKIHFIDRYLKPKPELYHFDVFYPLEYEADLSKPVGQRLTKLKLKGQDIQDDQVYHLAVNNYRANGGGFYPEYSLDKIEFSLDKDYVQMFSEYLTQGEVKVDTKKYYRFY"]}}, {"location": "[716969:718886](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "gene": ["rapA_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01821"], "locus_tag": ["MAAAAKME_07710"], "product": ["RNA polymerase-associated protein RapA"], "transl_table": ["11"], "translation": ["MPGENVRVQGKVVKSHLTSFVSAEELRQVQAAEELAGLPVHQKPYAFVTLKDWELVAGHLEKNLPGAIVSFEAAEGVLPWLAKEEGGRLKQIFGQEVPAGKVVTLTLSQAGRNGNWQLQLDGVIMAAQKPNDAKANKAAEVKGVKEAKKAKKAKEVKEKTESFAGKMVDAQVKLGGQTLPLHDYQLYSMNFIMDHPYCGIFLDIGLGKTLTTLAALAKLREEGMKGHILVIAPKTVAKSTWQDEIDKWNLPFKTQSFLTDEKGRQLTPAGRQELYEAAAAKAAKGDWQLYFASRDLVSKLVDLGPWLFKNVVIDESQSFKSPASQRFKALKSVRGRIQRLIELTGTPAPNSFQDLWSQIYLLDQGERLGRSITAYRQQYFEPTLLVNNHPVKWRLLPGSEEKIYQAIDDIVISMKNTRLKLPELTESLDWVEMPPRAKKSYQQLKKDQVLDLPGQEISAENAAVLAGRLRQLASGAIYEEDGEHYQEIFAEKIESCFYLTSNTATPSLVAYYFKSDASRLLAFYRKNGVKAELFDSSPGMIRRWNKGKIPVMLVQPASAGAGLNLQEGGHTLIWFTLPWSLEQYQQMNGRLYRQGQKKPVIIHHLLTKGTIDRHVLDSLKKKDLSQQALLAAVRRTLA"]}}, {"location": "[718882:719104](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFTCDSLFAMNLQRYLSAGRALAGRAALLDTMGDLIAGLAGSLLFSCWSYWRLKNDRSWLKTFFFKKYSPDD"]}}, {"location": "[719305:719485](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKQSLALKFSFVFVVLSMAISLLTAARQLAQGKSGSLLLVLETGAGLLLVLLPALLSK"]}}, {"location": "[719632:720196](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39157"], "locus_tag": ["MAAAAKME_07740"], "note": ["UPF0340 protein YwlG"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLAEIQKQAKQAVSEIVEASGIKAGQFFVVGCSSSEVLGEAIGTNTSTDVAEALYQGINEVLAEKRIFLAAQCCEHLNRALVVSREAMEKYDLEQVNAIPQPNHAGGAFATVAYQKMPNAVLVEDIAARGEAGIDIGGTLIGMHLHPVVVPLRISLDKIGEARIICARRRPKYVGGQRAIYDQALM"]}}, {"location": "[720297:720534](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLEQEGFVYKESGLGTKVLSNLTLLGQHDSPVNSFAGLSAENGSDRVSSKIIKLEVAFPSADLCEKMTRFMRSSACAF"]}}, {"location": "[720485:720812](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2188"], "gene": ["gmuR_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05509"], "locus_tag": ["MAAAAKME_07760"], "product": ["HTH-type transcriptional regulator GmuR"], "transl_table": ["11"], "translation": ["MRENDPVYEIIRLRLLNDEPLVIEHTYMPVSQVPALSKRILEGSIYSYLHKKLHIKFGGVFRRIKADLPDKYDRQYLGANESTPILEIEQIVWTNSGVNLEYSRSRNL"]}}, {"location": "[720926:721310](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.11"], "codon_start": ["1"], "gene": ["proB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00456"], "locus_tag": ["MAAAAKME_07770"], "product": ["Glutamate 5-kinase"], "transl_table": ["11"], "translation": ["MNVLLSRRVIPIINENDTIAIDELKVGDNDTLSAQVASLLKADLLVLLTDVPGLYSDNPRKNPDARPIPVINEITPQIFAMAGGMATKIKATDMATKSGVVELEKNGFRYAAISAVNAALKRNQELG"]}}, {"location": "[721998:723222](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_07780"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTILALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[723440:723641](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGRYIVCIVWGMIFTFIIGFIGAPLTQSTYNPVTLLIIGAVFGLLFSLTIPKITAKSYNDDSAYNK"]}}, {"location": "[723760:727255](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG0587"], "gene": ["dnaE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P10443"], "locus_tag": ["MAAAAKME_07800"], "product": ["DNA polymerase III subunit alpha"], "transl_table": ["11"], "translation": ["MNIAALQTISANTILASPMKTADLVQGAKERGYSAVALTDINVTFGLADFYQEAVKAGIKPLLGLQGRFKGIELEEAEYDLVFLAQSQKGYKSLMRLSSFLNIASGDLAGPAPSLADLPELSDLTVIVPAGLTSELRQLNKLRNSGEEYVKKLQAFLPKGLPLYLGVYPAESAAAYDAYVKKLAEISALPITVVEDVRYLDPGDQFLCKVLQAIKERRVLDEHELTLMAQGQGSHWLRPAPVLEDACREMGLEEALANSGKIAASCQAKIPFKEPQLPVFPQATGLSSDQYLEKLAFAGMEKLGLRQGIYHARLQKELAVIQQMGFADYFLIVGDIVNYCRQKGALVGPGRGSAAGSLVAYALGITQIDPLKYDLLFERFLNPARADMPDIDLDFTTSGRKLAFAYVQEKYGVKARFGEGSDLVARILALTTMKAKSVLERTGQVFGLTLPAIARLKQAMGAAKTLAEAGQQAEFKALVAASPLTRLLYQTAARLEGLPEDTGTHAPGLVISEEPLSRQIGLMTGKEAPLWTVEQTKKYVEKYGLLKIDFLTLDNLELLEGVLAEIQKSSGPLDLTRLPLDDPDTLRLFARGETQQIFQFNSSGMQEVLRKIQPRTFDDLSVAVALYRPGPIASIPLYVARKNGTSPVQYPDPSLKEVLGPTYGIFVYQEQVMQTARIFAGFSLAEADIFRNAISKKQAGLLAEEKDKFVAGAVRKGHSRQAAEAVYALIEPFANYGFNHSHAVAYALLAYWQAFLSVHFPREFYLEKLRASRGKEKGAIIRQARKAGVEILGPDINLSRAEARLFEGRIYLGLKDIMGITPAFLDQLLALKRPVTSFTAFLRQLDTKELKEKQLVPLIEAGLFDQVSPNRASLLVNCGNMLNTARLSQKSLVLQDFLAAKEENVPMPTAAEKVAMEERAMGFAVTASPLEIAGKALAKRYGAKPFAGLALNETGQVLAQFIKKNDWRVKRGARAGELGSNAVFSDGQTSEKVTIFTSQYRRFAQILKENAVYLLQVDKKEDQKDSRGYQLILQDLRLLDLKQLEQAEEVKPVTVKPKDLALERYFDQYYRTKRLGDFQVKERGQALAKLLAVRYQEDKRGRKMATLILADSSGRYRCWLFAGELAKLTLNLQVNDYYLLKLEALGQRKSLDFKIWDMKQVNLR"]}}, {"location": "[727462:728422](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0205"], "gene": ["pfkA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80019"], "locus_tag": ["MAAAAKME_07810"], "product": ["ATP-dependent 6-phosphofructokinase"], "transl_table": ["11"], "translation": ["MKRIGILTSGGDAPGMNAAVRAVTRVAIANGLEVFGIRYGFAGLVAGDIFPLESEDVAHLINVSGTFLYSARYPEFAEEEGQLAGIEQLKKHGIDAVVVIGGDGSYHGALQLTRHGFNSIGLPGTIDNDIPYTDATIGYDTACMTAMDAIDKIRDTASSHHRVFIVNVMGRNCGDIAMRVGVACGADAIVIPERPYDVEEIANRLKQAQESGKDHGLVVVAEGVMTADQFMAELKKYGDFDVRANVLGHMQRGGTPTVSDRVLASKLGSEAVHLLLEGKGGLAVGIENGKVTSHDILDLFDESHRGDYDLLKLNADLSR"]}}, {"location": "[728461:730231](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.40"], "codon_start": ["1"], "db_xref": ["COG:COG0469"], "gene": ["pyk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P34038"], "locus_tag": ["MAAAAKME_07820"], "product": ["Pyruvate kinase"], "transl_table": ["11"], "translation": ["MKKTKIVSTLGPASDDIETITKLAEAGANVFRFNFSHGNHEEHLARMNMVREVEKKTGKLLGIALDTKGAEIRTTDQEGGKFTINTGDEIRVSMDATKAGNKDMIHVTYPGLFDDTHVGGTVLIDDGAVGLTIKAKDEEKRELVCEAQNTGVIGSKKGVNAPGVEIRLPGITEKDTDDIRFGLKHGINFIFASFVRKAQDVLDIRALCEEANASYVKIFPKIESQEGIDNIDEILQVSDGLMVARGDMGVEIPFINVPFVQKTLIKKCNALGKPVITATQMLDSMQENPRPTRAEVTDVANAVLDGTDATMLSGESANGLYPVQSVQAMHDIDVRTEKELDTRNTLALQRFEEYKGSNVTEAIGESVVRTAQELGVKTIIAATSSGYTARMISKYRPDATIVALTFDEKIQHSLGIVWGVEPVLAKKPSNTDEMFEEAARVAKEHGFVKDGDLVIIVAGVPFGQSGTTNLMKLQIIGNQLAQGLGVGTGSVIGKAVVANSAEEANAKVHEGDILVAKTTDKDYMPAIKKASGMIVEASGLTSHAAVVGVSLGIPVVVGVADATSKIADGSTLTVDARRGAIYQGEVSNL"]}}, {"location": "[730516:730774](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRSKMQELILQVCKEEGITTVLVTHDVREATIMANKIWVIKNQGIAAEMINDFRDQDDDQAQLAKDKIVHDTLQIILGEDDLAA"]}}, {"location": "[730844:730958](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQDLDIKLVKDQSAGRCKRGYRENQLLFCKSHLVNGS"]}}, {"location": "[731045:731597](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKKKHLYEVDLMRCFFMFGVVLNHVTSTFAAALGNKATPAGRFLVSTHLILHFPRFGFMFITVLVLFLGYWGRPEKQNWPVFWKKRYIGSGISYLFWNGLFLAFLLLTSGSFSWNKWLTGWLEAISKGNQFYFYYIFLMFQLYLIFPLVLKLFELFKKHLNLLLALSSIGYLGQVLLSGRQP"]}}, {"location": "[731786:732665](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cvfB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5Q1"], "locus_tag": ["MAAAAKME_07860"], "product": ["Conserved virulence factor B"], "transl_table": ["11"], "translation": ["MLGEIRTGKITDSNAEAYFVQIDGLTFKLKKEEITQEETPEIGGQITGFIYDNQKHEREMTQFLPFAQADQYGWATVTRVQRGLGVFLDIGLPDKDIVMSLDDLPLDPARWPQKDDRLLVRLETDEKDRIWAKAADENVFDQIAVRFPNNLVNKNLLARVYSSKSLGCFVLTNDYYLGFIHESQMQQPLRLGEEVKARVIGVSQYGRLNMSVLPRSFEEIDDDAAMIMMSLRRKGDKTLPFSDKSEAQAIKDYFGISKSAFKRALGNLIKRGLVSQDKEAGTIKLIKDEADE"]}}, {"location": "[732657:733554](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0P0"], "locus_tag": ["MAAAAKME_07870"], "product": ["Tyrosine recombinase XerD"], "transl_table": ["11"], "translation": ["MNKLAEQINDYLRYSQIERGLSPNTIAAYQQDLLEFLAFVKEEQMPAWPLEAVEIDAFLAKERDLGKANSSISRLVSTLSRFYQWLVRQQLIALDPMSQIDAPKREKRMPLALTEAEVGKLLEQPDLTTDLGIRDRALLELLYATGMRVSEAVNLQLADVHANLQLIKVLGKGSKERLIPVSALALDWIKRYLPVRDQQLLKRGKSSDYLFLNSRGGQLTRQAVWQKIKKYCQQAGIAKDVTPHTLRHSFATHLLEHGADLRVVQEILGHTDISTTQIYTNLTQKHILDVYQKTHPRI"]}}, {"location": "[733564:733918](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLVPYKKDYEKVAMGLLSYLPDFKNLQNLKEEMQLYAEDPANHLYLYRDEDQNIVGLAGCETGAGCLVLRYLSLAPGFRDDEHFSEIMRELAQEAGKQKVMTVPEYTYLMKYLNNDE"]}}, {"location": "[733907:734642](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1354"], "gene": ["scpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P35154"], "locus_tag": ["MAAAAKME_07890"], "product": ["Segregation and condensation protein A"], "transl_table": ["11"], "translation": ["MMNEGMTIELPNFEGPLDLLLHLIRLQELDIYDIPIARITQQYLDYLQQMQRLNLQLVGEYFVMAATLLRIKSQYLLPKNDFVETEEEFADPREELVEQLVQYSVFKKISAYFKVRNDEVPVLAAKEPSVAVGAKVQPLPLGQISQQDLTASFILAMRRFKKRNDHAQVTLTGRPIQEMIAWLKEVLEQQGRVSFFALTDQVESLADLVGLFLAILELAKDQYLKVRQKRRFGDLEIERSKHDE"]}}, {"location": "[734631:735234](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["scpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C1CMI5"], "locus_tag": ["MAAAAKME_07900"], "product": ["Segregation and condensation protein B"], "transl_table": ["11"], "translation": ["MTSKIAQLQALLYVAGDGGIKKEQLRDLLQLADPEIESLAKRLQEKLASDLDCGLQLLEINDEYKLTTSGEVSDLVEAYFNKDLTKNISQSALEILAIVAYRQPITRIEIDEIRGVNSSGALQTLVWRGLVKAQGVKDAPGHPKLYVTTDYFLQYFGYKSLADLPVIENFEDSSFDADGQVDLFAENGTADEAFHKMEDL"]}}, {"location": "[735233:735953](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.22"], "codon_start": ["1"], "db_xref": ["COG:COG1187"], "gene": ["rluB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P35159"], "locus_tag": ["MAAAAKME_07910"], "product": ["Ribosomal large subunit pseudouridine synthase B"], "transl_table": ["11"], "translation": ["MAEERLQKVIAQAGIASRREAEKMILAGRVRVDGQVVTKLGTKVSSIEQVVVDNQPIERESHHTYLFYKPRGVISAVKDNKGRKTVADYFTDLPYRLYPVGRLDYDTSGLLLMTNDGELANLLMHPRNEVDKVYVAKIKGILQPDEIKALKKGVQIGRYKTKPAQVKVLKTNPRAQTQIVQLTIHEGHYHQVKEMFKAVNHLVDKLSRERYSFLDLQGLTSGQYRELNHKEVDRLKQVD"]}}, {"location": "[736177:736882](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3601"], "gene": ["fmnP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50726"], "locus_tag": ["MAAAAKME_07920"], "product": ["Riboflavin transporter FmnP"], "transl_table": ["11"], "translation": ["MEAANKRTAKSVSNWLAYAMIGAIAFVVMKFEFPIMPGVSFLKMDFSDVIVVITTFIFGIGGGVAVAAIKCLLSLIFAAFALPSLVGELAAFLASMAFALPFYFLAGSVKEEDRKSMKGYLLPALGLLLDVLSLTVVMALTNQFLLTPVYAYTSVPQAAGMHMSYAQLLTFTEQSYLGKMLHIPSMSSYIMGIIVPFNLIKGAINSVVVYILFESVLKTIKPFVIKHFSVSSKY"]}}, {"location": "[736991:737387](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDQNAQKPLSRLARQQAVREERKNKQAPWWAALLIAVMMALAVVPLITSQNSDYAVPQAKKEQAKPKSAAEKTSKAKPAPKVKTYVVKSGDSWAAIAQKYGISAEELAEQNGLDTSSTLAVGQKLKIKQVK"]}}, {"location": "[737485:738118](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.25"], "codon_start": ["1"], "gene": ["cmk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCU3"], "locus_tag": ["MAAAAKME_07940"], "product": ["Cytidylate kinase"], "transl_table": ["11"], "translation": ["MAKIVANKLSFVYIDTGAMYRACTFIARKHGLDYGDESGILKAIDEDGIVLEPGENGQKVLVAGEDVSLEIRTPEITANVSQVSALPGVRSKMVDLQRKLAGSTNVIMDGRDIGTTVLPEAEVKIFLVASARSRAERRLLDWQEKGIEAKQTLEEIEADIAKRDYLDSHREVSPLKKAADAIEIDSTNLMIDQVVAAILAEIAKKTNTSK"]}}, {"location": "[738205:739411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0539"], "gene": ["rps1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50889"], "locus_tag": ["MAAAAKME_07950"], "product": ["30S ribosomal protein S1"], "transl_table": ["11"], "translation": ["MSENNQFLDALAQMKEVKEGDIVDVNVLSVEDGQINVGVQGAGVEGVITRRDFTNDRSVNLRDEVKLGDTFKVYVVRRAGGDKENGDFFFSVTRVKEREAYDKLQKDFEEGKTIEGKVTSSVRGGLLVDVGTRGFLPASLISNRFVSDLKPYIGKTIKVKITEIDPAKNRLILSHKELIEEEREQAFENVASQLVVGDVVEGRVSRLTDFGSFVDIGGVDGLVHISEISYKHVDKPSDVLKVGQDVKVKVIGIDNDRHRISLSIKQTEPSPFEQATSSLNEGDVIEGEVKSLTNFGAFVEVADGIQGLVHVSEIAYKHVDKPSDVLKVGQDVKVKVLNIDPSKRRISLSIKQVDPENASSSNDRPRARRSSNNNAFARKYMNNDDNGFSLGDMIGDQLKNS"]}}, {"location": "[739487:740795](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1160"], "gene": ["der"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50743"], "locus_tag": ["MAAAAKME_07960"], "product": ["GTPase Der"], "transl_table": ["11"], "translation": ["MPLPIVAIVGQPNVGKSTLFNRIINERVAIVEDRPGVTRDRNYARASWMGHQFSIIDTGGITWEDSTIDEEIRAQAEIAIEEADVIVMLADASQGVTSLDERIAHLLYRADKPVLLAVNKADNPEQRTDIYDFYSLGLGDPIPVSGSHGTGIGDLLDEVVKNFSPDAEKTEEGVISFSVIGRPNVGKSSIVNRLLGEERVIVANEEGTTRDAIDTPFVKDGTKFRVVDTAGIRRRGKVYEKTEKYSVMRAMSAMERSDVAILVLDASTGIREQDKHVAGYAHEAGLGMIIAVNKWDLPKKDSSSGKDFEAVIREEFSYLDYAPIVFVSAKTGKNIDQLPKMVKEVYENKNQRIQSSVLNDLLLEASRLVPAPMVKGKRLRVYYMTQVKTNPPTFVVFCNDPELMHFSYQRFLINQLRENFDFTGTPIKILPRKRK"]}}, {"location": "[740998:741274](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hup_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5J1"], "locus_tag": ["MAAAAKME_07970"], "product": ["DNA-binding protein HU"], "transl_table": ["11"], "translation": ["MANKAELVSEVAAKTKLTKKDVSEAVDAVFEAIQEDLAKGEKVQLIGFGTFEVRDRAARKGRNPQTGAEIEIPASKVPAFKPGKALKDAVK"]}}, {"location": "[741389:742643](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "gene": ["bepA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00997"], "locus_tag": ["MAAAAKME_07980"], "product": ["Beta-barrel assembly-enhancing protease"], "transl_table": ["11"], "translation": ["MTYSEQLLDAIQGHRFSESRALLKQALENDDPEILASLAENLTDLGFTDLAKEVYRSLIADFPNEDLFKVYLAEILLNDGAEDDGLTLLYNVPADSDAYLESLLVQADYYQSEGLIETARAKMEQARQLAPDEDAITFGLAELDYMSDLNDQALTLYQDLRQRQTMFGEVNLNQRVFQTLAKLGRYEEAAAFINDHKEDLLDIDAKYQAGVIMEEAGQFDKAISFLDDVIKQSPDYVNAYTFLAKAYQEEDNPEEALFAAQTGLGYNELDEELYLIGAKAAAKLGKAEDAEDLLQRGLEVNPDNSSLRLLLSDLYLAQGRAEDSLALFTALADSDLEPQAHWNMARSYQEMEKYDQALQEYLLAYQSLQTSPAFLRGMISFAQESAQGDLDRQLLEKYLKLVPDDQEMQDLYEQLRN"]}}, {"location": "[742770:745626](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_07990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQFSFNKKRDRAVYWKYSVFFLFLAACVFGPYLVTGHSLIWNTDAANQHLPLLVKYREYVLSFLRHLSQGPAEWSWTMGLGSDLFSVFSYYTIGDVFAYLALLFPTSHLVFAYQLILLLRLYCVGLAFVYFARHFDFKDSVVLIGIGVYMVNAYLLYAALAQPMFTTTFILFPLIVVQLERLLQGGSAWPLFGVFVWMLVSNYYLAFVLGLGAIIYLFLRWGLAYWKKIPFWPTIKKLFFASLGAVLLSAGLLLPELLAVVNSTRTGSQFANGLTFYPAYYYLLLPKELIDGDNWKLMFWSALGLASIILPALVYLFRNWRKYRLVAASLLLGAVMLLIPAVGAVFNGGMSASNRWTLLLYLPFAFSVMVFVKAISEQAVSQKEMRLIFTTSGIYLVYLVAMFFLENDYKLFLPVIFLLLSLGASYLVNEGRALKRALLLTVAANLAFNALYAALPYNGNFAANMLVRGEYEQIAEDRYGGLNHILPAGFYRVNTVSNNQFVSQKKLFNDLTSGLANVSSYYSIQNQYLGQFSTDLGNLQYDNNIPFHQLDDRTILNNFLGVRYIFNQKYSVNGSKVPGTYDLIAAGKEKKDQNQESVYQAELYKTTEAFPLLWLSYKAISPSRYQKLSASQKERALASGVVVKEGGLKAAKLTGVKTIKASLVDASGKKLSKNKLTYTGSDASYKLKLHLSDKEKAKLGKSELHVEISQISYQPFTLSQQLDLELKKAKQEADLAGQTLNERATRYKYWRYHLLAGSPDPSYKLTVTGKKASETIVQRSQDMTSFYRLVDSAVMNMGTYQTLPNSLTFQPSKLGTYRFKIKVVAIPLNQEYTKEVRQIQKQGVKQLKLAQNQLTGLFTSKKAGVVTSTIPYSNGWTATVDGKAVKVIKTNTAFVGFKMPAGKHRVRLVYRTPGLRSSLLISLLTALAILVYAAFSHKEWRREFRAKKKEK"]}}, {"location": "[745703:746639](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQDVLYQILTTAEDCQTVSDIAKKLFLSQPYVSQVLSKAEKKYNVVLLERRTLPIELTEAGRTLCDGLAKLHSDQMKIEQDLRRFTEEEQSYIKIGFSPIWASSESRKIIPVLQKQFETTRFELIKTFSINSAKRLIDNRMVDIYLGPLLRGENLKNFFLFQPRIFLIIPETSKLYQEGKRDVPFSQQLLMDLSKEKMVSLSDDSGFQKTVDHLLEDQNLSVNKSIKVNDYEVALQMAVGGLGWTATLEYMLPNLDPDLKYNQVELPHNLIQSDNGLTIHMDSNDRDKEVAQVMTRLMKDDLVARKLTKE"]}}, {"location": "[747100:747235](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cynR_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27111"], "locus_tag": ["MAAAAKME_08010"], "product": ["HTH-type transcriptional regulator CynR"], "transl_table": ["11"], "translation": ["MSYAVKKLEEELGVPLFESEGRNIRLTVYGKVFKEYGEAGVQQI"]}}, {"location": "[747250:747904](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["gltC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20668"], "locus_tag": ["MAAAAKME_08020"], "product": ["HTH-type transcriptional regulator GltC"], "transl_table": ["11"], "translation": ["MSEMALSESGKLSIGVAEIVAHKFITDVIKDYRQVNPEYRVDFNLKRAVTGKLLDMLQSGELDLAIVTPRPGEKIAGFDLVTMMHRKLELLLPAGHELAKQKSVSLKQIEQYPYLAFGKEHALAGIIADVFAKNDIHLQISSVTDDVRTLLAIGEGVALLPKSKYNESAGDIAVPVTEDTSYTISLASRNLAQEPKVAQKMASFIVDFCQTRGLTWS"]}}, {"location": "[747889:748087](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALLKQYQYKNSKIKYASYKAVQKTELAYYNAVVSINGLTLAQYQKQVSRAKEKYDQAASELGPR"]}}, {"location": "[748266:750702](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARIIDTQRKLLIQHGLLEDIKEAGEECGSLTAALAAPDWTLLDRELSPLFKQVKFCLLFGEEEVPELAAANELSRLFPLLSSDCPDLKEKLAAGRLAVSFSSQKESNFFLLTGKDQYRFYWGQGATYFLSSGEKTGDDWAMVQQLVKELTAKARDILDKEIYQGYLDLAEDKRSQYLLEVSGLADKMAEAPLKDFKEATRLGQLGQSQAGVSFKKTAKLLRFKIGIDKENLTGKKILADEELSKRLSQIVFGEGNENGEAIVLPDEKAHYPRPLYLQDPVTGTILEKPAIDSYQEEPVAIQKPTRQDVSAIFDIIRFYRDRKQDNESQAAFSFLMYVLESGSIWKIRQAIDERNGIVEDVPIVAGLVGQGETGKSTLLKIASNLTIGNTKEIVQASSEDKLFGMTAAVRKKLLAGKSLTKQDRVSAYSSNPKVINKNIWNFTDHYMDEDQVITPICIDDPEVSLFSSSAAQSFLKKRSNRHGEKLGVEPVAIFSMNSKGKDIELLTEVGRRGYVISQGNQFRKKTDADIHFFEYLDGNTDNHGHWLNNTLFLYLTRQIDRWLEEMDDEDYLKLKHDFLYPVKHAFWELVEEYGLVNTETKCYFHMKNYNIVEDLGRRNWSILLHDEATLREITFTRDNPECMIPARVFPNKDNDINRYFAYLPASAEICKTFDSKGLTVKMANMDLWQGNHLLTERYEKETGIAAERFEMEKARVAAEVQGQIMGENIAPYLKKNAEMMDRMMKVTEQNARLLAEKEAQAEKQQQAEAEKKEQADQIQKLQDELAQAKEAAEAAKSEEKKPQGFFDRFFK"]}}, {"location": "[750724:751126](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDTQSMIAVQEKDNTVSSLILDHDGDLETAGRILEENYQDYEQVLALVNLGDLKRLGKTVEESRAYYRDEHEDQLVLENYADTEVFDRATEEQGDYLACCFLYCKYEGDFQWLVRDFSTGDKRFKPLKEALA"]}}, {"location": "[751401:752706](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.3.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG0165"], "gene": ["argH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9LAE5"], "locus_tag": ["MAAAAKME_08060"], "product": ["Argininosuccinate lyase"], "transl_table": ["11"], "translation": ["MYPEDIAGSIAHAKMLAKQGIIPEEASAKIIAGLEGILADLNSGKLEIDPAAEDIHMFIEETLTDRIGQDGKMLHTARSRNDQVALDIRLYMREENGQIKQLLKDLVAALCDQAEKYKASLMPGYTHLQRAQPVTFGHQLMAYAYMFMRDLERLGQMEERMNYSPIGSCALAGTTYPIDRVYEAELLGFKAPVANSLYGVSDRDHVVEDLSDLALVMMHLSRLSEELILWSSWEFHFVRLADAYTTGSSIMPQKKNPDMAELARGKTGRVYGDLMAILTTLKGLPLAYNKDMQEDKEALFDAIDNVELCLETFIPMIKTLEANEKAMHQAAQKGFINATDLADYLTKKGMPFRDAYHISGQLVALCIDQDTVLEDLPLETYKGYSDLFEEDLYQAIDLHNCLAKRTSLGGPTPESVQKQVDEVRGKLKIRINRC"]}}, {"location": "[752942:753146](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGESKEDKRMRAKWESLSGAEKSEFKKNYAMRRGITIDFIRRWAWNEGDLDNLEYHIAERRKKFREF"]}}, {"location": "[753289:753397](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MWFIWRYIDVIMFIVICGIISLFWLAFKVIDKILK"]}}, {"location": "[753809:753898](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08090"], "note": ["tRNA-Ser(cga)"], "product": ["tRNA-Ser"]}}, {"location": "[754687:757453](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["cas3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F2XG53"], "locus_tag": ["MAAAAKME_08100"], "product": ["CRISPR-associated nuclease/helicase Cas3"], "transl_table": ["11"], "translation": ["MKLSKEALSLWGKKSNQDGDEHWLPLVAHMVDTMNVGHWLYNSWLSEGQRSMLTTRICDAEMSKLVSFLCYIHDLGKATPAFQTKESYNHDHQLDEELIHRLVSHSFKKLNDLSLPSRSKSPHARAGEAILERAGLNETIAAIVGGHHGKPQNGDQEEQIDVFTSNYYQADNDEEIQQPWKDAQRELIDYGLELAGYEDISEVPPVNQPEAVILEGLLIMADWLASSTCLNNDPDKPMFNLIGLDQSFDDLDMKARYQNAISTWAINDAWIPEEVANVDYYYEQHFSFKPRQIQAAMEEHVKEAVDPGLVIIEAEMGIGKTEIALTAAEQLAYVTGRTGVYIGLPTQATTNAMFDRVNSWLTKIAGIEGINPDIKLLHGKAEWNSRYTDLPRAEDIEAEELDAGTVTVNSWFSGKKSILADFAVGTIDNLLLMGLKQKHLFLRHLGFSNKVVIIDEVHAYDMYMQSYLSKALKWLGAYHVPVVILSATLPKEKRNELIKSYIKGKYRRVKKVLQAQEGWESNRAYPLLSLLDGKELRQYSDFGPKAEPREMQVNYINDEPTEVLAKVNDKIKDGGIAGIIVNTVKRAQEFAGLVGQDCQCLVLHSAFLATDRSRLEKELQSLIGKKGKRPDKLIVIGTQVLEQSLDIDFDVMFTDIAPIDLLLQRAGRLHRHKISRPKGLEKRQLYVMKPDSDDYGPANEAVYEKYYLQKTEHFLPQKIQLPNDISRLVQLVYDEDTDDQVENLDEARDKLNVDRNREKSKAESFQINDPVYPAAKNDLYDDTWVEELTIHRWLDRDKGNLDDNQASAAVRDIRESIEVILLKEISGEYYLMNGDKVSEMMDKDLAKELIRLPNAVTPNIEQAINILEENTAQAFPDWQGSPWLKGSLAVVLDEHAKGSFNGYKLRYSTETGLSYEKEVDN"]}}, {"location": "[757455:759180](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MESYNLITEPWIKVLDGKTNSEHMVSIKELLQNASDYRQLAGEMHAQDLAVLRLLEAILTTVYTRVDQNDEEYEWVTLDEQMHVQSYDDEIEGSTLLQVLTKTWNALYKEGSFSEAVFDYLDKNKGLFDFFGDRPFYQVTAEQYDSFVPDNKKIAKGSGTVDLMQINRLISQSGNSVAIFSPKSANRKNKLTLDELVRWVITYQNFTGVTDKTKVKAKKKMSNSRGWLYTLNPVYAQGKNLFETLMLNLLLFNPNKPAYTQQRPVWEEDLGEYVKRRLSQVKPDNFAETYTVWSRLLHIEWQDGTPTIFSAGLPTFDSANAYDIEPMSTWRMNKKDENYYPATRQLSSIGIAMWRNFGQYVDIEGHTESREPLTVAWLNYLKTKNEFLNQQMINLHTSGIISNGGATSLMPAAEFDDNLRIEADVLFDETEDRKNAWPQRIEEMVDLNQEVGRKYYGFLMEVGRIRFGPQGAADFAGRNSQTFYDNLNEPFENWLANLSGGDDRDKQQELWKKQLRQIALRTLDDFLEIIAPRDISGIKADKSQSGTKSTESNIFIAANKYRAGINKALNKNEK"]}}, {"location": "[759189:759807](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVMAFEIEKATERIIRQLYNNGDTDKASLSALRSAATIDGYRAQKVWPVFLSNLDEQWLSKNGKATREEAAIFAAVRMYALHQQASDSCVFGRRNYSDKKDEETNSRELFEALNCLKQGTDSHEALDRRVQALLGTNNYNAVIDQLVHLMQIIKSKKTGIKIDYARLAGDLYKFQFGYRQANEVRLRWGEQYYRAFKKLDTNQQ"]}}, {"location": "[759824:760901](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["casC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46899"], "locus_tag": ["MAAAAKME_08130"], "product": ["CRISPR system Cascade subunit CasC"], "transl_table": ["11"], "translation": ["MTKNLYVDINVLQTVPSSNINRDDTGAPKTAFYGGVTRARVSSQSWKRAVRKAFAEDGANIGTRTKRVPQMLAAKLQDLDASLDEDAAMSKAIDALKEGGIKTNKDNETGALLMVSPGQVAKLASYVLENETLDKKEVKKILMEGNSLDLALFGRMVADNPELNVDASAQVAHAISTHEIIPEYDYFTALDDLQEKEKSGAALIQTTQYDSATLYRYANINMAELSYNLGDEDAIEGALTFVKDFALSMPTGKQNSFANKTLPNYLMVTVRDDTPVNLVSAFESPVVAKAGEGYVENSVKKLENEYKDALQFVDQPLATVTVGKYETTVGEQAGNLQDLLGKLQDVLKKAVENEDFNN"]}}, {"location": "[760881:761583](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTLTIKLTAPLQAYGNEASFERRTSWPAPSKSAVVGMIAAALGMRREDERIKSLNDLAYAVRVDQIGKTMTEFQTVEWKPGTRKLTYRDHYQDAVYVAAVGSEDEELIGKIEYALKHPRFQLYLGRRACPPAGVLRIESFADTDPVKVLENMPWQAEKWYQNKQKRKAEFTAEIIADANLLPDAAFTQTVKDRVESLDPQGRCFGFRLTAKERINLKNPCYEQKSQDIMDYL"]}}, {"location": "[761595:762219](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["cse3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q53WG9"], "locus_tag": ["MAAAAKME_08150"], "product": ["CRISPR-associated endoribonuclease Cse3"], "transl_table": ["11"], "translation": ["MYLSRVEIDTDNRQKIKDLSHLGAYHNWVERSFPAEIAEGERQRHLWRLDTLNGRNYLLLLSPEKPDLHEFERYGKPGTAISKDYEPFLSRLSEGQLLQFKLTANPVRRGGKSSSHPGSLIPCFAVDEQMKWLQGKAEKNGFELVAAEVVGHDRPLLRKKTHVALNRTVFEGRLKISNLDQFKAMLTSGIGREKAFGMGLMTVIPVD"]}}, {"location": "[762221:763172](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1518"], "gene": ["ygbT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46896"], "locus_tag": ["MAAAAKME_08160"], "product": ["CRISPR-associated endonuclease Cas1"], "transl_table": ["11"], "translation": ["MKVEASYKKPDLTELGRTEDRITFLYIEHAKLYRKDGAVEVRDEEGIVYVPAAIISVLLLGPGVDVTHRAMELMGDSGMAVVWVGEQGVRQYAHGRALNRSSRLLEAQAKLVSNVRSRVAVARKMYQLRFPDEDVTKLTMEEMRGKEGTRVRRVYREQAKKTGVKWSKREYKVDDFESETPINKALTAAHQALYGLSYSVIVALGASPGLGFIHTGHDLAFVYDFADLYKADISIPIAFETVAKYGDDDIASRIRHAMRDKFRETKLIKQMVVDLKHLLLGDADQDQDIDVMNLWDDKLGLQKFGVQYHEQQSDEE"]}}, {"location": "[763168:764041](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["dinG_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02206"], "locus_tag": ["MAAAAKME_08170"], "product": ["3'-5' exonuclease DinG"], "transl_table": ["11"], "translation": ["MIVITLTKTPPALRGDLTRWCQEIQTGVYVGDVSARVRDKLWERVQTNIGNGEATLVYNTNNEQGYAFKTTRKSKQVVDLDGMLFVKHVVNQETVEHGFSNAAKFHKAHKAEKMRASAAAAKPKGFVAVDIETTGLNTETDQILSIGAVKHDGTEFYRLIKQDIDVPKQIVELTGITSEMLSKEGVPLQDALEELTDFVGNVPIVGYNFRFDSAFLNRDYRKCGMQELKNEIKDLLPVVKRKEKFLDNYKLQTVLSNYGIENKVPHNAVSDARATKELAMKLIKNRILVI"]}}, {"location": "[764070:766562](+)", "type": "repeat_region", "id": "", "qualifiers": {"note": ["CRISPR with 41 repeat units"], "rpt_family": ["CRISPR"], "rpt_type": ["direct"], "rpt_unit_seq": ["gtattccccacgcaagtgggggtgatcc"]}}, {"location": "[766820:767435](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.5"], "codon_start": ["1"], "db_xref": ["COG:COG2357"], "gene": ["ywaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39583"], "locus_tag": ["MAAAAKME_08180"], "product": ["GTP pyrophosphokinase YwaC"], "transl_table": ["11"], "translation": ["MSIYGKYADYLPQILDSVLQQIQGIGQEYSAEHGQKLYGHLEGRVKGEESMAQKCERKGLPLMPESALIENRDAIGLRIVCNFIDDIYTCIDLLKKQDNFKIINEKDYITDAKPNGYRSYHLIMEVVTPFEDVHGNKPGIYYVEIQLRTIAMDTWASLEHEMKYKHDIKNPERISKELKRVADELASCDVSMQTIRQLIKEGEL"]}}, {"location": "[767431:768100](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["mprA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R3I8"], "locus_tag": ["MAAAAKME_08190"], "product": ["Response regulator MprA"], "transl_table": ["11"], "translation": ["MKILLAEDEAQLNRVLTVAMQKSGYDVDSVFNGQEAVDAVKKHPYDVIIMDIMMPVKNGLDAVKEIRSTGDKTYIMMLTAKSEIDDKVTGLDVGADDYLTKPFSLKELLVRLRSKERRSEDYNSTQELNYDNLKLDLNSQELSSNNSISLSKQETGLMRYFLLNPGKAISTEELFNHVWKNEDESEDVVWVYISFLRSKLASIGANVQISGEKGGEFCLERA"]}}, {"location": "[768102:769362](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_08200"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MIKKIRRRFIWLATLSLFLVILFSFSSLIGISLFESSHEADQVLSIIVKNNGRLDEVQAKKRLGDQYNKEGMFKYRYFTANINTKKQTLTVIDADHIIGYSINSVSSRKKQISRRLSAGQLKGTIHSNGVRFRYLAKKISANKYYICFIDLSPLMQSALLLVRYALIFTFGGILFFVIIMTLLADKAIQPIKDAYYKQRRFITNAGHELKTPLAVISANAEMEELLGNDDEWSESTKEQVVRMTGLINQLITLTRMSEPGELVLSKVNFSEITKESADSFKSVLAKDNKKYVVSIDPDLYINAEQRSLLELVNILIDNAQKYCDPEGEVMVVLAKSRLNQNAVLTVTNSYKNGAGIDTNRFFERFYREDESHHYDQKQKNGFGIGLSMAQDLVAAFGGKINASWSDGVMNFTVTFKRVH"]}}, {"location": "[769517:770618](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0183"], "gene": ["thlA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P45359"], "locus_tag": ["MAAAAKME_08210"], "product": ["Acetyl-CoA acetyltransferase"], "transl_table": ["11"], "translation": ["MQDIYIVAAKRTPFGRYHKQLADFSAIDLGQIALRGALKEAGLDAEALDALFMGNVLSAGLGQNMARQIALNAGMRQDSVAVSINEVCGSSLKAARLAEAQMLIGDLGLVAVGGSESMTNASKEIMFSDGLVDSFSGKSMGITAENVAKRNHISRQDADAFSLSSHQKAVKAQAEGLFADEIIQIEDLKQDENVRPDTSLEALAGLKTSFLEDGTVTAGNASPISDGASMIILATAEKVAEYQLTPLAKLGAYAEVGYDPEFMGYGPYYAIRKLLNETGRQVADYDFFEINEAFAATTLAVARDLEIPLAKVNKQGGAIALGHPLGASGTRLLATAARQLQRGGQRAIASLCIGGGLAIAFEIEKA"]}}, {"location": "[770620:771847](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.88"], "codon_start": ["1"], "gene": ["mvaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P13702"], "locus_tag": ["MAAAAKME_08220"], "product": ["3-hydroxy-3-methylglutaryl-coenzyme A reductase"], "transl_table": ["11"], "translation": ["MKFYQLPPEERRQFLQEDGVALEDIPAADLARLDEMSENVVGEVKFPLSCLTSALVNGKNWRIPMTTEEASVVAAANHGMSVFAKAGGVKATSQRDGIYGQIVLEVTEAFSLAGFKKEFPAYIKEANKEFTSLIRHGGGLKDLTARQEADLVYLLALVDPAEAMGANKTNAILEFLAQKMLAFPGVEAKLFAILSNYPSQLTTAKVAIPVSLLSKKGDLAEGREVAKKMALLAKIGSSDPYRAVTNNKGIMNGVDAVMLATGNDYRAVEAACHAYAAKSGEYRSLSSWKIAGEKLLGQVTLPLALGVVGGSISSRPDIRQSYAILGKIKAAELAELTASVALANNFAALSAISTKGIQAGHMRLQSRNVVQTLPASAEEKAAVYQMMISQGKYGETAAKNFLKELRGQ"]}}, {"location": "[771850:773014](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.3.10"], "codon_start": ["1"], "db_xref": ["COG:COG3425"], "gene": ["mvaS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9FD71"], "locus_tag": ["MAAAAKME_08230"], "product": ["Hydroxymethylglutaryl-CoA synthase"], "transl_table": ["11"], "translation": ["MDIGIDQIGFYTPNKFVDMVDLANARNQDPNKFLIGIGQDRMAVADKTQDAVSMGINATAEYLDQVDLEQLGLLIFATESGIDQSKSASLFVKEALNLPARIRTFEIKEACFALTASLQVARDYVRAHPHHSAMIIGSDIARYGLATAGEVTQGAGAISMLIKENPAIIALEDGHTSHSENINDFWRPNNLATAVVDGHYSRDVYLDFFKSTFKPFLAEKQLQVSDFAGICYHLPYTKMGYKAHKIAIEGQDDETVKRLSDNFQLSAKYSRQVGNIYTASLYMSVLSLLENGDLEAGDRIGFFSYGSGAMAEFFSGKVVAGYQKRLRPALHARMLKERIRLGVGQYEDIFTEGLEALPENVEFTSDANHGTWYLAGQEGYVRQYKQK"]}}, {"location": "[773178:774537](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTESTEQEYQHHLSHHHHMRVQWEEFFQSDDETKIKEATLIEKGSIISRVGMMILSCGTGAWRVRDAMDTLARTLDLTCSTDIGLISIVCTYFDVDNQSYSQSLALPTTGVNMAKLNELEKFVRQFEAAGGDFEIKTVRRRLGEIEHMKGRYPLWGSSLAAALACGGFIFLLGGGLPEIICSFIGAGLGQFARGSLAKRRITVAATTAVGVAAACLSYYLAFMLGHLLFNVDMIHMRGYIGAMLFVIPGFPFITSGLDIAKLDMRSGLERMAYAILIILIATGTGCVMATALQIKPGDLPALHLSKAILTACRLLASFCGVFGFSLMFNSHRRMAAAAGLVGAIANTMRLSLVDFAHFPAPLAAFLAALLAGLLAGYVREKVGYPRIALTVPSIVIMVPGLYMYRGIFFLALTNVGAGATWMTEALMLVMSLPAGLLTARILNDKKWRRVD"]}}, {"location": "[774594:775101](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG2606"], "gene": ["ybaK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AAR3"], "locus_tag": ["MAAAAKME_08250"], "product": ["Cys-tRNA(Pro)/Cys-tRNA(Cys) deacylase YbaK"], "transl_table": ["11"], "translation": ["MSKKKKNKDKLDKTLVEKILDQHKIAYEQHISEISEDHGVAQVGTGKPVLDGHPVYKTLAVNGNKTGPIVGVVPLSGHLDLKKIAKVSGNKKCEMIPLKQLEKTTGYVHGANTPIGIYHSKKFPIFLDESVLKEDGIWVSSGEVGRSVMVNPLDLQELVKATVADLQE"]}}, {"location": "[775181:776126](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "gene": ["prmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04AV7"], "locus_tag": ["MAAAAKME_08260"], "product": ["Ribosomal protein L11 methyltransferase"], "transl_table": ["11"], "translation": ["MKLLEIKIESSYDVEDALAYFATEDLKALGTEARRRSDFEQAGWLHDSTVVDMDDIPNLPDELEFIAYFDEETDPEEMVKCFKDKLAELAGYGLKTAPGEISVDYVADQDWNTVWKKYYHVINLSRHLAIVPEWEDYQPAFKDQEIIRLDPGLAFGTGNHQTTQLAMLGIERAMVKPLTVADVGTGSGILAIAAHKLGAKSVLATDISDESMTAAEENAALNGIHDIALQKTSLLADVDGKFDLIVANILAEILLDLIPQLDSHLNEDGQVIFSGIDYLQLPKIEQALAENSFQIDLKMRAGRWIGLAISRKHD"]}}, {"location": "[776266:778528](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.5"], "codon_start": ["1"], "db_xref": ["COG:COG0317"], "gene": ["relA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O54408"], "locus_tag": ["MAAAAKME_08270"], "product": ["GTP pyrophosphokinase"], "transl_table": ["11"], "translation": ["MSKYTEMTHEQVMAACKKYITADQLAFVESAYQFAARAHEGQTRASGQPYIVHPTQVAGILANLGLDPDTVAAGFLHDTVEDTSVTNDDIKEKFGADVAFIVDGVTKLNKYEYKSHKEFLAENHRKMLIAMAKDLRVILVKLADRLHNMHTLEHLRPDKQRRIAAETLDIYAPLADRLGIGTIKWKLEDMSFHYMNPEAYYKIVSMMDAKRSEREGYIKDAIDYLRGTLDSLGIKYDISGRPKHIYSIYKKMVNKHKNFNEIYDLLAVRVIVPTVKDCYAVLGAVHTKWKPMPGRFKDYIAMPKANGYQSLHTTIIGPGGKPLEIQIRTEEMHKVAEYGVAAHWAYKRGNFQGVDEKEGGALDIGREILELQKDSSDADEFMEAVHSDIFADKVYVFTPKGEVYELPKGSVTLDFAYAIHTQVGDHAIGAKVNDKLVPLDYKLKNGDVVDILTQSNARPSRDWAEMVKTSRAKNKIRRYFRDVDREESLARGKSELVDLLKENGLSAKDFLDKSHIDEVLDHFSFKTDEDMYAAIGFGNMSAVSIYNRLTADLRRQQEEEKQKQFEAQIMSAGQQAAASSVVKKPAPQKDDAKSKTKGKKPDSLVRVQGLEDLDMHFAKCCNPVPGDLIVGYVTKGRGVTVHRVDCRNVVSADPAAQGRMIDVEWNNIDEGKQASFNANFELFGYNRQKLLGDVINRLNALTKNITNVSASVNEENIAHFYITVEVRNAAQLNDIMAKLRDIPDVYDTKRTDN"]}}, {"location": "[778556:778994](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.96"], "codon_start": ["1"], "db_xref": ["COG:COG1490"], "gene": ["dtd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A023W421"], "locus_tag": ["MAAAAKME_08280"], "product": ["D-aminoacyl-tRNA deacylase"], "transl_table": ["11"], "translation": ["MRVVIQRVNHAAVRIDGETVGQIQKGLLLLVGLAEGDGEEQVVKAADKIAKMRIFEDEAGKTNLGIKDVGGQILSVSQFTLLADTKRGNRPSFVHAMRPPKSSQLWEEFNQELVKRGLTVETGEFGADMKVELENDGPFTIVLDL"]}}, {"location": "[779277:780564](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.21"], "codon_start": ["1"], "gene": ["hisS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P30053"], "locus_tag": ["MAAAAKME_08290"], "product": ["Histidine--tRNA ligase"], "transl_table": ["11"], "translation": ["MRVQRPKGTVDILPETSGQWEKVEQTARDLFKRANYHEIRTPSFENYELFSRSSGETSDVVEKEMYDFEDKGGRHIALRPEGTAGVVRAYVENKIYGPDYVKPFNVYYIAAMYRYERPQAGRQREFHQIGVESFGSNGYLADVETILLGHDLLAELGVKNYELHINTLGDSEVRQAYHDALVDYFTPVKDQLSEDSQRRLGKNPLRILDSKAEEDQQFLSEAPKIRDYLDEESKENFNKILASLDKLGVKYVIDDDLVRGLDYYTGVIFEFMVDDPTLWASPSTVLGGGRYNHLVEEFSGPETPAVGFGIGEERLMLVLSKQNPEMFEDQGIDFFITNIGEGTDIKAVEVARQLRSLGFSAQYDVDQKKLKAQFRKADRVGARYVVTLGAKELAEGKLTVKRLSDGQQFSLEFTDLEDKTNLLSKIEK"]}}, {"location": "[780579:782424](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.12"], "codon_start": ["1"], "gene": ["aspS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67015"], "locus_tag": ["MAAAAKME_08300"], "product": ["Aspartate--tRNA ligase"], "transl_table": ["11"], "translation": ["MMQMEKRTDYCGNITSQYLDQDVLLYGWVQRVRNLGQLIFIDLRDREGIVQVVVNHDSGQELMDVASSLGQEYVVEVKGHVNERSSKNPDMKTGDVEVIASEITVLNKAKTPPFEIKDDLVASEQTRLKYRYLDLRRPTLQNALIMRAQIMTATNAYLSGEGFINIETPDLGKSTPEGARDYLVPSRVYPGSFYALPQSPQIFKQLLMGAGFDKYYQIARCFRDEDLRGDRQPEFTQIDLETSFMDEEGVQEVTEGLLAKVMKDVKGIDLQLPLPRITWQESMDKYGCDKPDTRYEMLIHDLGNVFAKSGFKVFASALENGGFVRGIAVKGGAKFYSRKKIEAMQDYIKRYHAKGLAWVKYEDGDFSGPVSRFLSEEEKAGLVQEFSLEGGELLLFIADQWKVCCDSLDYLRRQTAKETGIIPKDTYKYLWVVDWPLFEYDEGDERWIAAHHPFTMPDDKGIELLETDPHKAHARSYDIVLNGYELGGGSIRIHKRDIQEKMFKALGFTKERAYEQFGFLMDALDMGFPPHAGLAIGLDRFAMLLAGKDNIRDVIAFPKNASASEPMMHAPAPVADQQLTDLGIEVAEAAKEGVEKYEASLEAEAAEDVNSHEE"]}}, {"location": "[782497:783133](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKPMLAGILAAELALVGAAVFYHQSQADKSSQCAGSSKTYKVYSKSEKAKADKEDEKSESSSKAKRKSKKSKKKSSSSSSSSEDMSQSSSSEESSSDSSSSSSEELSSSSYSYSSQAKSSKKKSAKSSNSSNSDSTWGSAYSNSTYSNSTYSYSYSSPSSSKSSTKSSTSTGSSSYTPKKSSTTTSKSTADDDVNTTEDLPEETIDNSDN"]}}, {"location": "[783359:783557](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_08320"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMVDELADITFHHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[783809:784112](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNNGQ"]}}, {"location": "[784101:784938](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_08340"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIVLRFPHPDIVLETKEADIIDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[785060:785996](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDLTSDQRADCFVFDDSLYSRTGYKKTEPAAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIAAKRRIMAQSKGTDVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKRGTEYHGLSYDALTAHIAFVFLCYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[786015:786324](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPLFDTENEPKIARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSVLSYIFSNVFPDRSMYMQQKYGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[786548:788324](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRKYLWVLALFLASFSAVFLPEKVFADYDLTKMDVTAIVNSDGSLSMTRKIVYDFDDSANGVYYTQNLASGQKVSGQSVEVKDLASGKTVKPALNNQADSGNVYHFNKDGNSYKFKVYHHVDDGKVQVVYRYKISGAVDSYEDASELNFKIVGDGWDKEISNVTATVRFQDKKLSFLKGWAHVNANGHLTVDKEKGLVKAEVATLPEATFLELHLLFPNSLVSQNKKQHSGEIAAKVVDQEKALAKETAAKKARHNVYELIGLALFALLPLLYLPVFIKSRKSGSPVKAKKEIGHNFEIPAFSPTTAQILVTKKGPDGKALAGEIALRAGRGEITIKAGKKGKNFTYAKTSKYKGDLPLLNRLFKKVGNGQSFSNKDLKQYRGSQGITSSFKSWKEDSQKALIKDGYIDQYLQDREKLLSLYTFGVMFVSVAAIVVCFFLYDKYTFWLFPAILWVLAIFGLACLRLHHFSDLTGKGARATEQALGFEAMLDDIGQFKLRDIGELTLWEQVMPYAIAFGLAKKVLKQLKLEFSEEIAADPYWTYYYAGASYGAFASSFDEAISSSAGSGGNFSASSASSGGFGGGSGGGAF"]}}, {"location": "[788398:789472](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A1W5X0D5"], "locus_tag": ["MAAAAKME_08380"], "product": ["Sodium-lithium/proton antiporter"], "transl_table": ["11"], "translation": ["MEASLWNRFKNNIHLRRATVLVMIILALYYVRAMMNTILLTFIFTYLILHLVRFVQGKFKHVSDKLIVALTYLLIVVLLYFALRYYVPVLVKQVTKMTKSVINYYQTNDVGWLMTQLHKHVSEKTISSQVKSSLTALTAALKGFGSVTMSFVMALVLSFFYTIELKEMQTFSQSFLKSDLFGWFFEDIAYFGRKFTNTFGVVLEAQFLIAICNTTLTIVCLAIMKMPQIFALGLMVFICSLVPVAGVIISLIPLSLVAYTVGGIQDVIYILIMIAVLHTLETYILNPKFMSSKTELPIFYTFVALLFGEHFFGTWGLIVSVPIFTFFLDILGVKNINSKQEKLQEARKRIEHKRLEK"]}}, {"location": "[789755:790715](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.180"], "codon_start": ["1"], "gene": ["fabH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C1CIR8"], "locus_tag": ["MAAAAKME_08390"], "product": ["3-oxoacyl-[acyl-carrier-protein] synthase 3"], "transl_table": ["11"], "translation": ["MTYARIAKSSRYLSEFAVSNDDLSQIMETSDEWIKTRTGISSRRISQQENTSDLAIQVAKQLLAGEDPAGVDLIIVATMSPDAYTPATAALVQAAVGAENAACFDLSAACSGFVYALDVAEKMLRRPGGMALVIGAETLSKLVDWQDRTTAVLFGDGAGGVLVKNDALEPHFLASQLKSYGHLAKFLSAGQTSPQPFPGPVTDLAPFKMNGREVYKFATHKVPEVITACLEEAGVGLAEVDLFLLHQANYRIVKQVARRLDLPEEKFPCNIAEYGNTSAASEAILLAELAEEGKAQAGDLVVLAGFGGGLTAAAQLVRL"]}}, {"location": "[790787:791033](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0236"], "gene": ["acpP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SL79"], "locus_tag": ["MAAAAKME_08400"], "product": ["Acyl carrier protein"], "transl_table": ["11"], "translation": ["MSEEEIFATVKKIAVEELDVEEDQVTMEANIKDDLEADSLDLFEIVNELEDEYDIELDADENTKTVADVVALVQKQLAEKD"]}}, {"location": "[791045:791990](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.39"], "codon_start": ["1"], "db_xref": ["COG:COG0331"], "gene": ["baeC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A7Z4X8"], "locus_tag": ["MAAAAKME_08410"], "product": ["Polyketide biosynthesis malonyl CoA-acyl carrier protein transacylase BaeC"], "transl_table": ["11"], "translation": ["MKFGILFAGQGAQQAGMGLDFLSDPLFKETIDQASQACGLDLPEIWKNDRGQLDETRYVQPALVAFEYGIWQMLVRDTDLPVCGLAGLSLGEYGALLASGCLTWPAGLALVADRGEYMQLDSEKTASGMLALTKPDLPGLEDFLRAKQAAGQAVYLANYNSPKQVVLAGEKQLLPELGQEIADRKLAKRAIPLDVAGAFHTPLYQTASRKMGQRLKGEVFNAGTYPVISNSTCQPFAKEDLAKILEVQLMVPTHFDACVKGLLDLGMTASLEIGPGHALSAFAKQADKGLQTWQIGSLVEYQQFVEEEQNGFTK"]}}, {"location": "[791973:792696](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.100"], "codon_start": ["1"], "gene": ["fabG_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99093"], "locus_tag": ["MAAAAKME_08420"], "product": ["3-oxoacyl-[acyl-carrier-protein] reductase FabG"], "transl_table": ["11"], "translation": ["MDLQNKRVLVTGSTQGIGAATALAFAQKGCQVLLNGRRPELPEEIADQLEEIGADYQYFSADVSDEGAVKQLFKEIGEIDILVNNAGITKDQIMIGMKLADFDQVIKVNLRSSFMLTQKALKKMLKKRSGAIINMASIVGQHGNAGQANYAASKAGVIALTQTAAKEAAGRGVRVNAIAPGMIASQMTAVLPDEVKEQALSQIPLARFGKAEEVAQAAVFLAENDYVTGQTLVVDGGMTI"]}}, {"location": "[792705:793926](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.179"], "codon_start": ["1"], "db_xref": ["COG:COG0304"], "gene": ["fabF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34340"], "locus_tag": ["MAAAAKME_08430"], "product": ["3-oxoacyl-[acyl-carrier-protein] synthase 2"], "transl_table": ["11"], "translation": ["MRVVVTGMGAVSPNGNGCQAFVENTLNGVVGIKPIKKFDASETGISVAGEIDDFDVSQVVGKKNGKRMDLYSQYAIQACQEAYEMAGLTPETVKAEELGVIFSSGIGGLTTIEEQVIKVHDKGPKRMSPFFVPMAIANMAAGNISIRFNAKNISTSIVTACASGTNSIGEAYRQIKEGRAEVMITGASEASVNETAISGFADLNALSTSTDPLKASLPFDQNRHGFVLGEGAGALILESLDHAQKRGAKILAEVVGYGATSDAYHITSPDPKGEGAARAMRLAVEEADIKPDQVGYINAHGTATKANDSGEAKAIKEVFGDQVLVSSTKGMTGHLLGAAGAVEAVITCASLEKGILPANVGCFAQDPECPVKLVKAGDQEQAVDYALSNSFGFGGHNAVLAFRKWA"]}}, {"location": "[793916:794399](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["accB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAE6"], "locus_tag": ["MAAAAKME_08440"], "product": ["Biotin carboxyl carrier protein of acetyl-CoA carboxylase"], "transl_table": ["11"], "translation": ["MGLILEITDVERLLDKFEKSSIREMKLNLDGSELFLSKNEYTQKTEAEAGPVLPAQKAESPLLPKEAAEAAPVVQAEKAVSGHAIKSPLVGTIYLQPAPDKPAFVKAGDQVKAGQTVCIVEAMKMMTEIKSDVSGTVKEVCVENEDLVECEQTLFLIKEA"]}}, {"location": "[794400:794844](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.59"], "codon_start": ["1"], "db_xref": ["COG:COG0764"], "gene": ["fabZ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A6Q6"], "locus_tag": ["MAAAAKME_08450"], "product": ["3-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZ"], "transl_table": ["11"], "translation": ["MTVLDSSQIQEIIPHRYPMLLIDKVIDLVPGESAVAIRNVTNNEAVFQGHFPGNPVLPGVLLVESLAQTGAVALLSADRFKGQTAYFGGIKNAKFRQIVKPGDQVKLEVTLEKVKGHIGLGQGIAWVDGKKACTAELTFMISGEKNV"]}}, {"location": "[794836:796219](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.14"], "codon_start": ["1"], "db_xref": ["COG:COG0439"], "gene": ["accC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37798"], "locus_tag": ["MAAAAKME_08460"], "product": ["Biotin carboxylase"], "transl_table": ["11"], "translation": ["MFDKVLVANRGEAAVRIIRALKEMGIKSVAIYSVADRDSLHVQLADEAVCVGASRPSDSYLNIKNIISAATGTGAQAIHPGYGFLSESAEFASLCAACGLTFIGPKAETIDQMGNKEHARQLMIKHKVPVTPGSRDFIKSPEEAKKVAAEVGYPVLLKAAAGGGGKGIRQVKEPGEMADAFSLAQNEARLDFGNDQMYLEKVLTNVKHIEVQVIRDSFGSCVYFPERDCSLQRRKQKVIEESPCELISESEREKLGQIAVRAAEAADYLNTGTIEFLMDQDHNFYFMEMNTRLQVEHTVTEMVTGVDLVKAQILVAAGEKLPFKQADLGFKGNAIECRINAEDSSRDFMPSTGQVDYLFLPVGNPGMRIDSALYQGMVVSPFYDSMLAKIIALGSSRQEAVARMQRLLNELVIRGVKTNKDFHLAILADSEFKQGTFTNTYLEREFLPRWKEQVDKHEAV"]}}, {"location": "[796205:797054](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.15"], "codon_start": ["1"], "db_xref": ["COG:COG0777"], "gene": ["accD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0CC08"], "locus_tag": ["MAAAAKME_08470"], "product": ["Acetyl-coenzyme A carboxylase carboxyl transferase subunit beta"], "transl_table": ["11"], "translation": ["MRLFKKRNTISERHVKANKRAEDLVPSGLMKRCPNCGLEFFARRLDKYKTCPDCDYGFRLTARERLAWLCEESEEWFKDIQPSDPLHFPNYEAKVAAGKKKTGLNEAVWTGLAKIGGQETALAIMDPFFIMGSLGQMTGEKLTRLIEAATEKRLPVVVFTASGGARMQEGIYSLMQMAKVVNAINRHKAAGLLYLVVLTDPTTGGVTASFASEGDITLAEAHAMVAFAGRRVIEQTIHEQLPKDAQRAETVLKHGFIDRIVLRQEEKETLAWLLKYGGMQDD"]}}, {"location": "[797046:797814](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.15"], "codon_start": ["1"], "db_xref": ["COG:COG0825"], "gene": ["accA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9FBB7"], "locus_tag": ["MAAAAKME_08480"], "product": ["Acetyl-coenzyme A carboxylase carboxyl transferase subunit alpha"], "transl_table": ["11"], "translation": ["MTDAMETVRAARASDKLSAHYLREHLFSDFVELHGDRQGADDPAIVGGIGLFAGQPVTVITTSRGYKLEERLAKHFGQPEPAGYRKAARLVKDAARFKRPVLLFIDTAGAFPGKEAEYAGQGQAIAQCLTDIGQAETPIISVIFGEGGSGGALALACGDELWMMENSMYSVLSPEGFASILWKDASRAAEAAELLGLTPESLLKGQVIEGVIKQEGSKSAQCREIARVLEEELAKLKKLPVSSLLNRRYERFRKF"]}}, {"location": "[797859:798588](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG0623"], "gene": ["fabI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54616"], "locus_tag": ["MAAAAKME_08490"], "product": ["Enoyl-[acyl-carrier-protein] reductase [NADH] FabI"], "transl_table": ["11"], "translation": ["MGVANKRSIAWGCAEQIKAQGGEVVYSYQNDRLEKSLLKLGLAEEEMVECDVASDESIDAAFDQVKEKFGQIDGLVHAVAFAPKNELVGSILNSSREGYLTAQNISSYSLIAVAKAAQEKELLAPKASIVTLTFIGSERAITNYNTIGIAKAALESSVRYLARDLGKTGSRVNAISAGAMKTLAVTGIAGNKDLLEQSRSLTVDGVSVSLEEVGNCCAFLLSDLSTGLTGDIIYVDKGVHLS"]}}, {"location": "[798597:799263](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.15"], "codon_start": ["1"], "db_xref": ["COG:COG0340"], "gene": ["birA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P06709"], "locus_tag": ["MAAAAKME_08500"], "product": ["Bifunctional ligase/repressor BirA"], "transl_table": ["11"], "translation": ["MEIYCYPVLPSTQDLAKKLLEKKKPPFAVSALEQTQGYGKQGRTFYSPKNGLYLSVCLEKQENPLLTLAVGTAVADFLRARYGLEIGLKWANDLFYQGKKVAGILTEQVAGGIVVGLGLNLGAELPTSLPQATRLLEAGDFDPLLADDLACVICRAASWQDCLPRYRELSILTGRRVTLKIAGRTIFGTCAGFDDQGRLLLEKGGKISAWSSGEVIKTSFL"]}}, {"location": "[799317:799401](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08510"], "note": ["tRNA-Leu(cag)"], "product": ["tRNA-Leu"]}}, {"location": "[799510:800131](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bamE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00925"], "locus_tag": ["MAAAAKME_08520"], "product": ["Outer membrane protein assembly factor BamE"], "transl_table": ["11"], "translation": ["MKKKVLLIAFAALALTACSSKKATTDSESDKKAASSISSSNVVKQNSNKINLTNYKKIKVVEKTGSTPSQVTDLLGREADAKSKAKTSKLKATIYTWEGVQNGSAGANLAVEFANGVAIAKQISGLVVNRSKQITPKDYKSLKKGMTQEEVEAIVGKPNGYSESDYSNSEVVLWLYTSGLKSDDQANFYVTFQKNKLVAKKAQNFN"]}}, {"location": "[800396:800639](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKEARKRKKLDKIGWGIVTVVIVLALLSAGWLTYRAVQVARLSRQVDVKVDGTKELKSGRASAKLLAKYAAAEPADQGG"]}}, {"location": "[800850:801015](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08540"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPAIAPKKALIKAKSQASTFSSLAKNRQAVSRLRFSRGAIKGINLGYYEADQVR"]}}, {"location": "[801033:801201](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGQMVQDLLKNKLDAVAYHPRVKKIETASCYKLKTVSQFKSSKDCYSFNKQNILT"]}}, {"location": "[801443:802667](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_08560"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNRNRLHKAIQLTFPEIEHLMVNPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSSHIRGLKMAINNTLSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKVGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[802921:803053](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHSNTSRYGDNANVSSANAASLEKMFKLNVNREGFSYNNRKSL"]}}, {"location": "[803054:803762](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRLQPQAWWYTNHLLMRVKDDLPAKEQKQIKFLKGSQRRCKKWQLVKGAAEFKQNLIALTSESESNGLLTLKKAKVGDCKLNCEFLGNKIGQQTVYLKTQGTASGKHNFSSYLSLSLENNILYLWQKQGGAIKTLYKVDMFKLEDDKPVSVPEDKRAVLSSELNVRGRFAQNSTTAALYKLKAFKKKRQKAKSVKEEAKEYVPEIQLQDPGDVKAELTVKGSSLTLTVNGQKLC"]}}, {"location": "[803846:804233](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1012"], "gene": ["adhE_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9Q7"], "locus_tag": ["MAAAAKME_08590"], "product": ["Aldehyde-alcohol dehydrogenase"], "transl_table": ["11"], "translation": ["MVKFHFVDKVYEQLALKDKQVDTAIYSEVLPDPPLSQAIKIAKQMKKFAPDTIIAIGGGSALDVSKIARYIYEYSLDQEDGWLDIYDNVSELIKELQQKFVDIRKRIVKFKHETRTSLVMTRSLTAPS"]}}, {"location": "[804184:805105](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1012"], "gene": ["adhE_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9Q7"], "locus_tag": ["MAAAAKME_08600"], "product": ["Aldehyde-alcohol dehydrogenase"], "transl_table": ["11"], "translation": ["MVHAALQSGNPSMGVGAGNGAVYIDHTAFLDRAVEDILLSKRFDNSMVCATENSAVVEAPIYDKWLQMIQDKGAYLVPKKDYQKLADFVFNDKHGVNGPVAGMSARWICEHAGVTLSEGKDVLLFELDPKNIGEKLSSEKLSPLLSVYKAKDREDGIRIVKALLDYQGAGHNAAIQIGSQNDPFIDEYGKAVQASRVLVNQPDALGGIGDIYSDGLRPSLILGTGSWGKNSLSHNLSTSDLLNIKTIAKRRNRPQWIRLPEKIFTKKTSLPIFQMKMSRKSAGPLSSLTWAWSSSTSLTRSMNSWL"]}}, {"location": "[805542:805770](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVDVKKTQTTVTAAKELSADEKVEEAKRYTDELVNKALVAEEAYATYSQEQVDKRLSLPWLWPAVRPPSRLLMRQ"]}}, {"location": "[806389:807950](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_08620"], "product": ["16S ribosomal RNA"]}}, {"location": "[806653:807178](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[807980:808076](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[808169:811073](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_08650"], "product": ["23S ribosomal RNA"]}}, {"location": "[811149:811259](+)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_08660"], "product": ["5S ribosomal RNA"]}}, {"location": "[811350:812226](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.185"], "codon_start": ["1"], "gene": ["rlmB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01887"], "locus_tag": ["MAAAAKME_08670"], "product": ["23S rRNA (guanosine-2'-O-)-methyltransferase RlmB"], "transl_table": ["11"], "translation": ["MDRIDRENNLIRINAFDDPRLKLFTDYNEAQLFHYYEPEAGIFIAESPKVIERAIRAGYEPIAMLVEEKALERDLADFDRELAANDDHLLDFPIFVAQSDLLRQLPGYNLLRGAICAFRRKKRPSLREFAAALPKHARVGVLESVVNPTNVGAIFRSAAALGMDGVLITTDSSDPLYRRSGRVSMGTVFQVPWTYLDRKLWREKGVASLQELGFKTAAMALRDNTVDIDDPALKEADRLAVILGSEGPGLLPQTIAESDYTIKIPMAEGVDSLNVAAASALAFWEVKKGLD"]}}, {"location": "[812262:813432](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG0367"], "gene": ["asnB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22106"], "locus_tag": ["MAAAAKME_08680"], "product": ["Asparagine synthetase B [glutamine-hydrolyzing]"], "transl_table": ["11"], "translation": ["MFYGFTKKDAKIAFASTGKNLLDLCGEIHPFLPGHYYDGEKIVAYHEPDLTPKMSTDDFETATHKIHDLLVESVDQHLASDAPVGYLLSGCLDSSLVCSIAARLQPDTKIRTFAIGMDQNPIDLKYAREVADYLGTDHTEFIMTREDVLGVLREVIYTLETWDITTIRASIGMYILCKKIHETTDLKVILTGECSDELFGYKYTDFAPSPEEFQKEAAKRLRELYMYDVLRADRCISANSLEGRVPFADREFVDYVMSVDPDLKMNHYHKGKYLLRKAFEEGDWLPRDILMREKAAFSDAVGHSMVDDLKEYAESKYSDEDLAKAGEKYPYRMPFTKESLLYRDIFEEFYPGKADWIKDYWMPNRSWKSLESVTDPSARVLSNYGASGE"]}}, {"location": "[813484:813856](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG0367"], "gene": ["asnB_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54420"], "locus_tag": ["MAAAAKME_08690"], "product": ["Asparagine synthetase [glutamine-hydrolyzing] 1"], "transl_table": ["11"], "translation": ["MCGFLAIDSKEFDLKTFDEALAKCQDRGPDMTRVFDERGVTFGFNRLAIMDLTDSGMQPFETLDCTLVCNGEIYNYPELKKNLETDYEFTSSSDCEVLIPLYRKYGIETMVKMLDREIFLCPL"]}}, {"location": "[814369:814444](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08700"], "note": ["tRNA-Asn(gtt)"], "product": ["tRNA-Asn"]}}, {"location": "[814445:814521](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08710"], "note": ["tRNA-Pro(tgg)"], "product": ["tRNA-Pro"]}}, {"location": "[814544:814616](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08720"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[814645:814721](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08730"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[814721:814797](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08740"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[814797:814871](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08750"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[814912:815000](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08760"], "note": ["tRNA-Ser(tga)"], "product": ["tRNA-Ser"]}}, {"location": "[815008:815084](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08770"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[815085:815161](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08780"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[815165:815240](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08790"], "note": ["tRNA-Phe(gaa)"], "product": ["tRNA-Phe"]}}, {"location": "[815246:815330](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08800"], "note": ["tRNA-Tyr(gta)"], "product": ["tRNA-Tyr"]}}, {"location": "[815332:815405](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08810"], "note": ["tRNA-Trp(cca)"], "product": ["tRNA-Trp"]}}, {"location": "[815417:815491](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08820"], "note": ["tRNA-His(gtg)"], "product": ["tRNA-His"]}}, {"location": "[815519:815590](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08830"], "note": ["tRNA-Cys(gca)"], "product": ["tRNA-Cys"]}}, {"location": "[815617:815704](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_08840"], "note": ["tRNA-Leu(caa)"], "product": ["tRNA-Leu"]}}, {"location": "[816064:816703](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_6"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23843"], "locus_tag": ["MAAAAKME_08850"], "product": ["Periplasmic oligopeptide-binding protein"], "transl_table": ["11"], "translation": ["MNKGKSLLAGAAVLFSGALLTACGQSTGASEKLVLNWMTSAEIITMDPSKATDATSFTQMENTMEGLYQLDKDNQAKEALATKAAQSKDGLTWTFDLRKDGKWSNGQAVTAKDFVYSWQRPVNPKTASQYSYIFSGIKNADAIVAGKKAPSSLGVKALGKYKLQVKLDHKLPYFKLLLAFPVFFPENQTAVEKYGSKFGTSSKTTVFNGPFV"]}}, {"location": "[816796:817432](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_7"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_08860"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MVEKSPSTAYNLYQDGKLDTVILSAQAAKNLQKQAGYVIRKNNGTTYMQFNTKLAKFKSTKLRQAVSMALDRKALAKTLGGGFTGATTFTAAYMTKVDGQDFTQLAQDKTTKQITSYHKTLAQKTFKEALKDLQLKKLSFTLLMADDDSSKAIGEYIQSALETAFGKQVSVKVQSLPTTSPSLPRWTAAILKPASAAGMLTSLTRFHSWTA"]}}, {"location": "[817771:818014](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDSNSFVYNVWLIILLVAAYIWPIFGLVPAIYLFIKRKDEQLEKMQGWITLALIWQIVLWLLMIIFLICFVALAGSAGK"]}}, {"location": "[818064:818742](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.52"], "codon_start": ["1"], "db_xref": ["COG:COG2199"], "gene": ["dosP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76129"], "locus_tag": ["MAAAAKME_08880"], "product": ["Oxygen sensor protein DosP"], "transl_table": ["11"], "translation": ["MKLAECEALSRWIDPRYGFLSPDKFIPALEANREVYKVDCHVLEGYGQDAEFLREKGKEIFPISFNISRTDLEACNIYQKIEDTIARYGLSRDQVHIEITESALNDSSQAMVEAVQHFHDLVGYQVWMDDFGSGYSSLNVLKDYHFDVIKIDMVFLRKFDDRSKTIVRNICRMAKELGIRTVCEGVETQEQFDFLKEAGCNLAQGSLFSPPVPLDELYKKMAPYL"]}}, {"location": "[818974:819268](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYIFFMKFNIFSVNRYESYLKKYDDDQLTGAKSLHYFMEHYEESLKQFGKSQSLSIFYSSLVNLHDYNLTNGYQDGSNLLKQLRPAALVKLYSSRLA"]}}, {"location": "[819465:819738](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVFLYQKLSPLVSLNALSAFFLATGLILLTLIPVIFLYQRLINKKPSVAVFTYCQFVIAAEISSLLANQTWQWDFFTIIYLNPLSLLSF"]}}, {"location": "[820305:821148](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0226"], "gene": ["pstS1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPB1"], "locus_tag": ["MAAAAKME_08910"], "product": ["Phosphate-binding protein PstS 1"], "transl_table": ["11"], "translation": ["MLAIVTVCVIGSCEADTKGVSGTVNIAGSSALLPLAQSAAKTFMDKNPDSVINTNGGGSGQGLQQVSDGTIDIGDSDLLADEKLDKKSASKLVDHQVAITAIAPIINKDAGVKILTTEQLIKVFTGKVTNWKQVGGNDRQIVLVSRPSSSGTRATFEQYALKKHASQSNQSLETDDSGTLIQMIQSVSGSIGYVALSYLTGDPQVGIVSINGVKPSLKNVYNGKYTVWSYEHMYTKGQPKGAAKAFLQQMLSEEYGKKIEAMGYGIASKLTAAAKATHTK"]}}, {"location": "[821167:822076](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKVVQKAIAKDKRWRAVYIACGLLIVALTLLMGAFLLYQGSQTVLKAHHSVWEFLFTSDWAPLDKTGMFGGKVGAAIYIVGSLETCLLGLLICLPFAIGSAVFMTEISPKIGEKFFRPATEIYVSIPSVVYGWFGLTKLVPIIRNAFHPKMGGFSVLAASIVLAIMIFPTITTVAADAIKSVPNSYREGAYGLGATRWQVIGKVVLPAASGGILTGVVLGLARAIGEALAVAMVIGKTRSFATSLLSPTSNLTSAIAADMGNTTQGGEYNLALWSMALLLFIISIVLIVLIHKLGNGKKEK"]}}, {"location": "[822078:822954](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_08930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSRAKRKDRLMTGIFYAIGWIMLAFLLYLTLTIIFDGLKGFQWDFLGAAGNGIFNQFFNTIYLVFLSLLVSVPIGIGAGVYLAEYAKEGKFLTIFEISIESLSSLPSIVIGLFGYLAFIIWTGMSWNILAGALTISILSIPLITTETNNAIRALPVEYKEGSLGLGATKSETIRKVLIPAAMPQILTGVIMAAGRGFGEAAALLYTSGQSTYINWQNFWKVTSPTSPLNPFRSGETLSLHIWVMRTEGALNPSATQIANFTSAVLVVLALLFTLVTRRISDRMRKRNNGGN"]}}, {"location": "[822953:823712](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.3.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG1117"], "gene": ["pstB3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A2V9"], "locus_tag": ["MAAAAKME_08940"], "product": ["Phosphate import ATP-binding protein PstB 3"], "transl_table": ["11"], "translation": ["MMEDKITIEKLNLYYSDFHALHDINMHIQKNEITAFIGPSGCGKSTLLRSLNRMNDLVEGCRIDGSIKLDGTDIYNGDLDVTVLRQRVGMVFQRPNPFPMSVYDNVAYGPRIHGITDKKELDEIVETSLKQAAIWDDLKDRLKKSALGLSGGQQQRLCIARALAVKPEVLLMDEPTSALDPISTSKIEELALELKKNYTIVIVTHNMQQAVRISDKTGFFLLGDLVEFGETDQLFSMPKDERTEKYITGRFG"]}}, {"location": "[823730:824369](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0704"], "gene": ["phoU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67053"], "locus_tag": ["MAAAAKME_08950"], "product": ["Phosphate-specific transport system accessory protein PhoU"], "transl_table": ["11"], "translation": ["MRTRFDKELYHLHEAMEEIGQLCKESIFESTDTLFTGNYHEAEDTINLHHRIHKAERDIEETCLRLLMEQQPVATDLRIISASLKAVYDLERIGEIGADIADLVLNEHLSVANDMLNLKSMSQIATSMVNDAVTALANQNVELAKAVIDRDDQVDEGFDKAKAFLIDNFNKDGNPEYLINLLMVAKYFEKIGDHAVNIAKWSLFVTTGKTGR"]}}, {"location": "[824450:824978](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["phoB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFJ5"], "locus_tag": ["MAAAAKME_08960"], "product": ["Phosphate regulon transcriptional regulatory protein PhoB"], "transl_table": ["11"], "translation": ["MTEIWCVEDDESIREIEMYTLESMNFKVRGFEDGQSFFKALDNSRPDLVILDLMLPDEDGSEILHRLRSTSATEDLPVIIASAKTAEYDKVKNLDSGADDYLTKPFGMMEMVSRVKAVLRRTNRKKEDKIEKDGIKILLKRHEVFENGHQVDLTLKEYGLLKLLITHPGTVFSRE"]}}, {"location": "[824981:825128](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["srrA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L524"], "locus_tag": ["MAAAAKME_08970"], "product": ["Transcriptional regulatory protein SrrA"], "transl_table": ["11"], "translation": ["MDQIWETGFYGETRTVDVHVRTLRQKLGEAGKHIETVRGVGYRYHEAD"]}}, {"location": "[825127:826786](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.13.3"], "codon_start": ["1"], "gene": ["rcsC"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00979"], "locus_tag": ["MAAAAKME_08980"], "product": ["Sensor histidine kinase RcsC"], "transl_table": ["11"], "translation": ["MFKKIFRASFLLTSLVLFFAVLLSAIVLSIDFDHTEMSALASQADLAASGVNTSGKKYIKNLKGENYRITWINSKGKVLYDNEENPKKMGNHSRREEVAEAMKKGTGTSERYSTTLSTVTMYYAERLNDGGVIRIAITRNSFWRILVRFLSPLLLIMLLSVLVSWFLAKTISQTIVKPLNEMDLDKPLESNAYDEIKPLLTRLDSQNKQIADQMEQLHHREKELKTVTDAMLEGLILIDLDDQILLSNPAVVSLLGLHDTDPLPDDVKEIIDKNSRLAHAEGIVERNGRNIQISASPITSRKILKGTSILVVDVTKEYHEEQVRREFTANVSHELKTPLQSIMGSAELLENHLVKEEDRDSFYKKIHESSAQLLTLIDDIIRLSHLDENQRFEEIKLNLKSPVTEALEALQSSADRHGIKLETNLSDTMILANFRLVYEIAYNLIDNSIRYNKEKGKTKITVKEHRGQAILQVADTGIGIPQEAQNRIFERFYRVDKSHSRKTGGTGLGLSIVKHAVQQCHGTIRLESELGKGSTFTVIFPALPAGADDNSK"]}}, {"location": "[826867:827014](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.1.24"], "codon_start": ["1"], "gene": ["cbh"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54965"], "locus_tag": ["MAAAAKME_08990"], "product": ["Choloylglycine hydrolase"], "transl_table": ["11"], "translation": ["MNQEKGIYYYTTYGNPEVHAVDMHKTDLDGKELTSYKLQKDLQFHFDN"]}}, {"location": "[827074:827305](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTAIQITHLSYTYPSQAEAIFTDLSLDLDSSWKMALVGNGRGKTTFLRLLAGQLGDQRAVKSPLTFTYYPRFFAKR"]}}, {"location": "[827324:828014](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_7"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_09010"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MDEAAFELWRLEKEMNRLNLSPDLLYQPFGQLSGGEQSKLLLALAFSQDGVFPLLDEPTNHLDGASRGIVALTGPNGSGKSSFLAWLLGNKDFTCQGDWDLQTGLKISYLPQDLSSYHGYLPAFAKEHDLDYEHFLNQLKKLGLEREAFKQKIEEMSQGQKKRVALAKSLTEEASLYLWDEPANYLDLFNQDQLIKLLAKEQPAMLLVDHDQAFIEAVAKERVNLRTVL"]}}, {"location": "[828122:828236](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARYVFCKPDKPKLTCWSIIAFIVLGIIATAYLGLTA"]}}, {"location": "[828347:829004](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQEPKILPDQSKTLAATKYVKLYDLAYENGVHYYDASRRDKDQLFAFKQDPELGSAQPDAVCAVIIVKQAGQKDKLLLFYEYRYPAGSYLLGLPAGLIDPADLASQDPIKTAMIREIKEETGLSIGEKDTVEVINPLVFMASGFSDESNAIVKAVIHVDDLSALNHKGAEGTEVFGDFKLVDKEEARRLLKEGRDDYGHYLPLVAWAALCYFVSDLWK"]}}, {"location": "[829058:830087](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pal"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02204"], "locus_tag": ["MAAAAKME_09040"], "product": ["Peptidoglycan-associated lipoprotein"], "transl_table": ["11"], "translation": ["MRKISKFLSIVALGLLVGGCSQGQKAKRTKAKTETKTSQNASGDLAKLSQSRDLFAWTVYWDVDKPWQTIQKESQNIDAVGTFAAFYDENKNYELFLADGSKKLDKEMRTTAKTSKIKRYMTVVNDTRTADKSTDLLETLLASKSKADKHAKEVVALAEKYNFTGVEIDYEQIRDNLSLWKKFLVFEKALYARTKKAGLDLRIVLEPPTPVSKINFPKGPEYVVMCYNLYGYGTNPGPKADYKFLKKTVKDFSSLGKISYALSNGGFDFNGDEVTSVTGSEALKIKKKYKAKAVRDKKSGALYLKYGSHTVWYADQTTLQLWAKTLDKASGKKVGISIWRME"]}}, {"location": "[830145:830697](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.3.2"], "codon_start": ["1"], "db_xref": ["COG:COG1443"], "gene": ["idi"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8ZM82"], "locus_tag": ["MAAAAKME_09050"], "product": ["Isopentenyl-diphosphate Delta-isomerase"], "transl_table": ["11"], "translation": ["MEILDIVDKEGRPTGQTIERNEAHRIGAWHRCASVWIIRQKAGKWQVLLQKRSANKDSYPGCFDTSSAGHIAAGDEPLATIIRELEEELGIKSQAADFTFIGTFHNCYDEVFHQTEFKNREVSFVHVYSKPVDENKLVLQKEEVSAVAWFDLDEVWEKAQAKDPDFCTPVGGLKLLREYLQKL"]}}, {"location": "[831273:831969](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVLIALGGTTFGLAEETMAFYPMPIPVFLEAGYDTMTVVATIFLGTTLGTLGSTINPFSTVIASNTAGVNFARALPLRIIMLLVSLGAGMLYTIIYAEKVRKDPSKSLVYDQYEENKKKFLAFDSQADKGDFTWRQKLTLLTFVAGFFVMIWGVQSLGWYFTEIAVVFLAVSYLLFLVSGLSEHRFMESFVSGAADLLGRGCLDGRPGPGGLQKATPATRSCTSSASRSPA"]}}, {"location": "[832156:832924](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q0TUN8"], "locus_tag": ["MAAAAKME_09070"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA3"], "transl_table": ["11"], "translation": ["MQIKIKSLHYRYPETNFSLDIPDLTLSPGLICLVGQNGSGKSTLLKLLADLLPAGDAIKADGQTLSEYLASGRLSKIAYAFQDPNDQLFNSSVEKELAWSMKQAKLPEDEIARRTEAALKEFGLAEFRDLNPYDLSLSGKKLLTIASALVLDPEVCLLDEPLMSLDYPGRCLVTRLLEKRLAQGKTVIMITHDMDWLAENCQEVYAMSQGHLVYHGPVHQLFSDQELLDRLGLLPAKTWQLSQLLGLKPEVLSLK"]}}, {"location": "[832913:833732](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ecfA2_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8R7Y5"], "locus_tag": ["MAAAAKME_09080"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA2"], "transl_table": ["11"], "translation": ["MSNNFQLTISQLSLRYLGFENLALENISAQSRGKRIGIIGPSHAGKSSLLALLAGIAGKMIPAKFSGSVRINGEELEAWRSQHEIALLLQDPASQLSGLADTVYDELSFSLLNQGKSDEEIESAVKRVTDQLDLTNLLDQSPNQLSGGQTQRVAIATALVTEPDLLLLDDPTSQMDPLGRQHFFSWLEKLSCPFLLISNELDDLAALCDQIWVIKDGCLLMADSPQTVFNQLDDPAFDKPAAWKMAKKLELKLDGCYPVNARELKEAAENAN"]}}, {"location": "[833710:834487](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0619"], "gene": ["ecfT_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI03"], "locus_tag": ["MAAAAKME_09090"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MRNNAEDLALPAWQAAIDPISKLLLILLFTLAAFAAGNLPSALSILAASFILALSTKNLPALWGMCAFSLFLILTMLLIQGLFWPGNHTAAFSVASLTFYQEGLGHAALLACRILTIIFSSSFFIQTATISENARYLENSGLSYQQVYVLMSVCYILPQMQENLRKIQLAQKARGIAPAKSLLSRIKNLFPVLLPLIVKSFQQAMNRSIALQLRGYASPKRRAASLTNDYWKDKFCHRLLIASCLVLLGVKACLTIFN"]}}, {"location": "[834483:835119](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDSKEISSKNKEISSKNKASFWSFKLSAHAMTLIPAAVGINYVAKAFAEGLKLPVWLGSLGTFLASMLGGPVAGAISGFINHVIYSLTLSPLSAVYALTSIAIGLAVGWLNQRGFFKRPVTVLLAAILIALVSAVISTPLNVIFWGGQTGIAWGDALFASLVAKHVNIWIASFLDEFVLDLLDKTVVAYLAFLIYKQLPKRLVYFFKGTEK"]}}, {"location": "[835510:835618](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGIIKFTEQQRKDYEQLPTDMAIYQTIDGSLRPCW"]}}, {"location": "[835614:836106](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDELCRLLRISREDLIANLDKSMFGFVHPDDIGRMAYFGKNFAAHTDEKYDVFLRWKTPKMEDYHIFHSWANHVLVDGVSLGFFFYSDMEESGKNNQILDTHYQKYEMYQDRLTNLPNRRFLEIFGMEEVAKLPFSQEAAGLHDSQYCRHERLQQPLWLEKG"]}}, {"location": "[836044:837154](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2199"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9ABX9"], "locus_tag": ["MAAAAKME_09130"], "product": ["putative signaling protein"], "transl_table": ["11"], "translation": ["MTLNIAGMSVYSNLYGLKKGDQLLRELSELLVSEIKEGHVYYNKDDRFLILTVAEGIDEKIKEIHEKFVNLAKNKAVDLQFSLYQILDDDQNIMMITQRANQAMKEIGLDRRVYVKKYDPAVEEDLEESYFLNNFSRAMTEGWLTAYFQPICSAKDGKTASYEALARWQDPEKGLVSPAAFIPVIEKHYLTYYSDMYMLWEVVAKLRQWKERGLDLKPVSVNLAHEDFEMPNLVEKINDLVTGAGLSWSLIKIEITERDLSNNTSRLKEQIDQLRSYGFEVWMDDFGSGYSSLNALNDYSFDLVKIDMVFVRHLDDGQLNRLLIPEITKVAHKLGLKVLAEGVEKEEQRDFLREAGCDLLQGFFVQQAG"]}}, {"location": "[837355:838384](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGIVVSSLIAVIGFLGIFDLNSDYANISVLLVIASEWVYLFLLLANLPNLFLLLWLQKHPQAAELEIRICFANLAVNAILSGFTLYSTQEGSVYFFELVLMMMVICVFPYYKAGHGLSLVALSLLMISAIILVNHVQVAWQDTYDLFLFYVIGQACIVLRRYWFRQSSWYNYILHQANGTLFVSSRTDKLTGLYNRLALREYFPNYGKQEVGVAMIDLDDFKRFNANYGHAYGDLVLTRLGRYLQKDWMNEHLRCYRYGGDEILIIASGLEDGDFVKKLQIFQAEYAKLNQQLEEPATLSIGYATGAVANEEELRKMIQLADNYLYQAKRQGKNQVVGAEKK"]}}, {"location": "[838390:838972](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYSYIPKEQIKIYRYLTVDAVNAALADLRQKGISLELESTVGTAGNFVTQNDGVVDLDYQLKLVKAAEEDPAALLAKISVGLTAGLASKFEGGRENSQALTFLHRAKKSGKVNFKLDLTIIKEEDGDEYRLVKTDGGKWSEAFNTRFLTIQEETIKDWDQWEDLREDYLRLKNADPAGLSVDLYRQAVNQIYG"]}}, {"location": "[839089:839893](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.23"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ybiV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75792"], "locus_tag": ["MAAAAKME_09160"], "product": ["Sugar phosphatase YbiV"], "transl_table": ["11"], "translation": ["MEEKKKIKLIATDMDGTLVNDAKEVPDSFAPWVLSHPDQQMVIASGRPYYTNEELFKEIKDHLIFIGDNGGLIYQQGQVLAKAGITAEEAKFCLDLFKDEPLANPILCGASQAICHDPKGDRNFLKQLDTYYIKRRYVEDLEAEVNSDEIIKFTVYIEGGAAESIYRQLPEMPGNLSAVLAGPEWIDIVNKDANKGAAVKKIADLKGIKQDEILAFGDYLNDLTMLEAAGTSYAMVNGHPDLKKIADHIAPSNNDEGVMQILRKLFD"]}}, {"location": "[840082:840502](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yusO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32181"], "locus_tag": ["MAAAAKME_09170"], "product": ["putative HTH-type transcriptional regulator YusO"], "transl_table": ["11"], "translation": ["MVMRYEKLHGGVRGQNRTLALLSKNEGMKQAELARFARVRPSSISEVVDRLERHGLIERRRDNSDHRVFRLYLTEKGREQNKRNHSSWLGFVGDLLSPLGDDEKAEYLNILKKLDKKALFLEKMPKKRVKTMLKIARKN"]}}, {"location": "[840498:840807](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_09180"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MTCWATCLASLFLLVQVACDLYLSTVTANLVDKGIIGKNLPYIWQTGGKMLLVSALGLLAAFGNIYFASHQAMQVGQRLRAMLFAKVLTLSDEESAALASPL"]}}, {"location": "[840803:840926](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITRTTNDVVQVQMTFMQLLRMLLQSPIMLVAWTVLAYIQ"]}}, {"location": "[841000:841270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_09200"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MHFAMPLFKSIQQKTDRINLIFREGLTGVRVIRAFRQDQREQDRFAGANLDYSKIGIKAYTIISLMQPAVTLVLSLTNVGIVFSGQPLN"]}}, {"location": "[841280:841622](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_09210"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MEIGSLLTFLTYATQILMSFMMLYMLFIVIPRASVSAKRINEVLDAENQLQDPVKSVSMPKGPAELEFDQVSFRYAGAEEAALEGINFKVNAGQTLALIGGNGSGQASPPWST"]}}, {"location": "[841657:842656](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ3"], "locus_tag": ["MAAAAKME_09220"], "product": ["Fatty acid ABC transporter ATP-binding/permease protein"], "transl_table": ["11"], "translation": ["MFTISWKLTLVALLTVPVSVLITGTIAPRAQKLFGRQQEHLGKINGQVEEIYAGVGIVRVFGQEENEEETFAKHNDSYFDASWKAEFLSIMIFPLMNFVKNVGYLLIAVFGVIDVINGAISLGNVQAFLQYSNQFSQPLTQLANMSSTIQQTIASAERIFAVLDAEDMDETVHPAEGLKTDTKLTFKDVSFSYTDAPLIENFSLEVPKGEMVAIVGPTGAGKTTIINLLERFYDVKGGQIYLDGQETRSMSREDLRSHIAMVLQDTWLFTGTIFANIKYGREDAGDEEVYRAQGRQLHPPAAGWLRDPVKRRRDKYFPGAKAALDDCPGLFS"]}}, {"location": "[842630:842960](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_8"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_09230"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MIARAFLADPEILILDEATSSVDTRTESLIQKVMADLKQERTSFVIAHRLSTIQDADKIIVINHGQIVESGNHQSLLAKGCFYADLYQSSFWARKSEKSHDSRESWLLL"]}}, {"location": "[843030:843669](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.275"], "codon_start": ["1"], "db_xref": ["COG:COG0344"], "gene": ["plsY_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q45064"], "locus_tag": ["MAAAAKME_09240"], "product": ["Glycerol-3-phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MFAMKFALLLILAYLIGSFPTGVLVGKLFYHKDIRDYGSHNIGTTNTFRVLGPKAGTLVFLVDFFKGTLATCLPRIFHLGDHHLCLIFGAAAIFGHAFSIFLKFKGGKAVATTAGFLLGYNVQFFGLCAFYFILLLLITSMVSLSSLISVVLIFISSFFHDTFLTVMSGVLVVLIWWSHRANIKRIIAGNENLVPFGLYYHIKQKHDKDKKE"]}}, {"location": "[843765:845697](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0187"], "gene": ["parE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:H7C794"], "locus_tag": ["MAAAAKME_09250"], "product": ["DNA topoisomerase 4 subunit B"], "transl_table": ["11"], "translation": ["MPKNTYDDSSIQILHGLEAVRKRPGMYIGSTDIHGLNQLVYEIVDNSVDEAMAGFGQEINVTIHEDNSVTVQDFGRGMPTGMHASGRPTIEVILTVLHAGGKFTEQNYKTSGGLHGVGSSVVNALSSYMKVHVVRDGKAYEEEFQNGGHPIGTLRCLGATKEKTGTTITFKPDPMIFSTTKYNYETIQERIRESAFLLKGVKFTLTDERTPNHHDVFQYDDGIESFVAYLNEGKGTIGKVFYFEGSQDGMEIEFAGQYSDSYSENFVSFVNNVRTADGGSHEVGARSGFTRAFNDYAKKQGLLGKKDKNLEGSDYREGLSAVLSVKIPEELLEFEGQTKGKLGTPQARSAVDSIVYEKLSYYLLENGEWAQDLVKKAQRARDAREAAKKARDESRNGKKRHKKEVLSGKLTPAQSRNPKKNELFLVEGDSAGGSAKQGRDRRFQAILPLRGKVLNTQRAKLADIFKNEEINTMIHTIGAGVGTEFKVEDSNYDKIIIMTDADDDGAHIQILLLTFFYRYMRPMIEAGKVYIALPPLYRISKKQTNLYAWTDEERDEYEKKVGKGYALQRFKGLGEMNADQLWETTMNPESRMLIRVRIDDAQLAERRVTTLMGDQASARRKWIEENVKFRLGEEESILDKVND"]}}, {"location": "[845711:848195](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0188"], "gene": ["parC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P72525"], "locus_tag": ["MAAAAKME_09260"], "product": ["DNA topoisomerase 4 subunit A"], "transl_table": ["11"], "translation": ["MPETHERIREMPLEQVMGERFGRYSKYIIQERALPDIRDGLKPVQRRILYAMYRDGNTADKPFKKAAKAVGNIMGNYHPHGDSSIYGALVFLSQDWKMREPLIEMHGNNGSMDGDSPAAMRYTESRLAKISNVLLEDIDKETVPMVLNFDDTAYEPTVLPARFPNLLVNGSTGISSGYATEIPPHNLGEVLDATIHLLKHPDASLEDLMTFVKGPDFPTGGIVMGKKGLRDAYKTGKGRIQVRAKTHIEEIRGHRQQIVVTEIPYLVNKAQLVKKIDEIRVSRELDGISEVRDETDRHGLSIVIELKKDADAQNILNYLLKNTDLQVSYNFNMVAIAHMTPVQVGLKRILAAYLEHEEEVVTKRTQFDLKKASDRLEIIQGLIKAMSILDQVIKVIRASKNKADAKKNLVAEFAFTDRQAEAIVSLQLYRLTNTDVLALQAEEEELTGKIAAYEKILADSKVLQKEIIKELRAVKKEFGSDRRSEISDETARVEVDEKALITEESVRVLISRDGYIKRSSMRSFQSTEAGDNGLPETDRVVYEGSLSTLTNLYLFTNHGNLIYRPVHELVESKWKDVGQHLSQELGLAADESIIRVFALEALDDPDLAFLLATNDGFIKQVALADLQPTRTYKSRAIMAMKMKGEDSRVITVDLAKTSEKREITLFTNQAFALKYDIDEVPQVGARAAGVKSINLKEDDYVVACLVTDPQYEDLLKVGLVTQRGAFKQMPLKLIGKTSRAKRGVLVLRNLKTKPHRIVALKAYGQNHELILITSSLRKQVIRTSDHPVGDRQSNGSFVIDVKTDGEAKELLMGRPLPDQARDVGRLF"]}}, {"location": "[848309:849245](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG1227"], "gene": ["ppaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37487"], "locus_tag": ["MAAAAKME_09270"], "product": ["Manganese-dependent inorganic pyrophosphatase"], "transl_table": ["11"], "translation": ["MEKELIFGHRNPDTDAIGTAIAYSYFQNQHGYNTEAVALGEANDETSFALKKFGFEAPRVVKTVANEVKAIMLVDHNEPQQSVEDRDQVKVTHVIDHHRISNFATIDPLFYRAEPVGCTSTVLWEMFKEQNMEIPANIAGIMLSAIISDTLLLKSPTTTDIDKEAVEELAKIAGVDYKEYGLELLKAGTNIAAKSVEELIDLDAKSFELGSKTARIAQVNVVDVPEALERKDAFLAAMEKDAKANGYDLFMLVITNVLDSDSEVLFIGDDESKSVFAKAFGKELVDSEAHLPGVVSRKKQIVPPLTRAFEA"]}}, {"location": "[849450:850476](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.3.3.2"], "codon_start": ["1"], "gene": ["fni"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KWG2"], "locus_tag": ["MAAAAKME_09280"], "product": ["Isopentenyl-diphosphate delta-isomerase"], "transl_table": ["11"], "translation": ["MSQRSIRKEEHLALTQMFFNAQKTNSFDQVHLLRPALPESQVNLNAVKTTWFGKELAAPFFINAMTGGSEKSRQINRQLGEIANKQQIALALGSASILTKEEDQLESFYVAREANPDGLLFANVNPLTPAKAADKIVKDLQADALQIHLNVAQEIPMPEGDRDFVWLDRMLEIKEAAGVPVIVKEVGSGLDPVSLQKLQAAGFSWFDIGGAGGTNFAQIENSRNPHPMAYLNDCGLPTALAALLAAPLTKQLIVSGGVRNPLDVFKGLALGGKFVGVANHFLHTLLNEGPDGLDEEIGRWKEELAYLFALYGQSCLPVKQSYYLDLELKNQFDQLKQYAGK"]}}, {"location": "[850486:851569](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.2"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KWG3"], "locus_tag": ["MAAAAKME_09290"], "product": ["Phosphomevalonate kinase"], "transl_table": ["11"], "translation": ["MITEKAPGKLYIAGEYAVLEQDCPAILVALDQYVRVSIKPSSSDTGLIHSKQYSQDSIHWVRRGSKIVIDNRDNPFEYILSAISFTERYCLEQKVKMDVYDLFVNSDLDSADGKKYGLGSSAAVTVATVKAILRFYGVQASKDLIYKLSTISHYSVQGNGSAGDIAASVYGGWIAYQTFNKLWLKEELASKSLSAVVGEAWPGLKIQQLVPPKDMELLIGWSQQPASTSRLVDKTNANKNNLRTEYAKFLADSRKCVLQMIRGFEEANIALIQKQIGINRRLLQHFAAINNIAIEIPRLTELIEIANKFGGAAKTSGAGNGDCGIVIVNKDTDIDRLRKEWVKNDILPLEFHIHQSELTY"]}}, {"location": "[851645:852605](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.39"], "codon_start": ["1"], "gene": ["thrB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00384"], "locus_tag": ["MAAAAKME_09300"], "product": ["Homoserine kinase"], "transl_table": ["11"], "translation": ["MSKTARAHTNIALIKYWGKKDAKLRLPLMSSLSMTLDAFYSDTKISDSEQMSFKLNGQAVSGPAADRVFAYLRAMQDRFGVKGNLAVESVNQVPTAAGLASSSSAFAAMAAAFADHYQLGVDRQELSRMARMGSGSASRSVFGGFSVWQKGDSDQTSYAYPLDEEPDMDLRLLAVEINDQEKKISSTKGMEMSKSSPFYQVWLDRNDSEIKEMEEAIKQADFSKLGSLAELNASEMHTLTFTAVPGFTYFEPNTIKAIKLVQDLRQQGLECYYTIDAGPNVKVLCQGKNSKDIINCFESSFDRVKIIEAGFGPGVTLLD"]}}, {"location": "[852660:853572](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.6"], "codon_start": ["1"], "db_xref": ["COG:COG0153"], "gene": ["galK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A6T3"], "locus_tag": ["MAAAAKME_09310"], "product": ["Galactokinase"], "transl_table": ["11"], "translation": ["MQTSYTAHGKVILIGEHSVVYGYDALAIPIQTLHIKTTVSDYAGPVWMDTKLYQGPFFDAPADYNGLKYVVKELLTRSGKNPQIKLTYTGEIPMERGLGSSATVAYGTTVALSQYLGLKLSASEVMNITNQAETINHGKASGLDAATVNSDYLVFFNKQRGVKKLSSKLGASLLIMDTGDLGNTRKAVTMVAKLLNESPDAQVRMRKLGQLADEVKAAWLEQDPESVGKFFNEAQELLASFNLSTSKIDRICQIADKGGALGCKLSGGGLGGIVIALCKDAASCEEIAQACQAEISNYWIEEI"]}}, {"location": "[853705:857245](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG3857"], "gene": ["addB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23477"], "locus_tag": ["MAAAAKME_09320"], "product": ["ATP-dependent helicase/deoxyribonuclease subunit B"], "transl_table": ["11"], "translation": ["MIKIITGRQSDPLQTEIIGRAARNYLAQPGKDTFIIVPNHIKFNTEVAAIGKVAQLQGREETSVKNLHVLSFSRLAWFFFKKADLLMPESLDDAAATMILEQIIDKRRDELLLFKNSHANSGMIKQVYSTILQVHTGQLDLGNLLERAADPAVALDLDNETRDKLHDLDLIYQDFLEIVSEKHFATKDELNIQLNQLLASRPDLVSQASFYVTDFSHFSIQEKMTMQLLAAFASEMTFAFKTADGSVIEPAAGEYDYVVQKTIKDLTGYFSAHDFAWEREKIASPASPARDLNQAWQGQGQPDLNNLQLVKADSRYAEAYFVARTIYDEVALKGCQYRDFLVLAPNLQEYETYLAPILRQNQIPFFDDLQQQMKYHPLVLLLENLGKLLQQAGDTPALLSIMKTRLLIPDWYLEGDAEAGEAAYLRDIDQLENFALAHGIKYSLWQKPLKDFTKAQVIALDQEQYQKWLDRLDKLRDFFVSKISRLARQLKSEKDSMTAVKLFFDFLVKNGVSARLEAWRLKASESGDLQQAQQPEQCWNLLLSLLKDYLLVNPENFAWADFFKMLTAAFSQANFATIPASLDAVTLSEYGMVQTSGYKQVFIIGAANGSLPQINDQPNFLTTENLASLADFFDQDAYLEDSQQLRNLDQEYQFGNALALASDRVYISYPVINSNNDLLDPSIYYKRLLKLVNGREYRQRDLPDIAEKDRTEFARQLLLFLTSPRASLGYLAYAEENSAQSPLVAKLVELSRQYEEEKAEEIAEGMAYDNNPQDISEDLAERLYGKDLLSSVSQLESYYQNSFEYFLNYGLRLRPRAENELNAIQSGNYFHRTFELLLKEMQKKNIEIDKLSELDLELLLKQVRSEILQEPLYQQFLRDPFNEYLFKVFDKTTSKVAQSYRRKQQENKMRATYGELAFGPAEKLAGLVLPLKKFAGQRKISLRGKIDRVDLFNGDQHVLGQLIDYKSSDHSFNLARFASGVDLQMIAYLDVLEKNRDLLAGGRQFDLLGAFYQYVTRKLNSVNSSSTGALFDSKLQLKENLLGGEDKLKLSGVFVSEPAWYQEVDKALEKKATSSVYRGLKLNKSGGFGKKDNFFSQDEMRELLEYVEALIEDAASEILSGQIALNPFRQGNNTGLAFSDYKDIFYFDQQLPTNSYRDLPNLKKADLLALVEKRLRQRE"]}}, {"location": "[857271:860955](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1074"], "gene": ["addA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23478"], "locus_tag": ["MAAAAKME_09330"], "product": ["ATP-dependent helicase/nuclease subunit A"], "transl_table": ["11"], "translation": ["MAVKYTPDQARAIESRGQDLLVSASAGSGKTSVLVERVIREIMDDHLEVNQLLVITFTRAAASEMKQRIKQRLQDRLQEETDASQADFLRRQLAEIDTAIISTIDSFCLDVIRRFYFAIDIDPDFSILTDATQIELLKERALRDVENGYLQNEDQAKKDRFLALYDAFAGDSNANSARDLLLDLYQFAMARPNYRAWLQKLAAPYQLETSDVVDSALWQEKIKPYLEEEFSNLADKLTALMAEADFDHEKFAKYQPAFTAFATSLASYRESLATDDPFDRQRELLAACQFDGTLRTNKEIADFVEEAKEVKEAGKQLVFNVYTGFYASSNADQQALLAKGAEIASAAAEVELAFIDRFNELKRADRVLDFSDMEQLAYEILTQDSSNSDLARAYYQSRFKEIMVDEYQDTNALQDGLIQRLKKAGKNNLFMVGDVKQSIYGFRQAEPSLFIAKYDEYGQENSAGKQRIIFAENFRSSQPVTQAVNLIFDSLLTKDFGGIDYQKEGQLKFAAGYDPEAALPTETEVLYQEDSSATDDDGELNQGDLAMVISRIQKLIADQTPIFDPKTGQTRPVSYGDIAILTRSKTSNLDIKQEFDRYGVPLFVMDVQNYFQTFELTVIMSYLKIIDNPDQDIPLVAVLRSPIFNFSSSDLAEIRLVNKSVSFYAALRTYAKKDTDLAARCRDFLAQLQDLRDFSLSHRISELLWTIYERTSFLEIVTAMTNGQQRRLNLTALYERASAYESSGFKDLYQFINFIARMRKNQKDLAQPILSENAGNSVKLMTIHASKGLEFPVVFVLGLEHRYNYQQDITGSYVLDASGLGLSFAYPFDEAEYRADTLANVWLKIAKKQKLLEEEARLLYVALTRAKQKLILAANIKLPARTDLAGLEEKWAKEISAGRLTLLDKMKVAKPLDFLAPALARAKQVKRLGEKAVSDLATGQEGSLVFVHFDPKKDQAQLPDSEAVAASGADLTEDEAAVFKQAEKLYTFSQGGYPYLDASRTTAYQAVSEIKKVFGDPIEDELADSHISELQSANRYLQPIDTEPDFLFQNTVSSAELGTASHLVLQYYDYAKGDKNAIDSCIAGLVEKGRLSQTLASMLDREALSWFVKSDFAKDFYQQPDRLHREENFATILSPKTLFKDFSDFPGKILVHGTIDGYYEAENGIILFDYKTDHVNPRKQEEAIQKLKEKYQGQLRLYERALNESGRLPVLKKYLVLLSCREIVEVD"]}}, {"location": "[860983:863776](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["dinG_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5K4"], "locus_tag": ["MAAAAKME_09340"], "product": ["3'-5' exonuclease DinG"], "transl_table": ["11"], "translation": ["MADFFAGESFAVVDLETTGTRKEEGDRIIQFGCAIVKDGEVVKTYSFMMNPHRKIPLSVTNLTGIDQKMVAGQADFKHYAPKIREILQDTVFVAHNVNFDFPFLNYELTNAGFEALTCKAVDTVELAKIAFPTLPSYKLRDLTASLEIKHANPHKADSDAYGTAVLLLKIIDKLASLPQATLNVLGSLASGLIRDTGDVIKVIADQSRQSRRKLPKDKMQVRNLVLKRQEIPAVEHGENGHFPVKDTDKRKLFKGKINYRQAQVDLIDRLHDFVEDAGQRVILAEAPNGTGKTFAYLFAYAYQLYSGKKLVIATPTKVLQQQLLDQEIPQLLRVTGLGLNAEMVKSSSHYLDLDGFAQTLYQNSPNKATLLLQMQILVWLTETTTGDMDELQLTSQQLPIFNQLKHPGDARVASQFASVDFWNLARRRQEQANILVTNHAYLVNHYMDSIWGQNPYLVIDEAHRFSENLQTARMDSLHLEAIWGSISHLRNLLYFTDNNLLRQSEENVQLQFMLDLLDQESLDLIHSLNRMQKYLYQHKGQAISKVFLPKKSLQLTIQGQDLFPENSQFRPLLRQFQQQLEQVRIHTNQIRYLLEQEKDRFLTDEESLLEELNDQVDLLEFYTGKSYQLADLLNQPLLDHLGFVVNVTNPEDALSSNLHWLSLDSSEELHKIYDRFDHISMISATITNDGNFAFAKQLLALPNLGVSCYKGKASFPMADHLEILAMDEGQPEPDSPRFLEELKNILTKDLSGQKHVLCLFTNLDLIKQLYFELLNDPRVKDYELLAQGLTGSNERITRRFVIAERSILLGADSFWEGVDFHNCGIDLVIATRLPFESPDLPEVSLRQHYLAQRGWDVFQEDSLPRAVLRLRQGCGRLIRGEDDHGQFLILDPRIWTKSYGPAFRSSLPAPVQKVKASELKKKLKFERKNA"]}}, {"location": "[863768:864263](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLNERVKNVLQYLAWLVFFLFLLYAGTVAVVAKAAKPYSQQKEKVAKLVKQTSMKQIDKYYHLSRGVKSYSASGKTSKGKAAYFIYLPDKHKAYYYSASDGVSESTVKSSFQKSYPKKAIKEVNLGWYQKQAVWEVTAVNADGSYCYAIYKFKDGQLLSLVDKL"]}}, {"location": "[864324:865623](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.22"], "codon_start": ["1"], "gene": ["asnS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67572"], "locus_tag": ["MAAAAKME_09360"], "product": ["Asparagine--tRNA ligase"], "transl_table": ["11"], "translation": ["MTELISIRESSKHVDEEVRMHVWLTDKRSSGKIVFLQLRDGTAFFQGVVRKNDVSEEVFEAAKGLRQEASFYLTGTIHEDARSHFGYEIQISDLEVVSNNEGYPITNKEHGIDFLLDHRHLWLRSRRPFAIMQIRNRIFKATVDFFENEGFVKFDAPLLMHSAPEGTTELFHIDYFNHDAYLSQSGQLYGEVGAEAFGKIFTFGPTFRAEASKTRRHLTEFWMMEPEMAWMHQDESLDLQERFLSYVVGQVLEHCEYELSILGRDVDKLRPAAEGNYTRLSYDDAVKMLQEAGKDFKWGDDFGAPDEAFLSEQFDRPFFIVNYPVAIKPFYMKKNPENPLTYLCADVEAPEGYGEIMGGSEREADYDTLKAQIEEAGLNLDDYSWYLDLRKYGSVPHSGFGMGFERVIAWICKLDHVREAVPFPRMINRMQP"]}}, {"location": "[865714:866362](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3935"], "gene": ["dnaD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39787"], "locus_tag": ["MAAAAKME_09370"], "product": ["DNA replication protein DnaD"], "transl_table": ["11"], "translation": ["MASYNFYRQLGVTSISNGLIAYYARLGLTEAELALVLQLEAFFQRGNYFPSNEKIAANTNFSVSDVTLLIQSLLDKGCLSLRQAKDASGKISSRYSLDELYDKLDQYLDQHVQVKDMNGEVLEEAKDSLNNDPMSDLAREFEIEFGRYLTPIEREEIQDWLNLDHYAPEIIKLALREAVLSRAMSFKYVDRILLNWQRMNLKTASEVQQYLERNR"]}}, {"location": "[866383:867013](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pdg"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46303"], "locus_tag": ["MAAAAKME_09380"], "product": ["Ultraviolet N-glycosylase/AP lyase"], "transl_table": ["11"], "translation": ["MEKDEKLLSDEEARNVLKRIDAMFPEAKGELNWDNRFQLLCAVLLSAQTTDKMVNKVTPQLFADFPTPEAMAAASQEEIEADISHLGLYHSKAKHLKEMAQTLVAEYGGQVPGKKENLVKLAGVGNKTANVVLAEGWGVPAIAVDTHVSRIAKKFKIVPEKATPLQVEKRLEELLPKDEWIHTHHAMIFFGRYKMPARAKNPDPYSYLD"]}}, {"location": "[867047:867851](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.104"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ybjI_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75809"], "locus_tag": ["MAAAAKME_09390"], "product": ["5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjI"], "transl_table": ["11"], "translation": ["MIKLIAFDMDESFMPRKGFYERERWARDFDLLRAKGIRVLPISGDQYQQVADFFPMKDEMTIGGLNGSVIFEKGQLIKADEIDRSMVQKIMQIIAENGLAQRTMLCGINYCYFLEQADPAFRERMNFYFSHNQNVSSFLPLPDDKFTEIVIVPGTDRMDETEEKLKAVCAEKLQIFNSGVTSIDILQPEVSKGNSLKWLASRYDLSPEEIMAFGDGLNDIEMLKFAGQSYAMKNAREEVKEAAKFVTKLPAAENGVLDTIEKEVLGM"]}}, {"location": "[867945:868311](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKTISTQMLTAKVSGVVDFYGSVSVMREDSNPTTINHLQADSPEGMEMGHVDLRENSDLRRKLSVECNISKDTDIPPVLIIHGTKDRTVNTIGSTDLYLKLKECGKEASYILINGADHDGG"]}}, {"location": "[868307:868637](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIKKWSYPDDLTYPIFVYVQGSAWMKQNVYRDLPQMAKIAALGYVVVVVEYRGSDVASSPKPILDAQNGRTLHEAARARIPGRPKAGYFSGQFFWRSHCRLRQLFPGR"]}}, {"location": "[868796:869798](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.28"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["ldhD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q59642"], "locus_tag": ["MAAAAKME_09420"], "product": ["D-lactate/D-glycerate dehydrogenase"], "transl_table": ["11"], "translation": ["MTKIAMYNVSPIEVPYIEDWAKKNDVEIKTTDQALTSATVDLAEGCSSVSLKPLGPVDEEVVYQKLSEYGVKCIGLRIVGFNTINFDWTKKYNLLVTNVPVYSPRAIAEMTVTQAMYLLRKIGEFRYRMDHDHDFTWPSNLISNEIYNLTVGLIGVGHIGSAVAEIFSAMGAKVIAYDVAYNPEFEPFLTYTDFDTVLKEADIVSLHTPLFPSTENMIGEKQLKEMKKSAYLINCARGELVDTGALIKALQDGEIAGAGLDTLAGESSYFGHTGLTDSEIPEDYKTLAKMPNVVITPHSAFYTETSIRNMVQICLTDQLTIAKGGRPRSIVNL"]}}, {"location": "[869847:871776](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDAIKIEDFLHYANLGKLKAKGQNLVWVKGLPDASKKDKYLYTLETLQDGQVSPLSSFGQERDFVFLDENTVCFAGNRTKEKDKTFIYQLSLKGGEAREIAALEGEDFAVENVLADGSLLLSRRVDLREAEKKQDPDEKDYVVLDEFPAYFNGDGIISKFRDRLFLFDPAKKELTELLKDDPYFNFDLHYVDGTDLYFTGDSYTQSKARKSALYQLDLNSLEYSQLLPKEEWSIFDICVLKGQLYLVATDEKRYGSEENPQFYKYDPEFKTLSLAAAWEDCWGDCVDTDLCLLDVRTSRVFEDCLYFTTTKVDHTVLECFDGEKVTPVFEFPSIEFFDFTSDGTCWFTGPNANETQQLYSYKDGQLTKHSSYNEDALKGRYVASAVQVDYQDYAGNTQHGWVLYPKDFAKKQKYPAILDVHGGPKTVYGTPFFHEMQVWASQGYFVFFANIYGSDGQGNDYANMRGHWGREDYEDLLKFTDAVLAKIPQIDAGRLGITGGSYGGYMTNWVIGHTDRFKAAASQRSMSNWLSDAFMSDVGPWDDLYSIDANNLDEKLDYAWQQSPLKYAKNVTTPTLFIHSLEDYRCPLPEGMQMFRALLYYGVESRMCLFKGENHELSRSGQPKHRIRRLKEITAWFDQHLR"]}}, {"location": "[871922:874235](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0744"], "gene": ["ponA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04707"], "locus_tag": ["MAAAAKME_09440"], "product": ["Penicillin-binding protein 1A"], "transl_table": ["11"], "translation": ["MATNSPEQKNTRMARLHANDGAKKARPVLRVIKWLFLLFFLLIISGIGVFAYYAKDAPSISTSKLQSGGTSSFYTTDGKFLMSLDSQTRVYAKDSAIPQTLKDAVVSIEDKRFYSESLGIDPLRIVSSFLTNVKSSNTVAGGSTITQQLVKLTCFSTASSQRTLSRKAQEAWLAMKVEREHSKDQILEFYINKVYMNYGTYGMGTAANYYYGKSLKQLDLAQLALLAGMPNAPVAYNPYLYPKKAKYRRDLVLKAMYDNKKITKKQYLAAKAEDVQKGLKKHTTSTESKLRKVDDAYIKEAIAEVQADGYDPYNDNLKITININQAAQNKLYSLANSGSVAFTSKKMQIGATVINPKNGHVIAILGGRKLPSVQLGLDRAVQTGRSTGSTIKPVLDYAPAIQYLNWGTSHILQDTKYTYPGTNIQLYDWDNTYQGSMSMRYALVQSRNVPAVRTLNEVGISRASLFARKLGVNVSANAGLSTAIGADASSLQMAAAYGAFATMGVYRKPQFVSKIETADGQVRKYNSAGKRVMKKSTAYMITDMLKGVFTSGTGTTAKVSGIYEAGKTGTVKYSDSDLVKYPSYSSTPKDSWFVGYTKQYSIGIWTGYDNLKDGTISGVGQYSAQLIYKYMMSYLMADEDSTDWEKPATVVKKRIVKNTEDKVASPGQPYTWELFVKGHSPTDADYVSSSSDTSTASSSAVTSSVKSSSSSSFSKSSSSSSSSEKSSSSSSSSSSSAASSSSAASSSQSSEAPKTEENKRDNNNDDKQDN"]}}, {"location": "[874221:874854](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.22.4"], "codon_start": ["1"], "db_xref": ["COG:COG3331"], "gene": ["recU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5KXY4"], "locus_tag": ["MAAAAKME_09450"], "product": ["Holliday junction resolvase RecU"], "transl_table": ["11"], "translation": ["MVKYPTGSVMPLRAAQRQGKKALLKKASFSDRGMTLEQQINESNQYYLDAGIAVVHKKPTPIQIVKVDYPKRSRAVIREAYFRQASTTDYNGVYQGYYLDFEAKETRNKTSFPLKNFHEHQILHLEQCLDQEGICFALIGFMTLERYFVTPASFLIQAWQNWKAAGKSSMTLAEIEANSFEIKSGFCPALPYLEAVDRIIADRKQEHGNK"]}}, {"location": "[875014:875575](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50838"], "locus_tag": ["MAAAAKME_09460"], "note": ["UPF0398 protein YpsA"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQRIWISGYRGYELGTFGDKDPKITVIKYAIKQCLTNLLEEGQLDWVITGANLGVEQWSAEVALELRQDYNLRLAVMLPYLDFGSRWSENNQLKLQNLKNQADFWSATSKEPYQGGRQFREYQQFMFQHTDRALLVYDPEYPGKSKYDYEMIEKYLEKRDDYQLDLVDYYDLEQAARDYEENQREW"]}}, {"location": "[875650:876115](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["gpsB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02011"], "locus_tag": ["MAAAAKME_09470"], "product": ["Cell cycle protein GpsB"], "transl_table": ["11"], "translation": ["MADLNDIKLSAQDILKKKFRNKVKGYDPDEVDSYLDQIISDYETFQDIIEDLYGRIGELQGQVIDAEKQVKQEEQAVKEIPAAVPASATTESKEEDVKTYVPSSQRQRADFSLDNSSTSGEISTNMAIIQRLSTLERKVYNLEQRVYGIQDLQK"]}}, {"location": "[876631:877756](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.173"], "codon_start": ["1"], "db_xref": ["COG:COG0116"], "gene": ["rlmL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9K0V4"], "locus_tag": ["MAAAAKME_09480"], "product": ["Ribosomal RNA large subunit methyltransferase L"], "transl_table": ["11"], "translation": ["MEEYQLYTTMGAGFESVVAKELQSLGYETTTENGRVFFKGGQKDIVRCNLWLRTADRVKILLKEFTAKDFSTLYDETYAYDWAMLLPVDAAFPVKGRSVRSKLHSEPDVQSIVKKAIVDKMAAQYHRRGKLPESGSLYQLDVNIYKDTVRLSLDTTGSSLFKRGYRIEHGGAPLKENFAASLIKLTPYDGTHPFIDPMCGSGTLPIEAALIARNIAPGTWRKFAFDYFDWFDPSLHEELLEEAKSQVKPAEAPIWASDIDQSILEVAKLNAHNAGVLQDIRFKQVAVKDFTTDLENGVIVSNPPYGKRLKDKQGAEELYRQMGEVLRPLTSFSQYYLTADPDFEKCFGQKASKKRKLYNGNLRADYYQFWAKRK"]}}, {"location": "[877765:878740](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.53"], "codon_start": ["1"], "gene": ["cpdA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00905"], "locus_tag": ["MAAAAKME_09490"], "product": ["3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA"], "transl_table": ["11"], "translation": ["MLMKAITDSERPDFWLISDPHLIADDLHDFGARFKKMRQTSAGKDIAYQDLALRAFVRKVVRAKPAALIITGDLTFNGAKRSAERLGEIFAPLKEAGIALLVIPGNHDIYDGWARSFSGSEERRVAQISPADWKEIFSASYDLAASQEPGSLSYSVNLNPHWRLLLLDSNLYSSQFSYTHPMTSGGTDDGERRWLSQELVEAKRLGQDVLFFIHHNLYSHNSVVHDGFKLNNAGEIVQLLSQYPVRCAFSGHIHAQHIMSGWVPVPEVVSSCFAESDQGYGVVELTANSLSYRRHDFDIDNFLTAEEKKQPAFCGFSRLSEGSF"]}}, {"location": "[879154:879511](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKHLIFLGDLGVIYYSWLLLVLFLTVIFCLEGSQFINLPTVITGIIFLLLLVFTWKKSYISFDGQTRLRLPYRKEFVLDEKTELVTSWRGFEVYRARVSRHQSIDYLVFRRKRDRNG"]}}, {"location": "[879494:881183](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.3"], "codon_start": ["1"], "gene": ["fhs1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XC12"], "locus_tag": ["MAAAAKME_09510"], "product": ["Formate--tetrahydrofolate ligase 1"], "transl_table": ["11"], "translation": ["MTEMVKSDIEIAQAAEELPITDVAAKLGLTSQDLEPYGYDKAKVNWQAIKRSEENGHLGKLILVTSISPTPAGEGKSTMTIGIGDAINNQLGKKTVIALREPSMGPVFGMKGGAAGGGYAQVIPMEDINLHFTGDMHALTSAIDNLSALVDNYIYQGNELGLDPEKIVIKRGLDVNDRTLRKVTIGQGSKFNGVERPASFQLTVGHELMAILCLSKDIADLKERIGKVLVGYTYEDEPVFVKDLGFQGAIAALLSTALKPNLVQTLEHTPAFVHGGPFANIAHGNNSILSTNLALHLSDYVLSEAGFGSDLGGQKFLDFVSTKLEKKPDAAVVVATVRALKYQAEKSTDHLKEENLDSLKEGFANLDRHMNNVRSYNIPVLVVINKFPTDTEAELDLLKSLIEEQGFPCEIVTAHDEGSKGAKAAAEKIVELADKSDYEIKRSYDLDDDLETKIEKVAKRIYHAADVEYTDKAKDQLVKLKKMGKDKLPVIIAKTQYSFTDNVKELGAPTGFTLHVKGLSLRNGAGFVVVSTGHILDMPGLPKHPAALDIDVDETGKISGLF"]}}, {"location": "[881194:881647](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.23.36"], "codon_start": ["1"], "db_xref": ["COG:COG0597"], "gene": ["lspA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9HVM5"], "locus_tag": ["MAAAAKME_09520"], "product": ["Lipoprotein signal peptidase"], "transl_table": ["11"], "translation": ["MQIVGLVIAALIAAADQALKYYIVTNYRLGEVHDVMPGLFSFTYIQNNGAAWNILSGKMWFFYVVSAVAIAVVLYYYFNKNYSHWMFKSGLVLVLGGIIGNLIDRLHLKYVIDMIQLNFVQFNIFNLADAAITVGVILIFSYLLFIERED"]}}, {"location": "[881648:882560](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.23"], "codon_start": ["1"], "db_xref": ["COG:COG0564"], "gene": ["rluD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P33643"], "locus_tag": ["MAAAAKME_09530"], "product": ["Ribosomal large subunit pseudouridine synthase D"], "transl_table": ["11"], "translation": ["MNREYELTAEESGQRLDKYLAGEMTDLSRSRIKELVQAGEILVNGKKSKVSYKVQKDDLIQVIVLPLEPLKLEAENIPLDIVYEDKDVIVVNKPQGMVVHPAAGHPSHTLVNALLYHTRDLADSPEGFRPGIVHRIDKDTSGLLMVAKNAAARESLEKQLAAKSNKRQYLAIVHGNFAEEGTIDAPIGRNPKDRKQMAVVEKGKSAVTHFKVLEQYQGYSLVECQLETGRTHQIRVHMAYIGHPLAGDPLYGPRKTLPGHGQFLHAKTLGFEQPSTGEWLEFSVQPPEIFQQTVADLRKKRVK"]}}, {"location": "[882561:883617](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_09540"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MKRYLILEDGSSYAGDGIGAMITATGELAIQTSNYGYQEVLTDPSNAGKIIVFTTPMIGSNGINAVDYESIQPSVRGVIANDIALNITDNDTFQSLGDFLQEKKVPAIFNVDTRALVRKLQNLGPLKASIMDTNDEHAFDQIRALVLPKNKSSLVSTKNAYAAPNVGKTIAIIDLGLKHSMLRELSLRQVNANVLPYNATVRDIKTLRPDGIIISNGPSQAKEVLPYLRQILDEYLGKLPILGVGLGFLAISAYLDLSLVDLPQYQNGTNFPVIRQSSGQIWQTAMNIGQLVLPDDTAVTFNEEYFDLHNELLAGFSNDKLQLLAVAFNPEGAPGTEDAQVIFDDFLKLVK"]}}, {"location": "[883616:886808](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63740"], "locus_tag": ["MAAAAKME_09550"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPRENDLNKILIIGAGSALVGNVANTDLLTKSAIEALLEENIQVVLVNPNPASVSTDPLPGLTVYLEPMTLDFLKRILRMEEPDAIMTAFGSLMALDVTKKLQADGILHQMGIKLLTINERAISMSNPQKRTRFLEANHLPVGQTWFLDSLGLKYDEHLQEQLENKLSFPILLTKKYYFERDDHISFKSSRDLAQYLRQESQDRDFRPASYRMTEDLSNCEEVILDLLRDEDGNLCFVGATGSLEPVGIDSGDSVLIKPLLTMNNDQIQVLRAEAGKIADKLQLVGFLSVHFAISHRGTEMVYKLLAVKPRLTRTAVMDQKTSLYSIGYVLAKLAIGLRLNEVTDPATGLCAAIEPVSDTVSIKIPYWSFAKTGYNHYQLGKHTQSTGEAVGIGRNFESAFFKALISSNDLEVLWSAFIKERGKSDEVILDDLRHPNEMHLVQLLAALSQGIDYQAISSVLNIHPVYYQKLRYLVKIGRDIAHAGELDHDLLLKAKIRGFSSDLLAELTKMDVHDIFPLLNEKDVRPTFSAIDDSAGVYQPKVKVYYQSYGVESELEFAKDPEKKKVLLLGMPPFQVSVTSEFDYMLYHALAALKKEGYETVLLSNNAESASMDYHLADRVYFEPINLDSIITICEEEGITDVVTQFSGKQISALRLPLMSHGLKIFGQHEIDRLLPISHLDTAKISEVKRVPYLATTDYQAVLAFVARVGYPVLVGGYHQKSKQKSAVIYDQPALEKYFRENQVDNYTISQFISGVKYEITAITDGEDVTIPGIVEHLEQSGSHASDSIAVFGPQYLSKEQAEKLRVETIKLIRSFKIRGIFNLHFLLKGREIYLLQIKTYAGHNLAFLSKSMNKDLVEYAVKVLAGRKIADLGYPNEVWPVDEFIHVKMPVFSYLNYSSDNTFDSRMKSSDAVMGRDSRLAKALYKGYEASDLHIPSYGTIFFSVSDEEKQEVANLAKRFARLGFKITATEGTANILAEAGITTGVIAKIQEGSRNLLERIQTHRIVMVVNVVNLSDSAVEDSIKIKDQALNTHIPVFSSLETVQLILDVLESLALTTQPI"]}}, {"location": "[886901:887183](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67382"], "locus_tag": ["MAAAAKME_09560"], "note": ["UPF0237 protein SP_0238"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRAILTTVGQDKTGIIAGVSSFLAEKDINILDLSQTIMNGYFTMMMVVDVSDEADFSALSTELKELGKKLGVEINIRNEKMYAAMHEMSGGLE"]}}, {"location": "[887182:888526](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97ST4"], "locus_tag": ["MAAAAKME_09570"], "note": ["UPF0210 protein SP_0239"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLRRIMETVNMIDNENLDLRTTTMGISLLDCIDSDSDRACQKIYDKITTKAENLVKVARELETEYGIPIANKRITVTPISLIAAASGDSDYVKYAVTLDKAAKAVGVDLIGGFSALVHKGYQNGDRVLIKSIPQALKETERVCSSVNVGSTRSGINMDAVKEMGQIVIENEKINPLNNGNLVIFCNAVEDNPFMAGGFHGVGESDVALNVGVSGPGVVKTALEKVKGESMDVVAETIKQTAFKVTRMGQLVGQEASKRLGVDFGIVDLSLAPTPAQGDSVANILEEIGLESVGTHGTTAALAMLNDAVKKGGIMACSHVGGLSGAFIPESEDAGMIAAAEKGILTVDKLEAMTAVCSVGLDMIAVPGDTPAETISAMIADEAAIGMINNKTTAVRVIPVPGKEVGDSIEFGGLFGYAPIMPVHKESSAAMINRGGRIPAPVHSFKN"]}}, {"location": "[888592:890284](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1293"], "gene": ["rqcH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DQ36"], "locus_tag": ["MAAAAKME_09580"], "product": ["Rqc2 RqcH"], "transl_table": ["11"], "translation": ["MAFDGLFIHSLLNELQDEITAGRLHKIYQPFNNDLVLVFRKDRKNKQLLISANPEYPRLYLSKESFSNPNVAPLFVMVLRKYLEGSVLQEISQVGLSRIVNFSFSNRNELGDEIQLILSVELMGRHSNVILYDKQSGKIIDLLKRINPDENRARLLLPKAKYELPPLTPGINGFTLTESEFSSLKRDYPTPADLAKQMDGLDGDDRQELTGYLEDDYSFSSLKTFYNQFSSPKAYVLLTPKHKRRIYPYLPYHLEMTKESSSTNLNEALDEFYAYQANRDWVKQRSQQVTRVVTNETKKLQKKLKKLEKQLDSAENSENLRVSGELLTAYLSQVKPGMEKIDLPNYYEGNQPMTIKLDPALSPQRNAQKYFKRYKKMRDSIKHVTEQIEITEENLRYLDSVQTEIDNADPEDVEAIKEELINQGYLRAEQKKRQKPKLTEKSLNKFKLSSGKTVLVGKNNLQNDWLTLKKADKNHYWFHVKNIPGSHVILTDSQPSDSDIQESAEIAAYFSKAKNSAHVPVDYIQVKRIKKPNGAKPGFVIYTGQKSIEVTPEADKILAKRID"]}}, {"location": "[890483:890978](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0N2"], "locus_tag": ["MAAAAKME_09590"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MKIALVTDSTANLSAAEIEKYNIKVIPIPIYIDDKEYLEGINITSEELFESQRSGSSFPTTSQPKMGDLITTFDNFKDEGYEAIIYICLSSGISGSYSTLMGIAQSNPDYHLYPFDSQITVRLQGYQVLAAAKMIEKDSYSPEEIIAKLAKSGQLSTNSLSLMT"]}}, {"location": "[890974:891364](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "gene": ["degV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32436"], "locus_tag": ["MAAAAKME_09600"], "product": ["Protein DegV"], "transl_table": ["11"], "translation": ["MNNLCRGGRLSNASAFIGSLLNIKPLLTFNDEAKIVAYDKVRSMKRAVKKIEKESLEKIKSLDIPEDKLRILILQSNDAAQAEEVMNYLKAEVPKAVFEMDEFSPVIATYLGEKSIGITWMIDVEQMEF"]}}, {"location": "[891419:892490](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIKKWAVMALFCGIFLTGCSNQTASKEASNSSNKSSQSSKSSVKKTSKASSSSAKAVKLDAAKLTPQESGSLITLYCADRFGGEWSNLLQAGQNGSLTITLHKTSDYEFKQPGSGYAYEAAASGQTGTTYYTLSGSTFYFYQGVKVAGSGSSLGQATKQEMADYIVKKYQLAEFKQLAKKVEIVDKSGQTQRLSDGRSGYFTIPAEMQGTWYSASNYDGETTHSKYVFGQSTIFIQDDKYDTNGTTTTLYARSSDFKMPLPPTEKQMDQVKGWGLGHLYQQDGLNYMNVMGWYQTAGSGTSFAVHTENIAGNNVQILVCASGARPWVDGIAYRSQAMAEKMQDQHFDDLHYRDDE"]}}, {"location": "[892549:893461](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSNSKWAGLAAAACILWGISGLFAKGLFNLDPRITPIWVTQMRQVCSGLILLTVAQLTGKHPWQVWKDKKSAVQLLAYAVIGVLPFQYCFFLVVAQANAAIATVIQFIGPFFVLAYLTLTKQEALRLIDVAASLLAFGGVFLLSTHGNIHDLRIAPLTLLFGIMSAVGAAANSLLPQALVTRQSTISVTGWGLLISGLILTAIHPVWPSLPSSPTVYLNLSVVIVMGTIIPTLWQNHALGHISGMTVAFMDAFEPLASMIGSIIVFHFQPQMMDYAASVMIIFAVLVLNWTPRSKIKSRVEK"]}}, {"location": "[893708:894371](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.95"], "codon_start": ["1"], "db_xref": ["COG:COG0111"], "gene": ["serA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9T0"], "locus_tag": ["MAAAAKME_09630"], "product": ["D-3-phosphoglycerate dehydrogenase"], "transl_table": ["11"], "translation": ["MALVRPYIKRATSIADAVKDVDFVTAHVPKNEETTGLIADAKIAQMKPNTILLNFARLGIVDNKAVAEALAEHHLGKYYTDFSDATILHNDDIVLMPHIGGSTIEAEINCARMAAKQTIEFLETGNIINSVNLPNVSAPFESDHRITLIHKNIPNMIGQISTYLAGRGINIENLVNKAKDKYAYTMIDIDEIDQATQDKVVPNLEQIPAVTRVRILTHKK"]}}, {"location": "[894384:894888](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.290"], "codon_start": ["1"], "gene": ["pdxB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01825"], "locus_tag": ["MAAAAKME_09640"], "product": ["Erythronate-4-phosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MYQIKTYNAIAKEGLDEFGDNYRINQTDNPDAYLIRSVDLHDHEFPKNLKAIARCGAGYNNVPLDKALENGAVVFNTPGGNANAVTELVLASMIIASRNIVAAANWSANAKPGADITLRTEKEKTSFNGTELLGKTVAVIGLGHIGSLVANACLDLGMKVVGAMTHT"]}}, {"location": "[894906:895893](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.52"], "codon_start": ["1"], "db_xref": ["COG:COG1932"], "gene": ["serC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80862"], "locus_tag": ["MAAAAKME_09650"], "product": ["Phosphoserine aminotransferase"], "transl_table": ["11"], "translation": ["MSVMEISHRSALYKDLYAETKANLLELMKLDPAEYDVLFLSGGATQQFSTIPLNLARKYHRIVVVDSGHWAQRAAEDAAKVPGLTVDIVASAKDNNYTAVPKIPTEFDQDYDYLHITTNNTIMGTAYRDDQIPKTDIPLVADMSSNFLGQEYAYSKFAVIYAGAQKNLAPAGLTVLVIRKDLLVKHDDLPGLFDFATEAKKESALNTPPVFQVYVAGLALKWLKEKGGVAGIEAINQEKSKLIYDCLAESKNFESKVDPDSRSIMNVPFVSGDPDLDAEFVKEATTHQLLNLKGHRLFGGMRASIYNAMPLEGVQALCDFIKDFDAKH"]}}, {"location": "[896344:896968](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0406"], "gene": ["pspA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D3DFG8"], "locus_tag": ["MAAAAKME_09660"], "product": ["Phosphoserine phosphatase 1"], "transl_table": ["11"], "translation": ["MTTFYFIRHGQTFANMAGLKQGTINNPNTYLTDLGREQAQKLADQFDISNFDRLFVSPLVRTKQTAEILNKKAGLPVETDDRLLEISYGDWDGQKYSELMAEYPNYFSPLVNDVTEDYVQAAPKAESFAHVEMRTAEFVAEISQKYPEDQIVVVTHGFTVRSFAINATGGQGLQILEPDNCSVTKILVDPLSFKQHLVYYNRTVTAF"]}}, {"location": "[897026:897368](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSNINVEERIRELSTIKVLGFFDQETTLYIYRETIILSIIGILCGYLAGIGLHTFIITSLPPDNAMFDPAMKISNFLYSALILAGITALVALIMHKKIKSVNMLDALKSVD"]}}, {"location": "[897551:898070](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0778"], "gene": ["nfrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2G0Z5"], "locus_tag": ["MAAAAKME_09680"], "product": ["NADPH-dependent oxidoreductase"], "transl_table": ["11"], "translation": ["MKFTKLLKSRKSIRTYTGKPADKKQVKKIIEAAELAPVACGLYENYQLTIINDPKLLKEIDQEAAMIFGDLESHPLYGVPTLILVSAKKQDEMAYASAGIIAHNMVLAAENKGLGACYLFGAAAALAAHPETVMKLDLPAGFMPVCGVGIGETEEELTIRDQKLDRIGINEI"]}}, {"location": "[898519:899089](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.2"], "codon_start": ["1"], "gene": ["pyrB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65618"], "locus_tag": ["MAAAAKME_09690"], "product": ["Aspartate carbamoyltransferase"], "transl_table": ["11"], "translation": ["MGLVNAGDGSGQHPSQSMLDMMTIYNEFGRFDGLKIMIVGDLTNSRVARSNMEILNTLGAEVYFSGPEYWYDAEEFSKYGTYVKNIDDEIPELDVLMLLRVQHERHNGTEAKTEQLYNAAYGLNQRRYDMLKDDAIIMHPGPINRGVEWDGDLVEAPKSRYAVQMHNGVFVRMAMIEAVLRGRKLGGLE"]}}, {"location": "[899088:899229](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAILLKNGLVYQEGEFINEDVSQPSSLAWTLVSWLQARKPTWPSLT"]}}, {"location": "[899440:900517](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0582"], "gene": ["xerS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7ZAK7"], "locus_tag": ["MAAAAKME_09710"], "product": ["Tyrosine recombinase XerS"], "transl_table": ["11"], "translation": ["METKKYLSLIDREMAQMPDFVKEYQLETRHSLTTSYQYLTEIRRFFSWLIAENLTQAKSSSQVLPSDLEKLSRSDVMLYLDKLEHSKNKQGHLNSPTTVNRSLNALRSLYKYLTITADKNNGEPYFDRNVMLKINFLPYTSTLNYRAHALEAHMYTGNLKYQFMDFLDQKFAGLCSGRALSSFKQNKERDMAVIALILGTGIRVSECAGVDMKDLNLKEATLDITRKGGQRDSVPVADWTLPYLEKYLAIRADRYKAPATNKAFFLTRYHQECRRMTTNAIEKMVGKYSAAFGHPLTPHKLRHTVASELYQATKDQVMVAQQLGQKGTSATDLYTHVDQREQRAALNASAKQNKSSSD"]}}, {"location": "[900749:901898](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.165"], "codon_start": ["1"], "db_xref": ["COG:COG1929"], "gene": ["garK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23524"], "locus_tag": ["MAAAAKME_09720"], "product": ["Glycerate 2-kinase"], "transl_table": ["11"], "translation": ["MIKFITASDSFKESLSAKAACQAMTDGIKRVFPEAEVIQVPMADGGEGTVDAILSCIPGEKVEKMVTGPDGRRLLASYGLINDGECAVIETAAASGLGLLAKKGRDPMTATTFGTGELLLDALKRGVKKIIVGLGGSATNDGGAGLAQALGVRFLDKNGQELPFGGGSLDQLARIDASGLAPRLKEVEIILASDVTNPLTGLNGASAVFGPQKGADKEMVQKLDASLHHYAAVIKEQVGKDVENVPGSGAAGGLGAGFLAFSKCQMKAGAQIVIEESHLAEKMRDADYVFTGEGGIDFQTKFGKTPYAVAQVAKKLGIPVFALAGQVGDGIDSLYEAGFTGIFGILPGICSLPEALAGGGGNLARTSENVARVIKAARVNLQ"]}}, {"location": "[902037:903207](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEYYLDYREQVRNILDALDDSSTSLRLGAVAIENLLTLARVDLDDEDEEDSDDSDAIEEADSGGDLADAETEDKKQVKIIRHEEPTASSHYQLCRFSRALKGGSFYTEQGDLVSEINELAVRNLNVENGDLVELDLSSQPPRVVRIVEAGNLPSNIATMSYGIVERDPAGDLYVSRSAMGESLSECAGIDRYEVPAIIDAGQTETGFVHEGDIVDLAWYKNSPSNMIVRWVSQTKGEEVPKKEKPAEKKVKSEKEDKDKEESVTTLNFDLHGRSVAVVIGNELRSQEIQKMVGEHHGRCKVIDAFKFSDTESFYKHALKRADVTVMVQNLNKHSTSKALRKYAKRLAIADSADLSSIERAIYRAMHGLPAYETSTQPIAYPVKELALS"]}}, {"location": "[903231:903810](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFSDKDKFVEMDKNGATWLDRGAEAYRQGDYELALQCYKKAADYGNSQAMCNLGYIYAFGRVGEADQEQAFYYFTQASLAGNPNAFYKLGDAFRFGNFVKRNNEIAFQYYSMAESVLQEGDEDLIAEIDYRLALCYARGWGTGQRWDLALKYINEAQLYAYRNKQHGEYNWQKTSQRINKLHDEIVSEMFS"]}}, {"location": "[903968:904265](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFNQHAAVNLLDYYTTIEIIISLFIAGLLALVYKNIHYSKQRKRNSYWSLGLLLIINLIEWTSVMLDGFSGQYRIWLVINKFLNHSLIPFLGYFVIHI"]}}, {"location": "[904620:905079](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHQANRLQSLKDHYPDRVTLVDGDINNKQVVVDAAKGCDMIFSAVVDHDDAGNNRPTKNIIATAEANKISRVIETSLLGIYDEVPGKFGKWNRDFCFGGNLEGSSPVNADQLLEDSGLDYTTLRLPWLNDRPEVKYSITHRHDTYVGVSGSR"]}}, {"location": "[905511:908532](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.21.3"], "codon_start": ["1"], "gene": ["hsdR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A801"], "locus_tag": ["MAAAAKME_09770"], "product": ["Type-1 restriction enzyme R protein"], "transl_table": ["11"], "translation": ["MTLESQLEDDLIAQLTQDVHQWKFRYDLRTVDQLWDNFFRILESNNKDQLNDHPLTPNEKMTVRTAIVKPTFYRATEFMVGANRQVRYHLRREDSSIPDADLLILDNTNIAGGNSVYEVVHQVQLQKKTALNRDRRFDVSLLINGLPVIHIELKAPNVPYRKAFNQIQKYIDEGQFTDIYSFVEMFVVTNGTQTRYISAGQNLNAKFLTAWVDKNNKRVDNYLSFAEEVLSIPAAHHMIADYVVLDSENKSVILLRPYQIHAIQAIFKASRESKSGYIWHTTGSGKTLTSYKVARNLLQIPSIDKSIFLIDRKDLDMQTTTAFKIYANNDTISVNETNSSYDLADQLTDGDRTVVVTTRQKMQNMFKRIDELDQLPKRYENLKNMRLAFIVDECHRTITPSQKREIDKFFNRKPLWYGFTGTPIFNENARAKNGQDARTTEELYGPVLHKYTIGDAIRDKMVLGFSIDNQGGSNEDGNEEDTKKMDKIYRSKAHMHSVATAVIKAAYRKQGLISGKKYSAILTTSSIEKAQKYYRIFKKIIDGEDEEFKIPERIKKVAPDFPKIAITYSVSENEDDSESVQDEMKQSLADYNAVYGTNFSMAELDQYNQNVNARLARKKAQYQADNQRLDLVIVVNRLLTGFDSPSLSTLYIDRPPMSPQDMIQAFSRTNRIFDKDKTWGQIVTYQYPKTFSEKIDDAIVLYSNGGEKYAVAPSWEESKQSYVSARSKIDMYSFDADGPSIYDASKEEKKKFVKAFQEFDKALAAIKTYDELDTEEGLMQLGVSDITPDDWEAMRGVYEDILDDLRKDPDEDPDHNDDIDDEYELESFGQKEIDERYIMNLIQAFLPESSDNQEKASGNEISPETVKEINGYIDELAKTNELLAEIMRKLWQQILQDPAKYAGKQVDELLESLIDQELQSIMREFADKYKVDYDQFRYVMANYDPKLKGNKQKGMNDLLHKERFVDYLNDNPDSDLNKPYRWKSEVREQAKQYYVDKIGPLINREA"]}}, {"location": "[908545:910144](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.297"], "codon_start": ["1"], "gene": ["prmC_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02126"], "locus_tag": ["MAAAAKME_09780"], "product": ["Release factor glutamine methyltransferase"], "transl_table": ["11"], "translation": ["MAEENSTVSLQSGLFAAADVLRSKMDANEYKKYILGIVFYKYLSDQQLYKLAEDAGKDDVTLDVAQETYEDNLEEGDLLEEVKSELGYMIGPEYTYTKILANANNGSFQLNQLKDAFTQLESQGNSFEGLFEDFDLYSRQLGQNLQKQTDTIVGVIKAIGKLELVNTPGDTLGDAYEYLISQFASESGKKAGEFYTPQEVSELLARLTLVGKDYSNGMTVYDPAMGSGSLLLNFKKYVPNSSRITYYGQEINTSTFNLARMNMILHRVDLANQKLRNGDTLDEDWPAEEITNFDSVVMNPPYSQKWKADKGFLDDPRFSKYGVLPPKSKADYAFLLHGFYHLKHSGAMAIVLPHGILFRGAAEGKIRQKLLEEGAIDAVIGLPANLFHSTSIPTTIVVLKKDKQDRSVLFIDASKEFEKVKTQNKLRQEDIDKILKTYEERPADVEKYAHLASFDEIKENDFNLNIPRYVDTFEPEPEIDLRDVAKELRDIDQQINENEKELVGMLKELTSSDDDIMAGLQSIIEDFEEEIR"]}}, {"location": "[910143:911379](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDEKKAPKLRFKGFTDDWEQCKLGDVFSFLKNSTLSRSELNYESGKFKYIHYGDILTKFGDITDTRNFSVPFVTTPEKVIRLEKYFLQNGDVVIADTAEDSMVGKVTEIQNPDPFPTVSGLHTIPIRPNKEFAAGFLGHYMNAPFYHDQLFKLMQGVKVLSLSKSAVIQTKINSPSYCEQRLISRMINLIDGTITLHEEKKRQLERLKSALLQKMFADKSGYPPVRFEGFSDKWEQVKYGEIFQRRSKMGVSTPTLPSVEYDDINPGMGTLNKEPKSKGISKRGIYFNPGDVLFGKLRPYLKNWLFACFEGVAVGDFWVLTSSKIDHGFTYSLIQTPGFQYIANLSSGSKMPRSDWGLVSNARTFIPINHLEQERISSVLFGLDHAITLYEHKLEILNKIKSFLLQNMFI"]}}, {"location": "[911417:912335](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerC_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01808"], "locus_tag": ["MAAAAKME_09800"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MRKKQILLHDYFAQWIEVYKEGAVRERTLDKYWLSHRHLQEIAPNLKLVDTTRLEYQQILNTFAKTHEKATVMDFHHQLKAMLLDAYDEGYIHKDPTRKIVVKGKEPSEKKAKYLNEFELKLLLRHLDLSTFPNFDWMILLIAKTGLRFSEALGLTKEDIDLEQQTINVDKTWDYKSYTGSFKQTKNVSSVRKVPIDWKLAMQLNQVIQDLPNGEPIFAQKRVFNSTVNNFLKKHCEELNIPVISVHGLRHTHASLLLFAGVSIASVAKRLGHADMTTTQQTYLHIIQELENKDNTKIMQHLAAL"]}}, {"location": "[912376:913540](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGDVYGHLYSGNTPSRKKSANFGGDTPWIRTADLNNGLIKSATEFLTYEGIKQLKILPENTIVLAMYGGFNQIGRTGILGFPATINQALVALTPHKNINQFFAQSYLNRHIIDWRRVAASSRKDPNITKEDVEKSEFSFGSLEEQNRISKLISRLDHTITLHEEKKRQLERLKSALLQKMFADESGYPVVRFEGFSDEWEERKLGDIAPLRGGFAFKSSKFRNTGVPIVRISNILSSGEVGGDFAYYDEQDKDDKYILPDKSAVLAMSGATTGKVAILSQTDYDKVYQNQRVGYFQPVDYIDYGFISTIVRSELFMMQLESVLVSGAQPNVSSEEIDSFNFMIPILVQEQQKIGQFFKQLDDTIALHQQKINNINSVKKSLLQKMFI"]}}, {"location": "[913563:914127](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKAFHREYPNCKIFLEGFDHNQLKHHLIDHDSDVIFTTHDDITDLAEVKYYDLFCGHFVALVPTDHHLSYREELDLDDLAGEKILLMDNNWCPPEQLKLQETIRKKVDDLDISYVNDVEIVSLMVKAGLGITVMPSFVAIEKADVIKAVKLNYPAPLDYGLVCQKDEADPLVLAFCQVMQEQAEGM"]}}, {"location": "[914553:914826](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQNPHINWLRLTILLAERIVNGHLKDLTSDQRADCFVFDDSLYSRTGYKKTELAAKVFDHVSMTYRKGFRMMTMGWYAFYVTISSLYLTR"]}}, {"location": "[914822:914918](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNCTILKLKYEDGQFTLQDHFEPDFSELDH"]}}, {"location": "[915071:915773](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDZ5"], "locus_tag": ["MAAAAKME_09850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKYELSGGNTCPLATVTLDKGESIKVENGAMVYMKDVTIAGKMNSSKKGLGGLLGAIGRSLTSGESMFITQATGDADGGQIGVAPAIPGEIVKLSVGKQQYCLNTGAFLASDDSVSYKMRSQKLSKAAFGGTGGFFVMETEGEGDMLVNAFGDLVELTVTSDKPLSIDNEHVIAWDANLDYDIKVASGIFGFTSGEGLVNHFTGDGKVLIQTRNLHSLAEALQPFIVEKNSNS"]}}, {"location": "[915836:917459](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_8"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_09860"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MQKIKKFTLAAVSVSAAFLLAACGNSNSQPSSGKTSLNLMETDVVSSLDTSVTVSFPQWDTLVQTMAGLYRSDKNDQPVPAVATSYHKSSDGKTYTFNLRHNAKWSNGDTVTAKDFVTAWRKGVSPKAMSGYNYIFSNIKNADQISQGKKAVSSLGVKAVGKYKLVVQLENPEPTFIDKMVIPAFYPQNTRLVKKYGAKYGTAAKYTAFDGAFKVTKWTNTSEKWTAVKNPYYYAKSAVKLQKLNYQVVKDSNTAHQLFQQGSLDDAVVSGTTAQGLQNNKNLYHLYRSGNNFVKLNMAKGAVLANKQLRQALYLAVNRTQLSKKVLADGSKPSYTFSAPNAAKDPASGKDFATAAQPKETYNVAKAKKLWQAGLKQLGKSKLDLTLVASDITTDKNVSEFLQSQLESKLPGLKVTVKNLPSKSAYNLAANGKFDLYLSFWINDYADPYSELQTLEMTNSHNYGKYTSVAYNNELKQARKNAATRSVYFNHLLKAQEQMNQDYPVLPLYTMVEDHLVNANLKGVLWHKVGMVDYTQAYFK"]}}, {"location": "[917543:917648](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFAMQENQTMCVCCMSLMSYDCFVLPKLDLAQTK"]}}, {"location": "[917975:918488](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_09880"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMKAFNKLREYYGSKWNQIFKSITTDNGSEFADLFDLEQVSKTLVYLRSPLYIL"]}}, {"location": "[918503:918815](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_09890"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHG"]}}, {"location": "[919185:919695](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.163"], "codon_start": ["1"], "gene": ["COQ5_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01813"], "locus_tag": ["MAAAAKME_09900"], "product": ["2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial"], "transl_table": ["11"], "translation": ["MHSPGLYSDQQLESERLVAEREGYDIDIVKADMTQPLPFADESFDMIIQSVANSYVEKVKPIWKECYRVLKKGGVLLVGLDNGINYLFDSEDEKYVVNSLPFNPLKNPDQMQQLEKDDFGVQFSHTLEEQIGGQLEAGFTLTNLYEDTNGEGRLHELNIPTFIATRSVK"]}}, {"location": "[919756:919981](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_09910"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKWSDLWPMFGMDRLMQGRTAFVIAHSLSTIRDADSIIVLKDGDIVEVGNHDSFMAKKAFYADLYQSQFEHGEE"]}}, {"location": "[920096:921242](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_09920"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MEIALNDGDLKRFIDHITSQFNIEDHPILIDKYLAGKECEVDAICDDEGILIPGIMEHVERAGVHSGDSISIYPPQKISQEMKERIVEYSKRLAKALKVKGLMNIQFIVYENKVYVIEVNPRSSRTIPYISKVTGIPLVDVATNVIIGKSIKEQGYDYGLAPEKKTVAVKMPVFSFEKITGAEIALGPEMKSTGEVLGISEDVEEAMYKAFMGTGLDLPKHKKVICTVKDSAKAEFLPIAKEYHDFGYDLYATQGTYDFLQSHGIPARLVNRINDKENTIFDLILTETVDLVIDIPTRNNNLKDGFLIRRFAVEAGVPIYTSLDTARALIYALEAKHDNKLSLVDITKLYKLYSSILNSFKRQHLLAFFFEKVSRFPLVIT"]}}, {"location": "[921435:922749](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_09930"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MIEQSIAGWKEVEYEVMRDGAGNCITVCNMENMDPVGVHTGDSIVVAPSQTLSDKDYQMLRSSALNIITALNIKGGCNVQFALNPDSFEYCVIEVNPRVSRSSALASKATGYPIAKLATKIALGYNLDEIVNAVTGKTYASYEPTLDYIVCKIPKWPFDKFYDASRKLGTQMKATGEVMAICNNFEGAFMKALRSLEQDSYYLYNEEIAQLSADDLRKDLRKIDDKRAFRIAEALRKGVSIREIHAITKIDVWFIDKIKHLVEIEDRLKSEELTPDLLKLAKHCEFPDRVIASLTGKTADEVYYLRKGLKITAAFKTVDTCAAEFDAETPYFYSVYGGEHEIQPDRSKKKVIVFGSGPIRIGQGIEFDYCCVHSVWTLKEAGYETIIVNNNPETVSTDFDIADRLYFEPLTAEDVQSSQTGPSSNSADKPRLSSPRT"]}}, {"location": "[922792:923053](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carB_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63740"], "locus_tag": ["MAAAAKME_09940"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPKRDDIKKVLVIGSGPIIIGQAAEFDYAGTQACRALREEGIEVVLINSNPATIMTDGDMADHVYIEPLTVPVVKQLIEKEKPRTA"]}}, {"location": "[923045:924122](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_09950"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MKARLILEDGHVFEGESFGAVHDVISEFVFNTAMTGYVEVLTDPSYAGQSVVMTYPLIGNYGVPLDDQEAAHPFVEAFVVSELSRLGSNFRMNMSLNDYMIENNIPGIQGVDTRAITRILRKEGCMNGMITTKDYEVSEVIDQIKAFKIQGVVEKCSCLEPYHVGQGDYEVALYDFGAKRNIARELAKRGCHITVLPADTPAQYVIDHNFDGIMLSNGPGDPSECTEIIDQLKILASSGIPIFAICLGHQLLALAHGFETEKMVYGHHDSNHPVKDLTTGRVYISTQNHNYVIKEDTIDPKQAKVWFKNVNDKTIEGLEYLKENIKSVQFHPEACGGPHDTEYLFDSFIEMMGEHKNA"]}}, {"location": "[924560:924797](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cph2_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q55434"], "locus_tag": ["MAAAAKME_09960"], "product": ["Phytochrome-like protein cph2"], "transl_table": ["11"], "translation": ["MQAAQESVTYVFCDVNGLHETNSKFGHEAGDRMLIALASELAKSFGQDMSFRFGGDEFLAIALDERLDKVQAKRYFLT"]}}, {"location": "[924994:926281](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISELFVQQLYSVIDMAIIGRYLGARELGAVGNAANIIMLFLVVSGGFEMAVDVMVWLLGASKNKEKAAMARDTLFLSAISGLVLVVIAWISLPALYKAVSLPENMMGDALLYGRVYLFALPIIYIYDVGRTILISNERAKISFYLLATSSILNLLLNLLFILVLQLGVLGSALGTVLAQGITMLVTLYLLAKMDRQEEEPVSLKPDLSWTKIKSILHIALPTIFQQFVITFGATLVQAWVNPFGQEAILGYVAIVKVMNLARIVLVGFAQTLTLMTAQLLAVKTYSAVKAVYRYCSNVSLIYWLVSSALSVIFCQLLAGMFFDPGQNQAAYSFFRVYLYAFVGIQLFSIFKFLNEGLLRSMVLMKEYLYCNLGELALKLAATGLLLTLLQTNAFWSAELGARIICFLGSTILVIKEMQALEAIEKAG"]}}, {"location": "[926374:926806](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEELIKTGDFAKMCAVTKKALYVYEAKGLLKPAVVKDNGYRYYRLEQVDQVATIRLLEKLGSSLQEVGDFFALKDLNERQKYLGKQQEAVEREMAELGKIKSSLEFFDQRISDLKQTGLKKWRLRLARKNTWKSVLLGMVFR"]}}, {"location": "[927554:928040](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_09990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVHRTWDVNSQIKISMFDDRIEIVSPGGLSKEEYLLGQISILRNPILANLFYRLGLIEQFGMGIRRIISSYQGSVIQPKFKIFENSIVIILPLFQSVSVNLSEDEGKIYQAVQSGNETTSKINEVVGFGKTKSLRLINSLVKKGYLIKVGEGRGTKYMLPK"]}}, {"location": "[928449:929016](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YR40"], "locus_tag": ["MAAAAKME_10000"], "product": ["Tyrosine recombinase XerD"], "transl_table": ["11"], "translation": ["MKRALQFGTGTVTGQNRNGLRNAMIFVFGINTGLRISDIVKAKVSDIEDGEWYNLVETKTHKNRHAYIGNISQDLENYIDQMQLKPSDWLFPSRKGEGHIEGKSFYKDLKRAARQCEIDPSTVGTHTLRKTFGYHYIKSATTPAGDPDPRALYKLQKMLNHSSPTTTLRYIGLEDESMEEDLKSFRLG"]}}, {"location": "[929207:929555](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0454"], "gene": ["yjaB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P09163"], "locus_tag": ["MAAAAKME_10010"], "product": ["Peptidyl-lysine N-acetyltransferase YjaB"], "transl_table": ["11"], "translation": ["MEELTTIINDDQKAVFVAVDEDDQVLGYAFTQLQEQPFSTNMVQFKSLFIDDLCIDSTQRSQGVGRALLDYVKAEAKRLGYYEVTLNVWEGNDSAINFYKKNGLKVKETNMEFIL"]}}, {"location": "[930043:930298](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINDRENKAIKDFYSSPVSRRQVARGYIVTGFIIKHHHVHFYLNFWGNLPWSGRRGSTGYRDFTKAICCNCLIILCIIGDCFFT"]}}, {"location": "[930282:930585](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLYIISFLKTNSSYSAASTIVGTLIGFLVGAYIPIGSLPDNVQWLVKYFPCAHSAVLYRQLLMKPATKANFANQPASVLKEIREMFGIVFVYNGHIAPA"]}}, {"location": "[931028:931355](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMIMWPVAIILEMFVFEKPVVYLTQRLITPETPILLIILIRCSITICLMCPTMSLIATALFKNFQAAGFIGTWLQTAVINFPMAIGWQIFLCGPAVRFLFRTIFRKDN"]}}, {"location": "[931453:931888](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVCLENEALFDEVESELKKHASIQDFEEKYGKITGRMMITETEIPEELGIKINDTDVHSFKATFDFYNTAIGLALNVKTREAATKFWLTPQDDRNDVPTDSWFEFFAMILMEALDEGMDSIPTFSFVNDSSDLTISGLGLLEKK"]}}, {"location": "[931900:932299](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.20.4.4"], "codon_start": ["1"], "gene": ["arsC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A006"], "locus_tag": ["MAAAAKME_10060"], "product": ["Arsenate reductase"], "transl_table": ["11"], "translation": ["MTKAKVAFICTHNSCRSQIAEALGKKLAGDVFESYSAGTDLKDQVNPDAVRLIKEHYGIDMLANGQKPKTLVDLPAVDYVITMGCGVRCPYLPAKKRVDWGLEDPTGQDDETFMQVIKEIEDKVLKMKQELS"]}}, {"location": "[932530:932839](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEPVLADIPQIESWLLETDGEDIVGKSRQKHLEEVEVGQLLSLQLNPPYEQITVCPLEGDDLGKLNHPLQGQNPVYRPEKPRKLKTRQPLKQATAPVAFFV"]}}, {"location": "[933000:933753](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["yxdL_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42423"], "locus_tag": ["MAAAAKME_10080"], "product": ["ABC transporter ATP-binding protein YxdL"], "transl_table": ["11"], "translation": ["MEKVMTVNNVTKTYGKKGEKQFQALKGVSLSVAKGEFVAIMGTSGSGKTTLLNIMSTLDKPSSGEVTINGKNVAKLKKNQMADFRAKEIGFIFQDFNLLDNLTARENIALPLSLQGVKSSEIDSKVDKIAAKLNISEVLEKYPAAISGGQKQRVAAARALVHEPAILMADEPTGALDSKSSRALLDTMELLNEKDQVSILMVTHDPFSASFADRILFIRDGLIDEEIKRGDLKRQDFYKKLISQLSENTD"]}}, {"location": "[933775:935650](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yxdM_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42424"], "locus_tag": ["MAAAAKME_10090"], "product": ["ABC transporter permease protein YxdM"], "transl_table": ["11"], "translation": ["MIFKLSMTGLKSRLKDYLVLFSGLSAASMTFYMFLTLAANQSFLKSSVAGRLTMGATKFIFSFGIVLLAILTLVYLAYANSFLLSMRKRDYGMYMMLGAKSGKIGQLIFAETLVTGLLATGIGIILGVGLTELVSSLMVKQLGLTLAHFNPLYLPAVLWTLLFFVALFFLAASWNAVKLTKTTLINLLKEDQKPSKLKSRPVLRTIQAIAGVLLLATGYWAMWHVATLQLKAIPIALVTIVLGSFLIFDAFFVAVIDFLRKRHSFLYKGMRPYTLGQLKFRLHGYTRILSAISIMLALALGAITVGINFNNLKNAMTDVMYYDIVLVGKQKKLADKVEKIGTEEEVTYSYKADEKNGILYVKKSEIDQTPLKIQMYNAASSDKKKAIDKEGRIYHTVEVTSKTLTGKQTSATVRNSAQAASLFPEDSSKGFVALSDAAFAKKKLTTKVITFYKVKDFAKNNKKLLKLTEQEMQLFSKDSMAYGYLEFTKPFLYQQIAAMCSGFEFMGLFLGLSFLMMLASTLMFKILSAAASDKLRYKMLYKLGARNSVLKAAIRKEIAILFVAPAVLGSLDVLFGLKIFTILLPDPYYKIWIPFLAFFLLYLVYYLLTVKLYQGIVLEETKQD"]}}, {"location": "[935712:935859](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKAVPMLEINKTDSERRELLRPFEITPTDGFVYDLRQTPIFQKAFTF"]}}, {"location": "[937082:938552](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "gene": ["fccA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C278"], "locus_tag": ["MAAAAKME_10110"], "product": ["Fumarate reductase flavoprotein subunit"], "transl_table": ["11"], "translation": ["MNFDIVVVGAGASGISAALTASECGAKVALLEKGDKFGGAGMFGAQGLFAVESRAQKEAGVKYSLKDAYEEIINYTHHSSNALMVKAILEESAATIDWMAESGLETELVTNTQEVHQEHPRTYHQFIDKFNGFKRVMNNFLENGGVLMTETSAEKIVQEQGKVTAVKANRKGEEITLETKAVILADGGFVGNKDEIKRTLAIDPDDLYSMGERKATGDGLQMLKEAGGVSDYKRIFENHAATVYSKTDPKWHNASLFDLTNIPLLWVNREGKRFTNEDVVYDFALWGDSVYQIGGYYYFLFDQATVDYLRQQALDWTSSFERTFRLLDKKLMTYQVGPYPQLDQDLNEGISQGAVFKADNIQKLAEKITVDPANLTATVNRYNELVVEGKDMDLYKDDRFMTLSVKEGPFYAVRANSTTLGTVGGALVNEHFEALNVKRQVIDGIYAVGNDASSLYDSSYPTIEGLSNAFAWNSGRIAGRYASAYAAKN"]}}, {"location": "[939291:939450](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQISQFTMLNLMNVHLKWLDKRIATTWVSSRQQNSKNIGLKLVFLNAIWQN"]}}, {"location": "[939449:939626](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEVAEALTKLKFLVSHDRFKLVARQGTMKVPVSRMLAKTIIEQLSSEDFVKHSASSLW"]}}, {"location": "[940118:940247](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSPKAIFKATLDQPAIPIDTILVNDERYCVNVGCFGLDALIA"]}}, {"location": "[940743:941301](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1670"], "gene": ["ydaF_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96579"], "locus_tag": ["MAAAAKME_10150"], "product": ["Putative ribosomal N-acetyltransferase YdaF"], "transl_table": ["11"], "translation": ["MFSYKINDELELAVPRLTDGEALYDLIDRNRDNLSYYLPWVDHVHDVQAETDAIRRNLVRFAEGKALDLHIWYHGRLAGKVSLNSIDAMYSEADIGYFLGKEFRGRGIMTLATRAIIDIAFEEYGLHRIMLQCAVDNLPSNNVAKRLGMRFEGCHKGRLILRDGYHDSNEYAVLAEEWPDVQKKY"]}}, {"location": "[941526:942075](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITSAKAVNSALVKLIFVLAFAIILAPKAKTTTASDADKPFYKNAMVNTYVYDEKGKRTKDKKILAGKAVGCYSMINYVGDKPYIMIGQNKYVAYMNVVGLDCQLNHNSYIYSSSGKRIKNSGVLLKNGSVTVYGGKKKINGSKYWAIGVGLYVKASNVETPKGEVTSDPNTQNQTTEPQTS"]}}, {"location": "[942085:942655](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0436"], "gene": ["dapX_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16524"], "locus_tag": ["MAAAAKME_10170"], "product": ["putative N-acetyl-LL-diaminopimelate aminotransferase"], "transl_table": ["11"], "translation": ["MLAICDEIYSELTYDQEHFSLATLLPGQVILISGLSKSHAMTGYRLGYIAAPASLLPNVAKAHSFMVTCVDNIAQDAAIEALTKGLDDPKEFKAAYQRRRDFMVDNLTKLGFEMAVPQGAFYIFAKIPEKFGSGDFAFAKDVAKKARVGLIPGSVFGKGSAGYVRFSYAEADDKLTEVVKRLGEYVAQL"]}}, {"location": "[942753:943341](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.2.1.8"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6I1"], "locus_tag": ["MAAAAKME_10180"], "product": ["Putative peptidyl-prolyl cis-trans isomerase"], "transl_table": ["11"], "translation": ["MSEYPQLNLDQAKGPKATIKTNHGDIVIQLFPEEAPMTVENFVRLAQKGYYDGVTFHRVISDFMIQGGDPEGTGAGGQSIWGHNFEDEFSNELFNLRGALSMANAGPNTNGSQFFIVQNKNMPKRFIQQLRDAQYPEDVVKAYKQGGTPWLDHRHTVFGHVTEGMDVVDEIAKVAKDGNDKPLEDVVITTVEIAD"]}}, {"location": "[943372:943909](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLKRVWLVKLIFVLAFAIILAPKAKTTTASDADKPFYKNAMVNTYVYDEKGKRTKDKKILAGKAVGCYSMINYVGDKPYIMIGQNKYVAYMNVVGLDCQLNHNSYIYSSSGKRIKNSGVLLKNGSVTVYGGKKKINGSKYWAIGVGLYVKASNVETPKGEVTSDPNTQNQTTEPQTS"]}}, {"location": "[944134:944692](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1670"], "gene": ["ydaF_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96579"], "locus_tag": ["MAAAAKME_10200"], "product": ["Putative ribosomal N-acetyltransferase YdaF"], "transl_table": ["11"], "translation": ["MFSYKINDELELAVPRLTDGEALYDLIDRNRDNLSYYLPWVDHVHDVQAETDAIRRNLVRFAEGKALDLHIWYHGRLAGKVSLNSIDAMYSEADIGYFLGKEFRGRGIMTLATRAIIDIAFEEYGLHRIMLQCAVDNLPSNNVAKRLGMRFEGCHKGRLILRDGYHDSNEYAVLAEEWPDVQKKY"]}}, {"location": "[945188:945317](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSPKAIFKATLDQPAIPIDTILVNDERYCVNVGCFGLDALIA"]}}, {"location": "[945809:945986](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEVAEALTKLKFLVSHDRFKLVARQGTMKVPVSRMLAKTIIEQLSSEDFVKHSASSLW"]}}, {"location": "[945985:946144](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQISQFTMLNLMNVHLKWLDKRIATTWVSSRQQNSKNIGLKLVFLNAIWQN"]}}, {"location": "[946883:948353](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.5.4"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "gene": ["fccA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C278"], "locus_tag": ["MAAAAKME_10240"], "product": ["Fumarate reductase flavoprotein subunit"], "transl_table": ["11"], "translation": ["MNFDIVVVGAGASGISAALTASECGAKVALLEKGDKFGGAGMFGAQGLFAVESRAQKEAGVKYSLKDAYEEIINYTHHSSNALMVKAILEESAATIDWMAESGLETELVTNTQEVHQEHPRTYHQFIDKFNGFKRVMNNFLENGGVLMTETSAEKIVQEQGKVTAVKANRKGEEITLETKAVILADGGFVGNKDEIKRTLAIDPDDLYSMGERKATGDGLQMLKEAGGVSDYKRIFENHAATVYSKTDPKWHNASLFDLTNIPLLWVNREGKRFTNEDVVYDFALWGDSVYQIGGYYYFLFDQATVDYLRQQALDWTSSFERTFRLLDKKLMTYQVGPYPQLDQDLNEGISQGAVFKADNIQKLAEKITVDPANLTATVNRYNELVVEGKDMDLYKDDRFMTLSVKEGPFYAVRANSTTLGTVGGALVNEHFEALNVKRQVIDGIYAVGNDASSLYDSSYPTIEGLSNAFAWNSGRIAGRYASAYAAKN"]}}, {"location": "[949576:949723](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKAVPMLEINKTDSERRELLRPFEITPTDGFVYDLRQTPIFQKAFTF"]}}, {"location": "[949785:951660](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yxdM_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42424"], "locus_tag": ["MAAAAKME_10260"], "product": ["ABC transporter permease protein YxdM"], "transl_table": ["11"], "translation": ["MIFKLSMTGLKSRLKDYLVLFSGLSAASMTFYMFLTLAANQSFLKSSVAGRLTMGATKFIFSFGIVLLAILTLVYLAYANSFLLSMRKRDYGMYMMLGAKSGKIGQLIFAETLVTGLLATGIGIILGVGLTELVSSLMVKQLGLTLAHFNPLYLPAVLWTLLFFVALFFLAASWNAVKLTKTTLINLLKEDQKPSKLKSRPVLRTIQAIAGVLLLATGYWAMWHVATLQLKAIPIALVTIVLGSFLIFDAFFVAVIDFLRKRHSFLYKGMRPYTLGQLKFRLHGYTRILSAISIMLALALGAITVGINFNNLKNAMTDVMYYDIVLVGKQKKLADKVEKIGTEEEVTYSYKADEKNGILYVKKSEIDQTPLKIQMYNAASSDKKKAIDKEGRIYHTVEVTSKTLTGKQTSATVRNSAQAASLFPEDSSKGFVALSDAAFAKKKLTTKVITFYKVKDFAKNNKKLLKLTEQEMQLFSKDSMAYGYLEFTKPFLYQQIAAMCSGFEFMGLFLGLSFLMMLASTLMFKILSAAASDKLRYKMLYKLGARNSVLKAAIRKEIAILFVAPAVLGSLDVLFGLKIFTILLPDPYYKIWIPFLAFFLLYLVYYLLTVKLYQGIVLEETKQD"]}}, {"location": "[951682:952435](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["yxdL_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42423"], "locus_tag": ["MAAAAKME_10270"], "product": ["ABC transporter ATP-binding protein YxdL"], "transl_table": ["11"], "translation": ["MEKVMTVNNVTKTYGKKGEKQFQALKGVSLSVAKGEFVAIMGTSGSGKTTLLNIMSTLDKPSSGEVTINGKNVAKLKKNQMADFRAKEIGFIFQDFNLLDNLTARENIALPLSLQGVKSSEIDSKVDKIAAKLNISEVLEKYPAAISGGQKQRVAAARALVHEPAILMADEPTGALDSKSSRALLDTMELLNEKDQVSILMVTHDPFSASFADRILFIRDGLIDEEIKRGDLKRQDFYKKLISQLSENTD"]}}, {"location": "[952596:952905](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEPVLADIPQIESWLLETDGEDIVGKSRQKHLEEVEVGQLLSLQLNPPYEQITVCPLEGDDLGKLNHPLQGQNPVYRPEKPRKLKTRQPLKQATAPVAFFV"]}}, {"location": "[953136:953535](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.20.4.4"], "codon_start": ["1"], "gene": ["arsC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A006"], "locus_tag": ["MAAAAKME_10290"], "product": ["Arsenate reductase"], "transl_table": ["11"], "translation": ["MTKAKVAFICTHNSCRSQIAEALGKKLAGDVFESYSAGTDLKDQVNPDAVRLIKEHYGIDMLANGQKPKTLVDLPAVDYVITMGCGVRCPYLPAKKRVDWGLEDPTGQDDETFMQVIKEIEDKVLKMKQELS"]}}, {"location": "[953547:953982](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVCLENEALFDEVESELKKHASIQDFEEKYGKITGRMMITETEIPEELGIKINDTDVHSFKATFDFYNTAIGLALNVKTREAATKFWLTPQDDRNDVPTDSWFEFFAMILMEALDEGMDSIPTFSFVNDSSDLTISGLGLLEKK"]}}, {"location": "[954080:954407](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMIMWPVAIILEMFVFEKPVVYLTQRLITPETPILLIILIRCSITICLMCPTMSLIATALFKNFQAAGFIGTWLQTAVINFPMAIGWQIFLCGPAVRFLFRTIFRKDN"]}}, {"location": "[954850:955153](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10320"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLYIISFLKTNSSYSAASTIVGTLIGFLVGAYIPIGSLPDNVQWLVKYFPCAHSAVLYRQLLMKPATKANFANQPASVLKEIREMFGIVFVYNGHIAPA"]}}, {"location": "[955137:955392](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINDRENKAIKDFYSSPVSRRQVARGYIVTGFIIKHHHVHFYLNFWGNLPWSGRRGSTGYRDFTKAICCNCLIILCIIGDCFFT"]}}, {"location": "[955880:956228](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0454"], "gene": ["yjaB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P09163"], "locus_tag": ["MAAAAKME_10340"], "product": ["Peptidyl-lysine N-acetyltransferase YjaB"], "transl_table": ["11"], "translation": ["MEELTTIINDDQKAVFVAVDEDDQVLGYAFTQLQEQPFSTNMVQFKSLFIDDLCIDSTQRSQGVGRALLDYVKAEAKRLGYYEVTLNVWEGNDSAINFYKKNGLKVKETNMEFIL"]}}, {"location": "[956419:956986](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerD_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YR40"], "locus_tag": ["MAAAAKME_10350"], "product": ["Tyrosine recombinase XerD"], "transl_table": ["11"], "translation": ["MKRALQFGTGTVTGQNRNGLRNAMIFVFGINTGLRISDIVKAKVSDIEDGEWYNLVETKTHKNRHAYIGNISQDLENYIDQMQLKPSDWLFPSRKGEGHIEGKSFYKDLKRAARQCEIDPSTVGTHTLRKTFGYHYIKSATTPAGDPDPRALYKLQKMLNHSSPTTTLRYIGLEDESMEEDLKSFRLG"]}}, {"location": "[957395:957881](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVHRTWDVNSQIKISMFDDRIEIVSPGGLSKEEYLLGQISILRNPILANLFYRLGLIEQFGMGIRRIISSYQGSVIQPKFKIFENSIVIILPLFQSVSVNLSEDEGKIYQAVQSGNETTSKINEVVGFGKTKSLRLINSLVKKGYLIKVGEGRGTKYMLPK"]}}, {"location": "[958629:959061](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNEELIKTGDFAKMCAVTKKALYVYEAKGLLKPAVVKDNGYRYYRLEQVDQVATIRLLEKLGSSLQEVGDFFALKDLNERQKYLGKQQEAVEREMAELGKIKSSLEFFDQRISDLKQTGLKKWRLRLARKNTWKSVLLGMVFR"]}}, {"location": "[959154:960441](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MISELFVQQLYSVIDMAIIGRYLGARELGAVGNAANIIMLFLVVSGGFEMAVDVMVWLLGASKNKEKAAMARDTLFLSAISGLVLVVIAWISLPALYKAVSLPENMMGDALLYGRVYLFALPIIYIYDVGRTILISNERAKISFYLLATSSILNLLLNLLFILVLQLGVLGSALGTVLAQGITMLVTLYLLAKMDRQEEEPVSLKPDLSWTKIKSILHIALPTIFQQFVITFGATLVQAWVNPFGQEAILGYVAIVKVMNLARIVLVGFAQTLTLMTAQLLAVKTYSAVKAVYRYCSNVSLIYWLVSSALSVIFCQLLAGMFFDPGQNQAAYSFFRVYLYAFVGIQLFSIFKFLNEGLLRSMVLMKEYLYCNLGELALKLAATGLLLTLLQTNAFWSAELGARIICFLGSTILVIKEMQALEAIEKAG"]}}, {"location": "[960638:960875](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cph2_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q55434"], "locus_tag": ["MAAAAKME_10390"], "product": ["Phytochrome-like protein cph2"], "transl_table": ["11"], "translation": ["MQAAQESVTYVFCDVNGLHETNSKFGHEAGDRMLIALASELAKSFGQDMSFRFGGDEFLAIALDERLDKVQAKRYFLT"]}}, {"location": "[961313:962390](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_10400"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MKARLILEDGHVFEGESFGAVHDVISEFVFNTAMTGYVEVLTDPSYAGQSVVMTYPLIGNYGVPLDDQEAAHPFVEAFVVSELSRLGSNFRMNMSLNDYMIENNIPGIQGVDTRAITRILRKEGCMNGMITTKDYEVSEVIDQIKAFKIQGVVEKCSCLEPYHVGQGDYEVALYDFGAKRNIARELAKRGCHITVLPADTPAQYVIDHNFDGIMLSNGPGDPSECTEIIDQLKILASSGIPIFAICLGHQLLALAHGFETEKMVYGHHDSNHPVKDLTTGRVYISTQNHNYVIKEDTIDPKQAKVWFKNVNDKTIEGLEYLKENIKSVQFHPEACGGPHDTEYLFDSFIEMMGEHKNA"]}}, {"location": "[962382:962643](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carB_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63740"], "locus_tag": ["MAAAAKME_10410"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPKRDDIKKVLVIGSGPIIIGQAAEFDYAGTQACRALREEGIEVVLINSNPATIMTDGDMADHVYIEPLTVPVVKQLIEKEKPRTA"]}}, {"location": "[962686:964000](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_6"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_10420"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MIEQSIAGWKEVEYEVMRDGAGNCITVCNMENMDPVGVHTGDSIVVAPSQTLSDKDYQMLRSSALNIITALNIKGGCNVQFALNPDSFEYCVIEVNPRVSRSSALASKATGYPIAKLATKIALGYNLDEIVNAVTGKTYASYEPTLDYIVCKIPKWPFDKFYDASRKLGTQMKATGEVMAICNNFEGAFMKALRSLEQDSYYLYNEEIAQLSADDLRKDLRKIDDKRAFRIAEALRKGVSIREIHAITKIDVWFIDKIKHLVEIEDRLKSEELTPDLLKLAKHCEFPDRVIASLTGKTADEVYYLRKGLKITAAFKTVDTCAAEFDAETPYFYSVYGGEHEIQPDRSKKKVIVFGSGPIRIGQGIEFDYCCVHSVWTLKEAGYETIIVNNNPETVSTDFDIADRLYFEPLTAEDVQSSQTGPSSNSADKPRLSSPRT"]}}, {"location": "[964193:965339](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_7"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_10430"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MEIALNDGDLKRFIDHITSQFNIEDHPILIDKYLAGKECEVDAICDDEGILIPGIMEHVERAGVHSGDSISIYPPQKISQEMKERIVEYSKRLAKALKVKGLMNIQFIVYENKVYVIEVNPRSSRTIPYISKVTGIPLVDVATNVIIGKSIKEQGYDYGLAPEKKTVAVKMPVFSFEKITGAEIALGPEMKSTGEVLGISEDVEEAMYKAFMGTGLDLPKHKKVICTVKDSAKAEFLPIAKEYHDFGYDLYATQGTYDFLQSHGIPARLVNRINDKENTIFDLILTETVDLVIDIPTRNNNLKDGFLIRRFAVEAGVPIYTSLDTARALIYALEAKHDNKLSLVDITKLYKLYSSILNSFKRQHLLAFFFEKVSRFPLVIT"]}}, {"location": "[965454:965679](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_10440"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKWSDLWPMFGMDRLMQGRTAFVIAHSLSTIRDADSIIVLKDGDIVEVGNHDSFMAKKAFYADLYQSQFEHGEE"]}}, {"location": "[965740:966250](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.163"], "codon_start": ["1"], "gene": ["COQ5_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01813"], "locus_tag": ["MAAAAKME_10450"], "product": ["2-methoxy-6-polyprenyl-1,4-benzoquinol methylase, mitochondrial"], "transl_table": ["11"], "translation": ["MHSPGLYSDQQLESERLVAEREGYDIDIVKADMTQPLPFADESFDMIIQSVANSYVEKVKPIWKECYRVLKKGGVLLVGLDNGINYLFDSEDEKYVVNSLPFNPLKNPDQMQQLEKDDFGVQFSHTLEEQIGGQLEAGFTLTNLYEDTNGEGRLHELNIPTFIATRSVK"]}}, {"location": "[966389:966578](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKISLVCQSKGKYNFYDGVYFHGWLKTIMNYQDINAETIDRWVKEGWEWGKAIDHFPSKLL"]}}, {"location": "[966736:968677](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MANKENLITTNELVGEVYLDKILADYDIFFMDCLDEDNKAAYPSKFLLNDLVESSKGKLLVCYQKVHIGDEWKSRIYVMTAKSNGLTEAKLRNYPVFKRSNLTPAAAVTGKEQISDITAIKLLTMNVPFATQLNQKGKIERCNLLGDLFFYIKDINQGKDRKGGQFSRRGQVVLFHLYFDEQSKTMYIANSLFTQVKLFKEKYGEEFKDKLAERNLLTGPFYWINLDDMTIRQCRKMTDDCYLKAPLYKNEKPKAIDGAMKNFALDKNTPFDHSKYGFAYQLLSSFNSCYEGTGYVSKLSFKEVKAKTISAEETSMKLNKRVTRAVADFFKDKKVHLVDQTRKELDLAPVAEYFADKTAEATCIEQVKEGFNIVVVLPPKDYNGKDPYQRSNSKCLIQHIYQDNCLKKNGQIKGKSALDNSLKELLVKYCVVNRTVKPLQVKGMPNAEFHYWEKGTGTCWSLKFKDEETFELAKSNQLLDPLSENNPFIEHGLLWEDKKGRMTSDYELLARIDGELYGIKQSELRTMPNKSLYYKTIEDPEFRYYRNKTGLDEYMSGIVYENHWLENGRVKYNVGKIGRGMQTTIDKGSVVRIINSFSGDILEEDAEKIYRMLKMTEVTFVKYKDLTVLPYPLKLLKEAARIEIEL"]}}, {"location": "[968680:972490](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MENSQTYFPCANGSQAAIEDITGQDKSALLSILQQSTGLGKTYGTVRAIVNRAVNDQQVTFYLTPLRKDRDEVYAGCRDLLLKLGKNPEEILVNVLSEQDQVTDFFEEHVFVRQEERVIGRLDRKKLYKAWREESIPDNYPNTRHIFGLLQSILLFSDLQSEEEIEDDRKNFSQIKSMIRTDAYAIVDEEEQDLSPAERKARMKATVFRDLPWYQIMFPDYDLANKKILVMAANKFIYRYKDLAGSNKYYWRLNFNQKKPAGKEKTLVNLILDESDKIHQNWLESMLGQKQEHFDLYTLAKKINSALEPSFNKANEIILAAGDNRGRIKSASKKFHDLSNKYHLEADLVIGESLSEDELAKKFLINDGESDYLNINDQLYIEYKPDPFSLAGAKGKLFVNVLEKKKSSKQAIRLDRMLEDLNQNISSFVRNSYSMAKNVQSRIKEINRHQEANGKKKYRDEMDLEDEQRFVLRSLLGIEDKDEALVNYLLETYMRDSPQRHQTGIAANLTSDNSIFGKGFTVHILESNRNKRTNAEVSRYAQKWTPELLLATLASQWRVILVSATAETESIFSNFGLDWVYNNIPYVYHLPKKIEQLLNQENEERNKAQRDKGKINVQWIKPAPGAKLRDVFKASFPDSQLSYPEISDLISEMPSALAGIRYDFNWQYKPESNEKITQKVTIRTACYYFGRNLKLLKALAAFCQKNRERPSRVAFIAYTNRNIREAEAKWYETALKKLGYLDQDKALVCISAKDDPEKQLERVKADWAQGKLKIILTSYSTMSRAVNLQYPAKALLAKYPEDYVVLDDRFFNKDNPFVDINGCYMEQPTHLIPKNNADRDRKQFEDEFIKGYLQLIYTCDGLINLGTPGFTYADSERLLTAYYQGYPLKREKNPFYQIQARDNAYTSQIDQTSGRMVRTVVKPESMFVILDKEIASCLNRSQVDRKRTNAVMEAIMASDPGLRLLPNQTEEKELKLKKLMASNAMGYLVQVALQLVSMPDDMQQLWIKLRTFIAKHPQLDSLVEVEDGKLAKIVPNYYWDFGHPVSGYYYYVEGDYKRLIAIGEDRDDVKRQMAEAGIKPSFQPQYMDYEEYKQALERIWKQQPWLKRELERAGYDLSFKPSRYLLTPGAFNNLYKGAIGEAIGEAVMKHLGFDYHDMADLPNSEMERFDGYLKADDGRIVYVDWKNYNTDAPSGDNDQTVRWIKRKLGMVEMGKSAIIINISKWSNKQMQAIQIAGGLADKKVYLYPYLFDEKGELNQKLVRDFRKVF"]}}, {"location": "[972693:973644](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.81"], "codon_start": ["1"], "db_xref": ["COG:COG0111"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9X1C1"], "locus_tag": ["MAAAAKME_10490"], "product": ["Hydroxypyruvate reductase"], "transl_table": ["11"], "translation": ["MKIVLLEPLGISQESLDKLAEKLTKQGHEFTAYDSFSTDTEELKKRSEDADALIIANHLLPGEVIRADKNLKFISVAFVGIDHVDLEACKEKKINISNTGGYCNDAVAELAIGLTLDCLRKISAGNEAVQAGEGKGGLQGHELAGKTVGIVGTGAIGCRTAEIFKAFGCKLIGYSRSQKAAALDLGLEYKSLDEVMGEADIVSIHTPLTPETKGLIGKKEIGEMKEGAILINTARGPVVDTEALAAALKEGRIKAGLDVFDQDPPLPADYPLLGVPNLVCSPHVGFDTKESIDRRAEMAFENVTAWLNGQQIRTML"]}}, {"location": "[973921:974293](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGITQYESLILYELFTHPRLSQKELVYRSGIPKQSISKGIHNLAELGYLEISSADQDKRVKYCSLTESGLAYAREKEDEILAIEKKVIDKLGFDRAALACQILAEWSDLLSKEIANLKEKKQK"]}}, {"location": "[974292:976020](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_10510"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKILLPYFKRYKKDVFLTLITIVFSAFATLYQPRLLQQVQNELLADQQQAVIRDTAILIGLGLLSIITGVLNVYYASRITQGVVSDLREDTYAKIQTFSLANVQQFSSESLSVRLINDMQQIMNMIMTIFMQLIRMPLILIGSIIMAIVTIPRYWWAVVVLLALIMGLGVVAVKQITTMFDKFQMYMDKISGRTGEFLQGVRVVKSFNQSPQEIAKLNKDSDELNEVNIKVGYWFSTILPGAQLISYLVISLVVYLIGTSILQHPQDVSVITPYVNYVLTMLFAILLVGMAVMQISRGNVSLRRIQEIMDTQPDVVFNEKAPEDALGGSIEFDDVSFTYPDGQQPVLKHISFAVAPGQMVGIVGATGSGKSTLAQLIARLYDPTTGKIKIGGSDLRQVNENALRKTVSYVLQKAVLFSGTIADNLRQGKKDATSYELERAAQMAQASEFIQRYDETFDHEVEERSANFSGGQKQRLSIARGIIAGSPILILDDSTSALDAESEKLIQEALEKQLPDTTTIMIAEKIVSVMHADKILVLDNGRLVAEGTHEELLKTSPVYQEIYKTQKAKERKEEL"]}}, {"location": "[976019:977777](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_10520"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MSDKQKSLTYLTKYLKNYKKPILISIAFYLIATIAQVIAPSLLGQAVTDLSAFVKGQGSLGVFYQALAWMAGFYAFNSVATYIAWMMMTRFNANANNDMRKGLFGKLQRMTFRYFDTHQDGQILSLFNSDLDNIFNALNNAFFEIISQSLLFVGTIIVMFVINWKLALSVVATTPLILLLSWIIIKKARVYLDNQQDRVGELNAYINEQLNGENVIITQGLRDQSVAGFKKENAKVREAMFKGQFYSGILNPLVTGFSLLNFAIVIATGAYMIMTKQVSKAAGLGLIVTFTEYSWTYFQPLTQVTSIYSMLQLALTGARRLETVEEQEEENTVPDGKTISGVNDAVRLEDVHFGYTPDKEILHGVSIEVPKGQSVAVVGPTGSGKTTIMNLINRFYDVNSGAVTFDGTDVRDLKLENLRSNVGIVLQDSVLFSGTVADNIRYGKPDATMDEVIAAAKEAQLHDFVMTLPEQYDTPIENGQANFSTGQKQLLSIARTILVDPAFLILDEATSNVDTVTEEKIQKAMDNVIAGRTSFVIAHRLKTILNSDKIVVLKDGQVIEEGPHADLIKKRGFYYKLYTSQMAFE"]}}, {"location": "[977859:978168](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.1"], "codon_start": ["1"], "gene": ["glpE_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01009"], "locus_tag": ["MAAAAKME_10530"], "product": ["Thiosulfate sulfurtransferase GlpE"], "transl_table": ["11"], "translation": ["MGLFQANDVNAGVEEYQKTLQAKLIDVREEDEYAAGHIPASINIPLSSIEAAREEITDLDTPLFVYCRSGNRSGHAVTWLKQAGYSKVQNIGGIANYSGKTE"]}}, {"location": "[978216:978612](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "db_xref": ["COG:COG0328"], "gene": ["rnhA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A7Y4"], "locus_tag": ["MAAAAKME_10540"], "product": ["Ribonuclease HI"], "transl_table": ["11"], "translation": ["MIEHDGKQLADSAGRLGATNNEMEMTAFLESLKKLEQLGLTQQPLLFVLNSQYVIKSVSYTKDGPAWMKSWKKRDWKTANGKPVANQELWQDIDRELDKFDSSKLKFAWLRSTVSDAGSDFVDSMLIKAHG"]}}, {"location": "[978608:979271](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSDIGSGLNFNRPEWNQLLQKVEDREVNKIYVTHKDRFVRLAFDWFANFCKRHGSEIVVINNPATSPSQELVDDLVSIINLFSSRLPGLRRYKAEIKNDQELEAAEQVADTEVKQAEKAKKTYAVRKGRQPGIYYSWPEAEKQVNGFPGAEYKSFSRESDALNYLKLDPADPQNAVKQEPEYDKKDYSAVIYTGGACRRQHRHAQGRPMSKTAIRLLGPT"]}}, {"location": "[979765:980137](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "db_xref": ["COG:COG0328"], "gene": ["rnhA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A7Y4"], "locus_tag": ["MAAAAKME_10560"], "product": ["Ribonuclease HI"], "transl_table": ["11"], "translation": ["MTATGGKVGATNNQMEMTAVLESLKALEDMGLSQKKLLLSLDSDYVRKALSDSSNGTAWIKGWKERGWRKSNGEAVANPDLWKEIDKEFSKFSDLTLQHVTGHANSDGNNLADALVNEQMDKM"]}}, {"location": "[980753:980885](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVMRRFVKLLPIKAVMKIWIYWFTIQIGKFVPSLLNVDAIKI"]}}, {"location": "[981146:981413](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10580"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEIKFEEEQKRAAVYDGGKLIGQCVYEDKGDHWIITTTKVDLAYGGQGLGRKLVDTVASAAREKGARLRATCSYAAKVLTKPGYEDLR"]}}, {"location": "[981414:982134](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.18"], "codon_start": ["1"], "db_xref": ["COG:COG0546"], "gene": ["gph_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67359"], "locus_tag": ["MAAAAKME_10590"], "product": ["Phosphoglycolate phosphatase"], "transl_table": ["11"], "translation": ["MKYKAAIFDMDGTILDTSADLTSALNYAFEQTGHRHDFTVEDIKNFFGSGVVVAVTRALAYEAGSSRESLVAFGTKDERIPEAVTQAEVNRVLEVFKPYYADHCQIKTCPFPGILDLMKNLRQKGVKLAVVSNKPNEAVQVLVEELFPGSFDFALGEKSGIRRKPAPDMTSECVKVLGVPRDKCVYIGDSEIDIQTARNSEMDEIAVNWGFRSVPFLQKHGATVIVDTAEKLEEAILGE"]}}, {"location": "[983204:983675](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3279"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HDJ2"], "locus_tag": ["MAAAAKME_10600"], "product": ["putative HTH-type transcriptional regulator"], "transl_table": ["11"], "translation": ["MKVKVKLNKDQDLPLAVIYTDKMTEEVERAVAFLESSASSGPLIAQQEDRLVIIKPSDAILVRVEGGDTVIYTGKGKYFSRKRLYEVYQQLGQDFMQISKQAVVNLTCLESVEASFNGTMFLRLEHGLSDYIKEAYRITPIKKKPYYGCVLGGRIL"]}}, {"location": "[984123:984909](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["dinG_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02206"], "locus_tag": ["MAAAAKME_10610"], "product": ["3'-5' exonuclease DinG"], "transl_table": ["11"], "translation": ["MDSKLHDYTVFDLETTGKKIIQIGALKVRDDQTVAKFSTYVNPLEKINDYVSHLTGISNYQTDAAPLIDEVMPDFLDFVGDDTLVGHNILSFDCNVLADNGYPVANPKLDTLLLANSYKKRGLFADPIPNVRLSTLKEYYGININFHIAISDCITNNIVYQKLLDGDLAKATEIIDFTPKQVDSRLAGQRFVITGQFRQATRYELTSLIQSHGGKVTGSVSGVTDYLLKGELDHVTGKCKKAAEKGTAVIGYEDLMLLLQK"]}}, {"location": "[984913:985507](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVMTIILEVPLKSDNFLAKIRIPSAGKVSGNVYDLDTGEEYLLLRVESNTGSFSAVVKAEYRAILQDIAGKCFVKAQADRIKDGIKTRYGDEPDFPFKKFPDYAVFRNPQNRKWYGLLMAVLLGKLTGDEKDQQEAAVLNLKLAEGKMPALLKKADFFPAYHMNKQNWLSVLLNNDLPDEEVLAMLDESRAFTERKK"]}}, {"location": "[985520:986294](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1434"], "gene": ["ydcF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P34209"], "locus_tag": ["MAAAAKME_10630"], "product": ["Protein YdcF"], "transl_table": ["11"], "translation": ["MINDINTLADYLGPRDLPALTPADLEGKYGIPQADAFVLFGGSILPGGDVFAAAKKAEIAKKYIIVGGHGHTTDGLRAQAKAVFPDLDVDSLSEADIFAAYVQRKYQITADLLECQSTNSGNNITYLLDLLNRHNIDLSSVILCQDATMQLRLSAVLHKYRPELTIINYAAYQVHVLEKDGQLAYDKEIHGMWPMDRYISLLMGEIPRLRDNKDGYGPLGKDYIAHVDLPASVERAFSRLLKEYGGSVRQANPAYKS"]}}, {"location": "[986286:986859](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.183"], "codon_start": ["1"], "gene": ["bar"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16426"], "locus_tag": ["MAAAAKME_10640"], "product": ["Phosphinothricin N-acetyltransferase"], "transl_table": ["11"], "translation": ["MTELELRRANVGDAERLLEIYAPYVEKTAITFEDKVPSIGEFQNRILKTLRIYPYLVALKDGKIVGYAYASAFKERAAYDHSVELSIYVDANVRHQHVGRFLYDAIEDCLKKQGFLNLNACIAAPIGEDPYLDDNSIRFHEHLGYKFVGRFHQCGYKFGRWYDMVWMEKMLGEHTVPAPAIIPFPEMKND"]}}, {"location": "[987050:987641](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.59"], "codon_start": ["1"], "gene": ["thi4_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00304"], "locus_tag": ["MAAAAKME_10650"], "product": ["Thiamine thiazole synthase"], "transl_table": ["11"], "translation": ["MTEYRAKAHGFNSEITAIVEVENGEILKISAEGEVPNTVGALGVDTWLEEANAEHSVEVDAISGASVSTGALRKATQMAYAEATSGDVDAISSASIHNQPNNYPLLKEKFYEGDIEFDDEYDVIVVGAGGAGLSAAATAAENDASVLAIEKQGITGGTTSLSGGVMQAAGAGSDPTTQAQVRKSTKAAELLNRFLA"]}}, {"location": "[987711:987939](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MANHVFVQNNAAMLAVPVEERENFWHKLVKFYETGQQDDLNDFLYKTSIGIMPGGLTMEKTREIEERNRKWLGLE"]}}, {"location": "[988016:988433](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEYEYRLVDRDLAVDGVKRLLPDVVWKIANTELVEGIGLPEVQMICDGEAAEGMTVKEVITVHNLKRAMQFMLANLDRPVDLDLVKEYNRIIFESLCDKPGEIRSYPVRITGTDYKLGMPAIGKIEEVLQLAKEIDHP"]}}, {"location": "[988500:988695](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMLSEKIIDLLVCFVAFVVFAIVVSIYPEEMFALLIATVLLIGIYAVAKELVKDWLKHNHRFGV"]}}, {"location": "[988741:989587](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.16.-"], "codon_start": ["1"], "db_xref": ["COG:COG1619"], "gene": ["ykfA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34851"], "locus_tag": ["MAAAAKME_10690"], "product": ["putative murein peptide carboxypeptidase"], "transl_table": ["11"], "translation": ["MKAALVGCSNPLKAAYRPVVDQLVKILEDRGLEVVVSQFLTDDTLIGRGEKRARELESFFLDPEMGHIFDISGGDLANTVLGHLDLEQIKDSQAVFYGYSDLTTILTALAKNGNQAVNFQLSNCLVNKDLLKSGYFDRLLAGKEKNKELDELEVTFVRGSKMAGPVYGGNLRCLLKLAGTPDWPDFTGSILLLEAYRGQPELVASLLEQCRETGIFNQISGVLLGTFSELDKLKESQLPEEILLDLLPTNLPIAKTEFIGHRPDAKAIRLGQECVFKEVGV"]}}, {"location": "[989634:991059](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0144"], "gene": ["rsmF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SII2"], "locus_tag": ["MAAAAKME_10700"], "product": ["Ribosomal RNA small subunit methyltransferase F"], "transl_table": ["11"], "translation": ["MIEIPDQFKEKFTGLLGQEEAGKLLDSLAEPSKKAYRINSLKEGAVVYSQEEAVPGIPNAYYGGVSGKDPEWTAGMVYSQDPAAMFPAQAIPVKPGDKVLDLCAAPGGKSTALAQKLQGEGLLVANEISPSRAKILRENLERWGVSNAVVTNCDSFALSARFPGFFDAILVDAPCSGEGMFRKSEDAIKYWSQENVDLCADRQREILTEAVKMLKPGGYLLYSTCTFSPEEDEEIVSWLLDEYGFKLLPIAAEKAAPGRPEWGNGDASLANCARFWPQDGVGEGQFVASLQKAAGEESFAAEAGEVFSPVRKNKDKKKKGKGKNKGNRSSLERPSKEESCYISEAIAGFNWPESLASWPSQMLKSQDHVFVPALEPEQLKGIKVLNNGLELGILKKKRFEPSHQLAEVLGQVDQERVVDLTEEEYDHYLHGESLQVNSSLKGFVLVSCRGMIFSFGKLSGKGQLKNYYPKGLRQ"]}}, {"location": "[991051:992026](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRYKLFVILSTFFLFIMIGIVCSNMQSQLADQILQAQGMSMEARIVKPKKTMTIASFLKWIKKEFPKESIQMQFKSKEDKNQVLIWSQNRDLNYFPVSSGRFFSEDDFKGRVTIAAVSPSSAASQIKTQGNTYLIANGQYYSVVGSLKAVPYQSSKAYYLTTGVKQETGQSRINHFTLYVDASSQTIGKIASHLKSETYWPDFVKQGRQRRLTLLMPEALLILFLLGVGVLLMGLIAWLTWKETDLSHVKGDLLPNLLLNRSGRFIVFMVLEAFVSYFLLVWKAYYSNQSILGLLLLGTVVVELVVYVGMMVYMYRKGKQADD"]}}, {"location": "[992025:992766](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTQFIEKISALAKEFADPELDRQVQEIKMIDECVSSQRMLLFAPDRLGISDDRFAELTWELPDSQIKDLRALNNLLNNVRQYLSLEYGIWSLPNMETAQLFKNELGIETALEVMAGNAYWSKALSEAGIQVWATDSLEWSKSSKTGKKPFYPVENLPADQAVMKYATCDMILCSWAPNFGQADLELIAAKQHYAPAARLFFIGEKGVTNSPEFWTRKHFAKSSELRKINRSFKSYDFIKEKFIEVS"]}}, {"location": "[992876:993074](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRSTEETMLMDTMIANGVSNKMTEQATGLAAPKPVQKKNAAKLETRDMLLANGVDEEMADLAADL"]}}, {"location": "[993222:993834](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.19.3"], "codon_start": ["1"], "gene": ["pcp"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDD4"], "locus_tag": ["MAAAAKME_10740"], "product": ["Pyrrolidone-carboxylate peptidase"], "transl_table": ["11"], "translation": ["MTKVLVTGFNPFNHEKINPAIEAVKSLPDEIAGCEIIKLQLPTSYQKSEKKLQAAVEREEPDFVLNVGQAGGRACLTPELVAINYDDCPVADNDGEKREGQAIDPEGPAAYFTQLPVKKMVKAIKAAGIPAEVSTTAGCFVCNHVMYYAQSLRKEHPGMQAGFIHIPFLPEQVVKRPNQPSMALETIVTGLTAAIAAFLSDGD"]}}, {"location": "[993912:994665](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG2339"], "gene": ["prsW"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P50738"], "locus_tag": ["MAAAAKME_10750"], "product": ["Protease PrsW"], "transl_table": ["11"], "translation": ["MFFFFLEPVLIYNWLLILAAVIPAIFLMIKVYQSDRLEPESPYLLWKMVTGGIWSAVVAGILEWIANGVLTSYVSQKDPIYNVIMYFGIVAYAEEGAKYFFLKRRSWFSREFNCQYDGVVYAVFVALGFALWENISYVMIYGFSTALVRAVTAVPGHACFGVFMGIFYGLARGCAYLGKNIRSKFFRVLAIVVPAALHGSYDYVASLNSAEGQWIFLAFIAVLFFISFHLVNKMSKNDKYFQIDRRNYRF"]}}, {"location": "[994829:995588](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG1897"], "gene": ["metAA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PM9"], "locus_tag": ["MAAAAKME_10760"], "product": ["Homoserine O-acetyltransferase"], "transl_table": ["11"], "translation": ["MDSQRARTQNIRFLKILVVNLMPKKANTEVQLLRHLANTPLQLEVEFLYMASHKSKNTSNEYLENYYRTFAYIKDKRYDIVGWLLLAPRLVEQLPFQEVDYWSELCQLKWSKTYDYSRLHLCWGAQAGLYYHFGIDKQPLEKKLSGIYEQEVVGTSPLLRGFDDSYRCPHSRYTTIYPDQLKKCSLQILAEGPEVGVAIAASDDLRQIYNFGHLEYSRDTLSEDTIETLMPVSIRFCRLTTSRITIRRKSPA"]}}, {"location": "[995831:997262](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.1.9"], "codon_start": ["1"], "db_xref": ["COG:COG1012"], "gene": ["gapN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q3C1A6"], "locus_tag": ["MAAAAKME_10770"], "product": ["NADP-dependent glyceraldehyde-3-phosphate dehydrogenase"], "transl_table": ["11"], "translation": ["MTEHYLNYVNGEWRDSADAIEIFEPATGKSLGTVPAMSHEDVDYVMNSAKKALPAWRALSYVERAAYLQKAADILYRDAEKIGSTLSKEIAKGLKSSIGEVTRTAEIVEYTAKVGVTLDGEVMEGGNFEAASKNKLAVVRREPVGLVLAISPFNYPVNLAGSKIAPALMGGNVVAFKPPTQGSISGLLLAKAFAEAGLPAGVFNTITGRGRVIGDYIVEHPAVNFINFTGSSAVGKNIGKLAGMRPIMLELGGKDAAIVLEDADLDLTAKNIVAGAFGYSGQRCTAVKRVLVMDSVADELVEKVTALAKDLTVGIPEEDADITPLIDTKSADYVQGLIEEAAEKGAKPLFDFKREGNLIYPMVMDQVTTDMRLAWEEPFGPVLPFIRVKSADEAVMIANESEYGLQSSVFSRNFEKAFAIAGKLEVGTVHINNKTQRGPDNFPFLGVKSSGAGVQGVKYSIQAMTRVKSVVFNIED"]}}, {"location": "[997362:998883](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSELINTISSHQGQIWQALGEHLLLSMEALLLSCLIAIPLGMLLAHSKRAGEVVFQITSIIQTIPSLALLGLLIPFVGIGMTPALIALTAYGIMPIYQNTYSALRNIDPNLEEAADAFGLSRWKKLSRLEFPMALPMTLSGVSISLVMIIGTATLAAMIGAGGLGTYIMIGIQQNNNTYLLIGAGLSAVLTLAMSGLLKFMASSKKHFRVTAAVLAIFAIGLGVSQLPKALAPKEEKVVIAGKLGSEPDILINMYKYLIERNNPHVKVTLKNNFGGTSFLFNALKTGKIDIYPEFTGTVLQGLAKKKVATLHDPAKTYQLAKKLMAEEDQLTYLPAMNYQNGYDLAVTKAFAKKNNIKSLSDLAKVDASLTAAFDPDFANQQDGYLGLKKEYGLNFKVKTMEPALRYKAIASGKVAVVDGYTTDPQIKQYDLVALKDDKSFFPPYQGAPLLKTSFAKKHPGVVKSLNKLAGKITEAEMQEMNYKVTVKHESASKVARQYLKQHGLL"]}}, {"location": "[998886:999810](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.9"], "codon_start": ["1"], "gene": ["gbuA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9RR46"], "locus_tag": ["MAAAAKME_10790"], "product": ["Glycine betaine/carnitine transport ATP-binding protein GbuA"], "transl_table": ["11"], "translation": ["MIEYRDVGMTYGDNVILKQINLTINDGELFVLVGPSGSGKTTLLRMINRLTEPTHGDVYLDGKRVKDHDLRQLRLHMGYVPQTSSLFPNLTVGDNITIQLEEAGVKKVERKKRALALLAQVGLEGDKYISRLPKELSGGQQQRVAIARAMASQPKLILMDESFSALDPVLRRQQQELLLDLHRQSKTTVVFVTHDMQEALRLGDRIGVIQDSCLMQVGSPEEIVQKPANSFVADFFKSARPRLGTMLELLASPYVNRITETDLPEVEKVEEVAGLAEKAGFLQFAYQGAGYQIKSSDLLHYFGKWGD"]}}, {"location": "[1000140:1000602](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1959"], "gene": ["ywnA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71036"], "locus_tag": ["MAAAAKME_10800"], "product": ["Putative HTH-type transcriptional regulator YwnA"], "transl_table": ["11"], "translation": ["MKVSTRFSDSIHLLAFLVIYKGKTTLSSNIIASSLNTSPVVVRRLMSNLRDAGFIKTTHGSPDPELLREPKDISLLEIYLATEGKSPLFAIDHETNPDCIVGGNIQPTLTDYFSHAETAAEAVLGKISLQDVIDTILVKEAAKKQAENSKDKE"]}}, {"location": "[1000890:1001475](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.6.5.2"], "codon_start": ["1"], "db_xref": ["COG:COG0702"], "gene": ["qorB_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39315"], "locus_tag": ["MAAAAKME_10810"], "product": ["Quinone oxidoreductase 2"], "transl_table": ["11"], "translation": ["MKEAGVKHLVDVSFMADQANNPFQMAAGYYAYLPARLASSKLSYAVVKNSLYADPLVPYLPELIARGNVIYPVGDQAMSFISRKDSAEAIANVAVRPYLRDKGQIYLLTQEKNYNMVELSRIMTEVTGEKIGYQPVSLEEFANIYRAEGDGDELASMYKAAAMGLMDGVTDDFTRITGHTPQNMKDFLAENYKK"]}}, {"location": "[1001536:1002448](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG0501"], "gene": ["htpX_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O30795"], "locus_tag": ["MAAAAKME_10820"], "product": ["Protease HtpX"], "transl_table": ["11"], "translation": ["MLYQQIEQNKRNTWVVLGGFTALLLAIAGLLSVYLTFWAGMIFLAAGIIYMVYIYFYSTRHLMRITHAVEINQENVPQLYEMVEEMSLAAGIPMPKVYAIPSNIPNAFATGRDPEHASLAVTSGLVKVMNHDELLGVIGHEISHIRNYDLRVTTITSALSSFIYLAAVYLLALGWTLFKMDGGVITKFICWFFGSIALAVGAGLFIVALPIAKLLNLSMSRQREYLADIGSVDLTRNPKCIVGALKKLEAIEQQYQKQKENPMVSALAFNNFQVKHWWTNLISDHPTLDRRIDRLEHTADLPK"]}}, {"location": "[1002599:1003025](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKGNFRTRKSNASRIRRTYKTYFAFNFSFLTRDKRYNLDKNNNSIDKNVQAKLLEKIEKLSIEEISVVLGWAKEQGLEQLPNNVVSLSINPFFSSSGRLEEYGDVYWVFRLNDKGRVIGKINRNIFYILAIDTKFNLYKH"]}}, {"location": "[1003168:1004341](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.4.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG1168"], "gene": ["patB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q08432"], "locus_tag": ["MAAAAKME_10840"], "product": ["Cystathionine beta-lyase PatB"], "transl_table": ["11"], "translation": ["MAEKQYDFTHVPKRQGNSIKWGVLKEKELPMWIAEMDFKIAPEIMASMEEKLKVAAFGYESVPAEYYKAVADWEEIEHRARPKEDWCVFASGVVPAISAMVRQFTSPGDQILVQEPVYNMFYSVIEGNGRRVISSDLIYENSKYSVNWADLEEKLATPSVRMMVFCNPHNPIGYAWSEEEVKRIAELCAKHQVLLISDEIHGDLVLTDEDITPAFTVDWDAKNWVVSLISPSKTFNLAALHAACAIIPNPDLRARAGESFFLAGIGEPNLLAIPAAIAAYEEGHDWLRELKQVLRDNFAYAREFLAKEVPEVKVLDSNASYLAWVDISALGMNAEDFCKYLREKTGLIISAGNGYRGNGHEFVRINLACPKELVIDGMQRLKQGVLNLNN"]}}, {"location": "[1004610:1010451](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKKKSARHLNKVAELAAALLLSASPLAGTFQSAAFVQAASQETVSPRSASRAALTKYLQQEQRYNAKKSYSKFQEAAKEQRQASGQAVSKKNESSVRVIVSLNKSAAFDHTSKPTGSAASVKKIEQASDQVKDGQEKVIKQVEEITGNKVRRQFGYLVNAFSIDMDLDDIDKVKDLPQVKNVTPVKVYHPTDESADQMAQVQDVWQEQKLKGEGMVISIIDTGIDSSHQDLKLDSGVSTALSKSEVESDKSKLGHGKYYTEKVPYGYNYADKNDQIVDNGCGEMHGQHVAGIAGANGQVKGVAPDAQLLAMKVFSNNAKNSGAYDDDIISAIEDSVKLGADVINMSLGSVSSDVDPSDPQQQAVAKASEAGVINVISAGNSGVAGSTADGNPVNNTGTSELSTVGTPGVTPDALTVASAENSKVTTDTVKDELGGVTFSSNSELKGAAQVTTQLESNYSVLTKKLKLVDMGLGGADDYTAEKKAEVKGQLAVVKRGAYTFSAKVANAKAAGAAGIVIYNSEDDGLLSMSLDDKTFPTLGMSKADGEVLAKAAKEGKSIKLKFGTALIDNSSAGKMSDFTSWGPTPELDFKPEITAPGGKIYSLANDNKYQQMSGTSMASPFVAGSEALILQGIKKQGLNLSGEELVQFAKNSAMNTSHPVYDTEHTKEIISPRRQGSGEINVKDAINNTVEVKAANGNGAAALKEIGRQTTFKVTLTNHGKKAQTYAVDNYGGPYTQATEAKSGEIYDTKIVKGQLTTETPKVTVQPGESVDVSFTLTLPYSFQRQNFVEGYVGFEAKDQATPNLVLPYMGFFGSYSQASVSAPMLYEGGNSNLINTIHSLVGVMFSNNNDMLGHTGYEGDDYSKYTDPDLIAISPNGDGSRDYAYPVLFFDRNYKEYTETITDAQGNKVKSLGVGKEGTKDYYSSSSGEWTTHSLDKWDGTDADGQVVKDGQYIYKVEFTPAIGGSKQELNIPVKVDTQAPEVSDLQVTKDGKLRLKAKDSGSGLDMTMFVAAVNGEEQKLALAPVKGESNVYESTSALTGLKDGKNQVETVLADYAGNVGYAATFSSQNNDADNKLLLFNLADGQKITSQSPAYDQEKETYTVTGTYKKNAKLKFNDVEAESDKNGYFEVKLPVKDGQNQLLIKDGDQILEAVNFTVKAEGPKVSVDEERSGRILAKDDSYTLSGTVSGLGESGKLELTNLSDKSKTDKLTVDQDGKFSQKVDLNYGDNPFELTATDADGNVTKKDVTIFTARSYTYNKDMLTFDNIASDLTVIGKMTPGYDEKDHSFTVTGKLAYPVARFQLNGDDVKYDPDTLKFSYTIKDLKNGNHSLTALVQDPRLNDGKPVVEWGYKLWVDLAAPSLQLEGMSLGEDGQLAVYTNKDVYDLKATINDNLSGYSLQVGSDTAYQDKTYKVFNEDFFKNRDAVKVSYPIKAEKDGFRKVKVTLTDGSDNKTEQDFTLYNHQADLEAPEVSASESKKTNQAVQLKVGNLSDVQKSAGKFKAADLYYSVDGKTWTKLDKDTVQVAENGKVEFKYQDVYGNESKVTTYEVKNIVKEVAAQPELKLTPDGEGKVKAELAFDKKDVDKDFNHIKYSLDGGKSWTDYKDAFTLTHNGTVEFKSYDDAGNESQVYTSVVKVERKLPAPDLTGTVEADKSVEVKAGNVEQAEKDADGKVTLLYSTDGKDWSKVDGEVKLTDSGRAMFKYRDGDDNESAVVVYEVKKVVEEKTAEFKPENKDDSKSDSKSDSKSDNKAETKSDVKTDTKSDVKSDGNGEAKSDNKPSAKDDKKTDSKTTSKSSAKKTSAKKNKKASKKASKKTVKKTKTYKKVKLTKLTKVYNKKGKVVGKLKKKTSVKLLSKKQKLHGKYYYRVGKNRYILASSLPKKTKKVKQVRARKNAKVYNKKGKVVGHLKKKQKVKLLSKKQKLHGKYYYRIGKNRYVNANVL"]}}, {"location": "[1010903:1011242](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.193"], "codon_start": ["1"], "gene": ["tmcA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01886"], "locus_tag": ["MAAAAKME_10860"], "product": ["tRNA(Met) cytidine acetyltransferase TmcA"], "transl_table": ["11"], "translation": ["MGFITGPVVDSKYDYIEDWMYEKETESLAGPGGNQMVLTIAVHPDYRGRGIGSQLLDRFAETAKEMKRGRIALTCLEDRVPFYEKNGYVNHGQAESEHAGEIWYNMIKEIEG"]}}, {"location": "[1011487:1011841](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTPANTQVKKEGITIYEVSSWGQVTDFGKCKVTEWLKLDQIVAKKEWVALLGKQTSSNYASLRILAARLSEDAAVLKKLAQDKNQQVRSAVAENANTPALFLAKLGVAAEVNAMAI"]}}, {"location": "[1011779:1011992](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNVTIEQAVKGYLVFSAKEGKLFREGRSYLAGKTYHNRYLAIYEKLEDAVVNASQYPSEEGRHHHLRSK"]}}, {"location": "[1012112:1012727](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNETITQLIQNYGYVAVALLIAAENIFPPIPSELILTFTGFLTLSVPGAIIASTIGAFIGAVTLYWVGTFFDQDRLSRFAASKVGRRFGLSPEKITKTENYFNSHGRPATFFGRFIPVVRSLISLPAGMSRFTLARFSFYTILGTAIWNTVLIYAGRFASNAYQQVVQEFEGLSLIVLIAFCAIAAAVYLLKKKGLIFKKFFCL"]}}, {"location": "[1013077:1014094](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG2502"], "gene": ["asnA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P00963"], "locus_tag": ["MAAAAKME_10900"], "product": ["Aspartate--ammonia ligase"], "transl_table": ["11"], "translation": ["MAKLVIPSDYDPKMTIRETEKAIRYIRETFQTEFGTAMNLERISAPMFVKKSSGLNDNLSGWEKPVSFTLHDGNEGELQIVHSLAKWKRWALKHYGFSHGEGLFTNMNAIRKDEEVLDNLHSVYVDQWDWEKVIDKSERTEATLRQTVQRIFETIKGMEYHVRALYPQAAYHLPEEISFVTSEELEARWPSLTPSEREDKICQEKGAVFLEHIGGALPLSKKPHDLRAPDYDDWTLNGDLLFWYEPLQRAFEVSSMSIRVDEDRLQEQLKLAGAEDRLDLPFHQALLKGDLPYSIGGGIGQSRLCMLLLGKAHIGEVQASIWPDEIVEKCQAAKIQLL"]}}, {"location": "[1014169:1015468](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.22"], "codon_start": ["1"], "gene": ["asnS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67572"], "locus_tag": ["MAAAAKME_10910"], "product": ["Asparagine--tRNA ligase"], "transl_table": ["11"], "translation": ["MTELISIRESSKHVDEEVRMHVWLTDKRSSGKIVFLQLRDGTAFFQGVVRKNDVSEEVFEAAKGLRQEASFYLTGTIHEDARSHFGYEIQISDLEVVSNNEGYPITNKEHGIDFLLDHRHLWLRSRRPFAIMQIRNRIFKATVDFFENEGFVKFDAPLLMHSAPEGTTELFHIDYFNHDAYLSQSGQLYGEVGAEAFGKIFTFGPTFRAEASKTRRHLTEFWMMEPEMAWMHQDESLDLQERFLSYVVGQVLEHCEYELSILGRDVDKLRPAAEGNYTRLSYDDAVKMLQEAGKDFKWGDDFGAPDEAFLSEQFDRPFFIVNYPVAIKPFYMKKNPENPLTYLCADVEAPEGYGEIMGGSEREADYDTLKAQIEEAGLNLDDYSWYLDLRKYGSVPHSGFGMGFERVIAWICKLDHVREAVPFPRMINRMQP"]}}, {"location": "[1015520:1016720](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL3"], "locus_tag": ["MAAAAKME_10920"], "product": ["ISL3 family transposase ISL3"], "transl_table": ["11"], "translation": ["MCTAIAELDTCPNCKSADYYIYNGFKVVHIPYISADESNPVIIKVKKHGIFCKNCELYSYPSTQIVDKYCHISNAVKRKIIVGLTKDHSMTSIAEENGVSVTTVQRYLDNCSAQFTPSFDSLPEHLAFDEFRGVGRKLHFICQDGEKHTIVAILENRFKNTIIKYFLQFPEIVRKTVRTVSMDLNCYYGDIVRQIFPNAELVIDRFHMVQMVNRSFIGFRVQVMKQLDKKSREYKLLKRYWKLYMKKYKDLEGSKQFYDRCLKVPYTPAQIVDEGLKCNETLKNTYDFMQDFVYALADKDTKKINDLLDSNIGQYCERLKTTIRTLRKNRRAVINGAKMSYSNGCLEGVNRKIKQIERTAYGYSNFTHLLKRIRLEQNIICFKKALNRRVLFSAFIKHM"]}}, {"location": "[1017059:1017584](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1609"], "gene": ["melR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34829"], "locus_tag": ["MAAAAKME_10930"], "product": ["HTH-type transcriptional repressor MelR"], "transl_table": ["11"], "translation": ["MADFGQAMQEALEVFWGQGKERIALLDGDLDSNFDKNNLVDFRFRDYKKSLAARGQYDPDLVYVGNFTPQSGYEAIKDALKSGSFPEALIAANDAMAIGALEAFKEAGIKVPEEVSLISFNDTTAAEFANPALTSVHVETQQMGRASVKVMKDLLDDDEAGTYKVTFPTKLVYR"]}}, {"location": "[1017716:1018016](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_10940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLATVSRVLNYDQTLSVNEATRQKIFETAEAMHYHKSRKTRKSKQKRLAICLWCDQDQEIKETSITIQSEPARKHRPRSRDLKARSFIRLILCPIQLL"]}}, {"location": "[1018108:1021135](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.23"], "codon_start": ["1"], "db_xref": ["COG:COG3250"], "gene": ["lacZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C1Y0"], "locus_tag": ["MAAAAKME_10950"], "product": ["Beta-galactosidase"], "transl_table": ["11"], "translation": ["MSNKLVKEKRVDQADLAWLTDPEVYEVNTIPPHSDHESFQSQEELEEGKSSLVQSLDGDWLIDYAENGQGPVNFYAEDFDDSNFKSVKVPGNLELQGFGQPQYVNVQYPWDGSEEIFPPQIPSKNPLASYVRYFDLDEAFWDKEVSLKFDGAATAIYVWLNGHFVGYGEDSFTPSEFMVTKFLKKENNRLAVALYKYSSASWLEDQDFWRMSGLFRSVTLQAKPRLHLEDLKLTASLTDNYQKGKLEVEANIAYRLPNASFKLEVRDSEGDLVAEKLGPIRSEQLEFTLADLPVAAWSAEKPNLYQVRLYLYQAGSLLEVSRQEVGFRNFELKDGIMYLNGQRIVFKGANRHEFDSKLGRAITEEDMIWDIKTMKRSNINAVRCSHYPNQSLFYRLCDKYGLYVIDEANLESHGTWEKVGGHEDPSFNVPGDDQHWLGASLSRVKNMMARDKNHASILIWSLGNESYAGTVFAQMADYVRKADPTRVQHYEGVTHNRKFDDATQIESRMYAPAKVIEEYLTNKPAKPFISVEYAHAMGNSVGDLAAYTALEKYPHYQGGFIWDWIDQGLEKDGHLLYGGDFDDRPTDYEFCGNGLVFADRTESPKLANVKALYANLKLEVKDGQLFLKNDNLFTNSSSYYFLTSLLVDGKLTYQSRPLTFGLEPGESGTFALPWPEVADEKGEVVYRVTAHLKEDLPWADEGFTVAEAEEVAQKLPEFKPEGRPDLVDSDYNLGLKGNNFQILFSKVKGWPVSLKYAGREYLKRLPEFTFWRALTDNDRGAGYGYDLARWENAGKYARLKDISCEVKEDSVLVKTAFTLPVALKGDLTVTYEVDGRGKIAVTADFPGAEEAGLLPAFGLNLALPKELTDYRYYGLGPNESYPDRLEGNYLGIYQGAVKKNFSPYLRPQETGNRSKVRWYQLFDEKGGLEFTANGADLNLSALPYSAAQIEAADHAFELTNNYTWVRALSAQMGVGGDDSWGQKVHPEFCLDAQKARQLRLVIQPLLLK"]}}, {"location": "[1021138:1023022](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2190"], "gene": ["lacS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7WTB2"], "locus_tag": ["MAAAAKME_10960"], "product": ["Lactose permease"], "transl_table": ["11"], "translation": ["MKKKLVSRLSYAAGAFGNDVFYATLSTYFIVFVTTHLFNAGDHKMIFIITNLITAIRIGEVLLDPLIGNAIDRTESRWGKFKPWVVGGGIISSLALLALFTDFGGINQSKPVVYLVIFGIVYLIMDIFYSFKDTGFWAMIPALSLDSREREKTSTFARVGSTIGANLVGVVITPIILFFSASKANPNGDKQGWFFFALIVAIVGILTSITVGLGTHEVKSALRESNEKTTLKQVFKVLGQNDQLLWLAFAYWFYGLGINTLNALQLYYFSYILGDARGYSLLYTINTFVGLISASFFPSLAKKFNRNRLFYACIAVMLLGIGVFSVASGSLALSLVGAEFFFIPQPLAFLVVLMIISDAVEYGQLKTGHRDEALTLSVRPLVDKLGGALSNWFVSLIALTAGMTTGATASTITAHGQMVFKLAMFALPAVMLLIAVSIFAKKVFLTEEKHAEIVDQLETQFGQSHAQKPAQAESFTLASPVSGQLMNLDMVDDPVFADKKLGDGFALVPADGKVYAPFAGTVRQLAKTRHSIVLENEHGVLVLIHLGLGTAKLNGTGFVSYVEEGSQVEAGQQILEFWDPAIKQAKLDDTVIVTVINSETFANSQMLLPIGHSVQALDDVFKLEGKN"]}}, {"location": "[1023187:1023385](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_10970"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMVDELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[1023637:1024861](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_10980"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1025211:1025721](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_10990"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MSSKNDQNVIGTTKKINKRTIAAKRRIMAQSKGTGVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMMKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDLAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKR"]}}, {"location": "[1025931:1026240](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTKNEPKIARSVEKFFKDYKVMELLRICGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLQLASLHYSAS"]}}, {"location": "[1026470:1026782](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0110"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HCZ5"], "locus_tag": ["MAAAAKME_11010"], "product": ["Putative acetyltransferase"], "transl_table": ["11"], "translation": ["MTFGDNVFIGPDCSFYTSGHPLDAARRNTGLEYAYPITVGNNVWIGGGVRVVPGVTIGDNSVIGVGSVVVKDVPANSVAAGNPCRVIREITEADKNSDLNWKK"]}}, {"location": "[1026832:1027060](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPTEKEKTLAGQVYNPGQDEELVTELTACKAKCLRYNQLPSGAEKKELLKEILAKAGKTATSNPTSGATMAGILK"]}}, {"location": "[1027128:1027440](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYVSANHKNGKPIHMNDNYKRQLVLRKLYPHAKVLNVYGDLEDGSHSDGRVKNSSSKSLRYLVSPKVKSYKEKKFTGPMAQHSRLRENPQVLKTAISFLWPNS"]}}, {"location": "[1027619:1028456](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerC_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01808"], "locus_tag": ["MAAAAKME_11040"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MYPHQEGFENWCRGPQRLSPKSIENADYCLDHFFTYAEVNFPSSDVNEITASNVRDYLQQLATKENLQVTTVNKYVSYIKKYFYYLALAGITPSYRLLDLKGYSFERRKTYVIDWPEHLPALIPYVKQPVTLWLLQLFALGYQAKELLGIRYSDVKDNLGEMTDYLTGTLSFEKDPDPYIFASRSGEPYASTNNIMQLVKVDKDLLSPMPITLTNLRLSYVYSLISQQKYSDKELLKIFRCPPKRLAYYQYNAAQCNLIPFSEEMLKKAGPDAAPARK"]}}, {"location": "[1028498:1029065](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.89"], "codon_start": ["1"], "gene": ["spsB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A068"], "locus_tag": ["MAAAAKME_11050"], "product": ["Signal peptidase IB"], "transl_table": ["11"], "translation": ["MKKKNKQAAEEESWGKFFRDVLVMFLVFVSIYYVVFSFFLANEVVSGPSMQPTFEDGDRLIAVRHFTPKRNDVVIIKAPNQPGAMYIKRLIGLPGDTVQSKNDVLYINGKKVAQPYLNNKYQKADRLAGVNYTNNFKVKLKKNQYWVMGDHRDVSNDSRRFGPVSRSSILSKVVLRYWPVTQIGTNFY"]}}, {"location": "[1029134:1029320](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKPEELSDAIIEFQSKHAVSDTTLAFASHLSVEKVHAMKQGRGNFTSDEINQMLDYLQSYL"]}}, {"location": "[1029711:1030950](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.4"], "codon_start": ["1"], "db_xref": ["COG:COG2195"], "gene": ["pepT_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L4G1"], "locus_tag": ["MAAAAKME_11070"], "product": ["Peptidase T"], "transl_table": ["11"], "translation": ["MEYPTLLPRFLKYVKINSRSDEHADRFPSTQREVDYQMVIMKELEELGLSDVHYNEKAGTVIATIPSNVDWDVPVMGFLAHCDTADFNSENVKPQITENYDGESKIQLGDSEFYLDPAVFPNLKKYKGQTIISASGDTLLGGDDKCGDAELVTFAEYLLAHPEIKHGEIRLGFTPDEEIGTGAQHFDVEDFNAAFAFTVDGEGPGKLDWGTFSAAQFELDIQGVNVHPAVAKGQMINAIQVGIDFQNSLPQDEVPEKTEGEEGFYHLMDFSGTVDNAHLSYIIRDFKRDGLEARKNLVKEKVAELNAKYGDRIKLKMWDQYYNMADELAKHMEIIDLARDAYRACGLTEINEEPVRGGTDGSQLTYMGLPCPNLFAGEENMHGRYEYTVLESMWKAVDVMIKMAELQAERNK"]}}, {"location": "[1030993:1031791](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0327"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PK0"], "locus_tag": ["MAAAAKME_11080"], "product": ["GTP cyclohydrolase 1 type 2"], "transl_table": ["11"], "translation": ["MTKVKDIVAKLNEAFPESIASAGDPVGLQIGSLEAPVHKILVTLDIRPNVVDEAIRRGADLIVSHHPLIFRPVNNLDYSDPQKAMYAKIIANGITVYSIHTNSDKAQDGSSDWQAEELGLLDVTGFAPDEDGIAIGRKGRLPEAMKAIDFAHYVKEKMGVDMVRLICADQDKMVETVAFVCGDGNKFWKQALADKCDAYITGDVYYHTGHDMISSGLVVVDPGHYTEKLFKYEAAKRLSAWQKEEGWSVECLISAESTDPFQNIF"]}}, {"location": "[1031783:1032476](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.217"], "codon_start": ["1"], "db_xref": ["COG:COG2384"], "gene": ["trmK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54471"], "locus_tag": ["MAAAAKME_11090"], "product": ["tRNA (adenine(22)-N(1))-methyltransferase"], "transl_table": ["11"], "translation": ["MNLRLNRLADMVDPGSRLADIGTDHAYLPILLVKSGKISHAIASDVAAGPLENAKTDIAAAGLSDQIETRLGSGLETIKESDQIDTVVIAGMGGKLMVNLLSEAASRGVYYPSLVLEANIGENTVRRWLMANKYEIVAEDIVYEAGHIYELIKARLTDQVHELTVREQEFGPLLLKNKTDVFYKKWQGQEAYYQKLLANLNKAREKDLTRIKEVENLLAMIKTELGGEND"]}}, {"location": "[1032619:1033060](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDRTEPTTLTNMCMIVDKDRVLTIDREDPVWPGLAFPGGHIEKHESFHDSVIREVKEEANLDIVSPRLVGFKQFFDKLDRRYLVFFYRADQFSGSLHASREGKLEWVKINDLPKRQLAYNFDRDLEVFLKSDLDEHVLLDKKDFLY"]}}, {"location": "[1033059:1033908](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKKKNNKKSKRIWGGVVTVALFAALFAFAGVYIKNYPVEKDVKLVATQPKALKAKKTVAEKDIWGYPFAKCYTKKIKYLSGQRYGKTDVCRRVYPKKSYFHDGWDFGWSEVGNKAAVLAIHPGTVKKVAYYTGLGWYIWVVSPDCYVEVYQEGFANRSDITVKAGQKVKLGDKLGRLTDSHLHLGITKTSADYISKHGHPYKNYWRDNDTWLNPMKVITDSLQLQEDVKEYNAKAASYNAKAASYNAKAASYNEKLAAKKKKLKVEESKHPYHYLKSFIK"]}}, {"location": "[1033953:1034679](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.63"], "codon_start": ["1"], "gene": ["ogt"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00772"], "locus_tag": ["MAAAAKME_11120"], "product": ["Methylated-DNA--protein-cysteine methyltransferase"], "transl_table": ["11"], "translation": ["MSLVFKLYYDMKPAEYLIQVRIAAAKQALQAGASAFDAAADSGYTNFSSFYAHFRKLSGMPPAKYRQLFAQNISRAVMDTPIGPLRIVASQDAILCVEPANYLEKKTGQATYQVPADRIIPNDPSGDLVKACMMELKEYFAGQRQKFDLPLSPEGTNFQQKVWQQLQQIPYGETRSYQQLAEMTGDKNASRAIGLANNCNPILILIPCHRVIGADGSLTGYAAGLAAKKLLLDLEKGGTKK"]}}, {"location": "[1034679:1034817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDDNEMWQAVQTCDPAEASKVVFDHSFSDRQELNQQLKELGVTRK"]}}, {"location": "[1035242:1035782](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKEREDVIERELQLCGYFAIVTSEKMTASEALNLYKSRDISEKLFGSDKTFLGNRSFRVASSQAAEAKIFIQFIALIIRARIYTLLRKRKAEMPGKPNYLSVPSALKELEKIDLIRQPNGNYKLDHAVTATQKVILGAFGLDEEWIKAQARQIGKDIQNAAMPEEQKDDDEDAENEEY"]}}, {"location": "[1035908:1036241](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALKLIKTKNAAFVVDEVQDNVREKMGILFGRAIHLYAKRVPTAANPKGVMQYSDYFSNQAVQVCRKDNIVEDRPVNEAENKIYQELSTGQGLDKDDREYLRDNYSEDQE"]}}, {"location": "[1036414:1036909](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIVDDITYNETEGRYDSSIFTLEKNHEFSKAYRAKKNVQDYVFADGSAEKSVERKFAEDMDLDDKVAVYAKLPRGFQIPTPVGNYAPDWAIAFKKGSVKHIYFIAETKGSLSSMDLRPIEQAKIKCAKKLFNEMSTTDVIYEQVDSFKSLLDMMNEIPDKENTK"]}}, {"location": "[1036954:1039228](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGACSLDVEMETGTGKTYVYIKTMFELNKRYGWNKFIVVVPSIAVREGVQKSFQMMEDHFKEKYEKKAHTCIYNSKNLTEIDDFSSRADLSVMIINVQAFNARGKDARRIRMELDEFASRRPIDVIKANRPIVILDEPQKMGGKKTQESLKEFNPLFTLNYSATHKEHHDLVYVLDALDAYKKKLVKKIEVKGFDIKNLRGTDGYLYLENIVISPNHPPRARLEFEIKYNKSINREVRILGVDDDLYALSKGLEQYQGYHINDIDPINGLVTFTNGVEIHTGEVQGDVSEKDIRRVQIRETIRSHFEKEKDLYNRGIKTLSLFFIDKVEHYRKYDEEGNEVNSEYGQMFEEEYNSILNEYLTLFDTPYEKYLKSIDVKKTHAGYFSIDKKGHKIDSKIKRGSDISDDESAYELILKDKEKLLSFDNPVRFIFSHSALREGWDNPNVFQICTLKHGGDSTTNKRQEVGRGLRICVNQDGDRMDEHILGAEVQDVNKLTVIASDGYKDFVSSLQKEIKDDLYERPTKITLDFFENKQIKHNDEVVKISKEQSNVIMHYLIKNDYIDDDDHVTDTYRTDVANNTLKPLPEKYGVRELTPEIHALVQSVYDDHALDDFVLDGRKTKIPENNLNDNFNKEEFQKLWQQINHKYSYTVHFDSKELIENSVNYINSKLYVAPLQYTVTKGTQGEEWSSDSVKAGSGFVSESRQTYTLTRGETSQVKYDLIGKISAGTHLTRRTVVKILKTIQPAKFKMYQYNPE"]}}, {"location": "[1039517:1041392](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKLKMHTPDIAEQNYKKLAELFPDAVTEIKDEDGNTVRAIDKNVLMQEINTKVIDDGQERYQFTWPDKRKSMVMANAPISKTLRLEKEKSVGRDGTPGGVDSENIYIEGDNLDALKLLQETYLGKVKMIYIDPPYNTGNDFIYEDDFAQSVDEYADNSGQTDEEGNRLVQNSESNGRFHTDWLNMIYPRLRLAKDLLAPDGLIFISIDDNEFGNLKKICDEIFGTQSFLATFVWKRRSSSQLDKSKCSTDHEYVLAYKREKFTALRGIDKDYKGYSNPDSDPRGPWTPGDLTVGMTADMRPNQYYDLVDPKTGKVYKPNYNRVWSYIPESMNQLIKENRIVFPEDTSKRPMRKRFASELNSATNPQSTWLSDVGMNIEGTKQMYDLFGKSFFPYTKPMSLIKSLILQATEKDSIIVDFFSGSATTAQAAMQLNAEDGGKRKYILVQLQEETGQKSEAYKSGFKNICDVGEERIRRAGKKIKDETGADIDYGFRCFKVDSSNMKDVYYAPADIEQLSLDGFEDNIKEDRTPEDLLIQVMLDLGILLSSDIETQEIAGKKVFSVADGYLLACFDKNVTEETVIEIAKKRPFYAVFRDNSMANDIVAANFEQIFETYSPETVRKVL"]}}, {"location": "[1041384:1042008](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIDFPESTKTNRRIPKEAFYKHLSLSTALKSKFVSDISRIVAENSLTKENLNLVKDSEIKEILLLSIELKKQDYDQRIIEAIAKGNPHKLVFLMSYEDQKQLAVYYQKLYMTEWMPEAKVELHLSGDSLEDIWSGLVRQIAIGPDTQISSKMSLDDQLMRQDEIVQLQQQIKKLEKAAWGETQPKKKFDLYQDLKKHKEQLEVLIRG"]}}, {"location": "[1042008:1045245](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "gene": ["rapA_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01821"], "locus_tag": ["MAAAAKME_11200"], "product": ["RNA polymerase-associated protein RapA"], "transl_table": ["11"], "translation": ["MGVKNFNNTTEVVRDDLKKQITPNSKVSVAAACFSIYAYQALKEELEKCSEFRFIFTSPTFVPDQMPKERREFYIPRITRENSLYGTEFEVRLRNELKQKAIAKECANWIRHKARFLTNTTDESINQFLTVENYENTYTYMPFNEFTTVGLGCERGNTMTNMTMRFDNQASQALLDTFESIWQDKEKMVDVTDEIIDKISSVYQENSPELIYFMTLYNVFSEFLADVSEDVLPNEATGFKNSVIWNKLYNFQKDAALGIINKLEQYNGCILADSVGLGKTFTALAVIKYYEGRNKSVLVLCPKKLSENWMTYKGNLVNNPLYKDRFRYDVLYHTDLSRDHGKTATGLPIEQINWGNYDLVVIDESHNFRNGNGTNTHGGEKENRYMRLMNRIIRAGVNTKVLMLSATPVNNRFNDLRNQLALAYEGVPDEINEKLNTESNIDTIFRRAQSVYNAWCKRPEVERTTKNLLRELDFDFFEVLDAVTIARSRYHIQNYYDTTEIGTFPKRLKPISLYPKLTDKPGAINYKDVYECLNQLNLAIYTPTKYILPSRLSKYVSERETEKFRVGRESGIQRLMSINLLKRMESSVHSFLLTLQKIYAYMCDTSDAIDRFQKDGKGKLNELTDLSNAATDFDEDDQNTDIFTVGKKVQIDLRDMDYLSWQREIKADVDVLETLIHMTEDISPEYDFKLNQLFEVIRNKEEHPINPGNKKILIFTAFANTAEYLYENIAPRAKEIGLNTALVTGSIEGKTTIPNFRAEMNHVLTCFSPMSKDRNVVYPDDTEKNIDILIATDCISEGQNLQDCDFCINYDIHWNPVRIIQRFGRIDRIGSKNKVIQLVNFWPDLTLDEYINLKDRVETRMKISVMTSTGDDDLINPEEKGDLSYRKTQLKRLQEEVVDLEDMNEGISITDLGLNDFRMDLLAYMKEHKDLDRLPFGIHAIVHGDKPGVIFVLKNVNKKINIKDRNRFHPFYMVYVDMDGEILVNHLQPKDILDEMRHLAKGRNEPDKELCKEFNRVTKDGRQMQEVSKLLEDAIGSIIEAKNEEDIESFFSAGTTTFQSGGFSGLDDFELIDFLVVM"]}}, {"location": "[1045579:1046176](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRCLTAYNSSYSNKSFHEKKTAENGFDHSGFRLNDFVKGCDQWTEKELIERSELLKQTALKLWPMPSSNFQPKVVENEVYGLDDDNNYANVKIASYSLMNTPYKLPKRTWKEMYIGVVRALYELDPAPMRQLIAGDRTKLEKVLIDHPENGFSQVADGVYLYTSTDNWNKIHKLRDLFDFYGIDQSELQIEVVAGKKE"]}}, {"location": "[1046323:1046503](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDAKTRKALQDFGFRIEEDGKHYRLTFFGDDRYNTTVAKTPSDARAGKNIAHYIEQTMM"]}}, {"location": "[1046871:1047123](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_11230"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFMSVEKRDDEDDRTIGELFYYMVDELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRFPKYMQEAISPSLAA"]}}, {"location": "[1047822:1050111](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.8"], "codon_start": ["1"], "gene": ["copB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05425"], "locus_tag": ["MAAAAKME_11240"], "product": ["Copper-exporting P-type ATPase B"], "transl_table": ["11"], "translation": ["MANKEDHMNMKNMSAKNMENKEDHMNMKNMSAKNMENNESNMCHMDHDMTETDHNQMNMDHDMAETDHNQMNMDHDMAEMDHSQMNMNHGDMDMAGTDMMMHGGTMMHMGNLKVKFWVSVVLAIPVLLLAPIMGLNVSILSFSSPLIVGIIIVLFDTALYFYGGMPFLKGAKAEIQNKSPEMMTLVTLGISVSYFYSLYAFIANNFLNPANHVMDFSFELATLILIMLLGHWIEMNALMGAGDALQKMAALLPKTAHLVTDNGETKEVPVSDLKVGQAFQVRSGESIPADGVITAGESTVNEALVTGESAAVPKKVGDKVIGGATNNNGTLTVKISGTGDSGYLSQVMKMVKNAQQAKSKAEDKADLVAKYLFYAAFSVGIIAFFAWLPQGLATAMTIMVTVFVIACPHALGLAIPLVVSRSTTIGAQNGLLVRNRQAIEASQHVSHVLLDKTGTLTEGKFTVNALIPNDGIDETTLLSRLAALESNSTHPLAQAIITEAQAKGIEVVAAEKSQNIPGVGISGNVDGTDYMIVNGNYLKKQGIKFDEAAADKWAAKGNSVSFLLQGTQVQGMVAEGDTIKAGAKELISGLQKRGITPVMLTGDNPKAAEHVANLLGLTEFHAGLLPDDKQKIVADYQAKGNHVIMVGDGVNDAPSLAAADIGIAIGAGTDVAIDSADVVLVKSEPSDILHFLDLAKITNRKMVQNLWWGAGYNIVAIPLAAGVLSFIGIILDPAVGAVVMAMSTIIVAINAMGLTAEKIKNV"]}}, {"location": "[1051346:1051592](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFSYYQSTTVSSEKVSADELSDLEKAVAVNPTLERSNWGWEIDPVGLRLALNHLTDRYHLPSSSLKTAWRPTTRSKTARS"]}}, {"location": "[1051645:1051852](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.86"], "codon_start": ["1"], "db_xref": ["COG:COG2723"], "gene": ["bglA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46829"], "locus_tag": ["MAAAAKME_11260"], "product": ["6-phospho-beta-glucosidase BglA"], "transl_table": ["11"], "translation": ["MRSTALTLGYLPWGPIDLVSAGTGQMDKRYGFIYVNKNDQGVGDLSRTPKDSYFWYKKVIASNGTDLD"]}}, {"location": "[1052094:1053231](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0568"], "gene": ["sigA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0J0"], "locus_tag": ["MAAAAKME_11270"], "product": ["RNA polymerase sigma factor SigA"], "transl_table": ["11"], "translation": ["MAKENASNVNDFPLEKAVKMVITGLKKTKRIREKDLKARLLLPYGLNDAETAKLVEEFADNGISIVDDQGEPSALALKAEEEAEKKEQKELAASSDNDQVYDSVRMYLKEIGKVPLLSRDEEVEVAKRIKNGDESAKDELAAANLRLVVSIAKRYAKHNGKMGILDLIQEGNIGLMKAVDKFDYSKGFKFSTYATWWIRQAITRALADQDRMIRIPVHVVESINKMNRIQRTLQQDLDRNAKPEELAAEMNEPLQKVQEIITVAKNQETDSLDKSVGEEGDSQLGDLLEDNKAINPEEYTAFEMLKDQLSGMMGEFLTDREAKVLKLRFGLENYEPHTLEEVGRSLGVTRERVRQIEDKAVKKLKQHSDLLQDYFSAE"]}}, {"location": "[1053266:1054385](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0568"], "gene": ["sigA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P06224"], "locus_tag": ["MAAAAKME_11280"], "product": ["RNA polymerase sigma factor SigA"], "transl_table": ["11"], "translation": ["MTEEKQTKANEMSLEKAVKLVVEGVKASHQITEAAFEDRLIKPYKLEGKAVDQLVQEFEDNGISIVDEDGKPSKLALTKQKNVEKAELNNMAAPTGMKMNDPVRMYLKEIGRFNLLTSEEEVALAKRIEAGDEEAKQELAEANLRLVVSIAKRYVGRGMNFLDLIQEGNMGLMKAVDKFDYRLGFKFSTYATWWIRQAITRAIADQARTIRIPVHMVETINKLIRIQRQLLQDLGRDPEPEEIAAEMDLPVKKVREALKVAQEPVSLETPIGEEDDSHLGDFIEDKDTTSPEQHAASEMLRDQLAEVLDTLTDREENVLRLRFGLDDGNPRTLEEVGRVFGVTRERIRQIEAKALRKLRHPSRSNKLRDFLE"]}}, {"location": "[1054356:1056195](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.-"], "codon_start": ["1"], "db_xref": ["COG:COG0358"], "gene": ["dnaG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05096"], "locus_tag": ["MAAAAKME_11290"], "product": ["DNA primase"], "transl_table": ["11"], "translation": ["MAGRISEDFINEVRGSVNIVDVISQYVSLEKRGKDYVGLCPFHQEKTPSFSVNPDKQFFYCFGCHKGGNVYKFIMEKEEVTFPESVERVAEFANIPMPQEYQEQQVKLNPLMQMHKEAADFYQQVLMTTKIGERGLEYARKRGLDDDLLKHFKIGYAPGKSDLLLTYLRGEGYTDNQLAESGLFVKSQDGRLFDRFRDRLMFPMSDESGHLVAFSGRRISDDPEEPKYLNSPETSIFNKSDLLFHFSEAKKHARKEGHLVLFEGHMDVISAYKAGVKTGIASMGTSLTQQQVYMIRRITKQVVINYDGDDPGQHATERAVGLFKQAGNFDLGIVILPDKLDPDEYVKQYGPDSYQAAIRGAISTTDFSLQRLKKKYNINNEREQVAYLSEAVAEIAALPNPVEQELYVGRLAKETGVSLDALKVNLSRARRKQRRVDQHTSSEVLPELAPLAPAADPQPVTRALKAQQRLLYAYIYSDEARDYLIVNGFVFPNPEYERLAKLWLNYIETHENVSLSGFLDFIPEELQSIIVSTDMTGLPGEITLEELEAQVRVLNLCKIDDEIDRHMQAIADARRRNDQTAILLETQAILQLRQLKLQEEEAVSDRRKANQG"]}}, {"location": "[1056226:1058293](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0751"], "gene": ["glyS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P00961"], "locus_tag": ["MAAAAKME_11300"], "product": ["Glycine--tRNA ligase beta subunit"], "transl_table": ["11"], "translation": ["MTKDFLFEIGVEEMPAHVVSKSVKQLVDRTGKFLKENGLGFKEIKTYSTPRRLTVLVKELDEKQADVDEVKKGPAKKIAQDADGNWTKAAVGFARGQGMSADDIYFEELKGVEYAYVHVQKAGKEAKEILLGLDEVIKAMTFPTKMRWDSQDFEFVRPIHWLVALYGSEVVPVEFLDITAGRKTAGHRFLGDSVVLANADDYVEALRDQYVIVDADERKDMIVSQINDLVNSHNWQIKLDASLLEEVNKLVEYPTVFAGSFDQKYLEIPDEVLITSMKDNQRYFEVYDQEGKLINCFISVRNGNKDHLENVISGNEKVLVARLDDAVFFYDEDRKYPISHFVDRMDSVSFHDKIGSMAEKMTRVRIIGYYLAKRFGLSAEEVADFDRVSGLYKFDLVTQMVGEFAELQGVMGMHYACLAGENENVSVAIKEHYMPTTAEGDLPKTKVGALLSVADKLDTIIAFFGAGMIPSSSNDPYALRRYAYGIVRILLNEDWSLPFDQVVPEIVELLSGKTPAKMPQGAEEDKQLADFIRDRIKQFLQKNNYQYDVIDAVLASSEQDPSQILAAAKVLQQHHDDEAFKPVVESLTRIANILKKAKFSQASPVDPSLFEDRSEQDLYDGVEALANVKDHAELYEAFVALQGVIDRYFDVNMIMAKDEAVKNNRLSQLAAVNDLAKRLGDLSKLVIK"]}}, {"location": "[1058285:1059197](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0752"], "gene": ["glyQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67081"], "locus_tag": ["MAAAAKME_11310"], "product": ["Glycine--tRNA ligase alpha subunit"], "transl_table": ["11"], "translation": ["MAQKLDIQTMIFKLEQFWASKGCMIMPSYDENKGAGTMSPYTFLRAVGPEPWKACYVEPSRRPADGRYGDNPNRLFQHHQFQVVLKPAPLEIQQYYLDSLKVLGIEPLEHDIRFVEDNWENPSMGCAGVGWEVWLDGMEVSQFTYFQTVGELDVKPTMGEITYGVERLASYIQDVNSVFDLEWGDGVLYRDIFKEPEYEHSKYAFEESDQKQLLEFFDTYERIAKRLLGQNLVHPAYDYILKCSHTFNLLDARGAVSVTERAGYLHRIRNMAHEVAVKFVEEREKRGFPLLKSAQAKAEASND"]}}, {"location": "[1059461:1060211](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1381"], "gene": ["recO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42095"], "locus_tag": ["MAAAAKME_11320"], "product": ["DNA repair protein RecO"], "transl_table": ["11"], "translation": ["MAADLLDVHGLLFKRQQYKEADLLAKLWTKELGIVTVIAKGGMRPKSQLAAAVLPFTEGTFGILTRYKGISQLRTYKKLSQHDELFTDLDKNAYLSYLFDLADHAFSEYQKLGGYYDLLLVAFNRIVAGQDPEIIAQIVQLQLLDAFGVAPQLGACVICGKEKGIFDYSIAAGGVVCSDHFRSVSRLHLSPKATALIRTLALLPISRLGEIQIGEDLKKESRRAIAQIYQATVDLHLPSLRFLNEVRGS"]}}, {"location": "[1060210:1061116](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["era"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64085"], "locus_tag": ["MAAAAKME_11330"], "product": ["GTPase Era"], "transl_table": ["11"], "translation": ["MGQTSKHKSGFVALVGRPNVGKSTLMNRLIGQKVAITSAKPQTTRNKISGIYTEDDMQVVFVDTPGIFKSHSDLDEYMDKASLSSLKDVDLVMFMVDAKEAGKGEEYVAGLLKDLDIPVFLVINKIDQVHPNELLPIIDSYQAVGKFAEFLPISARQGNGVDDLLKTLKDYLPEGPQYYASDEITDRPEYFVVAEMIREQILRLTDQEVPHSTAVWVDQMNQRINGKLQIDATIFVEKDGQKRIIIGQRGSMIKQIGMRSRKEIENLLGEKVNLKLWVKVRRDWRQDPAFLKSIGYDKKEL"]}}, {"location": "[1061099:1061519](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.5"], "codon_start": ["1"], "db_xref": ["COG:COG0295"], "gene": ["cdd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19079"], "locus_tag": ["MAAAAKME_11340"], "product": ["Cytidine deaminase"], "transl_table": ["11"], "translation": ["MNELEEKLFLLAKDHLADAYSPYSHFHVASALVTDAGEIFTGVNIENSSFGLTNCAERTAIFSWVNAGRTGKIKCLLIIGNTDRPISPCGACRQVMSEFMAPETEVILTDSQGDYERFTVEQLIPYHFTEKDIQDGANK"]}}, {"location": "[1061520:1062045](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["ybeY"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00009"], "locus_tag": ["MAAAAKME_11350"], "product": ["Endoribonuclease YbeY"], "transl_table": ["11"], "translation": ["MQGIDVSYSDEVGFLTKGDRDWEDWIMQLLLMAKKEIGKDNAQEMSINFVDEDRSQAINRDYRDKDRPTDVISFAIEDGDDGLDLSMFTQDPDFTEDIGDLFMCPSVIERHSKEYGTGFDREFGYTIVHGYLHLNCYDHIEPDEAKEMFGIQGKVLEEYGLPLYPDQLDEGRGK"]}}, {"location": "[1062044:1063109](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1702"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIA3"], "locus_tag": ["MAAAAKME_11360"], "product": ["PhoH-like protein"], "transl_table": ["11"], "translation": ["MLIFRVLFWPESCIIGLEEYSLADRDVLARWFENEGVLLLEKKFLPHSSENVQKLVGVNDSNLKLIEEGYEVTVIDLGGQIKVAGPEEQVETVLRVLKALDGVASNGINLTPADVVSAMKMADRGTTEYFGDLYKQILIRDAKGRPVRVKNMIQKSYVEAINKSDVVFGIGPAGTGKTFLAVVCAVAAFKRGEVSKIILTRPAVEAGESLGFLPGDLKEKVDPYLRPIYDSLYAILGQGPTDRLMERGVIEIAPLAYMRGRTLEEAFVILDEAQNTTDAQMKMFLTRLGFNSKMVVNGDMTQIDLPGKANSGLITARNILQGIDQIKFVEFSAADVVRHPVVAKIIKAYEEEGE"]}}, {"location": "[1063145:1063322](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpsU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23829"], "locus_tag": ["MAAAAKME_11370"], "product": ["30S ribosomal protein S21"], "transl_table": ["11"], "translation": ["MAKTIVHENESIDDALRRFKRSVSRSGTLQEYRKREFYEKPSVRRKLKSEAARKRRHY"]}}, {"location": "[1063490:1064348](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.11.32"], "codon_start": ["1"], "db_xref": ["COG:COG1806"], "gene": ["yqfL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54470"], "locus_tag": ["MAAAAKME_11380"], "product": ["Putative pyruvate, phosphate dikinase regulatory protein"], "transl_table": ["11"], "translation": ["MTENKAENKQTEKTEKMEVNIIIISDSAGETAFNNAQAAAVQFPDAEVNYRRYPFIVNEKKLAATLEEIEQYPNLVIVYSMLDEKLQLPIIKFAREHKARYIDILSPIIEAISQTTHMKPTGLVGANHQLTNKYFNRISAMEFAVMYDDGKDPRGFLEADVVLLGVSRTSKTPLSLLLANKGLKVANLPLVPQTHIPNEIYQIDPTKIIGLTTDPQVLNRIRRQRMISYGMDPDTAYSNMDSINAELDSAMALYKKLGCFVINVAERSIEETAALIMNHLSYEED"]}}, {"location": "[1064407:1064623](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MATEIATTYAKQHGHHNVKLLMTKTSPDKRSEYFYVFSVTDSLRENGKKEYFILVDPVSGEVFKVDESPLK"]}}, {"location": "[1064745:1065630](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLFDLNRFSRNYGFLVKIGAAILYSVMIAVALNFFWRPGHIYSSGITGFAQIVNTVTSRYMPFTITTEVMYFALNVPLFILAWFKIGYEFTGYTIFAVAMSAIMMRFIQPTQVSLDPILCAIFGAAFNGIGTGMALKSGISTGGLDILGIVVRKKTGVNYGKFNILVNLIIVLIAGFLFDWSRALYTVLNIFINGRFIDSVYTQHNKLQVMIVTEHPNAIIEGIQEKMHRGITIFHDVEGAYGHTEKTVLLTIIDTYDLYDIRTTVEKCDPFAFMGVTEVQKVYGRFREQEVV"]}}, {"location": "[1066784:1066985](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["secY2_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01466"], "locus_tag": ["MAAAAKME_11410"], "product": ["Accessory Sec system protein translocase subunit SecY2"], "transl_table": ["11"], "translation": ["MTVIQAAVMLRKFQLTDNGFGSRLAARLFLMAGGFLLIWLSVENDKNVLGGISLILMANMFFYAWC"]}}, {"location": "[1066993:1067305](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["secY2_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01466"], "locus_tag": ["MAAAAKME_11420"], "product": ["Accessory Sec system protein translocase subunit SecY2"], "transl_table": ["11"], "translation": ["MGKKASLKDLGISTILAKAWWSMLYLGIFVFGKHISLPFAKLQTGQVNPLLVATGGDSSQASLFSLGISPWMSAMIIIGMLAQLRLPMMSKMTERKMGMAKRP"]}}, {"location": "[1067548:1068733](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0436"], "gene": ["dapX_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P16524"], "locus_tag": ["MAAAAKME_11430"], "product": ["putative N-acetyl-LL-diaminopimelate aminotransferase"], "transl_table": ["11"], "translation": ["MPKLAQDLLPIINHKLDAVVPSDIRRFDKYVSQFDDVVKLTLGEPDLNTPEHIKQAAIRDIENNDSHYGPQSGKPELLQAISKYVKGVTGVDYDPASEITVTVGATEALNCSLSVLLNDGDKVIVPTPVWSMYMQLVCLTGATPVEVDTSDTGFILTPEKLEEVIEREGKGVKAVMLNDPTNPTGVTYPKEVIEGLAEVIKKHHMYAISDEIYSELIYGDAKHYSLATYIPDRTIFISGLSKSHAMTGWRLGYICGPAEIMASVRKMNDFMITVVTNNVQAAAIEALTNGLDDPKEFRDIYQRRVNFMEKGLKKLGFDMALPRGAFYIFAKIPEKYQGDDVGFAKSLAKDARVGVIPGSYFGAGGAGYVRMSYASSDEVLKEALKRITKFVEAE"]}}, {"location": "[1068914:1070111](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.20"], "codon_start": ["1"], "db_xref": ["COG:COG0019"], "gene": ["lysA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIU7"], "locus_tag": ["MAAAAKME_11440"], "product": ["Diaminopimelate decarboxylase"], "transl_table": ["11"], "translation": ["MGKIRQAIRAFKRVFEEEGVDYEVSYASKAFSCLAIYQVINEEGGHTDVVSGGELWTAMKAGFPMDKVSFHGNNKSRAELELAVDQGVGVIILDNFHEIDLLSQILEEKNASSKVMLRVTPGISAHTNEYIQTGQVDSKFGFDMESGQADRALELVLSNPRMKMAGIHAHIGSQIFDVRGFVGCADKLCQLASAWKEKYGYETDILNVGGGFGIHYTDQDQPLPAEEFVRAIVKEVKSKCQENNLKLPAIWIEPGRSIVGPAGFSLYTVGSRKDLPGYPSYVALDGGMGDNIRPALYQAEYSAVVADRPQAEDEERVNLVGKYCESGDILIKSCPLPKTEPGDVVALLSTGAYGYSMASNYNRNPRPAVVFAEDGVDQLVIKRESYDDLIANDLKYQK"]}}, {"location": "[1070381:1070455](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_11450"], "note": ["tRNA-Gln(ttg)"], "product": ["tRNA-Gln"]}}, {"location": "[1070580:1071276](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKIKCELCVQRDLLKEGSRFVCQTCGAAYSADQLRRQFDLADQAEIYAEAKQAYRAKRFKQARQLYLALAEEGDQQAAFYASLSSSQLGPAADFAPLLNQLRSALAASRDLGEVIVFALAVEEECEEDFQKQAQRLELNSRQTLEKAHQKMQKEAGRDWLLMSQAAHLCVGESDDLAAVSPYFWELVDAIIDDLSINQKRGTIALGNVKEERDYFEALKAEKKAKKLVNG"]}}, {"location": "[1071921:1072041](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKLYSVLTAAAIMPLCLLAGQESQASQADEYNPEVRNF"]}}, {"location": "[1072223:1073120](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["lacX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23496"], "locus_tag": ["MAAAAKME_11480"], "product": ["Protein LacX, plasmid"], "transl_table": ["11"], "translation": ["MDYTIENEILKVTVSSRGAELQSVIGKHIGNEYIWQADPEVWGRHAPVLFPIVGKLKNDEYSYQGQTYHMGQHGFARNMEFALEEQTKEKLTFLLTDTEETRAVYPFKFEFRVSYELLNNMIKESFHVTNKGEGDMIFGVGGHPGFALPVEDGVKKDDFYLQVNPAKPRVQVPLEGGLLNWEKRFLAPTESLITITDDLFKDDAMVLVMRHPDNKFSIKTETSRFHINVRTDSAPYVGIWSQYPKTADYVCIEPWWGIADLTDTDGDLEDKKGMNRLASGEDFEASFRMSFHSKVQSE"]}}, {"location": "[1073201:1074596](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1220"], "gene": ["clpY"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39778"], "locus_tag": ["MAAAAKME_11490"], "product": ["ATP-dependent protease ATPase subunit ClpY"], "transl_table": ["11"], "translation": ["MREKTPKQIVDLLDKYIVGQNEAKKSVAIALYNRYRRTQLPEDVQKDITPKNILMAGPTGVGKTEIARRLADIVDAPFVKVEATKFTEVGYVGRDVESMVRDLANEAVRIVEKEEFVKVESQAIRQANKTLVRLLVPGVKRNNRQNQMQQMQEMMQSLLAGGGMPEETEEVTDEIRNQRLSVAEKLDRGLLENEEVTIEVEQAPKANPMGDMMGQMGMDMSSMLGDMLPKKKVKRTLPVGQARKLLVQEEEKKLVNYDDIYQKAMDRAGQSGIIFIDEIDKITAADKRNSAGVSREGVQRDILPIVEGSTVSTKYGPLSTDHILFIAAGAFAESKPSDLIPELQGRFPIRVELNALTKDDFVRILKDPQNSLLKQYIALLKADGVDLVFTAEAVDKIAEIAFEVNQGTDNIGARRLATILEKLLEEVLYEGPDMEMGQITITQAYVEQKLSDIVKNKDLTKFIL"]}}, {"location": "[1074598:1075132](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.25.2"], "codon_start": ["1"], "db_xref": ["COG:COG5405"], "gene": ["hslV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81WK5"], "locus_tag": ["MAAAAKME_11500"], "product": ["ATP-dependent protease subunit HslV"], "transl_table": ["11"], "translation": ["MTTICSVKYNGQTAIAGDGQVTLGKSIIAKTTAKKIRRIYHDQVVIGFAGGVADAVSLQEMLEGKLESYSGDLRRAAVEMAQSWRKDPALQKLEAMVIAFNDQDLLLISGNGEVLEPDESVVAIGSGGYYAQAAAVGMLRHASGMTASEIAKEAVNIAADIDVFTDHEIVTDEIEEK"]}}, {"location": "[1075241:1076129](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4974"], "gene": ["xerC_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39776"], "locus_tag": ["MAAAAKME_11510"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MTLEEQFLSYLKNERSYSPKTVLAYQKDLAAAKKFWQENGGFPGWDQISRRDLEIYLLATGQKLASSTLSRKLSSLKSFYRFLTRRGLVKADPTVAIQLRRGKKKLPEFFYQDEVGQVIRSLNDGKPLTVRNRAIVALFYATGMRLSELTDLKIKQLDLENGMILVHGKGNKDRYVFFDQESKKYLEEYLQAARPSLLKNEPDTGAVFLNKLGRPISSRGIAKAVQQIFQKAGLTAGAHPHELRHSFATAMLNNGADLRSVQELLGHEDLSTTQIYTHVSMQHLTVEYRQHFPRK"]}}, {"location": "[1076128:1077448](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.74"], "codon_start": ["1"], "db_xref": ["COG:COG1206"], "gene": ["trmFO"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39815"], "locus_tag": ["MAAAAKME_11520"], "product": ["Methylenetetrahydrofolate--tRNA-(uracil-5-)- methyltransferase TrmFO"], "transl_table": ["11"], "translation": ["MTEKVTVIGAGLAGSEAAWQLAKRGIKVDLYEMRPKKMTPAHESGNFAELVCTNSMRSNQLSNAVGLLKEEMRQMDSLIMQAADACQVPAGGALAVDRELFSKYVTDKLTSLPEVIIHDEEITDLPSEGITVIATGPLTSDSLAEKIQDFEGAESLHFFDAAAPIIAADSIDMDIVYKKSRYDRGEAAYLNCPMTKEEYDRFANALVHAETAEIHGFENSEVFEGCMPIEVMAARGAKTLLFGPLKPVGLENPKDGKTPYAVVQLRQDNAAASMYNIVGFQTHLKYGEQKRVFQMIPGLENARFVRYGKMHRNTYMASPEVLKASYEAKKRPGLFFAGQMTGVEGYVESAGSGLVAGINAAREALGQETVEFPVTTALGSMAHYITTTDAKHFQPMNASFALIPGLEGKKIRNKRERHEKISERGLADLAAFKAEKLDD"]}}, {"location": "[1077579:1079763](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.1"], "codon_start": ["1"], "gene": ["topA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5Y5"], "locus_tag": ["MAAAAKME_11530"], "product": ["DNA topoisomerase 1"], "transl_table": ["11"], "translation": ["MPATAKEDKSKSSKKTTATTAAKKSSPKRKKSKVKKDLVIVESPAKAHTIEKYLGRKYRVIASKGHIRDLPKSQMGVDIDHDYQPKYISIRGKGDTIKELKAEAKKANKVYLASDPDREGEAIAWHVAHVLGLDEKEANRVTFNEVTKDAVKDAFNHARTIDMDTVNAQQARRVLDRLVGYSLSPILWSKVKKGLSAGRVQSVALKLVIDREKEIKAFKPVEYWTIDAEFAKGKDKFQASFYGEEGKKTELPNNEAVQKLLAKFDKKQPFTVSKVVKREVRRQPAAPFTTSTMQQEANRRLNFRTSKTMNIAQHLYEGISLGKEGTVGLITYMRTDSKRISPVARQEAAQFIVEEYGSDFAVKKERHFKNQGDAQDAHEAVRPTSVYRTPKSLEKVLTKDELRLYTLIWSRFVASEMTPAVFDTVRYDLTQNGVTFRASGSVMKFAGYTKVYDNRSEKNVALPALEEGDEVKLTKSDSKQHFTQPPARYTEASLVRALEENGVGRPSTYAPTIQNIQSRNYVKLEGRAIVPTELGEIVDGLVEQFFPDITSVDYTAKLEDELDEVEEGKKDWVSVVDQYYKPFSKELEKADREIQKIQIKDQPAGFDCEVCGAPMLVKMGRYGKFYGCSRFPDCRHTQTIVKKVGVTCPKCGEGEVLEKKSKRGRKFYGCSRYPDCDFVSWDKPISRVCPHDGHFLVEKKRKDGMVVLCPNGDYKEEPREEQGEAAE"]}}, {"location": "[1079889:1080729](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0758"], "gene": ["dprA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPI7"], "locus_tag": ["MAAAAKME_11540"], "product": ["DNA processing protein DprA"], "transl_table": ["11"], "translation": ["MNKTEFLLRLKLQKGLSYLKILQVMQQMPPDEDVDHEWLNCLELPDEILYRVERAFLSDRYESAIENLQRNFKIISFFDDAYPVRLREIYRPPILLFARGDLSLLEKEVTVIVGSRTPSQYSGKVIENLMPVFLKKKQVIASGLAKGVDALAHQNALNFGGKTIAVVANGLNYFYPRENTLLQQQIAARGLLLSEYLPDTPPRPFRFPERNRILAGICKNVIVTEAKAHSGSLITANLALQENRNVFAVPGAITSPLSAGTNQLISAGATPVIDKEIDL"]}}, {"location": "[1080826:1081597](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.4"], "codon_start": ["1"], "db_xref": ["COG:COG0164"], "gene": ["rnhB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31744"], "locus_tag": ["MAAAAKME_11550"], "product": ["Ribonuclease HII"], "transl_table": ["11"], "translation": ["MKINEIKDLLQADSIDPAILAELAKDDRKGVQKLLVSYQRRQEKLAKQKEEFLGRFSYEKDFWAKGQLVGGVDEVGRGPLAGPVVAAAVILPEDFSLLEVNDSKKLSPQKRLALYPKILQEAVAVGVGVMDNKVIDQINIYEADRLAMKQAVEALSTRPDALLVDAMNVPVDLPQLELIKGDAKSNSIAAASIVAKVFRDSLMDDYARLYPDYAFDHNAGYGTKDHLEALRKYGPTPIHRLTFSPVSEMVGLKKAD"]}}, {"location": "[1081586:1082444](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1161"], "gene": ["rbgA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31743"], "locus_tag": ["MAAAAKME_11560"], "product": ["Ribosome biogenesis GTPase A"], "transl_table": ["11"], "translation": ["MTKIQWYPGHMNKARNQLEEKLNLIDVVIEVLDARIPSASRNPMISELVGDKPHLIILNKTDLADPVMTKLWQKKLQGPRTLVMAMDAQHNTNMQALITLIKKAASEKVKKLEERGASNPIIRVCLVGVPNCGKSTIINRLVGRNVTMTGDRPGVTKGQAWLKTPYGIQILDTPGILWPKFEDQEVGYKLAAFGAIKDTIFHADDVALFVIRQLRQYYPAYLAKFANCTKDKLENIGDTDLLLAMTQNNGMREDYDRFSLFMLQRLRKGKLGRISLDWPSANNEN"]}}, {"location": "[1082518:1082749](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31864"], "locus_tag": ["MAAAAKME_11570"], "note": ["UPF0346 protein YozE"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAYRQSFYQFLMTLRDPDSNGDLAQFANNAQFDSTFPRQEQDRTRLSEYLEENAAYLPSMTIFDDAYQAYEEKMQY"]}}, {"location": "[1082752:1083598](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97QT7"], "locus_tag": ["MAAAAKME_11580"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MSKIKIMTDSSVQLSPEEIEKYGITVVPLSVTIDGHTYTDGVDITRADFIQKMDEAEKLPKTSQPPVGLFVERMEELTADGSEVLGIFMAKTLSGTVDSARQAAEMVAGKITVIDCGYTDRSQGYYCIEAAKDAEAGKEMDEILAHLDQIGKNMYLEMMVPNLQNILAGGRLGKWAGRVVSALNFHVGLTMKEGSLNVPYRGRGKKFIKKFDDMLVDQLKELGDKVKYVGISYVDTRDKMEELAQRFKEVNPDLEILVQETSPIIITHAGHEAYAVMFYTE"]}}, {"location": "[1083732:1084395](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67153"], "locus_tag": ["MAAAAKME_11590"], "note": ["UPF0073 inner membrane protein YqfA"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFNPWQPVEDRPKSYYIIDNVLSAVVHGIGFGPSIAGLVILVVRAAHSHSALRVTTFAIYGACMILLYLFSTLYHSLVFTKANKVFQILDHSSIFIAIAGSYTPYTLVTIGGAKGWVMFGIIWALTVFGILYYIFNQGKHVIGDTILYIAMGWMVILAGSQLYFSLGPTGLWLLVSGGIAYTFGCLFFSMRGLPYSHVIWHFFVLLGSILIFFSVLFYV"]}}, {"location": "[1084420:1085611](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.72"], "codon_start": ["1"], "gene": ["cca"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7SIB1"], "locus_tag": ["MAAAAKME_11600"], "product": ["CCA-adding enzyme"], "transl_table": ["11"], "translation": ["MTNIRITEVFTQAMPVLEKLEEAGFEAYFVGGCVRDLLLERPIHDVDIATSAYPEEVKETFAKSIDTGIQHGTVTVLYGGSSYEITTFRTESGYQDFRRPDKVTFVQNLDEDLKRRDFTINALAMNRQGEIIDLFDGLGDLKRRVIKAVGVAEDRFHEDALRMMRAVRFMSQLSFSLEEKTRQAIINNHELLSKISVERIREEFVKLALGKDSRQAFKDFLATGLSEECPGLAGKKDQLSVLTDLKAGPDDEAVFWSLIAVLINLPADKISPFMRAWKNSNAMNQQVRQIVAAFDLLSRGEESDFDLFEIGQENLEAALKLAGLLGKPLSSQVLLDRYNRLPIKAAGELAIDGQWLIKEGIKPSPELGQLLRKALEGVVSGQVENSQAAIAEFLAI"]}}, {"location": "[1085691:1086591](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKPKFKWTTSDTINILMIALGSAIYAFSVDMVSIPNKLADGGLSGFILIIRHFWGVNPGLSTFIINIPLIFLGFKYMGKRAMIYTVWGTLCLSFFLSMWTLQSIIDQVPLHHDPFLATVTAGCLSGLGLGLVFHFNGTTGGSDIVARVLQEKYGITPSKGLLALDFLALACSLSYLDFFHVGYTMVSCFILSKVMALVTEGGTRAKGVFIISQNYRNIAKLIYLRLERGFTYINAEGGYSNEPRHMIYLVLSPREIPELKKIVKQEDPQAFIIFFDVNEALGEGFSYKTKSPSLFIRK"]}}, {"location": "[1086629:1086836](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLNKGISAPRMILTAILLVPVKNDFGEIQAYLLLTNVYDKGEINPVSLLQHLAPVFSKKLRDAALRIK"]}}, {"location": "[1087175:1087574](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTCCALWELVLRTVLVTRTAPGRVKTAFMPTARNMACESLEDPFKSGIVYYDDKLDQRHRLQEYVLSHIDEALEKGWIQVYFQPVIRTLTDKVCNLEALSRWIDPPGPAQLGQLLYQGLDHAKLRGDGLCPG"]}}, {"location": "[1087570:1087762](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHLCYITLININRNLLTGLLDLRSFQEVGQSRTRDWIKEGERVSIISFDLVGMKDYNNQYAGG"]}}, {"location": "[1087792:1088071](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIEKDDLTNFLRKSFTYIRKPFLVLEVKDNKTAIVYANKKLLDLFACKNMAELTDFAWEKLFPLTTGLSGDHAEFEHMTVADAKGQEHMLNA"]}}, {"location": "[1088237:1090010](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_11660"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKKQDKKMASWQAMKQLLPIIGRYRLLLFISIILAAVSVIFQLYVPIIFGRAIDQIVGPGKVDFPAIGQDLVQILILVIVSAAATWLMGLINNKLTYWTVQDIREKAIRQLQLLPLSYLDQHPSGDIVSRIIADTDQLSDGLLLGFSQLFSGLITIVATLAFMLSQSVEITLLVLVLTPLSFIVARFIASRSYQMFRKQSQTRGEQTSLIEEMVSGVKVVKAFGYEKTASSRFAEINHRLQEYSQQATFYSSLTNPATRFINSLIYALVALAGAFAIMGGRLTVGGLSVLLNYSNQYMKPFNDISSVITELQNAAACAGRVFELINEEPEADPVDLNKADGDLPEVKTGSVVFDHVNFSYQADKPLIRDFNLTAKPGMRVALVGPTGCGKTTTINLLMRFYDVDSGGIYLGGRNIKDMSRHALRKNFGMVLQDTWLEEGTVRDNLAYGKEDATDEEIIAAAKAAHSWCFIRRLPQGLDTPLSADSLSAGQKQLLCITRVMLLDPPMLILDEATSSIDTRTEMLIQAAFDKLMQGRTSFVVAHRLSTVVNADLILVMKDGQIIERDKHADLLARGGFYSQLYRSQFAKLPS"]}}, {"location": "[1090006:1091749](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_11670"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MKYVFSYLKDYKKESVLAPLFKLLEALFDLFVPLVVARIIDYGIKERNQAYVFQQVGLLALLALFGITASITAQWFAAKASVGLASQLRQAAFDKVEKFSFANLDQLPPSTLITRLTSDINQVQTGFNMALRLLLRSPFIVFGSMIVAFTVNVKAALIFAVAIPLLALVVFGIMLVSIPLYRKVQKRLDEITRLSNENLAGVRVIRAFRKERAAVAKFDEKVSAMTKLNEFVGRLSAAMNPVTYVMINIAAIVLIQVGAVQVNTGAMAQGQVVALYNYLAQMIVELIKLASLIITINRAWACGDRVGQVLATENDLTYPKAGPKVTNSQVDFKNVSFTYPAASAPAVSNLTFTIKPAATVGIIGGTGSGKSTLLKLLTRFYDCGEGEIKLGGVSIKELTQEELLDQYALVPQKAQLFAGSIRDNLLMGRLEASDEELWQALSLAQAKDVVLAKPGQLDFQLEQEGRNLSGGQKQRLTIARALVKQAPLLILDDSDSALDLATGARLRQALASLKDVTKILVSQRVSSIMQADQILVLDDGKLVASGKHEELLANCQVYQEIYYSQFPKEKEAKEDKEGSR"]}}, {"location": "[1092142:1093045](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hcaR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47141"], "locus_tag": ["MAAAAKME_11680"], "product": ["Hca operon transcriptional activator HcaR"], "transl_table": ["11"], "translation": ["MRIEHLEIFVNAAQTQSFTKTAQNMNMSQPAVSLAISSIEKQLGYQLFSRSRRKMLLTPAGRSLYNSIKSELNNYRTAVSKAKRIAMSEGQITLKVGLIGILAEQLMLPGLIRQFRRSRDTVNIEFFVESSPVLFEKLASHELDLVLSTPEAMPKFPDFTAYTIGKLKWCTLVPNDHPLAEKDLLSEKDLDGKDLVFLDLSYSSPLITLMQDRIEKNCKQSRIFFANNVVAQTMMVYTQQGLAIQPYTGSLDDDNCEVNGLKRVPLDVKVSSDLTLFTCKDVLNEHVLDLMNWLKAQKLG"]}}, {"location": "[1093115:1093940](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRTRKKICDMNVAVVDRQNLPALLASGKIAAQADEDYQINQKTVAAYDFQMDLLLGKYRTIIYDADAGWVLLKKKTCRRLVHELRKKEPAHELTIKKQLCRQIGMSDQYVQSFGSHAYFSFFIMRHKPLDLVGLHQMKLFECLDNNGLFLTLDRQYCFSLEMPRQSGRGQQILQDCITHNAAFLHLASARAASWGCQLKPVSRKSLLNDPAYIRESRLAEIKAMDPRQILEEAEDNYLNYCSEEFLKEFRAWNWGKQDMRQLINYCNKSFNEIK"]}}, {"location": "[1094185:1094773](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQVDLISLTISGLVLLVLILNILYSPAFNRLDRKLHKKLVRTQKNIFWKIIAFINEPKLVIVWDVLIAGLLLNENNYRLGLWVLATLGVTDAAGFIVKHLVKRSRPHAHLSEEEGYSFPSGHVLGATTMCLILYALLRREFDQLFAVILLIYWLFVVISRLNLRAHYPSDVLGAVALSVFCFTVVQTIYAALFLK"]}}, {"location": "[1094868:1095705](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1307"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DQI6"], "locus_tag": ["MAAAAKME_11710"], "product": ["DegV domain-containing protein"], "transl_table": ["11"], "translation": ["MENVRLIVDSSANTLTDPSRGLEVVPLTLTIGQENWLDDEHLDMGAFLNKMEASQEAGKTAAPSIQRWLDSLEGCEKAVIGTITSGLSGTYSSALQARDIYLETHPHAQIVVVDSRSAGQELEVILEGIESILKDDKLRFADLKARIAEYRTKTHLLFVLQSLRNLSLNGRVSPAVAKIAGMLKINLIGTASVDGDLQPLTKARGMKKALRELVKQMKEEKYQGGRVVIDHCENEADAEKLKELLLAEYPEAEITIRPMRGLCSFYAERGGLMVGFHN"]}}, {"location": "[1096011:1097289](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0148"], "gene": ["eno"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37869"], "locus_tag": ["MAAAAKME_11720"], "product": ["Enolase"], "transl_table": ["11"], "translation": ["MTKVVIENVHAREIFDSRGNPTVEVEVTLSNGVVGRAEVPSGASTGENEAVELRDGGSRLGGKGVMKAVNNVNTAINNELQGADPFNQPAIDKAMIELDGTPNKGKLGANAILGTSMATAVAAAKATHQPLYRYLGGTDLSMPQTFHNVINGGEHADNGIDIQEFMITPVKKTSFRDGFEKIVNTYHTLKKVLEEKGYETGLGDEGGFAPNMKDSEEALKALHEAIERAGYVPGEDIAIACDCAASYYYNKEDGKYHLEGKVLDGDQLAEYYDKLLAEFPELISMEDPYDENDTEGMVKFTQSHKDRLQIVLDDFICTNPRLLEKAIKEGAGNASLIKLNQIGTVTETLETIRISRKHGYNTMISHRSGETGDTFIADFAVATNGGQLKTGAPARSERVEKYNQLLRIEEQLGDGERLDFFPAQD"]}}, {"location": "[1097248:1097785](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTANVSTSSQLKTNYYKISSKKIRICGSFFCTQNFPGELTAFPLLFILVQTNLPDEAVKKRAKAVFANGSIILAALSALLVSYHLTGHGLPCLFRALTGYLCPGCGMTRAAVAILGEDFAKAWQYTPLSLTLLPVFAFYLLYIYKTGRYIRKGEEDFKLGESVFLLLIAICFAIARNL"]}}, {"location": "[1097941:1099297](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQVDNSIDQMGEQIGQGIDDAAKDITSGLKKTGEKTGDFWENWRDYLTPNNAEKFVSVALLFPLFMTVVLWLLTRVSGWVYGQYFLPLYDFFFAIFQIAIFLVKALFLIGSGLGVAAAGYVLYKNESKRTVWGWLTGAATAATVLSFLGCLGINQSYPYNGLTQTFKILGWVAVVWGIDTCSRVLLQKLGIDVEPIISRDLAAYRDFYQTYRAKHEAEEKAEREEIAKAQNGQAGPVSYFDGTGAGLFGTYLLYALLTIITCGFAAPWLNCAIQRWRTKHMVVDGKRVTFNGTGASLLGHWILWEFLTVITCGLFAFFIPVGLQKWNMNHTYYEGEKGAEDSRFDGNTFQYIGYNIMQFLLLVVAFGLAYPWTHKMILRWQTKHQLINNDQLINNDRLIYDGTALGMLVRALVVILTLVIPFAFLASPWAYCWLWCYQYSHTHVDHSSAE"]}}, {"location": "[1099353:1099962](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKRTDKGSGRRTGFLQKLAALLIAVVFLAGGIMIGQHLPKKSREQVTVATVSAKLKAIGELATEQYTYTGIYKLSNGQIPFITKKGFTMVYTANFKAGVKVKDIKVQVNQDQVTVTLPQSQLLDKKIDPSSIKFYDQSYALFNWNQKEDITKAEQAALKKATGVAKKSGLLARSQENAKKLIRQLLQGTLDGRKLVIKTEE"]}}, {"location": "[1100470:1101211](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["artM_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54537"], "locus_tag": ["MAAAAKME_11760"], "product": ["Arginine transport ATP-binding protein ArtM"], "transl_table": ["11"], "translation": ["MNKIIEVKHLKKNYGDKEVLKDINAVIEKGKVITVIGPSGSGKSTFLRCLNLLEKPTSGQVIFEGTELTDLNEEELDQLRQKMGMVFQSFNLFPNMSVIENVKLAPMKVKGMSDQEAGDLAHELLAKVGLDDFADHSPASLSGGQQQRVAIARALAMQPDMMLFDEPTSALDPEMVGEVLKTMQDLAQTGMTMVVVTHEMGFARKVADEVWFMADGYLLEQGSPDQVFDHPQSDRAKDFLAKILEA"]}}, {"location": "[1101231:1102734](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.2.-"], "codon_start": ["1"], "gene": ["mltF_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02016"], "locus_tag": ["MAAAAKME_11770"], "product": ["Membrane-bound lytic murein transglycosylase F"], "transl_table": ["11"], "translation": ["MKKLIKIMTALLLLAGLFTAAIPAVDAASSRKVASGTVMKKIKKSGKLVVGISADYPPLEFTKNVNGKNKYVGVDVELAKQIAKDLGVKLEIKNMDFDSLLVALETGKIDVIISGMTPTAERKKSIDFSKIYYAEKSDYFVISKTNKAKYTSTASFKGKTVGAQTGSLQYTSLKKNAAKSGIKVKGLAKISNLLMALKSGKVDAVLLGELNAKTYTTNDTSLSLVKSSLSQAQMGNAVGVAKGQGDLVKAINKTINNCQKQDLFNKKYIPAAAKAMKQASSKTNNSMSKYASYFATGLGYTMIITICSITIGLVLGVIFALMRLSKNKLLHAIAVCYIEFLRGTPQMVQIMFVYFGVGMLIKNMPALAAGIIAIGLNSGAYVAEDIRSGINSVAKGQTEAARSLGLSQAKTYRYVVFPQALKNIWPALGNEFITLTKDSSLVSVIGVGELMYETGLVQTATYRGVMPLFITMCIYFVVTFIFTRLLNYFERRMNLTSSRA"]}}, {"location": "[1102781:1103636](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cynR_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P27111"], "locus_tag": ["MAAAAKME_11780"], "product": ["HTH-type transcriptional regulator CynR"], "transl_table": ["11"], "translation": ["MNFKQLNYFLVVAEEGQITSAAKRLFVGQPALSYQLKQLEEELGAKLFIRQPYGIELTEAGKKLRDYAGQILTLAKNVQTEITELDRGGWGRVKLGSVSSSIGELPSAKLTAFARQHPGVSFDIYEDNTFGILDKLQGNLLDLAIVRTPYNRVNLNFVDISDEPMTAVTCQDFFPGKGKVGLQDLAGQPLVIYRRFEDMFKEAFAEKGLTPNFVVKCDDSRTAIRWSDSGLGIALVPESIAKTYAKGHIYPIDSAKWRTRLQLVWRKDRVVTPLMRQIIALYAK"]}}, {"location": "[1103813:1106072](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.6"], "codon_start": ["1"], "gene": ["kdpB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00285"], "locus_tag": ["MAAAAKME_11790"], "product": ["Potassium-transporting ATPase ATP-binding subunit"], "transl_table": ["11"], "translation": ["MKVKGLTQAEADLRLKKDGLNQVPEPEFSFWKEFAGKLWNLSAWILEAALLLECALGKWIQSLFVLLMLLFAAYNGATQKKKSRKVLSSISQQLTPVVAVLRDDRWQKIDSKYLVVGDIVNLQKGDILAADIDLLDGNLTLDESSITGEAKNVHKKAGATAFAGTTVMDGEALGRVSATGTNSRSGQTINLINTSAAPGHLQQLLTKIIYYLCLLDGVLTVILLIAAVIRGENILEMLPFLAMMFIASIPVAMPSTFTLSNSFEATRLSKEGVLTSDLTGIQDAANLNLLLLDKTGTITENKTAVASFANFSKLSDEEVLALTSLAIDQRNQSVIDLALMDFLQEKKIPVKEAEAFTPFTSSQGYSEGRGEGHDVKLGSVKQFSKIDPAISEQMAAVDLSLGRSVGILLDDRLAGIFITKDKVRADSKAALAELVKRGIKPVMLTGDNQKTAASVAEEVGLTGKVISISDFKEGVKAEDLAGIADVLPEDKLDMVKYFQKAGYIVGMTGDGVNDSPALKQAEVGIAVSNAADVAKKSSKMVLLDEGLSPIVKILDAGHRVYQRMTTWSLTKLARTAELTMLLTFSYLIFGYLPMALNAMVIYTIMNNMVTMMIGTDKTHITYKPENWDMGKLAKIAFSLAGAWTIIGFAFVSALTKAGVNHDQVGTMVYVFLVMSAMMIVLITRTKRFFWQSAPSKPVASVQIADILLTCLLALLGIAMPAIGIKELLTPLAVAFLAAILIDLVYQPVMKNK"]}}, {"location": "[1106131:1106581](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1316"], "gene": ["brpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DVR0"], "locus_tag": ["MAAAAKME_11800"], "product": ["Biofilm regulatory protein A"], "transl_table": ["11"], "translation": ["MRKRIFRIIMSLAILLLVILSGMLAYSYFNVERAVSRSYQKSGLKAAENESKEEVLKGKKPLVVLLLGTDTGALDRDYKGRTDSIMVLVLNPRTKKSTIVSIERDFQVNFPQYPQYSPSKINAAYTYGGVKLLSQTLDRYFKIPVILMP"]}}, {"location": "[1106586:1107078](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "db_xref": ["COG:COG1316"], "gene": ["tagU_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q02115"], "locus_tag": ["MAAAAKME_11810"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MGGMKSIIDQLGGVDITPLLSFDYEGYSYKKGVTTHMNGDKALEYCRMRYDDPEGDYGRQKRQRQVLTAIIKSGADVQSLLKPAFLNSVSSQVRTDLTFSDLTQMAKSYRASGDQLETDYTRGTGFNQDGGSYQHISLAERQIISDLVRQAAGLKKVQLANGQ"]}}, {"location": "[1107193:1108327](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKFWNHIDQKYFKIALYCLGTVFAGLFILLLAYESTGFWVRVGKILAAIAQPLTYGLVLTYLLLPLTNFFDRKFSKGSSRGAVATASRSAAVALTLLLLLLVILLAATAVFVTFSKQLSHFSLDSLESLYDQLKAQYSSFINEILAYLQKQGWSTSGLVSYMQKGVGRVTGFLSDFFFGVIFAIYFLYDGQRIAAYWKRNLGTLLNKKVIKGIKLFLADADRSFSGYIRGQIIDAFIVGLLVSLAMLIAKVPYGLLIGLVTGLGNLIPYFGPILGYGMVILACTLSQNMTALIVGMIILLLIQAIDGNILNPKLLSSAIHIHPLYVIACVIAGGAMGGFVGMLIAVPMGALLKTEFERLIAYRQKQLEKSKEASEE"]}}, {"location": "[1108444:1109470](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.6.1.42"], "codon_start": ["1"], "db_xref": ["COG:COG0115"], "gene": ["ilvE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQ75"], "locus_tag": ["MAAAAKME_11830"], "product": ["Branched-chain-amino-acid aminotransferase"], "transl_table": ["11"], "translation": ["MAKKDLDWANIGFGYHQTDKRYVDYFHDGAWEGGKLTDDPNVVLNECAETLQYAQQVFEGMKAYTWKDGSVVVFRPDQNAERMYNSAKRIEMQPYPKDKFVEAIDQVVKGNVDWVPPYGSGATLYLRPYEIGTTPIIGVAPATDYMFRIFATPVGPYYKGGATPVAVQVAQYDRAAPRGTGHVKAALNYAMSLKATVDAHQAGFAENMYLDPATQTYIEETGGSNIIFIDQNNHLVVPKSNSILPSITRRSIVYLAEHYLNLTVEERQVRFDEVPSFKECALVGTAAVLSPVGRIVNGDQVIDLPSGMDKPGKFMEELYNTLTGIQNGEVEAPEGWIHHVM"]}}, {"location": "[1109670:1110558](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1230"], "gene": ["czcD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07084"], "locus_tag": ["MAAAAKME_11840"], "product": ["Cadmium, cobalt and zinc/H(+)-K(+) antiporter"], "transl_table": ["11"], "translation": ["MKDQASKRYLWVTVFNITITAAEIAGGIISGSLALLSDALHNLSDVVSIVVAFAANLVAKRSKDQHKTFGYKRAETLAAYTNGLFLLAISIYLFISAIKRFSKPEPIEGGVMFIVSLIGLAGNLISMLILGRGSKENLNARALFLNMMSDTLSSVAVVVGSLLIYYQNWTLVDPVLTMAAAIFLLKEAFEVTRDSANVLMEANPDLDLEAIEEAGLAFKEVRQLHHLHVWRYSDDTIMLDAHIVVDSDLTAKRIEELDEEIAACLKEKFAINHVTLQAECSRGLDEDLLSTNKEN"]}}, {"location": "[1110669:1110972](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0640"], "gene": ["bigR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9PFB1"], "locus_tag": ["MAAAAKME_11850"], "product": ["Biofilm growth-associated repressor"], "transl_table": ["11"], "translation": ["MTHEELIDRAARLFKVLGNSLRIHILFYLRKHGESPVSAIVGHLGVSQPVISKQLGILKKYDFVQKRKAGTFVYYSINDQDIVQIIDAMTEHLDHLDRLQ"]}}, {"location": "[1111051:1111579](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.7"], "codon_start": ["1"], "gene": ["apt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P68779"], "locus_tag": ["MAAAAKME_11860"], "product": ["Adenine phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MSIDFKKYIASVKDFPNEGIIFRDITPILQDGEAFAAATHEIAEYAKSRQADVIVGPEARGFLVGTPVAIELGIGFVPARKPHKLPREVEAAAYDLEYGSNVLEMHKDAIKPGQRVVICDDLMATAGTMHATKELIERLGGKVVGAAFYIELTDLKGREKFPDVDIFSLVQYTGA"]}}, {"location": "[1111568:1113845](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWQERTAAPLASDLVEEFQLSPLTAKLFSLRGIDNEEKIDYWLHASENDLADPFLMHDMDKAVGRINQALDEGEKITIYGDYDADGITATAIMTEMLTIMGADVHYFIPDRFKDGYGPSLDRYKDIVADGTKLIITVDNGATGIEEVAYAQSHGVDVIVTDHHTFKEEKPDAYALVHCNYPGQAYPFDDYCGAGVAYTIARAVLEDTASEFLELAMIGTIGDMVKVSGEGHVIVKRGLEMLNESSRPGLEALIRNAGLTPGMIDEEDVGFSIAPRLNACGRLADASLAVRLLLAESPGEAQELADQIEKLNNERKDLTQATMQAAEAQIKRRGYQKEATLTLYDPAWHEGVMGLVANKIVEKYHKPTLMLTKNEAGLVKGSGRSSQGFNLFNALKPFEGKSITQFGGHDFACGLSTTEENLNQLRRDFNQSYKAGEKAPEKVQEYDGTISPLDVDLTSVYDLAQAGPFGTDNPQPVFLLDRPQISNFRPMRKGCSFMVGPVRAVDFDHGLNQTVLPYLRQMLVKLASNTFKGKTNVQFRIVDLHYGQSLYAPAARIVDFRGQENLLGFADKYLLFDERNLSQAMNHFGITKEQISLAKDNEDLSQQVVSVLDVPANEAQLNFVLAKPYRQLYLRFQLDQLPGETLPSRGNFGLVWQYFLAHPGLKPNDYMQAAGQLGMDPDSIKFILRVFFTLDFVKMEEDRLLPKPSPTKKSLDDSAYYRSVKAEYAFANKLRTISSDELIRYASGLANGGLQNVN"]}}, {"location": "[1113841:1114543](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "db_xref": ["COG:COG3764"], "gene": ["strA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8E5N2"], "locus_tag": ["MAAAAKME_11880"], "product": ["Sortase A"], "transl_table": ["11"], "translation": ["MTSTASKNTKDHPVRRIILRLVAVILFLLGLALVFNQQISAFLVKQNQTAALKGLTRDQVVQNQKKKGMYDFKKVKSIDFAQTTRSRVKNTAGAIGAISIPSVKLYLPVMQGLSDAALSTGGGTMRADQKMGKGNYPLAGHYMTDQGGLFSPLERVKLGSMVYLTDLKKVYAYKIYYKKVVDPSAVWLVANTKKKIVTLITCADGGVNRWSLRGKLTAVKPASKQNLEMFKLR"]}}, {"location": "[1114523:1116362](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.5.-"], "codon_start": ["1"], "gene": ["lepA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65272"], "locus_tag": ["MAAAAKME_11890"], "product": ["Elongation factor 4"], "transl_table": ["11"], "translation": ["MDLEKLKDYQKHIRNFSIVAHVDHGKSTIADRILELTDTVSKRQLKNQMLDDMPLERQRGITIKMNSVQVKYHANDGEDYIFHLIDTPGHVDFSYEVSRSLAACEGAVLVVDASQGVQAQTLSNTYLALENDLEILPVLNKIDLPSADPDMAKSEIGDMLGLDASDAVEVSGKTGAGIPELLERIVTDISAPTGDLTKPLKALIFDSKYDDYRGVVMSVRIEEGTVKPGDEIMIMNTGKKYEVTEVGVSSPHPVKEDILIAGDVGYITANIKSVRETRVGDTITSAENPTAEALPGYRQIPPMVYSGMYPTDNRDYDDLKEALQKLQLNDASLEFEPETSQALGFGFRCGFLGLLHMDVVQERLEQEFDLDLIMTAPSVDYHAIMPTGEVKLIDNPADLPDAGEYKELQEPYVKAEIMVPNDFVGAVMQLCEGKRGEFQTMDYLDKYRVNVIYEMPLAEIIYDFFDQLKSSTKGYASLDYEIIGYKATNLVKIDILLNKEPIDALSFIAHREEARDRAVQMCSLLKKLIPRQNFQVDIQGAIGSKIISRATIKPYRKDVTWKIHTGDPDRRAKLLEKQKRGKKRMKSVGRVEVPQDAFMAVLRMNDDDINGK"]}}, {"location": "[1116483:1117620](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0484"], "gene": ["dnaJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O87778"], "locus_tag": ["MAAAAKME_11900"], "product": ["Chaperone protein DnaJ"], "transl_table": ["11"], "translation": ["MAANRDYYDVLGVSRDASDAEISKAYRKLAKKYHPDLNHEAGAEEKYKEVNEAYEVLHDPQKRQQYDQFGQAGMNGQGGFGGQYGGQGFGGADFGDFGDIFSSFFGGARQQVDPTAPQRGADLDYTMTIDFMDAIKGKTSEISYSRSTTCEVCKGSGAEKGTHPITCDKCGGSGMMTITQRSVLGMIQRQTTCDKCTGSGVIIQHPCHNCHGKGVKTQKQTLQVKVPAGIDNGQQIRLAGQGEAGKNGGPYGDLYIVFRVRPSKDFTRRGQTIYTTVPISFAQATLGDEINVKTVYGDTKLKIPAGTQPNQKFTLKEKGVPSLRGGSTGDQVTTVEIVIPKSINEAQRKALLEFVKASGGSIAPQEKGFFERLKEKLS"]}}, {"location": "[1117702:1119547](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0443"], "gene": ["dnaK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O87777"], "locus_tag": ["MAAAAKME_11910"], "product": ["Chaperone protein DnaK"], "transl_table": ["11"], "translation": ["MSKVIGIDLGTTNSAVAVLEGKEPKIITNPEGARTTPSVVAFKDGEIQVGEVAKRQAITNPNTIVSIKRHMGESDYKVKVGDKAYTPQEISAMILQYIKKFSEDYLGEPVTDAVITVPAYFNDAQRQATKDAGKIAGLNVQRIINEPTASALAYGLDKDEDDETVLVYDLGGGTFDVSVLQLGDGVFQVLSTNGDTHLGGDDFDNKIIDWLVDGFKQENGIDLSKDKMAMQRLKDAAEKAKKDLSGVSSTHISLPFISAGEAGPLHLEVDLTRAKFNELTDDLVQRTKIPFDNALRDAGLSVGDIDKVILNGGSTRIPAVQEAVKQWAGKEPDHSINPDEAVALGAAIQGGVISGDVKDIVLLDVTPLSLGIETKGGVFTKLIDRNTTIPTSKSQIFSTAVDNQPAVDIHVLQGERPMAADNKTLGRFELTDIPAAPRGVPQIQVTFDIDKNGIVNVSAKDLGTGKEQKITIQSASGLSDEEIERMKKEAEEHAEEDAKKKEEVDLRNEVDGLIFQTEKTLKEVDGKLADSDIQPVKDALEDLKKAQKDNNLDEMKEKKDALSKVAQDLAVKLYQQNSQNQQGQGGQAGPTDDGSNGANGDTVDGDFTKVDPDK"]}}, {"location": "[1119606:1120194](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["grpE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01151"], "locus_tag": ["MAAAAKME_11920"], "product": ["Protein GrpE"], "transl_table": ["11"], "translation": ["MSKEEFPSEKDLPQEDQEKQAKAAEADKAGVKEAAKPADVELDQLKAEVAALTQKNKDLEDKYLRSQAEIQNAQRRYSKERADLVKYESQRLGKDILSSVDNLERALQVKADDEASRQLKKGIEMTLEGLVRALKDNGIEEIKADGEKFDPTLHQAVQSVPAENDDQKGHVVQVLQKGYVYKDRTLRPAMVVVAQ"]}}, {"location": "[1120205:1121252](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1420"], "gene": ["hrcA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P30727"], "locus_tag": ["MAAAAKME_11930"], "product": ["Heat-inducible transcription repressor HrcA"], "transl_table": ["11"], "translation": ["MLTKRQELILKTIIQDFTKTHEPVGSKTVMNQLSIKVSSATIRNEMAVLEEHGLIEKTHSSSGRVPSTEGYRYYLDNLVQPLQLPEEVYNQIGYQFDQPFNQVDEIVKEAAKILSDLTDYTAIAEGPEAKNVSITGFRIVPLAPRQVMAILVISDGSVKNQLYTLPRHISGDEVEQVARLINDQLVGKNLSEINKQTFEQLYRSQIVGKNAPEFLELLEAVIKDAASEQMYVDGQLNLLNNIENSDLKAIKSLYELINSSSLAGELISSYSDSPSHYPVHVRLGAELENDLLKDFSLVMAEYSVGRYGRGMIALLGPRHMPYSEMIGLMEYFRQELARKLLDYYGRFK"]}}, {"location": "[1121389:1122328](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0196"], "gene": ["ribF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AG40"], "locus_tag": ["MAAAAKME_11940"], "product": ["Bifunctional riboflavin kinase/FMN adenylyltransferase"], "transl_table": ["11"], "translation": ["MKVINLSYPFKKELTAGKVVLALGFFDGVHIGHQKLIKEARIIAVEKDLPLMVLTFDRHPKEVYAGVKDFEYLNPPEEKAYEMSKIGVDYLVILKFTPEFSHLAPQAFVDEIIMGLKADTVVAGFDYSYGPKDVANMENLPSFAKGRFDIKVVPKQIFAGEKIGSAEIRQAVKSGNLRLATELLGHPYLTSGKVVHGFRNGHKLGFPTANLELAWPKVLPKIGVYATMTQVGDSWYQSMTSVGYNVTFNDEKKIYIESNIFDFDQDIYGQQITIAWYKYLRGEEKFADMAALSEQLKLDQVASKNYFSSLIE"]}}, {"location": "[1122441:1122999](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["Int-Tn"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22886"], "locus_tag": ["MAAAAKME_11950"], "product": ["Transposase from transposon Tn916"], "transl_table": ["11"], "translation": ["MMKYTLFRLLAFSGMRIGELIALEWSDVDFASQSVSINKTLTLDKYGQATVGSPKTTNSNRTVLLDDVTMTILRQWRAEQARRIIYFGKPRNNLVFASEHGGHLSNGTIKGWNKKIAENKGLRAISLHGFRHTHASLCFEAGLTMQDVKERLEHSSISTTMDIYTHVTNDRKEESVQQLAKFMRA"]}}, {"location": "[1123203:1123500](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTKNEPQISRSVEKFFKDYKVMELLRRCGLRKSKGIPLWLVLSYIFSNVFPDRSMYMQQKSGKCTAGFSKNTYYRFMHRTHISTGFASLFC"]}}, {"location": "[1123523:1124459](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_11970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDLTSDQRADCFVFDDSLYSRTGYKKTEPAAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIAAKRRIMAQSKGTDVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEGKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKRGTEYHGLSYDALTAHIAFVFLCYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[1124581:1125805](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_11980"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAIQLTFPEIEHLLANPRGKNYWSIVLRFPHPDIVLETKEADITDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1126675:1126885](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLke1"], "locus_tag": ["MAAAAKME_11990"], "product": ["ISLre2 family transposase ISLke1"], "transl_table": ["11"], "translation": ["MTAFGEISYWRRRYACPGKKAQYPLDKLMGYDKYKRYSVLAVKDILQVSAVVTYRNTALAVNTLSCFNL"]}}, {"location": "[1126912:1127086](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MESIIADIVKIIKSENNVIAREKALMCCFFDLIRELIKLALEEVDAGLVEETKKQGY"]}}, {"location": "[1127886:1128798](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.47"], "codon_start": ["1"], "db_xref": ["COG:COG0031"], "gene": ["cysM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P56067"], "locus_tag": ["MAAAAKME_12010"], "product": ["Cysteine synthase"], "transl_table": ["11"], "translation": ["MLIHSISELIGHTPLIDLQINIPNHSHIYAKLEMFNPGGSIKDRLGQYMIQDAINRGQVTEGVTTIIEPTAGNTGIGVALAARQHHLPTILVVPEKFSFEKQQLMKALGAKLINTPSDQGIKGAIEKAEALHDQIPNSFVPMQFKNPANPDTYYHTLAPELLDDLNDPIDAFVAGAGSGGTFAGVARYLKEQNPATQTIVVEPEGSILNGGPAHPHRTEGIGVEFVPPFFKDVQIDKTLTISDADAFHQVKELAKKQGLFIGSSSGAALAASLKVAKALPENSTIVTIFPDSSERYMSENIYN"]}}, {"location": "[1128819:1130004](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.48"], "codon_start": ["1"], "db_xref": ["COG:COG0626"], "gene": ["metB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1M0P5"], "locus_tag": ["MAAAAKME_12020"], "product": ["Cystathionine gamma-synthase"], "transl_table": ["11"], "translation": ["MEFDTKLIHGGISEDKATGAVSVPIYMASTFHQQKIGENQYEYSRSGNPTREAVEKLIAELEVGTAGFAFASGSAAIDTVFSMFSAGDHFVIGNDVYGGTFRLIDAVLKRFGMTFTVVDTRDLAAVEEAITPNTKAIYLETPTNPLLRVTDIVAVAKIAKSHQILSIIDNTFSSPYVQRPLEQGVDIVLHSASKYLGGHSDVIAGLVVTKDDQLAEKIGYLQNAIGGILAPQESWLLQRGIKTLSLRMRAHLANAEAVFNYLSNQPLVSKIYYPGDPNNPDYEVAKKQMHGFGAMISFELQDGLDPKQFVEQLHVITLAESLGALESLIEIPALMTHGSIPRDIRLKNGIKDELIRLSVGVEDQKDLLADLERGFNELKRSEKNVSDSKVHSQA"]}}, {"location": "[1129969:1130302](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.30"], "codon_start": ["1"], "gene": ["cysE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67765"], "locus_tag": ["MAAAAKME_12030"], "product": ["Serine acetyltransferase"], "transl_table": ["11"], "translation": ["MFQTARSILKRDPAAHSLLEVLLTYPGIRALFWYRIAHFMAFHRLYTIAGFLSQHAAKVTGISISPEAQIGKRVFIDHGIGVVIDATAVIEDDVTILHGVTLGARRAVER"]}}, {"location": "[1132243:1133140](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.25"], "codon_start": ["1"], "db_xref": ["COG:COG0130"], "gene": ["truB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97QJ3"], "locus_tag": ["MAAAAKME_12040"], "product": ["tRNA pseudouridine synthase B"], "transl_table": ["11"], "translation": ["MFNGIIVIDKAAGMTSGDVVYKLRRLLKQKKIGHAGTLDPEVTGVLPIALGQATKLIELMHERPKAYVGEGMLGLATDSYDLEGKILAERALSQPVSDQAIKAAMEKLIGEIVQQPPIYSAVRVNGKRLYEYAREGIPVERPKRTVQVFLYDLTAPSQFDPEKGRQTFTYEVECSKGTYVRSLVNDLGEELGLPAVMTKLRRTASSGYKLQDAVTLEELADNLDHAEDYIQPIDSFFADYQQVDLDAALWQQVKNGAWIKLPLDADKVALRYNKTVKAIYRAKGQGLYCPDLMLLSNE"]}}, {"location": "[1133190:1133553](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rbfA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65967"], "locus_tag": ["MAAAAKME_12050"], "product": ["Ribosome-binding factor A"], "transl_table": ["11"], "translation": ["MKHRKGRVEGEILRELTKIIRKNIRDPRVSNVTFTAVECSNDFSYATVYYSLLTEDEQAQKEAEAGLEKAKGTMRHLLGQSLTMYKVPELIFKRDQSVIYGSKIDRLLADLKKQEQDRQN"]}}, {"location": "[1133565:1136043](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["infB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00100_B"], "locus_tag": ["MAAAAKME_12060"], "product": ["Translation initiation factor IF-2"], "transl_table": ["11"], "translation": ["MTKKQENETSKELGMDNKKTSGKSGKLKISVSAIRKGEKKTEGKRSNTRRRANNHSNDHSKRRRPAAQDLLKDLKQKQRADEARLDQESKAAKQEYKKSLNKAEASESKPVVKKVESVEKPAETAAEAPKVRGPKILKPSPARLKQNQANSEKPAAKPSSSRRPSSRPSFTEAPMPENKEGRRRKSGKPGRKGQNSYADQGRGANSNRSEQRKRKNKKHQSAPQVKKQVTQRKDRPLPESFEYEVGMNAQDLGKILHREPAEIVKKLFMLGIMINQNLSLDKDTIELLAADYGIEAVEKVHEDISDIDNIFAQEMEESKNSENQVVRPPVVTIMGHVDHGKTTLLDRLRHTRVSEHEAGGITQNIGAYQVRINDRLITFLDTPGHAAFSSMRARGAEITDIVVLIVAADDGVMPQTIEAIDHAKSAGVPIIVAINKMDRPGANPAHVTEQLMQYELIPENYGGSTIFVNISAKTGMGIDELLENIILEADMLELKADPKQKAIGTVVEARLSRGKGPVADVLIQQGTLRVGDPIVVGDTFGRVRTMTNDKGHQVKKATPSMPVEITGLNDVPESADKLVVFADEKTARAVGEARAQQSLQKQRENVQHVTLDNLFDTMKRESMKSVDIVLKADVQGSAEALAQSFQKIDVEGVRVNIIHSGVGAINESDVTLASASNALIIGFNVRPTATAKSQAAQEGVDIRLYSIIYKAIDDVKAAMQGMLEPTYEEKVIGNLTVRETWKVSKIGTIAGAFVDNGYVTRESGIRVIRDGVVKYDGKVASLRRFKDDVKEVKAGFDCGLTIENFNDIKEGDELEAYEMQEVKPS"]}}, {"location": "[1136047:1136332](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1358"], "gene": ["rplGA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32729"], "locus_tag": ["MAAAAKME_12070"], "product": ["putative ribosomal protein YlxQ"], "transl_table": ["11"], "translation": ["MLGLATRAGKTVSGTDIVLAKLKKGKLKCIIIANDLAENSRGKIEAAVKARPTPLVDVFTEAELSQAVGKKRKVLALTDRGFAKTLLDKIKEGV"]}}, {"location": "[1136358:1136637](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKDLLTDTMQPKKDLVRIVVDKEKNVSVDPSGKKPGRGAYVSLKPEKIAAARKSKVLERSLGVKVADEFYDELFAYVDHQKARKELFGDQK"]}}, {"location": "[1136667:1137888](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0195"], "gene": ["nusA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P32727"], "locus_tag": ["MAAAAKME_12090"], "product": ["Transcription termination/antitermination protein NusA"], "transl_table": ["11"], "translation": ["MSKEMLEAFDVLEKTKGIKQDVIVEAMKAALAAAYKKNYGLAENVEIDFNEKKGDFKVMALKTVVDEVQDDRVEVSLKDALAINRAYEVGDTIKFEVTPKNFGRTAAATAKQVVMQRLREAENAHIVNEYSQYEDELVTGTVERTDNRFVYVNIGNVEAVMDIKCDTIPGEHYNPQDRVRVLVTKVGADGKGAQIRVSRTAPDVVKRFFEQEVPEIFDGTVEIMSIAREAGERTKIAVKSNDPNIDPVGTCVGPRGSRVQNVVNALGGENIDIVQYEEDPSDYIANALNPAEVIAVQFEDEDDERKAFVIVPDYQLSLAIGKKGQNVRLAARLTGYKIDIRPESEVEFVDESEVEDETEVAEDQDLQQAAVEEADDQAEAEATEADENTEAEEAEDAEDLDLDDEE"]}}, {"location": "[1137907:1138384](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0779"], "gene": ["rimP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97S61"], "locus_tag": ["MAAAAKME_12100"], "product": ["Ribosome maturation factor RimP"], "transl_table": ["11"], "translation": ["MPKNLTPILEAIEPVIIGHDCELVDLEYVKEKSQDYLRIYVDKQPNGIDIETIAELSELVGEKLDSMQPDPLPDPYILELSSPGLERPIKKEQDWEKAKGQYIHVGLYQKLEGEKVFEGHLLDLDDQEIKLEIKIKTRRKQLTIPRKQIASARFAIEF"]}}, {"location": "[1138493:1142831](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG2176"], "gene": ["polC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P13267"], "locus_tag": ["MAAAAKME_12110"], "product": ["DNA polymerase III PolC-type"], "transl_table": ["11"], "translation": ["MTDKNQLFLKLLKQVGFSAGGADEAVLQAGEIKNVDVYRKERRWDIHVFFTTPLRFESYNALNQAIKHEFNDFVDTRLIVETADGQQQYLPDYWQYAVENSEVLSANPAAQNFLVGQAPYEDSGRWVIPINGQLFDKMLEQRLLDSFSLELRDYGFFNVKLLTEVTDQGGQSDFESLAQLVEAHEKNMQEAFQQAPAKPKPAPRPSYQGRRGKKTSFGPGAISDKAEITQLKDLSEDQRSAVVEGHVFKAEMQELRSGSFIFYGEMTDYTGSISFKKFVRDSDKEEIEYLKGIKPGVWIRMQGSLKDDQYAHDLIFNIYSMELTEHVGRQEAYQGEEKHVELHVHTNMSQLDATSDVADIIKTAKKFGQPAVAITDHAGLQALPNAFEAGKKTGMKVIMGLEANMVEDHGLLVLNPASMKYEDQEFVIFDVETTGLSSVYDTIIEIGAVKMKNGEVIDRFDKFINPHHPLSETTINLTSITDEMVQAADDEAVVIKQFMDFYGNDPLCGHNVQFDVGFVDAALKRCGYPEISQPVVDTLEVSRLLHPEQSRHTLDSLCRKYNVPLEHHHRANQDAEATGYLMFKLLDAFNDKYQEDDLGKMNDYSNGEGYKRARPTHITVLAQNQKPGLRNLYELVSLAGIKYNFKGLRTPKSELRRLHAGLLYGSACSQGEVFIAMMQKGYEEAKKKAEFYDFLEIQPPSNYSSLIADGLIADEAQLEEILTNIYKLGRELNKPVVATSDAHYIDKHEAIYRDVLLAAQRGNPNRNKQHPDLHFYTTQEMLDEFSFMGEDIAKEVVISNPNKINAMIDEGVQPVQDESFPPKIPHTAERVRKLTYDKAHELYGDPLPDNIQARLDRELDAIIGNGYGVVYLISQMLVAKSVKDGYLVGSRGSVGSSLVATMMGITEINPMPPHYRCPKCKQSEFFENGEYASGFDLPDKKCPDCQVMMVKDGQNIPFETFLGFHGDKVPDIDLNFSGDYQPVAHNFIRVMFGPNHSFKAGTVGTLADKKAIGYVKHYQDEHPEIKMNNAEVDRLAIGVTGVKATTGQHPAGIVVLPDDKDIYELTPLQYPSDDISKEWKTTHFDFHQIHDNLLKFDILGHQDPTMIRMLQDLSGIDPLTIPTDDPKVMSLFSSPEALGVTPEQINSKTGTLGLPEFGTPFVRGMLEETKPSTFAELLQISGLSHGTDVWLGNAEELINNGTCKLKNVIGCRDNIMTDLIRWGVKEEVAFSTMETVRKGKGISDENMAVLKENKNIPDWYIPSCLKIKYMFPKAHAAAYILMALRVAWFKVYYPEIYYAAYFSVRADKVDLEAMSRGKNTVVALINRIKEKGTAATKLEKDLQTYMELVNEAIERGINFKMVDINESEATTYKIVDKHTILAPFNAVDGLGDSAAKQIVAARSEAPFLSKEDLQVRGKVSQKIMDFFENNNVLEGMPDQNQLSLF"]}}, {"location": "[1142843:1144541](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.15"], "codon_start": ["1"], "db_xref": ["COG:COG0442"], "gene": ["proS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831W7"], "locus_tag": ["MAAAAKME_12120"], "product": ["Proline--tRNA ligase"], "transl_table": ["11"], "translation": ["MRQSIFFMPTLKETPADAVAKSHQVMLRGGYIRQVTAGVYSYLPLGYKVLRKTEKIIEEEMANAGVVEMIMPHMLPASMWEESGRLPKYGPEMFRLKDRHGREMLLGPTHEETFTDVVAKSLKSYKQMPLQLYQIQTKFRDENRPRFGLLRGREFVMLDGYSFAASQEQLDKQFDDEKAAYLKIFKRTGVEVRPVIADSGTMGGKNSIEFQAPAAVGEDTIATNASGTYAANLEMAVSVDTFKQEPEELKAMEKVATPGCDSIDKLAEFLQVPATRIVKSVLYIVDEKKKVLVLIRADKEVNEVKLTHLLDCDSLRVAETSDLEELTGAGKGGVGPVNADWADEIVADKTVKGLYNVVVGAGESDAQFINANLDRDFRADRFADLRVANEGEPDPVDHEPLKFTTSIEVGHIFKLGTYYTETMGAKFLDQNGKSQPVIMGSYGIGVTRLLSAVVEQHATENGVAWPKEIAPFGIHIIQMKMKDEIQSKLAEDLEAKFAKYDVLYDDRNERPGVKFNDADLVGAPIRITVGRDAADGIVEVKRPGDDQAQKLAVADLEDFIANELD"]}}, {"location": "[1144580:1145828](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63333"], "locus_tag": ["MAAAAKME_12130"], "product": ["Putative zinc metalloprotease"], "transl_table": ["11"], "translation": ["MKSILAFIIVFGLVVFVHEFGHFFVAKKAGILVREFSIGMGPKLIQWRPGQTTYTIRWLPLGGYVRLAGPDEQSEIDPGTAVVLELNEAGIVTRIDASESDLPIEGRPLRVTKADLVDDLTIAGYENGDESQLVTYKVDHDATMIDDTGTELQIAPRDVQLPAAKPWKKLATSFAGPFMNVVLGFVVLTIYSFASVGPATTTVGQVAANSPAQHVLQKGDQIVAINGRKISTFDQVSQAIDSSKGKTLTVKVKRQGSEKSVQLTPKYSKKTKSYLVGIVAKADNSFSAKLKRGWDLSWQVTGMIFQALGNLFKHFSLNKLSGPVGIYSETSKATSMGLTYMLAFVGMLSINLGIVNLIPIPGLDGGKLFLELIELLRGKPIPEEHETVVDLIGVVFLLILIIAVTGNDIYRYFIK"]}}, {"location": "[1145837:1146635](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQRVITAVVALLIFIPVLVAGGMWIDWLAAFVAAVGISEVFLMKKQILVSVDFTLAALATLTWTVPNSFFGFLPKNWSKWGVFYALVMILLTWTVLSKNKTTFDDIGVYVLSSLYIGTGFHYLAAIRNSDPVYGLWRLLFAFVIVWTTDTAAYMVGRKFGKHKLWPVISPSKTWEGSIGAVIIAVIVTAIYVNLAPVGGDKTSLIIASFFLSIAGQMGDLVESAYKRFYGVKDSGKILPGHGGILDRFDSTLFVLPIVALIFGI"]}}, {"location": "[1146640:1147372](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.31"], "codon_start": ["1"], "db_xref": ["COG:COG0020"], "gene": ["uppS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q88VJ8"], "locus_tag": ["MAAAAKME_12150"], "product": ["Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)"], "transl_table": ["11"], "translation": ["MDKNKQLNHLAIIMDGNGRWAKKRKMPRFMGHKAGMDNVEKIALAADELGIKVLTLYAFSTENWARPKDEVNYLMKLPVKFFDKFMPCLQAHNVKVNIMGYLDALPESTREVVERAMAETAANTGLVLNFAFNYGSRKEIVSAVQALAKEAASGEITPEEITEDMVSAKLMTAKFAPYSDPDLLIRTSGEQRISNFLLWQIAYSELAFTDKAWPDFDENDLAEMVKIYQHRDRRFGKLDETDS"]}}, {"location": "[1147374:1147932](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["frr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDH3"], "locus_tag": ["MAAAAKME_12160"], "product": ["Ribosome-recycling factor"], "transl_table": ["11"], "translation": ["MNNETIAKAKRNMNKSIEVYQSNLATVRAGVANASLLDRVMVEYYGVPTPLVQMAGITIPEPRVLMITPYDKTSLNDIEHAILASDLGLTPANDGNVIRLIIPQLTGERRQEIAKEVGKLAEEAKIAVRNVRQEAMKALKKQEKDGEITEDEERRLEKEVQKVTDESTKKIDQMADNKRKEIIQG"]}}, {"location": "[1147931:1148657](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.22"], "codon_start": ["1"], "db_xref": ["COG:COG0528"], "gene": ["pyrH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q831V1"], "locus_tag": ["MAAAAKME_12170"], "product": ["Uridylate kinase"], "transl_table": ["11"], "translation": ["MSQVKYNRIILKISGEALAGEKGTGIDPTVIKKLAHEIKLVHDMGVQIGVVCGGGNMWRGETGAKLGMERAQADYMGMLATIMNGLALQDGLETAGVQTRLQTSISMRQVAEPYIRRVAISHMEKNRVVIFGGGTGNPYFSTDTTAALRAAEINADVILMAKNGVDGVYTADPNLDPSAKKFAELTQLDMISKGLQVMDRTASSLSMDTHIPLIVFNVNTPGNIKRVVEGENIGTIIRGDK"]}}, {"location": "[1148806:1149835](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0264"], "gene": ["tsf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A3B7"], "locus_tag": ["MAAAAKME_12180"], "product": ["Elongation factor Ts"], "transl_table": ["11"], "translation": ["MANITAKQVKELRETTGAGVMDAKKALVEAEGDMQRAIEIIHEKGEAKAAKKANRIAAEGLTGVYVDGNVAAIVEVNAETDFVAQNEQFKTLVNETAETIAKGKPANNEEALALTMPSGESLEEAYVNATATIGEKISFRRFAVLEKTDDQHFGAYQHNGGHIGVLTVVEGGDEALAKHIAMHIAAMSPKVLSYKELDPAFVREELAQLNHKIDQDNESRAMVNKPALPHLKYGSKAQLTDEVIAQAEEDIKAELKAEGKPEKIWDKIIPGKMARFMLDNTKVDQENTLLAQLYVMDDSKTVEQYLESVNASVVSFVRFEVGEGIEKKQEDFAAEVAAQMKN"]}}, {"location": "[1149897:1150659](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0052"], "gene": ["rpsB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNV0"], "locus_tag": ["MAAAAKME_12190"], "product": ["30S ribosomal protein S2"], "transl_table": ["11"], "translation": ["MSVVSMKQLLEAGVHFGHQTRRWDPKMKPYIFTQRNDIYIIDLQKTIKMLDDAYNYVKAVAQDDGVFLFVGTKKQAQEAIAEEATRAGQYYVNQRWLGGTLTNWTTIQSRVKRLKDLKKMAEDGTFDVLPKKEVSLLTKEMDKLQKFLGGIEDMPRIPDVMFVVDPKKEKIAVHEANKLGIPVVAMVDTNTDPTPIDVIIPSNDDAIRAIRLIAGTMADAVIEGKQGADNADVEKELSESVEENSAEEVDDAE"]}}, {"location": "[1150822:1151833](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.223"], "codon_start": ["1"], "gene": ["yfiC"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01872"], "locus_tag": ["MAAAAKME_12200"], "product": ["tRNA1(Val) (adenine(37)-N6)-methyltransferase"], "transl_table": ["11"], "translation": ["MIELKENERIDYMLGDQLKIIQDGQSFAFSLDTLLLAYWAKEAIKNRSKVVELCSGNAAASLYMAAFNKAHYDDVELQEDIVSKARRSVELNDMQDRITVHQGNVKDAGSFLRKDSYDVVVVNPPYFKAPAGHKLNPDRSKAIARHELEINLEEIIAVSAGLLKMKGKMFMVHRPERLGEIINYGFKHDLAVKTVQPFVSRRGQDANLVIVEAVRSGKGDGLVLRDAIEVHEADGSNTPAIKEILEAKLPEEKHYFYVLLCSDGSFYGGYTNDLKKRLGAHNSGKGAKYTKSRGPVEMIYLEEYADKRTAMQREYWFKHHDRAWKEKFLHEQGVKF"]}}, {"location": "[1151903:1152518](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0204"], "gene": ["plsC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DNY1"], "locus_tag": ["MAAAAKME_12210"], "product": ["1-acyl-sn-glycerol-3-phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MLYRIFRPIARFIVWVLNGHLHVHHKERLPEGTYILVAPHRNWWEPILFALAASPTEFMFMTKQELFKNPVLRWILNNAHAFPVNREHPSPSVIKIPVKGLKSEGLSLIMFPSGTRHSASLKSGALVIARMSGRPLLPAVYQGPLTFKGVLQRKGIEINFGNPIVIDRKTKLTPETEAAYNQQLEDAWKQIDQELDPDFHYEAK"]}}, {"location": "[1152599:1153586](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0136"], "gene": ["asd"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04797"], "locus_tag": ["MAAAAKME_12220"], "product": ["Aspartate-semialdehyde dehydrogenase"], "transl_table": ["11"], "translation": ["MKIGILGATGAVGRQMLECIEERQLPVEELRVFASERSKGKKLPFAGQELTLEVVSQERLNGLDYVLGAVSNSLSKEYRPLVEKSGAVYIDNSSAFRQEDGVPLVVPEINGQDALDHHGVIANPNCSTAITLMALAPIAKLSPIKAINACTYQAVSGAGMGGISELKDEVTALTKGESVEAKVFPAQIAFNVIADIGSPLENGYTTEEMKMQNEGRKILHLPDLLVTCTCVRVPVYRSHSIAVTVVTEEPVSVEAAENAIAAFDGDLLVTDHTPTPLENSDKDIVQVGRLRRDLTNPNGLTLWCTGDQIRKGAATNAVQIMEYLENNK"]}}, {"location": "[1153586:1154927](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.2.4"], "codon_start": ["1"], "db_xref": ["COG:COG0527"], "gene": ["yclM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94417"], "locus_tag": ["MAAAAKME_12230"], "product": ["Aspartokinase 3"], "transl_table": ["11"], "translation": ["MSKVVKFGGSSVANSEQFKKVKQIILADPDRKYVVTSACGKSGQEDHKVTDLLYLCAAHITYDVSYESIFQSIVDKYMEIKRSLGLKIDLAGEFAKIRQNMAQNLNLDYLVSRGEYLTGLCLAEYLDADFRDASQVIRFHYDGSIDLDKSQELLKAQVDPGRRVVIPGFYGSLPNGVIKVMSRGGSDITGSIVANAFDVDVYENWTDVSGFYVADPRIIKDPVQIPRVTYSELRQMSYMGANVLHDDAVFPVRQKNIPINVRNTNHPENPGTMIMNDCSELDAQEPPHVITGITGKQDFTVITMVKSHVSAEAGFLRKVLAVFEKFQISIESVPVTVDTFSIVVQTKKIERYLYEIVAELQQDLHLDDIQVESQQAMLAVVGRVMRQMPGMSGKILSTLGDQQINIRTINQACDEQSIVIGVNNQDLVPAIKAIYQQFISEERVER"]}}, {"location": "[1154919:1156068](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.4.1.21"], "codon_start": ["1"], "gene": ["nadX"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01265"], "locus_tag": ["MAAAAKME_12240"], "product": ["L-aspartate dehydrogenase"], "transl_table": ["11"], "translation": ["MQIAIMGCGVVGGGIVKLVEEAETSLLQKIKIKKILVHRDEQILDDQYTTDFVEIVNDPEISVVCECIGGVEPAHSYVKRALEAGKHVVTANKKMLAVYAGELFDLARQKGLVLAYEASVGGGIPWIDNIKHIQRLEPVTAFQGIFNGTSNYILSQMAEKDLDFAACLKEAQELGYAEKDPSDDIDGGDVCYKVCLSALTAFGKIADPSQVDQWGIRHLTKEDFAWAKANGRTIKLLGRGRQAGEKLSLQVLPVMLKKTSLLAGVGLNFNALETDSASLGPATFVGQGAGSLPTAHAAVQDLLDLAEGKKEIMQSAEPGQLTDEEEQTFYLRTNRADFFQDVVAERISEKAFLTKKLTLAEISSLVKESGDPAAFLAGVADE"]}}, {"location": "[1156208:1156643](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADYFYVHKKILPDYLEKVLEAREMLDSREAATVTEATERVGISRNTYYRYKDYVFRAKDPARGQQAVLSLLLADLPGALSAVLTCVTDHRASVLTISQAIPLASHASVLMSLDLAGLKGDINTLLADLKSLPFVKNLQLAGLE"]}}, {"location": "[1156691:1158488](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["yheH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07549"], "locus_tag": ["MAAAAKME_12260"], "product": ["putative multidrug resistance ABC transporter ATP-binding/permease protein YheH"], "transl_table": ["11"], "translation": ["MTMNNEDFQSVWQQPISTKEQGQILKRLWTFVWLYKGELLTAVLGMVAVSAINMLLPTWLQYYMDHYLKAGKVDFSTVYYVALIYGIGVVFKAVCQFTYEYLYALAGEKALEKVRRVLYAKIHTLGMRYFDQTPAGSILSRVTNDTMTLGNFMKVFSAFLLGIVSMVTALIAMYMADPVAGGIVTAFIPLIVGAIWLYNRVNSKIYHEYRARNSLINTKLEESIAGISVIQQFRQEKRIDDDFEKINRQQMQTRFKLIRTNGLLLSPFTTLLYSLALTCVLVWFGYPLRATFVPAGMIYAFANYVQNFFNPLSDMMNSLTFFTDGIVAGKRIFKILDQEEYEPEQKELADAKITEGKIEFKHVSFSYDGKHDVLRDVSFTLNPGETLGIVGHTGSGKSSIINVMMRFYEFHSGQILLDGTDIRDFSKAELRQKMGLVLQEPFMFYGDVASNIRLYNDKITDEQIEEAAKTVQADRFIEKLPGKYHAKVIEGGSEFSSGERQLISFARTLVTNPKILILDEATANVDTETESLIQAGLKKLRQGRTTLAIAHRLSTIADADQIIVLDKGRIVEHGKHEDLLAQKGYYYDLYTLQQNREN"]}}, {"location": "[1158474:1160235](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["yheI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07550"], "locus_tag": ["MAAAAKME_12270"], "product": ["putative multidrug resistance ABC transporter ATP-binding/permease protein YheI"], "transl_table": ["11"], "translation": ["MDTFSKLGWFFKAHRKRYALGITALVLTSAANLVSPRILGMMADQLDTGKISWQQFFSYVLAILLAALALYVCRYFWRKQIYGGAAILEKELRGRLFWHFMQMDRTFFQRYRTGDLMARATNDVQAVQNVAGDGILTLIDAIFTGGTTLLAMMILVDWRLTLAAMLPLPLLAFCARYLGDRLHDAYMDSQAAFSRLNNKTQESLSGIKVLKTFGQGKEDAAAFNKMTYETVDINKKVFRIDSLYDPMITMIIGITYIITIIYGGRLVLSKSISLGQLISFLSYIGAMVWPMFAIGYLFNVLERGSASYDRIMSLLNEKSLIVDSDSMDKEQKLTGDLRYHVTSFAYPDEPDKAALGGVDFDLKNGQTIGLVGRVGSGKTTIIQLLMREFDNYKGRITFAGHDIRQIPLDVYLKEISYVPQNNFLFSMSVRDNIAFAKPDASQVEVEAAAKKSAIHDDILAFPNGYETMIGENGVSLSGGQKQRMSIARALLHDSEILILDDALSAVDAKTEKAILTKLRQEREKKITVIAAHRLSSVMDADLILVMQDGQVAERGTHEELLAKGGWYAQMWQRQELAQKVGEDDDE"]}}, {"location": "[1160344:1160569](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67291"], "locus_tag": ["MAAAAKME_12280"], "note": ["UPF0154 protein SA1178"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNLGLAIFLIILAALLGAVAGFYGARTYMKNYFKKNPPITREMVETMMSQMGQKPSAKKVNQVMNMIKHQAAKN"]}}, {"location": "[1160681:1160918](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P60076"], "locus_tag": ["MAAAAKME_12290"], "note": ["UPF0291 protein SA1176"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEADQVRKRINELYKKKQESGLTEAEEAERKELHKQFIANFRAGFKQQLDSLVIVDDQGKDVTPDKAKQIQKKKVLR"]}}, {"location": "[1161072:1161693](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.88"], "codon_start": ["1"], "db_xref": ["COG:COG1974"], "gene": ["lexA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31080"], "locus_tag": ["MAAAAKME_12300"], "product": ["LexA repressor"], "transl_table": ["11"], "translation": ["MATHDSKQLEILQYIYDTVENRGFPPTVREICAAVGLSSTSTVHGHLTRLERKGYLIKDATKPRALEITHAGLDALGIKPKDIPVIGVVTAGQPILAVQDVEDYFPLPPNLASDAGELFMLRVHGTSMINAGILNGDYVIVRKQTTAQNGEIVVAMTDDGEATVKRFFKEDLHYRLQPENDAMDPIILNHVQILGKVVGLYRTNID"]}}, {"location": "[1161892:1162741](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4975"], "gene": ["glcU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P40419"], "locus_tag": ["MAAAAKME_12310"], "product": ["putative glucose uptake protein GlcU"], "transl_table": ["11"], "translation": ["MNIIIALLPAIGWGVMPWIVNKVPNSKPANQIFGVGMGATIVGIIVTLIQHPAISMPVFFLSLLSGALSTIGQIGQFISFTRIGVSKTMPFSTGLQLVGNTIIGALIFGEWKTSNNFIFGIIALVIIMVGVILTAYTEKGNGFTQKTTNKDILFLVLTTIGYLAYSAFPKTITADAESMFLPQTLGILLGSVIYLAFSGNKAAFKEKASYLDLFAGISFGIAAYAYIISAQVNGVTNAFIYGQLSVIISTIGGMTLLGERKQGKELVATLAGLCLIVVGAIL"]}}, {"location": "[1162841:1163720](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["glnH_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34563"], "locus_tag": ["MAAAAKME_12320"], "product": ["ABC transporter glutamine-binding protein GlnH"], "transl_table": ["11"], "translation": ["MKNMKNMKRQPQTIKRIIQALACSLLLLLATSLTACSSKQESSYARAKQSKQITWGVRPDTKLFGLTNIKTGKIEGFEIDLATAITKQILGPKSKAVFRPITEKTRITLLHNGSLDAVISTMTITKERMKVIDFSDVYFNANESMIVKKSSKIRSIADLNKKGVVVIAIKGTDVANQVAKLASKASVKQFDDYGSAFNALKAGQGDVMIDDNGILAGLIADTPEFTLTKASLAEEPYGIGVEKGQTEMRQAINQALKQLRANGKYDQLVKKWFGKVSGFDVKHAESQKVKIQ"]}}, {"location": "[1163915:1164449](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12330"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSVSKRPISSFQELETAADDSDEIHFKLNGQQWLLVDDGNPLTPASKTLINCDLPEEQQFFANTEEFLTCQIGGQSLADCWPQMSEVAVWSVQFDSLEEFVQAIKDGCDIKFSLAGRQYSLVQSSERKVYRQLTWRLEKSGQMKVEKFADLKQLLAFEIAGQSLGKQWSAMKNVDYG"]}}, {"location": "[1164505:1166740](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "gene": ["rhlE"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00968"], "locus_tag": ["MAAAAKME_12340"], "product": ["ATP-dependent RNA helicase RhlE"], "transl_table": ["11"], "translation": ["MDTFSRYAPFIQDYIYSRGWETLRPLQTAAAQVIFDTDDNLLLSASTASGKTEAAFFPILTDLAENPADSIACLYIAPLKALINDQYDRLKDICEGSDVPVWRYHGDVSAAQKRKMFKRPQGVLQITPESLESLIINKHADIPRLFGDLRYVVIDELHSFLRSDRGGQTFCLLERLNRLAGVKPRRIGLSATIGDPKAAGQFLGDGSGHQTRIPKVKSRPQRWHLSMEHFYKSGDQAGDHSALLAQAVLDQASDQAPELADPGLAYIFDHTRGKKCLVFTNSREECEAVCQVLRQYCEYKHEPDRFMIHHGNLSAALRQGAEAIMKDEDANITTCATATLELGIDVGQLERAFQIEAPFTVSGFLQRMGRTGRRGNPAEMWFVMREEQAESRDMLPVLLPWSLLQGIALVELYLQECWVEPPRDHQLPYSLLYHQTMSTLMAGGEMSPAELASRVLTLSYFRWVSQDDYRVLLRHLIKTDQIQLTENGGLIVGLAGERVTNNFKFYAVFQENEEYSVHAESEELGTIVKPPPLGEKIAIAGHVWVVEEIDRRRRQVYVHQVKGQIPAYFGDVAGDIHPKVLQQMRQILAEKRQYPYLMKNAAARLSETRAMAEAAGLPDKQLINLGAKTYCLFPWTGSYAFLALERFLRLKCASRLGFKNIDSVRPYYIQFSMDVSEGDFYQILTEEAAKDFDPLDLLYPKEVPVFDKYDEYLPDDLVRKEFAYSVLDLTEMRRAIGEITRQMA"]}}, {"location": "[1166762:1168085](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEQKKRIPKRIAQTVISSLKGGVVPRIGLPYITVGRKAEIEALLHDVDLVKKGGASFRFVVGRYGSGKSFLLQTIRNYVMDRNFIVLDADLSPERRLQGSKGQGLATYRELIQNLATKTRPEGGALTLVLDRWINNVQTAVASEIPFDDPGFQTAVDQKIVRQISSLSEMVHGYDFAQLLERYYHAYLAGDEDTKGKVVKWFRGEYRLKTEAKQDLGVNIIISEEDWYEYLKLFAVFFRQAGYSGMFIMVDELVNLYKIPNAISRQYNYEKLLSMYNDAMQGKAKYLGIIMGATPQAVEDRRRGVYSYEALRSRLAEGKFAKEGQRDLYAPVIRLEPLTAEEMLVLTEKLADMHASLYGYERTISEKDLADFIKIEYARVGTSSMITPREIIRDFIELLDIVLQNPGQTVQSLLTDGDFAYTKSDAVSDEKTSDFAEFTI"]}}, {"location": "[1168084:1169983](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHLAEVADYIQSKYGIEASYVDLAGQTLAAVTVPGANESFALLLKKDGRETVELKAGSLAKFLVAQPAFGPAVFMQDLAWIRVDLDNPALNDRFFYKTLDSAYQSSRPLEAAKNTAEDRQEHEIYLLDDEGEDFQEEVIPKRPAFFKDSDFDRLLAEKGQPVIPEGIRQMQESYDYLAVPRRESNFYRQGMLMANYEDDFAQMVPINKQRPVYHDLTVDQLRSYFSWRTKFRQGKYKPAPAAYVYLLASELVCQIGVKDKADGLRQLRLLFAKCVEQKDISTSWQEKHILQNYLVYYGFALEEIRPDFADELMRGEVYHNLLSGEASGQELYQAICCLSSYLPKNNPLLKKEPEKFYELLAQVWQEVRLNPYQLLKLLVGEKTTLPVEMFADTVFFSLDPVKDAELILGPGLVYRCQGGQWSNEVYWPSGRQRQLLANFMHEFDRLSRQAFKQGRALKEKDLPPAFKQAIVQGIADYQEILIERARPKVKINLASLDQIRSDAAETKESLLTEEERQLEAEEAERITSESNKQVSESSATEEKMTKDIDETAASGLGLDENEEQLLLALFSGQPYQDFLLQRHLLLSVVVDQINEKIFDEIGDAVIDCDGQKAEIVEDYRSDLADLLGIEEK"]}}, {"location": "[1170115:1171957](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0737"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8YAJ5"], "locus_tag": ["MAAAAKME_12370"], "product": ["Cell wall protein"], "transl_table": ["11"], "translation": ["MARSIKKELAALLLAVAVLAPGQASASKLEVTSKADTAIKPAQSKDWKNPKKYSRDIPVQFLSINDLHGNLSTTGTATLGQKSYSNAGTVARLAAYLDQAQKDFKKKNKQGTTFRVESGDIVGASPANSSLLQDESTMHALKAMKFTIGTLGNHEFDEGLGEFNRILLGKKPTKKYNSAEMAYPHQKSGIKLIVANVVRKSTGKVPYGWKPYTIKAVKAGKKKAKVGFIGILTTEMPTLTTKKNYSAFKYLDEAKTIAKYEKVLRKKGVKAIVVLAHKGVETVADSKGKLTTSGDSVKILKKLNKIDPKNTVDLMIAGHSHQYANAKVGKTRLVQALKYGQAYTDSIGYISPKTKDFVKGSLVSHVYPVLSAADDPKTKDNKTVAKIVADADKRVSAITKQKIATAQKAETITGRENNNASNENAVGDLVVDAQLSEANRQGFKADFAMTNGGGVRSGLAVGSDKSITYGAAMAVQPFGNSLQVLTMTGKQILAALNQQYDHYYLLVSGLHYVYTKDAAGKVKIVKVYVGEGEKTELSLTKTYRVVANEFIAGGGDHFTQFTAGKKVGILTGTDTETFISYLKQQTASGKQIVSPALNRKVEISADQAAALEK"]}}, {"location": "[1172222:1172570](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0335"], "gene": ["rplS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31742"], "locus_tag": ["MAAAAKME_12380"], "product": ["50S ribosomal protein L19"], "transl_table": ["11"], "translation": ["MDPLIQELTKEQLRDDMPEFRAGDTVRVHVRVVEGTHERIQIFEGVVIKKRGTGIGATYTVRKIASGVGVERTFPVNTPRVAKVEVIRHGRVRRAKLYYLRTRSGKAARITERRR"]}}, {"location": "[1172691:1173384](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKEQRRLYDAEIARLKNKVMAEDDEGIKREQIEILAALTRIREICCDPGLLYEDYKGESEKRLACVDLIKSAIDEGHKVLLFSQFTSMLDLLEESLKAEEIGFLRIDGQTPKARRLTLVNVFNHKDSPAKVFLISLKAGGTGLNLTGADTVIHYDPWWNVAAQNQATDRAHRIGQEKKVTVYKLIAKDTVEEAILDLQEAKSLLAQGILTAESVSSASLQKEDLLKILD"]}}, {"location": "[1173335:1174565](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKRYTSFWKGWRNCFAAFDEVEVTPAFKKLKFKDRLNLAFGLSLSDGLLRLDLKSKLTPEELAEVFSQYKDRKKYIRLKNGSLLNPASQDLEKLALLAKNLDLTAKDFSKEQLEMPAYRALYVDQLLKEQEMGEIERYDHFQQLLADFDQKEAPLKLPTGLEKILRPYQKTGTAWMNRLAQHGFGGILADEMGLGKTLQVISLLASQKDQPSLIVAPASLVLNWEAEFKKFAPEMKTLVLSGSKKERSGQLADLTDIDVVITFYDLLKRDIANYEPHTFAYEVIDEAQMIKNPRTAAAKSVSVVKAKHRFALTGTPIENRLSELWSIFNFVMPGFLKSYREFKKDFESPIVKEDDQDCLNRLSQMVGPFILRRLKKTFSRTCRTSWRKSAMSAWARNREGSMTLKLPA"]}}, {"location": "[1174506:1174965](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVAVNLDDSQANDKQPLLTATGFSHFANRGNGNKVNVKVGLKQVSELKCNIAECKQHEITGPCRHEIALLQKLVLMIMRENLGEVTDYQADRALARAEMLEEFDQDALEDVKLLAQLENFFDLEDGDCRLDKVDDEAVYQLLEGMAKLLRRL"]}}, {"location": "[1174970:1175447](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12420"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLQWRKLFSNRILDRGRDYWKKDWVYAPSYSELPAGIHCRVGKPGQSYDVTIDFSDDWSEIKWMDCDCPYAAEGYNCKHEAACLYATELFIEGMQAIQEPLTSELPASDRKSGRKRSLKRSTALAENMSTIFLILARFLHRLTLTRSFGSGSGIIRP"]}}, {"location": "[1175461:1176199](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.228"], "codon_start": ["1"], "gene": ["trmD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q6GHJ5"], "locus_tag": ["MAAAAKME_12430"], "product": ["tRNA (guanine-N(1)-)-methyltransferase"], "transl_table": ["11"], "translation": ["MNINVLTLFPEMFTPLQVSLLGRGQEDGKWKLNLVNFRDFSDRPHKSVDDTPYGGGAGMVLQVKPIKDALDSLENKGKVIITAPQGKTFNEQMAQEWSKEENLTFICGHFEGFDQRVYDLADEMVSIGDYVLTGGELPTMSMIDATVRLLPGILGNALSTVEESFSDGLLEYPQYTRPADFEGQKVPEVLLSGNHGKIDEWRHYQALKATKLHRPDLLEKRDLTPEEVRMLRQIREDEQAEEDKL"]}}, {"location": "[1176198:1176702](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rimM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66656"], "locus_tag": ["MAAAAKME_12440"], "product": ["Ribosome maturation factor RimM"], "transl_table": ["11"], "translation": ["MNYYNVGKIIATHGLKGEVKVALTTDFPEDRFRAGSRLYLGDDSREVTVAAGRPFKQFWLVTFAEITDIDQAEKLKGTEILISEEDQGELPDGVYYYRELLGCKVLDDESGEEIGELTDIEAPGANDIWEVTDKNGKSFWLPYIPQVVKSVDIDKKEVRVELMEGLR"]}}, {"location": "[1176763:1177036](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0228"], "gene": ["rpsP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21474"], "locus_tag": ["MAAAAKME_12450"], "product": ["30S ribosomal protein S16"], "transl_table": ["11"], "translation": ["MSVKIRMRRMGAKRKPFYRIVVADSRAPRDGRFIEEVGYYNPVSQPKELKLDEDKIFEWLKKGAQPSDTVRSFLSSAGLMAKLHDEKYNK"]}}, {"location": "[1177130:1178561](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0541"], "gene": ["ffh"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37105"], "locus_tag": ["MAAAAKME_12460"], "product": ["Signal recognition particle protein"], "transl_table": ["11"], "translation": ["MAFENLSERLQKALRNLTGKGKISEEDINAASREIRLALLEADVNFKVVKDFIKTIKKRALGQEVQESLTPGQQVIKIVNEELTKMMGEEAVGLTKSPHIPTVIMMVGLQGTGKTTTVGKLAYRLMKEEKARPFLIAGDIYRPAAIDQLKQIGADLKVPVYSDPEEKSVAKIVEDGLAEAAVHRNDYVIIDTAGRLEIDEPLMKELEEVKAVSQPDNILLVVDAMTGQVAADVAKTFNERLDVTGVILTKLDGDTRGGAALSIRAITGKPILFTGQGEKLTDLEVFHPDRMASRILGMGDMLTLIEKAQQDYDAKQAEKVAQKMRENTFDFNDFIDQLEQVQKMGPLDEIMKMIPGMANNPQLKNFSIDEKQIAHTKAIVYSMTPAEREDESLLNPSRRRRIAAGSGVPIVEVNRMIKEFKTAKDMMSKVTKGNFKDLEKLPGMNSPMAKMAMRRMGKSFKKKKAKKMKKVKRFHS"]}}, {"location": "[1178562:1178904](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDELSKNEALGDLYAMYSALLTHGQQDYFEDYYYNDLSLGEIADNRHVSRQAVYDNLRRSAKSLEKYEDKLRLLASYSQLEEGISQALASLAAGDQETAKLQMEDLLQIIRGE"]}}, {"location": "[1178956:1179364](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_12480"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MWLCIGGPTFTPFVPFFTNMNDTDPSYNEASLEYRQSDAWWFYKSLAALVESHYSHFVQMDATYLTELNRYFRARVAEVTDQAQGLTGEELTAFLTKANQETVAHCRQESEKLWGQLFKEAIKLSKLTFNMDKNL"]}}, {"location": "[1179535:1180009](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_12490"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MVNVVLPYIDSARGGVKRLGALIAKYGSAAGNSVLFSDKDEIWYMEIVTGHHWVAQRIPDDAYAIAANRVSIQEVDFTSDDFMWSAGIQDFVAKNKLNPDLEGWNFRHIFGTFTEQDRHYNTSRVWYGQKILNPSIDQDPEDPDLPFIRRAEKKISK"]}}, {"location": "[1180035:1180197](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLPEDAYRYPAVPNVDYKKYGYYEESGINEKNVAMSATESTYGMNALWPLTP"]}}, {"location": "[1180277:1180376](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKDDACTSILVGKKAAMDGNNLIARMTTPFLP"]}}, {"location": "[1180422:1181751](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ftsY"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00920"], "locus_tag": ["MAAAAKME_12520"], "product": ["Signal recognition particle receptor FtsY"], "transl_table": ["11"], "translation": ["MGLFDRIKKSLFGQKDEEKPEEVKADQEEATEENTETENEAVAETTETSEEAVAEKAEEQEETADEESTEAAEEESAEVTEETEESTEATEDVEEKTETTETAEETETTEEAEEKTEAEEETTEPVEESTEEKTTEIYEKGLEKSNKGFGARLNAFLAKFRTVDEDFFDDLEELLIESDVGYETSEELTDQLREEAKLQKAKSRDDLKRVIVQKLVEVYDENANSENEKLAYDPNAKPNVYLFVGVNGAGKTTTVGKLAKRFHDQGKKVLLVAADTFRAGAVEQLVEWGKRTGVPVVTGPDKADPAAVVYDGLERAIAEEADYLLVDTAGRLQNKVNLMNELEKIQRTIKKRLPDQPAETLLVLDGSTGQNALLQAKDFDKTTKLSGLVLTKLDGSSKGGVVLSIRHEMKLPVKLVGLGEKAEDLADFDAANYAVGLFHDLL"]}}, {"location": "[1181753:1185314](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1196"], "gene": ["smc_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P51834"], "locus_tag": ["MAAAAKME_12530"], "product": ["Chromosome partition protein Smc"], "transl_table": ["11"], "translation": ["MPLTSLILEGFKSFADKTVIDFTKGITGIVGPNGSGKSNITEAIRWVMGEGSAKSLRGRNMKDVIFAGSQFRKPLNRAEVTMVFDNRDRELDFSADQVSITRRILKSGDNEYLINQQPVRLRDVRALFLDSGISQNSLAIISQGRVDQILNSQARERRGIFEEAAGVLHFKQQKQQAQRQLETTNDNLIRINDLVNELEKRLEPLHEQSSLAQEYQFQKAALDEDLKTLLAFEIADLDQEEREVSQKLAKSQELLSRLDAEVKQSQAKLAAKRQEFQLESQKRDQVQAEVLKLTNRLSEINTSLQVSQQSRQFDQATRLEYQRQLADLKENLAATDAEISKLADQEAEYAGQLDQLKCKRQKLVDQLKEDPASLKLKVEDLRSQYIQTLQDQTSVNNQLVYLEGEIKRAKESKDQRYEDASSQLAKSQEELEGLRLKEQKLRAENDQLQAELKEASDQLGKLAAEQQVAQKQLQADLTNLQRLTARRDALVNIQKRHDGYYAGVKQVLNQPDRFPGIIGAVGELLTFPADLEAAMTTALGGNVQSLVAKDRMAAKDAIQQLKVRRLGRATFLPLDALRYRAIPASTRQALERFAGFQGLASELVEAKGDTDISEAIQYLLGSIIIVDNMDTALAVSRQIGHYRVVTLDGDVISPGGAMTGGARNQRNNSPLQTTAEINKTTAMLEELERQFHIKEEKLAGLDKQVKDKQENREQISRDLQSLQQDLSAAVLTFQSQEKEVKRLESAVQLYQAQQAEQAAYLADLTDKEKAQKIKKEELAALADQQKRDLASLQETIQNYTDLNQGVQEKLAELDPQLAVLANKQENLQARKAELGRQKAAIQKQIGQLEEKLAALDNSSQLSARKKEELGLEKDRLLAEQKDKQADLDAASQLLGQLNGQINQLEAVATRNYDLRKDAASEQEELSVKLATVKGQLKQHLDSLREDYSLTYEAALSQAKLENTEENQQNLRRSVKLHRMSLEDIGPVNLGAIDEYKEVKDRYDFLNGQQNDLLEARSNLQQSMDELDQEVKGRFGQTFQQISASFSRLFPVVFGGGNARFTLTDPDNLLESGVEIIAQPPGKKLQRLSLLSGGERSLTAITLLFAMLEVNPVPFCVLDEVEAALDDANVARFARFLRQYDSQTQFIVITHRRGTMEQADQLYGVVMQESGVSQILSVSLKDLKDEV"]}}, {"location": "[1185313:1186009](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.3"], "codon_start": ["1"], "db_xref": ["COG:COG0571"], "gene": ["rnc"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66670"], "locus_tag": ["MAAAAKME_12540"], "product": ["Ribonuclease 3"], "transl_table": ["11"], "translation": ["MVSTKFIKMLDEKYGIRFKDVRLLEEAFTHSSYVNENPGKTFGNYEKLEFLGDAVLEFTVSDYLYRHFQHLNEGELTRLRSNIVRTEGFSKVALDCGFKEEINLGVGEEKAGGRKRKALLEDVFEAFNGALFLDQGIEAVEKFLSQTVYPLIAAGYFTPSRDFKTDLQELLQQNGSVTIEYRVLNESQQPPHFEVEVLVDGKKLASGEGRNKKKAEQDAASHALEHLNGGK"]}}, {"location": "[1186133:1187912](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["appA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42061"], "locus_tag": ["MAAAAKME_12550"], "product": ["Oligopeptide-binding protein AppA"], "transl_table": ["11"], "translation": ["MKRLTKITLCLLVALSLAACGQKPEKSKQNGNSGAEDAMQFPVATSFAKTKKGGSIKVALETDTPFTGIFSDELADSTTDATLVQFGSEFLFDTDNSYNITDSGAASFSLDRQAKQITINIKKGVKWSDGKQIVAKDVEYAYEVIANKATKSSHYTSSLQDVVGLKEYHDGKAKTISGIEMPDGENGRKVVIHFKEMHPGMLKSGNGYFWESALPYHYLKNVPFSKLRTCIEIRKKPLYFGPYKVQSIEAGQKVVWTRNEYYWRGTPSLSKITISIISPKSVSTAIKERTYDIIEVVNSQWQQIRTTKNYKFVATIPLSYNYLGFKLGKWDEKTNSVKMNKNSKMANKSLRQAIGYAMNVTQIQRKYTSGLTFRIKSLIPLQFGDYYDDKSKGYPYNPAKAKKLLDKAGYKLRPGEKYRRDPQGHKLVIHLAAMTGDASQSKIINNYIKKWKEIGLNVKLTTGHLLEFNTFYNLLFQDDSQVDMFIAGWTLNNEPSQNGIYGAGTQYNLERFATKINTRLLEAMDSDAAFNINYRIKVFKKWQRYMKEQAFVIPLTSSYKITAINKQLVNLSYEPAEMNNSHPLWYKIGYKK"]}}, {"location": "[1188048:1189815](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["appA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42061"], "locus_tag": ["MAAAAKME_12560"], "product": ["Oligopeptide-binding protein AppA"], "transl_table": ["11"], "translation": ["MKRRMLGTFGVLLAGAALLAGCGKSSSSSSNSGAKDAKKFPEATATATAKKGGSITIAEESDTPVKGVFLNELSDGQYDSDFMQFGNEALFATDDQYKINNKGAATFKMDRKAKTVTIEVKKGVKWSDGKQVTAKDVEYSYEIIANKASQSSRYTSSLADIVGLAEYHDGKSKKISGIEMPDGENGRKVVLHFKEMKPGMTQYGNGFFWESAVPYHYLKDVPFSKLQSSDKVRKNPLFFGPYKLSKLVRGQSATWVRNPYYYRGKAKLDKITISVISPNSASQSIKSKKFDMINVVNSQWKEVKGTKGYNFVAQIPLSYSYMGFKVGKWDKKTGSVKMNKNSKMSNRYLRQAMGYAMNVDEVTQHYTQGLSFRVKTLVPEAFGDFYDKSVKGFPLNIKKANALLDKAGYKKKKGETYRRDPNGKKLTIHLAAMSGSTNQEAIVQNYIQQWKKIGLHVTLTTGRLIELNSFYDKVQNDDPSVDVFMAAWSLSSEPTQDDLYGPKAPYNFTRFATSENTKLLKEIGSDKAFNHSYRVQKFHEWQQYMQKEAFVIPLTNAYSITAVNSKLVNYSTKPSKAATLWYETGFKK"]}}, {"location": "[1189974:1190871](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKKKQDDRAQIPPSALKITFREIFKSKAATIAFCTIVVILLLTFGGSLFLDSSKVTEMHILESYAGWGQNGHLLGTDDGGRDILNLLIMGGRNSIMIGLLVTLFCELVGLIVGLVAGYYGGTTDSIIMRIVDFVQILPQMPILIVLVTVLPNYNAMTLVLLISMFGWTGEARYYRSFILSQRERDYVLASKTSGSSNTKIMFREILPNIASMIIIDVVLSVSGNIGIETALSFIGYGLPNKIPSLGTLIGFANDPVNIIDRPWLWLPATVLLLVICLSINYVGQALQKAGDARQREN"]}}, {"location": "[1190897:1191857](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0601"], "gene": ["gsiC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75798"], "locus_tag": ["MAAAAKME_12580"], "product": ["Glutathione transport system permease protein GsiC"], "transl_table": ["11"], "translation": ["MWKTVLRRVLIMIPQLILLSIIVFMLAKMMPGDPFTGLINPNSSPKEIARLKQAYGLNDPVPVQYVRWIKNLLHGDLGQSYIQHVPVASLIADRAQNTFWLSLLSTIILYGIAIPMGISAGKHEGEWQDRAISIFNYVTYAIPGFVFYLLGLWLFGFTLGWFPISGTVAANASGFWGVFFSRLQHMILPAILFAIIATTGTVQYLRTGIIDNKVEDYVKTARSKGVPEKVVFNKHILRNSFLPIAAFMGNTITGLLGGSLIIETVFSFPGMGKLFLDSISQRDYTTLTALIMIYGTLTLLGNLLSDIIMSLVDPRIRVK"]}}, {"location": "[1191860:1192817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4608"], "gene": ["oppF_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24137"], "locus_tag": ["MAAAAKME_12590"], "product": ["Oligopeptide transport ATP-binding protein OppF"], "transl_table": ["11"], "translation": ["MAEEIIQVKDLKVHYPVRSGFWNRITDYVRAVDGVSFSIKEGETYGLIGESGSGKSTTGKAIVGVEKVTSGQILYKGEDITKESVRRKMNYNKDVQMIFQDSMSSLNPRKRIEDIIAEPIRNFENLTTDQERDRVQELLSIVGMPSDAIYKFPHEFSGGQRQRIGIARAVATNPKLIVADEPTSALDLSVQAQVLNFMKHIQQQYNIAFLFISHDLGVVKHMSENLAIMHRGRLVEVGSQEEIYKNPEHIYTKRLLSAIPKIDVEHRAEHAARRREIEREFLQDQANWYDADGRVYPLTEVGPNHQVALPKEQIKGGE"]}}, {"location": "[1192826:1193828](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0444"], "gene": ["oppD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24136"], "locus_tag": ["MAAAAKME_12600"], "product": ["Oligopeptide transport ATP-binding protein OppD"], "transl_table": ["11"], "translation": ["MDNQQNVLLDVEKLHTGYRLQGEFYDAADGISFTLKRNEVLAIVGESGCGKSTIASSIVGLYDRKNTRVEGEIRYKNLNLVNLSEDLFNQVRGNNIGMIFQDPMASLNPLMKVGDQVAEALLYHTDMNKQQRRDRVIELFNQVGMPKPEAMYDMYPHELSGGLRQRVVIAMAVACKPEIIIADEPTTALDVTIQAQILDLLKKIQKESDSGIILITHDLGVVAETADEVAVMYAGQIVEKADVKTLFTHPLHPYTRSLLNSIPQSDDDKDELHVIQGTVPSLKNMPRTGDRFAARIPWIPAEAHEADPQLHEVEPNHFVRCTCWKTFHFQDEG"]}}, {"location": "[1194118:1194361](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0236"], "gene": ["acpP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5SL79"], "locus_tag": ["MAAAAKME_12610"], "product": ["Acyl carrier protein"], "transl_table": ["11"], "translation": ["MTEAEIFDKIATLIADNFQLDKDKITMDTNFTKDLNADSIDLVEFIMQLEDEFGAEIPDEDAAKIITVADAVAYIKSHQG"]}}, {"location": "[1194422:1195415](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.274"], "codon_start": ["1"], "db_xref": ["COG:COG0416"], "gene": ["plsX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q82ZE8"], "locus_tag": ["MAAAAKME_12620"], "product": ["Phosphate acyltransferase"], "transl_table": ["11"], "translation": ["MRKIAIDAMGGENAPEEIVEAVLKAKPELPEDKFIFFGDEGKMKELLPADDDQIEIVATTEVILDEDEPVKAMRTKKDSSMVVAANWVKEGKADALLSLGNTGALLTCGIFIVGRIKGVARPGLMPTMPVESSDDGFNIIDVGANATSKPEYLLQWAEMASYYAEKVRGVSKPRVALLNNGAEFDKGDDLHKEVYQLLQDSSLNFTGNIEGHELLQGKADVVVTDGFTGNAVLKSIEGTGSVIIHMLKDGLLNNGVKAKLGALLAKDALKSVASRFDKDKYGGAVLLGLNSPVVKQHGRSDARAVYYAVKQIDKILTEDLTNTFKQEFSK"]}}, {"location": "[1195445:1197485](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["recG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64325"], "locus_tag": ["MAAAAKME_12630"], "product": ["ATP-dependent DNA helicase RecG"], "transl_table": ["11"], "translation": ["MTLNEAIFRPVTALKGVGAKTAEALQSLGIYSIYDLLFYFPYRYDELENLPLDQLEDGQKVMLKGIVATNPYQNYFGYHKSRVSFKLRIDHDIIMVNFFNQPWLTKQLSVGQEIAVYGKYDLRKQSLSAYKLLANKNSDDGMAPIYSINRQIKQKKLQTMIDLAIAESMDEMGNAVPEDLRKHYRLMADQDLVIAMHHPKDLAEAKEARRSAVFREFFLFQMQLALMSSQNKSHSGYAKHYDLEEIGKLTKSLPFALSPDQKKVINEIFADMFVDQQMQRLLQGDVGSGKTVVAVFAIYGAVTAGYQAALMVPTEILANQHYHKISAMLEDFGVRVALLTGSTKTMERREIYKELADGSINVVIGTHALIQEQVAFKKLGLVIIDEQHRFGVVQRLALINKGDRPDILAMTATPIPRSLALTVYGDTALSEIRHLPAGRKPIKSYWKTSSQLDEVYSLMRQQLAEGFQIYAVTPLISESEMIDLENAEALHDRLAGEFPDQEVVLLHGKMAAADKEQIMDRFAAGEVDILVTTSVIEVGVDVANANLMVIFDADRFGLSQLHQLRGRIGRGQTQSYCVFLADPKTEAGKQRMKIVAETNDGFKLAEEDLKMRGEGDLFGKAQSGLPEFRTGSVVSDYQVMVVARDEAKRIVQADPDLKTEKLADLQAVIKYKKIVQARA"]}}, {"location": "[1197484:1199149](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A5Z4"], "locus_tag": ["MAAAAKME_12640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVLSEISSKEFRDMVRIASHRMSKNVQFVNDLNVFPVPDGDTGTNMNLTMESGAKAVSENASSSVGDLTESLAKGMLMGARGNSGVITSQLFRGFYKATQGKTTLNAQELANAFSNGVATAYKAVMKPVEGTILTVARVGAQAGANKANETDDVEEVMQAIVEGAKEALKSTPDLLPVLKQVGVVDSGGQGLVFIYEGFLEGLLGENLDDKYVPDADDMNSLINATHHQAVQGQLATSDIANGYCTEIMVDLKADVPNKKPFDLEEFRSYLSELGDSLLAVSDGEIAKVHVHTEYPGKVFLYGSQFGQLGKIKIDNMRIQHETIVDNEQEQQESVDFAVIAVASGNGVRKLFESEGVNRIISGGQTMNPSTQDIMDAITKSGAKQAIILPNNGNIIMSAKQAAEVAEIPVGIVPSKTIQQGLTAMLAFNPEASVDANVEAMTDELGSVKSGEVTRATRDTEINGVEIHKGNFIGIVEGTIVVDDVDPIVATVAMIEKMLDEDSEIVTVMYGSDATEEEAQAVVDRLEAAHEDDDCEFEIYDGGQPVYNFLISVE"]}}, {"location": "[1199168:1199531](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA14"], "locus_tag": ["MAAAAKME_12650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAVKIKTKYGLIDISNGVIATVVGGAATSNYGVVGMASKNAIRDGVDSILSRANYKRGVVVKSDENQVTVDVYIIVGYGLKISEVSRNVQDSVKYNLRSQLGIDTKAVNVVVQGVKVLDD"]}}, {"location": "[1199706:1199892](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23374"], "locus_tag": ["MAAAAKME_12660"], "product": ["50S ribosomal protein L28"], "transl_table": ["11"], "translation": ["MAKDFVTGKKTTFGNTRSHALNSSSRSWKPNLQKVRILVNGKPKRVWVSTKTLKSGKVTRV"]}}, {"location": "[1200023:1201058](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_12670"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKQHQKGKRLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYGLKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALDKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKDKRNTKTRRARVNKRILGRRIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[1201219:1201537](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLYFLYFLSMLMHVVVYMFVFYSAVYILKALAPWLYLLTISDDALDNLISAAKKIAGENLKYVNSDVKKIELRSCYGFLDEGIIGAYKSLRALEKNGKNNISSHW"]}}, {"location": "[1201563:1201941](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIGNMWIAPLIKQQKIDGETQYLFQAGSKITGLTFPTYYTMDALISISELDLSDHKIEIRLDKETISVNNLSQNALTDANILDGSLTIVITLRNFLLKESGIKKFSLYVDGQEMSVFRLNFSSTK"]}}, {"location": "[1201986:1203210](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIRYGKQVKQKSPRWRAGKDNGMENDFDCVVSFDKNDNFWILRANGGKYLDDFIDDNYIGIQYNKVSVADLMDLDHNRITSVESVKDLYIEKYEFATGYKNDDELDTSQRQRLTTHAKQAYLFTFEMKPGDIVLVPSKKSRKFAVGIIEGEPYDESKDYIQSRFATSKPNGKQFLISNYIKRRHVTWHSFLLRSELPAFLSWIINSHHALTKIDCQTDDKRIQLFSLLTPLFQYNGKTYLKLHTGKGGDLSISDWRKITECTNDIDKISMKADVHSPGFFTFVVSNIDINALSKFVANIFGLDTAPVTLAGALSLVAILFYGGKDVFLHGVHGVHLQHQKINQEIQEQRIKNEIARLALEKQKDSYKTKTLAEKLEIQFTANGTAIENGRNTGEETDGPVAHSEKAK"]}}, {"location": "[1203610:1203832](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNVLQKYLDQNKMTRYQVAKKTGIANTTLANAVKDTKPLAGQTVKVISAVAKALGKTPGQVLDDLIKLENSEE"]}}, {"location": "[1203963:1204818](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["xerC_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01808"], "locus_tag": ["MAAAAKME_12720"], "product": ["Tyrosine recombinase XerC"], "transl_table": ["11"], "translation": ["MLKGVDIANDPTFVQFFNEWYHTFKEKSVTSSTKKRYVTHGRIISEYFQNTKLKDIKRTDYQRFLNWFGESHAPGTVHKLDTMIRDCVSSAIADGLISMDFTAKTVIAGDDSRTRHVEYLNLDEIKRLISLCYENRQPRYTSPYMIITAIYTGMRLGEISALNWSDIDFSSKQISITKSWNQDRREMSKPKTESSIRTVPVNSWLLELITELKANDCDFVFGNPLTGFPPTSQAINQALRRFLKQGNMKKEISTFTVYGTVMLHSCLITESTSMQSVKGWGTQT"]}}, {"location": "[1205176:1206436](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.5.2.6"], "codon_start": ["1"], "gene": ["msbA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q14JW6"], "locus_tag": ["MAAAAKME_12730"], "product": ["Lipid A export ATP-binding/permease protein MsbA"], "transl_table": ["11"], "translation": ["MTNDLKQVESHRVEAELDIIFNGLQFIAASAAAMLSSWALSLIFLVASLAPGLLQNIFGPKIEAASSAWEGENSKYTEAMTDTINFAAFARLYDAEDSIYSRMLHYSQRMETALAKMKKAEMVTTEVITSFAYVCSVIIPFSLGIYFVTQGQITLGTFMMISQLANNFINPIVGIFSSVNDIKTSNPIWEKFTAVADFTAKESAADRDEFKELSLDDASVQRGDRKLLNDLDLTVKNGEKVLLEAPSGWGKSTLLNVLVGRIKLADGDYEINGEDANGDWSKDHEYFSFVQQKPYILDDTIEYNISLGREVSREDLLAVCQKAGLTSLIEEKGLDYQVGKEGKNLSGGQGQRLEIARALLAKRPVLLADEATSALDPRLSKQIHQTILQNFPGTVIEVAHKISDEEIAMFDRVVNLAEK"]}}, {"location": "[1206469:1206748](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLKYASKWKLLVFAVFAAAKALQAVFIAYVFQEFINFSGNPKGSLLQLTIKAVVGIVLFACLALIYQIMQANIIKDVNLKIKEQATKYLLY"]}}, {"location": "[1207395:1207971](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAELDAAVQTAQSKQADSAAAAKAKEAADLALTEAKKHLAILEALEEANEPSETPTTPSDNKPSETPTNPSDNEPSETLTTPSDNKPSETPTTPSEDEPSESPANSGETETIVIPAGKTETKATGKKQAAPASTVQKTAPATSAAKAPAKASATLPQTGESQNKSAFLAGIVALLASASLLAFGRRKKNKM"]}}, {"location": "[1208182:1208521](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSAQEAEKAAEDEASATEMTADSASQKAQAALADQEGKVSQAQDKVDQEKKAVDQVNGQVKELTDTDNEAKAASDAANKDLAAKKAAESEAEQEYQALPKVVANDALKRKN"]}}, {"location": "[1208959:1209643](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.6.2"], "codon_start": ["1"], "db_xref": ["COG:COG1564"], "gene": ["thiN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34664"], "locus_tag": ["MAAAAKME_12770"], "product": ["Thiamine pyrophosphokinase"], "transl_table": ["11"], "translation": ["MDASVLLGGPKEEWPADLKEQLKQAQAKGNLLIGVDRGALLLLELGFKPDLAIGDFDSLKADELAWVEGTVADIRYSVPKKDWTDSELMLGIAFGDYKIDQLKVYGATGGRLDHAAINAFGILNPDLRKYANQLTLIDKQNLIFYRQAGSYEIKQQDYSYFGVTCLLPVEDLTIEGALYDLAPYSGDYLRSFTSNEFLPDKDSCRLSLKKGLVAVVYSKDLDRYQMA"]}}, {"location": "[1209672:1210566](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG1162"], "gene": ["rsgA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34530"], "locus_tag": ["MAAAAKME_12780"], "product": ["Small ribosomal subunit biogenesis GTPase RsgA"], "transl_table": ["11"], "translation": ["MAEIVQGTVVSLIAGYYDVQTPAGVVRTRARGVFRKNREKPQVGDSVQVKLDEQGLAYLVKILPRKNRIGRPAVANVDHVLLVISAVEPDFSTALLDRFLVFFAWQGVEVAIYLSKSDLLEKEKLAEIESQLAYYQKIGYRVYLDRESLAAELPKQIGESEIWTLAGQSGAGKSTLLNFIKEDAGQATGAISTSLNRGKHTTRTVTLFKLGEGFLADTPGFSAIDLTPIKLNELCTYFKEFKALSTGCKFRGCQHLHEPKCAVKDQMALGEIATFRYDDYLAMRTEIEEGRMPEYLK"]}}, {"location": "[1210566:1212573](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.11.1"], "codon_start": ["1"], "db_xref": ["COG:COG0515"], "gene": ["prkC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34507"], "locus_tag": ["MAAAAKME_12790"], "product": ["Serine/threonine-protein kinase PrkC"], "transl_table": ["11"], "translation": ["MINKGYLLGDRYRIVDTLGEGGMANVYLADDIILKRQVAVKIIRLDLQKDSQVLARFQREALATSELSHPNIVSVFDVGTDHGLPYMVMEYVKGPDLKEYIREKSPIPLPQVIKIMDQILSAMELAHKHNVIHRDLKPQNILMDEKGNIKIADFGIAVALNQSAITQTNSVLGSVHYMSPEQTRGGMVTKQSDIYSLGIILYEALTGHVPFNGETPVAIALKHAEDDIPSLRKQNKAIPQALENVVLKATAKDPRDRYASVAEMKADLDSSLDPSRAGEAIYRPSHGNNDETKILPALNGKVMQAEKAKEGKAEEPKKRSFWASIKKYKWWWIGSLFPVFAILLFMFLAVGHNNVRVPDVVNMTEKAAKTSLKSSGLAVGAVKRTYSSDVKKGKVISTTPKANSPVDKGGKVNLLVSKGSNLTKVPDVEGLYLSTAKKKLNKLGFKVKSREAPSNEYLPGLIISQSVKAGRKVDASKTTITLVVAVALEDQPKPSSSSSSKKATFKLADLTGKSLEDAQSYAKSKKLNVKVEKDHSDSVDSGDVIYTDPAAGSEVSEGDTLTITVSKGAEKKEVKKTFTVDYQAAESSSNSSESSSSSSSSQGNHVRIYIQDDDHSLGNIYRDLYITKDTDFTITFSVTKGDGKIKIVRDDQTVVDETISADDSESGN"]}}, {"location": "[1212562:1213318](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.16"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAP6"], "locus_tag": ["MAAAAKME_12800"], "product": ["Putative protein phosphatase 2C-type"], "transl_table": ["11"], "translation": ["MIKTAFASSIGRVRESNQDFVQIFQNRVGVTMAIVCDGMGGNQGGDVASTMAVSHLGHNFANTDLHDKNLARKWLDVQLRSENETILKAADRFPDLNGMGTTIVLAMFFDQEVLLAHLGDSRAYSYSEGNFRQITEDHSLVNELVKMGQITKEQAKTHPQKNIITQALGVSSTIDPEYNELEMKTDDVLLLCTDGLTNSLSDPLIQQVLATKGLNLQERCNKLVNEANRLGGGDNITVCLAVNEEDGASDQ"]}}, {"location": "[1213323:1214640](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.176"], "codon_start": ["1"], "db_xref": ["COG:COG0144"], "gene": ["rsmB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P36929"], "locus_tag": ["MAAAAKME_12810"], "product": ["Ribosomal RNA small subunit methyltransferase B"], "transl_table": ["11"], "translation": ["MKTNARTVALDTLMKVINQGSYSNISLNHALKAAKLPGEESRLATNLVYGTIQYQLYLEYQLKDLVKARLREPYIKPLLLMSAYQIFFLDKVPNRAVLDEANKLAKVYGRPKSSGYRLVNGILHSLLRRGEVLPEKDAPDYLSVKCSMPLWLSDYFVANWGKSRAEKIMASFNSKAKNEIRISALADEKRVVRDLDRAHFAPQESPLASRSYALSRGGIVMTDFFKDGEVTVQDEAASLVAEAFDFKGNEQALDACSAPGGKTIQIAEQLPDGQVTALDIHEKKLRLVKENAARMRVADRVKVKALDARKAREYFSGQEFDKILIDAPCSGLGLLRRKPEIRYTKTAEDISHLAEIQLDILNEVSGLLKKGGELVYSTCSISVEENEENVRKFLAAHPDFALKPFETAKISAPKGMLKILPDSYNSDGFFIAKFTTRG"]}}, {"location": "[1214629:1215577](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.2.9"], "codon_start": ["1"], "gene": ["fmt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99127"], "locus_tag": ["MAAAAKME_12820"], "product": ["Methionyl-tRNA formyltransferase"], "transl_table": ["11"], "translation": ["MNSVIFLGTPQFGATVLEGLIKAGYHILAVVTQPDKKVGRKQKVVYSPVKEVALANDLPLYQPVRLSKSDELDELLQLDADFIITAAFGQFLPTKFLKSAKIAAVNVHGSLLPKYRGGAPIQYAVRNGDAETGVTIMEMVKEMDAGDMYAQASLPIRPDETSGEVFEELAPLGRDLLLETLPKIASGEIVKKPQDPSQVVFSPTISKAEERISLKLTAKEAKNLIRALNPDPGAYLVIKGQRLKVWKAEVADDNTSLPAGHLLTNQGRFAISFAGNTVLNLLEVQPNGKKAMAIKDFLNGQGKKFAAGEKIVDED"]}}, {"location": "[1215594:1217976](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "db_xref": ["COG:COG1198"], "gene": ["priA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P17888"], "locus_tag": ["MAAAAKME_12830"], "product": ["Primosomal protein N'"], "transl_table": ["11"], "translation": ["MIAEVIVDVAAHQTDRVFEYHIPDDLEVEIGSRVVVPFGRRKVQGFVVAVKKSSDFTGQLKDLLLVVDEMPPLTPELVALSSDLARQIFAYRISILKTMLPGVMRANYRKILLPNSPRAEQMPLFAGDPVDLANLEEPRLIKLVKQLLNKGEARIEYLVENKAKKKMVSVYYPLLSAADCQEILLETRKTASQQRKLLADLAGDFAAYPKSREELTGLGISSATLKAAVSKKWLQEKDQEKYRRPTKPVAPSRPLDLNDEQAAALSRVSQDIKGRVSQTFLLEGVTGSGKTEVYLQAISQALALGRTALMLVPEISLTPQMVKQVQARFGQQVAVLHSALSEGERYDEWRRIRRGQAQVVVGARSAVFAPLDNLGLIIIDEEHEGSYKQDNNPRYHARDVAIWRSRYHHCPLILGSATPSLASRARAQKGVYQLLRLKKRAKSQPLPRVDLLDLKHVQFAGSQFDISCPLAEAIQKRLEKKEQVILLLNRRGFANFMLCRNCGFVLKCPNCDLSLTMHKDTWTMQCHYCGYQEAVPEICPNCRDRQIRFLGTGTQKVQEELAELFPQAKIIRMDVDTTRRKGSYDKILTSFGQGEADILLGTQMIAKGLDFPNVTLVGVINADTGLWLPDYNASERTFELITQVAGRAGRADKEGQVMIQTYNPDHYAIHLAQKQDYELFYAKEMRVRHAGDYPPYFYTVLVSVSAKNEQNAAREAFKIKRQLQRELRAPTIILGPAPATISRLKSQYYYQILVKYKREKHLNELLHQIQDQAQEVKKYGLTVEIDSEPERIM"]}}, {"location": "[1218038:1218260](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.6"], "codon_start": ["1"], "gene": ["rpoZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAP2"], "locus_tag": ["MAAAAKME_12840"], "product": ["DNA-directed RNA polymerase subunit omega"], "transl_table": ["11"], "translation": ["MRITYPSIDKLLDEVDSRYSLSVLAAKRAGELEAGKPGALDNYHNLKPVGQALEEIAAGKVTIDADPHGEADE"]}}, {"location": "[1218261:1218876](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.8"], "codon_start": ["1"], "db_xref": ["COG:COG0194"], "gene": ["gmk_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y672"], "locus_tag": ["MAAAAKME_12850"], "product": ["Guanylate kinase"], "transl_table": ["11"], "translation": ["MADKGLLLVLSGPSGVGKGTVKSAIVEHKVFPFEYSVSMTTRKPREGEVNGKDYYFVTREEFKQAIADNQLLEYNEYVGNLYGTPLGPVKEMLAAGKDVLLEIDVNGARTVRQQMPEGVFIFLTPPDLHTLRDRLEHRGTESEDVIRGRIAQARKEILVMQDYDYAVVNDTVANAVNHIKAIVDAEHVSVRRVIDDYRKMVKED"]}}, {"location": "[1219049:1219355](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKFQNFASQAAQPLKKAFHYLFAYDEDRLTLRGDSLAVNLAKLQLAFLKRQYLLVTLNDGSWRVGKITKRISPSRFVFCDADNKIFYQLDINDILTVELP"]}}, {"location": "[1219416:1219641](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_9"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_12870"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MSNSEYDRLIADSKTTASSSQRVSDLQKAEAILLEDEGITPIYYISTAYLIRPEIKNVYNDNLGGWQFKYASVK"]}}, {"location": "[1219630:1219825](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKAEGDYKLVVTLDRRIPYFKTRMARREEGKFDVMVSTWIADFNDAISFLDLLTSNNSRNYGEQ"]}}, {"location": "[1219977:1220286](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRPIKIKAPLALAALSMIMLTACGKSNSQASKKQEFSWSTSAEISTIDMSKASDTVSFDQLRNTMEGLYRIGKNGKLMPALATSSTVSKDGKTYTFTLRKSK"]}}, {"location": "[1220498:1222187](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0497"], "gene": ["recN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05824"], "locus_tag": ["MAAAAKME_12900"], "product": ["DNA repair protein RecN"], "transl_table": ["11"], "translation": ["MLVELDIQNFAIIKSLKIKFQPQMTVLIGETGAGKSILIDALSLLLGHRAQKELVRSGQSKAVVTGLFTLQDEEMREVEQIAADYGLPMDGDDLIISREISSKGRNVIRINGQLTTITALAKIGEYLVDIHGQNDQQMLMDQSRQIDLVDEYAGKDFKSLLGKYQAEYQTWQSLNQRLEHLRRDSRELAQRQDILQFQVEELTQADLTDEQEDQNLEDEFNKLNNYQKIAESANFMIQLFDDDEHGLTSLLGDAQGTAEDLADLDKDFKNVAQSITDGVYSLSDARSELGDIMDSLEFDEERYQYVQNRLDLLNNLKKKYGPSLADVFDFYAKVSKELSQFETGGLDEEELVKQIAAVEEKMSVMAADLHQARESTALKLEEAIKHELADLYMDKARFSIRFAKTDNFTVKGIDDLAFYIAPNPGEELMPLVKIVSGGEQSRLILALKAIFSRVEPVGTMVFDEIDTGVSGRVAAAIGKKMHAIAGQKQVIAITHSPQVAASADHRFAIAKQVAAGETFTQVKELDEDSSINMIAQMMAGANVSEAAEQNAADLIASQRKQD"]}}, {"location": "[1222208:1223024](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1189"], "gene": ["tlyA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q06803"], "locus_tag": ["MAAAAKME_12910"], "product": ["Hemolysin A"], "transl_table": ["11"], "translation": ["MASKERADVLLAAKGNFNSRTQAQRAIMAGLVTDHNHQRIDKAGEKFPVDEEFFIKKDNLKYVSRGGFKLEKAVKVWNIDLKDKVCLDIGASTGGFTDVALQNGAKLVYALDVGYNQLAWQLRDDPRVVVMERQNFRYSVPADFTEGLPDFAMTDVSFISLDLIMPPMYEILKDQGDAVCLIKPQFEAGPENVGKHGIVRDHAVHQAVIEHTMAKALEIGFSILGVDYSPIKGGKGNIEFLLHLKKDQANPGQNLWSGSVSELVDRAAQGL"]}}, {"location": "[1223023:1223887](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.10"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q08291"], "locus_tag": ["MAAAAKME_12920"], "product": ["Farnesyl diphosphate synthase"], "transl_table": ["11"], "translation": ["MTTFKEFQAKYTPIINDFLEGQLAKESDDPRFAEIMAYSVMAGGKRLRPLLFLATLDALGVEITEKEVQAACGIELIHTYSLIHDDLPAMDNDDYRRGELTSHKKWGEAEAILAGDALQPLGIQWIAQAEHNWKLVEIITEAVGPKGMVAGQYLDIDTTNNEDSSEEVIDHMEWLKTGCLILASVQMATALAACPDQQAQKYLAFAKHFGRSYQLYDDLVDIVESQEEAGKATHKDQEVGKNNSLTMLGAEATRNELKQLIEKGKADLAGEKAEVLLGFLDLYQKVL"]}}, {"location": "[1223891:1224131](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.11.6"], "codon_start": ["1"], "db_xref": ["COG:COG1722"], "gene": ["xseB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7VV85"], "locus_tag": ["MAAAAKME_12930"], "product": ["Exodeoxyribonuclease 7 small subunit"], "transl_table": ["11"], "translation": ["MTEKNNFESQLKELQEIVGQLENGQLSLEESLAQFQTGVKLSRELKQELTKAENTVAKLIESDGSEKELDPTDASAPKE"]}}, {"location": "[1224123:1225494](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.11.6"], "codon_start": ["1"], "db_xref": ["COG:COG1570"], "gene": ["xseA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P04994"], "locus_tag": ["MAAAAKME_12940"], "product": ["Exodeoxyribonuclease 7 large subunit"], "transl_table": ["11"], "translation": ["MDSIKGTDEKYLTVSELNWYVKQKFDRDPYLRQIFLQGELSNFRFRRGGHQYFSLKDDKSKINVVMFRGDFDKVKFEPEEGMKVYVTGRLSTYEAQGSYQFYAKSMEPAGLGALYERFRQLQEKLAKEGLFAQEHKRPLPLFPDKIAVVTSASGAVIHDIMVTANRRFSHAEIDLFPAQVQGESAAGSLVSAMQQIQARADEYDVLIIGRGGGSLEDLWPFNEEEVVRQVYAMKMPVISSVGHETDTTLCDLAADCRAATPTAAAEMATPALPLVLAEIGQLQTRLLTDIRAVIQVRAQALAQLENSFIMKEPQRLYEQKMQQVDQLSQQLSRMMEVIVKDQGQKLSLLTQRLQHQAPDRRIKQLKQENSYLAKSLEMGIKRILEQKQAACRQAVQQLDDYSPLKTLARGYSYTTDASGNVVKSVQQLVPGDQVRLHLKDGQAIGRIEEIKEEKND"]}}, {"location": "[1225480:1226332](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["folD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A697"], "locus_tag": ["MAAAAKME_12950"], "product": ["Bifunctional protein FolD protein"], "transl_table": ["11"], "translation": ["MGEILDGKKLAWELGEKLGSEVDSLKEHGVSPKLCVINIGDDPASKVYVASKKRKAEKLGIKQVVYQLPADESEEDVLKLIDSLNADPEVSSLMVQLPVPPQINADRVIERIDPEKDVDCLTPANIGRLWQGKHFVEPATAAGIIALLDHYQIDLTGKNAVIVGRSNIVGKPLAALMLERNASVSILHSRSRNLADLTKQADILVCAVGKAEMIKADMVKEGAVVIDVGINRVDGHLVGDVDFAPVKEKASWITPVPGGVGPLTVEFLMEEVIKLTRRQHGLD"]}}, {"location": "[1226390:1226789](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["nusB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00073"], "locus_tag": ["MAAAAKME_12960"], "product": ["Transcription antitermination protein NusB"], "transl_table": ["11"], "translation": ["MNQHDSRRIALQAIYLYNQDPSFTASELENNVKSALDLDTLPAYSQELVSGVIDKQAELRDKLSANLKQGWRLERLSKTSLAILEVALYEMLYSPVIEDRSAINEALNLCDEFDDPKSKAFINGILANFVQE"]}}, {"location": "[1226788:1227223](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_12970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MADNSTIVLSGNDEGDQIKIDLQVLEVILGISAQKVDGVAGMRGGLKSGLSRVFGREDRGKGVSVSVDEDGELTADVYVYLKYGVNVPAVAGKIQEALKQQLTQMTDMNLKSIDVHVVGLVFPEDEKNFEDAGQPLFPDQEEDK"]}}, {"location": "[1227239:1227809](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["efp_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99066"], "locus_tag": ["MAAAAKME_12980"], "product": ["Elongation factor P"], "transl_table": ["11"], "translation": ["MTMISVNEFKNGLTIEYNNDLWRIVEFQHVKPGKGGAFVRSKLKSLRTGAVQEYTFRSTAKVETADIQTRQMQYLYNDGSSYVFMDTATYEQLEVSNAQIDQEAKYLKENMIVNIISHNGETLGLDLPNTVDLEVVETEPGIRGDTSSGGGKPATMETGLVVTVPFFINVGDVLTINTSDGSYVSRSKQ"]}}, {"location": "[1227878:1228985](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.-"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["ypdF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76524"], "locus_tag": ["MAAAAKME_12990"], "product": ["Aminopeptidase YpdF"], "transl_table": ["11"], "translation": ["MSKNNELLSLLTRRIKGTADLIKDKDADALLVFNRANYRYLTNFTGEEAQLIITKNGDRVLLSDSRFAPQIEAQAVGELKVVMKHGHEAAEIAAEVKKLGVKKLLVEAEFVSAYEYDEIKSQLPDVDLVMAAEIVERVRNVKDDLELATLKKAVEISERAFEEVLPMLKPGAKERDVGAKLDYLFKLYGGDGPGYDSIIASGPRSSWAHGVASDRLMQEHELVVIDAAASYNGYTADITRTYALGSVEDELEKIYKIVLEAQKRGIAAAVAGATGKDVDQAARGYINDAGYGQYFGHGIGHGIGLEIHEMCQPEFLFSQTTLENGIVHTVEPGIYLPQGGVRIEDDILVNGDTPEVLSTLPKDELIHL"]}}, {"location": "[1229130:1229430](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0211"], "gene": ["rpmA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P05657"], "locus_tag": ["MAAAAKME_13000"], "product": ["50S ribosomal protein L27"], "transl_table": ["11"], "translation": ["MMMNILSNAKLLAHHKGGGSTTNGRNSAGRRLGAKSADGQEVHAGSIIYRQRGTKIHPGKNVGRGGDDTLFALTNGVVKFERLGKYKKQVSVLPVEDAE"]}}, {"location": "[1229445:1229757](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0261"], "gene": ["rplU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RLA4"], "locus_tag": ["MAAAAKME_13010"], "product": ["50S ribosomal protein L21"], "transl_table": ["11"], "translation": ["MYAVIKTGGKQYKVAEGESIFVEKLDVQAGEEVVFDQVILVANGDDVKVGTPLVEGAKVVASVDKQGKEKKVVTFKYKPKKHSHSKYGHRQPYTKVTVKSIEA"]}}, {"location": "[1229997:1230354](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1393"], "gene": ["mgsR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54503"], "locus_tag": ["MAAAAKME_13020"], "product": ["Regulatory protein MgsR"], "transl_table": ["11"], "translation": ["MPKFYGYKRCSTSRKAQKWFDDKGISYDFQDLVETPPEKDLLLSWLTKYQDRGLRYFFNTSGQHYRQMGLKDKLPNMTTEEAADLLSKDGKLIKRPLVVDDQHLTCGFKEEVYEQTWK"]}}, {"location": "[1230395:1230923](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0626"], "gene": ["metI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31631"], "locus_tag": ["MAAAAKME_13030"], "product": ["Cystathionine gamma-synthase/O-acetylhomoserine (thiol)-lyase"], "transl_table": ["11"], "translation": ["MVIHSATKYLGGHNDILGGVVVVKDPVLADFYFQYTITVGDTMSAFDSWLLNRSLKTLPLRMQQHTASAKKIVSFLEQAPYVEKVLYPGKAGMISFYLDSDEEVDRVLKSVKLITFAESLGGAESLLTIPYYQTHDDVAEDQRLRLGITPRLLRLSVGLENADDLIADLAQALGE"]}}, {"location": "[1231092:1231509](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0410"], "gene": ["livF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P22731"], "locus_tag": ["MAAAAKME_13040"], "product": ["High-affinity branched-chain amino acid transport ATP-binding protein LivF"], "transl_table": ["11"], "translation": ["MQLGAYLRKDKDGVEKDMEAMFKRFPILKERQKQEAATLSGGEQQMLAMARALMERPKLLLLDEPSMGLAPIYIQEISDIIKSINKEGMTVLLIEQNARQALSIANQGYVLASGEVKMTGSGQDLLNDLAVQKAYLGG"]}}, {"location": "[1231560:1232826](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0151"], "gene": ["purD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O66949"], "locus_tag": ["MAAAAKME_13050"], "product": ["Phosphoribosylamine--glycine ligase"], "transl_table": ["11"], "translation": ["MKDKLKILVVGSGGREFAVARALKKSPHVAEVFCAPGNSGMAAIGVKATGIAEDDFKALKDFAIKEDIAWTFVGPEDALVAGIVDYFHAFDLKIFGPNARAAQLEGSKDYALQFMEKYQVPHPRYETFQSAETAISALPDFGLPVVLKEDGLAGGKGVVIAEDQETAESTLTEMFAKGQKQVVLEEFLTGPEYSVFAVMQGGNYRLLPLAQDHKRAYDGDKGPNTGGMGSYSPVPQLSQAEYQEIVDQLVEPTAKGLLAGGYDYHGVLYLGLMMTKQGPKMIEYNVRLGDPETEVVLPRLKSDFAELVAACVNDEEMPAVEEKDEAVLGVILAAEGYPKKPLKGQKLGQLPAEDGIFVDCANVTGPATDLVGSGGRILMVRAEAADLKEAQEHVYAYLAKLDIPQTFYRRDIGYRATGKRF"]}}, {"location": "[1232841:1234383](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["purH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67544"], "locus_tag": ["MAAAAKME_13060"], "product": ["Bifunctional purine biosynthesis protein PurH"], "transl_table": ["11"], "translation": ["MKRALVSVSDKNNLVPFVKGLVANDYEIVSTGGTKRVLDEAGIPTISVEDVTGFPEILDGRVKTLNPYIHGGLLARRELPEHVATLKEHKITPIDLVCVNLYPFKQTIEKPDVTLAEAIENIDIGGPSMVRSASKNYRDVTIVVDQADYDQVLAEIEKDGSTSLETRARLAAKAFRLTASYDALISQYLTEKAGETAPEKLTLTYDLKEAMRYGENSHQKAWLYEDALPKAFSVLQAEQLNGKELSYNNIKDADEALRCVREFSKPTVVAMKHMNPCGIGQGNTLEEAWDRAYVADPVSIFGGVIALNRKVDLATAEKMHKIFLEIIIAPDYDEDALAALKTKKKNLRILKLDFSKKDEATSKETVSVMGGLLVQDQDVLDEDFADWECVTEAKPTQEQLESLLFAWKAVKHTKSNAIVVANNERTLGVGAGQPNRIDSEKIAIDHAAEALDDRAVLASDAFFPFSDCVEYAGKHGIKAIVQPGGSVRDQESIDMANKYGIAMVFTGVRHFRH"]}}, {"location": "[1234383:1234965](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.2.2"], "codon_start": ["1"], "gene": ["purN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99162"], "locus_tag": ["MAAAAKME_13070"], "product": ["Phosphoribosylglycinamide formyltransferase"], "transl_table": ["11"], "translation": ["MKVAIFASGNGTNYEVLAEHFQKGDLPGDLALLFCDHPDAPVIKRAEKFHTPVVTFTVKSCGGKQKYEEKILRVLKDYQIDFIALAGYMRVIGPTILSEYEGRIVNLHPAYLPAYPGLHSIERAFADHPAETGVTVHYIDSGLDSGPAIAQRHVPIYDDDTVDTLEARIHECEHHLYPEALRKALLKFEEENK"]}}, {"location": "[1234964:1236014](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.3.1"], "codon_start": ["1"], "db_xref": ["COG:COG0150"], "gene": ["purM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97TA2"], "locus_tag": ["MAAAAKME_13080"], "product": ["Phosphoribosylformylglycinamidine cyclo-ligase"], "transl_table": ["11"], "translation": ["MIVNRYKDAGVDVNAGYELVRRIKGAVASTKRPGYVGNIGGFGGLFDLDSLGYDHPVLVSGTDGVGTKLIIAQKMDKNDTVGIDVVAMCVNDVLAQGAEPLFFLDYIACGHNDPALLASVVQGVAEGCKQAGASLIGGETAEMPDMYAPDEYDLAGFTVGVAEKDRLLSVDTPQAGDVLLGLASSGVHSNGFSLVRKILFKDHDVKLTDKPAELKGKSVGESLLAPTRIYIKSVLPLIKQGLVHGVAHITGGGLIENVPRMFNDGLRAEIAAGSWEVPDIFNYLKQVGNLSDDDCWQTFNMGLGMILAVPADKKEEAKKLLLASGEKVFEVGHLSERTDGEKIFIKLVE"]}}, {"location": "[1236010:1237489](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.14"], "codon_start": ["1"], "gene": ["purF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99164"], "locus_tag": ["MAAAAKME_13090"], "product": ["Amidophosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MPYEIKGLNEECGVFGIYNVPDAANVTYFGLHALQHRGQQGAGIVASDGKNLRQFRDRGLLSEVFSNPADLDFLKGNMAIGHVRYGTAGSDSLANVQPFLFHFQDGEIALCHNGNLTNAKTLKKRLEDSGSVFQSSSDTEVLIHLIRRKVRMPFIEALKASLNEVKGGFAFLLMTNDTLYAALDSNGFRPLVLGQMDNGSYVVASESCALDAVHAKLVRDVQPGELIIINKDGIKIDHYTTETQLAVCSMEYIYFARPDSIIHGVNVHTARKRMGILLAKEQPAPEEADMVIGVPNSSLSAAAGYAEAAGLPYEMGLIKNQYIARTFIQPTQALREQGVKMKLAPVRGVVSGKNIVVVDDSIVRGTTSRQIVQMLKEAGAKSVHMRIASPPFKYPHFYGIDISERKDLMAAKYSVSDMCKLIGADSLGFLSIPSLIKAVDIPDTGDAPNGGLTVAYFDGKYPTPLYDYEEQIKEPLNVEPVEEILKKQNRGE"]}}, {"location": "[1237464:1239687](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.3"], "codon_start": ["1"], "db_xref": ["COG:COG0046"], "gene": ["purL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12042"], "locus_tag": ["MAAAAKME_13100"], "product": ["Phosphoribosylformylglycinamidine synthase subunit PurL"], "transl_table": ["11"], "translation": ["MMQEMTPEEIKEKKPYLDWSLSEEEYDYICDKLLHRLPNYTETGLFAAMWSEHCSYKKSKSVLRLFPTKGPRILQGPGEGAGVVDIGDGQAVVFKAESHNHPTAVEPYQGAATGVGGILRDVFSMGARPVATLDSLHFGELDDAHTRWLLNETVAGIGGYGNCMGIPTVGGELTFDDIYKGNPVMNAMSVGLLDVKDMQKGLAQGEGNAVMYVGAKTGRDGIHGATFASHSFDSEHESQRSAVQVGDPFMEKLLLEACLELTQKHADWLVGIQDMGAAGIVSSSSEMASEGKSGMELNLDLVPQRESGMSAYEIMLSESQERMLLCVKKGHEEDVKKIFDFYDLDAVVIGRITSGHNYVLRHHGEVVCDIPVTSLTEDVLEEPSEEKQPQHMIDDAAKPAWEPEITDLAKTYKQMLAQPTIASKGMFTQTYDSMVRTSTVVGPGEDSGVLRVRGTHKGIAMTTDGNGRFIYLDPEIGGKRAVVEAAGNIIASGAEPLAITDCLNFGNPNEPEVFWELHHSVMGIAKACEVLETPVVSGNVSLYNETDGKSIYPTPMVGMVGLVKNLDHLVRDSFQEEGDDLYLVGQTGADYAGSELQKMLTGEIFGSLNDLDLDHIKDYQKRLLAQMEAGHVASAHDLSEGGLAVSLAESSFGHGIGAEVACDLTSAELFSETPGRFLVSVPSEYSAEFAAALAADAVKIGQTAGDSLKLTLKDQAADLPVAELKQIWEEALPCLMKSKD"]}}, {"location": "[1239686:1240361](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.3"], "codon_start": ["1"], "db_xref": ["COG:COG0047"], "gene": ["purQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12041"], "locus_tag": ["MAAAAKME_13110"], "product": ["Phosphoribosylformylglycinamidine synthase subunit PurQ"], "transl_table": ["11"], "translation": ["MKFAVIQFPGSNCDIDLYEALHTVCGADVAYVPSKESSLDGFDAVMLPGGFSYGDYLRAGAIARFTNIMPAIVEMAKAGKPVFGTCNGFQILTEAGLLPGALKRNDSLKFVCKTVELEVANNDTIFTSEYQKGEKINLPIAHADGSFYADPETLQKIEDNGQVVFRYSKENPNGSLNNIAGITNERGNVLGMMPHPERAVEALLGNTDGLRLFKSILNHAEVKA"]}}, {"location": "[1240360:1240609](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.3"], "codon_start": ["1"], "db_xref": ["COG:COG1828"], "gene": ["purS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12049"], "locus_tag": ["MAAAAKME_13120"], "product": ["Phosphoribosylformylglycinamidine synthase subunit PurS"], "transl_table": ["11"], "translation": ["MTTVRIYVTYKQSVFDPQGEAITNSIHSLGHDEVKGVKVGKFFDVTIEEGDKPVAETVKEISEELLVNFNMETYSYKILEEK"]}}, {"location": "[1240613:1241336](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.6"], "codon_start": ["1"], "db_xref": ["COG:COG0152"], "gene": ["purC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q0TTB4"], "locus_tag": ["MAAAAKME_13130"], "product": ["Phosphoribosylaminoimidazole-succinocarboxamide synthase"], "transl_table": ["11"], "translation": ["MAELLYQGKTKEMWTTDDPEVLRAVYKDDATALDGLKHDVFQNKGELDAEISSLVFEYLMKHGVKTHFIKRLSKNEQLVKKVKMIDLEVVTRNIAAGSFCKRYGLKEEGEKLDTPVEELFMKSDALHDPLMNESDAIAFHLLTHEEHEQIWEISRQVNQLLTKLFADAGMLLVDFKVEFGTLPNGEVVLADEFSPDNCRLWDMETKDHMDKDVYRRQIGNLIDVYERVLARLKDALAKED"]}}, {"location": "[1241659:1242955](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.3.2.2"], "codon_start": ["1"], "db_xref": ["COG:COG0015"], "gene": ["purB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P12047"], "locus_tag": ["MAAAAKME_13140"], "product": ["Adenylosuccinate lyase"], "transl_table": ["11"], "translation": ["MIERYTRPEMGAIWTDEKKYECWLAVEIAADEAWSKLGHIPAEDVEKIKQNAKFSVDRINEIEAVTHHDVIAFTRTISESLGPEKKWVHYGLTSTDVVDTAQGYQLKQANDILRKDIQDFIDILAKRALEFKDTVCMGRTHGIHAEPTTFGLKFARWYSEMKRNQERFEHAARGVEAGKISGAVGTFAEVDPEVEAYVCKKLGLHAQEISTQVLPRDLHAEYIAAIALVATSLENIATEIRSLQRTEIHEVEEHFAKGQKGSSAMPHKRNPIGSENICGMARVLRGNVVTAYEDVTLWHERDISHSGAERVILPDSTIGLDYMLNRMGKILANLDVFPETMKKNMDKTLGLIYSGRVLLKLVESGMSREAAYDLIQPYTAKCWAEQVPFRPLLEADPTIQKQLTKADLDDAFDYHWHLRHVDDIYKRLGLE"]}}, {"location": "[1242998:1244123](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.18"], "codon_start": ["1"], "gene": ["purK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A695"], "locus_tag": ["MAAAAKME_13150"], "product": ["N5-carboxyaminoimidazole ribonucleotide synthase"], "transl_table": ["11"], "translation": ["MSIKIKPGQTIGIIGGGQLGQMLAFDAKASGMKVIILDPTPACPAGQAADDQIVAEYSDIDAIHELASRSDVLTYEFENVDLDALESVKDQVFIPQGTKLLYTTNNRIREKTFIQSAGCEVAKFRAVKNRADLEEAVSDLGLPAVLKTCEGGYDGKGQVVLKAAADLDKTADVLACGDCILEKFVDFRMEASVMIGRNSDGQVTVFPVSENINQGEILHESIVPARISPDLAQKAQEAAVKIAEAIDLKGILGVEMFVTKDDKIVINELAPRPHNSGHYSIEACNFSQFAVHNRAICNWPLPKIKLLSPVVMVNVLGQHVAGTEKLIAEKPQWSFHDYGKGEVRRDRKMGHVTILTDDVDKTLAEIVATKVWDV"]}}, {"location": "[1244112:1244604](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.18"], "codon_start": ["1"], "db_xref": ["COG:COG0041"], "gene": ["purE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYS7"], "locus_tag": ["MAAAAKME_13160"], "product": ["N5-carboxyaminoimidazole ribonucleotide mutase"], "transl_table": ["11"], "translation": ["MTSRISVVMGSKSDWGYMQEACKLLDKFGVDYDKQVISAHRMPEEMFAFAQKAAENGTKVIIAGAGGAAHLPGMIAANTPLPVIGCPAKTSALGGMDSLLSIVQMPAGIPVATTAIGPAGAKNAALLAMQILGIEDKELQQKIVDYRKEMHDQAKESSADLVY"]}}, {"location": "[1244762:1245017](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDITGSFKDSRLQVILRKQKAKEALFEALIDRFEFGRDYSEKEVNEVLAAVYNDYAILRRYLVDTGRLGRDPYGQHYWRAEKKD"]}}, {"location": "[1245017:1246232](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKYKYIFYYISILYTMGTSLWSGTIYLFMRHNGYSYSLINLFLEIFWLVTFFAEIPSGYIADKFGYLKTIMASGIIRALGLIILALSPMNLLWMTVSGVLTALGDSLQSGTMTSWIANKAVEHGEKDQLGAIFSGYSIIGTPLTMAATFVGANILGNIRLDLPLLIGAAFLLATSLTIIPLLKYDSQNLAEAEEGMPKLNLVADVKYTVEQEQKTFAWILLLLPVAIISAGPLDQWQMYFQSGKTVNSGTISVLMSLSGMLAISLYNRYVSKKPLSNRGQIRLIVVSTVMMAATLFGVVGLKNWYYGSLSLFMLHTMFGSLENMLGGIVLQTTIQTENRRATIMSVANALDAGAEVAILAINGFLSDRFGIGFAWVSLAALGLLIFLLAILGMQSKKLEVEEI"]}}, {"location": "[1246455:1247715](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13190"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLVKSVSLVNNELDTNGFVTTDAINYVTDKHGSVVDVNSVKRSTDRISEKTPGRYMVTYRYGKASGKVTVTVRNDANEGISKADAKLGKGGNVGKTWFPHELAFRGNYNAQVTPHTYVGTDKHGKKTAKLTTKFYEPNSFSLLEGSQETNVRGNVQGLDVYGQDMVTTNFYGGPESSMDGARGHMVLYQLNQVPKYALQYIPTNTLNFQLWKNYVKSIKISPYIKLGHSQSVGSTSRYIYELANWNHTKKPRSNELLQIDKKDMQVKRIWTFAVSNGKRENNCYFLNADVIDDNIMLALFHSKFNHRFEIWKITRTGNSFKVKEAATTDGDLISNSSQVQGFTYSVAHTHKCYYIAFNDYLFKIDAKGNLANYYHFNAKREVEGLASYKSKIYIAMNKRAEVFDSNMAKQPQEQALKK"]}}, {"location": "[1248107:1249919](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13200"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRFALGMMTSAALMAGLASQVQASSKDYSKSTKTDLVTKIMGNKSYQVYSSLKLEEVTKKVKTKTKEKKKYTVKKKVAVKKKSKKGKTKYKTVKQVKYKWVTKTAYKNVKKKWKFGKKLTVSADFRYAHVQSKSYKVKDGKRYYYIYVNGRPVGYVNEKAFALSKANVVSQVSLVNNPSDSVGFNAEDAINYVTDQHGSLVDNDSVEISCKSAELNISDTGYVSSRKAGTAVLTFKYGKAKATSKLTVRGDAKEGISSADVTPVKTDLPEITTWSARDGARLSSSSTITSKDAVSSSHKYWATKTMSGNAKGADIETIFYHPAVLSAPGSSNLEAKVSSAVQGIDFYDNDLVTSNLDLGQADNWEARGHMVYYNMRKVKKYNWQLIPSKMLSFNTWLSYIKNIKVSPYMKLGHGQSVGSTKKYVYVLANWNRSNNWSNSQELIRVKKSTMEIDKIWTFKVWNGSAKYPRIFLNADVIDDNTLLALFHNAYKHCYEYWKISRSGDSFKAKEVGATGSDLISNSAEVQGFVWNSAYDVYYIAFNDYLFKIGAGLDGKTDAGKLLNYYKFDTGRREFEGLSSYGPELYVNLNHPTETLKVNHITK"]}}, {"location": "[1250104:1251787](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.1"], "codon_start": ["1"], "gene": ["topB_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00953"], "locus_tag": ["MAAAAKME_13210"], "product": ["DNA topoisomerase 3"], "transl_table": ["11"], "translation": ["MRPGWDYYYRYKEAQTRQISDWLVGMNGSPLFTLLLRKQGIKGTYSIGRVQTPTLYMVYKRDQEIANFKPEKYWLLMADFWQGRKKFTGRLLPETKFKSPAELERFLLAKGGSLGKQTGRVAKVDKEQKSQASPRLFSLSSLQTEANRRYHASASQVLQAVQNLYENKFLSYPRTDCNYITDNEYAYLAQNLDRYQGLLPNSAEVKEQMKPLKAEKRYVDSGKVQEHHAIIMTKTVPSQAQMGKMSKLEGQVYGLVLRRTLEMFLKAYVYEKTTALINVGQLTFKASGNVSVNLGWKILEGPVKDAQLPPLEVGQELTAKLKEQEEETKPPAKFTEGSLITAMKTAGKTLDDEDAQATLKDVEGIGTEATRASTIEILKKRGYMQSRQNKLSVTPEGTILCRAAEAEPLLVSAQMTAQWEKALKQVGAKERSQDNFLGQIKKFISKMITEVPGKIQVDQGLQEEAQTRQAKTAAIGPCPVCKQGEITDKGKFYGCSNYRGGCHFTLPKKFAGKNMGKRIVKTLISKGKTDKLDGFVSKKSGQRYSAKLQLEGDKLSLVFD"]}}, {"location": "[1251803:1252244](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.6.2.1"], "codon_start": ["1"], "db_xref": ["COG:COG0550"], "gene": ["topB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P14294"], "locus_tag": ["MAAAAKME_13220"], "product": ["DNA topoisomerase 3"], "transl_table": ["11"], "translation": ["MTTVILAEKPSQARAYAAAFTQSQKGEGQIKVADPILPADTVITYGFGHLVEMALPEAYDASYKRWSLKKLPIFPDQYKYLVPRDKKKQFNIVANLLKRADTIVIATDSDREGENIAWSIMRQAGIDLKQKHLFRLWINSLEKSRD"]}}, {"location": "[1252432:1252506](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_13230"], "note": ["tRNA-Arg(tct)"], "product": ["tRNA-Arg"]}}, {"location": "[1252728:1255107](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.14.11"], "codon_start": ["1"], "gene": ["pepX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P40334"], "locus_tag": ["MAAAAKME_13240"], "product": ["Xaa-Pro dipeptidyl-peptidase"], "transl_table": ["11"], "translation": ["MKYNQYAYVETSPEKATEELLAINFLPENYSSLSFSELLAVLTGNVLAEATTRQAKDAKLAEFAVDDQTDLAAFLLDTPTAITASQFANVALQLLGYHPNYDYSLTDPLTCGEKHALPAFKDLTSKEELIFAFYRLLNTRSKNGQILLDVMAGKGYFTQFWGEGKFMLFNGKSLPVFDTSQVIREVVYVQSDLDTDGDGKGDLLPVTVFRPVESQDQLKVPALYTASPYFGGIIDNVKTNHNVDENLTDATTWTNPKYVAKPLVKSPAPSGQDVPATELATGQSSYGLNEYLLARGFASVFSGAIGNRHGDGIRITGSPEETISQKEVIEWLTGDRVAYTDRTRRFETKAGWCSGNVGMTGRSYLGTLQIAIATTGVKGLKTVVSEAAISSWYDYYREHGLVIAPSECQGEDMDKLAEVCQSNLWDGGNFTAKKAYEAEQAELLAAQDRATGQYSDFWESRNYRHHADGIKCSWISVHGLNDWNVKPKNVYKIWQKVKQLPVESHLFLHQGPHYNMNNLVSIDFTDLMNLWFVHELLEVENGAYEQWPKVMIQDNLEADKWHAESDWANDLGQASLYSPTADGYLSTVENGTGQLTFTDLGGTEFKKAGISETDWEYQFISGEKKWAKASLRFESEEFLHPTTLVGRPKVQVRVAANKTVGQLSVALVDLGTRQRLTATPKIFARGNQPFGYRFEADSLQEFVPDKATKAKLITKAHMNLQNYQDMKQPSKLEAGQFVDLEFELQPTYYTLPAGAKLCLIIYSTDQGMTKRPLETEDYTVDLAGTALLLYRK"]}}, {"location": "[1255218:1256562](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hsrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31474"], "locus_tag": ["MAAAAKME_13250"], "product": ["putative transport protein HsrA"], "transl_table": ["11"], "translation": ["MEKSSKVNLAIFSAGLMTFIGILNETSMNVTYPLLVKEFHQPLATVQWITTAYLLKQVQARWLHLGAALSFICGCIICALTSSFPLMLAGRIIQGIATGFSTPIMFQLIFTQVTKQKLGLMTGFAGMIISFAPALGPTYGGLVVSAASWRMIFWLLLPLALVSLIGGQVYIRNQVSGQKKKFDAPSLLLLGLALFAIIYALSLIGTSSLSWLLLLAGAVLFTLFVFVNKRGNSHLLNLAIFKEKTVCLAALTYFFLQLVNIGLSVAVPVYAQYALAASSLISGLILLPGSCMGAVISPFAGKLADKRGFKFPLTLGGCLFLLGNCLLLVLQPLLTPVLIVVCHIVIRSGFNLSFANTISNTSTLVDRKNVADVNSSFNMLQQFAGSVGVSLATALISLAQKTGRGTLAQRSYQGGKYDFIMFSCLALVTLLAIWQNFRLQEQKNKEN"]}}, {"location": "[1256647:1256743](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFNKNLFNVNMTACCCGLCLKQSTIWLGLES"]}}, {"location": "[1256869:1257652](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.30"], "codon_start": ["1"], "gene": ["metA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0A1D3PCK2"], "locus_tag": ["MAAAAKME_13270"], "product": ["Serine O-acetyltransferase"], "transl_table": ["11"], "translation": ["MSKKIGILNLMHDKIDTQKRFSHVIKEASPETEITYFYPQSHYLNRPRPQNWPAEPLNLKTVAKLDGFIVTGAPIELLPFSEVDYWEELTKLFDLLKAKNIPQLYVCWGAMAALYYFYGIGKHPMPEKIFGIYPQEILAPTPLLSGLITGFLAPHARYAEMNRSEIEQEKALTINAATPDGHLTLVTGPGQQVFLFSHLEYGPQAFSKEYQRELSARGGDDRKIAKPQRYFADEAAMSLPQFTWESSQQHFFKNWLQTIK"]}}, {"location": "[1257694:1258618](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.47"], "codon_start": ["1"], "gene": ["cysK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63871"], "locus_tag": ["MAAAAKME_13280"], "product": ["Cysteine synthase"], "transl_table": ["11"], "translation": ["MSTDRIYGNILETIGHTPIVKLNRVVPEGAADVYVKLEFFNPGGSIKDRIALAMIEKAEKEGKLKPGDTIVEPTSGNTGIGLAAVASAKGYHLIIAMPETMSEERKKIMRAYGAELLLTPGKDGMPGSIALAEKLVKEKGYFMPMQFENPANPEIHELTTGQEIVNAFAGDLPDAFVAGVGTGGSLTGIGRALKKAGDVKVYALEPAESPLLKEGKKGPHKIQGISAGFIPKTLDQSIYDGIVEVSSDDAFATAREVARLEGFLPGISAGANIHGAIELAKKLGAGKKVVTVAPDNGERYLSTALYQ"]}}, {"location": "[1258876:1259353](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKIARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFRDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLRFTILLAERIVNGHLKDLTSDQRADCFVFDDSLYSRTGYKKTELTAKDGAQIDARIVCVRNRSPVI"]}}, {"location": "[1259459:1259645](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_13300"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MVDELADITFNYSLQTLVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[1259757:1260939](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.79"], "codon_start": ["1"], "db_xref": ["COG:COG2230"], "gene": ["cfa"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9H7"], "locus_tag": ["MAAAAKME_13310"], "product": ["Cyclopropane-fatty-acyl-phospholipid synthase"], "transl_table": ["11"], "translation": ["MLEKTFYKMMLSKSFPFPVKVTYWDGKSEVYGNGTPEIEIVFNEKIPMGDITRNASLALGEAYMDKKIEIHGSIQKLIDGVYESADSFMRSSKFRKFLPKTKHTEKQSEEDVQSHYDIGNDFYEQWLDPTLTYSCAYFTDDNKDDLEQAQIAKVHHILNKLHPQKGKTLLDIGCGWGTLMLTAAKEYGLKVTGITLSEEQYKLVQKKIYAENLQDVAEVKLEDYRELDDQQWDYVTSVGMFEHVGSENLGEYFNDVAKYLKNDGVALIHGITRQQGGATNAWINKYIFPGGYIPGLVEIISRIEEAHLQISDVEMLRRHYQRTLEIWDKNFNNARPEIEKKMGERFCRMWDMYLQACAASFESGNIDVVQYLLTKGLSGKNLPMTRDYMLNNK"]}}, {"location": "[1260997:1262110](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "db_xref": ["COG:COG3590"], "gene": ["pepO_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q07744"], "locus_tag": ["MAAAAKME_13320"], "product": ["Neutral endopeptidase"], "transl_table": ["11"], "translation": ["MGSASPEEQMERFTNAFISVHARGYIAITSSLIEYLLAKLLSFQGFIVLFGVGSLSNGAFDEVVGIFYGKKYFGEEAKHDVEDMIHNMLKVYEQRINDNNWLSEDTKKKAIIKLRALVLKIGYPEKIEKIYDLLQIDPERSLYENEAQMATVRTKYMLDKLTQPVDRSVWLMPGNFNNACYDPQRNDLTFPAGILQAPFYDIHQSRGANYGGIGATIGHEVSHAFDNSGAKFDEHGNMNNWWTDEDFAEFNKRVGQMVDIFDGLQYGPAKINGKQVVGENIADLAGLACAVQAGKNDNVDLKDLFENYARSWMQKQRPEAIKTEVQVDVHAPQPTRVNIPVQCQDDFYTAFDVKPDDGMWLDPEDRITIW"]}}, {"location": "[1262376:1263369](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.4"], "codon_start": ["1"], "db_xref": ["COG:COG1816"], "gene": ["add"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KNI7"], "locus_tag": ["MAAAAKME_13330"], "product": ["Adenosine deaminase"], "transl_table": ["11"], "translation": ["MKKLIDLHLHLDGSVPYQTVRELLAKEGRSLPEADLRKRLSVSPDCRNLDEYLDKFDFPLSLMQTAENLRLIVRELLAELRGQGLVYAEIRFAPQKHTETLTQAEVVQAVLDGRDDFYAWQKGQEGDDLHANFLLCLMRLVGQDEANWETLRVAKEFKDQGVAGLDLAGPENEEVANCKYASFFQQAREWGIPYTIHAGEAMGPESMRDALALGTKRIGHGIRCQEDPSLVKELAEEGITLECCASSNLNTKVFDQIAEYPLRSMLGQNLRVTLNTDNMTVSATNLPREYQLMEEQGLTKSEEKQLYLNSVRAAFASQEEKDRLLALLEK"]}}, {"location": "[1263590:1263932](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEDIFFTVTGCNHYFGTEAFKPRMKVTLYKEPDNKYDKEAIRVEARALGKIGYVANSPYTVLGESHSAGRLYDLIDDGATGRVLYVLPQGLVCELEETGFEKVKKIYKKHRHY"]}}, {"location": "[1264224:1265448](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKIARSVEKFFKDYKVMELLRRCGLRKSKGIPLWSILSYIFSNVFPDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLRLTILLAERIVNGHLKDLTSDQRADCFVFDDSLYSKTGYKKTELTAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIKGDHVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEEKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKLGTEYHGLSYDALTAHTAFVFLRYMFMSVEKLDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[1265570:1266794](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_13360"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYDKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1267331:1267703](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEIEKLKADYINWLAGQTVFKLWSDTVFQVENELVDAYGRKPFVLVEKSGDKYTVTDDGYLMFKYNPLEENEDLNEYAAGMIMDAGFDFDEDHAVIEQTVSEESLPGAINALMQLEIIISFIA"]}}, {"location": "[1267803:1269024](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yhhS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37621"], "locus_tag": ["MAAAAKME_13380"], "product": ["putative MFS-type transporter YhhS"], "transl_table": ["11"], "translation": ["MSSKSASVSPAKAGRMEKEKGKSIYSKDVILVMTASFLFLFGTMFNNPLINGYAESLGASSILAGVIVGIMSFAAMFLRPIAGNLTDKFSKYQLSFIGGVLIFIGILGYIISPNGELLLLFRIINGTGFVLCTVCMTTWIAFLVPRQHVGAAMGLYGLMNALAMSIAPAISINLYKVIGYRQTMMLPAAATLIMIIIIQFVGNRAVPSPRQKEKKQFKMISVNALPVALLTTCFGIPYFVTQADIVTYVAKMHMPVAVGSYFFIYAIVLLLIRTFFKNYFDTVRFGVWFWLSQVATAIYLVLLAYMSSNWMMALGAAGMAVGYGLIYSVLQSTALLLSPANEQGLGSSTFYLGLDIAMAFGPMLAGVVAKALPGRWFYLVQLIVVPLALIVYLIWRKRLNGAIDNH"]}}, {"location": "[1269273:1270611](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.1.2"], "codon_start": ["1"], "gene": ["glnA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99095"], "locus_tag": ["MAAAAKME_13390"], "product": ["Glutamine synthetase"], "transl_table": ["11"], "translation": ["MSKVITEEEIRKDVEEKNVRFLRLAFTDINGTLKNLEVPVSQLDDVLGNQTRFDGSSIDGFVRLEESDMVLYPDLATWLVLPWTTVEEGTIGRLVCSVHNVDGTPFEGDPRNNLKKVIAEMEEMGFSDFEIGFEAEFFLFKEGKNGEETTKVSDHSSYFDMASEDEGAKCRREIVETLEKLGFRVEAAHHEVGDGQQEIDFRFDNALATADKLQTFKMVVKTIARKYHLHASFMAKPVEGLAGNGMHTNMSLLKDGKNAFYDKDGQYNLSTTALTFLNGILEHARAITCVANPTVNSYKRLIPGFEAPVYISWASRNRSPMVRIPNANEVGTRLEMRSTDPTANPYLLLSACLKAGLTGIKEGKLPMAPVTSNLFEMTDDERKELGIKPLPSTLHNAIKAFKEDEVVKSAFSEHIVDSFLELKETEWALYTQSVSEWEVKRYFNY"]}}, {"location": "[1270748:1271723](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALDGNLLPGETLTYLTGMPYDTMQQVIGLAPKKRGTLIQKGINFSYVPLNEEGGVDYEEAEKVLKRDQPHIVVIQRSRGYDTRQSYTVDQIKKMTAFVKKVSPESLVFVDNCYGEFSEKHEPTEYGVDFTAGSLIKNAGGGIAQTGGYIVGKEELVENAAIRLTAPGIGKEEGATLTNMHEFYEGFFLAPHTTGEAIKGMIFSAALLEKMGCEVTPKWHEPRTDLIQTIIFNVPEKMINFTKEVQKNSPIDSFVEPIPSDMPGYEDKVIMAAGNFVSGSTMEFSADGPIRPPYALYMQCGLTYAHDRIAVTNAVNHLFFKENG"]}}, {"location": "[1271810:1271963](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRKLPPRLREIDDQVVYNQGKVLKAFVDHQVAEADLKGTNGYGDDDIGR"]}}, {"location": "[1272002:1272929](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.75"], "codon_start": ["1"], "db_xref": ["COG:COG0324"], "gene": ["miaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KAC3"], "locus_tag": ["MAAAAKME_13420"], "product": ["tRNA dimethylallyltransferase"], "transl_table": ["11"], "translation": ["MQKVVAIVGPTAVGKTSLAIEIAKKLDGEIVSGDSMQIYKEVAIGTAKASREEQAEVKHYLVDAHSVFEDFSVKNFVDEARSAIGEIAGKGKLPIIAGGTGFYVNALLNDMQLGDKEEEAASVDPEWEVFLAANGPQALWEELNKKDPEAAKKIPVANSRRSLRALSVISRTGGLFSKQQAEIKTRYDYLIIGLNSDREAIYQRINQRVDLMMEAGLLEEARFVYEHRAGEHQVLQAIGYKEFFPYFAGEASLETCVMALKTASRRYAKRQLTYFRNKLPVEWYDPLTDPNCANRIAVRIEEWMKEEK"]}}, {"location": "[1273009:1273411](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.1"], "codon_start": ["1"], "gene": ["glpE_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01009"], "locus_tag": ["MAAAAKME_13430"], "product": ["Thiosulfate sulfurtransferase GlpE"], "transl_table": ["11"], "translation": ["MTNFLIVLDVILGVILLGFLGFWAYNRIQAKRLGGELTNEEFKAGMRKAQIIDVREANEFKHEHIDGARNIPYTMFKYQYTELRPDLPVYLYSDSLTMTLRCASILRKHNFAKVFYLKDGFSQWDGRKKAAKN"]}}, {"location": "[1273473:1273701](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4483"], "gene": ["yqgQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54494"], "locus_tag": ["MAAAAKME_13440"], "product": ["putative protein YqgQ"], "transl_table": ["11"], "translation": ["MTVLKNLYDVQQLLKKYGILVHLGKRKWDIELMAIELDNLYKAGLLEKKIYLNAKLVLKHEHEYEERLEREKRLD"]}}, {"location": "[1273700:1274372](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.21.105"], "codon_start": ["1"], "db_xref": ["COG:COG0705"], "gene": ["gluP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54493"], "locus_tag": ["MAAAAKME_13450"], "product": ["Rhomboid protease GluP"], "transl_table": ["11"], "translation": ["MNNLRRNYMTTALVVVLFAVFLVETFMGGSESTSVLLKMGAMFNPAVVMEGQWWRLFTAQFLHIGIMHIASNAIMIYYIGQYAEPVFGHWRFLLIYLLSGVGGSLLTLAFGNDQAISAGASTALFGLFGAMTCAGFKDKDNTLLSFLGRQALALAVINLVLDVFMPDVDILGHVGGLITGALLAVILGDATYKGYGKGGRLLAAAGLIVYVVLILRLGMVVTV"]}}, {"location": "[1274364:1274586](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0212"], "gene": ["yqgN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54491"], "locus_tag": ["MAAAAKME_13460"], "product": ["putative protein YqgN"], "transl_table": ["11"], "translation": ["MDLLFVPGLAFSPAGKSRIGFGGGYYDRFLAQNSVQTLALVNSAMYFKTPVWPMEDHDQAMDDLIIVKEAGDE"]}}, {"location": "[1274593:1274926](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKKTFRSWQRQRLADFAKTPAKKRQDQELTSLALQHPLVQEAKKIGLTLPMLLEVDINGLIKELRGEGKELYLAKCHPGWQLDFLKWDEGAPLMQTKFGVWELAEEKRS"]}}, {"location": "[1274992:1275142](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmGA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23375"], "locus_tag": ["MAAAAKME_13480"], "product": ["50S ribosomal protein L33 1"], "transl_table": ["11"], "translation": ["MADNIILECTECGDRSYLSKKNKRKHPERLTLKKYCPVERQVTLHRETK"]}}, {"location": "[1275228:1277343](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0768"], "gene": ["penA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A3M6"], "locus_tag": ["MAAAAKME_13490"], "product": ["Penicillin-binding protein 2B"], "transl_table": ["11"], "translation": ["MSYFRKNSGTGNSSQTANTPLRMKVLVGVIVILFAALIGQLAYLQLFYGSRFSAEVNATDENTMTKSVPRGVMYDSQGRVLVGNKAENAITYMRSLSTTSKEMYKVANTLSNYIKITDEKPTKRQIADYYLAESSRAKKVLAALPKSQKKSSLSTSEINDNEVAYVENTLKPSLNSQEKTAALLYNMMSGATTLSTINLKSSGLSNKEIAQVGEHLSSMPGVGIGTDWNRYYPNGSSIKSIIGSVSTTKTGLPRDSLQYYLVNGYSRNDRVGISYLEKEYEALLKGTKASYKVTSNSSSEITKTKQVYKGQSGASLKLTIDAKYQAAVTKALKQQFNSALSAGAASLSSGAYAIAMNPNTGAILAMSGISYDPSTGKITDNALGNINQSFVMGSVVKGAQVAGGLINKVITPTNNTLPDTAIYLPGSPVKKSVYPTGTFSSLTAASALEVSSNIYMMQLTLRWVKASYVAKQYIHMPQTAFETLRNNFAMFGFGQKTGIDLPGESPGIQGASTDSNGIILSGSVLDESYGNYDAYTPIQLVQYISTIANGGYRMQPYVVQSIGRTSSDGKHFYTYYNKKPTVQFKIPWTADELAVIKRGLYQVVHGSNAWGTAHALKNVKPSISAKTGTAQTFYYNTKTKKSTDKELINETMVGWASSNHPQIAFAVVFAGIDPNKEGNYNKNMAKSMVTTYYKMYKGKFSSTN"]}}, {"location": "[1277511:1280010](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIFAGYFLSKKGNILTVDLGQQYVDFLAYYQQNLFKDPSKLIYSFASGLGGSMLGTDSYYLLSPFNLLLLFFPQKFLPQGILLVISCKIGAIGLSAYLVWGKKYQLAKEYVLAASFAFALCGFVVANNLNLMWLDSLALLPWLQEAIDRLLSGEKNHLVLITFLLWLTNFYTGYMTLLFGLLYLLVGLATNRKPKKRFWAYFKGSFFGSCLAGVSLWPTFLELLAGKTDADVSWKLNFQFPPYQLIAKFIDGAYSFHEMSDGLPNIFISSCFTLLALLFIFNSQFSKREKLARGLLLTFLVLSLSFTPLVLIWHLGQFPVWYPARFSFLVSFYALNLALENMDREPVFNLKQKVLAALLGASVSIYLSINPDKLEFIRQDGQVATGLFLLASLLFILFIYGQHYLAGHYALLLVVSEVTVNLIFSLNAISYQENKNYAKFEANVNQATSYLAKTDSSLYRTEKSFSRSDDDPFTGNYYGITTFNSISNSSTSNLLSRLGYVHNSNSYTNQGGTLLTDACLGVKYYLEPNYSYDGVSAAQRMPYDNLNHRADLNSYYPIKQFKQISILKNKQALPLIFASQSGQKKVKFLDNDPVHNQQKLWESLGLSGQLFKKVKNEIKLTNLKVNQSNPLVFKKANSAKPASVTFSLTPKSNDSYYLQLPDGFDFKNASLSVNDIFYNYESRDGQIRLVNIANQNKKSKIKVTFNLTNSTLDLTGLIFWHFNNSAFKAGIKQLKAPELKLKQTGLQISSQTFKSQKKLWITTIPYSKNWLVYYNGKRVKTSKYAASLLAFNLKGGKHQLTLVYFPVSLIAGSLISLVTLAVYLLLKKEQRI"]}}, {"location": "[1280061:1280550](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["greA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XDQ7"], "locus_tag": ["MAAAAKME_13510"], "product": ["Transcription elongation factor GreA"], "transl_table": ["11"], "translation": ["MPEKTYEMTAEGKKQLEEELQTLKFVKRPQIVERLKIARSYGDLSENSEYDAAKDEQMRLEERINAISEQLKYAVIVDTAAVDPDEVSIGKTVTVTEVGEDEPETYEIVGSSQSDPFHGKVSNESPIGKALLGHKKGETVKINVDSANVSYDVVINDVKTTD"]}}, {"location": "[1280620:1283032](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.20"], "codon_start": ["1"], "gene": ["pheT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCX3"], "locus_tag": ["MAAAAKME_13520"], "product": ["Phenylalanine--tRNA ligase beta subunit"], "transl_table": ["11"], "translation": ["MLVSYNWLKDFLNMDGVDPYALAEKLSRSGVEIASTVHPEDGVSKLVVGHILTCEKIEGTHLNKTTVDVGEDEARQIVCGAPNVAAGQDVIVALPGARLPGGIKIKKGKLRGIESNGMICGLQELGFSDSVVPPKYADGIWVFHDPDLKPGDSVFAALGMDDYVLDFDITPNRADTSSMEGAAYEVGALIDQKPKIEDVVLKEDGADWTGDFTAVADEKIAPKYYLRKLTGVKIAESPLWMQARLWNAGIRPINNVVDATNYVMLLTGQPMHAYDAKLFDNTKKIEVRLAKEGEKLQLLNEKEINLDPQDIVITDGEQAVGLAGVMGGLNSEVTEETTDVILEAAVFDPALTRKAALRHDNRTDASALFEKGINWDNTQKALDICALILRANAGATVLSGEIKASDLDKEAVVITTTASRTNKILGTDLSMDEIVKILGKLNFPVAVNGDEYTVTVPNRRWDIFIDSDIFEEVGRIYGYDNIKSTHPATGELIGGYAADEVKARHLRQLLEGQGLSETINYSLTSEELATTFVKKALAPVKVNWPLNSARTTMRQNLICGLLDTVAYNFARKQTELQLFENGRVYDMEGGDYHEHEHLAAAYVGLAGESNWQHKDEVVDFYYVKGQLEDVFEMIGVKDVEYRAEAIKGMHPTRTAGIYVNDEYIGLIGQIAPVLAMTDKNFAGKEIYVYELNLDALLPLMAKGVKSKPAPKYPAVQRDLSILVDEDVTNAQVESCIKENAGKYLVSVEVIDVYQGAHLAAGKKSLAYRLTFLNEAETLTDAVVTKATDNVQAALEEKLEANIR"]}}, {"location": "[1283031:1284081](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.20"], "codon_start": ["1"], "db_xref": ["COG:COG0016"], "gene": ["pheS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q4L5E3"], "locus_tag": ["MAAAAKME_13530"], "product": ["Phenylalanine--tRNA ligase alpha subunit"], "transl_table": ["11"], "translation": ["MDLFDRLKELREQGLAEIKEAESEKSLNDVRVKLVGKKGELTQILHQMKDVAPEKRREVGQKVNELRDLFNENLASAKDNLIEKAIEARLEAEKIDVTLPGRRKHVGSKHPIRIIQDDLERFFIGMGYQVVQGPEIESEHYNFEMLNLPKDHPARDMQATFYVDADHLLRSQTSPVQARTMEKHDFDKGDLKMISPGKVYRRDDDDATHSHQFMQMEGLVVGKNISLSDLKGTLELVAKHEFGQDRETRLRPSYFPFTEPSVEMDVSCFECGGKGCAICKNTGWIEVLGAGIVHPNVLSAAGIDPSVYSGFAFGLGLDRFAILKYGIDDIRDFYSDDVRFLQQFRQEED"]}}, {"location": "[1284362:1284713](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1733"], "gene": ["yodB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34844"], "locus_tag": ["MAAAAKME_13540"], "product": ["HTH-type transcriptional regulator YodB"], "transl_table": ["11"], "translation": ["MTELAEQDTPCCKNAENYEMCARFVKAFEIIGKKWNGLIISSLCDTKAMRFRDLAHAVGACSDRVLVERLRELEANGIVKRSKDAEKKIVLYTLTPKGAKLKPVFSQVHIWADKWA"]}}, {"location": "[1284794:1285577](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.34"], "codon_start": ["1"], "gene": ["trmH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02060"], "locus_tag": ["MAAAAKME_13550"], "product": ["tRNA (guanosine(18)-2'-O)-methyltransferase"], "transl_table": ["11"], "translation": ["MQERTSVNNPQIKAIGKLQQKKYREESGYYLIEGFHLVEEALKASVKYREILATEAALSRLAQLGLAYDEGKLIKISQSVASHLSSTKNSQDIFMTVKINMTVKINRPKHFAFSYGKWVLLDDLADPGNVGTIIRTADAAGFDGVILSNKTVDLYNPKVQRSMQGSQFHLNLIKADLPDAIASLKAADIPVYASLLDPAAKQLGDFAPVAQVALIIGNEAHGVSPEIEALADEKLYIPIKGRAESLNAAVAAGIMIYHFS"]}}, {"location": "[1285642:1285915](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG1254"], "gene": ["acyP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O35031"], "locus_tag": ["MAAAAKME_13560"], "product": ["Acylphosphatase"], "transl_table": ["11"], "translation": ["MQTWELLAHGVVQGVGFRRGVQMLAQKMKLPGSVRNNPDGTVTIVIQGTPTDLVKFKAELPNAVPYAQISRLDTKVLPEMEQMHSFHVLY"]}}, {"location": "[1285948:1286911](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0706"], "gene": ["misCB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54544"], "locus_tag": ["MAAAAKME_13570"], "product": ["Membrane protein insertase MisCB"], "transl_table": ["11"], "translation": ["MKKNKKRLLPVSLLALLPLFLTACASQTSKNGSLKAPTSGPYYWIYEWIGLPLQHITVNIAHAIGGASGAGWAIVIITLVVRVILMPLMLSQQHKATLQQEKMHLLQPQMQLLQKAMKTPGMTPDQQMALTGLQREIYSKNNVSMTGGMGCLPLLIQMPIMIGIYQAVAYSNALAKSTFFGISLSSKSMVLAIIATVFALIQSYVAMIGIPEEQKKTMQATMLMNPIMTLFFSMSFSGTLALYWAVGNLVMVIQQLITTFIVQPRAKKRVSKELADSPIVEVVTQAKLNQILKPAPEQKPTSQPKSGDLRKRNQGKQKRK"]}}, {"location": "[1287004:1288597](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_13580"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MPKQKAASGKKGTRHVSLIVRWVSIVAMTIMVSFLVFSAVVYNTVKQEALSQQKYMSNEVVNVLRKRLIGIDDELEITNVVQQLSPNTRRILTGGPALSENDNSNSSVFGDSVLSTVTNPDMTVAIYNLRNEIVFHNGDSAPKLVKFTSESKSVTKEGKDGQSSLYVYRKVRNRKSHKLTGYIVVKNQMTGYNRLISRTLKAMLWLSILGISLAIVISYLVVRSVVRPINKMSKVAREVNADPNSTARIPELHRNDELEELALSFNMMLDRMQKYIEQQKQFVSDVSHELRTPVAVIEGHLSMLKRWGKDDPQVLEESIDASISEAERMKHLIQEMLDLTRAEQISVHYPNAIAEPMEVLTRVVGDIGMVHPDFKISLEVEDLDPDTKIQIYQGHLEQILIILIDNGIKYSTDRKEIAVAAGQSGQEMQIVVQDYGEGISDEDKKKIFNRFYRVDKARTREKGGNGLGLSIAQKLVESYHGTIDVESVLGQGSQFRITFPVLTDEEVKELESREEQKQAGTESPKQDPTI"]}}, {"location": "[1288589:1289303](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["arlR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KJN4"], "locus_tag": ["MAAAAKME_13590"], "product": ["Response regulator ArlR"], "transl_table": ["11"], "translation": ["MPKILIVEDEKNLARFVELELQHEGYETVVENNGRKALDRALSEDFDAILLDLMLPDLNGLEIARRVRQSKTTPIIMMTARDSVIDRVSGLDHGADDYIVKPFAIEELLARLRAVLRRVKIEKDASKNKLPRQKVVKFKDLTIETANRIVHRGDGKTVDLTKREYNLLMTLIENKNNVVGRDQLLNKIWGPESNIETNVVEVYVRYLRNKIDIPGQPSYIKTVRGTGYMVRDEEDNA"]}}, {"location": "[1289481:1290060](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLELSFFQIKNSREPLTQISADLTFADGFYQRAKDLVYEVKSAHVEGQLFYDEPFVTGNFQVEADLLVPSSRSLEAVPLKQKFSFVENYSDHEPTQEEKELGLMIIPLDDDRIDVQTAVEDNMLLNIPSTVLTKEEAEEDLYPEGQGWKVMSEQDFAGQKKDQVNPAFAQLRGLLDKMQAEEDKDKAEDEEK"]}}, {"location": "[1290059:1291214](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.4.-"], "codon_start": ["1"], "db_xref": ["COG:COG1323"], "gene": ["tmcAL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97P99"], "locus_tag": ["MAAAAKME_13610"], "product": ["tRNA(Met) cytidine acetate ligase"], "transl_table": ["11"], "translation": ["MSVVGIVAEYNPFHSGHEFLMNQARLIAGDDPIIAVMSGNYVQRGEMAILDKWSRARSAIEAGADLVFELPFSYAVQAADMFATGGVDLLTRLGAKNLVFGVEDANLNFEYFGDRISKIPRQRQEFADYSQTYSTQYNQMVAREIGHEVSEPNAILGLAYAVANANLGSPLKLSPVNRVGAGHDEILQREAVVQSASAIRNLLLNGAERSELEQWLPKGEIAAFDQEKVLPNWELLFPFLKYRLESASIKELQQIYQMSEGLEYKFKAEIHLAENFADFLRRVKSKRYTYSRLRRLSLYTLLNVTEADVLNSYDHVSTMLLAYSKRGRKYLKQQRKDFEIDIVSKVDRKNAQEGTLGLKVRVDRLFEQIVGADQNFGRRPLEVN"]}}, {"location": "[1291216:1291564](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0799"], "gene": ["rsfS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KD89"], "locus_tag": ["MAAAAKME_13620"], "product": ["Ribosomal silencing factor RsfS"], "transl_table": ["11"], "translation": ["MKSEELLDLVLNAISERHGEDTEAYDMRGISILADYFVATSATSSRQLHAIANSIIEACHEANFYDYRVEGNHDSEWLLVDLGDVVVNIFSEDARAFYNLEKLWADGKRVEIEED"]}}, {"location": "[1291605:1292199](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDPVFKETYSPLSSSELVAKEKSMMDENRFAHCVRVSETARTLAKLNGYDEDKAALAGFVHDYAKQIPVEEYIKVIKEEGFDPDLLNWNRAIWHGIVGSWFIKRDLGITDPEILTAVYRHTTGDVEMTTMDQIVFVADYIEPGRTFAGVEEARKTSYADLASGVGYELAHTLAFLVQKRSKIYPRTLAAYNVWAAE"]}}, {"location": "[1292191:1292830](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.18"], "codon_start": ["1"], "db_xref": ["COG:COG1057"], "gene": ["nadD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54455"], "locus_tag": ["MAAAAKME_13640"], "product": ["Nicotinate-nucleotide adenylyltransferase"], "transl_table": ["11"], "translation": ["MDSLVDFSKETQVKVQTAESQRKGKQIGIMGGTFNPVHMAHLVAAEQAMTKLHLDEVWFVPDNIPPHKDAPLNVSARDRATMLDLATRDNPRFRVKLLELFRGGVSYTIDTIHYLTKKAPENTYYLIMGSDQVNSLHKWKNAEELAKLATLVGIRRPGYPQDPQYSMIWVDAPDIRLSSTAIRRAVSTGISIRYLVPDKVREYIEEKGLYRD"]}}, {"location": "[1292840:1293950](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1161"], "gene": ["yqeH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54453"], "locus_tag": ["MAAAAKME_13650"], "product": ["putative protein YqeH"], "transl_table": ["11"], "translation": ["MSEEIRCIGCGAALQSQDKQLPGYLPASALAKVENGEREEVYCQRCFRLRHYNEIMPVSLDNDDFLALLNTMAEKKALIVNVVDLFDFSNSLISSLKRFVGTNDFILVGNKLDLFPKNSKESKIKDWMRQEANRMGLYPKDIFLISAAKKKKLDTLIDYLNKHSQDQDVYFVGTTNVGKSTLINAIIDEMGDVQDLITTSRFPGTTLDQIEIPLDNGHFLVDTPGILTDKQLASRLDPKDLDLASPKKPLKPATYQLLPGNTIFLAGLGRIDYLKGPSTSFTIYAARGMYIHRTKTEKADEFYQKHVGELLSPPGPNSDLPPLKGQEYSIKYRSDVLFAGVGFITVPEGCVIKAYTPGGIGLGTRRALI"]}}, {"location": "[1294058:1294415](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0292"], "gene": ["rplT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P55873"], "locus_tag": ["MAAAAKME_13660"], "product": ["50S ribosomal protein L20"], "transl_table": ["11"], "translation": ["MPRVKGGTVTRARRKKVLKLAKGYRGSKHVQFKAASTQLFVSYKYAFRDRKKRKSEFRRLWIARINAAARQNGLSYSKMMHGLKLAGVDMNRKMLADIAYNDEKTFAALAETAKKALA"]}}, {"location": "[1294459:1294660](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0291"], "gene": ["rpmI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RMR2"], "locus_tag": ["MAAAAKME_13670"], "product": ["50S ribosomal protein L35"], "transl_table": ["11"], "translation": ["MPKMKTHRASAKRFKRTGNGGLKRHHAFTGHRFHGKTKKQRRHLRKAAMVSRSDLKRIKQMLSQMR"]}}, {"location": "[1294680:1295202](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["infC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P03000"], "locus_tag": ["MAAAAKME_13680"], "product": ["Translation initiation factor IF-3"], "transl_table": ["11"], "translation": ["MILNESIRAREVRLINAEGEQVGVVSRNEALRQASDAGLDLTLISPNAKPPVAKILDYGKYRFEQQKKLKESRKNSKQVSVKEIRLSPAIEGNDFETKLKHARKFLEKEGAKVRVSIRFRGRAITHKELGQQVLEKMAEETSDIAVVTSRPKMEGRQMFLMLSPKSDKDKNKQ"]}}, {"location": "[1295754:1297155](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFIGRNQELTALNKLYQEDSFQFAVIYGRRRIGKTSLINQFLKGKRAIYFTGLEENALENLARFSDAIHAYEDPSYLDGPNFASFEQAFKYLVHLSEKNDRLILVIDEFPYLAKAYPPISSMLQSYIDHYFKQNKLFLILCGSSMPFMEKQVLGYKSPLYGRRTAQFKLKPFSLHDAEEFFPQLNKEEVFELNAITGGIPLYLSLMSPKKSLRENIKDNFLTTSAMLYAEPMSLLNQELREPASYSSIISAIAAGASRQSEISTKTGIASGALSPYLDNLIDLGIVEKRLPVTELDKARSRKTIYAIKDGMFRFWYTFVGKRVSFIERGITEPILDYIIKQLPHFMGPEFEKLSQEYLWSKLFDPDLVPEPFVNLGNWWGPDPKEKKQVEMDIVGFDDQKLNGYFGECKWKNEPISADILETLIYRSRLFPTPKKNYYLFSKTGFTDKCQQLAQQVDCHLITFDMM"]}}, {"location": "[1297235:1297487](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQIFMKVFSVTLILFIFAYIVEQLTNRNSNYWSIIPISVVGLGSYELLRSDSVSDRVKKVINIITVVAAVLLAIILVYVALL"]}}, {"location": "[1297491:1298115](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMKKCKRYLTVFFVAMITVTIFLPFSATSVSAKTNLNEAMSLPNKNIEIDKKYWSDERIDQLADILQKSHPEFSRNYIKELIRDELNDGQIPSVSVFKSQKTISSRSSWKGITVAQAAAAIDVIISLLVGRGIDKLTAAGIKAAVKKVGRKKLSRLIRQKIIKKFGTAGAVTSTFIDYALNYNSPGTIIAKYWDKHDAYPNNGRINL"]}}, {"location": "[1298298:1300230](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.3"], "codon_start": ["1"], "db_xref": ["COG:COG0441"], "gene": ["thrS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97PI4"], "locus_tag": ["MAAAAKME_13720"], "product": ["Threonine--tRNA ligase"], "transl_table": ["11"], "translation": ["MSFALILPDGSKKEFDAAVSVADLASSISTSLAKNAVAGKVDGEIKPLDFQLDTDHEVAILTNKDAEGLSVLRATVAFVLEALVKDKYPEIKLGQAEVSEDGFFIETDKEDQIKVTELPDLEKALQKAIKNGEAIEHVQVAKSELAEAFKDDPYKSELLAKEGDVVDAYKLGDFVDFGFSALLPNTGKIKKFKLLSVAGAYWKGKSSNPMLQRIFGTAFFKEADLEADLKRRAEIKERDHRTIGRDLDLFFVDPKAGAGLPYWMPKGATIRRIIERYIVDKEVAAGYQHVYTPVLMNLDAYKTSGHWAHYREDMFPPMDMGEGEMLELRPMNCPSHIQIYKHHIRSYRELPIRIAELGMMHRYEKSGALSGLQRVREMTLNDGHTFVALDQVQEEFARTLQIIMDVYHDFDINDYYFRLSYRDPKNTDKYFANDEMWERSQSMLKAAMDDMGLDYVEAEGEAAFYGPKLDIQTKTALGNDETMSTIQLDFMLPERFELSYIGADGEEHRPVMIHRGIVGTMERFIAYLTEIYKGAFPTWLAPVQAEIIPVNLDAHSDYAKKVRDELVAKGFRAEIDFRNEKLGYKIRESQTQKVPYTLVLGDDEMNAGTVNVRPYGTEEQNSESLAEFMGKLSKDVANYSRED"]}}, {"location": "[1300530:1301454](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1484"], "gene": ["dnaI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P06567"], "locus_tag": ["MAAAAKME_13730"], "product": ["Primosomal protein DnaI"], "transl_table": ["11"], "translation": ["MRAIGDMLSDAAKAAAAKNGQDFSAESFEKMKRQVFADPDVRAFLTAHQDQLTKESVDASFASLYEYCRQKDSHDKVISGYLPQLFMEGPLIGIRYRASQDKQRRDKEAAAKRRIELIDLPEKLRRVKLADLDMADDRKQALFEVGAFLQAYQSNPHAKGLYLSGDFGVGKTYILAGLANRVAEMGGRVIFLHMPTFIAGLSSHFGDNSLQTEIQRLAACDVLILDDIGAETLSPWSRDDVLGVILQARMDNDLPTFFSSNFDMKTLESHFSATKNADDPVKAARLMQRVRYLAKEVVVYGNNRRLP"]}}, {"location": "[1301464:1302799](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3611"], "gene": ["dnaB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P07908"], "locus_tag": ["MAAAAKME_13740"], "product": ["Replication initiation and membrane attachment protein"], "transl_table": ["11"], "translation": ["MYENSNPRLRYVVLNELADQLGQGQVLIKLYQPLIGALGVALYQTLVQDFDPYRSLSASNALYSLQEDLDCSLRQLWQALHKLEAVGLLKTYVSHNLRLGDILAFKLHAVPEASEFFNTSLLASLLKEKVGGVRFSQLSREFAKQAQVKERQLDNLEEVSASFFEVFRLPENEAINPSEDVQKAAEENTGQKTEEAQVNLKQIDWQYLKDRFATYQIPESEIDLQKDEIRSIMELYGLSEEEFINETLPTLHGSYQLDAAAIRNSLNYNYKANHRRKQVIKRQEEKQDRPSVDQQDQQLLDLVKSKSPVNFLDDMKREKGGFTTARERQIVYDLRENVGLEMDLINVLVYTCLNYQPVLTQDLAYRIANDWLQKGITTPEAAIKHLRAGKKQAQSGQKKNYPAYSGNRRLEQGTDWNKKQFVQPVNISDEDLRKMLQGPDKKDK"]}}, {"location": "[1302802:1303270](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1327"], "gene": ["nrdR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67318"], "locus_tag": ["MAAAAKME_13750"], "product": ["Transcriptional repressor NrdR"], "transl_table": ["11"], "translation": ["MLCPNCHQNASRVIDSRPTDEGRTIRRRRECENCGYRFTTFERVEQSPLLVIKNDGTREAFSREKILNGVAAACQKRPVTSEQLNKLVDNVENRIRAKGVSEIYSKEIGELVMDQLADIDDVAYIRFASIYRQFTDMSSFMKTMEDMMDRHSKAK"]}}, {"location": "[1303283:1303868](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.24"], "codon_start": ["1"], "db_xref": ["COG:COG0237"], "gene": ["coaE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O67792"], "locus_tag": ["MAAAAKME_13760"], "product": ["Dephospho-CoA kinase"], "transl_table": ["11"], "translation": ["MTFYLGLTGGIATGKSTASRILKDLGCQVIDSDLIAHQQAKVGQVSWQRILEEFGPDFFNEDKSLNRKKLGQYVFANPKALAKLSEITQGEVLKEVQKQMKDSQASVCVIDVPLLFEAGWQDYFDAVLLIVAPEEVELDRLMKRDSLSQAEAKRRMQAQLPLGEKRLLASYVLENTGTIEELRDKLSNLLKTIA"]}}, {"location": "[1303876:1304698](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.2.23"], "codon_start": ["1"], "db_xref": ["COG:COG0266"], "gene": ["mutM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42371"], "locus_tag": ["MAAAAKME_13770"], "product": ["Formamidopyrimidine-DNA glycosylase"], "transl_table": ["11"], "translation": ["MPEMPEVETVRRTLRPLVVGKTIDHVDIWYDKVITGDPETFKRELKGKTFTAVDRYAKFLLFRLGDLTVVSHLRMEGKYHLTTWDAPVDKHEHLQFAFTDGSSLRYADVRKFGRLQLVETGTEFQVTGLKNLGVEANSPEFRLDYFEKGLKKRSMNIKSLLMSQTLVAGLGNIYVDEVLWQSRINPLTPANELTKDQVKQLHSAINETIEEATKYGGTTVHSFLNAEGGAGHYQEKLKVYGKEGQPCPRCGEDFVKIKISGRGTTYCLHCQKR"]}}, {"location": "[1304708:1307369](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "gene": ["polA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P52026"], "locus_tag": ["MAAAAKME_13780"], "product": ["DNA polymerase I"], "transl_table": ["11"], "translation": ["MNKKLLLIDGNSVAFRAFFAMYQQLDKFKNPEGLHTNALYAFKNMLDVVLKQEDPSHILVAFDAGKTTFRTAMYKDYKGGRDKTPAELSEQLPYLREMLKDMGIKSYELANYEADDIIGTMAKKGAEAGYEVAVVSGDKDLTQLASDHVTVYVTKSGVTKLEAFTPDHMKEVNGVTPTEFIDMKALMGDPSDNYPGVAKVGPKTASKLIQEYGSVENLYYHVDEMKKSKLKENLIAGKDNALLGKKLATIKCDSPVEVTLDDLSYEGSNVDDLRRFYEKMNFRRFLADLAQKGELTENKTEVKKQDYVVLSADNLDQLPKAAEVTFYLAMFGDNYHLADFAGFALKIGGETFVSRDVFLLQESPLKEMLEDSAVQKNVFDLKRTTYGLYRLGIKAEGLSFDLLLASYLVDNEKNSNDLGELVQGYDYYDLKTDLEVYGKGKNAKIPADDAVFFNHLAGKTAAIAALKDSLLKQLKDHEQDDLYDSIELPTARVLAKMEMNGIKVQPSRLKELENDFAVRLKELEEKIYKEAGEEFNLNSPKQLGVILFEKLGLPVIKKTKTGYSTSVEVLNQLKEQSPVVSDILEYRQISKIQSTYVKGLLDVIDERDGRIHTRYLQTLTATGRLSSVDPNLQNIPTRTEEGKQIRKAFVPSSPDGYIYSCDYSQIELRVLAHVSADPNMQEAFKTGYDIHAHTAMKIFHLSSVDEVTSLQRRRAKAVNFGIVYGISDYGLSKNLDISRKQAKEFINEYFDQYPGIQAYMDWAVKDAREKGYAETIMHRRRYLPDIHAKNFNVRSFAERTAINSPIQGSAADIMKIAMINMQKKLDELGLKTKMVVQVHDELIFDVPADELETIQKIVPSVMQAAVKLDVPLVADASWGHDWYEAK"]}}, {"location": "[1307440:1307890](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSVVGGRLYDDKGARFPIITGASLMAAELIAFVCLSQQMSDLVISLVYIIYMTGMGMSIGAIMTNALASLKPEFSAQGNAFLNTIQQFAGAIWTSLTSAIVGLSQAQYGSKGPRPTAIGTQHAFIFLAVIVVFLWLMFYKNVKTEGGSK"]}}, {"location": "[1307889:1308555](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mdtD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01577"], "locus_tag": ["MAAAAKME_13800"], "product": ["Putative multidrug resistance protein MdtD"], "transl_table": ["11"], "translation": ["MLDALAPNFVMILLLGRAIQGLGTGIALPLMFNIILEQVPADKIGLMMGFGNLITGVAPALGPTFGGLVINNLGWRYVFFFLMPLIILSLFLGLYDIQQKSNIVKIKPDFLSIVFIAVLFAGVIYDFSNLSSGKLLTNLFPIFIGLCSFGFLLGRSKKLAQPILHFEILKNKSFSVHLLGFLMIQLCSLGNAFLLPNYSWSTSLRLLLLVWLPCRLALSGP"]}}, {"location": "[1308539:1308854](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVSVQFILAIGGSKISKKVYAAILATGLMSFSGVLVETAMNVTFPILMKQFVLATNTVQWMTSIYLLVISVIVPLSAVLKSSFKTKQLFVTANLLFFAASCWTP"]}}, {"location": "[1308873:1309308](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_13820"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MLLTLCERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITADNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[1309424:1309901](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_13830"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHTYSNTKPHQKGKHLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNSERRSSAILRLVVPV"]}}, {"location": "[1310351:1310777](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.59"], "codon_start": ["1"], "gene": ["thi4_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00304"], "locus_tag": ["MAAAAKME_13840"], "product": ["Thiamine thiazole synthase"], "transl_table": ["11"], "translation": ["MSKEYTVDLAVAGCGGTGMAAADAGGSQGLKTLVIEKQAQPGGNTKISSGFFAIDTKEQREAGLQLSTEEATRQLNEYNHYLNNGPLTRRIVENAKPTLEEIESLGMEIKLNPTSQTTQFAHLDNPYAGGSYHMYQNKPES"]}}, {"location": "[1311045:1311678](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rhaR"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01533"], "locus_tag": ["MAAAAKME_13850"], "product": ["HTH-type transcriptional activator RhaR"], "transl_table": ["11"], "translation": ["MAYPDPLNQYLVADNALIHDLMNDKSSKYAYIVFQTLADGMTNGYINLLHILAKRDKDEYDDFQVQRLAGLLLTELLHQHRQKISKSRSNFPRKNVRHANRDAQSGAIMTYLTQKNGQVSLKEAAEYFGYQANYFSRLCRKLFATDFVHLRRNIRINLAEDQLLLTNKKLEEIADELGYQDLSSFSKAFAESTGFSPGKYRKKYGIKTSR"]}}, {"location": "[1311707:1313027](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.8"], "codon_start": ["1"], "gene": ["murC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65475"], "locus_tag": ["MAAAAKME_13860"], "product": ["UDP-N-acetylmuramate--L-alanine ligase"], "transl_table": ["11"], "translation": ["MLDKTKQIWFIGIKGTGMASLALILHDLGYKVAGSDIDKYTFTQDPLEAAGIEVASFSKDNIKESGQVIVKGNAFKSDNIEVAACEEKGVKWQSYPDTVEEIVQQYTSIGVAGSHGKTSTTGLLATVLGEAAPTSFLIGDGMGKGVKDSRFFVYEADEYRRHFLAYHPDYQIMTNVDFDHPDYFKDRDDYASAFQTAADQTKKGLFVWGDDERLQKIHPKTAKKYTYGLKDSDDFQAFDVVKTTEGAKFHVRANGEDLGEFTIHLFGDHNVMNATAVIAIAFTEGIDLDVVRKGLVKYTGAKRRFSEKDFGDTVVIDDYAHHPTELRATIQAARQKFPDRKLVTIFQPHTYSRTKEFEEEYVEILKGVDKAFLTPIYGSAREAAGDIKSEDIASQIPGAEVIDFDNLKDLLAYKGDCIVFMGAGDIPKYEVAFEEMLGK"]}}, {"location": "[1313146:1313794](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MITSINKVSYPNTLIVILAQGDGESNFEEKADVTRVTDGKGELTGFNFFNVDQVLDYDKLPNGEVKLDEDQVAALNEKLASVGFSDKLTVAKPTLVYGYVKECAAHPDSDHLHVTQIDVGDGQDHQIVCGAPNIAQGQKVVVALPGTLMPTGAQIWPGALRGVESDGMICSARELGLAHAPQKRGIMVVPDSFKIGDEFEPTKCDELLASGAITL"]}}, {"location": "[1313816:1314137](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ytpP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34357"], "locus_tag": ["MAAAAKME_13880"], "product": ["Thioredoxin-like protein YtpP"], "transl_table": ["11"], "translation": ["MEEYKVVDRAKLADLVKSGRTVVEFSADWCSDCRFLEPAMPAIEADFADSKFIKIDRDGSIDLCKEMNIMGIPSFVVYQDGQEIGRLVNGDRKTKQEVEAFLRSLD"]}}, {"location": "[1314215:1314872](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.33"], "codon_start": ["1"], "db_xref": ["COG:COG0220"], "gene": ["trmB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67506"], "locus_tag": ["MAAAAKME_13890"], "product": ["tRNA (guanine-N(7)-)-methyltransferase"], "transl_table": ["11"], "translation": ["MRLKNKPWANELVEEHPESALDRPDPAEKIDWEARFGNDKPIEIEVGSGKGQFITTLAKQHPDRNFVAMEIQKTAAGIILKKKLDEGLDNLQILCADAANLVAYFGENSTSKIYLNFSDPWPKSRHEKRRLTYKDFLAKYQAVLTGDGLIEFKTDNSGLFAYSVKSMNNYGMHFDFMSVDLHHESEEIVEKNVETEYEHKFASKGQPIYCLHAGFLAK"]}}, {"location": "[1314948:1316166](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRELAKKRLQGNFQQSAKYLALVFNDFFVLALIFIFGAVMFWYAQVMKVLPVKAWYYPLVLSALLWLAYLPGKLVTLLQTADRQFLLATDDRLDDYLAPMRRYSLVLPALLLALAGGIMYPFASLKMGLSNLNYFSLVLALFFAKVFEQGAVSRSLTFDHRVKQVTWLIRLVLLALLLASLYFLPNALYLLLALAVIAVLALRAWKNSAFDWQYAIDYEARRKETVYAGFALFTDVKERQVNIKRRKYLDFLLPPFGKESPNSFLYRRTLLRNPEYLNLLARMTAFAVLLTAMIQDPVWSLLLSALVMYLTVWQLLPLGQKYDQNIMYRVYPIAQKERGQEVSRVLAWALLLQTGLIIIFWLAIMPGQFAWSLLFLVWCGLLAKGYLPYKTQQLAKKSRYKKRKK"]}}, {"location": "[1316158:1316920](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1131"], "gene": ["ecsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P55339"], "locus_tag": ["MAAAAKME_13910"], "product": ["ABC-type transporter ATP-binding protein EcsA"], "transl_table": ["11"], "translation": ["MKKDRENMTLEISHLTGGYSSIPVIKDVNLTIASGEAIGLIGLNGAGKSTTIKHLLGLLRPQAGKITLNGINLAEKPAEFKKLVAYIPETPVIYPELTLKEHLELTILAYQLDTDKAWEKAKELLTMFRLADKLDWLPVHFSKGMQQKVMIVAAFLTDAQLLVIDEPFTGLDPLAVANFIGLIKEAQESGKEILMTTHVLADAQKAIKTYAILNQGTIEFTGSLDEIRDHYGLEASDSFDKLYQLLYQEQKNA"]}}, {"location": "[1317002:1317440](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0537"], "gene": ["hit"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07513"], "locus_tag": ["MAAAAKME_13920"], "product": ["Protein hit"], "transl_table": ["11"], "translation": ["MTKAELIDDCLFCKIIRGEIPSYTVFENDDVKAFLDISQVNEGHVLMVPKKHLTNFFDYSAEDASRFMQCVPEIAKAIKASDPRIQAMNITSNNGEIAGQVVMHSHIHFIPRWEGDGIKFFTRNNADQYDEKKYQEVCDRIKAQF"]}}, {"location": "[1317456:1317807](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_13930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRNFKHFGLGFLLGAAAGAVFAFLPNENGKSTREYLKEDAKDFKESHKELQDGLSRAQEAGSRLASELPAAEQMVSDLNTDVERFKQEADEEIARLQAKIDRLSSELNQDLNESEN"]}}, {"location": "[1317886:1318816](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0167"], "gene": ["pyrDB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0DH74"], "locus_tag": ["MAAAAKME_13940"], "product": ["Dihydroorotate dehydrogenase B (NAD(+)), catalytic subunit"], "transl_table": ["11"], "translation": ["MTAEVNLAVELPGLKLKNPVMPASGTFAFGDLPENFNWDEMGAIVLKTATRHARTGNPQPQIDLLADGVMNAVGLTNPGAEVVASEKIPALREKHPDLPILASVGGESVEDYVEVAEILAAAKPDALELNLSCPNVSEGGMTFGIVPEMLEKITRLVKEKVDLPVYVKLTPNVTSIVEIAQAAEGGGADGLTLINTLLVLHLDLKTRRPVLGNDFGGLYGQAVKPVAVRMVAQVKQATSLPIIGVGGINSPEDAAEFILAGASAVQIGSMSFYDKLAIKHVIDGLPAVLAGMGASDVTSLVGQWQSNKQ"]}}, {"location": "[1319088:1319811](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.23"], "codon_start": ["1"], "db_xref": ["COG:COG0284"], "gene": ["pyrF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5FJB3"], "locus_tag": ["MAAAAKME_13950"], "product": ["Orotidine 5'-phosphate decarboxylase"], "transl_table": ["11"], "translation": ["MNKPLFIALDYDDQEKMWLFLNQLKDKQGLHVKLGMEMFYQYGPEIVRDLSAKGYQIFLDLKLHDIPNTVKRTAHQLAALGVYCTTVHALGGKQMIQAAKEGLIEGTPAGKPVPKLLAVTELTSISEEVLKNEQHCSLNLADEVKSLAHQAQEAEADGIICSPLEVKAMKSEFSDDFMFVTPGIRPKSYQKDDQARVATPGQARENGSTAIVVGRPITQAADPQKAYEEILKDWSKNDAK"]}}, {"location": "[1319800:1320424](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG0461"], "gene": ["pyrE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTV2"], "locus_tag": ["MAAAAKME_13960"], "product": ["Orotate phosphoribosyltransferase"], "transl_table": ["11"], "translation": ["MQNNEIIRQLIDKKIVTISPDKDFVYASGMHSPIYTDLRQTISFPKLRQAIAENLAALIKQEFPEVTVIGGVATAGIPHAAWVAQVMNLPMVYVRSKPKDHGQGRQIEGRLSMDDHIVLIDDLISTGGSVLSAVQAVKETGAHVDGVSSIFTYLLPDADENFKKADTKFAPLLNYRELIEQEIAETVSEEQYKELLAWHQDPWNWKR"]}}, {"location": "[1320550:1321462](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.2.1.8"], "codon_start": ["1"], "gene": ["prsA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0C2B5"], "locus_tag": ["MAAAAKME_13970"], "product": ["Foldase protein PrsA"], "transl_table": ["11"], "translation": ["MKNHLKKIAVLAGAAAIGLSTAACSSSSATVVNYKGGKITQDEYYEAMKDTSAGQSTLVSLIIYRTLKAQYGDKVSSKKINAEYNKYKKQYGSSFSTVLSSSGLTTKSFKQNLATNLYLVAALKDLEKPTTTQEKNWWKSYHTKTTVQHIVVAKKSTAETVIKKLKSGTSFATLAKKYSTETATKKKAGKMAAFDSTDTSLSSTFKSAVWKLKEGEYTTTPVKTLSGYEVIKVLKTTEKGSYTKNKSFIDKQLYAKWAADSNTMTKIISKVLKKANVNIKDKDLKSKNLLANYLGTSSSSSSN"]}}, {"location": "[1321543:1322086](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.19"], "codon_start": ["1"], "db_xref": ["COG:COG0128"], "gene": ["aroA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S400"], "locus_tag": ["MAAAAKME_13980"], "product": ["3-phosphoshikimate 1-carboxyvinyltransferase"], "transl_table": ["11"], "translation": ["MDAKLAAAAVGVNAIGNSGTTNRLLLGILAGSSFASQLIGDASLSKRPMKRVSQPLAKFGAEIALSPAGTLPATVIGQKLHGAEIQLEVASAQVKSAAIFAALEAGSPSTIIEKLPTRNHTEIMLRQFGADITTEADNLTIHVQPGQELLGQEVEVPGDMSSAAFWLTAGRLRKSWPLMS"]}}, {"location": "[1322156:1322525](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.71"], "codon_start": ["1"], "gene": ["aroK"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00109"], "locus_tag": ["MAAAAKME_13990"], "product": ["Shikimate kinase"], "transl_table": ["11"], "translation": ["MRIVLVGFMSCGKTTFGDLLAKKLNKLQIDLDQAIVEREKLTIPEFFAKFGEDHFRLCEHRALLANIGKDAVITTGTGICAMSWNGPQPGKLPCGWLWAISLSSFCGSWISAWWLMWRKSGQ"]}}, {"location": "[1323062:1323866](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG3481"], "gene": ["yhaM"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07521"], "locus_tag": ["MAAAAKME_14000"], "product": ["3'-5' exoribonuclease YhaM"], "transl_table": ["11"], "translation": ["MLKRLLDYNEGEEFDLVLMVKNSELRQDKRGKHYLLMQLADSSGSIRANYWQAKAEDASRFNAGTVVEASGMIEDYHNHDQIKLFSIHPVSPDDQADLSQLVATAPEKPAEMEKEIKDFVAQIDNKNWHDLVDFLLKKWSSRFFAYPAGKSNHHAYKGGLAFHTLTMLKDARGLADNYPAVNRSLLYAGCILHDMGKVLELSGPVATQYTAEGNLVGHLVLIDEQLMLAAQELKIDLASEDLLLLRHMVLSHHGRYEYGSPKLPALL"]}}, {"location": "[1323858:1326285](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["smc_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01894"], "locus_tag": ["MAAAAKME_14010"], "product": ["Chromosome partition protein Smc"], "transl_table": ["11"], "translation": ["MRLKQIQIYNFGQFSQETFDLPDGNLAAFFGGNEAGKSTTVAFIKQILFGFNLKNTSSVFFEDYEPLTKSYPMGGQLVFTSDEGEYVLERTWSRGDKSKTGAVKVLLNGQEVPVSLFYDQIQNIDGSFYAESFIFNEDLLRQVSSLSEGEILENIYYLGAAQSSQLLAIRADFDKEAKDLFKPSGKKAPVNQDLLKLAEQRDKVAADGQEFDAYQQLEGQRLAEEQAAKKLEKEVQEISSQLSKLEKQLEQVQNYQTYLDLKKQVSPVAFDQELYQRALELNAQIKALKAAIKEEKAAVDPALLAKRKDQVRAWRQELGQISQSLEMLKQQVKQLEEKQASLLELTPHLEQVADLSMDQFQQMQADWEESQKAEAAPKTLPPYVGLIVAVIGLALIGQNRILAILLILAGAALAAYAYFKKPAKGPDKAGAFKEKYGIDASVKVDSLLAPYRDLAINRRDLANSQAELAQKEKQAADLARQLGLDGSDLTAVSQQLGRLEAQVEAESAALRASQEVKAANLNYQKQISALTEQLLAIYQTAGVENLTAYQALAQKLQEQKALSAQITALKNNLGDQLAAFEENGLDLSKLLGQKQELEKELADKQRAVSVLQQEMANLLAEEKRYASSSQVAEDKQTLAEIADSFRRDSQDYLASLLAGEVIGRTLDLASNDRFPKMLKLAQDYLEILTGGRYREILLPAKLSKKTPLKVVRKDKKKIPLAYLSRGTQEQLYFALKLAFVMQIKDKIDLPVLIDDSFVNFDGPRTGYIVDMLKKMSEDKQILVFTAREDLAEAVSAAPIRYRKKEQDA"]}}, {"location": "[1326281:1327487](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.53"], "codon_start": ["1"], "gene": ["cpdA_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00905"], "locus_tag": ["MAAAAKME_14020"], "product": ["3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA"], "transl_table": ["11"], "translation": ["MKFIHLADAHLDSPFRGLSFLPKREYDEIRQSAAQSLTRIVDLALKEQVDLVLIAGDTFDSNKPSPASQLFLARQVKRLTDAQIQVVMIFGNHDYMTRQDLLVENSPYFCLLGDQEKVAREFFKTKTGFAYNVTGFSYSQNHIEADLLDQFPEKEGYTIGLMHAAQRAASGNVYAPFDLSQMKELNYDYFALGHIHARQILSEKPLIVYPGNIQGRDVGELGEKGCYLAEVDETSGQTSLTFVQTAPITWKQLTLELDQAIDKSSLHAKALELLQENIQGKTYFSLKISGSEYLTSEEIDLWQDQEAWAGLSAALAPSQLVDVRLSVRGLVSLNNSDREALAAAEAEVLTDEKIQQLAASWAKKDPYARRLLEDGEFRDQVRDLVAVKLASRLQAMTGGEK"]}}, {"location": "[1327489:1327843](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A4V3"], "locus_tag": ["MAAAAKME_14030"], "note": ["UPF0342 protein SA1663"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVNIYDTANQLANDLRETQQFLALKEAMDAVKADEGSLALFKELDAAQMEIMEAQQTGKELTEEQQDHFKSLNERVSQNTTLQSMLLAEQAVYTLLNDVQKNIGQPLSEAYEDLRKA"]}}, {"location": "[1327884:1329972](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0744"], "gene": ["pbpF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P38050"], "locus_tag": ["MAAAAKME_14040"], "product": ["Penicillin-binding protein 1F"], "transl_table": ["11"], "translation": ["MENRRKAHKQMNDSQPQKGLWGWLKRINYRFQLLRWLILIVLSLFLAVSSYYTFKVKIANLSNLQASLAKTTVIYDQNGKKAGSVSSGKGTYVSLSKISPNVQKAVVATEDRTFWTNIGISPKGILRAAVSYVIHGGNIAGGGSTITQQLVKNSILTQQQTLSRKVEEIFYAIQVTKVYSKKQIMAMYLNNAYFGNGVYGVQDASRKYFGKNASQLTVAEGATLAGILRNPSYYNPIDSLSHSVSRRNLILQRMVDNKSISQTTANKAKKEGMNLVDTYKATRGYKYPYYFDAVISEAISKYGLSENEIMSKGLKIYTTLDQNYQKSMQASFKNKYNFPVNPAGTARAQGASVAMDPKTGAVKALVGGRGKHVFRGYNRATQMQRQPGSAIKPLAVYAPALENGYHYDSDLSNKRQKFGNNGYEPVNVDNQYSTTIPMYQALAQSKNVPAVWLLNTIGVSTGVSYLKKFGITVSKSDQNLALALGGVSTGVSPLQMARAYSAFANSGKLPDSSYMITKITDASGNVIAENNNTGTSQIIFADTAKEMTQMLLSVFTSGTAVNAKPAGYSVAGKTGSTEVSFAYGTKDQWIVGYTPDVVVATWVGFDKTDKNHYMQGISETGITTLYKDEMTRILPYSKQTSFTVQSADSMAQSNGTSSSSSSSSDWSKKLKESISNGVKNAESTIQSWYNKITGK"]}}, {"location": "[1330112:1330961](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYHFSLIYPADRPPVSVSDLLRQLLIPRKWRHYLRTERQVLVNGQYRSFNQLIKGNEKVDLYLDQVESLQGDYPASGKMPKVVYEDENVLVIDKPKGQKTHPNQGENGTALNDCASYLGYSPYIVHRLDMLTGGLLLVAKNPAVVPILNQQLTSKTLRRDYLATVNLNKEIPDQGTIDLPIGQDPADQRKRQVRADGLRAVSHFQVLEKDEVKKKAKLLVTLETGRTHQIRVHLSASGWPIVGDPLYNPNFAGEDLALTGWQLTFVKPYSFNQVAVRLDKK"]}}, {"location": "[1331055:1331967](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.2.13"], "codon_start": ["1"], "gene": ["fba"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA12"], "locus_tag": ["MAAAAKME_14060"], "product": ["Fructose-bisphosphate aldolase"], "transl_table": ["11"], "translation": ["MAYFVNGNDIFKKARKEHYAVGAYNTNNLEWTRALLRGAEETRTPLLIQVSTGAAKYMGGYKLVKDLVEDSMDAMNISVPVILNLDHGDYDSAIECIKLGYSSVMFDGHALPTEENLAKTKEIIKLAHERGISVEAEIGKIGENQGAGELASVEDAKAFVAAGVDKLACGIGNIHGVYPEGWSGLNFDRLKEIAEAVPETPLVLHGGSGIPQDQIEKAISLGISKININTEFQLAFQEATRKYIEEGKDQDKSKKGYDPRKLLLPGTEAITDSMKEMISWMGTPSIDDKEADASFDRSSLNEE"]}}, {"location": "[1332092:1332605](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1376"], "gene": ["yciB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:C0SP99"], "locus_tag": ["MAAAAKME_14070"], "product": ["Putative L,D-transpeptidase YciB"], "transl_table": ["11"], "translation": ["MTGHYYLYSSETKRKYPDLRKYKDVWIRVSILGARVYVMSGKKVIYTMYASPGAIKKNGESRTPVGNYRIQEEAGEVFYNNDGVGARYCVSYDQHGVYLFHSVPINNFNSGVKAGKYHYGYKGGAHLTTLGKKPDSHGCVRLSVNDAKWIYEQRLNGGLPVGSKVVLKMH"]}}, {"location": "[1333159:1333507](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MALGAIFILLAGLLLAHNLIEDYRAGSSAKAIVRTIEQAPKTAKAKKSGKDAIKVNGTACSGYLNFPTLNLTLPVASKWRFSQLEVSPATYTGTAKDRDWIVAGHNFVNHFGRLN"]}}, {"location": "[1333921:1334314](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MACFLKRKLLGQLAVLFSLFLAITAVNPVQAADTGSLTVQMRDQETGKAISGGNLVVYQVAKLDSAKKFQYTSDFSKMSQDIAGMSQNEIMTVDFARSLANYVSSKSLSAQMAEISSSGDASISLESNAV"]}}, {"location": "[1334846:1335257](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKYTTHLVKEYDAICIEDLDVKGMLMSHVASKGVHRALFGRFRSYLEYKCKSAGVKLVIANRFYPSTQRCAACGNIKKDDEKITLSCNKKHGTKHNEYVCYNKKCPNYGKVVVRDMNAMMNLTFLIDHPRYNKAL"]}}, {"location": "[1335261:1335747](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQGVVLAKEGNHGKLTLPVPAPYKGEWHSIRFSEIPKNAEFGTISFYREHGHYYMAVPYKYETPPYIHKHTGKKTGIDVNVSHFNDAEGEHYFLHKGNNGAVKLARVYENIKHQQRIMARKLKENGQIRLPGSAQKALKKLSKSENQASEALRACSPHAG"]}}, {"location": "[1335930:1336188](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MATKRTHVYRLYPDATMAHVLDQWCDYRRYCYNKALELWNATYSEYRMLVSPEILAEFKKPKEERQFTEEQNLFISRYYPTAALI"]}}, {"location": "[1336384:1336609](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYRIELLIVAVLQDDIYNATRYTSHDEAVTDRGTGTHYALASELYRELTDKSQQSLTDGDKTYVLDQELLISNK"]}}, {"location": "[1336709:1338257](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSKYLTLLSVAALTLLTSGLGSQAVLADTDTAQTTNTSTNTTTDTSKTSTALNHQEAKGQKLTTPVGTLPNAQDAISNKAVLKRVHGYSWKTTPDVSAAGSQKATVVITYTDGTTSEVEVDLEVTGTGCASQNSPVAKTGLTVKVGKSLTARSAISNLSSLRNVASVTWKQAPSTAKAGTVKGTVLVTYTDKSTDTVDVTVKVSSVVTTKKSVKKSKKKQYVTKTRKIILDRPGKNKTITQKVKLSRTVTTTTTTTKTYTDGKLTKTSKKAKKSYGKWSKGTWKSYKVPAISGYKRSTTKVKAKTVTSKTKNITVKVSYKRVLHKPANAPYYDPADMRAKTGAYYFQSSEKRAYPNLAKYKNVWIRVSILGNRVYVMSGKKVIYTMYSSAGRFEMTNGKYQSDTPRGTFYLKAAYGPSFMSSDGVGARYYMAYYGSDYLFHSVPINNYGSGVYYKGYHYGYGGVGSTAHLTVQGTKPDSLGCIRLTLSDARWLYGQRTSGKLKVGTKVVIKYK"]}}, {"location": "[1338272:1339139](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.136"], "codon_start": ["1"], "db_xref": ["COG:COG0063"], "gene": ["nnrD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q833Y3"], "locus_tag": ["MAAAAKME_14150"], "product": ["ADP-dependent (S)-NAD(P)H-hydrate dehydratase"], "transl_table": ["11"], "translation": ["MAASKMKSIDEDLARQVVRPRPAESHKGNYGRVLLIGGNHQYGGAISMAAEAAVYSGAGLTTVATDPVNFAALHARLPEAAVLDYNLDLAEQISRSNVILCGPGLGLEEKAWEILEAVCQHAGSDQTIVFDASALDLLSQKPDLLRNLQAGLVILTPHQMEWQRLSGIKIADQEDQANQAALSRLFSGKMKSVILVLKAHRTRVYAFTGEIYRNSAGNPGMATGGMGDTLAGIIAAFLGQFGPKLTSVLAAVYCHSRAGDDLYQSSYLVRPTQISAYMPRLMKRLSTC"]}}, {"location": "[1339125:1340412](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.16.4"], "codon_start": ["1"], "db_xref": ["COG:COG1686"], "gene": ["dacA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P08750"], "locus_tag": ["MAAAAKME_14160"], "product": ["D-alanyl-D-alanine carboxypeptidase DacA"], "transl_table": ["11"], "translation": ["MLKKIKKALLSLAASGLLLTGISTWQAAPVAAATANYQQQDLNLDVKAAIAVDADSGQILYAKNATTPRQIASMTKLVTVYLTLQAIKQGKLSWTSTAKPTAAIAKISQNTEYSNVPLTSGHAYTIKELYRATLIESANGAALTLAQAVSGDQVTFIKKMRKLLTSWGIKDAKIYNACGLANGSLGSAAYPGVGKDVENEMSATDMAIVCQKLLKDFPEVLQTTSITSATFSSGSTQSQMTNWNWMLKGLSSYYSDLPVDGLKTGTTDKAGACFAGTVKKNGHRIITVVLGAKHANSQDPSRFVQTAKLMHYVYQNYTAITLKKGSSISGANTVKVPEGKETSSKVVLGKTVTIWAKQGSKLQTSLSKTAVSAPVKKGSKVASYKFSATSGKLPSLSGKTVTAPAVATQDNQEANFFVRLWRSIFGSK"]}}, {"location": "[1340509:1340595](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14170"], "note": ["tRNA-Leu(cag)"], "product": ["tRNA-Leu"]}}, {"location": "[1340799:1341318](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.7.1.22"], "codon_start": ["1"], "gene": ["iolD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01669"], "locus_tag": ["MAAAAKME_14180"], "product": ["3D-(3,5/4)-trihydroxycyclohexane-1,2-dione hydrolase"], "transl_table": ["11"], "translation": ["MMSEELLTLARYNMHVLTVVFTNETLGYIEAEQRDESNQPLSGVIIPDNDWAKVAEGMNMKAFTVHDKAEFQAAVEEWKKMDGPAFIDVKYTKHMAYSTELNTLDDPEFVKYYHAEALHPFSYFAEKFGLEIDAASGASGRSEDKADALQVQSTTSASSPETAPDTSSGASH"]}}, {"location": "[1341345:1341603](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0028"], "gene": ["pox5_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37063"], "locus_tag": ["MAAAAKME_14190"], "product": ["Pyruvate oxidase"], "transl_table": ["11"], "translation": ["MLRLADDHLKDEGRVRQEPIWDVINKEAADNAVFAIDVGNVNMDHVRLLNMNDKQRWTTSGLYASMGYGSPAAIAAATAMPDRGV"]}}, {"location": "[1341586:1342375](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0028"], "gene": ["pox5_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37063"], "locus_tag": ["MAAAAKME_14200"], "product": ["Pyruvate oxidase"], "transl_table": ["11"], "translation": ["MAKIKGANAVLDVMYKWGIDHLYGFPGGSLDSTMNAIYEMQDKIKFIEVRHEEAASLAASAEYKLTGKLGVCMGSAGPGAIHLMNGLYDAKYDKTPMVALVANVPTPRQDINFFQAFDEMPWFRDVAVWVHQAKTKEALPVLMDTAIRQAYAKKGPAVLVIPKDFGWQEIEDNYRVSASNHVADNYAAPTAESIEAATKLIKEAKNPVVYFGLGASAAADELKEFADKFKMPMMSSYLGKGIVEDSFKPYLGTIGRIGAKAC"]}}, {"location": "[1342606:1343470](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MREHKELRPDFVDEKNHNKKYWGPSAIQYINDHFGAEEAKAEEKTTQAEEKTTEVEGKVEAAEVVEAAKTEEKQEQASQVEDENKEETTAEEEVKEVVEEEKSAAEEVKEDDKPAGPRFIKKAPRPTTEKLAEHPQVELPFAFDDSEEAENKAEEADTEVKEEAKPAEKAEKSHEPANDQQFVVRKRTNDDKRGRGNYGKRRNNQRNGYQNQNRTNNYSKRRELFAGKMKLVTEKGTFYTDQFASLEELAEYVFSSKDGFMKVEKYNRGEFSPAYISTKSIIEFEEA"]}}, {"location": "[1343922:1344303](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "db_xref": ["COG:COG0574"], "gene": ["ppsA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23538"], "locus_tag": ["MAAAAKME_14220"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MADKFNKYVDGYSIGSNDLTMLIMGTDRNNDAVSALYDERNLAVKRAIRHLIKTAHKYGKTVSICGQAPSEYPDFTEFLVKSGIDYVSVNPDMVKETKFNVAHFEQRILLDKATGLGMQDTEDYGW"]}}, {"location": "[1344245:1344650](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "db_xref": ["COG:COG0574"], "gene": ["ppsA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23538"], "locus_tag": ["MAAAAKME_14230"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MNPRPVVLRFSDFKSSEYRNLKGGDKYEPHEPADLLGWRGASRYYDPKYIEAFKLELEAVKKVRNELGLKNLNVMIPFCRTVEEAEKVTKIMADEGLERNRDFKVFMMAEIHPTSFWLISSTSTLTATQSGQTT"]}}, {"location": "[1344683:1345145](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKGLPASPGVASGIVHVIDDPKDIGDFKEGEIQMQIPCIVGTASRGTFATRLLKPGQEVTVDAKNGVVYQGVADEVVKPKKAETAPMAAAEYFPPTATRVMMNLGDPDLAEKYATLPADGIGLMREEFLWTTYIHQHPLYLIETGHPERVVN"]}}, {"location": "[1345274:1345532](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "db_xref": ["COG:COG0574"], "gene": ["ppsA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9K0I2"], "locus_tag": ["MAAAAKME_14250"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MGEYIVQGTVPPDNFEVDKESMQIASKTINNKNIELIRLPGGGFEQRDVPEDVAKGPCLTDEEVIELAGYAKQIEKHYGCYMDME"]}}, {"location": "[1345544:1346066](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.9.2"], "codon_start": ["1"], "gene": ["ppsA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q02KR1"], "locus_tag": ["MAAAAKME_14260"], "product": ["Phosphoenolpyruvate synthase"], "transl_table": ["11"], "translation": ["MVSQRPHAGYRHFMEVNGLNEKVNALLATLKDPEDSEELHRVCSQIRKIMREAEDLAEDIGNSYDELAKMTGQNEPYVAVRSSATAEDLPDASFAGEQDTYLNVRSRKDVIRKVQDCYASLFTDRATYYRIKQKFPQEKVALSAAVQMMAFSKSAGVMFTVNVANGDDTKVMI"]}}, {"location": "[1346593:1348213](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["murJ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34674"], "locus_tag": ["MAAAAKME_14270"], "product": ["Lipid II flippase MurJ"], "transl_table": ["11"], "translation": ["MAKNKSQTNSQAQLLKGSAWMTIGSILSRILGAIYIIPWYAWMGKYGNLANSLTAKSYNIYSMFIIISTAGIPGAIAKQIAKYNALNEYGVGRKLFRHGLALMGVFGIISAACMYFLALPLSGFNPQEVPVIRCLALAVLIIPILSILRGYFQGFNDMMPSAISQFVEQLARVIWMLLTAYVIMRVQHGNYVDAVTQSNLAAAIGAVFGIGLLVIFYLRQKRTVDPLIAQSNNQVQVSTNSLLFEIIQQSIPFIIIDSGINIFQLVDQYTFHPMIASFMHVPYDAIEIWYALFGLNANKLIMIVVSLSTAMAVTAIPLLSGAHARRDYRDISRQIGNTLELFLFVLLPASLGMAAISDPLYTIFYGYDRLGAHVLYLSSFTAISLGMFTVLMAILQGLDENMYAIRYLIFGLVIKAIVQYPMIRLFKVYGPLLATNLGLLTVIAMSLKHLSVKYRWRVDRIMRRFIGIASFSIVMFAAVFVAVKLGGLFLSPYQRLSAMLLSGLAVAVGVLVYGVLSLKTGLAENILGSRVTRIMQKFR"]}}, {"location": "[1348307:1350722](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.4"], "codon_start": ["1"], "gene": ["leuS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:B8ZKS5"], "locus_tag": ["MAAAAKME_14280"], "product": ["Leucine--tRNA ligase"], "transl_table": ["11"], "translation": ["MYNHKVVEKKWQKYWLENKTFKTGTDPEKPKYYVLDMFPYPSGKGLHVGHPEGYTATDIMARMKRAQGYNVLHPMGWDAFGLPAEQYALQTGNDPATFTDENIAHFKKQLQALGFSYDWDREIKTTDPNYYKWTQWIFEQMYKMGLAYEAEVPVNWSPDLGTVVANEEVIDGKTERGGYPVYRRKMRQWMLKITAYADRLLDDLDDLDWPEPIKEMQRNWIGRSVGAQVTFKIKDSDKSFAVFTTRPDTLFGCSYTVLAPENELVKEITSPEQKEAVDAYIKSIESKSDLERTDLNKDKTGVFTGAYAINPVNGEEVPVWISDYVLATYGTGAVMAVPAHDERDYAFATKFDLPIKEVVEGGDISKEAFAGDGVHVNSDFLNGLHNEEAKAKMVDWLTEKGVGEKKVNYKMRDWNFSRQRYWGEPIPVIHWEDGETTLVPEDELPLRLPKESNIKPSGTPESPLANLTDWVNVVDENGRKGKRETNTMPQWAGSSWYFLRYIDPHNDKALADPELLKKWMPVDLYIGGAEHATLHLLYARFWHKVLYDLGVVPTKEPFQKLYNQGLILKNHEKMSKSRGNVVNPDDVVDEYGADSLRTYEMFMGPLNASIDWDDNGPSGVKKFLDRVWRTFVNDLDLDPIPSEKITDKNDGKLDKIYNETVKTVTEHFEELRFNTAISQMMVFMNACQKVDKIPREYAEGFVKLMAPVAPHMMEEIWHVFGHDESVQFAAWPTYDASKLVESTVEMAVTVNGKKRGNFQIAKDASREEAQAAATALTHVKEFLEGKEIKKVIVVPNKIVNIVAK"]}}, {"location": "[1351085:1351220](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKYRVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYGRR"]}}, {"location": "[1351281:1352109](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_14300"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKHLKLNDRTTIQELHSKGYSNRAIARELNCSPSTVGYELKRGTVSVYRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDFGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRVESRKDFGHWECDLVLGHKTKDDDVLLTLCKRKTRQFFMIKIEDKTSAIVMKEFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVLLYIL"]}}, {"location": "[1352256:1352916](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTKENKVNYQPLLIFGGAFSLFFAFWVYLIASKNPFIKSFDTVVYNAIRNNNPVERQLAFYWTQLGNTLTITVFTVVLVLFLVYQRNYIHAVFASLTMIAANACNSIIKNIIQRQRPRMDKAVHADGFSFPSGHSVGSMTLALVLIALIVVLVKKKPVKTWLIVFCVFFTLSIGFTRMYLHVHWPSDVLGGWCEGLAFSSLASWLFFKALDKKNKLNP"]}}, {"location": "[1352970:1354419](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bmr3_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96712"], "locus_tag": ["MAAAAKME_14320"], "product": ["Multidrug resistance protein 3"], "transl_table": ["11"], "translation": ["MKKTNVKMVTLAVFITTFMSAIEGTIVSTAMPTIIADLDGLAIMSWVVSVFLLMTAVSTPIYGKLADSVGRKPVFLFGIGLFVIGSALCGFSHSMVELIIFRVLQGLGSGAIQTAGVTVLADMYDIDKRAKMLGLTSGFWGLASVIAPLLGGFIVQKLSWHWVFMINVPIGLLAFLLVAFYLHEDFAKNKLQIDLKGSFSLVIFLLSLMLLLQGLEKGFNWTLLLLAAIMLVSLWAFTKVEKTAADPIIPFSILKDKEFLAVNILQLLVSGVVIGFEFYIPTWLQGINGVSASIAGFAITPSSLLWVCGSFLAGDLMGRCRTQKYFDASLFLLIGADLAFILIPTYTPFWVFCLIAVFNGIGFGSIATASQVRAQMVVDKSQVGVATSFNTLMKYLGQTVMMVFYGMTFNVVVASGLKKQPSLTSEMMNKIVSPVQAKSLDPAVLAPLREILHSSMRGIYIVSLIALLLSLVFNHIYRQKKD"]}}, {"location": "[1354481:1355678](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.6"], "codon_start": ["1"], "gene": ["metK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P66767"], "locus_tag": ["MAAAAKME_14330"], "product": ["S-adenosylmethionine synthase"], "transl_table": ["11"], "translation": ["MEKHLFTSESVSEGHPDKVADQISDAILDAVLAQDPQAHVACETSVTTGLVLLFGEISTTANVDYQQVARKTIREIGYNDPDLGFDADNCAVLVALDKQSPDIAGGVDEALEVRGEDDSDELDQIGAGDQGLMFGFAINETPELMPLPISLAHRLMRKVAQLRKEGTFPWLRPDAKAQVTVEYDDAGKPKRVDTVVISTQTSPDVTNEEIRVAMVNDVIKEVIPDKFLDDETKYLINPSGRFVIGGPKGDAGLTGRKIIVDTYGGYARHGGGAFSGKDATKVDRSASYAARYVAKNIVAAGLADRCEVQLAYAIGVAHPVSIMIDTAETGKVSDQLLTEAVRANFDLRPAGIIKMLDLRRPIYKQTAAYGHFGRTDVDLPWEKTDKAEALQAFVNGHK"]}}, {"location": "[1355838:1355913](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14340"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1355915:1355987](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14350"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1356124:1356200](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14360"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1356204:1356297](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14370"], "note": ["tRNA-Ser(gga)"], "product": ["tRNA-Ser"]}}, {"location": "[1356303:1356378](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14380"], "note": ["tRNA-Asn(gtt)"], "product": ["tRNA-Asn"]}}, {"location": "[1356388:1356498](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_14390"], "product": ["5S ribosomal RNA"]}}, {"location": "[1356574:1359478](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_14400"], "product": ["23S ribosomal RNA"]}}, {"location": "[1359607:1359680](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14410"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[1359748:1359824](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_14420"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1359813:1359906](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNDKNLGL"]}}, {"location": "[1359936:1361498](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_14440"], "product": ["16S ribosomal RNA"]}}, {"location": "[1360709:1361234](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1361993:1362977](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.18.1.2"], "codon_start": ["1"], "db_xref": ["COG:COG0492"], "gene": ["yumC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05268"], "locus_tag": ["MAAAAKME_14460"], "product": ["Ferredoxin--NADP reductase 2"], "transl_table": ["11"], "translation": ["MVLVYFRKEISLIKQYDLAVIGAGPVGLFAAYFAHLHGLKTVILESLNEPGGQPEMLYPFKKILDIPVFNEITAADLTKRLLANLTDQDLVTGHKVSQLEKTDEFVIDGEYQVRSIIVATGNGAFKAKKFPLKATPEAEDHIHYFFKNPDLFAGQKIGIFGGGDTALDWAQELSQIADVTLVHRRDQFRGMESSVENLKADQKVTLKTPYLPKSMQVEKGQLEISLKMVGGDEVTQETFDQILVAYGFRADNRFVSKWGVDLDQGLIAVDRSMQTSVPGIYAIGDSCGYPGRVPVIGIGFGEAQIAVNAIMQDLFPEKSLTIHSTSI"]}}, {"location": "[1363011:1363671](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0586"], "gene": ["dedA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0ABP6"], "locus_tag": ["MAAAAKME_14470"], "product": ["Protein DedA"], "transl_table": ["11"], "translation": ["MPLIDFILHIDDHLVTIVNNFGAGTYWIIFAIIFIETGLVIFPFLPGDSLIFAAAAMAANPKYGLNVWLLYIVAAAAAIIGDSINYEIGKWSVTSGAKHSWFNKLINENDRLAAEKFFERHGSITIVIGRFIPFIRTFVPFISGGSKMHYQTFVIYNILGGLLWTALFTSIGYFFGNFPVVKGHFSLIVIGIILVSVVPILVVALKKKLTMRREQHFND"]}}, {"location": "[1363742:1364348](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKFLSKLGQPLFHFFFAVSSAVVGAIVVSWPLLLLFTLLEKTYQTVNLTVGQVMSNYNQLLLYLVWPGQTKLQMSNLPTSALAAAHFADVKNLFILAELVFLLCLALSSYFRNYKKPLKLTQTQALLLMLLPIVVMPFALTDFGSFFRVFHTFFFRNDNWLFDPATDPVINVLTEGFFASCFAVGGAIYELYLARYLLKK"]}}, {"location": "[1364344:1365115](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG0647"], "gene": ["yutF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32125"], "locus_tag": ["MAAAAKME_14490"], "product": ["Acid sugar phosphatase"], "transl_table": ["11"], "translation": ["MKDYRLFLIDLDGTIYRGKDTIESGVRFVKRLDEAGLDYLFLTNNTTRTPQMVADKLAGHGVKTDVSKIYTPSMATASYILEKEAKRPIGVYIIGQIGLWKEILDRPEFYYDEENPDYVIVGMDTDLTYHKLMVATRCIHRGAVFIGTNSDQNLPVGKELRPGNGSICAALEVASGQKPLFIGKPEAIIVNRALDLAGVKAEEALIVGDNYPTDIMAGINSGVDTLLTLTGVTQKADLAGLTPPTYLVNDLDEFSL"]}}, {"location": "[1365111:1365657](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKEQKEPKKEQKTEAAEAKPLHPLAEVVVAGEKVVINQREYRLLVNQRDALDREVLKQKYDPYLDQYDYLVGDVSSDHLRLRGFYNDYVKTSIDRKKSTIVDYLTEYCNPGAPYFILESLQPSRKPWPTQRRRPARKRPKNKAAFSERKVKGGRPKKGSYAESCKKNRRHQAFVIRKKKP"]}}, {"location": "[1365604:1367035](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METLRILHTNDLHSHFEHFPKIRRYLKQVQETAAADQVLTFDAGDFMDRSHPLSDATEGQANIRLMNDFHYDAITIGNNEGISNPHAVLERLFDHANFPVLLSNLREEDESWPAWANDYKIIKTKKGTRLALVGLTAAYPMTYGPNHWQIKMLGETMDRVLPEIAGQYDCLILLTHVGLRMDQWLAKHYPEIDLIVGGHSHTLLEKGVKEGRTWITQTDKWGNYVGDISLEIGDDHKIISIKPTTVPVADLPSQAGDEAEIAALYEEGQKMLQSRHVADLPEKFKDDKLAAIDVSLEAIADFAGTDLAMLSTGLFLTPFKGGLINQFDLQHALPHTMHVVRTTLLGRDLWRLVMEVEKNRHFLENYPLVGMSFRGKIFGQVYYRGIKYDPMTRNVFVNGQLLDPAEEYRIAVLDHYVLIPFFPTLAIVGENEFLFPQFLREVVGDYLGRKYPMKKEGEFIEERAERAEKRAENRGS"]}}, {"location": "[1367045:1367378](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14520"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDHLYEQFDLIEEITRNDGSQYYEISNIDQNGFAELAVNNGLIKSVRILVINIPRTKALETYEQYINKAYQLHTLMNEEDWENPQWVEWDKPKGPVRDAYEMVLKANKIG"]}}, {"location": "[1367484:1368486](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1609"], "gene": ["ccpA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46828"], "locus_tag": ["MAAAAKME_14530"], "product": ["Catabolite control protein A"], "transl_table": ["11"], "translation": ["MNKQDVTIYDVAREAKVSMATVSRVVNGNNNVRKETRDRVMEVIKRLHYQPNAVAQGLASKRTTTVGLIVPDLTNLYFAELSKGIDDIAVLYKYNIIISSVENRLMKEDAVIQGLLNKQVDGVIYMSNKLSEEAAEAFKRTDTPVVLAGTVSDNLEFPSANIDYKKADTEALNLLLNDGKKKLALIVGDKEAPINRNHRIPAFEKFVADNELEGCEIFDNIKDYSDGYNLYPELAKKGINGVIITKDVSSVGLLNSALDRGAKVPEDFEIVTASATQIASVVRPALTTIKQPLYDLGAVAMRMLTKLMNDEGLEDKHIVLPYELIKKQSTLNK"]}}, {"location": "[1368638:1369745](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.9"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["pepQ_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S6S1"], "locus_tag": ["MAAAAKME_14540"], "product": ["Xaa-Pro dipeptidase"], "transl_table": ["11"], "translation": ["MNLDKLQNWLQENGMDVAYVSSPTTINYFTGFITDPEERIFKLFAFKDAEPFLFCPALNYEEAKTSAWDGDVVGYLDSEDPWGKIAEEIKQRSKDYQNWAVEKNGLTVAHYQALHAQFPDSDFSKDLSDFIAHIRLFKTESELVKLRKAGEEADFAFQIGFEALRNGVTERAVVSQIEYQLKLQKGVMQTSFDTIVQAGKNAANPHQGPSMNTVQPNELVLFDLGTMHEGYASDSSRTVAYGEPTDKMREIYEVNRTAQQAAIDAAKPGMTASELDGVARKIITDAGYGEYFIHRLGHGIGMEVHEFPSIANGNDVVLEEGMCFSIEPGIYIPGFAGVRIEDCGVLTKDGFKPFTHTSKELKVLPVKE"]}}, {"location": "[1369809:1370055](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTTNMVLFLIYLMVTYFSFRKSDNPFVLKLRKYRGIILTILPAVFFAIFVMKEGYHDFQNVFLLLTLIGVYYLIRDLRKV"]}}, {"location": "[1370150:1370351](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.9"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["pepQ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S6S1"], "locus_tag": ["MAAAAKME_14560"], "product": ["Xaa-Pro dipeptidase"], "transl_table": ["11"], "translation": ["MEIQLFKIPNGNDVVLEEGMCFSIEPGIYIPGFAGVRIEDCGVLTKEGFKPFTHTSKELKVLPVKE"]}}, {"location": "[1370412:1370781](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKFGSFLLGAVFGAAAGVAAASLISDDKLKEVKDKIKSNPNVEDLKEKYDNGTEILKNQLASFPKNIEDDSELKDFDDIVIDDSANGAGEQDASDLDNAEKSEEGEEKPEEPSTPTSPDQE"]}}, {"location": "[1370803:1371223](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A531"], "locus_tag": ["MAAAAKME_14580"], "note": ["UPF0478 protein SA1560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTISFGALAGLIAAIAFLVLVLFTIPMLLNVSKTLKEAEKTVQLTNESMAKLTEDMDDLMKQTGGLLEKIDALLQDVNGKMETLQPVVQAAADLGQSVSDINESSKKMINKVSNAHFTRTGMITSVITSAFARHFRRKG"]}}, {"location": "[1371353:1372205](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0668"], "gene": ["ykuT"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34897"], "locus_tag": ["MAAAAKME_14590"], "product": ["putative MscS family protein YkuT"], "transl_table": ["11"], "translation": ["MKNLDFKIAGISVDVDNLFTSGVTILWKLLISTLVFYLVSHFGRKIIKRYLDKHNDKLVLSKRSQTISALVNSLFHYTMVFFYVYSILTILGIPVGTLIASAGIFSLAIGLGAQGFMSDLVNGFFILSEGQYDVGDNVEIGTEAGTVTQLGLRTTQIVTTDGTLIFIPNRQISIVRNLTHGGIGLNLDLNLDANTDLKQLASLLDQADEDLLAWHDKLVSGPTQIGVVGQQGQTITYRVHFQVKPGFEGKIRQAYWQTYLQYLRVNQVKFGQEPVIINNSKKA"]}}, {"location": "[1372244:1372865](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.66"], "codon_start": ["1"], "db_xref": ["COG:COG0127"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P44598"], "locus_tag": ["MAAAAKME_14600"], "product": ["dITP/XTP pyrophosphatase"], "transl_table": ["11"], "translation": ["MTQVLLFATDNQNKVKELQEAFKQAGLDIELKSNADLDNPPYVNEKGTTFEANAKLKAHALADYSKLPTLADDSGLLVAKLNGAPGVHSARYGGEAHNDARNNAKLLAALGGVPQDERQAKFVTTLVLTMPGHEDKDLVVTGTCEGEVLAIPRGKDGFGYDPLFYVPSKGKTFAEMTTEEKNEVSHRGKAVKALIEELPAWLAQFN"]}}, {"location": "[1373103:1373499](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yslB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42955"], "locus_tag": ["MAAAAKME_14610"], "product": ["putative protein YslB"], "transl_table": ["11"], "translation": ["MSEHNEHVYFVNQLYRDFLLPTILGGDTPAILYWAGKRITRKYALSEFEDLSEFFKMAEFGNLTIVKERRSSVIFSLSGQPISDRLAAGSREFSLESGMIAEAVEQNRGRSAEAEIAIDDKKETVQITAFF"]}}, {"location": "[1373580:1373892](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0526"], "gene": ["trxA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0K6"], "locus_tag": ["MAAAAKME_14620"], "product": ["Thioredoxin"], "transl_table": ["11"], "translation": ["MVDEITDATFEEETKDGLVLVDFWATWCGPCRMQSPVIEALAEERQDVHFTKMDVDDNPETAKNFGIMSIPTLLIKKDGQVVDRLTGYTPKEKLNEILDQYAD"]}}, {"location": "[1373985:1376346](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "gene": ["mutS2_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65496"], "locus_tag": ["MAAAAKME_14630"], "product": ["Endonuclease MutS2"], "transl_table": ["11"], "translation": ["MNHKILDILEYQEISSRLAEQAVTAPAKSKALNLQPASDRETVSRALSETKALVDLDRIKGQLPLTDFQDVAPSLKRLKVKADLNALELGNILLIFTLAQESSRFVEDAEENETLDLAAIETLLEDLELPDDLYRRLRTSLTYDGEVLDTASADLARLRHGRLATEAEIKEKMIAYTKGKNGQYLSEQIVTIRDDRYVIPVKQEYRYKFGGVVHDQSASGQTLFVEPAAILPLNNRLQNLLAEERQEIHRVLHELSLDAREEMETIKRVAAALSELDFLQAKAKLAKQMRASQPALSADQSFKLLGARHPLIDPDKVVANDIALGQDFDTILITGPNTGGKTITLKTAGLLQLMAQSGLFIPANEGSSVAVFDQIFADIGDEQSIEQSLSTFSSHINDIVAIMKRVSDQSLVLIDEIGAGTDPEEGASLAISILDFFRKKGAKIIVTTHYPELKLYGYNRERTTNASMEFDIKTLSPTYRLQMGIPGHSNAFAIARRLGMREDVVVGAEKLMSSDDSDINHMIDELNKQTKLATENKQKLQTSLDRAKQLEKKLQDALDIYNQRVQKQLDFALDRANEIVAKKRKKADKVIAELEEARKEGMQVKTNQLMDAKGEFNQLAKQEVNLAKNKVLQKEKKRHHVQVGDKVKVLSYGQTGTVTKQLGEHDYEVSLGRIKLKVTDRYIDKLAAGQKQQAQRRATSASRSSRARSSLDLRGQRYEEAMVNLDRYFDTILLSGLSTVTIIHGIGTGAIRQGVQQYLKRNKHVKTYSYAPANEGGTGATIVTLK"]}}, {"location": "[1376412:1376736](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SX0"], "locus_tag": ["MAAAAKME_14640"], "note": ["UPF0473 protein SP_0194"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAFEVSAEDQDRQLTLIDEDGNEELFEVLFTFHSDDNDKSYILLYPAAVEDDDEIEVQAFSYDADEDGDVTSSDLHEITSDAEWDMVQGVLNTFLEDDRLSGDDSAE"]}}, {"location": "[1376738:1377167](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0816"], "gene": ["yrrK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34634"], "locus_tag": ["MAAAAKME_14650"], "product": ["Putative pre-16S rRNA nuclease"], "transl_table": ["11"], "translation": ["MRLLGLDVGSKTIGVAVSDPLGITAQSVMTIPIDEDRHNFGMRSLKKLVREYEANGFVLGLPKNMDGTAGRSVSRSKAMGERLEQKFGLPVYYDDERLTTVASERILVEEAGMHDRRQRKEVVDQMAAVLILQNYLDLQRKE"]}}, {"location": "[1377166:1377424](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q836B3"], "locus_tag": ["MAAAAKME_14660"], "note": ["UPF0297 protein EF_1202"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLDKTMHFDFNQNKGKNIRDTLEDVYKALEEKGYSPINQIVGYLLSGDPAYIPRHNDARNLILKHERDEIIEELVKSYLGKDK"]}}, {"location": "[1377489:1380123](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.7"], "codon_start": ["1"], "gene": ["alaS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67011"], "locus_tag": ["MAAAAKME_14670"], "product": ["Alanine--tRNA ligase"], "transl_table": ["11"], "translation": ["MKKLNSSEFRQMFLDFFAEHGHMVMQSASLIPKDDPTLLWINSGVATMKKYFDGSVVPKNRRITSSQKSIRTNDIENVGKTARHQTLFEMLGNFSVGDYFKEEAIPWAWEFLTSPDWLDLDKDKLYVTVYPKDTEAHRIWHEVVGLPESHIVQLEDNFWDIGEGPCGPDSEIFYDRGQENNDVPEDDPENYPGGENARYLEIWNIVFSEFNHLPDGSYVEQPHKNIDTGMGLERVLSILQDAPTNFETDLFLPIIHATEEMSAGKKYGANKADDISFKIIADHIRAISFAIGDGALPGNTGRGYVLRRLLRRAALNGRKLGIDGAFLYKLVPVVGDIMKSHYPEVSDQAEFISKVVKNEEDRFGATLEAGLTLLDDLIDKAENSEDKTISGKDAFKMFDTYGFPYELTVEAAEDKGLKVDKDGFDAEMEAQKERARKARGNLQSMGSQDETLMKIKDKSVFEYGVYEEESQLVDIIVDDKLVDKADGEKATLIFDKTPFYAERGGQVADHGDIYDQEGNLVARVVDVQHAPNDQNLHFVDVVLPLVKGQTYKLKIDRARREGLRHSHSATHLLHAALRQVLGEHTHQAGSVVEPDYLRFDFTSLDPITPRELKNVEKIVNEKIWEAIQVKTTETDPETGKKMGALALFDGKYTDKVRVVQMDDFSIEFCGGTHCDNTSQIGVFKIISEQAIGAGVRRIEAVTSKLAYEYLAGRSDILDQIQAQVKATKVDGIQSKIASLQEELRSAEKQNAAYEAQINASKAGKIFDQVKTVGDLTVIATIADVKGMNDLREIADQWKSEGKSDVLILGAKSEDKANMLISLGQKALDKGLKAGDLIKSVAAIFGGGGGGRPNMAQAGGKNPEGLQDAIDAAVSQLD"]}}, {"location": "[1380361:1381723](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "db_xref": ["COG:COG0513"], "gene": ["cshB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y755"], "locus_tag": ["MAAAAKME_14680"], "product": ["DEAD-box ATP-dependent RNA helicase CshB"], "transl_table": ["11"], "translation": ["MNNIFTDTRLRSEIRQGLAKIGFTKPTPVQEKVIPAMLKGESVIVQAATGSGKTHAYLIPILNAIDEDARYVQAIVTAPSRELADQLYRVARQLRDNSGLNIAIAHLAGGSDRDRQIARFEQNEPQLVIATPGRLLDFADKKILLLDQVKNFVIDEADMTLDLGFLADVDKIAARLPKDVVMSAFSATIPVKLTNFLRKYMAKPEEIVIDNPAVIAPTIKNDLLDIGSKDRKKIVYKLLTMGQPYLALVFANTKQMVDELADYLTKQGLKVAKIHGSITERERKRTLREVRAGQYQYVVASDLAARGIDLPGVSLVINYEIPKDLEFIIHRIGRTGRNGLPGHAVTLVREEEMNRVGALEYMGVHFDFVEIKDGALAPRTHYRRRDNRTAANRQLDPHMKGVVKKIKSKRKPGYKKKIKQAIQEDNRKKRKIEARHEMRHQKHLRKRKREQKR"]}}, {"location": "[1381715:1382675](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0618"], "gene": ["nrnA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DTN6"], "locus_tag": ["MAAAAKME_14690"], "product": ["putative bifunctional oligoribonuclease and PAP phosphatase NrnA"], "transl_table": ["11"], "translation": ["MNTFDEIFSKIKQYPTIILHRHTNPDPDAIGSQAALAKSLRLQFPDKKILCTGENDVGDLDWINTMDEVKDEDYQGALVITTDTANTPRISDQRYRLGDYLIKIDHHPDVDPYADMSYVDSKAAAACEIIADFIEAEGLPLTQEIALALYAGIVGDTGRFMYDATSAHTFEVVSRLMETGIDISQIARNESEVTFQQAKLQSLALEKMQLDESGLVAIAVISQADLKALGVTQPQASVTVSTPGRIKGILTWLVIVEKEDGTYRVHYRSKGPHINKLAEAHDGGGHELASGATAHDQVEIDQIFQELVEVTKKYKEDHE"]}}, {"location": "[1382737:1383853](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.7"], "codon_start": ["1"], "db_xref": ["COG:COG0389"], "gene": ["dinB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q47155"], "locus_tag": ["MAAAAKME_14700"], "product": ["DNA polymerase IV"], "transl_table": ["11"], "translation": ["MADIDLLPRNDFSRRIIHLDMDAFYASVEMRDRPELANKAVVIAQDPRKTGGHGVIATANYRARKYGVGSAMAAAQAVKLIPAEELVFVEPDFAKYHRVSGQVHGLMHELTDQIESVALDEAYMDVTRSKIPGKSALELASYLQEQIFRQLHLTSSFGVSYNKFLAKMGSEYAKPFGRTYLAPDRVQDFLDRQEIKRFPGIGKKTQERLKEAGVLTGRDIRNYGLSRLLKDYKKSGYYMALHAYGIDLSPVQASRQRKSLGKERTFEPVIYDPDRADAYLKDFSQTVAAELKGRNLLARVVVLKVRDRNFKTITRRQQIQPTSDPEVFYQLAKELLAREPEFLAEGIRLLGLSAGELEEKHYQEISLFADE"]}}, {"location": "[1383852:1385301](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.363"], "codon_start": ["1"], "gene": ["zwf"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P11411"], "locus_tag": ["MAAAAKME_14710"], "product": ["Glucose-6-phosphate 1-dehydrogenase"], "transl_table": ["11"], "translation": ["MNNIPTVMILFGGSGDLAHRKIYPALFNLYRRNVIHDNFAVIGTARRPWSHEYLREQVAQAVHESWEEVDEAQLTEFASHFYYQSHDVTNVEHYVTLKQLAQELDERYECGGNRIFYMAMAPSFFGTITEHIADQHLTGTGFNRLVVEKPFGTDLASAEVLNQQIRNSFAEDQVFRIDHYLGKEMVQNILPLRFGNSLFKRIWNADAVKNVQVTLAERLGVEARGGYYNNSGALRDMVQNHIMQIITLLAMPEPKDLSDKAIHAAKEDLLASLVIPDEKAVSENIIRGQYLGTETTFEYVKEPNVAEDSKTETYVAGRLEFSKGPLAGVPVYFRTGKEMREKKTRVDVVFKDEAGLYGDKAKTNVLTIEIDPVNQVYFRLNGKIVAGGGLRLERFRYRYSEDEQAEVPDGYERLIHDVFVNDSTNFTKWEELKQYWRFVDAVEAAWQKQNAAGEKPVKYRPYGMGPDTSKIFADPEDGWIYK"]}}, {"location": "[1385393:1385789](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTFALAAANSGAGSNIFMLVMLAVLFGFTYFTMIKPQKKQQQQRQEMMNQLKKGDSVEMVDGLRGKIDSINDADKTIVLDADGIYLTFSRLAVRTVLKQADASEAEAAKPAEEKAEAAKTEEAEDKDSQE"]}}, {"location": "[1385877:1386888](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG2255"], "gene": ["ruvB_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SR6"], "locus_tag": ["MAAAAKME_14730"], "product": ["Holliday junction ATP-dependent DNA helicase RuvB"], "transl_table": ["11"], "translation": ["MTEEHLTSQEAAEGEEAVELSLRPQLLSQYIGQGHVKKDMEVYIQAARQRDEALDHVLLYGPPGLGKTTLAFVIANELGVNLKSTSGPAIERAGDLVALLTDLEPGDVLFIDEIHRLAKPVEEVLYSAMEDFYIDIVVGEGQTTHAIHLPLPPFTLIGATTLAGQLSAPLRDRFGIVEHMQYYQVEDLEKIILRSSEVFHTKISPQAAHELARRSRGTPRVANRLLKRVRDFAEVKGEKEISLETTAMALKQLQVDSAGLDQTDRKLLRTMILSYGGGPVGIRTLASNIGEDRETIESLYEPYLLQNGFIVMTPRGRVVTQKAYQQLNLPLPGEEE"]}}, {"location": "[1386901:1387495](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["ruvA"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00031"], "locus_tag": ["MAAAAKME_14740"], "product": ["Holliday junction ATP-dependent DNA helicase RuvA"], "transl_table": ["11"], "translation": ["MYEYFEGTITVVNPAYVVIEVAGIGYRILTPTPYAYKDGDKARIYVEQVVRENGMTLYGFKSQQDKVLFNKLNEVSGIGPKSALAIMAAEDNGALASAIESGEVSYLTRFPGIGKKTASQIVLDLRGKMGNYVAENLFTEDEPVKSVFPALEDALLALGALGYSQKEVDRIKPKLKKLPEMSADEYIKQGLGFLLKK"]}}, {"location": "[1387504:1389466](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mutL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65492"], "locus_tag": ["MAAAAKME_14750"], "product": ["DNA mismatch repair protein MutL"], "transl_table": ["11"], "translation": ["MAKIHELSENLTNQIAAGEVIERPASVVKELVENAIDAQASRIRVEVQHSGLKQISVQDNGSGIAPDQVDLAFMRHATSKIQDEHDLFNIATLGFRGEALASIAAVAHVEILTSTGGQTATRAAFAGGVKKFQEDAGSAKGTKITVGDIFYNTPARLKYLKSPKTELLKIVDIVNRIALGHPEISLTLASDGKVLLRTPGNGNLKQDVANIYGRKVAEKMLTVENEDPDFTLYGLVSEANLTRSSRNFISILLNGRYIKNYQLSSALLDGYGNKLGGKYPIAVLAIEADPLLVDVNVHPTKEEVRLSKEKELSRLITSAVTEALMDEDEASPLFQLTPFKDKTQLDQLEFNLKPNVVDTRRPDDFQLEVSQVAEPEGKTDITNKKETETKEKAEKKENKQEEKEEKTSAPEYVDLNQVREDDQYVLTKSWDQHVKEQTALPPFAGGEEAASPVTSKADQLLRQHLPALRLLGQMGGYLLAEHEGDLYLIDQVAARRRLEYDQILASLEKDENYQQGLLEPLVFDFSVYDYQKLKDQLPLLRQLGLEMEDFGQNTLLMHSYPTWLKGEVTVQVRELLDQLLSSRENDGKSLLKLVAAKAAESNVSRRVNLTGAEAADLLLRLQTASDPYRDASGQLAVVRLSQNDLSKLFKKGK"]}}, {"location": "[1389465:1392036](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0249"], "gene": ["mutS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A1Y0"], "locus_tag": ["MAAAAKME_14760"], "product": ["DNA mismatch repair protein MutS"], "transl_table": ["11"], "translation": ["MPRKATTPMMEQYYQIKDQYPDAFLFYRVGDFYELYEDDAIKGSQILELTLTHRSNKSENPIPMAGVPHMAVDSYVNTLVEKGYKVAICEQLEDPKKAKGMVKRGIIQLVTPGTKMAQGPDDSQESNYLTSVVEKAGGYGLAYSDLSTGEIFVTHVKHYAEVVNELLSLRTREVVFAGNLSASDRDRLQKANITVSEPAELEGEHAEISYVQQKLTDSMEKAAVRQLVVYLLATQKRSLAHLQVAESFEIGQYLQMANTVQRNLELTQSATTGRKQGSLFWVLDKTTTAMGGRLLKQWLSRPLLSLDRIKQRQQMVQALLDDYFTRENIVDSLKGVYDLERLSGRVAFGNVNPRELLQLAKSLEATKLIIQTLVESGNPDLEKYGQGIDPQSELAESITNCLVDQPPISAKDGGIIRAGVSEDLDKYREAMNGGKKWLAQMEMEERQRTGIDNLKIGYNRVFGYFIQVSKGNVAKVPQDRYTRKQTLTNADRYITPELKEHENLILEAESRSTDLEYELFSQLREAVKAHIPDLQELGRQLAALDVFVAFAQDAEEKNYCRPSFSSKNEIAVKNGRHPVVGAVLPAGSYIPNDLVMDEDTSIYLITGPNMSGKSTYMRQLALIAIMAQIGSFVPADSAKLPVFDQVFTRIGAADDLYSGKSTFMVEMSEANEALQHASSRSLVLFDEIGRGTATYDGMALAGAIIKYLHDKVGAKTLFATHYHELTELDETLLHLKNIHVGATEENGKLIFLHKILPGPADQSYGIHVAKLAGLPRVVLREASSMLKRLEAEGAREINPSRQQLDLFSPVEVVEENPLKAEQEELLDEISQVNLNEKTPLEVMQLVADWQQALKEE"]}}, {"location": "[1392353:1393967](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0459"], "gene": ["groL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A335"], "locus_tag": ["MAAAAKME_14770"], "product": ["60 kDa chaperonin"], "transl_table": ["11"], "translation": ["MAKDIKFSEDARRSLLNGVNKLANTVKTTLGPKGRNVVLEQSYGAPTITNDGVTIAKAIELEDHYENIGAKLVAEAASKTNDIAGDGTTTATVLTQAIVQEGMKNVVAGANPVGIRRGIEKATKAAVDQLHKNSHKVSSRDQIAQVASISSASKEIGDLIAEAMEKVGKDGVITIEDSRGIETELSVVEGMQFDRGYLSQYMVTDNDKMEADLENPYILITDKKISNIQDILPMLQEIVQQGRSLLIIADDVTGEALPTLVLNKIRGTFNVVAVKAPGFGDRRKEQLADIAALTGGTVISEDLGLELKDTQLSQLGQARRVTITKDSTTIVDGSGAKEAIQERVDTIRKQIEDTSSDFDKKKLQERLAKLTGGVAVIHVGAATETELKERRYRVEDALNATRAAVDEGYVAGGGTALVNVEEAVKATKGDTDDEQTGINIVARALTAPVRQIAENAGQEGSVVVDHLRKVDPEVGYNAAEDKYVNMIDEGIIDPTQVTRSALQNAASIAGLLLTTEAVVAEIPEDKPEAAPAQPGMM"]}}, {"location": "[1393993:1394278](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0234"], "gene": ["groS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O50304"], "locus_tag": ["MAAAAKME_14780"], "product": ["10 kDa chaperonin"], "transl_table": ["11"], "translation": ["MLQPIGDRVIVEVKEVEEQTVGGIVLASNAKEKPTQGKVVAVGGGLYAEDGSKLPMTVQEGDEVLYDKYSGTKVKYEDKEYLVLHEKDILAIVK"]}}, {"location": "[1394433:1395120](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2344"], "gene": ["rex"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05521"], "locus_tag": ["MAAAAKME_14790"], "product": ["Redox-sensing transcriptional repressor Rex"], "transl_table": ["11"], "translation": ["MNNKFRIPKATARRLPLYYRYLLLLNDEGKDKVSSTELAEAVQVDSASIRRDFSYFGALGKRGYGYDVKNLLSFFKKILNQDTLTNVALVGVGNLGHALLNYNFKRSNNIRISCAFDINPEITGKITQGVPVYSMDEMKQQIADQQIRIAILTVPQATAQNTADEMIEAGIKGIMNFTPIRLSAPNGVRIQNVDLATELQTLIYFLDSDELIKKQLEERKKAMNNTNK"]}}, {"location": "[1395424:1397317](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0488"], "gene": ["yheS_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63389"], "locus_tag": ["MAAAAKME_14800"], "product": ["putative ABC transporter ATP-binding protein YheS"], "transl_table": ["11"], "translation": ["MEQRFGAAPIFSKVNFSIENNARIGLVGPNGAGKTTLLKIMTGRQEASQGEFTVNKGIELGYIAQEHDFDEEKSIWEEMLTVFQPLIDQGQQLEKLQYAIADHPEDEDLLRRLDQAQYNFEQAGGYTYQAEIKSMLNGFNFPEATWNKQIASLSGGEKTRLSFVKLLLKKPPLLLLDEPTNYLDLDTLDWLEAFLKNYPGAILTVSHDQYFLDHLATQIFELQHGELTVFKGNYSQYLAQRELRDQQQEAAYEKQQEEIKREEEFIQKNIVRASTTKQAQSRRKALEKMELVDPPKHKSKVRIKFDSARPSGKEVLILKDLAVGYPDKTMLKDISFQINKGDRVAIIGQNGIGKSTLLKTVMKQLPVKSGAIKYGASLDIGYYDQELQGIDYSKTVIDTIWDRHKDMNEKDIRSILASFLFTAKDIDKKVSQLSGGQRARLTLTVLSMEHNNFLLMDEPTNHLDLDAKEVLEKALADYDGTLLFVSHDRYFINELANKIVVAKDGQAKIYEGNYTYYLNEKAKEEAAAQETAAQEAPVVKAVSESKFSYQEQKKRDSEKRKLERQVAQAEKDLEELEAKEQEIQEAMADPAIAADFSKLGPLQEDLTAVQEKISQVSQAWEDASLALEEF"]}}, {"location": "[1397383:1398424](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.234"], "codon_start": ["1"], "db_xref": ["COG:COG0533"], "gene": ["tsaD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05518"], "locus_tag": ["MAAAAKME_14810"], "product": ["tRNA N6-adenosine threonylcarbamoyltransferase"], "transl_table": ["11"], "translation": ["MKEKKDIRILAFESSCDETSTAVVKNGSEIESLVVATQIKSHARFGGVVPEVASRHHIEVITQITREALEEAKVSWEDLDAIAVTHGPGLVGALLIGINAAKAASMATGLPLIGVDHIMGHISAAQLVEPVEYPALALQVSGGHTEIALLKDPTHFEIVGDTRDDAAGEAYDKIGRVLGVNYPAGKTIDQWAHQGKDTFGFPRAMIDEDNYDFSFSGLKSAFINTCHHADQIGEKLDKYDLAASFQAAVVDVLAEKTVRAIRQYQPKTFIMGGGVAANLGLRERMNKEIAALEKAPKVILPPLKLCGDNAAMIGAAAYNQYLAGNFADLTLDADPSMELPYAEDYK"]}}, {"location": "[1398426:1398957](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.189"], "codon_start": ["1"], "gene": ["mshD_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01698"], "locus_tag": ["MAAAAKME_14820"], "product": ["Mycothiol acetyltransferase"], "transl_table": ["11"], "translation": ["MGLFFKDDLVQFAPRAISISGHEYCLKKAEAGELARLLLLEKEVYAGRRPWDGEVFAEELRRRDSLYLLLLEGDFLVGAIGCRFSLSKAHITFLAVMPKEQGQGIGSYLVQTVLDLAKSADLKAVTLEVRVENKKAQELYRQLGFEDNFVRKNYYDNDDRPDSDGLNMICHLRKKN"]}}, {"location": "[1398961:1399684](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1214"], "gene": ["tsaB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05516"], "locus_tag": ["MAAAAKME_14830"], "product": ["tRNA threonylcarbamoyladenosine biosynthesis protein TsaB"], "transl_table": ["11"], "translation": ["MKILSISTATSDLSIALNEADHLVSEKIEENQRNHSVDLDPDIASLLAENGLSLKDIDRFAVAIGPGSYTGLRVGLTTAKMFASILNKELVGVSTLQALAQNFAGEDALIVAALDARNKNFFAGAYRGKEAVIADGHYHLSELLEQVGALPDQKVIFVGSDFRKYQEEIAAGLADKDLRLAEGEENLLHAGAIGRLAVSAPVLDPDQAVPNYLRRTQAEYDWAKKTGQEFEADSAYVEEV"]}}, {"location": "[1399701:1400232](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["folT_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q035X6"], "locus_tag": ["MAAAAKME_14840"], "product": ["Folate transporter FolT"], "transl_table": ["11"], "translation": ["MKSESKVSSKLELRELVLLAMVIAIKVVLGQFKVGDATLQVGLGFIGSVMLGYLFGPWWGFAGGALSDLVSSAIFGNLGGFFIGFTLTAALESMIYGFFLYKKPIQIWRVIASVICVTVICYIGLNTLWVSMLGGTNFMVALSSRILKEMITPWIHMVVVWFILEGLSRVKLSRKF"]}}, {"location": "[1400316:1400847](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["folT_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q035X6"], "locus_tag": ["MAAAAKME_14850"], "product": ["Folate transporter FolT"], "transl_table": ["11"], "translation": ["MKSESKVSSKLELRELVLLAMVIAIKVILGQFKVGNATLQVGLGFIGSVMLGYLFGPWWGFAGGALSDLVSSVIFGNLGGFFIGFTLTAALGPMIYGFFLYKQPIQIWRVIASVICVTVICNIGLNTLWVSMMYGINFMVALSSRILKEMITPWIQMVAVWFILEGLSRVKLSRKF"]}}, {"location": "[1400889:1401639](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRYYKDYQLEYADCGESGQLKLPRMIDLMMGSSEGQLAPTLGGASAMKERGRGWVVTQYEFEFTSLPRAGQKVRVWTEAVGYNRFLSYRDFGIEDEAGKDLVIAHSQWVLFDLKSRKLLPSDDKIAEELGAPFLAKIPRFKKLRPKDDYKDEKVYRAYYYDLDSNHHVNNAHYLDWIVDSLPRDFVNSHEPKDLAIKFDKEIKYGDEVVCQVMQETEDSAVKTCHAITRQGELMALCEVNWQKMCFNRD"]}}, {"location": "[1401635:1402499](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.198"], "codon_start": ["1"], "db_xref": ["COG:COG0313"], "gene": ["rsmI"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P67087"], "locus_tag": ["MAAAAKME_14870"], "product": ["Ribosomal RNA small subunit methyltransferase I"], "transl_table": ["11"], "translation": ["MQTQHSYADDQQGKLYLVPTPIGNLEDITIRAKRILEEADYIAAEDTRTSGIMLDRLGINNKMVAFHKFNSKEKAPELVKLMQEGATIAEISDAGMPVISDPGYILVQECIKSNVPVVPLPGPSAFATALIASGFDGQPFTYYGFLPRKASQQRPFLEEINASRATSIFYEAPHRLLKTLEQMVEVLPGGRQVVCARELTKIHEEFVRGSLEEVIQHFKEVDPRGEFVVLVSPNTEEKTLDWADLVKLVKEQVAQGVSKKDAIKQVAKSQGVSKNELYDRYHQEGAK"]}}, {"location": "[1402498:1402831](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4467"], "gene": ["yabA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37542"], "locus_tag": ["MAAAAKME_14880"], "product": ["Initiation-control protein YabA"], "transl_table": ["11"], "translation": ["MDPYTKLQQLQQQMERMLKSMGSLQQEVLESLKENTELKVENQLLREKLDKLTVKEHEGKSQSGMAMLKQIYQSGYHICNMYYGTHRDPSADCMFCLDILDNFGKKLVHK"]}}, {"location": "[1402845:1403718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLDLKQIGASEFRQLKQAQDRGQLSHAYLLLSSDEVEALNTAYWLICYVNCTGEKKPDGTCPACRRILAGNHPDVFLIDTEENKQSIAIDQIRPLKQELAKSPLEGDRRYFVINHAQKLTLPAANALLNLLEEPAAPVVTFLIANNGGQILPTIKSRTQIINFSQQAASSKDRLLLANGMSQEEVDQVKSSQEVDQAVKFFYQELREHDSLAIVSAHQLAGLVKKQKQGTKAWEKYVWILLKKWGEKDLEKGDCQEAANFLADLMRVDQMWQSNVGFLNNLDYLALKWQQ"]}}, {"location": "[1403717:1404044](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3870"], "gene": ["darA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37538"], "locus_tag": ["MAAAAKME_14900"], "product": ["Cyclic di-AMP receptor A"], "transl_table": ["11"], "translation": ["MKLIIAIVQSEYAKRLQSAFVDNNVGATKLASTGGFLREGNTTFLLGVEDEDVDGVLKLIEEHSQTREETINPGIHPGISFEQPIEPVNITVGGATVFVLPVDQSLHF"]}}, {"location": "[1404055:1404694](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.9"], "codon_start": ["1"], "db_xref": ["COG:COG0125"], "gene": ["tmk"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97R91"], "locus_tag": ["MAAAAKME_14910"], "product": ["Thymidylate kinase"], "transl_table": ["11"], "translation": ["MQGYFITFEGPDGAGKTTVINEVVKAIQGQCKREILVTREPGGSKIAEKIRDIILDPANTEMNAKTEALLYAASRSQHVSEIINPALKRGDLVMSDRFVDSSLAYQGQGRGLGIDEVAQINAFATGHLEPDLTIFLDLDPAQGLARIAKVRSGSEDRLEQEKLAFHEEVYRGYQKVNQAHPDRVKVVDASQDLPQVVAASVKLVKSTFPELF"]}}, {"location": "[1404823:1405060](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKHSDKIKQAEDEKLMALVEKLQQEISLSKGLDNTTLDMSDDNIVAGKIFRAEYAFLYDEARYRHASYTGVTNAISQ"]}}, {"location": "[1405061:1405661](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0353"], "gene": ["recR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0CB76"], "locus_tag": ["MAAAAKME_14930"], "product": ["Recombination protein RecR"], "transl_table": ["11"], "translation": ["MQYPLPIARLIDSFMKLPGIGEKTATRLAFYAMDMPKEDVDEFAQALVDVKEKLRQCSVCGNITEQDPCAICSNPVRDRSTIMVVEEAKDVMAFENMGEYDGLYHVLHGVLSPMDGIGPEQINIKSLIVRLQKNDAAKEVILALNSTPEGESTAMYISRLIKPAGLKVTRLAAGLAVGSDIEYANLITLKRAVQGRTEL"]}}, {"location": "[1405662:1405992](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0718"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A3DHB8"], "locus_tag": ["MAAAAKME_14940"], "product": ["Nucleoid-associated protein"], "transl_table": ["11"], "translation": ["MSKRPAFPGMGGMNMQQMMKQAKKLQEQMAQEQENITTQEFTGKAADDMVVATFTGDRTLKSLFIKPEAIDPDDPDMLEDLVIDAVNKGLKQIDQATQQSLGKYTKGLM"]}}, {"location": "[1406073:1407897](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "gene": ["ruvB_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00016"], "locus_tag": ["MAAAAKME_14950"], "product": ["Holliday junction ATP-dependent DNA helicase RuvB"], "transl_table": ["11"], "translation": ["MAYQALYRKWRPRTFDDVVGQEAITDTLKNSLIRGKVSHAFLFAGPRGTGKTSCAKIFAKALNCLNLQEGEPCNECSNCLAADQGAMPDIIEMDAASNNSVDEIRDLLDKVHYAPTEGKYKVYIIDEVHMLSISAFNALLKTLEEPPASVVFILATTELQKVPATIISRTQRYNFKRFSNEAMVQRMEYILGQEGVEYEDKALKVIAQVADGGMRDALSILDQLLSFEKSSVRYEDALEVTGFAAQEQVEKLLLALLNGDSQMALDLAKSAIQDGASAQNILNEIISLTVQAMLFTKTGQGEFLTDDFAQEIAQQSPDRFSQIIDQANDALGSLRFTNQQQIPLEVFLVQASQKRQNSQAGPQVASAASNPAIERQIKVLKEQVHQLTQQVQQLSQRPSQAFSPRHVFQLNQQLYTQKGGATEVAQQAAEKQQQAESLQAEITSSQEEIYAVLSQATKPGLAEARNLWDRDLPSMLEEPAKTVLGFLQPIAASDRAVLLSSQSRAWQLVTNPQEFLATLKADLDQLTKESWTIAIVDEKAWPKIRQEFIKEHASQLRAKAQPAEAQPAEEAAPEPPLPDQAPPEEAADDAIVTKAEELFGPLAQVKD"]}}, {"location": "[1408056:1408566](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.33"], "codon_start": ["1"], "db_xref": ["COG:COG0590"], "gene": ["tadA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21335"], "locus_tag": ["MAAAAKME_14960"], "product": ["tRNA-specific adenosine deaminase"], "transl_table": ["11"], "translation": ["MYSSEEKKTYMEAAFAEAEKARRQDEVPIGAVVVGPDGQIIGRGYNRRELDEDGTAHAEILAIKEACQKLDSWRLIDCNLFVTLEPCAMCAGAIINSRIKEVYFAAMDPKAGAAGSVVDLFSVEKFNHHPKVIRGLYKEQGAQLLKDFFREIRRKQKLAKKAQENCQKD"]}}, {"location": "[1408565:1409168](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.172"], "codon_start": ["1"], "db_xref": ["COG:COG2813"], "gene": ["rsmC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39406"], "locus_tag": ["MAAAAKME_14970"], "product": ["Ribosomal RNA small subunit methyltransferase C"], "transl_table": ["11"], "translation": ["MAEQYFTENPTVDHDEHHVNYHLNGINLNLTTDAGVFSKTRVDYGSGVLIEQMLDQELPGGNILDVGCGYGPIGLFAAKKWPGRQVDMVDVNERAMDLARRNAAANGAGNVNIFASDRYQEVFGQYAMIVTNPPIRAGKAIWSSILSEAKGHLTDGGILLVVIQKKQGAPSAKKLMAASLGNCEILTRDKGYYILKSVKK"]}}, {"location": "[1409169:1409700](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pyrR_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F2MMP6"], "locus_tag": ["MAAAAKME_14980"], "product": ["Bifunctional protein pyrR"], "transl_table": ["11"], "translation": ["MSKQIMDEAGIRRALTRMSYEIVERNKGTENLVLIGIKTRGWYLAQRIGDRLAKIEDSQLPVLSLDISAYRDDLSQEEKAKAIASFDTSFDLTGKTVILVDDVLYTGRTIRAALDAIMDQGRPDKIALAILIDRGHRELPIRPDFIGKNIPTAASEDVQVQVSEIDGTDAVKISEA"]}}, {"location": "[1409790:1412619](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_14990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNAFTLSCYRPDDQRVDIYYLVDDPALNDKDSLDFKKAAARRIREKNQNFKGEIYYYNLCSSAASARLAQTFGVSDAQYVNDPQAPSSFPGQFRPVCDTDQGYQEEEAPYLMGYNSSNYDLTMLAYYFTRAWQPVESGKRDRFSAVTAREMRDFNDELFIRYIGNMRLRLWQDKTMGLVAKNFQMSGRHIDVAQLNERQRRVGLKRLLGMLGWQILESDKLKPGQDYLTSPEELADLIAYNVSDVVNLKELFCHPYYQGQFILKKGLLGQYPDLIYQEDGDSYQAKIGPAFVRKDRLTIDSSSANFARRTICPYGRLKDDRAVSFLYPAASVAEKTGEKQRDILEESRDFFYKLFEDENLRKKFDRVYDYYKQFAGKNFNPSKEYREDYGDQALPVSDLSDVENEDTNLFYYQKDGQPSTCYITFSVGGLHGSEYNRDLYLKDHALWEKKQADLAYVQKLYPDPLDLRKAREVTLPDGRVEKYQTFLTAKATIKLMEQTDPADRGQFWRDFSQDEPTVFKKQGSRVRLDDRYAFTSSDLTNHEDFTSYYPNMLRRLNAFYNDRLGEDRYTAIFERKQELDKKRTDPQYSDEERRMFNIEREGTKLILNSATGAADPREGQVPSSIRMNNRIRSMRIIGQLFTYMIGQAQTYAGARIVSTNTDGLYSVLDADLNRKILAKEAAEIGVEIVPEELYLVSKDSNNRLEASPDLTKILSASGSLACRKDTSPTKSLAHPAIIDWALSRYLLEKRTDLAAPFDRDLGRQILAEAEEAFPDPAHRLRMFQNVLSANHSKERANCIFGRGDAGQLLILQRYNRVFIYQDGLPKTVHLYSAAAKKLTPAMLNKRKKSGEAVIQHDQEALSVLKANGLGNLAKGREATVQKIPNLSPDWFMHVENRAVNLLQAEEQEAILHSLDYDKYLDLVASAYEKNWRNLTTSGPVL"]}}, {"location": "[1412714:1412993](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKSKASKAYRRARRSRLLACSSGKRAFKTKFDADLFLYQEEVTFHLREINHEHWRQMPIRAYRCPYCKNYHVTSMSLERYEQLHGRTRERT"]}}, {"location": "[1413641:1413806](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKKTEKAKRNKQIGTLTDKQKYEDKILEKDARIKELELELIIAKKVAARNFWP"]}}, {"location": "[1414082:1415201](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.103"], "codon_start": ["1"], "db_xref": ["COG:COG1680"], "gene": ["fmtA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HH27"], "locus_tag": ["MAAAAKME_15020"], "product": ["Teichoic acid D-alanine hydrolase"], "transl_table": ["11"], "translation": ["MFKKGKKLIVALLVLVAALAFWPEETAPDLATAADMHVFVEKLFKKKHVTGSVAIVQNGHVQVVNYGLANAKQKVKNGASQVVYPAASMQKEVTGAMIMQLMEEKKGSSSAFSQNTKISRWYPALRNAKKISVGNLLSHTSGVQIPEVEADRHINYSEDQAVNWIVTRANQLPQDKVGSYHYSDVNYVLLAGIIKKVSHKSYAWNFKKRVVQRLGLKSTYVSSQLPKNKMLAVSYAYKHGKNYQQAATLEKTRLSQLVGAGNMLTTASDYYLIQEALGTGQFLSPSAFHKLTHLKSKINQYSGGVYLKKGEKVKLAYGAIGSAHYAAYFQLTADNKNGIILLLNQRSFGKDKVKDVGYQILKKIRFATFSKT"]}}, {"location": "[1415300:1416428](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.103"], "codon_start": ["1"], "db_xref": ["COG:COG1680"], "gene": ["fmtA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5HH27"], "locus_tag": ["MAAAAKME_15030"], "product": ["Teichoic acid D-alanine hydrolase"], "transl_table": ["11"], "translation": ["MNFKDFFLKKSAKTAGKLALAASLLLPALAPATVQAEATKSDVNRVMRDNHLAGAVLLVQNGSVKTVNYGYAWFGRRMKNGSYNVTYPAASLQKVVTGAMLVQIMNEKNHTKQQFSQYTKISRWYPKLKNARYVTVGNLLTHTSGYRTPGSESNRRKNLSENKAINWVIQKINGSWQYQTGSFNYNNSNYILLAGIIRKLTGHSYAYNFKHRIVQPLGLAHTSLRHDIPWTQSQEVSYAYLWQRKYQRPVSLPKSVASQIPGAGNMCTTPIEYYEIMLALQNGAILNQSDFKYLTHLKARKTTYSGGMYMKRDGKVKSAFGAIMDEHYGTYVQLTADNRNGIIMFVNERSQTEQQLKGLAFGLLQKIQPGTFSLN"]}}, {"location": "[1416584:1416857](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hup_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A3H0"], "locus_tag": ["MAAAAKME_15040"], "product": ["DNA-binding protein HU"], "transl_table": ["11"], "translation": ["MNKTELVSVVSEKTEFSKKESAQIVDALFASIEEALAKGEKVQLIGFGTFEVRERAARKGRNPQTGAEIEIPASKVPAFKPGKALKDAVK"]}}, {"location": "[1417215:1417392](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSLTSGPAMKSDLSDFVYPASLAVAKGECDRGIFVDGVGYGSALIANKINGIYAAVC"]}}, {"location": "[1417683:1417806](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSARKVITSVLAVGTTIAIAIDGYLLFLKADQASSAASTA"]}}, {"location": "[1418165:1418651](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAIITVTCLNQTVEAMTISFTVSVAVQGEASPNLTQAFTDACRKIYTELKRIEADFSAFLPDSLVSRFAEGDESILLDNAEFQEVYAAALLAKEETAGAFDPYFAGKFDPTGLVKGWAVKKIFASCLMPLAAFPEVTGLCINGGGDLQAWTRGDFRWEDRH"]}}, {"location": "[1418676:1418910](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLIAGGIGVVPLLSVIDGSPDLPTKVFYNAHTKESLIYEEKFYYWNSRDNFQSHCQVGRFKDEEIFPCLKTFPVSRF"]}}, {"location": "[1419073:1420072](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_10"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_15090"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MAHSCTRVDWLQPLLEAGQEQVLLGQEGCQLTKINYSVQKSPSTAYNLYQAGKLDGTILDAQPSKQLTKSKGYTIRKVANTQYLQFNLKKYSKFKSTNLRRGISMAINRSSLSKTLGATYKAATTLTSSGLTTVNGEDFTKLAASSEAKKYTSYNKQLAKQYFETGLKEEGLSKLFFTLLASDDDTSKKLAEFVQSQLETAFGDKTTVKVQSIPSKTKLNRVLAGNFECTLYGWIADYADPISFLDCETTGNSYNYGSWSNKEYDKLIAASKTSSGEAHMKLLAKAENILMVKPGGNSFNSSQQGLDDQEQGQGHYLQQCRRLLQLQVCLHR"]}}, {"location": "[1420192:1420693](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["dppE_11"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26906"], "locus_tag": ["MAAAAKME_15100"], "product": ["Dipeptide-binding protein DppE"], "transl_table": ["11"], "translation": ["MKKSKIILGGLAVMTSTLLAACGASFSKTAANQKLNWMEEAELSTIDVSKIMDDVSFNQVNQVMEGLYTLGNNAKVKNALATKATVSKDGKTWTFKIRKNAKWSNGQALTAKDFVYSWKRTVDPKTASEYSYLFSGIKNADAIVAGKKKASTLGIKPWASTSWLSA"]}}, {"location": "[1421352:1421718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0222"], "gene": ["rplL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A471"], "locus_tag": ["MAAAAKME_15110"], "product": ["50S ribosomal protein L7/L12"], "transl_table": ["11"], "translation": ["MALDTANIIEQLKGASILELNDLVHAIEEEFGVTAAAPVAAAGAAGGAEEAKSSFDVELTSAGTEKVKVIKIVKEATGASLLDAKKTVDGAPVVLKEGLSEDEANELKAKLEEVGATVTLK"]}}, {"location": "[1421770:1422280](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCB5"], "locus_tag": ["MAAAAKME_15120"], "product": ["50S ribosomal protein L10"], "transl_table": ["11"], "translation": ["MSQAIIAAKAKFVEEFAEELKSAKSIVVINYLGLTVDQVTAFRAELRESNAKMKVVKNTYLRRAAAQAGLDDLAPVFVGPSAVIYTDDEDNVTAPARIAADYAKKFDVVEIKGGALEGQVATKEQVEELAAIPGREGLLSMLLSVLQAPVRNFAYVVKAVAESKEESAE"]}}, {"location": "[1422882:1423158](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEQVKEAPAELIQTRVYELCPNKTMRRVLDEACDYRRYCWNQGLDLWNEMYKERQALKSSLASDSKKLTEEQKVLLKQSLRRVNEEFVIC"]}}, {"location": "[1423151:1424180](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISEfa4"], "locus_tag": ["MAAAAKME_15140"], "product": ["IS200/IS605 family transposase ISEfa4"], "transl_table": ["11"], "translation": ["MLVADKKYWQYTQSARILQLAISDLGKAWKNFFDKTQPSWGKPKFRSKREARQGFKSDRSKIKDGILYLEQARGSSVPKDQWRGFKLSEKPLSDEFGTVSYFKEKGRYYVAIPYKIKAEDVKLPDKTGKATAVDVNVGHFDYTGGRVNVLPKKLDRIYKKIKHYQRKLAKKQVENGEVACKIENYLKTKAKLQACYRKASNIQNDLIHKFTTELVNDYDKIVIENLSVKGMLMSHVASKGVHRSMFGKFKQILTYKCDWYGKELILANKLYPSTQRCAACGNVKKGDDKIPLYGNKKHGTKHNEYVCYNEKCPNYNKVVDRDKNAMLSLLALTEYPELNHAL"]}}, {"location": "[1424451:1424853](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSKLIDIFYFFLAGISGTLAVFSMFKDHSAASIAMDVLFLIISAYFIVRGFLDIESENKKLSKNWQILSWIAWCLLLLGVILTLTGYKLGINGLGWGGFVLFLLCSFVVPEQANDKNFHVKRRDETGFDDKN"]}}, {"location": "[1425076:1426327](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["amt"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O66515"], "locus_tag": ["MAAAAKME_15160"], "product": ["Ammonia channel"], "transl_table": ["11"], "translation": ["MNTANTVFLIIAAVLVLMMTPGLAFFYGGLVSKKNVVNTMISVFIICALAIVLFVAFGYELCFNGNVAGIFGRVQHIFLSGSDLTKVVLKEQGITAASYLLFEMMFAIITPALFVGATVGRMRFNFLLVFVFFWSVLVYYPLVHMVWGTGGLLAGWGILDFAGGTVVHINAGITALVLSIFLGPRYQKQTRPYSLPWVLLGTAILWLGWYGFNAGSAFGMNQTALTACLTSTVAAAASMMTWLLLEEAFSGKASLDGICTGTLCGLVGITPGAGYETCAGALFTGILCSLASYFFISQVKGRLSFDDPLDAFGCHGISGIVGSLTVGLFASQKVDPGISTSGLFYGGSWELLGKQAAGTLFTIVFTLLMVSLITAVLKRFINMRVSARDEEVGLDLSEHGEFADCQISASQAIFGK"]}}, {"location": "[1426423:1427428](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.53"], "codon_start": ["1"], "gene": ["arnC_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01164"], "locus_tag": ["MAAAAKME_15170"], "product": ["Undecaprenyl-phosphate 4-deoxy-4-formamido-L-arabinose transferase"], "transl_table": ["11"], "translation": ["MEKLLTLIVPCYNSAEYLNRCVDSLLPGGDRVQIILVDDGSTDETGRMLDDYQAKNLNLDLEVVHQENAGHGGAINNGLRLAKGKYVKIVDSDDWLDQEAYKEVLDYLESNPEVDLFLANYVYDKPAAGHQRVIKFPHLPVGRTFSWDEVKLRMGQYFMLHSVIYNRKVLDRAKVTLPTKVSYDDNIFVFEPMVQVQTMRYLPVNLYHYFIGRDDQSVNEKVMLKKIDQQILINKQLIVFYASQVNKRAPYAKYMKYFLEAVTGVTSVILIRGKKKEYIAKKDELWQFLKTYDLETYKSFKRRLVGHFVSRDVLPMRQMVSGAYLILQRLYSFN"]}}, {"location": "[1427590:1428286](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q99W68"], "locus_tag": ["MAAAAKME_15180"], "product": ["50S ribosomal protein L1"], "transl_table": ["11"], "translation": ["MPKHGKKYVEAAKKVDSNKLYSVEDAIKLVKETSYANFDASVEVSYNLSVDPKQADQQIRGSIVLPNGTGKSVKVIVFAEGPQAEAAKAAGADEVGADDLVEKVQNGYLDFDVVIATPMMMAKVGRLGRVLGPKGLMPNPKTGTVTMDTAKAVQNVKAGQVEYRVDRQASIHTAIGKVSFTEEQLTENFRALQNAILRAKPASAKGQYIKSCAVAATFGPGIKLDPIALMA"]}}, {"location": "[1428369:1428795](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rplK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A0F2"], "locus_tag": ["MAAAAKME_15190"], "product": ["50S ribosomal protein L11"], "transl_table": ["11"], "translation": ["MAKKVINVVKLQIPAGAATPAPPVGPALGQAGINIVGFTKDFNARTADQKGMIIPVVITVYEDRSFDFVTKTPPAPVLLKQAAGIQKASGEPNKNKVGSVTTAQVKEIAETKMKDLNAASIEAAMRMVEGTARSMGIEVKD"]}}, {"location": "[1428920:1429475](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["nusG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A096"], "locus_tag": ["MAAAAKME_15200"], "product": ["Transcription termination/antitermination protein NusG"], "transl_table": ["11"], "translation": ["MVESAKKQWYVLHTYSGFEDKVRSDLLSRAQSLGMQDYIFRVVVPQEPKIEDVRGKKEEVNEKVFPGYVLVEMVMTDESWFVVRNTPNVTGFVGSHGGGSKPSPLYEEEVRAILQMQEGEATEKVDYDYEVGESVMITEGAFNGMVGKIAEIQDDKKKIFLTIDMFGHATTAELDFDQVKKMED"]}}, {"location": "[1429566:1429737](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0690"], "gene": ["secE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D0VWU4"], "locus_tag": ["MAAAAKME_15210"], "product": ["Protein translocase subunit SecE"], "transl_table": ["11"], "translation": ["MIKFFKSVGQEMKLVHWPSAKENRRDTANVVVTSLFYAIFLGSLDWAFAKLIQLVL"]}}, {"location": "[1429743:1429893](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0267"], "gene": ["rpmG3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNR2"], "locus_tag": ["MAAAAKME_15220"], "product": ["50S ribosomal protein L33 3"], "transl_table": ["11"], "translation": ["MAVKKAALACSVCGSRNYSITANSNRTKRLELNKFCKHCGKKTLHKETR"]}}, {"location": "[1430067:1430388](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "gene": ["dxs_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00315"], "locus_tag": ["MAAAAKME_15230"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MNQHPEYLLNKIKSPADIKVLDLEEMKQLSSEIRHLIIEKDAAVGGHLSPDLGIVELTIAYHYVFDAPGDKIIWDVLPPDLPPQDADGPGLCLAGPGSLRQGDSLH"]}}, {"location": "[1430371:1430623](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG1154"], "gene": ["dxs_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KGU7"], "locus_tag": ["MAAAAKME_15240"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MTPYTNPDESPYDYYAVGHTSTSISLAAGMAKARDLLGGSERIMAIIGNGSLTGGMAYEGLNNAALEKGNLVIVINDNQWSAA"]}}, {"location": "[1430619:1431153](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG1154"], "gene": ["dxs_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P77488"], "locus_tag": ["MAAAAKME_15250"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MTTALKKLRDSQGQDPENPFKAFGFDYRYVADGNDLESMINAFSEIRYVDHPLVLHINTLKGKGYQPAIEDEEKHHWVRPFNLSDDSSKSITEGSTPAEIAIKTVASAIDGGQENIMAITAVIPGVFGLDTFKESYPDHYLDVGIAEQDSVAFAAGFAKAGGQPVLFENSTFPAAGL"]}}, {"location": "[1431118:1431805](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.2.1.7"], "codon_start": ["1"], "gene": ["dxs_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00315"], "locus_tag": ["MAAAAKME_15260"], "product": ["1-deoxy-D-xylulose-5-phosphate synthase"], "transl_table": ["11"], "translation": ["MKTPPFLQRAFDQLSHDVAANNLPVVMIVAGGGIQANSKTHVGVFDQVMVSNLPNWKYLAPTSLTEEAAMINWVLKQKDGPVAIKLPVRPVPAGGAVLEGYRHIHYQKRRAGKKIAILALGDMQELGSQVAEELNAALYNPLSANILDTDCLDHLAWHYQAVITLENNILDGGFGQKVAGYLADRPVLVKAFGEKREYTDVDQSYDQILVRNQLTAEQIVASVKQLFN"]}}, {"location": "[1431907:1432183](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLAGYPTKDLHAANFSVLSIYGSKDGNAKMLQKNPQYLPNDYTKQVIKGVNHAQFGNYGLQKGDGQATISRKAQQQATAQAVRQYLLAHDK"]}}, {"location": "[1432142:1432631](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKKQKGLLALAVILAALLLAFGLYFGNYYHADKTAQQAMKSSRTVKVKQTAEGYLFDGPAKKNAIIFYPGAKVETTAYAPLLKQIASQEADVFLVAMPLHMAFFGLNKADKIRASYHYQNWYMSGHSLGAAMAAMYSADHLKDYRGLDHAGRLPNQGPARG"]}}, {"location": "[1432830:1433046](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSEIVKTALLDRSMKEVFDWSDSDTPVRDALWDYFMESNGHNTDKTEEAMLPFMSDSDDKIIAFVNENLKK"]}}, {"location": "[1433113:1433683](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["sigI"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02064"], "locus_tag": ["MAAAAKME_15300"], "product": ["RNA polymerase sigma factor SigI"], "transl_table": ["11"], "translation": ["MGLTKERERLLISRIQKDDDEQALKELYYSCLPVIGGTIKQYFVELYDNQDWEQEALILCYKTAKRFDLKQGKPFVGFYKVSLHNRAINLIRRGKRKKRLAASDQVYWEDVATELEQASCLIASPPAPVLDWQDLVESLSMLELEELLLELGYKQAGEIKRQYQVNEMGLRRAKYRVKEKIKLKLRIGA"]}}, {"location": "[1433794:1434544](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A794"], "locus_tag": ["MAAAAKME_15310"], "product": ["Putative TrmH family tRNA/rRNA methyltransferase"], "transl_table": ["11"], "translation": ["MSSTNNDFVFGRHAGIDFLKTQDSEKINKVFLAEGVQEDFAREVYRYAKKKHLIIQRVPKNKLDKLTGGENHQGLVLAVASFEYADFDQLLDKLDQEEAPLLLMLDNIEDPHNLGSILRSADATGVSGVIIPKRRASGLTSVVAKTSTGAIDHVPVARVNNLVQTCQALKDRGYWIFGTAMEGDDYRKWNANGKTVLVIGNEGKGISPLLLKQMDQTLTIPMIGHVQSLNASVATGVLLYQAFNSRHPL"]}}, {"location": "[1434530:1434974](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.-"], "codon_start": ["1"], "db_xref": ["COG:COG1939"], "gene": ["mrnC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q81J58"], "locus_tag": ["MAAAAKME_15320"], "product": ["Mini-ribonuclease 3"], "transl_table": ["11"], "translation": ["MNKAQKLTEKKIDPNTLSGQTLAYLGDGIYEAAIRRHLIKGGMLKPQNLQRAATHYVSAKAQAGLIAKMLDTGFLTEEEETAYRRGRNAKTHTKAKNTSLATYEMSTGFEAVFGYLDLAGEEGRVKELIAWCIDEVESEGTREYVFN"]}}, {"location": "[1434966:1436391](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.16"], "codon_start": ["1"], "db_xref": ["COG:COG0215"], "gene": ["cysS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q06752"], "locus_tag": ["MAAAAKME_15330"], "product": ["Cysteine--tRNA ligase"], "transl_table": ["11"], "translation": ["MKLFNTLTRQKEEFKPLVPGQVSMYVCGPTVYNYIHIGNARSAIAFDTIRRYFEYKGYKVNYVSNFTDVDDKMINEAGAEGTTVPELAERYIQAFLEDTRALNIEEATLHPRATHEIPAIIDFIQTLIDKGYAYEADGDVYYRTKKFADYGHLSDQNIDQLEEGASQHVNDEEQGRKEDPIDFALWKGQKAADEIAWDSPWGKGRPGWHIECSVMSTKYLGDTLDIHGGGQDLEFPHHENEIAQSEAKTGKKFVNYWLHNGFVTVGKDEEKMSKSLHNCVTVHDILKNVDPQVLRFFMASVQYRSQINYSEENLEQAANILGRFKNTLEGINYRLADATEGLPDPDLAKLVTETTAKFEAAMDDDFNVQNALTAIYEALPAVNSNANAEKADKESLRLFAKKLAAWLSVFGLDVDKLLAKEAGDDDAVIEELVAQRTEARKNKDWAKSDELRDQLKEMGVVLKDTPQGTRWSRE"]}}, {"location": "[1436532:1437099](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLLTDLKNYQPFNEQEAADVKEMIYRLETGEELFLRSNLAEHFTASAWVVNPARDKALMAYHRIYDSWAWLGGHADGDQDLLHVALKEVEEESGVKANPVTDQIYSVEILTVDGHEKKGKYVPSHLHLNVTYLLEADDSLPIRPKENENKAVAWFGLDEALEKSTEPWLVDRIYSKLNAKLKDYPAR"]}}, {"location": "[1437635:1438511](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0583"], "gene": ["cysL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39647"], "locus_tag": ["MAAAAKME_15350"], "product": ["HTH-type transcriptional regulator CysL"], "transl_table": ["11"], "translation": ["MLDFRVKTFLTVCETMNFTRAADRLHVTQPAVSQHIRYLEKEYQVKLFRYQGKKLTLTAAGEKLRQAMRQMQSDERLLKAEIKQADLPPVRFGVTMTIGEYALARPLSRFLKDHPQTNVEVVCGNTQFLTKKLDEGDLDFALVEGDPARGYASLRYQSEDFIAVCSPDLFFAKEPDQIADLFDQRLLVREPGSGTRKILEDSLGAQGQELSDFKQYVQVGNMQMITQLLLANCGVSFLYRTAVSDLLKAGKLRKLSLRDFQIRHDFTFIWEKNSLYADRHQQICAELKASR"]}}, {"location": "[1438629:1439655](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P62723"], "locus_tag": ["MAAAAKME_15360"], "note": ["UPF0324 inner membrane protein YeiH"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNWIKKNLPGILVCLAIATPAWLLGKALPVIGGAVFAILFGMVITLFWEEKKGSASGIKWTSKYILQTAVVLLGFGMDLQVVVKTGRQSLPIIICTISTSLLLAWLLHKSLNIPGKISTLIGVGSSICGGSAVAATAPVIDADDDEVAQAISVIFFFNVLAAILFPIFGKLLGFDQTSGTSFGIFAGTAINDTSSVTAAAATWDSMFHLGSQTLDKAVTVKLTRTLAIIPITLALGYFTAKKEQRGNSFSLKRAFPAFILYFVLASLITTFALANGVNANVFLPLKELSKFMIVMAMAAIGLNSNIVKLVKSGAKPLLLGASCWAGITAVSLLLQRLMGLW"]}}, {"location": "[1439736:1441239](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.17"], "codon_start": ["1"], "db_xref": ["COG:COG0008"], "gene": ["gltX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97NG1"], "locus_tag": ["MAAAAKME_15370"], "product": ["Glutamate--tRNA ligase"], "transl_table": ["11"], "translation": ["MANKKIRVRYAPSPTGHLHIGNARTALFNYLFARHNKGTLVLRIEDTDTARNVEGGAESQIENLHWLGIDWDEGPDIGGDYGPYKQSERKDIYQKYIDQLLEEGKAYYSFKTEEELEAQREEQRAMGIAPHYVYEYEGMTTDEIKQAQDEARAKGLKPVVRIHIPEGVTYEWDDIVKGHLSFESDTIGGDFVIQKRDGMPTYNFAVVIDDHLMEISHVLRGDDHISNTPKQLCVYEALGWEAPVFGHMTLIINSATGKKLSKRDESVLQFIEQYRELGFLPEAMFNFITLLGWSPVGESEIFSKREFIKQFDPARLSKSPAAFDQKKLDWVNNQYMKTADRDELLDLALHNLQEAGLVEANPAPGKMEWVRQLVNMYANQMSYTKQIVDLSKIFFTEAKYLTDEEVEEIKKDEARPAIEEFKKQLDKLDNFTAKKIMGAIMATRRETGIKGRKLFMPIRIATTRSMVGPGIGEAMELMGKDTVMKHLDLTLKQLSEAGIE"]}}, {"location": "[1441384:1442221](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIGFKQTFAAMFKEKSRTTWLSLGIEAIFILLISLYFGIRYGFGSDSAGIGIGIAATVIFYVGIWYQIDVIMAAYRVNRSQTWRQVPVTAGNFLTANVLTGLVTAVIFALANLLIFVITLLPFIFGGEMRIDSQAVATFQPYVSSISNWLLYMTLFALVSFAGGICFWLLITESASVLGDFLPLKGRTSKFAKAVILLALLALLSWGSSSILGAVIRMVSNSGFDFNFVIDNTGLHTSQTDLGLPVISWLYMLAELVYVAILWAAEYFVFKKGVEAKK"]}}, {"location": "[1442220:1442529](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "gene": ["ecfA2_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A471"], "locus_tag": ["MAAAAKME_15390"], "product": ["Energy-coupling factor transporter ATP-binding protein EcfA2"], "transl_table": ["11"], "translation": ["MKEKLIIALVFSRKAKLYLLDEPFSGVDAMSRKKIIKSMLLWKPEEATLVISDHVLDEIAPVIDEVVLIKKHSVLEQRSAEEIRAEQESIEEWYEGFYEGEE"]}}, {"location": "[1442525:1442918](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["albC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71009"], "locus_tag": ["MAAAAKME_15400"], "product": ["Putative ABC transporter ATP-binding protein AlbC"], "transl_table": ["11"], "translation": ["MKTLEIKDLSYHKNSKTILERVNLTLEAGKIVALVGANGAGKTSLMRVITGLAKQYKGSVEVCGEADEDRRKQYIAMTDSLSAFRDSRKIKDVADFYRLVYPDFDDKQFADILEFMNLNEDERLGSLSRG"]}}, {"location": "[1442919:1443288](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1725"], "gene": ["ytrA_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34712"], "locus_tag": ["MAAAAKME_15410"], "product": ["HTH-type transcriptional repressor YtrA"], "transl_table": ["11"], "translation": ["MKFKDNLPIYLQIEDYIYLQIAQGKLQAGEKLPSVRALALELTVNANTVQRALREMTAKGYIFTKRGEGNFVTTDEGRLEEMKSKLLKQELAAFVSRMEKLGVERENLTGLLASYLDDTREE"]}}, {"location": "[1443683:1445270](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4166"], "gene": ["oppA_7"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P24141"], "locus_tag": ["MAAAAKME_15420"], "product": ["Oligopeptide-binding protein OppA"], "transl_table": ["11"], "translation": ["MAAGSILTAALALTACGGNSSSSSSNKKELNWEESAEIPTMDLSKATDSASFTQLINTMEGLYRAKSDGSQEKAMATSEKVSKDGKTYIFTLRKDNKWSNGDPVTAQDFVYSWRRTVDPKTASQYAYLFEGIKNATDIQNGKKKPETLGIKAVGKYKLVVTLDRRISYFNNLMAFGSFFPQNEKAVKKHGSKYGTASKYMVYNGPYVMSGWSGSNLSWKLKKNPYYWDKKKVKLVAVNYSVQKTPSTAYNLYQSNKLDAVSLDAEQSKQLKSVKGYALYPRGTTFYIQFNQAKNKYLQNANIRKALSMAINRESLTKVLGGSNTVAHTFTPAKLTTVNGKDYTSLISKSDEAYTYYNKKEAQKYLKQGMKELGVSKLSFKFLSDDTDGAKKSTEAMQSNIQETLPQVSIATQNLPFKTRLARTNALNFDMVVSDWGADFNDPISFLDLLTSTNAQNGGKWSNKEYDKLIAASTDSERWSDMSKAEGVLLKDVGISPLYSSTSAWIVRPEIKGLVNLRDHWDFKYAHVN"]}}, {"location": "[1445402:1445927](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.-"], "codon_start": ["1"], "gene": ["rppH"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00298"], "locus_tag": ["MAAAAKME_15430"], "product": ["RNA pyrophosphohydrolase"], "transl_table": ["11"], "translation": ["MYKVVQKETIKADRFTVIQEKVAKDGQIAPYSYVTIGFGISIIPFVDDDHVLLLKEYRHPVGSWQYEFPSGGIDGGEEPSQAARRELLEETGYEASELTELGFTYPSFGSTNEKITLFACRATKMAQPKREILEEIKMEIVSVDQLEDLIVKGEFAHGAGQAAWLKWRLLNERR"]}}, {"location": "[1445967:1447188](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKIVILAPISNNYINYFDAISGDKDNLYLIFAMERHRDNYPETLPENIKFVFLKIWNEEYIDYVISQTFGQQIDYVYAYSEEEIIFAAKLRKKYQVTLGQSLTSAEEFRNKLTMVKAAEQAHVAVPRYWPVDNVFDLIEAEKKLGFPFVLKPIAGMGSMDTFVVHDHVELERLAADKILRGYLAEEFIPWPLYHVDGFVKQGHFVYLISSKYFANTLEVKNGKSVGSVQISPTAAEQKLIRSYVTDLLKGMDTPENYLFHLEVFCDGREVKLCEIGSRLGGGRILQELEQGLGFSPIQELLKLDLGLPNKVDLDKEYKSAEIRGFVMVEPGRGILQKLPAADAVLAANPEVYDYYQYAKLGRTYNGAASSVEALAAISVCGKDSRTVEEKLNELDAWLKKAAVYS"]}}, {"location": "[1447184:1447379](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMESLEEKIPDLFTYEQNHPVGVQSQAAESIGDAFFLAQYTSKDAAASDMVSAKINKAFNEVCR"]}}, {"location": "[1447515:1447701](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKYFIWAYNPKVVGIRPSQGISFVVPETKTEAYLELERQRPELCLYRGWQAFWRSEDSKIG"]}}, {"location": "[1447697:1448555](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.24"], "codon_start": ["1"], "db_xref": ["COG:COG1209"], "gene": ["rmlA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0QPF9"], "locus_tag": ["MAAAAKME_15470"], "product": ["Glucose-1-phosphate thymidylyltransferase"], "transl_table": ["11"], "translation": ["MKGVIIAAGFGKRMWPATEAYSKIFHQIYDKPTVFYNLTNLIAMGITDICIVGTPEMNRQFKKLFSDSLLLKYLTFVDEQEDDVQGTATSIKKAEKFVGTDSFALFMGDCLFVDLTNSIFNDLREEFEERGVSLTITVPVKDARAFSYFDGDYIIEKGSDPTRKNAVPGFYIFKSDVFSYIDKISKSERNEYEIVSAINLMVKDKQFINAGHKYSLVWMDTGSMDGLKNASTLIALLENTTGRIIGSPYLELLKRGILSKKEVLDNIEHRSGQYAEALKKEVSQQ"]}}, {"location": "[1448570:1449638](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15480"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTYKKFVRMLRGKWQVEELPESPLLRSDDGYFTFSPFQDTEENFDSLKSASSIFVKYQPTIRKLNALDLTNPLNLNYQTTYAVQKYQRSNQIDLIKQLIEVSREKLFPQIAASEVEITYPDILHDYFAQRKFEFKLNEVETTDRYLCELDIPGKHYYIKVRMKFKTGSINVVDFVLVDYDSSDFSSQRDSIWVENLIDLLTENKRFIFDEAKYQAEKAAVAKYTNEPRDQHVIINDVRTVLKVMSLGILPAAKGINSEVKRKIRHLYFYYVYYVNNDVDELVSVVEQIGKAENYSADIFTIFTDNLRATQKNYRTAVKTVEKKNLTREVAQSSLGLPDEYYGDYLHNWHSEYDF"]}}, {"location": "[1450482:1451685](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLNERELANTVKLVTSNGISKLGDILFDYVNSVWLSKLGNGSFWMAVYQSSETIVSVFVNFIGGILSDTKQRKSIIWICDIIAGLLCIALAVFVPSIWLLYAIIAVNIALSVLSSIRDPAYKAVFGEIVRKEQIGRVNSLLESCKQTIKVAGPVLAMVIAKFVGSKMALLLDGLTFIISGLLIRQLDILFETEPPVAKQSNFSKIKDAFKYLLAEKNILIVIVFASVINFILAGYELILPFASFAFSKNAYAFFLTAESVGGLLGAVASNLIQKELSSKYLFWIIAVAGLPLAVMSSLYQVSHWLFGPIICITLFNFCISFFNIQFMTYIQTNADMTYIGRVFSIVFTAAIIFVPLGSFFFQFVMDVKDSVDYLWLGGLLTFVAGLASVIYSLNQRRAE"]}}, {"location": "[1451969:1453091](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.9"], "codon_start": ["1"], "db_xref": ["COG:COG0006"], "gene": ["pepQ_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9S6S1"], "locus_tag": ["MAAAAKME_15500"], "product": ["Xaa-Pro dipeptidase"], "transl_table": ["11"], "translation": ["MKEERKLTWEEHLAALTSYLDEKGIDLAYVAEPVDIAYLTGYSSWTEERVFALLVSRTGQALLLAPAINEGEVKQTSWADRACFYQDGENPWEKAKKRMTAWPKGFWALEARAVTLSHYRAIKEVFPEANLAADISTWLARQRMIKSPAEIEKLQAAGRLADQALDLAFALLKAGQGMSESELALELDYQLKKKGMGDLSFPLIVQAGESAASISGLPSQKGVQAGDIVIFDLGIMKDGYASDVSRTVALGEISPAKWEIYETVRLAQETAARAARPGMTAGELDQVARGVIEEAGYGQYFTHRLGHGIGMQVHEPVNLEPGSKQKLEAGMCFSIEPGIYLPGVGGVRIEDCGWLGEDGFHPFTKTRKDLLLL"]}}, {"location": "[1453354:1453765](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEALYQFTDQERALYEKTPLPLLVMQVIDGEYHALLASDEYCKMVGSDRESMLEYLNHHSFGRVYPADVVRLATFSASAVKYPQCHLTYRLSIKGEYHTLFAHSKRIKTEDGTILFLVTYFDLGNDQSQQDQGTK"]}}, {"location": "[1453775:1454177](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15520"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDLLTGMPNVSYFSKFGDDFLRKLLKQAGQVDVIYFDISSLHSYNDHFGFLQGNQLIKKCGKIIRASFQEGLTLRYVDNSILTITAPSQLKKLLPEIQKKVADFSLTRSRPSEPASTRSRKWNQPPAPSTRPT"]}}, {"location": "[1454137:1454368](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEPATSAVDKAYLTLRYMGDDRHKAYQVYNTSVKKPFEMQDYLMGHFEEARWQEPGKPALKASRFIPVLERSGLVY"]}}, {"location": "[1454536:1455154](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15540"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIQFDLMTQPVAVDQQQLKDTAANLRKQGFRICLDRYGGENNDLSTETLLEYNFDYLKVDVRSFNTNRQRAKIILASVINMSRLLKIVPVVKGVEDQAMLNFIRSLGIMLTQGRLLAKEMPEEELSQERDNFESVEERALFSGFNHINVLDPYLETRDRLDNNFENPRPNSIFIVQSQQAKLVYCNSAFRSWTGCAGMTKRSGNT"]}}, {"location": "[1455150:1455336](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQVKILDLKFDIHISAGYVYGQAQTPDEVYEMIREADRMLYQSKDNVQCPQPDQRRAFAL"]}}, {"location": "[1455431:1455935](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQKSWSVKRTAVVAVLMAMNVALSSFSIPVPGGHLYFNDVVIVAAALLLSPSEAFVVGGVGAFLGDFLFYPAPMFVSLFSHGFEALIISYFAHKFAGEQKKVILGIFIGAAVMVTGYTLGRAFIYATPAISLVKFPFECLQAAVGAGLGYNLVYHAGIEKQLQHRLR"]}}, {"location": "[1456096:1457491](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["adhE_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P33744"], "locus_tag": ["MAAAAKME_15570"], "product": ["Aldehyde-alcohol dehydrogenase"], "transl_table": ["11"], "translation": ["MPKQSTTEVEKSVQTEDKIYHNIDILVNKSHEALAQMDDFSQEDVDKLCQVIEKVGEDNARYLAQMAVDETGRGKVEDKVTKNTYAAQTIWESMKDMKTVGVIEEDKQEGLMKIAEPIGAIAGVTPVTNPTSTVIFKAMIAMKSKNTIIFGFHPQAQKCCVETAKLIKEATVAAGAPENWIQWIEHPSLTATTALMNNPKVQIVLATGGPGMVKAAYSTGKPALGVGPGNGPSYIEKTADIEQSVNDIVLSKTFDNGMICASENSVVVDKEVYDQVKEAFLMCHCYFLKADEIKLFEEHFIDPRRGTVAGPMAGKSAVKIAEMCGVTVPADTQVIVAEYSGVGPKYPLSAEKLSPVFTLYKAENSAQAFKICTDLLNYGGRGHTAGIHTQNSKVIRKFAFAMSACRILVNSPAALGGIGGVYNNMMPSLTLGTGSYGANSVSHNITAKDLLNIKTVAMRRKPIL"]}}, {"location": "[1457919:1458747](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0619"], "gene": ["ecfT_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI03"], "locus_tag": ["MAAAAKME_15580"], "product": ["Energy-coupling factor transporter transmembrane protein EcfT"], "transl_table": ["11"], "translation": ["MNDAVLGYTPGKTFVHRLSATTKLLLLIITSVACMATYDTRFLLIMCLLSLVLFKVSQVKWRQVSVVVNLIIIFAVLNLILVYVFQPSYGADLYGSKHVLLGSGFFALTAEETFYLFNLLLKYICAVPIAILFLLTTNPSQFASSLNQIGISYRFSYAFSLALRYIPDIQESYWAISHAQQARGNEISKKAKLADRAKGTVNIVMPLILSSLDRITVISTAMELRRFGSKKKRTWYTSQKLKASDWLSLGVAVLLVLLMLYFWHLNQGRFYNPFK"]}}, {"location": "[1458739:1460458](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1122"], "gene": ["ykoD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34362"], "locus_tag": ["MAAAAKME_15590"], "product": ["Putative HMP/thiamine import ATP-binding protein YkoD"], "transl_table": ["11"], "translation": ["MTSLIQFRDFSFQYDSQQESTLHNINLTIEQGEKVLLAGPSGSGKSTLGKCLNGLIPNLDKGTITGQCLIDGKDISQTGLFDLSFTTSTILQDTDAQFIGLTVGEDIAFSLENDCVPQDKMKQVVDRWAKELDLGDLLKQAPQSLSGGQKQRVALAGVLVDESPILLFDEPLANLDPASGYKTMRLIDQMQKKFGATVIIIEHRLEEVLAEEVDRIVLVDDGRILADQKPDDLLKADRLEAVGVRNPLYLDAMKTAGINLNKFEKLTPLEALPVERDAKDKLLAWQDSYQLPAEKAAVKELLTLKNVGFAYSADQKYPLKDVNAVIKEGDFISIVGQNGAGKTTLCRLICGFLQNTGEIAWQGEDMAGLSIKERADKIGYVMQDPNQMISQTMIFDEVALGLRLRKVPEDEVKERVGKVLKICGLYPFRNWPVSALSFGQKKRVTIAAILVLEPDLLILDEPTAGQDWKTYTEIMSFLQKLNAAGKTIMIITHDMHLMMEYTDRSLVFAKGRLIADTTPVALLTDEKLIEQASLRQVSLFDLAQHYGLPDPDGFARKFAAYERERLGENANE"]}}, {"location": "[1460469:1461030](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97SA4"], "locus_tag": ["MAAAAKME_15600"], "note": ["UPF0397 protein SP_0482"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKDMWKLSPKNIAALGIGSAVFVIVGRFASIPSGLPNTNFELVYAFLAMIAMIYGPTVGFGVGFIGHVLLDLMMYGQTWWNWNFAAGFLGFFIGLYALRVNIDQGEFSAKEMVIFNVVQVVANAIVWFLLGSVGDMVLNSEPAAKVFAQAGLTTLMDGLTIAVLGTILLKLYAGSRVKKGSLHKD"]}}, {"location": "[1461053:1461905](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.5.1.94"], "codon_start": ["1"], "db_xref": ["COG:COG1912"], "gene": ["salL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A4X3Q0"], "locus_tag": ["MAAAAKME_15610"], "product": ["Adenosyl-chloride synthase"], "transl_table": ["11"], "translation": ["MAYNKMLVLQTDFGLVDGAVSAMHGVAHTVASDIQVSDLTHEIPPYDIWNASYRLYQTIKYWPADTVFVSVVDPGVGSARRSIAVKTKSGHYVITPDNGTLTHIYKYEGVEAVRVIDENKNRLPHSQESNTFHGRDVYAYNGALLASGQVAFEELGEDVPVDSLVTLPVIEPRLQGDTAVGTIDVLDVRFGSLWTNIPLEMVKELSIDRGDSLLVTILHQNVAVYQEQIPFVRSFAEVNLGQPLVYINSLVNIGIALNQESFAAVHHIGIGTDWQVKISKVNK"]}}, {"location": "[1462108:1463497](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["serP1_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI87"], "locus_tag": ["MAAAAKME_15620"], "product": ["Serine permease SerP1"], "transl_table": ["11"], "translation": ["MAKKHENADGTLRSLSNRHVQMIAIGGTIGTGLFLGSGSTISATGPSVILIYAFMGVFFFFMLRALGEMFYSDPNHHTFVSFITKYLGPAAGNFAGWSYWIGLLFACMAELTAVGTYFQYWFPHAPLWLVELIFLGALTLLNLTAARLFGETEFWFAMIKIIAIISMILTGVFLVATHAKTPVGYASLASLTKNFKLAPNGTYAFFTAFPMVFFSFAGIEFVTITIGEAEDPHQVIKKAVNETLLRILIFYIGTLTVIMCVVPWWSVSASSSPFVQVFQLAGFATAASVLNFVVLTSAASALNSTIFSAGRHFFQLAQEAKKGSWLKKKFAKIAPNGVPARGIAISVLFALIAPILSFSNTAIEVFSMVAGATSDIFILVYVLALLAHRKYRKSSDFMEDGFKMPFYQVTSPLTIAFFLVIFFSLFFVKANIFGASLATAWAVFFGSFCYFHQRVKDKRAGK"]}}, {"location": "[1463604:1465383](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15630"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTRANLSLNKHGLPQKEILRHRKVPVVLAILVMAMFYIVGSILVLISNKDVETASLLHDARTYYIFQNTSMSAVMAGIFGIYLAFEGFRFLHVPRQVDYYESQPVSRKTRFIGITVNSLLIYSLLYLLFFLAGMLILAAGGANFLADGEIWRGFLADLFAFSAWYAIASLSMMITGNTFVAGLATIFFSCFEFGLIFLNSIFYSTLATTAGYDNHDWLAYTNPSTQVYNSNHWLGIGINLLWTVLYLALAYWAYQKRANEKAGRAVAFAWIEQMVKIIVVVYFAAIGGIIGYTMIGLNFACGIIGALIIGLITASLMEIIYKFDLAAWKHNFVQSLLLTVAGLAILAGMVWGAKRYDDWLPASKQVASVAISRDDGIYTNYYMGKKSAKGDASDYAAKYMYLPVNSDLINLVKAGSKFTQNRFHEREDSVQMRFVFRMKNGRVKTRVYDVDRKTLKKYFEPISKTKAYKQAYFQIYHDQMIMDNLDSVSFTYTNGKETIKRQDSQLYKDFRAAYKQDLAKWDYQQASLQKPIGQVAVSWTRANGKRAKIYYPVYSNYSQTIAFLKKNKLYSAKKVKLEYQQPLDFYLEDQFG"]}}, {"location": "[1465354:1466260](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1131"], "gene": ["ytrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34641"], "locus_tag": ["MAAAAKME_15640"], "product": ["ABC transporter ATP-binding protein YtrB"], "transl_table": ["11"], "translation": ["MIEIDALSKDYGQTEAIKNLNLTIEEDRVFGLIGTNGAGKSTLLRMIAGILRPTSGHITIDGLPVYDNPAAKKKFCFIPDDPYFFPNATAESMARDYAAVYQEFDQERFARLLADFRLEPKRRIHDYSKGMKRQLAILLGLCTNTKYLLLDEVFDGLDPVMRQSMKSLFAEDMDRRQLTPIIASHNLRELEDICDHIGFLHSGGLLLSEDLADMKLEIQKLQCVFKDDRDMEEVLGKLKLVDHSSRGRLHTLVVRGSRSEVEAVFDHVPMTFFEILPLTLEEIFIAEAEAVGYDTRKLILK"]}}, {"location": "[1466246:1466621](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1725"], "gene": ["ytrA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34712"], "locus_tag": ["MAAAAKME_15650"], "product": ["HTH-type transcriptional repressor YtrA"], "transl_table": ["11"], "translation": ["MDFIDYLDSRPIYQQIADRYRQLILTGVMLPDEQLPSVRKLAMELSTNPNTVQKAYAALEREGYVYSVKGRGNFVRANETLKSKQKEEMKGKMIDLIKEIQAVGLNSQELFAEAMEEAAEDDRD"]}}, {"location": "[1466781:1466943](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQRQKKQVDTCFSVTVHAGFEPAISSVTGRRDRPLLQWTKYSVLPSGNDPYGI"]}}, {"location": "[1466822:1466899](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15670"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[1466923:1466997](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15680"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1466997:1467073](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15690"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1467074:1467148](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15700"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[1467183:1467255](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_15710"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1467295:1467405](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_15720"], "product": ["5S ribosomal RNA"]}}, {"location": "[1467481:1470385](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_15730"], "product": ["23S ribosomal RNA"]}}, {"location": "[1470478:1470574](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[1470604:1472165](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_15750"], "product": ["16S ribosomal RNA"]}}, {"location": "[1471376:1471901](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHATLLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1472677:1473553](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPVSINLSRADFQMMDPLTELNQAMRKNGLRWSLVRVEITESALSKDVAGLKRAIHNFRQAGYEVWMDDFGSGYSSLNYLKNFEFDEIKLDMIFMKDFDEASKKILTACVKMAKDLGIHTLAEGVETKQQLDFLQSIGCERIQGFYYSKPLPTGEFAKLVAEKGIEIENWQQSKFYQCVGLVDLASDKPTCLALDDGSLFRLLYVNEEFQKEVKRAPAVFKQIVNEWNKPESEIAKRLHAFAQKVDQGEASYFDFKQTEQYLRLSAQQIARHENYQMLLINVSDITVQYLK"]}}, {"location": "[1473589:1473841](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.52"], "codon_start": ["1"], "db_xref": ["COG:COG2199"], "gene": ["dosP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76129"], "locus_tag": ["MAAAAKME_15780"], "product": ["Oxygen sensor protein DosP"], "transl_table": ["11"], "translation": ["MQEKEELKQYLIEHLDEAIEKHYLQVYYQPVIRTLTGRLCGAEALIRWIDPVKGFLSPGDFIPLFEEMNLSYKVDRYVIQEVT"]}}, {"location": "[1474092:1475040](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15790"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVPVFYSISDDFTPYAAVSLHSLVKHADPKRDYTVTFLHQGLSRDHEKALAAYNRDNVHIKFYEMSDELLKPIQDRKENYLRGDFFAMSIFYRLFIPDLFPEYDKVVYIDSDTVLNDDIAKLYDHDLGNNLLGACTDTSIQFVEKMLRYIKEVLTLDPKEYINSGMLVMNAKAFREENFVDKFFSLLGRYHFDCIATDQDYLNEICSGRIKYLDGRWDAMPNENTAALENPGLIHYNLFFKPWRFSGIQYEDYFWTNAEETIFADELKAELAKTTDEERDTEYHKMDHMLGKLDTTLQDPHNWARVKENEQVTL"]}}, {"location": "[1475149:1476526](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.-"], "codon_start": ["1"], "db_xref": ["COG:COG1066"], "gene": ["radA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37572"], "locus_tag": ["MAAAAKME_15800"], "product": ["DNA repair protein RadA"], "transl_table": ["11"], "translation": ["MARARTQYKCRSCGYISASYLGRCPNCGAWNQFEKESQEVRQTSTKATPSRLMASVGAKEAVKMSTVKAEKEERVLTKSSELNRVLGGGIVPGSLVLIGGDPGIGKSTLMLQIMSELAEKYKVLYVSGEESASQIKLRADRLGLGQSPMLLYPESNMEHIRDQIDDVKPDFVVIDSIQTMNEPSLDSMVGSASQVREVTAELMKIAKLDQVTVFVIGHVTKEGSIAGPKILEHMVDTVLYFEGDEHHAYRILHSVKNRFGAANEIGMFEMKTEGLAEVTNPSAVFLDERLPDSTGSAVVVSLEGTRPILGEIQALVTPTAFGYAKRTTSGLDYNRVSLLLAVLEKRGNLMLQNQDAYLSATGGIRLNEPAIDLAIAMAIASSYYDKEISATDCFVGEIGLTGEVRRVNQIQARVKEAGKVGFKRIFIPKYNMSPALQDLGIEVIPVSSVRQALHYLFS"]}}, {"location": "[1476525:1477080](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.1.23"], "codon_start": ["1"], "gene": ["dut"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YRG4"], "locus_tag": ["MAAAAKME_15810"], "product": ["Deoxyuridine 5'-triphosphate nucleotidohydrolase"], "transl_table": ["11"], "translation": ["MNRVRGFEVVKKYEGQGLTLPRRQTLASAGYDIEAARDITIPSIWSLNFVRIFCLIRNGHDLIESDFLQAEEVLKPILVPTGIKAYMPEDEVLILANRSSNTFKRNLSLPNGIGVIDSDYYNNPNNEGEIFVQVLNYGVRPLKIKKGERIAQGIFIKYLKTDDDQPIESQRLSGFGSTGKKGGK"]}}, {"location": "[1477186:1477474](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPEEREKVIEIKADGQLVAKSPLLLIERKSGPVWAMNQLFIAPGAPEGTLDQVMKQVEKLCQETGLKVWPLDPQVIAYCQKHGELTKIWAWKPTN"]}}, {"location": "[1477559:1478909](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.40"], "codon_start": ["1"], "db_xref": ["COG:COG3579"], "gene": ["pepC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04723"], "locus_tag": ["MAAAAKME_15830"], "product": ["Aminopeptidase C"], "transl_table": ["11"], "translation": ["MSKEISFDTIEDFTSNLSKHPAYGVAANAAQTNGIFKASQSTQSKVDLDPTFSVEIDTGSVTNQKQSGRCWMFSALNTMRHSIQKEFKLKGFELSQSYTFFWDKFEKSNFFFENVIGSADKPLGDRKVSFLFATPQSDGGQWDMLCGLIEKYGIVPKKVYPETANSENSRALDDTLNTMLRKGGLELRALVNEGKSAEEVEAHKAELLDAIFRMLATSLGLPPKSFNFEYTDDDGNYHIDKDITPQDFFKKYVGWDLENYISVINGPTADKPYNKVFSVEYLGNVVGGRQVRHLNLELSKFKDLIINQLKQGEVVWFGSDVSKGGDREAGLLDTKIYQRDQLFDYDFSMSKADRLDSGESMMNHAMVITAVDLVDDKPTKWKIENSWGDKPGFKGYFVMSDEWFDQFVYQAVLNKAFLPEDVKKAYDEGKENPIELLPWDPMGALAFDF"]}}, {"location": "[1479261:1480197](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKLFLLRGAPGSGKSSFIARHQLLPYSISGDAIRLLLANLTVYYDQKTDVLHQVIPRHVTEQTKRMKDNLVEHKMSYGETVIVDGTHIVASEIDHYKKWCEKYHYECYVVDFMQNQTLEGLLKRNQIRRQYDWVKPEVITMMYNSYKAHPELPKWVKGIKPNQMEQALQQRENNLDHYSHVIAIPDEVAEEDFPYVHISNFYFSFNDKFSEKYGTYRNVVTIGKTKEEVVDEFRLPYFAFKFHHKHFLISAYPIRNEMLDPVKKVKGTWSYTTGLYNVADFIREFPENKESHVHQFNLSNLDRTRLLYIW"]}}, {"location": "[1480309:1480771](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.59"], "codon_start": ["1"], "gene": ["fabZ_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q1CAM3"], "locus_tag": ["MAAAAKME_15850"], "product": ["3-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZ"], "transl_table": ["11"], "translation": ["MPVMTAQEVMDLIPNRYPICYIDRVEELEADKRIKAVKNVTINESFFQGHFPGNPVMPGVLIIETLAQVASILILKSPAFYKKTAYLGAIHQAKFRRIVRPGDVLEMEVKMLKVRAKTGSVAAVAKVNGDVVCETELVFIVGDRDGKDMQAKN"]}}, {"location": "[1480941:1481619](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "gene": ["gpmA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XB88"], "locus_tag": ["MAAAAKME_15860"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MAKLALLRHGESQANAANVYTGWNDVPLTDKGRRQAWAAGEKLKEVGDFHPTMIHTSLLSRAIETANIVAEAAGFLYLHVAKTWRLNERHYGALRGLDKDVSRKIFGKEQVLEWRRGCDAVPPAQGSPTIDRRYWGVDPQLLPRAESLHQTQLRLLPYYEDEVASRLVAGEDQLIVAHGSSLRALIKYLEDINNVDILKLEVPNAQAIVYDFDQELNIVDKMITN"]}}, {"location": "[1481631:1481817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNVHSWWVPYAILFFGIWDLITGITRLRRQKQGVKQKGLGGKAFVLLGILFIITGIWSFWL"]}}, {"location": "[1481818:1482004](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWDTHTFTLVLLVIVGLWEFARGYNSQRMGKKDSLPAKSYYLTGAGILAVAIYYAVKLWG"]}}, {"location": "[1482024:1482705](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.11"], "codon_start": ["1"], "db_xref": ["COG:COG0588"], "gene": ["gpmA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O51602"], "locus_tag": ["MAAAAKME_15890"], "product": ["2,3-bisphosphoglycerate-dependent phosphoglycerate mutase"], "transl_table": ["11"], "translation": ["MKTEVYLVRHGETLFNRLNKVQGWCDTPLTIKGIDDLKKTADALSQIHFDNMYSSDLKRAIDTVHLMKDANQVSKIGKIKKLPEFREVFYGSFEGGSIDDIWLGVSKAAGIPATTDVKKIIDTIGIYKFREVTKKADPLHLAESTEELETRMCRAIKVLRKETSGEGRVLLVSHGDFIKTLGIKYWKENDGLHDITFPDNGSVSQGILDEEGNFEIVDYNCKAEDL"]}}, {"location": "[1482764:1483205](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPFFVLFSAGLLLYSGRQKQPKQATKLGRIGAYFGLFVAGIYAGYFGAASGVLTLIFLTALSDSSFVVINAIKSVIGSLANLVALALFAFKGGVNCPVAFPLAIGLFIGGYFGQKMIKYLKPAWVRWITACFSVLLAIYLGWRAWG"]}}, {"location": "[1483750:1484332](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG0693"], "gene": ["yajL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46948"], "locus_tag": ["MAAAAKME_15910"], "product": ["Protein/nucleic acid deglycase 3"], "transl_table": ["11"], "translation": ["MPTAAIVFSDGCEEIEGLSQVDVLRRLGIPCDMVALDNLTITGGHDIRFTCDKLVDESLLDYDLVAFPGGAPNAKHLRASEKLAGLMKQRFAAGKWNAAMCASPIALSKYGFLKEAKWTSHPDFKEQVASENPASTYVDTPAVIDEDHKLVTSRGPATSWAFAYALAQVLGVDTSQLEDAMQYSYLRDHINEA"]}}, {"location": "[1484333:1484852](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEETLVRKAESRDLEDIVAIIKDAKALLKAQNSSQWQEGYPNRASIEEDLDNRQGWVLLKDGQVAAYMAATDFDPNYEVPIWAGSAPYWALHRFAIKKDFRGQGLIQLLLKKVIAFGQENGIKSFRLDTGKQNQAVQHLADKLGFVYRGIITVTNDSVDPERRAYELLFDK"]}}, {"location": "[1484912:1485971](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.20"], "codon_start": ["1"], "db_xref": ["COG:COG4948"], "gene": ["ykfB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34508"], "locus_tag": ["MAAAAKME_15930"], "product": ["L-Ala-D/L-Glu epimerase"], "transl_table": ["11"], "translation": ["MAEQLAIADLQVDIKQIPLKQPFVTALHRVDAVNAVRVTVRLANGVTGVGTCTPNEKVTGDSLSSARAVIEETIKPLVLGKNLTDWKELLNTVKTSIVHNAPAKAAVEIALYNTRANLFGLTLSQLLGGKGGSVETDYTISIGKAEQMIADAQKMVDQGFKTLKLKLGAGHLKRDIKLVEDLAYAAGPMVHLRLDMNQACDVRQTMQAAEYWHKQGLLIDFIEQPVPAWDLDSMAYLTRHSPYPIMADESVESYEDAQRVLAKNACDYINIKLMKTGGLSEAQKINDLAESRGVPTMVGSMIESIESLAAACAFYRANPNTIFADLDAIFMVDQDPDLNSYAECVGDNIVVR"]}}, {"location": "[1485972:1486182](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLDFKKIADILAPLPGKTALLIKDKTGVLYASPLAGEEFKSASLIKLLLLPGPPAGLKPDGPCPGRQDR"]}}, {"location": "[1486449:1487142](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRMTSDLTNVESLTINHLAEEAGTSLASVQRFCQKMGYSGFKEFKFQLLTYIKKQESQEAAVSSSEYLDDYHDAINRVWTANEKDAEELAEVLATSSTNFIFGIYYSELPARLLSMGMRDLGKSTYFGDNLAAGEHLFPLSDENSTAVFYSVSGISKLFGSSPLPKSISHFKHSYLVTMNPDTPLKKYFKKVIVLPGKNLAQGLPVDPQSIPVVFTERVIDIAATKYRR"]}}, {"location": "[1487287:1488700](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.13.-"], "codon_start": ["1"], "gene": ["pepV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P45494"], "locus_tag": ["MAAAAKME_15960"], "product": ["Beta-Ala-Xaa dipeptidase"], "transl_table": ["11"], "translation": ["MDLNFKELAEAKKDAILKDLEELIAIDSSEDLENATEEYPVGKGPVDAMTKFLSFAKRDGFDTENFANYAGRVNFGAGDKRLGIIGHMDVVPAGEGWTRDPFKMEIDEEGRIYGRGSADDKGPSLAAYYGMLLLKEAGFKPKKKIDFVLGTNEETNWVGIDYYLKHEPTPDIVFSPDAEYPIINGEQGIFTLEFSFKNDDTKGDYVLDKFKAGIATNVTPQVTRATISGPDLEAVKLAYESFLADKELDGSFEINDESADIVLIGQGAHASAPQVGKNSATFLALFLDQYAFAGRDKNFLHFLAEVEHEDFYGKKLGIFHHDDLMGDLASSPSMFDYEHAGKASLLNNVRYPQGTDPDTMIKQVMDKFSGILDVTYNGFEEPHYVPGSDPMVQTLLKVYEKQTGKPGHEVVIGGGTYGRLFERGVAFGAQPENGPMVMHAANEFMMLDDLILSIAIYAEAIYELTKDEEL"]}}, {"location": "[1488877:1489237](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["serP1_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI87"], "locus_tag": ["MAAAAKME_15970"], "product": ["Serine permease SerP1"], "transl_table": ["11"], "translation": ["MEDRSIENTDGTIRSLSNRHVQMIAIGCTIGTGLFLGAGTTISATGPSVIFIYAIMGLFFFFLLRALGEMLYFDSNSHTFVSFITRYLGEAAGRFAGWTYWIGILFACMAELTAVSTYV"]}}, {"location": "[1489291:1490266](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["serP2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RI86"], "locus_tag": ["MAAAAKME_15980"], "product": ["DL-alanine permease SerP2"], "transl_table": ["11"], "translation": ["MTLLNLTAAKLFGETEFWFAMIKIIAIISLVVTGIIMVAANAKTPVGHASLSNFTGIFSLLPKGKYAFFTAFPMVFFSFAGIEFVTITIGEAKNPKKVIKKAVNETLLRILLFYIATLAVIMCVIPWGKITSGTSPFVQFFKIAGFNAVASVFNFVVLTAAASSLNYGIFSAGRHFFQLAEEAPKDSFLKKHFAKISANGVPAAGIVISVALMLIAPIMSFSSTAIEVFGTVAGATSDMYILVYVLALLAHRKYRESSDFIVAGFKMPFYKLSSPLTIAFFLIIFFSLFFIPADVFGASLAASWALLFGAGAGSAKSIEVPIRV"]}}, {"location": "[1490435:1490561](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_15990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLKRERLDQVMNMVTEQNYISVADLAKSLQVSEMTIRRDFY"]}}, {"location": "[1490757:1492125](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.3.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG1027"], "gene": ["aspA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AC38"], "locus_tag": ["MAAAAKME_16000"], "product": ["Aspartate ammonia-lyase"], "transl_table": ["11"], "translation": ["MKAASRLEADSIGSLEVPTAAYYGVQAERASRNFEITHLKMSPVFLSNLALIKKAAASVNFKIGLLTKPQADAIKTACDEVIAGKFAADFIVDPIQGGAGTSANMNMNEVIANRANELLGGKRGTYDLVHPNDQVNMAQSTNDTIPTAGKMTTILLSEKLVASLDKLEASLRIKADEFSDVIKMGRTQLQDAVPMTLGDSFAGYASMVSRLKKRLEKATMEMHEINLGATAIGTGINASQYYEDHIAGQLSKLFGFELKQADDLFDATGNLDSFVEVSGALKACAISLSKMSNDLRLLSSGPRCGFAEINLPAKQNGSSIMPGKVNPVIPEVVSQAAFLVCGHDTTITMAAEAGQLELNAFEPVVFYQLFESFTALTGAVDTLVENCITGITANKGRCKQLKEGSVGIATVLCPYLGYQLSAKIAKRALKEKRSVRELVLENHLMSEEKLDCLLG"]}}, {"location": "[1492423:1493317](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKFFVSVAAALAIGTAFAASQVRPVAASSRQAVFTLPKGYTKANMKKAYWYSNLSKSQQKKWLKNKKNAAWLKKWRKINVKGMPANTFDQSSWSESSKDNKTIVKLTNGHLNTSQSKTLATYSLRLINQARAKLGLKKWKYSKGTQKLALEISKEYVANKKTIATGHYVPGIVRATNRVGLKLPSNYNYVEDMAGFKDGSQVTMTAMKKDIYFGLKTMMFGYRYANQSKVKQLSQYTEWEHAGDLMNTQGGKYDGDWDYYGFNVSYTNGTYSLHYIGVPAHLKWAYGGAYWGSFKA"]}}, {"location": "[1493537:1494761](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_16020"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHKNKTDKLDALYLAKLQSEYPQRLAYVQSKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLEAKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKENSAHVRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1495109:1495991](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNIKSNVLKSVFAAGLALTGVAAIGLGTNGQADAATIGDSVTVDYIDGQSIATWSNYYTATVTGSVKDGSSWKVVKTARDASGEKWYKIGKRQWIMAKYTTEASTTSNSTYNANTTSTNTANSTYNANTTSTNTANSTYNANTTSTNTANSTTGTGYTTSYSSSANNYGYGSNYNYTYSANTGAANTSSYSASTTSSSTSASTSTASASTSSSTSTSSSSSEEAAKAWIASKESGGSYTASNGNYYGKYQLSLSYLNGDTSAANQEKVANSYVQSRYGSWTAAKAFWQANGWY"]}}, {"location": "[1496259:1496335](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16040"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496366:1496442](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16050"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496472:1496548](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16060"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496578:1496654](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16070"], "note": ["tRNA-Lys(ctt)"], "product": ["tRNA-Lys"]}}, {"location": "[1496783:1497647](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.39"], "codon_start": ["1"], "db_xref": ["COG:COG0083"], "gene": ["thrB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8Y4A6"], "locus_tag": ["MAAAAKME_16080"], "product": ["Homoserine kinase"], "transl_table": ["11"], "translation": ["MKIKVPASSANLGPGFDSIGVAISLYLTIEVIGESDHWQVDHNLGDLPSGKDNMIVQAALSVKPDLTPQHLRVESDILLAHGLGSSSSAIVGGIELADQLGQLNLAPHEKIEIAAQLEGHPDNVAPTILGSLVVGCKVNGHFTAVKAPVPPFAMIAYIPAYNLKTSDARAALPKQLSFKEAVQASAVANTAVAALFAQDYEKAGELMEADLFHERYRSKLVPELEVIRNVGHEHGAVATYLSGAGPTIMSLVDPQRISDFVDAVREAGLKDEIRRLEVAPRGAFWQK"]}}, {"location": "[1497814:1499293](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.3.1"], "codon_start": ["1"], "db_xref": ["COG:COG0498"], "gene": ["thrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P23669"], "locus_tag": ["MAAAAKME_16090"], "product": ["Threonine synthase"], "transl_table": ["11"], "translation": ["MIYRSTRSQGQEVTTAQAIVQGLAPDGGLFVPKEFPAPFSAAALKEIFALPYQDMAKKILALFLTDYSAEQLAEIVKGAYGQQWDDDRIAPLTDKKAGNYYLELFHGPTLAFKDVALQCLPRLMKTALENSDEHRGIVILTATSGDTGTAAMRGFQSLAKTRVIVFYPYQGVAPIQLKQMLSENSDNTVAVAVEGNFDQAQTRVKQIFNDPDMNSLLADHDLTFSSANSMNVGRLLPQVVYYFAAYKQLLDHEAIAFGDPVNFSVPTGNFGDILAGHYAQKLGLPVGRLICASNKNNVLTDFFKTGKYDKKRDFYVTNSPSMDILVSSNLERLLFDLCQNPDTVKSLMERLNTKGEYQLPEDMQKKLSGFWADYATPEEIEGEIKRVYEESGYVIDPHTAVASLAAKRFKEEDDKPTVVLSTASPYKFPETVYHAISGQTVKEKGLPALKELTDLAGPAPKAMEAFLGHSSQEIVIPADNMANEVKRQLDLD"]}}, {"location": "[1499399:1499474](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16100"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1499475:1499549](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16110"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1499699:1499788](+)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16120"], "note": ["tRNA-Leu(aag)"], "product": ["tRNA-Leu"]}}, {"location": "[1499901:1500432](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTELNCRLATEADLAALCQFYQDICAHQKDDQFGADWHWGIYPREKDIAEAIAQKRAVVGIKDGKIASAGILTVGNDPLYSKFAWPTPAEDNEIAVLHLYGVHPSFRRQGLSSVLLTFIRDQAKKLGCKSIRLDSMDGNVPARRLYEKNGWRFVSQETVYYDDIGDCKVDLLELAL"]}}, {"location": "[1500361:1501066](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSKNRLEAFSDGVLAIIITITVLEIRAPEEASFQALKPLIPQLVIYLLSFFHMAIYWVNHHNITHALPSVNHKVIWTNMAWLFMTSLIPLATAWVGKNPLAGPPLFLYGLVLLLSSVSFLLLQHFAWQIAYDSQDLKENMGIKGCLTLAANLGIALSAFAWPILSWVFMALVMLMWFMPDQRAKEWREKMRIKNRKKSKEKIHKPGLWFFVVIRLIQAGRPCSRRCRRSRQFPG"]}}, {"location": "[1501210:1501393](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKKRVWLFILAFSLIGLLVYGAEIAYAFMKDRNKKMEYSFDEEEAEDPQEMGADYKNQE"]}}, {"location": "[1501512:1502259](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1609"], "gene": ["ccpA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46828"], "locus_tag": ["MAAAAKME_16160"], "product": ["Catabolite control protein A"], "transl_table": ["11"], "translation": ["MPSITNPFFAELVAAIEDKLEADGYKMLLCDAGQDSDKERRYLRMLEANQVDGIIAGSHNLGIEEYQRYGLPIVSFDRYLSDQVPIVTSDNYQGGCLATQALVDAGCGHVYFVGNPVKTGNPTSRRFDGYADTVAAAGLTVHTARSAFYESPAAKARELRELLTSGRKIDGVFCSDDLTAILLLKEARKLGIRVPEDLKIVGFDGTQPVPDLAGTLVKLLYERIADPEKKLAQNSYLLPVKLLRNQTV"]}}, {"location": "[1502209:1503079](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16170"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSDPQILEHDGKYYAILGAQDKEIKAGKISLYKADAVTSPWQDLGYVDLPDMGYMVECPNLVFVDGKPVFIFCPQGLDKNVTDYQNVYPNMYWVGESFDFETGHFETKQKSPINLDGGFDVYATQAFNAPDGYAYAISWVGLPDVTYPSDKEGWANCLSQVKRLALKYGRLLQKPVKAMKSLRGVEEDFTGDLAFDAGAQSELKLTIKQGQKGKLLLVADSEGKNCIKLRFKTGKHARLTVDRGECGHAGAELPAQHLGLVFAGQADQDDWGDHAQHHQSLLRGTGRGN"]}}, {"location": "[1503071:1503380](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.26"], "codon_start": ["1"], "gene": ["scrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q04937"], "locus_tag": ["MAAAAKME_16180"], "product": ["Sucrose-6-phosphate hydrolase"], "transl_table": ["11"], "translation": ["MKSWVHLTSSDLVHWENLGEAVYPDTPLDSHGAYFGSAKAISAKAIGDKDKLFLMYMGNVRDENWVRHSYQVGAWMDEEGKVTKLETPLINSPEHVTEHFRE"]}}, {"location": "[1503383:1503833](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1263"], "gene": ["bglF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P08722"], "locus_tag": ["MAAAAKME_16190"], "product": ["PTS system beta-glucoside-specific EIIBCA component"], "transl_table": ["11"], "translation": ["MHFPKWVSLVEDLSAVNDEVFSQKLMGNGAAIVPSDGNVYSPVTGTVSVAYKTGHAYGLKSDDGAEVLIHIGLNTVNLNGQHFKSLVTQGQHIEKGDKIGEVDLDAVKAAGYDTTVMVVITNSPSYNEAARVEATDVKHGDNLISLTAH"]}}, {"location": "[1504019:1505099](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.11"], "codon_start": ["1"], "db_xref": ["COG:COG0205"], "gene": ["pfkA2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L1L8"], "locus_tag": ["MAAAAKME_16200"], "product": ["ATP-dependent 6-phosphofructokinase 2"], "transl_table": ["11"], "translation": ["MTLRVGILTSGGDCQALNATMRGLSKTLYNCVDDVEIIGFKRGYYGLMHEDYVKMKPRDFSGIINEGGTILGTSRQPFKEMRVIVDGFDKVAAMKKTYKKLNLDALAVLGGNGSLKSANMLAQEGLNVIGLPKTIDNDTWGTDYTFGFQSAIDIATRYLDDIHTTAQSHSRVFVVEVMGHKVGHITLAAGLAAGSDIILLPEIPYDINVVAKKVKERQKSGKGFTVIAAAEGAISKEDATLSKKKYKAKVAARNGASVVNEIAAQLQEVLPDAEIRTAVIGHAQRGGRPDAYDRQISTRFGIEGARLIMNRSFGRLVVLKQGEVDSIALEDTAGKLKYVDPNGKTVSNARLMGVTFGDK"]}}, {"location": "[1505180:1506902](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.2.2"], "codon_start": ["1"], "gene": ["pgcA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P18159"], "locus_tag": ["MAAAAKME_16210"], "product": ["Phosphoglucomutase"], "transl_table": ["11"], "translation": ["MDAKEIFEQWKQAALPEDLAEQMAELGGDEKWIEDAFGQDINFGTAGMRGLLEPGTNRINVFTVGRVTEGLARLIDENGEEAKKRGVVISFDSRYNSRELATHAARVLGAHGIHVYLFDDLRPTPELSFAVRYLHTFAGINITASHNAKQYNGYKAYGEDGAQMGPENADRLFAYAQKVEDIFSVKAAPVKKLRAEGTLQLIGEDVDEAYLAKLETVNVNKDMIKENADKLKIVYTPLHGTGKMLYDRAFRRGGFSNVVPVPSQAIVDPEFPTCKKPNPEFRDVFNPGVELANEIGADMIVATDPDADRMGACVRTDKGDFQVLTGNQIATLMSYYLLQNLKDSGKLTPDYEIVTSIVSSALPFKIAKDFGIKTKSVLTGFKYIGEEVDRMNKEGDGKFLMGFEESYGYLFQAFARDKDAMQGALMFAEVASYYASKGMTVFDGLQEIWKKYGVAYEITRAIEMPGIGGQKKMAELMSKLREERLSEINGAKVLKIEDYQEQVTVENGEETPLTGFPKSNVLKYFLDDETWVALRPSGTEPVIKAYVGVNKADIATAEKAAESYQDAISELLK"]}}, {"location": "[1506929:1508471](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0366"], "gene": ["apu"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P38939"], "locus_tag": ["MAAAAKME_16220"], "product": ["Amylopullulanase"], "transl_table": ["11"], "translation": ["MERSQDGFGDGEITQDGRDIRIFQLTCYDRAVPQAPWYTQGVVYQIFPDCFNNGNPHGEIQGRKKDSFIYATKEDSPYYIKDEHGDIARWDFFGGNLEGIRQKIPYLKDLGVTAIYLNPIFQASSNHRYDTQDFMKIDPMLGTEEDFKNLIKDLHKNRIALILDGVFNHVGADSKYFLSAVTDKTGPYYSWFNFINYPTKYQSWWGVTTLPEVNKNNAGYQNFICGPDGVLAKWTRMHIDGWRLDVADELPMPLLREIRERLQNEDCHVLIGEVWEDASHKFVNSEFRTYMAGDNLTGTMNYPVRNFIVSLLQANNETEKVAALNDLEKLVENYPKAFLENCLNNIGTHDTARIKTVLGGDEQLVALAFGLLFLFSVPGVPYIYYGDEAGLEGDKDPDNRRYFPWGKESDFLEKEVKELAHWRRENRVLVDGKVGYVKIDYGINALVRYNQRELVIYCYNKTDQDMILDAGEFQTYCLPEKIGELVSDILDQESVAQKAYLLKTFKLDRNEKE"]}}, {"location": "[1508501:1510607](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.1.1.17"], "codon_start": ["1"], "gene": ["odcI_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P43099"], "locus_tag": ["MAAAAKME_16230"], "product": ["Inducible ornithine decarboxylase"], "transl_table": ["11"], "translation": ["MHYLKIAARKDLLPYLPKNWPIVELKENLNGAYLAAVVVRKDDSRGKGMHHFWADKLKLDLPLIVYDEKQNMIQIIDQTASQYEQEVIPKFLLDLTKFADQDDLILSTPGHHNGHFYDRHPAGAIMKSFFGPNFFKADVSDSVSELGDMMTHEGGPLKAEEEAAKAYNADKVYFCTNGTTSANTICAAAVLRRNDLVLFDRNNHKSLYNSALVMTGARPVYLPTDRNADGLIGPLVADDLDEDKIRTEIAKIDPERAQAKRPFRMAVLQLETYDGVFYNAKYIIKKLGKLCDYILFDCAWGGYEQFVNVLRDLSPMQLTYGPDDPGILVTQSIHKQQVGVSQASQILKKDSHLKGQKRYVNHKHFNHAYLKYVTTSCSYPIYSSLVVNAKMANSPACQTWWNDTVKLSIEFRRKLLRHSKLFRPLVPKTVNNQKWEDIPTDVLARDINAWKLKPTDKWHGFEKIENDEVALSPLKLTIINPGVDLATAKFTKEGIPGVILETYLHEKHIIPEKADIYSTLYLITPGETEVDMETLYTALMDFEKAYLNNEPLKQVMPQLSNAFPDRYSNYTLHDLCQEMHEYYRSNHIFDLEKQLFIKNDFQKYVMTPAKADEEFNRNNSKLVEVDNLTDEIALEGALPYPPGVFIVAPGERWHKIDIDYFKVLLTAAKKFPGFEPEVQGVYEQNGRIVAEVLDDDKVRKD"]}}, {"location": "[1510838:1512083](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["ycaM_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75835"], "locus_tag": ["MAAAAKME_16240"], "product": ["Inner membrane transporter YcaM"], "transl_table": ["11"], "translation": ["MTEENNKKNYMGWVTLSMFVYITVISFEDPFYPYQEYGLFVLVLWIIMLLFYQLPYTLIATELGFAYSGKEDGGMSSWIRHGTGSDLLGYATGWMYWAQTIPYLIDCASSVVVSISWIILGDNSLGRRMSPMVFSLITFSIILLFLIFDNTVKNALDATSLWSGIAMVAMTIIFFAMIVWSLTHGGHIATKLTWDNIRPHLSLHYFSSASMLIFAMSGAELAAPYVSRLKKPQKGFPKAMWLLFFVTALMVILETLGLAVLFDAKHIPNDFKMNGDYYAFQLLGREAGMGNSLMLAYSIVCLVSLLAQIAALIDAASRFLASDTAVKYMPRLLLKKNKNNRPINSYIFTAATTLILILLGGTLPQINDFINWLLNINTIVSPYKTSVVFLCFLILRYNKKNFKKNEFVFIRNRK"]}}, {"location": "[1512802:1513483](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNQHIKGKHLSFEERVIIQLRLKDGYSLRAIARELNCSPSTISYEVKRGTVELYHGKVKRYKATQGHDAYQAHRKNCGRKSDFLRKTQFMRYVHKHFFKDGWSLDVCSNRATAVGEFSSRDVVCTKTLYNYVDQGLLDIHNYDLPEKLKCNTKLHRIRKNKKKLGRSIEERPKEINKRNEFGHYTSVKLLLLITHFYLFICLLFHSKSDHHYYETKSKSNHIDQPT"]}}, {"location": "[1513393:1514608](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0LNN5"], "locus_tag": ["MAAAAKME_16260"], "product": ["L-lactate transporter"], "transl_table": ["11"], "translation": ["MTQKKTLFPWWIFIVCCFISMIGFGLIVNTIGLFFGPISNEFGVGRAQVALMTTFQNAAAAIALLFAGKIMAKSNLRWLLTACFALISISMMSLAFANNLLHFYLAWIIIGVCQPIAITLSIPVLLSKWFNEKLGTVMGISLGLSALGGTIFNPIIAEIIKQFGWRGGFVGEALLLGLILVPLALSIKPAPSKRFPAYGKETQIKRKNLSGLDLKQALKMPVFYALAFAMLALQFVSGSVQHISGHITNIGISPITAATVVSGVMIGAAIGKISIGYFLDRFNAKLVLLIYSLFGVIGWAGQAMLKESNLLILSAVILGLGQGVCLVALPYLIRQIFGERDYSNILSIINMIGAFAMAASVYLIGLFFDQTGSYSLGWLVNVIAFALSFIVMMVTFRVKEKTNE"]}}, {"location": "[1514741:1514996](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLhe6"], "locus_tag": ["MAAAAKME_16270"], "product": ["IS3 family transposase ISLhe6"], "transl_table": ["11"], "translation": ["MSKFNKEQKIEIYRKWKDEKISISQLSKAYKMNLANLDYMLRLIDMHGTNILNTRKRVYSKKFKEQTIEQAIFGTKSDVQLSLE"]}}, {"location": "[1515017:1516247](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0LNN5"], "locus_tag": ["MAAAAKME_16280"], "product": ["L-lactate transporter"], "transl_table": ["11"], "translation": ["MTHKKSFFPWWIFIVCCFISMIGFGLLVNTIGLFFGPISQEFNVGRANVALMMTFQNAAAAIALLFAGKIMEKVNLRWLLTACFALIAVSMLSLTFANSLVHFYLVWTIIGICQPIAITLSIPVLLSKWFNQKLGTVMGISLAFSALGGTIFNPIIAEVIKQFGWRGGFVREAMLIGLILVPLAISINPEPTTQYPAYGKVMRSSKKVALTGLSLKQALKMPVFYAVAFAMLALQFVSGSIYHISGHITNIGISPITAATVVSGVMIGSAIGKISIGYFLDKFNAKLVLAVYSLFGVIGWGGQAMFRESNLLILAAVILGSGQAVCVVALPYLIRQIFGEKDYSNILSVINMIGAFAMSASVYLIGLFFDQTGSYNLGWMINVSAVALSFIVIMITLGKKESANSDFRK"]}}, {"location": "[1516391:1517441](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLjo1"], "locus_tag": ["MAAAAKME_16290"], "product": ["IS30 family transposase ISLjo1"], "transl_table": ["11"], "translation": ["MDSLHSTMNQHIKGKHLSFEERVIIQLRLKDGYSLRAIARELNCSPSTISYEVKRGTVELYHGKVKRYKATQGHDAYQAHRKNCGRKSDFLRKTQFMRYVHKHFFKDGWSLDVCSNRATAVGAFSSRDVVCTKTLYKYVDQGLLDIHNYDLPEKLKRNTKLHRIRKNKKKLGRSIEERPKEINKRNEFGHWECDLVLGHKCKDDEVLLALSERMSREFLILRIPDKTSVSVMQAFKELQRQYSEHWNDIFKTITTDNGSEFADLSNLEKASNTLVYYAHPYTSCDKGTVERHNGLIRRFIPKGEAIANYSLQDIINIETWCNSLPRKILAYHTPDEIFERELDLIYQAA"]}}, {"location": "[1517701:1517776](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16300"], "note": ["tRNA-Thr(cgt)"], "product": ["tRNA-Thr"]}}, {"location": "[1517929:1518337](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVRAHGMIDDPAALRAMTAFIYFMKGAMLVYNGEEKGDAHHVTLFDKDPVDWNGDIDLTNLLKRMHEIKQLPIMAEGSYEAKEVRKGVLEAVHSLGEGEEEKQLIGSFNTTGKKQAIPTQLPEGIYKNLYDGSSV"]}}, {"location": "[1518399:1518921](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.99.16"], "codon_start": ["1"], "gene": ["glgE_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02124"], "locus_tag": ["MAAAAKME_16320"], "product": ["Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase"], "transl_table": ["11"], "translation": ["MEDFKRLCDDVYAKGMKIIIDCVYNHTSPDSVLAKEHPDWFYHKKDGSFGNKVGDWSDVIDLDYSHRDLWKYQAETLVMWAKYVDGFRCDVTPMVPVEFWKYAREEVAKVRPGAIWLAESGAPDFIRFLRSKGAVGGSDSELYQAFDMTYDYDIYPDLRAALLGKKDLTTWLA"]}}, {"location": "[1518872:1519163](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.99.16"], "codon_start": ["1"], "gene": ["glgE_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02124"], "locus_tag": ["MAAAAKME_16330"], "product": ["Alpha-1,4-glucan:maltose-1-phosphate maltosyltransferase"], "transl_table": ["11"], "translation": ["MASDTKIDLRKQMIYSIFVRNYSPEGNFEGVQKDLDRIKDLGTDIIWLLPIQPSGKEKRKGAWVHTTQFPTIGLSTRNTGLWRTSSACAMTFTPRG"]}}, {"location": "[1519473:1520709](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yhjX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37662"], "locus_tag": ["MAAAAKME_16340"], "product": ["putative MFS-type transporter YhjX"], "transl_table": ["11"], "translation": ["MKTNRYIVALAGIMLHLMIGSVYAWSVYTKPIVAQTGWSESSVAFAFSLAILFLGMSAAFMGRLVEKFGPTLTGTVSAILYGIGIALTGLAVQSQQLWLLYASYGVIAGLGLGAGYVTPISTIIKWFPDRRGLATGLAIMGFGFAALLTSPIAQFLMSSVGLSNTFYILGAGYFLIMIVSAQFIKRPTAEDLANFKSEDKKAVSLTGGLQMTANQALKTKTFYLLWFMLFISITCGISLVSAASPMAQELTGMSAATAAVMVGIIGLFNGFGRLVWATLSDYIGRPLTYSLIFVVDMAMFVILIFTHSPFIFAAALSLSMSCYGAGFSVIPAYLGDVFGTKELGAIHGSILTAWAAAGMVGPLLLSFTHEVLKSYYVTLAAFIILAGLGLCVSFLIKREFAKLTDLADELD"]}}, {"location": "[1520817:1520925](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMLPSKLRDLRKKHGLSQKELAEKLMTTQAKVASW"]}}, {"location": "[1520937:1521234](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16360"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPDISYIAKLAVLYDVSADYLLKDDKQEGQTIEPGEEMDRPNTKCLGRINSIYWTIVIAVYLLASIATGRWSTSWVLFILGGAIWLIGAGFHWINSTK"]}}, {"location": "[1521278:1521584](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16370"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNYMQHLKERAISAYPPKTSRRWSICIAAAVIIGLLMSHFGQAKFGASLADFALLCGIDLLGVTFVKHGVNIFLAYLLAAALCFAVSVLLTFYIMSSNNL"]}}, {"location": "[1521723:1524858](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.13"], "codon_start": ["1"], "gene": ["srmB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00967"], "locus_tag": ["MAAAAKME_16380"], "product": ["ATP-dependent RNA helicase SrmB"], "transl_table": ["11"], "translation": ["MLKDGIYEQILNQEILDQLEKIDPKDYNLEQLNADDSRQLLTIYLSQVIRSGLHYLRDSFKSGEDKAALIAQIRLANSIVDQVALHTGEANYEDLQILEQGEVLTSIYHKLTQSQKITPIRPQTSIVENALFTGSKNEPSMLSEIKKEIASSDQVDLLVSFIKWSAIRPLLGDLEAFCQKAGHQLRVIATTYTQATDYKAILTLSQLPNTTVKINYETDHARLHAKSYLFKRETGFSTAYIGSSNLSSAALTTGLEWNVKVTEQESFDIVNKFAVSFESYWNDPSFETFDPDQEDCRKKLQTELNRHKANTFHLETSIRPYNYQQEILDRMQAEREVYSHYKNLLVAATGVGKTVIAAFDFKRYLAEHPHARLLFVAHRQEILEQSLQKFREVLNDFNFGHLLVGQYKTDDVSQLFVSIQSFNSEKIADLLPSDYYDFIIIDEFHHAAAKSYQKLLSHFKPKILLGLTATPDRMEGQDILQYFDGNIAVEMLLGEAIDRQLLCPFQYFGVTDNVDYSGMKWSRGQYEVSELENVYTANDARAKLILRSLDKYSNNLEDIKGLGFCVSVKHAEFMAAAFNQAGIPSAALSGQTTQADRQQAKEDLTSGKLKFIFVVDLYNEGVDIPAVNTILFLRPTQSPTIFLQQLGRGLRLSPGKDCLTVLDFIGQANRHYNYEAKFKALTGPGHALPYEIRDGFPHLPAACYLELEPVAKKYILANLGQNTANKKGLTQRVKTFSEDTGLELNLANFLKAYDISLYDFYHASGSRSLFRLKKWAGLITDDRDVENQVYQKFSSFFHIDSKRLLDYWLAYLKMPKKASNETERLMLGMLYYSFYKKKPAQLGFKDLHEGIKDFLKEDFVKEELMEVLRYRLSQLTVLPEANEYPFTCPLEVHCHYNVNQIMAAFDYFNQDQSPEFREGVKYFADKKTDIFLINLNKSEKDFSPSTMYEDYAINAQLFHWQSQSQDRPASPKIQRYIHQGETGNLISLFVREFKKQGNYTAAYTFLGNADYVSSAGERPVSFVWHLHQAIPASLLAKANKAIAL"]}}, {"location": "[1524938:1525928](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.3.2"], "codon_start": ["1"], "db_xref": ["COG:COG1087"], "gene": ["galE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7WTB1"], "locus_tag": ["MAAAAKME_16390"], "product": ["UDP-glucose 4-epimerase"], "transl_table": ["11"], "translation": ["MKILVVGGAGYIGSHAVRRLVADGNDVVVLDSLFTGHKEAIDPKAKFYQVDLLDKDAVADVLKKEKIEAVMHFAAYSLVGESVKKPLKYYKNNVSGMISLLEAMEETGVKYLVFSSSAATYGIPEKLPITEETPLNPINPYGETKMMMEKIMHWADKANGIKSIALRYFNVAGASLDGSIGEDHHPETHLIPNIMKAALAGGGDFTIFGDDYDTKDGTNVRDYVHVVDLIDAHVLALKHLMETNQSDVFNLGTATGFSNLEILKAAIKVTGVDIPYTIGPRRGGDPDSLVADSSKARKVLGWSPKYENVDDIIASAWNWHQKHPNGFSK"]}}, {"location": "[1525980:1526331](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16400"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGCSTKVGELLKRIRSDLGLSQKQMAGMTMSVTQYSRIESGDQRIIADDLFEILTAQQVSARCFVDAMTNFDFERAADFTYVLLCQLNKGESDNAYGIKRLIYLCGYGAVLEEYEL"]}}, {"location": "[1526406:1526610](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKFLDKAKSLGSFLVIFLILQYLFSKLALNIYLSNLLAGIASSIIFDWIAPKLGIEKHHADQVKER"]}}, {"location": "[1526789:1527632](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.22.-"], "codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39043"], "locus_tag": ["MAAAAKME_16420"], "product": ["Dipeptidyl-peptidase 6"], "transl_table": ["11"], "translation": ["MYGLINQPAVFMTEDDLKSRSDELLYGWAVKATGEKEDFWYVTSHYGYKGYVPKAAVTPVSLEEIKAREVKLIRRPVIDVLAEPKVSADILLTVYKGSLLNVTDELVDGYYKVKLLYGRSGWVSKTALAKRLDEDDFLWSADLEYFLLQAKPDEESFRKQVTETAKEYLGYQYRWAGKSPLGIDCSGLVFMSYMLNGVLLWRDAEIKEAWPVHEIEFEDLRPGDLIYFPGHIAMYLGHGKYINSTGYKEHFGVAISSLRKEDPDYRADLFQMIEKCGSLF"]}}, {"location": "[1527824:1529195](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1113"], "gene": ["cycA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AAE0"], "locus_tag": ["MAAAAKME_16430"], "product": ["D-serine/D-alanine/glycine transporter"], "transl_table": ["11"], "translation": ["MEEKKTQNTYKRTLTNAHIQLIALGGTIGTGLFLGVGNSIQKAGPAVILIYIIVGLFLFILMRALGELILSDLKKHTYIEFIEKHLGKDIGKVTGYLYWLSWLILAMAETTALGIYFKSWLPNLPTWLPGVLSVAVLLLINLISARFFGNLEFAFAIIKILMIVGFVIFAAFMLLSSGSTKYGQVSFSNLYTDGFFNNGAGGFLQGFQMVIFSFIGVELIGLTAAEAKDPHKTIRSAINELPLRIILFYVLAIIGILVILPWNKVSTFSSPFVQALMGAGFKGAGNLINFVVITAAISATNSFIYSAGRLLFSVTLGGESKWSKFFGQLNHRQLPMRGLVFSALLIICAPLITMIMGDEAFSFISSMATSMFLLIWIIMTLTHLRYRQVTPKDQLHEFQLPAYPYLDYLLLAFFGAMVILLLFLESYRVPMIMALITFAVLYGFSKAFNKKKEAAK"]}}, {"location": "[1529245:1529569](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLLLLMLVSQYETHIFLDHDLAKETYPDLLDRDLTELPVADLLEISKKLIVTDYYLGVNVLFRDKKHYSLLRIESGIDADLYKLSKKSKKLVNKLLKRNGLFLVKY"]}}, {"location": "[1529765:1530122](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKTVDLAVSGTWFRAMSTYGKVMIGDEAFEFYNEKNVEDYIQIPWDQITYVVADVHFKGKYIPRFEIRTKKDGKFIFITKDPKKTLRAIRKYVPADHMRQALGVWDTIKLFFTRKKK"]}}, {"location": "[1530143:1531058](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3716"], "gene": ["manZ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P69805"], "locus_tag": ["MAAAAKME_16460"], "product": ["PTS system mannose-specific EIID component"], "transl_table": ["11"], "translation": ["MTEKKVTLSKRDRWYVMWHSQLLQGSWNYERMENGGWAYSMIPALRKLYPNKEDMAAALQRHLVFFNTQPYLASPIIGVTLALEEDKANGVEVDDEAIQGVKVGMMGPLAGVGDPVFWYTVRPILGALGASMAINGNILGPILFFILWNLIRIAFLWYTQELGYKAGAAISSDLSSGLLKKVTRGAAMMGMFVLGALIERWVRITFTLKVSEVPIQKGGYIDWNKLPSGAAGIKEALTQQADGRSLTNTKVTTLQDNLNMLVPGLAGLLLTFLCMWLLKKKVSPIVIILGIFVVGILFHVWGLM"]}}, {"location": "[1531086:1531899](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3715"], "gene": ["sorA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37082"], "locus_tag": ["MAAAAKME_16470"], "product": ["PTS system sorbose-specific EIIC component"], "transl_table": ["11"], "translation": ["MDLNAIQVILVIVVAFLAGMEGVLDEWQFHQPLVACTLIGLVTGNLTLGIMLGGSLQMIALGWANIGAAIAPDTALAAVASAIILIKGGQGTKGIGTATGLAITLAVAGLFLTMLVRTISTAIVHIMDKYAEEGNWRMISVWQWIAVCLQGLRIAIPAGLLLAIPTETVRSALAAMPAWLSDGMTIGGGMVVAVGYAMVIDMMVSREVWPFLAIGFALAGDKDLTLIALGAIGLSMALMYLALEEKVSKGSGDVAAAGTGDPLGDIIDDY"]}}, {"location": "[1531901:1532921](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.191"], "codon_start": ["1"], "gene": ["manX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XAF5"], "locus_tag": ["MAAAAKME_16480"], "product": ["PTS system mannose-specific EIIAB component"], "transl_table": ["11"], "translation": ["MVGIVLASHGGFADGIAESAQMLFGPQDNFAHVILKPSEGPEDIKGKMNEAIASFADQEEVLFLVDLWGGTPFNQANGLLDGHDKWAIVSGLNLPMVVEALTQRMINDKATAQDIATAIIKPAKDGIKTKPESLMPAEEKAAAPAAAAGAPKEAIPEGTVLGDGHIKIVGARIDSRLLHGQVVTGWIPSLHPDRVIVVSDKIAKDDLRKSMIREAAPAGTVAHTVPLEKMKEIYEDPRFGTTHAFLLFENPEDALQTIKNGVDIKTLNVGSMSYSKGKVNANNVLSMDQTDVDTFRELEKMGIKFDVRKVPSDNPENMDSILKKAQSLLDEQSSSEKRS"]}}, {"location": "[1533119:1534373](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSSLPSFDTENEPKISRSVEKFFKDYKVMELLRRCGLRKSKGFPLWSVLSYIFSNVFRDRSMYMQQKSGKCTAGFSKNTYYRFMQNPHINWLRFTILLVERIVNGHLKDLTSDQRADCFVFDDSLYSTTGYKKTELAAKVFDHVSMTYKKGFRMMTMGWTDGSSFVPIASSLLSSKNDQNVIGTTKKIDKRTIAAKRRIMAQSKGTDVVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAIVKKSSKITYEFEEKRMNVKQIFNACKKRRGRSRYLLSVPVKVGDPAKDGAQIDARIVCVRNRSNRKDWIALICTDMTIDENEIIRIYGKRWDIEVFFKTCKSFLKLGTEYHGLSYDALTAHTAFVFLRYMFMSVEKRDDEDDRTIGELFSTLSQVLSTILGNFILK"]}}, {"location": "[1534495:1535719](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_16500"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAIQLTFPEIEHLLANPRGKNYWSIVLRFPHPDIVLETKEADIIDFLKGLTGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1535971:1536169](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_16510"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MFYCMADELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYIQEAISPSLAA"]}}, {"location": "[1536471:1536561](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16520"], "note": ["tRNA-Ser(gct)"], "product": ["tRNA-Ser"]}}, {"location": "[1537305:1537644](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHKYTTHFVKEYDAICIEDLDVKGMLMSHVASKGVHRALFGRFRSYLEYKCKSAGVKLVIANRFYPSTQRCAACGNIKKDDEKITLSGNKKNGTKHNEYVCYNKNVRTTTRL"]}}, {"location": "[1538329:1539709](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1757"], "gene": ["nhaC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O07553"], "locus_tag": ["MAAAAKME_16540"], "product": ["Na(+)/H(+) antiporter NhaC"], "transl_table": ["11"], "translation": ["MNKQISFKEAVTILILMLVMLGWGVIGFGLSPQIPVLTVIALLIFWLQIRGFEWEEVMKGISQGISTAIVPIFIFLLIGTLIAVWIQAGIIPSLMVLGFHMISSHFFVPSVFLVCSLVGLAIGSGFTTVSTVGIALFGMGSTLGINPALTAGAIISGAVFGDKMSPLSDSTNLASAVAETDLFDHIKNMMWSTIPAFIGSLLFFFFLGQSNKATSLAGIAAVESSLRQNFSVSFWAALPIILMFACAWKKVPAIQTLFANIFLSVAMIFVQNPGFKMQKLATLIESGYVSNSGNKTIDALLTRGGISSMMGTVSLIIMTLALGGILMHLGIIDSAMKPLVERLKKPGRLILTTIMAGIGINLFVGEQYLSVILPANAFKPAYKRIGLDPLALSRALEDGGSVINYLIPWGVAGSFVASALGVPVLDFLPFTMFSLLSPVFSILSGFTGIGLKWEQEKVA"]}}, {"location": "[1539990:1540100](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_16550"], "product": ["5S ribosomal RNA"]}}, {"location": "[1540175:1543079](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_16560"], "product": ["23S ribosomal RNA"]}}, {"location": "[1543172:1543268](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[1543298:1544859](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_16580"], "product": ["16S ribosomal RNA"]}}, {"location": "[1544070:1544595](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1545554:1545710](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKTRLIKQLGSFSRYLSQFAYAFLAPLTLFAVLVKIDAPASIFLLCAVPV"]}}, {"location": "[1545706:1546201](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG4988"], "gene": ["cydD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29018"], "locus_tag": ["MAAAAKME_16610"], "product": ["ATP-binding/permease protein CydD"], "transl_table": ["11"], "translation": ["MIPIVIMVVMLVAKKILSRYFAIYHHLADTFLEKMQGMTTLKVYQNDSAAEQELAEESELFRQITMKVLTMQLLSTVVMDTVAYGGAACGIVIALNNALNNLRQGQVSRQGAIILILLAASYFLPMRQLGSYFHIGMKASDHIFAFLDLPEKAAGQTSLPKKWP"]}}, {"location": "[1546588:1548016](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6L4"], "locus_tag": ["MAAAAKME_16620"], "note": ["UPF0051 protein SA0778"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVEKDETLQALDQDYQYGFKDEIEPIYTTGTGLSEEVVRQISAAKKEPDWMLDFRLKAYQTYLKMPLPAFGPDLTKIDFDHLNYFRRDAKKAVRDWDEVPDKIKETFEKLGVPQAERQYLAGSSAQYESEVVYEKIKEDLARQGVLFMSTDAAVQVVPDLVKKYFGKLVKPDDNKMSALNSAVWSGGTFIYVPKGVQAKVPIQSYFRINAGNSGQFERTLIIVDEGASVNYVEGCTAPNYSADSLHAAVVEVNVLKDAYCRYTTIQNWSDNVYSLETKRAQALENATMEWVDGNLGSKVTMKYPSVYLNGRRARGTMLSIAFAGCDSNGQGIDSDTGARMVHNAPQTTSSIVSKSLCKDGGRVDYRGQVRFNPDSDGSLAHVECDTIIMDDKSASNTIPYNEVLNGNVSMEHEAKVSKISEEQLYYLMSRGISEAKATEMIVMGFLEPFTKELPMEYAVELNRLIKYQMVGSIG"]}}, {"location": "[1548016:1548457](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0822"], "gene": ["iscU"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9A1G2"], "locus_tag": ["MAAAAKME_16630"], "product": ["Iron-sulfur cluster assembly scaffold protein IscU"], "transl_table": ["11"], "translation": ["MALDDLKQVYQAVLLDYAASQKYRQPLASPTKAVSLVNESCGDRLTLQVKVKEGKIEQVACLAEGCTISQASAAIMAGLVDQAPLEKAAGLLPIFWRMLEGKEISQEEEKELGDAALLQGVSRFPARVKCAGLAWQGLSEAIERKN"]}}, {"location": "[1548443:1549658](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.8.1.7"], "codon_start": ["1"], "db_xref": ["COG:COG0520"], "gene": ["sufS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32164"], "locus_tag": ["MAAAAKME_16640"], "product": ["Cysteine desulfurase SufS"], "transl_table": ["11"], "translation": ["MDKNWNKLRQDFPILAEKMNGEPLVYLDNAATSQKPKSVIEAITAFYQKENANIYRGTYALSAKATEAYEGVRQKAADFIGGEASEIVFTKGTTSAINLAAFGYFLRHLKAGDEIALTAAEHHSNLVPWQQVAALTGAKLVFLPLDKKGRVDLKEAEKVMSDRLRLLALAQVNNVLGTEQPVKELAALAKKRGALVLVDGAQAAGHLPVAVKKLGADFYAFSAHKMLGQTGTGVLYGRKELLDQTQPLEFGGEMIREVSKTTATFKPAPQKFEAGSQNVSGVVALGAAIDYLNAIGLDAIKDRETELGQAMAEGLRKAGARVYGQGGGIASFNLPGVHPHDLATALDAQGIAIRAGQHCAQPMMDWLGVKAVARASAAFYNNEADVEALIKGVQAAKEFFNGTR"]}}, {"location": "[1549638:1550802](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q7A6L4"], "locus_tag": ["MAAAAKME_16650"], "note": ["UPF0051 protein SA0778"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTAQAWFAKMQAEAAAALPDLPRPDFAKVDYRAWPLSLTRPLQKRAAFSIEAGAEFWAKGCVACDWETALAEHGDLLEKYFGRAANFKENRLLGENVAKMEQGLFVYVPDNVALAEPLTVTYLQDSQKQEDFALHVLLVAGKNAAFSYFEKVASRGDKEATANLVVEICALAGSQVKYAAIDRLGKNTTAYLKRVAWVGRDAKLDWAMGMLSDGKILADYDSDLYGQGARAEMNVIAITIGDQVQGLNTVVNNYGKKSDGRILQHGVILQKSCLVFNGIGHVMKGAKGANAQQENRVLMLSRSARGDANPILLIDDNDVFAGHAASVGRVDDQQLYYLMSRGLPKPLAERLVIRGFLGPVLTKIPEASRQPLFEMVERKLIDGQELE"]}}, {"location": "[1550811:1551591](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0396"], "gene": ["sufC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80866"], "locus_tag": ["MAAAAKME_16660"], "product": ["Vegetative protein 296"], "transl_table": ["11"], "translation": ["MSELAITDLHVEIAGKEILKGVNLQLKTGEIHAIMGPNGTGKSTLSEAIMGNPAYKVTQGSVKLDGQELLDLPVDDRARAGLFLAMQYPAEIPGVSNAEFIRGALNARRPEGDPVPAREFLQELYEKMDFLDMKVEMAQRYLNHGFSGGEKKRNEILQMLMIKPKFAILDEIDSGLDIDALKVVSKGVNDLRGPGFGALMITHYQRLLDYVVPDKVHVMMGGRVVAEGGPDLAKRLEKEGYTKLRDELGLDIELTDEDV"]}}, {"location": "[1551777:1552299](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2153"], "gene": ["elaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AEH3"], "locus_tag": ["MAAAAKME_16670"], "product": ["Protein ElaA"], "transl_table": ["11"], "translation": ["MTKHNQLVMERILSSTVKKRQKNDFSKEIQVKHFNELSAREVFCLSRIRDDVFVAEQEITVPELDDQDLSAYHVFILNEDQSNALAAARFFSEEGRFYIGRVAVQKTARHRGIASQLLGAIENYVLANSLTKELYLHAQANARDFYLANGYHDVGPVFMEAGIPHQMMAKSLA"]}}, {"location": "[1552472:1552961](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2190"], "gene": ["crr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A283"], "locus_tag": ["MAAAAKME_16680"], "product": ["PTS system glucose-specific EIIA component"], "transl_table": ["11"], "translation": ["MLNFFKKSKSKGNEVKAPIKGNLIPLSEVSDDVFSQKMLGDGFAVKPTGQEVVAPVSGTITTLFPTKHAIVIKTAEGLEVLIHLGIDTVELKGEPFKLFAEQGDSVKAGDKLAEMDIADVADHGLDNTVMVVYTNMDLLKEVKDVDPRPVEAGDDAQEIAFN"]}}, {"location": "[1552966:1553452](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNWLDRLTKSARLTPKRILKIYTFVLFFAPMAYLLLLQLRAGAAKQTITDFIAASPATTVSIIVAAGDFLLGYLCWIDGGALLADRRQYMKFMKLQLWTQLIVGNWFCLLFAIFALRRGEDLPEESKVKPSQLLSLTYLIASLFVICFVFYVVLAFRAVKG"]}}, {"location": "[1553466:1553643](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTTIKESRLASLSDYSLFFQPSLFHESNSTKNWAFSPAYTMIDLLINGYCEWLRKDDE"]}}, {"location": "[1553602:1553794](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.2.1.122"], "codon_start": ["1"], "gene": ["simA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q03C44"], "locus_tag": ["MAAAAKME_16710"], "product": ["6-phospho-alpha-glucosidase 1"], "transl_table": ["11"], "translation": ["MSDKKFSVVIAGGGSTFTPGFVISLCANQDKLPLRKLKLYDIDADRQKKIGDDHQGEPAGQSV"]}}, {"location": "[1554058:1554226](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGFWIMLLSGLIGLALVIYAFKKELPKGQKIAFWLIGAALLVFAVALALPNGLQL"]}}, {"location": "[1554228:1554909](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["lolD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O66646"], "locus_tag": ["MAAAAKME_16730"], "product": ["Lipoprotein-releasing system ATP-binding protein LolD"], "transl_table": ["11"], "translation": ["MYSVRITELEKEFKNGRKIFSGLNLELEESSLTALVGASGEGKTTLLNVIGLLDTDYSGQVELFGQKVNELNQTEMARLRNQQIGFILQEPLLIKNMSVRDNILLPTVYLDKSLRKSKDYYLARAEQFADQLGVSQVFDQKPATLSGGQKQRVTAIRALINDPQLILADEPTGSLDEENAKIIMDLLKKLSREGKTVFTVTHDSHIASQHDRVLQLKNGNITVKEN"]}}, {"location": "[1554908:1556144](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYFEFIRNVFLKKLVLTLLTLLCLISFGFISYHLLRSNLYVLNNERSLQTLVKRKVYVGNDQSTGKQFSQNFKQKNLAKTNAHARKVFAYLDKNYHYSLRWSFDSNLNNGDSVSIDTVNSNFFKFYLLHIAAGRSFNSADYKSSSYYIPVLVGANVAKSQPLGSKFTAVNSSSGKKEYYQVVGVLQQNANVPSVYLLDNQNYLNNTIIRPLRRADKMNLTAAQLLAAAQDLIIFDSSRTELNKLTSKFNQGDFFKIRFISVEKNISDFYDSYRGTAIMFAIFSLAIMVIAVLIIVWNTWNCLSEEQSEIALRISLGMRQKDVLSAAIIYQLLIDILAIVPVLLYAGSYSKMLADSSVGSSSQIVLNGLLPRAETVSLLISFILMLLITVLAIALVAAHFNRKTLALRMGDE"]}}, {"location": "[1556155:1556632](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKLTRNPFSFLALIGLLLVEYLNFLYLAIFSLVSQKAANARVNWAIKNLLEDSASSFSILAFASIASLLVIYHLCKKGQKERRIRIIVGSTCREQYSVGEVMIFLADLLTFALAFFGMRYLTGQNEGGALREFVLASMLHTVVLLLWWPLLVKVIDR"]}}, {"location": "[1556631:1557000](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSKKKMTTLFFTMLTALALVPTATVLAGTTKFGTAHRGAWSTETMQIHYSGGVFFYPHYATHTHVGYAKYTRNGKTVASKWTTYVKNNSKYSSKTKIEANVSCWDTLNPTAPKTKFHYGFN"]}}, {"location": "[1557165:1557627](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0691"], "gene": ["smpB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32230"], "locus_tag": ["MAAAAKME_16770"], "product": ["SsrA-binding protein"], "transl_table": ["11"], "translation": ["MKQKAKDENVLAQNRQARHDYFIKDTYEAGIALTGTEIKSVRARHVTLRDGYVQIINGSAFLENVHIDEYKEGNRYNHDPLRSRRLLLHKKEIAKLADVKAQKGMTIVPLKVYLKHGFAKVLIGVAQGKKEYDKRETIKKRDQDRELRRKYRI"]}}, {"location": "[1557649:1560019](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.13.1"], "codon_start": ["1"], "db_xref": ["COG:COG0557"], "gene": ["rnr"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32231"], "locus_tag": ["MAAAAKME_16780"], "product": ["Ribonuclease R"], "transl_table": ["11"], "translation": ["MAQNETVLAGVLEIFRHNPQKQFSVDQIERQARRDRLGNFTDLVKALAYLEQEKQIITDGNGRYQLAKENTEVEGVFRANDKGFGFVRLDDEEADDVFINSDATKLALDGDRVKVKITAGGNPWNGKGPEGQVEEILERGASSIVGEYTPLEDLQVKISHFAGYVIPTNKKFKKYRVYVSENGLIPQMGDMVKVSLKTYPTEDLPDQMTGAVVEIIGNKNDPGVDIMSIVAEHDIRTEWPEDALEQANAIPDHVTEEERHEAGRRDITDQPAVTIDGDDSKDFDDAVVLWKLDNGNYHLGVHIADVAHYVKEGTPLDREAFARGNSTYLVDRVIPMLPFRLSNGICSLNEGVDRLVLSCDMEITPEGERVSYDIYPAVMRSHGRLTYNKVNQALRADVPDSDLEDKYVKVRPMLKDMAALHEILYKQRHARGSIDFEEPEAKIIVDEKGKPVDIVLHSRGTAEKMIESFMLLANETVAEAYYRKKVPFLYRVHETPEADRISRFFEFCSAFGLNVKADPNDIKPLDLQKVVTKTLGTSEESVVQMMMLRSLKQAHYSEDPLGHFGIAAKYYTHFTSPIRRYSDTMVHRMIHAYLEEGMGDDVKEHFKEELSEAADQTSMQERRSIDTERATNDLKMTEYMADQVGNKFEAVVSSVTSFGMFVQLENTVEGLIHISNLKDDYYSYDEKSMTLTGRTTHKKYKVGMPIKVVLTNANVEQHQLDFEVYDPDAKKRPHNDRGMGRRSGDRNFKGRSNYGGRDKSGERRHKPSRSNRGQRLGQSEKGNRRRPNR"]}}, {"location": "[1560085:1560319](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1314"], "gene": ["secG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32233"], "locus_tag": ["MAAAAKME_16790"], "product": ["putative protein-export membrane protein SecG"], "transl_table": ["11"], "translation": ["MYNFIMTLLIIVSVLIIIATMMQPQKQQDALNALSGGAVFSGQTKKRGFEAFMEKVTSVLLVLFFAFSIILAILSSK"]}}, {"location": "[1560373:1562446](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1368"], "gene": ["ltaS1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q797B3"], "locus_tag": ["MAAAAKME_16800"], "product": ["Lipoteichoic acid synthase 1"], "transl_table": ["11"], "translation": ["MQKIKAFGTWLRTSKNGFFTLAVFGYWLKCYLIYLTKFTLGATGPMQGFLLLINPIPSGMLILGLGMLMKGRKSYWTMLVLDFLLATWLFANILYYREFSNFLSFSLLQNSGSASENLGKSIAGILKGSDFLAFVDPLILLGLLLGKFFKMDLYAQSWKRKVAIELTALLLMGGNLLLAQKDRSGLLTRTFDNNYIVKYLGINEYALYDGIKTAQTNAQMANAKVSDLSSVKKYLKANYVQPNSAYTGVAKGKNVIVIHLESFQQFLIGYKWKGKEVTPNLNKIYHSKHTLAFDNFFNQVGQGKTSDAELMLENSLFGVQSGSAMSTYGTSNTFESMPAILKQKGGYTSAVMHGGTGSFWNRNNAYKSFGYDYFASLNYYQYQNSWYLGYGLKDKIFFQQSAKYISELPQPFYLKMITVTNHYPYTLDKQNQSIKKTTTGDNTVDGYVQTAHYLDQAIGEFMTWLKKTGLDKKTLLVFYGDHYGISNNHNEAMAQLTGKKNYGEFDDQQQQRVPLMFYSSNLKGGIKHTYGGEIDVMPTLLNLLGIKSKGLILFGHDLLSKKNPQVVAQRNGNFITPTYTKVGSSYYYTRTGKKVTGTKEKKACRLIANQVLTQLTLSDRVVTGNLLRFYHPSWFTPVKTSDYDYNKTDSLKKLAEAGKSKTSLKSQLGKKDASSLYKTDAPELKKTKTK"]}}, {"location": "[1562464:1563478](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_16810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKKNLWGFLIVLLISSLVLYFDLRATPMATLKAAAGQIIPWRLVLVFLAMALSYVCEALILRLLAKRPGTAKRSFWSYLRIPLIQALFNGITPMATGGQPSQLAAMVEMGMAGGRATSILMMKFICYQLVVLFAYLTAFIFGFHFVAGKFSALAIFIFLGFALHVFSIILLLLAMFAHNWTVKAVKKVMKLLGRIFGQERAQAWEKSTLEQVESFYKESQALKAEKKKLWGVVLLTVGQLLCYYSAPYLALRALGQPVDYVQVTLMTILIIMFMAVIPLPGGSGGAEFSFQTLFASFISQPGVVVLAMFLWRFATYFFGMILGIFGWSFKPAKLRD"]}}, {"location": "[1563470:1564520](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["cpoA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DPV9"], "locus_tag": ["MAAAAKME_16820"], "product": ["Alpha-galactosylglucosyldiacylglycerol synthase"], "transl_table": ["11"], "translation": ["MIRINMFSQADSVAGQGVGAAYLELIRLLRTHLVDDFYVTINKYGRSDLTHYHTINPTYFANSFSPARGRKIGYVHFLPDTLERSIKLPGVAKKVFYQYVIDFYKRMDQIVVVNPIFIDKLTEYGLDRNKIRYIPNFVAKSEFYEQTQAKKNATRQELGIPQDKFVVFGDGQVQARKGVDDFAKLAEANPDYQFIWAGGFSFGKITDGYDHFKQLVENPPKNLTFTGIIDREKLVDYLNMADLFLLPSFDELFPMSVLEAFSCGTPVLLRDLDLYRAIIDGYYLAGKDSAEINEQLRFAATHPEVLARQQELSRKASQQYSEDHLAEIWRDFYQEQYQLGRELGQISYE"]}}, {"location": "[1564512:1565682](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.337"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8CWR6"], "locus_tag": ["MAAAAKME_16830"], "product": ["Alpha-monoglucosyldiacylglycerol synthase"], "transl_table": ["11"], "translation": ["MNIGLFTDTYFPQNSGVATSIKTLKEALEAQGHNVFIFTTTDPNVDKDTVEANIFRFSSVPFIGFSERRIAFRGLFEAVKVAKEVNLDIVHTQTEFSMGLIGKYVARQLGIPAIHTYHTMYENYLHYVLNGHLLRPVHVQQFTKSYLKNMDGVIAPSQRVADLLARYGVEIPMRVIPTGVDLDAISGPDKADLREKLGIAPDAQVIITLGRVAAEKKIDRILQVMPDLLTEFPNLVFVIAGDGPDVDVLKAQVERLTLEDHVIFAGNIPHDQVASYYKMADFFVSASDTETQGLTYIEALGSGRKCVVYKTDYTDQVFNDPAYGLTFESLRQMKEEIAAYLRQGRQEIPPQLLAKKLEEISASHFASEVCKFYQYAIDNYQVKKEDSND"]}}, {"location": "[1565833:1565918](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16840"], "note": ["tRNA-Leu(caa)"], "product": ["tRNA-Leu"]}}, {"location": "[1565934:1566021](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16850"], "note": ["tRNA-Leu(caa)"], "product": ["tRNA-Leu"]}}, {"location": "[1566048:1566119](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16860"], "note": ["tRNA-Cys(gca)"], "product": ["tRNA-Cys"]}}, {"location": "[1566147:1566221](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16870"], "note": ["tRNA-His(gtg)"], "product": ["tRNA-His"]}}, {"location": "[1566233:1566306](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16880"], "note": ["tRNA-Trp(cca)"], "product": ["tRNA-Trp"]}}, {"location": "[1566308:1566392](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16890"], "note": ["tRNA-Tyr(gta)"], "product": ["tRNA-Tyr"]}}, {"location": "[1566398:1566473](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16900"], "note": ["tRNA-Phe(gaa)"], "product": ["tRNA-Phe"]}}, {"location": "[1566477:1566553](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16910"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[1566554:1566630](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16920"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1566638:1566726](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16930"], "note": ["tRNA-Ser(tga)"], "product": ["tRNA-Ser"]}}, {"location": "[1566768:1566840](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16940"], "note": ["tRNA-Glu(ttc)"], "product": ["tRNA-Glu"]}}, {"location": "[1567099:1567189](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16950"], "note": ["tRNA-Ser(gct)"], "product": ["tRNA-Ser"]}}, {"location": "[1567190:1567266](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16960"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1567268:1567339](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16970"], "note": ["tRNA-Gly(tcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1567352:1567427](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16980"], "note": ["tRNA-Phe(gaa)"], "product": ["tRNA-Phe"]}}, {"location": "[1567442:1567518](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_16990"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1567527:1567603](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17000"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1567613:1567689](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17010"], "note": ["tRNA-Met(cat)"], "product": ["tRNA-Met"]}}, {"location": "[1567724:1567798](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17020"], "note": ["tRNA-Pro(tgg)"], "product": ["tRNA-Pro"]}}, {"location": "[1567803:1567879](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17030"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[1567882:1567970](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17040"], "note": ["tRNA-Leu(taa)"], "product": ["tRNA-Leu"]}}, {"location": "[1567984:1568056](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17050"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1568059:1568134](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17060"], "note": ["tRNA-Thr(tgt)"], "product": ["tRNA-Thr"]}}, {"location": "[1568143:1568227](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17070"], "note": ["tRNA-Leu(tag)"], "product": ["tRNA-Leu"]}}, {"location": "[1568238:1568311](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17080"], "note": ["tRNA-Lys(ttt)"], "product": ["tRNA-Lys"]}}, {"location": "[1568311:1568387](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17090"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1568543:1568738](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17100"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MILAGWQSVLVVSLSYIPGLIVYYQGVREQGRKLNKNEKITFIFIAILCVLSIVLIANKKINIM"]}}, {"location": "[1568734:1569130](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["arcD1_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNI5"], "locus_tag": ["MAAAAKME_17110"], "product": ["Arginine/ornithine antiporter ArcD1"], "transl_table": ["11"], "translation": ["MIVGDWGMMIINIGLIISTIVSWLSWTMLPAETMLLIAEDGAAPKFWGKLNSKKAPTNALFTTAILQTIFLFSLLFTDKAYEFCYTLASSAILFSYLFVGLYQMKFSREHNTRNGLNGSTAYWQPSSNSCA"]}}, {"location": "[1569140:1569650](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17120"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLMSAIGTFIPVFKGGSNLPSIIVAIIFCWALTFLVNNGVESASFVNTIGTFCKVVPLIMFVIICIVSFKGGMFTADFWGRVANNLSKGTTTGGLWPQMKGTLMTLIWVFIGVEGASVMGSRAKSLNEAQQATIAWFRPAFGLLHDDFNPAMRLTYPGPIGQRCTTSFG"]}}, {"location": "[1569674:1569977](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0531"], "gene": ["arcD1_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A2RNI5"], "locus_tag": ["MAAAAKME_17130"], "product": ["Arginine/ornithine antiporter ArcD1"], "transl_table": ["11"], "translation": ["MEEKVNKNGIGLVGLTALIVSSSIGTGIFVITSSIAQSAAPGPAILSWLLVGFGFLMLVLSLNNLTEKRSDLKGDIFAYTGAGYGPLGEFISGWAYWLSA"]}}, {"location": "[1570257:1570437](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLDEDSTKGVIVIESVNADQAQRANEAMSDLKELLGEFFGIKRDKSVILPKDAPSVDVD"]}}, {"location": "[1570515:1571340](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.2"], "codon_start": ["1"], "gene": ["ade_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01518"], "locus_tag": ["MAAAAKME_17150"], "product": ["Adenine deaminase"], "transl_table": ["11"], "translation": ["MQEALRHTPEYGQGLDVWIEGWGFDESKLAEHRSPTRDDLDQVSTTQPIFLYRSDCHSSVGNSRALELAVIDEHTPDPAGGKIEKDASGRPTGFMREVAVRIEHASLLSDSMLKELKGPTIGLAVSTQPIFFFAEEDFYRQFLSADQLKMAYRIKSLDKENILFSLSSDAPCTPWAEPDSPFYGIYAAVTRHTAAGGFINEDEGIPVVRAILAYTRDAAKMGGFVNNGTLTPGKDADFVILDRDIFSQKAEDLAKVKPASTWIGGEKVWSQEKK"]}}, {"location": "[1571445:1571589](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNCRTFVNGKIFTGENETAFTDSITVEDGKIVAIGEKGWGEIIDLQG"]}}, {"location": "[1571970:1573194](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_17170"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHKNKTDKLDALYLAKLQSEYPQRLAYVQSKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLEAKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHVRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1573407:1573517](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_17180"], "product": ["5S ribosomal RNA"]}}, {"location": "[1573593:1576497](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_17190"], "product": ["23S ribosomal RNA"]}}, {"location": "[1576626:1576699](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17200"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[1576767:1576843](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_17210"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1576832:1576925](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNDKNLGL"]}}, {"location": "[1576955:1578516](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_17230"], "product": ["16S ribosomal RNA"]}}, {"location": "[1577727:1578252](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVRLYPTN"]}}, {"location": "[1579096:1579963](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rsiV"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05403"], "locus_tag": ["MAAAAKME_17250"], "product": ["Anti-sigma-V factor RsiV"], "transl_table": ["11"], "translation": ["MKNTDLMDAMGGIKTEYIVEAAASRGQKKVIPLSAKRKPWVRLVAGIAAAAAFSVALPNTSPQVANAMQNLLVVGNYFKLVTFRDYHYESRKHSADISVDKVAVSGVTGPATKEAKKSSQAVNREIVQETDRLTKKFKASLKKGGYGSLTVKTKQVTNNRYWYVVKLTAVQTQADSGESSRYYVFSKASGKQVKLGDLFKSGSNYQKAISQNIIKQMKQEMKADKNKSYFLKENGNPDGFSQIKKKQQFYINKKNQVVIVFNQGEVGPMSMGSQSFVLPNKLVAKLQR"]}}, {"location": "[1579976:1580540](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRETEIIGQFFARDEAALTSVQSEYGAYCSTIARNILRDKEDVEECLNDTWLKAWNTIPPKRPQSLLAYLGRVTRNGALNMVRDQNRQKRAGDQYTTSLDEIGELSGAVQGPAELEGIESSALTEIINDFLAGLPKEKRIIFVQRYFYMDAVSDIAAANGMTVSAVKVSLLRMRRKLGKKLQEEKYI"]}}, {"location": "[1580697:1582005](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.1.1.11"], "codon_start": ["1"], "gene": ["serS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99178"], "locus_tag": ["MAAAAKME_17270"], "product": ["Serine--tRNA ligase"], "transl_table": ["11"], "translation": ["MLDIKVIRENLDWAKEKLATRGIKPEQLDELVAIDAKRREAMVKCENLKAERNEVSKKIAAAKREKADASEAIANMREVGVKIKELDQEVDELQEKQEYILLRLPNFPADSDPIGPDESYNEEVRRWNEPTKFDYQPKAHWDLGTDLNILDWDAASKVSAARFVYYKGAGALLERAVYNFFLDENTSEGYTEVITPSLVNNDSMQGTGQFPKFTEDVYTIVDNDDPEVARNLTLIPTAEVPLVNYFRGDIIDGKNLPINVTALSPAFRSEAGSAGRDTRGLIRMHEFRKVEMVKVVKPEDSWKELENLTHNAEHLLQKLGLPYRVVALSTGDASFTSAKTYDLEVWMPAQDTYREISSCSNCTDFQARRAQIRYRDEDGKVKLTHTLNGSGLAVGRTVAAILENYQNEDGTVTVPEALRPYMHGMTKITPEVKWH"]}}, {"location": "[1582248:1582743](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MESERIYLRPVGPEDAELLLSWGQDPYYQETAGFAHYRNLPEAEEGALAYQQRPASYMICLKKGQAIGLLELYPRDGQSRELGFLLDKKYQGQGYMTESINCLLGEAFKDPEIKEIWAGCRANNLRPQHLLQKLGFRQMYEVDYRQIPPFLDFSAKYYLLKRSE"]}}, {"location": "[1582742:1583336](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSYEQSRKLINRLTIISTIVIIGLCIYWYQLGIFTSQAKMSAYLADKKILGPIIFVLIQIIQVVIPIIPGGVSLLAGVVFFGAGPGFIYNYIGIVIGSLINFFLARYYGKSFILHIVSEESLEKYTKWTKNQKKFNWLFAICILAPVAPDDLLCLLAGLTEMKPWTYFWIIVLCKPWTIAVYSLGLVYGARWIMRLM"]}}, {"location": "[1583542:1584346](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVVTVNNIAYDLKHGLKTDIYYPNDTDSQTKILIFWHGGGWFRRSKESIRDVAIDLANAGFMTFVPDYRLAPANHFPAAHEDALNFAAWLLASNYTDEGDENNIVQIGASSGGTLALKVAGMYGFPTVTWSAPVDFSSWLADHQEVKPSVNAKEELGLTKQQAINEAFYKYFVLTYVGSEDYDLLADLDAQSYDYSKLGRLLMLNSAAELTDLAGVTNFAGHLAGRGHQVDLEIIPGHGHAMDYGREYLRESMTYLNYALSLKTGSE"]}}, {"location": "[1584348:1585209](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINIEKFIKIRKSLKLSQNELCNGICTQSTLSKFENNGQIPSFKILKQLCERMNISLSDIVLTSTESEIAQKLFSADFYFITYDYDQVRKILKQVNEKKIRDKQDLLHYNYLCGQLALDGDHNDVSALFYFNNILTTDNLKADNIYRLLALKGCSQVYASQDMDKASHYFDQILGQIKKVEIKDSLRELQVMSILTAAGEFYGQNGQYKHADDLLNYAYELASSHHVVYFLARVVYQLALNDLAQKRSLNTALEHLHDSLAFARLNKNEVILKEGSKLLKELEEKA"]}}, {"location": "[1585249:1585747](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.6"], "codon_start": ["1"], "gene": ["ntd_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9R5V5"], "locus_tag": ["MAAAAKME_17320"], "product": ["Nucleoside deoxyribosyltransferase"], "transl_table": ["11"], "translation": ["MTATARIYLGSSFHRDHHQARAKQVREYLAANPTVEHVHFPFDQQVTDPAEDPNVGFGDERSLLWKQQTYQNDINGLSMANCGVFLYDMDELDDGCAFEIGFLRAQNKPVIIVPFTNQPEKKPIMNLMLSEGATAFIKGDQELELLKTYDFNNCPCRPLTGYGTI"]}}, {"location": "[1585755:1586427](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01209"], "locus_tag": ["MAAAAKME_17330"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MRINVLQHTPNEGPGAIKAWAEDRDNKVYVYHPETFGIFPKADETDMLVVLGGPMSPGDDLPWLEEERQLIKDCLKQHLPILGICLGAQQIAICLGSSVHPAAHKEVGWAPVYKQNDAIAGLPDKLLALHWHQDMFEMPAESHLLYSSDLLANQGFLVNGNVIGLQFHLETLADNVREIVINDGAYAESGNDLHQTPAEILAQPLPSANKRAIYTMLDYLSVH"]}}, {"location": "[1586590:1587448](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_17340"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MYRYKAVEGQSTYEPHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTLCKRKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDKYSVEDIAKIEVWCNSLHRKILNYKIPEEYFDTELDRIYRRR"]}}, {"location": "[1587958:1589047](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKCPNCGQALTGQEKACPNCGFNVEKYRRDYFTEEAVEENVEIREAKLEEADRSLEKEPVDKLSRSAYQQKQERNAFTGNPTAEKMLQWMRDNTTIAFLVGVGLLIIMSFSRPLGWTAFAVSMALLIWTGYRDSQGEYTADRNLTEYIRNWASKVFNAFDDKESEIEEKNEDFTQAHPKFEAKVEVEKVKKKTKKPRNFGIIQLSILLTSLITLVLLFLGTGFVTSSSKLTVASVFFEVANWQIAAGKIVPALILYLFLAIFLLLPVFIMLAVSQNTRVSRVRAFALSLVESLVLIYLFFQLAQTTSAASYLSQAVSSLKSYAVAIGISGYLLILVSCLTTVLAGINMFQPMVKPRQNSEE"]}}, {"location": "[1589159:1592342](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["smc_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01894"], "locus_tag": ["MAAAAKME_17360"], "product": ["Chromosome partition protein Smc"], "transl_table": ["11"], "translation": ["MKKLLKNHLGALIAGVLILVISLVALPNVDSLTRAHSEISLPSNVESEAAKLIKNEWGNKKKNTYEVAVVFNKKSGKLTETDQGNIEASIDRLTSNQKKYGIKDYLAPQNNIATKKLLKSKDGTTWVMQMNIAKSHGSISQVYDEINKVVKTSGVRTYVTGADVLNNDFTSSIQEGIKKTELITVVFIFIVLIIVFRSPVVPLVSLLTVGVSFLVSFSIVANLVNQVNFPFSNFTQVFMVIVLFGIGTDYNILLYNHFKEYLGNGLGVAEATKDSIKKASRTILYSGSSILIGFSALGLANFSVYRSASGVAVGVLVLLIVLLTLNPFFMATLGKKMFWPSKEFAGEKPSKMWHGISSATLKRPVVFLAAVAVVVAPFFVTYSNVFNYDDTAEISDSVPSKQGLNLVQKHFSEGMAMPSYLYIKSDHTLDNEKDLKLIDELTRKLRNSEGVDKVMSATEPYNEKIKLLYVKKQLKSVTDGIAKLEKGVGKLTKGSEQVTSGAKKLANGADQLDEGTGTLSDEAKDLYTGTQTLTNGAKDLTANMNTLVAGLDQLKSQLSENASSLNADQLDQLSSGLTDLNSGLQSLQGQVGSLQTGLTNAKTALTTARTGFGTASAAAGSLASSISKVSDPTLKAELQKELETLNSGLGTVGSGLTTARTAATNMNSAASGIQSATGSLGSGTSAVSTADLSTEVQQLQAAVDALATGAHKLYTGSNSLYSGLSKGMAGALALSQGADKLQSGTSQLSSGASKLAENTPAITSGLTAVNNGLVSAGSYLNGLRKSKASDTFYVPSYVLKHNADLQKSLKVFLSPDKKSAMIIIILDSNPSSESAAEHSQALSAMARKSLKGTDLGKAEVEMGGQSSTIEDTKNTASGDFTRTMAIMLIGIGIALIFVTRSLLQPIYILGTLLLAYISSLSITRWVVSGVMGRSTLAWNVPFFTFIMLIALGVDYSIFVMMRYRDSDPHALSSARILEACTVIGTVVISAAVILGGTFAALIPSGVPTLIEVAIGVIIGLAILVFLMPINLSASTKLTYEGFPWPKWAGRKKSLSFGKKS"]}}, {"location": "[1592385:1592970](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["betI_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00768"], "locus_tag": ["MAAAAKME_17370"], "product": ["HTH-type transcriptional regulator BetI"], "transl_table": ["11"], "translation": ["MVVIMTQKRTLDLDKVLAKATEMIESRGLSETTMPNLAKDLGVRSQSLYHYVKNRSQLLSLVAASRIRLLYQDLLKQLVGLSGHEALFKFADVVRDRLLEDQALATLLYHMDEFSDDSEVVKEVVKILDLGDQLQVDTEHVVSQHALVGAVLGYVFLDRFTDGQEKVESPREAEENYHEMVWRLVSPSVQQSNA"]}}, {"location": "[1593129:1593375](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIWWFANFYWFSLLIYLNVFMFNFHYADGSSINPFVVTFLLLAICIMVGEFQFAWYMWLATKTYKPRKRKKTQNDSTVWL"]}}, {"location": "[1593413:1594328](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17390"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNNIVVGALIASLLAFVVYTSTNKDAEMRKVTVVQVKKSGKVKKTVSSTDKEPNVNSIEYDNQVKSSKGSDKQLVKAIKKAMGQDVSYQVAAYDLNKSSHFAEVTNTKSGQDSQKIFYLYLLLALYAQEKSGKIGASTTIKVTKADKAGTSRAIAVGISYGPSYLREQMLKGNKTAANALLRTIRTKQVNKILKQLGASQTKLTGTFSKSVVGKTTASDLAKIMVSIYQGKLVGSYNQQVLTAMTGKTKLASKAKGTIYQYADGNLEVALISNNGHNYVVSAWSSKTDDFVSLGQAVKQVMEK"]}}, {"location": "[1594359:1595277](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0598"], "gene": ["corA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WZ31"], "locus_tag": ["MAAAAKME_17400"], "product": ["Cobalt/magnesium transport protein CorA"], "transl_table": ["11"], "translation": ["MIKQQIFPIETDFNWYDVNGLNEADSRRLQTEFYFTPEIISYVSDRHERPHYDYDQYTDTHLLVYDVPVWPTTTIKHFTSRPITFLLQGKNLFSFHTIETSYVFDEFNDPQVLRWLSHAQDVTELLATFLMYASQYFHLAITQLDAERNDLDVKLSDDIDNKDLVELSNIEKSLVYLSSSIQTDQMMLRSLQHSRLTFSKAAKERLDDVLIESSQSSEMVQISRQVTKTLSSTSNNMMNNNLNDTMKFLTVWSIVLTIPTILTGFYGMNVKLPVLGASYDWIVIILITVLLMVWLIFFMRKHHLF"]}}, {"location": "[1595371:1596259](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.5"], "codon_start": ["1"], "db_xref": ["COG:COG0596"], "gene": ["pepIP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46544"], "locus_tag": ["MAAAAKME_17410"], "product": ["Proline iminopeptidase"], "transl_table": ["11"], "translation": ["MMQITEKYLPFGNWQTYCRIVGEATDRAPLLLLHGGPGSSHNYFEVLDQVAEKSGRQVIMYDQLGCGNSSIPDDQAETAYTAQTWVKELENVREQLGLDQIHLLGQSWGGMLALIYLCDYQPEGVKSLILSSTLASAKLWSQELHRLIKYLPKGEQAAIKEAETTGNYDSLAYQAANAHFMDQHAIKLTPDLPEPVLRKKKGGSLAYLTGWGPNEYTPIGNLHGYEYTDRLKDLHLPALITSGTDDLCTPLVAKSMYDNLPNARWELFAGCGHMPFVQENAKYQELLSDWLISQD"]}}, {"location": "[1596255:1596759](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.3.1.57"], "codon_start": ["1"], "db_xref": ["COG:COG0454"], "gene": ["paiA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P21340"], "locus_tag": ["MAAAAKME_17420"], "product": ["Spermidine/spermine N(1)-acetyltransferase"], "transl_table": ["11"], "translation": ["MQVSEKDLPELIAISRETFADTFGKDNSPEDMAKFLDENYNEDKLGGEMATPGSFFYFLKADGEVAGYLKLDVDDAQNEEVDPNGLEIERIYLQKSFQHRGLGKQLFEFAEEKGREWGKSVLWLGVWEHNENAKNFYASRGLTRFSEHVFVLGDDRQTDFLLKKALV"]}}, {"location": "[1596813:1597401](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKEMTLISAKGKLKGIWGEAVNSIEGITPLVILAKIGDKDQAYWLSRYLNDAGILTFTFEAEDAASAISGYHLAFDELRNDDRVASEYIVFAGYGEAGNAAAVAASEIGRSVRGIFLMSPVIKDWDKIKGYQGRSYIVAGSDDDQAPLASLEMMAKQLKQGELLQMRGAGHDYREEDWERAGMLLRTWVLTGLN"]}}, {"location": "[1597573:1597840](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepD_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8G6Z9"], "locus_tag": ["MAAAAKME_17440"], "product": ["Dipeptidase"], "transl_table": ["11"], "translation": ["MARDEDYDQGFNEKRFVYCPAKNYDELFVSKGTGVEIPLKGEGCGFPAVRDAVEDYGRFDEQGINSYNVAMSSTESEASNRRVFDGSQ"]}}, {"location": "[1597919:1598765](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKKRRRKKRQNTSLLSVAIAAAAIIWGVYTKGGQGNLISSSSNTSTSSSAVSSAQTAKTVYGGLAKSDYQKLAQETFKSGGKGWRYVNNNHSTLVKSAWKVNRVIYSNLDSQNRTSSSNTAFLEKRNVANDSLRVRQYVQPTGWHSNRQNGTQIYNRGHLIAYSVSAGIDQDGNYNPKNQSGDQNNPKNLFTQSAFSNQKIQTIFESKVRSALRSGKKVIYQATPIFRGRELMARGINLQAVSTDGSLDFNVYIYNVQPGYQFDYETGRAKIDRGMQVSE"]}}, {"location": "[1598891:1599722](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.274"], "codon_start": ["1"], "gene": ["dkgB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P15339"], "locus_tag": ["MAAAAKME_17460"], "product": ["2,5-diketo-D-gluconic acid reductase B"], "transl_table": ["11"], "translation": ["MEEFKLNDGNQIPRIGFGTYKIKGYQGALAISQAIESGYRLLDSAARYENEGALGKAIRSSSVARSQLFVTSKLPGAHHEYKAAINELEEGLLRSGLDYFDLYLIHWPNPLEDHYVEAWQALIDAQRFGLVRSIGVSNFEPGHIDRLIKETGVTPAVNQVELHPYWSSRAVRAYDDEHGIVTEAWSPLMRAGEVFQEDLIQKLAAKYGKSPAQVILRWEVQLGVVPIPKASSSQHQLSNLDIFDFSLTEEEVTALTDLDKADGRRPDRDPNQHQEF"]}}, {"location": "[1599845:1600295](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMTKTEKTFSTIIKTVNCLMFLSEAVLICLMGAELVGFQTKAKDLTIGWSLIIASVALVLAAILIWTSKFSVLFWITEVALLASFIILTIFRIMDVGTAFDILGSAAILALIRYGKFTKPYIGPIVVVAIDLAYLLLLIFYYDFFNFSY"]}}, {"location": "[1600389:1600773](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.59"], "codon_start": ["1"], "gene": ["nagK_1"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01271"], "locus_tag": ["MAAAAKME_17480"], "product": ["N-acetyl-D-glucosamine kinase"], "transl_table": ["11"], "translation": ["MPAAQLSEWWKGSNQELGNEDLADSLAAFAAIKSGNEEAGKIFRQYCLDVAVMIFNLQTVINGEKVVIGGGISAQEILIEEIRRQFGEILQDNPILGQQVIPPEIVAAKNDTNLYGALFALLQGMQK"]}}, {"location": "[1600714:1601080](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.59"], "codon_start": ["1"], "gene": ["nagK_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01271"], "locus_tag": ["MAAAAKME_17490"], "product": ["N-acetyl-D-glucosamine kinase"], "transl_table": ["11"], "translation": ["MNIHYGGALTFLDGLNLEETLGSRYGVAVSAENDAKAATLCEQWRGELKGVDTRAVMTLGTGVGGGIVVGSKLMHGSSFQAGELRWMITNQEAWLKEMADYTGARCSAVRMVERVKPGAGQ"]}}, {"location": "[1601140:1601326](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNPEEYLKEDFEATGHSRYTVDGLEKNDPDGWTRQLLEKGKRPSADNLDDFVAALYEVGDQ"]}}, {"location": "[1601553:1603149](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.5.2.6"], "codon_start": ["1"], "db_xref": ["COG:COG1132"], "gene": ["msbA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9KQW9"], "locus_tag": ["MAAAAKME_17510"], "product": ["Lipid A export ATP-binding/permease protein MsbA"], "transl_table": ["11"], "translation": ["MSLKYARKSQVALFSFLAAIKACNVLFVAYMLKVMLNIASSGKADYGRLVGFAALTAGGQLLFMASNFFYETTKMNIIRSVNMTLKEANLRYLIDQNSLDTKDGLSFMTNDLKQIETNRVTAQLDIIYQSLTFVGSLAFALYNSWEMTLVFIVATLAPAGVQMITSKIITKKSKIWTQKNAVYTQYVSDSLNGAQSARLYNVRTNIVKRAVGAAGDMETALRNMTLTQAWALELIYSAAELFCFIIPCTIGGIMMMQGRLAVGTLVMMVDLAINFISPVVTLFNEFNQVKSTVPMWQRTQRALNYVQKDDDYPVDHFDGMEIRDVAYVTKHSKRQIFEHVNIKIKPGEKILLMAPSGWGKTTLLRLMLGIYTPSHGEILINGEEVTGDWYKAHNFYSYVNQKPFMFDDTLRFNVTLGRQVDEEQLLMACHEAGLDDLIQENGLDYPVGENGNNLSGGQIQRVEIARALLSGRPILLADEATSALDPRLSLEIHETLLGNPKVAVIEVAHKISDVEKAMFDQIIVLDKVKPA"]}}, {"location": "[1603425:1604448](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_17520"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDHSYSNTKPHQKGKRLKLNDRTTIQELHSKGCAIARELNCSPSTVGYELKRGTVSVYTGNVKRYKAVEGQSTYELHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSRKLGHWECDLVLGHKTKDDDMLLTLWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPEGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYLRR"]}}, {"location": "[1604586:1605654](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLVELHTKADQLSGSYYLGYLIYQSADAATLISLDDDANAGGVLVINNQDILTSVDESPSLAYCQRLIDEGKSTDPFALMPLNQELLKTPLTSLSAASQAALEKDLVVNITLTSGIVYTGIIALAGPTEIQLKQIGDDYELDPLCLVIPLSAISSLELNAPLNKLWTKYQAVKEQFAGQNPYGLVELYLDWLDDARFGSCLLGLVLDQSDQFLLFESLNDYGQLESICLVNREDVVHESVNSAAIDFSNFLVAYNQKNKIFDPGHLGKLAQSLNHVPTAREVIEKVGNQLVSVDDYELAEENLGYVTAVDEAGFTIEDPESGQEVSHLFENVCALDLASTELKKMREFLAAQNQ"]}}, {"location": "[1605722:1606637](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.5"], "codon_start": ["1"], "gene": ["fpaP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O05420"], "locus_tag": ["MAAAAKME_17540"], "product": ["Proline iminopeptidase"], "transl_table": ["11"], "translation": ["MKQGTTILTLDNGYHLWTNTQGTGDIHLLCLHGGPGGNHEYWEDTAEQLKKQGLNVQVHMYDQLGSLYSDQPDYSDPKIADKYLTYEYFLDEVEEVRQKLGIDNFYLIGQSWGGLLVQEYAVKYGDHLKGAIISSMVDDIDEYVAAVNRRRQEVLPQTEIDFMHECEAKNDYANQRYQDDVQILNINFVDRKQPSKLYHLGNLGGTAVYNAFQGDNEFVITGKLKDWHFRSELPKIKVPTLLTFGEVETMPLETARTMQKLIPNSRLVTTPDGGHHHMVDNPDVYYKHLADFIREVEAGTFQGE"]}}, {"location": "[1606792:1607569](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTIGKELQKQRRAKQLSLEAVSQTLRVDQATLQKIEADDFQGLNPVMVRSCIRQYASLLGLDGAQLLDQFTEPAAAGKDIPAAKPTSPVKEASPAGKAKEILDKSKVPHGFKAIFKFFDAINLDKLLKIGIWVILGLAVVGSVGGGFGALASKATSISRSSSSSSSSSSSSSSSSKPAQDDSAKPDENKPSHDDQPSQPSQPSQSQSKEEQVSSSSEASSSSSVASSSSQEQSSQEQSSQASSSSSQSSTDTTTDTNE"]}}, {"location": "[1607624:1608182](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["efp_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XA92"], "locus_tag": ["MAAAAKME_17560"], "product": ["Elongation factor P"], "transl_table": ["11"], "translation": ["MQAIELKKGMIFDDGGKLMLVVAANHHKPGKGNTVMQMDLRDVRAGSVIHKTMRPSEKIELVEVVKKKAQYLYAEGDSYNFMDTETYEQYAISGDQLGDDVKYLMPNIEVILEFTEDGELLAVQLPSTVNMKVVETQPGIKGATAASGGKPATMETGLVVTVPDFINEGDELVINTQEGTYKSRG"]}}, {"location": "[1608235:1609150](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.33"], "codon_start": ["1"], "db_xref": ["COG:COG1072"], "gene": ["coaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WPA7"], "locus_tag": ["MAAAAKME_17570"], "product": ["Pantothenate kinase"], "transl_table": ["11"], "translation": ["MRNYTEFSRQAWAALTPKTELAVTNEELAKVKSLGDQLDVKDVGEIYQTLLNYIHLAYQAKQATAAKKAEFLQLPESKVPYIIGISGSVAVGKSTTARLLQLLLTRYYPDLKTQMMTTDGFIYPNQELEKRKLMPRKGFPESYNMQMLRDFLQDVVSGKNDVVYPLYSQELSDIVPGRYGHVEKPDILIIEGINTLQLPESGQLVTSDFFDFSIYIDAEEDLIEKWYMQRFKKIMKMKKNDPSNFYYKLANGPEDEALRLAEETWQMVNLVNLRQYIAPTKERANLILHKVEGHLIDKIYLRSF"]}}, {"location": "[1609252:1609822](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.1"], "codon_start": ["1"], "db_xref": ["COG:COG2755"], "gene": ["tesA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9HZY8"], "locus_tag": ["MAAAAKME_17580"], "product": ["Esterase TesA"], "transl_table": ["11"], "translation": ["MKKVVLFGDSIFNAYDGQKDTDRLTKALAKRLGDAYEVVNISVSGACAQDVLPRVSSLPACDILVVEYGTNDAASWGCSAYDYQEGLESLIKQAQKVTGASDTLVLAPSMPDLTNPEMAAAYSLEKLDEYVDIAQRDAGKTNSFFFDLTHKMEKLKDLPSFMIADGLHYSEKGISWLADVLADQINKMA"]}}, {"location": "[1609959:1610403](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17590"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQVEFKQDKQLKEDQLIIKAKKLTPEIEAALAFLEEKMAQKITVYQGSDVIILPLTSILFFETSDRHVWAHDREGSYLVKQTLRQLEANLPSDFDRASKSALVNCRQINAVKRSIMGCELGFTASYKKVFVSRRYYQTLISHLHEMR"]}}, {"location": "[1610408:1611158](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKNRKSAVRWGLILIAIAIPLILSQLFPDYFTLFKLFNLSWGQVFWVLLLAWIAWTSFKNRALFFGIFASGLIVKTISEASHFFKWTGYMYLALFLIALGCKLLAGGSQLEVKMNVKTGKKDDDGTSLSYSESIGENGEKVSIESVFSKCVRYVHSQALRKLSVSTVMSPVTIYLDQTQLKDGRGKLDLDAVFSKVDIYIPREWEVQADDSPVFSRFTALNPSGLTADSPLLKIDADLVFSQVTIHRV"]}}, {"location": "[1611219:1611828](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0834"], "gene": ["artJ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P30860"], "locus_tag": ["MAAAAKME_17610"], "product": ["ABC transporter arginine-binding protein 1"], "transl_table": ["11"], "translation": ["MCKKLGLKADFQTIDWSMKETELRNGTIDVLWSGYSVTSQRKKKVAFSRSYFRNRQVLVVKKSSGIKSFAQMKGQAIGAQSGSTAQIWLDGSQKVIKPKSKVLYDTIPSAFLDLNAGRIKGILLDETYAEYYIKHEADSKSYQVILNKEVPEDLFAVGMRKGDKNLKKKINQALAELQANGTLAKINQKWFGQKSNYLGKVD"]}}, {"location": "[1611805:1612051](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKWFKRILLLGLVLSCFLTTACSNLTKEANQKDTWAKIKKRGSLVIGLDDTFVPMDFRQKRWPTGRLQRRLSQGRVQEAGP"]}}, {"location": "[1612053:1612326](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["glnQ_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P10346"], "locus_tag": ["MAAAAKME_17630"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MADKGGLYPYQLSGGQKQRVVAIARALAMLPKMLCYDELTSVLDSALRDQVADLILNLKESGLTQLIITHDMDFAKKVADQVLEVKPLEG"]}}, {"location": "[1612352:1614632](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.4.12"], "codon_start": ["1"], "db_xref": ["COG:COG3973"], "gene": ["helD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32215"], "locus_tag": ["MAAAAKME_17640"], "product": ["DNA helicase IV"], "transl_table": ["11"], "translation": ["MVENSDRKAEQAHLDQVLQKIDQKGDQLKQAIAKDKSEARNISAHFYDDIRLDFDDYSTSMDTALSIQQQQQMLKERDNAWQVNARELATLKRLHVHPYFARVDFEEAGEEPESIYIGLASFMDENNELLIYDWRAPISSIYYDGKIGKVTYYSPEGPVEVDMSKKRQFMIEDGTIINMFDTDETIGDQMLMEVLSEKSSIQMKSIVKTIQKEQNKIIRDTTSDLLFVQGAAGSGKTSAILQRIAFLLYRYRGNLKSGNVIMFSPNQLFNDYIENVLPEMGEQNMVQMTYWQFIARRLPKMKVQNLFDQFEDRQADTAIGRFKDSLAFYKLATRYGQHLNQSGMIFRNIYFRTKKKPFFSKEEIKELYYSFNENYKLGNRIDATREELIRRLNKRVANEARKVWVSREIEGLSHEQMLDMYDRPDQEFSSEKAERAFLGKKIVIKHLSKLARRINHNGFLNLRGQYLAFLRAVPKMTDLAKYGISEEEWLTHVEEVKAKFKEQEIDLRDASAYLYLYDQIIARQTNLEMRYCFIDEIQDYSAFQLAYLRYNFPRAKFTMLGDLNQAIFTKDESSSLLKQISGLFDPEKTKLVQLTKSYRSTKQLTDYTKQILRHGEKIESFNRQGPLPQVWGRSDEAGALAALKAALAENDAQKLTTAIITKDLEAAKKLADQLEGVHLISSANQRLVEGNLVLPSYLAKGLEFDAVIMWDASKAAYHEEDETQLVYTIASRAMYKLDLVYAGEKSPLLPTNEATFAKK"]}}, {"location": "[1614827:1615490](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRRFFNFIKNLLILAIMAAAVVNYHEQIQTFLLEAAGTASTYLEQKGLKSKTLDLSVGIVAESNEKVTKNTTGYRWPKATAKVYIGVKQTDLYNATVNAMAAWNQTGAFTFKQTKNKKNAQIVVVANSKNNGAACLTTYKYLSHTNRLYSAQVALNTYYLENDYYNYTQARIVNTVEHELGHAIGLDHRTGVTVMYPTGSIYTIQPKDIKLVKKIYKSKS"]}}, {"location": "[1615504:1616158](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.73"], "codon_start": ["1"], "db_xref": ["COG:COG0406"], "gene": ["cobC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P39701"], "locus_tag": ["MAAAAKME_17660"], "product": ["Adenosylcobalamin/alpha-ribazole phosphatase"], "transl_table": ["11"], "translation": ["MKRIYLVRHGKTFINKYNKMQGWCDTPLTDEGREGAEKAAEALQELPLDIALSSNTLRASETCEIIMEKNCNRDLLQHLAYPYFREHFYGYFEGMDNDVAWRMVGAAHGFTNAADLAEHATCDQIADWTKEADPYHDAEDSKEFWARWQKGFDLIQQLDGAENILLVSHGFAIKTLAQKFAVDGIDTTVHPRNSSISTLVMDEAGNLQMTSYNKLQL"]}}, {"location": "[1616274:1616967](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.4.46"], "codon_start": ["1"], "db_xref": ["COG:COG0584"], "gene": ["ugpQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P10908"], "locus_tag": ["MAAAAKME_17670"], "product": ["Glycerophosphodiester phosphodiesterase, cytoplasmic"], "transl_table": ["11"], "translation": ["MRTKIFGHRGYPAKFPENSLEGFDYCMHHGAEGVEFDVHLTRDGVPVIMHDENIKRTTNGKGLIKDFSLAELDQFHLANGERIPRLKDLFQLTEESGYEGQLNLEMKTNKFDYPGLPEKIFALADQFKFKQEIIYSSFNLQTLIHAQKIRPEENYNFLTDKRIKDPAAFVKEHGFKGIHPKRLLDTDTPERIWTVDSPLRAKKIIEYGAAGFFTNKFEDMMDLRKRVANY"]}}, {"location": "[1617100:1617340](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17680"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEECHTLVFDKGIENGEFSGVRYDLQEYLEKYPDAKFEIITDTYNMTTTVMEGYIYRDGQEAVAGIISLWTLGEVIADF"]}}, {"location": "[1617379:1617514](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKLIKKTISNIPFDLHDSRIVKMEVNDGDLTLHLDQVYEYHKDS"]}}, {"location": "[1617543:1618965](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17700"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKRKDIKKLLLASAVLLTFGIGQQLEPLQPVHAARQVKKSRKAKKGKKAKVSINKKKLSLLQGKTARLYLKNSKKKTTWRSSNKKVATVSSKGKVKAVKAGTAKITAKNGKKFYACMVKVTAAKGTLTFASNDGSGRRQKKIFTLGKKVTLPKTGFYRKGYKFLNYTVATNGKGKKYRLGKAYTFKKSTTLWAQYRKLENVDVKTQSTSGLVKAEVKFIAHRGYSTKYPENTTLAFEKAGEEAGVWGIETDVDNTSDNKLVIMHDNTLARTTNISADDPNYRKNINYIPFDQVENYKIKGVLDGVDKDKVYEDLRVPTLRQYLEICKKYGKEAFLELKYINNMEALKEVVKEINEAGMQKQTTLISFNIGELEEVRNVIPGGKEIAMMGIYSRHLTDNDYIFLSHLKAGADCYYNKTTLDDILAARKYGVDYGIWTVCKNDNAVADMIKNGADKVTLNDAGLIESMSAIVNN"]}}, {"location": "[1619107:1619275](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17710"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQQRHQSWSKDKTASKLMEQMDLADLQDYYEKVGQKHRELVEYVLQIDHFIDGLA"]}}, {"location": "[1619274:1619901](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKPCWPRPCLKLVAKNKQVILIPRTPHLMGLLPLEGIKIIKKVAGQQQLLSDSQILAEVSSSLGLDADQRAVKSRCVLLVEGQEDVRFVTKINQWMYEEKLVEATFAEKGLFILPVGGCGSLLAWLNFDLFSKLNEPWFILIDSDKGTDEAKQSQRHLHRIRAKYPWMQAHIHATFKREIENYLVFKEGKKTHVFAPYEDVKQHMYDF"]}}, {"location": "[1619857:1620097](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17730"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGEPAPQFVFQDPNLAELIKQREKVGVTGTAKVSRIILAFLLAQSENASIDNVVYAFEANDLSEEDEALLAQALLKTGR"]}}, {"location": "[1620172:1620634](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLRAVELHNFRGYRNFKLKFAPLTSLLGEGEVGKKTILRAMDIFFNGPLAKRPLKLQDLNEKALKAGDWQIAITCCFDDFAIKKSFDLKQYLEESDSFAEEGGDFQPVTDQNRGRYRQLSAGMPLYVFFDEESRAASPLNFVARSAIRDKAA"]}}, {"location": "[1620644:1621352](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYHELALQIRFVVIAVCVLAGYWAIRTGNSFLRLVVTVIYGCALIYYVFASRMLTVAVYYWQHPAQMAAGSEVLKDPAFWKWGLKKVFASSNYGGRYGFLMNVLLFVPLGYIIPSWSKWLHSIMITTFMVFCLSWFIEHFQRMTGLGTYDVNDMIANTMGAFLGAVAIMPTLWMRDIQARKLRKAREHAEAKAKGEAEAARLDRVSRQLANPTEKVPKVKMSRKDYRQRHGDQAD"]}}, {"location": "[1621539:1621968](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDKEKINELWGKYKDIIPYVFWGVMTTLVNIFSYWLCNSVFKWDIMPATIMAQFLSIVFAYLTNRKWVFHSQASTFKEYASEIASFFAARIGTALLDMAIMFIFAEQMHLNSMVIKILANVVVVIVNYVASKFWIFKSKDSE"]}}, {"location": "[1622077:1622527](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17770"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRKRNIILAFLGCLGSVLLISGLTFQNSGQSAQLTLKFVNLFEKVHFHLTGTMMAEYPIYHMMRKLAHTAEYFLLGTSACYFFSRWQKHYAWSALALSAAFSLFDQTSKLLVPGREFDPTDFPFDIAGYLLGIGLILLLQRSWAKRAVN"]}}, {"location": "[1622795:1623035](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNTNKFTISWGDFSRYRSSMFGLSIIGIMVFHYFEHIRSAHLLLKSEQFWDYYIGSTGVDFFLFLSGMGLFYSLTANFP"]}}, {"location": "[1623399:1624623](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_17790"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLITNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDITQNLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1624894:1625359](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.7.39"], "codon_start": ["1"], "db_xref": ["COG:COG0615"], "gene": ["tarD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2G2X2"], "locus_tag": ["MAAAAKME_17800"], "product": ["Glycerol-3-phosphate cytidylyltransferase"], "transl_table": ["11"], "translation": ["MKRVITYGTFDLLHYGHINLLRRAKAQGDYLIVALSTDEFNWNSKHKKTYFSYEQRKQLLEAIRYVDLVIPENDWDQKRSDMHEYHIDTFVMGDDWKGKFDFLKEEGVNVVYLPRTPEISSSKIKHDLYDANEVTEESKLSHEDLDTDPDHDKK"]}}, {"location": "[1625376:1626288](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17810"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDNIKLKLSEDFLKEEVRNDYTVSPEMKKVWAVELDLLDQLDRVCQKYDIPWYLSGGSLLGAVRHQGYIPWDDDIDLMMYRKDFERLCEVASQEFTEPYFFQTEETDTGSIRGHAQLRNSATTAILKSEEYFHYQFNQGIFIDIFPLDNVPDDPEERQAFVKSVNQLKHRARQFYNYCNGYPNKNLSGLKQFLLYTKFFFEKKKSGGRNIYYDRFAKEITKYDDQATQEVMMVMLGTEKCCWKREYVANPVRVPFELLSLPIPKDYDPLLTKQYGKWNIFVRGGSLHGSVIFDPDKSYKEYLK"]}}, {"location": "[1626308:1627742](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["murJ_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02078"], "locus_tag": ["MAAAAKME_17820"], "product": ["lipid II flippase MurJ"], "transl_table": ["11"], "translation": ["MNNPSIKKNIFISTLYQVLSIITPLVTAPYVSRVIGTDGIGAYSWTSSIQTYFSLVAALGTLSYGMREIARNRNDVKKRSQIFWEIEMLSVFTSLAMLLLWGIYLGFQSHYRVMFLILTLNLFNTMLDISWFFDGLEQFQYTVTKNALVKVAGVILILLFVKTPKDTNLYVFIMTGTTLLGTMSMWLELHKFVVKVPIKLVNLKRHFHETLIYFIPTIATSIYTYMDKTLIGFMTQNNAENAYYEQATKIINLTKAVTFTAVNNVLGARISYLFAKKNEKEIKQRIQGSINYILFIGVGIGFGLLGIADTFVPVFFGHGWDKVALLLRLFSPQIVIIGISNCLGSQYYNPAGLRKQSAVYIIIGAVINFVLNLFLIPRFASAGATFASIIAELTISLLYLCHDNGYLELVYIGKVIWKKLIAGTLMMLVILALNPFGNPGIIKLGIQFVLGAGTYLATLFIMKDDSVGLLKKILGRG"]}}, {"location": "[1628223:1628550](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.-"], "codon_start": ["1"], "gene": ["gtf3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00841"], "locus_tag": ["MAAAAKME_17830"], "product": ["Glucosyltransferase 3"], "transl_table": ["11"], "translation": ["MLKYADCLIVHNDSMKNFFEDRGVDPKKLVTLKIFDYLIPNGEINHAKFERSVSVAGNLDVSKTQYLKDIGKIDAKFNLYGLNFTLDAYKNVEYHGAFPADEIPNQLN"]}}, {"location": "[1628710:1629919](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17840"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAYLIAISMSLLVAAFVPRLIEENQHGTFLLVKQPWYKDTKKWQLIGLVSLSALPILLISCFRYGVGTDYFHTYVPQFLSIVNGSYTHYYEPGFYLLNLLVASLTSDPQWLIALCALLTLGLVYVVTVFLSDNYFISILLFYLTYTYFVSINNIRQALASAILLPALYFLVRKKKIAFVLLTILAGTMHQSAYYFLIMAVLDLLPLSQLSYLLINLGFYIFIKLLGKRILALLALLIPRVQMYLNQGVYLGKTIGKLYLGVQIAISLIYLYLEYQQCFNRDLTQFSYNKSSFKSQLVGMLQLDDRQKLGNSAEEWAIAKLLQWMILIVCAMDGILPATYRVVRIFTYAQFIFIPNAISKFERDDKRRLILYILVIVIFGILFVHDFAMGFEQVYPYKSIFNH"]}}, {"location": "[1629960:1630719](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYIITHKRVKLPKLDKYLPLQVGSSLHEHLDYLTDDTGDNISEKNPNYCELTGLYWIWKNTKDDYKGLVHYRRYFGKSDFSSSFEQIYSYDELKGFLQDHDLVTSYVANFKQNAHDEIMIHCCTEEIFGKLRASVAKCSPEYLSDFDKFFNQNKAVLFNMMFCRGDLFDEYCQWLFTILFNLEPQVDLSSLNAYQQRLYGFLSERLLNIWISHKELKVKHLPIVNTEMPMKEKITNYRRQITNQIFYTLKK"]}}, {"location": "[1630739:1631858](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["epsF_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71055"], "locus_tag": ["MAAAAKME_17860"], "product": ["Putative glycosyltransferase EpsF"], "transl_table": ["11"], "translation": ["MTKRILEVNVDDNGYSGVYSLIKRVIENKPADYQIDLACLEPFESQQNIDYLNKLGTQVYYIGYPGNKIKKQLKYYEKLQKVVKDGNYDYVHIHGDVANKLYVTALAARKADSGVKIILQSHASDVDGSHRQLKRFIHKSLRGKLVKLADCYVSVSDLASNWMFPSIPKSQVIKIMNGVDLAAFRYDPIIRKRIRKELGLSRKHVLGHIGRFAYQKNHQYLIQVFAKVYAQDPQARLLLVGKGDLQDECKHQVHDLGLDKQVIFYGLSSNTSELFQAMDVFLLPSHFEGLPIVGVEAQAAGLPVIFSDQITSEAKMTNNVSFLPIDETSLSAWQSQVIKDLELGHRDDYDLLSRQKLDITDTVAAFMKLYNS"]}}, {"location": "[1631850:1632756](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.287"], "codon_start": ["1"], "db_xref": ["COG:COG1216"], "gene": ["glfT1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:A0R5Z2"], "locus_tag": ["MAAAAKME_17870"], "product": ["Galactofuranosyltransferase GlfT1"], "transl_table": ["11"], "translation": ["MKSVAAVVVTYNRKELLKEAIDALLMQSAAEADVLVVDNASTDGTKDYIADYIDQGQIIYINTGENLGGAGGFNFGMRKACEAGYKYVWLMDDDAIVKRDALKELLKADQLLKGNYGYLSSTVFWTDGQPCVMNRPKLVKDWTSDLGYLSAGLVRTYYSTFVSFFVKTATVKELGLPIKDFFIWGDDVEYSNRLSKKYPCYVVGKSQVIHKTRDNNGSNIAKEQGDRIGLYKFAYRNECVIARENGMKGRLRQFAKVNYNMLRVIFTHNPHKLKKLGIILGGSVEGIFFRPEIEYIEEQHD"]}}, {"location": "[1632783:1633431](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["murJ_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02078"], "locus_tag": ["MAAAAKME_17880"], "product": ["lipid II flippase MurJ"], "transl_table": ["11"], "translation": ["MLPHVANAFAKHDMKKAHEMLYKSFDFVSALAYPMMFGIAGVSLTLAPLYYSAKYAPVGPAMLIESIVILMIGWSNVIGTQYLLPINRVKDFTTSVTIGAVVNIILNFPFISLWGLNGAMWATVLSEVAVTGYQLYVVRKDLDLSLMFQSSWKYLLASGVMFVAVFGMNTHLKASWLWLICEVAVGVVIYAGLVYFLKAPIIDQAKNLISKKLQK"]}}, {"location": "[1633463:1633646](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLPGVNLASLKPLRHFKPTIAMFIPQIATQLYVQLNRTMLGLMVDQKASGFTNIQTTWLS"]}}, {"location": "[1633629:1634133](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["rfbX_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37746"], "locus_tag": ["MAAAAKME_17900"], "product": ["Putative O-antigen transporter"], "transl_table": ["11"], "translation": ["MRVVKNYLYNVGYQVLAIIVPLITSYYVSRVLSPEGVGANAFTSSIIQYFMLLANIGIGYYGNREIAYVRDNKQKMAATFWEIQIVKTVMTVVAYLSFVVFMAFYSGNKTYMWVQSINLIAVAFDISWLYEGIEDFRRTVLRNTFVKIVSMVAIFVFIKSSSDVAWC"]}}, {"location": "[1634135:1635251](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.9"], "codon_start": ["1"], "db_xref": ["COG:COG0562"], "gene": ["glf_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37747"], "locus_tag": ["MAAAAKME_17910"], "product": ["UDP-galactopyranose mutase"], "transl_table": ["11"], "translation": ["MSKYLVVGAGLFGAVFAREAAKRGHEVTVIEKRDHIAGNIYTKEIDGIQVHQYGAHIFHTSNKEVWEYVQQFAEFNRYTNSPVANYKGKMYNLPFNMNTFTQMWGVRTPQEAIDKINEQRAEMAGKTPQNLEEQAISLIGRDIYEKLIKGYTEKQWGRKATELPAFIIKRVPVRLIYDNNYFNDDYQGIPKGGYTKLVENMLKDDKITVELDTDFFAKKDEYLQKFDRVVYTGPIDEFFDYKLGELEYRSLRFETEEKNVGNYQGNAVINYTDAETPYTRVIEHKHFEFGKGDPDKTIITREYPADWHKGDEPYYPVNNDRNNDLYAQYKEMADKEDAKVIFGGRLGQYKYYNMDQVIAAALEAVNEEFGK"]}}, {"location": "[1635271:1636048](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIKVLVAAHKQFPMPDDSVYLPVLVGAVKNYKAGIAYRRDDEGDNISARNPYYSELTGVYWAWKNLKDFDAIGLVHYRRYFYVSKPHNLDHVAKGADYEHFLVDHDVIVPKKRNYYIESNYDHYIHAHPAEPLDKTRDIIADAYPDYLPAFDMMMKRRSAHMFNMFVMKRPAFESYCEFVFGVLSKLEGQIDIYGYSVQDQRVYGYISERLLDVWLYTTKQDFVEMPWGQIGGEAVIKKGYNLIKRKLGIGKKQTHF"]}}, {"location": "[1636064:1636715](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.36"], "codon_start": ["1"], "db_xref": ["COG:COG2148"], "gene": ["pglC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q0P9D0"], "locus_tag": ["MAAAAKME_17930"], "product": ["Undecaprenyl phosphate N,N'-diacetylbacillosamine 1-phosphate transferase"], "transl_table": ["11"], "translation": ["MTDNNGFDGETRLGAYRYVKRFLDIVGSLLALIVFSPVFLVLSLLIKSRDGGSAFFAQERIGKGGKSFKMYKFRSMKMNAEEILKSDPELYQKYVANDYKLLADEDPRITPIGRWMRRTSVDELPQFVNILKGDMSIIGPRPVVEKELAEYGNRKDKFLSVRPGAMGLWQATGRSNISYPERCDVELEYIDNISFTYDVKIFFQTIFSIFKKEGAY"]}}, {"location": "[1636922:1637705](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQTLLTLLDDSRNDIYLLVDRKSVGYPRDFQLNYATLFSVSPLVIDWGSYSQIEAEMRLFQGAAPGKYAYYHLLSGLDLPLANQDEIHAFFAAHPGKEFITYSSQKNGAQLLARVQKYHFTHNFRQPNKAMRLFRKIEKAEQRVFPVRKKFAGTLAFGSNWVSLENDLVQVLLREDDRIRTMFARGFLVDELLVPTMLNIYPEFKDRIYYDRPVHDRPEEFQGNLRYINWWDGIPYVWREKDYETLLAARRQGPPFFQEI"]}}, {"location": "[1637818:1639003](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_17950"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MKTVNNDMDKNTRVGKRKKRNKAMRIFWSVMAVILVAIGGFALYEYNTVKNAADTAYRSGGLGNAENGSKNSVISNSKPIAILLMGTDTGALGRTYKGRTDSIMVAVLNPKTKKTTLVSFERDQQVNLPDYPENSPSKLNAAYAYGNAKELAKVLKKYYNIPINAYVLINMGGLKTIVNKVGGVDIAPILSFSYEGYTFTKGKTTHMDGAKALAYSRMRYDDPEGDYGRQKRQRQVLSALLNKAESATTLLNSSFISSLSKQVQTDFTFSDMTSMAKRYLAATKDLKTDYTHGTSYMQDGVSYQKISVSERQRISNLIRKTLGLKTKTVSTDSIDTSTSSSSSSSSTTTDSDTTGGAGNTAGPSDNGAAAGNGADSGTTGGYSAGNDQNNSTGY"]}}, {"location": "[1639224:1639407](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKAMQKLTALLLASASFLVASPAKASSLADRNYQGQKVITVNQERPTFSKKALSTKKGA"]}}, {"location": "[1639428:1640118](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDSLNRAGEADALLNKRLMPAKARKPLYWNPTAWHNKKIAGGWLYNRSHLIGYQLTEQNNNPKNLITGTRQLNDPGMLKYENQVASYIKSSSRHYIRYRVKPIFRGRELLARGVEMEAQSTGSNAVRFHVYIFNVQDGVKLNYSKGTSVVTGAAKKSAKKTVVKKAAAKKSTSSKKKIKTSTTGRIVGNRRSKIYHVPDQAGYHMNSANAVYFRTETEAKRAGYRRALR"]}}, {"location": "[1640435:1640765](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_17980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSYFPVGGVKPRYFYRKKVAIGGTEGSLTGAYAGSDMVCLFADTSGVYWFKGNRGQIEKIGSQARFKKLLRQISLNKLEENPLPVKKMKTEKKKTSKKKRARRKKKKA"]}}, {"location": "[1640770:1641205](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["cpoB"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02066"], "locus_tag": ["MAAAAKME_17990"], "product": ["Cell division coordinator CpoB"], "transl_table": ["11"], "translation": ["MMKEKNWLTWLTVLALVVGFAAMGASVWLSAQAAKQTQRNSQLAGQLYQASRTKSQEASSIKKRLDKLASDNSSLKKKNSRLAKENQALKQANQDLPAASAAAGLNVWETEEKGGKLQLKIDNQTGQAVSDLLVLAVAANGRIL"]}}, {"location": "[1641308:1641668](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18000"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEKNMIGKYLRDLRRRRGMSQQELALALGVSKQTISNWEVGRKVPRMKAVDKIANIFGVSRNSILAGLPVEMLEQADRRVVDLTDRDIRLTYLGQQVQREYIDIIEKLMRWDIAERDAQ"]}}, {"location": "[1641804:1642818](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.94"], "codon_start": ["1"], "gene": ["gpsA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64191"], "locus_tag": ["MAAAAKME_18010"], "product": ["Glycerol-3-phosphate dehydrogenase [NAD(P)+]"], "transl_table": ["11"], "translation": ["MAKIGVLGAGTWGMALARMLSNSGHEVTVWSALPQEVDELSRTRRQKNLPGMVIPDEIKFTKEIAEACQDKDIILFAVPSVFVRSIAKTAAAFIPDGQIIVDVAKGIEPDTLLTLTEVIADELNKDGKHGNVHYVAMSGPTHAEEVAKDLPTTIVSACEDQAVAKKVQDVFMNKNMRVYTNSDRLGVELCGALKNVIALASGICSGLGYGDNMRAALIIRGMAEIKRLGLKMGGKEDSFDGLAGMGDLIVTATSKESRNNNAGYLIGKGKSAEEAKKEVGMVVEGINAIPAALELADKYDVEMPIVFAVDAVVNRGADARETVDALMLREKKSEMTK"]}}, {"location": "[1643695:1643980](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18020"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTYPIRGPLCRYGISHQVTVSIDRLSNHRFLLGLVSGDRKNEFKAFGRDWNERSEIFREGWDLTKKSLTHPNRLHFSGNYYSKLTGSLSCRASA"]}}, {"location": "[1643993:1644377](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPLVAIGRCRQDLSWLANEPDSWIWHGIGEDETAPAVKKLNDLNEDGNWHPFGYQNFVELLDDPDAPCELFNKIYLRGGAKSMAQFWRKQREEGLNHVIINFKPTKRPIADCLADMEKYVFPEVNKD"]}}, {"location": "[1644432:1645275](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKNKRLMKNLGKAAVAAALLTTSVSPVLAATENKTEVKSNKTAAESSSKKTSSSESSKASSSSEASKSSSSAASSSSKKAAEKSTKKAAKKSTKKVAKNTKKTTKKAAKTTKKSTKKAAKNTKKAAKDTKKVAKKAAKDTKKAAKTTKKSTKKAAKNTKKAAKTTKKSTKKAAKDTKKAAKTTKKSTKKAAKDTKKAAKTTKKSTKKAAKNTKKAAKTTKKSTKKAAKNTKKAAKTTKKSTKKAAKNTKKAAKTAKKSTKKAAKKGSAKSTSASSTSSAK"]}}, {"location": "[1645424:1645919](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_18050"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MDFGHWECDLVLGHKTKDDDVLLTLWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRCYIPKGDRMDKYSVEDIAKIEVWCNSLPRKILNYKTPEEYFDTELDRIYRRR"]}}, {"location": "[1646803:1646989](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQFTKQFEGTFAQVKEQIDKFVAEGGHIDAVITDHTSEKVTENHTFSYKMRVIAICSEEES"]}}, {"location": "[1647206:1647323](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNIKLPELPGVFVLFIVLFVVLVLLLLYNLVNPGKEIV"]}}, {"location": "[1647485:1648475](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEVKRIMVAAAAAVMALTAAGCSSSSSSSSSKSSSKVYKIGICQLVQHEALDAATKGFKEEVTKELGKSHVKFDTQNAQGDSSTATTICNNFASENEDLILGNATASLQAASAATKSIPILGTAVTNYQVALNLKKFNGTVGSNISGTSDLAPLDKQEKMIKDFVPNAKKLGILYCSAEPNSKYQADEVAKYAKKDGLKVTEYTLSDTNDVNSVTQQAASASDVIYIPTDNTAASCAKTINNVALKAKVPIITGEEGIMSKCGVATLSIDYYGLGKQTGKMAVQILTGKKKIAQMPVQYYKNPVKEYNPTICKKLGIKVPAGYKAYKN"]}}, {"location": "[1648521:1648833](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18090"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGYLSSLSFLDLAGRLPASVAQGLFWGIMALGVYITFRILDIADLTVDGTFATGGAVSAVLIMKGVNPWLAVLVALVAGLLAGGRFDLADGNSGQAESSPIG"]}}, {"location": "[1648792:1649107](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_9"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_18100"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MATLVKPKVLLLDEHTAALNQKTAEKVLKATDRIVEEGKLTTIMVTHNMRDAIAHGNHLIMMNDGKVVLDIKGEEKKKLTVEKLLHQFEVVSGEEFASDKAILG"]}}, {"location": "[1649159:1649585](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.8.4.12"], "codon_start": ["1"], "gene": ["msrB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:E6ESW1"], "locus_tag": ["MAAAAKME_18110"], "product": ["Peptide methionine sulfoxide reductase MsrB"], "transl_table": ["11"], "translation": ["MNEKADLKDRLTPMQYDVTQNAATEPPYTGEYDDFFEKGIYVDVVSGEALFSSLDKYDSGCGWPAFTKPLVKLTQRRDQSFGMERTEVRSRQADSHLGHVFTDGPLDRGGLRYCINSAALKFIPYDQLEEAGYGEYRQLFE"]}}, {"location": "[1649766:1650003](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3093"], "gene": ["ybaQ"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A9T6"], "locus_tag": ["MAAAAKME_18120"], "product": ["putative HTH-type transcriptional regulator YbaQ"], "transl_table": ["11"], "translation": ["MTESIKMPTVAETINDEYLQPLGLSAADLAQAIHVLAARIKDILHGSQEITADISLRLAKFFGVSDAYFLNLQSDINL"]}}, {"location": "[1650452:1651427](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.133"], "codon_start": ["1"], "db_xref": ["COG:COG1091"], "gene": ["rfbD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37778"], "locus_tag": ["MAAAAKME_18130"], "product": ["dTDP-4-dehydrorhamnose reductase"], "transl_table": ["11"], "translation": ["MKVFVTGVNGQLGHDVMNELAKRGYEGVGSDLAPEYSGIADGSAVTTAPYVSLDITNAEGVKQAITEVNPDVIVHCAAWTAVDLAEDDDKVAAVRKVNTDGTQNIANVAKELDVPMVYISTDYVFDGQGTTPWDPDFKGYKPMNVYGETKLGGELAVSETLDKYFIVRIAWVFGLNGKNFIKTMLNVGKTHDEVKVVSDQIGTPTYTLDLARLLVDMIETDKYGYYHATNAELPETASGYDENGTKTGYISWYDFTKEIYRQAGYKTKVTPVTTEEYGLSKAVRPFNSRLDKSKLEKNGFKPLPTWPDAVHRYLEALKADGFFD"]}}, {"location": "[1651440:1651815](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKAYPREALDRFFRSDSKTYGKWYGVELTAENKKQFLIPEGFAHGFLVLSDVAEFCYKVNDFWHPNDEGGMAWNDPEIGIEWPQLVGEYPGSADASGYALEDGTKLTLSDRDQKWLGLKDTFKF"]}}, {"location": "[1652085:1652961](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKKRIIFVAGAVALLFAVTSTKPVDSQNYPKITVKTKRVNKYKDKIEDYESDNLTLKAETDLIKDKTEEAKEKLAKKPGSKTSQTTSTKETASAKSKQTDLASLTYSGQLSTEVNNNQPDFSQSDLSTSRGAWQTYGNLDSLNRATMANAMLNQSLMPTAKREPLHWDPTGWHNKRISSGWLYNRSHLIGYQLTGQNNNPKNLITGTEEMNVSGMLPYENEVADYLKESSNNYVRYRVKPIFKGDELLARGVQMEAKSVGSNAVSFNVYVFNVQPGVVLNYSDGTSRVQN"]}}, {"location": "[1652960:1653350](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["yttA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q795Q5"], "locus_tag": ["MAAAAKME_18160"], "product": ["putative membrane protein YttA"], "transl_table": ["11"], "translation": ["MAYAPLAKKVKKLEAQEKAEKEAAAKAKREQEKQAAEAKKEAEAARKAAEKQAAAASSASDSNTDDSADTSSNQRGDMNTADSQKIVGNVNSKIYHVPGQAGYPMNSSNAVYFNSEEEAQRAGYRRAKR"]}}, {"location": "[1653729:1654953](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_18170"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHQNKTDKLDALYLAKLQSEHPQRLAYVQNKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLETKEADIIDFLKGLSGIGKKRANDIAQSLIRLAKVACPAVKKNSAHIRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGKPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1655200:1655458](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRIFMAVLWPILLVVSAAMTTISYRKKKAGKADKDYYSVRGWGCLAFMSLLGVMMSYLPLGILSVGGCFFIAAFVLMYFAYSKTY"]}}, {"location": "[1655783:1656572](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.99.33"], "codon_start": ["1"], "db_xref": ["COG:COG1053"], "gene": ["urdA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8CVD0"], "locus_tag": ["MAAAAKME_18190"], "product": ["Urocanate reductase"], "transl_table": ["11"], "translation": ["MPSNTGDGYKMAMAAGARDMLVESPEFMMNYIMALPHEGVHLYIDPINGFMSLPSGGPTFFVDQDGRRFVNENAKKYNLLYRRMAMQSVKNAYEVFNQDIYDRITAGIPDADKVLAQAVETNEGDSLYKEDSLEDLANHFDLPKDILTKTLNDYNKFARQGKDEEFAKDSDNLIPMEEGPYYIARLDPSNLIGVGGIGSNRKFEAIDPDFNTIPGLYVAGMDSTMQYRNVYTITLGGSACAHNVNSGRHAAMNAKDYIASLK"]}}, {"location": "[1656724:1657612](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["hdfR_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01233"], "locus_tag": ["MAAAAKME_18200"], "product": ["HTH-type transcriptional regulator HdfR"], "transl_table": ["11"], "translation": ["MYLEHLTTFVNLVETLNFSKTAVNLNISQSSISQAIASIEKQLGVTLFYRSRKAVSLTPAGQEFYDRVKPWLNEYNKAVQHVQQVQNAQKMNLTIGYSGTPYEHTVVPELVRAFCQEHPQINVFLENYAHQELKGHLTHGNCDVIFTMPDIIAGMDNLAYHSLLIGYYCLIVPSEVKLGPPPISLEELSKNRLIFLDHRWCPPTQDQLQKEICRNNHSLDLAYVNNIATARAMVKARLGWGIWANFVSDPNDLDLKKLPLSTKIVPDYGVAILKQGSPQAARQFVSWLEKTGLPG"]}}, {"location": "[1657683:1661331](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18210"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGYYSKRIYCKMKQNNKKKLDDLAPNDNLKSDNEYLELLDEVLKKCDRLHNVALTGPYGSGKSSIIASYLKRHPDVEKISLNISLAAFSSKQDPDDGDTSLTEEEIQRGILKQIFYKVKPSEIPLSRYRKLHNPSVIKIFIILITLVLSFLIGLYIFDYGLWSKNRSLLDQAVKHAHAFGMLYYIILIVIVVVSGTLLNILVKAVAHILSRLSLSKINVGKVAEVDRQTSESFFDKNMDELAYFFETTNYRIVFFEDLDRWGNIDIFSHLRELNSLLNRDDAIKEPLVFVYALGDDMFQNEEERTKFFDYIIPVIPVMNATNAGEFLLEKVKHGKLEPKITKDFIFDVSPYIPNIRVLVNIWNEFEVYEPIIIKKQGLDLDVEKLLALIIFKNLYPKEFAELELEQGIVKDVFNGKEAYLQTIKRDLKEQISSLESKIESTKNEVLESHKELMTAFLLETTNYQGVTTSFYHGYGYSRQKFNSVNLLNGKQTLKDLKDVGIDNIEYISFEDTQERRIDCNIDELYNKYESRIELATSAKESKVKDLQSQLQNLKRRMTELDLVTLAELIENYPLDDYLPDEVKENNLLVFLLRRGYIDEQYASYINYFKGNSISREDQNFILAVKNRKKLPQSYKLTKVANVADRLRAIDFSQKEIYNNDLMDYMLREYSSTDQKLEAFIKQLKDETEDSWLFVSNYLALETDQAKKNRCKFIRILSYAWHNMFNYIQDRIDLSPETVDCYLELIFKFADTSDIKEMDTSKSISKYLSYTENSLQRFEDIRVSRMTEILDNALSVKFSKEDLSDVPKSMINHITAKRYYKINEKMLDEILGRLNPDLQKSFNKHAYTNLLKLDRDDNLQMQILEYIYEKDNLSIFMDEVVLADDNIFESIEAIRDLLDRLKENEDYQDRLLQHEEFVGVSLSEFTLDEPDQYIWNLVLKNSRVKATWSTVGEYWSSFKFSPELFQFIQNNIDSIIASDRLVCTQDFVDDLFINATWDDDTFSSLAPCFKGWKFSGTISDIPEQNLRVLIDQDFFKFTQEYYDQVKSVSDELATAYILKHQLEALDKLDISDINGLAINLLASPSISSELINRIVDNNLPQKMVDQEVAMNLANKFFDVNKQWFFAILENLSDVKRVPWMQRNIDLLDRDDFRQCFSKLPGTYHEFYEKYNSLKEVKLDNTKGNVALSERLRNVGYITSSRIKNDGKLAVKLKKQP"]}}, {"location": "[1661926:1663678](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18220"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYYNCLVNIPKNTGKISRNKRGKTTYIEYTYAREYLPEKKYNIARRTTIGKADPDHPGMMFPNPNFEKFFPDVEIPAEGTAAEPVNESRSSCIRIGAFSLVRRIIEDYKLAEHLKRWDDRGKGLLLDLAAYSVIAESNVAQHFPDYAYNHPLMTPQNKIYSDSTISRFIREIDDNDRVEFLNSWNATHDKNEKIYVSYDSTNKNCKAGDIEMAEYGHPKNEVGAPIINYSIAYDMTNEKPLLYESYPGSIVDVSQLKYMLEKIRGYGYKKIGFILDRGYFSKANIQFMDSCDYDFVMMVKGRASFVHGLIMEHMGEFESKRACSIKAYQTYGMTVKAKLYADDDTDRYFHIYYKAKKQASERARLEADLDRMEAEMDKIKGREYKLPKRYEHYFKLTYHKDKFYGYEEREDVIERELQLCGYFAIVTSEKMTASEALNLYKSRDISEKLFGSDKTFLGNRSFRVASSQAAEAKIFIQFIALIIRARIYTLLRKRKAEMPGKPNYLSVPSALKELEKIELIRQPNGNYKLDHAVTATQKVILGAFGLDEEWIKAQARQIGKDIQNAAMPEEQKDDDEDAENEEC"]}}, {"location": "[1664110:1665031](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTKSTLWYLNDNNLKYETVIKRLNEKKFSLNPEHYPDFSLVNKMQDQILDLSGSEIRYNLFDYSIASTTGKRIHNQLIVFDQNDQIGFIVDKSKIGLHFIRALLGYDSSQKGVVIPAKRDDSFFDGRLFFWIISRIYYDESQIDFDSDDKNSSLEDASISFNSLDAVKGKTVASLNTVSTEGSDVIKMLTTLSFLLESDRLTEVSLAMTYKEHRNLKVELRSGSDLVGVGVDLYSYDGPYREEKIDDPILRCELLLLTHLDLLPTIQILFKNDSADEDIKRDLAVDIVANMKRRLNKLLEELGAE"]}}, {"location": "[1665039:1665618](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKWLREYFEKYESSVWTLLVAVLCFIPVSKFLFHHESSNIDSAFWAVTCSLISFIIHRRSTIVVRFENGGRWDNNFNEIQLKLSEGKAVPFKIYIKLAGFKEETLVKHSLIFDYPNDIEVGFDFKLDQFVDSEKHRIVIPLSEIGNDEVEFRLLASPQNKITSAGYKTMNCSSDFKFKSVKIENKIIFYWE"]}}, {"location": "[1665619:1666111](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MHSWEVSRLGRHSFKLFRNSAREFVAKPFDMADSYYTFLKRMNGEGLTQFLLTSDTMINLLLSFLQSKNNYLAGITLYDDDDVEAKERITNLFKAYMDGLLTDDDIHSRLDYLESAFSIDLDAISIRNNDHGVMTIRSNGVFDTYDVAWVNIVLCELTKAWNR"]}}, {"location": "[1666381:1666564](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTEHAIVSLELPKDRIRPRNKLPKKRPVLNLKSNGVELSFYSDAPNELMLEVVDKFLSHD"]}}, {"location": "[1666958:1667411](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTDKEISALIETLKANNEELLKQVALLTEQVAYLTNKLYGKSSKRSLSTQDQLSLFEEDNASQETPLKMTRTCHRITETITYKRRKQVGKKQDILDSLPGEELHHRLDNLTCPDCQHELKEIGSFCARKKLLYIPAQVKRIDHIQHSYKC"]}}, {"location": "[1667597:1667930](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVSNWHIKVCEYYLSSLYELLRKELLKQDVFHADETPYRVLDSEIAKDYVLTFLLGKHAEKPIAMDHEKAPKHGISWQAAANTFIMINITIKPTGCDSCRLYGSCKTKIP"]}}, {"location": "[1667901:1668258](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAHARRKFHDSLPKGKAIESDATSVANQGINYCSQMFSLEHAWEDLSAEERYEKRQSELKPLLEKFSDWCSKKSISVLPSGKLGTAFQYCMKHMNKFMNVLKDGRLELSNNRAERAVK"]}}, {"location": "[1668564:1669647](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0438"], "gene": ["epsF_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71055"], "locus_tag": ["MAAAAKME_18300"], "product": ["Putative glycosyltransferase EpsF"], "transl_table": ["11"], "translation": ["MKVLLVSTNNLSDNGVSTFIINNAKLLAKKQDIHVDVLAPNEVAEDITIDLKENKVNVFEIHDRNSNPKQYFKNLVSLLERKKYDVVHVNGSSNIMSIELAAAFFAGVKVRVAHSHNTVTEHEKLHKLLSIPFNMFVNCRVACNEAAGKWLFNKKNFTVIDNGVFLDKYRFNPVVRERMRKQLGISKKDILLGHVGGFNEQKNQAFLLDVMKKLDSKYKLILVGQGGMFDQVKKQTEEMDLGDRVIFTGSVHNVPDYLSAMDVFVLPSRFEGQPFVVVEASANGLPIILSDKISRESNLTGKLEFVSLDSKTWLEAIEKADLPSRGDESDDNIKRLAAKGYDAVKNADDLYNLYAEKLKR"]}}, {"location": "[1669659:1670382](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYWGGYTLTLAELQLFKEASNNGPYDYYHMMSGADLLLVNNKEFDSFFEKNQGKEFIEFKDEQNEHDPEIKRRTKLYHFLQNYCRRFQIQWLNNIFIFFERCSLLLQLILHVNRVKNLDWQIKLGSEWASVTNDFVIRMLQEEPKISKLFRWTNCSDELLIQTIAFNCGFMNRMYHNPNGADNLRFIDWVRSKNGSPHIFTIADKELLEDATAGALIARKFSLDKDSEIINYILKKTGNK"]}}, {"location": "[1670764:1672195](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2244"], "gene": ["rfbX_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37746"], "locus_tag": ["MAAAAKME_18320"], "product": ["Putative O-antigen transporter"], "transl_table": ["11"], "translation": ["MRVVKNYLYNVGYQVLAIIVPLITSYYVSRVLSPDGVGANAFTNSIIQYFMLLANIGIGYYGNREIAYVRDNKQKMAATFWEIQIIKTVMTVVAYLSFVVFMAFYSGNKTYMWAQSINLLAVAFDISWLYQGLEDFKRTVLRNTFVKIVSMVAIFIFIKSPNDVTLYITVLALSTMLGNLTLWPHAVKNYGCVGHGVRLNPWHHFVPTVMMFVPQIATQLYVQLNRTMLGLMVDQKASGFYQYSDSIVKLILAFVTATGTVMLPHVANAFAKGDMKKVHEMLYKSFDFVSALAYPMMFGVAGVSLTLAPLYYSAKYAPVGPAMLIESIVILMIAWSNVIGAQYLIPVNRVKDYTTSVTFGAVINIIFDFPLIHFWGLQGAMWSTVMSEISVTTYQLFVVRNSLNVKQMFGSTWKYLLSGAVMFVPVFWLNTHMKSSWLWLLIEVIVGTVIYLCMIFLLRAPIINQLKDLLVRRRQR"]}}, {"location": "[1672197:1673313](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.4.99.9"], "codon_start": ["1"], "db_xref": ["COG:COG0562"], "gene": ["glf_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37747"], "locus_tag": ["MAAAAKME_18330"], "product": ["UDP-galactopyranose mutase"], "transl_table": ["11"], "translation": ["MSNYLVVGAGLFGAVFAREAAKRGHKVTVIEKRGHIAGNIYTKEIDGIQVHQYGAHIFHTSNKEVWNYVQQFAEFNRYTNSPVANYKGKMYNLPFNMNTFTQMWGVRTPQEAIDKINEQRAEMAGKTPQNLEEQAISLIGRDIYEKLIKGYTEKQWGRKATELPAFIIKRVPVRLIYDNNYFNDDYQGIPKGGYTKLVENMLKDDKITVELDTDFFAKKDEYLQKFDRVVYTGPIDEFFDYKLGELEYRSLRFETEEKNVGNYQGNAVINYTDAETPYTRVIEHKHFEFGKGDPDKTIITREYPADWHKGDEPYYPVNNDRNNDLYAQYKEMADKEDAKVIFGGRLGQYKYYNMDQVIAAALEAVSEEFGK"]}}, {"location": "[1673534:1674989](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18340"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLTIGTNGNATCTVNKKYLRFSGYNFLLVSLGLISLVTSLSTESWVAYALFVGGILFCLSLSMRNQQLFEFSIFTLLTYVFTLEVVVHYLGHPINIRLRDLSLIPISLLLLRYSTKIFKSFSWWACTLGLFFYTCLGVIIHSTPGIQALESAIPYIIGIEYFFVIRYSKSDLSFVDLYKFIYVVCFFFTIGQTIAGFNVDQRNGIFGVFGLGAYSAFVLLYPIYEYSKWSVNQGTLRSTLISIVISVAILIMAECKAQVVLLFIALLIIGLIQRKVNLRPVISIVLVSFLVCVAVNLLTEIYPRFKSAMTLNGAQGYIFGNSNWGIYQYGRFEALINVYSRQSTTLLKIIGNGLGSAASLDIVFLKEAGKVAYQPYFVRLYGLYYGYDLTGLSKLFLDGGIVLPICFLSVYVRTLLADIKSLRSTDKNVFVKAAVCLSFLINASYAFTYADGINDRDMAFAAIICALVIKQVDQLNTYHKQYQV"]}}, {"location": "[1675024:1675828](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18350"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKKIDKNELTMYMVTHKSVNFVPAGRTPIFVGGGDNKNNYLRDNTGDNIAEKNPHFCELTAMYWIWKNDKSSKYVSIEHYRRFFMDPAAIIPKVCTPEKIISFLEEEKIVLPDIVTNTISIKEYYQTYHSKEDYENTAQIIHNIYPEYSKDFQTVMLGKSSFGLNMMVVPKPVFDKYCEWLFTILFKLEDITDLSNRSKYQQRAYGFMSERLEYVWLLHNGFNLARIKQLPIYSVVEGKKIYSILKSMKHRLNKKPYDPTKYPVPK"]}}, {"location": "[1675884:1676388](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.227"], "codon_start": ["1"], "gene": ["murG_2"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00033"], "locus_tag": ["MAAAAKME_18360"], "product": ["UDP-N-acetylglucosamine--N-acetylmuramyl- (pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase"], "transl_table": ["11"], "translation": ["MIFVTVGTHEQPFNRLIEKMDELVEKGEIKEKVVVQYGFSTYEAKHCEMHKIMSFDEMQQTFKDARIVITHGGPSSFVEALQYGKVPIVVPRQLEFNEHVNDHQVDFTKLIAERMNNIIPIYDIDDLAATIANYDSIVKTKNSGESSNNKKFNEDLSEIVDNMIKIN"]}}, {"location": "[1676396:1676861](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.1.227"], "codon_start": ["1"], "gene": ["murG_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00033"], "locus_tag": ["MAAAAKME_18370"], "product": ["UDP-N-acetylglucosamine--N-acetylmuramyl- (pentapeptide) pyrophosphoryl-undecaprenol N-acetylglucosamine transferase"], "transl_table": ["11"], "translation": ["MSKENIKVCLVGSSGGHLTHLYMLKPFWQNKDRFWVTFDKEDARSKLKGERFYPCYYPTNRNLKNLIKNTFLAIKVLRKEKPDLIISSGAAVAAPFFYIGKMMGAKLVYIEVFDRYDKPTVTGKLVYPITDKFIVEWEEMKQVYPKAINLGSIF"]}}, {"location": "[1676918:1677578](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.40"], "codon_start": ["1"], "gene": ["wecA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:B3FN88"], "locus_tag": ["MAAAAKME_18380"], "product": ["UDP-N-acetylgalactosamine-undecaprenyl-phosphate N-acetylgalactosaminephosphotransferase"], "transl_table": ["11"], "translation": ["MDMGYSSSPAYVKQSKVKGRPLYHGIKRLFDFLASLVALILLSPLFLWLAIKIHGEDGGPVFYSQIRIGKDEKPFRIYKFRSMVVNAEKLKKDLLEQNEVEGAMFKMHEDPRITKIGKFIRAHSLDELPQLWNVLIGNMSLVGPRPPLPDEVEQYTDYDKQRLLVKPGCSGLWQATSRNAADFADMVQLDIEYINRSGVFFDLWIIFKTIGVIFHPNGM"]}}, {"location": "[1677608:1678385](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "db_xref": ["COG:COG4464"], "gene": ["ywqE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96717"], "locus_tag": ["MAAAAKME_18390"], "product": ["Tyrosine-protein phosphatase YwqE"], "transl_table": ["11"], "translation": ["MPVVDLHCHILPGIDDGSKSWEASLKLARAAVADGVTHALCTPHTLNGRYTSHKQDVIKLTEEFQDRIDQAGIPLTVFPGHEVRLSGGLTEALDNDDILFCDEEGHYMLLELPSNEVPHYTKNMVYELTRRGITPIVVHPERNKEILGNPQKLQEFLEMGVLVQITASSYTGLFGKEIEDCSREFIKAGQCAFFASDAHDLPRRQYQLSEALDKLAKEFGEDKKQKYLDNAQAVINGDPVYLNWQSLPKKRKKFLGLF"]}}, {"location": "[1678388:1679162](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.10.2"], "codon_start": ["1"], "db_xref": ["COG:COG0489"], "gene": ["ywqD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P96716"], "locus_tag": ["MAAAAKME_18400"], "product": ["Tyrosine-protein kinase YwqD"], "transl_table": ["11"], "translation": ["MAFGRKKHLNNDTMKNGVKLITLANPQSVISEQFRNIRTNINFMNVDREVKTIVFTSAMASAGKSTVSANVAITMAQAGKKTILVDADLRRPTMHSTFNVSNSNGLTTLLTSRSMEMDANSVIRESGVENLSILTAGPIPPNPSELLSSKHMLDLIEDLKQEYDMVVLDLAPILDAGETQQLTSFLNGTILVVRQAYSQKSAVKRAVELLKLTKSPILGYVMNDVDADGDDGYGYGYGYGYGYGEEKEKKGLFGRKK"]}}, {"location": "[1679171:1680011](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18410"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSAEQQNNEEVTIDLRRLFILIKKHIISILIWMIGLGLIAYGVSEYVLVPKYTASTQLLVNRKTADANQAYANQQADINAITTYKDIITSNVILKGASKYLANPVTLVKKATPAKKAVKAKPAVYKRESKSYSVSASELASAVSVTTTDSSQVFTLSATAETPAKAQAIANAVAKEFKEQIPKIMNVNNVTIVAEASKGTKSFPKVSMFTAIGVLAGLVISLLIIIIKDLSDTTVREDSFMTNELGLTNLGEIAHITMPKDWTFTAKTAEKRGSSRRRV"]}}, {"location": "[1680010:1681042](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_18420"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MNEPDQSRVHHHHHRRRKRHIGRWIAGIVGVLLLAVSLVIGYAYKNDRDAATTMYTPVSKSTKSNKNRSSLDKILDAKKPVNLLILGTYTGAEGRSVKNYHGLTDLMMFVTVNPSKKQTRVTTIARDSKVNLPDYPEVSPIKLNSAYSLGGVSETIKTLDKYYSVPIDGYVLVDWASTMKIITKMGGVDVISPLTFDNMGYSFKKGQMYHISGKKALAFVQLRHGDPRQDYGRQERERLVMMAAIKKSVSYKTILNSSFMQSLGDSMQTDLSLNDMIKLAMNYQGVTDNVKSDYAQGKSSSVNNQRFGNMEVEIMSTKERQRISNNIRQTLGIKNVDVYKEDN"]}}, {"location": "[1681367:1682648](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2262"], "gene": ["hflX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P25519"], "locus_tag": ["MAAAAKME_18430"], "product": ["GTPase HflX"], "transl_table": ["11"], "translation": ["MIDNQAHSVKAYLAGVNLDDPNFDYSMTELANLAEANNFTVVGSSQQKAENIVASSYLGKGKVAEIKDLAQGLGASVLIVNDELTPVQIRNLEHMTKLRVIDRTELILEIFSSRARTKQAKLQVQLARLQYELPRLHPSENNLDQQHGSGGSTGGGFANRGAGESKLEMNRRTIGKQISAIKHELKEISGQEEIKAARRNQSQLPKVALVGYTNAGKSTTMNGLLKAFGAGNEDKQVMAKDMLFATLDTSVRRIDLDGFSFILSDTVGFVSKLPHKLVDSFKATLQEAKDADLLINVVDAADPNMNQMIKTTLEVLDEIGVKDLPMITAYNKADLTDRNYPQIEGGDLLYSAVDSASIQALAKLITTRLFSNYQITGLRLPLTAGKDLAYLHQHSRVLKEDYQADGIEVSARLSPQDRARFSAYQI"]}}, {"location": "[1682696:1683476](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18440"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSNMIKFFAAALTFLGISATGVKPVKQPVQAASKRIKVISKQSVTVWTNYQKGRHVATHLKKGSSHFVYQTATDSMGNLWYRIGKKEWVMAKYFNQVKSAKKAVKAKKTKVKSKKTVKKARSAASLAASWSAPMGSKARAKAVVSLAKQQVGKAYVKGSKGPNAFDNASLVAYVYKQAAGVNTGSSTKSQVKKGIAVDPSSGFAEGDLLFWGSKNKPYNVAIYVGDGKYVTAAGDQQGVVQASLSTYFWPSRARRVL"]}}, {"location": "[1683521:1684124](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18450"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKTRVAYNKGNKVNTWTTYGAGKKLVGQVKSGYKFTATGQAQYKGRAWYRIKDNKWILGTNTVTTKKYASIKAKAAKAAKQKKVVALANAQVGKAYVWGATGPSSFDCSGLVQWVYKTAIGQTVSRTTYTQVKEGVAVPVSTASLQPGDLLFWGDVAAPYHVAIYVGNGQYVSAADEQQGVILATISSYFWPTTARRIL"]}}, {"location": "[1684377:1685160](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18460"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKSLLVKVLMALALVAPVAASAQAPAAQAATVKAVNRQVVVNYVSGYSVKAWKNYKVKLGAANDTGISFKHGTTLTVVGEVKYKKRTWYKIADNEWILASYTLSPKAWAKKAAAAKKAAAKAAKKAAAAKKVSKSKQTKQNKVVALAKAQVGKPYVWGATGPYSFDCSGLTSYVYSLALGKYITRTTYTQVHQGKTVAVSTATLKKGDLLFWGSKSSPYHVGIYVGGGKFVHAATPSQGVIKQSLSYYFWPSTAKRLI"]}}, {"location": "[1685454:1685724](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_18470"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MIKIEDKTSASVMKAFDKLREYYGSKWNQIFKSITTDNGSEFADLSDLEQVSKTLVYYAHPYTSCDKGSVERHNGLIRRYIPKGDRMDK"]}}, {"location": "[1685720:1686179](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_18480"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MYRYKAVEGQSTYEPHRSECGRKSLFLRRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWERDLVLGHKTKDDDVFANERRVSSS"]}}, {"location": "[1686582:1687056](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQFKQILVKLTLALALVVPIAVQENSHQAQAASVTTKRNKVVKLAKKQVGKRYVYGATGPNAFDCSGLTSYVYSHAIGKYISRTTYSQVYRGKTVKVSTASLKKGDLLFWGSKSSPYHVGIYVGGGQYVHAATPSQGVRKQYLSSYFWPSTAKRVI"]}}, {"location": "[1687226:1688273](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.399"], "codon_start": ["1"], "db_xref": ["COG:COG1052"], "gene": ["hgdH_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:D2RJU7"], "locus_tag": ["MAAAAKME_18500"], "product": ["(R)-2-hydroxyglutarate dehydrogenase"], "transl_table": ["11"], "translation": ["MRIACYGVRPLERSYFEKLNKYDYDLKLIPEYLNRENVVQAEDCDAVLVRGNCLCDRTNLEQFKNYGISWVFTRSVGVDHFDLEAAKDLGISVARVSNYSPYAVANLAFTLGLTLSRHVGEAAHHVHEHDFGMHPDYFATEFNRLKVGIYGAGKIGAVEGKMWQALGAEVYAYDPFPSDFAKQYCTFVTEDELLATCDIVSVHVPYFPGENDKLMNAEFIAKMKEGAVLVNTARGELADEAAIAAAVSSNHLSGYGADVVSNEKKIMGHNFDCESDVPDQEVQSLMDLYPRVLLTPHMGSFTEPALEDMISLSFNNFHNMATEGAVDARNEVVAAPESSTSASEKLRA"]}}, {"location": "[1688556:1689042](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18510"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKFKKSLAKVVAAVSLAFAGFVAVNTVNTQNNTVQAASKTSQRNKVVSLAKKQVGKPYVYGATGPNAFDCSGLTSYVYSHAIGKYISRTTYSQVYQGKTVKVSTVSLKKGDLLFWGSKSSPYHVGIYVGGGQYVHAATPSQGVRKQYLSSYFWPSAAKRVI"]}}, {"location": "[1689166:1689709](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.4.8"], "codon_start": ["1"], "db_xref": ["COG:COG0194"], "gene": ["gmk_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2GLF7"], "locus_tag": ["MAAAAKME_18520"], "product": ["Guanylate kinase"], "transl_table": ["11"], "translation": ["MAKKIILIAGPSGAGKTTISEYLTDRYQIPRVITHTTRPKRSGESGSAYYFEDDDSFAQLHFFEHVKYGDYQYGSSKEGLERAWAKNDLVSLIVDIKGARSYLEALGDQVYFLYVTCSLDTLAQRMADRGDASDQIKNRLTGSELNELPEDLASCAHVLVNDDLQATYASLDSLVRKLQN"]}}, {"location": "[1689815:1690151](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18530"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKADVELGAVVNAKSEEELKKQFQGTVEKIYENSALLAITSFDDVDAAAVSDLNYKLVVSFKNMKPARAAKKAKALSTNNVTIEKVAPTIKADDKDKDKKEKKAPAKKSK"]}}, {"location": "[1690214:1691753](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18540"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKEKTKSLLYWFILLQPFLDLDFFYRGKLATILPFTIPTIIRIAGVIVLVGLLVWGQKQLPPAWLWAYLDLLTLYGIFHLWHMQNFKSLSPNDYGYSNFGEIFYLFRMLLPLALIWVTKKLEISQDFLLKAFAWVSGLFTGTIVLSNLFVVSLKSYETGVISGNIFTWFMGPLYGYSHSASKGFFYFTNTLSAILLMLAPVVFYLLLERFSWKTGLLALSQTLAMLEVGTKVALYGLAGTLAVSLIAWLVHLFCLKNVKFSKGGLVTLLALAGITGVCWQVSPAVQRYKYEIYLANSHDSKIDQENALLKAGLAKYKNDPDKLKEFEKYFLAKYYQKYALNKRFITKSYPYKYDPQFWIDLLKEPASVRLANRKVEEAMLKQVVKYDNDPLDKWLGIGYMRQTNISNLERDFTAQYYSLGLVGAFLYLAFYPAIILYGAFEWLKEKACRTLYLTSLLIASALLLGASYMSGNVLDFPTSNLLLAFLGGGLLAYIKEEKGRSTGLRIVRFEKK"]}}, {"location": "[1691808:1692435](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18550"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MWSWNVLGVALWVGAIVYLVFIVQNIRRRRLKMIIQRQHKFEWGNFMISLLEVASFCLLVGWLLAVSLFDDPNLTDTSRITSSVTYKPLVLQPSASQSYYVQVKSTKNRDLSQQYIFYLKGKKYTVPSYLATVSYEKDPINVTASALPFSRKELKKEDSRYQQAYVAIYTAKYKNTAANGIGLHAGRRAKRFYLIRVPDSSFIDKEIK"]}}, {"location": "[1692437:1692953](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18560"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQINLKDLTKAIEEQTYLSDMETIKYSEVSRSKKKLREHALTMVQEVATALNKDRLMQVQLVLEGKNPITFALETNIINLPLANYKKLINFFDEEEAQPVKVYFETASEYLNASHFRIDLFMDGDELVADVEGAADRLADAMSEKIKQVKEGEAAAKEAAKEAKAKTKKEA"]}}, {"location": "[1693540:1694032](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18570"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLGMQVSFNIWDVLINLVFSYIDTVGFALTVNIPHRVIHWSGICGCAGWMVYWLVTEASGGRMISNTLGAFAVGLVAVVLAKWKKCPVTLFSVPGLVPLVPGAPAYMVVRRLIDGKYIAAHQMMMRVAIVTVSIALGFLLSTLFQEAWNKYIKRLKLREKLKK"]}}, {"location": "[1694034:1694808](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2966"], "gene": ["yjjP"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0ADD5"], "locus_tag": ["MAAAAKME_18580"], "product": ["Inner membrane protein YjjP"], "transl_table": ["11"], "translation": ["MSTDAYMKRVVHTCLKAGRLMLAGGSEMYRVEDTMRRIAVNAGIKEVNVFAMPTGLFVSLDDGECSTVTELETVKKRAINLELVDQVNEFSRKFADKRIDLEELEEKLREIEENAPTFPLWLQVIGAGILSATLMVLFLGVYDWIDFPVAGLIGASGYLMDSWLKGHTKIRFLAEMIAAMGMGLLTIIINGILPACNVNNILTGALMTLVPGLALTNALRDLFMGDWVSGIVRMCEAAMTAIALGGGVGIVIRFLGA"]}}, {"location": "[1694843:1696388](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0488"], "gene": ["yheS_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P63389"], "locus_tag": ["MAAAAKME_18590"], "product": ["putative ABC transporter ATP-binding protein YheS"], "transl_table": ["11"], "translation": ["MSLLTVSGLTQGFAEKTLYEDANFVLNKEDHMGVTGQNGVGKSTLIKILTGEIFPDEGSVKWQNKLSVGYLDQYAKLTPGLTMRDFLKTAFDQLYQDEARLNQLYIDYSESGDESLLTKAGRLQTYLEENNFYDLDTEIDRVASGLGLAELGFDRDVSQLSGGQRSKLILAKLLLEQPQVLVLDEPTNYLDVGHIDWLVDYLNDFTGAFIVVSHDYDFLGRITNCIIDIDFGTITRYTGTLKQAMRQKEANRQTYMKAYANQQRQIAKTEAYIRKNKAGTRAKSARSRQKQLDRMEVLTPPQNGKKAKFDFPYVETASNLLLQTQDLVIGYDQALVKEAFNFSVGNGEKVAITGFNGIGKTILLKTLLGQIPPIYGGFDLSATAKLAYFKQDLTWPNQNMTPLQYLESEFDQKKPKELRQALARMGLTAQLVMSPLKELSGGEQEKVKLAKMQFEPANLLFLDEPTNHLDNETKDSLRKSIVNFPGGVIIVSHEQDFFRGDWVDKVVDIEAMNN"]}}, {"location": "[1696402:1696780](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18600"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKRYYPYIYGGIAGVMTFIAMFYICRHSFALTNTQSLVWGIIGAILVFVSSSYTEYAIAEIQRISDKYHLDEEFLSGLTKLSPSYFRVADDHLHLTAPRYLWPRILKTLQKYDHERKQAENFHL"]}}, {"location": "[1696898:1698041](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.8.-"], "codon_start": ["1"], "gene": ["tagU_5"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01140"], "locus_tag": ["MAAAAKME_18610"], "product": ["Polyisoprenyl-teichoic acid--peptidoglycan teichoic acid transferase TagU"], "transl_table": ["11"], "translation": ["MEEQHSRRQQKIFRNVTLVQAGFLKKKSRRPLPTIIGLLVTFAVMIAATWGAHAYFSLHSALVSMNGNNGSTATSARIAAKKPISILVLGVDQGLEGRNDKGNSDTIILVTVNPTTKKATMTSIPRDTLTEILGETSNTSYYMFKVNSAYQFGGSSGSVKTVSAMLNVPINYYVEVNMKALESLVNALGGVDVNVPFSFSYDWCDFKKGKQHLDGRHAIAYARMRYDEPRGDYGRQLRQRQIIQAVVKKGLSVNGLVNYQKLLKVFAKYVKTNLTFGDMTSLAINYRSAASNISSGYIQGHDATISGTSLQIASTEELQKWSNKLRKSLGLSTQTLTNQETRQNSLNETYNGVDFSSNETITNYTIYEANSITPRSSDSW"]}}, {"location": "[1698381:1699680](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18620"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAEQVKEAPAELIQTRVYELRPNKTMRKVLDEACDYRRYCWNQGLALWNEMYKARQTLKSSLSTDSKKLTEEQKVLLKDKPSPSERRVRNMLVADKKDWQYTQSARILQLAISDLGKAWNNFFDKAQPGWGKPKFRSKREARQGFKSDQSKIKDGILYLERAKESSVPKDQWRGFKLSEKPLSDEFGVVSYFKEKGRYYVAIPYKIKAEDIKLPDKTGKATAVDVNVGHFDYTGGRMNVLPKKLDKIYGKIKHYQRQLAKKQVKNGEAACESENYLKTKAKLQACYRKASNIQNDLMQKFTTELVNNYDKIVIENLSVKGMLMSHVASKGVHRSMFGKFKQFLTYKCDWYGKELILANKLYPSTQRCAACGNVKKGDDKITLYGNKKHGTKHNEYVCYNQKCPNYNKVVDRDKNAMLSLLALTEHPELNHAL"]}}, {"location": "[1700002:1701805](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.24.-"], "codon_start": ["1"], "gene": ["pepF1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P54124"], "locus_tag": ["MAAAAKME_18630"], "product": ["Oligoendopeptidase F, plasmid"], "transl_table": ["11"], "translation": ["MEIPYRSEVPKEQTWDLTRVFKTEADWEAAFKAVKQEVKALPALEDGFTESAAVLYDRLTQIFAVDRRLSKIYVYASMASDVDTSNQKKLALNSRGQSLAAEYQAAVAFIQPAVLALGKEALDAFFKEEPRLENYRHYLEQIVKQEEHVLPAEEEKLVSAAGDALSASANTFNVLTNSDLRFPYIEDEDGEAVELTEANYDILIQSQNREVREDAFDALYAGYGQFASTFASTLAGNVKAHNFDAQTHHYQDALAAALSENNIPVDVYNQLLTSVHKHLDLLHRYVNLREEILDLKGDLQMWDMYVPITGKPSLSYTFAEAKAQAREALQVLGEDYVKHVDYLFNNRCIDHVANMHKQSGAYSGGAYDTDAYVLLNWQGDLDSLYTLVHETGHSVHSMYTRENQPYVYGDYPIFVAEIASTTNENLLTNYFLDRVTDPKTRAFLLNYYLSSFKGTVYRQTQFAEFEKFIHESDQAGEALTADYLCGFYDRLNQQYYGPAISLGSDIDLEWARIPHFYYNFYVYQYATGFAAATALANKITYGSQEDKEKYLDFLKSGSSDYPINIMQKAGVNMTKSDYLEDAFKVFAERLDEFTDLIKKL"]}}, {"location": "[1701908:1702481](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.-.-"], "codon_start": ["1"], "gene": ["lldD"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01559"], "locus_tag": ["MAAAAKME_18640"], "product": ["L-lactate dehydrogenase"], "transl_table": ["11"], "translation": ["MTDTYQNGIISQDSDGDYVLEKLGTPNAKGLPVIVKGVNCAEDVEVALTAGADGVYVTNHGGREIDGDPATIDVLPEVVEAVNGRCPVIFDGGVRRGSHVFKALALGADLVGIGRPYLYGLALGGPHGVASIINELNDELKIDMQLTGCKTIEDVKHARLTDFQYAGDISHPALTRGCAILSYRGQPNQV"]}}, {"location": "[1702773:1703328](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18650"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIYCANCGAKNQANATFCVCANCGAKLVKPAQSSQLTQQVQPVKPAKTGKRRADLKQVRKWEDDLDDVFEDSVSLGEDGHYFFFFPKYKLMVKTYSPTVVTNHENSTIKMNGKNVGKLSASGDYYQKKLDPVIAGRYTFSVSANLSGKTISPSPVKLDLFSNHQVSLNITTGSFTVSSVSLHLR"]}}, {"location": "[1703464:1704262](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1108"], "gene": ["znuB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34610"], "locus_tag": ["MAAAAKME_18660"], "product": ["High-affinity zinc uptake system membrane protein ZnuB"], "transl_table": ["11"], "translation": ["MFAYEFMRNAFWAATFIAITCGVVGVYVVARNFSFLAHTLSEIGFAGAAFAILMGLKPLTGMLIFALLGSIGVGELSMQTEQKESSISAISAFFVGLGILFLSLSSSASSYATNILFGSIIGVSRSSVYQLVGLSVVVLLIIFAIQRPLNYDSFDHIGAAAHHINTGFVGVVFLVALAMAVSIGSQVVGSMLVFVLLTMPSSTARYLGKSIPSMLAWSVGLALLGVWAGLCLGYITNWPVTFFISVIEVTAYLLVYFTQARKKRA"]}}, {"location": "[1704261:1704915](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.2.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG1121"], "gene": ["znuC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8ZNV7"], "locus_tag": ["MAAAAKME_18670"], "product": ["Zinc import ATP-binding protein ZnuC"], "transl_table": ["11"], "translation": ["MSKALQVVDLSMKFDDQEIFKKLNFSLETGSMTALLGPNGAGKTTLVRILIGMLSPSHGYFELADDVKVGYVPQFRNIDPDYPLSIKSFIELNTPFWKSKKVKDQVNHILQETHLKGLADTRMGEASGGQKQRAYLAQALLDQPNFIILDEATASLDPKAKEELMSLIAHINHEHKMTVLFVTHDIPLAKRYMKDYLYLSDGTVSQGKMEDFKENFN"]}}, {"location": "[1704940:1705741](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.104"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["ybjI_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P75809"], "locus_tag": ["MAAAAKME_18680"], "product": ["5-amino-6-(5-phospho-D-ribitylamino)uracil phosphatase YbjI"], "transl_table": ["11"], "translation": ["MIKLIATDMDGTWLNSKKEYDLDKFKQIMDLAREKGVKFVIASGNQYENLVTRFPKEYLSQLYFVAENGAYVLKGREILNIVDLNSDELATIHEIKEKYGQDHPTVLAGVNSAYTLQSYGEEFYNYLRLFYQELKAVDDYESVKDRIFKFTVVTGERESSAFAQQLKREFPSLDMVAGSDSAVDISKLGMNKAVGLKLLGKRYGIPADEMVAFGDGGNDVAMLQYVGQSYATATALPEAKRAANGIIGSSDESAVQDRVLDLLKKL"]}}, {"location": "[1706006:1707977](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1299"], "gene": ["fruA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P71012"], "locus_tag": ["MAAAAKME_18690"], "product": ["PTS system fructose-specific EIIABC component"], "transl_table": ["11"], "translation": ["MRIKDILSPESMIMDLQATTKDEAINEMADLEVATGIVNNKEKFVESIWAREKESTTGIGGGIAMPHARNEYINKARVLFAKSEKGVDYDSLDQQPVHLFFMITAPAGADNTHLQALAKLSSLLINPDLVEKLKAAKTADEVIDLFSQAEADKDKEDAEREAKLAAKKEAEAKAASDEKPLIVGVTACINGIAHTYMAEEALIKAGEKRGVEVRIETNGSEGVKHELTADEIKRAKGVIIASDKQVKMARFDGKKLVKHPVVDGINKPDQLIDEILSGKGSVYHAEAGEASESSAASDGSVWSTIYRHLMSGISHMLPFVIGGGILMAISFLVEQYMGGAKSPAFIFLNSAGNLAFAFMVPVLAGYIAESIGDLPALMPGFVGGFMASITNSSLGGSYVVNANAKAASPAGFLGGIAIGFIAGYLILGLKKLFVKLPKNVEGMKPMLLYPIFGLLFVALIMYYIINPVFGALNGVITNFLNGMGTGNLVLLTTILAGMMSIDMGGPFNKAAYVFASGAFANDPTSKTSAILMASVMVGGMVAPLATAIATTFFKNKFTEDERRAGVSNWILGFSFITEGAIPFASADPLHVIVSSIVGSAVGGTLVGLWHVGVPAPHGGFWVIALSSNWLGYLGAVAVGSIVAALMMGFWKKPIEK"]}}, {"location": "[1708025:1708940](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.144"], "codon_start": ["1"], "db_xref": ["COG:COG1105"], "gene": ["lacC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q833W9"], "locus_tag": ["MAAAAKME_18700"], "product": ["Tagatose-6-phosphate kinase"], "transl_table": ["11"], "translation": ["MIYTVTVNPALDYVLQLLEVKDGETNRSSDTKFLAGGKGINVSQILNQLGVDNTAWGFVGGFTGEELIRQLNVKKISSDFVRISDDTRVNVKIHAQEETEINAAGPDITDQEVAAFKSRLDDLEAGDVVVLSGSLAPSLPTDFYESLLPLIREKGAEFVVDTTGEALLRTLKFNPLVIKPNHHELADLFDTSFSSTADMLEAAKKLQKLGAQNVMISMAGEGAYLVTADHVYHANAATGTAVNSVGAGDSMIAGFVGTWFEKHDAAEGLRVGSACGGATAFTEDIAIKSQIDAVLPQIKIDVVE"]}}, {"location": "[1708939:1709689](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1349"], "gene": ["glcR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P94591"], "locus_tag": ["MAAAAKME_18710"], "product": ["HTH-type transcriptional repressor GlcR"], "transl_table": ["11"], "translation": ["MLAEERQQMIAHYVDEHQICRVTELCRLTSTSESTIRRDLSEMEDRGLLKRVHGGAQSLQTFGQDVAQQIRFNLNKDDKLAIARLAARKVHPHDYLFLDAGTTIYEMVPFLKEISGLHVVTNGLETALALTDAGIDCCLLGGHVKRQTHAAIGATTVSRLQELNFNAAFIGANALSPAGFLTTPDTEEAAVKRTAIQQSQQAFVLIDRSKFNAVTFAEFAKTDQVTIISRLEAGDREKLPVNIQLEEAE"]}}, {"location": "[1709850:1710600](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["5.1.1.13"], "codon_start": ["1"], "db_xref": ["COG:COG1794"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29079"], "locus_tag": ["MAAAAKME_18720"], "product": ["Aspartate racemase"], "transl_table": ["11"], "translation": ["MKHFFSIIGGMGTIATESYVRLINHRVKISKDQDYLNYILVNDAQVPDRTAYIKDHSQPNFFNALKEDVLGQAKLGPDFMVMPCNTAHYFYDDLAALTDIPFLHMMRIAVHQYVDQFPNSPKIGLIATEGSIYDHLYEDEIHRVGREVEFGGPEIQPMVTELIYRDIKEKGIVDKELYHEILRKMHDEYGCDVILLGCTELSLAQEQAPDHPYQVIDPQSIIADVSIELALAIRNGQDPRQACQKYLYD"]}}, {"location": "[1710613:1712164](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.2.7"], "codon_start": ["1"], "db_xref": ["COG:COG0769"], "gene": ["murE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9A196"], "locus_tag": ["MAAAAKME_18730"], "product": ["UDP-N-acetylmuramoyl-L-alanyl-D-glutamate--L- lysine ligase"], "transl_table": ["11"], "translation": ["MNISLNTCILILKEHHLLKSSAVQDTVQTIMEAVSYDSRDVQNNSLFFCKGAGFRPTYLTMAKENGAIAYVAEQPYPEGTGMHALIVRNVSKAMALLSAAFYSFPQDDLFLVGFTGTKGKTTSAYFLKGMLDQLNGGRTALLSSVDNILGPAPEDTFKSSLTTPESLDLFRDMRRAVDNGMTHMVMEVSSQAYKKSRVFGLTYDLGFFLNISPDHIGVNEHPNFEDYLHCKLQLLVNSRKCIINAETDRFADVYAAATTTTNPDSIYLFARDGFENPDLKKPIDFRYKSVETDLAETKFTLTTASSKAHKLPISGEYTLQMIGDFNETNATGAIIGAGLAGMSYEDCAKGIRHVTIPGRMETVTTQKHGLIVVDYAHNKASMLALMRFMRREFTTPRVIVVVGAPGDKGISRRPGFSESLTAEADKAYLTTDDPGFENAQDICEEIDAGIDHSKCETVIELDREKAIKEAISEAGPDDVVLLCGKGADAFQKIRGVDTPYAGDIVIARQVIQELEK"]}}, {"location": "[1712200:1713409](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.-.-"], "codon_start": ["1"], "gene": ["sasA_4"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01837"], "locus_tag": ["MAAAAKME_18740"], "product": ["Adaptive-response sensory-kinase SasA"], "transl_table": ["11"], "translation": ["MKLEQDKEKQVVQGKRPRVKLTAAEKSELFAEGVVTVIIMLLLNMSVIILYHLAVLQDKSLVNGIYFLKKTMTIGPGYHIWSWERIGIILMGIADVIVLYWRLIRRYHQMQLRHIISELHYIANGHFDHRISFSVNNDMQKVIDSINSLVDSTVGAINEEKAIEQSKDELITNVSHDIRTPLTSIIGYLGLLKNGAVTSQEDMLKYINIAYDKAEQMKSLANDLFEYTTLKSTKTKLNVTPINIKGMMEQVAAGFELEAEKKGIAFSVKARPDDLIVNADVEKLVRVYNNLISNALKYAAGASRINLVANLINHEQVELRVENNGEPIPKDKLKKIFDRFYRVESSRNTKTGGTGLGLSIVQGGVELHGGTIRCESNKDWTSFIILLPRDPQANNFALRPVV"]}}, {"location": "[1713398:1714085](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0745"], "gene": ["srrA_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L524"], "locus_tag": ["MAAAAKME_18750"], "product": ["Transcriptional regulatory protein SrrA"], "transl_table": ["11"], "translation": ["MKILVVDDDHEIVELLSIYLKNEGYEPIAAYNGKEALTKLSTTPDIALMILDVMMPNMSGIDVVKEVRKDSDIPIIIVSAKTGDMDKIQGLITGADDYVSKPFNPLEVMARVRSLLRRSQKQVKGEEPDVLEVGPLIINKDSHEVKTVEGKEIQLTALEFGILYLLASHPNRVFSADEIFERVWQQESIVSAKTVMVHVSHLRDKIHKATDGEEVIKTVWGVGYKVEA"]}}, {"location": "[1714213:1716058](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9WYC4"], "locus_tag": ["MAAAAKME_18760"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MTKKQAQQPSQMQTLTRLLKYVYRVSPAALIVSLASVIISAAASVVGSLFIEQVIDRYITPMLKQKSPDFGPLAHAVLLMAGVYAIGLVANYLFTLLMMVLSQQVQKQIRNEMFTHMQRLPIAFFDQNEYGDIMSRYTNDIDTLMQMISQALPMFANSVFSVVFVLAGMFYLSWQLTLVSLVVVLLSLGVVRYLTGKSSYYFDQQQKTVGTVNGYNEEMLNGLKVIKVFSHEPEAKADFDRYNDQLRIASGKANTYATILFPIMGNIGNLLYVLIALLGGAAILAGNIPLTLGALASFMQLSKAFIMPIAQISQQLNAIVLAIAGARRIFQVLDEKVEVDDGQVTIEEKPGVKNAWQWKLPTENGFKYVPVKGHIVFDHVSFGYVPGKQILHDISLEAKPGMKVALVGETGAGKTTISSMINRFYEINSGTITYDGIDIKDIKKDDLRKSVSIVLQETHMFTGNIMENIRFGRPDASDDDVYQAARLARADEFIHDRDDGYETVIDGGGSDLSQGQLQLLSIARAMIADNPVMILDEATSSIDTRTERLVQAGMDNLLAGRTSFVIAHRLSTIVNSDLIIVLDHGRVLEAGNHDQLLAKQGYYYELYTGKKEIQ"]}}, {"location": "[1716068:1717706](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1132"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WQJ1"], "locus_tag": ["MAAAAKME_18770"], "product": ["putative ABC transporter ATP-binding protein"], "transl_table": ["11"], "translation": ["MYIPYIMGLLIDNGINKGDMDYVRKMGLFTILLTLVSLVLGASASYFSAHAAAGFTANLRQDMFYHIQDFSFENIDKFSSASLVTRLTTDTNNIQQAYQMSIRIAVRAPFMMIISLFMAVSISWRLTLVFLVPVPVLALAMILIIKNARPYFPRIFRAYDELNRKVRENIRGVREVKTYVHEEEQIENFEKSTSKIYKLFSRAMFIMAFNGPVMTMMIDAVMLALSWFGAKLIVGHQLATGQLVSVFSYTMSILMSLMILSMIFTQLMMARSSGHRVADVLTAKPTIVNPAKSPLTSVTNGEIVFDHVDFKYNKEDDHYALKDIDLRIKSGETLGIIGETGSSKSTLISMIPRLYDVTGGAVRVGGHNVRSYDLKTLRDNVAVILQKNVLFSGTIKDNLKWGNEKASDEEIVRAVKIAHADGFIREMTDGYNTMVEQGGNNVSGGQKQRITIARALLKKPKILILDDSTSAVDAKTEREIREALKRDLPETTKIIISQRIVSIKDADRIVVMNHGKIEDVGTHDELIKRNDLYSSIAKFQEENSK"]}}, {"location": "[1717931:1718702](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18780"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSEEKQVKNDSQAELQKQGQAEAKTESIKQENPEELRGKLSNKNKDYIYRLKKELVAGGMSEGDADAQIDGLLPEIYDAQIKGQPANVLFGAAPKMKASQILHPVVKPERVSDKLVALDGALFYTAMLTVLFGVLQLFTDNSKSTSSGSGILTLIVMGLSMGWYFTKYNTWMQPDPKTDKQAWGKVIWGLLGSLLIIMLIVFVLSIPALSVINPVLPGWADILVAAAAYGIRWLVRRHYGIEGTSLSPDKLTMKKK"]}}, {"location": "[1718716:1719817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0012"], "gene": ["ychF"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37518"], "locus_tag": ["MAAAAKME_18790"], "product": ["Ribosome-binding ATPase YchF"], "transl_table": ["11"], "translation": ["MALTAGIVGLPNVGKSTLFNAITKAGAEMANYPFATIEPNVGMVEVPDKRLARIQELIPAKKVVHTTFEFTDIAGLVKGASKGEGLGNKFLENIRQTDAIVHVVRAFDDENITSVSGKVDPEEDIDTINLELIYADLDSVDRRIGKVQKMAQQKDKEAMAEYNVLQKIKPVLEAGDPVRSIKFTDDEAKIVKGLFLLTSKPVIYVANIAEESMADPESDKYYQIVKAHADKEGAGCLGISAAIEEEIAGLDDEEKEEMLAAEGVEESGLDRLIRAAYHLLGLRTFFTAGGKETRAWTFHQGMKAPQVAGVIHSDFERGFIRAEVVSFEDLDKYESMQKIKEAGRVRLEGKEYEVQDGDIIEFRFNV"]}}, {"location": "[1719893:1720157](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18800"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTKNITFDLADTVEMKKPHACQTNNWEVLRLGADIRLKCMGCGHVIMMPRADFNKKVKKLLAKSNDPVNLKNDFYVAKEDIARPNFG"]}}, {"location": "[1720149:1721040](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1475"], "gene": ["spo0J"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26497"], "locus_tag": ["MAAAAKME_18810"], "product": ["Stage 0 sporulation protein J"], "transl_table": ["11"], "translation": ["MARDSRNKKQEKKKGGLGRGLGALFEEEPQVKPAEEIEDLPLAEVRPNPYQPRKNFDEKKLAELAESIKENGVLQPIIVRRSVGGYEIIAGERRCRASELAGQATIPAIIRQFDESQMMEVAILENLQREDLTPLEEAQAYEMLQKNLGLTQEEVSKKMGKSRPYITNYLRLLTLPQKTKGLLQRGELSMGQARTLLGLKDKDRIDELAKRVVKEGMPVRKVEALVAKMNERGQKKKNNAGKSAFVRASESQLAAKFGSPVSITENKTGKGHLSIDFASPDELNRILDLLGVNLDD"]}}, {"location": "[1721017:1721797](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG1192"], "gene": ["soj"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37522"], "locus_tag": ["MAAAAKME_18820"], "product": ["Sporulation initiation inhibitor protein Soj"], "transl_table": ["11"], "translation": ["MGSVIAVANQKGGVGKTTTTINLAASIAKRGYKVLIVDIDPQGNATSGLGIEKSTIEYDIYNVLIDEIPIASAIKPTSSKKLDIVPATINLAGAETELISMMARETRLKGAIEDLGDKYDFVFIDCPPSLGQLSINAFTASQSILIPVQSEYYAMEGLSQLLNTIRLVQKHFNKDLGVEGVLLTMLDARTNLGADVVQQVKEYFGDRVYKTIIPRITKLAEAPSYGEAITEYAPSSRGAKVYDDLAKEVLKAHGKRLKK"]}}, {"location": "[1721798:1722623](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1475"], "gene": ["noc"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37524"], "locus_tag": ["MAAAAKME_18830"], "product": ["Nucleoid occlusion protein"], "transl_table": ["11"], "translation": ["MAFGFFHRNEIPQNKQVQDLPLAEIHPNRYQPRRTFSDDSIQQLAQTLQEEGLLQPIIVRQDQGGYEIIAGERRFRAAKSLGWEKIPAIVNNLDDQQTASLALIENLQRENLNPIDEAQAYEQLMQLNDLTQTQLAQDIGKSQSYVANKLRLLKLAEPVQEYLAKGGLSARHGRAILGLSEEDQVKLAEEIVEKGLSVKETEERAAKLANPKPAVKKKAVVRYGRDMQLQINTIKQAVKLAKESGVKVKVTEAKSPDEYQITIVMKNQRKKKED"]}}, {"location": "[1722641:1723361](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0357"], "gene": ["rsmG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q97QD4"], "locus_tag": ["MAAAAKME_18840"], "product": ["Ribosomal RNA small subunit methyltransferase G"], "transl_table": ["11"], "translation": ["MNPELFAETLSKYNFKLSPVQEQQFKTYFKELVRVNEHVNLTRITDEDEVYLKHFYDSVTPLLLWPEVFAEGAKLCDVGAGAGFPSLPIKILRPDLEVTIVDSLGKRLNFLSDLLEKLGIEGVNLVHGRAEDVGQNPDYREKFDLVTARAVARMSVLSEYCLPLAKVGGKFLALKGPRADEELEDAKSALEKLGGEVVFTRVITLPGSTEVRTLVLVDKVEATPGKYPRQAGTPNRKPL"]}}, {"location": "[1723524:1724049](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLLVIFVILYIAWQTYKGYHVGFFKRIVNLIFAGLVFMLAIMLQNPVGNLIYTQFIQGQAGDSSLVLHACRFGAFFALFFILKQIAKIFKAWLPAQETKTGFTATLDHMAGAIVSFVASYFFMYVVLSILNSVGVSQLSQLISDSQLLSFIVNDTPGLSTGVFKTLFSVSRTTA"]}}, {"location": "[1724094:1725054](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.180"], "codon_start": ["1"], "db_xref": ["COG:COG1477"], "gene": ["apbE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O83774"], "locus_tag": ["MAAAAKME_18860"], "product": ["FAD:protein FMN transferase"], "transl_table": ["11"], "translation": ["MGIIKYISTDQVLAQHKAMGTHISLQIYGAREDPEKILDQTKVLIDHFEDLLTVNRKPDHPRYGLSEVTRVNDQAGKEAVQVSSSVYGLIKLAVETSRENFGFNALIGPLVKLWSIGFQDARVPSDAEIQEKMKLIDPWMVELNDDDHTVFLKQEGMELDLGGIAKGWTADRIRDLWRAYGVEAGIINLGGNVLFVNPCPKRANGMWTVGVQDPLKPRGENITAMMIPECSVVTSGTYERFLEVDGHKYHHLIDSRTGYPVETNIAGVTTFTKNSVDAEIECKRCFFAGQPIANWVNDCRLGAIYVYNDERVEKVGLDY"]}}, {"location": "[1725065:1725848](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "gene": ["iphP_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q05918"], "locus_tag": ["MAAAAKME_18870"], "product": ["Tyrosine-protein phosphatase"], "transl_table": ["11"], "translation": ["MAEELLPLKTVRNPRDLGGYTGFSGRKIKAGLLLRTGTVAAISEEDGNYLRARGVKTIIDLRSPQECRKRPDKKLAGIQNVNIPVNSRDQTKAEASLAELARQYGLDPLAGFRHMVESYRLMVTEEHAQAAFGQVLAYLAETEGGTIYHCSEGKDRTGLVTVFLLTVLGVDPETIRQDYLLSAPYLNGYRAKRDKEARENGESLVQRANLRSLGTVNNEYLDSALITIDQEYGGMEAFLTRQLGVTPVLRDQLRAKYLEE"]}}, {"location": "[1726000:1726549](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.5.1.36"], "codon_start": ["1"], "db_xref": ["COG:COG0431"], "gene": ["nfr2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HL8"], "locus_tag": ["MAAAAKME_18880"], "product": ["NADH-dependent flavin reductase subunit 2"], "transl_table": ["11"], "translation": ["MKLLAIVGTNADFSFNRLLCQFIAKRFGDKAEIEVAEIGDLPAFYKEGQADARVAAWREKVDQADGLIIATPEYDHAIPAALKSALEWLGSHAGSKVMAYKPVCVVGVSLGVQGSSRAQEDAREILLSPDMTANVLPGNELLIGQAYSSFDKESGDLVDEASIAQLDKVMEAFFAFVAQAKK"]}}, {"location": "[1726565:1727105](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.5.1.36"], "codon_start": ["1"], "db_xref": ["COG:COG0431"], "gene": ["nfr1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HL7"], "locus_tag": ["MAAAAKME_18890"], "product": ["NADH-dependent flavin reductase subunit 1"], "transl_table": ["11"], "translation": ["MKVLALNGSNADKSYNEMLLKFIAKHFADKYDFEFATVKGLPMFKEGQEDPADVAKLSDQVAAADLALIGSSEQQHSVTSALKSALEWLSTNTHPFNGKPVVIVSTSPLAQGGARSQTKLKTILASPGLHPVVFNDDEFMMGGAATAFDENGDLKIPGTVDFLEHFFDEVDAWYAQITK"]}}, {"location": "[1727232:1727778](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARRKEIDRERILDIAYKKALTDGIENLTARSIAQTGHFSTQPIYLEFKNMDGLRKEVLKRVSRTLRDEILQKKFIGEPLYDVDLSYLQFARDHRSLFSTIFVNGEFGDDLIRDTLMDLGHTKLREQYQRDLDPELEKWLIALNWIIVNGLAVMLVDGLIDYDQDNFVRIIKRQLESLFDR"]}}, {"location": "[1728055:1729456](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepDA_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q48558"], "locus_tag": ["MAAAAKME_18910"], "product": ["Dipeptidase A"], "transl_table": ["11"], "translation": ["MTTHGRSSCTSILIGKKASLDGSVIIGRNEDSRTAWPKHLAFHQRQAGAKTFKSHDNKFTIDLPEEAFAYSSTPEWTKKYGLFEEDGINEHHVAMSATESAYANERVLAIDPFDAEKGLLEEAMVTIVLPYVKTAQEGVKRLGEIVEKYGAAESNGILFADRDEAWYLEIGSGHHWVAQRIPDDSYTVVANQLSIQEIDFKDPANFLYSAGLQEFVYEHQLWPKEAKFNWREIFGTRSESDLHYNTPRVWYGQKLLTPSVKQEPQSFDLPFIQKADRPLSIQDAQTVLASHYSNTEYDLTNPKNAGQATFRPIGVATTQESHLLQLKGEDMYHWLAMGVTAQSVYIPFFPQGTKVPYMWGNGKVDYSPNSAYWIFKLAGVLVDRNWGKYGKELANAQTEAKEKVLRLRYEYDQKLHADPSQATAIADEANAKMAKTVTDIYNKLISNLITQQTGDSPLSFQMDPNL"]}}, {"location": "[1729632:1729857](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18920"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAKSKLIKANEKITEKVTGAFGKVQDSVVGGYSKIEDKFVDQYLTKDGESIADAKARLKQEQADRKAKQDLHKQ"]}}, {"location": "[1729914:1730412](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFRIFDLLKSRARLSKVLAPVQGRLFPLEDVNDEIFASKGLGEGFAVQPSSDLIYAPLNGTVTSLFPTNHEIGIRTKEGLDLLIHLGLNTVELGGVGCDILVEAGQEVKKGQLLATMNRKLLRGLGYDDTVIVTYTNDQILKGVSAPVFFREINAKRAVQTISYH"]}}, {"location": "[1730526:1730817](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18940"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSTTAKLIYGYLIRPAQKRYKDEAGRVDEENDFLAKISQSCLINPKNVAAINLRKRTIVMLNGEILSFSRRFRHEMDKLVDEYNWKVETATKRLLR"]}}, {"location": "[1731207:1731600](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q46604"], "locus_tag": ["MAAAAKME_18950"], "product": ["FMN-binding protein"], "transl_table": ["11"], "translation": ["MLEESTTLTQNFLEVISDPQPVTIVSYQASPAHVVNTWSSYIKVVDDSTFLVPAAGMRSIEADIAAQNSQLILTFGSMKFEGTEGPGRGYHVYATGEFVEAGEYFDLMKADLPWLRKVLVVHVQEVKQKI"]}}, {"location": "[1731691:1732618](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKKSERLNQELIFLSDKKRFNLQDLMDNFQISKRTALRDIASLEELGLALYAEAGRAGGYSLIQEDLLTKIYFNSDEVAAIFFALKAMEQLKETPFNESFQMISQKLLKNLAASRQQQVLASQAAVSFFNTPAVHHNPYLRLLMESILHDSLVRANFKGQQVLLQPCQLFFRDGNWLFAAYDLLGQAFWNYRCDQLQDCTEQAAVPNKLSLAELKQKQLEFEHDNSGQKFKILLNHRGQEHFLKNLYPNMQLEHEGGTTYLTGSYTPRTFEYLIDYLLTFGLNAKIITPEELRRSFKERLAAILDQYS"]}}, {"location": "[1732931:1733606](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1136"], "gene": ["yxdL_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P42423"], "locus_tag": ["MAAAAKME_18970"], "product": ["ABC transporter ATP-binding protein YxdL"], "transl_table": ["11"], "translation": ["MAAIEIKNVKKVYGQGDAATVALKGVDFSADTGNVVLLMGPSGAGKSTLLTIMGALQTATSGKVEIDGQDISRLKEKDRSRLRLNKLGFILQAYNLVPYLTVKEQFQLVDKVKKTGNLRQEELKDLLADLGIENLVKKYPENLSGGQKQRVAIARAMYANPKILLADEPTASLDSERVEEVGRLFKKLAKDDGKAIILVTHDPRLEKYADHIYDMMDGQLTQRK"]}}, {"location": "[1733607:1734666](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0577"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WG17"], "locus_tag": ["MAAAAKME_18980"], "product": ["putative ABC transporter permease"], "transl_table": ["11"], "translation": ["MFLALKEIKHEKMRYGLIVFMIFLIAYMILATWGLAYGLARENTVALEGWQTKSVVLNKNANLFMNSSILTKDDLKKIDLTDKEAVVGELQVVAKKKGKTGINAQYMGVKKGEFIYKDQDVIAGRRAKSKYEVTADSSFKDKGYKLGDKVTLNGSDHKYTIVGFVRDAKINIEPIMCGFLPAWKELKNVAPGIEASGIISQRKLSVKGKNFKTYGIKGFTQKLPGHSEQNLTFELMIAFMFIISLAIVAVFLYILTIQKLPNYAVLRAQGVPAKTLIWATVSQSLLLVTSALVLALLAIWGTAAAIPASVPMAFTPGIFLATIGGMLVMALLGGLNPVRTILKIDPVQAIGG"]}}, {"location": "[1734708:1735212](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_18990"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKATFENLSKDKQDRVTEALLKEFSAHTLASAQVVRIVKEAGIARGAFYKYFEDLTDAYQYLFKLAMRDLHTGLTGRMGADELYQMTKDFVTKATGSQYYDLIRLHYAANEALLPSNKPKQMPACAWAAMVLSHEAIKEALLDPDKADFYLDREHEALEKLFSQHK"]}}, {"location": "[1735528:1736470](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.-.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0277"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P9WIT1"], "locus_tag": ["MAAAAKME_19000"], "product": ["putative FAD-linked oxidoreductase"], "transl_table": ["11"], "translation": ["MKAIKYGVTREHIREVKVALTDGKVYKFGSKSVKSSSGYSLKDLIIGSEGTLGVITEAVLRLYPRPKHALNAIIPFPTLDDAIESVPAILASGVVPTTVEYMGRKVLNLWEKYYDATFPIKKGDGFIILGIDSFTASDAEAQLAQALEAVKPFHALKETVLNAESDEAKTIWDAREKLLLAIQKSTPKMDEVDVSVPINKIPLVLHRIEELEKEEDMRIPNFGHAGDGNLHIYLCSDDMTDEEFAKKGDNAISELYKTAKSVGGNMSGEHTGLATPARTTTKTSTARITPTCSERSRASSILRASLTQTRSSR"]}}, {"location": "[1736466:1736718](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEYHKLTAEDIENLRPMIADPERFITEVTGHWDHDQFKTVRAMPDLDLVIQPTTADGRQAIYLHASTSHALVYCSRQHQPPAA"]}}, {"location": "[1736894:1737632](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3022"], "gene": ["yaaA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A8I3"], "locus_tag": ["MAAAAKME_19020"], "product": ["Peroxide stress resistance protein YaaA"], "transl_table": ["11"], "translation": ["MKIVISPAKKMQTDGGFLPKSQPVFLDQAEELWSYLHSLDQAGLEKVWRANAKITEEARQMLAADLTQPQVPALFAYSGLQYQYLAADVLDQAGLDYLDQHLRVLSGLYGSLRPFDGIVPYRLEMKSPLPAFKYKSLYEFWGEKVYQELYQDDSVVLNLASKEYSHLLTPFLKEGDRLLEVVFQEEKNGKWRTQATHAKMARGRLVRWLAEGGRDLSDLPGFTDFGYAFAPDQSGEDRVVFRKKA"]}}, {"location": "[1737696:1738332](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19030"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINPDFAIILNFNPTGANVNADALVRRARDIGARAVSGREELKAACEKYTIAYLPDQAGQHYKADEVVDALLAARKAGQALVVDVDGEDEADQAALDALNAWMHKFGHAVNEGQESDLSADAAEAFVLTNRHAPYQAYLFLKAPYPAEVKVTGLTEAPNRIEWIDGREECEFVFENGVLTVQLKKQESPFAWQLVRIQGHRPEDDIAETKF"]}}, {"location": "[1738425:1739616](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19040"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTSRKDYRKKNTQGSKYLIITGVAVIFLACAGIWGHNAYQQHQATVPAENKKHFNANVTIYGVKVGKLTVDQAVEKIQAKAVNKLVYKDGKISAVRDSKLTTISKEQVQKYFDKQYTQLPTDQSYNYENTALKKGKSKLKAITAASVDYSVAGKTFTLAAKDYLTQVSYYSGAVHYDDASKLTAKLNAMDKEVKTLGKSYKFKTPAGSTITVTNQSYGWGIWTASAKKAVLSAYETGKKTIDGKNHIYGEGYTTQGLGYGKSNNGLGNSYVVVSIARQDMWVVVNGKVVVTVSDVVTGTANKGDNATPTGVWYIMYKQQDATLRGQNDNGSNYASKVSYWMPFTMSGCGLHDASWRTDWSSTAYLEGGSHGCVNIRPSEIKSVWDAVKVHMPVIVY"]}}, {"location": "[1739857:1739992](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVEEKKVTPEARDAAVNTFLPLYEKADRQMLVEGAIVDASLVAM"]}}, {"location": "[1739995:1740193](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19060"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLVAREHGYETNLMAGYDASKAAAEFGLDPEQYIPVMAISIGKPDPSEVVPDTVRYDVKDVTEFA"]}}, {"location": "[1740263:1742795](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.11.2"], "codon_start": ["1"], "gene": ["pepN"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37896"], "locus_tag": ["MAAAAKME_19070"], "product": ["Aminopeptidase N"], "transl_table": ["11"], "translation": ["MAVKRFYETFHPDHYDLYIDVDRAARSFSGTSTIHGEIQEETVLVHQKYMTISKVTVDGKEVPFTFGDDFEGIKIEAGKTGEAVIAIDYSAPLTDTMMGIYPSYYQVDGVKKELIGTQFETTFAREAFPCVDEPEAKATFSLALKFDEHEGETVLANMPEDRVENGVHYFKETVRMSSYLVAFAFGEMRSLTTHTKSGVLIGVYSTQAHTEKELTFSLDIAKRAIEFYEDFYQTPYPLPQSLQLALPDFSAGAMENWGLVTYREVYLLLDPDNTTLEMKKLVATVVTHELAHQWFGDLVTMEWWDNLWLNESFANMMEYLSVDHLEPNWHIWEMFQTSEAAAALTRDATDGVQSVHVEVNDPAEIDALFDGAIVYAKGSRMLVMVRSLLGDEALRKGLKRYFDEHKFGNAAGDDLWDALSTATDLNIGEIMHTWLDQPGYPVVNAFVEDGHLKLTQKQFFIGEGKEVGRKWEIPLNANFKAPKIMSDVELDLGDYQALRAEAGHALRLNVGNNSHFIVKYDQTLMDDIMKEAKDFDPVSQLQLLQDLRLLAEGKQASYADVVPVLELFKNSESHIVNDALYTTAAKLRQFAPAGSEADKNLRALYNDLSKDQVARLGWLPKAGESDEDIQTRPYVLSASLYGRNADSEKQAHEIYVEYADKLAELSADIRPYVLMNEVENYGSSELTDKLIGLYQATSDPSFKMDLKAAIVTSKDEGELKKIVSWFKNAEIVKPQDLRGWFSGVLSNPAGEQLAWNWIRDEWAWLEKTVGGDMEFATFITVISRVFKTQERYDEYNAFFTDKESNMLLNREIKMDRKVIANRVDLIASEQADVNAAVAAALQK"]}}, {"location": "[1743203:1744010](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MMFKHNFKKVLSATAFAVALVVAPAANVSAATNDASSTQQSATATSQDQQASQDQAASQSSAANQSSATAVSASSSTSTSSATSTSTVKKTTKKAKKTTKKSKKKTSKKKAVKKVAKKTTKKRATKKAAEAAAKKAAAVKKAAAKKAAAAKKAAAKKAAAKKAAAKAAAKKKSAAKKKAAAKKKAAAKKKAAKKSAEKAAKYWIAMRESSGYYTARNGSCYGRYQLLISYLGGDLSKKNQERTADRYVYGRYGSWVNAKRFWLAHNWY"]}}, {"location": "[1744180:1745128](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2390"], "gene": ["lsrR"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P76141"], "locus_tag": ["MAAAAKME_19090"], "product": ["Transcriptional regulator LsrR"], "transl_table": ["11"], "translation": ["MQLSNDQLANIAHDYYISKLNIAEISAKYNLSRYLIDKALSDAEKTGIVQINIKEGAKQNPGLEKSFRQQFGLKEAFILKKLETKNQDSEKIVSFAAEQIQSYMQSSKNVGITWGTTMLDIINSFTEVKNDDLTFVQLVGYPLQGNDRKNPLESIAAAQCGGHFRALPAPLYSSNPDLVNLIKKEPFYEQLDELYDNMDLLVASLGTLQAFEEESFLHEKYESLLFKNIHQKSISGMIFGRPYDHEGHFFSSITDKIIGISDQQIVKTPVRFVVVNDRFKSEALLGALKSGIITHLVTSETIADRVLQLQKESGR"]}}, {"location": "[1745387:1746740](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.4.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG4690"], "gene": ["pepD_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8G6Z9"], "locus_tag": ["MAAAAKME_19100"], "product": ["Dipeptidase"], "transl_table": ["11"], "translation": ["MIGGNIIRKFIWAAGALGLAAAFTATSVKACTTVVVGKKATTDGSTLVARNEDVGAWSKHFYVHQATSNGPTTYVSEDNGLKTSLPKTALRYTSTPDGEQVNGQWIFGESGINSENVAMSATESGTTNKKGLKADNLVKNGISEASMLDVILPYIHSAKEGVQRLGQIVEKQGSAENNGVIFSDKNEIWYMEIGSGHTWAAVRVPDNKYAVIPNQMVIGKLNLKDSKNYMASTNLVKKVKAWSQNKKIKLAGYVKGTVNYSKAFGTNDKTDAIYNRPRMWDGQRILTPSKKQSITKKSYTLFLKPDKKVSPAKVGQVLSSHFTGTKYSSYGKWKAGYRPINVPTDVESHILQIRNNVPKEYAAIQWLAMASPANSVYMPFYTNISDTPSQYKVDGDYQDPTNTKSAYWTYKTTAMVVEAYKHKKFIDSSTGKKTDLIYKDVNPTKKAVTK"]}}, {"location": "[1745672:1767868]", "type": "protocluster", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "category": ["RiPP"], "contig_edge": ["False"], "core_location": ["[1755672:1757868]"], "cutoff": ["20000"], "detection_rule": ["(cds(LANC_like and Pkinase) and not micKC)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iv"], "protocluster_number": ["3"], "tool": ["antismash"]}}, {"location": "[1755672:1757868]", "type": "proto_core", "id": "", "qualifiers": {"aStool": ["rule-based-clusters"], "tool": ["antismash"], "cutoff": ["20000"], "detection_rule": ["(cds(LANC_like and Pkinase) and not micKC)"], "neighbourhood": ["10000"], "product": ["lanthipeptide-class-iv"], "protocluster_number": ["3"]}}, {"location": "[1745672:1767868]", "type": "cand_cluster", "id": "", "qualifiers": {"candidate_cluster_number": ["3"], "contig_edge": ["False"], "detection_rules": ["(cds(LANC_like and Pkinase) and not micKC)"], "kind": ["single"], "product": ["lanthipeptide-class-iv"], "protoclusters": ["3"], "tool": ["antismash"]}}, {"location": "[1745672:1767868]", "type": "region", "id": "", "qualifiers": {"candidate_cluster_numbers": ["3"], "contig_edge": ["False"], "product": ["lanthipeptide-class-iv"], "region_number": ["3"], "rules": ["(cds(LANC_like and Pkinase) and not micKC)"], "subregion_numbers": [], "tool": ["antismash"]}}, {"location": "[1746782:1746938](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSGDKLTAYLTEQNQKNADYAQKKWQTMDNSLIVHSNKLAPVTKSKLTFNK"]}}, {"location": "[1747114:1748533](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0471"], "gene": ["yflS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34726"], "locus_tag": ["MAAAAKME_19120"], "product": ["Putative malate transporter YflS"], "transl_table": ["11"], "translation": ["MLAKVNYKGFIWPLIIGIGLFLLTPLRPATITVAGWHMFAIFLATIIACITKPLPIAGVSIIAYVTIIGLGLVQMKPALSAFADSTPWTIAMAYMIARSFTKTGLGRRIALIFVRAFGKKTLGLAYALSMIDLVVSPATPSNTARSGGIVLPIIESLSDTFGSKVSDGTEDKIGSYLVFNEFHANTISSSLFMTASAPNVAAVGLAAANGVKISWLGWVAAAIVPALISFILVPIIIYKMYPPKINETPNAKEWADGQLKEMGAIKASEKVMMAVFILALVLWMLSSFIGLDATWVAFMATALLLVTGVLTTKDMLSETGAWNVVVWFSILIFMANQLSLEGGVIPWLQTSIKSVIGGMSPVLVMAILVLVYFYSHYLFASGTAHVVAMYAPLLLIAKSAGVPVMFAAIMLGMTGAIFQSTTHYSCGPATALFAPGYVKQTDWWKMCFVLGLFYLVVYGGIGGLWMKLIGLW"]}}, {"location": "[1748557:1749961](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.1.2"], "codon_start": ["1"], "gene": ["fumC"], "gene_functions": ["biosynthetic-additional (smcogs) SMCOG1063:argininosuccinate lyase/adenylosuccinate lyase (Score: 82.3; E-value: 6.6e-25)"], "gene_kind": ["biosynthetic-additional"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64173"], "locus_tag": ["MAAAAKME_19130"], "product": ["Fumarate hydratase class II"], "transl_table": ["11"], "translation": ["MAEQEYRIESDTIGEVKIPKEALWGPQTERSRNNFQSGELMPLAIIRAFLHLKKAAAESNVEVGDEPAEKGQAIEEAIDQLLALSDEDLRKDFPLHVLQTGSGTQTNMNVNEVVANLANKLHPGLNILPNDDVNRGQSSNDTYPTAMNIVAVEAVDKLEPAIEHLIDELKVKQDKYWKTVKVGRTHLQDATPLTFGQEVSGYISALKHDLAYIQELKPSLYELAIGGTAVGTGLNAAPGMTEAIAGKLSEVYGHEFKVDTNKFWGLAHHSALSVMHGAFKTLANDMFKIAQDIRFLASGPRAGYGELNIPANEPGSSIMPGKVNPTQAEAVTMAVARVLGNDVTINFAASQGNFEMNVFKTVMIAAFLESADILAGTITGFADKMIHGLTVNEQRMDDLLENSLMTVTALSPKIGYHEAAVIAQTAQREGTTLKEAALKSGKVTEEQYDEWMDYMAMTNIDRTKPEE"]}}, {"location": "[1750405:1750645](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVVNTDEEPATKSAAKTPTLVTKLANTAPVAKAPAATAAQLPQTGEKDAKPGILAGILSLLAGVSLFGFSFEKRKQEK"]}}, {"location": "[1751402:1752311](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MARMSRRQYQERQEQTAQKQTRQRNPNSVPRLDTDGASRSEQKVRLNFWQIFADRPYVTVIMISLALFCILAKWWIGLAIIIILTIAGIFVIGRSHHPNRVLSLEFKLKASRKLSMIKALQLLGSTIMFLAAYMRQIVSVDFSSAGATDSLTVIQNMLSNQGTFGQQGSYFLSLFNQLTGGSLWGTYRYATNSSQMMNSTAGTMIILWIFLLMIAPAFCVLSQFFREPYSRHVMTVASLISTISFTLTPTLMNRWVISYAVQNQMSQAAAENAVQVGGMVYPAIISAVFVFILAIYREIKKD"]}}, {"location": "[1752375:1752615](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19160"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLRKYYVTIVFTLLALLNLLSSWGTLQYRLVMLALNLVCGFSMEYLVNKKAPAEKYNLWKGCMAAVLLAVNLLWIFLTK"]}}, {"location": "[1752711:1753212](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.1.106"], "codon_start": ["1"], "db_xref": ["COG:COG2110"], "gene": ["ymdB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A8D6"], "locus_tag": ["MAAAAKME_19170"], "product": ["O-acetyl-ADP-ribose deacetylase"], "transl_table": ["11"], "translation": ["MNLEIWQGDITTLKVDAIVNAANRELRGGGGVDGAIHRAAGPKLNEACRALGSCETGEAKITPGFNLPAKYIIHTVGPVYSGSHSDPLLLAACYRNSLRVAKENGLHSVAFSAISTGVYGYPLDAASKVAFGEVRKWLREHKDYEMRVIMVAYDARTYALYQKLLG"]}}, {"location": "[1753211:1753994](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19180"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEMQRVIELDMPVNFRDLGGYQGLDGRQVKWRKIYRSAALNEMSARDRVKLANLRITVDCDLRSSREQRSYPDLLWPGVRFVNIGLYAEGDRFNQAHPFLRLFHHLPEFDDYLPKIYQQVLLNEHSEEGIKRVFEELLKLPEDQALVYHCAAGKDRTGIISILILMALGVDDKTIAEDYLLTDELYDFSIEKQHPTNEKLSQVIAKMNVTRGEGTAVKGITETIRQGWGSFDKFFTRKLGFKQADLEKFREMYLEEEEED"]}}, {"location": "[1754105:1755686](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.8"], "codon_start": ["1"], "gene": ["btuD_10"], "gene_functions": ["transport (smcogs) SMCOG1288:ABC transporter related protein (Score: 191.2; E-value: 5.2e-58)"], "gene_kind": ["transport"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_01005"], "locus_tag": ["MAAAAKME_19190"], "product": ["Vitamin B12 import ATP-binding protein BtuD"], "transl_table": ["11"], "translation": ["MKIGELVKQNRLRFTCAVALEVLVQLCVAVGNYIIGFILDLLVKRETSRFYLVLAVFFVLYIGGYVLISFAEYLYIVQVQEYVHQLRRKTVDYYYQNHETVAEMQSHLTNDFQMLFDNFTQPLFVFFDSALAVVFSAYALVTMHWILLVTTVLLSVMFLYLPSIFSKKYQERTLIFSNMNTAYLTSIKNWLGGLAEIQRYDARHKLVEVLEKRSKKLEGSLVTRQVSAIEINFINGFMSIFCQVVLDVVTGTLILAGTISIGKLVAVGQFSSTIFNSLVMLSNYLEQIKSTKPLNEKVAAALADPPKDVCTDEELTSFDHLQTTGLSFSYDHGETINYPDLKIKVGEKILLTGDSGTGKSTLLKVLAGELKATTGNIAFYDHDDRKIDISLKAMHYVPQDPVLFPVSIAENITMFKPKLDDKVGEYLQKVDLAKDIAKFPKGQDTVIDVEELNVSGGQRQKIVLARAELNQSDFILIDEATAAVDQDSTKRILKNLLKTNATIIFIGHNFTNEMVDMFDRQIVLSK"]}}, {"location": "[1755672:1757868](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene_functions": ["biosynthetic (rule-based-clusters) lanthipeptide-class-iv: Pkinase", "biosynthetic (rule-based-clusters) lanthipeptide-class-iv: LANC_like"], "gene_kind": ["biosynthetic"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19200"], "product": ["hypothetical protein"], "sec_met_domain": ["Pkinase (E-value: 1.6e-10, bitscore: 37.6, seeds: 54, tool: rule-based-clusters)", "LANC_like (E-value: 4.6e-09, bitscore: 32.3, seeds: 47, tool: rule-based-clusters)"], "transl_table": ["11"], "translation": ["MKYKLINGDFCVRQYNHVDVVPTNFLGLSREIISRDPHHVFLQINKSAASLPRQGFKIHVSATLQNYQVILDKVYDLSCENNFTFKYISNYSLLEQYLGGTGPLWMTGKYITIYPETESRFEKLIRTIYDLVGKEDGIPIFTDQAFRDSKNVYYRYGIINSDDDFIRDERNNKLYRDHELRTYQLPSFVKEPFESKNEHKLETIGKKYLLKGIISRKSSGGVYRAQDIYGRDVVIKRAKYRFKDSEETEIQKLQNERKNLINWEKYDFIPKVLDSFYEQKDFFLVESYIKGVLIDDLRAEFIGDKRNSFYFAKIRHIVLNYLRCLQRLHNDSFFLGDISASNIIVDFESEKVFLVDVSQSALLTNMDESFYYRTKGFYDRRVDNLSPELQDVHQSGYLVMSVFSRANDFLKIDQSGKQSWNFFIKQAAQEKIPAVFIKVMKVLINATAGSLDRAIEILQKDDMNVLSQITTTQQLPLKSLLQGLQRPVAIEQIEENSLDEKNSEDEVVKALLSVELGNNNCPVPAFEQSQLKIFEELSRTRPSMEKILRQLFLIVEYLRERVPTASVKFDNFDITIKKIESMFWVENNDFCGYRLFAKSKYISPYLKNGMAGMLIVLMNAKVIYQTKAYDRRIKQLANELSKMAYAKNGTFIEGLSGITWILIKYVEQSHDRDYMPLIERQLSFYQYFCVDCHGLMYLIDSRSEALDTSLFYGNRGMAFVLKEWEKLNENR"]}}, {"location": "[1758192:1758951](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.48"], "codon_start": ["1"], "gene": ["iphP_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q05918"], "locus_tag": ["MAAAAKME_19210"], "product": ["Tyrosine-protein phosphatase"], "transl_table": ["11"], "translation": ["MPKRIVKLEAGYNCRDLGGYVSQDGRTVKWGRLYRSGSLSHLTKADQSELVRRKIVVDCDLRSRHEQDNFPDKLWPGAKLVDAHFYSESGDEEEEAEAAWEKYSGKLPKLSYLAMVYQQNLVAPRTGLVMRKIFKEMLALEDDEALIYHCSMGKDRTGMVSVNVLMALGLEDREILRDYLLSREYSWDWDEADENDRLGQQIAKMNQTQVSQTAFYGITETIRQTWGGFDRYFASLGFGQGDLDRLRDKFLE"]}}, {"location": "[1758984:1759770](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.30"], "codon_start": ["1"], "db_xref": ["COG:COG0554"], "gene": ["glpK_1"], "gene_functions": ["biosynthetic-additional (smcogs) SMCOG1210:glycerol kinase (Score: 257.6; E-value: 3.4e-78)"], "gene_kind": ["biosynthetic-additional"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34154"], "locus_tag": ["MAAAAKME_19220"], "product": ["Glycerol kinase"], "transl_table": ["11"], "translation": ["MAGDQQAALFGQLAVKPGMVKNTYGTGSFIVMNTGEEPIESKNNLLTTIGYKLGDQVNYALEGSVFVAGSAIQWLRDSVKLLNSAPESEQAALESKDANEVYVVPAFTGLGAPYWDSEARGAIFGLTRGSSDKDLIKATLQSLGYQIRDVVDTMQKDSGIEIPVLRVDGGASNNNYLLQFQADLLGKKIERAADLETTGLGAAFLAGLAVGYWQDLDSLKEIAKTGAAFAPKMEEAERDRLYAGWQRAVLATRVFAHGKDF"]}}, {"location": "[1760058:1760334](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.30"], "codon_start": ["1"], "db_xref": ["COG:COG0554"], "gene": ["glpK_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34154"], "locus_tag": ["MAAAAKME_19230"], "product": ["Glycerol kinase"], "transl_table": ["11"], "translation": ["MSEQYILAIDEGTTSTRAIIFNYAGQQVASVAREFTQYFPKPGWVEHQAEEIWNAVQITTSTALINSAIRPDQLTGGHRDYQPKRNHGGLG"]}}, {"location": "[1760531:1761200](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.13"], "codon_start": ["1"], "db_xref": ["COG:COG3442"], "gene": ["gatD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DNZ8"], "locus_tag": ["MAAAAKME_19240"], "product": ["Lipid II isoglutaminyl synthase (glutamine-hydrolyzing) subunit GatD"], "transl_table": ["11"], "translation": ["MDDNLIRIAYLYEDLMNTYGDSGDVKILRYFLQKKGWQTQIDNISLGSQFNAADYDFVFFGGGQDYEQSIVAKDLQRFKETLNDYIQAGNPMLAICGGYELMGTHYNTISGTKIKGLGILPLHTEFDPDKRMIGDTKYETEWGPTIGFENHSGQTFLDDRKMLKPLAKVVEGYGNNHEEKEDGVRYKNFIGSWSHGPMLKNENVANALVDIILKRHAARVAQ"]}}, {"location": "[1761393:1761630](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKIDILRYLDDKHLTIYRVAKESGYGYTTLHKSFNKQQSNATSINLRDLDAIARAKHLAMWQVLRELENDYLSDDDDD"]}}, {"location": "[1761753:1763844](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["clpC_2"], "gene_functions": ["other (smcogs) SMCOG1223:ATPase (Score: 972.8; E-value: 2.3e-294)"], "gene_kind": ["other"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5XCL7"], "locus_tag": ["MAAAAKME_19260"], "product": ["putative ATP-dependent Clp protease ATP-binding subunit"], "transl_table": ["11"], "translation": ["MDYNNFNDMDDLFRELMNGLGGFNSENRRYLINGRQVTPEEFAEYQKTGQLPGHGQAKNFQGKQKKANGILEKLGRNLTAEAREGKLDPVIGRNKEIQETAEILSRRIKNNPVLVGDAGVGKTAVVEGLAQAIVHGDVPEAIKNKEIISIDISSLEAGTQYRGSFEQNIQDLVKEVKDRGNVILFFDEIHQILGAGGMGDGNGSKGMSDILKPALSRGEITVIGATTQDEYRNTIMKDAALARRFNEVTVNAPSQADTFKILMGIRSLYEKHHNVELPDDVLKAAIDYSVQYIPQRSLPDKAIDLLDMTAAHLAAQHPVTDAKTIEKQIKEEKQAQKKAAEKEDYQAALDHKAKAEKLEKQLSENHEERKTVATPADVAAAVERLTGIPVSKMGASDIERLKGLSSRLKGKIIGQDEAVEAVAKAIRRNRAGFDEGNRPIGSFLFVGPTGVGKTELAKQLALDMFGSKDAIIRLDMSEYSDRTAVSKLIGTTAGYVGYDDNSNTLTEKVRRNPYSIILLDEIEKADPQVITLLLQVLDDGRLTDGQGNTVNFKNTIIIATSNAGFGNEQLMGDAKKDEKLMDRLAPYFRPEFLNRFNAVIEFSHLTKEDLKEIVNLMLADVNKTLAKKGISLTVSESAKDYLIEQGYDEAMGARPLRRVIEQEIRDKVTDYYLDHLDVKKLKADMVDGALVISEDK"]}}, {"location": "[1764199:1764772](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19270"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTLPEVIGLNVHPENFQESEMQLLEDGVPVKERGKTRSRGQIREIMILKAPVYDQDQIVGLIGFFMDITNTSKQINRLENEAARDDLTSLKNRHNFARDFNYLTGKPILAMMLDVDHFKKFNDNFGHRYGDEVLKKISQALLKIYGIGHCYRYGGTNSWCSATLLILTRLRKKTGSSGKNWNMPGSWIFT"]}}, {"location": "[1764868:1765477](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGAGSLHYFKLSENGGIAFAQIAHHYLGTFGEALLATLATITYMSTAIGLVVAFAQDFHKRFPKISYRTFLTFNCLFSFAIANFGLTTIIAWSTPVLMFLYPLAIALIFCGLTSKFFNNDPAVYKFAVYFTIIPAIFDGLNAAPSIISNTAFAKAALAFAGRYLPQKIQRESKLSFHAVSFYSYSKNSAGKGCRRCPCGRSF"]}}, {"location": "[1767472:1768513](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_8"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_19290"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MEIVYSKDELEEYLHDHADIAEDHPILVDDYLDGRECDVDAISDGKTVLLPGIMEHIEHAGVHSGDSMAVYPPQTFSDEVEEKIMDVTKKLALALNCKGIMNIQFIVRDGDVYVIEVNPRASRTVPFLSKITGIEMAQVATRVIMGESLEQQGYADGLAPEPEMISVKAPVFSFSKLADVDSYLGPEMKSTGEVMGSDHTFAKALYKAFAGAKMQLPENGNVLLTIEDRDKEKILPIAKRFARIGYRIFATKGTANFLKKNDLHVELVTKVHEDEQADDNILNELRDGKIDLVINTMGHDIEKNSDGFIIRQMAIQQNVPLLTALDTADALLKSLENRSFATDALK"]}}, {"location": "[1768786:1770661](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "db_xref": ["COG:COG0458"], "gene": ["carB_9"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O32771"], "locus_tag": ["MAAAAKME_19300"], "product": ["Carbamoyl-phosphate synthase large chain"], "transl_table": ["11"], "translation": ["MPKRTDIHKIMVIGSGPIIIGQAAEFDYSGTQACLALRDEGYEVVLVNSNPATIMTDTTIADKVYIEPLTVDSVSRIIRQEYPDAILPTLGGQVGLNMALALAKTGILDELHIELLGTKLASIEQAEDREKFKELCQKLGEPVPPSKTVKIVEDALSFGDEIGYPIIVRPAFTMGGTGGGICHNHDELAEIAKNGLELSPVTECLIEKSIAGYKEIELEVMRDSSDNAMIVCCMENFDPVGIHTGDSIVFSPSQTLSDKEYQMLRDCSLKLIRALKIEGGCNVQLALDPNSLDYDVIEVNPRVSRSSALASKATGYPIAKMAAKIAIGMTLDEIKNPVTGTTYAEFEPALDYVVCKIPRFPFDKFPKADRVLGTQMKATGEVMAIGRTAEEAMQKAVQSLEIDEKDLYSAKAHKASDDEIEQKLVRPQDDRLFYLAEAFRRGYSLEDVHELTKINFYFLDVVKHMVEMEKEIEANPDDLDVLRLAKKYGFSDQTIAKLWHEYPDQVRDLRKANGIVPVYKMVDTCAAEFESTTPYFYSTYDGENESRKSGKKSVIVIGSGPIRIGQGVEFDYATVHSVKALQKMGYEAIVINSNPETVSTDFSVSDKLYFEPLTLEDVLNVCDL"]}}, {"location": "[1770653:1771739](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.3.5.5"], "codon_start": ["1"], "gene": ["carA_5"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P99147"], "locus_tag": ["MAAAAKME_19310"], "product": ["Carbamoyl-phosphate synthase small chain"], "transl_table": ["11"], "translation": ["MRYLILEDGSIYAGEGFGSDRETTGEVVFTTGMTGYQEAITDQSYADQILVFTNPLIGNYGITLADYESLQPQIKGVICHQIARHPDNWRMQTTLPEFLKQLHIPGIQGIDTRELVKKLRVHGTLRGKIANSKENAEKIVQELKHKNVTQGVISRVSTKSAYPVPGSKRNIVVIDFGIKHSILRELAERDCNCIVLPYTATAEEVLNLHPDGVLLSNGPGDPEEMIEATKMVQEVEKHVPLFGICMGHQVFALANGAKTYKMKFGHRGFNHPVREIATGHIGFTSQNHGYAVDAKSIDKDNLMITHEEVNDGTVEGLRHKKYPAFSVQFHPDATPGPHDEDSLFDDFMSMIDQRKEEERHA"]}}, {"location": "[1771738:1773016](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.2.3"], "codon_start": ["1"], "gene": ["pyrC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65906"], "locus_tag": ["MAAAAKME_19320"], "product": ["Dihydroorotase"], "transl_table": ["11"], "translation": ["MQTVIKNGTVYQNGRLIHADVLIEDQKIKAIGTDLTGDKVIDATGKLVSPGLVDVHVHYRDPGQTYKEDIETGSKAAAHGGFTTVGAMPNVTPVPDTPDLMKKMVQENKQKGIVHIFQYGPITKNETTDELPDYAALKKAGAFALSNDGHGVQTAQTMYLAMQEAKKNDLIVAAHAQDDSLFNHGIVNEGEKAKELNLPPVTELAETTQIARDLLLAEKTGVHYHICHVSTKTSVELVRMAKACGINVTCEAAPHHLLLTEDDIPKDNGYYKMNPPLRSKEDQAALLVGLLDGTIDLIATDHAPHAKQEKQGGMQNAAFGITGSETAFSTLYTKFVKEDKVFTLEQLLSWLSDQPAKVFGLKKAGVLEPGCPADVAIFDLEHETELKEKNYQSKGINTPFTGQKIYGATVMTMVDGEVVYQRGEK"]}}, {"location": "[1773015:1773972](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.1.3.2"], "codon_start": ["1"], "gene": ["pyrB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P65618"], "locus_tag": ["MAAAAKME_19330"], "product": ["Aspartate carbamoyltransferase"], "transl_table": ["11"], "translation": ["MKNLNLVALPHFVSVENLKNDEVKALIKRAEYFKKGGAVARLTSPVYVTNMFFEDSSRTHTSFEMAERKLGLTVIPFDPAHSSVNKGETLYDTSLVMNALGIDLEVIRHSQNEYYEDLINLKQHQKLNIGVINAGDGSGQHPSQCMLDMMTIHEHFGHFKGLKVAIVGDITNSRVAKSDMELLTKLGAEVYFSGPECWYSEEFDQYGKHEELDKLIPKMDVMMLLRVQHERHSGDPNEKKFDAHRYHEKYGINHKRYEAMKKDAIIMHPGPINHNVELSGDLVESDKCMFVRQMENGVFMRMAMLEAVLRGRKLGGLE"]}}, {"location": "[1774116:1774659](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["pyrR_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:F2MMP6"], "locus_tag": ["MAAAAKME_19340"], "product": ["Bifunctional protein pyrR"], "transl_table": ["11"], "translation": ["MAKEIWDALAIKRALTRITYEIIEQNKGTDDLVLVGIKTRGVHLANRIHDRIQKLEGVDVPVGELDITLYRDDRHDALLKQDPVVNSDNVGVDINNKRVVLIDDVIYTGRTIRAAMDALMHVGRPSLIKVAVLVDRGHRELPIRADFVGKNIPTSADEQVAVNVVEKDGKDSVELKALPK"]}}, {"location": "[1774818:1775742](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.3.1.14"], "codon_start": ["1"], "db_xref": ["COG:COG0167"], "gene": ["pyrDB_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0DH74"], "locus_tag": ["MAAAAKME_19350"], "product": ["Dihydroorotate dehydrogenase B (NAD(+)), catalytic subunit"], "transl_table": ["11"], "translation": ["MVNTHVNLPGLDLKNPVMPASGTFGFGDVPAAQKFDLNDLGAMVIKTTTPHATTGNPQPQIAILEDGVLNSVGLTNPGVDQVISEKLTKLRHQYLDLPIMASVGGDSEDDYVEVAKKLSASGLVNALEINVSCPNVAQGGMSFGVHAGVVEELTKKIKMAVALPIYVKLTPNVTDIVEIAKAAESGGADGISMINTVLGMRIDVKTRKPLLGHNMGGLSGEAVKPIAIRMISQVRQVTQLPIIGMGGISTAQDVIEFILAGANAVAVGSAHFEDELAAKHIAENLPAELEKLGIEDINDLVGQVKFN"]}}, {"location": "[1776126:1776312](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_19360"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MVDELADITFNHSLQILVEAMFESVKEIFQPTEEQMERFTNAFISRLPKYMQEAISPSLAA"]}}, {"location": "[1776418:1776775](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3385"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL5"], "locus_tag": ["MAAAAKME_19370"], "product": ["IS4 family transposase ISL5"], "transl_table": ["11"], "translation": ["MAQSKGTDAVIQLLDQALKAGLTAKYVMFDTWFSNPHQIVQISQRGLNVIAMVKKSSKITYEFEEKRMNVKQIFNACKKRRGRSRYLLSVPVKFGGPAKDGAQIDARIVCVRNRSPVI"]}}, {"location": "[1777176:1777407](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19380"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSNLRHELFEKLSKFFYQYFLTKSHKKELLHQKQFFIVLDKLLWNNISRLRSSIALFNIVTNFLPFLKTLKTVSFN"]}}, {"location": "[1777721:1778024](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bin3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P20384"], "locus_tag": ["MAAAAKME_19390"], "product": ["Putative transposon Tn552 DNA-invertase bin3"], "transl_table": ["11"], "translation": ["MAKIGYARVSSKEQHLDRQLAALKDVDKLFTDKLSGANTNRPELQKMLAYIREGDIVMVTELDRLGRNNQDLTNSLANKYSIKLLVMALMPPACTSGGGK"]}}, {"location": "[1778573:1779485](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0697"], "gene": ["yicL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P31437"], "locus_tag": ["MAAAAKME_19400"], "product": ["putative inner membrane transporter YicL"], "transl_table": ["11"], "translation": ["MKDKHLGILLAITGAALWGTSGTAAEMLYQSPNINTFWLVDVRSWLAGASLLLISLVHKGKGTFAIFKNHRDLLYAALFSMLGITGAQFTYFYTVAASNAPTATVLVFLAPVLIICFMAAKTRQMPRRIDLIAVLLAVVGTVVLVTNGNFSHLAVTPKTLVWGFFSALTQALAIAMPAKLFKKYGTITILAWGMLLGGIILSPALAVMPATGVTVKEWSLVIYIVIAGTVFAYSLYLSSVMYISAGLVSMLEAFEPLVATILSVTLLGSDFGIMKMAGGVLIILATCLQVVPSPRRGKLQRKL"]}}, {"location": "[1779638:1780388](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.4.2.-"], "codon_start": ["1"], "db_xref": ["COG:COG2071"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O33341"], "locus_tag": ["MAAAAKME_19410"], "product": ["Putative glutamine amidotransferase"], "transl_table": ["11"], "translation": ["MVKAVIGISASEVTIQSGPFMGEPRTYVNAAYVDSVLKNGGIPLVIPFTAGGEEMAFKQLDLVDGLILSGGHDLNPHLYGEEIDQKSGETWPDRDAFDMALLKRAEETGKPVLGICRGAQIINVAHGGSMWQDLSLRPGNTLKHMQAIRPDVGTHVVKIKSGTTLKKIMGESSLMTNSFHHQLIKEVAPDLTESASASDGVTEALESTDGKVIAVQWHPEEMHANPAPEAAIMNRLFKYLIDKAEEEKQ"]}}, {"location": "[1780392:1781199](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.3.23"], "codon_start": ["1"], "db_xref": ["COG:COG0561"], "gene": ["yidA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0A8Y5"], "locus_tag": ["MAAAAKME_19420"], "product": ["Sugar phosphatase YidA"], "transl_table": ["11"], "translation": ["MKIKLIAVDLDGTLLTSRKKVSPKTLATLKKAREKGILVVPLSGRPLPGVLKVFEPFKLDPADNFAICYNGGLVQRMDGEVLSASPLTDENVEHMLALKQTGIFGPYFMDTKDFYVAPKGSSFGVGFLAKARNMGVKRMVPGQHYEFIKGEFVSLPSKIKKFRAGFSPATEQEFEISASGGQCLEFNTPGTSKGQALTTLLDLLNIQPEEAMVFGDNNNDLSDFQLPGVFKVAMGNAIDEIKAAADYVTASNNQDGIALAVEKFVDMG"]}}, {"location": "[1781263:1782142](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19430"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFKSRNWKLIVVALTIIILLAVPGYSWMKKTNKEHAERQRSQLSPLIMVPGSSATVNRFNELVDLLNENTPYKHSLLKVEISEDGTLTYSGSMKKEDNEPFIVIGFQNNHDGYSNIKKQAGWLDDAFYEIAKTYMFNNFKAFGHSNGGLIWTYWLEHYYSNNYSDEITIKSLMTLGSPYNFSEKSIKYKTQMMTDFIKYRKRLPKNMIVYSLSGGENYESDGIVPESSVEAGKYIFQNQVKSYTTMTVTGAEAQHSSLPQNKQVVRIIQEYLLKQQVKPGPNNSQNSKHKEN"]}}, {"location": "[1782134:1783451](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1455"], "gene": ["chbC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P17334"], "locus_tag": ["MAAAAKME_19440"], "product": ["PTS system N,N'-diacetylchitobiose-specific EIIC component"], "transl_table": ["11"], "translation": ["MDKLAKWCIWLRRRSFFRVAQRTFAVLMPIATVGAFFQVLQYSVFAPESFIYNLFDFDKIMSDRFWDIGTRLSQCVVEVIFGLFCLFTVYFSASFTAKIYRKDATMAGISALTSLLVMIYLFQLGLTGRISLLTGGYLGFQYTSFALLLGYGVGQVFHWLGADYESVNYENTKLVQDRAIKALKPTLVTVIGGIAIGGILYVVISKVKANFSLTSIVSPVENSNNLLLTVPATALASFLSWLGLEAPILDLSMSNVAGSAAATANLTYVLRRGSVWKVPYPYLGGSMISIYGVMGGCGAILALAVAILIGGRRKERETVAKMNLWPLLFSSSRGFLVGLPVILNPIYALQLVLVPVVNMLIAALAIFLHIVPTPVYTVLTGTPGPLVPFFSTNGNWPTLIFTIFLFCLDVVMMIPAVKLDNRTKILLKDYEMEDDRHV"]}}, {"location": "[1783753:1783863](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19450"], "product": ["5S ribosomal RNA"]}}, {"location": "[1783938:1786842](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19460"], "product": ["23S ribosomal RNA"]}}, {"location": "[1786935:1787031](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19470"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESISSHLYVEN"]}}, {"location": "[1787061:1788622](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19480"], "product": ["16S ribosomal RNA"]}}, {"location": "[1787833:1788358](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19490"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1789062:1789608](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19500"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFSGLVSGKARIQRLEQEGKTIVLTVKTFPENLAGVKIGDSIAVNGCCLTVEAFSKDSFTVTMMPQTFAKTTFKNLQAGDQVNMERSVPVGGRFDAGFLRVGLPVDFDLLSWPGSYAVRYWLCFKQGLVEAERDHRCDFQCYLAGWRFAVDQVHWILVKNEEFADTRVLHSSVFSCLKQKK"]}}, {"location": "[1789600:1790083](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0117"], "gene": ["ribD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P17618"], "locus_tag": ["MAAAAKME_19510"], "product": ["Riboflavin biosynthesis protein RibD"], "transl_table": ["11"], "translation": ["MIGSETAIIDDPLLLTSEDLVHPPVRVVLDRRGRLLEHLDLRLFFDKRAETWILRENPAFLEQDMQKQVKIFALPDGKISTSIKILADQGVQSIYAEGGAHLQESLMAAGLVNDVISYVAPRFLGRGTEAVVAAEAPDLKDVQTEQVGDDVRIYGRIKDV"]}}, {"location": "[1790079:1790484](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.33"], "codon_start": ["1"], "gene": ["tadA_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_00972"], "locus_tag": ["MAAAAKME_19520"], "product": ["tRNA-specific adenosine deaminase"], "transl_table": ["11"], "translation": ["MTPEQLSNSTIYVTLEPCCHYGKQPPCTQLIIDSGIKRVVVGATDPHSLVTGKGIAALRQAGLEVSTGLLAKEASQLNDHYNYFYQTGLPYVTLKQAMTLDHMLAKKGERTAITVAEAWTRVHHTRNGLVTRLS"]}}, {"location": "[1790585:1790661](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19530"], "note": ["tRNA-Asp(gtc)"], "product": ["tRNA-Asp"]}}, {"location": "[1790663:1790736](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19540"], "note": ["tRNA-Val(tac)"], "product": ["tRNA-Val"]}}, {"location": "[1790738:1790812](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19550"], "note": ["tRNA-Arg(acg)"], "product": ["tRNA-Arg"]}}, {"location": "[1790847:1790919](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19560"], "note": ["tRNA-Gly(gcc)"], "product": ["tRNA-Gly"]}}, {"location": "[1790938:1791012](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19570"], "note": ["tRNA-Pro(tgg)"], "product": ["tRNA-Pro"]}}, {"location": "[1791014:1791089](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19580"], "note": ["tRNA-Asn(gtt)"], "product": ["tRNA-Asn"]}}, {"location": "[1791099:1791209](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19590"], "product": ["5S ribosomal RNA"]}}, {"location": "[1791285:1794189](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19600"], "product": ["23S ribosomal RNA"]}}, {"location": "[1794047:1794524](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19610"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSAHAGFPHSETSGSKPTYGSPKTFAVSRVLHRLPVPRHSPCALLHLTLQVCSFELSRSLCNVFIDLNDSRFFLGIKIFSFQRTNLAFPANGGKRDRTDDLLLAKQVLSQLSYAPVKYQLLRCYSISAEMQRLFFAFQWAWMDLNHRPHAYQACALTS"]}}, {"location": "[1794319:1794392](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19620"], "note": ["tRNA-Ala(tgc)"], "product": ["tRNA-Ala"]}}, {"location": "[1794460:1794536](-)", "type": "tRNA", "id": "", "qualifiers": {"inference": ["COORDINATES:profile:Aragorn:001002"], "locus_tag": ["MAAAAKME_19630"], "note": ["tRNA-Ile(gat)"], "product": ["tRNA-Ile"]}}, {"location": "[1794525:1794618](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19640"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLREIHQLRKHTAKETLFSFESTNNKNLGL"]}}, {"location": "[1794648:1796209](-)", "type": "rRNA", "id": "", "qualifiers": {"locus_tag": ["MAAAAKME_19650"], "product": ["16S ribosomal RNA"]}}, {"location": "[1795420:1795945](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19660"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLSSLSVSCRPESRLRHWCSSIYLRIPPLHMEFHSPLLHSRMTVSDAVPRLSRGLSHQTYHSACARFTPNKSGQRLPPTYYRGCWHVVSRDFLVDYRQIKTSYCLYPSSPTTELYDPKTFFTHAALLHQTCVHCGRFPTAASRRSLGRVSVPMWPISLSTRLRIIALVGLYPTN"]}}, {"location": "[1796717:1797344](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19670"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSQTFFNLPKEKQDRIMAAAREEFFTHSFDEASINRLIKAAGIPRGSFYQYFADKEDVYFYLGDQISQRMIEGARKELAACGYDPFALARKVLPQWLDEIFYGENAAFFYRKIDMLHSQQVPRPKRAEDPLACLSAQEIAGLTAKVALQDRTDLKFLLHSLLLAFISCLIEGAEDYEAGRPVDTAKLAQVLDRRLSYLENGFKKKAD"]}}, {"location": "[1797347:1799345](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "gene": ["macB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2EHL8"], "locus_tag": ["MAAAAKME_19680"], "product": ["Macrolide export ATP-binding/permease protein MacB"], "transl_table": ["11"], "translation": ["MTVLELKDVKKYYKMPSGGQYEALRGVNAKFAAGEMVAIVGESGSGKSTLMNTIGGLDSDFEGAILYEGKNLRDFSQKEMVNYHKKSIGFIFQNFNLIPHLDLIDNVSIAMTLSNADEKTRRGRAEELLTQVGLKDHMHKKPDQLSGGQKQRVAIARALANDPDVIIADEPTGALDADTTDVILNMIRDIAASGKLVLMVTHSDKVASHCSRVLRIDQGQIVSDQEQKPLDHHLEQRTEVKIQQMILFKAISLAFKNMKAKFGRNALVSTGMGIGIMSVILMLSLGKGVTSYFSGQMNTYSNPLVAEIQKTSSQKMRQQGMQAQQTGDKAALAKQQNNMASLSGTSSASAFSKQDLKKLEKIAHVKKLQKGYSAISLGTNQLKYGKKTASMIYLKTVNDGIAKSDVKKGHLPKAGRDEVMIDSGSADNLGKKILGKKVKASLQIGTKTITKTVKVVGIYEASGSGQVSTLLLPYSDLAKIFKDNGLTLKANVVYLTATDKQYTSSIKQAAKDKGFAGSMQEQMTEMFDSILSVLTYVLTAIAAVSLLVSAIMILVVLNISVVERTQEIGVMKALGARRKDIRRIFSSEAFLLGLASGIVGIALTWLLAQGINSLTKSAFKAAVVSLTPQYALTGLLISIVISMIAGILPANHASKLDPVEALRKE"]}}, {"location": "[1799481:1799871](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19690"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MVKMTFSPEARDFLQKKLGNKAVLLLALNDGSNKYSLQGGTCTIGANFQFVALDQADADYQIKIDNDLGLDLYTGQAEMGFLDDSLSVGEQYGMLSLSDGSGLIDSAVGVNVYEPSKLTAEQIQNGASC"]}}, {"location": "[1800429:1801716](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3966"], "gene": ["dltD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2FZW3"], "locus_tag": ["MAAAAKME_19700"], "product": ["Protein DltD"], "transl_table": ["11"], "translation": ["MKNKTKLWLIFGPVICAVLLLMGILSLPWERTFSKGSLFQAAASQTTTVFKGKAMRQKDYKQGYVPFYGSSELSRFDNMHPTVLATKYQRSYTPFLLGGPGSQSLAQYLGMQEAPSKKAVVIISPQWFTPQGQNPDAFSLYYSPLHASDFILNAKDTEADRYAARRLLQMPSVKSEHVIHHALLEIAAEVGISKKERYYLRWRRQTYSTEDKFFTSLQLRDRLPKIEQQGAKLPDTYSYEGLKKASEKEAKKDTKGNRFGIRTSFYKKRLNAKLLKKLKGSQKKFNYVESPEYSDFELLLNQFAKDKTQVLFIIPPVNAKWQKYTGLSQKMYDTATTKIKHQLISQGFDNIYDLSKDGKKKYFMEDTIHLGWNGWLAVDQAVKPFMEQKYAEPEYAINDYYLTKTWREKKKLPTVDLTNKDVLAKLKK"]}}, {"location": "[1801705:1801948](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["dltC"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5M0A6"], "locus_tag": ["MAAAAKME_19710"], "product": ["D-alanyl carrier protein"], "transl_table": ["11"], "translation": ["MDIQKQIVDILAEATGEDFSDNMDQELYESGIMDSMTTVQMLLTLQETFDITVPVSEFNRDDWNTPNKLVEQVKKLQDEE"]}}, {"location": "[1802029:1803262](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19720"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MINLQPYENPQYFVYLVIALLPLIIGLYFGKRYKWYEALVSLAFIFLIFDADKWQQGVTLICYIVYQFLVTFAYQHYRKKTGKANKTWVFCLAVILAILPLVGVKIWPIVPHKQGIDFGFLGISYLTFKTVQVVMELRDGTIKQVDPVIYARFLLFFPTISSGPIDRYRRFVKDYDKAPSREDYIKDLSYAVRYLFQGFLYKFLLGWFFGTYCLPYLEQQAILAGRMYPLHLSWWLLGVMYCYSMYLFFDFAGYSLFAVSISYFMGIHTPMNFNKPFAAHNIKEFWNLWHMTLSSWFRDFIFMRFTFFAMKKRLIKNRNRLSQVTYLVNFMVMGVWHGLTWYYIVYGLYHALAIIINDIWLRFKKKHKLVKHNKFTEAVAIFVTFNVVCLSFLIFSGFLNNLWFNVPLGK"]}}, {"location": "[1803258:1804761](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["6.2.1.54"], "codon_start": ["1"], "db_xref": ["COG:COG1020"], "gene": ["dltA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P35854"], "locus_tag": ["MAAAAKME_19730"], "product": ["D-alanine--D-alanyl carrier protein ligase"], "transl_table": ["11"], "translation": ["MRNIVKTIDEIAQREPDRVVYDYLGQKNTYADLIKRANSWAALLKEKAPAKVPVMIWGGQTFDMLACFLGCVKSGHCYVPIADYSNAERIDLVREVSASPVLIAISDLPEVDLGDLTLLKPDDVPEEGTADEADYVKGDENFYIICTSGTTGKPKGVQISHDNLVSFVDWELKDFDLPDHPRFLAQAPYSFDLSVMSIYPALLSGGELVVLPHEVTENFAQLFKALPETDVNVWVSTPSFAQMCFLDRTFDADHHASLSHFLFCGEELPRKEVEMLKKRFPDSRIFNTYGPTEATVAVTQVEITPEILEKYDRLPIGYVKEDTEITIDLSQGDDGKSGEMIIAGPSVSKAYINNPEKTEEAFYQEDGVQHYRTGDVGYFDGDLLFYKGRIGFQIKFNGYRIELEEINFYMNQNPLVRHAVAAPIYKPDHTIKQLVAVVELNDGVSRKFDEGTITKQIRDGLTKDVMPYMIPQRYLYQDALPISQNGKVDIKAVIKEVNQA"]}}, {"location": "[1804776:1804926](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19740"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MENKTPVSRGKVIRSFILRTLLYSLILLGLIYLYEYCGLGSTGFIYNEF"]}}, {"location": "[1805121:1805424](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19750"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDSQLAKKIIIDVQISGWSCLIPASGLLYLYQITHYASFLWGLALVVLYAAYVLATAKLDKWQSPSYVLRMSLIAMFFVGFLPSIPLLFCYSQERKAGLK"]}}, {"location": "[1805460:1806669](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19760"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGKKDRKSGKKLVSRKKHHFHRKLRLLIFNLILLAGLSACGYYWAYPAYSQWQMKQAMLAARPKLTKAKDGTSTSPAWHKLTAYRKAIRDNYSFVYQAAYHTPKRTTVGQDVVIPGLISMRSYDYQAKKITSASAMTPQGIAVVYNYLLITAYDGQHRHASVIYVLDKKTGKFLKTVRLPGRQHLGGIAYDPKGMQIWLTGSKDGQSALMSFSLAKLIEYVASAKTSDQLVYDHEIPINSIAKASALTYYDDQLFVGYFNENGHGKVASYKLARSGQYKNTITTSEISSINESVSWSDPDGTTSMNKQIQGLAIYGDKIFLSQSYGSQDSKLYISPITAVNNLDESNAEQVVRMPPYLEQITVYRGQLLCLFESASSQYARQDITVMDRTLSVNINALLDNN"]}}, {"location": "[1807588:1808812](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL4"], "locus_tag": ["MAAAAKME_19770"], "product": ["IS110 family transposase ISL4"], "transl_table": ["11"], "translation": ["MDLLKTVFGIDVSSRKSNVCIMVNGQKVNDYAISNDMVGFNRLLGDLKQVTKPQIIFEATGVYSRRLQAFLDMHELRYVMMNPLEAKRKTKDDLHKNKTDKLDALYLAKLQSEYPQRLAYVQSKEYQELMANNRIYEQASHDLISNKNRLHKAVQLTFPEIEHLLANPRGKNYWSIALRFPHPDIVLEAKEADIIDFLKGLSGIGKKRANDITQSLIRLAKVACPAVKKNSAHVRGLKMAINNILSAEEECQTALQEMAKLAPKRDLEILTSIPGIGENTALRIISELGDIRRFNNPSQLNAFVGVDPQVYESGNLTAHLSISKRGTAIGRKVLYLAINQIQSAKKAGNPCHIADYYEKRKRSSETASHKKAAIASIHKLLRTIFALIKNDQLYSYDVAKHNQRLLS"]}}, {"location": "[1809059:1809710](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISLh1"], "locus_tag": ["MAAAAKME_19780"], "product": ["IS982 family transposase ISLh1"], "transl_table": ["11"], "translation": ["MSKICKKLYYKYAPSRLTHRRNASLVKVPDYEIIALLVWQSEEGISSQRRFARCWGLCGLSRSRFNRRARALLGITAQIVNDLKSRVDLSDQYMIIDSLPMPLCQPIRNRRAKVFEGTANIGYNSTKKFYYYGFKGHFAVSKDGYVLGYVITKASIHDAKEAEELILSTRPEGHFILGDEGYIGERLHDALKIDGYILWTPYRKNMKGAKQHNKTY"]}}, {"location": "[1809807:1810305](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0517"], "gene": ["ykuL"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31698"], "locus_tag": ["MAAAAKME_19790"], "product": ["CBS domain-containing protein YkuL"], "transl_table": ["11"], "translation": ["MISAAIQRVLAEKSGSFLIPASKIAIVEEDNPLYHAFLILTKVKYAKILVLNKQGQITGLLSLAMITDKMLDLDGISVKPLNKYQVKDVMETDFVSINFTEKDIETQLHLLVDNNFLPVVDDQGGFQGMITRREWFKAFNYLARTFDDHYVTVDKKQVLKLEAEN"]}}, {"location": "[1810437:1812252](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG2217"], "gene": ["zosA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O31688"], "locus_tag": ["MAAAAKME_19800"], "product": ["Zinc-transporting ATPase"], "transl_table": ["11"], "translation": ["MKRQWKFIVVLVLGAIGLITDNVLHIPGIAEVLFDIAGAYISFSLGKEMFGDLKEGHWGIDVLALIAVISMMITRDYWAEWMILVMSTGGESLEDYATGQANRELRALLDKNPRVAGKLVDGKVVEVKVDDLQIGDQVLIKPGQQVPVDGTIIEGSSVFDQSSLTGESVPVDKTVGDDLMSGSLNGETAVTMEVKKLAKDSEYQTIVELVKSSAAQPAKFVKMADRYAVPFTIISLIIGIAAWVTTGNFTRFAEVMVVASPCPLLIAAPVALVAGMSSMSKHHIIVKSGSTLEQLAKAKTFAFDKTGTLTQNQLVIQDVLPENGFDKETIQSYAASLEQQSDHIIANSLVQGTDKNLIQAVSNLQESTGNGVSGTVDGKNVMVGKLSYVAPDANVNKAKTTAVYVSVDGKYAGCITFKDRLRPETPQTLARLRKQGAKHIMMLTGDNKDVAQAIADVAGVDDVRASLLPAQKIEAIKNVAPENRPVVMTGDGINDAPSLTAADVGIAMGAKGASAASESADAVIMVNDLSKINDAVAIAKHTMKVAEIDIITAIVVVIILELVAFTGLIPAFWGAVLQEVVDMITICLALLAKTEPKNPKQTGL"]}}, {"location": "[1812413:1813574](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["napA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P26235"], "locus_tag": ["MAAAAKME_19810"], "product": ["Na(+)/H(+) antiporter"], "transl_table": ["11"], "translation": ["MKFIGQLILVLLMTTLLGQVFARFNWPPVIGQLLSGILLGPALLGWIHPNETMTLFSDIGVIMLMFLAGMESDLDLLKKYFKISFTVATVGVILPILFIGGASLLFGMQFLEALFIGIVFAATSVSISVEVLRATGKLQTKAGTAILGAAVVDDILAVIVLSLFTTFSHEGGKSGLTNNFFLNLLFEALYFVFVWLVSKFIAPKFMQLAEKINVSYSVVIASLILSLGMAYIAELVGLSAVVGAFFGGLAIRQTKQEAEVNSSVSAIGYSVFIPTFFVNIGLSMTFASIGQDFLFIVVMTVLGVLSKYWAGKYSSKIFGLKPLEGSIVGAGMVSRGEVALIVAQIGIAHHLFPKYIYSSLILVIILTTVLSPIMLNHYIRKDEAQN"]}}, {"location": "[1813667:1814333](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19820"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTNVKKIGHYLFYLIEIAIVFALYTTLQEFYFYPDIFGFGSAEAFILALSTVLVFWFSFWLYKGQLDDDNDWGFSQDFHWDWRKLATAVGGFFLMQLLYILLMNLIGGGVSVNQQKLDDLQHTAGPTYNIMVVLVAPVMEEIIFRGMFFNLLFNHAGKVAKWAGILVSGFFFAFAHNPFWSPYLLVYWMMGSVLAWVYMTTKDLRYSMATHIMWNMLSILG"]}}, {"location": "[1814416:1815517](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19830"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPSGLNTLLFLFSQNRAFSYFTILVAIAAVTFIFSWLSDPRHLINGVFFTFFIASLGAWFTFLVYATNLPSFRKVYLWALAILAVTVAVIVSFSWILLLWNSYVVLKHESHTLPNLLTLILAGAMLGLWVFIFIGHFTRSTPTGLRLILDIFPTVAVYLAAVMYNFLVNLLLYQIVPRRYQQNYLIVLGAGLIHGDQISNIQAARINRAIQFAYHQQEKGQPLPKFIMSGGQGPNEKISEAAAMAAYAIKRGVPKELILLEDQSRNTEQNMEFSQIVAYNDYGNDNFKACFFTSNYHVFRSAIYAKRAGLDANGIGSYTRPYYLPNAVLREFAGMFVMNRLRHFTVIALIVAGYIALAICKLLNVF"]}}, {"location": "[1815722:1816817](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1744"], "gene": ["tmpC_1"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29724"], "locus_tag": ["MAAAAKME_19840"], "product": ["Membrane lipoprotein TmpC"], "transl_table": ["11"], "translation": ["MKKIKFKKVLATGTVLAAGIAMTACSGAKQNGGGSNKKSSASVALITDTAGVDDHSFNQSGWEGMVAYGKSQGLKRGTNGYQYFASSSASDFTPNINQAVAAGYKTIFGVGYSLKGAIASAAKKHTDKNFVIIDDVIKGQKNVASANFKSQDASYMAGVVAARTTKTNVVGFIGGVHGDIVDLFDAGFAKGVQDTAKKMGKKITILNQYVGSFTAADKEKSIAKAMFAKKADVIFHASGSAGQGLFSEAKSVNEGLAANSSKKVWVIGVDSDQSNLGKYKSKDGKKSNLCLTSVMTGVNVAVKDIATKAAKGKFPGGKQLVYGLKNNGVYLTRGYVADSIWKQAQTARSQILSGKISVPSHPSK"]}}, {"location": "[1816736:1817300](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19850"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNSLFLVNLLIGCGMLLSGFKQLPVTFSWRKLTVIFLASGSLLLVEGMLVRKVFETALVLFVIAVLYLLLGLAGLVMMFVKKDWQAFTSEDWHDFAAVLIISALMAFYFLRDAAFDLSSMLLPEAMFLAGLLLVSWAVKAEKTPDTQKISELLLRDFCFVYLFAWVAWYGNLAGQNLAAGSLCLLPN"]}}, {"location": "[1817342:1817753](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19860"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["METEKLLAALKADHISNVLDQVADYNFAGYLNKLIEDKGGKKSELFNEAMIERSYGYQILKGRRLPARNKVLSLALSLKLSLAETNRLLSLSDNGALYANVKRDAVLIYCLVRGMSVIDTDQQLANYGYQSLNEEE"]}}, {"location": "[1817795:1818194](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19870"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKQGKISDYVNPVPIKITDDKAIFKVEKLVPTPYIERVLPLEYAPLYEQLAELDTAIPKIVCLEKSDRLTVIEEYIDSPRLDQYLETHKLTSAQINDLICQLLDILAVLHQQTPPIIHRDIKPENFFMMAKS"]}}, {"location": "[1818223:1818835](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19880"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MQEDADRDTRILGSVGYAAPEQFGFSQSGPASDFYAVGVLMNVLYTGYLPSVRLYKGPEREIIEKATHINSQKRYQSAQEFKDAITGLGRSSWLLPGFRSHQPARMLTAGCGYLLMLFSSFSMDAKSDSAADSFLLRLSFFMVLFLIVLFACNYRNIKSMCLFHSSKSKFTRACGIIISYLLVATVLTTALAALSVAISSFGH"]}}, {"location": "[1819021:1819192](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19890"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKVVGILLIILGVIGIAIGLMMFGDIGVACIVGALAALLSGFGFLSVNNKLNSSES"]}}, {"location": "[1819210:1819414](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19900"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKSNKKPFYKQWWAVTIAFIFVFFVGYIFGSAASSSDDSNDEASVASSSKSSSKSTTDDKSSGKKQC"]}}, {"location": "[1819421:1819919](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19910"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDDKSSGKNNAKKTLTVSYKNYEISSEKTFKPNYTNNSWAGGSVSVDSITLYKTAKAYNYDSANDGKFTIQGFMQIHYVIKTKADVSVYPTQGTYIYSNGEQHGADSTESWDGDISKNVTKQGTVTVPVEKISSVNSVRVKFDASGQDFSDDSLDHDFDFTITLS"]}}, {"location": "[1820225:1821323](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1744"], "gene": ["tmpC_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29724"], "locus_tag": ["MAAAAKME_19920"], "product": ["Membrane lipoprotein TmpC"], "transl_table": ["11"], "translation": ["MSVSKFKKLATIATAAVSVSVLLTACQGKKSSSSTSTKTTKHSIALITDNNAIDDHSFNEAAWNGFKAFGKKHGLKQGKGGYQYFESSSAADFTPNANEAASSGFETIFGVGYQLTSAIKSAAKKNPKKNFVIIDDVISGQKNVASVTFESNQASYLAGIAAAYTTKTNHVGYIGGAKSATLELFEAGFKQGVEAGAKALGKKIKIDDQYIGNFTSTDKAKSIAQSMYASGADIIYHAAGNAGNGVFTEAKDINKNRKASKKVWVIGVDVDQSSLGSYTSKDGKKSNFVLTSVLKGLDVAVERIAEKAYQGKFPGGKHFVYTLEGNGVSVTKGNIDSKTWSKVQAARKQILNDKVKVAESVSDLK"]}}, {"location": "[1821363:1822011](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19930"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MGAFFLRLSVITILRQRFYKKAIIMLKKLRNSLFALTALLSFTALAATPNTVSTASSAKYTPKYVKRQVVLQLNCNSYVYDRYGNRMPWFNGLYGPLGYLKEDSYVYTTRNRIVRTNKDVRYFTLFTKYHATKYNYDFVGKKYWLPYKKINGHYFYYIGYGAYIKARNVFSVNGLLQYSNGEKAMLTMSGYPFTFDSKTKKIKDMTKNTPIVKSN"]}}, {"location": "[1822299:1822860](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2826"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:ISfinder:ISL7"], "locus_tag": ["MAAAAKME_19940"], "product": ["IS30 family transposase ISL7"], "transl_table": ["11"], "translation": ["MYRYKAVEGQSTYELHRSECGRKSLFRHKFIDYVSHCFHNHGWSLDACVGYALAKGIFQKDQVVSTKTLYNYVDLGLMDIKNGDLPEKVKRNTKTRRARVNKRILGRSIDERSPRIESRKDFGHWECDLVLGHKTKDDDVLLTMWERKTRQFFMIKIEDKTSASVMKAFDKLREYYGSKWNQIFKC"]}}, {"location": "[1823118:1823874](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19950"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTVKAKLYADDDTDRYFHIYYKAKKQASERARLEADLDRMEAEMDKIKGREYKLPKRYEHYFKLTYHKDKFYGYEEREDVIERELQLCGYFAIVTSEKMTASDALNLYKSRDISEKLFGSDKTFLGNRSFRVASSQAAEAKIFIQFIALIIRARIYTLLRKRKAEMPGKPNYLSVPSALKELEKIELIRQPNGNYKLDHAVTATQKVMLGAFGLDEEWIKAQARQIGKDIQNAAMPEEQKDDDEDAENEEY"]}}, {"location": "[1823863:1824538](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19960"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRRIIEDYKLAEHLKRWDDRGKGLLLDLAAYSVIAESNVAQHFPDYAYNHPLMTPQNKIYSDSTISRFIREIDDNDRVDFLNSWNATHDKNCKAGDIEMAEYGHPKNDVGAPIINYSIAYDMTNEKPLLYESYPGSIVDVSQLKYMLEKIRGYGYEKIGFILDRGYFSKANIQFMDSCDYDFVMMVKGRASFVHGLIMEHMGEFESKRACSIKEGLPDLWHDG"]}}, {"location": "[1824518:1824851](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19970"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYYNCLVNIPKNTGKISRNKRGKTTYIEYTYAREYLPEKKYNVARRTTIGKADPDHPGMIFPNPNFEKFFPDVEIPAEGTAAEPVNESRSSCIRIGAFSVVRRIIEEKNY"]}}, {"location": "[1825345:1826176](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_19980"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MNKKSAVYLLLPAFLAVLVFTFYPLIQIAIPTLNSKQGFLRLYTQFLRSTYNWEVIQRTFIIAIITMLIVLILGLPVSLWIARQKRSFRQVLSVLILFPMLTNAVVRNFAWIIILGKNGVINQTLMALHIVKSPVSILYTDTSIIVGSAYLFLPIIITSLVGSVSELNIETEEAAAVLGANPWTSLFKIIIPQLTTGIFTGSILVFAGTMTAYTTPQILGGNRHLVMSTLIYQQAMTLSNWDNASAIAIVLILISALSMTILRLIGKKLDRRPGLA"]}}, {"location": "[1826168:1826957](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["ydcV_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P0AFR9"], "locus_tag": ["MAAAAKME_19990"], "product": ["Inner membrane ABC transporter permease protein YdcV"], "transl_table": ["11"], "translation": ["MLNGKNKLLTAISIIIILMIMLPLMMVVITSFNDQSTISFPIKGFTFRWYHNIFEQPDFVSGFGNSLIVALIASLLALVLGIPAVYALTRFNLHHASWFQSFFLSPTLIPEIVIGFALYQAAVVSMGLPVMPSLIIGHFLLCLPYVIRLITASMLLLDPHVEEAAWVSGCSRKKSFFIIVLPNIKSSIIAAFMMCFINSFNNIPISLFMNGPDLTMLPAAILNYLQNNYDPTVSAISVLLMTFTAALMFLVEKVVGINQLTE"]}}, {"location": "[1826966:1828001](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.6.2.11"], "codon_start": ["1"], "db_xref": ["COG:COG3842"], "gene": ["potA_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P69874"], "locus_tag": ["MAAAAKME_20000"], "product": ["Spermidine/putrescine import ATP-binding protein PotA"], "transl_table": ["11"], "translation": ["MANLEVKNLAKSYDGKNNVLKDISFSVKNGDFVSILGPSGCGKTTTLRIIAGLIDKTSGEINIDGTDISTVPVYKRNFGMVFQSYALFPHMTVFNNVAFGLKMRELSKNEIKDRVDAMLELTGLTDFANQFPDNLSGGQQQRVSLARALVINPQLLLMDEPLSNLDAKLRLKMREEIRNLQQKMKMTVLFVTHDQQECFAISDKVLVMKEGRIEQYDTPQNIFHHPRTKYVAQFIGYENFINIDKKLDDHKSVSAGIQFDTADTDQDAVAMTIRPENIKVAEEGDDNLISGMIISREYLGQSFQYTVQTVLGNLKFEEVRRAMRDLNEQVTLSLPKEHLHLLSE"]}}, {"location": "[1828033:1829095](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20010"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MFNKKKIGLIAASVLVAGSAILSTACSSSNSNGSSKLVVSTFGMSTKQMQRDVLKPFAKKFNVKVSTQFGDSSARLTQIEHNKNTSVDVAEFAQNNAVTANKKGLAKKLDTSKIKNFKYLSKEQQKLAKQINAVPYTLNSCGIIYNSKKVKITSWDQLWSKSLKGKIAIPDITTTFGPAMLYIAGDHAGTAVTSDNGVAAFKALKALKPNVVKTYTSSSDLVNMFKNGEVEAAVVGDYSVAMISAASSSIKYFVPSSGTYANYNTVSILKNSKNTAAAYKYIDYRLSTAVQKKVASAKSLNNAPVNTSVTLSAKDAENKAYGAIAKRSKTIDYSYVNSHLSGWITKWNKLMNK"]}}, {"location": "[1829156:1830854](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.4.2"], "codon_start": ["1"], "db_xref": ["COG:COG1001"], "gene": ["ade_2"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q72EX7"], "locus_tag": ["MAAAAKME_20020"], "product": ["Adenine deaminase"], "transl_table": ["11"], "translation": ["MTKIDLLVKNAHVFNVYLRKFEDVNITIKDGKFYWINKELPGIEAAKVIDLQGKYVIPGFVDAHMHIDSSMTTPKVMGQTIGKYGTTTIIADDHEITNVAGVKGLKDFIDEKAPIDIFFGIPSSVPSTNPNMETTGGLIGVKETEELLKDPRFVCLGEVMNFKDMTSDHDTLIKKIIAACRKARPTMPLEGHVPAYHSEDLAKVIYAGITTDHTQQTSSLVDEKIRSGMFVEIQLKSMHQEVIDTVIEHGYFEHVALVTDDSMPDTLLKGHLNLLVKKAIDMGMRPEDAIYISTYTPARHMGLWDRGAIAPGRVADFIVLNNLEDLSIAQVYKNGLPFAAKDEKDNNVYPEELLHSVKAPKLSEADFDLKTDLVQNGKVVANIIQINEVGTFTNHIQKCLEVKDGHVQWKKAGLALMLCQERYGKNEGRYAFALIDRGIVGDGAIGATWAHDHHNLIILGTNIAGMVSVQNLLVEEQGGYIAAKGSQIVANAPLPLGGVVSLEPMSVLGKQISKVRETMVDLGYKNTNEIMSFSTLSLLVSPTLKISDKGIFEVKTQRHIPLFEC"]}}, {"location": "[1831448:1832534](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1744"], "gene": ["tmpC_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P29724"], "locus_tag": ["MAAAAKME_20030"], "product": ["Membrane lipoprotein TmpC"], "transl_table": ["11"], "translation": ["MRFNFKKLVAAGAATLSIAAVLTACSGKKSNTSVNKDTKHGIALITDSNGVDDHSFNQAAWSGFKDYGKEHGLKQGKGGYQYFQSSSAADFTPNFTQAAQAGYQTIYGVGYMLNDSVKAASKKYPKKNFVLVDSVITGRKNVASVTFKSNEASYLGGLAAAYTTKTNKVGFIGGAKVSILELFEAGFKQGVKDGAKALGKKITVYDQYIGNFTSTDKAKSIAQSMYTDGADIIYQAAGNAGNGVFTEAKTRNKATTAAKKVWVIGVDVDQTNLGNYTSKDGKKANFTLTSVLKGLRFACKDIADKAYKGKFPGGKVISYGLAHDGVSVTKGNLDAKTWKAVQAARKQILAGKIKVATAPSK"]}}, {"location": "[1832621:1834166](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["7.5.2.10"], "codon_start": ["1"], "db_xref": ["COG:COG1129"], "gene": ["xylG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37388"], "locus_tag": ["MAAAAKME_20040"], "product": ["Xylose import ATP-binding protein XylG"], "transl_table": ["11"], "translation": ["MEKEIKNIIEMRHIVKDFNGFKANNDINLTLRKGEILALLGENGAGKSTLMSILSGLLEPTSGEIYVRGEKVNISGPNVATSLGIGMVHQHFMLAQAFTVLENIILGHETTKGLALDFKTAREKILALSKQYGLAIDPDAKISDITVAQQQRVEILKVLYRGADILIFDEPTAVLTPQEITEFIKIMKNLAKEGKSIILITHKLKEIKESADRVTVIRAGKSIQTVSVADANDEQLAEMMVGHHVNFKLDKAPLNLGKNILEVKDLHVNEDRGTDAVKGLSFNIRGGEILGLAGIDGNGQDELVEAITGLRHVEGGQVVINGQDLTNKPVRQITEAGVGHIPADRQKYGLILQLPLSENIASQTYYKEPYSKHGIMNEQTIREHARELIKKFDVRTTSEQLPASDLSGGNQQKAIISRELDRDADLIIAFQPTRGLDVGAIEYIHSQLLKQRDAGKAVLLVSYELDEILQLSDRIVVLHDGAESGEVKPDQTSETELGLLMTGKNTKKEAAAND"]}}, {"location": "[1834158:1835298](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20050"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIKVSPKAKRLLVPIVSVIAGFLVGAIIMLVWSYDPFQAYSSMFESALGSANGIGETIRNATPLIFIAIGFQISSAAGFFNIGLPGQAQAGWLTAIWIGLALKGLPVYILLPFEIIAGILAGALVAGIAGWLRAYFGTNEVISTIMLNYTVLYLCQYLHQDVMSKSLRVDTDTTKTIGASGSLRIPWLSEMFGDSRISGGIFLAIIALVIFWFLMKKTTVGFEIKAVGLNPFASRYAGMSDKKNIIISMLLSGAFCGLGGVVQGLGTYQNYFTQTTTLDIGWDGMSVALLGGISAIGILLASLLFSILKIGGLGMQTAAGIPFEIVSIVIAAIIFFVAISWAVGLLFKEKKSDKTATYIATAETASRQAANDQQKGGEA"]}}, {"location": "[1835297:1836254](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG1079"], "gene": ["rfuD"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O83324"], "locus_tag": ["MAAAAKME_20060"], "product": ["putative riboflavin import permease protein RfuD"], "transl_table": ["11"], "translation": ["MNFVTVLALIVSSTLVYSAPLIFTALGGTFSENSGIVNVGLEGIMTMGAFTSIVFNLSFASTFGTATPWLGALLGGIVGIIFSLLHAVATVNCRADHVISGTVLNLMAPPLAVFLVKAIYNKGQTENINQNFGYFSFPGLANIPVIGPIFFKNTSAPAWVAIILSIFLYWVLYKTRFGLRLRSSGENPQAADTLGINVYKMRYAGVLISGFLGGIGGAVFAEAIAGNFSVSTIAGQGFMALAAMIFGRYNPIGAMLSSLFFGFAQSLSIIGDQIPGISSLPSVYLQIAPYVLTIIVLVVFFGKTVGPAADGQNYIKSK"]}}, {"location": "[1836489:1836687](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20070"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MIWSIIGTAGVSVIIAIAGSPYQGQSKQVVMGSQAAFIVLFVFTLLIFACVLRLIKRDKQGLVKN"]}}, {"location": "[1836727:1837099](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20080"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MAGKEAVLILLASCWEGQVLARLFLPEDLAGIEPLLLTRHLSRKQFTLLRLKWSWPYLACLFVIHLIYWPGSWLAAISLILLFAAAAGMTLYQRRYLGGIKDSIWVFAVFALLRLLTTLLFKI"]}}, {"location": "[1837191:1838034](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.-"], "codon_start": ["1"], "db_xref": ["COG:COG0667"], "gene": ["iolS"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P46336"], "locus_tag": ["MAAAAKME_20090"], "product": ["Aldo-keto reductase IolS"], "transl_table": ["11"], "translation": ["MKYMTVKGEKLSQLGLGTWGMGEKASKREEEIAALRCGLSSGVNVIDTAEMYGEGQAESLVGEAIKDLDRSQLFLISKFYPWHASPREQKKSLAASLKRLGTDYLDLYLLHWKSDYPLAETVKGLQDLQAAGLIRHWGVSNFDTADMQELVDIAGEGAVFANEDLYNLDKRGVEYDLLPWQKQHGIAFIGYSPFNSGNGQSIPVKASLKQIADKRGVSVHQVLLAWTMRTGQVLTIPKASSVDHMRANLAAADLVLTAGELAALDRDYLPPKSKQPLESI"]}}, {"location": "[1838233:1838938](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.5.99.6"], "codon_start": ["1"], "db_xref": ["COG:COG0363"], "gene": ["nagB"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8DV70"], "locus_tag": ["MAAAAKME_20100"], "product": ["Glucosamine-6-phosphate deaminase"], "transl_table": ["11"], "translation": ["MKIIVVKNASELGKQAFDLLAKAVDEGAKTLGLATGSSPVELYQEIVASQLDFSQMTSVNLDEYVGLSPENPQSYHYFMNQHLFQYKPFKRSYLPDGQTKDIQAECGRYNQILAENPVDLQVLGIGQNGHIAFNEPGTPFDSVTHEVALTESTIKANARFFNSIDEVPKSAICMGIANIMAAKEIVLLAKGESKAKAIKDMVEGPVTTDVPASVLQKHPNVTVIADQAAASLLK"]}}, {"location": "[1839089:1839194](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20110"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MPWFTIMTVIVVILAVFGLITLAKYLINYSKKGS"]}}, {"location": "[1839234:1839444](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2801"], "gene": ["insK"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P19769"], "locus_tag": ["MAAAAKME_20120"], "product": ["Putative transposase InsK for insertion sequence element IS150"], "transl_table": ["11"], "translation": ["MTPEIRTLISGVIFMTKYTKEIKLAIYLNELEQAIHKYIDYYNNVRIKTGRKNMTPIEYRNHVLTTLTA"]}}, {"location": "[1839752:1840328](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20130"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDTTESITFTSKLTFWDKFKCFYLLHLYSLIFLIRFQKKWQKILIYLWYTSVCGFSLAILVVSYPFVTIKMFIDVFLTLSCFSWVPAITAFLISLKCPSIINLKLSPDNNLGRAPIVKIGDSNSQIVYLKSSLLLDTKNFYLIMCPNYLPKHKSRVFYSFISKSQNTTALSKVNFIASVKPHFKKFIKLHI"]}}, {"location": "[1840361:1841279](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20140"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRGIIDALKLSPYEPGIYGTRNVFLHGEEVGMKYSFVADMSYGWSGNLGFRMPTNWAFDQFTEYPIGSTDIDQVAASGKDAGVNKFVPQLYGTISYREVAADVLKGFGKSVSAEFNKKIELVDIPSLKISVELVNSLSVADESPAITISNGKLDSISFANWLQTSGHIKGNGVDAVVNEANKVISSASITNGNVAIEASINNSGESKLKFIYHILEAKDKQLDNELSVVITVTSKPTDLFTGTKIPNVDVPKLVTQSQTDQKSWETLIGFSTVVAIAGVSIFISGGTLSVLLDLIPQLFTGLLVG"]}}, {"location": "[1841319:1841574](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20150"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MTYVEIGGIFASAMNGYLKFADQKTRERYTNKALLARFNLSDNKPNFVSVSSYIDRLQKSLWQTVIMFGAALAILVVLLLCSGR"]}}, {"location": "[1841770:1842433](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.76"], "codon_start": ["1"], "db_xref": ["COG:COG1428"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HC3"], "locus_tag": ["MAAAAKME_20160"], "product": ["Deoxyadenosine kinase"], "transl_table": ["11"], "translation": ["MNRKSVITVIVLSGPIGAGKSSLTSILAKHLGSTAYYEEVNNNPVLPLYYKDMKRYTFLLNTYFLNKRLEEINAAAGNHNDVLDRSIYEDLLFFNMNVDNGVADPTEYQIYHDLMDNMMEDVPGNPRKKPDLLIYIHVSLDTMLKRIGKRGREFEQLDSNPGLKEYYQNLLRYYEPWYEQYDVSPKIAIDGDKFDFVDNQDDQDFVLDTIDSKLREIGNL"]}}, {"location": "[1842450:1843149](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["2.7.1.113"], "codon_start": ["1"], "db_xref": ["COG:COG1428"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q74HC2"], "locus_tag": ["MAAAAKME_20170"], "product": ["Deoxyguanosine kinase"], "transl_table": ["11"], "translation": ["MTVIVLSGPVGAGKSSLTAILSKYLGTKPFYESVDDNPVLPLFYKDPLKYTYLLQLFFLNTRFHSIKKALSDDNNVLDRSIYEDSLFFHMNADIGRANDLEVQTYEELLENMMKELERMPKRHPDLLVHINVSYETMIRRIQKRGRSYEQLSFDPTLEDYYKRMLRYYEKWYDDYDYSPKMMIDGDHYDFMASESDRTEVLDQITQKLKQVGKLPKNWQAGEIARKAIEIGQ"]}}, {"location": "[1843440:1844901](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["4.2.2.-"], "codon_start": ["1"], "gene": ["mltF_3"], "inference": ["ab initio prediction:Prodigal:002006", "protein motif:HAMAP:MF_02016"], "locus_tag": ["MAAAAKME_20180"], "product": ["Membrane-bound lytic murein transglycosylase F"], "transl_table": ["11"], "translation": ["MRFAKIKQMLLIPFAALLMLVALAMPGQAQAASKKTYIIGTDQTFKPFEIQDKDGTYNGKNPGIDIEILREIAKHENFKYELKIMSFNADVQALQSGQIDGMIAGMSVTEERKKTIDFSNSYYTDGVCLAVAEDSKITSMKDLKGKTVNVKTGTTSAIYAKSIQKKYGFKLKYYTNSNTSWADVKAGNADACFDDGPSLRYGIANGTGLRIVGKQVSNAPLAFAVKKGENQELLKMFNDGLAWLKKTGRLKKIVNKYTSKKVVKSQVVADTSILGLIKDNAGALLQGLWMTIELSIVGILAALVFGLILGIMGIAEHKFWHGLANVIIYIFRGIPMMVLAFFIYIGMPTLLGHKLPLFTAGILTLMLDEGAYIGAIVRGGFESVDVGQWEAARSLGLPYYKALWKVVAPQGFKLMIPSLVNQFIITLKDTSILSAIGVMDLTQTGANLIAQNFQGFKMWLIIAVMYLIIITLLTWLSNYIQKKMQH"]}}, {"location": "[1844920:1845667](+)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.3.-"], "codon_start": ["1"], "db_xref": ["COG:COG1126"], "gene": ["glnQ_4"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34677"], "locus_tag": ["MAAAAKME_20190"], "product": ["Glutamine transport ATP-binding protein GlnQ"], "transl_table": ["11"], "translation": ["MEEKYKVQVTDLHKSYDDVHEVIKGASLDVAPSEVICIIGPSGSGKSTFLRCINKLEDFQDGHIYLDGVDLADPKVDINKMREKIGMVFQHFNLFPNMTVLENITLAPVELGKEDKETAIKEAHKYLQMVNMDDKADVKPTTLSGGQQQRVAIARALAMKPDVMLFDEPTSALDPEMVGDVLNVMKKLAQEGMTMIVVTHEMGFAKQVADKVAFFYGGVIKELGTPEEIFDHPQEEETKNFLNKVLNI"]}}, {"location": "[1845885:1847196](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG2252"], "gene": ["pbuG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:O34987"], "locus_tag": ["MAAAAKME_20200"], "product": ["Guanine/hypoxanthine permease PbuG"], "transl_table": ["11"], "translation": ["MEFINKYFELDKLDSNPKREFIAGLTTFFAMCYILFVNPSVLGASGMDKGAVFTATALASALGCLIMGIFANYPIATAPSLGLNAFFAYTVCIGMKVKWQTALAAVFVASIIFILITVFKLRELIVDSIPNDLKFAISAGIGIFIAFLGLQNGKLVVNSASTLVTIGSFKDPAAWVTIFGLLVTIFLMIRRVPGAILTGIVLSSIFSILVGQSKMPTSVVSLAPSLKPSFGQAILHLGDINTVQMWTVVLTFLLVAFFDTTGTLIGLAHQAGLVDKDGKMPRIGKAMAADSTAMMAGSIIGTSPVGAYVESSSGIAAGGRSGLTAVWVGIFFLLSMFFSPLLSVVTTTVTAPALIIVGVLMAANLAKISWDKLEIAVPAFLIVIGMGLTYSIADGMALGLIVYPISMTAAKRTKEVSPMMWILAVVFVIYFLILNV"]}}, {"location": "[1847272:1848811](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0038"], "gene": ["clcA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8ZRP8"], "locus_tag": ["MAAAAKME_20210"], "product": ["H(+)/Cl(-) exchange transporter ClcA"], "transl_table": ["11"], "translation": ["MESEDRQTRKSNLRLLFEALVVGLVAGIVVGSFRWLIGQTLAMWQKGYQAAHANPALLWLLAGGVLASVIVAGFLVKQQPHAGGSGIPEVELQLQGKLQLAWWPVFWRKFIGGVLSIGSGLFLGREGPSIQLGSTVGQGVAQGFKASKSDSRVLLETGAASGLSAAFGAPLGGAMFIVEEVFHNFSPRVWLNALAGAIMANFVVSNVFGQTPVLAIDYKHSFPILQYWQLLLLGAFLGLIGRFYQWGLLNFSHVYQKIPVLPRWLHGIIPALILVPVMYYFPGYVGGGNNLILSLNQIHAVNVLVLIFLLRISFSIVSYDSGLPGGIFLPILTMGALLGAVYGQFMVDLGLLDQKLVVNLIIFSMAGLFSAIVRSPFTAIMLIAEMVGSLLHLMPLAVVSVAAYVVNELLGGVPIYESLAGRMQTKEDNDYVGEADQLTISIYEGSQLADHQVKDIAWPDRTLVRVIHRGQKDIIPNGNTKLLAGDLLVLEIDENQRGLVYDKMARLQEAKE"]}}, {"location": "[1848880:1849357](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG3760"], "gene": ["proX"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q9L4Q7"], "locus_tag": ["MAAAAKME_20220"], "product": ["Prolyl-tRNA editing protein ProX"], "transl_table": ["11"], "translation": ["MFEEVKDKLAELGIDYQLVEHAPALTTEQADEFIEGIPGVRTKTLFLTNKKKRNFYLVIMDDAKRLNMDKFKEIAGKKQIKMASEKSLFEKMGLPSRVVSPFGLLNNADHDIQVYFDKEIVDEDRMSFHPNTNEKTIFIKTEDLFKFLKNLGYEAFTR"]}}, {"location": "[1849886:1850459](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20230"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MDGQAYLLNTQTKKVELFYHLQDQHLIGEFFWFETQADDEYFKATDQYNGFLKASEVKKAKLPTIISKKAAKTSDQPASASQLAALKKEITKAEAVQKKTIYKLSSSYRRDYLDYALSNAQKALSGNKGEVTFAKWLLANSETYLNGKKAPVTNINKLSKAEYERVRRIVSDVAPNGYMTAIYYKRADGT"]}}, {"location": "[1850631:1851180](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20240"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MEFIRSHKRLLAIFGLIVVLLLGTLLLLKHVDNSASAILEARITADDDSGTSFATIYDNGKVEKSRSSQNKKFVKPIEVDPQVFVEHTDKKNNIYLTVNEKALRKNKQVSSDENWVKLTKLVAKRSKHAIAMLSLFKLGDDYYAFLKYNAGLSDEGSLYQYKSNLTKVATLDSGKISGLKEK"]}}, {"location": "[1851628:1852297](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20250"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MYIIRQQWLQDNAIRKWYFLAAILILFGGCSTAILVSDAPQNQWLIQTIFSRFLVFSLLVPVQILLLLSTFRVRLQDIYVTGSRRIIWKQLEYRLAIALLVTLVPWAVGCLIGMCLNGWGTRLGTIVAEALIRYLYLALSCLAILLLVSLCLLASKRIWAFLAGFVLSGISYFLNVNHHFSLFYDFLIDDLGTLLLSRLPILLSIVLFLAVGVQMEIARKDW"]}}, {"location": "[1852298:1853009](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20260"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MRLFKDQFLYFWQLIKVRFLSWLLLTCLFLLVAGGFMRNGRSANIMVFQGLGLAEIRAGIRDFPVSWFGYFFFPLMISLNIFKELWISRVMQLRGQQIKPSHFSWVNVILQLLLAAVYVLASNACLWLKDLLCGNSPLVLGPWQGGAAELHWMLIAWLGVSSLLLIQASCSELTPALGLIMPIVLLVSTSLTAWSGNPLNALMLSRWTSGAELFMFVWTLIWALLYVLVDSKHGWV"]}}, {"location": "[1853019:1853649](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["bcrA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q5WNX0"], "locus_tag": ["MAAAAKME_20270"], "product": ["Bacitracin transport ATP-binding protein BcrA"], "transl_table": ["11"], "translation": ["MFIELKNVNKVISGRQLLSQVNCEIEAGQIAVFEGINGSGKTLTLKTILGLMKVDGEVLVAGTQVKPQDAYPVKAGILIENPSLITDFTATQNMELLAKLDEHISATEIAELLKYFDLSRFPNEKVKKFSLGMKQKLGIAEAFLGSYPLIVLDEPTNALDSDSIDKLVDLIKLRQSKGCTFVIASHDRDFVEQVATKRFKVEEGVVHEA"]}}, {"location": "[1853638:1854148](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20280"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKRKVWLAAAIVLCVLAGLRYWQVNANPVCRGVDKEIFVKKGQEVHAPGIDFKILSAKMVKGKENVYLTVKVDLKDRGYYADGKHGIIAAVSNMYFNMPYSISNHSDLYVVDGNGHKVAIGYLTSKTPQPLTLKFDNVRSWYDTENTPARFSFLVGDGNGYKKYSILLE"]}}, {"location": "[1854159:1854942](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20290"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MSLLWSRLNKRWFVAAIAVGMAVGLGQIIVNCYTGMANIDSPYTRWLSINTDSSATTIFFILLPFLASIPAGNMLKEDLDSGLFNKFKLQVPVARLIMQYAAMAFMTGFVTIMIPLLLNLLGYLLILPNFKPDNLLNINIGVFNFNTMLVSLYYSHPFVHACLNILLASVWGGLFSVFVLVNSVWIRNRFASLSTALVLELILMELDTVLPIDDMPSISPTDFLPELGDRPLLWLTALMTIALAAYCMGMYKLACRRAVL"]}}, {"location": "[1854971:1855640](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20300"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MKVIKQQWLLDTTVHKWFLLTAALLFFGGCSNAFLVSNTQQSLWLEQTLFSRFLIFSLLIPSQILLLLCTFRIRFQDIYIVGGRWIIWKQLKYRLIEILLSSLLPWACGSLTGMLVNGWSPTLGAVATEALIRCLYLILSCLALLLLTSFCFLISNRITAFLAGFVINGLSFFLNVNHHLSIIYDFVVPEFATLLFSCLPIMLGLLLFLIFIVQQEISRKDL"]}}, {"location": "[1855697:1856111](+)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "inference": ["ab initio prediction:Prodigal:002006"], "locus_tag": ["MAAAAKME_20310"], "product": ["hypothetical protein"], "transl_table": ["11"], "translation": ["MLHKKFIVLIASILMTIGVVTIVSPVLAGNTSQTYWHNVYRIWSPYDHTPARRKETKSAYYNKTNHIKISGNYIVIWAALYDGRDVSGGHRYKSYKGQVTNLWNNAVERYKKGVQVRIDSKRVANGWADGVWSPDTK"]}}, {"location": "[1856365:1857751](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.1.1.44"], "codon_start": ["1"], "db_xref": ["COG:COG0362"], "gene": ["gndA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P80859"], "locus_tag": ["MAAAAKME_20320"], "product": ["6-phosphogluconate dehydrogenase, NADP(+)-dependent, decarboxylating"], "transl_table": ["11"], "translation": ["MQQFGVIGLSVMGKNLALNVRNHGFSVSGFSIDKPEVDALAKYEDDKLKPCYTWEEFVDSLEKPRKILVQIMAGDPVDQTIQKLIPLLDKGDIIIDGGNSNFHDTNRRYHELKKHGLHFIGMGVSGGEEGALNGPALMPGGDKEAYEEAAPILTAMAAKTEDGRACVSYIGPEGAGHYVKMVHNGMEYAIMQEISEVYDIMRKVAHKSNKEMADIFAEWDKGDLNAYLIEIASQVLRQKDDLTDDDVIDHILNVASYKGTGNWMLEDAIKLGTPITVVAEAVLARFMSKATTREGKEVVYDGEVASDLIDNLGKAMYLAQIVAYAQGFQQLTMAAKAYDWELNYPAIAQNWEAGCIIHAKTLYHIEDAYADGKQLDNLFQDPYFAGVMEKNLPALRAVVKLAAEAGVPTPSFSAALNYLESIFNPSLPANMIQAQRDYFGAHTYYRNDREGVYHTEWYEEK"]}}, {"location": "[1857849:1859700](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["1.2.3.3"], "codon_start": ["1"], "db_xref": ["COG:COG0028"], "gene": ["pox5_3"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P37063"], "locus_tag": ["MAAAAKME_20330"], "product": ["Pyruvate oxidase"], "transl_table": ["11"], "translation": ["MAKIKGANAVLDVMYKWGIDHLYGFPGGSFDSTMNAIYEMQDKVKFIEVRNEEAASLAASAEYKLTGKLGVCMGSAGPGAIHLMNGLYDAKYDKTPMVALVANVPTPRQDINFFQAFDEMPWFRDVAVWVHQAKTKEALPVLMDTAIRQAYAKKGPAVLVIPKDFGWQEIEDNYRVSASNHVADNYAAPTAESIEAATKLIKEAKNPVVYFGLGASAAAEELKEFADKFKMPMMSSYLGKGIVEDSFKPYLGTIGRIGAKAPNEVQGHTDLVVWVGNNSPFSVLWSPKNAKVIQIDVDPEKQGKRHSVDVSILADAKKSLRALIDAGEAREESPLYKAALADREEWDAWIASFADDHLKDEDRVRQEPIWDVINKEAADNAVFAIDVGNVNMDHVRLLNMNGKQRWTTSGLYATMGYGSPAAIAAATAMPDREVWHLAGDGGFAMMSEELLTLARYNMHVLTVVFTNETLGYIEAEQRDESNQPLSGVIIPDNDWAKVAEGMNMKAFTVHDKAEFQAAVEEWKKMDGPAFIDVKYTKHMAYSTELNTLDDPEFVKYYHAEALHPFSYFAEKFGLEIDAASGASGHSEDKADALQVQSTTSASSPETAPDASSGASY"]}}, {"location": "[1860006:1861902](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["mnmG"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P64230"], "locus_tag": ["MAAAAKME_20340"], "product": ["tRNA uridine 5-carboxymethylaminomethyl modification enzyme MnmG"], "transl_table": ["11"], "translation": ["MKTYVSNEYDVIVVGAGHAGCEAALASARMGEKTLLLTISLDMVAFMPCNPSVGGPAKGTVVREIDALGGEMGKNIDKTYIQMRMLNTGKGPAVRALRAQADKWDYHEEMKRTIENTPNLTLRQAVVDDLIVEDGECRGVVTNTGARYRAKSVVLTTGTAARGRIFIGELNYSSGPNNTIPAIKLSESLERLGFKLRRFKTGTPPRVNRHTIDYSKTEEEPGDKEPRHFSFTSRDEDYLTDQTSCWMTYTNPKTHEIINENLDRSPMFSGDIVGVGPRYCPSIETKVVRFADKDRHQIFLEPEGRKTEEIYVGDFSTSMPEEVQLEMLHTVAGLEKVEMMRPGYAIEYDVVDPWQLTHTLETKRIKHLYMAGQMNGTSGYEEAAGQGLIAGINAALSAEGKPAFTLGRDEAYIGVLIDDLVTKGTEEPYRLLTSRAEYRLLLRHDNADLRLTEKGHDLGLIDDDRYAEFLAKKELIQEDLDRLGEITVHPTIAVNEYLAGLGQTDLNGGVKADVFLRRPRVTVEDVERLTGQKLAGDRYVKEQVEIDIKYAGYIKKQEIQVARLRRQEAKKIPKDIDYDQIEGLATEAREKLAKIRPETLAQAERISGVNPADLAILSVYVQNGKYAKVQK"]}}, {"location": "[1861928:1863314](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.6.-.-"], "codon_start": ["1"], "db_xref": ["COG:COG0486"], "gene": ["mnmE"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q8YN91"], "locus_tag": ["MAAAAKME_20350"], "product": ["tRNA modification GTPase MnmE"], "transl_table": ["11"], "translation": ["MVQRLTEFDTIAAISTPLGEGGISIVRVSGEDAVAIVNRLFKGKDLEKVPSHTINYGHIVDPATGQVIDEVMASVMLAPKTFTKEDIVEINCHGGIVVTNDILQLLLANGARMADPGEFTKRAFVNGRIDLTQAESVMDIIRAKTDKARQVAVKQLSGGLLTEIRALRQEILDVLANVEVNIDYPEYDEEEVTAQKLLACAEAVSGKIDRLLETAQEGQILRNGLKTAIVGRPNVGKSSLLNYLTQSDKAIVTDVAGTTRDTLEEFVSVKGVPLELIDTAGIHHTEDQVEKIGVERSKKAIAQADLILLLLDGSQELTEEDRQLLELTAGKKRIIVLNKTDLGQKLTAAEIAKESGSEVISTSIMMKENLDELEALIKKLFFKGIENSNDQVLVTNQRQAGLLAKAKQQLADVASGLEAGMPVDLVQIDFTGAWESLGEITGDSAPDELINDLFSQFCLGK"]}}, {"location": "[1863421:1864291](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "db_xref": ["COG:COG0706"], "gene": ["misCA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q01625"], "locus_tag": ["MAAAAKME_20360"], "product": ["Membrane protein insertase MisCA"], "transl_table": ["11"], "translation": ["MKDILSKKSTKRLLAVLALVTVFALVLSGCATQTTQKPTQISHNSSNWWDAWVVYYLSQFVLWIAKVCGGSYGWAIIIFTVIIRVILLPLNAVQINSTRKMQEIQPELKALQEKYSSKDLETRNKLNEETQKLYKEAGVNPYAGCLPMVIQLPVMWALYQAIWRTPEMQNGKFLWMDLGKPDPYYILPILATVFTFLSSYIATLSVPKSSQTTMTKMMSYVMAIMVGIWAIVFQSAISLYWVISNLFQVGQTLVLQNPFKYRKEQEAKEEAERERQRKIRRAYKRIKRK"]}}, {"location": "[1864290:1864656](-)", "type": "CDS", "id": "", "qualifiers": {"EC_number": ["3.1.26.5"], "codon_start": ["1"], "db_xref": ["COG:COG0594"], "gene": ["rnpA"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:P25814"], "locus_tag": ["MAAAAKME_20370"], "product": ["Ribonuclease P protein component"], "transl_table": ["11"], "translation": ["MRKSYRIKSEQDFQTVFENGESVANRAFVIYVLPRKQNKHFRVGISVGKKVGHTAVVRNRLKRYIRAVLTENRDRIAPDLDFLVIARPYAHDFDWEKTRENLLHALNLAHVIEEMPNKEEK"]}}, {"location": "[1864704:1864845](-)", "type": "CDS", "id": "", "qualifiers": {"codon_start": ["1"], "gene": ["rpmH"], "inference": ["ab initio prediction:Prodigal:002006", "similar to AA sequence:UniProtKB:Q2YZB6"], "locus_tag": ["MAAAAKME_20380"], "product": ["50S ribosomal protein L34"], "transl_table": ["11"], "translation": ["MSTKRTYQPKKRHRSRVHGFMKRMATSNGRKVLARRRAKGRKVLSA"]}}], "name": "CR954253.1", "description": "Lactobacillus delbrueckii strain ATCC 11842", "dbxrefs": [], "annotations": {"molecule_type": "DNA", "topology": "linear", "data_file_division": "UNK", "date": "29-SEP-2023", "accessions": ["CR954253"], "sequence_version": 1, "keywords": [""], "source": "Lactobacillus delbrueckii", "organism": "Lactobacillus delbrueckii", "taxonomy": ["Bacteria", "Bacillota", "Bacilli", "Lactobacillales", "Lactobacillaceae", "Lactobacillus", "Lactobacillus delbrueckii"], "comment": "Annotated using prokka 1.14.6 from\nhttps://github.com/tseemann/prokka.", "structured_comment": {"BGCflow-Data": {"Version": "0.7.5-0936781(changed)", "Run date": "2023-09-29 15:29:16"}}, "references": []}, "letter_annotations": {}, "areas": [{"start": 17407, "end": 39909, "products": 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"WP_043895056.1", "WP_043895057.1", "WP_111712851.1", "WP_020916913.1", "WP_111712852.1", "WP_111712853.1", "WP_111712854.1", "WP_111712855.1", "WP_111712856.1", "WP_061407966.1", "WP_020916920.1", "WP_020916921.1", "WP_020916922.1", "WP_020916923.1", "WP_020916924.1", "WP_111712857.1"], "description": "Streptococcus lutetiensis strain NCTC13774 chromosome 1", "cluster_type": "T3PKS", "tags": ["DQN23_RS04955", "DQN23_RS04960", "DQN23_RS04965", "DQN23_RS04970", "DQN23_RS04975", "DQN23_RS04980", "DQN23_RS04985", "DQN23_RS04990", "DQN23_RS04995", "DQN23_RS05000", "DQN23_RS05010", "DQN23_RS05015", "DQN23_RS05020", "DQN23_RS05025", "DQN23_RS05030", "DQN23_RS05035", "DQN23_RS05040", "DQN23_RS05050", "DQN23_RS05055", "DQN23_RS05060", "DQN23_RS05065", "DQN23_RS05070", "DQN23_RS05075", "DQN23_RS05080", "DQN23_RS05085", "DQN23_RS05090", "DQN23_RS05095", "DQN23_RS05100", "DQN23_RS05105", "DQN23_RS05110", "DQN23_RS05115", "DQN23_RS05120", "DQN23_RS05130", "DQN23_RS05135", "DQN23_RS05140", "DQN23_RS05145", "DQN23_RS05150", "DQN23_RS05155", "DQN23_RS05160", "DQN23_RS05165"]}, {"hits": 2, "core_gene_hits": 0, "blast_score": 1125.0, "synteny_score": 0, "core_bonus": 0, "pairings": [["input|c3|1754105-1755686|-|MAAAAKME_19190|Vitamin", 8, {"name": "DQN23_RS05160", "genecluster": "NZ_LS483403_c970612-1011788", "start": 1009222, "end": 1011036, "strand": "-", "annotation": "ABC_transporter_ATP-binding_protein", "perc_ident": 31, "blastscore": 82, "perc_coverage": 44.866920152091254, "evalue": 1.4e-13, "locus_tag": "WP_020916924.1"}], ["input|c3|1761753-1763844|+|MAAAAKME_19260|putative", 15, {"name": "DQN23_RS05015", "genecluster": "NZ_LS483403_c970612-1011788", "start": 981326, "end": 983434, "strand": "+", "annotation": "ATP-dependent_Clp_protease_ATP-binding_subunit", "perc_ident": 77, "blastscore": 1043, "perc_coverage": 99.13793103448276, "evalue": 1.2e-302, "locus_tag": "WP_111712846.1"}]]}], [{"accession": "NZ_LR594046", "cluster_label": "c889567-930749", "proteins": 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"copper-translocating_P-type_ATPase"}, {"name": "WP_108101999.1", "locus_tag": "C7376_RS04300", "location": "75475-77262", "strand": "+", "annotations": "type_II/IV_secretion_system_protein"}, {"name": "C7376_RS21395", "locus_tag": "C7376_RS21395", "location": "77331-77488", "strand": "+", "annotations": "hypothetical_protein"}, {"name": "C7376_RS21400", "locus_tag": "C7376_RS21400", "location": "77589-77702", "strand": "+", "annotations": "ABC_transporter_ATP-binding_protein"}, {"name": "WP_108102000.1", "locus_tag": "C7376_RS04305", "location": "77699-80290", "strand": "+", "annotations": "FtsX-like_permease_family_protein"}, {"name": "WP_108102001.1", "locus_tag": "C7376_RS04310", "location": "80327-81703", "strand": "-", "annotations": "hypothetical_protein"}, {"name": "WP_108102002.1", "locus_tag": "C7376_RS04315", "location": "81945-82634", "strand": "+", "annotations": "ABC_transporter_ATP-binding_protein"}, {"name": "WP_108102003.1", "locus_tag": "C7376_RS04320", "location": "82631-85222", "strand": "+", "annotations": "FtsX-like_permease_family_protein"}, {"name": "WP_108102004.1", "locus_tag": "C7376_RS04325", "location": "85215-85991", "strand": "+", "annotations": "outer_membrane_lipoprotein-sorting_protein"}, {"name": "WP_108102005.1", "locus_tag": "C7376_RS04330", "location": "86061-87422", "strand": "+", "annotations": "hypothetical_protein"}, {"name": "WP_108102006.1", "locus_tag": "C7376_RS04335", "location": "87465-88607", "strand": "+", "annotations": "glycosyltransferase"}, {"name": "WP_158270960.1", "locus_tag": "C7376_RS04340", "location": "88704-89993", "strand": "-", "annotations": "GMC_family_oxidoreductase"}, {"name": "WP_108102008.1", "locus_tag": "C7376_RS04345", "location": "90107-91321", "strand": "-", "annotations": "glycosyltransferase"}, {"name": "WP_108102009.1", "locus_tag": "C7376_RS04350", "location": "91318-92463", "strand": "-", "annotations": "NAD-dependent_epimerase/dehydratase_family_protein"}, {"name": "WP_108102142.1", 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"annotations": "MarR_family_transcriptional_regulator"}, {"name": "DQN23_RS04955", "locus_tag": "DQN23_RS04955", "location": "971172-972889", "strand": "-", "annotations": "aminodeoxychorismate_synthase_component_I"}, {"name": "WP_111712842.1", "locus_tag": "DQN23_RS04960", "location": "972902-973786", "strand": "-", "annotations": "EamA_family_transporter_RarD"}, {"name": "WP_111713082.1", "locus_tag": "DQN23_RS04965", "location": "973773-974639", "strand": "-", "annotations": "homoserine_kinase"}, {"name": "WP_020916886.1", "locus_tag": "DQN23_RS04970", "location": "974695-975981", "strand": "-", "annotations": "homoserine_dehydrogenase"}, {"name": "WP_111712843.1", "locus_tag": "DQN23_RS04975", "location": "976202-977143", "strand": "+", "annotations": "polysaccharide_deacetylase_family_protein"}, {"name": "WP_020916888.1", "locus_tag": "DQN23_RS04980", "location": "977186-977374", "strand": "-", "annotations": "hypothetical_protein"}, {"name": "WP_111712844.1", "locus_tag": 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"annotations": "ABC_transporter_ATP-binding_protein"}, {"name": "WP_111716180.1", "locus_tag": "DQM53_RS04830", "location": "931419-932297", "strand": "+", "annotations": "mevalonate_kinase"}, {"name": "WP_111716182.1", "locus_tag": "DQM53_RS04835", "location": "932279-933223", "strand": "+", "annotations": "diphosphomevalonate_decarboxylase"}, {"name": "WP_111716185.1", "locus_tag": "DQM53_RS04840", "location": "933216-934229", "strand": "+", "annotations": "phosphomevalonate_kinase"}, {"name": "WP_111716188.1", "locus_tag": "DQM53_RS04845", "location": "934216-935208", "strand": "+", "annotations": "type_2_isopentenyl-diphosphate_Delta-isomerase"}, {"name": "WP_111716190.1", "locus_tag": "DQM53_RS04850", "location": "935354-936880", "strand": "-", "annotations": "helix-turn-helix_domain-containing_protein"}, {"name": "WP_111715596.1", "locus_tag": "DQM53_RS04855", "location": "937161-938114", "strand": "-", "annotations": "IS30_family_transposase"}, {"name": "WP_111716192.1", 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"NRP", 26.0, 84.0, 93.20388349514563, 3.2e-16], ["EKJ70675.1", "hypothetical_protein", "BGC0002188", 1, "NRP+Polyketide", 28.0, 84.0, 77.66990291262135, 4.2e-16], ["AZH29358.1", "ABC_transporter_ATP-binding_protein", "BGC0001843", 1, "NRP", 32.0, 84.0, 60.84142394822006, 5.5e-16], ["ACC84962.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 29.0, 84.0, 65.0485436893204, 5.5e-16], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 29.0, 83.0, 75.08090614886731, 7.1e-16], ["EFI65097.1", "lantibiotic_transport_protein", "BGC0001407", 1, "RiPP", 25.0, 83.0, 93.85113268608414, 9.3e-16], ["WP_002130748.1", "peptidase_domain-containing_ABC_transporter", "BGC0001863", 1, "Terpene+RiPP:Glycocin", 31.0, 82.0, 56.957928802588995, 1.2e-15], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 29.0, 82.0, 64.40129449838187, 1.2e-15], ["AVX51096.1", "nysH", "BGC0001709", 1, "Polyketide", 28.0, 82.0, 92.23300970873787, 1.6e-15], ["AAF71764.1", "nysH", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 31.0, 82.0, 64.40129449838187, 2.1e-15], ["BAD02214.1", "ATP-binding_protein", "BGC0002682", 1, "Other", 31.0, 81.0, 69.57928802588997, 2.7e-15], ["CUX79063.1", "Putative_multidrug_export_ATP-binding/permease_protein", "BGC0001715", 1, "NRP", 28.0, 81.0, 93.52750809061489, 3.5e-15], ["BAE46918.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 32.0, 81.0, 57.28155339805825, 4.6e-15], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 26.0, 80.0, 100.0, 7.9e-15], ["ACB01054.1", "ABC-type_nitrate/sulfonate/bicarbonate_transport_system,_ATP-binding_protein", "BGC0002470", 1, "Other", 31.0, 80.0, 63.75404530744336, 7.9e-15], ["BAH43767.1", "ABC_transporter_ATP_binding/permease_protein", "BGC0000452", 1, "NRP", 27.0, 79.0, 92.88025889967638, 1e-14], ["EHQ60564.1", "ABC_transporter", "BGC0001356", 1, "RiPP", 31.0, 79.0, 65.37216828478964, 1e-14], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 29.0, 79.0, 62.13592233009708, 1.3e-14], ["BAL90289.1", "putative_ABC_transporter_ATPase_and_permease_protein", "BGC0002021", 1, "Polyketide", 32.0, 79.0, 57.92880258899677, 1.3e-14], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 34.0, 78.0, 58.57605177993528, 2.3e-14], ["BAL15734.1", "ABC_transporter", "BGC0000432", 1, "NRP", 27.0, 78.0, 88.3495145631068, 3e-14], ["DAB41657.1", "ABC_transporter", "BGC0001585", 1, "Alkaloid", 24.0, 78.0, 86.08414239482201, 3e-14], ["QIZ24092.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 26.0, 78.0, 89.96763754045307, 3e-14], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 24.0, 77.0, 98.05825242718447, 3.9e-14], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 29.0, 77.0, 61.81229773462783, 5.1e-14], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 24.0, 77.0, 98.38187702265373, 6.7e-14], ["AQT01390.1", "SgnA", "BGC0001690", 1, "Polyketide", 24.0, 77.0, 90.29126213592234, 6.7e-14], ["AXM42912.1", "ABC_transporter_ATP-binding_protein", "BGC0001940", 1, "Polyketide", 32.0, 76.0, 58.89967637540453, 8.7e-14], ["MCF2150409.1", "DevA-like,_part_of_ABC_transporter", "BGC0002625", 1, "NRP+Polyketide", 28.0, 76.0, 70.55016181229773, 8.7e-14], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 24.0, 76.0, 88.67313915857605, 1.1e-13], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 24.0, 76.0, 88.67313915857605, 1.1e-13], ["AFO89690.1", "ABC_transporter,_transmembrane_ATP-binding_protein", "BGC0002694", 1, "Other", 26.0, 76.0, 97.41100323624595, 1.1e-13], ["ABV83219.1", "CppH", "BGC0000116", 1, "Polyketide", 30.0, 76.0, 51.1326860841424, 1.5e-13], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 24.0, 76.0, 98.05825242718447, 1.5e-13], ["MAA_10048", "multidrug_resistance_protein", "BGC0000337", 1, "NRP", 31.0, 75.0, 59.22330097087378, 1.9e-13], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 29.0, 75.0, 55.016181229773466, 1.9e-13], ["MBE3200464.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 31.0, 75.0, 58.89967637540453, 1.9e-13], ["CAC20924.1", "PimA_protein", "BGC0000125", 1, "Polyketide", 24.0, 75.0, 90.29126213592234, 2.5e-13], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 24.0, 75.0, 98.05825242718447, 2.5e-13], ["AHZ20760.1", "ABC_transporter_transmembrane_domain/ATP-binding_domain_protein", "BGC0000369", 1, "NRP+Saccharide:Hybrid/tailoring saccharide", 29.0, 74.0, 59.54692556634305, 3.3e-13], ["AHF21226.1", "TriB", "BGC0000449", 1, "NRP", 31.0, 74.0, 60.19417475728155, 3.3e-13], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 29.0, 74.0, 55.016181229773466, 3.3e-13], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 29.0, 74.0, 55.016181229773466, 3.3e-13], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 24.0, 74.0, 88.67313915857605, 4.3e-13], ["XP_011392729.1", "ABC_transporter", "BGC0001281", 1, "Polyketide", 31.0, 74.0, 64.07766990291263, 4.3e-13], ["QQZ01651.1", "ABC_transporter", "BGC0002497", 1, "Other", 28.0, 74.0, 62.7831715210356, 4.3e-13], ["AAY93430.1", "cation_ABC_transporter,_MZT_family,_ATP-binding_protein", "BGC0000413", 1, "NRP", 33.0, 74.0, 59.54692556634305, 5.7e-13], ["CBF87872.1", "ABC_multidrug_transporter_(Eurofung)", "BGC0001699", 1, "NRP", 28.0, 74.0, 52.75080906148867, 5.7e-13], ["AGK15450.1", "ABC_transporter,_transmembrane_region,_ATP_binding_component", "BGC0002529", 1, "NRP", 29.0, 74.0, 61.48867313915858, 5.7e-13], ["ADX66464.1", "ScnA", "BGC0000108", 1, "Polyketide", 28.0, 73.0, 56.310679611650485, 7.4e-13], ["ATQ39429.1", "ABC_transporter", "BGC0001565", 1, "NRP", 26.0, 73.0, 85.11326860841424, 7.4e-13], ["QIZ86016.1", "NHLP_family_bacteriocin_export_ABC_transporter", "BGC0002330", 1, "RiPP", 29.0, 73.0, 61.48867313915858, 9.7e-13], ["OUH62398.1", "hypothetical_protein", "BGC0001639", 1, "RiPP", 32.0, 72.0, 47.896440129449836, 1.3e-12], ["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 28.0, 72.0, 65.0485436893204, 1.6e-12], ["CAD15510.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 28.0, 72.0, 71.84466019417476, 2.2e-12], ["AFP87531.1", "ABC_transporter", "BGC0001159", 1, "NRP+Polyketide:Modular type I polyketide", 30.0, 71.0, 70.22653721682848, 2.8e-12], ["QCC62989.1", "hypothetical_protein", "BGC0001966", 1, "NRP+Polyketide", 25.0, 71.0, 78.31715210355988, 2.8e-12], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 31.0, 71.0, 62.45954692556634, 3.7e-12], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 25.0, 71.0, 88.3495145631068, 4.8e-12], ["QQZ01652.1", "ABC_transporter", "BGC0002497", 1, "Other", 25.0, 71.0, 84.14239482200647, 4.8e-12], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 31.0, 70.0, 68.6084142394822, 6.3e-12], ["ctg1_orf26", "", "BGC0001767", 1, "NRP", 32.0, 70.0, 58.252427184466015, 6.3e-12], ["WP_232292338.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001999", 1, "NRP", 28.0, 70.0, 72.81553398058253, 6.3e-12], ["AAO56108.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 26.0, 70.0, 60.19417475728155, 6.3e-12], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 27.0, 70.0, 65.69579288025889, 8.2e-12], ["EPE34342.1", "ABC-transporter", "BGC0001035", 1, "Polyketide+NRP", 30.0, 69.0, 51.45631067961165, 1.1e-11], ["BBC83962.1", "P-loop_containing_nucleoside_triphosphate_hydrolase_protein", "BGC0001636", 1, "NRP", 29.0, 69.0, 60.517799352750814, 1.1e-11], ["AGL93176.1", "ABC_transporter_ATP-binding_protein", "BGC0000560", 1, "RiPP:Lanthipeptide", 31.0, 69.0, 54.0453074433657, 1.4e-11], ["WP_042799412.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001283", 1, "Polyketide", 30.0, 69.0, 65.69579288025889, 1.8e-11], ["QVK45109.1", "ABC_transporter", "BGC0002438", 1, "Alkaloid", 28.0, 69.0, 57.60517799352751, 1.8e-11], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 29.0, 68.0, 63.43042071197411, 3.1e-11], ["AAD48883.1", "ATPase", "BGC0002494", 1, "NRP", 30.0, 68.0, 67.31391585760518, 3.1e-11], ["ABS50189.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 26.0, 67.0, 66.99029126213593, 4.1e-11], ["AQZ37089.1", "ABC_transporter_transmembrane_region_protein", "BGC0001511", 1, "Polyketide", 29.0, 67.0, 55.33980582524271, 4.1e-11], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 28.0, 67.0, 69.57928802588997, 4.1e-11], ["MCC5036774.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 24.0, 67.0, 90.93851132686083, 4.1e-11], ["CCA53800.1", "putative_ABC_transporter", "BGC0001801", 1, "NRP", 26.0, 67.0, 74.11003236245955, 5.3e-11], ["NKI69290.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002408", 1, "NRP", 33.0, 67.0, 66.34304207119742, 5.3e-11], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 28.0, 67.0, 63.43042071197411, 6.9e-11], ["CCT75968.1", "related_to_multidrug_resistance_protein", "BGC0001606", 1, "Polyketide", 28.0, 67.0, 52.42718446601942, 6.9e-11], ["WP_014929841.1", "ABC_transporter_transmembrane_domain-containing_protein", "BGC0001864", 1, "RiPP:Glycocin", 28.0, 67.0, 55.33980582524271, 6.9e-11], ["QWP75302.1", "ABC_transporter_ATP-binding_protein", "BGC0002126", 1, "NRP:Cyclic depsipeptide", 29.0, 67.0, 66.66666666666666, 6.9e-11], ["CBA63688.1", "ATPase_of_griseobactin_uptake_ABC_transporter", "BGC0000368", 1, "NRP", 26.0, 66.0, 69.90291262135922, 9e-11], ["AAN85545.1", "antibiotic_resistance_protein", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 29.0, 66.0, 56.63430420711975, 9e-11], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 29.0, 66.0, 55.33980582524271, 1.2e-10], ["APZ78695.1", "ABC_transporter_ATP-binding_protein", "BGC0001418", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 24.0, 66.0, 67.31391585760518, 1.2e-10], ["APZ78707.1", "ABC_transporter_ATP-binding_protein", "BGC0001419", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 24.0, 66.0, 67.31391585760518, 1.2e-10], ["AGE11895.1", "ABC_transporter", "BGC0000366", 1, "NRP", 30.0, 66.0, 70.22653721682848, 1.5e-10], ["EYT83450.1", "ABC_transporter", "BGC0001213", 1, "Polyketide", 28.0, 66.0, 66.66666666666666, 1.5e-10], ["ATW47202.1", "ABC_transporter", "BGC0002466", 1, "NRP", 30.0, 66.0, 57.92880258899677, 1.5e-10], ["QYA99270.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002676", 1, "NRP", 28.0, 66.0, 59.8705501618123, 1.5e-10], ["CAP20370.1", "ABC_transporter,_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 28.0, 65.0, 58.252427184466015, 2e-10], ["CAJ87587.1", "putative_ABC_transporter_protein", "BGC0001055", 1, "NRP+Polyketide", 24.0, 65.0, 94.8220064724919, 2e-10], ["AQZ71346.1", "ABC_transporter", "BGC0001635", 1, "NRP+Polyketide", 27.0, 65.0, 64.72491909385113, 2e-10], ["AKU20512.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 25.0, 65.0, 66.99029126213593, 2.6e-10], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 29.0, 64.0, 53.398058252427184, 3.4e-10], ["ABI87090.1", "ABC_transporter_related_protein", "BGC0002531", 1, "NRP", 27.0, 64.0, 73.7864077669903, 3.4e-10], ["AAQ59906.1", "enterobactin-iron_transport_system_ATP-binding_protein", "BGC0002680", 1, "NRP", 30.0, 64.0, 60.84142394822006, 3.4e-10], ["BAB72347.1", "ATP-binding_protein_of_iron(III)_ABC_transporter", "BGC0002683", 1, "Other", 28.0, 64.0, 71.84466019417476, 3.4e-10], ["AUD11999.1", "OrbC", "BGC0001721", 1, "NRP", 27.0, 64.0, 73.46278317152104, 4.5e-10], ["QDQ83030.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002564", 1, "NRP", 27.0, 64.0, 72.49190938511327, 4.5e-10], ["AAS92552.1", "SirA", "BGC0001044", 1, "NRP", 30.0, 64.0, 55.663430420711975, 5.9e-10], ["OLZ52458.1", "ABC_transporter", "BGC0001462", 1, "NRP:Glycopeptide", 27.0, 63.0, 69.90291262135922, 7.7e-10], ["AAK89711.1", "ABC_transporter,_nucleotide_binding/ATPase_protein_(iron_(III)_dicitrate)", "BGC0002107", 1, "NRP+Polyketide", 27.0, 63.0, 67.63754045307444, 7.7e-10], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 29.0, 63.0, 45.307443365695796, 7.7e-10], ["AXF14777.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002563", 1, "NRP", 28.0, 63.0, 67.31391585760518, 7.7e-10], ["AAO56107.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 28.0, 63.0, 62.13592233009708, 7.7e-10], ["QEV63710.1", "dipeptide_ABC_transporter_ATP-binding_protein", "BGC0002657", 1, "Polyketide+NRP", 29.0, 63.0, 58.252427184466015, 7.7e-10], ["AMQ70215.1", "bacitracin_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 28.0, 63.0, 55.016181229773466, 7.7e-10], ["WP_010369407.1", "ABC_transporter_ATP-binding_protein", "BGC0000314", 1, "Polyketide+NRP:Cyclic depsipeptide+Other:Aminocoumarin", 26.0, 63.0, 53.398058252427184, 1e-09], ["BAP05577.1", "calU", "BGC0000967", 1, "NRP+Polyketide:Trans-AT type I polyketide", 25.0, 63.0, 91.2621359223301, 1e-09], ["CDL83408.1", "Iron(3+)-hydroxamate_import_ATP-binding_protein_FhuC", "BGC0001498", 1, "Other", 29.0, 63.0, 66.99029126213593, 1e-09], ["AXG47409.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 24.0, 63.0, 97.0873786407767, 1e-09], ["CAA90021.1", "PepT", "BGC0000543", 1, "RiPP:Lanthipeptide", 26.0, 62.0, 94.8220064724919, 1.3e-09], ["ABM30208.1", "PvuE", "BGC0000947", 1, "Other", 26.0, 62.0, 71.84466019417476, 1.3e-09], ["CBF73441.1", "ABC_transporter_(Eurofung)", "BGC0001515", 1, "NRP", 26.0, 62.0, 71.84466019417476, 1.3e-09], ["WP_081238292.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 28.0, 62.0, 49.19093851132686, 1.3e-09], ["CAP20371.1", "ABC_transporter_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 25.0, 62.0, 64.40129449838187, 1.7e-09], ["ALE27499.1", "ABC_transporter", "BGC0001292", 1, "Other", 25.0, 62.0, 90.29126213592234, 2.2e-09], ["RSO11557.1", "ABC_transporter", "BGC0002637", 1, "NRP", 26.0, 62.0, 64.72491909385113, 2.2e-09], ["CAA11793.1", "PCZA363.2", "BGC0000322", 1, "NRP", 27.0, 61.0, 59.22330097087378, 2.9e-09], ["OKA09422.1", "ABC_transporter", "BGC0001459", 1, "NRP:Glycopeptide", 26.0, 61.0, 59.54692556634305, 2.9e-09], ["CAR51989.1", "putative_iron_transport-related_ATP-binding_protein", "BGC0002569", 1, "NRP", 27.0, 61.0, 68.93203883495146, 2.9e-09], ["WP_037568401.1", "ABC_transporter_ATP-binding_protein", "BGC0002656", 1, "Polyketide", 27.0, 61.0, 65.0485436893204, 2.9e-09], ["FNF07_04290", "ATP-binding_cassette_domain-containing_protein", "BGC0002329", 1, "NRP", 30.0, 61.0, 70.87378640776699, 3.8e-09], ["QPP19365.1", "Pen6", "BGC0002501", 1, "Alkaloid", 25.0, 61.0, 67.96116504854369, 5e-09], ["AAM80540.1", "StaU", "BGC0000290", 1, "NRP:Glycopeptide", 27.0, 60.0, 64.72491909385113, 6.5e-09], ["QTT77479.1", "ABC_transporter_ATP-binding_protein", "BGC0002350", 1, "NRP+Polyketide+Saccharide", 24.0, 60.0, 87.37864077669903, 6.5e-09], ["MBE3202948.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 29.0, 60.0, 55.663430420711975, 6.5e-09], ["KJY94245.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002691", 1, "NRP", 28.0, 60.0, 72.168284789644, 6.5e-09], ["NAO96303.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002117", 1, "NRP", 29.0, 60.0, 72.49190938511327, 8.5e-09], ["QSE03592.1", "Lcm8", "BGC0002333", 1, "Polyketide", 27.0, 60.0, 49.19093851132686, 8.5e-09], ["EME52991.1", "ABC_transporter", "BGC0001460", 1, "NRP:Glycopeptide", 27.0, 59.0, 59.22330097087378, 1.1e-08], ["KGA48642.1", "ABC_transporter_family_protein", "BGC0002413", 1, "NRP", 30.0, 59.0, 57.60517799352751, 1.1e-08], ["ABW91161.1", "exporter/resistance_protein", "BGC0000019", 1, "Polyketide", 27.0, 59.0, 60.517799352750814, 1.4e-08], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 26.0, 59.0, 63.75404530744336, 1.4e-08], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 28.0, 59.0, 60.517799352750814, 1.4e-08], ["SDF67574.1", "putative_ATP-binding_cassette_transporter", "BGC0002422", 1, "NRP", 29.0, 59.0, 60.517799352750814, 1.4e-08], ["ACY56719.1", "ThnT", "BGC0000600", 1, "RiPP", 24.0, 59.0, 91.58576051779936, 1.9e-08], ["MBV7329448.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002131", 1, "Polyketide+NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 25.0, 59.0, 90.61488673139159, 1.9e-08], ["ARD70884.1", "ABC_transporter", "BGC0001693", 1, "Polyketide", 23.0, 58.0, 85.43689320388349, 2.5e-08], ["MBX9445648.1", "ABC_transporter_ATP-binding_protein", "BGC0002414", 1, "NRP", 30.0, 58.0, 58.252427184466015, 2.5e-08], ["CAG25756.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000311", 1, "NRP", 27.0, 58.0, 59.22330097087378, 3.2e-08], ["ALK27913.1", "putative_ABC_transporter", "BGC0001233", 1, "NRP", 28.0, 58.0, 57.28155339805825, 3.2e-08], ["AEI58864.1", "ABC_transporter", "BGC0000455", 1, "NRP", 27.0, 57.0, 59.22330097087378, 4.2e-08], ["MBA0053734.1", "ABC_transporter_ATP-binding_protein", "BGC0002096", 1, "Polyketide", 26.0, 57.0, 73.46278317152104, 5.5e-08], ["EET76299.1", "ABC_transporter,_ATP-binding_protein", "BGC0002685", 1, "NRP", 29.0, 57.0, 67.96116504854369, 5.5e-08], ["BAF50716.2", "ABC-transporter_protein", "BGC0001116", 1, "NRP+Polyketide", 30.0, 57.0, 48.54368932038835, 7.2e-08], ["AJK49764.1", "ABC_transporter,_ATP-binding_protein", "BGC0002565", 1, "NRP", 25.0, 57.0, 69.90291262135922, 7.2e-08], ["CAD91219.1", "putative_ABC_transporter,_Dbv24", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 56.0, 59.54692556634305, 9.4e-08], ["ACU36655.1", "ABC_transporter_related", "BGC0000392", 1, "NRP", 25.0, 56.0, 72.49190938511327, 9.4e-08], ["AAP11941.1", "ABC_transporter_ATP-binding_protein", "BGC0000612", 1, "RiPP:Thiopeptide", 25.0, 56.0, 67.63754045307444, 9.4e-08], ["AZM57021.1", "ABC_transporter", "BGC0002314", 1, "NRP", 27.0, 56.0, 63.10679611650486, 9.4e-08], ["AFO89680.1", "putative_ferrichrome_transport_ATP-binding_protein", "BGC0002694", 1, "Other", 26.0, 56.0, 66.01941747572816, 9.4e-08], ["CAB53321.1", "putative_ABC_transporter_transmembrane_protein", "BGC0000325", 1, "NRP", 25.0, 56.0, 94.1747572815534, 1.2e-07], ["ABC39054.1", "iron_compound_ABC_transporter,_ATP-binding_protein", "BGC0000386", 1, "NRP:NRP siderophore", 26.0, 56.0, 63.43042071197411, 1.2e-07], ["OLZ50884.1", "ABC_transporter", "BGC0001461", 1, "NRP:Glycopeptide", 26.0, 56.0, 58.89967637540453, 1.6e-07], ["AYA22337.1", "Tri", "BGC0001955", 1, "NRP", 26.0, 56.0, 58.89967637540453, 1.6e-07], ["QYC40286.1", "Multidrug_export_ATP-binding/permease_protein", "BGC0002344", 1, "NRP", 27.0, 56.0, 59.54692556634305, 1.6e-07], ["AHZ61877.1", "ABC-transporter-like_protein", "BGC0000240", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 24.0, 55.0, 56.957928802588995, 2.7e-07], ["ABP54659.1", "ABC_transporter_related", "BGC0000241", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 24.0, 55.0, 56.957928802588995, 2.7e-07], ["AAK81823.1", "ABC_transporter", "BGC0000326", 1, "NRP", 25.0, 55.0, 65.69579288025889, 2.7e-07], ["AIG79244.1", "Conserved_putative_membrane_protein", "BGC0000419", 1, "Saccharide+NRP:Glycopeptide", 25.0, 55.0, 61.48867313915858, 2.7e-07], ["CCC55903.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 26.0, 55.0, 61.81229773462783, 2.7e-07], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 29.0, 55.0, 55.663430420711975, 2.7e-07], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 28.0, 54.0, 56.957928802588995, 3.6e-07], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 28.0, 54.0, 56.957928802588995, 3.6e-07], ["SPE99799.1", "Glutathione_import_ATP-binding_protein_GsiA", "BGC0002567", 1, "Other", 26.0, 54.0, 66.66666666666666, 3.6e-07], ["AAN85547.1", "ABC_transporter", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 27.0, 54.0, 63.10679611650486, 4.6e-07], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 24.0, 54.0, 78.64077669902912, 4.6e-07], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 28.0, 54.0, 63.43042071197411, 6.1e-07], ["AAC73689.1", "ferric_enterobactin_ABC_transporter_ATP_binding_subunit", "BGC0002476", 1, "NRP", 26.0, 54.0, 77.66990291262135, 6.1e-07], ["CAE53357.1", "ABC_transporter", "BGC0000440", 1, "NRP:Glycopeptide", 25.0, 53.0, 65.0485436893204, 1e-06], ["CAG15016.1", "ABC_transporter", "BGC0000441", 1, "NRP", 25.0, 53.0, 65.0485436893204, 1e-06], ["AAK95839.1", "ABC-transport_protein_PhuC", "BGC0002495", 1, "NRP", 27.0, 53.0, 57.60517799352751, 1e-06], ["AIE77056.1", "ABC-transporter", "BGC0000418", 1, "NRP", 25.0, 52.0, 61.48867313915858, 1.8e-06], ["ABE35427.1", "ABC_cobalamin/Fe3+-siderophores_transporter,_ATPase_subunit", "BGC0002421", 1, "NRP", 28.0, 52.0, 59.22330097087378, 1.8e-06], ["AZM50109.1", "ABC_transporter", "BGC0002702", 1, "NRP", 25.0, 51.0, 64.72491909385113, 3e-06], ["ABX00624.1", "LmrC", "BGC0000907", 1, "Other", 27.0, 51.0, 57.60517799352751, 3.9e-06], ["AFD30962.1", "CrmT3", "BGC0000966", 1, "NRP+Polyketide", 24.0, 51.0, 59.22330097087378, 3.9e-06], ["MCC5036782.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 24.0, 51.0, 61.81229773462783, 3.9e-06]], "MAAAAKME_00210": [["MBX4265669.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002667", 1, "RiPP", 25.0, 56.0, 82.91139240506328, 1.2e-07]], "MAAAAKME_00260": [["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 33.0, 311.0, 97.71528998242532, 5.1e-84], ["AGL93176.1", "ABC_transporter_ATP-binding_protein", "BGC0000560", 1, "RiPP:Lanthipeptide", 34.0, 307.0, 100.17574692442884, 4.3e-83], ["AEP18658.1", "efflux_transporter", "BGC0000461", 1, "NRP", 35.0, 306.0, 97.01230228471002, 9.6e-83], ["WP_087443883.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002701", 1, "RiPP", 34.0, 306.0, 98.59402460456941, 9.6e-83], ["AFS60105.1", "PaenT", "BGC0000540", 1, "RiPP:Lanthipeptide", 34.0, 306.0, 101.23022847100177, 1.2e-82], ["CAA90021.1", "PepT", "BGC0000543", 1, "RiPP:Lanthipeptide", 33.0, 304.0, 97.01230228471002, 3.6e-82], ["QWM97318.1", "ABC_transporter_ATP-binding_protein", "BGC0002384", 1, "NRP", 34.0, 282.0, 98.41827768014059, 1.5e-75], ["BAV56269.1", "hypothetical_protein", "BGC0001657", 1, "NRP", 34.0, 280.0, 96.8365553602812, 9.6e-75], ["QWP75302.1", "ABC_transporter_ATP-binding_protein", "BGC0002126", 1, "NRP:Cyclic depsipeptide", 34.0, 277.0, 97.71528998242532, 8.1e-74], ["AJF34465.1", "ABC_transporter", "BGC0001207", 1, "NRP", 33.0, 275.0, 99.82425307557118, 1.8e-73], ["AEH59102.1", "ABC_transporter/permease/ATP-binding_protein", "BGC0000385", 1, "NRP", 33.0, 264.0, 98.06678383128296, 7.1e-70], ["QBF29317.1", "ABC_transporter_ATP-binding_protein", "BGC0002294", 1, "Other", 30.0, 231.0, 92.61862917398945, 3.9e-60], ["EWC60873.1", "hypothetical_protein", "BGC0001496", 1, "RiPP", 30.0, 225.0, 101.75746924428823, 3.7e-58], ["CAB38879.1", "putative_ABC_transporter", "BGC0000315", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 30.0, 216.0, 99.29701230228471, 1.3e-55], ["QKI29071.1", "ABC_transporter_ATP-binding_protein", "BGC0002130", 1, "RiPP:Lanthipeptide", 30.0, 215.0, 100.35149384885764, 2.2e-55], ["ALV82355.1", "ABC_transporter", "BGC0001370", 1, "NRP", 30.0, 215.0, 101.05448154657293, 2.9e-55], ["CUX79063.1", "Putative_multidrug_export_ATP-binding/permease_protein", "BGC0001715", 1, "NRP", 28.0, 213.0, 97.89103690685414, 8.4e-55], ["WP_052414171.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001551", 1, "RiPP", 30.0, 213.0, 96.8365553602812, 1.4e-54], ["BAI23327.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 31.0, 210.0, 101.58172231985941, 1.2e-53], ["AFJ14797.1", "PlpH", "BGC0000403", 1, "NRP", 29.0, 207.0, 95.2548330404218, 6e-53], ["AFJ14796.1", "PlpG", "BGC0000403", 1, "NRP", 28.0, 206.0, 98.41827768014059, 1.8e-52], ["BAH43767.1", "ABC_transporter_ATP_binding/permease_protein", "BGC0000452", 1, "NRP", 26.0, 205.0, 97.71528998242532, 2.3e-52], ["APO47824.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 27.0, 205.0, 99.12126537785588, 2.3e-52], ["ACA97578.1", "PmxC", "BGC0000408", 1, "NRP", 28.0, 205.0, 99.64850615114236, 3.9e-52], ["AEZ51518.1", "pmxC", "BGC0001153", 1, "NRP:Lipopeptide", 27.0, 205.0, 99.64850615114236, 3.9e-52], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 29.0, 204.0, 94.02460456942003, 6.7e-52], ["BAJ19058.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 30.0, 201.0, 107.55711775043937, 3.3e-51], ["BAC73398.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001552", 1, "RiPP", 28.0, 201.0, 99.47275922671353, 5.7e-51], ["AJM89736.1", "PmxC", "BGC0001192", 1, "NRP", 27.0, 199.0, 100.35149384885764, 1.6e-50], ["CUX79064.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001715", 1, "NRP", 28.0, 197.0, 96.30931458699473, 8.2e-50], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 30.0, 196.0, 92.44288224956063, 1.8e-49], ["WP_052230046.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001188", 1, "RiPP", 27.0, 195.0, 99.47275922671353, 3.1e-49], ["WP_081238293.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 29.0, 195.0, 88.40070298769771, 4.1e-49], ["AGM16415.1", "paenibacterin_ABC-transporter_D", "BGC0000400", 1, "NRP", 26.0, 193.0, 98.76977152899823, 9e-49], ["BAL72550.1", "lariatin_biosynthetic_protein", "BGC0000575", 1, "RiPP:Lassopeptide", 28.0, 192.0, 91.03690685413005, 2.6e-48], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 30.0, 191.0, 100.17574692442884, 3.4e-48], ["ADX66465.1", "ScnB", "BGC0000108", 1, "Polyketide", 29.0, 190.0, 92.97012302284709, 1e-47], ["AIG26886.1", "putative_multidrug_export_ATP-binding/permease_protein", "BGC0002432", 1, "NRP", 26.0, 190.0, 97.53954305799648, 1e-47], ["AHH99931.1", "ABC_transporter_protein", "BGC0000002", 1, "Polyketide", 28.0, 189.0, 98.59402460456941, 1.7e-47], ["AHF21226.1", "TriB", "BGC0000449", 1, "NRP", 27.0, 189.0, 104.92091388400704, 1.7e-47], ["WP_078620925.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001549", 1, "RiPP", 27.0, 189.0, 100.0, 2.2e-47], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 27.0, 188.0, 92.44288224956063, 5e-47], ["BBC83962.1", "P-loop_containing_nucleoside_triphosphate_hydrolase_protein", "BGC0001636", 1, "NRP", 30.0, 187.0, 94.5518453427065, 6.5e-47], ["ATY37606.1", "BreA", "BGC0001536", 1, "NRP", 26.0, 186.0, 98.41827768014059, 1.1e-46], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 27.0, 186.0, 95.78207381370825, 1.4e-46], ["CAC20925.1", "PimB_protein", "BGC0000125", 1, "Polyketide", 28.0, 185.0, 89.98242530755711, 2.5e-46], ["AQT01389.1", "SgnB", "BGC0001690", 1, "Polyketide", 28.0, 185.0, 89.98242530755711, 2.5e-46], ["AZH29358.1", "ABC_transporter_ATP-binding_protein", "BGC0001843", 1, "NRP", 27.0, 185.0, 99.64850615114236, 3.2e-46], ["WP_003071800.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 29.0, 185.0, 86.11599297012302, 3.2e-46], ["CAD89782.1", "hypothetical_protein", "BGC0001010", 1, "NRP+Polyketide:Modular type I polyketide", 30.0, 185.0, 98.76977152899823, 4.2e-46], ["OJF16281.1", "AceT2", "BGC0001491", 1, "Polyketide", 27.0, 185.0, 90.86115992970123, 4.2e-46], ["ATQ39429.1", "ABC_transporter", "BGC0001565", 1, "NRP", 29.0, 185.0, 94.20035149384886, 4.2e-46], ["AHZ61877.1", "ABC-transporter-like_protein", "BGC0000240", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 184.0, 98.59402460456941, 5.5e-46], ["AZH29359.1", "ABC_transporter_ATP-binding_protein", "BGC0001843", 1, "NRP", 27.0, 184.0, 107.0298769771529, 5.5e-46], ["AHF21227.1", "TriC", "BGC0000449", 1, "NRP", 27.0, 184.0, 103.69068541300528, 7.2e-46], ["ABL74935.1", "ABC_multi-drug_transport", "BGC0001048", 1, "NRP:Glycopeptide+Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 184.0, 98.59402460456941, 7.2e-46], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 26.0, 182.0, 97.18804920913884, 2.1e-45], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 26.0, 182.0, 95.78207381370825, 2.7e-45], ["QUQ72367.1", "ABC_transporter", "BGC0002349", 1, "Polyketide+Saccharide", 27.0, 182.0, 98.41827768014059, 2.7e-45], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 26.0, 181.0, 95.78207381370825, 6.1e-45], ["CAG34716.1", "putative_ABC_transporter", "BGC0000713", 1, "Saccharide", 28.0, 180.0, 91.73989455184535, 7.9e-45], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 28.0, 180.0, 98.59402460456941, 7.9e-45], ["QTT77479.1", "ABC_transporter_ATP-binding_protein", "BGC0002350", 1, "NRP+Polyketide+Saccharide", 29.0, 180.0, 90.86115992970123, 7.9e-45], ["ACR43772.1", "ABC-transporter", "BGC0002577", 1, "RiPP", 29.0, 180.0, 98.94551845342706, 7.9e-45], ["ABP54659.1", "ABC_transporter_related", "BGC0000241", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 28.0, 180.0, 99.64850615114236, 1.3e-44], ["AIS24845.1", "dst21", "BGC0001147", 1, "NRP", 30.0, 179.0, 95.95782073813707, 1.8e-44], ["ARD70884.1", "ABC_transporter", "BGC0001693", 1, "Polyketide", 28.0, 179.0, 99.64850615114236, 1.8e-44], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 28.0, 177.0, 99.47275922671353, 6.7e-44], ["ATW47206.1", "multidrug_ABC_transporter_permease", "BGC0002466", 1, "NRP", 31.0, 177.0, 82.60105448154658, 8.7e-44], ["CAG34715.1", "putative_ABC_transporter", "BGC0000713", 1, "Saccharide", 28.0, 176.0, 85.06151142355009, 1.5e-43], ["WP_009985592.1", "peptidase_domain-containing_ABC_transporter", "BGC0001311", 1, "RiPP:Lanthipeptide", 30.0, 176.0, 82.77680140597539, 1.5e-43], ["CAM02315.1", "putative_ABC_transporter_transmembrane", "BGC0000349", 1, "NRP", 28.0, 176.0, 87.5219683655536, 1.9e-43], ["QIZ24091.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 28.0, 175.0, 90.15817223198594, 2.5e-43], ["CAI47638.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 28.0, 175.0, 98.59402460456941, 3.3e-43], ["MAA_10048", "multidrug_resistance_protein", "BGC0000337", 1, "NRP", 29.0, 174.0, 89.63093145869946, 5.7e-43], ["CAF32377.1", "putative_ABC_transporter,_ATP-binding_protein", "BGC0000712", 1, "Saccharide", 30.0, 174.0, 82.95254833040421, 5.7e-43], ["QSE03593.1", "Lcm9", "BGC0002333", 1, "Polyketide", 33.0, 174.0, 60.105448154657296, 5.7e-43], ["AAO56108.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 28.0, 174.0, 90.86115992970123, 5.7e-43], ["CAF32376.1", "putative_ABC_transporter,_ATP-binding_protein", "BGC0000712", 1, "Saccharide", 28.0, 174.0, 97.71528998242532, 7.4e-43], ["ACC84962.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 28.0, 173.0, 104.39367311072057, 1.3e-42], ["EEM14530.1", "hypothetical_protein", "BGC0001210", 1, "RiPP", 27.0, 172.0, 97.18804920913884, 2.8e-42], ["BAE07080.1", "possible_ABC_transporter", "BGC0000693", 1, "Saccharide", 29.0, 171.0, 86.11599297012302, 3.7e-42], ["ACQ63630.1", "ABC_multidrug_resistance_transporter", "BGC0000875", 1, "Saccharide:Hybrid/tailoring saccharide+Other:Nucleoside", 29.0, 171.0, 86.11599297012302, 4.8e-42], ["DAB41657.1", "ABC_transporter", "BGC0001585", 1, "Alkaloid", 28.0, 171.0, 88.75219683655537, 4.8e-42], ["EYT83450.1", "ABC_transporter", "BGC0001213", 1, "Polyketide", 30.0, 171.0, 84.00702987697716, 6.3e-42], ["CAB60262.1", "MrsT_protein", "BGC0000527", 1, "RiPP:Lanthipeptide", 26.0, 170.0, 97.53954305799648, 8.2e-42], ["CAG38700.1", "putative_ABC-transporter,_ATP-binding_protein", "BGC0000708", 1, "Saccharide", 28.0, 170.0, 96.1335676625659, 1.1e-41], ["ADC96668.1", "ABC_transporter", "BGC0001076", 1, "Other:Nucleoside", 29.0, 170.0, 85.76449912126537, 1.1e-41], ["CAF33315.1", "putative_ABC_transporter,_ATP-binding_protein,_NeoU", "BGC0000709", 1, "Saccharide", 29.0, 169.0, 84.53427065026362, 2.4e-41], ["CAH58693.1", "putative_exporter", "BGC0000711", 1, "Saccharide", 29.0, 169.0, 84.53427065026362, 2.4e-41], ["CCA53800.1", "putative_ABC_transporter", "BGC0001801", 1, "NRP", 28.0, 168.0, 88.92794376098419, 3.1e-41], ["WP_051767685.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 27.0, 168.0, 97.71528998242532, 4.1e-41], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 28.0, 168.0, 101.05448154657293, 5.3e-41], ["AAY93395.1", "2-phenylethylamine_uptake_protein_PeaH", "BGC0000413", 1, "NRP", 29.0, 167.0, 92.44288224956063, 6.9e-41], ["BAJ05895.1", "putative_ABC_multidrug_resistance_transporter", "BGC0000872", 1, "Other", 29.0, 167.0, 84.88576449912127, 9e-41], ["BAL90289.1", "putative_ABC_transporter_ATPase_and_permease_protein", "BGC0002021", 1, "Polyketide", 29.0, 167.0, 88.04920913884007, 9e-41], ["CAF31838.1", "putative_hygromycin_B_exporter", "BGC0000699", 1, "Saccharide", 29.0, 166.0, 95.43057996485061, 1.2e-40], ["WP_027239422.1", "NHLP_family_bacteriocin_export_ABC_transporter_peptidase/permease/ATPase_subunit", "BGC0002698", 1, "RiPP", 28.0, 166.0, 91.91564147627417, 1.5e-40], ["AAM80540.1", "StaU", "BGC0000290", 1, "NRP:Glycopeptide", 28.0, 165.0, 103.1634446397188, 2.6e-40], ["BCB17017.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002523", 1, "NRP", 26.0, 165.0, 99.82425307557118, 2.6e-40], ["CAJ88629.1", "putative_netropsin_resistance_protein_subunit_2", "BGC0000327", 1, "NRP", 32.0, 165.0, 69.24428822495607, 3.4e-40], ["WP_028847743.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002467", 1, "NRP", 28.0, 165.0, 87.87346221441125, 3.4e-40], ["MBN3579118.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 34.0, 165.0, 49.56063268892794, 3.4e-40], ["KIH99790.1", "hypothetical_protein", "BGC0001176", 1, "RiPP:Lassopeptide", 27.0, 164.0, 102.81195079086116, 7.7e-40], ["CAF31837.1", "putative_hygromycin_B_exporter", "BGC0000699", 1, "Saccharide", 29.0, 163.0, 84.3585237258348, 1.7e-39], ["WP_020635023.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001211", 1, "NRP", 28.0, 163.0, 98.59402460456941, 1.7e-39], ["QYI86758.1", "putative_ABC_transporter", "BGC0002424", 1, "NRP", 30.0, 163.0, 97.71528998242532, 1.7e-39], ["QQZ01651.1", "ABC_transporter", "BGC0002497", 1, "Other", 28.0, 163.0, 85.58875219683657, 1.7e-39], ["QSE03592.1", "Lcm8", "BGC0002333", 1, "Polyketide", 25.0, 162.0, 97.71528998242532, 2.9e-39], ["CAJ88628.1", "putative_netropsin_resistance_protein_subunit_1", "BGC0000327", 1, "NRP", 27.0, 161.0, 88.40070298769771, 5e-39], ["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 26.0, 161.0, 94.90333919156416, 5e-39], ["ABD65953.1", "ABC_transporter", "BGC0000341", 1, "NRP", 27.0, 161.0, 100.52724077328648, 6.5e-39], ["AHF21240.1", "CrnT", "BGC0000500", 1, "RiPP:Lanthipeptide", 24.0, 161.0, 93.84885764499121, 6.5e-39], ["AAF71764.1", "nysH", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 26.0, 160.0, 99.12126537785588, 8.5e-39], ["AAK81823.1", "ABC_transporter", "BGC0000326", 1, "NRP", 27.0, 160.0, 101.58172231985941, 1.1e-38], ["MCC5036782.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 26.0, 160.0, 102.63620386643233, 1.1e-38], ["AQZ37089.1", "ABC_transporter_transmembrane_region_protein", "BGC0001511", 1, "Polyketide", 27.0, 159.0, 85.23725834797891, 1.9e-38], ["AAO56107.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 27.0, 159.0, 98.76977152899823, 1.9e-38], ["ABV83218.1", "CppG", "BGC0000116", 1, "Polyketide", 25.0, 159.0, 89.98242530755711, 2.5e-38], ["WP_081238292.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 24.0, 158.0, 97.53954305799648, 3.2e-38], ["QIZ86016.1", "NHLP_family_bacteriocin_export_ABC_transporter", "BGC0002330", 1, "RiPP", 27.0, 158.0, 102.81195079086116, 3.2e-38], ["ABS50189.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 30.0, 158.0, 88.22495606326889, 4.2e-38], ["AHJ59536.1", "ABC_transporter_protein", "BGC0000502", 1, "RiPP:Lanthipeptide", 26.0, 158.0, 90.33391915641477, 4.2e-38], ["RSO11557.1", "ABC_transporter", "BGC0002637", 1, "NRP", 27.0, 158.0, 103.33919156414764, 4.2e-38], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 27.0, 158.0, 84.88576449912127, 5.5e-38], ["AAC82548.1", "unknown", "BGC0000351", 1, "NRP", 27.0, 158.0, 91.3884007029877, 5.5e-38], ["ANP43732.1", "ThsT", "BGC0001391", 1, "RiPP", 27.0, 158.0, 97.36379613356766, 5.5e-38], ["CAP20371.1", "ABC_transporter_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 26.0, 157.0, 99.82425307557118, 7.2e-38], ["QEG98936.1", "ant21", "BGC0002042", 1, "NRP", 31.0, 157.0, 69.24428822495607, 7.2e-38], ["QVK45109.1", "ABC_transporter", "BGC0002438", 1, "Alkaloid", 27.0, 157.0, 86.8189806678383, 7.2e-38], ["ADI10107.1", "type_II_lanthionine_synthetase_and_transporter", "BGC0001229", 1, "RiPP:Lanthipeptide", 27.0, 157.0, 95.60632688927943, 9.4e-38], ["ABV83219.1", "CppH", "BGC0000116", 1, "Polyketide", 25.0, 156.0, 92.09138840070298, 1.2e-37], ["ALK27913.1", "putative_ABC_transporter", "BGC0001233", 1, "NRP", 28.0, 156.0, 102.81195079086116, 1.2e-37], ["AQZ71346.1", "ABC_transporter", "BGC0001635", 1, "NRP+Polyketide", 26.0, 156.0, 102.63620386643233, 1.2e-37], ["CAD15510.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 28.0, 156.0, 99.64850615114236, 1.6e-37], ["BAL15734.1", "ABC_transporter", "BGC0000432", 1, "NRP", 26.0, 155.0, 98.06678383128296, 3.6e-37], ["CBG75489.1", "putative_ABC-transport_system_ATP-binding_component", "BGC0000423", 1, "NRP", 27.0, 155.0, 98.76977152899823, 4.6e-37], ["CAG38699.1", "putative_ABC-transporter,_ATP-binding_protein", "BGC0000708", 1, "Saccharide", 28.0, 154.0, 96.66080843585237, 6.1e-37], ["CAD91219.1", "putative_ABC_transporter,_Dbv24", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 154.0, 102.63620386643233, 7.9e-37], ["ALE27499.1", "ABC_transporter", "BGC0001292", 1, "Other", 27.0, 154.0, 83.83128295254832, 7.9e-37], ["BAJ19059.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 28.0, 152.0, 86.46748681898066, 2.3e-36], ["CAA11793.1", "PCZA363.2", "BGC0000322", 1, "NRP", 26.0, 152.0, 103.51493848857645, 2.3e-36], ["BAI23328.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 28.0, 152.0, 86.64323374340948, 2.3e-36], ["BAP05577.1", "calU", "BGC0000967", 1, "NRP+Polyketide:Trans-AT type I polyketide", 26.0, 152.0, 100.0, 3e-36], ["MBE3200462.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 28.0, 152.0, 87.87346221441125, 3e-36], ["AGS77319.1", "ABC_transporter", "BGC0001178", 1, "NRP:Glycopeptide", 26.0, 151.0, 102.46045694200352, 3.9e-36], ["QKV49895.1", "BrtT", "BGC0002110", 1, "RiPP:Lanthipeptide", 27.0, 151.0, 97.89103690685414, 3.9e-36], ["CAI47637.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 26.0, 151.0, 85.23725834797891, 5.1e-36], ["AKQ52537.1", "ABC_transporter_ATP-binding_protein", "BGC0002533", 1, "NRP+Polyketide", 32.0, 151.0, 49.38488576449912, 6.7e-36], ["CAJ87587.1", "putative_ABC_transporter_protein", "BGC0001055", 1, "NRP+Polyketide", 28.0, 150.0, 83.6555360281195, 8.8e-36], ["AAB81307.1", "ATP-dependent_translocator", "BGC0002579", 1, "RiPP", 26.0, 150.0, 95.43057996485061, 8.8e-36], ["AZM57021.1", "ABC_transporter", "BGC0002314", 1, "NRP", 27.0, 150.0, 89.80667838312829, 1.1e-35], ["AKU20512.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 28.0, 150.0, 86.46748681898066, 1.1e-35], ["XP_011392729.1", "ABC_transporter", "BGC0001281", 1, "Polyketide", 27.0, 149.0, 92.09138840070298, 2.5e-35], ["BAB04170.1", "lantibiotic_haloduracin_protease_and_transporter", "BGC0000517", 1, "RiPP:Lanthipeptide", 27.0, 148.0, 101.40597539543057, 3.3e-35], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 26.0, 148.0, 79.61335676625659, 3.3e-35], ["AMQ71643.1", "hypothetical_protein", "BGC0002663", 1, "RiPP", 26.0, 148.0, 98.94551845342706, 3.3e-35], ["CBL93714.1", "ABC_multidrug_transporter", "BGC0000360", 1, "NRP", 26.0, 148.0, 98.76977152899823, 4.3e-35], ["CCC55903.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 27.0, 148.0, 99.29701230228471, 4.3e-35], ["OLZ50884.1", "ABC_transporter", "BGC0001461", 1, "NRP:Glycopeptide", 26.0, 148.0, 102.63620386643233, 4.3e-35], ["AYA22337.1", "Tri", "BGC0001955", 1, "NRP", 26.0, 148.0, 102.63620386643233, 4.3e-35], ["AEI58864.1", "ABC_transporter", "BGC0000455", 1, "NRP", 26.0, 148.0, 102.98769771528997, 5.7e-35], ["CAD15511.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 29.0, 147.0, 85.76449912126537, 7.4e-35], ["AVX51095.1", "nysG", "BGC0001709", 1, "Polyketide", 25.0, 147.0, 89.45518453427064, 7.4e-35], ["AFD30963.1", "CrmT2", "BGC0000966", 1, "NRP+Polyketide", 27.0, 147.0, 92.61862917398945, 9.7e-35], ["AIE77056.1", "ABC-transporter", "BGC0000418", 1, "NRP", 26.0, 146.0, 101.93321616871704, 1.7e-34], ["EDY04298.1", "ABC_transporter-related_protein", "BGC0000516", 1, "RiPP:Lanthipeptide", 27.0, 146.0, 102.10896309314587, 2.2e-34], ["ALE27500.1", "ABC_transporter", "BGC0001292", 1, "Other", 27.0, 145.0, 99.29701230228471, 2.8e-34], ["QYA95652.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002676", 1, "NRP", 26.0, 145.0, 96.1335676625659, 3.7e-34], ["AAS92552.1", "SirA", "BGC0001044", 1, "NRP", 27.0, 144.0, 90.15817223198594, 6.3e-34], ["AIG79244.1", "Conserved_putative_membrane_protein", "BGC0000419", 1, "Saccharide+NRP:Glycopeptide", 25.0, 144.0, 101.93321616871704, 8.2e-34], ["MCC5036771.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 27.0, 143.0, 84.3585237258348, 1.4e-33], ["CAG25756.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000311", 1, "NRP", 26.0, 142.0, 103.86643233743409, 2.4e-33], ["AAF71763.1", "nysG", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 24.0, 142.0, 90.33391915641477, 3.1e-33], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 25.0, 141.0, 80.14059753954305, 4.1e-33], ["AIS24846.1", "dst20", "BGC0001147", 1, "NRP", 27.0, 141.0, 86.46748681898066, 4.1e-33], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 25.0, 141.0, 95.43057996485061, 6.9e-33], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 25.0, 140.0, 94.37609841827768, 9.1e-33], ["AXG47409.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 28.0, 140.0, 81.195079086116, 9.1e-33], ["QYC40286.1", "Multidrug_export_ATP-binding/permease_protein", "BGC0002344", 1, "NRP", 27.0, 140.0, 102.10896309314587, 1.2e-32], ["QEG98937.1", "ant20", "BGC0002042", 1, "NRP", 27.0, 139.0, 90.15817223198594, 1.5e-32], ["MBE3200463.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 27.0, 139.0, 91.91564147627417, 1.5e-32], ["WP_010071703.1", "peptidase_domain-containing_ABC_transporter", "BGC0000554", 1, "RiPP:Lanthipeptide", 28.0, 139.0, 81.01933216168717, 2e-32], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 25.0, 139.0, 94.37609841827768, 2.6e-32], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 25.0, 139.0, 102.81195079086116, 2.6e-32], ["CAJ87588.1", "putative_inner_membrane_ABC-transporter", "BGC0001055", 1, "NRP+Polyketide", 28.0, 138.0, 88.40070298769771, 4.5e-32], ["OKA09422.1", "ABC_transporter", "BGC0001459", 1, "NRP:Glycopeptide", 26.0, 138.0, 104.04217926186293, 5.9e-32], ["CAE53357.1", "ABC_transporter", "BGC0000440", 1, "NRP:Glycopeptide", 26.0, 137.0, 90.68541300527241, 7.7e-32], ["CAG15016.1", "ABC_transporter", "BGC0000441", 1, "NRP", 26.0, 137.0, 90.68541300527241, 7.7e-32], ["WP_245193312.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002011", 1, "Polyketide", 26.0, 137.0, 97.01230228471002, 7.7e-32], ["QGJ79656.1", "ABC_transporter", "BGC0002552", 1, "Polyketide", 26.0, 137.0, 97.01230228471002, 7.7e-32], ["OLZ52458.1", "ABC_transporter", "BGC0001462", 1, "NRP:Glycopeptide", 26.0, 137.0, 102.98769771528997, 1e-31], ["CCC55904.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 28.0, 136.0, 86.8189806678383, 1.3e-31], ["AQZ42156.1", "putative_ABC_multidrug_transporter", "BGC0001820", 1, "NRP", 25.0, 136.0, 94.02460456942003, 1.3e-31], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 32.0, 136.0, 66.78383128295255, 1.7e-31], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 28.0, 136.0, 55.18453427065027, 2.2e-31], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 24.0, 135.0, 92.97012302284709, 2.9e-31], ["AKU24610.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 25.0, 133.0, 99.12126537785588, 1.1e-30], ["CAB53323.1", "putative_ABC-transporter_transmembrane_protein", "BGC0000325", 1, "NRP", 26.0, 133.0, 100.17574692442884, 1.4e-30], ["ABW70811.1", "PchH", "BGC0002475", 1, "NRP", 29.0, 133.0, 98.24253075571178, 1.4e-30], ["CAA12529.1", "ExsA_protein", "BGC0000802", 1, "Saccharide", 24.0, 133.0, 101.40597539543057, 1.9e-30], ["EKJ70675.1", "hypothetical_protein", "BGC0002188", 1, "NRP+Polyketide", 25.0, 132.0, 105.79964850615113, 2.5e-30], ["ALN78925.1", "ABC_transporter_family_protein", "BGC0002630", 1, "RiPP", 25.0, 132.0, 92.61862917398945, 2.5e-30], ["EHQ60564.1", "ABC_transporter", "BGC0001356", 1, "RiPP", 26.0, 132.0, 85.76449912126537, 3.2e-30], ["BAU50927.1", "ABC_transporter", "BGC0001379", 1, "NRP", 24.0, 131.0, 97.53954305799648, 4.2e-30], ["AGI92082.1", "HlyB/MsbA_family_ABC_transporter", "BGC0002115", 1, "RiPP:Other", 36.0, 131.0, 41.65202108963093, 4.2e-30], ["CAX48974.1", "ABC-transporter", "BGC0000519", 1, "RiPP:Lanthipeptide", 27.0, 131.0, 84.71001757469244, 7.2e-30], ["AZM50109.1", "ABC_transporter", "BGC0002702", 1, "NRP", 25.0, 129.0, 100.70298769771529, 2.1e-29], ["BAG22745.1", "putative_ABC-type_multidrug_transport_system_ATPase_and_permease_component", "BGC0000724", 1, "Saccharide", 27.0, 128.0, 96.30931458699473, 4.7e-29], ["CBW73574.1", "Multidrug_resistance_ABC_transporter_ATP-binding_and_permease_protein", "BGC0002325", 1, "RiPP", 37.0, 128.0, 37.08260105448154, 4.7e-29], ["CCA53801.1", "Transport_ATP-binding_protein_CydC", "BGC0001801", 1, "NRP", 28.0, 127.0, 84.18277680140598, 7.9e-29], ["AAK27372.1", "ABC_transporter", "BGC0000623", 1, "RiPP", 26.0, 127.0, 100.0, 1e-28], ["CAA07371.1", "StrW", "BGC0000690", 1, "Saccharide", 25.0, 127.0, 96.1335676625659, 1e-28], ["AFY23032.1", "TamA", "BGC0000274", 1, "Polyketide:Type II polyketide", 35.0, 126.0, 44.81546572934973, 1.4e-28], ["EME52991.1", "ABC_transporter", "BGC0001460", 1, "NRP:Glycopeptide", 25.0, 123.0, 89.80667838312829, 1.1e-27], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 23.0, 119.0, 98.76977152899823, 2.8e-26], ["KAH7877381.1", "multidrug_resistance-associated_ABC_transporter", "BGC0002747", 1, "RiPP", 26.0, 118.0, 82.60105448154658, 3.7e-26], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 25.0, 118.0, 88.40070298769771, 4.8e-26], ["AAB92603.1", "ScnT", "BGC0000557", 1, "RiPP:Lanthipeptide", 24.0, 118.0, 91.73989455184535, 6.3e-26], ["AYJ71715.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001942", 1, "NRP+Polyketide", 22.0, 117.0, 98.76977152899823, 1.1e-25], ["BAP82652.1", "ABC_transporter", "BGC0001148", 1, "NRP+RiPP", 27.0, 116.0, 89.98242530755711, 2.4e-25], ["AHX39584.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 21.0, 115.0, 93.49736379613357, 4.1e-25], ["AXG47408.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 26.0, 114.0, 92.97012302284709, 5.3e-25], ["QFU91020.1", "Lipid_A_export_ATP-binding/permease_protein_MsbA", "BGC0002064", 1, "RiPP", 27.0, 114.0, 85.41300527240774, 9.1e-25], ["AGI92083.1", "ABC_efflux_pump", "BGC0002115", 1, "RiPP:Other", 27.0, 113.0, 86.11599297012302, 1.2e-24], ["AHW81481.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 24.0, 113.0, 93.84885764499121, 1.6e-24], ["CBW74823.1", "Multidrug_resistance_ABC_transporter_ATP-binding_and_permease_protein", "BGC0000571", 1, "RiPP:Lassopeptide", 25.0, 113.0, 97.01230228471002, 2e-24], ["ABK59359.1", "MukT", "BGC0000534", 1, "RiPP:Lanthipeptide", 24.0, 111.0, 86.29173989455184, 4.5e-24], ["AAL15565.1", "putative_SpaT", "BGC0000511", 1, "RiPP:Lanthipeptide", 24.0, 111.0, 91.73989455184535, 5.9e-24], ["ADM69295.1", "paenilan_transporter", "BGC0001727", 1, "RiPP", 24.0, 110.0, 103.86643233743409, 1e-23], ["simD", "", "BGC0000334", 1, "NRP", 25.0, 110.0, 78.03163444639719, 1.3e-23], ["CRG85577.1", "hypothetical_protein", "BGC0001402", 1, "NRP", 35.0, 109.0, 39.015817223198596, 1.7e-23], ["ACX68645.1", "putative_ABC_transporter", "BGC0000547", 1, "RiPP:Lanthipeptide", 23.0, 108.0, 98.24253075571178, 3.8e-23], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 25.0, 107.0, 100.70298769771529, 8.5e-23], ["ABO65651.1", "Putative_SpaT", "BGC0000515", 1, "RiPP:Lanthipeptide", 25.0, 107.0, 94.02460456942003, 1.1e-22], ["XP_020058106.1", "uncharacterized_protein", "BGC0001220", 1, "NRP", 25.0, 107.0, 84.18277680140598, 1.1e-22], ["AHW81482.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 35.0, 106.0, 33.91915641476274, 1.5e-22], ["AAC72259.1", "LctT", "BGC0000521", 1, "RiPP:Lanthipeptide", 24.0, 106.0, 97.18804920913884, 1.9e-22], ["BAG19224.1", "membrane_translocator", "BGC0000496", 1, "RiPP:Lanthipeptide", 27.0, 105.0, 61.511423550087876, 4.2e-22], ["MBE3202945.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 26.0, 104.0, 95.2548330404218, 7.2e-22], ["AEK64492.1", "EtnT", "BGC0000506", 1, "RiPP:Lanthipeptide", 24.0, 103.0, 91.73989455184535, 1.2e-21], ["ASY03219.1", "NsoT", "BGC0001701", 1, "RiPP:Lanthipeptide", 24.0, 103.0, 100.35149384885764, 1.2e-21], ["QIW91876.1", "TRT", "BGC0002543", 1, "NRP", 26.0, 103.0, 82.42530755711776, 1.2e-21], ["AKJ70948.1", "multidrug_transporter_(ABC)", "BGC0002611", 1, "NRP", 24.0, 103.0, 82.95254833040421, 1.6e-21], ["BAC87910.1", "probable_ABC_transporter", "BGC0000294", 1, "NRP", 27.0, 102.0, 55.711775043936726, 3.6e-21], ["BAC98761.2", "NukT", "BGC0000539", 1, "RiPP:Lanthipeptide", 24.0, 101.0, 84.53427065026362, 6.1e-21], ["ALK21573.1", "glycosyl_transferase_family_2", "BGC0002678", 1, "NRP", 26.0, 101.0, 102.81195079086116, 8e-21], ["QYI86759.1", "putative_ABC_transporter", "BGC0002424", 1, "NRP", 23.0, 100.0, 94.5518453427065, 1e-20], ["AAB91587.1", "SpaT", "BGC0000559", 1, "RiPP:Lanthipeptide", 23.0, 100.0, 91.73989455184535, 1.4e-20], ["AMM63163.1", "AniL", "BGC0001371", 1, "NRP", 25.0, 100.0, 83.83128295254832, 1.4e-20], ["QWT72283.1", "ABC_transporter_ATP-binding_protein", "BGC0002430", 1, "NRP+Saccharide", 26.0, 99.0, 80.14059753954305, 3e-20], ["WP_014929841.1", "ABC_transporter_transmembrane_domain-containing_protein", "BGC0001864", 1, "RiPP:Glycocin", 22.0, 97.0, 96.66080843585237, 6.7e-20], ["MBX4267533.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002668", 1, "RiPP", 27.0, 97.0, 55.008787346221446, 1.1e-19], ["AEX55160.1", "putative_ABC_transporter_SlvT", "BGC0000549", 1, "RiPP:Lanthipeptide", 23.0, 95.0, 100.70298769771529, 3.3e-19], ["ABI30230.1", "McdT", "BGC0000526", 1, "RiPP:Lanthipeptide", 23.0, 95.0, 94.72759226713534, 4.4e-19], ["ALK21572.1", "multidrug_ABC_transporter_permease", "BGC0002678", 1, "NRP", 25.0, 91.0, 86.99472759226714, 4.8e-18], ["CAX48975.1", "ABC-transporter", "BGC0000519", 1, "RiPP:Lanthipeptide", 26.0, 89.0, 67.48681898066783, 2.4e-17], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 22.0, 88.0, 84.88576449912127, 5.3e-17], ["BAG71481.1", "ATP-binding_cassette_transporter", "BGC0000536", 1, "RiPP:Lanthipeptide", 21.0, 87.0, 101.05448154657293, 7e-17], ["AAG32539.1", "SalX", "BGC0000548", 1, "RiPP:Lanthipeptide", 30.0, 87.0, 35.50087873462214, 1.2e-16], ["AFJ23828.1", "MacB-like_ABC_transporter_protein", "BGC0001838", 1, "NRP", 30.0, 86.0, 42.70650263620387, 1.6e-16], ["CAA79469.1", "NisT_protein", "BGC0000538", 1, "RiPP:Lanthipeptide", 22.0, 86.0, 95.07908611599298, 2e-16], ["CQR60039.1", "Lactococcin_transport/processing_ATP-binding_protein_LcnC-like", "BGC0002289", 1, "RiPP", 31.0, 85.0, 38.664323374340945, 3.5e-16], ["EPF88078.1", "hypothetical_protein", "BGC0001494", 1, "RiPP", 22.0, 84.0, 95.2548330404218, 5.9e-16], ["AAO56331.1", "syringafactin_efflux_protein_SyfD", "BGC0000435", 1, "NRP", 28.0, 84.0, 42.35500878734622, 1e-15], ["BAB08163.1", "SrtT", "BGC0000556", 1, "RiPP:Lanthipeptide", 25.0, 81.0, 76.09841827768014, 8.5e-15], ["CBF73441.1", "ABC_transporter_(Eurofung)", "BGC0001515", 1, "NRP", 23.0, 81.0, 86.64323374340948, 8.5e-15], ["QGQ63522.1", "permease_protein_MacB", "BGC0002548", 1, "NRP", 29.0, 81.0, 41.82776801405975, 8.5e-15], ["QDF82252.1", "macrolide_export_ATP-binding/permease_protein", "BGC0001980", 1, "NRP", 27.0, 80.0, 45.16695957820738, 1.1e-14], ["AHZ34236.1", "MacB", "BGC0000323", 1, "NRP:Lipopeptide", 27.0, 80.0, 42.70650263620387, 1.5e-14], ["WP_064118557.1", "MacB_family_efflux_pump_subunit", "BGC0001509", 1, "NRP", 30.0, 80.0, 37.258347978910365, 1.5e-14], ["AUD08667.1", "ABC_transporter_ATP-binding_protein", "BGC0001553", 1, "NRP+Polyketide", 30.0, 80.0, 37.258347978910365, 1.5e-14], ["QNL34620.1", "MacB2", "BGC0002092", 1, "NRP:Cyclic depsipeptide", 30.0, 80.0, 37.258347978910365, 1.5e-14], ["ARE67845.1", "AbsF4", "BGC0001492", 1, "Polyketide", 29.0, 79.0, 42.88224956063269, 2.5e-14], ["CAK15812.1", "macrolide_ABC_efflux_protein_MacB", "BGC0000344", 1, "NRP", 28.0, 78.0, 41.12478031634446, 5.5e-14], ["ABA73958.1", "macrolide-specific_ABC-type_efflux_carrier", "BGC0001842", 1, "NRP:Lipopeptide", 29.0, 78.0, 44.63971880492091, 5.5e-14], ["AOA33125.1", "ABC_transporter_ATP-binding_protein", "BGC0001346", 1, "NRP:Cyclic depsipeptide", 28.0, 77.0, 40.77328646748682, 9.4e-14], ["AVI57415.1", "AbmF4", "BGC0001694", 1, "Polyketide", 31.0, 76.0, 43.7609841827768, 1.6e-13], ["QBQ12454.1", "MacB_family_efflux_pump_subunit", "BGC0002693", 1, "NRP", 31.0, 76.0, 37.434094903339194, 2.1e-13], ["ABW17379.1", "MacB", "BGC0000411", 1, "NRP", 30.0, 76.0, 41.65202108963093, 2.7e-13], ["CCM44327.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 30.0, 76.0, 37.258347978910365, 2.7e-13], ["QMN69936.1", "PsoE", "BGC0002521", 1, "NRP", 27.0, 74.0, 43.58523725834798, 8e-13], ["AAY93343.1", "efflux_ABC_transporter,_ATP-binding/permease_protein", "BGC0000413", 1, "NRP", 32.0, 74.0, 39.54305799648506, 1e-12], ["KKP00962.1", "hypothetical_protein", "BGC0001854", 1, "Polyketide:Iterative type I polyketide", 22.0, 74.0, 99.47275922671353, 1e-12], ["BCJ07527.1", "macrolide_export_ATP-binding/permease_protein_MacB_2", "BGC0002379", 1, "NRP", 28.0, 73.0, 40.070298769771526, 1.4e-12], ["CAY48791.1", "macrolide-specific_ABC-type_efflux_carrier", "BGC0001312", 1, "NRP", 28.0, 72.0, 38.488576449912124, 2.3e-12], ["BDA39144.1", "ABC_transporter", "BGC0001398", 1, "RiPP", 31.0, 72.0, 37.434094903339194, 2.3e-12], ["AHZ34249.1", "MacB", "BGC0001389", 1, "NRP", 29.0, 71.0, 37.08260105448154, 6.8e-12], ["AHY06375.1", "phosphonate_ABC_transporter_ATP-binding_protein", "BGC0002496", 1, "NRP", 24.0, 67.0, 40.77328646748682, 1.3e-10], ["AAC18099.1", "ATPase_component_of_putative_ABC_transporter", "BGC0000225", 1, "Polyketide", 28.0, 64.0, 37.434094903339194, 1.1e-09], ["WP_141576250.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 30.0, 62.0, 33.04042179261863, 3.1e-09], ["BAU50928.1", "ABC_transporter", "BGC0001379", 1, "NRP", 23.0, 62.0, 73.81370826010544, 4.1e-09], ["ctg1_orf169", "", "BGC0001638", 1, "RiPP", 23.0, 61.0, 69.77152899824253, 7e-09], ["ABC50111.1", "unknown", "BGC0000643", 1, "Terpene", 28.0, 59.0, 38.3128295254833, 2e-08], ["AOT85881.1", "ABC_transporter", "BGC0001787", 1, "RiPP", 22.0, 59.0, 95.43057996485061, 3.5e-08], ["CAF31834.1", "hypotheticl_protein", "BGC0000699", 1, "Saccharide", 27.0, 58.0, 41.12478031634446, 5.9e-08], ["CCQ18690.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 28.0, 56.0, 29.876977152899826, 2.2e-07], ["QOE88887.1", "ABC_transporter", "BGC0002260", 1, "Terpene", 21.0, 56.0, 90.86115992970123, 2.9e-07], ["CZT62789.1", "ABC-type_uncharacterized_transport_system,_permease_and_ATPase_components,_involved_in_Hassallidin_biosynthesis", "BGC0001614", 1, "NRP", 28.0, 55.0, 29.349736379613354, 3.8e-07], ["AFO93372.1", "ABC_transporter,_ATP-binding_protein", "BGC0000932", 1, "Other", 25.0, 54.0, 43.05799648506151, 8.5e-07], ["OAQ83754.1", "ABC_multidrug_transporter", "BGC0001358", 1, "NRP+Polyketide", 24.0, 52.0, 42.70650263620387, 3.2e-06], ["MBE3200461.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002409", 1, "NRP", 32.0, 51.0, 29.349736379613354, 5.5e-06], ["ACN29728.1", "putative_ABC_transporter", "BGC0000814", 1, "Alkaloid", 26.0, 51.0, 42.70650263620387, 7.2e-06]], "MAAAAKME_00270": [["QIW19940.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002111", 1, "RiPP:Lanthipeptide", 32.0, 379.0, 101.32052821128453, 2.2e-104], ["WP_164776400.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002701", 1, "RiPP", 31.0, 374.0, 98.67947178871549, 5.5e-103], ["KXZ21037.1", "hypothetical_protein", "BGC0002700", 1, "RiPP", 31.0, 372.0, 103.24129651860746, 2.7e-102], ["CAM03499.1", "serine/threonine_protein_kinase", "BGC0000513", 1, "RiPP:Lanthipeptide", 30.0, 290.0, 100.12004801920769, 7.9e-78], ["SSHG_03588", "serine/threonine_protein_kinase", "BGC0000546", 1, "RiPP:Lanthipeptide", 30.0, 285.0, 101.20048019207684, 2.6e-76], ["WP_037629851.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000546", 1, "RiPP:Lanthipeptide", 30.0, 285.0, 101.20048019207684, 2.6e-76], ["ACU73103.1", "serine/threonine_protein_kinase", "BGC0000501", 1, "RiPP:Lanthipeptide", 30.0, 269.0, 99.39975990396158, 1.9e-71], ["CAX48971.1", "serine/threonine_kinase", "BGC0000519", 1, "RiPP:Lanthipeptide", 28.0, 267.0, 99.75990396158463, 1.2e-70], ["CAA19960.1", "putative_serine/threonine_protein_kinase", "BGC0000551", 1, "RiPP:Lanthipeptide", 28.0, 242.0, 101.68067226890756, 2.5e-63], ["BAG19226.1", "AmfT_protein", "BGC0000496", 1, "RiPP:Lanthipeptide", 28.0, 228.0, 100.6002400960384, 6.3e-59], ["WP_205382163.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000553", 1, "RiPP:Lanthipeptide", 36.0, 221.0, 49.69987995198079, 5.9e-57], ["AIW58891.1", "putative_serine/threonine_protein_kinase", "BGC0001582", 1, "NRP", 32.0, 148.0, 45.01800720288116, 8.3e-35], ["AAP03109.1", "putative_serine/threonine_protein_kinase", "BGC0000874", 1, "Other", 29.0, 147.0, 49.57983193277311, 1.1e-34], ["AFO59873.1", "hypothetical_protein", "BGC0000175", 1, "Polyketide:Trans-AT type I polyketide", 29.0, 119.0, 46.818727490996395, 4.1e-26]], "MAAAAKME_00300": [["CAK15811.1", "putative_polyamine_ABC_transporter,_ATP_binding_protein", "BGC0000344", 1, "NRP", 38.0, 135.0, 93.86792452830188, 1.4e-31], ["AAU39356.1", "putative_spermidine/putrescine_ABC_transporter_ATP-binding_protein", "BGC0000381", 1, "NRP", 39.0, 121.0, 93.86792452830188, 2.8e-27], ["AAM97297.1", "lipoprotein_releasing_system_ATP-binding_protein_LolD", "BGC0001591", 1, "Other", 35.0, 113.0, 101.41509433962264, 4.4e-25], ["DAB41657.1", "ABC_transporter", "BGC0001585", 1, "Alkaloid", 35.0, 113.0, 97.16981132075472, 7.5e-25], ["EKJ70675.1", "hypothetical_protein", "BGC0002188", 1, "NRP+Polyketide", 33.0, 113.0, 104.24528301886792, 7.5e-25], ["QYB25771.1", "ABC_transporter_ATP-binding_protein", "BGC0002425", 1, "RiPP", 37.0, 113.0, 101.88679245283019, 7.5e-25], ["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 31.0, 109.0, 102.35849056603774, 6.4e-24], ["MCF2150409.1", "DevA-like,_part_of_ABC_transporter", "BGC0002625", 1, "NRP+Polyketide", 35.0, 109.0, 103.30188679245282, 8.3e-24], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 33.0, 109.0, 103.30188679245282, 1.1e-23], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 33.0, 109.0, 103.30188679245282, 1.1e-23], ["AWR88426.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001522", 1, "Polyketide", 37.0, 109.0, 93.39622641509435, 1.1e-23], ["AAZ23072.1", "hypothetical_protein", "BGC0000291", 1, "NRP", 36.0, 108.0, 102.8301886792453, 1.4e-23], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 33.0, 108.0, 103.30188679245282, 1.9e-23], ["EEM14530.1", "hypothetical_protein", "BGC0001210", 1, "RiPP", 31.0, 108.0, 95.75471698113208, 1.9e-23], ["BCK51660.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002520", 1, "Polyketide", 36.0, 108.0, 93.86792452830188, 1.9e-23], ["BAK64654.1", "putative_transporter", "BGC0000135", 1, "Polyketide", 37.0, 108.0, 95.75471698113208, 2.4e-23], ["AHF21240.1", "CrnT", "BGC0000500", 1, "RiPP:Lanthipeptide", 29.0, 107.0, 103.77358490566037, 3.2e-23], ["QBF51773.1", "ABC_transporter_permease_component", "BGC0001856", 1, "Polyketide:Modular type I polyketide", 35.0, 107.0, 89.62264150943396, 3.2e-23], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 32.0, 107.0, 105.18867924528301, 3.2e-23], ["TXC99997.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001877", 1, "Polyketide", 34.0, 107.0, 96.22641509433963, 4.1e-23], ["MBN3579118.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 31.0, 106.0, 97.64150943396226, 5.4e-23], ["AFJ14797.1", "PlpH", "BGC0000403", 1, "NRP", 32.0, 106.0, 103.30188679245282, 7.1e-23], ["QED93126.1", "ABC_transporter_ATP-binding_protein", "BGC0002556", 1, "Alkaloid", 36.0, 106.0, 100.47169811320755, 7.1e-23], ["ADI10107.1", "type_II_lanthionine_synthetase_and_transporter", "BGC0001229", 1, "RiPP:Lanthipeptide", 31.0, 106.0, 100.0, 9.2e-23], ["QTH19310.1", "ABC_transporter_ATP-binding_protein", "BGC0002442", 1, "RiPP", 35.0, 106.0, 94.33962264150944, 9.2e-23], ["BAC87910.1", "probable_ABC_transporter", "BGC0000294", 1, "NRP", 32.0, 105.0, 93.39622641509435, 1.2e-22], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 33.0, 105.0, 99.52830188679245, 1.6e-22], ["EDU38312.1", "ABC_transporter,_ATP-binding_protein", "BGC0001170", 1, "RiPP:LAP", 31.0, 104.0, 94.33962264150944, 2.1e-22], ["CAD91242.1", "hypothetical_protein", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 36.0, 104.0, 93.86792452830188, 2.7e-22], ["CUX79064.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001715", 1, "NRP", 31.0, 104.0, 102.8301886792453, 2.7e-22], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 31.0, 103.0, 97.64150943396226, 4.6e-22], ["CAA90021.1", "PepT", "BGC0000543", 1, "RiPP:Lanthipeptide", 31.0, 103.0, 98.58490566037736, 4.6e-22], ["QBY34564.1", "CycF", "BGC0002447", 1, "RiPP", 32.0, 103.0, 95.28301886792453, 4.6e-22], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 31.0, 103.0, 96.69811320754717, 4.6e-22], ["EWC60873.1", "hypothetical_protein", "BGC0001496", 1, "RiPP", 34.0, 103.0, 96.22641509433963, 6e-22], ["ACZ21385.1", "ABC-type_multidrug_transport_system,_ATPase_and_permease_component", "BGC0002298", 1, "RiPP", 34.0, 103.0, 99.52830188679245, 6e-22], ["CAL82046.1", "putative_cytolysin_ABC_transporter,_ATP-binding_protein", "BGC0000564", 1, "RiPP:LAP", 30.0, 102.0, 94.33962264150944, 7.8e-22], ["AKQ99290.1", "ABC_transporter,partial", "BGC0001484", 1, "Other", 31.0, 102.0, 101.41509433962264, 7.8e-22], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 31.0, 102.0, 102.8301886792453, 1e-21], ["AAG32538.1", "SalT", "BGC0000548", 1, "RiPP:Lanthipeptide", 28.0, 102.0, 103.77358490566037, 1e-21], ["AAP85350.1", "ATP-binding_protein", "BGC0000233", 1, "Polyketide", 35.0, 101.0, 90.09433962264151, 2.3e-21], ["CAD97586.1", "ATP_binding_protein", "BGC0000488", 1, "RiPP:Head-to-tailcyclized peptide", 32.0, 101.0, 104.71698113207549, 2.3e-21], ["MBA0053734.1", "ABC_transporter_ATP-binding_protein", "BGC0002096", 1, "Polyketide", 31.0, 101.0, 100.47169811320755, 2.3e-21], ["AAS92552.1", "SirA", "BGC0001044", 1, "NRP", 29.0, 101.0, 107.54716981132076, 3e-21], ["WP_152962146.1", "darobactin_export_ABC_transporter_ATP-binding_protein", "BGC0002116", 1, "RiPP:Other", 32.0, 101.0, 94.81132075471697, 3e-21], ["ACI07020.1", "ABC_transporter,_ATP-binding_protein", "BGC0001684", 1, "Other", 28.0, 100.0, 98.58490566037736, 5.1e-21], ["MBE3202945.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 35.0, 100.0, 94.33962264150944, 5.1e-21], ["EMC15128.1", "ABC_transporter,_ATP-binding_and_permease_protein", "BGC0000530", 1, "RiPP:Lanthipeptide", 32.0, 99.0, 94.81132075471697, 8.6e-21], ["BAF98636.1", "putative_ABC_transporter", "BGC0000651", 1, "Terpene", 32.0, 99.0, 101.41509433962264, 1.1e-20], ["CCM44327.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 33.0, 99.0, 96.69811320754717, 1.1e-20], ["CBJ82069.1", "ABC_Transporter,_ATP-binding_protein", "BGC0001872", 1, "Polyketide", 31.0, 98.0, 99.52830188679245, 1.9e-20], ["AKQ52537.1", "ABC_transporter_ATP-binding_protein", "BGC0002533", 1, "NRP+Polyketide", 33.0, 98.0, 101.41509433962264, 1.9e-20], ["CAJ88181.1", "putative_ABC_transporter,_ATP-binding_subunit", "BGC0000151", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 36.0, 97.0, 93.86792452830188, 2.5e-20], ["AXG47409.1", "ABC_transporter_ATP-binding_protein", "BGC0002715", 1, "NRP+Polyketide", 34.0, 97.0, 96.69811320754717, 3.3e-20], ["AAY59067.1", "ATP-binding_protein", "BGC0000128", 1, "Polyketide", 31.0, 97.0, 100.47169811320755, 4.3e-20], ["AEK64496.1", "EtnF", "BGC0000506", 1, "RiPP:Lanthipeptide", 33.0, 97.0, 92.45283018867924, 4.3e-20], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 31.0, 97.0, 101.41509433962264, 4.3e-20], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 32.0, 97.0, 100.47169811320755, 4.3e-20], ["ACC84963.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 29.0, 97.0, 93.86792452830188, 4.3e-20], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 33.0, 96.0, 92.9245283018868, 7.3e-20], ["DAC80066.1", "ABC_transporter_ATP-binding_protein", "BGC0001836", 1, "Polyketide:Trans-AT type I polyketide", 34.0, 96.0, 90.56603773584906, 7.3e-20], ["CAB01940.1", "ExpD1", "BGC0000801", 1, "Saccharide", 28.0, 96.0, 97.16981132075472, 9.5e-20], ["CYV09559.1", "ABC_transporter_NBP/MSD_fusion_protein", "BGC0002575", 1, "RiPP", 32.0, 96.0, 97.64150943396226, 9.5e-20], ["AAV66099.1", "PltJ", "BGC0000127", 1, "Polyketide", 31.0, 95.0, 100.0, 1.2e-19], ["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 26.0, 95.0, 102.35849056603774, 1.2e-19], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 32.0, 95.0, 98.11320754716981, 1.6e-19], ["ARK19492.1", "transporter", "BGC0001540", 1, "Other", 29.0, 94.0, 98.11320754716981, 2.1e-19], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 31.0, 94.0, 100.0, 2.1e-19], ["MBX4265669.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002667", 1, "RiPP", 27.0, 94.0, 101.88679245283019, 2.8e-19], ["AAB91597.1", "SpaF", "BGC0000559", 1, "RiPP:Lanthipeptide", 32.0, 94.0, 91.98113207547169, 3.6e-19], ["PHM26616.1", "daunorubicin-DIM-transport_ATP-binding_protein_ABC_transporter_DrrA", "BGC0001130", 1, "NRP+Polyketide", 30.0, 93.0, 99.52830188679245, 4.7e-19], ["AQZ37089.1", "ABC_transporter_transmembrane_region_protein", "BGC0001511", 1, "Polyketide", 30.0, 93.0, 101.88679245283019, 4.7e-19], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 32.0, 93.0, 103.30188679245282, 6.2e-19], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 30.0, 92.0, 101.88679245283019, 8.1e-19], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 34.0, 92.0, 93.39622641509435, 8.1e-19], ["QDJ74277.1", "ATP-binding_protein", "BGC0002109", 1, "NRP", 34.0, 92.0, 93.39622641509435, 8.1e-19], ["AHI77484.1", "ABC_transporter_family_protein", "BGC0000572", 1, "RiPP:Lassopeptide", 28.0, 92.0, 100.0, 1.1e-18], ["AFU82624.1", "ABC_transporter,_ATPase_component", "BGC0000998", 1, "NRP+Polyketide", 32.0, 92.0, 94.33962264150944, 1.1e-18], ["ABS75252.1", "putative_ABC-transporter_ATP-binding_protein", "BGC0000616", 1, "RiPP:Head-to-tailcyclized peptide", 30.0, 92.0, 91.0377358490566, 1.4e-18], ["ATY37593.1", "BogF", "BGC0001532", 1, "NRP", 32.0, 92.0, 100.47169811320755, 1.4e-18], ["QTC09991.1", "ABC_transporter_ATP-binding_protein", "BGC0002372", 1, "Polyketide+Terpene+Alkaloid", 31.0, 92.0, 105.66037735849056, 1.4e-18], ["AAL15571.1", "putative_SpaF", "BGC0000511", 1, "RiPP:Lanthipeptide", 31.0, 91.0, 91.98113207547169, 1.8e-18], ["CAI47638.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 29.0, 91.0, 102.35849056603774, 1.8e-18], ["AKP45406.1", "ABC_transporter_ATP-binding_protein", "BGC0001413", 1, "NRP", 31.0, 91.0, 104.71698113207549, 1.8e-18], ["CBL93714.1", "ABC_multidrug_transporter", "BGC0000360", 1, "NRP", 31.0, 91.0, 97.64150943396226, 2.4e-18], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 26.0, 91.0, 99.52830188679245, 2.4e-18], ["AAK27372.1", "ABC_transporter", "BGC0000623", 1, "RiPP", 27.0, 91.0, 99.05660377358491, 2.4e-18], ["RMI87912.1", "sulfate_ABC_transporter_ATP-binding_protein", "BGC0002285", 1, "RiPP", 35.0, 91.0, 97.16981132075472, 2.4e-18], ["ACR33057.1", "ABC_transporter", "BGC0000495", 1, "RiPP:Lanthipeptide", 34.0, 91.0, 94.33962264150944, 3.1e-18], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 26.0, 91.0, 101.88679245283019, 3.1e-18], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 26.0, 91.0, 101.88679245283019, 3.1e-18], ["CUX79067.1", "Bicarbonate_transport_ATP-binding_protein_CmpC", "BGC0001715", 1, "NRP", 35.0, 91.0, 101.88679245283019, 3.1e-18], ["AGS66994.1", "daunorubicin_resistance_ABC_transporter_ATPase_subunit", "BGC0001226", 1, "RiPP:Lanthipeptide", 37.0, 90.0, 87.73584905660378, 5.2e-18], ["WP_030684648.1", "ABC_transporter_ATP-binding_protein", "BGC0001607", 1, "Other", 29.0, 90.0, 92.9245283018868, 5.2e-18], ["WP_078613549.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001550", 1, "RiPP", 32.0, 89.0, 95.28301886792453, 6.8e-18], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 28.0, 89.0, 98.58490566037736, 8.9e-18], ["AXM42912.1", "ABC_transporter_ATP-binding_protein", "BGC0001940", 1, "Polyketide", 37.0, 89.0, 89.62264150943396, 1.2e-17], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 28.0, 88.0, 98.58490566037736, 1.5e-17], ["CCM44340.1", "ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 31.0, 88.0, 91.50943396226415, 1.5e-17], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 28.0, 88.0, 98.58490566037736, 1.5e-17], ["QKV49895.1", "BrtT", "BGC0002110", 1, "RiPP:Lanthipeptide", 30.0, 88.0, 95.75471698113208, 2e-17], ["ABP54659.1", "ABC_transporter_related", "BGC0000241", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 87.0, 102.35849056603774, 2.6e-17], ["BAL72550.1", "lariatin_biosynthetic_protein", "BGC0000575", 1, "RiPP:Lassopeptide", 25.0, 87.0, 101.88679245283019, 2.6e-17], ["BAX64249.1", "ABC_transporter", "BGC0001623", 1, "NRP+Polyketide", 32.0, 87.0, 85.37735849056604, 2.6e-17], ["AFJ20779.1", "putative_ABC_transporter", "BGC0002300", 1, "NRP", 35.0, 87.0, 82.0754716981132, 3.4e-17], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 33.0, 87.0, 86.32075471698113, 4.4e-17], ["AGI92082.1", "HlyB/MsbA_family_ABC_transporter", "BGC0002115", 1, "RiPP:Other", 35.0, 87.0, 93.86792452830188, 4.4e-17], ["AMQ70217.1", "lantibiotic_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 31.0, 87.0, 95.28301886792453, 4.4e-17], ["AKJ15831.1", "ABC_transporter", "BGC0002735", 1, "Polyketide+NRP", 31.0, 87.0, 88.20754716981132, 4.4e-17], ["BAI63276.1", "putative_ABC_transporter", "BGC0000434", 1, "NRP", 32.0, 86.0, 96.69811320754717, 5.8e-17], ["AAC72253.1", "LctF", "BGC0000521", 1, "RiPP:Lanthipeptide", 28.0, 86.0, 99.52830188679245, 5.8e-17], ["AAD28497.1", "McjD", "BGC0000581", 1, "RiPP:Linaridin", 28.0, 86.0, 102.8301886792453, 7.6e-17], ["AEM00615.1", "ABC_transport_associated_protein", "BGC0000605", 1, "RiPP:Thiopeptide", 32.0, 86.0, 87.73584905660378, 7.6e-17], ["CYV09544.1", "ABC_transporter_ATP-binding_protein", "BGC0002575", 1, "RiPP", 30.0, 86.0, 104.71698113207549, 7.6e-17], ["AAK01464.1", "ABC_transporter", "BGC0000412", 1, "NRP", 32.0, 86.0, 94.81132075471697, 9.9e-17], ["AIS24846.1", "dst20", "BGC0001147", 1, "NRP", 29.0, 86.0, 95.75471698113208, 9.9e-17], ["ARD24450.1", "HyiF", "BGC0001618", 1, "RiPP", 27.0, 86.0, 100.47169811320755, 9.9e-17], ["AOT85882.1", "immunity_protein", "BGC0001787", 1, "RiPP", 29.0, 86.0, 99.05660377358491, 9.9e-17], ["WP_030193605.1", "ABC_transporter_ATP-binding_protein", "BGC0002669", 1, "RiPP", 32.0, 86.0, 96.22641509433963, 9.9e-17], ["BAC87909.1", "probable_ABC_transporter", "BGC0000294", 1, "NRP", 31.0, 85.0, 89.62264150943396, 1.3e-16], ["CAF31838.1", "putative_hygromycin_B_exporter", "BGC0000699", 1, "Saccharide", 29.0, 85.0, 100.9433962264151, 1.3e-16], ["EPH46600.1", "putative_Daunorubicin/doxorubicin_resistance_ATP-binding_protein_DrrA", "BGC0001519", 1, "NRP+Polyketide", 29.0, 85.0, 86.79245283018868, 1.3e-16], ["AEK75511.1", "ATP-binding_ABC_peptide_transporter", "BGC0000001", 1, "Polyketide:Modular type I polyketide", 33.0, 85.0, 83.49056603773585, 1.7e-16], ["AHZ61877.1", "ABC-transporter-like_protein", "BGC0000240", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 85.0, 102.35849056603774, 1.7e-16], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 27.0, 85.0, 98.58490566037736, 1.7e-16], ["AHX39585.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 30.0, 85.0, 102.8301886792453, 1.7e-16], ["AJV88390.1", "MfnR", "BGC0001214", 1, "NRP", 35.0, 85.0, 101.41509433962264, 1.7e-16], ["AGI89796.1", "ABC_transporter_ATP-binding_protein", "BGC0001792", 1, "NRP", 31.0, 85.0, 91.50943396226415, 1.7e-16], ["AAC18099.1", "ATPase_component_of_putative_ABC_transporter", "BGC0000225", 1, "Polyketide", 33.0, 84.0, 91.0377358490566, 2.2e-16], ["BAJ19058.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 30.0, 84.0, 91.0377358490566, 2.2e-16], ["ASY03219.1", "NsoT", "BGC0001701", 1, "RiPP:Lanthipeptide", 27.0, 84.0, 104.71698113207549, 2.2e-16], ["AXA91311.1", "peptidase_domain-containing_ABC_transporter", "BGC0002044", 1, "NRP", 29.0, 84.0, 99.05660377358491, 2.2e-16], ["QBA57757.1", "ABC_transporter", "BGC0002377", 1, "NRP", 30.0, 84.0, 101.41509433962264, 2.2e-16], ["MBN3579119.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 27.0, 84.0, 101.88679245283019, 2.9e-16], ["AHX39584.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 27.0, 84.0, 95.75471698113208, 3.8e-16], ["EPF88078.1", "hypothetical_protein", "BGC0001494", 1, "RiPP", 31.0, 84.0, 94.33962264150944, 3.8e-16], ["ASY03206.1", "NsoF", "BGC0001701", 1, "RiPP:Lanthipeptide", 30.0, 84.0, 91.98113207547169, 3.8e-16], ["AOT85881.1", "ABC_transporter", "BGC0001787", 1, "RiPP", 31.0, 84.0, 102.35849056603774, 3.8e-16], ["AAR12534.1", "putative_ABC_transporter", "BGC0002468", 1, "NRP", 30.0, 84.0, 100.0, 3.8e-16], ["CAB60255.1", "MrsF_protein", "BGC0000527", 1, "RiPP:Lanthipeptide", 31.0, 83.0, 83.49056603773585, 4.9e-16], ["CAF31834.1", "hypotheticl_protein", "BGC0000699", 1, "Saccharide", 31.0, 83.0, 90.56603773584906, 4.9e-16], ["AZF85928.1", "ABC_transporter", "BGC0001963", 1, "NRP+Polyketide", 30.0, 83.0, 90.56603773584906, 4.9e-16], ["AKJ70948.1", "multidrug_transporter_(ABC)", "BGC0002611", 1, "NRP", 26.0, 83.0, 100.9433962264151, 4.9e-16], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 34.0, 83.0, 83.01886792452831, 6.4e-16], ["CAJ88628.1", "putative_netropsin_resistance_protein_subunit_1", "BGC0000327", 1, "NRP", 30.0, 82.0, 96.69811320754717, 8.4e-16], ["AAY93430.1", "cation_ABC_transporter,_MZT_family,_ATP-binding_protein", "BGC0000413", 1, "NRP", 33.0, 82.0, 92.45283018867924, 8.4e-16], ["ALD83705.1", "ATP_binding_protein", "BGC0001299", 1, "Polyketide", 32.0, 82.0, 85.37735849056604, 8.4e-16], ["ASX95232.1", "IlaJ", "BGC0001620", 1, "NRP+Polyketide", 31.0, 82.0, 87.26415094339622, 8.4e-16], ["BBA20958.1", "ABC-transporter", "BGC0001763", 1, "NRP+Polyketide", 31.0, 82.0, 87.26415094339622, 8.4e-16], ["UEF20586.1", "ABC_transporter", "BGC0002360", 1, "NRP", 30.0, 82.0, 97.16981132075472, 8.4e-16], ["ADU86007.1", "putative_ABC_transporter-related_protein", "BGC0000165", 1, "Polyketide:Modular type I polyketide", 31.0, 82.0, 101.41509433962264, 1.1e-15], ["AMM63163.1", "AniL", "BGC0001371", 1, "NRP", 26.0, 82.0, 100.9433962264151, 1.1e-15], ["MCC5026016.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002118", 1, "NRP+Polyketide", 30.0, 82.0, 91.98113207547169, 1.1e-15], ["MCC5025972.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002119", 1, "NRP+Polyketide", 30.0, 82.0, 91.98113207547169, 1.1e-15], ["AAN85531.1", "ABC_transporter_component,_ATP_hydrolase", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 32.0, 82.0, 97.16981132075472, 1.4e-15], ["BAV57055.1", "methionine_ABC_transporter_ATP-binding_protein", "BGC0001514", 1, "Other", 31.0, 82.0, 99.05660377358491, 1.4e-15], ["CAD23201.1", "ywhQ_protein", "BGC0000602", 1, "RiPP:Thiopeptide", 30.0, 81.0, 95.28301886792453, 1.9e-15], ["EHK80174.1", "ABC_transporter_ATP-binding_protein", "BGC0001447", 1, "Polyketide", 32.0, 81.0, 88.20754716981132, 1.9e-15], ["ABW70810.1", "PchI", "BGC0002475", 1, "NRP", 32.0, 81.0, 101.41509433962264, 1.9e-15], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 33.0, 81.0, 100.9433962264151, 2.4e-15], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 33.0, 81.0, 100.47169811320755, 2.4e-15], ["AXI91561.1", "FunT3", "BGC0001944", 1, "Polyketide", 32.0, 81.0, 84.43396226415094, 2.4e-15], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 33.0, 81.0, 100.9433962264151, 2.4e-15], ["EDN75903.1", "ABC_transporter,_ATP-binding_protein", "BGC0002302", 1, "Saccharide", 31.0, 81.0, 97.64150943396226, 2.4e-15], ["AAM70341.1", "CalT5", "BGC0000033", 1, "Polyketide", 28.0, 81.0, 91.98113207547169, 3.2e-15], ["ALG65297.1", "Cal39", "BGC0001297", 1, "NRP", 29.0, 81.0, 101.41509433962264, 3.2e-15], ["AFV25467.1", "hypothetical_protein", "BGC0000469", 1, "RiPP:Bottromycin", 31.0, 80.0, 86.32075471698113, 4.1e-15], ["EEM14533.1", "ABC_transporter,_ATP-binding_protein", "BGC0001210", 1, "RiPP", 34.0, 80.0, 82.54716981132076, 4.1e-15], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 29.0, 80.0, 116.03773584905662, 4.1e-15], ["MCC5036771.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 32.0, 80.0, 85.37735849056604, 4.1e-15], ["AAQ82562.1", "FscTI", "BGC0000034", 1, "NRP+Polyketide", 31.0, 80.0, 92.45283018867924, 5.4e-15], ["AAG32539.1", "SalX", "BGC0000548", 1, "RiPP:Lanthipeptide", 26.0, 80.0, 93.39622641509435, 5.4e-15], ["AGI92076.1", "Iron(III)_dicitrate_transport_system_permease", "BGC0002115", 1, "RiPP:Other", 33.0, 80.0, 89.62264150943396, 5.4e-15], ["BAE46918.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 31.0, 79.0, 103.30188679245282, 7.1e-15], ["BAI23327.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 30.0, 79.0, 91.98113207547169, 7.1e-15], ["AAF81232.1", "ABC_transporter_ATP_binding_protein", "BGC0000243", 1, "Polyketide", 28.0, 79.0, 100.0, 9.2e-15], ["ABD14713.1", "CesC", "BGC0000320", 1, "NRP:Cyclic depsipeptide", 28.0, 79.0, 97.64150943396226, 9.2e-15], ["CCC55907.1", "putative_ABC_tarnsporter,_ATP-binding_protein", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 29.0, 79.0, 98.11320754716981, 9.2e-15], ["AIW82276.1", "ORF1", "BGC0001125", 1, "NRP+Polyketide", 32.0, 79.0, 87.73584905660378, 9.2e-15], ["AEA30278.1", "putative_ABC_transporter", "BGC0000429", 1, "Polyketide+NRP:Cyclic depsipeptide", 30.0, 79.0, 93.39622641509435, 1.2e-14], ["ACB47076.1", "DynT5", "BGC0001060", 1, "Polyketide", 31.0, 79.0, 84.90566037735849, 1.2e-14], ["QBF29318.1", "ABC_transporter_ATP-binding_protein", "BGC0002294", 1, "Other", 28.0, 79.0, 97.64150943396226, 1.2e-14], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 33.0, 79.0, 108.96226415094338, 1.2e-14], ["AMQ70215.1", "bacitracin_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 31.0, 79.0, 90.09433962264151, 1.2e-14], ["QYA95677.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002676", 1, "NRP", 30.0, 79.0, 93.39622641509435, 1.2e-14], ["AAF17285.1", "nosG", "BGC0001028", 1, "Polyketide+NRP:Cyclic depsipeptide", 31.0, 78.0, 87.26415094339622, 1.6e-14], ["ARU08083.1", "mlcO", "BGC0001448", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 29.0, 78.0, 92.45283018867924, 1.6e-14], ["ACC81026.1", "ABC_Transporter", "BGC0001479", 1, "NRP", 31.0, 78.0, 87.26415094339622, 1.6e-14], ["KKP00962.1", "hypothetical_protein", "BGC0001854", 1, "Polyketide:Iterative type I polyketide", 29.0, 78.0, 98.11320754716981, 1.6e-14], ["WP_012408790.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002061", 1, "NRP:Cyclic depsipeptide+Polyketide:Modular type I polyketide", 31.0, 78.0, 87.26415094339622, 1.6e-14], ["QCQ67878.1", "ABC_transporter", "BGC0002297", 1, "NRP+Polyketide", 31.0, 78.0, 86.32075471698113, 2.1e-14], ["QQZ01563.1", "ABC_transporter_ATP-binding_protein", "BGC0002498", 1, "Other", 27.0, 78.0, 94.81132075471697, 2.1e-14], ["CAP20370.1", "ABC_transporter,_ATP-binding_membrane_protein", "BGC0000347", 1, "NRP", 27.0, 77.0, 88.20754716981132, 2.7e-14], ["AXN93574.1", "ORF1", "BGC0001950", 1, "NRP", 31.0, 77.0, 93.39622641509435, 2.7e-14], ["AXN93583.1", "ORF1", "BGC0001951", 1, "NRP", 31.0, 77.0, 93.39622641509435, 2.7e-14], ["QNL14926.1", "AptE", "BGC0002512", 1, "NRP", 32.0, 77.0, 87.26415094339622, 2.7e-14], ["ABI26076.1", "ABC_transporter", "BGC0000331", 1, "NRP", 31.0, 77.0, 87.26415094339622, 3.5e-14], ["AAZ03549.1", "McnF", "BGC0000332", 1, "NRP", 30.0, 77.0, 87.26415094339622, 3.5e-14], ["BAP05577.1", "calU", "BGC0000967", 1, "NRP+Polyketide:Trans-AT type I polyketide", 25.0, 77.0, 101.88679245283019, 3.5e-14], ["BAH22761.1", "putative_ABC_transporter", "BGC0001018", 1, "NRP", 30.0, 77.0, 87.26415094339622, 3.5e-14], ["WP_078620925.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001549", 1, "RiPP", 31.0, 77.0, 93.86792452830188, 3.5e-14], ["ARD70884.1", "ABC_transporter", "BGC0001693", 1, "Polyketide", 28.0, 77.0, 98.58490566037736, 3.5e-14], ["QKG20142.1", "ABC_transporter_ATP-binding_protein", "BGC0002124", 1, "Polyketide", 28.0, 77.0, 92.45283018867924, 3.5e-14], ["MBU7585868.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002626", 1, "RiPP", 30.0, 77.0, 87.26415094339622, 3.5e-14], ["UKO95766.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002632", 1, "NRP", 31.0, 77.0, 87.26415094339622, 3.5e-14], ["BAB72059.1", "AcrV", "BGC0000191", 1, "Polyketide", 29.0, 77.0, 87.26415094339622, 4.6e-14], ["ACZ55948.1", "ABC_transporter", "BGC0000302", 1, "NRP", 31.0, 77.0, 87.26415094339622, 4.6e-14], ["WP_012408795.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002049", 1, "RiPP:Microviridin", 30.0, 77.0, 87.26415094339622, 4.6e-14], ["ADX66464.1", "ScnA", "BGC0000108", 1, "Polyketide", 27.0, 76.0, 97.16981132075472, 6e-14], ["BAC98762.1", "NukF", "BGC0000539", 1, "RiPP:Lanthipeptide", 29.0, 76.0, 92.45283018867924, 7.8e-14], ["BAG22745.1", "putative_ABC-type_multidrug_transport_system_ATPase_and_permease_component", "BGC0000724", 1, "Saccharide", 31.0, 76.0, 98.58490566037736, 7.8e-14], ["CAD29796.1", "ABC_transporter", "BGC0001015", 1, "NRP+Polyketide", 30.0, 76.0, 92.45283018867924, 7.8e-14], ["QBC75016.1", "daunorubicin/doxorubicin_resistance_ABC_transporter", "BGC0001968", 1, "NRP", 32.0, 76.0, 87.26415094339622, 7.8e-14], ["WP_051767685.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 28.0, 76.0, 97.16981132075472, 7.8e-14], ["MCF2150417.1", "ABC-type_transport_system", "BGC0002625", 1, "NRP+Polyketide", 32.0, 76.0, 87.26415094339622, 7.8e-14], ["AAO62579.1", "ABC_transporter_ATP-binding-like_protein", "BGC0001016", 1, "NRP+Polyketide", 29.0, 76.0, 87.26415094339622, 1e-13], ["XP_020058106.1", "uncharacterized_protein", "BGC0001220", 1, "NRP", 24.0, 76.0, 96.69811320754717, 1e-13], ["KYC42617.1", "ABC_transporter", "BGC0002484", 1, "NRP+Polyketide", 30.0, 76.0, 87.26415094339622, 1e-13], ["CAC20924.1", "PimA_protein", "BGC0000125", 1, "Polyketide", 30.0, 75.0, 75.94339622641509, 1.3e-13], ["EDY42517.2", "daunorubicin_resistance_ATP-binding_protein_DrrA", "BGC0000212", 1, "Polyketide:Type II polyketide", 29.0, 75.0, 87.26415094339622, 1.3e-13], ["ctg1_orf247", "", "BGC0001200", 1, "Polyketide", 29.0, 75.0, 95.75471698113208, 1.3e-13], ["AQH32478.1", "ABC_transporter", "BGC0001667", 1, "NRP+Polyketide", 29.0, 75.0, 87.26415094339622, 1.3e-13], ["AQT01390.1", "SgnA", "BGC0001690", 1, "Polyketide", 30.0, 75.0, 75.94339622641509, 1.3e-13], ["QGZ36667.1", "cyclic_peptide_export_ABC_transporter", "BGC0002082", 1, "NRP+Polyketide", 31.0, 75.0, 87.73584905660378, 1.3e-13], ["CAA07371.1", "StrW", "BGC0000690", 1, "Saccharide", 29.0, 75.0, 97.16981132075472, 1.7e-13], ["ANQ31721.1", "ABC_transporter_ATPase", "BGC0001395", 1, "Other", 28.0, 75.0, 96.22641509433963, 1.7e-13], ["ATP76236.1", "NdaI", "BGC0001705", 1, "NRP+Polyketide", 28.0, 75.0, 97.16981132075472, 1.7e-13], ["WP_228773449.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002104", 1, "NRP+Polyketide", 29.0, 75.0, 95.75471698113208, 1.7e-13], ["SPE99799.1", "Glutathione_import_ATP-binding_protein_GsiA", "BGC0002567", 1, "Other", 34.0, 75.0, 83.49056603773585, 1.7e-13], ["AYM52853.1", "molybdate_ABC_transporter_ATP-binding_protein", "BGC0001964", 1, "Polyketide", 36.0, 74.0, 88.67924528301887, 2.3e-13], ["WP_245193312.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002011", 1, "Polyketide", 26.0, 74.0, 84.90566037735849, 2.3e-13], ["QGJ79656.1", "ABC_transporter", "BGC0002552", 1, "Polyketide", 26.0, 74.0, 84.90566037735849, 2.3e-13], ["ACC54547.1", "MvdA", "BGC0000594", 1, "RiPP", 29.0, 74.0, 87.26415094339622, 3e-13], ["CAJ81021.1", "ABC_transporter_ATP-binding_protein_AcbW", "BGC0000691", 1, "Saccharide", 29.0, 74.0, 95.75471698113208, 3e-13], ["EPE34342.1", "ABC-transporter", "BGC0001035", 1, "Polyketide+NRP", 28.0, 74.0, 97.64150943396226, 3e-13], ["AGN74890.1", "ABC_transporter", "BGC0000459", 1, "NRP:Cyclic depsipeptide+Polyketide:Trans-AT type I polyketide", 29.0, 74.0, 101.41509433962264, 3.9e-13], ["CAA19963.1", "putative_ABC_transporter", "BGC0000551", 1, "RiPP:Lanthipeptide", 30.0, 73.0, 98.58490566037736, 5.1e-13], ["AAC83135.1", "ModC", "BGC0000916", 1, "Other", 32.0, 73.0, 91.98113207547169, 5.1e-13], ["WP_028847744.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002467", 1, "NRP", 30.0, 73.0, 100.9433962264151, 5.1e-13], ["AAF00956.1", "mcyH", "BGC0001017", 1, "NRP+Polyketide:Modular type I polyketide", 30.0, 73.0, 92.45283018867924, 6.6e-13], ["EEM79978.1", "ABC_transporter", "BGC0001887", 1, "RiPP", 29.0, 73.0, 94.81132075471697, 6.6e-13], ["AET51851.1", "ABC_transporter", "BGC0001138", 1, "Other:Nucleoside", 29.0, 72.0, 101.88679245283019, 8.7e-13], ["ANY10583.1", "ABC_transporter", "BGC0001773", 1, "Polyketide", 27.0, 72.0, 92.45283018867924, 8.7e-13], ["QNN81306.1", "IonTII", "BGC0002446", 1, "Polyketide", 26.0, 72.0, 92.45283018867924, 8.7e-13], ["WP_141576250.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 28.0, 72.0, 102.35849056603774, 8.7e-13], ["AHJ31211.1", "ABC_transporter_ATP-binding_protein", "BGC0000430", 1, "NRP+Polyketide:Modular type I polyketide", 29.0, 72.0, 87.26415094339622, 1.1e-12], ["ACB01054.1", "ABC-type_nitrate/sulfonate/bicarbonate_transport_system,_ATP-binding_protein", "BGC0002470", 1, "Other", 31.0, 72.0, 92.9245283018868, 1.1e-12], ["MBE8994633.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002623", 1, "NRP+Polyketide", 30.0, 72.0, 87.73584905660378, 1.1e-12], ["BAO66521.1", "ABC_transporter", "BGC0000042", 1, "Polyketide", 28.0, 72.0, 94.33962264150944, 1.5e-12], ["AAO23332.1", "NcpC", "BGC0000397", 1, "NRP", 30.0, 72.0, 87.26415094339622, 1.5e-12], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 28.0, 72.0, 116.98113207547169, 1.5e-12], ["QKV49801.1", "ABC_transporter_ATP-binding_protein", "BGC0002526", 1, "Polyketide", 27.0, 72.0, 87.26415094339622, 1.5e-12], ["AAD21213.1", "BcrA", "BGC0000310", 1, "NRP", 29.0, 71.0, 85.37735849056604, 2.5e-12], ["CAJ96467.1", "ABC-type_transporter,_ATPase_and_permease_components:_Pep3E_family", "BGC0000330", 1, "NRP:NRP siderophore", 29.0, 71.0, 100.0, 2.5e-12], ["QCC62989.1", "hypothetical_protein", "BGC0001966", 1, "NRP+Polyketide", 26.0, 71.0, 94.33962264150944, 2.5e-12], ["QOE88887.1", "ABC_transporter", "BGC0002260", 1, "Terpene", 25.0, 71.0, 99.52830188679245, 2.5e-12], ["AKQ52538.1", "Hypothetical_protein", "BGC0002533", 1, "NRP+Polyketide", 31.0, 71.0, 84.90566037735849, 2.5e-12], ["QIZ24092.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 26.0, 71.0, 107.0754716981132, 2.5e-12], ["AQP25578.1", "ABC_transporter", "BGC0001590", 1, "Polyketide", 28.0, 71.0, 95.75471698113208, 3.3e-12], ["WP_029025941.1", "ABC_transporter", "BGC0000198", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 28.0, 70.0, 93.39622641509435, 4.3e-12], ["ACY56716.1", "ThnD", "BGC0000600", 1, "RiPP", 27.0, 70.0, 91.98113207547169, 4.3e-12], ["BAP82652.1", "ABC_transporter", "BGC0001148", 1, "NRP+RiPP", 29.0, 70.0, 97.16981132075472, 4.3e-12], ["ATP76247.1", "SpuF", "BGC0001748", 1, "NRP+Polyketide", 29.0, 70.0, 87.26415094339622, 4.3e-12], ["AJP07151.1", "AciT", "BGC0001222", 1, "RiPP", 27.0, 70.0, 99.05660377358491, 5.6e-12], ["CCT75968.1", "related_to_multidrug_resistance_protein", "BGC0001606", 1, "Polyketide", 31.0, 70.0, 78.77358490566037, 5.6e-12], ["ADM69287.1", "ABC_transporter_ATP-binding_protein", "BGC0001727", 1, "RiPP", 27.0, 70.0, 92.45283018867924, 5.6e-12], ["BAG66056.1", "putative_ATP_binding_protein", "BGC0000491", 1, "RiPP:Head-to-tailcyclized peptide", 27.0, 69.0, 99.05660377358491, 7.3e-12], ["AIW58900.1", "hypothetical_protein", "BGC0001582", 1, "NRP", 33.0, 69.0, 78.77358490566037, 7.3e-12], ["CAQ16120.1", "ABC_transporter", "BGC0000592", 1, "RiPP:Microviridin", 28.0, 69.0, 87.26415094339622, 9.6e-12], ["WP_014929841.1", "ABC_transporter_transmembrane_domain-containing_protein", "BGC0001864", 1, "RiPP:Glycocin", 22.0, 69.0, 94.81132075471697, 1.2e-11], ["QFU19820.1", "ABC_transporter_ATP-binding_protein", "BGC0002431", 1, "Polyketide+Saccharide", 28.0, 68.0, 93.39622641509435, 1.6e-11], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 27.0, 67.0, 103.30188679245282, 2.8e-11], ["QBK15045.1", "hypothetical_protein_ClaG", "BGC0002196", 1, "Polyketide", 27.0, 67.0, 93.39622641509435, 2.8e-11], ["ABI30230.1", "McdT", "BGC0000526", 1, "RiPP:Lanthipeptide", 27.0, 66.0, 90.09433962264151, 6.2e-11], ["ABK59359.1", "MukT", "BGC0000534", 1, "RiPP:Lanthipeptide", 28.0, 66.0, 82.54716981132076, 6.2e-11], ["AED99781.1", "ABC-transporter", "BGC0000599", 1, "RiPP:Sactipeptide", 24.0, 66.0, 100.47169811320755, 6.2e-11], ["BAF50716.2", "ABC-transporter_protein", "BGC0001116", 1, "NRP+Polyketide", 30.0, 66.0, 87.26415094339622, 6.2e-11], ["AAC35926.1", "ABC_transporter_ATP-binding_protein", "BGC0000792", 1, "Saccharide", 26.0, 66.0, 82.0754716981132, 8.1e-11], ["AHZ20760.1", "ABC_transporter_transmembrane_domain/ATP-binding_domain_protein", "BGC0000369", 1, "NRP+Saccharide:Hybrid/tailoring saccharide", 28.0, 66.0, 87.26415094339622, 1.1e-10], ["ctg1_orf169", "", "BGC0001638", 1, "RiPP", 25.0, 66.0, 104.24528301886792, 1.1e-10], ["ESU05150.1", "hypothetical_protein", "BGC0002178", 1, "NRP", 27.0, 66.0, 92.45283018867924, 1.1e-10], ["ACX68645.1", "putative_ABC_transporter", "BGC0000547", 1, "RiPP:Lanthipeptide", 24.0, 65.0, 102.35849056603774, 1.4e-10], ["QDG75038.1", "cyclic_peptide_export_ABC_transporter", "BGC0002068", 1, "NRP+Polyketide", 26.0, 65.0, 89.62264150943396, 1.8e-10], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 27.0, 64.0, 108.49056603773586, 4e-10], ["AAN74822.1", "Fum19p", "BGC0000062", 1, "Polyketide", 25.0, 63.0, 79.71698113207547, 6.9e-10], ["CAM02316.1", "ABC_transporter_protein,_ATP-binding_component", "BGC0000349", 1, "NRP", 27.0, 63.0, 96.69811320754717, 6.9e-10], ["CAA59109.1", "Ard1_protein", "BGC0000873", 1, "Other", 30.0, 63.0, 102.35849056603774, 6.9e-10], ["ADD45300.1", "ABC_transporter_related_protein", "BGC0000807", 1, "Saccharide", 25.0, 62.0, 85.84905660377359, 9e-10], ["ACN29728.1", "putative_ABC_transporter", "BGC0000814", 1, "Alkaloid", 29.0, 62.0, 104.71698113207549, 9e-10], ["ABC42565.1", "putative_ABC_transporter", "BGC0000698", 1, "Saccharide", 28.0, 62.0, 104.24528301886792, 1.2e-09], ["QBA31009.1", "SinT", "BGC0002319", 1, "RiPP", 27.0, 62.0, 90.09433962264151, 1.2e-09], ["QYI86759.1", "putative_ABC_transporter", "BGC0002424", 1, "NRP", 26.0, 62.0, 91.50943396226415, 1.2e-09], ["WP_141576290.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 26.0, 62.0, 87.26415094339622, 1.2e-09], ["ACR50788.1", "putative_ABC_transporter,_ATP_binding_component", "BGC0000163", 1, "Polyketide", 26.0, 62.0, 84.43396226415094, 1.5e-09], ["AEA35029.1", "hypothetical_protein", "BGC0002502", 1, "Polyketide", 28.0, 61.0, 83.01886792452831, 2.6e-09], ["PCL98050.1", "plantaricyclin_A_ATP-binding_protein", "BGC0001743", 1, "RiPP", 26.0, 61.0, 92.9245283018868, 3.4e-09], ["ACB12564.1", "Fum19", "BGC0000063", 1, "Polyketide", 25.0, 60.0, 101.41509433962264, 4.4e-09], ["BAC76468.1", "putative_ABC_transporter_protein", "BGC0001100", 1, "NRP+Polyketide", 27.0, 59.0, 86.79245283018868, 7.6e-09], ["WP_020635024.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001211", 1, "NRP", 26.0, 58.0, 95.75471698113208, 2.2e-08], ["QWM97334.1", "ABC_transporter_ATP-binding_protein", "BGC0002384", 1, "NRP", 29.0, 57.0, 90.09433962264151, 4.9e-08], ["BDA39144.1", "ABC_transporter", "BGC0001398", 1, "RiPP", 27.0, 56.0, 103.30188679245282, 8.4e-08], ["ATW47205.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0002466", 1, "NRP", 24.0, 56.0, 92.9245283018868, 1.1e-07], ["MCC5036772.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002638", 1, "NRP", 30.0, 54.0, 68.39622641509435, 3.2e-07], ["ADG29288.1", "putative_ATP-binding_protein", "BGC0000796", 1, "Saccharide", 27.0, 53.0, 66.50943396226415, 7.1e-07], ["AAP85339.1", "UvrA-like_drug_resistance_protein", "BGC0000233", 1, "Polyketide", 34.0, 52.0, 43.86792452830189, 9.3e-07], ["SSGG_RS34700", "ATP-binding_cassette_domain-containing_protein", "BGC0000553", 1, "RiPP:Lanthipeptide", 33.0, 52.0, 44.81132075471698, 1.2e-06], ["ABW71839.1", "drug-resistance_pump", "BGC0000303", 1, "NRP", 32.0, 51.0, 52.83018867924528, 2.1e-06], ["CBG75488.1", "putative_ABC_transport_system_integral_membrane_component", "BGC0000423", 1, "NRP", 28.0, 51.0, 94.33962264150944, 2.1e-06], ["AET98908.1", "UvrA-like_protein", "BGC0000415", 1, "NRP", 33.0, 50.0, 38.67924528301887, 4.6e-06], ["AEA29626.1", "Por3", "BGC0000409", 1, "NRP", 33.0, 50.0, 55.188679245283026, 6e-06], ["AFV52154.1", "efflux_pump", "BGC0000081", 1, "NRP+Polyketide:Iterative type I polyketide+Polyketide:Enediyne type I polyketide", 29.0, 49.0, 58.9622641509434, 7.8e-06]]}, "2": {"MAAAAKME_01360": [["CAJ81021.1", "ABC_transporter_ATP-binding_protein_AcbW", "BGC0000691", 1, "Saccharide", 41.0, 212.0, 79.6774193548387, 1.7e-54], ["AFV25467.1", "hypothetical_protein", "BGC0000469", 1, "RiPP:Bottromycin", 43.0, 197.0, 66.45161290322581, 4.4e-50], ["BAV57055.1", "methionine_ABC_transporter_ATP-binding_protein", "BGC0001514", 1, "Other", 44.0, 197.0, 68.70967741935485, 4.4e-50], ["EHN79455.1", "ABC_transporter_ATP-binding_protein_ScatW", "BGC0000804", 1, "Saccharide", 40.0, 193.0, 80.0, 8.4e-49], ["BBD82044.1", "ABC_transporter", "BGC0001920", 1, "RiPP", 37.0, 139.0, 65.48387096774194, 8.4e-33], ["SFF02515.1", "ABC-2_type_transport_system_ATP-binding_protein", "BGC0001674", 1, "RiPP", 37.0, 139.0, 65.48387096774194, 1.4e-32], ["QBF51773.1", "ABC_transporter_permease_component", "BGC0001856", 1, "Polyketide:Modular type I polyketide", 36.0, 134.0, 72.25806451612902, 3.5e-31], ["CBJ82069.1", "ABC_Transporter,_ATP-binding_protein", "BGC0001872", 1, "Polyketide", 39.0, 134.0, 69.35483870967742, 3.5e-31], ["ABQ04129.1", "ABC_transporter_related,_ATPase_component", "BGC0000838", 1, "Polyketide", 37.0, 133.0, 63.54838709677419, 1e-30], ["TXC99997.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001877", 1, "Polyketide", 36.0, 131.0, 72.25806451612902, 3.9e-30], ["CAI05930.1", "putative_ATP-binding_protein", "BGC0000696", 1, "Saccharide", 34.0, 130.0, 69.35483870967742, 6.7e-30], ["ARW80053.1", "putative_ABC_transporter", "BGC0001660", 1, "RiPP", 34.0, 130.0, 68.70967741935485, 6.7e-30], ["PHM26616.1", "daunorubicin-DIM-transport_ATP-binding_protein_ABC_transporter_DrrA", "BGC0001130", 1, "NRP+Polyketide", 39.0, 128.0, 67.0967741935484, 1.9e-29], ["QVQ68816.1", "mmrAII", "BGC0002129", 1, "Polyketide", 32.0, 127.0, 71.93548387096774, 5.7e-29], ["CCM44340.1", "ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 35.0, 126.0, 70.3225806451613, 7.4e-29], ["CAL82046.1", "putative_cytolysin_ABC_transporter,_ATP-binding_protein", "BGC0000564", 1, "RiPP:LAP", 30.0, 124.0, 68.70967741935485, 3.7e-28], ["ADG27347.1", "ABC_transporter_ATPase_subunit", "BGC0000296", 1, "NRP", 32.0, 124.0, 69.35483870967742, 4.8e-28], ["WP_029025941.1", "ABC_transporter", "BGC0000198", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 29.0, 123.0, 75.80645161290323, 6.2e-28], ["AEA30278.1", "putative_ABC_transporter", "BGC0000429", 1, "Polyketide+NRP:Cyclic depsipeptide", 34.0, 123.0, 66.45161290322581, 6.2e-28], ["AXI91561.1", "FunT3", "BGC0001944", 1, "Polyketide", 31.0, 123.0, 89.03225806451613, 6.2e-28], ["QYA95677.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002676", 1, "NRP", 34.0, 123.0, 66.45161290322581, 6.2e-28], ["BAH04156.1", "putative_ABC_transporter", "BGC0000450", 1, "NRP", 32.0, 123.0, 70.64516129032258, 1.1e-27], ["ADG27368.1", "ABC_transporter_ATPase_subunit", "BGC0000296", 1, "NRP", 31.0, 122.0, 69.35483870967742, 1.4e-27], ["QNH67555.1", "Cip27", "BGC0002108", 1, "NRP", 32.0, 122.0, 70.0, 1.4e-27], ["EDU38312.1", "ABC_transporter,_ATP-binding_protein", "BGC0001170", 1, "RiPP:LAP", 29.0, 122.0, 68.70967741935485, 1.8e-27], ["CAI94676.1", "putative_ABC_transporter", "BGC0000141", 1, "Polyketide", 35.0, 121.0, 67.0967741935484, 2.4e-27], ["CAM56766.1", "ExpB", "BGC0000354", 1, "NRP", 33.0, 121.0, 70.96774193548387, 2.4e-27], ["ANY10583.1", "ABC_transporter", "BGC0001773", 1, "Polyketide", 32.0, 121.0, 70.64516129032258, 3.1e-27], ["ASX95232.1", "IlaJ", "BGC0001620", 1, "NRP+Polyketide", 30.0, 120.0, 76.45161290322581, 5.3e-27], ["BBA20958.1", "ABC-transporter", "BGC0001763", 1, "NRP+Polyketide", 30.0, 120.0, 76.45161290322581, 5.3e-27], ["QDJ74277.1", "ATP-binding_protein", "BGC0002109", 1, "NRP", 31.0, 120.0, 70.0, 6.9e-27], ["QRG35011.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002378", 1, "NRP", 30.0, 120.0, 70.0, 6.9e-27], ["BAI63276.1", "putative_ABC_transporter", "BGC0000434", 1, "NRP", 31.0, 119.0, 70.0, 1.2e-26], ["WP_202421642.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001655", 1, "RiPP", 33.0, 119.0, 67.74193548387096, 1.2e-26], ["QVQ68814.1", "mmrAI", "BGC0002129", 1, "Polyketide", 32.0, 119.0, 77.74193548387098, 1.5e-26], ["AAQ82562.1", "FscTI", "BGC0000034", 1, "NRP+Polyketide", 35.0, 118.0, 66.45161290322581, 2e-26], ["CAE17540.1", "ATP-binding_protein", "BGC0000210", 1, "Polyketide:Type II polyketide+Saccharide:Oligosaccharide", 32.0, 118.0, 67.0967741935484, 2e-26], ["CAK50797.1", "", "BGC0000247", 1, "Polyketide:Type II polyketide+Saccharide:Oligosaccharide", 32.0, 118.0, 71.93548387096774, 2e-26], ["QBG38790.1", "Atr29", "BGC0001975", 1, "NRP", 30.0, 118.0, 70.0, 2e-26], ["QDF63361.1", "KyaT", "BGC0002346", 1, "RiPP", 32.0, 118.0, 66.45161290322581, 2e-26], ["AAZ23084.1", "possible_ABC_transporter", "BGC0000291", 1, "NRP", 31.0, 117.0, 78.06451612903226, 4.5e-26], ["AHX24693.1", "ABC_transporter_ATP-binding_protein", "BGC0000200", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 32.0, 116.0, 70.0, 7.6e-26], ["QBA57757.1", "ABC_transporter", "BGC0002377", 1, "NRP", 30.0, 116.0, 69.03225806451613, 7.6e-26], ["AAP85350.1", "ATP-binding_protein", "BGC0000233", 1, "Polyketide", 31.0, 116.0, 70.0, 1e-25], ["AAX31553.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000336", 1, "NRP", 34.0, 116.0, 66.45161290322581, 1.3e-25], ["ACA51937.2", "BovF", "BGC0000498", 1, "RiPP:Lanthipeptide", 31.0, 115.0, 90.32258064516128, 2.2e-25], ["WP_028678143.1", "daunorubicin_resistance_protein_DrrA_family_ABC_transporter_ATP-binding_protein", "BGC0001228", 1, "NRP:Cyclic depsipeptide", 30.0, 115.0, 70.0, 2.2e-25], ["WP_054234621.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002014", 1, "NRP+Polyketide", 30.0, 114.0, 71.61290322580646, 2.9e-25], ["ABC00731.1", "CosI", "BGC0000214", 1, "Polyketide", 32.0, 114.0, 70.96774193548387, 3.8e-25], ["AHH53501.1", "ABC_transporter_ATP-binding_subunit", "BGC0000439", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 32.0, 114.0, 73.87096774193549, 3.8e-25], ["KDN80071.1", "ABC_transporter", "BGC0001074", 1, "Saccharide+Polyketide", 32.0, 114.0, 70.96774193548387, 3.8e-25], ["BAJ10688.1", "hypothetical_bacteriocin_immunity_protein", "BGC0000561", 1, "RiPP:Lanthipeptide", 30.0, 114.0, 90.32258064516128, 5e-25], ["WP_017947388.1", "daunorubicin_resistance_protein_DrrA_family_ABC_transporter_ATP-binding_protein", "BGC0001558", 1, "Polyketide", 31.0, 113.0, 70.96774193548387, 8.4e-25], ["ATJ00748.1", "ABC_transporter", "BGC0001568", 1, "Polyketide", 31.0, 113.0, 70.96774193548387, 8.4e-25], ["CTQ34884.1", "AtcG;_putative_ABC_transporter", "BGC0001301", 1, "Polyketide", 29.0, 113.0, 89.6774193548387, 1.1e-24], ["ALG65297.1", "Cal39", "BGC0001297", 1, "NRP", 29.0, 112.0, 69.03225806451613, 1.9e-24], ["QGN18861.1", "nsjF_lantibiotic_protection_ABC_transporter_ATP-binding", "BGC0002323", 1, "RiPP:Lanthipeptide", 34.0, 112.0, 68.70967741935485, 1.9e-24], ["WP_245240025.1", "ABC_transporter_ATP-binding_protein", "BGC0001851", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 30.0, 111.0, 70.64516129032258, 2.5e-24], ["WP_107056739.1", "ABC_transporter_ATP-binding_protein", "BGC0001852", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 30.0, 111.0, 70.64516129032258, 2.5e-24], ["CAJ34360.1", "ABC_transporter_(ATPase_subunit)", "BGC0000445", 1, "NRP:Cyclic depsipeptide", 29.0, 111.0, 70.96774193548387, 3.2e-24], ["ADJ56360.1", "NisF", "BGC0000535", 1, "RiPP:Lanthipeptide", 31.0, 111.0, 68.38709677419355, 4.2e-24], ["AAK33690.1", "ABC_transporter_", "BGC0000566", 1, "RiPP:LAP", 30.0, 110.0, 64.83870967741936, 5.5e-24], ["CBZ42151.1", "putative_ABC-2_transporter", "BGC0001117", 1, "NRP", 31.0, 110.0, 73.22580645161291, 7.2e-24], ["AMQ70217.1", "lantibiotic_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 29.0, 110.0, 68.70967741935485, 7.2e-24], ["MBX4267536.1", "lantibiotic_protection_ABC_transporter_ATP-binding_protein", "BGC0002668", 1, "RiPP", 33.0, 110.0, 66.12903225806451, 7.2e-24], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 30.0, 109.0, 75.16129032258064, 1.2e-23], ["AAL15571.1", "putative_SpaF", "BGC0000511", 1, "RiPP:Lanthipeptide", 33.0, 109.0, 68.70967741935485, 1.6e-23], ["sipT2", "ABC_transporter_ATP-binding_protein", "BGC0001452", 1, "Polyketide", 31.0, 109.0, 68.06451612903226, 1.6e-23], ["AWR88401.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001522", 1, "Polyketide", 31.0, 109.0, 68.06451612903226, 1.6e-23], ["BCK51660.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002520", 1, "Polyketide", 31.0, 109.0, 68.70967741935485, 1.6e-23], ["AAM70341.1", "CalT5", "BGC0000033", 1, "Polyketide", 32.0, 108.0, 63.87096774193548, 2.1e-23], ["QBC75016.1", "daunorubicin/doxorubicin_resistance_ABC_transporter", "BGC0001968", 1, "NRP", 28.0, 108.0, 71.93548387096774, 2.1e-23], ["QKI29078.1", "ABC_transporter_ATP-binding_protein", "BGC0002130", 1, "RiPP:Lanthipeptide", 32.0, 108.0, 71.29032258064515, 2.1e-23], ["CAJ88181.1", "putative_ABC_transporter,_ATP-binding_subunit", "BGC0000151", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 31.0, 108.0, 67.74193548387096, 2.7e-23], ["ABW00319.1", "daunorubicin_resistance_ABC_transporter_ATPase_subunit", "BGC0000333", 1, "NRP", 31.0, 108.0, 75.16129032258064, 2.7e-23], ["BAG71487.1", "immunity_protein", "BGC0000536", 1, "RiPP:Lanthipeptide", 29.0, 108.0, 68.38709677419355, 2.7e-23], ["BAX64249.1", "ABC_transporter", "BGC0001623", 1, "NRP+Polyketide", 30.0, 108.0, 70.0, 2.7e-23], ["AAV66099.1", "PltJ", "BGC0000127", 1, "Polyketide", 34.0, 108.0, 66.12903225806451, 3.5e-23], ["AAD21213.1", "BcrA", "BGC0000310", 1, "NRP", 30.0, 108.0, 79.6774193548387, 3.5e-23], ["ABO65658.1", "Putative_ABC_transporter_ATP-binding_protein", "BGC0000515", 1, "RiPP:Lanthipeptide", 33.0, 108.0, 65.80645161290323, 3.5e-23], ["AFJ52716.1", "ABC_transporter", "BGC0001073", 1, "NRP+Polyketide", 30.0, 108.0, 67.74193548387096, 3.5e-23], ["PVC99846.1", "ABC_transporter_ATP_binding", "BGC0002100", 1, "NRP+Other", 29.0, 108.0, 70.64516129032258, 3.5e-23], ["AMQ70215.1", "bacitracin_ABC_transporter_ATP-binding_protein", "BGC0002663", 1, "RiPP", 30.0, 108.0, 72.25806451612902, 3.5e-23], ["BAH43868.1", "probable_ABC_transporter_ATP_binding_protein", "BGC0000367", 1, "NRP", 32.0, 107.0, 63.54838709677419, 4.6e-23], ["ADK32562.1", "putative_lantibiotic_ABC_transporter_ATP-binding_protein", "BGC0000529", 1, "RiPP:Lanthipeptide", 32.0, 107.0, 72.25806451612902, 4.6e-23], ["BAB08166.1", "SrtF", "BGC0000556", 1, "RiPP:Lanthipeptide", 33.0, 107.0, 63.54838709677419, 4.6e-23], ["CBG67536.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002367", 1, "NRP", 33.0, 107.0, 66.45161290322581, 6.1e-23], ["AAB91597.1", "SpaF", "BGC0000559", 1, "RiPP:Lanthipeptide", 32.0, 106.0, 68.70967741935485, 7.9e-23], ["QIQ28642.1", "Nbc46", "BGC0002541", 1, "Other", 30.0, 106.0, 67.0967741935484, 7.9e-23], ["EDY42517.2", "daunorubicin_resistance_ATP-binding_protein_DrrA", "BGC0000212", 1, "Polyketide:Type II polyketide", 31.0, 106.0, 66.45161290322581, 1e-22], ["AEK64496.1", "EtnF", "BGC0000506", 1, "RiPP:Lanthipeptide", 32.0, 106.0, 68.70967741935485, 1.3e-22], ["ANP43737.1", "ThsF", "BGC0001391", 1, "RiPP", 31.0, 106.0, 63.54838709677419, 1.3e-22], ["QGA70155.1", "ABC_transporter_ATP-binding_protein", "BGC0002293", 1, "NRP", 30.0, 105.0, 73.87096774193549, 2.3e-22], ["BAB72059.1", "AcrV", "BGC0000191", 1, "Polyketide", 30.0, 104.0, 67.74193548387096, 3e-22], ["QLQ36620.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002097", 1, "NRP+Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 27.0, 104.0, 90.96774193548387, 3.9e-22], ["ORC16572.1", "hypothetical_protein", "BGC0001341", 1, "NRP", 27.0, 104.0, 75.48387096774194, 5.1e-22], ["AZF85928.1", "ABC_transporter", "BGC0001963", 1, "NRP+Polyketide", 32.0, 104.0, 66.45161290322581, 5.1e-22], ["QIJ31507.1", "SgdT5", "BGC0002545", 1, "Polyketide", 29.0, 103.0, 66.45161290322581, 6.7e-22], ["AAY59067.1", "ATP-binding_protein", "BGC0000128", 1, "Polyketide", 33.0, 103.0, 66.12903225806451, 8.7e-22], ["ADP94229.1", "TunI", "BGC0000880", 1, "Other:Nucleoside", 30.0, 103.0, 83.54838709677419, 8.7e-22], ["WP_009985599.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001311", 1, "RiPP:Lanthipeptide", 32.0, 103.0, 66.12903225806451, 8.7e-22], ["EHK80174.1", "ABC_transporter_ATP-binding_protein", "BGC0001447", 1, "Polyketide", 30.0, 103.0, 63.87096774193548, 8.7e-22], ["AKA59084.1", "ABC_transporter", "BGC0001619", 1, "Polyketide", 28.0, 103.0, 70.64516129032258, 8.7e-22], ["CCB53259.1", "ABC_transporter_family_protein", "BGC0001393", 1, "NRP", 29.0, 102.0, 76.12903225806451, 1.1e-21], ["ALA09343.1", "hypothetical_protein", "BGC0001303", 1, "Polyketide", 30.0, 102.0, 68.38709677419355, 1.5e-21], ["ARU08083.1", "mlcO", "BGC0001448", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 31.0, 102.0, 66.77419354838709, 1.5e-21], ["AOT85876.1", "immunity_protein", "BGC0001789", 1, "RiPP", 32.0, 101.0, 69.6774193548387, 3.3e-21], ["QEO74990.1", "omn15", "BGC0002078", 1, "NRP:Cyclic depsipeptide", 30.0, 101.0, 66.45161290322581, 3.3e-21], ["WP_010369407.1", "ABC_transporter_ATP-binding_protein", "BGC0000314", 1, "Polyketide+NRP:Cyclic depsipeptide+Other:Aminocoumarin", 31.0, 100.0, 63.87096774193548, 7.4e-21], ["AOT85893.1", "immunity_protein", "BGC0001788", 1, "RiPP", 33.0, 100.0, 65.16129032258064, 7.4e-21], ["AFW17839.1", "PaeF", "BGC0000541", 1, "RiPP:Lanthipeptide", 26.0, 99.0, 66.12903225806451, 9.7e-21], ["CCQ18698.1", "ABC_transporter_ATP-binding_domain", "BGC0000544", 1, "RiPP:Lanthipeptide", 30.0, 99.0, 69.35483870967742, 1.3e-20], ["AAU34217.1", "ABC_transporter_MppX", "BGC0000388", 1, "NRP", 32.0, 98.0, 63.54838709677419, 2.2e-20], ["BCK51650.1", "putative_ABC_transporter", "BGC0002520", 1, "Polyketide", 31.0, 98.0, 73.54838709677419, 2.2e-20], ["ASY03206.1", "NsoF", "BGC0001701", 1, "RiPP:Lanthipeptide", 29.0, 97.0, 68.38709677419355, 3.7e-20], ["BCB17025.1", "putative_ABC_transporter_protein", "BGC0002523", 1, "NRP", 31.0, 97.0, 65.16129032258064, 3.7e-20], ["AAD44229.1", "DrrA", "BGC0000362", 1, "NRP", 30.0, 97.0, 70.0, 4.8e-20], ["ACN64822.1", "PokABC1", "BGC0001061", 1, "Polyketide:Iterative type I polyketide+Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 27.0, 97.0, 66.12903225806451, 4.8e-20], ["AHF21231.1", "PabF", "BGC0000542", 1, "RiPP:Lanthipeptide", 25.0, 97.0, 66.12903225806451, 6.3e-20], ["AJP07151.1", "AciT", "BGC0001222", 1, "RiPP", 31.0, 97.0, 66.45161290322581, 6.3e-20], ["QEO75084.1", "ABC_transporter_ATP-binding_protein", "BGC0002079", 1, "NRP:Cyclic depsipeptide", 29.0, 97.0, 66.45161290322581, 6.3e-20], ["ABD14713.1", "CesC", "BGC0000320", 1, "NRP:Cyclic depsipeptide", 26.0, 96.0, 72.58064516129032, 8.2e-20], ["BAG66056.1", "putative_ATP_binding_protein", "BGC0000491", 1, "RiPP:Head-to-tailcyclized peptide", 31.0, 96.0, 66.45161290322581, 8.2e-20], ["AEX55154.1", "putative_lantibiotic_transport_ATP-binding_protein_SlvF", "BGC0000549", 1, "RiPP:Lanthipeptide", 29.0, 96.0, 71.93548387096774, 8.2e-20], ["AJO72722.1", "Antibiotic_ABC_transporter_ATPase", "BGC0001381", 1, "Polyketide", 30.0, 96.0, 72.58064516129032, 8.2e-20], ["APZ78695.1", "ABC_transporter_ATP-binding_protein", "BGC0001418", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 29.0, 96.0, 71.61290322580646, 1.1e-19], ["AHA81996.1", "ANC_transporter_A_TP-binding_protein", "BGC0000199", 1, "Polyketide:Type II polyketide+Saccharide:Hybrid/tailoring saccharide", 27.0, 96.0, 67.74193548387096, 1.4e-19], ["ABI30231.1", "McdF", "BGC0000526", 1, "RiPP:Lanthipeptide", 33.0, 96.0, 64.51612903225806, 1.4e-19], ["AHX39585.1", "ABC_transporter_protein", "BGC0000626", 1, "RiPP", 31.0, 96.0, 67.0967741935484, 1.4e-19], ["BAB78444.1", "", "BGC0000555", 1, "RiPP:Lanthipeptide", 29.0, 95.0, 66.12903225806451, 2.4e-19], ["MBA0053734.1", "ABC_transporter_ATP-binding_protein", "BGC0002096", 1, "Polyketide", 32.0, 95.0, 65.16129032258064, 2.4e-19], ["QBG82543.1", "sugar_ABC_transporter", "BGC0002587", 1, "Polyketide", 34.0, 95.0, 66.77419354838709, 2.4e-19], ["AAC35926.1", "ABC_transporter_ATP-binding_protein", "BGC0000792", 1, "Saccharide", 29.0, 94.0, 72.25806451612902, 4.1e-19], ["BAD72772.1", "", "BGC0000552", 1, "RiPP:Lanthipeptide", 27.0, 94.0, 89.35483870967742, 5.3e-19], ["AIW58900.1", "hypothetical_protein", "BGC0001582", 1, "NRP", 30.0, 94.0, 60.322580645161295, 5.3e-19], ["WP_030684648.1", "ABC_transporter_ATP-binding_protein", "BGC0001607", 1, "Other", 29.0, 93.0, 68.06451612903226, 6.9e-19], ["ctg1_orf15", "", "BGC0000053", 1, "Polyketide", 27.0, 93.0, 71.29032258064515, 9e-19], ["AAZ76598.1", "BhtF", "BGC0000497", 1, "RiPP:Lanthipeptide", 27.0, 93.0, 89.35483870967742, 9e-19], ["ARD24450.1", "HyiF", "BGC0001618", 1, "RiPP", 31.0, 93.0, 68.38709677419355, 9e-19], ["ABA00875.1", "NsuF", "BGC0000537", 1, "RiPP:Lanthipeptide", 31.0, 92.0, 68.38709677419355, 1.2e-18], ["ADG29288.1", "putative_ATP-binding_protein", "BGC0000796", 1, "Saccharide", 26.0, 92.0, 69.6774193548387, 1.5e-18], ["PCL98050.1", "plantaricyclin_A_ATP-binding_protein", "BGC0001743", 1, "RiPP", 29.0, 92.0, 66.12903225806451, 1.5e-18], ["AFJ20783.1", "ABC_transporter", "BGC0002300", 1, "NRP", 29.0, 92.0, 65.48387096774194, 1.5e-18], ["AAP03101.1", "putative_ATP-binding_protein", "BGC0000874", 1, "Other", 33.0, 91.0, 66.45161290322581, 2.6e-18], ["AKD43524.1", "ABC_transporter", "BGC0001409", 1, "Polyketide", 27.0, 91.0, 63.87096774193548, 3.4e-18], ["AUA09459.1", "Daunorubicin/doxorubicin_resistance_ATP-binding_protein_DrrA", "BGC0002291", 1, "Polyketide", 27.0, 91.0, 71.29032258064515, 3.4e-18], ["AAB92604.1", "ScnF", "BGC0000557", 1, "RiPP:Lanthipeptide", 30.0, 91.0, 69.03225806451613, 4.5e-18], ["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 33.0, 90.0, 66.77419354838709, 5.9e-18], ["CAC33840.1", "hypothetical_protein", "BGC0000523", 1, "RiPP:Lanthipeptide", 28.0, 90.0, 66.45161290322581, 7.7e-18], ["CCQ18687.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 31.0, 90.0, 68.06451612903226, 7.7e-18], ["CAB11989.1", "sporulation_killing_factor_biosynthesis_and_export;_ABC_transporter_(binding_protein)", "BGC0000601", 1, "RiPP:Head-to-tailcyclized peptide", 28.0, 90.0, 66.12903225806451, 7.7e-18], ["ACB47083.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001060", 1, "Polyketide", 33.0, 90.0, 62.58064516129033, 7.7e-18], ["AAS55714.1", "ATP-binding_protein", "BGC0000795", 1, "Saccharide", 29.0, 89.0, 66.12903225806451, 1e-17], ["EHK80158.1", "ABC_transporter", "BGC0001447", 1, "Polyketide", 29.0, 89.0, 70.3225806451613, 1e-17], ["ARK19492.1", "transporter", "BGC0001540", 1, "Other", 32.0, 89.0, 65.48387096774194, 1.3e-17], ["QYZ85382.1", "DisT", "BGC0002635", 1, "RiPP", 28.0, 89.0, 65.80645161290323, 1.3e-17], ["AFJ20779.1", "putative_ABC_transporter", "BGC0002300", 1, "NRP", 29.0, 89.0, 60.322580645161295, 1.7e-17], ["AHJ59534.1", "putative_cerecidin_immunity_protein", "BGC0000502", 1, "RiPP:Lanthipeptide", 26.0, 88.0, 70.96774193548387, 2.2e-17], ["CCQ18690.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 32.0, 88.0, 71.29032258064515, 2.2e-17], ["CAH10182.1", "ChaT3_protein", "BGC0000207", 1, "Polyketide", 29.0, 87.0, 70.3225806451613, 3.8e-17], ["QFF92407.1", "ABC-type_multidrug_transport_system_ATPase", "BGC0002553", 1, "Other", 29.0, 87.0, 64.83870967741936, 3.8e-17], ["AAC69557.2", "ATP_binding_protein_BviB", "BGC0000486", 1, "RiPP:Head-to-tailcyclized peptide", 32.0, 87.0, 64.51612903225806, 6.5e-17], ["CCM44327.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 31.0, 86.0, 66.12903225806451, 8.5e-17], ["BBG91913.1", "ABC_transporter_ATP-binding_subunit", "BGC0001927", 1, "Other", 27.0, 86.0, 64.19354838709678, 1.1e-16], ["CAR51993.1", "ornibactin_biosynthesis_ABC_transport_protein", "BGC0002569", 1, "NRP", 29.0, 86.0, 74.83870967741936, 1.1e-16], ["ADK32558.1", "ABC_transporter_ATP-binding_domain", "BGC0000529", 1, "RiPP:Lanthipeptide", 28.0, 86.0, 70.64516129032258, 1.4e-16], ["QWT72283.1", "ABC_transporter_ATP-binding_protein", "BGC0002430", 1, "NRP+Saccharide", 28.0, 86.0, 70.3225806451613, 1.4e-16], ["QWT72286.1", "ABC_transporter_ATP-binding_protein", "BGC0002430", 1, "NRP+Saccharide", 26.0, 86.0, 68.70967741935485, 1.4e-16], ["BAI23338.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 30.0, 85.0, 64.83870967741936, 1.9e-16], ["AAN85531.1", "ABC_transporter_component,_ATP_hydrolase", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 30.0, 85.0, 66.45161290322581, 1.9e-16], ["AEK75511.1", "ATP-binding_ABC_peptide_transporter", "BGC0000001", 1, "Polyketide:Modular type I polyketide", 29.0, 85.0, 64.51612903225806, 2.5e-16], ["AAO20847.1", "putative_ATP_binding_protein", "BGC0000783", 1, "Saccharide", 27.0, 85.0, 64.83870967741936, 2.5e-16], ["ADD45300.1", "ABC_transporter_related_protein", "BGC0000807", 1, "Saccharide", 26.0, 84.0, 80.0, 4.2e-16], ["ACR50788.1", "putative_ABC_transporter,_ATP_binding_component", "BGC0000163", 1, "Polyketide", 29.0, 82.0, 67.0967741935484, 1.2e-15], ["ABI87094.1", "cyclic_peptide_transporter", "BGC0002531", 1, "NRP", 29.0, 82.0, 72.90322580645162, 1.6e-15], ["BAC76467.1", "putative_ABC_transporter_protein", "BGC0001100", 1, "NRP+Polyketide", 31.0, 81.0, 67.74193548387096, 2.7e-15], ["CAQ64719.1", "sugar_uptake_ABC_transporter,_ATP-binding_protein", "BGC0000087", 1, "Polyketide", 28.0, 81.0, 71.61290322580646, 4.6e-15], ["ABC39037.1", "cyclic_peptide_ABC_transporter,_ATP-binding_protein", "BGC0000386", 1, "NRP:NRP siderophore", 29.0, 81.0, 71.61290322580646, 4.6e-15], ["BAB04170.1", "lantibiotic_haloduracin_protease_and_transporter", "BGC0000517", 1, "RiPP:Lanthipeptide", 27.0, 80.0, 86.12903225806451, 6.1e-15], ["QFU19844.1", "ABC_transporter_ATP-binding_protein", "BGC0002431", 1, "Polyketide+Saccharide", 28.0, 80.0, 66.77419354838709, 6.1e-15], ["ABD65952.1", "ABC_transporter", "BGC0000341", 1, "NRP", 31.0, 79.0, 62.58064516129033, 1.4e-14], ["CAB01940.1", "ExpD1", "BGC0000801", 1, "Saccharide", 32.0, 79.0, 67.74193548387096, 1.4e-14], ["WP_037568390.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002656", 1, "Polyketide", 27.0, 79.0, 66.77419354838709, 1.4e-14], ["AAK53481.1", "ATP-binding_component_of_an_ABC-type_polysaccharide_exporter", "BGC0000774", 1, "Saccharide:Lipopolysaccharide", 28.0, 78.0, 63.2258064516129, 2.3e-14], ["ABX00624.1", "LmrC", "BGC0000907", 1, "Other", 31.0, 78.0, 56.774193548387096, 2.3e-14], ["AGS77319.1", "ABC_transporter", "BGC0001178", 1, "NRP:Glycopeptide", 28.0, 78.0, 78.70967741935485, 2.3e-14], ["QYC40286.1", "Multidrug_export_ATP-binding/permease_protein", "BGC0002344", 1, "NRP", 27.0, 78.0, 79.03225806451613, 2.3e-14], ["BAB78441.1", "", "BGC0000555", 1, "RiPP:Lanthipeptide", 30.0, 78.0, 68.70967741935485, 3e-14], ["AAF08240.1", "CpxA", "BGC0000736", 1, "Saccharide", 27.0, 78.0, 66.12903225806451, 3e-14], ["CAD91219.1", "putative_ABC_transporter,_Dbv24", "BGC0000289", 1, "NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 76.0, 79.03225806451613, 8.8e-14], ["CAG25756.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000311", 1, "NRP", 27.0, 76.0, 96.12903225806451, 8.8e-14], ["MBE3200461.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002409", 1, "NRP", 30.0, 76.0, 64.51612903225806, 1.1e-13], ["CAK15812.1", "macrolide_ABC_efflux_protein_MacB", "BGC0000344", 1, "NRP", 29.0, 76.0, 65.48387096774194, 1.5e-13], ["WP_037568401.1", "ABC_transporter_ATP-binding_protein", "BGC0002656", 1, "Polyketide", 30.0, 76.0, 64.83870967741936, 1.5e-13], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 26.0, 75.0, 70.64516129032258, 2e-13], ["ctg1_orf247", "", "BGC0001200", 1, "Polyketide", 30.0, 75.0, 66.77419354838709, 2e-13], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 28.0, 75.0, 66.12903225806451, 2e-13], ["QXJ21800.1", "ABC_transporter_ATP-binding_protein", "BGC0002370", 1, "NRP", 27.0, 75.0, 80.0, 2e-13], ["BAJ19059.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 28.0, 75.0, 68.38709677419355, 2.5e-13], ["CAD97586.1", "ATP_binding_protein", "BGC0000488", 1, "RiPP:Head-to-tailcyclized peptide", 25.0, 75.0, 71.61290322580646, 2.5e-13], ["ABM30208.1", "PvuE", "BGC0000947", 1, "Other", 26.0, 75.0, 69.6774193548387, 2.5e-13], ["ACR33047.1", "ABC_transport_protein_ATP-binding", "BGC0000495", 1, "RiPP:Lanthipeptide", 27.0, 74.0, 72.90322580645162, 3.3e-13], ["CAA72921.1", "AS-48D_protein", "BGC0000489", 1, "RiPP:Head-to-tailcyclized peptide", 27.0, 74.0, 61.935483870967744, 5.7e-13], ["AAL15565.1", "putative_SpaT", "BGC0000511", 1, "RiPP:Lanthipeptide", 26.0, 74.0, 77.09677419354838, 5.7e-13], ["NSC23519.1", "ABC_transporter_ATP-binding_protein", "BGC0002359", 1, "NRP", 26.0, 74.0, 66.77419354838709, 5.7e-13], ["ALK21572.1", "multidrug_ABC_transporter_permease", "BGC0002678", 1, "NRP", 28.0, 73.0, 68.70967741935485, 7.4e-13], ["WP_141576251.1", "ABC_transporter_ATP-binding_protein", "BGC0002686", 1, "NRP", 28.0, 73.0, 70.0, 7.4e-13], ["AAC67257.1", "HexA", "BGC0000734", 1, "Saccharide", 28.0, 72.0, 63.2258064516129, 1.3e-12], ["QMN69936.1", "PsoE", "BGC0002521", 1, "NRP", 28.0, 72.0, 66.77419354838709, 1.3e-12], ["CAP20369.1", "putative_ABC_transporter_ATP-binding_component", "BGC0000347", 1, "NRP", 29.0, 72.0, 64.19354838709678, 1.7e-12], ["BAI23327.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 30.0, 72.0, 65.80645161290323, 1.7e-12], ["WP_003071800.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 27.0, 72.0, 67.74193548387096, 1.7e-12], ["BAJ19058.1", "putative_ABC_transporter", "BGC0000288", 1, "NRP", 28.0, 72.0, 66.12903225806451, 2.2e-12], ["AQZ71346.1", "ABC_transporter", "BGC0001635", 1, "NRP+Polyketide", 27.0, 72.0, 66.45161290322581, 2.2e-12], ["AGN74890.1", "ABC_transporter", "BGC0000459", 1, "NRP:Cyclic depsipeptide+Polyketide:Trans-AT type I polyketide", 27.0, 71.0, 70.96774193548387, 2.8e-12], ["AET51851.1", "ABC_transporter", "BGC0001138", 1, "Other:Nucleoside", 32.0, 71.0, 60.322580645161295, 2.8e-12], ["AZM57021.1", "ABC_transporter", "BGC0002314", 1, "NRP", 27.0, 71.0, 66.77419354838709, 2.8e-12], ["AEK64492.1", "EtnT", "BGC0000506", 1, "RiPP:Lanthipeptide", 25.0, 71.0, 76.45161290322581, 3.7e-12], ["AAB91587.1", "SpaT", "BGC0000559", 1, "RiPP:Lanthipeptide", 26.0, 71.0, 77.09677419354838, 3.7e-12], ["ABC42565.1", "putative_ABC_transporter", "BGC0000698", 1, "Saccharide", 29.0, 71.0, 59.354838709677416, 3.7e-12], ["BAI23328.1", "putative_ABC-transporter", "BGC0000949", 1, "NRP", 26.0, 71.0, 78.70967741935485, 3.7e-12], ["AJK49764.1", "ABC_transporter,_ATP-binding_protein", "BGC0002565", 1, "NRP", 27.0, 71.0, 72.90322580645162, 3.7e-12], ["ABQ84449.1", "salivaricin_ABC-transporter", "BGC0000624", 1, "RiPP", 29.0, 71.0, 65.80645161290323, 4.8e-12], ["CCA89322.1", "hypothetical_protein", "BGC0001111", 1, "NRP+Polyketide:Trans-AT type I polyketide", 29.0, 71.0, 60.0, 4.8e-12], ["CZF83999.1", "Toxin_RTX-I_translocation_ATP-binding_protein", "BGC0002382", 1, "RiPP", 32.0, 71.0, 56.12903225806451, 4.8e-12], ["CAL19997.1", "putative_transport_ATP-binding_protein", "BGC0002490", 1, "Other", 26.0, 71.0, 68.06451612903226, 4.8e-12], ["BAC87901.1", "probable_ferric_acinetobactin_transport_system_ATP-binding_protein", "BGC0000294", 1, "NRP", 23.0, 70.0, 74.83870967741936, 6.3e-12], ["CBG75489.1", "putative_ABC-transport_system_ATP-binding_component", "BGC0000423", 1, "NRP", 28.0, 70.0, 71.29032258064515, 6.3e-12], ["CAD23201.1", "ywhQ_protein", "BGC0000602", 1, "RiPP:Thiopeptide", 27.0, 70.0, 65.48387096774194, 6.3e-12], ["ATY72532.1", "ABC_transporter_ATP-binding_protein", "BGC0001574", 1, "NRP", 27.0, 70.0, 65.48387096774194, 6.3e-12], ["CAA11793.1", "PCZA363.2", "BGC0000322", 1, "NRP", 27.0, 70.0, 78.38709677419354, 8.2e-12], ["EFY99280.1", "AtrH_like_protein", "BGC0002710", 1, "NRP", 25.0, 70.0, 72.58064516129032, 8.2e-12], ["CAE53357.1", "ABC_transporter", "BGC0000440", 1, "NRP:Glycopeptide", 27.0, 69.0, 79.35483870967742, 1.1e-11], ["CAG15016.1", "ABC_transporter", "BGC0000441", 1, "NRP", 27.0, 69.0, 79.35483870967742, 1.1e-11], ["CEG06583.1", "ABC_transporter", "BGC0001928", 1, "Other", 28.0, 69.0, 71.93548387096774, 1.1e-11], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 26.0, 69.0, 76.45161290322581, 1.4e-11], ["ABD65953.1", "ABC_transporter", "BGC0000341", 1, "NRP", 28.0, 69.0, 80.96774193548387, 1.8e-11], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 25.0, 69.0, 75.80645161290323, 1.8e-11], ["AFN69431.1", "ElxT", "BGC0000509", 1, "RiPP:Lanthipeptide", 27.0, 69.0, 79.35483870967742, 1.8e-11], ["ALK27913.1", "putative_ABC_transporter", "BGC0001233", 1, "NRP", 27.0, 69.0, 66.77419354838709, 1.8e-11], ["WP_009985592.1", "peptidase_domain-containing_ABC_transporter", "BGC0001311", 1, "RiPP:Lanthipeptide", 27.0, 69.0, 67.0967741935484, 1.8e-11], ["OKA09422.1", "ABC_transporter", "BGC0001459", 1, "NRP:Glycopeptide", 27.0, 69.0, 76.12903225806451, 1.8e-11], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 33.0, 69.0, 61.935483870967744, 1.8e-11], ["BCB17010.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002523", 1, "NRP", 28.0, 69.0, 67.0967741935484, 1.8e-11], ["CYV09559.1", "ABC_transporter_NBP/MSD_fusion_protein", "BGC0002575", 1, "RiPP", 28.0, 69.0, 68.06451612903226, 1.8e-11], ["ABS50192.1", "putative_ferric_siderophore_ABC_transporter_ATP-binding_protein", "BGC0000410", 1, "NRP", 24.0, 68.0, 75.16129032258064, 2.4e-11], ["WP_003950018.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000546", 1, "RiPP:Lanthipeptide", 29.0, 68.0, 63.87096774193548, 2.4e-11], ["AJV88390.1", "MfnR", "BGC0001214", 1, "NRP", 31.0, 68.0, 53.5483870967742, 2.4e-11], ["WP_234335045.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001645", 1, "RiPP", 29.0, 68.0, 66.77419354838709, 2.4e-11], ["ALN78925.1", "ABC_transporter_family_protein", "BGC0002630", 1, "RiPP", 28.0, 68.0, 76.45161290322581, 2.4e-11], ["ABC94899.1", "GdmF", "BGC0000514", 1, "RiPP:Lanthipeptide", 31.0, 68.0, 55.80645161290323, 3.1e-11], ["CAF60513.1", "putative_sugar_ABC-transproter_ATP-binding_protein", "BGC0000704", 1, "Saccharide", 28.0, 68.0, 69.35483870967742, 3.1e-11], ["CAF31568.1", "putative_sugar_ABC_transporter", "BGC0000705", 1, "Saccharide", 28.0, 68.0, 69.35483870967742, 3.1e-11], ["CCC55907.1", "putative_ABC_tarnsporter,_ATP-binding_protein", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 24.0, 68.0, 65.48387096774194, 3.1e-11], ["ADC96668.1", "ABC_transporter", "BGC0001076", 1, "Other:Nucleoside", 27.0, 68.0, 66.77419354838709, 3.1e-11], ["APZ78724.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001421", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 28.0, 68.0, 60.322580645161295, 3.1e-11], ["APZ78737.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001422", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 27.0, 68.0, 60.322580645161295, 3.1e-11], ["APZ78751.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001423", 1, "NRP:Cyclic depsipeptide+Polyketide:Iterative type I polyketide", 27.0, 67.0, 60.322580645161295, 4.1e-11], ["OLZ52458.1", "ABC_transporter", "BGC0001462", 1, "NRP:Glycopeptide", 28.0, 67.0, 65.16129032258064, 4.1e-11], ["WP_020636821.1", "dipeptide/oligopeptide/nickel_ABC_transporter_permease/ATP-binding_protein", "BGC0002011", 1, "Polyketide", 26.0, 67.0, 67.41935483870968, 4.1e-11], ["QGJ79648.1", "Peptide_ABC_superfamily_ATP-binding_protein", "BGC0002552", 1, "Polyketide", 26.0, 67.0, 67.41935483870968, 4.1e-11], ["QGN18865.1", "nsjT_ABC_transporter_ATP-binding_protein", "BGC0002323", 1, "RiPP:Lanthipeptide", 25.0, 67.0, 68.06451612903226, 5.3e-11], ["EME52991.1", "ABC_transporter", "BGC0001460", 1, "NRP:Glycopeptide", 29.0, 67.0, 65.16129032258064, 6.9e-11], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 28.0, 66.0, 68.70967741935485, 9.1e-11], ["AAM80540.1", "StaU", "BGC0000290", 1, "NRP:Glycopeptide", 26.0, 66.0, 66.12903225806451, 1.2e-10], ["BAJ05895.1", "putative_ABC_multidrug_resistance_transporter", "BGC0000872", 1, "Other", 27.0, 66.0, 66.77419354838709, 1.2e-10], ["AIG79244.1", "Conserved_putative_membrane_protein", "BGC0000419", 1, "Saccharide+NRP:Glycopeptide", 27.0, 66.0, 77.09677419354838, 1.5e-10], ["QTT77479.1", "ABC_transporter_ATP-binding_protein", "BGC0002350", 1, "NRP+Polyketide+Saccharide", 30.0, 66.0, 66.77419354838709, 1.5e-10], ["ACN29728.1", "putative_ABC_transporter", "BGC0000814", 1, "Alkaloid", 28.0, 65.0, 67.74193548387096, 2e-10], ["AHW81481.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 30.0, 65.0, 68.38709677419355, 2e-10], ["AEG64672.1", "ABC_transporter-like_protein", "BGC0000379", 1, "NRP", 28.0, 65.0, 70.96774193548387, 2.6e-10], ["AAY93352.1", "pyoverdine_ABC_transporter,_permease/ATP-binding_protein_PvdE", "BGC0000413", 1, "NRP", 30.0, 65.0, 63.54838709677419, 2.6e-10], ["CAA59109.1", "Ard1_protein", "BGC0000873", 1, "Other", 25.0, 64.0, 67.74193548387096, 3.4e-10], ["NAO96331.1", "multidrug_ABC_transporter_permease/ATP-binding_protein", "BGC0002117", 1, "NRP", 32.0, 64.0, 64.83870967741936, 3.4e-10], ["QWF78559.1", "Multidrug_resistance_ABC_transporter_ATP-binding/permease_protein_BmrA", "BGC0002142", 1, "Polyketide", 30.0, 64.0, 54.19354838709678, 3.4e-10], ["QXJ26483.1", "ABC_transporter_ATP-binding_protein", "BGC0002370", 1, "NRP", 25.0, 64.0, 72.90322580645162, 3.4e-10], ["AIE77056.1", "ABC-transporter", "BGC0000418", 1, "NRP", 26.0, 64.0, 77.41935483870968, 4.5e-10], ["AEI58864.1", "ABC_transporter", "BGC0000455", 1, "NRP", 27.0, 64.0, 64.83870967741936, 4.5e-10], ["AJW76720.1", "ATP-binding_protein", "BGC0001196", 1, "NRP", 25.0, 64.0, 66.45161290322581, 4.5e-10], ["QYA95652.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002676", 1, "NRP", 26.0, 64.0, 65.48387096774194, 4.5e-10], ["WP_234316436.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0001634", 1, "RiPP", 27.0, 64.0, 71.29032258064515, 5.9e-10], ["AGI92082.1", "HlyB/MsbA_family_ABC_transporter", "BGC0002115", 1, "RiPP:Other", 30.0, 64.0, 66.77419354838709, 5.9e-10], ["ctg1_orf5", "", "BGC0000321", 1, "NRP", 28.0, 63.0, 79.6774193548387, 7.7e-10], ["AAY28215.1", "unknown", "BGC0000074", 1, "Polyketide", 28.0, 63.0, 65.80645161290323, 1e-09], ["CCC55904.1", "putative_ABC_transporter,_ATPase_and_permease_component", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 24.0, 63.0, 67.74193548387096, 1e-09], ["AQZ42156.1", "putative_ABC_multidrug_transporter", "BGC0001820", 1, "NRP", 29.0, 63.0, 68.06451612903226, 1e-09], ["AZM50109.1", "ABC_transporter", "BGC0002702", 1, "NRP", 25.0, 63.0, 66.77419354838709, 1e-09], ["AHH99931.1", "ABC_transporter_protein", "BGC0000002", 1, "Polyketide", 28.0, 62.0, 70.3225806451613, 1.3e-09], ["CAQ71835.1", "ABC_transporter_ATP-binding_protein,_putative_ABC-type_siderophore_export_system", "BGC0001189", 1, "NRP", 27.0, 62.0, 70.64516129032258, 1.3e-09], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 27.0, 62.0, 68.70967741935485, 1.3e-09], ["WP_039806835.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002001", 1, "NRP+Polyketide", 27.0, 62.0, 69.35483870967742, 1.3e-09], ["WP_081238293.1", "ABC_transporter_ATP-binding_protein", "BGC0002105", 1, "Polyketide", 24.0, 62.0, 67.0967741935484, 1.3e-09], ["QQZ01651.1", "ABC_transporter", "BGC0002497", 1, "Other", 26.0, 62.0, 68.38709677419355, 1.3e-09], ["AAK81823.1", "ABC_transporter", "BGC0000326", 1, "NRP", 25.0, 62.0, 66.77419354838709, 1.7e-09], ["ACQ63630.1", "ABC_multidrug_resistance_transporter", "BGC0000875", 1, "Saccharide:Hybrid/tailoring saccharide+Other:Nucleoside", 25.0, 62.0, 66.77419354838709, 1.7e-09], ["OLZ50884.1", "ABC_transporter", "BGC0001461", 1, "NRP:Glycopeptide", 27.0, 62.0, 65.16129032258064, 1.7e-09], ["AYA22337.1", "Tri", "BGC0001955", 1, "NRP", 27.0, 62.0, 65.16129032258064, 1.7e-09], ["QSE03593.1", "Lcm9", "BGC0002333", 1, "Polyketide", 22.0, 62.0, 70.3225806451613, 1.7e-09], ["AFO89680.1", "putative_ferrichrome_transport_ATP-binding_protein", "BGC0002694", 1, "Other", 25.0, 62.0, 67.41935483870968, 1.7e-09], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 27.0, 61.0, 69.35483870967742, 2.9e-09], ["ALV82355.1", "ABC_transporter", "BGC0001370", 1, "NRP", 26.0, 61.0, 67.41935483870968, 2.9e-09], ["CAF32376.1", "putative_ABC_transporter,_ATP-binding_protein", "BGC0000712", 1, "Saccharide", 26.0, 61.0, 75.48387096774194, 5e-09], ["BAF50716.2", "ABC-transporter_protein", "BGC0001116", 1, "NRP+Polyketide", 36.0, 61.0, 49.03225806451613, 5e-09], ["BAL90289.1", "putative_ABC_transporter_ATPase_and_permease_protein", "BGC0002021", 1, "Polyketide", 27.0, 61.0, 66.12903225806451, 5e-09], ["AGI92083.1", "ABC_efflux_pump", "BGC0002115", 1, "RiPP:Other", 28.0, 61.0, 70.64516129032258, 5e-09], ["AKU20512.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 24.0, 61.0, 82.25806451612904, 5e-09], ["CAT00694.1", "protein_mcbF", "BGC0000568", 1, "RiPP:LAP", 26.0, 60.0, 61.935483870967744, 6.5e-09], ["ATY72535.1", "iron_complex_transport_ATP-binding_protein", "BGC0001574", 1, "NRP", 25.0, 60.0, 66.45161290322581, 6.5e-09], ["AVX51095.1", "nysG", "BGC0001709", 1, "Polyketide", 23.0, 60.0, 70.3225806451613, 6.5e-09], ["ATW47206.1", "multidrug_ABC_transporter_permease", "BGC0002466", 1, "NRP", 27.0, 60.0, 65.80645161290323, 6.5e-09], ["CCA53801.1", "Transport_ATP-binding_protein_CydC", "BGC0001801", 1, "NRP", 27.0, 60.0, 71.29032258064515, 8.5e-09], ["QUQ72367.1", "ABC_transporter", "BGC0002349", 1, "Polyketide+Saccharide", 27.0, 59.0, 66.45161290322581, 1.1e-08], ["ABW91161.1", "exporter/resistance_protein", "BGC0000019", 1, "Polyketide", 29.0, 59.0, 62.25806451612903, 1.4e-08], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 27.0, 59.0, 68.70967741935485, 1.4e-08], ["AFD30963.1", "CrmT2", "BGC0000966", 1, "NRP+Polyketide", 25.0, 59.0, 64.83870967741936, 1.4e-08], ["ACM79808.1", "ZmaM", "BGC0001059", 1, "NRP+Polyketide", 27.0, 59.0, 65.16129032258064, 1.4e-08], ["ABM34271.1", "cyclic_peptide_transporter", "BGC0002419", 1, "NRP+Polyketide", 28.0, 59.0, 64.51612903225806, 1.4e-08], ["CAC20925.1", "PimB_protein", "BGC0000125", 1, "Polyketide", 24.0, 59.0, 67.41935483870968, 1.9e-08], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 25.0, 59.0, 77.41935483870968, 1.9e-08], ["CAD15511.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 22.0, 59.0, 79.03225806451613, 1.9e-08], ["AQT01389.1", "SgnB", "BGC0001690", 1, "Polyketide", 24.0, 59.0, 67.41935483870968, 1.9e-08], ["ADX66465.1", "ScnB", "BGC0000108", 1, "Polyketide", 24.0, 58.0, 67.41935483870968, 2.5e-08], ["BAP82652.1", "ABC_transporter", "BGC0001148", 1, "NRP+RiPP", 26.0, 58.0, 65.48387096774194, 2.5e-08], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 34.0, 58.0, 45.16129032258064, 2.5e-08], ["QLH55577.1", "ferric_siderophore_ABC_transporter_ATP-binding_protein", "BGC0002043", 1, "RiPP", 22.0, 58.0, 67.0967741935484, 2.5e-08], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 34.0, 58.0, 45.16129032258064, 2.5e-08], ["QIZ24091.1", "putative_ABC_transporter", "BGC0002540", 1, "Polyketide", 25.0, 58.0, 66.77419354838709, 3.2e-08], ["AAF71763.1", "nysG", "BGC0000115", 1, "Polyketide:Modular type I polyketide+Saccharide:Hybrid/tailoring saccharide", 23.0, 57.0, 70.96774193548387, 4.2e-08], ["MBX4267533.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002668", 1, "RiPP", 25.0, 57.0, 77.09677419354838, 4.2e-08], ["CBL93714.1", "ABC_multidrug_transporter", "BGC0000360", 1, "NRP", 24.0, 57.0, 77.41935483870968, 7.2e-08], ["AHI77484.1", "ABC_transporter_family_protein", "BGC0000572", 1, "RiPP:Lassopeptide", 25.0, 57.0, 72.25806451612902, 7.2e-08], ["CAB38879.1", "putative_ABC_transporter", "BGC0000315", 1, "NRP:Lipopeptide:Ca+-dependent lipopeptide", 25.0, 56.0, 68.70967741935485, 9.4e-08], ["AKU24610.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 23.0, 56.0, 68.70967741935485, 9.4e-08], ["CAJ87588.1", "putative_inner_membrane_ABC-transporter", "BGC0001055", 1, "NRP+Polyketide", 26.0, 56.0, 61.935483870967744, 1.2e-07], ["BAE46917.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 26.0, 55.0, 69.6774193548387, 2.1e-07], ["OJF16281.1", "AceT2", "BGC0001491", 1, "Polyketide", 24.0, 55.0, 55.483870967741936, 2.1e-07], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 28.0, 55.0, 61.29032258064516, 2.7e-07], ["MBV7329450.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002131", 1, "Polyketide+NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 28.0, 55.0, 67.41935483870968, 2.7e-07], ["ACS20352.1", "cyclic_peptide_transporter", "BGC0002420", 1, "NRP+Polyketide", 28.0, 55.0, 63.2258064516129, 2.7e-07], ["QBF29317.1", "ABC_transporter_ATP-binding_protein", "BGC0002294", 1, "Other", 24.0, 54.0, 66.45161290322581, 3.6e-07], ["AGU50943.1", "cyclic_peptide_transporter", "BGC0002417", 1, "NRP+Polyketide", 28.0, 54.0, 63.2258064516129, 3.6e-07], ["AAK01462.1", "ABC_transporter", "BGC0000412", 1, "NRP", 28.0, 54.0, 66.45161290322581, 6.1e-07], ["AAP11941.1", "ABC_transporter_ATP-binding_protein", "BGC0000612", 1, "RiPP:Thiopeptide", 26.0, 53.0, 67.74193548387096, 7.9e-07], ["AAO56107.1", "ABC_transporter,_ATP-binding/permease_protein", "BGC0002570", 1, "NRP+Polyketide", 24.0, 53.0, 68.06451612903226, 7.9e-07], ["WP_234013142.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0000578", 1, "RiPP:Lassopeptide", 28.0, 53.0, 53.87096774193548, 1e-06], ["AAN85545.1", "antibiotic_resistance_protein", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 30.0, 53.0, 56.774193548387096, 1e-06], ["CAC20924.1", "PimA_protein", "BGC0000125", 1, "Polyketide", 25.0, 52.0, 65.80645161290323, 1.8e-06], ["AFO93372.1", "ABC_transporter,_ATP-binding_protein", "BGC0000932", 1, "Other", 27.0, 52.0, 71.93548387096774, 1.8e-06], ["KIH99790.1", "hypothetical_protein", "BGC0001176", 1, "RiPP:Lassopeptide", 25.0, 52.0, 70.96774193548387, 1.8e-06], ["AQT01390.1", "SgnA", "BGC0001690", 1, "Polyketide", 25.0, 52.0, 65.80645161290323, 1.8e-06], ["CAI47638.1", "putative_ABC-type_aminoglycoside_exporter", "BGC0000692", 1, "Saccharide", 24.0, 51.0, 66.12903225806451, 3e-06], ["AYJ71715.1", "multidrug_ABC_transporter_ATP-binding_protein", "BGC0001942", 1, "NRP+Polyketide", 23.0, 51.0, 65.16129032258064, 3e-06], ["CAD15510.1", "ATP-binding_transmembrane_ABC_transporter_protein", "BGC0001014", 1, "NRP:NRP siderophore+Polyketide:Modular type I polyketide+Polyketide:Iterative type I polyketide", 22.0, 51.0, 66.12903225806451, 3.9e-06], ["CQR60039.1", "Lactococcin_transport/processing_ATP-binding_protein_LcnC-like", "BGC0002289", 1, "RiPP", 26.0, 51.0, 67.0967741935484, 3.9e-06], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 30.0, 50.0, 55.80645161290323, 5.1e-06], ["AAZ55180.1", "ABC-type_multidrug_transport_system_ATPase_and_permease_components", "BGC0001889", 1, "RiPP", 26.0, 50.0, 66.77419354838709, 5.1e-06]], "MAAAAKME_01400": [["AFU90402.1", "YcaO_protein", "BGC0000470", 1, "RiPP:Bottromycin", 25.0, 79.0, 94.70404984423676, 1.8e-14], ["CBG72692.1", "YcaO_domain_protein", "BGC0001157", 1, "RiPP:Bottromycin", 26.0, 74.0, 87.85046728971963, 3.4e-13], ["AFV25483.1", "BotCD", "BGC0000469", 1, "RiPP:Bottromycin", 25.0, 74.0, 80.06230529595015, 4.5e-13], ["CCM09445.1", "", "BGC0000468", 1, "RiPP:Bottromycin", 26.0, 74.0, 86.6043613707165, 5.9e-13]], "MAAAAKME_01420": [["AHL24459.1", "peptidase_M48_Ste24P_precursor", "BGC0000806", 1, "Saccharide", 38.0, 164.0, 98.99665551839465, 3.1e-40]]}, "3": {"MAAAAKME_19170": [["AAF81228.1", "unknown", "BGC0000243", 1, "Polyketide", 49.0, 147.0, 99.3975903614458, 2.8e-35], ["AIZ66883.1", "pRNase_III_regulator_YmdB_like_protein", "BGC0002666", 1, "NRP+Alkaloid", 50.0, 144.0, 96.98795180722891, 1.4e-34], ["ADH04651.1", "unknown", "BGC0001342", 1, "NRP+Polyketide", 44.0, 133.0, 100.60240963855422, 3.2e-31], ["AAG42849.1", "unknown", "BGC0000249", 1, "Polyketide", 52.0, 131.0, 81.32530120481928, 1.2e-30], ["AJQ95686.1", "putative_phosphatase,_C-terminal_domain_of_histone_macroH2A1-like_protein", "BGC0002046", 1, "NRP+Polyketide:Trans-AT type I polyketide", 40.0, 118.0, 103.6144578313253, 1.8e-26]], "MAAAAKME_19190": [["QWX09797.1", "peptide_cleavage/export_ABC_transporter", "BGC0002585", 1, "Other", 27.0, 129.0, 90.49429657794677, 1.9e-29], ["ANP43732.1", "ThsT", "BGC0001391", 1, "RiPP", 30.0, 124.0, 76.42585551330798, 8.1e-28], ["CAJ44959.1", "MchF_protein", "BGC0000587", 1, "RiPP:Microcin", 31.0, 118.0, 54.372623574144484, 3.4e-26], ["CAE55703.1", "probable_microcin_H47_secretion_ATP-binding_protein_mchF", "BGC0000589", 1, "RiPP:Microcin", 31.0, 118.0, 54.372623574144484, 3.4e-26], ["AAL08400.1", "MceG", "BGC0000586", 1, "RiPP:Microcin", 32.0, 118.0, 54.94296577946768, 5.8e-26], ["AAZ76601.1", "BhtT", "BGC0000497", 1, "RiPP:Lanthipeptide", 30.0, 116.0, 51.14068441064639, 1.3e-25], ["BAD72775.1", "", "BGC0000552", 1, "RiPP:Lanthipeptide", 30.0, 115.0, 52.28136882129277, 3.8e-25], ["EOO99818.1", "hypothetical_protein", "BGC0001861", 1, "RiPP:Glycocin", 24.0, 114.0, 77.18631178707224, 4.9e-25], ["EDY04298.1", "ABC_transporter-related_protein", "BGC0000516", 1, "RiPP:Lanthipeptide", 24.0, 112.0, 98.66920152091255, 2.4e-24], ["CAA11515.1", "colicin_V_exporter_protein", "BGC0000584", 1, "RiPP:Microcin", 30.0, 111.0, 54.372623574144484, 4.2e-24], ["WP_000184924.1", "microcin_H47_export_transporter_peptidase/ATP-binding_subunit_MchF", "BGC0001555", 1, "RiPP", 30.0, 111.0, 54.372623574144484, 4.2e-24], ["AAP03990.1", "putative_microcin_L_transport_protein", "BGC0000588", 1, "RiPP:Microcin", 30.0, 109.0, 54.372623574144484, 1.6e-23], ["ACP43452.1", "McnB", "BGC0000590", 1, "RiPP:Microviridin", 27.0, 109.0, 89.92395437262357, 1.6e-23], ["AHF21240.1", "CrnT", "BGC0000500", 1, "RiPP:Lanthipeptide", 24.0, 108.0, 103.23193916349811, 6e-23], ["ABQ84449.1", "salivaricin_ABC-transporter", "BGC0000624", 1, "RiPP", 23.0, 107.0, 101.14068441064639, 7.9e-23], ["WP_027239422.1", "NHLP_family_bacteriocin_export_ABC_transporter_peptidase/permease/ATPase_subunit", "BGC0002698", 1, "RiPP", 28.0, 106.0, 55.32319391634981, 2.3e-22], ["WP_019688963.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002306", 1, "RiPP", 25.0, 105.0, 101.33079847908746, 3.9e-22], ["ALX37944.1", "GaeT", "BGC0001388", 1, "RiPP", 22.0, 101.0, 102.85171102661596, 5.6e-21], ["BAM09402.1", "putative_ABC-transporter", "BGC0000619", 1, "RiPP", 22.0, 101.0, 102.85171102661596, 7.4e-21], ["BBE52944.1", "putative_ABC-transporter", "BGC0001602", 1, "RiPP", 22.0, 101.0, 102.85171102661596, 7.4e-21], ["AVX51096.1", "nysH", "BGC0001709", 1, "Polyketide", 28.0, 100.0, 53.42205323193916, 9.6e-21], ["WP_012444311.1", "peptidase_domain-containing_ABC_transporter_RaxB", "BGC0002005", 1, "RiPP", 26.0, 99.0, 84.60076045627376, 1.6e-20], ["ACA97579.1", "PmxD", "BGC0000408", 1, "NRP", 24.0, 99.0, 101.33079847908746, 2.1e-20], ["AAC56012.1", "cytolysin_B_transport_protein", "BGC0000520", 1, "RiPP:Lanthipeptide", 26.0, 99.0, 64.82889733840305, 2.1e-20], ["ABS50189.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 26.0, 99.0, 62.3574144486692, 2.8e-20], ["AEZ51519.1", "pmxD", "BGC0001153", 1, "NRP:Lipopeptide", 24.0, 99.0, 101.33079847908746, 2.8e-20], ["APO47823.1", "multidrug_ABC_transporter_permease", "BGC0002653", 1, "NRP", 24.0, 99.0, 100.76045627376426, 2.8e-20], ["AAA62651.1", "", "BGC0000504", 1, "RiPP:Lanthipeptide", 27.0, 98.0, 54.562737642585546, 3.7e-20], ["ACC84963.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 26.0, 98.0, 64.82889733840305, 4.8e-20], ["ADI10107.1", "type_II_lanthionine_synthetase_and_transporter", "BGC0001229", 1, "RiPP:Lanthipeptide", 25.0, 97.0, 77.9467680608365, 6.2e-20], ["AMQ71643.1", "hypothetical_protein", "BGC0002663", 1, "RiPP", 24.0, 97.0, 100.38022813688212, 6.2e-20], ["WP_009985592.1", "peptidase_domain-containing_ABC_transporter", "BGC0001311", 1, "RiPP:Lanthipeptide", 23.0, 97.0, 85.93155893536122, 1.1e-19], ["WP_027239423.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002698", 1, "RiPP", 32.0, 96.0, 58.55513307984791, 1.4e-19], ["BAH43767.1", "ABC_transporter_ATP_binding/permease_protein", "BGC0000452", 1, "NRP", 23.0, 96.0, 101.52091254752851, 1.8e-19], ["ABW74893.1", "ABC_transporter", "BGC0000759", 1, "Saccharide", 27.0, 96.0, 53.61216730038023, 1.8e-19], ["AAP57696.1", "putative_secretion_protein", "BGC0000768", 1, "Saccharide", 27.0, 96.0, 53.61216730038023, 1.8e-19], ["AAC44070.1", "unknown", "BGC0000797", 1, "Saccharide", 27.0, 96.0, 53.61216730038023, 1.8e-19], ["EFI65097.1", "lantibiotic_transport_protein", "BGC0001407", 1, "RiPP", 23.0, 96.0, 102.6615969581749, 1.8e-19], ["BAH43768.1", "ABC_transporter_ATP-binding/permease_protein", "BGC0000452", 1, "NRP", 25.0, 96.0, 92.77566539923954, 2.4e-19], ["AJM89737.1", "PmxD", "BGC0001192", 1, "NRP", 25.0, 96.0, 101.71102661596959, 2.4e-19], ["AAK01464.1", "ABC_transporter", "BGC0000412", 1, "NRP", 31.0, 94.0, 39.92395437262358, 6.9e-19], ["ACR43772.1", "ABC-transporter", "BGC0002577", 1, "RiPP", 23.0, 94.0, 76.61596958174906, 9e-19], ["AHJ59536.1", "ABC_transporter_protein", "BGC0000502", 1, "RiPP:Lanthipeptide", 23.0, 92.0, 104.18250950570342, 2e-18], ["CAB60262.1", "MrsT_protein", "BGC0000527", 1, "RiPP:Lanthipeptide", 21.0, 92.0, 105.32319391634981, 2e-18], ["BAE56595.1", "", "BGC0001123", 1, "NRP", 28.0, 92.0, 50.950570342205324, 2.6e-18], ["QKV49895.1", "BrtT", "BGC0002110", 1, "RiPP:Lanthipeptide", 24.0, 92.0, 74.7148288973384, 2.6e-18], ["QQZ01652.1", "ABC_transporter", "BGC0002497", 1, "Other", 26.0, 92.0, 55.70342205323195, 3.4e-18], ["AFJ14797.1", "PlpH", "BGC0000403", 1, "NRP", 23.0, 91.0, 104.18250950570342, 4.5e-18], ["AAG28766.1", "CoaD", "BGC0000617", 1, "RiPP", 24.0, 90.0, 104.18250950570342, 9.9e-18], ["BAB04170.1", "lantibiotic_haloduracin_protease_and_transporter", "BGC0000517", 1, "RiPP:Lanthipeptide", 22.0, 90.0, 100.38022813688212, 1.3e-17], ["WP_002130748.1", "peptidase_domain-containing_ABC_transporter", "BGC0001863", 1, "Terpene+RiPP:Glycocin", 22.0, 89.0, 102.28136882129277, 1.7e-17], ["WP_010071703.1", "peptidase_domain-containing_ABC_transporter", "BGC0000554", 1, "RiPP:Lanthipeptide", 23.0, 89.0, 89.54372623574145, 2.2e-17], ["AXA91311.1", "peptidase_domain-containing_ABC_transporter", "BGC0002044", 1, "NRP", 27.0, 89.0, 75.09505703422053, 2.9e-17], ["CAA07371.1", "StrW", "BGC0000690", 1, "Saccharide", 28.0, 88.0, 50.950570342205324, 3.8e-17], ["QIZ86016.1", "NHLP_family_bacteriocin_export_ABC_transporter", "BGC0002330", 1, "RiPP", 23.0, 88.0, 77.75665399239544, 4.9e-17], ["AAB81307.1", "ATP-dependent_translocator", "BGC0002579", 1, "RiPP", 24.0, 88.0, 90.49429657794677, 4.9e-17], ["AAR12535.1", "putative_ABC_transporter", "BGC0002468", 1, "NRP", 30.0, 87.0, 32.69961977186312, 8.4e-17], ["EEM14530.1", "hypothetical_protein", "BGC0001210", 1, "RiPP", 24.0, 87.0, 101.71102661596959, 1.1e-16], ["EHQ60564.1", "ABC_transporter", "BGC0001356", 1, "RiPP", 24.0, 87.0, 95.24714828897338, 1.1e-16], ["KAH7877381.1", "multidrug_resistance-associated_ABC_transporter", "BGC0002747", 1, "RiPP", 32.0, 86.0, 35.551330798479086, 1.9e-16], ["AAY93395.1", "2-phenylethylamine_uptake_protein_PeaH", "BGC0000413", 1, "NRP", 23.0, 85.0, 99.80988593155894, 3.2e-16], ["CAJ87588.1", "putative_inner_membrane_ABC-transporter", "BGC0001055", 1, "NRP+Polyketide", 28.0, 84.0, 46.00760456273764, 5.5e-16], ["BAJ10687.1", "hypothetical_bacteriocin_transporter", "BGC0000561", 1, "RiPP:Lanthipeptide", 24.0, 84.0, 64.63878326996198, 7.1e-16], ["CUX79064.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0001715", 1, "NRP", 22.0, 84.0, 97.52851711026615, 7.1e-16], ["ABC94901.1", "GdmT", "BGC0000514", 1, "RiPP:Lanthipeptide", 25.0, 83.0, 51.33079847908745, 1.2e-15], ["MBE3200464.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 23.0, 83.0, 78.51711026615969, 1.2e-15], ["QIW91876.1", "TRT", "BGC0002543", 1, "NRP", 33.0, 83.0, 39.543726235741445, 1.2e-15], ["BAE46917.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 28.0, 83.0, 39.543726235741445, 1.6e-15], ["AFD30962.1", "CrmT3", "BGC0000966", 1, "NRP+Polyketide", 26.0, 82.0, 60.45627376425855, 2.1e-15], ["ACM68694.1", "AerN", "BGC0000298", 1, "NRP", 24.0, 82.0, 72.81368821292776, 3.5e-15], ["QVK45109.1", "ABC_transporter", "BGC0002438", 1, "Alkaloid", 25.0, 82.0, 79.84790874524715, 3.5e-15], ["EYT83450.1", "ABC_transporter", "BGC0001213", 1, "Polyketide", 27.0, 81.0, 61.026615969581755, 6e-15], ["ADV57362.1", "bacteriocin_ABC_transporter_of_glycocin_F", "BGC0000484", 1, "RiPP:Head-to-tailcyclized peptide", 25.0, 81.0, 71.67300380228137, 7.9e-15], ["WP_128623601.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002144", 1, "RiPP:LAP", 24.0, 81.0, 86.12167300380229, 7.9e-15], ["CZT62789.1", "ABC-type_uncharacterized_transport_system,_permease_and_ATPase_components,_involved_in_Hassallidin_biosynthesis", "BGC0001614", 1, "NRP", 23.0, 80.0, 96.7680608365019, 1e-14], ["AGM16416.1", "paenibacterin_ABC-transporter_E", "BGC0000400", 1, "NRP", 22.0, 80.0, 99.04942965779468, 1.3e-14], ["MBE3202945.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 23.0, 80.0, 76.42585551330798, 1.3e-14], ["AOT85881.1", "ABC_transporter", "BGC0001787", 1, "RiPP", 23.0, 78.0, 72.6235741444867, 3.9e-14], ["ABS50188.1", "putative_ABC_transporter_permease/ATP-binding_protein", "BGC0000410", 1, "NRP", 27.0, 77.0, 43.536121673003805, 6.7e-14], ["BAB78441.1", "", "BGC0000555", 1, "RiPP:Lanthipeptide", 22.0, 77.0, 100.0, 6.7e-14], ["ACU62760.1", "ABC_transporter_related", "BGC0001392", 1, "RiPP", 21.0, 77.0, 100.76045627376426, 6.7e-14], ["BCB17017.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0002523", 1, "NRP", 24.0, 77.0, 65.20912547528516, 6.7e-14], ["AAM54082.1", "ABC_transporter", "BGC0000020", 1, "Polyketide", 25.0, 77.0, 77.3764258555133, 8.7e-14], ["CRG85577.1", "hypothetical_protein", "BGC0001402", 1, "NRP", 30.0, 77.0, 30.988593155893536, 8.7e-14], ["WP_082829620.1", "pallidocin_leader_peptidase/ABC_transporter", "BGC0001862", 1, "RiPP:Glycocin", 21.0, 77.0, 101.52091254752851, 1.1e-13], ["WP_051767685.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002009", 1, "Polyketide", 25.0, 77.0, 49.23954372623574, 1.1e-13], ["ACC84962.1", "ABC_transporter_related", "BGC0002699", 1, "RiPP", 24.0, 77.0, 101.90114068441065, 1.1e-13], ["XP_011392729.1", "ABC_transporter", "BGC0001281", 1, "Polyketide", 25.0, 76.0, 53.99239543726235, 1.5e-13], ["CAC60277.1", "RumT_protein", "BGC0000545", 1, "RiPP:Lanthipeptide", 23.0, 76.0, 76.80608365019012, 1.9e-13], ["ACA51936.2", "BovT", "BGC0000498", 1, "RiPP:Lanthipeptide", 23.0, 76.0, 79.27756653992395, 2.5e-13], ["BAG22745.1", "putative_ABC-type_multidrug_transport_system_ATPase_and_permease_component", "BGC0000724", 1, "Saccharide", 25.0, 75.0, 50.950570342205324, 4.3e-13], ["ctg1_orf1268", "", "BGC0001752", 1, "NRP", 27.0, 75.0, 55.13307984790875, 4.3e-13], ["AAF00956.1", "mcyH", "BGC0001017", 1, "NRP+Polyketide:Modular type I polyketide", 23.0, 74.0, 98.85931558935361, 5.6e-13], ["CAC17507.1", "putative_ABC_transporter_ATP-binding_protein", "BGC0000324", 1, "NRP", 26.0, 74.0, 43.91634980988593, 9.6e-13], ["EPE34342.1", "ABC-transporter", "BGC0001035", 1, "Polyketide+NRP", 27.0, 74.0, 31.1787072243346, 9.6e-13], ["AXN93617.1", "ORF1", "BGC0001953", 1, "NRP", 21.0, 74.0, 100.38022813688212, 9.6e-13], ["AHW81482.1", "hypothetical_protein", "BGC0000934", 1, "Other:Phenazine", 27.0, 73.0, 36.12167300380228, 1.3e-12], ["AXN93604.1", "ORF1", "BGC0001952", 1, "NRP", 21.0, 73.0, 100.38022813688212, 1.3e-12], ["QCC62989.1", "hypothetical_protein", "BGC0001966", 1, "NRP+Polyketide", 30.0, 73.0, 35.741444866920155, 1.3e-12], ["QPP19365.1", "Pen6", "BGC0002501", 1, "Alkaloid", 24.0, 73.0, 103.61216730038024, 1.6e-12], ["QCQ67878.1", "ABC_transporter", "BGC0002297", 1, "NRP+Polyketide", 21.0, 72.0, 96.95817490494296, 3.7e-12], ["ABI30230.1", "McdT", "BGC0000526", 1, "RiPP:Lanthipeptide", 26.0, 71.0, 58.935361216730044, 4.8e-12], ["ACY56719.1", "ThnT", "BGC0000600", 1, "RiPP", 22.0, 71.0, 96.95817490494296, 6.2e-12], ["MBE3202944.1", "ABC_transporter_ATP-binding_protein", "BGC0002410", 1, "NRP", 27.0, 71.0, 40.3041825095057, 6.2e-12], ["AKU24610.1", "ABC_transporter_ATP-binding_protein", "BGC0002687", 1, "Polyketide+NRP", 22.0, 70.0, 76.23574144486692, 1.1e-11], ["AAZ23072.1", "hypothetical_protein", "BGC0000291", 1, "NRP", 25.0, 70.0, 38.40304182509506, 1.4e-11], ["CCA65705.1", "predicted_ABC_transporter_ATP-binding_protein", "BGC0001343", 1, "Polyketide", 30.0, 70.0, 40.49429657794677, 1.4e-11], ["KVR35744.1", "hypothetical_protein", "BGC0002312", 1, "RiPP", 21.0, 70.0, 101.90114068441065, 1.4e-11], ["CAD29796.1", "ABC_transporter", "BGC0001015", 1, "NRP+Polyketide", 22.0, 69.0, 96.7680608365019, 1.8e-11], ["QWM97334.1", "ABC_transporter_ATP-binding_protein", "BGC0002384", 1, "NRP", 23.0, 69.0, 91.06463878326996, 1.8e-11], ["CCT75968.1", "related_to_multidrug_resistance_protein", "BGC0001606", 1, "Polyketide", 25.0, 69.0, 42.01520912547528, 2.4e-11], ["MBV7329448.1", "ABC_transporter_ATP-binding_protein/permease", "BGC0002131", 1, "Polyketide+NRP:Glycopeptide+Saccharide:Hybrid/tailoring saccharide", 27.0, 69.0, 40.68441064638783, 3.1e-11], ["AAR12534.1", "putative_ABC_transporter", "BGC0002468", 1, "NRP", 22.0, 69.0, 84.60076045627376, 3.1e-11], ["AKV71854.1", "DevA_family_protein", "BGC0001525", 1, "Other", 26.0, 68.0, 36.69201520912547, 4e-11], ["AOT85892.1", "ABC_transporter", "BGC0001788", 1, "RiPP", 23.0, 68.0, 86.69201520912547, 4e-11], ["CAB11989.1", "sporulation_killing_factor_biosynthesis_and_export;_ABC_transporter_(binding_protein)", "BGC0000601", 1, "RiPP:Head-to-tailcyclized peptide", 26.0, 68.0, 39.73384030418251, 5.3e-11], ["MCF2150409.1", "DevA-like,_part_of_ABC_transporter", "BGC0002625", 1, "NRP+Polyketide", 26.0, 67.0, 41.254752851711025, 6.9e-11], ["ABQ04129.1", "ABC_transporter_related,_ATPase_component", "BGC0000838", 1, "Polyketide", 29.0, 67.0, 37.832699619771866, 9e-11], ["AAD28497.1", "McjD", "BGC0000581", 1, "RiPP:Linaridin", 23.0, 66.0, 100.57034220532319, 1.5e-10], ["QBK15045.1", "hypothetical_protein_ClaG", "BGC0002196", 1, "Polyketide", 26.0, 66.0, 38.40304182509506, 1.5e-10], ["CAP20369.1", "putative_ABC_transporter_ATP-binding_component", "BGC0000347", 1, "NRP", 27.0, 66.0, 41.06463878326996, 2.6e-10], ["AYM52853.1", "molybdate_ABC_transporter_ATP-binding_protein", "BGC0001964", 1, "Polyketide", 27.0, 66.0, 33.07984790874524, 2.6e-10], ["AHZ20760.1", "ABC_transporter_transmembrane_domain/ATP-binding_domain_protein", "BGC0000369", 1, "NRP+Saccharide:Hybrid/tailoring saccharide", 21.0, 65.0, 96.7680608365019, 4.5e-10], ["AOH72612.1", "DevA_family_protein", "BGC0001526", 1, "Other", 26.0, 65.0, 36.69201520912547, 4.5e-10], ["EEM79978.1", "ABC_transporter", "BGC0001887", 1, "RiPP", 25.0, 64.0, 36.31178707224335, 5.8e-10], ["AXF14777.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002563", 1, "NRP", 28.0, 64.0, 33.65019011406844, 5.8e-10], ["BAE15999.1", "ATP-binding_protein", "BGC0000939", 1, "Other", 26.0, 64.0, 37.452471482889734, 1e-09], ["AMM63163.1", "AniL", "BGC0001371", 1, "NRP", 25.0, 64.0, 34.4106463878327, 1e-09], ["AKJ70948.1", "multidrug_transporter_(ABC)", "BGC0002611", 1, "NRP", 26.0, 63.0, 30.228136882129274, 1.3e-09], ["ALD83698.1", "ABC_transporter_ATP_binding_protein", "BGC0001299", 1, "Polyketide", 29.0, 63.0, 33.26996197718631, 1.7e-09], ["ADU86007.1", "putative_ABC_transporter-related_protein", "BGC0000165", 1, "Polyketide:Modular type I polyketide", 29.0, 62.0, 36.69201520912547, 2.2e-09], ["QED93126.1", "ABC_transporter_ATP-binding_protein", "BGC0002556", 1, "Alkaloid", 25.0, 62.0, 34.79087452471482, 2.2e-09], ["WP_037568401.1", "ABC_transporter_ATP-binding_protein", "BGC0002656", 1, "Polyketide", 25.0, 62.0, 37.6425855513308, 2.2e-09], ["BAL15734.1", "ABC_transporter", "BGC0000432", 1, "NRP", 23.0, 62.0, 101.14068441064639, 3.8e-09], ["BBM96631.1", "ABC_transporter_ATP-binding_protein", "BGC0002452", 1, "Polyketide", 28.0, 61.0, 33.65019011406844, 6.5e-09], ["MBE3200465.1", "ABC_transporter_ATP-binding_protein", "BGC0002409", 1, "NRP", 25.0, 61.0, 51.33079847908745, 8.4e-09], ["CCM44340.1", "ABC_transporter_ATP-binding_protein", "BGC0001056", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:PUFA synthase or related polyketide", 24.0, 60.0, 42.96577946768061, 1.1e-08], ["AAN85545.1", "antibiotic_resistance_protein", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 28.0, 60.0, 32.31939163498099, 1.1e-08], ["AAY28215.1", "unknown", "BGC0000074", 1, "Polyketide", 31.0, 59.0, 34.98098859315589, 2.5e-08], ["UEF20586.1", "ABC_transporter", "BGC0002360", 1, "NRP", 28.0, 58.0, 31.368821292775667, 5.5e-08], ["ALN78925.1", "ABC_transporter_family_protein", "BGC0002630", 1, "RiPP", 24.0, 58.0, 98.47908745247148, 5.5e-08], ["PHM26616.1", "daunorubicin-DIM-transport_ATP-binding_protein_ABC_transporter_DrrA", "BGC0001130", 1, "NRP+Polyketide", 23.0, 57.0, 36.69201520912547, 7.1e-08], ["AAC18099.1", "ATPase_component_of_putative_ABC_transporter", "BGC0000225", 1, "Polyketide", 26.0, 57.0, 42.585551330798474, 1.2e-07], ["ctg1_28", "", "BGC0001931", 1, "Polyketide", 24.0, 57.0, 33.460076045627375, 1.2e-07], ["EDN75903.1", "ABC_transporter,_ATP-binding_protein", "BGC0002302", 1, "Saccharide", 26.0, 57.0, 36.12167300380228, 1.2e-07], ["BAR87968.1", "ABC_transporter", "BGC0002674", 1, "RiPP", 22.0, 57.0, 104.18250950570342, 1.2e-07], ["AAP11941.1", "ABC_transporter_ATP-binding_protein", "BGC0000612", 1, "RiPP:Thiopeptide", 24.0, 56.0, 40.49429657794677, 1.6e-07], ["AKG06371.1", "ABC_transporter", "BGC0001830", 1, "Polyketide", 30.0, 56.0, 28.89733840304182, 1.6e-07], ["BAL15733.1", "ABC_transporter", "BGC0000432", 1, "NRP", 30.0, 56.0, 20.15209125475285, 2.1e-07], ["BAE46918.1", "goadsporin_biosynthetic_protein", "BGC0000565", 1, "RiPP:LAP", 25.0, 56.0, 50.19011406844106, 2.1e-07], ["ARW71479.1", "ABC_transporter", "BGC0001812", 1, "Polyketide", 29.0, 56.0, 29.087452471482887, 2.1e-07], ["QLD23832.2", "ABC-F_type_ribosomal_protection_protein", "BGC0002086", 1, "Polyketide", 29.0, 56.0, 29.087452471482887, 2.1e-07], ["FNF07_04290", "ATP-binding_cassette_domain-containing_protein", "BGC0002329", 1, "NRP", 27.0, 56.0, 33.07984790874524, 2.1e-07], ["AKQ52538.1", "Hypothetical_protein", "BGC0002533", 1, "NRP+Polyketide", 23.0, 56.0, 96.00760456273764, 2.1e-07], ["ABW91161.1", "exporter/resistance_protein", "BGC0000019", 1, "Polyketide", 27.0, 56.0, 32.69961977186312, 2.7e-07], ["AAY59067.1", "ATP-binding_protein", "BGC0000128", 1, "Polyketide", 26.0, 56.0, 35.17110266159696, 2.7e-07], ["WP_030684648.1", "ABC_transporter_ATP-binding_protein", "BGC0001607", 1, "Other", 25.0, 56.0, 35.361216730038024, 2.7e-07], ["KJY94245.1", "iron-hydroxamate_transporter_ATP-binding_subunit", "BGC0002691", 1, "NRP", 25.0, 56.0, 38.02281368821293, 2.7e-07], ["MBN3579119.1", "ABC_transporter_ATP-binding_protein", "BGC0002613", 1, "NRP+Polyketide", 21.0, 55.0, 95.81749049429658, 3.5e-07], ["WP_232292338.1", "ATP-binding_cassette_domain-containing_protein", "BGC0001999", 1, "NRP", 26.0, 55.0, 31.93916349809886, 4.6e-07], ["QDQ83030.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002564", 1, "NRP", 26.0, 55.0, 31.93916349809886, 4.6e-07], ["AAN85547.1", "ABC_transporter", "BGC0001101", 1, "NRP+Polyketide:Modular type I polyketide+Polyketide:Trans-AT type I polyketide", 24.0, 54.0, 38.97338403041825, 6e-07], ["ALD83689.1", "ATP_binding_protein", "BGC0001300", 1, "Polyketide", 24.0, 54.0, 40.49429657794677, 6e-07], ["WP_053138477.1", "ABC-F_type_ribosomal_protection_protein_Srm(B)", "BGC0002033", 1, "Polyketide", 26.0, 54.0, 35.741444866920155, 6e-07], ["CAJ96467.1", "ABC-type_transporter,_ATPase_and_permease_components:_Pep3E_family", "BGC0000330", 1, "NRP:NRP siderophore", 25.0, 54.0, 35.361216730038024, 7.9e-07], ["ABX00624.1", "LmrC", "BGC0000907", 1, "Other", 27.0, 54.0, 33.65019011406844, 1e-06], ["NAO96303.1", "ATP-binding_cassette_domain-containing_protein", "BGC0002117", 1, "NRP", 26.0, 54.0, 33.07984790874524, 1e-06], ["BAC76502.1", "putative_ABC_transporter_protein", "BGC0000085", 1, "Polyketide", 25.0, 53.0, 33.840304182509506, 1.3e-06], ["CAF31834.1", "hypotheticl_protein", "BGC0000699", 1, "Saccharide", 26.0, 53.0, 31.749049429657795, 1.3e-06], ["AAM97297.1", "lipoprotein_releasing_system_ATP-binding_protein_LolD", "BGC0001591", 1, "Other", 28.0, 53.0, 33.07984790874524, 1.3e-06], ["ADO17957.1", "CclT", "BGC0000487", 1, "RiPP:Head-to-tailcyclized peptide", 25.0, 53.0, 40.68441064638783, 1.8e-06], ["AAV66099.1", "PltJ", "BGC0000127", 1, "Polyketide", 26.0, 52.0, 35.17110266159696, 2.3e-06], ["CCC55907.1", "putative_ABC_tarnsporter,_ATP-binding_protein", "BGC0000973", 1, "NRP+Polyketide:Modular type I polyketide", 24.0, 52.0, 35.17110266159696, 2.3e-06], ["CCQ18690.1", "ABC_transporter_ATP-binding_protein", "BGC0000544", 1, "RiPP:Lanthipeptide", 27.0, 52.0, 28.707224334600763, 3e-06], ["AAB92603.1", "ScnT", "BGC0000557", 1, "RiPP:Lanthipeptide", 24.0, 52.0, 100.0, 3.9e-06], ["ACN29733.1", "putative_peptide_transport_ATP-binding_protein", "BGC0000814", 1, "Alkaloid", 27.0, 51.0, 34.030418250950575, 5.1e-06], ["ACG70837.1", "ATP-binding_phosphonate_ABC_transporter_PhnC", "BGC0000938", 1, "Other:Aminocoumarin", 28.0, 51.0, 33.840304182509506, 6.7e-06], ["QEV63710.1", "dipeptide_ABC_transporter_ATP-binding_protein", "BGC0002657", 1, "Polyketide+NRP", 28.0, 51.0, 36.12167300380228, 6.7e-06]], "MAAAAKME_19200": [["WP_164776400.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002701", 1, "RiPP", 29.0, 119.0, 51.162790697674424, 2.1e-26], ["QIW19940.1", "class_III_lanthionine_synthetase_LanKC", "BGC0002111", 1, "RiPP:Lanthipeptide", 27.0, 110.0, 49.658002735978116, 1.7e-23], ["CAA19960.1", "putative_serine/threonine_protein_kinase", "BGC0000551", 1, "RiPP:Lanthipeptide", 26.0, 91.0, 46.238030095759235, 6.2e-18], ["WP_205382163.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000553", 1, "RiPP:Lanthipeptide", 26.0, 89.0, 46.238030095759235, 4e-17], ["CAX48971.1", "serine/threonine_kinase", "BGC0000519", 1, "RiPP:Lanthipeptide", 25.0, 88.0, 47.46922024623803, 6.9e-17], ["BAG19226.1", "AmfT_protein", "BGC0000496", 1, "RiPP:Lanthipeptide", 25.0, 87.0, 46.238030095759235, 9e-17], ["SSHG_03588", "serine/threonine_protein_kinase", "BGC0000546", 1, "RiPP:Lanthipeptide", 23.0, 55.0, 46.10123119015048, 4.9e-07], ["WP_037629851.1", "class_III_lanthionine_synthetase_LanKC", "BGC0000546", 1, "RiPP:Lanthipeptide", 23.0, 55.0, 46.10123119015048, 4.9e-07]], "MAAAAKME_19210": [["BAL15735.1", "Tyr/Ser_phosphatase", "BGC0000432", 1, "NRP", 27.0, 71.0, 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b/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/coretable.json index 00f23eb5..299ae15c 100644 --- a/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/coretable.json +++ b/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/coretable.json @@ -21,7 +21,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -68,7 +68,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 1384484_Adlercreutzia_equolifaciens_DSM_19450", 0.6458234649956989 ] @@ -97,7 +97,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -144,7 +144,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -220,7 +220,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 42256_Rubrobacter_radiotolerans", 0.5 ] @@ -346,7 +346,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 557599_Mycobacterium_kansasii_ATCC_12478", 0.714953322652085 ] @@ -404,7 +404,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 350058_Mycobacterium_vanbaalenii_PYR_1", 0.714953322652085 ] @@ -433,7 +433,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP89", + "SP100", "Lactobacillus_delbrueckii, 1354275_Mycobacterium_vaccae_95051", 0.714953322652085 ], @@ -487,7 +487,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP96", + "SP107", "Lactobacillus_delbrueckii, 712411_Olsenella_sp_oral_taxon_807", 0.6458234649956989 ] @@ -516,7 +516,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP96", + "SP107", "Lactobacillus_delbrueckii, 521095_Atopobium_parvulum_DSM_20469", 0.6458234649956989 ] @@ -581,7 +581,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 502558_Eggerthella_sp_YY7918", 0.6458234649956989 ] @@ -628,7 +628,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP96", + "SP107", "Lactobacillus_delbrueckii, 521095_Atopobium_parvulum_DSM_20469", 0.6458234649956989 ] @@ -729,7 +729,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 290399_Arthrobacter_sp_FB24", 0.714953322652085 ] @@ -812,7 +812,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 502558_Eggerthella_sp_YY7918", 0.6458234649956989 ] @@ -1032,7 +1032,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP124", + "SP135", "Lactobacillus_delbrueckii, 1150423_Bifidobacterium_dentium_JCM_1195", 0.714953322652085 ], @@ -1165,7 +1165,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -1266,7 +1266,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 469378_Cryptobacterium_curtum_DSM_15641", 0.6458234649956989 ] @@ -1295,7 +1295,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -1324,7 +1324,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 1531429_Coriobacteriaceae_bacterium_68_1_3", 0.6458234649956989 ] @@ -1353,7 +1353,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 1150423_Bifidobacterium_dentium_JCM_1195", 0.714953322652085 ] @@ -1436,7 +1436,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP123", + "SP134", "Lactobacillus_delbrueckii, 553190_Gardnerella_vaginalis_409_05", 0.714953322652085 ] @@ -1483,7 +1483,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 502558_Eggerthella_sp_YY7918", 0.6458234649956989 ] @@ -1620,7 +1620,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -1678,7 +1678,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -1732,7 +1732,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP162", + "SP173", "Lactobacillus_delbrueckii, 452863_Pseudarthrobacter_chlorophenolicus_A6", 0.714953322652085 ] @@ -1761,14 +1761,14 @@ [ "Lactobacillus_delbrueckii", "D", - "SP117", + "SP128", "Lactobacillus_delbrueckii, 1150423_Bifidobacterium_dentium_JCM_1195", 0.714953322652085 ], [ "Lactobacillus_delbrueckii", "R", - "SP96", + "SP107", "700015_Coriobacterium_glomerans_PW2, 1150423_Bifidobacterium_dentium_JCM_1195", 0.6458234649956989 ] @@ -1815,14 +1815,14 @@ [ "Lactobacillus_delbrueckii", "D", - "SP101", + "SP112", "Lactobacillus_delbrueckii, 502558_Eggerthella_sp_YY7918", 0.6458234649956989 ], [ "Lactobacillus_delbrueckii", "R", - "SP98", + "SP109", "479437_Eggerthella_lenta_DSM_2243, 502558_Eggerthella_sp_YY7918", 5.681941504483967 ] @@ -1851,7 +1851,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 471855_Slackia_heliotrinireducens_DSM_20476", 0.6458234649956989 ] @@ -1880,7 +1880,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 452863_Pseudarthrobacter_chlorophenolicus_A6", 0.714953322652085 ] @@ -1927,7 +1927,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 1650658_Actinobacteria_bacterium_IMCC26256", 0.714953322652085 ] @@ -2021,7 +2021,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -2133,21 +2133,21 @@ [ "Lactobacillus_delbrueckii", "D", - "SP121", + "SP132", "Lactobacillus_delbrueckii, 1150423_Bifidobacterium_dentium_JCM_1195", 0.714953322652085 ], [ "Lactobacillus_delbrueckii", "D", - "SP116", + "SP126", "1437605_Bifidobacterium_actinocoloniiforme_DSM_22766, 1150423_Bifidobacterium_dentium_JCM_1195", 5.888835767266696 ], [ "Lactobacillus_delbrueckii", "D", - "SP115", + "SP127", "864564_Parascardovia_denticolens_DSM_10105, 1150423_Bifidobacterium_dentium_JCM_1195", 5.888835767266696 ] @@ -2212,7 +2212,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 712411_Olsenella_sp_oral_taxon_807", 0.6458234649956989 ] @@ -2259,7 +2259,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP161", + "SP172", "Lactobacillus_delbrueckii, 455632_Streptomyces_griseus_subsp_griseus_NBRC_13350", 0.714953322652085 ] @@ -2306,7 +2306,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP100", + "SP111", "Lactobacillus_delbrueckii, 479437_Eggerthella_lenta_DSM_2243", 0.6458234649956989 ], @@ -2356,14 +2356,14 @@ [ "Lactobacillus_delbrueckii", "D", - "SP62", + "SP57", "860235_Kibdelosporangium_phytohabitans, 263358_Verrucosispora_maris_AB_18_032", 2.6502641970840495 ], [ "Lactobacillus_delbrueckii", "R", - "SP16", + "SP11", "860235_Kibdelosporangium_phytohabitans, 526225_Geodermatophilus_obscurus_DSM_43160", 2.6502641970840495 ] @@ -2457,7 +2457,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -2512,7 +2512,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP173", + "SP71", "Lactobacillus_delbrueckii, 391037_Salinispora_arenicola_CNS_205", 0.714953322652085 ] @@ -2541,7 +2541,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP100", + "SP111", "Lactobacillus_delbrueckii, 479437_Eggerthella_lenta_DSM_2243", 0.6458234649956989 ] @@ -2653,7 +2653,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP111", + "SP122", "Lactobacillus_delbrueckii, 156978_Corynebacterium_imitans", 0.714953322652085 ], @@ -2674,7 +2674,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP98", + "SP109", "469378_Cryptobacterium_curtum_DSM_15641, 156978_Corynebacterium_imitans", 0.6458234649956989 ] @@ -2746,7 +2746,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP148", + "SP159", "Lactobacillus_delbrueckii, 1690248_Arthrobacter_sp_LS16", 0.714953322652085 ] @@ -2836,7 +2836,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP101", + "SP112", "Lactobacillus_delbrueckii, 121292_Pseudarthrobacter_sulfonivorans", 0.714953322652085 ] @@ -2883,7 +2883,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP101", + "SP112", "Lactobacillus_delbrueckii, 1384484_Adlercreutzia_equolifaciens_DSM_19450", 0.6458234649956989 ] @@ -3020,7 +3020,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "1449976_Kutzneria_albida_DSM_43870, 1150468_Scardovia_inopinata_JCM_12537", 2.4377521335799184 ] @@ -3132,21 +3132,21 @@ [ "Lactobacillus_delbrueckii", "D", - "SP167", + "SP178", "Lactobacillus_delbrueckii, 350058_Mycobacterium_vanbaalenii_PYR_1", 0.714953322652085 ], [ "Lactobacillus_delbrueckii", "D", - "SP161", + "SP172", "266940_Kineococcus_radiotolerans_SRS30216, 350058_Mycobacterium_vanbaalenii_PYR_1", 2.4377521335799184 ], [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "266117_Rubrobacter_xylanophilus_DSM_9941, 350058_Mycobacterium_vanbaalenii_PYR_1", 0.5 ] @@ -3283,7 +3283,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -3312,7 +3312,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP124", + "SP135", "Lactobacillus_delbrueckii, 1150460_Bifidobacterium_kashiwanohense_JCM_15439", 0.714953322652085 ] @@ -3341,7 +3341,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 681645_Corynebacterium_pseudotuberculosis_C231", 0.714953322652085 ] @@ -3388,7 +3388,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP69", + "SP80", "Lactobacillus_delbrueckii, 267747_Propionibacterium_acnes_KPA171202", 0.714953322652085 ] @@ -3417,7 +3417,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 42256_Rubrobacter_radiotolerans", 0.5 ] @@ -3464,7 +3464,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP53", + "SP48", "Lactobacillus_delbrueckii, 35755_Corynebacterium_kutscheri", 0.714953322652085 ] @@ -3659,7 +3659,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -3689,7 +3689,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP89", + "SP100", "Lactobacillus_delbrueckii, 1147128_Bifidobacterium_asteroides_PRL2011", 0.714953322652085 ], @@ -3703,7 +3703,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP170", + "SP68", "512565_Actinoplanes_missouriensis_431, 1147128_Bifidobacterium_asteroides_PRL2011", 2.4377521335799184 ], @@ -3726,7 +3726,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP97", + "SP108", "Lactobacillus_delbrueckii, 1384484_Adlercreutzia_equolifaciens_DSM_19450", 0.6458234649956989 ] @@ -3943,7 +3943,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP182", + "SP65", "Lactobacillus_delbrueckii, 35755_Corynebacterium_kutscheri", 0.714953322652085 ] @@ -3972,7 +3972,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 469378_Cryptobacterium_curtum_DSM_15641", 0.6458234649956989 ] @@ -4066,7 +4066,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP101", + "SP112", "Lactobacillus_delbrueckii, 479437_Eggerthella_lenta_DSM_2243", 0.6458234649956989 ] @@ -4160,7 +4160,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -4225,7 +4225,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -4254,7 +4254,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP136", + "SP147", "Lactobacillus_delbrueckii, 156978_Corynebacterium_imitans", 0.714953322652085 ] @@ -4330,7 +4330,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP124", + "SP135", "Lactobacillus_delbrueckii, 1150423_Bifidobacterium_dentium_JCM_1195", 0.714953322652085 ] @@ -4359,7 +4359,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP123", + "SP134", "Lactobacillus_delbrueckii, 864564_Parascardovia_denticolens_DSM_10105", 0.714953322652085 ], @@ -4395,14 +4395,14 @@ [ "Lactobacillus_delbrueckii", "D", - "SP124", + "SP135", "Lactobacillus_delbrueckii, 1150468_Scardovia_inopinata_JCM_12537", 0.714953322652085 ], [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 446470_Stackebrandtia_nassauensis_DSM_44728", 0.714953322652085 ] @@ -4449,7 +4449,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP120", + "SP131", "Lactobacillus_delbrueckii, 864564_Parascardovia_denticolens_DSM_10105", 0.714953322652085 ] @@ -4514,14 +4514,14 @@ [ "Lactobacillus_delbrueckii", "D", - "SP117", + "SP128", "Lactobacillus_delbrueckii, 555970_Bifidobacterium_animalis_subsp_lactis_DSM_10140", 0.714953322652085 ], [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 216594_Mycobacterium_marinum_M", 0.714953322652085 ] @@ -4568,7 +4568,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP102", + "SP113", "Lactobacillus_delbrueckii, 571915_Corynebacterium_mustelae", 0.714953322652085 ] @@ -4615,7 +4615,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP96", + "SP107", "Lactobacillus_delbrueckii, 712411_Olsenella_sp_oral_taxon_807", 0.6458234649956989 ] @@ -4698,7 +4698,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP144", + "SP155", "Lactobacillus_delbrueckii, 203267_Tropheryma_whipplei_str_Twist", 0.714953322652085 ] @@ -4774,7 +4774,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP58", + "SP53", "Lactobacillus_delbrueckii, 471857_Saccharomonospora_viridis_DSM_43017", 0.714953322652085 ] @@ -4839,7 +4839,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 502558_Eggerthella_sp_YY7918", 0.6458234649956989 ] @@ -4933,7 +4933,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP93", + "SP104", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -5017,7 +5017,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP114", + "SP125", "Lactobacillus_delbrueckii, 35755_Corynebacterium_kutscheri", 0.714953322652085 ] @@ -5053,14 +5053,14 @@ [ "Lactobacillus_delbrueckii", "D", - "SP163", + "SP174", "Lactobacillus_delbrueckii, 749414_Streptomyces_bingchenggensis_BCW_1", 0.714953322652085 ], [ "Lactobacillus_delbrueckii", "D", - "SP120", + "SP131", "553190_Gardnerella_vaginalis_409_05, 749414_Streptomyces_bingchenggensis_BCW_1", 2.4377521335799184 ] @@ -5089,7 +5089,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP117", + "SP128", "Lactobacillus_delbrueckii, 864564_Parascardovia_denticolens_DSM_10105", 0.714953322652085 ], @@ -5125,7 +5125,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] @@ -5295,7 +5295,7 @@ [ "Lactobacillus_delbrueckii", "D", - "SP124", + "SP135", "Lactobacillus_delbrueckii, 1150468_Scardovia_inopinata_JCM_12537", 0.714953322652085 ] @@ -5349,21 +5349,21 @@ [ "Lactobacillus_delbrueckii", "D", - "SP115", + "SP127", "864564_Parascardovia_denticolens_DSM_10105, 644284_Arcanobacterium_haemolyticum_DSM_20595", 3.263857479173563 ], [ "Lactobacillus_delbrueckii", "D", - "SP107", + "SP118", "267747_Propionibacterium_acnes_KPA171202, 644284_Arcanobacterium_haemolyticum_DSM_20595", 2.5751456880345054 ], [ "Lactobacillus_delbrueckii", "D", - "SP92", + "SP103", "42256_Rubrobacter_radiotolerans, 644284_Arcanobacterium_haemolyticum_DSM_20595", 0.5 ] @@ -5660,7 +5660,7 @@ [ "Lactobacillus_delbrueckii", "R", - "SP92", + "SP103", "Lactobacillus_delbrueckii, 266117_Rubrobacter_xylanophilus_DSM_9941", 0.5 ] diff --git a/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.json b/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.json index 660a268f..c41f249e 100644 --- a/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.json +++ b/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.json @@ -10,16 +10,6 @@ "[Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11]", "DegV: EDD domain protein, DegV family" ], - [ - "TIGR01023", - 2.0, - 1.0, - 0.6482, - 0.5737, - 0.9895, - "[Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11]", - "rpmG_bact: ribosomal protein bL33" - ], [ "TIGR00180", 2.0, @@ -29,6 +19,16 @@ 1.0, "[Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11]", "parB_part: ParB/RepB/Spo0J family partition protein" + ], + [ + "TIGR00038", + 2.0, + 1.0, + 0.0, + 1.0, + 1.0, + "[Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11]", + "efp: translation elongation factor P" ] ], "hits": { @@ -39,10 +39,6 @@ "Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11", "Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11" ], - "TIGR01023": [ - "Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11", - "Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11" - ], "TIGR00180": [ "Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11", "Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11" @@ -50,6 +46,10 @@ "TIGR00038": [ "Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11", "Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11" + ], + "TIGR01023": [ + "Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11", + "Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11" ] } } \ No newline at end of file diff --git a/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.tsv b/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.tsv index 364055fa..80ca2863 100644 --- a/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.tsv +++ b/.tests/unit/arts_extract/data/data/interim/arts/antismash-7.0.0/GCA_000056065.1/tables/duptable.tsv @@ -1,5 +1,5 @@ #Core_gene Count Ref_median Ref_stdev Ref_RSD Ref_ubiquity [Hits_listed] Description TIGR00762 5.0 1.0 0.8019 0.6842 0.7842 [Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11] DegV: EDD domain protein, DegV family -TIGR01023 2.0 1.0 0.6482 0.5737 0.9895 [Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11] rpmG_bact: ribosomal protein bL33 TIGR00180 2.0 1.0 0.4697 0.8579 1.0 [Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11] parB_part: ParB/RepB/Spo0J family partition protein TIGR00038 2.0 1.0 0.0 1.0 1.0 [Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11] efp: translation elongation factor P +TIGR01023 2.0 1.0 0.6482 0.5737 0.9895 [Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11] rpmG_bact: ribosomal protein bL33 diff --git a/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_all_hits.json b/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_all_hits.json new file mode 100644 index 00000000..c8952c1a --- /dev/null +++ b/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_all_hits.json @@ -0,0 +1 @@ +{"GCA_000056065.1__Cpn10__1__1432":{"core_gene_or_model":"Cpn10","genome_id":"GCA_000056065.1","name":"groS","product":"10 kDa chaperonin","start":"1393993","stop":"1394278","strand":"-1","scaffold":"scaffold_1","sequence_id":"1432","type":"CDS","transl_table":"11","core_table_fkey":"GCA_000056065.1__arts_core__Cpn10","duplication":false,"phylogeny":true,"known_target":false,"duptable_fkey":null,"description":null,"evalue":null,"bitscore":null,"gid":null,"seqtitle":null},"GCA_000056065.1__GrpE__1__1155":{"core_gene_or_model":"GrpE","genome_id":"GCA_000056065.1","name":"grpE","product":"Protein GrpE","start":"1119606","stop":"1120194","strand":"-1","scaffold":"scaffold_1","sequence_id":"1155","type":"CDS","transl_table":"11","core_table_fkey":"GCA_000056065.1__arts_core__GrpE","duplication":false,"phylogeny":false,"known_target":false,"duptable_fkey":null,"description":null,"evalue":null,"bitscore":null,"gid":null,"seqtitle":null},"GCA_000056065.1__Methyltransf_5__1__665":{"core_gene_or_model":"Methyltransf_5","genome_id":"GCA_000056065.1","name":"rsmH","product":"Ribosomal RNA small subunit methyltransferase 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1394278 -1 # ID=1_1432|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__GrpE": { + "#Core_gene": "GrpE", + "Description": "PF01025.15: GrpE", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|grpE|Protein GrpE|loc|1119606 1120194 -1 # ID=1_1155|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Methyltransf_5": { + "#Core_gene": "Methyltransf_5", + "Description": "PF01795.15: MraW methylase family", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|625949 626894 1 # ID=1_665|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__PGK": { + "#Core_gene": "PGK", + "Description": "PF00162.15: Phosphoglycerate kinase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pgk|Phosphoglycerate kinase|loc|541727 542939 1 # ID=1_568|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Ribosomal_L10": { + "#Core_gene": "Ribosomal_L10", + "Description": "PF00466.16: Ribosomal protein L10", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplJ|50S ribosomal protein L10|loc|1421770 1422280 -1 # ID=1_1466|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__Ribosomal_L23": { + "#Core_gene": "Ribosomal_L23", + "Description": "PF00276.16: 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"Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pncB|Nicotinate phosphoribosyltransferase|loc|271257 272781 -1 # ID=1_276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00152": { + "#Core_gene": "TIGR00152", + "Description": "TIGR00152: dephospho-CoA kinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|coaE|Dephospho-CoA kinase|loc|1303283 1303868 -1 # ID=1_1338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00525": { + "#Core_gene": "TIGR00525", + "Description": "folB: dihydroneopterin aldolase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|folB|Dihydroneopterin aldolase|loc|210197 210548 1 # ID=1_214|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01378": { + "#Core_gene": "TIGR01378", + "Description": "thi_PPkinase: thiamine pyrophosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thiN|Thiamine pyrophosphokinase|loc|1208959 1209643 -1 # ID=1_1240|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01496": { + "#Core_gene": "TIGR01496", + "Description": "DHPS: dihydropteroate synthase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|212928 214020 1 # ID=1_217|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01498": { + "#Core_gene": "TIGR01498", + "Description": "folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|folE|GTP cyclohydrolase 1|loc|210544 211618 1 # ID=1_215|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01980": { + "#Core_gene": "TIGR01980", + "Description": "sufB: FeS assembly protein SufB", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1546588 1548016 -1 # ID=1_1602|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01981": { + "#Core_gene": "TIGR01981", + "Description": "sufD: FeS assembly protein SufD", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1549638 1550802 -1 # ID=1_1605|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01994": { + "#Core_gene": "TIGR01994", + "Description": "SUF_scaf_2: SUF system FeS assembly protein, NifU family", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1548016 1548457 -1 # ID=1_1603|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00055": { + "#Core_gene": "TIGR00055", + "Description": "uppS: di-trans,poly-cis-decaprenylcistransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1146640 1147372 -1 # ID=1_1178|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00219": { + "#Core_gene": "TIGR00219", + "Description": "mreC: rod shape-determining protein MreC", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mreC|Cell shape-determining protein MreC|loc|623366 624218 1 # ID=1_660|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00753": { + "#Core_gene": "TIGR00753", + "Description": "undec_PP_bacA: undecaprenyl-diphosphatase UppP", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uppP|Undecaprenyl-diphosphatase|loc|495535 496363 -1 # ID=1_523|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01082": { + "#Core_gene": "TIGR01082", + "Description": "murC: UDP-N-acetylmuramate--L-alanine ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1311707 1313027 -1 # ID=1_1348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01087": { + "#Core_gene": "TIGR01087", + "Description": "murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|630397 631780 1 # ID=1_669|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00065": { + "#Core_gene": "TIGR00065", + "Description": "ftsZ: cell division protein FtsZ", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ftsZ|Cell division protein FtsZ|loc|635219 636578 1 # ID=1_673|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00220": { + "#Core_gene": "TIGR00220", + "Description": "mscL: large conductance mechanosensitive channel protein", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mscL|Large-conductance mechanosensitive channel|loc|270701 271178 1 # ID=1_275|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00647": { + "#Core_gene": "TIGR00647", + "Description": "DNA_bind_WhiA: DNA-binding protein WhiA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|whiA|putative cell division protein WhiA|loc|532796 533729 1 # ID=1_557|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00732": { + "#Core_gene": "TIGR00732", + "Description": "dprA: DNA protecting protein DprA", + "Function": "Cellular processes", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dprA|DNA processing protein DprA|loc|1079889 1080729 -1 # ID=1_1117|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01034": { + "#Core_gene": "TIGR01034", + "Description": "metK: methionine adenosyltransferase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|metK|S-adenosylmethionine synthase|loc|1354481 1355678 -1 # ID=1_1394|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03705": { + "#Core_gene": "TIGR03705", + "Description": "poly_P_kin: polyphosphate kinase 1", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ppk|Polyphosphate kinase|loc|439501 441667 1 # ID=1_460|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01391": { + "#Core_gene": "TIGR01391", + "Description": "dnaG: DNA primase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaG|DNA primase|loc|1054356 1056195 -1 # ID=1_1093|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00042": { + "#Core_gene": "TIGR00042", + "Description": "TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|dITP/XTP pyrophosphatase|loc|1372244 1372865 -1 # ID=1_1414|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00084": { + "#Core_gene": "TIGR00084", + "Description": "ruvA: Holliday junction DNA helicase RuvA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1386901 1387495 -1 # ID=1_1428|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00194": { + "#Core_gene": "TIGR00194", + "Description": "uvrC: excinuclease ABC subunit C", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uvrC|UvrABC system protein C|loc|707983 709786 1 # ID=1_744|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00237": { + "#Core_gene": "TIGR00237", + "Description": "xseA: exodeoxyribonuclease VII, large subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|xseA|Exodeoxyribonuclease 7 large subunit|loc|1224123 1225494 -1 # ID=1_1257|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00281": { + "#Core_gene": "TIGR00281", + "Description": "TIGR00281: segregation and condensation protein B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|scpB|Segregation and condensation protein B|loc|734631 735234 1 # ID=1_771|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00362": { + "#Core_gene": "TIGR00362", + "Description": "DnaA: chromosomal replication initiator protein DnaA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaA|Chromosomal replication initiator protein DnaA|loc|322 1687 1 # ID=1_1|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00416": { + "#Core_gene": "TIGR00416", + "Description": "sms: DNA repair protein RadA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|radA|DNA repair protein RadA|loc|1475149 1476526 -1 # ID=1_1529|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00575": { + "#Core_gene": "TIGR00575", + "Description": "dnlj: DNA ligase, NAD-dependent", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ligA|DNA ligase|loc|392242 394258 1 # ID=1_408|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00577": { + "#Core_gene": "TIGR00577", + "Description": "fpg: DNA-formamidopyrimidine glycosylase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mutM|Formamidopyrimidine-DNA glycosylase|loc|1303876 1304698 -1 # ID=1_1339|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00580": { + "#Core_gene": "TIGR00580", + "Description": "mfd: transcription-repair coupling factor", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|mfd|Transcription-repair-coupling factor|loc|311150 314627 1 # ID=1_317|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00593": { + "#Core_gene": "TIGR00593", + "Description": "pola: DNA polymerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|polA|DNA polymerase I|loc|1304708 1307369 -1 # ID=1_1340|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00595": { + "#Core_gene": "TIGR00595", + "Description": "priA: primosomal protein N'", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|priA|Primosomal protein N|loc|1215594 1217976 -1 # ID=1_1246|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00613": { + "#Core_gene": "TIGR00613", + "Description": "reco: DNA repair protein RecO", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recO|DNA repair protein RecO|loc|1059461 1060211 -1 # ID=1_1096|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00615": { + "#Core_gene": "TIGR00615", + "Description": "recR: recombination protein RecR", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recR|Recombination protein RecR|loc|1405061 1405661 -1 # ID=1_1447|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00630": { + "#Core_gene": "TIGR00630", + "Description": "uvra: excinuclease ABC subunit A", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uvrA|UvrABC system protein A|loc|525284 528140 1 # ID=1_550|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00631": { + "#Core_gene": "TIGR00631", + "Description": "uvrb: excinuclease ABC subunit B", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|uvrB_2|UvrABC system protein B|loc|523252 525295 1 # ID=1_549|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00635": { + "#Core_gene": "TIGR00635", + "Description": "ruvB: Holliday junction DNA helicase RuvB", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1385877 1386888 -1 # ID=1_1427|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00643": { + "#Core_gene": "TIGR00643", + "Description": "recG: ATP-dependent DNA helicase RecG", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recG|ATP-dependent DNA helicase RecG|loc|1195445 1197485 -1 # ID=1_1226|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00663": { + "#Core_gene": "TIGR00663", + "Description": "TIGR00663: dnan: DNA polymerase III, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaN|Beta sliding clamp|loc|1867 2995 1 # ID=1_2|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00665": { + "#Core_gene": "TIGR00665", + "Description": "DnaB: replicative DNA helicase", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaC|Replicative DNA helicase|loc|13075 14446 1 # ID=1_12|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01051": { + "#Core_gene": "TIGR01051", + "Description": "topA_bact: DNA topoisomerase I", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|topA|DNA topoisomerase 1|loc|1077579 1079763 -1 # ID=1_1116|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01059": { + "#Core_gene": "TIGR01059", + "Description": "gyrB: DNA gyrase, B subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gyrB|DNA gyrase subunit B|loc|4578 6540 1 # ID=1_5|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01063": { + "#Core_gene": "TIGR01063", + "Description": "gyrA: DNA gyrase, A subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gyrA|DNA gyrase subunit A|loc|6552 9024 1 # ID=1_6|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01073": { + "#Core_gene": "TIGR01073", + "Description": "pcrA: ATP-dependent DNA helicase PcrA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pcrA|ATP-dependent DNA helicase PcrA|loc|389970 392232 1 # ID=1_407|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01083": { + "#Core_gene": "TIGR01083", + "Description": "nth: endonuclease III", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pdg|Ultraviolet N-glycosylase/AP lyase|loc|866383 867013 1 # ID=1_902|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01128": { + "#Core_gene": "TIGR01128", + "Description": "holA: DNA polymerase III, delta subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|yqeN|putative protein YqeN|loc|662612 663602 1 # ID=1_700|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01280": { + "#Core_gene": "TIGR01280", + "Description": "xseB: exodeoxyribonuclease VII, small subunit", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|xseB|Exodeoxyribonuclease 7 small subunit|loc|1223891 1224131 -1 # ID=1_1256|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01389": { + "#Core_gene": "TIGR01389", + "Description": "recQ: ATP-dependent DNA helicase RecQ", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recQ|ATP-dependent DNA helicase RecQ|loc|704945 706715 1 # ID=1_742|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02012": { + "#Core_gene": "TIGR02012", + "Description": "tigrfam_recA: protein RecA", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recA|Protein RecA|loc|507699 508695 1 # ID=1_535|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02225": { + "#Core_gene": "TIGR02225", + "Description": "recomb_XerD: tyrosine recombinase XerD", + "Function": "DNA metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|xerD_1|Tyrosine recombinase XerD|loc|732657 733554 1 # ID=1_768|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00016": { + "#Core_gene": "TIGR00016", + "Description": "ackA: acetate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ackA|Acetate kinase|loc|579934 581122 1 # ID=1_616|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00021": { + "#Core_gene": "TIGR00021", + "Description": "rpiA: ribose 5-phosphate isomerase A", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpiA|Ribose-5-phosphate isomerase A|loc|446570 447263 1 # ID=1_468|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00419": { + "#Core_gene": "TIGR00419", + "Description": "tim: triose-phosphate isomerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tpiA|Triosephosphate isomerase|loc|542957 543716 1 # ID=1_569|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00651": { + "#Core_gene": "TIGR00651", + "Description": "pta: phosphate acetyltransferase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pta|Phosphate acetyltransferase|loc|547016 548006 1 # ID=1_575|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00871": { + "#Core_gene": "TIGR00871", + "Description": "zwf: glucose-6-phosphate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1383852 1385301 -1 # ID=1_1425|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00962": { + "#Core_gene": "TIGR00962", + "Description": "atpA: ATP synthase F1, alpha subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpA|ATP synthase subunit alpha|loc|600266 601778 1 # ID=1_637|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01039": { + "#Core_gene": "TIGR01039", + "Description": "atpD: ATP synthase F1, beta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpD|ATP synthase subunit beta|loc|602770 604210 1 # ID=1_639|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01060": { + "#Core_gene": "TIGR01060", + "Description": "eno: phosphopyruvate hydratase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|eno|Enolase|loc|1096011 1097289 1 # ID=1_1135|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01064": { + "#Core_gene": "TIGR01064", + "Description": "pyruv_kin: pyruvate kinase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pyk|Pyruvate kinase|loc|728461 730231 1 # ID=1_763|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01131": { + "#Core_gene": "TIGR01131", + "Description": "ATP_synt_6_or_A: ATP synthase F0, A subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpB|ATP synthase subunit a|loc|598179 598899 1 # ID=1_633|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01144": { + "#Core_gene": "TIGR01144", + "Description": "ATP_synt_b: ATP synthase F0, B subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpF|ATP synthase subunit b|loc|599195 599702 1 # ID=1_635|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01145": { + "#Core_gene": "TIGR01145", + "Description": "ATP_synt_delta: ATP synthase F1, delta subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpH_2|ATP synthase subunit delta|loc|599701 600244 1 # ID=1_636|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01146": { + "#Core_gene": "TIGR01146", + "Description": "ATPsyn_F1gamma: ATP synthase F1, gamma subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpG|ATP synthase gamma chain|loc|601788 602751 1 # ID=1_638|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01216": { + "#Core_gene": "TIGR01216", + "Description": "ATP_synt_epsi: ATP synthase F1, epsilon subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpC|ATP synthase epsilon chain|loc|604221 604662 1 # ID=1_640|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01260": { + "#Core_gene": "TIGR01260", + "Description": "ATP_synt_c: ATP synthase F0, C subunit", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|atpH_1|ATP synthase subunit c|loc|598917 599142 1 # ID=1_634|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01534": { + "#Core_gene": "TIGR01534", + "Description": "GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|540614 541631 1 # ID=1_567|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01771": { + "#Core_gene": "TIGR01771", + "Description": "L-LDH-NAD: L-lactate dehydrogenase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ldh|L-lactate dehydrogenase|loc|99904 100828 -1 # ID=1_104|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00121": { + "#Core_gene": "TIGR00121", + "Description": "birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|birA|Bifunctional ligase/repressor BirA|loc|798597 799263 1 # ID=1_830|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00357": { + "#Core_gene": "TIGR00357", + "Description": "TIGR00357: methionine-R-sulfoxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1649159 1649585 -1 # ID=1_1723|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00401": { + "#Core_gene": "TIGR00401", + "Description": "msrA: peptide-methionine (S)-S-oxide reductase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|msrA|Peptide methionine sulfoxide reductase MsrA|loc|571234 571762 1 # ID=1_603|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00077": { + "#Core_gene": "TIGR00077", + "Description": "lspA: signal peptidase II", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lspA|Lipoprotein signal peptidase|loc|881194 881647 1 # ID=1_916|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00079": { + "#Core_gene": "TIGR00079", + "Description": "pept_deformyl: peptide deformylase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|def2|Peptide deformylase 2|loc|653135 653690 -1 # ID=1_691|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00115": { + "#Core_gene": "TIGR00115", + "Description": "tig: trigger factor", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tig|Trigger factor|loc|668841 670161 1 # ID=1_706|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00500": { + "#Core_gene": "TIGR00500", + "Description": "met_pdase_I: methionine aminopeptidase, type I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|map|Methionine aminopeptidase 1|loc|471238 472066 1 # ID=1_492|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00504": { + "#Core_gene": "TIGR00504", + "Description": "pyro_pdase: pyroglutamyl-peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pcp|Pyrrolidone-carboxylate peptidase|loc|993222 993834 -1 # ID=1_1038|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00544": { + "#Core_gene": "TIGR00544", + "Description": "lgt: prolipoprotein diacylglyceryl transferase", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|520272 521106 1 # ID=1_546|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00810": { + "#Core_gene": "TIGR00810", + "Description": "secG: preprotein translocase, SecG subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secG|putative protein-export membrane protein SecG|loc|1560085 1560319 -1 # ID=1_1619|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00963": { + "#Core_gene": "TIGR00963", + "Description": "secA: preprotein translocase, SecA subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secA|Protein translocase subunit SecA|loc|515417 517820 1 # ID=1_542|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00964": { + "#Core_gene": "TIGR00964", + "Description": "secE_bact: preprotein translocase, SecE subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secE|Protein translocase subunit SecE|loc|1429566 1429737 -1 # ID=1_1475|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00967": { + "#Core_gene": "TIGR00967", + "Description": "3a0501s007: preprotein translocase, SecY subunit", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|secY|Protein translocase subunit SecY|loc|355593 356889 1 # ID=1_366|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02227": { + "#Core_gene": "TIGR02227", + "Description": "sigpep_I_bact: signal peptidase I", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|spsB|Signal peptidase IB|loc|1028498 1029065 1 # ID=1_1069|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02348": { + "#Core_gene": "TIGR02348", + "Description": "GroEL: chaperonin GroL", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|groL|60 kDa chaperonin|loc|1392353 1393967 -1 # ID=1_1431|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02350": { + "#Core_gene": "TIGR02350", + "Description": "prok_dnaK: chaperone protein DnaK", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaK|Chaperone protein DnaK|loc|1117702 1119547 -1 # ID=1_1154|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03534": { + "#Core_gene": "TIGR03534", + "Description": "RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|prmC_1|Release factor glutamine methyltransferase|loc|595503 596346 1 # ID=1_630|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00186": { + "#Core_gene": "TIGR00186", + "Description": "rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1433794 1434544 -1 # ID=1_1485|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00398": { + "#Core_gene": "TIGR00398", + "Description": "metG: methionine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|metG|Methionine--tRNA ligase|loc|290069 292052 1 # ID=1_296|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00001": { + "#Core_gene": "TIGR00001", + "Description": "rpmI_bact: ribosomal protein bL35", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmI|50S ribosomal protein L35|loc|1294459 1294660 -1 # ID=1_1329|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00008": { + "#Core_gene": "TIGR00008", + "Description": "infA: translation initiation factor IF-1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|infA|Translation initiation factor IF-1|loc|357628 357850 1 # ID=1_368|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00009": { + "#Core_gene": "TIGR00009", + "Description": "L28: ribosomal protein bL28", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmB|50S ribosomal protein L28|loc|1199706 1199892 1 # ID=1_1229|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00012": { + "#Core_gene": "TIGR00012", + "Description": "L29: ribosomal protein uL29", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmC|50S ribosomal protein L29|loc|351145 351343 1 # ID=1_355|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00019": { + "#Core_gene": "TIGR00019", + "Description": "prfA: peptide chain release factor 1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|prfA|Peptide chain release factor 1|loc|594425 595511 1 # ID=1_629|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00020": { + "#Core_gene": "TIGR00020", + "Description": "prfB: peptide chain release factor 2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|prfB|Peptide chain release factor 2|loc|518026 519025 1 # ID=1_543|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00029": { + "#Core_gene": "TIGR00029", + "Description": "S20: ribosomal protein bS20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsT|30S ribosomal protein S20|loc|663694 663946 -1 # ID=1_701|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00038": { + "#Core_gene": "TIGR00038", + "Description": "efp: translation elongation factor P", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00057": { + "#Core_gene": "TIGR00057", + "Description": "TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ywlC|Threonylcarbamoyl-AMP synthase|loc|596345 597341 1 # ID=1_631|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00059": { + "#Core_gene": "TIGR00059", + "Description": "L17: ribosomal protein bL17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplQ|50S ribosomal protein L17|loc|359780 360164 1 # ID=1_372|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00060": { + "#Core_gene": "TIGR00060", + "Description": "L18_bact: ribosomal protein uL18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplR|50S ribosomal protein L18|loc|354047 354407 1 # ID=1_362|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00061": { + "#Core_gene": "TIGR00061", + "Description": "L21: ribosomal protein bL21", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplU|50S ribosomal protein L21|loc|1229445 1229757 -1 # ID=1_1264|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00062": { + "#Core_gene": "TIGR00062", + "Description": "L27: ribosomal protein bL27", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmA|50S ribosomal protein L27|loc|1229130 1229430 -1 # ID=1_1263|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00071": { + "#Core_gene": "TIGR00071", + "Description": "hisT_truA: tRNA pseudouridine(38-40) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|truA|tRNA pseudouridine synthase A|loc|362830 363619 1 # ID=1_376|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00086": { + "#Core_gene": "TIGR00086", + "Description": "smpB: SsrA-binding protein", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|smpB|SsrA-binding protein|loc|1557165 1557627 -1 # ID=1_1617|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00088": { + "#Core_gene": "TIGR00088", + "Description": "trmD: tRNA (guanine(37)-N(1))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1175461 1176199 -1 # ID=1_1206|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00090": { + "#Core_gene": "TIGR00090", + "Description": "rsfS_iojap_ybeB: ribosome silencing factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsfS|Ribosomal silencing factor RsfS|loc|1291216 1291564 -1 # ID=1_1324|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00105": { + "#Core_gene": "TIGR00105", + "Description": "L31: ribosomal protein bL31", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmE2|50S ribosomal protein L31 type B|loc|304788 305040 1 # ID=1_310|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00116": { + "#Core_gene": "TIGR00116", + "Description": "tsf: translation elongation factor Ts", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tsf|Elongation factor Ts|loc|1148806 1149835 -1 # ID=1_1181|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00133": { + "#Core_gene": "TIGR00133", + "Description": "gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|397164 398595 1 # ID=1_412|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00135": { + "#Core_gene": "TIGR00135", + "Description": "gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|395411 395717 1 # ID=1_410|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00150": { + "#Core_gene": "TIGR00150", + "Description": "T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|548016 548502 1 # ID=1_576|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00157": { + "#Core_gene": "TIGR00157", + "Description": "TIGR00157: ribosome small subunit-dependent GTPase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1209672 1210566 -1 # ID=1_1241|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00158": { + "#Core_gene": "TIGR00158", + "Description": "L9: ribosomal protein bL9", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplI|50S ribosomal protein L9|loc|12596 13052 1 # ID=1_11|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00165": { + "#Core_gene": "TIGR00165", + "Description": "S18: ribosomal protein bS18", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsR|30S ribosomal protein S18|loc|10175 10412 1 # ID=1_9|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00166": { + "#Core_gene": "TIGR00166", + "Description": "S6: ribosomal protein bS6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsF|30S ribosomal protein S6|loc|9239 9533 1 # ID=1_7|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00168": { + "#Core_gene": "TIGR00168", + "Description": "infC: translation initiation factor IF-3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|infC|Translation initiation factor IF-3|loc|1294680 1295202 -1 # ID=1_1330|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00174": { + "#Core_gene": "TIGR00174", + "Description": "miaA: tRNA dimethylallyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|miaA|tRNA dimethylallyltransferase|loc|1272002 1272929 -1 # ID=1_1304|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00233": { + "#Core_gene": "TIGR00233", + "Description": "trpS: tryptophan--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|trpS2|Tryptophan--tRNA ligase 2|loc|284780 285806 1 # ID=1_292|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00234": { + "#Core_gene": "TIGR00234", + "Description": "tyrS: tyrosine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tyrS|Tyrosine--tRNA ligase|loc|219424 220690 1 # ID=1_224|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00256": { + "#Core_gene": "TIGR00256", + "Description": "TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dtd|D-aminoacyl-tRNA deacylase|loc|778556 778994 1 # ID=1_808|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00344": { + "#Core_gene": "TIGR00344", + "Description": "alaS: alanine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|alaS|Alanine--tRNA ligase|loc|1377489 1380123 -1 # ID=1_1421|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00392": { + "#Core_gene": "TIGR00392", + "Description": "ileS: isoleucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ileS|Isoleucine--tRNA ligase|loc|638487 641283 1 # ID=1_677|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00396": { + "#Core_gene": "TIGR00396", + "Description": "leuS_bact: leucine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|leuS|Leucine--tRNA ligase|loc|1348307 1350722 -1 # ID=1_1389|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00409": { + "#Core_gene": "TIGR00409", + "Description": "proS_fam_II: proline--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|proS|Proline--tRNA ligase|loc|1142843 1144541 -1 # ID=1_1175|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00414": { + "#Core_gene": "TIGR00414", + "Description": "serS: serine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|serS|Serine--tRNA ligase|loc|1580697 1582005 -1 # ID=1_1639|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00418": { + "#Core_gene": "TIGR00418", + "Description": "thrS: threonine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thrS|Threonine--tRNA ligase|loc|1298298 1300230 -1 # ID=1_1334|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00422": { + "#Core_gene": "TIGR00422", + "Description": "valS: valine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|valS|Valine--tRNA ligase|loc|616950 619590 1 # ID=1_655|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00431": { + "#Core_gene": "TIGR00431", + "Description": "TruB: tRNA pseudouridine(55) synthase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|truB|tRNA pseudouridine synthase B|loc|1132243 1133140 -1 # ID=1_1167|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00435": { + "#Core_gene": "TIGR00435", + "Description": "cysS: cysteine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|cysS|Cysteine--tRNA ligase|loc|1434966 1436391 -1 # ID=1_1487|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00442": { + "#Core_gene": "TIGR00442", + "Description": "hisS: histidine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|hisS|Histidine--tRNA ligase|loc|779277 780564 1 # ID=1_809|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00447": { + "#Core_gene": "TIGR00447", + "Description": "pth: aminoacyl-tRNA hydrolase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pth|Peptidyl-tRNA hydrolase|loc|310576 311134 1 # ID=1_316|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00456": { + "#Core_gene": "TIGR00456", + "Description": "argS: arginine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|argS|Arginine--tRNA ligase|loc|699214 700912 1 # ID=1_737|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00459": { + "#Core_gene": "TIGR00459", + "Description": "aspS_bact: aspartate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|aspS|Aspartate--tRNA ligase|loc|780579 782424 1 # ID=1_810|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00464": { + "#Core_gene": "TIGR00464", + "Description": "gltX_bact: glutamate--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gltX|Glutamate--tRNA ligase|loc|1439736 1441239 -1 # ID=1_1491|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00468": { + "#Core_gene": "TIGR00468", + "Description": "pheS: phenylalanine--tRNA ligase, alpha subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1283031 1284081 -1 # ID=1_1315|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00472": { + "#Core_gene": "TIGR00472", + "Description": "pheT_bact: phenylalanine--tRNA ligase, beta subunit", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1280620 1283032 -1 # ID=1_1314|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00496": { + "#Core_gene": "TIGR00496", + "Description": "frr: ribosome recycling factor", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|frr|Ribosome-recycling factor|loc|1147374 1147932 -1 # ID=1_1179|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00499": { + "#Core_gene": "TIGR00499", + "Description": "lysS_bact: lysine--tRNA ligase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lysS|Lysine--tRNA ligase|loc|324828 326334 1 # ID=1_327|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00755": { + "#Core_gene": "TIGR00755", + "Description": "ksgA: ribosomal RNA small subunit methyltransferase A", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|293361 294252 1 # ID=1_299|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00855": { + "#Core_gene": "TIGR00855", + "Description": "L12: ribosomal protein bL12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplL|50S ribosomal protein L7/L12|loc|1421352 1421718 -1 # ID=1_1465|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00952": { + "#Core_gene": "TIGR00952", + "Description": "S15_bact: ribosomal protein uS15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsO|30S ribosomal protein S15|loc|664149 664419 1 # ID=1_702|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00981": { + "#Core_gene": "TIGR00981", + "Description": "rpsL_bact: ribosomal protein uS12", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsL|30S ribosomal protein S12|loc|343208 343616 1 # ID=1_343|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01009": { + "#Core_gene": "TIGR01009", + "Description": "rpsC_bact: ribosomal protein uS3", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsC|30S ribosomal protein S3|loc|350041 350713 1 # ID=1_353|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01011": { + "#Core_gene": "TIGR01011", + "Description": "rpsB_bact: ribosomal protein uS2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsB|30S ribosomal protein S2|loc|1149897 1150659 -1 # ID=1_1182|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01017": { + "#Core_gene": "TIGR01017", + "Description": "rpsD_bact: ribosomal protein uS4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsD|30S ribosomal protein S4|loc|610876 611488 -1 # ID=1_650|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01021": { + "#Core_gene": "TIGR01021", + "Description": "rpsE_bact: ribosomal protein uS5", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsE|30S ribosomal protein S5|loc|354423 354936 1 # ID=1_363|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01023": { + "#Core_gene": "TIGR01023", + "Description": "rpmG_bact: ribosomal protein bL33", + "Function": "Protein synthesis", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01024": { + "#Core_gene": "TIGR01024", + "Description": "rplS_bact: ribosomal protein bL19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplS|50S ribosomal protein L19|loc|1172222 1172570 -1 # ID=1_1201|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01029": { + "#Core_gene": "TIGR01029", + "Description": "rpsG_bact: ribosomal protein uS7", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsG|30S ribosomal protein S7|loc|343631 344102 1 # ID=1_344|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01030": { + "#Core_gene": "TIGR01030", + "Description": "rpmH_bact: ribosomal protein bL34", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmH|50S ribosomal protein L34|loc|1864704 1864845 -1 # ID=1_1942|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01031": { + "#Core_gene": "TIGR01031", + "Description": "rpmF_bact: ribosomal protein bL32", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmF|50S ribosomal protein L32|loc|715058 715250 1 # ID=1_750|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01032": { + "#Core_gene": "TIGR01032", + "Description": "rplT_bact: ribosomal protein bL20", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplT|50S ribosomal protein L20|loc|1294058 1294415 -1 # ID=1_1328|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01044": { + "#Core_gene": "TIGR01044", + "Description": "rplV_bact: ribosomal protein uL22", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplV|50S ribosomal protein L22|loc|349674 350028 1 # ID=1_352|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01049": { + "#Core_gene": "TIGR01049", + "Description": "rpsJ_bact: ribosomal protein uS10", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsJ|30S ribosomal protein S10|loc|346606 346915 1 # ID=1_346|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01050": { + "#Core_gene": "TIGR01050", + "Description": "rpsS_bact: ribosomal protein uS19", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsS|30S ribosomal protein S19|loc|349377 349653 1 # ID=1_351|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01066": { + "#Core_gene": "TIGR01066", + "Description": "rplM_bact: ribosomal protein uL13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplM|50S ribosomal protein L13|loc|363724 364168 1 # ID=1_377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01067": { + "#Core_gene": "TIGR01067", + "Description": "rplN_bact: ribosomal protein uL14", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplN|50S ribosomal protein L14|loc|351658 352027 1 # ID=1_357|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01071": { + "#Core_gene": "TIGR01071", + "Description": "rplO_bact: ribosomal protein uL15", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplO|50S ribosomal protein L15|loc|355153 355594 1 # ID=1_365|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01079": { + "#Core_gene": "TIGR01079", + "Description": "rplX_bact: ribosomal protein uL24", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplX|50S ribosomal protein L24|loc|352043 352283 1 # ID=1_358|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01164": { + "#Core_gene": "TIGR01164", + "Description": "rplP_bact: ribosomal protein uL16", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplP|50S ribosomal protein L16|loc|350712 351156 1 # ID=1_354|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01169": { + "#Core_gene": "TIGR01169", + "Description": "rplA_bact: ribosomal protein uL1", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplA|50S ribosomal protein L1|loc|1427590 1428286 -1 # ID=1_1472|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01171": { + "#Core_gene": "TIGR01171", + "Description": "rplB_bact: ribosomal protein uL2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplB|50S ribosomal protein L2|loc|348523 349360 1 # ID=1_350|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01308": { + "#Core_gene": "TIGR01308", + "Description": "rpmD_bact: ribosomal protein uL30", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmD|50S ribosomal protein L30|loc|354947 355133 1 # ID=1_364|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01632": { + "#Core_gene": "TIGR01632", + "Description": "L11_bact: ribosomal protein uL11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplK|50S ribosomal protein L11|loc|1428369 1428795 -1 # ID=1_1473|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02729": { + "#Core_gene": "TIGR02729", + "Description": "Obg_CgtA: Obg family GTPase CgtA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|obg|GTPase Obg|loc|709923 711177 1 # ID=1_745|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03631": { + "#Core_gene": "TIGR03631", + "Description": "uS13_bact: ribosomal protein uS13", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsM|30S ribosomal protein S13|loc|358006 358357 1 # ID=1_369|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03632": { + "#Core_gene": "TIGR03632", + "Description": "uS11_bact: ribosomal protein uS11", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsK|30S ribosomal protein S11|loc|358385 358775 1 # ID=1_370|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03635": { + "#Core_gene": "TIGR03635", + "Description": "uS17_bact: ribosomal protein uS17", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpsQ|30S ribosomal protein S17|loc|351361 351628 1 # ID=1_356|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03654": { + "#Core_gene": "TIGR03654", + "Description": "L6_bact: ribosomal protein uL6", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplF|50S ribosomal protein L6|loc|353490 354021 1 # ID=1_361|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03953": { + "#Core_gene": "TIGR03953", + "Description": "rplD_bact: 50S ribosomal protein uL4", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplD|50S ribosomal protein L4|loc|347584 348202 1 # ID=1_348|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00878": { + "#Core_gene": "TIGR00878", + "Description": "purM: phosphoribosylformylglycinamidine cyclo-ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1234964 1236014 -1 # ID=1_1271|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01161": { + "#Core_gene": "TIGR01161", + "Description": "purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1242998 1244123 -1 # ID=1_1278|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01162": { + "#Core_gene": "TIGR01162", + "Description": "purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1244112 1244604 -1 # ID=1_1279|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00017": { + "#Core_gene": "TIGR00017", + "Description": "cmk: cytidylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|cmk|Cytidylate kinase|loc|737485 738118 1 # ID=1_775|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00081": { + "#Core_gene": "TIGR00081", + "Description": "purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1240613 1241336 -1 # ID=1_1276|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00302": { + "#Core_gene": "TIGR00302", + "Description": "TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1240360 1240609 -1 # ID=1_1275|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00355": { + "#Core_gene": "TIGR00355", + "Description": "purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purH|Bifunctional purine biosynthesis protein PurH|loc|1232841 1234383 -1 # ID=1_1269|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01134": { + "#Core_gene": "TIGR01134", + "Description": "purF: amidophosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purF|Amidophosphoribosyltransferase|loc|1236010 1237489 -1 # ID=1_1272|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01736": { + "#Core_gene": "TIGR01736", + "Description": "FGAM_synth_II: phosphoribosylformylglycinamidine synthase II", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1237464 1239687 -1 # ID=1_1273|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02487": { + "#Core_gene": "TIGR02487", + "Description": "NrdD: anaerobic ribonucleoside-triphosphate reductase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|180997 183208 1 # ID=1_187|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03263": { + "#Core_gene": "TIGR03263", + "Description": "guanyl_kin: guanylate kinase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|gmk_1|Guanylate kinase|loc|1218261 1218876 -1 # ID=1_1248|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03284": { + "#Core_gene": "TIGR03284", + "Description": "thym_sym: thymidylate synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thyA|Thymidylate synthase|loc|678300 679257 1 # ID=1_717|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01953": { + "#Core_gene": "TIGR01953", + "Description": "NusA: transcription termination factor NusA", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nusA|Transcription termination/antitermination protein NusA|loc|1136667 1137888 -1 # ID=1_1172|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02393": { + "#Core_gene": "TIGR02393", + "Description": "RpoD_Cterm: RNA polymerase sigma factor RpoD", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|sigA_2|RNA polymerase sigma factor SigA|loc|1053266 1054385 -1 # ID=1_1092|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00082": { + "#Core_gene": "TIGR00082", + "Description": "rbfA: ribosome-binding factor A", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rbfA|Ribosome-binding factor A|loc|1133190 1133553 -1 # ID=1_1168|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00188": { + "#Core_gene": "TIGR00188", + "Description": "rnpA: ribonuclease P protein component", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rnpA|Ribonuclease P protein component|loc|1864290 1864656 -1 # ID=1_1941|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00690": { + "#Core_gene": "TIGR00690", + "Description": "rpoZ: DNA-directed RNA polymerase, omega subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1218038 1218260 -1 # ID=1_1247|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00922": { + "#Core_gene": "TIGR00922", + "Description": "nusG: transcription termination/antitermination factor NusG", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nusG|Transcription termination/antitermination protein NusG|loc|1428920 1429475 -1 # ID=1_1474|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01951": { + "#Core_gene": "TIGR01951", + "Description": "nusB: transcription antitermination factor NusB", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nusB|Transcription antitermination protein NusB|loc|1226390 1226789 -1 # ID=1_1259|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02013": { + "#Core_gene": "TIGR02013", + "Description": "TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit", + "Function": "", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "Yes", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoB|DNA-directed RNA polymerase subunit beta|loc|334509 338184 1 # ID=1_338|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02027": { + "#Core_gene": "TIGR02027", + "Description": "rpoA: DNA-directed RNA polymerase, alpha subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoA|DNA-directed RNA polymerase subunit alpha|loc|358818 359757 1 # ID=1_371|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02191": { + "#Core_gene": "TIGR02191", + "Description": "RNaseIII: ribonuclease III", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rnc|Ribonuclease 3|loc|1185313 1186009 -1 # ID=1_1217|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02273": { + "#Core_gene": "TIGR02273", + "Description": "16S_RimM: 16S rRNA processing protein RimM", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rimM|Ribosome maturation factor RimM|loc|1176198 1176702 -1 # ID=1_1207|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02386": { + "#Core_gene": "TIGR02386", + "Description": "rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit", + "Function": "Transcription", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpoC|DNA-directed RNA polymerase subunit beta|loc|338199 341865 1 # ID=1_339|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR02349": { + "#Core_gene": "TIGR02349", + "Description": "DnaJ_bact: chaperone protein DnaJ", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|dnaJ|Chaperone protein DnaJ|loc|1116483 1117620 -1 # ID=1_1153|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03625": { + "#Core_gene": "TIGR03625", + "Description": "L3_bact: 50S ribosomal protein uL3", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rplC|50S ribosomal protein L3|loc|346940 347570 1 # ID=1_347|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00180": { + "#Core_gene": "TIGR00180", + "Description": "parB_part: ParB/RepB/Spo0J family partition protein", + "Function": "Unclassified", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00196": { + "#Core_gene": "TIGR00196", + "Description": "yjeF_cterm: YjeF family C-terminal domain", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1338272 1339139 -1 # ID=1_1377|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00092": { + "#Core_gene": "TIGR00092", + "Description": "TIGR00092: GTP-binding protein YchF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ychF|Ribosome-binding ATPase YchF|loc|1718716 1719817 -1 # ID=1_1791|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00250": { + "#Core_gene": "TIGR00250", + "Description": "RNAse_H_YqgF: putative transcription antitermination factor YqgF", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|yrrK|Putative pre-16S rRNA nuclease|loc|1376738 1377167 -1 # ID=1_1419|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00257": { + "#Core_gene": "TIGR00257", + "Description": "IMPACT_YIGZ: uncharacterized protein, YigZ family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|yigZ|IMPACT family member YigZ|loc|511956 512616 -1 # ID=1_538|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00481": { + "#Core_gene": "TIGR00481", + "Description": "TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|369355 369847 1 # ID=1_386|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00486": { + "#Core_gene": "TIGR00486", + "Description": "YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|GTP cyclohydrolase 1 type 2|loc|1030993 1031791 -1 # ID=1_1072|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01448": { + "#Core_gene": "TIGR01448", + "Description": "recD_rel: helicase, RecD/TraA family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|recD2|ATP-dependent RecD-like DNA helicase|loc|647109 649500 1 # ID=1_687|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00103": { + "#Core_gene": "TIGR00103", + "Description": "DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|Nucleoid-associated protein|loc|1405662 1405992 -1 # ID=1_1448|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03156": { + "#Core_gene": "TIGR03156", + "Description": "GTP_HflX: GTP-binding protein HflX", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|hflX|GTPase HflX|loc|1681367 1682648 1 # ID=1_1755|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00762": { + "#Core_gene": "TIGR00762", + "Description": "DegV: EDD domain protein, DegV family", + "Function": "Unknown function", + "Duplication": "Yes", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01393": { + "#Core_gene": "TIGR01393", + "Description": "lepA: elongation factor 4", + "Function": "Unknown function", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|lepA|Elongation factor 4|loc|1114523 1116362 -1 # ID=1_1152|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01417": { + "#Core_gene": "TIGR01417", + "Description": "PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|487286 489014 1 # ID=1_512|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00337": { + "#Core_gene": "TIGR00337", + "Description": "PyrG: CTP synthase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pyrG|CTP synthase|loc|301678 303298 1 # ID=1_308|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00877": { + "#Core_gene": "TIGR00877", + "Description": "purD: phosphoribosylamine--glycine ligase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|purD|Phosphoribosylamine--glycine ligase|loc|1231560 1232826 -1 # ID=1_1268|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01091": { + "#Core_gene": "TIGR01091", + "Description": "upp: uracil phosphoribosyltransferase", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|upp|Uracil phosphoribosyltransferase|loc|597440 598070 1 # ID=1_632|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01369": { + "#Core_gene": "TIGR01369", + "Description": "CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit", + "Function": "Purines, pyrimidines, nucleosides, and nucleotides", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|carB_9|Carbamoyl-phosphate synthase large chain|loc|1768786 1770661 -1 # ID=1_1842|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00479": { + "#Core_gene": "TIGR00479", + "Description": "rumA: 23S rRNA (uracil-5-)-methyltransferase RumA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|putative RNA methyltransferase|loc|400342 401698 1 # ID=1_415|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|475828 477211 -1 # ID=1_497|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00484": { + "#Core_gene": "TIGR00484", + "Description": "EF-G: translation elongation factor G", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|fusA|Elongation factor G|loc|344135 346220 1 # ID=1_345|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00485": { + "#Core_gene": "TIGR00485", + "Description": "EF-Tu: translation elongation factor Tu", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tuf|Elongation factor Tu|loc|667467 668658 1 # ID=1_705|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00487": { + "#Core_gene": "TIGR00487", + "Description": "IF-2: translation initiation factor IF-2", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|infB|Translation initiation factor IF-2|loc|1133565 1136043 -1 # ID=1_1169|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00563": { + "#Core_gene": "TIGR00563", + "Description": "rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1213323 1214640 -1 # ID=1_1244|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03594": { + "#Core_gene": "TIGR03594", + "Description": "GTPase_EngA: ribosome-associated GTPase EngA", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|der|GTPase Der|loc|739487 740795 1 # ID=1_777|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR03725": { + "#Core_gene": "TIGR03725", + "Description": "T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1398961 1399684 -1 # ID=1_1437|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00382": { + "#Core_gene": "TIGR00382", + "Description": "clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|670312 671566 1 # ID=1_707|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00959": { + "#Core_gene": "TIGR00959", + "Description": "ffh: signal recognition particle protein", + "Function": "Protein fate", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ffh|Signal recognition particle protein|loc|1177130 1178561 -1 # ID=1_1209|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00560": { + "#Core_gene": "TIGR00560", + "Description": "pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase", + "Function": "Fatty acid and phospholipid metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|506930 507494 1 # ID=1_534|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00218": { + "#Core_gene": "TIGR00218", + "Description": "manA: mannose-6-phosphate isomerase, class I", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|manA|Mannose-6-phosphate isomerase ManA|loc|51009 51978 1 # ID=1_52|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01135": { + "#Core_gene": "TIGR01135", + "Description": "glmS: glutamine-fructose-6-phosphate transaminase (isomerizing)", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|413882 415694 1 # ID=1_433|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01455": { + "#Core_gene": "TIGR01455", + "Description": "glmM: phosphoglucosamine mutase", + "Function": "Central intermediary metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|glmM|Phosphoglucosamine mutase|loc|555798 557151 1 # ID=1_586|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00179": { + "#Core_gene": "TIGR00179", + "Description": "murB: UDP-N-acetylenolpyruvoylglucosamine reductase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "Yes", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|549234 550128 1 # ID=1_578|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00521": { + "#Core_gene": "TIGR00521", + "Description": "coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase", + "Function": "Biosynthesis of cofactors, prosthetic groups, and carriers", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|701616 702816 1 # ID=1_739|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01430": { + "#Core_gene": "TIGR01430", + "Description": "aden_deam: adenosine deaminase", + "Function": "Unclassified", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|add|Adenosine deaminase|loc|1262376 1263369 -1 # ID=1_1295|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00191": { + "#Core_gene": "TIGR00191", + "Description": "thrB: homoserine kinase", + "Function": "Amino acid biosynthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|thrB_2|Homoserine kinase|loc|1496783 1497647 -1 # ID=1_1553|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01163": { + "#Core_gene": "TIGR01163", + "Description": "rpe: ribulose-phosphate 3-epimerase", + "Function": "Energy metabolism", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpe|Ribulose-phosphate 3-epimerase|loc|445907 446558 1 # ID=1_467|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR01072": { + "#Core_gene": "TIGR01072", + "Description": "murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase", + "Function": "Cell envelope", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|303417 304689 1 # ID=1_309|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_core__TIGR00043": { + "#Core_gene": "TIGR00043", + "Description": "TIGR00043: rRNA maturation RNase YbeY", + "Function": "Protein synthesis", + "Duplication": "No", + "BGC_Proximity": "No", + "Phylogeny": "No", + "Known_target": "No", + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|ybeY|Endoribonuclease YbeY|loc|1061520 1062045 -1 # ID=1_1099|Type=CDS|transl_table=11]", + "genome_id": "GCA_000056065.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_duptable_summary.json b/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_duptable_summary.json new file mode 100644 index 00000000..f4778630 --- /dev/null +++ b/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_duptable_summary.json @@ -0,0 +1,46 @@ +{ + "GCA_000056065.1__arts_dup__TIGR00762": { + "#Core_gene": "TIGR00762", + "Count": 5.0, + "Ref_median": 1.0, + "Ref_stdev": 0.8019, + "Ref_RSD": 0.6842, + "Ref_ubiquity": 0.7842, + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11]", + "Description": "DegV: EDD domain protein, DegV family", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_dup__TIGR00180": { + "#Core_gene": "TIGR00180", + "Count": 2.0, + "Ref_median": 1.0, + "Ref_stdev": 0.4697, + "Ref_RSD": 0.8579, + "Ref_ubiquity": 1.0, + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11]", + "Description": "parB_part: ParB/RepB/Spo0J family partition protein", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_dup__TIGR00038": { + "#Core_gene": "TIGR00038", + "Count": 2.0, + "Ref_median": 1.0, + "Ref_stdev": 0.0, + "Ref_RSD": 1.0, + "Ref_ubiquity": 1.0, + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11]", + "Description": "efp: translation elongation factor P", + "genome_id": "GCA_000056065.1" + }, + "GCA_000056065.1__arts_dup__TIGR01023": { + "#Core_gene": "TIGR01023", + "Count": 2.0, + "Ref_median": 1.0, + "Ref_stdev": 0.6482, + "Ref_RSD": 0.5737, + "Ref_ubiquity": 0.9895, + "[Hits_listed]": "[Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11]", + "Description": "rpmG_bact: ribosomal protein bL33", + "genome_id": "GCA_000056065.1" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_knownhits.json b/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_knownhits.json new file mode 100644 index 00000000..bda1645f --- /dev/null +++ b/.tests/unit/arts_extract/expected/data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_knownhits.json @@ -0,0 +1,272 @@ +{ + "GCA_000056065.1__RF0007__1__1129": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1129, + "evalue": 1.2e-84, + "bitscore": 281.7, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "1088237", + "stop": "1090010", + "strand": "-1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__RF0007__1__1189": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1189, + "evalue": 1.4e-77, + "bitscore": 258.3, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "1156691", + "stop": "1158488", + "strand": "-1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__RF0007__1__1016": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1016, + "evalue": 1.5e-77, + "bitscore": 258.2, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "976019", + "stop": "977777", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__RF0007__1__1788": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1788, + "evalue": 7.499999999999999e-75, + "bitscore": 249.3, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "1714213", + "stop": "1716058", + "strand": "-1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__RF0155__1__1786": { + "model": "RF0155", + "description": "vanS", + "sequence_id": 1786, + "evalue": 3e-74, + "bitscore": 247.0, + "gid": "lcl", + "seqtitle": "1786", + "scaffold": "1", + "start": "1712200", + "stop": "1713409", + "strand": "-1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00044.19__1__567": { + "model": "PF00044.19", + "description": "Gp_dh_N", + "sequence_id": 567, + "evalue": 5.299999999999999e-54, + "bitscore": 179.4, + "gid": "lcl", + "seqtitle": "567", + "scaffold": "1", + "start": "540614", + "stop": "541631", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00185.19__1__933": { + "model": "PF00185.19", + "description": "OTCace", + "sequence_id": 933, + "evalue": 1.6999999999999999e-35, + "bitscore": 119.3, + "gid": "lcl", + "seqtitle": "933", + "scaffold": "1", + "start": "898519", + "stop": "899089", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00185.19__1__1845": { + "model": "PF00185.19", + "description": "OTCace", + "sequence_id": 1845, + "evalue": 2.3999999999999999e-35, + "bitscore": 118.8, + "gid": "lcl", + "seqtitle": "1845", + "scaffold": "1", + "start": "1773015", + "stop": "1773972", + "strand": "-1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00204.20__1__5": { + "model": "PF00204.20", + "description": "DNA_gyraseB", + "sequence_id": 5, + "evalue": 7.1e-61, + "bitscore": 201.5, + "gid": "cog", + "seqtitle": "cog0187", + "scaffold": "1", + "start": "4578", + "stop": "6540", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00204.20__1__889": { + "model": "PF00204.20", + "description": "DNA_gyraseB", + "sequence_id": 889, + "evalue": 1.1e-52, + "bitscore": 174.9, + "gid": "cog", + "seqtitle": "cog0187", + "scaffold": "1", + "start": "843765", + "stop": "845697", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00227.21__1__1113": { + "model": "PF00227.21", + "description": "Proteasome", + "sequence_id": 1113, + "evalue": 8.2e-23, + "bitscore": 77.8, + "gid": "cog", + "seqtitle": "cog5405", + "scaffold": "1", + "start": "1074598", + "stop": "1075132", + "strand": "-1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00364.17__1__824": { + "model": "PF00364.17", + "description": "Biotin_lipoyl", + "sequence_id": 824, + "evalue": 3.1999999999999997e-25, + "bitscore": 84.7, + "gid": "lcl", + "seqtitle": "824", + "scaffold": "1", + "start": "793916", + "stop": "794399", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00521.15__1__6": { + "model": "PF00521.15", + "description": "DNA_topoisoIV", + "sequence_id": 6, + "evalue": 6.5e-157, + "bitscore": 519.8, + "gid": "cog", + "seqtitle": "cog0188", + "scaffold": "1", + "start": "6552", + "stop": "9024", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF00521.15__1__890": { + "model": "PF00521.15", + "description": "DNA_topoisoIV", + "sequence_id": 890, + "evalue": 1.6e-148, + "bitscore": 492.2, + "gid": "cog", + "seqtitle": "cog0188", + "scaffold": "1", + "start": "845711", + "stop": "848195", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF01039.17__1__827": { + "model": "PF01039.17", + "description": "Carboxyl_trans", + "sequence_id": 827, + "evalue": 1.9e-19, + "bitscore": 66.5, + "gid": "cog", + "seqtitle": "cog0777", + "scaffold": "1", + "start": "796205", + "stop": "797054", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__PF01039.17__1__828": { + "model": "PF01039.17", + "description": "Carboxyl_trans", + "sequence_id": 828, + "evalue": 2.3e-19, + "bitscore": 66.2, + "gid": "cog", + "seqtitle": "cog0825", + "scaffold": "1", + "start": "797046", + "stop": "797814", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__TIGR02013__1__338": { + "model": "TIGR02013", + "description": "TIGR02013", + "sequence_id": 338, + "evalue": 0.0, + "bitscore": 1683.7, + "gid": "cog", + "seqtitle": "cog0085", + "scaffold": "1", + "start": "334509", + "stop": "338184", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + }, + "GCA_000056065.1__TIGR00663__1__2": { + "model": "TIGR00663", + "description": "TIGR00663", + "sequence_id": 2, + "evalue": 7.4e-93, + "bitscore": 308.1, + "gid": "cog", + "seqtitle": "cog0592", + "scaffold": "1", + "start": "1867", + "stop": "2995", + "strand": "1", + "genome_id": "GCA_000056065.1", + "known_target": "Yes" + } +} \ No newline at end of file diff --git a/.tests/unit/arts_final/data/config/config.yaml b/.tests/unit/arts_final/data/config/config.yaml new file mode 100644 index 00000000..4e4e5f54 --- /dev/null +++ b/.tests/unit/arts_final/data/config/config.yaml @@ -0,0 +1,64 @@ +# This file should contain everything to configure the workflow on a global scale. + +#### PROJECT INFORMATION #### +# This section control your project configuration. +# Each project are separated by "-". +# A project can be defined as (1) a yaml object or (2) a Portable Encapsulated Project (PEP) file. +# (1) To define project as a yaml object, it must contain the variable "name" and "samples". +# - name : name of your project +# - samples : a csv file containing a list of genome ids for analysis with multiple sources mentioned. Genome ids must be unique. +# - rules: a yaml file containing project rule configurations. This will override global rule configuration. +# - prokka-db (optional): list of the custom accessions to use as prokka reference database. +# - gtdb-tax (optional): output summary file of GTDB-tk with "user_genome" and "classification" as the two minimum columns +# (2) To define project using PEP file, only variable "name" should be given that points to the location of the PEP yaml file. +# - pep: path to PEP .yaml file. See project example_pep for details. +# PS: the variable pep and name is an alias + +projects: +# Project 1 (yaml object) + - name: config/lactobacillus_delbruecki/project_config.yaml + +bgc_projects: + - pep: config/lanthipeptide/project_config.yaml + +#### GLOBAL RULE CONFIGURATION #### +# This section configures the rules to run globally. +# Use project specific rule configurations if you want to run different rules for each projects. +# pipelines or rules: set value to TRUE if you want to run the analysis or FALSE if you don't +pipelines: + seqfu: FALSE + mash: FALSE + fastani: FALSE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: FALSE + antismash: TRUE + query-bigslice: FALSE + bigscape: FALSE + bigslice: FALSE + automlst-wrapper: FALSE + arts: FALSE + roary: FALSE + eggnog: FALSE + eggnog-roary: FALSE + deeptfactor: FALSE + deeptfactor-roary: FALSE + cblaster-genome: FALSE + cblaster-bgc: FALSE + +#### RESOURCES CONFIGURATION #### +# resources : the location of the resources to run the rule. +# The default location is at "resources/{resource_name}". +resources_path: + antismash_db: resources/antismash_db + eggnog_db: resources/eggnog_db + BiG-SCAPE: resources/BiG-SCAPE + bigslice: resources/bigslice + checkm: resources/checkm + gtdbtk: resources/gtdbtk + #RNAmmer: resources/RNAmmer # If specified, will override Barnapp in Prokka + +rule_parameters: + install_gtdbtk: + release: 214 + release_version: 214 diff --git a/.tests/unit/arts_final/data/config/lactobacillus_delbruecki/project_config.yaml b/.tests/unit/arts_final/data/config/lactobacillus_delbruecki/project_config.yaml new file mode 100644 index 00000000..4f2fb49f --- /dev/null +++ b/.tests/unit/arts_final/data/config/lactobacillus_delbruecki/project_config.yaml @@ -0,0 +1,30 @@ +name: Lactobacillus_delbrueckii + +pep_version: 2.1.0 + +description: "Lactobacillus delbrueckii 27 01 2023" + +sample_table: samples.csv + +#### RULE CONFIGURATION #### +# rules: set value to TRUE if you want to run the analysis or FALSE if you don't +rules: + seqfu: TRUE + mash: TRUE + fastani: TRUE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: TRUE + antismash: TRUE + query-bigslice: TRUE + bigscape: TRUE + bigslice: TRUE + automlst-wrapper: TRUE + arts: TRUE + roary: TRUE + eggnog: TRUE + eggnog-roary: TRUE + deeptfactor: TRUE + deeptfactor-roary: TRUE + cblaster-genome: TRUE + cblaster-bgc: TRUE diff --git a/.tests/unit/arts_final/data/config/lactobacillus_delbruecki/samples.csv b/.tests/unit/arts_final/data/config/lactobacillus_delbruecki/samples.csv new file mode 100644 index 00000000..4e848e1b --- /dev/null +++ b/.tests/unit/arts_final/data/config/lactobacillus_delbruecki/samples.csv @@ -0,0 +1,5 @@ +genome_id,source,organism,genus,species,strain,closest_placement_reference,input_file +GCA_000056065.1,ncbi,,,,,, +GCA_000182835.1,ncbi,,,,,, +GCA_000191165.1,ncbi,,,,,, +GCA_000014405.1,ncbi,,,,,, diff --git a/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv new file mode 100644 index 00000000..102a198c --- /dev/null +++ b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv @@ -0,0 +1,1077 @@ +pkey,core_gene_or_model,genome_id,name,product,start,stop,strand,scaffold,sequence_id,type,transl_table,core_table_fkey,duplication,phylogeny,known_target,duptable_fkey,description,evalue,bitscore,gid,seqtitle,bgc_id,bgc_proximity,bgctable_fkey,function,gene +GCA_000056065.1__Cpn10__1__1432,Cpn10,GCA_000056065.1,groS,10 kDa chaperonin,1393993,1394278,-1,scaffold_1,1432,CDS,11,GCA_000056065.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000056065.1__GrpE__1__1155,GrpE,GCA_000056065.1,grpE,Protein GrpE,1119606,1120194,-1,scaffold_1,1155,CDS,11,GCA_000056065.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000056065.1__Methyltransf_5__1__665,Methyltransf_5,GCA_000056065.1,rsmH,Ribosomal RNA small subunit methyltransferase H,625949,626894,1,scaffold_1,665,CDS,11,GCA_000056065.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,,,, +GCA_000056065.1__PF00044.19__1__567,PF00044.19,GCA_000056065.1,,,540614,541631,1,1,567,,,,False,False,True,,Gp_dh_N,5.3e-54,179.4,lcl,567,,,,, +GCA_000056065.1__PF00185.19__1__1845,PF00185.19,GCA_000056065.1,,,1773015,1773972,-1,1,1845,,,,False,False,True,,OTCace,2.4e-35,118.8,lcl,1845,,,,, +GCA_000056065.1__PF00185.19__1__933,PF00185.19,GCA_000056065.1,,,898519,899089,1,1,933,,,,False,False,True,,OTCace,1.7e-35,119.3,lcl,933,,,,, +GCA_000056065.1__PF00204.20__1__5,PF00204.20,GCA_000056065.1,,,4578,6540,1,1,5,,,,False,False,True,,DNA_gyraseB,7.1e-61,201.5,cog,cog0187,,,,, +GCA_000056065.1__PF00204.20__1__889,PF00204.20,GCA_000056065.1,,,843765,845697,1,1,889,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,,,, +GCA_000056065.1__PF00227.21__1__1113,PF00227.21,GCA_000056065.1,,,1074598,1075132,-1,1,1113,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,,,, +GCA_000056065.1__PF00364.17__1__824,PF00364.17,GCA_000056065.1,,,793916,794399,1,1,824,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,lcl,824,,,,, +GCA_000056065.1__PF00521.15__1__6,PF00521.15,GCA_000056065.1,,,6552,9024,1,1,6,,,,False,False,True,,DNA_topoisoIV,6.5e-157,519.8,cog,cog0188,,,,, +GCA_000056065.1__PF00521.15__1__890,PF00521.15,GCA_000056065.1,,,845711,848195,1,1,890,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,,,, +GCA_000056065.1__PF01039.17__1__827,PF01039.17,GCA_000056065.1,,,796205,797054,1,1,827,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,,,, +GCA_000056065.1__PF01039.17__1__828,PF01039.17,GCA_000056065.1,,,797046,797814,1,1,828,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,,,, +GCA_000056065.1__PGK__1__568,PGK,GCA_000056065.1,pgk,Phosphoglycerate kinase,541727,542939,1,scaffold_1,568,CDS,11,GCA_000056065.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000056065.1__RF0007__1__1016,RF0007,GCA_000056065.1,,,976019,977777,1,1,1016,,,,False,False,True,,ABC_efflux,1.5e-77,258.2,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1129,RF0007,GCA_000056065.1,,,1088237,1090010,-1,1,1129,,,,False,False,True,,ABC_efflux,1.2e-84,281.7,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1189,RF0007,GCA_000056065.1,,,1156691,1158488,-1,1,1189,,,,False,False,True,,ABC_efflux,1.4e-77,258.3,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1788,RF0007,GCA_000056065.1,,,1714213,1716058,-1,1,1788,,,,False,False,True,,ABC_efflux,7.5e-75,249.3,cog,cog1132,,,,, +GCA_000056065.1__RF0155__1__1786,RF0155,GCA_000056065.1,,,1712200,1713409,-1,1,1786,,,,False,False,True,,vanS,3e-74,247.0,lcl,1786,,,,, +GCA_000056065.1__Ribosomal_L10__1__1466,Ribosomal_L10,GCA_000056065.1,rplJ,50S ribosomal protein L10,1421770,1422280,-1,scaffold_1,1466,CDS,11,GCA_000056065.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_L23__1__349,Ribosomal_L23,GCA_000056065.1,rplW,50S ribosomal protein L23,348201,348498,1,scaffold_1,349,CDS,11,GCA_000056065.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_S8__1__360,Ribosomal_S8,GCA_000056065.1,rpsH,30S ribosomal protein S8,353067,353466,1,scaffold_1,360,CDS,11,GCA_000056065.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_S9__1__378,Ribosomal_S9,GCA_000056065.1,rpsI,30S ribosomal protein S9,364180,364576,1,scaffold_1,378,CDS,11,GCA_000056065.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00001__1__1329,TIGR00001,GCA_000056065.1,rpmI,50S ribosomal protein L35,1294459,1294660,-1,scaffold_1,1329,CDS,11,GCA_000056065.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00008__1__368,TIGR00008,GCA_000056065.1,infA,Translation initiation factor IF-1,357628,357850,1,scaffold_1,368,CDS,11,GCA_000056065.1__arts_core__TIGR00008,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00009__1__1229,TIGR00009,GCA_000056065.1,rpmB,50S ribosomal protein L28,1199706,1199892,1,scaffold_1,1229,CDS,11,GCA_000056065.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00012__1__355,TIGR00012,GCA_000056065.1,rpmC,50S ribosomal protein L29,351145,351343,1,scaffold_1,355,CDS,11,GCA_000056065.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00016__1__616,TIGR00016,GCA_000056065.1,ackA,Acetate kinase,579934,581122,1,scaffold_1,616,CDS,11,GCA_000056065.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00017__1__775,TIGR00017,GCA_000056065.1,cmk,Cytidylate kinase,737485,738118,1,scaffold_1,775,CDS,11,GCA_000056065.1__arts_core__TIGR00017,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00019__1__629,TIGR00019,GCA_000056065.1,prfA,Peptide chain release factor 1,594425,595511,1,scaffold_1,629,CDS,11,GCA_000056065.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00020__1__543,TIGR00020,GCA_000056065.1,prfB,Peptide chain release factor 2,518026,519025,1,scaffold_1,543,CDS,11,GCA_000056065.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00021__1__468,TIGR00021,GCA_000056065.1,rpiA,Ribose-5-phosphate isomerase A,446570,447263,1,scaffold_1,468,CDS,11,GCA_000056065.1__arts_core__TIGR00021,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00029__1__701,TIGR00029,GCA_000056065.1,rpsT,30S ribosomal protein S20,663694,663946,-1,scaffold_1,701,CDS,11,GCA_000056065.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00038__1__1261,TIGR00038,11842,efp_1,Elongation factor P,1227239,1227809,-1,scaffold_1,1261,CDS,11,GCA_000056065.1__arts_core__TIGR00038,True,False,False,GCA_000056065.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000056065.1__TIGR00038__1__1668,TIGR00038,GCA_000056065.1,efp_2,Elongation factor P,1607624,1608182,-1,scaffold_1,1668,CDS,11,GCA_000056065.1__arts_core__TIGR00038,True,False,False,GCA_000056065.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000056065.1__TIGR00042__1__1414,TIGR00042,GCA_000056065.1,-,dITP/XTP pyrophosphatase,1372244,1372865,-1,scaffold_1,1414,CDS,11,GCA_000056065.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00043__1__1099,TIGR00043,GCA_000056065.1,ybeY,Endoribonuclease YbeY,1061520,1062045,-1,scaffold_1,1099,CDS,11,GCA_000056065.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00055__1__1178,TIGR00055,GCA_000056065.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1146640,1147372,-1,scaffold_1,1178,CDS,11,GCA_000056065.1__arts_core__TIGR00055,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00057__1__631,TIGR00057,GCA_000056065.1,ywlC,Threonylcarbamoyl-AMP synthase,596345,597341,1,scaffold_1,631,CDS,11,GCA_000056065.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00059__1__372,TIGR00059,GCA_000056065.1,rplQ,50S ribosomal protein L17,359780,360164,1,scaffold_1,372,CDS,11,GCA_000056065.1__arts_core__TIGR00059,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00060__1__362,TIGR00060,GCA_000056065.1,rplR,50S ribosomal protein L18,354047,354407,1,scaffold_1,362,CDS,11,GCA_000056065.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00061__1__1264,TIGR00061,GCA_000056065.1,rplU,50S ribosomal protein L21,1229445,1229757,-1,scaffold_1,1264,CDS,11,GCA_000056065.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00062__1__1263,TIGR00062,GCA_000056065.1,rpmA,50S ribosomal protein L27,1229130,1229430,-1,scaffold_1,1263,CDS,11,GCA_000056065.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00065__1__673,TIGR00065,GCA_000056065.1,ftsZ,Cell division protein FtsZ,635219,636578,1,scaffold_1,673,CDS,11,GCA_000056065.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00071__1__376,TIGR00071,GCA_000056065.1,truA,tRNA pseudouridine synthase A,362830,363619,1,scaffold_1,376,CDS,11,GCA_000056065.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00077__1__916,TIGR00077,GCA_000056065.1,lspA,Lipoprotein signal peptidase,881194,881647,1,scaffold_1,916,CDS,11,GCA_000056065.1__arts_core__TIGR00077,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00079__1__691,TIGR00079,GCA_000056065.1,def2,Peptide deformylase 2,653135,653690,-1,scaffold_1,691,CDS,11,GCA_000056065.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00081__1__1276,TIGR00081,GCA_000056065.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1240613,1241336,-1,scaffold_1,1276,CDS,11,GCA_000056065.1__arts_core__TIGR00081,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00082__1__1168,TIGR00082,GCA_000056065.1,rbfA,Ribosome-binding factor A,1133190,1133553,-1,scaffold_1,1168,CDS,11,GCA_000056065.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00084__1__1428,TIGR00084,GCA_000056065.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1386901,1387495,-1,scaffold_1,1428,CDS,11,GCA_000056065.1__arts_core__TIGR00084,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00086__1__1617,TIGR00086,GCA_000056065.1,smpB,SsrA-binding protein,1557165,1557627,-1,scaffold_1,1617,CDS,11,GCA_000056065.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00088__1__1206,TIGR00088,GCA_000056065.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1175461,1176199,-1,scaffold_1,1206,CDS,11,GCA_000056065.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00090__1__1324,TIGR00090,GCA_000056065.1,rsfS,Ribosomal silencing factor RsfS,1291216,1291564,-1,scaffold_1,1324,CDS,11,GCA_000056065.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00092__1__1791,TIGR00092,GCA_000056065.1,ychF,Ribosome-binding ATPase YchF,1718716,1719817,-1,scaffold_1,1791,CDS,11,GCA_000056065.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00103__1__1448,TIGR00103,GCA_000056065.1,-,Nucleoid-associated protein,1405662,1405992,-1,scaffold_1,1448,CDS,11,GCA_000056065.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00105__1__310,TIGR00105,GCA_000056065.1,rpmE2,50S ribosomal protein L31 type B,304788,305040,1,scaffold_1,310,CDS,11,GCA_000056065.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00115__1__706,TIGR00115,GCA_000056065.1,tig,Trigger factor,668841,670161,1,scaffold_1,706,CDS,11,GCA_000056065.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00116__1__1181,TIGR00116,GCA_000056065.1,tsf,Elongation factor Ts,1148806,1149835,-1,scaffold_1,1181,CDS,11,GCA_000056065.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00121__1__830,TIGR00121,GCA_000056065.1,birA,Bifunctional ligase/repressor BirA,798597,799263,1,scaffold_1,830,CDS,11,GCA_000056065.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00133__1__412,TIGR00133,GCA_000056065.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,397164,398595,1,scaffold_1,412,CDS,11,GCA_000056065.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00135__1__410,TIGR00135,GCA_000056065.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,395411,395717,1,scaffold_1,410,CDS,11,GCA_000056065.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00150__1__576,TIGR00150,GCA_000056065.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,548016,548502,1,scaffold_1,576,CDS,11,GCA_000056065.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00152__1__1338,TIGR00152,GCA_000056065.1,coaE,Dephospho-CoA kinase,1303283,1303868,-1,scaffold_1,1338,CDS,11,GCA_000056065.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00157__1__1241,TIGR00157,GCA_000056065.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1209672,1210566,-1,scaffold_1,1241,CDS,11,GCA_000056065.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00158__1__11,TIGR00158,GCA_000056065.1,rplI,50S ribosomal protein L9,12596,13052,1,scaffold_1,11,CDS,11,GCA_000056065.1__arts_core__TIGR00158,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00165__1__9,TIGR00165,GCA_000056065.1,rpsR,30S ribosomal protein S18,10175,10412,1,scaffold_1,9,CDS,11,GCA_000056065.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00166__1__7,TIGR00166,GCA_000056065.1,rpsF,30S ribosomal protein S6,9239,9533,1,scaffold_1,7,CDS,11,GCA_000056065.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00168__1__1330,TIGR00168,GCA_000056065.1,infC,Translation initiation factor IF-3,1294680,1295202,-1,scaffold_1,1330,CDS,11,GCA_000056065.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00174__1__1304,TIGR00174,GCA_000056065.1,miaA,tRNA dimethylallyltransferase,1272002,1272929,-1,scaffold_1,1304,CDS,11,GCA_000056065.1__arts_core__TIGR00174,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00179__1__578,TIGR00179,GCA_000056065.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,549234,550128,1,scaffold_1,578,CDS,11,GCA_000056065.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00180__1__1793,TIGR00180,11842,spo0J,Stage 0 sporulation protein J,1720149,1721040,-1,scaffold_1,1793,CDS,11,GCA_000056065.1__arts_core__TIGR00180,True,False,False,GCA_000056065.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000056065.1__TIGR00180__1__1795,TIGR00180,GCA_000056065.1,noc,Nucleoid occlusion protein,1721798,1722623,-1,scaffold_1,1795,CDS,11,GCA_000056065.1__arts_core__TIGR00180,True,False,False,GCA_000056065.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000056065.1__TIGR00186__1__1485,TIGR00186,GCA_000056065.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1433794,1434544,-1,scaffold_1,1485,CDS,11,GCA_000056065.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00188__1__1941,TIGR00188,GCA_000056065.1,rnpA,Ribonuclease P protein component,1864290,1864656,-1,scaffold_1,1941,CDS,11,GCA_000056065.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00191__1__1553,TIGR00191,GCA_000056065.1,thrB_2,Homoserine kinase,1496783,1497647,-1,scaffold_1,1553,CDS,11,GCA_000056065.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00194__1__744,TIGR00194,GCA_000056065.1,uvrC,UvrABC system protein C,707983,709786,1,scaffold_1,744,CDS,11,GCA_000056065.1__arts_core__TIGR00194,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00196__1__1377,TIGR00196,GCA_000056065.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1338272,1339139,-1,scaffold_1,1377,CDS,11,GCA_000056065.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00218__1__52,TIGR00218,GCA_000056065.1,manA,Mannose-6-phosphate isomerase ManA,51009,51978,1,scaffold_1,52,CDS,11,GCA_000056065.1__arts_core__TIGR00218,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00219__1__660,TIGR00219,GCA_000056065.1,mreC,Cell shape-determining protein MreC,623366,624218,1,scaffold_1,660,CDS,11,GCA_000056065.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00220__1__275,TIGR00220,GCA_000056065.1,mscL,Large-conductance mechanosensitive channel,270701,271178,1,scaffold_1,275,CDS,11,GCA_000056065.1__arts_core__TIGR00220,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00233__1__292,TIGR00233,GCA_000056065.1,trpS2,Tryptophan--tRNA ligase 2,284780,285806,1,scaffold_1,292,CDS,11,GCA_000056065.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00234__1__224,TIGR00234,GCA_000056065.1,tyrS,Tyrosine--tRNA ligase,219424,220690,1,scaffold_1,224,CDS,11,GCA_000056065.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00237__1__1257,TIGR00237,GCA_000056065.1,xseA,Exodeoxyribonuclease 7 large subunit,1224123,1225494,-1,scaffold_1,1257,CDS,11,GCA_000056065.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00250__1__1419,TIGR00250,GCA_000056065.1,yrrK,Putative pre-16S rRNA nuclease,1376738,1377167,-1,scaffold_1,1419,CDS,11,GCA_000056065.1__arts_core__TIGR00250,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00256__1__808,TIGR00256,GCA_000056065.1,dtd,D-aminoacyl-tRNA deacylase,778556,778994,1,scaffold_1,808,CDS,11,GCA_000056065.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00257__1__538,TIGR00257,GCA_000056065.1,yigZ,IMPACT family member YigZ,511956,512616,-1,scaffold_1,538,CDS,11,GCA_000056065.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00281__1__771,TIGR00281,GCA_000056065.1,scpB,Segregation and condensation protein B,734631,735234,1,scaffold_1,771,CDS,11,GCA_000056065.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00302__1__1275,TIGR00302,GCA_000056065.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1240360,1240609,-1,scaffold_1,1275,CDS,11,GCA_000056065.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00337__1__308,TIGR00337,GCA_000056065.1,pyrG,CTP synthase,301678,303298,1,scaffold_1,308,CDS,11,GCA_000056065.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00344__1__1421,TIGR00344,GCA_000056065.1,alaS,Alanine--tRNA ligase,1377489,1380123,-1,scaffold_1,1421,CDS,11,GCA_000056065.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00355__1__1269,TIGR00355,GCA_000056065.1,purH,Bifunctional purine biosynthesis protein PurH,1232841,1234383,-1,scaffold_1,1269,CDS,11,GCA_000056065.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00357__1__1723,TIGR00357,GCA_000056065.1,msrB,Peptide methionine sulfoxide reductase MsrB,1649159,1649585,-1,scaffold_1,1723,CDS,11,GCA_000056065.1__arts_core__TIGR00357,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00362__1__1,TIGR00362,GCA_000056065.1,dnaA,Chromosomal replication initiator protein DnaA,322,1687,1,scaffold_1,1,CDS,11,GCA_000056065.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00382__1__707,TIGR00382,GCA_000056065.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,670312,671566,1,scaffold_1,707,CDS,11,GCA_000056065.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00392__1__677,TIGR00392,GCA_000056065.1,ileS,Isoleucine--tRNA ligase,638487,641283,1,scaffold_1,677,CDS,11,GCA_000056065.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00396__1__1389,TIGR00396,GCA_000056065.1,leuS,Leucine--tRNA ligase,1348307,1350722,-1,scaffold_1,1389,CDS,11,GCA_000056065.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00398__1__296,TIGR00398,GCA_000056065.1,metG,Methionine--tRNA ligase,290069,292052,1,scaffold_1,296,CDS,11,GCA_000056065.1__arts_core__TIGR00398,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00401__1__603,TIGR00401,GCA_000056065.1,msrA,Peptide methionine sulfoxide reductase MsrA,571234,571762,1,scaffold_1,603,CDS,11,GCA_000056065.1__arts_core__TIGR00401,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00409__1__1175,TIGR00409,GCA_000056065.1,proS,Proline--tRNA ligase,1142843,1144541,-1,scaffold_1,1175,CDS,11,GCA_000056065.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00414__1__1639,TIGR00414,GCA_000056065.1,serS,Serine--tRNA ligase,1580697,1582005,-1,scaffold_1,1639,CDS,11,GCA_000056065.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00416__1__1529,TIGR00416,GCA_000056065.1,radA,DNA repair protein RadA,1475149,1476526,-1,scaffold_1,1529,CDS,11,GCA_000056065.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00418__1__1334,TIGR00418,GCA_000056065.1,thrS,Threonine--tRNA ligase,1298298,1300230,-1,scaffold_1,1334,CDS,11,GCA_000056065.1__arts_core__TIGR00418,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00419__1__569,TIGR00419,GCA_000056065.1,tpiA,Triosephosphate isomerase,542957,543716,1,scaffold_1,569,CDS,11,GCA_000056065.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00422__1__655,TIGR00422,GCA_000056065.1,valS,Valine--tRNA ligase,616950,619590,1,scaffold_1,655,CDS,11,GCA_000056065.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00431__1__1167,TIGR00431,GCA_000056065.1,truB,tRNA pseudouridine synthase B,1132243,1133140,-1,scaffold_1,1167,CDS,11,GCA_000056065.1__arts_core__TIGR00431,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00435__1__1487,TIGR00435,GCA_000056065.1,cysS,Cysteine--tRNA ligase,1434966,1436391,-1,scaffold_1,1487,CDS,11,GCA_000056065.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00442__1__809,TIGR00442,GCA_000056065.1,hisS,Histidine--tRNA ligase,779277,780564,1,scaffold_1,809,CDS,11,GCA_000056065.1__arts_core__TIGR00442,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00447__1__316,TIGR00447,GCA_000056065.1,pth,Peptidyl-tRNA hydrolase,310576,311134,1,scaffold_1,316,CDS,11,GCA_000056065.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00456__1__737,TIGR00456,GCA_000056065.1,argS,Arginine--tRNA ligase,699214,700912,1,scaffold_1,737,CDS,11,GCA_000056065.1__arts_core__TIGR00456,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00459__1__810,TIGR00459,GCA_000056065.1,aspS,Aspartate--tRNA ligase,780579,782424,1,scaffold_1,810,CDS,11,GCA_000056065.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00464__1__1491,TIGR00464,GCA_000056065.1,gltX,Glutamate--tRNA ligase,1439736,1441239,-1,scaffold_1,1491,CDS,11,GCA_000056065.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00468__1__1315,TIGR00468,GCA_000056065.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1283031,1284081,-1,scaffold_1,1315,CDS,11,GCA_000056065.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00472__1__1314,TIGR00472,GCA_000056065.1,pheT,Phenylalanine--tRNA ligase beta subunit,1280620,1283032,-1,scaffold_1,1314,CDS,11,GCA_000056065.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00479__1__415,TIGR00479,GCA_000056065.1,-,putative RNA methyltransferase,400342,401698,1,scaffold_1,415,CDS,11,GCA_000056065.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00479__1__497,TIGR00479,GCA_000056065.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,475828,477211,-1,scaffold_1,497,CDS,11,GCA_000056065.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00481__1__386,TIGR00481,GCA_000056065.1,-,hypothetical protein,369355,369847,1,scaffold_1,386,CDS,11,GCA_000056065.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00484__1__345,TIGR00484,GCA_000056065.1,fusA,Elongation factor G,344135,346220,1,scaffold_1,345,CDS,11,GCA_000056065.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00485__1__705,TIGR00485,GCA_000056065.1,tuf,Elongation factor Tu,667467,668658,1,scaffold_1,705,CDS,11,GCA_000056065.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00486__1__1072,TIGR00486,GCA_000056065.1,-,GTP cyclohydrolase 1 type 2,1030993,1031791,-1,scaffold_1,1072,CDS,11,GCA_000056065.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00487__1__1169,TIGR00487,GCA_000056065.1,infB,Translation initiation factor IF-2,1133565,1136043,-1,scaffold_1,1169,CDS,11,GCA_000056065.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00496__1__1179,TIGR00496,GCA_000056065.1,frr,Ribosome-recycling factor,1147374,1147932,-1,scaffold_1,1179,CDS,11,GCA_000056065.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00499__1__327,TIGR00499,GCA_000056065.1,lysS,Lysine--tRNA ligase,324828,326334,1,scaffold_1,327,CDS,11,GCA_000056065.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00500__1__492,TIGR00500,GCA_000056065.1,map,Methionine aminopeptidase 1,471238,472066,1,scaffold_1,492,CDS,11,GCA_000056065.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00504__1__1038,TIGR00504,GCA_000056065.1,pcp,Pyrrolidone-carboxylate peptidase,993222,993834,-1,scaffold_1,1038,CDS,11,GCA_000056065.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00521__1__739,TIGR00521,GCA_000056065.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,701616,702816,1,scaffold_1,739,CDS,11,GCA_000056065.1__arts_core__TIGR00521,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00525__1__214,TIGR00525,GCA_000056065.1,folB,Dihydroneopterin aldolase,210197,210548,1,scaffold_1,214,CDS,11,GCA_000056065.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00544__1__546,TIGR00544,GCA_000056065.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,520272,521106,1,scaffold_1,546,CDS,11,GCA_000056065.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00560__1__534,TIGR00560,GCA_000056065.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,506930,507494,1,scaffold_1,534,CDS,11,GCA_000056065.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00563__1__1244,TIGR00563,GCA_000056065.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1213323,1214640,-1,scaffold_1,1244,CDS,11,GCA_000056065.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00575__1__408,TIGR00575,GCA_000056065.1,ligA,DNA ligase,392242,394258,1,scaffold_1,408,CDS,11,GCA_000056065.1__arts_core__TIGR00575,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00577__1__1339,TIGR00577,GCA_000056065.1,mutM,Formamidopyrimidine-DNA glycosylase,1303876,1304698,-1,scaffold_1,1339,CDS,11,GCA_000056065.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00580__1__317,TIGR00580,GCA_000056065.1,mfd,Transcription-repair-coupling factor,311150,314627,1,scaffold_1,317,CDS,11,GCA_000056065.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00593__1__1340,TIGR00593,GCA_000056065.1,polA,DNA polymerase I,1304708,1307369,-1,scaffold_1,1340,CDS,11,GCA_000056065.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00595__1__1246,TIGR00595,GCA_000056065.1,priA,Primosomal protein N,1215594,1217976,-1,scaffold_1,1246,CDS,11,GCA_000056065.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00613__1__1096,TIGR00613,GCA_000056065.1,recO,DNA repair protein RecO,1059461,1060211,-1,scaffold_1,1096,CDS,11,GCA_000056065.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00615__1__1447,TIGR00615,GCA_000056065.1,recR,Recombination protein RecR,1405061,1405661,-1,scaffold_1,1447,CDS,11,GCA_000056065.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00630__1__550,TIGR00630,GCA_000056065.1,uvrA,UvrABC system protein A,525284,528140,1,scaffold_1,550,CDS,11,GCA_000056065.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00631__1__549,TIGR00631,GCA_000056065.1,uvrB_2,UvrABC system protein B,523252,525295,1,scaffold_1,549,CDS,11,GCA_000056065.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00635__1__1427,TIGR00635,GCA_000056065.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1385877,1386888,-1,scaffold_1,1427,CDS,11,GCA_000056065.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00643__1__1226,TIGR00643,GCA_000056065.1,recG,ATP-dependent DNA helicase RecG,1195445,1197485,-1,scaffold_1,1226,CDS,11,GCA_000056065.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00647__1__557,TIGR00647,GCA_000056065.1,whiA,putative cell division protein WhiA,532796,533729,1,scaffold_1,557,CDS,11,GCA_000056065.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00651__1__575,TIGR00651,GCA_000056065.1,pta,Phosphate acetyltransferase,547016,548006,1,scaffold_1,575,CDS,11,GCA_000056065.1__arts_core__TIGR00651,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00653__1__1301,TIGR00653,GCA_000056065.1,glnA,Glutamine synthetase,1269273,1270611,-1,scaffold_1,1301,CDS,11,GCA_000056065.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00663__1__2,TIGR00663,GCA_000056065.1,dnaN,Beta sliding clamp,1867,2995,1,1,2,CDS,11,GCA_000056065.1__arts_core__TIGR00663,False,False,True,,TIGR00663,7.4e-93,308.1,cog,cog0592,,,,, +GCA_000056065.1__TIGR00665__1__12,TIGR00665,GCA_000056065.1,dnaC,Replicative DNA helicase,13075,14446,1,scaffold_1,12,CDS,11,GCA_000056065.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00690__1__1247,TIGR00690,GCA_000056065.1,rpoZ,DNA-directed RNA polymerase subunit omega,1218038,1218260,-1,scaffold_1,1247,CDS,11,GCA_000056065.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00732__1__1117,TIGR00732,GCA_000056065.1,dprA,DNA processing protein DprA,1079889,1080729,-1,scaffold_1,1117,CDS,11,GCA_000056065.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00753__1__523,TIGR00753,GCA_000056065.1,uppP,Undecaprenyl-diphosphatase,495535,496363,-1,scaffold_1,523,CDS,11,GCA_000056065.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00755__1__299,TIGR00755,GCA_000056065.1,rsmA,Ribosomal RNA small subunit methyltransferase A,293361,294252,1,scaffold_1,299,CDS,11,GCA_000056065.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__1121,TIGR00762,GCA_000056065.1,-,DegV domain-containing protein,1082752,1083598,-1,scaffold_1,1121,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__1134,TIGR00762,11842,-,DegV domain-containing protein,1094868,1095705,-1,scaffold_1,1134,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__64,TIGR00762,11842,-,DegV domain-containing protein,62450,63248,1,scaffold_1,64,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__923,TIGR00762,11842,-,DegV domain-containing protein,890483,890978,1,scaffold_1,923,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__924,TIGR00762,11842,degV,Protein DegV,890974,891364,1,scaffold_1,924,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00810__1__1619,TIGR00810,GCA_000056065.1,secG,putative protein-export membrane protein SecG,1560085,1560319,-1,scaffold_1,1619,CDS,11,GCA_000056065.1__arts_core__TIGR00810,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00855__1__1465,TIGR00855,GCA_000056065.1,rplL,50S ribosomal protein L7/L12,1421352,1421718,-1,scaffold_1,1465,CDS,11,GCA_000056065.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00871__1__1425,TIGR00871,GCA_000056065.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1383852,1385301,-1,scaffold_1,1425,CDS,11,GCA_000056065.1__arts_core__TIGR00871,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00877__1__1268,TIGR00877,GCA_000056065.1,purD,Phosphoribosylamine--glycine ligase,1231560,1232826,-1,scaffold_1,1268,CDS,11,GCA_000056065.1__arts_core__TIGR00877,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00878__1__1271,TIGR00878,GCA_000056065.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1234964,1236014,-1,scaffold_1,1271,CDS,11,GCA_000056065.1__arts_core__TIGR00878,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00922__1__1474,TIGR00922,GCA_000056065.1,nusG,Transcription termination/antitermination protein NusG,1428920,1429475,-1,scaffold_1,1474,CDS,11,GCA_000056065.1__arts_core__TIGR00922,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00952__1__702,TIGR00952,GCA_000056065.1,rpsO,30S ribosomal protein S15,664149,664419,1,scaffold_1,702,CDS,11,GCA_000056065.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00959__1__1209,TIGR00959,GCA_000056065.1,ffh,Signal recognition particle protein,1177130,1178561,-1,scaffold_1,1209,CDS,11,GCA_000056065.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00962__1__637,TIGR00962,GCA_000056065.1,atpA,ATP synthase subunit alpha,600266,601778,1,scaffold_1,637,CDS,11,GCA_000056065.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00963__1__542,TIGR00963,GCA_000056065.1,secA,Protein translocase subunit SecA,515417,517820,1,scaffold_1,542,CDS,11,GCA_000056065.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00964__1__1475,TIGR00964,GCA_000056065.1,secE,Protein translocase subunit SecE,1429566,1429737,-1,scaffold_1,1475,CDS,11,GCA_000056065.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00967__1__366,TIGR00967,GCA_000056065.1,secY,Protein translocase subunit SecY,355593,356889,1,scaffold_1,366,CDS,11,GCA_000056065.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00981__1__343,TIGR00981,GCA_000056065.1,rpsL,30S ribosomal protein S12,343208,343616,1,scaffold_1,343,CDS,11,GCA_000056065.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01009__1__353,TIGR01009,GCA_000056065.1,rpsC,30S ribosomal protein S3,350041,350713,1,scaffold_1,353,CDS,11,GCA_000056065.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01011__1__1182,TIGR01011,GCA_000056065.1,rpsB,30S ribosomal protein S2,1149897,1150659,-1,scaffold_1,1182,CDS,11,GCA_000056065.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01017__1__650,TIGR01017,GCA_000056065.1,rpsD,30S ribosomal protein S4,610876,611488,-1,scaffold_1,650,CDS,11,GCA_000056065.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01021__1__363,TIGR01021,GCA_000056065.1,rpsE,30S ribosomal protein S5,354423,354936,1,scaffold_1,363,CDS,11,GCA_000056065.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01023__1__1310,TIGR01023,11842,rpmGA,50S ribosomal protein L33 1,1274992,1275142,-1,scaffold_1,1310,CDS,11,GCA_000056065.1__arts_core__TIGR01023,True,True,False,GCA_000056065.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000056065.1__TIGR01023__1__1476,TIGR01023,11842,rpmG3,50S ribosomal protein L33 3,1429743,1429893,-1,scaffold_1,1476,CDS,11,GCA_000056065.1__arts_core__TIGR01023,True,True,False,GCA_000056065.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000056065.1__TIGR01024__1__1201,TIGR01024,GCA_000056065.1,rplS,50S ribosomal protein L19,1172222,1172570,-1,scaffold_1,1201,CDS,11,GCA_000056065.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01029__1__344,TIGR01029,GCA_000056065.1,rpsG,30S ribosomal protein S7,343631,344102,1,scaffold_1,344,CDS,11,GCA_000056065.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01030__1__1942,TIGR01030,GCA_000056065.1,rpmH,50S ribosomal protein L34,1864704,1864845,-1,scaffold_1,1942,CDS,11,GCA_000056065.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01031__1__750,TIGR01031,GCA_000056065.1,rpmF,50S ribosomal protein L32,715058,715250,1,scaffold_1,750,CDS,11,GCA_000056065.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01032__1__1328,TIGR01032,GCA_000056065.1,rplT,50S ribosomal protein L20,1294058,1294415,-1,scaffold_1,1328,CDS,11,GCA_000056065.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01034__1__1394,TIGR01034,GCA_000056065.1,metK,S-adenosylmethionine synthase,1354481,1355678,-1,scaffold_1,1394,CDS,11,GCA_000056065.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01039__1__639,TIGR01039,GCA_000056065.1,atpD,ATP synthase subunit beta,602770,604210,1,scaffold_1,639,CDS,11,GCA_000056065.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01044__1__352,TIGR01044,GCA_000056065.1,rplV,50S ribosomal protein L22,349674,350028,1,scaffold_1,352,CDS,11,GCA_000056065.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01049__1__346,TIGR01049,GCA_000056065.1,rpsJ,30S ribosomal protein S10,346606,346915,1,scaffold_1,346,CDS,11,GCA_000056065.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01050__1__351,TIGR01050,GCA_000056065.1,rpsS,30S ribosomal protein S19,349377,349653,1,scaffold_1,351,CDS,11,GCA_000056065.1__arts_core__TIGR01050,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01051__1__1116,TIGR01051,GCA_000056065.1,topA,DNA topoisomerase 1,1077579,1079763,-1,scaffold_1,1116,CDS,11,GCA_000056065.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01059__1__5,TIGR01059,GCA_000056065.1,gyrB,DNA gyrase subunit B,4578,6540,1,scaffold_1,5,CDS,11,GCA_000056065.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000056065.1__TIGR01060__1__1135,TIGR01060,GCA_000056065.1,eno,Enolase,1096011,1097289,1,scaffold_1,1135,CDS,11,GCA_000056065.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01063__1__6,TIGR01063,GCA_000056065.1,gyrA,DNA gyrase subunit A,6552,9024,1,scaffold_1,6,CDS,11,GCA_000056065.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000056065.1__TIGR01064__1__763,TIGR01064,GCA_000056065.1,pyk,Pyruvate kinase,728461,730231,1,scaffold_1,763,CDS,11,GCA_000056065.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01066__1__377,TIGR01066,GCA_000056065.1,rplM,50S ribosomal protein L13,363724,364168,1,scaffold_1,377,CDS,11,GCA_000056065.1__arts_core__TIGR01066,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01067__1__357,TIGR01067,GCA_000056065.1,rplN,50S ribosomal protein L14,351658,352027,1,scaffold_1,357,CDS,11,GCA_000056065.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01071__1__365,TIGR01071,GCA_000056065.1,rplO,50S ribosomal protein L15,355153,355594,1,scaffold_1,365,CDS,11,GCA_000056065.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01072__1__309,TIGR01072,GCA_000056065.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,303417,304689,1,scaffold_1,309,CDS,11,GCA_000056065.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01073__1__407,TIGR01073,GCA_000056065.1,pcrA,ATP-dependent DNA helicase PcrA,389970,392232,1,scaffold_1,407,CDS,11,GCA_000056065.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01079__1__358,TIGR01079,GCA_000056065.1,rplX,50S ribosomal protein L24,352043,352283,1,scaffold_1,358,CDS,11,GCA_000056065.1__arts_core__TIGR01079,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01082__1__1348,TIGR01082,GCA_000056065.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1311707,1313027,-1,scaffold_1,1348,CDS,11,GCA_000056065.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01083__1__902,TIGR01083,GCA_000056065.1,pdg,Ultraviolet N-glycosylase/AP lyase,866383,867013,1,scaffold_1,902,CDS,11,GCA_000056065.1__arts_core__TIGR01083,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01087__1__669,TIGR01087,GCA_000056065.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,630397,631780,1,scaffold_1,669,CDS,11,GCA_000056065.1__arts_core__TIGR01087,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01091__1__632,TIGR01091,GCA_000056065.1,upp,Uracil phosphoribosyltransferase,597440,598070,1,scaffold_1,632,CDS,11,GCA_000056065.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01128__1__700,TIGR01128,GCA_000056065.1,yqeN,putative protein YqeN,662612,663602,1,scaffold_1,700,CDS,11,GCA_000056065.1__arts_core__TIGR01128,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01131__1__633,TIGR01131,GCA_000056065.1,atpB,ATP synthase subunit a,598179,598899,1,scaffold_1,633,CDS,11,GCA_000056065.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01134__1__1272,TIGR01134,GCA_000056065.1,purF,Amidophosphoribosyltransferase,1236010,1237489,-1,scaffold_1,1272,CDS,11,GCA_000056065.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01135__1__433,TIGR01135,GCA_000056065.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],413882,415694,1,scaffold_1,433,CDS,11,GCA_000056065.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01144__1__635,TIGR01144,GCA_000056065.1,atpF,ATP synthase subunit b,599195,599702,1,scaffold_1,635,CDS,11,GCA_000056065.1__arts_core__TIGR01144,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01145__1__636,TIGR01145,GCA_000056065.1,atpH_2,ATP synthase subunit delta,599701,600244,1,scaffold_1,636,CDS,11,GCA_000056065.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01146__1__638,TIGR01146,GCA_000056065.1,atpG,ATP synthase gamma chain,601788,602751,1,scaffold_1,638,CDS,11,GCA_000056065.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01161__1__1278,TIGR01161,GCA_000056065.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1242998,1244123,-1,scaffold_1,1278,CDS,11,GCA_000056065.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01162__1__1279,TIGR01162,GCA_000056065.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1244112,1244604,-1,scaffold_1,1279,CDS,11,GCA_000056065.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01163__1__467,TIGR01163,GCA_000056065.1,rpe,Ribulose-phosphate 3-epimerase,445907,446558,1,scaffold_1,467,CDS,11,GCA_000056065.1__arts_core__TIGR01163,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01164__1__354,TIGR01164,GCA_000056065.1,rplP,50S ribosomal protein L16,350712,351156,1,scaffold_1,354,CDS,11,GCA_000056065.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01169__1__1472,TIGR01169,GCA_000056065.1,rplA,50S ribosomal protein L1,1427590,1428286,-1,scaffold_1,1472,CDS,11,GCA_000056065.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01171__1__350,TIGR01171,GCA_000056065.1,rplB,50S ribosomal protein L2,348523,349360,1,scaffold_1,350,CDS,11,GCA_000056065.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01216__1__640,TIGR01216,GCA_000056065.1,atpC,ATP synthase epsilon chain,604221,604662,1,scaffold_1,640,CDS,11,GCA_000056065.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01260__1__634,TIGR01260,GCA_000056065.1,atpH_1,ATP synthase subunit c,598917,599142,1,scaffold_1,634,CDS,11,GCA_000056065.1__arts_core__TIGR01260,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01280__1__1256,TIGR01280,GCA_000056065.1,xseB,Exodeoxyribonuclease 7 small subunit,1223891,1224131,-1,scaffold_1,1256,CDS,11,GCA_000056065.1__arts_core__TIGR01280,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01308__1__364,TIGR01308,GCA_000056065.1,rpmD,50S ribosomal protein L30,354947,355133,1,scaffold_1,364,CDS,11,GCA_000056065.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01369__1__1842,TIGR01369,GCA_000056065.1,carB_9,Carbamoyl-phosphate synthase large chain,1768786,1770661,-1,scaffold_1,1842,CDS,11,GCA_000056065.1__arts_core__TIGR01369,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01378__1__1240,TIGR01378,GCA_000056065.1,thiN,Thiamine pyrophosphokinase,1208959,1209643,-1,scaffold_1,1240,CDS,11,GCA_000056065.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01389__1__742,TIGR01389,GCA_000056065.1,recQ,ATP-dependent DNA helicase RecQ,704945,706715,1,scaffold_1,742,CDS,11,GCA_000056065.1__arts_core__TIGR01389,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01391__1__1093,TIGR01391,GCA_000056065.1,dnaG,DNA primase,1054356,1056195,-1,scaffold_1,1093,CDS,11,GCA_000056065.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01393__1__1152,TIGR01393,GCA_000056065.1,lepA,Elongation factor 4,1114523,1116362,-1,scaffold_1,1152,CDS,11,GCA_000056065.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01417__1__512,TIGR01417,GCA_000056065.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,487286,489014,1,scaffold_1,512,CDS,11,GCA_000056065.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01430__1__1295,TIGR01430,GCA_000056065.1,add,Adenosine deaminase,1262376,1263369,-1,scaffold_1,1295,CDS,11,GCA_000056065.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01448__1__687,TIGR01448,GCA_000056065.1,recD2,ATP-dependent RecD-like DNA helicase,647109,649500,1,scaffold_1,687,CDS,11,GCA_000056065.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01455__1__586,TIGR01455,GCA_000056065.1,glmM,Phosphoglucosamine mutase,555798,557151,1,scaffold_1,586,CDS,11,GCA_000056065.1__arts_core__TIGR01455,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01496__1__217,TIGR01496,GCA_000056065.1,-,hypothetical protein,212928,214020,1,scaffold_1,217,CDS,11,GCA_000056065.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01498__1__215,TIGR01498,GCA_000056065.1,folE,GTP cyclohydrolase 1,210544,211618,1,scaffold_1,215,CDS,11,GCA_000056065.1__arts_core__TIGR01498,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01513__1__276,TIGR01513,GCA_000056065.1,pncB,Nicotinate phosphoribosyltransferase,271257,272781,-1,scaffold_1,276,CDS,11,GCA_000056065.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01534__1__567,TIGR01534,GCA_000056065.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,540614,541631,1,scaffold_1,567,CDS,11,GCA_000056065.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000056065.1__TIGR01632__1__1473,TIGR01632,GCA_000056065.1,rplK,50S ribosomal protein L11,1428369,1428795,-1,scaffold_1,1473,CDS,11,GCA_000056065.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01736__1__1273,TIGR01736,GCA_000056065.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1237464,1239687,-1,scaffold_1,1273,CDS,11,GCA_000056065.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01771__1__104,TIGR01771,GCA_000056065.1,ldh,L-lactate dehydrogenase,99904,100828,-1,scaffold_1,104,CDS,11,GCA_000056065.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01951__1__1259,TIGR01951,GCA_000056065.1,nusB,Transcription antitermination protein NusB,1226390,1226789,-1,scaffold_1,1259,CDS,11,GCA_000056065.1__arts_core__TIGR01951,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01953__1__1172,TIGR01953,GCA_000056065.1,nusA,Transcription termination/antitermination protein NusA,1136667,1137888,-1,scaffold_1,1172,CDS,11,GCA_000056065.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01980__1__1602,TIGR01980,GCA_000056065.1,-,hypothetical protein,1546588,1548016,-1,scaffold_1,1602,CDS,11,GCA_000056065.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01981__1__1605,TIGR01981,GCA_000056065.1,-,hypothetical protein,1549638,1550802,-1,scaffold_1,1605,CDS,11,GCA_000056065.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01994__1__1603,TIGR01994,GCA_000056065.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1548016,1548457,-1,scaffold_1,1603,CDS,11,GCA_000056065.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02012__1__535,TIGR02012,GCA_000056065.1,recA,Protein RecA,507699,508695,1,scaffold_1,535,CDS,11,GCA_000056065.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02013__1__338,TIGR02013,GCA_000056065.1,rpoB,DNA-directed RNA polymerase subunit beta,334509,338184,1,scaffold_1,338,CDS,11,GCA_000056065.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.7,cog,cog0085,,,,, +GCA_000056065.1__TIGR02027__1__371,TIGR02027,GCA_000056065.1,rpoA,DNA-directed RNA polymerase subunit alpha,358818,359757,1,scaffold_1,371,CDS,11,GCA_000056065.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02191__1__1217,TIGR02191,GCA_000056065.1,rnc,Ribonuclease 3,1185313,1186009,-1,scaffold_1,1217,CDS,11,GCA_000056065.1__arts_core__TIGR02191,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02225__1__768,TIGR02225,GCA_000056065.1,xerD_1,Tyrosine recombinase XerD,732657,733554,1,scaffold_1,768,CDS,11,GCA_000056065.1__arts_core__TIGR02225,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02227__1__1069,TIGR02227,GCA_000056065.1,spsB,Signal peptidase IB,1028498,1029065,1,scaffold_1,1069,CDS,11,GCA_000056065.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02273__1__1207,TIGR02273,GCA_000056065.1,rimM,Ribosome maturation factor RimM,1176198,1176702,-1,scaffold_1,1207,CDS,11,GCA_000056065.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02348__1__1431,TIGR02348,GCA_000056065.1,groL,60 kDa chaperonin,1392353,1393967,-1,scaffold_1,1431,CDS,11,GCA_000056065.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02349__1__1153,TIGR02349,GCA_000056065.1,dnaJ,Chaperone protein DnaJ,1116483,1117620,-1,scaffold_1,1153,CDS,11,GCA_000056065.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02350__1__1154,TIGR02350,GCA_000056065.1,dnaK,Chaperone protein DnaK,1117702,1119547,-1,scaffold_1,1154,CDS,11,GCA_000056065.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02386__1__339,TIGR02386,GCA_000056065.1,rpoC,DNA-directed RNA polymerase subunit beta,338199,341865,1,scaffold_1,339,CDS,11,GCA_000056065.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02393__1__1092,TIGR02393,GCA_000056065.1,sigA_2,RNA polymerase sigma factor SigA,1053266,1054385,-1,scaffold_1,1092,CDS,11,GCA_000056065.1__arts_core__TIGR02393,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02487__1__187,TIGR02487,GCA_000056065.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,180997,183208,1,scaffold_1,187,CDS,11,GCA_000056065.1__arts_core__TIGR02487,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02729__1__745,TIGR02729,GCA_000056065.1,obg,GTPase Obg,709923,711177,1,scaffold_1,745,CDS,11,GCA_000056065.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03156__1__1755,TIGR03156,GCA_000056065.1,hflX,GTPase HflX,1681367,1682648,1,scaffold_1,1755,CDS,11,GCA_000056065.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03263__1__1248,TIGR03263,GCA_000056065.1,gmk_1,Guanylate kinase,1218261,1218876,-1,scaffold_1,1248,CDS,11,GCA_000056065.1__arts_core__TIGR03263,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03284__1__717,TIGR03284,GCA_000056065.1,thyA,Thymidylate synthase,678300,679257,1,scaffold_1,717,CDS,11,GCA_000056065.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03534__1__630,TIGR03534,GCA_000056065.1,prmC_1,Release factor glutamine methyltransferase,595503,596346,1,scaffold_1,630,CDS,11,GCA_000056065.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03594__1__777,TIGR03594,GCA_000056065.1,der,GTPase Der,739487,740795,1,scaffold_1,777,CDS,11,GCA_000056065.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03625__1__347,TIGR03625,GCA_000056065.1,rplC,50S ribosomal protein L3,346940,347570,1,scaffold_1,347,CDS,11,GCA_000056065.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03631__1__369,TIGR03631,GCA_000056065.1,rpsM,30S ribosomal protein S13,358006,358357,1,scaffold_1,369,CDS,11,GCA_000056065.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03632__1__370,TIGR03632,GCA_000056065.1,rpsK,30S ribosomal protein S11,358385,358775,1,scaffold_1,370,CDS,11,GCA_000056065.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03635__1__356,TIGR03635,GCA_000056065.1,rpsQ,30S ribosomal protein S17,351361,351628,1,scaffold_1,356,CDS,11,GCA_000056065.1__arts_core__TIGR03635,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03654__1__361,TIGR03654,GCA_000056065.1,rplF,50S ribosomal protein L6,353490,354021,1,scaffold_1,361,CDS,11,GCA_000056065.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03705__1__460,TIGR03705,GCA_000056065.1,ppk,Polyphosphate kinase,439501,441667,1,scaffold_1,460,CDS,11,GCA_000056065.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03725__1__1437,TIGR03725,GCA_000056065.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1398961,1399684,-1,scaffold_1,1437,CDS,11,GCA_000056065.1__arts_core__TIGR03725,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03953__1__348,TIGR03953,GCA_000056065.1,rplD,50S ribosomal protein L4,347584,348202,1,scaffold_1,348,CDS,11,GCA_000056065.1__arts_core__TIGR03953,False,False,False,,,,,,,,,,, +GCA_000182835.1__Cpn10__1__1529,Cpn10,GCA_000182835.1,groS,10 kDa chaperonin,1583082,1583367,-1,scaffold_1,1529,CDS,11,GCA_000182835.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000182835.1__GrpE__1__1255,GrpE,GCA_000182835.1,grpE,Protein GrpE,1297298,1297916,-1,scaffold_1,1255,CDS,11,GCA_000182835.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000182835.1__Methyltransf_5__1__662,Methyltransf_5,GCA_000182835.1,rsmH,Ribosomal RNA small subunit methyltransferase H,671404,672349,1,scaffold_1,662,CDS,11,GCA_000182835.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,,,, +GCA_000182835.1__PF00044.19__1__564,PF00044.19,GCA_000182835.1,,,584371,585388,1,1,564,,,,False,False,True,,Gp_dh_N,5.3e-54,179.5,lcl,564,,,,, +GCA_000182835.1__PF00185.19__1__1720,PF00185.19,GCA_000182835.1,,,1774927,1775929,-1,1,1720,,,,False,False,True,,OTCace,3.6e-53,176.9,lcl,1720,,,,, +GCA_000182835.1__PF00185.19__1__931,PF00185.19,GCA_000182835.1,,,966778,967789,1,1,931,,,,False,False,True,,OTCace,1.6e-34,116.3,lcl,931,,,,, +GCA_000182835.1__PF00204.20__1__5,PF00204.20,GCA_000182835.1,,,4361,6323,1,1,5,,,,False,False,True,,DNA_gyraseB,4.4e-61,202.2,cog,cog0187,,,,, +GCA_000182835.1__PF00204.20__1__886,PF00204.20,GCA_000182835.1,,,908124,910056,1,1,886,,,,False,False,True,,DNA_gyraseB,5.3e-53,176.0,cog,cog0187,,,,, +GCA_000182835.1__PF00227.21__1__1148,PF00227.21,GCA_000182835.1,,,1191616,1192150,-1,1,1148,,,,False,False,True,,Proteasome,1.9e-22,76.6,cog,cog5405,,,,, +GCA_000182835.1__PF00364.17__1__818,PF00364.17,GCA_000182835.1,,,847208,847691,1,1,818,,,,False,False,True,,Biotin_lipoyl,1.1e-24,83.1,cog,cog0511,,,,, +GCA_000182835.1__PF00521.15__1__6,PF00521.15,GCA_000182835.1,,,6335,8807,1,1,6,,,,False,False,True,,DNA_topoisoIV,2.3e-156,518.1,cog,cog0188,,,,, +GCA_000182835.1__PF00521.15__1__887,PF00521.15,GCA_000182835.1,,,910070,912554,1,1,887,,,,False,False,True,,DNA_topoisoIV,9e-149,493.1,cog,cog0188,,,,, +GCA_000182835.1__PF01039.17__1__821,PF01039.17,GCA_000182835.1,,,849497,850346,1,1,821,,,,False,False,True,,Carboxyl_trans,3.1e-19,65.9,cog,cog0777,,,,, +GCA_000182835.1__PF01039.17__1__822,PF01039.17,GCA_000182835.1,,,850338,851106,1,1,822,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,,,, +GCA_000182835.1__PGK__1__565,PGK,GCA_000182835.1,pgk,Phosphoglycerate kinase,585483,586695,1,scaffold_1,565,CDS,11,GCA_000182835.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000182835.1__RF0007__1__1165,RF0007,GCA_000182835.1,,,1210613,1212386,-1,1,1165,,,,False,False,True,,ABC_efflux,1.1e-87,291.7,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__1291,RF0007,GCA_000182835.1,,,1333698,1335495,-1,1,1291,,,,False,False,True,,ABC_efflux,1.1e-77,258.7,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__1904,RF0007,GCA_000182835.1,,,1947730,1949575,-1,1,1904,,,,False,False,True,,ABC_efflux,6.3e-77,256.2,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__989,RF0007,GCA_000182835.1,,,1024132,1025890,-1,1,989,,,,False,False,True,,ABC_efflux,7.3e-76,252.7,cog,cog1132,,,,, +GCA_000182835.1__RF0155__1__1902,RF0155,GCA_000182835.1,,,1945717,1946926,-1,1,1902,,,,False,False,True,,vanS,1.4e-74,248.2,lcl,1902,,,,, +GCA_000182835.1__Ribosomal_L10__1__1560,Ribosomal_L10,GCA_000182835.1,rplJ,50S ribosomal protein L10,1609088,1609598,-1,scaffold_1,1560,CDS,11,GCA_000182835.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_L23__1__340,Ribosomal_L23,GCA_000182835.1,rplW,50S ribosomal protein L23,358080,358377,1,scaffold_1,340,CDS,11,GCA_000182835.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_S8__1__351,Ribosomal_S8,GCA_000182835.1,rpsH,30S ribosomal protein S8,362946,363345,1,scaffold_1,351,CDS,11,GCA_000182835.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_S9__1__369,Ribosomal_S9,GCA_000182835.1,rpsI,30S ribosomal protein S9,374059,374455,1,scaffold_1,369,CDS,11,GCA_000182835.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00001__1__1430,TIGR00001,GCA_000182835.1,rpmI,50S ribosomal protein L35,1475367,1475568,-1,scaffold_1,1430,CDS,11,GCA_000182835.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00008__1__359,TIGR00008,GCA_000182835.1,infA,Translation initiation factor IF-1,367507,367729,1,scaffold_1,359,CDS,11,GCA_000182835.1__arts_core__TIGR00008,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00009__1__1325,TIGR00009,GCA_000182835.1,rpmB,50S ribosomal protein L28,1376175,1376361,1,scaffold_1,1325,CDS,11,GCA_000182835.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00012__1__346,TIGR00012,GCA_000182835.1,rpmC,50S ribosomal protein L29,361024,361222,1,scaffold_1,346,CDS,11,GCA_000182835.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00016__1__609,TIGR00016,GCA_000182835.1,ackA,Acetate kinase,622546,623734,1,scaffold_1,609,CDS,11,GCA_000182835.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00017__1__767,TIGR00017,GCA_000182835.1,cmk,Cytidylate kinase,783223,783856,1,scaffold_1,767,CDS,11,GCA_000182835.1__arts_core__TIGR00017,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00019__1__624,TIGR00019,GCA_000182835.1,prfA,Peptide chain release factor 1,638605,639691,1,scaffold_1,624,CDS,11,GCA_000182835.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00020__1__542,TIGR00020,GCA_000182835.1,prfB,Peptide chain release factor 2,563273,564272,1,scaffold_1,542,CDS,11,GCA_000182835.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00021__1__467,TIGR00021,GCA_000182835.1,rpiA,Ribose-5-phosphate isomerase A,483237,483930,1,scaffold_1,467,CDS,11,GCA_000182835.1__arts_core__TIGR00021,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00029__1__699,TIGR00029,GCA_000182835.1,rpsT,30S ribosomal protein S20,710644,710896,-1,scaffold_1,699,CDS,11,GCA_000182835.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00036__1__1029,TIGR00036,GCA_000182835.1,dapB,4-hydroxy-tetrahydrodipicolinate reductase,1060134,1060914,-1,scaffold_1,1029,CDS,11,GCA_000182835.1__arts_core__TIGR00036,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00038__1__1349,TIGR00038,ND02,efp_1,Elongation factor P,1397797,1398364,-1,scaffold_1,1349,CDS,11,GCA_000182835.1__arts_core__TIGR00038,True,False,False,GCA_000182835.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000182835.1__TIGR00038__1__1759,TIGR00038,ND02,efp_2,Elongation factor P,1812662,1813220,-1,scaffold_1,1759,CDS,11,GCA_000182835.1__arts_core__TIGR00038,True,False,False,GCA_000182835.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000182835.1__TIGR00042__1__1511,TIGR00042,GCA_000182835.1,-,dITP/XTP pyrophosphatase,1561512,1562133,-1,scaffold_1,1511,CDS,11,GCA_000182835.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00043__1__1133,TIGR00043,GCA_000182835.1,ybeY,Endoribonuclease YbeY,1178640,1179165,-1,scaffold_1,1133,CDS,11,GCA_000182835.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00055__1__1279,TIGR00055,GCA_000182835.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1324144,1324876,-1,scaffold_1,1279,CDS,11,GCA_000182835.1__arts_core__TIGR00055,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00057__1__626,TIGR00057,GCA_000182835.1,ywlC,Threonylcarbamoyl-AMP synthase,640525,641521,1,scaffold_1,626,CDS,11,GCA_000182835.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00059__1__363,TIGR00059,GCA_000182835.1,rplQ,50S ribosomal protein L17,369659,370043,1,scaffold_1,363,CDS,11,GCA_000182835.1__arts_core__TIGR00059,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00060__1__353,TIGR00060,GCA_000182835.1,rplR,50S ribosomal protein L18,363926,364286,1,scaffold_1,353,CDS,11,GCA_000182835.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00061__1__1352,TIGR00061,GCA_000182835.1,rplU,50S ribosomal protein L21,1399999,1400311,-1,scaffold_1,1352,CDS,11,GCA_000182835.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00062__1__1351,TIGR00062,GCA_000182835.1,rpmA,50S ribosomal protein L27,1399684,1399984,-1,scaffold_1,1351,CDS,11,GCA_000182835.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00065__1__670,TIGR00065,GCA_000182835.1,ftsZ,Cell division protein FtsZ,680677,682036,1,scaffold_1,670,CDS,11,GCA_000182835.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00071__1__367,TIGR00071,GCA_000182835.1,truA,tRNA pseudouridine synthase A,372709,373498,1,scaffold_1,367,CDS,11,GCA_000182835.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00077__1__912,TIGR00077,GCA_000182835.1,lspA,Lipoprotein signal peptidase,945698,946151,1,scaffold_1,912,CDS,11,GCA_000182835.1__arts_core__TIGR00077,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00079__1__689,TIGR00079,GCA_000182835.1,def2,Peptide deformylase 2,700081,700636,-1,scaffold_1,689,CDS,11,GCA_000182835.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00081__1__1364,TIGR00081,GCA_000182835.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1411300,1412023,-1,scaffold_1,1364,CDS,11,GCA_000182835.1__arts_core__TIGR00081,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00082__1__1269,TIGR00082,GCA_000182835.1,rbfA,Ribosome-binding factor A,1310764,1311127,-1,scaffold_1,1269,CDS,11,GCA_000182835.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00084__1__1525,TIGR00084,GCA_000182835.1,ruvA_2,Holliday junction ATP-dependent DNA helicase RuvA,1576179,1576773,-1,scaffold_1,1525,CDS,11,GCA_000182835.1__arts_core__TIGR00084,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00086__1__1708,TIGR00086,GCA_000182835.1,smpB,SsrA-binding protein,1759730,1760192,-1,scaffold_1,1708,CDS,11,GCA_000182835.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00088__1__1305,TIGR00088,GCA_000182835.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1353264,1354002,-1,scaffold_1,1305,CDS,11,GCA_000182835.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00090__1__1425,TIGR00090,GCA_000182835.1,rsfS,Ribosomal silencing factor RsfS,1472124,1472472,-1,scaffold_1,1425,CDS,11,GCA_000182835.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00092__1__1907,TIGR00092,GCA_000182835.1,ychF,Ribosome-binding ATPase YchF,1952236,1953337,-1,scaffold_1,1907,CDS,11,GCA_000182835.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00103__1__1544,TIGR00103,GCA_000182835.1,-,Nucleoid-associated protein,1594145,1594475,-1,scaffold_1,1544,CDS,11,GCA_000182835.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00105__1__301,TIGR00105,GCA_000182835.1,rpmE2,50S ribosomal protein L31 type B,313764,314016,1,scaffold_1,301,CDS,11,GCA_000182835.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00114__1__1977,TIGR00114,GCA_000182835.1,ribH,"6,7-dimethyl-8-ribityllumazine synthase",2022792,2023257,-1,scaffold_1,1977,CDS,11,GCA_000182835.1__arts_core__TIGR00114,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00115__1__704,TIGR00115,GCA_000182835.1,tig,Trigger factor,715786,717112,1,scaffold_1,704,CDS,11,GCA_000182835.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00116__1__1282,TIGR00116,GCA_000182835.1,tsf,Elongation factor Ts,1326310,1327339,-1,scaffold_1,1282,CDS,11,GCA_000182835.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00121__1__824,TIGR00121,GCA_000182835.1,birA,Bifunctional ligase/repressor BirA,851889,852555,1,scaffold_1,824,CDS,11,GCA_000182835.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00131__1__1650,TIGR00131,GCA_000182835.1,galK_2,Galactokinase,1694429,1695596,1,scaffold_1,1650,CDS,11,GCA_000182835.1__arts_core__TIGR00131,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00133__1__408,TIGR00133,GCA_000182835.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,417628,419059,1,scaffold_1,408,CDS,11,GCA_000182835.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00135__1__406,TIGR00135,GCA_000182835.1,gatC_1,Glutamyl-tRNA(Gln) amidotransferase subunit C,415875,416181,1,scaffold_1,406,CDS,11,GCA_000182835.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00150__1__572,TIGR00150,GCA_000182835.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,591784,592270,1,scaffold_1,572,CDS,11,GCA_000182835.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00152__1__1439,TIGR00152,GCA_000182835.1,coaE,Dephospho-CoA kinase,1484230,1484815,-1,scaffold_1,1439,CDS,11,GCA_000182835.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00157__1__1331,TIGR00157,GCA_000182835.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1380329,1381223,-1,scaffold_1,1331,CDS,11,GCA_000182835.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00158__1__11,TIGR00158,GCA_000182835.1,rplI,50S ribosomal protein L9,12382,12838,1,scaffold_1,11,CDS,11,GCA_000182835.1__arts_core__TIGR00158,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00165__1__9,TIGR00165,GCA_000182835.1,rpsR,30S ribosomal protein S18,9961,10198,1,scaffold_1,9,CDS,11,GCA_000182835.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00166__1__7,TIGR00166,GCA_000182835.1,rpsF,30S ribosomal protein S6,9022,9316,1,scaffold_1,7,CDS,11,GCA_000182835.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00168__1__1431,TIGR00168,GCA_000182835.1,infC,Translation initiation factor IF-3,1475588,1476110,-1,scaffold_1,1431,CDS,11,GCA_000182835.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00174__1__1405,TIGR00174,GCA_000182835.1,miaA,tRNA dimethylallyltransferase,1451212,1452130,-1,scaffold_1,1405,CDS,11,GCA_000182835.1__arts_core__TIGR00174,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00179__1__574,TIGR00179,GCA_000182835.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,593004,593898,1,scaffold_1,574,CDS,11,GCA_000182835.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00180__1__1909,TIGR00180,GCA_000182835.1,spo0J,Stage 0 sporulation protein J,1953669,1954560,-1,scaffold_1,1909,CDS,11,GCA_000182835.1__arts_core__TIGR00180,True,False,False,GCA_000182835.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000182835.1__TIGR00180__1__1911,TIGR00180,ND02,noc,Nucleoid occlusion protein,1955318,1956143,-1,scaffold_1,1911,CDS,11,GCA_000182835.1__arts_core__TIGR00180,True,False,False,GCA_000182835.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000182835.1__TIGR00186__1__1574,TIGR00186,GCA_000182835.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1619218,1619968,-1,scaffold_1,1574,CDS,11,GCA_000182835.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00187__1__1979,TIGR00187,GCA_000182835.1,ribE,Riboflavin synthase,2024469,2025084,-1,scaffold_1,1979,CDS,11,GCA_000182835.1__arts_core__TIGR00187,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00188__1__2070,TIGR00188,GCA_000182835.1,rnpA,Ribonuclease P protein component,2124826,2125192,-1,scaffold_1,2070,CDS,11,GCA_000182835.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00191__1__1656,TIGR00191,GCA_000182835.1,thrB_2,Homoserine kinase,1702419,1703283,-1,scaffold_1,1656,CDS,11,GCA_000182835.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00194__1__739,TIGR00194,GCA_000182835.1,uvrC,UvrABC system protein C,753561,755364,1,scaffold_1,739,CDS,11,GCA_000182835.1__arts_core__TIGR00194,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00196__1__1484,TIGR00196,GCA_000182835.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1528528,1529395,-1,scaffold_1,1484,CDS,11,GCA_000182835.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00219__1__657,TIGR00219,GCA_000182835.1,mreC,Cell shape-determining protein MreC,668821,669673,1,scaffold_1,657,CDS,11,GCA_000182835.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00220__1__275,TIGR00220,GCA_000182835.1,mscL,Large-conductance mechanosensitive channel,287188,287665,1,scaffold_1,275,CDS,11,GCA_000182835.1__arts_core__TIGR00220,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00233__1__283,TIGR00233,GCA_000182835.1,trpS2,Tryptophan--tRNA ligase 2,293720,294746,1,scaffold_1,283,CDS,11,GCA_000182835.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00234__1__225,TIGR00234,GCA_000182835.1,tyrS,Tyrosine--tRNA ligase,233286,234552,1,scaffold_1,225,CDS,11,GCA_000182835.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00237__1__1345,TIGR00237,GCA_000182835.1,xseA,Exodeoxyribonuclease 7 large subunit,1394688,1396059,-1,scaffold_1,1345,CDS,11,GCA_000182835.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00250__1__1516,TIGR00250,GCA_000182835.1,yrrK,Putative pre-16S rRNA nuclease,1566006,1566435,-1,scaffold_1,1516,CDS,11,GCA_000182835.1__arts_core__TIGR00250,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00256__1__807,TIGR00256,GCA_000182835.1,dtd,D-aminoacyl-tRNA deacylase,835155,835593,1,scaffold_1,807,CDS,11,GCA_000182835.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00257__1__537,TIGR00257,GCA_000182835.1,yigZ,IMPACT family member YigZ,557205,557865,-1,scaffold_1,537,CDS,11,GCA_000182835.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00281__1__763,TIGR00281,GCA_000182835.1,scpB,Segregation and condensation protein B,780370,780973,1,scaffold_1,763,CDS,11,GCA_000182835.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00302__1__1363,TIGR00302,GCA_000182835.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1411047,1411296,-1,scaffold_1,1363,CDS,11,GCA_000182835.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00337__1__299,TIGR00337,GCA_000182835.1,pyrG,CTP synthase,310653,312273,1,scaffold_1,299,CDS,11,GCA_000182835.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00344__1__1518,TIGR00344,GCA_000182835.1,alaS,Alanine--tRNA ligase,1566757,1569391,-1,scaffold_1,1518,CDS,11,GCA_000182835.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00355__1__1357,TIGR00355,GCA_000182835.1,purH,Bifunctional purine biosynthesis protein PurH,1403528,1405070,-1,scaffold_1,1357,CDS,11,GCA_000182835.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00357__1__1823,TIGR00357,GCA_000182835.1,msrB,Peptide methionine sulfoxide reductase MsrB,1867545,1867971,-1,scaffold_1,1823,CDS,11,GCA_000182835.1__arts_core__TIGR00357,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00362__1__1,TIGR00362,GCA_000182835.1,dnaA,Chromosomal replication initiator protein DnaA,103,1468,1,scaffold_1,1,CDS,11,GCA_000182835.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00382__1__705,TIGR00382,GCA_000182835.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,717263,718517,1,scaffold_1,705,CDS,11,GCA_000182835.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00392__1__674,TIGR00392,GCA_000182835.1,ileS,Isoleucine--tRNA ligase,683912,686708,1,scaffold_1,674,CDS,11,GCA_000182835.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00396__1__1490,TIGR00396,GCA_000182835.1,leuS,Leucine--tRNA ligase,1538896,1541311,-1,scaffold_1,1490,CDS,11,GCA_000182835.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00398__1__287,TIGR00398,GCA_000182835.1,metG,Methionine--tRNA ligase,298987,300970,1,scaffold_1,287,CDS,11,GCA_000182835.1__arts_core__TIGR00398,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00401__1__597,TIGR00401,GCA_000182835.1,msrA,Peptide methionine sulfoxide reductase MsrA,613861,614389,1,scaffold_1,597,CDS,11,GCA_000182835.1__arts_core__TIGR00401,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00409__1__1276,TIGR00409,GCA_000182835.1,proS,Proline--tRNA ligase,1320347,1322045,-1,scaffold_1,1276,CDS,11,GCA_000182835.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00414__1__1732,TIGR00414,GCA_000182835.1,serS,Serine--tRNA ligase,1786004,1787312,-1,scaffold_1,1732,CDS,11,GCA_000182835.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00416__1__1615,TIGR00416,GCA_000182835.1,radA,DNA repair protein RadA,1662882,1664259,-1,scaffold_1,1615,CDS,11,GCA_000182835.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00418__1__1435,TIGR00418,GCA_000182835.1,thrS,Threonine--tRNA ligase,1479245,1481177,-1,scaffold_1,1435,CDS,11,GCA_000182835.1__arts_core__TIGR00418,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00419__1__566,TIGR00419,GCA_000182835.1,tpiA,Triosephosphate isomerase,586713,587472,1,scaffold_1,566,CDS,11,GCA_000182835.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00422__1__652,TIGR00422,GCA_000182835.1,valS,Valine--tRNA ligase,662405,665045,1,scaffold_1,652,CDS,11,GCA_000182835.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00431__1__1268,TIGR00431,GCA_000182835.1,truB,tRNA pseudouridine synthase B,1309817,1310714,-1,scaffold_1,1268,CDS,11,GCA_000182835.1__arts_core__TIGR00431,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00435__1__1576,TIGR00435,GCA_000182835.1,cysS,Cysteine--tRNA ligase,1620390,1621815,-1,scaffold_1,1576,CDS,11,GCA_000182835.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00442__1__808,TIGR00442,GCA_000182835.1,hisS,Histidine--tRNA ligase,835877,837164,1,scaffold_1,808,CDS,11,GCA_000182835.1__arts_core__TIGR00442,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00447__1__307,TIGR00447,GCA_000182835.1,pth,Peptidyl-tRNA hydrolase,319487,320045,1,scaffold_1,307,CDS,11,GCA_000182835.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00456__1__732,TIGR00456,GCA_000182835.1,argS,Arginine--tRNA ligase,744793,746491,1,scaffold_1,732,CDS,11,GCA_000182835.1__arts_core__TIGR00456,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00459__1__809,TIGR00459,GCA_000182835.1,aspS,Aspartate--tRNA ligase,837179,839024,1,scaffold_1,809,CDS,11,GCA_000182835.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00464__1__1581,TIGR00464,GCA_000182835.1,gltX,Glutamate--tRNA ligase,1625941,1627444,-1,scaffold_1,1581,CDS,11,GCA_000182835.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00468__1__1416,TIGR00468,GCA_000182835.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1463878,1464928,-1,scaffold_1,1416,CDS,11,GCA_000182835.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00472__1__1415,TIGR00472,GCA_000182835.1,pheT,Phenylalanine--tRNA ligase beta subunit,1461467,1463879,-1,scaffold_1,1415,CDS,11,GCA_000182835.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00479__1__411,TIGR00479,GCA_000182835.1,-,putative RNA methyltransferase,420797,422153,1,scaffold_1,411,CDS,11,GCA_000182835.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00479__1__493,TIGR00479,GCA_000182835.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,512152,513535,-1,scaffold_1,493,CDS,11,GCA_000182835.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00481__1__382,TIGR00481,GCA_000182835.1,-,hypothetical protein,387291,387783,1,scaffold_1,382,CDS,11,GCA_000182835.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00484__1__335,TIGR00484,GCA_000182835.1,fusA,Elongation factor G,352744,354829,1,scaffold_1,335,CDS,11,GCA_000182835.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00485__1__703,TIGR00485,GCA_000182835.1,tuf,Elongation factor Tu,714413,715604,1,scaffold_1,703,CDS,11,GCA_000182835.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00486__1__1097,TIGR00486,GCA_000182835.1,-,GTP cyclohydrolase 1 type 2,1134520,1135318,-1,scaffold_1,1097,CDS,11,GCA_000182835.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00487__1__1270,TIGR00487,GCA_000182835.1,infB,Translation initiation factor IF-2,1311139,1313617,-1,scaffold_1,1270,CDS,11,GCA_000182835.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00496__1__1280,TIGR00496,GCA_000182835.1,frr,Ribosome-recycling factor,1324878,1325436,-1,scaffold_1,1280,CDS,11,GCA_000182835.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00499__1__318,TIGR00499,GCA_000182835.1,lysS,Lysine--tRNA ligase,333671,335195,1,scaffold_1,318,CDS,11,GCA_000182835.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00500__1__488,TIGR00500,GCA_000182835.1,map,Methionine aminopeptidase 1,507564,508392,1,scaffold_1,488,CDS,11,GCA_000182835.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00504__1__1058,TIGR00504,GCA_000182835.1,pcp,Pyrrolidone-carboxylate peptidase,1088522,1089134,-1,scaffold_1,1058,CDS,11,GCA_000182835.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00521__1__734,TIGR00521,GCA_000182835.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,747195,748395,1,scaffold_1,734,CDS,11,GCA_000182835.1__arts_core__TIGR00521,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00525__1__872,TIGR00525,GCA_000182835.1,folB,Dihydroneopterin aldolase,896216,896567,1,scaffold_1,872,CDS,11,GCA_000182835.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00544__1__545,TIGR00544,GCA_000182835.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,565518,566352,1,scaffold_1,545,CDS,11,GCA_000182835.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00560__1__533,TIGR00560,GCA_000182835.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,552178,552742,1,scaffold_1,533,CDS,11,GCA_000182835.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00563__1__1334,TIGR00563,GCA_000182835.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1383980,1385297,-1,scaffold_1,1334,CDS,11,GCA_000182835.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00575__1__404,TIGR00575,GCA_000182835.1,ligA,DNA ligase,412706,414722,1,scaffold_1,404,CDS,11,GCA_000182835.1__arts_core__TIGR00575,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00577__1__1440,TIGR00577,GCA_000182835.1,mutM,Formamidopyrimidine-DNA glycosylase,1484823,1485645,-1,scaffold_1,1440,CDS,11,GCA_000182835.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00580__1__308,TIGR00580,GCA_000182835.1,mfd,Transcription-repair-coupling factor,320061,323538,1,scaffold_1,308,CDS,11,GCA_000182835.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00593__1__1441,TIGR00593,GCA_000182835.1,polA,DNA polymerase I,1485655,1488319,-1,scaffold_1,1441,CDS,11,GCA_000182835.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00595__1__1336,TIGR00595,GCA_000182835.1,priA,primosomal protein N,1386246,1388628,-1,scaffold_1,1336,CDS,11,GCA_000182835.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00613__1__1130,TIGR00613,GCA_000182835.1,recO,DNA repair protein RecO,1176581,1177331,-1,scaffold_1,1130,CDS,11,GCA_000182835.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00615__1__1543,TIGR00615,GCA_000182835.1,recR,Recombination protein RecR,1593544,1594144,-1,scaffold_1,1543,CDS,11,GCA_000182835.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00630__1__549,TIGR00630,GCA_000182835.1,uvrA,UvrABC system protein A,570530,573389,1,scaffold_1,549,CDS,11,GCA_000182835.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00631__1__548,TIGR00631,GCA_000182835.1,uvrB_2,UvrABC system protein B,568498,570541,1,scaffold_1,548,CDS,11,GCA_000182835.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00635__1__1524,TIGR00635,GCA_000182835.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1575154,1576165,-1,scaffold_1,1524,CDS,11,GCA_000182835.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00643__1__1322,TIGR00643,GCA_000182835.1,recG,ATP-dependent DNA helicase RecG,1371914,1373954,-1,scaffold_1,1322,CDS,11,GCA_000182835.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00647__1__557,TIGR00647,GCA_000182835.1,whiA,putative cell division protein WhiA,577817,578750,1,scaffold_1,557,CDS,11,GCA_000182835.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00651__1__571,TIGR00651,GCA_000182835.1,pta,Phosphate acetyltransferase,590784,591774,1,scaffold_1,571,CDS,11,GCA_000182835.1__arts_core__TIGR00651,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00653__1__1403,TIGR00653,GCA_000182835.1,glnA,Glutamine synthetase,1448475,1449813,-1,scaffold_1,1403,CDS,11,GCA_000182835.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00663__1__2,TIGR00663,GCA_000182835.1,dnaN,Beta sliding clamp,1651,2779,1,1,2,CDS,11,GCA_000182835.1__arts_core__TIGR00663,False,False,True,,TIGR00663,1.1e-92,307.7,cog,cog0592,,,,, +GCA_000182835.1__TIGR00665__1__12,TIGR00665,GCA_000182835.1,dnaC,Replicative DNA helicase,12861,14232,1,scaffold_1,12,CDS,11,GCA_000182835.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00674__1__1030,TIGR00674,GCA_000182835.1,dapA,4-hydroxy-tetrahydrodipicolinate synthase,1060916,1061846,-1,scaffold_1,1030,CDS,11,GCA_000182835.1__arts_core__TIGR00674,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00690__1__1337,TIGR00690,GCA_000182835.1,rpoZ,DNA-directed RNA polymerase subunit omega,1388690,1388912,-1,scaffold_1,1337,CDS,11,GCA_000182835.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00732__1__1154,TIGR00732,GCA_000182835.1,dprA,DNA processing protein DprA,1199701,1200541,-1,scaffold_1,1154,CDS,11,GCA_000182835.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00753__1__522,TIGR00753,GCA_000182835.1,uppP,Undecaprenyl-diphosphatase,540752,541580,-1,scaffold_1,522,CDS,11,GCA_000182835.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00755__1__290,TIGR00755,GCA_000182835.1,rsmA,Ribosomal RNA small subunit methyltransferase A,302279,303170,1,scaffold_1,290,CDS,11,GCA_000182835.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1158,TIGR00762,ND02,-,DegV domain-containing protein,1202557,1203403,-1,scaffold_1,1158,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1238,TIGR00762,GCA_000182835.1,-,DegV domain-containing protein,1275213,1276050,-1,scaffold_1,1238,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1394,TIGR00762,GCA_000182835.1,degV_2,Protein DegV,1439475,1440405,1,scaffold_1,1394,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__57,TIGR00762,GCA_000182835.1,-,DegV domain-containing protein,55670,56504,1,scaffold_1,57,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__922,TIGR00762,GCA_000182835.1,degV_1,Protein DegV,957226,958108,1,scaffold_1,922,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00810__1__1710,TIGR00810,GCA_000182835.1,secG,putative protein-export membrane protein SecG,1762599,1762833,-1,scaffold_1,1710,CDS,11,GCA_000182835.1__arts_core__TIGR00810,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00855__1__1559,TIGR00855,GCA_000182835.1,rplL,50S ribosomal protein L7/L12,1608670,1609036,-1,scaffold_1,1559,CDS,11,GCA_000182835.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00871__1__1522,TIGR00871,GCA_000182835.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1573120,1574569,-1,scaffold_1,1522,CDS,11,GCA_000182835.1__arts_core__TIGR00871,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00877__1__1356,TIGR00877,GCA_000182835.1,purD,Phosphoribosylamine--glycine ligase,1402247,1403513,-1,scaffold_1,1356,CDS,11,GCA_000182835.1__arts_core__TIGR00877,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00878__1__1359,TIGR00878,GCA_000182835.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1405660,1406701,-1,scaffold_1,1359,CDS,11,GCA_000182835.1__arts_core__TIGR00878,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00922__1__1567,TIGR00922,GCA_000182835.1,nusG,Transcription termination/antitermination protein NusG,1614334,1614889,-1,scaffold_1,1567,CDS,11,GCA_000182835.1__arts_core__TIGR00922,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00952__1__700,TIGR00952,GCA_000182835.1,rpsO,30S ribosomal protein S15,711099,711369,1,scaffold_1,700,CDS,11,GCA_000182835.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00959__1__1308,TIGR00959,GCA_000182835.1,ffh,Signal recognition particle protein,1354932,1356363,-1,scaffold_1,1308,CDS,11,GCA_000182835.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00962__1__632,TIGR00962,GCA_000182835.1,atpA,ATP synthase subunit alpha,644446,645958,1,scaffold_1,632,CDS,11,GCA_000182835.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00963__1__541,TIGR00963,GCA_000182835.1,secA,Protein translocase subunit SecA,560665,563068,1,scaffold_1,541,CDS,11,GCA_000182835.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00964__1__1568,TIGR00964,GCA_000182835.1,secE,Protein translocase subunit SecE,1614980,1615151,-1,scaffold_1,1568,CDS,11,GCA_000182835.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00967__1__357,TIGR00967,GCA_000182835.1,secY,Protein translocase subunit SecY,365472,366768,1,scaffold_1,357,CDS,11,GCA_000182835.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00981__1__333,TIGR00981,GCA_000182835.1,rpsL,30S ribosomal protein S12,351817,352225,1,scaffold_1,333,CDS,11,GCA_000182835.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01009__1__344,TIGR01009,GCA_000182835.1,rpsC,30S ribosomal protein S3,359920,360592,1,scaffold_1,344,CDS,11,GCA_000182835.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01011__1__1283,TIGR01011,GCA_000182835.1,rpsB,30S ribosomal protein S2,1327401,1328163,-1,scaffold_1,1283,CDS,11,GCA_000182835.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01017__1__647,TIGR01017,GCA_000182835.1,rpsD,30S ribosomal protein S4,656328,656940,-1,scaffold_1,647,CDS,11,GCA_000182835.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01021__1__354,TIGR01021,GCA_000182835.1,rpsE,30S ribosomal protein S5,364302,364815,1,scaffold_1,354,CDS,11,GCA_000182835.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01023__1__1410,TIGR01023,GCA_000182835.1,rpmGA,50S ribosomal protein L33 1,1454191,1454341,-1,scaffold_1,1410,CDS,11,GCA_000182835.1__arts_core__TIGR01023,True,True,False,GCA_000182835.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000182835.1__TIGR01023__1__1569,TIGR01023,GCA_000182835.1,rpmG3,50S ribosomal protein L33 3,1615157,1615307,-1,scaffold_1,1569,CDS,11,GCA_000182835.1__arts_core__TIGR01023,True,True,False,GCA_000182835.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000182835.1__TIGR01024__1__1303,TIGR01024,GCA_000182835.1,rplS,50S ribosomal protein L19,1349223,1349571,-1,scaffold_1,1303,CDS,11,GCA_000182835.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01029__1__334,TIGR01029,GCA_000182835.1,rpsG,30S ribosomal protein S7,352240,352711,1,scaffold_1,334,CDS,11,GCA_000182835.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01030__1__2071,TIGR01030,GCA_000182835.1,rpmH,50S ribosomal protein L34,2125240,2125381,-1,scaffold_1,2071,CDS,11,GCA_000182835.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01031__1__744,TIGR01031,GCA_000182835.1,rpmF,50S ribosomal protein L32,760636,760828,1,scaffold_1,744,CDS,11,GCA_000182835.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01032__1__1429,TIGR01032,GCA_000182835.1,rplT,50S ribosomal protein L20,1474966,1475323,-1,scaffold_1,1429,CDS,11,GCA_000182835.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01034__1__1493,TIGR01034,GCA_000182835.1,metK,S-adenosylmethionine synthase,1544010,1545207,-1,scaffold_1,1493,CDS,11,GCA_000182835.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01039__1__634,TIGR01039,GCA_000182835.1,atpD,ATP synthase subunit beta,646950,648390,1,scaffold_1,634,CDS,11,GCA_000182835.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01044__1__343,TIGR01044,GCA_000182835.1,rplV,50S ribosomal protein L22,359553,359907,1,scaffold_1,343,CDS,11,GCA_000182835.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01049__1__337,TIGR01049,GCA_000182835.1,rpsJ,30S ribosomal protein S10,356485,356794,1,scaffold_1,337,CDS,11,GCA_000182835.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01050__1__342,TIGR01050,GCA_000182835.1,rpsS,30S ribosomal protein S19,359256,359532,1,scaffold_1,342,CDS,11,GCA_000182835.1__arts_core__TIGR01050,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01051__1__1151,TIGR01051,GCA_000182835.1,topA,DNA topoisomerase 1,1194596,1196771,-1,scaffold_1,1151,CDS,11,GCA_000182835.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01059__1__5,TIGR01059,GCA_000182835.1,gyrB,DNA gyrase subunit B,4361,6323,1,scaffold_1,5,CDS,11,GCA_000182835.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000182835.1__TIGR01060__1__1239,TIGR01060,GCA_000182835.1,eno,Enolase,1276357,1277635,1,scaffold_1,1239,CDS,11,GCA_000182835.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01063__1__6,TIGR01063,GCA_000182835.1,gyrA,DNA gyrase subunit A,6335,8807,1,scaffold_1,6,CDS,11,GCA_000182835.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000182835.1__TIGR01064__1__757,TIGR01064,GCA_000182835.1,pyk,Pyruvate kinase,774470,776240,1,scaffold_1,757,CDS,11,GCA_000182835.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01066__1__368,TIGR01066,GCA_000182835.1,rplM,50S ribosomal protein L13,373603,374047,1,scaffold_1,368,CDS,11,GCA_000182835.1__arts_core__TIGR01066,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01067__1__348,TIGR01067,GCA_000182835.1,rplN,50S ribosomal protein L14,361537,361906,1,scaffold_1,348,CDS,11,GCA_000182835.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01071__1__356,TIGR01071,GCA_000182835.1,rplO,50S ribosomal protein L15,365032,365473,1,scaffold_1,356,CDS,11,GCA_000182835.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01072__1__300,TIGR01072,GCA_000182835.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,312393,313665,1,scaffold_1,300,CDS,11,GCA_000182835.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01073__1__403,TIGR01073,GCA_000182835.1,pcrA,ATP-dependent DNA helicase PcrA,410434,412696,1,scaffold_1,403,CDS,11,GCA_000182835.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01079__1__349,TIGR01079,GCA_000182835.1,rplX,50S ribosomal protein L24,361922,362162,1,scaffold_1,349,CDS,11,GCA_000182835.1__arts_core__TIGR01079,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01082__1__1457,TIGR01082,GCA_000182835.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1500409,1501729,-1,scaffold_1,1457,CDS,11,GCA_000182835.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01083__1__899,TIGR01083,GCA_000182835.1,pdg,Ultraviolet N-glycosylase/AP lyase,930731,931361,1,scaffold_1,899,CDS,11,GCA_000182835.1__arts_core__TIGR01083,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01087__1__666,TIGR01087,GCA_000182835.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,675855,677238,1,scaffold_1,666,CDS,11,GCA_000182835.1__arts_core__TIGR01087,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01091__1__627,TIGR01091,GCA_000182835.1,upp,Uracil phosphoribosyltransferase,641620,642250,1,scaffold_1,627,CDS,11,GCA_000182835.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01128__1__698,TIGR01128,GCA_000182835.1,yqeN,putative protein YqeN,709563,710553,1,scaffold_1,698,CDS,11,GCA_000182835.1__arts_core__TIGR01128,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01131__1__628,TIGR01131,GCA_000182835.1,atpB,ATP synthase subunit a,642359,643079,1,scaffold_1,628,CDS,11,GCA_000182835.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01134__1__1360,TIGR01134,GCA_000182835.1,purF,Amidophosphoribosyltransferase,1406697,1408176,-1,scaffold_1,1360,CDS,11,GCA_000182835.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01135__1__433,TIGR01135,GCA_000182835.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],445120,446932,1,scaffold_1,433,CDS,11,GCA_000182835.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01144__1__630,TIGR01144,GCA_000182835.1,atpF,ATP synthase subunit b,643375,643882,1,scaffold_1,630,CDS,11,GCA_000182835.1__arts_core__TIGR01144,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01145__1__631,TIGR01145,GCA_000182835.1,atpH_2,ATP synthase subunit delta,643881,644424,1,scaffold_1,631,CDS,11,GCA_000182835.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01146__1__633,TIGR01146,GCA_000182835.1,atpG,ATP synthase gamma chain,645968,646931,1,scaffold_1,633,CDS,11,GCA_000182835.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01161__1__1366,TIGR01161,GCA_000182835.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1413672,1414797,-1,scaffold_1,1366,CDS,11,GCA_000182835.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01162__1__1367,TIGR01162,GCA_000182835.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1414786,1415278,-1,scaffold_1,1367,CDS,11,GCA_000182835.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01163__1__466,TIGR01163,GCA_000182835.1,rpe,Ribulose-phosphate 3-epimerase,482574,483225,1,scaffold_1,466,CDS,11,GCA_000182835.1__arts_core__TIGR01163,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01164__1__345,TIGR01164,GCA_000182835.1,rplP,50S ribosomal protein L16,360591,361035,1,scaffold_1,345,CDS,11,GCA_000182835.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01169__1__1565,TIGR01169,GCA_000182835.1,rplA,50S ribosomal protein L1,1613004,1613700,-1,scaffold_1,1565,CDS,11,GCA_000182835.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01171__1__341,TIGR01171,GCA_000182835.1,rplB,50S ribosomal protein L2,358402,359239,1,scaffold_1,341,CDS,11,GCA_000182835.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01216__1__635,TIGR01216,GCA_000182835.1,atpC,ATP synthase epsilon chain,648401,648842,1,scaffold_1,635,CDS,11,GCA_000182835.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01260__1__629,TIGR01260,GCA_000182835.1,atpH_1,ATP synthase subunit c,643097,643322,1,scaffold_1,629,CDS,11,GCA_000182835.1__arts_core__TIGR01260,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01280__1__1344,TIGR01280,GCA_000182835.1,xseB,Exodeoxyribonuclease 7 small subunit,1394456,1394696,-1,scaffold_1,1344,CDS,11,GCA_000182835.1__arts_core__TIGR01280,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01308__1__355,TIGR01308,GCA_000182835.1,rpmD,50S ribosomal protein L30,364826,365012,1,scaffold_1,355,CDS,11,GCA_000182835.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01311__1__1960,TIGR01311,GCA_000182835.1,glpK,Glycerol kinase,2003016,2004525,-1,scaffold_1,1960,CDS,11,GCA_000182835.1__arts_core__TIGR01311,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01369__1__1005,TIGR01369,GCA_000182835.1,carB_3,Carbamoyl-phosphate synthase large chain,1038958,1042159,-1,scaffold_1,1005,CDS,11,GCA_000182835.1__arts_core__TIGR01369,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01378__1__1330,TIGR01378,GCA_000182835.1,thiN,Thiamine pyrophosphokinase,1379616,1380300,-1,scaffold_1,1330,CDS,11,GCA_000182835.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01389__1__737,TIGR01389,GCA_000182835.1,recQ,ATP-dependent DNA helicase RecQ,750524,752294,1,scaffold_1,737,CDS,11,GCA_000182835.1__arts_core__TIGR01389,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01391__1__1127,TIGR01391,GCA_000182835.1,dnaG_1,DNA primase,1171475,1173314,-1,scaffold_1,1127,CDS,11,GCA_000182835.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01393__1__1252,TIGR01393,GCA_000182835.1,lepA,Elongation factor 4,1292212,1294051,-1,scaffold_1,1252,CDS,11,GCA_000182835.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01417__1__505,TIGR01417,GCA_000182835.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,523578,525306,1,scaffold_1,505,CDS,11,GCA_000182835.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01430__1__1392,TIGR01430,GCA_000182835.1,add,Adenosine deaminase,1437726,1438719,-1,scaffold_1,1392,CDS,11,GCA_000182835.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01448__1__684,TIGR01448,GCA_000182835.1,recD2,ATP-dependent RecD-like DNA helicase,692546,694937,1,scaffold_1,684,CDS,11,GCA_000182835.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01455__1__581,TIGR01455,GCA_000182835.1,glmM,Phosphoglucosamine mutase,599565,600918,1,scaffold_1,581,CDS,11,GCA_000182835.1__arts_core__TIGR01455,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01496__1__875,TIGR01496,GCA_000182835.1,-,hypothetical protein,898947,900039,1,scaffold_1,875,CDS,11,GCA_000182835.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01498__1__873,TIGR01498,GCA_000182835.1,folE,GTP cyclohydrolase 1,896563,897637,1,scaffold_1,873,CDS,11,GCA_000182835.1__arts_core__TIGR01498,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01513__1__276,TIGR01513,GCA_000182835.1,pncB2,Nicotinate phosphoribosyltransferase pncB2,287744,289178,-1,scaffold_1,276,CDS,11,GCA_000182835.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01534__1__564,TIGR01534,GCA_000182835.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,584371,585388,1,scaffold_1,564,CDS,11,GCA_000182835.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000182835.1__TIGR01632__1__1566,TIGR01632,GCA_000182835.1,rplK,50S ribosomal protein L11,1613783,1614209,-1,scaffold_1,1566,CDS,11,GCA_000182835.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01736__1__1361,TIGR01736,GCA_000182835.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1408151,1410374,-1,scaffold_1,1361,CDS,11,GCA_000182835.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01771__1__91,TIGR01771,GCA_000182835.1,ldh,L-lactate dehydrogenase,90754,91678,-1,scaffold_1,91,CDS,11,GCA_000182835.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01951__1__1347,TIGR01951,GCA_000182835.1,nusB,Transcription antitermination protein NusB,1396945,1397344,-1,scaffold_1,1347,CDS,11,GCA_000182835.1__arts_core__TIGR01951,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01953__1__1273,TIGR01953,GCA_000182835.1,nusA,Transcription termination/antitermination protein NusA,1314241,1315393,-1,scaffold_1,1273,CDS,11,GCA_000182835.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01980__1__1696,TIGR01980,GCA_000182835.1,-,hypothetical protein,1748148,1749576,-1,scaffold_1,1696,CDS,11,GCA_000182835.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01981__1__1699,TIGR01981,GCA_000182835.1,-,hypothetical protein,1751198,1752362,-1,scaffold_1,1699,CDS,11,GCA_000182835.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01994__1__1697,TIGR01994,GCA_000182835.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1749576,1750017,-1,scaffold_1,1697,CDS,11,GCA_000182835.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02012__1__534,TIGR02012,GCA_000182835.1,recA,Protein RecA,552948,554058,1,scaffold_1,534,CDS,11,GCA_000182835.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02013__1__328,TIGR02013,GCA_000182835.1,rpoB,DNA-directed RNA polymerase subunit beta,343094,346757,1,scaffold_1,328,CDS,11,GCA_000182835.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1684.7,cog,cog0085,,,,, +GCA_000182835.1__TIGR02027__1__362,TIGR02027,GCA_000182835.1,rpoA,DNA-directed RNA polymerase subunit alpha,368697,369636,1,scaffold_1,362,CDS,11,GCA_000182835.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02191__1__1313,TIGR02191,GCA_000182835.1,rnc,Ribonuclease 3,1361783,1362479,-1,scaffold_1,1313,CDS,11,GCA_000182835.1__arts_core__TIGR02191,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02225__1__760,TIGR02225,GCA_000182835.1,xerD_1,Tyrosine recombinase XerD,778396,779293,1,scaffold_1,760,CDS,11,GCA_000182835.1__arts_core__TIGR02225,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02227__1__1093,TIGR02227,GCA_000182835.1,spsB_1,Signal peptidase IB,1131399,1131966,1,scaffold_1,1093,CDS,11,GCA_000182835.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02227__1__1094,TIGR02227,GCA_000182835.1,spsB_2,Signal peptidase IB,1132020,1132590,1,scaffold_1,1094,CDS,11,GCA_000182835.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02273__1__1306,TIGR02273,GCA_000182835.1,rimM,Ribosome maturation factor RimM,1354001,1354505,-1,scaffold_1,1306,CDS,11,GCA_000182835.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02348__1__1528,TIGR02348,GCA_000182835.1,groL,60 kDa chaperonin,1581446,1583060,-1,scaffold_1,1528,CDS,11,GCA_000182835.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02349__1__1253,TIGR02349,GCA_000182835.1,dnaJ,Chaperone protein DnaJ,1294172,1295312,-1,scaffold_1,1253,CDS,11,GCA_000182835.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02350__1__1254,TIGR02350,GCA_000182835.1,dnaK,Chaperone protein DnaK,1295394,1297239,-1,scaffold_1,1254,CDS,11,GCA_000182835.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02386__1__329,TIGR02386,GCA_000182835.1,rpoC,DNA-directed RNA polymerase subunit beta,346772,350438,1,scaffold_1,329,CDS,11,GCA_000182835.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02393__1__1125,TIGR02393,GCA_000182835.1,sigA_2,RNA polymerase sigma factor SigA,1169222,1170344,-1,scaffold_1,1125,CDS,11,GCA_000182835.1__arts_core__TIGR02393,True,False,False,GCA_000182835.1__arts_dup__TIGR02393,,,,,,,,,, +GCA_000182835.1__TIGR02393__1__1126,TIGR02393,GCA_000182835.1,sigA_3,RNA polymerase sigma factor SigA,1170385,1171504,-1,scaffold_1,1126,CDS,11,GCA_000182835.1__arts_core__TIGR02393,True,False,False,GCA_000182835.1__arts_dup__TIGR02393,,,,,,,,,, +GCA_000182835.1__TIGR02487__1__203,TIGR02487,GCA_000182835.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,205592,207803,1,scaffold_1,203,CDS,11,GCA_000182835.1__arts_core__TIGR02487,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02727__1__1409,TIGR02727,GCA_000182835.1,-,hypothetical protein,1453565,1454126,-1,scaffold_1,1409,CDS,11,GCA_000182835.1__arts_core__TIGR02727,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02729__1__740,TIGR02729,GCA_000182835.1,obg,GTPase Obg,755432,756755,1,scaffold_1,740,CDS,11,GCA_000182835.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03156__1__1865,TIGR03156,GCA_000182835.1,hflX,GTPase HflX,1905751,1907032,1,scaffold_1,1865,CDS,11,GCA_000182835.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03263__1__1338,TIGR03263,GCA_000182835.1,gmk_1,Guanylate kinase,1388913,1389528,-1,scaffold_1,1338,CDS,11,GCA_000182835.1__arts_core__TIGR03263,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03284__1__715,TIGR03284,GCA_000182835.1,thyA,Thymidylate synthase,726492,727449,1,scaffold_1,715,CDS,11,GCA_000182835.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03534__1__625,TIGR03534,GCA_000182835.1,prmC_1,Release factor glutamine methyltransferase,639683,640526,1,scaffold_1,625,CDS,11,GCA_000182835.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03594__1__769,TIGR03594,GCA_000182835.1,der,GTPase Der,785226,786534,1,scaffold_1,769,CDS,11,GCA_000182835.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03625__1__338,TIGR03625,GCA_000182835.1,rplC,50S ribosomal protein L3,356819,357449,1,scaffold_1,338,CDS,11,GCA_000182835.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03631__1__360,TIGR03631,GCA_000182835.1,rpsM,30S ribosomal protein S13,367885,368236,1,scaffold_1,360,CDS,11,GCA_000182835.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03632__1__361,TIGR03632,GCA_000182835.1,rpsK,30S ribosomal protein S11,368264,368654,1,scaffold_1,361,CDS,11,GCA_000182835.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03635__1__347,TIGR03635,GCA_000182835.1,rpsQ,30S ribosomal protein S17,361240,361507,1,scaffold_1,347,CDS,11,GCA_000182835.1__arts_core__TIGR03635,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03654__1__352,TIGR03654,GCA_000182835.1,rplF,50S ribosomal protein L6,363369,363900,1,scaffold_1,352,CDS,11,GCA_000182835.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03705__1__459,TIGR03705,GCA_000182835.1,ppk,Polyphosphate kinase,475404,477570,1,scaffold_1,459,CDS,11,GCA_000182835.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03725__1__1534,TIGR03725,GCA_000182835.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1588060,1588783,-1,scaffold_1,1534,CDS,11,GCA_000182835.1__arts_core__TIGR03725,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03953__1__339,TIGR03953,GCA_000182835.1,rplD,50S ribosomal protein L4,357463,358081,1,scaffold_1,339,CDS,11,GCA_000182835.1__arts_core__TIGR03953,False,False,False,,,,,,,,,,, +GCA_000191165.1__Cpn10__1__1503,Cpn10,GCA_000191165.1,groS,10 kDa chaperonin,1449650,1449935,-1,scaffold_1,1503,CDS,11,GCA_000191165.1__arts_core__Cpn10,False,True,False,,,,,,,,False,,, +GCA_000191165.1__GrpE__1__1230,GrpE,GCA_000191165.1,grpE,Protein GrpE,1174949,1175567,-1,scaffold_1,1230,CDS,11,GCA_000191165.1__arts_core__GrpE,False,False,False,,,,,,,,False,,, +GCA_000191165.1__Methyltransf_5__1__664,Methyltransf_5,GCA_000191165.1,rsmH,Ribosomal RNA small subunit methyltransferase H,617876,618821,1,scaffold_1,664,CDS,11,GCA_000191165.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,False,,, +GCA_000191165.1__PF00044.19__1__565,PF00044.19,GCA_000191165.1,,,532544,533561,1,1,565,,,,False,False,True,,Gp_dh_N,6.3e-54,179.1,lcl,565,,False,,, +GCA_000191165.1__PF00185.19__1__1886,PF00185.19,GCA_000191165.1,,,1794458,1795415,-1,1,1886,,,,False,False,True,,OTCace,1.9e-35,119.2,lcl,1886,,False,,, +GCA_000191165.1__PF00185.19__1__959,PF00185.19,GCA_000191165.1,,,913147,913501,1,1,959,,,,False,False,True,,OTCace,0.0,48.3,cog,cog0540,,False,,, +GCA_000191165.1__PF00185.19__1__960,PF00185.19,GCA_000191165.1,,,913574,913733,1,1,960,,,,False,False,True,,OTCace,0.0,42.1,lcl,960,,False,,, +GCA_000191165.1__PF00204.20__1__5,PF00204.20,GCA_000191165.1,,,4533,6495,1,1,5,,,,False,False,True,,DNA_gyraseB,7.3e-61,201.5,cog,cog0187,,False,,, +GCA_000191165.1__PF00204.20__1__916,PF00204.20,GCA_000191165.1,,,858470,860402,1,1,916,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,False,,, +GCA_000191165.1__PF00227.21__1__1187,PF00227.21,GCA_000191165.1,,,1128592,1129126,-1,1,1187,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,False,,, +GCA_000191165.1__PF00364.17__1__818,PF00364.17,GCA_000191165.1,,,778349,778832,1,1,818,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,cog,cog0511,,False,,, +GCA_000191165.1__PF00521.15__1__6,PF00521.15,GCA_000191165.1,,,6507,8979,1,1,6,,,,False,False,True,,DNA_topoisoIV,1.2e-156,518.9,cog,cog0188,,False,,, +GCA_000191165.1__PF00521.15__1__917,PF00521.15,GCA_000191165.1,,,860416,862900,1,1,917,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,False,,, +GCA_000191165.1__PF01039.17__1__821,PF01039.17,GCA_000191165.1,,,780638,781487,1,1,821,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,False,,, +GCA_000191165.1__PF01039.17__1__822,PF01039.17,GCA_000191165.1,,,781479,782247,1,1,822,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,False,,, +GCA_000191165.1__PGK__1__566,PGK,GCA_000191165.1,pgk,Phosphoglycerate kinase,533657,534869,1,scaffold_1,566,CDS,11,GCA_000191165.1__arts_core__PGK,False,True,False,,,,,,,,False,,, +GCA_000191165.1__RF0007__1__1070,RF0007,GCA_000191165.1,,,1007685,1009443,1,1,1070,,,,False,False,True,,ABC_efflux,8.3e-78,259.1,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1204,RF0007,GCA_000191165.1,,,1143604,1145377,-1,1,1204,,,,False,False,True,,ABC_efflux,1.9e-85,284.3,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1267,RF0007,GCA_000191165.1,,,1217265,1219062,-1,1,1267,,,,False,False,True,,ABC_efflux,1.5e-77,258.3,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1819,RF0007,GCA_000191165.1,,,1726068,1727913,-1,1,1819,,,,False,False,True,,ABC_efflux,1.5e-76,255.0,cog,cog1132,,False,,, +GCA_000191165.1__RF0155__1__1817,RF0155,GCA_000191165.1,,,1724055,1725264,-1,1,1817,,,,False,False,True,,vanS,3e-74,247.0,lcl,1817,,False,,, +GCA_000191165.1__Ribosomal_L10__1__1539,Ribosomal_L10,GCA_000191165.1,rplJ,50S ribosomal protein L10,1477436,1477946,-1,scaffold_1,1539,CDS,11,GCA_000191165.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_L23__1__349,Ribosomal_L23,GCA_000191165.1,rplW,50S ribosomal protein L23,339250,339547,1,scaffold_1,349,CDS,11,GCA_000191165.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_S8__1__360,Ribosomal_S8,GCA_000191165.1,rpsH,30S ribosomal protein S8,344116,344515,1,scaffold_1,360,CDS,11,GCA_000191165.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_S9__1__378,Ribosomal_S9,GCA_000191165.1,rpsI,30S ribosomal protein S9,355230,355626,1,scaffold_1,378,CDS,11,GCA_000191165.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00001__1__1401,TIGR00001,GCA_000191165.1,rpmI,50S ribosomal protein L35,1348638,1348839,-1,scaffold_1,1401,CDS,11,GCA_000191165.1__arts_core__TIGR00001,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00008__1__368,TIGR00008,GCA_000191165.1,infA,Translation initiation factor IF-1,348677,348899,1,scaffold_1,368,CDS,11,GCA_000191165.1__arts_core__TIGR00008,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00009__1__1305,TIGR00009,GCA_000191165.1,rpmB,50S ribosomal protein L28,1260292,1260478,1,scaffold_1,1305,CDS,11,GCA_000191165.1__arts_core__TIGR00009,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00012__1__355,TIGR00012,GCA_000191165.1,rpmC,50S ribosomal protein L29,342194,342392,1,scaffold_1,355,CDS,11,GCA_000191165.1__arts_core__TIGR00012,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00016__1__614,TIGR00016,GCA_000191165.1,ackA,Acetate kinase,571861,573049,1,scaffold_1,614,CDS,11,GCA_000191165.1__arts_core__TIGR00016,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00017__1__772,TIGR00017,GCA_000191165.1,cmk,Cytidylate kinase,729216,729849,1,scaffold_1,772,CDS,11,GCA_000191165.1__arts_core__TIGR00017,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00019__1__627,TIGR00019,GCA_000191165.1,prfA,Peptide chain release factor 1,586353,587439,1,scaffold_1,627,CDS,11,GCA_000191165.1__arts_core__TIGR00019,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00020__1__544,TIGR00020,GCA_000191165.1,prfB,Peptide chain release factor 2,511138,512137,1,scaffold_1,544,CDS,11,GCA_000191165.1__arts_core__TIGR00020,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00021__1__471,TIGR00021,GCA_000191165.1,rpiA,Ribose-5-phosphate isomerase A,439964,440657,1,scaffold_1,471,CDS,11,GCA_000191165.1__arts_core__TIGR00021,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00029__1__700,TIGR00029,GCA_000191165.1,rpsT,30S ribosomal protein S20,655604,655856,-1,scaffold_1,700,CDS,11,GCA_000191165.1__arts_core__TIGR00029,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00036__1__1014,TIGR00036,GCA_000191165.1,dapB,4-hydroxy-tetrahydrodipicolinate reductase,958537,959317,-1,scaffold_1,1014,CDS,11,GCA_000191165.1__arts_core__TIGR00036,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00038__1__1332,TIGR00038,GCA_000191165.1,efp_1,Elongation factor P,1282897,1283467,-1,scaffold_1,1332,CDS,11,GCA_000191165.1__arts_core__TIGR00038,True,False,False,GCA_000191165.1__arts_dup__TIGR00038,,,,,,,False,,, +GCA_000191165.1__TIGR00038__1__1704,TIGR00038,GCA_000191165.1,efp_2,Elongation factor P,1626467,1627025,-1,scaffold_1,1704,CDS,11,GCA_000191165.1__arts_core__TIGR00038,True,False,False,GCA_000191165.1__arts_dup__TIGR00038,,,,,,,False,,, +GCA_000191165.1__TIGR00042__1__1485,TIGR00042,GCA_000191165.1,-,dITP/XTP pyrophosphatase,1428080,1428701,-1,scaffold_1,1485,CDS,11,GCA_000191165.1__arts_core__TIGR00042,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00043__1__1173,TIGR00043,GCA_000191165.1,ybeY,Endoribonuclease YbeY,1116635,1117160,-1,scaffold_1,1173,CDS,11,GCA_000191165.1__arts_core__TIGR00043,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00055__1__1256,TIGR00055,GCA_000191165.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1207214,1207946,-1,scaffold_1,1256,CDS,11,GCA_000191165.1__arts_core__TIGR00055,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00057__1__629,TIGR00057,GCA_000191165.1,ywlC,Threonylcarbamoyl-AMP synthase,588273,589269,1,scaffold_1,629,CDS,11,GCA_000191165.1__arts_core__TIGR00057,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00059__1__372,TIGR00059,GCA_000191165.1,rplQ,50S ribosomal protein L17,350829,351213,1,scaffold_1,372,CDS,11,GCA_000191165.1__arts_core__TIGR00059,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00060__1__362,TIGR00060,GCA_000191165.1,rplR,50S ribosomal protein L18,345096,345456,1,scaffold_1,362,CDS,11,GCA_000191165.1__arts_core__TIGR00060,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00061__1__1336,TIGR00061,GCA_000191165.1,rplU,50S ribosomal protein L21,1285104,1285416,-1,scaffold_1,1336,CDS,11,GCA_000191165.1__arts_core__TIGR00061,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00062__1__1335,TIGR00062,GCA_000191165.1,rpmA,50S ribosomal protein L27,1284789,1285089,-1,scaffold_1,1335,CDS,11,GCA_000191165.1__arts_core__TIGR00062,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00065__1__672,TIGR00065,GCA_000191165.1,ftsZ,Cell division protein FtsZ,627146,628505,1,scaffold_1,672,CDS,11,GCA_000191165.1__arts_core__TIGR00065,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00071__1__376,TIGR00071,GCA_000191165.1,truA,tRNA pseudouridine synthase A,353880,354669,1,scaffold_1,376,CDS,11,GCA_000191165.1__arts_core__TIGR00071,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00077__1__943,TIGR00077,GCA_000191165.1,lspA,Lipoprotein signal peptidase,895901,896354,1,scaffold_1,943,CDS,11,GCA_000191165.1__arts_core__TIGR00077,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00079__1__690,TIGR00079,GCA_000191165.1,def2,Peptide deformylase 2,645061,645616,-1,scaffold_1,690,CDS,11,GCA_000191165.1__arts_core__TIGR00079,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00081__1__1348,TIGR00081,GCA_000191165.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1296407,1297130,-1,scaffold_1,1348,CDS,11,GCA_000191165.1__arts_core__TIGR00081,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00082__1__1246,TIGR00082,GCA_000191165.1,rbfA,Ribosome-binding factor A,1193764,1194127,-1,scaffold_1,1246,CDS,11,GCA_000191165.1__arts_core__TIGR00082,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00084__1__1499,TIGR00084,GCA_000191165.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1442737,1443331,-1,scaffold_1,1499,CDS,11,GCA_000191165.1__arts_core__TIGR00084,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00086__1__850,TIGR00086,GCA_000191165.1,smpB,SsrA-binding protein,808414,808876,1,scaffold_1,850,CDS,11,GCA_000191165.1__arts_core__TIGR00086,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00088__1__1284,TIGR00088,GCA_000191165.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1236045,1236783,-1,scaffold_1,1284,CDS,11,GCA_000191165.1__arts_core__TIGR00088,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00090__1__1396,TIGR00090,GCA_000191165.1,rsfS,Ribosomal silencing factor RsfS,1345395,1345743,-1,scaffold_1,1396,CDS,11,GCA_000191165.1__arts_core__TIGR00090,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00092__1__1822,TIGR00092,GCA_000191165.1,ychF,Ribosome-binding ATPase YchF,1730573,1731674,-1,scaffold_1,1822,CDS,11,GCA_000191165.1__arts_core__TIGR00092,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00103__1__1519,TIGR00103,GCA_000191165.1,-,Nucleoid-associated protein,1461332,1461662,-1,scaffold_1,1519,CDS,11,GCA_000191165.1__arts_core__TIGR00103,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00105__1__312,TIGR00105,GCA_000191165.1,rpmE2,50S ribosomal protein L31 type B,295778,296030,1,scaffold_1,312,CDS,11,GCA_000191165.1__arts_core__TIGR00105,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00114__1__1902,TIGR00114,GCA_000191165.1,ribH,"6,7-dimethyl-8-ribityllumazine synthase",1812281,1812746,-1,scaffold_1,1902,CDS,11,GCA_000191165.1__arts_core__TIGR00114,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00115__1__706,TIGR00115,GCA_000191165.1,tig,Trigger factor,660752,662072,1,scaffold_1,706,CDS,11,GCA_000191165.1__arts_core__TIGR00115,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00116__1__1259,TIGR00116,GCA_000191165.1,tsf,Elongation factor Ts,1209380,1210409,-1,scaffold_1,1259,CDS,11,GCA_000191165.1__arts_core__TIGR00116,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00121__1__824,TIGR00121,GCA_000191165.1,birA,Bifunctional ligase/repressor BirA,783030,783696,1,scaffold_1,824,CDS,11,GCA_000191165.1__arts_core__TIGR00121,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00133__1__415,TIGR00133,GCA_000191165.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,389657,391088,1,scaffold_1,415,CDS,11,GCA_000191165.1__arts_core__TIGR00133,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00135__1__413,TIGR00135,GCA_000191165.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,387904,388210,1,scaffold_1,413,CDS,11,GCA_000191165.1__arts_core__TIGR00135,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00150__1__574,TIGR00150,GCA_000191165.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,539946,540432,1,scaffold_1,574,CDS,11,GCA_000191165.1__arts_core__TIGR00150,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00152__1__1412,TIGR00152,GCA_000191165.1,coaE,Dephospho-CoA kinase,1360164,1360749,-1,scaffold_1,1412,CDS,11,GCA_000191165.1__arts_core__TIGR00152,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00157__1__1312,TIGR00157,GCA_000191165.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1265329,1266223,-1,scaffold_1,1312,CDS,11,GCA_000191165.1__arts_core__TIGR00157,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00158__1__11,TIGR00158,GCA_000191165.1,rplI,50S ribosomal protein L9,12551,13007,1,scaffold_1,11,CDS,11,GCA_000191165.1__arts_core__TIGR00158,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00165__1__9,TIGR00165,GCA_000191165.1,rpsR,30S ribosomal protein S18,10130,10367,1,scaffold_1,9,CDS,11,GCA_000191165.1__arts_core__TIGR00165,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00166__1__7,TIGR00166,GCA_000191165.1,rpsF,30S ribosomal protein S6,9194,9488,1,scaffold_1,7,CDS,11,GCA_000191165.1__arts_core__TIGR00166,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00168__1__1402,TIGR00168,GCA_000191165.1,infC,Translation initiation factor IF-3,1348859,1349381,-1,scaffold_1,1402,CDS,11,GCA_000191165.1__arts_core__TIGR00168,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00174__1__1377,TIGR00174,GCA_000191165.1,miaA,tRNA dimethylallyltransferase,1326197,1327088,-1,scaffold_1,1377,CDS,11,GCA_000191165.1__arts_core__TIGR00174,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00179__1__576,TIGR00179,GCA_000191165.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,541164,542058,1,scaffold_1,576,CDS,11,GCA_000191165.1__arts_core__TIGR00179,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00180__1__1824,TIGR00180,2038,spo0J,Stage 0 sporulation protein J,1732006,1732897,-1,scaffold_1,1824,CDS,11,GCA_000191165.1__arts_core__TIGR00180,True,False,False,GCA_000191165.1__arts_dup__TIGR00180,,,,,,,False,,, +GCA_000191165.1__TIGR00180__1__1826,TIGR00180,2038,noc,Nucleoid occlusion protein,1733655,1734480,-1,scaffold_1,1826,CDS,11,GCA_000191165.1__arts_core__TIGR00180,True,False,False,GCA_000191165.1__arts_dup__TIGR00180,,,,,,,False,,, +GCA_000191165.1__TIGR00186__1__1558,TIGR00186,GCA_000191165.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1489480,1490230,-1,scaffold_1,1558,CDS,11,GCA_000191165.1__arts_core__TIGR00186,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00188__1__1961,TIGR00188,GCA_000191165.1,rnpA,Ribonuclease P protein component,1872165,1872531,-1,scaffold_1,1961,CDS,11,GCA_000191165.1__arts_core__TIGR00188,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00191__1__1627,TIGR00191,GCA_000191165.1,thrB_2,Homoserine kinase,1551790,1552654,-1,scaffold_1,1627,CDS,11,GCA_000191165.1__arts_core__TIGR00191,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00194__1__741,TIGR00194,GCA_000191165.1,uvrC,UvrABC system protein C,699645,701448,1,scaffold_1,741,CDS,11,GCA_000191165.1__arts_core__TIGR00194,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00196__1__1451,TIGR00196,GCA_000191165.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1394911,1395778,-1,scaffold_1,1451,CDS,11,GCA_000191165.1__arts_core__TIGR00196,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00218__1__45,TIGR00218,GCA_000191165.1,manA,Mannose-6-phosphate isomerase ManA,41678,42647,1,scaffold_1,45,CDS,11,GCA_000191165.1__arts_core__TIGR00218,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00219__1__658,TIGR00219,GCA_000191165.1,mreC,Cell shape-determining protein MreC,615294,616020,1,scaffold_1,658,CDS,11,GCA_000191165.1__arts_core__TIGR00219,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00220__1__275,TIGR00220,GCA_000191165.1,mscL,Large-conductance mechanosensitive channel,261718,262195,1,scaffold_1,275,CDS,11,GCA_000191165.1__arts_core__TIGR00220,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00233__1__294,TIGR00233,GCA_000191165.1,trpS2,Tryptophan--tRNA ligase 2,275711,276737,1,scaffold_1,294,CDS,11,GCA_000191165.1__arts_core__TIGR00233,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00234__1__224,TIGR00234,GCA_000191165.1,tyrS,Tyrosine--tRNA ligase,210600,211866,1,scaffold_1,224,CDS,11,GCA_000191165.1__arts_core__TIGR00234,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00237__1__1328,TIGR00237,GCA_000191165.1,xseA,Exodeoxyribonuclease 7 large subunit,1279780,1281151,-1,scaffold_1,1328,CDS,11,GCA_000191165.1__arts_core__TIGR00237,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00250__1__1490,TIGR00250,GCA_000191165.1,yrrK,Putative pre-16S rRNA nuclease,1432574,1433003,-1,scaffold_1,1490,CDS,11,GCA_000191165.1__arts_core__TIGR00250,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00256__1__807,TIGR00256,GCA_000191165.1,dtd,D-aminoacyl-tRNA deacylase,766186,766624,1,scaffold_1,807,CDS,11,GCA_000191165.1__arts_core__TIGR00256,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00257__1__539,TIGR00257,GCA_000191165.1,yigZ,IMPACT family member YigZ,505069,505729,-1,scaffold_1,539,CDS,11,GCA_000191165.1__arts_core__TIGR00257,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00281__1__768,TIGR00281,GCA_000191165.1,scpB,Segregation and condensation protein B,726362,726965,1,scaffold_1,768,CDS,11,GCA_000191165.1__arts_core__TIGR00281,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00302__1__1347,TIGR00302,GCA_000191165.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1296154,1296403,-1,scaffold_1,1347,CDS,11,GCA_000191165.1__arts_core__TIGR00302,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00337__1__310,TIGR00337,GCA_000191165.1,pyrG,CTP synthase,292668,294288,1,scaffold_1,310,CDS,11,GCA_000191165.1__arts_core__TIGR00337,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00344__1__1492,TIGR00344,GCA_000191165.1,alaS,Alanine--tRNA ligase,1433325,1435959,-1,scaffold_1,1492,CDS,11,GCA_000191165.1__arts_core__TIGR00344,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00355__1__1341,TIGR00355,GCA_000191165.1,purH,Bifunctional purine biosynthesis protein PurH,1288635,1290177,-1,scaffold_1,1341,CDS,11,GCA_000191165.1__arts_core__TIGR00355,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00357__1__1764,TIGR00357,GCA_000191165.1,msrB,Peptide methionine sulfoxide reductase MsrB,1673290,1673716,-1,scaffold_1,1764,CDS,11,GCA_000191165.1__arts_core__TIGR00357,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00362__1__1,TIGR00362,GCA_000191165.1,dnaA,Chromosomal replication initiator protein DnaA,276,1641,1,scaffold_1,1,CDS,11,GCA_000191165.1__arts_core__TIGR00362,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00382__1__707,TIGR00382,GCA_000191165.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,662223,663477,1,scaffold_1,707,CDS,11,GCA_000191165.1__arts_core__TIGR00382,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00392__1__676,TIGR00392,GCA_000191165.1,ileS,Isoleucine--tRNA ligase,630413,633209,1,scaffold_1,676,CDS,11,GCA_000191165.1__arts_core__TIGR00392,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00396__1__1463,TIGR00396,GCA_000191165.1,leuS,Leucine--tRNA ligase,1404966,1407381,-1,scaffold_1,1463,CDS,11,GCA_000191165.1__arts_core__TIGR00396,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00398__1__298,TIGR00398,GCA_000191165.1,metG,Methionine--tRNA ligase,281001,282984,1,scaffold_1,298,CDS,11,GCA_000191165.1__arts_core__TIGR00398,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00401__1__601,TIGR00401,GCA_000191165.1,msrA,Peptide methionine sulfoxide reductase MsrA,563158,563686,1,scaffold_1,601,CDS,11,GCA_000191165.1__arts_core__TIGR00401,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00409__1__1253,TIGR00409,GCA_000191165.1,proS,Proline--tRNA ligase,1203417,1205115,-1,scaffold_1,1253,CDS,11,GCA_000191165.1__arts_core__TIGR00409,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00414__1__1673,TIGR00414,GCA_000191165.1,serS,Serine--tRNA ligase,1599776,1601084,-1,scaffold_1,1673,CDS,11,GCA_000191165.1__arts_core__TIGR00414,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00416__1__1601,TIGR00416,GCA_000191165.1,radA,DNA repair protein RadA,1531500,1532877,-1,scaffold_1,1601,CDS,11,GCA_000191165.1__arts_core__TIGR00416,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00418__1__1408,TIGR00418,GCA_000191165.1,thrS,Threonine--tRNA ligase,1355178,1357110,-1,scaffold_1,1408,CDS,11,GCA_000191165.1__arts_core__TIGR00418,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00419__1__567,TIGR00419,GCA_000191165.1,tpiA,Triosephosphate isomerase,534887,535646,1,scaffold_1,567,CDS,11,GCA_000191165.1__arts_core__TIGR00419,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00422__1__653,TIGR00422,GCA_000191165.1,valS,Valine--tRNA ligase,608878,611518,1,scaffold_1,653,CDS,11,GCA_000191165.1__arts_core__TIGR00422,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00431__1__1245,TIGR00431,GCA_000191165.1,truB,tRNA pseudouridine synthase B,1192817,1193714,-1,scaffold_1,1245,CDS,11,GCA_000191165.1__arts_core__TIGR00431,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00435__1__1560,TIGR00435,GCA_000191165.1,cysS,Cysteine--tRNA ligase,1490652,1492077,-1,scaffold_1,1560,CDS,11,GCA_000191165.1__arts_core__TIGR00435,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00442__1__808,TIGR00442,GCA_000191165.1,hisS,Histidine--tRNA ligase,766907,768194,1,scaffold_1,808,CDS,11,GCA_000191165.1__arts_core__TIGR00442,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00447__1__318,TIGR00447,GCA_000191165.1,pth,Peptidyl-tRNA hydrolase,301566,302124,1,scaffold_1,318,CDS,11,GCA_000191165.1__arts_core__TIGR00447,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00456__1__734,TIGR00456,GCA_000191165.1,argS,Arginine--tRNA ligase,690877,692575,1,scaffold_1,734,CDS,11,GCA_000191165.1__arts_core__TIGR00456,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00459__1__809,TIGR00459,GCA_000191165.1,aspS,Aspartate--tRNA ligase,768209,770054,1,scaffold_1,809,CDS,11,GCA_000191165.1__arts_core__TIGR00459,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00464__1__1564,TIGR00464,GCA_000191165.1,gltX,Glutamate--tRNA ligase,1495421,1496924,-1,scaffold_1,1564,CDS,11,GCA_000191165.1__arts_core__TIGR00464,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00468__1__1387,TIGR00468,GCA_000191165.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1337227,1338277,-1,scaffold_1,1387,CDS,11,GCA_000191165.1__arts_core__TIGR00468,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00472__1__1386,TIGR00472,GCA_000191165.1,pheT,Phenylalanine--tRNA ligase beta subunit,1334816,1337228,-1,scaffold_1,1386,CDS,11,GCA_000191165.1__arts_core__TIGR00472,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00479__1__418,TIGR00479,GCA_000191165.1,-,putative RNA methyltransferase,392835,394191,1,scaffold_1,418,CDS,11,GCA_000191165.1__arts_core__TIGR00479,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00479__1__501,TIGR00479,GCA_000191165.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,468963,470346,-1,scaffold_1,501,CDS,11,GCA_000191165.1__arts_core__TIGR00479,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00481__1__388,TIGR00481,GCA_000191165.1,-,hypothetical protein,361846,362338,1,scaffold_1,388,CDS,11,GCA_000191165.1__arts_core__TIGR00481,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00484__1__345,TIGR00484,GCA_000191165.1,fusA,Elongation factor G,335184,337269,1,scaffold_1,345,CDS,11,GCA_000191165.1__arts_core__TIGR00484,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00485__1__705,TIGR00485,GCA_000191165.1,tuf,Elongation factor Tu,659378,660569,1,scaffold_1,705,CDS,11,GCA_000191165.1__arts_core__TIGR00485,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00486__1__1131,TIGR00486,GCA_000191165.1,-,GTP cyclohydrolase 1 type 2,1071102,1071900,-1,scaffold_1,1131,CDS,11,GCA_000191165.1__arts_core__TIGR00486,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00487__1__1247,TIGR00487,GCA_000191165.1,infB,Translation initiation factor IF-2,1194139,1196617,-1,scaffold_1,1247,CDS,11,GCA_000191165.1__arts_core__TIGR00487,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00496__1__1257,TIGR00496,GCA_000191165.1,frr,Ribosome-recycling factor,1207948,1208506,-1,scaffold_1,1257,CDS,11,GCA_000191165.1__arts_core__TIGR00496,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00499__1__329,TIGR00499,GCA_000191165.1,lysS,Lysine--tRNA ligase,315865,317371,1,scaffold_1,329,CDS,11,GCA_000191165.1__arts_core__TIGR00499,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00500__1__496,TIGR00500,GCA_000191165.1,map,Methionine aminopeptidase 1,464369,465197,1,scaffold_1,496,CDS,11,GCA_000191165.1__arts_core__TIGR00500,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00504__1__1094,TIGR00504,GCA_000191165.1,pcp,Pyrrolidone-carboxylate peptidase,1029182,1029794,-1,scaffold_1,1094,CDS,11,GCA_000191165.1__arts_core__TIGR00504,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00521__1__736,TIGR00521,GCA_000191165.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,693279,694479,1,scaffold_1,736,CDS,11,GCA_000191165.1__arts_core__TIGR00521,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00525__1__214,TIGR00525,GCA_000191165.1,folB,Dihydroneopterin aldolase,201185,201536,1,scaffold_1,214,CDS,11,GCA_000191165.1__arts_core__TIGR00525,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00544__1__547,TIGR00544,GCA_000191165.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,513384,514218,1,scaffold_1,547,CDS,11,GCA_000191165.1__arts_core__TIGR00544,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00560__1__535,TIGR00560,GCA_000191165.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,500044,500608,1,scaffold_1,535,CDS,11,GCA_000191165.1__arts_core__TIGR00560,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00563__1__1315,TIGR00563,GCA_000191165.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1268980,1270297,-1,scaffold_1,1315,CDS,11,GCA_000191165.1__arts_core__TIGR00563,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00575__1__411,TIGR00575,GCA_000191165.1,ligA,DNA ligase,384735,386751,1,scaffold_1,411,CDS,11,GCA_000191165.1__arts_core__TIGR00575,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00577__1__1413,TIGR00577,GCA_000191165.1,mutM,Formamidopyrimidine-DNA glycosylase,1360757,1361579,-1,scaffold_1,1413,CDS,11,GCA_000191165.1__arts_core__TIGR00577,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00580__1__319,TIGR00580,GCA_000191165.1,mfd,Transcription-repair-coupling factor,302140,305632,1,scaffold_1,319,CDS,11,GCA_000191165.1__arts_core__TIGR00580,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00593__1__1414,TIGR00593,GCA_000191165.1,polA,DNA polymerase I,1361589,1364250,-1,scaffold_1,1414,CDS,11,GCA_000191165.1__arts_core__TIGR00593,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00595__1__1317,TIGR00595,GCA_000191165.1,priA,Primosomal protein N,1271251,1273633,-1,scaffold_1,1317,CDS,11,GCA_000191165.1__arts_core__TIGR00595,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00613__1__1170,TIGR00613,GCA_000191165.1,recO,DNA repair protein RecO,1114576,1115326,-1,scaffold_1,1170,CDS,11,GCA_000191165.1__arts_core__TIGR00613,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00615__1__1518,TIGR00615,GCA_000191165.1,recR,Recombination protein RecR,1460731,1461331,-1,scaffold_1,1518,CDS,11,GCA_000191165.1__arts_core__TIGR00615,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00630__1__551,TIGR00630,GCA_000191165.1,uvrA,UvrABC system protein A,518396,521252,1,scaffold_1,551,CDS,11,GCA_000191165.1__arts_core__TIGR00630,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00631__1__550,TIGR00631,GCA_000191165.1,uvrB_2,UvrABC system protein B,516364,518407,1,scaffold_1,550,CDS,11,GCA_000191165.1__arts_core__TIGR00631,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00635__1__1498,TIGR00635,GCA_000191165.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1441713,1442724,-1,scaffold_1,1498,CDS,11,GCA_000191165.1__arts_core__TIGR00635,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00643__1__1302,TIGR00643,GCA_000191165.1,recG,ATP-dependent DNA helicase RecG,1256031,1258071,-1,scaffold_1,1302,CDS,11,GCA_000191165.1__arts_core__TIGR00643,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00647__1__558,TIGR00647,GCA_000191165.1,whiA,putative cell division protein WhiA,525907,526840,1,scaffold_1,558,CDS,11,GCA_000191165.1__arts_core__TIGR00647,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00651__1__573,TIGR00651,GCA_000191165.1,pta,Phosphate acetyltransferase,538946,539936,1,scaffold_1,573,CDS,11,GCA_000191165.1__arts_core__TIGR00651,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00653__1__1374,TIGR00653,GCA_000191165.1,glnA,Glutamine synthetase,1323462,1324800,-1,scaffold_1,1374,CDS,11,GCA_000191165.1__arts_core__TIGR00653,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00663__1__2,TIGR00663,GCA_000191165.1,dnaN,Beta sliding clamp,1822,2950,1,scaffold_1,2,CDS,11,GCA_000191165.1__arts_core__TIGR00663,False,False,True,,TIGR00663,3.8e-91,302.5,cog,cog0592,,False,,, +GCA_000191165.1__TIGR00665__1__12,TIGR00665,GCA_000191165.1,dnaC,Replicative DNA helicase,13030,14401,1,scaffold_1,12,CDS,11,GCA_000191165.1__arts_core__TIGR00665,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00674__1__1015,TIGR00674,GCA_000191165.1,dapA,4-hydroxy-tetrahydrodipicolinate synthase,959318,960248,-1,scaffold_1,1015,CDS,11,GCA_000191165.1__arts_core__TIGR00674,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00690__1__1318,TIGR00690,GCA_000191165.1,rpoZ,DNA-directed RNA polymerase subunit omega,1273695,1273917,-1,scaffold_1,1318,CDS,11,GCA_000191165.1__arts_core__TIGR00690,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00732__1__1192,TIGR00732,GCA_000191165.1,dprA,DNA processing protein DprA,1135398,1136238,-1,scaffold_1,1192,CDS,11,GCA_000191165.1__arts_core__TIGR00732,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00753__1__523,TIGR00753,GCA_000191165.1,uppP,Undecaprenyl-diphosphatase,488653,489481,-1,scaffold_1,523,CDS,11,GCA_000191165.1__arts_core__TIGR00753,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00755__1__301,TIGR00755,GCA_000191165.1,rsmA,Ribosomal RNA small subunit methyltransferase A,284293,285184,1,scaffold_1,301,CDS,11,GCA_000191165.1__arts_core__TIGR00755,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__1196,TIGR00762,2038,-,DegV domain-containing protein,1138261,1139107,-1,scaffold_1,1196,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__1209,TIGR00762,GCA_000191165.1,-,DegV domain-containing protein,1150236,1151073,-1,scaffold_1,1209,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__56,TIGR00762,2038,-,DegV domain-containing protein,53050,53884,1,scaffold_1,56,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__950,TIGR00762,GCA_000191165.1,degV,Protein DegV,905193,906075,1,scaffold_1,950,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00810__1__848,TIGR00810,GCA_000191165.1,secG,putative protein-export membrane protein SecG,805722,805956,1,scaffold_1,848,CDS,11,GCA_000191165.1__arts_core__TIGR00810,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00855__1__1538,TIGR00855,GCA_000191165.1,rplL,50S ribosomal protein L7/L12,1477018,1477384,-1,scaffold_1,1538,CDS,11,GCA_000191165.1__arts_core__TIGR00855,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00871__1__1496,TIGR00871,GCA_000191165.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1439688,1441137,-1,scaffold_1,1496,CDS,11,GCA_000191165.1__arts_core__TIGR00871,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00877__1__1340,TIGR00877,GCA_000191165.1,purD,Phosphoribosylamine--glycine ligase,1287354,1288620,-1,scaffold_1,1340,CDS,11,GCA_000191165.1__arts_core__TIGR00877,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00878__1__1343,TIGR00878,GCA_000191165.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1290758,1291808,-1,scaffold_1,1343,CDS,11,GCA_000191165.1__arts_core__TIGR00878,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00922__1__1547,TIGR00922,GCA_000191165.1,nusG,Transcription termination/antitermination protein NusG,1484586,1485141,-1,scaffold_1,1547,CDS,11,GCA_000191165.1__arts_core__TIGR00922,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00952__1__701,TIGR00952,GCA_000191165.1,rpsO,30S ribosomal protein S15,656059,656329,1,scaffold_1,701,CDS,11,GCA_000191165.1__arts_core__TIGR00952,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00959__1__1287,TIGR00959,GCA_000191165.1,ffh,Signal recognition particle protein,1237741,1239145,-1,scaffold_1,1287,CDS,11,GCA_000191165.1__arts_core__TIGR00959,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00962__1__635,TIGR00962,GCA_000191165.1,atpA,ATP synthase subunit alpha,592194,593706,1,scaffold_1,635,CDS,11,GCA_000191165.1__arts_core__TIGR00962,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00963__1__543,TIGR00963,GCA_000191165.1,secA,Protein translocase subunit SecA,508529,510932,1,scaffold_1,543,CDS,11,GCA_000191165.1__arts_core__TIGR00963,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00964__1__1548,TIGR00964,GCA_000191165.1,secE,Protein translocase subunit SecE,1485232,1485403,-1,scaffold_1,1548,CDS,11,GCA_000191165.1__arts_core__TIGR00964,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00967__1__366,TIGR00967,GCA_000191165.1,secY,Protein translocase subunit SecY,346642,347938,1,scaffold_1,366,CDS,11,GCA_000191165.1__arts_core__TIGR00967,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00981__1__343,TIGR00981,GCA_000191165.1,rpsL,30S ribosomal protein S12,334257,334665,1,scaffold_1,343,CDS,11,GCA_000191165.1__arts_core__TIGR00981,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01009__1__353,TIGR01009,GCA_000191165.1,rpsC,30S ribosomal protein S3,341090,341762,1,scaffold_1,353,CDS,11,GCA_000191165.1__arts_core__TIGR01009,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01011__1__1260,TIGR01011,GCA_000191165.1,rpsB,30S ribosomal protein S2,1210471,1211233,-1,scaffold_1,1260,CDS,11,GCA_000191165.1__arts_core__TIGR01011,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01017__1__648,TIGR01017,GCA_000191165.1,rpsD,30S ribosomal protein S4,602804,603416,-1,scaffold_1,648,CDS,11,GCA_000191165.1__arts_core__TIGR01017,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01021__1__363,TIGR01021,GCA_000191165.1,rpsE,30S ribosomal protein S5,345472,345985,1,scaffold_1,363,CDS,11,GCA_000191165.1__arts_core__TIGR01021,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01023__1__1382,TIGR01023,GCA_000191165.1,rpmGA,50S ribosomal protein L33 1,1329187,1329337,-1,scaffold_1,1382,CDS,11,GCA_000191165.1__arts_core__TIGR01023,True,True,False,GCA_000191165.1__arts_dup__TIGR01023,,,,,,,False,,, +GCA_000191165.1__TIGR01023__1__1549,TIGR01023,GCA_000191165.1,rpmG3,50S ribosomal protein L33 3,1485409,1485559,-1,scaffold_1,1549,CDS,11,GCA_000191165.1__arts_core__TIGR01023,True,True,False,GCA_000191165.1__arts_dup__TIGR01023,,,,,,,False,,, +GCA_000191165.1__TIGR01024__1__1280,TIGR01024,GCA_000191165.1,rplS,50S ribosomal protein L19,1232805,1233153,-1,scaffold_1,1280,CDS,11,GCA_000191165.1__arts_core__TIGR01024,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01029__1__344,TIGR01029,GCA_000191165.1,rpsG,30S ribosomal protein S7,334680,335151,1,scaffold_1,344,CDS,11,GCA_000191165.1__arts_core__TIGR01029,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01030__1__1962,TIGR01030,GCA_000191165.1,rpmH,50S ribosomal protein L34,1872579,1872720,-1,scaffold_1,1962,CDS,11,GCA_000191165.1__arts_core__TIGR01030,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01031__1__747,TIGR01031,GCA_000191165.1,rpmF,50S ribosomal protein L32,706720,706912,1,scaffold_1,747,CDS,11,GCA_000191165.1__arts_core__TIGR01031,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01032__1__1400,TIGR01032,GCA_000191165.1,rplT,50S ribosomal protein L20,1348237,1348594,-1,scaffold_1,1400,CDS,11,GCA_000191165.1__arts_core__TIGR01032,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01034__1__1467,TIGR01034,GCA_000191165.1,metK,S-adenosylmethionine synthase,1411151,1412348,-1,scaffold_1,1467,CDS,11,GCA_000191165.1__arts_core__TIGR01034,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01039__1__637,TIGR01039,GCA_000191165.1,atpD,ATP synthase subunit beta,594698,596138,1,scaffold_1,637,CDS,11,GCA_000191165.1__arts_core__TIGR01039,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01044__1__352,TIGR01044,GCA_000191165.1,rplV,50S ribosomal protein L22,340723,341077,1,scaffold_1,352,CDS,11,GCA_000191165.1__arts_core__TIGR01044,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01049__1__346,TIGR01049,GCA_000191165.1,rpsJ,30S ribosomal protein S10,337655,337964,1,scaffold_1,346,CDS,11,GCA_000191165.1__arts_core__TIGR01049,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01050__1__351,TIGR01050,GCA_000191165.1,rpsS,30S ribosomal protein S19,340426,340702,1,scaffold_1,351,CDS,11,GCA_000191165.1__arts_core__TIGR01050,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01051__1__1190,TIGR01051,GCA_000191165.1,topA,DNA topoisomerase 1,1131572,1133756,-1,scaffold_1,1190,CDS,11,GCA_000191165.1__arts_core__TIGR01051,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01059__1__5,TIGR01059,GCA_000191165.1,gyrB,DNA gyrase subunit B,4533,6495,1,scaffold_1,5,CDS,11,GCA_000191165.1__arts_core__TIGR01059,False,False,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01060__1__1210,TIGR01060,GCA_000191165.1,eno,Enolase,1151380,1152658,1,scaffold_1,1210,CDS,11,GCA_000191165.1__arts_core__TIGR01060,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01063__1__6,TIGR01063,GCA_000191165.1,gyrA,DNA gyrase subunit A,6507,8979,1,scaffold_1,6,CDS,11,GCA_000191165.1__arts_core__TIGR01063,False,False,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01064__1__760,TIGR01064,GCA_000191165.1,pyk,Pyruvate kinase,720192,721962,1,scaffold_1,760,CDS,11,GCA_000191165.1__arts_core__TIGR01064,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01066__1__377,TIGR01066,GCA_000191165.1,rplM,50S ribosomal protein L13,354774,355218,1,scaffold_1,377,CDS,11,GCA_000191165.1__arts_core__TIGR01066,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01067__1__357,TIGR01067,GCA_000191165.1,rplN,50S ribosomal protein L14,342707,343076,1,scaffold_1,357,CDS,11,GCA_000191165.1__arts_core__TIGR01067,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01071__1__365,TIGR01071,GCA_000191165.1,rplO,50S ribosomal protein L15,346202,346643,1,scaffold_1,365,CDS,11,GCA_000191165.1__arts_core__TIGR01071,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01072__1__311,TIGR01072,GCA_000191165.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,294407,295679,1,scaffold_1,311,CDS,11,GCA_000191165.1__arts_core__TIGR01072,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01073__1__410,TIGR01073,GCA_000191165.1,pcrA,ATP-dependent DNA helicase PcrA,382463,384725,1,scaffold_1,410,CDS,11,GCA_000191165.1__arts_core__TIGR01073,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01079__1__358,TIGR01079,GCA_000191165.1,rplX,50S ribosomal protein L24,343092,343332,1,scaffold_1,358,CDS,11,GCA_000191165.1__arts_core__TIGR01079,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01082__1__1422,TIGR01082,GCA_000191165.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1368565,1369885,-1,scaffold_1,1422,CDS,11,GCA_000191165.1__arts_core__TIGR01082,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01083__1__929,TIGR01083,GCA_000191165.1,pdg,Ultraviolet N-glycosylase/AP lyase,881088,881718,1,scaffold_1,929,CDS,11,GCA_000191165.1__arts_core__TIGR01083,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01087__1__668,TIGR01087,GCA_000191165.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,622324,623707,1,scaffold_1,668,CDS,11,GCA_000191165.1__arts_core__TIGR01087,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01091__1__630,TIGR01091,GCA_000191165.1,upp,Uracil phosphoribosyltransferase,589368,589998,1,scaffold_1,630,CDS,11,GCA_000191165.1__arts_core__TIGR01091,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01128__1__699,TIGR01128,GCA_000191165.1,yqeN,putative protein YqeN,654522,655512,1,scaffold_1,699,CDS,11,GCA_000191165.1__arts_core__TIGR01128,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01131__1__631,TIGR01131,GCA_000191165.1,atpB,ATP synthase subunit a,590107,590827,1,scaffold_1,631,CDS,11,GCA_000191165.1__arts_core__TIGR01131,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01134__1__1344,TIGR01134,GCA_000191165.1,purF,Amidophosphoribosyltransferase,1291804,1293283,-1,scaffold_1,1344,CDS,11,GCA_000191165.1__arts_core__TIGR01134,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01135__1__436,TIGR01135,GCA_000191165.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],407091,408903,1,scaffold_1,436,CDS,11,GCA_000191165.1__arts_core__TIGR01135,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01144__1__633,TIGR01144,GCA_000191165.1,atpF,ATP synthase subunit b,591123,591630,1,scaffold_1,633,CDS,11,GCA_000191165.1__arts_core__TIGR01144,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01145__1__634,TIGR01145,GCA_000191165.1,atpH_2,ATP synthase subunit delta,591629,592172,1,scaffold_1,634,CDS,11,GCA_000191165.1__arts_core__TIGR01145,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01146__1__636,TIGR01146,GCA_000191165.1,atpG,ATP synthase gamma chain,593716,594679,1,scaffold_1,636,CDS,11,GCA_000191165.1__arts_core__TIGR01146,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01161__1__1350,TIGR01161,GCA_000191165.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1298792,1299917,-1,scaffold_1,1350,CDS,11,GCA_000191165.1__arts_core__TIGR01161,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01162__1__1351,TIGR01162,GCA_000191165.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1299906,1300398,-1,scaffold_1,1351,CDS,11,GCA_000191165.1__arts_core__TIGR01162,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01163__1__470,TIGR01163,GCA_000191165.1,rpe,Ribulose-phosphate 3-epimerase,439301,439952,1,scaffold_1,470,CDS,11,GCA_000191165.1__arts_core__TIGR01163,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01164__1__354,TIGR01164,GCA_000191165.1,rplP,50S ribosomal protein L16,341761,342205,1,scaffold_1,354,CDS,11,GCA_000191165.1__arts_core__TIGR01164,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01169__1__1545,TIGR01169,GCA_000191165.1,rplA,50S ribosomal protein L1,1483256,1483952,-1,scaffold_1,1545,CDS,11,GCA_000191165.1__arts_core__TIGR01169,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01171__1__350,TIGR01171,GCA_000191165.1,rplB,50S ribosomal protein L2,339572,340409,1,scaffold_1,350,CDS,11,GCA_000191165.1__arts_core__TIGR01171,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01216__1__638,TIGR01216,GCA_000191165.1,atpC,ATP synthase epsilon chain,596149,596590,1,scaffold_1,638,CDS,11,GCA_000191165.1__arts_core__TIGR01216,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01260__1__632,TIGR01260,GCA_000191165.1,atpH_1,ATP synthase subunit c,590845,591070,1,scaffold_1,632,CDS,11,GCA_000191165.1__arts_core__TIGR01260,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01280__1__1327,TIGR01280,GCA_000191165.1,xseB,Exodeoxyribonuclease 7 small subunit,1279548,1279788,-1,scaffold_1,1327,CDS,11,GCA_000191165.1__arts_core__TIGR01280,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01308__1__364,TIGR01308,GCA_000191165.1,rpmD,50S ribosomal protein L30,345996,346182,1,scaffold_1,364,CDS,11,GCA_000191165.1__arts_core__TIGR01308,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01369__1__1883,TIGR01369,GCA_000191165.1,carB_8,Carbamoyl-phosphate synthase large chain,1788915,1792104,-1,scaffold_1,1883,CDS,11,GCA_000191165.1__arts_core__TIGR01369,False,True,False,,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit",,,,,CP000156.1.region002,True,CP000156.1.region002__arts_bgc,"Purines, pyrimidines, nucleosides, and nucleotides",TIGR01369 +GCA_000191165.1__TIGR01378__1__1311,TIGR01378,GCA_000191165.1,thiN,Thiamine pyrophosphokinase,1264616,1265300,-1,scaffold_1,1311,CDS,11,GCA_000191165.1__arts_core__TIGR01378,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01389__1__739,TIGR01389,GCA_000191165.1,recQ,ATP-dependent DNA helicase RecQ,696608,698378,1,scaffold_1,739,CDS,11,GCA_000191165.1__arts_core__TIGR01389,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01391__1__1167,TIGR01391,GCA_000191165.1,dnaG,DNA primase,1109471,1111310,-1,scaffold_1,1167,CDS,11,GCA_000191165.1__arts_core__TIGR01391,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01393__1__1227,TIGR01393,GCA_000191165.1,lepA,Elongation factor 4,1169866,1171705,-1,scaffold_1,1227,CDS,11,GCA_000191165.1__arts_core__TIGR01393,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01417__1__513,TIGR01417,GCA_000191165.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,480411,482139,1,scaffold_1,513,CDS,11,GCA_000191165.1__arts_core__TIGR01417,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01430__1__1368,TIGR01430,GCA_000191165.1,add,Adenosine deaminase,1318195,1319188,-1,scaffold_1,1368,CDS,11,GCA_000191165.1__arts_core__TIGR01430,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01430__1__973,TIGR01430,GCA_000191165.1,-,Adenine deaminase,925115,926138,-1,scaffold_1,973,CDS,11,GCA_000191165.1__arts_core__TIGR01430,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01448__1__686,TIGR01448,GCA_000191165.1,recD2,ATP-dependent RecD-like DNA helicase,639035,641426,1,scaffold_1,686,CDS,11,GCA_000191165.1__arts_core__TIGR01448,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01455__1__583,TIGR01455,GCA_000191165.1,glmM,Phosphoglucosamine mutase,547727,549080,1,scaffold_1,583,CDS,11,GCA_000191165.1__arts_core__TIGR01455,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01496__1__217,TIGR01496,GCA_000191165.1,-,hypothetical protein,203916,205008,1,scaffold_1,217,CDS,11,GCA_000191165.1__arts_core__TIGR01496,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01498__1__215,TIGR01498,GCA_000191165.1,folE,GTP cyclohydrolase 1,201532,202606,1,scaffold_1,215,CDS,11,GCA_000191165.1__arts_core__TIGR01498,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01513__1__276,TIGR01513,GCA_000191165.1,pncB,Nicotinate phosphoribosyltransferase,262274,263798,-1,scaffold_1,276,CDS,11,GCA_000191165.1__arts_core__TIGR01513,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01534__1__565,TIGR01534,GCA_000191165.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,532544,533561,1,scaffold_1,565,CDS,11,GCA_000191165.1__arts_core__TIGR01534,False,True,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01632__1__1546,TIGR01632,GCA_000191165.1,rplK,50S ribosomal protein L11,1484035,1484461,-1,scaffold_1,1546,CDS,11,GCA_000191165.1__arts_core__TIGR01632,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01736__1__1345,TIGR01736,GCA_000191165.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1293258,1295481,-1,scaffold_1,1345,CDS,11,GCA_000191165.1__arts_core__TIGR01736,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01771__1__100,TIGR01771,GCA_000191165.1,ldh,L-lactate dehydrogenase,90513,91437,-1,scaffold_1,100,CDS,11,GCA_000191165.1__arts_core__TIGR01771,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01951__1__1330,TIGR01951,GCA_000191165.1,nusB,Transcription antitermination protein NusB,1282048,1282447,-1,scaffold_1,1330,CDS,11,GCA_000191165.1__arts_core__TIGR01951,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01953__1__1250,TIGR01953,GCA_000191165.1,nusA,Transcription termination/antitermination protein NusA,1197241,1198462,-1,scaffold_1,1250,CDS,11,GCA_000191165.1__arts_core__TIGR01953,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01980__1__865,TIGR01980,GCA_000191165.1,-,hypothetical protein,818024,819452,1,scaffold_1,865,CDS,11,GCA_000191165.1__arts_core__TIGR01980,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01981__1__862,TIGR01981,GCA_000191165.1,-,hypothetical protein,815238,816402,1,scaffold_1,862,CDS,11,GCA_000191165.1__arts_core__TIGR01981,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01994__1__864,TIGR01994,GCA_000191165.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,817583,818024,1,scaffold_1,864,CDS,11,GCA_000191165.1__arts_core__TIGR01994,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02012__1__536,TIGR02012,GCA_000191165.1,recA,Protein RecA,500813,501923,1,scaffold_1,536,CDS,11,GCA_000191165.1__arts_core__TIGR02012,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02013__1__340,TIGR02013,GCA_000191165.1,rpoB,DNA-directed RNA polymerase subunit beta,325558,329233,1,scaffold_1,340,CDS,11,GCA_000191165.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.5,cog,cog0085,,False,,, +GCA_000191165.1__TIGR02027__1__371,TIGR02027,GCA_000191165.1,rpoA,DNA-directed RNA polymerase subunit alpha,349867,350806,1,scaffold_1,371,CDS,11,GCA_000191165.1__arts_core__TIGR02027,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02191__1__1293,TIGR02191,GCA_000191165.1,rnc,Ribonuclease 3,1245896,1246592,-1,scaffold_1,1293,CDS,11,GCA_000191165.1__arts_core__TIGR02191,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02225__1__765,TIGR02225,GCA_000191165.1,xerD_1,Tyrosine recombinase XerD,724388,725285,1,scaffold_1,765,CDS,11,GCA_000191165.1__arts_core__TIGR02225,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02227__1__1127,TIGR02227,GCA_000191165.1,spsB,Signal peptidase IB,1066949,1067516,1,scaffold_1,1127,CDS,11,GCA_000191165.1__arts_core__TIGR02227,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02273__1__1285,TIGR02273,GCA_000191165.1,rimM,Ribosome maturation factor RimM,1236782,1237286,-1,scaffold_1,1285,CDS,11,GCA_000191165.1__arts_core__TIGR02273,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02348__1__1502,TIGR02348,GCA_000191165.1,groL,60 kDa chaperonin,1448010,1449624,-1,scaffold_1,1502,CDS,11,GCA_000191165.1__arts_core__TIGR02348,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02349__1__1228,TIGR02349,GCA_000191165.1,dnaJ,Chaperone protein DnaJ,1171826,1172963,-1,scaffold_1,1228,CDS,11,GCA_000191165.1__arts_core__TIGR02349,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02350__1__1229,TIGR02350,GCA_000191165.1,dnaK,Chaperone protein DnaK,1173045,1174890,-1,scaffold_1,1229,CDS,11,GCA_000191165.1__arts_core__TIGR02350,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02386__1__341,TIGR02386,GCA_000191165.1,rpoC,DNA-directed RNA polymerase subunit beta,329248,332914,1,scaffold_1,341,CDS,11,GCA_000191165.1__arts_core__TIGR02386,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02393__1__1165,TIGR02393,GCA_000191165.1,sigA_2,RNA polymerase sigma factor SigA,1107218,1108340,-1,scaffold_1,1165,CDS,11,GCA_000191165.1__arts_core__TIGR02393,True,False,False,GCA_000191165.1__arts_dup__TIGR02393,,,,,,,False,,, +GCA_000191165.1__TIGR02393__1__1166,TIGR02393,GCA_000191165.1,sigA_3,RNA polymerase sigma factor SigA,1108381,1109500,-1,scaffold_1,1166,CDS,11,GCA_000191165.1__arts_core__TIGR02393,True,False,False,GCA_000191165.1__arts_dup__TIGR02393,,,,,,,False,,, +GCA_000191165.1__TIGR02487__1__184,TIGR02487,GCA_000191165.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,173110,175321,1,scaffold_1,184,CDS,11,GCA_000191165.1__arts_core__TIGR02487,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02727__1__1381,TIGR02727,GCA_000191165.1,-,hypothetical protein,1328560,1329133,-1,scaffold_1,1381,CDS,11,GCA_000191165.1__arts_core__TIGR02727,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02729__1__742,TIGR02729,GCA_000191165.1,obg_1,GTPase Obg,701585,702671,1,scaffold_1,742,CDS,11,GCA_000191165.1__arts_core__TIGR02729,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03156__1__1786,TIGR03156,GCA_000191165.1,hflX,GTPase HflX,1694460,1695741,1,scaffold_1,1786,CDS,11,GCA_000191165.1__arts_core__TIGR03156,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03263__1__1319,TIGR03263,GCA_000191165.1,gmk_1,Guanylate kinase,1273918,1274533,-1,scaffold_1,1319,CDS,11,GCA_000191165.1__arts_core__TIGR03263,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03284__1__717,TIGR03284,GCA_000191165.1,thyA,Thymidylate synthase,670227,671184,1,scaffold_1,717,CDS,11,GCA_000191165.1__arts_core__TIGR03284,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03534__1__628,TIGR03534,GCA_000191165.1,prmC,Release factor glutamine methyltransferase,587431,588274,1,scaffold_1,628,CDS,11,GCA_000191165.1__arts_core__TIGR03534,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03594__1__774,TIGR03594,GCA_000191165.1,der,GTPase Der,731218,732526,1,scaffold_1,774,CDS,11,GCA_000191165.1__arts_core__TIGR03594,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03625__1__347,TIGR03625,GCA_000191165.1,rplC,50S ribosomal protein L3,337989,338619,1,scaffold_1,347,CDS,11,GCA_000191165.1__arts_core__TIGR03625,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03631__1__369,TIGR03631,GCA_000191165.1,rpsM,30S ribosomal protein S13,349055,349406,1,scaffold_1,369,CDS,11,GCA_000191165.1__arts_core__TIGR03631,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03632__1__370,TIGR03632,GCA_000191165.1,rpsK,30S ribosomal protein S11,349434,349824,1,scaffold_1,370,CDS,11,GCA_000191165.1__arts_core__TIGR03632,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03635__1__356,TIGR03635,GCA_000191165.1,rpsQ,30S ribosomal protein S17,342410,342677,1,scaffold_1,356,CDS,11,GCA_000191165.1__arts_core__TIGR03635,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03654__1__361,TIGR03654,GCA_000191165.1,rplF,50S ribosomal protein L6,344539,345070,1,scaffold_1,361,CDS,11,GCA_000191165.1__arts_core__TIGR03654,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03705__1__463,TIGR03705,GCA_000191165.1,ppk,Polyphosphate kinase,432702,434868,1,scaffold_1,463,CDS,11,GCA_000191165.1__arts_core__TIGR03705,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03725__1__1508,TIGR03725,GCA_000191165.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1454631,1455354,-1,scaffold_1,1508,CDS,11,GCA_000191165.1__arts_core__TIGR03725,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03953__1__348,TIGR03953,GCA_000191165.1,rplD,50S ribosomal protein L4,338633,339251,1,scaffold_1,348,CDS,11,GCA_000191165.1__arts_core__TIGR03953,False,False,False,,,,,,,,False,,, +GCA_000014405.1__Cpn10__1__1465,Cpn10,GCA_000014405.1,groS,10 kDa chaperonin,1406812,1407097,-1,scaffold_1,1465,CDS,11,GCA_000014405.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000014405.1__GrpE__1__1199,GrpE,GCA_000014405.1,grpE,Protein GrpE,1136787,1137405,-1,scaffold_1,1199,CDS,11,GCA_000014405.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000014405.1__Methyltransf_5__1__661,Methyltransf_5,GCA_000014405.1,rsmH,Ribosomal RNA small subunit methyltransferase H,620091,621036,1,scaffold_1,661,CDS,11,GCA_000014405.1__arts_core__Methyltransf_5,False,False,False,,,,,,,,,,, +GCA_000014405.1__PF00044.19__1__561,PF00044.19,GCA_000014405.1,,,534819,535836,1,1,561,,,,False,False,True,,Gp_dh_N,5.2e-54,179.4,lcl,561,,,,, +GCA_000014405.1__PF00185.19__1__1865,PF00185.19,GCA_000014405.1,,,1777865,1778822,-1,1,1865,,,,False,False,True,,OTCace,2.3e-35,118.9,lcl,1865,,,,, +GCA_000014405.1__PF00185.19__1__923,PF00185.19,GCA_000014405.1,,,885054,885408,1,1,923,,,,False,False,True,,OTCace,0.0,48.3,cog,cog0540,,,,, +GCA_000014405.1__PF00185.19__1__924,PF00185.19,GCA_000014405.1,,,885457,885640,1,1,924,,,,False,False,True,,OTCace,0.0,53.6,lcl,924,,,,, +GCA_000014405.1__PF00204.20__1__5,PF00204.20,GCA_000014405.1,,,4360,6322,1,1,5,,,,False,False,True,,DNA_gyraseB,7.2e-61,201.5,cog,cog0187,,,,, +GCA_000014405.1__PF00204.20__1__878,PF00204.20,GCA_000014405.1,,,830171,832103,1,1,878,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,,,, +GCA_000014405.1__PF00227.21__1__1157,PF00227.21,GCA_000014405.1,,,1091791,1092325,-1,1,1157,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,,,, +GCA_000014405.1__PF00364.17__1__812,PF00364.17,GCA_000014405.1,,,781657,782140,1,1,812,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,lcl,812,,,,, +GCA_000014405.1__PF00521.15__1__6,PF00521.15,GCA_000014405.1,,,6334,8806,1,1,6,,,,False,False,True,,DNA_topoisoIV,7.3e-157,519.6,cog,cog0188,,,,, +GCA_000014405.1__PF00521.15__1__879,PF00521.15,GCA_000014405.1,,,832117,834601,1,1,879,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,,,, +GCA_000014405.1__PF01039.17__1__815,PF01039.17,GCA_000014405.1,,,783946,784795,1,1,815,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,,,, +GCA_000014405.1__PF01039.17__1__816,PF01039.17,GCA_000014405.1,,,784787,785555,1,1,816,,,,False,False,True,,Carboxyl_trans,2.4e-19,66.1,cog,cog0825,,,,, +GCA_000014405.1__PGK__1__562,PGK,GCA_000014405.1,pgk,Phosphoglycerate kinase,535932,537144,1,scaffold_1,562,CDS,11,GCA_000014405.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000014405.1__RF0007__1__1043,RF0007,GCA_000014405.1,,,986851,988609,1,1,1043,,,,False,False,True,,ABC_efflux,9.5e-78,258.9,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1173,RF0007,GCA_000014405.1,,,1105421,1107194,-1,1,1173,,,,False,False,True,,ABC_efflux,1.2e-86,288.3,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1231,RF0007,GCA_000014405.1,,,1176015,1177812,-1,1,1231,,,,False,False,True,,ABC_efflux,1.4e-77,258.3,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1808,RF0007,GCA_000014405.1,,,1721280,1723131,-1,1,1808,,,,False,False,True,,ABC_efflux,2e-76,254.5,cog,cog1132,,,,, +GCA_000014405.1__RF0155__1__1806,RF0155,GCA_000014405.1,,,1719267,1720476,-1,1,1806,,,,False,False,True,,vanS,3e-74,247.0,lcl,1806,,,,, +GCA_000014405.1__Ribosomal_L10__1__1500,Ribosomal_L10,GCA_000014405.1,rplJ,50S ribosomal protein L10,1434540,1435050,-1,scaffold_1,1500,CDS,11,GCA_000014405.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_L23__1__350,Ribosomal_L23,GCA_000014405.1,rplW,50S ribosomal protein L23,342760,343057,1,scaffold_1,350,CDS,11,GCA_000014405.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_S8__1__361,Ribosomal_S8,GCA_000014405.1,rpsH,30S ribosomal protein S8,347626,348025,1,scaffold_1,361,CDS,11,GCA_000014405.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_S9__1__379,Ribosomal_S9,GCA_000014405.1,rpsI,30S ribosomal protein S9,358739,359135,1,scaffold_1,379,CDS,11,GCA_000014405.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00001__1__1367,TIGR00001,GCA_000014405.1,rpmI,50S ribosomal protein L35,1309102,1309303,-1,scaffold_1,1367,CDS,11,GCA_000014405.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00008__1__369,TIGR00008,GCA_000014405.1,infA,Translation initiation factor IF-1,352187,352409,1,scaffold_1,369,CDS,11,GCA_000014405.1__arts_core__TIGR00008,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00009__1__1272,TIGR00009,GCA_000014405.1,rpmB,50S ribosomal protein L28,1219050,1219236,1,scaffold_1,1272,CDS,11,GCA_000014405.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00012__1__356,TIGR00012,GCA_000014405.1,rpmC,50S ribosomal protein L29,345704,345902,1,scaffold_1,356,CDS,11,GCA_000014405.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00016__1__610,TIGR00016,GCA_000014405.1,ackA,Acetate kinase,574077,575265,1,scaffold_1,610,CDS,11,GCA_000014405.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00017__1__766,TIGR00017,GCA_000014405.1,cmk,Cytidylate kinase,729952,730585,1,scaffold_1,766,CDS,11,GCA_000014405.1__arts_core__TIGR00017,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00019__1__625,TIGR00019,GCA_000014405.1,prfA,Peptide chain release factor 1,588567,589653,1,scaffold_1,625,CDS,11,GCA_000014405.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00020__1__539,TIGR00020,GCA_000014405.1,prfB,Peptide chain release factor 2,513516,514515,1,scaffold_1,539,CDS,11,GCA_000014405.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00021__1__467,TIGR00021,GCA_000014405.1,rpiA,Ribose-5-phosphate isomerase A,442393,443086,1,scaffold_1,467,CDS,11,GCA_000014405.1__arts_core__TIGR00021,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00029__1__697,TIGR00029,GCA_000014405.1,rpsT,30S ribosomal protein S20,657820,658072,-1,scaffold_1,697,CDS,11,GCA_000014405.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00038__1__1298,TIGR00038,GCA_000014405.1,efp_1,Elongation factor P,1240647,1241214,-1,scaffold_1,1298,CDS,11,GCA_000014405.1__arts_core__TIGR00038,True,False,False,GCA_000014405.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000014405.1__TIGR00038__1__1697,TIGR00038,GCA_000014405.1,efp_2,Elongation factor P,1624901,1625459,-1,scaffold_1,1697,CDS,11,GCA_000014405.1__arts_core__TIGR00038,True,False,False,GCA_000014405.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000014405.1__TIGR00042__1__1447,TIGR00042,GCA_000014405.1,-,dITP/XTP pyrophosphatase,1385243,1385864,-1,scaffold_1,1447,CDS,11,GCA_000014405.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00043__1__1144,TIGR00043,GCA_000014405.1,ybeY,Endoribonuclease YbeY,1079837,1080362,-1,scaffold_1,1144,CDS,11,GCA_000014405.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00055__1__1220,TIGR00055,GCA_000014405.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1165964,1166696,-1,scaffold_1,1220,CDS,11,GCA_000014405.1__arts_core__TIGR00055,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00057__1__627,TIGR00057,GCA_000014405.1,ywlC,Threonylcarbamoyl-AMP synthase,590487,591483,1,scaffold_1,627,CDS,11,GCA_000014405.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00059__1__373,TIGR00059,GCA_000014405.1,rplQ,50S ribosomal protein L17,354339,354723,1,scaffold_1,373,CDS,11,GCA_000014405.1__arts_core__TIGR00059,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00060__1__363,TIGR00060,GCA_000014405.1,rplR,50S ribosomal protein L18,348606,348966,1,scaffold_1,363,CDS,11,GCA_000014405.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00061__1__1301,TIGR00061,GCA_000014405.1,rplU,50S ribosomal protein L21,1242850,1243162,-1,scaffold_1,1301,CDS,11,GCA_000014405.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00062__1__1300,TIGR00062,GCA_000014405.1,rpmA,50S ribosomal protein L27,1242535,1242835,-1,scaffold_1,1300,CDS,11,GCA_000014405.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00065__1__669,TIGR00065,GCA_000014405.1,ftsZ,Cell division protein FtsZ,629361,630720,1,scaffold_1,669,CDS,11,GCA_000014405.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00071__1__377,TIGR00071,GCA_000014405.1,truA,tRNA pseudouridine synthase A,357389,358178,1,scaffold_1,377,CDS,11,GCA_000014405.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00077__1__906,TIGR00077,GCA_000014405.1,lspA,Lipoprotein signal peptidase,867762,868215,1,scaffold_1,906,CDS,11,GCA_000014405.1__arts_core__TIGR00077,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00079__1__687,TIGR00079,GCA_000014405.1,def2,Peptide deformylase 2,647262,647817,-1,scaffold_1,687,CDS,11,GCA_000014405.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00081__1__1313,TIGR00081,GCA_000014405.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1254153,1254876,-1,scaffold_1,1313,CDS,11,GCA_000014405.1__arts_core__TIGR00081,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00082__1__1210,TIGR00082,GCA_000014405.1,rbfA,Ribosome-binding factor A,1152514,1152877,-1,scaffold_1,1210,CDS,11,GCA_000014405.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00084__1__1461,TIGR00084,GCA_000014405.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1399899,1400493,-1,scaffold_1,1461,CDS,11,GCA_000014405.1__arts_core__TIGR00084,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00086__1__1650,TIGR00086,GCA_000014405.1,smpB,SsrA-binding protein,1575875,1576337,-1,scaffold_1,1650,CDS,11,GCA_000014405.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00088__1__1249,TIGR00088,GCA_000014405.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1194807,1195545,-1,scaffold_1,1249,CDS,11,GCA_000014405.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00090__1__1362,TIGR00090,GCA_000014405.1,rsfS,Ribosomal silencing factor RsfS,1305859,1306207,-1,scaffold_1,1362,CDS,11,GCA_000014405.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00092__1__1811,TIGR00092,GCA_000014405.1,ychF,Ribosome-binding ATPase YchF,1725791,1726892,-1,scaffold_1,1811,CDS,11,GCA_000014405.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00103__1__1481,TIGR00103,GCA_000014405.1,-,Nucleoid-associated protein,1418481,1418811,-1,scaffold_1,1481,CDS,11,GCA_000014405.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00105__1__312,TIGR00105,GCA_000014405.1,rpmE2,50S ribosomal protein L31 type B,299315,299567,1,scaffold_1,312,CDS,11,GCA_000014405.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00115__1__702,TIGR00115,GCA_000014405.1,tig,Trigger factor,662967,664287,1,scaffold_1,702,CDS,11,GCA_000014405.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00116__1__1223,TIGR00116,GCA_000014405.1,tsf,Elongation factor Ts,1168130,1169159,-1,scaffold_1,1223,CDS,11,GCA_000014405.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00121__1__818,TIGR00121,GCA_000014405.1,birA,Bifunctional ligase/repressor BirA,786338,787004,1,scaffold_1,818,CDS,11,GCA_000014405.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00133__1__414,TIGR00133,GCA_000014405.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,391718,393149,1,scaffold_1,414,CDS,11,GCA_000014405.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00135__1__412,TIGR00135,GCA_000014405.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,389965,390271,1,scaffold_1,412,CDS,11,GCA_000014405.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00150__1__569,TIGR00150,GCA_000014405.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,542222,542708,1,scaffold_1,569,CDS,11,GCA_000014405.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00152__1__1374,TIGR00152,GCA_000014405.1,coaE,Dephospho-CoA kinase,1316881,1317466,-1,scaffold_1,1374,CDS,11,GCA_000014405.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00157__1__1278,TIGR00157,GCA_000014405.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1223076,1223970,-1,scaffold_1,1278,CDS,11,GCA_000014405.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00158__1__11,TIGR00158,GCA_000014405.1,rplI,50S ribosomal protein L9,12378,12834,1,scaffold_1,11,CDS,11,GCA_000014405.1__arts_core__TIGR00158,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00165__1__9,TIGR00165,GCA_000014405.1,rpsR,30S ribosomal protein S18,9957,10194,1,scaffold_1,9,CDS,11,GCA_000014405.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00166__1__7,TIGR00166,GCA_000014405.1,rpsF,30S ribosomal protein S6,9021,9315,1,scaffold_1,7,CDS,11,GCA_000014405.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00168__1__1368,TIGR00168,GCA_000014405.1,infC,Translation initiation factor IF-3,1309323,1309845,-1,scaffold_1,1368,CDS,11,GCA_000014405.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00174__1__1340,TIGR00174,GCA_000014405.1,miaA,tRNA dimethylallyltransferase,1285003,1285930,-1,scaffold_1,1340,CDS,11,GCA_000014405.1__arts_core__TIGR00174,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00179__1__571,TIGR00179,GCA_000014405.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,543440,544334,1,scaffold_1,571,CDS,11,GCA_000014405.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00180__1__1813,TIGR00180,BAA-365,spo0J,Stage 0 sporulation protein J,1727224,1728115,-1,scaffold_1,1813,CDS,11,GCA_000014405.1__arts_core__TIGR00180,True,False,False,GCA_000014405.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000014405.1__TIGR00180__1__1815,TIGR00180,GCA_000014405.1,noc,Nucleoid occlusion protein,1728873,1729698,-1,scaffold_1,1815,CDS,11,GCA_000014405.1__arts_core__TIGR00180,True,False,False,GCA_000014405.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000014405.1__TIGR00186__1__1517,TIGR00186,GCA_000014405.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1446493,1447243,-1,scaffold_1,1517,CDS,11,GCA_000014405.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00188__1__1946,TIGR00188,GCA_000014405.1,rnpA,Ribonuclease P protein component,1856024,1856390,-1,scaffold_1,1946,CDS,11,GCA_000014405.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00191__1__1585,TIGR00191,GCA_000014405.1,thrB_2,Homoserine kinase,1508362,1509226,-1,scaffold_1,1585,CDS,11,GCA_000014405.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00194__1__737,TIGR00194,GCA_000014405.1,uvrC,UvrABC system protein C,702109,703912,1,scaffold_1,737,CDS,11,GCA_000014405.1__arts_core__TIGR00194,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00196__1__1412,TIGR00196,GCA_000014405.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1351882,1352749,-1,scaffold_1,1412,CDS,11,GCA_000014405.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00218__1__51,TIGR00218,GCA_000014405.1,manA,Mannose-6-phosphate isomerase ManA,49490,50459,1,scaffold_1,51,CDS,11,GCA_000014405.1__arts_core__TIGR00218,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00219__1__656,TIGR00219,GCA_000014405.1,mreC,Cell shape-determining protein MreC,617508,618360,1,scaffold_1,656,CDS,11,GCA_000014405.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00220__1__277,TIGR00220,GCA_000014405.1,mscL,Large-conductance mechanosensitive channel,266697,267174,1,scaffold_1,277,CDS,11,GCA_000014405.1__arts_core__TIGR00220,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00233__1__294,TIGR00233,GCA_000014405.1,trpS2,Tryptophan--tRNA ligase 2,279249,280275,1,scaffold_1,294,CDS,11,GCA_000014405.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00234__1__216,TIGR00234,GCA_000014405.1,tyrS,Tyrosine--tRNA ligase,211287,212553,1,scaffold_1,216,CDS,11,GCA_000014405.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00237__1__1294,TIGR00237,GCA_000014405.1,xseA,Exodeoxyribonuclease 7 large subunit,1237528,1238899,-1,scaffold_1,1294,CDS,11,GCA_000014405.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00250__1__1452,TIGR00250,GCA_000014405.1,yrrK,Putative pre-16S rRNA nuclease,1389736,1390165,-1,scaffold_1,1452,CDS,11,GCA_000014405.1__arts_core__TIGR00250,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00256__1__801,TIGR00256,GCA_000014405.1,dtd,D-aminoacyl-tRNA deacylase,769460,769898,1,scaffold_1,801,CDS,11,GCA_000014405.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00257__1__533,TIGR00257,GCA_000014405.1,yigZ,IMPACT family member YigZ,507448,508108,-1,scaffold_1,533,CDS,11,GCA_000014405.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00281__1__762,TIGR00281,GCA_000014405.1,scpB,Segregation and condensation protein B,727099,727702,1,scaffold_1,762,CDS,11,GCA_000014405.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00302__1__1312,TIGR00302,GCA_000014405.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1253900,1254149,-1,scaffold_1,1312,CDS,11,GCA_000014405.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00337__1__310,TIGR00337,GCA_000014405.1,pyrG,CTP synthase,296205,297825,1,scaffold_1,310,CDS,11,GCA_000014405.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00344__1__1454,TIGR00344,GCA_000014405.1,alaS,Alanine--tRNA ligase,1390487,1393121,-1,scaffold_1,1454,CDS,11,GCA_000014405.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00355__1__1306,TIGR00355,GCA_000014405.1,purH,Bifunctional purine biosynthesis protein PurH,1246381,1247923,-1,scaffold_1,1306,CDS,11,GCA_000014405.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00357__1__1747,TIGR00357,GCA_000014405.1,msrB,Peptide methionine sulfoxide reductase MsrB,1664838,1665264,-1,scaffold_1,1747,CDS,11,GCA_000014405.1__arts_core__TIGR00357,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00362__1__1,TIGR00362,GCA_000014405.1,dnaA,Chromosomal replication initiator protein DnaA,103,1468,1,scaffold_1,1,CDS,11,GCA_000014405.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00382__1__703,TIGR00382,GCA_000014405.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,664438,665692,1,scaffold_1,703,CDS,11,GCA_000014405.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00392__1__673,TIGR00392,GCA_000014405.1,ileS,Isoleucine--tRNA ligase,632612,635408,1,scaffold_1,673,CDS,11,GCA_000014405.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00396__1__1423,TIGR00396,GCA_000014405.1,leuS,Leucine--tRNA ligase,1361925,1364340,-1,scaffold_1,1423,CDS,11,GCA_000014405.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00398__1__298,TIGR00398,GCA_000014405.1,metG,Methionine--tRNA ligase,284539,286522,1,scaffold_1,298,CDS,11,GCA_000014405.1__arts_core__TIGR00398,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__1017,TIGR00401,GCA_000014405.1,msrA_3,Peptide methionine sulfoxide reductase MsrA,957846,958416,1,scaffold_1,1017,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__598,TIGR00401,BAA-365,msrA_1,Peptide methionine sulfoxide reductase MsrA,565376,565904,1,scaffold_1,598,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__942,TIGR00401,BAA-365,msrA_2,Peptide methionine sulfoxide reductase MsrA,901001,901571,-1,scaffold_1,942,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00409__1__1217,TIGR00409,GCA_000014405.1,proS,Proline--tRNA ligase,1162167,1163865,-1,scaffold_1,1217,CDS,11,GCA_000014405.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00414__1__1668,TIGR00414,GCA_000014405.1,serS,Serine--tRNA ligase,1598010,1599318,-1,scaffold_1,1668,CDS,11,GCA_000014405.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00416__1__1560,TIGR00416,GCA_000014405.1,radA,DNA repair protein RadA,1488373,1489750,-1,scaffold_1,1560,CDS,11,GCA_000014405.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00418__1__1370,TIGR00418,GCA_000014405.1,thrS,Threonine--tRNA ligase,1311897,1313829,-1,scaffold_1,1370,CDS,11,GCA_000014405.1__arts_core__TIGR00418,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00419__1__563,TIGR00419,GCA_000014405.1,tpiA,Triosephosphate isomerase,537162,537921,1,scaffold_1,563,CDS,11,GCA_000014405.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00422__1__651,TIGR00422,GCA_000014405.1,valS,Valine--tRNA ligase,611092,613732,1,scaffold_1,651,CDS,11,GCA_000014405.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00431__1__1209,TIGR00431,GCA_000014405.1,truB,tRNA pseudouridine synthase B,1151567,1152464,-1,scaffold_1,1209,CDS,11,GCA_000014405.1__arts_core__TIGR00431,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00435__1__1519,TIGR00435,GCA_000014405.1,cysS,Cysteine--tRNA ligase,1447665,1449090,-1,scaffold_1,1519,CDS,11,GCA_000014405.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00442__1__802,TIGR00442,GCA_000014405.1,hisS,Histidine--tRNA ligase,770181,771468,1,scaffold_1,802,CDS,11,GCA_000014405.1__arts_core__TIGR00442,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00447__1__318,TIGR00447,GCA_000014405.1,pth,Peptidyl-tRNA hydrolase,305103,305661,1,scaffold_1,318,CDS,11,GCA_000014405.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00456__1__729,TIGR00456,GCA_000014405.1,argS,Arginine--tRNA ligase,693342,695040,1,scaffold_1,729,CDS,11,GCA_000014405.1__arts_core__TIGR00456,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00459__1__803,TIGR00459,GCA_000014405.1,aspS,Aspartate--tRNA ligase,771483,773328,1,scaffold_1,803,CDS,11,GCA_000014405.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00464__1__1523,TIGR00464,GCA_000014405.1,gltX,Glutamate--tRNA ligase,1452453,1453956,-1,scaffold_1,1523,CDS,11,GCA_000014405.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00468__1__1353,TIGR00468,GCA_000014405.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1297693,1298743,-1,scaffold_1,1353,CDS,11,GCA_000014405.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00472__1__1352,TIGR00472,GCA_000014405.1,pheT,Phenylalanine--tRNA ligase beta subunit,1295282,1297694,-1,scaffold_1,1352,CDS,11,GCA_000014405.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00479__1__417,TIGR00479,GCA_000014405.1,-,putative RNA methyltransferase,394896,396252,1,scaffold_1,417,CDS,11,GCA_000014405.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00479__1__495,TIGR00479,GCA_000014405.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,471345,472728,-1,scaffold_1,495,CDS,11,GCA_000014405.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00481__1__387,TIGR00481,GCA_000014405.1,-,hypothetical protein,363902,364394,1,scaffold_1,387,CDS,11,GCA_000014405.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00484__1__346,TIGR00484,GCA_000014405.1,fusA,Elongation factor G,338694,340779,1,scaffold_1,346,CDS,11,GCA_000014405.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00485__1__701,TIGR00485,GCA_000014405.1,tuf,Elongation factor Tu,661593,662784,1,scaffold_1,701,CDS,11,GCA_000014405.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00486__1__1102,TIGR00486,GCA_000014405.1,-,GTP cyclohydrolase 1 type 2,1040156,1040954,-1,scaffold_1,1102,CDS,11,GCA_000014405.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00487__1__1211,TIGR00487,GCA_000014405.1,infB,Translation initiation factor IF-2,1152889,1155367,-1,scaffold_1,1211,CDS,11,GCA_000014405.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00496__1__1221,TIGR00496,GCA_000014405.1,frr,Ribosome-recycling factor,1166698,1167256,-1,scaffold_1,1221,CDS,11,GCA_000014405.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00499__1__329,TIGR00499,GCA_000014405.1,lysS,Lysine--tRNA ligase,319385,320891,1,scaffold_1,329,CDS,11,GCA_000014405.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00500__1__490,TIGR00500,GCA_000014405.1,map,Methionine aminopeptidase 1,466755,467583,1,scaffold_1,490,CDS,11,GCA_000014405.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00504__1__1066,TIGR00504,GCA_000014405.1,pcp,Pyrrolidone-carboxylate peptidase,1003615,1004227,-1,scaffold_1,1066,CDS,11,GCA_000014405.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00521__1__731,TIGR00521,GCA_000014405.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,695744,696944,1,scaffold_1,731,CDS,11,GCA_000014405.1__arts_core__TIGR00521,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00525__1__205,TIGR00525,GCA_000014405.1,folB,Dihydroneopterin aldolase,201885,202233,1,scaffold_1,205,CDS,11,GCA_000014405.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00544__1__542,TIGR00544,GCA_000014405.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,515761,516595,1,scaffold_1,542,CDS,11,GCA_000014405.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00560__1__529,TIGR00560,GCA_000014405.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,502423,502987,1,scaffold_1,529,CDS,11,GCA_000014405.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00563__1__1281,TIGR00563,GCA_000014405.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1226727,1228044,-1,scaffold_1,1281,CDS,11,GCA_000014405.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00575__1__410,TIGR00575,GCA_000014405.1,ligA,DNA ligase,386796,388812,1,scaffold_1,410,CDS,11,GCA_000014405.1__arts_core__TIGR00575,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00577__1__1375,TIGR00577,GCA_000014405.1,mutM,Formamidopyrimidine-DNA glycosylase,1317474,1318296,-1,scaffold_1,1375,CDS,11,GCA_000014405.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00580__1__319,TIGR00580,GCA_000014405.1,mfd,Transcription-repair-coupling factor,305677,309154,1,scaffold_1,319,CDS,11,GCA_000014405.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00593__1__1376,TIGR00593,GCA_000014405.1,polA,DNA polymerase I,1318306,1320967,-1,scaffold_1,1376,CDS,11,GCA_000014405.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00595__1__1283,TIGR00595,GCA_000014405.1,priA,Primosomal protein N,1228998,1231380,-1,scaffold_1,1283,CDS,11,GCA_000014405.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00613__1__1141,TIGR00613,GCA_000014405.1,recO,DNA repair protein RecO,1077778,1078528,-1,scaffold_1,1141,CDS,11,GCA_000014405.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00615__1__1480,TIGR00615,GCA_000014405.1,recR,Recombination protein RecR,1417880,1418480,-1,scaffold_1,1480,CDS,11,GCA_000014405.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00630__1__546,TIGR00630,GCA_000014405.1,uvrA,UvrABC system protein A,520773,523629,1,scaffold_1,546,CDS,11,GCA_000014405.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00631__1__545,TIGR00631,GCA_000014405.1,uvrB_2,UvrABC system protein B,518741,520784,1,scaffold_1,545,CDS,11,GCA_000014405.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00635__1__1460,TIGR00635,GCA_000014405.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1398875,1399886,-1,scaffold_1,1460,CDS,11,GCA_000014405.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00643__1__1269,TIGR00643,GCA_000014405.1,recG,ATP-dependent DNA helicase RecG,1214789,1216829,-1,scaffold_1,1269,CDS,11,GCA_000014405.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00647__1__554,TIGR00647,GCA_000014405.1,whiA,putative cell division protein WhiA,528282,529215,1,scaffold_1,554,CDS,11,GCA_000014405.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00651__1__568,TIGR00651,GCA_000014405.1,pta,Phosphate acetyltransferase,541222,542212,1,scaffold_1,568,CDS,11,GCA_000014405.1__arts_core__TIGR00651,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00653__1__1338,TIGR00653,GCA_000014405.1,glnA,Glutamine synthetase,1282275,1283613,-1,scaffold_1,1338,CDS,11,GCA_000014405.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00663__1__2,TIGR00663,GCA_000014405.1,dnaN,Beta sliding clamp,1649,2777,1,scaffold_1,2,CDS,11,GCA_000014405.1__arts_core__TIGR00663,False,False,True,,TIGR00663,5.4e-93,308.6,cog,cog0592,,,,, +GCA_000014405.1__TIGR00665__1__12,TIGR00665,GCA_000014405.1,dnaC,Replicative DNA helicase,12857,14228,1,scaffold_1,12,CDS,11,GCA_000014405.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00690__1__1284,TIGR00690,GCA_000014405.1,rpoZ,DNA-directed RNA polymerase subunit omega,1231442,1231664,-1,scaffold_1,1284,CDS,11,GCA_000014405.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00732__1__1161,TIGR00732,GCA_000014405.1,dprA,DNA processing protein DprA,1097075,1097915,-1,scaffold_1,1161,CDS,11,GCA_000014405.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00753__1__518,TIGR00753,GCA_000014405.1,uppP,Undecaprenyl-diphosphatase,491017,491845,-1,scaffold_1,518,CDS,11,GCA_000014405.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00755__1__301,TIGR00755,GCA_000014405.1,rsmA,Ribosomal RNA small subunit methyltransferase A,287831,288722,1,scaffold_1,301,CDS,11,GCA_000014405.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__1165,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,1099937,1100783,-1,scaffold_1,1165,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__1178,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,1112053,1112890,-1,scaffold_1,1178,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__62,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,60901,61699,1,scaffold_1,62,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__913,TIGR00762,BAA-365,degV,Protein DegV,877054,877936,1,scaffold_1,913,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00810__1__1652,TIGR00810,GCA_000014405.1,secG,putative protein-export membrane protein SecG,1578795,1579029,-1,scaffold_1,1652,CDS,11,GCA_000014405.1__arts_core__TIGR00810,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00855__1__1499,TIGR00855,GCA_000014405.1,rplL,50S ribosomal protein L7/L12,1434122,1434488,-1,scaffold_1,1499,CDS,11,GCA_000014405.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00871__1__1458,TIGR00871,GCA_000014405.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1396850,1398299,-1,scaffold_1,1458,CDS,11,GCA_000014405.1__arts_core__TIGR00871,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00877__1__1305,TIGR00877,GCA_000014405.1,purD,Phosphoribosylamine--glycine ligase,1245100,1246366,-1,scaffold_1,1305,CDS,11,GCA_000014405.1__arts_core__TIGR00877,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00878__1__1308,TIGR00878,GCA_000014405.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1248504,1249554,-1,scaffold_1,1308,CDS,11,GCA_000014405.1__arts_core__TIGR00878,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00922__1__1508,TIGR00922,GCA_000014405.1,nusG,Transcription termination/antitermination protein NusG,1441710,1442265,-1,scaffold_1,1508,CDS,11,GCA_000014405.1__arts_core__TIGR00922,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00952__1__698,TIGR00952,GCA_000014405.1,rpsO,30S ribosomal protein S15,658275,658545,1,scaffold_1,698,CDS,11,GCA_000014405.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00959__1__1252,TIGR00959,GCA_000014405.1,ffh,Signal recognition particle protein,1196476,1197907,-1,scaffold_1,1252,CDS,11,GCA_000014405.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00962__1__633,TIGR00962,GCA_000014405.1,atpA,ATP synthase subunit alpha,594408,595920,1,scaffold_1,633,CDS,11,GCA_000014405.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00963__1__538,TIGR00963,GCA_000014405.1,secA,Protein translocase subunit SecA,510907,513310,1,scaffold_1,538,CDS,11,GCA_000014405.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00964__1__1509,TIGR00964,GCA_000014405.1,secE,Protein translocase subunit SecE,1442356,1442527,-1,scaffold_1,1509,CDS,11,GCA_000014405.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00967__1__367,TIGR00967,GCA_000014405.1,secY,Protein translocase subunit SecY,350152,351448,1,scaffold_1,367,CDS,11,GCA_000014405.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00981__1__344,TIGR00981,GCA_000014405.1,rpsL,30S ribosomal protein S12,337767,338175,1,scaffold_1,344,CDS,11,GCA_000014405.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01009__1__354,TIGR01009,GCA_000014405.1,rpsC,30S ribosomal protein S3,344600,345272,1,scaffold_1,354,CDS,11,GCA_000014405.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01011__1__1224,TIGR01011,GCA_000014405.1,rpsB,30S ribosomal protein S2,1169221,1169983,-1,scaffold_1,1224,CDS,11,GCA_000014405.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01017__1__646,TIGR01017,GCA_000014405.1,rpsD,30S ribosomal protein S4,605018,605630,-1,scaffold_1,646,CDS,11,GCA_000014405.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01021__1__364,TIGR01021,GCA_000014405.1,rpsE,30S ribosomal protein S5,348982,349495,1,scaffold_1,364,CDS,11,GCA_000014405.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01023__1__1345,TIGR01023,GCA_000014405.1,rpmGA,50S ribosomal protein L33 1,1287992,1288142,-1,scaffold_1,1345,CDS,11,GCA_000014405.1__arts_core__TIGR01023,True,True,False,GCA_000014405.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000014405.1__TIGR01023__1__1510,TIGR01023,BAA-365,rpmG3,50S ribosomal protein L33 3,1442533,1442683,-1,scaffold_1,1510,CDS,11,GCA_000014405.1__arts_core__TIGR01023,True,True,False,GCA_000014405.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000014405.1__TIGR01024__1__1243,TIGR01024,GCA_000014405.1,rplS,50S ribosomal protein L19,1191568,1191916,-1,scaffold_1,1243,CDS,11,GCA_000014405.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01029__1__345,TIGR01029,GCA_000014405.1,rpsG,30S ribosomal protein S7,338190,338661,1,scaffold_1,345,CDS,11,GCA_000014405.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01030__1__1947,TIGR01030,GCA_000014405.1,rpmH,50S ribosomal protein L34,1856438,1856579,-1,scaffold_1,1947,CDS,11,GCA_000014405.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01031__1__742,TIGR01031,GCA_000014405.1,rpmF,50S ribosomal protein L32,709183,709375,1,scaffold_1,742,CDS,11,GCA_000014405.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01032__1__1366,TIGR01032,GCA_000014405.1,rplT,50S ribosomal protein L20,1308701,1309058,-1,scaffold_1,1366,CDS,11,GCA_000014405.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01034__1__1428,TIGR01034,GCA_000014405.1,metK,S-adenosylmethionine synthase,1368110,1369307,-1,scaffold_1,1428,CDS,11,GCA_000014405.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01039__1__635,TIGR01039,GCA_000014405.1,atpD,ATP synthase subunit beta,596912,598352,1,scaffold_1,635,CDS,11,GCA_000014405.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01044__1__353,TIGR01044,GCA_000014405.1,rplV,50S ribosomal protein L22,344233,344587,1,scaffold_1,353,CDS,11,GCA_000014405.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01049__1__347,TIGR01049,GCA_000014405.1,rpsJ,30S ribosomal protein S10,341165,341474,1,scaffold_1,347,CDS,11,GCA_000014405.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01050__1__352,TIGR01050,GCA_000014405.1,rpsS,30S ribosomal protein S19,343936,344212,1,scaffold_1,352,CDS,11,GCA_000014405.1__arts_core__TIGR01050,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01051__1__1160,TIGR01051,GCA_000014405.1,topA,DNA topoisomerase 1,1094771,1096949,-1,scaffold_1,1160,CDS,11,GCA_000014405.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01059__1__5,TIGR01059,GCA_000014405.1,gyrB,DNA gyrase subunit B,4360,6322,1,scaffold_1,5,CDS,11,GCA_000014405.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000014405.1__TIGR01060__1__1179,TIGR01060,GCA_000014405.1,eno,Enolase,1113196,1114474,1,scaffold_1,1179,CDS,11,GCA_000014405.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01063__1__6,TIGR01063,GCA_000014405.1,gyrA,DNA gyrase subunit A,6334,8806,1,scaffold_1,6,CDS,11,GCA_000014405.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000014405.1__TIGR01064__1__754,TIGR01064,GCA_000014405.1,pyk,Pyruvate kinase,720930,722700,1,scaffold_1,754,CDS,11,GCA_000014405.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01066__1__378,TIGR01066,GCA_000014405.1,rplM,50S ribosomal protein L13,358283,358727,1,scaffold_1,378,CDS,11,GCA_000014405.1__arts_core__TIGR01066,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01067__1__358,TIGR01067,GCA_000014405.1,rplN,50S ribosomal protein L14,346217,346586,1,scaffold_1,358,CDS,11,GCA_000014405.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01071__1__366,TIGR01071,GCA_000014405.1,rplO,50S ribosomal protein L15,349712,350153,1,scaffold_1,366,CDS,11,GCA_000014405.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01072__1__311,TIGR01072,GCA_000014405.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,297944,299216,1,scaffold_1,311,CDS,11,GCA_000014405.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01073__1__409,TIGR01073,GCA_000014405.1,pcrA,ATP-dependent DNA helicase PcrA,384524,386786,1,scaffold_1,409,CDS,11,GCA_000014405.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01079__1__359,TIGR01079,GCA_000014405.1,rplX,50S ribosomal protein L24,346602,346842,1,scaffold_1,359,CDS,11,GCA_000014405.1__arts_core__TIGR01079,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01082__1__1384,TIGR01082,GCA_000014405.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1325319,1326639,-1,scaffold_1,1384,CDS,11,GCA_000014405.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01083__1__891,TIGR01083,GCA_000014405.1,pdg,Ultraviolet N-glycosylase/AP lyase,852783,853413,1,scaffold_1,891,CDS,11,GCA_000014405.1__arts_core__TIGR01083,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01087__1__665,TIGR01087,GCA_000014405.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,624539,625922,1,scaffold_1,665,CDS,11,GCA_000014405.1__arts_core__TIGR01087,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01091__1__628,TIGR01091,GCA_000014405.1,upp,Uracil phosphoribosyltransferase,591582,592212,1,scaffold_1,628,CDS,11,GCA_000014405.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01128__1__696,TIGR01128,GCA_000014405.1,yqeN,putative protein YqeN,656738,657728,1,scaffold_1,696,CDS,11,GCA_000014405.1__arts_core__TIGR01128,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01131__1__629,TIGR01131,GCA_000014405.1,atpB,ATP synthase subunit a,592321,593041,1,scaffold_1,629,CDS,11,GCA_000014405.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01134__1__1309,TIGR01134,GCA_000014405.1,purF,Amidophosphoribosyltransferase,1249550,1251029,-1,scaffold_1,1309,CDS,11,GCA_000014405.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01135__1__434,TIGR01135,GCA_000014405.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],408973,410785,1,scaffold_1,434,CDS,11,GCA_000014405.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01144__1__631,TIGR01144,GCA_000014405.1,atpF,ATP synthase subunit b,593337,593844,1,scaffold_1,631,CDS,11,GCA_000014405.1__arts_core__TIGR01144,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01145__1__632,TIGR01145,GCA_000014405.1,atpH_2,ATP synthase subunit delta,593843,594386,1,scaffold_1,632,CDS,11,GCA_000014405.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01146__1__634,TIGR01146,GCA_000014405.1,atpG,ATP synthase gamma chain,595930,596893,1,scaffold_1,634,CDS,11,GCA_000014405.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01161__1__1315,TIGR01161,GCA_000014405.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1256538,1257663,-1,scaffold_1,1315,CDS,11,GCA_000014405.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01162__1__1316,TIGR01162,GCA_000014405.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1257652,1258144,-1,scaffold_1,1316,CDS,11,GCA_000014405.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01163__1__466,TIGR01163,GCA_000014405.1,rpe,Ribulose-phosphate 3-epimerase,441730,442381,1,scaffold_1,466,CDS,11,GCA_000014405.1__arts_core__TIGR01163,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01164__1__355,TIGR01164,GCA_000014405.1,rplP,50S ribosomal protein L16,345271,345715,1,scaffold_1,355,CDS,11,GCA_000014405.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01169__1__1506,TIGR01169,GCA_000014405.1,rplA,50S ribosomal protein L1,1440380,1441076,-1,scaffold_1,1506,CDS,11,GCA_000014405.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01171__1__351,TIGR01171,GCA_000014405.1,rplB,50S ribosomal protein L2,343082,343919,1,scaffold_1,351,CDS,11,GCA_000014405.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01216__1__636,TIGR01216,GCA_000014405.1,atpC,ATP synthase epsilon chain,598363,598804,1,scaffold_1,636,CDS,11,GCA_000014405.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01260__1__630,TIGR01260,GCA_000014405.1,atpH_1,ATP synthase subunit c,593059,593284,1,scaffold_1,630,CDS,11,GCA_000014405.1__arts_core__TIGR01260,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01280__1__1293,TIGR01280,GCA_000014405.1,xseB,Exodeoxyribonuclease 7 small subunit,1237296,1237536,-1,scaffold_1,1293,CDS,11,GCA_000014405.1__arts_core__TIGR01280,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01308__1__365,TIGR01308,GCA_000014405.1,rpmD,50S ribosomal protein L30,349506,349692,1,scaffold_1,365,CDS,11,GCA_000014405.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01311__1__1855,TIGR01311,GCA_000014405.1,glpK,Glycerol kinase,1763684,1765193,-1,scaffold_1,1855,CDS,11,GCA_000014405.1__arts_core__TIGR01311,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__1007,TIGR01369,BAA-365,carB_6,Carbamoyl-phosphate synthase large chain,949153,951835,1,scaffold_1,1007,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__1862,TIGR01369,BAA-365,carB_7,Carbamoyl-phosphate synthase large chain,1772322,1775511,-1,scaffold_1,1862,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__952,TIGR01369,BAA-365,carB_3,Carbamoyl-phosphate synthase large chain,907582,910264,-1,scaffold_1,952,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01378__1__1277,TIGR01378,GCA_000014405.1,thiN,Thiamine pyrophosphokinase,1222363,1223047,-1,scaffold_1,1277,CDS,11,GCA_000014405.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01389__1__735,TIGR01389,GCA_000014405.1,recQ,ATP-dependent DNA helicase RecQ,699072,700842,1,scaffold_1,735,CDS,11,GCA_000014405.1__arts_core__TIGR01389,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01391__1__1138,TIGR01391,GCA_000014405.1,dnaG,DNA primase,1072673,1074512,-1,scaffold_1,1138,CDS,11,GCA_000014405.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01393__1__1196,TIGR01393,GCA_000014405.1,lepA,Elongation factor 4,1131704,1133543,-1,scaffold_1,1196,CDS,11,GCA_000014405.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01417__1__508,TIGR01417,GCA_000014405.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,482775,484503,1,scaffold_1,508,CDS,11,GCA_000014405.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01430__1__1330,TIGR01430,GCA_000014405.1,add,Adenosine deaminase,1275359,1276352,-1,scaffold_1,1330,CDS,11,GCA_000014405.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01448__1__683,TIGR01448,GCA_000014405.1,recD2,ATP-dependent RecD-like DNA helicase,641234,643625,1,scaffold_1,683,CDS,11,GCA_000014405.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01455__1__578,TIGR01455,GCA_000014405.1,glmM,Phosphoglucosamine mutase,550001,551354,1,scaffold_1,578,CDS,11,GCA_000014405.1__arts_core__TIGR01455,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01496__1__208,TIGR01496,GCA_000014405.1,-,hypothetical protein,204616,205708,1,scaffold_1,208,CDS,11,GCA_000014405.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01498__1__206,TIGR01498,GCA_000014405.1,folE,GTP cyclohydrolase 1,202232,203306,1,scaffold_1,206,CDS,11,GCA_000014405.1__arts_core__TIGR01498,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01513__1__278,TIGR01513,GCA_000014405.1,pncB,Nicotinate phosphoribosyltransferase,267253,268777,-1,scaffold_1,278,CDS,11,GCA_000014405.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01534__1__561,TIGR01534,GCA_000014405.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,534819,535836,1,scaffold_1,561,CDS,11,GCA_000014405.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000014405.1__TIGR01632__1__1507,TIGR01632,GCA_000014405.1,rplK,50S ribosomal protein L11,1441159,1441585,-1,scaffold_1,1507,CDS,11,GCA_000014405.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01736__1__1310,TIGR01736,GCA_000014405.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1251004,1253227,-1,scaffold_1,1310,CDS,11,GCA_000014405.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01771__1__99,TIGR01771,GCA_000014405.1,ldh,L-lactate dehydrogenase,95006,95930,-1,scaffold_1,99,CDS,11,GCA_000014405.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01951__1__1296,TIGR01951,GCA_000014405.1,nusB,Transcription antitermination protein NusB,1239795,1240164,-1,scaffold_1,1296,CDS,11,GCA_000014405.1__arts_core__TIGR01951,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01953__1__1214,TIGR01953,GCA_000014405.1,nusA,Transcription termination/antitermination protein NusA,1155991,1157212,-1,scaffold_1,1214,CDS,11,GCA_000014405.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01980__1__1635,TIGR01980,GCA_000014405.1,-,hypothetical protein,1565302,1566730,-1,scaffold_1,1635,CDS,11,GCA_000014405.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01981__1__1638,TIGR01981,GCA_000014405.1,-,hypothetical protein,1568352,1569516,-1,scaffold_1,1638,CDS,11,GCA_000014405.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01994__1__1636,TIGR01994,GCA_000014405.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1566730,1567171,-1,scaffold_1,1636,CDS,11,GCA_000014405.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02012__1__530,TIGR02012,GCA_000014405.1,recA,Protein RecA,503192,504302,1,scaffold_1,530,CDS,11,GCA_000014405.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02013__1__339,TIGR02013,GCA_000014405.1,rpoB,DNA-directed RNA polymerase subunit beta,329068,332743,1,scaffold_1,339,CDS,11,GCA_000014405.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.5,cog,cog0085,,,,, +GCA_000014405.1__TIGR02027__1__372,TIGR02027,GCA_000014405.1,rpoA,DNA-directed RNA polymerase subunit alpha,353377,354316,1,scaffold_1,372,CDS,11,GCA_000014405.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02191__1__1259,TIGR02191,GCA_000014405.1,rnc,Ribonuclease 3,1204657,1205353,-1,scaffold_1,1259,CDS,11,GCA_000014405.1__arts_core__TIGR02191,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02225__1__759,TIGR02225,GCA_000014405.1,xerD_1,Tyrosine recombinase XerD,725125,726022,1,scaffold_1,759,CDS,11,GCA_000014405.1__arts_core__TIGR02225,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02227__1__1099,TIGR02227,GCA_000014405.1,spsB,Signal peptidase IB,1037661,1038228,1,scaffold_1,1099,CDS,11,GCA_000014405.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02273__1__1250,TIGR02273,GCA_000014405.1,rimM,Ribosome maturation factor RimM,1195544,1196048,-1,scaffold_1,1250,CDS,11,GCA_000014405.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02348__1__1464,TIGR02348,GCA_000014405.1,groL,60 kDa chaperonin,1405172,1406786,-1,scaffold_1,1464,CDS,11,GCA_000014405.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02349__1__1197,TIGR02349,GCA_000014405.1,dnaJ,Chaperone protein DnaJ,1133664,1134801,-1,scaffold_1,1197,CDS,11,GCA_000014405.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02350__1__1198,TIGR02350,GCA_000014405.1,dnaK,Chaperone protein DnaK,1134883,1136728,-1,scaffold_1,1198,CDS,11,GCA_000014405.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02386__1__340,TIGR02386,GCA_000014405.1,rpoC,DNA-directed RNA polymerase subunit beta,332759,336425,1,scaffold_1,340,CDS,11,GCA_000014405.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02393__1__1137,TIGR02393,GCA_000014405.1,sigA_2,RNA polymerase sigma factor SigA,1071583,1072702,-1,scaffold_1,1137,CDS,11,GCA_000014405.1__arts_core__TIGR02393,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02487__1__181,TIGR02487,GCA_000014405.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,176021,178232,1,scaffold_1,181,CDS,11,GCA_000014405.1__arts_core__TIGR02487,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02727__1__1344,TIGR02727,GCA_000014405.1,-,hypothetical protein,1287365,1287938,-1,scaffold_1,1344,CDS,11,GCA_000014405.1__arts_core__TIGR02727,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02729__1__738,TIGR02729,GCA_000014405.1,obg,GTPase Obg,704049,705303,1,scaffold_1,738,CDS,11,GCA_000014405.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03156__1__1776,TIGR03156,GCA_000014405.1,hflX,GTPase HflX,1690374,1691655,1,scaffold_1,1776,CDS,11,GCA_000014405.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03263__1__1285,TIGR03263,GCA_000014405.1,gmk_1,Guanylate kinase,1231665,1232280,-1,scaffold_1,1285,CDS,11,GCA_000014405.1__arts_core__TIGR03263,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03284__1__712,TIGR03284,GCA_000014405.1,thyA,Thymidylate synthase,672440,673397,1,scaffold_1,712,CDS,11,GCA_000014405.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03534__1__626,TIGR03534,GCA_000014405.1,prmC,Release factor glutamine methyltransferase,589645,590488,1,scaffold_1,626,CDS,11,GCA_000014405.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03594__1__768,TIGR03594,GCA_000014405.1,der,GTPase Der,731954,733262,1,scaffold_1,768,CDS,11,GCA_000014405.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03625__1__348,TIGR03625,GCA_000014405.1,rplC,50S ribosomal protein L3,341499,342129,1,scaffold_1,348,CDS,11,GCA_000014405.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03631__1__370,TIGR03631,GCA_000014405.1,rpsM,30S ribosomal protein S13,352565,352916,1,scaffold_1,370,CDS,11,GCA_000014405.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03632__1__371,TIGR03632,GCA_000014405.1,rpsK,30S ribosomal protein S11,352944,353334,1,scaffold_1,371,CDS,11,GCA_000014405.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03635__1__357,TIGR03635,GCA_000014405.1,rpsQ,30S ribosomal protein S17,345920,346187,1,scaffold_1,357,CDS,11,GCA_000014405.1__arts_core__TIGR03635,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03654__1__362,TIGR03654,GCA_000014405.1,rplF,50S ribosomal protein L6,348049,348580,1,scaffold_1,362,CDS,11,GCA_000014405.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03705__1__459,TIGR03705,GCA_000014405.1,ppk,Polyphosphate kinase,435131,437297,1,scaffold_1,459,CDS,11,GCA_000014405.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03725__1__1470,TIGR03725,GCA_000014405.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1411780,1412503,-1,scaffold_1,1470,CDS,11,GCA_000014405.1__arts_core__TIGR03725,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03953__1__349,TIGR03953,GCA_000014405.1,rplD,50S ribosomal protein L4,342143,342761,1,scaffold_1,349,CDS,11,GCA_000014405.1__arts_core__TIGR03953,False,True,False,,,,,,,,,,, diff --git a/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv new file mode 100644 index 00000000..644b1e93 --- /dev/null +++ b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv @@ -0,0 +1,8 @@ +pkey,#Cluster,Type,Source,Location,Core hits,Other hits,Genelist,bgc_id,genome_id +CR954253.1.region001__arts_bgc,cluster-1_1,lanthipeptide-class-iii,scaffold_1,17407 - 39909,0,0,[],CR954253.1.region001,GCA_000056065.1 +CR954253.1.region002__arts_bgc,cluster-1_2,RiPP-like,scaffold_1,125153 - 136119,0,0,[],CR954253.1.region002,GCA_000056065.1 +CR954253.1.region003__arts_bgc,cluster-1_3,lanthipeptide-class-iv,scaffold_1,1745672 - 1767868,0,0,[],CR954253.1.region003,GCA_000056065.1 +CP000156.1.region001__arts_bgc,cluster-1_1,RiPP-like,scaffold_1,117260 - 128451,0,0,[],CP000156.1.region001,GCA_000191165.1 +CP000156.1.region002__arts_bgc,cluster-1_2,lanthipeptide-class-iv,scaffold_1,1767251 - 1789447,1,0,"[['1883', 'TIGR01369', 1788915, 1792104, 'Core', 'CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit', 'Purines, pyrimidines, nucleosides, and nucleotides']]",CP000156.1.region002,GCA_000191165.1 +CP000412.1.region001__arts_bgc,cluster-1_1,lanthipeptide-class-iii,scaffold_1,17283 - 39785,0,0,[],CP000412.1.region001,GCA_000014405.1 +CP000412.1.region002__arts_bgc,cluster-1_2,RiPP-like,scaffold_1,120275 - 131241,0,0,[],CP000412.1.region002,GCA_000014405.1 diff --git a/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv new file mode 100644 index 00000000..5e8f4c20 --- /dev/null +++ b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv @@ -0,0 +1,973 @@ +pkey,#Core_gene,Description,Function,Duplication,BGC_Proximity,Phylogeny,Known_target,[Hits_listed],genome_id +GCA_000056065.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|groS|10 kDa chaperonin|loc|1393993 1394278 -1 # ID=1_1432|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|grpE|Protein GrpE|loc|1119606 1120194 -1 # ID=1_1155|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|625949 626894 1 # ID=1_665|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pgk|Phosphoglycerate kinase|loc|541727 542939 1 # ID=1_568|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplJ|50S ribosomal protein L10|loc|1421770 1422280 -1 # ID=1_1466|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplW|50S ribosomal protein L23|loc|348201 348498 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsH|30S ribosomal protein S8|loc|353067 353466 1 # ID=1_360|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsI|30S ribosomal protein S9|loc|364180 364576 1 # ID=1_378|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|glnA|Glutamine synthetase|loc|1269273 1270611 -1 # ID=1_1301|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pncB|Nicotinate phosphoribosyltransferase|loc|271257 272781 -1 # ID=1_276|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|coaE|Dephospho-CoA kinase|loc|1303283 1303868 -1 # ID=1_1338|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|folB|Dihydroneopterin aldolase|loc|210197 210548 1 # ID=1_214|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|thiN|Thiamine pyrophosphokinase|loc|1208959 1209643 -1 # ID=1_1240|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|212928 214020 1 # ID=1_217|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|folE|GTP cyclohydrolase 1|loc|210544 211618 1 # ID=1_215|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1546588 1548016 -1 # ID=1_1602|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|1549638 1550802 -1 # ID=1_1605|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1548016 1548457 -1 # ID=1_1603|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,Yes,No,"[Lactobacillus delbrueckii strain ATCC 11842|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1146640 1147372 -1 # ID=1_1178|Type=CDS|transl_table=11]",GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|mreC|Cell shape-determining protein MreC|loc|623366 624218 1 # ID=1_660|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|uppP|Undecaprenyl-diphosphatase|loc|495535 496363 -1 # ID=1_523|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1311707 1313027 -1 # ID=1_1348|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|630397 631780 1 # ID=1_669|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ftsZ|Cell division protein FtsZ|loc|635219 636578 1 # ID=1_673|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|mscL|Large-conductance mechanosensitive channel|loc|270701 271178 1 # ID=1_275|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|whiA|putative cell division protein WhiA|loc|532796 533729 1 # ID=1_557|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|dprA|DNA processing protein DprA|loc|1079889 1080729 -1 # ID=1_1117|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|metK|S-adenosylmethionine synthase|loc|1354481 1355678 -1 # ID=1_1394|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|ppk|Polyphosphate kinase|loc|439501 441667 1 # ID=1_460|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaG|DNA primase|loc|1054356 1056195 -1 # ID=1_1093|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|dITP/XTP pyrophosphatase|loc|1372244 1372865 -1 # ID=1_1414|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1386901 1387495 -1 # ID=1_1428|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|uvrC|UvrABC system protein C|loc|707983 709786 1 # ID=1_744|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|xseA|Exodeoxyribonuclease 7 large subunit|loc|1224123 1225494 -1 # ID=1_1257|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|scpB|Segregation and condensation protein B|loc|734631 735234 1 # ID=1_771|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaA|Chromosomal replication initiator protein DnaA|loc|322 1687 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|radA|DNA repair protein RadA|loc|1475149 1476526 -1 # ID=1_1529|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ligA|DNA ligase|loc|392242 394258 1 # ID=1_408|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|mutM|Formamidopyrimidine-DNA glycosylase|loc|1303876 1304698 -1 # ID=1_1339|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|mfd|Transcription-repair-coupling factor|loc|311150 314627 1 # ID=1_317|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|polA|DNA polymerase I|loc|1304708 1307369 -1 # ID=1_1340|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|priA|Primosomal protein N|loc|1215594 1217976 -1 # ID=1_1246|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|recO|DNA repair protein RecO|loc|1059461 1060211 -1 # ID=1_1096|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|recR|Recombination protein RecR|loc|1405061 1405661 -1 # ID=1_1447|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|uvrA|UvrABC system protein A|loc|525284 528140 1 # ID=1_550|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|uvrB_2|UvrABC system protein B|loc|523252 525295 1 # ID=1_549|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1385877 1386888 -1 # ID=1_1427|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|recG|ATP-dependent DNA helicase RecG|loc|1195445 1197485 -1 # ID=1_1226|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|dnaN|Beta sliding clamp|loc|1867 2995 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaC|Replicative DNA helicase|loc|13075 14446 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|topA|DNA topoisomerase 1|loc|1077579 1079763 -1 # ID=1_1116|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|gyrB|DNA gyrase subunit B|loc|4578 6540 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|gyrA|DNA gyrase subunit A|loc|6552 9024 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pcrA|ATP-dependent DNA helicase PcrA|loc|389970 392232 1 # ID=1_407|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pdg|Ultraviolet N-glycosylase/AP lyase|loc|866383 867013 1 # ID=1_902|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|yqeN|putative protein YqeN|loc|662612 663602 1 # ID=1_700|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|xseB|Exodeoxyribonuclease 7 small subunit|loc|1223891 1224131 -1 # ID=1_1256|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|recQ|ATP-dependent DNA helicase RecQ|loc|704945 706715 1 # ID=1_742|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|recA|Protein RecA|loc|507699 508695 1 # ID=1_535|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|xerD_1|Tyrosine recombinase XerD|loc|732657 733554 1 # ID=1_768|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ackA|Acetate kinase|loc|579934 581122 1 # ID=1_616|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpiA|Ribose-5-phosphate isomerase A|loc|446570 447263 1 # ID=1_468|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tpiA|Triosephosphate isomerase|loc|542957 543716 1 # ID=1_569|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pta|Phosphate acetyltransferase|loc|547016 548006 1 # ID=1_575|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1383852 1385301 -1 # ID=1_1425|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpA|ATP synthase subunit alpha|loc|600266 601778 1 # ID=1_637|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpD|ATP synthase subunit beta|loc|602770 604210 1 # ID=1_639|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|eno|Enolase|loc|1096011 1097289 1 # ID=1_1135|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pyk|Pyruvate kinase|loc|728461 730231 1 # ID=1_763|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpB|ATP synthase subunit a|loc|598179 598899 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpF|ATP synthase subunit b|loc|599195 599702 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpH_2|ATP synthase subunit delta|loc|599701 600244 1 # ID=1_636|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpG|ATP synthase gamma chain|loc|601788 602751 1 # ID=1_638|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|atpC|ATP synthase epsilon chain|loc|604221 604662 1 # ID=1_640|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|atpH_1|ATP synthase subunit c|loc|598917 599142 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain ATCC 11842|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|540614 541631 1 # ID=1_567|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ldh|L-lactate dehydrogenase|loc|99904 100828 -1 # ID=1_104|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|birA|Bifunctional ligase/repressor BirA|loc|798597 799263 1 # ID=1_830|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1649159 1649585 -1 # ID=1_1723|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|msrA|Peptide methionine sulfoxide reductase MsrA|loc|571234 571762 1 # ID=1_603|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|lspA|Lipoprotein signal peptidase|loc|881194 881647 1 # ID=1_916|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|def2|Peptide deformylase 2|loc|653135 653690 -1 # ID=1_691|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tig|Trigger factor|loc|668841 670161 1 # ID=1_706|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|map|Methionine aminopeptidase 1|loc|471238 472066 1 # ID=1_492|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pcp|Pyrrolidone-carboxylate peptidase|loc|993222 993834 -1 # ID=1_1038|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|520272 521106 1 # ID=1_546|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|secG|putative protein-export membrane protein SecG|loc|1560085 1560319 -1 # ID=1_1619|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|secA|Protein translocase subunit SecA|loc|515417 517820 1 # ID=1_542|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|secE|Protein translocase subunit SecE|loc|1429566 1429737 -1 # ID=1_1475|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|secY|Protein translocase subunit SecY|loc|355593 356889 1 # ID=1_366|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|spsB|Signal peptidase IB|loc|1028498 1029065 1 # ID=1_1069|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|groL|60 kDa chaperonin|loc|1392353 1393967 -1 # ID=1_1431|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaK|Chaperone protein DnaK|loc|1117702 1119547 -1 # ID=1_1154|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|prmC_1|Release factor glutamine methyltransferase|loc|595503 596346 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1433794 1434544 -1 # ID=1_1485|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|metG|Methionine--tRNA ligase|loc|290069 292052 1 # ID=1_296|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmI|50S ribosomal protein L35|loc|1294459 1294660 -1 # ID=1_1329|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|infA|Translation initiation factor IF-1|loc|357628 357850 1 # ID=1_368|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmB|50S ribosomal protein L28|loc|1199706 1199892 1 # ID=1_1229|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmC|50S ribosomal protein L29|loc|351145 351343 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|prfA|Peptide chain release factor 1|loc|594425 595511 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|prfB|Peptide chain release factor 2|loc|518026 519025 1 # ID=1_543|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsT|30S ribosomal protein S20|loc|663694 663946 -1 # ID=1_701|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|efp_1|Elongation factor P|loc|1227239 1227809 -1 # ID=1_1261|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|efp_2|Elongation factor P|loc|1607624 1608182 -1 # ID=1_1668|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|ywlC|Threonylcarbamoyl-AMP synthase|loc|596345 597341 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplQ|50S ribosomal protein L17|loc|359780 360164 1 # ID=1_372|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplR|50S ribosomal protein L18|loc|354047 354407 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplU|50S ribosomal protein L21|loc|1229445 1229757 -1 # ID=1_1264|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmA|50S ribosomal protein L27|loc|1229130 1229430 -1 # ID=1_1263|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|truA|tRNA pseudouridine synthase A|loc|362830 363619 1 # ID=1_376|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|smpB|SsrA-binding protein|loc|1557165 1557627 -1 # ID=1_1617|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1175461 1176199 -1 # ID=1_1206|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsfS|Ribosomal silencing factor RsfS|loc|1291216 1291564 -1 # ID=1_1324|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmE2|50S ribosomal protein L31 type B|loc|304788 305040 1 # ID=1_310|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tsf|Elongation factor Ts|loc|1148806 1149835 -1 # ID=1_1181|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|397164 398595 1 # ID=1_412|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|395411 395717 1 # ID=1_410|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|548016 548502 1 # ID=1_576|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1209672 1210566 -1 # ID=1_1241|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplI|50S ribosomal protein L9|loc|12596 13052 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsR|30S ribosomal protein S18|loc|10175 10412 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsF|30S ribosomal protein S6|loc|9239 9533 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|infC|Translation initiation factor IF-3|loc|1294680 1295202 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|miaA|tRNA dimethylallyltransferase|loc|1272002 1272929 -1 # ID=1_1304|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|trpS2|Tryptophan--tRNA ligase 2|loc|284780 285806 1 # ID=1_292|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tyrS|Tyrosine--tRNA ligase|loc|219424 220690 1 # ID=1_224|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|dtd|D-aminoacyl-tRNA deacylase|loc|778556 778994 1 # ID=1_808|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|alaS|Alanine--tRNA ligase|loc|1377489 1380123 -1 # ID=1_1421|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ileS|Isoleucine--tRNA ligase|loc|638487 641283 1 # ID=1_677|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|leuS|Leucine--tRNA ligase|loc|1348307 1350722 -1 # ID=1_1389|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|proS|Proline--tRNA ligase|loc|1142843 1144541 -1 # ID=1_1175|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|serS|Serine--tRNA ligase|loc|1580697 1582005 -1 # ID=1_1639|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|thrS|Threonine--tRNA ligase|loc|1298298 1300230 -1 # ID=1_1334|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|valS|Valine--tRNA ligase|loc|616950 619590 1 # ID=1_655|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|truB|tRNA pseudouridine synthase B|loc|1132243 1133140 -1 # ID=1_1167|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|cysS|Cysteine--tRNA ligase|loc|1434966 1436391 -1 # ID=1_1487|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|hisS|Histidine--tRNA ligase|loc|779277 780564 1 # ID=1_809|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pth|Peptidyl-tRNA hydrolase|loc|310576 311134 1 # ID=1_316|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|argS|Arginine--tRNA ligase|loc|699214 700912 1 # ID=1_737|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|aspS|Aspartate--tRNA ligase|loc|780579 782424 1 # ID=1_810|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|gltX|Glutamate--tRNA ligase|loc|1439736 1441239 -1 # ID=1_1491|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1283031 1284081 -1 # ID=1_1315|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1280620 1283032 -1 # ID=1_1314|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|frr|Ribosome-recycling factor|loc|1147374 1147932 -1 # ID=1_1179|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|lysS|Lysine--tRNA ligase|loc|324828 326334 1 # ID=1_327|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|293361 294252 1 # ID=1_299|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplL|50S ribosomal protein L7/L12|loc|1421352 1421718 -1 # ID=1_1465|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsO|30S ribosomal protein S15|loc|664149 664419 1 # ID=1_702|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsL|30S ribosomal protein S12|loc|343208 343616 1 # ID=1_343|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsC|30S ribosomal protein S3|loc|350041 350713 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsB|30S ribosomal protein S2|loc|1149897 1150659 -1 # ID=1_1182|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsD|30S ribosomal protein S4|loc|610876 611488 -1 # ID=1_650|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsE|30S ribosomal protein S5|loc|354423 354936 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmGA|50S ribosomal protein L33 1|loc|1274992 1275142 -1 # ID=1_1310|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rpmG3|50S ribosomal protein L33 3|loc|1429743 1429893 -1 # ID=1_1476|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplS|50S ribosomal protein L19|loc|1172222 1172570 -1 # ID=1_1201|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsG|30S ribosomal protein S7|loc|343631 344102 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmH|50S ribosomal protein L34|loc|1864704 1864845 -1 # ID=1_1942|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmF|50S ribosomal protein L32|loc|715058 715250 1 # ID=1_750|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplT|50S ribosomal protein L20|loc|1294058 1294415 -1 # ID=1_1328|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplV|50S ribosomal protein L22|loc|349674 350028 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsJ|30S ribosomal protein S10|loc|346606 346915 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsS|30S ribosomal protein S19|loc|349377 349653 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplM|50S ribosomal protein L13|loc|363724 364168 1 # ID=1_377|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplN|50S ribosomal protein L14|loc|351658 352027 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplO|50S ribosomal protein L15|loc|355153 355594 1 # ID=1_365|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplX|50S ribosomal protein L24|loc|352043 352283 1 # ID=1_358|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplP|50S ribosomal protein L16|loc|350712 351156 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplA|50S ribosomal protein L1|loc|1427590 1428286 -1 # ID=1_1472|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplB|50S ribosomal protein L2|loc|348523 349360 1 # ID=1_350|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpmD|50S ribosomal protein L30|loc|354947 355133 1 # ID=1_364|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplK|50S ribosomal protein L11|loc|1428369 1428795 -1 # ID=1_1473|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|obg|GTPase Obg|loc|709923 711177 1 # ID=1_745|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsM|30S ribosomal protein S13|loc|358006 358357 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsK|30S ribosomal protein S11|loc|358385 358775 1 # ID=1_370|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpsQ|30S ribosomal protein S17|loc|351361 351628 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplF|50S ribosomal protein L6|loc|353490 354021 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rplD|50S ribosomal protein L4|loc|347584 348202 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1234964 1236014 -1 # ID=1_1271|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1242998 1244123 -1 # ID=1_1278|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1244112 1244604 -1 # ID=1_1279|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|cmk|Cytidylate kinase|loc|737485 738118 1 # ID=1_775|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1240613 1241336 -1 # ID=1_1276|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1240360 1240609 -1 # ID=1_1275|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|purH|Bifunctional purine biosynthesis protein PurH|loc|1232841 1234383 -1 # ID=1_1269|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purF|Amidophosphoribosyltransferase|loc|1236010 1237489 -1 # ID=1_1272|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1237464 1239687 -1 # ID=1_1273|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|180997 183208 1 # ID=1_187|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|gmk_1|Guanylate kinase|loc|1218261 1218876 -1 # ID=1_1248|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|thyA|Thymidylate synthase|loc|678300 679257 1 # ID=1_717|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|nusA|Transcription termination/antitermination protein NusA|loc|1136667 1137888 -1 # ID=1_1172|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|sigA_2|RNA polymerase sigma factor SigA|loc|1053266 1054385 -1 # ID=1_1092|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rbfA|Ribosome-binding factor A|loc|1133190 1133553 -1 # ID=1_1168|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rnpA|Ribonuclease P protein component|loc|1864290 1864656 -1 # ID=1_1941|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1218038 1218260 -1 # ID=1_1247|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|nusG|Transcription termination/antitermination protein NusG|loc|1428920 1429475 -1 # ID=1_1474|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|nusB|Transcription antitermination protein NusB|loc|1226390 1226789 -1 # ID=1_1259|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC 11842|rpoB|DNA-directed RNA polymerase subunit beta|loc|334509 338184 1 # ID=1_338|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpoA|DNA-directed RNA polymerase subunit alpha|loc|358818 359757 1 # ID=1_371|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rnc|Ribonuclease 3|loc|1185313 1186009 -1 # ID=1_1217|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rimM|Ribosome maturation factor RimM|loc|1176198 1176702 -1 # ID=1_1207|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpoC|DNA-directed RNA polymerase subunit beta|loc|338199 341865 1 # ID=1_339|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|dnaJ|Chaperone protein DnaJ|loc|1116483 1117620 -1 # ID=1_1153|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|rplC|50S ribosomal protein L3|loc|346940 347570 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|spo0J|Stage 0 sporulation protein J|loc|1720149 1721040 -1 # ID=1_1793|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|noc|Nucleoid occlusion protein|loc|1721798 1722623 -1 # ID=1_1795|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1338272 1339139 -1 # ID=1_1377|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ychF|Ribosome-binding ATPase YchF|loc|1718716 1719817 -1 # ID=1_1791|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|yrrK|Putative pre-16S rRNA nuclease|loc|1376738 1377167 -1 # ID=1_1419|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|yigZ|IMPACT family member YigZ|loc|511956 512616 -1 # ID=1_538|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|hypothetical protein|loc|369355 369847 1 # ID=1_386|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|-|GTP cyclohydrolase 1 type 2|loc|1030993 1031791 -1 # ID=1_1072|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|recD2|ATP-dependent RecD-like DNA helicase|loc|647109 649500 1 # ID=1_687|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|Nucleoid-associated protein|loc|1405662 1405992 -1 # ID=1_1448|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|hflX|GTPase HflX|loc|1681367 1682648 1 # ID=1_1755|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|62450 63248 1 # ID=1_64|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|890483 890978 1 # ID=1_923|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|degV|Protein DegV|loc|890974 891364 1 # ID=1_924|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1082752 1083598 -1 # ID=1_1121|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|-|DegV domain-containing protein|loc|1094868 1095705 -1 # ID=1_1134|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|lepA|Elongation factor 4|loc|1114523 1116362 -1 # ID=1_1152|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|487286 489014 1 # ID=1_512|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pyrG|CTP synthase|loc|301678 303298 1 # ID=1_308|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|purD|Phosphoribosylamine--glycine ligase|loc|1231560 1232826 -1 # ID=1_1268|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|upp|Uracil phosphoribosyltransferase|loc|597440 598070 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|carB_9|Carbamoyl-phosphate synthase large chain|loc|1768786 1770661 -1 # ID=1_1842|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|-|putative RNA methyltransferase|loc|400342 401698 1 # ID=1_415|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC 11842|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|475828 477211 -1 # ID=1_497|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|fusA|Elongation factor G|loc|344135 346220 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|tuf|Elongation factor Tu|loc|667467 668658 1 # ID=1_705|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|infB|Translation initiation factor IF-2|loc|1133565 1136043 -1 # ID=1_1169|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1213323 1214640 -1 # ID=1_1244|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|der|GTPase Der|loc|739487 740795 1 # ID=1_777|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1398961 1399684 -1 # ID=1_1437|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|670312 671566 1 # ID=1_707|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ffh|Signal recognition particle protein|loc|1177130 1178561 -1 # ID=1_1209|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|506930 507494 1 # ID=1_534|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00218,TIGR00218,"manA: mannose-6-phosphate isomerase, class I",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|manA|Mannose-6-phosphate isomerase ManA|loc|51009 51978 1 # ID=1_52|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|413882 415694 1 # ID=1_433|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|glmM|Phosphoglucosamine mutase|loc|555798 557151 1 # ID=1_586|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC 11842|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|549234 550128 1 # ID=1_578|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|701616 702816 1 # ID=1_739|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|add|Adenosine deaminase|loc|1262376 1263369 -1 # ID=1_1295|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|thrB_2|Homoserine kinase|loc|1496783 1497647 -1 # ID=1_1553|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|rpe|Ribulose-phosphate 3-epimerase|loc|445907 446558 1 # ID=1_467|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|303417 304689 1 # ID=1_309|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000056065.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC 11842|ybeY|Endoribonuclease YbeY|loc|1061520 1062045 -1 # ID=1_1099|Type=CDS|transl_table=11],GCA_000056065.1 +GCA_000182835.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|groS|10 kDa chaperonin|loc|1583082 1583367 -1 # ID=1_1529|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|grpE|Protein GrpE|loc|1297298 1297916 -1 # ID=1_1255|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|671404 672349 1 # ID=1_662|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pgk|Phosphoglycerate kinase|loc|585483 586695 1 # ID=1_565|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplJ|50S ribosomal protein L10|loc|1609088 1609598 -1 # ID=1_1560|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplW|50S ribosomal protein L23|loc|358080 358377 1 # ID=1_340|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsH|30S ribosomal protein S8|loc|362946 363345 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsI|30S ribosomal protein S9|loc|374059 374455 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|glnA|Glutamine synthetase|loc|1448475 1449813 -1 # ID=1_1403|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00674,TIGR00674,dapA: 4-hydroxy-tetrahydrodipicolinate synthase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dapA|4-hydroxy-tetrahydrodipicolinate synthase|loc|1060916 1061846 -1 # ID=1_1030|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|pncB2|Nicotinate phosphoribosyltransferase pncB2|loc|287744 289178 -1 # ID=1_276|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00114,TIGR00114,"lumazine-synth: 6,7-dimethyl-8-ribityllumazine synthase","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,"[Lactobacillus delbrueckii strain ND02|ribH|6,7-dimethyl-8-ribityllumazine synthase|loc|2022792 2023257 -1 # ID=1_1977|Type=CDS|transl_table=11]",GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|coaE|Dephospho-CoA kinase|loc|1484230 1484815 -1 # ID=1_1439|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00187,TIGR00187,"ribE: riboflavin synthase, alpha subunit","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|ribE|Riboflavin synthase|loc|2024469 2025084 -1 # ID=1_1979|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|folB|Dihydroneopterin aldolase|loc|896216 896567 1 # ID=1_872|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|thiN|Thiamine pyrophosphokinase|loc|1379616 1380300 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|898947 900039 1 # ID=1_875|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|folE|GTP cyclohydrolase 1|loc|896563 897637 1 # ID=1_873|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1748148 1749576 -1 # ID=1_1696|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1751198 1752362 -1 # ID=1_1699|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1749576 1750017 -1 # ID=1_1697|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,Yes,No,"[Lactobacillus delbrueckii strain ND02|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1324144 1324876 -1 # ID=1_1279|Type=CDS|transl_table=11]",GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|mreC|Cell shape-determining protein MreC|loc|668821 669673 1 # ID=1_657|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ND02|uppP|Undecaprenyl-diphosphatase|loc|540752 541580 -1 # ID=1_522|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ND02|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1500409 1501729 -1 # ID=1_1457|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|675855 677238 1 # ID=1_666|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ftsZ|Cell division protein FtsZ|loc|680677 682036 1 # ID=1_670|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|mscL|Large-conductance mechanosensitive channel|loc|287188 287665 1 # ID=1_275|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ND02|whiA|putative cell division protein WhiA|loc|577817 578750 1 # ID=1_557|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dprA|DNA processing protein DprA|loc|1199701 1200541 -1 # ID=1_1154|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|metK|S-adenosylmethionine synthase|loc|1544010 1545207 -1 # ID=1_1493|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02727,TIGR02727,MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|1453565 1454126 -1 # ID=1_1409|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|ppk|Polyphosphate kinase|loc|475404 477570 1 # ID=1_459|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaG_1|DNA primase|loc|1171475 1173314 -1 # ID=1_1127|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|dITP/XTP pyrophosphatase|loc|1561512 1562133 -1 # ID=1_1511|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ruvA_2|Holliday junction ATP-dependent DNA helicase RuvA|loc|1576179 1576773 -1 # ID=1_1525|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|uvrC|UvrABC system protein C|loc|753561 755364 1 # ID=1_739|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|xseA|Exodeoxyribonuclease 7 large subunit|loc|1394688 1396059 -1 # ID=1_1345|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|scpB|Segregation and condensation protein B|loc|780370 780973 1 # ID=1_763|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaA|Chromosomal replication initiator protein DnaA|loc|103 1468 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|radA|DNA repair protein RadA|loc|1662882 1664259 -1 # ID=1_1615|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ligA|DNA ligase|loc|412706 414722 1 # ID=1_404|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|mutM|Formamidopyrimidine-DNA glycosylase|loc|1484823 1485645 -1 # ID=1_1440|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|mfd|Transcription-repair-coupling factor|loc|320061 323538 1 # ID=1_308|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|polA|DNA polymerase I|loc|1485655 1488319 -1 # ID=1_1441|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|priA|primosomal protein N|loc|1386246 1388628 -1 # ID=1_1336|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|recO|DNA repair protein RecO|loc|1176581 1177331 -1 # ID=1_1130|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|recR|Recombination protein RecR|loc|1593544 1594144 -1 # ID=1_1543|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|uvrA|UvrABC system protein A|loc|570530 573389 1 # ID=1_549|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|uvrB_2|UvrABC system protein B|loc|568498 570541 1 # ID=1_548|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1575154 1576165 -1 # ID=1_1524|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|recG|ATP-dependent DNA helicase RecG|loc|1371914 1373954 -1 # ID=1_1322|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|dnaN|Beta sliding clamp|loc|1651 2779 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dnaC|Replicative DNA helicase|loc|12861 14232 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|topA|DNA topoisomerase 1|loc|1194596 1196771 -1 # ID=1_1151|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|gyrB|DNA gyrase subunit B|loc|4361 6323 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|gyrA|DNA gyrase subunit A|loc|6335 8807 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pcrA|ATP-dependent DNA helicase PcrA|loc|410434 412696 1 # ID=1_403|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pdg|Ultraviolet N-glycosylase/AP lyase|loc|930731 931361 1 # ID=1_899|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|yqeN|putative protein YqeN|loc|709563 710553 1 # ID=1_698|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|xseB|Exodeoxyribonuclease 7 small subunit|loc|1394456 1394696 -1 # ID=1_1344|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|recQ|ATP-dependent DNA helicase RecQ|loc|750524 752294 1 # ID=1_737|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|recA|Protein RecA|loc|552948 554058 1 # ID=1_534|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|xerD_1|Tyrosine recombinase XerD|loc|778396 779293 1 # ID=1_760|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ackA|Acetate kinase|loc|622546 623734 1 # ID=1_609|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpiA|Ribose-5-phosphate isomerase A|loc|483237 483930 1 # ID=1_467|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tpiA|Triosephosphate isomerase|loc|586713 587472 1 # ID=1_566|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pta|Phosphate acetyltransferase|loc|590784 591774 1 # ID=1_571|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1573120 1574569 -1 # ID=1_1522|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpA|ATP synthase subunit alpha|loc|644446 645958 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpD|ATP synthase subunit beta|loc|646950 648390 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|eno|Enolase|loc|1276357 1277635 1 # ID=1_1239|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pyk|Pyruvate kinase|loc|774470 776240 1 # ID=1_757|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpB|ATP synthase subunit a|loc|642359 643079 1 # ID=1_628|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpF|ATP synthase subunit b|loc|643375 643882 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|atpH_2|ATP synthase subunit delta|loc|643881 644424 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|atpG|ATP synthase gamma chain|loc|645968 646931 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|atpC|ATP synthase epsilon chain|loc|648401 648842 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|atpH_1|ATP synthase subunit c|loc|643097 643322 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01311,TIGR01311,glycerol_kin: glycerol kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|glpK|Glycerol kinase|loc|2003016 2004525 -1 # ID=1_1960|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain ND02|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|584371 585388 1 # ID=1_564|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ldh|L-lactate dehydrogenase|loc|90754 91678 -1 # ID=1_91|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|birA|Bifunctional ligase/repressor BirA|loc|851889 852555 1 # ID=1_824|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1867545 1867971 -1 # ID=1_1823|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|msrA|Peptide methionine sulfoxide reductase MsrA|loc|613861 614389 1 # ID=1_597|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|lspA|Lipoprotein signal peptidase|loc|945698 946151 1 # ID=1_912|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|def2|Peptide deformylase 2|loc|700081 700636 -1 # ID=1_689|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tig|Trigger factor|loc|715786 717112 1 # ID=1_704|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|map|Methionine aminopeptidase 1|loc|507564 508392 1 # ID=1_488|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pcp|Pyrrolidone-carboxylate peptidase|loc|1088522 1089134 -1 # ID=1_1058|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|565518 566352 1 # ID=1_545|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|secG|putative protein-export membrane protein SecG|loc|1762599 1762833 -1 # ID=1_1710|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|secA|Protein translocase subunit SecA|loc|560665 563068 1 # ID=1_541|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|secE|Protein translocase subunit SecE|loc|1614980 1615151 -1 # ID=1_1568|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|secY|Protein translocase subunit SecY|loc|365472 366768 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|spsB_1|Signal peptidase IB|loc|1131399 1131966 1 # ID=1_1093|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|spsB_2|Signal peptidase IB|loc|1132020 1132590 1 # ID=1_1094|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|groL|60 kDa chaperonin|loc|1581446 1583060 -1 # ID=1_1528|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaK|Chaperone protein DnaK|loc|1295394 1297239 -1 # ID=1_1254|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|prmC_1|Release factor glutamine methyltransferase|loc|639683 640526 1 # ID=1_625|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1619218 1619968 -1 # ID=1_1574|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|metG|Methionine--tRNA ligase|loc|298987 300970 1 # ID=1_287|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpmI|50S ribosomal protein L35|loc|1475367 1475568 -1 # ID=1_1430|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|infA|Translation initiation factor IF-1|loc|367507 367729 1 # ID=1_359|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmB|50S ribosomal protein L28|loc|1376175 1376361 1 # ID=1_1325|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmC|50S ribosomal protein L29|loc|361024 361222 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|prfA|Peptide chain release factor 1|loc|638605 639691 1 # ID=1_624|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|prfB|Peptide chain release factor 2|loc|563273 564272 1 # ID=1_542|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsT|30S ribosomal protein S20|loc|710644 710896 -1 # ID=1_699|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|efp_1|Elongation factor P|loc|1397797 1398364 -1 # ID=1_1349|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|efp_2|Elongation factor P|loc|1812662 1813220 -1 # ID=1_1759|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|ywlC|Threonylcarbamoyl-AMP synthase|loc|640525 641521 1 # ID=1_626|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplQ|50S ribosomal protein L17|loc|369659 370043 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplR|50S ribosomal protein L18|loc|363926 364286 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplU|50S ribosomal protein L21|loc|1399999 1400311 -1 # ID=1_1352|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmA|50S ribosomal protein L27|loc|1399684 1399984 -1 # ID=1_1351|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|truA|tRNA pseudouridine synthase A|loc|372709 373498 1 # ID=1_367|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|smpB|SsrA-binding protein|loc|1759730 1760192 -1 # ID=1_1708|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1353264 1354002 -1 # ID=1_1305|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsfS|Ribosomal silencing factor RsfS|loc|1472124 1472472 -1 # ID=1_1425|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmE2|50S ribosomal protein L31 type B|loc|313764 314016 1 # ID=1_301|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tsf|Elongation factor Ts|loc|1326310 1327339 -1 # ID=1_1282|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|417628 419059 1 # ID=1_408|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|gatC_1|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|415875 416181 1 # ID=1_406|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|591784 592270 1 # ID=1_572|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1380329 1381223 -1 # ID=1_1331|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplI|50S ribosomal protein L9|loc|12382 12838 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsR|30S ribosomal protein S18|loc|9961 10198 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsF|30S ribosomal protein S6|loc|9022 9316 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|infC|Translation initiation factor IF-3|loc|1475588 1476110 -1 # ID=1_1431|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|miaA|tRNA dimethylallyltransferase|loc|1451212 1452130 -1 # ID=1_1405|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|trpS2|Tryptophan--tRNA ligase 2|loc|293720 294746 1 # ID=1_283|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tyrS|Tyrosine--tRNA ligase|loc|233286 234552 1 # ID=1_225|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dtd|D-aminoacyl-tRNA deacylase|loc|835155 835593 1 # ID=1_807|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|alaS|Alanine--tRNA ligase|loc|1566757 1569391 -1 # ID=1_1518|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ileS|Isoleucine--tRNA ligase|loc|683912 686708 1 # ID=1_674|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|leuS|Leucine--tRNA ligase|loc|1538896 1541311 -1 # ID=1_1490|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|proS|Proline--tRNA ligase|loc|1320347 1322045 -1 # ID=1_1276|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|serS|Serine--tRNA ligase|loc|1786004 1787312 -1 # ID=1_1732|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|thrS|Threonine--tRNA ligase|loc|1479245 1481177 -1 # ID=1_1435|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|valS|Valine--tRNA ligase|loc|662405 665045 1 # ID=1_652|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|truB|tRNA pseudouridine synthase B|loc|1309817 1310714 -1 # ID=1_1268|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|cysS|Cysteine--tRNA ligase|loc|1620390 1621815 -1 # ID=1_1576|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|hisS|Histidine--tRNA ligase|loc|835877 837164 1 # ID=1_808|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pth|Peptidyl-tRNA hydrolase|loc|319487 320045 1 # ID=1_307|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|argS|Arginine--tRNA ligase|loc|744793 746491 1 # ID=1_732|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|aspS|Aspartate--tRNA ligase|loc|837179 839024 1 # ID=1_809|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|gltX|Glutamate--tRNA ligase|loc|1625941 1627444 -1 # ID=1_1581|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1463878 1464928 -1 # ID=1_1416|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1461467 1463879 -1 # ID=1_1415|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|frr|Ribosome-recycling factor|loc|1324878 1325436 -1 # ID=1_1280|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|lysS|Lysine--tRNA ligase|loc|333671 335195 1 # ID=1_318|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|302279 303170 1 # ID=1_290|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplL|50S ribosomal protein L7/L12|loc|1608670 1609036 -1 # ID=1_1559|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsO|30S ribosomal protein S15|loc|711099 711369 1 # ID=1_700|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsL|30S ribosomal protein S12|loc|351817 352225 1 # ID=1_333|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsC|30S ribosomal protein S3|loc|359920 360592 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsB|30S ribosomal protein S2|loc|1327401 1328163 -1 # ID=1_1283|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsD|30S ribosomal protein S4|loc|656328 656940 -1 # ID=1_647|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsE|30S ribosomal protein S5|loc|364302 364815 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmGA|50S ribosomal protein L33 1|loc|1454191 1454341 -1 # ID=1_1410|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|rpmG3|50S ribosomal protein L33 3|loc|1615157 1615307 -1 # ID=1_1569|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplS|50S ribosomal protein L19|loc|1349223 1349571 -1 # ID=1_1303|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsG|30S ribosomal protein S7|loc|352240 352711 1 # ID=1_334|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmH|50S ribosomal protein L34|loc|2125240 2125381 -1 # ID=1_2071|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmF|50S ribosomal protein L32|loc|760636 760828 1 # ID=1_744|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplT|50S ribosomal protein L20|loc|1474966 1475323 -1 # ID=1_1429|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplV|50S ribosomal protein L22|loc|359553 359907 1 # ID=1_343|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsJ|30S ribosomal protein S10|loc|356485 356794 1 # ID=1_337|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsS|30S ribosomal protein S19|loc|359256 359532 1 # ID=1_342|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplM|50S ribosomal protein L13|loc|373603 374047 1 # ID=1_368|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplN|50S ribosomal protein L14|loc|361537 361906 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplO|50S ribosomal protein L15|loc|365032 365473 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplX|50S ribosomal protein L24|loc|361922 362162 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplP|50S ribosomal protein L16|loc|360591 361035 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplA|50S ribosomal protein L1|loc|1613004 1613700 -1 # ID=1_1565|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplB|50S ribosomal protein L2|loc|358402 359239 1 # ID=1_341|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpmD|50S ribosomal protein L30|loc|364826 365012 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplK|50S ribosomal protein L11|loc|1613783 1614209 -1 # ID=1_1566|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|obg|GTPase Obg|loc|755432 756755 1 # ID=1_740|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpsM|30S ribosomal protein S13|loc|367885 368236 1 # ID=1_360|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsK|30S ribosomal protein S11|loc|368264 368654 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpsQ|30S ribosomal protein S17|loc|361240 361507 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplF|50S ribosomal protein L6|loc|363369 363900 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rplD|50S ribosomal protein L4|loc|357463 358081 1 # ID=1_339|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1405660 1406701 -1 # ID=1_1359|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1413672 1414797 -1 # ID=1_1366|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1414786 1415278 -1 # ID=1_1367|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|cmk|Cytidylate kinase|loc|783223 783856 1 # ID=1_767|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1411300 1412023 -1 # ID=1_1364|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1411047 1411296 -1 # ID=1_1363|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|purH|Bifunctional purine biosynthesis protein PurH|loc|1403528 1405070 -1 # ID=1_1357|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purF|Amidophosphoribosyltransferase|loc|1406697 1408176 -1 # ID=1_1360|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1408151 1410374 -1 # ID=1_1361|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|205592 207803 1 # ID=1_203|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|gmk_1|Guanylate kinase|loc|1388913 1389528 -1 # ID=1_1338|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|thyA|Thymidylate synthase|loc|726492 727449 1 # ID=1_715|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|nusA|Transcription termination/antitermination protein NusA|loc|1314241 1315393 -1 # ID=1_1273|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|sigA_2|RNA polymerase sigma factor SigA|loc|1169222 1170344 -1 # ID=1_1125|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|sigA_3|RNA polymerase sigma factor SigA|loc|1170385 1171504 -1 # ID=1_1126|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rbfA|Ribosome-binding factor A|loc|1310764 1311127 -1 # ID=1_1269|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rnpA|Ribonuclease P protein component|loc|2124826 2125192 -1 # ID=1_2070|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1388690 1388912 -1 # ID=1_1337|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|nusG|Transcription termination/antitermination protein NusG|loc|1614334 1614889 -1 # ID=1_1567|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|nusB|Transcription antitermination protein NusB|loc|1396945 1397344 -1 # ID=1_1347|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ND02|rpoB|DNA-directed RNA polymerase subunit beta|loc|343094 346757 1 # ID=1_328|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpoA|DNA-directed RNA polymerase subunit alpha|loc|368697 369636 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rnc|Ribonuclease 3|loc|1361783 1362479 -1 # ID=1_1313|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rimM|Ribosome maturation factor RimM|loc|1354001 1354505 -1 # ID=1_1306|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpoC|DNA-directed RNA polymerase subunit beta|loc|346772 350438 1 # ID=1_329|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|dnaJ|Chaperone protein DnaJ|loc|1294172 1295312 -1 # ID=1_1253|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|rplC|50S ribosomal protein L3|loc|356819 357449 1 # ID=1_338|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|spo0J|Stage 0 sporulation protein J|loc|1953669 1954560 -1 # ID=1_1909|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|noc|Nucleoid occlusion protein|loc|1955318 1956143 -1 # ID=1_1911|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1528528 1529395 -1 # ID=1_1484|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ychF|Ribosome-binding ATPase YchF|loc|1952236 1953337 -1 # ID=1_1907|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|yrrK|Putative pre-16S rRNA nuclease|loc|1566006 1566435 -1 # ID=1_1516|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|yigZ|IMPACT family member YigZ|loc|557205 557865 -1 # ID=1_537|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|hypothetical protein|loc|387291 387783 1 # ID=1_382|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|-|GTP cyclohydrolase 1 type 2|loc|1134520 1135318 -1 # ID=1_1097|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|recD2|ATP-dependent RecD-like DNA helicase|loc|692546 694937 1 # ID=1_684|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|Nucleoid-associated protein|loc|1594145 1594475 -1 # ID=1_1544|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|hflX|GTPase HflX|loc|1905751 1907032 1 # ID=1_1865|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|55670 56504 1 # ID=1_57|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|degV_1|Protein DegV|loc|957226 958108 1 # ID=1_922|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|1202557 1203403 -1 # ID=1_1158|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|-|DegV domain-containing protein|loc|1275213 1276050 -1 # ID=1_1238|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|degV_2|Protein DegV|loc|1439475 1440405 1 # ID=1_1394|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ND02|lepA|Elongation factor 4|loc|1292212 1294051 -1 # ID=1_1252|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|523578 525306 1 # ID=1_505|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pyrG|CTP synthase|loc|310653 312273 1 # ID=1_299|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|purD|Phosphoribosylamine--glycine ligase|loc|1402247 1403513 -1 # ID=1_1356|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ND02|upp|Uracil phosphoribosyltransferase|loc|641620 642250 1 # ID=1_627|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|carB_3|Carbamoyl-phosphate synthase large chain|loc|1038958 1042159 -1 # ID=1_1005|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|-|putative RNA methyltransferase|loc|420797 422153 1 # ID=1_411|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ND02|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|512152 513535 -1 # ID=1_493|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|fusA|Elongation factor G|loc|352744 354829 1 # ID=1_335|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tuf|Elongation factor Tu|loc|714413 715604 1 # ID=1_703|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|infB|Translation initiation factor IF-2|loc|1311139 1313617 -1 # ID=1_1270|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1383980 1385297 -1 # ID=1_1334|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|der|GTPase Der|loc|785226 786534 1 # ID=1_769|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1588060 1588783 -1 # ID=1_1534|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|717263 718517 1 # ID=1_705|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ffh|Signal recognition particle protein|loc|1354932 1356363 -1 # ID=1_1308|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|552178 552742 1 # ID=1_533|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00131,TIGR00131,gal_kin: galactokinase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|galK_2|Galactokinase|loc|1694429 1695596 1 # ID=1_1650|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|445120 446932 1 # ID=1_433|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|glmM|Phosphoglucosamine mutase|loc|599565 600918 1 # ID=1_581|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|593004 593898 1 # ID=1_574|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ND02|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|747195 748395 1 # ID=1_734|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00036,TIGR00036,dapB: 4-hydroxy-tetrahydrodipicolinate reductase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ND02|dapB|4-hydroxy-tetrahydrodipicolinate reductase|loc|1060134 1060914 -1 # ID=1_1029|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ND02|add|Adenosine deaminase|loc|1437726 1438719 -1 # ID=1_1392|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|thrB_2|Homoserine kinase|loc|1702419 1703283 -1 # ID=1_1656|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ND02|rpe|Ribulose-phosphate 3-epimerase|loc|482574 483225 1 # ID=1_466|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ND02|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|312393 313665 1 # ID=1_300|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000182835.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ND02|ybeY|Endoribonuclease YbeY|loc|1178640 1179165 -1 # ID=1_1133|Type=CDS|transl_table=11],GCA_000182835.1 +GCA_000191165.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|groS|10 kDa chaperonin|loc|1449650 1449935 -1 # ID=1_1503|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|grpE|Protein GrpE|loc|1174949 1175567 -1 # ID=1_1230|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|617876 618821 1 # ID=1_664|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pgk|Phosphoglycerate kinase|loc|533657 534869 1 # ID=1_566|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplJ|50S ribosomal protein L10|loc|1477436 1477946 -1 # ID=1_1539|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplW|50S ribosomal protein L23|loc|339250 339547 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsH|30S ribosomal protein S8|loc|344116 344515 1 # ID=1_360|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsI|30S ribosomal protein S9|loc|355230 355626 1 # ID=1_378|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|glnA|Glutamine synthetase|loc|1323462 1324800 -1 # ID=1_1374|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00674,TIGR00674,dapA: 4-hydroxy-tetrahydrodipicolinate synthase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dapA|4-hydroxy-tetrahydrodipicolinate synthase|loc|959318 960248 -1 # ID=1_1015|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|pncB|Nicotinate phosphoribosyltransferase|loc|262274 263798 -1 # ID=1_276|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00114,TIGR00114,"lumazine-synth: 6,7-dimethyl-8-ribityllumazine synthase","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,"[Lactobacillus delbrueckii strain 2038|ribH|6,7-dimethyl-8-ribityllumazine synthase|loc|1812281 1812746 -1 # ID=1_1902|Type=CDS|transl_table=11]",GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|coaE|Dephospho-CoA kinase|loc|1360164 1360749 -1 # ID=1_1412|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|folB|Dihydroneopterin aldolase|loc|201185 201536 1 # ID=1_214|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|thiN|Thiamine pyrophosphokinase|loc|1264616 1265300 -1 # ID=1_1311|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|203916 205008 1 # ID=1_217|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|folE|GTP cyclohydrolase 1|loc|201532 202606 1 # ID=1_215|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|818024 819452 1 # ID=1_865|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|815238 816402 1 # ID=1_862|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|817583 818024 1 # ID=1_864|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,Yes,No,"[Lactobacillus delbrueckii strain 2038|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1207214 1207946 -1 # ID=1_1256|Type=CDS|transl_table=11]",GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|mreC|Cell shape-determining protein MreC|loc|615294 616020 1 # ID=1_658|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain 2038|uppP|Undecaprenyl-diphosphatase|loc|488653 489481 -1 # ID=1_523|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain 2038|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1368565 1369885 -1 # ID=1_1422|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|622324 623707 1 # ID=1_668|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ftsZ|Cell division protein FtsZ|loc|627146 628505 1 # ID=1_672|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|mscL|Large-conductance mechanosensitive channel|loc|261718 262195 1 # ID=1_275|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain 2038|whiA|putative cell division protein WhiA|loc|525907 526840 1 # ID=1_558|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dprA|DNA processing protein DprA|loc|1135398 1136238 -1 # ID=1_1192|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|metK|S-adenosylmethionine synthase|loc|1411151 1412348 -1 # ID=1_1467|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02727,TIGR02727,MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|1328560 1329133 -1 # ID=1_1381|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|ppk|Polyphosphate kinase|loc|432702 434868 1 # ID=1_463|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaG|DNA primase|loc|1109471 1111310 -1 # ID=1_1167|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|dITP/XTP pyrophosphatase|loc|1428080 1428701 -1 # ID=1_1485|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1442737 1443331 -1 # ID=1_1499|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|uvrC|UvrABC system protein C|loc|699645 701448 1 # ID=1_741|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|xseA|Exodeoxyribonuclease 7 large subunit|loc|1279780 1281151 -1 # ID=1_1328|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|scpB|Segregation and condensation protein B|loc|726362 726965 1 # ID=1_768|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaA|Chromosomal replication initiator protein DnaA|loc|276 1641 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|radA|DNA repair protein RadA|loc|1531500 1532877 -1 # ID=1_1601|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ligA|DNA ligase|loc|384735 386751 1 # ID=1_411|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|mutM|Formamidopyrimidine-DNA glycosylase|loc|1360757 1361579 -1 # ID=1_1413|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|mfd|Transcription-repair-coupling factor|loc|302140 305632 1 # ID=1_319|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|polA|DNA polymerase I|loc|1361589 1364250 -1 # ID=1_1414|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|priA|Primosomal protein N|loc|1271251 1273633 -1 # ID=1_1317|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|recO|DNA repair protein RecO|loc|1114576 1115326 -1 # ID=1_1170|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|recR|Recombination protein RecR|loc|1460731 1461331 -1 # ID=1_1518|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|uvrA|UvrABC system protein A|loc|518396 521252 1 # ID=1_551|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|uvrB_2|UvrABC system protein B|loc|516364 518407 1 # ID=1_550|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1441713 1442724 -1 # ID=1_1498|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|recG|ATP-dependent DNA helicase RecG|loc|1256031 1258071 -1 # ID=1_1302|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|dnaN|Beta sliding clamp|loc|1822 2950 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dnaC|Replicative DNA helicase|loc|13030 14401 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|topA|DNA topoisomerase 1|loc|1131572 1133756 -1 # ID=1_1190|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|gyrB|DNA gyrase subunit B|loc|4533 6495 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|gyrA|DNA gyrase subunit A|loc|6507 8979 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pcrA|ATP-dependent DNA helicase PcrA|loc|382463 384725 1 # ID=1_410|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pdg|Ultraviolet N-glycosylase/AP lyase|loc|881088 881718 1 # ID=1_929|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|yqeN|putative protein YqeN|loc|654522 655512 1 # ID=1_699|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|xseB|Exodeoxyribonuclease 7 small subunit|loc|1279548 1279788 -1 # ID=1_1327|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|recQ|ATP-dependent DNA helicase RecQ|loc|696608 698378 1 # ID=1_739|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|recA|Protein RecA|loc|500813 501923 1 # ID=1_536|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|xerD_1|Tyrosine recombinase XerD|loc|724388 725285 1 # ID=1_765|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ackA|Acetate kinase|loc|571861 573049 1 # ID=1_614|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpiA|Ribose-5-phosphate isomerase A|loc|439964 440657 1 # ID=1_471|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tpiA|Triosephosphate isomerase|loc|534887 535646 1 # ID=1_567|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pta|Phosphate acetyltransferase|loc|538946 539936 1 # ID=1_573|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1439688 1441137 -1 # ID=1_1496|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpA|ATP synthase subunit alpha|loc|592194 593706 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpD|ATP synthase subunit beta|loc|594698 596138 1 # ID=1_637|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|eno|Enolase|loc|1151380 1152658 1 # ID=1_1210|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pyk|Pyruvate kinase|loc|720192 721962 1 # ID=1_760|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpB|ATP synthase subunit a|loc|590107 590827 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpF|ATP synthase subunit b|loc|591123 591630 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpH_2|ATP synthase subunit delta|loc|591629 592172 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpG|ATP synthase gamma chain|loc|593716 594679 1 # ID=1_636|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|atpC|ATP synthase epsilon chain|loc|596149 596590 1 # ID=1_638|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|atpH_1|ATP synthase subunit c|loc|590845 591070 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain 2038|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|532544 533561 1 # ID=1_565|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ldh|L-lactate dehydrogenase|loc|90513 91437 -1 # ID=1_100|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|birA|Bifunctional ligase/repressor BirA|loc|783030 783696 1 # ID=1_824|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1673290 1673716 -1 # ID=1_1764|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|msrA|Peptide methionine sulfoxide reductase MsrA|loc|563158 563686 1 # ID=1_601|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|lspA|Lipoprotein signal peptidase|loc|895901 896354 1 # ID=1_943|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|def2|Peptide deformylase 2|loc|645061 645616 -1 # ID=1_690|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tig|Trigger factor|loc|660752 662072 1 # ID=1_706|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|map|Methionine aminopeptidase 1|loc|464369 465197 1 # ID=1_496|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pcp|Pyrrolidone-carboxylate peptidase|loc|1029182 1029794 -1 # ID=1_1094|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|513384 514218 1 # ID=1_547|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|secG|putative protein-export membrane protein SecG|loc|805722 805956 1 # ID=1_848|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|secA|Protein translocase subunit SecA|loc|508529 510932 1 # ID=1_543|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|secE|Protein translocase subunit SecE|loc|1485232 1485403 -1 # ID=1_1548|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|secY|Protein translocase subunit SecY|loc|346642 347938 1 # ID=1_366|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|spsB|Signal peptidase IB|loc|1066949 1067516 1 # ID=1_1127|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|groL|60 kDa chaperonin|loc|1448010 1449624 -1 # ID=1_1502|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaK|Chaperone protein DnaK|loc|1173045 1174890 -1 # ID=1_1229|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|prmC|Release factor glutamine methyltransferase|loc|587431 588274 1 # ID=1_628|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1489480 1490230 -1 # ID=1_1558|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|metG|Methionine--tRNA ligase|loc|281001 282984 1 # ID=1_298|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpmI|50S ribosomal protein L35|loc|1348638 1348839 -1 # ID=1_1401|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|infA|Translation initiation factor IF-1|loc|348677 348899 1 # ID=1_368|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmB|50S ribosomal protein L28|loc|1260292 1260478 1 # ID=1_1305|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmC|50S ribosomal protein L29|loc|342194 342392 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|prfA|Peptide chain release factor 1|loc|586353 587439 1 # ID=1_627|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|prfB|Peptide chain release factor 2|loc|511138 512137 1 # ID=1_544|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsT|30S ribosomal protein S20|loc|655604 655856 -1 # ID=1_700|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|efp_1|Elongation factor P|loc|1282897 1283467 -1 # ID=1_1332|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|efp_2|Elongation factor P|loc|1626467 1627025 -1 # ID=1_1704|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|ywlC|Threonylcarbamoyl-AMP synthase|loc|588273 589269 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplQ|50S ribosomal protein L17|loc|350829 351213 1 # ID=1_372|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplR|50S ribosomal protein L18|loc|345096 345456 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplU|50S ribosomal protein L21|loc|1285104 1285416 -1 # ID=1_1336|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmA|50S ribosomal protein L27|loc|1284789 1285089 -1 # ID=1_1335|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|truA|tRNA pseudouridine synthase A|loc|353880 354669 1 # ID=1_376|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|smpB|SsrA-binding protein|loc|808414 808876 1 # ID=1_850|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1236045 1236783 -1 # ID=1_1284|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsfS|Ribosomal silencing factor RsfS|loc|1345395 1345743 -1 # ID=1_1396|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmE2|50S ribosomal protein L31 type B|loc|295778 296030 1 # ID=1_312|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tsf|Elongation factor Ts|loc|1209380 1210409 -1 # ID=1_1259|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|389657 391088 1 # ID=1_415|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|387904 388210 1 # ID=1_413|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|539946 540432 1 # ID=1_574|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1265329 1266223 -1 # ID=1_1312|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplI|50S ribosomal protein L9|loc|12551 13007 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsR|30S ribosomal protein S18|loc|10130 10367 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsF|30S ribosomal protein S6|loc|9194 9488 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|infC|Translation initiation factor IF-3|loc|1348859 1349381 -1 # ID=1_1402|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|miaA|tRNA dimethylallyltransferase|loc|1326197 1327088 -1 # ID=1_1377|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|trpS2|Tryptophan--tRNA ligase 2|loc|275711 276737 1 # ID=1_294|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tyrS|Tyrosine--tRNA ligase|loc|210600 211866 1 # ID=1_224|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dtd|D-aminoacyl-tRNA deacylase|loc|766186 766624 1 # ID=1_807|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|alaS|Alanine--tRNA ligase|loc|1433325 1435959 -1 # ID=1_1492|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ileS|Isoleucine--tRNA ligase|loc|630413 633209 1 # ID=1_676|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|leuS|Leucine--tRNA ligase|loc|1404966 1407381 -1 # ID=1_1463|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|proS|Proline--tRNA ligase|loc|1203417 1205115 -1 # ID=1_1253|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|serS|Serine--tRNA ligase|loc|1599776 1601084 -1 # ID=1_1673|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|thrS|Threonine--tRNA ligase|loc|1355178 1357110 -1 # ID=1_1408|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|valS|Valine--tRNA ligase|loc|608878 611518 1 # ID=1_653|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|truB|tRNA pseudouridine synthase B|loc|1192817 1193714 -1 # ID=1_1245|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|cysS|Cysteine--tRNA ligase|loc|1490652 1492077 -1 # ID=1_1560|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|hisS|Histidine--tRNA ligase|loc|766907 768194 1 # ID=1_808|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pth|Peptidyl-tRNA hydrolase|loc|301566 302124 1 # ID=1_318|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|argS|Arginine--tRNA ligase|loc|690877 692575 1 # ID=1_734|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|aspS|Aspartate--tRNA ligase|loc|768209 770054 1 # ID=1_809|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|gltX|Glutamate--tRNA ligase|loc|1495421 1496924 -1 # ID=1_1564|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1337227 1338277 -1 # ID=1_1387|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1334816 1337228 -1 # ID=1_1386|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|frr|Ribosome-recycling factor|loc|1207948 1208506 -1 # ID=1_1257|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|lysS|Lysine--tRNA ligase|loc|315865 317371 1 # ID=1_329|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|284293 285184 1 # ID=1_301|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplL|50S ribosomal protein L7/L12|loc|1477018 1477384 -1 # ID=1_1538|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsO|30S ribosomal protein S15|loc|656059 656329 1 # ID=1_701|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsL|30S ribosomal protein S12|loc|334257 334665 1 # ID=1_343|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsC|30S ribosomal protein S3|loc|341090 341762 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsB|30S ribosomal protein S2|loc|1210471 1211233 -1 # ID=1_1260|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsD|30S ribosomal protein S4|loc|602804 603416 -1 # ID=1_648|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsE|30S ribosomal protein S5|loc|345472 345985 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmGA|50S ribosomal protein L33 1|loc|1329187 1329337 -1 # ID=1_1382|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|rpmG3|50S ribosomal protein L33 3|loc|1485409 1485559 -1 # ID=1_1549|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplS|50S ribosomal protein L19|loc|1232805 1233153 -1 # ID=1_1280|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsG|30S ribosomal protein S7|loc|334680 335151 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmH|50S ribosomal protein L34|loc|1872579 1872720 -1 # ID=1_1962|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmF|50S ribosomal protein L32|loc|706720 706912 1 # ID=1_747|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplT|50S ribosomal protein L20|loc|1348237 1348594 -1 # ID=1_1400|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplV|50S ribosomal protein L22|loc|340723 341077 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsJ|30S ribosomal protein S10|loc|337655 337964 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsS|30S ribosomal protein S19|loc|340426 340702 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplM|50S ribosomal protein L13|loc|354774 355218 1 # ID=1_377|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplN|50S ribosomal protein L14|loc|342707 343076 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplO|50S ribosomal protein L15|loc|346202 346643 1 # ID=1_365|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplX|50S ribosomal protein L24|loc|343092 343332 1 # ID=1_358|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplP|50S ribosomal protein L16|loc|341761 342205 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplA|50S ribosomal protein L1|loc|1483256 1483952 -1 # ID=1_1545|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplB|50S ribosomal protein L2|loc|339572 340409 1 # ID=1_350|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpmD|50S ribosomal protein L30|loc|345996 346182 1 # ID=1_364|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplK|50S ribosomal protein L11|loc|1484035 1484461 -1 # ID=1_1546|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|obg_1|GTPase Obg|loc|701585 702671 1 # ID=1_742|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpsM|30S ribosomal protein S13|loc|349055 349406 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsK|30S ribosomal protein S11|loc|349434 349824 1 # ID=1_370|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpsQ|30S ribosomal protein S17|loc|342410 342677 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplF|50S ribosomal protein L6|loc|344539 345070 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rplD|50S ribosomal protein L4|loc|338633 339251 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1290758 1291808 -1 # ID=1_1343|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1298792 1299917 -1 # ID=1_1350|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1299906 1300398 -1 # ID=1_1351|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|cmk|Cytidylate kinase|loc|729216 729849 1 # ID=1_772|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1296407 1297130 -1 # ID=1_1348|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1296154 1296403 -1 # ID=1_1347|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|purH|Bifunctional purine biosynthesis protein PurH|loc|1288635 1290177 -1 # ID=1_1341|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purF|Amidophosphoribosyltransferase|loc|1291804 1293283 -1 # ID=1_1344|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1293258 1295481 -1 # ID=1_1345|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|173110 175321 1 # ID=1_184|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|gmk_1|Guanylate kinase|loc|1273918 1274533 -1 # ID=1_1319|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|thyA|Thymidylate synthase|loc|670227 671184 1 # ID=1_717|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|nusA|Transcription termination/antitermination protein NusA|loc|1197241 1198462 -1 # ID=1_1250|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|sigA_2|RNA polymerase sigma factor SigA|loc|1107218 1108340 -1 # ID=1_1165|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|sigA_3|RNA polymerase sigma factor SigA|loc|1108381 1109500 -1 # ID=1_1166|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rbfA|Ribosome-binding factor A|loc|1193764 1194127 -1 # ID=1_1246|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rnpA|Ribonuclease P protein component|loc|1872165 1872531 -1 # ID=1_1961|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1273695 1273917 -1 # ID=1_1318|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|nusG|Transcription termination/antitermination protein NusG|loc|1484586 1485141 -1 # ID=1_1547|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|nusB|Transcription antitermination protein NusB|loc|1282048 1282447 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain 2038|rpoB|DNA-directed RNA polymerase subunit beta|loc|325558 329233 1 # ID=1_340|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpoA|DNA-directed RNA polymerase subunit alpha|loc|349867 350806 1 # ID=1_371|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rnc|Ribonuclease 3|loc|1245896 1246592 -1 # ID=1_1293|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rimM|Ribosome maturation factor RimM|loc|1236782 1237286 -1 # ID=1_1285|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpoC|DNA-directed RNA polymerase subunit beta|loc|329248 332914 1 # ID=1_341|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|dnaJ|Chaperone protein DnaJ|loc|1171826 1172963 -1 # ID=1_1228|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|rplC|50S ribosomal protein L3|loc|337989 338619 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|spo0J|Stage 0 sporulation protein J|loc|1732006 1732897 -1 # ID=1_1824|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|noc|Nucleoid occlusion protein|loc|1733655 1734480 -1 # ID=1_1826|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1394911 1395778 -1 # ID=1_1451|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ychF|Ribosome-binding ATPase YchF|loc|1730573 1731674 -1 # ID=1_1822|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|yrrK|Putative pre-16S rRNA nuclease|loc|1432574 1433003 -1 # ID=1_1490|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|yigZ|IMPACT family member YigZ|loc|505069 505729 -1 # ID=1_539|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|hypothetical protein|loc|361846 362338 1 # ID=1_388|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|GTP cyclohydrolase 1 type 2|loc|1071102 1071900 -1 # ID=1_1131|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|recD2|ATP-dependent RecD-like DNA helicase|loc|639035 641426 1 # ID=1_686|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|Nucleoid-associated protein|loc|1461332 1461662 -1 # ID=1_1519|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|hflX|GTPase HflX|loc|1694460 1695741 1 # ID=1_1786|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|53050 53884 1 # ID=1_56|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|degV|Protein DegV|loc|905193 906075 1 # ID=1_950|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|1138261 1139107 -1 # ID=1_1196|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|-|DegV domain-containing protein|loc|1150236 1151073 -1 # ID=1_1209|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain 2038|lepA|Elongation factor 4|loc|1169866 1171705 -1 # ID=1_1227|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|480411 482139 1 # ID=1_513|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pyrG|CTP synthase|loc|292668 294288 1 # ID=1_310|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|purD|Phosphoribosylamine--glycine ligase|loc|1287354 1288620 -1 # ID=1_1340|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain 2038|upp|Uracil phosphoribosyltransferase|loc|589368 589998 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,Yes,Yes,No,[Lactobacillus delbrueckii strain 2038|carB_8|Carbamoyl-phosphate synthase large chain|loc|1788915 1792104 -1 # ID=1_1883|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|-|putative RNA methyltransferase|loc|392835 394191 1 # ID=1_418|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|468963 470346 -1 # ID=1_501|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|fusA|Elongation factor G|loc|335184 337269 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|tuf|Elongation factor Tu|loc|659378 660569 1 # ID=1_705|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|infB|Translation initiation factor IF-2|loc|1194139 1196617 -1 # ID=1_1247|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1268980 1270297 -1 # ID=1_1315|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|der|GTPase Der|loc|731218 732526 1 # ID=1_774|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1454631 1455354 -1 # ID=1_1508|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|662223 663477 1 # ID=1_707|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ffh|Signal recognition particle protein|loc|1237741 1239145 -1 # ID=1_1287|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|500044 500608 1 # ID=1_535|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00218,TIGR00218,"manA: mannose-6-phosphate isomerase, class I",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|manA|Mannose-6-phosphate isomerase ManA|loc|41678 42647 1 # ID=1_45|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|407091 408903 1 # ID=1_436|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|glmM|Phosphoglucosamine mutase|loc|547727 549080 1 # ID=1_583|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|541164 542058 1 # ID=1_576|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain 2038|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|693279 694479 1 # ID=1_736|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00036,TIGR00036,dapB: 4-hydroxy-tetrahydrodipicolinate reductase,Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|dapB|4-hydroxy-tetrahydrodipicolinate reductase|loc|958537 959317 -1 # ID=1_1014|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain 2038|-|Adenine deaminase|loc|925115 926138 -1 # ID=1_973|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain 2038|add|Adenosine deaminase|loc|1318195 1319188 -1 # ID=1_1368|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|thrB_2|Homoserine kinase|loc|1551790 1552654 -1 # ID=1_1627|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain 2038|rpe|Ribulose-phosphate 3-epimerase|loc|439301 439952 1 # ID=1_470|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain 2038|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|294407 295679 1 # ID=1_311|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000191165.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain 2038|ybeY|Endoribonuclease YbeY|loc|1116635 1117160 -1 # ID=1_1173|Type=CDS|transl_table=11],GCA_000191165.1 +GCA_000014405.1__arts_core__Cpn10,Cpn10,PF00166.17: Chaperonin 10 Kd subunit,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|groS|10 kDa chaperonin|loc|1406812 1407097 -1 # ID=1_1465|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__GrpE,GrpE,PF01025.15: GrpE,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|grpE|Protein GrpE|loc|1136787 1137405 -1 # ID=1_1199|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Methyltransf_5,Methyltransf_5,PF01795.15: MraW methylase family,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsmH|Ribosomal RNA small subunit methyltransferase H|loc|620091 621036 1 # ID=1_661|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__PGK,PGK,PF00162.15: Phosphoglycerate kinase,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pgk|Phosphoglycerate kinase|loc|535932 537144 1 # ID=1_562|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_L10,Ribosomal_L10,PF00466.16: Ribosomal protein L10,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplJ|50S ribosomal protein L10|loc|1434540 1435050 -1 # ID=1_1500|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_L23,Ribosomal_L23,PF00276.16: Ribosomal protein L23,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplW|50S ribosomal protein L23|loc|342760 343057 1 # ID=1_350|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_S8,Ribosomal_S8,PF00410.15: Ribosomal protein S8,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsH|30S ribosomal protein S8|loc|347626 348025 1 # ID=1_361|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__Ribosomal_S9,Ribosomal_S9,PF00380.15: Ribosomal protein S9/S16,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsI|30S ribosomal protein S9|loc|358739 359135 1 # ID=1_379|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00653,TIGR00653,"GlnA: glutamine synthetase, type I",Amino acid biosynthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glnA|Glutamine synthetase|loc|1282275 1283613 -1 # ID=1_1338|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01513,TIGR01513,NAPRTase_put: nicotinate phosphoribosyltransferase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pncB|Nicotinate phosphoribosyltransferase|loc|267253 268777 -1 # ID=1_278|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00152,TIGR00152,TIGR00152: dephospho-CoA kinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|coaE|Dephospho-CoA kinase|loc|1316881 1317466 -1 # ID=1_1374|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00525,TIGR00525,folB: dihydroneopterin aldolase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|folB|Dihydroneopterin aldolase|loc|201885 202233 1 # ID=1_205|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01378,TIGR01378,thi_PPkinase: thiamine pyrophosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thiN|Thiamine pyrophosphokinase|loc|1222363 1223047 -1 # ID=1_1277|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01496,TIGR01496,DHPS: dihydropteroate synthase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|204616 205708 1 # ID=1_208|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01498,TIGR01498,folK: 2-amino-4-hydroxy-6-hydroxymethyldihydropteridine diphosphokinase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|folE|GTP cyclohydrolase 1|loc|202232 203306 1 # ID=1_206|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01980,TIGR01980,sufB: FeS assembly protein SufB,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1565302 1566730 -1 # ID=1_1635|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01981,TIGR01981,sufD: FeS assembly protein SufD,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1568352 1569516 -1 # ID=1_1638|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01994,TIGR01994,"SUF_scaf_2: SUF system FeS assembly protein, NifU family","Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|iscU|Iron-sulfur cluster assembly scaffold protein IscU|loc|1566730 1567171 -1 # ID=1_1636|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00055,TIGR00055,"uppS: di-trans,poly-cis-decaprenylcistransferase",Cell envelope,No,No,No,No,"[Lactobacillus delbrueckii strain ATCC BAA-365|uppS|Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)|loc|1165964 1166696 -1 # ID=1_1220|Type=CDS|transl_table=11]",GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00219,TIGR00219,mreC: rod shape-determining protein MreC,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mreC|Cell shape-determining protein MreC|loc|617508 618360 1 # ID=1_656|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00753,TIGR00753,undec_PP_bacA: undecaprenyl-diphosphatase UppP,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uppP|Undecaprenyl-diphosphatase|loc|491017 491845 -1 # ID=1_518|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01082,TIGR01082,murC: UDP-N-acetylmuramate--L-alanine ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murC|UDP-N-acetylmuramate--L-alanine ligase|loc|1325319 1326639 -1 # ID=1_1384|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01087,TIGR01087,murD: UDP-N-acetylmuramoylalanine--D-glutamate ligase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murD|UDP-N-acetylmuramoylalanine--D-glutamate ligase|loc|624539 625922 1 # ID=1_665|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00065,TIGR00065,ftsZ: cell division protein FtsZ,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ftsZ|Cell division protein FtsZ|loc|629361 630720 1 # ID=1_669|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00220,TIGR00220,mscL: large conductance mechanosensitive channel protein,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mscL|Large-conductance mechanosensitive channel|loc|266697 267174 1 # ID=1_277|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00647,TIGR00647,DNA_bind_WhiA: DNA-binding protein WhiA,Cellular processes,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|whiA|putative cell division protein WhiA|loc|528282 529215 1 # ID=1_554|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00732,TIGR00732,dprA: DNA protecting protein DprA,Cellular processes,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dprA|DNA processing protein DprA|loc|1097075 1097915 -1 # ID=1_1161|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01034,TIGR01034,metK: methionine adenosyltransferase,Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|metK|S-adenosylmethionine synthase|loc|1368110 1369307 -1 # ID=1_1428|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02727,TIGR02727,MTHFS_bact: 5-formyltetrahydrofolate cyclo-ligase,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|1287365 1287938 -1 # ID=1_1344|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03705,TIGR03705,poly_P_kin: polyphosphate kinase 1,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ppk|Polyphosphate kinase|loc|435131 437297 1 # ID=1_459|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01391,TIGR01391,dnaG: DNA primase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaG|DNA primase|loc|1072673 1074512 -1 # ID=1_1138|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00042,TIGR00042,"TIGR00042: non-canonical purine NTP pyrophosphatase, RdgB/HAM1 family",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|dITP/XTP pyrophosphatase|loc|1385243 1385864 -1 # ID=1_1447|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00084,TIGR00084,ruvA: Holliday junction DNA helicase RuvA,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ruvA|Holliday junction ATP-dependent DNA helicase RuvA|loc|1399899 1400493 -1 # ID=1_1461|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00194,TIGR00194,uvrC: excinuclease ABC subunit C,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uvrC|UvrABC system protein C|loc|702109 703912 1 # ID=1_737|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00237,TIGR00237,"xseA: exodeoxyribonuclease VII, large subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|xseA|Exodeoxyribonuclease 7 large subunit|loc|1237528 1238899 -1 # ID=1_1294|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00281,TIGR00281,TIGR00281: segregation and condensation protein B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|scpB|Segregation and condensation protein B|loc|727099 727702 1 # ID=1_762|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00362,TIGR00362,DnaA: chromosomal replication initiator protein DnaA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaA|Chromosomal replication initiator protein DnaA|loc|103 1468 1 # ID=1_1|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00416,TIGR00416,sms: DNA repair protein RadA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|radA|DNA repair protein RadA|loc|1488373 1489750 -1 # ID=1_1560|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00575,TIGR00575,"dnlj: DNA ligase, NAD-dependent",DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ligA|DNA ligase|loc|386796 388812 1 # ID=1_410|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00577,TIGR00577,fpg: DNA-formamidopyrimidine glycosylase,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mutM|Formamidopyrimidine-DNA glycosylase|loc|1317474 1318296 -1 # ID=1_1375|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00580,TIGR00580,mfd: transcription-repair coupling factor,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|mfd|Transcription-repair-coupling factor|loc|305677 309154 1 # ID=1_319|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00593,TIGR00593,pola: DNA polymerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|polA|DNA polymerase I|loc|1318306 1320967 -1 # ID=1_1376|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00595,TIGR00595,priA: primosomal protein N',DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|priA|Primosomal protein N|loc|1228998 1231380 -1 # ID=1_1283|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00613,TIGR00613,reco: DNA repair protein RecO,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recO|DNA repair protein RecO|loc|1077778 1078528 -1 # ID=1_1141|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00615,TIGR00615,recR: recombination protein RecR,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recR|Recombination protein RecR|loc|1417880 1418480 -1 # ID=1_1480|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00630,TIGR00630,uvra: excinuclease ABC subunit A,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uvrA|UvrABC system protein A|loc|520773 523629 1 # ID=1_546|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00631,TIGR00631,uvrb: excinuclease ABC subunit B,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|uvrB_2|UvrABC system protein B|loc|518741 520784 1 # ID=1_545|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00635,TIGR00635,ruvB: Holliday junction DNA helicase RuvB,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ruvB_1|Holliday junction ATP-dependent DNA helicase RuvB|loc|1398875 1399886 -1 # ID=1_1460|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00643,TIGR00643,recG: ATP-dependent DNA helicase RecG,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recG|ATP-dependent DNA helicase RecG|loc|1214789 1216829 -1 # ID=1_1269|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00663,TIGR00663,"TIGR00663: dnan: DNA polymerase III, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaN|Beta sliding clamp|loc|1649 2777 1 # ID=1_2|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00665,TIGR00665,DnaB: replicative DNA helicase,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaC|Replicative DNA helicase|loc|12857 14228 1 # ID=1_12|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01051,TIGR01051,topA_bact: DNA topoisomerase I,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|topA|DNA topoisomerase 1|loc|1094771 1096949 -1 # ID=1_1160|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01059,TIGR01059,"gyrB: DNA gyrase, B subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|gyrB|DNA gyrase subunit B|loc|4360 6322 1 # ID=1_5|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01063,TIGR01063,"gyrA: DNA gyrase, A subunit",DNA metabolism,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|gyrA|DNA gyrase subunit A|loc|6334 8806 1 # ID=1_6|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01073,TIGR01073,pcrA: ATP-dependent DNA helicase PcrA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pcrA|ATP-dependent DNA helicase PcrA|loc|384524 386786 1 # ID=1_409|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01083,TIGR01083,nth: endonuclease III,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pdg|Ultraviolet N-glycosylase/AP lyase|loc|852783 853413 1 # ID=1_891|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01128,TIGR01128,"holA: DNA polymerase III, delta subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|yqeN|putative protein YqeN|loc|656738 657728 1 # ID=1_696|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01280,TIGR01280,"xseB: exodeoxyribonuclease VII, small subunit",DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|xseB|Exodeoxyribonuclease 7 small subunit|loc|1237296 1237536 -1 # ID=1_1293|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01389,TIGR01389,recQ: ATP-dependent DNA helicase RecQ,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recQ|ATP-dependent DNA helicase RecQ|loc|699072 700842 1 # ID=1_735|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02012,TIGR02012,tigrfam_recA: protein RecA,DNA metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recA|Protein RecA|loc|503192 504302 1 # ID=1_530|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02225,TIGR02225,recomb_XerD: tyrosine recombinase XerD,DNA metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|xerD_1|Tyrosine recombinase XerD|loc|725125 726022 1 # ID=1_759|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00016,TIGR00016,ackA: acetate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ackA|Acetate kinase|loc|574077 575265 1 # ID=1_610|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00021,TIGR00021,rpiA: ribose 5-phosphate isomerase A,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpiA|Ribose-5-phosphate isomerase A|loc|442393 443086 1 # ID=1_467|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00419,TIGR00419,tim: triose-phosphate isomerase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tpiA|Triosephosphate isomerase|loc|537162 537921 1 # ID=1_563|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00651,TIGR00651,pta: phosphate acetyltransferase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pta|Phosphate acetyltransferase|loc|541222 542212 1 # ID=1_568|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00871,TIGR00871,zwf: glucose-6-phosphate dehydrogenase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|zwf|Glucose-6-phosphate 1-dehydrogenase|loc|1396850 1398299 -1 # ID=1_1458|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00962,TIGR00962,"atpA: ATP synthase F1, alpha subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpA|ATP synthase subunit alpha|loc|594408 595920 1 # ID=1_633|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01039,TIGR01039,"atpD: ATP synthase F1, beta subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpD|ATP synthase subunit beta|loc|596912 598352 1 # ID=1_635|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01060,TIGR01060,eno: phosphopyruvate hydratase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|eno|Enolase|loc|1113196 1114474 1 # ID=1_1179|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01064,TIGR01064,pyruv_kin: pyruvate kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pyk|Pyruvate kinase|loc|720930 722700 1 # ID=1_754|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01131,TIGR01131,"ATP_synt_6_or_A: ATP synthase F0, A subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpB|ATP synthase subunit a|loc|592321 593041 1 # ID=1_629|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01144,TIGR01144,"ATP_synt_b: ATP synthase F0, B subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpF|ATP synthase subunit b|loc|593337 593844 1 # ID=1_631|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01145,TIGR01145,"ATP_synt_delta: ATP synthase F1, delta subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpH_2|ATP synthase subunit delta|loc|593843 594386 1 # ID=1_632|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01146,TIGR01146,"ATPsyn_F1gamma: ATP synthase F1, gamma subunit",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpG|ATP synthase gamma chain|loc|595930 596893 1 # ID=1_634|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01216,TIGR01216,"ATP_synt_epsi: ATP synthase F1, epsilon subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpC|ATP synthase epsilon chain|loc|598363 598804 1 # ID=1_636|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01260,TIGR01260,"ATP_synt_c: ATP synthase F0, C subunit",Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|atpH_1|ATP synthase subunit c|loc|593059 593284 1 # ID=1_630|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01311,TIGR01311,glycerol_kin: glycerol kinase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glpK|Glycerol kinase|loc|1763684 1765193 -1 # ID=1_1855|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01534,TIGR01534,"GAPDH-I: glyceraldehyde-3-phosphate dehydrogenase, type I",Energy metabolism,No,No,Yes,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|gap|Glyceraldehyde-3-phosphate dehydrogenase|loc|534819 535836 1 # ID=1_561|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01771,TIGR01771,L-LDH-NAD: L-lactate dehydrogenase,Energy metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ldh|L-lactate dehydrogenase|loc|95006 95930 -1 # ID=1_99|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00121,TIGR00121,birA_ligase: biotin--[acetyl-CoA-carboxylase] ligase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|birA|Bifunctional ligase/repressor BirA|loc|786338 787004 1 # ID=1_818|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00357,TIGR00357,TIGR00357: methionine-R-sulfoxide reductase,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|msrB|Peptide methionine sulfoxide reductase MsrB|loc|1664838 1665264 -1 # ID=1_1747|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00401,TIGR00401,msrA: peptide-methionine (S)-S-oxide reductase,Protein fate,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|msrA_1|Peptide methionine sulfoxide reductase MsrA|loc|565376 565904 1 # ID=1_598|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|msrA_2|Peptide methionine sulfoxide reductase MsrA|loc|901001 901571 -1 # ID=1_942|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|msrA_3|Peptide methionine sulfoxide reductase MsrA|loc|957846 958416 1 # ID=1_1017|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00077,TIGR00077,lspA: signal peptidase II,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lspA|Lipoprotein signal peptidase|loc|867762 868215 1 # ID=1_906|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00079,TIGR00079,pept_deformyl: peptide deformylase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|def2|Peptide deformylase 2|loc|647262 647817 -1 # ID=1_687|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00115,TIGR00115,tig: trigger factor,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tig|Trigger factor|loc|662967 664287 1 # ID=1_702|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00500,TIGR00500,"met_pdase_I: methionine aminopeptidase, type I",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|map|Methionine aminopeptidase 1|loc|466755 467583 1 # ID=1_490|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00504,TIGR00504,pyro_pdase: pyroglutamyl-peptidase I,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pcp|Pyrrolidone-carboxylate peptidase|loc|1003615 1004227 -1 # ID=1_1066|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00544,TIGR00544,lgt: prolipoprotein diacylglyceryl transferase,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lgt|Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase|loc|515761 516595 1 # ID=1_542|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00810,TIGR00810,"secG: preprotein translocase, SecG subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secG|putative protein-export membrane protein SecG|loc|1578795 1579029 -1 # ID=1_1652|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00963,TIGR00963,"secA: preprotein translocase, SecA subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secA|Protein translocase subunit SecA|loc|510907 513310 1 # ID=1_538|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00964,TIGR00964,"secE_bact: preprotein translocase, SecE subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secE|Protein translocase subunit SecE|loc|1442356 1442527 -1 # ID=1_1509|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00967,TIGR00967,"3a0501s007: preprotein translocase, SecY subunit",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|secY|Protein translocase subunit SecY|loc|350152 351448 1 # ID=1_367|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02227,TIGR02227,sigpep_I_bact: signal peptidase I,Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|spsB|Signal peptidase IB|loc|1037661 1038228 1 # ID=1_1099|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02348,TIGR02348,GroEL: chaperonin GroL,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|groL|60 kDa chaperonin|loc|1405172 1406786 -1 # ID=1_1464|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02350,TIGR02350,prok_dnaK: chaperone protein DnaK,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaK|Chaperone protein DnaK|loc|1134883 1136728 -1 # ID=1_1198|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03534,TIGR03534,"RF_mod_PrmC: protein-(glutamine-N5) methyltransferase, release factor-specific",Protein fate,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|prmC|Release factor glutamine methyltransferase|loc|589645 590488 1 # ID=1_626|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00186,TIGR00186,"rRNA_methyl_3: RNA methyltransferase, TrmH family, group 3",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|Putative TrmH family tRNA/rRNA methyltransferase|loc|1446493 1447243 -1 # ID=1_1517|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00398,TIGR00398,metG: methionine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|metG|Methionine--tRNA ligase|loc|284539 286522 1 # ID=1_298|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00001,TIGR00001,rpmI_bact: ribosomal protein bL35,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmI|50S ribosomal protein L35|loc|1309102 1309303 -1 # ID=1_1367|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00008,TIGR00008,infA: translation initiation factor IF-1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|infA|Translation initiation factor IF-1|loc|352187 352409 1 # ID=1_369|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00009,TIGR00009,L28: ribosomal protein bL28,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmB|50S ribosomal protein L28|loc|1219050 1219236 1 # ID=1_1272|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00012,TIGR00012,L29: ribosomal protein uL29,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmC|50S ribosomal protein L29|loc|345704 345902 1 # ID=1_356|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00019,TIGR00019,prfA: peptide chain release factor 1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|prfA|Peptide chain release factor 1|loc|588567 589653 1 # ID=1_625|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00020,TIGR00020,prfB: peptide chain release factor 2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|prfB|Peptide chain release factor 2|loc|513516 514515 1 # ID=1_539|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00029,TIGR00029,S20: ribosomal protein bS20,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsT|30S ribosomal protein S20|loc|657820 658072 -1 # ID=1_697|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00038,TIGR00038,efp: translation elongation factor P,Protein synthesis,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|efp_1|Elongation factor P|loc|1240647 1241214 -1 # ID=1_1298|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|efp_2|Elongation factor P|loc|1624901 1625459 -1 # ID=1_1697|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00057,TIGR00057,"TIGR00057: tRNA threonylcarbamoyl adenosine modification protein, Sua5/YciO/YrdC/YwlC family",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ywlC|Threonylcarbamoyl-AMP synthase|loc|590487 591483 1 # ID=1_627|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00059,TIGR00059,L17: ribosomal protein bL17,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplQ|50S ribosomal protein L17|loc|354339 354723 1 # ID=1_373|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00060,TIGR00060,L18_bact: ribosomal protein uL18,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplR|50S ribosomal protein L18|loc|348606 348966 1 # ID=1_363|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00061,TIGR00061,L21: ribosomal protein bL21,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplU|50S ribosomal protein L21|loc|1242850 1243162 -1 # ID=1_1301|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00062,TIGR00062,L27: ribosomal protein bL27,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmA|50S ribosomal protein L27|loc|1242535 1242835 -1 # ID=1_1300|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00071,TIGR00071,hisT_truA: tRNA pseudouridine(38-40) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|truA|tRNA pseudouridine synthase A|loc|357389 358178 1 # ID=1_377|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00086,TIGR00086,smpB: SsrA-binding protein,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|smpB|SsrA-binding protein|loc|1575875 1576337 -1 # ID=1_1650|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00088,TIGR00088,trmD: tRNA (guanine(37)-N(1))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|trmD|tRNA (guanine-N(1)-)-methyltransferase|loc|1194807 1195545 -1 # ID=1_1249|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00090,TIGR00090,rsfS_iojap_ybeB: ribosome silencing factor,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsfS|Ribosomal silencing factor RsfS|loc|1305859 1306207 -1 # ID=1_1362|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00105,TIGR00105,L31: ribosomal protein bL31,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmE2|50S ribosomal protein L31 type B|loc|299315 299567 1 # ID=1_312|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00116,TIGR00116,tsf: translation elongation factor Ts,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tsf|Elongation factor Ts|loc|1168130 1169159 -1 # ID=1_1223|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00133,TIGR00133,"gatB: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, B subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gatB|Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B|loc|391718 393149 1 # ID=1_414|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00135,TIGR00135,"gatC: aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase, C subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gatC|Glutamyl-tRNA(Gln) amidotransferase subunit C|loc|389965 390271 1 # ID=1_412|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00150,TIGR00150,T6A_YjeE: tRNA threonylcarbamoyl adenosine modification protein YjeE,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tsaE|tRNA threonylcarbamoyladenosine biosynthesis protein TsaE|loc|542222 542708 1 # ID=1_569|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00157,TIGR00157,TIGR00157: ribosome small subunit-dependent GTPase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsgA|Small ribosomal subunit biogenesis GTPase RsgA|loc|1223076 1223970 -1 # ID=1_1278|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00158,TIGR00158,L9: ribosomal protein bL9,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplI|50S ribosomal protein L9|loc|12378 12834 1 # ID=1_11|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00165,TIGR00165,S18: ribosomal protein bS18,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsR|30S ribosomal protein S18|loc|9957 10194 1 # ID=1_9|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00166,TIGR00166,S6: ribosomal protein bS6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsF|30S ribosomal protein S6|loc|9021 9315 1 # ID=1_7|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00168,TIGR00168,infC: translation initiation factor IF-3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|infC|Translation initiation factor IF-3|loc|1309323 1309845 -1 # ID=1_1368|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00174,TIGR00174,miaA: tRNA dimethylallyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|miaA|tRNA dimethylallyltransferase|loc|1285003 1285930 -1 # ID=1_1340|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00233,TIGR00233,trpS: tryptophan--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|trpS2|Tryptophan--tRNA ligase 2|loc|279249 280275 1 # ID=1_294|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00234,TIGR00234,tyrS: tyrosine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tyrS|Tyrosine--tRNA ligase|loc|211287 212553 1 # ID=1_216|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00256,TIGR00256,TIGR00256: D-tyrosyl-tRNA(Tyr) deacylase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dtd|D-aminoacyl-tRNA deacylase|loc|769460 769898 1 # ID=1_801|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00344,TIGR00344,alaS: alanine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|alaS|Alanine--tRNA ligase|loc|1390487 1393121 -1 # ID=1_1454|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00392,TIGR00392,ileS: isoleucine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ileS|Isoleucine--tRNA ligase|loc|632612 635408 1 # ID=1_673|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00396,TIGR00396,leuS_bact: leucine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|leuS|Leucine--tRNA ligase|loc|1361925 1364340 -1 # ID=1_1423|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00409,TIGR00409,proS_fam_II: proline--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|proS|Proline--tRNA ligase|loc|1162167 1163865 -1 # ID=1_1217|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00414,TIGR00414,serS: serine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|serS|Serine--tRNA ligase|loc|1598010 1599318 -1 # ID=1_1668|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00418,TIGR00418,thrS: threonine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thrS|Threonine--tRNA ligase|loc|1311897 1313829 -1 # ID=1_1370|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00422,TIGR00422,valS: valine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|valS|Valine--tRNA ligase|loc|611092 613732 1 # ID=1_651|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00431,TIGR00431,TruB: tRNA pseudouridine(55) synthase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|truB|tRNA pseudouridine synthase B|loc|1151567 1152464 -1 # ID=1_1209|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00435,TIGR00435,cysS: cysteine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|cysS|Cysteine--tRNA ligase|loc|1447665 1449090 -1 # ID=1_1519|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00442,TIGR00442,hisS: histidine--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|hisS|Histidine--tRNA ligase|loc|770181 771468 1 # ID=1_802|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00447,TIGR00447,pth: aminoacyl-tRNA hydrolase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pth|Peptidyl-tRNA hydrolase|loc|305103 305661 1 # ID=1_318|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00456,TIGR00456,argS: arginine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|argS|Arginine--tRNA ligase|loc|693342 695040 1 # ID=1_729|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00459,TIGR00459,aspS_bact: aspartate--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|aspS|Aspartate--tRNA ligase|loc|771483 773328 1 # ID=1_803|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00464,TIGR00464,gltX_bact: glutamate--tRNA ligase,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gltX|Glutamate--tRNA ligase|loc|1452453 1453956 -1 # ID=1_1523|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00468,TIGR00468,"pheS: phenylalanine--tRNA ligase, alpha subunit",Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pheS|Phenylalanine--tRNA ligase alpha subunit|loc|1297693 1298743 -1 # ID=1_1353|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00472,TIGR00472,"pheT_bact: phenylalanine--tRNA ligase, beta subunit",Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pheT|Phenylalanine--tRNA ligase beta subunit|loc|1295282 1297694 -1 # ID=1_1352|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00496,TIGR00496,frr: ribosome recycling factor,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|frr|Ribosome-recycling factor|loc|1166698 1167256 -1 # ID=1_1221|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00499,TIGR00499,lysS_bact: lysine--tRNA ligase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lysS|Lysine--tRNA ligase|loc|319385 320891 1 # ID=1_329|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00755,TIGR00755,ksgA: ribosomal RNA small subunit methyltransferase A,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsmA|Ribosomal RNA small subunit methyltransferase A|loc|287831 288722 1 # ID=1_301|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00855,TIGR00855,L12: ribosomal protein bL12,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplL|50S ribosomal protein L7/L12|loc|1434122 1434488 -1 # ID=1_1499|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00952,TIGR00952,S15_bact: ribosomal protein uS15,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsO|30S ribosomal protein S15|loc|658275 658545 1 # ID=1_698|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00981,TIGR00981,rpsL_bact: ribosomal protein uS12,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsL|30S ribosomal protein S12|loc|337767 338175 1 # ID=1_344|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01009,TIGR01009,rpsC_bact: ribosomal protein uS3,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsC|30S ribosomal protein S3|loc|344600 345272 1 # ID=1_354|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01011,TIGR01011,rpsB_bact: ribosomal protein uS2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsB|30S ribosomal protein S2|loc|1169221 1169983 -1 # ID=1_1224|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01017,TIGR01017,rpsD_bact: ribosomal protein uS4,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsD|30S ribosomal protein S4|loc|605018 605630 -1 # ID=1_646|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01021,TIGR01021,rpsE_bact: ribosomal protein uS5,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsE|30S ribosomal protein S5|loc|348982 349495 1 # ID=1_364|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01023,TIGR01023,rpmG_bact: ribosomal protein bL33,Protein synthesis,Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmGA|50S ribosomal protein L33 1|loc|1287992 1288142 -1 # ID=1_1345|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|rpmG3|50S ribosomal protein L33 3|loc|1442533 1442683 -1 # ID=1_1510|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01024,TIGR01024,rplS_bact: ribosomal protein bL19,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplS|50S ribosomal protein L19|loc|1191568 1191916 -1 # ID=1_1243|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01029,TIGR01029,rpsG_bact: ribosomal protein uS7,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsG|30S ribosomal protein S7|loc|338190 338661 1 # ID=1_345|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01030,TIGR01030,rpmH_bact: ribosomal protein bL34,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmH|50S ribosomal protein L34|loc|1856438 1856579 -1 # ID=1_1947|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01031,TIGR01031,rpmF_bact: ribosomal protein bL32,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmF|50S ribosomal protein L32|loc|709183 709375 1 # ID=1_742|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01032,TIGR01032,rplT_bact: ribosomal protein bL20,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplT|50S ribosomal protein L20|loc|1308701 1309058 -1 # ID=1_1366|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01044,TIGR01044,rplV_bact: ribosomal protein uL22,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplV|50S ribosomal protein L22|loc|344233 344587 1 # ID=1_353|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01049,TIGR01049,rpsJ_bact: ribosomal protein uS10,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsJ|30S ribosomal protein S10|loc|341165 341474 1 # ID=1_347|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01050,TIGR01050,rpsS_bact: ribosomal protein uS19,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsS|30S ribosomal protein S19|loc|343936 344212 1 # ID=1_352|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01066,TIGR01066,rplM_bact: ribosomal protein uL13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplM|50S ribosomal protein L13|loc|358283 358727 1 # ID=1_378|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01067,TIGR01067,rplN_bact: ribosomal protein uL14,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplN|50S ribosomal protein L14|loc|346217 346586 1 # ID=1_358|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01071,TIGR01071,rplO_bact: ribosomal protein uL15,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplO|50S ribosomal protein L15|loc|349712 350153 1 # ID=1_366|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01079,TIGR01079,rplX_bact: ribosomal protein uL24,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplX|50S ribosomal protein L24|loc|346602 346842 1 # ID=1_359|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01164,TIGR01164,rplP_bact: ribosomal protein uL16,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplP|50S ribosomal protein L16|loc|345271 345715 1 # ID=1_355|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01169,TIGR01169,rplA_bact: ribosomal protein uL1,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplA|50S ribosomal protein L1|loc|1440380 1441076 -1 # ID=1_1506|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01171,TIGR01171,rplB_bact: ribosomal protein uL2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplB|50S ribosomal protein L2|loc|343082 343919 1 # ID=1_351|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01308,TIGR01308,rpmD_bact: ribosomal protein uL30,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpmD|50S ribosomal protein L30|loc|349506 349692 1 # ID=1_365|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01632,TIGR01632,L11_bact: ribosomal protein uL11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplK|50S ribosomal protein L11|loc|1441159 1441585 -1 # ID=1_1507|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02729,TIGR02729,Obg_CgtA: Obg family GTPase CgtA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|obg|GTPase Obg|loc|704049 705303 1 # ID=1_738|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03631,TIGR03631,uS13_bact: ribosomal protein uS13,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsM|30S ribosomal protein S13|loc|352565 352916 1 # ID=1_370|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03632,TIGR03632,uS11_bact: ribosomal protein uS11,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsK|30S ribosomal protein S11|loc|352944 353334 1 # ID=1_371|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03635,TIGR03635,uS17_bact: ribosomal protein uS17,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpsQ|30S ribosomal protein S17|loc|345920 346187 1 # ID=1_357|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03654,TIGR03654,L6_bact: ribosomal protein uL6,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplF|50S ribosomal protein L6|loc|348049 348580 1 # ID=1_362|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03953,TIGR03953,rplD_bact: 50S ribosomal protein uL4,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplD|50S ribosomal protein L4|loc|342143 342761 1 # ID=1_349|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00878,TIGR00878,purM: phosphoribosylformylglycinamidine cyclo-ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purM|Phosphoribosylformylglycinamidine cyclo-ligase|loc|1248504 1249554 -1 # ID=1_1308|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01161,TIGR01161,"purK: phosphoribosylaminoimidazole carboxylase, ATPase subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purK|N5-carboxyaminoimidazole ribonucleotide synthase|loc|1256538 1257663 -1 # ID=1_1315|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01162,TIGR01162,"purE: phosphoribosylaminoimidazole carboxylase, catalytic subunit","Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purE|N5-carboxyaminoimidazole ribonucleotide mutase|loc|1257652 1258144 -1 # ID=1_1316|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00017,TIGR00017,cmk: cytidylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|cmk|Cytidylate kinase|loc|729952 730585 1 # ID=1_766|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00081,TIGR00081,purC: phosphoribosylaminoimidazolesuccinocarboxamide synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purC|Phosphoribosylaminoimidazole-succinocarboxamide synthase|loc|1254153 1254876 -1 # ID=1_1313|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00302,TIGR00302,"TIGR00302: phosphoribosylformylglycinamidine synthase, purS protein","Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purS|Phosphoribosylformylglycinamidine synthase subunit PurS|loc|1253900 1254149 -1 # ID=1_1312|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00355,TIGR00355,purH: phosphoribosylaminoimidazolecarboxamide formyltransferase/IMP cyclohydrolase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purH|Bifunctional purine biosynthesis protein PurH|loc|1246381 1247923 -1 # ID=1_1306|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01134,TIGR01134,purF: amidophosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purF|Amidophosphoribosyltransferase|loc|1249550 1251029 -1 # ID=1_1309|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01736,TIGR01736,FGAM_synth_II: phosphoribosylformylglycinamidine synthase II,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purL|Phosphoribosylformylglycinamidine synthase subunit PurL|loc|1251004 1253227 -1 # ID=1_1310|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02487,TIGR02487,NrdD: anaerobic ribonucleoside-triphosphate reductase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nrdD|Anaerobic ribonucleoside-triphosphate reductase|loc|176021 178232 1 # ID=1_181|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03263,TIGR03263,guanyl_kin: guanylate kinase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|gmk_1|Guanylate kinase|loc|1231665 1232280 -1 # ID=1_1285|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03284,TIGR03284,thym_sym: thymidylate synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thyA|Thymidylate synthase|loc|672440 673397 1 # ID=1_712|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01953,TIGR01953,NusA: transcription termination factor NusA,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nusA|Transcription termination/antitermination protein NusA|loc|1155991 1157212 -1 # ID=1_1214|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02393,TIGR02393,RpoD_Cterm: RNA polymerase sigma factor RpoD,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|sigA_2|RNA polymerase sigma factor SigA|loc|1071583 1072702 -1 # ID=1_1137|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00082,TIGR00082,rbfA: ribosome-binding factor A,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rbfA|Ribosome-binding factor A|loc|1152514 1152877 -1 # ID=1_1210|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00188,TIGR00188,rnpA: ribonuclease P protein component,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rnpA|Ribonuclease P protein component|loc|1856024 1856390 -1 # ID=1_1946|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00690,TIGR00690,"rpoZ: DNA-directed RNA polymerase, omega subunit",Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoZ|DNA-directed RNA polymerase subunit omega|loc|1231442 1231664 -1 # ID=1_1284|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00922,TIGR00922,nusG: transcription termination/antitermination factor NusG,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nusG|Transcription termination/antitermination protein NusG|loc|1441710 1442265 -1 # ID=1_1508|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01951,TIGR01951,nusB: transcription antitermination factor NusB,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nusB|Transcription antitermination protein NusB|loc|1239795 1240164 -1 # ID=1_1296|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02013,TIGR02013,"TIGR02013: rpoB: DNA-directed RNA polymerase, beta subunit",,No,No,No,Yes,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoB|DNA-directed RNA polymerase subunit beta|loc|329068 332743 1 # ID=1_339|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02027,TIGR02027,"rpoA: DNA-directed RNA polymerase, alpha subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoA|DNA-directed RNA polymerase subunit alpha|loc|353377 354316 1 # ID=1_372|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02191,TIGR02191,RNaseIII: ribonuclease III,Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rnc|Ribonuclease 3|loc|1204657 1205353 -1 # ID=1_1259|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02273,TIGR02273,16S_RimM: 16S rRNA processing protein RimM,Transcription,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rimM|Ribosome maturation factor RimM|loc|1195544 1196048 -1 # ID=1_1250|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02386,TIGR02386,"rpoC_TIGR: DNA-directed RNA polymerase, beta' subunit",Transcription,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpoC|DNA-directed RNA polymerase subunit beta|loc|332759 336425 1 # ID=1_340|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR02349,TIGR02349,DnaJ_bact: chaperone protein DnaJ,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|dnaJ|Chaperone protein DnaJ|loc|1133664 1134801 -1 # ID=1_1197|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03625,TIGR03625,L3_bact: 50S ribosomal protein uL3,Unclassified,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rplC|50S ribosomal protein L3|loc|341499 342129 1 # ID=1_348|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00180,TIGR00180,parB_part: ParB/RepB/Spo0J family partition protein,Unclassified,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|spo0J|Stage 0 sporulation protein J|loc|1727224 1728115 -1 # ID=1_1813|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|noc|Nucleoid occlusion protein|loc|1728873 1729698 -1 # ID=1_1815|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00196,TIGR00196,yjeF_cterm: YjeF family C-terminal domain,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|nnrD|ADP-dependent (S)-NAD(P)H-hydrate dehydratase|loc|1351882 1352749 -1 # ID=1_1412|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00092,TIGR00092,TIGR00092: GTP-binding protein YchF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ychF|Ribosome-binding ATPase YchF|loc|1725791 1726892 -1 # ID=1_1811|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00250,TIGR00250,RNAse_H_YqgF: putative transcription antitermination factor YqgF,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|yrrK|Putative pre-16S rRNA nuclease|loc|1389736 1390165 -1 # ID=1_1452|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00257,TIGR00257,"IMPACT_YIGZ: uncharacterized protein, YigZ family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|yigZ|IMPACT family member YigZ|loc|507448 508108 -1 # ID=1_533|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00481,TIGR00481,"TIGR00481: Raf kinase inhibitor-like protein, YbhB/YbcL family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|hypothetical protein|loc|363902 364394 1 # ID=1_387|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00486,TIGR00486,"YbgI_SA1388: dinuclear metal center protein, YbgI/SA1388 family",Unknown function,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|GTP cyclohydrolase 1 type 2|loc|1040156 1040954 -1 # ID=1_1102|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01448,TIGR01448,"recD_rel: helicase, RecD/TraA family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|recD2|ATP-dependent RecD-like DNA helicase|loc|641234 643625 1 # ID=1_683|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00103,TIGR00103,"DNA_YbaB_EbfC: DNA-binding protein, YbaB/EbfC family",Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|Nucleoid-associated protein|loc|1418481 1418811 -1 # ID=1_1481|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03156,TIGR03156,GTP_HflX: GTP-binding protein HflX,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|hflX|GTPase HflX|loc|1690374 1691655 1 # ID=1_1776|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00762,TIGR00762,"DegV: EDD domain protein, DegV family",Unknown function,Yes,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|60901 61699 1 # ID=1_62|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|degV|Protein DegV|loc|877054 877936 1 # ID=1_913|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|1099937 1100783 -1 # ID=1_1165|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|-|DegV domain-containing protein|loc|1112053 1112890 -1 # ID=1_1178|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01393,TIGR01393,lepA: elongation factor 4,Unknown function,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|lepA|Elongation factor 4|loc|1131704 1133543 -1 # ID=1_1196|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01417,TIGR01417,PTS_I_fam: phosphoenolpyruvate-protein phosphotransferase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ptsI|Phosphoenolpyruvate-protein phosphotransferase|loc|482775 484503 1 # ID=1_508|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00337,TIGR00337,PyrG: CTP synthase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pyrG|CTP synthase|loc|296205 297825 1 # ID=1_310|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00877,TIGR00877,purD: phosphoribosylamine--glycine ligase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|purD|Phosphoribosylamine--glycine ligase|loc|1245100 1246366 -1 # ID=1_1305|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01091,TIGR01091,upp: uracil phosphoribosyltransferase,"Purines, pyrimidines, nucleosides, and nucleotides",No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|upp|Uracil phosphoribosyltransferase|loc|591582 592212 1 # ID=1_628|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01369,TIGR01369,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit","Purines, pyrimidines, nucleosides, and nucleotides",Yes,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|carB_3|Carbamoyl-phosphate synthase large chain|loc|907582 910264 -1 # ID=1_952|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|carB_6|Carbamoyl-phosphate synthase large chain|loc|949153 951835 1 # ID=1_1007|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|carB_7|Carbamoyl-phosphate synthase large chain|loc|1772322 1775511 -1 # ID=1_1862|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00479,TIGR00479,rumA: 23S rRNA (uracil-5-)-methyltransferase RumA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|-|putative RNA methyltransferase|loc|394896 396252 1 # ID=1_417|Type=CDS|transl_table=11; Lactobacillus delbrueckii strain ATCC BAA-365|rlmCD|23S rRNA (uracil-C(5))-methyltransferase RlmCD|loc|471345 472728 -1 # ID=1_495|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00484,TIGR00484,EF-G: translation elongation factor G,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|fusA|Elongation factor G|loc|338694 340779 1 # ID=1_346|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00485,TIGR00485,EF-Tu: translation elongation factor Tu,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tuf|Elongation factor Tu|loc|661593 662784 1 # ID=1_701|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00487,TIGR00487,IF-2: translation initiation factor IF-2,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|infB|Translation initiation factor IF-2|loc|1152889 1155367 -1 # ID=1_1211|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00563,TIGR00563,rsmB: 16S rRNA (cytosine(967)-C(5))-methyltransferase,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rsmB|Ribosomal RNA small subunit methyltransferase B|loc|1226727 1228044 -1 # ID=1_1281|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03594,TIGR03594,GTPase_EngA: ribosome-associated GTPase EngA,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|der|GTPase Der|loc|731954 733262 1 # ID=1_768|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR03725,TIGR03725,T6A_YeaZ: tRNA threonylcarbamoyl adenosine modification protein YeaZ,Protein synthesis,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|tsaB|tRNA threonylcarbamoyladenosine biosynthesis protein TsaB|loc|1411780 1412503 -1 # ID=1_1470|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00382,TIGR00382,"clpX: ATP-dependent Clp protease, ATP-binding subunit ClpX",Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|clpX|ATP-dependent Clp protease ATP-binding subunit ClpX|loc|664438 665692 1 # ID=1_703|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00959,TIGR00959,ffh: signal recognition particle protein,Protein fate,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ffh|Signal recognition particle protein|loc|1196476 1197907 -1 # ID=1_1252|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00560,TIGR00560,pgsA: CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,Fatty acid and phospholipid metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|pgsA|CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase|loc|502423 502987 1 # ID=1_529|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00218,TIGR00218,"manA: mannose-6-phosphate isomerase, class I",Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|manA|Mannose-6-phosphate isomerase ManA|loc|49490 50459 1 # ID=1_51|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01135,TIGR01135,glmS: glutamine-fructose-6-phosphate transaminase (isomerizing),Central intermediary metabolism,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glmS|Glutamine--fructose-6-phosphate aminotransferase [isomerizing]|loc|408973 410785 1 # ID=1_434|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01455,TIGR01455,glmM: phosphoglucosamine mutase,Central intermediary metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|glmM|Phosphoglucosamine mutase|loc|550001 551354 1 # ID=1_578|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00179,TIGR00179,murB: UDP-N-acetylenolpyruvoylglucosamine reductase,Cell envelope,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murB|UDP-N-acetylenolpyruvoylglucosamine reductase|loc|543440 544334 1 # ID=1_571|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00521,TIGR00521,coaBC_dfp: phosphopantothenoylcysteine decarboxylase / phosphopantothenate--cysteine ligase,"Biosynthesis of cofactors, prosthetic groups, and carriers",No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|coaBC|Coenzyme A biosynthesis bifunctional protein CoaBC|loc|695744 696944 1 # ID=1_731|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01430,TIGR01430,aden_deam: adenosine deaminase,Unclassified,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|add|Adenosine deaminase|loc|1275359 1276352 -1 # ID=1_1330|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00191,TIGR00191,thrB: homoserine kinase,Amino acid biosynthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|thrB_2|Homoserine kinase|loc|1508362 1509226 -1 # ID=1_1585|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01163,TIGR01163,rpe: ribulose-phosphate 3-epimerase,Energy metabolism,No,No,Yes,No,[Lactobacillus delbrueckii strain ATCC BAA-365|rpe|Ribulose-phosphate 3-epimerase|loc|441730 442381 1 # ID=1_466|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR01072,TIGR01072,murA: UDP-N-acetylglucosamine 1-carboxyvinyltransferase,Cell envelope,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|murA1|UDP-N-acetylglucosamine 1-carboxyvinyltransferase|loc|297944 299216 1 # ID=1_311|Type=CDS|transl_table=11],GCA_000014405.1 +GCA_000014405.1__arts_core__TIGR00043,TIGR00043,TIGR00043: rRNA maturation RNase YbeY,Protein synthesis,No,No,No,No,[Lactobacillus delbrueckii strain ATCC BAA-365|ybeY|Endoribonuclease YbeY|loc|1079837 1080362 -1 # ID=1_1144|Type=CDS|transl_table=11],GCA_000014405.1 diff --git a/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_knownhits_as-7.0.0.csv b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_knownhits_as-7.0.0.csv new file mode 100644 index 00000000..51cef60c --- /dev/null +++ b/.tests/unit/arts_final/data/data/processed/Lactobacillus_delbrueckii/tables/df_arts_knownhits_as-7.0.0.csv @@ -0,0 +1,75 @@ +pkey,model,description,sequence_id,evalue,bitscore,gid,seqtitle,scaffold,start,stop,strand,genome_id,known_target +GCA_000056065.1__RF0007__1__1129,RF0007,ABC_efflux,1129,1.2e-84,281.7,cog,cog1132,1,1088237,1090010,-1,GCA_000056065.1,Yes +GCA_000056065.1__RF0007__1__1189,RF0007,ABC_efflux,1189,1.4e-77,258.3,cog,cog1132,1,1156691,1158488,-1,GCA_000056065.1,Yes +GCA_000056065.1__RF0007__1__1016,RF0007,ABC_efflux,1016,1.5e-77,258.2,cog,cog1132,1,976019,977777,1,GCA_000056065.1,Yes +GCA_000056065.1__RF0007__1__1788,RF0007,ABC_efflux,1788,7.499999999999999e-75,249.3,cog,cog1132,1,1714213,1716058,-1,GCA_000056065.1,Yes +GCA_000056065.1__RF0155__1__1786,RF0155,vanS,1786,3e-74,247.0,lcl,1786,1,1712200,1713409,-1,GCA_000056065.1,Yes +GCA_000056065.1__PF00044.19__1__567,PF00044.19,Gp_dh_N,567,5.299999999999999e-54,179.4,lcl,567,1,540614,541631,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00185.19__1__933,PF00185.19,OTCace,933,1.6999999999999999e-35,119.3,lcl,933,1,898519,899089,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00185.19__1__1845,PF00185.19,OTCace,1845,2.3999999999999999e-35,118.8,lcl,1845,1,1773015,1773972,-1,GCA_000056065.1,Yes +GCA_000056065.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,7.1e-61,201.5,cog,cog0187,1,4578,6540,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00204.20__1__889,PF00204.20,DNA_gyraseB,889,1.1e-52,174.9,cog,cog0187,1,843765,845697,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00227.21__1__1113,PF00227.21,Proteasome,1113,8.2e-23,77.8,cog,cog5405,1,1074598,1075132,-1,GCA_000056065.1,Yes +GCA_000056065.1__PF00364.17__1__824,PF00364.17,Biotin_lipoyl,824,3.1999999999999997e-25,84.7,lcl,824,1,793916,794399,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,6.5e-157,519.8,cog,cog0188,1,6552,9024,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00521.15__1__890,PF00521.15,DNA_topoisoIV,890,1.6e-148,492.2,cog,cog0188,1,845711,848195,1,GCA_000056065.1,Yes +GCA_000056065.1__PF01039.17__1__827,PF01039.17,Carboxyl_trans,827,1.9e-19,66.5,cog,cog0777,1,796205,797054,1,GCA_000056065.1,Yes +GCA_000056065.1__PF01039.17__1__828,PF01039.17,Carboxyl_trans,828,2.3e-19,66.2,cog,cog0825,1,797046,797814,1,GCA_000056065.1,Yes +GCA_000056065.1__TIGR02013__1__338,TIGR02013,TIGR02013,338,0.0,1683.7,cog,cog0085,1,334509,338184,1,GCA_000056065.1,Yes +GCA_000056065.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,7.4e-93,308.1,cog,cog0592,1,1867,2995,1,GCA_000056065.1,Yes +GCA_000182835.1__RF0007__1__1165,RF0007,ABC_efflux,1165,1.1e-87,291.7,cog,cog1132,1,1210613,1212386,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0007__1__1291,RF0007,ABC_efflux,1291,1.1e-77,258.7,cog,cog1132,1,1333698,1335495,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0007__1__1904,RF0007,ABC_efflux,1904,6.3e-77,256.2,cog,cog1132,1,1947730,1949575,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0007__1__989,RF0007,ABC_efflux,989,7.3e-76,252.7,cog,cog1132,1,1024132,1025890,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0155__1__1902,RF0155,vanS,1902,1.4000000000000001e-74,248.2,lcl,1902,1,1945717,1946926,-1,GCA_000182835.1,Yes +GCA_000182835.1__PF00044.19__1__564,PF00044.19,Gp_dh_N,564,5.299999999999999e-54,179.5,lcl,564,1,584371,585388,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00185.19__1__1720,PF00185.19,OTCace,1720,3.6e-53,176.9,lcl,1720,1,1774927,1775929,-1,GCA_000182835.1,Yes +GCA_000182835.1__PF00185.19__1__931,PF00185.19,OTCace,931,1.6e-34,116.3,lcl,931,1,966778,967789,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,4.4e-61,202.2,cog,cog0187,1,4361,6323,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00204.20__1__886,PF00204.20,DNA_gyraseB,886,5.299999999999999e-53,176.0,cog,cog0187,1,908124,910056,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00227.21__1__1148,PF00227.21,Proteasome,1148,1.9e-22,76.6,cog,cog5405,1,1191616,1192150,-1,GCA_000182835.1,Yes +GCA_000182835.1__PF00364.17__1__818,PF00364.17,Biotin_lipoyl,818,1.0999999999999998e-24,83.1,cog,cog0511,1,847208,847691,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,2.3e-156,518.1,cog,cog0188,1,6335,8807,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00521.15__1__887,PF00521.15,DNA_topoisoIV,887,9e-149,493.1,cog,cog0188,1,910070,912554,1,GCA_000182835.1,Yes +GCA_000182835.1__PF01039.17__1__822,PF01039.17,Carboxyl_trans,822,2.3e-19,66.2,cog,cog0825,1,850338,851106,1,GCA_000182835.1,Yes +GCA_000182835.1__PF01039.17__1__821,PF01039.17,Carboxyl_trans,821,3.1e-19,65.9,cog,cog0777,1,849497,850346,1,GCA_000182835.1,Yes +GCA_000182835.1__TIGR02013__1__328,TIGR02013,TIGR02013,328,0.0,1684.7,cog,cog0085,1,343094,346757,1,GCA_000182835.1,Yes +GCA_000182835.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,1.1e-92,307.7,cog,cog0592,1,1651,2779,1,GCA_000182835.1,Yes +GCA_000191165.1__RF0007__1__1204,RF0007,ABC_efflux,1204,1.9e-85,284.3,cog,cog1132,1,1143604,1145377,-1,GCA_000191165.1,Yes +GCA_000191165.1__RF0007__1__1070,RF0007,ABC_efflux,1070,8.3e-78,259.1,cog,cog1132,1,1007685,1009443,1,GCA_000191165.1,Yes +GCA_000191165.1__RF0007__1__1267,RF0007,ABC_efflux,1267,1.5e-77,258.3,cog,cog1132,1,1217265,1219062,-1,GCA_000191165.1,Yes +GCA_000191165.1__RF0007__1__1819,RF0007,ABC_efflux,1819,1.5e-76,255.0,cog,cog1132,1,1726068,1727913,-1,GCA_000191165.1,Yes +GCA_000191165.1__RF0155__1__1817,RF0155,vanS,1817,3e-74,247.0,lcl,1817,1,1724055,1725264,-1,GCA_000191165.1,Yes +GCA_000191165.1__PF00044.19__1__565,PF00044.19,Gp_dh_N,565,6.3e-54,179.1,lcl,565,1,532544,533561,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00185.19__1__1886,PF00185.19,OTCace,1886,1.8999999999999998e-35,119.2,lcl,1886,1,1794458,1795415,-1,GCA_000191165.1,Yes +GCA_000191165.1__PF00185.19__1__959,PF00185.19,OTCace,959,1.2e-13,48.3,cog,cog0540,1,913147,913501,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00185.19__1__960,PF00185.19,OTCace,960,9.6e-12,42.1,lcl,960,1,913574,913733,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,7.3e-61,201.5,cog,cog0187,1,4533,6495,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00204.20__1__916,PF00204.20,DNA_gyraseB,916,1.1e-52,174.9,cog,cog0187,1,858470,860402,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00227.21__1__1187,PF00227.21,Proteasome,1187,8.2e-23,77.8,cog,cog5405,1,1128592,1129126,-1,GCA_000191165.1,Yes +GCA_000191165.1__PF00364.17__1__818,PF00364.17,Biotin_lipoyl,818,3.1999999999999997e-25,84.7,cog,cog0511,1,778349,778832,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,1.2e-156,518.9,cog,cog0188,1,6507,8979,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00521.15__1__917,PF00521.15,DNA_topoisoIV,917,1.6e-148,492.2,cog,cog0188,1,860416,862900,1,GCA_000191165.1,Yes +GCA_000191165.1__PF01039.17__1__821,PF01039.17,Carboxyl_trans,821,1.9e-19,66.5,cog,cog0777,1,780638,781487,1,GCA_000191165.1,Yes +GCA_000191165.1__PF01039.17__1__822,PF01039.17,Carboxyl_trans,822,2.3e-19,66.2,cog,cog0825,1,781479,782247,1,GCA_000191165.1,Yes +GCA_000191165.1__TIGR02013__1__340,TIGR02013,TIGR02013,340,0.0,1683.5,cog,cog0085,1,325558,329233,1,GCA_000191165.1,Yes +GCA_000191165.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,3.8e-91,302.5,cog,cog0592,1,1822,2950,1,GCA_000191165.1,Yes +GCA_000014405.1__RF0007__1__1173,RF0007,ABC_efflux,1173,1.2e-86,288.3,cog,cog1132,1,1105421,1107194,-1,GCA_000014405.1,Yes +GCA_000014405.1__RF0007__1__1043,RF0007,ABC_efflux,1043,9.5e-78,258.9,cog,cog1132,1,986851,988609,1,GCA_000014405.1,Yes +GCA_000014405.1__RF0007__1__1231,RF0007,ABC_efflux,1231,1.4e-77,258.3,cog,cog1132,1,1176015,1177812,-1,GCA_000014405.1,Yes +GCA_000014405.1__RF0007__1__1808,RF0007,ABC_efflux,1808,2e-76,254.5,cog,cog1132,1,1721280,1723131,-1,GCA_000014405.1,Yes +GCA_000014405.1__RF0155__1__1806,RF0155,vanS,1806,3e-74,247.0,lcl,1806,1,1719267,1720476,-1,GCA_000014405.1,Yes +GCA_000014405.1__PF00044.19__1__561,PF00044.19,Gp_dh_N,561,5.2e-54,179.4,lcl,561,1,534819,535836,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00185.19__1__1865,PF00185.19,OTCace,1865,2.3e-35,118.9,lcl,1865,1,1777865,1778822,-1,GCA_000014405.1,Yes +GCA_000014405.1__PF00185.19__1__924,PF00185.19,OTCace,924,2.8e-15,53.6,lcl,924,1,885457,885640,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00185.19__1__923,PF00185.19,OTCace,923,1.2e-13,48.3,cog,cog0540,1,885054,885408,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,7.2e-61,201.5,cog,cog0187,1,4360,6322,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00204.20__1__878,PF00204.20,DNA_gyraseB,878,1.1e-52,174.9,cog,cog0187,1,830171,832103,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00227.21__1__1157,PF00227.21,Proteasome,1157,8.2e-23,77.8,cog,cog5405,1,1091791,1092325,-1,GCA_000014405.1,Yes +GCA_000014405.1__PF00364.17__1__812,PF00364.17,Biotin_lipoyl,812,3.1999999999999997e-25,84.7,lcl,812,1,781657,782140,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,7.3e-157,519.6,cog,cog0188,1,6334,8806,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00521.15__1__879,PF00521.15,DNA_topoisoIV,879,1.6e-148,492.2,cog,cog0188,1,832117,834601,1,GCA_000014405.1,Yes +GCA_000014405.1__PF01039.17__1__815,PF01039.17,Carboxyl_trans,815,1.9e-19,66.5,cog,cog0777,1,783946,784795,1,GCA_000014405.1,Yes +GCA_000014405.1__PF01039.17__1__816,PF01039.17,Carboxyl_trans,816,2.4e-19,66.1,cog,cog0825,1,784787,785555,1,GCA_000014405.1,Yes +GCA_000014405.1__TIGR02013__1__339,TIGR02013,TIGR02013,339,0.0,1683.5,cog,cog0085,1,329068,332743,1,GCA_000014405.1,Yes +GCA_000014405.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,5.4e-93,308.6,cog,cog0592,1,1649,2777,1,GCA_000014405.1,Yes diff --git a/.tests/unit/arts_final/data/workflow b/.tests/unit/arts_final/data/workflow new file mode 120000 index 00000000..cf154e99 --- /dev/null +++ b/.tests/unit/arts_final/data/workflow @@ -0,0 +1 @@ +../../../../workflow \ No newline at end of file diff --git a/.tests/unit/arts_final/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_allhits_as-7.0.0.csv b/.tests/unit/arts_final/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_allhits_as-7.0.0.csv new file mode 100644 index 00000000..102a198c --- /dev/null +++ b/.tests/unit/arts_final/expected/data/processed/Lactobacillus_delbrueckii/tables/df_arts_allhits_as-7.0.0.csv @@ -0,0 +1,1077 @@ +pkey,core_gene_or_model,genome_id,name,product,start,stop,strand,scaffold,sequence_id,type,transl_table,core_table_fkey,duplication,phylogeny,known_target,duptable_fkey,description,evalue,bitscore,gid,seqtitle,bgc_id,bgc_proximity,bgctable_fkey,function,gene +GCA_000056065.1__Cpn10__1__1432,Cpn10,GCA_000056065.1,groS,10 kDa chaperonin,1393993,1394278,-1,scaffold_1,1432,CDS,11,GCA_000056065.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000056065.1__GrpE__1__1155,GrpE,GCA_000056065.1,grpE,Protein GrpE,1119606,1120194,-1,scaffold_1,1155,CDS,11,GCA_000056065.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000056065.1__Methyltransf_5__1__665,Methyltransf_5,GCA_000056065.1,rsmH,Ribosomal RNA small subunit methyltransferase H,625949,626894,1,scaffold_1,665,CDS,11,GCA_000056065.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,,,, +GCA_000056065.1__PF00044.19__1__567,PF00044.19,GCA_000056065.1,,,540614,541631,1,1,567,,,,False,False,True,,Gp_dh_N,5.3e-54,179.4,lcl,567,,,,, +GCA_000056065.1__PF00185.19__1__1845,PF00185.19,GCA_000056065.1,,,1773015,1773972,-1,1,1845,,,,False,False,True,,OTCace,2.4e-35,118.8,lcl,1845,,,,, +GCA_000056065.1__PF00185.19__1__933,PF00185.19,GCA_000056065.1,,,898519,899089,1,1,933,,,,False,False,True,,OTCace,1.7e-35,119.3,lcl,933,,,,, +GCA_000056065.1__PF00204.20__1__5,PF00204.20,GCA_000056065.1,,,4578,6540,1,1,5,,,,False,False,True,,DNA_gyraseB,7.1e-61,201.5,cog,cog0187,,,,, +GCA_000056065.1__PF00204.20__1__889,PF00204.20,GCA_000056065.1,,,843765,845697,1,1,889,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,,,, +GCA_000056065.1__PF00227.21__1__1113,PF00227.21,GCA_000056065.1,,,1074598,1075132,-1,1,1113,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,,,, +GCA_000056065.1__PF00364.17__1__824,PF00364.17,GCA_000056065.1,,,793916,794399,1,1,824,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,lcl,824,,,,, +GCA_000056065.1__PF00521.15__1__6,PF00521.15,GCA_000056065.1,,,6552,9024,1,1,6,,,,False,False,True,,DNA_topoisoIV,6.5e-157,519.8,cog,cog0188,,,,, +GCA_000056065.1__PF00521.15__1__890,PF00521.15,GCA_000056065.1,,,845711,848195,1,1,890,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,,,, +GCA_000056065.1__PF01039.17__1__827,PF01039.17,GCA_000056065.1,,,796205,797054,1,1,827,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,,,, +GCA_000056065.1__PF01039.17__1__828,PF01039.17,GCA_000056065.1,,,797046,797814,1,1,828,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,,,, +GCA_000056065.1__PGK__1__568,PGK,GCA_000056065.1,pgk,Phosphoglycerate kinase,541727,542939,1,scaffold_1,568,CDS,11,GCA_000056065.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000056065.1__RF0007__1__1016,RF0007,GCA_000056065.1,,,976019,977777,1,1,1016,,,,False,False,True,,ABC_efflux,1.5e-77,258.2,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1129,RF0007,GCA_000056065.1,,,1088237,1090010,-1,1,1129,,,,False,False,True,,ABC_efflux,1.2e-84,281.7,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1189,RF0007,GCA_000056065.1,,,1156691,1158488,-1,1,1189,,,,False,False,True,,ABC_efflux,1.4e-77,258.3,cog,cog1132,,,,, +GCA_000056065.1__RF0007__1__1788,RF0007,GCA_000056065.1,,,1714213,1716058,-1,1,1788,,,,False,False,True,,ABC_efflux,7.5e-75,249.3,cog,cog1132,,,,, +GCA_000056065.1__RF0155__1__1786,RF0155,GCA_000056065.1,,,1712200,1713409,-1,1,1786,,,,False,False,True,,vanS,3e-74,247.0,lcl,1786,,,,, +GCA_000056065.1__Ribosomal_L10__1__1466,Ribosomal_L10,GCA_000056065.1,rplJ,50S ribosomal protein L10,1421770,1422280,-1,scaffold_1,1466,CDS,11,GCA_000056065.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_L23__1__349,Ribosomal_L23,GCA_000056065.1,rplW,50S ribosomal protein L23,348201,348498,1,scaffold_1,349,CDS,11,GCA_000056065.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_S8__1__360,Ribosomal_S8,GCA_000056065.1,rpsH,30S ribosomal protein S8,353067,353466,1,scaffold_1,360,CDS,11,GCA_000056065.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000056065.1__Ribosomal_S9__1__378,Ribosomal_S9,GCA_000056065.1,rpsI,30S ribosomal protein S9,364180,364576,1,scaffold_1,378,CDS,11,GCA_000056065.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00001__1__1329,TIGR00001,GCA_000056065.1,rpmI,50S ribosomal protein L35,1294459,1294660,-1,scaffold_1,1329,CDS,11,GCA_000056065.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00008__1__368,TIGR00008,GCA_000056065.1,infA,Translation initiation factor IF-1,357628,357850,1,scaffold_1,368,CDS,11,GCA_000056065.1__arts_core__TIGR00008,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00009__1__1229,TIGR00009,GCA_000056065.1,rpmB,50S ribosomal protein L28,1199706,1199892,1,scaffold_1,1229,CDS,11,GCA_000056065.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00012__1__355,TIGR00012,GCA_000056065.1,rpmC,50S ribosomal protein L29,351145,351343,1,scaffold_1,355,CDS,11,GCA_000056065.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00016__1__616,TIGR00016,GCA_000056065.1,ackA,Acetate kinase,579934,581122,1,scaffold_1,616,CDS,11,GCA_000056065.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00017__1__775,TIGR00017,GCA_000056065.1,cmk,Cytidylate kinase,737485,738118,1,scaffold_1,775,CDS,11,GCA_000056065.1__arts_core__TIGR00017,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00019__1__629,TIGR00019,GCA_000056065.1,prfA,Peptide chain release factor 1,594425,595511,1,scaffold_1,629,CDS,11,GCA_000056065.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00020__1__543,TIGR00020,GCA_000056065.1,prfB,Peptide chain release factor 2,518026,519025,1,scaffold_1,543,CDS,11,GCA_000056065.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00021__1__468,TIGR00021,GCA_000056065.1,rpiA,Ribose-5-phosphate isomerase A,446570,447263,1,scaffold_1,468,CDS,11,GCA_000056065.1__arts_core__TIGR00021,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00029__1__701,TIGR00029,GCA_000056065.1,rpsT,30S ribosomal protein S20,663694,663946,-1,scaffold_1,701,CDS,11,GCA_000056065.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00038__1__1261,TIGR00038,11842,efp_1,Elongation factor P,1227239,1227809,-1,scaffold_1,1261,CDS,11,GCA_000056065.1__arts_core__TIGR00038,True,False,False,GCA_000056065.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000056065.1__TIGR00038__1__1668,TIGR00038,GCA_000056065.1,efp_2,Elongation factor P,1607624,1608182,-1,scaffold_1,1668,CDS,11,GCA_000056065.1__arts_core__TIGR00038,True,False,False,GCA_000056065.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000056065.1__TIGR00042__1__1414,TIGR00042,GCA_000056065.1,-,dITP/XTP pyrophosphatase,1372244,1372865,-1,scaffold_1,1414,CDS,11,GCA_000056065.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00043__1__1099,TIGR00043,GCA_000056065.1,ybeY,Endoribonuclease YbeY,1061520,1062045,-1,scaffold_1,1099,CDS,11,GCA_000056065.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00055__1__1178,TIGR00055,GCA_000056065.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1146640,1147372,-1,scaffold_1,1178,CDS,11,GCA_000056065.1__arts_core__TIGR00055,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00057__1__631,TIGR00057,GCA_000056065.1,ywlC,Threonylcarbamoyl-AMP synthase,596345,597341,1,scaffold_1,631,CDS,11,GCA_000056065.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00059__1__372,TIGR00059,GCA_000056065.1,rplQ,50S ribosomal protein L17,359780,360164,1,scaffold_1,372,CDS,11,GCA_000056065.1__arts_core__TIGR00059,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00060__1__362,TIGR00060,GCA_000056065.1,rplR,50S ribosomal protein L18,354047,354407,1,scaffold_1,362,CDS,11,GCA_000056065.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00061__1__1264,TIGR00061,GCA_000056065.1,rplU,50S ribosomal protein L21,1229445,1229757,-1,scaffold_1,1264,CDS,11,GCA_000056065.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00062__1__1263,TIGR00062,GCA_000056065.1,rpmA,50S ribosomal protein L27,1229130,1229430,-1,scaffold_1,1263,CDS,11,GCA_000056065.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00065__1__673,TIGR00065,GCA_000056065.1,ftsZ,Cell division protein FtsZ,635219,636578,1,scaffold_1,673,CDS,11,GCA_000056065.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00071__1__376,TIGR00071,GCA_000056065.1,truA,tRNA pseudouridine synthase A,362830,363619,1,scaffold_1,376,CDS,11,GCA_000056065.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00077__1__916,TIGR00077,GCA_000056065.1,lspA,Lipoprotein signal peptidase,881194,881647,1,scaffold_1,916,CDS,11,GCA_000056065.1__arts_core__TIGR00077,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00079__1__691,TIGR00079,GCA_000056065.1,def2,Peptide deformylase 2,653135,653690,-1,scaffold_1,691,CDS,11,GCA_000056065.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00081__1__1276,TIGR00081,GCA_000056065.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1240613,1241336,-1,scaffold_1,1276,CDS,11,GCA_000056065.1__arts_core__TIGR00081,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00082__1__1168,TIGR00082,GCA_000056065.1,rbfA,Ribosome-binding factor A,1133190,1133553,-1,scaffold_1,1168,CDS,11,GCA_000056065.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00084__1__1428,TIGR00084,GCA_000056065.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1386901,1387495,-1,scaffold_1,1428,CDS,11,GCA_000056065.1__arts_core__TIGR00084,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00086__1__1617,TIGR00086,GCA_000056065.1,smpB,SsrA-binding protein,1557165,1557627,-1,scaffold_1,1617,CDS,11,GCA_000056065.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00088__1__1206,TIGR00088,GCA_000056065.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1175461,1176199,-1,scaffold_1,1206,CDS,11,GCA_000056065.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00090__1__1324,TIGR00090,GCA_000056065.1,rsfS,Ribosomal silencing factor RsfS,1291216,1291564,-1,scaffold_1,1324,CDS,11,GCA_000056065.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00092__1__1791,TIGR00092,GCA_000056065.1,ychF,Ribosome-binding ATPase YchF,1718716,1719817,-1,scaffold_1,1791,CDS,11,GCA_000056065.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00103__1__1448,TIGR00103,GCA_000056065.1,-,Nucleoid-associated protein,1405662,1405992,-1,scaffold_1,1448,CDS,11,GCA_000056065.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00105__1__310,TIGR00105,GCA_000056065.1,rpmE2,50S ribosomal protein L31 type B,304788,305040,1,scaffold_1,310,CDS,11,GCA_000056065.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00115__1__706,TIGR00115,GCA_000056065.1,tig,Trigger factor,668841,670161,1,scaffold_1,706,CDS,11,GCA_000056065.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00116__1__1181,TIGR00116,GCA_000056065.1,tsf,Elongation factor Ts,1148806,1149835,-1,scaffold_1,1181,CDS,11,GCA_000056065.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00121__1__830,TIGR00121,GCA_000056065.1,birA,Bifunctional ligase/repressor BirA,798597,799263,1,scaffold_1,830,CDS,11,GCA_000056065.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00133__1__412,TIGR00133,GCA_000056065.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,397164,398595,1,scaffold_1,412,CDS,11,GCA_000056065.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00135__1__410,TIGR00135,GCA_000056065.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,395411,395717,1,scaffold_1,410,CDS,11,GCA_000056065.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00150__1__576,TIGR00150,GCA_000056065.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,548016,548502,1,scaffold_1,576,CDS,11,GCA_000056065.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00152__1__1338,TIGR00152,GCA_000056065.1,coaE,Dephospho-CoA kinase,1303283,1303868,-1,scaffold_1,1338,CDS,11,GCA_000056065.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00157__1__1241,TIGR00157,GCA_000056065.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1209672,1210566,-1,scaffold_1,1241,CDS,11,GCA_000056065.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00158__1__11,TIGR00158,GCA_000056065.1,rplI,50S ribosomal protein L9,12596,13052,1,scaffold_1,11,CDS,11,GCA_000056065.1__arts_core__TIGR00158,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00165__1__9,TIGR00165,GCA_000056065.1,rpsR,30S ribosomal protein S18,10175,10412,1,scaffold_1,9,CDS,11,GCA_000056065.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00166__1__7,TIGR00166,GCA_000056065.1,rpsF,30S ribosomal protein S6,9239,9533,1,scaffold_1,7,CDS,11,GCA_000056065.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00168__1__1330,TIGR00168,GCA_000056065.1,infC,Translation initiation factor IF-3,1294680,1295202,-1,scaffold_1,1330,CDS,11,GCA_000056065.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00174__1__1304,TIGR00174,GCA_000056065.1,miaA,tRNA dimethylallyltransferase,1272002,1272929,-1,scaffold_1,1304,CDS,11,GCA_000056065.1__arts_core__TIGR00174,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00179__1__578,TIGR00179,GCA_000056065.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,549234,550128,1,scaffold_1,578,CDS,11,GCA_000056065.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00180__1__1793,TIGR00180,11842,spo0J,Stage 0 sporulation protein J,1720149,1721040,-1,scaffold_1,1793,CDS,11,GCA_000056065.1__arts_core__TIGR00180,True,False,False,GCA_000056065.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000056065.1__TIGR00180__1__1795,TIGR00180,GCA_000056065.1,noc,Nucleoid occlusion protein,1721798,1722623,-1,scaffold_1,1795,CDS,11,GCA_000056065.1__arts_core__TIGR00180,True,False,False,GCA_000056065.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000056065.1__TIGR00186__1__1485,TIGR00186,GCA_000056065.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1433794,1434544,-1,scaffold_1,1485,CDS,11,GCA_000056065.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00188__1__1941,TIGR00188,GCA_000056065.1,rnpA,Ribonuclease P protein component,1864290,1864656,-1,scaffold_1,1941,CDS,11,GCA_000056065.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00191__1__1553,TIGR00191,GCA_000056065.1,thrB_2,Homoserine kinase,1496783,1497647,-1,scaffold_1,1553,CDS,11,GCA_000056065.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00194__1__744,TIGR00194,GCA_000056065.1,uvrC,UvrABC system protein C,707983,709786,1,scaffold_1,744,CDS,11,GCA_000056065.1__arts_core__TIGR00194,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00196__1__1377,TIGR00196,GCA_000056065.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1338272,1339139,-1,scaffold_1,1377,CDS,11,GCA_000056065.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00218__1__52,TIGR00218,GCA_000056065.1,manA,Mannose-6-phosphate isomerase ManA,51009,51978,1,scaffold_1,52,CDS,11,GCA_000056065.1__arts_core__TIGR00218,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00219__1__660,TIGR00219,GCA_000056065.1,mreC,Cell shape-determining protein MreC,623366,624218,1,scaffold_1,660,CDS,11,GCA_000056065.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00220__1__275,TIGR00220,GCA_000056065.1,mscL,Large-conductance mechanosensitive channel,270701,271178,1,scaffold_1,275,CDS,11,GCA_000056065.1__arts_core__TIGR00220,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00233__1__292,TIGR00233,GCA_000056065.1,trpS2,Tryptophan--tRNA ligase 2,284780,285806,1,scaffold_1,292,CDS,11,GCA_000056065.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00234__1__224,TIGR00234,GCA_000056065.1,tyrS,Tyrosine--tRNA ligase,219424,220690,1,scaffold_1,224,CDS,11,GCA_000056065.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00237__1__1257,TIGR00237,GCA_000056065.1,xseA,Exodeoxyribonuclease 7 large subunit,1224123,1225494,-1,scaffold_1,1257,CDS,11,GCA_000056065.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00250__1__1419,TIGR00250,GCA_000056065.1,yrrK,Putative pre-16S rRNA nuclease,1376738,1377167,-1,scaffold_1,1419,CDS,11,GCA_000056065.1__arts_core__TIGR00250,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00256__1__808,TIGR00256,GCA_000056065.1,dtd,D-aminoacyl-tRNA deacylase,778556,778994,1,scaffold_1,808,CDS,11,GCA_000056065.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00257__1__538,TIGR00257,GCA_000056065.1,yigZ,IMPACT family member YigZ,511956,512616,-1,scaffold_1,538,CDS,11,GCA_000056065.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00281__1__771,TIGR00281,GCA_000056065.1,scpB,Segregation and condensation protein B,734631,735234,1,scaffold_1,771,CDS,11,GCA_000056065.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00302__1__1275,TIGR00302,GCA_000056065.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1240360,1240609,-1,scaffold_1,1275,CDS,11,GCA_000056065.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00337__1__308,TIGR00337,GCA_000056065.1,pyrG,CTP synthase,301678,303298,1,scaffold_1,308,CDS,11,GCA_000056065.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00344__1__1421,TIGR00344,GCA_000056065.1,alaS,Alanine--tRNA ligase,1377489,1380123,-1,scaffold_1,1421,CDS,11,GCA_000056065.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00355__1__1269,TIGR00355,GCA_000056065.1,purH,Bifunctional purine biosynthesis protein PurH,1232841,1234383,-1,scaffold_1,1269,CDS,11,GCA_000056065.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00357__1__1723,TIGR00357,GCA_000056065.1,msrB,Peptide methionine sulfoxide reductase MsrB,1649159,1649585,-1,scaffold_1,1723,CDS,11,GCA_000056065.1__arts_core__TIGR00357,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00362__1__1,TIGR00362,GCA_000056065.1,dnaA,Chromosomal replication initiator protein DnaA,322,1687,1,scaffold_1,1,CDS,11,GCA_000056065.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00382__1__707,TIGR00382,GCA_000056065.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,670312,671566,1,scaffold_1,707,CDS,11,GCA_000056065.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00392__1__677,TIGR00392,GCA_000056065.1,ileS,Isoleucine--tRNA ligase,638487,641283,1,scaffold_1,677,CDS,11,GCA_000056065.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00396__1__1389,TIGR00396,GCA_000056065.1,leuS,Leucine--tRNA ligase,1348307,1350722,-1,scaffold_1,1389,CDS,11,GCA_000056065.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00398__1__296,TIGR00398,GCA_000056065.1,metG,Methionine--tRNA ligase,290069,292052,1,scaffold_1,296,CDS,11,GCA_000056065.1__arts_core__TIGR00398,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00401__1__603,TIGR00401,GCA_000056065.1,msrA,Peptide methionine sulfoxide reductase MsrA,571234,571762,1,scaffold_1,603,CDS,11,GCA_000056065.1__arts_core__TIGR00401,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00409__1__1175,TIGR00409,GCA_000056065.1,proS,Proline--tRNA ligase,1142843,1144541,-1,scaffold_1,1175,CDS,11,GCA_000056065.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00414__1__1639,TIGR00414,GCA_000056065.1,serS,Serine--tRNA ligase,1580697,1582005,-1,scaffold_1,1639,CDS,11,GCA_000056065.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00416__1__1529,TIGR00416,GCA_000056065.1,radA,DNA repair protein RadA,1475149,1476526,-1,scaffold_1,1529,CDS,11,GCA_000056065.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00418__1__1334,TIGR00418,GCA_000056065.1,thrS,Threonine--tRNA ligase,1298298,1300230,-1,scaffold_1,1334,CDS,11,GCA_000056065.1__arts_core__TIGR00418,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00419__1__569,TIGR00419,GCA_000056065.1,tpiA,Triosephosphate isomerase,542957,543716,1,scaffold_1,569,CDS,11,GCA_000056065.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00422__1__655,TIGR00422,GCA_000056065.1,valS,Valine--tRNA ligase,616950,619590,1,scaffold_1,655,CDS,11,GCA_000056065.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00431__1__1167,TIGR00431,GCA_000056065.1,truB,tRNA pseudouridine synthase B,1132243,1133140,-1,scaffold_1,1167,CDS,11,GCA_000056065.1__arts_core__TIGR00431,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00435__1__1487,TIGR00435,GCA_000056065.1,cysS,Cysteine--tRNA ligase,1434966,1436391,-1,scaffold_1,1487,CDS,11,GCA_000056065.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00442__1__809,TIGR00442,GCA_000056065.1,hisS,Histidine--tRNA ligase,779277,780564,1,scaffold_1,809,CDS,11,GCA_000056065.1__arts_core__TIGR00442,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00447__1__316,TIGR00447,GCA_000056065.1,pth,Peptidyl-tRNA hydrolase,310576,311134,1,scaffold_1,316,CDS,11,GCA_000056065.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00456__1__737,TIGR00456,GCA_000056065.1,argS,Arginine--tRNA ligase,699214,700912,1,scaffold_1,737,CDS,11,GCA_000056065.1__arts_core__TIGR00456,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00459__1__810,TIGR00459,GCA_000056065.1,aspS,Aspartate--tRNA ligase,780579,782424,1,scaffold_1,810,CDS,11,GCA_000056065.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00464__1__1491,TIGR00464,GCA_000056065.1,gltX,Glutamate--tRNA ligase,1439736,1441239,-1,scaffold_1,1491,CDS,11,GCA_000056065.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00468__1__1315,TIGR00468,GCA_000056065.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1283031,1284081,-1,scaffold_1,1315,CDS,11,GCA_000056065.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00472__1__1314,TIGR00472,GCA_000056065.1,pheT,Phenylalanine--tRNA ligase beta subunit,1280620,1283032,-1,scaffold_1,1314,CDS,11,GCA_000056065.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00479__1__415,TIGR00479,GCA_000056065.1,-,putative RNA methyltransferase,400342,401698,1,scaffold_1,415,CDS,11,GCA_000056065.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00479__1__497,TIGR00479,GCA_000056065.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,475828,477211,-1,scaffold_1,497,CDS,11,GCA_000056065.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00481__1__386,TIGR00481,GCA_000056065.1,-,hypothetical protein,369355,369847,1,scaffold_1,386,CDS,11,GCA_000056065.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00484__1__345,TIGR00484,GCA_000056065.1,fusA,Elongation factor G,344135,346220,1,scaffold_1,345,CDS,11,GCA_000056065.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00485__1__705,TIGR00485,GCA_000056065.1,tuf,Elongation factor Tu,667467,668658,1,scaffold_1,705,CDS,11,GCA_000056065.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00486__1__1072,TIGR00486,GCA_000056065.1,-,GTP cyclohydrolase 1 type 2,1030993,1031791,-1,scaffold_1,1072,CDS,11,GCA_000056065.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00487__1__1169,TIGR00487,GCA_000056065.1,infB,Translation initiation factor IF-2,1133565,1136043,-1,scaffold_1,1169,CDS,11,GCA_000056065.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00496__1__1179,TIGR00496,GCA_000056065.1,frr,Ribosome-recycling factor,1147374,1147932,-1,scaffold_1,1179,CDS,11,GCA_000056065.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00499__1__327,TIGR00499,GCA_000056065.1,lysS,Lysine--tRNA ligase,324828,326334,1,scaffold_1,327,CDS,11,GCA_000056065.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00500__1__492,TIGR00500,GCA_000056065.1,map,Methionine aminopeptidase 1,471238,472066,1,scaffold_1,492,CDS,11,GCA_000056065.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00504__1__1038,TIGR00504,GCA_000056065.1,pcp,Pyrrolidone-carboxylate peptidase,993222,993834,-1,scaffold_1,1038,CDS,11,GCA_000056065.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00521__1__739,TIGR00521,GCA_000056065.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,701616,702816,1,scaffold_1,739,CDS,11,GCA_000056065.1__arts_core__TIGR00521,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00525__1__214,TIGR00525,GCA_000056065.1,folB,Dihydroneopterin aldolase,210197,210548,1,scaffold_1,214,CDS,11,GCA_000056065.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00544__1__546,TIGR00544,GCA_000056065.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,520272,521106,1,scaffold_1,546,CDS,11,GCA_000056065.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00560__1__534,TIGR00560,GCA_000056065.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,506930,507494,1,scaffold_1,534,CDS,11,GCA_000056065.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00563__1__1244,TIGR00563,GCA_000056065.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1213323,1214640,-1,scaffold_1,1244,CDS,11,GCA_000056065.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00575__1__408,TIGR00575,GCA_000056065.1,ligA,DNA ligase,392242,394258,1,scaffold_1,408,CDS,11,GCA_000056065.1__arts_core__TIGR00575,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00577__1__1339,TIGR00577,GCA_000056065.1,mutM,Formamidopyrimidine-DNA glycosylase,1303876,1304698,-1,scaffold_1,1339,CDS,11,GCA_000056065.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00580__1__317,TIGR00580,GCA_000056065.1,mfd,Transcription-repair-coupling factor,311150,314627,1,scaffold_1,317,CDS,11,GCA_000056065.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00593__1__1340,TIGR00593,GCA_000056065.1,polA,DNA polymerase I,1304708,1307369,-1,scaffold_1,1340,CDS,11,GCA_000056065.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00595__1__1246,TIGR00595,GCA_000056065.1,priA,Primosomal protein N,1215594,1217976,-1,scaffold_1,1246,CDS,11,GCA_000056065.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00613__1__1096,TIGR00613,GCA_000056065.1,recO,DNA repair protein RecO,1059461,1060211,-1,scaffold_1,1096,CDS,11,GCA_000056065.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00615__1__1447,TIGR00615,GCA_000056065.1,recR,Recombination protein RecR,1405061,1405661,-1,scaffold_1,1447,CDS,11,GCA_000056065.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00630__1__550,TIGR00630,GCA_000056065.1,uvrA,UvrABC system protein A,525284,528140,1,scaffold_1,550,CDS,11,GCA_000056065.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00631__1__549,TIGR00631,GCA_000056065.1,uvrB_2,UvrABC system protein B,523252,525295,1,scaffold_1,549,CDS,11,GCA_000056065.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00635__1__1427,TIGR00635,GCA_000056065.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1385877,1386888,-1,scaffold_1,1427,CDS,11,GCA_000056065.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00643__1__1226,TIGR00643,GCA_000056065.1,recG,ATP-dependent DNA helicase RecG,1195445,1197485,-1,scaffold_1,1226,CDS,11,GCA_000056065.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00647__1__557,TIGR00647,GCA_000056065.1,whiA,putative cell division protein WhiA,532796,533729,1,scaffold_1,557,CDS,11,GCA_000056065.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00651__1__575,TIGR00651,GCA_000056065.1,pta,Phosphate acetyltransferase,547016,548006,1,scaffold_1,575,CDS,11,GCA_000056065.1__arts_core__TIGR00651,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00653__1__1301,TIGR00653,GCA_000056065.1,glnA,Glutamine synthetase,1269273,1270611,-1,scaffold_1,1301,CDS,11,GCA_000056065.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00663__1__2,TIGR00663,GCA_000056065.1,dnaN,Beta sliding clamp,1867,2995,1,1,2,CDS,11,GCA_000056065.1__arts_core__TIGR00663,False,False,True,,TIGR00663,7.4e-93,308.1,cog,cog0592,,,,, +GCA_000056065.1__TIGR00665__1__12,TIGR00665,GCA_000056065.1,dnaC,Replicative DNA helicase,13075,14446,1,scaffold_1,12,CDS,11,GCA_000056065.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00690__1__1247,TIGR00690,GCA_000056065.1,rpoZ,DNA-directed RNA polymerase subunit omega,1218038,1218260,-1,scaffold_1,1247,CDS,11,GCA_000056065.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00732__1__1117,TIGR00732,GCA_000056065.1,dprA,DNA processing protein DprA,1079889,1080729,-1,scaffold_1,1117,CDS,11,GCA_000056065.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00753__1__523,TIGR00753,GCA_000056065.1,uppP,Undecaprenyl-diphosphatase,495535,496363,-1,scaffold_1,523,CDS,11,GCA_000056065.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00755__1__299,TIGR00755,GCA_000056065.1,rsmA,Ribosomal RNA small subunit methyltransferase A,293361,294252,1,scaffold_1,299,CDS,11,GCA_000056065.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__1121,TIGR00762,GCA_000056065.1,-,DegV domain-containing protein,1082752,1083598,-1,scaffold_1,1121,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__1134,TIGR00762,11842,-,DegV domain-containing protein,1094868,1095705,-1,scaffold_1,1134,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__64,TIGR00762,11842,-,DegV domain-containing protein,62450,63248,1,scaffold_1,64,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__923,TIGR00762,11842,-,DegV domain-containing protein,890483,890978,1,scaffold_1,923,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00762__1__924,TIGR00762,11842,degV,Protein DegV,890974,891364,1,scaffold_1,924,CDS,11,GCA_000056065.1__arts_core__TIGR00762,True,False,False,GCA_000056065.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000056065.1__TIGR00810__1__1619,TIGR00810,GCA_000056065.1,secG,putative protein-export membrane protein SecG,1560085,1560319,-1,scaffold_1,1619,CDS,11,GCA_000056065.1__arts_core__TIGR00810,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00855__1__1465,TIGR00855,GCA_000056065.1,rplL,50S ribosomal protein L7/L12,1421352,1421718,-1,scaffold_1,1465,CDS,11,GCA_000056065.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00871__1__1425,TIGR00871,GCA_000056065.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1383852,1385301,-1,scaffold_1,1425,CDS,11,GCA_000056065.1__arts_core__TIGR00871,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00877__1__1268,TIGR00877,GCA_000056065.1,purD,Phosphoribosylamine--glycine ligase,1231560,1232826,-1,scaffold_1,1268,CDS,11,GCA_000056065.1__arts_core__TIGR00877,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00878__1__1271,TIGR00878,GCA_000056065.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1234964,1236014,-1,scaffold_1,1271,CDS,11,GCA_000056065.1__arts_core__TIGR00878,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00922__1__1474,TIGR00922,GCA_000056065.1,nusG,Transcription termination/antitermination protein NusG,1428920,1429475,-1,scaffold_1,1474,CDS,11,GCA_000056065.1__arts_core__TIGR00922,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00952__1__702,TIGR00952,GCA_000056065.1,rpsO,30S ribosomal protein S15,664149,664419,1,scaffold_1,702,CDS,11,GCA_000056065.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR00959__1__1209,TIGR00959,GCA_000056065.1,ffh,Signal recognition particle protein,1177130,1178561,-1,scaffold_1,1209,CDS,11,GCA_000056065.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00962__1__637,TIGR00962,GCA_000056065.1,atpA,ATP synthase subunit alpha,600266,601778,1,scaffold_1,637,CDS,11,GCA_000056065.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00963__1__542,TIGR00963,GCA_000056065.1,secA,Protein translocase subunit SecA,515417,517820,1,scaffold_1,542,CDS,11,GCA_000056065.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00964__1__1475,TIGR00964,GCA_000056065.1,secE,Protein translocase subunit SecE,1429566,1429737,-1,scaffold_1,1475,CDS,11,GCA_000056065.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00967__1__366,TIGR00967,GCA_000056065.1,secY,Protein translocase subunit SecY,355593,356889,1,scaffold_1,366,CDS,11,GCA_000056065.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR00981__1__343,TIGR00981,GCA_000056065.1,rpsL,30S ribosomal protein S12,343208,343616,1,scaffold_1,343,CDS,11,GCA_000056065.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01009__1__353,TIGR01009,GCA_000056065.1,rpsC,30S ribosomal protein S3,350041,350713,1,scaffold_1,353,CDS,11,GCA_000056065.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01011__1__1182,TIGR01011,GCA_000056065.1,rpsB,30S ribosomal protein S2,1149897,1150659,-1,scaffold_1,1182,CDS,11,GCA_000056065.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01017__1__650,TIGR01017,GCA_000056065.1,rpsD,30S ribosomal protein S4,610876,611488,-1,scaffold_1,650,CDS,11,GCA_000056065.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01021__1__363,TIGR01021,GCA_000056065.1,rpsE,30S ribosomal protein S5,354423,354936,1,scaffold_1,363,CDS,11,GCA_000056065.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01023__1__1310,TIGR01023,11842,rpmGA,50S ribosomal protein L33 1,1274992,1275142,-1,scaffold_1,1310,CDS,11,GCA_000056065.1__arts_core__TIGR01023,True,True,False,GCA_000056065.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000056065.1__TIGR01023__1__1476,TIGR01023,11842,rpmG3,50S ribosomal protein L33 3,1429743,1429893,-1,scaffold_1,1476,CDS,11,GCA_000056065.1__arts_core__TIGR01023,True,True,False,GCA_000056065.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000056065.1__TIGR01024__1__1201,TIGR01024,GCA_000056065.1,rplS,50S ribosomal protein L19,1172222,1172570,-1,scaffold_1,1201,CDS,11,GCA_000056065.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01029__1__344,TIGR01029,GCA_000056065.1,rpsG,30S ribosomal protein S7,343631,344102,1,scaffold_1,344,CDS,11,GCA_000056065.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01030__1__1942,TIGR01030,GCA_000056065.1,rpmH,50S ribosomal protein L34,1864704,1864845,-1,scaffold_1,1942,CDS,11,GCA_000056065.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01031__1__750,TIGR01031,GCA_000056065.1,rpmF,50S ribosomal protein L32,715058,715250,1,scaffold_1,750,CDS,11,GCA_000056065.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01032__1__1328,TIGR01032,GCA_000056065.1,rplT,50S ribosomal protein L20,1294058,1294415,-1,scaffold_1,1328,CDS,11,GCA_000056065.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01034__1__1394,TIGR01034,GCA_000056065.1,metK,S-adenosylmethionine synthase,1354481,1355678,-1,scaffold_1,1394,CDS,11,GCA_000056065.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01039__1__639,TIGR01039,GCA_000056065.1,atpD,ATP synthase subunit beta,602770,604210,1,scaffold_1,639,CDS,11,GCA_000056065.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01044__1__352,TIGR01044,GCA_000056065.1,rplV,50S ribosomal protein L22,349674,350028,1,scaffold_1,352,CDS,11,GCA_000056065.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01049__1__346,TIGR01049,GCA_000056065.1,rpsJ,30S ribosomal protein S10,346606,346915,1,scaffold_1,346,CDS,11,GCA_000056065.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01050__1__351,TIGR01050,GCA_000056065.1,rpsS,30S ribosomal protein S19,349377,349653,1,scaffold_1,351,CDS,11,GCA_000056065.1__arts_core__TIGR01050,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01051__1__1116,TIGR01051,GCA_000056065.1,topA,DNA topoisomerase 1,1077579,1079763,-1,scaffold_1,1116,CDS,11,GCA_000056065.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01059__1__5,TIGR01059,GCA_000056065.1,gyrB,DNA gyrase subunit B,4578,6540,1,scaffold_1,5,CDS,11,GCA_000056065.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000056065.1__TIGR01060__1__1135,TIGR01060,GCA_000056065.1,eno,Enolase,1096011,1097289,1,scaffold_1,1135,CDS,11,GCA_000056065.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01063__1__6,TIGR01063,GCA_000056065.1,gyrA,DNA gyrase subunit A,6552,9024,1,scaffold_1,6,CDS,11,GCA_000056065.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000056065.1__TIGR01064__1__763,TIGR01064,GCA_000056065.1,pyk,Pyruvate kinase,728461,730231,1,scaffold_1,763,CDS,11,GCA_000056065.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01066__1__377,TIGR01066,GCA_000056065.1,rplM,50S ribosomal protein L13,363724,364168,1,scaffold_1,377,CDS,11,GCA_000056065.1__arts_core__TIGR01066,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01067__1__357,TIGR01067,GCA_000056065.1,rplN,50S ribosomal protein L14,351658,352027,1,scaffold_1,357,CDS,11,GCA_000056065.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01071__1__365,TIGR01071,GCA_000056065.1,rplO,50S ribosomal protein L15,355153,355594,1,scaffold_1,365,CDS,11,GCA_000056065.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01072__1__309,TIGR01072,GCA_000056065.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,303417,304689,1,scaffold_1,309,CDS,11,GCA_000056065.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01073__1__407,TIGR01073,GCA_000056065.1,pcrA,ATP-dependent DNA helicase PcrA,389970,392232,1,scaffold_1,407,CDS,11,GCA_000056065.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01079__1__358,TIGR01079,GCA_000056065.1,rplX,50S ribosomal protein L24,352043,352283,1,scaffold_1,358,CDS,11,GCA_000056065.1__arts_core__TIGR01079,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01082__1__1348,TIGR01082,GCA_000056065.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1311707,1313027,-1,scaffold_1,1348,CDS,11,GCA_000056065.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01083__1__902,TIGR01083,GCA_000056065.1,pdg,Ultraviolet N-glycosylase/AP lyase,866383,867013,1,scaffold_1,902,CDS,11,GCA_000056065.1__arts_core__TIGR01083,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01087__1__669,TIGR01087,GCA_000056065.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,630397,631780,1,scaffold_1,669,CDS,11,GCA_000056065.1__arts_core__TIGR01087,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01091__1__632,TIGR01091,GCA_000056065.1,upp,Uracil phosphoribosyltransferase,597440,598070,1,scaffold_1,632,CDS,11,GCA_000056065.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01128__1__700,TIGR01128,GCA_000056065.1,yqeN,putative protein YqeN,662612,663602,1,scaffold_1,700,CDS,11,GCA_000056065.1__arts_core__TIGR01128,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01131__1__633,TIGR01131,GCA_000056065.1,atpB,ATP synthase subunit a,598179,598899,1,scaffold_1,633,CDS,11,GCA_000056065.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01134__1__1272,TIGR01134,GCA_000056065.1,purF,Amidophosphoribosyltransferase,1236010,1237489,-1,scaffold_1,1272,CDS,11,GCA_000056065.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01135__1__433,TIGR01135,GCA_000056065.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],413882,415694,1,scaffold_1,433,CDS,11,GCA_000056065.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01144__1__635,TIGR01144,GCA_000056065.1,atpF,ATP synthase subunit b,599195,599702,1,scaffold_1,635,CDS,11,GCA_000056065.1__arts_core__TIGR01144,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01145__1__636,TIGR01145,GCA_000056065.1,atpH_2,ATP synthase subunit delta,599701,600244,1,scaffold_1,636,CDS,11,GCA_000056065.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01146__1__638,TIGR01146,GCA_000056065.1,atpG,ATP synthase gamma chain,601788,602751,1,scaffold_1,638,CDS,11,GCA_000056065.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01161__1__1278,TIGR01161,GCA_000056065.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1242998,1244123,-1,scaffold_1,1278,CDS,11,GCA_000056065.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01162__1__1279,TIGR01162,GCA_000056065.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1244112,1244604,-1,scaffold_1,1279,CDS,11,GCA_000056065.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01163__1__467,TIGR01163,GCA_000056065.1,rpe,Ribulose-phosphate 3-epimerase,445907,446558,1,scaffold_1,467,CDS,11,GCA_000056065.1__arts_core__TIGR01163,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01164__1__354,TIGR01164,GCA_000056065.1,rplP,50S ribosomal protein L16,350712,351156,1,scaffold_1,354,CDS,11,GCA_000056065.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01169__1__1472,TIGR01169,GCA_000056065.1,rplA,50S ribosomal protein L1,1427590,1428286,-1,scaffold_1,1472,CDS,11,GCA_000056065.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01171__1__350,TIGR01171,GCA_000056065.1,rplB,50S ribosomal protein L2,348523,349360,1,scaffold_1,350,CDS,11,GCA_000056065.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01216__1__640,TIGR01216,GCA_000056065.1,atpC,ATP synthase epsilon chain,604221,604662,1,scaffold_1,640,CDS,11,GCA_000056065.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01260__1__634,TIGR01260,GCA_000056065.1,atpH_1,ATP synthase subunit c,598917,599142,1,scaffold_1,634,CDS,11,GCA_000056065.1__arts_core__TIGR01260,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01280__1__1256,TIGR01280,GCA_000056065.1,xseB,Exodeoxyribonuclease 7 small subunit,1223891,1224131,-1,scaffold_1,1256,CDS,11,GCA_000056065.1__arts_core__TIGR01280,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01308__1__364,TIGR01308,GCA_000056065.1,rpmD,50S ribosomal protein L30,354947,355133,1,scaffold_1,364,CDS,11,GCA_000056065.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01369__1__1842,TIGR01369,GCA_000056065.1,carB_9,Carbamoyl-phosphate synthase large chain,1768786,1770661,-1,scaffold_1,1842,CDS,11,GCA_000056065.1__arts_core__TIGR01369,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01378__1__1240,TIGR01378,GCA_000056065.1,thiN,Thiamine pyrophosphokinase,1208959,1209643,-1,scaffold_1,1240,CDS,11,GCA_000056065.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01389__1__742,TIGR01389,GCA_000056065.1,recQ,ATP-dependent DNA helicase RecQ,704945,706715,1,scaffold_1,742,CDS,11,GCA_000056065.1__arts_core__TIGR01389,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01391__1__1093,TIGR01391,GCA_000056065.1,dnaG,DNA primase,1054356,1056195,-1,scaffold_1,1093,CDS,11,GCA_000056065.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01393__1__1152,TIGR01393,GCA_000056065.1,lepA,Elongation factor 4,1114523,1116362,-1,scaffold_1,1152,CDS,11,GCA_000056065.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01417__1__512,TIGR01417,GCA_000056065.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,487286,489014,1,scaffold_1,512,CDS,11,GCA_000056065.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01430__1__1295,TIGR01430,GCA_000056065.1,add,Adenosine deaminase,1262376,1263369,-1,scaffold_1,1295,CDS,11,GCA_000056065.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01448__1__687,TIGR01448,GCA_000056065.1,recD2,ATP-dependent RecD-like DNA helicase,647109,649500,1,scaffold_1,687,CDS,11,GCA_000056065.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01455__1__586,TIGR01455,GCA_000056065.1,glmM,Phosphoglucosamine mutase,555798,557151,1,scaffold_1,586,CDS,11,GCA_000056065.1__arts_core__TIGR01455,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01496__1__217,TIGR01496,GCA_000056065.1,-,hypothetical protein,212928,214020,1,scaffold_1,217,CDS,11,GCA_000056065.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01498__1__215,TIGR01498,GCA_000056065.1,folE,GTP cyclohydrolase 1,210544,211618,1,scaffold_1,215,CDS,11,GCA_000056065.1__arts_core__TIGR01498,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01513__1__276,TIGR01513,GCA_000056065.1,pncB,Nicotinate phosphoribosyltransferase,271257,272781,-1,scaffold_1,276,CDS,11,GCA_000056065.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01534__1__567,TIGR01534,GCA_000056065.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,540614,541631,1,scaffold_1,567,CDS,11,GCA_000056065.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000056065.1__TIGR01632__1__1473,TIGR01632,GCA_000056065.1,rplK,50S ribosomal protein L11,1428369,1428795,-1,scaffold_1,1473,CDS,11,GCA_000056065.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01736__1__1273,TIGR01736,GCA_000056065.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1237464,1239687,-1,scaffold_1,1273,CDS,11,GCA_000056065.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01771__1__104,TIGR01771,GCA_000056065.1,ldh,L-lactate dehydrogenase,99904,100828,-1,scaffold_1,104,CDS,11,GCA_000056065.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01951__1__1259,TIGR01951,GCA_000056065.1,nusB,Transcription antitermination protein NusB,1226390,1226789,-1,scaffold_1,1259,CDS,11,GCA_000056065.1__arts_core__TIGR01951,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01953__1__1172,TIGR01953,GCA_000056065.1,nusA,Transcription termination/antitermination protein NusA,1136667,1137888,-1,scaffold_1,1172,CDS,11,GCA_000056065.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR01980__1__1602,TIGR01980,GCA_000056065.1,-,hypothetical protein,1546588,1548016,-1,scaffold_1,1602,CDS,11,GCA_000056065.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01981__1__1605,TIGR01981,GCA_000056065.1,-,hypothetical protein,1549638,1550802,-1,scaffold_1,1605,CDS,11,GCA_000056065.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR01994__1__1603,TIGR01994,GCA_000056065.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1548016,1548457,-1,scaffold_1,1603,CDS,11,GCA_000056065.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02012__1__535,TIGR02012,GCA_000056065.1,recA,Protein RecA,507699,508695,1,scaffold_1,535,CDS,11,GCA_000056065.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02013__1__338,TIGR02013,GCA_000056065.1,rpoB,DNA-directed RNA polymerase subunit beta,334509,338184,1,scaffold_1,338,CDS,11,GCA_000056065.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.7,cog,cog0085,,,,, +GCA_000056065.1__TIGR02027__1__371,TIGR02027,GCA_000056065.1,rpoA,DNA-directed RNA polymerase subunit alpha,358818,359757,1,scaffold_1,371,CDS,11,GCA_000056065.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02191__1__1217,TIGR02191,GCA_000056065.1,rnc,Ribonuclease 3,1185313,1186009,-1,scaffold_1,1217,CDS,11,GCA_000056065.1__arts_core__TIGR02191,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02225__1__768,TIGR02225,GCA_000056065.1,xerD_1,Tyrosine recombinase XerD,732657,733554,1,scaffold_1,768,CDS,11,GCA_000056065.1__arts_core__TIGR02225,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02227__1__1069,TIGR02227,GCA_000056065.1,spsB,Signal peptidase IB,1028498,1029065,1,scaffold_1,1069,CDS,11,GCA_000056065.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02273__1__1207,TIGR02273,GCA_000056065.1,rimM,Ribosome maturation factor RimM,1176198,1176702,-1,scaffold_1,1207,CDS,11,GCA_000056065.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02348__1__1431,TIGR02348,GCA_000056065.1,groL,60 kDa chaperonin,1392353,1393967,-1,scaffold_1,1431,CDS,11,GCA_000056065.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02349__1__1153,TIGR02349,GCA_000056065.1,dnaJ,Chaperone protein DnaJ,1116483,1117620,-1,scaffold_1,1153,CDS,11,GCA_000056065.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02350__1__1154,TIGR02350,GCA_000056065.1,dnaK,Chaperone protein DnaK,1117702,1119547,-1,scaffold_1,1154,CDS,11,GCA_000056065.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02386__1__339,TIGR02386,GCA_000056065.1,rpoC,DNA-directed RNA polymerase subunit beta,338199,341865,1,scaffold_1,339,CDS,11,GCA_000056065.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02393__1__1092,TIGR02393,GCA_000056065.1,sigA_2,RNA polymerase sigma factor SigA,1053266,1054385,-1,scaffold_1,1092,CDS,11,GCA_000056065.1__arts_core__TIGR02393,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR02487__1__187,TIGR02487,GCA_000056065.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,180997,183208,1,scaffold_1,187,CDS,11,GCA_000056065.1__arts_core__TIGR02487,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR02729__1__745,TIGR02729,GCA_000056065.1,obg,GTPase Obg,709923,711177,1,scaffold_1,745,CDS,11,GCA_000056065.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03156__1__1755,TIGR03156,GCA_000056065.1,hflX,GTPase HflX,1681367,1682648,1,scaffold_1,1755,CDS,11,GCA_000056065.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03263__1__1248,TIGR03263,GCA_000056065.1,gmk_1,Guanylate kinase,1218261,1218876,-1,scaffold_1,1248,CDS,11,GCA_000056065.1__arts_core__TIGR03263,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03284__1__717,TIGR03284,GCA_000056065.1,thyA,Thymidylate synthase,678300,679257,1,scaffold_1,717,CDS,11,GCA_000056065.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03534__1__630,TIGR03534,GCA_000056065.1,prmC_1,Release factor glutamine methyltransferase,595503,596346,1,scaffold_1,630,CDS,11,GCA_000056065.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03594__1__777,TIGR03594,GCA_000056065.1,der,GTPase Der,739487,740795,1,scaffold_1,777,CDS,11,GCA_000056065.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03625__1__347,TIGR03625,GCA_000056065.1,rplC,50S ribosomal protein L3,346940,347570,1,scaffold_1,347,CDS,11,GCA_000056065.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03631__1__369,TIGR03631,GCA_000056065.1,rpsM,30S ribosomal protein S13,358006,358357,1,scaffold_1,369,CDS,11,GCA_000056065.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000056065.1__TIGR03632__1__370,TIGR03632,GCA_000056065.1,rpsK,30S ribosomal protein S11,358385,358775,1,scaffold_1,370,CDS,11,GCA_000056065.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03635__1__356,TIGR03635,GCA_000056065.1,rpsQ,30S ribosomal protein S17,351361,351628,1,scaffold_1,356,CDS,11,GCA_000056065.1__arts_core__TIGR03635,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03654__1__361,TIGR03654,GCA_000056065.1,rplF,50S ribosomal protein L6,353490,354021,1,scaffold_1,361,CDS,11,GCA_000056065.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03705__1__460,TIGR03705,GCA_000056065.1,ppk,Polyphosphate kinase,439501,441667,1,scaffold_1,460,CDS,11,GCA_000056065.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03725__1__1437,TIGR03725,GCA_000056065.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1398961,1399684,-1,scaffold_1,1437,CDS,11,GCA_000056065.1__arts_core__TIGR03725,False,True,False,,,,,,,,,,, +GCA_000056065.1__TIGR03953__1__348,TIGR03953,GCA_000056065.1,rplD,50S ribosomal protein L4,347584,348202,1,scaffold_1,348,CDS,11,GCA_000056065.1__arts_core__TIGR03953,False,False,False,,,,,,,,,,, +GCA_000182835.1__Cpn10__1__1529,Cpn10,GCA_000182835.1,groS,10 kDa chaperonin,1583082,1583367,-1,scaffold_1,1529,CDS,11,GCA_000182835.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000182835.1__GrpE__1__1255,GrpE,GCA_000182835.1,grpE,Protein GrpE,1297298,1297916,-1,scaffold_1,1255,CDS,11,GCA_000182835.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000182835.1__Methyltransf_5__1__662,Methyltransf_5,GCA_000182835.1,rsmH,Ribosomal RNA small subunit methyltransferase H,671404,672349,1,scaffold_1,662,CDS,11,GCA_000182835.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,,,, +GCA_000182835.1__PF00044.19__1__564,PF00044.19,GCA_000182835.1,,,584371,585388,1,1,564,,,,False,False,True,,Gp_dh_N,5.3e-54,179.5,lcl,564,,,,, +GCA_000182835.1__PF00185.19__1__1720,PF00185.19,GCA_000182835.1,,,1774927,1775929,-1,1,1720,,,,False,False,True,,OTCace,3.6e-53,176.9,lcl,1720,,,,, +GCA_000182835.1__PF00185.19__1__931,PF00185.19,GCA_000182835.1,,,966778,967789,1,1,931,,,,False,False,True,,OTCace,1.6e-34,116.3,lcl,931,,,,, +GCA_000182835.1__PF00204.20__1__5,PF00204.20,GCA_000182835.1,,,4361,6323,1,1,5,,,,False,False,True,,DNA_gyraseB,4.4e-61,202.2,cog,cog0187,,,,, +GCA_000182835.1__PF00204.20__1__886,PF00204.20,GCA_000182835.1,,,908124,910056,1,1,886,,,,False,False,True,,DNA_gyraseB,5.3e-53,176.0,cog,cog0187,,,,, +GCA_000182835.1__PF00227.21__1__1148,PF00227.21,GCA_000182835.1,,,1191616,1192150,-1,1,1148,,,,False,False,True,,Proteasome,1.9e-22,76.6,cog,cog5405,,,,, +GCA_000182835.1__PF00364.17__1__818,PF00364.17,GCA_000182835.1,,,847208,847691,1,1,818,,,,False,False,True,,Biotin_lipoyl,1.1e-24,83.1,cog,cog0511,,,,, +GCA_000182835.1__PF00521.15__1__6,PF00521.15,GCA_000182835.1,,,6335,8807,1,1,6,,,,False,False,True,,DNA_topoisoIV,2.3e-156,518.1,cog,cog0188,,,,, +GCA_000182835.1__PF00521.15__1__887,PF00521.15,GCA_000182835.1,,,910070,912554,1,1,887,,,,False,False,True,,DNA_topoisoIV,9e-149,493.1,cog,cog0188,,,,, +GCA_000182835.1__PF01039.17__1__821,PF01039.17,GCA_000182835.1,,,849497,850346,1,1,821,,,,False,False,True,,Carboxyl_trans,3.1e-19,65.9,cog,cog0777,,,,, +GCA_000182835.1__PF01039.17__1__822,PF01039.17,GCA_000182835.1,,,850338,851106,1,1,822,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,,,, +GCA_000182835.1__PGK__1__565,PGK,GCA_000182835.1,pgk,Phosphoglycerate kinase,585483,586695,1,scaffold_1,565,CDS,11,GCA_000182835.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000182835.1__RF0007__1__1165,RF0007,GCA_000182835.1,,,1210613,1212386,-1,1,1165,,,,False,False,True,,ABC_efflux,1.1e-87,291.7,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__1291,RF0007,GCA_000182835.1,,,1333698,1335495,-1,1,1291,,,,False,False,True,,ABC_efflux,1.1e-77,258.7,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__1904,RF0007,GCA_000182835.1,,,1947730,1949575,-1,1,1904,,,,False,False,True,,ABC_efflux,6.3e-77,256.2,cog,cog1132,,,,, +GCA_000182835.1__RF0007__1__989,RF0007,GCA_000182835.1,,,1024132,1025890,-1,1,989,,,,False,False,True,,ABC_efflux,7.3e-76,252.7,cog,cog1132,,,,, +GCA_000182835.1__RF0155__1__1902,RF0155,GCA_000182835.1,,,1945717,1946926,-1,1,1902,,,,False,False,True,,vanS,1.4e-74,248.2,lcl,1902,,,,, +GCA_000182835.1__Ribosomal_L10__1__1560,Ribosomal_L10,GCA_000182835.1,rplJ,50S ribosomal protein L10,1609088,1609598,-1,scaffold_1,1560,CDS,11,GCA_000182835.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_L23__1__340,Ribosomal_L23,GCA_000182835.1,rplW,50S ribosomal protein L23,358080,358377,1,scaffold_1,340,CDS,11,GCA_000182835.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_S8__1__351,Ribosomal_S8,GCA_000182835.1,rpsH,30S ribosomal protein S8,362946,363345,1,scaffold_1,351,CDS,11,GCA_000182835.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000182835.1__Ribosomal_S9__1__369,Ribosomal_S9,GCA_000182835.1,rpsI,30S ribosomal protein S9,374059,374455,1,scaffold_1,369,CDS,11,GCA_000182835.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00001__1__1430,TIGR00001,GCA_000182835.1,rpmI,50S ribosomal protein L35,1475367,1475568,-1,scaffold_1,1430,CDS,11,GCA_000182835.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00008__1__359,TIGR00008,GCA_000182835.1,infA,Translation initiation factor IF-1,367507,367729,1,scaffold_1,359,CDS,11,GCA_000182835.1__arts_core__TIGR00008,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00009__1__1325,TIGR00009,GCA_000182835.1,rpmB,50S ribosomal protein L28,1376175,1376361,1,scaffold_1,1325,CDS,11,GCA_000182835.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00012__1__346,TIGR00012,GCA_000182835.1,rpmC,50S ribosomal protein L29,361024,361222,1,scaffold_1,346,CDS,11,GCA_000182835.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00016__1__609,TIGR00016,GCA_000182835.1,ackA,Acetate kinase,622546,623734,1,scaffold_1,609,CDS,11,GCA_000182835.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00017__1__767,TIGR00017,GCA_000182835.1,cmk,Cytidylate kinase,783223,783856,1,scaffold_1,767,CDS,11,GCA_000182835.1__arts_core__TIGR00017,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00019__1__624,TIGR00019,GCA_000182835.1,prfA,Peptide chain release factor 1,638605,639691,1,scaffold_1,624,CDS,11,GCA_000182835.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00020__1__542,TIGR00020,GCA_000182835.1,prfB,Peptide chain release factor 2,563273,564272,1,scaffold_1,542,CDS,11,GCA_000182835.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00021__1__467,TIGR00021,GCA_000182835.1,rpiA,Ribose-5-phosphate isomerase A,483237,483930,1,scaffold_1,467,CDS,11,GCA_000182835.1__arts_core__TIGR00021,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00029__1__699,TIGR00029,GCA_000182835.1,rpsT,30S ribosomal protein S20,710644,710896,-1,scaffold_1,699,CDS,11,GCA_000182835.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00036__1__1029,TIGR00036,GCA_000182835.1,dapB,4-hydroxy-tetrahydrodipicolinate reductase,1060134,1060914,-1,scaffold_1,1029,CDS,11,GCA_000182835.1__arts_core__TIGR00036,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00038__1__1349,TIGR00038,ND02,efp_1,Elongation factor P,1397797,1398364,-1,scaffold_1,1349,CDS,11,GCA_000182835.1__arts_core__TIGR00038,True,False,False,GCA_000182835.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000182835.1__TIGR00038__1__1759,TIGR00038,ND02,efp_2,Elongation factor P,1812662,1813220,-1,scaffold_1,1759,CDS,11,GCA_000182835.1__arts_core__TIGR00038,True,False,False,GCA_000182835.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000182835.1__TIGR00042__1__1511,TIGR00042,GCA_000182835.1,-,dITP/XTP pyrophosphatase,1561512,1562133,-1,scaffold_1,1511,CDS,11,GCA_000182835.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00043__1__1133,TIGR00043,GCA_000182835.1,ybeY,Endoribonuclease YbeY,1178640,1179165,-1,scaffold_1,1133,CDS,11,GCA_000182835.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00055__1__1279,TIGR00055,GCA_000182835.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1324144,1324876,-1,scaffold_1,1279,CDS,11,GCA_000182835.1__arts_core__TIGR00055,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00057__1__626,TIGR00057,GCA_000182835.1,ywlC,Threonylcarbamoyl-AMP synthase,640525,641521,1,scaffold_1,626,CDS,11,GCA_000182835.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00059__1__363,TIGR00059,GCA_000182835.1,rplQ,50S ribosomal protein L17,369659,370043,1,scaffold_1,363,CDS,11,GCA_000182835.1__arts_core__TIGR00059,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00060__1__353,TIGR00060,GCA_000182835.1,rplR,50S ribosomal protein L18,363926,364286,1,scaffold_1,353,CDS,11,GCA_000182835.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00061__1__1352,TIGR00061,GCA_000182835.1,rplU,50S ribosomal protein L21,1399999,1400311,-1,scaffold_1,1352,CDS,11,GCA_000182835.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00062__1__1351,TIGR00062,GCA_000182835.1,rpmA,50S ribosomal protein L27,1399684,1399984,-1,scaffold_1,1351,CDS,11,GCA_000182835.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00065__1__670,TIGR00065,GCA_000182835.1,ftsZ,Cell division protein FtsZ,680677,682036,1,scaffold_1,670,CDS,11,GCA_000182835.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00071__1__367,TIGR00071,GCA_000182835.1,truA,tRNA pseudouridine synthase A,372709,373498,1,scaffold_1,367,CDS,11,GCA_000182835.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00077__1__912,TIGR00077,GCA_000182835.1,lspA,Lipoprotein signal peptidase,945698,946151,1,scaffold_1,912,CDS,11,GCA_000182835.1__arts_core__TIGR00077,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00079__1__689,TIGR00079,GCA_000182835.1,def2,Peptide deformylase 2,700081,700636,-1,scaffold_1,689,CDS,11,GCA_000182835.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00081__1__1364,TIGR00081,GCA_000182835.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1411300,1412023,-1,scaffold_1,1364,CDS,11,GCA_000182835.1__arts_core__TIGR00081,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00082__1__1269,TIGR00082,GCA_000182835.1,rbfA,Ribosome-binding factor A,1310764,1311127,-1,scaffold_1,1269,CDS,11,GCA_000182835.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00084__1__1525,TIGR00084,GCA_000182835.1,ruvA_2,Holliday junction ATP-dependent DNA helicase RuvA,1576179,1576773,-1,scaffold_1,1525,CDS,11,GCA_000182835.1__arts_core__TIGR00084,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00086__1__1708,TIGR00086,GCA_000182835.1,smpB,SsrA-binding protein,1759730,1760192,-1,scaffold_1,1708,CDS,11,GCA_000182835.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00088__1__1305,TIGR00088,GCA_000182835.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1353264,1354002,-1,scaffold_1,1305,CDS,11,GCA_000182835.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00090__1__1425,TIGR00090,GCA_000182835.1,rsfS,Ribosomal silencing factor RsfS,1472124,1472472,-1,scaffold_1,1425,CDS,11,GCA_000182835.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00092__1__1907,TIGR00092,GCA_000182835.1,ychF,Ribosome-binding ATPase YchF,1952236,1953337,-1,scaffold_1,1907,CDS,11,GCA_000182835.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00103__1__1544,TIGR00103,GCA_000182835.1,-,Nucleoid-associated protein,1594145,1594475,-1,scaffold_1,1544,CDS,11,GCA_000182835.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00105__1__301,TIGR00105,GCA_000182835.1,rpmE2,50S ribosomal protein L31 type B,313764,314016,1,scaffold_1,301,CDS,11,GCA_000182835.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00114__1__1977,TIGR00114,GCA_000182835.1,ribH,"6,7-dimethyl-8-ribityllumazine synthase",2022792,2023257,-1,scaffold_1,1977,CDS,11,GCA_000182835.1__arts_core__TIGR00114,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00115__1__704,TIGR00115,GCA_000182835.1,tig,Trigger factor,715786,717112,1,scaffold_1,704,CDS,11,GCA_000182835.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00116__1__1282,TIGR00116,GCA_000182835.1,tsf,Elongation factor Ts,1326310,1327339,-1,scaffold_1,1282,CDS,11,GCA_000182835.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00121__1__824,TIGR00121,GCA_000182835.1,birA,Bifunctional ligase/repressor BirA,851889,852555,1,scaffold_1,824,CDS,11,GCA_000182835.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00131__1__1650,TIGR00131,GCA_000182835.1,galK_2,Galactokinase,1694429,1695596,1,scaffold_1,1650,CDS,11,GCA_000182835.1__arts_core__TIGR00131,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00133__1__408,TIGR00133,GCA_000182835.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,417628,419059,1,scaffold_1,408,CDS,11,GCA_000182835.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00135__1__406,TIGR00135,GCA_000182835.1,gatC_1,Glutamyl-tRNA(Gln) amidotransferase subunit C,415875,416181,1,scaffold_1,406,CDS,11,GCA_000182835.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00150__1__572,TIGR00150,GCA_000182835.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,591784,592270,1,scaffold_1,572,CDS,11,GCA_000182835.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00152__1__1439,TIGR00152,GCA_000182835.1,coaE,Dephospho-CoA kinase,1484230,1484815,-1,scaffold_1,1439,CDS,11,GCA_000182835.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00157__1__1331,TIGR00157,GCA_000182835.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1380329,1381223,-1,scaffold_1,1331,CDS,11,GCA_000182835.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00158__1__11,TIGR00158,GCA_000182835.1,rplI,50S ribosomal protein L9,12382,12838,1,scaffold_1,11,CDS,11,GCA_000182835.1__arts_core__TIGR00158,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00165__1__9,TIGR00165,GCA_000182835.1,rpsR,30S ribosomal protein S18,9961,10198,1,scaffold_1,9,CDS,11,GCA_000182835.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00166__1__7,TIGR00166,GCA_000182835.1,rpsF,30S ribosomal protein S6,9022,9316,1,scaffold_1,7,CDS,11,GCA_000182835.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00168__1__1431,TIGR00168,GCA_000182835.1,infC,Translation initiation factor IF-3,1475588,1476110,-1,scaffold_1,1431,CDS,11,GCA_000182835.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00174__1__1405,TIGR00174,GCA_000182835.1,miaA,tRNA dimethylallyltransferase,1451212,1452130,-1,scaffold_1,1405,CDS,11,GCA_000182835.1__arts_core__TIGR00174,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00179__1__574,TIGR00179,GCA_000182835.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,593004,593898,1,scaffold_1,574,CDS,11,GCA_000182835.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00180__1__1909,TIGR00180,GCA_000182835.1,spo0J,Stage 0 sporulation protein J,1953669,1954560,-1,scaffold_1,1909,CDS,11,GCA_000182835.1__arts_core__TIGR00180,True,False,False,GCA_000182835.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000182835.1__TIGR00180__1__1911,TIGR00180,ND02,noc,Nucleoid occlusion protein,1955318,1956143,-1,scaffold_1,1911,CDS,11,GCA_000182835.1__arts_core__TIGR00180,True,False,False,GCA_000182835.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000182835.1__TIGR00186__1__1574,TIGR00186,GCA_000182835.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1619218,1619968,-1,scaffold_1,1574,CDS,11,GCA_000182835.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00187__1__1979,TIGR00187,GCA_000182835.1,ribE,Riboflavin synthase,2024469,2025084,-1,scaffold_1,1979,CDS,11,GCA_000182835.1__arts_core__TIGR00187,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00188__1__2070,TIGR00188,GCA_000182835.1,rnpA,Ribonuclease P protein component,2124826,2125192,-1,scaffold_1,2070,CDS,11,GCA_000182835.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00191__1__1656,TIGR00191,GCA_000182835.1,thrB_2,Homoserine kinase,1702419,1703283,-1,scaffold_1,1656,CDS,11,GCA_000182835.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00194__1__739,TIGR00194,GCA_000182835.1,uvrC,UvrABC system protein C,753561,755364,1,scaffold_1,739,CDS,11,GCA_000182835.1__arts_core__TIGR00194,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00196__1__1484,TIGR00196,GCA_000182835.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1528528,1529395,-1,scaffold_1,1484,CDS,11,GCA_000182835.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00219__1__657,TIGR00219,GCA_000182835.1,mreC,Cell shape-determining protein MreC,668821,669673,1,scaffold_1,657,CDS,11,GCA_000182835.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00220__1__275,TIGR00220,GCA_000182835.1,mscL,Large-conductance mechanosensitive channel,287188,287665,1,scaffold_1,275,CDS,11,GCA_000182835.1__arts_core__TIGR00220,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00233__1__283,TIGR00233,GCA_000182835.1,trpS2,Tryptophan--tRNA ligase 2,293720,294746,1,scaffold_1,283,CDS,11,GCA_000182835.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00234__1__225,TIGR00234,GCA_000182835.1,tyrS,Tyrosine--tRNA ligase,233286,234552,1,scaffold_1,225,CDS,11,GCA_000182835.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00237__1__1345,TIGR00237,GCA_000182835.1,xseA,Exodeoxyribonuclease 7 large subunit,1394688,1396059,-1,scaffold_1,1345,CDS,11,GCA_000182835.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00250__1__1516,TIGR00250,GCA_000182835.1,yrrK,Putative pre-16S rRNA nuclease,1566006,1566435,-1,scaffold_1,1516,CDS,11,GCA_000182835.1__arts_core__TIGR00250,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00256__1__807,TIGR00256,GCA_000182835.1,dtd,D-aminoacyl-tRNA deacylase,835155,835593,1,scaffold_1,807,CDS,11,GCA_000182835.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00257__1__537,TIGR00257,GCA_000182835.1,yigZ,IMPACT family member YigZ,557205,557865,-1,scaffold_1,537,CDS,11,GCA_000182835.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00281__1__763,TIGR00281,GCA_000182835.1,scpB,Segregation and condensation protein B,780370,780973,1,scaffold_1,763,CDS,11,GCA_000182835.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00302__1__1363,TIGR00302,GCA_000182835.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1411047,1411296,-1,scaffold_1,1363,CDS,11,GCA_000182835.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00337__1__299,TIGR00337,GCA_000182835.1,pyrG,CTP synthase,310653,312273,1,scaffold_1,299,CDS,11,GCA_000182835.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00344__1__1518,TIGR00344,GCA_000182835.1,alaS,Alanine--tRNA ligase,1566757,1569391,-1,scaffold_1,1518,CDS,11,GCA_000182835.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00355__1__1357,TIGR00355,GCA_000182835.1,purH,Bifunctional purine biosynthesis protein PurH,1403528,1405070,-1,scaffold_1,1357,CDS,11,GCA_000182835.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00357__1__1823,TIGR00357,GCA_000182835.1,msrB,Peptide methionine sulfoxide reductase MsrB,1867545,1867971,-1,scaffold_1,1823,CDS,11,GCA_000182835.1__arts_core__TIGR00357,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00362__1__1,TIGR00362,GCA_000182835.1,dnaA,Chromosomal replication initiator protein DnaA,103,1468,1,scaffold_1,1,CDS,11,GCA_000182835.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00382__1__705,TIGR00382,GCA_000182835.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,717263,718517,1,scaffold_1,705,CDS,11,GCA_000182835.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00392__1__674,TIGR00392,GCA_000182835.1,ileS,Isoleucine--tRNA ligase,683912,686708,1,scaffold_1,674,CDS,11,GCA_000182835.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00396__1__1490,TIGR00396,GCA_000182835.1,leuS,Leucine--tRNA ligase,1538896,1541311,-1,scaffold_1,1490,CDS,11,GCA_000182835.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00398__1__287,TIGR00398,GCA_000182835.1,metG,Methionine--tRNA ligase,298987,300970,1,scaffold_1,287,CDS,11,GCA_000182835.1__arts_core__TIGR00398,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00401__1__597,TIGR00401,GCA_000182835.1,msrA,Peptide methionine sulfoxide reductase MsrA,613861,614389,1,scaffold_1,597,CDS,11,GCA_000182835.1__arts_core__TIGR00401,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00409__1__1276,TIGR00409,GCA_000182835.1,proS,Proline--tRNA ligase,1320347,1322045,-1,scaffold_1,1276,CDS,11,GCA_000182835.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00414__1__1732,TIGR00414,GCA_000182835.1,serS,Serine--tRNA ligase,1786004,1787312,-1,scaffold_1,1732,CDS,11,GCA_000182835.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00416__1__1615,TIGR00416,GCA_000182835.1,radA,DNA repair protein RadA,1662882,1664259,-1,scaffold_1,1615,CDS,11,GCA_000182835.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00418__1__1435,TIGR00418,GCA_000182835.1,thrS,Threonine--tRNA ligase,1479245,1481177,-1,scaffold_1,1435,CDS,11,GCA_000182835.1__arts_core__TIGR00418,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00419__1__566,TIGR00419,GCA_000182835.1,tpiA,Triosephosphate isomerase,586713,587472,1,scaffold_1,566,CDS,11,GCA_000182835.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00422__1__652,TIGR00422,GCA_000182835.1,valS,Valine--tRNA ligase,662405,665045,1,scaffold_1,652,CDS,11,GCA_000182835.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00431__1__1268,TIGR00431,GCA_000182835.1,truB,tRNA pseudouridine synthase B,1309817,1310714,-1,scaffold_1,1268,CDS,11,GCA_000182835.1__arts_core__TIGR00431,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00435__1__1576,TIGR00435,GCA_000182835.1,cysS,Cysteine--tRNA ligase,1620390,1621815,-1,scaffold_1,1576,CDS,11,GCA_000182835.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00442__1__808,TIGR00442,GCA_000182835.1,hisS,Histidine--tRNA ligase,835877,837164,1,scaffold_1,808,CDS,11,GCA_000182835.1__arts_core__TIGR00442,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00447__1__307,TIGR00447,GCA_000182835.1,pth,Peptidyl-tRNA hydrolase,319487,320045,1,scaffold_1,307,CDS,11,GCA_000182835.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00456__1__732,TIGR00456,GCA_000182835.1,argS,Arginine--tRNA ligase,744793,746491,1,scaffold_1,732,CDS,11,GCA_000182835.1__arts_core__TIGR00456,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00459__1__809,TIGR00459,GCA_000182835.1,aspS,Aspartate--tRNA ligase,837179,839024,1,scaffold_1,809,CDS,11,GCA_000182835.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00464__1__1581,TIGR00464,GCA_000182835.1,gltX,Glutamate--tRNA ligase,1625941,1627444,-1,scaffold_1,1581,CDS,11,GCA_000182835.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00468__1__1416,TIGR00468,GCA_000182835.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1463878,1464928,-1,scaffold_1,1416,CDS,11,GCA_000182835.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00472__1__1415,TIGR00472,GCA_000182835.1,pheT,Phenylalanine--tRNA ligase beta subunit,1461467,1463879,-1,scaffold_1,1415,CDS,11,GCA_000182835.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00479__1__411,TIGR00479,GCA_000182835.1,-,putative RNA methyltransferase,420797,422153,1,scaffold_1,411,CDS,11,GCA_000182835.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00479__1__493,TIGR00479,GCA_000182835.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,512152,513535,-1,scaffold_1,493,CDS,11,GCA_000182835.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00481__1__382,TIGR00481,GCA_000182835.1,-,hypothetical protein,387291,387783,1,scaffold_1,382,CDS,11,GCA_000182835.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00484__1__335,TIGR00484,GCA_000182835.1,fusA,Elongation factor G,352744,354829,1,scaffold_1,335,CDS,11,GCA_000182835.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00485__1__703,TIGR00485,GCA_000182835.1,tuf,Elongation factor Tu,714413,715604,1,scaffold_1,703,CDS,11,GCA_000182835.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00486__1__1097,TIGR00486,GCA_000182835.1,-,GTP cyclohydrolase 1 type 2,1134520,1135318,-1,scaffold_1,1097,CDS,11,GCA_000182835.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00487__1__1270,TIGR00487,GCA_000182835.1,infB,Translation initiation factor IF-2,1311139,1313617,-1,scaffold_1,1270,CDS,11,GCA_000182835.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00496__1__1280,TIGR00496,GCA_000182835.1,frr,Ribosome-recycling factor,1324878,1325436,-1,scaffold_1,1280,CDS,11,GCA_000182835.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00499__1__318,TIGR00499,GCA_000182835.1,lysS,Lysine--tRNA ligase,333671,335195,1,scaffold_1,318,CDS,11,GCA_000182835.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00500__1__488,TIGR00500,GCA_000182835.1,map,Methionine aminopeptidase 1,507564,508392,1,scaffold_1,488,CDS,11,GCA_000182835.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00504__1__1058,TIGR00504,GCA_000182835.1,pcp,Pyrrolidone-carboxylate peptidase,1088522,1089134,-1,scaffold_1,1058,CDS,11,GCA_000182835.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00521__1__734,TIGR00521,GCA_000182835.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,747195,748395,1,scaffold_1,734,CDS,11,GCA_000182835.1__arts_core__TIGR00521,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00525__1__872,TIGR00525,GCA_000182835.1,folB,Dihydroneopterin aldolase,896216,896567,1,scaffold_1,872,CDS,11,GCA_000182835.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00544__1__545,TIGR00544,GCA_000182835.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,565518,566352,1,scaffold_1,545,CDS,11,GCA_000182835.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00560__1__533,TIGR00560,GCA_000182835.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,552178,552742,1,scaffold_1,533,CDS,11,GCA_000182835.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00563__1__1334,TIGR00563,GCA_000182835.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1383980,1385297,-1,scaffold_1,1334,CDS,11,GCA_000182835.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00575__1__404,TIGR00575,GCA_000182835.1,ligA,DNA ligase,412706,414722,1,scaffold_1,404,CDS,11,GCA_000182835.1__arts_core__TIGR00575,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00577__1__1440,TIGR00577,GCA_000182835.1,mutM,Formamidopyrimidine-DNA glycosylase,1484823,1485645,-1,scaffold_1,1440,CDS,11,GCA_000182835.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00580__1__308,TIGR00580,GCA_000182835.1,mfd,Transcription-repair-coupling factor,320061,323538,1,scaffold_1,308,CDS,11,GCA_000182835.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00593__1__1441,TIGR00593,GCA_000182835.1,polA,DNA polymerase I,1485655,1488319,-1,scaffold_1,1441,CDS,11,GCA_000182835.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00595__1__1336,TIGR00595,GCA_000182835.1,priA,primosomal protein N,1386246,1388628,-1,scaffold_1,1336,CDS,11,GCA_000182835.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00613__1__1130,TIGR00613,GCA_000182835.1,recO,DNA repair protein RecO,1176581,1177331,-1,scaffold_1,1130,CDS,11,GCA_000182835.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00615__1__1543,TIGR00615,GCA_000182835.1,recR,Recombination protein RecR,1593544,1594144,-1,scaffold_1,1543,CDS,11,GCA_000182835.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00630__1__549,TIGR00630,GCA_000182835.1,uvrA,UvrABC system protein A,570530,573389,1,scaffold_1,549,CDS,11,GCA_000182835.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00631__1__548,TIGR00631,GCA_000182835.1,uvrB_2,UvrABC system protein B,568498,570541,1,scaffold_1,548,CDS,11,GCA_000182835.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00635__1__1524,TIGR00635,GCA_000182835.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1575154,1576165,-1,scaffold_1,1524,CDS,11,GCA_000182835.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00643__1__1322,TIGR00643,GCA_000182835.1,recG,ATP-dependent DNA helicase RecG,1371914,1373954,-1,scaffold_1,1322,CDS,11,GCA_000182835.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00647__1__557,TIGR00647,GCA_000182835.1,whiA,putative cell division protein WhiA,577817,578750,1,scaffold_1,557,CDS,11,GCA_000182835.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00651__1__571,TIGR00651,GCA_000182835.1,pta,Phosphate acetyltransferase,590784,591774,1,scaffold_1,571,CDS,11,GCA_000182835.1__arts_core__TIGR00651,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00653__1__1403,TIGR00653,GCA_000182835.1,glnA,Glutamine synthetase,1448475,1449813,-1,scaffold_1,1403,CDS,11,GCA_000182835.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00663__1__2,TIGR00663,GCA_000182835.1,dnaN,Beta sliding clamp,1651,2779,1,1,2,CDS,11,GCA_000182835.1__arts_core__TIGR00663,False,False,True,,TIGR00663,1.1e-92,307.7,cog,cog0592,,,,, +GCA_000182835.1__TIGR00665__1__12,TIGR00665,GCA_000182835.1,dnaC,Replicative DNA helicase,12861,14232,1,scaffold_1,12,CDS,11,GCA_000182835.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00674__1__1030,TIGR00674,GCA_000182835.1,dapA,4-hydroxy-tetrahydrodipicolinate synthase,1060916,1061846,-1,scaffold_1,1030,CDS,11,GCA_000182835.1__arts_core__TIGR00674,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00690__1__1337,TIGR00690,GCA_000182835.1,rpoZ,DNA-directed RNA polymerase subunit omega,1388690,1388912,-1,scaffold_1,1337,CDS,11,GCA_000182835.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00732__1__1154,TIGR00732,GCA_000182835.1,dprA,DNA processing protein DprA,1199701,1200541,-1,scaffold_1,1154,CDS,11,GCA_000182835.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00753__1__522,TIGR00753,GCA_000182835.1,uppP,Undecaprenyl-diphosphatase,540752,541580,-1,scaffold_1,522,CDS,11,GCA_000182835.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00755__1__290,TIGR00755,GCA_000182835.1,rsmA,Ribosomal RNA small subunit methyltransferase A,302279,303170,1,scaffold_1,290,CDS,11,GCA_000182835.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1158,TIGR00762,ND02,-,DegV domain-containing protein,1202557,1203403,-1,scaffold_1,1158,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1238,TIGR00762,GCA_000182835.1,-,DegV domain-containing protein,1275213,1276050,-1,scaffold_1,1238,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__1394,TIGR00762,GCA_000182835.1,degV_2,Protein DegV,1439475,1440405,1,scaffold_1,1394,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__57,TIGR00762,GCA_000182835.1,-,DegV domain-containing protein,55670,56504,1,scaffold_1,57,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00762__1__922,TIGR00762,GCA_000182835.1,degV_1,Protein DegV,957226,958108,1,scaffold_1,922,CDS,11,GCA_000182835.1__arts_core__TIGR00762,True,False,False,GCA_000182835.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000182835.1__TIGR00810__1__1710,TIGR00810,GCA_000182835.1,secG,putative protein-export membrane protein SecG,1762599,1762833,-1,scaffold_1,1710,CDS,11,GCA_000182835.1__arts_core__TIGR00810,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00855__1__1559,TIGR00855,GCA_000182835.1,rplL,50S ribosomal protein L7/L12,1608670,1609036,-1,scaffold_1,1559,CDS,11,GCA_000182835.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00871__1__1522,TIGR00871,GCA_000182835.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1573120,1574569,-1,scaffold_1,1522,CDS,11,GCA_000182835.1__arts_core__TIGR00871,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00877__1__1356,TIGR00877,GCA_000182835.1,purD,Phosphoribosylamine--glycine ligase,1402247,1403513,-1,scaffold_1,1356,CDS,11,GCA_000182835.1__arts_core__TIGR00877,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00878__1__1359,TIGR00878,GCA_000182835.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1405660,1406701,-1,scaffold_1,1359,CDS,11,GCA_000182835.1__arts_core__TIGR00878,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00922__1__1567,TIGR00922,GCA_000182835.1,nusG,Transcription termination/antitermination protein NusG,1614334,1614889,-1,scaffold_1,1567,CDS,11,GCA_000182835.1__arts_core__TIGR00922,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00952__1__700,TIGR00952,GCA_000182835.1,rpsO,30S ribosomal protein S15,711099,711369,1,scaffold_1,700,CDS,11,GCA_000182835.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR00959__1__1308,TIGR00959,GCA_000182835.1,ffh,Signal recognition particle protein,1354932,1356363,-1,scaffold_1,1308,CDS,11,GCA_000182835.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00962__1__632,TIGR00962,GCA_000182835.1,atpA,ATP synthase subunit alpha,644446,645958,1,scaffold_1,632,CDS,11,GCA_000182835.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00963__1__541,TIGR00963,GCA_000182835.1,secA,Protein translocase subunit SecA,560665,563068,1,scaffold_1,541,CDS,11,GCA_000182835.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00964__1__1568,TIGR00964,GCA_000182835.1,secE,Protein translocase subunit SecE,1614980,1615151,-1,scaffold_1,1568,CDS,11,GCA_000182835.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00967__1__357,TIGR00967,GCA_000182835.1,secY,Protein translocase subunit SecY,365472,366768,1,scaffold_1,357,CDS,11,GCA_000182835.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR00981__1__333,TIGR00981,GCA_000182835.1,rpsL,30S ribosomal protein S12,351817,352225,1,scaffold_1,333,CDS,11,GCA_000182835.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01009__1__344,TIGR01009,GCA_000182835.1,rpsC,30S ribosomal protein S3,359920,360592,1,scaffold_1,344,CDS,11,GCA_000182835.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01011__1__1283,TIGR01011,GCA_000182835.1,rpsB,30S ribosomal protein S2,1327401,1328163,-1,scaffold_1,1283,CDS,11,GCA_000182835.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01017__1__647,TIGR01017,GCA_000182835.1,rpsD,30S ribosomal protein S4,656328,656940,-1,scaffold_1,647,CDS,11,GCA_000182835.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01021__1__354,TIGR01021,GCA_000182835.1,rpsE,30S ribosomal protein S5,364302,364815,1,scaffold_1,354,CDS,11,GCA_000182835.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01023__1__1410,TIGR01023,GCA_000182835.1,rpmGA,50S ribosomal protein L33 1,1454191,1454341,-1,scaffold_1,1410,CDS,11,GCA_000182835.1__arts_core__TIGR01023,True,True,False,GCA_000182835.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000182835.1__TIGR01023__1__1569,TIGR01023,GCA_000182835.1,rpmG3,50S ribosomal protein L33 3,1615157,1615307,-1,scaffold_1,1569,CDS,11,GCA_000182835.1__arts_core__TIGR01023,True,True,False,GCA_000182835.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000182835.1__TIGR01024__1__1303,TIGR01024,GCA_000182835.1,rplS,50S ribosomal protein L19,1349223,1349571,-1,scaffold_1,1303,CDS,11,GCA_000182835.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01029__1__334,TIGR01029,GCA_000182835.1,rpsG,30S ribosomal protein S7,352240,352711,1,scaffold_1,334,CDS,11,GCA_000182835.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01030__1__2071,TIGR01030,GCA_000182835.1,rpmH,50S ribosomal protein L34,2125240,2125381,-1,scaffold_1,2071,CDS,11,GCA_000182835.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01031__1__744,TIGR01031,GCA_000182835.1,rpmF,50S ribosomal protein L32,760636,760828,1,scaffold_1,744,CDS,11,GCA_000182835.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01032__1__1429,TIGR01032,GCA_000182835.1,rplT,50S ribosomal protein L20,1474966,1475323,-1,scaffold_1,1429,CDS,11,GCA_000182835.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01034__1__1493,TIGR01034,GCA_000182835.1,metK,S-adenosylmethionine synthase,1544010,1545207,-1,scaffold_1,1493,CDS,11,GCA_000182835.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01039__1__634,TIGR01039,GCA_000182835.1,atpD,ATP synthase subunit beta,646950,648390,1,scaffold_1,634,CDS,11,GCA_000182835.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01044__1__343,TIGR01044,GCA_000182835.1,rplV,50S ribosomal protein L22,359553,359907,1,scaffold_1,343,CDS,11,GCA_000182835.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01049__1__337,TIGR01049,GCA_000182835.1,rpsJ,30S ribosomal protein S10,356485,356794,1,scaffold_1,337,CDS,11,GCA_000182835.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01050__1__342,TIGR01050,GCA_000182835.1,rpsS,30S ribosomal protein S19,359256,359532,1,scaffold_1,342,CDS,11,GCA_000182835.1__arts_core__TIGR01050,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01051__1__1151,TIGR01051,GCA_000182835.1,topA,DNA topoisomerase 1,1194596,1196771,-1,scaffold_1,1151,CDS,11,GCA_000182835.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01059__1__5,TIGR01059,GCA_000182835.1,gyrB,DNA gyrase subunit B,4361,6323,1,scaffold_1,5,CDS,11,GCA_000182835.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000182835.1__TIGR01060__1__1239,TIGR01060,GCA_000182835.1,eno,Enolase,1276357,1277635,1,scaffold_1,1239,CDS,11,GCA_000182835.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01063__1__6,TIGR01063,GCA_000182835.1,gyrA,DNA gyrase subunit A,6335,8807,1,scaffold_1,6,CDS,11,GCA_000182835.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000182835.1__TIGR01064__1__757,TIGR01064,GCA_000182835.1,pyk,Pyruvate kinase,774470,776240,1,scaffold_1,757,CDS,11,GCA_000182835.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01066__1__368,TIGR01066,GCA_000182835.1,rplM,50S ribosomal protein L13,373603,374047,1,scaffold_1,368,CDS,11,GCA_000182835.1__arts_core__TIGR01066,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01067__1__348,TIGR01067,GCA_000182835.1,rplN,50S ribosomal protein L14,361537,361906,1,scaffold_1,348,CDS,11,GCA_000182835.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01071__1__356,TIGR01071,GCA_000182835.1,rplO,50S ribosomal protein L15,365032,365473,1,scaffold_1,356,CDS,11,GCA_000182835.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01072__1__300,TIGR01072,GCA_000182835.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,312393,313665,1,scaffold_1,300,CDS,11,GCA_000182835.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01073__1__403,TIGR01073,GCA_000182835.1,pcrA,ATP-dependent DNA helicase PcrA,410434,412696,1,scaffold_1,403,CDS,11,GCA_000182835.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01079__1__349,TIGR01079,GCA_000182835.1,rplX,50S ribosomal protein L24,361922,362162,1,scaffold_1,349,CDS,11,GCA_000182835.1__arts_core__TIGR01079,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01082__1__1457,TIGR01082,GCA_000182835.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1500409,1501729,-1,scaffold_1,1457,CDS,11,GCA_000182835.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01083__1__899,TIGR01083,GCA_000182835.1,pdg,Ultraviolet N-glycosylase/AP lyase,930731,931361,1,scaffold_1,899,CDS,11,GCA_000182835.1__arts_core__TIGR01083,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01087__1__666,TIGR01087,GCA_000182835.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,675855,677238,1,scaffold_1,666,CDS,11,GCA_000182835.1__arts_core__TIGR01087,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01091__1__627,TIGR01091,GCA_000182835.1,upp,Uracil phosphoribosyltransferase,641620,642250,1,scaffold_1,627,CDS,11,GCA_000182835.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01128__1__698,TIGR01128,GCA_000182835.1,yqeN,putative protein YqeN,709563,710553,1,scaffold_1,698,CDS,11,GCA_000182835.1__arts_core__TIGR01128,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01131__1__628,TIGR01131,GCA_000182835.1,atpB,ATP synthase subunit a,642359,643079,1,scaffold_1,628,CDS,11,GCA_000182835.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01134__1__1360,TIGR01134,GCA_000182835.1,purF,Amidophosphoribosyltransferase,1406697,1408176,-1,scaffold_1,1360,CDS,11,GCA_000182835.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01135__1__433,TIGR01135,GCA_000182835.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],445120,446932,1,scaffold_1,433,CDS,11,GCA_000182835.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01144__1__630,TIGR01144,GCA_000182835.1,atpF,ATP synthase subunit b,643375,643882,1,scaffold_1,630,CDS,11,GCA_000182835.1__arts_core__TIGR01144,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01145__1__631,TIGR01145,GCA_000182835.1,atpH_2,ATP synthase subunit delta,643881,644424,1,scaffold_1,631,CDS,11,GCA_000182835.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01146__1__633,TIGR01146,GCA_000182835.1,atpG,ATP synthase gamma chain,645968,646931,1,scaffold_1,633,CDS,11,GCA_000182835.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01161__1__1366,TIGR01161,GCA_000182835.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1413672,1414797,-1,scaffold_1,1366,CDS,11,GCA_000182835.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01162__1__1367,TIGR01162,GCA_000182835.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1414786,1415278,-1,scaffold_1,1367,CDS,11,GCA_000182835.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01163__1__466,TIGR01163,GCA_000182835.1,rpe,Ribulose-phosphate 3-epimerase,482574,483225,1,scaffold_1,466,CDS,11,GCA_000182835.1__arts_core__TIGR01163,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01164__1__345,TIGR01164,GCA_000182835.1,rplP,50S ribosomal protein L16,360591,361035,1,scaffold_1,345,CDS,11,GCA_000182835.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01169__1__1565,TIGR01169,GCA_000182835.1,rplA,50S ribosomal protein L1,1613004,1613700,-1,scaffold_1,1565,CDS,11,GCA_000182835.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01171__1__341,TIGR01171,GCA_000182835.1,rplB,50S ribosomal protein L2,358402,359239,1,scaffold_1,341,CDS,11,GCA_000182835.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01216__1__635,TIGR01216,GCA_000182835.1,atpC,ATP synthase epsilon chain,648401,648842,1,scaffold_1,635,CDS,11,GCA_000182835.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01260__1__629,TIGR01260,GCA_000182835.1,atpH_1,ATP synthase subunit c,643097,643322,1,scaffold_1,629,CDS,11,GCA_000182835.1__arts_core__TIGR01260,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01280__1__1344,TIGR01280,GCA_000182835.1,xseB,Exodeoxyribonuclease 7 small subunit,1394456,1394696,-1,scaffold_1,1344,CDS,11,GCA_000182835.1__arts_core__TIGR01280,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01308__1__355,TIGR01308,GCA_000182835.1,rpmD,50S ribosomal protein L30,364826,365012,1,scaffold_1,355,CDS,11,GCA_000182835.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01311__1__1960,TIGR01311,GCA_000182835.1,glpK,Glycerol kinase,2003016,2004525,-1,scaffold_1,1960,CDS,11,GCA_000182835.1__arts_core__TIGR01311,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01369__1__1005,TIGR01369,GCA_000182835.1,carB_3,Carbamoyl-phosphate synthase large chain,1038958,1042159,-1,scaffold_1,1005,CDS,11,GCA_000182835.1__arts_core__TIGR01369,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01378__1__1330,TIGR01378,GCA_000182835.1,thiN,Thiamine pyrophosphokinase,1379616,1380300,-1,scaffold_1,1330,CDS,11,GCA_000182835.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01389__1__737,TIGR01389,GCA_000182835.1,recQ,ATP-dependent DNA helicase RecQ,750524,752294,1,scaffold_1,737,CDS,11,GCA_000182835.1__arts_core__TIGR01389,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01391__1__1127,TIGR01391,GCA_000182835.1,dnaG_1,DNA primase,1171475,1173314,-1,scaffold_1,1127,CDS,11,GCA_000182835.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01393__1__1252,TIGR01393,GCA_000182835.1,lepA,Elongation factor 4,1292212,1294051,-1,scaffold_1,1252,CDS,11,GCA_000182835.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01417__1__505,TIGR01417,GCA_000182835.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,523578,525306,1,scaffold_1,505,CDS,11,GCA_000182835.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01430__1__1392,TIGR01430,GCA_000182835.1,add,Adenosine deaminase,1437726,1438719,-1,scaffold_1,1392,CDS,11,GCA_000182835.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01448__1__684,TIGR01448,GCA_000182835.1,recD2,ATP-dependent RecD-like DNA helicase,692546,694937,1,scaffold_1,684,CDS,11,GCA_000182835.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01455__1__581,TIGR01455,GCA_000182835.1,glmM,Phosphoglucosamine mutase,599565,600918,1,scaffold_1,581,CDS,11,GCA_000182835.1__arts_core__TIGR01455,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01496__1__875,TIGR01496,GCA_000182835.1,-,hypothetical protein,898947,900039,1,scaffold_1,875,CDS,11,GCA_000182835.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01498__1__873,TIGR01498,GCA_000182835.1,folE,GTP cyclohydrolase 1,896563,897637,1,scaffold_1,873,CDS,11,GCA_000182835.1__arts_core__TIGR01498,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01513__1__276,TIGR01513,GCA_000182835.1,pncB2,Nicotinate phosphoribosyltransferase pncB2,287744,289178,-1,scaffold_1,276,CDS,11,GCA_000182835.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01534__1__564,TIGR01534,GCA_000182835.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,584371,585388,1,scaffold_1,564,CDS,11,GCA_000182835.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000182835.1__TIGR01632__1__1566,TIGR01632,GCA_000182835.1,rplK,50S ribosomal protein L11,1613783,1614209,-1,scaffold_1,1566,CDS,11,GCA_000182835.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01736__1__1361,TIGR01736,GCA_000182835.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1408151,1410374,-1,scaffold_1,1361,CDS,11,GCA_000182835.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01771__1__91,TIGR01771,GCA_000182835.1,ldh,L-lactate dehydrogenase,90754,91678,-1,scaffold_1,91,CDS,11,GCA_000182835.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01951__1__1347,TIGR01951,GCA_000182835.1,nusB,Transcription antitermination protein NusB,1396945,1397344,-1,scaffold_1,1347,CDS,11,GCA_000182835.1__arts_core__TIGR01951,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01953__1__1273,TIGR01953,GCA_000182835.1,nusA,Transcription termination/antitermination protein NusA,1314241,1315393,-1,scaffold_1,1273,CDS,11,GCA_000182835.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR01980__1__1696,TIGR01980,GCA_000182835.1,-,hypothetical protein,1748148,1749576,-1,scaffold_1,1696,CDS,11,GCA_000182835.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01981__1__1699,TIGR01981,GCA_000182835.1,-,hypothetical protein,1751198,1752362,-1,scaffold_1,1699,CDS,11,GCA_000182835.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR01994__1__1697,TIGR01994,GCA_000182835.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1749576,1750017,-1,scaffold_1,1697,CDS,11,GCA_000182835.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02012__1__534,TIGR02012,GCA_000182835.1,recA,Protein RecA,552948,554058,1,scaffold_1,534,CDS,11,GCA_000182835.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02013__1__328,TIGR02013,GCA_000182835.1,rpoB,DNA-directed RNA polymerase subunit beta,343094,346757,1,scaffold_1,328,CDS,11,GCA_000182835.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1684.7,cog,cog0085,,,,, +GCA_000182835.1__TIGR02027__1__362,TIGR02027,GCA_000182835.1,rpoA,DNA-directed RNA polymerase subunit alpha,368697,369636,1,scaffold_1,362,CDS,11,GCA_000182835.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02191__1__1313,TIGR02191,GCA_000182835.1,rnc,Ribonuclease 3,1361783,1362479,-1,scaffold_1,1313,CDS,11,GCA_000182835.1__arts_core__TIGR02191,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02225__1__760,TIGR02225,GCA_000182835.1,xerD_1,Tyrosine recombinase XerD,778396,779293,1,scaffold_1,760,CDS,11,GCA_000182835.1__arts_core__TIGR02225,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02227__1__1093,TIGR02227,GCA_000182835.1,spsB_1,Signal peptidase IB,1131399,1131966,1,scaffold_1,1093,CDS,11,GCA_000182835.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02227__1__1094,TIGR02227,GCA_000182835.1,spsB_2,Signal peptidase IB,1132020,1132590,1,scaffold_1,1094,CDS,11,GCA_000182835.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02273__1__1306,TIGR02273,GCA_000182835.1,rimM,Ribosome maturation factor RimM,1354001,1354505,-1,scaffold_1,1306,CDS,11,GCA_000182835.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02348__1__1528,TIGR02348,GCA_000182835.1,groL,60 kDa chaperonin,1581446,1583060,-1,scaffold_1,1528,CDS,11,GCA_000182835.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02349__1__1253,TIGR02349,GCA_000182835.1,dnaJ,Chaperone protein DnaJ,1294172,1295312,-1,scaffold_1,1253,CDS,11,GCA_000182835.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02350__1__1254,TIGR02350,GCA_000182835.1,dnaK,Chaperone protein DnaK,1295394,1297239,-1,scaffold_1,1254,CDS,11,GCA_000182835.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02386__1__329,TIGR02386,GCA_000182835.1,rpoC,DNA-directed RNA polymerase subunit beta,346772,350438,1,scaffold_1,329,CDS,11,GCA_000182835.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02393__1__1125,TIGR02393,GCA_000182835.1,sigA_2,RNA polymerase sigma factor SigA,1169222,1170344,-1,scaffold_1,1125,CDS,11,GCA_000182835.1__arts_core__TIGR02393,True,False,False,GCA_000182835.1__arts_dup__TIGR02393,,,,,,,,,, +GCA_000182835.1__TIGR02393__1__1126,TIGR02393,GCA_000182835.1,sigA_3,RNA polymerase sigma factor SigA,1170385,1171504,-1,scaffold_1,1126,CDS,11,GCA_000182835.1__arts_core__TIGR02393,True,False,False,GCA_000182835.1__arts_dup__TIGR02393,,,,,,,,,, +GCA_000182835.1__TIGR02487__1__203,TIGR02487,GCA_000182835.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,205592,207803,1,scaffold_1,203,CDS,11,GCA_000182835.1__arts_core__TIGR02487,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR02727__1__1409,TIGR02727,GCA_000182835.1,-,hypothetical protein,1453565,1454126,-1,scaffold_1,1409,CDS,11,GCA_000182835.1__arts_core__TIGR02727,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR02729__1__740,TIGR02729,GCA_000182835.1,obg,GTPase Obg,755432,756755,1,scaffold_1,740,CDS,11,GCA_000182835.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03156__1__1865,TIGR03156,GCA_000182835.1,hflX,GTPase HflX,1905751,1907032,1,scaffold_1,1865,CDS,11,GCA_000182835.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03263__1__1338,TIGR03263,GCA_000182835.1,gmk_1,Guanylate kinase,1388913,1389528,-1,scaffold_1,1338,CDS,11,GCA_000182835.1__arts_core__TIGR03263,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03284__1__715,TIGR03284,GCA_000182835.1,thyA,Thymidylate synthase,726492,727449,1,scaffold_1,715,CDS,11,GCA_000182835.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03534__1__625,TIGR03534,GCA_000182835.1,prmC_1,Release factor glutamine methyltransferase,639683,640526,1,scaffold_1,625,CDS,11,GCA_000182835.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03594__1__769,TIGR03594,GCA_000182835.1,der,GTPase Der,785226,786534,1,scaffold_1,769,CDS,11,GCA_000182835.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03625__1__338,TIGR03625,GCA_000182835.1,rplC,50S ribosomal protein L3,356819,357449,1,scaffold_1,338,CDS,11,GCA_000182835.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03631__1__360,TIGR03631,GCA_000182835.1,rpsM,30S ribosomal protein S13,367885,368236,1,scaffold_1,360,CDS,11,GCA_000182835.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03632__1__361,TIGR03632,GCA_000182835.1,rpsK,30S ribosomal protein S11,368264,368654,1,scaffold_1,361,CDS,11,GCA_000182835.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03635__1__347,TIGR03635,GCA_000182835.1,rpsQ,30S ribosomal protein S17,361240,361507,1,scaffold_1,347,CDS,11,GCA_000182835.1__arts_core__TIGR03635,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03654__1__352,TIGR03654,GCA_000182835.1,rplF,50S ribosomal protein L6,363369,363900,1,scaffold_1,352,CDS,11,GCA_000182835.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03705__1__459,TIGR03705,GCA_000182835.1,ppk,Polyphosphate kinase,475404,477570,1,scaffold_1,459,CDS,11,GCA_000182835.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000182835.1__TIGR03725__1__1534,TIGR03725,GCA_000182835.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1588060,1588783,-1,scaffold_1,1534,CDS,11,GCA_000182835.1__arts_core__TIGR03725,False,False,False,,,,,,,,,,, +GCA_000182835.1__TIGR03953__1__339,TIGR03953,GCA_000182835.1,rplD,50S ribosomal protein L4,357463,358081,1,scaffold_1,339,CDS,11,GCA_000182835.1__arts_core__TIGR03953,False,False,False,,,,,,,,,,, +GCA_000191165.1__Cpn10__1__1503,Cpn10,GCA_000191165.1,groS,10 kDa chaperonin,1449650,1449935,-1,scaffold_1,1503,CDS,11,GCA_000191165.1__arts_core__Cpn10,False,True,False,,,,,,,,False,,, +GCA_000191165.1__GrpE__1__1230,GrpE,GCA_000191165.1,grpE,Protein GrpE,1174949,1175567,-1,scaffold_1,1230,CDS,11,GCA_000191165.1__arts_core__GrpE,False,False,False,,,,,,,,False,,, +GCA_000191165.1__Methyltransf_5__1__664,Methyltransf_5,GCA_000191165.1,rsmH,Ribosomal RNA small subunit methyltransferase H,617876,618821,1,scaffold_1,664,CDS,11,GCA_000191165.1__arts_core__Methyltransf_5,False,True,False,,,,,,,,False,,, +GCA_000191165.1__PF00044.19__1__565,PF00044.19,GCA_000191165.1,,,532544,533561,1,1,565,,,,False,False,True,,Gp_dh_N,6.3e-54,179.1,lcl,565,,False,,, +GCA_000191165.1__PF00185.19__1__1886,PF00185.19,GCA_000191165.1,,,1794458,1795415,-1,1,1886,,,,False,False,True,,OTCace,1.9e-35,119.2,lcl,1886,,False,,, +GCA_000191165.1__PF00185.19__1__959,PF00185.19,GCA_000191165.1,,,913147,913501,1,1,959,,,,False,False,True,,OTCace,0.0,48.3,cog,cog0540,,False,,, +GCA_000191165.1__PF00185.19__1__960,PF00185.19,GCA_000191165.1,,,913574,913733,1,1,960,,,,False,False,True,,OTCace,0.0,42.1,lcl,960,,False,,, +GCA_000191165.1__PF00204.20__1__5,PF00204.20,GCA_000191165.1,,,4533,6495,1,1,5,,,,False,False,True,,DNA_gyraseB,7.3e-61,201.5,cog,cog0187,,False,,, +GCA_000191165.1__PF00204.20__1__916,PF00204.20,GCA_000191165.1,,,858470,860402,1,1,916,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,False,,, +GCA_000191165.1__PF00227.21__1__1187,PF00227.21,GCA_000191165.1,,,1128592,1129126,-1,1,1187,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,False,,, +GCA_000191165.1__PF00364.17__1__818,PF00364.17,GCA_000191165.1,,,778349,778832,1,1,818,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,cog,cog0511,,False,,, +GCA_000191165.1__PF00521.15__1__6,PF00521.15,GCA_000191165.1,,,6507,8979,1,1,6,,,,False,False,True,,DNA_topoisoIV,1.2e-156,518.9,cog,cog0188,,False,,, +GCA_000191165.1__PF00521.15__1__917,PF00521.15,GCA_000191165.1,,,860416,862900,1,1,917,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,False,,, +GCA_000191165.1__PF01039.17__1__821,PF01039.17,GCA_000191165.1,,,780638,781487,1,1,821,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,False,,, +GCA_000191165.1__PF01039.17__1__822,PF01039.17,GCA_000191165.1,,,781479,782247,1,1,822,,,,False,False,True,,Carboxyl_trans,2.3e-19,66.2,cog,cog0825,,False,,, +GCA_000191165.1__PGK__1__566,PGK,GCA_000191165.1,pgk,Phosphoglycerate kinase,533657,534869,1,scaffold_1,566,CDS,11,GCA_000191165.1__arts_core__PGK,False,True,False,,,,,,,,False,,, +GCA_000191165.1__RF0007__1__1070,RF0007,GCA_000191165.1,,,1007685,1009443,1,1,1070,,,,False,False,True,,ABC_efflux,8.3e-78,259.1,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1204,RF0007,GCA_000191165.1,,,1143604,1145377,-1,1,1204,,,,False,False,True,,ABC_efflux,1.9e-85,284.3,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1267,RF0007,GCA_000191165.1,,,1217265,1219062,-1,1,1267,,,,False,False,True,,ABC_efflux,1.5e-77,258.3,cog,cog1132,,False,,, +GCA_000191165.1__RF0007__1__1819,RF0007,GCA_000191165.1,,,1726068,1727913,-1,1,1819,,,,False,False,True,,ABC_efflux,1.5e-76,255.0,cog,cog1132,,False,,, +GCA_000191165.1__RF0155__1__1817,RF0155,GCA_000191165.1,,,1724055,1725264,-1,1,1817,,,,False,False,True,,vanS,3e-74,247.0,lcl,1817,,False,,, +GCA_000191165.1__Ribosomal_L10__1__1539,Ribosomal_L10,GCA_000191165.1,rplJ,50S ribosomal protein L10,1477436,1477946,-1,scaffold_1,1539,CDS,11,GCA_000191165.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_L23__1__349,Ribosomal_L23,GCA_000191165.1,rplW,50S ribosomal protein L23,339250,339547,1,scaffold_1,349,CDS,11,GCA_000191165.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_S8__1__360,Ribosomal_S8,GCA_000191165.1,rpsH,30S ribosomal protein S8,344116,344515,1,scaffold_1,360,CDS,11,GCA_000191165.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,False,,, +GCA_000191165.1__Ribosomal_S9__1__378,Ribosomal_S9,GCA_000191165.1,rpsI,30S ribosomal protein S9,355230,355626,1,scaffold_1,378,CDS,11,GCA_000191165.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00001__1__1401,TIGR00001,GCA_000191165.1,rpmI,50S ribosomal protein L35,1348638,1348839,-1,scaffold_1,1401,CDS,11,GCA_000191165.1__arts_core__TIGR00001,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00008__1__368,TIGR00008,GCA_000191165.1,infA,Translation initiation factor IF-1,348677,348899,1,scaffold_1,368,CDS,11,GCA_000191165.1__arts_core__TIGR00008,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00009__1__1305,TIGR00009,GCA_000191165.1,rpmB,50S ribosomal protein L28,1260292,1260478,1,scaffold_1,1305,CDS,11,GCA_000191165.1__arts_core__TIGR00009,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00012__1__355,TIGR00012,GCA_000191165.1,rpmC,50S ribosomal protein L29,342194,342392,1,scaffold_1,355,CDS,11,GCA_000191165.1__arts_core__TIGR00012,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00016__1__614,TIGR00016,GCA_000191165.1,ackA,Acetate kinase,571861,573049,1,scaffold_1,614,CDS,11,GCA_000191165.1__arts_core__TIGR00016,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00017__1__772,TIGR00017,GCA_000191165.1,cmk,Cytidylate kinase,729216,729849,1,scaffold_1,772,CDS,11,GCA_000191165.1__arts_core__TIGR00017,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00019__1__627,TIGR00019,GCA_000191165.1,prfA,Peptide chain release factor 1,586353,587439,1,scaffold_1,627,CDS,11,GCA_000191165.1__arts_core__TIGR00019,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00020__1__544,TIGR00020,GCA_000191165.1,prfB,Peptide chain release factor 2,511138,512137,1,scaffold_1,544,CDS,11,GCA_000191165.1__arts_core__TIGR00020,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00021__1__471,TIGR00021,GCA_000191165.1,rpiA,Ribose-5-phosphate isomerase A,439964,440657,1,scaffold_1,471,CDS,11,GCA_000191165.1__arts_core__TIGR00021,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00029__1__700,TIGR00029,GCA_000191165.1,rpsT,30S ribosomal protein S20,655604,655856,-1,scaffold_1,700,CDS,11,GCA_000191165.1__arts_core__TIGR00029,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00036__1__1014,TIGR00036,GCA_000191165.1,dapB,4-hydroxy-tetrahydrodipicolinate reductase,958537,959317,-1,scaffold_1,1014,CDS,11,GCA_000191165.1__arts_core__TIGR00036,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00038__1__1332,TIGR00038,GCA_000191165.1,efp_1,Elongation factor P,1282897,1283467,-1,scaffold_1,1332,CDS,11,GCA_000191165.1__arts_core__TIGR00038,True,False,False,GCA_000191165.1__arts_dup__TIGR00038,,,,,,,False,,, +GCA_000191165.1__TIGR00038__1__1704,TIGR00038,GCA_000191165.1,efp_2,Elongation factor P,1626467,1627025,-1,scaffold_1,1704,CDS,11,GCA_000191165.1__arts_core__TIGR00038,True,False,False,GCA_000191165.1__arts_dup__TIGR00038,,,,,,,False,,, +GCA_000191165.1__TIGR00042__1__1485,TIGR00042,GCA_000191165.1,-,dITP/XTP pyrophosphatase,1428080,1428701,-1,scaffold_1,1485,CDS,11,GCA_000191165.1__arts_core__TIGR00042,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00043__1__1173,TIGR00043,GCA_000191165.1,ybeY,Endoribonuclease YbeY,1116635,1117160,-1,scaffold_1,1173,CDS,11,GCA_000191165.1__arts_core__TIGR00043,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00055__1__1256,TIGR00055,GCA_000191165.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1207214,1207946,-1,scaffold_1,1256,CDS,11,GCA_000191165.1__arts_core__TIGR00055,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00057__1__629,TIGR00057,GCA_000191165.1,ywlC,Threonylcarbamoyl-AMP synthase,588273,589269,1,scaffold_1,629,CDS,11,GCA_000191165.1__arts_core__TIGR00057,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00059__1__372,TIGR00059,GCA_000191165.1,rplQ,50S ribosomal protein L17,350829,351213,1,scaffold_1,372,CDS,11,GCA_000191165.1__arts_core__TIGR00059,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00060__1__362,TIGR00060,GCA_000191165.1,rplR,50S ribosomal protein L18,345096,345456,1,scaffold_1,362,CDS,11,GCA_000191165.1__arts_core__TIGR00060,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00061__1__1336,TIGR00061,GCA_000191165.1,rplU,50S ribosomal protein L21,1285104,1285416,-1,scaffold_1,1336,CDS,11,GCA_000191165.1__arts_core__TIGR00061,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00062__1__1335,TIGR00062,GCA_000191165.1,rpmA,50S ribosomal protein L27,1284789,1285089,-1,scaffold_1,1335,CDS,11,GCA_000191165.1__arts_core__TIGR00062,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00065__1__672,TIGR00065,GCA_000191165.1,ftsZ,Cell division protein FtsZ,627146,628505,1,scaffold_1,672,CDS,11,GCA_000191165.1__arts_core__TIGR00065,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00071__1__376,TIGR00071,GCA_000191165.1,truA,tRNA pseudouridine synthase A,353880,354669,1,scaffold_1,376,CDS,11,GCA_000191165.1__arts_core__TIGR00071,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00077__1__943,TIGR00077,GCA_000191165.1,lspA,Lipoprotein signal peptidase,895901,896354,1,scaffold_1,943,CDS,11,GCA_000191165.1__arts_core__TIGR00077,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00079__1__690,TIGR00079,GCA_000191165.1,def2,Peptide deformylase 2,645061,645616,-1,scaffold_1,690,CDS,11,GCA_000191165.1__arts_core__TIGR00079,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00081__1__1348,TIGR00081,GCA_000191165.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1296407,1297130,-1,scaffold_1,1348,CDS,11,GCA_000191165.1__arts_core__TIGR00081,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00082__1__1246,TIGR00082,GCA_000191165.1,rbfA,Ribosome-binding factor A,1193764,1194127,-1,scaffold_1,1246,CDS,11,GCA_000191165.1__arts_core__TIGR00082,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00084__1__1499,TIGR00084,GCA_000191165.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1442737,1443331,-1,scaffold_1,1499,CDS,11,GCA_000191165.1__arts_core__TIGR00084,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00086__1__850,TIGR00086,GCA_000191165.1,smpB,SsrA-binding protein,808414,808876,1,scaffold_1,850,CDS,11,GCA_000191165.1__arts_core__TIGR00086,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00088__1__1284,TIGR00088,GCA_000191165.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1236045,1236783,-1,scaffold_1,1284,CDS,11,GCA_000191165.1__arts_core__TIGR00088,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00090__1__1396,TIGR00090,GCA_000191165.1,rsfS,Ribosomal silencing factor RsfS,1345395,1345743,-1,scaffold_1,1396,CDS,11,GCA_000191165.1__arts_core__TIGR00090,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00092__1__1822,TIGR00092,GCA_000191165.1,ychF,Ribosome-binding ATPase YchF,1730573,1731674,-1,scaffold_1,1822,CDS,11,GCA_000191165.1__arts_core__TIGR00092,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00103__1__1519,TIGR00103,GCA_000191165.1,-,Nucleoid-associated protein,1461332,1461662,-1,scaffold_1,1519,CDS,11,GCA_000191165.1__arts_core__TIGR00103,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00105__1__312,TIGR00105,GCA_000191165.1,rpmE2,50S ribosomal protein L31 type B,295778,296030,1,scaffold_1,312,CDS,11,GCA_000191165.1__arts_core__TIGR00105,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00114__1__1902,TIGR00114,GCA_000191165.1,ribH,"6,7-dimethyl-8-ribityllumazine synthase",1812281,1812746,-1,scaffold_1,1902,CDS,11,GCA_000191165.1__arts_core__TIGR00114,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00115__1__706,TIGR00115,GCA_000191165.1,tig,Trigger factor,660752,662072,1,scaffold_1,706,CDS,11,GCA_000191165.1__arts_core__TIGR00115,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00116__1__1259,TIGR00116,GCA_000191165.1,tsf,Elongation factor Ts,1209380,1210409,-1,scaffold_1,1259,CDS,11,GCA_000191165.1__arts_core__TIGR00116,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00121__1__824,TIGR00121,GCA_000191165.1,birA,Bifunctional ligase/repressor BirA,783030,783696,1,scaffold_1,824,CDS,11,GCA_000191165.1__arts_core__TIGR00121,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00133__1__415,TIGR00133,GCA_000191165.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,389657,391088,1,scaffold_1,415,CDS,11,GCA_000191165.1__arts_core__TIGR00133,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00135__1__413,TIGR00135,GCA_000191165.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,387904,388210,1,scaffold_1,413,CDS,11,GCA_000191165.1__arts_core__TIGR00135,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00150__1__574,TIGR00150,GCA_000191165.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,539946,540432,1,scaffold_1,574,CDS,11,GCA_000191165.1__arts_core__TIGR00150,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00152__1__1412,TIGR00152,GCA_000191165.1,coaE,Dephospho-CoA kinase,1360164,1360749,-1,scaffold_1,1412,CDS,11,GCA_000191165.1__arts_core__TIGR00152,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00157__1__1312,TIGR00157,GCA_000191165.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1265329,1266223,-1,scaffold_1,1312,CDS,11,GCA_000191165.1__arts_core__TIGR00157,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00158__1__11,TIGR00158,GCA_000191165.1,rplI,50S ribosomal protein L9,12551,13007,1,scaffold_1,11,CDS,11,GCA_000191165.1__arts_core__TIGR00158,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00165__1__9,TIGR00165,GCA_000191165.1,rpsR,30S ribosomal protein S18,10130,10367,1,scaffold_1,9,CDS,11,GCA_000191165.1__arts_core__TIGR00165,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00166__1__7,TIGR00166,GCA_000191165.1,rpsF,30S ribosomal protein S6,9194,9488,1,scaffold_1,7,CDS,11,GCA_000191165.1__arts_core__TIGR00166,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00168__1__1402,TIGR00168,GCA_000191165.1,infC,Translation initiation factor IF-3,1348859,1349381,-1,scaffold_1,1402,CDS,11,GCA_000191165.1__arts_core__TIGR00168,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00174__1__1377,TIGR00174,GCA_000191165.1,miaA,tRNA dimethylallyltransferase,1326197,1327088,-1,scaffold_1,1377,CDS,11,GCA_000191165.1__arts_core__TIGR00174,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00179__1__576,TIGR00179,GCA_000191165.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,541164,542058,1,scaffold_1,576,CDS,11,GCA_000191165.1__arts_core__TIGR00179,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00180__1__1824,TIGR00180,2038,spo0J,Stage 0 sporulation protein J,1732006,1732897,-1,scaffold_1,1824,CDS,11,GCA_000191165.1__arts_core__TIGR00180,True,False,False,GCA_000191165.1__arts_dup__TIGR00180,,,,,,,False,,, +GCA_000191165.1__TIGR00180__1__1826,TIGR00180,2038,noc,Nucleoid occlusion protein,1733655,1734480,-1,scaffold_1,1826,CDS,11,GCA_000191165.1__arts_core__TIGR00180,True,False,False,GCA_000191165.1__arts_dup__TIGR00180,,,,,,,False,,, +GCA_000191165.1__TIGR00186__1__1558,TIGR00186,GCA_000191165.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1489480,1490230,-1,scaffold_1,1558,CDS,11,GCA_000191165.1__arts_core__TIGR00186,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00188__1__1961,TIGR00188,GCA_000191165.1,rnpA,Ribonuclease P protein component,1872165,1872531,-1,scaffold_1,1961,CDS,11,GCA_000191165.1__arts_core__TIGR00188,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00191__1__1627,TIGR00191,GCA_000191165.1,thrB_2,Homoserine kinase,1551790,1552654,-1,scaffold_1,1627,CDS,11,GCA_000191165.1__arts_core__TIGR00191,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00194__1__741,TIGR00194,GCA_000191165.1,uvrC,UvrABC system protein C,699645,701448,1,scaffold_1,741,CDS,11,GCA_000191165.1__arts_core__TIGR00194,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00196__1__1451,TIGR00196,GCA_000191165.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1394911,1395778,-1,scaffold_1,1451,CDS,11,GCA_000191165.1__arts_core__TIGR00196,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00218__1__45,TIGR00218,GCA_000191165.1,manA,Mannose-6-phosphate isomerase ManA,41678,42647,1,scaffold_1,45,CDS,11,GCA_000191165.1__arts_core__TIGR00218,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00219__1__658,TIGR00219,GCA_000191165.1,mreC,Cell shape-determining protein MreC,615294,616020,1,scaffold_1,658,CDS,11,GCA_000191165.1__arts_core__TIGR00219,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00220__1__275,TIGR00220,GCA_000191165.1,mscL,Large-conductance mechanosensitive channel,261718,262195,1,scaffold_1,275,CDS,11,GCA_000191165.1__arts_core__TIGR00220,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00233__1__294,TIGR00233,GCA_000191165.1,trpS2,Tryptophan--tRNA ligase 2,275711,276737,1,scaffold_1,294,CDS,11,GCA_000191165.1__arts_core__TIGR00233,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00234__1__224,TIGR00234,GCA_000191165.1,tyrS,Tyrosine--tRNA ligase,210600,211866,1,scaffold_1,224,CDS,11,GCA_000191165.1__arts_core__TIGR00234,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00237__1__1328,TIGR00237,GCA_000191165.1,xseA,Exodeoxyribonuclease 7 large subunit,1279780,1281151,-1,scaffold_1,1328,CDS,11,GCA_000191165.1__arts_core__TIGR00237,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00250__1__1490,TIGR00250,GCA_000191165.1,yrrK,Putative pre-16S rRNA nuclease,1432574,1433003,-1,scaffold_1,1490,CDS,11,GCA_000191165.1__arts_core__TIGR00250,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00256__1__807,TIGR00256,GCA_000191165.1,dtd,D-aminoacyl-tRNA deacylase,766186,766624,1,scaffold_1,807,CDS,11,GCA_000191165.1__arts_core__TIGR00256,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00257__1__539,TIGR00257,GCA_000191165.1,yigZ,IMPACT family member YigZ,505069,505729,-1,scaffold_1,539,CDS,11,GCA_000191165.1__arts_core__TIGR00257,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00281__1__768,TIGR00281,GCA_000191165.1,scpB,Segregation and condensation protein B,726362,726965,1,scaffold_1,768,CDS,11,GCA_000191165.1__arts_core__TIGR00281,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00302__1__1347,TIGR00302,GCA_000191165.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1296154,1296403,-1,scaffold_1,1347,CDS,11,GCA_000191165.1__arts_core__TIGR00302,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00337__1__310,TIGR00337,GCA_000191165.1,pyrG,CTP synthase,292668,294288,1,scaffold_1,310,CDS,11,GCA_000191165.1__arts_core__TIGR00337,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00344__1__1492,TIGR00344,GCA_000191165.1,alaS,Alanine--tRNA ligase,1433325,1435959,-1,scaffold_1,1492,CDS,11,GCA_000191165.1__arts_core__TIGR00344,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00355__1__1341,TIGR00355,GCA_000191165.1,purH,Bifunctional purine biosynthesis protein PurH,1288635,1290177,-1,scaffold_1,1341,CDS,11,GCA_000191165.1__arts_core__TIGR00355,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00357__1__1764,TIGR00357,GCA_000191165.1,msrB,Peptide methionine sulfoxide reductase MsrB,1673290,1673716,-1,scaffold_1,1764,CDS,11,GCA_000191165.1__arts_core__TIGR00357,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00362__1__1,TIGR00362,GCA_000191165.1,dnaA,Chromosomal replication initiator protein DnaA,276,1641,1,scaffold_1,1,CDS,11,GCA_000191165.1__arts_core__TIGR00362,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00382__1__707,TIGR00382,GCA_000191165.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,662223,663477,1,scaffold_1,707,CDS,11,GCA_000191165.1__arts_core__TIGR00382,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00392__1__676,TIGR00392,GCA_000191165.1,ileS,Isoleucine--tRNA ligase,630413,633209,1,scaffold_1,676,CDS,11,GCA_000191165.1__arts_core__TIGR00392,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00396__1__1463,TIGR00396,GCA_000191165.1,leuS,Leucine--tRNA ligase,1404966,1407381,-1,scaffold_1,1463,CDS,11,GCA_000191165.1__arts_core__TIGR00396,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00398__1__298,TIGR00398,GCA_000191165.1,metG,Methionine--tRNA ligase,281001,282984,1,scaffold_1,298,CDS,11,GCA_000191165.1__arts_core__TIGR00398,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00401__1__601,TIGR00401,GCA_000191165.1,msrA,Peptide methionine sulfoxide reductase MsrA,563158,563686,1,scaffold_1,601,CDS,11,GCA_000191165.1__arts_core__TIGR00401,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00409__1__1253,TIGR00409,GCA_000191165.1,proS,Proline--tRNA ligase,1203417,1205115,-1,scaffold_1,1253,CDS,11,GCA_000191165.1__arts_core__TIGR00409,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00414__1__1673,TIGR00414,GCA_000191165.1,serS,Serine--tRNA ligase,1599776,1601084,-1,scaffold_1,1673,CDS,11,GCA_000191165.1__arts_core__TIGR00414,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00416__1__1601,TIGR00416,GCA_000191165.1,radA,DNA repair protein RadA,1531500,1532877,-1,scaffold_1,1601,CDS,11,GCA_000191165.1__arts_core__TIGR00416,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00418__1__1408,TIGR00418,GCA_000191165.1,thrS,Threonine--tRNA ligase,1355178,1357110,-1,scaffold_1,1408,CDS,11,GCA_000191165.1__arts_core__TIGR00418,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00419__1__567,TIGR00419,GCA_000191165.1,tpiA,Triosephosphate isomerase,534887,535646,1,scaffold_1,567,CDS,11,GCA_000191165.1__arts_core__TIGR00419,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00422__1__653,TIGR00422,GCA_000191165.1,valS,Valine--tRNA ligase,608878,611518,1,scaffold_1,653,CDS,11,GCA_000191165.1__arts_core__TIGR00422,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00431__1__1245,TIGR00431,GCA_000191165.1,truB,tRNA pseudouridine synthase B,1192817,1193714,-1,scaffold_1,1245,CDS,11,GCA_000191165.1__arts_core__TIGR00431,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00435__1__1560,TIGR00435,GCA_000191165.1,cysS,Cysteine--tRNA ligase,1490652,1492077,-1,scaffold_1,1560,CDS,11,GCA_000191165.1__arts_core__TIGR00435,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00442__1__808,TIGR00442,GCA_000191165.1,hisS,Histidine--tRNA ligase,766907,768194,1,scaffold_1,808,CDS,11,GCA_000191165.1__arts_core__TIGR00442,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00447__1__318,TIGR00447,GCA_000191165.1,pth,Peptidyl-tRNA hydrolase,301566,302124,1,scaffold_1,318,CDS,11,GCA_000191165.1__arts_core__TIGR00447,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00456__1__734,TIGR00456,GCA_000191165.1,argS,Arginine--tRNA ligase,690877,692575,1,scaffold_1,734,CDS,11,GCA_000191165.1__arts_core__TIGR00456,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00459__1__809,TIGR00459,GCA_000191165.1,aspS,Aspartate--tRNA ligase,768209,770054,1,scaffold_1,809,CDS,11,GCA_000191165.1__arts_core__TIGR00459,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00464__1__1564,TIGR00464,GCA_000191165.1,gltX,Glutamate--tRNA ligase,1495421,1496924,-1,scaffold_1,1564,CDS,11,GCA_000191165.1__arts_core__TIGR00464,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00468__1__1387,TIGR00468,GCA_000191165.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1337227,1338277,-1,scaffold_1,1387,CDS,11,GCA_000191165.1__arts_core__TIGR00468,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00472__1__1386,TIGR00472,GCA_000191165.1,pheT,Phenylalanine--tRNA ligase beta subunit,1334816,1337228,-1,scaffold_1,1386,CDS,11,GCA_000191165.1__arts_core__TIGR00472,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00479__1__418,TIGR00479,GCA_000191165.1,-,putative RNA methyltransferase,392835,394191,1,scaffold_1,418,CDS,11,GCA_000191165.1__arts_core__TIGR00479,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00479__1__501,TIGR00479,GCA_000191165.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,468963,470346,-1,scaffold_1,501,CDS,11,GCA_000191165.1__arts_core__TIGR00479,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00481__1__388,TIGR00481,GCA_000191165.1,-,hypothetical protein,361846,362338,1,scaffold_1,388,CDS,11,GCA_000191165.1__arts_core__TIGR00481,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00484__1__345,TIGR00484,GCA_000191165.1,fusA,Elongation factor G,335184,337269,1,scaffold_1,345,CDS,11,GCA_000191165.1__arts_core__TIGR00484,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00485__1__705,TIGR00485,GCA_000191165.1,tuf,Elongation factor Tu,659378,660569,1,scaffold_1,705,CDS,11,GCA_000191165.1__arts_core__TIGR00485,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00486__1__1131,TIGR00486,GCA_000191165.1,-,GTP cyclohydrolase 1 type 2,1071102,1071900,-1,scaffold_1,1131,CDS,11,GCA_000191165.1__arts_core__TIGR00486,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00487__1__1247,TIGR00487,GCA_000191165.1,infB,Translation initiation factor IF-2,1194139,1196617,-1,scaffold_1,1247,CDS,11,GCA_000191165.1__arts_core__TIGR00487,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00496__1__1257,TIGR00496,GCA_000191165.1,frr,Ribosome-recycling factor,1207948,1208506,-1,scaffold_1,1257,CDS,11,GCA_000191165.1__arts_core__TIGR00496,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00499__1__329,TIGR00499,GCA_000191165.1,lysS,Lysine--tRNA ligase,315865,317371,1,scaffold_1,329,CDS,11,GCA_000191165.1__arts_core__TIGR00499,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00500__1__496,TIGR00500,GCA_000191165.1,map,Methionine aminopeptidase 1,464369,465197,1,scaffold_1,496,CDS,11,GCA_000191165.1__arts_core__TIGR00500,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00504__1__1094,TIGR00504,GCA_000191165.1,pcp,Pyrrolidone-carboxylate peptidase,1029182,1029794,-1,scaffold_1,1094,CDS,11,GCA_000191165.1__arts_core__TIGR00504,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00521__1__736,TIGR00521,GCA_000191165.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,693279,694479,1,scaffold_1,736,CDS,11,GCA_000191165.1__arts_core__TIGR00521,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00525__1__214,TIGR00525,GCA_000191165.1,folB,Dihydroneopterin aldolase,201185,201536,1,scaffold_1,214,CDS,11,GCA_000191165.1__arts_core__TIGR00525,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00544__1__547,TIGR00544,GCA_000191165.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,513384,514218,1,scaffold_1,547,CDS,11,GCA_000191165.1__arts_core__TIGR00544,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00560__1__535,TIGR00560,GCA_000191165.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,500044,500608,1,scaffold_1,535,CDS,11,GCA_000191165.1__arts_core__TIGR00560,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00563__1__1315,TIGR00563,GCA_000191165.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1268980,1270297,-1,scaffold_1,1315,CDS,11,GCA_000191165.1__arts_core__TIGR00563,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00575__1__411,TIGR00575,GCA_000191165.1,ligA,DNA ligase,384735,386751,1,scaffold_1,411,CDS,11,GCA_000191165.1__arts_core__TIGR00575,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00577__1__1413,TIGR00577,GCA_000191165.1,mutM,Formamidopyrimidine-DNA glycosylase,1360757,1361579,-1,scaffold_1,1413,CDS,11,GCA_000191165.1__arts_core__TIGR00577,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00580__1__319,TIGR00580,GCA_000191165.1,mfd,Transcription-repair-coupling factor,302140,305632,1,scaffold_1,319,CDS,11,GCA_000191165.1__arts_core__TIGR00580,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00593__1__1414,TIGR00593,GCA_000191165.1,polA,DNA polymerase I,1361589,1364250,-1,scaffold_1,1414,CDS,11,GCA_000191165.1__arts_core__TIGR00593,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00595__1__1317,TIGR00595,GCA_000191165.1,priA,Primosomal protein N,1271251,1273633,-1,scaffold_1,1317,CDS,11,GCA_000191165.1__arts_core__TIGR00595,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00613__1__1170,TIGR00613,GCA_000191165.1,recO,DNA repair protein RecO,1114576,1115326,-1,scaffold_1,1170,CDS,11,GCA_000191165.1__arts_core__TIGR00613,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00615__1__1518,TIGR00615,GCA_000191165.1,recR,Recombination protein RecR,1460731,1461331,-1,scaffold_1,1518,CDS,11,GCA_000191165.1__arts_core__TIGR00615,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00630__1__551,TIGR00630,GCA_000191165.1,uvrA,UvrABC system protein A,518396,521252,1,scaffold_1,551,CDS,11,GCA_000191165.1__arts_core__TIGR00630,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00631__1__550,TIGR00631,GCA_000191165.1,uvrB_2,UvrABC system protein B,516364,518407,1,scaffold_1,550,CDS,11,GCA_000191165.1__arts_core__TIGR00631,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00635__1__1498,TIGR00635,GCA_000191165.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1441713,1442724,-1,scaffold_1,1498,CDS,11,GCA_000191165.1__arts_core__TIGR00635,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00643__1__1302,TIGR00643,GCA_000191165.1,recG,ATP-dependent DNA helicase RecG,1256031,1258071,-1,scaffold_1,1302,CDS,11,GCA_000191165.1__arts_core__TIGR00643,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00647__1__558,TIGR00647,GCA_000191165.1,whiA,putative cell division protein WhiA,525907,526840,1,scaffold_1,558,CDS,11,GCA_000191165.1__arts_core__TIGR00647,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00651__1__573,TIGR00651,GCA_000191165.1,pta,Phosphate acetyltransferase,538946,539936,1,scaffold_1,573,CDS,11,GCA_000191165.1__arts_core__TIGR00651,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00653__1__1374,TIGR00653,GCA_000191165.1,glnA,Glutamine synthetase,1323462,1324800,-1,scaffold_1,1374,CDS,11,GCA_000191165.1__arts_core__TIGR00653,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00663__1__2,TIGR00663,GCA_000191165.1,dnaN,Beta sliding clamp,1822,2950,1,scaffold_1,2,CDS,11,GCA_000191165.1__arts_core__TIGR00663,False,False,True,,TIGR00663,3.8e-91,302.5,cog,cog0592,,False,,, +GCA_000191165.1__TIGR00665__1__12,TIGR00665,GCA_000191165.1,dnaC,Replicative DNA helicase,13030,14401,1,scaffold_1,12,CDS,11,GCA_000191165.1__arts_core__TIGR00665,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00674__1__1015,TIGR00674,GCA_000191165.1,dapA,4-hydroxy-tetrahydrodipicolinate synthase,959318,960248,-1,scaffold_1,1015,CDS,11,GCA_000191165.1__arts_core__TIGR00674,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00690__1__1318,TIGR00690,GCA_000191165.1,rpoZ,DNA-directed RNA polymerase subunit omega,1273695,1273917,-1,scaffold_1,1318,CDS,11,GCA_000191165.1__arts_core__TIGR00690,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00732__1__1192,TIGR00732,GCA_000191165.1,dprA,DNA processing protein DprA,1135398,1136238,-1,scaffold_1,1192,CDS,11,GCA_000191165.1__arts_core__TIGR00732,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00753__1__523,TIGR00753,GCA_000191165.1,uppP,Undecaprenyl-diphosphatase,488653,489481,-1,scaffold_1,523,CDS,11,GCA_000191165.1__arts_core__TIGR00753,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00755__1__301,TIGR00755,GCA_000191165.1,rsmA,Ribosomal RNA small subunit methyltransferase A,284293,285184,1,scaffold_1,301,CDS,11,GCA_000191165.1__arts_core__TIGR00755,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__1196,TIGR00762,2038,-,DegV domain-containing protein,1138261,1139107,-1,scaffold_1,1196,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__1209,TIGR00762,GCA_000191165.1,-,DegV domain-containing protein,1150236,1151073,-1,scaffold_1,1209,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__56,TIGR00762,2038,-,DegV domain-containing protein,53050,53884,1,scaffold_1,56,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00762__1__950,TIGR00762,GCA_000191165.1,degV,Protein DegV,905193,906075,1,scaffold_1,950,CDS,11,GCA_000191165.1__arts_core__TIGR00762,True,False,False,GCA_000191165.1__arts_dup__TIGR00762,,,,,,,False,,, +GCA_000191165.1__TIGR00810__1__848,TIGR00810,GCA_000191165.1,secG,putative protein-export membrane protein SecG,805722,805956,1,scaffold_1,848,CDS,11,GCA_000191165.1__arts_core__TIGR00810,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00855__1__1538,TIGR00855,GCA_000191165.1,rplL,50S ribosomal protein L7/L12,1477018,1477384,-1,scaffold_1,1538,CDS,11,GCA_000191165.1__arts_core__TIGR00855,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00871__1__1496,TIGR00871,GCA_000191165.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1439688,1441137,-1,scaffold_1,1496,CDS,11,GCA_000191165.1__arts_core__TIGR00871,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00877__1__1340,TIGR00877,GCA_000191165.1,purD,Phosphoribosylamine--glycine ligase,1287354,1288620,-1,scaffold_1,1340,CDS,11,GCA_000191165.1__arts_core__TIGR00877,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00878__1__1343,TIGR00878,GCA_000191165.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1290758,1291808,-1,scaffold_1,1343,CDS,11,GCA_000191165.1__arts_core__TIGR00878,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00922__1__1547,TIGR00922,GCA_000191165.1,nusG,Transcription termination/antitermination protein NusG,1484586,1485141,-1,scaffold_1,1547,CDS,11,GCA_000191165.1__arts_core__TIGR00922,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00952__1__701,TIGR00952,GCA_000191165.1,rpsO,30S ribosomal protein S15,656059,656329,1,scaffold_1,701,CDS,11,GCA_000191165.1__arts_core__TIGR00952,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00959__1__1287,TIGR00959,GCA_000191165.1,ffh,Signal recognition particle protein,1237741,1239145,-1,scaffold_1,1287,CDS,11,GCA_000191165.1__arts_core__TIGR00959,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00962__1__635,TIGR00962,GCA_000191165.1,atpA,ATP synthase subunit alpha,592194,593706,1,scaffold_1,635,CDS,11,GCA_000191165.1__arts_core__TIGR00962,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00963__1__543,TIGR00963,GCA_000191165.1,secA,Protein translocase subunit SecA,508529,510932,1,scaffold_1,543,CDS,11,GCA_000191165.1__arts_core__TIGR00963,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00964__1__1548,TIGR00964,GCA_000191165.1,secE,Protein translocase subunit SecE,1485232,1485403,-1,scaffold_1,1548,CDS,11,GCA_000191165.1__arts_core__TIGR00964,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00967__1__366,TIGR00967,GCA_000191165.1,secY,Protein translocase subunit SecY,346642,347938,1,scaffold_1,366,CDS,11,GCA_000191165.1__arts_core__TIGR00967,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR00981__1__343,TIGR00981,GCA_000191165.1,rpsL,30S ribosomal protein S12,334257,334665,1,scaffold_1,343,CDS,11,GCA_000191165.1__arts_core__TIGR00981,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01009__1__353,TIGR01009,GCA_000191165.1,rpsC,30S ribosomal protein S3,341090,341762,1,scaffold_1,353,CDS,11,GCA_000191165.1__arts_core__TIGR01009,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01011__1__1260,TIGR01011,GCA_000191165.1,rpsB,30S ribosomal protein S2,1210471,1211233,-1,scaffold_1,1260,CDS,11,GCA_000191165.1__arts_core__TIGR01011,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01017__1__648,TIGR01017,GCA_000191165.1,rpsD,30S ribosomal protein S4,602804,603416,-1,scaffold_1,648,CDS,11,GCA_000191165.1__arts_core__TIGR01017,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01021__1__363,TIGR01021,GCA_000191165.1,rpsE,30S ribosomal protein S5,345472,345985,1,scaffold_1,363,CDS,11,GCA_000191165.1__arts_core__TIGR01021,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01023__1__1382,TIGR01023,GCA_000191165.1,rpmGA,50S ribosomal protein L33 1,1329187,1329337,-1,scaffold_1,1382,CDS,11,GCA_000191165.1__arts_core__TIGR01023,True,True,False,GCA_000191165.1__arts_dup__TIGR01023,,,,,,,False,,, +GCA_000191165.1__TIGR01023__1__1549,TIGR01023,GCA_000191165.1,rpmG3,50S ribosomal protein L33 3,1485409,1485559,-1,scaffold_1,1549,CDS,11,GCA_000191165.1__arts_core__TIGR01023,True,True,False,GCA_000191165.1__arts_dup__TIGR01023,,,,,,,False,,, +GCA_000191165.1__TIGR01024__1__1280,TIGR01024,GCA_000191165.1,rplS,50S ribosomal protein L19,1232805,1233153,-1,scaffold_1,1280,CDS,11,GCA_000191165.1__arts_core__TIGR01024,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01029__1__344,TIGR01029,GCA_000191165.1,rpsG,30S ribosomal protein S7,334680,335151,1,scaffold_1,344,CDS,11,GCA_000191165.1__arts_core__TIGR01029,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01030__1__1962,TIGR01030,GCA_000191165.1,rpmH,50S ribosomal protein L34,1872579,1872720,-1,scaffold_1,1962,CDS,11,GCA_000191165.1__arts_core__TIGR01030,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01031__1__747,TIGR01031,GCA_000191165.1,rpmF,50S ribosomal protein L32,706720,706912,1,scaffold_1,747,CDS,11,GCA_000191165.1__arts_core__TIGR01031,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01032__1__1400,TIGR01032,GCA_000191165.1,rplT,50S ribosomal protein L20,1348237,1348594,-1,scaffold_1,1400,CDS,11,GCA_000191165.1__arts_core__TIGR01032,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01034__1__1467,TIGR01034,GCA_000191165.1,metK,S-adenosylmethionine synthase,1411151,1412348,-1,scaffold_1,1467,CDS,11,GCA_000191165.1__arts_core__TIGR01034,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01039__1__637,TIGR01039,GCA_000191165.1,atpD,ATP synthase subunit beta,594698,596138,1,scaffold_1,637,CDS,11,GCA_000191165.1__arts_core__TIGR01039,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01044__1__352,TIGR01044,GCA_000191165.1,rplV,50S ribosomal protein L22,340723,341077,1,scaffold_1,352,CDS,11,GCA_000191165.1__arts_core__TIGR01044,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01049__1__346,TIGR01049,GCA_000191165.1,rpsJ,30S ribosomal protein S10,337655,337964,1,scaffold_1,346,CDS,11,GCA_000191165.1__arts_core__TIGR01049,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01050__1__351,TIGR01050,GCA_000191165.1,rpsS,30S ribosomal protein S19,340426,340702,1,scaffold_1,351,CDS,11,GCA_000191165.1__arts_core__TIGR01050,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01051__1__1190,TIGR01051,GCA_000191165.1,topA,DNA topoisomerase 1,1131572,1133756,-1,scaffold_1,1190,CDS,11,GCA_000191165.1__arts_core__TIGR01051,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01059__1__5,TIGR01059,GCA_000191165.1,gyrB,DNA gyrase subunit B,4533,6495,1,scaffold_1,5,CDS,11,GCA_000191165.1__arts_core__TIGR01059,False,False,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01060__1__1210,TIGR01060,GCA_000191165.1,eno,Enolase,1151380,1152658,1,scaffold_1,1210,CDS,11,GCA_000191165.1__arts_core__TIGR01060,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01063__1__6,TIGR01063,GCA_000191165.1,gyrA,DNA gyrase subunit A,6507,8979,1,scaffold_1,6,CDS,11,GCA_000191165.1__arts_core__TIGR01063,False,False,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01064__1__760,TIGR01064,GCA_000191165.1,pyk,Pyruvate kinase,720192,721962,1,scaffold_1,760,CDS,11,GCA_000191165.1__arts_core__TIGR01064,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01066__1__377,TIGR01066,GCA_000191165.1,rplM,50S ribosomal protein L13,354774,355218,1,scaffold_1,377,CDS,11,GCA_000191165.1__arts_core__TIGR01066,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01067__1__357,TIGR01067,GCA_000191165.1,rplN,50S ribosomal protein L14,342707,343076,1,scaffold_1,357,CDS,11,GCA_000191165.1__arts_core__TIGR01067,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01071__1__365,TIGR01071,GCA_000191165.1,rplO,50S ribosomal protein L15,346202,346643,1,scaffold_1,365,CDS,11,GCA_000191165.1__arts_core__TIGR01071,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01072__1__311,TIGR01072,GCA_000191165.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,294407,295679,1,scaffold_1,311,CDS,11,GCA_000191165.1__arts_core__TIGR01072,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01073__1__410,TIGR01073,GCA_000191165.1,pcrA,ATP-dependent DNA helicase PcrA,382463,384725,1,scaffold_1,410,CDS,11,GCA_000191165.1__arts_core__TIGR01073,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01079__1__358,TIGR01079,GCA_000191165.1,rplX,50S ribosomal protein L24,343092,343332,1,scaffold_1,358,CDS,11,GCA_000191165.1__arts_core__TIGR01079,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01082__1__1422,TIGR01082,GCA_000191165.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1368565,1369885,-1,scaffold_1,1422,CDS,11,GCA_000191165.1__arts_core__TIGR01082,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01083__1__929,TIGR01083,GCA_000191165.1,pdg,Ultraviolet N-glycosylase/AP lyase,881088,881718,1,scaffold_1,929,CDS,11,GCA_000191165.1__arts_core__TIGR01083,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01087__1__668,TIGR01087,GCA_000191165.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,622324,623707,1,scaffold_1,668,CDS,11,GCA_000191165.1__arts_core__TIGR01087,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01091__1__630,TIGR01091,GCA_000191165.1,upp,Uracil phosphoribosyltransferase,589368,589998,1,scaffold_1,630,CDS,11,GCA_000191165.1__arts_core__TIGR01091,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01128__1__699,TIGR01128,GCA_000191165.1,yqeN,putative protein YqeN,654522,655512,1,scaffold_1,699,CDS,11,GCA_000191165.1__arts_core__TIGR01128,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01131__1__631,TIGR01131,GCA_000191165.1,atpB,ATP synthase subunit a,590107,590827,1,scaffold_1,631,CDS,11,GCA_000191165.1__arts_core__TIGR01131,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01134__1__1344,TIGR01134,GCA_000191165.1,purF,Amidophosphoribosyltransferase,1291804,1293283,-1,scaffold_1,1344,CDS,11,GCA_000191165.1__arts_core__TIGR01134,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01135__1__436,TIGR01135,GCA_000191165.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],407091,408903,1,scaffold_1,436,CDS,11,GCA_000191165.1__arts_core__TIGR01135,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01144__1__633,TIGR01144,GCA_000191165.1,atpF,ATP synthase subunit b,591123,591630,1,scaffold_1,633,CDS,11,GCA_000191165.1__arts_core__TIGR01144,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01145__1__634,TIGR01145,GCA_000191165.1,atpH_2,ATP synthase subunit delta,591629,592172,1,scaffold_1,634,CDS,11,GCA_000191165.1__arts_core__TIGR01145,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01146__1__636,TIGR01146,GCA_000191165.1,atpG,ATP synthase gamma chain,593716,594679,1,scaffold_1,636,CDS,11,GCA_000191165.1__arts_core__TIGR01146,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01161__1__1350,TIGR01161,GCA_000191165.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1298792,1299917,-1,scaffold_1,1350,CDS,11,GCA_000191165.1__arts_core__TIGR01161,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01162__1__1351,TIGR01162,GCA_000191165.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1299906,1300398,-1,scaffold_1,1351,CDS,11,GCA_000191165.1__arts_core__TIGR01162,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01163__1__470,TIGR01163,GCA_000191165.1,rpe,Ribulose-phosphate 3-epimerase,439301,439952,1,scaffold_1,470,CDS,11,GCA_000191165.1__arts_core__TIGR01163,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01164__1__354,TIGR01164,GCA_000191165.1,rplP,50S ribosomal protein L16,341761,342205,1,scaffold_1,354,CDS,11,GCA_000191165.1__arts_core__TIGR01164,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01169__1__1545,TIGR01169,GCA_000191165.1,rplA,50S ribosomal protein L1,1483256,1483952,-1,scaffold_1,1545,CDS,11,GCA_000191165.1__arts_core__TIGR01169,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01171__1__350,TIGR01171,GCA_000191165.1,rplB,50S ribosomal protein L2,339572,340409,1,scaffold_1,350,CDS,11,GCA_000191165.1__arts_core__TIGR01171,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01216__1__638,TIGR01216,GCA_000191165.1,atpC,ATP synthase epsilon chain,596149,596590,1,scaffold_1,638,CDS,11,GCA_000191165.1__arts_core__TIGR01216,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01260__1__632,TIGR01260,GCA_000191165.1,atpH_1,ATP synthase subunit c,590845,591070,1,scaffold_1,632,CDS,11,GCA_000191165.1__arts_core__TIGR01260,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01280__1__1327,TIGR01280,GCA_000191165.1,xseB,Exodeoxyribonuclease 7 small subunit,1279548,1279788,-1,scaffold_1,1327,CDS,11,GCA_000191165.1__arts_core__TIGR01280,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01308__1__364,TIGR01308,GCA_000191165.1,rpmD,50S ribosomal protein L30,345996,346182,1,scaffold_1,364,CDS,11,GCA_000191165.1__arts_core__TIGR01308,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01369__1__1883,TIGR01369,GCA_000191165.1,carB_8,Carbamoyl-phosphate synthase large chain,1788915,1792104,-1,scaffold_1,1883,CDS,11,GCA_000191165.1__arts_core__TIGR01369,False,True,False,,"CPSaseII_lrg: carbamoyl-phosphate synthase, large subunit",,,,,CP000156.1.region002,True,CP000156.1.region002__arts_bgc,"Purines, pyrimidines, nucleosides, and nucleotides",TIGR01369 +GCA_000191165.1__TIGR01378__1__1311,TIGR01378,GCA_000191165.1,thiN,Thiamine pyrophosphokinase,1264616,1265300,-1,scaffold_1,1311,CDS,11,GCA_000191165.1__arts_core__TIGR01378,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01389__1__739,TIGR01389,GCA_000191165.1,recQ,ATP-dependent DNA helicase RecQ,696608,698378,1,scaffold_1,739,CDS,11,GCA_000191165.1__arts_core__TIGR01389,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01391__1__1167,TIGR01391,GCA_000191165.1,dnaG,DNA primase,1109471,1111310,-1,scaffold_1,1167,CDS,11,GCA_000191165.1__arts_core__TIGR01391,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01393__1__1227,TIGR01393,GCA_000191165.1,lepA,Elongation factor 4,1169866,1171705,-1,scaffold_1,1227,CDS,11,GCA_000191165.1__arts_core__TIGR01393,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01417__1__513,TIGR01417,GCA_000191165.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,480411,482139,1,scaffold_1,513,CDS,11,GCA_000191165.1__arts_core__TIGR01417,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01430__1__1368,TIGR01430,GCA_000191165.1,add,Adenosine deaminase,1318195,1319188,-1,scaffold_1,1368,CDS,11,GCA_000191165.1__arts_core__TIGR01430,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01430__1__973,TIGR01430,GCA_000191165.1,-,Adenine deaminase,925115,926138,-1,scaffold_1,973,CDS,11,GCA_000191165.1__arts_core__TIGR01430,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01448__1__686,TIGR01448,GCA_000191165.1,recD2,ATP-dependent RecD-like DNA helicase,639035,641426,1,scaffold_1,686,CDS,11,GCA_000191165.1__arts_core__TIGR01448,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01455__1__583,TIGR01455,GCA_000191165.1,glmM,Phosphoglucosamine mutase,547727,549080,1,scaffold_1,583,CDS,11,GCA_000191165.1__arts_core__TIGR01455,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01496__1__217,TIGR01496,GCA_000191165.1,-,hypothetical protein,203916,205008,1,scaffold_1,217,CDS,11,GCA_000191165.1__arts_core__TIGR01496,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01498__1__215,TIGR01498,GCA_000191165.1,folE,GTP cyclohydrolase 1,201532,202606,1,scaffold_1,215,CDS,11,GCA_000191165.1__arts_core__TIGR01498,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01513__1__276,TIGR01513,GCA_000191165.1,pncB,Nicotinate phosphoribosyltransferase,262274,263798,-1,scaffold_1,276,CDS,11,GCA_000191165.1__arts_core__TIGR01513,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01534__1__565,TIGR01534,GCA_000191165.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,532544,533561,1,scaffold_1,565,CDS,11,GCA_000191165.1__arts_core__TIGR01534,False,True,True,,,,,,,,False,,, +GCA_000191165.1__TIGR01632__1__1546,TIGR01632,GCA_000191165.1,rplK,50S ribosomal protein L11,1484035,1484461,-1,scaffold_1,1546,CDS,11,GCA_000191165.1__arts_core__TIGR01632,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01736__1__1345,TIGR01736,GCA_000191165.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1293258,1295481,-1,scaffold_1,1345,CDS,11,GCA_000191165.1__arts_core__TIGR01736,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01771__1__100,TIGR01771,GCA_000191165.1,ldh,L-lactate dehydrogenase,90513,91437,-1,scaffold_1,100,CDS,11,GCA_000191165.1__arts_core__TIGR01771,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01951__1__1330,TIGR01951,GCA_000191165.1,nusB,Transcription antitermination protein NusB,1282048,1282447,-1,scaffold_1,1330,CDS,11,GCA_000191165.1__arts_core__TIGR01951,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01953__1__1250,TIGR01953,GCA_000191165.1,nusA,Transcription termination/antitermination protein NusA,1197241,1198462,-1,scaffold_1,1250,CDS,11,GCA_000191165.1__arts_core__TIGR01953,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01980__1__865,TIGR01980,GCA_000191165.1,-,hypothetical protein,818024,819452,1,scaffold_1,865,CDS,11,GCA_000191165.1__arts_core__TIGR01980,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01981__1__862,TIGR01981,GCA_000191165.1,-,hypothetical protein,815238,816402,1,scaffold_1,862,CDS,11,GCA_000191165.1__arts_core__TIGR01981,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR01994__1__864,TIGR01994,GCA_000191165.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,817583,818024,1,scaffold_1,864,CDS,11,GCA_000191165.1__arts_core__TIGR01994,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02012__1__536,TIGR02012,GCA_000191165.1,recA,Protein RecA,500813,501923,1,scaffold_1,536,CDS,11,GCA_000191165.1__arts_core__TIGR02012,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02013__1__340,TIGR02013,GCA_000191165.1,rpoB,DNA-directed RNA polymerase subunit beta,325558,329233,1,scaffold_1,340,CDS,11,GCA_000191165.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.5,cog,cog0085,,False,,, +GCA_000191165.1__TIGR02027__1__371,TIGR02027,GCA_000191165.1,rpoA,DNA-directed RNA polymerase subunit alpha,349867,350806,1,scaffold_1,371,CDS,11,GCA_000191165.1__arts_core__TIGR02027,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02191__1__1293,TIGR02191,GCA_000191165.1,rnc,Ribonuclease 3,1245896,1246592,-1,scaffold_1,1293,CDS,11,GCA_000191165.1__arts_core__TIGR02191,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02225__1__765,TIGR02225,GCA_000191165.1,xerD_1,Tyrosine recombinase XerD,724388,725285,1,scaffold_1,765,CDS,11,GCA_000191165.1__arts_core__TIGR02225,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02227__1__1127,TIGR02227,GCA_000191165.1,spsB,Signal peptidase IB,1066949,1067516,1,scaffold_1,1127,CDS,11,GCA_000191165.1__arts_core__TIGR02227,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02273__1__1285,TIGR02273,GCA_000191165.1,rimM,Ribosome maturation factor RimM,1236782,1237286,-1,scaffold_1,1285,CDS,11,GCA_000191165.1__arts_core__TIGR02273,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02348__1__1502,TIGR02348,GCA_000191165.1,groL,60 kDa chaperonin,1448010,1449624,-1,scaffold_1,1502,CDS,11,GCA_000191165.1__arts_core__TIGR02348,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02349__1__1228,TIGR02349,GCA_000191165.1,dnaJ,Chaperone protein DnaJ,1171826,1172963,-1,scaffold_1,1228,CDS,11,GCA_000191165.1__arts_core__TIGR02349,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02350__1__1229,TIGR02350,GCA_000191165.1,dnaK,Chaperone protein DnaK,1173045,1174890,-1,scaffold_1,1229,CDS,11,GCA_000191165.1__arts_core__TIGR02350,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02386__1__341,TIGR02386,GCA_000191165.1,rpoC,DNA-directed RNA polymerase subunit beta,329248,332914,1,scaffold_1,341,CDS,11,GCA_000191165.1__arts_core__TIGR02386,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02393__1__1165,TIGR02393,GCA_000191165.1,sigA_2,RNA polymerase sigma factor SigA,1107218,1108340,-1,scaffold_1,1165,CDS,11,GCA_000191165.1__arts_core__TIGR02393,True,False,False,GCA_000191165.1__arts_dup__TIGR02393,,,,,,,False,,, +GCA_000191165.1__TIGR02393__1__1166,TIGR02393,GCA_000191165.1,sigA_3,RNA polymerase sigma factor SigA,1108381,1109500,-1,scaffold_1,1166,CDS,11,GCA_000191165.1__arts_core__TIGR02393,True,False,False,GCA_000191165.1__arts_dup__TIGR02393,,,,,,,False,,, +GCA_000191165.1__TIGR02487__1__184,TIGR02487,GCA_000191165.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,173110,175321,1,scaffold_1,184,CDS,11,GCA_000191165.1__arts_core__TIGR02487,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02727__1__1381,TIGR02727,GCA_000191165.1,-,hypothetical protein,1328560,1329133,-1,scaffold_1,1381,CDS,11,GCA_000191165.1__arts_core__TIGR02727,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR02729__1__742,TIGR02729,GCA_000191165.1,obg_1,GTPase Obg,701585,702671,1,scaffold_1,742,CDS,11,GCA_000191165.1__arts_core__TIGR02729,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03156__1__1786,TIGR03156,GCA_000191165.1,hflX,GTPase HflX,1694460,1695741,1,scaffold_1,1786,CDS,11,GCA_000191165.1__arts_core__TIGR03156,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03263__1__1319,TIGR03263,GCA_000191165.1,gmk_1,Guanylate kinase,1273918,1274533,-1,scaffold_1,1319,CDS,11,GCA_000191165.1__arts_core__TIGR03263,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03284__1__717,TIGR03284,GCA_000191165.1,thyA,Thymidylate synthase,670227,671184,1,scaffold_1,717,CDS,11,GCA_000191165.1__arts_core__TIGR03284,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03534__1__628,TIGR03534,GCA_000191165.1,prmC,Release factor glutamine methyltransferase,587431,588274,1,scaffold_1,628,CDS,11,GCA_000191165.1__arts_core__TIGR03534,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03594__1__774,TIGR03594,GCA_000191165.1,der,GTPase Der,731218,732526,1,scaffold_1,774,CDS,11,GCA_000191165.1__arts_core__TIGR03594,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03625__1__347,TIGR03625,GCA_000191165.1,rplC,50S ribosomal protein L3,337989,338619,1,scaffold_1,347,CDS,11,GCA_000191165.1__arts_core__TIGR03625,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03631__1__369,TIGR03631,GCA_000191165.1,rpsM,30S ribosomal protein S13,349055,349406,1,scaffold_1,369,CDS,11,GCA_000191165.1__arts_core__TIGR03631,False,False,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03632__1__370,TIGR03632,GCA_000191165.1,rpsK,30S ribosomal protein S11,349434,349824,1,scaffold_1,370,CDS,11,GCA_000191165.1__arts_core__TIGR03632,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03635__1__356,TIGR03635,GCA_000191165.1,rpsQ,30S ribosomal protein S17,342410,342677,1,scaffold_1,356,CDS,11,GCA_000191165.1__arts_core__TIGR03635,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03654__1__361,TIGR03654,GCA_000191165.1,rplF,50S ribosomal protein L6,344539,345070,1,scaffold_1,361,CDS,11,GCA_000191165.1__arts_core__TIGR03654,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03705__1__463,TIGR03705,GCA_000191165.1,ppk,Polyphosphate kinase,432702,434868,1,scaffold_1,463,CDS,11,GCA_000191165.1__arts_core__TIGR03705,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03725__1__1508,TIGR03725,GCA_000191165.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1454631,1455354,-1,scaffold_1,1508,CDS,11,GCA_000191165.1__arts_core__TIGR03725,False,True,False,,,,,,,,False,,, +GCA_000191165.1__TIGR03953__1__348,TIGR03953,GCA_000191165.1,rplD,50S ribosomal protein L4,338633,339251,1,scaffold_1,348,CDS,11,GCA_000191165.1__arts_core__TIGR03953,False,False,False,,,,,,,,False,,, +GCA_000014405.1__Cpn10__1__1465,Cpn10,GCA_000014405.1,groS,10 kDa chaperonin,1406812,1407097,-1,scaffold_1,1465,CDS,11,GCA_000014405.1__arts_core__Cpn10,False,True,False,,,,,,,,,,, +GCA_000014405.1__GrpE__1__1199,GrpE,GCA_000014405.1,grpE,Protein GrpE,1136787,1137405,-1,scaffold_1,1199,CDS,11,GCA_000014405.1__arts_core__GrpE,False,False,False,,,,,,,,,,, +GCA_000014405.1__Methyltransf_5__1__661,Methyltransf_5,GCA_000014405.1,rsmH,Ribosomal RNA small subunit methyltransferase H,620091,621036,1,scaffold_1,661,CDS,11,GCA_000014405.1__arts_core__Methyltransf_5,False,False,False,,,,,,,,,,, +GCA_000014405.1__PF00044.19__1__561,PF00044.19,GCA_000014405.1,,,534819,535836,1,1,561,,,,False,False,True,,Gp_dh_N,5.2e-54,179.4,lcl,561,,,,, +GCA_000014405.1__PF00185.19__1__1865,PF00185.19,GCA_000014405.1,,,1777865,1778822,-1,1,1865,,,,False,False,True,,OTCace,2.3e-35,118.9,lcl,1865,,,,, +GCA_000014405.1__PF00185.19__1__923,PF00185.19,GCA_000014405.1,,,885054,885408,1,1,923,,,,False,False,True,,OTCace,0.0,48.3,cog,cog0540,,,,, +GCA_000014405.1__PF00185.19__1__924,PF00185.19,GCA_000014405.1,,,885457,885640,1,1,924,,,,False,False,True,,OTCace,0.0,53.6,lcl,924,,,,, +GCA_000014405.1__PF00204.20__1__5,PF00204.20,GCA_000014405.1,,,4360,6322,1,1,5,,,,False,False,True,,DNA_gyraseB,7.2e-61,201.5,cog,cog0187,,,,, +GCA_000014405.1__PF00204.20__1__878,PF00204.20,GCA_000014405.1,,,830171,832103,1,1,878,,,,False,False,True,,DNA_gyraseB,1.1e-52,174.9,cog,cog0187,,,,, +GCA_000014405.1__PF00227.21__1__1157,PF00227.21,GCA_000014405.1,,,1091791,1092325,-1,1,1157,,,,False,False,True,,Proteasome,8.2e-23,77.8,cog,cog5405,,,,, +GCA_000014405.1__PF00364.17__1__812,PF00364.17,GCA_000014405.1,,,781657,782140,1,1,812,,,,False,False,True,,Biotin_lipoyl,3.2e-25,84.7,lcl,812,,,,, +GCA_000014405.1__PF00521.15__1__6,PF00521.15,GCA_000014405.1,,,6334,8806,1,1,6,,,,False,False,True,,DNA_topoisoIV,7.3e-157,519.6,cog,cog0188,,,,, +GCA_000014405.1__PF00521.15__1__879,PF00521.15,GCA_000014405.1,,,832117,834601,1,1,879,,,,False,False,True,,DNA_topoisoIV,1.6e-148,492.2,cog,cog0188,,,,, +GCA_000014405.1__PF01039.17__1__815,PF01039.17,GCA_000014405.1,,,783946,784795,1,1,815,,,,False,False,True,,Carboxyl_trans,1.9e-19,66.5,cog,cog0777,,,,, +GCA_000014405.1__PF01039.17__1__816,PF01039.17,GCA_000014405.1,,,784787,785555,1,1,816,,,,False,False,True,,Carboxyl_trans,2.4e-19,66.1,cog,cog0825,,,,, +GCA_000014405.1__PGK__1__562,PGK,GCA_000014405.1,pgk,Phosphoglycerate kinase,535932,537144,1,scaffold_1,562,CDS,11,GCA_000014405.1__arts_core__PGK,False,True,False,,,,,,,,,,, +GCA_000014405.1__RF0007__1__1043,RF0007,GCA_000014405.1,,,986851,988609,1,1,1043,,,,False,False,True,,ABC_efflux,9.5e-78,258.9,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1173,RF0007,GCA_000014405.1,,,1105421,1107194,-1,1,1173,,,,False,False,True,,ABC_efflux,1.2e-86,288.3,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1231,RF0007,GCA_000014405.1,,,1176015,1177812,-1,1,1231,,,,False,False,True,,ABC_efflux,1.4e-77,258.3,cog,cog1132,,,,, +GCA_000014405.1__RF0007__1__1808,RF0007,GCA_000014405.1,,,1721280,1723131,-1,1,1808,,,,False,False,True,,ABC_efflux,2e-76,254.5,cog,cog1132,,,,, +GCA_000014405.1__RF0155__1__1806,RF0155,GCA_000014405.1,,,1719267,1720476,-1,1,1806,,,,False,False,True,,vanS,3e-74,247.0,lcl,1806,,,,, +GCA_000014405.1__Ribosomal_L10__1__1500,Ribosomal_L10,GCA_000014405.1,rplJ,50S ribosomal protein L10,1434540,1435050,-1,scaffold_1,1500,CDS,11,GCA_000014405.1__arts_core__Ribosomal_L10,False,False,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_L23__1__350,Ribosomal_L23,GCA_000014405.1,rplW,50S ribosomal protein L23,342760,343057,1,scaffold_1,350,CDS,11,GCA_000014405.1__arts_core__Ribosomal_L23,False,True,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_S8__1__361,Ribosomal_S8,GCA_000014405.1,rpsH,30S ribosomal protein S8,347626,348025,1,scaffold_1,361,CDS,11,GCA_000014405.1__arts_core__Ribosomal_S8,False,True,False,,,,,,,,,,, +GCA_000014405.1__Ribosomal_S9__1__379,Ribosomal_S9,GCA_000014405.1,rpsI,30S ribosomal protein S9,358739,359135,1,scaffold_1,379,CDS,11,GCA_000014405.1__arts_core__Ribosomal_S9,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00001__1__1367,TIGR00001,GCA_000014405.1,rpmI,50S ribosomal protein L35,1309102,1309303,-1,scaffold_1,1367,CDS,11,GCA_000014405.1__arts_core__TIGR00001,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00008__1__369,TIGR00008,GCA_000014405.1,infA,Translation initiation factor IF-1,352187,352409,1,scaffold_1,369,CDS,11,GCA_000014405.1__arts_core__TIGR00008,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00009__1__1272,TIGR00009,GCA_000014405.1,rpmB,50S ribosomal protein L28,1219050,1219236,1,scaffold_1,1272,CDS,11,GCA_000014405.1__arts_core__TIGR00009,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00012__1__356,TIGR00012,GCA_000014405.1,rpmC,50S ribosomal protein L29,345704,345902,1,scaffold_1,356,CDS,11,GCA_000014405.1__arts_core__TIGR00012,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00016__1__610,TIGR00016,GCA_000014405.1,ackA,Acetate kinase,574077,575265,1,scaffold_1,610,CDS,11,GCA_000014405.1__arts_core__TIGR00016,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00017__1__766,TIGR00017,GCA_000014405.1,cmk,Cytidylate kinase,729952,730585,1,scaffold_1,766,CDS,11,GCA_000014405.1__arts_core__TIGR00017,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00019__1__625,TIGR00019,GCA_000014405.1,prfA,Peptide chain release factor 1,588567,589653,1,scaffold_1,625,CDS,11,GCA_000014405.1__arts_core__TIGR00019,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00020__1__539,TIGR00020,GCA_000014405.1,prfB,Peptide chain release factor 2,513516,514515,1,scaffold_1,539,CDS,11,GCA_000014405.1__arts_core__TIGR00020,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00021__1__467,TIGR00021,GCA_000014405.1,rpiA,Ribose-5-phosphate isomerase A,442393,443086,1,scaffold_1,467,CDS,11,GCA_000014405.1__arts_core__TIGR00021,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00029__1__697,TIGR00029,GCA_000014405.1,rpsT,30S ribosomal protein S20,657820,658072,-1,scaffold_1,697,CDS,11,GCA_000014405.1__arts_core__TIGR00029,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00038__1__1298,TIGR00038,GCA_000014405.1,efp_1,Elongation factor P,1240647,1241214,-1,scaffold_1,1298,CDS,11,GCA_000014405.1__arts_core__TIGR00038,True,False,False,GCA_000014405.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000014405.1__TIGR00038__1__1697,TIGR00038,GCA_000014405.1,efp_2,Elongation factor P,1624901,1625459,-1,scaffold_1,1697,CDS,11,GCA_000014405.1__arts_core__TIGR00038,True,False,False,GCA_000014405.1__arts_dup__TIGR00038,,,,,,,,,, +GCA_000014405.1__TIGR00042__1__1447,TIGR00042,GCA_000014405.1,-,dITP/XTP pyrophosphatase,1385243,1385864,-1,scaffold_1,1447,CDS,11,GCA_000014405.1__arts_core__TIGR00042,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00043__1__1144,TIGR00043,GCA_000014405.1,ybeY,Endoribonuclease YbeY,1079837,1080362,-1,scaffold_1,1144,CDS,11,GCA_000014405.1__arts_core__TIGR00043,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00055__1__1220,TIGR00055,GCA_000014405.1,uppS,"Ditrans,polycis-undecaprenyl-diphosphate synthase ((2E,6E)-farnesyl-diphosphate specific)",1165964,1166696,-1,scaffold_1,1220,CDS,11,GCA_000014405.1__arts_core__TIGR00055,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00057__1__627,TIGR00057,GCA_000014405.1,ywlC,Threonylcarbamoyl-AMP synthase,590487,591483,1,scaffold_1,627,CDS,11,GCA_000014405.1__arts_core__TIGR00057,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00059__1__373,TIGR00059,GCA_000014405.1,rplQ,50S ribosomal protein L17,354339,354723,1,scaffold_1,373,CDS,11,GCA_000014405.1__arts_core__TIGR00059,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00060__1__363,TIGR00060,GCA_000014405.1,rplR,50S ribosomal protein L18,348606,348966,1,scaffold_1,363,CDS,11,GCA_000014405.1__arts_core__TIGR00060,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00061__1__1301,TIGR00061,GCA_000014405.1,rplU,50S ribosomal protein L21,1242850,1243162,-1,scaffold_1,1301,CDS,11,GCA_000014405.1__arts_core__TIGR00061,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00062__1__1300,TIGR00062,GCA_000014405.1,rpmA,50S ribosomal protein L27,1242535,1242835,-1,scaffold_1,1300,CDS,11,GCA_000014405.1__arts_core__TIGR00062,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00065__1__669,TIGR00065,GCA_000014405.1,ftsZ,Cell division protein FtsZ,629361,630720,1,scaffold_1,669,CDS,11,GCA_000014405.1__arts_core__TIGR00065,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00071__1__377,TIGR00071,GCA_000014405.1,truA,tRNA pseudouridine synthase A,357389,358178,1,scaffold_1,377,CDS,11,GCA_000014405.1__arts_core__TIGR00071,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00077__1__906,TIGR00077,GCA_000014405.1,lspA,Lipoprotein signal peptidase,867762,868215,1,scaffold_1,906,CDS,11,GCA_000014405.1__arts_core__TIGR00077,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00079__1__687,TIGR00079,GCA_000014405.1,def2,Peptide deformylase 2,647262,647817,-1,scaffold_1,687,CDS,11,GCA_000014405.1__arts_core__TIGR00079,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00081__1__1313,TIGR00081,GCA_000014405.1,purC,Phosphoribosylaminoimidazole-succinocarboxamide synthase,1254153,1254876,-1,scaffold_1,1313,CDS,11,GCA_000014405.1__arts_core__TIGR00081,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00082__1__1210,TIGR00082,GCA_000014405.1,rbfA,Ribosome-binding factor A,1152514,1152877,-1,scaffold_1,1210,CDS,11,GCA_000014405.1__arts_core__TIGR00082,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00084__1__1461,TIGR00084,GCA_000014405.1,ruvA,Holliday junction ATP-dependent DNA helicase RuvA,1399899,1400493,-1,scaffold_1,1461,CDS,11,GCA_000014405.1__arts_core__TIGR00084,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00086__1__1650,TIGR00086,GCA_000014405.1,smpB,SsrA-binding protein,1575875,1576337,-1,scaffold_1,1650,CDS,11,GCA_000014405.1__arts_core__TIGR00086,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00088__1__1249,TIGR00088,GCA_000014405.1,trmD,tRNA (guanine-N(1)-)-methyltransferase,1194807,1195545,-1,scaffold_1,1249,CDS,11,GCA_000014405.1__arts_core__TIGR00088,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00090__1__1362,TIGR00090,GCA_000014405.1,rsfS,Ribosomal silencing factor RsfS,1305859,1306207,-1,scaffold_1,1362,CDS,11,GCA_000014405.1__arts_core__TIGR00090,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00092__1__1811,TIGR00092,GCA_000014405.1,ychF,Ribosome-binding ATPase YchF,1725791,1726892,-1,scaffold_1,1811,CDS,11,GCA_000014405.1__arts_core__TIGR00092,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00103__1__1481,TIGR00103,GCA_000014405.1,-,Nucleoid-associated protein,1418481,1418811,-1,scaffold_1,1481,CDS,11,GCA_000014405.1__arts_core__TIGR00103,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00105__1__312,TIGR00105,GCA_000014405.1,rpmE2,50S ribosomal protein L31 type B,299315,299567,1,scaffold_1,312,CDS,11,GCA_000014405.1__arts_core__TIGR00105,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00115__1__702,TIGR00115,GCA_000014405.1,tig,Trigger factor,662967,664287,1,scaffold_1,702,CDS,11,GCA_000014405.1__arts_core__TIGR00115,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00116__1__1223,TIGR00116,GCA_000014405.1,tsf,Elongation factor Ts,1168130,1169159,-1,scaffold_1,1223,CDS,11,GCA_000014405.1__arts_core__TIGR00116,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00121__1__818,TIGR00121,GCA_000014405.1,birA,Bifunctional ligase/repressor BirA,786338,787004,1,scaffold_1,818,CDS,11,GCA_000014405.1__arts_core__TIGR00121,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00133__1__414,TIGR00133,GCA_000014405.1,gatB,Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B,391718,393149,1,scaffold_1,414,CDS,11,GCA_000014405.1__arts_core__TIGR00133,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00135__1__412,TIGR00135,GCA_000014405.1,gatC,Glutamyl-tRNA(Gln) amidotransferase subunit C,389965,390271,1,scaffold_1,412,CDS,11,GCA_000014405.1__arts_core__TIGR00135,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00150__1__569,TIGR00150,GCA_000014405.1,tsaE,tRNA threonylcarbamoyladenosine biosynthesis protein TsaE,542222,542708,1,scaffold_1,569,CDS,11,GCA_000014405.1__arts_core__TIGR00150,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00152__1__1374,TIGR00152,GCA_000014405.1,coaE,Dephospho-CoA kinase,1316881,1317466,-1,scaffold_1,1374,CDS,11,GCA_000014405.1__arts_core__TIGR00152,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00157__1__1278,TIGR00157,GCA_000014405.1,rsgA,Small ribosomal subunit biogenesis GTPase RsgA,1223076,1223970,-1,scaffold_1,1278,CDS,11,GCA_000014405.1__arts_core__TIGR00157,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00158__1__11,TIGR00158,GCA_000014405.1,rplI,50S ribosomal protein L9,12378,12834,1,scaffold_1,11,CDS,11,GCA_000014405.1__arts_core__TIGR00158,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00165__1__9,TIGR00165,GCA_000014405.1,rpsR,30S ribosomal protein S18,9957,10194,1,scaffold_1,9,CDS,11,GCA_000014405.1__arts_core__TIGR00165,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00166__1__7,TIGR00166,GCA_000014405.1,rpsF,30S ribosomal protein S6,9021,9315,1,scaffold_1,7,CDS,11,GCA_000014405.1__arts_core__TIGR00166,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00168__1__1368,TIGR00168,GCA_000014405.1,infC,Translation initiation factor IF-3,1309323,1309845,-1,scaffold_1,1368,CDS,11,GCA_000014405.1__arts_core__TIGR00168,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00174__1__1340,TIGR00174,GCA_000014405.1,miaA,tRNA dimethylallyltransferase,1285003,1285930,-1,scaffold_1,1340,CDS,11,GCA_000014405.1__arts_core__TIGR00174,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00179__1__571,TIGR00179,GCA_000014405.1,murB,UDP-N-acetylenolpyruvoylglucosamine reductase,543440,544334,1,scaffold_1,571,CDS,11,GCA_000014405.1__arts_core__TIGR00179,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00180__1__1813,TIGR00180,BAA-365,spo0J,Stage 0 sporulation protein J,1727224,1728115,-1,scaffold_1,1813,CDS,11,GCA_000014405.1__arts_core__TIGR00180,True,False,False,GCA_000014405.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000014405.1__TIGR00180__1__1815,TIGR00180,GCA_000014405.1,noc,Nucleoid occlusion protein,1728873,1729698,-1,scaffold_1,1815,CDS,11,GCA_000014405.1__arts_core__TIGR00180,True,False,False,GCA_000014405.1__arts_dup__TIGR00180,,,,,,,,,, +GCA_000014405.1__TIGR00186__1__1517,TIGR00186,GCA_000014405.1,-,Putative TrmH family tRNA/rRNA methyltransferase,1446493,1447243,-1,scaffold_1,1517,CDS,11,GCA_000014405.1__arts_core__TIGR00186,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00188__1__1946,TIGR00188,GCA_000014405.1,rnpA,Ribonuclease P protein component,1856024,1856390,-1,scaffold_1,1946,CDS,11,GCA_000014405.1__arts_core__TIGR00188,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00191__1__1585,TIGR00191,GCA_000014405.1,thrB_2,Homoserine kinase,1508362,1509226,-1,scaffold_1,1585,CDS,11,GCA_000014405.1__arts_core__TIGR00191,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00194__1__737,TIGR00194,GCA_000014405.1,uvrC,UvrABC system protein C,702109,703912,1,scaffold_1,737,CDS,11,GCA_000014405.1__arts_core__TIGR00194,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00196__1__1412,TIGR00196,GCA_000014405.1,nnrD,ADP-dependent (S)-NAD(P)H-hydrate dehydratase,1351882,1352749,-1,scaffold_1,1412,CDS,11,GCA_000014405.1__arts_core__TIGR00196,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00218__1__51,TIGR00218,GCA_000014405.1,manA,Mannose-6-phosphate isomerase ManA,49490,50459,1,scaffold_1,51,CDS,11,GCA_000014405.1__arts_core__TIGR00218,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00219__1__656,TIGR00219,GCA_000014405.1,mreC,Cell shape-determining protein MreC,617508,618360,1,scaffold_1,656,CDS,11,GCA_000014405.1__arts_core__TIGR00219,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00220__1__277,TIGR00220,GCA_000014405.1,mscL,Large-conductance mechanosensitive channel,266697,267174,1,scaffold_1,277,CDS,11,GCA_000014405.1__arts_core__TIGR00220,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00233__1__294,TIGR00233,GCA_000014405.1,trpS2,Tryptophan--tRNA ligase 2,279249,280275,1,scaffold_1,294,CDS,11,GCA_000014405.1__arts_core__TIGR00233,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00234__1__216,TIGR00234,GCA_000014405.1,tyrS,Tyrosine--tRNA ligase,211287,212553,1,scaffold_1,216,CDS,11,GCA_000014405.1__arts_core__TIGR00234,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00237__1__1294,TIGR00237,GCA_000014405.1,xseA,Exodeoxyribonuclease 7 large subunit,1237528,1238899,-1,scaffold_1,1294,CDS,11,GCA_000014405.1__arts_core__TIGR00237,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00250__1__1452,TIGR00250,GCA_000014405.1,yrrK,Putative pre-16S rRNA nuclease,1389736,1390165,-1,scaffold_1,1452,CDS,11,GCA_000014405.1__arts_core__TIGR00250,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00256__1__801,TIGR00256,GCA_000014405.1,dtd,D-aminoacyl-tRNA deacylase,769460,769898,1,scaffold_1,801,CDS,11,GCA_000014405.1__arts_core__TIGR00256,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00257__1__533,TIGR00257,GCA_000014405.1,yigZ,IMPACT family member YigZ,507448,508108,-1,scaffold_1,533,CDS,11,GCA_000014405.1__arts_core__TIGR00257,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00281__1__762,TIGR00281,GCA_000014405.1,scpB,Segregation and condensation protein B,727099,727702,1,scaffold_1,762,CDS,11,GCA_000014405.1__arts_core__TIGR00281,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00302__1__1312,TIGR00302,GCA_000014405.1,purS,Phosphoribosylformylglycinamidine synthase subunit PurS,1253900,1254149,-1,scaffold_1,1312,CDS,11,GCA_000014405.1__arts_core__TIGR00302,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00337__1__310,TIGR00337,GCA_000014405.1,pyrG,CTP synthase,296205,297825,1,scaffold_1,310,CDS,11,GCA_000014405.1__arts_core__TIGR00337,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00344__1__1454,TIGR00344,GCA_000014405.1,alaS,Alanine--tRNA ligase,1390487,1393121,-1,scaffold_1,1454,CDS,11,GCA_000014405.1__arts_core__TIGR00344,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00355__1__1306,TIGR00355,GCA_000014405.1,purH,Bifunctional purine biosynthesis protein PurH,1246381,1247923,-1,scaffold_1,1306,CDS,11,GCA_000014405.1__arts_core__TIGR00355,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00357__1__1747,TIGR00357,GCA_000014405.1,msrB,Peptide methionine sulfoxide reductase MsrB,1664838,1665264,-1,scaffold_1,1747,CDS,11,GCA_000014405.1__arts_core__TIGR00357,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00362__1__1,TIGR00362,GCA_000014405.1,dnaA,Chromosomal replication initiator protein DnaA,103,1468,1,scaffold_1,1,CDS,11,GCA_000014405.1__arts_core__TIGR00362,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00382__1__703,TIGR00382,GCA_000014405.1,clpX,ATP-dependent Clp protease ATP-binding subunit ClpX,664438,665692,1,scaffold_1,703,CDS,11,GCA_000014405.1__arts_core__TIGR00382,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00392__1__673,TIGR00392,GCA_000014405.1,ileS,Isoleucine--tRNA ligase,632612,635408,1,scaffold_1,673,CDS,11,GCA_000014405.1__arts_core__TIGR00392,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00396__1__1423,TIGR00396,GCA_000014405.1,leuS,Leucine--tRNA ligase,1361925,1364340,-1,scaffold_1,1423,CDS,11,GCA_000014405.1__arts_core__TIGR00396,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00398__1__298,TIGR00398,GCA_000014405.1,metG,Methionine--tRNA ligase,284539,286522,1,scaffold_1,298,CDS,11,GCA_000014405.1__arts_core__TIGR00398,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__1017,TIGR00401,GCA_000014405.1,msrA_3,Peptide methionine sulfoxide reductase MsrA,957846,958416,1,scaffold_1,1017,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__598,TIGR00401,BAA-365,msrA_1,Peptide methionine sulfoxide reductase MsrA,565376,565904,1,scaffold_1,598,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00401__1__942,TIGR00401,BAA-365,msrA_2,Peptide methionine sulfoxide reductase MsrA,901001,901571,-1,scaffold_1,942,CDS,11,GCA_000014405.1__arts_core__TIGR00401,True,True,False,GCA_000014405.1__arts_dup__TIGR00401,,,,,,,,,, +GCA_000014405.1__TIGR00409__1__1217,TIGR00409,GCA_000014405.1,proS,Proline--tRNA ligase,1162167,1163865,-1,scaffold_1,1217,CDS,11,GCA_000014405.1__arts_core__TIGR00409,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00414__1__1668,TIGR00414,GCA_000014405.1,serS,Serine--tRNA ligase,1598010,1599318,-1,scaffold_1,1668,CDS,11,GCA_000014405.1__arts_core__TIGR00414,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00416__1__1560,TIGR00416,GCA_000014405.1,radA,DNA repair protein RadA,1488373,1489750,-1,scaffold_1,1560,CDS,11,GCA_000014405.1__arts_core__TIGR00416,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00418__1__1370,TIGR00418,GCA_000014405.1,thrS,Threonine--tRNA ligase,1311897,1313829,-1,scaffold_1,1370,CDS,11,GCA_000014405.1__arts_core__TIGR00418,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00419__1__563,TIGR00419,GCA_000014405.1,tpiA,Triosephosphate isomerase,537162,537921,1,scaffold_1,563,CDS,11,GCA_000014405.1__arts_core__TIGR00419,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00422__1__651,TIGR00422,GCA_000014405.1,valS,Valine--tRNA ligase,611092,613732,1,scaffold_1,651,CDS,11,GCA_000014405.1__arts_core__TIGR00422,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00431__1__1209,TIGR00431,GCA_000014405.1,truB,tRNA pseudouridine synthase B,1151567,1152464,-1,scaffold_1,1209,CDS,11,GCA_000014405.1__arts_core__TIGR00431,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00435__1__1519,TIGR00435,GCA_000014405.1,cysS,Cysteine--tRNA ligase,1447665,1449090,-1,scaffold_1,1519,CDS,11,GCA_000014405.1__arts_core__TIGR00435,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00442__1__802,TIGR00442,GCA_000014405.1,hisS,Histidine--tRNA ligase,770181,771468,1,scaffold_1,802,CDS,11,GCA_000014405.1__arts_core__TIGR00442,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00447__1__318,TIGR00447,GCA_000014405.1,pth,Peptidyl-tRNA hydrolase,305103,305661,1,scaffold_1,318,CDS,11,GCA_000014405.1__arts_core__TIGR00447,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00456__1__729,TIGR00456,GCA_000014405.1,argS,Arginine--tRNA ligase,693342,695040,1,scaffold_1,729,CDS,11,GCA_000014405.1__arts_core__TIGR00456,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00459__1__803,TIGR00459,GCA_000014405.1,aspS,Aspartate--tRNA ligase,771483,773328,1,scaffold_1,803,CDS,11,GCA_000014405.1__arts_core__TIGR00459,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00464__1__1523,TIGR00464,GCA_000014405.1,gltX,Glutamate--tRNA ligase,1452453,1453956,-1,scaffold_1,1523,CDS,11,GCA_000014405.1__arts_core__TIGR00464,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00468__1__1353,TIGR00468,GCA_000014405.1,pheS,Phenylalanine--tRNA ligase alpha subunit,1297693,1298743,-1,scaffold_1,1353,CDS,11,GCA_000014405.1__arts_core__TIGR00468,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00472__1__1352,TIGR00472,GCA_000014405.1,pheT,Phenylalanine--tRNA ligase beta subunit,1295282,1297694,-1,scaffold_1,1352,CDS,11,GCA_000014405.1__arts_core__TIGR00472,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00479__1__417,TIGR00479,GCA_000014405.1,-,putative RNA methyltransferase,394896,396252,1,scaffold_1,417,CDS,11,GCA_000014405.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00479__1__495,TIGR00479,GCA_000014405.1,rlmCD,23S rRNA (uracil-C(5))-methyltransferase RlmCD,471345,472728,-1,scaffold_1,495,CDS,11,GCA_000014405.1__arts_core__TIGR00479,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00481__1__387,TIGR00481,GCA_000014405.1,-,hypothetical protein,363902,364394,1,scaffold_1,387,CDS,11,GCA_000014405.1__arts_core__TIGR00481,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00484__1__346,TIGR00484,GCA_000014405.1,fusA,Elongation factor G,338694,340779,1,scaffold_1,346,CDS,11,GCA_000014405.1__arts_core__TIGR00484,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00485__1__701,TIGR00485,GCA_000014405.1,tuf,Elongation factor Tu,661593,662784,1,scaffold_1,701,CDS,11,GCA_000014405.1__arts_core__TIGR00485,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00486__1__1102,TIGR00486,GCA_000014405.1,-,GTP cyclohydrolase 1 type 2,1040156,1040954,-1,scaffold_1,1102,CDS,11,GCA_000014405.1__arts_core__TIGR00486,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00487__1__1211,TIGR00487,GCA_000014405.1,infB,Translation initiation factor IF-2,1152889,1155367,-1,scaffold_1,1211,CDS,11,GCA_000014405.1__arts_core__TIGR00487,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00496__1__1221,TIGR00496,GCA_000014405.1,frr,Ribosome-recycling factor,1166698,1167256,-1,scaffold_1,1221,CDS,11,GCA_000014405.1__arts_core__TIGR00496,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00499__1__329,TIGR00499,GCA_000014405.1,lysS,Lysine--tRNA ligase,319385,320891,1,scaffold_1,329,CDS,11,GCA_000014405.1__arts_core__TIGR00499,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00500__1__490,TIGR00500,GCA_000014405.1,map,Methionine aminopeptidase 1,466755,467583,1,scaffold_1,490,CDS,11,GCA_000014405.1__arts_core__TIGR00500,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00504__1__1066,TIGR00504,GCA_000014405.1,pcp,Pyrrolidone-carboxylate peptidase,1003615,1004227,-1,scaffold_1,1066,CDS,11,GCA_000014405.1__arts_core__TIGR00504,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00521__1__731,TIGR00521,GCA_000014405.1,coaBC,Coenzyme A biosynthesis bifunctional protein CoaBC,695744,696944,1,scaffold_1,731,CDS,11,GCA_000014405.1__arts_core__TIGR00521,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00525__1__205,TIGR00525,GCA_000014405.1,folB,Dihydroneopterin aldolase,201885,202233,1,scaffold_1,205,CDS,11,GCA_000014405.1__arts_core__TIGR00525,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00544__1__542,TIGR00544,GCA_000014405.1,lgt,Phosphatidylglycerol--prolipoprotein diacylglyceryl transferase,515761,516595,1,scaffold_1,542,CDS,11,GCA_000014405.1__arts_core__TIGR00544,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00560__1__529,TIGR00560,GCA_000014405.1,pgsA,CDP-diacylglycerol--glycerol-3-phosphate 3-phosphatidyltransferase,502423,502987,1,scaffold_1,529,CDS,11,GCA_000014405.1__arts_core__TIGR00560,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00563__1__1281,TIGR00563,GCA_000014405.1,rsmB,Ribosomal RNA small subunit methyltransferase B,1226727,1228044,-1,scaffold_1,1281,CDS,11,GCA_000014405.1__arts_core__TIGR00563,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00575__1__410,TIGR00575,GCA_000014405.1,ligA,DNA ligase,386796,388812,1,scaffold_1,410,CDS,11,GCA_000014405.1__arts_core__TIGR00575,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00577__1__1375,TIGR00577,GCA_000014405.1,mutM,Formamidopyrimidine-DNA glycosylase,1317474,1318296,-1,scaffold_1,1375,CDS,11,GCA_000014405.1__arts_core__TIGR00577,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00580__1__319,TIGR00580,GCA_000014405.1,mfd,Transcription-repair-coupling factor,305677,309154,1,scaffold_1,319,CDS,11,GCA_000014405.1__arts_core__TIGR00580,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00593__1__1376,TIGR00593,GCA_000014405.1,polA,DNA polymerase I,1318306,1320967,-1,scaffold_1,1376,CDS,11,GCA_000014405.1__arts_core__TIGR00593,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00595__1__1283,TIGR00595,GCA_000014405.1,priA,Primosomal protein N,1228998,1231380,-1,scaffold_1,1283,CDS,11,GCA_000014405.1__arts_core__TIGR00595,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00613__1__1141,TIGR00613,GCA_000014405.1,recO,DNA repair protein RecO,1077778,1078528,-1,scaffold_1,1141,CDS,11,GCA_000014405.1__arts_core__TIGR00613,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00615__1__1480,TIGR00615,GCA_000014405.1,recR,Recombination protein RecR,1417880,1418480,-1,scaffold_1,1480,CDS,11,GCA_000014405.1__arts_core__TIGR00615,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00630__1__546,TIGR00630,GCA_000014405.1,uvrA,UvrABC system protein A,520773,523629,1,scaffold_1,546,CDS,11,GCA_000014405.1__arts_core__TIGR00630,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00631__1__545,TIGR00631,GCA_000014405.1,uvrB_2,UvrABC system protein B,518741,520784,1,scaffold_1,545,CDS,11,GCA_000014405.1__arts_core__TIGR00631,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00635__1__1460,TIGR00635,GCA_000014405.1,ruvB_1,Holliday junction ATP-dependent DNA helicase RuvB,1398875,1399886,-1,scaffold_1,1460,CDS,11,GCA_000014405.1__arts_core__TIGR00635,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00643__1__1269,TIGR00643,GCA_000014405.1,recG,ATP-dependent DNA helicase RecG,1214789,1216829,-1,scaffold_1,1269,CDS,11,GCA_000014405.1__arts_core__TIGR00643,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00647__1__554,TIGR00647,GCA_000014405.1,whiA,putative cell division protein WhiA,528282,529215,1,scaffold_1,554,CDS,11,GCA_000014405.1__arts_core__TIGR00647,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00651__1__568,TIGR00651,GCA_000014405.1,pta,Phosphate acetyltransferase,541222,542212,1,scaffold_1,568,CDS,11,GCA_000014405.1__arts_core__TIGR00651,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00653__1__1338,TIGR00653,GCA_000014405.1,glnA,Glutamine synthetase,1282275,1283613,-1,scaffold_1,1338,CDS,11,GCA_000014405.1__arts_core__TIGR00653,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00663__1__2,TIGR00663,GCA_000014405.1,dnaN,Beta sliding clamp,1649,2777,1,scaffold_1,2,CDS,11,GCA_000014405.1__arts_core__TIGR00663,False,False,True,,TIGR00663,5.4e-93,308.6,cog,cog0592,,,,, +GCA_000014405.1__TIGR00665__1__12,TIGR00665,GCA_000014405.1,dnaC,Replicative DNA helicase,12857,14228,1,scaffold_1,12,CDS,11,GCA_000014405.1__arts_core__TIGR00665,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00690__1__1284,TIGR00690,GCA_000014405.1,rpoZ,DNA-directed RNA polymerase subunit omega,1231442,1231664,-1,scaffold_1,1284,CDS,11,GCA_000014405.1__arts_core__TIGR00690,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00732__1__1161,TIGR00732,GCA_000014405.1,dprA,DNA processing protein DprA,1097075,1097915,-1,scaffold_1,1161,CDS,11,GCA_000014405.1__arts_core__TIGR00732,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00753__1__518,TIGR00753,GCA_000014405.1,uppP,Undecaprenyl-diphosphatase,491017,491845,-1,scaffold_1,518,CDS,11,GCA_000014405.1__arts_core__TIGR00753,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00755__1__301,TIGR00755,GCA_000014405.1,rsmA,Ribosomal RNA small subunit methyltransferase A,287831,288722,1,scaffold_1,301,CDS,11,GCA_000014405.1__arts_core__TIGR00755,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__1165,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,1099937,1100783,-1,scaffold_1,1165,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__1178,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,1112053,1112890,-1,scaffold_1,1178,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__62,TIGR00762,GCA_000014405.1,-,DegV domain-containing protein,60901,61699,1,scaffold_1,62,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00762__1__913,TIGR00762,BAA-365,degV,Protein DegV,877054,877936,1,scaffold_1,913,CDS,11,GCA_000014405.1__arts_core__TIGR00762,True,False,False,GCA_000014405.1__arts_dup__TIGR00762,,,,,,,,,, +GCA_000014405.1__TIGR00810__1__1652,TIGR00810,GCA_000014405.1,secG,putative protein-export membrane protein SecG,1578795,1579029,-1,scaffold_1,1652,CDS,11,GCA_000014405.1__arts_core__TIGR00810,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00855__1__1499,TIGR00855,GCA_000014405.1,rplL,50S ribosomal protein L7/L12,1434122,1434488,-1,scaffold_1,1499,CDS,11,GCA_000014405.1__arts_core__TIGR00855,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00871__1__1458,TIGR00871,GCA_000014405.1,zwf,Glucose-6-phosphate 1-dehydrogenase,1396850,1398299,-1,scaffold_1,1458,CDS,11,GCA_000014405.1__arts_core__TIGR00871,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00877__1__1305,TIGR00877,GCA_000014405.1,purD,Phosphoribosylamine--glycine ligase,1245100,1246366,-1,scaffold_1,1305,CDS,11,GCA_000014405.1__arts_core__TIGR00877,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00878__1__1308,TIGR00878,GCA_000014405.1,purM,Phosphoribosylformylglycinamidine cyclo-ligase,1248504,1249554,-1,scaffold_1,1308,CDS,11,GCA_000014405.1__arts_core__TIGR00878,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00922__1__1508,TIGR00922,GCA_000014405.1,nusG,Transcription termination/antitermination protein NusG,1441710,1442265,-1,scaffold_1,1508,CDS,11,GCA_000014405.1__arts_core__TIGR00922,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00952__1__698,TIGR00952,GCA_000014405.1,rpsO,30S ribosomal protein S15,658275,658545,1,scaffold_1,698,CDS,11,GCA_000014405.1__arts_core__TIGR00952,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR00959__1__1252,TIGR00959,GCA_000014405.1,ffh,Signal recognition particle protein,1196476,1197907,-1,scaffold_1,1252,CDS,11,GCA_000014405.1__arts_core__TIGR00959,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00962__1__633,TIGR00962,GCA_000014405.1,atpA,ATP synthase subunit alpha,594408,595920,1,scaffold_1,633,CDS,11,GCA_000014405.1__arts_core__TIGR00962,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00963__1__538,TIGR00963,GCA_000014405.1,secA,Protein translocase subunit SecA,510907,513310,1,scaffold_1,538,CDS,11,GCA_000014405.1__arts_core__TIGR00963,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00964__1__1509,TIGR00964,GCA_000014405.1,secE,Protein translocase subunit SecE,1442356,1442527,-1,scaffold_1,1509,CDS,11,GCA_000014405.1__arts_core__TIGR00964,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00967__1__367,TIGR00967,GCA_000014405.1,secY,Protein translocase subunit SecY,350152,351448,1,scaffold_1,367,CDS,11,GCA_000014405.1__arts_core__TIGR00967,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR00981__1__344,TIGR00981,GCA_000014405.1,rpsL,30S ribosomal protein S12,337767,338175,1,scaffold_1,344,CDS,11,GCA_000014405.1__arts_core__TIGR00981,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01009__1__354,TIGR01009,GCA_000014405.1,rpsC,30S ribosomal protein S3,344600,345272,1,scaffold_1,354,CDS,11,GCA_000014405.1__arts_core__TIGR01009,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01011__1__1224,TIGR01011,GCA_000014405.1,rpsB,30S ribosomal protein S2,1169221,1169983,-1,scaffold_1,1224,CDS,11,GCA_000014405.1__arts_core__TIGR01011,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01017__1__646,TIGR01017,GCA_000014405.1,rpsD,30S ribosomal protein S4,605018,605630,-1,scaffold_1,646,CDS,11,GCA_000014405.1__arts_core__TIGR01017,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01021__1__364,TIGR01021,GCA_000014405.1,rpsE,30S ribosomal protein S5,348982,349495,1,scaffold_1,364,CDS,11,GCA_000014405.1__arts_core__TIGR01021,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01023__1__1345,TIGR01023,GCA_000014405.1,rpmGA,50S ribosomal protein L33 1,1287992,1288142,-1,scaffold_1,1345,CDS,11,GCA_000014405.1__arts_core__TIGR01023,True,True,False,GCA_000014405.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000014405.1__TIGR01023__1__1510,TIGR01023,BAA-365,rpmG3,50S ribosomal protein L33 3,1442533,1442683,-1,scaffold_1,1510,CDS,11,GCA_000014405.1__arts_core__TIGR01023,True,True,False,GCA_000014405.1__arts_dup__TIGR01023,,,,,,,,,, +GCA_000014405.1__TIGR01024__1__1243,TIGR01024,GCA_000014405.1,rplS,50S ribosomal protein L19,1191568,1191916,-1,scaffold_1,1243,CDS,11,GCA_000014405.1__arts_core__TIGR01024,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01029__1__345,TIGR01029,GCA_000014405.1,rpsG,30S ribosomal protein S7,338190,338661,1,scaffold_1,345,CDS,11,GCA_000014405.1__arts_core__TIGR01029,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01030__1__1947,TIGR01030,GCA_000014405.1,rpmH,50S ribosomal protein L34,1856438,1856579,-1,scaffold_1,1947,CDS,11,GCA_000014405.1__arts_core__TIGR01030,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01031__1__742,TIGR01031,GCA_000014405.1,rpmF,50S ribosomal protein L32,709183,709375,1,scaffold_1,742,CDS,11,GCA_000014405.1__arts_core__TIGR01031,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01032__1__1366,TIGR01032,GCA_000014405.1,rplT,50S ribosomal protein L20,1308701,1309058,-1,scaffold_1,1366,CDS,11,GCA_000014405.1__arts_core__TIGR01032,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01034__1__1428,TIGR01034,GCA_000014405.1,metK,S-adenosylmethionine synthase,1368110,1369307,-1,scaffold_1,1428,CDS,11,GCA_000014405.1__arts_core__TIGR01034,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01039__1__635,TIGR01039,GCA_000014405.1,atpD,ATP synthase subunit beta,596912,598352,1,scaffold_1,635,CDS,11,GCA_000014405.1__arts_core__TIGR01039,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01044__1__353,TIGR01044,GCA_000014405.1,rplV,50S ribosomal protein L22,344233,344587,1,scaffold_1,353,CDS,11,GCA_000014405.1__arts_core__TIGR01044,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01049__1__347,TIGR01049,GCA_000014405.1,rpsJ,30S ribosomal protein S10,341165,341474,1,scaffold_1,347,CDS,11,GCA_000014405.1__arts_core__TIGR01049,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01050__1__352,TIGR01050,GCA_000014405.1,rpsS,30S ribosomal protein S19,343936,344212,1,scaffold_1,352,CDS,11,GCA_000014405.1__arts_core__TIGR01050,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01051__1__1160,TIGR01051,GCA_000014405.1,topA,DNA topoisomerase 1,1094771,1096949,-1,scaffold_1,1160,CDS,11,GCA_000014405.1__arts_core__TIGR01051,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01059__1__5,TIGR01059,GCA_000014405.1,gyrB,DNA gyrase subunit B,4360,6322,1,scaffold_1,5,CDS,11,GCA_000014405.1__arts_core__TIGR01059,False,False,True,,,,,,,,,,, +GCA_000014405.1__TIGR01060__1__1179,TIGR01060,GCA_000014405.1,eno,Enolase,1113196,1114474,1,scaffold_1,1179,CDS,11,GCA_000014405.1__arts_core__TIGR01060,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01063__1__6,TIGR01063,GCA_000014405.1,gyrA,DNA gyrase subunit A,6334,8806,1,scaffold_1,6,CDS,11,GCA_000014405.1__arts_core__TIGR01063,False,False,True,,,,,,,,,,, +GCA_000014405.1__TIGR01064__1__754,TIGR01064,GCA_000014405.1,pyk,Pyruvate kinase,720930,722700,1,scaffold_1,754,CDS,11,GCA_000014405.1__arts_core__TIGR01064,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01066__1__378,TIGR01066,GCA_000014405.1,rplM,50S ribosomal protein L13,358283,358727,1,scaffold_1,378,CDS,11,GCA_000014405.1__arts_core__TIGR01066,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01067__1__358,TIGR01067,GCA_000014405.1,rplN,50S ribosomal protein L14,346217,346586,1,scaffold_1,358,CDS,11,GCA_000014405.1__arts_core__TIGR01067,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01071__1__366,TIGR01071,GCA_000014405.1,rplO,50S ribosomal protein L15,349712,350153,1,scaffold_1,366,CDS,11,GCA_000014405.1__arts_core__TIGR01071,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01072__1__311,TIGR01072,GCA_000014405.1,murA1,UDP-N-acetylglucosamine 1-carboxyvinyltransferase,297944,299216,1,scaffold_1,311,CDS,11,GCA_000014405.1__arts_core__TIGR01072,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01073__1__409,TIGR01073,GCA_000014405.1,pcrA,ATP-dependent DNA helicase PcrA,384524,386786,1,scaffold_1,409,CDS,11,GCA_000014405.1__arts_core__TIGR01073,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01079__1__359,TIGR01079,GCA_000014405.1,rplX,50S ribosomal protein L24,346602,346842,1,scaffold_1,359,CDS,11,GCA_000014405.1__arts_core__TIGR01079,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01082__1__1384,TIGR01082,GCA_000014405.1,murC,UDP-N-acetylmuramate--L-alanine ligase,1325319,1326639,-1,scaffold_1,1384,CDS,11,GCA_000014405.1__arts_core__TIGR01082,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01083__1__891,TIGR01083,GCA_000014405.1,pdg,Ultraviolet N-glycosylase/AP lyase,852783,853413,1,scaffold_1,891,CDS,11,GCA_000014405.1__arts_core__TIGR01083,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01087__1__665,TIGR01087,GCA_000014405.1,murD,UDP-N-acetylmuramoylalanine--D-glutamate ligase,624539,625922,1,scaffold_1,665,CDS,11,GCA_000014405.1__arts_core__TIGR01087,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01091__1__628,TIGR01091,GCA_000014405.1,upp,Uracil phosphoribosyltransferase,591582,592212,1,scaffold_1,628,CDS,11,GCA_000014405.1__arts_core__TIGR01091,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01128__1__696,TIGR01128,GCA_000014405.1,yqeN,putative protein YqeN,656738,657728,1,scaffold_1,696,CDS,11,GCA_000014405.1__arts_core__TIGR01128,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01131__1__629,TIGR01131,GCA_000014405.1,atpB,ATP synthase subunit a,592321,593041,1,scaffold_1,629,CDS,11,GCA_000014405.1__arts_core__TIGR01131,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01134__1__1309,TIGR01134,GCA_000014405.1,purF,Amidophosphoribosyltransferase,1249550,1251029,-1,scaffold_1,1309,CDS,11,GCA_000014405.1__arts_core__TIGR01134,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01135__1__434,TIGR01135,GCA_000014405.1,glmS,Glutamine--fructose-6-phosphate aminotransferase [isomerizing],408973,410785,1,scaffold_1,434,CDS,11,GCA_000014405.1__arts_core__TIGR01135,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01144__1__631,TIGR01144,GCA_000014405.1,atpF,ATP synthase subunit b,593337,593844,1,scaffold_1,631,CDS,11,GCA_000014405.1__arts_core__TIGR01144,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01145__1__632,TIGR01145,GCA_000014405.1,atpH_2,ATP synthase subunit delta,593843,594386,1,scaffold_1,632,CDS,11,GCA_000014405.1__arts_core__TIGR01145,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01146__1__634,TIGR01146,GCA_000014405.1,atpG,ATP synthase gamma chain,595930,596893,1,scaffold_1,634,CDS,11,GCA_000014405.1__arts_core__TIGR01146,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01161__1__1315,TIGR01161,GCA_000014405.1,purK,N5-carboxyaminoimidazole ribonucleotide synthase,1256538,1257663,-1,scaffold_1,1315,CDS,11,GCA_000014405.1__arts_core__TIGR01161,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01162__1__1316,TIGR01162,GCA_000014405.1,purE,N5-carboxyaminoimidazole ribonucleotide mutase,1257652,1258144,-1,scaffold_1,1316,CDS,11,GCA_000014405.1__arts_core__TIGR01162,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01163__1__466,TIGR01163,GCA_000014405.1,rpe,Ribulose-phosphate 3-epimerase,441730,442381,1,scaffold_1,466,CDS,11,GCA_000014405.1__arts_core__TIGR01163,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01164__1__355,TIGR01164,GCA_000014405.1,rplP,50S ribosomal protein L16,345271,345715,1,scaffold_1,355,CDS,11,GCA_000014405.1__arts_core__TIGR01164,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01169__1__1506,TIGR01169,GCA_000014405.1,rplA,50S ribosomal protein L1,1440380,1441076,-1,scaffold_1,1506,CDS,11,GCA_000014405.1__arts_core__TIGR01169,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01171__1__351,TIGR01171,GCA_000014405.1,rplB,50S ribosomal protein L2,343082,343919,1,scaffold_1,351,CDS,11,GCA_000014405.1__arts_core__TIGR01171,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01216__1__636,TIGR01216,GCA_000014405.1,atpC,ATP synthase epsilon chain,598363,598804,1,scaffold_1,636,CDS,11,GCA_000014405.1__arts_core__TIGR01216,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01260__1__630,TIGR01260,GCA_000014405.1,atpH_1,ATP synthase subunit c,593059,593284,1,scaffold_1,630,CDS,11,GCA_000014405.1__arts_core__TIGR01260,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01280__1__1293,TIGR01280,GCA_000014405.1,xseB,Exodeoxyribonuclease 7 small subunit,1237296,1237536,-1,scaffold_1,1293,CDS,11,GCA_000014405.1__arts_core__TIGR01280,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01308__1__365,TIGR01308,GCA_000014405.1,rpmD,50S ribosomal protein L30,349506,349692,1,scaffold_1,365,CDS,11,GCA_000014405.1__arts_core__TIGR01308,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01311__1__1855,TIGR01311,GCA_000014405.1,glpK,Glycerol kinase,1763684,1765193,-1,scaffold_1,1855,CDS,11,GCA_000014405.1__arts_core__TIGR01311,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__1007,TIGR01369,BAA-365,carB_6,Carbamoyl-phosphate synthase large chain,949153,951835,1,scaffold_1,1007,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__1862,TIGR01369,BAA-365,carB_7,Carbamoyl-phosphate synthase large chain,1772322,1775511,-1,scaffold_1,1862,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01369__1__952,TIGR01369,BAA-365,carB_3,Carbamoyl-phosphate synthase large chain,907582,910264,-1,scaffold_1,952,CDS,11,GCA_000014405.1__arts_core__TIGR01369,True,True,False,GCA_000014405.1__arts_dup__TIGR01369,,,,,,,,,, +GCA_000014405.1__TIGR01378__1__1277,TIGR01378,GCA_000014405.1,thiN,Thiamine pyrophosphokinase,1222363,1223047,-1,scaffold_1,1277,CDS,11,GCA_000014405.1__arts_core__TIGR01378,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01389__1__735,TIGR01389,GCA_000014405.1,recQ,ATP-dependent DNA helicase RecQ,699072,700842,1,scaffold_1,735,CDS,11,GCA_000014405.1__arts_core__TIGR01389,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01391__1__1138,TIGR01391,GCA_000014405.1,dnaG,DNA primase,1072673,1074512,-1,scaffold_1,1138,CDS,11,GCA_000014405.1__arts_core__TIGR01391,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01393__1__1196,TIGR01393,GCA_000014405.1,lepA,Elongation factor 4,1131704,1133543,-1,scaffold_1,1196,CDS,11,GCA_000014405.1__arts_core__TIGR01393,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01417__1__508,TIGR01417,GCA_000014405.1,ptsI,Phosphoenolpyruvate-protein phosphotransferase,482775,484503,1,scaffold_1,508,CDS,11,GCA_000014405.1__arts_core__TIGR01417,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01430__1__1330,TIGR01430,GCA_000014405.1,add,Adenosine deaminase,1275359,1276352,-1,scaffold_1,1330,CDS,11,GCA_000014405.1__arts_core__TIGR01430,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01448__1__683,TIGR01448,GCA_000014405.1,recD2,ATP-dependent RecD-like DNA helicase,641234,643625,1,scaffold_1,683,CDS,11,GCA_000014405.1__arts_core__TIGR01448,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01455__1__578,TIGR01455,GCA_000014405.1,glmM,Phosphoglucosamine mutase,550001,551354,1,scaffold_1,578,CDS,11,GCA_000014405.1__arts_core__TIGR01455,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01496__1__208,TIGR01496,GCA_000014405.1,-,hypothetical protein,204616,205708,1,scaffold_1,208,CDS,11,GCA_000014405.1__arts_core__TIGR01496,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01498__1__206,TIGR01498,GCA_000014405.1,folE,GTP cyclohydrolase 1,202232,203306,1,scaffold_1,206,CDS,11,GCA_000014405.1__arts_core__TIGR01498,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01513__1__278,TIGR01513,GCA_000014405.1,pncB,Nicotinate phosphoribosyltransferase,267253,268777,-1,scaffold_1,278,CDS,11,GCA_000014405.1__arts_core__TIGR01513,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01534__1__561,TIGR01534,GCA_000014405.1,gap,Glyceraldehyde-3-phosphate dehydrogenase,534819,535836,1,scaffold_1,561,CDS,11,GCA_000014405.1__arts_core__TIGR01534,False,True,True,,,,,,,,,,, +GCA_000014405.1__TIGR01632__1__1507,TIGR01632,GCA_000014405.1,rplK,50S ribosomal protein L11,1441159,1441585,-1,scaffold_1,1507,CDS,11,GCA_000014405.1__arts_core__TIGR01632,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01736__1__1310,TIGR01736,GCA_000014405.1,purL,Phosphoribosylformylglycinamidine synthase subunit PurL,1251004,1253227,-1,scaffold_1,1310,CDS,11,GCA_000014405.1__arts_core__TIGR01736,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01771__1__99,TIGR01771,GCA_000014405.1,ldh,L-lactate dehydrogenase,95006,95930,-1,scaffold_1,99,CDS,11,GCA_000014405.1__arts_core__TIGR01771,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01951__1__1296,TIGR01951,GCA_000014405.1,nusB,Transcription antitermination protein NusB,1239795,1240164,-1,scaffold_1,1296,CDS,11,GCA_000014405.1__arts_core__TIGR01951,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01953__1__1214,TIGR01953,GCA_000014405.1,nusA,Transcription termination/antitermination protein NusA,1155991,1157212,-1,scaffold_1,1214,CDS,11,GCA_000014405.1__arts_core__TIGR01953,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR01980__1__1635,TIGR01980,GCA_000014405.1,-,hypothetical protein,1565302,1566730,-1,scaffold_1,1635,CDS,11,GCA_000014405.1__arts_core__TIGR01980,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01981__1__1638,TIGR01981,GCA_000014405.1,-,hypothetical protein,1568352,1569516,-1,scaffold_1,1638,CDS,11,GCA_000014405.1__arts_core__TIGR01981,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR01994__1__1636,TIGR01994,GCA_000014405.1,iscU,Iron-sulfur cluster assembly scaffold protein IscU,1566730,1567171,-1,scaffold_1,1636,CDS,11,GCA_000014405.1__arts_core__TIGR01994,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02012__1__530,TIGR02012,GCA_000014405.1,recA,Protein RecA,503192,504302,1,scaffold_1,530,CDS,11,GCA_000014405.1__arts_core__TIGR02012,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02013__1__339,TIGR02013,GCA_000014405.1,rpoB,DNA-directed RNA polymerase subunit beta,329068,332743,1,scaffold_1,339,CDS,11,GCA_000014405.1__arts_core__TIGR02013,False,False,True,,TIGR02013,0.0,1683.5,cog,cog0085,,,,, +GCA_000014405.1__TIGR02027__1__372,TIGR02027,GCA_000014405.1,rpoA,DNA-directed RNA polymerase subunit alpha,353377,354316,1,scaffold_1,372,CDS,11,GCA_000014405.1__arts_core__TIGR02027,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02191__1__1259,TIGR02191,GCA_000014405.1,rnc,Ribonuclease 3,1204657,1205353,-1,scaffold_1,1259,CDS,11,GCA_000014405.1__arts_core__TIGR02191,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02225__1__759,TIGR02225,GCA_000014405.1,xerD_1,Tyrosine recombinase XerD,725125,726022,1,scaffold_1,759,CDS,11,GCA_000014405.1__arts_core__TIGR02225,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02227__1__1099,TIGR02227,GCA_000014405.1,spsB,Signal peptidase IB,1037661,1038228,1,scaffold_1,1099,CDS,11,GCA_000014405.1__arts_core__TIGR02227,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02273__1__1250,TIGR02273,GCA_000014405.1,rimM,Ribosome maturation factor RimM,1195544,1196048,-1,scaffold_1,1250,CDS,11,GCA_000014405.1__arts_core__TIGR02273,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02348__1__1464,TIGR02348,GCA_000014405.1,groL,60 kDa chaperonin,1405172,1406786,-1,scaffold_1,1464,CDS,11,GCA_000014405.1__arts_core__TIGR02348,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02349__1__1197,TIGR02349,GCA_000014405.1,dnaJ,Chaperone protein DnaJ,1133664,1134801,-1,scaffold_1,1197,CDS,11,GCA_000014405.1__arts_core__TIGR02349,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02350__1__1198,TIGR02350,GCA_000014405.1,dnaK,Chaperone protein DnaK,1134883,1136728,-1,scaffold_1,1198,CDS,11,GCA_000014405.1__arts_core__TIGR02350,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02386__1__340,TIGR02386,GCA_000014405.1,rpoC,DNA-directed RNA polymerase subunit beta,332759,336425,1,scaffold_1,340,CDS,11,GCA_000014405.1__arts_core__TIGR02386,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02393__1__1137,TIGR02393,GCA_000014405.1,sigA_2,RNA polymerase sigma factor SigA,1071583,1072702,-1,scaffold_1,1137,CDS,11,GCA_000014405.1__arts_core__TIGR02393,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02487__1__181,TIGR02487,GCA_000014405.1,nrdD,Anaerobic ribonucleoside-triphosphate reductase,176021,178232,1,scaffold_1,181,CDS,11,GCA_000014405.1__arts_core__TIGR02487,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR02727__1__1344,TIGR02727,GCA_000014405.1,-,hypothetical protein,1287365,1287938,-1,scaffold_1,1344,CDS,11,GCA_000014405.1__arts_core__TIGR02727,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR02729__1__738,TIGR02729,GCA_000014405.1,obg,GTPase Obg,704049,705303,1,scaffold_1,738,CDS,11,GCA_000014405.1__arts_core__TIGR02729,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03156__1__1776,TIGR03156,GCA_000014405.1,hflX,GTPase HflX,1690374,1691655,1,scaffold_1,1776,CDS,11,GCA_000014405.1__arts_core__TIGR03156,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03263__1__1285,TIGR03263,GCA_000014405.1,gmk_1,Guanylate kinase,1231665,1232280,-1,scaffold_1,1285,CDS,11,GCA_000014405.1__arts_core__TIGR03263,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03284__1__712,TIGR03284,GCA_000014405.1,thyA,Thymidylate synthase,672440,673397,1,scaffold_1,712,CDS,11,GCA_000014405.1__arts_core__TIGR03284,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03534__1__626,TIGR03534,GCA_000014405.1,prmC,Release factor glutamine methyltransferase,589645,590488,1,scaffold_1,626,CDS,11,GCA_000014405.1__arts_core__TIGR03534,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03594__1__768,TIGR03594,GCA_000014405.1,der,GTPase Der,731954,733262,1,scaffold_1,768,CDS,11,GCA_000014405.1__arts_core__TIGR03594,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03625__1__348,TIGR03625,GCA_000014405.1,rplC,50S ribosomal protein L3,341499,342129,1,scaffold_1,348,CDS,11,GCA_000014405.1__arts_core__TIGR03625,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03631__1__370,TIGR03631,GCA_000014405.1,rpsM,30S ribosomal protein S13,352565,352916,1,scaffold_1,370,CDS,11,GCA_000014405.1__arts_core__TIGR03631,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03632__1__371,TIGR03632,GCA_000014405.1,rpsK,30S ribosomal protein S11,352944,353334,1,scaffold_1,371,CDS,11,GCA_000014405.1__arts_core__TIGR03632,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03635__1__357,TIGR03635,GCA_000014405.1,rpsQ,30S ribosomal protein S17,345920,346187,1,scaffold_1,357,CDS,11,GCA_000014405.1__arts_core__TIGR03635,False,False,False,,,,,,,,,,, +GCA_000014405.1__TIGR03654__1__362,TIGR03654,GCA_000014405.1,rplF,50S ribosomal protein L6,348049,348580,1,scaffold_1,362,CDS,11,GCA_000014405.1__arts_core__TIGR03654,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03705__1__459,TIGR03705,GCA_000014405.1,ppk,Polyphosphate kinase,435131,437297,1,scaffold_1,459,CDS,11,GCA_000014405.1__arts_core__TIGR03705,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03725__1__1470,TIGR03725,GCA_000014405.1,tsaB,tRNA threonylcarbamoyladenosine biosynthesis protein TsaB,1411780,1412503,-1,scaffold_1,1470,CDS,11,GCA_000014405.1__arts_core__TIGR03725,False,True,False,,,,,,,,,,, +GCA_000014405.1__TIGR03953__1__349,TIGR03953,GCA_000014405.1,rplD,50S ribosomal protein L4,342143,342761,1,scaffold_1,349,CDS,11,GCA_000014405.1__arts_core__TIGR03953,False,True,False,,,,,,,,,,, diff --git a/.tests/unit/arts_knownhits_combine/data/config/config.yaml b/.tests/unit/arts_knownhits_combine/data/config/config.yaml new file mode 100644 index 00000000..4e4e5f54 --- /dev/null +++ b/.tests/unit/arts_knownhits_combine/data/config/config.yaml @@ -0,0 +1,64 @@ +# This file should contain everything to configure the workflow on a global scale. + +#### PROJECT INFORMATION #### +# This section control your project configuration. +# Each project are separated by "-". +# A project can be defined as (1) a yaml object or (2) a Portable Encapsulated Project (PEP) file. +# (1) To define project as a yaml object, it must contain the variable "name" and "samples". +# - name : name of your project +# - samples : a csv file containing a list of genome ids for analysis with multiple sources mentioned. Genome ids must be unique. +# - rules: a yaml file containing project rule configurations. This will override global rule configuration. +# - prokka-db (optional): list of the custom accessions to use as prokka reference database. +# - gtdb-tax (optional): output summary file of GTDB-tk with "user_genome" and "classification" as the two minimum columns +# (2) To define project using PEP file, only variable "name" should be given that points to the location of the PEP yaml file. +# - pep: path to PEP .yaml file. See project example_pep for details. +# PS: the variable pep and name is an alias + +projects: +# Project 1 (yaml object) + - name: config/lactobacillus_delbruecki/project_config.yaml + +bgc_projects: + - pep: config/lanthipeptide/project_config.yaml + +#### GLOBAL RULE CONFIGURATION #### +# This section configures the rules to run globally. +# Use project specific rule configurations if you want to run different rules for each projects. +# pipelines or rules: set value to TRUE if you want to run the analysis or FALSE if you don't +pipelines: + seqfu: FALSE + mash: FALSE + fastani: FALSE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: FALSE + antismash: TRUE + query-bigslice: FALSE + bigscape: FALSE + bigslice: FALSE + automlst-wrapper: FALSE + arts: FALSE + roary: FALSE + eggnog: FALSE + eggnog-roary: FALSE + deeptfactor: FALSE + deeptfactor-roary: FALSE + cblaster-genome: FALSE + cblaster-bgc: FALSE + +#### RESOURCES CONFIGURATION #### +# resources : the location of the resources to run the rule. +# The default location is at "resources/{resource_name}". +resources_path: + antismash_db: resources/antismash_db + eggnog_db: resources/eggnog_db + BiG-SCAPE: resources/BiG-SCAPE + bigslice: resources/bigslice + checkm: resources/checkm + gtdbtk: resources/gtdbtk + #RNAmmer: resources/RNAmmer # If specified, will override Barnapp in Prokka + +rule_parameters: + install_gtdbtk: + release: 214 + release_version: 214 diff --git a/.tests/unit/arts_knownhits_combine/data/config/lactobacillus_delbruecki/project_config.yaml b/.tests/unit/arts_knownhits_combine/data/config/lactobacillus_delbruecki/project_config.yaml new file mode 100644 index 00000000..4f2fb49f --- /dev/null +++ b/.tests/unit/arts_knownhits_combine/data/config/lactobacillus_delbruecki/project_config.yaml @@ -0,0 +1,30 @@ +name: Lactobacillus_delbrueckii + +pep_version: 2.1.0 + +description: "Lactobacillus delbrueckii 27 01 2023" + +sample_table: samples.csv + +#### RULE CONFIGURATION #### +# rules: set value to TRUE if you want to run the analysis or FALSE if you don't +rules: + seqfu: TRUE + mash: TRUE + fastani: TRUE + checkm: FALSE + gtdbtk: FALSE + prokka-gbk: TRUE + antismash: TRUE + query-bigslice: TRUE + bigscape: TRUE + bigslice: TRUE + automlst-wrapper: TRUE + arts: TRUE + roary: TRUE + eggnog: TRUE + eggnog-roary: TRUE + deeptfactor: TRUE + deeptfactor-roary: TRUE + cblaster-genome: TRUE + cblaster-bgc: TRUE diff --git a/.tests/unit/arts_knownhits_combine/data/config/lactobacillus_delbruecki/samples.csv b/.tests/unit/arts_knownhits_combine/data/config/lactobacillus_delbruecki/samples.csv new file mode 100644 index 00000000..4e848e1b --- /dev/null +++ b/.tests/unit/arts_knownhits_combine/data/config/lactobacillus_delbruecki/samples.csv @@ -0,0 +1,5 @@ +genome_id,source,organism,genus,species,strain,closest_placement_reference,input_file +GCA_000056065.1,ncbi,,,,,, +GCA_000182835.1,ncbi,,,,,, +GCA_000191165.1,ncbi,,,,,, +GCA_000014405.1,ncbi,,,,,, diff --git a/.tests/unit/arts_knownhits_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_knownhits.json b/.tests/unit/arts_knownhits_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_knownhits.json new file mode 100644 index 00000000..b4ade409 --- /dev/null +++ b/.tests/unit/arts_knownhits_combine/data/data/interim/arts/antismash-7.0.0/GCA_000014405.1_arts_knownhits.json @@ -0,0 +1,287 @@ +{ + "GCA_000014405.1__RF0007__1__1173": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1173, + "evalue": 1.2e-86, + "bitscore": 288.3, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "1105421", + "stop": "1107194", + "strand": "-1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__RF0007__1__1043": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1043, + "evalue": 9.5e-78, + "bitscore": 258.9, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "986851", + "stop": "988609", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__RF0007__1__1231": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1231, + "evalue": 1.4e-77, + "bitscore": 258.3, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "1176015", + "stop": "1177812", + "strand": "-1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__RF0007__1__1808": { + "model": "RF0007", + "description": "ABC_efflux", + "sequence_id": 1808, + "evalue": 2e-76, + "bitscore": 254.5, + "gid": "cog", + "seqtitle": "cog1132", + "scaffold": "1", + "start": "1721280", + "stop": "1723131", + "strand": "-1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__RF0155__1__1806": { + "model": "RF0155", + "description": "vanS", + "sequence_id": 1806, + "evalue": 3e-74, + "bitscore": 247.0, + "gid": "lcl", + "seqtitle": "1806", + "scaffold": "1", + "start": "1719267", + "stop": "1720476", + "strand": "-1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00044.19__1__561": { + "model": "PF00044.19", + "description": "Gp_dh_N", + "sequence_id": 561, + "evalue": 5.2e-54, + "bitscore": 179.4, + "gid": "lcl", + "seqtitle": "561", + "scaffold": "1", + "start": "534819", + "stop": "535836", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00185.19__1__1865": { + "model": "PF00185.19", + "description": "OTCace", + "sequence_id": 1865, + "evalue": 2.3e-35, + "bitscore": 118.9, + "gid": "lcl", + "seqtitle": "1865", + "scaffold": "1", + "start": "1777865", + "stop": "1778822", + "strand": "-1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00185.19__1__924": { + "model": "PF00185.19", + "description": "OTCace", + "sequence_id": 924, + "evalue": 2.8e-15, + "bitscore": 53.6, + "gid": "lcl", + "seqtitle": "924", + "scaffold": "1", + "start": "885457", + "stop": "885640", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00185.19__1__923": { + "model": "PF00185.19", + "description": "OTCace", + "sequence_id": 923, + "evalue": 1.2e-13, + "bitscore": 48.3, + "gid": "cog", + "seqtitle": "cog0540", + "scaffold": "1", + "start": "885054", + "stop": "885408", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00204.20__1__5": { + "model": "PF00204.20", + "description": "DNA_gyraseB", + "sequence_id": 5, + "evalue": 7.2e-61, + "bitscore": 201.5, + "gid": "cog", + "seqtitle": "cog0187", + "scaffold": "1", + "start": "4360", + "stop": "6322", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00204.20__1__878": { + "model": "PF00204.20", + "description": "DNA_gyraseB", + "sequence_id": 878, + "evalue": 1.1e-52, + "bitscore": 174.9, + "gid": "cog", + "seqtitle": "cog0187", + "scaffold": "1", + "start": "830171", + "stop": "832103", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00227.21__1__1157": { + "model": "PF00227.21", + "description": "Proteasome", + "sequence_id": 1157, + "evalue": 8.2e-23, + "bitscore": 77.8, + "gid": "cog", + "seqtitle": "cog5405", + "scaffold": "1", + "start": "1091791", + "stop": "1092325", + "strand": "-1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00364.17__1__812": { + "model": "PF00364.17", + "description": "Biotin_lipoyl", + "sequence_id": 812, + "evalue": 3.1999999999999997e-25, + "bitscore": 84.7, + "gid": "lcl", + "seqtitle": "812", + "scaffold": "1", + "start": "781657", + "stop": "782140", + "strand": "1", + "genome_id": "GCA_000014405.1", + "known_target": "Yes" + }, + "GCA_000014405.1__PF00521.15__1__6": { + "model": "PF00521.15", + "description": "DNA_topoisoIV", + "sequence_id": 6, + "evalue": 7.3e-157, + 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+GCA_000056065.1__RF0007__1__1189,RF0007,ABC_efflux,1189,1.4e-77,258.3,cog,cog1132,1,1156691,1158488,-1,GCA_000056065.1,Yes +GCA_000056065.1__RF0007__1__1016,RF0007,ABC_efflux,1016,1.5e-77,258.2,cog,cog1132,1,976019,977777,1,GCA_000056065.1,Yes +GCA_000056065.1__RF0007__1__1788,RF0007,ABC_efflux,1788,7.499999999999999e-75,249.3,cog,cog1132,1,1714213,1716058,-1,GCA_000056065.1,Yes +GCA_000056065.1__RF0155__1__1786,RF0155,vanS,1786,3e-74,247.0,lcl,1786,1,1712200,1713409,-1,GCA_000056065.1,Yes +GCA_000056065.1__PF00044.19__1__567,PF00044.19,Gp_dh_N,567,5.299999999999999e-54,179.4,lcl,567,1,540614,541631,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00185.19__1__933,PF00185.19,OTCace,933,1.6999999999999999e-35,119.3,lcl,933,1,898519,899089,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00185.19__1__1845,PF00185.19,OTCace,1845,2.3999999999999999e-35,118.8,lcl,1845,1,1773015,1773972,-1,GCA_000056065.1,Yes +GCA_000056065.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,7.1e-61,201.5,cog,cog0187,1,4578,6540,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00204.20__1__889,PF00204.20,DNA_gyraseB,889,1.1e-52,174.9,cog,cog0187,1,843765,845697,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00227.21__1__1113,PF00227.21,Proteasome,1113,8.2e-23,77.8,cog,cog5405,1,1074598,1075132,-1,GCA_000056065.1,Yes +GCA_000056065.1__PF00364.17__1__824,PF00364.17,Biotin_lipoyl,824,3.1999999999999997e-25,84.7,lcl,824,1,793916,794399,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,6.5e-157,519.8,cog,cog0188,1,6552,9024,1,GCA_000056065.1,Yes +GCA_000056065.1__PF00521.15__1__890,PF00521.15,DNA_topoisoIV,890,1.6e-148,492.2,cog,cog0188,1,845711,848195,1,GCA_000056065.1,Yes +GCA_000056065.1__PF01039.17__1__827,PF01039.17,Carboxyl_trans,827,1.9e-19,66.5,cog,cog0777,1,796205,797054,1,GCA_000056065.1,Yes +GCA_000056065.1__PF01039.17__1__828,PF01039.17,Carboxyl_trans,828,2.3e-19,66.2,cog,cog0825,1,797046,797814,1,GCA_000056065.1,Yes +GCA_000056065.1__TIGR02013__1__338,TIGR02013,TIGR02013,338,0.0,1683.7,cog,cog0085,1,334509,338184,1,GCA_000056065.1,Yes +GCA_000056065.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,7.4e-93,308.1,cog,cog0592,1,1867,2995,1,GCA_000056065.1,Yes +GCA_000182835.1__RF0007__1__1165,RF0007,ABC_efflux,1165,1.1e-87,291.7,cog,cog1132,1,1210613,1212386,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0007__1__1291,RF0007,ABC_efflux,1291,1.1e-77,258.7,cog,cog1132,1,1333698,1335495,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0007__1__1904,RF0007,ABC_efflux,1904,6.3e-77,256.2,cog,cog1132,1,1947730,1949575,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0007__1__989,RF0007,ABC_efflux,989,7.3e-76,252.7,cog,cog1132,1,1024132,1025890,-1,GCA_000182835.1,Yes +GCA_000182835.1__RF0155__1__1902,RF0155,vanS,1902,1.4000000000000001e-74,248.2,lcl,1902,1,1945717,1946926,-1,GCA_000182835.1,Yes +GCA_000182835.1__PF00044.19__1__564,PF00044.19,Gp_dh_N,564,5.299999999999999e-54,179.5,lcl,564,1,584371,585388,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00185.19__1__1720,PF00185.19,OTCace,1720,3.6e-53,176.9,lcl,1720,1,1774927,1775929,-1,GCA_000182835.1,Yes +GCA_000182835.1__PF00185.19__1__931,PF00185.19,OTCace,931,1.6e-34,116.3,lcl,931,1,966778,967789,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,4.4e-61,202.2,cog,cog0187,1,4361,6323,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00204.20__1__886,PF00204.20,DNA_gyraseB,886,5.299999999999999e-53,176.0,cog,cog0187,1,908124,910056,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00227.21__1__1148,PF00227.21,Proteasome,1148,1.9e-22,76.6,cog,cog5405,1,1191616,1192150,-1,GCA_000182835.1,Yes +GCA_000182835.1__PF00364.17__1__818,PF00364.17,Biotin_lipoyl,818,1.0999999999999998e-24,83.1,cog,cog0511,1,847208,847691,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,2.3e-156,518.1,cog,cog0188,1,6335,8807,1,GCA_000182835.1,Yes +GCA_000182835.1__PF00521.15__1__887,PF00521.15,DNA_topoisoIV,887,9e-149,493.1,cog,cog0188,1,910070,912554,1,GCA_000182835.1,Yes +GCA_000182835.1__PF01039.17__1__822,PF01039.17,Carboxyl_trans,822,2.3e-19,66.2,cog,cog0825,1,850338,851106,1,GCA_000182835.1,Yes +GCA_000182835.1__PF01039.17__1__821,PF01039.17,Carboxyl_trans,821,3.1e-19,65.9,cog,cog0777,1,849497,850346,1,GCA_000182835.1,Yes +GCA_000182835.1__TIGR02013__1__328,TIGR02013,TIGR02013,328,0.0,1684.7,cog,cog0085,1,343094,346757,1,GCA_000182835.1,Yes +GCA_000182835.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,1.1e-92,307.7,cog,cog0592,1,1651,2779,1,GCA_000182835.1,Yes +GCA_000191165.1__RF0007__1__1204,RF0007,ABC_efflux,1204,1.9e-85,284.3,cog,cog1132,1,1143604,1145377,-1,GCA_000191165.1,Yes +GCA_000191165.1__RF0007__1__1070,RF0007,ABC_efflux,1070,8.3e-78,259.1,cog,cog1132,1,1007685,1009443,1,GCA_000191165.1,Yes +GCA_000191165.1__RF0007__1__1267,RF0007,ABC_efflux,1267,1.5e-77,258.3,cog,cog1132,1,1217265,1219062,-1,GCA_000191165.1,Yes +GCA_000191165.1__RF0007__1__1819,RF0007,ABC_efflux,1819,1.5e-76,255.0,cog,cog1132,1,1726068,1727913,-1,GCA_000191165.1,Yes +GCA_000191165.1__RF0155__1__1817,RF0155,vanS,1817,3e-74,247.0,lcl,1817,1,1724055,1725264,-1,GCA_000191165.1,Yes +GCA_000191165.1__PF00044.19__1__565,PF00044.19,Gp_dh_N,565,6.3e-54,179.1,lcl,565,1,532544,533561,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00185.19__1__1886,PF00185.19,OTCace,1886,1.8999999999999998e-35,119.2,lcl,1886,1,1794458,1795415,-1,GCA_000191165.1,Yes +GCA_000191165.1__PF00185.19__1__959,PF00185.19,OTCace,959,1.2e-13,48.3,cog,cog0540,1,913147,913501,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00185.19__1__960,PF00185.19,OTCace,960,9.6e-12,42.1,lcl,960,1,913574,913733,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,7.3e-61,201.5,cog,cog0187,1,4533,6495,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00204.20__1__916,PF00204.20,DNA_gyraseB,916,1.1e-52,174.9,cog,cog0187,1,858470,860402,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00227.21__1__1187,PF00227.21,Proteasome,1187,8.2e-23,77.8,cog,cog5405,1,1128592,1129126,-1,GCA_000191165.1,Yes +GCA_000191165.1__PF00364.17__1__818,PF00364.17,Biotin_lipoyl,818,3.1999999999999997e-25,84.7,cog,cog0511,1,778349,778832,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,1.2e-156,518.9,cog,cog0188,1,6507,8979,1,GCA_000191165.1,Yes +GCA_000191165.1__PF00521.15__1__917,PF00521.15,DNA_topoisoIV,917,1.6e-148,492.2,cog,cog0188,1,860416,862900,1,GCA_000191165.1,Yes +GCA_000191165.1__PF01039.17__1__821,PF01039.17,Carboxyl_trans,821,1.9e-19,66.5,cog,cog0777,1,780638,781487,1,GCA_000191165.1,Yes +GCA_000191165.1__PF01039.17__1__822,PF01039.17,Carboxyl_trans,822,2.3e-19,66.2,cog,cog0825,1,781479,782247,1,GCA_000191165.1,Yes +GCA_000191165.1__TIGR02013__1__340,TIGR02013,TIGR02013,340,0.0,1683.5,cog,cog0085,1,325558,329233,1,GCA_000191165.1,Yes +GCA_000191165.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,3.8e-91,302.5,cog,cog0592,1,1822,2950,1,GCA_000191165.1,Yes +GCA_000014405.1__RF0007__1__1173,RF0007,ABC_efflux,1173,1.2e-86,288.3,cog,cog1132,1,1105421,1107194,-1,GCA_000014405.1,Yes +GCA_000014405.1__RF0007__1__1043,RF0007,ABC_efflux,1043,9.5e-78,258.9,cog,cog1132,1,986851,988609,1,GCA_000014405.1,Yes +GCA_000014405.1__RF0007__1__1231,RF0007,ABC_efflux,1231,1.4e-77,258.3,cog,cog1132,1,1176015,1177812,-1,GCA_000014405.1,Yes +GCA_000014405.1__RF0007__1__1808,RF0007,ABC_efflux,1808,2e-76,254.5,cog,cog1132,1,1721280,1723131,-1,GCA_000014405.1,Yes +GCA_000014405.1__RF0155__1__1806,RF0155,vanS,1806,3e-74,247.0,lcl,1806,1,1719267,1720476,-1,GCA_000014405.1,Yes +GCA_000014405.1__PF00044.19__1__561,PF00044.19,Gp_dh_N,561,5.2e-54,179.4,lcl,561,1,534819,535836,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00185.19__1__1865,PF00185.19,OTCace,1865,2.3e-35,118.9,lcl,1865,1,1777865,1778822,-1,GCA_000014405.1,Yes +GCA_000014405.1__PF00185.19__1__924,PF00185.19,OTCace,924,2.8e-15,53.6,lcl,924,1,885457,885640,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00185.19__1__923,PF00185.19,OTCace,923,1.2e-13,48.3,cog,cog0540,1,885054,885408,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00204.20__1__5,PF00204.20,DNA_gyraseB,5,7.2e-61,201.5,cog,cog0187,1,4360,6322,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00204.20__1__878,PF00204.20,DNA_gyraseB,878,1.1e-52,174.9,cog,cog0187,1,830171,832103,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00227.21__1__1157,PF00227.21,Proteasome,1157,8.2e-23,77.8,cog,cog5405,1,1091791,1092325,-1,GCA_000014405.1,Yes +GCA_000014405.1__PF00364.17__1__812,PF00364.17,Biotin_lipoyl,812,3.1999999999999997e-25,84.7,lcl,812,1,781657,782140,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00521.15__1__6,PF00521.15,DNA_topoisoIV,6,7.3e-157,519.6,cog,cog0188,1,6334,8806,1,GCA_000014405.1,Yes +GCA_000014405.1__PF00521.15__1__879,PF00521.15,DNA_topoisoIV,879,1.6e-148,492.2,cog,cog0188,1,832117,834601,1,GCA_000014405.1,Yes +GCA_000014405.1__PF01039.17__1__815,PF01039.17,Carboxyl_trans,815,1.9e-19,66.5,cog,cog0777,1,783946,784795,1,GCA_000014405.1,Yes +GCA_000014405.1__PF01039.17__1__816,PF01039.17,Carboxyl_trans,816,2.4e-19,66.1,cog,cog0825,1,784787,785555,1,GCA_000014405.1,Yes +GCA_000014405.1__TIGR02013__1__339,TIGR02013,TIGR02013,339,0.0,1683.5,cog,cog0085,1,329068,332743,1,GCA_000014405.1,Yes +GCA_000014405.1__TIGR00663__1__2,TIGR00663,TIGR00663,2,5.4e-93,308.6,cog,cog0592,1,1649,2777,1,GCA_000014405.1,Yes diff --git a/.tests/unit/gtdb_prep/expected/data/interim/gtdb/GCA_000056065.1.json b/.tests/unit/gtdb_prep/expected/data/interim/gtdb/GCA_000056065.1.json index e3750fb4..332ce5f3 100644 --- a/.tests/unit/gtdb_prep/expected/data/interim/gtdb/GCA_000056065.1.json +++ b/.tests/unit/gtdb_prep/expected/data/interim/gtdb/GCA_000056065.1.json @@ -55,17 +55,17 @@ "ncbi_isolation_source": null, "ncbi_lat_lon": null, "ncbi_molecule_count": "1", - "ncbi_cds_count": null, + "ncbi_cds_count": "1851", "ncbi_refseq_category": "na", "ncbi_seq_rel_date": "2006/05/26", "ncbi_spanned_gaps": "0", "ncbi_species_taxid": "1584", - "ncbi_ssu_count": null, + "ncbi_ssu_count": "9", "ncbi_submitter": "Genoscope", "ncbi_taxid": "390333", "ncbi_total_gap_length": "0", - "ncbi_translation_table": null, - "ncbi_trna_count": null, + "ncbi_translation_table": "11", + "ncbi_trna_count": "95", "ncbi_unspanned_gaps": "0", "ncbi_version_status": "latest", "ncbi_wgs_master": null diff --git a/.tests/unit/test_arts_allhits_combine.py b/.tests/unit/test_arts_allhits_combine.py new file mode 100644 index 00000000..e7efffc0 --- /dev/null +++ b/.tests/unit/test_arts_allhits_combine.py @@ -0,0 +1,45 @@ +import os +import sys + +import subprocess as sp +from tempfile import TemporaryDirectory +import shutil +from pathlib import Path, PurePosixPath + +sys.path.insert(0, os.path.dirname(__file__)) + +import common + + +def test_arts_allhits_combine(): + + with TemporaryDirectory() as tmpdir: + workdir = Path(tmpdir) / "workdir" + data_path = PurePosixPath(".tests/unit/arts_allhits_combine/data") + expected_path = PurePosixPath(".tests/unit/arts_allhits_combine/expected") + + # Copy data to the temporary workdir. + shutil.copytree(data_path, workdir) + + # dbg + print("data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv", file=sys.stderr) + + # Run the test job. + sp.check_output([ + "python", + "-m", + "snakemake", + "data/processed/Lactobacillus_delbrueckii/tables/df_arts_all_hits_as-7.0.0.csv", + "-f", + "-j1", + "--keep-target-files", + + "--directory", + workdir, + ]) + + # Check the output byte by byte using cmp. + # To modify this behavior, you can inherit from common.OutputChecker in here + # and overwrite the method `compare_files(generated_file, expected_file), + # also see common.py. + common.OutputChecker(data_path, expected_path, workdir).check() diff --git a/.tests/unit/test_arts_bgctable_combine.py b/.tests/unit/test_arts_bgctable_combine.py new file mode 100644 index 00000000..ba38b949 --- /dev/null +++ b/.tests/unit/test_arts_bgctable_combine.py @@ -0,0 +1,45 @@ +import os +import sys + +import subprocess as sp +from tempfile import TemporaryDirectory +import shutil +from pathlib import Path, PurePosixPath + +sys.path.insert(0, os.path.dirname(__file__)) + +import common + + +def test_arts_bgctable_combine(): + + with TemporaryDirectory() as tmpdir: + workdir = Path(tmpdir) / "workdir" + data_path = PurePosixPath(".tests/unit/arts_bgctable_combine/data") + expected_path = PurePosixPath(".tests/unit/arts_bgctable_combine/expected") + + # Copy data to the temporary workdir. + shutil.copytree(data_path, workdir) + + # dbg + print("data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv", file=sys.stderr) + + # Run the test job. + sp.check_output([ + "python", + "-m", + "snakemake", + "data/processed/Lactobacillus_delbrueckii/tables/df_arts_bgctable_as-7.0.0.csv", + "-f", + "-j1", + "--keep-target-files", + + "--directory", + workdir, + ]) + + # Check the output byte by byte using cmp. + # To modify this behavior, you can inherit from common.OutputChecker in here + # and overwrite the method `compare_files(generated_file, expected_file), + # also see common.py. + common.OutputChecker(data_path, expected_path, workdir).check() diff --git a/.tests/unit/test_arts_coretable_combine.py b/.tests/unit/test_arts_coretable_combine.py new file mode 100644 index 00000000..07f542ef --- /dev/null +++ b/.tests/unit/test_arts_coretable_combine.py @@ -0,0 +1,45 @@ +import os +import sys + +import subprocess as sp +from tempfile import TemporaryDirectory +import shutil +from pathlib import Path, PurePosixPath + +sys.path.insert(0, os.path.dirname(__file__)) + +import common + + +def test_arts_coretable_combine(): + + with TemporaryDirectory() as tmpdir: + workdir = Path(tmpdir) / "workdir" + data_path = PurePosixPath(".tests/unit/arts_coretable_combine/data") + expected_path = PurePosixPath(".tests/unit/arts_coretable_combine/expected") + + # Copy data to the temporary workdir. + shutil.copytree(data_path, workdir) + + # dbg + print("data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv", file=sys.stderr) + + # Run the test job. + sp.check_output([ + "python", + "-m", + "snakemake", + "data/processed/Lactobacillus_delbrueckii/tables/df_arts_coretable_as-7.0.0.csv", + "-f", + "-j1", + "--keep-target-files", + + "--directory", + workdir, + ]) + + # Check the output byte by byte using cmp. + # To modify this behavior, you can inherit from common.OutputChecker in here + # and overwrite the method `compare_files(generated_file, expected_file), + # also see common.py. + common.OutputChecker(data_path, expected_path, workdir).check() diff --git a/.tests/unit/test_arts_extract.py b/.tests/unit/test_arts_extract.py index 74dadd97..93e8eda2 100644 --- a/.tests/unit/test_arts_extract.py +++ b/.tests/unit/test_arts_extract.py @@ -22,14 +22,14 @@ def test_arts_extract(): shutil.copytree(data_path, workdir) # dbg - print("data/interim/arts/antismash-7.0.0/GCA_000056065.1.json", file=sys.stderr) + print("data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_all_hits.json data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_bgctable_summary.json data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_coretable_summary.json data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_knownhits.json", file=sys.stderr) # Run the test job. sp.check_output([ "python", "-m", "snakemake", - "data/interim/arts/antismash-7.0.0/GCA_000056065.1.json", + "data/interim/arts/antismash-7.0.0/GCA_000056065.1_arts_all_hits.json", "-f", "-j1", "--keep-target-files", diff --git a/.tests/unit/test_arts_final.py b/.tests/unit/test_arts_final.py new file mode 100644 index 00000000..2d67bcf1 --- /dev/null +++ b/.tests/unit/test_arts_final.py @@ -0,0 +1,45 @@ +import os +import sys + +import subprocess as sp +from tempfile import TemporaryDirectory +import shutil +from pathlib import Path, PurePosixPath + +sys.path.insert(0, os.path.dirname(__file__)) + +import common + + +def test_arts_final(): + + with TemporaryDirectory() as tmpdir: + workdir = Path(tmpdir) / "workdir" + data_path = PurePosixPath(".tests/unit/arts_final/data") + expected_path = PurePosixPath(".tests/unit/arts_final/expected") + + # Copy data to the temporary workdir. + shutil.copytree(data_path, workdir) + + # dbg + print("data/processed/Lactobacillus_delbrueckii/tables/df_arts_allhits_as-7.0.0.csv", file=sys.stderr) + + # Run the test job. + sp.check_output([ + "python", + "-m", + "snakemake", + "data/processed/Lactobacillus_delbrueckii/tables/df_arts_allhits_as-7.0.0.csv", + "-f", + "-j1", + "--keep-target-files", + + "--directory", + workdir, + ]) + + # Check the output byte by byte using cmp. + # To modify this behavior, you can inherit from common.OutputChecker in here + # and overwrite the method `compare_files(generated_file, expected_file), + # also see common.py. + common.OutputChecker(data_path, expected_path, workdir).check() diff --git a/.tests/unit/test_arts_knownhits_combine.py b/.tests/unit/test_arts_knownhits_combine.py new file mode 100644 index 00000000..1ede5a96 --- /dev/null +++ b/.tests/unit/test_arts_knownhits_combine.py @@ -0,0 +1,45 @@ +import os +import sys + +import subprocess as sp +from tempfile import TemporaryDirectory +import shutil +from pathlib import Path, PurePosixPath + +sys.path.insert(0, os.path.dirname(__file__)) + +import common + + +def test_arts_knownhits_combine(): + + with TemporaryDirectory() as tmpdir: + workdir = Path(tmpdir) / "workdir" + data_path = PurePosixPath(".tests/unit/arts_knownhits_combine/data") + expected_path = PurePosixPath(".tests/unit/arts_knownhits_combine/expected") + + # Copy data to the temporary workdir. + shutil.copytree(data_path, workdir) + + # dbg + print("data/processed/Lactobacillus_delbrueckii/tables/df_arts_knownhits_as-7.0.0.csv", file=sys.stderr) + + # Run the test job. + sp.check_output([ + "python", + "-m", + "snakemake", + "data/processed/Lactobacillus_delbrueckii/tables/df_arts_knownhits_as-7.0.0.csv", + "-f", + "-j1", + "--keep-target-files", + + "--directory", + workdir, + ]) + + # Check the output byte by byte using cmp. + # To modify this behavior, you can inherit from common.OutputChecker in here + # and overwrite the method `compare_files(generated_file, expected_file), + # also see common.py. + common.OutputChecker(data_path, expected_path, workdir).check() diff --git a/README.md b/README.md index 258b868a..45067921 100644 --- a/README.md +++ b/README.md @@ -21,7 +21,7 @@ A quick and easy way to use `BGCFlow` using [`bgcflow_wrapper`](https://github.c ```bash # create and activate a new conda environment -conda create -n bgcflow pip -y +conda create -n bgcflow -c conda-forge pip openjdk -y conda activate bgcflow # install `BGCFlow` wrapper diff --git a/workflow/bgcflow/bgcflow/data/annotate_bigfam_model.py b/workflow/bgcflow/bgcflow/data/annotate_bigfam_model.py new file mode 100644 index 00000000..896de282 --- /dev/null +++ b/workflow/bgcflow/bgcflow/data/annotate_bigfam_model.py @@ -0,0 +1,215 @@ +import logging +import math +import sqlite3 +import sys +from pathlib import Path + +import pandas as pd +from alive_progress import alive_bar + +log_format = "%(levelname)-8s %(asctime)s %(message)s" +date_format = "%d/%m %H:%M:%S" +logging.basicConfig(format=log_format, datefmt=date_format, level=logging.DEBUG) + + +def shannon_div(data): + """ + Computes the Shannon Diversity Index for the given data. + + Args: + data (dict): A dictionary containing the counts of different categories. + + Returns: + float: The computed Shannon Diversity Index. + """ + total = sum(data.values()) + container = [] + for k, v in data.items(): + p = v / total + val = p * (math.log(p)) + container.append(val) + shannon = abs(sum(container)) + return shannon + + +def get_bigfam_class(gcf_id, conn, threshold="<= 900", rank=0): + """ + Retrieves the chemical class and chemical subclass for a given gcf_id. + + Args: + gcf_id (int): The ID of the gene cluster family to retrieve information for. + conn (sqlite3.Connection): The SQLite connection object to the database. + threshold (str, optional): The threshold for membership_value, defaults to "<= 900". + rank (int, optional): The rank of the gcf_membership, defaults to 0. + + Returns: + dict: A dictionary containing the chemical class, chemical subclass, and related information. + """ + sql_query = f""" + SELECT + "gcf_membership"."gcf_id" AS "gcf_id", + "gcf_membership"."bgc_id" AS "bgc_id", + "gcf_membership"."membership_value" AS "membership_value", + "gcf_membership"."rank" AS "rank", + "Bgc Class - Bgc"."bgc_id" AS "Bgc Class - Bgc__bgc_id", + "Bgc Class - Bgc"."chem_subclass_id" AS "Bgc Class - Bgc__chem_subclass_id", + "Chem Subclass"."id" AS "Chem Subclass__id", + "Chem Subclass"."class_id" AS "Chem Subclass__class_id", + "Chem Subclass"."name" AS "Chem Subclass__name", + "Chem Class - Class"."id" AS "Chem Class - Class__id", + "Chem Class - Class"."name" AS "Chem Class - Class__name" + FROM "gcf_membership" + LEFT JOIN "bgc_class" "Bgc Class - Bgc" ON "gcf_membership"."bgc_id" = "Bgc Class - Bgc"."bgc_id" LEFT JOIN "chem_subclass" "Chem Subclass" ON "Bgc Class - Bgc"."chem_subclass_id" = "Chem Subclass"."id" LEFT JOIN "chem_class" "Chem Class - Class" ON "Chem Subclass"."class_id" = "Chem Class - Class"."id" + WHERE ("gcf_membership"."gcf_id" = {gcf_id} + AND "gcf_membership"."membership_value" {threshold} AND "gcf_membership"."rank" = {rank}) + """ + df = pd.read_sql_query(sql_query, conn) + non_singleton_map = df.bgc_id.value_counts().to_dict() + bgc = [k for k, v in non_singleton_map.items() if v > 1] + df.loc[df[~df.bgc_id.isin(bgc)].index, "score"] = 1 + for i in df[df.bgc_id.isin(bgc)].index: + score = 1 / non_singleton_map[df.loc[i, "bgc_id"]] + df.loc[i, "score"] = score + + chemical_class = df.groupby("Chem Class - Class__name").sum().score / len( + df.bgc_id.unique() + ) + chemical_class = chemical_class.to_dict() + chemical_subclass = df.groupby("Chem Subclass__name").sum().score / len( + df.bgc_id.unique() + ) + chemical_subclass = chemical_subclass.to_dict() + top_chemical_class = max(chemical_class, key=chemical_class.get) + top_chemical_subclass = max(chemical_subclass, key=chemical_subclass.get) + bgc_member = len(df.bgc_id.unique()) + + result = { + "bgc_member": bgc_member, + "chemical_class_hits": len(df), + "top_chemical_class": top_chemical_class, + "top_chemical_class_proportion": chemical_class[top_chemical_class], + "top_chemical_subclass": top_chemical_subclass, + "top_chemical_subclass_proportion": chemical_subclass[top_chemical_subclass], + "chemical_class": chemical_class, + "chemical_subclass": chemical_subclass, + } + return result + + +def get_bigfam_taxa(gcf_id, conn, threshold="<= 900", rank=0, level=5): + """ + Retrieves a summary of chemical and taxonomic information for a given gcf_id. + + Args: + gcf_id (int): The ID of the gene cluster family to retrieve information for. + conn (sqlite3.Connection): The SQLite connection object to the database. + threshold (str, optional): The threshold for membership_value, defaults to "<= 900". + rank (int, optional): The rank of the gcf_membership, defaults to 0. + level (int, optional): The taxonomic level to retrieve, defaults to 5. + + Returns: + dict: A dictionary containing a summary of chemical and taxonomic information. + """ + sql_all_hits = f""" + SELECT + "gcf_membership"."gcf_id" AS "gcf_id", + "gcf_membership"."bgc_id" AS "bgc_id", + "gcf_membership"."membership_value" AS "membership_value", + "gcf_membership"."rank" AS "rank" + FROM "gcf_membership" + WHERE ("gcf_membership"."gcf_id" = {gcf_id} + AND "gcf_membership"."membership_value" {threshold} AND "gcf_membership"."rank" = {rank}) + """ + + sql_query = f""" + SELECT + "gcf_membership"."gcf_id" AS "gcf_id", + "gcf_membership"."bgc_id" AS "bgc_id", + "gcf_membership"."membership_value" AS "membership_value", + "gcf_membership"."rank" AS "rank", + "Bgc Taxonomy - Bgc"."bgc_id" AS "Bgc Taxonomy - Bgc__bgc_id", + "Bgc Taxonomy - Bgc"."taxon_id" AS "Bgc Taxonomy - Bgc__taxon_id", + "Taxon"."id" AS "Taxon__id", "Taxon"."level" AS "Taxon__level", + "Taxon"."name" AS "Taxon__name", "Taxon Class - Level"."id" AS "Taxon Class - Level__id", + "Taxon Class - Level"."level" AS "Taxon Class - Level__level", + "Taxon Class - Level"."name" AS "Taxon Class - Level__name" + FROM "gcf_membership" + LEFT JOIN "bgc_taxonomy" "Bgc Taxonomy - Bgc" ON "gcf_membership"."bgc_id" = "Bgc Taxonomy - Bgc"."bgc_id" LEFT JOIN "taxon" "Taxon" ON "Bgc Taxonomy - Bgc"."taxon_id" = "Taxon"."id" LEFT JOIN "taxon_class" "Taxon Class - Level" ON "Taxon"."level" = "Taxon Class - Level"."level" + WHERE ("gcf_membership"."gcf_id" = {gcf_id} + AND "gcf_membership"."membership_value" {threshold} + AND "gcf_membership"."rank" = {rank} + AND "Taxon"."level" = {level}) + """ + df_all_hits = pd.read_sql_query(sql_all_hits, conn) + df = pd.read_sql_query(sql_query, conn) + taxonomic_level = df["Taxon Class - Level__name"].unique()[0] + df = df_all_hits.merge( + df, on=["bgc_id", "gcf_id", "membership_value", "rank"], how="outer" + ).fillna("Unassigned") + taxa_distribution = df.Taxon__name.value_counts().to_dict() + top_genus = max(taxa_distribution, key=taxa_distribution.get) + taxonomic_hits = len(df.bgc_id.unique()) + result = { + "taxonomic_hits": taxonomic_hits, + "taxonomic_level": taxonomic_level, + "H-index": shannon_div(taxa_distribution), + "richness": len(taxa_distribution.keys()), + "top_taxa": top_genus, + "top_taxa_proportion": taxa_distribution[top_genus] / taxonomic_hits, + "taxa_distribution": taxa_distribution, + } + return result + + +def get_bigfam_summary(gcf_id, conn, threshold="<= 900", rank=0, level=5): + """ + Retrieves a summary of chemical and taxonomic information for a given gcf_id. + + Args: + gcf_id (int): The ID of the gene cluster family to retrieve information for. + conn (sqlite3.Connection): The SQLite connection object to the database. + threshold (str, optional): The threshold for membership_value, defaults to "<= 900". + rank (int, optional): The rank of the gcf_membership, defaults to 0. + level (int, optional): The taxonomic level to retrieve, defaults to 5. + + Returns: + dict: A dictionary containing a summary of chemical and taxonomic information. + """ + result = get_bigfam_class(gcf_id, conn) + result.update(get_bigfam_taxa(gcf_id, conn)) + return {gcf_id: result} + + +def annotate_bigfam_models(bigfam_model_hits, bigfam_db, output): + """ + Annotates BigFam models and writes the results to an output file. + + Args: + bigfam_model_hits (str): The path to the BigFam model hits CSV file. + bigfam_db (str): The path to the BigFam SQLite database. + output (str): The path to the output file where the results will be written. + """ + df_bigfam_model = pd.read_csv(bigfam_model_hits) + logging.info(f"Reading BiG-FAM database: {bigfam_db}") + conn = sqlite3.connect(bigfam_db) + + result = {} + logging.info("Annotating models...") + with alive_bar( + len(df_bigfam_model.gcf_id), title="Annotating BiG-FAM models:" + ) as bar: + for i in df_bigfam_model.gcf_id: + value = get_bigfam_summary(i, conn) + result.update(value) + bar() + + logging.info(f"Writing results to: {output}") + df = pd.DataFrame.from_dict(result).T + df.index.name = "gcf_id" + output = Path(output) + output.parent.mkdir(parents=True, exist_ok=True) + df.to_csv(output) + + +if __name__ == "__main__": + annotate_bigfam_models(sys.argv[1], sys.argv[2], sys.argv[3]) diff --git a/workflow/bgcflow/bgcflow/data/arts_extract_all.py b/workflow/bgcflow/bgcflow/data/arts_extract_all.py new file mode 100644 index 00000000..46cf5ad6 --- /dev/null +++ b/workflow/bgcflow/bgcflow/data/arts_extract_all.py @@ -0,0 +1,621 @@ +import ast +import json +import logging +import sys +from pathlib import Path + +import numpy as np +import pandas as pd + +log_format = "%(levelname)-8s %(asctime)s %(message)s" +date_format = "%d/%m %H:%M:%S" +logging.basicConfig(format=log_format, datefmt=date_format, level=logging.DEBUG) + + +def generate_arts_dict(df_arts): + """ + Generate a dictionary representation of the ARTS BGC table. + + This function converts the provided ARTS BGC table DataFrame to a dictionary, + with scaffolds as keys. Each key maps to another dictionary containing the + count of occurrences ("counts") and a list of regions ("regions"), each represented + as a dictionary with keys "cluster_id", "products", and "location". + + Parameters + ---------- + df_arts : pandas.DataFrame + The ARTS table DataFrame to be converted. It should have columns "Source", + "#Cluster", "Type", and "Location". + + Returns + ------- + dict + The generated dictionary representing the ARTS table + """ + arts_dict = {} + arts_scaffold_count = df_arts.Source.value_counts().to_dict() + for k in arts_scaffold_count.keys(): + arts_dict[k] = {"counts": arts_scaffold_count[k]} + arts_dict[k]["regions"] = [] + for i in df_arts[df_arts.loc[:, "Source"] == k].index: + regions = { + "cluster_id": df_arts.loc[i, "#Cluster"], + "products": df_arts.loc[i, "Type"], + "location": df_arts.loc[i, "Location"], + } + arts_dict[k]["regions"].append(regions) + return arts_dict + + +def generate_arts_mapping(df_arts, as_json): + """ + Generate mappings between ARTS and antiSMASH results. + + This function generates mappings between ARTS table and antiSMASH JSON, + based on the number of detected regions and their specific details like + products and location. The function iterates over the records in the + provided antiSMASH JSON and finds corresponding matches in the ARTS + table, returning dictionaries mapping cluster IDs to BGC IDs and contig IDs. + + Parameters + ---------- + df_arts : pandas.DataFrame + The ARTS table DataFrame to be mapped. It should have columns "Source", + "#Cluster", "Type", and "Location". + + as_json : dict + The antiSMASH results in JSON format, converted to a Python dictionary. + + Returns + ------- + tuple + Returns a tuple containing three dictionaries: + + hit_mapper : dict + A dictionary mapping cluster IDs from the ARTS table to BGC IDs + from antiSMASH results. + + arts_dict : dict + A dictionary representation of the ARTS table generated by the + generate_arts_dict function. + + contig_mapper : dict + A dictionary mapping cluster IDs from the ARTS table to contig IDs + from antiSMASH results. + """ + arts_dict = generate_arts_dict(df_arts) + # container for final result + hit_mapper = {} + contig_mapper = {} + + # iterate antismash json records + for num, r in enumerate(as_json["records"]): + # count number of detected regions per record + region_count = len(r["areas"]) + # if antismash detects region + if region_count > 0: + contig_id = r["id"] + logging.info( + f"Contig {contig_id} has {region_count} regions detected. Finding corresponding scaffold in ARTS2..." + ) + # find arts scaffold with the same region number detected + arts_match = [ + k + for k in arts_dict.keys() + if int(arts_dict[k]["counts"]) == int(region_count) + ] + logging.debug(f"Finding matches from: {arts_match}") + for n, a in enumerate(r["areas"]): + bgc_id = f"{contig_id}.region{str(n+1).zfill(3)}" + location = f"{a['start']} - {a['end']}" + products = ",".join(a["products"]) + logging.debug(f"Finding match for: {bgc_id} | {location} | {products}") + for m in arts_match: + bgc_match = arts_dict[m]["regions"][n] + if (bgc_match["location"] == location) and ( + bgc_match["products"] == products + ): + logging.debug( + f"Found match! {bgc_match['cluster_id']} | {bgc_match['location']} | {bgc_match['products']}" + ) + # logging.debug(f"Found match! {contig_id} == ARTS2 {m}") + hit_mapper[bgc_match["cluster_id"]] = bgc_id + contig_mapper[bgc_match["cluster_id"]] = contig_id + return hit_mapper, arts_dict, contig_mapper + + +def extract_arts_coretable( + arts_coretable_tsv, outfile_summary, outfile_hits=None, genome_id=None +): + """ + Extract information from ARTS core table and write to JSON files. + + This function reads the ARTS core table from a TSV file, generates primary keys + for the core table, extracts hits, and writes the core table and hits information + to JSON files. It returns a DataFrame representation of the hits information. + + Parameters + ---------- + arts_coretable_tsv : str or pathlib.Path + Path to the ARTS core table TSV file. + + outfile_summary : str or pathlib.Path + Path to the output JSON file where the core table information will be written. + + outfile_hits : str or pathlib.Path, optional + Path to the output JSON file where the hits information will be written. + If not provided, the hits information will not be written to a file. + + genome_id : str, optional + Identifier for the genome. If not provided, it will be inferred from the + core table information. + + Returns + ------- + pandas.DataFrame + A DataFrame representation of the extracted hits information, with each row + representing a hit and columns representing hit attributes. + + Example + ------- + >>> extract_arts_coretable('path/to/coretable.tsv', 'path/to/summary.json', 'path/to/hits.json', 'genome_id') + >>> # This will read the core table from 'path/to/coretable.tsv', write summary + >>> # information to 'path/to/summary.json', write hits information to 'path/to/hits.json', + >>> # and return a DataFrame representing the hits information. + """ + logging.info(f"Extracting ARTS core table information from: {arts_coretable_tsv}") + arts_coretable = pd.read_csv(arts_coretable_tsv, sep="\t").fillna("") + + logging.info("Generating primary key for core_table...") + arts_coretable.index = [ + f"{genome_id}__arts_core__{i}" for i in arts_coretable["#Core_gene"] + ] + arts_coretable["genome_id"] = genome_id + arts_coretable_dict = arts_coretable.T.to_dict() + logging.info(f"Writing Core Table JSON to: {outfile_summary}") + with open(outfile_summary, "w") as f: + json.dump(arts_coretable_dict, f, indent=2) + + logging.info("Extracting hits...") + arts_coretable_hits = {} + for i in arts_coretable.index: + hits = arts_coretable.loc[i, "[Hits_listed]"].split(";") + core_gene = arts_coretable.loc[i, "#Core_gene"] + for num, h in enumerate(hits): + data = h.strip("[").strip("]").split("|") + scaffold, sequence_id = data[4].split("#")[-1].split("=")[-1].split("_") + if genome_id is None: + genome_id = data[0].split(" ")[-1] + result = { + "core_gene": core_gene, + "genome_id": genome_id, + "name": data[1], + "product": data[2], + "start": data[4].split("#")[0].split()[0], + "stop": data[4].split("#")[0].split()[1], + "strand": data[4].split("#")[0].split()[2], + "scaffold": f"scaffold_{scaffold}", + "sequence_id": sequence_id, + "type": data[5].split("=")[-1], + "transl_table": data[6].split("=")[-1], + "core_table_fkey": f"{genome_id}__arts_core__{core_gene}", + "duplication": arts_coretable.loc[i, "Duplication"], + # "bgc_proximity" : arts_coretable.loc[i, "BGC_Proximity"], + "phylogeny": arts_coretable.loc[i, "Phylogeny"], + "known_target": arts_coretable.loc[i, "Known_target"], + } + + arts_coretable_hits[ + f"{genome_id}__{core_gene}__{scaffold}__{sequence_id}" + ] = result + + if outfile_hits is not None: + outfile_hits.parent.mkdir(parents=True, exist_ok=True) + logging.info(f"Writing Core Hits JSON to: {outfile_hits}") + with open(outfile_hits, "w") as f: + json.dump(arts_coretable_hits, f, indent=2) + + return pd.DataFrame.from_dict(arts_coretable_hits).T + + +def extract_arts_bgctable( + arts_bgctable_tsv, + outfile_summary, + outfile_hits=None, + hit_mapper=None, + genome_id=None, +): + """ + Extract information from ARTS BGC table and write to JSON files. + + This function reads the ARTS BGC table from a TSV file, optionally corrects + the #Cluster name using a provided mapping, extracts hits, and writes the + BGC table and hits information to JSON files. It returns a DataFrame + representation of the hits information. + + Parameters + ---------- + arts_bgctable_tsv : str or pathlib.Path + Path to the ARTS BGC table TSV file. + + outfile_summary : str or pathlib.Path + Path to the output JSON file where the BGC table information will be written. + + outfile_hits : str or pathlib.Path, optional + Path to the output JSON file where the hits information will be written. + If not provided, the hits information will not be written to a file. + + hit_mapper : dict, optional + A dictionary for correcting #Cluster names in the BGC table. If provided, + the #Cluster names in the BGC table will be corrected based on this mapping. + + genome_id : str, optional + Identifier for the genome. If not provided, it will be inferred from the + BGC table information. + + Returns + ------- + pandas.DataFrame + A DataFrame representation of the extracted hits information, with each row + representing a hit and columns representing hit attributes. + + Example + ------- + >>> extract_arts_bgctable('path/to/bgctable.tsv', 'path/to/summary.json', 'path/to/hits.json', hit_mapper={'cluster_1': 'bgc_1'}, genome_id='genome_id') + >>> # This will read the BGC table from 'path/to/bgctable.tsv', write summary + >>> # information to 'path/to/summary.json', write hits information to 'path/to/hits.json', + >>> # and return a DataFrame representing the hits information. + """ + logging.info(f"Extracting ARTS BGC table information from: {arts_bgctable_tsv}") + arts_bgctable = pd.read_csv(arts_bgctable_tsv, sep="\t").fillna("") + if hit_mapper is None: + arts_bgctable.index = [i for i in arts_bgctable["#Cluster"]] + elif type(hit_mapper) == dict: + logging.info("Correcting #Cluster name...") + arts_bgctable["bgc_id"] = [ + f"{hit_mapper[i]}" for i in arts_bgctable["#Cluster"] + ] + arts_bgctable["genome_id"] = genome_id + arts_bgctable.index = [f"{i}__arts_bgc" for i in arts_bgctable["bgc_id"]] + logging.info(f"Writing BGC Table JSON to: {outfile_summary}") + arts_bgctable_dict = arts_bgctable.T.to_dict() + with open(outfile_summary, "w") as f: + json.dump(arts_bgctable_dict, f, indent=2) + + logging.info("Extracting hits...") + arts_bgctable_hits = {} + for i in arts_bgctable.index: + genelist = ast.literal_eval(arts_bgctable.loc[i, "Genelist"]) + antismash_region = arts_bgctable.loc[i, "bgc_id"] + scaffold = arts_bgctable.loc[i, "Source"].split("_")[-1] + for num, gene in enumerate(genelist): + core_gene = gene[1] + sequence_id = gene[0] + result = { + "sequence_id": sequence_id, + "bgc_id": antismash_region, + "genome_id": genome_id, + "gene": core_gene, + "start": gene[2], + "stop": gene[3], + "type": gene[4], + "description": gene[5], + "function": gene[6], + "bgctable_fkey": i, + "bgc_proximity": "Yes", + } + arts_bgctable_hits[ + f"{genome_id}__{core_gene}__{scaffold}__{sequence_id}" + ] = result + + if outfile_hits is not None: + outfile_hits.parent.mkdir(parents=True, exist_ok=True) + logging.info(f"Writing BGC Hits JSON to: {outfile_hits}") + with open(outfile_hits, "w") as f: + json.dump(arts_bgctable_hits, f, indent=2) + + return pd.DataFrame.from_dict(arts_bgctable_hits).T + + +def extract_arts_duptable( + arts_duptable_tsv, outfile_summary, outfile_hits=None, genome_id=None +): + """ + Extract information from ARTS Duplication table and write to JSON files. + + This function reads the ARTS Duplication table from a TSV file, generates primary keys + for the duplication table, extracts hits, and writes the duplication table and hits + information to JSON files. It returns a DataFrame representation of the hits information. + + Parameters + ---------- + arts_duptable_tsv : str or pathlib.Path + Path to the ARTS Duplication table TSV file. + + outfile_summary : str or pathlib.Path + Path to the output JSON file where the Duplication table information will be written. + + outfile_hits : str or pathlib.Path, optional + Path to the output JSON file where the hits information will be written. + If not provided, the hits information will not be written to a file. + + genome_id : str, optional + Identifier for the genome. If not provided, it will be inferred from the + Duplication table information. + + Returns + ------- + pandas.DataFrame + A DataFrame representation of the extracted hits information, with each row + representing a hit and columns representing hit attributes. + + Example + ------- + >>> extract_arts_duptable('path/to/duptable.tsv', 'path/to/summary.json', 'path/to/hits.json', genome_id='genome_id') + >>> # This will read the Duplication table from 'path/to/duptable.tsv', write summary + >>> # information to 'path/to/summary.json', write hits information to 'path/to/hits.json', + >>> # and return a DataFrame representing the hits information. + """ + logging.info( + f"Extracting ARTS Duplication table information from: {arts_duptable_tsv}" + ) + arts_duptable = pd.read_csv(arts_duptable_tsv, sep="\t").fillna("") + arts_duptable.index = [ + f"{genome_id}__arts_dup__{i}" for i in arts_duptable["#Core_gene"] + ] + logging.info(f"Writing Duplication Table JSON to: {outfile_summary}") + arts_duptable["genome_id"] = genome_id + arts_duptable_dict = arts_duptable.T.to_dict() + with open(outfile_summary, "w") as f: + json.dump(arts_duptable_dict, f, indent=2) + + logging.info("Extracting hits...") + arts_duptable_hits = {} + + for i in arts_duptable.index: + hits = arts_duptable.loc[i, "[Hits_listed]"].split(";") + core_gene = arts_duptable.loc[i, "#Core_gene"] + for hit in hits: + data = hit.strip("[").strip("]").split("|") + scaffold, sequence_id = data[4].split("#")[-1].split("=")[-1].split("_") + result = { + "core_gene": core_gene, + "genome_id": data[0].split()[-1], + "name": data[1], + "product": data[2], + "start": data[4].split("#")[0].split()[0], + "stop": data[4].split("#")[0].split()[1], + "strand": data[4].split("#")[0].split()[2], + "scaffold": f"scaffold_{scaffold}", + "sequence_id": sequence_id, + "type": data[5].split("=")[-1], + "transl_table": data[6].split("=")[-1], + "duptable_fkey": i, + "duplication": "Yes", + } + arts_duptable_hits[ + f"{genome_id}__{core_gene}__{scaffold}__{sequence_id}" + ] = result + + if outfile_hits is not None: + outfile_hits.parent.mkdir(parents=True, exist_ok=True) + logging.info(f"Writing Duplication Hits JSON to: {outfile_hits}") + with open(outfile_hits, "w") as f: + json.dump(arts_duptable_hits, f, indent=2) + return pd.DataFrame.from_dict(arts_duptable_hits).T + + +def extract_arts_knownhits(arts_knownhits_tsv, outfile_hits, genome_id=None): + """ + Extract information from ARTS Known Resistance Hits table and write to a JSON file. + + This function reads the ARTS Known Resistance Hits table from a TSV file, extracts + hits information, and writes the hits information to a JSON file. It returns a DataFrame + representation of the Known Resistance Hits information. + + Parameters + ---------- + arts_knownhits_tsv : str or pathlib.Path + Path to the ARTS Known Resistance Hits table TSV file. + + outfile_hits : str or pathlib.Path + Path to the output JSON file where the hits information will be written. + + genome_id : str, optional + Identifier for the genome. If not provided, it will be inferred from the + Known Resistance Hits table information. + + Returns + ------- + pandas.DataFrame + A DataFrame representation of the extracted Known Resistance Hits information, + with each row representing a hit and columns representing hit attributes. + + Example + ------- + >>> extract_arts_knownhits('path/to/knownhits.tsv', 'path/to/hits.json', genome_id='genome_id') + >>> # This will read the Known Resistance Hits table from 'path/to/knownhits.tsv', + >>> # write hits information to 'path/to/hits.json', and return a DataFrame representing + >>> # the Known Resistance Hits information. + """ + logging.info( + f"Extracting ARTS Known Resistance Hits table information from: {arts_knownhits_tsv}" + ) + arts_knownhits = pd.read_csv(arts_knownhits_tsv, sep="\t").fillna("") + for i in arts_knownhits.index: + hits = arts_knownhits.loc[i, "Sequence description"] + data = hits.split("|") + model = arts_knownhits.loc[i, "#Model"] + sequence_id = arts_knownhits.loc[i, "Sequence id"] + scaffold = data[2].split("_")[-1] + result = { + "gid": data[0], + "seqtitle": data[1], + "scaffold": scaffold, + "start": data[-1].split("_")[0], + "stop": data[-1].split("_")[1], + "strand": data[-1].split("_")[2], + "genome_id": genome_id, + "known_target": "Yes", + } + for k, v in result.items(): + arts_knownhits.loc[i, str(k)] = str(v) + arts_knownhits.loc[ + i, "index" + ] = f"{str(genome_id)}__{str(model)}__{str(scaffold)}__{str(sequence_id)}" + arts_knownhits = ( + arts_knownhits.drop(columns=["Sequence description"]) + .set_index("index") + .rename( + columns={ + "#Model": "model", + "Description": "description", + "Sequence id": "sequence_id", + } + ) + ) + arts_knownhits_dict = arts_knownhits.T.to_dict() + outfile_hits.parent.mkdir(parents=True, exist_ok=True) + logging.info(f"Writing Known Resistance Hits JSON to: {outfile_hits}") + with open(outfile_hits, "w") as f: + json.dump(arts_knownhits_dict, f, indent=2) + return arts_knownhits + + +def extract_arts(arts_dir, genome_id, input_as_json, outdir): + """ + Extract and summarize information from various ARTS tables and write to JSON files. + + This function reads various ARTS tables from a specified directory, extracts and summarizes + the information from these tables, and writes the summarized information to JSON files. It + acts as a wrapper function that calls other functions to handle specific tables and takes + care of organizing the output and writing it to the files. + + Parameters + ---------- + arts_dir : str or pathlib.Path + Path to the directory containing ARTS tables. + + genome_id : str + Identifier for the genome. + + input_as_json : str or pathlib.Path + Path to the input JSON file containing antiSMASH results. + + outdir : str or pathlib.Path + Path to the output directory where the JSON files will be written. + + Returns + ------- + None + This function doesn’t return any value. It writes the output to the specified files. + + Outputs + ------- + ARTS Core Table Summary JSON: + Contains the summarized information extracted from the ARTS core table. + + ARTS Core Table Hits JSON: + Contains detailed hits information extracted from the ARTS core table. + + ARTS BGC Table Summary JSON: + Contains the summarized information extracted from the ARTS BGC table. + + ARTS BGC Table Hits JSON: + Contains detailed hits information extracted from the ARTS BGC table. + + ARTS Duplication Table Summary JSON: + Contains the summarized information extracted from the ARTS duplication table. + + ARTS Duplication Table Hits JSON: + Contains detailed hits information extracted from the ARTS duplication table. + + ARTS Known Resistance Hits JSON: + Contains detailed hits information extracted from the ARTS known resistance hits table. + + ARTS All Hits JSON: + Contains a summarized view of all hits extracted from the different ARTS tables. + + Example + ------- + >>> extract_arts('path/to/arts_dir', 'genome_id', 'path/to/input_as.json', 'path/to/outdir') + >>> # This will read the ARTS tables from 'path/to/arts_dir', extract and summarize the + >>> # information, and write the output JSON files to 'path/to/outdir'. + """ + logging.info(f"Reading ARTS directory from: {arts_dir}") + arts_tsv = {i.stem: i for i in Path(arts_dir).glob("tables/*.tsv")} + + logging.debug(f"Found ARTS tables: {', '.join(arts_tsv.keys())}\n") + df_arts = pd.read_csv(arts_tsv["bgctable"], sep="\t") + with open(input_as_json, "r") as f: + as_json = json.load(f) + + logging.info("Generating mapping files...") + hit_mapper, arts_dict, contig_mapper = generate_arts_mapping(df_arts, as_json) + logging.debug("Done!\n") + + outdir = Path(outdir) + outdir.mkdir(parents=True, exist_ok=True) + + logging.info("Extracting core table information...") + arts_coretable_tsv = arts_tsv["coretable"] + outfile_summary = outdir / f"{genome_id}_arts_coretable_summary.json" + outfile_hits = outdir / f"{genome_id}_arts_coretable_hits.json" + coretable_hits = extract_arts_coretable( + arts_coretable_tsv, outfile_summary, genome_id=genome_id + ) + logging.debug("Done!\n") + + logging.info("Extracting bgc table information...") + arts_bgctable_tsv = arts_tsv["bgctable"] + outfile_summary = outdir / f"{genome_id}_arts_bgctable_summary.json" + outfile_hits = outdir / f"{genome_id}_arts_bgctable_hits.json" + bgctable_hits = extract_arts_bgctable( + arts_bgctable_tsv, outfile_summary, hit_mapper=hit_mapper, genome_id=genome_id + ) + logging.debug("Done!\n") + + logging.info("Extracting duplication table information...") + arts_duptable_tsv = arts_tsv["duptable"] + outfile_summary = outdir / f"{genome_id}_arts_duptable_summary.json" + outfile_hits = outdir / f"{genome_id}_arts_duptable_hits.json" + duptable_hits = extract_arts_duptable( + arts_duptable_tsv, outfile_summary, genome_id=genome_id + ) + logging.debug("Done!\n") + + logging.info("Extracting known hits table information...") + arts_knownhits_tsv = arts_tsv["knownhits"] + outfile_hits = outdir / f"{genome_id}_arts_knownhits.json" + knownhits = extract_arts_knownhits( + arts_knownhits_tsv, outfile_hits, genome_id=genome_id + ) + logging.debug("Done!\n") + + logging.info("Summarizing all hits...") + df = pd.concat( + [ + coretable_hits.rename(columns={"core_gene": "core_gene_or_model"}), + bgctable_hits.rename(columns={"core_gene": "core_gene_or_model"}), + duptable_hits.rename(columns={"core_gene": "core_gene_or_model"}), + knownhits.rename(columns={"model": "core_gene_or_model"}), + ] + ).sort_index() + agg_dict = { + col: lambda series: series.dropna().iloc[0] + if len(series.dropna()) > 0 + else np.nan + for col in df.columns + } + merged_df = df.groupby(df.index).agg(agg_dict) + for c in ["duplication", "phylogeny", "known_target", "bgc_proximity"]: + if c in merged_df.columns: + merged_df[c] = merged_df[c].fillna("No") + merged_df[c].replace({"No": False, "Yes": True}, inplace=True) + outfile = outdir / f"{genome_id}_arts_all_hits.json" + logging.debug(f"Writing output to {outfile}") + merged_df.T.to_json(outfile) + + +if __name__ == "__main__": + extract_arts(sys.argv[1], sys.argv[2], sys.argv[3], sys.argv[4]) diff --git a/workflow/bgcflow/bgcflow/data/arts_gather.py b/workflow/bgcflow/bgcflow/data/arts_gather.py index f28751ae..f3d02236 100644 --- a/workflow/bgcflow/bgcflow/data/arts_gather.py +++ b/workflow/bgcflow/bgcflow/data/arts_gather.py @@ -24,19 +24,6 @@ def generate_change_dict(change_log): return change_dict -def correct_arts_bgc_ids(arts_json, change_dict, genome_id): - logging.debug(f"Correcting BGC ids for {genome_id}") - output = {} - with open(arts_json, "r") as f: - query = json.load(f) - for k in query.keys(): - correct_bgc_id = Path( - change_dict[genome_id][f"{k}.gbk"]["symlink_path"] - ).stem - output[correct_bgc_id] = query[k] - return output - - def combine_arts_json(input_json, change_log_path, table): logging.info("Combining and correcting ARTS output...") @@ -75,13 +62,13 @@ def combine_arts_json(input_json, change_log_path, table): with alive_bar(len(input_json_files), title="Merging json:") as bar: for j in input_json_files: arts_json = Path(j) - genome_id = arts_json.stem - value = correct_arts_bgc_ids(arts_json, change_dict, genome_id) + with open(arts_json, "r") as f: + value = json.load(f) container.update(value) bar() df = pd.DataFrame.from_dict(container).T - df.index.name = "bgc_id" + df.index.name = "pkey" logging.debug(f"Writing file to: {table}") diff --git a/workflow/envs/utilities.yaml b/workflow/envs/utilities.yaml index 9340cb88..02d1279f 100644 --- a/workflow/envs/utilities.yaml +++ b/workflow/envs/utilities.yaml @@ -5,3 +5,5 @@ channels: dependencies: - openjdk - perl + - wget +s \ No newline at end of file diff --git a/workflow/notebook/01-initial-data-exploration.ipynb b/workflow/notebook/01-initial-data-exploration.ipynb deleted file mode 100644 index a2f5df22..00000000 --- a/workflow/notebook/01-initial-data-exploration.ipynb +++ /dev/null @@ -1,4276 +0,0 @@ -{ - "cells": [ - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "# Initial data exploration of the data generated using bgcflow" - ] - }, - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "### Input Dataset before curation\n", - "\n", - "- Source: NCBI, PATRIC, and internal genomes from NBC and CeMiSt collection\n", - "- Species selected: Streptomyces albus \n", - "- Number of genomes: 5" - ] - }, - { - "cell_type": "code", - "execution_count": 10, - "metadata": {}, - "outputs": [], - "source": [ - "import os\n", - "import pandas as pd\n", - "import plotly.express as px\n", - "import matplotlib.pyplot as plt\n", - "from bgcflow.data.make_genome_dataset import init_genome_dataframe\n", - "%matplotlib inline" - ] - }, - { - "cell_type": "code", - "execution_count": 11, - "metadata": {}, - "outputs": [], - "source": [ - "samples_template_file = \"../../config/samples.csv\"\n", - "\n", - "df_samples = pd.read_csv(samples_template_file, index_col='genome_id')" - ] - }, - { - "cell_type": "code", - "execution_count": 12, - "metadata": {}, - "outputs": [ - { - "data": { - "text/html": [ - "
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" - ] - }, - "metadata": {}, - "output_type": "display_data" - } - ], - "source": [ - "fig = px.scatter(df, x=feature1, y=feature2, \n", - " hover_name= df.index, hover_data=df_genomes.columns,\n", - " width=800, height=600)\n", - "title = feature1 + ' vs ' + feature2\n", - "fig.update_layout(title=title)\n", - "fig.show()" - ] - }, - { - "cell_type": "code", - "execution_count": 9, - "metadata": {}, - "outputs": [], - "source": [ - "df_genomes.to_csv(\"../../data/processed/tables/df_genomes.csv\")" - ] - } - ], - "metadata": { - "interpreter": { - "hash": "cbef1bae284d788f2bdf235f1a949dba9b578bb11a00cf3161e24ee6e437fd04" - }, - "kernelspec": { - "display_name": "Python 3", - "language": "python", - "name": "python3" - }, - "language_info": { - "codemirror_mode": { - "name": "ipython", - "version": 3 - }, - "file_extension": ".py", - "mimetype": "text/x-python", - "name": "python", - "nbconvert_exporter": "python", - "pygments_lexer": "ipython3", - "version": "3.9.7" - } - }, - "nbformat": 4, - "nbformat_minor": 4 -} diff --git a/workflow/notebook/02-gtdb-exploration.ipynb b/workflow/notebook/02-gtdb-exploration.ipynb deleted file mode 100644 index 09f7d949..00000000 --- a/workflow/notebook/02-gtdb-exploration.ipynb +++ /dev/null @@ -1,7417 +0,0 @@ -{ - "cells": [ - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "# Initial data exploration and curation before starting the workflow" - ] - }, - { - "cell_type": "code", - "execution_count": 1, - "metadata": {}, - "outputs": [], - "source": [ - "# import libraries\n", - "import os\n", - "import pandas as pd\n", - "import seaborn as sns\n", - "import plotly.express as px\n", - "import matplotlib.pyplot as plt\n", - "from Bio import SeqIO\n", - "%matplotlib inline" - ] - }, - { - "cell_type": "code", - "execution_count": 2, - "metadata": {}, - "outputs": [], - "source": [ - "# Additional directory variables\n", - "gtdb_meta_path = '../../data/processed/tables/df_gtdb_meta.csv'\n", - "samples_path = '../../config/samples.csv'\n", - "genomes_path = '../../data/processed/tables/df_genomes.csv'" - ] - }, - { - "cell_type": "code", - "execution_count": 3, - "metadata": {}, - "outputs": [], - "source": [ - "df_samples = pd.read_csv(samples_path, index_col='genome_id')\n", - "df_gtdb_meta = pd.read_csv(gtdb_meta_path, index_col='genome_id')\n", - "df_genomes = pd.read_csv(genomes_path, index_col='genome_id')" - ] - }, - { - "cell_type": "code", - "execution_count": 4, - "metadata": {}, - "outputs": [ - { - "data": { - "text/html": [ - "
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KingdomPhylumClassOrderFamilyGenusSpeciesOrganism
genome_id
NBC_01270.1BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
NBC_01171.1BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces seoulensisNaN
P8-2B-3.1BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
GCF_000359525.1BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
1223307.4BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
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" - ], - "text/plain": [ - " Kingdom Phylum Class Order \\\n", - "genome_id \n", - "NBC_01270.1 Bacteria Actinobacteriota Actinomycetia Streptomycetales \n", - "NBC_01171.1 Bacteria Actinobacteriota Actinomycetia Streptomycetales \n", - "P8-2B-3.1 Bacteria Actinobacteriota Actinomycetia Streptomycetales \n", - "GCF_000359525.1 Bacteria Actinobacteriota Actinomycetia Streptomycetales \n", - "1223307.4 Bacteria Actinobacteriota Actinomycetia Streptomycetales \n", - "\n", - " Family Genus Species \\\n", - "genome_id \n", - "NBC_01270.1 Streptomycetaceae Streptomyces Streptomyces albidoflavus \n", - "NBC_01171.1 Streptomycetaceae Streptomyces Streptomyces seoulensis \n", - "P8-2B-3.1 Streptomycetaceae Streptomyces Streptomyces albidoflavus \n", - "GCF_000359525.1 Streptomycetaceae Streptomyces Streptomyces albidoflavus \n", - "1223307.4 Streptomycetaceae Streptomyces Streptomyces albidoflavus \n", - "\n", - " Organism \n", - "genome_id \n", - "NBC_01270.1 NaN \n", - "NBC_01171.1 NaN \n", - "P8-2B-3.1 NaN \n", - "GCF_000359525.1 NaN \n", - "1223307.4 NaN " - ] - }, - "execution_count": 4, - "metadata": {}, - "output_type": "execute_result" - } - ], - "source": [ - "df_gtdb_meta.loc[df_gtdb_meta.Family.dropna().index,:]" - ] - }, - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "### Run GTDB-TK on remaining genomes that did not have taxonomy info fetched from GTDB database " - ] - }, - { - "cell_type": "code", - "execution_count": 5, - "metadata": {}, - "outputs": [], - "source": [ - "# Copy fasta files of genomes without taxonomy at GTDB \n", - "from shutil import copyfile\n", - "\n", - "df_gtdb_unfetched = df_gtdb_meta.loc[df_gtdb_meta.Kingdom.isna(),:]\n", - "\n", - "gtdbtk_folder = \"../../data/interim/gtdbtk\"\n", - "gtdbtk_fasta_folder = \"../../data/interim/gtdbtk/fasta/\"\n", - "fasta_folder = \"../../data/interim/fasta/\"\n", - "\n", - "if not os.path.isdir(gtdbtk_folder):\n", - " os.mkdir(gtdbtk_folder)\n", - "\n", - "if not os.path.isdir(gtdbtk_fasta_folder):\n", - " os.mkdir(gtdbtk_fasta_folder)\n", - " \n", - "for genome_id in df_gtdb_unfetched.index:\n", - " from_fna = os.path.join(fasta_folder, genome_id + \".fna\")\n", - " to_fna = os.path.join(gtdbtk_fasta_folder, genome_id + \".fna\")\n", - " if not os.path.isfile(to_fna):\n", - " copyfile(from_fna, to_fna) " - ] - }, - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "# Run GTDBtk\n", - "\n", - "GTDB-tk was run using an azure VM - Standard E32as_v4 (32 vcpus, 256 GiB memory)\n", - "\n", - "The output was stored at the same azure storage container in the Interim data directory.\n", - "\n", - "The output was then downloaded to the current workflows interim data directory." - ] - }, - { - "cell_type": "code", - "execution_count": 6, - "metadata": {}, - "outputs": [], - "source": [ - "# Make sure that GTDB-run was succesful beofore running following\n", - "classfiy_path = '../../data/interim/gtdbtk/output/classify/gtdbtk.bac120.summary.tsv'\n", - "if os.path.isfile(classfiy_path):\n", - " df_gtdbtk_classify = pd.read_csv(classfiy_path, sep='\\t', dtype=str)\n", - " df_gtdbtk_classify.set_index('user_genome', inplace=True)\n", - "\n", - " print('Number of genomes processed using GTDBtk:\\n', df_gtdbtk_classify.shape[0], 'from', df_gtdb_unfetched.shape[0])" - ] - }, - { - "cell_type": "code", - "execution_count": 7, - "metadata": {}, - "outputs": [], - "source": [ - "# Parse the taxonomy in separate columns\n", - "def parse_gtdb_taxonomy(df_gtdb):\n", - " '''\n", - " Parse GTDB table in to separate folders for GTDB taxonomy\n", - " '''\n", - "\n", - " for genome_id in df_gtdb.index:\n", - " strain_id = genome_id\n", - " taxonomy_str = df_gtdb.loc[genome_id, 'classification']\n", - " tax_list = taxonomy_str.split(';')\n", - " for tax_level in tax_list:\n", - " if 'd__' in tax_level:\n", - " domain_name = tax_level.split('d__')[1]\n", - " df_gtdb.loc[genome_id, 'Kingdom'] = domain_name\n", - " elif 'p__' in tax_level:\n", - " phylum_name = tax_level.split('p__')[1]\n", - " df_gtdb.loc[genome_id, 'Phylum'] = phylum_name\n", - " elif 'c__' in tax_level:\n", - " class_name = tax_level.split('c__')[1]\n", - " df_gtdb.loc[genome_id, 'Class'] = class_name\n", - " elif 'o__' in tax_level:\n", - " order_name = tax_level.split('o__')[1]\n", - " df_gtdb.loc[genome_id, 'Order'] = order_name\n", - " elif 'f__' in tax_level:\n", - " family_name = tax_level.split('f__')[1]\n", - " df_gtdb.loc[genome_id, 'Family'] = family_name\n", - " elif 'g__' in tax_level:\n", - " genus_name = tax_level.split('g__')[1]\n", - " if not genus_name:\n", - " genus_name = 'Undecided'\n", - " print(genome_id, ': No genus found, using Undecided as genus')\n", - " df_gtdb.loc[genome_id, 'Genus'] = genus_name\n", - " elif 's__' in tax_level:\n", - " species_name = tax_level.split('s__')[1]\n", - " df_gtdb.loc[genome_id, 'Species'] = species_name\n", - " \n", - " return df_gtdb" - ] - }, - { - "cell_type": "code", - "execution_count": 8, - "metadata": {}, - "outputs": [ - { - "data": { - "text/html": [ - 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sourceorganismgenusspeciesstrainclosest_placement_referencecontigsgc_contentgenome_lenKingdomPhylumClassOrderFamilyGenusSpeciesOrganism
genome_id
NBC_01270.1customStreptomyces sp. NBC_01270Streptomycessp.NBC_01270GCF_000719955.110.7338027015026BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
NBC_01171.1customStreptomyces sp. NBC_01171Streptomycessp.NBC_01171GCF_004784475.110.7160946584863BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces seoulensisNaN
P8-2B-3.1customStreptomyces sp. P8-2B-3Streptomycessp.P8-2B-3GCF_000719955.110.7336037099240BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
GCF_000359525.1ncbiStreptomyces albus strain J1074StreptomycesalbusJ1074GCF_000359525.110.7332136841649BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
1223307.4patricStreptomyces sp. PVA 94-07Streptomycessp.PVA 94-07GCF_000495755.130.7305007106149BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN
\n", - "
" - ], - "text/plain": [ - " source organism genus \\\n", - "genome_id \n", - "NBC_01270.1 custom Streptomyces sp. NBC_01270 Streptomyces \n", - "NBC_01171.1 custom Streptomyces sp. NBC_01171 Streptomyces \n", - "P8-2B-3.1 custom Streptomyces sp. P8-2B-3 Streptomyces \n", - "GCF_000359525.1 ncbi Streptomyces albus strain J1074 Streptomyces \n", - "1223307.4 patric Streptomyces sp. PVA 94-07 Streptomyces \n", - "\n", - " species strain closest_placement_reference contigs \\\n", - "genome_id \n", - "NBC_01270.1 sp. NBC_01270 GCF_000719955.1 1 \n", - "NBC_01171.1 sp. NBC_01171 GCF_004784475.1 1 \n", - "P8-2B-3.1 sp. P8-2B-3 GCF_000719955.1 1 \n", - "GCF_000359525.1 albus J1074 GCF_000359525.1 1 \n", - "1223307.4 sp. PVA 94-07 GCF_000495755.1 3 \n", - "\n", - " gc_content genome_len Kingdom Phylum \\\n", - "genome_id \n", - "NBC_01270.1 0.733802 7015026 Bacteria Actinobacteriota \n", - "NBC_01171.1 0.716094 6584863 Bacteria Actinobacteriota \n", - "P8-2B-3.1 0.733603 7099240 Bacteria Actinobacteriota \n", - "GCF_000359525.1 0.733213 6841649 Bacteria Actinobacteriota \n", - "1223307.4 0.730500 7106149 Bacteria Actinobacteriota \n", - "\n", - " Class Order Family \\\n", - "genome_id \n", - "NBC_01270.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "NBC_01171.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "P8-2B-3.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "GCF_000359525.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "1223307.4 Actinomycetia Streptomycetales Streptomycetaceae \n", - "\n", - " Genus Species Organism \n", - "genome_id \n", - "NBC_01270.1 Streptomyces Streptomyces albidoflavus NaN \n", - "NBC_01171.1 Streptomyces Streptomyces seoulensis NaN \n", - "P8-2B-3.1 Streptomyces Streptomyces albidoflavus NaN \n", - "GCF_000359525.1 Streptomyces Streptomyces albidoflavus NaN \n", - "1223307.4 Streptomyces Streptomyces albidoflavus NaN " - ] - }, - "execution_count": 8, - "metadata": {}, - "output_type": "execute_result" - } - ], - "source": [ - "if os.path.isfile(classfiy_path):\n", - " df_gtdbtk = parse_gtdb_taxonomy(df_gtdb=df_gtdbtk_classify)\n", - " df_gtdbtk.head()\n", - " \n", - " for genome_id in df_gtdb_meta.index:\n", - " if genome_id in df_gtdbtk.index:\n", - " for col in df_gtdb_meta.columns:\n", - " if col in df_gtdbtk.columns:\n", - " df_gtdb_meta.loc[genome_id, col] = df_gtdbtk.loc[genome_id, col]\n", - "\n", - "for col in df_gtdb_meta.columns:\n", - " for genome_id in df_genomes.index:\n", - " df_genomes.loc[genome_id, col] = df_gtdb_meta.loc[genome_id,col]\n", - "df_genomes" - ] - }, - { - "cell_type": "code", - "execution_count": 9, - "metadata": {}, - "outputs": [ - { - "data": { - "text/html": [ - " \n", - " " - ] - }, - "metadata": {}, - "output_type": "display_data" - }, - { - "data": { - "application/vnd.plotly.v1+json": { - "config": { - "plotlyServerURL": "https://plot.ly" - }, - "data": [ - { - "alignmentgroup": "True", - "bingroup": "x", - "hovertemplate": "Species=Streptomyces albidoflavus
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pPggQIECAQHcCo4SW5upIHH1zq1i/QBKPqweHGDK+9Z1XZ20ni0GjujeJxw+6T6lWTaqVltjf5lvuC9ddcf6se5qqvxhM+q3MdCevZwL/v4DQIrT480CAAAECBAjMITBKaKmfrrkdq9r+NSi01FdDdvzJl2Zt+6rOu/Lo5b3VmX0/+nFvRaffNrRmaBn0YoB4zos/dW4vGNXH2m8bmguFQFcCQssQoaX+5o/61rDY1EpLV5eufgkQIECAQDsCqaGlGWCqbWPx5/GZlvrWr/izZmiJPxv09q/4YP9CQstcu0cGBS3hpZ3rTC9zCwgtC7xCmvtG97/19ws8g8MJECBAgACBSRJY+p5fWvBwv/rk0+E31px+0HMgMWRsv3tX71mXQaGluT2s/gxKcyD1rWLNbez9tof1C0lzTa4+3vgsry8CXQkILQuUj3853HrXzrDl+kt6D+KXElre+du/CT//XzYvUMPhBAgQIECgv8C7/nBLOOTD/6gInlFCSwweX35iz8wD9hGi2g62+iOreisn/baHxZCwect9Bz2Y/1sfXzOz2hLDSNw29ge/+5vhPe9+d+85lPhVbRGb60H8fuOKfX77u98PH/31D4dbPvdwuP6zF/TuceJX88H9IgpqEhMpILQssGzN0FLK9rBDv7EnvHvHDQvUcDgBAgQIEOgv8NMrbw4/O3VNETyjbg9rvoY4YtRfZ9zvYf3qWZX6qkm/46pnUOI5B72meNhXHtf7bI65uS2+iIKaxEQKCC3zlC0u737oA8fMvGWj+SpAoWUir3uDJkCAAIFFFhBa5gce9CD+/C0dQWD6BISWeWpefaJtdVjzYTShZfr+0JgxAQIECMwvILTMbyS0zG/kCAKVgNCSeC0ILYmAmhMgQIBAkQJCy/xlFVrmN3IEAaFlTNeA0DImSKchQIAAgaIEhJaiymkyBDoXsNKSWAKhJRFQcwIECBAoUkBoKbKsJkWgMwGhJZFeaEkE1JwAAQIEihQQWoosq0kR6ExAaEmkF1oSATUnQIAAgSIFhJYiy2pSBDoTEFoS6YWWREDNCRAgQKBIAaGlyLKaFIHOBISWRHqhJRFQcwIECBAoUkBoGb6sz/yHnw9/cAjhP1txSDjqyEMW1MbBBCZdQGhJrKDQkgioOQECBAgUKSC0DF/WzTf/ffjeD94ZusGWG35JaBlaK48D6x9O/vIre8PmrfeHLZs+M/Ph5dUoDxx4O9x424NhzRmnhHVrzzpo8PHzA7ffvSvs2Hp1WHb40jknV51r9+N7Qvycwfe994hw6C8dGjZcuj4PlAWOQmhZIFjzcKElEVBzAgQIEChSQGgZvqxth5Z4A/3AF3fPDHDl0cvDPduu6d1A12+uh5/B8EfOdcM+/Fkm78guQssjjz0V9nz9uXDTtReFJUsOW/TaLnZVhJZEYaElEVBzAgQIEChSQGgZvqxthpbmjWwcZfzX+29/9/u9f9kXWoav20KOHDa0zHfOhay0NGu52LWdb+ypvxdaEgWFlkRAzQkQIECgSAGhZfiythVahtl6dOFVW2cGHrcUbbj0k+EP/8Xne9uL/vjffKX3u2pVJgagG7Y90PtZ/H39X/TffPOtsP/Nn4S4NalayVl59JG9rU/xZ9XXQ3duCqtPXxUGnatamTnlV48PO7/0l71mF3/q3HDWmaeGaqzx+7jl6fU39ocrN90RNly+vnfO+NVc2Yk3/VW7+gpT1fbZ51/qtavGFf+/vjJVb9OscOzrso23h72v7ZsZZ7UVq19oac4pHtuvRnWbeOLTTj5xZnvYoHE3V9Nu3nhx+NZ3Xu2Nqz6masWtPq9+wbYa/x/87m8eZBx/d/yxK3qhtzme+nUx/J+I/kcKLYmCQksioOYECBAgUKSA0DJ8WdsKLdUN+Jef2DMTPJqjbP5rfHUT+v5j3jcTSmKbeGO769EnZ26e6zeu8f/rfdRvgve+9oODnudorh7E9q9+b1+vv3h8DAJXfPoTvZviKhj81sdjoFp/UCiJfcWb835hIfazect9M3OP53rrwE/DyhVH9m7E15939kwft961M2y5/pLwn7713d48q0AWzxG/qlBU9/vqk0+HD33gmN42u2qcWzZf0ju2GVrqc6qHrVNPOmHWMy3NMdet3vPud886dq4+q9pXoSX2+dgTXwsXrDunN4W6+Vs//WnYfMt94borzu/NJR5bfb/siKVzhpb6dRDP+/Ajj4e1Hz9z3udvhvnTIrQMozTHMUJLIqDmBAgQIFCkgNAyfFnbDC3VDWr9mZbmKkl1Yxv/22/1ot9qQLyZrm7ud/zJl3qTr4JDfbUj/rz5EHozKM11fHM8/b6v32DXb74HbY9qhqZqfjHExG1z9XA2bFWbRvNtD6t+f+U/++1ZQaQ55vpYX//R/jktF7I9rF9wrFZP6rWNgaa5mlUFlbUfO7M39hVHLV+Uh/2FlmGvvgHHCS2JgJoTIECAQJECQsvwZW07tNRHVt30r/7Iqt6N5qCVlvqWq/pbqernqsJPM7TU/6V+UGipbpCroFSFjebx84WWKpTF88XVofoqSXMVoBp7fctYfT7VFrH6Vqu5tjv1c4nbsprPCvV7GUG1QtQvtNRtmqGlWhGq3iRWX2maL7Q0513fdtYMoc3tX/XrYa7tYdX8h//TMPhIoSVRUWhJBNScAAECBIoUEFqGL2uXoSWOsr59q1/gaP7Len0lot82qYWsnFQhI/53mJWZYUJLFQriOa+5/JMzW7nmWmmph5tBlZvrmaDqd9UqQ+4rLXNtO4sBqAqaF/3e2l7wu/6zF/S2ePVbeRsUBsf9pjihZfi/U/oeKbQkAmpOgAABAkUKCC3Dl7Wt0BJvpOO/zMfnGOKzCvGreXPdfAi7301qFXTq26bief5891+F3zn3N0Iz+NTDQr/zNW+gm8+01LeTDRNaqjnFrV31zzPpd6Me5/LB44+Z9UxL/Fn17MoPX98/85zKMKGl+nyVapzVczJzbQ+r39xXLyuoztNv29bT//6F3ryqZ1qqoLSQZ1qa520+o1TV+KtP/l/hpA/+5zOBsmlQ9RmfOYrbw6prIL5iWWgZ/u+AVo4UWlph1gkBAgQITJiA0DJ8wdoKLdWNaPXGr2qE9S089bc/1d8eVt8OVLVrvtWqvhVq0DMzzTEM+/aw6oMYhwktsY9B//pfH/Ncbw+rtkrFB/Hrb1Sr3lTWr7rNN5Mtf+/h4ZPnfbTv9rD6W8biuSqHfsGovj0t9l+FlvrKx6C3nsVz93spQXMr2z/+h6eGH+//yayQ1wxB1Zzrb0mL18jSX/nlcMpJH5iZZ7329bewDf8nov+RVloSBYWWREDNCRAgQKBIAaFl+LK2GVqGH9XoRw7ahjX6GRfWMgabWz738MyWpoW1dnSuAkJLYmWElkRAzQkQIECgSAGhZfiyfu6+vx/+4BDC7/53h4ajjjxkQW3aPLjr0NJ87XGbc9fX4gkILYm2QksioOYECBAgUKSA0FJkWU2KQGcCQksivdCSCKg5AQIECBQpILQUWVaTItCZgNCSSC+0JAJqToAAAQJFCggtRZbVpAh0JiC0JNILLYmAmhMgQIBAkQJCS5FlNSkCnQkILYn0QksioOYECBAgUKSA0FJkWU2KQGcCQksivdCSCKg5AQIECBQpILQUWVaTItCZgNCSSC+0JAJqToAAAQJFCggtw5f1//l3fz38wSGEQ485LrxrxbELauNgApMuILQkVlBoSQTUnAABAgSKFBBahi/rj//H88PPX/3O0A3+wf+6U2gZWqvcAxf783CefuaFsP3uXWHH1qvDssOXdg4ptCSWQGhJBNScAAECBIoUEFqGL2vboSXe7D7wxd0zA1x59PJwz7ZrwgnHrQyLfSP88it7w+at94ctmz7T68/X6AKLXSuhZfTaZNlSaMmyLAZFgAABAh0LCC3DF6DN0BI/LX7P158LN117UViy5LDeIOPN6be/+/2wbu1ZQsvwZev8yMUOLZ1PsDEAKy2JFRFaEgE1J0CAAIEiBYSW4cvaVmg5cODtcONtD4Y1Z5zSCyjNrxheLrxq68yPzz1nTdhw6SfDH/6Lz4f4/3/8b77S+121KhMD0A3bHuj9LP6+CkLxZvrNN98K+9/8Sdj9+J5QreSsPPrIXv/xZ9XXQ3duCqtPXxUGnatamTnlV48PO7/0l71mF3/q3HDWmafOjDV+v+HS9eH1N/aHKzfdETZcvr53zvjVXNmpz7G+wlS1ffb5l3rtqnHF/6+vTNXbNP1iX5dtvD3sfW3fzDjjuOJXvd/TTj5x1parert+Y6rPJ47l+GNX9A2Yg+ZQ/byqYRxfvV7NdtXvvvHiy7O2h9Vr1DQa/mof/UihZXS7XkuhJRFQcwIECBAoUkBoGb6sbYWW6gb8y0/smQkezVE2//W+uqF9/zHvm7U6E29gdz365MzNd/Nmut5HfXVn72s/OGh7WHMbUjzXq9/b1+svHh+DwBWf/kTvRr26wf+tj8dAtf6gUBL7+tZ3Xu39rppv/G/8Pvazect9M3OP53rrwE/DyhVH9sLO+vPOnunj1rt2hi3XXxL+07e+25tnFcjiOeJXFYoqvyoQxnPE38Xv/3z3X4XfOfc3Qrz5r/dbH2MzaNXHuOyIpQeFsEGhpTpPvznEMcb5VTWM39fDa/2c8XcPP/J4WPvxM3tzr55pef1H+0NlEp9viXb/8f/+bvgnZ68e/kJPPFJoSQQUWhIBNSdAgACBIgWEluHL2mZoqW7k68+0NFdJqpv8+N9+qxf9VmzizXZ1c7/jT77Um3wVHOqrHfHnzWdamkFpruOb4+n3/eZb7gvXXXF+iDf91f/P9bxOMzTVA0jcNlcPZ4Oq2gwN9eP6za8eiuoPu9dtP/rrHx46tMw1hw8ef8zA86z92Jm9ALPiqOUz9arGXj9nDDD14DX81T2+I4WWREuhJRFQcwIECBAoUkBoGb6sbYeW+siqm+3VH1nVu2kdtNJS36JU3VjXt3nFc1bhpxlaYh9VeBgUWqotT1VQGnT8fKGlCmXxfHFlob5K0lxRqN+c17fFVT+vtojVt4fVA16zws3tYf3aV22qLWLNlZz6+BcaWgbNYa7QElevmtvDbt54cW/FqRmE6tvDmlvchr/aRz9SaBndrtdSaEkE1JwAAQIEihQQWoYva5ehJY6yvn2rX+BoPifS3ArVnOlCVk6qm/T432FWZoYJLdVKTTznNZd/cmYr16AH1+urRNXLCfpVb75ngupt6jf8X/izr8w8h9I876AVkvjc0UJDSz2g9Qumg56NqR9bX+Xa96MfD3zlcRcvARBahv87pe+RQksioOYECBAgUKSA0DJ8WdsKLfGmO25LumDdOTOvG27eiDffLtZve1gVdOrbpurPcDSDT/0Gt9/5ms+aNJ9pqW8nGya0VHOKW7vqnzHS7Kd6PqVaiaieB4nzq373w9f3hw994Jie11yhJY7rsSe+1rOt2lfbvvptraqeG4nH1p+nqY+xenFB9eKEaiWner6nn2u/Ocy3Pax69iYGtkGhJc4hflXP8ggtw//5zuZIoSWbUhgIAQIECGQkILQMX4y2QksVNqo3flUjrLYDxe/rW4Xqbw+r/yt91a75NqnqPM3PgWluqaq3G/btYdXnugwTWuL4Bm0Fq/c919vD6tu36tuuqjeVNavb3DLXfMtY881s9fMMentY7KP+u+i49Fd+OZxy0geGentYNYcqGM31FrL6M05VTeqrQPFB/Pqb0ebaJjf8lb+wI620LMzroKOFlkRAzQkQIECgSAGhZfiythlahh/V6Ed28a/w9dHGYHPL5x4O13/2giw+yX10SS3rAkJL4vUgtCQCak6AAAECRQoILcOX9c1/+T8Nf3AI4T2f/mx414pjF9SmzYO7Di3N1x63OXd9LZ6A0JJoK7QkAmpOgAABAkUKCC1FltWkCHQmILQk0gstiYCaEyBAgECRAkJLkWU1KQKdCQgtifRCSyKg5gQIECBQpIDQUmRZTYo5ETFlAAAgAElEQVRAZwJCSyK90JIIqDkBAgQIFCkgtBRZVpMi0JmA0JJIL7QkAmpOgAABAkUKCC1FltWkCHQmILQk0gstiYCaEyBAgECRAkJLkWU1KQKdCQgtifRCSyKg5gQIECBQpIDQUmRZTYpAZwJCSyK90JIIqDkBAgQIFCkgtBRZVpMi0JmA0JJIL7QkAmpOgAABAkUKCC1FltWkCHQmILQk0gstiYCaEyBAgECRAkJLkWU1KQKdCQgtifRCSyKg5gQIECBQpIDQUmRZTYpAZwJCSyK90JIIqDkBAgQIFCkgtBRZVpMi0JmA0JJIL7QkAmpOgAABAkUKCC1FltWkCHQmILQk0gstiYCaEyBAgECRAkJLkWU1KQKdCQgtC6B/+pkXwoVXbQ0P3bkprD59Va+l0LIAQIcSIECAwNQICC1TU2oTJdCKgNAyJHMVWOLhQsuQaA4jQIAAgakVEFqmtvQmTmBRBISWIVhffmVvuPWunWHjlb8XNt9yf9hw+XorLUO4OYQAAQIEpldAaJne2ps5gcUQEFrmUY2BZfPW+8OWTZ8Jy45YGq7cdIfQshhXonMSIECAQFECQktR5TQZAp0LCC1zlOD1N/aHzbfcF6674vxwwnErQ/y+GVoOvP2zzos4jgG89r//TfiVx78wjlM5BwECBAgQCG+e8wfh6P/mHxUhseSwQ4uYh0kQmGQBoWWO6sVVlss23h72vrbvoKOq51p+uP/tSa7/zNj/7oUQHvrTQ4qYi0kQIECAQPcCF/7+O+HXfvHOmon/eu/SwyZ+DiZAYNIFhJYFVLDfSkspbw978ZuHhId3+pekBVwODiVAgACBOQQuOP9n4aRffacIo5XL31PEPEyCwCQLCC0LqJ7QsgAshxIgQIDAVAsILVNdfpMnMHYBoWUBpELLArAcSoAAAQJTLSC0THX5TZ7A2AWElkRS28MSATUnQIAAgSIFhJYiy2pSBDoTEFoS6YWWREDNCRAgQKBIAaGlyLKaFIHOBISWRHqhJRFQcwIECBAoUkBoKbKsJkWgMwGhJZFeaEkE1JwAAQIEihQQWoosq0kR6ExAaEmkF1oSATUnQIAAgSIFhJYiy2pSBDoTEFoS6YWWREDNCRAgQKBIAaGlyLKaFIHOBISWRHqhJRFQcwIECBAoUkBoKbKsJkWgMwGhJZFeaEkE1JwAAQIEihQQWoosq0kR6ExAaEmkF1oSATUnQIAAgSIFhJYiy2pSBDoTyDq0bL93V3j1e/vCTdde1AO68bYHw+7H94SVRy8P92y7Jpxw3MrO4KqOhZbOS2AABAgQIJChgNCSYVEMicAEC2QbWl5/Y3+4ctMdYcPl68Pq01eFp595Iex69MlegPnGiy/P/P+SJYd1yi+0dMqvcwIECBDIVEBoybQwhkVgQgWyDi2bb7kvXHfF+b0VlbjqEr82XLo+vPzK3nDrXTvDlusvCcsOX9opvdDSKb/OCRAgQCBTAaEl08IYFoEJFcg2tBw48HZvO9j6884OHzz+mINWXbbfvSvs2Hq10DKmC+/Fbx4SHt556JjO5jQECBAgMO0CQsu0XwHmT2C8AtmGljjNuKJy2cbbw97X9oWLP3Vub5Wl2ja2+iOret93/WWlpesK6J8AAQIEchQQWnKsijERmFyBrEPLJLAKLZNQJWMkQIAAgbYFhJa2xfVHoGwBoSWxvkJLIqDmBAgQIFCkgNBSZFlNikBnAlmHluq5lvprjlcefWTvWZc1Z5wS1q09qzO4qmOhpfMSGAABAgQIZCggtGRYFEMiMMECWYeW+Maw449dEdZ+7Mze28IuWHdO701i9dcfe+XxeK4+D+KPx9FZCBAgQOAXAkKLK4EAgXEKZBta4gP31SuP4+pKPbR45fE4L4FfnEtoGb+pMxIgQGCaBYSWaa6+uRMYv8BEhhYrLeO/EISW8Zs6IwECBKZZQGiZ5uqbO4HxC2QbWuJUH3nsqbDn68+F6z97QfijB/+itz1s2RFLe5/ZEj+/xTMt47sghJbxWToTAQIECNge5hogQGC8AlmHljjVuKpy4VVbZ836oTs3hdWnrxqvxIhn8yD+iHCaESBAgEDRAlZaii6vyRFoXSD70NK6yAI7FFoWCOZwAgQIEJgKAaFlKspskgRaExBaEqmFlkRAzQkQIECgSAGhpciymhSBzgSElkR6oSURUHMCBAgQKFJAaCmyrCZFoDOBrENLfLXxZRtvD3tf23cQ0Gknnxh2bL06LDt8aWd4sWOhpVN+nRMgQIBApgJCS6aFMSwCEyqQbWg5cODtrD75flB9hZYJvfINmwABAgQWVUBoWVReJycwdQLZhpb6h0uecNzKbAsjtGRbGgMjQIAAgQ4FhJYO8XVNoECBbENLtdISP48ll9cb96u/0FLgnwpTIkCAAIFkAaElmdAJCBCoCWQbWuIYqw+XvOnai8KSJYdlWTihJcuyGBQBAgQIdCwgtHRcAN0TKEwg69DiQfz2rrYXv3lIeHjnoe11qCcCBAgQKFpAaCm6vCZHoHWBbEOLB/HbvRaElna99UaAAIHSBYSW0itsfgTaFcg2tHgQv90LQWhp11tvBAgQKF1AaCm9wuZHoF2BbEOLB/HbvRCElna99UaAAIHSBYSW0itsfgTaFcg2tEQGD+K3dzEILe1Z64kAAQLTICC0TEOVzZFAewLZhpa4PezKTXeEZ59/qa/GaSefGHZsvTosO3xpe1p9evL2sE75dU6AAAECmQoILZkWxrAITKhAtqFlUjyFlkmplHESIECAQJsCQkub2voiUL5A9qHl6WdeCBdetXVWJR66c1M2HzgptJT/h8QMCRAgQGDhAkLLws20IEBgsEDWoSUGlu1375q1Daz67JYrPv2JsG7tWZ3XVmjpvAQGQIAAAQIZCggtGRbFkAhMsEC2oWWut4fFMLPr0SfDTddeFJYsOaxTfqGlU36dEyBAgECmAkJLpoUxLAITKpBtaJnrc1riasutd+0MW66/xIP4Y7rwvD1sTJBOQ4AAAQI9AaHFhUCAwDgFsg0tVlrGWeb5zyW0zG/kCAIECBAYXkBoGd7KkQQIzC+QbWiJQ4+f0xK3gdVfbeyZlvmLOsoRQssoatoQIECAwCABocW1QYDAOAWyDi1xot4eNs5yDz6X0NKOs14IECAwLQJCy7RU2jwJtCOQfWhph2H0XjyIP7qdlgQIECBQroDQUm5tzYxAFwJCS6K60JIIqDkBAgQIFCkgtBRZVpMi0JlA1qElvkHsyk13hGeff+kgoNNOPnHWsy5dCQotXcnrlwABAgRyFhBacq6OsRGYPIGsQ8v2e3f1RDdcuj5bWaEl29IYGAECBAh0KCC0dIivawIFCmQbWub6nJac6iC05FQNYyFAgACBXASEllwqYRwEyhAQWhLrKLQkAmpOgAABAkUKCC1FltWkCHQmkG1oiSJxe9jxx64I69ae1RnQfB0LLfMJ+T0BAgQITKOA0DKNVTdnAosnkHVoiR8k+fAjj4frrjg/LFly2OIpJJxZaEnA05QAAQIEihUQWootrYkR6EQg29Ay15vDolRbbw+LwemyjbeHva/t6xXo3HPWhJuuvWgmRAktnVy3OiVAgACBzAWElswLZHgEJkwg29CSi+Mjjz0V3n/M+8Lq01f1htR8o5nQkkuljIMAAQIEchIQWnKqhrEQmHwBoWWBNYwhZs/Xn5tZbRFaFgjocAIECBCYCgGhZSrKbJIEWhMQWhZAfeDA2+HG2x4MK45aPvPZMULLAgAdSoAAAQJTIyC0TE2pTZRAKwJZh5YqJOx+fE9YefTycM+2a8LKo4/sBYc1Z5zS6lvF4rawB764+6BnWn7283daKdRid/Lsc++Ez9//s8XuxvkJECBAYEoE/vlnDg2nnXJIEbM99F1lzKOIYpjE1ApkHVqqVx6v/diZ4da7doYL1p0TTjhuZXj6mRfCrkefnPVAfFsVbG4Pe+31A211vaj9vPDiIeFf/et3LWofTk6AAAEC0yPwT3/v52HVSWX8w97Ry5ZMT+HMlECmAtmGlvj2sM233Nd73XFcXamHlvhGr/j9lusvCcsOX9oqbbNv28Na5dcZAQIECEyIgO1hE1IowyQwIQITGVraXGm5908fDeec9V/2VnjiV1z9efV7+zyIPyEXuGESIECAQDcCQks37nolUKpAtqElgldbsa7/7AXhjx78i972sGVHLA1XbrojrD/v7FaeaYkB6cKrts7U3+e0lPpHwbwIECBAYJwCQss4NZ2LAIGsQ0ssTzM0xJ89dOemmc9N6bqEtod1XQH9EyBAgECOAkJLjlUxJgKTK5B9aMmdVmjJvULGR4AAAQJdCAgtXajrk0C5AtmGlvggftwG9uzzL82pf/PGi1vZJjZoEEJLuX84zIwAAQIERhcQWka305IAgYMFsg0tcajVK4/XrT1rZuTVZ7fEZ1pOPemETj6zpc4otPhjRYAAAQIEDhYQWlwVBAiMUyDb0FJ/5XH15q5q4vEB/W9959Xep9K3+SaxfvBCyzgvR+ciQIAAgVIEhJZSKmkeBPIQmMjQUg8qe1/7QWef2RJLKLTkcSEbBQECBAjkJSC05FUPoyEw6QLZhpb6NrDVp6+a5VwPLd948eWw/e5dYcfWq1v/oEmhZdIvf+MnQIAAgcUSEFoWS9Z5CUynQLahJZYjhpPNW+4L92y7ZubDHasH9Ddcvr732uPqs1xuuvaisGTJYa1X0UpL6+Q6JECAAIEJEBBaJqBIhkhgggSyDi3R8eVX9obLNt4e9r62b4bV57SM/wp78ZuHhId3Hjr+EzsjAQIECEylgNAylWU3aQKLJpB9aFm0mY/pxFZaxgTpNAQIECBQlIDQUlQ5TYZA5wJCS2IJhJZEQM0JECBAoEgBoaXIspoUgc4EhJZEeqElEVBzAgQIEChSQGgpsqwmRaAzAaElkV5oSQTUnAABAgSKFBBaiiyrSRHoTEBoSaQXWhIBNSdAgACBIgWEliLLalIEOhPIKrTUX2f8weOPCZtvuS9cd8X5M6877kxpjo6FlhyrYkwECBAg0LWA0NJ1BfRPoCyB7EJLFVSWHbFUaGnxWvPK4xaxdUWAAIEpEBBapqDIpkigRYGsQsuBA2+HG297MKw545Tw0V//sNDS4oUgtLSIrSsCBAhMgYDQMgVFNkUCLQpkFVrivKstYs8+/9KcDKedfGLYsfXqsOzwpS1yHdyV7WGd8uucAAECBDIVEFoyLYxhEZhQgexCS+UYw4tnWtq7qqy0tGetJwIECEyDgNAyDVU2RwLtCWQbWtojSOvJSkuan9YECBAgUKaA0FJmXc2KQFcCQkuivNCSCKg5AQIECBQpILQUWVaTItCZQPah5elnXggXXrV1FtBDd24Kq09f1RlavWOhJYsyGAQBAgQIZCYgtGRWEMMhMOECWYeWGFi2371r1gP3L7+yN1y28fZwxac/EdatPatzfqGl8xIYAAECBAhkKCC0ZFgUQyIwwQLZhpbq9cfrzzv7oFWVGGZ2PfpkuOnai8KSJYd1yi+0dMqvcwIECBDIVEBoybQwhkVgQgWyDS1zvT0srrbcetfOsOX6S7zyeEwXnreHjQnSaQgQIECgJyC0uBAIEBinQLahxUrLOMs8/7mElvmNHEGAAAECwwsILcNbOZIAgfkFsg0tceiPPPZUbxtY/UMkPdMyf1FHOUJoGUVNGwIECBAYJCC0uDYIEBinQNahJU7U28PGWe7B5xJa2nHWCwECBKZFQGiZlkqbJ4F2BLIPLe0wjN6LB/FHt9OSAAECBMoVEFrKra2ZEehCQGhJVBdaEgE1J0CAAIEiBYSWIstqUgQ6ExBaEumFlkRAzQkQIECgSAGhpciymhSBzgSElkR6oSURUHMCBAgQKFJAaCmyrCZFoDMBoSWRXmhJBNScAAECBIoUEFqKLKtJEehMQGhJpBdaEgE1J0CAAIEiBYSWIstqUgQ6E8g2tLz+xv6w+Zb7wnVXnB9OOG5lZ0DzdSy0zCfk9wQIECAwjQJCyzRW3ZwJLJ6A0JJoK7QkAmpOgAABAkUKCC1FltWkCHQmkG1oiSLb790Vzjrz1LD69FWdAc3XsdAyn5DfEyBAgMA0Cggt01h1cyaweAJZh5aXX9kbHn7k8d4WsSVLDls8hYQzCy0JeJoSIECAQLECQkuxpTUxAp0IZBta4jMtV266Izz7/Et9YU47+cSwY+vVYdnhSzuBqzoVWjrl1zkBAgQIZCogtGRaGMMiMKEC2YaWSfEUWialUsZJgAABAm0KCC1tauuLQPkCQktijYWWREDNCRAgQKBIAaGlyLKaFIHOBLIOLQcOvB1uvO3BsPvxPWHl0cvDPduuCSuPPrL3szVnnBLWrT2rM7iqY6Gl8xIYAAECBAhkKCC0ZFgUQyIwwQJZh5b49rDjj10R1n7szHDrXTvDBevO6X1my9PPvBB2PfpkuOnaizp/QF9omeCr39AJECBAYNEEhJZFo3ViAlMpkG1oqX+4ZFxdqYeW+Fax+P2W6y/xIP6YLtsXv3lIeHjnoWM6m9MQIECAwLQLCC3TfgWYP4HxCkxkaLHSMt6LIJ5NaBm/qTMSIEBgmgWElmmuvrkTGL9AtqElTvWRx54Ke77+XLj+sxeEP3rwL3rbw5YdsbT3KuT1553tmZYxXg9CyxgxnYoAAQIEgtDiIiBAYJwCWYeWONG4qnLhVVtnzfmhOzeF1aevGqfDyOfyTMvIdBoSIECAQMECQkvBxTU1Ah0IZB9aOjBZUJdCy4K4HEyAAAECUyIgtExJoU2TQEsCQksitNCSCKg5AQIECBQpILQUWVaTItCZQPahJT7XcsO2B2aAqs9ria8+zuFLaMmhCsZAgAABArkJCC25VcR4CEy2QNahJQaW+HksO7ZePfNq4/i648s23h62bL4ki+dahJbJ/gNg9AQIECCwOAJCy+K4OiuBaRXINrTEz2mJbwnbcPn6g8KJVx6P/3L19rDxmzojAQIEpllAaJnm6ps7gfELZB1aNt9yX7juivNDcytYmx8u2Xx72bnnrAk3XXtRWLLksF41rLSM/6J0RgIECBCYfAGhZfJraAYEchLINrQcOPB2uPG2B3ufx9J8vXGboSVuUXv/Me/rjaEa04qjlocNl64XWnK6ko2FAAECBLISEFqyKofBEJh4gWxDS5QdtA0sBolvfefVmeDQZhWqD7ysVlustLSpry8CBAgQmBQBoWVSKmWcBCZDIKvQUj3H8uzzL82rd9rJJ856QH/eBmM6YPu9u3pnqlZaXnv9wJjO3O1pXnjxkPCv/vW7uh2E3gkQIECgGIF/+ns/D6tOeqeI+Ry9bEkR8zAJApMskFVoyR0yrvxsv3vXrLD0s5+X8Rfys8+9Ez5//89yL4HxESBAgMCECPzzzxwaTjvlkAkZ7dzDPPRdZcyjiGKYxNQKCC1Dlj4Gls1b7gv3bLtm1osBbA8bEtBhBAgQIDBVAraHTVW5TZbAogtkHVqqz2TZ+9q+gyDa3B42KLDEQQkti36N6oAAAQIEJlBAaJnAohkygYwFsg0t1Zu61pxxSli39qzOCPttCasPRmjprDQ6JkCAAIGMBYSWjItjaAQmUCDb0BIfyh/0OS1tOscH7x/44u5ZXa48evnMNjGhpc1q6IsAAQIEJkVAaJmUShkngckQyDa0zPU5LTnRCi05VcNYCBAgQCAXAaEll0oYB4EyBLINLZG3+ZkoOZILLTlWxZgIECBAoGsBoaXrCuifQFkCWYeWXB7En6vkQktZfyDMhgABAgTGIyC0jMfRWQgQ+IVAtqEllwfx57tQhJb5hPyeAAECBKZRQGiZxqqbM4HFE8g2tOTyIP589ELLfEJ+T4AAAQLTKCC0TGPVzZnA4glkG1o8iL94Re935he/eUh4eOeh7XaqNwIECBAoVkBoKba0JkagE4FsQ0vU8CB+e9eE0NKetZ4IECAwDQJCyzRU2RwJtCeQbWiJ28Ou3HRHePb5l/pqnHbyiWHH1qvDssOXtqfVpyfbwzrl1zkBAgQIZCogtGRaGMMiMKEC2YaWSfEUWialUsZJgAABAm0KCC1tauuLQPkCQktijYWWREDNCRAgQKBIAaGlyLKaFIHOBLINLbaHtXtNeKalXW+9ESBAoHQBoaX0CpsfgXYFsg0tgxjiW8VuvWtnuGDdOeGE41a2q9WnNystnZfAAAgQIEAgQwGhJcOiGBKBCRaYuNASreNbxb71nVfDhkvXd04vtHReAgMgQIAAgQwFhJYMi2JIBCZYYCJDy8uv7O2ttmy5/hJvDxvTxWd72JggnYYAAQIEegJCiwuBAIFxCggtiZpWWhIBNSdAgACBIgWEliLLalIEOhOYyNCy/d5dPTDbw8Z33VhpGZ+lMxEgQICAlRbXAAEC4xXINrTM9fawc89ZE2669qKwZMlh49UY4WxWWkZA04QAAQIEihew0lJ8iU2QQKsC2YaWVhUSOhNaEvA0JUCAAIFiBYSWYktrYgQ6ERBaEtmFlkRAzQkQIECgSAGhpciymhSBzgSElkR6oSURUHMCBAgQKFJAaCmyrCZFoDOB7ELLXM+y1JVOO/nEsGPr1V55PKZLx4P4Y4J0GgIECBDoCQgtLgQCBMYpkF1omW9y8c1hD3xxdxBa5pNa2O+FloV5OZoAAQIE5hYQWlwhBAiMU2BiQsvTz7wQLrxqa2/uD925Kaw+fdU4HUY+l+1hI9NpSIAAAQIFCwgtBRfX1Ah0IJB9aDlw4O1w420Pht2P7wkXf+rcLD6bpV4noaWDq1aXBAgQIJC9gNCSfYkMkMBECWQdWh557Klww7YHwsqjl4d7tl0TTjhuZXa4Qkt2JTEgAgQIEMhAQGjJoAiGQKAggSxDy8uv7A2Xbbw97H1tX7h548Vh3dqzsiUXWrItjYERIECAQIcCQkuH+LomUKBAdqGlenvY+495Xzafej9X3YWWAv9UmBIBAgQIJAsILcmETkCAQE0g29Dy7PMvzVkobw8b73Xs7WHj9XQ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" - ] - }, - "metadata": {}, - "output_type": "display_data" - } - ], - "source": [ - "df = df_genomes[~df_genomes.Kingdom.isna()].copy()\n", - "fig = px.scatter(df, x=feature1, y=feature2, \n", - " hover_name= df.index, hover_data=selected_columns,\n", - " width=800, height=600, color='Species')\n", - "title = feature1 + ' vs ' + feature2\n", - "fig.update_layout(title=title)\n", - "fig.show()" - ] - }, - { - "cell_type": "markdown", - "metadata": { - "tags": [] - }, - "source": [ - "## Save curated genomes table" - ] - }, - { - "cell_type": "code", - "execution_count": 12, - "metadata": {}, - "outputs": [], - "source": [ - "df_genomes.to_csv(genomes_path)" - ] - } - ], - "metadata": { - "interpreter": { - "hash": "878750e597411757145f90cd070d9c2238bde691c1c9e97e5c2dc31a354b04f0" - }, - "kernelspec": { - "display_name": "Python 3", - "language": "python", - "name": "python3" - }, - "language_info": { - "codemirror_mode": { - "name": "ipython", - "version": 3 - }, - "file_extension": ".py", - "mimetype": "text/x-python", - "name": "python", - "nbconvert_exporter": "python", - "pygments_lexer": "ipython3", - "version": "3.9.7" - } - }, - "nbformat": 4, - "nbformat_minor": 4 -} diff --git a/workflow/notebook/03-bgc-overview.ipynb b/workflow/notebook/03-bgc-overview.ipynb deleted file mode 100644 index 08f59f1d..00000000 --- a/workflow/notebook/03-bgc-overview.ipynb +++ /dev/null @@ -1,758 +0,0 @@ -{ - "cells": [ - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "# Genome Overview\n", - "\n", - "## Introduction\n", - "\n", - "This notebook summarize a comprehensive overview of BGCs detected across the genomes in the snakemake run. \n", - "\n", - "### Table of Contents\n", - "* Step 1: Import required python packages for the notebook\n", - "* Step 2: Query and investigate the dataframe for initial assessment\n", - "* Step 3: Visualize the dataframe" - ] - }, - { - "cell_type": "markdown", - "metadata": { - "tags": [] - }, - "source": [ - "### Data directory structure\n", - "\n", - " 1. ../../data/interim/antismash : Output folders for all genomes in analysis (also used as input for BiGSCAPE software). \n", - " 2. ../../data/processed/tables : Directory for raw tables generated by snakemake\n", - " 2.1. ../../data/processed/tables/df_genomes.csv (Raw output table with information on genomes contained in the antismash directory) \n", - " 2.2. ../../data/processed/tables/df_bgc_products.csv (Raw output table with information on BGC product distribution contained in the antismash directory) \n", - " 3. ../tables : Directory to save user defined tables (from notebook)\n", - " 4. ../figures : Directory to save figures (from notebook)\n", - "\n", - "### Load Libraries" - ] - }, - { - "cell_type": "code", - "execution_count": 1, - "metadata": {}, - "outputs": [], - "source": [ - "# Packages used in the notebook\n", - "import sys, os # Directory and file management\n", - "from pathlib import Path\n", - "\n", - "import pandas as pd # Dataframe\n", - "import seaborn as sns # Visualization\n", - "import matplotlib.pyplot as plt # Visualization \n", - "%matplotlib inline" - ] - }, - { - "cell_type": "code", - "execution_count": 2, - "metadata": {}, - "outputs": [], - "source": [ - "# Custom packages from bgc_flow \n", - "from bgcflow.visualization.vis_genome_overview import plot_hist, plot_bgc_dist, scatter_bgcs_len\n", - "from bgcflow.data.make_genome_dataset import update_bgc_info" - ] - }, - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "## Reading and Filtering Genome Summary of the Runs" - ] - }, - { - "cell_type": "code", - "execution_count": 3, - "metadata": {}, - "outputs": [], - "source": [ - "# Loading saved dataframe\n", - "df_samples = pd.read_csv('../../config/samples.csv')\n", - "\n", - "# load raw tables\n", - "df_genomes = pd.read_csv('../../data/processed/tables/df_genomes.csv', index_col='genome_id')" - ] - }, - { - "cell_type": "code", - "execution_count": 4, - "metadata": { - "scrolled": true - }, - "outputs": [ - { - "data": { - "text/html": [ - "
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sourceorganismgenusspeciesstrainclosest_placement_referencecontigsgc_contentgenome_lenKingdomPhylumClassOrderFamilyGenusSpeciesOrganismbgcs_countprotoclusters_countcand_clusters_count
genome_id
NBC_01270.1customStreptomyces sp. NBC_01270Streptomycessp.NBC_01270GCF_000719955.110.7338027015026BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN21.034.035.0
NBC_01171.1customStreptomyces sp. NBC_01171Streptomycessp.NBC_01171GCF_004784475.110.7160946584863BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces seoulensisNaN20.024.025.0
P8-2B-3.1customStreptomyces sp. P8-2B-3Streptomycessp.P8-2B-3GCF_000719955.110.7336037099240BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN22.034.034.0
GCF_000359525.1ncbiStreptomyces albus strain J1074StreptomycesalbusJ1074GCF_000359525.110.7332136841649BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN23.033.032.0
1223307.4patricStreptomyces sp. PVA 94-07Streptomycessp.PVA 94-07GCF_000495755.130.7305007106149BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN28.045.046.0
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" - ], - "text/plain": [ - " source organism genus \\\n", - "genome_id \n", - "NBC_01270.1 custom Streptomyces sp. NBC_01270 Streptomyces \n", - "NBC_01171.1 custom Streptomyces sp. NBC_01171 Streptomyces \n", - "P8-2B-3.1 custom Streptomyces sp. P8-2B-3 Streptomyces \n", - "GCF_000359525.1 ncbi Streptomyces albus strain J1074 Streptomyces \n", - "1223307.4 patric Streptomyces sp. PVA 94-07 Streptomyces \n", - "\n", - " species strain closest_placement_reference contigs \\\n", - "genome_id \n", - "NBC_01270.1 sp. NBC_01270 GCF_000719955.1 1 \n", - "NBC_01171.1 sp. NBC_01171 GCF_004784475.1 1 \n", - "P8-2B-3.1 sp. P8-2B-3 GCF_000719955.1 1 \n", - "GCF_000359525.1 albus J1074 GCF_000359525.1 1 \n", - "1223307.4 sp. PVA 94-07 GCF_000495755.1 3 \n", - "\n", - " gc_content genome_len Kingdom Phylum \\\n", - "genome_id \n", - "NBC_01270.1 0.733802 7015026 Bacteria Actinobacteriota \n", - "NBC_01171.1 0.716094 6584863 Bacteria Actinobacteriota \n", - "P8-2B-3.1 0.733603 7099240 Bacteria Actinobacteriota \n", - "GCF_000359525.1 0.733213 6841649 Bacteria Actinobacteriota \n", - "1223307.4 0.730500 7106149 Bacteria Actinobacteriota \n", - "\n", - " Class Order Family \\\n", - "genome_id \n", - "NBC_01270.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "NBC_01171.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "P8-2B-3.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "GCF_000359525.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "1223307.4 Actinomycetia Streptomycetales Streptomycetaceae \n", - "\n", - " Genus Species Organism \\\n", - "genome_id \n", - "NBC_01270.1 Streptomyces Streptomyces albidoflavus NaN \n", - "NBC_01171.1 Streptomyces Streptomyces seoulensis NaN \n", - "P8-2B-3.1 Streptomyces Streptomyces albidoflavus NaN \n", - "GCF_000359525.1 Streptomyces Streptomyces albidoflavus NaN \n", - "1223307.4 Streptomyces Streptomyces albidoflavus NaN \n", - "\n", - " bgcs_count protoclusters_count cand_clusters_count \n", - "genome_id \n", - "NBC_01270.1 21.0 34.0 35.0 \n", - "NBC_01171.1 20.0 24.0 25.0 \n", - "P8-2B-3.1 22.0 34.0 34.0 \n", - "GCF_000359525.1 23.0 33.0 32.0 \n", - "1223307.4 28.0 45.0 46.0 " - ] - }, - "execution_count": 4, - "metadata": {}, - "output_type": "execute_result" - } - ], - "source": [ - "# View df_genomes\n", - "df_genomes" - ] - }, - { - "cell_type": "code", - "execution_count": 5, - "metadata": {}, - "outputs": [], - "source": [ - "# Add BGC information\n", - "antismash_dir = \"../../data/interim/antismash/\"\n", - "df_genomes = update_bgc_info(antismash_dir, df_genomes)" - ] - }, - { - "cell_type": "code", - "execution_count": 6, - "metadata": {}, - "outputs": [ - { - "data": { - "text/html": [ - "
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sourceorganismgenusspeciesstrainclosest_placement_referencecontigsgc_contentgenome_lenKingdomPhylumClassOrderFamilyGenusSpeciesOrganismbgcs_countprotoclusters_countcand_clusters_count
genome_id
NBC_01270.1customStreptomyces sp. NBC_01270Streptomycessp.NBC_01270GCF_000719955.110.7338027015026BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN21.034.035.0
NBC_01171.1customStreptomyces sp. NBC_01171Streptomycessp.NBC_01171GCF_004784475.110.7160946584863BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces seoulensisNaN20.024.025.0
P8-2B-3.1customStreptomyces sp. P8-2B-3Streptomycessp.P8-2B-3GCF_000719955.110.7336037099240BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN22.034.034.0
GCF_000359525.1ncbiStreptomyces albus strain J1074StreptomycesalbusJ1074GCF_000359525.110.7332136841649BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN23.033.032.0
1223307.4patricStreptomyces sp. PVA 94-07Streptomycessp.PVA 94-07GCF_000495755.130.7305007106149BacteriaActinobacteriotaActinomycetiaStreptomycetalesStreptomycetaceaeStreptomycesStreptomyces albidoflavusNaN28.045.046.0
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" - ], - "text/plain": [ - " source organism genus \\\n", - "genome_id \n", - "NBC_01270.1 custom Streptomyces sp. NBC_01270 Streptomyces \n", - "NBC_01171.1 custom Streptomyces sp. NBC_01171 Streptomyces \n", - "P8-2B-3.1 custom Streptomyces sp. P8-2B-3 Streptomyces \n", - "GCF_000359525.1 ncbi Streptomyces albus strain J1074 Streptomyces \n", - "1223307.4 patric Streptomyces sp. PVA 94-07 Streptomyces \n", - "\n", - " species strain closest_placement_reference contigs \\\n", - "genome_id \n", - "NBC_01270.1 sp. NBC_01270 GCF_000719955.1 1 \n", - "NBC_01171.1 sp. NBC_01171 GCF_004784475.1 1 \n", - "P8-2B-3.1 sp. P8-2B-3 GCF_000719955.1 1 \n", - "GCF_000359525.1 albus J1074 GCF_000359525.1 1 \n", - "1223307.4 sp. PVA 94-07 GCF_000495755.1 3 \n", - "\n", - " gc_content genome_len Kingdom Phylum \\\n", - "genome_id \n", - "NBC_01270.1 0.733802 7015026 Bacteria Actinobacteriota \n", - "NBC_01171.1 0.716094 6584863 Bacteria Actinobacteriota \n", - "P8-2B-3.1 0.733603 7099240 Bacteria Actinobacteriota \n", - "GCF_000359525.1 0.733213 6841649 Bacteria Actinobacteriota \n", - "1223307.4 0.730500 7106149 Bacteria Actinobacteriota \n", - "\n", - " Class Order Family \\\n", - "genome_id \n", - "NBC_01270.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "NBC_01171.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "P8-2B-3.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "GCF_000359525.1 Actinomycetia Streptomycetales Streptomycetaceae \n", - "1223307.4 Actinomycetia Streptomycetales Streptomycetaceae \n", - "\n", - " Genus Species Organism \\\n", - "genome_id \n", - "NBC_01270.1 Streptomyces Streptomyces albidoflavus NaN \n", - "NBC_01171.1 Streptomyces Streptomyces seoulensis NaN \n", - "P8-2B-3.1 Streptomyces Streptomyces albidoflavus NaN \n", - "GCF_000359525.1 Streptomyces Streptomyces albidoflavus NaN \n", - "1223307.4 Streptomyces Streptomyces albidoflavus NaN \n", - "\n", - " bgcs_count protoclusters_count cand_clusters_count \n", - "genome_id \n", - "NBC_01270.1 21.0 34.0 35.0 \n", - "NBC_01171.1 20.0 24.0 25.0 \n", - "P8-2B-3.1 22.0 34.0 34.0 \n", - "GCF_000359525.1 23.0 33.0 32.0 \n", - "1223307.4 28.0 45.0 46.0 " - ] - }, - "execution_count": 6, - "metadata": {}, - "output_type": "execute_result" - } - ], - "source": [ - "df_genomes" - ] - }, - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "## Querying genomes dataframe\n", - "\n", - "As the next step of analysis, we will caryy out investigations on the generated tables. We will ask several questions such as how many genomes per genus and how many genomes per species.\n", - "\n", - "You can learn more about splicing and searching of pandas dataframe to ask many of your own questions in this step." - ] - }, - { - "cell_type": "code", - "execution_count": 7, - "metadata": {}, - "outputs": [ - { - "data": { - "text/plain": [ - "genus\n", - "Streptomyces 5\n", - "Name: source, dtype: int64" - ] - }, - "execution_count": 7, - "metadata": {}, - "output_type": "execute_result" - } - ], - "source": [ - "# Find number of genomes per genus\n", - "df_genomes.groupby(by='genus').count()['source'].sort_values(ascending=False)" - ] - }, - { - "cell_type": "code", - "execution_count": 8, - "metadata": {}, - "outputs": [ - { - "data": { - "text/plain": [ - "species\n", - "sp. 4\n", - "albus 1\n", - "Name: source, dtype: int64" - ] - }, - "execution_count": 8, - "metadata": {}, - "output_type": "execute_result" - } - ], - "source": [ - "# Find number of genomes per species\n", - "df_genomes.groupby(by='species').count()['source'].sort_values(ascending=False)" - ] - }, - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "## Visualization of data\n", - "\n", - "Now that we have investigated the dataframe to satisfy our initial curiousity, we will focus on more comprehensive visualizations of data by using histograms, scatter plots, heatmaps and such other tool. \n", - "\n", - "You can read many online sources on cool data visualizations using seaborn, pandas (https://seaborn.pydata.org/examples/index.html) \n", - "\n", - "Here, we will generate a histogram, scatter plot and a heatmap visualization and save these figures in pdf format. We will first create a function that can be used to manipulate the figures and then generate the figures." - ] - }, - { - "cell_type": "code", - "execution_count": 9, - "metadata": { - "scrolled": true, - "tags": [] - }, - "outputs": [ - { - "data": { - "text/plain": [ - "
" - ] - }, - "metadata": {}, - "output_type": "display_data" - }, - { - "data": { - "image/png": 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\n", 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" - ] - }, - "metadata": { - "needs_background": "light" - }, - "output_type": "display_data" - } - ], - "source": [ - "scat_path = '../../data/processed/figures/scatter_bgcs_len_all.pdf'\n", - "scatter_bgcs_len(df_genomes, to_path=scat_path)" - ] - }, - { - "cell_type": "code", - "execution_count": 11, - "metadata": {}, - "outputs": [], - "source": [ - "df_genomes.to_csv('../../data/processed/tables/df_genomes.csv')" - ] - } - ], - "metadata": { - "kernelspec": { - "display_name": "Python 3", - "language": "python", - "name": "python3" - }, - "language_info": { - "codemirror_mode": { - "name": "ipython", - "version": 3 - }, - "file_extension": ".py", - "mimetype": "text/x-python", - "name": "python", - "nbconvert_exporter": "python", - "pygments_lexer": "ipython3", - "version": "3.9.7" - } - }, - "nbformat": 4, - "nbformat_minor": 4 -} diff --git a/workflow/notebook/04-roary-overview.ipynb b/workflow/notebook/04-roary-overview.ipynb deleted file mode 100644 index 40396f56..00000000 --- a/workflow/notebook/04-roary-overview.ipynb +++ /dev/null @@ -1,7201 +0,0 @@ -{ - "cells": [ - { - "cell_type": "markdown", - "metadata": {}, - "source": [ - "# Overview of the pangenome results from the Roary " - ] - }, - { - "cell_type": "code", - "execution_count": 1, - "metadata": {}, - "outputs": [], - "source": [ - "import os\n", - "import pandas as pd\n", - "import matplotlib.pyplot as plt\n", - "from Bio import Phylo\n", - "%matplotlib inline \n", - "from bgcflow.data.make_pangenome_dataset import plot_core_pan_curve, plot_pan_freq_plot, plot_pan_pie_chart, plot_tree_presence_map" - ] - }, - { - "cell_type": "code", - "execution_count": 2, - "metadata": {}, - "outputs": [], - "source": [ - "# Select your project name\n", - "project_name = 'Lactobacillus_iners' \n", - "# Template notebook has figure for 30 genomes of Lactobacillus iners project since autoMLST is not part of test data suite\n", - "# project_name = 'example' " - ] - }, - { - "cell_type": "code", - "execution_count": 3, - "metadata": {}, - "outputs": [], - "source": [ - "# Get paths to tables\n", - "roary_dir = os.path.join('../../data/processed/', project_name, 'roary')\n", - "automlst_dir = os.path.join('../../data/processed/', project_name, 'automlst_wrapper')\n", - "\n", - "gene_presence_path = os.path.join(roary_dir, 'df_gene_presence_locustag.csv')\n", - "gene_presence_binary_path = os.path.join(roary_dir, 'df_gene_presence_binary.csv')\n", - "pangene_summary_path = os.path.join(roary_dir, 'df_pangene_summary.csv')\n", - "sorted_matrix_path = os.path.join(roary_dir, 'df_roary_tree_sum_sorted.csv')\n", - "genome_tree_table_path = os.path.join(automlst_dir, 'df_genomes_tree.csv')\n", - "newick_path = os.path.join(automlst_dir,'final.newick')" - ] - }, - { - "cell_type": "code", - "execution_count": 4, - "metadata": {}, - "outputs": [], - "source": [ - "df_gene_presence = pd.read_csv(gene_presence_path, index_col='Gene')\n", - "df_gene_presence_binary = pd.read_csv(gene_presence_binary_path, index_col='Gene')\n", - "df_pangenes = pd.read_csv(pangene_summary_path, index_col='Gene')\n", - "df_roary_sorted = pd.read_csv(sorted_matrix_path, index_col='Gene')\n", - "df_genomes_tree = pd.read_csv(genome_tree_table_path, index_col='genome_id')\n", - "t = Phylo.read(newick_path, 'newick')" - ] - }, - { - "cell_type": "code", - "execution_count": 5, - "metadata": {}, - "outputs": [ - { - "data": { - "text/html": [ - "
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Gene
group_1003AEAPPCMB_02170MFKIADPP_00710LDJMPNMD_09700JIFPJFEP_01500LNHPAEOK_04250HGNKAMDG_02880ELACOFJK_04720KFJGBBGM_08090HCAEBBCH_04470EJJLCABK_05000...BPDKBAAP_01510AFOPEFFG_04620BHAIMKDM_06590LFGFIDOB_07020JKIGHINH_07040AFCJNIAC_06980LMMEOFAP_06280LCEEFHGI_06570PIBFGMNG_05080JOHBJGAH_00890
group_1005AEAPPCMB_02210MFKIADPP_00750LDJMPNMD_09730JIFPJFEP_01530LNHPAEOK_04280HGNKAMDG_02910ELACOFJK_04750KFJGBBGM_08120HCAEBBCH_04500EJJLCABK_04970...BPDKBAAP_01540AFOPEFFG_04660BHAIMKDM_06560LFGFIDOB_06990JKIGHINH_07010AFCJNIAC_06950LMMEOFAP_06250LCEEFHGI_06540PIBFGMNG_05050JOHBJGAH_00860
group_1007AEAPPCMB_02270MFKIADPP_00810LDJMPNMD_09790JIFPJFEP_01580LNHPAEOK_04330HGNKAMDG_02960ELACOFJK_04800KFJGBBGM_08170HCAEBBCH_04550EJJLCABK_04920...BPDKBAAP_01590AFOPEFFG_04730BHAIMKDM_06510LFGFIDOB_06940JKIGHINH_06960AFCJNIAC_06900LMMEOFAP_06200LCEEFHGI_06490PIBFGMNG_05000JOHBJGAH_00810
group_1008AEAPPCMB_02280MFKIADPP_00820LDJMPNMD_09800JIFPJFEP_01590LNHPAEOK_04340HGNKAMDG_02970ELACOFJK_04810KFJGBBGM_08180HCAEBBCH_04560EJJLCABK_04910...BPDKBAAP_01600AFOPEFFG_04740BHAIMKDM_06500LFGFIDOB_06930JKIGHINH_06950AFCJNIAC_06890LMMEOFAP_06190LCEEFHGI_06480PIBFGMNG_04990JOHBJGAH_00800
group_1009AEAPPCMB_02290MFKIADPP_00830LDJMPNMD_09810JIFPJFEP_01600LNHPAEOK_04350HGNKAMDG_02980ELACOFJK_04820KFJGBBGM_08190HCAEBBCH_04570EJJLCABK_04900...BPDKBAAP_01610AFOPEFFG_04750BHAIMKDM_06490LFGFIDOB_06920JKIGHINH_06940AFCJNIAC_06880LMMEOFAP_06180LCEEFHGI_06470PIBFGMNG_04980JOHBJGAH_00790
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5 rows × 30 columns

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GCF_000149065.1GCF_000149085.1GCF_000149145.1GCF_000160875.1GCF_000177755.1GCF_000179935.1GCF_000179955.1GCF_000179975.1GCF_000179995.1GCF_000185405.1...GCF_009857205.1GCF_010748955.1GCF_011058695.1GCF_011058715.1GCF_011058735.1GCF_011058755.1GCF_011058775.1GCF_011058795.1GCF_019459565.1GCF_902374445.1
Gene
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Non-unique Gene nameAnnotationNo. isolatesNo. sequencesAvg sequences per isolateGenome FragmentOrder within FragmentAccessory FragmentAccessory Order with FragmentQCMin group size nucMax group size nucAvg group size nuclocus_tag
Gene
group_1003NaNATP-dependent protease HslVU (ClpYQ), ATPase s...30301.011689NaNNaNNaN96514151381JKIGHINH_07040
group_1005NaNtRNA uridine 5-carboxymethylaminomethyl modifi...30301.011693NaNNaNNaN104313131304JKIGHINH_07010
group_1007NaNPeriplasmic protease30301.011698NaNNaNNaN119913821373JKIGHINH_06960
group_1008NaNhypothetical protein30301.011699NaNNaNNaN227233229JKIGHINH_06950
group_1009NaNputative family protein30301.011700NaNNaNNaN269851831JKIGHINH_06940
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Gene
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", 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\n", 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\n", 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" - ] - }, - "metadata": {}, - "output_type": "display_data" - } - ], - "source": [ - "plot_tree_presence_map(t, df_gene_presence_binary, df_genomes_tree, df_roary_sorted, roary_dir)" - ] - } - ], - "metadata": { - "kernelspec": { - "display_name": "Python 3 (ipykernel)", - "language": "python", - "name": "python3" - }, - "language_info": { - "codemirror_mode": { - "name": "ipython", - "version": 3 - }, - "file_extension": ".py", - "mimetype": "text/x-python", - "name": "python", - "nbconvert_exporter": "python", - "pygments_lexer": "ipython3", - "version": "3.10.2" - } - }, - "nbformat": 4, - "nbformat_minor": 4 -} diff --git a/workflow/notebook/99-entry_point.ipynb b/workflow/notebook/99-entry_point.ipynb deleted file mode 100644 index db228e57..00000000 --- a/workflow/notebook/99-entry_point.ipynb +++ /dev/null @@ -1,187 +0,0 @@ -{ - "cells": [ - { - "cell_type": "markdown", - "id": "fafef8e8-13e1-4606-ade3-5ef677dcdf84", - "metadata": {}, - "source": [ - "[**<<< Back to Snakemake Report**](../../)\n", - "# BGCFlow Report\n", - "\n", - "This page summarizes the final processed data of [**BGCFlow**](https://github.com/NBChub/bgcflow): _Snakemake workflow to systematically analyze Biosynthetic Gene Clusters from a collection of genomes (pangenomes) from internal & public genome datasets._" - ] - }, - { - "cell_type": "code", - "execution_count": null, - "id": "3e9b2047-7516-46bd-b3b3-e32f4e6b3434", - "metadata": {}, - "outputs": [], - "source": [ - "# Import Libraries\n", - "from IPython.display import display, Markdown, Latex\n", - "from pathlib import Path\n", - "import json, yaml\n", - "import peppy" - ] - }, - { - "cell_type": "code", - "execution_count": null, - "id": "8986865f-e916-4dc2-8f06-b55544f80d3d", - "metadata": {}, - "outputs": [], - "source": [ - "# BGCFlow config\n", - "BGCFlow_path = Path(\"../../\").resolve()\n", - "config_path = BGCFlow_path / \"config/config.yaml\"\n", - "with open(config_path, \"r\") as f:\n", - " config = yaml.safe_load(f)\n", - " \n", - "# rules_dict\n", - "rules_dict_path = BGCFlow_path / \"workflow/rules.yaml\"\n", - "with open(rules_dict_path, \"r\") as f:\n", - " rules_dict = yaml.safe_load(f)" - ] - }, - { - "cell_type": "code", - "execution_count": null, - "id": "5337ebe7-d617-4953-bca5-6b90ec6c1b6c", - "metadata": {}, - "outputs": [], - "source": [ - "# Get Metadata\n", - "project_metadata = {}\n", - " \n", - "for p in config['projects']:\n", - " # process only pep projets\n", - " if p['name'].endswith(\".yaml\"):\n", - " with open(BGCFlow_path / p['name']) as f:\n", - " project = yaml.safe_load(f)\n", - " if 'description' in project.keys():\n", - " name = project['name']\n", - " description = project['description']\n", - " project_metadata[name] = {'description' : description}\n", - " else:\n", - " name = p['name']\n", - " project_metadata[name] = \"No description provided.\"\n", - " \n", - " # get what rules are being used\n", - " rule_used = []\n", - " if 'rules' in project.keys():\n", - " rules = project[\"rules\"]\n", - " else:\n", - " rules = config[\"rules\"]\n", - " for r in rules.keys():\n", - " if rules[r]:\n", - " rule_used.append(r)\n", - " project_metadata[name].update({'rule_used' : rule_used})\n", - " \n", - " # get citations\n", - " citation_all = []\n", - " for r in rule_used:\n", - " citations = rules_dict[r]['references']\n", - " citation_all.extend(citations)\n", - " citation_all.sort()\n", - " project_metadata[name].update({'references' : citation_all})" - ] - }, - { - "cell_type": "code", - "execution_count": null, - "id": "aa0bbd5e-8a6c-4a14-969c-87e7898799da", - "metadata": {}, - "outputs": [], - "source": [ - "# Create table of contents\n", - "projects = Path(\"../../data/processed\").resolve()\n", - "ignore = \"*.ipynb*\"\n", - "\n", - "# text container\n", - "text = \"## Available Outputs\\nPlease find the list of available outputs from BGCFlow projects here:\\n\"\n", - "\n", - "ctr = 0\n", - "for item in projects.glob(\"*\"):\n", - " if not item.name in project_metadata.keys():\n", - " pass\n", - " elif (not str(item.name).startswith(\".\")) & (item.is_dir()): \n", - " ctr = ctr + 1\n", - " line1 = f\"\"\"{ctr}. [**{item.name}**](./{item.name})\"\"\"\n", - " text = text + \"\\n\" + line1\n", - " \n", - " # add description\n", - " if item.name in project_metadata.keys():\n", - " description = f\": {project_metadata[item.name]['description']}\"\n", - " text = text + description\n", - " subdir_ctr = 0\n", - " \n", - " for subdir in item.glob(\"*\"):\n", - " subdir_ctr = subdir_ctr + 1\n", - " line2 = f\" {subdir_ctr}. [{subdir.name}](./{item.name}/{subdir.name})\"\n", - " text = text + \"\\n\"+ line2\n", - " subdir_ctr2 = 0\n", - " for subdir2 in subdir.glob(\"*\"):\n", - " if (not str(subdir2.name).startswith(\".\")) & (subdir2.is_dir()):\n", - " subdir_ctr2 = subdir_ctr2 + 1\n", - " line3 = f\" {subdir_ctr2}. [{subdir2.name}](./{item.name}/{subdir.name}/{subdir2.name})\"\n", - " text = text + \"\\n\" + line3\n", - " elif str(subdir2.name).endswith(\"mapping.csv\"):\n", - " subdir_ctr2 = subdir_ctr2 + 1\n", - " line3 = f\" {subdir_ctr2}. [{subdir2.name}](./{item.name}/{subdir.name}/{subdir2.name})\"\n", - " text = text + \"\\n\" + line3 \n", - "\n", - "# Display all text \n", - "display(Markdown(text))" - ] - }, - { - "cell_type": "code", - "execution_count": null, - "id": "6dbf8ce7-a2a4-45fa-a132-472ac8135fef", - "metadata": {}, - "outputs": [], - "source": [ - "# text container\n", - "text = \"### References\"\n", - "ctr = 0\n", - "for item in projects.glob(\"*\"):\n", - " if not item.name in project_metadata.keys():\n", - " pass\n", - " elif (not str(item.name).startswith(\".\")) & (item.is_dir()): \n", - " subdir_ctr = subdir_ctr + 1\n", - " line2 = f\"#### References for tools used in project [**{item.name}**](./{item.name})\"\n", - " text = text + \"\\n\"+ line2\n", - " subdir_ctr2 = 0\n", - " \n", - " for c in project_metadata[item.name]['references']:\n", - " subdir_ctr2 = subdir_ctr2 + 1\n", - " line3 = f\"{subdir_ctr2}. {c})\"\n", - " text = text + \"\\n\" + line3\n", - "# Display all text \n", - "display(Markdown(text))" - ] - } - ], - "metadata": { - "kernelspec": { - "display_name": "Python 3 (ipykernel)", - "language": "python", - "name": "python3" - }, - "language_info": { - "codemirror_mode": { - "name": "ipython", - "version": 3 - }, - "file_extension": ".py", - "mimetype": "text/x-python", - "name": "python", - "nbconvert_exporter": "python", - "pygments_lexer": "ipython3", - "version": "3.10.6" - } - }, - "nbformat": 4, - "nbformat_minor": 5 -} diff --git a/workflow/notebook/arts.py.ipynb b/workflow/notebook/arts.py.ipynb index 75543b44..7ed83a33 100644 --- a/workflow/notebook/arts.py.ipynb +++ b/workflow/notebook/arts.py.ipynb @@ -54,14 +54,10 @@ }, "outputs": [], "source": [ - "report_dir = Path(\"../\")\n", - "\n", - "dependency_version = report_dir / \"metadata/dependency_versions.json\"\n", - "with open(dependency_version, \"r\") as file:\n", - " dependency_version = json.load(file)\n", - "antismash_version = dependency_version[\"antismash\"]\n", - "\n", - "df_arts = pd.read_csv(report_dir / f\"tables/df_arts_as-{antismash_version}.csv\")" + "with open(\"../metadata/project_metadata.json\", \"r\") as f:\n", + " project_configuration = json.load(f)\n", + "with open(\"../metadata/dependency_versions.json\", \"r\") as f:\n", + " dependency_version = json.load(f)" ] }, { @@ -72,6 +68,33 @@ "tags": [] }, "outputs": [], + "source": [ + "project_name = [i for i in project_configuration.keys()][0]\n", + "antismash_version = dependency_version[\"antismash\"]\n", + "report_dir = Path(\"../\")\n", + "\n", + "df_arts = pd.read_csv(report_dir / f\"tables/df_arts_bgctable_as-{antismash_version}.csv\")\n", + "df_bgcs = pd.read_csv(report_dir / f\"tables/df_regions_antismash_{antismash_version}.csv\", index_col=0)\n", + "df_tax = pd.read_csv(report_dir / \"tables/df_gtdb_meta.csv\", index_col=0)\n", + "df_arts_core = pd.read_csv(report_dir / f\"tables/df_arts_coretable_as-{antismash_version}.csv\")" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "fec0845a-c584-4e67-84bc-39ba9b7401ba", + "metadata": {}, + "outputs": [], + "source": [ + "df_arts_hits = pd.read_csv(report_dir / f\"tables/df_arts_allhits_as-{antismash_version}.csv\")" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "f869f1a3-9696-438f-8858-36f39824d192", + "metadata": {}, + "outputs": [], "source": [ "result = {}\n", "ctr = 1\n", @@ -91,11 +114,49 @@ " 'description' : hits[5],\n", " 'function' : hits[6]\n", " }\n", + " if arts_hits['function'] == \"N/A\":\n", + " arts_hits['function'] = \"ResModel\"\n", " result[ctr] = arts_hits\n", " ctr = ctr + 1\n", - "df_hits = pd.DataFrame.from_dict(result).T\n", - "\n", - "display(HTML(DT(df_hits, columnDefs=[{\"className\": \"dt-center\", \"targets\": \"_all\"}],)))" + "df_hits = pd.DataFrame.from_dict(result).T" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "bc7e3412-5340-4a21-a238-0d261471d479", + "metadata": {}, + "outputs": [], + "source": [ + "function_map = df_hits.set_index(\"profile\").loc[:, \"function\"].to_dict()" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "2a617a31-bee0-4fee-8dba-0665036e73b2", + "metadata": {}, + "outputs": [], + "source": [ + "for i in df_arts_hits.index:\n", + " profile = df_arts_hits.loc[i, \"core_gene_or_model\"]\n", + " if profile in function_map:\n", + " df_arts_hits.loc[i, \"function\"] = function_map[profile]" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "9fc3762d-97fa-4e80-9e4e-f31644f93d22", + "metadata": {}, + "outputs": [], + "source": [ + "# select boolean columns\n", + "bool_cols = df_arts_hits.select_dtypes(include=['bool'])\n", + "# Summing True values row-wise and creating a new column 'true_count'\n", + "df_arts_hits['hits'] = bool_cols.sum(axis=1)\n", + "display(HTML(DT(df_arts_hits.rename(columns={\"core_gene_or_model\" : \"profile\"}).loc[:, ['profile', 'name', 'product', 'function', 'hits', 'duplication', 'phylogeny', 'known_target', 'bgc_proximity', 'bgc_id',\n", + " 'genome_id', 'scaffold', 'start', 'stop']], columnDefs=[{\"className\": \"dt-center\", \"targets\": \"_all\"}],)))" ] }, { @@ -106,19 +167,36 @@ "tags": [] }, "outputs": [], + "source": [ + "summary_report = f\"A total of {len(df_hits.bgc_id.unique())} BGCs from {len(df_hits.genome_id.unique())} genomes have hits with {len(df_hits.profile.unique())} ARTS2 profile.\"\n", + "summary_report" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "df3a2b07-ad54-478f-b0ea-06e157a8f563", + "metadata": {}, + "outputs": [], "source": [ "color = [\"#264653\", \"#287271\", \"#2a9d8f\", \"#8ab17d\", \"#e9c46a\", \"#f4a261\", \"#ee8959\", \"#e76f51\"]\n", "function_map = df_hits.function.value_counts().to_dict()\n", "arts_function_color_map = {}\n", - "for num, item in enumerate(function_map.keys()):\n", - " if num+1 > len(color):\n", + "ctr = 0\n", + "for item in function_map.keys():\n", + " if item == \"Unclassified\":\n", + " arts_function_color_map[item] = 'grey'\n", + " ctr = ctr - 1\n", + " elif ctr+1 > len(color):\n", " arts_function_color_map[item] = 'grey'\n", + " elif item == \"ResModel\":\n", + " arts_function_color_map[item] = 'red'\n", " else:\n", - " arts_function_color_map[item] = color[num]\n", - "arts_function_color_map['unclassified'] = \"grey\"\n", + " arts_function_color_map[item] = color[ctr]\n", + " ctr = ctr + 1\n", "\n", "arts_node_mapping = df_hits.loc[:, [\"profile\", \"description\", \"function\"]].drop_duplicates().set_index(\"profile\", drop=False)\n", - "bgc_id_mapping = df_hits.loc[:, [\"bgc_id\", \"bgc_type\", \"genome_id\"]].drop_duplicates().set_index(\"bgc_id\", drop=False)\n", + "bgc_id_mapping = df_hits.loc[:, [\"bgc_id\", \"bgc_type\", \"genome_id\"]].drop_duplicates().set_index(\"bgc_id\", drop=False)#.T.to_dict()\n", "\n", "for c in [\"bgc_id\", \"bgc_type\", \"genome_id\"]:\n", " arts_node_mapping[c] = None\n", @@ -133,16 +211,18 @@ { "cell_type": "code", "execution_count": null, - "id": "df3a2b07-ad54-478f-b0ea-06e157a8f563", + "id": "bca39649-4537-4324-9746-7609c3633894", "metadata": {}, "outputs": [], "source": [ "color_map = []\n", "G = nx.from_pandas_edgelist(df_hits, source='bgc_id', target='profile')\n", "\n", - "pos = nx.nx_agraph.graphviz_layout(G, prog=\"sfdp\")\n", + "pos = nx.nx_agraph.graphviz_layout(G)\n", "\n", + "region_score = df_arts_hits.loc[:, [\"bgc_id\", \"hits\"]].dropna().set_index(\"bgc_id\").to_dict()['hits']\n", "for g in G.nodes:\n", + " # annotate ARTS model\n", " if g in arts_node_mapping.keys():\n", " for column in arts_node_mapping[g].keys():\n", " attrib = str(column)\n", @@ -150,7 +230,9 @@ " color = arts_function_color_map[G.nodes[g]['function']]\n", " color_map.append(color)\n", " G.nodes[g][\"color\"] = color\n", - " G.nodes[g][\"node_type\"] = \"arts_model\"\n", + " G.nodes[g][\"node_type\"] = G.nodes[g][\"function\"]\n", + " G.nodes[g][\"text\"] = f\"{G.nodes[g]['profile']}
{G.nodes[g]['function']}
{G.nodes[g]['description']}\"\n", + " # annotate BGCs\n", " elif g in bgc_id_mapping.keys():\n", " for column in bgc_id_mapping[g].keys():\n", " attrib = str(column)\n", @@ -158,13 +240,18 @@ " color = \"blue\"\n", " color_map.append(color)\n", " G.nodes[g][\"color\"] = color\n", - " G.nodes[g][\"node_type\"] = \"bgc_region\"" + " G.nodes[g][\"node_type\"] = \"BGC\"\n", + " taxonomy = df_tax.loc[G.nodes[g]['genome_id'], \"Organism\"]\n", + " G.nodes[g][\"text\"] = f\"{G.nodes[g]['bgc_id']}
{G.nodes[g]['bgc_type']}
{G.nodes[g]['genome_id']}
{taxonomy}\"\n", + " if region_score[g] > 1:\n", + " G.nodes[g][\"node_type\"] = f\"BGC_with_{region_score[g]}_ARTS_hits\"\n", + " G.nodes[g][\"text\"] = G.nodes[g][\"text\"] + \"
\" + f\"ARTS hits: {region_score[g]}\"" ] }, { "cell_type": "code", "execution_count": null, - "id": "bca39649-4537-4324-9746-7609c3633894", + "id": "21003596-1937-4837-9bd4-f8cc52df7a00", "metadata": {}, "outputs": [], "source": [ @@ -175,13 +262,14 @@ { "cell_type": "code", "execution_count": null, - "id": "21003596-1937-4837-9bd4-f8cc52df7a00", + "id": "881256ce-f0dd-4f5b-88b9-b17aa360b7f0", "metadata": {}, "outputs": [], "source": [ "edge_trace = go.Scatter(\n", " x=[],\n", " y=[],\n", + " name=\"ARTS2 hit\",\n", " line=dict(width=0.5,color='#888'),\n", " hoverinfo='none',\n", " mode='lines')\n", @@ -196,46 +284,113 @@ { "cell_type": "code", "execution_count": null, - "id": "881256ce-f0dd-4f5b-88b9-b17aa360b7f0", + "id": "1a0d9c3d-62b6-4c39-a7da-1ae08af383ff", "metadata": {}, "outputs": [], "source": [ - "node_trace = go.Scatter(\n", - " x=[],\n", - " y=[],\n", - " text=[],\n", - " mode='markers',\n", - " hoverinfo='text',\n", - " marker=dict(\n", - " showscale=False,\n", - " color=color_map,\n", - " size=10,\n", - " line=dict(width=0)))\n", + "def create_node_trace(G, node_type, shape=\"circle\", opacity=0.8, linewidth=0, linecolor=\"red\"):\n", + " node_color = []\n", + " for node in G.nodes():\n", + " if G.nodes[node]['node_type'] == node_type:\n", + " node_color.append(G.nodes[node]['color']) \n", "\n", - "for node in G.nodes():\n", - " x, y = G.nodes[node]['pos']\n", - " node_trace['x'] += tuple([x])\n", - " node_trace['y'] += tuple([y])" + " node_trace = go.Scatter(\n", + " ids=[],\n", + " x=[],\n", + " y=[],\n", + " name=node_type,\n", + " text=[],\n", + " mode='markers',\n", + " hoverinfo='text',\n", + " marker_symbol=shape,\n", + " opacity=opacity,\n", + " marker=dict(\n", + " showscale=False,\n", + " color=node_color,\n", + " size=10,\n", + " line=dict(width=linewidth,\n", + " color=linecolor)))\n", + "\n", + " for node in G.nodes():\n", + " if G.nodes[node]['node_type'] == node_type:\n", + " x, y = G.nodes[node]['pos']\n", + " node_trace['ids'] += tuple([node])\n", + " node_trace['x'] += tuple([x])\n", + " node_trace['y'] += tuple([y])\n", + "\n", + " for node, adjacencies in enumerate(G.adjacency()):\n", + " if G.nodes[adjacencies[0]]['node_type'] == node_type:\n", + " node_trace['marker']['color']+=tuple([len(adjacencies[1])])\n", + " node_type = G.nodes[adjacencies[0]]['node_type']\n", + " description = G.nodes[adjacencies[0]]['bgc_type']\n", + " node_info = G.nodes[adjacencies[0]]['text']\n", + " node_trace['text']+=tuple([node_info])\n", + " \n", + " return node_trace" ] }, { "cell_type": "code", "execution_count": null, - "id": "1a0d9c3d-62b6-4c39-a7da-1ae08af383ff", + "id": "c00ce940-e8b1-4fb5-b2d0-f3f61a80b669", + "metadata": {}, + "outputs": [], + "source": [ + "node_traces = list(function_map.keys())\n", + "node_traces.append(\"BGC\")\n", + "for i in range(4):\n", + " node_traces.append(f\"BGC_with_{i}_ARTS_hits\")\n", + "\n", + "traces = [edge_trace]\n", + "for trace in node_traces:\n", + " shape = \"square\"\n", + " linewidth = 0\n", + " linecolor = \"black\"\n", + " if trace == \"BGC\":\n", + " shape = \"circle\"\n", + " elif trace == \"BGC_with_2_ARTS_hits\":\n", + " shape = \"circle\"\n", + " linewidth = 1\n", + " linecolor = \"orange\"\n", + " elif trace == \"BGC_with_3_ARTS_hits\":\n", + " shape = \"circle\"\n", + " linewidth = 3\n", + " linecolor = \"red\"\n", + " elif trace == \"BGC_with_4_ARTS_hits\":\n", + " shape = \"circle\"\n", + " linewidth = 5\n", + " linecolor = \"red\"\n", + " elif trace == \"ResModel\":\n", + " shape = \"star\"\n", + " new_trace = create_node_trace(G, trace, shape=shape, linewidth=linewidth, linecolor=linecolor)\n", + " traces.append(new_trace)" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "e1841d93-007f-4130-a22f-407a40059ca7", "metadata": {}, "outputs": [], "source": [ - "for node, adjacencies in enumerate(G.adjacency()):\n", - " node_trace['marker']['color']+=tuple([len(adjacencies[1])])\n", - " node_type = G.nodes[adjacencies[0]]['node_type']\n", - " if node_type == \"bgc_region\":\n", - " description = G.nodes[adjacencies[0]]['bgc_type']\n", - " function = \"\"\n", - " elif node_type == \"arts_model\":\n", - " description = G.nodes[adjacencies[0]]['description']\n", - " function = G.nodes[adjacencies[0]]['function']\n", - " node_info = f\"{adjacencies[0]}
{G.nodes[adjacencies[0]]['node_type']}
{description}
{function}\"\n", - " node_trace['text']+=tuple([node_info])" + "fig = go.Figure(data=traces,\n", + " layout=go.Layout(\n", + " paper_bgcolor='rgba(0,0,0,0)',\n", + " plot_bgcolor='rgba(0,0,0,0)',\n", + " showlegend=True,\n", + " hovermode='closest',\n", + " margin=dict(b=20,l=5,r=5,t=40),\n", + " xaxis=dict(showgrid=False, zeroline=False, showticklabels=False),\n", + " yaxis=dict(showgrid=False, zeroline=False, showticklabels=False),\n", + " width=750, height=900))\n", + "\n", + "fig = fig.update_layout(legend=dict(\n", + " orientation=\"h\",\n", + " yanchor=\"top\",\n", + " y=0,\n", + " xanchor=\"left\",\n", + " x=0\n", + "))" ] }, { @@ -245,16 +400,7 @@ "metadata": {}, "outputs": [], "source": [ - "fig = go.Figure(data=[edge_trace, node_trace],\n", - " layout=go.Layout(\n", - " showlegend=False,\n", - " hovermode='closest',\n", - " margin=dict(b=20,l=5,r=5,t=40),\n", - " xaxis=dict(showgrid=False, zeroline=False, showticklabels=False),\n", - " yaxis=dict(showgrid=False, zeroline=False, showticklabels=False),\n", - " width=600, height=600))\n", - "\n", - "outfile = Path(\"assets/figures/arts.html\")\n", + "outfile = Path(f\"assets/figures/arts_as{antismash_version}.html\")\n", "outfile.parent.mkdir(parents=True, exist_ok=True)\n", "fig.write_html(outfile)\n", "\n", @@ -320,7 +466,7 @@ "name": "python", "nbconvert_exporter": "python", "pygments_lexer": "ipython3", - "version": "3.9.16" + "version": "3.9.18" } }, "nbformat": 4, diff --git a/workflow/notebook/bigscape.py.ipynb b/workflow/notebook/bigscape.py.ipynb index bea1b155..0ccc519b 100644 --- a/workflow/notebook/bigscape.py.ipynb +++ b/workflow/notebook/bigscape.py.ipynb @@ -32,6 +32,8 @@ "from itables import to_html_datatable as DT\n", "import itables.options as opt\n", "import altair as alt\n", + "import seaborn as sns\n", + "\n", "opt.css = \"\"\"\n", ".itables table td { font-style: italic; font-size: .8em;}\n", ".itables table th { font-style: oblique; font-size: .8em; }\n", @@ -59,6 +61,9 @@ }, "outputs": [], "source": [ + "# Set Cutoff\n", + "cutoff = \"0.30\"\n", + "\n", "# Read tables that are generated when BiGSCAPE rule is TRUE\n", "antismash_table = report_dir / f\"tables/df_antismash_{antismash_version}_summary.csv\"\n", "gtdb_table = report_dir / \"tables/df_gtdb_meta.csv\"\n", @@ -69,6 +74,7 @@ "gcf_table = [i for i in bigscape_dir.glob(\"*_df_families_0.30.csv\")][0]\n", "mibig_table = [i for i in bigscape_dir.glob(\"*_df_known_0.30.csv\")][0]\n", "gcf_presence_table = [i for i in bigscape_dir.glob(\"*_df_family_presence_0.30.csv\")][0]\n", + "network_table = [i for i in bigscape_dir.glob(\"*_df_network_0.30.csv\")][0]\n", "\n", "df_antismash = pd.read_csv(antismash_table).set_index(\"genome_id\", drop=False)\n", "df_gtdb = pd.read_csv(gtdb_table, index_col=0)\n", @@ -82,7 +88,311 @@ "df_bgcs = pd.read_csv(bgc_table, index_col=0)\n", "df_gcf_presence = pd.read_csv(gcf_presence_table, index_col=0)\n", "df_gcfs = pd.read_csv(gcf_table, index_col=0)\n", - "df_mibig = pd.read_csv(mibig_table, index_col=0)" + "df_mibig = pd.read_csv(mibig_table, index_col=0)\n", + "df_network = pd.read_csv(network_table, index_col=0)" + ] + }, + { + "cell_type": "markdown", + "id": "c31871f5-31c3-4ad3-8cb0-30df949745a5", + "metadata": {}, + "source": [ + "## Sequence Similarity Network" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "9711e786-ad0e-4931-b2f2-0be2ecd58e5c", + "metadata": {}, + "outputs": [], + "source": [ + "import pandas as pd\n", + "import networkx as nx\n", + "import plotly.graph_objects as go\n", + "import numpy as np\n", + "import scipy.spatial as spatial\n", + "\n", + "from pathlib import Path\n", + "import json, shutil, yaml" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "f9fb3050-9e55-47d8-b017-52d61bdd1416", + "metadata": {}, + "outputs": [], + "source": [ + "def create_node_trace(G, node_trace_category, color, showtextlabel=False, nodesize=10, nodeopacity=0.8, \n", + " nodesymbol=\"circle\", linewidth=1, linecolor=\"black\", textposition=\"top center\", showlegend=False):\n", + " if showtextlabel:\n", + " markermode = \"markers+text\"\n", + " else:\n", + " markermode = \"markers\"\n", + " nodes = np.array([node for node in G.nodes() if G.nodes[node][\"node_trace\"] == node_trace_category])\n", + " pos = np.array([G.nodes[node]['pos'] for node in nodes.flatten()]).reshape(-1, 2)\n", + " xs, ys = pos[:, 0], pos[:, 1]\n", + " texts = np.array([G.nodes[node]['text'] for node in nodes])\n", + " node_trace = go.Scatter(\n", + " x=xs.tolist(),\n", + " y=ys.tolist(),\n", + " text=texts.tolist(),\n", + " textposition=textposition,\n", + " mode=markermode,\n", + " hoverinfo='text',\n", + " name=node_trace_category,\n", + " showlegend=showlegend,\n", + " marker=dict(\n", + " symbol=nodesymbol,\n", + " opacity=nodeopacity,\n", + " showscale=False,\n", + " color=color,\n", + " size=nodesize,\n", + " line=dict(width=linewidth, color=linecolor)))\n", + " return node_trace" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "491c58f2-01c2-43ee-819c-9c8271606db5", + "metadata": {}, + "outputs": [], + "source": [ + "def create_edge_trace(Graph, name, showlegend=False, color='#888', width=0.5, opacity=0.8, dash=\"solid\"):\n", + " edge_trace = go.Scatter(\n", + " x=[],\n", + " y=[],\n", + " name=name,\n", + " opacity=opacity,\n", + " line=dict(width=width,color=color, dash=dash),\n", + " hoverinfo='none',\n", + " mode='lines',\n", + " showlegend=showlegend)\n", + "\n", + " edges = np.array([edge for edge in Graph.edges() if G.edges[edge][\"relation_type\"] == name])\n", + " pos = np.array([Graph.nodes[e]['pos'] for e in edges.flatten()]).reshape(-1, 2)\n", + " xs = np.insert(pos[:, 0], np.arange(2, len(pos[:, 0]), 2), None)\n", + " ys = np.insert(pos[:, 1], np.arange(2, len(pos[:, 1]), 2), None)\n", + " edge_trace['x'] = xs\n", + " edge_trace['y'] = ys\n", + "\n", + " return edge_trace" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "a5e0a04b-64e2-4176-9981-5fe2e2b4a91a", + "metadata": {}, + "outputs": [], + "source": [ + "path_bigscape = report_dir / f\"bigscape/for_cytoscape_antismash_{antismash_version}/\"\n", + "\n", + "df_bigscape = pd.read_csv([i for i in path_bigscape.glob(f\"*df_network*{cutoff}*\")][0])\n", + "df_bigscape_cluster = pd.read_csv([i for i in path_bigscape.glob(f\"*df_cluster*{cutoff}*\")][0])\n", + "df_regions = pd.read_csv(report_dir / f\"tables/df_regions_antismash_{antismash_version}.csv\")\n", + "\n", + "# clean up MIBIG ids with extra .1\n", + "for i in df_bigscape.index:\n", + " if 'BGC' in df_bigscape.loc[i, 'Clustername 1']:\n", + " df_bigscape.loc[i, 'Clustername 1'] = df_bigscape.loc[i, 'Clustername 1'].split(\".\")[0]\n", + " #print(df_bigscape.loc[i, 'Clustername 1'])\n", + " if 'BGC' in df_bigscape.loc[i, 'Clustername 2']:\n", + " df_bigscape.loc[i, 'Clustername 2'] = df_bigscape.loc[i, 'Clustername 2'].split(\".\")[0]\n", + " #print(df_bigscape.loc[i, 'Clustername 2'])\n", + "\n", + "for i in df_bigscape_cluster.index:\n", + " if 'BGC' in df_bigscape_cluster.loc[i, 'bgc_id']:\n", + " df_bigscape_cluster.loc[i, 'bgc_id'] = df_bigscape_cluster.loc[i, 'bgc_id'].split(\".\")[0]" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "96f423d6-4e71-4def-8a31-bc5cd8e37674", + "metadata": {}, + "outputs": [], + "source": [ + "edge_bigscape = df_bigscape.rename(columns={'Clustername 1' : 'source',\n", + " 'Clustername 2' : 'target'})\n", + "edge_bigscape['relation_type'] = 'bigscape_similarity'\n", + "edge_bigscape['weight'] = edge_bigscape['Jaccard index'] * 30 # scale to cytoscape" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "46716bfd-66b0-4663-8e9c-5d28fe8751bf", + "metadata": {}, + "outputs": [], + "source": [ + "if 'most_similar_known_cluster_id' in df_regions.columns:\n", + " edge_knownclusterblast = df_regions.loc[:, [\"bgc_id\", 'most_similar_known_cluster_id',\n", + " 'most_similar_known_cluster_description', 'most_similar_known_cluster_type',\n", + " \"similarity\"]]\n", + " edge_knownclusterblast = edge_knownclusterblast.rename(columns={'bgc_id' : 'source',\n", + " 'most_similar_known_cluster_id' : 'target',\n", + " 'most_similar_known_cluster_description' : 'fam_known_compounds_0.30',\n", + " 'most_similar_known_cluster_type' : 'product'}).dropna()\n", + " edge_knownclusterblast['relation_type'] = 'knownclusterblast'\n", + " edge_knownclusterblast['weight'] = edge_knownclusterblast['similarity'] * 30 # scale to cytoscape\n", + " edge_bigscape = pd.concat([edge_bigscape, edge_knownclusterblast])" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "c66825fd-3d9d-49a1-bb4d-4e9fcf55e432", + "metadata": {}, + "outputs": [], + "source": [ + "G = nx.from_pandas_edgelist(edge_bigscape, source='source', target='target', edge_attr=[c for c in edge_bigscape.columns if c not in [\"source\", \"target\"]])\n", + "\n", + "tax_dict = df_gtdb.loc[:, ['gtdb_release', 'Domain', 'Phylum', 'Class', 'Order', 'Family', 'Genus', 'Species', 'Organism']].T.to_dict()\n", + "\n", + "# Iterate through the DataFrame rows and add each row as a node to the graph\n", + "for dfs in [df_bigscape_cluster, df_regions, df_mibig.reset_index()]:\n", + " for index, row in dfs.iterrows():\n", + " node_id = row['bgc_id']\n", + " attributes = row.drop('bgc_id').to_dict()\n", + " if node_id in G.nodes:\n", + " G.add_node(node_id, **attributes)\n", + "\n", + "# Add taxonomy information\n", + "for node_id in G.nodes:\n", + " if node_id not in df_mibig.index:\n", + " if \"genome_id\" in G.nodes[node_id].keys():\n", + " genome_id = G.nodes[node_id][\"genome_id\"]\n", + " for k, v in tax_dict[genome_id].items():\n", + " G.nodes[node_id][k] = v\n", + " else:\n", + " G.nodes[node_id]['node_trace'] = \"MIBIG_knownclusterblast\"\n", + "\n", + "# Display nodes with their attributes\n", + "nodes_with_attributes = [{node: G.nodes[node]} for node in G.nodes()]\n", + "nodes_with_attributes\n", + "\n", + "outfile = Path(f\"assets/data/bigscape_{cutoff}_as{antismash_version}.graphml\")\n", + "outfile.parent.mkdir(parents=True, exist_ok=True)\n", + "nx.write_graphml(G, outfile)" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "54e81286-3f16-4899-98fc-bc5e373c0a04", + "metadata": {}, + "outputs": [], + "source": [ + "# define layout options\n", + "options = {\n", + " 'prog': 'neato',\n", + " 'args': ' '.join(['-Gstart=10', '-Goverlap_scaling=-100'])\n", + "}\n", + "\n", + "# position nodes\n", + "pos = nx.nx_agraph.graphviz_layout(G, **options)#, args='-Goverlap=false -Elen=weight')\n", + "\n", + "bigscape_class_labels = df_bigscape_cluster.bigscape_class.unique()\n", + "bigscape_class_colors = sns.color_palette(\"colorblind\", len(bigscape_class_labels)).as_hex()\n", + "\n", + "for n, p in pos.items():\n", + " G.nodes[n]['pos'] = p\n", + " text = \"
\".join([n]+[f\"{k} : {v}\" for k, v in G.nodes[n].items() if k in ['product', \n", + " 'bigscape_class', \n", + " 'genome_id', \n", + " 'accn_id', \n", + " 'gcf_0.30', \n", + " 'fam_id_0.30', \n", + " 'fam_type_0.30', \n", + " 'fam_known_compounds_0.30', \n", + " 'region', \n", + " 'contig_edge', \n", + " 'region_length', \n", + " 'Organism']])\n", + " G.nodes[n]['text'] = text\n", + " \n", + " if 'node_trace' in G.nodes[n].keys():\n", + " pass\n", + " elif n in df_mibig.index:\n", + " G.nodes[n]['node_trace'] = \"MIBIG\"\n", + " else:\n", + " G.nodes[n]['node_trace'] = G.nodes[n]['bigscape_class']\n", + "\n", + "# define visualization\n", + "edge_annotation_map = {'bigscape_similarity' : {'color':'black',\n", + " 'width':10\n", + " },\n", + " 'knownclusterblast' : {'color':'grey',\n", + " 'width':0.1\n", + " },\n", + " }\n", + "\n", + "node_annotation_map = {'MIBIG' : {'color':'blue',\n", + " 'node_symbol' : 'star'},\n", + " 'MIBIG_knownclusterblast': {'color':'blue',\n", + " 'node_symbol' : 'asterisk'}, \n", + " \"BGC\" : {'color':'blue',\n", + " 'node_symbol' : 'circle'}\n", + " }\n", + "\n", + "for num, bigscape_class_label in enumerate(bigscape_class_labels):\n", + " node_annotation_map[bigscape_class_label] = {'color' : bigscape_class_colors[num],\n", + " 'node_symbol' : 'circle'}\n", + "\n", + "traces = []\n", + "node_trace = []\n", + "edge_trace = []\n", + "\n", + "for e in edge_annotation_map.keys():\n", + " dash = \"solid\"\n", + " if 'knownclusterblast' in e:\n", + " dash = \"dot\"\n", + " edge_trace = create_edge_trace(G, e, color=edge_annotation_map[e]['color'], dash=dash, showlegend=True)\n", + " traces.append(edge_trace)\n", + "\n", + "for trace in node_annotation_map.keys():\n", + " nodeopacity = 0.5\n", + " showtextlabel = False\n", + " linecolor = \"black\"\n", + " linewidth = 0.5\n", + " textposition=\"top left\"\n", + " node_size = 8\n", + " if trace in bigscape_class_labels:\n", + " nodeopacity = 0.8\n", + " node_trace = create_node_trace(G, trace, node_annotation_map[trace]['color'], showtextlabel=showtextlabel, \n", + " nodesymbol=node_annotation_map[trace]['node_symbol'], nodeopacity=nodeopacity, \n", + " showlegend=True, linecolor=linecolor, linewidth=linewidth, nodesize=node_size,\n", + " textposition=textposition)\n", + " traces.append(node_trace)\n", + "\n", + "fig = go.Figure(data=traces,\n", + " layout=go.Layout(\n", + " paper_bgcolor='rgba(0,0,0,0)',\n", + " plot_bgcolor='white',\n", + " showlegend=True,\n", + " hovermode='closest',\n", + " margin=dict(b=20,l=5,r=5,t=40),\n", + " xaxis=dict(showgrid=False, zeroline=False, showticklabels=False, linecolor='black', mirror=True, linewidth=1),\n", + " yaxis=dict(showgrid=False, zeroline=False, showticklabels=False, linecolor='black', mirror=True, linewidth=1),\n", + " width=800, height=600)\n", + " )\n", + "\n", + "outfile = Path(\"assets/figures/bigscape.html\")\n", + "outfile.parent.mkdir(parents=True, exist_ok=True)\n", + "fig.write_html(outfile)\n", + "\n", + "display(HTML(filename=str(outfile)))" + ] + }, + { + "cell_type": "markdown", + "id": "4a3e340c-36e3-4f40-9a9b-75a8c8d00b54", + "metadata": {}, + "source": [ + "[Cytoscape Network](assets/data/bigscape_0.30_as{{project().dependency_version()}}.graphml){:target=\"_blank\" .md-button}" ] }, { @@ -194,13 +504,22 @@ { "cell_type": "code", "execution_count": null, - "id": "4590ac7c-ec43-4008-805c-cf14905b90ad", + "id": "d10f3391-951d-4f6e-a752-78baa3b95fad", "metadata": {}, "outputs": [], "source": [ - "df_genomes = pd.DataFrame(index=df_antismash.index)\n", + "df_genomes = pd.DataFrame()\n", "df_genomes[\"Genome ID\"] = df_antismash['genome_id']\n", - "#df_genomes['Organism name'] = df_ncbi.loc[df_genomes.index, 'organism']\n", + "df_genomes = df_genomes.set_index(\"Genome ID\", drop=False)" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "4590ac7c-ec43-4008-805c-cf14905b90ad", + "metadata": {}, + "outputs": [], + "source": [ "df_genomes['GTDB species'] = [df_gtdb.loc[idx, 'Organism'].split('__')[1] for idx in df_genomes.index]\n", "df_genomes['BGCs'] = df_antismash.loc[df_genomes.index, 'bgcs_count']\n", "\n", @@ -421,7 +740,7 @@ "name": "python", "nbconvert_exporter": "python", "pygments_lexer": "ipython3", - "version": "3.9.17" + "version": "3.9.18" } }, "nbformat": 4, diff --git a/workflow/notebook/cblaster-bgc.py.ipynb b/workflow/notebook/cblaster-bgc.py.ipynb index 3c27f51b..6e847b84 100644 --- a/workflow/notebook/cblaster-bgc.py.ipynb +++ b/workflow/notebook/cblaster-bgc.py.ipynb @@ -36,6 +36,38 @@ "report_dir = Path(\"../\")" ] }, + { + "cell_type": "markdown", + "id": "409bdf69", + "metadata": {}, + "source": [ + "## How to run query from local database\n", + "* Download all files from the CBlaster result:\n", + "\n", + "[CBlaster database]({{ project().file_server() }}/cblaster/bgc){:target=\"_blank\" .md-button}\n", + "\n", + "* Install CBlaster conda environment using this yaml configuration (create a file called `env.yaml` and copy paste the following items to the file). See the conda guide [here](https://conda.io/projects/conda/en/latest/user-guide/tasks/manage-environments.html#creating-an-environment-from-an-environment-yml-file):\n", + "```yaml\n", + "name: cblaster\n", + "channels:\n", + " - conda-forge\n", + " - default\n", + " - bioconda\n", + "dependencies:\n", + " - diamond==2.0.15\n", + " - pip\n", + " - pip:\n", + " - cblaster==1.3.12\n", + "```\n", + "* After having the environment installed, `cd` to the directory containing all the files, activate the environment, and run queries by:\n", + "```bash\n", + "# activate environment\n", + "conda activate cblaster\n", + "cblaster search -m local -db cblaster_genome_db.dmnd -qf \n", + "```\n", + "* See CBlaster guide for running local queries [here](https://cblaster.readthedocs.io/en/latest/guide/search_module.html#searches-against-local-sequence-data)" + ] + }, { "cell_type": "markdown", "id": "4d8fe1ca-30f9-472a-9e01-4e9db61825b8", diff --git a/workflow/notebook/deeptfactor.py.ipynb b/workflow/notebook/deeptfactor.py.ipynb index 7a36f633..d3030026 100644 --- a/workflow/notebook/deeptfactor.py.ipynb +++ b/workflow/notebook/deeptfactor.py.ipynb @@ -59,9 +59,46 @@ "outputs": [], "source": [ "df = pd.read_csv(\"../tables/df_deeptfactor.csv\", index_col=0)\n", - "df = df[df.deeptfactor_prediction == True]\n", - "\n", - "display(HTML(DT(df, columnDefs=[{\"className\": \"dt-center\", \"targets\": \"_all\", \"searchable\": True}], maxColumns=df.shape[1], maxBytes=0)))" + "df = df[df.deeptfactor_prediction == True]" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "8236e8fb-710f-4e8c-8153-fc8984197b6b", + "metadata": {}, + "outputs": [], + "source": [ + "faa_dictionary = []\n", + "df_gtdb = pd.read_csv(\"../tables/df_gtdb_meta.csv\")\n", + "for genome_id in df_gtdb.genome_id:\n", + " with open(f\"../../../interim/prokka/{genome_id}/{genome_id}.faa\", \"r\") as f:\n", + " data = f.readlines()\n", + " aa_dict = [i.strip(\"\\n\").strip(\">\").split(\" \", 1) for i in data if i.startswith(\">\")]\n", + " df_aa = pd.DataFrame(aa_dict, columns=[\"locus_tag\", \"annotation\"]).set_index(\"locus_tag\")\n", + " df_aa[\"genome_id\"] = genome_id\n", + " faa_dictionary.append(df_aa)\n", + "df_aa = pd.concat(faa_dictionary)" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "321ccedf-5f5e-49e0-8417-ded2a706117e", + "metadata": {}, + "outputs": [], + "source": [ + "df_deeptf = pd.merge(df.reset_index().drop(columns='genome_id'), df_aa.reset_index(), on=\"locus_tag\", how=\"outer\")" + ] + }, + { + "cell_type": "code", + "execution_count": null, + "id": "be0120e7-613b-4e26-93a9-380eb4a62b50", + "metadata": {}, + "outputs": [], + "source": [ + "display(HTML(DT(df_deeptf, columnDefs=[{\"className\": \"dt-center\", \"targets\": \"_all\", \"searchable\": True}], maxColumns=df_deeptf.shape[1], maxBytes=0)))" ] }, { @@ -97,7 +134,7 @@ "name": "python", "nbconvert_exporter": "python", "pygments_lexer": "ipython3", - "version": "3.11.0" + "version": "3.9.18" } }, "nbformat": 4, diff --git a/workflow/notebook/eggnog.py.ipynb b/workflow/notebook/eggnog.py.ipynb index 4e5bfe7a..b3a025e1 100644 --- a/workflow/notebook/eggnog.py.ipynb +++ b/workflow/notebook/eggnog.py.ipynb @@ -22,7 +22,7 @@ "outputs": [], "source": [ "import pandas as pd\n", - "import matplotlib as mpl\n", + "import matplotlib.pyplot as plt\n", "from pathlib import Path\n", "from IPython.display import display, Markdown, HTML\n", "import json\n", @@ -197,9 +197,9 @@ "id": "8984c203-d0b2-4bb9-ac8e-7db534864ea8", "metadata": {}, "source": [ - "## Summary Table\n", + "## Summary\n", "\n", - "### Summary of number of unique genes belonging to each of the COG categories" + "### Clustered Heatmap of COG Categories across Genomes" ] }, { @@ -211,7 +211,10 @@ }, "outputs": [], "source": [ - "display(HTML(DT(df_cog_unique, columnDefs=[{\"className\": \"dt-center\", \"targets\": \"_all\"}],)))" + "sns.clustermap(df_cog, cmap='YlGnBu', annot=True, fmt=\"d\", method='ward', linewidths=.5)\n", + "plt.show()\n", + "\n", + "#display(HTML(DT(df_cog_unique, columnDefs=[{\"className\": \"dt-center\", \"targets\": \"_all\"}],)))" ] }, { @@ -219,7 +222,7 @@ "id": "7e757544-2bde-4b14-a0a7-b74df3be9bf5", "metadata": {}, "source": [ - "##### Legend" + "#### Legend" ] }, { diff --git a/workflow/rules.yaml b/workflow/rules.yaml index 470e0c80..442a1e66 100644 --- a/workflow/rules.yaml +++ b/workflow/rules.yaml @@ -100,7 +100,7 @@ bigslice: BiG-SLiCE: A highly scalable tool maps the diversity of 1.2 million biosynthetic gene clusters, [GigaScience, Volume 10, Issue 1, January 2021, giaa154](https://doi.org/10.1093/gigascience/giaa154)' query-bigslice: - final_output: data/processed/{name}/bigslice/query_as_{version}/ + final_output: data/processed/{name}/bigslice/query_as_{version}/gcf_annotation.csv description: Map BGCs to BiG-FAM database (https://bigfam.bioinformatics.nl/) category: Genome Mining link: @@ -156,7 +156,7 @@ antismash: Simon Shaw, Alexander M Kloosterman, Zach Charlop-Powers, Gilles P van Weezel, Marnix H Medema, & Tilmann Weber. Nucleic Acids Research (2021) [doi: 10.1093/nar/gkab335.](https://academic.oup.com/nar/article/49/W1/W29/6274535?login=false)' arts: - final_output: "data/processed/{name}/tables/df_arts_as-{version}.csv" + final_output: "data/processed/{name}/tables/df_arts_allhits_as-{version}.csv" description: Run Antibiotic Resistant Target Seeker (ARTS) on samples. category: Genome Mining link: diff --git a/workflow/rules/arts.smk b/workflow/rules/arts.smk index 85f96fb5..99356c7c 100644 --- a/workflow/rules/arts.smk +++ b/workflow/rules/arts.smk @@ -23,36 +23,128 @@ rule arts_extract: arts="data/interim/arts/antismash-{version}/{strains}", json="data/interim/antismash/{version}/{strains}/{strains}.json", output: - json=temp("data/interim/arts/antismash-{version}/{strains}.json"), + all_hits=temp("data/interim/arts/antismash-{version}/{strains}_arts_all_hits.json"), + bgctable=temp("data/interim/arts/antismash-{version}/{strains}_arts_bgctable_summary.json"), + coretable=temp("data/interim/arts/antismash-{version}/{strains}_arts_coretable_summary.json"), + knownhits=temp("data/interim/arts/antismash-{version}/{strains}_arts_knownhits.json") conda: "../envs/bgc_analytics.yaml" log: "logs/arts/arts_extract/arts_extract-{version}-{strains}.log", shell: """ - python workflow/bgcflow/bgcflow/data/arts_extract.py {input.arts}/tables/bgctable.tsv {input.json} {output.json} {wildcards.strains} 2>> {log} + python workflow/bgcflow/bgcflow/data/arts_extract_all.py {input.arts} {wildcards.strains} {input.json} data/interim/arts/antismash-{wildcards.version} 2>> {log} """ -rule arts_combine: +rule arts_allhits_combine: input: json=lambda wildcards: expand( - "data/interim/arts/antismash-{version}/{strains}.json", + "data/interim/arts/antismash-{version}/{strains}_arts_all_hits.json", strains=[s for s in list(PEP_PROJECTS[wildcards.name].sample_table.index)], version=wildcards.version ), changelog="data/interim/bgcs/{name}/{version}", output: - table="data/processed/{name}/tables/df_arts_as-{version}.csv" + table=temp("data/processed/{name}/tables/df_arts_all_hits_as-{version}.csv") conda: "../envs/bgc_analytics.yaml" log: - "logs/arts/arts_combine/arts_combine-{version}-{name}.log", + "logs/arts/arts_combine/arts_combine_all_hits-{version}-{name}.log", shell: """ TMPDIR="data/interim/tmp/{wildcards.name}/{wildcards.version}" mkdir -p $TMPDIR - INPUT_JSON="$TMPDIR/df_arts.txt" + INPUT_JSON="$TMPDIR/df_arts_allhits.txt" echo '{input.json}' > $INPUT_JSON python workflow/bgcflow/bgcflow/data/arts_gather.py $INPUT_JSON {input.changelog} {output.table} 2>> {log} rm $INPUT_JSON """ + +rule arts_bgctable_combine: + input: + json=lambda wildcards: expand( + "data/interim/arts/antismash-{version}/{strains}_arts_bgctable_summary.json", + strains=[s for s in list(PEP_PROJECTS[wildcards.name].sample_table.index)], + version=wildcards.version + ), + changelog="data/interim/bgcs/{name}/{version}", + output: + table="data/processed/{name}/tables/df_arts_bgctable_as-{version}.csv" + conda: + "../envs/bgc_analytics.yaml" + log: + "logs/arts/arts_combine/arts_combine_bgctable-{version}-{name}.log", + shell: + """ + TMPDIR="data/interim/tmp/{wildcards.name}/{wildcards.version}" + mkdir -p $TMPDIR + INPUT_JSON="$TMPDIR/df_arts_bgctable.txt" + echo '{input.json}' > $INPUT_JSON + python workflow/bgcflow/bgcflow/data/arts_gather.py $INPUT_JSON {input.changelog} {output.table} 2>> {log} + rm $INPUT_JSON + """ + +rule arts_coretable_combine: + input: + json=lambda wildcards: expand( + "data/interim/arts/antismash-{version}/{strains}_arts_coretable_summary.json", + strains=[s for s in list(PEP_PROJECTS[wildcards.name].sample_table.index)], + version=wildcards.version + ), + changelog="data/interim/bgcs/{name}/{version}", + output: + table="data/processed/{name}/tables/df_arts_coretable_as-{version}.csv" + conda: + "../envs/bgc_analytics.yaml" + log: + "logs/arts/arts_combine/arts_combine_coretable-{version}-{name}.log", + shell: + """ + TMPDIR="data/interim/tmp/{wildcards.name}/{wildcards.version}" + mkdir -p $TMPDIR + INPUT_JSON="$TMPDIR/df_arts_coretable.txt" + echo '{input.json}' > $INPUT_JSON + python workflow/bgcflow/bgcflow/data/arts_gather.py $INPUT_JSON {input.changelog} {output.table} 2>> {log} + rm $INPUT_JSON + """ + +rule arts_knownhits_combine: + input: + json=lambda wildcards: expand( + "data/interim/arts/antismash-{version}/{strains}_arts_knownhits.json", + strains=[s for s in list(PEP_PROJECTS[wildcards.name].sample_table.index)], + version=wildcards.version + ), + changelog="data/interim/bgcs/{name}/{version}", + output: + table="data/processed/{name}/tables/df_arts_knownhits_as-{version}.csv" + conda: + "../envs/bgc_analytics.yaml" + log: + "logs/arts/arts_combine/arts_combine_knownhits-{version}-{name}.log", + shell: + """ + TMPDIR="data/interim/tmp/{wildcards.name}/{wildcards.version}" + mkdir -p $TMPDIR + INPUT_JSON="$TMPDIR/df_arts_knownhits.txt" + echo '{input.json}' > $INPUT_JSON + python workflow/bgcflow/bgcflow/data/arts_gather.py $INPUT_JSON {input.changelog} {output.table} 2>> {log} + rm $INPUT_JSON + """ + +rule arts_final: + input: + all_hits="data/processed/{name}/tables/df_arts_all_hits_as-{version}.csv", + bgctable="data/processed/{name}/tables/df_arts_bgctable_as-{version}.csv", + coretable="data/processed/{name}/tables/df_arts_coretable_as-{version}.csv", + knownhits="data/processed/{name}/tables/df_arts_knownhits_as-{version}.csv" + output: + table="data/processed/{name}/tables/df_arts_allhits_as-{version}.csv" + conda: + "../envs/bgc_analytics.yaml" + log: + "logs/arts/arts_combine/arts_combine_final-{version}-{name}.log", + shell: + """ + cp {input.all_hits} {output.table} 2>> {log} + """ diff --git a/workflow/rules/bigslice.smk b/workflow/rules/bigslice.smk index c192979b..f2b2e2dc 100644 --- a/workflow/rules/bigslice.smk +++ b/workflow/rules/bigslice.smk @@ -79,7 +79,9 @@ rule summarize_bigslice_query: input: query_dir="data/interim/bigslice/query/{name}_antismash_{version}/", output: - folder=directory("data/processed/{name}/bigslice/query_as_{version}/"), + gcf_summary_csv="data/processed/{name}/bigslice/query_as_{version}/gcf_summary.csv", + gcf_summary_json="data/processed/{name}/bigslice/query_as_{version}/gcf_summary.json", + query_network="data/processed/{name}/bigslice/query_as_{version}/query_network.csv", conda: "../envs/bgc_analytics.yaml" log: @@ -89,5 +91,22 @@ rule summarize_bigslice_query: cutoff=900, shell: """ - python workflow/bgcflow/bgcflow/data/summarize_bigslice_query.py {input.query_dir} {output.folder} {params.bigfam_db_path} {params.cutoff} 2>> {log} + python workflow/bgcflow/bgcflow/data/summarize_bigslice_query.py data/processed/{wildcards.name}/bigslice/query_as_{wildcards.version}/ {params.bigfam_db_path} {params.cutoff} 2>> {log} + """ + + +rule annotate_bigfam_hits: + input: + gcf_summary_csv="data/processed/{name}/bigslice/query_as_{version}/gcf_summary.csv", + output: + models="data/processed/{name}/bigslice/query_as_{version}/gcf_annotation.csv", + conda: + "../envs/bgc_analytics.yaml" + log: + "logs/bigslice/summarize_bigslice_query/summarize_bigslice_query_{name}-antismash-{version}.log", + params: + bigfam_db_path="resources/bigslice/full_run_result/result/data.db", + shell: + """ + python workflow/bgcflow/bgcflow/data/annotate_bigfam_model.py {input.gcf_summary_csv} {params.bigfam_db_path} {output.models} 2>> {log} """ diff --git a/workflow/rules/common.smk b/workflow/rules/common.smk index 32364866..35eccef9 100644 --- a/workflow/rules/common.smk +++ b/workflow/rules/common.smk @@ -8,7 +8,7 @@ from pathlib import Path import peppy min_version("7.14.0") -__version__ = "0.7.5" +__version__ = "0.7.6" container: "docker://matinnu/bgcflow:latest" diff --git a/workflow/rules/metabase.smk b/workflow/rules/metabase.smk index 4efb3e0e..9a5c4d9a 100644 --- a/workflow/rules/metabase.smk +++ b/workflow/rules/metabase.smk @@ -17,6 +17,8 @@ rule metabase_duckdb_plugin: plugin="resources/metabase/plugins/duckdb.metabase-driver_{METABASE_DUCKDB_PLUGIN_VERSION}.jar", log: "logs/metabase/metabase_duckdb_install_{METABASE_DUCKDB_PLUGIN_VERSION}.log", + conda: + "../envs/utilities.yaml" params: release=metabase_config["METABASE_DUCKDB_PLUGIN_VERSION"] shell: